@stdlib/array-base-bifurcate-entries-by
v0.2.2
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Split element entries into two groups according to a predicate function.
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bifurcateEntriesBy
Split element entries into two groups according to a predicate function.
Installation
npm install @stdlib/array-base-bifurcate-entries-by
Usage
var bifurcateEntriesBy = require( '@stdlib/array-base-bifurcate-entries-by' );
bifurcateEntriesBy( x, predicate[, thisArg] )
Splits element entries into two groups according to a predicate function.
function predicate( v ) {
return v[ 0 ] === 'b';
}
var x = [ 'beep', 'boop', 'foo', 'bar' ];
var out = bifurcateEntriesBy( x, predicate );
// returns [ [ [ 0, 'beep' ], [ 1, 'boop' ], [ 3, 'bar' ] ], [ [ 2, 'foo' ] ] ]
A predicate
function is provided the following arguments:
- value: current array element.
- index: current array element index.
- arr: input array.
To set the predicate
function execution context, provide a thisArg
.
function predicate( v ) {
this.count += 1;
return v[ 0 ] === 'b';
}
var x = [ 'beep', 'boop', 'foo', 'bar' ];
var context = {
'count': 0
};
var out = bifurcateEntriesBy( x, predicate, context );
// returns [ [ [ 0, 'beep' ], [ 1, 'boop' ], [ 3, 'bar' ] ], [ [ 2, 'foo' ] ] ]
var cnt = context.count;
// returns 4
Examples
var discreteUniform = require( '@stdlib/random-array-discrete-uniform' );
var take = require( '@stdlib/array-base-take-indexed' );
var bifurcateEntriesBy = require( '@stdlib/array-base-bifurcate-entries-by' );
function predicate( v ) {
// Use the first letter of each element to define groups:
return v[ 0 ] === 'b';
}
// Define an initial array of values:
var values = [ 'beep', 'boop', 'foo', 'bar', 'woot', 'woot' ];
// Sample from the initial array to generate a random collection:
var indices = discreteUniform( 100, 0, values.length-1, {
'dtype': 'generic'
});
var x = take( values, indices );
// returns [...]
// Split the values:
var out = bifurcateEntriesBy( x, predicate );
// returns [...]
console.log( out );
Notice
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.
Community
License
See LICENSE.
Copyright
Copyright © 2016-2024. The Stdlib Authors.