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Move Precise & Latest into their own module.
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@ -6,6 +6,7 @@ module Control.Abstract.Addressable
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import Control.Abstract.Context
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import Control.Abstract.Evaluator
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import Data.Abstract.Address
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import Data.Abstract.Address.Precise
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import Data.Abstract.FreeVariables
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import Prologue
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@ -4,7 +4,6 @@ module Data.Abstract.Address where
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import Data.Abstract.FreeVariables
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import Data.Abstract.Module (ModuleInfo)
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import Data.Abstract.Package (PackageInfo)
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import Data.Monoid (Last(..))
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import Data.Semigroup.Reducer
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import Data.Semilattice.Lower
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import Data.Set as Set
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@ -22,14 +21,6 @@ instance Show location => Show (Address location value) where
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showsPrec d = showsPrec d . unAddress
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-- | 'Precise' models precise store semantics where only the 'Latest' value is taken. Everything gets it's own address (always makes a new allocation) which makes for a larger store.
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newtype Precise = Precise { unPrecise :: Int }
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deriving (Eq, Ord)
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instance Show Precise where
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showsPrec d = showsUnaryWith showsPrec "Precise" d . unPrecise
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-- | 'Monovariant' models using one address for a particular name. It trackes the set of values that a particular address takes and uses it's name to lookup in the store and only allocation if new.
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newtype Monovariant = Monovariant { unMonovariant :: Name }
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deriving (Eq, Ord)
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@ -46,19 +37,6 @@ data Located location = Located
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deriving (Eq, Ord, Show)
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-- | A cell holding a single value. Writes will replace any prior value.
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--
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-- This is equivalent to 'Data.Monoid.Last', but with a 'Show' instance designed to minimize the amount of text we have to scroll past in ghci.
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newtype Latest value = Latest { unLatest :: Last value }
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deriving (Eq, Foldable, Functor, Lower, Monoid, Semigroup, Ord, Traversable)
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instance Reducer value (Latest value) where
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unit = Latest . unit . Just
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instance Show value => Show (Latest value) where
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showsPrec d = showsPrec d . getLast . unLatest
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-- | A cell holding all values written to its address.
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--
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-- This is equivalent to 'Set', but with a 'Show' instance designed to minimize the amount of text we have to scroll past in ghci.
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@ -1 +1,27 @@
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{-# LANGUAGE GeneralizedNewtypeDeriving #-}
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module Data.Abstract.Address.Precise where
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import Data.Monoid (Last(..))
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import Data.Semigroup.Reducer
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import Data.Semilattice.Lower
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import Prologue
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-- | 'Precise' models precise store semantics where only the 'Latest' value is taken. Everything gets it's own address (always makes a new allocation) which makes for a larger store.
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newtype Precise = Precise { unPrecise :: Int }
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deriving (Eq, Ord)
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instance Show Precise where
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showsPrec d = showsUnaryWith showsPrec "Precise" d . unPrecise
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-- | A cell holding a single value. Writes will replace any prior value.
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--
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-- This is equivalent to 'Data.Monoid.Last', but with a 'Show' instance designed to minimize the amount of text we have to scroll past in ghci.
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newtype Latest value = Latest { unLatest :: Last value }
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deriving (Eq, Foldable, Functor, Lower, Monoid, Semigroup, Ord, Traversable)
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instance Reducer value (Latest value) where
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unit = Latest . unit . Just
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instance Show value => Show (Latest value) where
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showsPrec d = showsPrec d . getLast . unLatest
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@ -23,6 +23,7 @@ import Control.Abstract
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import qualified Control.Exception as Exc
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import Control.Monad.Effect (reinterpret)
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import Data.Abstract.Address
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import Data.Abstract.Address.Precise
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import Data.Abstract.Evaluatable
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import Data.Abstract.Module
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import Data.Abstract.Package as Package
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@ -9,6 +9,7 @@ import Control.Abstract.Evaluator
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import Control.Abstract.TermEvaluator
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import Control.Monad.Effect.Trace (runPrintingTrace)
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import Data.Abstract.Address
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import Data.Abstract.Address.Precise
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import Data.Abstract.Evaluatable
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import Data.Abstract.Value
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import Data.Abstract.Type
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@ -18,6 +18,7 @@ import Control.Arrow ((&&&))
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import Control.Monad.Effect.Trace as X (runIgnoringTrace, runReturningTrace)
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import Control.Monad ((>=>))
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import Data.Abstract.Address as X
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import Data.Abstract.Address.Precise as X
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import Data.Abstract.Environment as Env
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import Data.Abstract.Evaluatable
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import Data.Abstract.FreeVariables as X hiding (dropExtension)
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