Take impurely annotated records and run the corresponding command line.
Shortcut for cmdArgsRun . cmdArgsMode.
To use cmdArgs with custom command line arguments see withArgs.
:: a typeCtrl KGHC 9.10.3 · lts/ghc-9.10.x · 248f8f0 · 2026-10-05
Modulecmdargs-0.10.22Haskell2010
This module provides simple command line argument processing. The main function of interest is cmdArgs. A simple example is:
data Sample = Sample {hello :: String} deriving (Show, Data, Typeable)sample = Sample{hello = def &= help "World argument" &= opt "world"}
&= summary "Sample v1"
main = print =<< cmdArgs sampleAttributes are used to control a number of behaviours:
Supported Types: Each field in the record must be one of the supported
atomic types (String, Int, Integer, Float, Double, Bool, an
enumeration, a tuple of atomic types) or a list ([]) or Maybe wrapping
at atomic type.
Missing Fields: If a field is shared by multiple modes, it may be omitted in subsequent modes, and will default to the previous value.
Purity: Values created with annotations are not pure - the first time they are computed they will include the annotations, but subsequently they will not. If you wish to run the above example in a more robust way:
sample = cmdArgsMode $ Sample{hello = ... -- as beforemain = print =<< cmdArgsRun sampleEven using this scheme, sometimes GHC's optimisations may share values who
have the same annotation. To disable sharing you may need to specify
{-# OPTIONS_GHC -fno-cse #-} in the module you define the flags.
Pure annotations: Alternatively, you may use pure annotations, which are referentially transparent, but less type safe and more verbose. The initial example may be written as:
sample = record Sample{} [hello := def += help "World argument" += opt "world"]
+= summary "Sample v1"
main = print =<< (cmdArgs_ sample :: IO Sample)All the examples are written using impure annotations. To convert to pure annotations follow the rules:
Ctor {field1 = value1 &= ann1, field2 = value2} &= ann2 ==> record Ctor{} [field1 := value1 += ann1, field2 := value2] += ann2
Ctor (value1 &= ann1) value2 &= ann2 ==> record Ctor{} [atom value1 += ann1, atom value2] += ann2
modes [Ctor1{...}, Ctor2{...}] ==> modes_ [record Ctor1{} [...], record Ctor2{} [...]]
Ctor {field1 = enum [X &= ann, Y]} ==> record Ctor{} [enum_ field1 [atom X += ann, atom Y]]If you are willing to use TemplateHaskell, you can write in the impure syntax, but have your code automatically translated to the pure style. For more details see System.Console.CmdArgs.Quote.
Take impurely annotated records and run the corresponding command line.
Shortcut for cmdArgsRun . cmdArgsMode.
To use cmdArgs with custom command line arguments see withArgs.
Take impurely annotated records and turn them in to a Mode value, that can
make use of the System.Console.CmdArgs.Explicit functions (i.e. process).
Annotated records are impure, and will only contain annotations on their first use. The result of this function is pure, and can be reused.
Run a Mode structure. This function reads the command line arguments and then performs as follows:
If invalid arguments are given, it will display the error message and exit.
If --help is given, it will display the help message and exit.
If --version is given, it will display the version and exit.
In all other circumstances the program will return a value.
Additionally, if either --quiet or --verbose is given (see verbosity)
it will set the verbosity (see setVerbosity).
Take purely annotated records and run the corresponding command line.
Shortcut for cmdArgsRun . cmdArgsMode_.
To use cmdArgs_ with custom command line arguments see withArgs.
Take purely annotated records and turn them in to a Mode value, that can
make use of the System.Console.CmdArgs.Explicit functions (i.e. process).
Perform the necessary actions dictated by a CmdArgs structure.
If cmdArgsHelp is Just, it will display the help message and exit.
If cmdArgsVersion is Just, it will display the version and exit.
In all other circumstances it will return a value.
Additionally, if cmdArgsVerbosity is Just (see verbosity)
it will set the verbosity (see setVerbosity).
A structure to store the additional data relating to --help,
--version, --quiet and --verbose.
CmdArgscmdArgsValue :: aThe underlying value being wrapped.
cmdArgsHelp :: Maybe StringJust if --help is given, then gives the help message for display, including a trailing newline.
cmdArgsVersion :: Maybe StringJust if --version is given, then gives the version message for display, including a trailing newline.
cmdArgsVerbosity :: Maybe VerbosityJust if --quiet or --verbose is given, then gives the verbosity to use.
cmdArgsPrivate :: CmdArgsPrivatePrivate: Only exported due to Haddock limitations.
Functor CmdArgsDefined in cmdargs-0.10.22 · System.Console.CmdArgs.Implicit.TypeEq a => Eq (CmdArgs a)Defined in cmdargs-0.10.22 · System.Console.CmdArgs.Implicit.TypeData a => Data (CmdArgs a)Defined in cmdargs-0.10.22 · System.Console.CmdArgs.Implicit.TypeOrd a => Ord (CmdArgs a)Defined in cmdargs-0.10.22 · System.Console.CmdArgs.Implicit.TypeShow a => Show (CmdArgs a)Defined in cmdargs-0.10.22 · System.Console.CmdArgs.Implicit.TypeAttributes can work on a flag (inside a field), on a mode (outside the record), or on all modes (outside the modes call).
Flag: "I want users to be able to omit the value associated with this flag."
Make the value of a flag optional. If --flag is given, it will
be treated as --flag=this_argument.
{hello = def &= opt "foo"}
-h --hello[=VALUE] (default=foo)Note that all flags in CmdArgs are optional, and if omitted will use their default value.
Those annotated with opt also allow the flag to be present without an associated value.
As an example:
{hello = "DEFAULT" &= opt "OPTIONAL"}$ main
{hello = "DEFAULT"}
$ main --hello
{hello = "OPTIONAL"}
$ main --hello=VALUE
{hello = "VALUE"}Flag: "Use this flag name for this field."
Add flags which trigger this option.
{hello = def &= name "foo"}
-h --hello --foo=VALUEFlag/Mode: "The help message is ..."
Descriptive text used in the help output.
{hello = def &= help "Help message"}
-h --hello=VALUE Help messageFlag: "Users must give a file for this flag's value."
Alias for typ .FILE
Flag: "Users must give a directory for this flag's value."
Alias for typ .DIR
Flag: "Put the nth non-flag argument here."
This field should be used to store a particular argument position (0-based).
{hello = def &= argPos 0}Flag/Mode: "Give these flags/modes a group name in the help output."
This mode will be used for all following modes/flags, until the
next groupname.
{hello = def &= groupname "Welcomes"}
Welcomes
-h --hello=VALUEMode: "A longer description of this mode is ..."
Suffix to be added to the help message.
Sample{..} &= details ["More details on the website www.example.org"]Modes: "My program name/version/copyright is ..."
One line summary of the entire program, the first line of
--help and the only line of --version. If the string contains a
version number component will also provide --numeric-version.
Sample{..} &= summary "CmdArgs v0.0, (C) Neil Mitchell 1981"Mode: "If the user doesn't give a mode, use this one."
This mode is the default. If no mode is specified and a mode has this attribute then that mode is selected, otherwise an error is raised.
modes [Mode1{..}, Mode2{..} &= auto, Mode3{..}]Modes: "My program executable is named ..."
This is the name of the program executable. Only used in the help message. Defaults to the type of the mode.
Sample{..} &= program "sample"Flag: "Don't guess any names for this field."
A field should not have any flag names guessed for it.
All flag names must be specified by flag.
{hello = def &= explicit &= name "foo"}
--foo=VALUEFlag/Mode: "Ignore this field, don't let the user set it."
A mode or field is not dealt with by CmdArgs.
{hello = def, extra = def &= ignore}
--hello=VALUEModes: "My program needs verbosity flags."
Add --verbose and --quiet flags.
Program: "Turn off @ expansion."
Usually arguments starting with @ are treated as a file containing a set of arguments. This annotation turns off that behaviour.
Sample{..} &= noAtExpandAdd an annotation to a value. Note that if the value is evaluated more than once the annotation will only be available the first time.
Modes: "I want a program with multiple modes, like darcs or cabal."
Takes a list of modes, and creates a mode which includes them all. If you want one of the modes to be chosen by default, see auto.
data Modes = Mode1 | Mode2 | Mode3 deriving Data
cmdArgs $ modes [Mode1,Mode2,Mode3]Flag: "I want several different flags to set this one field to different values."
This annotation takes a type which is an enumeration, and provides multiple separate flags to set the field to each value. The first element in the list is used as the value of the field.
data State = On | Off deriving Data
data Mode = Mode {state :: State}
cmdArgs $ Mode {state = enum [On &= help "Turn on",Off &= help "Turn off"]}
--on Turn on
--off Turn offThis annotation can be used to allow multiple flags within a field:
data Mode = Mode {state :: [State]}
cmdArgs $ Mode {state = enum [[] &= ignore, [On] &= help "Turn on", [Off] &= help "Turn off"]}Now --on --off would produce Mode [On,Off].
Add an annotation to a value.
Create a constructor/record. The first argument should be
the type of field, the second should be a list of fields constructed
originally defined by := or :=+.
This operation is not type safe, and may raise an exception at runtime if any field has the wrong type or label.
Lift a pure value to an annotation.
Like enum, but using the pure annotations.
Like modes, but using the pure annotations.
Provides a few opaque types (for writing type signatures),
verbosity control, default values with def and the
Data/Typeable type classes.
The general type of annotations that can be associated with a value.
A mode. Do not use the Mode constructor directly, instead use mode to construct the Mode and then record updates. Each mode has three main features:
A list of submodes (modeGroupModes)
A list of flags (modeGroupFlags)
Optionally an unnamed argument (modeArgs)
To produce the help information for a mode, either use helpText or show.
The Data class comprehends a fundamental primitive gfoldl for
folding over constructor applications, say terms. This primitive can
be instantiated in several ways to map over the immediate subterms
of a term; see the gmap combinators later in this class. Indeed, a
generic programmer does not necessarily need to use the ingenious gfoldl
primitive but rather the intuitive gmap combinators. The gfoldl
primitive is completed by means to query top-level constructors, to
turn constructor representations into proper terms, and to list all
possible datatype constructors. This completion allows us to serve
generic programming scenarios like read, show, equality, term generation.
The combinators gmapT, gmapQ, gmapM, etc are all provided with
default definitions in terms of gfoldl, leaving open the opportunity
to provide datatype-specific definitions.
(The inclusion of the gmap combinators as members of class Data
allows the programmer or the compiler to derive specialised, and maybe
more efficient code per datatype. Note: gfoldl is more higher-order
than the gmap combinators. This is subject to ongoing benchmarking
experiments. It might turn out that the gmap combinators will be
moved out of the class Data.)
Conceptually, the definition of the gmap combinators in terms of the
primitive gfoldl requires the identification of the gfoldl function
arguments. Technically, we also need to identify the type constructor
c for the construction of the result type from the folded term type.
In the definition of gmapQx combinators, we use phantom type
constructors for the c in the type of gfoldl because the result type
of a query does not involve the (polymorphic) type of the term argument.
In the definition of gmapQl we simply use the plain constant type
constructor because gfoldl is left-associative anyway and so it is
readily suited to fold a left-associative binary operation over the
immediate subterms. In the definition of gmapQr, extra effort is
needed. We use a higher-order accumulation trick to mediate between
left-associative constructor application vs. right-associative binary
operation (e.g., (:)). When the query is meant to compute a value
of type r, then the result type within generic folding is r -> r.
So the result of folding is a function to which we finally pass the
right unit.
With the -XDeriveDataTypeable option, GHC can generate instances of the
Data class automatically. For example, given the declaration
data T a b = C1 a b | C2 deriving (Typeable, Data)GHC will generate an instance that is equivalent to
instance (Data a, Data b) => Data (T a b) where
gfoldl k z (C1 a b) = z C1 `k` a `k` b
gfoldl k z C2 = z C2
gunfold k z c = case constrIndex c of
1 -> k (k (z C1))
2 -> z C2
toConstr (C1 _ _) = con_C1
toConstr C2 = con_C2
dataTypeOf _ = ty_T
con_C1 = mkConstr ty_T "C1" [] Prefix
con_C2 = mkConstr ty_T "C2" [] Prefix
ty_T = mkDataType "Module.T" [con_C1, con_C2]This is suitable for datatypes that are exported transparently.
Data ByteArrayDefined in base-4.20.2.0 · Data.Array.ByteData ByteStringDefined in bytestring-0.12.2.0 · Data.ByteString.Internal.TypeData ByteStringDefined in bytestring-0.12.2.0 · Data.ByteString.Lazy.InternalData ShortByteStringDefined in bytestring-0.12.2.0 · Data.ByteString.Short.InternalData AnnDefined in cmdargs-0.10.22 · System.Console.CmdArgs.Implicit.AnnData CmdArgsPrivateDefined in cmdargs-0.10.22 · System.Console.CmdArgs.Implicit.TypeData VerbosityDefined in cmdargs-0.10.22 · System.Console.CmdArgs.VerbosityData IntegerDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData NaturalDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData VoidDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData AllDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData AnyDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData VersionDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData SpecConstrAnnotationDefined in ghc-internal-9.1003.0 · GHC.Internal.ExtsData IntPtrDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData WordPtrDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData AssociativityDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData DecidedStrictnessDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData FixityDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData SourceStrictnessDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData SourceUnpackednessDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData Int16Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData Int32Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData Int64Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData Int8Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData Word16Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData Word32Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData Word64Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData Word8Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData BoolDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData CharDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData DoubleDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData FloatDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData IntDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData OrderingDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData WordDefined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData AnnLookupDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData AnnTargetDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData BangDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData BndrVisDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData BodyDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData BytesDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData CallconvDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData ClauseDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData ConDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData DecDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData DecidedStrictnessDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData DerivClauseDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData DerivStrategyDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData DocLocDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData ExpDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData FamilyResultSigDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData FixityDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData FixityDirectionDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData ForeignDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData FunDepDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData GuardDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData InfoDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData InjectivityAnnDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData InlineDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData LitDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData LocDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData MatchDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData ModNameDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData ModuleDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData ModuleInfoDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData NameDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData NameFlavourDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData NameSpaceDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData NamespaceSpecifierDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData OccNameDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData OverlapDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData PatDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData PatSynArgsDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData PatSynDirDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData PhasesDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData PkgNameDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData PragmaDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData RangeDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData RoleDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData RuleBndrDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData RuleMatchDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData SafetyDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData SourceStrictnessDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData SourceUnpackednessDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData SpecificityDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData StmtDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData TyLitDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData TySynEqnDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData TypeDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData TypeFamilyHeadDefined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData CalendarDiffDaysDefined in time-1.12.2 · Data.Time.Calendar.CalendarDiffDaysData DayDefined in time-1.12.2 · Data.Time.Calendar.DaysData MonthDefined in time-1.12.2 · Data.Time.Calendar.MonthData QuarterDefined in time-1.12.2 · Data.Time.Calendar.QuarterData QuarterOfYearDefined in time-1.12.2 · Data.Time.Calendar.QuarterData DayOfWeekDefined in time-1.12.2 · Data.Time.Calendar.WeekData AbsoluteTimeDefined in time-1.12.2 · Data.Time.Clock.Internal.AbsoluteTimeData DiffTimeDefined in time-1.12.2 · Data.Time.Clock.Internal.DiffTimeData NominalDiffTimeDefined in time-1.12.2 · Data.Time.Clock.Internal.NominalDiffTimeData SystemTimeDefined in time-1.12.2 · Data.Time.Clock.Internal.SystemTimeData UTCTimeDefined in time-1.12.2 · Data.Time.Clock.Internal.UTCTimeData UniversalTimeDefined in time-1.12.2 · Data.Time.Clock.Internal.UniversalTimeData CalendarDiffTimeDefined in time-1.12.2 · Data.Time.LocalTime.Internal.CalendarDiffTimeData LocalTimeDefined in time-1.12.2 · Data.Time.LocalTime.Internal.LocalTimeData TimeOfDayDefined in time-1.12.2 · Data.Time.LocalTime.Internal.TimeOfDayData TimeZoneDefined in time-1.12.2 · Data.Time.LocalTime.Internal.TimeZoneData ZonedTimeDefined in time-1.12.2 · Data.Time.LocalTime.Internal.ZonedTimeData ()Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData a => Data (Complex a)Defined in base-4.20.2.0 · Data.ComplexData a => Data (First a)Defined in base-4.20.2.0 · Data.SemigroupData a => Data (Last a)Defined in base-4.20.2.0 · Data.SemigroupData a => Data (Max a)Defined in base-4.20.2.0 · Data.SemigroupData a => Data (Min a)Defined in base-4.20.2.0 · Data.SemigroupData a => Data (CmdArgs a)Defined in cmdargs-0.10.22 · System.Console.CmdArgs.Implicit.TypeData a => Data (NonEmpty a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData a => Data (Identity a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData a => Data (First a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData a => Data (Last a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData a => Data (Down a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData a => Data (Dual a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData a => Data (Product a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData a => Data (Sum a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData a => Data (ConstPtr a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData a => Data (ForeignPtr a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData a => Data (ZipList a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Functor.ZipListData a => Data (Maybe a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData a => Data (Ptr a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData a => Data (a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData a => Data [a]Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataFor historical reasons, the constructor name used for (:) is
"(:)". In a derived instance, it would be ":".
Data flag => Data (TyVarBndr flag)Defined in template-haskell-2.22.0.0 · Language.Haskell.TH.SyntaxData m => Data (WrappedMonoid m)Defined in base-4.20.2.0 · Data.SemigroupData p => Data (Par1 p)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataTypeable s => Data (MutableByteArray s)Defined in base-4.20.2.0 · Data.Array.Byte(Data a, Integral a) => Data (Ratio a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData p => Data (U1 p)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData p => Data (V1 p)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataData t => Data (Proxy t)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Data a, Data b) => Data (Arg a b)Defined in base-4.20.2.0 · Data.Semigroup(Data a, Data b) => Data (Either a b)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Data a, Data b) => Data (a, b)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Data a, Data b, Ix a) => Data (Array a b)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Typeable k, Typeable a) => Data (Fixed a)Defined in base-4.20.2.0 · Data.Fixed(Typeable m, Typeable a, Data (m a)) => Data (WrappedMonad m a)Defined in base-4.20.2.0 · Control.Applicative(Data (f a), Data a, Typeable f) => Data (Ap f a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Data (f a), Data a, Typeable f) => Data (Alt f a)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Data (f p), Typeable f, Data p) => Data (Rec1 f p)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Data a, Data b, Data c) => Data (a, b, c)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Typeable a, Typeable b, Typeable c, Data (a b c)) => Data (WrappedArrow a b c)Defined in base-4.20.2.0 · Control.Applicative(Typeable b, Typeable k, Data a) => Data (Constant a b)Defined in transformers-0.6.1.1 · Data.Functor.Constant(Typeable k, Data a, Typeable b) => Data (Const a b)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Coercible a b, Data a, Data b) => Data (Coercion a b)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(a ~ b, Data a) => Data (a :~: b)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Data a, Data b, Data c, Data d) => Data (a, b, c, d)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Typeable a, Typeable f, Typeable g, Typeable k, Data (f a), Data (g a)) => Data (Product f g a)Defined in base-4.20.2.0 · Data.Functor.Product(Typeable a, Typeable f, Typeable g, Typeable k, Data (f a), Data (g a)) => Data (Sum f g a)Defined in base-4.20.2.0 · Data.Functor.Sum(Typeable f, Typeable g, Data p, Data (f p), Data (g p)) => Data ((:*:) f g p)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Typeable f, Typeable g, Data p, Data (f p), Data (g p)) => Data ((:+:) f g p)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Typeable i, Data p, Data c) => Data (K1 i c p)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Typeable i, Typeable j, Typeable a, Typeable b, a ~~ b) => Data (a :~~: b)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Data a, Data b, Data c, Data d, Data e) => Data (a, b, c, d, e)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Data p, Data (f p), Typeable c, Typeable i, Typeable f) => Data (M1 i c f p)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Typeable a, Typeable f, Typeable g, Typeable k1, Typeable k2, Data (f (g a))) => Data (Compose f g a)Defined in base-4.20.2.0 · Data.Functor.Compose(Typeable f, Typeable g, Data p, Data (f (g p))) => Data ((:.:) f g p)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Data a, Data b, Data c, Data d, Data e, Data f) => Data (a, b, c, d, e, f)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.Data(Data a, Data b, Data c, Data d, Data e, Data f, Data g) => Data (a, b, c, d, e, f, g)Defined in ghc-internal-9.1003.0 · GHC.Internal.Data.DataThe class Typeable allows a concrete representation of a type to be calculated.