mirror of
https://github.com/nikita-volkov/hasql.git
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132 lines
5.4 KiB
Haskell
132 lines
5.4 KiB
Haskell
module Hasql.Prelude
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( module Exports,
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LazyByteString,
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ByteStringBuilder,
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LazyText,
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TextBuilder,
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forMToZero_,
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forMFromZero_,
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strictCons,
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)
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where
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import Control.Applicative as Exports hiding (WrappedArrow (..))
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import Control.Arrow as Exports hiding (first, second)
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import Control.Category as Exports
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import Control.Concurrent as Exports
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import Control.Exception as Exports
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import Control.Monad as Exports hiding (fail, forM, forM_, mapM, mapM_, msum, sequence, sequence_)
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import Control.Monad.Error.Class as Exports (MonadError (..))
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import Control.Monad.Fail as Exports
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import Control.Monad.Fix as Exports hiding (fix)
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import Control.Monad.IO.Class as Exports
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import Control.Monad.Reader.Class as Exports (MonadReader (..))
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import Control.Monad.ST as Exports
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import Control.Monad.Trans.Class as Exports
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import Control.Monad.Trans.Cont as Exports hiding (callCC, shift)
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import Control.Monad.Trans.Except as Exports (Except, ExceptT (ExceptT), catchE, except, finallyE, mapExcept, mapExceptT, runExcept, runExceptT, throwE, withExcept, withExceptT)
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import Control.Monad.Trans.Maybe as Exports
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import Control.Monad.Trans.Reader as Exports (Reader, ReaderT (ReaderT), mapReader, mapReaderT, runReader, runReaderT, withReader, withReaderT)
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import Control.Monad.Trans.State.Strict as Exports (State, StateT (StateT), evalState, evalStateT, execState, execStateT, mapState, mapStateT, runState, runStateT, withState, withStateT)
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import Control.Monad.Trans.Writer.Strict as Exports (Writer, WriterT (..), execWriter, execWriterT, mapWriter, mapWriterT, runWriter)
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import Data.Bifunctor as Exports
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import Data.Bits as Exports
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import Data.Bool as Exports
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import Data.ByteString as Exports (ByteString)
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import Data.ByteString.Builder qualified
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import Data.ByteString.Lazy qualified
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import Data.Char as Exports
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import Data.Coerce as Exports
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import Data.Complex as Exports
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import Data.DList as Exports (DList)
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import Data.Data as Exports
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import Data.Dynamic as Exports
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import Data.Either as Exports
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import Data.Fixed as Exports
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import Data.Foldable as Exports hiding (toList)
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import Data.Function as Exports hiding (id, (.))
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import Data.Functor as Exports hiding (unzip)
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import Data.Functor.Compose as Exports
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import Data.Functor.Contravariant as Exports
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import Data.Functor.Contravariant.Divisible as Exports
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import Data.Functor.Identity as Exports
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import Data.Hashable as Exports (Hashable (..))
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import Data.IORef as Exports
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import Data.Int as Exports
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import Data.Ix as Exports
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import Data.List as Exports hiding (all, and, any, concat, concatMap, elem, find, foldl, foldl', foldl1, foldr, foldr1, isSubsequenceOf, mapAccumL, mapAccumR, maximum, maximumBy, minimum, minimumBy, notElem, or, product, sortOn, sum, uncons)
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import Data.List.NonEmpty as Exports (NonEmpty (..))
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import Data.Maybe as Exports
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import Data.Monoid as Exports hiding (Alt, (<>))
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import Data.Ord as Exports
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import Data.Profunctor.Unsafe as Exports
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import Data.Proxy as Exports
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import Data.Ratio as Exports
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import Data.STRef as Exports
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import Data.Scientific as Exports (Scientific)
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import Data.Semigroup as Exports hiding (First (..), Last (..))
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import Data.String as Exports
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import Data.Text as Exports (Text)
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import Data.Text.Lazy qualified
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import Data.Text.Lazy.Builder qualified
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import Data.Time as Exports
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import Data.Traversable as Exports
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import Data.Tuple as Exports
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import Data.UUID as Exports (UUID)
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import Data.Unique as Exports
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import Data.Vector as Exports (Vector)
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import Data.Version as Exports
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import Data.Void as Exports
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import Data.Word as Exports
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import Debug.Trace as Exports
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import Foreign.ForeignPtr as Exports
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import Foreign.Ptr as Exports
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import Foreign.StablePtr as Exports
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import Foreign.Storable as Exports
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import GHC.Conc as Exports hiding (orElse, threadWaitRead, threadWaitReadSTM, threadWaitWrite, threadWaitWriteSTM, withMVar)
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import GHC.Exts as Exports (IsList (..), groupWith, inline, lazy, sortWith)
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import GHC.Generics as Exports (Generic)
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import GHC.IO.Exception as Exports
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import GHC.OverloadedLabels as Exports
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import Numeric as Exports
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import System.Environment as Exports
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import System.Exit as Exports
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import System.IO as Exports (Handle, hClose)
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import System.IO.Error as Exports
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import System.IO.Unsafe as Exports
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import System.Mem as Exports
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import System.Mem.StableName as Exports
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import System.Timeout as Exports
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import Text.ParserCombinators.ReadP as Exports (ReadP, readP_to_S, readS_to_P)
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import Text.ParserCombinators.ReadPrec as Exports (ReadPrec, readP_to_Prec, readPrec_to_P, readPrec_to_S, readS_to_Prec)
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import Text.Printf as Exports (hPrintf, printf)
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import Unsafe.Coerce as Exports
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import Prelude as Exports hiding (Read, all, and, any, concat, concatMap, elem, fail, foldl, foldl1, foldr, foldr1, id, mapM, mapM_, maximum, minimum, notElem, or, product, sequence, sequence_, sum, (.))
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type LazyByteString =
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Data.ByteString.Lazy.ByteString
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type ByteStringBuilder =
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Data.ByteString.Builder.Builder
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type LazyText =
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Data.Text.Lazy.Text
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type TextBuilder =
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Data.Text.Lazy.Builder.Builder
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{-# INLINE forMToZero_ #-}
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forMToZero_ :: (Applicative m) => Int -> (Int -> m a) -> m ()
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forMToZero_ !startN f =
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($ pred startN) $ fix $ \loop !n -> if n >= 0 then f n *> loop (pred n) else pure ()
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{-# INLINE forMFromZero_ #-}
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forMFromZero_ :: (Applicative m) => Int -> (Int -> m a) -> m ()
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forMFromZero_ !endN f =
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($ 0) $ fix $ \loop !n -> if n < endN then f n *> loop (succ n) else pure ()
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{-# INLINE strictCons #-}
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strictCons :: a -> [a] -> [a]
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strictCons !a b =
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let !c = a : b in c
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