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{-# OPTIONS_GHC -fglasgow-exts -fallow-undecidable-instances #-}
-----------------------------------------------------------------------------
-- |
-- Module : Data.Packed.Internal.Vector
-- Copyright : (c) Alberto Ruiz 2007
-- License : GPL-style
--
-- Maintainer : Alberto Ruiz <aruiz@um.es>
-- Stability : provisional
-- Portability : portable (uses FFI)
--
-- Fundamental types
--
-----------------------------------------------------------------------------
module Data.Packed.Internal.Vector where
import Foreign
import Complex
import Control.Monad(when)
import Debug.Trace
import Data.List(transpose,intersperse)
import Data.Typeable
import Data.Maybe(fromJust)
debug x = trace (show x) x
----------------------------------------------------------------------
instance (Storable a, RealFloat a) => Storable (Complex a) where --
alignment x = alignment (realPart x) --
sizeOf x = 2 * sizeOf (realPart x) --
peek p = do --
[re,im] <- peekArray 2 (castPtr p) --
return (re :+ im) --
poke p (a :+ b) = pokeArray (castPtr p) [a,b] --
----------------------------------------------------------------------
(//) :: x -> (x -> y) -> y
infixl 0 //
(//) = flip ($)
check msg ls f = do
err <- f
when (err/=0) (error msg)
mapM_ (touchForeignPtr . fptr) ls
return ()
class (Storable a, Typeable a) => Field a where
instance (Storable a, Typeable a) => Field a where
isReal w x = typeOf (undefined :: Double) == typeOf (w x)
isComp w x = typeOf (undefined :: Complex Double) == typeOf (w x)
baseOf v = (v `at` 0)
scast :: forall a . forall b . (Typeable a, Typeable b) => a -> b
scast = fromJust . cast
----------------------------------------------------------------------
data Vector t = V { dim :: Int
, fptr :: ForeignPtr t
, ptr :: Ptr t
} deriving Typeable
type Vc t s = Int -> Ptr t -> s
infixr 5 :>
type t :> s = Vc t s
vec :: Vector t -> (Vc t s) -> s
vec v f = f (dim v) (ptr v)
createVector :: Storable a => Int -> IO (Vector a)
createVector n = do
when (n <= 0) $ error ("trying to createVector of dim "++show n)
fp <- mallocForeignPtrArray n
let p = unsafeForeignPtrToPtr fp
--putStrLn ("\n---------> V"++show n)
return $ V n fp p
fromList :: Storable a => [a] -> Vector a
fromList l = unsafePerformIO $ do
v <- createVector (length l)
let f _ p = pokeArray p l >> return 0
f // vec v // check "fromList" []
return v
toList :: Storable a => Vector a -> [a]
toList v = unsafePerformIO $ peekArray (dim v) (ptr v)
n # l = if length l == n then fromList l else error "# with wrong size"
at' :: Storable a => Vector a -> Int -> a
at' v n = unsafePerformIO $ peekElemOff (ptr v) n
at :: Storable a => Vector a -> Int -> a
at v n | n >= 0 && n < dim v = at' v n
| otherwise = error "vector index out of range"
instance (Show a, Storable a) => (Show (Vector a)) where
show v = (show (dim v))++" # " ++ show (toList v)
-- | creates a Vector taking a number of consecutive toList from another Vector
subVector :: Storable t => Int -- ^ index of the starting element
-> Int -- ^ number of toList to extract
-> Vector t -- ^ source
-> Vector t -- ^ result
subVector k l (v@V {dim=n, ptr=p, fptr=fp})
| k<0 || k >= n || k+l > n || l < 0 = error "subVector out of range"
| otherwise = unsafePerformIO $ do
r <- createVector l
let f = copyArray (ptr r) (advancePtr p k) l >> return 0
f // check "subVector" [v]
return r
subVector' k l (v@V {dim=n, ptr=p, fptr=fp})
| k<0 || k >= n || k+l > n || l < 0 = error "subVector out of range"
| otherwise = v {dim=l, ptr=advancePtr p k}
{-
-- | creates a new Vector by joining a list of Vectors
join :: Field t => [Vector t] -> Vector t
join [] = error "joining an empty list"
join as = unsafePerformIO $ do
let tot = sum (map size as)
p <- mallocForeignPtrArray tot
withForeignPtr p $ \p ->
joiner as tot p
return (V tot p)
where joiner [] _ _ = return ()
joiner (V n b : cs) _ p = do
withForeignPtr b $ \b' -> copyArray p b' n
joiner cs 0 (advancePtr p n)
-}
constantG n x = fromList (replicate n x)
constantR :: Int -> Double -> Vector Double
constantR = constantAux cconstantR
constantC :: Int -> Complex Double -> Vector (Complex Double)
constantC = constantAux cconstantC
constantAux fun n x = unsafePerformIO $ do
v <- createVector n
px <- newArray [x]
fun px // vec v // check "constantAux" []
free px
return v
foreign import ccall safe "aux.h constantR"
cconstantR :: Ptr Double -> Double :> IO Int
foreign import ccall safe "aux.h constantC"
cconstantC :: Ptr (Complex Double) -> Complex Double :> IO Int
constant :: Field a => Int -> a -> Vector a
constant n x | isReal id x = scast $ constantR n (scast x)
| isComp id x = scast $ constantC n (scast x)
| otherwise = constantG n x
|