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We believe in a future in which the web is a preferred environment for numerical computation. To help realize this future, we've built stdlib. stdlib is a standard library, with an emphasis on numerical and scientific computation, written in JavaScript (and C) for execution in browsers and in Node.js.
The library is fully decomposable, being architected in such a way that you can swap out and mix and match APIs and functionality to cater to your exact preferences and use cases.
When you use stdlib, you can be absolutely certain that you are using the most thorough, rigorous, well-written, studied, documented, tested, measured, and high-quality code out there.
To join us in bringing numerical computing to the web, get started by checking us out on GitHub, and please consider financially supporting stdlib. We greatly appreciate your continued support!
Fixed-width composite data type (a.k.a., a struct).
npm install @stdlib/dstructs-structAlternatively,
The branches.md file summarizes the available branches and displays a diagram illustrating their relationships.
To view installation and usage instructions specific to each branch build, be sure to explicitly navigate to the respective README files on each branch, as linked to above.
var struct = require( '@stdlib/dstructs-struct' );Returns a constructor for creating a fixed-width composite data type (a.k.a., a struct).
var fields = [
{
'type': 'union',
'fields': [
{
'name': 'double',
'description': 'double-precision floating-point number',
'type': 'float64',
'enumerable': true,
'writable': true,
'castingMode': 'none'
},
{
'name': 'words',
'description': 'high and low words',
'type': 'uint32',
'length': 2,
'enumerable': true,
'writable': true,
'castingMode': 'none'
}
]
}
];
var Struct = struct( fields );
var data = {
'double': 3.14
};
var s = new Struct( data );
// returns <Struct>
var v = s.double;
// returns 3.14
var w = s.words;
// e.g., <Uint32Array>[ 1374389535, 1074339512 ]TODO: document schema
TODO: document constructor API
While struct instances aim to emulate C struct behavior, structs have the following differences:
A primary use case for emulating C struct behavior is to facilitate interoperation between JavaScript and C. For example, by creating a JavaScript struct instance which has the same alignment and layout as a C struct, one can pass a pointer to a struct instance's underlying byte buffer from JavaScript to C and then simply perform a cast to interpret as an equivalent C struct. This enables zero-copy interchange when, e.g., calling into Node.js native native add-ons and can greatly reduce overhead when working with heterogeneous composite data types.
var Float64Array = require( '@stdlib/array-float64' );
var struct = require( '@stdlib/dstructs-struct' );
var fields = [
{
'name': 'rejected',
'description': 'boolean indicating whether the null hypothesis was rejected',
'type': 'bool',
'enumerable': true,
'writable': false,
'castingMode': 'none'
},
{
'name': 'alpha',
'description': 'significance level',
'type': 'float64',
'enumerable': true,
'writable': false,
'castingMode': 'mostly-safe'
},
{
'name': 'pValue',
'description': 'p-value',
'type': 'float64',
'enumerable': true,
'writable': false,
'castingMode': 'mostly-safe'
},
{
'name': 'statistic',
'description': 'test statistic',
'type': 'float64',
'writable': false,
'castingMode': 'mostly-safe'
},
{
'name': 'ci',
'description': 'confidence interval',
'type': 'float64',
'length': 2,
'enumerable': true,
'writable': false,
'castingMode': 'mostly-safe'
},
{
'name': 'df',
'description': 'degrees of freedom',
'type': 'int32',
'enumerable': true,
'writable': false,
'castingMode': 'mostly-safe'
},
{
'name': 'nullValue',
'description': 'null value',
'type': 'float64',
'enumerable': true,
'writable': false,
'castingMode': 'mostly-safe'
},
{
'name': 'mean',
'description': 'computed mean',
'type': 'float64',
'enumerable': true,
'writable': false,
'castingMode': 'mostly-safe'
},
{
'name': 'sd',
'description': 'standard error of the mean',
'type': 'float64',
'enumerable': true,
'writable': false,
'castingMode': 'mostly-safe'
}
];
var Struct = struct( fields );
var s = new Struct({
'rejected': true,
'alpha': 0.05,
'pValue': 0.01,
'statistic': 3.14,
'ci': new Float64Array( [ -5.0, 5.0 ] ),
'df': 10,
'nullValue': 1.0,
'mean': 1.01,
'sd': 0.025
});
// returns <Struct>
var byteLength = Struct.byteLength;
console.log( 'Byte length: %d', byteLength );
var alignment = Struct.alignment;
console.log( 'Alignment: %d', alignment );
var names = Struct.fields;
console.log( 'Field names: %s', names.join( ', ' ) );
var str = s.toString({
'format': 'linear'
});
console.log( 'String:\n%s', str );
var o = s.toJSON();
console.log( o );
var offset = Struct.byteOffsetOf( 'alpha' );
console.log( 'Offset: %d', offset );
var desc = Struct.descriptionOf( 'alpha' );
console.log( 'Description: %s', desc );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 © 2016-2026. The Stdlib Authors.
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