更换开源协议为MIT;代码优化;this.crypto改名为this.origin;增加uuid的方法

master 1.1.0
宇天 2018-05-25 00:09:29 +08:00
parent e3aa7aeb72
commit 8b6074a604
5 changed files with 254 additions and 405 deletions

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LICENSE
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@ -1,191 +1,21 @@
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Readme.md Executable file → Normal file
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@ -18,12 +18,12 @@ git clone https://github.com/yutent/crypto.js.git
## 属性
> 其实就一个属性,即 `crypto`,即为原生的`crypto`对象,方便在封装的方法中无法满足需求时,可以自行调用原生的`crypto`实现。
> 其实就一个属性,即 `origin`,即为原生的`crypto`对象,方便在封装的方法中无法满足需求时,可以自行调用原生的`crypto`实现。
## 常用API方法
> 对使用频率非常高的几种加密/编码进行更加简便的封装。
### 1. rand(len[, forceNum])
### rand(len[, forceNum])
- len `<Number>`
- forceNum `<Boolean>` 可选
@ -37,8 +37,18 @@ crypto.rand(6, true) // 439875
crypto.rand(10, true) // 3458765234
```
### uuid()
> 返回一个如下格式的 xxxxxxxx-xxxx-xxxx-xxxxxxxx 的唯一ID
### 2. md5(str[, encode])
```javascript
let crypto = require('crypto.js')
crypto.uuid() //
```
### md5(str[, encode])
- str `<Number>` | `<String>`
- encode `<String>` 可选
@ -52,7 +62,7 @@ crypto.md5('hello world', 'base64') // XrY7u+Ae7tCTyyK7j1rNww==
```
### 3. md5Sign(file)
### md5Sign(file)
- file `<String>`
> 该方法用于计算文件的md5签名`file`即为文件的绝对路径。
@ -62,7 +72,7 @@ crypto.md5Sign('xx.jpg')
```
### 4. sha1(str[, encode])
### sha1(str[, encode])
- str `<Number>` | `<String>`
- encode `<String>` 可选
@ -76,7 +86,7 @@ crypto.sha1('hello world', 'base64') // Kq5sNclPz7QV2+lfQIuc6R7oRu0=
```
### 5. sha1Sign(file)
### sha1Sign(file)
- file `<String>`
> 该方法用于计算文件的sha1签名`file`即为文件的绝对路径。
@ -86,7 +96,7 @@ crypto.sha1Sign('xx.jpg')
```
### 6. sha256(str[, encode])
### sha256(str[, encode])
- str `<Number>` | `<String>`
- encode `<String>` 可选
@ -94,7 +104,7 @@ crypto.sha1Sign('xx.jpg')
### 7. base64encode(str[, urlFriendly])
### base64encode(str[, urlFriendly])
- str `<Number>` | `<String>` | `<Buffer>`
- urlFriendly `<Boolean>` 可选
@ -107,7 +117,7 @@ crypto.base64encode('hello world') //aGVsbG8gd29ybGQ=
### 8. base64decode(str[, urlFriendly])
### base64decode(str[, urlFriendly])
- str `<String>`
- urlFriendly `<Boolean>` 可选

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index.js Normal file
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@ -0,0 +1,215 @@
/**
* 加密类 md5/sha1/base64
* @authors yutent (yutent@doui.cc)
* @date 2015-09-10 13:56:18
*/
'use strict'
const CRYPTO = require('crypto')
const FS = require('fs')
module.exports = {
origin: CRYPTO,
hash(mode, data, outEncode) {
let sum = CRYPTO.createHash(mode)
let isBuffer = Buffer.isBuffer(data)
sum.update(data, isBuffer ? 'binary' : 'utf8')
return sum.digest(outEncode || 'hex')
},
hmac(mode, data, key, outEncode) {
key = key || ''
let sum = CRYPTO.createHmac(mode, key)
let isBuffer = Buffer.isBuffer(data)
sum.update(data, isBuffer ? 'binary' : 'utf8')
return sum.digest(outEncode || 'hex')
},
cipher(mode, data, key, inEncode, outEncode) {
key = key || ''
let isBuffer = Buffer.isBuffer(data)
inEncode = isBuffer ? 'binary' : inEncode || 'utf8'
outEncode = outEncode || 'base64'
let cp = CRYPTO.createCipher(mode, key)
let res = cp.update(data, inEncode, outEncode)
return res + cp.final(outEncode)
},
decipher(mode, data, key, inEncode, outEncode) {
key = key || ''
let isBuffer = Buffer.isBuffer(data)
inEncode = isBuffer ? 'binary' : inEncode || 'base64'
outEncode = outEncode || 'utf8'
let dcp = CRYPTO.createDecipher(mode, key)
let res = dcp.update(data, inEncode, outEncode)
return res + dcp.final(outEncode)
},
cipheriv(mode, data, key, iv, inEncode, outEncode) {
key = key || '0000000000000000'
iv = iv || ''
let isBuffer = Buffer.isBuffer(data)
inEncode = isBuffer ? 'binary' : inEncode || 'utf8'
outEncode = outEncode || 'base64'
let cp = CRYPTO.createCipheriv(mode, key, iv)
let res = cp.update(data, inEncode, outEncode)
return res + cp.final(outEncode)
},
decipheriv(mode, data, key, iv, inEncode, outEncode) {
key = key || '0000000000000000'
iv = iv || ''
let isBuffer = Buffer.isBuffer(data)
inEncode = isBuffer ? 'binary' : inEncode || 'base64'
outEncode = outEncode || 'utf8'
let dcp = CRYPTO.createDecipheriv(mode, key, iv)
let res = dcp.update(data, inEncode, outEncode)
return res + dcp.final(outEncode)
},
/**
* [rand 生成指定长度的随机字符串]
* @param {[type]} len [要得到的字符串长度]
* @param {[type]} forceNum [是否强制返回纯数字]
*/
rand(len, forceNum) {
let str = 'qwertyuiopasdfghjklzxcvbnmQWERTYUIOPASDFGHJKLZXCVBNM0123456789'
if (forceNum) {
str = '0123456789'
}
let max = str.length
let tmp = ''
for (let i = 0; i < len; i++) {
let r = Math.floor(Math.random() * max)
tmp += str[r]
}
return tmp
},
// 返回一个如下格式的 xxxxxxxx-xxxx-xxxx-xxxxxxxx 的唯一ID
uuid() {
let rand = CRYPTO.randomBytes(8).toString('hex')
let stamp = ((Date.now() / 1000) >>> 0).toString(16)
rand = rand.replace(/^([0-9a-z]{8})([0-9a-z]{4})([0-9a-z]{4})$/, '$1-$2-$3')
return rand + '-' + stamp
},
/**
* [md5 md5加密]
* @param {Str/Num} str [要加密的字符串]
* @param {Str} encode [hex/base64]
*/
md5(str, encode) {
if (typeof str !== 'string' && typeof str !== 'number') {
return str
}
return this.hash('md5', str + '', encode)
},
/**
* [md5Sign 获取文件的md5签名]
* @param {Str} file [文件路径]
*/
md5Sign(file) {
if (!fs.existsSync(file)) {
return null
}
let fileStream = fs.readFileSync(file)
return this.hash('md5', fileStream)
},
/**
* [sha1 sha1加密]
* @param {Str/Num} str [要加密的字符串]
* @param {Str} encode [hex/base64]
*/
sha1(str, encode) {
if (typeof str !== 'string' && typeof str !== 'number') {
return str
}
return this.hash('sha1', str + '', encode)
},
/**
* [sha1Sign 获取文件的sha1签名]
* @param {Str} file [文件路径]
*/
sha1Sign(file) {
if (!fs.existsSync(file)) {
return null
}
let fileStream = fs.readFileSync(file)
return this.hash('sha1', fileStream)
},
/**
* [sha256 sha256加密]
* @param {Str/Num} str [要加密的字符串]
* @param {Str} encoding [hex/base64]
*/
sha256(str, encoding) {
if (typeof str !== 'string' && typeof str !== 'number') {
return str
}
return this.hash('sha256', str + '', encoding)
},
/**
* [base64encode base64加密]
* @param {Str/Num/Buffer} str [要加密的字符串]
* @param {bool} urlFriendly [是否对URL友好默认否是则会把+转成-/转成_]
*/
base64encode(str, urlFriendly) {
if (!Buffer.isBuffer(str)) {
str = Buffer.from(str + '')
}
let encode = str.toString('base64')
if (urlFriendly) {
encode = encode
.replace(/[+\/]/g, m => {
return m === '+' ? '-' : '_'
})
.replace(/=/g, '')
}
return encode
},
/**
* [base64decode base64解密]
* @param {Str} str [要解密的字符串]
* @param {bool} urlFriendly [之前是否对结果采用了URL友好处理]
* @param {Str/Buffer} encoding [编码默认utf-8]
*/
base64decode(str, urlFriendly, encoding) {
if (urlFriendly) {
str = str
.replace(/[-_]/g, m => {
return m === '-' ? '+' : '/'
})
.replace(/[^A-Za-z0-9\+\/]/g, '')
}
let buff = Buffer.from(str, 'base64')
if (encoding === 'buffer') {
return buff
}
return buff.toString(encoding || 'ascii')
}
}

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@ -1,206 +0,0 @@
/**
* 加密类 md5/sha1/base64
* @authors yutent (yutent@doui.cc)
* @date 2015-09-10 13:56:18
*/
"use strict";
let crypto = require('crypto')
let fs = require('fs')
class C {
constructor(){
this.crypto = crypto
this.hash = (mode, data, outEncode) => {
let sum = crypto.createHash(mode)
let isBuffer = Buffer.isBuffer(data)
sum.update(data, isBuffer ? 'binary' : 'utf8')
return sum.digest(outEncode || 'hex')
}
this.hmac = (mode, data, key, outEncode) => {
key = key || ''
let sum = crypto.createHmac(mode, key)
let isBuffer = Buffer.isBuffer(data)
sum.update(data, isBuffer ? 'binary' : 'utf8')
return sum.digest(outEncode || 'hex')
}
this.cipher = (mode, data, key, inEncode, outEncode) => {
key = key || ''
let isBuffer = Buffer.isBuffer(data)
inEncode = isBuffer ? 'binary' : (inEncode || 'utf8')
outEncode = outEncode || 'base64'
let cp = crypto.createCipher(mode, key)
let res = cp.update(data, inEncode, outEncode)
return res + cp.final(outEncode)
}
this.decipher = (mode, data, key, inEncode, outEncode) => {
key = key || ''
let isBuffer = Buffer.isBuffer(data)
inEncode = isBuffer ? 'binary' : (inEncode || 'base64')
outEncode = outEncode || 'utf8'
let dcp = crypto.createDecipher(mode, key)
let res = dcp.update(data, inEncode, outEncode)
return res + dcp.final(outEncode)
}
this.cipheriv = (mode, data, key, iv, inEncode, outEncode) => {
key = key || '0000000000000000'
iv = iv || ''
let isBuffer = Buffer.isBuffer(data)
inEncode = isBuffer ? 'binary' : (inEncode || 'utf8')
outEncode = outEncode || 'base64'
let cp = crypto.createCipheriv(mode, key, iv)
let res = cp.update(data, inEncode, outEncode)
return res + cp.final(outEncode)
}
this.decipheriv = (mode, data, key, iv, inEncode, outEncode) => {
key = key || '0000000000000000'
iv = iv || ''
let isBuffer = Buffer.isBuffer(data)
inEncode = isBuffer ? 'binary' : (inEncode || 'base64')
outEncode = outEncode || 'utf8'
let dcp = crypto.createDecipheriv(mode, key, iv)
let res = dcp.update(data, inEncode, outEncode)
return res + dcp.final(outEncode)
}
}
/**
* [rand 生成指定长度的随机字符串]
* @param {[type]} len [要得到的字符串长度]
* @param {[type]} forceNum [是否强制返回纯数字]
*/
rand(len, forceNum){
let str = 'qwertyuiopasdfghjklzxcvbnmQWERTYUIOPASDFGHJKLZXCVBNM0123456789'
if(forceNum)
str = '0123456789'
let max = str.length
let tmp = ''
for(let i = 0; i < len; i++){
let r = Math.floor(Math.random() * max)
tmp += str[r]
}
return tmp
}
/**
* [md5 md5加密]
* @param {Str/Num} str [要加密的字符串]
* @param {Str} encode [hex/base64]
*/
md5(str, encode){
if(typeof str !== 'string' && typeof str !== 'number')
return str
return this.hash('md5', str + '', encode)
}
/**
* [md5Sign 获取文件的md5签名]
* @param {Str} file [文件路径]
*/
md5Sign(file){
if(!fs.existsSync(file))
return
let fileStream = fs.readFileSync(file)
return this.hash('md5', fileStream)
}
/**
* [sha1 sha1加密]
* @param {Str/Num} str [要加密的字符串]
* @param {Str} encode [hex/base64]
*/
sha1(str, encode){
if(typeof str !== 'string' && typeof str !== 'number')
return str
return this.hash('sha1', str + '', encode)
}
/**
* [sha1Sign 获取文件的sha1签名]
* @param {Str} file [文件路径]
*/
sha1Sign(file){
if(!fs.existsSync(file))
return
let fileStream = fs.readFileSync(file)
return this.hash('sha1', fileStream)
}
/**
* [sha256 sha256加密]
* @param {Str/Num} str [要加密的字符串]
* @param {Str} encoding [hex/base64]
*/
sha256(str, encoding){
if(typeof str !== 'string' && typeof str !== 'number')
return str
return this.hash('sha256', str + '', encoding)
}
/**
* [base64encode base64加密]
* @param {Str/Num/Buffer} str [要加密的字符串]
* @param {bool} urlFriendly [是否对URL友好默认否是则会把+转成-/转成_]
*/
base64encode(str, urlFriendly){
if(!Buffer.isBuffer(str))
str = Buffer.from(str + '')
let encode = str.toString('base64')
if(urlFriendly)
encode = encode.replace(/[+\/]/g, m => {return m === '+' ? '-' : '_'}).replace(/=/g, '')
return encode
}
/**
* [base64decode base64解密]
* @param {Str} str [要解密的字符串]
* @param {bool} urlFriendly [之前是否对结果采用了URL友好处理]
* @param {Str/Buffer} encoding [编码默认utf-8]
*/
base64decode(str, urlFriendly, encoding){
if(urlFriendly)
str = str.replace(/[-_]/g, m => {return m === '-' ? '+' : '/'}).replace(/[^A-Za-z0-9\+\/]/g, '')
let buff = Buffer.from(str, 'base64')
if (encoding === 'buffer')
return buff
return buff.toString(encoding || 'ascii')
}
}
module.exports = new C

6
package.json Executable file → Normal file
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@ -1,17 +1,17 @@
{
"name": "crypto.js",
"version": "1.0.1",
"version": "1.1.0",
"description": "原生crypto加密模块的二次封装,简化常用加密函数的使用",
"keywords": [
"md5",
"sha1",
"base64",
"dojs",
"fivejs",
"crypto"
],
"author": "yutent <yutent@doui.cc>",
"repository": { "type": "git", "url": "https://github.com/yutent/crypto.js.git" },
"dependencies": {},
"devDependencies": {},
"main": "lib/main.js"
"main": "index.js"
}