180 lines
5.9 KiB
Nix
180 lines
5.9 KiB
Nix
{ stdenv, fetchFromGitHub, coq, mathcomp, coqPackages,
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recurseIntoAttrs }:
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with builtins // stdenv.lib;
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let current-mathcomp = mathcomp; in
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let
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# configuring packages
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param = {
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finmap = {
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version-sha256 = {
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"1.2.1" = "0jryb5dq8js3imbmwrxignlk5zh8gwfb1wr4b1s7jbwz410vp7zf";
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"1.2.0" = "0b6wrdr0d7rcnv86s37zm80540jl2wmiyf39ih7mw3dlwli2cyj4";
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"1.1.0" = "05df59v3na8jhpsfp7hq3niam6asgcaipg2wngnzxzqnl86srp2a";
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"1.0.0" = "0sah7k9qm8sw17cgd02f0x84hki8vj8kdz7h15i7rmz08rj0whpa";
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};
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description = "A finset and finmap library";
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};
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bigenough = {
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version-sha256 = {"1.0.0" = "10g0gp3hk7wri7lijkrqna263346wwf6a3hbd4qr9gn8hmsx70wg";};
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description = "A small library to do epsilon - N reasonning";
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};
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multinomials = {
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version-sha256 = {
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"1.2" = "1mh1w339dslgv4f810xr1b8v2w7rpx6fgk9pz96q0fyq49fw2xcq";
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"1.1" = "1q8alsm89wkc0lhcvxlyn0pd8rbl2nnxg81zyrabpz610qqjqc3s";
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"1.0" = "1qmbxp1h81cy3imh627pznmng0kvv37k4hrwi2faa101s6bcx55m";
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};
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description = "A Coq/SSReflect Library for Monoidal Rings and Multinomials";
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};
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analysis = {
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version-sha256 = {
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"0.2.2" = "1d5dwg9di2ppdzfg21zr0a691zigb5kz0lcw263jpyli1nrq7cvk";
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"0.2.0" = "1186xjxgns4ns1szyi931964bjm0mp126qzlv10mkqqgfw07nhrd";
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"0.1.0" = "0hwkr2wzy710pcyh274fcarzdx8sv8myp16pv0vq5978nmih46al";
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};
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description = "Analysis library compatible with Mathematical Components";
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};
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real-closed = {
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version-sha256 = {
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"1.0.3" = "1xbzkzqgw5p42dx1liy6wy8lzdk39zwd6j14fwvv5735k660z7yb";
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"1.0.2" = "0097pafwlmzd0gyfs31bxpi1ih04i72nxhn99r93aj20mn7mcsgl";
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"1.0.1" = "0j81gkjbza5vg89v4n9z598mfdbql416963rj4b8fzm7dp2r4rxg";
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};
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description = "Mathematical Components Library on real closed fields";
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};
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};
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versions = {
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"1.9.0" = {
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finmap.version = "1.2.1";
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bigenough.version = "1.0.0";
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analysis = {
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version = "0.2.2";
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core-deps = with coqPackages; [ mathcomp_1_9-field ];
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extra-deps = with coqPackages; [ mathcomp_1_9-finmap mathcomp_1_9-bigenough ];
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};
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multinomials = {};
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real-closed = {
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version = "1.0.3";
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core-deps = with coqPackages; [ mathcomp_1_9-field ];
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extra-deps = with coqPackages; [ mathcomp_1_9-bigenough ];
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};
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};
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"1.8.0" = {
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finmap.version = "1.2.1";
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bigenough.version = "1.0.0";
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analysis = {
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version = "0.2.2";
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core-deps = with coqPackages; [ mathcomp_1_8-field ];
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extra-deps = with coqPackages; [ mathcomp_1_8-finmap mathcomp_1_8-bigenough ];
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};
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multinomials = {
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version = "1.2";
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core-deps = with coqPackages; [ mathcomp_1_8-algebra ];
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extra-deps = with coqPackages; [ mathcomp_1_8-finmap mathcomp_1_8-bigenough ];
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};
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real-closed = {
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version = "1.0.3";
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core-deps = with coqPackages; [ mathcomp_1_8-field ];
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extra-deps = with coqPackages; [ mathcomp_1_8-bigenough ];
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};
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};
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"1.7.0" = {
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finmap.version = "1.1.0";
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bigenough.version = "1.0.0";
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analysis = {
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version = "0.1.0";
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core-deps = with coqPackages; [ mathcomp_1_7-field ];
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extra-deps = with coqPackages; [ mathcomp_1_7-finmap mathcomp_1_7-bigenough ];
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};
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multinomials = {
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version = "1.1";
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core-deps = with coqPackages; [ mathcomp_1_7-algebra ];
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extra-deps = with coqPackages; [ mathcomp_1_7-finmap_1_0 mathcomp_1_7-bigenough ];
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};
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real-closed = {
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version = "1.0.1";
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core-deps = with coqPackages; [ mathcomp_1_8-field ];
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extra-deps = with coqPackages; [ mathcomp_1_8-bigenough ];
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};
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};
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};
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# generic package generator
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packageGen = {
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# optional arguments
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src ? "",
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owner ? "math-comp",
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core-deps ? [ coqPackages.mathcomp-ssreflect ],
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extra-deps ? [],
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mathcomp ? current-mathcomp,
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compatibleCoqVersions ? null,
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license ? mathcomp.meta.license,
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# mandatory
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package, version ? "broken", version-sha256, description
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}:
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let
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theCompatibleCoqVersions = if compatibleCoqVersions == null
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then mathcomp.compatibleCoqVersions
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else compatibleCoqVersions;
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in
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{ "${package}" = let from = src; in
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stdenv.mkDerivation rec {
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inherit version;
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name = "coq${coq.coq-version}-mathcomp-${mathcomp.version}-${package}-${version}";
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src = if from == "" then fetchFromGitHub {
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owner = owner;
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repo = package;
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rev = version;
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sha256 = version-sha256."${version}";
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} else from;
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propagatedBuildInputs = [ coq mathcomp ] ++ extra-deps;
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installFlags = "-f Makefile.coq COQLIB=$(out)/lib/coq/${coq.coq-version}/";
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meta = {
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inherit description;
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inherit license;
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inherit (src.meta) homepage;
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inherit (mathcomp.meta) platforms;
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maintainers = [ stdenv.lib.maintainers.vbgl ];
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broken = (version == "broken");
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};
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passthru = {
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inherit version-sha256;
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compatibleCoqVersions = if meta.broken then _: false
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else theCompatibleCoqVersions;
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};
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};
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};
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current-versions = versions."${current-mathcomp.version}" or {};
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select = x: mapAttrs (n: pkg: {package = n;} // pkg) (recursiveUpdate param x);
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for-version = v: suffix: (mapAttrs' (n: pkg:
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{name = "mathcomp_${suffix}-${n}";
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value = (packageGen ({
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mathcomp = coqPackages."mathcomp_${suffix}";
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} // pkg))."${n}";})
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(select versions."${v}"));
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all = (for-version "1.7.0" "1_7") //
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(for-version "1.8.0" "1_8") //
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(for-version "1.9.0" "1_9") //
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(recurseIntoAttrs (mapDerivationAttrset dontDistribute (
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mapAttrs' (n: pkg: {name = "mathcomp-${n}"; value = (packageGen pkg)."${n}";})
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(select current-versions))));
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in
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{
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mathcompExtraGen = packageGen;
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mathcomp_1_7-finmap_1_0 =
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(packageGen (select {finmap = {version = "1.0.0";
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mathcomp = coqPackages.mathcomp_1_7;};
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}).finmap).finmap;
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multinomials = all.mathcomp-multinomials;
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} // all
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