mirror of
https://github.com/bitcoin/bitcoin.git
synced 2026-05-18 18:04:44 +02:00
7873633b5752621548b8d38fc175f5a5f2f1e5d6
50cc6abMerge pull request #178941e221Add tests for handling of the nonce function in signing.10c81ffMerge pull request #1777688e34Add magnitude limits to secp256k1_fe_verify to ensure that it's own tests function correctly.4ee4f7aMerge pull request #17670ae0d2Use secp256k1_fe_equal_var in secp256k1_fe_sqrt_var.7767b4dMerge pull request #1759ab9335Add a reference consistency test to ge_tests.60571c6Rework group testsd26e26fAvoid constructing an invalid signature with probability 1:2^256.b450c34Merge pull request #163d57cae9Merge pull request #15449ee0dbAdd _normalizes_to_zero_var varianteed599dAdd _fe_normalizes_to_zero methodd7174edWeak normalization for secp256k1_fe_equal0295f0aweak normalizationbbd5ba7Use rfc6979 as default nonce generation functionb37fbc2Implement SHA256 / HMAC-SHA256 / RFC6979.c6e7f4e[API BREAK] Use a nonce-generation function instead of a noncecf0c48bMerge pull request #169603c33bMake signing fail if a too small buffer is passed.6d16606Merge pull request #1687277fd7Remove GMP field implementatione99c4c4Merge pull request #12313278f6Add explanation about how inversion can be avoidedce7eb6fOptimize verification: avoid field inversea098f78Merge pull request #16038acd01Merge pull request #1656a59012Make git ignore bench_recover when configured with benchmark enabled1ba4a60Configure options reorganization3c0f246Merge pull request #157808dd9bMerge pull request #1568dc75e9Merge pull request #15828ade27build: nuke bashisms5190079build: use subdir-objects for automake8336040build: disable benchmark by default git-subtree-dir: src/secp256k1 git-subtree-split:50cc6ab062
libsecp256k1
Optimized C library for EC operations on curve secp256k1.
This library is experimental, so use at your own risk.
Features:
- Low-level field and group operations on secp256k1.
- ECDSA signing/verification and key generation.
- Adding/multiplying private/public keys.
- Serialization/parsing of private keys, public keys, signatures.
- Very efficient implementation.
Implementation details
- General
- Avoid dynamic memory usage almost everywhere.
- Field operations
- Optimized implementation of arithmetic modulo the curve's field size (2^256 - 0x1000003D1).
- Using 5 52-bit limbs (including hand-optimized assembly for x86_64, by Diederik Huys).
- Using 10 26-bit limbs.
- Using GMP.
- Field inverses and square roots using a sliding window over blocks of 1s (by Peter Dettman).
- Optimized implementation of arithmetic modulo the curve's field size (2^256 - 0x1000003D1).
- Scalar operations
- Optimized implementation without data-dependent branches of arithmetic modulo the curve's order.
- Using 4 64-bit limbs (relying on __int128 support in the compiler).
- Using 8 32-bit limbs.
- Optimized implementation without data-dependent branches of arithmetic modulo the curve's order.
- Group operations
- Point addition formula specifically simplified for the curve equation (y^2 = x^3 + 7).
- Use addition between points in Jacobian and affine coordinates where possible.
- Use a unified addition/doubling formula where necessary to avoid data-dependent branches.
- Point multiplication for verification (aP + bG).
- Use wNAF notation for point multiplicands.
- Use a much larger window for multiples of G, using precomputed multiples.
- Use Shamir's trick to do the multiplication with the public key and the generator simultaneously.
- Optionally use secp256k1's efficiently-computable endomorphism to split the multiplicands into 4 half-sized ones first.
- Point multiplication for signing
- Use a precomputed table of multiples of powers of 16 multiplied with the generator, so general multiplication becomes a series of additions.
- Slice the precomputed table in memory per byte, so memory access to the table becomes uniform.
- No data-dependent branches
- The precomputed tables add and eventually subtract points for which no known scalar (private key) is known, preventing even an attacker with control over the private key used to control the data internally.
Build steps
libsecp256k1 is built using autotools:
$ ./autogen.sh
$ ./configure
$ make
$ sudo make install # optional
Description
Languages
C++
64.6%
Python
18.8%
C
12.9%
CMake
1.2%
Shell
0.9%
Other
1.3%