Security News
PyPI Introduces Digital Attestations to Strengthen Python Package Security
PyPI now supports digital attestations, enhancing security and trust by allowing package maintainers to verify the authenticity of Python packages.
The sha.js npm package is a module that provides cryptographic hash functions, specifically SHA (Secure Hash Algorithm) family functions. It allows for the generation of hash values from input data, which is a common requirement in various security contexts, such as password hashing, data integrity checks, and digital signatures.
SHA-256 Hash Generation
This feature allows for the generation of SHA-256 hash values from input strings. The code sample demonstrates how to create a SHA-256 hash of the string 'hello world' and output it in hexadecimal format.
"use strict";\nconst sha256 = require('sha.js').sha256;\nconst hash = new sha256().update('hello world').digest('hex');\nconsole.log(hash);
SHA-512 Hash Generation
This feature enables the creation of SHA-512 hash values. The provided code sample shows how to generate a SHA-512 hash for the input 'hello world' and print the result in hex format.
"use strict";\nconst sha512 = require('sha.js').sha512;\nconst hash = new sha512().update('hello world').digest('hex');\nconsole.log(hash);
Crypto-js is a package that offers a variety of cryptographic algorithms, including SHA-1, SHA-256, and SHA-512, similar to sha.js. However, it also provides many other algorithms like AES and Rabbit, making it more versatile for different cryptographic needs.
Node-forge is a comprehensive Node.js module that includes not only SHA hash functions but also other cryptographic tools like encryption, decryption, and digital signatures. It's more complex and feature-rich compared to sha.js, which focuses mainly on SHA hash functions.
Node style SHA
on pure JavaScript.
var shajs = require('sha.js')
console.log(shajs('sha256').update('42').digest('hex'))
// => 73475cb40a568e8da8a045ced110137e159f890ac4da883b6b17dc651b3a8049
console.log(new shajs.sha256().update('42').digest('hex'))
// => 73475cb40a568e8da8a045ced110137e159f890ac4da883b6b17dc651b3a8049
var sha256stream = shajs('sha256')
sha256stream.end('42')
console.log(sha256stream.read().toString('hex'))
// => 73475cb40a568e8da8a045ced110137e159f890ac4da883b6b17dc651b3a8049
sha.js
currently implements:
Note, this doesn't actually implement a stream, but wrapping this in a stream is trivial. It does update incrementally, so you can hash things larger than RAM, as it uses a constant amount of memory (except when using base64 or utf8 encoding, see code comments).
This work is derived from Paul Johnston's A JavaScript implementation of the Secure Hash Algorithm.
FAQs
Streamable SHA hashes in pure javascript
The npm package sha.js receives a total of 4,538,739 weekly downloads. As such, sha.js popularity was classified as popular.
We found that sha.js demonstrated a not healthy version release cadence and project activity because the last version was released a year ago. It has 2 open source maintainers collaborating on the project.
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