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271 lines
13 KiB
Haskell
271 lines
13 KiB
Haskell
-----------------------------------------------------------------------------
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-- |
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-- Module : Data.SBV.Compilers.CodeGen
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-- Copyright : (c) Levent Erkok
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-- License : BSD3
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-- Maintainer : erkokl@gmail.com
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-- Stability : experimental
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--
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-- Code generation utilities
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-----------------------------------------------------------------------------
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{-# LANGUAGE FlexibleInstances #-}
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{-# LANGUAGE GeneralizedNewtypeDeriving #-}
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module Data.SBV.Compilers.CodeGen where
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import Control.Monad.Trans
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import Control.Monad.State.Lazy
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import Control.Applicative (Applicative)
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import Data.Char (toLower, isSpace)
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import Data.List (nub, isPrefixOf, intercalate, (\\))
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import System.Directory (createDirectory, doesDirectoryExist, doesFileExist)
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import System.FilePath ((</>))
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import Text.PrettyPrint.HughesPJ (Doc, vcat)
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import qualified Text.PrettyPrint.HughesPJ as P (render)
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import Data.SBV.BitVectors.Data
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-- | Abstract over code generation for different languages
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class CgTarget a where
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targetName :: a -> String
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translate :: a -> CgConfig -> String -> CgState -> Result -> CgPgmBundle
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-- | Options for code-generation.
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data CgConfig = CgConfig {
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cgRTC :: Bool -- ^ If 'True', perform run-time-checks for index-out-of-bounds or shifting-by-large values etc.
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, cgInteger :: Maybe Int -- ^ Bit-size to use for representing SInteger (if any)
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, cgReal :: Maybe CgSRealType -- ^ Type to use for representing SReal (if any)
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, cgDriverVals :: [Integer] -- ^ Values to use for the driver program generated, useful for generating non-random drivers.
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, cgGenDriver :: Bool -- ^ If 'True', will generate a driver program
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, cgGenMakefile :: Bool -- ^ If 'True', will generate a makefile
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}
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-- | Default options for code generation. The run-time checks are turned-off, and the driver values are completely random.
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defaultCgConfig :: CgConfig
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defaultCgConfig = CgConfig { cgRTC = False, cgInteger = Nothing, cgReal = Nothing, cgDriverVals = [], cgGenDriver = True, cgGenMakefile = True }
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-- | Abstraction of target language values
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data CgVal = CgAtomic SW
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| CgArray [SW]
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-- | Code-generation state
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data CgState = CgState {
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cgInputs :: [(String, CgVal)]
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, cgOutputs :: [(String, CgVal)]
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, cgReturns :: [CgVal]
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, cgPrototypes :: [String] -- extra stuff that goes into the header
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, cgDecls :: [String] -- extra stuff that goes into the top of the file
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, cgLDFlags :: [String] -- extra options that go to the linker
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, cgFinalConfig :: CgConfig
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}
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-- | Initial configuration for code-generation
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initCgState :: CgState
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initCgState = CgState {
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cgInputs = []
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, cgOutputs = []
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, cgReturns = []
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, cgPrototypes = []
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, cgDecls = []
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, cgLDFlags = []
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, cgFinalConfig = defaultCgConfig
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}
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-- | The code-generation monad. Allows for precise layout of input values
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-- reference parameters (for returning composite values in languages such as C),
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-- and return values.
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newtype SBVCodeGen a = SBVCodeGen (StateT CgState Symbolic a)
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deriving (Applicative, Functor, Monad, MonadIO, MonadState CgState)
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-- | Reach into symbolic monad from code-generation
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liftSymbolic :: Symbolic a -> SBVCodeGen a
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liftSymbolic = SBVCodeGen . lift
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-- | Reach into symbolic monad and output a value. Returns the corresponding SW
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cgSBVToSW :: SBV a -> SBVCodeGen SW
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cgSBVToSW = liftSymbolic . sbvToSymSW
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-- | Sets RTC (run-time-checks) for index-out-of-bounds, shift-with-large value etc. on/off. Default: 'False'.
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cgPerformRTCs :: Bool -> SBVCodeGen ()
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cgPerformRTCs b = modify (\s -> s { cgFinalConfig = (cgFinalConfig s) { cgRTC = b } })
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-- | Sets number of bits to be used for representing the 'SInteger' type in the generated C code.
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-- The argument must be one of @8@, @16@, @32@, or @64@. Note that this is essentially unsafe as
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-- the semantics of unbounded Haskell integers becomes reduced to the corresponding bit size, as
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-- typical in most C implementations.
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cgIntegerSize :: Int -> SBVCodeGen ()
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cgIntegerSize i
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| i `notElem` [8, 16, 32, 64]
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= error $ "SBV.cgIntegerSize: Argument must be one of 8, 16, 32, or 64. Received: " ++ show i
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| True
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= modify (\s -> s { cgFinalConfig = (cgFinalConfig s) { cgInteger = Just i }})
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-- | Possible mappings for the 'SReal' type when translated to C. Used in conjunction
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-- with the function 'cgSRealType'. Note that the particular characteristics of the
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-- mapped types depend on the platform and the compiler used for compiling the generated
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-- C program. See <http://en.wikipedia.org/wiki/C_data_types> for details.
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data CgSRealType = CgFloat -- ^ @float@
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| CgDouble -- ^ @double@
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| CgLongDouble -- ^ @long double@
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deriving Eq
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-- | 'Show' instance for 'cgSRealType' displays values as they would be used in a C program
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instance Show CgSRealType where
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show CgFloat = "float"
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show CgDouble = "double"
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show CgLongDouble = "long double"
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-- | Sets the C type to be used for representing the 'SReal' type in the generated C code.
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-- The setting can be one of C's @"float"@, @"double"@, or @"long double"@, types, depending
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-- on the precision needed. Note that this is essentially unsafe as the semantics of
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-- infinite precision SReal values becomes reduced to the corresponding floating point type in
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-- C, and hence it is subject to rounding errors.
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cgSRealType :: CgSRealType -> SBVCodeGen ()
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cgSRealType rt = modify (\s -> s {cgFinalConfig = (cgFinalConfig s) { cgReal = Just rt }})
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-- | Should we generate a driver program? Default: 'True'. When a library is generated, it will have
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-- a driver if any of the contituent functions has a driver. (See 'compileToCLib'.)
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cgGenerateDriver :: Bool -> SBVCodeGen ()
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cgGenerateDriver b = modify (\s -> s { cgFinalConfig = (cgFinalConfig s) { cgGenDriver = b } })
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-- | Should we generate a Makefile? Default: 'True'.
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cgGenerateMakefile :: Bool -> SBVCodeGen ()
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cgGenerateMakefile b = modify (\s -> s { cgFinalConfig = (cgFinalConfig s) { cgGenMakefile = b } })
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-- | Sets driver program run time values, useful for generating programs with fixed drivers for testing. Default: None, i.e., use random values.
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cgSetDriverValues :: [Integer] -> SBVCodeGen ()
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cgSetDriverValues vs = modify (\s -> s { cgFinalConfig = (cgFinalConfig s) { cgDriverVals = vs } })
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-- | Adds the given lines to the header file generated, useful for generating programs with uninterpreted functions.
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cgAddPrototype :: [String] -> SBVCodeGen ()
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cgAddPrototype ss = modify (\s -> let old = cgPrototypes s
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new = if null old then ss else old ++ [""] ++ ss
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in s { cgPrototypes = new })
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-- | Adds the given lines to the program file generated, useful for generating programs with uninterpreted functions.
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cgAddDecl :: [String] -> SBVCodeGen ()
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cgAddDecl ss = modify (\s -> let old = cgDecls s
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new = if null old then ss else old ++ [""] ++ ss
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in s { cgDecls = new })
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-- | Adds the given words to the compiler options in the generated Makefile, useful for linking extra stuff in.
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cgAddLDFlags :: [String] -> SBVCodeGen ()
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cgAddLDFlags ss = modify (\s -> s { cgLDFlags = cgLDFlags s ++ ss })
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-- | Creates an atomic input in the generated code.
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cgInput :: SymWord a => String -> SBVCodeGen (SBV a)
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cgInput nm = do r <- liftSymbolic forall_
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sw <- cgSBVToSW r
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modify (\s -> s { cgInputs = (nm, CgAtomic sw) : cgInputs s })
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return r
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-- | Creates an array input in the generated code.
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cgInputArr :: SymWord a => Int -> String -> SBVCodeGen [SBV a]
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cgInputArr sz nm
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| sz < 1 = error $ "SBV.cgInputArr: Array inputs must have at least one element, given " ++ show sz ++ " for " ++ show nm
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| True = do rs <- liftSymbolic $ mapM (const forall_) [1..sz]
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sws <- mapM cgSBVToSW rs
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modify (\s -> s { cgInputs = (nm, CgArray sws) : cgInputs s })
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return rs
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-- | Creates an atomic output in the generated code.
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cgOutput :: SymWord a => String -> SBV a -> SBVCodeGen ()
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cgOutput nm v = do _ <- liftSymbolic (output v)
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sw <- cgSBVToSW v
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modify (\s -> s { cgOutputs = (nm, CgAtomic sw) : cgOutputs s })
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-- | Creates an array output in the generated code.
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cgOutputArr :: SymWord a => String -> [SBV a] -> SBVCodeGen ()
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cgOutputArr nm vs
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| sz < 1 = error $ "SBV.cgOutputArr: Array outputs must have at least one element, received " ++ show sz ++ " for " ++ show nm
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| True = do _ <- liftSymbolic (mapM output vs)
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sws <- mapM cgSBVToSW vs
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modify (\s -> s { cgOutputs = (nm, CgArray sws) : cgOutputs s })
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where sz = length vs
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-- | Creates a returned (unnamed) value in the generated code.
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cgReturn :: SymWord a => SBV a -> SBVCodeGen ()
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cgReturn v = do _ <- liftSymbolic (output v)
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sw <- cgSBVToSW v
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modify (\s -> s { cgReturns = CgAtomic sw : cgReturns s })
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-- | Creates a returned (unnamed) array value in the generated code.
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cgReturnArr :: SymWord a => [SBV a] -> SBVCodeGen ()
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cgReturnArr vs
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| sz < 1 = error $ "SBV.cgReturnArr: Array returns must have at least one element, received " ++ show sz
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| True = do _ <- liftSymbolic (mapM output vs)
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sws <- mapM cgSBVToSW vs
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modify (\s -> s { cgReturns = CgArray sws : cgReturns s })
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where sz = length vs
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-- | Representation of a collection of generated programs.
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data CgPgmBundle = CgPgmBundle (Maybe Int, Maybe CgSRealType) [(FilePath, (CgPgmKind, [Doc]))]
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-- | Different kinds of "files" we can produce. Currently this is quite "C" specific.
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data CgPgmKind = CgMakefile [String]
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| CgHeader [Doc]
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| CgSource
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| CgDriver
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-- | Is this a driver program?
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isCgDriver :: CgPgmKind -> Bool
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isCgDriver CgDriver = True
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isCgDriver _ = False
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-- | Is this a make file?
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isCgMakefile :: CgPgmKind -> Bool
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isCgMakefile CgMakefile{} = True
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isCgMakefile _ = False
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-- | A simple way to print bundles, mostly for debugging purposes.
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instance Show CgPgmBundle where
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show (CgPgmBundle _ fs) = intercalate "\n" $ map showFile fs
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where showFile :: (FilePath, (CgPgmKind, [Doc])) -> String
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showFile (f, (_, ds)) = "== BEGIN: " ++ show f ++ " ================\n"
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++ render' (vcat ds)
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++ "== END: " ++ show f ++ " =================="
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-- | Generate code for a symbolic program, returning a Code-gen bundle, i.e., collection
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-- of makefiles, source code, headers, etc.
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codeGen :: CgTarget l => l -> CgConfig -> String -> SBVCodeGen () -> IO CgPgmBundle
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codeGen l cgConfig nm (SBVCodeGen comp) = do
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(((), st'), res) <- runSymbolic' CodeGen $ runStateT comp initCgState { cgFinalConfig = cgConfig }
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let st = st' { cgInputs = reverse (cgInputs st')
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, cgOutputs = reverse (cgOutputs st')
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}
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allNamedVars = map fst (cgInputs st ++ cgOutputs st)
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dupNames = allNamedVars \\ nub allNamedVars
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unless (null dupNames) $
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error $ "SBV.codeGen: " ++ show nm ++ " has following argument names duplicated: " ++ unwords dupNames
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return $ translate l (cgFinalConfig st) nm st res
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-- | Render a code-gen bundle to a directory or to stdout
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renderCgPgmBundle :: Maybe FilePath -> CgPgmBundle -> IO ()
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renderCgPgmBundle Nothing bundle = print bundle
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renderCgPgmBundle (Just dirName) (CgPgmBundle _ files) = do
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b <- doesDirectoryExist dirName
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unless b $ do putStrLn $ "Creating directory " ++ show dirName ++ ".."
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createDirectory dirName
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dups <- filterM (\fn -> doesFileExist (dirName </> fn)) (map fst files)
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goOn <- case dups of
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[] -> return True
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_ -> do putStrLn $ "Code generation would override the following " ++ (if length dups == 1 then "file:" else "files:")
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mapM_ (\fn -> putStrLn ('\t' : fn)) dups
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putStr "Continue? [yn] "
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resp <- getLine
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return $ map toLower resp `isPrefixOf` "yes"
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if goOn then do mapM_ renderFile files
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putStrLn "Done."
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else putStrLn "Aborting."
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where renderFile (f, (_, ds)) = do let fn = dirName </> f
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putStrLn $ "Generating: " ++ show fn ++ ".."
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writeFile fn (render' (vcat ds))
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-- | An alternative to Pretty's 'render', which might have "leading" white-space in empty lines. This version
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-- eliminates such whitespace.
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render' :: Doc -> String
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render' = unlines . map clean . lines . P.render
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where clean x | all isSpace x = ""
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| True = x
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