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mkSymbolicEnumeration :: Name -> Q [Dec]sbv Data.SBV Make an enumeration a symbolic type.
svEnumFromThenTo :: SVal -> Maybe SVal -> SVal -> Maybe [SVal]sbv Data.SBV.Dynamic Constructing [x, y, .. z] and [x .. y]. Only works when all arguments are concrete and integral and the result is guaranteed finite Note that the it isn't "obviously" clear why the following works; after all we're doing the construction over Integer's and mapping it back to other types such as SIntN/SWordN. The reason is that the values we receive are guaranteed to be in their domains; and thus the lifting to Integers preserves the bounds; and then going back is just fine. So, things like [1, 5 .. 200] :: [SInt8] work just fine (end evaluate to empty list), since we see [1, 5 .. -56] in the Integer domain. Also note the explicit check for s /= f below to make sure we don't stutter and produce an infinite list.
showNegativeNumber :: (Show a, Num a, Ord a) => a -> Stringsbv Data.SBV.Internals When we show a negative number in SMTLib, we must properly parenthesize.
mkSymbolicEnumeration :: Name -> Q [Dec]sbv Data.SBV.Trans Make an enumeration a symbolic type.
fromEnumMap :: Methods queue set -> EnumMap SetId set -> queueset-cover Math.SetCover.Queue No documentation available.
typeNumber :: Type t => t -> CIntsocket System.Socket This number designates this Type on the specific platform. This method is only exported for implementing extension libraries. The function shall yield the values of constants like SOCK_STREAM, SOCK_DGRAM etc.
deriveEnumerable :: Name -> Q [Dec]testing-feat Test.Feat No documentation available.
deriveEnumerable :: Name -> Q [Dec]testing-feat Test.Feat.Class No documentation available.
fEnum :: FlexOptions a -> Enumerate atesting-feat Test.Feat.Driver The base enumeration to use, before applying fProcess.
randomEnum :: (Enum a, RandomGen g) => (a, a) -> g -> (a, g)tf-random System.Random.TF.Instances No documentation available.