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Author SHA1 Message Date
3ef704ba32 use static keyword 2016-12-05 20:48:29 +01:00
1be7d888d6 cleanup comments 2016-12-05 20:37:38 +01:00
0d3d9f835b docs: fix typo 2016-12-05 14:57:50 +01:00
c1ed9751e3 docs: adjust intro styling 2016-12-02 16:02:04 +01:00
01957fa095 docs: Add jsdoc api docs 2016-12-02 15:08:51 +01:00
7 changed files with 372 additions and 323 deletions

1
.gitignore vendored
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@ -27,3 +27,4 @@ build/Release
node_modules
dist
docs

113
README.md
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@ -22,22 +22,6 @@
- [Browser: Browserify, Webpack, other bundlers](#browser-browserify-webpack-other-bundlers)
- [Browser: `<script>` Tag](#browser-script-tag)
- [API](#api)
- [Create](#create)
- [`new PeerId(id[, privKey, pubKey])`](#new-peeridid-privkey-pubkey)
- [`create([opts], callback)`](#createopts-callback)
- [Import](#import)
- [`createFromHexString(str)`](#createfromhexstringstr)
- [`createFromBytes(buf)`](#createfrombytesbuf)
- [`createFromB58String(str)`](#createfromb58stringstr)
- [`createFromPubKey(pubKey)`](#createfrompubkeypubkey)
- [`createFromPrivKey(privKey)`](#createfromprivkeyprivkey)
- [`createFromJSON(obj)`](#createfromjsonobj)
- [Export](#export)
- [`toHexString()`](#tohexstring)
- [`toBytes()`](#tobytes)
- [`toB58String()`](#tob58string)
- [`toJSON()`](#tojson)
- [`toPrint()`](#toprint)
- [License](#license)
# Description
@ -55,10 +39,9 @@ to the multihash for ID generation.*
```js
var PeerId = require('peer-id')
var bs58 = require('bs58')
PeerId.create({ bits: 1024 }, (err, id) => {
console.log(JSON.stringify(id.toJSON(), null, 2))
console.log(JSON.stringify(id.toJSON(), null, 2)
})
```
@ -110,100 +93,6 @@ the global namespace.
# API
```js
const PeerId = require('peer-id')
```
## Create
### `new PeerId(id[, privKey, pubKey])`
- `id: Buffer` - The multihash of the publick key as `Buffer`
- `privKey: RsaPrivateKey` - The private key
- `pubKey: RsaPublicKey` - The public key
The key format is detailed in [libp2p-crypto](https://github.com/libp2p/js-libp2p-crypto).
### `create([opts], callback)`
Generates a new Peer ID, complete with public/private keypair.
- `opts: Object`: Default: `{bits: 2048}`
- `callback: Function`
Calls back `callback` with `err, id`.
## Import
### `createFromHexString(str)`
Creates a Peer ID from hex string representing the key's multihash.
### `createFromBytes(buf)`
Creates a Peer ID from a buffer representing the key's multihash.
### `createFromB58String(str)`
Creates a Peer ID from a Base58 string representing the key's multihash.
### `createFromPubKey(pubKey)`
- `publicKey: Buffer`
Creates a Peer ID from a buffer containing a public key.
### `createFromPrivKey(privKey)`
- `privKey: Buffer`
Creates a Peer ID from a buffer containing a private key.
### `createFromJSON(obj)`
- `obj.id: String` - The multihash encoded in `base58`
- `obj.pubKey: String` - The public key in protobuf format, encoded in 'base64'
- `obj.privKey: String` - The private key in protobuf format, encoded in 'base 64'
## Export
### `toHexString()`
Returns the Peer ID's `id` as a hex string.
```
1220d6243998f2fc56343ad7ed0342ab7886a4eb18d736f1b67d44b37fcc81e0f39f
```
### `toBytes()`
Returns the Peer ID's `id` as a buffer.
```
<Buffer 12 20 d6 24 39 98 f2 fc 56 34 3a d7 ed 03 42 ab 78 86 a4 eb 18 d7 36 f1 b6 7d 44 b3 7f cc 81 e0 f3 9f>
```
### `toB58String()`
Returns the Peer ID's `id` as a base58 string.
```
QmckZzdVd72h9QUFuJJpQqhsZqGLwjhh81qSvZ9BhB2FQi
```
### `toJSON()`
Returns an `obj` of the form
- `obj.id: String` - The multihash encoded in `base58`
- `obj.pubKey: String` - The public key in protobuf format, encoded in 'base64'
- `obj.privKey: String` - The private key in protobuf format, encoded in 'base 64'
### `toPrint()`
Alias for `.toJSON()`.
# License
MIT

5
documentation.yml Normal file
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@ -0,0 +1,5 @@
toc:
- name: Introduction
file: intro.md
- PeerId
- PeerIdJson

61
intro.md Normal file
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@ -0,0 +1,61 @@
Generate, import, and export PeerIDs, for use with [IPFS](https://github.com/ipfs/ipfs).
> A Peer ID is the SHA-256 [multihash](https://github.com/multiformats/multihash) of a public key.
>
> The public key is a base64 encoded string of a protobuf containing an RSA DER buffer. This uses a node buffer to pass the base64 encoded public key protobuf to the multihash for ID generation.
## Example
```js
var PeerId = require('peer-id')
PeerId.create({ bits: 1024 }, (err, id) => {
console.log(JSON.stringify(id.toJSON(), null, 2)
})
```
```json
{
"id": "Qma9T5YraSnpRDZqRR4krcSJabThc8nwZuJV3LercPHufi",
"privKey": "CAAS4AQwggJcAgEAAoGBAMBgbIqyOL26oV3nGPBYrdpbv..",
"pubKey": "CAASogEwgZ8wDQYJKoZIhvcNAQEBBQADgY0AMIGJAoGBAMBgbIqyOL26oV3nGPBYrdpbvzCY..."
}
```
## Installation
### npm
```sh
> npm i peer-id
```
## Setup
### Node.js
```js
var PeerId = require('peer-id')
```
### Browser: Browserify, Webpack, other bundlers
The code published to npm that gets loaded on require is in fact a ES5
transpiled version with the right shims added. This means that you can require
it and use with your favourite bundler without having to adjust asset management
process.
```js
var PeerId = require('peer-id')
```
### Browser: `<script>` Tag
Loading this module through a script tag will make the `PeerId` obj available in
the global namespace.
```html
<script src="https://unpkg.com/peer-id/dist/index.min.js"></script>
<!-- OR -->
<script src="https://unpkg.com/peer-id/dist/index.js"></script>
```

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@ -1,6 +1,6 @@
{
"name": "peer-id",
"version": "0.8.5",
"version": "0.8.0",
"description": "IPFS Peer Id implementation in Node.js",
"main": "src/index.js",
"bin": "src/bin.js",
@ -14,7 +14,8 @@
"release-minor": "aegir-release --type minor",
"release-major": "aegir-release --type major",
"coverage": "aegir-coverage",
"coverage-publish": "aegir-coverage publish"
"coverage-publish": "aegir-coverage publish",
"docs": "aegir-docs"
},
"keywords": [
"IPFS"
@ -26,24 +27,21 @@
"test"
],
"engines": {
"node": ">=4.0.0",
"npm": ">=3.0.0"
"node": ">=4.0.0"
},
"bugs": {
"url": "https://github.com/libp2p/js-peer-id/issues"
},
"homepage": "https://github.com/libp2p/js-peer-id",
"devDependencies": {
"aegir": "^11.0.1",
"aegir": "^9.1.2",
"chai": "^3.5.0",
"dirty-chai": "^1.2.2",
"pre-commit": "^1.2.2"
"pre-commit": "^1.1.3"
},
"dependencies": {
"async": "^2.2.0",
"libp2p-crypto": "~0.8.7",
"lodash": "^4.17.4",
"multihashes": "~0.4.5"
"async": "^2.0.1",
"libp2p-crypto": "^0.7.0",
"multihashes": "^0.3.0"
},
"repository": {
"type": "git",
@ -53,11 +51,10 @@
"David Dias <daviddias.p@gmail.com>",
"David Dias <mail@daviddias.me>",
"Friedel Ziegelmayer <dignifiedquire@gmail.com>",
"Prashanth Chandra <coolshanth94@gmail.com>",
"Richard Littauer <richard.littauer@gmail.com>",
"Stephen Whitmore <stephen.whitmore@gmail.com>",
"greenkeeperio-bot <support@greenkeeper.io>",
"nginnever <ginneversource@gmail.com>",
"npmcdn-to-unpkg-bot <npmcdn-to-unpkg-bot@users.noreply.github.com>"
]
}
}

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@ -1,7 +1,3 @@
/*
* Id is an object representation of a peer Id. a peer Id is a multihash
*/
'use strict'
const mh = require('multihashes')
@ -9,7 +5,28 @@ const crypto = require('libp2p-crypto')
const assert = require('assert')
const waterfall = require('async/waterfall')
/**
* @name PeerIdJson
* @type {Object}
* @typedef {Object} PeerIdJson
* @param {string} id - `Base58` encoded peer id
* @param {string=} privKey - The RSA private key in protobuf format, encoded in `base64`.
* @param {string=} pubKey - The RSA public key in protobuf format, encoded in `base64`.
*/
/**
* A Peer ID is the SHA-256
* [multihash](https://github.com/multiformats/multihash) of a
* public key.
* @class PeerId
* @see [libp2p-crypto](htttps://github.com/libp2p/js-libp2p-crypto)
*/
class PeerId {
/**
* @param {Buffer} id
* @param {RSAPrivateKey=} privKey
* @param {RSAPublickKey=} pubKey
*/
constructor (id, privKey, pubKey) {
assert(Buffer.isBuffer(id), 'invalid id provided')
@ -17,24 +34,28 @@ class PeerId {
assert(privKey.public.bytes.equals(pubKey.bytes), 'inconsistent arguments')
}
this._id = id
this._idB58String = mh.toB58String(this.id)
/**
* @type {Buffer}
*/
this.id = id
this._privKey = privKey
this._pubKey = pubKey
}
get id () {
return this._id
}
set id (val) {
throw new Error('Id is immutable')
}
/**
* The private key of this id, if it exists.
*
* @type {RSAPrivateKey|undefined}
*/
get privKey () {
return this._privKey
}
/**
* The public key of this id, if it exists.
*
* @type {(RSAPublicKey|undefined)}
*/
get pubKey () {
if (this._pubKey) {
return this._pubKey
@ -45,187 +66,274 @@ class PeerId {
}
}
// Return the protobuf version of the public key,
// matching go ipfs formatting
/** Create the protobuf version of the public key,
* matching go-ipfs formatting.
*
* @returns {Buffer} - The marshalled public key
*/
marshalPubKey () {
if (this.pubKey) {
return crypto.marshalPublicKey(this.pubKey)
}
}
// Return the protobuf version of the private key,
// matching go ipfs formatting
/** Create the protobuf version of the private key,
* matching go-ipfs formatting.
*
* @returns {Buffer}
*/
marshalPrivKey () {
if (this.privKey) {
return crypto.marshalPrivateKey(this.privKey)
}
}
// pretty print
/**
* Alias for `toJSON`.
*
* @returns {PeerIdJson}
*/
toPrint () {
return this.toJSON()
}
// return the jsonified version of the key, matching the formatting
// of go-ipfs for its config file
/**
* Return the jsonified version of the key, matching the formatting
* of go-ipfs for its config file.
*
* @returns {PeerIdJson}
*/
toJSON () {
return {
id: this.toB58String(),
id: mh.toB58String(this.id),
privKey: toB64Opt(this.marshalPrivKey()),
pubKey: toB64Opt(this.marshalPubKey())
}
}
// encode/decode functions
/**
* Returns the Peer ID's `id` as a hex string.
*
* @returns {String}
*/
toHexString () {
return mh.toHexString(this.id)
}
/**
* Returns the Peer ID's `id` as a buffer.
*
* @returns {Buffer}
*/
toBytes () {
return this.id
}
/**
* Returns the Peer ID's `id` as a base58 string.
*
* @returns {String}
*/
toB58String () {
return this._idB58String
return mh.toB58String(this.id)
}
}
exports = module.exports = PeerId
// generation
exports.create = function (opts, callback) {
if (typeof opts === 'function') {
callback = opts
opts = {}
}
opts = opts || {}
opts.bits = opts.bits || 2048
waterfall([
(cb) => crypto.generateKeyPair('RSA', opts.bits, cb),
(privKey, cb) => privKey.public.hash((err, digest) => {
cb(err, digest, privKey)
})
], (err, digest, privKey) => {
if (err) {
return callback(err)
/**
* Create a new `PeerId` by generating a new public/private keypair.
*
* @param {Object=} opts - Configuration object.
* @param {number} [opts.bits=2048] - How many bits to use for the RSA key generation.
* @param {function(Error, PeerId)} callback - Node.js style callback.
* @returns {undefined}
*
* @example
* const PeerId = require('peer-id')
*
* PeerId.create((err, id) => {
* if (err) {
* throw err
* }
* console.log('id', JSON.stringify(id))
* })
*
*/
static create (opts, callback) {
if (typeof opts === 'function') {
callback = opts
opts = {}
}
opts = opts || {}
opts.bits = opts.bits || 2048
callback(null, new PeerId(digest, privKey))
})
}
exports.createFromHexString = function (str) {
return new PeerId(mh.fromHexString(str))
}
exports.createFromBytes = function (buf) {
return new PeerId(buf)
}
exports.createFromB58String = function (str) {
return new PeerId(mh.fromB58String(str))
}
// Public Key input will be a buffer
exports.createFromPubKey = function (key, callback) {
let buf = key
if (typeof buf === 'string') {
buf = new Buffer(key, 'base64')
}
if (typeof callback !== 'function') {
throw new Error('callback is required')
}
const pubKey = crypto.unmarshalPublicKey(buf)
pubKey.hash((err, digest) => {
if (err) {
return callback(err)
}
callback(null, new PeerId(digest, null, pubKey))
})
}
// Private key input will be a string
exports.createFromPrivKey = function (key, callback) {
let buf = key
if (typeof buf === 'string') {
buf = new Buffer(key, 'base64')
}
if (typeof callback !== 'function') {
throw new Error('callback is required')
}
waterfall([
(cb) => crypto.unmarshalPrivateKey(buf, cb),
(privKey, cb) => privKey.public.hash((err, digest) => {
cb(err, digest, privKey)
})
], (err, digest, privKey) => {
if (err) {
return callback(err)
}
callback(null, new PeerId(digest, privKey))
})
}
exports.createFromJSON = function (obj, callback) {
if (typeof callback !== 'function') {
throw new Error('callback is required')
}
const id = mh.fromB58String(obj.id)
const rawPrivKey = obj.privKey && new Buffer(obj.privKey, 'base64')
const rawPubKey = obj.pubKey && new Buffer(obj.pubKey, 'base64')
const pub = rawPubKey && crypto.unmarshalPublicKey(rawPubKey)
if (rawPrivKey) {
waterfall([
(cb) => crypto.unmarshalPrivateKey(rawPrivKey, cb),
(priv, cb) => priv.public.hash((err, digest) => {
cb(err, digest, priv)
}),
(privDigest, priv, cb) => {
if (pub) {
pub.hash((err, pubDigest) => {
cb(err, privDigest, priv, pubDigest)
})
} else {
cb(null, privDigest, priv)
}
}
], (err, privDigest, priv, pubDigest) => {
(cb) => crypto.generateKeyPair('RSA', opts.bits, cb),
(privKey, cb) => privKey.public.hash((err, digest) => {
cb(err, digest, privKey)
})
], (err, digest, privKey) => {
if (err) {
return callback(err)
}
if (pub && !privDigest.equals(pubDigest)) {
return callback(new Error('Public and private key do not match'))
}
if (id && !privDigest.equals(id)) {
return callback(new Error('Id and private key do not match'))
}
callback(null, new PeerId(id, priv, pub))
callback(null, new PeerId(digest, privKey))
})
} else {
callback(null, new PeerId(id, null, pub))
}
/**
* Creates a Peer ID from hex string representing the key's multihash.
*
* @param {string} str - Hex encoded id
* @returns {PeerId}
*/
static createFromHexString (str) {
return new PeerId(mh.fromHexString(str))
}
/**
* Creates a Peer ID from a buffer representing the key's multihash.
*
* @param {Buffer} buf
* @returns {PeerId}
*/
static createFromBytes (buf) {
return new PeerId(buf)
}
/**
* Creates a Peer ID from a `base58` string representing the
* key's multihash.
*
* @param {string} str - `base58` encoded id
* @returns {PeerId}
*/
static createFromB58String (str) {
return new PeerId(mh.fromB58String(str))
}
/**
* Creates a Peer ID from a buffer containing a public key.
*
* @param {string|Buffer} key
* @param {function(Error, PeerId)} callback
* @returns {undefined}
*/
static createFromPubKey (key, callback) {
let buf = key
if (typeof buf === 'string') {
buf = new Buffer(key, 'base64')
}
if (typeof callback !== 'function') {
throw new Error('callback is required')
}
const pubKey = crypto.unmarshalPublicKey(buf)
pubKey.hash((err, digest) => {
if (err) {
return callback(err)
}
callback(null, new PeerId(digest, null, pubKey))
})
}
/**
* Creates a Peer ID from a buffer containing a private key.
*
* @param {string|Buffer} key - The private key, if passed as
* string `base64` encoding is assumed.
* @param {function(Error, PeerId)} callback
* @returns {undefined}
*/
static createFromPrivKey (key, callback) {
let buf = key
if (typeof buf === 'string') {
buf = new Buffer(key, 'base64')
}
if (typeof callback !== 'function') {
throw new Error('callback is required')
}
waterfall([
(cb) => crypto.unmarshalPrivateKey(buf, cb),
(privKey, cb) => privKey.public.hash((err, digest) => {
cb(err, digest, privKey)
})
], (err, digest, privKey) => {
if (err) {
return callback(err)
}
callback(null, new PeerId(digest, privKey))
})
}
/**
* Import a `PeerId` from a serialized JSON object.
*
* @param {PeerIdJson} obj
* @param {function(Error, PeerId)} callback
* @returns {undefined}
*/
static createFromJSON (obj, callback) {
if (typeof callback !== 'function') {
throw new Error('callback is required')
}
const id = mh.fromB58String(obj.id)
const rawPrivKey = obj.privKey && new Buffer(obj.privKey, 'base64')
const rawPubKey = obj.pubKey && new Buffer(obj.pubKey, 'base64')
const pub = rawPubKey && crypto.unmarshalPublicKey(rawPubKey)
if (rawPrivKey) {
waterfall([
(cb) => crypto.unmarshalPrivateKey(rawPrivKey, cb),
(priv, cb) => priv.public.hash((err, digest) => {
cb(err, digest, priv)
}),
(privDigest, priv, cb) => {
if (pub) {
pub.hash((err, pubDigest) => {
cb(err, privDigest, priv, pubDigest)
})
} else {
cb(null, privDigest, priv)
}
}
], (err, privDigest, priv, pubDigest) => {
if (err) {
return callback(err)
}
if (pub && !privDigest.equals(pubDigest)) {
return callback(new Error('Public and private key do not match'))
}
if (id && !privDigest.equals(id)) {
return callback(new Error('Id and private key do not match'))
}
callback(null, new PeerId(id, priv, pub))
})
} else {
callback(null, new PeerId(id, null, pub))
}
}
}
exports.isPeerId = function (peerId) {
return Boolean(typeof peerId === 'object' &&
peerId._id &&
peerId._idB58String)
}
/**
* Convert a given `Buffer` to a `base64` encoded string.
* If no `val` is given it just returns `undefined`.
*
* @private
* @param {Buffer=} val
* @returns {string|undefined}
*/
function toB64Opt (val) {
if (val) {
return val.toString('base64')
}
}
exports = module.exports = PeerId

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@ -2,10 +2,7 @@
/* eslint-env mocha */
'use strict'
const chai = require('chai')
const dirtyChai = require('dirty-chai')
chai.use(dirtyChai)
const expect = chai.expect
const expect = require('chai').expect
const crypto = require('libp2p-crypto')
const mh = require('multihashes')
const parallel = require('async/parallel')
@ -26,33 +23,12 @@ describe('PeerId', () => {
it('create a new id', (done) => {
PeerId.create((err, id) => {
expect(err).to.not.exist()
expect(err).to.not.exist
expect(id.toB58String().length).to.equal(46)
done()
})
})
it('isPeerId', (done) => {
PeerId.create((err, id) => {
expect(err).to.not.exist()
expect(PeerId.isPeerId(id)).to.equal(true)
expect(PeerId.isPeerId('aaa')).to.equal(false)
expect(PeerId.isPeerId(new Buffer('batatas'))).to.equal(false)
done()
})
})
it('throws on changing the id', (done) => {
PeerId.create((err, id) => {
expect(err).to.not.exist()
expect(id.toB58String().length).to.equal(46)
expect(() => {
id.id = new Buffer('hello')
}).to.throw(/immutable/)
done()
})
})
it('recreate an Id from Hex string', () => {
const id = PeerId.createFromHexString(testIdHex)
expect(testIdBytes).to.deep.equal(id.id)
@ -70,7 +46,7 @@ describe('PeerId', () => {
it('Recreate from a Public Key', (done) => {
PeerId.createFromPubKey(testId.pubKey, (err, id) => {
expect(err).to.not.exist()
expect(err).to.not.exist
expect(testIdB58String).to.equal(id.toB58String())
done()
})
@ -78,12 +54,12 @@ describe('PeerId', () => {
it('Recreate from a Private Key', (done) => {
PeerId.createFromPrivKey(testId.privKey, (err, id) => {
expect(err).to.not.exist()
expect(err).to.not.exist
expect(testIdB58String).to.equal(id.toB58String())
const encoded = new Buffer(testId.privKey, 'base64')
PeerId.createFromPrivKey(encoded, (err, id2) => {
expect(err).to.not.exist()
expect(err).to.not.exist
expect(testIdB58String).to.equal(id2.toB58String())
done()
})
@ -92,10 +68,10 @@ describe('PeerId', () => {
it('Compare generated ID with one created from PubKey', (done) => {
PeerId.create((err, id1) => {
expect(err).to.not.exist()
expect(err).to.not.exist
PeerId.createFromPubKey(id1.marshalPubKey(), (err, id2) => {
expect(err).to.not.exist()
expect(err).to.not.exist
expect(id1.id).to.be.eql(id2.id)
done()
})
@ -104,9 +80,9 @@ describe('PeerId', () => {
it('Non-default # of bits', (done) => {
PeerId.create({ bits: 1024 }, (err, shortId) => {
expect(err).to.not.exist()
expect(err).to.not.exist
PeerId.create({ bits: 4096 }, (err, longId) => {
expect(err).to.not.exist()
expect(err).to.not.exist
expect(shortId.privKey.bytes.length).is.below(longId.privKey.bytes.length)
done()
})
@ -115,9 +91,9 @@ describe('PeerId', () => {
it('Pretty printing', (done) => {
PeerId.create((err, id1) => {
expect(err).to.not.exist()
expect(err).to.not.exist
PeerId.createFromPrivKey(id1.toPrint().privKey, (err, id2) => {
expect(err).to.not.exist()
expect(err).to.not.exist
expect(id1.toPrint()).to.be.eql(id2.toPrint())
done()
})
@ -131,14 +107,26 @@ describe('PeerId', () => {
describe('fromJSON', () => {
it('full node', (done) => {
PeerId.create({ bits: 1024 }, (err, id) => {
expect(err).to.not.exist()
PeerId.create({bits: 1024}, (err, id) => {
expect(err).to.not.exist
PeerId.createFromJSON(id.toJSON(), (err, other) => {
expect(err).to.not.exist()
expect(id.toB58String()).to.equal(other.toB58String())
expect(id.privKey.bytes).to.eql(other.privKey.bytes)
expect(id.pubKey.bytes).to.eql(other.pubKey.bytes)
expect(err).to.not.exist
expect(
id.toB58String()
).to.equal(
other.toB58String()
)
expect(
id.privKey.bytes
).to.deep.equal(
other.privKey.bytes
)
expect(
id.pubKey.bytes
).to.deep.equal(
other.pubKey.bytes
)
done()
})
})
@ -146,16 +134,16 @@ describe('PeerId', () => {
it('only id', (done) => {
crypto.generateKeyPair('RSA', 1024, (err, key) => {
expect(err).to.not.exist()
expect(err).to.not.exist
key.public.hash((err, digest) => {
expect(err).to.not.exist()
expect(err).to.not.exist
const id = PeerId.createFromBytes(digest)
expect(id.privKey).to.not.exist()
expect(id.pubKey).to.not.exist()
expect(id.privKey).to.not.exist
expect(id.pubKey).to.not.exist
PeerId.createFromJSON(id.toJSON(), (err, other) => {
expect(err).to.not.exist()
expect(err).to.not.exist
expect(
id.toB58String()
).to.equal(
@ -169,9 +157,9 @@ describe('PeerId', () => {
it('go interop', (done) => {
PeerId.createFromJSON(goId, (err, id) => {
expect(err).to.not.exist()
expect(err).to.not.exist
id.privKey.public.hash((err, digest) => {
expect(err).to.not.exist()
expect(err).to.not.exist
expect(
mh.toB58String(digest)
).to.be.eql(
@ -204,7 +192,7 @@ describe('PeerId', () => {
it('missmatch private - public key', (done) => {
k1.public.hash((err, digest) => {
expect(err).to.not.exist()
expect(err).to.not.exist
expect(
() => new PeerId(digest, k1, k2.public)
).to.throw(
@ -216,7 +204,7 @@ describe('PeerId', () => {
it('missmatch id - private - public key', (done) => {
k1.public.hash((err, digest) => {
expect(err).to.not.exist()
expect(err).to.not.exist
expect(
() => new PeerId(digest, k1, k3.public)
).to.throw(