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ProjectPlanning.hs
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ProjectPlanning.hs
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{-# LANGUAGE CPP, RecordWildCards, NamedFieldPuns, RankNTypes #-}
{-# LANGUAGE ViewPatterns #-}
{-# LANGUAGE TypeFamilies #-}
{-# LANGUAGE NoMonoLocalBinds #-}
{-# LANGUAGE DeriveDataTypeable #-}
{-# LANGUAGE DeriveFunctor #-}
-- | Planning how to build everything in a project.
--
module Distribution.Client.ProjectPlanning (
-- * elaborated install plan types
ElaboratedInstallPlan,
ElaboratedConfiguredPackage(..),
ElaboratedPlanPackage,
ElaboratedSharedConfig(..),
ElaboratedReadyPackage,
BuildStyle(..),
CabalFileText,
-- * Producing the elaborated install plan
rebuildProjectConfig,
rebuildInstallPlan,
-- * Build targets
availableTargets,
AvailableTarget(..),
AvailableTargetStatus(..),
TargetRequested(..),
ComponentTarget(..),
SubComponentTarget(..),
showComponentTarget,
nubComponentTargets,
-- * Selecting a plan subset
pruneInstallPlanToTargets,
TargetAction(..),
pruneInstallPlanToDependencies,
CannotPruneDependencies(..),
-- * Utils required for building
pkgHasEphemeralBuildTargets,
elabBuildTargetWholeComponents,
-- * Setup.hs CLI flags for building
setupHsScriptOptions,
setupHsConfigureFlags,
setupHsConfigureArgs,
setupHsBuildFlags,
setupHsBuildArgs,
setupHsReplFlags,
setupHsReplArgs,
setupHsTestFlags,
setupHsTestArgs,
setupHsBenchFlags,
setupHsBenchArgs,
setupHsCopyFlags,
setupHsRegisterFlags,
setupHsHaddockFlags,
packageHashInputs,
-- * Path construction
binDirectoryFor,
binDirectories
) where
import Prelude ()
import Distribution.Client.Compat.Prelude
import Distribution.Client.ProjectPlanning.Types as Ty
import Distribution.Client.PackageHash
import Distribution.Client.RebuildMonad
import Distribution.Client.Store
import Distribution.Client.ProjectConfig
import Distribution.Client.ProjectPlanOutput
import Distribution.Client.Types
import qualified Distribution.Client.InstallPlan as InstallPlan
import qualified Distribution.Client.SolverInstallPlan as SolverInstallPlan
import Distribution.Client.Dependency
import Distribution.Client.Dependency.Types
import qualified Distribution.Client.IndexUtils as IndexUtils
import Distribution.Client.Init (incVersion)
import Distribution.Client.Targets (userToPackageConstraint)
import Distribution.Client.DistDirLayout
import Distribution.Client.SetupWrapper
import Distribution.Client.JobControl
import Distribution.Client.FetchUtils
import qualified Hackage.Security.Client as Sec
import Distribution.Client.Setup hiding (packageName, cabalVersion)
import Distribution.Utils.NubList
import Distribution.Utils.LogProgress
import Distribution.Utils.MapAccum
import qualified Distribution.Solver.Types.ComponentDeps as CD
import Distribution.Solver.Types.ComponentDeps (ComponentDeps)
import Distribution.Solver.Types.ConstraintSource
import Distribution.Solver.Types.LabeledPackageConstraint
import Distribution.Solver.Types.OptionalStanza
import Distribution.Solver.Types.PkgConfigDb
import Distribution.Solver.Types.ResolverPackage
import Distribution.Solver.Types.SolverId
import Distribution.Solver.Types.SolverPackage
import Distribution.Solver.Types.InstSolverPackage
import Distribution.Solver.Types.SourcePackage
import Distribution.Solver.Types.Settings
import Distribution.ModuleName
import Distribution.Package hiding
(InstalledPackageId, installedPackageId)
import Distribution.Types.AnnotatedId
import Distribution.Types.ComponentName
import Distribution.Types.PkgconfigDependency
import Distribution.Types.UnqualComponentName
import Distribution.System
import qualified Distribution.PackageDescription as Cabal
import qualified Distribution.PackageDescription as PD
import qualified Distribution.PackageDescription.Configuration as PD
import Distribution.Simple.PackageIndex (InstalledPackageIndex)
import Distribution.Simple.Compiler hiding (Flag)
import qualified Distribution.Simple.GHC as GHC --TODO: [code cleanup] eliminate
import qualified Distribution.Simple.GHCJS as GHCJS --TODO: [code cleanup] eliminate
import Distribution.Simple.Program
import Distribution.Simple.Program.Db
import Distribution.Simple.Program.Find
import qualified Distribution.Simple.Setup as Cabal
import Distribution.Simple.Setup
(Flag, toFlag, flagToMaybe, flagToList, fromFlagOrDefault)
import qualified Distribution.Simple.Configure as Cabal
import qualified Distribution.Simple.LocalBuildInfo as Cabal
import Distribution.Simple.LocalBuildInfo
( Component(..), pkgComponents, componentBuildInfo
, componentName )
import qualified Distribution.Simple.InstallDirs as InstallDirs
import qualified Distribution.InstalledPackageInfo as IPI
import Distribution.Backpack.ConfiguredComponent
import Distribution.Backpack.LinkedComponent
import Distribution.Backpack.ComponentsGraph
import Distribution.Backpack.ModuleShape
import Distribution.Backpack.FullUnitId
import Distribution.Backpack
import Distribution.Types.ComponentInclude
import Distribution.Simple.Utils hiding (matchFileGlob)
import Distribution.Version
import Distribution.Verbosity
import Distribution.Text
import qualified Distribution.Compat.Graph as Graph
import Distribution.Compat.Graph(IsNode(..))
import Text.PrettyPrint hiding ((<>))
import qualified Text.PrettyPrint as Disp
import qualified Data.Map as Map
import Data.Set (Set)
import qualified Data.Set as Set
import Control.Monad
import qualified Data.Traversable as T
import Control.Monad.State as State
import Control.Exception
import Data.List (groupBy)
import Data.Either
import Data.Function
import System.FilePath
------------------------------------------------------------------------------
-- * Elaborated install plan
------------------------------------------------------------------------------
-- "Elaborated" -- worked out with great care and nicety of detail;
-- executed with great minuteness: elaborate preparations;
-- elaborate care.
--
-- So here's the idea:
--
-- Rather than a miscellaneous collection of 'ConfigFlags', 'InstallFlags' etc
-- all passed in as separate args and which are then further selected,
-- transformed etc during the execution of the build. Instead we construct
-- an elaborated install plan that includes everything we will need, and then
-- during the execution of the plan we do as little transformation of this
-- info as possible.
--
-- So we're trying to split the work into two phases: construction of the
-- elaborated install plan (which as far as possible should be pure) and
-- then simple execution of that plan without any smarts, just doing what the
-- plan says to do.
--
-- So that means we need a representation of this fully elaborated install
-- plan. The representation consists of two parts:
--
-- * A 'ElaboratedInstallPlan'. This is a 'GenericInstallPlan' with a
-- representation of source packages that includes a lot more detail about
-- that package's individual configuration
--
-- * A 'ElaboratedSharedConfig'. Some package configuration is the same for
-- every package in a plan. Rather than duplicate that info every entry in
-- the 'GenericInstallPlan' we keep that separately.
--
-- The division between the shared and per-package config is /not set in stone
-- for all time/. For example if we wanted to generalise the install plan to
-- describe a situation where we want to build some packages with GHC and some
-- with GHCJS then the platform and compiler would no longer be shared between
-- all packages but would have to be per-package (probably with some sanity
-- condition on the graph structure).
--
-- Refer to ProjectPlanning.Types for details of these important types:
-- type ElaboratedInstallPlan = ...
-- type ElaboratedPlanPackage = ...
-- data ElaboratedSharedConfig = ...
-- data ElaboratedConfiguredPackage = ...
-- data BuildStyle =
-- | Check that an 'ElaboratedConfiguredPackage' actually makes
-- sense under some 'ElaboratedSharedConfig'.
sanityCheckElaboratedConfiguredPackage
:: ElaboratedSharedConfig
-> ElaboratedConfiguredPackage
-> a
-> a
sanityCheckElaboratedConfiguredPackage sharedConfig
elab@ElaboratedConfiguredPackage{..} =
(case elabPkgOrComp of
ElabPackage pkg -> sanityCheckElaboratedPackage elab pkg
ElabComponent comp -> sanityCheckElaboratedComponent elab comp)
-- either a package is being built inplace, or the
-- 'installedPackageId' we assigned is consistent with
-- the 'hashedInstalledPackageId' we would compute from
-- the elaborated configured package
. assert (elabBuildStyle == BuildInplaceOnly ||
elabComponentId == hashedInstalledPackageId
(packageHashInputs sharedConfig elab))
-- the stanzas explicitly disabled should not be available
. assert (Set.null (Map.keysSet (Map.filter not elabStanzasRequested)
`Set.intersection` elabStanzasAvailable))
-- either a package is built inplace, or we are not attempting to
-- build any test suites or benchmarks (we never build these
-- for remote packages!)
. assert (elabBuildStyle == BuildInplaceOnly ||
Set.null elabStanzasAvailable)
sanityCheckElaboratedComponent
:: ElaboratedConfiguredPackage
-> ElaboratedComponent
-> a
-> a
sanityCheckElaboratedComponent ElaboratedConfiguredPackage{..}
ElaboratedComponent{..} =
-- Should not be building bench or test if not inplace.
assert (elabBuildStyle == BuildInplaceOnly ||
case compComponentName of
Nothing -> True
Just CLibName -> True
Just (CSubLibName _) -> True
Just (CExeName _) -> True
-- This is interesting: there's no way to declare a dependency
-- on a foreign library at the moment, but you may still want
-- to install these to the store
Just (CFLibName _) -> True
Just (CBenchName _) -> False
Just (CTestName _) -> False)
sanityCheckElaboratedPackage
:: ElaboratedConfiguredPackage
-> ElaboratedPackage
-> a
-> a
sanityCheckElaboratedPackage ElaboratedConfiguredPackage{..}
ElaboratedPackage{..} =
-- we should only have enabled stanzas that actually can be built
-- (according to the solver)
assert (pkgStanzasEnabled `Set.isSubsetOf` elabStanzasAvailable)
-- the stanzas that the user explicitly requested should be
-- enabled (by the previous test, they are also available)
. assert (Map.keysSet (Map.filter id elabStanzasRequested)
`Set.isSubsetOf` pkgStanzasEnabled)
------------------------------------------------------------------------------
-- * Deciding what to do: making an 'ElaboratedInstallPlan'
------------------------------------------------------------------------------
-- | Return the up-to-date project config and information about the local
-- packages within the project.
--
rebuildProjectConfig :: Verbosity
-> DistDirLayout
-> ProjectConfig
-> IO (ProjectConfig,
[PackageSpecifier UnresolvedSourcePackage])
rebuildProjectConfig verbosity
distDirLayout@DistDirLayout {
distProjectRootDirectory,
distDirectory,
distProjectCacheFile,
distProjectCacheDirectory
}
cliConfig = do
(projectConfig, localPackages) <-
runRebuild distProjectRootDirectory $
rerunIfChanged verbosity fileMonitorProjectConfig () $ do
projectConfig <- phaseReadProjectConfig
localPackages <- phaseReadLocalPackages projectConfig
return (projectConfig, localPackages)
return (projectConfig <> cliConfig, localPackages)
where
ProjectConfigShared {
projectConfigConfigFile
} = projectConfigShared cliConfig
fileMonitorProjectConfig = newFileMonitor (distProjectCacheFile "config")
-- Read the cabal.project (or implicit config) and combine it with
-- arguments from the command line
--
phaseReadProjectConfig :: Rebuild ProjectConfig
phaseReadProjectConfig = do
liftIO $ do
info verbosity "Project settings changed, reconfiguring..."
readProjectConfig verbosity projectConfigConfigFile distDirLayout
-- Look for all the cabal packages in the project
-- some of which may be local src dirs, tarballs etc
--
phaseReadLocalPackages :: ProjectConfig
-> Rebuild [PackageSpecifier UnresolvedSourcePackage]
phaseReadLocalPackages projectConfig = do
localCabalFiles <- findProjectPackages distDirLayout projectConfig
-- Create folder only if findProjectPackages did not throw a
-- BadPackageLocations exception.
liftIO $ do
createDirectoryIfMissingVerbose verbosity True distDirectory
createDirectoryIfMissingVerbose verbosity True distProjectCacheDirectory
mapM (readSourcePackage verbosity) localCabalFiles
-- | Return an up-to-date elaborated install plan.
--
-- Two variants of the install plan are returned: with and without packages
-- from the store. That is, the \"improved\" plan where source packages are
-- replaced by pre-existing installed packages from the store (when their ids
-- match), and also the original elaborated plan which uses primarily source
-- packages.
-- The improved plan is what we use for building, but the original elaborated
-- plan is useful for reporting and configuration. For example the @freeze@
-- command needs the source package info to know about flag choices and
-- dependencies of executables and setup scripts.
--
rebuildInstallPlan :: Verbosity
-> DistDirLayout -> CabalDirLayout
-> ProjectConfig
-> [PackageSpecifier UnresolvedSourcePackage]
-> IO ( ElaboratedInstallPlan -- with store packages
, ElaboratedInstallPlan -- with source packages
, ElaboratedSharedConfig )
-- ^ @(improvedPlan, elaboratedPlan, _, _)@
rebuildInstallPlan verbosity
distDirLayout@DistDirLayout {
distProjectRootDirectory,
distProjectCacheFile
}
CabalDirLayout {
cabalStoreDirLayout
} = \projectConfig localPackages ->
runRebuild distProjectRootDirectory $ do
progsearchpath <- liftIO $ getSystemSearchPath
let projectConfigMonitored = projectConfig { projectConfigBuildOnly = mempty }
-- The overall improved plan is cached
rerunIfChanged verbosity fileMonitorImprovedPlan
-- react to changes in the project config,
-- the package .cabal files and the path
(projectConfigMonitored, localPackages, progsearchpath) $ do
-- And so is the elaborated plan that the improved plan based on
(elaboratedPlan, elaboratedShared) <-
rerunIfChanged verbosity fileMonitorElaboratedPlan
(projectConfigMonitored, localPackages,
progsearchpath) $ do
compilerEtc <- phaseConfigureCompiler projectConfig
_ <- phaseConfigurePrograms projectConfig compilerEtc
(solverPlan, pkgConfigDB)
<- phaseRunSolver projectConfig
compilerEtc
localPackages
(elaboratedPlan,
elaboratedShared) <- phaseElaboratePlan projectConfig
compilerEtc pkgConfigDB
solverPlan
localPackages
phaseMaintainPlanOutputs elaboratedPlan elaboratedShared
return (elaboratedPlan, elaboratedShared)
-- The improved plan changes each time we install something, whereas
-- the underlying elaborated plan only changes when input config
-- changes, so it's worth caching them separately.
improvedPlan <- phaseImprovePlan elaboratedPlan elaboratedShared
return (improvedPlan, elaboratedPlan, elaboratedShared)
where
fileMonitorCompiler = newFileMonitorInCacheDir "compiler"
fileMonitorSolverPlan = newFileMonitorInCacheDir "solver-plan"
fileMonitorSourceHashes = newFileMonitorInCacheDir "source-hashes"
fileMonitorElaboratedPlan = newFileMonitorInCacheDir "elaborated-plan"
fileMonitorImprovedPlan = newFileMonitorInCacheDir "improved-plan"
newFileMonitorInCacheDir :: Eq a => FilePath -> FileMonitor a b
newFileMonitorInCacheDir = newFileMonitor . distProjectCacheFile
-- Configure the compiler we're using.
--
-- This is moderately expensive and doesn't change that often so we cache
-- it independently.
--
phaseConfigureCompiler :: ProjectConfig
-> Rebuild (Compiler, Platform, ProgramDb)
phaseConfigureCompiler ProjectConfig {
projectConfigShared = ProjectConfigShared {
projectConfigHcFlavor,
projectConfigHcPath,
projectConfigHcPkg
},
projectConfigLocalPackages = PackageConfig {
packageConfigProgramPaths,
packageConfigProgramArgs,
packageConfigProgramPathExtra
}
} = do
progsearchpath <- liftIO $ getSystemSearchPath
rerunIfChanged verbosity fileMonitorCompiler
(hcFlavor, hcPath, hcPkg, progsearchpath,
packageConfigProgramPaths,
packageConfigProgramArgs,
packageConfigProgramPathExtra) $ do
liftIO $ info verbosity "Compiler settings changed, reconfiguring..."
result@(_, _, progdb') <- liftIO $
Cabal.configCompilerEx
hcFlavor hcPath hcPkg
progdb verbosity
-- Note that we added the user-supplied program locations and args
-- for /all/ programs, not just those for the compiler prog and
-- compiler-related utils. In principle we don't know which programs
-- the compiler will configure (and it does vary between compilers).
-- We do know however that the compiler will only configure the
-- programs it cares about, and those are the ones we monitor here.
monitorFiles (programsMonitorFiles progdb')
return result
where
hcFlavor = flagToMaybe projectConfigHcFlavor
hcPath = flagToMaybe projectConfigHcPath
hcPkg = flagToMaybe projectConfigHcPkg
progdb =
userSpecifyPaths (Map.toList (getMapLast packageConfigProgramPaths))
. userSpecifyArgss (Map.toList (getMapMappend packageConfigProgramArgs))
. modifyProgramSearchPath
(++ [ ProgramSearchPathDir dir
| dir <- fromNubList packageConfigProgramPathExtra ])
$ defaultProgramDb
-- Configuring other programs.
--
-- Having configred the compiler, now we configure all the remaining
-- programs. This is to check we can find them, and to monitor them for
-- changes.
--
-- TODO: [required eventually] we don't actually do this yet.
--
-- We rely on the fact that the previous phase added the program config for
-- all local packages, but that all the programs configured so far are the
-- compiler program or related util programs.
--
phaseConfigurePrograms :: ProjectConfig
-> (Compiler, Platform, ProgramDb)
-> Rebuild ()
phaseConfigurePrograms projectConfig (_, _, compilerprogdb) = do
-- Users are allowed to specify program locations independently for
-- each package (e.g. to use a particular version of a pre-processor
-- for some packages). However they cannot do this for the compiler
-- itself as that's just not going to work. So we check for this.
liftIO $ checkBadPerPackageCompilerPaths
(configuredPrograms compilerprogdb)
(getMapMappend (projectConfigSpecificPackage projectConfig))
--TODO: [required eventually] find/configure other programs that the
-- user specifies.
--TODO: [required eventually] find/configure all build-tools
-- but note that some of them may be built as part of the plan.
-- Run the solver to get the initial install plan.
-- This is expensive so we cache it independently.
--
phaseRunSolver :: ProjectConfig
-> (Compiler, Platform, ProgramDb)
-> [PackageSpecifier UnresolvedSourcePackage]
-> Rebuild (SolverInstallPlan, PkgConfigDb)
phaseRunSolver projectConfig@ProjectConfig {
projectConfigShared,
projectConfigBuildOnly
}
(compiler, platform, progdb)
localPackages =
rerunIfChanged verbosity fileMonitorSolverPlan
(solverSettings,
localPackages, localPackagesEnabledStanzas,
compiler, platform, programDbSignature progdb) $ do
installedPkgIndex <- getInstalledPackages verbosity
compiler progdb platform
corePackageDbs
sourcePkgDb <- getSourcePackages verbosity withRepoCtx
(solverSettingIndexState solverSettings)
pkgConfigDB <- getPkgConfigDb verbosity progdb
--TODO: [code cleanup] it'd be better if the Compiler contained the
-- ConfiguredPrograms that it needs, rather than relying on the progdb
-- since we don't need to depend on all the programs here, just the
-- ones relevant for the compiler.
liftIO $ do
solver <- chooseSolver verbosity
(solverSettingSolver solverSettings)
(compilerInfo compiler)
notice verbosity "Resolving dependencies..."
plan <- foldProgress logMsg (die' verbosity) return $
planPackages verbosity compiler platform solver solverSettings
installedPkgIndex sourcePkgDb pkgConfigDB
localPackages localPackagesEnabledStanzas
return (plan, pkgConfigDB)
where
corePackageDbs = [GlobalPackageDB]
withRepoCtx = projectConfigWithSolverRepoContext verbosity
projectConfigShared
projectConfigBuildOnly
solverSettings = resolveSolverSettings projectConfig
logMsg message rest = debugNoWrap verbosity message >> rest
localPackagesEnabledStanzas =
Map.fromList
[ (pkgname, stanzas)
| pkg <- localPackages
, let pkgname = pkgSpecifierTarget pkg
testsEnabled = lookupLocalPackageConfig
packageConfigTests
projectConfig pkgname
benchmarksEnabled = lookupLocalPackageConfig
packageConfigBenchmarks
projectConfig pkgname
stanzas =
Map.fromList $
[ (TestStanzas, enabled)
| enabled <- flagToList testsEnabled ]
++ [ (BenchStanzas , enabled)
| enabled <- flagToList benchmarksEnabled ]
]
-- Elaborate the solver's install plan to get a fully detailed plan. This
-- version of the plan has the final nix-style hashed ids.
--
phaseElaboratePlan :: ProjectConfig
-> (Compiler, Platform, ProgramDb)
-> PkgConfigDb
-> SolverInstallPlan
-> [PackageSpecifier (SourcePackage loc)]
-> Rebuild ( ElaboratedInstallPlan
, ElaboratedSharedConfig )
phaseElaboratePlan ProjectConfig {
projectConfigShared,
projectConfigAllPackages,
projectConfigLocalPackages,
projectConfigSpecificPackage,
projectConfigBuildOnly
}
(compiler, platform, progdb) pkgConfigDB
solverPlan localPackages = do
liftIO $ debug verbosity "Elaborating the install plan..."
sourcePackageHashes <-
rerunIfChanged verbosity fileMonitorSourceHashes
(packageLocationsSignature solverPlan) $
getPackageSourceHashes verbosity withRepoCtx solverPlan
defaultInstallDirs <- liftIO $ userInstallDirTemplates compiler
(elaboratedPlan, elaboratedShared)
<- liftIO . runLogProgress verbosity $
elaborateInstallPlan
verbosity
platform compiler progdb pkgConfigDB
distDirLayout
cabalStoreDirLayout
solverPlan
localPackages
sourcePackageHashes
defaultInstallDirs
projectConfigShared
projectConfigAllPackages
projectConfigLocalPackages
(getMapMappend projectConfigSpecificPackage)
let instantiatedPlan = instantiateInstallPlan elaboratedPlan
liftIO $ debugNoWrap verbosity (InstallPlan.showInstallPlan instantiatedPlan)
return (instantiatedPlan, elaboratedShared)
where
withRepoCtx = projectConfigWithSolverRepoContext verbosity
projectConfigShared
projectConfigBuildOnly
-- Update the files we maintain that reflect our current build environment.
-- In particular we maintain a JSON representation of the elaborated
-- install plan (but not the improved plan since that reflects the state
-- of the build rather than just the input environment).
--
phaseMaintainPlanOutputs :: ElaboratedInstallPlan
-> ElaboratedSharedConfig
-> Rebuild ()
phaseMaintainPlanOutputs elaboratedPlan elaboratedShared = liftIO $ do
debug verbosity "Updating plan.json"
writePlanExternalRepresentation
distDirLayout
elaboratedPlan
elaboratedShared
-- Improve the elaborated install plan. The elaborated plan consists
-- mostly of source packages (with full nix-style hashed ids). Where
-- corresponding installed packages already exist in the store, replace
-- them in the plan.
--
-- Note that we do monitor the store's package db here, so we will redo
-- this improvement phase when the db changes -- including as a result of
-- executing a plan and installing things.
--
phaseImprovePlan :: ElaboratedInstallPlan
-> ElaboratedSharedConfig
-> Rebuild ElaboratedInstallPlan
phaseImprovePlan elaboratedPlan elaboratedShared = do
liftIO $ debug verbosity "Improving the install plan..."
storePkgIdSet <- getStoreEntries cabalStoreDirLayout compid
let improvedPlan = improveInstallPlanWithInstalledPackages
storePkgIdSet
elaboratedPlan
liftIO $ debugNoWrap verbosity (InstallPlan.showInstallPlan improvedPlan)
-- TODO: [nice to have] having checked which packages from the store
-- we're using, it may be sensible to sanity check those packages
-- by loading up the compiler package db and checking everything
-- matches up as expected, e.g. no dangling deps, files deleted.
return improvedPlan
where
compid = compilerId (pkgConfigCompiler elaboratedShared)
programsMonitorFiles :: ProgramDb -> [MonitorFilePath]
programsMonitorFiles progdb =
[ monitor
| prog <- configuredPrograms progdb
, monitor <- monitorFileSearchPath (programMonitorFiles prog)
(programPath prog)
]
-- | Select the bits of a 'ProgramDb' to monitor for value changes.
-- Use 'programsMonitorFiles' for the files to monitor.
--
programDbSignature :: ProgramDb -> [ConfiguredProgram]
programDbSignature progdb =
[ prog { programMonitorFiles = []
, programOverrideEnv = filter ((/="PATH") . fst)
(programOverrideEnv prog) }
| prog <- configuredPrograms progdb ]
getInstalledPackages :: Verbosity
-> Compiler -> ProgramDb -> Platform
-> PackageDBStack
-> Rebuild InstalledPackageIndex
getInstalledPackages verbosity compiler progdb platform packagedbs = do
monitorFiles . map monitorFileOrDirectory
=<< liftIO (IndexUtils.getInstalledPackagesMonitorFiles
verbosity compiler
packagedbs progdb platform)
liftIO $ IndexUtils.getInstalledPackages
verbosity compiler
packagedbs progdb
{-
--TODO: [nice to have] use this but for sanity / consistency checking
getPackageDBContents :: Verbosity
-> Compiler -> ProgramDb -> Platform
-> PackageDB
-> Rebuild InstalledPackageIndex
getPackageDBContents verbosity compiler progdb platform packagedb = do
monitorFiles . map monitorFileOrDirectory
=<< liftIO (IndexUtils.getInstalledPackagesMonitorFiles
verbosity compiler
[packagedb] progdb platform)
liftIO $ do
createPackageDBIfMissing verbosity compiler progdb packagedb
Cabal.getPackageDBContents verbosity compiler
packagedb progdb
-}
getSourcePackages :: Verbosity -> (forall a. (RepoContext -> IO a) -> IO a)
-> Maybe IndexUtils.IndexState -> Rebuild SourcePackageDb
getSourcePackages verbosity withRepoCtx idxState = do
(sourcePkgDb, repos) <-
liftIO $
withRepoCtx $ \repoctx -> do
sourcePkgDb <- IndexUtils.getSourcePackagesAtIndexState verbosity
repoctx idxState
return (sourcePkgDb, repoContextRepos repoctx)
mapM_ needIfExists
. IndexUtils.getSourcePackagesMonitorFiles
$ repos
return sourcePkgDb
getPkgConfigDb :: Verbosity -> ProgramDb -> Rebuild PkgConfigDb
getPkgConfigDb verbosity progdb = do
dirs <- liftIO $ getPkgConfigDbDirs verbosity progdb
-- Just monitor the dirs so we'll notice new .pc files.
-- Alternatively we could monitor all the .pc files too.
mapM_ monitorDirectoryStatus dirs
liftIO $ readPkgConfigDb verbosity progdb
-- | Select the config values to monitor for changes package source hashes.
packageLocationsSignature :: SolverInstallPlan
-> [(PackageId, PackageLocation (Maybe FilePath))]
packageLocationsSignature solverPlan =
[ (packageId pkg, packageSource pkg)
| SolverInstallPlan.Configured (SolverPackage { solverPkgSource = pkg})
<- SolverInstallPlan.toList solverPlan
]
-- | Get the 'HashValue' for all the source packages where we use hashes,
-- and download any packages required to do so.
--
-- Note that we don't get hashes for local unpacked packages.
--
getPackageSourceHashes :: Verbosity
-> (forall a. (RepoContext -> IO a) -> IO a)
-> SolverInstallPlan
-> Rebuild (Map PackageId PackageSourceHash)
getPackageSourceHashes verbosity withRepoCtx solverPlan = do
-- Determine if and where to get the package's source hash from.
--
let allPkgLocations :: [(PackageId, PackageLocation (Maybe FilePath))]
allPkgLocations =
[ (packageId pkg, packageSource pkg)
| SolverInstallPlan.Configured (SolverPackage { solverPkgSource = pkg})
<- SolverInstallPlan.toList solverPlan ]
-- Tarballs that were local in the first place.
-- We'll hash these tarball files directly.
localTarballPkgs :: [(PackageId, FilePath)]
localTarballPkgs =
[ (pkgid, tarball)
| (pkgid, LocalTarballPackage tarball) <- allPkgLocations ]
-- Tarballs from remote URLs. We must have downloaded these already
-- (since we extracted the .cabal file earlier)
--TODO: [required eventually] finish remote tarball functionality
-- allRemoteTarballPkgs =
-- [ (pkgid, )
-- | (pkgid, RemoteTarballPackage ) <- allPkgLocations ]
-- Tarballs from repositories, either where the repository provides
-- hashes as part of the repo metadata, or where we will have to
-- download and hash the tarball.
repoTarballPkgsWithMetadata :: [(PackageId, Repo)]
repoTarballPkgsWithoutMetadata :: [(PackageId, Repo)]
(repoTarballPkgsWithMetadata,
repoTarballPkgsWithoutMetadata) =
partitionEithers
[ case repo of
RepoSecure{} -> Left (pkgid, repo)
_ -> Right (pkgid, repo)
| (pkgid, RepoTarballPackage repo _ _) <- allPkgLocations ]
-- For tarballs from repos that do not have hashes available we now have
-- to check if the packages were downloaded already.
--
(repoTarballPkgsToDownload,
repoTarballPkgsDownloaded)
<- fmap partitionEithers $
liftIO $ sequence
[ do mtarball <- checkRepoTarballFetched repo pkgid
case mtarball of
Nothing -> return (Left (pkgid, repo))
Just tarball -> return (Right (pkgid, tarball))
| (pkgid, repo) <- repoTarballPkgsWithoutMetadata ]
(hashesFromRepoMetadata,
repoTarballPkgsNewlyDownloaded) <-
-- Avoid having to initialise the repository (ie 'withRepoCtx') if we
-- don't have to. (The main cost is configuring the http client.)
if null repoTarballPkgsToDownload && null repoTarballPkgsWithMetadata
then return (Map.empty, [])
else liftIO $ withRepoCtx $ \repoctx -> do
-- For tarballs from repos that do have hashes available as part of the
-- repo metadata we now load up the index for each repo and retrieve
-- the hashes for the packages
--
hashesFromRepoMetadata <-
Sec.uncheckClientErrors $ --TODO: [code cleanup] wrap in our own exceptions
fmap (Map.fromList . concat) $
sequence
-- Reading the repo index is expensive so we group the packages by repo
[ repoContextWithSecureRepo repoctx repo $ \secureRepo ->
Sec.withIndex secureRepo $ \repoIndex ->
sequence
[ do hash <- Sec.trusted <$> -- strip off Trusted tag
Sec.indexLookupHash repoIndex pkgid
-- Note that hackage-security currently uses SHA256
-- but this API could in principle give us some other
-- choice in future.
return (pkgid, hashFromTUF hash)
| pkgid <- pkgids ]
| (repo, pkgids) <-
map (\grp@((_,repo):_) -> (repo, map fst grp))
. groupBy ((==) `on` (remoteRepoName . repoRemote . snd))
. sortBy (compare `on` (remoteRepoName . repoRemote . snd))
$ repoTarballPkgsWithMetadata
]
-- For tarballs from repos that do not have hashes available, download
-- the ones we previously determined we need.
--
repoTarballPkgsNewlyDownloaded <-
sequence
[ do tarball <- fetchRepoTarball verbosity repoctx repo pkgid
return (pkgid, tarball)
| (pkgid, repo) <- repoTarballPkgsToDownload ]
return (hashesFromRepoMetadata,
repoTarballPkgsNewlyDownloaded)
-- Hash tarball files for packages where we have to do that. This includes
-- tarballs that were local in the first place, plus tarballs from repos,
-- either previously cached or freshly downloaded.
--
let allTarballFilePkgs :: [(PackageId, FilePath)]
allTarballFilePkgs = localTarballPkgs
++ repoTarballPkgsDownloaded
++ repoTarballPkgsNewlyDownloaded
hashesFromTarballFiles <- liftIO $
fmap Map.fromList $
sequence
[ do srchash <- readFileHashValue tarball
return (pkgid, srchash)
| (pkgid, tarball) <- allTarballFilePkgs
]
monitorFiles [ monitorFile tarball
| (_pkgid, tarball) <- allTarballFilePkgs ]
-- Return the combination
return $! hashesFromRepoMetadata
<> hashesFromTarballFiles
-- ------------------------------------------------------------
-- * Installation planning
-- ------------------------------------------------------------
planPackages :: Verbosity
-> Compiler
-> Platform
-> Solver -> SolverSettings
-> InstalledPackageIndex
-> SourcePackageDb
-> PkgConfigDb
-> [PackageSpecifier UnresolvedSourcePackage]
-> Map PackageName (Map OptionalStanza Bool)
-> Progress String String SolverInstallPlan
planPackages verbosity comp platform solver SolverSettings{..}
installedPkgIndex sourcePkgDb pkgConfigDB
localPackages pkgStanzasEnable =
resolveDependencies
platform (compilerInfo comp)
pkgConfigDB solver
resolverParams
where
--TODO: [nice to have] disable multiple instances restriction in the solver, but then
-- make sure we can cope with that in the output.
resolverParams =
setMaxBackjumps solverSettingMaxBackjumps
. setIndependentGoals solverSettingIndependentGoals
. setReorderGoals solverSettingReorderGoals
. setCountConflicts solverSettingCountConflicts
--TODO: [required eventually] should only be configurable for custom installs
-- . setAvoidReinstalls solverSettingAvoidReinstalls
--TODO: [required eventually] should only be configurable for custom installs
-- . setShadowPkgs solverSettingShadowPkgs
. setStrongFlags solverSettingStrongFlags
. setAllowBootLibInstalls solverSettingAllowBootLibInstalls
. setSolverVerbosity verbosity
--TODO: [required eventually] decide if we need to prefer installed for
-- global packages, or prefer latest even for global packages. Perhaps
-- should be configurable but with a different name than "upgrade-dependencies".
. setPreferenceDefault PreferLatestForSelected
{-(if solverSettingUpgradeDeps
then PreferAllLatest
else PreferLatestForSelected)-}
. removeLowerBounds solverSettingAllowOlder
. removeUpperBounds solverSettingAllowNewer
. addDefaultSetupDependencies (defaultSetupDeps comp platform
. PD.packageDescription
. packageDescription)
. addSetupCabalMinVersionConstraint setupMinCabalVersionConstraint
. addSetupCabalMaxVersionConstraint setupMaxCabalVersionConstraint
. addPreferences
-- preferences from the config file or command line
[ PackageVersionPreference name ver
| Dependency name ver <- solverSettingPreferences ]
. addConstraints
-- version constraints from the config file or command line
[ LabeledPackageConstraint (userToPackageConstraint pc) src
| (pc, src) <- solverSettingConstraints ]
. addPreferences
-- enable stanza preference where the user did not specify
[ PackageStanzasPreference pkgname stanzas
| pkg <- localPackages
, let pkgname = pkgSpecifierTarget pkg
stanzaM = Map.findWithDefault Map.empty pkgname pkgStanzasEnable
stanzas = [ stanza | stanza <- [minBound..maxBound]
, Map.lookup stanza stanzaM == Nothing ]
, not (null stanzas)
]
. addConstraints
-- enable stanza constraints where the user asked to enable
[ LabeledPackageConstraint
(PackageConstraint (scopeToplevel pkgname)
(PackagePropertyStanzas stanzas))
ConstraintSourceConfigFlagOrTarget
| pkg <- localPackages
, let pkgname = pkgSpecifierTarget pkg
stanzaM = Map.findWithDefault Map.empty pkgname pkgStanzasEnable
stanzas = [ stanza | stanza <- [minBound..maxBound]
, Map.lookup stanza stanzaM == Just True ]
, not (null stanzas)
]
. addConstraints
--TODO: [nice to have] should have checked at some point that the
-- package in question actually has these flags.
[ LabeledPackageConstraint
(PackageConstraint (scopeToplevel pkgname)
(PackagePropertyFlags flags))
ConstraintSourceConfigFlagOrTarget
| (pkgname, flags) <- Map.toList solverSettingFlagAssignments ]
. addConstraints