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Author | SHA1 | Date | |
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Félix Baylac-Jacqué | 39b98f330a |
112
ReproTest.hs
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112
ReproTest.hs
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#!/usr/bin/env nix-shell
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#!nix-shell -i runhaskell -p "haskellPackages.ghcWithPackages(p: with p; [ relude optparse-applicative process ])" -p nix -p diffoscope
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{-# LANGUAGE NoImplicitPrelude #-}
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE BangPatterns #-}
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import Relude
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import Data.Maybe
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import GHC.IO.Handle
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import Control.Monad.Except
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import Control.DeepSeq
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import Options.Applicative
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import Data.Text hiding (foldl')
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import qualified Data.Text as T
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import qualified Data.Text.IO as T
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import qualified System.Exit as E
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import System.Process
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data Config = Config
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{ pkgName :: Text,
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ghcPath :: Text,
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diffOutDir :: Text,
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nbRepro :: Int
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}
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data ReproStatus = ReproStatus IsReproducible ReproPaths
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type IsReproducible = Bool
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type ReproPaths = [Text]
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type StorePath = Text
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type NixError = Text
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main :: IO ()
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main = do
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c <- execParser opts
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rs <- runExceptT $ repro c
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case rs of
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Left err -> T.putStrLn err >> exitFailure
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Right (ReproStatus True xs) -> T.putStrLn "The build seems to be reproducible" >> exitSuccess
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Right (ReproStatus False xs) -> do
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runDiffoscope c xs
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T.putStrLn $ "Cannot Reproduce build.\n" <> unwords xs
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T.putStrLn $ "See diffoscope report for more details: " <> diffOutDir c
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where
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opts = info (configParser <**> helper)
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( fullDesc
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<> header "ReproTest.hs - Test the GHC binary reproducibility for a hackage package"
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)
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configParser :: Parser Config
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configParser = Config
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<$> strOption (long "package-name" <> short 'p' <> help "Hackage package to test.")
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<*> strOption (long "ghc-nixexpr-path" <> short 'e' <> help "Path to the nix derivation retrieving the custom GHC checkpout you want to use.")
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<*> strOption (long "report-dir" <> short 'o' <> help "Directory in which you want to store the diff output in case of a failing test." <> showDefault <> value "./diff-out")
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<*> option auto (long "nb-repro" <> short 'n' <> help "How much reproduction iterations we want to perform." <> showDefault <> value 3)
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repro :: (MonadIO m) => Config -> ExceptT NixError m ReproStatus
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repro c = do
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-- 1. Nix instantiate derivation
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(eci, drvPath) <- streamRunCmd "nix-instantiate"
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[
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"--arg", "hs-pkg-name", "\"" <> pkgName c <> "\"",
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"--arg", "ghcSrcDrv", ghcPath c,
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"./repro.nix"
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] True
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-- 2. nix-store --realize /nix/store/xxx.drv
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(_, p1) <- streamRunCmd "nix-store"
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["--realise", "--quiet", drvPath] True
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-- 3. nix-store --realize --check /nix/store/xxx.drv
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(ecr2, p2) <- repeatRepro c drvPath
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-- 4. If exit code > 1 => Just two repro paths
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pure $ ReproStatus (ecr2 == E.ExitSuccess) [p1, p2]
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repeatRepro :: (MonadIO m) => Config -> Text -> ExceptT NixError m (E.ExitCode, StorePath)
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repeatRepro c drv = go $ nbRepro c
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where
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go (!i) = do
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(ecr2, p2) <- streamRunCmd "nix-store"
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["--realise", "--quiet", "-K", "--check", drv] False
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if ecr2 /= E.ExitSuccess || i < 1
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then pure (ecr2, p2)
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else go $ i - 1
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runDiffoscope :: Config -> ReproPaths -> IO ()
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runDiffoscope c rp = callProcess "diffoscope"
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$ unpack <$> [ "--html-dir", diffOutDir c ] <> rp
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-- Partially vendored from Shask
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-- TODO:
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-- - Handle custom Exp stacks in Shask.
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-- - Determine whether the out parsing should be part of the Shask API or not.
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-- - Release Shask.
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streamRunCmd :: (MonadIO m) => Text -> [Text] -> Bool -> ExceptT NixError m (E.ExitCode, StorePath)
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streamRunCmd cmd args fail = do
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liftIO . T.putStr $ "[+] " <> cmd <> " " <> unwords args <> "\n\n"
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(ec, out) <- liftIO $ withCreateProcess p progressFn
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when (ec /= E.ExitSuccess && fail) . throwError $ "Failed to run " <> cmd <> " " <> unwords args
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liftIO $ T.putStr $ " " <> "DONE\n\n"
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return (force ec, force . T.filter (/= '\n') $ out)
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where
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p = (proc (unpack cmd) (unpack <$> args)) { std_out = CreatePipe, std_err = CreatePipe }
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progressFn _ (Just hout) (Just herr) ph = go
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where
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go = do
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eof <- hIsEOF herr
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unless eof $ T.hGetLine herr >>= T.putStrLn
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mec <- getProcessExitCode ph
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case mec of
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(Just ec) -> T.hGetContents hout >>= \out -> pure (ec, out)
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Nothing -> go
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progressFn _ _ _ ph = error "Cannot open subprocess IO handles"
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11
default.nix
11
default.nix
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@ -2,12 +2,5 @@
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hs-pkg-name ? "wcwidth",
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ghcSrc ? /home/ninjatrappeur/Code/perso/haskell/ghc
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}:
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let
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ghcOverlay =
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import ./overlays/ghc.nix {
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inherit ghcSrc pkgs;
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};
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nixpkgsConfig = { overlays = [ ghcOverlay ]; };
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nixpkgsSrc = (import ./nix/sources.nix).nixpkgs;
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pkgs = import nixpkgsSrc nixpkgsConfig;
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in pkgs.customGhcHEAD."${hs-pkg-name}"
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import ./repro.nix { inherit hs-pkg-name ghcSrc; }
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7
examples/ghc-src.nix
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7
examples/ghc-src.nix
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let
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pkgs = import (import ../nix/sources.nix).nixpkgs {};
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in pkgs.fetchgit {
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url = "https://gitlab.haskell.org/ghc/ghc.git/";
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rev = "40c71c2cf38b4e134d81b7184a4d5e02949ae70c";
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sha256 = "04h9rcyzm9w3an1z00hjs062dp7dl19b8pkyxjsypr7a2i9dmvkb";
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}
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14
repro.nix
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14
repro.nix
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{
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hs-pkg-name ? "wcwidth",
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ghcSrcDrv ? ./examples/ghc.nix
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}:
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let
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ghcSrc = import ghcSrcDrv;
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ghcOverlay =
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import ./overlays/ghc.nix {
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inherit ghcSrc pkgs;
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};
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nixpkgsConfig = { overlays = [ ghcOverlay ]; };
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nixpkgsSrc = (import ./nix/sources.nix).nixpkgs;
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pkgs = import nixpkgsSrc nixpkgsConfig;
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in pkgs.haskellPackages."${hs-pkg-name}"
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