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8c99aab3ea
The old hard-coded lists are now used to test system parsing. In the process, make an `assertTrue` in release lib for eval tests; also use it in release-cross
174 lines
6.3 KiB
Nix
174 lines
6.3 KiB
Nix
# Define the list of system with their properties. Only systems tested for
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# Nixpkgs are listed below
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with import ../lists.nix;
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with import ../types.nix;
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with import ../attrsets.nix;
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let
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lib = import ../default.nix;
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setTypesAssert = type: pred:
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mapAttrs (name: value:
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#assert pred value;
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setType type ({ inherit name; } // value));
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setTypes = type: setTypesAssert type (_: true);
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in
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rec {
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isSignificantByte = isType "significant-byte";
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significantBytes = setTypes "significant-byte" {
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bigEndian = {};
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littleEndian = {};
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};
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isCpuType = isType "cpu-type";
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cpuTypes = with significantBytes; setTypesAssert "cpu-type"
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(x: elem x.bits [8 16 32 64 128]
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&& (if 8 < x.bits
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then isSignificantByte x.significantByte
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else !(x ? significantByte)))
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{
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arm = { bits = 32; significantByte = littleEndian; family = "arm"; };
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armv5tel = { bits = 32; significantByte = littleEndian; family = "arm"; };
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armv6l = { bits = 32; significantByte = littleEndian; family = "arm"; };
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armv7a = { bits = 32; significantByte = littleEndian; family = "arm"; };
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armv7l = { bits = 32; significantByte = littleEndian; family = "arm"; };
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aarch64 = { bits = 64; significantByte = littleEndian; family = "arm"; };
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i686 = { bits = 32; significantByte = littleEndian; family = "x86"; };
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x86_64 = { bits = 64; significantByte = littleEndian; family = "x86"; };
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mips64el = { bits = 32; significantByte = littleEndian; family = "mips"; };
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powerpc = { bits = 32; significantByte = bigEndian; family = "powerpc"; };
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};
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isVendor = isType "vendor";
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vendors = setTypes "vendor" {
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apple = {};
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pc = {};
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unknown = {};
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};
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isExecFormat = isType "exec-format";
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execFormats = setTypes "exec-format" {
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aout = {}; # a.out
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elf = {};
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macho = {};
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pe = {};
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unknown = {};
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};
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isKernelFamily = isType "kernel-family";
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kernelFamilies = setTypes "kernel-family" {
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bsd = {};
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unix = {};
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windows-nt = {};
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dos = {};
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};
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isKernel = x: isType "kernel" x;
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kernels = with execFormats; with kernelFamilies; setTypesAssert "kernel"
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(x: isExecFormat x.execFormat && all isKernelFamily (attrValues x.families))
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{
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cygwin = { execFormat = pe; families = { inherit /*unix*/ windows-nt; }; };
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darwin = { execFormat = macho; families = { inherit unix; }; };
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freebsd = { execFormat = elf; families = { inherit unix bsd; }; };
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linux = { execFormat = elf; families = { inherit unix; }; };
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netbsd = { execFormat = elf; families = { inherit unix bsd; }; };
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none = { execFormat = unknown; families = { inherit unix; }; };
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openbsd = { execFormat = elf; families = { inherit unix bsd; }; };
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solaris = { execFormat = elf; families = { inherit unix; }; };
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win32 = { execFormat = pe; families = { inherit dos; }; };
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};
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isAbi = isType "abi";
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abis = setTypes "abi" {
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gnu = {};
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msvc = {};
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eabi = {};
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androideabi = {};
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unknown = {};
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};
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isSystem = isType "system";
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mkSystem = { cpu, vendor, kernel, abi }:
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assert isCpuType cpu && isVendor vendor && isKernel kernel && isAbi abi;
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setType "system" {
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inherit cpu vendor kernel abi;
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};
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is64Bit = matchAttrs { cpu = { bits = 64; }; };
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is32Bit = matchAttrs { cpu = { bits = 32; }; };
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isi686 = matchAttrs { cpu = cpuTypes.i686; };
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isx86_64 = matchAttrs { cpu = cpuTypes.x86_64; };
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isDarwin = matchAttrs { kernel = kernels.darwin; };
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isLinux = matchAttrs { kernel = kernels.linux; };
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isUnix = matchAttrs { kernel = { families = { inherit (kernelFamilies) unix; }; }; };
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isWindows = s: matchAttrs { kernel = { families = { inherit (kernelFamilies) windows-nt; }; }; } s
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|| matchAttrs { kernel = { families = { inherit (kernelFamilies) dos; }; }; } s;
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mkSkeletonFromList = l: {
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"2" = { cpu = elemAt l 0; kernel = elemAt l 1; };
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"4" = { cpu = elemAt l 0; vendor = elemAt l 1; kernel = elemAt l 2; abi = elemAt l 3; };
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"3" = # Awkwards hacks, beware!
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if elemAt l 1 == "apple"
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then { cpu = elemAt l 0; vendor = "apple"; kernel = elemAt l 2; }
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else if (elemAt l 1 == "linux") || (elemAt l 2 == "gnu")
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then { cpu = elemAt l 0; kernel = elemAt l 1; abi = elemAt l 2; }
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else throw "Target specification with 3 components is ambiguous";
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}.${toString (length l)}
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or (throw "system string has invalid number of hyphen-separated components");
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# This should revert the job done by config.guess from the gcc compiler.
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mkSystemFromSkeleton = { cpu
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, # Optional, but fallback too complex for here.
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# Inferred below instead.
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vendor ? assert false; null
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, kernel
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, # Also inferred below
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abi ? assert false; null
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} @ args: let
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getCpu = name:
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attrByPath [name] (throw "Unknown CPU type: ${name}")
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cpuTypes;
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getVendor = name:
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attrByPath [name] (throw "Unknown vendor: ${name}")
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vendors;
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getKernel = name:
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attrByPath [name] (throw "Unknown kernel: ${name}")
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kernels;
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getAbi = name:
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attrByPath [name] (throw "Unknown ABI: ${name}")
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abis;
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system = rec {
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cpu = getCpu args.cpu;
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vendor =
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/**/ if args ? vendor then getVendor args.vendor
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else if isDarwin system then vendors.apple
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else if isWindows system then vendors.pc
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else vendors.unknown;
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kernel = getKernel args.kernel;
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abi =
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/**/ if args ? abi then getAbi args.abi
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else if isLinux system then abis.gnu
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else if isWindows system then abis.gnu
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else abis.unknown;
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};
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in mkSystem system;
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mkSystemFromString = s: mkSystemFromSkeleton (mkSkeletonFromList (lib.splitString "-" s));
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doubleFromSystem = { cpu, vendor, kernel, abi, ... }: "${cpu.name}-${kernel.name}";
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tripleFromSystem = { cpu, vendor, kernel, abi, ... } @ sys: assert isSystem sys; let
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optAbi = lib.optionalString (abi != abis.unknown) "-${abi.name}";
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in "${cpu.name}-${vendor.name}-${kernel.name}${optAbi}";
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}
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