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@stdlib/math-base-special-hypot
Advanced tools
Compute the hypotenuse avoiding overflow and underflow.
npm install @stdlib/math-base-special-hypot
var hypot = require( '@stdlib/math-base-special-hypot' );
Computes the hypotenuse avoiding overflow and underflow.
var h = hypot( -5.0, 12.0 );
// returns 13.0
h = hypot( -0.0, -0.0 );
// returns +0.0
If either argument is NaN, the function returns NaN.
var h = hypot( NaN, 12.0 );
// returns NaN
h = hypot( 5.0, NaN );
// returns NaN
The textbook approach to calculating the hypotenuse is subject to overflow and underflow. For example, for a sufficiently large x and/or y, computing the hypotenuse will overflow.
var sqrt = require( '@stdlib/math-base-special-sqrt' );
var x2 = 1.0e154 * 1.0e154;
// returns 1.0e308
var h = sqrt( x2 + x2 );
// returns Infinity
Similarly, for sufficiently small x and/or y, computing the hypotenuse will underflow.
var sqrt = require( '@stdlib/math-base-special-sqrt' );
var x2 = 1.0e-200 * 1.0e-200;
// returns 0.0
var h = sqrt( x2 + x2 );
// returns 0.0
This implementation uses a numerically stable algorithm which avoids overflow and underflow.
var h = hypot( 1.0e154, 1.0e154 );
// returns ~1.4142e+154
h = hypot( 1.0e-200, 1.0e-200 );
// returns ~1.4142e-200
var randu = require( '@stdlib/random-base-randu' );
var round = require( '@stdlib/math-base-special-round' );
var hypot = require( '@stdlib/math-base-special-hypot' );
var x;
var y;
var h;
var i;
for ( i = 0; i < 100; i++ ) {
x = round( randu()*100.0 ) - 50.0;
y = round( randu()*100.0 ) - 50.0;
h = hypot( x, y );
console.log( 'h(%d,%d) = %d', x, y, h );
}
npm install @stdlib/math-base-special-hypot
#include "stdlib/math/base/special/hypot.h
Computes the hypotenuse avoiding overflow and underflow.
double h = stdlib_base_hypot( 5.0, 12.0 );
// returns 13.0
The function accepts the following arguments:
[in] double input value.[in] double input value.double stdlib_base_hypot( const double x, const double y );
#include "stdlib/math/base/special/hypot.h"
#include <stdio.h>
int main() {
double x[] = { 3.0, 4.0, 5.0, 12.0 };
double y;
int i;
for ( i = 0; i < 4; i += 2 ) {
y = stdlib_base_hypot( x[ i ], x[ i+1 ] );
printf( "hypot(%lf, %lf) = %lf\n", x[ i ], x[ i+1 ], y );
}
}
This package is part of stdlib, a standard library for JavaScript and Node.js, with an emphasis on numerical and scientific computing. The library provides a collection of robust, high performance libraries for mathematics, statistics, streams, utilities, and more.
For more information on the project, filing bug reports and feature requests, and guidance on how to develop stdlib, see the main project repository.
See LICENSE.
Copyright © 2016-2021. The Stdlib Authors.
FAQs
Compute the hypotenuse avoiding overflow and underflow.
The npm package @stdlib/math-base-special-hypot receives a total of 35 weekly downloads. As such, @stdlib/math-base-special-hypot popularity was classified as not popular.
We found that @stdlib/math-base-special-hypot demonstrated a healthy version release cadence and project activity because the last version was released less than a year ago. It has 4 open source maintainers collaborating on the project.
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