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📙 Heavily optimized cryptography algorithms for embedded devices.
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aes
chacha20poly1305
ed25519-donna
gui
tests
tools
.gitignore
.travis.yml
AUTHORS
CONTRIBUTORS
LICENSE
Makefile
README.md
address.c
address.h
base32.c
base32.h
base58.c
base58.h
bignum.c
bignum.h
bip32.c
bip32.h
bip39.c
bip39.h
bip39_english.h
blake256.c
blake256.h
blake2_common.h
blake2b.c
blake2b.h
blake2s.c
blake2s.h
cash_addr.c
cash_addr.h
check_mem.h
curves.c
curves.h
ecdsa.c
ecdsa.h
groestl.c
groestl.h
groestl_internal.h
hasher.c
hasher.h
hmac.c
hmac.h
memzero.c
memzero.h
nem.c
nem.h
nem_serialize.h
nist256p1.c
nist256p1.h
nist256p1.table
options.h
pbkdf2.c
pbkdf2.h
rand.c
rand.h
rc4.c
rc4.h
rfc6979.c
rfc6979.h
ripemd160.c
ripemd160.h
script.c
script.h
secp256k1.c
secp256k1.h
secp256k1.table
segwit_addr.c
segwit_addr.h
setup.py
sha2.c
sha2.h
sha3.c
sha3.h

README.md

trezor-crypto

Build Status gitter

Heavily optimized cryptography algorithms for embedded devices.

These include:

  • AES/Rijndael encryption/decryption
  • Big Number (256 bit) Arithmetics
  • BIP32 Hierarchical Deterministic Wallets
  • BIP39 Mnemonic code
  • ECDSA signing/verifying (supports secp256k1 and nist256p1 curves, uses RFC6979 for deterministic signatures)
  • ECDSA public key derivation
  • Base32 (RFC4648 and custom alphabets)
  • Base58 address representation
  • Ed25519 signing/verifying (also SHA3 and Keccak variants)
  • ECDH using secp256k1, nist256p1 and Curve25519
  • HMAC-SHA256 and HMAC-SHA512
  • PBKDF2
  • RIPEMD-160
  • SHA1
  • SHA2-256/SHA2-512
  • SHA3/Keccak
  • BLAKE2s/BLAKE2b
  • Chacha20-Poly1305
  • unit tests (using Check - check.sf.net; in test_check.c)
  • tests against OpenSSL (in test_openssl.c)

Distibuted under MIT License.

Some parts of the library come from external sources:

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