angefangen preprocess function, dist/setup-config wieder raus
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.gitignore
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.gitignore
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@ -5,4 +5,5 @@
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*.lkshf
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/.dist-buildwrapper
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dist/setup-config
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.project*
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dist/setup-config
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dist/setup-config
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src/DCB.hs
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src/DCB.hs
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module DCB where
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--import Stream hiding (map) --same as Data.Stream imported above?
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import Data.Array.Accelerate (Z(..), DIM1, DIM2, DIM3, Scalar, Vector, (:.)(..), Array,
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import Data.Array.Accelerate (Z(..), DIM0, DIM1, DIM2, DIM3, Scalar, Vector, (:.)(..), Array,(!),
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Int8, Int, Float, Double, Acc, Exp, Elt)
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import qualified Data.Array.Accelerate as A
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-- change to Data.Array.Accelerate.CUDA as I and link accelerate-cuda to use GPU instead of CPU
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@ -28,28 +28,45 @@ type Attr = Matrix Double
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-- Adjecency-Matrix
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type Adj = Matrix Int8
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-- Vector of the Adjecency-Matrix
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type AdjV = Vector Int8
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type AdjV = Vector Int
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newtype Constraints = Matrix Double
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-- Graph consists of a Vector denoting which colums of the matrix represents wich originating
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-- column in the global adjencency-matrix, the reduces adjencency-matrix of the graph, a
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-- matrix of constraints and a scalar denoting the density
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type Density = Scalar Float
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type Density = Scalar Double
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-- Graph
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type Graph = (Vector Int8, Adj, Constraints, Density)
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type Graph = (Vector Int, Adj, Constraints, Density)
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-- Vector of Graphs
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type MultiGraph e = (Vector Int8, Array DIM3 e, Constraints, Density)
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type MultiGraph e = (Vector Int, Array DIM3 e, Constraints, Density)
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-- Multigraph correct output ?
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preprocess :: Acc (Matrix Int8) -> Acc Attr -> Acc (MultiGraph Int8)
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preprocess adj a = undefined
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-- generate function for initialising the constraints matrix of a subgraph
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-- first column contains minimum value of each attribute, second column contains maximum value
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-- zeroth column contains 0 after initialisation (should contain 1 if constraints are fulfilled
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-- afterwards)
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-- TODO: DIM2 input -> Exp DIM2
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genConstrMat :: Acc Attr -> Acc (Vector Int) -> DIM2 -> Exp Double
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genConstrMat attr nodes ix =
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let
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(Z:.idAttr:.col) = ix -- unlift ix :: ((:.) ((:.) Z Int) Int)
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in case col of
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1 -> A.the $A.minimum (A.map (\i -> attr!(A.index2 i $A.lift idAttr)) nodes)
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2 -> A.the $A.maximum (A.map (\i -> attr!(A.index2 i $A.lift idAttr)) nodes)
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_ -> 0.0
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expand :: Acc (MultiGraph Int8)-> Acc Adj -> Acc Attr -> Acc (MultiGraph Int8)
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expand g a att = undefined
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-- constraint gets a Graph and an Attribute-Matrix and yields true, if the Graph still fulfills
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-- all constraints defined via the Attribute-Matrix.
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constraint :: Acc Graph -> Acc Attr -> Acc (Scalar Bool)
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constraint g a = undefined
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--constraint :: Acc Graph -> Acc Attr -> Acc (Scalar Bool)
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constraint :: Acc Graph -> Int -> Acc Attr -> Acc (Maybe Graph)
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constraint g newNode a = undefined
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-- addPoint gets a graph and a tuple of an adjecancy-Vector with an int wich column of the
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