2021-03-21 19:46:20 +01:00
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{ lib, stdenv, fetchurl }:
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2021-07-17 20:37:27 +02:00
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stdenv.mkDerivation rec {
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2021-03-21 19:46:20 +01:00
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pname = "bearssl";
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2021-07-17 20:37:27 +02:00
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version = "0.6";
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2021-03-21 19:46:20 +01:00
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src = fetchurl {
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url = "https://www.bearssl.org/bearssl-${version}.tar.gz";
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2021-07-17 20:37:27 +02:00
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sha256 = "057zhgy9w4y8z2996r0pq5k2k39lpvmmvz4df8db8qa9f6hvn1b7";
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2021-03-21 19:46:20 +01:00
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};
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outputs = [ "bin" "lib" "dev" "out" ];
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enableParallelBuilding = true;
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installPhase = ''
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runHook preInstall
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install -D build/brssl $bin/brssl
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install -D build/testcrypto $bin/testcrypto
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install -Dm644 build/libbearssl.so $lib/lib/libbearssl.so
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install -Dm644 build/libbearssl.a $lib/lib/libbearssl.a
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install -Dm644 -t $dev/include inc/*.h
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touch $out
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runHook postInstall
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'';
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meta = {
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homepage = "https://www.bearssl.org/";
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description = "An implementation of the SSL/TLS protocol written in C";
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longDescription = ''
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BearSSL is an implementation of the SSL/TLS protocol (RFC 5246)
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written in C. It aims at offering the following features:
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* Be correct and secure. In particular, insecure protocol versions and
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choices of algorithms are not supported, by design; cryptographic
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algorithm implementations are constant-time by default.
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* Be small, both in RAM and code footprint. For instance, a minimal
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server implementation may fit in about 20 kilobytes of compiled code
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and 25 kilobytes of RAM.
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* Be highly portable. BearSSL targets not only “big” operating systems
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like Linux and Windows, but also small embedded systems and even
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special contexts like bootstrap code.
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* Be feature-rich and extensible. SSL/TLS has many defined cipher
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suites and extensions; BearSSL should implement most of them, and
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allow extra algorithm implementations to be added afterwards,
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possibly from third parties.
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'';
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license = lib.licenses.mit;
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platforms = lib.platforms.all;
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maintainers = [ lib.maintainers.Profpatsch ];
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};
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}
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