forked from mirrors/nixpkgs
97d48a5426
svn path=/nixpkgs/trunk/; revision=31468
51 lines
1.5 KiB
Nix
51 lines
1.5 KiB
Nix
{stdenv, fetchsvn, writeScript, ocaml, findlib, camlp5}:
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let
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start_script = ''
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#!/bin/sh
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cd "$out/lib/hol_light"
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exec ${ocaml}/bin/ocaml -I "$(ocamlfind query camlp5)" -init make.ml
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'';
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in
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stdenv.mkDerivation {
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name = "hol_light-20120109";
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src = fetchsvn {
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url = http://hol-light.googlecode.com/svn/trunk;
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rev = "118";
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sha256 = "97e72dad731338328c031421512c26d440a989ea083f3ae34820eb8413aff495";
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};
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buildInputs = [ ocaml findlib camlp5 ];
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buildPhase = ''
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make pa_j.ml
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ocamlc -c \
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-pp "camlp5r pa_lexer.cmo pa_extend.cmo q_MLast.cmo" \
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-I "$(ocamlfind query camlp5)" \
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pa_j.ml
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'';
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installPhase = ''
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ensureDir "$out/lib/hol_light" "$out/bin"
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cp -a . $out/lib/hol_light
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echo "${start_script}" > "$out/bin/hol_light"
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chmod a+x "$out/bin/hol_light"
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'';
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meta = {
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description = "An interactive theorem prover based on Higher-Order Logic.";
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longDescription = ''
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HOL Light is a computer program to help users prove interesting mathematical
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theorems completely formally in Higher-Order Logic. It sets a very exacting
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standard of correctness, but provides a number of automated tools and
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pre-proved mathematical theorems (e.g., about arithmetic, basic set theory and
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real analysis) to save the user work. It is also fully programmable, so users
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can extend it with new theorems and inference rules without compromising its
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soundness.
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'';
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homepage = http://www.cl.cam.ac.uk/~jrh13/hol-light/;
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license = "BSD";
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};
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}
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