Caleb James DeLisle e51647ed75 nope, actually apples can't do AVX at all 9 tahun lalu
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crypto_hash a3203ade2c More algorithms, also remove accidently added directory 10 tahun lalu
crypto_hashblocks a3203ade2c More algorithms, also remove accidently added directory 10 tahun lalu
crypto_onetimeauth dd47cf9ca4 merge in the mips32r2 assembly poly1305 implementation 9 tahun lalu
crypto_scalarmult a3203ade2c More algorithms, also remove accidently added directory 10 tahun lalu
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crypto_stream a3203ade2c More algorithms, also remove accidently added directory 10 tahun lalu
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node_build e51647ed75 nope, actually apples can't do AVX at all 9 tahun lalu
okcompilers 82ae5ffb2b actually make use of the mips32r2 poly1305 impl 9 tahun lalu
randombytes 8919badedb First new dev effort 10 tahun lalu
tests b5923f700e Set return type in `main` to remove OS X warnings 10 tahun lalu
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README.md

cNaCl

If you would like to be confusing, you could pronounce it sea-salt

This is a fork NaCl by Daniel J. Bernstein and Tanja Lange. The build has been ported to cmake so it can be cross compiled and build output is reliable. Since it uses cmake, it could theoretically be built on windows but this has not been tested. It does compile using mingw32.

How do I make this thing work?

mkdir cbuild
cd cbuild
cmake ..
make

Ok now how about cross compiling?

mkdir cbuildw32
cd cbuildw32
cmake -DCMAKE_TOOLCHAIN_FILE=../CMakeWindows.txt ..
make

Why fork?

NaCl builds using a shell script called ./do. This script does compiling, testing, measuring and selection of the best implementation of each algorithm for the given machine. It also generates the header files which will be used.

The problems with ./do are it's slow, it tries compiling with multiple different compiler profiles, it's very platform independent but it doesn't run on Windows and most importantly, with compiling, testing and measuring so tightly bound, it is impossible to cross compile for a different operating system.

How it works

The first time you build for a new ABI, it will trigger the traditional nacl ./do script. What cNaCl does is parse the resulting headers from the ./do build and create a plan so that it can repeat roughly the same build.

If there is already a plan for the given ABI, the build uses this plan and the build is very fast.

Plans are stored in ./cmake/plans/ and I will be adding plans as I find new ones.

What else is new?

There is a problem with the ./do build which prevents it from running on some ARM based machines, this was fixed by adding a more lax method for measuring CPU speed as a fall back.

#EOF#