| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450 | "use strict";function makeException(ErrorType, message, options) {  if (options.globals) {    ErrorType = options.globals[ErrorType.name];  }  return new ErrorType(`${options.context ? options.context : "Value"} ${message}.`);}function toNumber(value, options) {  if (typeof value === "bigint") {    throw makeException(TypeError, "is a BigInt which cannot be converted to a number", options);  }  if (!options.globals) {    return Number(value);  }  return options.globals.Number(value);}// Round x to the nearest integer, choosing the even integer if it lies halfway between two.function evenRound(x) {  // There are four cases for numbers with fractional part being .5:  //  // case |     x     | floor(x) | round(x) | expected | x <> 0 | x % 1 | x & 1 |   example  //   1  |  2n + 0.5 |  2n      |  2n + 1  |  2n      |   >    |  0.5  |   0   |  0.5 ->  0  //   2  |  2n + 1.5 |  2n + 1  |  2n + 2  |  2n + 2  |   >    |  0.5  |   1   |  1.5 ->  2  //   3  | -2n - 0.5 | -2n - 1  | -2n      | -2n      |   <    | -0.5  |   0   | -0.5 ->  0  //   4  | -2n - 1.5 | -2n - 2  | -2n - 1  | -2n - 2  |   <    | -0.5  |   1   | -1.5 -> -2  // (where n is a non-negative integer)  //  // Branch here for cases 1 and 4  if ((x > 0 && (x % 1) === +0.5 && (x & 1) === 0) ||        (x < 0 && (x % 1) === -0.5 && (x & 1) === 1)) {    return censorNegativeZero(Math.floor(x));  }  return censorNegativeZero(Math.round(x));}function integerPart(n) {  return censorNegativeZero(Math.trunc(n));}function sign(x) {  return x < 0 ? -1 : 1;}function modulo(x, y) {  // https://tc39.github.io/ecma262/#eqn-modulo  // Note that http://stackoverflow.com/a/4467559/3191 does NOT work for large modulos  const signMightNotMatch = x % y;  if (sign(y) !== sign(signMightNotMatch)) {    return signMightNotMatch + y;  }  return signMightNotMatch;}function censorNegativeZero(x) {  return x === 0 ? 0 : x;}function createIntegerConversion(bitLength, { unsigned }) {  let lowerBound, upperBound;  if (unsigned) {    lowerBound = 0;    upperBound = 2 ** bitLength - 1;  } else {    lowerBound = -(2 ** (bitLength - 1));    upperBound = 2 ** (bitLength - 1) - 1;  }  const twoToTheBitLength = 2 ** bitLength;  const twoToOneLessThanTheBitLength = 2 ** (bitLength - 1);  return (value, options = {}) => {    let x = toNumber(value, options);    x = censorNegativeZero(x);    if (options.enforceRange) {      if (!Number.isFinite(x)) {        throw makeException(TypeError, "is not a finite number", options);      }      x = integerPart(x);      if (x < lowerBound || x > upperBound) {        throw makeException(          TypeError,          `is outside the accepted range of ${lowerBound} to ${upperBound}, inclusive`,          options        );      }      return x;    }    if (!Number.isNaN(x) && options.clamp) {      x = Math.min(Math.max(x, lowerBound), upperBound);      x = evenRound(x);      return x;    }    if (!Number.isFinite(x) || x === 0) {      return 0;    }    x = integerPart(x);    // Math.pow(2, 64) is not accurately representable in JavaScript, so try to avoid these per-spec operations if    // possible. Hopefully it's an optimization for the non-64-bitLength cases too.    if (x >= lowerBound && x <= upperBound) {      return x;    }    // These will not work great for bitLength of 64, but oh well. See the README for more details.    x = modulo(x, twoToTheBitLength);    if (!unsigned && x >= twoToOneLessThanTheBitLength) {      return x - twoToTheBitLength;    }    return x;  };}function createLongLongConversion(bitLength, { unsigned }) {  const upperBound = Number.MAX_SAFE_INTEGER;  const lowerBound = unsigned ? 0 : Number.MIN_SAFE_INTEGER;  const asBigIntN = unsigned ? BigInt.asUintN : BigInt.asIntN;  return (value, options = {}) => {    let x = toNumber(value, options);    x = censorNegativeZero(x);    if (options.enforceRange) {      if (!Number.isFinite(x)) {        throw makeException(TypeError, "is not a finite number", options);      }      x = integerPart(x);      if (x < lowerBound || x > upperBound) {        throw makeException(          TypeError,          `is outside the accepted range of ${lowerBound} to ${upperBound}, inclusive`,          options        );      }      return x;    }    if (!Number.isNaN(x) && options.clamp) {      x = Math.min(Math.max(x, lowerBound), upperBound);      x = evenRound(x);      return x;    }    if (!Number.isFinite(x) || x === 0) {      return 0;    }    let xBigInt = BigInt(integerPart(x));    xBigInt = asBigIntN(bitLength, xBigInt);    return Number(xBigInt);  };}exports.any = value => {  return value;};exports.undefined = () => {  return undefined;};exports.boolean = value => {  return Boolean(value);};exports.byte = createIntegerConversion(8, { unsigned: false });exports.octet = createIntegerConversion(8, { unsigned: true });exports.short = createIntegerConversion(16, { unsigned: false });exports["unsigned short"] = createIntegerConversion(16, { unsigned: true });exports.long = createIntegerConversion(32, { unsigned: false });exports["unsigned long"] = createIntegerConversion(32, { unsigned: true });exports["long long"] = createLongLongConversion(64, { unsigned: false });exports["unsigned long long"] = createLongLongConversion(64, { unsigned: true });exports.double = (value, options = {}) => {  const x = toNumber(value, options);  if (!Number.isFinite(x)) {    throw makeException(TypeError, "is not a finite floating-point value", options);  }  return x;};exports["unrestricted double"] = (value, options = {}) => {  const x = toNumber(value, options);  return x;};exports.float = (value, options = {}) => {  const x = toNumber(value, options);  if (!Number.isFinite(x)) {    throw makeException(TypeError, "is not a finite floating-point value", options);  }  if (Object.is(x, -0)) {    return x;  }  const y = Math.fround(x);  if (!Number.isFinite(y)) {    throw makeException(TypeError, "is outside the range of a single-precision floating-point value", options);  }  return y;};exports["unrestricted float"] = (value, options = {}) => {  const x = toNumber(value, options);  if (isNaN(x)) {    return x;  }  if (Object.is(x, -0)) {    return x;  }  return Math.fround(x);};exports.DOMString = (value, options = {}) => {  if (options.treatNullAsEmptyString && value === null) {    return "";  }  if (typeof value === "symbol") {    throw makeException(TypeError, "is a symbol, which cannot be converted to a string", options);  }  const StringCtor = options.globals ? options.globals.String : String;  return StringCtor(value);};exports.ByteString = (value, options = {}) => {  const x = exports.DOMString(value, options);  let c;  for (let i = 0; (c = x.codePointAt(i)) !== undefined; ++i) {    if (c > 255) {      throw makeException(TypeError, "is not a valid ByteString", options);    }  }  return x;};exports.USVString = (value, options = {}) => {  const S = exports.DOMString(value, options);  const n = S.length;  const U = [];  for (let i = 0; i < n; ++i) {    const c = S.charCodeAt(i);    if (c < 0xD800 || c > 0xDFFF) {      U.push(String.fromCodePoint(c));    } else if (0xDC00 <= c && c <= 0xDFFF) {      U.push(String.fromCodePoint(0xFFFD));    } else if (i === n - 1) {      U.push(String.fromCodePoint(0xFFFD));    } else {      const d = S.charCodeAt(i + 1);      if (0xDC00 <= d && d <= 0xDFFF) {        const a = c & 0x3FF;        const b = d & 0x3FF;        U.push(String.fromCodePoint((2 << 15) + ((2 << 9) * a) + b));        ++i;      } else {        U.push(String.fromCodePoint(0xFFFD));      }    }  }  return U.join("");};exports.object = (value, options = {}) => {  if (value === null || (typeof value !== "object" && typeof value !== "function")) {    throw makeException(TypeError, "is not an object", options);  }  return value;};const abByteLengthGetter =    Object.getOwnPropertyDescriptor(ArrayBuffer.prototype, "byteLength").get;const sabByteLengthGetter =    typeof SharedArrayBuffer === "function" ?      Object.getOwnPropertyDescriptor(SharedArrayBuffer.prototype, "byteLength").get :      null;function isNonSharedArrayBuffer(value) {  try {    // This will throw on SharedArrayBuffers, but not detached ArrayBuffers.    // (The spec says it should throw, but the spec conflicts with implementations: https://github.com/tc39/ecma262/issues/678)    abByteLengthGetter.call(value);    return true;  } catch {    return false;  }}function isSharedArrayBuffer(value) {  try {    sabByteLengthGetter.call(value);    return true;  } catch {    return false;  }}function isArrayBufferDetached(value) {  try {    // eslint-disable-next-line no-new    new Uint8Array(value);    return false;  } catch {    return true;  }}exports.ArrayBuffer = (value, options = {}) => {  if (!isNonSharedArrayBuffer(value)) {    if (options.allowShared && !isSharedArrayBuffer(value)) {      throw makeException(TypeError, "is not an ArrayBuffer or SharedArrayBuffer", options);    }    throw makeException(TypeError, "is not an ArrayBuffer", options);  }  if (isArrayBufferDetached(value)) {    throw makeException(TypeError, "is a detached ArrayBuffer", options);  }  return value;};const dvByteLengthGetter =    Object.getOwnPropertyDescriptor(DataView.prototype, "byteLength").get;exports.DataView = (value, options = {}) => {  try {    dvByteLengthGetter.call(value);  } catch (e) {    throw makeException(TypeError, "is not a DataView", options);  }  if (!options.allowShared && isSharedArrayBuffer(value.buffer)) {    throw makeException(TypeError, "is backed by a SharedArrayBuffer, which is not allowed", options);  }  if (isArrayBufferDetached(value.buffer)) {    throw makeException(TypeError, "is backed by a detached ArrayBuffer", options);  }  return value;};// Returns the unforgeable `TypedArray` constructor name or `undefined`,// if the `this` value isn't a valid `TypedArray` object.//// https://tc39.es/ecma262/#sec-get-%typedarray%.prototype-@@tostringtagconst typedArrayNameGetter = Object.getOwnPropertyDescriptor(  Object.getPrototypeOf(Uint8Array).prototype,  Symbol.toStringTag).get;[  Int8Array,  Int16Array,  Int32Array,  Uint8Array,  Uint16Array,  Uint32Array,  Uint8ClampedArray,  Float32Array,  Float64Array].forEach(func => {  const { name } = func;  const article = /^[AEIOU]/u.test(name) ? "an" : "a";  exports[name] = (value, options = {}) => {    if (!ArrayBuffer.isView(value) || typedArrayNameGetter.call(value) !== name) {      throw makeException(TypeError, `is not ${article} ${name} object`, options);    }    if (!options.allowShared && isSharedArrayBuffer(value.buffer)) {      throw makeException(TypeError, "is a view on a SharedArrayBuffer, which is not allowed", options);    }    if (isArrayBufferDetached(value.buffer)) {      throw makeException(TypeError, "is a view on a detached ArrayBuffer", options);    }    return value;  };});// Common definitionsexports.ArrayBufferView = (value, options = {}) => {  if (!ArrayBuffer.isView(value)) {    throw makeException(TypeError, "is not a view on an ArrayBuffer or SharedArrayBuffer", options);  }  if (!options.allowShared && isSharedArrayBuffer(value.buffer)) {    throw makeException(TypeError, "is a view on a SharedArrayBuffer, which is not allowed", options);  }  if (isArrayBufferDetached(value.buffer)) {    throw makeException(TypeError, "is a view on a detached ArrayBuffer", options);  }  return value;};exports.BufferSource = (value, options = {}) => {  if (ArrayBuffer.isView(value)) {    if (!options.allowShared && isSharedArrayBuffer(value.buffer)) {      throw makeException(TypeError, "is a view on a SharedArrayBuffer, which is not allowed", options);    }    if (isArrayBufferDetached(value.buffer)) {      throw makeException(TypeError, "is a view on a detached ArrayBuffer", options);    }    return value;  }  if (!options.allowShared && !isNonSharedArrayBuffer(value)) {    throw makeException(TypeError, "is not an ArrayBuffer or a view on one", options);  }  if (options.allowShared && !isSharedArrayBuffer(value) && !isNonSharedArrayBuffer(value)) {    throw makeException(TypeError, "is not an ArrayBuffer, SharedArrayBuffer, or a view on one", options);  }  if (isArrayBufferDetached(value)) {    throw makeException(TypeError, "is a detached ArrayBuffer", options);  }  return value;};exports.DOMTimeStamp = exports["unsigned long long"];
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