205 lines
5.1 KiB
JavaScript
205 lines
5.1 KiB
JavaScript
"use strict";
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Object.defineProperty(exports, "__esModule", {
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value: true
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});
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exports.containsCollections = containsCollections;
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exports.deepForEach = deepForEach;
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exports.deepMap = deepMap;
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exports.reduce = reduce;
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exports.scatter = scatter;
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var _is = require("./is.js");
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var _IndexError = require("../error/IndexError.js");
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var _array = require("./array.js");
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var _switch2 = require("./switch.js");
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/**
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* Test whether an array contains collections
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* @param {Array} array
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* @returns {boolean} Returns true when the array contains one or multiple
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* collections (Arrays or Matrices). Returns false otherwise.
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*/
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function containsCollections(array) {
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for (var i = 0; i < array.length; i++) {
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if ((0, _is.isCollection)(array[i])) {
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return true;
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}
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}
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return false;
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}
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/**
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* Recursively loop over all elements in a given multi dimensional array
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* and invoke the callback on each of the elements.
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* @param {Array | Matrix} array
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* @param {Function} callback The callback method is invoked with one
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* parameter: the current element in the array
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*/
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function deepForEach(array, callback) {
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if ((0, _is.isMatrix)(array)) {
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array = array.valueOf();
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}
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for (var i = 0, ii = array.length; i < ii; i++) {
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var value = array[i];
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if (Array.isArray(value)) {
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deepForEach(value, callback);
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} else {
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callback(value);
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}
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}
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}
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/**
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* Execute the callback function element wise for each element in array and any
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* nested array
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* Returns an array with the results
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* @param {Array | Matrix} array
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* @param {Function} callback The callback is called with two parameters:
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* value1 and value2, which contain the current
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* element of both arrays.
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* @param {boolean} [skipZeros] Invoke callback function for non-zero values only.
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*
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* @return {Array | Matrix} res
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*/
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function deepMap(array, callback, skipZeros) {
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if (array && typeof array.map === 'function') {
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// TODO: replace array.map with a for loop to improve performance
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return array.map(function (x) {
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return deepMap(x, callback, skipZeros);
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});
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} else {
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return callback(array);
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}
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}
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/**
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* Reduce a given matrix or array to a new matrix or
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* array with one less dimension, applying the given
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* callback in the selected dimension.
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* @param {Array | Matrix} mat
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* @param {number} dim
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* @param {Function} callback
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* @return {Array | Matrix} res
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*/
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function reduce(mat, dim, callback) {
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var size = Array.isArray(mat) ? (0, _array.arraySize)(mat) : mat.size();
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if (dim < 0 || dim >= size.length) {
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// TODO: would be more clear when throwing a DimensionError here
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throw new _IndexError.IndexError(dim, size.length);
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}
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if ((0, _is.isMatrix)(mat)) {
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return mat.create(_reduce(mat.valueOf(), dim, callback));
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} else {
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return _reduce(mat, dim, callback);
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}
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}
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/**
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* Recursively reduce a matrix
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* @param {Array} mat
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* @param {number} dim
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* @param {Function} callback
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* @returns {Array} ret
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* @private
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*/
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function _reduce(mat, dim, callback) {
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var i, ret, val, tran;
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if (dim <= 0) {
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if (!Array.isArray(mat[0])) {
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val = mat[0];
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for (i = 1; i < mat.length; i++) {
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val = callback(val, mat[i]);
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}
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return val;
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} else {
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tran = (0, _switch2._switch)(mat);
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ret = [];
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for (i = 0; i < tran.length; i++) {
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ret[i] = _reduce(tran[i], dim - 1, callback);
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}
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return ret;
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}
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} else {
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ret = [];
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for (i = 0; i < mat.length; i++) {
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ret[i] = _reduce(mat[i], dim - 1, callback);
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}
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return ret;
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}
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} // TODO: document function scatter
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function scatter(a, j, w, x, u, mark, cindex, f, inverse, update, value) {
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// a arrays
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var avalues = a._values;
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var aindex = a._index;
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var aptr = a._ptr; // vars
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var k, k0, k1, i; // check we need to process values (pattern matrix)
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if (x) {
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// values in j
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for (k0 = aptr[j], k1 = aptr[j + 1], k = k0; k < k1; k++) {
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// row
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i = aindex[k]; // check value exists in current j
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if (w[i] !== mark) {
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// i is new entry in j
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w[i] = mark; // add i to pattern of C
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cindex.push(i); // x(i) = A, check we need to call function this time
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if (update) {
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// copy value to workspace calling callback function
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x[i] = inverse ? f(avalues[k], value) : f(value, avalues[k]); // function was called on current row
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u[i] = mark;
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} else {
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// copy value to workspace
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x[i] = avalues[k];
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}
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} else {
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// i exists in C already
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x[i] = inverse ? f(avalues[k], x[i]) : f(x[i], avalues[k]); // function was called on current row
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u[i] = mark;
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}
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}
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} else {
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// values in j
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for (k0 = aptr[j], k1 = aptr[j + 1], k = k0; k < k1; k++) {
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// row
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i = aindex[k]; // check value exists in current j
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if (w[i] !== mark) {
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// i is new entry in j
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w[i] = mark; // add i to pattern of C
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cindex.push(i);
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} else {
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// indicate function was called on current row
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u[i] = mark;
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}
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}
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}
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} |