merge-script 211323d6b7 Merge BlockstreamResearch/secp256k1-zkp#318: Upstream PRs 1574, 1576, 1575, 1577, 1578, 1583, 1586, 1600, 1604, 1554
7c987ec89e cmake: Call `enable_testing()` unconditionally (Hennadii Stepanov)
6aa576515e cmake: Delete `CTest` module (Hennadii Stepanov)
292310fbb2 doc: fix typos in `secp256k1_ecdsa_{recoverable_,}signature` API description (Sebastian Falbesoner)
421ed1b46f cmake: Introduce `SECP256K1_APPEND_LDFLAGS` variable (Hennadii Stepanov)
9b0f37bff1 fix: remove duplicate 'the' from header file comment (Epic Curious)
fa67b6752d refactor: Use array initialization for unterminated strings (MarcoFalke)
e34b476730 ci: Bump GCC_SNAPSHOT_MAJOR to 15 (maflcko)
7057d3c9af ci: Silent Homebrew's noisy reinstall warnings (Hennadii Stepanov)
c3e40d75db release cleanup: bump version after 0.5.1 (Jonas Nick)
40d87b8e45 release: prepare for 0.5.1 (Jonas Nick)
5770226176 changelog: clarify CMake option (Jonas Nick)
759bd4bbc8 doc: mention `needs-changelog` github label in release process (Jonas Nick)
763d938cf0 ci: only enable extrakeys module when schnorrsig is enabled (Jonas Nick)
af551ab9db tests: do not use functions from extrakeys module (Jonas Nick)

Pull request description:

  Merge bitcoin-core/secp256k1#1574: Fix compilation when extrakeys module isn't enabled
  Merge bitcoin-core/secp256k1#1576: doc: mention `needs-changelog` github label in release process
  Merge bitcoin-core/secp256k1#1575: release: prepare for 0.5.1
  Merge bitcoin-core/secp256k1#1577: release cleanup: bump version after 0.5.1
  Merge bitcoin-core/secp256k1#1578: ci: Silent Homebrew's noisy reinstall warnings
  Merge bitcoin-core/secp256k1#1583: ci: Bump GCC_SNAPSHOT_MAJOR to 15
  Merge bitcoin-core/secp256k1#1586: fix: remove duplicate 'the' from header file comment
  Merge bitcoin-core/secp256k1#1600: cmake: Introduce `SECP256K1_APPEND_LDFLAGS` variable
  Merge bitcoin-core/secp256k1#1604: doc: fix typos in `secp256k1_ecdsa_{recoverable_,}signature` API description
  Merge bitcoin-core/secp256k1#1554: cmake: Clean up testing code

  This PR can be recreated with `./contrib/sync-upstream.sh -b master range 4c57c7a`.

  Tips:
   * Use `git show --remerge-diff <pr-branch>` to show the conflict resolution in the merge commit.
   * Use `git read-tree --reset -u <pr-branch>` to replay these resolutions during the conflict resolution stage when recreating the PR branch locally.
     Be aware that this may discard your index as well as the uncommitted changes and untracked files in your worktree.

ACKs for top commit:
  real-or-random:
    ACK 551b5dd415

Tree-SHA512: f05d1f21fbd373929666174e0396c46212f28a0ae819e244b7c6b620d0e9aee9ae11bad1d1616cafc34dd375c3635c7637ce25123c66ce92f247ae0fb063be9a
2026-02-13 08:39:06 +01:00
2013-05-09 15:24:32 +02:00

libsecp256k1-zkp

Dependencies: None

A fork of libsecp256k1 with support for advanced and experimental features such as Confidential Assets and MuSig2

Added features:

  • Experimental module for ECDSA adaptor signatures.
  • Experimental module for ECDSA sign-to-contract.
  • Experimental module for MuSig2.
  • Experimental module for Confidential Assets (Pedersen commitments, range proofs, and surjection proofs).
  • Experimental module for Bulletproofs++ range proofs.
  • Experimental module for address whitelisting.

Experimental features are made available for testing and review by the community. The APIs of these features should not be considered stable.

Build steps

Building with Autotools

$ ./autogen.sh
$ ./configure
$ make
$ make check  # run the test suite
$ sudo make install  # optional

To compile optional modules (such as Schnorr signatures), you need to run ./configure with additional flags (such as --enable-module-schnorrsig). Run ./configure --help to see the full list of available flags. For experimental modules, you will also need --enable-experimental as well as a flag for each individual module, e.g. --enable-module-musig.

Building with CMake (experimental)

To maintain a pristine source tree, CMake encourages to perform an out-of-source build by using a separate dedicated build tree.

Building on POSIX systems

$ mkdir build && cd build
$ cmake ..
$ cmake --build .
$ ctest  # run the test suite
$ sudo cmake --install .  # optional

To compile optional modules (such as Schnorr signatures), you need to run cmake with additional flags (such as -DSECP256K1_ENABLE_MODULE_SCHNORRSIG=ON). Run cmake .. -LH to see the full list of available flags.

Cross compiling

To alleviate issues with cross compiling, preconfigured toolchain files are available in the cmake directory. For example, to cross compile for Windows:

$ cmake .. -DCMAKE_TOOLCHAIN_FILE=../cmake/x86_64-w64-mingw32.toolchain.cmake

To cross compile for Android with NDK (using NDK's toolchain file, and assuming the ANDROID_NDK_ROOT environment variable has been set):

$ cmake .. -DCMAKE_TOOLCHAIN_FILE="${ANDROID_NDK_ROOT}/build/cmake/android.toolchain.cmake" -DANDROID_ABI=arm64-v8a -DANDROID_PLATFORM=28

Building on Windows

To build on Windows with Visual Studio, a proper generator must be specified for a new build tree.

The following example assumes using of Visual Studio 2022 and CMake v3.21+.

In "Developer Command Prompt for VS 2022":

>cmake -G "Visual Studio 17 2022" -A x64 -S . -B build
>cmake --build build --config RelWithDebInfo

Usage examples

Usage examples can be found in the examples directory. To compile them you need to configure with --enable-examples.

To compile the Schnorr signature, ECDH and MuSig examples, you need to enable the corresponding module by providing a flag to the configure script, for example --enable-module-schnorrsig.

Benchmark

If configured with --enable-benchmark (which is the default), binaries for benchmarking the libsecp256k1-zkp functions will be present in the root directory after the build.

To print the benchmark result to the command line:

$ ./bench_name

To create a CSV file for the benchmark result :

$ ./bench_name | sed '2d;s/ \{1,\}//g' > bench_name.csv

Reporting a vulnerability

See SECURITY.md

Contributing to libsecp256k1

See CONTRIBUTING.md

Description
Experimental fork of libsecp256k1 with support for pedersen commitments and range proofs.
Readme 15 MiB
Languages
C 94.6%
Python 1.9%
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