SIMD-accelerated distances, dot products, matrix ops, geospatial & geometric kernels for 16 numeric types — from 6-bit floats to 64-bit complex — across x86, Arm, RISC-V, and WASM, with bindings for Python, Rust, C, C++, Swift, JS, and Go 📐
A high-performance, cross-platform framework for analyzing and reverse engineering .NET PE executables. Built in pure Rust, `dotscope` provides comprehensive tooling for parsing CIL (Common Intermediate Language) bytecode, metadata structures, and disassembling .NET assemblies without requiring Windows or the .NET runtime.
A high-performance, cross-platform framework for analyzing and reverse engineering .NET PE executables. Built in pure Rust, `dotscope` provides comprehensive tooling for parsing CIL (Common Intermediate Language) bytecode, metadata structures, and disassembling .NET assemblies without requiring Windows or the .NET runtime.
Native Go version of HighwayHash with optimized assembly implementations on Intel and ARM. Able to process over 10 GB/sec on a single core on Intel CPUs - https://en.wikipedia.org/wiki/HighwayHash
Accelerate SHA256 computations in pure Go using AVX512, SHA Extensions for x86 and ARM64 for ARM. On AVX512 it provides an up to 8x improvement (over 3 GB/s per core). SHA Extensions give a performance boost of close to 4x over native.
Accelerate aggregated MD5 hashing performance up to 8x for AVX512 and 4x for AVX2. Useful for server applications that need to compute many MD5 sums in parallel.