import { createMatAlgo03xDSf } from '../../type/matrix/utils/matAlgo03xDSf.js'; import { createMatAlgo12xSfs } from '../../type/matrix/utils/matAlgo12xSfs.js'; import { createMatAlgo05xSfSf } from '../../type/matrix/utils/matAlgo05xSfSf.js'; import { factory } from '../../utils/factory.js'; import { createMatrixAlgorithmSuite } from '../../type/matrix/utils/matrixAlgorithmSuite.js'; import { orNumber } from '../../plain/number/index.js'; var name = 'or'; var dependencies = ['typed', 'matrix', 'equalScalar', 'DenseMatrix', 'concat']; export var createOr = /* #__PURE__ */factory(name, dependencies, _ref => { var { typed, matrix, equalScalar, DenseMatrix, concat } = _ref; var matAlgo03xDSf = createMatAlgo03xDSf({ typed }); var matAlgo05xSfSf = createMatAlgo05xSfSf({ typed, equalScalar }); var matAlgo12xSfs = createMatAlgo12xSfs({ typed, DenseMatrix }); var matrixAlgorithmSuite = createMatrixAlgorithmSuite({ typed, matrix, concat }); /** * Logical `or`. Test if at least one value is defined with a nonzero/nonempty value. * For matrices, the function is evaluated element wise. * * Syntax: * * math.or(x, y) * * Examples: * * math.or(2, 4) // returns true * * a = [2, 5, 0] * b = [0, 22, 0] * c = 0 * * math.or(a, b) // returns [true, true, false] * math.or(b, c) // returns [false, true, false] * * See also: * * and, not, xor * * @param {number | BigNumber | bigint | Complex | Unit | Array | Matrix} x First value to check * @param {number | BigNumber | bigint | Complex | Unit | Array | Matrix} y Second value to check * @return {boolean | Array | Matrix} * Returns true when one of the inputs is defined with a nonzero/nonempty value. */ return typed(name, { 'number, number': orNumber, 'Complex, Complex': function Complex_Complex(x, y) { return x.re !== 0 || x.im !== 0 || y.re !== 0 || y.im !== 0; }, 'BigNumber, BigNumber': function BigNumber_BigNumber(x, y) { return !x.isZero() && !x.isNaN() || !y.isZero() && !y.isNaN(); }, 'bigint, bigint': orNumber, 'Unit, Unit': typed.referToSelf(self => (x, y) => self(x.value || 0, y.value || 0)) }, matrixAlgorithmSuite({ SS: matAlgo05xSfSf, DS: matAlgo03xDSf, Ss: matAlgo12xSfs })); });