164 lines
5.3 KiB
JavaScript
164 lines
5.3 KiB
JavaScript
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import { isMatrix } from '../../utils/is.js';
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import { arraySize } from '../../utils/array.js';
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import { isInteger } from '../../utils/number.js';
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import { factory } from '../../utils/factory.js';
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var name = 'diag';
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var dependencies = ['typed', 'matrix', 'DenseMatrix', 'SparseMatrix'];
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export var createDiag = /* #__PURE__ */factory(name, dependencies, _ref => {
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var {
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typed,
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matrix,
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DenseMatrix,
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SparseMatrix
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} = _ref;
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/**
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* Create a diagonal matrix or retrieve the diagonal of a matrix
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*
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* When `x` is a vector, a matrix with vector `x` on the diagonal will be returned.
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* When `x` is a two dimensional matrix, the matrixes `k`th diagonal will be returned as vector.
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* When k is positive, the values are placed on the super diagonal.
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* When k is negative, the values are placed on the sub diagonal.
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*
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* Syntax:
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*
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* math.diag(X)
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* math.diag(X, format)
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* math.diag(X, k)
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* math.diag(X, k, format)
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*
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* Examples:
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*
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* // create a diagonal matrix
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* math.diag([1, 2, 3]) // returns [[1, 0, 0], [0, 2, 0], [0, 0, 3]]
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* math.diag([1, 2, 3], 1) // returns [[0, 1, 0, 0], [0, 0, 2, 0], [0, 0, 0, 3]]
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* math.diag([1, 2, 3], -1) // returns [[0, 0, 0], [1, 0, 0], [0, 2, 0], [0, 0, 3]]
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*
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* // retrieve the diagonal from a matrix
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* const a = [[1, 2, 3], [4, 5, 6], [7, 8, 9]]
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* math.diag(a) // returns [1, 5, 9]
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*
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* See also:
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*
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* ones, zeros, identity
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*
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* @param {Matrix | Array} x A two dimensional matrix or a vector
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* @param {number | BigNumber} [k=0] The diagonal where the vector will be filled
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* in or retrieved.
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* @param {string} [format='dense'] The matrix storage format.
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*
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* @returns {Matrix | Array} Diagonal matrix from input vector, or diagonal from input matrix.
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*/
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return typed(name, {
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// FIXME: simplify this huge amount of signatures as soon as typed-function supports optional arguments
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Array: function Array(x) {
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return _diag(x, 0, arraySize(x), null);
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},
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'Array, number': function ArrayNumber(x, k) {
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return _diag(x, k, arraySize(x), null);
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},
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'Array, BigNumber': function ArrayBigNumber(x, k) {
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return _diag(x, k.toNumber(), arraySize(x), null);
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},
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'Array, string': function ArrayString(x, format) {
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return _diag(x, 0, arraySize(x), format);
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},
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'Array, number, string': function ArrayNumberString(x, k, format) {
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return _diag(x, k, arraySize(x), format);
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},
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'Array, BigNumber, string': function ArrayBigNumberString(x, k, format) {
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return _diag(x, k.toNumber(), arraySize(x), format);
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},
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Matrix: function Matrix(x) {
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return _diag(x, 0, x.size(), x.storage());
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},
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'Matrix, number': function MatrixNumber(x, k) {
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return _diag(x, k, x.size(), x.storage());
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},
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'Matrix, BigNumber': function MatrixBigNumber(x, k) {
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return _diag(x, k.toNumber(), x.size(), x.storage());
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},
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'Matrix, string': function MatrixString(x, format) {
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return _diag(x, 0, x.size(), format);
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},
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'Matrix, number, string': function MatrixNumberString(x, k, format) {
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return _diag(x, k, x.size(), format);
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},
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'Matrix, BigNumber, string': function MatrixBigNumberString(x, k, format) {
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return _diag(x, k.toNumber(), x.size(), format);
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}
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});
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/**
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* Creeate diagonal matrix from a vector or vice versa
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* @param {Array | Matrix} x
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* @param {number} k
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* @param {string} format Storage format for matrix. If null,
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* an Array is returned
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* @returns {Array | Matrix}
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* @private
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*/
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function _diag(x, k, size, format) {
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if (!isInteger(k)) {
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throw new TypeError('Second parameter in function diag must be an integer');
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}
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var kSuper = k > 0 ? k : 0;
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var kSub = k < 0 ? -k : 0; // check dimensions
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switch (size.length) {
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case 1:
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return _createDiagonalMatrix(x, k, format, size[0], kSub, kSuper);
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case 2:
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return _getDiagonal(x, k, format, size, kSub, kSuper);
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}
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throw new RangeError('Matrix for function diag must be 2 dimensional');
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}
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function _createDiagonalMatrix(x, k, format, l, kSub, kSuper) {
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// matrix size
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var ms = [l + kSub, l + kSuper];
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if (format && format !== 'sparse' && format !== 'dense') {
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throw new TypeError("Unknown matrix type ".concat(format, "\""));
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} // create diagonal matrix
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var m = format === 'sparse' ? SparseMatrix.diagonal(ms, x, k) : DenseMatrix.diagonal(ms, x, k); // check we need to return a matrix
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return format !== null ? m : m.valueOf();
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}
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function _getDiagonal(x, k, format, s, kSub, kSuper) {
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// check x is a Matrix
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if (isMatrix(x)) {
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// get diagonal matrix
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var dm = x.diagonal(k); // check we need to return a matrix
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if (format !== null) {
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// check we need to change matrix format
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if (format !== dm.storage()) {
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return matrix(dm, format);
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}
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return dm;
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}
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return dm.valueOf();
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} // vector size
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var n = Math.min(s[0] - kSub, s[1] - kSuper); // diagonal values
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var vector = []; // loop diagonal
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for (var i = 0; i < n; i++) {
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vector[i] = x[i + kSub][i + kSuper];
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} // check we need to return a matrix
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return format !== null ? matrix(vector) : vector;
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}
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});
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