159 lines
5.2 KiB
JavaScript
159 lines
5.2 KiB
JavaScript
"use strict";
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var _interopRequireDefault = require("@babel/runtime/helpers/interopRequireDefault");
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Object.defineProperty(exports, "__esModule", {
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value: true
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});
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exports.createCeil = void 0;
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var _slicedToArray2 = _interopRequireDefault(require("@babel/runtime/helpers/slicedToArray"));
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var _decimal = _interopRequireDefault(require("decimal.js"));
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var _factory = require("../../utils/factory.js");
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var _collection = require("../../utils/collection.js");
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var _number = require("../../utils/number.js");
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var _nearlyEqual = require("../../utils/bignumber/nearlyEqual.js");
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var _index = require("../../plain/number/index.js");
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var _algorithm = require("../../type/matrix/utils/algorithm11.js");
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var _algorithm2 = require("../../type/matrix/utils/algorithm14.js");
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var name = 'ceil';
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var dependencies = ['typed', 'config', 'round', 'matrix', 'equalScalar'];
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var createCeil = /* #__PURE__ */(0, _factory.factory)(name, dependencies, function (_ref) {
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var typed = _ref.typed,
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config = _ref.config,
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round = _ref.round,
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matrix = _ref.matrix,
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equalScalar = _ref.equalScalar;
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var algorithm11 = (0, _algorithm.createAlgorithm11)({
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typed: typed,
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equalScalar: equalScalar
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});
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var algorithm14 = (0, _algorithm2.createAlgorithm14)({
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typed: typed
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});
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/**
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* Round a value towards plus infinity
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* If `x` is complex, both real and imaginary part are rounded towards plus infinity.
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* For matrices, the function is evaluated element wise.
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*
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* Syntax:
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*
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* math.ceil(x)
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* math.ceil(x, n)
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*
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* Examples:
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*
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* math.ceil(3.2) // returns number 4
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* math.ceil(3.8) // returns number 4
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* math.ceil(-4.2) // returns number -4
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* math.ceil(-4.7) // returns number -4
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*
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* math.ceil(3.212, 2) // returns number 3.22
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* math.ceil(3.288, 2) // returns number 3.29
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* math.ceil(-4.212, 2) // returns number -4.21
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* math.ceil(-4.782, 2) // returns number -4.78
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*
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* const c = math.complex(3.24, -2.71)
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* math.ceil(c) // returns Complex 4 - 2i
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* math.ceil(c, 1) // returns Complex 3.3 - 2.7i
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*
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* math.ceil([3.2, 3.8, -4.7]) // returns Array [4, 4, -4]
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* math.ceil([3.21, 3.82, -4.71], 1) // returns Array [3.3, 3.9, -4.7]
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*
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* See also:
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*
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* floor, fix, round
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*
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* @param {number | BigNumber | Fraction | Complex | Array | Matrix} x Number to be rounded
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* @param {number | BigNumber | Array} [n=0] Number of decimals
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* @return {number | BigNumber | Fraction | Complex | Array | Matrix} Rounded value
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*/
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return typed('ceil', {
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number: function number(x) {
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if ((0, _number.nearlyEqual)(x, round(x), config.epsilon)) {
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return round(x);
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} else {
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return (0, _index.ceilNumber)(x);
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}
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},
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'number, number': function numberNumber(x, n) {
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if ((0, _number.nearlyEqual)(x, round(x, n), config.epsilon)) {
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return round(x, n);
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} else {
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var _$split = "".concat(x, "e").split('e'),
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_$split2 = (0, _slicedToArray2.default)(_$split, 2),
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number = _$split2[0],
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exponent = _$split2[1];
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var result = Math.ceil(Number("".concat(number, "e").concat(Number(exponent) + n)));
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var _$split3 = "".concat(result, "e").split('e');
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var _$split4 = (0, _slicedToArray2.default)(_$split3, 2);
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number = _$split4[0];
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exponent = _$split4[1];
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return Number("".concat(number, "e").concat(Number(exponent) - n));
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}
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},
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Complex: function Complex(x) {
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return x.ceil();
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},
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'Complex, number': function ComplexNumber(x, n) {
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return x.ceil(n);
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},
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BigNumber: function BigNumber(x) {
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if ((0, _nearlyEqual.nearlyEqual)(x, round(x), config.epsilon)) {
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return round(x);
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} else {
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return x.ceil();
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}
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},
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'BigNumber, BigNumber': function BigNumberBigNumber(x, n) {
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if ((0, _nearlyEqual.nearlyEqual)(x, round(x, n), config.epsilon)) {
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return round(x, n);
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} else {
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return x.toDecimalPlaces(n.toNumber(), _decimal.default.ROUND_CEIL);
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}
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},
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Fraction: function Fraction(x) {
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return x.ceil();
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},
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'Fraction, number': function FractionNumber(x, n) {
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return x.ceil(n);
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},
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'Array | Matrix': function ArrayMatrix(x) {
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// deep map collection, skip zeros since ceil(0) = 0
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return (0, _collection.deepMap)(x, this, true);
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},
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'Array | Matrix, number': function ArrayMatrixNumber(x, n) {
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var _this = this;
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// deep map collection, skip zeros since ceil(0) = 0
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return (0, _collection.deepMap)(x, function (i) {
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return _this(i, n);
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}, true);
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},
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'SparseMatrix, number | BigNumber': function SparseMatrixNumberBigNumber(x, y) {
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return algorithm11(x, y, this, false);
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},
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'DenseMatrix, number | BigNumber': function DenseMatrixNumberBigNumber(x, y) {
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return algorithm14(x, y, this, false);
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},
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'number | Complex | BigNumber, Array': function numberComplexBigNumberArray(x, y) {
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// use matrix implementation
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return algorithm14(matrix(y), x, this, true).valueOf();
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}
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});
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});
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exports.createCeil = createCeil; |