npm package discovery and stats viewer.

Discover Tips

  • General search

    [free text search, go nuts!]

  • Package details

    pkg:[package-name]

  • User packages

    @[username]

Sponsor

Optimize Toolset

I’ve always been into building performant and accessible sites, but lately I’ve been taking it extremely seriously. So much so that I’ve been building a tool to help me optimize and monitor the sites that I build to make sure that I’m making an attempt to offer the best experience to those who visit them. If you’re into performant, accessible and SEO friendly sites, you might like it too! You can check it out at Optimize Toolset.

About

Hi, 👋, I’m Ryan Hefner  and I built this site for me, and you! The goal of this site was to provide an easy way for me to check the stats on my npm packages, both for prioritizing issues and updates, and to give me a little kick in the pants to keep up on stuff.

As I was building it, I realized that I was actually using the tool to build the tool, and figured I might as well put this out there and hopefully others will find it to be a fast and useful way to search and browse npm packages as I have.

If you’re interested in other things I’m working on, follow me on Twitter or check out the open source projects I’ve been publishing on GitHub.

I am also working on a Twitter bot for this site to tweet the most popular, newest, random packages from npm. Please follow that account now and it will start sending out packages soon–ish.

Open Software & Tools

This site wouldn’t be possible without the immense generosity and tireless efforts from the people who make contributions to the world and share their work via open source initiatives. Thank you 🙏

© 2024 – Pkg Stats / Ryan Hefner

sm-crypto2

v0.1.0

Published

sm-srypto2

Downloads

14

Readme

sm-crypto

国密算法sm2、sm3和sm4的js版。

PS: 小程序移植版:https://github.com/wechat-miniprogram/sm-crypto

安装

npm install --save sm-crypto

sm2

获取密钥对

const sm2 = require('sm-crypto').sm2

let keypair = sm2.generateKeyPairHex()

publicKey = keypair.publicKey // 公钥
privateKey = keypair.privateKey // 私钥

加密解密

const sm2 = require('sm-crypto').sm2
const cipherMode = 1 // 1 - C1C3C2,0 - C1C2C3,默认为1

let encryptData = sm2.doEncrypt(msgString, publicKey, cipherMode) // 加密结果
let decryptData = sm2.doDecrypt(encryptData, privateKey, cipherMode) // 解密结果

签名验签

ps:理论上来说,只做纯签名是最快的。

const sm2 = require('sm-crypto').sm2

// 纯签名 + 生成椭圆曲线点
let sigValueHex = sm2.doSignature(msg, privateKey) // 签名
let verifyResult = sm2.doVerifySignature(msg, sigValueHex, publicKey) // 验签结果

// 纯签名
let sigValueHex2 = sm2.doSignature(msg, privateKey, {
    pointPool: [sm2.getPoint(), sm2.getPoint(), sm2.getPoint(), sm2.getPoint()], // 传入事先已生成好的椭圆曲线点,可加快签名速度
}) // 签名
let verifyResult2 = sm2.doVerifySignature(msg, sigValueHex2, publicKey) // 验签结果

// 纯签名 + 生成椭圆曲线点 + der编解码
let sigValueHex3 = sm2.doSignature(msg, privateKey, {
    der: true,
}) // 签名
let verifyResult3 = sm2.doVerifySignature(msg, sigValueHex3, publicKey, {
    der: true,
}) // 验签结果

// 纯签名 + 生成椭圆曲线点 + sm3杂凑
let sigValueHex4 = sm2.doSignature(msg, privateKey, {
    hash: true,
}) // 签名
let verifyResult4 = sm2.doVerifySignature(msg, sigValueHex4, publicKey, {
    hash: true,
}) // 验签结果

// 纯签名 + 生成椭圆曲线点 + sm3杂凑(不做公钥推导)
let sigValueHex5 = sm2.doSignature(msg, privateKey, {
    hash: true,
    publicKey, // 传入公钥的话,可以去掉sm3杂凑中推导公钥的过程,速度会比纯签名 + 生成椭圆曲线点 + sm3杂凑快
})
let verifyResult5 = sm2.doVerifySignature(msg, sigValueHex5, publicKey, {
    hash: true,
    publicKey,
})

// 纯签名 + 生成椭圆曲线点 + sm3杂凑 + 不做公钥推 + 添加 userId(长度小于 8192)
// 默认 userId 值为 1234567812345678
let sigValueHex6 = sm2.doSignature(msgString, privateKey, {
    hash: true,
    publicKey,
    userId: 'testUserId',
})
let verifyResult6 = sm2.doVerifySignature(msgString, sigValueHex6, publicKey, {
    hash: true,
    userId: 'testUserId',
})

获取椭圆曲线点

const sm2 = require('sm-crypto').sm2

let poin = sm2.getPoint() // 获取一个椭圆曲线点,可在sm2签名时传入

sm3

const sm3 = require('sm-crypto').sm3

let hashData = sm3('abc') // 杂凑

sm4

加密

const sm4 = require('sm-crypto').sm4
const msg = 'hello world! 我是 juneandgreen.' // 可以为 utf8 串或字节数组
const key = '0123456789abcdeffedcba9876543210' // 可以为 16 进制串或字节数组,要求为 128 比特

let encryptData = sm4.encrypt(msg, key) // 加密,默认输出 16 进制字符串,默认使用 pkcs#5 填充
let encryptData = sm4.encrypt(msg, key, {padding: 'none'}) // 加密,不使用 padding
let encryptData = sm4.encrypt(msg, key, {padding: 'none', output: 'array'}) // 加密,不使用 padding,输出为字节数组

解密

const sm4 = require('sm-crypto').sm4
const encryptData = '0e395deb10f6e8a17e17823e1fd9bd98a1bff1df508b5b8a1efb79ec633d1bb129432ac1b74972dbe97bab04f024e89c' // 可以为 16 进制串或字节数组
const key = '0123456789abcdeffedcba9876543210' // 可以为 16 进制串或字节数组,要求为 128 比特

let decryptData = sm4.decrypt(encryptData, key) // 解密,默认输出 utf8 字符串,默认使用 pkcs#5 填充
let decryptData = sm4.decrypt(encryptData, key, {padding: 'none'}) // 解密,不使用 padding
let decryptData = sm4.decrypt(encryptData, key, {padding: 'none', output: 'array'}) // 解密,不使用 padding,输出为字节数组

协议

MIT