682 lines
16 KiB
JavaScript
682 lines
16 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.arraySize = arraySize;
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exports.contains = contains;
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exports.filter = filter;
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exports.filterRegExp = filterRegExp;
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exports.flatten = flatten;
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exports.forEach = forEach;
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exports.generalize = generalize;
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exports.getArrayDataType = getArrayDataType;
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exports.identify = identify;
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exports.initial = initial;
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exports.join = join;
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exports.last = last;
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exports.map = map;
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exports.processSizesWildcard = processSizesWildcard;
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exports.reshape = reshape;
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exports.resize = resize;
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exports.squeeze = squeeze;
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exports.unsqueeze = unsqueeze;
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exports.validate = validate;
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exports.validateIndex = validateIndex;
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var _number = require("./number.js");
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var _is = require("./is.js");
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var _string = require("./string.js");
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var _DimensionError = require("../error/DimensionError.js");
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var _IndexError = require("../error/IndexError.js");
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/**
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* Calculate the size of a multi dimensional array.
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* This function checks the size of the first entry, it does not validate
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* whether all dimensions match. (use function `validate` for that)
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* @param {Array} x
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* @Return {Number[]} size
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*/
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function arraySize(x) {
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var s = [];
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while (Array.isArray(x)) {
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s.push(x.length);
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x = x[0];
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}
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return s;
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}
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/**
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* Recursively validate whether each element in a multi dimensional array
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* has a size corresponding to the provided size array.
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* @param {Array} array Array to be validated
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* @param {number[]} size Array with the size of each dimension
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* @param {number} dim Current dimension
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* @throws DimensionError
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* @private
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*/
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function _validate(array, size, dim) {
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var i;
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var len = array.length;
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if (len !== size[dim]) {
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throw new _DimensionError.DimensionError(len, size[dim]);
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}
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if (dim < size.length - 1) {
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// recursively validate each child array
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var dimNext = dim + 1;
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for (i = 0; i < len; i++) {
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var child = array[i];
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if (!Array.isArray(child)) {
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throw new _DimensionError.DimensionError(size.length - 1, size.length, '<');
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}
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_validate(array[i], size, dimNext);
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}
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} else {
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// last dimension. none of the childs may be an array
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for (i = 0; i < len; i++) {
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if (Array.isArray(array[i])) {
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throw new _DimensionError.DimensionError(size.length + 1, size.length, '>');
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}
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}
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}
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}
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/**
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* Validate whether each element in a multi dimensional array has
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* a size corresponding to the provided size array.
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* @param {Array} array Array to be validated
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* @param {number[]} size Array with the size of each dimension
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* @throws DimensionError
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*/
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function validate(array, size) {
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var isScalar = size.length === 0;
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if (isScalar) {
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// scalar
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if (Array.isArray(array)) {
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throw new _DimensionError.DimensionError(array.length, 0);
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}
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} else {
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// array
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_validate(array, size, 0);
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}
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}
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/**
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* Test whether index is an integer number with index >= 0 and index < length
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* when length is provided
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* @param {number} index Zero-based index
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* @param {number} [length] Length of the array
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*/
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function validateIndex(index, length) {
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if (!(0, _is.isNumber)(index) || !(0, _number.isInteger)(index)) {
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throw new TypeError('Index must be an integer (value: ' + index + ')');
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}
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if (index < 0 || typeof length === 'number' && index >= length) {
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throw new _IndexError.IndexError(index, length);
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}
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}
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/**
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* Resize a multi dimensional array. The resized array is returned.
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* @param {Array} array Array to be resized
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* @param {Array.<number>} size Array with the size of each dimension
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* @param {*} [defaultValue=0] Value to be filled in in new entries,
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* zero by default. Specify for example `null`,
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* to clearly see entries that are not explicitly
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* set.
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* @return {Array} array The resized array
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*/
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function resize(array, size, defaultValue) {
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// TODO: add support for scalars, having size=[] ?
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// check the type of the arguments
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if (!Array.isArray(array) || !Array.isArray(size)) {
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throw new TypeError('Array expected');
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}
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if (size.length === 0) {
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throw new Error('Resizing to scalar is not supported');
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} // check whether size contains positive integers
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size.forEach(function (value) {
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if (!(0, _is.isNumber)(value) || !(0, _number.isInteger)(value) || value < 0) {
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throw new TypeError('Invalid size, must contain positive integers ' + '(size: ' + (0, _string.format)(size) + ')');
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}
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}); // recursively resize the array
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var _defaultValue = defaultValue !== undefined ? defaultValue : 0;
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_resize(array, size, 0, _defaultValue);
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return array;
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}
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/**
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* Recursively resize a multi dimensional array
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* @param {Array} array Array to be resized
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* @param {number[]} size Array with the size of each dimension
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* @param {number} dim Current dimension
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* @param {*} [defaultValue] Value to be filled in in new entries,
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* undefined by default.
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* @private
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*/
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function _resize(array, size, dim, defaultValue) {
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var i;
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var elem;
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var oldLen = array.length;
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var newLen = size[dim];
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var minLen = Math.min(oldLen, newLen); // apply new length
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array.length = newLen;
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if (dim < size.length - 1) {
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// non-last dimension
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var dimNext = dim + 1; // resize existing child arrays
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for (i = 0; i < minLen; i++) {
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// resize child array
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elem = array[i];
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if (!Array.isArray(elem)) {
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elem = [elem]; // add a dimension
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array[i] = elem;
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}
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_resize(elem, size, dimNext, defaultValue);
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} // create new child arrays
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for (i = minLen; i < newLen; i++) {
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// get child array
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elem = [];
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array[i] = elem; // resize new child array
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_resize(elem, size, dimNext, defaultValue);
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}
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} else {
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// last dimension
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// remove dimensions of existing values
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for (i = 0; i < minLen; i++) {
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while (Array.isArray(array[i])) {
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array[i] = array[i][0];
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}
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} // fill new elements with the default value
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for (i = minLen; i < newLen; i++) {
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array[i] = defaultValue;
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}
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}
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}
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/**
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* Re-shape a multi dimensional array to fit the specified dimensions
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* @param {Array} array Array to be reshaped
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* @param {Array.<number>} sizes List of sizes for each dimension
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* @returns {Array} Array whose data has been formatted to fit the
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* specified dimensions
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*
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* @throws {DimensionError} If the product of the new dimension sizes does
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* not equal that of the old ones
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*/
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function reshape(array, sizes) {
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var flatArray = flatten(array);
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var currentLength = flatArray.length;
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if (!Array.isArray(array) || !Array.isArray(sizes)) {
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throw new TypeError('Array expected');
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}
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if (sizes.length === 0) {
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throw new _DimensionError.DimensionError(0, currentLength, '!=');
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}
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sizes = processSizesWildcard(sizes, currentLength);
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var newLength = product(sizes);
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if (currentLength !== newLength) {
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throw new _DimensionError.DimensionError(newLength, currentLength, '!=');
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}
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try {
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return _reshape(flatArray, sizes);
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} catch (e) {
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if (e instanceof _DimensionError.DimensionError) {
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throw new _DimensionError.DimensionError(newLength, currentLength, '!=');
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}
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throw e;
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}
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}
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/**
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* Replaces the wildcard -1 in the sizes array.
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* @param {Array.<number>} sizes List of sizes for each dimension. At most on wildcard.
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* @param {number} currentLength Number of elements in the array.
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* @throws {Error} If more than one wildcard or unable to replace it.
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* @returns {Array.<number>} The sizes array with wildcard replaced.
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*/
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function processSizesWildcard(sizes, currentLength) {
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var newLength = product(sizes);
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var processedSizes = sizes.slice();
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var WILDCARD = -1;
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var wildCardIndex = sizes.indexOf(WILDCARD);
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var isMoreThanOneWildcard = sizes.indexOf(WILDCARD, wildCardIndex + 1) >= 0;
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if (isMoreThanOneWildcard) {
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throw new Error('More than one wildcard in sizes');
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}
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var hasWildcard = wildCardIndex >= 0;
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var canReplaceWildcard = currentLength % newLength === 0;
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if (hasWildcard) {
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if (canReplaceWildcard) {
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processedSizes[wildCardIndex] = -currentLength / newLength;
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} else {
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throw new Error('Could not replace wildcard, since ' + currentLength + ' is no multiple of ' + -newLength);
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}
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}
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return processedSizes;
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}
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/**
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* Computes the product of all array elements.
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* @param {Array<number>} array Array of factors
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* @returns {number} Product of all elements
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*/
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function product(array) {
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return array.reduce(function (prev, curr) {
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return prev * curr;
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}, 1);
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}
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/**
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* Iteratively re-shape a multi dimensional array to fit the specified dimensions
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* @param {Array} array Array to be reshaped
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* @param {Array.<number>} sizes List of sizes for each dimension
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* @returns {Array} Array whose data has been formatted to fit the
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* specified dimensions
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*/
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function _reshape(array, sizes) {
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// testing if there are enough elements for the requested shape
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var tmpArray = array;
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var tmpArray2; // for each dimensions starting by the last one and ignoring the first one
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for (var sizeIndex = sizes.length - 1; sizeIndex > 0; sizeIndex--) {
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var size = sizes[sizeIndex];
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tmpArray2 = []; // aggregate the elements of the current tmpArray in elements of the requested size
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var length = tmpArray.length / size;
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for (var i = 0; i < length; i++) {
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tmpArray2.push(tmpArray.slice(i * size, (i + 1) * size));
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} // set it as the new tmpArray for the next loop turn or for return
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tmpArray = tmpArray2;
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}
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return tmpArray;
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}
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/**
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* Squeeze a multi dimensional array
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* @param {Array} array
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* @param {Array} [size]
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* @returns {Array} returns the array itself
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*/
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function squeeze(array, size) {
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var s = size || arraySize(array); // squeeze outer dimensions
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while (Array.isArray(array) && array.length === 1) {
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array = array[0];
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s.shift();
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} // find the first dimension to be squeezed
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var dims = s.length;
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while (s[dims - 1] === 1) {
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dims--;
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} // squeeze inner dimensions
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if (dims < s.length) {
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array = _squeeze(array, dims, 0);
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s.length = dims;
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}
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return array;
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}
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/**
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* Recursively squeeze a multi dimensional array
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* @param {Array} array
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* @param {number} dims Required number of dimensions
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* @param {number} dim Current dimension
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* @returns {Array | *} Returns the squeezed array
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* @private
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*/
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function _squeeze(array, dims, dim) {
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var i, ii;
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if (dim < dims) {
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var next = dim + 1;
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for (i = 0, ii = array.length; i < ii; i++) {
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array[i] = _squeeze(array[i], dims, next);
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}
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} else {
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while (Array.isArray(array)) {
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array = array[0];
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}
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}
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return array;
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}
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/**
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* Unsqueeze a multi dimensional array: add dimensions when missing
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*
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* Paramter `size` will be mutated to match the new, unqueezed matrix size.
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*
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* @param {Array} array
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* @param {number} dims Desired number of dimensions of the array
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* @param {number} [outer] Number of outer dimensions to be added
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* @param {Array} [size] Current size of array.
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* @returns {Array} returns the array itself
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* @private
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*/
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function unsqueeze(array, dims, outer, size) {
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var s = size || arraySize(array); // unsqueeze outer dimensions
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if (outer) {
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for (var i = 0; i < outer; i++) {
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array = [array];
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s.unshift(1);
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}
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} // unsqueeze inner dimensions
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array = _unsqueeze(array, dims, 0);
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while (s.length < dims) {
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s.push(1);
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}
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return array;
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}
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/**
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* Recursively unsqueeze a multi dimensional array
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* @param {Array} array
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* @param {number} dims Required number of dimensions
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* @param {number} dim Current dimension
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* @returns {Array | *} Returns the squeezed array
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* @private
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*/
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function _unsqueeze(array, dims, dim) {
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var i, ii;
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if (Array.isArray(array)) {
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var next = dim + 1;
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for (i = 0, ii = array.length; i < ii; i++) {
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array[i] = _unsqueeze(array[i], dims, next);
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}
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} else {
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for (var d = dim; d < dims; d++) {
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array = [array];
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}
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}
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return array;
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}
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/**
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* Flatten a multi dimensional array, put all elements in a one dimensional
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* array
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* @param {Array} array A multi dimensional array
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* @return {Array} The flattened array (1 dimensional)
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*/
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function flatten(array) {
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if (!Array.isArray(array)) {
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// if not an array, return as is
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return array;
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}
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var flat = [];
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array.forEach(function callback(value) {
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if (Array.isArray(value)) {
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value.forEach(callback); // traverse through sub-arrays recursively
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} else {
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flat.push(value);
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}
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});
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return flat;
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}
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/**
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* A safe map
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* @param {Array} array
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* @param {function} callback
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*/
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function map(array, callback) {
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return Array.prototype.map.call(array, callback);
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}
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/**
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* A safe forEach
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* @param {Array} array
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* @param {function} callback
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*/
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function forEach(array, callback) {
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Array.prototype.forEach.call(array, callback);
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}
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/**
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* A safe filter
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* @param {Array} array
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* @param {function} callback
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*/
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function filter(array, callback) {
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if (arraySize(array).length !== 1) {
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throw new Error('Only one dimensional matrices supported');
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}
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return Array.prototype.filter.call(array, callback);
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}
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/**
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* Filter values in a callback given a regular expression
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* @param {Array} array
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* @param {RegExp} regexp
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* @return {Array} Returns the filtered array
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* @private
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*/
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function filterRegExp(array, regexp) {
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if (arraySize(array).length !== 1) {
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throw new Error('Only one dimensional matrices supported');
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}
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return Array.prototype.filter.call(array, function (entry) {
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return regexp.test(entry);
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});
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}
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/**
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* A safe join
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* @param {Array} array
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* @param {string} separator
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*/
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function join(array, separator) {
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return Array.prototype.join.call(array, separator);
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}
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/**
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* Assign a numeric identifier to every element of a sorted array
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* @param {Array} a An array
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* @return {Array} An array of objects containing the original value and its identifier
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*/
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function identify(a) {
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if (!Array.isArray(a)) {
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throw new TypeError('Array input expected');
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}
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if (a.length === 0) {
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return a;
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}
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var b = [];
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var count = 0;
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b[0] = {
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value: a[0],
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identifier: 0
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};
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for (var i = 1; i < a.length; i++) {
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if (a[i] === a[i - 1]) {
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count++;
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} else {
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count = 0;
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}
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b.push({
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value: a[i],
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identifier: count
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});
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}
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return b;
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}
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/**
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* Remove the numeric identifier from the elements
|
|
* @param {array} a An array
|
|
* @return {array} An array of values without identifiers
|
|
*/
|
|
|
|
|
|
function generalize(a) {
|
|
if (!Array.isArray(a)) {
|
|
throw new TypeError('Array input expected');
|
|
}
|
|
|
|
if (a.length === 0) {
|
|
return a;
|
|
}
|
|
|
|
var b = [];
|
|
|
|
for (var i = 0; i < a.length; i++) {
|
|
b.push(a[i].value);
|
|
}
|
|
|
|
return b;
|
|
}
|
|
/**
|
|
* Check the datatype of a given object
|
|
* This is a low level implementation that should only be used by
|
|
* parent Matrix classes such as SparseMatrix or DenseMatrix
|
|
* This method does not validate Array Matrix shape
|
|
* @param {Array} array
|
|
* @param {function} typeOf Callback function to use to determine the type of a value
|
|
* @return {string}
|
|
*/
|
|
|
|
|
|
function getArrayDataType(array, typeOf) {
|
|
var type; // to hold type info
|
|
|
|
var length = 0; // to hold length value to ensure it has consistent sizes
|
|
|
|
for (var i = 0; i < array.length; i++) {
|
|
var item = array[i];
|
|
var isArray = Array.isArray(item); // Saving the target matrix row size
|
|
|
|
if (i === 0 && isArray) {
|
|
length = item.length;
|
|
} // If the current item is an array but the length does not equal the targetVectorSize
|
|
|
|
|
|
if (isArray && item.length !== length) {
|
|
return undefined;
|
|
}
|
|
|
|
var itemType = isArray ? getArrayDataType(item, typeOf) // recurse into a nested array
|
|
: typeOf(item);
|
|
|
|
if (type === undefined) {
|
|
type = itemType; // first item
|
|
} else if (type !== itemType) {
|
|
return 'mixed';
|
|
} else {// we're good, everything has the same type so far
|
|
}
|
|
}
|
|
|
|
return type;
|
|
}
|
|
/**
|
|
* Return the last item from an array
|
|
* @param array
|
|
* @returns {*}
|
|
*/
|
|
|
|
|
|
function last(array) {
|
|
return array[array.length - 1];
|
|
}
|
|
/**
|
|
* Get all but the last element of array.
|
|
*/
|
|
|
|
|
|
function initial(array) {
|
|
return array.slice(0, array.length - 1);
|
|
}
|
|
/**
|
|
* Test whether an array or string contains an item
|
|
* @param {Array | string} array
|
|
* @param {*} item
|
|
* @return {boolean}
|
|
*/
|
|
|
|
|
|
function contains(array, item) {
|
|
return array.indexOf(item) !== -1;
|
|
} |