fune/browser/extensions/translations/extension/translation-worker.js
Andre Natal cfd82965b8 Bug 1710546 - Firefox Translations integration r=mossop,mixedpuppy,mhoye
Bundle Firefox Translation as a builtin pref'd off addon in Nightly only

Differential Revision: https://phabricator.services.mozilla.com/D114810
2021-05-26 21:25:50 +00:00

8574 lines
No EOL
292 KiB
JavaScript

/******/ (() => { // webpackBootstrap
/******/ "use strict";
/******/ var __webpack_modules__ = ({
/***/ 964:
/*!*******************************!*\
!*** ./src/core/ts/config.ts ***!
\*******************************/
/***/ ((__unused_webpack_module, exports) => {
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.modelRegistry = exports.config = void 0;
const developmentBuild = "production" !== "production";
exports.config = {
bergamotRestApiUrl: "http://127.0.0.1:8787",
useBergamotRestApi: "0" === "1",
sentryDsn: "https://<key>@<organization>.ingest.sentry.io/<project>",
bergamotModelsBaseUrl: developmentBuild
? "http://0.0.0.0:4000/models"
: "https://storage.googleapis.com/bergamot-models-sandbox/0.2.0",
telemetryAppId: "org-mozilla-bergamot",
telemetryDebugMode: developmentBuild,
extensionBuildId: `${"v0.4.0"}-${"local"}#${"HEAD"}`,
supportedLanguagePairs: [
// "German, French, Spanish, Polish, Czech, and Estonian in and out of English"
// ISO 639-1 codes
// Language pairs that are not available are commented out
// ["de","en"],
// ["fr","en"],
["es", "en"],
// ["pl","en"],
// ["cs", "en"],
["et", "en"],
["en", "de"],
// ["en","fr"],
["en", "es"],
// ["en","pl"],
// ["en", "cs"],
["en", "et"],
],
privacyNoticeUrl: "https://example.com/privacy-notice",
feedbackSurveyUrl: "https://qsurvey.mozilla.com/s3/bergamot-translate-product-feedback",
};
exports.modelRegistry = {
esen: {
lex: {
name: "lex.50.50.esen.s2t.bin",
size: 3860888,
estimatedCompressedSize: 1978538,
expectedSha256Hash: "f11a2c23ef85ab1fee1c412b908d69bc20d66fd59faa8f7da5a5f0347eddf969",
},
model: {
name: "model.esen.intgemm.alphas.bin",
size: 17140755,
estimatedCompressedSize: 13215960,
expectedSha256Hash: "4b6b7f451094aaa447d012658af158ffc708fc8842dde2f871a58404f5457fe0",
},
vocab: {
name: "vocab.esen.spm",
size: 825463,
estimatedCompressedSize: 414566,
expectedSha256Hash: "909b1eea1face0d7f90a474fe29a8c0fef8d104b6e41e65616f864c964ba8845",
},
},
eten: {
lex: {
name: "lex.50.50.eten.s2t.bin",
size: 3974944,
estimatedCompressedSize: 1920655,
expectedSha256Hash: "6992bedc590e60e610a28129c80746fe5f33144a4520e2c5508d87db14ca54f8",
},
model: {
name: "model.eten.intgemm.alphas.bin",
size: 17140754,
estimatedCompressedSize: 12222624,
expectedSha256Hash: "aac98a2371e216ee2d4843cbe896c617f6687501e17225ac83482eba52fd0028",
},
vocab: {
name: "vocab.eten.spm",
size: 828426,
estimatedCompressedSize: 416995,
expectedSha256Hash: "e3b66bc141f6123cd40746e2fb9b8ee4f89cbf324ab27d6bbf3782e52f15fa2d",
},
},
ende: {
lex: {
name: "lex.50.50.ende.s2t.bin",
size: 3062492,
estimatedCompressedSize: 1575385,
expectedSha256Hash: "764797d075f0642c0b079cce6547348d65fe4e92ac69fa6a8605cd8b53dacb3f",
},
model: {
name: "model.ende.intgemm.alphas.bin",
size: 17140498,
estimatedCompressedSize: 13207068,
expectedSha256Hash: "f0946515c6645304f0706fa66a051c3b7b7c507f12d0c850f276c18165a10c14",
},
vocab: {
name: "vocab.deen.spm",
size: 797501,
estimatedCompressedSize: 412505,
expectedSha256Hash: "bc8f8229933d8294c727f3eab12f6f064e7082b929f2d29494c8a1e619ba174c",
},
},
enes: {
lex: {
name: "lex.50.50.enes.s2t.bin",
size: 3347104,
estimatedCompressedSize: 1720700,
expectedSha256Hash: "3a113d713dec3cf1d12bba5b138ae616e28bba4bbc7fe7fd39ba145e26b86d7f",
},
model: {
name: "model.enes.intgemm.alphas.bin",
size: 17140755,
estimatedCompressedSize: 12602853,
expectedSha256Hash: "fa7460037a3163e03fe1d23602f964bff2331da6ee813637e092ddf37156ef53",
},
vocab: {
name: "vocab.esen.spm",
size: 825463,
estimatedCompressedSize: 414566,
expectedSha256Hash: "909b1eea1face0d7f90a474fe29a8c0fef8d104b6e41e65616f864c964ba8845",
},
},
enet: {
lex: {
name: "lex.50.50.enet.s2t.bin",
size: 2700780,
estimatedCompressedSize: 1336443,
expectedSha256Hash: "3d1b40ff43ebef82cf98d416a88a1ea19eb325a85785eef102f59878a63a829d",
},
model: {
name: "model.enet.intgemm.alphas.bin",
size: 17140754,
estimatedCompressedSize: 12543318,
expectedSha256Hash: "a28874a8b702a519a14dc71bcee726a5cb4b539eeaada2d06492f751469a1fd6",
},
vocab: {
name: "vocab.eten.spm",
size: 828426,
estimatedCompressedSize: 416995,
expectedSha256Hash: "e3b66bc141f6123cd40746e2fb9b8ee4f89cbf324ab27d6bbf3782e52f15fa2d",
},
},
};
/***/ }),
/***/ 3662:
/*!********************************************************************************************!*\
!*** ./src/core/ts/web-worker-scripts/translation-worker.js/bergamot-translator-worker.ts ***!
\********************************************************************************************/
/***/ ((__unused_webpack_module, exports) => {
// @ts-nocheck
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.Module = exports.addOnPreMain = void 0;
// Note: The source code in this file is imported from bergamot-translator via
// the import-bergamot-translator.sh script in the root of this repo.
// Changes will be overwritten on each import!
var BERGAMOT_VERSION_FULL = "v0.3.1+d264450";
function GROWABLE_HEAP_I8() {
if (wasmMemory.buffer != buffer) {
updateGlobalBufferAndViews(wasmMemory.buffer);
}
return HEAP8;
}
function GROWABLE_HEAP_U8() {
if (wasmMemory.buffer != buffer) {
updateGlobalBufferAndViews(wasmMemory.buffer);
}
return HEAPU8;
}
function GROWABLE_HEAP_I16() {
if (wasmMemory.buffer != buffer) {
updateGlobalBufferAndViews(wasmMemory.buffer);
}
return HEAP16;
}
function GROWABLE_HEAP_U16() {
if (wasmMemory.buffer != buffer) {
updateGlobalBufferAndViews(wasmMemory.buffer);
}
return HEAPU16;
}
function GROWABLE_HEAP_I32() {
if (wasmMemory.buffer != buffer) {
updateGlobalBufferAndViews(wasmMemory.buffer);
}
return HEAP32;
}
function GROWABLE_HEAP_U32() {
if (wasmMemory.buffer != buffer) {
updateGlobalBufferAndViews(wasmMemory.buffer);
}
return HEAPU32;
}
function GROWABLE_HEAP_F32() {
if (wasmMemory.buffer != buffer) {
updateGlobalBufferAndViews(wasmMemory.buffer);
}
return HEAPF32;
}
function GROWABLE_HEAP_F64() {
if (wasmMemory.buffer != buffer) {
updateGlobalBufferAndViews(wasmMemory.buffer);
}
return HEAPF64;
}
var Module = typeof Module !== "undefined" ? Module : {};
exports.Module = Module;
var moduleOverrides = {};
var key;
for (key in Module) {
if (Module.hasOwnProperty(key)) {
moduleOverrides[key] = Module[key];
}
}
var arguments_ = [];
var thisProgram = "./this.program";
var quit_ = function (status, toThrow) {
throw toThrow;
};
var ENVIRONMENT_IS_WEB = false;
var ENVIRONMENT_IS_WORKER = false;
var ENVIRONMENT_IS_NODE = false;
var ENVIRONMENT_IS_SHELL = false;
ENVIRONMENT_IS_WEB = typeof window === "object";
ENVIRONMENT_IS_WORKER = typeof importScripts === "function";
ENVIRONMENT_IS_NODE =
typeof process === "object" &&
typeof process.versions === "object" &&
typeof process.versions.node === "string";
ENVIRONMENT_IS_SHELL =
!ENVIRONMENT_IS_WEB && !ENVIRONMENT_IS_NODE && !ENVIRONMENT_IS_WORKER;
var ENVIRONMENT_IS_PTHREAD = Module["ENVIRONMENT_IS_PTHREAD"] || false;
if (ENVIRONMENT_IS_PTHREAD) {
buffer = Module["buffer"];
}
var _scriptDir = typeof document !== "undefined" && document.currentScript
? document.currentScript.src
: undefined;
if (ENVIRONMENT_IS_WORKER) {
_scriptDir = self.location.href;
}
var scriptDirectory = "";
function locateFile(path) {
if (Module["locateFile"]) {
return Module["locateFile"](path, scriptDirectory);
}
return scriptDirectory + path;
}
var read_, readAsync, readBinary, setWindowTitle;
if (ENVIRONMENT_IS_WEB || ENVIRONMENT_IS_WORKER) {
if (ENVIRONMENT_IS_WORKER) {
scriptDirectory = self.location.href;
}
else if (typeof document !== "undefined" && document.currentScript) {
scriptDirectory = document.currentScript.src;
}
if (scriptDirectory.indexOf("blob:") !== 0) {
scriptDirectory = scriptDirectory.substr(0, scriptDirectory.lastIndexOf("/") + 1);
}
else {
scriptDirectory = "";
}
{
read_ = function shell_read(url) {
var xhr = new XMLHttpRequest();
xhr.open("GET", url, false);
xhr.send(null);
return xhr.responseText;
};
if (ENVIRONMENT_IS_WORKER) {
readBinary = function readBinary(url) {
var xhr = new XMLHttpRequest();
xhr.open("GET", url, false);
xhr.responseType = "arraybuffer";
xhr.send(null);
return new Uint8Array(xhr.response);
};
}
readAsync = function readAsync(url, onload, onerror) {
var xhr = new XMLHttpRequest();
xhr.open("GET", url, true);
xhr.responseType = "arraybuffer";
xhr.onload = function xhr_onload() {
if (xhr.status == 200 || (xhr.status == 0 && xhr.response)) {
onload(xhr.response);
return;
}
onerror();
};
xhr.onerror = onerror;
xhr.send(null);
};
}
setWindowTitle = function (title) {
document.title = title;
};
}
else {
}
var out = Module["print"] || console.log.bind(console);
var err = Module["printErr"] || console.warn.bind(console);
for (key in moduleOverrides) {
if (moduleOverrides.hasOwnProperty(key)) {
Module[key] = moduleOverrides[key];
}
}
moduleOverrides = null;
if (Module["arguments"])
arguments_ = Module["arguments"];
if (Module["thisProgram"])
thisProgram = Module["thisProgram"];
if (Module["quit"])
quit_ = Module["quit"];
var STACK_ALIGN = 16;
function alignMemory(size, factor) {
if (!factor)
factor = STACK_ALIGN;
return Math.ceil(size / factor) * factor;
}
function warnOnce(text) {
if (!warnOnce.shown)
warnOnce.shown = {};
if (!warnOnce.shown[text]) {
warnOnce.shown[text] = 1;
err(text);
}
}
function convertJsFunctionToWasm(func, sig) {
if (typeof WebAssembly.Function === "function") {
var typeNames = {
i: "i32",
j: "i64",
f: "f32",
d: "f64",
};
var type = {
parameters: [],
results: sig[0] == "v" ? [] : [typeNames[sig[0]]],
};
for (var i = 1; i < sig.length; ++i) {
type.parameters.push(typeNames[sig[i]]);
}
return new WebAssembly.Function(type, func);
}
var typeSection = [1, 0, 1, 96];
var sigRet = sig.slice(0, 1);
var sigParam = sig.slice(1);
var typeCodes = {
i: 127,
j: 126,
f: 125,
d: 124,
};
typeSection.push(sigParam.length);
for (var i = 0; i < sigParam.length; ++i) {
typeSection.push(typeCodes[sigParam[i]]);
}
if (sigRet == "v") {
typeSection.push(0);
}
else {
typeSection = typeSection.concat([1, typeCodes[sigRet]]);
}
typeSection[1] = typeSection.length - 2;
var bytes = new Uint8Array([0, 97, 115, 109, 1, 0, 0, 0].concat(typeSection, [
2,
7,
1,
1,
101,
1,
102,
0,
0,
7,
5,
1,
1,
102,
0,
0,
]));
var module = new WebAssembly.Module(bytes, { simdWormhole: true });
var instance = new WebAssembly.Instance(module, {
e: {
f: func,
},
});
var wrappedFunc = instance.exports["f"];
return wrappedFunc;
}
var freeTableIndexes = (/* unused pure expression or super */ null && ([]));
var functionsInTableMap;
function getEmptyTableSlot() {
if (freeTableIndexes.length) {
return freeTableIndexes.pop();
}
try {
wasmTable.grow(1);
}
catch (err) {
if (!(err instanceof RangeError)) {
throw err;
}
throw "Unable to grow wasm table. Set ALLOW_TABLE_GROWTH.";
}
return wasmTable.length - 1;
}
function addFunctionWasm(func, sig) {
if (!functionsInTableMap) {
functionsInTableMap = new WeakMap();
for (var i = 0; i < wasmTable.length; i++) {
var item = wasmTable.get(i);
if (item) {
functionsInTableMap.set(item, i);
}
}
}
if (functionsInTableMap.has(func)) {
return functionsInTableMap.get(func);
}
var ret = getEmptyTableSlot();
try {
wasmTable.set(ret, func);
}
catch (err) {
if (!(err instanceof TypeError)) {
throw err;
}
var wrapped = convertJsFunctionToWasm(func, sig);
wasmTable.set(ret, wrapped);
}
functionsInTableMap.set(func, ret);
return ret;
}
var tempRet0 = 0;
var setTempRet0 = function (value) {
tempRet0 = value;
};
var Atomics_load = Atomics.load;
var Atomics_store = Atomics.store;
var Atomics_compareExchange = Atomics.compareExchange;
var wasmBinary;
if (Module["wasmBinary"])
wasmBinary = Module["wasmBinary"];
var noExitRuntime;
if (Module["noExitRuntime"])
noExitRuntime = Module["noExitRuntime"];
if (typeof WebAssembly !== "object") {
abort("no native wasm support detected");
}
var wasmMemory;
var wasmModule;
var threadInfoStruct = 0;
var selfThreadId = 0;
var ABORT = false;
var EXITSTATUS = 0;
function assert(condition, text) {
if (!condition) {
abort("Assertion failed: " + text);
}
}
function getCFunc(ident) {
var func = Module["_" + ident];
assert(func, "Cannot call unknown function " + ident + ", make sure it is exported");
return func;
}
function ccall(ident, returnType, argTypes, args, opts) {
var toC = {
string: function (str) {
var ret = 0;
if (str !== null && str !== undefined && str !== 0) {
var len = (str.length << 2) + 1;
ret = stackAlloc(len);
stringToUTF8(str, ret, len);
}
return ret;
},
array: function (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.apply(null, cArgs);
ret = convertReturnValue(ret);
if (stack !== 0)
stackRestore(stack);
return ret;
}
var ALLOC_STACK = 1;
function UTF8ArrayToString(heap, idx, maxBytesToRead) {
var endIdx = idx + maxBytesToRead;
var str = "";
while (!(idx >= endIdx)) {
var u0 = heap[idx++];
if (!u0)
return str;
if (!(u0 & 128)) {
str += String.fromCharCode(u0);
continue;
}
var u1 = heap[idx++] & 63;
if ((u0 & 224) == 192) {
str += String.fromCharCode(((u0 & 31) << 6) | u1);
continue;
}
var u2 = heap[idx++] & 63;
if ((u0 & 240) == 224) {
u0 = ((u0 & 15) << 12) | (u1 << 6) | u2;
}
else {
u0 = ((u0 & 7) << 18) | (u1 << 12) | (u2 << 6) | (heap[idx++] & 63);
}
if (u0 < 65536) {
str += String.fromCharCode(u0);
}
else {
var ch = u0 - 65536;
str += String.fromCharCode(55296 | (ch >> 10), 56320 | (ch & 1023));
}
}
return str;
}
function UTF8ToString(ptr, maxBytesToRead) {
return ptr ? UTF8ArrayToString(GROWABLE_HEAP_U8(), ptr, maxBytesToRead) : "";
}
function 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.charCodeAt(i);
if (u >= 55296 && u <= 57343) {
var u1 = str.charCodeAt(++i);
u = (65536 + ((u & 1023) << 10)) | (u1 & 1023);
}
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);
}
}
heap[outIdx] = 0;
return outIdx - startIdx;
}
function stringToUTF8(str, outPtr, maxBytesToWrite) {
return stringToUTF8Array(str, GROWABLE_HEAP_U8(), outPtr, maxBytesToWrite);
}
function lengthBytesUTF8(str) {
var len = 0;
for (var i = 0; i < str.length; ++i) {
var u = str.charCodeAt(i);
if (u >= 55296 && u <= 57343)
u = (65536 + ((u & 1023) << 10)) | (str.charCodeAt(++i) & 1023);
if (u <= 127)
++len;
else if (u <= 2047)
len += 2;
else if (u <= 65535)
len += 3;
else
len += 4;
}
return len;
}
function UTF16ToString(ptr, maxBytesToRead) {
var str = "";
for (var i = 0; !(i >= maxBytesToRead / 2); ++i) {
var codeUnit = GROWABLE_HEAP_I16()[(ptr + i * 2) >> 1];
if (codeUnit == 0)
break;
str += String.fromCharCode(codeUnit);
}
return str;
}
function stringToUTF16(str, outPtr, maxBytesToWrite) {
if (maxBytesToWrite === undefined) {
maxBytesToWrite = 2147483647;
}
if (maxBytesToWrite < 2)
return 0;
maxBytesToWrite -= 2;
var startPtr = outPtr;
var numCharsToWrite = maxBytesToWrite < str.length * 2 ? maxBytesToWrite / 2 : str.length;
for (var i = 0; i < numCharsToWrite; ++i) {
var codeUnit = str.charCodeAt(i);
GROWABLE_HEAP_I16()[outPtr >> 1] = codeUnit;
outPtr += 2;
}
GROWABLE_HEAP_I16()[outPtr >> 1] = 0;
return outPtr - startPtr;
}
function lengthBytesUTF16(str) {
return str.length * 2;
}
function UTF32ToString(ptr, maxBytesToRead) {
var i = 0;
var str = "";
while (!(i >= maxBytesToRead / 4)) {
var utf32 = GROWABLE_HEAP_I32()[(ptr + i * 4) >> 2];
if (utf32 == 0)
break;
++i;
if (utf32 >= 65536) {
var ch = utf32 - 65536;
str += String.fromCharCode(55296 | (ch >> 10), 56320 | (ch & 1023));
}
else {
str += String.fromCharCode(utf32);
}
}
return str;
}
function stringToUTF32(str, outPtr, maxBytesToWrite) {
if (maxBytesToWrite === undefined) {
maxBytesToWrite = 2147483647;
}
if (maxBytesToWrite < 4)
return 0;
var startPtr = outPtr;
var endPtr = startPtr + maxBytesToWrite - 4;
for (var i = 0; i < str.length; ++i) {
var codeUnit = str.charCodeAt(i);
if (codeUnit >= 55296 && codeUnit <= 57343) {
var trailSurrogate = str.charCodeAt(++i);
codeUnit = (65536 + ((codeUnit & 1023) << 10)) | (trailSurrogate & 1023);
}
GROWABLE_HEAP_I32()[outPtr >> 2] = codeUnit;
outPtr += 4;
if (outPtr + 4 > endPtr)
break;
}
GROWABLE_HEAP_I32()[outPtr >> 2] = 0;
return outPtr - startPtr;
}
function lengthBytesUTF32(str) {
var len = 0;
for (var i = 0; i < str.length; ++i) {
var codeUnit = str.charCodeAt(i);
if (codeUnit >= 55296 && codeUnit <= 57343)
++i;
len += 4;
}
return len;
}
function allocateUTF8(str) {
var size = lengthBytesUTF8(str) + 1;
var ret = _malloc(size);
if (ret)
stringToUTF8Array(str, GROWABLE_HEAP_I8(), ret, size);
return ret;
}
function writeArrayToMemory(array, buffer) {
GROWABLE_HEAP_I8().set(array, buffer);
}
function writeAsciiToMemory(str, buffer, dontAddNull) {
for (var i = 0; i < str.length; ++i) {
GROWABLE_HEAP_I8()[buffer++ >> 0] = str.charCodeAt(i);
}
if (!dontAddNull)
GROWABLE_HEAP_I8()[buffer >> 0] = 0;
}
function alignUp(x, multiple) {
if (x % multiple > 0) {
x += multiple - (x % multiple);
}
return x;
}
var buffer, HEAP8, HEAPU8, HEAP16, HEAPU16, HEAP32, HEAPU32, HEAPF32, HEAPF64;
function updateGlobalBufferAndViews(buf) {
buffer = buf;
Module["HEAP8"] = HEAP8 = new Int8Array(buf);
Module["HEAP16"] = HEAP16 = new Int16Array(buf);
Module["HEAP32"] = HEAP32 = new Int32Array(buf);
Module["HEAPU8"] = HEAPU8 = new Uint8Array(buf);
Module["HEAPU16"] = HEAPU16 = new Uint16Array(buf);
Module["HEAPU32"] = HEAPU32 = new Uint32Array(buf);
Module["HEAPF32"] = HEAPF32 = new Float32Array(buf);
Module["HEAPF64"] = HEAPF64 = new Float64Array(buf);
}
var INITIAL_MEMORY = Module["INITIAL_MEMORY"] || 16777216;
if (ENVIRONMENT_IS_PTHREAD) {
wasmMemory = Module["wasmMemory"];
buffer = Module["buffer"];
}
else {
if (Module["wasmMemory"]) {
wasmMemory = Module["wasmMemory"];
}
else {
wasmMemory = new WebAssembly.Memory({
initial: INITIAL_MEMORY / 65536,
maximum: 2147483648 / 65536,
shared: true,
});
if (!(wasmMemory.buffer instanceof SharedArrayBuffer)) {
err("requested a shared WebAssembly.Memory but the returned buffer is not a SharedArrayBuffer, indicating that while the browser has SharedArrayBuffer it does not have WebAssembly threads support - you may need to set a flag");
if (ENVIRONMENT_IS_NODE) {
console.log("(on node you may need: --experimental-wasm-threads --experimental-wasm-bulk-memory and also use a recent version)");
}
throw Error("bad memory");
}
}
}
if (wasmMemory) {
buffer = wasmMemory.buffer;
}
INITIAL_MEMORY = buffer.byteLength;
updateGlobalBufferAndViews(buffer);
var wasmTable;
var __ATPRERUN__ = [];
var __ATINIT__ = [];
var __ATMAIN__ = [];
var __ATEXIT__ = [];
var __ATPOSTRUN__ = [];
var runtimeInitialized = false;
var runtimeExited = false;
if (ENVIRONMENT_IS_PTHREAD)
runtimeInitialized = true;
function preRun() {
if (ENVIRONMENT_IS_PTHREAD)
return;
if (Module["preRun"]) {
if (typeof Module["preRun"] == "function")
Module["preRun"] = [Module["preRun"]];
while (Module["preRun"].length) {
addOnPreRun(Module["preRun"].shift());
}
}
callRuntimeCallbacks(__ATPRERUN__);
}
function initRuntime() {
runtimeInitialized = true;
if (!Module["noFSInit"] && !FS.init.initialized)
FS.init();
TTY.init();
callRuntimeCallbacks(__ATINIT__);
}
function preMain() {
if (ENVIRONMENT_IS_PTHREAD)
return;
FS.ignorePermissions = false;
callRuntimeCallbacks(__ATMAIN__);
}
function exitRuntime() {
if (ENVIRONMENT_IS_PTHREAD)
return;
runtimeExited = true;
}
function postRun() {
if (ENVIRONMENT_IS_PTHREAD)
return;
if (Module["postRun"]) {
if (typeof Module["postRun"] == "function")
Module["postRun"] = [Module["postRun"]];
while (Module["postRun"].length) {
addOnPostRun(Module["postRun"].shift());
}
}
callRuntimeCallbacks(__ATPOSTRUN__);
}
function addOnPreRun(cb) {
__ATPRERUN__.unshift(cb);
}
function addOnPreMain(cb) {
__ATMAIN__.unshift(cb);
}
exports.addOnPreMain = addOnPreMain;
function addOnPostRun(cb) {
__ATPOSTRUN__.unshift(cb);
}
var runDependencies = 0;
var runDependencyWatcher = null;
var dependenciesFulfilled = null;
function getUniqueRunDependency(id) {
return id;
}
function addRunDependency(id) {
assert(!ENVIRONMENT_IS_PTHREAD, "addRunDependency cannot be used in a pthread worker");
runDependencies++;
if (Module["monitorRunDependencies"]) {
Module["monitorRunDependencies"](runDependencies);
}
}
function removeRunDependency(id) {
runDependencies--;
if (Module["monitorRunDependencies"]) {
Module["monitorRunDependencies"](runDependencies);
}
if (runDependencies == 0) {
if (runDependencyWatcher !== null) {
clearInterval(runDependencyWatcher);
runDependencyWatcher = null;
}
if (dependenciesFulfilled) {
var callback = dependenciesFulfilled;
dependenciesFulfilled = null;
callback();
}
}
}
Module["preloadedImages"] = {};
Module["preloadedAudios"] = {};
function abort(what) {
if (Module["onAbort"]) {
Module["onAbort"](what);
}
if (ENVIRONMENT_IS_PTHREAD)
console.error("Pthread aborting at " + new Error().stack);
what += "";
err(what);
ABORT = true;
EXITSTATUS = 1;
what = "abort(" + what + "). Build with -s ASSERTIONS=1 for more info.";
var e = new WebAssembly.RuntimeError(what);
throw e;
}
function hasPrefix(str, prefix) {
return String.prototype.startsWith
? str.startsWith(prefix)
: str.indexOf(prefix) === 0;
}
var dataURIPrefix = "data:application/octet-stream;base64,";
function isDataURI(filename) {
return hasPrefix(filename, dataURIPrefix);
}
var fileURIPrefix = "file://";
var wasmBinaryFile = "wasm/bergamot-translator-worker.wasm";
if (!isDataURI(wasmBinaryFile)) {
wasmBinaryFile = locateFile(wasmBinaryFile);
}
function getBinary() {
try {
if (wasmBinary) {
return new Uint8Array(wasmBinary);
}
if (readBinary) {
return readBinary(wasmBinaryFile);
}
else {
throw "both async and sync fetching of the wasm failed";
}
}
catch (err) {
abort(err);
}
}
function getBinaryPromise() {
if (!wasmBinary &&
(ENVIRONMENT_IS_WEB || ENVIRONMENT_IS_WORKER) &&
typeof fetch === "function") {
return fetch(wasmBinaryFile, {
credentials: "same-origin",
})
.then(function (response) {
if (!response["ok"]) {
throw "failed to load wasm binary file at '" + wasmBinaryFile + "'";
}
return response["arrayBuffer"]();
})
.catch(function () {
return getBinary();
});
}
return Promise.resolve().then(getBinary);
}
function createWasm() {
var info = {
env: asmLibraryArg,
wasi_snapshot_preview1: asmLibraryArg,
};
function receiveInstance(instance, module) {
var exports = instance.exports;
Module["asm"] = exports;
wasmTable = Module["asm"]["__indirect_function_table"];
wasmModule = module;
if (!ENVIRONMENT_IS_PTHREAD) {
removeRunDependency("wasm-instantiate");
}
}
if (!ENVIRONMENT_IS_PTHREAD) {
addRunDependency("wasm-instantiate");
}
function receiveInstantiatedSource(output) {
receiveInstance(output["instance"], output["module"]);
}
function instantiateArrayBuffer(receiver) {
return getBinaryPromise()
.then(function (binary) {
return WebAssembly.instantiate(binary, info, { simdWormhole: true });
})
.then(receiver, function (reason) {
err("failed to asynchronously prepare wasm: " + reason);
abort(reason);
});
}
function instantiateAsync() {
if (!wasmBinary &&
typeof WebAssembly.instantiateStreaming === "function" &&
!isDataURI(wasmBinaryFile) &&
typeof fetch === "function") {
return fetch(wasmBinaryFile, {
credentials: "same-origin",
}).then(function (response) {
var result = WebAssembly.instantiateStreaming(response, info, {
simdWormhole: true,
});
return result.then(receiveInstantiatedSource, function (reason) {
err("wasm streaming compile failed: " + reason);
err("falling back to ArrayBuffer instantiation");
return instantiateArrayBuffer(receiveInstantiatedSource);
});
});
}
else {
return instantiateArrayBuffer(receiveInstantiatedSource);
}
}
if (Module["instantiateWasm"]) {
try {
var exports = Module["instantiateWasm"](info, receiveInstance);
return exports;
}
catch (e) {
err("Module.instantiateWasm callback failed with error: " + e);
return false;
}
}
instantiateAsync();
return {};
}
var tempDouble;
var tempI64;
var ASM_CONSTS = {
1467408: function () {
throw "Canceled!";
},
1467630: function ($0, $1) {
setTimeout(function () {
_do_emscripten_dispatch_to_thread($0, $1);
}, 0);
},
};
function initPthreadsJS() {
PThread.initRuntime();
}
function callRuntimeCallbacks(callbacks) {
while (callbacks.length > 0) {
var callback = callbacks.shift();
if (typeof callback == "function") {
callback(Module);
continue;
}
var func = callback.func;
if (typeof func === "number") {
if (callback.arg === undefined) {
wasmTable.get(func)();
}
else {
wasmTable.get(func)(callback.arg);
}
}
else {
func(callback.arg === undefined ? null : callback.arg);
}
}
}
function demangle(func) {
return func;
}
function demangleAll(text) {
var regex = /\b_Z[\w\d_]+/g;
return text.replace(regex, function (x) {
var y = demangle(x);
return x === y ? x : y + " [" + x + "]";
});
}
function dynCallLegacy(sig, ptr, args) {
if (args && args.length) {
return Module["dynCall_" + sig].apply(null, [ptr].concat(args));
}
return Module["dynCall_" + sig].call(null, ptr);
}
function dynCall(sig, ptr, args) {
if (sig.indexOf("j") != -1) {
return dynCallLegacy(sig, ptr, args);
}
return wasmTable.get(ptr).apply(null, args);
}
Module["dynCall"] = dynCall;
var __pthread_ptr = 0;
var __pthread_is_main_runtime_thread = 0;
var __pthread_is_main_browser_thread = 0;
function registerPthreadPtr(pthreadPtr, isMainBrowserThread, isMainRuntimeThread) {
pthreadPtr = pthreadPtr | 0;
isMainBrowserThread = isMainBrowserThread | 0;
isMainRuntimeThread = isMainRuntimeThread | 0;
__pthread_ptr = pthreadPtr;
__pthread_is_main_browser_thread = isMainBrowserThread;
__pthread_is_main_runtime_thread = isMainRuntimeThread;
}
Module["registerPthreadPtr"] = registerPthreadPtr;
var ERRNO_CODES = {
EPERM: 63,
ENOENT: 44,
ESRCH: 71,
EINTR: 27,
EIO: 29,
ENXIO: 60,
E2BIG: 1,
ENOEXEC: 45,
EBADF: 8,
ECHILD: 12,
EAGAIN: 6,
EWOULDBLOCK: 6,
ENOMEM: 48,
EACCES: 2,
EFAULT: 21,
ENOTBLK: 105,
EBUSY: 10,
EEXIST: 20,
EXDEV: 75,
ENODEV: 43,
ENOTDIR: 54,
EISDIR: 31,
EINVAL: 28,
ENFILE: 41,
EMFILE: 33,
ENOTTY: 59,
ETXTBSY: 74,
EFBIG: 22,
ENOSPC: 51,
ESPIPE: 70,
EROFS: 69,
EMLINK: 34,
EPIPE: 64,
EDOM: 18,
ERANGE: 68,
ENOMSG: 49,
EIDRM: 24,
ECHRNG: 106,
EL2NSYNC: 156,
EL3HLT: 107,
EL3RST: 108,
ELNRNG: 109,
EUNATCH: 110,
ENOCSI: 111,
EL2HLT: 112,
EDEADLK: 16,
ENOLCK: 46,
EBADE: 113,
EBADR: 114,
EXFULL: 115,
ENOANO: 104,
EBADRQC: 103,
EBADSLT: 102,
EDEADLOCK: 16,
EBFONT: 101,
ENOSTR: 100,
ENODATA: 116,
ETIME: 117,
ENOSR: 118,
ENONET: 119,
ENOPKG: 120,
EREMOTE: 121,
ENOLINK: 47,
EADV: 122,
ESRMNT: 123,
ECOMM: 124,
EPROTO: 65,
EMULTIHOP: 36,
EDOTDOT: 125,
EBADMSG: 9,
ENOTUNIQ: 126,
EBADFD: 127,
EREMCHG: 128,
ELIBACC: 129,
ELIBBAD: 130,
ELIBSCN: 131,
ELIBMAX: 132,
ELIBEXEC: 133,
ENOSYS: 52,
ENOTEMPTY: 55,
ENAMETOOLONG: 37,
ELOOP: 32,
EOPNOTSUPP: 138,
EPFNOSUPPORT: 139,
ECONNRESET: 15,
ENOBUFS: 42,
EAFNOSUPPORT: 5,
EPROTOTYPE: 67,
ENOTSOCK: 57,
ENOPROTOOPT: 50,
ESHUTDOWN: 140,
ECONNREFUSED: 14,
EADDRINUSE: 3,
ECONNABORTED: 13,
ENETUNREACH: 40,
ENETDOWN: 38,
ETIMEDOUT: 73,
EHOSTDOWN: 142,
EHOSTUNREACH: 23,
EINPROGRESS: 26,
EALREADY: 7,
EDESTADDRREQ: 17,
EMSGSIZE: 35,
EPROTONOSUPPORT: 66,
ESOCKTNOSUPPORT: 137,
EADDRNOTAVAIL: 4,
ENETRESET: 39,
EISCONN: 30,
ENOTCONN: 53,
ETOOMANYREFS: 141,
EUSERS: 136,
EDQUOT: 19,
ESTALE: 72,
ENOTSUP: 138,
ENOMEDIUM: 148,
EILSEQ: 25,
EOVERFLOW: 61,
ECANCELED: 11,
ENOTRECOVERABLE: 56,
EOWNERDEAD: 62,
ESTRPIPE: 135,
};
function _emscripten_futex_wake(addr, count) {
if (addr <= 0 ||
addr > GROWABLE_HEAP_I8().length ||
addr & (3 != 0) ||
count < 0)
return -28;
if (count == 0)
return 0;
if (count >= 2147483647)
count = Infinity;
var mainThreadWaitAddress = Atomics.load(GROWABLE_HEAP_I32(), PThread.mainThreadFutex >> 2);
var mainThreadWoken = 0;
if (mainThreadWaitAddress == addr) {
var loadedAddr = Atomics.compareExchange(GROWABLE_HEAP_I32(), PThread.mainThreadFutex >> 2, mainThreadWaitAddress, 0);
if (loadedAddr == mainThreadWaitAddress) {
--count;
mainThreadWoken = 1;
if (count <= 0)
return 1;
}
}
var ret = Atomics.notify(GROWABLE_HEAP_I32(), addr >> 2, count);
if (ret >= 0)
return ret + mainThreadWoken;
throw "Atomics.notify returned an unexpected value " + ret;
}
Module["_emscripten_futex_wake"] = _emscripten_futex_wake;
function killThread(pthread_ptr) {
if (ENVIRONMENT_IS_PTHREAD)
throw "Internal Error! killThread() can only ever be called from main application thread!";
if (!pthread_ptr)
throw "Internal Error! Null pthread_ptr in killThread!";
GROWABLE_HEAP_I32()[(pthread_ptr + 12) >> 2] = 0;
var pthread = PThread.pthreads[pthread_ptr];
pthread.worker.terminate();
PThread.freeThreadData(pthread);
PThread.runningWorkers.splice(PThread.runningWorkers.indexOf(pthread.worker), 1);
pthread.worker.pthread = undefined;
}
function cancelThread(pthread_ptr) {
if (ENVIRONMENT_IS_PTHREAD)
throw "Internal Error! cancelThread() can only ever be called from main application thread!";
if (!pthread_ptr)
throw "Internal Error! Null pthread_ptr in cancelThread!";
var pthread = PThread.pthreads[pthread_ptr];
pthread.worker.postMessage({
cmd: "cancel",
});
}
function cleanupThread(pthread_ptr) {
if (ENVIRONMENT_IS_PTHREAD)
throw "Internal Error! cleanupThread() can only ever be called from main application thread!";
if (!pthread_ptr)
throw "Internal Error! Null pthread_ptr in cleanupThread!";
GROWABLE_HEAP_I32()[(pthread_ptr + 12) >> 2] = 0;
var pthread = PThread.pthreads[pthread_ptr];
if (pthread) {
var worker = pthread.worker;
PThread.returnWorkerToPool(worker);
}
}
var PThread = {
MAIN_THREAD_ID: 1,
mainThreadInfo: {
schedPolicy: 0,
schedPrio: 0,
},
unusedWorkers: [],
runningWorkers: [],
initMainThreadBlock: function () { },
initRuntime: function () {
PThread.mainThreadBlock = _malloc(232);
for (var i = 0; i < 232 / 4; ++i)
GROWABLE_HEAP_U32()[PThread.mainThreadBlock / 4 + i] = 0;
GROWABLE_HEAP_I32()[(PThread.mainThreadBlock + 12) >> 2] =
PThread.mainThreadBlock;
var headPtr = PThread.mainThreadBlock + 156;
GROWABLE_HEAP_I32()[headPtr >> 2] = headPtr;
var tlsMemory = _malloc(512);
for (var i = 0; i < 128; ++i)
GROWABLE_HEAP_U32()[tlsMemory / 4 + i] = 0;
Atomics.store(GROWABLE_HEAP_U32(), (PThread.mainThreadBlock + 104) >> 2, tlsMemory);
Atomics.store(GROWABLE_HEAP_U32(), (PThread.mainThreadBlock + 40) >> 2, PThread.mainThreadBlock);
Atomics.store(GROWABLE_HEAP_U32(), (PThread.mainThreadBlock + 44) >> 2, 42);
PThread.initShared();
registerPthreadPtr(PThread.mainThreadBlock, !ENVIRONMENT_IS_WORKER, 1);
_emscripten_register_main_browser_thread_id(PThread.mainThreadBlock);
},
initWorker: function () {
PThread.initShared();
},
initShared: function () {
PThread.mainThreadFutex = _main_thread_futex;
},
pthreads: {},
threadExitHandlers: [],
setThreadStatus: function () { },
runExitHandlers: function () {
while (PThread.threadExitHandlers.length > 0) {
PThread.threadExitHandlers.pop()();
}
if (ENVIRONMENT_IS_PTHREAD && threadInfoStruct)
___pthread_tsd_run_dtors();
},
threadExit: function (exitCode) {
var tb = _pthread_self();
if (tb) {
Atomics.store(GROWABLE_HEAP_U32(), (tb + 4) >> 2, exitCode);
Atomics.store(GROWABLE_HEAP_U32(), (tb + 0) >> 2, 1);
Atomics.store(GROWABLE_HEAP_U32(), (tb + 60) >> 2, 1);
Atomics.store(GROWABLE_HEAP_U32(), (tb + 64) >> 2, 0);
PThread.runExitHandlers();
_emscripten_futex_wake(tb + 0, 2147483647);
registerPthreadPtr(0, 0, 0);
threadInfoStruct = 0;
if (ENVIRONMENT_IS_PTHREAD) {
postMessage({
cmd: "exit",
});
}
}
},
threadCancel: function () {
PThread.runExitHandlers();
Atomics.store(GROWABLE_HEAP_U32(), (threadInfoStruct + 4) >> 2, -1);
Atomics.store(GROWABLE_HEAP_U32(), (threadInfoStruct + 0) >> 2, 1);
_emscripten_futex_wake(threadInfoStruct + 0, 2147483647);
threadInfoStruct = selfThreadId = 0;
registerPthreadPtr(0, 0, 0);
postMessage({
cmd: "cancelDone",
});
},
terminateAllThreads: function () {
for (var t in PThread.pthreads) {
var pthread = PThread.pthreads[t];
if (pthread && pthread.worker) {
PThread.returnWorkerToPool(pthread.worker);
}
}
PThread.pthreads = {};
for (var i = 0; i < PThread.unusedWorkers.length; ++i) {
var worker = PThread.unusedWorkers[i];
worker.terminate();
}
PThread.unusedWorkers = [];
for (var i = 0; i < PThread.runningWorkers.length; ++i) {
var worker = PThread.runningWorkers[i];
var pthread = worker.pthread;
PThread.freeThreadData(pthread);
worker.terminate();
}
PThread.runningWorkers = [];
},
freeThreadData: function (pthread) {
if (!pthread)
return;
if (pthread.threadInfoStruct) {
var tlsMemory = GROWABLE_HEAP_I32()[(pthread.threadInfoStruct + 104) >> 2];
GROWABLE_HEAP_I32()[(pthread.threadInfoStruct + 104) >> 2] = 0;
_free(tlsMemory);
_free(pthread.threadInfoStruct);
}
pthread.threadInfoStruct = 0;
if (pthread.allocatedOwnStack && pthread.stackBase)
_free(pthread.stackBase);
pthread.stackBase = 0;
if (pthread.worker)
pthread.worker.pthread = null;
},
returnWorkerToPool: function (worker) {
delete PThread.pthreads[worker.pthread.thread];
PThread.unusedWorkers.push(worker);
PThread.runningWorkers.splice(PThread.runningWorkers.indexOf(worker), 1);
PThread.freeThreadData(worker.pthread);
worker.pthread = undefined;
},
receiveObjectTransfer: function (data) { },
loadWasmModuleToWorker: function (worker, onFinishedLoading) {
worker.onmessage = function (e) {
var d = e["data"];
var cmd = d["cmd"];
if (worker.pthread)
PThread.currentProxiedOperationCallerThread =
worker.pthread.threadInfoStruct;
if (d["targetThread"] && d["targetThread"] != _pthread_self()) {
var thread = PThread.pthreads[d.targetThread];
if (thread) {
thread.worker.postMessage(e.data, d["transferList"]);
}
else {
console.error('Internal error! Worker sent a message "' +
cmd +
'" to target pthread ' +
d["targetThread"] +
", but that thread no longer exists!");
}
PThread.currentProxiedOperationCallerThread = undefined;
return;
}
if (cmd === "processQueuedMainThreadWork") {
_emscripten_main_thread_process_queued_calls();
}
else if (cmd === "spawnThread") {
spawnThread(e.data);
}
else if (cmd === "cleanupThread") {
cleanupThread(d["thread"]);
}
else if (cmd === "killThread") {
killThread(d["thread"]);
}
else if (cmd === "cancelThread") {
cancelThread(d["thread"]);
}
else if (cmd === "loaded") {
worker.loaded = true;
if (onFinishedLoading)
onFinishedLoading(worker);
if (worker.runPthread) {
worker.runPthread();
delete worker.runPthread;
}
}
else if (cmd === "print") {
out("Thread " + d["threadId"] + ": " + d["text"]);
}
else if (cmd === "printErr") {
err("Thread " + d["threadId"] + ": " + d["text"]);
}
else if (cmd === "alert") {
alert("Thread " + d["threadId"] + ": " + d["text"]);
}
else if (cmd === "exit") {
var detached = worker.pthread &&
Atomics.load(GROWABLE_HEAP_U32(), (worker.pthread.thread + 68) >> 2);
if (detached) {
PThread.returnWorkerToPool(worker);
}
}
else if (cmd === "cancelDone") {
PThread.returnWorkerToPool(worker);
}
else if (cmd === "objectTransfer") {
PThread.receiveObjectTransfer(e.data);
}
else if (e.data.target === "setimmediate") {
worker.postMessage(e.data);
}
else {
err("worker sent an unknown command " + cmd);
}
PThread.currentProxiedOperationCallerThread = undefined;
};
worker.onerror = function (e) {
err("pthread sent an error! " +
e.filename +
":" +
e.lineno +
": " +
e.message);
};
worker.postMessage({
cmd: "load",
urlOrBlob: Module["mainScriptUrlOrBlob"] || _scriptDir,
wasmMemory: wasmMemory,
wasmModule: wasmModule,
});
},
allocateUnusedWorker: function () {
var pthreadMainJs = locateFile("bergamot-translator-worker.worker.js");
PThread.unusedWorkers.push(new Worker(pthreadMainJs));
},
getNewWorker: function () {
if (PThread.unusedWorkers.length == 0) {
PThread.allocateUnusedWorker();
PThread.loadWasmModuleToWorker(PThread.unusedWorkers[0]);
}
if (PThread.unusedWorkers.length > 0)
return PThread.unusedWorkers.pop();
else
return null;
},
busySpinWait: function (msecs) {
var t = performance.now() + msecs;
while (performance.now() < t) { }
},
};
function establishStackSpace(stackTop, stackMax) {
_emscripten_stack_set_limits(stackTop, stackMax);
stackRestore(stackTop);
}
Module["establishStackSpace"] = establishStackSpace;
function getNoExitRuntime() {
return noExitRuntime;
}
Module["getNoExitRuntime"] = getNoExitRuntime;
function jsStackTrace() {
var error = new Error();
if (!error.stack) {
try {
throw new Error();
}
catch (e) {
error = e;
}
if (!error.stack) {
return "(no stack trace available)";
}
}
return error.stack.toString();
}
function ___assert_fail(condition, filename, line, func) {
abort("Assertion failed: " +
UTF8ToString(condition) +
", at: " +
[
filename ? UTF8ToString(filename) : "unknown filename",
line,
func ? UTF8ToString(func) : "unknown function",
]);
}
var _emscripten_get_now;
if (ENVIRONMENT_IS_PTHREAD) {
_emscripten_get_now = function () {
return performance.now() - Module["__performance_now_clock_drift"];
};
}
else
_emscripten_get_now = function () {
return performance.now();
};
var _emscripten_get_now_is_monotonic = true;
function setErrNo(value) {
GROWABLE_HEAP_I32()[___errno_location() >> 2] = value;
return value;
}
function _clock_gettime(clk_id, tp) {
var now;
if (clk_id === 0) {
now = Date.now();
}
else if ((clk_id === 1 || clk_id === 4) &&
_emscripten_get_now_is_monotonic) {
now = _emscripten_get_now();
}
else {
setErrNo(28);
return -1;
}
GROWABLE_HEAP_I32()[tp >> 2] = (now / 1e3) | 0;
GROWABLE_HEAP_I32()[(tp + 4) >> 2] = ((now % 1e3) * 1e3 * 1e3) | 0;
return 0;
}
function ___clock_gettime(a0, a1) {
return _clock_gettime(a0, a1);
}
var ExceptionInfoAttrs = {
DESTRUCTOR_OFFSET: 0,
REFCOUNT_OFFSET: 4,
TYPE_OFFSET: 8,
CAUGHT_OFFSET: 12,
RETHROWN_OFFSET: 13,
SIZE: 16,
};
function ___cxa_allocate_exception(size) {
return _malloc(size + ExceptionInfoAttrs.SIZE) + ExceptionInfoAttrs.SIZE;
}
function _atexit(func, arg) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(1, 1, func, arg);
}
function ___cxa_atexit(a0, a1) {
return _atexit(a0, a1);
}
function _pthread_cleanup_push(routine, arg) {
PThread.threadExitHandlers.push(function () {
wasmTable.get(routine)(arg);
});
}
function ___cxa_thread_atexit(a0, a1) {
return _pthread_cleanup_push(a0, a1);
}
function ExceptionInfo(excPtr) {
this.excPtr = excPtr;
this.ptr = excPtr - ExceptionInfoAttrs.SIZE;
this.set_type = function (type) {
GROWABLE_HEAP_I32()[(this.ptr + ExceptionInfoAttrs.TYPE_OFFSET) >> 2] = type;
};
this.get_type = function () {
return GROWABLE_HEAP_I32()[(this.ptr + ExceptionInfoAttrs.TYPE_OFFSET) >> 2];
};
this.set_destructor = function (destructor) {
GROWABLE_HEAP_I32()[(this.ptr + ExceptionInfoAttrs.DESTRUCTOR_OFFSET) >> 2] = destructor;
};
this.get_destructor = function () {
return GROWABLE_HEAP_I32()[(this.ptr + ExceptionInfoAttrs.DESTRUCTOR_OFFSET) >> 2];
};
this.set_refcount = function (refcount) {
GROWABLE_HEAP_I32()[(this.ptr + ExceptionInfoAttrs.REFCOUNT_OFFSET) >> 2] = refcount;
};
this.set_caught = function (caught) {
caught = caught ? 1 : 0;
GROWABLE_HEAP_I8()[(this.ptr + ExceptionInfoAttrs.CAUGHT_OFFSET) >> 0] = caught;
};
this.get_caught = function () {
return (GROWABLE_HEAP_I8()[(this.ptr + ExceptionInfoAttrs.CAUGHT_OFFSET) >> 0] !=
0);
};
this.set_rethrown = function (rethrown) {
rethrown = rethrown ? 1 : 0;
GROWABLE_HEAP_I8()[(this.ptr + ExceptionInfoAttrs.RETHROWN_OFFSET) >> 0] = rethrown;
};
this.get_rethrown = function () {
return (GROWABLE_HEAP_I8()[(this.ptr + ExceptionInfoAttrs.RETHROWN_OFFSET) >> 0] != 0);
};
this.init = function (type, destructor) {
this.set_type(type);
this.set_destructor(destructor);
this.set_refcount(0);
this.set_caught(false);
this.set_rethrown(false);
};
this.add_ref = function () {
Atomics.add(GROWABLE_HEAP_I32(), (this.ptr + ExceptionInfoAttrs.REFCOUNT_OFFSET) >> 2, 1);
};
this.release_ref = function () {
var prev = Atomics.sub(GROWABLE_HEAP_I32(), (this.ptr + ExceptionInfoAttrs.REFCOUNT_OFFSET) >> 2, 1);
return prev === 1;
};
}
var exceptionLast = 0;
var uncaughtExceptionCount = 0;
function ___cxa_throw(ptr, type, destructor) {
var info = new ExceptionInfo(ptr);
info.init(type, destructor);
exceptionLast = ptr;
uncaughtExceptionCount++;
throw ptr;
}
var PATH = {
splitPath: function (filename) {
var splitPathRe = /^(\/?|)([\s\S]*?)((?:\.{1,2}|[^\/]+?|)(\.[^.\/]*|))(?:[\/]*)$/;
return splitPathRe.exec(filename).slice(1);
},
normalizeArray: function (parts, allowAboveRoot) {
var up = 0;
for (var i = parts.length - 1; i >= 0; i--) {
var last = parts[i];
if (last === ".") {
parts.splice(i, 1);
}
else if (last === "..") {
parts.splice(i, 1);
up++;
}
else if (up) {
parts.splice(i, 1);
up--;
}
}
if (allowAboveRoot) {
for (; up; up--) {
parts.unshift("..");
}
}
return parts;
},
normalize: function (path) {
var isAbsolute = path.charAt(0) === "/", trailingSlash = path.substr(-1) === "/";
path = PATH.normalizeArray(path.split("/").filter(function (p) {
return !!p;
}), !isAbsolute).join("/");
if (!path && !isAbsolute) {
path = ".";
}
if (path && trailingSlash) {
path += "/";
}
return (isAbsolute ? "/" : "") + path;
},
dirname: function (path) {
var result = PATH.splitPath(path), root = result[0], dir = result[1];
if (!root && !dir) {
return ".";
}
if (dir) {
dir = dir.substr(0, dir.length - 1);
}
return root + dir;
},
basename: function (path) {
if (path === "/")
return "/";
path = PATH.normalize(path);
path = path.replace(/\/$/, "");
var lastSlash = path.lastIndexOf("/");
if (lastSlash === -1)
return path;
return path.substr(lastSlash + 1);
},
extname: function (path) {
return PATH.splitPath(path)[3];
},
join: function () {
var paths = Array.prototype.slice.call(arguments, 0);
return PATH.normalize(paths.join("/"));
},
join2: function (l, r) {
return PATH.normalize(l + "/" + r);
},
};
function getRandomDevice() {
if (typeof crypto === "object" &&
typeof crypto["getRandomValues"] === "function") {
var randomBuffer = new Uint8Array(1);
return function () {
crypto.getRandomValues(randomBuffer);
return randomBuffer[0];
};
}
else
return function () {
abort("randomDevice");
};
}
var PATH_FS = {
resolve: function () {
var resolvedPath = "", resolvedAbsolute = false;
for (var i = arguments.length - 1; i >= -1 && !resolvedAbsolute; i--) {
var path = i >= 0 ? arguments[i] : FS.cwd();
if (typeof path !== "string") {
throw new TypeError("Arguments to path.resolve must be strings");
}
else if (!path) {
return "";
}
resolvedPath = path + "/" + resolvedPath;
resolvedAbsolute = path.charAt(0) === "/";
}
resolvedPath = PATH.normalizeArray(resolvedPath.split("/").filter(function (p) {
return !!p;
}), !resolvedAbsolute).join("/");
return (resolvedAbsolute ? "/" : "") + resolvedPath || ".";
},
relative: function (from, to) {
from = PATH_FS.resolve(from).substr(1);
to = PATH_FS.resolve(to).substr(1);
function trim(arr) {
var start = 0;
for (; start < arr.length; start++) {
if (arr[start] !== "")
break;
}
var end = arr.length - 1;
for (; end >= 0; end--) {
if (arr[end] !== "")
break;
}
if (start > end)
return [];
return arr.slice(start, end - start + 1);
}
var fromParts = trim(from.split("/"));
var toParts = trim(to.split("/"));
var length = Math.min(fromParts.length, toParts.length);
var samePartsLength = length;
for (var i = 0; i < length; i++) {
if (fromParts[i] !== toParts[i]) {
samePartsLength = i;
break;
}
}
var outputParts = [];
for (var i = samePartsLength; i < fromParts.length; i++) {
outputParts.push("..");
}
outputParts = outputParts.concat(toParts.slice(samePartsLength));
return outputParts.join("/");
},
};
var TTY = {
ttys: [],
init: function () { },
shutdown: function () { },
register: function (dev, ops) {
TTY.ttys[dev] = {
input: [],
output: [],
ops: ops,
};
FS.registerDevice(dev, TTY.stream_ops);
},
stream_ops: {
open: function (stream) {
var tty = TTY.ttys[stream.node.rdev];
if (!tty) {
throw new FS.ErrnoError(43);
}
stream.tty = tty;
stream.seekable = false;
},
close: function (stream) {
stream.tty.ops.flush(stream.tty);
},
flush: function (stream) {
stream.tty.ops.flush(stream.tty);
},
read: function (stream, buffer, offset, length, pos) {
if (!stream.tty || !stream.tty.ops.get_char) {
throw new FS.ErrnoError(60);
}
var bytesRead = 0;
for (var i = 0; i < length; i++) {
var result;
try {
result = stream.tty.ops.get_char(stream.tty);
}
catch (e) {
throw new FS.ErrnoError(29);
}
if (result === undefined && bytesRead === 0) {
throw new FS.ErrnoError(6);
}
if (result === null || result === undefined)
break;
bytesRead++;
buffer[offset + i] = result;
}
if (bytesRead) {
stream.node.timestamp = Date.now();
}
return bytesRead;
},
write: function (stream, buffer, offset, length, pos) {
if (!stream.tty || !stream.tty.ops.put_char) {
throw new FS.ErrnoError(60);
}
try {
for (var i = 0; i < length; i++) {
stream.tty.ops.put_char(stream.tty, buffer[offset + i]);
}
}
catch (e) {
throw new FS.ErrnoError(29);
}
if (length) {
stream.node.timestamp = Date.now();
}
return i;
},
},
default_tty_ops: {
get_char: function (tty) {
if (!tty.input.length) {
var result = null;
if (typeof window != "undefined" &&
typeof window.prompt == "function") {
result = window.prompt("Input: ");
if (result !== null) {
result += "\n";
}
}
else if (typeof readline == "function") {
result = readline();
if (result !== null) {
result += "\n";
}
}
if (!result) {
return null;
}
tty.input = intArrayFromString(result, true);
}
return tty.input.shift();
},
put_char: function (tty, val) {
if (val === null || val === 10) {
out(UTF8ArrayToString(tty.output, 0));
tty.output = [];
}
else {
if (val != 0)
tty.output.push(val);
}
},
flush: function (tty) {
if (tty.output && tty.output.length > 0) {
out(UTF8ArrayToString(tty.output, 0));
tty.output = [];
}
},
},
default_tty1_ops: {
put_char: function (tty, val) {
if (val === null || val === 10) {
err(UTF8ArrayToString(tty.output, 0));
tty.output = [];
}
else {
if (val != 0)
tty.output.push(val);
}
},
flush: function (tty) {
if (tty.output && tty.output.length > 0) {
err(UTF8ArrayToString(tty.output, 0));
tty.output = [];
}
},
},
};
function mmapAlloc(size) {
var alignedSize = alignMemory(size, 16384);
var ptr = _malloc(alignedSize);
while (size < alignedSize)
GROWABLE_HEAP_I8()[ptr + size++] = 0;
return ptr;
}
var MEMFS = {
ops_table: null,
mount: function (mount) {
return MEMFS.createNode(null, "/", 16384 | 511, 0);
},
createNode: function (parent, name, mode, dev) {
if (FS.isBlkdev(mode) || FS.isFIFO(mode)) {
throw new FS.ErrnoError(63);
}
if (!MEMFS.ops_table) {
MEMFS.ops_table = {
dir: {
node: {
getattr: MEMFS.node_ops.getattr,
setattr: MEMFS.node_ops.setattr,
lookup: MEMFS.node_ops.lookup,
mknod: MEMFS.node_ops.mknod,
rename: MEMFS.node_ops.rename,
unlink: MEMFS.node_ops.unlink,
rmdir: MEMFS.node_ops.rmdir,
readdir: MEMFS.node_ops.readdir,
symlink: MEMFS.node_ops.symlink,
},
stream: {
llseek: MEMFS.stream_ops.llseek,
},
},
file: {
node: {
getattr: MEMFS.node_ops.getattr,
setattr: MEMFS.node_ops.setattr,
},
stream: {
llseek: MEMFS.stream_ops.llseek,
read: MEMFS.stream_ops.read,
write: MEMFS.stream_ops.write,
allocate: MEMFS.stream_ops.allocate,
mmap: MEMFS.stream_ops.mmap,
msync: MEMFS.stream_ops.msync,
},
},
link: {
node: {
getattr: MEMFS.node_ops.getattr,
setattr: MEMFS.node_ops.setattr,
readlink: MEMFS.node_ops.readlink,
},
stream: {},
},
chrdev: {
node: {
getattr: MEMFS.node_ops.getattr,
setattr: MEMFS.node_ops.setattr,
},
stream: FS.chrdev_stream_ops,
},
};
}
var node = FS.createNode(parent, name, mode, dev);
if (FS.isDir(node.mode)) {
node.node_ops = MEMFS.ops_table.dir.node;
node.stream_ops = MEMFS.ops_table.dir.stream;
node.contents = {};
}
else if (FS.isFile(node.mode)) {
node.node_ops = MEMFS.ops_table.file.node;
node.stream_ops = MEMFS.ops_table.file.stream;
node.usedBytes = 0;
node.contents = null;
}
else if (FS.isLink(node.mode)) {
node.node_ops = MEMFS.ops_table.link.node;
node.stream_ops = MEMFS.ops_table.link.stream;
}
else if (FS.isChrdev(node.mode)) {
node.node_ops = MEMFS.ops_table.chrdev.node;
node.stream_ops = MEMFS.ops_table.chrdev.stream;
}
node.timestamp = Date.now();
if (parent) {
parent.contents[name] = node;
}
return node;
},
getFileDataAsRegularArray: function (node) {
if (node.contents && node.contents.subarray) {
var arr = [];
for (var i = 0; i < node.usedBytes; ++i)
arr.push(node.contents[i]);
return arr;
}
return node.contents;
},
getFileDataAsTypedArray: function (node) {
if (!node.contents)
return new Uint8Array(0);
if (node.contents.subarray)
return node.contents.subarray(0, node.usedBytes);
return new Uint8Array(node.contents);
},
expandFileStorage: function (node, newCapacity) {
var prevCapacity = node.contents ? node.contents.length : 0;
if (prevCapacity >= newCapacity)
return;
var CAPACITY_DOUBLING_MAX = 1024 * 1024;
newCapacity = Math.max(newCapacity, (prevCapacity * (prevCapacity < CAPACITY_DOUBLING_MAX ? 2 : 1.125)) >>> 0);
if (prevCapacity != 0)
newCapacity = Math.max(newCapacity, 256);
var oldContents = node.contents;
node.contents = new Uint8Array(newCapacity);
if (node.usedBytes > 0)
node.contents.set(oldContents.subarray(0, node.usedBytes), 0);
return;
},
resizeFileStorage: function (node, newSize) {
if (node.usedBytes == newSize)
return;
if (newSize == 0) {
node.contents = null;
node.usedBytes = 0;
return;
}
if (!node.contents || node.contents.subarray) {
var oldContents = node.contents;
node.contents = new Uint8Array(newSize);
if (oldContents) {
node.contents.set(oldContents.subarray(0, Math.min(newSize, node.usedBytes)));
}
node.usedBytes = newSize;
return;
}
if (!node.contents)
node.contents = [];
if (node.contents.length > newSize)
node.contents.length = newSize;
else
while (node.contents.length < newSize)
node.contents.push(0);
node.usedBytes = newSize;
},
node_ops: {
getattr: function (node) {
var attr = {};
attr.dev = FS.isChrdev(node.mode) ? node.id : 1;
attr.ino = node.id;
attr.mode = node.mode;
attr.nlink = 1;
attr.uid = 0;
attr.gid = 0;
attr.rdev = node.rdev;
if (FS.isDir(node.mode)) {
attr.size = 4096;
}
else if (FS.isFile(node.mode)) {
attr.size = node.usedBytes;
}
else if (FS.isLink(node.mode)) {
attr.size = node.link.length;
}
else {
attr.size = 0;
}
attr.atime = new Date(node.timestamp);
attr.mtime = new Date(node.timestamp);
attr.ctime = new Date(node.timestamp);
attr.blksize = 4096;
attr.blocks = Math.ceil(attr.size / attr.blksize);
return attr;
},
setattr: function (node, attr) {
if (attr.mode !== undefined) {
node.mode = attr.mode;
}
if (attr.timestamp !== undefined) {
node.timestamp = attr.timestamp;
}
if (attr.size !== undefined) {
MEMFS.resizeFileStorage(node, attr.size);
}
},
lookup: function (parent, name) {
throw FS.genericErrors[44];
},
mknod: function (parent, name, mode, dev) {
return MEMFS.createNode(parent, name, mode, dev);
},
rename: function (old_node, new_dir, new_name) {
if (FS.isDir(old_node.mode)) {
var new_node;
try {
new_node = FS.lookupNode(new_dir, new_name);
}
catch (e) { }
if (new_node) {
for (var i in new_node.contents) {
throw new FS.ErrnoError(55);
}
}
}
delete old_node.parent.contents[old_node.name];
old_node.name = new_name;
new_dir.contents[new_name] = old_node;
old_node.parent = new_dir;
},
unlink: function (parent, name) {
delete parent.contents[name];
},
rmdir: function (parent, name) {
var node = FS.lookupNode(parent, name);
for (var i in node.contents) {
throw new FS.ErrnoError(55);
}
delete parent.contents[name];
},
readdir: function (node) {
var entries = [".", ".."];
for (var key in node.contents) {
if (!node.contents.hasOwnProperty(key)) {
continue;
}
entries.push(key);
}
return entries;
},
symlink: function (parent, newname, oldpath) {
var node = MEMFS.createNode(parent, newname, 511 | 40960, 0);
node.link = oldpath;
return node;
},
readlink: function (node) {
if (!FS.isLink(node.mode)) {
throw new FS.ErrnoError(28);
}
return node.link;
},
},
stream_ops: {
read: function (stream, buffer, offset, length, position) {
var contents = stream.node.contents;
if (position >= stream.node.usedBytes)
return 0;
var size = Math.min(stream.node.usedBytes - position, length);
if (size > 8 && contents.subarray) {
buffer.set(contents.subarray(position, position + size), offset);
}
else {
for (var i = 0; i < size; i++)
buffer[offset + i] = contents[position + i];
}
return size;
},
write: function (stream, buffer, offset, length, position, canOwn) {
if (buffer.buffer === GROWABLE_HEAP_I8().buffer) {
canOwn = false;
}
if (!length)
return 0;
var node = stream.node;
node.timestamp = Date.now();
if (buffer.subarray && (!node.contents || node.contents.subarray)) {
if (canOwn) {
node.contents = buffer.subarray(offset, offset + length);
node.usedBytes = length;
return length;
}
else if (node.usedBytes === 0 && position === 0) {
node.contents = buffer.slice(offset, offset + length);
node.usedBytes = length;
return length;
}
else if (position + length <= node.usedBytes) {
node.contents.set(buffer.subarray(offset, offset + length), position);
return length;
}
}
MEMFS.expandFileStorage(node, position + length);
if (node.contents.subarray && buffer.subarray) {
node.contents.set(buffer.subarray(offset, offset + length), position);
}
else {
for (var i = 0; i < length; i++) {
node.contents[position + i] = buffer[offset + i];
}
}
node.usedBytes = Math.max(node.usedBytes, position + length);
return length;
},
llseek: function (stream, offset, whence) {
var position = offset;
if (whence === 1) {
position += stream.position;
}
else if (whence === 2) {
if (FS.isFile(stream.node.mode)) {
position += stream.node.usedBytes;
}
}
if (position < 0) {
throw new FS.ErrnoError(28);
}
return position;
},
allocate: function (stream, offset, length) {
MEMFS.expandFileStorage(stream.node, offset + length);
stream.node.usedBytes = Math.max(stream.node.usedBytes, offset + length);
},
mmap: function (stream, address, length, position, prot, flags) {
assert(address === 0);
if (!FS.isFile(stream.node.mode)) {
throw new FS.ErrnoError(43);
}
var ptr;
var allocated;
var contents = stream.node.contents;
if (!(flags & 2) && contents.buffer === buffer) {
allocated = false;
ptr = contents.byteOffset;
}
else {
if (position > 0 || position + length < contents.length) {
if (contents.subarray) {
contents = contents.subarray(position, position + length);
}
else {
contents = Array.prototype.slice.call(contents, position, position + length);
}
}
allocated = true;
ptr = mmapAlloc(length);
if (!ptr) {
throw new FS.ErrnoError(48);
}
GROWABLE_HEAP_I8().set(contents, ptr);
}
return {
ptr: ptr,
allocated: allocated,
};
},
msync: function (stream, buffer, offset, length, mmapFlags) {
if (!FS.isFile(stream.node.mode)) {
throw new FS.ErrnoError(43);
}
if (mmapFlags & 2) {
return 0;
}
var bytesWritten = MEMFS.stream_ops.write(stream, buffer, 0, length, offset, false);
return 0;
},
},
};
var FS = {
root: null,
mounts: [],
devices: {},
streams: [],
nextInode: 1,
nameTable: null,
currentPath: "/",
initialized: false,
ignorePermissions: true,
trackingDelegate: {},
tracking: {
openFlags: {
READ: 1,
WRITE: 2,
},
},
ErrnoError: null,
genericErrors: {},
filesystems: null,
syncFSRequests: 0,
lookupPath: function (path, opts) {
path = PATH_FS.resolve(FS.cwd(), path);
opts = opts || {};
if (!path)
return {
path: "",
node: null,
};
var defaults = {
follow_mount: true,
recurse_count: 0,
};
for (var key in defaults) {
if (opts[key] === undefined) {
opts[key] = defaults[key];
}
}
if (opts.recurse_count > 8) {
throw new FS.ErrnoError(32);
}
var parts = PATH.normalizeArray(path.split("/").filter(function (p) {
return !!p;
}), false);
var current = FS.root;
var current_path = "/";
for (var i = 0; i < parts.length; i++) {
var islast = i === parts.length - 1;
if (islast && opts.parent) {
break;
}
current = FS.lookupNode(current, parts[i]);
current_path = PATH.join2(current_path, parts[i]);
if (FS.isMountpoint(current)) {
if (!islast || (islast && opts.follow_mount)) {
current = current.mounted.root;
}
}
if (!islast || opts.follow) {
var count = 0;
while (FS.isLink(current.mode)) {
var link = FS.readlink(current_path);
current_path = PATH_FS.resolve(PATH.dirname(current_path), link);
var lookup = FS.lookupPath(current_path, {
recurse_count: opts.recurse_count,
});
current = lookup.node;
if (count++ > 40) {
throw new FS.ErrnoError(32);
}
}
}
}
return {
path: current_path,
node: current,
};
},
getPath: function (node) {
var path;
while (true) {
if (FS.isRoot(node)) {
var mount = node.mount.mountpoint;
if (!path)
return mount;
return mount[mount.length - 1] !== "/"
? mount + "/" + path
: mount + path;
}
path = path ? node.name + "/" + path : node.name;
node = node.parent;
}
},
hashName: function (parentid, name) {
var hash = 0;
for (var i = 0; i < name.length; i++) {
hash = ((hash << 5) - hash + name.charCodeAt(i)) | 0;
}
return ((parentid + hash) >>> 0) % FS.nameTable.length;
},
hashAddNode: function (node) {
var hash = FS.hashName(node.parent.id, node.name);
node.name_next = FS.nameTable[hash];
FS.nameTable[hash] = node;
},
hashRemoveNode: function (node) {
var hash = FS.hashName(node.parent.id, node.name);
if (FS.nameTable[hash] === node) {
FS.nameTable[hash] = node.name_next;
}
else {
var current = FS.nameTable[hash];
while (current) {
if (current.name_next === node) {
current.name_next = node.name_next;
break;
}
current = current.name_next;
}
}
},
lookupNode: function (parent, name) {
var errCode = FS.mayLookup(parent);
if (errCode) {
throw new FS.ErrnoError(errCode, parent);
}
var hash = FS.hashName(parent.id, name);
for (var node = FS.nameTable[hash]; node; node = node.name_next) {
var nodeName = node.name;
if (node.parent.id === parent.id && nodeName === name) {
return node;
}
}
return FS.lookup(parent, name);
},
createNode: function (parent, name, mode, rdev) {
var node = new FS.FSNode(parent, name, mode, rdev);
FS.hashAddNode(node);
return node;
},
destroyNode: function (node) {
FS.hashRemoveNode(node);
},
isRoot: function (node) {
return node === node.parent;
},
isMountpoint: function (node) {
return !!node.mounted;
},
isFile: function (mode) {
return (mode & 61440) === 32768;
},
isDir: function (mode) {
return (mode & 61440) === 16384;
},
isLink: function (mode) {
return (mode & 61440) === 40960;
},
isChrdev: function (mode) {
return (mode & 61440) === 8192;
},
isBlkdev: function (mode) {
return (mode & 61440) === 24576;
},
isFIFO: function (mode) {
return (mode & 61440) === 4096;
},
isSocket: function (mode) {
return (mode & 49152) === 49152;
},
flagModes: {
r: 0,
"r+": 2,
w: 577,
"w+": 578,
a: 1089,
"a+": 1090,
},
modeStringToFlags: function (str) {
var flags = FS.flagModes[str];
if (typeof flags === "undefined") {
throw new Error("Unknown file open mode: " + str);
}
return flags;
},
flagsToPermissionString: function (flag) {
var perms = ["r", "w", "rw"][flag & 3];
if (flag & 512) {
perms += "w";
}
return perms;
},
nodePermissions: function (node, perms) {
if (FS.ignorePermissions) {
return 0;
}
if (perms.indexOf("r") !== -1 && !(node.mode & 292)) {
return 2;
}
else if (perms.indexOf("w") !== -1 && !(node.mode & 146)) {
return 2;
}
else if (perms.indexOf("x") !== -1 && !(node.mode & 73)) {
return 2;
}
return 0;
},
mayLookup: function (dir) {
var errCode = FS.nodePermissions(dir, "x");
if (errCode)
return errCode;
if (!dir.node_ops.lookup)
return 2;
return 0;
},
mayCreate: function (dir, name) {
try {
var node = FS.lookupNode(dir, name);
return 20;
}
catch (e) { }
return FS.nodePermissions(dir, "wx");
},
mayDelete: function (dir, name, isdir) {
var node;
try {
node = FS.lookupNode(dir, name);
}
catch (e) {
return e.errno;
}
var errCode = FS.nodePermissions(dir, "wx");
if (errCode) {
return errCode;
}
if (isdir) {
if (!FS.isDir(node.mode)) {
return 54;
}
if (FS.isRoot(node) || FS.getPath(node) === FS.cwd()) {
return 10;
}
}
else {
if (FS.isDir(node.mode)) {
return 31;
}
}
return 0;
},
mayOpen: function (node, flags) {
if (!node) {
return 44;
}
if (FS.isLink(node.mode)) {
return 32;
}
else if (FS.isDir(node.mode)) {
if (FS.flagsToPermissionString(flags) !== "r" || flags & 512) {
return 31;
}
}
return FS.nodePermissions(node, FS.flagsToPermissionString(flags));
},
MAX_OPEN_FDS: 4096,
nextfd: function (fd_start, fd_end) {
fd_start = fd_start || 0;
fd_end = fd_end || FS.MAX_OPEN_FDS;
for (var fd = fd_start; fd <= fd_end; fd++) {
if (!FS.streams[fd]) {
return fd;
}
}
throw new FS.ErrnoError(33);
},
getStream: function (fd) {
return FS.streams[fd];
},
createStream: function (stream, fd_start, fd_end) {
if (!FS.FSStream) {
FS.FSStream = function () { };
FS.FSStream.prototype = {
object: {
get: function () {
return this.node;
},
set: function (val) {
this.node = val;
},
},
isRead: {
get: function () {
return (this.flags & 2097155) !== 1;
},
},
isWrite: {
get: function () {
return (this.flags & 2097155) !== 0;
},
},
isAppend: {
get: function () {
return this.flags & 1024;
},
},
};
}
var newStream = new FS.FSStream();
for (var p in stream) {
newStream[p] = stream[p];
}
stream = newStream;
var fd = FS.nextfd(fd_start, fd_end);
stream.fd = fd;
FS.streams[fd] = stream;
return stream;
},
closeStream: function (fd) {
FS.streams[fd] = null;
},
chrdev_stream_ops: {
open: function (stream) {
var device = FS.getDevice(stream.node.rdev);
stream.stream_ops = device.stream_ops;
if (stream.stream_ops.open) {
stream.stream_ops.open(stream);
}
},
llseek: function () {
throw new FS.ErrnoError(70);
},
},
major: function (dev) {
return dev >> 8;
},
minor: function (dev) {
return dev & 255;
},
makedev: function (ma, mi) {
return (ma << 8) | mi;
},
registerDevice: function (dev, ops) {
FS.devices[dev] = {
stream_ops: ops,
};
},
getDevice: function (dev) {
return FS.devices[dev];
},
getMounts: function (mount) {
var mounts = [];
var check = [mount];
while (check.length) {
var m = check.pop();
mounts.push(m);
check.push.apply(check, m.mounts);
}
return mounts;
},
syncfs: function (populate, callback) {
if (typeof populate === "function") {
callback = populate;
populate = false;
}
FS.syncFSRequests++;
if (FS.syncFSRequests > 1) {
err("warning: " +
FS.syncFSRequests +
" FS.syncfs operations in flight at once, probably just doing extra work");
}
var mounts = FS.getMounts(FS.root.mount);
var completed = 0;
function doCallback(errCode) {
FS.syncFSRequests--;
return callback(errCode);
}
function done(errCode) {
if (errCode) {
if (!done.errored) {
done.errored = true;
return doCallback(errCode);
}
return;
}
if (++completed >= mounts.length) {
doCallback(null);
}
}
mounts.forEach(function (mount) {
if (!mount.type.syncfs) {
return done(null);
}
mount.type.syncfs(mount, populate, done);
});
},
mount: function (type, opts, mountpoint) {
var root = mountpoint === "/";
var pseudo = !mountpoint;
var node;
if (root && FS.root) {
throw new FS.ErrnoError(10);
}
else if (!root && !pseudo) {
var lookup = FS.lookupPath(mountpoint, {
follow_mount: false,
});
mountpoint = lookup.path;
node = lookup.node;
if (FS.isMountpoint(node)) {
throw new FS.ErrnoError(10);
}
if (!FS.isDir(node.mode)) {
throw new FS.ErrnoError(54);
}
}
var mount = {
type: type,
opts: opts,
mountpoint: mountpoint,
mounts: [],
};
var mountRoot = type.mount(mount);
mountRoot.mount = mount;
mount.root = mountRoot;
if (root) {
FS.root = mountRoot;
}
else if (node) {
node.mounted = mount;
if (node.mount) {
node.mount.mounts.push(mount);
}
}
return mountRoot;
},
unmount: function (mountpoint) {
var lookup = FS.lookupPath(mountpoint, {
follow_mount: false,
});
if (!FS.isMountpoint(lookup.node)) {
throw new FS.ErrnoError(28);
}
var node = lookup.node;
var mount = node.mounted;
var mounts = FS.getMounts(mount);
Object.keys(FS.nameTable).forEach(function (hash) {
var current = FS.nameTable[hash];
while (current) {
var next = current.name_next;
if (mounts.indexOf(current.mount) !== -1) {
FS.destroyNode(current);
}
current = next;
}
});
node.mounted = null;
var idx = node.mount.mounts.indexOf(mount);
node.mount.mounts.splice(idx, 1);
},
lookup: function (parent, name) {
return parent.node_ops.lookup(parent, name);
},
mknod: function (path, mode, dev) {
var lookup = FS.lookupPath(path, {
parent: true,
});
var parent = lookup.node;
var name = PATH.basename(path);
if (!name || name === "." || name === "..") {
throw new FS.ErrnoError(28);
}
var errCode = FS.mayCreate(parent, name);
if (errCode) {
throw new FS.ErrnoError(errCode);
}
if (!parent.node_ops.mknod) {
throw new FS.ErrnoError(63);
}
return parent.node_ops.mknod(parent, name, mode, dev);
},
create: function (path, mode) {
mode = mode !== undefined ? mode : 438;
mode &= 4095;
mode |= 32768;
return FS.mknod(path, mode, 0);
},
mkdir: function (path, mode) {
mode = mode !== undefined ? mode : 511;
mode &= 511 | 512;
mode |= 16384;
return FS.mknod(path, mode, 0);
},
mkdirTree: function (path, mode) {
var dirs = path.split("/");
var d = "";
for (var i = 0; i < dirs.length; ++i) {
if (!dirs[i])
continue;
d += "/" + dirs[i];
try {
FS.mkdir(d, mode);
}
catch (e) {
if (e.errno != 20)
throw e;
}
}
},
mkdev: function (path, mode, dev) {
if (typeof dev === "undefined") {
dev = mode;
mode = 438;
}
mode |= 8192;
return FS.mknod(path, mode, dev);
},
symlink: function (oldpath, newpath) {
if (!PATH_FS.resolve(oldpath)) {
throw new FS.ErrnoError(44);
}
var lookup = FS.lookupPath(newpath, {
parent: true,
});
var parent = lookup.node;
if (!parent) {
throw new FS.ErrnoError(44);
}
var newname = PATH.basename(newpath);
var errCode = FS.mayCreate(parent, newname);
if (errCode) {
throw new FS.ErrnoError(errCode);
}
if (!parent.node_ops.symlink) {
throw new FS.ErrnoError(63);
}
return parent.node_ops.symlink(parent, newname, oldpath);
},
rename: function (old_path, new_path) {
var old_dirname = PATH.dirname(old_path);
var new_dirname = PATH.dirname(new_path);
var old_name = PATH.basename(old_path);
var new_name = PATH.basename(new_path);
var lookup, old_dir, new_dir;
lookup = FS.lookupPath(old_path, {
parent: true,
});
old_dir = lookup.node;
lookup = FS.lookupPath(new_path, {
parent: true,
});
new_dir = lookup.node;
if (!old_dir || !new_dir)
throw new FS.ErrnoError(44);
if (old_dir.mount !== new_dir.mount) {
throw new FS.ErrnoError(75);
}
var old_node = FS.lookupNode(old_dir, old_name);
var relative = PATH_FS.relative(old_path, new_dirname);
if (relative.charAt(0) !== ".") {
throw new FS.ErrnoError(28);
}
relative = PATH_FS.relative(new_path, old_dirname);
if (relative.charAt(0) !== ".") {
throw new FS.ErrnoError(55);
}
var new_node;
try {
new_node = FS.lookupNode(new_dir, new_name);
}
catch (e) { }
if (old_node === new_node) {
return;
}
var isdir = FS.isDir(old_node.mode);
var errCode = FS.mayDelete(old_dir, old_name, isdir);
if (errCode) {
throw new FS.ErrnoError(errCode);
}
errCode = new_node
? FS.mayDelete(new_dir, new_name, isdir)
: FS.mayCreate(new_dir, new_name);
if (errCode) {
throw new FS.ErrnoError(errCode);
}
if (!old_dir.node_ops.rename) {
throw new FS.ErrnoError(63);
}
if (FS.isMountpoint(old_node) || (new_node && FS.isMountpoint(new_node))) {
throw new FS.ErrnoError(10);
}
if (new_dir !== old_dir) {
errCode = FS.nodePermissions(old_dir, "w");
if (errCode) {
throw new FS.ErrnoError(errCode);
}
}
try {
if (FS.trackingDelegate["willMovePath"]) {
FS.trackingDelegate["willMovePath"](old_path, new_path);
}
}
catch (e) {
err("FS.trackingDelegate['willMovePath']('" +
old_path +
"', '" +
new_path +
"') threw an exception: " +
e.message);
}
FS.hashRemoveNode(old_node);
try {
old_dir.node_ops.rename(old_node, new_dir, new_name);
}
catch (e) {
throw e;
}
finally {
FS.hashAddNode(old_node);
}
try {
if (FS.trackingDelegate["onMovePath"])
FS.trackingDelegate["onMovePath"](old_path, new_path);
}
catch (e) {
err("FS.trackingDelegate['onMovePath']('" +
old_path +
"', '" +
new_path +
"') threw an exception: " +
e.message);
}
},
rmdir: function (path) {
var lookup = FS.lookupPath(path, {
parent: true,
});
var parent = lookup.node;
var name = PATH.basename(path);
var node = FS.lookupNode(parent, name);
var errCode = FS.mayDelete(parent, name, true);
if (errCode) {
throw new FS.ErrnoError(errCode);
}
if (!parent.node_ops.rmdir) {
throw new FS.ErrnoError(63);
}
if (FS.isMountpoint(node)) {
throw new FS.ErrnoError(10);
}
try {
if (FS.trackingDelegate["willDeletePath"]) {
FS.trackingDelegate["willDeletePath"](path);
}
}
catch (e) {
err("FS.trackingDelegate['willDeletePath']('" +
path +
"') threw an exception: " +
e.message);
}
parent.node_ops.rmdir(parent, name);
FS.destroyNode(node);
try {
if (FS.trackingDelegate["onDeletePath"])
FS.trackingDelegate["onDeletePath"](path);
}
catch (e) {
err("FS.trackingDelegate['onDeletePath']('" +
path +
"') threw an exception: " +
e.message);
}
},
readdir: function (path) {
var lookup = FS.lookupPath(path, {
follow: true,
});
var node = lookup.node;
if (!node.node_ops.readdir) {
throw new FS.ErrnoError(54);
}
return node.node_ops.readdir(node);
},
unlink: function (path) {
var lookup = FS.lookupPath(path, {
parent: true,
});
var parent = lookup.node;
var name = PATH.basename(path);
var node = FS.lookupNode(parent, name);
var errCode = FS.mayDelete(parent, name, false);
if (errCode) {
throw new FS.ErrnoError(errCode);
}
if (!parent.node_ops.unlink) {
throw new FS.ErrnoError(63);
}
if (FS.isMountpoint(node)) {
throw new FS.ErrnoError(10);
}
try {
if (FS.trackingDelegate["willDeletePath"]) {
FS.trackingDelegate["willDeletePath"](path);
}
}
catch (e) {
err("FS.trackingDelegate['willDeletePath']('" +
path +
"') threw an exception: " +
e.message);
}
parent.node_ops.unlink(parent, name);
FS.destroyNode(node);
try {
if (FS.trackingDelegate["onDeletePath"])
FS.trackingDelegate["onDeletePath"](path);
}
catch (e) {
err("FS.trackingDelegate['onDeletePath']('" +
path +
"') threw an exception: " +
e.message);
}
},
readlink: function (path) {
var lookup = FS.lookupPath(path);
var link = lookup.node;
if (!link) {
throw new FS.ErrnoError(44);
}
if (!link.node_ops.readlink) {
throw new FS.ErrnoError(28);
}
return PATH_FS.resolve(FS.getPath(link.parent), link.node_ops.readlink(link));
},
stat: function (path, dontFollow) {
var lookup = FS.lookupPath(path, {
follow: !dontFollow,
});
var node = lookup.node;
if (!node) {
throw new FS.ErrnoError(44);
}
if (!node.node_ops.getattr) {
throw new FS.ErrnoError(63);
}
return node.node_ops.getattr(node);
},
lstat: function (path) {
return FS.stat(path, true);
},
chmod: function (path, mode, dontFollow) {
var node;
if (typeof path === "string") {
var lookup = FS.lookupPath(path, {
follow: !dontFollow,
});
node = lookup.node;
}
else {
node = path;
}
if (!node.node_ops.setattr) {
throw new FS.ErrnoError(63);
}
node.node_ops.setattr(node, {
mode: (mode & 4095) | (node.mode & ~4095),
timestamp: Date.now(),
});
},
lchmod: function (path, mode) {
FS.chmod(path, mode, true);
},
fchmod: function (fd, mode) {
var stream = FS.getStream(fd);
if (!stream) {
throw new FS.ErrnoError(8);
}
FS.chmod(stream.node, mode);
},
chown: function (path, uid, gid, dontFollow) {
var node;
if (typeof path === "string") {
var lookup = FS.lookupPath(path, {
follow: !dontFollow,
});
node = lookup.node;
}
else {
node = path;
}
if (!node.node_ops.setattr) {
throw new FS.ErrnoError(63);
}
node.node_ops.setattr(node, {
timestamp: Date.now(),
});
},
lchown: function (path, uid, gid) {
FS.chown(path, uid, gid, true);
},
fchown: function (fd, uid, gid) {
var stream = FS.getStream(fd);
if (!stream) {
throw new FS.ErrnoError(8);
}
FS.chown(stream.node, uid, gid);
},
truncate: function (path, len) {
if (len < 0) {
throw new FS.ErrnoError(28);
}
var node;
if (typeof path === "string") {
var lookup = FS.lookupPath(path, {
follow: true,
});
node = lookup.node;
}
else {
node = path;
}
if (!node.node_ops.setattr) {
throw new FS.ErrnoError(63);
}
if (FS.isDir(node.mode)) {
throw new FS.ErrnoError(31);
}
if (!FS.isFile(node.mode)) {
throw new FS.ErrnoError(28);
}
var errCode = FS.nodePermissions(node, "w");
if (errCode) {
throw new FS.ErrnoError(errCode);
}
node.node_ops.setattr(node, {
size: len,
timestamp: Date.now(),
});
},
ftruncate: function (fd, len) {
var stream = FS.getStream(fd);
if (!stream) {
throw new FS.ErrnoError(8);
}
if ((stream.flags & 2097155) === 0) {
throw new FS.ErrnoError(28);
}
FS.truncate(stream.node, len);
},
utime: function (path, atime, mtime) {
var lookup = FS.lookupPath(path, {
follow: true,
});
var node = lookup.node;
node.node_ops.setattr(node, {
timestamp: Math.max(atime, mtime),
});
},
open: function (path, flags, mode, fd_start, fd_end) {
if (path === "") {
throw new FS.ErrnoError(44);
}
flags = typeof flags === "string" ? FS.modeStringToFlags(flags) : flags;
mode = typeof mode === "undefined" ? 438 : mode;
if (flags & 64) {
mode = (mode & 4095) | 32768;
}
else {
mode = 0;
}
var node;
if (typeof path === "object") {
node = path;
}
else {
path = PATH.normalize(path);
try {
var lookup = FS.lookupPath(path, {
follow: !(flags & 131072),
});
node = lookup.node;
}
catch (e) { }
}
var created = false;
if (flags & 64) {
if (node) {
if (flags & 128) {
throw new FS.ErrnoError(20);
}
}
else {
node = FS.mknod(path, mode, 0);
created = true;
}
}
if (!node) {
throw new FS.ErrnoError(44);
}
if (FS.isChrdev(node.mode)) {
flags &= ~512;
}
if (flags & 65536 && !FS.isDir(node.mode)) {
throw new FS.ErrnoError(54);
}
if (!created) {
var errCode = FS.mayOpen(node, flags);
if (errCode) {
throw new FS.ErrnoError(errCode);
}
}
if (flags & 512) {
FS.truncate(node, 0);
}
flags &= ~(128 | 512 | 131072);
var stream = FS.createStream({
node: node,
path: FS.getPath(node),
flags: flags,
seekable: true,
position: 0,
stream_ops: node.stream_ops,
ungotten: [],
error: false,
}, fd_start, fd_end);
if (stream.stream_ops.open) {
stream.stream_ops.open(stream);
}
if (Module["logReadFiles"] && !(flags & 1)) {
if (!FS.readFiles)
FS.readFiles = {};
if (!(path in FS.readFiles)) {
FS.readFiles[path] = 1;
err("FS.trackingDelegate error on read file: " + path);
}
}
try {
if (FS.trackingDelegate["onOpenFile"]) {
var trackingFlags = 0;
if ((flags & 2097155) !== 1) {
trackingFlags |= FS.tracking.openFlags.READ;
}
if ((flags & 2097155) !== 0) {
trackingFlags |= FS.tracking.openFlags.WRITE;
}
FS.trackingDelegate["onOpenFile"](path, trackingFlags);
}
}
catch (e) {
err("FS.trackingDelegate['onOpenFile']('" +
path +
"', flags) threw an exception: " +
e.message);
}
return stream;
},
close: function (stream) {
if (FS.isClosed(stream)) {
throw new FS.ErrnoError(8);
}
if (stream.getdents)
stream.getdents = null;
try {
if (stream.stream_ops.close) {
stream.stream_ops.close(stream);
}
}
catch (e) {
throw e;
}
finally {
FS.closeStream(stream.fd);
}
stream.fd = null;
},
isClosed: function (stream) {
return stream.fd === null;
},
llseek: function (stream, offset, whence) {
if (FS.isClosed(stream)) {
throw new FS.ErrnoError(8);
}
if (!stream.seekable || !stream.stream_ops.llseek) {
throw new FS.ErrnoError(70);
}
if (whence != 0 && whence != 1 && whence != 2) {
throw new FS.ErrnoError(28);
}
stream.position = stream.stream_ops.llseek(stream, offset, whence);
stream.ungotten = [];
return stream.position;
},
read: function (stream, buffer, offset, length, position) {
if (length < 0 || position < 0) {
throw new FS.ErrnoError(28);
}
if (FS.isClosed(stream)) {
throw new FS.ErrnoError(8);
}
if ((stream.flags & 2097155) === 1) {
throw new FS.ErrnoError(8);
}
if (FS.isDir(stream.node.mode)) {
throw new FS.ErrnoError(31);
}
if (!stream.stream_ops.read) {
throw new FS.ErrnoError(28);
}
var seeking = typeof position !== "undefined";
if (!seeking) {
position = stream.position;
}
else if (!stream.seekable) {
throw new FS.ErrnoError(70);
}
var bytesRead = stream.stream_ops.read(stream, buffer, offset, length, position);
if (!seeking)
stream.position += bytesRead;
return bytesRead;
},
write: function (stream, buffer, offset, length, position, canOwn) {
if (length < 0 || position < 0) {
throw new FS.ErrnoError(28);
}
if (FS.isClosed(stream)) {
throw new FS.ErrnoError(8);
}
if ((stream.flags & 2097155) === 0) {
throw new FS.ErrnoError(8);
}
if (FS.isDir(stream.node.mode)) {
throw new FS.ErrnoError(31);
}
if (!stream.stream_ops.write) {
throw new FS.ErrnoError(28);
}
if (stream.seekable && stream.flags & 1024) {
FS.llseek(stream, 0, 2);
}
var seeking = typeof position !== "undefined";
if (!seeking) {
position = stream.position;
}
else if (!stream.seekable) {
throw new FS.ErrnoError(70);
}
var bytesWritten = stream.stream_ops.write(stream, buffer, offset, length, position, canOwn);
if (!seeking)
stream.position += bytesWritten;
try {
if (stream.path && FS.trackingDelegate["onWriteToFile"])
FS.trackingDelegate["onWriteToFile"](stream.path);
}
catch (e) {
err("FS.trackingDelegate['onWriteToFile']('" +
stream.path +
"') threw an exception: " +
e.message);
}
return bytesWritten;
},
allocate: function (stream, offset, length) {
if (FS.isClosed(stream)) {
throw new FS.ErrnoError(8);
}
if (offset < 0 || length <= 0) {
throw new FS.ErrnoError(28);
}
if ((stream.flags & 2097155) === 0) {
throw new FS.ErrnoError(8);
}
if (!FS.isFile(stream.node.mode) && !FS.isDir(stream.node.mode)) {
throw new FS.ErrnoError(43);
}
if (!stream.stream_ops.allocate) {
throw new FS.ErrnoError(138);
}
stream.stream_ops.allocate(stream, offset, length);
},
mmap: function (stream, address, length, position, prot, flags) {
if ((prot & 2) !== 0 &&
(flags & 2) === 0 &&
(stream.flags & 2097155) !== 2) {
throw new FS.ErrnoError(2);
}
if ((stream.flags & 2097155) === 1) {
throw new FS.ErrnoError(2);
}
if (!stream.stream_ops.mmap) {
throw new FS.ErrnoError(43);
}
return stream.stream_ops.mmap(stream, address, length, position, prot, flags);
},
msync: function (stream, buffer, offset, length, mmapFlags) {
if (!stream || !stream.stream_ops.msync) {
return 0;
}
return stream.stream_ops.msync(stream, buffer, offset, length, mmapFlags);
},
munmap: function (stream) {
return 0;
},
ioctl: function (stream, cmd, arg) {
if (!stream.stream_ops.ioctl) {
throw new FS.ErrnoError(59);
}
return stream.stream_ops.ioctl(stream, cmd, arg);
},
readFile: function (path, opts) {
opts = opts || {};
opts.flags = opts.flags || 0;
opts.encoding = opts.encoding || "binary";
if (opts.encoding !== "utf8" && opts.encoding !== "binary") {
throw new Error('Invalid encoding type "' + opts.encoding + '"');
}
var ret;
var stream = FS.open(path, opts.flags);
var stat = FS.stat(path);
var length = stat.size;
var buf = new Uint8Array(length);
FS.read(stream, buf, 0, length, 0);
if (opts.encoding === "utf8") {
ret = UTF8ArrayToString(buf, 0);
}
else if (opts.encoding === "binary") {
ret = buf;
}
FS.close(stream);
return ret;
},
writeFile: function (path, data, opts) {
opts = opts || {};
opts.flags = opts.flags || 577;
var stream = FS.open(path, opts.flags, opts.mode);
if (typeof data === "string") {
var buf = new Uint8Array(lengthBytesUTF8(data) + 1);
var actualNumBytes = stringToUTF8Array(data, buf, 0, buf.length);
FS.write(stream, buf, 0, actualNumBytes, undefined, opts.canOwn);
}
else if (ArrayBuffer.isView(data)) {
FS.write(stream, data, 0, data.byteLength, undefined, opts.canOwn);
}
else {
throw new Error("Unsupported data type");
}
FS.close(stream);
},
cwd: function () {
return FS.currentPath;
},
chdir: function (path) {
var lookup = FS.lookupPath(path, {
follow: true,
});
if (lookup.node === null) {
throw new FS.ErrnoError(44);
}
if (!FS.isDir(lookup.node.mode)) {
throw new FS.ErrnoError(54);
}
var errCode = FS.nodePermissions(lookup.node, "x");
if (errCode) {
throw new FS.ErrnoError(errCode);
}
FS.currentPath = lookup.path;
},
createDefaultDirectories: function () {
FS.mkdir("/tmp");
FS.mkdir("/home");
FS.mkdir("/home/web_user");
},
createDefaultDevices: function () {
FS.mkdir("/dev");
FS.registerDevice(FS.makedev(1, 3), {
read: function () {
return 0;
},
write: function (stream, buffer, offset, length, pos) {
return length;
},
});
FS.mkdev("/dev/null", FS.makedev(1, 3));
TTY.register(FS.makedev(5, 0), TTY.default_tty_ops);
TTY.register(FS.makedev(6, 0), TTY.default_tty1_ops);
FS.mkdev("/dev/tty", FS.makedev(5, 0));
FS.mkdev("/dev/tty1", FS.makedev(6, 0));
var random_device = getRandomDevice();
FS.createDevice("/dev", "random", random_device);
FS.createDevice("/dev", "urandom", random_device);
FS.mkdir("/dev/shm");
FS.mkdir("/dev/shm/tmp");
},
createSpecialDirectories: function () {
FS.mkdir("/proc");
FS.mkdir("/proc/self");
FS.mkdir("/proc/self/fd");
FS.mount({
mount: function () {
var node = FS.createNode("/proc/self", "fd", 16384 | 511, 73);
node.node_ops = {
lookup: function (parent, name) {
var fd = +name;
var stream = FS.getStream(fd);
if (!stream)
throw new FS.ErrnoError(8);
var ret = {
parent: null,
mount: {
mountpoint: "fake",
},
node_ops: {
readlink: function () {
return stream.path;
},
},
};
ret.parent = ret;
return ret;
},
};
return node;
},
}, {}, "/proc/self/fd");
},
createStandardStreams: function () {
if (Module["stdin"]) {
FS.createDevice("/dev", "stdin", Module["stdin"]);
}
else {
FS.symlink("/dev/tty", "/dev/stdin");
}
if (Module["stdout"]) {
FS.createDevice("/dev", "stdout", null, Module["stdout"]);
}
else {
FS.symlink("/dev/tty", "/dev/stdout");
}
if (Module["stderr"]) {
FS.createDevice("/dev", "stderr", null, Module["stderr"]);
}
else {
FS.symlink("/dev/tty1", "/dev/stderr");
}
var stdin = FS.open("/dev/stdin", 0);
var stdout = FS.open("/dev/stdout", 1);
var stderr = FS.open("/dev/stderr", 1);
},
ensureErrnoError: function () {
if (FS.ErrnoError)
return;
FS.ErrnoError = function ErrnoError(errno, node) {
this.node = node;
this.setErrno = function (errno) {
this.errno = errno;
};
this.setErrno(errno);
this.message = "FS error";
};
FS.ErrnoError.prototype = new Error();
FS.ErrnoError.prototype.constructor = FS.ErrnoError;
[44].forEach(function (code) {
FS.genericErrors[code] = new FS.ErrnoError(code);
FS.genericErrors[code].stack = "<generic error, no stack>";
});
},
staticInit: function () {
FS.ensureErrnoError();
FS.nameTable = new Array(4096);
FS.mount(MEMFS, {}, "/");
FS.createDefaultDirectories();
FS.createDefaultDevices();
FS.createSpecialDirectories();
FS.filesystems = {
MEMFS: MEMFS,
};
},
init: function (input, output, error) {
FS.init.initialized = true;
FS.ensureErrnoError();
Module["stdin"] = input || Module["stdin"];
Module["stdout"] = output || Module["stdout"];
Module["stderr"] = error || Module["stderr"];
FS.createStandardStreams();
},
quit: function () {
FS.init.initialized = false;
var fflush = Module["_fflush"];
if (fflush)
fflush(0);
for (var i = 0; i < FS.streams.length; i++) {
var stream = FS.streams[i];
if (!stream) {
continue;
}
FS.close(stream);
}
},
getMode: function (canRead, canWrite) {
var mode = 0;
if (canRead)
mode |= 292 | 73;
if (canWrite)
mode |= 146;
return mode;
},
findObject: function (path, dontResolveLastLink) {
var ret = FS.analyzePath(path, dontResolveLastLink);
if (ret.exists) {
return ret.object;
}
else {
return null;
}
},
analyzePath: function (path, dontResolveLastLink) {
try {
var lookup = FS.lookupPath(path, {
follow: !dontResolveLastLink,
});
path = lookup.path;
}
catch (e) { }
var ret = {
isRoot: false,
exists: false,
error: 0,
name: null,
path: null,
object: null,
parentExists: false,
parentPath: null,
parentObject: null,
};
try {
var lookup = FS.lookupPath(path, {
parent: true,
});
ret.parentExists = true;
ret.parentPath = lookup.path;
ret.parentObject = lookup.node;
ret.name = PATH.basename(path);
lookup = FS.lookupPath(path, {
follow: !dontResolveLastLink,
});
ret.exists = true;
ret.path = lookup.path;
ret.object = lookup.node;
ret.name = lookup.node.name;
ret.isRoot = lookup.path === "/";
}
catch (e) {
ret.error = e.errno;
}
return ret;
},
createPath: function (parent, path, canRead, canWrite) {
parent = typeof parent === "string" ? parent : FS.getPath(parent);
var parts = path.split("/").reverse();
while (parts.length) {
var part = parts.pop();
if (!part)
continue;
var current = PATH.join2(parent, part);
try {
FS.mkdir(current);
}
catch (e) { }
parent = current;
}
return current;
},
createFile: function (parent, name, properties, canRead, canWrite) {
var path = PATH.join2(typeof parent === "string" ? parent : FS.getPath(parent), name);
var mode = FS.getMode(canRead, canWrite);
return FS.create(path, mode);
},
createDataFile: function (parent, name, data, canRead, canWrite, canOwn) {
var path = name
? PATH.join2(typeof parent === "string" ? parent : FS.getPath(parent), name)
: parent;
var mode = FS.getMode(canRead, canWrite);
var node = FS.create(path, mode);
if (data) {
if (typeof data === "string") {
var arr = new Array(data.length);
for (var i = 0, len = data.length; i < len; ++i)
arr[i] = data.charCodeAt(i);
data = arr;
}
FS.chmod(node, mode | 146);
var stream = FS.open(node, 577);
FS.write(stream, data, 0, data.length, 0, canOwn);
FS.close(stream);
FS.chmod(node, mode);
}
return node;
},
createDevice: function (parent, name, input, output) {
var path = PATH.join2(typeof parent === "string" ? parent : FS.getPath(parent), name);
var mode = FS.getMode(!!input, !!output);
if (!FS.createDevice.major)
FS.createDevice.major = 64;
var dev = FS.makedev(FS.createDevice.major++, 0);
FS.registerDevice(dev, {
open: function (stream) {
stream.seekable = false;
},
close: function (stream) {
if (output && output.buffer && output.buffer.length) {
output(10);
}
},
read: function (stream, buffer, offset, length, pos) {
var bytesRead = 0;
for (var i = 0; i < length; i++) {
var result;
try {
result = input();
}
catch (e) {
throw new FS.ErrnoError(29);
}
if (result === undefined && bytesRead === 0) {
throw new FS.ErrnoError(6);
}
if (result === null || result === undefined)
break;
bytesRead++;
buffer[offset + i] = result;
}
if (bytesRead) {
stream.node.timestamp = Date.now();
}
return bytesRead;
},
write: function (stream, buffer, offset, length, pos) {
for (var i = 0; i < length; i++) {
try {
output(buffer[offset + i]);
}
catch (e) {
throw new FS.ErrnoError(29);
}
}
if (length) {
stream.node.timestamp = Date.now();
}
return i;
},
});
return FS.mkdev(path, mode, dev);
},
forceLoadFile: function (obj) {
if (obj.isDevice || obj.isFolder || obj.link || obj.contents)
return true;
if (typeof XMLHttpRequest !== "undefined") {
throw new Error("Lazy loading should have been performed (contents set) in createLazyFile, but it was not. Lazy loading only works in web workers. Use --embed-file or --preload-file in emcc on the main thread.");
}
else if (read_) {
try {
obj.contents = intArrayFromString(read_(obj.url), true);
obj.usedBytes = obj.contents.length;
}
catch (e) {
throw new FS.ErrnoError(29);
}
}
else {
throw new Error("Cannot load without read() or XMLHttpRequest.");
}
},
createLazyFile: function (parent, name, url, canRead, canWrite) {
function LazyUint8Array() {
this.lengthKnown = false;
this.chunks = [];
}
LazyUint8Array.prototype.get = function LazyUint8Array_get(idx) {
if (idx > this.length - 1 || idx < 0) {
return undefined;
}
var chunkOffset = idx % this.chunkSize;
var chunkNum = (idx / this.chunkSize) | 0;
return this.getter(chunkNum)[chunkOffset];
};
LazyUint8Array.prototype.setDataGetter = function LazyUint8Array_setDataGetter(getter) {
this.getter = getter;
};
LazyUint8Array.prototype.cacheLength = function LazyUint8Array_cacheLength() {
var xhr = new XMLHttpRequest();
xhr.open("HEAD", url, false);
xhr.send(null);
if (!((xhr.status >= 200 && xhr.status < 300) || xhr.status === 304))
throw new Error("Couldn't load " + url + ". Status: " + xhr.status);
var datalength = Number(xhr.getResponseHeader("Content-length"));
var header;
var hasByteServing = (header = xhr.getResponseHeader("Accept-Ranges")) && header === "bytes";
var usesGzip = (header = xhr.getResponseHeader("Content-Encoding")) &&
header === "gzip";
var chunkSize = 1024 * 1024;
if (!hasByteServing)
chunkSize = datalength;
var doXHR = function (from, to) {
if (from > to)
throw new Error("invalid range (" + from + ", " + to + ") or no bytes requested!");
if (to > datalength - 1)
throw new Error("only " + datalength + " bytes available! programmer error!");
var xhr = new XMLHttpRequest();
xhr.open("GET", url, false);
if (datalength !== chunkSize)
xhr.setRequestHeader("Range", "bytes=" + from + "-" + to);
if (typeof Uint8Array != "undefined")
xhr.responseType = "arraybuffer";
if (xhr.overrideMimeType) {
xhr.overrideMimeType("text/plain; charset=x-user-defined");
}
xhr.send(null);
if (!((xhr.status >= 200 && xhr.status < 300) || xhr.status === 304))
throw new Error("Couldn't load " + url + ". Status: " + xhr.status);
if (xhr.response !== undefined) {
return new Uint8Array(xhr.response || []);
}
else {
return intArrayFromString(xhr.responseText || "", true);
}
};
var lazyArray = this;
lazyArray.setDataGetter(function (chunkNum) {
var start = chunkNum * chunkSize;
var end = (chunkNum + 1) * chunkSize - 1;
end = Math.min(end, datalength - 1);
if (typeof lazyArray.chunks[chunkNum] === "undefined") {
lazyArray.chunks[chunkNum] = doXHR(start, end);
}
if (typeof lazyArray.chunks[chunkNum] === "undefined")
throw new Error("doXHR failed!");
return lazyArray.chunks[chunkNum];
});
if (usesGzip || !datalength) {
chunkSize = datalength = 1;
datalength = this.getter(0).length;
chunkSize = datalength;
out("LazyFiles on gzip forces download of the whole file when length is accessed");
}
this._length = datalength;
this._chunkSize = chunkSize;
this.lengthKnown = true;
};
if (typeof XMLHttpRequest !== "undefined") {
if (!ENVIRONMENT_IS_WORKER)
throw "Cannot do synchronous binary XHRs outside webworkers in modern browsers. Use --embed-file or --preload-file in emcc";
var lazyArray = new LazyUint8Array();
Object.defineProperties(lazyArray, {
length: {
get: function () {
if (!this.lengthKnown) {
this.cacheLength();
}
return this._length;
},
},
chunkSize: {
get: function () {
if (!this.lengthKnown) {
this.cacheLength();
}
return this._chunkSize;
},
},
});
var properties = {
isDevice: false,
contents: lazyArray,
};
}
else {
var properties = {
isDevice: false,
url: url,
};
}
var node = FS.createFile(parent, name, properties, canRead, canWrite);
if (properties.contents) {
node.contents = properties.contents;
}
else if (properties.url) {
node.contents = null;
node.url = properties.url;
}
Object.defineProperties(node, {
usedBytes: {
get: function () {
return this.contents.length;
},
},
});
var stream_ops = {};
var keys = Object.keys(node.stream_ops);
keys.forEach(function (key) {
var fn = node.stream_ops[key];
stream_ops[key] = function forceLoadLazyFile() {
FS.forceLoadFile(node);
return fn.apply(null, arguments);
};
});
stream_ops.read = function stream_ops_read(stream, buffer, offset, length, position) {
FS.forceLoadFile(node);
var contents = stream.node.contents;
if (position >= contents.length)
return 0;
var size = Math.min(contents.length - position, length);
if (contents.slice) {
for (var i = 0; i < size; i++) {
buffer[offset + i] = contents[position + i];
}
}
else {
for (var i = 0; i < size; i++) {
buffer[offset + i] = contents.get(position + i);
}
}
return size;
};
node.stream_ops = stream_ops;
return node;
},
createPreloadedFile: function (parent, name, url, canRead, canWrite, onload, onerror, dontCreateFile, canOwn, preFinish) {
Browser.init();
var fullname = name ? PATH_FS.resolve(PATH.join2(parent, name)) : parent;
var dep = getUniqueRunDependency("cp " + fullname);
function processData(byteArray) {
function finish(byteArray) {
if (preFinish)
preFinish();
if (!dontCreateFile) {
FS.createDataFile(parent, name, byteArray, canRead, canWrite, canOwn);
}
if (onload)
onload();
removeRunDependency(dep);
}
var handled = false;
Module["preloadPlugins"].forEach(function (plugin) {
if (handled)
return;
if (plugin["canHandle"](fullname)) {
plugin["handle"](byteArray, fullname, finish, function () {
if (onerror)
onerror();
removeRunDependency(dep);
});
handled = true;
}
});
if (!handled)
finish(byteArray);
}
addRunDependency(dep);
if (typeof url == "string") {
Browser.asyncLoad(url, function (byteArray) {
processData(byteArray);
}, onerror);
}
else {
processData(url);
}
},
indexedDB: function () {
return (window.indexedDB ||
window.mozIndexedDB ||
window.webkitIndexedDB ||
window.msIndexedDB);
},
DB_NAME: function () {
return "EM_FS_" + window.location.pathname;
},
DB_VERSION: 20,
DB_STORE_NAME: "FILE_DATA",
saveFilesToDB: function (paths, onload, onerror) {
onload = onload || function () { };
onerror = onerror || function () { };
var indexedDB = FS.indexedDB();
try {
var openRequest = indexedDB.open(FS.DB_NAME(), FS.DB_VERSION);
}
catch (e) {
return onerror(e);
}
openRequest.onupgradeneeded = function openRequest_onupgradeneeded() {
out("creating db");
var db = openRequest.result;
db.createObjectStore(FS.DB_STORE_NAME);
};
openRequest.onsuccess = function openRequest_onsuccess() {
var db = openRequest.result;
var transaction = db.transaction([FS.DB_STORE_NAME], "readwrite");
var files = transaction.objectStore(FS.DB_STORE_NAME);
var ok = 0, fail = 0, total = paths.length;
function finish() {
if (fail == 0)
onload();
else
onerror();
}
paths.forEach(function (path) {
var putRequest = files.put(FS.analyzePath(path).object.contents, path);
putRequest.onsuccess = function putRequest_onsuccess() {
ok++;
if (ok + fail == total)
finish();
};
putRequest.onerror = function putRequest_onerror() {
fail++;
if (ok + fail == total)
finish();
};
});
transaction.onerror = onerror;
};
openRequest.onerror = onerror;
},
loadFilesFromDB: function (paths, onload, onerror) {
onload = onload || function () { };
onerror = onerror || function () { };
var indexedDB = FS.indexedDB();
try {
var openRequest = indexedDB.open(FS.DB_NAME(), FS.DB_VERSION);
}
catch (e) {
return onerror(e);
}
openRequest.onupgradeneeded = onerror;
openRequest.onsuccess = function openRequest_onsuccess() {
var db = openRequest.result;
try {
var transaction = db.transaction([FS.DB_STORE_NAME], "readonly");
}
catch (e) {
onerror(e);
return;
}
var files = transaction.objectStore(FS.DB_STORE_NAME);
var ok = 0, fail = 0, total = paths.length;
function finish() {
if (fail == 0)
onload();
else
onerror();
}
paths.forEach(function (path) {
var getRequest = files.get(path);
getRequest.onsuccess = function getRequest_onsuccess() {
if (FS.analyzePath(path).exists) {
FS.unlink(path);
}
FS.createDataFile(PATH.dirname(path), PATH.basename(path), getRequest.result, true, true, true);
ok++;
if (ok + fail == total)
finish();
};
getRequest.onerror = function getRequest_onerror() {
fail++;
if (ok + fail == total)
finish();
};
});
transaction.onerror = onerror;
};
openRequest.onerror = onerror;
},
};
var SYSCALLS = {
mappings: {},
DEFAULT_POLLMASK: 5,
umask: 511,
calculateAt: function (dirfd, path) {
if (path[0] !== "/") {
var dir;
if (dirfd === -100) {
dir = FS.cwd();
}
else {
var dirstream = FS.getStream(dirfd);
if (!dirstream)
throw new FS.ErrnoError(8);
dir = dirstream.path;
}
path = PATH.join2(dir, path);
}
return path;
},
doStat: function (func, path, buf) {
try {
var stat = func(path);
}
catch (e) {
if (e &&
e.node &&
PATH.normalize(path) !== PATH.normalize(FS.getPath(e.node))) {
return -54;
}
throw e;
}
GROWABLE_HEAP_I32()[buf >> 2] = stat.dev;
GROWABLE_HEAP_I32()[(buf + 4) >> 2] = 0;
GROWABLE_HEAP_I32()[(buf + 8) >> 2] = stat.ino;
GROWABLE_HEAP_I32()[(buf + 12) >> 2] = stat.mode;
GROWABLE_HEAP_I32()[(buf + 16) >> 2] = stat.nlink;
GROWABLE_HEAP_I32()[(buf + 20) >> 2] = stat.uid;
GROWABLE_HEAP_I32()[(buf + 24) >> 2] = stat.gid;
GROWABLE_HEAP_I32()[(buf + 28) >> 2] = stat.rdev;
GROWABLE_HEAP_I32()[(buf + 32) >> 2] = 0;
(tempI64 = [
stat.size >>> 0,
((tempDouble = stat.size),
+Math.abs(tempDouble) >= 1
? tempDouble > 0
? (Math.min(+Math.floor(tempDouble / 4294967296), 4294967295) | 0) >>>
0
: ~~+Math.ceil((tempDouble - +(~~tempDouble >>> 0)) / 4294967296) >>>
0
: 0),
]),
(GROWABLE_HEAP_I32()[(buf + 40) >> 2] = tempI64[0]),
(GROWABLE_HEAP_I32()[(buf + 44) >> 2] = tempI64[1]);
GROWABLE_HEAP_I32()[(buf + 48) >> 2] = 4096;
GROWABLE_HEAP_I32()[(buf + 52) >> 2] = stat.blocks;
GROWABLE_HEAP_I32()[(buf + 56) >> 2] = (stat.atime.getTime() / 1e3) | 0;
GROWABLE_HEAP_I32()[(buf + 60) >> 2] = 0;
GROWABLE_HEAP_I32()[(buf + 64) >> 2] = (stat.mtime.getTime() / 1e3) | 0;
GROWABLE_HEAP_I32()[(buf + 68) >> 2] = 0;
GROWABLE_HEAP_I32()[(buf + 72) >> 2] = (stat.ctime.getTime() / 1e3) | 0;
GROWABLE_HEAP_I32()[(buf + 76) >> 2] = 0;
(tempI64 = [
stat.ino >>> 0,
((tempDouble = stat.ino),
+Math.abs(tempDouble) >= 1
? tempDouble > 0
? (Math.min(+Math.floor(tempDouble / 4294967296), 4294967295) | 0) >>>
0
: ~~+Math.ceil((tempDouble - +(~~tempDouble >>> 0)) / 4294967296) >>>
0
: 0),
]),
(GROWABLE_HEAP_I32()[(buf + 80) >> 2] = tempI64[0]),
(GROWABLE_HEAP_I32()[(buf + 84) >> 2] = tempI64[1]);
return 0;
},
doMsync: function (addr, stream, len, flags, offset) {
var buffer = GROWABLE_HEAP_U8().slice(addr, addr + len);
FS.msync(stream, buffer, offset, len, flags);
},
doMkdir: function (path, mode) {
path = PATH.normalize(path);
if (path[path.length - 1] === "/")
path = path.substr(0, path.length - 1);
FS.mkdir(path, mode, 0);
return 0;
},
doMknod: function (path, mode, dev) {
switch (mode & 61440) {
case 32768:
case 8192:
case 24576:
case 4096:
case 49152:
break;
default:
return -28;
}
FS.mknod(path, mode, dev);
return 0;
},
doReadlink: function (path, buf, bufsize) {
if (bufsize <= 0)
return -28;
var ret = FS.readlink(path);
var len = Math.min(bufsize, lengthBytesUTF8(ret));
var endChar = GROWABLE_HEAP_I8()[buf + len];
stringToUTF8(ret, buf, bufsize + 1);
GROWABLE_HEAP_I8()[buf + len] = endChar;
return len;
},
doAccess: function (path, amode) {
if (amode & ~7) {
return -28;
}
var node;
var lookup = FS.lookupPath(path, {
follow: true,
});
node = lookup.node;
if (!node) {
return -44;
}
var perms = "";
if (amode & 4)
perms += "r";
if (amode & 2)
perms += "w";
if (amode & 1)
perms += "x";
if (perms && FS.nodePermissions(node, perms)) {
return -2;
}
return 0;
},
doDup: function (path, flags, suggestFD) {
var suggest = FS.getStream(suggestFD);
if (suggest)
FS.close(suggest);
return FS.open(path, flags, 0, suggestFD, suggestFD).fd;
},
doReadv: function (stream, iov, iovcnt, offset) {
var ret = 0;
for (var i = 0; i < iovcnt; i++) {
var ptr = GROWABLE_HEAP_I32()[(iov + i * 8) >> 2];
var len = GROWABLE_HEAP_I32()[(iov + (i * 8 + 4)) >> 2];
var curr = FS.read(stream, GROWABLE_HEAP_I8(), ptr, len, offset);
if (curr < 0)
return -1;
ret += curr;
if (curr < len)
break;
}
return ret;
},
doWritev: function (stream, iov, iovcnt, offset) {
var ret = 0;
for (var i = 0; i < iovcnt; i++) {
var ptr = GROWABLE_HEAP_I32()[(iov + i * 8) >> 2];
var len = GROWABLE_HEAP_I32()[(iov + (i * 8 + 4)) >> 2];
var curr = FS.write(stream, GROWABLE_HEAP_I8(), ptr, len, offset);
if (curr < 0)
return -1;
ret += curr;
}
return ret;
},
varargs: undefined,
get: function () {
SYSCALLS.varargs += 4;
var ret = GROWABLE_HEAP_I32()[(SYSCALLS.varargs - 4) >> 2];
return ret;
},
getStr: function (ptr) {
var ret = UTF8ToString(ptr);
return ret;
},
getStreamFromFD: function (fd) {
var stream = FS.getStream(fd);
if (!stream)
throw new FS.ErrnoError(8);
return stream;
},
get64: function (low, high) {
return low;
},
};
function ___sys_access(path, amode) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(2, 1, path, amode);
try {
path = SYSCALLS.getStr(path);
return SYSCALLS.doAccess(path, amode);
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return -e.errno;
}
}
function ___sys_fcntl64(fd, cmd, varargs) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(3, 1, fd, cmd, varargs);
SYSCALLS.varargs = varargs;
try {
var stream = SYSCALLS.getStreamFromFD(fd);
switch (cmd) {
case 0: {
var arg = SYSCALLS.get();
if (arg < 0) {
return -28;
}
var newStream;
newStream = FS.open(stream.path, stream.flags, 0, arg);
return newStream.fd;
}
case 1:
case 2:
return 0;
case 3:
return stream.flags;
case 4: {
var arg = SYSCALLS.get();
stream.flags |= arg;
return 0;
}
case 12: {
var arg = SYSCALLS.get();
var offset = 0;
GROWABLE_HEAP_I16()[(arg + offset) >> 1] = 2;
return 0;
}
case 13:
case 14:
return 0;
case 16:
case 8:
return -28;
case 9:
setErrNo(28);
return -1;
default: {
return -28;
}
}
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return -e.errno;
}
}
function ___sys_fstat64(fd, buf) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(4, 1, fd, buf);
try {
var stream = SYSCALLS.getStreamFromFD(fd);
return SYSCALLS.doStat(FS.stat, stream.path, buf);
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return -e.errno;
}
}
function ___sys_getcwd(buf, size) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(5, 1, buf, size);
try {
if (size === 0)
return -28;
var cwd = FS.cwd();
var cwdLengthInBytes = lengthBytesUTF8(cwd);
if (size < cwdLengthInBytes + 1)
return -68;
stringToUTF8(cwd, buf, size);
return buf;
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return -e.errno;
}
}
function ___sys_ioctl(fd, op, varargs) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(6, 1, fd, op, varargs);
SYSCALLS.varargs = varargs;
try {
var stream = SYSCALLS.getStreamFromFD(fd);
switch (op) {
case 21509:
case 21505: {
if (!stream.tty)
return -59;
return 0;
}
case 21510:
case 21511:
case 21512:
case 21506:
case 21507:
case 21508: {
if (!stream.tty)
return -59;
return 0;
}
case 21519: {
if (!stream.tty)
return -59;
var argp = SYSCALLS.get();
GROWABLE_HEAP_I32()[argp >> 2] = 0;
return 0;
}
case 21520: {
if (!stream.tty)
return -59;
return -28;
}
case 21531: {
var argp = SYSCALLS.get();
return FS.ioctl(stream, op, argp);
}
case 21523: {
if (!stream.tty)
return -59;
return 0;
}
case 21524: {
if (!stream.tty)
return -59;
return 0;
}
default:
abort("bad ioctl syscall " + op);
}
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return -e.errno;
}
}
function syscallMmap2(addr, len, prot, flags, fd, off) {
off <<= 12;
var ptr;
var allocated = false;
if ((flags & 16) !== 0 && addr % 16384 !== 0) {
return -28;
}
if ((flags & 32) !== 0) {
ptr = _memalign(16384, len);
if (!ptr)
return -48;
_memset(ptr, 0, len);
allocated = true;
}
else {
var info = FS.getStream(fd);
if (!info)
return -8;
var res = FS.mmap(info, addr, len, off, prot, flags);
ptr = res.ptr;
allocated = res.allocated;
}
SYSCALLS.mappings[ptr] = {
malloc: ptr,
len: len,
allocated: allocated,
fd: fd,
prot: prot,
flags: flags,
offset: off,
};
return ptr;
}
function ___sys_mmap2(addr, len, prot, flags, fd, off) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(7, 1, addr, len, prot, flags, fd, off);
try {
return syscallMmap2(addr, len, prot, flags, fd, off);
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return -e.errno;
}
}
function syscallMunmap(addr, len) {
if ((addr | 0) === -1 || len === 0) {
return -28;
}
var info = SYSCALLS.mappings[addr];
if (!info)
return 0;
if (len === info.len) {
var stream = FS.getStream(info.fd);
if (info.prot & 2) {
SYSCALLS.doMsync(addr, stream, len, info.flags, info.offset);
}
FS.munmap(stream);
SYSCALLS.mappings[addr] = null;
if (info.allocated) {
_free(info.malloc);
}
}
return 0;
}
function ___sys_munmap(addr, len) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(8, 1, addr, len);
try {
return syscallMunmap(addr, len);
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return -e.errno;
}
}
function ___sys_open(path, flags, varargs) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(9, 1, path, flags, varargs);
SYSCALLS.varargs = varargs;
try {
var pathname = SYSCALLS.getStr(path);
var mode = SYSCALLS.get();
var stream = FS.open(pathname, flags, mode);
return stream.fd;
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return -e.errno;
}
}
function ___sys_rename(old_path, new_path) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(10, 1, old_path, new_path);
try {
old_path = SYSCALLS.getStr(old_path);
new_path = SYSCALLS.getStr(new_path);
FS.rename(old_path, new_path);
return 0;
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return -e.errno;
}
}
function ___sys_rmdir(path) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(11, 1, path);
try {
path = SYSCALLS.getStr(path);
FS.rmdir(path);
return 0;
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return -e.errno;
}
}
function ___sys_stat64(path, buf) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(12, 1, path, buf);
try {
path = SYSCALLS.getStr(path);
return SYSCALLS.doStat(FS.stat, path, buf);
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return -e.errno;
}
}
function ___sys_unlink(path) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(13, 1, path);
try {
path = SYSCALLS.getStr(path);
FS.unlink(path);
return 0;
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return -e.errno;
}
}
function ___sys_wait4(pid, wstart, options, rusage) {
try {
abort("cannot wait on child processes");
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return -e.errno;
}
}
function getShiftFromSize(size) {
switch (size) {
case 1:
return 0;
case 2:
return 1;
case 4:
return 2;
case 8:
return 3;
default:
throw new TypeError("Unknown type size: " + size);
}
}
function embind_init_charCodes() {
var codes = new Array(256);
for (var i = 0; i < 256; ++i) {
codes[i] = String.fromCharCode(i);
}
embind_charCodes = codes;
}
var embind_charCodes = undefined;
function readLatin1String(ptr) {
var ret = "";
var c = ptr;
while (GROWABLE_HEAP_U8()[c]) {
ret += embind_charCodes[GROWABLE_HEAP_U8()[c++]];
}
return ret;
}
var awaitingDependencies = {};
var registeredTypes = {};
var typeDependencies = {};
var char_0 = 48;
var char_9 = 57;
function makeLegalFunctionName(name) {
if (undefined === name) {
return "_unknown";
}
name = name.replace(/[^a-zA-Z0-9_]/g, "$");
var f = name.charCodeAt(0);
if (f >= char_0 && f <= char_9) {
return "_" + name;
}
else {
return name;
}
}
function createNamedFunction(name, body) {
name = makeLegalFunctionName(name);
return function () {
"use strict";
return body.apply(this, arguments);
};
}
function extendError(baseErrorType, errorName) {
var errorClass = createNamedFunction(errorName, function (message) {
this.name = errorName;
this.message = message;
var stack = new Error(message).stack;
if (stack !== undefined) {
this.stack =
this.toString() + "\n" + stack.replace(/^Error(:[^\n]*)?\n/, "");
}
});
errorClass.prototype = Object.create(baseErrorType.prototype);
errorClass.prototype.constructor = errorClass;
errorClass.prototype.toString = function () {
if (this.message === undefined) {
return this.name;
}
else {
return this.name + ": " + this.message;
}
};
return errorClass;
}
var BindingError = undefined;
function throwBindingError(message) {
throw new BindingError(message);
}
var InternalError = undefined;
function throwInternalError(message) {
throw new InternalError(message);
}
function whenDependentTypesAreResolved(myTypes, dependentTypes, getTypeConverters) {
myTypes.forEach(function (type) {
typeDependencies[type] = dependentTypes;
});
function onComplete(typeConverters) {
var myTypeConverters = getTypeConverters(typeConverters);
if (myTypeConverters.length !== myTypes.length) {
throwInternalError("Mismatched type converter count");
}
for (var i = 0; i < myTypes.length; ++i) {
registerType(myTypes[i], myTypeConverters[i]);
}
}
var typeConverters = new Array(dependentTypes.length);
var unregisteredTypes = [];
var registered = 0;
dependentTypes.forEach(function (dt, i) {
if (registeredTypes.hasOwnProperty(dt)) {
typeConverters[i] = registeredTypes[dt];
}
else {
unregisteredTypes.push(dt);
if (!awaitingDependencies.hasOwnProperty(dt)) {
awaitingDependencies[dt] = [];
}
awaitingDependencies[dt].push(function () {
typeConverters[i] = registeredTypes[dt];
++registered;
if (registered === unregisteredTypes.length) {
onComplete(typeConverters);
}
});
}
});
if (0 === unregisteredTypes.length) {
onComplete(typeConverters);
}
}
function registerType(rawType, registeredInstance, options) {
options = options || {};
if (!("argPackAdvance" in registeredInstance)) {
throw new TypeError("registerType registeredInstance requires argPackAdvance");
}
var name = registeredInstance.name;
if (!rawType) {
throwBindingError('type "' + name + '" must have a positive integer typeid pointer');
}
if (registeredTypes.hasOwnProperty(rawType)) {
if (options.ignoreDuplicateRegistrations) {
return;
}
else {
throwBindingError("Cannot register type '" + name + "' twice");
}
}
registeredTypes[rawType] = registeredInstance;
delete typeDependencies[rawType];
if (awaitingDependencies.hasOwnProperty(rawType)) {
var callbacks = awaitingDependencies[rawType];
delete awaitingDependencies[rawType];
callbacks.forEach(function (cb) {
cb();
});
}
}
function __embind_register_bool(rawType, name, size, trueValue, falseValue) {
var shift = getShiftFromSize(size);
name = readLatin1String(name);
registerType(rawType, {
name: name,
fromWireType: function (wt) {
return !!wt;
},
toWireType: function (destructors, o) {
return o ? trueValue : falseValue;
},
argPackAdvance: 8,
readValueFromPointer: function (pointer) {
var heap;
if (size === 1) {
heap = GROWABLE_HEAP_I8();
}
else if (size === 2) {
heap = GROWABLE_HEAP_I16();
}
else if (size === 4) {
heap = GROWABLE_HEAP_I32();
}
else {
throw new TypeError("Unknown boolean type size: " + name);
}
return this["fromWireType"](heap[pointer >> shift]);
},
destructorFunction: null,
});
}
function ClassHandle_isAliasOf(other) {
if (!(this instanceof ClassHandle)) {
return false;
}
if (!(other instanceof ClassHandle)) {
return false;
}
var leftClass = this.$$.ptrType.registeredClass;
var left = this.$$.ptr;
var rightClass = other.$$.ptrType.registeredClass;
var right = other.$$.ptr;
while (leftClass.baseClass) {
left = leftClass.upcast(left);
leftClass = leftClass.baseClass;
}
while (rightClass.baseClass) {
right = rightClass.upcast(right);
rightClass = rightClass.baseClass;
}
return leftClass === rightClass && left === right;
}
function shallowCopyInternalPointer(o) {
return {
count: o.count,
deleteScheduled: o.deleteScheduled,
preservePointerOnDelete: o.preservePointerOnDelete,
ptr: o.ptr,
ptrType: o.ptrType,
smartPtr: o.smartPtr,
smartPtrType: o.smartPtrType,
};
}
function throwInstanceAlreadyDeleted(obj) {
function getInstanceTypeName(handle) {
return handle.$$.ptrType.registeredClass.name;
}
throwBindingError(getInstanceTypeName(obj) + " instance already deleted");
}
var finalizationGroup = false;
function detachFinalizer(handle) { }
function runDestructor($$) {
if ($$.smartPtr) {
$$.smartPtrType.rawDestructor($$.smartPtr);
}
else {
$$.ptrType.registeredClass.rawDestructor($$.ptr);
}
}
function releaseClassHandle($$) {
$$.count.value -= 1;
var toDelete = 0 === $$.count.value;
if (toDelete) {
runDestructor($$);
}
}
function attachFinalizer(handle) {
if ("undefined" === typeof FinalizationGroup) {
attachFinalizer = function (handle) {
return handle;
};
return handle;
}
finalizationGroup = new FinalizationGroup(function (iter) {
for (var result = iter.next(); !result.done; result = iter.next()) {
var $$ = result.value;
if (!$$.ptr) {
console.warn("object already deleted: " + $$.ptr);
}
else {
releaseClassHandle($$);
}
}
});
attachFinalizer = function (handle) {
finalizationGroup.register(handle, handle.$$, handle.$$);
return handle;
};
detachFinalizer = function (handle) {
finalizationGroup.unregister(handle.$$);
};
return attachFinalizer(handle);
}
function ClassHandle_clone() {
if (!this.$$.ptr) {
throwInstanceAlreadyDeleted(this);
}
if (this.$$.preservePointerOnDelete) {
this.$$.count.value += 1;
return this;
}
else {
var clone = attachFinalizer(Object.create(Object.getPrototypeOf(this), {
$$: {
value: shallowCopyInternalPointer(this.$$),
},
}));
clone.$$.count.value += 1;
clone.$$.deleteScheduled = false;
return clone;
}
}
function ClassHandle_delete() {
if (!this.$$.ptr) {
throwInstanceAlreadyDeleted(this);
}
if (this.$$.deleteScheduled && !this.$$.preservePointerOnDelete) {
throwBindingError("Object already scheduled for deletion");
}
detachFinalizer(this);
releaseClassHandle(this.$$);
if (!this.$$.preservePointerOnDelete) {
this.$$.smartPtr = undefined;
this.$$.ptr = undefined;
}
}
function ClassHandle_isDeleted() {
return !this.$$.ptr;
}
var delayFunction = undefined;
var deletionQueue = [];
function flushPendingDeletes() {
while (deletionQueue.length) {
var obj = deletionQueue.pop();
obj.$$.deleteScheduled = false;
obj["delete"]();
}
}
function ClassHandle_deleteLater() {
if (!this.$$.ptr) {
throwInstanceAlreadyDeleted(this);
}
if (this.$$.deleteScheduled && !this.$$.preservePointerOnDelete) {
throwBindingError("Object already scheduled for deletion");
}
deletionQueue.push(this);
if (deletionQueue.length === 1 && delayFunction) {
delayFunction(flushPendingDeletes);
}
this.$$.deleteScheduled = true;
return this;
}
function init_ClassHandle() {
ClassHandle.prototype["isAliasOf"] = ClassHandle_isAliasOf;
ClassHandle.prototype["clone"] = ClassHandle_clone;
ClassHandle.prototype["delete"] = ClassHandle_delete;
ClassHandle.prototype["isDeleted"] = ClassHandle_isDeleted;
ClassHandle.prototype["deleteLater"] = ClassHandle_deleteLater;
}
function ClassHandle() { }
var registeredPointers = {};
function ensureOverloadTable(proto, methodName, humanName) {
if (undefined === proto[methodName].overloadTable) {
var prevFunc = proto[methodName];
proto[methodName] = function () {
if (!proto[methodName].overloadTable.hasOwnProperty(arguments.length)) {
throwBindingError("Function '" +
humanName +
"' called with an invalid number of arguments (" +
arguments.length +
") - expects one of (" +
proto[methodName].overloadTable +
")!");
}
return proto[methodName].overloadTable[arguments.length].apply(this, arguments);
};
proto[methodName].overloadTable = [];
proto[methodName].overloadTable[prevFunc.argCount] = prevFunc;
}
}
function exposePublicSymbol(name, value, numArguments) {
if (Module.hasOwnProperty(name)) {
if (undefined === numArguments ||
(undefined !== Module[name].overloadTable &&
undefined !== Module[name].overloadTable[numArguments])) {
throwBindingError("Cannot register public name '" + name + "' twice");
}
ensureOverloadTable(Module, name, name);
if (Module.hasOwnProperty(numArguments)) {
throwBindingError("Cannot register multiple overloads of a function with the same number of arguments (" +
numArguments +
")!");
}
Module[name].overloadTable[numArguments] = value;
}
else {
Module[name] = value;
if (undefined !== numArguments) {
Module[name].numArguments = numArguments;
}
}
}
function RegisteredClass(name, constructor, instancePrototype, rawDestructor, baseClass, getActualType, upcast, downcast) {
this.name = name;
this.constructor = constructor;
this.instancePrototype = instancePrototype;
this.rawDestructor = rawDestructor;
this.baseClass = baseClass;
this.getActualType = getActualType;
this.upcast = upcast;
this.downcast = downcast;
this.pureVirtualFunctions = [];
}
function upcastPointer(ptr, ptrClass, desiredClass) {
while (ptrClass !== desiredClass) {
if (!ptrClass.upcast) {
throwBindingError("Expected null or instance of " +
desiredClass.name +
", got an instance of " +
ptrClass.name);
}
ptr = ptrClass.upcast(ptr);
ptrClass = ptrClass.baseClass;
}
return ptr;
}
function constNoSmartPtrRawPointerToWireType(destructors, handle) {
if (handle === null) {
if (this.isReference) {
throwBindingError("null is not a valid " + this.name);
}
return 0;
}
if (!handle.$$) {
throwBindingError('Cannot pass "' + _embind_repr(handle) + '" as a ' + this.name);
}
if (!handle.$$.ptr) {
throwBindingError("Cannot pass deleted object as a pointer of type " + this.name);
}
var handleClass = handle.$$.ptrType.registeredClass;
var ptr = upcastPointer(handle.$$.ptr, handleClass, this.registeredClass);
return ptr;
}
function genericPointerToWireType(destructors, handle) {
var ptr;
if (handle === null) {
if (this.isReference) {
throwBindingError("null is not a valid " + this.name);
}
if (this.isSmartPointer) {
ptr = this.rawConstructor();
if (destructors !== null) {
destructors.push(this.rawDestructor, ptr);
}
return ptr;
}
else {
return 0;
}
}
if (!handle.$$) {
throwBindingError('Cannot pass "' + _embind_repr(handle) + '" as a ' + this.name);
}
if (!handle.$$.ptr) {
throwBindingError("Cannot pass deleted object as a pointer of type " + this.name);
}
if (!this.isConst && handle.$$.ptrType.isConst) {
throwBindingError("Cannot convert argument of type " +
(handle.$$.smartPtrType
? handle.$$.smartPtrType.name
: handle.$$.ptrType.name) +
" to parameter type " +
this.name);
}
var handleClass = handle.$$.ptrType.registeredClass;
ptr = upcastPointer(handle.$$.ptr, handleClass, this.registeredClass);
if (this.isSmartPointer) {
if (undefined === handle.$$.smartPtr) {
throwBindingError("Passing raw pointer to smart pointer is illegal");
}
switch (this.sharingPolicy) {
case 0:
if (handle.$$.smartPtrType === this) {
ptr = handle.$$.smartPtr;
}
else {
throwBindingError("Cannot convert argument of type " +
(handle.$$.smartPtrType
? handle.$$.smartPtrType.name
: handle.$$.ptrType.name) +
" to parameter type " +
this.name);
}
break;
case 1:
ptr = handle.$$.smartPtr;
break;
case 2:
if (handle.$$.smartPtrType === this) {
ptr = handle.$$.smartPtr;
}
else {
var clonedHandle = handle["clone"]();
ptr = this.rawShare(ptr, __emval_register(function () {
clonedHandle["delete"]();
}));
if (destructors !== null) {
destructors.push(this.rawDestructor, ptr);
}
}
break;
default:
throwBindingError("Unsupporting sharing policy");
}
}
return ptr;
}
function nonConstNoSmartPtrRawPointerToWireType(destructors, handle) {
if (handle === null) {
if (this.isReference) {
throwBindingError("null is not a valid " + this.name);
}
return 0;
}
if (!handle.$$) {
throwBindingError('Cannot pass "' + _embind_repr(handle) + '" as a ' + this.name);
}
if (!handle.$$.ptr) {
throwBindingError("Cannot pass deleted object as a pointer of type " + this.name);
}
if (handle.$$.ptrType.isConst) {
throwBindingError("Cannot convert argument of type " +
handle.$$.ptrType.name +
" to parameter type " +
this.name);
}
var handleClass = handle.$$.ptrType.registeredClass;
var ptr = upcastPointer(handle.$$.ptr, handleClass, this.registeredClass);
return ptr;
}
function simpleReadValueFromPointer(pointer) {
return this["fromWireType"](GROWABLE_HEAP_U32()[pointer >> 2]);
}
function RegisteredPointer_getPointee(ptr) {
if (this.rawGetPointee) {
ptr = this.rawGetPointee(ptr);
}
return ptr;
}
function RegisteredPointer_destructor(ptr) {
if (this.rawDestructor) {
this.rawDestructor(ptr);
}
}
function RegisteredPointer_deleteObject(handle) {
if (handle !== null) {
handle["delete"]();
}
}
function downcastPointer(ptr, ptrClass, desiredClass) {
if (ptrClass === desiredClass) {
return ptr;
}
if (undefined === desiredClass.baseClass) {
return null;
}
var rv = downcastPointer(ptr, ptrClass, desiredClass.baseClass);
if (rv === null) {
return null;
}
return desiredClass.downcast(rv);
}
function getInheritedInstanceCount() {
return Object.keys(registeredInstances).length;
}
function getLiveInheritedInstances() {
var rv = [];
for (var k in registeredInstances) {
if (registeredInstances.hasOwnProperty(k)) {
rv.push(registeredInstances[k]);
}
}
return rv;
}
function setDelayFunction(fn) {
delayFunction = fn;
if (deletionQueue.length && delayFunction) {
delayFunction(flushPendingDeletes);
}
}
function init_embind() {
Module["getInheritedInstanceCount"] = getInheritedInstanceCount;
Module["getLiveInheritedInstances"] = getLiveInheritedInstances;
Module["flushPendingDeletes"] = flushPendingDeletes;
Module["setDelayFunction"] = setDelayFunction;
}
var registeredInstances = {};
function getBasestPointer(class_, ptr) {
if (ptr === undefined) {
throwBindingError("ptr should not be undefined");
}
while (class_.baseClass) {
ptr = class_.upcast(ptr);
class_ = class_.baseClass;
}
return ptr;
}
function getInheritedInstance(class_, ptr) {
ptr = getBasestPointer(class_, ptr);
return registeredInstances[ptr];
}
function makeClassHandle(prototype, record) {
if (!record.ptrType || !record.ptr) {
throwInternalError("makeClassHandle requires ptr and ptrType");
}
var hasSmartPtrType = !!record.smartPtrType;
var hasSmartPtr = !!record.smartPtr;
if (hasSmartPtrType !== hasSmartPtr) {
throwInternalError("Both smartPtrType and smartPtr must be specified");
}
record.count = {
value: 1,
};
return attachFinalizer(Object.create(prototype, {
$$: {
value: record,
},
}));
}
function RegisteredPointer_fromWireType(ptr) {
var rawPointer = this.getPointee(ptr);
if (!rawPointer) {
this.destructor(ptr);
return null;
}
var registeredInstance = getInheritedInstance(this.registeredClass, rawPointer);
if (undefined !== registeredInstance) {
if (0 === registeredInstance.$$.count.value) {
registeredInstance.$$.ptr = rawPointer;
registeredInstance.$$.smartPtr = ptr;
return registeredInstance["clone"]();
}
else {
var rv = registeredInstance["clone"]();
this.destructor(ptr);
return rv;
}
}
function makeDefaultHandle() {
if (this.isSmartPointer) {
return makeClassHandle(this.registeredClass.instancePrototype, {
ptrType: this.pointeeType,
ptr: rawPointer,
smartPtrType: this,
smartPtr: ptr,
});
}
else {
return makeClassHandle(this.registeredClass.instancePrototype, {
ptrType: this,
ptr: ptr,
});
}
}
var actualType = this.registeredClass.getActualType(rawPointer);
var registeredPointerRecord = registeredPointers[actualType];
if (!registeredPointerRecord) {
return makeDefaultHandle.call(this);
}
var toType;
if (this.isConst) {
toType = registeredPointerRecord.constPointerType;
}
else {
toType = registeredPointerRecord.pointerType;
}
var dp = downcastPointer(rawPointer, this.registeredClass, toType.registeredClass);
if (dp === null) {
return makeDefaultHandle.call(this);
}
if (this.isSmartPointer) {
return makeClassHandle(toType.registeredClass.instancePrototype, {
ptrType: toType,
ptr: dp,
smartPtrType: this,
smartPtr: ptr,
});
}
else {
return makeClassHandle(toType.registeredClass.instancePrototype, {
ptrType: toType,
ptr: dp,
});
}
}
function init_RegisteredPointer() {
RegisteredPointer.prototype.getPointee = RegisteredPointer_getPointee;
RegisteredPointer.prototype.destructor = RegisteredPointer_destructor;
RegisteredPointer.prototype["argPackAdvance"] = 8;
RegisteredPointer.prototype["readValueFromPointer"] = simpleReadValueFromPointer;
RegisteredPointer.prototype["deleteObject"] = RegisteredPointer_deleteObject;
RegisteredPointer.prototype["fromWireType"] = RegisteredPointer_fromWireType;
}
function RegisteredPointer(name, registeredClass, isReference, isConst, isSmartPointer, pointeeType, sharingPolicy, rawGetPointee, rawConstructor, rawShare, rawDestructor) {
this.name = name;
this.registeredClass = registeredClass;
this.isReference = isReference;
this.isConst = isConst;
this.isSmartPointer = isSmartPointer;
this.pointeeType = pointeeType;
this.sharingPolicy = sharingPolicy;
this.rawGetPointee = rawGetPointee;
this.rawConstructor = rawConstructor;
this.rawShare = rawShare;
this.rawDestructor = rawDestructor;
if (!isSmartPointer && registeredClass.baseClass === undefined) {
if (isConst) {
this["toWireType"] = constNoSmartPtrRawPointerToWireType;
this.destructorFunction = null;
}
else {
this["toWireType"] = nonConstNoSmartPtrRawPointerToWireType;
this.destructorFunction = null;
}
}
else {
this["toWireType"] = genericPointerToWireType;
}
}
function replacePublicSymbol(name, value, numArguments) {
if (!Module.hasOwnProperty(name)) {
throwInternalError("Replacing nonexistant public symbol");
}
if (undefined !== Module[name].overloadTable && undefined !== numArguments) {
Module[name].overloadTable[numArguments] = value;
}
else {
Module[name] = value;
Module[name].argCount = numArguments;
}
}
function getDynCaller(sig, ptr) {
assert(sig.indexOf("j") >= 0, "getDynCaller should only be called with i64 sigs");
var argCache = [];
return function () {
argCache.length = arguments.length;
for (var i = 0; i < arguments.length; i++) {
argCache[i] = arguments[i];
}
return dynCall(sig, ptr, argCache);
};
}
function embind__requireFunction(signature, rawFunction) {
signature = readLatin1String(signature);
function makeDynCaller() {
if (signature.indexOf("j") != -1) {
return getDynCaller(signature, rawFunction);
}
return wasmTable.get(rawFunction);
}
var fp = makeDynCaller();
if (typeof fp !== "function") {
throwBindingError("unknown function pointer with signature " +
signature +
": " +
rawFunction);
}
return fp;
}
var UnboundTypeError = undefined;
function getTypeName(type) {
var ptr = ___getTypeName(type);
var rv = readLatin1String(ptr);
_free(ptr);
return rv;
}
function throwUnboundTypeError(message, types) {
var unboundTypes = [];
var seen = {};
function visit(type) {
if (seen[type]) {
return;
}
if (registeredTypes[type]) {
return;
}
if (typeDependencies[type]) {
typeDependencies[type].forEach(visit);
return;
}
unboundTypes.push(type);
seen[type] = true;
}
types.forEach(visit);
throw new UnboundTypeError(message + ": " + unboundTypes.map(getTypeName).join([", "]));
}
function __embind_register_class(rawType, rawPointerType, rawConstPointerType, baseClassRawType, getActualTypeSignature, getActualType, upcastSignature, upcast, downcastSignature, downcast, name, destructorSignature, rawDestructor) {
name = readLatin1String(name);
getActualType = embind__requireFunction(getActualTypeSignature, getActualType);
if (upcast) {
upcast = embind__requireFunction(upcastSignature, upcast);
}
if (downcast) {
downcast = embind__requireFunction(downcastSignature, downcast);
}
rawDestructor = embind__requireFunction(destructorSignature, rawDestructor);
var legalFunctionName = makeLegalFunctionName(name);
exposePublicSymbol(legalFunctionName, function () {
throwUnboundTypeError("Cannot construct " + name + " due to unbound types", [baseClassRawType]);
});
whenDependentTypesAreResolved([rawType, rawPointerType, rawConstPointerType], baseClassRawType ? [baseClassRawType] : [], function (base) {
base = base[0];
var baseClass;
var basePrototype;
if (baseClassRawType) {
baseClass = base.registeredClass;
basePrototype = baseClass.instancePrototype;
}
else {
basePrototype = ClassHandle.prototype;
}
var constructor = createNamedFunction(legalFunctionName, function () {
if (Object.getPrototypeOf(this) !== instancePrototype) {
throw new BindingError("Use 'new' to construct " + name);
}
if (undefined === registeredClass.constructor_body) {
throw new BindingError(name + " has no accessible constructor");
}
var body = registeredClass.constructor_body[arguments.length];
if (undefined === body) {
throw new BindingError("Tried to invoke ctor of " +
name +
" with invalid number of parameters (" +
arguments.length +
") - expected (" +
Object.keys(registeredClass.constructor_body).toString() +
") parameters instead!");
}
return body.apply(this, arguments);
});
var instancePrototype = Object.create(basePrototype, {
constructor: {
value: constructor,
},
});
constructor.prototype = instancePrototype;
var registeredClass = new RegisteredClass(name, constructor, instancePrototype, rawDestructor, baseClass, getActualType, upcast, downcast);
var referenceConverter = new RegisteredPointer(name, registeredClass, true, false, false);
var pointerConverter = new RegisteredPointer(name + "*", registeredClass, false, false, false);
var constPointerConverter = new RegisteredPointer(name + " const*", registeredClass, false, true, false);
registeredPointers[rawType] = {
pointerType: pointerConverter,
constPointerType: constPointerConverter,
};
replacePublicSymbol(legalFunctionName, constructor);
return [referenceConverter, pointerConverter, constPointerConverter];
});
}
function heap32VectorToArray(count, firstElement) {
var array = [];
for (var i = 0; i < count; i++) {
array.push(GROWABLE_HEAP_I32()[(firstElement >> 2) + i]);
}
return array;
}
function runDestructors(destructors) {
while (destructors.length) {
var ptr = destructors.pop();
var del = destructors.pop();
del(ptr);
}
}
function __embind_register_class_constructor(rawClassType, argCount, rawArgTypesAddr, invokerSignature, invoker, rawConstructor) {
assert(argCount > 0);
var rawArgTypes = heap32VectorToArray(argCount, rawArgTypesAddr);
invoker = embind__requireFunction(invokerSignature, invoker);
var args = [rawConstructor];
var destructors = [];
whenDependentTypesAreResolved([], [rawClassType], function (classType) {
classType = classType[0];
var humanName = "constructor " + classType.name;
if (undefined === classType.registeredClass.constructor_body) {
classType.registeredClass.constructor_body = [];
}
if (undefined !== classType.registeredClass.constructor_body[argCount - 1]) {
throw new BindingError("Cannot register multiple constructors with identical number of parameters (" +
(argCount - 1) +
") for class '" +
classType.name +
"'! Overload resolution is currently only performed using the parameter count, not actual type info!");
}
classType.registeredClass.constructor_body[argCount - 1] = function unboundTypeHandler() {
throwUnboundTypeError("Cannot construct " + classType.name + " due to unbound types", rawArgTypes);
};
whenDependentTypesAreResolved([], rawArgTypes, function (argTypes) {
classType.registeredClass.constructor_body[argCount - 1] = function constructor_body() {
if (arguments.length !== argCount - 1) {
throwBindingError(humanName +
" called with " +
arguments.length +
" arguments, expected " +
(argCount - 1));
}
destructors.length = 0;
args.length = argCount;
for (var i = 1; i < argCount; ++i) {
args[i] = argTypes[i]["toWireType"](destructors, arguments[i - 1]);
}
var ptr = invoker.apply(null, args);
runDestructors(destructors);
return argTypes[0]["fromWireType"](ptr);
};
return [];
});
return [];
});
}
function craftInvokerFunction(humanName, argTypes, classType, cppInvokerFunc, cppTargetFunc) {
var argCount = argTypes.length;
if (argCount < 2) {
throwBindingError("argTypes array size mismatch! Must at least get return value and 'this' types!");
}
var isClassMethodFunc = argTypes[1] !== null && classType !== null;
var needsDestructorStack = false;
for (var i = 1; i < argTypes.length; ++i) {
if (argTypes[i] !== null && argTypes[i].destructorFunction === undefined) {
needsDestructorStack = true;
break;
}
}
var returns = argTypes[0].name !== "void";
var expectedArgCount = argCount - 2;
var argsWired = new Array(expectedArgCount);
var invokerFuncArgs = [];
var destructors = [];
return function () {
if (arguments.length !== expectedArgCount) {
throwBindingError("function " +
humanName +
" called with " +
arguments.length +
" arguments, expected " +
expectedArgCount +
" args!");
}
destructors.length = 0;
var thisWired;
invokerFuncArgs.length = isClassMethodFunc ? 2 : 1;
invokerFuncArgs[0] = cppTargetFunc;
if (isClassMethodFunc) {
thisWired = argTypes[1].toWireType(destructors, this);
invokerFuncArgs[1] = thisWired;
}
for (var i = 0; i < expectedArgCount; ++i) {
argsWired[i] = argTypes[i + 2].toWireType(destructors, arguments[i]);
invokerFuncArgs.push(argsWired[i]);
}
var rv = cppInvokerFunc.apply(null, invokerFuncArgs);
if (needsDestructorStack) {
runDestructors(destructors);
}
else {
for (var i = isClassMethodFunc ? 1 : 2; i < argTypes.length; i++) {
var param = i === 1 ? thisWired : argsWired[i - 2];
if (argTypes[i].destructorFunction !== null) {
argTypes[i].destructorFunction(param);
}
}
}
if (returns) {
return argTypes[0].fromWireType(rv);
}
};
}
function __embind_register_class_function(rawClassType, methodName, argCount, rawArgTypesAddr, invokerSignature, rawInvoker, context, isPureVirtual) {
var rawArgTypes = heap32VectorToArray(argCount, rawArgTypesAddr);
methodName = readLatin1String(methodName);
rawInvoker = embind__requireFunction(invokerSignature, rawInvoker);
whenDependentTypesAreResolved([], [rawClassType], function (classType) {
classType = classType[0];
var humanName = classType.name + "." + methodName;
if (isPureVirtual) {
classType.registeredClass.pureVirtualFunctions.push(methodName);
}
function unboundTypesHandler() {
throwUnboundTypeError("Cannot call " + humanName + " due to unbound types", rawArgTypes);
}
var proto = classType.registeredClass.instancePrototype;
var method = proto[methodName];
if (undefined === method ||
(undefined === method.overloadTable &&
method.className !== classType.name &&
method.argCount === argCount - 2)) {
unboundTypesHandler.argCount = argCount - 2;
unboundTypesHandler.className = classType.name;
proto[methodName] = unboundTypesHandler;
}
else {
ensureOverloadTable(proto, methodName, humanName);
proto[methodName].overloadTable[argCount - 2] = unboundTypesHandler;
}
whenDependentTypesAreResolved([], rawArgTypes, function (argTypes) {
var memberFunction = craftInvokerFunction(humanName, argTypes, classType, rawInvoker, context);
if (undefined === proto[methodName].overloadTable) {
memberFunction.argCount = argCount - 2;
proto[methodName] = memberFunction;
}
else {
proto[methodName].overloadTable[argCount - 2] = memberFunction;
}
return [];
});
return [];
});
}
var emval_free_list = [];
var emval_handle_array = [
{},
{
value: undefined,
},
{
value: null,
},
{
value: true,
},
{
value: false,
},
];
function __emval_decref(handle) {
if (handle > 4 && 0 === --emval_handle_array[handle].refcount) {
emval_handle_array[handle] = undefined;
emval_free_list.push(handle);
}
}
function count_emval_handles() {
var count = 0;
for (var i = 5; i < emval_handle_array.length; ++i) {
if (emval_handle_array[i] !== undefined) {
++count;
}
}
return count;
}
function get_first_emval() {
for (var i = 5; i < emval_handle_array.length; ++i) {
if (emval_handle_array[i] !== undefined) {
return emval_handle_array[i];
}
}
return null;
}
function init_emval() {
Module["count_emval_handles"] = count_emval_handles;
Module["get_first_emval"] = get_first_emval;
}
function __emval_register(value) {
switch (value) {
case undefined: {
return 1;
}
case null: {
return 2;
}
case true: {
return 3;
}
case false: {
return 4;
}
default: {
var handle = emval_free_list.length
? emval_free_list.pop()
: emval_handle_array.length;
emval_handle_array[handle] = {
refcount: 1,
value: value,
};
return handle;
}
}
}
function __embind_register_emval(rawType, name) {
name = readLatin1String(name);
registerType(rawType, {
name: name,
fromWireType: function (handle) {
var rv = emval_handle_array[handle].value;
__emval_decref(handle);
return rv;
},
toWireType: function (destructors, value) {
return __emval_register(value);
},
argPackAdvance: 8,
readValueFromPointer: simpleReadValueFromPointer,
destructorFunction: null,
});
}
function _embind_repr(v) {
if (v === null) {
return "null";
}
var t = typeof v;
if (t === "object" || t === "array" || t === "function") {
return v.toString();
}
else {
return "" + v;
}
}
function floatReadValueFromPointer(name, shift) {
switch (shift) {
case 2:
return function (pointer) {
return this["fromWireType"](GROWABLE_HEAP_F32()[pointer >> 2]);
};
case 3:
return function (pointer) {
return this["fromWireType"](GROWABLE_HEAP_F64()[pointer >> 3]);
};
default:
throw new TypeError("Unknown float type: " + name);
}
}
function __embind_register_float(rawType, name, size) {
var shift = getShiftFromSize(size);
name = readLatin1String(name);
registerType(rawType, {
name: name,
fromWireType: function (value) {
return value;
},
toWireType: function (destructors, value) {
if (typeof value !== "number" && typeof value !== "boolean") {
throw new TypeError('Cannot convert "' + _embind_repr(value) + '" to ' + this.name);
}
return value;
},
argPackAdvance: 8,
readValueFromPointer: floatReadValueFromPointer(name, shift),
destructorFunction: null,
});
}
function integerReadValueFromPointer(name, shift, signed) {
switch (shift) {
case 0:
return signed
? function readS8FromPointer(pointer) {
return GROWABLE_HEAP_I8()[pointer];
}
: function readU8FromPointer(pointer) {
return GROWABLE_HEAP_U8()[pointer];
};
case 1:
return signed
? function readS16FromPointer(pointer) {
return GROWABLE_HEAP_I16()[pointer >> 1];
}
: function readU16FromPointer(pointer) {
return GROWABLE_HEAP_U16()[pointer >> 1];
};
case 2:
return signed
? function readS32FromPointer(pointer) {
return GROWABLE_HEAP_I32()[pointer >> 2];
}
: function readU32FromPointer(pointer) {
return GROWABLE_HEAP_U32()[pointer >> 2];
};
default:
throw new TypeError("Unknown integer type: " + name);
}
}
function __embind_register_integer(primitiveType, name, size, minRange, maxRange) {
name = readLatin1String(name);
if (maxRange === -1) {
maxRange = 4294967295;
}
var shift = getShiftFromSize(size);
var fromWireType = function (value) {
return value;
};
if (minRange === 0) {
var bitshift = 32 - 8 * size;
fromWireType = function (value) {
return (value << bitshift) >>> bitshift;
};
}
var isUnsignedType = name.indexOf("unsigned") != -1;
registerType(primitiveType, {
name: name,
fromWireType: fromWireType,
toWireType: function (destructors, value) {
if (typeof value !== "number" && typeof value !== "boolean") {
throw new TypeError('Cannot convert "' + _embind_repr(value) + '" to ' + this.name);
}
if (value < minRange || value > maxRange) {
throw new TypeError('Passing a number "' +
_embind_repr(value) +
'" from JS side to C/C++ side to an argument of type "' +
name +
'", which is outside the valid range [' +
minRange +
", " +
maxRange +
"]!");
}
return isUnsignedType ? value >>> 0 : value | 0;
},
argPackAdvance: 8,
readValueFromPointer: integerReadValueFromPointer(name, shift, minRange !== 0),
destructorFunction: null,
});
}
function __embind_register_memory_view(rawType, dataTypeIndex, name) {
var typeMapping = [
Int8Array,
Uint8Array,
Int16Array,
Uint16Array,
Int32Array,
Uint32Array,
Float32Array,
Float64Array,
];
var TA = typeMapping[dataTypeIndex];
function decodeMemoryView(handle) {
handle = handle >> 2;
var heap = GROWABLE_HEAP_U32();
var size = heap[handle];
var data = heap[handle + 1];
return new TA(buffer, data, size);
}
name = readLatin1String(name);
registerType(rawType, {
name: name,
fromWireType: decodeMemoryView,
argPackAdvance: 8,
readValueFromPointer: decodeMemoryView,
}, {
ignoreDuplicateRegistrations: true,
});
}
function __embind_register_std_string(rawType, name) {
name = readLatin1String(name);
var stdStringIsUTF8 = name === "std::string";
registerType(rawType, {
name: name,
fromWireType: function (value) {
var length = GROWABLE_HEAP_U32()[value >> 2];
var str;
if (stdStringIsUTF8) {
var decodeStartPtr = value + 4;
for (var i = 0; i <= length; ++i) {
var currentBytePtr = value + 4 + i;
if (i == length || GROWABLE_HEAP_U8()[currentBytePtr] == 0) {
var maxRead = currentBytePtr - decodeStartPtr;
var stringSegment = UTF8ToString(decodeStartPtr, maxRead);
if (str === undefined) {
str = stringSegment;
}
else {
str += String.fromCharCode(0);
str += stringSegment;
}
decodeStartPtr = currentBytePtr + 1;
}
}
}
else {
var a = new Array(length);
for (var i = 0; i < length; ++i) {
a[i] = String.fromCharCode(GROWABLE_HEAP_U8()[value + 4 + i]);
}
str = a.join("");
}
_free(value);
return str;
},
toWireType: function (destructors, value) {
if (value instanceof ArrayBuffer) {
value = new Uint8Array(value);
}
var getLength;
var valueIsOfTypeString = typeof value === "string";
if (!(valueIsOfTypeString ||
value instanceof Uint8Array ||
value instanceof Uint8ClampedArray ||
value instanceof Int8Array)) {
throwBindingError("Cannot pass non-string to std::string");
}
if (stdStringIsUTF8 && valueIsOfTypeString) {
getLength = function () {
return lengthBytesUTF8(value);
};
}
else {
getLength = function () {
return value.length;
};
}
var length = getLength();
var ptr = _malloc(4 + length + 1);
GROWABLE_HEAP_U32()[ptr >> 2] = length;
if (stdStringIsUTF8 && valueIsOfTypeString) {
stringToUTF8(value, ptr + 4, length + 1);
}
else {
if (valueIsOfTypeString) {
for (var i = 0; i < length; ++i) {
var charCode = value.charCodeAt(i);
if (charCode > 255) {
_free(ptr);
throwBindingError("String has UTF-16 code units that do not fit in 8 bits");
}
GROWABLE_HEAP_U8()[ptr + 4 + i] = charCode;
}
}
else {
for (var i = 0; i < length; ++i) {
GROWABLE_HEAP_U8()[ptr + 4 + i] = value[i];
}
}
}
if (destructors !== null) {
destructors.push(_free, ptr);
}
return ptr;
},
argPackAdvance: 8,
readValueFromPointer: simpleReadValueFromPointer,
destructorFunction: function (ptr) {
_free(ptr);
},
});
}
function __embind_register_std_wstring(rawType, charSize, name) {
name = readLatin1String(name);
var decodeString, encodeString, getHeap, lengthBytesUTF, shift;
if (charSize === 2) {
decodeString = UTF16ToString;
encodeString = stringToUTF16;
lengthBytesUTF = lengthBytesUTF16;
getHeap = function () {
return GROWABLE_HEAP_U16();
};
shift = 1;
}
else if (charSize === 4) {
decodeString = UTF32ToString;
encodeString = stringToUTF32;
lengthBytesUTF = lengthBytesUTF32;
getHeap = function () {
return GROWABLE_HEAP_U32();
};
shift = 2;
}
registerType(rawType, {
name: name,
fromWireType: function (value) {
var length = GROWABLE_HEAP_U32()[value >> 2];
var HEAP = getHeap();
var str;
var decodeStartPtr = value + 4;
for (var i = 0; i <= length; ++i) {
var currentBytePtr = value + 4 + i * charSize;
if (i == length || HEAP[currentBytePtr >> shift] == 0) {
var maxReadBytes = currentBytePtr - decodeStartPtr;
var stringSegment = decodeString(decodeStartPtr, maxReadBytes);
if (str === undefined) {
str = stringSegment;
}
else {
str += String.fromCharCode(0);
str += stringSegment;
}
decodeStartPtr = currentBytePtr + charSize;
}
}
_free(value);
return str;
},
toWireType: function (destructors, value) {
if (!(typeof value === "string")) {
throwBindingError("Cannot pass non-string to C++ string type " + name);
}
var length = lengthBytesUTF(value);
var ptr = _malloc(4 + length + charSize);
GROWABLE_HEAP_U32()[ptr >> 2] = length >> shift;
encodeString(value, ptr + 4, length + charSize);
if (destructors !== null) {
destructors.push(_free, ptr);
}
return ptr;
},
argPackAdvance: 8,
readValueFromPointer: simpleReadValueFromPointer,
destructorFunction: function (ptr) {
_free(ptr);
},
});
}
function __embind_register_void(rawType, name) {
name = readLatin1String(name);
registerType(rawType, {
isVoid: true,
name: name,
argPackAdvance: 0,
fromWireType: function () {
return undefined;
},
toWireType: function (destructors, o) {
return undefined;
},
});
}
function __emscripten_notify_thread_queue(targetThreadId, mainThreadId) {
if (targetThreadId == mainThreadId) {
postMessage({
cmd: "processQueuedMainThreadWork",
});
}
else if (ENVIRONMENT_IS_PTHREAD) {
postMessage({
targetThread: targetThreadId,
cmd: "processThreadQueue",
});
}
else {
var pthread = PThread.pthreads[targetThreadId];
var worker = pthread && pthread.worker;
if (!worker) {
return;
}
worker.postMessage({
cmd: "processThreadQueue",
});
}
return 1;
}
function __emval_incref(handle) {
if (handle > 4) {
emval_handle_array[handle].refcount += 1;
}
}
function requireRegisteredType(rawType, humanName) {
var impl = registeredTypes[rawType];
if (undefined === impl) {
throwBindingError(humanName + " has unknown type " + getTypeName(rawType));
}
return impl;
}
function __emval_take_value(type, argv) {
type = requireRegisteredType(type, "_emval_take_value");
var v = type["readValueFromPointer"](argv);
return __emval_register(v);
}
function _abort() {
abort();
}
function _emscripten_asm_const_int(code, sigPtr, argbuf) {
var args = readAsmConstArgs(sigPtr, argbuf);
return ASM_CONSTS[code].apply(null, args);
}
function _emscripten_check_blocking_allowed() {
if (ENVIRONMENT_IS_WORKER)
return;
warnOnce("Blocking on the main thread is very dangerous, see https://emscripten.org/docs/porting/pthreads.html#blocking-on-the-main-browser-thread");
}
function _emscripten_conditional_set_current_thread_status(expectedStatus, newStatus) {
expectedStatus = expectedStatus | 0;
newStatus = newStatus | 0;
}
function _emscripten_futex_wait(addr, val, timeout) {
if (addr <= 0 || addr > GROWABLE_HEAP_I8().length || addr & (3 != 0))
return -28;
if (!ENVIRONMENT_IS_WEB) {
var ret = Atomics.wait(GROWABLE_HEAP_I32(), addr >> 2, val, timeout);
if (ret === "timed-out")
return -73;
if (ret === "not-equal")
return -6;
if (ret === "ok")
return 0;
throw "Atomics.wait returned an unexpected value " + ret;
}
else {
if (Atomics.load(GROWABLE_HEAP_I32(), addr >> 2) != val) {
return -6;
}
var tNow = performance.now();
var tEnd = tNow + timeout;
var lastAddr = Atomics.exchange(GROWABLE_HEAP_I32(), PThread.mainThreadFutex >> 2, addr);
while (1) {
tNow = performance.now();
if (tNow > tEnd) {
lastAddr = Atomics.exchange(GROWABLE_HEAP_I32(), PThread.mainThreadFutex >> 2, 0);
return -73;
}
lastAddr = Atomics.exchange(GROWABLE_HEAP_I32(), PThread.mainThreadFutex >> 2, 0);
if (lastAddr == 0) {
break;
}
_emscripten_main_thread_process_queued_calls();
if (Atomics.load(GROWABLE_HEAP_I32(), addr >> 2) != val) {
return -6;
}
lastAddr = Atomics.exchange(GROWABLE_HEAP_I32(), PThread.mainThreadFutex >> 2, addr);
}
return 0;
}
}
function _emscripten_is_main_browser_thread() {
return __pthread_is_main_browser_thread | 0;
}
function _emscripten_is_main_runtime_thread() {
return __pthread_is_main_runtime_thread | 0;
}
function _emscripten_memcpy_big(dest, src, num) {
GROWABLE_HEAP_U8().copyWithin(dest, src, src + num);
}
function _emscripten_proxy_to_main_thread_js(index, sync) {
var numCallArgs = arguments.length - 2;
var stack = stackSave();
var args = stackAlloc(numCallArgs * 8);
var b = args >> 3;
for (var i = 0; i < numCallArgs; i++) {
GROWABLE_HEAP_F64()[b + i] = arguments[2 + i];
}
var ret = _emscripten_run_in_main_runtime_thread_js(index, numCallArgs, args, sync);
stackRestore(stack);
return ret;
}
var _emscripten_receive_on_main_thread_js_callArgs = [];
var readAsmConstArgsArray = [];
function readAsmConstArgs(sigPtr, buf) {
readAsmConstArgsArray.length = 0;
var ch;
buf >>= 2;
while ((ch = GROWABLE_HEAP_U8()[sigPtr++])) {
var double = ch < 105;
if (double && buf & 1)
buf++;
readAsmConstArgsArray.push(double ? GROWABLE_HEAP_F64()[buf++ >> 1] : GROWABLE_HEAP_I32()[buf]);
++buf;
}
return readAsmConstArgsArray;
}
function _emscripten_receive_on_main_thread_js(index, numCallArgs, args) {
_emscripten_receive_on_main_thread_js_callArgs.length = numCallArgs;
var b = args >> 3;
for (var i = 0; i < numCallArgs; i++) {
_emscripten_receive_on_main_thread_js_callArgs[i] = GROWABLE_HEAP_F64()[b + i];
}
var isEmAsmConst = index < 0;
var func = !isEmAsmConst
? proxiedFunctionTable[index]
: ASM_CONSTS[-index - 1];
return func.apply(null, _emscripten_receive_on_main_thread_js_callArgs);
}
function _emscripten_get_heap_size() {
return GROWABLE_HEAP_U8().length;
}
function emscripten_realloc_buffer(size) {
try {
wasmMemory.grow((size - buffer.byteLength + 65535) >>> 16);
updateGlobalBufferAndViews(wasmMemory.buffer);
return 1;
}
catch (e) { }
}
function _emscripten_resize_heap(requestedSize) {
requestedSize = requestedSize >>> 0;
var oldSize = _emscripten_get_heap_size();
if (requestedSize <= oldSize) {
return false;
}
var maxHeapSize = 2147483648;
if (requestedSize > maxHeapSize) {
return false;
}
var minHeapSize = 16777216;
for (var cutDown = 1; cutDown <= 4; cutDown *= 2) {
var overGrownHeapSize = oldSize * (1 + 0.2 / cutDown);
overGrownHeapSize = Math.min(overGrownHeapSize, requestedSize + 100663296);
var newSize = Math.min(maxHeapSize, alignUp(Math.max(minHeapSize, requestedSize, overGrownHeapSize), 65536));
var replacement = emscripten_realloc_buffer(newSize);
if (replacement) {
return true;
}
}
return false;
}
var JSEvents = {
inEventHandler: 0,
removeAllEventListeners: function () {
for (var i = JSEvents.eventHandlers.length - 1; i >= 0; --i) {
JSEvents._removeHandler(i);
}
JSEvents.eventHandlers = [];
JSEvents.deferredCalls = [];
},
registerRemoveEventListeners: function () {
if (!JSEvents.removeEventListenersRegistered) {
__ATEXIT__.push(JSEvents.removeAllEventListeners);
JSEvents.removeEventListenersRegistered = true;
}
},
deferredCalls: [],
deferCall: function (targetFunction, precedence, argsList) {
function arraysHaveEqualContent(arrA, arrB) {
if (arrA.length != arrB.length)
return false;
for (var i in arrA) {
if (arrA[i] != arrB[i])
return false;
}
return true;
}
for (var i in JSEvents.deferredCalls) {
var call = JSEvents.deferredCalls[i];
if (call.targetFunction == targetFunction &&
arraysHaveEqualContent(call.argsList, argsList)) {
return;
}
}
JSEvents.deferredCalls.push({
targetFunction: targetFunction,
precedence: precedence,
argsList: argsList,
});
JSEvents.deferredCalls.sort(function (x, y) {
return x.precedence < y.precedence;
});
},
removeDeferredCalls: function (targetFunction) {
for (var i = 0; i < JSEvents.deferredCalls.length; ++i) {
if (JSEvents.deferredCalls[i].targetFunction == targetFunction) {
JSEvents.deferredCalls.splice(i, 1);
--i;
}
}
},
canPerformEventHandlerRequests: function () {
return (JSEvents.inEventHandler &&
JSEvents.currentEventHandler.allowsDeferredCalls);
},
runDeferredCalls: function () {
if (!JSEvents.canPerformEventHandlerRequests()) {
return;
}
for (var i = 0; i < JSEvents.deferredCalls.length; ++i) {
var call = JSEvents.deferredCalls[i];
JSEvents.deferredCalls.splice(i, 1);
--i;
call.targetFunction.apply(null, call.argsList);
}
},
eventHandlers: [],
removeAllHandlersOnTarget: function (target, eventTypeString) {
for (var i = 0; i < JSEvents.eventHandlers.length; ++i) {
if (JSEvents.eventHandlers[i].target == target &&
(!eventTypeString ||
eventTypeString == JSEvents.eventHandlers[i].eventTypeString)) {
JSEvents._removeHandler(i--);
}
}
},
_removeHandler: function (i) {
var h = JSEvents.eventHandlers[i];
h.target.removeEventListener(h.eventTypeString, h.eventListenerFunc, h.useCapture);
JSEvents.eventHandlers.splice(i, 1);
},
registerOrRemoveHandler: function (eventHandler) {
var jsEventHandler = function jsEventHandler(event) {
++JSEvents.inEventHandler;
JSEvents.currentEventHandler = eventHandler;
JSEvents.runDeferredCalls();
eventHandler.handlerFunc(event);
JSEvents.runDeferredCalls();
--JSEvents.inEventHandler;
};
if (eventHandler.callbackfunc) {
eventHandler.eventListenerFunc = jsEventHandler;
eventHandler.target.addEventListener(eventHandler.eventTypeString, jsEventHandler, eventHandler.useCapture);
JSEvents.eventHandlers.push(eventHandler);
JSEvents.registerRemoveEventListeners();
}
else {
for (var i = 0; i < JSEvents.eventHandlers.length; ++i) {
if (JSEvents.eventHandlers[i].target == eventHandler.target &&
JSEvents.eventHandlers[i].eventTypeString ==
eventHandler.eventTypeString) {
JSEvents._removeHandler(i--);
}
}
}
},
queueEventHandlerOnThread_iiii: function (targetThread, eventHandlerFunc, eventTypeId, eventData, userData) {
var stackTop = stackSave();
var varargs = stackAlloc(12);
GROWABLE_HEAP_I32()[varargs >> 2] = eventTypeId;
GROWABLE_HEAP_I32()[(varargs + 4) >> 2] = eventData;
GROWABLE_HEAP_I32()[(varargs + 8) >> 2] = userData;
__emscripten_call_on_thread(0, targetThread, 637534208, eventHandlerFunc, eventData, varargs);
stackRestore(stackTop);
},
getTargetThreadForEventCallback: function (targetThread) {
switch (targetThread) {
case 1:
return 0;
case 2:
return PThread.currentProxiedOperationCallerThread;
default:
return targetThread;
}
},
getNodeNameForTarget: function (target) {
if (!target)
return "";
if (target == window)
return "#window";
if (target == screen)
return "#screen";
return target && target.nodeName ? target.nodeName : "";
},
fullscreenEnabled: function () {
return document.fullscreenEnabled || document.webkitFullscreenEnabled;
},
};
function stringToNewUTF8(jsString) {
var length = lengthBytesUTF8(jsString) + 1;
var cString = _malloc(length);
stringToUTF8(jsString, cString, length);
return cString;
}
function _emscripten_set_offscreencanvas_size_on_target_thread_js(targetThread, targetCanvas, width, height) {
var stackTop = stackSave();
var varargs = stackAlloc(12);
var targetCanvasPtr = 0;
if (targetCanvas) {
targetCanvasPtr = stringToNewUTF8(targetCanvas);
}
GROWABLE_HEAP_I32()[varargs >> 2] = targetCanvasPtr;
GROWABLE_HEAP_I32()[(varargs + 4) >> 2] = width;
GROWABLE_HEAP_I32()[(varargs + 8) >> 2] = height;
__emscripten_call_on_thread(0, targetThread, 657457152, 0, targetCanvasPtr, varargs);
stackRestore(stackTop);
}
function _emscripten_set_offscreencanvas_size_on_target_thread(targetThread, targetCanvas, width, height) {
targetCanvas = targetCanvas ? UTF8ToString(targetCanvas) : "";
_emscripten_set_offscreencanvas_size_on_target_thread_js(targetThread, targetCanvas, width, height);
}
function maybeCStringToJsString(cString) {
return cString > 2 ? UTF8ToString(cString) : cString;
}
var specialHTMLTargets = [
0,
typeof document !== "undefined" ? document : 0,
typeof window !== "undefined" ? window : 0,
];
function findEventTarget(target) {
target = maybeCStringToJsString(target);
var domElement = specialHTMLTargets[target] ||
(typeof document !== "undefined"
? document.querySelector(target)
: undefined);
return domElement;
}
function findCanvasEventTarget(target) {
return findEventTarget(target);
}
function _emscripten_set_canvas_element_size_calling_thread(target, width, height) {
var canvas = findCanvasEventTarget(target);
if (!canvas)
return -4;
if (canvas.canvasSharedPtr) {
GROWABLE_HEAP_I32()[canvas.canvasSharedPtr >> 2] = width;
GROWABLE_HEAP_I32()[(canvas.canvasSharedPtr + 4) >> 2] = height;
}
if (canvas.offscreenCanvas || !canvas.controlTransferredOffscreen) {
if (canvas.offscreenCanvas)
canvas = canvas.offscreenCanvas;
var autoResizeViewport = false;
if (canvas.GLctxObject && canvas.GLctxObject.GLctx) {
var prevViewport = canvas.GLctxObject.GLctx.getParameter(2978);
autoResizeViewport =
prevViewport[0] === 0 &&
prevViewport[1] === 0 &&
prevViewport[2] === canvas.width &&
prevViewport[3] === canvas.height;
}
canvas.width = width;
canvas.height = height;
if (autoResizeViewport) {
canvas.GLctxObject.GLctx.viewport(0, 0, width, height);
}
}
else if (canvas.canvasSharedPtr) {
var targetThread = GROWABLE_HEAP_I32()[(canvas.canvasSharedPtr + 8) >> 2];
_emscripten_set_offscreencanvas_size_on_target_thread(targetThread, target, width, height);
return 1;
}
else {
return -4;
}
return 0;
}
function _emscripten_set_canvas_element_size_main_thread(target, width, height) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(14, 1, target, width, height);
return _emscripten_set_canvas_element_size_calling_thread(target, width, height);
}
function _emscripten_set_canvas_element_size(target, width, height) {
var canvas = findCanvasEventTarget(target);
if (canvas) {
return _emscripten_set_canvas_element_size_calling_thread(target, width, height);
}
else {
return _emscripten_set_canvas_element_size_main_thread(target, width, height);
}
}
function _emscripten_set_current_thread_status(newStatus) {
newStatus = newStatus | 0;
}
function __webgl_enable_ANGLE_instanced_arrays(ctx) {
var ext = ctx.getExtension("ANGLE_instanced_arrays");
if (ext) {
ctx["vertexAttribDivisor"] = function (index, divisor) {
ext["vertexAttribDivisorANGLE"](index, divisor);
};
ctx["drawArraysInstanced"] = function (mode, first, count, primcount) {
ext["drawArraysInstancedANGLE"](mode, first, count, primcount);
};
ctx["drawElementsInstanced"] = function (mode, count, type, indices, primcount) {
ext["drawElementsInstancedANGLE"](mode, count, type, indices, primcount);
};
return 1;
}
}
function __webgl_enable_OES_vertex_array_object(ctx) {
var ext = ctx.getExtension("OES_vertex_array_object");
if (ext) {
ctx["createVertexArray"] = function () {
return ext["createVertexArrayOES"]();
};
ctx["deleteVertexArray"] = function (vao) {
ext["deleteVertexArrayOES"](vao);
};
ctx["bindVertexArray"] = function (vao) {
ext["bindVertexArrayOES"](vao);
};
ctx["isVertexArray"] = function (vao) {
return ext["isVertexArrayOES"](vao);
};
return 1;
}
}
function __webgl_enable_WEBGL_draw_buffers(ctx) {
var ext = ctx.getExtension("WEBGL_draw_buffers");
if (ext) {
ctx["drawBuffers"] = function (n, bufs) {
ext["drawBuffersWEBGL"](n, bufs);
};
return 1;
}
}
function __webgl_enable_WEBGL_multi_draw(ctx) {
return !!(ctx.multiDrawWebgl = ctx.getExtension("WEBGL_multi_draw"));
}
var GL = {
counter: 1,
buffers: [],
programs: [],
framebuffers: [],
renderbuffers: [],
textures: [],
uniforms: [],
shaders: [],
vaos: [],
contexts: {},
offscreenCanvases: {},
timerQueriesEXT: [],
programInfos: {},
stringCache: {},
unpackAlignment: 4,
recordError: function recordError(errorCode) {
if (!GL.lastError) {
GL.lastError = errorCode;
}
},
getNewId: function (table) {
var ret = GL.counter++;
for (var i = table.length; i < ret; i++) {
table[i] = null;
}
return ret;
},
getSource: function (shader, count, string, length) {
var source = "";
for (var i = 0; i < count; ++i) {
var len = length ? GROWABLE_HEAP_I32()[(length + i * 4) >> 2] : -1;
source += UTF8ToString(GROWABLE_HEAP_I32()[(string + i * 4) >> 2], len < 0 ? undefined : len);
}
return source;
},
createContext: function (canvas, webGLContextAttributes) {
var ctx = canvas.getContext("webgl", webGLContextAttributes);
if (!ctx)
return 0;
var handle = GL.registerContext(ctx, webGLContextAttributes);
return handle;
},
registerContext: function (ctx, webGLContextAttributes) {
var handle = _malloc(8);
GROWABLE_HEAP_I32()[(handle + 4) >> 2] = _pthread_self();
var context = {
handle: handle,
attributes: webGLContextAttributes,
version: webGLContextAttributes.majorVersion,
GLctx: ctx,
};
if (ctx.canvas)
ctx.canvas.GLctxObject = context;
GL.contexts[handle] = context;
if (typeof webGLContextAttributes.enableExtensionsByDefault === "undefined" ||
webGLContextAttributes.enableExtensionsByDefault) {
GL.initExtensions(context);
}
return handle;
},
makeContextCurrent: function (contextHandle) {
GL.currentContext = GL.contexts[contextHandle];
Module.ctx = GLctx = GL.currentContext && GL.currentContext.GLctx;
return !(contextHandle && !GLctx);
},
getContext: function (contextHandle) {
return GL.contexts[contextHandle];
},
deleteContext: function (contextHandle) {
if (GL.currentContext === GL.contexts[contextHandle])
GL.currentContext = null;
if (typeof JSEvents === "object")
JSEvents.removeAllHandlersOnTarget(GL.contexts[contextHandle].GLctx.canvas);
if (GL.contexts[contextHandle] && GL.contexts[contextHandle].GLctx.canvas)
GL.contexts[contextHandle].GLctx.canvas.GLctxObject = undefined;
_free(GL.contexts[contextHandle].handle);
GL.contexts[contextHandle] = null;
},
initExtensions: function (context) {
if (!context)
context = GL.currentContext;
if (context.initExtensionsDone)
return;
context.initExtensionsDone = true;
var GLctx = context.GLctx;
__webgl_enable_ANGLE_instanced_arrays(GLctx);
__webgl_enable_OES_vertex_array_object(GLctx);
__webgl_enable_WEBGL_draw_buffers(GLctx);
GLctx.disjointTimerQueryExt = GLctx.getExtension("EXT_disjoint_timer_query");
__webgl_enable_WEBGL_multi_draw(GLctx);
var automaticallyEnabledExtensions = [
"OES_texture_float",
"OES_texture_half_float",
"OES_standard_derivatives",
"OES_vertex_array_object",
"WEBGL_compressed_texture_s3tc",
"WEBGL_depth_texture",
"OES_element_index_uint",
"EXT_texture_filter_anisotropic",
"EXT_frag_depth",
"WEBGL_draw_buffers",
"ANGLE_instanced_arrays",
"OES_texture_float_linear",
"OES_texture_half_float_linear",
"EXT_blend_minmax",
"EXT_shader_texture_lod",
"EXT_texture_norm16",
"WEBGL_compressed_texture_pvrtc",
"EXT_color_buffer_half_float",
"WEBGL_color_buffer_float",
"EXT_sRGB",
"WEBGL_compressed_texture_etc1",
"EXT_disjoint_timer_query",
"WEBGL_compressed_texture_etc",
"WEBGL_compressed_texture_astc",
"EXT_color_buffer_float",
"WEBGL_compressed_texture_s3tc_srgb",
"EXT_disjoint_timer_query_webgl2",
"WEBKIT_WEBGL_compressed_texture_pvrtc",
];
var exts = GLctx.getSupportedExtensions() || [];
exts.forEach(function (ext) {
if (automaticallyEnabledExtensions.indexOf(ext) != -1) {
GLctx.getExtension(ext);
}
});
},
populateUniformTable: function (program) {
var p = GL.programs[program];
var ptable = (GL.programInfos[program] = {
uniforms: {},
maxUniformLength: 0,
maxAttributeLength: -1,
maxUniformBlockNameLength: -1,
});
var utable = ptable.uniforms;
var numUniforms = GLctx.getProgramParameter(p, 35718);
for (var i = 0; i < numUniforms; ++i) {
var u = GLctx.getActiveUniform(p, i);
var name = u.name;
ptable.maxUniformLength = Math.max(ptable.maxUniformLength, name.length + 1);
if (name.slice(-1) == "]") {
name = name.slice(0, name.lastIndexOf("["));
}
var loc = GLctx.getUniformLocation(p, name);
if (loc) {
var id = GL.getNewId(GL.uniforms);
utable[name] = [u.size, id];
GL.uniforms[id] = loc;
for (var j = 1; j < u.size; ++j) {
var n = name + "[" + j + "]";
loc = GLctx.getUniformLocation(p, n);
id = GL.getNewId(GL.uniforms);
GL.uniforms[id] = loc;
}
}
}
},
};
var __emscripten_webgl_power_preferences = [
"default",
"low-power",
"high-performance",
];
function _emscripten_webgl_do_create_context(target, attributes) {
var a = attributes >> 2;
var powerPreference = GROWABLE_HEAP_I32()[a + (24 >> 2)];
var contextAttributes = {
alpha: !!GROWABLE_HEAP_I32()[a + (0 >> 2)],
depth: !!GROWABLE_HEAP_I32()[a + (4 >> 2)],
stencil: !!GROWABLE_HEAP_I32()[a + (8 >> 2)],
antialias: !!GROWABLE_HEAP_I32()[a + (12 >> 2)],
premultipliedAlpha: !!GROWABLE_HEAP_I32()[a + (16 >> 2)],
preserveDrawingBuffer: !!GROWABLE_HEAP_I32()[a + (20 >> 2)],
powerPreference: __emscripten_webgl_power_preferences[powerPreference],
failIfMajorPerformanceCaveat: !!GROWABLE_HEAP_I32()[a + (28 >> 2)],
majorVersion: GROWABLE_HEAP_I32()[a + (32 >> 2)],
minorVersion: GROWABLE_HEAP_I32()[a + (36 >> 2)],
enableExtensionsByDefault: GROWABLE_HEAP_I32()[a + (40 >> 2)],
explicitSwapControl: GROWABLE_HEAP_I32()[a + (44 >> 2)],
proxyContextToMainThread: GROWABLE_HEAP_I32()[a + (48 >> 2)],
renderViaOffscreenBackBuffer: GROWABLE_HEAP_I32()[a + (52 >> 2)],
};
var canvas = findCanvasEventTarget(target);
if (!canvas) {
return 0;
}
if (contextAttributes.explicitSwapControl) {
return 0;
}
var contextHandle = GL.createContext(canvas, contextAttributes);
return contextHandle;
}
function _emscripten_webgl_create_context(a0, a1) {
return _emscripten_webgl_do_create_context(a0, a1);
}
var ENV = {};
function getExecutableName() {
return thisProgram || "./this.program";
}
function getEnvStrings() {
if (!getEnvStrings.strings) {
var lang = ((typeof navigator === "object" &&
navigator.languages &&
navigator.languages[0]) ||
"C").replace("-", "_") + ".UTF-8";
var env = {
USER: "web_user",
LOGNAME: "web_user",
PATH: "/",
PWD: "/",
HOME: "/home/web_user",
LANG: lang,
_: getExecutableName(),
};
for (var x in ENV) {
env[x] = ENV[x];
}
var strings = [];
for (var x in env) {
strings.push(x + "=" + env[x]);
}
getEnvStrings.strings = strings;
}
return getEnvStrings.strings;
}
function _environ_get(__environ, environ_buf) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(15, 1, __environ, environ_buf);
try {
var bufSize = 0;
getEnvStrings().forEach(function (string, i) {
var ptr = environ_buf + bufSize;
GROWABLE_HEAP_I32()[(__environ + i * 4) >> 2] = ptr;
writeAsciiToMemory(string, ptr);
bufSize += string.length + 1;
});
return 0;
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return e.errno;
}
}
function _environ_sizes_get(penviron_count, penviron_buf_size) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(16, 1, penviron_count, penviron_buf_size);
try {
var strings = getEnvStrings();
GROWABLE_HEAP_I32()[penviron_count >> 2] = strings.length;
var bufSize = 0;
strings.forEach(function (string) {
bufSize += string.length + 1;
});
GROWABLE_HEAP_I32()[penviron_buf_size >> 2] = bufSize;
return 0;
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return e.errno;
}
}
function _exit(status) {
exit(status);
}
function _fd_close(fd) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(17, 1, fd);
try {
var stream = SYSCALLS.getStreamFromFD(fd);
FS.close(stream);
return 0;
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return e.errno;
}
}
function _fd_fdstat_get(fd, pbuf) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(18, 1, fd, pbuf);
try {
var stream = SYSCALLS.getStreamFromFD(fd);
var type = stream.tty
? 2
: FS.isDir(stream.mode)
? 3
: FS.isLink(stream.mode)
? 7
: 4;
GROWABLE_HEAP_I8()[pbuf >> 0] = type;
return 0;
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return e.errno;
}
}
function _fd_read(fd, iov, iovcnt, pnum) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(19, 1, fd, iov, iovcnt, pnum);
try {
var stream = SYSCALLS.getStreamFromFD(fd);
var num = SYSCALLS.doReadv(stream, iov, iovcnt);
GROWABLE_HEAP_I32()[pnum >> 2] = num;
return 0;
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return e.errno;
}
}
function _fd_seek(fd, offset_low, offset_high, whence, newOffset) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(20, 1, fd, offset_low, offset_high, whence, newOffset);
try {
var stream = SYSCALLS.getStreamFromFD(fd);
var HIGH_OFFSET = 4294967296;
var offset = offset_high * HIGH_OFFSET + (offset_low >>> 0);
var DOUBLE_LIMIT = 9007199254740992;
if (offset <= -DOUBLE_LIMIT || offset >= DOUBLE_LIMIT) {
return -61;
}
FS.llseek(stream, offset, whence);
(tempI64 = [
stream.position >>> 0,
((tempDouble = stream.position),
+Math.abs(tempDouble) >= 1
? tempDouble > 0
? (Math.min(+Math.floor(tempDouble / 4294967296), 4294967295) | 0) >>>
0
: ~~+Math.ceil((tempDouble - +(~~tempDouble >>> 0)) / 4294967296) >>>
0
: 0),
]),
(GROWABLE_HEAP_I32()[newOffset >> 2] = tempI64[0]),
(GROWABLE_HEAP_I32()[(newOffset + 4) >> 2] = tempI64[1]);
if (stream.getdents && offset === 0 && whence === 0)
stream.getdents = null;
return 0;
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return e.errno;
}
}
function _fd_write(fd, iov, iovcnt, pnum) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(21, 1, fd, iov, iovcnt, pnum);
try {
var stream = SYSCALLS.getStreamFromFD(fd);
var num = SYSCALLS.doWritev(stream, iov, iovcnt);
GROWABLE_HEAP_I32()[pnum >> 2] = num;
return 0;
}
catch (e) {
if (typeof FS === "undefined" || !(e instanceof FS.ErrnoError))
abort(e);
return e.errno;
}
}
function _getentropy(buffer, size) {
if (!_getentropy.randomDevice) {
_getentropy.randomDevice = getRandomDevice();
}
for (var i = 0; i < size; i++) {
GROWABLE_HEAP_I8()[(buffer + i) >> 0] = _getentropy.randomDevice();
}
return 0;
}
function _tzset() {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(22, 1);
if (_tzset.called)
return;
_tzset.called = true;
var currentYear = new Date().getFullYear();
var winter = new Date(currentYear, 0, 1);
var summer = new Date(currentYear, 6, 1);
var winterOffset = winter.getTimezoneOffset();
var summerOffset = summer.getTimezoneOffset();
var stdTimezoneOffset = Math.max(winterOffset, summerOffset);
GROWABLE_HEAP_I32()[__get_timezone() >> 2] = stdTimezoneOffset * 60;
GROWABLE_HEAP_I32()[__get_daylight() >> 2] = Number(winterOffset != summerOffset);
function extractZone(date) {
var match = date.toTimeString().match(/\(([A-Za-z ]+)\)$/);
return match ? match[1] : "GMT";
}
var winterName = extractZone(winter);
var summerName = extractZone(summer);
var winterNamePtr = allocateUTF8(winterName);
var summerNamePtr = allocateUTF8(summerName);
if (summerOffset < winterOffset) {
GROWABLE_HEAP_I32()[__get_tzname() >> 2] = winterNamePtr;
GROWABLE_HEAP_I32()[(__get_tzname() + 4) >> 2] = summerNamePtr;
}
else {
GROWABLE_HEAP_I32()[__get_tzname() >> 2] = summerNamePtr;
GROWABLE_HEAP_I32()[(__get_tzname() + 4) >> 2] = winterNamePtr;
}
}
function _localtime_r(time, tmPtr) {
_tzset();
var date = new Date(GROWABLE_HEAP_I32()[time >> 2] * 1e3);
GROWABLE_HEAP_I32()[tmPtr >> 2] = date.getSeconds();
GROWABLE_HEAP_I32()[(tmPtr + 4) >> 2] = date.getMinutes();
GROWABLE_HEAP_I32()[(tmPtr + 8) >> 2] = date.getHours();
GROWABLE_HEAP_I32()[(tmPtr + 12) >> 2] = date.getDate();
GROWABLE_HEAP_I32()[(tmPtr + 16) >> 2] = date.getMonth();
GROWABLE_HEAP_I32()[(tmPtr + 20) >> 2] = date.getFullYear() - 1900;
GROWABLE_HEAP_I32()[(tmPtr + 24) >> 2] = date.getDay();
var start = new Date(date.getFullYear(), 0, 1);
var yday = ((date.getTime() - start.getTime()) / (1e3 * 60 * 60 * 24)) | 0;
GROWABLE_HEAP_I32()[(tmPtr + 28) >> 2] = yday;
GROWABLE_HEAP_I32()[(tmPtr + 36) >> 2] = -(date.getTimezoneOffset() * 60);
var summerOffset = new Date(date.getFullYear(), 6, 1).getTimezoneOffset();
var winterOffset = start.getTimezoneOffset();
var dst = (summerOffset != winterOffset &&
date.getTimezoneOffset() == Math.min(winterOffset, summerOffset)) | 0;
GROWABLE_HEAP_I32()[(tmPtr + 32) >> 2] = dst;
var zonePtr = GROWABLE_HEAP_I32()[(__get_tzname() + (dst ? 4 : 0)) >> 2];
GROWABLE_HEAP_I32()[(tmPtr + 40) >> 2] = zonePtr;
return tmPtr;
}
function spawnThread(threadParams) {
if (ENVIRONMENT_IS_PTHREAD)
throw "Internal Error! spawnThread() can only ever be called from main application thread!";
var worker = PThread.getNewWorker();
if (worker.pthread !== undefined)
throw "Internal error!";
if (!threadParams.pthread_ptr)
throw "Internal error, no pthread ptr!";
PThread.runningWorkers.push(worker);
var tlsMemory = _malloc(128 * 4);
for (var i = 0; i < 128; ++i) {
GROWABLE_HEAP_I32()[(tlsMemory + i * 4) >> 2] = 0;
}
var stackHigh = threadParams.stackBase + threadParams.stackSize;
var pthread = (PThread.pthreads[threadParams.pthread_ptr] = {
worker: worker,
stackBase: threadParams.stackBase,
stackSize: threadParams.stackSize,
allocatedOwnStack: threadParams.allocatedOwnStack,
thread: threadParams.pthread_ptr,
threadInfoStruct: threadParams.pthread_ptr,
});
var tis = pthread.threadInfoStruct >> 2;
Atomics.store(GROWABLE_HEAP_U32(), tis + (0 >> 2), 0);
Atomics.store(GROWABLE_HEAP_U32(), tis + (4 >> 2), 0);
Atomics.store(GROWABLE_HEAP_U32(), tis + (8 >> 2), 0);
Atomics.store(GROWABLE_HEAP_U32(), tis + (68 >> 2), threadParams.detached);
Atomics.store(GROWABLE_HEAP_U32(), tis + (104 >> 2), tlsMemory);
Atomics.store(GROWABLE_HEAP_U32(), tis + (48 >> 2), 0);
Atomics.store(GROWABLE_HEAP_U32(), tis + (40 >> 2), pthread.threadInfoStruct);
Atomics.store(GROWABLE_HEAP_U32(), tis + (44 >> 2), 42);
Atomics.store(GROWABLE_HEAP_U32(), tis + (108 >> 2), threadParams.stackSize);
Atomics.store(GROWABLE_HEAP_U32(), tis + (84 >> 2), threadParams.stackSize);
Atomics.store(GROWABLE_HEAP_U32(), tis + (80 >> 2), stackHigh);
Atomics.store(GROWABLE_HEAP_U32(), tis + ((108 + 8) >> 2), stackHigh);
Atomics.store(GROWABLE_HEAP_U32(), tis + ((108 + 12) >> 2), threadParams.detached);
Atomics.store(GROWABLE_HEAP_U32(), tis + ((108 + 20) >> 2), threadParams.schedPolicy);
Atomics.store(GROWABLE_HEAP_U32(), tis + ((108 + 24) >> 2), threadParams.schedPrio);
var global_libc = _emscripten_get_global_libc();
var global_locale = global_libc + 40;
Atomics.store(GROWABLE_HEAP_U32(), tis + (176 >> 2), global_locale);
worker.pthread = pthread;
var msg = {
cmd: "run",
start_routine: threadParams.startRoutine,
arg: threadParams.arg,
threadInfoStruct: threadParams.pthread_ptr,
selfThreadId: threadParams.pthread_ptr,
parentThreadId: threadParams.parent_pthread_ptr,
stackBase: threadParams.stackBase,
stackSize: threadParams.stackSize,
};
worker.runPthread = function () {
msg.time = performance.now();
worker.postMessage(msg, threadParams.transferList);
};
if (worker.loaded) {
worker.runPthread();
delete worker.runPthread;
}
}
function _pthread_getschedparam(thread, policy, schedparam) {
if (!policy && !schedparam)
return ERRNO_CODES.EINVAL;
if (!thread) {
err("pthread_getschedparam called with a null thread pointer!");
return ERRNO_CODES.ESRCH;
}
var self = GROWABLE_HEAP_I32()[(thread + 12) >> 2];
if (self !== thread) {
err("pthread_getschedparam attempted on thread " +
thread +
", which does not point to a valid thread, or does not exist anymore!");
return ERRNO_CODES.ESRCH;
}
var schedPolicy = Atomics.load(GROWABLE_HEAP_U32(), (thread + 108 + 20) >> 2);
var schedPrio = Atomics.load(GROWABLE_HEAP_U32(), (thread + 108 + 24) >> 2);
if (policy)
GROWABLE_HEAP_I32()[policy >> 2] = schedPolicy;
if (schedparam)
GROWABLE_HEAP_I32()[schedparam >> 2] = schedPrio;
return 0;
}
function _pthread_self() {
return __pthread_ptr | 0;
}
Module["_pthread_self"] = _pthread_self;
function _pthread_create(pthread_ptr, attr, start_routine, arg) {
if (typeof SharedArrayBuffer === "undefined") {
err("Current environment does not support SharedArrayBuffer, pthreads are not available!");
return 6;
}
if (!pthread_ptr) {
err("pthread_create called with a null thread pointer!");
return 28;
}
var transferList = [];
var error = 0;
if (ENVIRONMENT_IS_PTHREAD && (transferList.length === 0 || error)) {
return _emscripten_sync_run_in_main_thread_4(687865856, pthread_ptr, attr, start_routine, arg);
}
if (error)
return error;
var stackSize = 0;
var stackBase = 0;
var detached = 0;
var schedPolicy = 0;
var schedPrio = 0;
if (attr) {
stackSize = GROWABLE_HEAP_I32()[attr >> 2];
stackSize += 81920;
stackBase = GROWABLE_HEAP_I32()[(attr + 8) >> 2];
detached = GROWABLE_HEAP_I32()[(attr + 12) >> 2] !== 0;
var inheritSched = GROWABLE_HEAP_I32()[(attr + 16) >> 2] === 0;
if (inheritSched) {
var prevSchedPolicy = GROWABLE_HEAP_I32()[(attr + 20) >> 2];
var prevSchedPrio = GROWABLE_HEAP_I32()[(attr + 24) >> 2];
var parentThreadPtr = PThread.currentProxiedOperationCallerThread
? PThread.currentProxiedOperationCallerThread
: _pthread_self();
_pthread_getschedparam(parentThreadPtr, attr + 20, attr + 24);
schedPolicy = GROWABLE_HEAP_I32()[(attr + 20) >> 2];
schedPrio = GROWABLE_HEAP_I32()[(attr + 24) >> 2];
GROWABLE_HEAP_I32()[(attr + 20) >> 2] = prevSchedPolicy;
GROWABLE_HEAP_I32()[(attr + 24) >> 2] = prevSchedPrio;
}
else {
schedPolicy = GROWABLE_HEAP_I32()[(attr + 20) >> 2];
schedPrio = GROWABLE_HEAP_I32()[(attr + 24) >> 2];
}
}
else {
stackSize = 2097152;
}
var allocatedOwnStack = stackBase == 0;
if (allocatedOwnStack) {
stackBase = _memalign(16, stackSize);
}
else {
stackBase -= stackSize;
assert(stackBase > 0);
}
var threadInfoStruct = _malloc(232);
for (var i = 0; i < 232 >> 2; ++i)
GROWABLE_HEAP_U32()[(threadInfoStruct >> 2) + i] = 0;
GROWABLE_HEAP_I32()[pthread_ptr >> 2] = threadInfoStruct;
GROWABLE_HEAP_I32()[(threadInfoStruct + 12) >> 2] = threadInfoStruct;
var headPtr = threadInfoStruct + 156;
GROWABLE_HEAP_I32()[headPtr >> 2] = headPtr;
var threadParams = {
stackBase: stackBase,
stackSize: stackSize,
allocatedOwnStack: allocatedOwnStack,
schedPolicy: schedPolicy,
schedPrio: schedPrio,
detached: detached,
startRoutine: start_routine,
pthread_ptr: threadInfoStruct,
parent_pthread_ptr: _pthread_self(),
arg: arg,
transferList: transferList,
};
if (ENVIRONMENT_IS_PTHREAD) {
threadParams.cmd = "spawnThread";
postMessage(threadParams, transferList);
}
else {
spawnThread(threadParams);
}
return 0;
}
function __pthread_testcancel_js() {
if (!ENVIRONMENT_IS_PTHREAD)
return;
if (!threadInfoStruct)
return;
var cancelDisabled = Atomics.load(GROWABLE_HEAP_U32(), (threadInfoStruct + 60) >> 2);
if (cancelDisabled)
return;
var canceled = Atomics.load(GROWABLE_HEAP_U32(), (threadInfoStruct + 0) >> 2);
if (canceled == 2)
throw "Canceled!";
}
function __emscripten_do_pthread_join(thread, status, block) {
if (!thread) {
err("pthread_join attempted on a null thread pointer!");
return ERRNO_CODES.ESRCH;
}
if (ENVIRONMENT_IS_PTHREAD && selfThreadId == thread) {
err("PThread " + thread + " is attempting to join to itself!");
return ERRNO_CODES.EDEADLK;
}
else if (!ENVIRONMENT_IS_PTHREAD && PThread.mainThreadBlock == thread) {
err("Main thread " + thread + " is attempting to join to itself!");
return ERRNO_CODES.EDEADLK;
}
var self = GROWABLE_HEAP_I32()[(thread + 12) >> 2];
if (self !== thread) {
err("pthread_join attempted on thread " +
thread +
", which does not point to a valid thread, or does not exist anymore!");
return ERRNO_CODES.ESRCH;
}
var detached = Atomics.load(GROWABLE_HEAP_U32(), (thread + 68) >> 2);
if (detached) {
err("Attempted to join thread " + thread + ", which was already detached!");
return ERRNO_CODES.EINVAL;
}
if (block) {
_emscripten_check_blocking_allowed();
}
for (;;) {
var threadStatus = Atomics.load(GROWABLE_HEAP_U32(), (thread + 0) >> 2);
if (threadStatus == 1) {
var threadExitCode = Atomics.load(GROWABLE_HEAP_U32(), (thread + 4) >> 2);
if (status)
GROWABLE_HEAP_I32()[status >> 2] = threadExitCode;
Atomics.store(GROWABLE_HEAP_U32(), (thread + 68) >> 2, 1);
if (!ENVIRONMENT_IS_PTHREAD)
cleanupThread(thread);
else
postMessage({
cmd: "cleanupThread",
thread: thread,
});
return 0;
}
if (!block) {
return ERRNO_CODES.EBUSY;
}
__pthread_testcancel_js();
if (!ENVIRONMENT_IS_PTHREAD)
_emscripten_main_thread_process_queued_calls();
_emscripten_futex_wait(thread + 0, threadStatus, ENVIRONMENT_IS_PTHREAD ? 100 : 1);
}
}
function _pthread_join(thread, status) {
return __emscripten_do_pthread_join(thread, status, true);
}
function _setTempRet0($i) {
setTempRet0($i | 0);
}
function __isLeapYear(year) {
return year % 4 === 0 && (year % 100 !== 0 || year % 400 === 0);
}
function __arraySum(array, index) {
var sum = 0;
for (var i = 0; i <= index; sum += array[i++]) { }
return sum;
}
var __MONTH_DAYS_LEAP = [31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31];
var __MONTH_DAYS_REGULAR = [31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31];
function __addDays(date, days) {
var newDate = new Date(date.getTime());
while (days > 0) {
var leap = __isLeapYear(newDate.getFullYear());
var currentMonth = newDate.getMonth();
var daysInCurrentMonth = (leap ? __MONTH_DAYS_LEAP : __MONTH_DAYS_REGULAR)[currentMonth];
if (days > daysInCurrentMonth - newDate.getDate()) {
days -= daysInCurrentMonth - newDate.getDate() + 1;
newDate.setDate(1);
if (currentMonth < 11) {
newDate.setMonth(currentMonth + 1);
}
else {
newDate.setMonth(0);
newDate.setFullYear(newDate.getFullYear() + 1);
}
}
else {
newDate.setDate(newDate.getDate() + days);
return newDate;
}
}
return newDate;
}
function _strftime(s, maxsize, format, tm) {
var tm_zone = GROWABLE_HEAP_I32()[(tm + 40) >> 2];
var date = {
tm_sec: GROWABLE_HEAP_I32()[tm >> 2],
tm_min: GROWABLE_HEAP_I32()[(tm + 4) >> 2],
tm_hour: GROWABLE_HEAP_I32()[(tm + 8) >> 2],
tm_mday: GROWABLE_HEAP_I32()[(tm + 12) >> 2],
tm_mon: GROWABLE_HEAP_I32()[(tm + 16) >> 2],
tm_year: GROWABLE_HEAP_I32()[(tm + 20) >> 2],
tm_wday: GROWABLE_HEAP_I32()[(tm + 24) >> 2],
tm_yday: GROWABLE_HEAP_I32()[(tm + 28) >> 2],
tm_isdst: GROWABLE_HEAP_I32()[(tm + 32) >> 2],
tm_gmtoff: GROWABLE_HEAP_I32()[(tm + 36) >> 2],
tm_zone: tm_zone ? UTF8ToString(tm_zone) : "",
};
var pattern = UTF8ToString(format);
var EXPANSION_RULES_1 = {
"%c": "%a %b %d %H:%M:%S %Y",
"%D": "%m/%d/%y",
"%F": "%Y-%m-%d",
"%h": "%b",
"%r": "%I:%M:%S %p",
"%R": "%H:%M",
"%T": "%H:%M:%S",
"%x": "%m/%d/%y",
"%X": "%H:%M:%S",
"%Ec": "%c",
"%EC": "%C",
"%Ex": "%m/%d/%y",
"%EX": "%H:%M:%S",
"%Ey": "%y",
"%EY": "%Y",
"%Od": "%d",
"%Oe": "%e",
"%OH": "%H",
"%OI": "%I",
"%Om": "%m",
"%OM": "%M",
"%OS": "%S",
"%Ou": "%u",
"%OU": "%U",
"%OV": "%V",
"%Ow": "%w",
"%OW": "%W",
"%Oy": "%y",
};
for (var rule in EXPANSION_RULES_1) {
pattern = pattern.replace(new RegExp(rule, "g"), EXPANSION_RULES_1[rule]);
}
var WEEKDAYS = [
"Sunday",
"Monday",
"Tuesday",
"Wednesday",
"Thursday",
"Friday",
"Saturday",
];
var MONTHS = [
"January",
"February",
"March",
"April",
"May",
"June",
"July",
"August",
"September",
"October",
"November",
"December",
];
function leadingSomething(value, digits, character) {
var str = typeof value === "number" ? value.toString() : value || "";
while (str.length < digits) {
str = character[0] + str;
}
return str;
}
function leadingNulls(value, digits) {
return leadingSomething(value, digits, "0");
}
function compareByDay(date1, date2) {
function sgn(value) {
return value < 0 ? -1 : value > 0 ? 1 : 0;
}
var compare;
if ((compare = sgn(date1.getFullYear() - date2.getFullYear())) === 0) {
if ((compare = sgn(date1.getMonth() - date2.getMonth())) === 0) {
compare = sgn(date1.getDate() - date2.getDate());
}
}
return compare;
}
function getFirstWeekStartDate(janFourth) {
switch (janFourth.getDay()) {
case 0:
return new Date(janFourth.getFullYear() - 1, 11, 29);
case 1:
return janFourth;
case 2:
return new Date(janFourth.getFullYear(), 0, 3);
case 3:
return new Date(janFourth.getFullYear(), 0, 2);
case 4:
return new Date(janFourth.getFullYear(), 0, 1);
case 5:
return new Date(janFourth.getFullYear() - 1, 11, 31);
case 6:
return new Date(janFourth.getFullYear() - 1, 11, 30);
}
}
function getWeekBasedYear(date) {
var thisDate = __addDays(new Date(date.tm_year + 1900, 0, 1), date.tm_yday);
var janFourthThisYear = new Date(thisDate.getFullYear(), 0, 4);
var janFourthNextYear = new Date(thisDate.getFullYear() + 1, 0, 4);
var firstWeekStartThisYear = getFirstWeekStartDate(janFourthThisYear);
var firstWeekStartNextYear = getFirstWeekStartDate(janFourthNextYear);
if (compareByDay(firstWeekStartThisYear, thisDate) <= 0) {
if (compareByDay(firstWeekStartNextYear, thisDate) <= 0) {
return thisDate.getFullYear() + 1;
}
else {
return thisDate.getFullYear();
}
}
else {
return thisDate.getFullYear() - 1;
}
}
var EXPANSION_RULES_2 = {
"%a": function (date) {
return WEEKDAYS[date.tm_wday].substring(0, 3);
},
"%A": function (date) {
return WEEKDAYS[date.tm_wday];
},
"%b": function (date) {
return MONTHS[date.tm_mon].substring(0, 3);
},
"%B": function (date) {
return MONTHS[date.tm_mon];
},
"%C": function (date) {
var year = date.tm_year + 1900;
return leadingNulls((year / 100) | 0, 2);
},
"%d": function (date) {
return leadingNulls(date.tm_mday, 2);
},
"%e": function (date) {
return leadingSomething(date.tm_mday, 2, " ");
},
"%g": function (date) {
return getWeekBasedYear(date)
.toString()
.substring(2);
},
"%G": function (date) {
return getWeekBasedYear(date);
},
"%H": function (date) {
return leadingNulls(date.tm_hour, 2);
},
"%I": function (date) {
var twelveHour = date.tm_hour;
if (twelveHour == 0)
twelveHour = 12;
else if (twelveHour > 12)
twelveHour -= 12;
return leadingNulls(twelveHour, 2);
},
"%j": function (date) {
return leadingNulls(date.tm_mday +
__arraySum(__isLeapYear(date.tm_year + 1900)
? __MONTH_DAYS_LEAP
: __MONTH_DAYS_REGULAR, date.tm_mon - 1), 3);
},
"%m": function (date) {
return leadingNulls(date.tm_mon + 1, 2);
},
"%M": function (date) {
return leadingNulls(date.tm_min, 2);
},
"%n": function () {
return "\n";
},
"%p": function (date) {
if (date.tm_hour >= 0 && date.tm_hour < 12) {
return "AM";
}
else {
return "PM";
}
},
"%S": function (date) {
return leadingNulls(date.tm_sec, 2);
},
"%t": function () {
return "\t";
},
"%u": function (date) {
return date.tm_wday || 7;
},
"%U": function (date) {
var janFirst = new Date(date.tm_year + 1900, 0, 1);
var firstSunday = janFirst.getDay() === 0
? janFirst
: __addDays(janFirst, 7 - janFirst.getDay());
var endDate = new Date(date.tm_year + 1900, date.tm_mon, date.tm_mday);
if (compareByDay(firstSunday, endDate) < 0) {
var februaryFirstUntilEndMonth = __arraySum(__isLeapYear(endDate.getFullYear())
? __MONTH_DAYS_LEAP
: __MONTH_DAYS_REGULAR, endDate.getMonth() - 1) - 31;
var firstSundayUntilEndJanuary = 31 - firstSunday.getDate();
var days = firstSundayUntilEndJanuary +
februaryFirstUntilEndMonth +
endDate.getDate();
return leadingNulls(Math.ceil(days / 7), 2);
}
return compareByDay(firstSunday, janFirst) === 0 ? "01" : "00";
},
"%V": function (date) {
var janFourthThisYear = new Date(date.tm_year + 1900, 0, 4);
var janFourthNextYear = new Date(date.tm_year + 1901, 0, 4);
var firstWeekStartThisYear = getFirstWeekStartDate(janFourthThisYear);
var firstWeekStartNextYear = getFirstWeekStartDate(janFourthNextYear);
var endDate = __addDays(new Date(date.tm_year + 1900, 0, 1), date.tm_yday);
if (compareByDay(endDate, firstWeekStartThisYear) < 0) {
return "53";
}
if (compareByDay(firstWeekStartNextYear, endDate) <= 0) {
return "01";
}
var daysDifference;
if (firstWeekStartThisYear.getFullYear() < date.tm_year + 1900) {
daysDifference = date.tm_yday + 32 - firstWeekStartThisYear.getDate();
}
else {
daysDifference = date.tm_yday + 1 - firstWeekStartThisYear.getDate();
}
return leadingNulls(Math.ceil(daysDifference / 7), 2);
},
"%w": function (date) {
return date.tm_wday;
},
"%W": function (date) {
var janFirst = new Date(date.tm_year, 0, 1);
var firstMonday = janFirst.getDay() === 1
? janFirst
: __addDays(janFirst, janFirst.getDay() === 0 ? 1 : 7 - janFirst.getDay() + 1);
var endDate = new Date(date.tm_year + 1900, date.tm_mon, date.tm_mday);
if (compareByDay(firstMonday, endDate) < 0) {
var februaryFirstUntilEndMonth = __arraySum(__isLeapYear(endDate.getFullYear())
? __MONTH_DAYS_LEAP
: __MONTH_DAYS_REGULAR, endDate.getMonth() - 1) - 31;
var firstMondayUntilEndJanuary = 31 - firstMonday.getDate();
var days = firstMondayUntilEndJanuary +
februaryFirstUntilEndMonth +
endDate.getDate();
return leadingNulls(Math.ceil(days / 7), 2);
}
return compareByDay(firstMonday, janFirst) === 0 ? "01" : "00";
},
"%y": function (date) {
return (date.tm_year + 1900).toString().substring(2);
},
"%Y": function (date) {
return date.tm_year + 1900;
},
"%z": function (date) {
var off = date.tm_gmtoff;
var ahead = off >= 0;
off = Math.abs(off) / 60;
off = (off / 60) * 100 + (off % 60);
return (ahead ? "+" : "-") + String("0000" + off).slice(-4);
},
"%Z": function (date) {
return date.tm_zone;
},
"%%": function () {
return "%";
},
};
for (var rule in EXPANSION_RULES_2) {
if (pattern.indexOf(rule) >= 0) {
pattern = pattern.replace(new RegExp(rule, "g"), EXPANSION_RULES_2[rule](date));
}
}
var bytes = intArrayFromString(pattern, false);
if (bytes.length > maxsize) {
return 0;
}
writeArrayToMemory(bytes, s);
return bytes.length - 1;
}
function _strftime_l(s, maxsize, format, tm) {
return _strftime(s, maxsize, format, tm);
}
function _sysconf(name) {
if (ENVIRONMENT_IS_PTHREAD)
return _emscripten_proxy_to_main_thread_js(23, 1, name);
switch (name) {
case 30:
return 16384;
case 85:
var maxHeapSize = 2147483648;
return maxHeapSize / 16384;
case 132:
case 133:
case 12:
case 137:
case 138:
case 15:
case 235:
case 16:
case 17:
case 18:
case 19:
case 20:
case 149:
case 13:
case 10:
case 236:
case 153:
case 9:
case 21:
case 22:
case 159:
case 154:
case 14:
case 77:
case 78:
case 139:
case 80:
case 81:
case 82:
case 68:
case 67:
case 164:
case 11:
case 29:
case 47:
case 48:
case 95:
case 52:
case 51:
case 46:
case 79:
return 200809;
case 27:
case 246:
case 127:
case 128:
case 23:
case 24:
case 160:
case 161:
case 181:
case 182:
case 242:
case 183:
case 184:
case 243:
case 244:
case 245:
case 165:
case 178:
case 179:
case 49:
case 50:
case 168:
case 169:
case 175:
case 170:
case 171:
case 172:
case 97:
case 76:
case 32:
case 173:
case 35:
return -1;
case 176:
case 177:
case 7:
case 155:
case 8:
case 157:
case 125:
case 126:
case 92:
case 93:
case 129:
case 130:
case 131:
case 94:
case 91:
return 1;
case 74:
case 60:
case 69:
case 70:
case 4:
return 1024;
case 31:
case 42:
case 72:
return 32;
case 87:
case 26:
case 33:
return 2147483647;
case 34:
case 1:
return 47839;
case 38:
case 36:
return 99;
case 43:
case 37:
return 2048;
case 0:
return 2097152;
case 3:
return 65536;
case 28:
return 32768;
case 44:
return 32767;
case 75:
return 16384;
case 39:
return 1e3;
case 89:
return 700;
case 71:
return 256;
case 40:
return 255;
case 2:
return 100;
case 180:
return 64;
case 25:
return 20;
case 5:
return 16;
case 6:
return 6;
case 73:
return 4;
case 84: {
if (typeof navigator === "object")
return navigator["hardwareConcurrency"] || 1;
return 1;
}
}
setErrNo(28);
return -1;
}
function _time(ptr) {
var ret = (Date.now() / 1e3) | 0;
if (ptr) {
GROWABLE_HEAP_I32()[ptr >> 2] = ret;
}
return ret;
}
if (!ENVIRONMENT_IS_PTHREAD)
PThread.initMainThreadBlock();
var FSNode = function (parent, name, mode, rdev) {
if (!parent) {
parent = this;
}
this.parent = parent;
this.mount = parent.mount;
this.mounted = null;
this.id = FS.nextInode++;
this.name = name;
this.mode = mode;
this.node_ops = {};
this.stream_ops = {};
this.rdev = rdev;
};
var readMode = 292 | 73;
var writeMode = 146;
Object.defineProperties(FSNode.prototype, {
read: {
get: function () {
return (this.mode & readMode) === readMode;
},
set: function (val) {
val ? (this.mode |= readMode) : (this.mode &= ~readMode);
},
},
write: {
get: function () {
return (this.mode & writeMode) === writeMode;
},
set: function (val) {
val ? (this.mode |= writeMode) : (this.mode &= ~writeMode);
},
},
isFolder: {
get: function () {
return FS.isDir(this.mode);
},
},
isDevice: {
get: function () {
return FS.isChrdev(this.mode);
},
},
});
FS.FSNode = FSNode;
FS.staticInit();
embind_init_charCodes();
BindingError = Module["BindingError"] = extendError(Error, "BindingError");
InternalError = Module["InternalError"] = extendError(Error, "InternalError");
init_ClassHandle();
init_RegisteredPointer();
init_embind();
UnboundTypeError = Module["UnboundTypeError"] = extendError(Error, "UnboundTypeError");
init_emval();
var GLctx;
var proxiedFunctionTable = [
null,
_atexit,
___sys_access,
___sys_fcntl64,
___sys_fstat64,
___sys_getcwd,
___sys_ioctl,
___sys_mmap2,
___sys_munmap,
___sys_open,
___sys_rename,
___sys_rmdir,
___sys_stat64,
___sys_unlink,
_emscripten_set_canvas_element_size_main_thread,
_environ_get,
_environ_sizes_get,
_fd_close,
_fd_fdstat_get,
_fd_read,
_fd_seek,
_fd_write,
_tzset,
_sysconf,
];
var ASSERTIONS = false;
function intArrayFromString(stringy, dontAddNull, length) {
var len = length > 0 ? length : lengthBytesUTF8(stringy) + 1;
var u8array = new Array(len);
var numBytesWritten = stringToUTF8Array(stringy, u8array, 0, u8array.length);
if (dontAddNull)
u8array.length = numBytesWritten;
return u8array;
}
if (!ENVIRONMENT_IS_PTHREAD)
__ATINIT__.push({
func: function () {
___wasm_call_ctors();
},
});
var asmLibraryArg = {
__assert_fail: ___assert_fail,
__clock_gettime: ___clock_gettime,
__cxa_allocate_exception: ___cxa_allocate_exception,
__cxa_atexit: ___cxa_atexit,
__cxa_thread_atexit: ___cxa_thread_atexit,
__cxa_throw: ___cxa_throw,
__sys_access: ___sys_access,
__sys_fcntl64: ___sys_fcntl64,
__sys_fstat64: ___sys_fstat64,
__sys_getcwd: ___sys_getcwd,
__sys_ioctl: ___sys_ioctl,
__sys_mmap2: ___sys_mmap2,
__sys_munmap: ___sys_munmap,
__sys_open: ___sys_open,
__sys_rename: ___sys_rename,
__sys_rmdir: ___sys_rmdir,
__sys_stat64: ___sys_stat64,
__sys_unlink: ___sys_unlink,
__sys_wait4: ___sys_wait4,
_embind_register_bool: __embind_register_bool,
_embind_register_class: __embind_register_class,
_embind_register_class_constructor: __embind_register_class_constructor,
_embind_register_class_function: __embind_register_class_function,
_embind_register_emval: __embind_register_emval,
_embind_register_float: __embind_register_float,
_embind_register_integer: __embind_register_integer,
_embind_register_memory_view: __embind_register_memory_view,
_embind_register_std_string: __embind_register_std_string,
_embind_register_std_wstring: __embind_register_std_wstring,
_embind_register_void: __embind_register_void,
_emscripten_notify_thread_queue: __emscripten_notify_thread_queue,
_emval_decref: __emval_decref,
_emval_incref: __emval_incref,
_emval_take_value: __emval_take_value,
abort: _abort,
clock_gettime: _clock_gettime,
emscripten_asm_const_int: _emscripten_asm_const_int,
emscripten_check_blocking_allowed: _emscripten_check_blocking_allowed,
emscripten_conditional_set_current_thread_status: _emscripten_conditional_set_current_thread_status,
emscripten_futex_wait: _emscripten_futex_wait,
emscripten_futex_wake: _emscripten_futex_wake,
emscripten_get_now: _emscripten_get_now,
emscripten_is_main_browser_thread: _emscripten_is_main_browser_thread,
emscripten_is_main_runtime_thread: _emscripten_is_main_runtime_thread,
emscripten_memcpy_big: _emscripten_memcpy_big,
emscripten_receive_on_main_thread_js: _emscripten_receive_on_main_thread_js,
emscripten_resize_heap: _emscripten_resize_heap,
emscripten_set_canvas_element_size: _emscripten_set_canvas_element_size,
emscripten_set_current_thread_status: _emscripten_set_current_thread_status,
emscripten_webgl_create_context: _emscripten_webgl_create_context,
environ_get: _environ_get,
environ_sizes_get: _environ_sizes_get,
exit: _exit,
fd_close: _fd_close,
fd_fdstat_get: _fd_fdstat_get,
fd_read: _fd_read,
fd_seek: _fd_seek,
fd_write: _fd_write,
getentropy: _getentropy,
initPthreadsJS: initPthreadsJS,
localtime_r: _localtime_r,
memory: wasmMemory,
pthread_cleanup_push: _pthread_cleanup_push,
pthread_create: _pthread_create,
pthread_join: _pthread_join,
pthread_self: _pthread_self,
setTempRet0: _setTempRet0,
strftime_l: _strftime_l,
sysconf: _sysconf,
time: _time,
};
var asm = createWasm();
var ___wasm_call_ctors = (Module["___wasm_call_ctors"] = function () {
return (___wasm_call_ctors = Module["___wasm_call_ctors"] =
Module["asm"]["__wasm_call_ctors"]).apply(null, arguments);
});
var _free = (Module["_free"] = function () {
return (_free = Module["_free"] = Module["asm"]["free"]).apply(null, arguments);
});
var _malloc = (Module["_malloc"] = function () {
return (_malloc = Module["_malloc"] = Module["asm"]["malloc"]).apply(null, arguments);
});
var ___errno_location = (Module["___errno_location"] = function () {
return (___errno_location = Module["___errno_location"] =
Module["asm"]["__errno_location"]).apply(null, arguments);
});
var _memset = (Module["_memset"] = function () {
return (_memset = Module["_memset"] = Module["asm"]["memset"]).apply(null, arguments);
});
var ___getTypeName = (Module["___getTypeName"] = function () {
return (___getTypeName = Module["___getTypeName"] =
Module["asm"]["__getTypeName"]).apply(null, arguments);
});
var ___embind_register_native_and_builtin_types = (Module["___embind_register_native_and_builtin_types"] = function () {
return (___embind_register_native_and_builtin_types = Module["___embind_register_native_and_builtin_types"] = Module["asm"]["__embind_register_native_and_builtin_types"]).apply(null, arguments);
});
var ___emscripten_pthread_data_constructor = (Module["___emscripten_pthread_data_constructor"] = function () {
return (___emscripten_pthread_data_constructor = Module["___emscripten_pthread_data_constructor"] = Module["asm"]["__emscripten_pthread_data_constructor"]).apply(null, arguments);
});
var _emscripten_get_global_libc = (Module["_emscripten_get_global_libc"] = function () {
return (_emscripten_get_global_libc = Module["_emscripten_get_global_libc"] =
Module["asm"]["emscripten_get_global_libc"]).apply(null, arguments);
});
var __get_tzname = (Module["__get_tzname"] = function () {
return (__get_tzname = Module["__get_tzname"] =
Module["asm"]["_get_tzname"]).apply(null, arguments);
});
var __get_daylight = (Module["__get_daylight"] = function () {
return (__get_daylight = Module["__get_daylight"] =
Module["asm"]["_get_daylight"]).apply(null, arguments);
});
var __get_timezone = (Module["__get_timezone"] = function () {
return (__get_timezone = Module["__get_timezone"] =
Module["asm"]["_get_timezone"]).apply(null, arguments);
});
var stackSave = (Module["stackSave"] = function () {
return (stackSave = Module["stackSave"] = Module["asm"]["stackSave"]).apply(null, arguments);
});
var stackRestore = (Module["stackRestore"] = function () {
return (stackRestore = Module["stackRestore"] =
Module["asm"]["stackRestore"]).apply(null, arguments);
});
var stackAlloc = (Module["stackAlloc"] = function () {
return (stackAlloc = Module["stackAlloc"] =
Module["asm"]["stackAlloc"]).apply(null, arguments);
});
var _emscripten_stack_set_limits = (Module["_emscripten_stack_set_limits"] = function () {
return (_emscripten_stack_set_limits = Module["_emscripten_stack_set_limits"] = Module["asm"]["emscripten_stack_set_limits"]).apply(null, arguments);
});
var _setThrew = (Module["_setThrew"] = function () {
return (_setThrew = Module["_setThrew"] = Module["asm"]["setThrew"]).apply(null, arguments);
});
var _memalign = (Module["_memalign"] = function () {
return (_memalign = Module["_memalign"] = Module["asm"]["memalign"]).apply(null, arguments);
});
var _emscripten_main_browser_thread_id = (Module["_emscripten_main_browser_thread_id"] = function () {
return (_emscripten_main_browser_thread_id = Module["_emscripten_main_browser_thread_id"] = Module["asm"]["emscripten_main_browser_thread_id"]).apply(null, arguments);
});
var ___pthread_tsd_run_dtors = (Module["___pthread_tsd_run_dtors"] = function () {
return (___pthread_tsd_run_dtors = Module["___pthread_tsd_run_dtors"] =
Module["asm"]["__pthread_tsd_run_dtors"]).apply(null, arguments);
});
var _emscripten_main_thread_process_queued_calls = (Module["_emscripten_main_thread_process_queued_calls"] = function () {
return (_emscripten_main_thread_process_queued_calls = Module["_emscripten_main_thread_process_queued_calls"] = Module["asm"]["emscripten_main_thread_process_queued_calls"]).apply(null, arguments);
});
var _emscripten_current_thread_process_queued_calls = (Module["_emscripten_current_thread_process_queued_calls"] = function () {
return (_emscripten_current_thread_process_queued_calls = Module["_emscripten_current_thread_process_queued_calls"] = Module["asm"]["emscripten_current_thread_process_queued_calls"]).apply(null, arguments);
});
var _emscripten_register_main_browser_thread_id = (Module["_emscripten_register_main_browser_thread_id"] = function () {
return (_emscripten_register_main_browser_thread_id = Module["_emscripten_register_main_browser_thread_id"] = Module["asm"]["emscripten_register_main_browser_thread_id"]).apply(null, arguments);
});
var _do_emscripten_dispatch_to_thread = (Module["_do_emscripten_dispatch_to_thread"] = function () {
return (_do_emscripten_dispatch_to_thread = Module["_do_emscripten_dispatch_to_thread"] = Module["asm"]["do_emscripten_dispatch_to_thread"]).apply(null, arguments);
});
var _emscripten_async_run_in_main_thread = (Module["_emscripten_async_run_in_main_thread"] = function () {
return (_emscripten_async_run_in_main_thread = Module["_emscripten_async_run_in_main_thread"] = Module["asm"]["emscripten_async_run_in_main_thread"]).apply(null, arguments);
});
var _emscripten_sync_run_in_main_thread = (Module["_emscripten_sync_run_in_main_thread"] = function () {
return (_emscripten_sync_run_in_main_thread = Module["_emscripten_sync_run_in_main_thread"] = Module["asm"]["emscripten_sync_run_in_main_thread"]).apply(null, arguments);
});
var _emscripten_sync_run_in_main_thread_0 = (Module["_emscripten_sync_run_in_main_thread_0"] = function () {
return (_emscripten_sync_run_in_main_thread_0 = Module["_emscripten_sync_run_in_main_thread_0"] = Module["asm"]["emscripten_sync_run_in_main_thread_0"]).apply(null, arguments);
});
var _emscripten_sync_run_in_main_thread_1 = (Module["_emscripten_sync_run_in_main_thread_1"] = function () {
return (_emscripten_sync_run_in_main_thread_1 = Module["_emscripten_sync_run_in_main_thread_1"] = Module["asm"]["emscripten_sync_run_in_main_thread_1"]).apply(null, arguments);
});
var _emscripten_sync_run_in_main_thread_2 = (Module["_emscripten_sync_run_in_main_thread_2"] = function () {
return (_emscripten_sync_run_in_main_thread_2 = Module["_emscripten_sync_run_in_main_thread_2"] = Module["asm"]["emscripten_sync_run_in_main_thread_2"]).apply(null, arguments);
});
var _emscripten_sync_run_in_main_thread_xprintf_varargs = (Module["_emscripten_sync_run_in_main_thread_xprintf_varargs"] = function () {
return (_emscripten_sync_run_in_main_thread_xprintf_varargs = Module["_emscripten_sync_run_in_main_thread_xprintf_varargs"] =
Module["asm"]["emscripten_sync_run_in_main_thread_xprintf_varargs"]).apply(null, arguments);
});
var _emscripten_sync_run_in_main_thread_3 = (Module["_emscripten_sync_run_in_main_thread_3"] = function () {
return (_emscripten_sync_run_in_main_thread_3 = Module["_emscripten_sync_run_in_main_thread_3"] = Module["asm"]["emscripten_sync_run_in_main_thread_3"]).apply(null, arguments);
});
var _emscripten_sync_run_in_main_thread_4 = (Module["_emscripten_sync_run_in_main_thread_4"] = function () {
return (_emscripten_sync_run_in_main_thread_4 = Module["_emscripten_sync_run_in_main_thread_4"] = Module["asm"]["emscripten_sync_run_in_main_thread_4"]).apply(null, arguments);
});
var _emscripten_sync_run_in_main_thread_5 = (Module["_emscripten_sync_run_in_main_thread_5"] = function () {
return (_emscripten_sync_run_in_main_thread_5 = Module["_emscripten_sync_run_in_main_thread_5"] = Module["asm"]["emscripten_sync_run_in_main_thread_5"]).apply(null, arguments);
});
var _emscripten_sync_run_in_main_thread_6 = (Module["_emscripten_sync_run_in_main_thread_6"] = function () {
return (_emscripten_sync_run_in_main_thread_6 = Module["_emscripten_sync_run_in_main_thread_6"] = Module["asm"]["emscripten_sync_run_in_main_thread_6"]).apply(null, arguments);
});
var _emscripten_sync_run_in_main_thread_7 = (Module["_emscripten_sync_run_in_main_thread_7"] = function () {
return (_emscripten_sync_run_in_main_thread_7 = Module["_emscripten_sync_run_in_main_thread_7"] = Module["asm"]["emscripten_sync_run_in_main_thread_7"]).apply(null, arguments);
});
var _emscripten_run_in_main_runtime_thread_js = (Module["_emscripten_run_in_main_runtime_thread_js"] = function () {
return (_emscripten_run_in_main_runtime_thread_js = Module["_emscripten_run_in_main_runtime_thread_js"] = Module["asm"]["emscripten_run_in_main_runtime_thread_js"]).apply(null, arguments);
});
var __emscripten_call_on_thread = (Module["__emscripten_call_on_thread"] = function () {
return (__emscripten_call_on_thread = Module["__emscripten_call_on_thread"] =
Module["asm"]["_emscripten_call_on_thread"]).apply(null, arguments);
});
var _emscripten_tls_init = (Module["_emscripten_tls_init"] = function () {
return (_emscripten_tls_init = Module["_emscripten_tls_init"] =
Module["asm"]["emscripten_tls_init"]).apply(null, arguments);
});
var dynCall_viijii = (Module["dynCall_viijii"] = function () {
return (dynCall_viijii = Module["dynCall_viijii"] =
Module["asm"]["dynCall_viijii"]).apply(null, arguments);
});
var dynCall_ji = (Module["dynCall_ji"] = function () {
return (dynCall_ji = Module["dynCall_ji"] =
Module["asm"]["dynCall_ji"]).apply(null, arguments);
});
var dynCall_jiji = (Module["dynCall_jiji"] = function () {
return (dynCall_jiji = Module["dynCall_jiji"] =
Module["asm"]["dynCall_jiji"]).apply(null, arguments);
});
var dynCall_iiiiij = (Module["dynCall_iiiiij"] = function () {
return (dynCall_iiiiij = Module["dynCall_iiiiij"] =
Module["asm"]["dynCall_iiiiij"]).apply(null, arguments);
});
var dynCall_iiiiijj = (Module["dynCall_iiiiijj"] = function () {
return (dynCall_iiiiijj = Module["dynCall_iiiiijj"] =
Module["asm"]["dynCall_iiiiijj"]).apply(null, arguments);
});
var dynCall_iiiiiijj = (Module["dynCall_iiiiiijj"] = function () {
return (dynCall_iiiiiijj = Module["dynCall_iiiiiijj"] =
Module["asm"]["dynCall_iiiiiijj"]).apply(null, arguments);
});
var _main_thread_futex = (Module["_main_thread_futex"] = 1564224);
Module["addOnPreMain"] = addOnPreMain;
Module["PThread"] = PThread;
Module["PThread"] = PThread;
Module["_pthread_self"] = _pthread_self;
Module["wasmMemory"] = wasmMemory;
Module["ExitStatus"] = ExitStatus;
var calledRun;
function ExitStatus(status) {
this.name = "ExitStatus";
this.message = "Program terminated with exit(" + status + ")";
this.status = status;
}
dependenciesFulfilled = function runCaller() {
if (!calledRun)
run();
if (!calledRun)
dependenciesFulfilled = runCaller;
};
function run(args) {
args = args || arguments_;
if (runDependencies > 0) {
return;
}
preRun();
if (runDependencies > 0)
return;
function doRun() {
if (calledRun)
return;
calledRun = true;
Module["calledRun"] = true;
if (ABORT)
return;
initRuntime();
preMain();
if (Module["onRuntimeInitialized"])
Module["onRuntimeInitialized"]();
postRun();
}
if (Module["setStatus"]) {
Module["setStatus"]("Running...");
setTimeout(function () {
setTimeout(function () {
Module["setStatus"]("");
}, 1);
doRun();
}, 1);
}
else {
doRun();
}
}
Module["run"] = run;
function exit(status, implicit) {
if (implicit && noExitRuntime && status === 0) {
return;
}
if (noExitRuntime) {
}
else {
PThread.terminateAllThreads();
EXITSTATUS = status;
exitRuntime();
if (Module["onExit"])
Module["onExit"](status);
ABORT = true;
}
quit_(status, new ExitStatus(status));
}
if (Module["preInit"]) {
if (typeof Module["preInit"] == "function")
Module["preInit"] = [Module["preInit"]];
while (Module["preInit"].length > 0) {
Module["preInit"].pop()();
}
}
if (!ENVIRONMENT_IS_PTHREAD)
noExitRuntime = true;
if (!ENVIRONMENT_IS_PTHREAD) {
run();
}
else {
PThread.initWorker();
}
/***/ }),
/***/ 4064:
/*!******************************************************************************!*\
!*** ./src/core/ts/web-worker-scripts/translation-worker.js/digestSha256.ts ***!
\******************************************************************************/
/***/ (function(__unused_webpack_module, exports) {
var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) {
function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); }
return new (P || (P = Promise))(function (resolve, reject) {
function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } }
function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } }
function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); }
step((generator = generator.apply(thisArg, _arguments || [])).next());
});
};
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.digestSha256 = void 0;
/**
* Derived from https://developer.mozilla.org/en-US/docs/Web/API/SubtleCrypto/digest
*/
const digestSha256 = (buffer) => __awaiter(void 0, void 0, void 0, function* () {
// hash the message
const hashBuffer = yield crypto.subtle.digest("SHA-256", buffer);
// convert buffer to byte array
const hashArray = Array.from(new Uint8Array(hashBuffer));
// convert bytes to hex string
return hashArray.map(b => b.toString(16).padStart(2, "0")).join("");
});
exports.digestSha256 = digestSha256;
/***/ }),
/***/ 92:
/*!**************************************************************************************************!*\
!*** ./src/core/ts/web-worker-scripts/translation-worker.js/getBergamotModelsForLanguagePair.ts ***!
\**************************************************************************************************/
/***/ (function(__unused_webpack_module, exports, __webpack_require__) {
/* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) {
function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); }
return new (P || (P = Promise))(function (resolve, reject) {
function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } }
function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } }
function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); }
step((generator = generator.apply(thisArg, _arguments || [])).next());
});
};
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.getBergamotModelsForLanguagePair = exports.ModelDownloadError = void 0;
const digestSha256_1 = __webpack_require__(/*! ./digestSha256 */ 4064);
const instrumentResponseWithProgressCallback_1 = __webpack_require__(/*! ./instrumentResponseWithProgressCallback */ 14);
const persistResponse_1 = __webpack_require__(/*! ./persistResponse */ 6824);
const throttle_1 = __webpack_require__(/*! ./throttle */ 7424);
const mb = bytes => Math.round((bytes / 1024 / 1024) * 10) / 10;
class ModelDownloadError extends Error {
constructor() {
super(...arguments);
this.name = "ModelDownloadError";
}
}
exports.ModelDownloadError = ModelDownloadError;
const getBergamotModelsForLanguagePair = (languagePair, bergamotModelsBaseUrl, modelRegistry, cache, log, onModelDownloadProgress) => __awaiter(void 0, void 0, void 0, function* () {
if (!modelRegistry[languagePair]) {
throw new ModelDownloadError(`Language pair '${languagePair}' not supported`);
}
const downloadStart = Date.now();
const modelRegistryEntry = modelRegistry[languagePair];
const modelFiles = Object.keys(modelRegistryEntry).map((type) => {
const { name, size, expectedSha256Hash } = modelRegistryEntry[type];
const url = `${bergamotModelsBaseUrl}/${languagePair}/${name}`;
return { type, url, name, size, expectedSha256Hash };
});
// Check remaining storage quota
const quota = yield navigator.storage.estimate();
const percentageUsed = (quota.usage / quota.quota) * 100;
console.info(`${Math.round(percentageUsed * 100) /
100}% used of the available storage (${mb(quota.quota)} mb).`);
const approximateRemainingQuota = quota.quota - quota.usage;
console.info(`Remaining storage quota: ${mb(approximateRemainingQuota)} mb.`);
// Don't attempt to persist model files if remaining quota suggest that it won't work
let persistFiles = true;
const modelFilesSize = modelFiles
.map(({ size }) => size)
.reduce((a, b) => a + b, 0);
if (modelFilesSize > approximateRemainingQuota) {
persistFiles = false;
log(`${languagePair}: Will not attempt to persist the model files (${mb(modelFilesSize)} mb) since approximate remaining quota (${mb(approximateRemainingQuota)} mb) is too small`);
}
// Summarize periodical updates on total language pair download progress
const bytesTransferredByType = {
lex: 0,
model: 0,
vocab: 0,
};
const filesToTransferByType = {
lex: false,
model: false,
vocab: false,
};
const sumLanguagePairFileToTransferSize = attribute => {
return ["lex", "model", "vocab"]
.map(type => filesToTransferByType[type] ? modelRegistryEntry[type][attribute] : 0)
.reduce((a, b) => a + b, 0);
};
const broadcastDownloadProgressUpdate = () => {
const languagePairBytesTransferred = bytesTransferredByType.lex +
bytesTransferredByType.model +
bytesTransferredByType.vocab;
const languagePairBytesToTransfer = sumLanguagePairFileToTransferSize("size");
const languagePairEstimatedCompressedBytesToTransfer = sumLanguagePairFileToTransferSize("estimatedCompressedSize");
const percentTransferred = languagePairBytesToTransfer > 0
? languagePairBytesTransferred / languagePairBytesToTransfer
: 1.0;
const downloadDurationMs = Date.now() - downloadStart;
const modelDownloadProgress = {
bytesDownloaded: Math.round(percentTransferred * languagePairEstimatedCompressedBytesToTransfer),
bytesToDownload: languagePairEstimatedCompressedBytesToTransfer,
startTs: downloadStart,
durationMs: downloadDurationMs,
endTs: undefined,
};
onModelDownloadProgress(modelDownloadProgress);
/*
console.debug(
`${languagePair}: onDownloadProgressUpdate - ${Math.round(
percentTransferred * 100,
)}% out of ${mb(languagePairEstimatedCompressedBytesToTransfer)} mb (${mb(
languagePairBytesToTransfer,
)} mb uncompressed) transferred`,
);
*/
};
const throttledBroadcastDownloadProgressUpdate = throttle_1.throttle(broadcastDownloadProgressUpdate, 100);
// Download or restore model files from persistent cache
const downloadedModelFiles = yield Promise.all(modelFiles.map(({ type, url, name, expectedSha256Hash }) => __awaiter(void 0, void 0, void 0, function* () {
let response = yield cache.match(url);
let downloaded = false;
if (!response || response.status >= 400) {
log(`Downloading model file ${name} from ${url}`);
downloaded = true;
filesToTransferByType[type] = true;
try {
const downloadResponsePromise = fetch(url);
// Await initial response headers before continuing
const downloadResponseRaw = yield downloadResponsePromise;
// Hook up progress callbacks to track actual download of the model files
const onProgress = (bytesTransferred) => {
// console.debug(`${name}: onProgress - ${mb(bytesTransferred)} mb out of ${mb(size)} mb transferred`);
bytesTransferredByType[type] = bytesTransferred;
throttledBroadcastDownloadProgressUpdate();
};
response = instrumentResponseWithProgressCallback_1.instrumentResponseWithProgressCallback(downloadResponseRaw, onProgress);
log(`Response for ${url} from network is: ${response.status}`);
if (persistFiles) {
// This avoids caching responses that we know are errors (i.e. HTTP status code of 4xx or 5xx).
if (response.status < 400) {
yield persistResponse_1.persistResponse(cache, url, response, log);
}
else {
log(`${name}: Not caching the response to ${url} since the status was >= 400`);
}
}
}
catch ($$err) {
console.warn(`${name}: An error occurred while downloading/persisting the file`, { $$err });
const errorToThrow = new ModelDownloadError($$err.message);
errorToThrow.stack = $$err.stack;
throw errorToThrow;
}
}
else {
log(`${name}: Model file from ${url} previously downloaded already`);
}
if (response.status >= 400) {
throw new ModelDownloadError("Model file download failed");
}
const arrayBuffer = yield response.arrayBuffer();
// Verify the hash of downloaded model files
const sha256Hash = yield digestSha256_1.digestSha256(arrayBuffer);
if (sha256Hash !== expectedSha256Hash) {
console.warn(`Model file download integrity check failed for ${languagePair}'s ${type} file`, {
sha256Hash,
expectedSha256Hash,
});
throw new ModelDownloadError(`Model file download integrity check failed for ${languagePair}'s ${type} file`);
}
return { type, name, arrayBuffer, downloaded, sha256Hash };
})));
// Measure the time it took to acquire model files
const downloadEnd = Date.now();
const downloadDurationMs = downloadEnd - downloadStart;
const totalBytes = downloadedModelFiles
.map(({ arrayBuffer }) => arrayBuffer.byteLength)
.reduce((a, b) => a + b, 0);
const totalBytesDownloaded = downloadedModelFiles
.filter(({ downloaded }) => downloaded)
.map(({ arrayBuffer }) => arrayBuffer.byteLength)
.reduce((a, b) => a + b, 0);
// Either report the total time for downloading or the time it has taken to load cached model files
if (totalBytesDownloaded > 0) {
const languagePairEstimatedCompressedBytesToTransfer = sumLanguagePairFileToTransferSize("estimatedCompressedSize");
const finalModelDownloadProgress = {
bytesDownloaded: languagePairEstimatedCompressedBytesToTransfer,
bytesToDownload: languagePairEstimatedCompressedBytesToTransfer,
startTs: downloadStart,
durationMs: downloadDurationMs,
endTs: downloadEnd,
};
onModelDownloadProgress(finalModelDownloadProgress);
}
else {
const finalModelDownloadProgress = {
bytesDownloaded: 0,
bytesToDownload: 0,
startTs: downloadStart,
durationMs: downloadDurationMs,
endTs: downloadEnd,
};
onModelDownloadProgress(finalModelDownloadProgress);
}
log(`All model files for ${languagePair} downloaded / restored from persistent cache in ${downloadDurationMs /
1000} seconds (total uncompressed size of model files: ${mb(totalBytes)} mb, of which ${Math.round((totalBytesDownloaded / totalBytes) * 100)}% was downloaded)`);
return downloadedModelFiles;
});
exports.getBergamotModelsForLanguagePair = getBergamotModelsForLanguagePair;
/***/ }),
/***/ 4611:
/*!***********************************************************************!*\
!*** ./src/core/ts/web-worker-scripts/translation-worker.js/index.ts ***!
\***********************************************************************/
/***/ (function(__unused_webpack_module, exports, __webpack_require__) {
/* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) {
function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); }
return new (P || (P = Promise))(function (resolve, reject) {
function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } }
function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } }
function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); }
step((generator = generator.apply(thisArg, _arguments || [])).next());
});
};
Object.defineProperty(exports, "__esModule", ({ value: true }));
const bergamot_translator_worker_1 = __webpack_require__(/*! ./bergamot-translator-worker */ 3662);
const getBergamotModelsForLanguagePair_1 = __webpack_require__(/*! ./getBergamotModelsForLanguagePair */ 92);
const config_1 = __webpack_require__(/*! ../../config */ 964);
bergamot_translator_worker_1.addOnPreMain(function () {
let model;
const log = message => {
postMessage({
type: "log",
message,
});
};
/**
* If we end up in a situation where we want to make sure that an instance is deleted
* and the instance was in fact already deleted, then let that happen without throwing
* a fatal error.
*
* @param instance
*/
const safelyDeleteInstance = instance => {
try {
instance.delete();
}
catch (err) {
if (err.name === "BindingError" &&
err.message.includes("instance already deleted")) {
// ignore
return;
}
throw err;
}
};
/**
* Automatically download the appropriate translation models, vocabularies and lexical shortlists if not already locally present
*/
const downloadModel = (from, to, bergamotModelsBaseUrl, onModelDownloadProgress) => __awaiter(this, void 0, void 0, function* () {
log(`downloadModel(${from}, ${to}, ${bergamotModelsBaseUrl})`);
const languagePair = `${from}${to}`;
const cache = yield caches.open("bergamot-models");
const downloadedModelFiles = yield getBergamotModelsForLanguagePair_1.getBergamotModelsForLanguagePair(languagePair, bergamotModelsBaseUrl, config_1.modelRegistry, cache, log, onModelDownloadProgress);
const downloadedModelFilesByType = {
lex: undefined,
model: undefined,
vocab: undefined,
};
downloadedModelFiles.forEach(downloadedModelFile => {
downloadedModelFilesByType[downloadedModelFile.type] = downloadedModelFile;
});
return downloadedModelFilesByType;
});
const loadModel = (from, to, bergamotModelsBaseUrl, onModelDownloadProgress) => __awaiter(this, void 0, void 0, function* () {
log(`loadModel(${from}, ${to})`);
// Delete previous instance if a model is already loaded
if (model) {
safelyDeleteInstance(model);
}
// Download or hydrate model files to/from persistent storage
const downloadedModelFilesByType = yield downloadModel(from, to, bergamotModelsBaseUrl, onModelDownloadProgress);
const loadModelStart = performance.now();
// This function constructs the AlignedMemory from the array buffer and the alignment size
const constructAlignedMemoryFromBuffer = (buffer, alignmentSize) => {
const byteArray = new Int8Array(buffer);
// console.debug("byteArray size: ", byteArray.byteLength);
const alignedMemory = new bergamot_translator_worker_1.Module.AlignedMemory(byteArray.byteLength, alignmentSize);
const alignedByteArrayView = alignedMemory.getByteArrayView();
alignedByteArrayView.set(byteArray);
return alignedMemory;
};
// Set the Model Configuration as YAML formatted string.
// For available configuration options, please check: https://marian-nmt.github.io/docs/cmd/marian-decoder/
// This example captures the most relevant options: model file, vocabulary files and shortlist file
const modelConfig = `beam-size: 1
normalize: 1.0
word-penalty: 0
max-length-break: 128
mini-batch-words: 1024
workspace: 128
max-length-factor: 2.0
skip-cost: true
cpu-threads: 0
quiet: true
quiet-translation: true
gemm-precision: int8shift
`;
console.log("modelConfig: ", modelConfig);
// Instantiate the TranslationModel
const modelBuffer = downloadedModelFilesByType.model.arrayBuffer;
const shortListBuffer = downloadedModelFilesByType.lex.arrayBuffer;
const vocabBuffers = [downloadedModelFilesByType.vocab.arrayBuffer];
// Construct AlignedMemory objects with downloaded buffers
const alignedModelMemory = constructAlignedMemoryFromBuffer(modelBuffer, 256);
const alignedShortlistMemory = constructAlignedMemoryFromBuffer(shortListBuffer, 64);
const alignedVocabsMemoryList = new bergamot_translator_worker_1.Module.AlignedMemoryList();
vocabBuffers.forEach(item => alignedVocabsMemoryList.push_back(constructAlignedMemoryFromBuffer(item, 64)));
model = new bergamot_translator_worker_1.Module.TranslationModel(modelConfig, alignedModelMemory, alignedShortlistMemory, alignedVocabsMemoryList);
const loadModelEnd = performance.now();
const modelLoadWallTimeMs = loadModelEnd - loadModelStart;
const alignmentIsSupported = model.isAlignmentSupported();
console.debug("Alignment:", alignmentIsSupported);
return { alignmentIsSupported, modelLoadWallTimeMs };
});
const translate = (texts) => {
log(`translate()`);
if (!model) {
throw new Error("Translate attempted before model was loaded");
}
// TODO: Check that the loaded model supports the translation direction
// Prepare results object
const translationResults = {
originalTexts: [],
translatedTexts: [],
};
// Instantiate the arguments of translate() API i.e. TranslationRequest and input (vector<string>)
const request = new bergamot_translator_worker_1.Module.TranslationRequest();
const input = new bergamot_translator_worker_1.Module.VectorString();
// Add texts to translate
texts.forEach(text => {
input.push_back(text);
});
// Access input (just for debugging)
console.debug("Input size=", input.size());
/*
for (let i = 0; i < input.size(); i++) {
console.debug(" val:" + input.get(i));
}
*/
// Translate the input; the result is a vector<TranslationResult>
const result = model.translate(input, request);
// Access input after translation (just for debugging)
console.debug("Input size after translate API call =", input.size());
// Access original and translated text from each entry of vector<TranslationResult>
console.debug("Result size=", result.size());
for (let i = 0; i < result.size(); i++) {
const originalText = result.get(i).getOriginalText();
const translatedText = result.get(i).getTranslatedText();
translationResults.originalTexts.push(originalText);
translationResults.translatedTexts.push(translatedText);
}
// Clean up the instances
safelyDeleteInstance(request);
safelyDeleteInstance(input);
return translationResults;
};
const handleError = (error, requestId, errorSource) => {
console.info(`Error/exception caught in worker during ${errorSource}:`, error);
log(`Error/exception caught in worker during ${errorSource}: ${error} ${error.stack}`);
const message = {
type: `error`,
message: `Error/exception caught in worker during ${errorSource}: ${error.toString()}`,
requestId,
errorSource,
};
postMessage(message);
};
onmessage = function (msg) {
const { data } = msg;
if (!data.type || !data.requestId) {
return;
}
const requestId = data.requestId;
if (data.type === "loadModel") {
try {
loadModel(data.loadModelParams.from, data.loadModelParams.to, data.loadModelParams.bergamotModelsBaseUrl, (modelDownloadProgress) => {
const message = {
type: "modelDownloadProgress",
requestId,
modelDownloadProgress,
};
postMessage(message);
})
.then(loadModelResults => {
const message = {
type: "loadModelResults",
requestId,
loadModelResults,
};
postMessage(message);
})
.catch(error => {
if (error.name === "ModelDownloadError") {
handleError(error, requestId, "downloadModel");
}
else {
handleError(error, requestId, "loadModel");
}
});
}
catch (error) {
handleError(error, requestId, "loadModel");
}
}
else if (data.type === "translate") {
try {
console.log("Messages to translate: ", data.translateParams.texts);
const translationResults = translate(data.translateParams.texts);
const message = {
type: "translationResults",
requestId,
translationResults,
};
postMessage(message);
}
catch (error) {
handleError(error, requestId, "translate");
}
}
else {
throw new Error(`Unexpected message data payload sent to translation worker: "${JSON.stringify(data)}"`);
}
};
// Send a message indicating that the worker is ready to receive WASM-related messages
postMessage("ready");
log("The worker is ready to receive translation-related messages");
});
/***/ }),
/***/ 14:
/*!********************************************************************************************************!*\
!*** ./src/core/ts/web-worker-scripts/translation-worker.js/instrumentResponseWithProgressCallback.ts ***!
\********************************************************************************************************/
/***/ ((__unused_webpack_module, exports) => {
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.instrumentResponseWithProgressCallback = void 0;
const instrumentResponseWithProgressCallback = (response, onProgress) => {
const { body, headers, status } = response;
// Only attempt to track download progress on valid responses
if (status >= 400) {
return response;
}
const reader = body.getReader();
let bytesTransferred = 0;
const stream = new ReadableStream({
start(controller) {
function push() {
reader.read().then(({ done, value }) => {
if (done) {
controller.close();
return;
}
if (value) {
onProgress(bytesTransferred);
bytesTransferred += value.length;
}
controller.enqueue(value);
push();
});
}
push();
},
});
return new Response(stream, { headers, status });
};
exports.instrumentResponseWithProgressCallback = instrumentResponseWithProgressCallback;
/***/ }),
/***/ 6824:
/*!*********************************************************************************!*\
!*** ./src/core/ts/web-worker-scripts/translation-worker.js/persistResponse.ts ***!
\*********************************************************************************/
/***/ (function(__unused_webpack_module, exports) {
var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) {
function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); }
return new (P || (P = Promise))(function (resolve, reject) {
function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } }
function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } }
function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); }
step((generator = generator.apply(thisArg, _arguments || [])).next());
});
};
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.persistResponse = void 0;
const persistResponse = (cache, url, response, log) => __awaiter(void 0, void 0, void 0, function* () {
// Both fetch() and cache.put() "consume" the request, so we need to make a copy.
// (see https://developer.mozilla.org/en-US/docs/Web/API/Request/clone)
try {
// Store fetched contents in cache
yield cache.put(url, response.clone());
}
catch (err) {
console.warn("Error occurred during cache.put()", { err });
// Note that this error is currently not thrown at all due to https://github.com/jimmywarting/cache-polyfill/issues/4
if (err && err.name === "QuotaExceededError") {
// Don't bail just because we can't persist the model file across browser restarts
console.warn(err);
log(`${name}: Ran into and ignored a QuotaExceededError`);
}
else {
throw err;
}
}
});
exports.persistResponse = persistResponse;
/***/ }),
/***/ 7424:
/*!**************************************************************************!*\
!*** ./src/core/ts/web-worker-scripts/translation-worker.js/throttle.ts ***!
\**************************************************************************/
/***/ ((__unused_webpack_module, exports) => {
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.throttle = void 0;
/**
* Execute a callback immediately and then at most once each {ms} ms
* Derived from https://stackoverflow.com/a/27078401/682317
*/
const throttle = (callback, ms) => {
let waiting = false;
return function () {
if (!waiting) {
callback.apply(this, arguments);
waiting = true;
setTimeout(function () {
waiting = false;
}, ms);
}
};
};
exports.throttle = throttle;
/***/ })
/******/ });
/************************************************************************/
/******/ // The module cache
/******/ var __webpack_module_cache__ = {};
/******/
/******/ // The require function
/******/ function __webpack_require__(moduleId) {
/******/ // Check if module is in cache
/******/ if(__webpack_module_cache__[moduleId]) {
/******/ return __webpack_module_cache__[moduleId].exports;
/******/ }
/******/ // Create a new module (and put it into the cache)
/******/ var module = __webpack_module_cache__[moduleId] = {
/******/ // no module.id needed
/******/ // no module.loaded needed
/******/ exports: {}
/******/ };
/******/
/******/ // Execute the module function
/******/ __webpack_modules__[moduleId].call(module.exports, module, module.exports, __webpack_require__);
/******/
/******/ // Return the exports of the module
/******/ return module.exports;
/******/ }
/******/
/************************************************************************/
/******/
/******/ // startup
/******/ // Load entry module and return exports
/******/ // This entry module is referenced by other modules so it can't be inlined
/******/ var __webpack_exports__ = __webpack_require__(4611);
/******/
/******/ })()
;
//# sourceMappingURL=translation-worker.js.map