basics-0.2.0.0: src/Basics/Int8.hs
{-# language BangPatterns #-}
{-# language DataKinds #-}
{-# language MagicHash #-}
{-# language UnboxedTuples #-}
module Basics.Int8
( -- Types
T
, T#
, R
-- Lifting
, lift
, unlift
-- Compare
, gt#
, lt#
, gte#
, lte#
, eq#
, neq#
, gt
, lt
, gte
, lte
, eq
, neq
-- Array
, read#
, write#
, index#
, set#
, uninitialized#
, initialized#
, uninitialized
, initialized
, copy#
, copyMutable#
, shrink#
-- Constants
, zero
, def
-- Metadata
, signed
, size
-- Encoding
, shows
) where
import Prelude hiding (shows)
import Data.Primitive (MutableByteArray(..))
import GHC.Exts hiding (setByteArray#)
import GHC.Int
import GHC.ST (ST(ST))
import qualified Prelude
import qualified GHC.Exts as Exts
type T = Int8
type T# = Int#
type R = 'IntRep
def :: T
{-# inline def #-}
def = 0
zero :: T
{-# inline zero #-}
zero = 0
signed :: Bool
{-# inline signed #-}
signed = False
size :: Int
{-# inline size #-}
size = 1
lift :: T# -> T
{-# inline lift #-}
lift i = I8# (Exts.intToInt8# i)
unlift :: T -> T#
{-# inline unlift #-}
unlift (I8# i) = Exts.int8ToInt# i
gt# :: T# -> T# -> Int#
{-# inline gt# #-}
gt# = (>#)
lt# :: T# -> T# -> Int#
{-# inline lt# #-}
lt# = (<#)
gte# :: T# -> T# -> Int#
{-# inline gte# #-}
gte# = (>=#)
lte# :: T# -> T# -> Int#
{-# inline lte# #-}
lte# = (<=#)
eq# :: T# -> T# -> Int#
{-# inline eq# #-}
eq# = (==#)
neq# :: T# -> T# -> Int#
{-# inline neq# #-}
neq# = (/=#)
gt :: T -> T -> Bool
{-# inline gt #-}
gt = (>)
lt :: T -> T -> Bool
{-# inline lt #-}
lt = (<)
gte :: T -> T -> Bool
{-# inline gte #-}
gte = (>=)
lte :: T -> T -> Bool
{-# inline lte #-}
lte = (<=)
eq :: T -> T -> Bool
{-# inline eq #-}
eq = (==)
neq :: T -> T -> Bool
{-# inline neq #-}
neq = (/=)
index# :: ByteArray# -> Int# -> T#
{-# inline index# #-}
index# arr i = Exts.int8ToInt# (indexInt8Array# arr i)
read# :: MutableByteArray# s -> Int# -> State# s -> (# State# s, T# #)
{-# inline read# #-}
read# arr i st =
let !(# st', v #) = readInt8Array# arr i st
in (# st', Exts.int8ToInt# v #)
write# :: MutableByteArray# s -> Int# -> T# -> State# s -> State# s
{-# inline write# #-}
write# arr i v st = writeInt8Array# arr i (Exts.intToInt8# v) st
set# :: MutableByteArray# s -> Int# -> Int# -> T# -> State# s -> State# s
{-# inline set# #-}
set# marr off len x s = Exts.setByteArray# marr off len x s
shrink# :: MutableByteArray# s -> Int# -> State# s -> (# State# s, MutableByteArray# s #)
{-# inline shrink# #-}
shrink# m i s = (# Exts.shrinkMutableByteArray# m i s, m #)
uninitialized# :: Int# -> State# s -> (# State# s, MutableByteArray# s #)
{-# inline uninitialized# #-}
uninitialized# = Exts.newByteArray#
uninitialized :: Int -> ST s (MutableByteArray s)
{-# inline uninitialized #-}
uninitialized (I# sz) = ST $ \s0 -> case uninitialized# sz s0 of
(# s1, a #) -> (# s1, MutableByteArray a #)
initialized :: Int -> T -> ST s (MutableByteArray s)
{-# inline initialized #-}
initialized (I# sz) e = ST $ \s0 -> case initialized# sz (unlift e) s0 of
(# s1, a #) -> (# s1, MutableByteArray a #)
copy# :: MutableByteArray# s -> Int# -> ByteArray# -> Int# -> Int# -> State# s -> State# s
{-# inline copy# #-}
copy# dst doff src soff len =
Exts.copyByteArray# src soff dst doff len
copyMutable# :: MutableByteArray# s -> Int# -> MutableByteArray# s -> Int# -> Int# -> State# s -> State# s
{-# inline copyMutable# #-}
copyMutable# dst doff src soff len =
Exts.copyMutableByteArray# src soff dst doff len
initialized# :: Int# -> T# -> State# s -> (# State# s, MutableByteArray# s #)
{-# inline initialized# #-}
initialized# n e s0 = case Exts.newByteArray# n s0 of
(# s1, a #) -> case set# a 0# n e s1 of
s2 -> (# s2, a #)
shows :: T -> String -> String
shows = Prelude.shows