2017-07-12 05:13:52 +02:00
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# cox
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2019-06-25 22:19:59 +02:00
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[![Build Status](https://travis-ci.org/didactic-drunk/cox.svg?branch=master)](https://travis-ci.org/didactic-drunk/cox)
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2017-07-12 05:13:52 +02:00
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2019-06-25 22:19:59 +02:00
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Updated Crystal bindings for the [libsodium API](https://libsodium.gitbook.io/doc/)
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2017-07-12 05:13:52 +02:00
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Given a recipients public key, you can encrypt and sign a message for them. Upon
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receipt, they can decrypt and authenticate the message as having come from you.
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## Installation
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2019-06-27 06:10:42 +02:00
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**[Optionally Install libsodium.](https://download.libsodium.org/doc/installation/)**
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A recent version of libsodium is automatically downloaded and compiled if you don't install your own version.
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2017-07-12 05:30:58 +02:00
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2017-07-12 05:13:52 +02:00
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Add this to your application's `shard.yml`:
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```yaml
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dependencies:
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cox:
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2019-06-25 22:19:59 +02:00
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github: didactic-drunk/cox
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2017-07-12 05:13:52 +02:00
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```
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2019-06-27 06:10:42 +02:00
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## Features
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- Public-Key Cryptography
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- [x] Crypto Box Easy
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- [ ] Sealed Box
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- [x] Combined Signatures
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- [x] Detached Signatures
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- Secret-Key Cryptography
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- [x] Secret Box
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- [ ] Salsa20
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- [ ] XSalsa20
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- [ ] ChaCha20
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- [ ] XChaCha20
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- Hashing
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- [x] Blake2b
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- [ ] SipHash
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- Password Hashing
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- [x] Argon2 (Use for new applications)
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- [ ] Scrypt (For compatibility with older applications)
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- Other
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- [x] Key Derivation
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- [ ] One time auth
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Several libsodium API's are already provided by Crystal:
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* SHA-2 (Use [OpenSSL::Digest](https://crystal-lang.org/api/latest/OpenSSL/Digest.html))
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* HMAC SHA-2 (Use [OpenSSL::HMAC](https://crystal-lang.org/api/latest/OpenSSL/HMAC.html))
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* Random (Use [Random::Secure](https://crystal-lang.org/api/latest/Random/Secure.html))
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2017-07-12 05:13:52 +02:00
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## Usage
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```crystal
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require "cox"
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data = "Hello World!"
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# Alice is the sender
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alice = Cox::KeyPair.new
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# Bob is the recipient
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bob = Cox::KeyPair.new
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# Encrypt a message for Bob using his public key, signing it with Alice's
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# secret key
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nonce, encrypted = Cox.encrypt(data, bob.public, alice.secret)
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# Decrypt the message using Bob's secret key, and verify its signature against
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# Alice's public key
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decrypted = Cox.decrypt(encrypted, nonce, alice.public, bob.secret)
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String.new(decrypted) # => "Hello World!"
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2019-06-19 10:46:42 +02:00
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```
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2018-02-12 08:18:45 +01:00
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2019-06-27 06:10:42 +02:00
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### Public key signing
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```crystal
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message = "Hello World!"
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signing_pair = Cox::SignKeyPair.new
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# Sign the message
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signature = Cox.sign_detached(message, signing_pair.secret)
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# And verify
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Cox.verify_detached(signature, message, signing_pair.public) # => true
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```
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2019-06-27 06:10:42 +02:00
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### Secret Key Encryption
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```crystal
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key = Cox::SecretKey.random
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message = "foobar"
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encrypted, nonce = key.encrypt_easy message
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# On the other side.
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key = Cox::SecretKey.new key
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message = key.decrypt_easy encrypted, nonce
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```
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2019-06-27 06:10:42 +02:00
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### Blake2b
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```crystal
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key = Bytes.new Cox::Blake2B::KEY_SIZE
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salt = Bytes.new Cox::Blake2B::SALT_SIZE
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personal = Bytes.new Cox::Blake2B::PERSONAL_SIZE
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out_size = 64 # bytes between Cox::Blake2B::OUT_SIZE_MIN and Cox::Blake2B::OUT_SIZE_MAX
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data = "data".to_slice
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# output_size, key, salt, and personal are optional.
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digest = Cox::Blake2b.new out_size, key: key, salt: salt, personal: personal
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digest.update data
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output = d.hexdigest
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digest.reset # Reuse existing object to hash again.
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digest.update data
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output = d.hexdigest
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```
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2019-06-27 06:10:42 +02:00
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### Key derivation
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```crystal
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kdf = Cox::Kdf.new
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# kdf.derive(8_byte_context, subkey_size, subkey_id)
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subkey1 = kdf.derive "context1", 16, 0
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subkey2 = kdf.derive "context1", 16, 1
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subkey3 = kdf.derive "context2", 32, 0
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subkey4 = kdf.derive "context2", 64, 1
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```
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2019-06-27 06:10:42 +02:00
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### Password Hashing
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```crystal
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pwhash = Cox::Pwhash.new
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pwhash.memlimit = Cox::Pwhash::MEMLIMIT_MIN
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pwhash.opslimit = Cox::Pwhash::OPSLIMIT_MIN
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pass = "1234"
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hash = pwhash.hash_str pass
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pwhash.verify hash, pass
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```
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2019-05-28 23:31:31 +02:00
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2019-06-25 21:40:58 +02:00
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Use `examples/pwhash_selector.cr` to help choose ops/mem limits.
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2019-06-27 18:34:23 +02:00
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Example output:
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Ops limit →
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| | 1 | 4 | 16 | 64 | 256 | 1024 | 4096 | 16384 | 65536 | 262144 | 1048576 |
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| -------- | ------- | ------- | ------- | ------- | ------- | ------- | ------- | ------- | ------- | ------- | ------- |
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| 8K | | | | | | | | | | 0.542s | 2.114s |
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| 32K | | | | | | | | | 0.513s | 2.069s |
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| 128K | | | | | | | | 0.530s | 2.121s |
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| 512K | | | | | | | 0.566s | 2.237s |
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| 2048K | | | | | | 0.567s | 2.290s |
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| 8192K | | | | | 0.670s | 2.542s |
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| 32768K | | | | 0.684s | 2.777s |
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| 131072K | | | 0.805s | 3.106s |
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| 524288K | 0.504s | 1.135s | 3.661s |
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| 2097152K | 2.119s |
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2017-07-12 05:13:52 +02:00
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## Contributing
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2019-06-25 22:19:59 +02:00
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1. Fork it ( https://github.com/didactic-drunk/cox/fork )
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2017-07-12 05:13:52 +02:00
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2. Create your feature branch (git checkout -b my-new-feature)
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3. Commit your changes (git commit -am 'Add some feature')
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4. Push to the branch (git push origin my-new-feature)
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5. Create a new Pull Request
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## Contributors
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2019-06-25 22:19:59 +02:00
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- [andrewhamon](https://github.com/andrewhamon) Andrew Hamon - creator, former maintainer
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2018-02-12 08:18:45 +01:00
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- [dorkrawk](https://github.com/dorkrawk) Dave Schwantes - contributor
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2019-06-25 22:19:59 +02:00
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- [didactic-drunk](https://github.com/didactic-drunk) - current maintainer
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