import { bitXor as bigBitXor } from '../../utils/bignumber/bitwise.js'; import { createAlgorithm03 } from '../../type/matrix/utils/algorithm03.js'; import { createAlgorithm07 } from '../../type/matrix/utils/algorithm07.js'; import { createAlgorithm12 } from '../../type/matrix/utils/algorithm12.js'; import { createAlgorithm13 } from '../../type/matrix/utils/algorithm13.js'; import { createAlgorithm14 } from '../../type/matrix/utils/algorithm14.js'; import { factory } from '../../utils/factory.js'; import { bitXorNumber } from '../../plain/number/index.js'; var name = 'bitXor'; var dependencies = ['typed', 'matrix', 'DenseMatrix']; export var createBitXor = /* #__PURE__ */factory(name, dependencies, _ref => { var { typed, matrix, DenseMatrix } = _ref; var algorithm03 = createAlgorithm03({ typed }); var algorithm07 = createAlgorithm07({ typed, DenseMatrix }); var algorithm12 = createAlgorithm12({ typed, DenseMatrix }); var algorithm13 = createAlgorithm13({ typed }); var algorithm14 = createAlgorithm14({ typed }); /** * Bitwise XOR two values, `x ^ y`. * For matrices, the function is evaluated element wise. * * Syntax: * * math.bitXor(x, y) * * Examples: * * math.bitXor(1, 2) // returns number 3 * * math.bitXor([2, 3, 4], 4) // returns Array [6, 7, 0] * * See also: * * bitAnd, bitNot, bitOr, leftShift, rightArithShift, rightLogShift * * @param {number | BigNumber | Array | Matrix} x First value to xor * @param {number | BigNumber | Array | Matrix} y Second value to xor * @return {number | BigNumber | Array | Matrix} XOR of `x` and `y` */ return typed(name, { 'number, number': bitXorNumber, 'BigNumber, BigNumber': bigBitXor, 'SparseMatrix, SparseMatrix': function SparseMatrixSparseMatrix(x, y) { return algorithm07(x, y, this); }, 'SparseMatrix, DenseMatrix': function SparseMatrixDenseMatrix(x, y) { return algorithm03(y, x, this, true); }, 'DenseMatrix, SparseMatrix': function DenseMatrixSparseMatrix(x, y) { return algorithm03(x, y, this, false); }, 'DenseMatrix, DenseMatrix': function DenseMatrixDenseMatrix(x, y) { return algorithm13(x, y, this); }, 'Array, Array': function ArrayArray(x, y) { // use matrix implementation return this(matrix(x), matrix(y)).valueOf(); }, 'Array, Matrix': function ArrayMatrix(x, y) { // use matrix implementation return this(matrix(x), y); }, 'Matrix, Array': function MatrixArray(x, y) { // use matrix implementation return this(x, matrix(y)); }, 'SparseMatrix, any': function SparseMatrixAny(x, y) { return algorithm12(x, y, this, false); }, 'DenseMatrix, any': function DenseMatrixAny(x, y) { return algorithm14(x, y, this, false); }, 'any, SparseMatrix': function anySparseMatrix(x, y) { return algorithm12(y, x, this, true); }, 'any, DenseMatrix': function anyDenseMatrix(x, y) { return algorithm14(y, x, this, true); }, 'Array, any': function ArrayAny(x, y) { // use matrix implementation return algorithm14(matrix(x), y, this, false).valueOf(); }, 'any, Array': function anyArray(x, y) { // use matrix implementation return algorithm14(matrix(y), x, this, true).valueOf(); } }); });