|
23 | 23 | var resolve = require( 'path' ).resolve; |
24 | 24 | var tape = require( 'tape' ); |
25 | 25 | var isnanf = require( '@stdlib/math/base/assert/is-nanf' ); |
26 | | -var isPositiveZero = require( '@stdlib/math/base/assert/is-positive-zero' ); |
| 26 | +var isPositiveZerof = require( '@stdlib/math/base/assert/is-positive-zerof' ); |
27 | 27 | var Float32Array = require( '@stdlib/array/float32' ); |
28 | 28 | var ndarray = require( '@stdlib/ndarray/base/ctor' ); |
29 | 29 | var tryRequire = require( '@stdlib/utils/try-require' ); |
@@ -85,11 +85,11 @@ tape( 'the function calculates the maximum value of a one-dimensional ndarray', |
85 | 85 |
|
86 | 86 | x = new Float32Array( [ -0.0, -0.0, 0.0 ] ); |
87 | 87 | v = smaxsorted( [ vector( x, 3, 1, 0 ) ] ); |
88 | | - t.strictEqual( isPositiveZero( v ), true, 'returns expected value' ); |
| 88 | + t.strictEqual( isPositiveZerof( v ), true, 'returns expected value' ); |
89 | 89 |
|
90 | 90 | x = new Float32Array( [ 0.0, -0.0, -0.0 ] ); |
91 | 91 | v = smaxsorted( [ vector( x, 3, 1, 0 ) ] ); |
92 | | - t.strictEqual( isPositiveZero( v ), true, 'returns expected value' ); |
| 92 | + t.strictEqual( isPositiveZerof( v ), true, 'returns expected value' ); |
93 | 93 |
|
94 | 94 | x = new Float32Array( [ NaN ] ); |
95 | 95 | v = smaxsorted( [ vector( x, 1, 1, 0 ) ] ); |
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