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ci.nix
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ci.nix
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# 'supportedSystems' restricts the set of systems that we will evaluate for. Useful when you're evaluating
# on a machine with e.g. no way to build the Darwin IFDs you need!
{ ifdLevel # This is passed in from flake.nix
, checkMaterialization ? false
, system ? builtins.currentSystem
, evalSystem ? builtins.currentSystem or "x86_64-linux"
# NOTE: we apply checkMaterialization when defining nixpkgsArgs
, haskellNix ? import ./default.nix { inherit system ; }
}:
let
inherit (haskellNix) inputs;
inherit (inputs.nixpkgs) lib;
inherit
(import ./ci-lib.nix { inherit lib; })
dimension
platformFilterGeneric
filterAttrsOnlyRecursive;
# short names for nixpkgs versions
nixpkgsVersions = {
"R2205" = inputs.nixpkgs-2205;
"R2211" = inputs.nixpkgs-2211;
"R2305" = inputs.nixpkgs-2305;
"R2311" = inputs.nixpkgs-2311;
"R2405" = inputs.nixpkgs-2405;
"unstable" = inputs.nixpkgs-unstable;
};
nixpkgsArgs = {
# set checkMaterialization as per top-level argument
overlays = [
haskellNix.overlay
(final: prev: {
haskell-nix = prev.haskell-nix // {
inherit checkMaterialization;
extraPkgconfigMappings = prev.haskell-nix.extraPkgconfigMappings or {} // {
"libsodium" = [ "libsodium-18" ];
};
};
libsodium-18 = (final.callPackage (inputs.nixpkgs-2311 + "/pkgs/development/libraries/libsodium") {}).overrideAttrs (_: { dontDisableStatic = true; });
})
];
# Needed for dwarf tests
config = haskellNix.config // {
permittedInsecurePackages = [
"libdwarf-20210528"
"libdwarf-20181024"
"dwarfdump-20181024"
];
};
};
compilerNixNames = nixpkgsName: nixpkgs: builtins.listToAttrs (
(lib.mapAttrsToList (compiler-nix-name: runTests: {
name = nixpkgs.haskell-nix.resolve-compiler-name compiler-nix-name;
value = { inherit runTests; };
}) (
# GHC version to cache and whether to run the tests against them.
# This list of GHC versions should include everything for which we
# have a ./materialized/ghcXXX directory containing the materialized
# cabal-install and nix-tools plans. When removing a ghc version
# from here (so that is no longer cached) also remove ./materialized/ghcXXX.
# Update supported-ghc-versions.md to reflect any changes made here.
nixpkgs.lib.optionalAttrs (nixpkgsName == "R2405") {
ghc96 = false;
ghc98 = false;
} // nixpkgs.lib.optionalAttrs (nixpkgsName == "unstable") {
ghc810 = true;
ghc92 = false;
ghc94 = false;
ghc96 = true;
ghc98 = true;
ghc98llvm = false;
ghc910 = true;
ghc910llvm = true;
ghc912X = true;
ghc913 = true;
})));
crossSystems = nixpkgsName: nixpkgs: compiler-nix-name:
# We need to use the actual nixpkgs version we're working with here, since the values
# of 'lib.systems.examples' are not understood between all versions
let lib = nixpkgs.lib;
in lib.optionalAttrs (nixpkgsName == "unstable"
&& (__match ".*llvm" compiler-nix-name == null)
&& ((system == "x86_64-linux" && !builtins.elem compiler-nix-name ["ghc902" "ghc928" "ghc948"])
|| (system == "aarch64-linux" && !builtins.elem compiler-nix-name ["ghc902" "ghc928" "ghc948"])
|| (system == "x86_64-darwin" && !builtins.elem compiler-nix-name ["ghc902" "ghc928" "ghc948" "ghc966" "ghc982" "ghc983" "ghc984"])
|| (system == "aarch64-darwin" && !builtins.elem compiler-nix-name ["ghc902" "ghc928" "ghc948" "ghc966" "ghc982" "ghc983" "ghc984"])
)) {
inherit (lib.systems.examples) ghcjs;
} // lib.optionalAttrs (
(__match ".*llvm" compiler-nix-name == null)
&& ((system == "x86_64-linux" && !builtins.elem compiler-nix-name ["ghc902" "ghc928"]) # Including GHC HEAD here because the patches for rts/RtsSymbols.c no longer apply and mingwW64 GHC build fails without them
|| (system == "x86_64-darwin" && builtins.elem compiler-nix-name []))) { # TODO add ghc versions when we have more darwin build capacity
inherit (lib.systems.examples) mingwW64;
} // lib.optionalAttrs (nixpkgsName == "unstable"
&& (__match ".*llvm" compiler-nix-name == null)
&& ((system == "x86_64-linux" && !builtins.elem compiler-nix-name ["ghc8107" "ghc902" "ghc928" "ghc948"])
|| (system == "x86_64-darwin" && builtins.elem compiler-nix-name []))) { # TODO add ghc versions when we have more darwin build capacity
inherit (lib.systems.examples) ucrt64;
} // lib.optionalAttrs (system == "x86_64-linux" && nixpkgsName == "unstable" && !builtins.elem compiler-nix-name ["ghc902" "ghc928" "ghc948"]) {
# Musl cross only works on linux
# aarch64 cross only works on linux
inherit (lib.systems.examples) musl64 aarch64-multiplatform;
} // lib.optionalAttrs (system == "x86_64-linux" && nixpkgsName == "unstable" && builtins.elem compiler-nix-name ["ghc927" "ghc928"]) {
# TODO fix this for the compilers we build with hadrian (ghc >=9.4)
inherit (lib.systems.examples) aarch64-multiplatform-musl;
} // lib.optionalAttrs (system == "aarch64-linux" && nixpkgsName == "unstable" && !builtins.elem compiler-nix-name ["ghc8107" "ghc902"]) {
inherit (lib.systems.examples) aarch64-multiplatform-musl;
};
isDisabled = d: d.meta.disabled or false;
in
dimension "Nixpkgs version" nixpkgsVersions (nixpkgsName: pinnedNixpkgsSrc:
let evalPackages = import pinnedNixpkgsSrc (nixpkgsArgs // { system = evalSystem; });
in dimension "GHC version" (compilerNixNames nixpkgsName evalPackages) (compiler-nix-name: {runTests}:
let pkgs = import pinnedNixpkgsSrc (nixpkgsArgs // { inherit system; });
build = import ./build.nix { inherit pkgs evalPackages ifdLevel compiler-nix-name haskellNix; };
platformFilter = platformFilterGeneric pkgs system;
in filterAttrsOnlyRecursive (_: v: platformFilter v && !(isDisabled v)) ({
# Native builds
# TODO: can we merge this into the general case by picking an appropriate "cross system" to mean native?
native = pkgs.recurseIntoAttrs ({
roots = pkgs.haskell-nix.roots' compiler-nix-name ifdLevel;
ghc = pkgs.buildPackages.haskell-nix.compiler.${compiler-nix-name};
} // pkgs.lib.optionalAttrs runTests {
inherit (build) tests tools maintainer-scripts maintainer-script-cache;
} // pkgs.lib.optionalAttrs (ifdLevel >= 3) {
hello = (pkgs.haskell-nix.hackage-package { name = "hello"; version = "1.0.0.2"; inherit evalPackages compiler-nix-name; }).getComponent "exe:hello";
});
}
//
dimension "Cross system" (crossSystems nixpkgsName evalPackages compiler-nix-name) (crossSystemName: crossSystem:
# Cross builds
let pkgs = import pinnedNixpkgsSrc (nixpkgsArgs // { inherit system crossSystem; });
build = import ./build.nix { inherit pkgs evalPackages ifdLevel compiler-nix-name haskellNix; };
in pkgs.recurseIntoAttrs (pkgs.lib.optionalAttrs (ifdLevel >= 1) ({
roots = pkgs.haskell-nix.roots' compiler-nix-name ifdLevel;
ghc = pkgs.buildPackages.haskell-nix.compiler.${compiler-nix-name};
# TODO: look into cross compiling ghc itself
# ghc = pkgs.haskell-nix.compiler.${compiler-nix-name};
# TODO: look into making tools work when cross compiling
# inherit (build) tools;
} // pkgs.lib.optionalAttrs runTests {
inherit (build) tests;
})
# GHCJS builds its own template haskell runner.
// pkgs.lib.optionalAttrs (ifdLevel >= 2 && crossSystemName != "ghcjs")
pkgs.haskell-nix.iserv-proxy-exes.${compiler-nix-name}
// pkgs.lib.optionalAttrs (ifdLevel >= 3) {
hello = (pkgs.haskell-nix.hackage-package { name = "hello"; version = "1.0.0.2"; inherit evalPackages compiler-nix-name; }).getComponent "exe:hello";
})
))
)
)