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Popular libraries with at least some ECC support:
- [NSS](https://hg.mozilla.org/projects/nss)
- - [libgcrypt](https://www.gnupg.org/related_software/libgcrypt/)
- [mbedTLS](https://tls.mbed.org/)
+ - [LibreSSL](https://www.libressl.org/)
- [Nettle](http://www.lysator.liu.se/~nisse/nettle/)
- [OpenSSL (FIPS mode)](https://www.openssl.org/docs/fipsnotes.html)
- [Microsoft .NET crypto](https://docs.microsoft.com/en-us/dotnet/standard/security/cryptography-model)
# Supported libraries
+Libraries that ECTester can test.
+
- [BouncyCastle](https://bouncycastle.org/java.html)
- Java
- Works with the short Weierstrass curve model.
@@ -71,6 +73,23 @@ mkdir build && cd build
cmake -DBUILD_SHARED_LIBS=1 -GNinja ..
ninja
```
+ - [Crypto++](https://cryptopp.com/)
+ - C++
+ - For prime field curves:
+ - Uses projective coordinates and sliding window scalar multiplication algorithm.
+ - For binary field curves:
+ - Uses affine coordinates and sliding window scalar multiplication algorithm.
+ - [libtomcrypt](http://www.libtom.net/LibTomCrypt/)
+ - C
+ - Uses Jacobian coordinates.
+ - Sliding window scalar multiplication algorithm.
+ - [libgcrypt](https://www.gnupg.org/related_software/libgcrypt/)
+ - C
+ - Only supports prime field curves.
+ - Uses short Weierstrass, Montgomery and Twisted Edwards models.
+ - Uses left-to-right double-and-add always scalar multiplication and Jacobian coordinates in short Weierstrass form.
+ - Uses Montgomery ladder and X-only in Montgomery form.
+ - Uses left-to-right double-and-add always scalar multiplication in Twisted Edwards form.
- [Botan](https://botan.randombit.net/)
- C++
- Uses blinded(randomized) Montgomery ladder.
@@ -78,16 +97,6 @@ ninja
- <https://hyperelliptic.org/EFD/g1p/auto-shortw-jacobian-3.html#doubling-dbl-1986-cc>
- <https://eprint.iacr.org/2015/657>
- ECTester supports v2.4.0 and up.
- - [libtomcrypt](http://www.libtom.net/LibTomCrypt/)
- - C
- - Uses Jacobian coordinates.
- - Sliding window scalar multiplication algorithm.
- - [Crypto++](https://cryptopp.com/)
- - C++
- - For prime field curves:
- - Uses projective coordinates and sliding window scalar multiplication algorithm.
- - For binary field curves:
- - Uses affine coordinates and sliding window scalar multiplication algorithm.
- [Microsoft CNG](https://msdn.microsoft.com/en-us/library/windows/desktop/aa376210(v=vs.85).aspx)
- C API.
- Closed source.