merge-script 2d30d398f9 Merge BlockstreamResearch/secp256k1-zkp#322: Upstream PRs 1579, 1631, 1633, 1634, 1641, 1650, 1646, 1654
e3bddfa750 modules: Port bitcoin-core/secp256k1#1579 to zkp-specific code (DarkWindman)
13d389629a CONTRIBUTING: mention that `EXIT_` codes should be used (Sebastian Falbesoner)
c855581728 test, bench, precompute_ecmult: use `EXIT_...` constants for `main` return values (Sebastian Falbesoner)
965393fcea examples: use `EXIT_...` constants for `main` return values (Sebastian Falbesoner)
b682dbcf84 README: add instructions for verifying GPG signatures (James O'Beirne)
a82287fb85 schnorrsig: clear out masked secret key in BIP-340 nonce function (Sebastian Falbesoner)
2ac9f558c4 doc: Improve cmake instructions in README (Fabian Jahr)
39705450eb Fix some misspellings (Nicolas Iooss)
c97059f594 release cleanup: bump version after 0.6.0 (Jonas Nick)
39d5dfd542 release: prepare for 0.6.0 (Jonas Nick)
df2eceb279 build: add ellswift.md and musig.md to release tarball (Jonas Nick)
a306bb7e90 tools: fix check-abi.sh after cmake out locations were changed (Jonas Nick)
145868a84d Do not export `secp256k1_musig_nonce_gen_internal` (Hennadii Stepanov)
765ef53335 Clear _gej instances after point multiplication to avoid potential leaks (Sebastian Falbesoner)
349e6ab916 Introduce separate _clear functions for hash module (Tim Ruffing)
99cc9fd6d0 Don't rely on memset to set signed integers to 0 (Tim Ruffing)
97c57f42ba Implement various _clear() functions with secp256k1_memclear() (Tim Ruffing)
9bb368d146 Use secp256k1_memclear() to clear stack memory instead of memset() (Tim Ruffing)
e3497bbf00 Separate between clearing memory and setting to zero in tests (Tim Ruffing)
d79a6ccd43 Separate secp256k1_fe_set_int( . , 0 ) from secp256k1_fe_clear() (Tim Ruffing)
1c08126222 Add secp256k1_memclear() for clearing secret data (Tim Ruffing)
e7d384488e Don't clear secrets in pippenger implementation (Tim Ruffing)

Pull request description:

  Merge bitcoin-core/secp256k1#1579: Clear sensitive memory without getting optimized out (revival of #636)
  Merge bitcoin-core/secp256k1#1631: release: prepare for 0.6.0
  Merge bitcoin-core/secp256k1#1633: release cleanup: bump version after 0.6.0
  Merge bitcoin-core/secp256k1#1634: Fix some misspellings
  Merge bitcoin-core/secp256k1#1641: doc: Improve cmake instructions in README
  Merge bitcoin-core/secp256k1#1650: schnorrsig: clear out masked secret key in BIP-340 nonce function
  Merge bitcoin-core/secp256k1#1646: README: add instructions for verifying GPG signatures
  Merge bitcoin-core/secp256k1#1654: use `EXIT_` constants over magic numbers for indicating program execution status

  This PR can be recreated with `./contrib/sync-upstream.sh -b master range c0d9480`.

  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.

  ### zkp fixes for Valgrind compatibility
  PR #1579 introduced `secp256k1_memclear` that marks cleared memory as undefined. Updated rangeproof to use `memset`/`secp256k1_scalar_set_int` for initialization, keeping `memclear` only for cleanup.

ACKs for top commit:
  real-or-random:
    ACK e3bddfa750

Tree-SHA512: 7a089d1c6cb34dd0706d53a9a92c0aecc6183a60c77de147ba97db9133bb96031aa2178e0cc07017c76fb30048697c1d976eb7b6c206fa50984d28487cf023f6
2026-02-20 17:01:42 +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

Added features:

  • Experimental module for ECDSA adaptor signatures.
  • Experimental module for ECDSA sign-to-contract.
  • 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

Obtaining and verifying

The git tag for each release (e.g. v0.6.0) is GPG-signed by one of the maintainers. For a fully verified build of this project, it is recommended to obtain this repository via git, obtain the GPG keys of the signing maintainer(s), and then verify the release tag's signature using git.

This can be done with the following steps:

  1. Obtain the GPG keys listed in SECURITY.md.
  2. If possible, cross-reference these key IDs with another source controlled by its owner (e.g. social media, personal website). This is to mitigate the unlikely case that incorrect content is being presented by this repository.
  3. Clone the repository:
    git clone https://github.com/bitcoin-core/secp256k1
    
  4. Check out the latest release tag, e.g.
    git checkout v0.6.0
    
  5. Use git to verify the GPG signature:
    % git tag -v v0.6.0 | grep -C 3 'Good signature'
    
    gpg: Signature made Mon 04 Nov 2024 12:14:44 PM EST
    gpg:                using RSA key 4BBB845A6F5A65A69DFAEC234861DBF262123605
    gpg: Good signature from "Jonas Nick <jonas@n-ck.net>" [unknown]
    gpg:                 aka "Jonas Nick <jonasd.nick@gmail.com>" [unknown]
    gpg: WARNING: This key is not certified with a trusted signature!
    gpg:          There is no indication that the signature belongs to the owner.
    Primary key fingerprint: 36C7 1A37 C9D9 88BD E825  08D9 B1A7 0E4F 8DCD 0366
         Subkey fingerprint: 4BBB 845A 6F5A 65A6 9DFA  EC23 4861 DBF2 6212 3605
    

Building with Autotools

$ ./autogen.sh       # Generate a ./configure script
$ ./configure        # Generate a build system
$ make               # Run the actual build process
$ make check         # Run the test suite
$ sudo make install  # Install the library into the system (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-rangeproof.

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

$ cmake -B build              # Generate a build system in subdirectory "build"
$ cmake --build build         # Run the actual build process
$ ctest --test-dir build      # Run the test suite
$ sudo cmake --install build  # Install the library into the system (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 -B build -LH or ccmake -B build 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 -B build -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 -B build -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 -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 and ECDH 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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