mirror of
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188 lines
6.1 KiB
JavaScript
188 lines
6.1 KiB
JavaScript
// test FunctionNode
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var assert = require('assert');
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var approx = require('../../../tools/approx');
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var math = require('../../../index');
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var Node = require('../../../lib/expression/node/Node');
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var ConstantNode = require('../../../lib/expression/node/ConstantNode');
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var SymbolNode = require('../../../lib/expression/node/SymbolNode');
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var RangeNode = require('../../../lib/expression/node/RangeNode');
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var FunctionNode = require('../../../lib/expression/node/FunctionNode');
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var OperatorNode = require('../../../lib/expression/node/OperatorNode');
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describe('FunctionNode', function() {
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it ('should create a FunctionNode', function () {
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var s = new SymbolNode('sqrt');
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var c = new ConstantNode(4);
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var n = new FunctionNode(s, [c]);
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assert(n instanceof FunctionNode);
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assert(n instanceof Node);
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assert.equal(n.type, 'FunctionNode');
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});
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it ('should throw an error when calling without new operator', function () {
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var s = new SymbolNode('sqrt');
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var c = new ConstantNode(4);
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assert.throws(function () {FunctionNode(s, [c])}, SyntaxError);
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});
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it ('should throw an error when calling with wrong arguments', function () {
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var s = new SymbolNode('sqrt');
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var c = new ConstantNode(4);
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assert.throws(function () {new FunctionNode('sqrt', [])}, TypeError);
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assert.throws(function () {new FunctionNode(s, [2, 3])}, TypeError);
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assert.throws(function () {new FunctionNode(s, [c, 3])}, TypeError);
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});
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it ('should compile a FunctionNode', function () {
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var s = new SymbolNode('sqrt');
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var c = new ConstantNode(4);
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var n = new FunctionNode(s, [c]);
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var scope = {};
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assert.equal(n.compile(math).eval(scope), 2);
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});
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it ('should compile a FunctionNode with a raw function', function () {
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var mymath = math.create();
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function myFunction (args, _math, _scope) {
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assert.equal(args.length, 2);
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assert(args[0] instanceof Node);
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assert(args[1] instanceof Node);
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assert.deepEqual(_math.__proto__, mymath);
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assert.strictEqual(_scope, scope);
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return 'myFunction(' + args.join(', ') + ')';
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}
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myFunction.rawArgs = true;
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mymath.import({myFunction: myFunction});
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var s = new SymbolNode('myFunction');
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var a = new ConstantNode(4);
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var b = new ConstantNode(5);
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var n = new FunctionNode(s, [a, b]);
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var scope = {};
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assert.equal(n.compile(mymath).eval(scope), 'myFunction(4, 5)');
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});
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it ('should compile a FunctionNode with overloaded a raw function', function () {
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var mymath = math.create();
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function myFunction (args, _math, _scope) {
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assert.ok(false, 'should not be executed');
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}
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myFunction.rawArgs = true;
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mymath.import({myFunction: myFunction});
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var s = new SymbolNode('myFunction');
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var a = new ConstantNode(4);
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var b = new ConstantNode(5);
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var n = new FunctionNode(s, [a, b]);
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var scope = {
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myFunction: function () {
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return 42;
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}
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};
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assert.equal(n.compile(mymath).eval(scope), 42);
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});
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it ('should filter a FunctionNode', function () {
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var a = new SymbolNode('a'),
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b = new ConstantNode(2),
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c = new ConstantNode(1);
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var n = new FunctionNode(a, [b, c]);
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assert.deepEqual(n.filter(function (node) {return node instanceof FunctionNode}), [n]);
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assert.deepEqual(n.filter(function (node) {return node instanceof SymbolNode}), [a]);
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assert.deepEqual(n.filter(function (node) {return node instanceof RangeNode}), []);
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assert.deepEqual(n.filter(function (node) {return node instanceof ConstantNode}), [b, c]);
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assert.deepEqual(n.filter(function (node) {return node instanceof ConstantNode && node.value == '2'}), [b]);
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assert.deepEqual(n.filter(function (node) {return node instanceof ConstantNode && node.value == '4'}), []);
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});
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it ('should map an FunctionNodes (nested) parameters', function () {
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// multiply(x + 2, x)
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var a = new SymbolNode('x');
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var b = new ConstantNode(2);
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var c = new OperatorNode('+', 'add', [a, b]);
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var d = new SymbolNode('x');
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var e = new SymbolNode('multiply');
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var f = new FunctionNode(e, [c, d]);
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var g = new ConstantNode(3);
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var h = f.map(function (node) {
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return node instanceof SymbolNode && node.name == 'x' ? g : node;
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});
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assert.notStrictEqual(h, f);
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assert.deepEqual(h.params[0].params[0], g);
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assert.deepEqual(h.params[0].params[1], b);
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assert.deepEqual(h.symbol, e);
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assert.deepEqual(h.params[1], g);
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});
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it ('should map an FunctionNodes symbol', function () {
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// add(2, 3)
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var a = new SymbolNode('add');
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var b = new ConstantNode(2);
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var c = new ConstantNode(3);
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var d = new FunctionNode(a, [b, c]);
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var e = new SymbolNode('subtract');
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var f = d.map(function (node) {
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return node instanceof SymbolNode ? e : node;
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});
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assert.notStrictEqual(f, d);
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assert.deepEqual(f.symbol, e);
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});
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it ('should map an FunctionNode itself', function () {
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// add(2, 3)
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var a = new SymbolNode('add');
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var b = new ConstantNode(2);
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var c = new ConstantNode(3);
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var d = new FunctionNode(a, [b, c]);
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var e = new ConstantNode(5);
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var f = d.map(function (node) {
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return node instanceof FunctionNode ? e : node;
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});
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assert.strictEqual(f, e);
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});
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it ('should clone a FunctionNode', function () {
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// add(2, 3)
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var a = new SymbolNode('add');
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var b = new ConstantNode(2);
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var c = new ConstantNode(3);
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var d = new FunctionNode(a, [b, c]);
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var e = d.clone();
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assert(e instanceof FunctionNode);
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assert.deepEqual(e, d);
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assert.notStrictEqual(e, d);
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assert.notStrictEqual(e.symbol, d.symbol);
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assert.notStrictEqual(e.params[0], d.params[0]);
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assert.notStrictEqual(e.params[1], d.params[1]);
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});
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it ('should stringify a FunctionNode', function () {
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var s = new SymbolNode('sqrt');
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var c = new ConstantNode(4);
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var n = new FunctionNode(s, [c]);
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assert.equal(n.toString(), 'sqrt(4)');
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});
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it ('should LaTeX a FunctionNode', function () {
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var s = new SymbolNode('sqrt');
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var c = new ConstantNode(4);
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var n = new FunctionNode(s, [c]);
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assert.equal(n.toTex(), '\\sqrt{4}');
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});
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});
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