Add DFA and NFA representations
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@ -21,6 +21,9 @@ description: Please see the README on GitHub at <https://github.com/gith
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dependencies:
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- base >= 4.7 && < 5
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- transformers >= 0.5.6 && < 0.6
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- containers >= 0.6 && < 0.7
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# algebraic-graphs >= 0.4 && < 0.5
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library:
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source-dirs: src
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36
src/Rextra/Dfa.hs
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36
src/Rextra/Dfa.hs
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@ -0,0 +1,36 @@
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module Rextra.Dfa where
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-- TODO don't export internals
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import qualified Data.Map.Strict as Map
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import qualified Data.Set as Set
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data State s t = State
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{ transitions :: Map.Map t s
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, defaultTransition :: s
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, accepting :: Bool
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}
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data Dfa s t = Dfa
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{ dfaStates :: Map.Map s (State s t)
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, dfaEntryState :: s
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}
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{-
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- Constructing and modifying a DFA
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-}
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-- TODO
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{-
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- "Executing" a DFA
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-}
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getState :: (Ord s) => Dfa s t -> s -> State s t
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getState dfa s = dfaStates dfa Map.! s
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transition :: (Ord s, Ord t) => Dfa s t -> s -> t -> s
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transition dfa s t =
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let state = getState dfa s
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in case transitions state Map.!? t of
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(Just nextState) -> nextState
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Nothing -> defaultTransition state
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45
src/Rextra/Nfa.hs
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45
src/Rextra/Nfa.hs
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@ -0,0 +1,45 @@
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module Rextra.Nfa where
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-- TODO don't export internals
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import qualified Data.Map.Strict as Map
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import qualified Data.Set as Set
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data TransitionCondition t
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= Only (Set.Set t)
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| AllExcept (Set.Set t)
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specialStates :: TransitionCondition t -> Set.Set t
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specialStates (Only s) = s
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specialStates (AllExcept s) = s
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accepts :: (Ord t) => TransitionCondition t -> t -> Bool
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accepts (Only s) t = Set.member t s
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accepts (AllExcept s) t = Set.notMember t s
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type State s t = [(TransitionCondition t, s)]
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data Nfa s t = Nfa
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{ nfaStates :: Map.Map s (State s t)
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, nfaEntryState :: s
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, nfaExitStates :: Set.Set s
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}
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{-
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- Constructing and modifying a NFA
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-}
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-- TODO
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{-
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- "Executing" a NFA
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-}
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getState :: (Ord s) => Nfa s t -> s -> State s t
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getState nfa s = nfaStates nfa Map.! s
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-- * Starting from a state, find all the states that it can transition to with token 't'.
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nextStates :: (Ord s, Ord t) => State s t -> t -> Set.Set s
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nextStates state t = Set.fromList . map snd . filter (\(cond, _) -> cond `accepts` t) $ state
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nfaTransition :: (Ord s, Ord t) => Nfa s t -> Set.Set s -> t -> Set.Set s
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nfaTransition nfa ss t = foldMap (\s -> nextStates (getState nfa s) t) ss
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