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Represent feature vectors using boxed Arrays.
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@ -63,6 +63,7 @@ library
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build-depends: base >= 4.8 && < 5
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, aeson
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, aeson-pretty
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, array
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, async-pool
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, bifunctors
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, blaze-html
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@ -19,6 +19,7 @@ import Control.Applicative
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import Control.Monad.Random
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import Control.Monad.State
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import Data.Align.Generic
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import Data.Array
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import Data.Functor.Both hiding (fst, snd)
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import Data.Functor.Listable
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import Data.Hashable
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@ -27,7 +28,6 @@ import qualified Data.KdTree.Static as KdTree
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import Data.Record
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import Data.Semigroup (Min(..), Option(..))
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import Data.These
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import qualified Data.Vector as Vector
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import Diff
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import Info
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import Patch
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@ -162,8 +162,8 @@ rws compare getLabel as bs
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eitherCutoff n diff | n <= 0 = pure (Left diff)
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eitherCutoff n diff = free . bimap Right (eitherCutoff (pred n)) $ runFree diff
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kdas = KdTree.build (Vector.toList . feature) featurizedAs
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kdbs = KdTree.build (Vector.toList . feature) featurizedBs
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kdas = KdTree.build (elems . feature) featurizedAs
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kdbs = KdTree.build (elems . feature) featurizedBs
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featurize :: Int -> Term f (Record fields) -> UnmappedTerm f fields
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featurize index term = UnmappedTerm index (rhead . extract $ defaultFeatureVectorDecorator getLabel term) term
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@ -229,7 +229,7 @@ data TermOrIndexOrNone term = Term term | Index Int | None
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-- | An IntMap of unmapped terms keyed by their position in a list of terms.
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type UnmappedTerms f fields = IntMap (UnmappedTerm f fields)
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type FeatureVector = Vector.Vector Double
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type FeatureVector = Array Int Double
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-- | A `Gram` is a fixed-size view of some portion of a tree, consisting of a `stem` of _p_ labels for parent nodes, and a `base` of _q_ labels of sibling nodes. Collectively, the bag of `Gram`s for each node of a tree (e.g. as computed by `pqGrams`) form a summary of the tree.
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data Gram label = Gram { stem :: [Maybe label], base :: [Maybe label] }
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@ -250,7 +250,10 @@ featureVectorDecorator getLabel p q d
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. pqGramDecorator getLabel p q
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where collect ((gram :. rest) :< functor) = cofree ((foldl' addSubtermVector (unitVector d (hash gram)) functor :. rest) :< functor)
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addSubtermVector :: FeatureVector -> Term f (Record (FeatureVector ': fields)) -> FeatureVector
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addSubtermVector = flip $ Vector.zipWith (+) . rhead . headF . runCofree
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addSubtermVector = flip $ azipWith (+) . rhead . headF . runCofree
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azipWith :: (a -> b -> c) -> Array Int a -> Array Int b -> Array Int c
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azipWith f as bs = listArray (0, d - 1) (fmap (\ i -> f (as ! i) (bs ! i)) [0..(d - 1)])
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-- | Annotates a term with the corresponding p,q-gram at each node.
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pqGramDecorator
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@ -281,10 +284,10 @@ pqGramDecorator getLabel p q = cata algebra
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-- | Computes a unit vector of the specified dimension from a hash.
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unitVector :: Int -> Int -> FeatureVector
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unitVector d hash = normalize ((`evalRand` mkQCGen hash) (Vector.fromList . take d <$> getRandoms))
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unitVector d hash = fmap (/ magnitude) uniform
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where
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normalize vec = fmap (/ vmagnitude vec) vec
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vmagnitude = sqrtDouble . Vector.sum . fmap (** 2)
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uniform = evalRand (listArray (0, d - 1) . take d <$> getRandoms) (mkQCGen hash)
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magnitude = sqrtDouble (sum (fmap (** 2) uniform))
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-- | Strips the head annotation off a term annotated with non-empty records.
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stripTerm :: Functor f => Term f (Record (h ': t)) -> Term f (Record t)
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