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test.factory.js
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/**
* @license Apache-2.0
*
* Copyright (c) 2018 The Stdlib Authors.
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
'use strict';
// MODULES //
var tape = require( 'tape' );
var isnan = require( '@stdlib/math-base-assert-is-nan' );
var abs = require( '@stdlib/math-base-special-abs' );
var PINF = require( '@stdlib/constants-float64-pinf' );
var NINF = require( '@stdlib/constants-float64-ninf' );
var EPS = require( '@stdlib/constants-float64-eps' );
var factory = require( './../lib/factory.js' );
// FIXTURES //
var data = require( './fixtures/r/data.json' );
// TESTS //
tape( 'main export is a function', function test( t ) {
t.ok( true, __filename );
t.strictEqual( typeof factory, 'function', 'main export is a function' );
t.end();
});
tape( 'the function returns a function', function test( t ) {
var logcdf = factory( 1.0 );
t.equal( typeof logcdf, 'function', 'returns a function' );
t.end();
});
tape( 'if provided `NaN` for any parameter, the created function returns `NaN`', function test( t ) {
var logcdf;
var y;
logcdf = factory( 1.0 );
y = logcdf( NaN );
t.equal( isnan( y ), true, 'returns NaN' );
logcdf = factory( NaN );
y = logcdf( 0.0 );
t.equal( isnan( y ), true, 'returns NaN' );
t.end();
});
tape( 'if provided a finite `lambda`, the function returns a function which returns `1` when provided `Infinity` for `x`', function test( t ) {
var logcdf;
var y;
logcdf = factory( 1.0 );
y = logcdf( PINF );
t.equal( y, 0.0, 'returns 0' );
t.end();
});
tape( 'if provided a finite `lambda`, the function returns a function which returns `-Infinity` when provided `-Infinity` for `x`', function test( t ) {
var logcdf;
var y;
logcdf = factory( 1.0 );
y = logcdf( NINF );
t.equal( y, NINF, 'returns -Infinity' );
t.end();
});
tape( 'if provided `+infinity` for `lambda`, the function returns a function which returns `NaN` for any `x`', function test( t ) {
var logcdf;
var y;
logcdf = factory( PINF );
y = logcdf( 0.0 );
t.equal( isnan( y ), true, 'returns NaN' );
y = logcdf( NaN );
t.equal( isnan( y ), true, 'returns NaN' );
y = logcdf( PINF );
t.equal( isnan( y ), true, 'returns NaN' );
y = logcdf( NINF );
t.equal( isnan( y ), true, 'returns NaN' );
t.end();
});
tape( 'if provided a negative `lambda`, the created function always returns `NaN`', function test( t ) {
var logcdf;
var y;
logcdf = factory( -1.0 );
y = logcdf( 2.0 );
t.equal( isnan( y ), true, 'returns NaN' );
y = logcdf( 0.0 );
t.equal( isnan( y ), true, 'returns NaN' );
t.end();
});
tape( 'the created function evaluates the logcdf for `x` given parameter `lambda`', function test( t ) {
var expected;
var logcdf;
var lambda;
var delta;
var tol;
var x;
var y;
var i;
expected = data.expected;
x = data.x;
lambda = data.lambda;
for ( i = 0; i < x.length; i++ ) {
logcdf = factory( lambda[i] );
y = logcdf( x[i] );
if ( y === expected[i] ) {
t.equal( y, expected[i], 'x: '+x[i]+', lambda: '+lambda[i]+', y: '+y+', expected: '+expected[i] );
} else {
delta = abs( y - expected[ i ] );
tol = 6800.0 * EPS * abs( expected[ i ] );
t.ok( delta <= tol, 'within tolerance. x: '+x[ i ]+'. lambda: '+lambda[i]+'. y: '+y+'. E: '+expected[ i ]+'. Δ: '+delta+'. tol: '+tol+'.' );
}
}
t.end();
});