simple-squiggle/node_modules/mathjs/lib/cjs/function/arithmetic/dotMultiply.js

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"use strict";
Object.defineProperty(exports, "__esModule", {
value: true
});
exports.createDotMultiply = void 0;
var _factory = require("../../utils/factory.js");
var _algorithm = require("../../type/matrix/utils/algorithm02.js");
var _algorithm2 = require("../../type/matrix/utils/algorithm09.js");
var _algorithm3 = require("../../type/matrix/utils/algorithm11.js");
var _algorithm4 = require("../../type/matrix/utils/algorithm13.js");
var _algorithm5 = require("../../type/matrix/utils/algorithm14.js");
var name = 'dotMultiply';
var dependencies = ['typed', 'matrix', 'equalScalar', 'multiplyScalar'];
var createDotMultiply = /* #__PURE__ */(0, _factory.factory)(name, dependencies, function (_ref) {
var typed = _ref.typed,
matrix = _ref.matrix,
equalScalar = _ref.equalScalar,
multiplyScalar = _ref.multiplyScalar;
var algorithm02 = (0, _algorithm.createAlgorithm02)({
typed: typed,
equalScalar: equalScalar
});
var algorithm09 = (0, _algorithm2.createAlgorithm09)({
typed: typed,
equalScalar: equalScalar
});
var algorithm11 = (0, _algorithm3.createAlgorithm11)({
typed: typed,
equalScalar: equalScalar
});
var algorithm13 = (0, _algorithm4.createAlgorithm13)({
typed: typed
});
var algorithm14 = (0, _algorithm5.createAlgorithm14)({
typed: typed
});
/**
* Multiply two matrices element wise. The function accepts both matrices and
* scalar values.
*
* Syntax:
*
* math.dotMultiply(x, y)
*
* Examples:
*
* math.dotMultiply(2, 4) // returns 8
*
* a = [[9, 5], [6, 1]]
* b = [[3, 2], [5, 2]]
*
* math.dotMultiply(a, b) // returns [[27, 10], [30, 2]]
* math.multiply(a, b) // returns [[52, 28], [23, 14]]
*
* See also:
*
* multiply, divide, dotDivide
*
* @param {number | BigNumber | Fraction | Complex | Unit | Array | Matrix} x Left hand value
* @param {number | BigNumber | Fraction | Complex | Unit | Array | Matrix} y Right hand value
* @return {number | BigNumber | Fraction | Complex | Unit | Array | Matrix} Multiplication of `x` and `y`
*/
return typed(name, {
'any, any': multiplyScalar,
'SparseMatrix, SparseMatrix': function SparseMatrixSparseMatrix(x, y) {
return algorithm09(x, y, multiplyScalar, false);
},
'SparseMatrix, DenseMatrix': function SparseMatrixDenseMatrix(x, y) {
return algorithm02(y, x, multiplyScalar, true);
},
'DenseMatrix, SparseMatrix': function DenseMatrixSparseMatrix(x, y) {
return algorithm02(x, y, multiplyScalar, false);
},
'DenseMatrix, DenseMatrix': function DenseMatrixDenseMatrix(x, y) {
return algorithm13(x, y, multiplyScalar);
},
'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 algorithm11(x, y, multiplyScalar, false);
},
'DenseMatrix, any': function DenseMatrixAny(x, y) {
return algorithm14(x, y, multiplyScalar, false);
},
'any, SparseMatrix': function anySparseMatrix(x, y) {
return algorithm11(y, x, multiplyScalar, true);
},
'any, DenseMatrix': function anyDenseMatrix(x, y) {
return algorithm14(y, x, multiplyScalar, true);
},
'Array, any': function ArrayAny(x, y) {
// use matrix implementation
return algorithm14(matrix(x), y, multiplyScalar, false).valueOf();
},
'any, Array': function anyArray(x, y) {
// use matrix implementation
return algorithm14(matrix(y), x, multiplyScalar, true).valueOf();
}
});
});
exports.createDotMultiply = createDotMultiply;