Crates.io | cmac |
lib.rs | cmac |
version | 0.8.0-rc.1 |
created_at | 2017-07-22 19:24:45.664415+00 |
updated_at | 2025-09-03 02:28:36.365193+00 |
description | Generic implementation of Cipher-based Message Authentication Code |
homepage | |
repository | https://github.com/RustCrypto/MACs |
max_upload_size | |
id | 24548 |
size | 66,140 |
Generic implementation of Cipher-based Message Authentication Code (CMAC), otherwise known as OMAC1.
We will use AES-128 block cipher from the aes
crate.
To get the authentication code:
use aes::Aes128;
use cmac::{digest::KeyInit, Cmac, Mac};
// Create `Mac` trait implementation, namely CMAC-AES128
let mut mac = Cmac::<Aes128>::new_from_slice(b"very secret key.").unwrap();
mac.update(b"input message");
// `result` has type `Output` which is a thin wrapper around array of
// bytes for providing constant time equality check
let result = mac.finalize();
// To get underlying array use the `into_bytes` method, but be careful,
// since incorrect use of the tag value may permit timing attacks which
// defeat the security provided by the `Output` wrapper
let tag_bytes = result.into_bytes();
To verify the message:
use aes::Aes128;
use cmac::{digest::KeyInit, Cmac, Mac};
let mut mac = Cmac::<Aes128>::new_from_slice(b"very secret key.").unwrap();
mac.update(b"input message");
# let tag_bytes = mac.clone().finalize().into_bytes();
// `verify` will return `Ok(())` if tag is correct, `Err(MacError)` otherwise
mac.verify(&tag_bytes).unwrap();
Licensed under either of:
at your option.
Unless you explicitly state otherwise, any contribution intentionally submitted for inclusion in the work by you, as defined in the Apache-2.0 license, shall be dual licensed as above, without any additional terms or conditions.