| dph-prim-par-0.3: Parallel Primitives for Data-Parallel Haskell. | Contents | Index |
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Data.Array.Parallel.Unlifted.Parallel | Portability | portable | Stability | experimental | Maintainer | Roman Leshchinskiy <rl@cse.unsw.edu.au> |
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Description |
Description ---------------------------------------------------------------
Parallel operations on unlifted arrays
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Synopsis |
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bpermuteUP :: UA a => UArr a -> UArr Int -> UArr a | | updateUP :: forall a. UA a => UArr a -> UArr (Int :*: a) -> UArr a | | enumFromToUP :: (UA a, Enum a) => a -> a -> UArr a | | enumFromThenToUP :: (UA a, Enum a) => a -> a -> a -> UArr a | | enumFromStepLenUP :: Int -> Int -> Int -> UArr Int | | mapUP :: (UA a, UA b) => (a -> b) -> UArr a -> UArr b | | filterUP :: UA a => (a -> Bool) -> UArr a -> UArr a | | packUP :: UA e => UArr e -> UArr Bool -> UArr e | | zipWithUP :: (UA a, UA b, UA c) => (a -> b -> c) -> UArr a -> UArr b -> UArr c | | foldUP :: (UA a, DT a) => (a -> a -> a) -> a -> UArr a -> a | | scanUP :: (DT a, UA a) => (a -> a -> a) -> a -> UArr a -> UArr a | | andUP :: UArr Bool -> Bool | | sumUP :: (UA a, DT a, Num a) => UArr a -> a | | mapSUP :: (UA a, UA b) => (a -> b) -> SUArr a -> SUArr b | | filterSUP :: UA e => (e -> Bool) -> SUArr e -> SUArr e | | packCUP :: UA e => UArr Bool -> SUArr e -> SUArr e | | zipWithSUP :: (UA a, UA b, UA c) => (a -> b -> c) -> SUArr a -> SUArr b -> SUArr c | | foldSUP :: (UA a, UA b) => (b -> a -> b) -> b -> SUArr a -> UArr b | | sumSUP :: (Num e, UA e) => SUArr e -> UArr e | | bpermuteSUP' :: UA a => UArr a -> SUArr Int -> SUArr a | | enumFromThenToSUP :: (Enum e, UA e) => UArr e -> UArr e -> UArr e -> SUArr e | | replicateSUP :: UA e => UArr Int -> UArr e -> SUArr e | | indexedSUP :: UA e => SUArr e -> SUArr (Int :*: e) | | jsTest | | indexedUP :: (DT e, UA e) => UArr e -> UArr (Int :*: e) | | replicateUP :: UA e => Int -> e -> UArr e | | replicateEachUnbalancedUP :: UA e => UArr Int -> UArr e -> UArr e | | dropUP :: Int -> UArr Int -> UArr Int |
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Documentation |
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bpermuteUP :: UA a => UArr a -> UArr Int -> UArr a |
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updateUP :: forall a. UA a => UArr a -> UArr (Int :*: a) -> UArr a |
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enumFromToUP :: (UA a, Enum a) => a -> a -> UArr a |
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enumFromThenToUP :: (UA a, Enum a) => a -> a -> a -> UArr a |
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enumFromStepLenUP :: Int -> Int -> Int -> UArr Int |
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mapUP :: (UA a, UA b) => (a -> b) -> UArr a -> UArr b |
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filterUP :: UA a => (a -> Bool) -> UArr a -> UArr a |
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packUP :: UA e => UArr e -> UArr Bool -> UArr e |
Extract all elements from an array according to a given flag array
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zipWithUP :: (UA a, UA b, UA c) => (a -> b -> c) -> UArr a -> UArr b -> UArr c |
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foldUP :: (UA a, DT a) => (a -> a -> a) -> a -> UArr a -> a |
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scanUP :: (DT a, UA a) => (a -> a -> a) -> a -> UArr a -> UArr a |
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andUP :: UArr Bool -> Bool |
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sumUP :: (UA a, DT a, Num a) => UArr a -> a |
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mapSUP :: (UA a, UA b) => (a -> b) -> SUArr a -> SUArr b |
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filterSUP :: UA e => (e -> Bool) -> SUArr e -> SUArr e |
Filter segmented array
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packCUP :: UA e => UArr Bool -> SUArr e -> SUArr e |
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zipWithSUP :: (UA a, UA b, UA c) => (a -> b -> c) -> SUArr a -> SUArr b -> SUArr c |
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foldSUP :: (UA a, UA b) => (b -> a -> b) -> b -> SUArr a -> UArr b |
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sumSUP :: (Num e, UA e) => SUArr e -> UArr e |
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bpermuteSUP' :: UA a => UArr a -> SUArr Int -> SUArr a |
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enumFromThenToSUP :: (Enum e, UA e) => UArr e -> UArr e -> UArr e -> SUArr e |
Yield a segmented enumerated array using a specific step (unbalanced)
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replicateSUP :: UA e => UArr Int -> UArr e -> SUArr e |
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indexedSUP :: UA e => SUArr e -> SUArr (Int :*: e) |
Associate each data element with its index
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jsTest |
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indexedUP :: (DT e, UA e) => UArr e -> UArr (Int :*: e) |
Associate each element of the array with its index
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replicateUP :: UA e => Int -> e -> UArr e |
Yield an array where all elements contain the same value
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replicateEachUnbalancedUP :: UA e => UArr Int -> UArr e -> UArr e |
Expand every element in the argument array by the factor given in the
corresponding array. The resulting array is unbalanced.
TODO: do we need a balanced version? Will probably provide no performance benefit
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dropUP :: Int -> UArr Int -> UArr Int |
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