Enable the prefer-exponentiation-operator
ESLint rule
Please see https://eslint.org/docs/rules/prefer-exponentiation-operator for additional information.
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@ -158,6 +158,7 @@
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},
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],
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"no-unneeded-ternary": "error",
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"prefer-exponentiation-operator": "error",
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"spaced-comment": ["error", "always", {
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"block": {
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"balanced": true,
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@ -889,14 +889,14 @@ const CalGrayCS = (function CalGrayCSClosure() {
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// A represents a gray component of a calibrated gray space.
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// A <---> AG in the spec
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const A = src[srcOffset] * scale;
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const AG = Math.pow(A, cs.G);
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const AG = A ** cs.G;
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// Computes L as per spec. ( = cs.YW * AG )
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// Except if other than default BlackPoint values are used.
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const L = cs.YW * AG;
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// http://www.poynton.com/notes/colour_and_gamma/ColorFAQ.html, Ch 4.
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// Convert values to rgb range [0, 255].
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const val = Math.max(295.8 * Math.pow(L, 0.333333333333333333) - 40.8, 0);
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const val = Math.max(295.8 * L ** 0.333333333333333333 - 40.8, 0);
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dest[destOffset] = val;
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dest[destOffset + 1] = val;
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dest[destOffset + 2] = val;
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@ -1026,7 +1026,7 @@ const CalRGBCS = (function CalRGBCSClosure() {
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const tempConvertMatrix1 = new Float32Array(3);
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const tempConvertMatrix2 = new Float32Array(3);
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const DECODE_L_CONSTANT = Math.pow((8 + 16) / 116, 3) / 8.0;
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const DECODE_L_CONSTANT = ((8 + 16) / 116) ** 3 / 8.0;
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function matrixProduct(a, b, result) {
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result[0] = a[0] * b[0] + a[1] * b[1] + a[2] * b[2];
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@ -1055,7 +1055,7 @@ const CalRGBCS = (function CalRGBCSClosure() {
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if (color <= 0.0031308) {
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return adjustToRange(0, 1, 12.92 * color);
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}
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return adjustToRange(0, 1, (1 + 0.055) * Math.pow(color, 1 / 2.4) - 0.055);
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return adjustToRange(0, 1, (1 + 0.055) * color ** (1 / 2.4) - 0.055);
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}
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function adjustToRange(min, max, value) {
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@ -1067,7 +1067,7 @@ const CalRGBCS = (function CalRGBCSClosure() {
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return -decodeL(-L);
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}
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if (L > 8.0) {
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return Math.pow((L + 16) / 116, 3);
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return ((L + 16) / 116) ** 3;
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}
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return L * DECODE_L_CONSTANT;
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}
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@ -1154,9 +1154,9 @@ const CalRGBCS = (function CalRGBCSClosure() {
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// A <---> AGR in the spec
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// B <---> BGG in the spec
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// C <---> CGB in the spec
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const AGR = Math.pow(A, cs.GR);
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const BGG = Math.pow(B, cs.GG);
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const CGB = Math.pow(C, cs.GB);
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const AGR = A ** cs.GR;
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const BGG = B ** cs.GG;
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const CGB = C ** cs.GB;
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// Computes intermediate variables L, M, N as per spec.
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// To decode X, Y, Z values map L, M, N directly to them.
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@ -1166,7 +1166,7 @@ var Font = (function FontClosure() {
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}
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function createPostTable(properties) {
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var angle = Math.floor(properties.italicAngle * Math.pow(2, 16));
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var angle = Math.floor(properties.italicAngle * 2 ** 16);
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return (
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"\x00\x03\x00\x00" + // Version number
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string32(angle) + // italicAngle
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@ -83,7 +83,7 @@ var PDFFunction = (function PDFFunctionClosure() {
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var codeSize = 0;
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var codeBuf = 0;
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// 32 is a valid bps so shifting won't work
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var sampleMul = 1.0 / (Math.pow(2.0, bps) - 1);
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var sampleMul = 1.0 / (2.0 ** bps - 1);
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var strBytes = stream.getBytes((length * bps + 7) / 8);
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var strIdx = 0;
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@ -227,7 +227,7 @@ var PDFFunction = (function PDFFunctionClosure() {
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samples,
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size,
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outputSize,
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Math.pow(2, bps) - 1,
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2 ** bps - 1,
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range,
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];
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},
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@ -358,7 +358,7 @@ var PDFFunction = (function PDFFunctionClosure() {
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dest,
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destOffset
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) {
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var x = n === 1 ? src[srcOffset] : Math.pow(src[srcOffset], n);
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var x = n === 1 ? src[srcOffset] : src[srcOffset] ** n;
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for (var j = 0; j < length; ++j) {
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dest[destOffset + j] = c0[j] + x * diff[j];
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@ -726,7 +726,7 @@ var PostScriptEvaluator = (function PostScriptEvaluatorClosure() {
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case "exp":
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b = stack.pop();
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a = stack.pop();
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stack.push(Math.pow(a, b));
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stack.push(a ** b);
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break;
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case "false":
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stack.push(false);
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@ -1434,7 +1434,7 @@ var JpxImage = (function JpxImageClosure() {
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// calculate quantization coefficient (Section E.1.1.1)
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var delta = reversible
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? 1
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: Math.pow(2, precision + gainLog2 - epsilon) * (1 + mu / 2048);
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: 2 ** (precision + gainLog2 - epsilon) * (1 + mu / 2048);
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var mb = guardBits + epsilon - 1;
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// In the first resolution level, copyCoefficients will fill the
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@ -948,7 +948,7 @@ class Lexer {
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baseValue /= divideBy;
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}
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if (eNotation) {
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baseValue *= Math.pow(10, powerValueSign * powerValue);
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baseValue *= 10 ** (powerValueSign * powerValue);
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}
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return sign * baseValue;
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}
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