mirror of
https://github.com/NixOS/nixpkgs.git
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5fe80e686a
Semi-automatic update generated by https://github.com/ryantm/nixpkgs-update tools. This update was made based on information from https://repology.org/metapackage/gprolog/versions
69 lines
2.2 KiB
Nix
69 lines
2.2 KiB
Nix
{ stdenv, fetchurl }:
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stdenv.mkDerivation rec {
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name = "gprolog-1.4.5";
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src = fetchurl {
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urls = [
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"mirror://gnu/gprolog/${name}.tar.gz"
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"http://www.gprolog.org/${name}.tar.gz"
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];
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sha256 = "0z4cc42n3k6i35b8mr816iwsvrpxshw6d7dgz6s2h1hy0l7g1p5z";
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};
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hardeningDisable = stdenv.lib.optional stdenv.isi686 "pic";
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patchPhase = ''
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sed -i -e "s|/tmp/make.log|$TMPDIR/make.log|g" src/Pl2Wam/check_boot
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'';
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preConfigure = ''
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cd src
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configureFlagsArray=(
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"--with-install-dir=$out"
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"--without-links-dir"
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"--with-examples-dir=$out/share/${name}/examples"
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"--with-doc-dir=$out/share/${name}/doc"
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)
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'';
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postInstall = ''
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mv -v $out/[A-Z]* $out/gprolog.ico $out/share/${name}/
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'';
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doCheck = true;
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meta = {
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homepage = https://www.gnu.org/software/gprolog/;
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description = "GNU Prolog, a free Prolog compiler with constraint solving over finite domains";
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license = stdenv.lib.licenses.lgpl3Plus;
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longDescription = ''
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GNU Prolog is a free Prolog compiler with constraint solving
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over finite domains developed by Daniel Diaz.
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GNU Prolog accepts Prolog+constraint programs and produces
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native binaries (like gcc does from a C source). The obtained
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executable is then stand-alone. The size of this executable can
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be quite small since GNU Prolog can avoid to link the code of
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most unused built-in predicates. The performances of GNU Prolog
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are very encouraging (comparable to commercial systems).
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Beside the native-code compilation, GNU Prolog offers a
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classical interactive interpreter (top-level) with a debugger.
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The Prolog part conforms to the ISO standard for Prolog with
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many extensions very useful in practice (global variables, OS
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interface, sockets,...).
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GNU Prolog also includes an efficient constraint solver over
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Finite Domains (FD). This opens contraint logic programming to
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the user combining the power of constraint programming to the
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declarativity of logic programming.
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'';
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maintainers = [ stdenv.lib.maintainers.peti ];
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platforms = stdenv.lib.platforms.gnu ++ stdenv.lib.platforms.linux;
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};
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}
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