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language-fortran (empty) → 0.2.7

raw patch · 10 files changed

+11624/−0 lines, 10 filesdep +arraydep +basedep +haskell-srcsetup-changed

Dependencies added: array, base, haskell-src, parsec, syb

Files

+ LICENSE view
@@ -0,0 +1,30 @@+Copyright (c) 2012, Jason Dagit++All rights reserved.++Redistribution and use in source and binary forms, with or without+modification, are permitted provided that the following conditions are met:++    * Redistributions of source code must retain the above copyright+      notice, this list of conditions and the following disclaimer.++    * Redistributions in binary form must reproduce the above+      copyright notice, this list of conditions and the following+      disclaimer in the documentation and/or other materials provided+      with the distribution.++    * Neither the name of Jason Dagit nor the names of other+      contributors may be used to endorse or promote products derived+      from this software without specific prior written permission.++THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS+"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT+LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR+A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT+OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,+SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT+LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,+DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY+THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT+(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE+OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
+ Setup.hs view
@@ -0,0 +1,2 @@+import Distribution.Simple+main = defaultMain
+ dist/build/Language/Fortran/Lexer.hs view
@@ -0,0 +1,567 @@+{-# LANGUAGE CPP,MagicHash #-}+{-# LINE 1 "src/Language/Fortran/Lexer.x" #-}+
+module Language.Fortran.Lexer where
+
+import Data.Char
+import Language.Fortran
+import Language.Haskell.ParseMonad
+import Debug.Trace
+
++#if __GLASGOW_HASKELL__ >= 603+#include "ghcconfig.h"+#elif defined(__GLASGOW_HASKELL__)+#include "config.h"+#endif+#if __GLASGOW_HASKELL__ >= 503+import Data.Array+import Data.Char (ord)+import Data.Array.Base (unsafeAt)+#else+import Array+import Char (ord)+#endif+#if __GLASGOW_HASKELL__ >= 503+import GHC.Exts+#else+import GlaExts+#endif+{-# LINE 1 "templates/wrappers.hs" #-}+{-# LINE 1 "templates/wrappers.hs" #-}+{-# LINE 1 "<built-in>" #-}+{-# LINE 1 "templates/wrappers.hs" #-}+-- -----------------------------------------------------------------------------+-- Alex wrapper code.+--+-- This code is in the PUBLIC DOMAIN; you may copy it freely and use+-- it for any purpose whatsoever.++import Data.Word (Word8)++{-# LINE 22 "templates/wrappers.hs" #-}++import qualified Data.Bits++-- | Encode a Haskell String to a list of Word8 values, in UTF8 format.+utf8Encode :: Char -> [Word8]+utf8Encode = map fromIntegral . go . ord+ where+  go oc+   | oc <= 0x7f       = [oc]++   | oc <= 0x7ff      = [ 0xc0 + (oc `Data.Bits.shiftR` 6)+                        , 0x80 + oc Data.Bits..&. 0x3f+                        ]++   | oc <= 0xffff     = [ 0xe0 + (oc `Data.Bits.shiftR` 12)+                        , 0x80 + ((oc `Data.Bits.shiftR` 6) Data.Bits..&. 0x3f)+                        , 0x80 + oc Data.Bits..&. 0x3f+                        ]+   | otherwise        = [ 0xf0 + (oc `Data.Bits.shiftR` 18)+                        , 0x80 + ((oc `Data.Bits.shiftR` 12) Data.Bits..&. 0x3f)+                        , 0x80 + ((oc `Data.Bits.shiftR` 6) Data.Bits..&. 0x3f)+                        , 0x80 + oc Data.Bits..&. 0x3f+                        ]++++type Byte = Word8++-- -----------------------------------------------------------------------------+-- The input type+++{-# LINE 72 "templates/wrappers.hs" #-}+++{-# LINE 92 "templates/wrappers.hs" #-}+++{-# LINE 106 "templates/wrappers.hs" #-}+++{-# LINE 121 "templates/wrappers.hs" #-}++-- -----------------------------------------------------------------------------+-- Token positions++-- `Posn' records the location of a token in the input text.  It has three+-- fields: the address (number of chacaters preceding the token), line number+-- and column of a token within the file. `start_pos' gives the position of the+-- start of the file and `eof_pos' a standard encoding for the end of file.+-- `move_pos' calculates the new position after traversing a given character,+-- assuming the usual eight character tab stops.+++{-# LINE 144 "templates/wrappers.hs" #-}++-- -----------------------------------------------------------------------------+-- Default monad+++{-# LINE 242 "templates/wrappers.hs" #-}+++-- -----------------------------------------------------------------------------+-- Monad (with ByteString input)+++{-# LINE 333 "templates/wrappers.hs" #-}+++-- -----------------------------------------------------------------------------+-- Basic wrapper+++type AlexInput = (Char,[Byte],String)++alexInputPrevChar :: AlexInput -> Char+alexInputPrevChar (c,_,_) = c++-- alexScanTokens :: String -> [token]+alexScanTokens str = go ('\n',[],str)+  where go inp@(_,_bs,s) =+          case alexScan inp 0 of+                AlexEOF -> []+                AlexError _ -> error "lexical error"+                AlexSkip  inp' len     -> go inp'+                AlexToken inp' len act -> act (take len s) : go inp'++alexGetByte :: AlexInput -> Maybe (Byte,AlexInput)+alexGetByte (c,(b:bs),s) = Just (b,(c,bs,s))+alexGetByte (c,[],[])    = Nothing+alexGetByte (_,[],(c:s)) = case utf8Encode c of+                             (b:bs) -> Just (b, (c, bs, s))+                             [] -> Nothing++++-- -----------------------------------------------------------------------------+-- Basic wrapper, ByteString version+++{-# LINE 378 "templates/wrappers.hs" #-}+++{-# LINE 392 "templates/wrappers.hs" #-}+++-- -----------------------------------------------------------------------------+-- Posn wrapper++-- Adds text positions to the basic model.+++{-# LINE 409 "templates/wrappers.hs" #-}+++-- -----------------------------------------------------------------------------+-- Posn wrapper, ByteString version+++{-# LINE 424 "templates/wrappers.hs" #-}+++-- -----------------------------------------------------------------------------+-- GScan wrapper++-- For compatibility with previous versions of Alex, and because we can.+++alex_base :: AlexAddr+alex_base = AlexA# 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:: AlexAddr+alex_table = AlexA# 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:: AlexAddr+alex_check = AlexA# 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:: AlexAddr+alex_deflt = AlexA# "\xff\xff\x03\x00\x03\x00\x03\x00\x03\x00\x05\x00\x06\x00\x07\x00\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\x36\x00\x36\x00\xff\xff\x4a\x00\x4a\x00\x4b\x00\x4b\x00\x4d\x00\x4d\x00\x4f\x00\x4f\x00\x51\x00\x51\x00\x53\x00\x53\x00\xff\xff\xff\xff\xff\xff\xff\xff\x62\x00\x62\x00\x64\x00\x64\x00\x64\x00\x67\x00\x67\x00\x6a\x00\x6a\x00\x6e\x00\x6e\x00\x71\x00\x71\x00\x74\x00\x74\x00\xff\xff\xff\xff\x7d\x00\x7d\x00\x7f\x00\x7f\x00\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\x90\x00\x90\x00\x64\x00\x07\x00\x07\x00\x07\x00\x06\x00\x06\x00\x06\x00\x05\x00\xff\xff\x05\x00\x05\x00\x03\x00\x03\x00\x03\x00\x95\x00\x95\x00\x95\x00\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xac\x00\xac\x00\xaf\x00\xaf\x00\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xec\x00\xec\x00\xec\x00\xff\xff\xff\xff\xff\xff\x95\x00\x95\x00\x95\x00\x95\x00\x95\x00\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xb3\x00\xb3\x00\xb3\x00\xb2\x00\xb2\x00\xb2\x00\xff\xff\xff\xff\xb2\x00\xb3\x00\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\x03\x00\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xec\x00\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff"#++alex_accept = listArray (0::Int,290) [AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccNone,AlexAccSkip,AlexAccPred  (alex_action_0) (alexRightContext 176)(AlexAccNone),AlexAccPred  (alex_action_1) (alexRightContext 176)(AlexAccNone),AlexAcc (alex_action_2),AlexAccSkip,AlexAccSkip,AlexAcc (alex_action_4),AlexAcc (alex_action_5),AlexAcc (alex_action_6),AlexAcc (alex_action_7),AlexAcc (alex_action_8),AlexAcc (alex_action_9),AlexAcc (alex_action_10),AlexAcc (alex_action_11),AlexAcc (alex_action_12),AlexAcc (alex_action_13),AlexAcc (alex_action_14),AlexAcc (alex_action_15),AlexAcc (alex_action_16),AlexAcc (alex_action_17),AlexAcc (alex_action_18),AlexAcc (alex_action_19),AlexAcc (alex_action_20),AlexAcc (alex_action_20),AlexAcc (alex_action_21),AlexAcc (alex_action_21),AlexAcc (alex_action_22),AlexAcc (alex_action_23),AlexAcc (alex_action_24),AlexAcc (alex_action_25),AlexAcc (alex_action_26),AlexAcc (alex_action_27),AlexAcc (alex_action_28),AlexAcc (alex_action_29),AlexAcc (alex_action_30),AlexAcc (alex_action_31),AlexAcc (alex_action_32),AlexAcc (alex_action_32),AlexAcc (alex_action_32),AlexAcc (alex_action_32),AlexAcc (alex_action_33),AlexAcc (alex_action_33),AlexAcc (alex_action_33),AlexAcc (alex_action_33),AlexAcc (alex_action_34),AlexAcc (alex_action_35),AlexAcc (alex_action_36),AlexAcc (alex_action_37),AlexAcc (alex_action_38),AlexAcc (alex_action_39),AlexAcc (alex_action_40),AlexAcc (alex_action_41),AlexAcc (alex_action_42),AlexAcc (alex_action_43),AlexAcc (alex_action_44),AlexAcc (alex_action_45),AlexAcc (alex_action_46),AlexAcc (alex_action_47),AlexAcc (alex_action_47),AlexAccSkipPred  (alexRightContext 176)(AlexAccNone),AlexAcc (alex_action_49),AlexAcc (alex_action_50),AlexAcc (alex_action_51),AlexAcc (alex_action_52),AlexAcc (alex_action_52),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_53),AlexAcc (alex_action_54),AlexAcc (alex_action_54),AlexAcc (alex_action_54),AlexAcc (alex_action_54),AlexAcc (alex_action_54),AlexAcc (alex_action_54),AlexAcc (alex_action_54),AlexAcc (alex_action_55),AlexAcc (alex_action_55),AlexAcc (alex_action_55),AlexAcc (alex_action_55),AlexAcc (alex_action_56),AlexAcc (alex_action_57),AlexAcc (alex_action_58),AlexAcc (alex_action_59),AlexAcc (alex_action_60),AlexAcc (alex_action_61),AlexAcc (alex_action_62),AlexAcc (alex_action_63),AlexAcc (alex_action_64)]+{-# LINE 131 "src/Language/Fortran/Lexer.x" #-}+
+-- Each action has type :: String -> Token
+		
+-- Fixes continuation lines in the middle of strings - removes the continuation line part
+cutOutContLine cs = [head cs] ++ (reverse (cutOut cs' (Just []))) ++ [head cs]
+	               where cs' = (take (length cs - 2) (drop 1 cs))
+
+cutOut [] Nothing = []
+cutOut [] (Just xs) = xs       	  	    
+cutOut ('&':cs) Nothing = cutOut cs (Just [])
+cutOut ('$':cs) Nothing = cutOut cs (Just [])
+cutOut ('+':cs) Nothing = cutOut cs (Just [])
+cutOut (' ':cs) Nothing = cutOut cs Nothing
+cutOut ('\t':cs) Nothing = cutOut cs Nothing
+cutOut ('\r':'\n':cs) (Just xs) = (cutOut cs Nothing) ++ xs
+cutOut ('\n':cs) (Just xs) = (cutOut cs Nothing) ++ xs
+cutOut (c:cs) (Just xs) = cutOut cs (Just (c:xs))
+
+
+-- The token type:
+data Token = Key String | LitConst Char String | OpPower | OpMul | OpDiv | OpAdd | OpSub | OpConcat
+	   | OpEQ | OpNE | OpLT | OpLE | OpGT | OpGE | OpLG 
+	   | OpNOT | OpAND | OpOR | OpXOR | OpEQV | OpNEQV
+	   | BinConst String | OctConst String | HexConst String
+	   | ID String | Num String | Comma | Bang | Percent
+	   | LParen | RParen | LArrCon | RArrCon | OpEquals | RealConst String | StopParamStart
+	   | SingleQuote | StrConst String | Period | Colon | ColonColon | SemiColon
+	   | DataEditDest String | Arrow | MArrow | TrueConst | FalseConst | Dollar
+	   | Hash | LBrace | RBrace | NewLine | TokEOF | Text String | ContLine | ContLineAlt | ContLineWithComment | ContLineNoNewLine
+	   deriving (Eq,Show)
+
+-- all reserved keywords, names are matched against these to see
+-- if they are keywords or IDs
+keywords :: [String]
+keywords = ["allocate", "allocatable","assign",
+	"assignment","automatic","backspace","block","call", "case",
+	"character","close","common","complex","contains","continue","cycle",
+	"data","deallocate","default","dimension","do",
+	"double","elemental","else","elseif","elsewhere","end", "enddo", "endif", "endfile","entry",
+	"equivalence","exit","external",
+	"forall","format","function","goto","iolength",
+	"if","implicit","in","include","inout","integer","intent","interface",
+	"intrinsic","inquire","kind","len","logical","module",
+	"namelist","none","nullify",
+	"only","open","operator","optional","out","parameter",
+	"pause","pointer","precision","print","private","procedure",
+	"program","public","pure","real","read","recursive","result",
+	"return","rewind","save","select","sequence","sometype","sqrt","stat",
+	"stop","subroutine","target","to","then","type",
+	"unit", "use","volatile","where","write"]
+
+{- old keywords, many will be removed
+keywords :: [String]
+keywords = ["access","action","advance","allocate","allocatable","assign",
+	"assignment","automatic","backspace","blank","block","call","case",
+	"character","close","common","complex","contains","continue","cycle",
+	"data","deallocate","default","delim","dimension","direct","do",
+	"double","elemental","else","elseif","elsewhere","end", "enddo", "endif", "endfile","entry",
+	"eor","err","equivalence","exist","exit","external","file","fmt",
+	"forall","form","format","formatted","function","goto","iostat","iolength",
+	"if","implicit","in","inout","integer","intent","interface",
+	"intrinsic","inquire","kind","len","logical","module","number",
+	"named","nml","nextrec","namelist","none","nullify","null()",
+	"only","open","opened","operator","optional","out","pad","parameter",
+	"pause","pointer","position","precision","print","private","procedure",
+	"program","pure","real","read","readwrite","rec","recl","recursive","result",
+	"return","rewind","save","select","sequence","sequential","sometype","stat",
+	"status","stop","subroutine","target","to","then","type","unformatted",
+	"unit","use","volatile","where","write"]
+-}
+
+lexer :: (Token -> P a) -> P a
+lexer = runL lexer'
+
+lexer' :: Lex a Token
+lexer' = do s <- getInput 
+       	    startToken
+            case alexScan ('\0',[],s) 0 of
+              AlexEOF             -> return TokEOF 
+              AlexError (c,b,s')  -> getInput >>= (\i -> fail ("unrecognizable token: " ++ show c ++ "(" ++ (show $ ord c) ++ "). "))
+              AlexSkip  (_,b,s') len -> discard len >> lexer'
+              AlexToken (_,b,s') len act -> do let tok = act (take len s)
+	      			     	       -- turn on for useful debugging info on lexing
+	      			     	       -- (show (tok, (take 20 s), len) ++ "\n") `trace` return ()
+                                               case tok of
+					          NewLine    -> lexNewline >> (return tok)
+					          ContLine   -> (discard len) >> lexNewline >> lexer'
+					          ContLineNoNewLine  -> (discard len) >> lexer'
+					          ContLineAlt -> lexNewline >> (discard (len - 1)) >> lexer'
+					 	  ContLineWithComment -> lexNewline >> lexNewline  >> (discard (len - 2)) >> lexer'
+                                                  _           -> (discard len) >> (return tok)
++alex_action_0 =  \s -> Text s +alex_action_1 =  \s -> ContLineAlt +alex_action_2 =  \s -> NewLine +alex_action_4 =  \s -> Hash +alex_action_5 =  \s -> MArrow +alex_action_6 =  \s -> Arrow +alex_action_7 =  \s -> OpPower +alex_action_8 =  \s -> OpConcat +alex_action_9 =  \s -> OpEQ +alex_action_10 =  \s -> OpNE +alex_action_11 =  \s -> OpLE +alex_action_12 =  \s -> OpGE +alex_action_13 =  \s -> OpNOT +alex_action_14 =  \s -> OpAND +alex_action_15 =  \s -> OpOR +alex_action_16 =  \s -> TrueConst +alex_action_17 =  \s -> FalseConst +alex_action_18 =  \s -> OpEQV +alex_action_19 =  \s -> OpNEQV +alex_action_20 =  \s -> OpLT +alex_action_21 =  \s -> OpGT +alex_action_22 =  \s -> OpMul +alex_action_23 =  \s -> OpDiv +alex_action_24 =  \s -> OpAdd +alex_action_25 =  \s -> OpSub +alex_action_26 =  \s -> Comma +alex_action_27 =  \s -> LArrCon +alex_action_28 =  \s -> RArrCon +alex_action_29 =  \s -> LParen +alex_action_30 =  \s -> RParen +alex_action_31 =  \s -> OpEquals +alex_action_32 =  \s -> StrConst s +alex_action_33 =  \s -> StrConst s +alex_action_34 =  \s -> StrConst  (cutOutContLine s) +alex_action_35 =  \s -> LitConst 'z' s +alex_action_36 =  \s -> LitConst 'z' s +alex_action_37 =  \s -> SingleQuote +alex_action_38 =  \s -> Period +alex_action_39 =  \s -> ColonColon +alex_action_40 =  \s -> Colon +alex_action_41 =  \s -> SemiColon +alex_action_42 =  \s -> Dollar +alex_action_43 =  \s -> Key "null" +alex_action_44 =  \s -> ContLineAlt +alex_action_45 =  \s -> ContLineWithComment +alex_action_46 =  \s -> ContLine +alex_action_47 =  \s -> ContLineNoNewLine +alex_action_49 =  \s -> Percent +alex_action_50 =  \s -> LBrace +alex_action_51 =  \s -> RBrace +alex_action_52 =  \s -> Key "elseif" +alex_action_53 =  \s -> if elem (map toLower s) keywords
+                                        then Key (map toLower s)
+					else ID s  +alex_action_54 =  \s -> DataEditDest s +alex_action_55 =  \s -> Num s +alex_action_56 =  \s -> BinConst s +alex_action_57 =  \s -> OctConst s +alex_action_58 =  \s -> HexConst s +alex_action_59 =  \s -> BinConst s +alex_action_60 =  \s -> OctConst s +alex_action_61 =  \s -> HexConst s +alex_action_62 =  \s -> Num s +alex_action_63 =  \s -> Key "goto" +alex_action_64 =  \s -> Key "goto" +{-# LINE 1 "templates/GenericTemplate.hs" #-}+{-# LINE 1 "templates/GenericTemplate.hs" #-}+{-# LINE 1 "<built-in>" #-}+{-# LINE 1 "templates/GenericTemplate.hs" #-}+-- -----------------------------------------------------------------------------+-- ALEX TEMPLATE+--+-- This code is in the PUBLIC DOMAIN; you may copy it freely and use+-- it for any purpose whatsoever.++-- -----------------------------------------------------------------------------+-- INTERNALS and main scanner engine+++{-# LINE 21 "templates/GenericTemplate.hs" #-}++++++-- Do not remove this comment. Required to fix CPP parsing when using GCC and a clang-compiled alex.+#if __GLASGOW_HASKELL__ > 706+#define GTE(n,m) (tagToEnum# (n >=# m))+#define EQ(n,m) (tagToEnum# (n ==# m))+#else+#define GTE(n,m) (n >=# m)+#define EQ(n,m) (n ==# m)+#endif++{-# LINE 51 "templates/GenericTemplate.hs" #-}+++data AlexAddr = AlexA# Addr#+-- Do not remove this comment. Required to fix CPP parsing when using GCC and a clang-compiled alex.+#if __GLASGOW_HASKELL__ < 503+uncheckedShiftL# = shiftL#+#endif++{-# INLINE alexIndexInt16OffAddr #-}+alexIndexInt16OffAddr (AlexA# arr) off =+#ifdef WORDS_BIGENDIAN+  narrow16Int# i+  where+        i    = word2Int# ((high `uncheckedShiftL#` 8#) `or#` low)+        high = int2Word# (ord# (indexCharOffAddr# arr (off' +# 1#)))+        low  = int2Word# (ord# (indexCharOffAddr# arr off'))+        off' = off *# 2#+#else+  indexInt16OffAddr# arr off+#endif++++++{-# INLINE alexIndexInt32OffAddr #-}+alexIndexInt32OffAddr (AlexA# arr) off = +#ifdef WORDS_BIGENDIAN+  narrow32Int# i+  where+   i    = word2Int# ((b3 `uncheckedShiftL#` 24#) `or#`+		     (b2 `uncheckedShiftL#` 16#) `or#`+		     (b1 `uncheckedShiftL#` 8#) `or#` b0)+   b3   = int2Word# (ord# (indexCharOffAddr# arr (off' +# 3#)))+   b2   = int2Word# (ord# (indexCharOffAddr# arr (off' +# 2#)))+   b1   = int2Word# (ord# (indexCharOffAddr# arr (off' +# 1#)))+   b0   = int2Word# (ord# (indexCharOffAddr# arr off'))+   off' = off *# 4#+#else+  indexInt32OffAddr# arr off+#endif+++++++#if __GLASGOW_HASKELL__ < 503+quickIndex arr i = arr ! i+#else+-- GHC >= 503, unsafeAt is available from Data.Array.Base.+quickIndex = unsafeAt+#endif+++++-- -----------------------------------------------------------------------------+-- Main lexing routines++data AlexReturn a+  = AlexEOF+  | AlexError  !AlexInput+  | AlexSkip   !AlexInput !Int+  | AlexToken  !AlexInput !Int a++-- alexScan :: AlexInput -> StartCode -> AlexReturn a+alexScan input (I# (sc))+  = alexScanUser undefined input (I# (sc))++alexScanUser user input (I# (sc))+  = case alex_scan_tkn user input 0# input sc AlexNone of+	(AlexNone, input') ->+		case alexGetByte input of+			Nothing -> ++++				   AlexEOF+			Just _ ->++++				   AlexError input'++	(AlexLastSkip input'' len, _) ->++++		AlexSkip input'' len++	(AlexLastAcc k input''' len, _) ->++++		AlexToken input''' len k+++-- Push the input through the DFA, remembering the most recent accepting+-- state it encountered.++alex_scan_tkn user orig_input len input s last_acc =+  input `seq` -- strict in the input+  let +	new_acc = (check_accs (alex_accept `quickIndex` (I# (s))))+  in+  new_acc `seq`+  case alexGetByte input of+     Nothing -> (new_acc, input)+     Just (c, new_input) -> ++++      case fromIntegral c of { (I# (ord_c)) ->+        let+                base   = alexIndexInt32OffAddr alex_base s+                offset = (base +# ord_c)+                check  = alexIndexInt16OffAddr alex_check offset+		+                new_s = if GTE(offset,0#) && EQ(check,ord_c)+			  then alexIndexInt16OffAddr alex_table offset+			  else alexIndexInt16OffAddr alex_deflt s+	in+        case new_s of+	    -1# -> (new_acc, input)+		-- on an error, we want to keep the input *before* the+		-- character that failed, not after.+    	    _ -> alex_scan_tkn user orig_input (if c < 0x80 || c >= 0xC0 then (len +# 1#) else len)+                                                -- note that the length is increased ONLY if this is the 1st byte in a char encoding)+			new_input new_s new_acc+      }+  where+	check_accs (AlexAccNone) = last_acc+	check_accs (AlexAcc a  ) = AlexLastAcc a input (I# (len))+	check_accs (AlexAccSkip) = AlexLastSkip  input (I# (len))++	check_accs (AlexAccPred a predx rest)+	   | predx user orig_input (I# (len)) input+	   = AlexLastAcc a input (I# (len))+	   | otherwise+	   = check_accs rest+	check_accs (AlexAccSkipPred predx rest)+	   | predx user orig_input (I# (len)) input+	   = AlexLastSkip input (I# (len))+	   | otherwise+	   = check_accs rest+++data AlexLastAcc a+  = AlexNone+  | AlexLastAcc a !AlexInput !Int+  | AlexLastSkip  !AlexInput !Int++instance Functor AlexLastAcc where+    fmap f AlexNone = AlexNone+    fmap f (AlexLastAcc x y z) = AlexLastAcc (f x) y z+    fmap f (AlexLastSkip x y) = AlexLastSkip x y++data AlexAcc a user+  = AlexAccNone+  | AlexAcc a+  | AlexAccSkip++  | AlexAccPred a   (AlexAccPred user) (AlexAcc a user)+  | AlexAccSkipPred (AlexAccPred user) (AlexAcc a user)++type AlexAccPred user = user -> AlexInput -> Int -> AlexInput -> Bool++-- -----------------------------------------------------------------------------+-- Predicates on a rule++alexAndPred p1 p2 user in1 len in2+  = p1 user in1 len in2 && p2 user in1 len in2++--alexPrevCharIsPred :: Char -> AlexAccPred _ +alexPrevCharIs c _ input _ _ = c == alexInputPrevChar input++alexPrevCharMatches f _ input _ _ = f (alexInputPrevChar input)++--alexPrevCharIsOneOfPred :: Array Char Bool -> AlexAccPred _ +alexPrevCharIsOneOf arr _ input _ _ = arr ! alexInputPrevChar input++--alexRightContext :: Int -> AlexAccPred _+alexRightContext (I# (sc)) user _ _ input = +     case alex_scan_tkn user input 0# input sc AlexNone of+	  (AlexNone, _) -> False+	  _ -> True+	-- TODO: there's no need to find the longest+	-- match when checking the right context, just+	-- the first match will do.+++-- used by wrappers+iUnbox (I# (i)) = i+
+ dist/build/Language/Fortran/Parser.hs view
@@ -0,0 +1,7688 @@+{-# OPTIONS_GHC -w #-}+{-# OPTIONS -fglasgow-exts -cpp #-}+module Language.Fortran.Parser  where
+
+import Language.Fortran
+import Language.Fortran.PreProcess
+
+import Language.Haskell.Syntax (SrcLoc(..))
+import Language.Haskell.ParseMonad 
+import Language.Fortran.Lexer
+import Data.Char (toLower)
+import Debug.Trace+import qualified Data.Array as Happy_Data_Array+import qualified GHC.Exts as Happy_GHC_Exts+import Control.Applicative(Applicative(..))++-- parser produced by Happy Version 1.19.4++newtype HappyAbsSyn  = HappyAbsSyn HappyAny+#if __GLASGOW_HASKELL__ >= 607+type HappyAny = Happy_GHC_Exts.Any+#else+type HappyAny = forall a . a+#endif+happyIn5 :: (Program A0) -> (HappyAbsSyn )+happyIn5 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn5 #-}+happyOut5 :: (HappyAbsSyn ) -> (Program A0)+happyOut5 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut5 #-}+happyIn6 :: (Program A0) -> (HappyAbsSyn )+happyIn6 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn6 #-}+happyOut6 :: (HappyAbsSyn ) -> (Program A0)+happyOut6 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut6 #-}+happyIn7 :: (Program A0) -> (HappyAbsSyn )+happyIn7 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn7 #-}+happyOut7 :: (HappyAbsSyn ) -> (Program A0)+happyOut7 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut7 #-}+happyIn8 :: (ProgUnit A0) -> (HappyAbsSyn )+happyIn8 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn8 #-}+happyOut8 :: (HappyAbsSyn ) -> (ProgUnit A0)+happyOut8 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut8 #-}+happyIn9 :: ([String]) -> (HappyAbsSyn )+happyIn9 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn9 #-}+happyOut9 :: (HappyAbsSyn ) -> ([String])+happyOut9 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut9 #-}+happyIn10 :: ([Expr A0]) -> (HappyAbsSyn )+happyIn10 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn10 #-}+happyOut10 :: (HappyAbsSyn ) -> ([Expr A0])+happyOut10 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut10 #-}+happyIn11 :: () -> (HappyAbsSyn )+happyIn11 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn11 #-}+happyOut11 :: (HappyAbsSyn ) -> ()+happyOut11 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut11 #-}+happyIn12 :: () -> (HappyAbsSyn )+happyIn12 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn12 #-}+happyOut12 :: (HappyAbsSyn ) -> ()+happyOut12 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut12 #-}+happyIn13 :: (ProgUnit A0) -> (HappyAbsSyn )+happyIn13 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn13 #-}+happyOut13 :: (HappyAbsSyn ) -> (ProgUnit A0)+happyOut13 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut13 #-}+happyIn14 :: ((SubName A0, Arg A0)) -> (HappyAbsSyn )+happyIn14 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn14 #-}+happyOut14 :: (HappyAbsSyn ) -> ((SubName A0, Arg A0))+happyOut14 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut14 #-}+happyIn15 :: (String) -> (HappyAbsSyn )+happyIn15 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn15 #-}+happyOut15 :: (HappyAbsSyn ) -> (String)+happyOut15 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut15 #-}+happyIn16 :: (Implicit A0) -> (HappyAbsSyn )+happyIn16 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn16 #-}+happyOut16 :: (HappyAbsSyn ) -> (Implicit A0)+happyOut16 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut16 #-}+happyIn17 :: (ProgUnit A0) -> (HappyAbsSyn )+happyIn17 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn17 #-}+happyOut17 :: (HappyAbsSyn ) -> (ProgUnit A0)+happyOut17 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut17 #-}+happyIn18 :: (ProgUnit A0) -> (HappyAbsSyn )+happyIn18 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn18 #-}+happyOut18 :: (HappyAbsSyn ) -> (ProgUnit A0)+happyOut18 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut18 #-}+happyIn19 :: (String) -> (HappyAbsSyn )+happyIn19 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn19 #-}+happyOut19 :: (HappyAbsSyn ) -> (String)+happyOut19 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut19 #-}+happyIn20 :: (String) -> (HappyAbsSyn )+happyIn20 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn20 #-}+happyOut20 :: (HappyAbsSyn ) -> (String)+happyOut20 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut20 #-}+happyIn21 :: (ProgUnit A0) -> (HappyAbsSyn )+happyIn21 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn21 #-}+happyOut21 :: (HappyAbsSyn ) -> (ProgUnit A0)+happyOut21 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut21 #-}+happyIn22 :: (ProgUnit A0) -> (HappyAbsSyn )+happyIn22 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn22 #-}+happyOut22 :: (HappyAbsSyn ) -> (ProgUnit A0)+happyOut22 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut22 #-}+happyIn23 :: (SubName A0) -> (HappyAbsSyn )+happyIn23 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn23 #-}+happyOut23 :: (HappyAbsSyn ) -> (SubName A0)+happyOut23 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut23 #-}+happyIn24 :: (String) -> (HappyAbsSyn )+happyIn24 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn24 #-}+happyOut24 :: (HappyAbsSyn ) -> (String)+happyOut24 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut24 #-}+happyIn25 :: (ProgUnit A0) -> (HappyAbsSyn )+happyIn25 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn25 #-}+happyOut25 :: (HappyAbsSyn ) -> (ProgUnit A0)+happyOut25 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut25 #-}+happyIn26 :: (SubName A0) -> (HappyAbsSyn )+happyIn26 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn26 #-}+happyOut26 :: (HappyAbsSyn ) -> (SubName A0)+happyOut26 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut26 #-}+happyIn27 :: (String) -> (HappyAbsSyn )+happyIn27 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn27 #-}+happyOut27 :: (HappyAbsSyn ) -> (String)+happyOut27 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut27 #-}+happyIn28 :: (Program A0) -> (HappyAbsSyn )+happyIn28 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn28 #-}+happyOut28 :: (HappyAbsSyn ) -> (Program A0)+happyOut28 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut28 #-}+happyIn29 :: (Program A0) -> (HappyAbsSyn )+happyIn29 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn29 #-}+happyOut29 :: (HappyAbsSyn ) -> (Program A0)+happyOut29 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut29 #-}+happyIn30 :: (ProgUnit A0) -> (HappyAbsSyn )+happyIn30 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn30 #-}+happyOut30 :: (HappyAbsSyn ) -> (ProgUnit A0)+happyOut30 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut30 #-}+happyIn31 :: (Uses A0) -> (HappyAbsSyn )+happyIn31 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn31 #-}+happyOut31 :: (HappyAbsSyn ) -> (Uses A0)+happyOut31 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut31 #-}+happyIn32 :: ((String, Renames)) -> (HappyAbsSyn )+happyIn32 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn32 #-}+happyOut32 :: (HappyAbsSyn ) -> ((String, Renames))+happyOut32 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut32 #-}+happyIn33 :: ([(Variable, Variable)]) -> (HappyAbsSyn )+happyIn33 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn33 #-}+happyOut33 :: (HappyAbsSyn ) -> ([(Variable, Variable)])+happyOut33 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut33 #-}+happyIn34 :: (Decl A0) -> (HappyAbsSyn )+happyIn34 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn34 #-}+happyOut34 :: (HappyAbsSyn ) -> (Decl A0)+happyOut34 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut34 #-}+happyIn35 :: (Decl A0) -> (HappyAbsSyn )+happyIn35 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn35 #-}+happyOut35 :: (HappyAbsSyn ) -> (Decl A0)+happyOut35 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut35 #-}+happyIn36 :: (Decl A0) -> (HappyAbsSyn )+happyIn36 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn36 #-}+happyOut36 :: (HappyAbsSyn ) -> (Decl A0)+happyOut36 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut36 #-}+happyIn37 :: (Decl A0) -> (HappyAbsSyn )+happyIn37 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn37 #-}+happyOut37 :: (HappyAbsSyn ) -> (Decl A0)+happyOut37 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut37 #-}+happyIn38 :: (Decl A0) -> (HappyAbsSyn )+happyIn38 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn38 #-}+happyOut38 :: (HappyAbsSyn ) -> (Decl A0)+happyOut38 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut38 #-}+happyIn39 :: (([(Expr A0, Expr A0)],[Attr A0])) -> (HappyAbsSyn )+happyIn39 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn39 #-}+happyOut39 :: (HappyAbsSyn ) -> (([(Expr A0, Expr A0)],[Attr A0]))+happyOut39 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut39 #-}+happyIn40 :: ([(Expr A0, Expr A0, Maybe Int)]) -> (HappyAbsSyn )+happyIn40 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn40 #-}+happyOut40 :: (HappyAbsSyn ) -> ([(Expr A0, Expr A0, Maybe Int)])+happyOut40 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut40 #-}+happyIn41 :: ((Expr A0, Expr A0, Maybe Int)) -> (HappyAbsSyn )+happyIn41 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn41 #-}+happyOut41 :: (HappyAbsSyn ) -> ((Expr A0, Expr A0, Maybe Int))+happyOut41 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut41 #-}+happyIn42 :: (String) -> (HappyAbsSyn )+happyIn42 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn42 #-}+happyOut42 :: (HappyAbsSyn ) -> (String)+happyOut42 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut42 #-}+happyIn43 :: ((BaseType A0, Expr A0, Expr A0)) -> (HappyAbsSyn )+happyIn43 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn43 #-}+happyOut43 :: (HappyAbsSyn ) -> ((BaseType A0, Expr A0, Expr A0))+happyOut43 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut43 #-}+happyIn44 :: ((BaseType A0, Expr A0, Expr A0)) -> (HappyAbsSyn )+happyIn44 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn44 #-}+happyOut44 :: (HappyAbsSyn ) -> ((BaseType A0, Expr A0, Expr A0))+happyOut44 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut44 #-}+happyIn45 :: (Expr A0) -> (HappyAbsSyn )+happyIn45 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn45 #-}+happyOut45 :: (HappyAbsSyn ) -> (Expr A0)+happyOut45 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut45 #-}+happyIn46 :: ((Expr A0, Expr A0)) -> (HappyAbsSyn )+happyIn46 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn46 #-}+happyOut46 :: (HappyAbsSyn ) -> ((Expr A0, Expr A0))+happyOut46 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut46 #-}+happyIn47 :: (Expr A0) -> (HappyAbsSyn )+happyIn47 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn47 #-}+happyOut47 :: (HappyAbsSyn ) -> (Expr A0)+happyOut47 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut47 #-}+happyIn48 :: (Expr A0) -> (HappyAbsSyn )+happyIn48 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn48 #-}+happyOut48 :: (HappyAbsSyn ) -> (Expr A0)+happyOut48 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut48 #-}+happyIn49 :: (Expr A0) -> (HappyAbsSyn )+happyIn49 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn49 #-}+happyOut49 :: (HappyAbsSyn ) -> (Expr A0)+happyOut49 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut49 #-}+happyIn50 :: ([(Expr A0, Expr A0)]) -> (HappyAbsSyn )+happyIn50 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn50 #-}+happyOut50 :: (HappyAbsSyn ) -> ([(Expr A0, Expr A0)])+happyOut50 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut50 #-}+happyIn51 :: ([(Expr A0, Expr A0)]) -> (HappyAbsSyn )+happyIn51 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn51 #-}+happyOut51 :: (HappyAbsSyn ) -> ([(Expr A0, Expr A0)])+happyOut51 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut51 #-}+happyIn52 :: (([(Expr A0, Expr A0)],[Attr A0])) -> (HappyAbsSyn )+happyIn52 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn52 #-}+happyOut52 :: (HappyAbsSyn ) -> (([(Expr A0, Expr A0)],[Attr A0]))+happyOut52 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut52 #-}+happyIn53 :: (([(Expr A0, Expr A0)],[Attr A0])) -> (HappyAbsSyn )+happyIn53 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn53 #-}+happyOut53 :: (HappyAbsSyn ) -> (([(Expr A0, Expr A0)],[Attr A0]))+happyOut53 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut53 #-}+happyIn54 :: (Attr A0) -> (HappyAbsSyn )+happyIn54 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn54 #-}+happyOut54 :: (HappyAbsSyn ) -> (Attr A0)+happyOut54 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut54 #-}+happyIn55 :: (Decl A0) -> (HappyAbsSyn )+happyIn55 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn55 #-}+happyOut55 :: (HappyAbsSyn ) -> (Decl A0)+happyOut55 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut55 #-}+happyIn56 :: ([(MeasureUnit, MeasureUnitSpec A0)]) -> (HappyAbsSyn )+happyIn56 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn56 #-}+happyOut56 :: (HappyAbsSyn ) -> ([(MeasureUnit, MeasureUnitSpec A0)])+happyOut56 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut56 #-}+happyIn57 :: ((MeasureUnit, MeasureUnitSpec A0)) -> (HappyAbsSyn )+happyIn57 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn57 #-}+happyOut57 :: (HappyAbsSyn ) -> ((MeasureUnit, MeasureUnitSpec A0))+happyOut57 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut57 #-}+happyIn58 :: (MeasureUnitSpec A0) -> (HappyAbsSyn )+happyIn58 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn58 #-}+happyOut58 :: (HappyAbsSyn ) -> (MeasureUnitSpec A0)+happyOut58 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut58 #-}+happyIn59 :: ([(MeasureUnit, Fraction A0)]) -> (HappyAbsSyn )+happyIn59 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn59 #-}+happyOut59 :: (HappyAbsSyn ) -> ([(MeasureUnit, Fraction A0)])+happyOut59 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut59 #-}+happyIn60 :: ([(MeasureUnit, Fraction A0)]) -> (HappyAbsSyn )+happyIn60 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn60 #-}+happyOut60 :: (HappyAbsSyn ) -> ([(MeasureUnit, Fraction A0)])+happyOut60 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut60 #-}+happyIn61 :: (Fraction A0) -> (HappyAbsSyn )+happyIn61 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn61 #-}+happyOut61 :: (HappyAbsSyn ) -> (Fraction A0)+happyOut61 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut61 #-}+happyIn62 :: (String) -> (HappyAbsSyn )+happyIn62 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn62 #-}+happyOut62 :: (HappyAbsSyn ) -> (String)+happyOut62 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut62 #-}+happyIn63 :: ([(Expr A0, Expr A0)]) -> (HappyAbsSyn )+happyIn63 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn63 #-}+happyOut63 :: (HappyAbsSyn ) -> ([(Expr A0, Expr A0)])+happyOut63 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut63 #-}+happyIn64 :: ([Expr A0]) -> (HappyAbsSyn )+happyIn64 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn64 #-}+happyOut64 :: (HappyAbsSyn ) -> ([Expr A0])+happyOut64 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut64 #-}+happyIn65 :: (Expr A0) -> (HappyAbsSyn )+happyIn65 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn65 #-}+happyOut65 :: (HappyAbsSyn ) -> (Expr A0)+happyOut65 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut65 #-}+happyIn66 :: (Decl A0) -> (HappyAbsSyn )+happyIn66 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn66 #-}+happyOut66 :: (HappyAbsSyn ) -> (Decl A0)+happyOut66 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut66 #-}+happyIn67 :: (Expr A0) -> (HappyAbsSyn )+happyIn67 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn67 #-}+happyOut67 :: (HappyAbsSyn ) -> (Expr A0)+happyOut67 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut67 #-}+happyIn68 :: (IntentAttr A0) -> (HappyAbsSyn )+happyIn68 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn68 #-}+happyOut68 :: (HappyAbsSyn ) -> (IntentAttr A0)+happyOut68 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut68 #-}+happyIn69 :: (Decl A0) -> (HappyAbsSyn )+happyIn69 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn69 #-}+happyOut69 :: (HappyAbsSyn ) -> (Decl A0)+happyOut69 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut69 #-}+happyIn70 :: (Decl A0) -> (HappyAbsSyn )+happyIn70 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn70 #-}+happyOut70 :: (HappyAbsSyn ) -> (Decl A0)+happyOut70 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut70 #-}+happyIn71 :: (Decl A0) -> (HappyAbsSyn )+happyIn71 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn71 #-}+happyOut71 :: (HappyAbsSyn ) -> (Decl A0)+happyOut71 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut71 #-}+happyIn72 :: (Decl A0) -> (HappyAbsSyn )+happyIn72 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn72 #-}+happyOut72 :: (HappyAbsSyn ) -> (Decl A0)+happyOut72 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut72 #-}+happyIn73 :: (Maybe (GSpec A0)) -> (HappyAbsSyn )+happyIn73 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn73 #-}+happyOut73 :: (HappyAbsSyn ) -> (Maybe (GSpec A0))+happyOut73 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut73 #-}+happyIn74 :: ([InterfaceSpec A0]) -> (HappyAbsSyn )+happyIn74 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn74 #-}+happyOut74 :: (HappyAbsSyn ) -> ([InterfaceSpec A0])+happyOut74 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut74 #-}+happyIn75 :: (InterfaceSpec A0) -> (HappyAbsSyn )+happyIn75 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn75 #-}+happyOut75 :: (HappyAbsSyn ) -> (InterfaceSpec A0)+happyOut75 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut75 #-}+happyIn76 :: (Maybe (GSpec A0)) -> (HappyAbsSyn )+happyIn76 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn76 #-}+happyOut76 :: (HappyAbsSyn ) -> (Maybe (GSpec A0))+happyOut76 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut76 #-}+happyIn77 :: (InterfaceSpec A0) -> (HappyAbsSyn )+happyIn77 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn77 #-}+happyOut77 :: (HappyAbsSyn ) -> (InterfaceSpec A0)+happyOut77 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut77 #-}+happyIn78 :: (InterfaceSpec A0) -> (HappyAbsSyn )+happyIn78 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn78 #-}+happyOut78 :: (HappyAbsSyn ) -> (InterfaceSpec A0)+happyOut78 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut78 #-}+happyIn79 :: ([SubName A0 ]) -> (HappyAbsSyn )+happyIn79 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn79 #-}+happyOut79 :: (HappyAbsSyn ) -> ([SubName A0 ])+happyOut79 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut79 #-}+happyIn80 :: (Decl A0) -> (HappyAbsSyn )+happyIn80 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn80 #-}+happyOut80 :: (HappyAbsSyn ) -> (Decl A0)+happyOut80 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut80 #-}+happyIn81 :: ((SubName A0, [Attr A0])) -> (HappyAbsSyn )+happyIn81 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn81 #-}+happyOut81 :: (HappyAbsSyn ) -> ((SubName A0, [Attr A0]))+happyOut81 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut81 #-}+happyIn82 :: (String) -> (HappyAbsSyn )+happyIn82 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn82 #-}+happyOut82 :: (HappyAbsSyn ) -> (String)+happyOut82 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut82 #-}+happyIn83 :: (SubName A0) -> (HappyAbsSyn )+happyIn83 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn83 #-}+happyOut83 :: (HappyAbsSyn ) -> (SubName A0)+happyOut83 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut83 #-}+happyIn84 :: ([Attr A0]) -> (HappyAbsSyn )+happyIn84 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn84 #-}+happyOut84 :: (HappyAbsSyn ) -> ([Attr A0])+happyOut84 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut84 #-}+happyIn85 :: ([Decl A0 ]) -> (HappyAbsSyn )+happyIn85 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn85 #-}+happyOut85 :: (HappyAbsSyn ) -> ([Decl A0 ])+happyOut85 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut85 #-}+happyIn86 :: (Decl A0) -> (HappyAbsSyn )+happyIn86 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn86 #-}+happyOut86 :: (HappyAbsSyn ) -> (Decl A0)+happyOut86 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut86 #-}+happyIn87 :: (([(Expr A0, Expr A0)],[Attr A0])) -> (HappyAbsSyn )+happyIn87 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn87 #-}+happyOut87 :: (HappyAbsSyn ) -> (([(Expr A0, Expr A0)],[Attr A0]))+happyOut87 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut87 #-}+happyIn88 :: (([(Expr A0, Expr A0)],[Attr A0])) -> (HappyAbsSyn )+happyIn88 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn88 #-}+happyOut88 :: (HappyAbsSyn ) -> (([(Expr A0, Expr A0)],[Attr A0]))+happyOut88 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut88 #-}+happyIn89 :: (Decl A0) -> (HappyAbsSyn )+happyIn89 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn89 #-}+happyOut89 :: (HappyAbsSyn ) -> (Decl A0)+happyOut89 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut89 #-}+happyIn90 :: (Decl A0) -> (HappyAbsSyn )+happyIn90 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn90 #-}+happyOut90 :: (HappyAbsSyn ) -> (Decl A0)+happyOut90 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut90 #-}+happyIn91 :: ([GSpec A0]) -> (HappyAbsSyn )+happyIn91 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn91 #-}+happyOut91 :: (HappyAbsSyn ) -> ([GSpec A0])+happyOut91 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut91 #-}+happyIn92 :: (GSpec A0) -> (HappyAbsSyn )+happyIn92 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn92 #-}+happyOut92 :: (HappyAbsSyn ) -> (GSpec A0)+happyOut92 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut92 #-}+happyIn93 :: (GSpec A0) -> (HappyAbsSyn )+happyIn93 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn93 #-}+happyOut93 :: (HappyAbsSyn ) -> (GSpec A0)+happyOut93 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut93 #-}+happyIn94 :: (DataForm A0) -> (HappyAbsSyn )+happyIn94 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn94 #-}+happyOut94 :: (HappyAbsSyn ) -> (DataForm A0)+happyOut94 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut94 #-}+happyIn95 :: ([(Expr A0, Expr A0)]) -> (HappyAbsSyn )+happyIn95 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn95 #-}+happyOut95 :: (HappyAbsSyn ) -> ([(Expr A0, Expr A0)])+happyOut95 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut95 #-}+happyIn96 :: ((Expr A0, Expr A0)) -> (HappyAbsSyn )+happyIn96 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn96 #-}+happyOut96 :: (HappyAbsSyn ) -> ((Expr A0, Expr A0))+happyOut96 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut96 #-}+happyIn97 :: (Expr A0) -> (HappyAbsSyn )+happyIn97 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn97 #-}+happyOut97 :: (HappyAbsSyn ) -> (Expr A0)+happyOut97 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut97 #-}+happyIn98 :: (Expr A0) -> (HappyAbsSyn )+happyIn98 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn98 #-}+happyOut98 :: (HappyAbsSyn ) -> (Expr A0)+happyOut98 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut98 #-}+happyIn99 :: (Expr A0) -> (HappyAbsSyn )+happyIn99 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn99 #-}+happyOut99 :: (HappyAbsSyn ) -> (Expr A0)+happyOut99 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut99 #-}+happyIn100 :: (Expr A0) -> (HappyAbsSyn )+happyIn100 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn100 #-}+happyOut100 :: (HappyAbsSyn ) -> (Expr A0)+happyOut100 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut100 #-}+happyIn101 :: (Decl A0) -> (HappyAbsSyn )+happyIn101 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn101 #-}+happyOut101 :: (HappyAbsSyn ) -> (Decl A0)+happyOut101 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut101 #-}+happyIn102 :: ([String]) -> (HappyAbsSyn )+happyIn102 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn102 #-}+happyOut102 :: (HappyAbsSyn ) -> ([String])+happyOut102 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut102 #-}+happyIn103 :: (String) -> (HappyAbsSyn )+happyIn103 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn103 #-}+happyOut103 :: (HappyAbsSyn ) -> (String)+happyOut103 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut103 #-}+happyIn104 :: (String) -> (HappyAbsSyn )+happyIn104 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn104 #-}+happyOut104 :: (HappyAbsSyn ) -> (String)+happyOut104 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut104 #-}+happyIn105 :: (String) -> (HappyAbsSyn )+happyIn105 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn105 #-}+happyOut105 :: (HappyAbsSyn ) -> (String)+happyOut105 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut105 #-}+happyIn106 :: (BinOp A0) -> (HappyAbsSyn )+happyIn106 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn106 #-}+happyOut106 :: (HappyAbsSyn ) -> (BinOp A0)+happyOut106 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut106 #-}+happyIn107 :: (BinOp A0) -> (HappyAbsSyn )+happyIn107 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn107 #-}+happyOut107 :: (HappyAbsSyn ) -> (BinOp A0)+happyOut107 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut107 #-}+happyIn108 :: (Decl A0) -> (HappyAbsSyn )+happyIn108 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn108 #-}+happyOut108 :: (HappyAbsSyn ) -> (Decl A0)+happyOut108 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut108 #-}+happyIn109 :: ([(Expr A0, [Expr A0])]) -> (HappyAbsSyn )+happyIn109 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn109 #-}+happyOut109 :: (HappyAbsSyn ) -> ([(Expr A0, [Expr A0])])+happyOut109 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut109 #-}+happyIn110 :: ([Expr A0]) -> (HappyAbsSyn )+happyIn110 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn110 #-}+happyOut110 :: (HappyAbsSyn ) -> ([Expr A0])+happyOut110 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut110 #-}+happyIn111 :: ((SubName A0, Arg A0, Maybe (BaseType A0))) -> (HappyAbsSyn )+happyIn111 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn111 #-}+happyOut111 :: (HappyAbsSyn ) -> ((SubName A0, Arg A0, Maybe (BaseType A0)))+happyOut111 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut111 #-}+happyIn112 :: ((SubName A0, Arg A0, Maybe (BaseType A0), Maybe (VarName A0))) -> (HappyAbsSyn )+happyIn112 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn112 #-}+happyOut112 :: (HappyAbsSyn ) -> ((SubName A0, Arg A0, Maybe (BaseType A0), Maybe (VarName A0)))+happyOut112 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut112 #-}+happyIn113 :: (SubName A0) -> (HappyAbsSyn )+happyIn113 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn113 #-}+happyOut113 :: (HappyAbsSyn ) -> (SubName A0)+happyOut113 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut113 #-}+happyIn114 :: ((BaseType A0, Expr A0, Expr A0)) -> (HappyAbsSyn )+happyIn114 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn114 #-}+happyOut114 :: (HappyAbsSyn ) -> ((BaseType A0, Expr A0, Expr A0))+happyOut114 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut114 #-}+happyIn115 :: (Arg A0) -> (HappyAbsSyn )+happyIn115 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn115 #-}+happyOut115 :: (HappyAbsSyn ) -> (Arg A0)+happyOut115 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut115 #-}+happyIn116 :: (SrcSpan -> Arg A0) -> (HappyAbsSyn )+happyIn116 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn116 #-}+happyOut116 :: (HappyAbsSyn ) -> (SrcSpan -> Arg A0)+happyOut116 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut116 #-}+happyIn117 :: (ArgName A0) -> (HappyAbsSyn )+happyIn117 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn117 #-}+happyOut117 :: (HappyAbsSyn ) -> (ArgName A0)+happyOut117 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut117 #-}+happyIn118 :: (ArgName A0) -> (HappyAbsSyn )+happyIn118 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn118 #-}+happyOut118 :: (HappyAbsSyn ) -> (ArgName A0)+happyOut118 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut118 #-}+happyIn119 :: (Fortran A0) -> (HappyAbsSyn )+happyIn119 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn119 #-}+happyOut119 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut119 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut119 #-}+happyIn120 :: (Expr A0) -> (HappyAbsSyn )+happyIn120 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn120 #-}+happyOut120 :: (HappyAbsSyn ) -> (Expr A0)+happyOut120 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut120 #-}+happyIn121 :: ([(VarName A0, [Expr A0])]) -> (HappyAbsSyn )+happyIn121 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn121 #-}+happyOut121 :: (HappyAbsSyn ) -> ([(VarName A0, [Expr A0])])+happyOut121 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut121 #-}+happyIn122 :: ((VarName A0, [Expr A0])) -> (HappyAbsSyn )+happyIn122 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn122 #-}+happyOut122 :: (HappyAbsSyn ) -> ((VarName A0, [Expr A0]))+happyOut122 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut122 #-}+happyIn123 :: (Expr A0) -> (HappyAbsSyn )+happyIn123 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn123 #-}+happyOut123 :: (HappyAbsSyn ) -> (Expr A0)+happyOut123 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut123 #-}+happyIn124 :: (Expr A0) -> (HappyAbsSyn )+happyIn124 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn124 #-}+happyOut124 :: (HappyAbsSyn ) -> (Expr A0)+happyOut124 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut124 #-}+happyIn125 :: ([Expr A0]) -> (HappyAbsSyn )+happyIn125 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn125 #-}+happyOut125 :: (HappyAbsSyn ) -> ([Expr A0])+happyOut125 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut125 #-}+happyIn126 :: (Expr A0) -> (HappyAbsSyn )+happyIn126 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn126 #-}+happyOut126 :: (HappyAbsSyn ) -> (Expr A0)+happyOut126 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut126 #-}+happyIn127 :: (Expr A0) -> (HappyAbsSyn )+happyIn127 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn127 #-}+happyOut127 :: (HappyAbsSyn ) -> (Expr A0)+happyOut127 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut127 #-}+happyIn128 :: (Expr A0) -> (HappyAbsSyn )+happyIn128 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn128 #-}+happyOut128 :: (HappyAbsSyn ) -> (Expr A0)+happyOut128 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut128 #-}+happyIn129 :: (Expr A0) -> (HappyAbsSyn )+happyIn129 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn129 #-}+happyOut129 :: (HappyAbsSyn ) -> (Expr A0)+happyOut129 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut129 #-}+happyIn130 :: (Expr A0) -> (HappyAbsSyn )+happyIn130 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn130 #-}+happyOut130 :: (HappyAbsSyn ) -> (Expr A0)+happyOut130 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut130 #-}+happyIn131 :: (Expr A0) -> (HappyAbsSyn )+happyIn131 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn131 #-}+happyOut131 :: (HappyAbsSyn ) -> (Expr A0)+happyOut131 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut131 #-}+happyIn132 :: (Expr A0) -> (HappyAbsSyn )+happyIn132 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn132 #-}+happyOut132 :: (HappyAbsSyn ) -> (Expr A0)+happyOut132 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut132 #-}+happyIn133 :: (Expr A0) -> (HappyAbsSyn )+happyIn133 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn133 #-}+happyOut133 :: (HappyAbsSyn ) -> (Expr A0)+happyOut133 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut133 #-}+happyIn134 :: (Expr A0) -> (HappyAbsSyn )+happyIn134 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn134 #-}+happyOut134 :: (HappyAbsSyn ) -> (Expr A0)+happyOut134 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut134 #-}+happyIn135 :: (Expr A0) -> (HappyAbsSyn )+happyIn135 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn135 #-}+happyOut135 :: (HappyAbsSyn ) -> (Expr A0)+happyOut135 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut135 #-}+happyIn136 :: (Expr A0) -> (HappyAbsSyn )+happyIn136 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn136 #-}+happyOut136 :: (HappyAbsSyn ) -> (Expr A0)+happyOut136 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut136 #-}+happyIn137 :: (Expr A0) -> (HappyAbsSyn )+happyIn137 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn137 #-}+happyOut137 :: (HappyAbsSyn ) -> (Expr A0)+happyOut137 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut137 #-}+happyIn138 :: (Expr A0) -> (HappyAbsSyn )+happyIn138 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn138 #-}+happyOut138 :: (HappyAbsSyn ) -> (Expr A0)+happyOut138 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut138 #-}+happyIn139 :: (Expr A0) -> (HappyAbsSyn )+happyIn139 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn139 #-}+happyOut139 :: (HappyAbsSyn ) -> (Expr A0)+happyOut139 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut139 #-}+happyIn140 :: (String) -> (HappyAbsSyn )+happyIn140 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn140 #-}+happyOut140 :: (HappyAbsSyn ) -> (String)+happyOut140 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut140 #-}+happyIn141 :: ([String]) -> (HappyAbsSyn )+happyIn141 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn141 #-}+happyOut141 :: (HappyAbsSyn ) -> ([String])+happyOut141 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut141 #-}+happyIn142 :: (Expr A0) -> (HappyAbsSyn )+happyIn142 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn142 #-}+happyOut142 :: (HappyAbsSyn ) -> (Expr A0)+happyOut142 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut142 #-}+happyIn143 :: ([Expr A0]) -> (HappyAbsSyn )+happyIn143 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn143 #-}+happyOut143 :: (HappyAbsSyn ) -> ([Expr A0])+happyOut143 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut143 #-}+happyIn144 :: (Expr A0) -> (HappyAbsSyn )+happyIn144 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn144 #-}+happyOut144 :: (HappyAbsSyn ) -> (Expr A0)+happyOut144 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut144 #-}+happyIn145 :: (Expr A0) -> (HappyAbsSyn )+happyIn145 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn145 #-}+happyOut145 :: (HappyAbsSyn ) -> (Expr A0)+happyOut145 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut145 #-}+happyIn146 :: (Expr A0) -> (HappyAbsSyn )+happyIn146 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn146 #-}+happyOut146 :: (HappyAbsSyn ) -> (Expr A0)+happyOut146 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut146 #-}+happyIn147 :: (Expr A0) -> (HappyAbsSyn )+happyIn147 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn147 #-}+happyOut147 :: (HappyAbsSyn ) -> (Expr A0)+happyOut147 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut147 #-}+happyIn148 :: (Expr A0) -> (HappyAbsSyn )+happyIn148 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn148 #-}+happyOut148 :: (HappyAbsSyn ) -> (Expr A0)+happyOut148 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut148 #-}+happyIn149 :: (BinOp A0) -> (HappyAbsSyn )+happyIn149 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn149 #-}+happyOut149 :: (HappyAbsSyn ) -> (BinOp A0)+happyOut149 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut149 #-}+happyIn150 :: (Expr A0) -> (HappyAbsSyn )+happyIn150 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn150 #-}+happyOut150 :: (HappyAbsSyn ) -> (Expr A0)+happyOut150 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut150 #-}+happyIn151 :: (VarName A0) -> (HappyAbsSyn )+happyIn151 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn151 #-}+happyOut151 :: (HappyAbsSyn ) -> (VarName A0)+happyOut151 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut151 #-}+happyIn152 :: (Fortran A0) -> (HappyAbsSyn )+happyIn152 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn152 #-}+happyOut152 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut152 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut152 #-}+happyIn153 :: (Fortran A0) -> (HappyAbsSyn )+happyIn153 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn153 #-}+happyOut153 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut153 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut153 #-}+happyIn154 :: ((VarName A0, Expr A0, Expr A0, Expr A0)) -> (HappyAbsSyn )+happyIn154 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn154 #-}+happyOut154 :: (HappyAbsSyn ) -> ((VarName A0, Expr A0, Expr A0, Expr A0))+happyOut154 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut154 #-}+happyIn155 :: ((VarName A0, Expr A0, Expr A0, Expr A0)) -> (HappyAbsSyn )+happyIn155 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn155 #-}+happyOut155 :: (HappyAbsSyn ) -> ((VarName A0, Expr A0, Expr A0, Expr A0))+happyOut155 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut155 #-}+happyIn156 :: (Expr A0) -> (HappyAbsSyn )+happyIn156 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn156 #-}+happyOut156 :: (HappyAbsSyn ) -> (Expr A0)+happyOut156 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut156 #-}+happyIn157 :: (Fortran A0) -> (HappyAbsSyn )+happyIn157 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn157 #-}+happyOut157 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut157 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut157 #-}+happyIn158 :: ((Fortran A0, String)) -> (HappyAbsSyn )+happyIn158 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn158 #-}+happyOut158 :: (HappyAbsSyn ) -> ((Fortran A0, String))+happyOut158 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut158 #-}+happyIn159 :: ((Fortran A0, String)) -> (HappyAbsSyn )+happyIn159 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn159 #-}+happyOut159 :: (HappyAbsSyn ) -> ((Fortran A0, String))+happyOut159 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut159 #-}+happyIn160 :: (Fortran A0) -> (HappyAbsSyn )+happyIn160 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn160 #-}+happyOut160 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut160 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut160 #-}+happyIn161 :: () -> (HappyAbsSyn )+happyIn161 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn161 #-}+happyOut161 :: (HappyAbsSyn ) -> ()+happyOut161 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut161 #-}+happyIn162 :: (Fortran A0) -> (HappyAbsSyn )+happyIn162 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn162 #-}+happyOut162 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut162 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut162 #-}+happyIn163 :: (Fortran A0) -> (HappyAbsSyn )+happyIn163 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn163 #-}+happyOut163 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut163 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut163 #-}+happyIn164 :: (Fortran A0) -> (HappyAbsSyn )+happyIn164 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn164 #-}+happyOut164 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut164 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut164 #-}+happyIn165 :: (Fortran A0) -> (HappyAbsSyn )+happyIn165 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn165 #-}+happyOut165 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut165 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut165 #-}+happyIn166 :: (Fortran A0) -> (HappyAbsSyn )+happyIn166 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn166 #-}+happyOut166 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut166 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut166 #-}+happyIn167 :: (Decl A0) -> (HappyAbsSyn )+happyIn167 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn167 #-}+happyOut167 :: (HappyAbsSyn ) -> (Decl A0)+happyOut167 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut167 #-}+happyIn168 :: (Fortran A0) -> (HappyAbsSyn )+happyIn168 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn168 #-}+happyOut168 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut168 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut168 #-}+happyIn169 :: (Fortran A0) -> (HappyAbsSyn )+happyIn169 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn169 #-}+happyOut169 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut169 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut169 #-}+happyIn170 :: (Fortran A0) -> (HappyAbsSyn )+happyIn170 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn170 #-}+happyOut170 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut170 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut170 #-}+happyIn171 :: (Fortran A0) -> (HappyAbsSyn )+happyIn171 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn171 #-}+happyOut171 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut171 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut171 #-}+happyIn172 :: (Expr A0) -> (HappyAbsSyn )+happyIn172 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn172 #-}+happyOut172 :: (HappyAbsSyn ) -> (Expr A0)+happyOut172 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut172 #-}+happyIn173 :: (Expr A0) -> (HappyAbsSyn )+happyIn173 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn173 #-}+happyOut173 :: (HappyAbsSyn ) -> (Expr A0)+happyOut173 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut173 #-}+happyIn174 :: (Expr A0) -> (HappyAbsSyn )+happyIn174 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn174 #-}+happyOut174 :: (HappyAbsSyn ) -> (Expr A0)+happyOut174 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut174 #-}+happyIn175 :: (Expr A0) -> (HappyAbsSyn )+happyIn175 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn175 #-}+happyOut175 :: (HappyAbsSyn ) -> (Expr A0)+happyOut175 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut175 #-}+happyIn176 :: ([(Expr A0, Fortran A0)]) -> (HappyAbsSyn )+happyIn176 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn176 #-}+happyOut176 :: (HappyAbsSyn ) -> ([(Expr A0, Fortran A0)])+happyOut176 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut176 #-}+happyIn177 :: (Expr A0) -> (HappyAbsSyn )+happyIn177 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn177 #-}+happyOut177 :: (HappyAbsSyn ) -> (Expr A0)+happyOut177 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut177 #-}+happyIn178 :: (Expr A0) -> (HappyAbsSyn )+happyIn178 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn178 #-}+happyOut178 :: (HappyAbsSyn ) -> (Expr A0)+happyOut178 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut178 #-}+happyIn179 :: (Expr A0) -> (HappyAbsSyn )+happyIn179 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn179 #-}+happyOut179 :: (HappyAbsSyn ) -> (Expr A0)+happyOut179 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut179 #-}+happyIn180 :: (Fortran A0) -> (HappyAbsSyn )+happyIn180 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn180 #-}+happyOut180 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut180 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut180 #-}+happyIn181 :: () -> (HappyAbsSyn )+happyIn181 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn181 #-}+happyOut181 :: (HappyAbsSyn ) -> ()+happyOut181 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut181 #-}+happyIn182 :: (Expr A0) -> (HappyAbsSyn )+happyIn182 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn182 #-}+happyOut182 :: (HappyAbsSyn ) -> (Expr A0)+happyOut182 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut182 #-}+happyIn183 :: (Fortran A0) -> (HappyAbsSyn )+happyIn183 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn183 #-}+happyOut183 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut183 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut183 #-}+happyIn184 :: (Expr A0) -> (HappyAbsSyn )+happyIn184 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn184 #-}+happyOut184 :: (HappyAbsSyn ) -> (Expr A0)+happyOut184 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut184 #-}+happyIn185 :: ([Expr A0]) -> (HappyAbsSyn )+happyIn185 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn185 #-}+happyOut185 :: (HappyAbsSyn ) -> ([Expr A0])+happyOut185 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut185 #-}+happyIn186 :: (Expr A0) -> (HappyAbsSyn )+happyIn186 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn186 #-}+happyOut186 :: (HappyAbsSyn ) -> (Expr A0)+happyOut186 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut186 #-}+happyIn187 :: ([Expr A0]) -> (HappyAbsSyn )+happyIn187 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn187 #-}+happyOut187 :: (HappyAbsSyn ) -> ([Expr A0])+happyOut187 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut187 #-}+happyIn188 :: (Expr A0) -> (HappyAbsSyn )+happyIn188 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn188 #-}+happyOut188 :: (HappyAbsSyn ) -> (Expr A0)+happyOut188 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut188 #-}+happyIn189 :: (Expr A0) -> (HappyAbsSyn )+happyIn189 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn189 #-}+happyOut189 :: (HappyAbsSyn ) -> (Expr A0)+happyOut189 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut189 #-}+happyIn190 :: (Expr A0) -> (HappyAbsSyn )+happyIn190 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn190 #-}+happyOut190 :: (HappyAbsSyn ) -> (Expr A0)+happyOut190 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut190 #-}+happyIn191 :: ([(VarName A0,[Expr A0])]) -> (HappyAbsSyn )+happyIn191 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn191 #-}+happyOut191 :: (HappyAbsSyn ) -> ([(VarName A0,[Expr A0])])+happyOut191 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut191 #-}+happyIn192 :: ((VarName A0, [Expr A0])) -> (HappyAbsSyn )+happyIn192 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn192 #-}+happyOut192 :: (HappyAbsSyn ) -> ((VarName A0, [Expr A0]))+happyOut192 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut192 #-}+happyIn193 :: (Fortran A0) -> (HappyAbsSyn )+happyIn193 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn193 #-}+happyOut193 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut193 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut193 #-}+happyIn194 :: ([Spec A0]) -> (HappyAbsSyn )+happyIn194 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn194 #-}+happyOut194 :: (HappyAbsSyn ) -> ([Spec A0])+happyOut194 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut194 #-}+happyIn195 :: (Spec A0) -> (HappyAbsSyn )+happyIn195 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn195 #-}+happyOut195 :: (HappyAbsSyn ) -> (Spec A0)+happyOut195 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut195 #-}+happyIn196 :: (Fortran A0) -> (HappyAbsSyn )+happyIn196 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn196 #-}+happyOut196 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut196 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut196 #-}+happyIn197 :: ([Spec A0]) -> (HappyAbsSyn )+happyIn197 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn197 #-}+happyOut197 :: (HappyAbsSyn ) -> ([Spec A0])+happyOut197 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut197 #-}+happyIn198 :: (Spec A0) -> (HappyAbsSyn )+happyIn198 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn198 #-}+happyOut198 :: (HappyAbsSyn ) -> (Spec A0)+happyOut198 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut198 #-}+happyIn199 :: (Fortran A0) -> (HappyAbsSyn )+happyIn199 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn199 #-}+happyOut199 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut199 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut199 #-}+happyIn200 :: (Fortran A0) -> (HappyAbsSyn )+happyIn200 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn200 #-}+happyOut200 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut200 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut200 #-}+happyIn201 :: (Fortran A0) -> (HappyAbsSyn )+happyIn201 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn201 #-}+happyOut201 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut201 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut201 #-}+happyIn202 :: (Fortran A0) -> (HappyAbsSyn )+happyIn202 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn202 #-}+happyOut202 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut202 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut202 #-}+happyIn203 :: (Fortran A0) -> (HappyAbsSyn )+happyIn203 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn203 #-}+happyOut203 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut203 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut203 #-}+happyIn204 :: (Fortran A0) -> (HappyAbsSyn )+happyIn204 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn204 #-}+happyOut204 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut204 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut204 #-}+happyIn205 :: () -> (HappyAbsSyn )+happyIn205 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn205 #-}+happyOut205 :: (HappyAbsSyn ) -> ()+happyOut205 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut205 #-}+happyIn206 :: (([(String,Expr A0,Expr A0,Expr A0)],Expr A0)) -> (HappyAbsSyn )+happyIn206 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn206 #-}+happyOut206 :: (HappyAbsSyn ) -> (([(String,Expr A0,Expr A0,Expr A0)],Expr A0))+happyOut206 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut206 #-}+happyIn207 :: ([(String,Expr A0,Expr A0,Expr A0)]) -> (HappyAbsSyn )+happyIn207 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn207 #-}+happyOut207 :: (HappyAbsSyn ) -> ([(String,Expr A0,Expr A0,Expr A0)])+happyOut207 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut207 #-}+happyIn208 :: ((String,Expr A0,Expr A0,Expr A0)) -> (HappyAbsSyn )+happyIn208 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn208 #-}+happyOut208 :: (HappyAbsSyn ) -> ((String,Expr A0,Expr A0,Expr A0))+happyOut208 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut208 #-}+happyIn209 :: (Fortran A0) -> (HappyAbsSyn )+happyIn209 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn209 #-}+happyOut209 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut209 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut209 #-}+happyIn210 :: (Fortran A0) -> (HappyAbsSyn )+happyIn210 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn210 #-}+happyOut210 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut210 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut210 #-}+happyIn211 :: (Fortran A0) -> (HappyAbsSyn )+happyIn211 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn211 #-}+happyOut211 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut211 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut211 #-}+happyIn212 :: (Fortran A0) -> (HappyAbsSyn )+happyIn212 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn212 #-}+happyOut212 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut212 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut212 #-}+happyIn213 :: (Fortran A0) -> (HappyAbsSyn )+happyIn213 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn213 #-}+happyOut213 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut213 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut213 #-}+happyIn214 :: ([Spec A0]) -> (HappyAbsSyn )+happyIn214 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn214 #-}+happyOut214 :: (HappyAbsSyn ) -> ([Spec A0])+happyOut214 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut214 #-}+happyIn215 :: (Spec A0) -> (HappyAbsSyn )+happyIn215 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn215 #-}+happyOut215 :: (HappyAbsSyn ) -> (Spec A0)+happyOut215 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut215 #-}+happyIn216 :: (Fortran A0) -> (HappyAbsSyn )+happyIn216 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn216 #-}+happyOut216 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut216 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut216 #-}+happyIn217 :: ([Expr A0]) -> (HappyAbsSyn )+happyIn217 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn217 #-}+happyOut217 :: (HappyAbsSyn ) -> ([Expr A0])+happyOut217 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut217 #-}+happyIn218 :: (Expr A0) -> (HappyAbsSyn )+happyIn218 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn218 #-}+happyOut218 :: (HappyAbsSyn ) -> (Expr A0)+happyOut218 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut218 #-}+happyIn219 :: (Expr A0) -> (HappyAbsSyn )+happyIn219 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn219 #-}+happyOut219 :: (HappyAbsSyn ) -> (Expr A0)+happyOut219 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut219 #-}+happyIn220 :: (Fortran A0) -> (HappyAbsSyn )+happyIn220 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn220 #-}+happyOut220 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut220 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut220 #-}+happyIn221 :: ([Spec A0]) -> (HappyAbsSyn )+happyIn221 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn221 #-}+happyOut221 :: (HappyAbsSyn ) -> ([Spec A0])+happyOut221 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut221 #-}+happyIn222 :: (Spec A0) -> (HappyAbsSyn )+happyIn222 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn222 #-}+happyOut222 :: (HappyAbsSyn ) -> (Spec A0)+happyOut222 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut222 #-}+happyIn223 :: (Expr A0) -> (HappyAbsSyn )+happyIn223 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn223 #-}+happyOut223 :: (HappyAbsSyn ) -> (Expr A0)+happyOut223 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut223 #-}+happyIn224 :: (Expr A0) -> (HappyAbsSyn )+happyIn224 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn224 #-}+happyOut224 :: (HappyAbsSyn ) -> (Expr A0)+happyOut224 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut224 #-}+happyIn225 :: (Expr A0) -> (HappyAbsSyn )+happyIn225 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn225 #-}+happyOut225 :: (HappyAbsSyn ) -> (Expr A0)+happyOut225 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut225 #-}+happyIn226 :: (Fortran A0) -> (HappyAbsSyn )+happyIn226 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn226 #-}+happyOut226 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut226 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut226 #-}+happyIn227 :: (Expr A0) -> (HappyAbsSyn )+happyIn227 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn227 #-}+happyOut227 :: (HappyAbsSyn ) -> (Expr A0)+happyOut227 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut227 #-}+happyIn228 :: (Fortran A0) -> (HappyAbsSyn )+happyIn228 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn228 #-}+happyOut228 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut228 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut228 #-}+happyIn229 :: (Expr A0) -> (HappyAbsSyn )+happyIn229 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn229 #-}+happyOut229 :: (HappyAbsSyn ) -> (Expr A0)+happyOut229 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut229 #-}+happyIn230 :: ([Expr A0]) -> (HappyAbsSyn )+happyIn230 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn230 #-}+happyOut230 :: (HappyAbsSyn ) -> ([Expr A0])+happyOut230 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut230 #-}+happyIn231 :: (Expr A0) -> (HappyAbsSyn )+happyIn231 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn231 #-}+happyOut231 :: (HappyAbsSyn ) -> (Expr A0)+happyOut231 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut231 #-}+happyIn232 :: (Fortran A0) -> (HappyAbsSyn )+happyIn232 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn232 #-}+happyOut232 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut232 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut232 #-}+happyIn233 :: ([Spec A0]) -> (HappyAbsSyn )+happyIn233 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn233 #-}+happyOut233 :: (HappyAbsSyn ) -> ([Spec A0])+happyOut233 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut233 #-}+happyIn234 :: ([Spec A0]) -> (HappyAbsSyn )+happyIn234 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn234 #-}+happyOut234 :: (HappyAbsSyn ) -> ([Spec A0])+happyOut234 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut234 #-}+happyIn235 :: ([Spec A0]) -> (HappyAbsSyn )+happyIn235 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn235 #-}+happyOut235 :: (HappyAbsSyn ) -> ([Spec A0])+happyOut235 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut235 #-}+happyIn236 :: ([Spec A0]) -> (HappyAbsSyn )+happyIn236 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn236 #-}+happyOut236 :: (HappyAbsSyn ) -> ([Spec A0])+happyOut236 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut236 #-}+happyIn237 :: (Spec A0) -> (HappyAbsSyn )+happyIn237 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn237 #-}+happyOut237 :: (HappyAbsSyn ) -> (Spec A0)+happyOut237 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut237 #-}+happyIn238 :: (Spec A0) -> (HappyAbsSyn )+happyIn238 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn238 #-}+happyOut238 :: (HappyAbsSyn ) -> (Spec A0)+happyOut238 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut238 #-}+happyIn239 :: ([Expr A0]) -> (HappyAbsSyn )+happyIn239 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn239 #-}+happyOut239 :: (HappyAbsSyn ) -> ([Expr A0])+happyOut239 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut239 #-}+happyIn240 :: (Expr A0) -> (HappyAbsSyn )+happyIn240 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn240 #-}+happyOut240 :: (HappyAbsSyn ) -> (Expr A0)+happyOut240 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut240 #-}+happyIn241 :: (Expr A0) -> (HappyAbsSyn )+happyIn241 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn241 #-}+happyOut241 :: (HappyAbsSyn ) -> (Expr A0)+happyOut241 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut241 #-}+happyIn242 :: (String) -> (HappyAbsSyn )+happyIn242 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn242 #-}+happyOut242 :: (HappyAbsSyn ) -> (String)+happyOut242 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut242 #-}+happyIn243 :: (Expr A0) -> (HappyAbsSyn )+happyIn243 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn243 #-}+happyOut243 :: (HappyAbsSyn ) -> (Expr A0)+happyOut243 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut243 #-}+happyIn244 :: (Fortran A0) -> (HappyAbsSyn )+happyIn244 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn244 #-}+happyOut244 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut244 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut244 #-}+happyIn245 :: (Expr A0) -> (HappyAbsSyn )+happyIn245 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn245 #-}+happyOut245 :: (HappyAbsSyn ) -> (Expr A0)+happyOut245 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut245 #-}+happyIn246 :: (Expr A0) -> (HappyAbsSyn )+happyIn246 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn246 #-}+happyOut246 :: (HappyAbsSyn ) -> (Expr A0)+happyOut246 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut246 #-}+happyIn247 :: (Fortran A0) -> (HappyAbsSyn )+happyIn247 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn247 #-}+happyOut247 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut247 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut247 #-}+happyIn248 :: (Fortran A0) -> (HappyAbsSyn )+happyIn248 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn248 #-}+happyOut248 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut248 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut248 #-}+happyIn249 :: (Expr A0) -> (HappyAbsSyn )+happyIn249 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn249 #-}+happyOut249 :: (HappyAbsSyn ) -> (Expr A0)+happyOut249 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut249 #-}+happyIn250 :: (Fortran A0) -> (HappyAbsSyn )+happyIn250 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn250 #-}+happyOut250 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut250 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut250 #-}+happyIn251 :: (Fortran A0) -> (HappyAbsSyn )+happyIn251 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn251 #-}+happyOut251 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut251 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut251 #-}+happyIn252 :: (Expr A0) -> (HappyAbsSyn )+happyIn252 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn252 #-}+happyOut252 :: (HappyAbsSyn ) -> (Expr A0)+happyOut252 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut252 #-}+happyIn253 :: (Fortran A0) -> (HappyAbsSyn )+happyIn253 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn253 #-}+happyOut253 :: (HappyAbsSyn ) -> (Fortran A0)+happyOut253 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut253 #-}+happyIn254 :: (SrcLoc) -> (HappyAbsSyn )+happyIn254 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyIn254 #-}+happyOut254 :: (HappyAbsSyn ) -> (SrcLoc)+happyOut254 x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOut254 #-}+happyInTok :: (Token) -> (HappyAbsSyn )+happyInTok x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyInTok #-}+happyOutTok :: (HappyAbsSyn ) -> (Token)+happyOutTok x = Happy_GHC_Exts.unsafeCoerce# x+{-# INLINE happyOutTok #-}+++happyActOffsets :: HappyAddr+happyActOffsets = HappyA# 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:: HappyAddr+happyGotoOffsets = HappyA# 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:: HappyAddr+happyDefActions = HappyA# 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:: HappyAddr+happyCheck = HappyA# 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:: HappyAddr+happyTable = HappyA# 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= Happy_Data_Array.array (2, 573) [+	(2 , happyReduce_2),+	(3 , happyReduce_3),+	(4 , happyReduce_4),+	(5 , happyReduce_5),+	(6 , happyReduce_6),+	(7 , happyReduce_7),+	(8 , happyReduce_8),+	(9 , happyReduce_9),+	(10 , happyReduce_10),+	(11 , happyReduce_11),+	(12 , happyReduce_12),+	(13 , happyReduce_13),+	(14 , happyReduce_14),+	(15 , happyReduce_15),+	(16 , happyReduce_16),+	(17 , happyReduce_17),+	(18 , happyReduce_18),+	(19 , happyReduce_19),+	(20 , happyReduce_20),+	(21 , happyReduce_21),+	(22 , happyReduce_22),+	(23 , happyReduce_23),+	(24 , happyReduce_24),+	(25 , happyReduce_25),+	(26 , happyReduce_26),+	(27 , happyReduce_27),+	(28 , happyReduce_28),+	(29 , happyReduce_29),+	(30 , happyReduce_30),+	(31 , happyReduce_31),+	(32 , happyReduce_32),+	(33 , happyReduce_33),+	(34 , happyReduce_34),+	(35 , happyReduce_35),+	(36 , happyReduce_36),+	(37 , happyReduce_37),+	(38 , happyReduce_38),+	(39 , happyReduce_39),+	(40 , happyReduce_40),+	(41 , happyReduce_41),+	(42 , happyReduce_42),+	(43 , happyReduce_43),+	(44 , happyReduce_44),+	(45 , happyReduce_45),+	(46 , happyReduce_46),+	(47 , happyReduce_47),+	(48 , happyReduce_48),+	(49 , happyReduce_49),+	(50 , happyReduce_50),+	(51 , happyReduce_51),+	(52 , happyReduce_52),+	(53 , happyReduce_53),+	(54 , happyReduce_54),+	(55 , happyReduce_55),+	(56 , happyReduce_56),+	(57 , happyReduce_57),+	(58 , happyReduce_58),+	(59 , happyReduce_59),+	(60 , happyReduce_60),+	(61 , happyReduce_61),+	(62 , happyReduce_62),+	(63 , happyReduce_63),+	(64 , happyReduce_64),+	(65 , happyReduce_65),+	(66 , happyReduce_66),+	(67 , happyReduce_67),+	(68 , happyReduce_68),+	(69 , happyReduce_69),+	(70 , happyReduce_70),+	(71 , happyReduce_71),+	(72 , happyReduce_72),+	(73 , happyReduce_73),+	(74 , happyReduce_74),+	(75 , happyReduce_75),+	(76 , happyReduce_76),+	(77 , happyReduce_77),+	(78 , happyReduce_78),+	(79 , happyReduce_79),+	(80 , happyReduce_80),+	(81 , happyReduce_81),+	(82 , happyReduce_82),+	(83 , happyReduce_83),+	(84 , happyReduce_84),+	(85 , happyReduce_85),+	(86 , happyReduce_86),+	(87 , happyReduce_87),+	(88 , happyReduce_88),+	(89 , happyReduce_89),+	(90 , happyReduce_90),+	(91 , happyReduce_91),+	(92 , happyReduce_92),+	(93 , happyReduce_93),+	(94 , happyReduce_94),+	(95 , happyReduce_95),+	(96 , happyReduce_96),+	(97 , happyReduce_97),+	(98 , happyReduce_98),+	(99 , happyReduce_99),+	(100 , happyReduce_100),+	(101 , happyReduce_101),+	(102 , happyReduce_102),+	(103 , happyReduce_103),+	(104 , happyReduce_104),+	(105 , happyReduce_105),+	(106 , happyReduce_106),+	(107 , happyReduce_107),+	(108 , happyReduce_108),+	(109 , happyReduce_109),+	(110 , happyReduce_110),+	(111 , happyReduce_111),+	(112 , happyReduce_112),+	(113 , happyReduce_113),+	(114 , happyReduce_114),+	(115 , happyReduce_115),+	(116 , happyReduce_116),+	(117 , happyReduce_117),+	(118 , happyReduce_118),+	(119 , happyReduce_119),+	(120 , happyReduce_120),+	(121 , happyReduce_121),+	(122 , happyReduce_122),+	(123 , happyReduce_123),+	(124 , happyReduce_124),+	(125 , happyReduce_125),+	(126 , happyReduce_126),+	(127 , happyReduce_127),+	(128 , happyReduce_128),+	(129 , happyReduce_129),+	(130 , happyReduce_130),+	(131 , happyReduce_131),+	(132 , happyReduce_132),+	(133 , happyReduce_133),+	(134 , happyReduce_134),+	(135 , happyReduce_135),+	(136 , happyReduce_136),+	(137 , happyReduce_137),+	(138 , happyReduce_138),+	(139 , happyReduce_139),+	(140 , happyReduce_140),+	(141 , happyReduce_141),+	(142 , happyReduce_142),+	(143 , happyReduce_143),+	(144 , happyReduce_144),+	(145 , happyReduce_145),+	(146 , happyReduce_146),+	(147 , happyReduce_147),+	(148 , happyReduce_148),+	(149 , happyReduce_149),+	(150 , happyReduce_150),+	(151 , happyReduce_151),+	(152 , happyReduce_152),+	(153 , happyReduce_153),+	(154 , happyReduce_154),+	(155 , happyReduce_155),+	(156 , happyReduce_156),+	(157 , happyReduce_157),+	(158 , happyReduce_158),+	(159 , happyReduce_159),+	(160 , happyReduce_160),+	(161 , happyReduce_161),+	(162 , happyReduce_162),+	(163 , happyReduce_163),+	(164 , happyReduce_164),+	(165 , happyReduce_165),+	(166 , happyReduce_166),+	(167 , happyReduce_167),+	(168 , happyReduce_168),+	(169 , happyReduce_169),+	(170 , happyReduce_170),+	(171 , happyReduce_171),+	(172 , happyReduce_172),+	(173 , happyReduce_173),+	(174 , happyReduce_174),+	(175 , happyReduce_175),+	(176 , happyReduce_176),+	(177 , happyReduce_177),+	(178 , happyReduce_178),+	(179 , happyReduce_179),+	(180 , happyReduce_180),+	(181 , happyReduce_181),+	(182 , happyReduce_182),+	(183 , happyReduce_183),+	(184 , happyReduce_184),+	(185 , happyReduce_185),+	(186 , happyReduce_186),+	(187 , happyReduce_187),+	(188 , happyReduce_188),+	(189 , happyReduce_189),+	(190 , happyReduce_190),+	(191 , happyReduce_191),+	(192 , happyReduce_192),+	(193 , happyReduce_193),+	(194 , happyReduce_194),+	(195 , happyReduce_195),+	(196 , happyReduce_196),+	(197 , happyReduce_197),+	(198 , happyReduce_198),+	(199 , happyReduce_199),+	(200 , happyReduce_200),+	(201 , happyReduce_201),+	(202 , happyReduce_202),+	(203 , happyReduce_203),+	(204 , happyReduce_204),+	(205 , happyReduce_205),+	(206 , happyReduce_206),+	(207 , happyReduce_207),+	(208 , happyReduce_208),+	(209 , happyReduce_209),+	(210 , happyReduce_210),+	(211 , happyReduce_211),+	(212 , happyReduce_212),+	(213 , happyReduce_213),+	(214 , happyReduce_214),+	(215 , happyReduce_215),+	(216 , happyReduce_216),+	(217 , happyReduce_217),+	(218 , happyReduce_218),+	(219 , happyReduce_219),+	(220 , happyReduce_220),+	(221 , happyReduce_221),+	(222 , happyReduce_222),+	(223 , happyReduce_223),+	(224 , happyReduce_224),+	(225 , happyReduce_225),+	(226 , happyReduce_226),+	(227 , happyReduce_227),+	(228 , happyReduce_228),+	(229 , happyReduce_229),+	(230 , happyReduce_230),+	(231 , happyReduce_231),+	(232 , happyReduce_232),+	(233 , happyReduce_233),+	(234 , happyReduce_234),+	(235 , happyReduce_235),+	(236 , happyReduce_236),+	(237 , happyReduce_237),+	(238 , happyReduce_238),+	(239 , happyReduce_239),+	(240 , happyReduce_240),+	(241 , happyReduce_241),+	(242 , happyReduce_242),+	(243 , happyReduce_243),+	(244 , happyReduce_244),+	(245 , happyReduce_245),+	(246 , happyReduce_246),+	(247 , happyReduce_247),+	(248 , happyReduce_248),+	(249 , happyReduce_249),+	(250 , happyReduce_250),+	(251 , happyReduce_251),+	(252 , happyReduce_252),+	(253 , happyReduce_253),+	(254 , happyReduce_254),+	(255 , happyReduce_255),+	(256 , happyReduce_256),+	(257 , happyReduce_257),+	(258 , happyReduce_258),+	(259 , happyReduce_259),+	(260 , happyReduce_260),+	(261 , happyReduce_261),+	(262 , happyReduce_262),+	(263 , happyReduce_263),+	(264 , happyReduce_264),+	(265 , happyReduce_265),+	(266 , happyReduce_266),+	(267 , happyReduce_267),+	(268 , happyReduce_268),+	(269 , happyReduce_269),+	(270 , happyReduce_270),+	(271 , happyReduce_271),+	(272 , happyReduce_272),+	(273 , happyReduce_273),+	(274 , happyReduce_274),+	(275 , happyReduce_275),+	(276 , happyReduce_276),+	(277 , happyReduce_277),+	(278 , happyReduce_278),+	(279 , happyReduce_279),+	(280 , happyReduce_280),+	(281 , happyReduce_281),+	(282 , happyReduce_282),+	(283 , happyReduce_283),+	(284 , happyReduce_284),+	(285 , happyReduce_285),+	(286 , happyReduce_286),+	(287 , happyReduce_287),+	(288 , happyReduce_288),+	(289 , happyReduce_289),+	(290 , happyReduce_290),+	(291 , happyReduce_291),+	(292 , happyReduce_292),+	(293 , happyReduce_293),+	(294 , happyReduce_294),+	(295 , happyReduce_295),+	(296 , happyReduce_296),+	(297 , happyReduce_297),+	(298 , happyReduce_298),+	(299 , happyReduce_299),+	(300 , happyReduce_300),+	(301 , happyReduce_301),+	(302 , happyReduce_302),+	(303 , happyReduce_303),+	(304 , happyReduce_304),+	(305 , happyReduce_305),+	(306 , happyReduce_306),+	(307 , happyReduce_307),+	(308 , happyReduce_308),+	(309 , happyReduce_309),+	(310 , happyReduce_310),+	(311 , happyReduce_311),+	(312 , happyReduce_312),+	(313 , happyReduce_313),+	(314 , happyReduce_314),+	(315 , happyReduce_315),+	(316 , happyReduce_316),+	(317 , happyReduce_317),+	(318 , happyReduce_318),+	(319 , happyReduce_319),+	(320 , happyReduce_320),+	(321 , happyReduce_321),+	(322 , happyReduce_322),+	(323 , happyReduce_323),+	(324 , happyReduce_324),+	(325 , happyReduce_325),+	(326 , happyReduce_326),+	(327 , happyReduce_327),+	(328 , happyReduce_328),+	(329 , happyReduce_329),+	(330 , happyReduce_330),+	(331 , happyReduce_331),+	(332 , happyReduce_332),+	(333 , happyReduce_333),+	(334 , happyReduce_334),+	(335 , happyReduce_335),+	(336 , happyReduce_336),+	(337 , happyReduce_337),+	(338 , happyReduce_338),+	(339 , happyReduce_339),+	(340 , happyReduce_340),+	(341 , happyReduce_341),+	(342 , happyReduce_342),+	(343 , happyReduce_343),+	(344 , happyReduce_344),+	(345 , happyReduce_345),+	(346 , happyReduce_346),+	(347 , happyReduce_347),+	(348 , happyReduce_348),+	(349 , happyReduce_349),+	(350 , happyReduce_350),+	(351 , happyReduce_351),+	(352 , happyReduce_352),+	(353 , happyReduce_353),+	(354 , happyReduce_354),+	(355 , happyReduce_355),+	(356 , happyReduce_356),+	(357 , happyReduce_357),+	(358 , happyReduce_358),+	(359 , happyReduce_359),+	(360 , happyReduce_360),+	(361 , happyReduce_361),+	(362 , happyReduce_362),+	(363 , happyReduce_363),+	(364 , happyReduce_364),+	(365 , happyReduce_365),+	(366 , happyReduce_366),+	(367 , happyReduce_367),+	(368 , happyReduce_368),+	(369 , happyReduce_369),+	(370 , happyReduce_370),+	(371 , happyReduce_371),+	(372 , happyReduce_372),+	(373 , happyReduce_373),+	(374 , happyReduce_374),+	(375 , happyReduce_375),+	(376 , happyReduce_376),+	(377 , happyReduce_377),+	(378 , happyReduce_378),+	(379 , happyReduce_379),+	(380 , happyReduce_380),+	(381 , happyReduce_381),+	(382 , happyReduce_382),+	(383 , happyReduce_383),+	(384 , happyReduce_384),+	(385 , happyReduce_385),+	(386 , happyReduce_386),+	(387 , happyReduce_387),+	(388 , happyReduce_388),+	(389 , happyReduce_389),+	(390 , happyReduce_390),+	(391 , happyReduce_391),+	(392 , happyReduce_392),+	(393 , happyReduce_393),+	(394 , happyReduce_394),+	(395 , happyReduce_395),+	(396 , happyReduce_396),+	(397 , happyReduce_397),+	(398 , happyReduce_398),+	(399 , happyReduce_399),+	(400 , happyReduce_400),+	(401 , happyReduce_401),+	(402 , happyReduce_402),+	(403 , happyReduce_403),+	(404 , happyReduce_404),+	(405 , happyReduce_405),+	(406 , happyReduce_406),+	(407 , happyReduce_407),+	(408 , happyReduce_408),+	(409 , happyReduce_409),+	(410 , happyReduce_410),+	(411 , happyReduce_411),+	(412 , happyReduce_412),+	(413 , happyReduce_413),+	(414 , happyReduce_414),+	(415 , happyReduce_415),+	(416 , happyReduce_416),+	(417 , happyReduce_417),+	(418 , happyReduce_418),+	(419 , happyReduce_419),+	(420 , happyReduce_420),+	(421 , happyReduce_421),+	(422 , happyReduce_422),+	(423 , happyReduce_423),+	(424 , happyReduce_424),+	(425 , happyReduce_425),+	(426 , happyReduce_426),+	(427 , happyReduce_427),+	(428 , happyReduce_428),+	(429 , happyReduce_429),+	(430 , happyReduce_430),+	(431 , happyReduce_431),+	(432 , happyReduce_432),+	(433 , happyReduce_433),+	(434 , happyReduce_434),+	(435 , happyReduce_435),+	(436 , happyReduce_436),+	(437 , happyReduce_437),+	(438 , happyReduce_438),+	(439 , happyReduce_439),+	(440 , happyReduce_440),+	(441 , happyReduce_441),+	(442 , happyReduce_442),+	(443 , happyReduce_443),+	(444 , happyReduce_444),+	(445 , happyReduce_445),+	(446 , happyReduce_446),+	(447 , happyReduce_447),+	(448 , happyReduce_448),+	(449 , happyReduce_449),+	(450 , happyReduce_450),+	(451 , happyReduce_451),+	(452 , happyReduce_452),+	(453 , happyReduce_453),+	(454 , happyReduce_454),+	(455 , happyReduce_455),+	(456 , happyReduce_456),+	(457 , happyReduce_457),+	(458 , happyReduce_458),+	(459 , happyReduce_459),+	(460 , happyReduce_460),+	(461 , happyReduce_461),+	(462 , happyReduce_462),+	(463 , happyReduce_463),+	(464 , happyReduce_464),+	(465 , happyReduce_465),+	(466 , happyReduce_466),+	(467 , happyReduce_467),+	(468 , happyReduce_468),+	(469 , happyReduce_469),+	(470 , happyReduce_470),+	(471 , happyReduce_471),+	(472 , happyReduce_472),+	(473 , happyReduce_473),+	(474 , happyReduce_474),+	(475 , happyReduce_475),+	(476 , happyReduce_476),+	(477 , happyReduce_477),+	(478 , happyReduce_478),+	(479 , happyReduce_479),+	(480 , happyReduce_480),+	(481 , happyReduce_481),+	(482 , happyReduce_482),+	(483 , happyReduce_483),+	(484 , happyReduce_484),+	(485 , happyReduce_485),+	(486 , happyReduce_486),+	(487 , happyReduce_487),+	(488 , happyReduce_488),+	(489 , happyReduce_489),+	(490 , happyReduce_490),+	(491 , happyReduce_491),+	(492 , happyReduce_492),+	(493 , happyReduce_493),+	(494 , happyReduce_494),+	(495 , happyReduce_495),+	(496 , happyReduce_496),+	(497 , happyReduce_497),+	(498 , happyReduce_498),+	(499 , happyReduce_499),+	(500 , happyReduce_500),+	(501 , happyReduce_501),+	(502 , happyReduce_502),+	(503 , happyReduce_503),+	(504 , happyReduce_504),+	(505 , happyReduce_505),+	(506 , happyReduce_506),+	(507 , happyReduce_507),+	(508 , happyReduce_508),+	(509 , happyReduce_509),+	(510 , happyReduce_510),+	(511 , happyReduce_511),+	(512 , happyReduce_512),+	(513 , happyReduce_513),+	(514 , happyReduce_514),+	(515 , happyReduce_515),+	(516 , happyReduce_516),+	(517 , happyReduce_517),+	(518 , happyReduce_518),+	(519 , happyReduce_519),+	(520 , happyReduce_520),+	(521 , happyReduce_521),+	(522 , happyReduce_522),+	(523 , happyReduce_523),+	(524 , happyReduce_524),+	(525 , happyReduce_525),+	(526 , happyReduce_526),+	(527 , happyReduce_527),+	(528 , happyReduce_528),+	(529 , happyReduce_529),+	(530 , happyReduce_530),+	(531 , happyReduce_531),+	(532 , happyReduce_532),+	(533 , happyReduce_533),+	(534 , happyReduce_534),+	(535 , happyReduce_535),+	(536 , happyReduce_536),+	(537 , happyReduce_537),+	(538 , happyReduce_538),+	(539 , happyReduce_539),+	(540 , happyReduce_540),+	(541 , happyReduce_541),+	(542 , happyReduce_542),+	(543 , happyReduce_543),+	(544 , happyReduce_544),+	(545 , happyReduce_545),+	(546 , happyReduce_546),+	(547 , happyReduce_547),+	(548 , happyReduce_548),+	(549 , happyReduce_549),+	(550 , happyReduce_550),+	(551 , happyReduce_551),+	(552 , happyReduce_552),+	(553 , happyReduce_553),+	(554 , happyReduce_554),+	(555 , happyReduce_555),+	(556 , happyReduce_556),+	(557 , happyReduce_557),+	(558 , happyReduce_558),+	(559 , happyReduce_559),+	(560 , happyReduce_560),+	(561 , happyReduce_561),+	(562 , happyReduce_562),+	(563 , happyReduce_563),+	(564 , happyReduce_564),+	(565 , happyReduce_565),+	(566 , happyReduce_566),+	(567 , happyReduce_567),+	(568 , happyReduce_568),+	(569 , happyReduce_569),+	(570 , happyReduce_570),+	(571 , happyReduce_571),+	(572 , happyReduce_572),+	(573 , happyReduce_573)+	]++happy_n_terms = 130 :: Int+happy_n_nonterms = 250 :: Int++happyReduce_2 = happyMonadReduce 3# 0# happyReduction_2+happyReduction_2 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut34 happy_x_3 of { happy_var_3 -> +	( do { s <- getSrcSpan happy_var_1; 
+                                                return [IncludeProg () s happy_var_3 Nothing] })}}+	) (\r -> happyReturn (happyIn5 r))++happyReduce_3 = happySpecReduce_1  1# happyReduction_3+happyReduction_3 happy_x_1+	 =  case happyOut7 happy_x_1 of { happy_var_1 -> +	happyIn6+		 (happy_var_1+	)}++happyReduce_4 = happySpecReduce_3  2# happyReduction_4+happyReduction_4 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut7 happy_x_1 of { happy_var_1 -> +	case happyOut8 happy_x_3 of { happy_var_3 -> +	happyIn7+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_5 = happySpecReduce_0  2# happyReduction_5+happyReduction_5  =  happyIn7+		 ([]+	)++happyReduce_6 = happySpecReduce_1  3# happyReduction_6+happyReduction_6 happy_x_1+	 =  case happyOut13 happy_x_1 of { happy_var_1 -> +	happyIn8+		 (happy_var_1+	)}++happyReduce_7 = happySpecReduce_1  3# happyReduction_7+happyReduction_7 happy_x_1+	 =  case happyOut17 happy_x_1 of { happy_var_1 -> +	happyIn8+		 (happy_var_1+	)}++happyReduce_8 = happySpecReduce_1  3# happyReduction_8+happyReduction_8 happy_x_1+	 =  case happyOut25 happy_x_1 of { happy_var_1 -> +	happyIn8+		 (happy_var_1+	)}++happyReduce_9 = happySpecReduce_1  3# happyReduction_9+happyReduction_9 happy_x_1+	 =  case happyOut22 happy_x_1 of { happy_var_1 -> +	happyIn8+		 (happy_var_1+	)}++happyReduce_10 = happySpecReduce_3  4# happyReduction_10+happyReduction_10 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut9 happy_x_1 of { happy_var_1 -> +	case happyOut103 happy_x_3 of { happy_var_3 -> +	happyIn9+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_11 = happySpecReduce_1  4# happyReduction_11+happyReduction_11 happy_x_1+	 =  case happyOut103 happy_x_1 of { happy_var_1 -> +	happyIn9+		 ([happy_var_1]+	)}++happyReduce_12 = happySpecReduce_3  5# happyReduction_12+happyReduction_12 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut120 happy_x_1 of { happy_var_1 -> +	case happyOut10 happy_x_3 of { happy_var_3 -> +	happyIn10+		 (happy_var_1:happy_var_3+	)}}++happyReduce_13 = happySpecReduce_1  5# happyReduction_13+happyReduction_13 happy_x_1+	 =  case happyOut120 happy_x_1 of { happy_var_1 -> +	happyIn10+		 ([happy_var_1]+	)}++happyReduce_14 = happySpecReduce_2  6# happyReduction_14+happyReduction_14 happy_x_2+	happy_x_1+	 =  happyIn11+		 (+	)++happyReduce_15 = happySpecReduce_1  7# happyReduction_15+happyReduction_15 happy_x_1+	 =  happyIn12+		 (+	)++happyReduce_16 = happySpecReduce_0  7# happyReduction_16+happyReduction_16  =  happyIn12+		 (+	)++happyReduce_17 = happyMonadReduce 11# 8# happyReduction_17+happyReduction_17 (happy_x_11 `HappyStk`+	happy_x_10 `HappyStk`+	happy_x_9 `HappyStk`+	happy_x_8 `HappyStk`+	happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut14 happy_x_2 of { happy_var_2 -> +	case happyOut254 happy_x_3 of { happy_var_3 -> +	case happyOut31 happy_x_4 of { happy_var_4 -> +	case happyOut16 happy_x_5 of { happy_var_5 -> +	case happyOut254 happy_x_6 of { happy_var_6 -> +	case happyOut34 happy_x_7 of { happy_var_7 -> +	case happyOut163 happy_x_8 of { happy_var_8 -> +	case happyOut28 happy_x_9 of { happy_var_9 -> +	case happyOut15 happy_x_10 of { happy_var_10 -> +	( do { s <- getSrcSpan happy_var_1;
+		        s' <- getSrcSpan happy_var_6;
+		        name <- cmpNames (fst happy_var_2) happy_var_10 "program";
+		        return (Main () s name (snd happy_var_2) (Block () (UseBlock happy_var_4 happy_var_3) happy_var_5 s' happy_var_7 happy_var_8) happy_var_9); })}}}}}}}}}}+	) (\r -> happyReturn (happyIn13 r))++happyReduce_18 = happyReduce 4# 9# happyReduction_18+happyReduction_18 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut113 happy_x_2 of { happy_var_2 -> +	case happyOut115 happy_x_3 of { happy_var_3 -> +	happyIn14+		 ((happy_var_2, happy_var_3)+	) `HappyStk` happyRest}}++happyReduce_19 = happyReduce 4# 9# happyReduction_19+happyReduction_19 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut113 happy_x_2 of { happy_var_2 -> +	case happyOut254 happy_x_3 of { happy_var_3 -> +	happyIn14+		 ((happy_var_2, (Arg () (NullArg ())) (happy_var_3, happy_var_3))+	) `HappyStk` happyRest}}++happyReduce_20 = happySpecReduce_3  10# happyReduction_20+happyReduction_20 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut103 happy_x_3 of { happy_var_3 -> +	happyIn15+		 (happy_var_3+	)}++happyReduce_21 = happySpecReduce_2  10# happyReduction_21+happyReduction_21 happy_x_2+	happy_x_1+	 =  happyIn15+		 (""+	)++happyReduce_22 = happySpecReduce_1  10# happyReduction_22+happyReduction_22 happy_x_1+	 =  happyIn15+		 (""+	)++happyReduce_23 = happySpecReduce_3  11# happyReduction_23+happyReduction_23 happy_x_3+	happy_x_2+	happy_x_1+	 =  happyIn16+		 (ImplicitNone ()+	)++happyReduce_24 = happySpecReduce_0  11# happyReduction_24+happyReduction_24  =  happyIn16+		 (ImplicitNull ()+	)++happyReduce_25 = happySpecReduce_1  12# happyReduction_25+happyReduction_25 happy_x_1+	 =  case happyOut21 happy_x_1 of { happy_var_1 -> +	happyIn17+		 (happy_var_1+	)}++happyReduce_26 = happySpecReduce_1  12# happyReduction_26+happyReduction_26 happy_x_1+	 =  case happyOut18 happy_x_1 of { happy_var_1 -> +	happyIn17+		 (happy_var_1+	)}++happyReduce_27 = happyMonadReduce 10# 13# happyReduction_27+happyReduction_27 (happy_x_10 `HappyStk`+	happy_x_9 `HappyStk`+	happy_x_8 `HappyStk`+	happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut111 happy_x_2 of { happy_var_2 -> +	case happyOut254 happy_x_3 of { happy_var_3 -> +	case happyOut31 happy_x_4 of { happy_var_4 -> +	case happyOut16 happy_x_5 of { happy_var_5 -> +	case happyOut254 happy_x_6 of { happy_var_6 -> +	case happyOut34 happy_x_7 of { happy_var_7 -> +	case happyOut163 happy_x_8 of { happy_var_8 -> +	case happyOut19 happy_x_9 of { happy_var_9 -> +	( do { s <- getSrcSpan happy_var_1;
+          s' <- getSrcSpan happy_var_6;
+          name <- cmpNames (fst3 happy_var_2) happy_var_9 "subroutine";
+          return (Sub () s (trd3 happy_var_2) name (snd3 happy_var_2) (Block () (UseBlock happy_var_4 happy_var_3) happy_var_5 s' happy_var_7 happy_var_8)); })}}}}}}}}}+	) (\r -> happyReturn (happyIn18 r))++happyReduce_28 = happySpecReduce_3  14# happyReduction_28+happyReduction_28 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut103 happy_x_3 of { happy_var_3 -> +	happyIn19+		 (happy_var_3+	)}++happyReduce_29 = happySpecReduce_2  14# happyReduction_29+happyReduction_29 happy_x_2+	happy_x_1+	 =  happyIn19+		 (""+	)++happyReduce_30 = happySpecReduce_1  14# happyReduction_30+happyReduction_30 happy_x_1+	 =  happyIn19+		 (""+	)++happyReduce_31 = happySpecReduce_3  15# happyReduction_31+happyReduction_31 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut103 happy_x_3 of { happy_var_3 -> +	happyIn20+		 (happy_var_3+	)}++happyReduce_32 = happySpecReduce_2  15# happyReduction_32+happyReduction_32 happy_x_2+	happy_x_1+	 =  happyIn20+		 (""+	)++happyReduce_33 = happySpecReduce_1  15# happyReduction_33+happyReduction_33 happy_x_1+	 =  happyIn20+		 (""+	)++happyReduce_34 = happyMonadReduce 10# 16# happyReduction_34+happyReduction_34 (happy_x_10 `HappyStk`+	happy_x_9 `HappyStk`+	happy_x_8 `HappyStk`+	happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut112 happy_x_2 of { happy_var_2 -> +	case happyOut254 happy_x_3 of { happy_var_3 -> +	case happyOut31 happy_x_4 of { happy_var_4 -> +	case happyOut16 happy_x_5 of { happy_var_5 -> +	case happyOut254 happy_x_6 of { happy_var_6 -> +	case happyOut34 happy_x_7 of { happy_var_7 -> +	case happyOut163 happy_x_8 of { happy_var_8 -> +	case happyOut20 happy_x_9 of { happy_var_9 -> +	( do { s <- getSrcSpan happy_var_1;
+                       s' <- getSrcSpan happy_var_6;
+                       name <- cmpNames (fst4 happy_var_2) happy_var_9 "function";
+		       return (Function () s (trd4 happy_var_2) name (snd4 happy_var_2) (frh4 happy_var_2) (Block () (UseBlock happy_var_4 happy_var_3) happy_var_5 s' happy_var_7 happy_var_8)); })}}}}}}}}}+	) (\r -> happyReturn (happyIn21 r))++happyReduce_35 = happyMonadReduce 6# 17# happyReduction_35+happyReduction_35 (happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut23 happy_x_2 of { happy_var_2 -> +	case happyOut31 happy_x_3 of { happy_var_3 -> +	case happyOut16 happy_x_4 of { happy_var_4 -> +	case happyOut34 happy_x_5 of { happy_var_5 -> +	case happyOut24 happy_x_6 of { happy_var_6 -> +	( do { s <- getSrcSpan happy_var_1;
+                          name <- cmpNames happy_var_2 happy_var_6 "block data";
+                          return (BlockData () s name happy_var_3 happy_var_4 happy_var_5); })}}}}}}+	) (\r -> happyReturn (happyIn22 r))++happyReduce_36 = happySpecReduce_3  18# happyReduction_36+happyReduction_36 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut113 happy_x_3 of { happy_var_3 -> +	happyIn23+		 (happy_var_3+	)}++happyReduce_37 = happySpecReduce_2  18# happyReduction_37+happyReduction_37 happy_x_2+	happy_x_1+	 =  happyIn23+		 ("foobar" `trace` NullSubName ()+	)++happyReduce_38 = happyReduce 4# 19# happyReduction_38+happyReduction_38 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut103 happy_x_4 of { happy_var_4 -> +	happyIn24+		 (happy_var_4+	) `HappyStk` happyRest}++happyReduce_39 = happySpecReduce_3  19# happyReduction_39+happyReduction_39 happy_x_3+	happy_x_2+	happy_x_1+	 =  happyIn24+		 (""+	)++happyReduce_40 = happySpecReduce_1  19# happyReduction_40+happyReduction_40 happy_x_1+	 =  happyIn24+		 (""+	)++happyReduce_41 = happyMonadReduce 8# 20# happyReduction_41+happyReduction_41 (happy_x_8 `HappyStk`+	happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut26 happy_x_2 of { happy_var_2 -> +	case happyOut31 happy_x_3 of { happy_var_3 -> +	case happyOut16 happy_x_4 of { happy_var_4 -> +	case happyOut34 happy_x_5 of { happy_var_5 -> +	case happyOut28 happy_x_6 of { happy_var_6 -> +	case happyOut27 happy_x_7 of { happy_var_7 -> +	(  do { s <- getSrcSpan happy_var_1;
+                  name <- cmpNames happy_var_2 happy_var_7  "module";
+		  return (Module ()s name happy_var_3 happy_var_4 happy_var_5 happy_var_6); })}}}}}}}+	) (\r -> happyReturn (happyIn25 r))++happyReduce_42 = happySpecReduce_3  21# happyReduction_42+happyReduction_42 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut113 happy_x_2 of { happy_var_2 -> +	happyIn26+		 (happy_var_2+	)}++happyReduce_43 = happySpecReduce_3  22# happyReduction_43+happyReduction_43 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut103 happy_x_3 of { happy_var_3 -> +	happyIn27+		 (happy_var_3+	)}++happyReduce_44 = happySpecReduce_2  22# happyReduction_44+happyReduction_44 happy_x_2+	happy_x_1+	 =  happyIn27+		 (""+	)++happyReduce_45 = happySpecReduce_1  22# happyReduction_45+happyReduction_45 happy_x_1+	 =  happyIn27+		 (""+	)++happyReduce_46 = happySpecReduce_3  23# happyReduction_46+happyReduction_46 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut29 happy_x_3 of { happy_var_3 -> +	happyIn28+		 (happy_var_3+	)}++happyReduce_47 = happySpecReduce_0  23# happyReduction_47+happyReduction_47  =  happyIn28+		 ([]+	)++happyReduce_48 = happySpecReduce_3  24# happyReduction_48+happyReduction_48 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut29 happy_x_1 of { happy_var_1 -> +	case happyOut30 happy_x_2 of { happy_var_2 -> +	happyIn29+		 (happy_var_1++[happy_var_2]+	)}}++happyReduce_49 = happySpecReduce_0  24# happyReduction_49+happyReduction_49  =  happyIn29+		 ([]+	)++happyReduce_50 = happySpecReduce_1  25# happyReduction_50+happyReduction_50 happy_x_1+	 =  case happyOut18 happy_x_1 of { happy_var_1 -> +	happyIn30+		 (happy_var_1+	)}++happyReduce_51 = happySpecReduce_1  25# happyReduction_51+happyReduction_51 happy_x_1+	 =  case happyOut21 happy_x_1 of { happy_var_1 -> +	happyIn30+		 (happy_var_1+	)}++happyReduce_52 = happySpecReduce_2  26# happyReduction_52+happyReduction_52 happy_x_2+	happy_x_1+	 =  case happyOut32 happy_x_1 of { happy_var_1 -> +	case happyOut31 happy_x_2 of { happy_var_2 -> +	happyIn31+		 (Use () happy_var_1 happy_var_2 ()+	)}}++happyReduce_53 = happySpecReduce_0  26# happyReduction_53+happyReduction_53  =  happyIn31+		 (UseNil ()+	)++happyReduce_54 = happySpecReduce_3  27# happyReduction_54+happyReduction_54 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut103 happy_x_2 of { happy_var_2 -> +	happyIn32+		 ((happy_var_2, [])+	)}++happyReduce_55 = happyReduce 5# 27# happyReduction_55+happyReduction_55 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut33 happy_x_4 of { happy_var_4 -> +	happyIn32+		 (("common", happy_var_4)+	) `HappyStk` happyRest}++happyReduce_56 = happyReduce 5# 27# happyReduction_56+happyReduction_56 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut103 happy_x_2 of { happy_var_2 -> +	case happyOut33 happy_x_4 of { happy_var_4 -> +	happyIn32+		 ((happy_var_2, happy_var_4)+	) `HappyStk` happyRest}}++happyReduce_57 = happySpecReduce_3  28# happyReduction_57+happyReduction_57 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut103 happy_x_1 of { happy_var_1 -> +	case happyOut103 happy_x_3 of { happy_var_3 -> +	happyIn33+		 ([(happy_var_1, happy_var_3)]+	)}}++happyReduce_58 = happySpecReduce_3  28# happyReduction_58+happyReduction_58 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut33 happy_x_1 of { happy_var_1 -> +	case happyOut33 happy_x_3 of { happy_var_3 -> +	happyIn33+		 (happy_var_1 ++ happy_var_3+	)}}++happyReduce_59 = happySpecReduce_1  29# happyReduction_59+happyReduction_59 happy_x_1+	 =  case happyOut35 happy_x_1 of { happy_var_1 -> +	happyIn34+		 (happy_var_1+	)}++happyReduce_60 = happyMonadReduce 0# 29# happyReduction_60+happyReduction_60 (happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $ NullDecl () s))+	) (\r -> happyReturn (happyIn34 r))++happyReduce_61 = happySpecReduce_2  30# happyReduction_61+happyReduction_61 happy_x_2+	happy_x_1+	 =  case happyOut36 happy_x_1 of { happy_var_1 -> +	case happyOut35 happy_x_2 of { happy_var_2 -> +	happyIn35+		 (DSeq () happy_var_1 happy_var_2+	)}}++happyReduce_62 = happySpecReduce_1  30# happyReduction_62+happyReduction_62 happy_x_1+	 =  case happyOut36 happy_x_1 of { happy_var_1 -> +	happyIn35+		 (happy_var_1+	)}++happyReduce_63 = happySpecReduce_2  31# happyReduction_63+happyReduction_63 happy_x_2+	happy_x_1+	 =  case happyOut37 happy_x_1 of { happy_var_1 -> +	happyIn36+		 (happy_var_1+	)}++happyReduce_64 = happySpecReduce_1  32# happyReduction_64+happyReduction_64 happy_x_1+	 =  case happyOut38 happy_x_1 of { happy_var_1 -> +	happyIn37+		 (happy_var_1+	)}++happyReduce_65 = happySpecReduce_1  32# happyReduction_65+happyReduction_65 happy_x_1+	 =  case happyOut69 happy_x_1 of { happy_var_1 -> +	happyIn37+		 (happy_var_1+	)}++happyReduce_66 = happySpecReduce_1  32# happyReduction_66+happyReduction_66 happy_x_1+	 =  case happyOut80 happy_x_1 of { happy_var_1 -> +	happyIn37+		 (happy_var_1+	)}++happyReduce_67 = happySpecReduce_1  32# happyReduction_67+happyReduction_67 happy_x_1+	 =  case happyOutTok happy_x_1 of { (Text happy_var_1) -> +	happyIn37+		 (TextDecl () happy_var_1+	)}++happyReduce_68 = happyMonadReduce 5# 33# happyReduction_68+happyReduction_68 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut43 happy_x_2 of { happy_var_2 -> +	case happyOut39 happy_x_3 of { happy_var_3 -> +	case happyOut40 happy_x_5 of { happy_var_5 -> +	( (getSrcSpan happy_var_1) >>= (\s -> return $ if isEmpty (fst happy_var_3) 
+					 then Decl () s happy_var_5 ((BaseType () (fst3 happy_var_2) (snd happy_var_3) (snd3 happy_var_2) (trd3 happy_var_2)))
+			                 else Decl () s happy_var_5 ((ArrayT ()  (fst happy_var_3) (fst3 happy_var_2) (snd happy_var_3) (snd3 happy_var_2) (trd3 happy_var_2)))))}}}}+	) (\r -> happyReturn (happyIn38 r))++happyReduce_69 = happyMonadReduce 4# 33# happyReduction_69+happyReduction_69 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut43 happy_x_2 of { happy_var_2 -> +	case happyOut39 happy_x_3 of { happy_var_3 -> +	case happyOut40 happy_x_4 of { happy_var_4 -> +	( (getSrcSpan happy_var_1) >>= (\s -> return $ if isEmpty (fst happy_var_3) 
+					     then Decl () s happy_var_4 ((BaseType () (fst3 happy_var_2) (snd happy_var_3) (snd3 happy_var_2) (trd3 happy_var_2)))
+			     	             else Decl () s happy_var_4 ((ArrayT () (fst happy_var_3) (fst3 happy_var_2) (snd happy_var_3) (snd3 happy_var_2) (trd3 happy_var_2)))))}}}}+	) (\r -> happyReturn (happyIn38 r))++happyReduce_70 = happySpecReduce_1  33# happyReduction_70+happyReduction_70 happy_x_1+	 =  case happyOut72 happy_x_1 of { happy_var_1 -> +	happyIn38+		 (happy_var_1+	)}++happyReduce_71 = happySpecReduce_1  33# happyReduction_71+happyReduction_71 happy_x_1+	 =  case happyOut66 happy_x_1 of { happy_var_1 -> +	happyIn38+		 (happy_var_1+	)}++happyReduce_72 = happySpecReduce_3  34# happyReduction_72+happyReduction_72 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut39 happy_x_1 of { happy_var_1 -> +	case happyOut53 happy_x_3 of { happy_var_3 -> +	happyIn39+		 ((fst happy_var_1++fst happy_var_3,snd happy_var_1++snd happy_var_3)+	)}}++happyReduce_73 = happySpecReduce_0  34# happyReduction_73+happyReduction_73  =  happyIn39+		 (([],[])+	)++happyReduce_74 = happySpecReduce_3  35# happyReduction_74+happyReduction_74 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut41 happy_x_1 of { happy_var_1 -> +	case happyOut40 happy_x_3 of { happy_var_3 -> +	happyIn40+		 (happy_var_1:happy_var_3+	)}}++happyReduce_75 = happySpecReduce_1  35# happyReduction_75+happyReduction_75 happy_x_1+	 =  case happyOut41 happy_x_1 of { happy_var_1 -> +	happyIn40+		 ([happy_var_1]+	)}++happyReduce_76 = happySpecReduce_3  36# happyReduction_76+happyReduction_76 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut120 happy_x_1 of { happy_var_1 -> +	case happyOut127 happy_x_3 of { happy_var_3 -> +	happyIn41+		 ((happy_var_1, happy_var_3, Nothing)+	)}}++happyReduce_77 = happyMonadReduce 1# 36# happyReduction_77+happyReduction_77 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut120 happy_x_1 of { happy_var_1 -> +	( getSrcSpanNull >>= (\s -> return $ (happy_var_1, NullExpr () s, Nothing)))}+	) (\r -> happyReturn (happyIn41 r))++happyReduce_78 = happyMonadReduce 3# 36# happyReduction_78+happyReduction_78 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut120 happy_x_1 of { happy_var_1 -> +	case happyOut242 happy_x_3 of { happy_var_3 -> +	( getSrcSpanNull >>= (\s -> return $ (happy_var_1, NullExpr () s, Just $ read happy_var_3)))}}+	) (\r -> happyReturn (happyIn41 r))++happyReduce_79 = happySpecReduce_1  37# happyReduction_79+happyReduction_79 happy_x_1+	 =  case happyOut103 happy_x_1 of { happy_var_1 -> +	happyIn42+		 (happy_var_1+	)}++happyReduce_80 = happySpecReduce_1  38# happyReduction_80+happyReduction_80 happy_x_1+	 =  case happyOut44 happy_x_1 of { happy_var_1 -> +	happyIn43+		 ((fst3 happy_var_1, snd3 happy_var_1, trd3 happy_var_1)+	)}++happyReduce_81 = happyMonadReduce 2# 39# happyReduction_81+happyReduction_81 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut45 happy_x_2 of { happy_var_2 -> +	( getSrcSpanNull >>= (\s -> return $ (Integer (), happy_var_2, NullExpr () s)))}+	) (\r -> happyReturn (happyIn44 r))++happyReduce_82 = happyMonadReduce 3# 39# happyReduction_82+happyReduction_82 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut49 happy_x_3 of { happy_var_3 -> +	( getSrcSpanNull >>= (\s -> return $  (Integer (), happy_var_3, NullExpr () s)))}+	) (\r -> happyReturn (happyIn44 r))++happyReduce_83 = happyMonadReduce 1# 39# happyReduction_83+happyReduction_83 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $  (Integer (), NullExpr () s, NullExpr () s)))+	) (\r -> happyReturn (happyIn44 r))++happyReduce_84 = happyMonadReduce 2# 39# happyReduction_84+happyReduction_84 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut45 happy_x_2 of { happy_var_2 -> +	( getSrcSpanNull >>= (\s -> return $  (Real (), happy_var_2, NullExpr () s)))}+	) (\r -> happyReturn (happyIn44 r))++happyReduce_85 = happyMonadReduce 3# 39# happyReduction_85+happyReduction_85 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut49 happy_x_3 of { happy_var_3 -> +	( getSrcSpanNull >>= (\s -> return $  (Real (), happy_var_3, NullExpr () s)))}+	) (\r -> happyReturn (happyIn44 r))++happyReduce_86 = happyMonadReduce 1# 39# happyReduction_86+happyReduction_86 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $  (Real (), NullExpr () s, NullExpr () s)))+	) (\r -> happyReturn (happyIn44 r))++happyReduce_87 = happyMonadReduce 1# 39# happyReduction_87+happyReduction_87 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $  (SomeType (), NullExpr () s, NullExpr () s)))+	) (\r -> happyReturn (happyIn44 r))++happyReduce_88 = happyMonadReduce 2# 39# happyReduction_88+happyReduction_88 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut45 happy_x_2 of { happy_var_2 -> +	( getSrcSpanNull >>= (\s -> return $  (Complex (), happy_var_2, NullExpr () s)))}+	) (\r -> happyReturn (happyIn44 r))++happyReduce_89 = happyMonadReduce 3# 39# happyReduction_89+happyReduction_89 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut49 happy_x_3 of { happy_var_3 -> +	( getSrcSpanNull >>= (\s -> return $  (Complex (), happy_var_3, NullExpr () s)))}+	) (\r -> happyReturn (happyIn44 r))++happyReduce_90 = happyMonadReduce 1# 39# happyReduction_90+happyReduction_90 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $  (Complex (),NullExpr () s, NullExpr () s)))+	) (\r -> happyReturn (happyIn44 r))++happyReduce_91 = happySpecReduce_2  39# happyReduction_91+happyReduction_91 happy_x_2+	happy_x_1+	 =  case happyOut46 happy_x_2 of { happy_var_2 -> +	happyIn44+		 ((Character (), snd happy_var_2, fst happy_var_2)+	)}++happyReduce_92 = happyMonadReduce 3# 39# happyReduction_92+happyReduction_92 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut49 happy_x_3 of { happy_var_3 -> +	( getSrcSpanNull >>= (\s -> return $  (Character (), happy_var_3, NullExpr () s)))}+	) (\r -> happyReturn (happyIn44 r))++happyReduce_93 = happyMonadReduce 1# 39# happyReduction_93+happyReduction_93 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $  (Character (), NullExpr () s, NullExpr () s)))+	) (\r -> happyReturn (happyIn44 r))++happyReduce_94 = happyMonadReduce 2# 39# happyReduction_94+happyReduction_94 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut45 happy_x_2 of { happy_var_2 -> +	( getSrcSpanNull >>= (\s -> return $  (Logical (), happy_var_2, NullExpr () s)))}+	) (\r -> happyReturn (happyIn44 r))++happyReduce_95 = happyMonadReduce 3# 39# happyReduction_95+happyReduction_95 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut49 happy_x_3 of { happy_var_3 -> +	( getSrcSpanNull >>= (\s -> return $  (Logical (), happy_var_3, NullExpr () s)))}+	) (\r -> happyReturn (happyIn44 r))++happyReduce_96 = happyMonadReduce 1# 39# happyReduction_96+happyReduction_96 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $  (Logical (), NullExpr () s, NullExpr () s)))+	) (\r -> happyReturn (happyIn44 r))++happyReduce_97 = happyMonadReduce 4# 39# happyReduction_97+happyReduction_97 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut83 happy_x_3 of { happy_var_3 -> +	( getSrcSpanNull >>= (\s -> return $ (DerivedType () happy_var_3, NullExpr () s, NullExpr () s)))}+	) (\r -> happyReturn (happyIn44 r))++happyReduce_98 = happyReduce 5# 40# happyReduction_98+happyReduction_98 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut127 happy_x_4 of { happy_var_4 -> +	happyIn45+		 (happy_var_4+	) `HappyStk` happyRest}++happyReduce_99 = happySpecReduce_3  40# happyReduction_99+happyReduction_99 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut127 happy_x_2 of { happy_var_2 -> +	happyIn45+		 (happy_var_2+	)}++happyReduce_100 = happyMonadReduce 1# 41# happyReduction_100+happyReduction_100 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut47 happy_x_1 of { happy_var_1 -> +	( getSrcSpanNull >>= (\s -> return $ (happy_var_1,NullExpr () s)))}+	) (\r -> happyReturn (happyIn46 r))++happyReduce_101 = happyReduce 9# 41# happyReduction_101+happyReduction_101 (happy_x_9 `HappyStk`+	happy_x_8 `HappyStk`+	happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut48 happy_x_4 of { happy_var_4 -> +	case happyOut127 happy_x_8 of { happy_var_8 -> +	happyIn46+		 ((happy_var_4,happy_var_8)+	) `HappyStk` happyRest}}++happyReduce_102 = happyReduce 7# 41# happyReduction_102+happyReduction_102 (happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut48 happy_x_2 of { happy_var_2 -> +	case happyOut127 happy_x_6 of { happy_var_6 -> +	happyIn46+		 ((happy_var_2,happy_var_6)+	) `HappyStk` happyRest}}++happyReduce_103 = happyMonadReduce 5# 41# happyReduction_103+happyReduction_103 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut48 happy_x_2 of { happy_var_2 -> +	( getSrcSpanNull >>= (\s -> return $   (happy_var_2,NullExpr () s)))}+	) (\r -> happyReturn (happyIn46 r))++happyReduce_104 = happyReduce 9# 41# happyReduction_104+happyReduction_104 (happy_x_9 `HappyStk`+	happy_x_8 `HappyStk`+	happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut127 happy_x_4 of { happy_var_4 -> +	case happyOut48 happy_x_8 of { happy_var_8 -> +	happyIn46+		 ((happy_var_8,happy_var_4)+	) `HappyStk` happyRest}}++happyReduce_105 = happyMonadReduce 5# 41# happyReduction_105+happyReduction_105 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut127 happy_x_4 of { happy_var_4 -> +	( getSrcSpanNull >>= (\s -> return $   (NullExpr () s,happy_var_4)))}+	) (\r -> happyReturn (happyIn46 r))++happyReduce_106 = happyReduce 5# 42# happyReduction_106+happyReduction_106 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut48 happy_x_4 of { happy_var_4 -> +	happyIn47+		 (happy_var_4+	) `HappyStk` happyRest}++happyReduce_107 = happySpecReduce_3  42# happyReduction_107+happyReduction_107 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut48 happy_x_2 of { happy_var_2 -> +	happyIn47+		 (happy_var_2+	)}++happyReduce_108 = happySpecReduce_1  43# happyReduction_108+happyReduction_108 happy_x_1+	 =  case happyOut67 happy_x_1 of { happy_var_1 -> +	happyIn48+		 (happy_var_1+	)}++happyReduce_109 = happyMonadReduce 2# 43# happyReduction_109+happyReduction_109 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Con () s "*"))}+	) (\r -> happyReturn (happyIn48 r))++happyReduce_110 = happyMonadReduce 2# 44# happyReduction_110+happyReduction_110 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut242 happy_x_2 of { happy_var_2 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Con () s happy_var_2))}}+	) (\r -> happyReturn (happyIn49 r))++happyReduce_111 = happyReduce 4# 45# happyReduction_111+happyReduction_111 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut63 happy_x_3 of { happy_var_3 -> +	happyIn50+		 (happy_var_3+	) `HappyStk` happyRest}++happyReduce_112 = happySpecReduce_3  45# happyReduction_112+happyReduction_112 happy_x_3+	happy_x_2+	happy_x_1+	 =  happyIn50+		 ([]+	)++happyReduce_113 = happySpecReduce_2  46# happyReduction_113+happyReduction_113 happy_x_2+	happy_x_1+	 =  case happyOut63 happy_x_2 of { happy_var_2 -> +	happyIn51+		 (happy_var_2+	)}++happyReduce_114 = happySpecReduce_1  47# happyReduction_114+happyReduction_114 happy_x_1+	 =  happyIn52+		 (([],[Parameter ()])+	)++happyReduce_115 = happySpecReduce_1  47# happyReduction_115+happyReduction_115 happy_x_1+	 =  case happyOut54 happy_x_1 of { happy_var_1 -> +	happyIn52+		 (([],[happy_var_1])+	)}++happyReduce_116 = happySpecReduce_1  47# happyReduction_116+happyReduction_116 happy_x_1+	 =  happyIn52+		 (([],[Allocatable ()])+	)++happyReduce_117 = happySpecReduce_1  47# happyReduction_117+happyReduction_117 happy_x_1+	 =  happyIn52+		 (([],[External ()])+	)++happyReduce_118 = happyReduce 4# 47# happyReduction_118+happyReduction_118 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut68 happy_x_3 of { happy_var_3 -> +	happyIn52+		 (([],[Intent () happy_var_3])+	) `HappyStk` happyRest}++happyReduce_119 = happySpecReduce_1  47# happyReduction_119+happyReduction_119 happy_x_1+	 =  happyIn52+		 (([],[Intrinsic ()])+	)++happyReduce_120 = happySpecReduce_1  47# happyReduction_120+happyReduction_120 happy_x_1+	 =  happyIn52+		 (([],[Optional ()])+	)++happyReduce_121 = happySpecReduce_1  47# happyReduction_121+happyReduction_121 happy_x_1+	 =  happyIn52+		 (([],[Pointer ()])+	)++happyReduce_122 = happySpecReduce_1  47# happyReduction_122+happyReduction_122 happy_x_1+	 =  happyIn52+		 (([],[Save ()])+	)++happyReduce_123 = happySpecReduce_1  47# happyReduction_123+happyReduction_123 happy_x_1+	 =  happyIn52+		 (([],[Target ()])+	)++happyReduce_124 = happyReduce 4# 47# happyReduction_124+happyReduction_124 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut58 happy_x_3 of { happy_var_3 -> +	happyIn52+		 (([],[MeasureUnit () happy_var_3])+	) `HappyStk` happyRest}++happyReduce_125 = happySpecReduce_1  47# happyReduction_125+happyReduction_125 happy_x_1+	 =  happyIn52+		 (([],[Volatile ()])+	)++happyReduce_126 = happySpecReduce_1  48# happyReduction_126+happyReduction_126 happy_x_1+	 =  case happyOut50 happy_x_1 of { happy_var_1 -> +	happyIn53+		 (([],[Dimension () happy_var_1])+	)}++happyReduce_127 = happySpecReduce_1  48# happyReduction_127+happyReduction_127 happy_x_1+	 =  happyIn53+		 (([],[Parameter ()])+	)++happyReduce_128 = happySpecReduce_1  48# happyReduction_128+happyReduction_128 happy_x_1+	 =  case happyOut54 happy_x_1 of { happy_var_1 -> +	happyIn53+		 (([],[happy_var_1])+	)}++happyReduce_129 = happySpecReduce_1  48# happyReduction_129+happyReduction_129 happy_x_1+	 =  happyIn53+		 (([],[Allocatable ()])+	)++happyReduce_130 = happySpecReduce_1  48# happyReduction_130+happyReduction_130 happy_x_1+	 =  happyIn53+		 (([],[External ()])+	)++happyReduce_131 = happyReduce 4# 48# happyReduction_131+happyReduction_131 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut68 happy_x_3 of { happy_var_3 -> +	happyIn53+		 (([],[Intent () happy_var_3])+	) `HappyStk` happyRest}++happyReduce_132 = happySpecReduce_1  48# happyReduction_132+happyReduction_132 happy_x_1+	 =  happyIn53+		 (([],[Intrinsic ()])+	)++happyReduce_133 = happySpecReduce_1  48# happyReduction_133+happyReduction_133 happy_x_1+	 =  happyIn53+		 (([],[Optional ()])+	)++happyReduce_134 = happySpecReduce_1  48# happyReduction_134+happyReduction_134 happy_x_1+	 =  happyIn53+		 (([],[Pointer ()])+	)++happyReduce_135 = happySpecReduce_1  48# happyReduction_135+happyReduction_135 happy_x_1+	 =  happyIn53+		 (([],[Save ()])+	)++happyReduce_136 = happySpecReduce_1  48# happyReduction_136+happyReduction_136 happy_x_1+	 =  happyIn53+		 (([],[Target ()])+	)++happyReduce_137 = happyReduce 4# 48# happyReduction_137+happyReduction_137 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut58 happy_x_3 of { happy_var_3 -> +	happyIn53+		 (([],[MeasureUnit () happy_var_3])+	) `HappyStk` happyRest}++happyReduce_138 = happySpecReduce_1  48# happyReduction_138+happyReduction_138 happy_x_1+	 =  happyIn53+		 (([],[Volatile ()])+	)++happyReduce_139 = happySpecReduce_1  49# happyReduction_139+happyReduction_139 happy_x_1+	 =  happyIn54+		 (Public ()+	)++happyReduce_140 = happySpecReduce_1  49# happyReduction_140+happyReduction_140 happy_x_1+	 =  happyIn54+		 (Private ()+	)++happyReduce_141 = happyMonadReduce 3# 50# happyReduction_141+happyReduction_141 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut56 happy_x_3 of { happy_var_3 -> +	( getSrcSpanNull >>= (\s -> return $ MeasureUnitDef () s happy_var_3))}+	) (\r -> happyReturn (happyIn55 r))++happyReduce_142 = happySpecReduce_3  51# happyReduction_142+happyReduction_142 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut57 happy_x_1 of { happy_var_1 -> +	case happyOut56 happy_x_3 of { happy_var_3 -> +	happyIn56+		 (happy_var_1:happy_var_3+	)}}++happyReduce_143 = happySpecReduce_1  51# happyReduction_143+happyReduction_143 happy_x_1+	 =  case happyOut57 happy_x_1 of { happy_var_1 -> +	happyIn56+		 ([happy_var_1]+	)}++happyReduce_144 = happyMonadReduce 4# 52# happyReduction_144+happyReduction_144 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOutTok happy_x_2 of { (ID happy_var_2) -> +	case happyOut58 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return (happy_var_2, happy_var_4)))}}}+	) (\r -> happyReturn (happyIn57 r))++happyReduce_145 = happySpecReduce_3  53# happyReduction_145+happyReduction_145 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut59 happy_x_1 of { happy_var_1 -> +	case happyOut59 happy_x_3 of { happy_var_3 -> +	happyIn58+		 (UnitQuotient () happy_var_1 happy_var_3+	)}}++happyReduce_146 = happySpecReduce_1  53# happyReduction_146+happyReduction_146 happy_x_1+	 =  case happyOut59 happy_x_1 of { happy_var_1 -> +	happyIn58+		 (UnitProduct () happy_var_1+	)}++happyReduce_147 = happySpecReduce_0  53# happyReduction_147+happyReduction_147  =  happyIn58+		 (UnitNone ()+	)++happyReduce_148 = happySpecReduce_2  54# happyReduction_148+happyReduction_148 happy_x_2+	happy_x_1+	 =  case happyOut59 happy_x_1 of { happy_var_1 -> +	case happyOut60 happy_x_2 of { happy_var_2 -> +	happyIn59+		 (happy_var_1++happy_var_2+	)}}++happyReduce_149 = happySpecReduce_1  54# happyReduction_149+happyReduction_149 happy_x_1+	 =  case happyOut60 happy_x_1 of { happy_var_1 -> +	happyIn59+		 (happy_var_1+	)}++happyReduce_150 = happySpecReduce_3  55# happyReduction_150+happyReduction_150 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	case happyOut61 happy_x_3 of { happy_var_3 -> +	happyIn60+		 ([(happy_var_1, happy_var_3)]+	)}}++happyReduce_151 = happySpecReduce_1  55# happyReduction_151+happyReduction_151 happy_x_1+	 =  case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	happyIn60+		 ([(happy_var_1, NullFraction ())]+	)}++happyReduce_152 = happySpecReduce_1  55# happyReduction_152+happyReduction_152 happy_x_1+	 =  happyIn60+		 ([]+	)++happyReduce_153 = happyReduce 5# 56# happyReduction_153+happyReduction_153 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut62 happy_x_2 of { happy_var_2 -> +	case happyOut62 happy_x_4 of { happy_var_4 -> +	happyIn61+		 (FractionConst () happy_var_2 happy_var_4+	) `HappyStk` happyRest}}++happyReduce_154 = happySpecReduce_1  56# happyReduction_154+happyReduction_154 happy_x_1+	 =  case happyOut62 happy_x_1 of { happy_var_1 -> +	happyIn61+		 (IntegerConst () happy_var_1+	)}++happyReduce_155 = happySpecReduce_3  56# happyReduction_155+happyReduction_155 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut61 happy_x_2 of { happy_var_2 -> +	happyIn61+		 (happy_var_2+	)}++happyReduce_156 = happySpecReduce_2  57# happyReduction_156+happyReduction_156 happy_x_2+	happy_x_1+	 =  case happyOut242 happy_x_2 of { happy_var_2 -> +	happyIn62+		 ("-" ++ happy_var_2+	)}++happyReduce_157 = happySpecReduce_1  57# happyReduction_157+happyReduction_157 happy_x_1+	 =  case happyOut242 happy_x_1 of { happy_var_1 -> +	happyIn62+		 (happy_var_1+	)}++happyReduce_158 = happySpecReduce_1  58# happyReduction_158+happyReduction_158 happy_x_1+	 =  case happyOut64 happy_x_1 of { happy_var_1 -> +	happyIn63+		 (map expr2array_spec happy_var_1+	)}++happyReduce_159 = happySpecReduce_3  59# happyReduction_159+happyReduction_159 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut64 happy_x_1 of { happy_var_1 -> +	case happyOut65 happy_x_3 of { happy_var_3 -> +	happyIn64+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_160 = happySpecReduce_1  59# happyReduction_160+happyReduction_160 happy_x_1+	 =  case happyOut65 happy_x_1 of { happy_var_1 -> +	happyIn64+		 ([happy_var_1]+	)}++happyReduce_161 = happySpecReduce_1  60# happyReduction_161+happyReduction_161 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn65+		 (happy_var_1+	)}++happyReduce_162 = happySpecReduce_1  60# happyReduction_162+happyReduction_162 happy_x_1+	 =  case happyOut124 happy_x_1 of { happy_var_1 -> +	happyIn65+		 (happy_var_1+	)}++happyReduce_163 = happyMonadReduce 3# 61# happyReduction_163+happyReduction_163 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_2 of { happy_var_2 -> +	case happyOutTok happy_x_3 of { (StrConst happy_var_3) -> +	( getSrcSpan happy_var_2 >>= (\s -> return $ Include () (Con () s happy_var_3)))}}+	) (\r -> happyReturn (happyIn66 r))++happyReduce_164 = happySpecReduce_1  62# happyReduction_164+happyReduction_164 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn67+		 (happy_var_1+	)}++happyReduce_165 = happySpecReduce_1  63# happyReduction_165+happyReduction_165 happy_x_1+	 =  happyIn68+		 (In ()+	)++happyReduce_166 = happySpecReduce_1  63# happyReduction_166+happyReduction_166 happy_x_1+	 =  happyIn68+		 (Out ()+	)++happyReduce_167 = happySpecReduce_1  63# happyReduction_167+happyReduction_167 happy_x_1+	 =  happyIn68+		 (InOut ()+	)++happyReduce_168 = happySpecReduce_1  64# happyReduction_168+happyReduction_168 happy_x_1+	 =  case happyOut90 happy_x_1 of { happy_var_1 -> +	happyIn69+		 (happy_var_1+	)}++happyReduce_169 = happySpecReduce_1  64# happyReduction_169+happyReduction_169 happy_x_1+	 =  case happyOut89 happy_x_1 of { happy_var_1 -> +	happyIn69+		 (happy_var_1+	)}++happyReduce_170 = happySpecReduce_1  64# happyReduction_170+happyReduction_170 happy_x_1+	 =  case happyOut55 happy_x_1 of { happy_var_1 -> +	happyIn69+		 (happy_var_1+	)}++happyReduce_171 = happySpecReduce_1  64# happyReduction_171+happyReduction_171 happy_x_1+	 =  case happyOut71 happy_x_1 of { happy_var_1 -> +	happyIn69+		 (happy_var_1+	)}++happyReduce_172 = happySpecReduce_1  64# happyReduction_172+happyReduction_172 happy_x_1+	 =  case happyOut94 happy_x_1 of { happy_var_1 -> +	happyIn69+		 (DataDecl () happy_var_1+	)}++happyReduce_173 = happySpecReduce_1  64# happyReduction_173+happyReduction_173 happy_x_1+	 =  case happyOut167 happy_x_1 of { happy_var_1 -> +	happyIn69+		 (happy_var_1+	)}++happyReduce_174 = happySpecReduce_1  64# happyReduction_174+happyReduction_174 happy_x_1+	 =  case happyOut101 happy_x_1 of { happy_var_1 -> +	happyIn69+		 (happy_var_1+	)}++happyReduce_175 = happySpecReduce_1  64# happyReduction_175+happyReduction_175 happy_x_1+	 =  case happyOut108 happy_x_1 of { happy_var_1 -> +	happyIn69+		 (happy_var_1+	)}++happyReduce_176 = happySpecReduce_1  64# happyReduction_176+happyReduction_176 happy_x_1+	 =  case happyOut70 happy_x_1 of { happy_var_1 -> +	happyIn69+		 (happy_var_1+	)}++happyReduce_177 = happySpecReduce_1  65# happyReduction_177+happyReduction_177 happy_x_1+	 =  happyIn70+		 (AccessStmt () (Save ()) []+	)++happyReduce_178 = happyMonadReduce 6# 66# happyReduction_178+happyReduction_178 (happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut103 happy_x_4 of { happy_var_4 -> +	case happyOut10 happy_x_6 of { happy_var_6 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Common () s (Just happy_var_4) happy_var_6))}}}+	) (\r -> happyReturn (happyIn71 r))++happyReduce_179 = happyMonadReduce 3# 66# happyReduction_179+happyReduction_179 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut10 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Common () s Nothing happy_var_3))}}+	) (\r -> happyReturn (happyIn71 r))++happyReduce_180 = happyReduce 5# 67# happyReduction_180+happyReduction_180 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut73 happy_x_1 of { happy_var_1 -> +	case happyOut74 happy_x_3 of { happy_var_3 -> +	happyIn72+		 (Interface () happy_var_1 happy_var_3+	) `HappyStk` happyRest}}++happyReduce_181 = happySpecReduce_2  68# happyReduction_181+happyReduction_181 happy_x_2+	happy_x_1+	 =  case happyOut93 happy_x_2 of { happy_var_2 -> +	happyIn73+		 (Just happy_var_2+	)}++happyReduce_182 = happySpecReduce_1  68# happyReduction_182+happyReduction_182 happy_x_1+	 =  happyIn73+		 (Nothing+	)++happyReduce_183 = happySpecReduce_2  69# happyReduction_183+happyReduction_183 happy_x_2+	happy_x_1+	 =  case happyOut74 happy_x_1 of { happy_var_1 -> +	case happyOut75 happy_x_2 of { happy_var_2 -> +	happyIn74+		 (happy_var_1++[happy_var_2]+	)}}++happyReduce_184 = happySpecReduce_1  69# happyReduction_184+happyReduction_184 happy_x_1+	 =  case happyOut75 happy_x_1 of { happy_var_1 -> +	happyIn74+		 ([happy_var_1]+	)}++happyReduce_185 = happySpecReduce_1  70# happyReduction_185+happyReduction_185 happy_x_1+	 =  case happyOut77 happy_x_1 of { happy_var_1 -> +	happyIn75+		 (happy_var_1+	)}++happyReduce_186 = happySpecReduce_1  70# happyReduction_186+happyReduction_186 happy_x_1+	 =  case happyOut78 happy_x_1 of { happy_var_1 -> +	happyIn75+		 (happy_var_1+	)}++happyReduce_187 = happySpecReduce_3  71# happyReduction_187+happyReduction_187 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut93 happy_x_3 of { happy_var_3 -> +	happyIn76+		 (Just happy_var_3+	)}++happyReduce_188 = happySpecReduce_2  71# happyReduction_188+happyReduction_188 happy_x_2+	happy_x_1+	 =  happyIn76+		 (Nothing+	)++happyReduce_189 = happyMonadReduce 5# 72# happyReduction_189+happyReduction_189 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut112 happy_x_1 of { happy_var_1 -> +	case happyOut31 happy_x_2 of { happy_var_2 -> +	case happyOut16 happy_x_3 of { happy_var_3 -> +	case happyOut35 happy_x_4 of { happy_var_4 -> +	case happyOut20 happy_x_5 of { happy_var_5 -> +	( do { name <- cmpNames (fst4 happy_var_1) happy_var_5 "interface declaration";
+	        return (FunctionInterface ()  name (snd4 happy_var_1) happy_var_2 happy_var_3 happy_var_4); })}}}}}+	) (\r -> happyReturn (happyIn77 r))++happyReduce_190 = happyMonadReduce 2# 72# happyReduction_190+happyReduction_190 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut112 happy_x_1 of { happy_var_1 -> +	case happyOut20 happy_x_2 of { happy_var_2 -> +	( do { name <- cmpNames (fst4 happy_var_1) happy_var_2 "interface declaration";
+	        s <- getSrcSpanNull;
+	        return (FunctionInterface () name (snd4 happy_var_1) (UseNil ()) (ImplicitNull ()) (NullDecl () s)); })}}+	) (\r -> happyReturn (happyIn77 r))++happyReduce_191 = happyMonadReduce 5# 72# happyReduction_191+happyReduction_191 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut111 happy_x_1 of { happy_var_1 -> +	case happyOut31 happy_x_2 of { happy_var_2 -> +	case happyOut16 happy_x_3 of { happy_var_3 -> +	case happyOut35 happy_x_4 of { happy_var_4 -> +	case happyOut19 happy_x_5 of { happy_var_5 -> +	( do { name <- cmpNames (fst3 happy_var_1) happy_var_5 "interface declaration";
+                return (SubroutineInterface () name (snd3 happy_var_1) happy_var_2 happy_var_3 happy_var_4); })}}}}}+	) (\r -> happyReturn (happyIn77 r))++happyReduce_192 = happyMonadReduce 2# 72# happyReduction_192+happyReduction_192 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut111 happy_x_1 of { happy_var_1 -> +	case happyOut19 happy_x_2 of { happy_var_2 -> +	( do { name <- cmpNames (fst3 happy_var_1) happy_var_2 "interface declaration";
+	        s <- getSrcSpanNull;
+	        return (SubroutineInterface () name (snd3 happy_var_1) (UseNil ()) (ImplicitNull ()) (NullDecl () s)); })}}+	) (\r -> happyReturn (happyIn77 r))++happyReduce_193 = happySpecReduce_3  73# happyReduction_193+happyReduction_193 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut79 happy_x_3 of { happy_var_3 -> +	happyIn78+		 (ModuleProcedure () happy_var_3+	)}++happyReduce_194 = happySpecReduce_3  74# happyReduction_194+happyReduction_194 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut79 happy_x_1 of { happy_var_1 -> +	case happyOut113 happy_x_3 of { happy_var_3 -> +	happyIn79+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_195 = happySpecReduce_1  74# happyReduction_195+happyReduction_195 happy_x_1+	 =  case happyOut113 happy_x_1 of { happy_var_1 -> +	happyIn79+		 ([happy_var_1]+	)}++happyReduce_196 = happyMonadReduce 5# 75# happyReduction_196+happyReduction_196 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut81 happy_x_2 of { happy_var_2 -> +	case happyOut84 happy_x_3 of { happy_var_3 -> +	case happyOut85 happy_x_4 of { happy_var_4 -> +	case happyOut82 happy_x_5 of { happy_var_5 -> +	( do { sp <- getSrcSpan happy_var_1;
+	  name <- cmpNames (fst happy_var_2) happy_var_5 "derived type name";
+          return (DerivedTypeDef () sp name (snd happy_var_2) happy_var_3 happy_var_4);  })}}}}}+	) (\r -> happyReturn (happyIn80 r))++happyReduce_197 = happyReduce 5# 76# happyReduction_197+happyReduction_197 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut54 happy_x_3 of { happy_var_3 -> +	case happyOut83 happy_x_5 of { happy_var_5 -> +	happyIn81+		 ((happy_var_5,[happy_var_3])+	) `HappyStk` happyRest}}++happyReduce_198 = happySpecReduce_3  76# happyReduction_198+happyReduction_198 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut83 happy_x_3 of { happy_var_3 -> +	happyIn81+		 ((happy_var_3,[])+	)}++happyReduce_199 = happySpecReduce_2  76# happyReduction_199+happyReduction_199 happy_x_2+	happy_x_1+	 =  case happyOut83 happy_x_2 of { happy_var_2 -> +	happyIn81+		 ((happy_var_2,[])+	)}++happyReduce_200 = happySpecReduce_2  77# happyReduction_200+happyReduction_200 happy_x_2+	happy_x_1+	 =  happyIn82+		 (""+	)++happyReduce_201 = happySpecReduce_3  77# happyReduction_201+happyReduction_201 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut103 happy_x_3 of { happy_var_3 -> +	happyIn82+		 (happy_var_3+	)}++happyReduce_202 = happySpecReduce_1  78# happyReduction_202+happyReduction_202 happy_x_1+	 =  case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	happyIn83+		 (SubName () happy_var_1+	)}++happyReduce_203 = happySpecReduce_2  79# happyReduction_203+happyReduction_203 happy_x_2+	happy_x_1+	 =  happyIn84+		 ([Private (), Sequence ()]+	)++happyReduce_204 = happySpecReduce_2  79# happyReduction_204+happyReduction_204 happy_x_2+	happy_x_1+	 =  happyIn84+		 ([Sequence (), Private ()]+	)++happyReduce_205 = happySpecReduce_1  79# happyReduction_205+happyReduction_205 happy_x_1+	 =  happyIn84+		 ([Private ()]+	)++happyReduce_206 = happySpecReduce_1  79# happyReduction_206+happyReduction_206 happy_x_1+	 =  happyIn84+		 ([Sequence ()]+	)++happyReduce_207 = happySpecReduce_0  79# happyReduction_207+happyReduction_207  =  happyIn84+		 ([]+	)++happyReduce_208 = happySpecReduce_2  80# happyReduction_208+happyReduction_208 happy_x_2+	happy_x_1+	 =  case happyOut85 happy_x_1 of { happy_var_1 -> +	case happyOut86 happy_x_2 of { happy_var_2 -> +	happyIn85+		 (happy_var_1++[happy_var_2]+	)}}++happyReduce_209 = happySpecReduce_1  80# happyReduction_209+happyReduction_209 happy_x_1+	 =  case happyOut86 happy_x_1 of { happy_var_1 -> +	happyIn85+		 ([happy_var_1]+	)}++happyReduce_210 = happyMonadReduce 5# 81# happyReduction_210+happyReduction_210 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut43 happy_x_2 of { happy_var_2 -> +	case happyOut87 happy_x_3 of { happy_var_3 -> +	case happyOut40 happy_x_5 of { happy_var_5 -> +	( (getSrcSpan happy_var_1) >>= (\s -> return $ 
+		     if isEmpty (fst happy_var_3) 
+		     then Decl () s happy_var_5 ((BaseType () (fst3 happy_var_2) (snd happy_var_3) (snd3 happy_var_2) (trd3 happy_var_2)))
+		     else Decl () s happy_var_5 ((ArrayT () (fst happy_var_3) (fst3 happy_var_2) (snd happy_var_3) (snd3 happy_var_2) (trd3 happy_var_2)))))}}}}+	) (\r -> happyReturn (happyIn86 r))++happyReduce_211 = happySpecReduce_3  82# happyReduction_211+happyReduction_211 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut87 happy_x_1 of { happy_var_1 -> +	case happyOut88 happy_x_3 of { happy_var_3 -> +	happyIn87+		 ((fst happy_var_1++fst happy_var_3,snd happy_var_1++snd happy_var_3)+	)}}++happyReduce_212 = happySpecReduce_0  82# happyReduction_212+happyReduction_212  =  happyIn87+		 (([],[])+	)++happyReduce_213 = happySpecReduce_1  83# happyReduction_213+happyReduction_213 happy_x_1+	 =  happyIn88+		 (([],[Pointer ()])+	)++happyReduce_214 = happySpecReduce_1  83# happyReduction_214+happyReduction_214 happy_x_1+	 =  case happyOut50 happy_x_1 of { happy_var_1 -> +	happyIn88+		 ((happy_var_1,[])+	)}++happyReduce_215 = happyReduce 4# 84# happyReduction_215+happyReduction_215 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut52 happy_x_1 of { happy_var_1 -> +	case happyOut40 happy_x_3 of { happy_var_3 -> +	happyIn89+		 (AttrStmt () (head $ snd happy_var_1) (happy_var_3 ++ (map (\(x, y) -> (x, y, Nothing)) (fst happy_var_1)))+	) `HappyStk` happyRest}}++happyReduce_216 = happySpecReduce_1  84# happyReduction_216+happyReduction_216 happy_x_1+	 =  case happyOut52 happy_x_1 of { happy_var_1 -> +	happyIn89+		 (AttrStmt () (head $ snd happy_var_1) ((map (\(x, y) -> (x, y, Nothing)) (fst happy_var_1)))+	)}++happyReduce_217 = happySpecReduce_1  84# happyReduction_217+happyReduction_217 happy_x_1+	 =  case happyOut51 happy_x_1 of { happy_var_1 -> +	happyIn89+		 (AttrStmt () (Dimension () happy_var_1) []+	)}++happyReduce_218 = happySpecReduce_3  85# happyReduction_218+happyReduction_218 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut54 happy_x_1 of { happy_var_1 -> +	case happyOut91 happy_x_3 of { happy_var_3 -> +	happyIn90+		 (AccessStmt () happy_var_1 happy_var_3+	)}}++happyReduce_219 = happySpecReduce_2  85# happyReduction_219+happyReduction_219 happy_x_2+	happy_x_1+	 =  case happyOut54 happy_x_1 of { happy_var_1 -> +	case happyOut91 happy_x_2 of { happy_var_2 -> +	happyIn90+		 (AccessStmt () happy_var_1 happy_var_2+	)}}++happyReduce_220 = happySpecReduce_1  85# happyReduction_220+happyReduction_220 happy_x_1+	 =  case happyOut54 happy_x_1 of { happy_var_1 -> +	happyIn90+		 (AccessStmt () happy_var_1 []+	)}++happyReduce_221 = happySpecReduce_3  86# happyReduction_221+happyReduction_221 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut91 happy_x_1 of { happy_var_1 -> +	case happyOut92 happy_x_3 of { happy_var_3 -> +	happyIn91+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_222 = happySpecReduce_1  86# happyReduction_222+happyReduction_222 happy_x_1+	 =  case happyOut92 happy_x_1 of { happy_var_1 -> +	happyIn91+		 ([happy_var_1]+	)}++happyReduce_223 = happySpecReduce_1  87# happyReduction_223+happyReduction_223 happy_x_1+	 =  case happyOut93 happy_x_1 of { happy_var_1 -> +	happyIn92+		 (happy_var_1+	)}++happyReduce_224 = happyMonadReduce 2# 88# happyReduction_224+happyReduction_224 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOutTok happy_x_2 of { (ID happy_var_2) -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ GName () (Var () s [(VarName () happy_var_2,[])])))}}+	) (\r -> happyReturn (happyIn93 r))++happyReduce_225 = happyReduce 4# 88# happyReduction_225+happyReduction_225 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut106 happy_x_3 of { happy_var_3 -> +	happyIn93+		 (GOper () happy_var_3+	) `HappyStk` happyRest}++happyReduce_226 = happyReduce 4# 88# happyReduction_226+happyReduction_226 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = happyIn93+		 (GAssg ()+	) `HappyStk` happyRest++happyReduce_227 = happySpecReduce_2  89# happyReduction_227+happyReduction_227 happy_x_2+	happy_x_1+	 =  case happyOut95 happy_x_2 of { happy_var_2 -> +	happyIn94+		 (Data () happy_var_2+	)}++happyReduce_228 = happySpecReduce_3  90# happyReduction_228+happyReduction_228 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut95 happy_x_1 of { happy_var_1 -> +	case happyOut96 happy_x_3 of { happy_var_3 -> +	happyIn95+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_229 = happySpecReduce_1  90# happyReduction_229+happyReduction_229 happy_x_1+	 =  case happyOut96 happy_x_1 of { happy_var_1 -> +	happyIn95+		 ([happy_var_1]+	)}++happyReduce_230 = happyReduce 4# 91# happyReduction_230+happyReduction_230 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut97 happy_x_1 of { happy_var_1 -> +	case happyOut99 happy_x_3 of { happy_var_3 -> +	happyIn96+		 ((happy_var_1,happy_var_3)+	) `HappyStk` happyRest}}++happyReduce_231 = happySpecReduce_3  92# happyReduction_231+happyReduction_231 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut97 happy_x_1 of { happy_var_1 -> +	case happyOut98 happy_x_3 of { happy_var_3 -> +	happyIn97+		 (ESeq ()  (spanTrans happy_var_1 happy_var_3) happy_var_1 happy_var_3+	)}}++happyReduce_232 = happySpecReduce_1  92# happyReduction_232+happyReduction_232 happy_x_1+	 =  case happyOut98 happy_x_1 of { happy_var_1 -> +	happyIn97+		 (happy_var_1+	)}++happyReduce_233 = happySpecReduce_1  93# happyReduction_233+happyReduction_233 happy_x_1+	 =  case happyOut120 happy_x_1 of { happy_var_1 -> +	happyIn98+		 (happy_var_1+	)}++happyReduce_234 = happySpecReduce_3  94# happyReduction_234+happyReduction_234 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut99 happy_x_1 of { happy_var_1 -> +	case happyOut100 happy_x_3 of { happy_var_3 -> +	happyIn99+		 (ESeq () (spanTrans happy_var_1 happy_var_3) happy_var_1 happy_var_3+	)}}++happyReduce_235 = happySpecReduce_1  94# happyReduction_235+happyReduction_235 happy_x_1+	 =  case happyOut100 happy_x_1 of { happy_var_1 -> +	happyIn99+		 (happy_var_1+	)}++happyReduce_236 = happySpecReduce_1  95# happyReduction_236+happyReduction_236 happy_x_1+	 =  case happyOut138 happy_x_1 of { happy_var_1 -> +	happyIn100+		 (happy_var_1+	)}++happyReduce_237 = happySpecReduce_3  96# happyReduction_237+happyReduction_237 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut102 happy_x_3 of { happy_var_3 -> +	happyIn101+		 (ExternalStmt () happy_var_3+	)}++happyReduce_238 = happySpecReduce_2  96# happyReduction_238+happyReduction_238 happy_x_2+	happy_x_1+	 =  case happyOut102 happy_x_2 of { happy_var_2 -> +	happyIn101+		 (ExternalStmt () happy_var_2+	)}++happyReduce_239 = happySpecReduce_3  97# happyReduction_239+happyReduction_239 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut102 happy_x_1 of { happy_var_1 -> +	case happyOut103 happy_x_3 of { happy_var_3 -> +	happyIn102+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_240 = happySpecReduce_1  97# happyReduction_240+happyReduction_240 happy_x_1+	 =  case happyOut103 happy_x_1 of { happy_var_1 -> +	happyIn102+		 ([happy_var_1]+	)}++happyReduce_241 = happySpecReduce_1  98# happyReduction_241+happyReduction_241 happy_x_1+	 =  case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	happyIn103+		 (happy_var_1+	)}++happyReduce_242 = happySpecReduce_1  98# happyReduction_242+happyReduction_242 happy_x_1+	 =  case happyOut104 happy_x_1 of { happy_var_1 -> +	happyIn103+		 (happy_var_1+	)}++happyReduce_243 = happySpecReduce_1  99# happyReduction_243+happyReduction_243 happy_x_1+	 =  happyIn104+		 ("common"+	)++happyReduce_244 = happySpecReduce_1  99# happyReduction_244+happyReduction_244 happy_x_1+	 =  happyIn104+		 ("allocate "+	)++happyReduce_245 = happySpecReduce_1  99# happyReduction_245+happyReduction_245 happy_x_1+	 =  case happyOut105 happy_x_1 of { happy_var_1 -> +	happyIn104+		 (happy_var_1+	)}++happyReduce_246 = happySpecReduce_1  100# happyReduction_246+happyReduction_246 happy_x_1+	 =  happyIn105+		 ("in"+	)++happyReduce_247 = happySpecReduce_1  100# happyReduction_247+happyReduction_247 happy_x_1+	 =  happyIn105+		 ("out"+	)++happyReduce_248 = happySpecReduce_1  100# happyReduction_248+happyReduction_248 happy_x_1+	 =  happyIn105+		 ("len"+	)++happyReduce_249 = happySpecReduce_1  101# happyReduction_249+happyReduction_249 happy_x_1+	 =  case happyOut107 happy_x_1 of { happy_var_1 -> +	happyIn106+		 (happy_var_1+	)}++happyReduce_250 = happySpecReduce_1  102# happyReduction_250+happyReduction_250 happy_x_1+	 =  happyIn107+		 (Power ()+	)++happyReduce_251 = happySpecReduce_1  102# happyReduction_251+happyReduction_251 happy_x_1+	 =  happyIn107+		 (Mul ()+	)++happyReduce_252 = happySpecReduce_1  102# happyReduction_252+happyReduction_252 happy_x_1+	 =  happyIn107+		 (Plus ()+	)++happyReduce_253 = happySpecReduce_1  102# happyReduction_253+happyReduction_253 happy_x_1+	 =  happyIn107+		 (Concat ()+	)++happyReduce_254 = happySpecReduce_1  102# happyReduction_254+happyReduction_254 happy_x_1+	 =  case happyOut149 happy_x_1 of { happy_var_1 -> +	happyIn107+		 (happy_var_1+	)}++happyReduce_255 = happySpecReduce_1  102# happyReduction_255+happyReduction_255 happy_x_1+	 =  happyIn107+		 (And ()+	)++happyReduce_256 = happySpecReduce_1  102# happyReduction_256+happyReduction_256 happy_x_1+	 =  happyIn107+		 (Or ()+	)++happyReduce_257 = happySpecReduce_2  103# happyReduction_257+happyReduction_257 happy_x_2+	happy_x_1+	 =  case happyOut109 happy_x_2 of { happy_var_2 -> +	happyIn108+		 (Namelist () happy_var_2+	)}++happyReduce_258 = happyReduce 6# 104# happyReduction_258+happyReduction_258 (happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut109 happy_x_1 of { happy_var_1 -> +	case happyOut144 happy_x_4 of { happy_var_4 -> +	case happyOut110 happy_x_6 of { happy_var_6 -> +	happyIn109+		 (happy_var_1++[(happy_var_4,happy_var_6)]+	) `HappyStk` happyRest}}}++happyReduce_259 = happyReduce 4# 104# happyReduction_259+happyReduction_259 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut144 happy_x_2 of { happy_var_2 -> +	case happyOut110 happy_x_4 of { happy_var_4 -> +	happyIn109+		 ([(happy_var_2,happy_var_4)]+	) `HappyStk` happyRest}}++happyReduce_260 = happySpecReduce_3  105# happyReduction_260+happyReduction_260 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut110 happy_x_1 of { happy_var_1 -> +	case happyOut144 happy_x_3 of { happy_var_3 -> +	happyIn110+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_261 = happySpecReduce_1  105# happyReduction_261+happyReduction_261 happy_x_1+	 =  case happyOut144 happy_x_1 of { happy_var_1 -> +	happyIn110+		 ([happy_var_1]+	)}++happyReduce_262 = happyReduce 4# 106# happyReduction_262+happyReduction_262 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut113 happy_x_2 of { happy_var_2 -> +	case happyOut115 happy_x_3 of { happy_var_3 -> +	happyIn111+		 ((happy_var_2,happy_var_3,Nothing)+	) `HappyStk` happyRest}}++happyReduce_263 = happyMonadReduce 4# 106# happyReduction_263+happyReduction_263 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut113 happy_x_2 of { happy_var_2 -> +	case happyOut254 happy_x_3 of { happy_var_3 -> +	( (getSrcSpan happy_var_3) >>= (\s -> return $ (happy_var_2,Arg () (NullArg ()) s,Nothing)))}}+	) (\r -> happyReturn (happyIn111 r))++happyReduce_264 = happyReduce 5# 106# happyReduction_264+happyReduction_264 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut114 happy_x_1 of { happy_var_1 -> +	case happyOut113 happy_x_3 of { happy_var_3 -> +	case happyOut115 happy_x_4 of { happy_var_4 -> +	happyIn111+		 ((happy_var_3,happy_var_4,Just (fst3 happy_var_1))+	) `HappyStk` happyRest}}}++happyReduce_265 = happyReduce 9# 107# happyReduction_265+happyReduction_265 (happy_x_9 `HappyStk`+	happy_x_8 `HappyStk`+	happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut114 happy_x_1 of { happy_var_1 -> +	case happyOut113 happy_x_3 of { happy_var_3 -> +	case happyOut115 happy_x_4 of { happy_var_4 -> +	case happyOut103 happy_x_7 of { happy_var_7 -> +	happyIn112+		 ((happy_var_3,happy_var_4,Just (fst3 happy_var_1),Just (VarName () happy_var_7))+	) `HappyStk` happyRest}}}}++happyReduce_266 = happyReduce 5# 107# happyReduction_266+happyReduction_266 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut114 happy_x_1 of { happy_var_1 -> +	case happyOut113 happy_x_3 of { happy_var_3 -> +	case happyOut115 happy_x_4 of { happy_var_4 -> +	happyIn112+		 ((happy_var_3,happy_var_4,Just (fst3 happy_var_1),Nothing)+	) `HappyStk` happyRest}}}++happyReduce_267 = happyReduce 8# 107# happyReduction_267+happyReduction_267 (happy_x_8 `HappyStk`+	happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut113 happy_x_2 of { happy_var_2 -> +	case happyOut115 happy_x_3 of { happy_var_3 -> +	case happyOut103 happy_x_6 of { happy_var_6 -> +	happyIn112+		 ((happy_var_2,happy_var_3,Nothing,Just (VarName () happy_var_6))+	) `HappyStk` happyRest}}}++happyReduce_268 = happyReduce 4# 107# happyReduction_268+happyReduction_268 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut113 happy_x_2 of { happy_var_2 -> +	case happyOut115 happy_x_3 of { happy_var_3 -> +	happyIn112+		 ((happy_var_2,happy_var_3,Nothing,Nothing)+	) `HappyStk` happyRest}}++happyReduce_269 = happySpecReduce_1  108# happyReduction_269+happyReduction_269 happy_x_1+	 =  case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	happyIn113+		 (SubName () happy_var_1+	)}++happyReduce_270 = happySpecReduce_1  108# happyReduction_270+happyReduction_270 happy_x_1+	 =  case happyOut104 happy_x_1 of { happy_var_1 -> +	happyIn113+		 (SubName () happy_var_1+	)}++happyReduce_271 = happySpecReduce_1  109# happyReduction_271+happyReduction_271 happy_x_1+	 =  case happyOut44 happy_x_1 of { happy_var_1 -> +	happyIn114+		 (happy_var_1+	)}++happyReduce_272 = happyMonadReduce 1# 109# happyReduction_272+happyReduction_272 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $ (Recursive (), NullExpr () s, NullExpr () s)))+	) (\r -> happyReturn (happyIn114 r))++happyReduce_273 = happyMonadReduce 1# 109# happyReduction_273+happyReduction_273 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $ (Pure (), NullExpr () s, NullExpr () s)))+	) (\r -> happyReturn (happyIn114 r))++happyReduce_274 = happyMonadReduce 1# 109# happyReduction_274+happyReduction_274 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $ (Elemental (), NullExpr () s, NullExpr () s)))+	) (\r -> happyReturn (happyIn114 r))++happyReduce_275 = happyReduce 4# 110# happyReduction_275+happyReduction_275 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut116 happy_x_2 of { happy_var_2 -> +	case happyOut254 happy_x_3 of { happy_var_3 -> +	happyIn115+		 ((happy_var_2 (spanExtR (happy_var_3, happy_var_3) 1))+	) `HappyStk` happyRest}}++happyReduce_276 = happySpecReduce_1  111# happyReduction_276+happyReduction_276 happy_x_1+	 =  case happyOut117 happy_x_1 of { happy_var_1 -> +	happyIn116+		 (Arg () happy_var_1+	)}++happyReduce_277 = happySpecReduce_0  111# happyReduction_277+happyReduction_277  =  happyIn116+		 (Arg () (NullArg ())+	)++happyReduce_278 = happySpecReduce_3  112# happyReduction_278+happyReduction_278 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut117 happy_x_1 of { happy_var_1 -> +	case happyOut118 happy_x_3 of { happy_var_3 -> +	happyIn117+		 (ASeq () happy_var_1 happy_var_3+	)}}++happyReduce_279 = happySpecReduce_1  112# happyReduction_279+happyReduction_279 happy_x_1+	 =  case happyOut118 happy_x_1 of { happy_var_1 -> +	happyIn117+		 (happy_var_1+	)}++happyReduce_280 = happySpecReduce_1  113# happyReduction_280+happyReduction_280 happy_x_1+	 =  case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	happyIn118+		 (ArgName () happy_var_1+	)}++happyReduce_281 = happySpecReduce_1  113# happyReduction_281+happyReduction_281 happy_x_1+	 =  happyIn118+		 (ArgName () "*"+	)++happyReduce_282 = happySpecReduce_3  114# happyReduction_282+happyReduction_282 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut120 happy_x_1 of { happy_var_1 -> +	case happyOut127 happy_x_3 of { happy_var_3 -> +	happyIn119+		 (Assg () (spanTrans happy_var_1 happy_var_3) happy_var_1 happy_var_3+	)}}++happyReduce_283 = happyMonadReduce 7# 114# happyReduction_283+happyReduction_283 (happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOutTok happy_x_2 of { (ID happy_var_2) -> +	case happyOut125 happy_x_4 of { happy_var_4 -> +	case happyOut127 happy_x_7 of { happy_var_7 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Assg () s (Var () s [(VarName () happy_var_2, happy_var_4)]) happy_var_7))}}}}+	) (\r -> happyReturn (happyIn119 r))++happyReduce_284 = happyMonadReduce 2# 115# happyReduction_284+happyReduction_284 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut121 happy_x_2 of { happy_var_2 -> +	( (getSrcSpan happy_var_1) >>= (\s -> return $ Var () s happy_var_2))}}+	) (\r -> happyReturn (happyIn120 r))++happyReduce_285 = happySpecReduce_3  116# happyReduction_285+happyReduction_285 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut121 happy_x_1 of { happy_var_1 -> +	case happyOut122 happy_x_3 of { happy_var_3 -> +	happyIn121+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_286 = happySpecReduce_1  116# happyReduction_286+happyReduction_286 happy_x_1+	 =  case happyOut122 happy_x_1 of { happy_var_1 -> +	happyIn121+		 ([happy_var_1]+	)}++happyReduce_287 = happyReduce 4# 117# happyReduction_287+happyReduction_287 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	case happyOut125 happy_x_3 of { happy_var_3 -> +	happyIn122+		 ((VarName () happy_var_1, happy_var_3)+	) `HappyStk` happyRest}}++happyReduce_288 = happyMonadReduce 3# 117# happyReduction_288+happyReduction_288 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	( getSrcSpanNull >>= (\s -> return $ (VarName () happy_var_1, [NullExpr () s])))}+	) (\r -> happyReturn (happyIn122 r))++happyReduce_289 = happySpecReduce_1  117# happyReduction_289+happyReduction_289 happy_x_1+	 =  case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	happyIn122+		 ((VarName () happy_var_1, [])+	)}++happyReduce_290 = happyMonadReduce 1# 117# happyReduction_290+happyReduction_290 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut105 happy_x_1 of { happy_var_1 -> +	( getSrcSpanNull >>= (\s -> return $ (VarName () happy_var_1, [NullExpr () s])))}+	) (\r -> happyReturn (happyIn122 r))++happyReduce_291 = happySpecReduce_1  118# happyReduction_291+happyReduction_291 happy_x_1+	 =  case happyOut150 happy_x_1 of { happy_var_1 -> +	happyIn123+		 (happy_var_1+	)}++happyReduce_292 = happySpecReduce_1  118# happyReduction_292+happyReduction_292 happy_x_1+	 =  case happyOut124 happy_x_1 of { happy_var_1 -> +	happyIn123+		 (happy_var_1+	)}++happyReduce_293 = happySpecReduce_3  119# happyReduction_293+happyReduction_293 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	case happyOut127 happy_x_3 of { happy_var_3 -> +	happyIn124+		 (Bound () (spanTrans happy_var_1 happy_var_3) happy_var_1 happy_var_3+	)}}++happyReduce_294 = happyMonadReduce 1# 119# happyReduction_294+happyReduction_294 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $ Bound () s (NullExpr () s) (NullExpr () s)))+	) (\r -> happyReturn (happyIn124 r))++happyReduce_295 = happyMonadReduce 2# 119# happyReduction_295+happyReduction_295 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut127 happy_x_1 of { happy_var_1 -> +	( getSrcSpanNull >>= (\s' -> return $ Bound () (spanTrans' happy_var_1 s') happy_var_1 (NullExpr () s')))}+	) (\r -> happyReturn (happyIn124 r))++happyReduce_296 = happyMonadReduce 3# 119# happyReduction_296+happyReduction_296 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut127 happy_x_3 of { happy_var_3 -> +	( (getSrcSpan happy_var_1) >>= (\s@(_, l) -> return $ Bound () s (NullExpr () (l, l)) happy_var_3))}}+	) (\r -> happyReturn (happyIn124 r))++happyReduce_297 = happySpecReduce_3  120# happyReduction_297+happyReduction_297 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut125 happy_x_1 of { happy_var_1 -> +	case happyOut126 happy_x_3 of { happy_var_3 -> +	happyIn125+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_298 = happySpecReduce_1  120# happyReduction_298+happyReduction_298 happy_x_1+	 =  case happyOut126 happy_x_1 of { happy_var_1 -> +	happyIn125+		 ([happy_var_1]+	)}++happyReduce_299 = happySpecReduce_1  121# happyReduction_299+happyReduction_299 happy_x_1+	 =  case happyOut123 happy_x_1 of { happy_var_1 -> +	happyIn126+		 (happy_var_1+	)}++happyReduce_300 = happyMonadReduce 4# 121# happyReduction_300+happyReduction_300 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOutTok happy_x_2 of { (ID happy_var_2) -> +	case happyOut127 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ AssgExpr () s happy_var_2 happy_var_4))}}}+	) (\r -> happyReturn (happyIn126 r))++happyReduce_301 = happySpecReduce_1  122# happyReduction_301+happyReduction_301 happy_x_1+	 =  case happyOut128 happy_x_1 of { happy_var_1 -> +	happyIn127+		 (happy_var_1+	)}++happyReduce_302 = happySpecReduce_1  123# happyReduction_302+happyReduction_302 happy_x_1+	 =  case happyOut129 happy_x_1 of { happy_var_1 -> +	happyIn128+		 (happy_var_1+	)}++happyReduce_303 = happySpecReduce_3  124# happyReduction_303+happyReduction_303 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut129 happy_x_1 of { happy_var_1 -> +	case happyOut130 happy_x_3 of { happy_var_3 -> +	happyIn129+		 (Bin () (spanTrans happy_var_1 happy_var_3) (Or ()) happy_var_1 happy_var_3+	)}}++happyReduce_304 = happySpecReduce_1  124# happyReduction_304+happyReduction_304 happy_x_1+	 =  case happyOut130 happy_x_1 of { happy_var_1 -> +	happyIn129+		 (happy_var_1+	)}++happyReduce_305 = happySpecReduce_3  125# happyReduction_305+happyReduction_305 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut130 happy_x_1 of { happy_var_1 -> +	case happyOut131 happy_x_3 of { happy_var_3 -> +	happyIn130+		 (Bin () (spanTrans happy_var_1 happy_var_3) (And ()) happy_var_1 happy_var_3+	)}}++happyReduce_306 = happySpecReduce_1  125# happyReduction_306+happyReduction_306 happy_x_1+	 =  case happyOut131 happy_x_1 of { happy_var_1 -> +	happyIn130+		 (happy_var_1+	)}++happyReduce_307 = happySpecReduce_1  126# happyReduction_307+happyReduction_307 happy_x_1+	 =  case happyOut132 happy_x_1 of { happy_var_1 -> +	happyIn131+		 (happy_var_1+	)}++happyReduce_308 = happySpecReduce_3  127# happyReduction_308+happyReduction_308 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut132 happy_x_1 of { happy_var_1 -> +	case happyOut149 happy_x_2 of { happy_var_2 -> +	case happyOut133 happy_x_3 of { happy_var_3 -> +	happyIn132+		 (Bin () (spanTrans happy_var_1 happy_var_3) happy_var_2 happy_var_1 happy_var_3+	)}}}++happyReduce_309 = happySpecReduce_1  127# happyReduction_309+happyReduction_309 happy_x_1+	 =  case happyOut133 happy_x_1 of { happy_var_1 -> +	happyIn132+		 (happy_var_1+	)}++happyReduce_310 = happySpecReduce_3  128# happyReduction_310+happyReduction_310 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut133 happy_x_1 of { happy_var_1 -> +	case happyOut134 happy_x_3 of { happy_var_3 -> +	happyIn133+		 (Bin () (spanTrans happy_var_1 happy_var_3) (Concat ()) happy_var_1 happy_var_3+	)}}++happyReduce_311 = happySpecReduce_1  128# happyReduction_311+happyReduction_311 happy_x_1+	 =  case happyOut134 happy_x_1 of { happy_var_1 -> +	happyIn133+		 (happy_var_1+	)}++happyReduce_312 = happySpecReduce_3  129# happyReduction_312+happyReduction_312 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut134 happy_x_1 of { happy_var_1 -> +	case happyOut135 happy_x_3 of { happy_var_3 -> +	happyIn134+		 (Bin () (spanTrans happy_var_1 happy_var_3) (Plus ()) happy_var_1 happy_var_3+	)}}++happyReduce_313 = happySpecReduce_3  129# happyReduction_313+happyReduction_313 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut134 happy_x_1 of { happy_var_1 -> +	case happyOut135 happy_x_3 of { happy_var_3 -> +	happyIn134+		 (Bin () (spanTrans happy_var_1 happy_var_3) (Minus ()) happy_var_1 happy_var_3+	)}}++happyReduce_314 = happySpecReduce_1  129# happyReduction_314+happyReduction_314 happy_x_1+	 =  case happyOut135 happy_x_1 of { happy_var_1 -> +	happyIn134+		 (happy_var_1+	)}++happyReduce_315 = happySpecReduce_3  130# happyReduction_315+happyReduction_315 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut135 happy_x_1 of { happy_var_1 -> +	case happyOut136 happy_x_3 of { happy_var_3 -> +	happyIn135+		 (Bin () (spanTrans happy_var_1 happy_var_3) (Mul ()) happy_var_1 happy_var_3+	)}}++happyReduce_316 = happySpecReduce_3  130# happyReduction_316+happyReduction_316 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut135 happy_x_1 of { happy_var_1 -> +	case happyOut136 happy_x_3 of { happy_var_3 -> +	happyIn135+		 (Bin () (spanTrans happy_var_1 happy_var_3) (Div ()) happy_var_1 happy_var_3+	)}}++happyReduce_317 = happySpecReduce_1  130# happyReduction_317+happyReduction_317 happy_x_1+	 =  case happyOut136 happy_x_1 of { happy_var_1 -> +	happyIn135+		 (happy_var_1+	)}++happyReduce_318 = happySpecReduce_3  131# happyReduction_318+happyReduction_318 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut137 happy_x_1 of { happy_var_1 -> +	case happyOut136 happy_x_3 of { happy_var_3 -> +	happyIn136+		 (Bin () (spanTrans happy_var_1 happy_var_3) (Power ()) happy_var_1 happy_var_3+	)}}++happyReduce_319 = happySpecReduce_1  131# happyReduction_319+happyReduction_319 happy_x_1+	 =  case happyOut137 happy_x_1 of { happy_var_1 -> +	happyIn136+		 (happy_var_1+	)}++happyReduce_320 = happyMonadReduce 3# 132# happyReduction_320+happyReduction_320 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut139 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Unary () s (UMinus ()) happy_var_3))}}+	) (\r -> happyReturn (happyIn137 r))++happyReduce_321 = happyMonadReduce 3# 132# happyReduction_321+happyReduction_321 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut139 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Unary () s (Not ()) happy_var_3))}}+	) (\r -> happyReturn (happyIn137 r))++happyReduce_322 = happySpecReduce_1  132# happyReduction_322+happyReduction_322 happy_x_1+	 =  case happyOut139 happy_x_1 of { happy_var_1 -> +	happyIn137+		 (happy_var_1+	)}++happyReduce_323 = happyMonadReduce 4# 133# happyReduction_323+happyReduction_323 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut242 happy_x_2 of { happy_var_2 -> +	case happyOut139 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Bin () s (Mul ()) (Con () s happy_var_2) happy_var_4))}}}+	) (\r -> happyReturn (happyIn138 r))++happyReduce_324 = happyMonadReduce 3# 133# happyReduction_324+happyReduction_324 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut139 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Unary () s (UMinus ()) happy_var_3))}}+	) (\r -> happyReturn (happyIn138 r))++happyReduce_325 = happySpecReduce_1  133# happyReduction_325+happyReduction_325 happy_x_1+	 =  case happyOut139 happy_x_1 of { happy_var_1 -> +	happyIn138+		 (happy_var_1+	)}++happyReduce_326 = happySpecReduce_1  134# happyReduction_326+happyReduction_326 happy_x_1+	 =  case happyOut146 happy_x_1 of { happy_var_1 -> +	happyIn139+		 (happy_var_1+	)}++happyReduce_327 = happySpecReduce_1  134# happyReduction_327+happyReduction_327 happy_x_1+	 =  case happyOut120 happy_x_1 of { happy_var_1 -> +	happyIn139+		 (happy_var_1+	)}++happyReduce_328 = happyMonadReduce 5# 134# happyReduction_328+happyReduction_328 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut140 happy_x_2 of { happy_var_2 -> +	case happyOut127 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Var () s [(VarName () happy_var_2, [happy_var_4])]))}}}+	) (\r -> happyReturn (happyIn139 r))++happyReduce_329 = happySpecReduce_1  134# happyReduction_329+happyReduction_329 happy_x_1+	 =  case happyOut142 happy_x_1 of { happy_var_1 -> +	happyIn139+		 (happy_var_1+	)}++happyReduce_330 = happySpecReduce_3  134# happyReduction_330+happyReduction_330 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut127 happy_x_2 of { happy_var_2 -> +	happyIn139+		 (happy_var_2+	)}++happyReduce_331 = happyMonadReduce 5# 134# happyReduction_331+happyReduction_331 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut127 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Sqrt () s happy_var_4))}}+	) (\r -> happyReturn (happyIn139 r))++happyReduce_332 = happySpecReduce_1  135# happyReduction_332+happyReduction_332 happy_x_1+	 =  happyIn140+		 ("REAL"+	)++happyReduce_333 = happySpecReduce_1  135# happyReduction_333+happyReduction_333 happy_x_1+	 =  happyIn140+		 ("INTEGER"+	)++happyReduce_334 = happySpecReduce_1  135# happyReduction_334+happyReduction_334 happy_x_1+	 =  happyIn140+		 ("LOGICAL"+	)++happyReduce_335 = happySpecReduce_1  135# happyReduction_335+happyReduction_335 happy_x_1+	 =  happyIn140+		 ("CHARACTER"+	)++happyReduce_336 = happySpecReduce_3  136# happyReduction_336+happyReduction_336 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut141 happy_x_1 of { happy_var_1 -> +	case happyOut103 happy_x_3 of { happy_var_3 -> +	happyIn141+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_337 = happySpecReduce_1  136# happyReduction_337+happyReduction_337 happy_x_1+	 =  case happyOut103 happy_x_1 of { happy_var_1 -> +	happyIn141+		 ([happy_var_1]+	)}++happyReduce_338 = happyMonadReduce 4# 137# happyReduction_338+happyReduction_338 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut143 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ ArrayCon () s happy_var_3))}}+	) (\r -> happyReturn (happyIn142 r))++happyReduce_339 = happySpecReduce_3  138# happyReduction_339+happyReduction_339 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut143 happy_x_1 of { happy_var_1 -> +	case happyOut127 happy_x_3 of { happy_var_3 -> +	happyIn143+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_340 = happySpecReduce_1  138# happyReduction_340+happyReduction_340 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn143+		 ([happy_var_1]+	)}++happyReduce_341 = happySpecReduce_1  139# happyReduction_341+happyReduction_341 happy_x_1+	 =  case happyOut145 happy_x_1 of { happy_var_1 -> +	happyIn144+		 (happy_var_1+	)}++happyReduce_342 = happyMonadReduce 2# 140# happyReduction_342+happyReduction_342 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOutTok happy_x_2 of { (ID happy_var_2) -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Var () s [(VarName () happy_var_2,[])]))}}+	) (\r -> happyReturn (happyIn145 r))++happyReduce_343 = happySpecReduce_1  141# happyReduction_343+happyReduction_343 happy_x_1+	 =  case happyOut147 happy_x_1 of { happy_var_1 -> +	happyIn146+		 (happy_var_1+	)}++happyReduce_344 = happyMonadReduce 2# 142# happyReduction_344+happyReduction_344 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut242 happy_x_2 of { happy_var_2 -> +	( (getSrcSpan happy_var_1) >>= (\s -> return $ Con () s happy_var_2))}}+	) (\r -> happyReturn (happyIn147 r))++happyReduce_345 = happyMonadReduce 2# 142# happyReduction_345+happyReduction_345 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOutTok happy_x_2 of { (LitConst 'z' happy_var_2) -> +	( (getSrcSpan happy_var_1) >>= (\s -> return $ ConL () s 'z' happy_var_2))}}+	) (\r -> happyReturn (happyIn147 r))++happyReduce_346 = happyMonadReduce 2# 142# happyReduction_346+happyReduction_346 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOutTok happy_x_2 of { (StrConst happy_var_2) -> +	( (getSrcSpan happy_var_1) >>= (\s -> return $ ConS () s happy_var_2))}}+	) (\r -> happyReturn (happyIn147 r))++happyReduce_347 = happySpecReduce_1  142# happyReduction_347+happyReduction_347 happy_x_1+	 =  case happyOut148 happy_x_1 of { happy_var_1 -> +	happyIn147+		 (happy_var_1+	)}++happyReduce_348 = happyMonadReduce 2# 143# happyReduction_348+happyReduction_348 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	( (getSrcSpan happy_var_1) >>= (\s -> return $ Con () s  ".TRUE."))}+	) (\r -> happyReturn (happyIn148 r))++happyReduce_349 = happyMonadReduce 2# 143# happyReduction_349+happyReduction_349 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	( (getSrcSpan happy_var_1) >>= (\s -> return $ Con () s ".FALSE."))}+	) (\r -> happyReturn (happyIn148 r))++happyReduce_350 = happySpecReduce_1  144# happyReduction_350+happyReduction_350 happy_x_1+	 =  happyIn149+		 (RelEQ ()+	)++happyReduce_351 = happySpecReduce_1  144# happyReduction_351+happyReduction_351 happy_x_1+	 =  happyIn149+		 (RelNE ()+	)++happyReduce_352 = happySpecReduce_1  144# happyReduction_352+happyReduction_352 happy_x_1+	 =  happyIn149+		 (RelLT ()+	)++happyReduce_353 = happySpecReduce_1  144# happyReduction_353+happyReduction_353 happy_x_1+	 =  happyIn149+		 (RelLE ()+	)++happyReduce_354 = happySpecReduce_1  144# happyReduction_354+happyReduction_354 happy_x_1+	 =  happyIn149+		 (RelGT ()+	)++happyReduce_355 = happySpecReduce_1  144# happyReduction_355+happyReduction_355 happy_x_1+	 =  happyIn149+		 (RelGE ()+	)++happyReduce_356 = happySpecReduce_1  145# happyReduction_356+happyReduction_356 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn150+		 (happy_var_1+	)}++happyReduce_357 = happySpecReduce_1  146# happyReduction_357+happyReduction_357 happy_x_1+	 =  case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	happyIn151+		 (VarName () happy_var_1+	)}++happyReduce_358 = happySpecReduce_1  147# happyReduction_358+happyReduction_358 happy_x_1+	 =  case happyOut153 happy_x_1 of { happy_var_1 -> +	happyIn152+		 (happy_var_1+	)}++happyReduce_359 = happyMonadReduce 4# 148# happyReduction_359+happyReduction_359 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut154 happy_x_2 of { happy_var_2 -> +	case happyOut157 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ For () s (fst4 happy_var_2) (snd4 happy_var_2) (trd4 happy_var_2) (frh4 happy_var_2) happy_var_4))}}}+	) (\r -> happyReturn (happyIn153 r))++happyReduce_360 = happyMonadReduce 7# 148# happyReduction_360+happyReduction_360 (happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut242 happy_x_3 of { happy_var_3 -> +	case happyOut155 happy_x_5 of { happy_var_5 -> +	case happyOut158 happy_x_7 of { happy_var_7 -> +	( do { (fs, n) <- return $ happy_var_7;
+			    s       <- getSrcSpan happy_var_1;
+			    if (n == happy_var_3) then 
+				return $ For () s (fst4 happy_var_5) (snd4 happy_var_5) (trd4 happy_var_5) (frh4 happy_var_5) fs
+                            else parseError "DO/END DO labels don't match"
+                          })}}}}+	) (\r -> happyReturn (happyIn153 r))++happyReduce_361 = happyMonadReduce 6# 148# happyReduction_361+happyReduction_361 (happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut242 happy_x_3 of { happy_var_3 -> +	case happyOut155 happy_x_4 of { happy_var_4 -> +	case happyOut158 happy_x_6 of { happy_var_6 -> +	( do { (fs, n) <- return $ happy_var_6;
+			    s       <- getSrcSpan happy_var_1;
+			    if (n == happy_var_3) then 
+				return $ For () s (fst4 happy_var_4) (snd4 happy_var_4) (trd4 happy_var_4) (frh4 happy_var_4) fs
+                            else parseError "DO/END DO labels don't match"
+                          })}}}}+	) (\r -> happyReturn (happyIn153 r))++happyReduce_362 = happyMonadReduce 6# 148# happyReduction_362+happyReduction_362 (happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut242 happy_x_3 of { happy_var_3 -> +	case happyOut155 happy_x_4 of { happy_var_4 -> +	case happyOut159 happy_x_6 of { happy_var_6 -> +	( do { (fs, n) <- return $ happy_var_6;
+			    s       <- getSrcSpan happy_var_1;
+			    if (n == happy_var_3) then 
+				return $ For () s (fst4 happy_var_4) (snd4 happy_var_4) (trd4 happy_var_4) (frh4 happy_var_4) fs
+			      else return $ NullStmt () s --  parseError $ "DO/CONTINUE labels don't match" -- NEEDS FIXING!
+                          })}}}}+	) (\r -> happyReturn (happyIn153 r))++happyReduce_363 = happySpecReduce_2  149# happyReduction_363+happyReduction_363 happy_x_2+	happy_x_1+	 =  case happyOut155 happy_x_2 of { happy_var_2 -> +	happyIn154+		 (happy_var_2+	)}++happyReduce_364 = happyMonadReduce 1# 149# happyReduction_364+happyReduction_364 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $ (VarName () "", NullExpr () s, NullExpr () s, NullExpr () s)))+	) (\r -> happyReturn (happyIn154 r))++happyReduce_365 = happyReduce 6# 150# happyReduction_365+happyReduction_365 (happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut151 happy_x_1 of { happy_var_1 -> +	case happyOut150 happy_x_3 of { happy_var_3 -> +	case happyOut150 happy_x_5 of { happy_var_5 -> +	case happyOut156 happy_x_6 of { happy_var_6 -> +	happyIn155+		 ((happy_var_1,happy_var_3,happy_var_5,happy_var_6)+	) `HappyStk` happyRest}}}}++happyReduce_366 = happySpecReduce_2  151# happyReduction_366+happyReduction_366 happy_x_2+	happy_x_1+	 =  case happyOut150 happy_x_2 of { happy_var_2 -> +	happyIn156+		 (happy_var_2+	)}++happyReduce_367 = happyMonadReduce 0# 151# happyReduction_367+happyReduction_367 (happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $ Con () s "1"))+	) (\r -> happyReturn (happyIn156 r))++happyReduce_368 = happySpecReduce_3  152# happyReduction_368+happyReduction_368 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut160 happy_x_1 of { happy_var_1 -> +	case happyOut157 happy_x_3 of { happy_var_3 -> +	happyIn157+		 (FSeq () (spanTrans happy_var_1 happy_var_3) happy_var_1 happy_var_3+	)}}++happyReduce_369 = happyMonadReduce 2# 152# happyReduction_369+happyReduction_369 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $ NullStmt () s))+	) (\r -> happyReturn (happyIn157 r))++happyReduce_370 = happyMonadReduce 1# 152# happyReduction_370+happyReduction_370 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $ NullStmt () s))+	) (\r -> happyReturn (happyIn157 r))++happyReduce_371 = happySpecReduce_3  153# happyReduction_371+happyReduction_371 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut160 happy_x_1 of { happy_var_1 -> +	case happyOut158 happy_x_3 of { happy_var_3 -> +	happyIn158+		 (let (fs, n) = happy_var_3 in (FSeq () (spanTrans happy_var_1 fs) happy_var_1 fs, n)+	)}}++happyReduce_372 = happyMonadReduce 2# 153# happyReduction_372+happyReduction_372 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut242 happy_x_1 of { happy_var_1 -> +	( getSrcSpanNull >>= (\s -> return $ (NullStmt () s, happy_var_1)))}+	) (\r -> happyReturn (happyIn158 r))++happyReduce_373 = happyMonadReduce 2# 154# happyReduction_373+happyReduction_373 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut242 happy_x_1 of { happy_var_1 -> +	( getSrcSpanNull >>= (\s -> return $ (NullStmt () s, happy_var_1)))}+	) (\r -> happyReturn (happyIn159 r))++happyReduce_374 = happySpecReduce_3  154# happyReduction_374+happyReduction_374 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut160 happy_x_1 of { happy_var_1 -> +	case happyOut159 happy_x_3 of { happy_var_3 -> +	happyIn159+		 (let (fs, n) = happy_var_3 in (FSeq () (spanTrans happy_var_1 fs) happy_var_1 fs, n)+	)}}++happyReduce_375 = happyMonadReduce 2# 155# happyReduction_375+happyReduction_375 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut242 happy_x_1 of { happy_var_1 -> +	case happyOut166 happy_x_2 of { happy_var_2 -> +	( getSrcSpanNull >>= (\s -> return $ Label () s happy_var_1 happy_var_2  ))}}+	) (\r -> happyReturn (happyIn160 r))++happyReduce_376 = happySpecReduce_1  155# happyReduction_376+happyReduction_376 happy_x_1+	 =  case happyOut166 happy_x_1 of { happy_var_1 -> +	happyIn160+		 (happy_var_1+	)}++happyReduce_377 = happySpecReduce_2  156# happyReduction_377+happyReduction_377 happy_x_2+	happy_x_1+	 =  happyIn161+		 (+	)++happyReduce_378 = happySpecReduce_1  156# happyReduction_378+happyReduction_378 happy_x_1+	 =  happyIn161+		 (+	)++happyReduce_379 = happySpecReduce_1  157# happyReduction_379+happyReduction_379 happy_x_1+	 =  case happyOut164 happy_x_1 of { happy_var_1 -> +	happyIn162+		 (happy_var_1+	)}++happyReduce_380 = happySpecReduce_1  158# happyReduction_380+happyReduction_380 happy_x_1+	 =  case happyOut164 happy_x_1 of { happy_var_1 -> +	happyIn163+		 (happy_var_1+	)}++happyReduce_381 = happySpecReduce_3  159# happyReduction_381+happyReduction_381 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut165 happy_x_1 of { happy_var_1 -> +	case happyOut164 happy_x_3 of { happy_var_3 -> +	happyIn164+		 (FSeq () (spanTrans happy_var_1 happy_var_3) happy_var_1 happy_var_3+	)}}++happyReduce_382 = happySpecReduce_2  159# happyReduction_382+happyReduction_382 happy_x_2+	happy_x_1+	 =  case happyOut165 happy_x_1 of { happy_var_1 -> +	happyIn164+		 (happy_var_1+	)}++happyReduce_383 = happyMonadReduce 2# 160# happyReduction_383+happyReduction_383 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut242 happy_x_1 of { happy_var_1 -> +	case happyOut166 happy_x_2 of { happy_var_2 -> +	( (getSrcSpanNull) >>= (\s -> return $ Label () s happy_var_1 happy_var_2))}}+	) (\r -> happyReturn (happyIn165 r))++happyReduce_384 = happySpecReduce_1  160# happyReduction_384+happyReduction_384 happy_x_1+	 =  case happyOut166 happy_x_1 of { happy_var_1 -> +	happyIn165+		 (happy_var_1+	)}++happyReduce_385 = happySpecReduce_1  161# happyReduction_385+happyReduction_385 happy_x_1+	 =  case happyOut152 happy_x_1 of { happy_var_1 -> +	happyIn166+		 (happy_var_1+	)}++happyReduce_386 = happySpecReduce_1  161# happyReduction_386+happyReduction_386 happy_x_1+	 =  case happyOut180 happy_x_1 of { happy_var_1 -> +	happyIn166+		 (happy_var_1+	)}++happyReduce_387 = happySpecReduce_1  161# happyReduction_387+happyReduction_387 happy_x_1+	 =  case happyOut168 happy_x_1 of { happy_var_1 -> +	happyIn166+		 (happy_var_1+	)}++happyReduce_388 = happyMonadReduce 5# 162# happyReduction_388+happyReduction_388 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut10 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Equivalence () s happy_var_4))}}+	) (\r -> happyReturn (happyIn167 r))++happyReduce_389 = happySpecReduce_1  163# happyReduction_389+happyReduction_389 happy_x_1+	 =  case happyOut183 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_390 = happySpecReduce_1  163# happyReduction_390+happyReduction_390 happy_x_1+	 =  case happyOut119 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_391 = happySpecReduce_1  163# happyReduction_391+happyReduction_391 happy_x_1+	 =  case happyOut193 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_392 = happySpecReduce_1  163# happyReduction_392+happyReduction_392 happy_x_1+	 =  case happyOut171 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_393 = happySpecReduce_1  163# happyReduction_393+happyReduction_393 happy_x_1+	 =  case happyOut196 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_394 = happySpecReduce_1  163# happyReduction_394+happyReduction_394 happy_x_1+	 =  case happyOut199 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_395 = happySpecReduce_1  163# happyReduction_395+happyReduction_395 happy_x_1+	 =  case happyOut200 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_396 = happyMonadReduce 2# 163# happyReduction_396+happyReduction_396 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut94 happy_x_2 of { happy_var_2 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ DataStmt () s happy_var_2))}}+	) (\r -> happyReturn (happyIn168 r))++happyReduce_397 = happySpecReduce_1  163# happyReduction_397+happyReduction_397 happy_x_1+	 =  case happyOut201 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_398 = happySpecReduce_1  163# happyReduction_398+happyReduction_398 happy_x_1+	 =  case happyOut202 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_399 = happySpecReduce_1  163# happyReduction_399+happyReduction_399 happy_x_1+	 =  case happyOut203 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_400 = happySpecReduce_1  163# happyReduction_400+happyReduction_400 happy_x_1+	 =  case happyOut170 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_401 = happySpecReduce_1  163# happyReduction_401+happyReduction_401 happy_x_1+	 =  case happyOut204 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_402 = happySpecReduce_1  163# happyReduction_402+happyReduction_402 happy_x_1+	 =  case happyOut211 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_403 = happySpecReduce_1  163# happyReduction_403+happyReduction_403 happy_x_1+	 =  case happyOut212 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_404 = happySpecReduce_1  163# happyReduction_404+happyReduction_404 happy_x_1+	 =  case happyOut213 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_405 = happySpecReduce_1  163# happyReduction_405+happyReduction_405 happy_x_1+	 =  case happyOut216 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_406 = happySpecReduce_1  163# happyReduction_406+happyReduction_406 happy_x_1+	 =  case happyOut220 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_407 = happySpecReduce_1  163# happyReduction_407+happyReduction_407 happy_x_1+	 =  case happyOut226 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_408 = happySpecReduce_1  163# happyReduction_408+happyReduction_408 happy_x_1+	 =  case happyOut228 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_409 = happySpecReduce_1  163# happyReduction_409+happyReduction_409 happy_x_1+	 =  case happyOut232 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_410 = happySpecReduce_1  163# happyReduction_410+happyReduction_410 happy_x_1+	 =  case happyOut244 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_411 = happySpecReduce_1  163# happyReduction_411+happyReduction_411 happy_x_1+	 =  case happyOut169 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_412 = happySpecReduce_1  163# happyReduction_412+happyReduction_412 happy_x_1+	 =  case happyOut247 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_413 = happySpecReduce_1  163# happyReduction_413+happyReduction_413 happy_x_1+	 =  case happyOut248 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_414 = happySpecReduce_1  163# happyReduction_414+happyReduction_414 happy_x_1+	 =  case happyOut250 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_415 = happySpecReduce_1  163# happyReduction_415+happyReduction_415 happy_x_1+	 =  case happyOut253 happy_x_1 of { happy_var_1 -> +	happyIn168+		 (happy_var_1+	)}++happyReduce_416 = happyMonadReduce 2# 163# happyReduction_416+happyReduction_416 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOutTok happy_x_2 of { (Text happy_var_2) -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ TextStmt () s happy_var_2))}}+	) (\r -> happyReturn (happyIn168 r))++happyReduce_417 = happyMonadReduce 3# 164# happyReduction_417+happyReduction_417 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOutTok happy_x_3 of { (StrConst happy_var_3) -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Pause () s happy_var_3))}}+	) (\r -> happyReturn (happyIn169 r))++happyReduce_418 = happyMonadReduce 3# 165# happyReduction_418+happyReduction_418 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut233 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Format () s happy_var_3))}}+	) (\r -> happyReturn (happyIn170 r))++happyReduce_419 = happyMonadReduce 6# 166# happyReduction_419+happyReduction_419 (happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut172 happy_x_3 of { happy_var_3 -> +	case happyOut173 happy_x_5 of { happy_var_5 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Call () s happy_var_3 (ArgList () happy_var_5)))}}}+	) (\r -> happyReturn (happyIn171 r))++happyReduce_420 = happyMonadReduce 5# 166# happyReduction_420+happyReduction_420 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut172 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Call () s happy_var_3 (ArgList () (NullExpr () (happy_var_1, happy_var_1)))))}}+	) (\r -> happyReturn (happyIn171 r))++happyReduce_421 = happyMonadReduce 3# 166# happyReduction_421+happyReduction_421 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut172 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Call () s happy_var_3 (ArgList () (NullExpr () (happy_var_1, happy_var_1)))))}}+	) (\r -> happyReturn (happyIn171 r))++happyReduce_422 = happyMonadReduce 2# 167# happyReduction_422+happyReduction_422 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut103 happy_x_2 of { happy_var_2 -> +	( (getSrcSpan happy_var_1) >>= (\s -> return $ Var () s [(VarName () happy_var_2,[])]))}}+	) (\r -> happyReturn (happyIn172 r))++happyReduce_423 = happySpecReduce_3  168# happyReduction_423+happyReduction_423 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut173 happy_x_1 of { happy_var_1 -> +	case happyOut174 happy_x_3 of { happy_var_3 -> +	happyIn173+		 (ESeq () (spanTrans happy_var_1 happy_var_3) happy_var_1 happy_var_3+	)}}++happyReduce_424 = happySpecReduce_1  168# happyReduction_424+happyReduction_424 happy_x_1+	 =  case happyOut174 happy_x_1 of { happy_var_1 -> +	happyIn173+		 (happy_var_1+	)}++happyReduce_425 = happyMonadReduce 4# 169# happyReduction_425+happyReduction_425 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOutTok happy_x_2 of { (ID happy_var_2) -> +	case happyOut175 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ AssgExpr () s happy_var_2 happy_var_4))}}}+	) (\r -> happyReturn (happyIn174 r))++happyReduce_426 = happySpecReduce_1  169# happyReduction_426+happyReduction_426 happy_x_1+	 =  case happyOut175 happy_x_1 of { happy_var_1 -> +	happyIn174+		 (happy_var_1+	)}++happyReduce_427 = happySpecReduce_1  170# happyReduction_427+happyReduction_427 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn175+		 (happy_var_1+	)}++happyReduce_428 = happySpecReduce_3  171# happyReduction_428+happyReduction_428 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut176 happy_x_1 of { happy_var_1 -> +	case happyOut179 happy_x_2 of { happy_var_2 -> +	case happyOut162 happy_x_3 of { happy_var_3 -> +	happyIn176+		 (happy_var_1++[(happy_var_2,happy_var_3)]+	)}}}++happyReduce_429 = happySpecReduce_0  171# happyReduction_429+happyReduction_429  =  happyIn176+		 ([]+	)++happyReduce_430 = happySpecReduce_2  172# happyReduction_430+happyReduction_430 happy_x_2+	happy_x_1+	 =  case happyOut178 happy_x_2 of { happy_var_2 -> +	happyIn177+		 (happy_var_2+	)}++happyReduce_431 = happyReduce 6# 173# happyReduction_431+happyReduction_431 (happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut182 happy_x_3 of { happy_var_3 -> +	happyIn178+		 (happy_var_3+	) `HappyStk` happyRest}++happyReduce_432 = happyReduce 6# 174# happyReduction_432+happyReduction_432 (happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut182 happy_x_3 of { happy_var_3 -> +	happyIn179+		 (happy_var_3+	) `HappyStk` happyRest}++happyReduce_433 = happyReduce 7# 174# happyReduction_433+happyReduction_433 (happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut182 happy_x_4 of { happy_var_4 -> +	happyIn179+		 (happy_var_4+	) `HappyStk` happyRest}++happyReduce_434 = happyMonadReduce 10# 175# happyReduction_434+happyReduction_434 (happy_x_10 `HappyStk`+	happy_x_9 `HappyStk`+	happy_x_8 `HappyStk`+	happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut182 happy_x_4 of { happy_var_4 -> +	case happyOut242 happy_x_6 of { happy_var_6 -> +	case happyOut242 happy_x_8 of { happy_var_8 -> +	case happyOut242 happy_x_10 of { happy_var_10 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ If () s (Bin () s (RelLT ()) happy_var_4 (Con () s "0")) (Goto () s happy_var_6)
+			[(Bin () s (RelEQ ()) happy_var_4 (Con () s "0"), (Goto () s happy_var_8)),
+                         (Bin () s (RelGT ()) happy_var_4 (Con () s "0"), (Goto () s happy_var_10))] Nothing))}}}}}+	) (\r -> happyReturn (happyIn180 r))++happyReduce_435 = happyMonadReduce 4# 175# happyReduction_435+happyReduction_435 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut178 happy_x_2 of { happy_var_2 -> +	case happyOut162 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ If () s happy_var_2 happy_var_3 [] Nothing))}}}+	) (\r -> happyReturn (happyIn180 r))++happyReduce_436 = happyMonadReduce 5# 175# happyReduction_436+happyReduction_436 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut178 happy_x_2 of { happy_var_2 -> +	case happyOut162 happy_x_3 of { happy_var_3 -> +	case happyOut176 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ If () s happy_var_2 happy_var_3 happy_var_4 Nothing))}}}}+	) (\r -> happyReturn (happyIn180 r))++happyReduce_437 = happyMonadReduce 8# 175# happyReduction_437+happyReduction_437 (happy_x_8 `HappyStk`+	happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut178 happy_x_2 of { happy_var_2 -> +	case happyOut162 happy_x_3 of { happy_var_3 -> +	case happyOut176 happy_x_4 of { happy_var_4 -> +	case happyOut162 happy_x_7 of { happy_var_7 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ If () s happy_var_2 happy_var_3 happy_var_4 (Just happy_var_7)))}}}}}+	) (\r -> happyReturn (happyIn180 r))++happyReduce_438 = happySpecReduce_2  176# happyReduction_438+happyReduction_438 happy_x_2+	happy_x_1+	 =  happyIn181+		 (+	)++happyReduce_439 = happySpecReduce_1  176# happyReduction_439+happyReduction_439 happy_x_1+	 =  happyIn181+		 (+	)++happyReduce_440 = happySpecReduce_1  177# happyReduction_440+happyReduction_440 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn182+		 (happy_var_1+	)}++happyReduce_441 = happyMonadReduce 9# 178# happyReduction_441+happyReduction_441 (happy_x_9 `HappyStk`+	happy_x_8 `HappyStk`+	happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut184 happy_x_4 of { happy_var_4 -> +	case happyOut120 happy_x_8 of { happy_var_8 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Allocate () s happy_var_4 happy_var_8))}}}+	) (\r -> happyReturn (happyIn183 r))++happyReduce_442 = happyMonadReduce 5# 178# happyReduction_442+happyReduction_442 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut184 happy_x_4 of { happy_var_4 -> +	( getSrcSpanNull >>= (\e -> getSrcSpan happy_var_1 >>= (\s -> return $ Allocate () s happy_var_4 (NullExpr () e))))}}+	) (\r -> happyReturn (happyIn183 r))++happyReduce_443 = happySpecReduce_3  179# happyReduction_443+happyReduction_443 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut184 happy_x_1 of { happy_var_1 -> +	case happyOut189 happy_x_3 of { happy_var_3 -> +	happyIn184+		 (ESeq () (spanTrans happy_var_1 happy_var_3) happy_var_1 happy_var_3+	)}}++happyReduce_444 = happySpecReduce_1  179# happyReduction_444+happyReduction_444 happy_x_1+	 =  case happyOut189 happy_x_1 of { happy_var_1 -> +	happyIn184+		 (happy_var_1+	)}++happyReduce_445 = happyMonadReduce 0# 179# happyReduction_445+happyReduction_445 (happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (return . (NullExpr ())))+	) (\r -> happyReturn (happyIn184 r))++happyReduce_446 = happySpecReduce_3  180# happyReduction_446+happyReduction_446 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut185 happy_x_1 of { happy_var_1 -> +	case happyOut186 happy_x_3 of { happy_var_3 -> +	happyIn185+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_447 = happySpecReduce_1  180# happyReduction_447+happyReduction_447 happy_x_1+	 =  case happyOut186 happy_x_1 of { happy_var_1 -> +	happyIn185+		 ([happy_var_1]+	)}++happyReduce_448 = happyMonadReduce 2# 181# happyReduction_448+happyReduction_448 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut121 happy_x_2 of { happy_var_2 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Var () s happy_var_2))}}+	) (\r -> happyReturn (happyIn186 r))++happyReduce_449 = happySpecReduce_3  182# happyReduction_449+happyReduction_449 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut187 happy_x_1 of { happy_var_1 -> +	case happyOut188 happy_x_3 of { happy_var_3 -> +	happyIn187+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_450 = happySpecReduce_1  182# happyReduction_450+happyReduction_450 happy_x_1+	 =  case happyOut188 happy_x_1 of { happy_var_1 -> +	happyIn187+		 ([happy_var_1]+	)}++happyReduce_451 = happySpecReduce_1  183# happyReduction_451+happyReduction_451 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn188+		 (happy_var_1+	)}++happyReduce_452 = happySpecReduce_1  183# happyReduction_452+happyReduction_452 happy_x_1+	 =  case happyOut124 happy_x_1 of { happy_var_1 -> +	happyIn188+		 (happy_var_1+	)}++happyReduce_453 = happySpecReduce_1  184# happyReduction_453+happyReduction_453 happy_x_1+	 =  case happyOut190 happy_x_1 of { happy_var_1 -> +	happyIn189+		 (happy_var_1+	)}++happyReduce_454 = happyMonadReduce 2# 185# happyReduction_454+happyReduction_454 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut191 happy_x_2 of { happy_var_2 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Var () s happy_var_2))}}+	) (\r -> happyReturn (happyIn190 r))++happyReduce_455 = happySpecReduce_3  186# happyReduction_455+happyReduction_455 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut191 happy_x_1 of { happy_var_1 -> +	case happyOut192 happy_x_3 of { happy_var_3 -> +	happyIn191+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_456 = happySpecReduce_1  186# happyReduction_456+happyReduction_456 happy_x_1+	 =  case happyOut192 happy_x_1 of { happy_var_1 -> +	happyIn191+		 ([happy_var_1]+	)}++happyReduce_457 = happyReduce 4# 187# happyReduction_457+happyReduction_457 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	case happyOut187 happy_x_3 of { happy_var_3 -> +	happyIn192+		 ((VarName () happy_var_1, happy_var_3)+	) `HappyStk` happyRest}}++happyReduce_458 = happySpecReduce_1  187# happyReduction_458+happyReduction_458 happy_x_1+	 =  case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	happyIn192+		 ((VarName () happy_var_1, [])+	)}++happyReduce_459 = happyMonadReduce 3# 188# happyReduction_459+happyReduction_459 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut127 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Backspace () s [NoSpec () happy_var_3]))}}+	) (\r -> happyReturn (happyIn193 r))++happyReduce_460 = happyMonadReduce 5# 188# happyReduction_460+happyReduction_460 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut194 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Backspace () s happy_var_4))}}+	) (\r -> happyReturn (happyIn193 r))++happyReduce_461 = happySpecReduce_3  189# happyReduction_461+happyReduction_461 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut194 happy_x_1 of { happy_var_1 -> +	case happyOut195 happy_x_3 of { happy_var_3 -> +	happyIn194+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_462 = happySpecReduce_1  189# happyReduction_462+happyReduction_462 happy_x_1+	 =  case happyOut195 happy_x_1 of { happy_var_1 -> +	happyIn194+		 ([happy_var_1]+	)}++happyReduce_463 = happySpecReduce_1  190# happyReduction_463+happyReduction_463 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn195+		 (NoSpec () happy_var_1+	)}++happyReduce_464 = happyReduce 4# 190# happyReduction_464+happyReduction_464 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut127 happy_x_4 of { happy_var_4 -> +	happyIn195+		 (Unit () happy_var_4+	) `HappyStk` happyRest}++happyReduce_465 = happyMonadReduce 4# 190# happyReduction_465+happyReduction_465 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOutTok happy_x_2 of { (ID happy_var_2) -> +	case happyOut127 happy_x_4 of { happy_var_4 -> +	( case (map (toLower) happy_var_2) of
+ --                                                    "unit"   -> return (Unit   () happy_var_4)
+                                                       "iostat" -> return (IOStat () happy_var_4)
+                                                       s        ->  parseError ("incorrect name in spec list: " ++ s))}}+	) (\r -> happyReturn (happyIn195 r))++happyReduce_466 = happyMonadReduce 5# 191# happyReduction_466+happyReduction_466 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut197 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Close () s happy_var_4))}}+	) (\r -> happyReturn (happyIn196 r))++happyReduce_467 = happySpecReduce_3  192# happyReduction_467+happyReduction_467 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut197 happy_x_1 of { happy_var_1 -> +	case happyOut198 happy_x_3 of { happy_var_3 -> +	happyIn197+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_468 = happySpecReduce_1  192# happyReduction_468+happyReduction_468 happy_x_1+	 =  case happyOut198 happy_x_1 of { happy_var_1 -> +	happyIn197+		 ([happy_var_1]+	)}++happyReduce_469 = happySpecReduce_1  193# happyReduction_469+happyReduction_469 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn198+		 (NoSpec () happy_var_1+	)}++happyReduce_470 = happySpecReduce_3  193# happyReduction_470+happyReduction_470 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut127 happy_x_3 of { happy_var_3 -> +	happyIn198+		 (Unit () happy_var_3+	)}++happyReduce_471 = happyMonadReduce 3# 193# happyReduction_471+happyReduction_471 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	case happyOut127 happy_x_3 of { happy_var_3 -> +	( case (map (toLower) happy_var_1) of
+      "iostat" -> return (IOStat () happy_var_3)
+      "status" -> return (Status () happy_var_3)
+      s        -> parseError ("incorrect name in spec list: " ++ s))}}+	) (\r -> happyReturn (happyIn198 r))++happyReduce_472 = happyMonadReduce 2# 194# happyReduction_472+happyReduction_472 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	( getSrcSpan happy_var_1 >>= (return . (Continue ())))}+	) (\r -> happyReturn (happyIn199 r))++happyReduce_473 = happyMonadReduce 3# 195# happyReduction_473+happyReduction_473 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut103 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Cycle () s happy_var_3))}}+	) (\r -> happyReturn (happyIn200 r))++happyReduce_474 = happyMonadReduce 2# 195# happyReduction_474+happyReduction_474 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Cycle () s ""))}+	) (\r -> happyReturn (happyIn200 r))++happyReduce_475 = happyMonadReduce 9# 196# happyReduction_475+happyReduction_475 (happy_x_9 `HappyStk`+	happy_x_8 `HappyStk`+	happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut185 happy_x_4 of { happy_var_4 -> +	case happyOut120 happy_x_8 of { happy_var_8 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Deallocate () s happy_var_4 happy_var_8))}}}+	) (\r -> happyReturn (happyIn201 r))++happyReduce_476 = happyMonadReduce 5# 196# happyReduction_476+happyReduction_476 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut185 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Deallocate () s happy_var_4 (NullExpr () s)))}}+	) (\r -> happyReturn (happyIn201 r))++happyReduce_477 = happyMonadReduce 3# 197# happyReduction_477+happyReduction_477 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut127 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Endfile () s [NoSpec () happy_var_3]))}}+	) (\r -> happyReturn (happyIn202 r))++happyReduce_478 = happyMonadReduce 5# 197# happyReduction_478+happyReduction_478 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut194 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Endfile () s happy_var_4))}}+	) (\r -> happyReturn (happyIn202 r))++happyReduce_479 = happyMonadReduce 3# 198# happyReduction_479+happyReduction_479 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut103 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Exit () s happy_var_3))}}+	) (\r -> happyReturn (happyIn203 r))++happyReduce_480 = happyMonadReduce 2# 198# happyReduction_480+happyReduction_480 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Exit () s ""))}+	) (\r -> happyReturn (happyIn203 r))++happyReduce_481 = happyMonadReduce 4# 199# happyReduction_481+happyReduction_481 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut206 happy_x_3 of { happy_var_3 -> +	case happyOut209 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Forall () s happy_var_3 happy_var_4))}}}+	) (\r -> happyReturn (happyIn204 r))++happyReduce_482 = happyMonadReduce 6# 199# happyReduction_482+happyReduction_482 (happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut206 happy_x_3 of { happy_var_3 -> +	case happyOut210 happy_x_5 of { happy_var_5 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Forall () s happy_var_3 happy_var_5))}}}+	) (\r -> happyReturn (happyIn204 r))++happyReduce_483 = happySpecReduce_2  200# happyReduction_483+happyReduction_483 happy_x_2+	happy_x_1+	 =  happyIn205+		 (+	)++happyReduce_484 = happySpecReduce_0  200# happyReduction_484+happyReduction_484  =  happyIn205+		 (+	)++happyReduce_485 = happyReduce 5# 201# happyReduction_485+happyReduction_485 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut207 happy_x_2 of { happy_var_2 -> +	case happyOut127 happy_x_4 of { happy_var_4 -> +	happyIn206+		 ((happy_var_2,happy_var_4)+	) `HappyStk` happyRest}}++happyReduce_486 = happyMonadReduce 3# 201# happyReduction_486+happyReduction_486 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut207 happy_x_2 of { happy_var_2 -> +	( getSrcSpanNull >>= (\s -> return (happy_var_2, NullExpr () s)))}+	) (\r -> happyReturn (happyIn206 r))++happyReduce_487 = happySpecReduce_3  202# happyReduction_487+happyReduction_487 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut207 happy_x_1 of { happy_var_1 -> +	case happyOut208 happy_x_3 of { happy_var_3 -> +	happyIn207+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_488 = happySpecReduce_1  202# happyReduction_488+happyReduction_488 happy_x_1+	 =  case happyOut208 happy_x_1 of { happy_var_1 -> +	happyIn207+		 ([happy_var_1]+	)}++happyReduce_489 = happyReduce 7# 203# happyReduction_489+happyReduction_489 (happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest)+	 = case happyOut103 happy_x_1 of { happy_var_1 -> +	case happyOut150 happy_x_3 of { happy_var_3 -> +	case happyOut150 happy_x_5 of { happy_var_5 -> +	case happyOut150 happy_x_7 of { happy_var_7 -> +	happyIn208+		 ((happy_var_1,happy_var_3,happy_var_5,happy_var_7)+	) `HappyStk` happyRest}}}}++happyReduce_490 = happyMonadReduce 5# 203# happyReduction_490+happyReduction_490 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut103 happy_x_1 of { happy_var_1 -> +	case happyOut150 happy_x_3 of { happy_var_3 -> +	case happyOut150 happy_x_5 of { happy_var_5 -> +	( getSrcSpanNull >>= (\s -> return (happy_var_1,happy_var_3,happy_var_5,NullExpr () s)))}}}+	) (\r -> happyReturn (happyIn208 r))++happyReduce_491 = happySpecReduce_1  204# happyReduction_491+happyReduction_491 happy_x_1+	 =  case happyOut119 happy_x_1 of { happy_var_1 -> +	happyIn209+		 (happy_var_1+	)}++happyReduce_492 = happySpecReduce_1  204# happyReduction_492+happyReduction_492 happy_x_1+	 =  case happyOut226 happy_x_1 of { happy_var_1 -> +	happyIn209+		 (happy_var_1+	)}++happyReduce_493 = happySpecReduce_3  205# happyReduction_493+happyReduction_493 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut209 happy_x_1 of { happy_var_1 -> +	case happyOut210 happy_x_3 of { happy_var_3 -> +	happyIn210+		 (FSeq () (spanTrans happy_var_1 happy_var_3) happy_var_1 happy_var_3+	)}}++happyReduce_494 = happySpecReduce_2  205# happyReduction_494+happyReduction_494 happy_x_2+	happy_x_1+	 =  case happyOut209 happy_x_1 of { happy_var_1 -> +	happyIn210+		 (happy_var_1+	)}++happyReduce_495 = happyMonadReduce 3# 206# happyReduction_495+happyReduction_495 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut242 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Goto () s happy_var_3))}}+	) (\r -> happyReturn (happyIn211 r))++happyReduce_496 = happyMonadReduce 6# 207# happyReduction_496+happyReduction_496 (happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut182 happy_x_4 of { happy_var_4 -> +	case happyOut168 happy_x_6 of { happy_var_6 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ If () s happy_var_4 happy_var_6 [] Nothing))}}}+	) (\r -> happyReturn (happyIn212 r))++happyReduce_497 = happyMonadReduce 5# 208# happyReduction_497+happyReduction_497 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut214 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Inquire () s happy_var_4 []))}}+	) (\r -> happyReturn (happyIn213 r))++happyReduce_498 = happyMonadReduce 8# 208# happyReduction_498+happyReduction_498 (happy_x_8 `HappyStk`+	happy_x_7 `HappyStk`+	happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut120 happy_x_6 of { happy_var_6 -> +	case happyOut230 happy_x_8 of { happy_var_8 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Inquire () s [IOLength () happy_var_6] happy_var_8))}}}+	) (\r -> happyReturn (happyIn213 r))++happyReduce_499 = happySpecReduce_3  209# happyReduction_499+happyReduction_499 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut214 happy_x_1 of { happy_var_1 -> +	case happyOut215 happy_x_3 of { happy_var_3 -> +	happyIn214+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_500 = happySpecReduce_1  209# happyReduction_500+happyReduction_500 happy_x_1+	 =  case happyOut215 happy_x_1 of { happy_var_1 -> +	happyIn214+		 ([happy_var_1]+	)}++happyReduce_501 = happySpecReduce_1  210# happyReduction_501+happyReduction_501 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn215+		 (NoSpec () happy_var_1+	)}++happyReduce_502 = happySpecReduce_3  210# happyReduction_502+happyReduction_502 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut120 happy_x_3 of { happy_var_3 -> +	happyIn215+		 (Unit () happy_var_3+	)}++happyReduce_503 = happySpecReduce_3  210# happyReduction_503+happyReduction_503 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut120 happy_x_3 of { happy_var_3 -> +	happyIn215+		 (Read () happy_var_3+	)}++happyReduce_504 = happySpecReduce_3  210# happyReduction_504+happyReduction_504 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut120 happy_x_3 of { happy_var_3 -> +	happyIn215+		 (WriteSp () happy_var_3+	)}++happyReduce_505 = happyMonadReduce 3# 210# happyReduction_505+happyReduction_505 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	case happyOut127 happy_x_3 of { happy_var_3 -> +	( case (map (toLower) happy_var_1) of
+                                            "file"        -> return (File ()	  happy_var_3)
+                                            "iostat"      -> return (IOStat ()     happy_var_3)
+                                            "exist"       -> return (Exist ()      happy_var_3)
+                                            "opened"      -> return (Opened ()     happy_var_3)
+                                            "number"      -> return (Number ()     happy_var_3)
+                                            "named"       -> return (Named ()      happy_var_3)
+                                            "name"        -> return (Name ()       happy_var_3)
+                                            "access"      -> return (Access ()     happy_var_3)
+                                            "sequential"  -> return (Sequential () happy_var_3)
+                                            "direct"      -> return (Direct ()     happy_var_3)
+                                            "form"        -> return (Form ()       happy_var_3)
+                                            "formatted"   -> return (Formatted ()  happy_var_3)
+                                            "unformatted" -> return (Unformatted () happy_var_3)
+                                            "recl"        -> return (Recl    ()   happy_var_3)
+                                            "nextrec"     -> return (NextRec ()   happy_var_3)
+                                            "blank"       -> return (Blank   ()   happy_var_3)
+                                            "position"    -> return (Position ()  happy_var_3)
+                                            "action"      -> return (Action   ()  happy_var_3)
+                                            "readwrite"   -> return (ReadWrite () happy_var_3)
+                                            "delim"       -> return (Delim    ()  happy_var_3)
+                                            "pad"         -> return (Pad     ()   happy_var_3)
+                                            s             -> parseError ("incorrect name in spec list: " ++ s))}}+	) (\r -> happyReturn (happyIn215 r))++happyReduce_506 = happyMonadReduce 5# 211# happyReduction_506+happyReduction_506 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut217 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Nullify () s happy_var_4))}}+	) (\r -> happyReturn (happyIn216 r))++happyReduce_507 = happySpecReduce_3  212# happyReduction_507+happyReduction_507 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut217 happy_x_1 of { happy_var_1 -> +	case happyOut218 happy_x_3 of { happy_var_3 -> +	happyIn217+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_508 = happySpecReduce_1  212# happyReduction_508+happyReduction_508 happy_x_1+	 =  case happyOut218 happy_x_1 of { happy_var_1 -> +	happyIn217+		 ([happy_var_1]+	)}++happyReduce_509 = happySpecReduce_1  213# happyReduction_509+happyReduction_509 happy_x_1+	 =  case happyOut219 happy_x_1 of { happy_var_1 -> +	happyIn218+		 (happy_var_1+	)}++happyReduce_510 = happySpecReduce_1  214# happyReduction_510+happyReduction_510 happy_x_1+	 =  case happyOut120 happy_x_1 of { happy_var_1 -> +	happyIn219+		 (happy_var_1+	)}++happyReduce_511 = happyMonadReduce 5# 215# happyReduction_511+happyReduction_511 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut221 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Open () s happy_var_4))}}+	) (\r -> happyReturn (happyIn220 r))++happyReduce_512 = happySpecReduce_3  216# happyReduction_512+happyReduction_512 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut221 happy_x_1 of { happy_var_1 -> +	case happyOut222 happy_x_3 of { happy_var_3 -> +	happyIn221+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_513 = happySpecReduce_1  216# happyReduction_513+happyReduction_513 happy_x_1+	 =  case happyOut222 happy_x_1 of { happy_var_1 -> +	happyIn221+		 ([happy_var_1]+	)}++happyReduce_514 = happySpecReduce_1  217# happyReduction_514+happyReduction_514 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn222+		 (NoSpec () happy_var_1+	)}++happyReduce_515 = happySpecReduce_3  217# happyReduction_515+happyReduction_515 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut127 happy_x_3 of { happy_var_3 -> +	happyIn222+		 (Unit () happy_var_3+	)}++happyReduce_516 = happyMonadReduce 3# 217# happyReduction_516+happyReduction_516 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOutTok happy_x_1 of { (ID happy_var_1) -> +	case happyOut127 happy_x_3 of { happy_var_3 -> +	( case (map (toLower) happy_var_1) of
+                                          "iostat"   -> return (IOStat () happy_var_3)
+                                          "file"     -> return (File () happy_var_3)
+                                          "status"   -> return (Status () happy_var_3)
+                                          "access"   -> return (Access () happy_var_3)
+                                          "form"     -> return (Form () happy_var_3)
+                                          "recl"     -> return (Recl () happy_var_3)
+                                          "blank"    -> return (Blank () happy_var_3)
+                                          "position" -> return (Position () happy_var_3)
+                                          "action"   -> return (Action () happy_var_3)
+                                          "delim"    -> return (Delim () happy_var_3)
+                                          "pad"      -> return (Pad () happy_var_3)
+                                          s          -> parseError ("incorrect name in spec list: " ++ s))}}+	) (\r -> happyReturn (happyIn222 r))++happyReduce_517 = happySpecReduce_1  218# happyReduction_517+happyReduction_517 happy_x_1+	 =  case happyOut224 happy_x_1 of { happy_var_1 -> +	happyIn223+		 (happy_var_1+	)}++happyReduce_518 = happySpecReduce_1  219# happyReduction_518+happyReduction_518 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn224+		 (happy_var_1+	)}++happyReduce_519 = happySpecReduce_1  220# happyReduction_519+happyReduction_519 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn225+		 (happy_var_1+	)}++happyReduce_520 = happyMonadReduce 4# 221# happyReduction_520+happyReduction_520 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut218 happy_x_2 of { happy_var_2 -> +	case happyOut227 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ PointerAssg () s happy_var_2 happy_var_4))}}}+	) (\r -> happyReturn (happyIn226 r))++happyReduce_521 = happySpecReduce_1  222# happyReduction_521+happyReduction_521 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn227+		 (happy_var_1+	)}++happyReduce_522 = happyMonadReduce 5# 223# happyReduction_522+happyReduction_522 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut229 happy_x_3 of { happy_var_3 -> +	case happyOut230 happy_x_5 of { happy_var_5 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $  Print () s happy_var_3 happy_var_5))}}}+	) (\r -> happyReturn (happyIn228 r))++happyReduce_523 = happyMonadReduce 3# 223# happyReduction_523+happyReduction_523 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut229 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Print () s happy_var_3 []))}}+	) (\r -> happyReturn (happyIn228 r))++happyReduce_524 = happySpecReduce_1  224# happyReduction_524+happyReduction_524 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn229+		 (happy_var_1+	)}++happyReduce_525 = happyMonadReduce 1# 224# happyReduction_525+happyReduction_525 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $ Var () s [(VarName () "*",[])]))+	) (\r -> happyReturn (happyIn229 r))++happyReduce_526 = happySpecReduce_3  225# happyReduction_526+happyReduction_526 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut230 happy_x_1 of { happy_var_1 -> +	case happyOut231 happy_x_3 of { happy_var_3 -> +	happyIn230+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_527 = happySpecReduce_1  225# happyReduction_527+happyReduction_527 happy_x_1+	 =  case happyOut231 happy_x_1 of { happy_var_1 -> +	happyIn230+		 ([happy_var_1]+	)}++happyReduce_528 = happySpecReduce_1  226# happyReduction_528+happyReduction_528 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn231+		 (happy_var_1+	)}++happyReduce_529 = happySpecReduce_3  226# happyReduction_529+happyReduction_529 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut173 happy_x_2 of { happy_var_2 -> +	happyIn231+		 (happy_var_2+	)}++happyReduce_530 = happyMonadReduce 6# 227# happyReduction_530+happyReduction_530 (happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut235 happy_x_4 of { happy_var_4 -> +	case happyOut239 happy_x_6 of { happy_var_6 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ ReadS () s happy_var_4 happy_var_6))}}}+	) (\r -> happyReturn (happyIn232 r))++happyReduce_531 = happyMonadReduce 5# 227# happyReduction_531+happyReduction_531 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut236 happy_x_3 of { happy_var_3 -> +	case happyOut239 happy_x_5 of { happy_var_5 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ ReadS () s happy_var_3 happy_var_5))}}}+	) (\r -> happyReturn (happyIn232 r))++happyReduce_532 = happyMonadReduce 5# 227# happyReduction_532+happyReduction_532 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut235 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ ReadS () s happy_var_4 []))}}+	) (\r -> happyReturn (happyIn232 r))++happyReduce_533 = happySpecReduce_3  228# happyReduction_533+happyReduction_533 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut234 happy_x_3 of { happy_var_3 -> +	happyIn233+		 ((Delimiter ()):happy_var_3+	)}++happyReduce_534 = happySpecReduce_2  228# happyReduction_534+happyReduction_534 happy_x_2+	happy_x_1+	 =  case happyOut234 happy_x_2 of { happy_var_2 -> +	happyIn233+		 (happy_var_2+	)}++happyReduce_535 = happySpecReduce_3  229# happyReduction_535+happyReduction_535 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut236 happy_x_1 of { happy_var_1 -> +	case happyOut234 happy_x_3 of { happy_var_3 -> +	happyIn234+		 (happy_var_1 ++ happy_var_3+	)}}++happyReduce_536 = happySpecReduce_1  229# happyReduction_536+happyReduction_536 happy_x_1+	 =  happyIn234+		 ([Delimiter ()]+	)++happyReduce_537 = happySpecReduce_2  229# happyReduction_537+happyReduction_537 happy_x_2+	happy_x_1+	 =  case happyOut236 happy_x_1 of { happy_var_1 -> +	happyIn234+		 (happy_var_1+	)}++happyReduce_538 = happySpecReduce_2  229# happyReduction_538+happyReduction_538 happy_x_2+	happy_x_1+	 =  case happyOut236 happy_x_1 of { happy_var_1 -> +	happyIn234+		 (happy_var_1 ++ [Delimiter ()]+	)}++happyReduce_539 = happySpecReduce_3  230# happyReduction_539+happyReduction_539 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut236 happy_x_1 of { happy_var_1 -> +	case happyOut235 happy_x_3 of { happy_var_3 -> +	happyIn235+		 (happy_var_1 ++ happy_var_3+	)}}++happyReduce_540 = happySpecReduce_1  230# happyReduction_540+happyReduction_540 happy_x_1+	 =  case happyOut236 happy_x_1 of { happy_var_1 -> +	happyIn235+		 (happy_var_1+	)}++happyReduce_541 = happySpecReduce_1  231# happyReduction_541+happyReduction_541 happy_x_1+	 =  happyIn236+		 ([Delimiter ()]+	)++happyReduce_542 = happyMonadReduce 1# 231# happyReduction_542+happyReduction_542 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (( getSrcSpanNull >>= (\s -> return $ [NoSpec () (Var () s [(VarName () "*", [])])]))+	) (\r -> happyReturn (happyIn236 r))++happyReduce_543 = happySpecReduce_1  231# happyReduction_543+happyReduction_543 happy_x_1+	 =  case happyOutTok happy_x_1 of { (StrConst happy_var_1) -> +	happyIn236+		 ([StringLit () happy_var_1]+	)}++happyReduce_544 = happySpecReduce_2  231# happyReduction_544+happyReduction_544 happy_x_2+	happy_x_1+	 =  case happyOutTok happy_x_1 of { (StrConst happy_var_1) -> +	happyIn236+		 ([StringLit () happy_var_1, Delimiter ()]+	)}++happyReduce_545 = happySpecReduce_3  231# happyReduction_545+happyReduction_545 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut241 happy_x_3 of { happy_var_3 -> +	happyIn236+		 ([End () happy_var_3]+	)}++happyReduce_546 = happySpecReduce_1  231# happyReduction_546+happyReduction_546 happy_x_1+	 =  case happyOut238 happy_x_1 of { happy_var_1 -> +	happyIn236+		 ([happy_var_1]+	)}++happyReduce_547 = happyMonadReduce 1# 231# happyReduction_547+happyReduction_547 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut242 happy_x_1 of { happy_var_1 -> +	( getSrcSpanNull >>= (\s -> return $ [Number () (Con () s happy_var_1)]))}+	) (\r -> happyReturn (happyIn236 r))++happyReduce_548 = happySpecReduce_1  231# happyReduction_548+happyReduction_548 happy_x_1+	 =  case happyOut237 happy_x_1 of { happy_var_1 -> +	happyIn236+		 ([happy_var_1]+	)}++happyReduce_549 = happyMonadReduce 1# 232# happyReduction_549+happyReduction_549 (happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOutTok happy_x_1 of { (DataEditDest happy_var_1) -> +	( getSrcSpanNull >>= (\s -> return $ Floating () (NullExpr () s) (Con () s happy_var_1) ))}+	) (\r -> happyReturn (happyIn237 r))++happyReduce_550 = happyMonadReduce 2# 232# happyReduction_550+happyReduction_550 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut242 happy_x_1 of { happy_var_1 -> +	case happyOutTok happy_x_2 of { (DataEditDest happy_var_2) -> +	( getSrcSpanNull >>= (\s -> return $ Floating () (Con () s happy_var_1) (Con () s happy_var_2)))}}+	) (\r -> happyReturn (happyIn237 r))++happyReduce_551 = happySpecReduce_1  233# happyReduction_551+happyReduction_551 happy_x_1+	 =  case happyOut120 happy_x_1 of { happy_var_1 -> +	happyIn238+		 (NoSpec () happy_var_1+	)}++happyReduce_552 = happySpecReduce_3  234# happyReduction_552+happyReduction_552 happy_x_3+	happy_x_2+	happy_x_1+	 =  case happyOut239 happy_x_1 of { happy_var_1 -> +	case happyOut240 happy_x_3 of { happy_var_3 -> +	happyIn239+		 (happy_var_1++[happy_var_3]+	)}}++happyReduce_553 = happySpecReduce_1  234# happyReduction_553+happyReduction_553 happy_x_1+	 =  case happyOut240 happy_x_1 of { happy_var_1 -> +	happyIn239+		 ([happy_var_1]+	)}++happyReduce_554 = happySpecReduce_1  235# happyReduction_554+happyReduction_554 happy_x_1+	 =  case happyOut120 happy_x_1 of { happy_var_1 -> +	happyIn240+		 (happy_var_1+	)}++happyReduce_555 = happyMonadReduce 2# 236# happyReduction_555+happyReduction_555 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOutTok happy_x_2 of { (Num happy_var_2) -> +	( (getSrcSpan happy_var_1) >>= (\s -> return $ Con () s happy_var_2))}}+	) (\r -> happyReturn (happyIn241 r))++happyReduce_556 = happySpecReduce_1  237# happyReduction_556+happyReduction_556 happy_x_1+	 =  case happyOutTok happy_x_1 of { (Num happy_var_1) -> +	happyIn242+		 (happy_var_1+	)}++happyReduce_557 = happySpecReduce_1  237# happyReduction_557+happyReduction_557 happy_x_1+	 =  happyIn242+		 ("1"+	)++happyReduce_558 = happySpecReduce_1  238# happyReduction_558+happyReduction_558 happy_x_1+	 =  case happyOut120 happy_x_1 of { happy_var_1 -> +	happyIn243+		 (happy_var_1+	)}++happyReduce_559 = happyMonadReduce 2# 239# happyReduction_559+happyReduction_559 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Return () s (NullExpr () s)))}+	) (\r -> happyReturn (happyIn244 r))++happyReduce_560 = happyMonadReduce 3# 239# happyReduction_560+happyReduction_560 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut150 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Return () s happy_var_3))}}+	) (\r -> happyReturn (happyIn244 r))++happyReduce_561 = happySpecReduce_1  240# happyReduction_561+happyReduction_561 happy_x_1+	 =  case happyOut120 happy_x_1 of { happy_var_1 -> +	happyIn245+		 (happy_var_1+	)}++happyReduce_562 = happySpecReduce_1  241# happyReduction_562+happyReduction_562 happy_x_1+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> +	happyIn246+		 (happy_var_1+	)}++happyReduce_563 = happyMonadReduce 3# 242# happyReduction_563+happyReduction_563 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut127 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Rewind () s [NoSpec () happy_var_3]))}}+	) (\r -> happyReturn (happyIn247 r))++happyReduce_564 = happyMonadReduce 5# 242# happyReduction_564+happyReduction_564 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut194 happy_x_4 of { happy_var_4 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Rewind () s happy_var_4))}}+	) (\r -> happyReturn (happyIn247 r))++happyReduce_565 = happyMonadReduce 3# 243# happyReduction_565+happyReduction_565 (happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut249 happy_x_3 of { happy_var_3 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Stop () s happy_var_3))}}+	) (\r -> happyReturn (happyIn248 r))++happyReduce_566 = happyMonadReduce 2# 243# happyReduction_566+happyReduction_566 (happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Stop () s (NullExpr () s)))}+	) (\r -> happyReturn (happyIn248 r))++happyReduce_567 = happySpecReduce_1  244# happyReduction_567+happyReduction_567 happy_x_1+	 =  case happyOut146 happy_x_1 of { happy_var_1 -> +	happyIn249+		 (happy_var_1+	)}++happyReduce_568 = happyMonadReduce 6# 245# happyReduction_568+happyReduction_568 (happy_x_6 `HappyStk`+	happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut254 happy_x_1 of { happy_var_1 -> +	case happyOut252 happy_x_4 of { happy_var_4 -> +	case happyOut251 happy_x_6 of { happy_var_6 -> +	( getSrcSpan happy_var_1 >>= (\s -> return $ Where () s happy_var_4 happy_var_6))}}}+	) (\r -> happyReturn (happyIn250 r))++happyReduce_569 = happySpecReduce_1  246# happyReduction_569+happyReduction_569 happy_x_1+	 =  case happyOut119 happy_x_1 of { happy_var_1 -> +	happyIn251+		 (happy_var_1+	)}++happyReduce_570 = happySpecReduce_1  247# happyReduction_570+happyReduction_570 happy_x_1+	 =  case happyOut182 happy_x_1 of { happy_var_1 -> +	happyIn252+		 (happy_var_1+	)}++happyReduce_571 = happyMonadReduce 5# 248# happyReduction_571+happyReduction_571 (happy_x_5 `HappyStk`+	happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut235 happy_x_3 of { happy_var_3 -> +	case happyOut230 happy_x_5 of { happy_var_5 -> +	( getSrcSpanNull >>= (\s -> return $ Write () s happy_var_3 happy_var_5))}}+	) (\r -> happyReturn (happyIn253 r))++happyReduce_572 = happyMonadReduce 4# 248# happyReduction_572+happyReduction_572 (happy_x_4 `HappyStk`+	happy_x_3 `HappyStk`+	happy_x_2 `HappyStk`+	happy_x_1 `HappyStk`+	happyRest) tk+	 = happyThen (case happyOut235 happy_x_3 of { happy_var_3 -> +	( getSrcSpanNull >>= (\s -> return $ Write () s happy_var_3 []))}+	) (\r -> happyReturn (happyIn253 r))++happyReduce_573 = happyMonadReduce 0# 249# happyReduction_573+happyReduction_573 (happyRest) tk+	 = happyThen (( getSrcLoc')+	) (\r -> happyReturn (happyIn254 r))++happyNewToken action sts stk+	= lexer(\tk -> +	let cont i = happyDoAction i tk action sts stk in+	case tk of {+	TokEOF -> happyDoAction 129# tk action sts stk;+	Arrow -> cont 1#;+	OpPower -> cont 2#;+	OpConcat -> cont 3#;+	OpEQ -> cont 4#;+	OpNE -> cont 5#;+	OpLE -> cont 6#;+	OpGE -> cont 7#;+	OpNOT -> cont 8#;+	OpAND -> cont 9#;+	OpOR -> cont 10#;+	TrueConst -> cont 11#;+	FalseConst -> cont 12#;+	OpLT -> cont 13#;+	OpGT -> cont 14#;+	OpMul -> cont 15#;+	OpDiv -> cont 16#;+	OpAdd -> cont 17#;+	OpSub -> cont 18#;+	Comma -> cont 19#;+	LParen -> cont 20#;+	RParen -> cont 21#;+	OpEquals -> cont 22#;+	Period -> cont 23#;+	ColonColon -> cont 24#;+	Colon -> cont 25#;+	SemiColon -> cont 26#;+	Hash -> cont 27#;+	LBrace -> cont 28#;+	RBrace -> cont 29#;+	LArrCon -> cont 30#;+	RArrCon -> cont 31#;+	DataEditDest happy_dollar_dollar -> cont 32#;+	Percent -> cont 33#;+	Dollar -> cont 34#;+	NewLine -> cont 35#;+	Key "allocate" -> cont 36#;+	Key "allocatable" -> cont 37#;+	Key "Assign" -> cont 38#;+	Key "assignment" -> cont 39#;+	Key "backspace" -> cont 40#;+	Key "block" -> cont 41#;+	Key "call" -> cont 42#;+	Key "character" -> cont 43#;+	Key "close" -> cont 44#;+	Key "common" -> cont 45#;+	Key "complex" -> cont 46#;+	Key "contains" -> cont 47#;+	Key "continue" -> cont 48#;+	Key "cycle" -> cont 49#;+	Key "data" -> cont 50#;+	Key "deallocate" -> cont 51#;+	Key "dimension" -> cont 52#;+	Key "do" -> cont 53#;+	Key "elemental" -> cont 54#;+	Key "else" -> cont 55#;+	Key "elseif" -> cont 56#;+	Key "end" -> cont 57#;+	Key "endif" -> cont 58#;+	Key "enddo" -> cont 59#;+	Key "endfile" -> cont 60#;+	Key "equivalence" -> cont 61#;+	Key "exit" -> cont 62#;+	Key "external" -> cont 63#;+	Key "forall" -> cont 64#;+	Key "foreach" -> cont 65#;+	Key "format" -> cont 66#;+	Key "function" -> cont 67#;+	Key "goto" -> cont 68#;+	Key "iolength" -> cont 69#;+	Key "if" -> cont 70#;+	Key "implicit" -> cont 71#;+	Key "in" -> cont 72#;+	Key "include" -> cont 73#;+	Key "inout" -> cont 74#;+	Key "integer" -> cont 75#;+	Key "intent" -> cont 76#;+	Key "interface" -> cont 77#;+	Key "intrinsic" -> cont 78#;+	Key "inquire" -> cont 79#;+	Key "kind" -> cont 80#;+	Key "len" -> cont 81#;+	Key "logical" -> cont 82#;+	Key "module" -> cont 83#;+	Key "namelist" -> cont 84#;+	Key "none" -> cont 85#;+	Key "nullify" -> cont 86#;+	Key "null" -> cont 87#;+	Key "open" -> cont 88#;+	Key "operator" -> cont 89#;+	Key "optional" -> cont 90#;+	Key "out" -> cont 91#;+	Key "parameter" -> cont 92#;+	Key "pause" -> cont 93#;+	Key "pointer" -> cont 94#;+	Key "print" -> cont 95#;+	Key "private" -> cont 96#;+	Key "procedure" -> cont 97#;+	Key "program" -> cont 98#;+	Key "pure" -> cont 99#;+	Key "public" -> cont 100#;+	Key "real" -> cont 101#;+	Key "read" -> cont 102#;+	Key "recursive" -> cont 103#;+	Key "result" -> cont 104#;+	Key "return" -> cont 105#;+	Key "rewind" -> cont 106#;+	Key "save" -> cont 107#;+	Key "sequence" -> cont 108#;+	Key "sometype" -> cont 109#;+	Key "sqrt" -> cont 110#;+	Key "stat" -> cont 111#;+	Key "stop" -> cont 112#;+	StrConst happy_dollar_dollar -> cont 113#;+	LitConst 'z' happy_dollar_dollar -> cont 114#;+	Key "subroutine" -> cont 115#;+	Key "target" -> cont 116#;+	Key "then" -> cont 117#;+	Key "type" -> cont 118#;+	Key "unit" -> cont 119#;+	Num "1" -> cont 120#;+	Key "use" -> cont 121#;+	Key "volatile" -> cont 122#;+	Key "where" -> cont 123#;+	Key "write" -> cont 124#;+	ID happy_dollar_dollar -> cont 125#;+	Num happy_dollar_dollar -> cont 126#;+	Num happy_dollar_dollar -> cont 127#;+	Text happy_dollar_dollar -> cont 128#;+	_ -> happyError' tk+	})++happyError_ 129# tk = happyError' tk+happyError_ _ tk = happyError' tk++happyThen :: () => P a -> (a -> P b) -> P b+happyThen = (>>=)+happyReturn :: () => a -> P a+happyReturn = (return)+happyThen1 = happyThen+happyReturn1 :: () => a -> P a+happyReturn1 = happyReturn+happyError' :: () => (Token) -> P a+happyError' tk = (\token -> happyError) tk++parser = happySomeParser where+  happySomeParser = happyThen (happyParse 0#) (\x -> happyReturn (happyOut6 x))++include_parser = happySomeParser where+  happySomeParser = happyThen (happyParse 1#) (\x -> happyReturn (happyOut5 x))++happySeq = happyDontSeq+++getSrcLoc' = do (SrcLoc f l c) <- getSrcLoc
+                return (SrcLoc f l (c - 1))
+
+-- Initial annotations from parser
+
+-- Type of annotations
+
+type A0 = () 
+
+getSrcSpan :: SrcLoc -> P (SrcLoc, SrcLoc)
+getSrcSpan l = do l' <- getSrcLoc'
+                  return $ (l, l')
+
+-- 0-length span at current position
+
+getSrcSpanNull :: P (SrcLoc, SrcLoc)
+getSrcSpanNull = do l <- getSrcLoc'
+                    return $ (l, l)
+
+spanTrans x y = let (l, _) = srcSpan x
+		    (_, l') = srcSpan y
+                in (l, l')
+
+spanTrans' x (_, l') = let (l, _) = srcSpan x
+                       in (l, l')
+
+spanExtendR t x = let (l, l') = srcSpan t
+                  in (l, SrcLoc (srcFilename l') (srcLine l') (srcColumn l' + x))
+
+spanExtR (l, l') x = (l, SrcLoc (srcFilename l') (srcLine l') (srcColumn l' + x))
+
+spanExtendL t x = let (l, l') = srcSpan t
+                  in (SrcLoc (srcFilename l) (srcLine l) (srcColumn l - x), l')
+
+happyError :: P a
+happyError = parseError "syntax error (from parser)"
+
+parseError :: String -> P a
+parseError m = do srcloc <- getSrcLoc'
+		  fail (srcFilename srcloc ++ ": line " ++ show (srcLine srcloc) ++ " column " ++ show (srcColumn srcloc) ++ ": " ++ m ++ "\n")
+
+tokenFollows s = case alexScan ('\0',[],s) 0 of
+                    AlexEOF                 -> "end of file"
+                    AlexError  _            -> ""
+                    AlexSkip  (_,b,t) len   -> tokenFollows t
+	            AlexToken (_,b,t) len _ -> take len s
+
+parse :: String -> Program A0
+parse p = case (runParser parser (pre_process p)) of 
+	    (ParseOk p)       -> p
+            (ParseFailed l e) ->  error e
+
+--parse :: String -> [Program]
+--parse = clean . parser . fixdecls . scan
+
+parseF :: String -> IO ()
+parseF f = do s <- readFile f
+              print (parse s)
+
+--scanF :: String -> IO ()
+--scanF f = do s <- readFile f
+--             print (scan s)
+
+fst3 (a,b,c) = a
+snd3 (a,b,c) = b
+trd3 (a,b,c) = c
+
+fst4 (a,b,c,d) = a
+snd4 (a,b,c,d) = b
+trd4 (a,b,c,d) = c
+frh4 (a,b,c,d) = d
+
+cmpNames :: SubName A0 -> String -> String -> P (SubName A0)
+cmpNames x "" z                        = return x
+cmpNames (SubName a x) y z | x==y      = return (SubName a x)
+                           | otherwise = parseError (z ++ " name \""++x++"\" does not match \""++y++"\" in end " ++ z ++ " statement\n")
+cmpNames s y z                       = parseError (z ++" names do not match\n")
+
+					   
+isEmpty :: [a] -> Bool
+isEmpty [] = True
+isEmpty _  = False
+
+expr2array_spec (Bound _ _ e e') = (e, e') -- possibly a bit dodgy- uses undefined
+expr2array_spec e = (NullExpr () (srcSpan e) , e)+{-# LINE 1 "templates/GenericTemplate.hs" #-}+{-# LINE 1 "templates/GenericTemplate.hs" #-}+{-# LINE 1 "<built-in>" #-}+{-# LINE 1 "templates/GenericTemplate.hs" #-}+-- Id: GenericTemplate.hs,v 1.26 2005/01/14 14:47:22 simonmar Exp +++{-# LINE 13 "templates/GenericTemplate.hs" #-}++++++-- Do not remove this comment. Required to fix CPP parsing when using GCC and a clang-compiled alex.+#if __GLASGOW_HASKELL__ > 706+#define LT(n,m) ((Happy_GHC_Exts.tagToEnum# (n Happy_GHC_Exts.<# m)) :: Bool)+#define GTE(n,m) ((Happy_GHC_Exts.tagToEnum# (n Happy_GHC_Exts.>=# m)) :: Bool)+#define EQ(n,m) ((Happy_GHC_Exts.tagToEnum# (n Happy_GHC_Exts.==# m)) :: Bool)+#else+#define LT(n,m) (n Happy_GHC_Exts.<# m)+#define GTE(n,m) (n Happy_GHC_Exts.>=# m)+#define EQ(n,m) (n Happy_GHC_Exts.==# m)+#endif++{-# LINE 46 "templates/GenericTemplate.hs" #-}+++data Happy_IntList = HappyCons Happy_GHC_Exts.Int# Happy_IntList+++++++{-# LINE 67 "templates/GenericTemplate.hs" #-}+++{-# LINE 77 "templates/GenericTemplate.hs" #-}+++++++++++infixr 9 `HappyStk`+data HappyStk a = HappyStk a (HappyStk a)++-----------------------------------------------------------------------------+-- starting the parse++happyParse start_state = happyNewToken start_state notHappyAtAll notHappyAtAll++-----------------------------------------------------------------------------+-- Accepting the parse++-- If the current token is 0#, it means we've just accepted a partial+-- parse (a %partial parser).  We must ignore the saved token on the top of+-- the stack in this case.+happyAccept 0# tk st sts (_ `HappyStk` ans `HappyStk` _) =+        happyReturn1 ans+happyAccept j tk st sts (HappyStk ans _) = +        (happyTcHack j (happyTcHack st)) (happyReturn1 ans)++-----------------------------------------------------------------------------+-- Arrays only: do the next action++++happyDoAction i tk st+        = {- nothing -}+          ++          case action of+                0#           -> {- nothing -}+                                     happyFail i tk st+                -1#          -> {- nothing -}+                                     happyAccept i tk st+                n | LT(n,(0# :: Happy_GHC_Exts.Int#)) -> {- nothing -}+                                                   +                                                   (happyReduceArr Happy_Data_Array.! rule) i tk st+                                                   where rule = (Happy_GHC_Exts.I# ((Happy_GHC_Exts.negateInt# ((n Happy_GHC_Exts.+# (1# :: Happy_GHC_Exts.Int#))))))+                n                 -> {- nothing -}+                                     ++                                     happyShift new_state i tk st+                                     where new_state = (n Happy_GHC_Exts.-# (1# :: Happy_GHC_Exts.Int#))+   where off    = indexShortOffAddr happyActOffsets st+         off_i  = (off Happy_GHC_Exts.+# i)+         check  = if GTE(off_i,(0# :: Happy_GHC_Exts.Int#))+                  then EQ(indexShortOffAddr happyCheck off_i, i)+                  else False+         action+          | check     = indexShortOffAddr happyTable off_i+          | otherwise = indexShortOffAddr happyDefActions st+++indexShortOffAddr (HappyA# arr) off =+        Happy_GHC_Exts.narrow16Int# i+  where+        i = Happy_GHC_Exts.word2Int# (Happy_GHC_Exts.or# (Happy_GHC_Exts.uncheckedShiftL# high 8#) low)+        high = Happy_GHC_Exts.int2Word# (Happy_GHC_Exts.ord# (Happy_GHC_Exts.indexCharOffAddr# arr (off' Happy_GHC_Exts.+# 1#)))+        low  = Happy_GHC_Exts.int2Word# (Happy_GHC_Exts.ord# (Happy_GHC_Exts.indexCharOffAddr# arr off'))+        off' = off Happy_GHC_Exts.*# 2#++++++data HappyAddr = HappyA# Happy_GHC_Exts.Addr#+++++-----------------------------------------------------------------------------+-- HappyState data type (not arrays)+++{-# LINE 170 "templates/GenericTemplate.hs" #-}++-----------------------------------------------------------------------------+-- Shifting a token++happyShift new_state 0# tk st sts stk@(x `HappyStk` _) =+     let i = (case Happy_GHC_Exts.unsafeCoerce# x of { (Happy_GHC_Exts.I# (i)) -> i }) in+--     trace "shifting the error token" $+     happyDoAction i tk new_state (HappyCons (st) (sts)) (stk)++happyShift new_state i tk st sts stk =+     happyNewToken new_state (HappyCons (st) (sts)) ((happyInTok (tk))`HappyStk`stk)++-- happyReduce is specialised for the common cases.++happySpecReduce_0 i fn 0# tk st sts stk+     = happyFail 0# tk st sts stk+happySpecReduce_0 nt fn j tk st@((action)) sts stk+     = happyGoto nt j tk st (HappyCons (st) (sts)) (fn `HappyStk` stk)++happySpecReduce_1 i fn 0# tk st sts stk+     = happyFail 0# tk st sts stk+happySpecReduce_1 nt fn j tk _ sts@((HappyCons (st@(action)) (_))) (v1`HappyStk`stk')+     = let r = fn v1 in+       happySeq r (happyGoto nt j tk st sts (r `HappyStk` stk'))++happySpecReduce_2 i fn 0# tk st sts stk+     = happyFail 0# tk st sts stk+happySpecReduce_2 nt fn j tk _ (HappyCons (_) (sts@((HappyCons (st@(action)) (_))))) (v1`HappyStk`v2`HappyStk`stk')+     = let r = fn v1 v2 in+       happySeq r (happyGoto nt j tk st sts (r `HappyStk` stk'))++happySpecReduce_3 i fn 0# tk st sts stk+     = happyFail 0# tk st sts stk+happySpecReduce_3 nt fn j tk _ (HappyCons (_) ((HappyCons (_) (sts@((HappyCons (st@(action)) (_))))))) (v1`HappyStk`v2`HappyStk`v3`HappyStk`stk')+     = let r = fn v1 v2 v3 in+       happySeq r (happyGoto nt j tk st sts (r `HappyStk` stk'))++happyReduce k i fn 0# tk st sts stk+     = happyFail 0# tk st sts stk+happyReduce k nt fn j tk st sts stk+     = case happyDrop (k Happy_GHC_Exts.-# (1# :: Happy_GHC_Exts.Int#)) sts of+         sts1@((HappyCons (st1@(action)) (_))) ->+                let r = fn stk in  -- it doesn't hurt to always seq here...+                happyDoSeq r (happyGoto nt j tk st1 sts1 r)++happyMonadReduce k nt fn 0# tk st sts stk+     = happyFail 0# tk st sts stk+happyMonadReduce k nt fn j tk st sts stk =+      case happyDrop k (HappyCons (st) (sts)) of+        sts1@((HappyCons (st1@(action)) (_))) ->+          let drop_stk = happyDropStk k stk in+          happyThen1 (fn stk tk) (\r -> happyGoto nt j tk st1 sts1 (r `HappyStk` drop_stk))++happyMonad2Reduce k nt fn 0# tk st sts stk+     = happyFail 0# tk st sts stk+happyMonad2Reduce k nt fn j tk st sts stk =+      case happyDrop k (HappyCons (st) (sts)) of+        sts1@((HappyCons (st1@(action)) (_))) ->+         let drop_stk = happyDropStk k stk++             off = indexShortOffAddr happyGotoOffsets st1+             off_i = (off Happy_GHC_Exts.+# nt)+             new_state = indexShortOffAddr happyTable off_i++++          in+          happyThen1 (fn stk tk) (\r -> happyNewToken new_state sts1 (r `HappyStk` drop_stk))++happyDrop 0# l = l+happyDrop n (HappyCons (_) (t)) = happyDrop (n Happy_GHC_Exts.-# (1# :: Happy_GHC_Exts.Int#)) t++happyDropStk 0# l = l+happyDropStk n (x `HappyStk` xs) = happyDropStk (n Happy_GHC_Exts.-# (1#::Happy_GHC_Exts.Int#)) xs++-----------------------------------------------------------------------------+-- Moving to a new state after a reduction+++happyGoto nt j tk st = +   {- nothing -}+   happyDoAction j tk new_state+   where off = indexShortOffAddr happyGotoOffsets st+         off_i = (off Happy_GHC_Exts.+# nt)+         new_state = indexShortOffAddr happyTable off_i+++++-----------------------------------------------------------------------------+-- Error recovery (0# is the error token)++-- parse error if we are in recovery and we fail again+happyFail 0# tk old_st _ stk@(x `HappyStk` _) =+     let i = (case Happy_GHC_Exts.unsafeCoerce# x of { (Happy_GHC_Exts.I# (i)) -> i }) in+--      trace "failing" $ +        happyError_ i tk++{-  We don't need state discarding for our restricted implementation of+    "error".  In fact, it can cause some bogus parses, so I've disabled it+    for now --SDM++-- discard a state+happyFail  0# tk old_st (HappyCons ((action)) (sts)) +                                                (saved_tok `HappyStk` _ `HappyStk` stk) =+--      trace ("discarding state, depth " ++ show (length stk))  $+        happyDoAction 0# tk action sts ((saved_tok`HappyStk`stk))+-}++-- Enter error recovery: generate an error token,+--                       save the old token and carry on.+happyFail  i tk (action) sts stk =+--      trace "entering error recovery" $+        happyDoAction 0# tk action sts ( (Happy_GHC_Exts.unsafeCoerce# (Happy_GHC_Exts.I# (i))) `HappyStk` stk)++-- Internal happy errors:++notHappyAtAll :: a+notHappyAtAll = error "Internal Happy error\n"++-----------------------------------------------------------------------------+-- Hack to get the typechecker to accept our action functions+++happyTcHack :: Happy_GHC_Exts.Int# -> a -> a+happyTcHack x y = y+{-# INLINE happyTcHack #-}+++-----------------------------------------------------------------------------+-- Seq-ing.  If the --strict flag is given, then Happy emits +--      happySeq = happyDoSeq+-- otherwise it emits+--      happySeq = happyDontSeq++happyDoSeq, happyDontSeq :: a -> b -> b+happyDoSeq   a b = a `seq` b+happyDontSeq a b = b++-----------------------------------------------------------------------------+-- Don't inline any functions from the template.  GHC has a nasty habit+-- of deciding to inline happyGoto everywhere, which increases the size of+-- the generated parser quite a bit.+++{-# NOINLINE happyDoAction #-}+{-# NOINLINE happyTable #-}+{-# NOINLINE happyCheck #-}+{-# NOINLINE happyActOffsets #-}+{-# NOINLINE happyGotoOffsets #-}+{-# NOINLINE happyDefActions #-}++{-# NOINLINE happyShift #-}+{-# NOINLINE happySpecReduce_0 #-}+{-# NOINLINE happySpecReduce_1 #-}+{-# NOINLINE happySpecReduce_2 #-}+{-# NOINLINE happySpecReduce_3 #-}+{-# NOINLINE happyReduce #-}+{-# NOINLINE happyMonadReduce #-}+{-# NOINLINE happyGoto #-}+{-# NOINLINE happyFail #-}++-- end of Happy Template.+
+ language-fortran.cabal view
@@ -0,0 +1,29 @@+name:                language-fortran+version:             0.2.7+synopsis:            Fortran lexer and parser, language support, and extensions. +description:         +    Lexer and parser for Fortran roughly supporting standards from FORTRAN 77 to Fortran 2003 (but with some patches and rough edges). Also includes language extension support for units-of-measure typing.+license:             BSD3+license-file:        LICENSE+author:              Jason Dagit, Dominic Orchard, Oleg Oshmyan+maintainer:          dagitj@gmail.com, dom.orchard@gmail.com+-- copyright:           +category:            Language+build-type:          Simple+cabal-version:       >=1.8++library+  exposed-modules:     Language.Fortran.Parser,+                       Language.Fortran.Lexer,+                       Language.Fortran.Pretty,+                       Language.Fortran.PreProcess, +                       Language.Fortran+  -- other-modules:       +  build-depends:       base >=4.0 && < 5,+                       syb >= 0.3,+                       haskell-src >= 1.0,+                       parsec, 	       		 +                       array >= 0.4++  hs-source-dirs:      src+  build-tools: alex, happy
+ src/Language/Fortran.hs view
@@ -0,0 +1,504 @@+-- +-- Fortran.hs  - +-- Based on FortranP.hs from Parameterized Fortran by Martin Erwig.+--++{-# LANGUAGE DeriveFunctor, DeriveDataTypeable #-}++module Language.Fortran where++--------------------------------------------------------------------------+-- IMPORTS+---------------------------------------------------------------------------++import Data.Generics -- Typeable class and boilerplate generic functions+                     -- All AST nodes are members of 'Data' and 'Typeable' so that+                     -- data type generic programming can be done with the AST++import Data.Maybe+import Data.List+++import Language.Haskell.Syntax (SrcLoc(..))++-----------------------------------------------------------------------------------+-- Language definition for Fortran (covers a lot of standards, but still incomplete)+--+--  The AST is parameterised by type variable p which allows all nodes of the AST+--  to be annotated. The default annotation is (). This is useful for analysis. +--    The 'Tagged' type class provides the function 'tag :: d a -> a' to +--    extract these annotations.++--  Furthermore, many nodes of the tree have a 'SrcSpan' which is the start and end+--  locations of the syntax in the source file (including whitespace etc.)+--  This is useful for error reporting and refactoring. +--    The 'Span' type class provides the function 'srcSpan :: d a -> SrcSpan' which+--    which extracts the span (where possible)++-----------------------------------------------------------------------------------++++type SrcSpan = (SrcLoc, SrcLoc)++type Variable = String++type ProgName = String               -- Fortran program names++data SubName p  = SubName p String   -- Fortran subroutine names+                 | NullSubName p+                 deriving (Show, Functor, Typeable, Data, Eq)+ +data VarName  p = VarName p Variable +                  deriving (Show, Functor, Typeable, Data, Eq, Read)++data ArgName  p = ArgName p String+                | ASeq p (ArgName p) (ArgName p)+                | NullArg p+                 deriving (Show, Functor, Typeable, Data, Eq)++-- Syntax defintions+--++data Arg      p = Arg p (ArgName p) SrcSpan -- the src span denotes the end of the arg list before ')'+                  deriving (Show, Functor, Typeable, Data, Eq)++data ArgList  p = ArgList p (Expr p)+                  deriving (Show, Functor, Typeable, Data, Eq)++type Program p = [ProgUnit p]++               -- Prog type   (type of result)   name      args  (result) body    use's  +data ProgUnit  p = Main      p SrcSpan                      (SubName p)  (Arg p)  (Block p) [ProgUnit p]+                | Sub        p SrcSpan (Maybe (BaseType p)) (SubName p)  (Arg p)  (Block p)+                | Function   p SrcSpan (Maybe (BaseType p)) (SubName p)  (Arg p)  (Maybe (VarName p)) (Block p)+                | Module     p SrcSpan                      (SubName p)  (Uses p) (Implicit p) (Decl p) [ProgUnit p]+                | BlockData  p SrcSpan                      (SubName p)  (Uses p) (Implicit p) (Decl p)+                | PSeq       p SrcSpan (ProgUnit p) (ProgUnit p)   -- sequence of programs+                | Prog       p SrcSpan (ProgUnit p)                -- useful for {#p: #q : program ... }+                | NullProg   p SrcSpan                             -- null+                | IncludeProg p SrcSpan (Decl p) (Maybe (Fortran p))+                deriving (Show, Functor, Typeable, Data, Eq)++data Implicit p = ImplicitNone p | ImplicitNull p +                -- implicit none or no implicit +                deriving (Show, Functor, Typeable, Data, Eq)++type Renames = [(Variable, Variable)] -- renames for "use"s ++data UseBlock p = UseBlock (Uses p) SrcLoc deriving (Show, Functor, Typeable, Data, Eq)++data Uses p  = Use p (String, Renames) (Uses p) p  -- (second 'p' let's you annotate the 'cons' part of the cell)+                | UseNil p deriving (Show, Functor, Typeable, Data, Eq)++             --       use's     implicit  decls  stmts+data Block    p = Block p  (UseBlock p) (Implicit p) SrcSpan (Decl p) (Fortran p)+                deriving (Show, Functor, Typeable, Data, Eq)++data Decl     p = Decl           p SrcSpan [(Expr p, Expr p, Maybe Int)] (Type p)      -- declaration stmt+                | Namelist       p [(Expr p, [Expr p])]                     -- namelist declaration+                | DataDecl       p (DataForm p)+                | Equivalence    p SrcSpan [(Expr p)]+                | AttrStmt       p (Attr p) [(Expr p, Expr p, Maybe Int)] +                | AccessStmt     p (Attr p) [GSpec p]                       -- access stmt+                | ExternalStmt   p [String]                                 -- external stmt+                | Interface      p (Maybe (GSpec p)) [InterfaceSpec p]      -- interface declaration+                | Common         p SrcSpan (Maybe String) [Expr p]+                | DerivedTypeDef p SrcSpan (SubName p) [Attr p] [Attr p] [Decl p]  -- derivified+                | Include        p (Expr p)                                -- include stmt+                | DSeq           p (Decl p) (Decl p)                       -- list of decls+                | TextDecl       p String                                  -- cpp switches to carry over+                | NullDecl       p SrcSpan                                 -- null+                -- units-of-measure extension+                | MeasureUnitDef p SrcSpan [(MeasureUnit, MeasureUnitSpec p)]+                  deriving (Show, Functor, Typeable, Data, Eq)++             -- BaseType  dimensions     type        Attributes   kind   len +data Type     p = BaseType p                    (BaseType p) [Attr p] (Expr p) (Expr p)+                | ArrayT   p [(Expr p, Expr p)] (BaseType p) [Attr p] (Expr p) (Expr p)+                  deriving (Show, Functor, Typeable, Data, Eq)++data BaseType p = Integer p | Real p | Character p | SomeType p | DerivedType p (SubName p)+                | Recursive p | Pure p | Elemental p | Logical p | Complex p+                  deriving (Show, Functor, Typeable, Data, Eq)++data Attr     p = Parameter p+                | Allocatable p+                | External p+                | Intent p (IntentAttr p) +                | Intrinsic p+                | Optional p+                | Pointer p+                | Save p+                | Target p+                | Volatile p+                | Public p+                | Private p+                | Sequence p+                | Dimension p [(Expr p, Expr p)]+                -- units-of-measure extension+                | MeasureUnit p (MeasureUnitSpec p)+              deriving (Show, Functor, Typeable, Data, Eq)+			  ++{- start: units-of-measure extension -}+type MeasureUnit = String++data MeasureUnitSpec p = UnitProduct p [(MeasureUnit, Fraction p)]+                       | UnitQuotient p [(MeasureUnit, Fraction p)] [(MeasureUnit, Fraction p)]+                       | UnitNone p+                         deriving (Show, Functor, Typeable, Data, Eq)++data Fraction p = IntegerConst p String+                | FractionConst p String String+                | NullFraction p+                  deriving (Show, Functor, Typeable, Data, Eq)+{- end -}+++data GSpec   p = GName p (Expr p) | GOper p (BinOp p) | GAssg p+                 deriving (Show, Functor, Typeable, Data, Eq)+			  +data InterfaceSpec p = FunctionInterface   p (SubName p) (Arg p) (Uses p) (Implicit p) (Decl p)+                     | SubroutineInterface p (SubName p) (Arg p) (Uses p) (Implicit p) (Decl p)+                     | ModuleProcedure     p [(SubName p)]+                       deriving (Show, Functor, Typeable, Data, Eq)+		+data DataForm p = Data p [(Expr p, Expr p)] deriving (Show, Functor, Typeable, Data, Eq) -- data declaration+		   +data IntentAttr p = In p+                  | Out p+                  | InOut p+                    deriving (Show, Functor, Typeable, Data, Eq)+				+data Fortran  p = Assg p SrcSpan (Expr p) (Expr p) +                | For  p SrcSpan (VarName p) (Expr p) (Expr p) (Expr p) (Fortran p)+                | FSeq p SrcSpan (Fortran p) (Fortran p)+                | If   p SrcSpan (Expr p) (Fortran p) [((Expr p),(Fortran p))] (Maybe (Fortran p))+                | Allocate p SrcSpan (Expr p) (Expr p)+                | Backspace p SrcSpan [Spec p]+                | Call p SrcSpan (Expr p) (ArgList p)+                | Open p SrcSpan [Spec p]+                | Close p SrcSpan [Spec p]+                | Continue p SrcSpan +                | Cycle p SrcSpan String+                | DataStmt p SrcSpan (DataForm p)+                | Deallocate p SrcSpan [(Expr p)] (Expr p)+                | Endfile p SrcSpan [Spec p]+                | Exit p SrcSpan String+                | Format p SrcSpan [Spec p]+                | Forall p SrcSpan ([(String,(Expr p),(Expr p),(Expr p))],(Expr p)) (Fortran p)+                | Goto p SrcSpan String+                | Nullify p SrcSpan [(Expr p)]+                | Inquire p SrcSpan [Spec p] [(Expr p)]+                | Pause p SrcSpan String+                | Rewind p SrcSpan [Spec p]+                | Stop p SrcSpan (Expr p)+                | Where p SrcSpan (Expr p) (Fortran p)+                | Write p SrcSpan [Spec p] [(Expr p)]+                | PointerAssg p SrcSpan  (Expr p) (Expr p)+                | Return p SrcSpan  (Expr p)+                | Label p SrcSpan String (Fortran p)+                | Print p SrcSpan (Expr p) [(Expr p)]+                | ReadS p SrcSpan [Spec p] [(Expr p)]+                | TextStmt p SrcSpan String     -- cpp switches to carry over+                | NullStmt p SrcSpan+                  deriving (Show, Functor, Typeable, Data, Eq)++-- type Bound    = ((Expr p),(Expr p))++data Expr  p = Con p SrcSpan String+             | ConL p SrcSpan Char String+             | ConS p SrcSpan String  -- String representing a constant+             | Var p SrcSpan  [(VarName p, [Expr p])]+             | Bin p SrcSpan  (BinOp p) (Expr p) (Expr p)+             | Unary p SrcSpan (UnaryOp p) (Expr p)+             | CallExpr p SrcSpan (Expr p) (ArgList p)+             | NullExpr p SrcSpan+             | Null p SrcSpan +             | ESeq p SrcSpan (Expr p) (Expr p)+             | Bound p SrcSpan (Expr p) (Expr p)+             | Sqrt p SrcSpan (Expr p)+             | ArrayCon p SrcSpan [(Expr p)]+             | AssgExpr p SrcSpan String (Expr p)+               deriving (Show, Functor, Typeable ,Data, Eq)++data BinOp   p = Plus p+               | Minus p+               | Mul p+               | Div p+               | Or p+               | And p+               | Concat p+               | Power p+               | RelEQ p+               | RelNE p+               | RelLT p+               | RelLE p+               | RelGT p+               | RelGE p+                deriving (Show, Functor, Typeable, Data, Eq)++data UnaryOp  p = UMinus p | Not p+                deriving (Show, Functor,Typeable,Data, Eq)++data Spec     p = Access   p (Expr p)+              | Action     p (Expr p)+              | Advance    p (Expr p)+              | Blank      p (Expr p)+              | Delim      p (Expr p)+              | Direct     p (Expr p)+              | End        p (Expr p)+              | Err        p (Expr p)+              | ExFile     p (Expr p)+              | Exist      p (Expr p)+              | Eor        p (Expr p)+              | File       p (Expr p)  +              | FMT        p (Expr p)+              | Form       p (Expr p)+              | Formatted  p (Expr p)+              | Unformatted  p (Expr p)+              | IOLength   p (Expr p)+              | IOStat     p (Expr p)+              | Name       p (Expr p)+              | Named      p (Expr p)+              | NoSpec     p (Expr p)+              | Number     p (Expr p)+              | Floating   p (Expr p) (Expr p)+              | NextRec    p (Expr p)+              | NML        p (Expr p)+              | Opened     p (Expr p) +              | Pad        p (Expr p)+              | Position   p (Expr p)+              | Read       p (Expr p)+              | ReadWrite  p (Expr p)+              | Rec        p (Expr p) +              | Recl       p (Expr p) +              | Sequential p (Expr p)+              | Size       p (Expr p)+              | Status     p (Expr p)+              | StringLit     p String +              | Unit       p (Expr p)+              | WriteSp    p (Expr p)+              | Delimiter  p +                deriving (Show, Functor,Typeable,Data, Eq)++-- Extract span information from the source tree++class Span t where+    srcSpan :: t -> (SrcLoc, SrcLoc)++instance Span (Block a) where+    srcSpan (Block _ _ _ sp _ _) = sp++instance Span (Decl a) where+    srcSpan (Decl _ sp _ _)               = sp+    srcSpan (NullDecl _ sp)               = sp+    srcSpan (Common _ sp _ _)             = sp+    srcSpan (Equivalence x sp _)          = sp+    srcSpan (DerivedTypeDef x sp _ _ _ _) = sp+    srcSpan (MeasureUnitDef x sp _)       = sp+    srcSpan _ = error "No span for non common/equiv/type/ null declarations"++instance Span (ProgUnit a) where+    srcSpan (Main x sp _ _ _ _)       = sp+    srcSpan (Sub x sp _ _ _ _)        = sp+    srcSpan (Function x sp _ _ _ _ _) = sp+    srcSpan (Module x sp _ _ _ _ _ )  = sp+    srcSpan (BlockData x sp _ _ _ _)  = sp+    srcSpan (PSeq x sp _ _)           = sp+    srcSpan (Prog x sp _)             = sp+    srcSpan (NullProg x sp)           = sp++instance Span (Expr a) where+    srcSpan (Con x sp _)        = sp+    srcSpan (ConS x sp _)       = sp+    srcSpan (Var x sp _ )       = sp+    srcSpan (Bin x sp _ _ _)    = sp+    srcSpan (Unary x sp _ _)    = sp+    srcSpan (CallExpr x sp _ _) = sp+    srcSpan (NullExpr x sp)     = sp+    srcSpan (Null x sp)         = sp+    srcSpan (ESeq x sp _ _)     = sp+    srcSpan (Bound x sp _ _)    = sp+    srcSpan (Sqrt x sp _)       = sp+    srcSpan (ArrayCon x sp _)   = sp+    srcSpan (AssgExpr x sp _ _) = sp++instance Span (Fortran a) where+    srcSpan (Assg x sp e1 e2)        = sp+    srcSpan (For x sp v e1 e2 e3 fs) = sp+    srcSpan (FSeq x sp f1 f2)        = sp+    srcSpan (If x sp e f1 fes f3)    = sp+    srcSpan (Allocate x sp e1 e2)    = sp+    srcSpan (Backspace x sp _)       = sp+    srcSpan (Call x sp e as)         = sp+    srcSpan (Open x sp s)            = sp+    srcSpan (Close x sp s)           = sp +    srcSpan (Continue x sp)          = sp+    srcSpan (Cycle x sp s)           = sp+    srcSpan (DataStmt x sp _)        = sp+    srcSpan (Deallocate x sp es e)   = sp+    srcSpan (Endfile x sp s)         = sp+    srcSpan (Exit x sp s)            = sp+    srcSpan (Format x sp _)          = sp+    srcSpan (Forall x sp es f)       = sp+    srcSpan (Goto x sp s)            = sp+    srcSpan (Nullify x sp e)         = sp+    srcSpan (Inquire x sp s e)       = sp+    srcSpan (Pause x sp _)           = sp+    srcSpan (Rewind x sp s)          = sp +    srcSpan (Stop x sp e)            = sp+    srcSpan (Where x sp e f)         = sp +    srcSpan (Write x sp s e)         = sp+    srcSpan (PointerAssg x sp e1 e2) = sp+    srcSpan (Return x sp e)          = sp+    srcSpan (Label x sp s f)         = sp+    srcSpan (Print x sp e es)        = sp+    srcSpan (ReadS x sp s e)         = sp+    srcSpan (TextStmt x sp s)        = sp+    srcSpan (NullStmt x sp)          = sp++-- Extract the tag ++class Tagged d where+    tag :: d a -> a ++instance Tagged Attr where+    tag (Parameter x)   = x+    tag (Allocatable x) = x+    tag (External    x) = x+    tag (Intent x    _) = x+    tag (Intrinsic x)   = x+    tag (Optional x)    = x+    tag (Pointer x)     = x+    tag (Save x)        = x+    tag (Target x)      = x+    tag (Volatile x)    = x+    tag (Public x)      = x+    tag (Private x)     = x+    tag (Sequence x)    = x+    tag (Dimension x _) = x++instance Tagged BaseType where+    tag (Integer x)    = x+    tag (Real x)       = x+    tag (Character x)   = x+    tag (SomeType x)   = x+    tag (DerivedType x _) = x+    tag (Recursive x)  = x+    tag (Pure x)       = x+    tag (Elemental x)  = x+    tag (Logical x)    = x+    tag (Complex x)    = x++instance Tagged SubName where+    tag (SubName x _)  = x+    tag (NullSubName x) = x++instance Tagged VarName where+    tag (VarName x _) = x++instance Tagged Implicit where+    tag (ImplicitNone x) = x+    tag (ImplicitNull x) = x++instance Tagged Uses where +    tag (Use x _ _ _) = x+    tag (UseNil x) = x++instance Tagged Arg where+    tag (Arg x _ _) = x++instance Tagged ArgList where +    tag (ArgList x _) = x++instance Tagged ArgName where+    tag (ASeq x _ _) = x+    tag (NullArg x) = x+    tag (ArgName x _) = x++instance Tagged ProgUnit where+    tag (Main x sp _ _ _ _)      = x+    tag (Sub x sp _ _ _ _)       = x+    tag (Function x sp _ _ _ _ _)= x+    tag (Module x sp _ _ _ _ _ ) = x+    tag (BlockData x sp _ _ _ _) = x+    tag (PSeq x sp _ _)          = x+    tag (Prog x sp _)            = x+    tag (NullProg x sp)          = x++instance Tagged Decl where+    tag (Decl x _ _ _)          = x+    tag (Namelist x _)        = x+    tag (DataDecl x _)        = x+    tag (Equivalence x sp _)    = x+    tag (AttrStmt x _ _)    = x+    tag (AccessStmt x _ _)    = x+    tag (ExternalStmt x _)    = x+    tag (Interface x _ _)     = x+    tag (Common x _ _ _)        = x+    tag (DerivedTypeDef x sp _ _ _ _) = x+    tag (Include x _)         = x+    tag (DSeq x _ _)          = x+    tag (TextDecl x _)        = x+    tag (NullDecl x _)        = x+    tag (MeasureUnitDef x _ _)        = x++instance Tagged DataForm where+    tag (Data x _)         = x++instance Tagged Fortran where+    tag (Assg x s e1 e2)        = x+    tag (For x s v e1 e2 e3 fs) = x+    tag (FSeq x sp f1 f2)       = x+    tag (If x sp e f1 fes f3)   = x+    tag (Allocate x sp e1 e2)   = x+    tag (Backspace x sp _)      = x+    tag (Call x sp e as)        = x+    tag (Open x sp s)           = x+    tag (Close x sp s)          = x +    tag (Continue x sp)         = x+    tag (Cycle x sp s)          = x+    tag (DataStmt x sp _)       = x+    tag (Deallocate x sp es e)  = x+    tag (Endfile x sp s)        = x+    tag (Exit x sp s)           = x+    tag (Format x sp _)         = x+    tag (Forall x sp es f)      = x+    tag (Goto x sp s)           = x+    tag (Nullify x sp e)        = x+    tag (Inquire x sp s e)      = x+    tag (Pause x sp _)          = x+    tag (Rewind x sp s)         = x +    tag (Stop x sp e)           = x+    tag (Where x sp e f)        = x +    tag (Write x sp s e)        = x+    tag (PointerAssg x sp e1 e2) = x+    tag (Return x sp e)         = x+    tag (Label x sp s f)        = x+    tag (Print x sp e es)       = x+    tag (ReadS x sp s e)        = x+    tag (TextStmt x sp s)       = x+    tag (NullStmt x sp)         = x++instance Tagged Expr where+   tag (Con x sp _)        = x+   tag (ConL x sp _ _)     = x+   tag (ConS x sp _)       = x+   tag (Var x sp _ )       = x+   tag (Bin x sp _ _ _)    = x+   tag (Unary x sp _ _)    = x+   tag (CallExpr x sp _ _) = x+   tag (NullExpr x _)      = x+   tag (Null x _)          = x+   tag (ESeq x sp _ _)     = x+   tag (Bound x sp _ _)    = x+   tag (Sqrt x sp _)       = x+   tag (ArrayCon x sp _)   = x+   tag (AssgExpr x sp _ _) = x++instance Tagged GSpec where+   tag (GName x _) = x+   tag (GOper x _) = x+   tag (GAssg x)   = x
+ src/Language/Fortran/Lexer.x view
@@ -0,0 +1,222 @@+{
+module Language.Fortran.Lexer where
+
+import Data.Char
+import Language.Fortran
+import Language.Haskell.ParseMonad
+import Debug.Trace
+
+}
+
+%wrapper "basic"
+
+$letter = [a-zA-Z]
+$digit = [0-9]
+$bin_digit = [01]
+$oct_digit = [0-7]
+$hex_digit = [0-9A-Fa-f]
+$underscore = \_
+$currency_symbol = \$
+$at_sign = \@
+$sign = [\+\-]
+$alphanumeric_charactor = [$letter $digit $underscore $currency_symbol $at_sign]
+
+@name = ($letter | $underscore) ($letter | $digit | $underscore | $currency_symbol | $at_sign)*
+@digit_string = $digit+
+@signed_digit_string = $sign? @digit_string
+@line_space = ($white # \n)* 
+
+@kind_param = @digit_string | @name
+@int_literal_constant = @digit_string (\_ @kind_param)?
+
+@comment = ("!".*\n)
+
+@w = @int_literal_constant
+@m = @int_literal_constant
+@d = @int_literal_constant
+@e = @int_literal_constant
+@data_edit_desc = (("I"|"B"|"O"|"Z") @w ( \. @m)?) | "F" @w \. @d | (("E"|"EN"|"ES"|"G") @w \. @d ("E" @e)?) | "L" @w | "A" @w? | @w "X" | "D" @w \. @d ("E" @e)? | "R" @w | "Q"
+
+@continuation_line_alt = \n$white*"&" | \n$white*"$" | \n$white*"+" 
+
+@binary_constant_prefix = ("B" \' $digit+ \')      | ("B" \" $digit+ \")
+@octal_constant_prefix  = ("O" \' $digit+ \')      | ("O" \" $digit+ \")
+@hex_constant_prefix    = ("Z" \' $hex_digit+ \')  | ("Z" \" $hex_digit+ \")
+@binary_constant_suffix = (\' $bin_digit+ \' "B")  | (\" $bin_digit+ \" "B")
+@octal_constant_suffix  = (\' $oct_digit+ \' "O")   | (\" $oct_digit+ \""O")
+@hex_constant_suffix    = ( \' $hex_digit+ \' "Z") | ( \" $hex_digit+ \" "Z")
+
+$exponent_letter = [EeDd]
+@exponent = @signed_digit_string
+@significand = (@digit_string \. @digit_string?) | (\. @digit_string)
+
+@real_literal_constant = (@significand ($exponent_letter @exponent)? (\_ @kind_param)?)
+		       | (@digit_string $exponent_letter @exponent (\_ @kind_param)?)
+
+--@signed_real_literal_constant = $sign? @real_literal_constant
+
+tokens :-
+  \n\# .* $			{ \s -> Text s }
+  \n(C|c).*$                    { \s -> ContLineAlt }  -- Fortran 77 style comment
+  \n				{ \s -> NewLine }
+  ($white # \n)+		;
+  "#"				{ \s -> Hash }
+  "->"				{ \s -> MArrow }
+  "=>"				{ \s -> Arrow }
+  "**"				{ \s -> OpPower }
+  "//"	 			{ \s -> OpConcat }
+  "." $white* "EQ" $white* "."    | "." $white* "eq" $white* "."  | "=="	{ \s -> OpEQ }
+  "." $white* "NE" $white* "."    | "." $white* "ne" $white* "."  | "/="	{ \s -> OpNE }
+  "." $white* "LE" $white* "."    | "." $white* "le" $white* "."  | "<="	{ \s -> OpLE }
+  "." $white* "GE" $white* "."    | "." $white* "ge" $white* "."  | ">="	{ \s -> OpGE }
+  "." $white* "NOT" $white* "."   | "." $white* "not" $white* "."   		{ \s -> OpNOT }
+  "." $white* "AND" $white* "."   | "." $white* "and" $white* "." 		{ \s -> OpAND }
+  "." $white* "OR" $white* "."    | "." $white* "or" $white* "." 		{ \s -> OpOR }
+  "." $white* "TRUE" $white* "."  | "." $white* "true" $white* "."   		{ \s -> TrueConst }
+  "." $white* "FALSE" $white* "." | "." $white* "false" $white* "."  		{ \s -> FalseConst }
+  "." $white* "EQV" $white* "."   | "." $white* "eqv" $white* "."  		{ \s -> OpEQV }
+  "." $white* "NEQV" $white* "."  | "." $white* "neqv" $white* "."     	{ \s -> OpNEQV }
+  "." $white* "LT" $white* "."    | "." $white* "lt" $white* "." | "<"	{ \s -> OpLT }
+  "." $white* "GT" $white* "."    | "." $white* "gt" $white* "." | ">"	{ \s -> OpGT }
+  "*"				{ \s -> OpMul }
+  "/"				{ \s -> OpDiv }
+  "+"				{ \s -> OpAdd }
+  "-"				{ \s -> OpSub }
+  ","				{ \s -> Comma }
+  "(/"				{ \s -> LArrCon }
+  "/)"				{ \s -> RArrCon }
+  "("				{ \s -> LParen }
+  ")"				{ \s -> RParen }
+  "="				{ \s -> OpEquals }
+  \"(. # \")*\"			{ \s -> StrConst s }
+  \'(. # \')*\'			{ \s -> StrConst s }
+  \'(. # \')* @continuation_line_alt (. # \')*\'  { \s -> StrConst  (cutOutContLine s) }
+
+  "Z"\'(. # \')*\'		{ \s -> LitConst 'z' s }
+  "z"\'(. # \')*\'		{ \s -> LitConst 'z' s }
+  \'				{ \s -> SingleQuote }
+  \.				{ \s -> Period }
+  "::"				{ \s -> ColonColon }
+  ":"				{ \s -> Colon }
+  ";"                           { \s -> SemiColon }
+  "$"				{ \s -> Dollar }
+  "NULL()"			{ \s -> Key "null" }
+--   "&"				; -- ignore & anywhere
+  @continuation_line_alt        { \s -> ContLineAlt } 
+  \n "!".* \n $white*"&"        { \s -> ContLineWithComment }
+  "&"$white*\n        		{ \s -> ContLine } -- ignore & and spaces followed by '\n' (continuation line)
+  ($white # \r # \n)*"&"            { \s -> ContLineNoNewLine } 
+  "!".*$                        ;
+  "%"				{ \s -> Percent }
+  "{"				{ \s -> LBrace }
+  "}"				{ \s -> RBrace }
+  "else" @line_space "if"       { \s -> Key "elseif" }
+  @name			        { \s -> if elem (map toLower s) keywords
+                                        then Key (map toLower s)
+					else ID s  }
+  @data_edit_desc		{ \s -> DataEditDest s }
+  @real_literal_constant	{ \s -> Num s }
+
+
+  @binary_constant_prefix	{ \s -> BinConst s }
+  @octal_constant_prefix	{ \s -> OctConst s }
+  @hex_constant_prefix		{ \s -> HexConst s }
+  @binary_constant_suffix	{ \s -> BinConst s }
+  @octal_constant_suffix	{ \s -> OctConst s }
+  @hex_constant_suffix		{ \s -> HexConst s }
+  @digit_string			{ \s -> Num s }
+  "go" $white "to"              { \s -> Key "goto" }
+  "GO" $white "TO"              { \s -> Key "goto" }
+
+{
+-- Each action has type :: String -> Token
+		
+-- Fixes continuation lines in the middle of strings - removes the continuation line part
+cutOutContLine cs = [head cs] ++ (reverse (cutOut cs' (Just []))) ++ [head cs]
+	               where cs' = (take (length cs - 2) (drop 1 cs))
+
+cutOut [] Nothing = []
+cutOut [] (Just xs) = xs       	  	    
+cutOut ('&':cs) Nothing = cutOut cs (Just [])
+cutOut ('$':cs) Nothing = cutOut cs (Just [])
+cutOut ('+':cs) Nothing = cutOut cs (Just [])
+cutOut (' ':cs) Nothing = cutOut cs Nothing
+cutOut ('\t':cs) Nothing = cutOut cs Nothing
+cutOut ('\r':'\n':cs) (Just xs) = (cutOut cs Nothing) ++ xs
+cutOut ('\n':cs) (Just xs) = (cutOut cs Nothing) ++ xs
+cutOut (c:cs) (Just xs) = cutOut cs (Just (c:xs))
+
+
+-- The token type:
+data Token = Key String | LitConst Char String | OpPower | OpMul | OpDiv | OpAdd | OpSub | OpConcat
+	   | OpEQ | OpNE | OpLT | OpLE | OpGT | OpGE | OpLG 
+	   | OpNOT | OpAND | OpOR | OpXOR | OpEQV | OpNEQV
+	   | BinConst String | OctConst String | HexConst String
+	   | ID String | Num String | Comma | Bang | Percent
+	   | LParen | RParen | LArrCon | RArrCon | OpEquals | RealConst String | StopParamStart
+	   | SingleQuote | StrConst String | Period | Colon | ColonColon | SemiColon
+	   | DataEditDest String | Arrow | MArrow | TrueConst | FalseConst | Dollar
+	   | Hash | LBrace | RBrace | NewLine | TokEOF | Text String | ContLine | ContLineAlt | ContLineWithComment | ContLineNoNewLine
+	   deriving (Eq,Show)
+
+-- all reserved keywords, names are matched against these to see
+-- if they are keywords or IDs
+keywords :: [String]
+keywords = ["allocate", "allocatable","assign",
+	"assignment","automatic","backspace","block","call", "case",
+	"character","close","common","complex","contains","continue","cycle",
+	"data","deallocate","default","dimension","do",
+	"double","elemental","else","elseif","elsewhere","end", "enddo", "endif", "endfile","entry",
+	"equivalence","exit","external",
+	"forall","format","function","goto","iolength",
+	"if","implicit","in","include","inout","integer","intent","interface",
+	"intrinsic","inquire","kind","len","logical","module",
+	"namelist","none","nullify",
+	"only","open","operator","optional","out","parameter",
+	"pause","pointer","precision","print","private","procedure",
+	"program","public","pure","real","read","recursive","result",
+	"return","rewind","save","select","sequence","sometype","sqrt","stat",
+	"stop","subroutine","target","to","then","type",
+	"unit", "use","volatile","where","write"]
+
+{- old keywords, many will be removed
+keywords :: [String]
+keywords = ["access","action","advance","allocate","allocatable","assign",
+	"assignment","automatic","backspace","blank","block","call","case",
+	"character","close","common","complex","contains","continue","cycle",
+	"data","deallocate","default","delim","dimension","direct","do",
+	"double","elemental","else","elseif","elsewhere","end", "enddo", "endif", "endfile","entry",
+	"eor","err","equivalence","exist","exit","external","file","fmt",
+	"forall","form","format","formatted","function","goto","iostat","iolength",
+	"if","implicit","in","inout","integer","intent","interface",
+	"intrinsic","inquire","kind","len","logical","module","number",
+	"named","nml","nextrec","namelist","none","nullify","null()",
+	"only","open","opened","operator","optional","out","pad","parameter",
+	"pause","pointer","position","precision","print","private","procedure",
+	"program","pure","real","read","readwrite","rec","recl","recursive","result",
+	"return","rewind","save","select","sequence","sequential","sometype","stat",
+	"status","stop","subroutine","target","to","then","type","unformatted",
+	"unit","use","volatile","where","write"]
+-}
+
+lexer :: (Token -> P a) -> P a
+lexer = runL lexer'
+
+lexer' :: Lex a Token
+lexer' = do s <- getInput 
+       	    startToken
+            case alexScan ('\0',[],s) 0 of
+              AlexEOF             -> return TokEOF 
+              AlexError (c,b,s')  -> getInput >>= (\i -> fail ("unrecognizable token: " ++ show c ++ "(" ++ (show $ ord c) ++ "). "))
+              AlexSkip  (_,b,s') len -> discard len >> lexer'
+              AlexToken (_,b,s') len act -> do let tok = act (take len s)
+	      			     	       -- turn on for useful debugging info on lexing
+	      			     	       -- (show (tok, (take 20 s), len) ++ "\n") `trace` return ()
+                                               case tok of
+					          NewLine    -> lexNewline >> (return tok)
+					          ContLine   -> (discard len) >> lexNewline >> lexer'
+					          ContLineNoNewLine  -> (discard len) >> lexer'
+					          ContLineAlt -> lexNewline >> (discard (len - 1)) >> lexer'
+					 	  ContLineWithComment -> lexNewline >> lexNewline  >> (discard (len - 2)) >> lexer'
+                                                  _           -> (discard len) >> (return tok)
+}
+ src/Language/Fortran/Parser.y view
@@ -0,0 +1,1871 @@+{
+module Language.Fortran.Parser  where
+
+import Language.Fortran
+import Language.Fortran.PreProcess
+
+import Language.Haskell.Syntax (SrcLoc(..))
+import Language.Haskell.ParseMonad 
+import Language.Fortran.Lexer
+import Data.Char (toLower)
+import Debug.Trace
+
+}
+
+%name parser executable_program
+%name include_parser include_program
+%tokentype { Token }
+
+%monad { P } { >>= } { return }
+%lexer { lexer } { TokEOF }
+
+%token
+ '=>'			{ Arrow }
+ '**'			{ OpPower }
+ '//' 			{ OpConcat }
+ '=='		        { OpEQ }
+ '/='       		{ OpNE }
+ '<='		        { OpLE }
+ '>='		        { OpGE }
+ '.NOT.'		{ OpNOT }
+ '.AND.'		{ OpAND }
+ '.OR.'		        { OpOR }
+ '.TRUE.'		{ TrueConst }
+ '.FALSE.'		{ FalseConst }
+-- '.EQV.'		{ OpEQV }
+-- '.NEGV.' 	       	{ OpNEQV }
+ '<'		        { OpLT }
+ '>'		        { OpGT }
+ '*'		       	{ OpMul }
+ '/'		       	{ OpDiv }
+ '+'		       	{ OpAdd }
+ '-'		       	{ OpSub }
+ ','		       	{ Comma }
+ '('		       	{ LParen }
+ ')'		       	{ RParen }
+ '='		       	{ OpEquals }
+-- '\''		      	{ SingleQuote }
+-- '\"'			{ DoubleQuote }
+ '.'		        { Period }
+ '::'			{ ColonColon }
+ ':'			{ Colon }
+ ';'                    { SemiColon }
+ '#'                    { Hash }
+ '{'                    { LBrace }
+ '}'                    { RBrace }
+ '(/'                   { LArrCon }
+ '/)'                   { RArrCon }
+ DATA_DESC              { DataEditDest $$ }
+--'b'                    { LitMark $$ }
+--'B'                    { LitMark $$ }
+--'z'                    { LitMark $$ }
+--'Z'                    { LitMark $$ }
+--'o'                    { LitMark $$ }
+--'O'                    { LitMark $$ }
+-- OBSOLETE '!'         { Bang } 
+ '%'			{ Percent }
+ '$'			{ Dollar }
+ -- OBSOLETE '!{'	{ StopParamStart }
+'\n'                    { NewLine }
+ ALLOCATE 		{ Key "allocate" }
+ ALLOCATABLE 		{ Key "allocatable" }
+ ASSIGN 		{ Key "Assign" }
+ ASSIGNMENT 		{ Key "assignment" }
+-- AUTOMATIC 		{ Key "automatic" }
+ BACKSPACE 		{ Key "backspace" }
+ BLOCK 			{ Key "block" }
+ CALL 			{ Key "call" }
+-- CASE 		{ Key "case" }
+ CHARACTER 		{ Key "character" }
+ CLOSE 			{ Key "close" }
+ COMMON 		{ Key "common" }
+ COMPLEX 		{ Key "complex" }
+ CONTAINS 		{ Key "contains" }
+ CONTINUE 		{ Key "continue" }
+ CYCLE 			{ Key "cycle" }
+ DATA 			{ Key "data" }
+ DEALLOCATE 		{ Key "deallocate" }
+-- DEFAULT 		{ Key "default" }
+ DIMENSION 		{ Key "dimension" }
+ DO 			{ Key "do" }
+-- DOUBLE 		{ Key "double" }
+ ELEMENTAL 		{ Key "elemental" }
+ ELSE 			{ Key "else" }
+ ELSEIF 		{ Key "elseif" }
+-- ELSEWHERE 		{ Key "elsewhere" }
+ END 			{ Key "end" }
+ ENDIF			{ Key "endif" }
+ ENDDO			{ Key "enddo" }
+ ENDFILE                { Key "endfile" }
+-- ENTRY 		{ Key "entry" }
+ EQUIVALENCE 		{ Key "equivalence" }
+ EXIT 			{ Key "exit" }
+ EXTERNAL 		{ Key "external" }
+ FORALL 		{ Key "forall" }
+ FOREACH		{ Key "foreach" }
+ FORMAT 		{ Key "format" }
+ FUNCTION 		{ Key "function" }
+ GOTO 			{ Key "goto" }
+ IOLENGTH               { Key "iolength" }
+ IF 			{ Key "if" }
+ IMPLICIT 		{ Key "implicit" }
+ IN 			{ Key "in" }
+ INCLUDE		{ Key "include" }
+ INOUT 			{ Key "inout" }
+ INTEGER 		{ Key "integer" }
+ INTENT 		{ Key "intent" }
+ INTERFACE 		{ Key "interface" }
+ INTRINSIC 		{ Key "intrinsic" }
+ INQUIRE 		{ Key "inquire" }
+ KIND 			{ Key "kind" }
+ LEN 			{ Key "len" }
+ LOGICAL 		{ Key "logical" }
+ MODULE 		{ Key "module" }
+ NAMELIST 		{ Key "namelist" }
+ NONE 			{ Key "none" }
+ NULLIFY 		{ Key "nullify" }
+ NULL 			{ Key "null" }
+-- ONLY 		{ Key "only" }
+ OPEN 			{ Key "open" }
+ OPERATOR 		{ Key "operator" }
+ OPTIONAL 		{ Key "optional" }
+ OUT 			{ Key "out" }
+ PARAMETER 		{ Key "parameter" }
+ PAUSE 		        { Key "pause" }
+ POINTER 		{ Key "pointer" }
+-- PRECISION 		{ Key "precision" }
+ PRINT 			{ Key "print" }
+ PRIVATE 		{ Key "private" }
+ PROCEDURE 		{ Key "procedure" }
+ PROGRAM 		{ Key "program" }
+ PURE 			{ Key "pure" }
+ PUBLIC 		{ Key "public" }
+ REAL 			{ Key "real" }
+ READ 			{ Key "read" }
+ RECURSIVE 		{ Key "recursive" }
+ RESULT 		{ Key "result" }
+ RETURN 		{ Key "return" }
+ REWIND 		{ Key "rewind" }
+ SAVE 			{ Key "save" }
+-- SELECT 		{ Key "select" }
+ SEQUENCE 		{ Key "sequence" }
+-- SIZE 		{ Key "size" }
+ SOMETYPE               { Key "sometype" }
+ SQRT			{ Key "sqrt" }
+ STAT 			{ Key "stat" }
+ STOP			{ Key "stop" }
+ STR                    { StrConst $$ }
+ ZLIT                   { LitConst 'z' $$ }
+ SUBROUTINE 		{ Key "subroutine" }
+ TARGET 		{ Key "target" }
+-- TO 			{ Key "to" }
+ THEN 			{ Key "then" }
+ TYPE 			{ Key "type" }
+-- UNFORMATED 		{ Key "unformatted" }
+ UNIT                   { Key "unit" } -- units-of-measure extension
+ '1'                    { Num "1" }    -- units-of-measure extension
+ USE 			{ Key "use" }
+ VOLATILE 		{ Key "volatile" }
+ WHERE 			{ Key "where" }
+ WRITE 			{ Key "write" }
+ ID                     { ID $$ }
+ NUM                    { Num $$ }
+ LABEL                  { Num $$ }
+ TEXT                   { Text $$ }
+%%
+
+include_program :: { Program A0 }
+include_program 
+: srcloc newline specification_part_top {% do { s <- getSrcSpan $1; 
+                                                return [IncludeProg () s $3 Nothing] }}
+
+executable_program :: { Program A0 }
+executable_program
+  : program_unit_list                             { $1 }
+    
+program_unit_list :: { Program A0 }
+program_unit_list
+  : program_unit_list newline0 program_unit       { $1++[$3] }
+  | {- empty -}                                   { [] }
+
+program_unit :: { ProgUnit A0 }
+program_unit
+  : main_program                                  { $1 }
+  | external_subprogram                           { $1 }
+  | module                                        { $1 }
+  | block_data                                    { $1 }
+
+plist :: { [String] }
+plist 
+  : plist ',' id2                                 { $1++[$3] }
+  | id2                                           { [$1] }
+
+vlist :: { [Expr A0] }
+vlist 
+  : variable ',' vlist                            { $1:$3 }
+  | variable                                      { [$1] }
+
+newline :: {}
+newline : '\n' newline0 {}
+
+newline0 :: {}
+newline0 : newline  {} 
+        | {- empty -} {}
+
+main_program :: { ProgUnit A0 }
+main_program
+  : srcloc program_stmt srcloc use_stmt_list implicit_part srcloc specification_part_top execution_part module_subprogram_part end_program_stmt newline0
+                {% do { s <- getSrcSpan $1;
+		        s' <- getSrcSpan $6;
+		        name <- cmpNames (fst $2) $10 "program";
+		        return (Main () s name (snd $2) (Block () (UseBlock $4 $3) $5 s' $7 $8) $9); } }
+
+
+
+program_stmt :: { (SubName A0, Arg A0) }
+program_stmt
+  : PROGRAM subname args_p newline   { ($2, $3) }
+  | PROGRAM subname srcloc newline   { ($2, (Arg () (NullArg ())) ($3, $3)) } 
+
+end_program_stmt :: { String }
+end_program_stmt
+  : END PROGRAM id2   { $3 }
+  | END PROGRAM       { "" }
+  | END               { "" }
+
+implicit_part :: { Implicit A0 }
+implicit_part
+  : IMPLICIT NONE newline   { ImplicitNone () }
+  | {- empty -}             { ImplicitNull () }
+
+external_subprogram :: { ProgUnit A0}
+external_subprogram
+  : function_subprogram           { $1 }
+  | subroutine_subprogram         { $1 } 
+
+subroutine_subprogram :: { ProgUnit A0 }
+subroutine_subprogram 
+  : srcloc subroutine_stmt srcloc use_stmt_list implicit_part srcloc specification_part_top execution_part end_subroutine_stmt newline0
+  {% do { s <- getSrcSpan $1;
+          s' <- getSrcSpan $6;
+          name <- cmpNames (fst3 $2) $9 "subroutine";
+          return (Sub () s (trd3 $2) name (snd3 $2) (Block () (UseBlock $4 $3) $5 s' $7 $8)); } }
+
+end_subroutine_stmt :: { String }
+end_subroutine_stmt
+  : END SUBROUTINE id2          { $3 }
+  | END SUBROUTINE              { "" }
+  | END                         { "" }
+
+end_function_stmt :: { String }
+end_function_stmt
+  : END FUNCTION id2            { $3 }
+  | END FUNCTION                { "" }
+  | END                         { "" }
+
+function_subprogram :: { ProgUnit A0 }
+function_subprogram
+: srcloc function_stmt srcloc use_stmt_list implicit_part srcloc specification_part_top execution_part end_function_stmt newline0  {% do { s <- getSrcSpan $1;
+                       s' <- getSrcSpan $6;
+                       name <- cmpNames (fst4 $2) $9 "function";
+		       return (Function () s (trd4 $2) name (snd4 $2) (frh4 $2) (Block () (UseBlock $4 $3) $5 s' $7 $8)); } }
+
+block_data :: { ProgUnit A0 }
+block_data
+  : srcloc block_data_stmt use_stmt_list implicit_part specification_part_top end_block_data_stmt     
+                  {% do { s <- getSrcSpan $1;
+                          name <- cmpNames $2 $6 "block data";
+                          return (BlockData () s name $3 $4 $5); } }
+  
+block_data_stmt :: { SubName A0 }
+block_data_stmt
+ : BLOCK DATA subname                     { $3 } 
+ | BLOCK DATA                             { "foobar" `trace` NullSubName () } 
+
+end_block_data_stmt :: { String }
+end_block_data_stmt
+  : END BLOCK DATA id2                     { $4 }
+  | END BLOCK DATA                         { "" }
+  | END                                    { "" }
+  
+module :: { ProgUnit A0 }
+module
+   : srcloc module_stmt use_stmt_list implicit_part specification_part_top module_subprogram_part end_module_stmt newline0
+         {%  do { s <- getSrcSpan $1;
+                  name <- cmpNames $2 $7  "module";
+		  return (Module ()s name $3 $4 $5 $6); } }
+
+module_stmt :: { SubName A0 }
+module_stmt
+  : MODULE subname newline                    { $2 } 
+
+end_module_stmt :: { String }
+end_module_stmt
+  : END MODULE id2                            { $3 }
+  | END MODULE                                { "" }
+  | END                                       { "" }
+
+module_subprogram_part :: { Program A0 }
+module_subprogram_part
+  : CONTAINS newline internal_subprogram_list { $3 }
+| {- empty -}                                 { [] } 
+  
+internal_subprogram_list :: { Program A0 }
+internal_subprogram_list
+  : internal_subprogram_list internal_subprogram newline0 { $1++[$2] } 
+  | {- empty -}                                           { [] }
+  
+internal_subprogram :: { ProgUnit A0 }
+internal_subprogram
+  : subroutine_subprogram                           { $1 }
+  | function_subprogram                             { $1 }
+  
+use_stmt_list :: { Uses A0 }
+use_stmt_list
+: use_stmt use_stmt_list  { Use () $1 $2 () }
+| {- empty -}  	  { UseNil () }
+
+use_stmt :: { (String, Renames) }
+use_stmt
+: USE id2 newline { ($2, []) }
+| USE COMMON ',' renames newline { ("common", $4) } -- Since "common" is a valid module name
+| USE id2 ',' renames newline { ($2, $4) }
+
+renames :: { [(Variable, Variable)] }
+:  id2 '=>' id2        { [($1, $3)] }
+ | renames ',' renames { $1 ++ $3 }
+ 
+  
+-- [DO: Allows the specification part of a module to be empty]
+specification_part_top :: { Decl A0 }
+specification_part_top
+   : specification_part   { $1 }
+   | {- empty -}          {% getSrcSpanNull >>= (\s -> return $ NullDecl () s)}
+
+specification_part :: { Decl A0 }
+specification_part
+  : declaration_construct_l specification_part { DSeq () $1 $2 }
+  | declaration_construct_l                    { $1 }
+  
+
+declaration_construct_l :: { Decl A0 }
+declaration_construct_l
+  : declaration_construct_p newline { $1 }
+
+declaration_construct_p :: { Decl A0 }
+declaration_construct_p
+  : declaration_construct                         { $1 }
+  | specification_stmt                            { $1 }
+  | derived_type_def                              { $1 }
+  | TEXT					  { TextDecl () $1 }
+
+-- Not sure about the ArrayT outputs here, think this may be a bug
+
+declaration_construct :: { Decl A0 }
+declaration_construct
+  : srcloc type_spec_p attr_spec_list '::' entity_decl_list  
+  {% (getSrcSpan $1) >>= (\s -> return $ if isEmpty (fst $3) 
+					 then Decl () s $5 ((BaseType () (fst3 $2) (snd $3) (snd3 $2) (trd3 $2)))
+			                 else Decl () s $5 ((ArrayT ()  (fst $3) (fst3 $2) (snd $3) (snd3 $2) (trd3 $2)))) }
+  | srcloc type_spec_p attr_spec_list entity_decl_list  
+  {% (getSrcSpan $1) >>= (\s -> return $ if isEmpty (fst $3) 
+					     then Decl () s $4 ((BaseType () (fst3 $2) (snd $3) (snd3 $2) (trd3 $2)))
+			     	             else Decl () s $4 ((ArrayT () (fst $3) (fst3 $2) (snd $3) (snd3 $2) (trd3 $2)))) }
+  | interface_block				      { $1 }
+  | include_stmt { $1 }
+
+
+attr_spec_list :: {([(Expr A0, Expr A0)],[Attr A0])}
+attr_spec_list
+  : attr_spec_list ',' attr_spec                  { (fst $1++fst $3,snd $1++snd $3) }
+  | {- empty -}                                   { ([],[]) }
+
+entity_decl_list :: { [(Expr A0, Expr A0, Maybe Int)] }
+entity_decl_list
+: entity_decl ',' entity_decl_list         { $1:$3 }
+| entity_decl                              { [$1] }
+
+entity_decl :: { (Expr A0, Expr A0, Maybe Int) }
+entity_decl
+-- : srcloc ID '=' expr   {% getSrcSpan $1 >>= (\s -> return $ (Var () s [(VarName () $2,[])], $4, Nothing)) }
+: variable '=' expr   { ($1, $3, Nothing) }
+| variable             {% getSrcSpanNull >>= (\s -> return $ ($1, NullExpr () s, Nothing)) }  
+| variable '*' num     {% getSrcSpanNull >>= (\s -> return $ ($1, NullExpr () s, Just $ read $3)) }  
+
+-- | id2                  {% getSrcSpanNull >>= (\s -> return $ (Var () s [(VarName () $1,[])], NullExpr () s, Nothing)) }  
+ 
+
+object_name :: { String }
+object_name
+  : id2                                            { $1 }
+
+type_spec_p :: { (BaseType A0, Expr A0, Expr A0) }
+type_spec_p
+  : type_spec                                     { (fst3 $1, snd3 $1, trd3 $1) }
+
+type_spec :: { (BaseType A0, Expr A0, Expr A0) }
+type_spec
+: INTEGER kind_selector                         {% getSrcSpanNull >>= (\s -> return $ (Integer (), $2, NullExpr () s))  }
+| INTEGER '*' length_value                      {% getSrcSpanNull >>= (\s -> return $  (Integer (), $3, NullExpr () s)) }
+| INTEGER                                       {% getSrcSpanNull >>= (\s -> return $  (Integer (), NullExpr () s, NullExpr () s)) }
+| REAL kind_selector                            {% getSrcSpanNull >>= (\s -> return $  (Real (), $2, NullExpr () s)) }
+| REAL '*' length_value                         {% getSrcSpanNull >>= (\s -> return $  (Real (), $3, NullExpr () s)) }
+| REAL                                          {% getSrcSpanNull >>= (\s -> return $  (Real (), NullExpr () s, NullExpr () s)) }
+| SOMETYPE                                      {% getSrcSpanNull >>= (\s -> return $  (SomeType (), NullExpr () s, NullExpr () s)) }
+--  | DOUBLE PRECISION kind_selector                { (Double (), $3, ne s)) }
+--  | DOUBLE PRECISION '*' length_value             { (Double (), $4, ne s)) }
+--  | DOUBLE PRECISION                              { (Double (), ne s, ne s)) }
+| COMPLEX kind_selector                         {% getSrcSpanNull >>= (\s -> return $  (Complex (), $2, NullExpr () s)) }
+| COMPLEX '*' length_value                      {% getSrcSpanNull >>= (\s -> return $  (Complex (), $3, NullExpr () s)) }
+| COMPLEX                                       {% getSrcSpanNull >>= (\s -> return $  (Complex (),NullExpr () s, NullExpr () s)) }
+| CHARACTER char_selector                       { (Character (), snd $2, fst $2) }
+| CHARACTER '*' length_value                    {% getSrcSpanNull >>= (\s -> return $  (Character (), $3, NullExpr () s)) } 
+| CHARACTER                                     {% getSrcSpanNull >>= (\s -> return $  (Character (), NullExpr () s, NullExpr () s)) }
+| LOGICAL kind_selector                         {% getSrcSpanNull >>= (\s -> return $  (Logical (), $2, NullExpr () s)) }
+| LOGICAL '*' length_value                      {% getSrcSpanNull >>= (\s -> return $  (Logical (), $3, NullExpr () s)) }
+| LOGICAL                                       {% getSrcSpanNull >>= (\s -> return $  (Logical (), NullExpr () s, NullExpr () s)) }
+| TYPE '(' type_name ')'                        {% getSrcSpanNull >>= (\s -> return $ (DerivedType () $3, NullExpr () s, NullExpr () s)) }
+
+--  | POINTER '(' pointer_name ',' pointee_name ['(' array_spec ')' ] ')'
+--[',' '(' pointer_name ',' pointee_name ['(' array_spec ')' ] ')' ] 
+
+kind_selector :: { Expr A0 }
+  : '(' KIND '=' expr ')'                         { $4 }
+  | '(' expr ')'                                  { $2 }
+
+char_selector :: { (Expr A0, Expr A0) }  -- (LEN, KIND)
+char_selector 
+: length_selector                                         {% getSrcSpanNull >>= (\s -> return $ ($1,NullExpr () s)) }
+| '(' LEN '=' char_len_param_value ',' KIND '=' expr ')'  { ($4,$8) }
+| '(' char_len_param_value ',' KIND '=' expr ')'          { ($2,$6) }
+| '(' char_len_param_value ',' expr ')'                   {% getSrcSpanNull >>= (\s -> return $   ($2,NullExpr () s)) }
+| '(' KIND '=' expr ',' LEN '=' char_len_param_value ')'  { ($8,$4) }
+| '(' KIND '=' expr ')'                                   {% getSrcSpanNull >>= (\s -> return $   (NullExpr () s,$4)) }
+
+length_selector :: { Expr A0 }
+length_selector 
+: '(' LEN '=' char_len_param_value ')'                    { $4 }
+| '(' char_len_param_value ')'                            { $2 }
+
+char_len_param_value :: { Expr A0 }
+char_len_param_value
+: specification_expr                                     { $1 }
+| srcloc '*'                                             {% getSrcSpan $1 >>= (\s -> return $ Con () s "*") }
+
+length_value :: { Expr A0 }
+length_value
+: srcloc num                                           {% getSrcSpan $1 >>= (\s -> return $ Con () s $2) }
+
+dim_spec :: { [(Expr A0, Expr A0)] }
+dim_spec
+  : DIMENSION '(' array_spec ')' { $3 }
+  | DIMENSION '(' ')'            { [] }  -- modified by Zhe on 11/14/2004
+
+dim_spec_p :: { [(Expr A0, Expr A0)] }
+dim_spec_p
+  : DIMENSION array_spec { $2 }
+
+attr_spec_p :: { ([(Expr A0, Expr A0)],[Attr A0]) }
+attr_spec_p :
+  PARAMETER                                      { ([],[Parameter ()]) }
+| access_spec                                    { ([],[$1]) }
+| ALLOCATABLE                                    { ([],[Allocatable ()]) }
+| EXTERNAL                                       { ([],[External ()]) }
+| INTENT '(' intent_spec ')'                     { ([],[Intent () $3]) }
+| INTRINSIC                                      { ([],[Intrinsic ()]) }
+| OPTIONAL                                       { ([],[Optional ()]) }
+| POINTER                                        { ([],[Pointer ()]) }
+| SAVE                                           { ([],[Save ()]) }
+| TARGET                                         { ([],[Target ()]) }
+| UNIT '(' unit_spec ')'                         { ([],[MeasureUnit () $3]) } -- units-of-measure
+| VOLATILE                                       { ([],[Volatile ()]) }
+
+attr_spec :: { ([(Expr A0, Expr A0)],[Attr A0]) }
+attr_spec
+: dim_spec                                       { ([],[Dimension () $1]) }
+| PARAMETER                                      { ([],[Parameter ()]) }
+| access_spec                                    { ([],[$1]) }
+| ALLOCATABLE                                    { ([],[Allocatable ()]) }
+| EXTERNAL                                       { ([],[External ()]) }
+| INTENT '(' intent_spec ')'                     { ([],[Intent () $3]) }
+| INTRINSIC                                      { ([],[Intrinsic ()]) }
+| OPTIONAL                                       { ([],[Optional ()]) }
+| POINTER                                        { ([],[Pointer ()]) }
+| SAVE                                           { ([],[Save ()]) }
+| TARGET                                         { ([],[Target ()]) }
+| UNIT '(' unit_spec ')'                         { ([],[MeasureUnit () $3]) }
+| VOLATILE                                       { ([],[Volatile ()]) }
+
+access_spec :: { Attr A0 }
+access_spec
+: PUBLIC            { Public () }
+| PRIVATE           { Private () }
+
+-- start: units-of-measure extension parsing
+
+unit_stmt :: { Decl A0 }
+  : UNIT '::' unit_decl_list  {% getSrcSpanNull >>= (\s -> return $ MeasureUnitDef () s $3) }
+
+unit_decl_list :: { [(MeasureUnit, MeasureUnitSpec A0)] }
+unit_decl_list
+  : unit_decl ',' unit_decl_list  { $1:$3 }
+  | unit_decl                     { [$1] }
+
+unit_decl :: { (MeasureUnit, MeasureUnitSpec A0) }
+unit_decl
+  : srcloc ID '=' unit_spec  {% getSrcSpan $1 >>= (\s -> return ($2, $4)) }
+
+unit_spec :: { MeasureUnitSpec A0 }
+unit_spec
+: mult_unit_spec '/' mult_unit_spec { UnitQuotient () $1 $3 }
+| mult_unit_spec                    { UnitProduct () $1 }
+| {- empty -}                       { UnitNone () }
+
+mult_unit_spec :: { [(MeasureUnit, Fraction A0)] }
+mult_unit_spec
+: mult_unit_spec power_unit_spec { $1++$2 }
+| power_unit_spec                { $1 }
+
+power_unit_spec :: { [(MeasureUnit, Fraction A0)] }
+power_unit_spec
+: ID '**' power_spec { [($1, $3)] }
+| ID                 { [($1, NullFraction ())] }
+| '1'                { [] }
+
+power_spec :: { Fraction A0 }
+power_spec
+: '(' signed_num '/' signed_num ')' { FractionConst () $2 $4 }
+| signed_num                        { IntegerConst () $1 }
+| '(' power_spec ')'                { $2 }
+
+signed_num :: { String }
+signed_num
+: '-' num { "-" ++ $2 }
+| num     { $1 }
+ 
+-- end
+
+array_spec :: { [(Expr A0, Expr A0)] }
+array_spec
+  : explicit_shape_spec_list                      { map expr2array_spec $1 }
+
+explicit_shape_spec_list :: { [Expr A0] }
+explicit_shape_spec_list
+  : explicit_shape_spec_list ','  explicit_shape_spec {$1++[$3]}
+  | explicit_shape_spec                               {[$1]}
+
+explicit_shape_spec :: { Expr A0 }
+explicit_shape_spec
+  : expr  { $1 } 
+  | bound { $1 }
+
+include_stmt :: { Decl A0 }
+: INCLUDE srcloc STR       {% getSrcSpan $2 >>= (\s -> return $ Include () (Con () s $3)) }
+
+specification_expr :: { Expr A0 }
+specification_expr
+  : expr { $1 } 
+
+intent_spec :: { IntentAttr A0 }
+intent_spec
+: IN            {  In () }
+| OUT           { Out () }
+| INOUT         { InOut () }
+
+specification_stmt :: { Decl A0 }
+specification_stmt
+  : access_stmt            { $1 }
+  | attr_stmt              { $1 }
+  | unit_stmt              { $1 }
+--  | allocatable_stmt       { $1 }
+  | common_stmt            { $1 }
+| data_stmt              { DataDecl () $1 }
+  | equivalence_stmt              { $1 }
+--  | dimension_stmt         { $1 }
+  | external_stmt          { $1 }
+--  | intent_stmt            { $1 }
+--  | intrinsic_stmt         { $1 }
+  | namelist_stmt            { $1 }
+--  | optional_stmt          { $1 }
+--  | pointer_stmt           { $1 }
+  | save_stmt              { $1 }
+--  | target_stmt            { $1 } 
+
+save_stmt :: { Decl A0 }
+ : SAVE { AccessStmt () (Save ()) [] }
+
+common_stmt :: { Decl A0 }
+: srcloc COMMON '/' id2 '/' vlist  {% getSrcSpan $1 >>= (\s -> return $ Common () s (Just $4) $6) }
+| srcloc COMMON vlist              {% getSrcSpan $1 >>= (\s -> return $ Common () s Nothing $3) }
+
+
+interface_block :: { Decl A0 }
+interface_block
+: interface_stmt newline interface_spec_list newline end_interface_stmt  { Interface () $1 $3 }
+
+interface_stmt :: { Maybe (GSpec A0) }
+interface_stmt
+  : INTERFACE generic_spec       { Just $2 }
+  | INTERFACE                    { Nothing }
+  
+interface_spec_list :: { [InterfaceSpec A0] }
+interface_spec_list
+  : interface_spec_list interface_spec   { $1++[$2] }
+  | interface_spec                       { [$1] }
+  
+interface_spec :: { InterfaceSpec A0 }
+interface_spec
+  : interface_body               { $1 }
+  | module_procedure_stmt        { $1 }
+  
+end_interface_stmt :: { Maybe (GSpec A0) }
+end_interface_stmt
+  : END INTERFACE generic_spec       { Just $3 }
+  | END INTERFACE                    { Nothing }
+
+interface_body :: { InterfaceSpec A0 } 
+interface_body
+  : function_stmt  use_stmt_list implicit_part specification_part end_function_stmt 
+        {% do { name <- cmpNames (fst4 $1) $5 "interface declaration";
+	        return (FunctionInterface ()  name (snd4 $1) $2 $3 $4); }}
+
+  | function_stmt end_function_stmt  
+        {% do { name <- cmpNames (fst4 $1) $2 "interface declaration";
+	        s <- getSrcSpanNull;
+	        return (FunctionInterface () name (snd4 $1) (UseNil ()) (ImplicitNull ()) (NullDecl () s)); } }       
+
+  | subroutine_stmt use_stmt_list implicit_part specification_part end_subroutine_stmt
+        {% do { name <- cmpNames (fst3 $1) $5 "interface declaration";
+                return (SubroutineInterface () name (snd3 $1) $2 $3 $4); } }
+
+  | subroutine_stmt end_subroutine_stmt 
+        {% do { name <- cmpNames (fst3 $1) $2 "interface declaration";
+	        s <- getSrcSpanNull;
+	        return (SubroutineInterface () name (snd3 $1) (UseNil ()) (ImplicitNull ()) (NullDecl () s)); }}
+  
+module_procedure_stmt :: { InterfaceSpec A0 }
+module_procedure_stmt
+: MODULE PROCEDURE sub_name_list    { ModuleProcedure () $3 }
+
+sub_name_list :: { [SubName A0 ] }
+sub_name_list
+  :  sub_name_list ',' subname  { $1++[$3] }
+  |  subname                    { [$1] }
+
+derived_type_def :: { Decl A0 }
+derived_type_def
+  : srcloc derived_type_stmt private_sequence_stmt component_def_stmt_list end_type_stmt
+  {% do { sp <- getSrcSpan $1;
+	  name <- cmpNames (fst $2) $5 "derived type name";
+          return (DerivedTypeDef () sp name (snd $2) $3 $4);  } }
+
+derived_type_stmt :: { (SubName A0, [Attr A0]) }
+derived_type_stmt
+  : TYPE ',' access_spec  '::' type_name         { ($5,[$3]) }
+  | TYPE                  '::' type_name         { ($3,[]) }
+  | TYPE                       type_name         { ($2,[]) }
+
+end_type_stmt :: { String }
+end_type_stmt
+  : END TYPE       { "" }
+  | END TYPE id2   { $3 }
+
+
+type_name :: { SubName A0 }
+type_name
+: ID           { SubName () $1 } 
+
+private_sequence_stmt :: { [Attr A0] }
+private_sequence_stmt
+: PRIVATE SEQUENCE     { [Private (), Sequence ()] }
+| SEQUENCE PRIVATE     { [Sequence (), Private ()] }
+| PRIVATE              { [Private ()] }
+| SEQUENCE             { [Sequence ()] }
+| {- empty -}          { [] }
+  
+component_def_stmt_list :: { [Decl A0 ] }
+component_def_stmt_list
+  : component_def_stmt_list component_def_stmt     { $1++[$2] }
+  | component_def_stmt                             { [$1] }
+
+component_def_stmt :: { Decl A0 }
+component_def_stmt
+  : srcloc type_spec_p component_attr_spec_list '::' entity_decl_list  
+  {% (getSrcSpan $1) >>= (\s -> return $ 
+		     if isEmpty (fst $3) 
+		     then Decl () s $5 ((BaseType () (fst3 $2) (snd $3) (snd3 $2) (trd3 $2)))
+		     else Decl () s $5 ((ArrayT () (fst $3) (fst3 $2) (snd $3) (snd3 $2) (trd3 $2)))) }
+
+component_attr_spec_list :: {([(Expr A0, Expr A0)],[Attr A0])}
+component_attr_spec_list
+  : component_attr_spec_list ',' component_attr_spec       { (fst $1++fst $3,snd $1++snd $3) }
+  | {- empty -}                                            { ([],[]) }
+
+component_attr_spec :: { ([(Expr A0, Expr A0)],[Attr A0]) }
+component_attr_spec
+:  POINTER              { ([],[Pointer ()]) }
+| dim_spec              { ($1,[]) }
+
+attr_stmt :: { Decl A0 }
+attr_stmt : attr_spec_p '(' entity_decl_list  ')'  { AttrStmt () (head $ snd $1) ($3 ++ (map (\(x, y) -> (x, y, Nothing)) (fst $1))) } 
+          | attr_spec_p   { AttrStmt () (head $ snd $1) ((map (\(x, y) -> (x, y, Nothing)) (fst $1))) } 
+| dim_spec_p  { AttrStmt () (Dimension () $1) [] } 
+
+access_stmt :: { Decl A0 }
+access_stmt
+: access_spec '::' access_id_list  { AccessStmt () $1 $3 }
+| access_spec access_id_list       { AccessStmt () $1 $2 }
+| access_spec                      { AccessStmt () $1 [] }
+   
+access_id_list :: { [GSpec A0] }
+access_id_list
+  : access_id_list ',' access_id     { $1++[$3] }
+  | access_id                        { [$1] }
+
+access_id :: { GSpec A0 }
+access_id 
+  : generic_spec                     { $1 }
+  
+generic_spec :: { GSpec A0 }
+generic_spec
+: srcloc ID				{% getSrcSpan $1 >>= (\s -> return $ GName () (Var () s [(VarName () $2,[])])) } 
+| OPERATOR '(' defined_operator ')'   { GOper () $3 }
+| ASSIGNMENT '(' '=' ')'              { GAssg () }
+  
+data_stmt :: { DataForm A0 }
+data_stmt
+: DATA data_stmt_set_list		{ Data () $2 }
+  
+data_stmt_set_list :: { [(Expr A0, Expr A0)] }
+data_stmt_set_list
+  : data_stmt_set_list ',' data_stmt_set	{ $1++[$3] }
+  | data_stmt_set        		   	{ [$1] }
+  
+data_stmt_set :: { (Expr A0, Expr A0) }
+data_stmt_set
+  : data_stmt_object_list '/' data_stmt_value_list '/'		{ ($1,$3) }
+
+data_stmt_object_list :: { Expr A0 }
+data_stmt_object_list
+: data_stmt_object_list ',' data_stmt_object   { ESeq ()  (spanTrans $1 $3) $1 $3 }
+  | data_stmt_object			       { $1 }
+
+data_stmt_object :: { Expr A0 }
+data_stmt_object
+  : variable 			{ $1 }
+  
+
+data_stmt_value_list :: { Expr A0 }
+data_stmt_value_list
+: data_stmt_value_list ',' data_stmt_value	{ ESeq () (spanTrans $1 $3) $1 $3 }
+  | data_stmt_value				{ $1 }
+
+data_stmt_value :: { Expr A0 }
+data_stmt_value
+  : primaryP		                 	{ $1 }
+  
+  
+external_stmt :: { Decl A0 }
+external_stmt
+: EXTERNAL '::' name_list  { ExternalStmt () $3 }
+| EXTERNAL      name_list  { ExternalStmt () $2 }
+  
+name_list :: { [String] }
+name_list
+  : name_list ',' id2          { $1++[$3] }
+  | id2                        { [$1] }
+
+id2 :: { String } -- hack len
+id2 : ID  { $1 }
+    | id_keywords { $1 }
+
+id_keywords :: { String } -- identifiers which became keywords, but can still be used as variables
+id_keywords : COMMON { "common" } -- allow common as a subname (can happen)
+            | ALLOCATE { "allocate " }
+	    | id_keywords_2 { $1 }
+
+id_keywords_2 :: { String }
+id_keywords_2 : IN   { "in"   } 
+              | OUT  { "out"  }
+              | LEN  { "len"  }
+	
+defined_operator :: { BinOp A0 }
+defined_operator
+--  : defined_binary_op
+--  | defined_unary_op
+  : intrinsic_operator { $1 }
+
+intrinsic_operator :: { BinOp A0 }
+intrinsic_operator
+  : '**'        { Power () }
+  | '*'         { Mul () }
+  | '+'         { Plus () }
+  | '//'        { Concat () }
+  | rel_op      { $1  }
+--  | '.NOT.'     { Not () }
+  | '.AND.'     { And () }
+  | '.OR.'      { Or () } 
+
+
+namelist_stmt :: { Decl A0 }
+namelist_stmt
+: NAMELIST namelist_list   { Namelist () $2 }
+  
+namelist_list :: { [(Expr A0, [Expr A0])] }
+namelist_list
+  : namelist_list ',' '/' constant_p '/' namelist_group_object_list   { $1++[($4,$6)] }
+  | '/' constant_p '/' namelist_group_object_list                     { [($2,$4)] }
+
+namelist_group_object_list :: { [Expr A0] }
+namelist_group_object_list
+  : namelist_group_object_list ',' constant_p    { $1++[$3] }
+  | constant_p                                   { [$1] }
+  
+subroutine_stmt :: { (SubName A0, Arg A0, Maybe (BaseType A0)) }
+subroutine_stmt
+  : SUBROUTINE subname args_p        newline { ($2,$3,Nothing) }
+| SUBROUTINE subname srcloc        newline {% (getSrcSpan $3) >>= (\s -> return $ ($2,Arg () (NullArg ()) s,Nothing)) }
+  | prefix SUBROUTINE subname args_p newline { ($3,$4,Just (fst3 $1)) }
+  
+function_stmt :: { (SubName A0, Arg A0, Maybe (BaseType A0), Maybe (VarName A0)) }
+function_stmt
+ : prefix FUNCTION subname args_p RESULT '(' id2 ')' newline { ($3,$4,Just (fst3 $1),Just (VarName () $7)) }
+ | prefix FUNCTION subname args_p                    newline { ($3,$4,Just (fst3 $1),Nothing) }
+ | FUNCTION subname args_p RESULT '(' id2 ')'        newline { ($2,$3,Nothing,Just (VarName () $6)) }
+ | FUNCTION subname args_p                           newline { ($2,$3,Nothing,Nothing) }
+  
+subname :: { SubName A0 }
+subname
+: ID	   { SubName () $1 }
+| id_keywords { SubName () $1 }
+
+  
+prefix :: { (BaseType A0, Expr A0, Expr A0) }
+prefix
+  : type_spec  { $1 }
+| RECURSIVE  {% getSrcSpanNull >>= (\s -> return $ (Recursive (), NullExpr () s, NullExpr () s)) }
+| PURE       {% getSrcSpanNull >>= (\s -> return $ (Pure (), NullExpr () s, NullExpr () s)) }
+| ELEMENTAL  {% getSrcSpanNull >>= (\s -> return $ (Elemental (), NullExpr () s, NullExpr () s)) }
+
+args_p :: { Arg A0 }
+args_p
+: '(' dummy_arg_list srcloc ')' { ($2 (spanExtR ($3, $3) 1)) }
+
+dummy_arg_list :: { SrcSpan -> Arg A0 }
+dummy_arg_list
+: dummy_arg_list2        { Arg () $1 }
+| {- empty -}            { Arg () (NullArg ()) }
+
+dummy_arg_list2 :: { ArgName A0 } 
+dummy_arg_list2
+: dummy_arg_list2 ',' dummy_arg   { ASeq () $1 $3 }
+| dummy_arg                       { $1 }
+
+dummy_arg :: { ArgName A0 }
+dummy_arg
+: ID                     { ArgName () $1 }
+| '*'                    { ArgName () "*" }
+  
+assignment_stmt :: { Fortran A0 }
+assignment_stmt
+: variable '=' expr                                  { Assg () (spanTrans $1 $3) $1 $3 }
+| srcloc ID '(' section_subscript_list ')' '=' expr  {% getSrcSpan $1 >>= (\s -> return $ Assg () s (Var () s [(VarName () $2, $4)]) $7) }
+
+
+
+-- moved up to assignment_stmt
+variable :: { Expr A0 }
+variable
+ : srcloc scalar_variable_name_list     {% (getSrcSpan $1) >>= (\s -> return $ Var () s $2) }
+
+
+scalar_variable_name_list :: { [(VarName A0, [Expr A0])] }
+scalar_variable_name_list
+  : scalar_variable_name_list '%' scalar_variable_name    { $1++[$3] }
+  | scalar_variable_name                                  { [$1] }
+
+
+scalar_variable_name :: { (VarName A0, [Expr A0]) }
+scalar_variable_name
+: ID '(' section_subscript_list ')' { (VarName () $1, $3) }
+| ID '(' ')'                        {% getSrcSpanNull >>= (\s -> return $ (VarName () $1, [NullExpr () s])) }
+| ID                                { (VarName () $1, []) }
+| id_keywords_2          {% getSrcSpanNull >>= (\s -> return $ (VarName () $1, [NullExpr () s])) }   
+
+-- | TYPE                           { (VarName () "type", []) } -- a bit of a hack but 'type' allowed as var name
+--                                                              --  but causes REDUCE REDUCE conflicts! 
+
+-- bound comes through int_expr
+subscript :: { Expr A0 }
+subscript
+  : int_expr                                      { $1 }
+  | bound                                         { $1 }
+
+bound :: { Expr A0 }
+bound
+: expr ':' expr                       { Bound () (spanTrans $1 $3) $1 $3 }
+|  ':'                                {% getSrcSpanNull >>= (\s -> return $ Bound () s (NullExpr () s) (NullExpr () s)) }
+| expr ':'                            {% getSrcSpanNull >>= (\s' -> return $ Bound () (spanTrans' $1 s') $1 (NullExpr () s')) }
+| srcloc ':' expr                     {% (getSrcSpan $1) >>= (\s@(_, l) -> return $ Bound () s (NullExpr () (l, l)) $3) }
+
+section_subscript_list :: { [Expr A0] }
+section_subscript_list
+  : section_subscript_list ',' section_subscript  { $1++[$3] }
+  | section_subscript                             { [$1] }
+  
+section_subscript :: { Expr A0 }
+section_subscript
+: subscript                             { $1 }
+| srcloc ID '=' expr			{% getSrcSpan $1 >>= (\s -> return $ AssgExpr () s $2 $4) }
+
+
+expr :: { Expr A0 }
+expr
+  : level_5_expr                                       { $1 }
+
+
+level_5_expr :: { Expr A0 }
+level_5_expr
+  : equiv_operand                                      { $1 }
+
+equiv_operand :: { Expr A0 }
+equiv_operand
+: equiv_operand '.OR.' or_operand                   { Bin () (spanTrans $1 $3) (Or ()) $1 $3 }
+  | or_operand                                      { $1 }
+
+or_operand :: { Expr A0 }
+or_operand
+: or_operand '.AND.' and_operand                    { Bin () (spanTrans $1 $3) (And ()) $1 $3 }
+| and_operand                                       { $1 }
+
+
+and_operand :: { Expr A0 }
+and_operand
+: level_4_expr                                       { $1 }
+
+level_4_expr :: { Expr A0 }
+level_4_expr 
+: level_4_expr rel_op level_3_expr                   { Bin () (spanTrans $1 $3) $2 $1 $3 }
+| level_3_expr                                       { $1 }
+
+
+level_3_expr :: { Expr A0 }
+level_3_expr 
+: level_3_expr '//' level_2_expr                     { Bin () (spanTrans $1 $3) (Concat ()) $1 $3 }
+| level_2_expr                                       { $1 }
+
+level_2_expr :: { Expr A0 }
+level_2_expr 
+: level_2_expr '+' add_operand                       { Bin () (spanTrans $1 $3) (Plus ()) $1 $3  }
+| level_2_expr '-' add_operand                       { Bin () (spanTrans $1 $3) (Minus ()) $1 $3 }
+| add_operand                                        { $1 }
+
+add_operand :: { Expr A0 }
+add_operand 
+: add_operand '*' mult_operand                       { Bin () (spanTrans $1 $3) (Mul ()) $1 $3 }
+| add_operand '/' mult_operand                       { Bin () (spanTrans $1 $3) (Div ()) $1 $3 }
+| mult_operand                                       { $1 }
+
+mult_operand :: { Expr A0 }
+mult_operand 
+: level_1_expr '**' mult_operand                     { Bin () (spanTrans $1 $3) (Power ()) $1 $3 }
+| level_1_expr                                       { $1 }
+
+level_1_expr :: { Expr A0 }
+level_1_expr 
+: srcloc '-' primary               {% getSrcSpan $1 >>= (\s -> return $ Unary () s (UMinus ()) $3) }
+| srcloc '.NOT.' primary            {% getSrcSpan $1 >>= (\s -> return $ Unary () s (Not ()) $3) }
+| primary                          { $1 }
+
+primaryP :: { Expr A0 }
+primaryP :  
+   srcloc num '*' primary   {% getSrcSpan $1 >>= (\s -> return $ Bin () s (Mul ()) (Con () s $2) $4) }
+|  srcloc '-' primary               {% getSrcSpan $1 >>= (\s -> return $ Unary () s (UMinus ()) $3) }
+|  primary                  { $1 }
+
+
+primary :: { Expr A0 }
+primary 
+: constant                         { $1 }
+| variable                         { $1 }
+| srcloc type_cast '(' expr ')'    {% getSrcSpan $1 >>= (\s -> return $ Var () s [(VarName () $2, [$4])]) }
+										  
+| array_constructor                { $1 }
+| '(' expr ')'                     { $2 }
+| srcloc SQRT '(' expr ')'	   {% getSrcSpan $1 >>= (\s -> return $ Sqrt () s $4) }
+
+
+type_cast :: { String }
+type_cast 
+ : REAL      { "REAL"      } -- The following supports the type cast notioatn
+ | INTEGER   { "INTEGER"   }
+ | LOGICAL   { "LOGICAL"   }
+ | CHARACTER { "CHARACTER" }
+
+
+-- Bit of a conflict here- not entirely sure when this is needed
+-- | srcloc ':'                       {% getSrcSpan $1 >>= (\s -> return $ Bound () s (NullExpr () s) (NullExpr () s)) }
+
+fields :: { [String] }
+fields
+  : fields '.' id2                              { $1++[$3] }
+  | id2                                         { [$1] }
+  
+array_constructor :: { Expr A0 }
+array_constructor
+: srcloc '(/' expr_list '/)'           {% getSrcSpan $1 >>= (\s -> return $ ArrayCon () s $3) } 
+
+expr_list :: { [Expr A0] }
+expr_list
+  : expr_list ',' expr          { $1++[$3] }
+  | expr                        { [$1] }
+  
+constant_p :: { Expr A0 }
+constant_p
+  : constant_p2                        { $1 }
+ 
+constant_p2 :: { Expr A0 }
+constant_p2
+: srcloc ID             {% getSrcSpan $1 >>= (\s -> return $ Var () s [(VarName () $2,[])]) }
+  
+constant :: { Expr A0 }
+constant 
+  : literal_constant                             { $1 }
+
+literal_constant :: { Expr A0 }
+literal_constant 
+: srcloc num                      {% (getSrcSpan $1) >>= (\s -> return $ Con () s $2) }
+| srcloc ZLIT                     {% (getSrcSpan $1) >>= (\s -> return $ ConL () s 'z' $2) }
+| srcloc STR			  {% (getSrcSpan $1) >>= (\s -> return $ ConS () s $2) }
+| logical_literal_constant	  { $1 }
+
+--lit_mark :: { Char }
+--lit_mark 
+--: 'z' { $1 }
+--| 'Z' { $1 }
+--| 'b' { $1 }
+--| 'B' { $1 }
+--| 'o' { $1 }
+--| 'O'  { $1 }
+
+logical_literal_constant :: { Expr A0 }
+logical_literal_constant 
+: srcloc '.TRUE.'                  {% (getSrcSpan $1) >>= (\s -> return $ Con () s  ".TRUE.") }
+| srcloc '.FALSE.'                 {% (getSrcSpan $1) >>= (\s -> return $ Con () s ".FALSE.") }
+
+rel_op :: { BinOp A0 }
+  : '=='                           { RelEQ () }
+  | '/='                           { RelNE () }
+  | '<'                            { RelLT () }
+  | '<='                           { RelLE () }
+  | '>'                            { RelGT () }
+  | '>='                           { RelGE () }
+
+int_expr :: { Expr A0 }
+int_expr
+  : expr                             { $1 }
+
+do_variable :: { VarName A0 } 
+do_variable
+: ID                       { VarName () $1 }
+
+do_construct :: { Fortran A0 }
+do_construct
+  : block_do_construct              { $1 }
+
+block_do_construct :: { Fortran A0 } 
+block_do_construct                  
+: srcloc nonlabel_do_stmt newline do_block {% getSrcSpan $1 >>= (\s -> return $ For () s (fst4 $2) (snd4 $2) (trd4 $2) (frh4 $2) $4) } 
+| srcloc DO num ',' loop_control newline do_block_num 
+                    {% do { (fs, n) <- return $ $7;
+			    s       <- getSrcSpan $1;
+			    if (n == $3) then 
+				return $ For () s (fst4 $5) (snd4 $5) (trd4 $5) (frh4 $5) fs
+                            else parseError "DO/END DO labels don't match"
+                          } }
+| srcloc DO num loop_control newline do_block_num 
+                    {% do { (fs, n) <- return $ $6;
+			    s       <- getSrcSpan $1;
+			    if (n == $3) then 
+				return $ For () s (fst4 $4) (snd4 $4) (trd4 $4) (frh4 $4) fs
+                            else parseError "DO/END DO labels don't match"
+                          } }
+| srcloc DO num loop_control newline do_block_cont 
+                    {% do { (fs, n) <- return $ $6;
+			    s       <- getSrcSpan $1;
+			    if (n == $3) then 
+				return $ For () s (fst4 $4) (snd4 $4) (trd4 $4) (frh4 $4) fs
+			      else return $ NullStmt () s --  parseError $ "DO/CONTINUE labels don't match" -- NEEDS FIXING!
+                          } }
+
+nonlabel_do_stmt :: { (VarName A0, Expr A0, Expr A0, Expr A0) }
+nonlabel_do_stmt
+  : DO loop_control                  { $2 }
+  | DO                               {% getSrcSpanNull >>= (\s -> return $ (VarName () "", NullExpr () s, NullExpr () s, NullExpr () s)) }
+
+loop_control :: { (VarName A0, Expr A0, Expr A0, Expr A0) }
+loop_control
+  : do_variable '=' int_expr ','  int_expr loop_control2  { ($1,$3,$5,$6) }
+--  | int_expr comma_int_expr_opt comma_opt WHILE '(' scalar_logical_expr ')'
+
+loop_control2 :: { Expr A0 }
+loop_control2
+  : ',' int_expr                     { $2 }
+| {- empty -}                      {% getSrcSpanNull >>= (\s -> return $ Con () s "1") }
+
+do_block :: { Fortran A0 }
+do_block : line newline do_block { FSeq () (spanTrans $1 $3) $1 $3 }
+| num end_do  {% getSrcSpanNull >>= (\s -> return $ NullStmt () s) }
+| end_do      {% getSrcSpanNull >>= (\s -> return $ NullStmt () s) }
+
+do_block_num :: { (Fortran A0, String) }
+do_block_num : line newline do_block_num { let (fs, n) = $3 in (FSeq () (spanTrans $1 fs) $1 fs, n) }
+| num end_do  {% getSrcSpanNull >>= (\s -> return $ (NullStmt () s, $1)) }
+
+
+do_block_cont :: { (Fortran A0, String) }
+do_block_cont : 
+   num CONTINUE  {% getSrcSpanNull >>= (\s -> return $ (NullStmt () s, $1)) }
+| line newline do_block_cont { let (fs, n) = $3 in (FSeq () (spanTrans $1 fs) $1 fs, n) }
+
+line :: { Fortran A0 }
+line :  num executable_constructP   {% getSrcSpanNull >>= (\s -> return $ Label () s $1 $2  ) }
+          | executable_constructP  { $1 }
+
+end_do :: { }
+end_do
+: END DO {}
+| ENDDO  {} 
+
+block :: { Fortran A0 }
+block
+  : executable_construct_list        { $1 }
+ 
+execution_part :: { Fortran A0 }
+execution_part 
+  : executable_construct_list        { $1 }
+
+executable_construct_list :: { Fortran A0 }
+executable_construct_list
+: executable_construct newline executable_construct_list { FSeq () (spanTrans $1 $3) $1 $3 }
+| executable_construct newline { $1 }
+
+
+executable_construct :: { Fortran A0 }
+executable_construct
+:  num executable_constructP     {% (getSrcSpanNull) >>= (\s -> return $ Label () s $1 $2) }
+|  executable_constructP     { $1 }
+
+executable_constructP :: { Fortran A0 }
+executable_constructP
+: --  | case_construct
+    do_construct                                  { $1 }
+  | if_construct                                  { $1 }
+  | action_stmt                                   { $1 }
+--  | forall_construct
+--  | where_construct
+ 
+equivalence_stmt :: { Decl A0 }
+equivalence_stmt 
+: srcloc EQUIVALENCE '(' vlist ')'              {% getSrcSpan $1 >>= (\s -> return $ Equivalence () s $4) }
+
+action_stmt :: { Fortran A0 }
+action_stmt
+  : allocate_stmt                                 { $1 }
+  | assignment_stmt                                { $1 }
+  | backspace_stmt                                { $1 }
+  | call_stmt                                     { $1 }
+  | close_stmt                                    { $1 }
+  | continue_stmt                                 { $1 }
+  | cycle_stmt                                    { $1 }
+| srcloc data_stmt                              {% getSrcSpan $1 >>= (\s -> return $ DataStmt () s $2) }
+  | deallocate_stmt                               { $1 }
+  | endfile_stmt                                  { $1 }
+--  | end_function_stmt
+--  | end_program_stmt
+--  | end_subroutine_stmt
+  | exit_stmt                                     { $1 }
+  | format_stmt                                   { $1 }
+  | forall_stmt                                   { $1 }
+  | goto_stmt                                     { $1 }
+  | if_stmt                                       { $1 }
+  | inquire_stmt                                  { $1 }
+  | nullify_stmt                                  { $1 }
+  | open_stmt                                     { $1 }
+  | pointer_assignment_stmt                       { $1 }
+  | print_stmt                                    { $1 }
+  | read_stmt                                     { $1 }
+  | return_stmt                                   { $1 }
+  | pause_stmt                                    { $1 }
+  | rewind_stmt                                   { $1 }
+  | stop_stmt                                     { $1 }
+  | where_stmt                                    { $1 }
+  | write_stmt                                    { $1 }
+| srcloc TEXT				          {% getSrcSpan $1 >>= (\s -> return $ TextStmt () s $2) }
+
+pause_stmt :: { Fortran A0 }
+pause_stmt : srcloc PAUSE STR {% getSrcSpan $1 >>= (\s -> return $ Pause () s $3) }
+
+format_stmt :: { Fortran A0 }
+format_stmt : srcloc FORMAT io_control_spec_list_d {% getSrcSpan $1 >>= (\s -> return $ Format () s $3) }
+
+call_stmt :: { Fortran A0 }
+call_stmt
+: srcloc CALL call_name '(' actual_arg_spec_list ')' {% getSrcSpan $1 >>= (\s -> return $ Call () s $3 (ArgList () $5)) }
+| srcloc CALL call_name '(' ')'                       {% getSrcSpan $1 >>= (\s -> return $ Call () s $3 (ArgList () (NullExpr () ($1, $1)))) }
+| srcloc CALL call_name                             {% getSrcSpan $1 >>= (\s -> return $ Call () s $3 (ArgList () (NullExpr () ($1, $1)))) }
+
+call_name :: { Expr A0 }
+call_name
+: srcloc id2                 {% (getSrcSpan $1) >>= (\s -> return $ Var () s [(VarName () $2,[])]) }  
+
+actual_arg_spec_list :: { Expr A0 }
+actual_arg_spec_list
+: actual_arg_spec_list ',' actual_arg_spec      { ESeq () (spanTrans $1 $3) $1 $3 }
+| actual_arg_spec                               { $1 }
+
+actual_arg_spec :: { Expr A0 }
+actual_arg_spec
+  : srcloc ID '=' actual_arg                   {% getSrcSpan $1 >>= (\s -> return $ AssgExpr () s $2 $4) }
+  | actual_arg                                 { $1 }
+
+actual_arg  :: { Expr A0 }
+actual_arg
+  : expr                                        { $1 }
+--  | variable
+--  | procedre_name
+--  | alt_return_spec
+
+else_if_list :: { [(Expr A0, Fortran A0)]  }
+else_if_list
+  : else_if_list else_if_then_stmt block   { $1++[($2,$3)] }
+  | {- empty -}                            { [] }
+
+else_if_stmt :: { Expr A0 }
+else_if_stmt
+  : ELSE if_then_stmt             { $2 }
+
+if_then_stmt :: { Expr A0 }
+if_then_stmt 
+  : IF '(' logical_expr ')' THEN newline             { $3 }
+ 
+
+else_if_then_stmt :: { Expr A0 }
+else_if_then_stmt 
+  : ELSEIF '(' logical_expr ')' THEN newline         { $3 }
+  | ELSE IF '(' logical_expr ')' THEN newline         { $4 }
+
+
+--if_rest :: { ([(Expr A0,Fortran)],Maybe Fortran) }
+--: ELSE if_then_stmt block if_rest     { (($2,$3):(fst $4),snd $4) }
+--| ELSE block END IF                   { ([],Just $2) }
+--| END IF                              { ([],Nothing) }
+
+if_construct :: { Fortran A0 }
+if_construct
+: 
+  -- FORTRAN 77 numerical comparison IFs
+
+  srcloc IF '(' logical_expr ')' num ',' num ',' num 
+  {% getSrcSpan $1 >>= (\s -> return $ If () s (Bin () s (RelLT ()) $4 (Con () s "0")) (Goto () s $6)
+			[(Bin () s (RelEQ ()) $4 (Con () s "0"), (Goto () s $8)),
+                         (Bin () s (RelGT ()) $4 (Con () s "0"), (Goto () s $10))] Nothing) }
+
+  -- Other If forms
+
+| srcloc if_then_stmt block end_if_stmt                  
+             {% getSrcSpan $1 >>= (\s -> return $ If () s $2 $3 [] Nothing) }
+
+| srcloc if_then_stmt block else_if_list end_if_stmt 
+             {% getSrcSpan $1 >>= (\s -> return $ If () s $2 $3 $4 Nothing) }
+
+| srcloc if_then_stmt block else_if_list ELSE newline block end_if_stmt    
+             {% getSrcSpan $1 >>= (\s -> return $ If () s $2 $3 $4 (Just $7)) }
+
+--| if_then_stmt block ELSE block end_if_stmt      {% getSrcSpan $1 (\s -> If s $1 $2 [] (Just $4)) }
+
+--: if_then_stmt block if_rest				  { (If $1 $2 (fst $3) (snd $3)) }
+--: if_then_stmt block else_if_list END IF                { (If $1 $2 $3 Nothing) }
+--| if_then_stmt block else_if_list ELSE block END IF     { (If $1 $2 $3 (Just $5)) }
+--| if_then_stmt block END IF                             { (If $1 $2 [] Nothing) }
+--| if_then_stmt block ELSE block END IF                  { (If $1 $2 [] (Just $4)) }
+
+--  : if_then_stmt block 
+----    else_if_list 
+--    else_opt 
+--    END IF                                        { (If $1 $2 $3) }
+
+end_if_stmt  :: {}
+end_if_stmt  : END IF  { }
+             | ENDIF   { } 
+
+
+logical_expr :: { Expr A0 }
+logical_expr
+  : expr                                          { $1 }
+
+allocate_stmt :: { Fortran A0 }
+allocate_stmt
+  : srcloc ALLOCATE '(' allocation_list ',' STAT '=' variable ')'  
+             {% getSrcSpan $1 >>= (\s -> return $ Allocate () s $4 $8) }
+
+  | srcloc ALLOCATE '(' allocation_list ')' 
+            {% getSrcSpanNull >>= (\e -> getSrcSpan $1 >>= (\s -> return $ Allocate () s $4 (NullExpr () e))) }
+
+
+allocation_list :: { Expr A0 }
+allocation_list
+: allocation_list ',' allocation                  { ESeq () (spanTrans $1 $3) $1 $3 }
+| allocation                                      { $1 }
+| {- empty -}                                     {% getSrcSpanNull >>= (return . (NullExpr ())) }
+
+allocate_object_list :: { [Expr A0] }
+allocate_object_list
+  : allocate_object_list ',' allocate_object      { $1++[$3] }
+  | allocate_object                               { [$1] }
+
+allocate_object :: { Expr A0 }
+allocate_object
+: srcloc scalar_variable_name_list              {% getSrcSpan $1 >>= (\s -> return $ Var () s $2) }
+
+allocate_shape_spec_list :: { [Expr A0] }
+allocate_shape_spec_list
+  : allocate_shape_spec_list ',' allocate_shape_spec    { $1++[$3] }
+  | allocate_shape_spec                                 { [$1] }
+
+allocate_shape_spec :: { Expr A0 }
+allocate_shape_spec
+  : expr   { $1 }
+  | bound  { $1 }
+
+allocation :: { Expr A0 }
+allocation
+  : allocation_var_list2                          { $1 }
+
+allocation_var_list2 :: { Expr A0 }
+allocation_var_list2
+: srcloc allocation_var_list                    {% getSrcSpan $1 >>= (\s -> return $ Var () s $2) }
+
+allocation_var_list :: { [(VarName A0,[Expr A0])] }
+allocation_var_list
+  : allocation_var_list '%' allocation_var      { $1++[$3]  }
+  | allocation_var                              { [$1] }
+
+allocation_var :: { (VarName A0, [Expr A0]) }
+allocation_var
+: ID '(' allocate_shape_spec_list ')'         { (VarName () $1, $3) }
+| ID                                          { (VarName () $1, []) }
+
+backspace_stmt :: { Fortran A0 }
+backspace_stmt
+: srcloc BACKSPACE expr                       {% getSrcSpan $1 >>= (\s -> return $ Backspace () s [NoSpec () $3]) }
+| srcloc BACKSPACE '(' position_spec_list ')' {% getSrcSpan $1 >>= (\s -> return $ Backspace () s $4) }
+
+position_spec_list :: { [Spec A0] }
+position_spec_list
+  : position_spec_list ',' position_spec          { $1++[$3] }
+  | position_spec                                 { [$1] }
+
+position_spec :: { Spec A0 }
+position_spec
+: expr                                          { NoSpec () $1 }
+ | srcloc UNIT '=' expr                         { Unit () $4 } -- units-of-measure
+ | srcloc ID '=' expr                           {% case (map (toLower) $2) of
+ --                                                    "unit"   -> return (Unit   () $4)
+                                                       "iostat" -> return (IOStat () $4)
+                                                       s        ->  parseError ("incorrect name in spec list: " ++ s) }
+
+close_stmt :: { Fortran A0 }
+close_stmt
+: srcloc CLOSE '(' close_spec_list ')'          {% getSrcSpan $1 >>= (\s -> return $ Close () s $4) }
+
+close_spec_list :: { [Spec A0] }
+close_spec_list
+  : close_spec_list ',' close_spec                { $1++[$3] }
+  | close_spec                                    { [$1] }
+
+close_spec :: { Spec A0 }
+close_spec
+: expr                                          { NoSpec () $1 }
+| UNIT '=' expr                                 { Unit () $3 } -- units-of-measure
+| ID '=' expr                          
+{% case (map (toLower) $1) of
+      "iostat" -> return (IOStat () $3)
+      "status" -> return (Status () $3)
+      s        -> parseError ("incorrect name in spec list: " ++ s) }
+
+--external_file_unit :: { Expr A0 }
+--external_file_unit
+--  : expr                                          { $1 }
+
+continue_stmt :: { Fortran A0 }
+continue_stmt
+: srcloc CONTINUE                               {% getSrcSpan $1 >>= (return . (Continue ())) }
+
+cycle_stmt :: { Fortran A0 }
+cycle_stmt
+: srcloc CYCLE id2                              {% getSrcSpan $1 >>= (\s -> return $ Cycle () s $3) }
+| srcloc CYCLE                                  {% getSrcSpan $1 >>= (\s -> return $ Cycle () s "") }
+
+deallocate_stmt :: { Fortran A0 }
+deallocate_stmt
+: srcloc DEALLOCATE '(' allocate_object_list ',' STAT '=' variable ')' 
+        {% getSrcSpan $1 >>= (\s -> return $ Deallocate () s $4 $8) }
+
+| srcloc DEALLOCATE '(' allocate_object_list ')'
+        {% getSrcSpan $1 >>= (\s -> return $ Deallocate () s $4 (NullExpr () s)) }
+
+endfile_stmt :: { Fortran A0 }
+endfile_stmt
+: srcloc ENDFILE expr                                  {% getSrcSpan $1 >>= (\s -> return $ Endfile () s [NoSpec () $3]) }
+| srcloc ENDFILE '(' position_spec_list ')'            {% getSrcSpan $1 >>= (\s -> return $ Endfile () s $4) }
+
+exit_stmt :: { Fortran A0 }
+exit_stmt
+: srcloc EXIT id2                                    {% getSrcSpan $1 >>= (\s -> return $ Exit () s $3) }
+| srcloc EXIT                                        {% getSrcSpan $1 >>= (\s -> return $ Exit () s "") }
+
+forall_stmt :: { Fortran A0 }
+forall_stmt 
+: srcloc FORALL forall_header forall_assignment_stmt 
+                 {% getSrcSpan $1 >>= (\s -> return $ Forall () s $3 $4) }
+
+  | srcloc FORALL forall_header newline forall_assignment_stmt_list forall_stmt_end 
+                 {% getSrcSpan $1 >>= (\s -> return $ Forall () s $3 $5) }
+
+forall_stmt_end :: {}
+forall_stmt_end 
+  : END FORALL       {}
+ | {- empty -}       {}
+
+forall_header :: { ([(String,Expr A0,Expr A0,Expr A0)],Expr A0) }
+forall_header
+  : '(' forall_triplet_spec_list ',' expr ')'   { ($2,$4) }
+| '(' forall_triplet_spec_list ')'              {% getSrcSpanNull >>= (\s -> return ($2, NullExpr () s)) }
+
+forall_triplet_spec_list :: { [(String,Expr A0,Expr A0,Expr A0)] }
+forall_triplet_spec_list
+  : forall_triplet_spec_list ',' forall_triplet_spec  { $1++[$3]}
+  | forall_triplet_spec                               { [$1] }
+
+forall_triplet_spec :: { (String,Expr A0,Expr A0,Expr A0) }
+forall_triplet_spec
+  : id2 '=' int_expr ':' int_expr ';' int_expr { ($1,$3,$5,$7) }
+| id2 '=' int_expr ':' int_expr              {% getSrcSpanNull >>= (\s -> return ($1,$3,$5,NullExpr () s)) }
+
+forall_assignment_stmt :: { Fortran A0 }
+forall_assignment_stmt
+: assignment_stmt                               { $1 }
+| pointer_assignment_stmt                       { $1 }
+
+
+forall_assignment_stmt_list :: { Fortran A0 }
+forall_assignment_stmt_list 
+: forall_assignment_stmt newline forall_assignment_stmt_list { FSeq () (spanTrans $1 $3) $1 $3 }
+| forall_assignment_stmt newline                             { $1 }
+
+
+goto_stmt :: { Fortran A0 }
+goto_stmt
+: srcloc GOTO num                                    {% getSrcSpan $1 >>= (\s -> return $ Goto () s $3) }
+
+if_stmt :: { Fortran A0 }
+if_stmt
+: srcloc IF '(' logical_expr ')' action_stmt       {% getSrcSpan $1 >>= (\s -> return $ If () s $4 $6 [] Nothing) }
+
+inquire_stmt :: { Fortran A0 }
+inquire_stmt
+: srcloc INQUIRE '(' inquire_spec_list ')' 
+        {% getSrcSpan $1 >>= (\s -> return $ Inquire () s $4 []) } 
+  | srcloc INQUIRE '(' IOLENGTH '=' variable ')' output_item_list 
+
+        {% getSrcSpan $1 >>= (\s -> return $ Inquire () s [IOLength () $6] $8) }
+
+inquire_spec_list :: { [Spec A0] }
+inquire_spec_list
+  : inquire_spec_list ',' inquire_spec           { $1++[$3] }
+  | inquire_spec                                 { [$1] }
+
+inquire_spec :: { Spec A0 }
+inquire_spec
+: expr                             { NoSpec () $1 }
+| UNIT '=' variable                { Unit () $3 } -- units-of-measure
+| READ '=' variable                { Read () $3 }
+| WRITE '=' variable               { WriteSp () $3 }
+| ID '=' expr                      {% case (map (toLower) $1) of
+                                            "file"        -> return (File ()	  $3)
+                                            "iostat"      -> return (IOStat ()     $3)
+                                            "exist"       -> return (Exist ()      $3)
+                                            "opened"      -> return (Opened ()     $3)
+                                            "number"      -> return (Number ()     $3)
+                                            "named"       -> return (Named ()      $3)
+                                            "name"        -> return (Name ()       $3)
+                                            "access"      -> return (Access ()     $3)
+                                            "sequential"  -> return (Sequential () $3)
+                                            "direct"      -> return (Direct ()     $3)
+                                            "form"        -> return (Form ()       $3)
+                                            "formatted"   -> return (Formatted ()  $3)
+                                            "unformatted" -> return (Unformatted () $3)
+                                            "recl"        -> return (Recl    ()   $3)
+                                            "nextrec"     -> return (NextRec ()   $3)
+                                            "blank"       -> return (Blank   ()   $3)
+                                            "position"    -> return (Position ()  $3)
+                                            "action"      -> return (Action   ()  $3)
+                                            "readwrite"   -> return (ReadWrite () $3)
+                                            "delim"       -> return (Delim    ()  $3)
+                                            "pad"         -> return (Pad     ()   $3)
+                                            s             -> parseError ("incorrect name in spec list: " ++ s) }
+--io_implied_do
+--io_implied_do
+--  : '(' io_implied_do_object_list ',' io_implied_do_control ')'
+--io_implied_do_object
+--io_implied_do_object
+--  : input_item
+--  | output_item
+--io_implied_do_control
+--io_implied_do_control
+--  : do_variable '=' scalar_int_expr ',' scalar_int_expr ',' scalar_int_expr
+--  | do_variable '=' scalar_int_expr ',' scalar_int_expr
+--file_name_expr
+--file_name_expr
+--  : scalar_char_expr
+
+
+
+nullify_stmt :: { Fortran A0 }
+nullify_stmt
+: srcloc NULLIFY '(' pointer_object_list ')'           {% getSrcSpan $1 >>= (\s -> return $ Nullify () s $4) }
+
+pointer_object_list :: { [Expr A0] }
+pointer_object_list
+  : pointer_object_list ',' pointer_object        { $1++[$3] }
+  | pointer_object                                { [$1] }
+
+pointer_object :: { Expr A0 }
+pointer_object
+  : structure_component                           { $1 }
+
+structure_component :: { Expr A0 }
+structure_component
+  : variable                                      { $1 }
+
+open_stmt :: { Fortran A0 }
+open_stmt
+: srcloc OPEN '(' connect_spec_list ')'          {% getSrcSpan $1 >>= (\s -> return $ Open () s $4) }
+
+connect_spec_list :: { [Spec A0] }
+connect_spec_list
+  : connect_spec_list ',' connect_spec            { $1++[$3] }
+  | connect_spec                                  { [$1] }
+
+connect_spec :: { Spec A0 }
+connect_spec
+: expr                    { NoSpec () $1 }
+| UNIT '=' expr           { Unit () $3 } 
+| ID '=' expr             {% case (map (toLower) $1) of
+                                          "iostat"   -> return (IOStat () $3)
+                                          "file"     -> return (File () $3)
+                                          "status"   -> return (Status () $3)
+                                          "access"   -> return (Access () $3)
+                                          "form"     -> return (Form () $3)
+                                          "recl"     -> return (Recl () $3)
+                                          "blank"    -> return (Blank () $3)
+                                          "position" -> return (Position () $3)
+                                          "action"   -> return (Action () $3)
+                                          "delim"    -> return (Delim () $3)
+                                          "pad"      -> return (Pad () $3)
+                                          s          -> parseError ("incorrect name in spec list: " ++ s) }
+
+file_name_expr :: { Expr A0 }
+file_name_expr
+  : scalar_char_expr                              { $1 }
+
+scalar_char_expr :: { Expr A0 }
+scalar_char_expr
+  : expr                                          { $1 }
+
+scalar_int_expr :: { Expr A0 }
+scalar_int_expr
+  : expr                                          { $1 }
+
+pointer_assignment_stmt :: { Fortran A0 }
+pointer_assignment_stmt
+: srcloc pointer_object '=>' target                    {% getSrcSpan $1 >>= (\s -> return $ PointerAssg () s $2 $4) }
+
+target :: { Expr A0 }
+target
+  : expr                                          { $1 }
+
+
+
+print_stmt :: { Fortran A0 }
+print_stmt
+: srcloc PRINT format ',' output_item_list           {% getSrcSpan $1 >>= (\s -> return $  Print () s $3 $5) }
+| srcloc PRINT format                                {% getSrcSpan $1 >>= (\s -> return $ Print () s $3 []) }
+
+-- also replaces io_unit
+format :: { Expr A0 }
+format
+: expr                                  { $1 }
+--  | literal_constant                  { (Con $1) } -- label
+| '*'                                   {% getSrcSpanNull >>= (\s -> return $ Var () s [(VarName () "*",[])]) }
+
+output_item_list :: { [Expr A0] }
+output_item_list
+  : output_item_list ','  output_item             { $1++[$3] }
+  | output_item                                   { [$1] }
+
+output_item :: { Expr A0 }
+output_item
+  : expr                                          { $1 }
+| '(' actual_arg_spec_list ')'                    { $2 }
+--  | io_implied_do                                 { $1 }
+
+
+read_stmt :: { Fortran A0 }
+read_stmt
+: srcloc READ '(' io_control_spec_list ')' input_item_list {% getSrcSpan $1 >>= (\s -> return $ ReadS () s $4 $6) }
+| srcloc READ io_control_spec ',' input_item_list   {% getSrcSpan $1 >>= (\s -> return $ ReadS () s $3 $5) }
+| srcloc READ '(' io_control_spec_list ')'                 {% getSrcSpan $1 >>= (\s -> return $ ReadS () s $4 []) }
+
+
+io_control_spec_list_d :: { [Spec A0] }
+io_control_spec_list_d :
+  '(/' ',' io_control_spec_list_d2      { (Delimiter ()):$3 }
+| '('      io_control_spec_list_d2      { $2 }
+
+{-
+
+| '(/' ',' io_control_spec_list '/)'     { ((Delimiter ()):$3) ++ [Delimiter ()] } 
+| '('      io_control_spec_list '/)'     { $2 ++ [Delimiter ()] }
+  '(/' ',' io_control_spec_list ',' '/)' { ((Delimiter ()):$3) ++ [Delimiter ()] } 
+| '('      io_control_spec_list ',' '/)' { $2 ++ [Delimiter ()] }
+ -}
+
+
+io_control_spec_list_d2 :: { [Spec A0] }
+io_control_spec_list_d2 : 
+  io_control_spec ',' io_control_spec_list_d2  { $1 ++ $3 }
+| '/)'                                         { [Delimiter ()] }
+| io_control_spec ')'                          { $1 }
+| io_control_spec '/)'                         { $1 ++ [Delimiter ()] }
+
+
+io_control_spec_list :: { [Spec A0] }
+io_control_spec_list : 
+  io_control_spec ',' io_control_spec_list  { $1 ++ $3 }
+| io_control_spec                           { $1 }
+
+-- (unit, fmt = format), (rec, advance = expr), (nml, iostat, id = var), (err, end, eor = label)
+
+io_control_spec :: { [Spec A0] } 
+io_control_spec
+: --format                           { [NoSpec () $1] }
+  '/'                                { [Delimiter ()] }
+| '*'                                {% getSrcSpanNull >>= (\s -> return $ [NoSpec () (Var () s [(VarName () "*", [])])]) }
+| STR                                { [StringLit () $1] }
+| STR '/'                            { [StringLit () $1, Delimiter ()] }
+| END '=' label                      { [End () $3] }
+| io_control_spec_id                 { [$1] }
+| num                                {% getSrcSpanNull >>= (\s -> return $ [Number () (Con () s $1)]) }
+| floating_spec                      { [$1] }
+
+
+floating_spec :: { Spec A0 }
+floating_spec : DATA_DESC      {% getSrcSpanNull >>= (\s -> return $ Floating () (NullExpr () s) (Con () s $1) ) }
+| num DATA_DESC  {% getSrcSpanNull >>= (\s -> return $ Floating () (Con () s $1) (Con () s $2)) }
+
+io_control_spec_id :: { Spec A0 }
+: variable                               { NoSpec () $1 }
+--| UNIT '=' format                      { Unit () $3 }
+--| ID '=' format                          {% case (map (toLower) $1) of
+--                                                     "fmt"     -> return (FMT () $3)
+--                                                     "rec"     -> return (Rec () $3)
+--                                                     "advance" -> return (Advance () $3)
+--                                                     "nml"     -> return (NML () $3)
+--                                                     "iostat"  -> return (IOStat () $3)
+--                                                     "size"    -> return (Size () $3)
+--                                                     "eor"     -> return (Eor () $3)
+--                                                     s         -> parseError ("incorrect name in spec list: " ++ s) }
+
+--  | namelist_group_name                           { NoSpec $1 }
+
+input_item_list :: { [Expr A0] }
+input_item_list
+  : input_item_list ',' input_item                { $1++[$3] }
+  | input_item                                    { [$1] }
+
+input_item :: { Expr A0 }
+input_item
+  : variable                                      { $1 }
+
+
+--  | io_implied_do
+--io_unit :: { Expr A0 }
+--io_unit
+--  : expr                                          { $1 }
+--  | '*'                                           { (Var [(VarName  () "*",[])]) }
+--  | internal_file_unit                            { $1 }
+
+label :: { Expr A0 }
+label
+: srcloc LABEL                       {% (getSrcSpan $1) >>= (\s -> return $ Con () s $2) }
+
+num :: { String }
+num
+: NUM { $1 }
+| '1' { "1" }
+
+--internal_file_unit :: { Expr A0 }
+--internal_file_unit
+--  : default_char_variable                         { $1 }
+
+--default_char_variable :: { Expr A0 }
+--default_char_variable
+--  : variable       { $1 }
+
+namelist_group_name :: { Expr A0 }
+namelist_group_name
+  : variable           { $1 }
+
+
+return_stmt :: { Fortran A0 }
+return_stmt
+: srcloc RETURN                   {% getSrcSpan $1 >>= (\s -> return $ Return () s (NullExpr () s)) }
+| srcloc RETURN int_expr          {% getSrcSpan $1 >>= (\s -> return $ Return () s $3) }
+
+scalar_default_int_variable :: { Expr A0 }
+scalar_default_int_variable
+  : variable                                      { $1 }
+
+scalar_default_char_expr :: { Expr A0 }
+scalar_default_char_expr
+  : expr                                          { $1 }
+
+rewind_stmt :: { Fortran A0 }
+rewind_stmt
+: srcloc REWIND expr                        {% getSrcSpan $1 >>= (\s -> return $ Rewind () s [NoSpec () $3]) }
+| srcloc REWIND '(' position_spec_list ')'  {% getSrcSpan $1 >>= (\s -> return $ Rewind () s $4) }
+
+
+
+stop_stmt :: { Fortran A0 }
+stop_stmt
+: srcloc STOP stop_code                  {% getSrcSpan $1 >>= (\s -> return $ Stop () s $3) }
+| srcloc STOP                            {% getSrcSpan $1 >>= (\s -> return $ Stop () s (NullExpr () s)) }
+
+stop_code :: { Expr A0 }
+stop_code
+  : constant                                     { $1 }
+  
+
+
+where_stmt :: { Fortran A0 }
+where_stmt
+: srcloc WHERE '(' mask_expr ')' where_assignment_stmt {% getSrcSpan $1 >>= (\s -> return $ Where () s $4 $6) }
+
+where_assignment_stmt :: { Fortran A0 }
+where_assignment_stmt
+  : assignment_stmt                              { $1 }
+mask_expr :: { Expr A0 }
+mask_expr
+  : logical_expr                                 { $1 }
+
+
+
+write_stmt :: { Fortran A0 }
+write_stmt
+: WRITE '(' io_control_spec_list ')' output_item_list  {% getSrcSpanNull >>= (\s -> return $ Write () s $3 $5) }
+| WRITE '(' io_control_spec_list ')'                   {% getSrcSpanNull >>= (\s -> return $ Write () s $3 []) }
+
+srcloc :: { SrcLoc }  :    {% getSrcLoc' }
+
+{
+
+getSrcLoc' = do (SrcLoc f l c) <- getSrcLoc
+                return (SrcLoc f l (c - 1))
+
+-- Initial annotations from parser
+
+-- Type of annotations
+
+type A0 = () 
+
+getSrcSpan :: SrcLoc -> P (SrcLoc, SrcLoc)
+getSrcSpan l = do l' <- getSrcLoc'
+                  return $ (l, l')
+
+-- 0-length span at current position
+
+getSrcSpanNull :: P (SrcLoc, SrcLoc)
+getSrcSpanNull = do l <- getSrcLoc'
+                    return $ (l, l)
+
+spanTrans x y = let (l, _) = srcSpan x
+		    (_, l') = srcSpan y
+                in (l, l')
+
+spanTrans' x (_, l') = let (l, _) = srcSpan x
+                       in (l, l')
+
+spanExtendR t x = let (l, l') = srcSpan t
+                  in (l, SrcLoc (srcFilename l') (srcLine l') (srcColumn l' + x))
+
+spanExtR (l, l') x = (l, SrcLoc (srcFilename l') (srcLine l') (srcColumn l' + x))
+
+spanExtendL t x = let (l, l') = srcSpan t
+                  in (SrcLoc (srcFilename l) (srcLine l) (srcColumn l - x), l')
+
+happyError :: P a
+happyError = parseError "syntax error (from parser)"
+
+parseError :: String -> P a
+parseError m = do srcloc <- getSrcLoc'
+		  fail (srcFilename srcloc ++ ": line " ++ show (srcLine srcloc) ++ " column " ++ show (srcColumn srcloc) ++ ": " ++ m ++ "\n")
+
+tokenFollows s = case alexScan ('\0',[],s) 0 of
+                    AlexEOF                 -> "end of file"
+                    AlexError  _            -> ""
+                    AlexSkip  (_,b,t) len   -> tokenFollows t
+	            AlexToken (_,b,t) len _ -> take len s
+
+parse :: String -> Program A0
+parse p = case (runParser parser (pre_process p)) of 
+	    (ParseOk p)       -> p
+            (ParseFailed l e) ->  error e
+
+--parse :: String -> [Program]
+--parse = clean . parser . fixdecls . scan
+
+parseF :: String -> IO ()
+parseF f = do s <- readFile f
+              print (parse s)
+
+--scanF :: String -> IO ()
+--scanF f = do s <- readFile f
+--             print (scan s)
+
+fst3 (a,b,c) = a
+snd3 (a,b,c) = b
+trd3 (a,b,c) = c
+
+fst4 (a,b,c,d) = a
+snd4 (a,b,c,d) = b
+trd4 (a,b,c,d) = c
+frh4 (a,b,c,d) = d
+
+cmpNames :: SubName A0 -> String -> String -> P (SubName A0)
+cmpNames x "" z                        = return x
+cmpNames (SubName a x) y z | x==y      = return (SubName a x)
+                           | otherwise = parseError (z ++ " name \""++x++"\" does not match \""++y++"\" in end " ++ z ++ " statement\n")
+cmpNames s y z                       = parseError (z ++" names do not match\n")
+
+					   
+isEmpty :: [a] -> Bool
+isEmpty [] = True
+isEmpty _  = False
+
+expr2array_spec (Bound _ _ e e') = (e, e') -- possibly a bit dodgy- uses undefined
+expr2array_spec e = (NullExpr () (srcSpan e) , e)
+
+}
+ src/Language/Fortran/PreProcess.hs view
@@ -0,0 +1,142 @@+{-++The following provides a string -> string preprocessor for Fortran programs that deals with+label-delimited 'do'-'continue' blocks of FORTRAN 77 era. With a traditional LR(1) parser, these are+not easily (or not at all) parsable. Consider the valid FORTRAN 77 code:++     do j = 1,5+       do 17 i=1,10+         print *,i      +       17 continue+     end do ++Here the 'continue' acts as an 'end do' (not as a usual 'continue' statement) because it is labelled with the same+label '17' as the 'do' statement which starts the block. Parsing this requires arbitrary look-ahead (e.g., LR(infinity))+which is provided by the following parsec parser, but not by the 'happy' parser generator. ++This pre processor is currently quite heavy handed. It replaces 'continue' in the above program with 'end do'. E.g., +the above program is transformed to:++     do j = 1,5+       do 17 i=1,10+         print *,i      +       17 end do+     end do ++-}++module Language.Fortran.PreProcess where++import Text.ParserCombinators.Parsec hiding (spaces)+import Text.ParserCombinators.Parsec.Expr+import qualified Text.ParserCombinators.Parsec.Token as Token+import Text.ParserCombinators.Parsec.Language+import System.Environment++import Debug.Trace++num = many1 digit+small = lower <|> char '_'+idchar = small <|> upper <|> digit +ident  =  do{ c <- small <|> upper ; cs <- many idchar; return (c:cs) }+spaces = many space++manyTillEnd p end =+    scan where scan  = (try end) <|> do { x <- p; xs <- scan; return (x:xs) }+   +pre_parser labels = manyTillEnd anyChar +                      (try $ if (labels == []) then (try $ end_or_start_do labels) <|> (eof >> return "")+                                               else  end_or_start_do labels)                  ++end_or_start_do labels = (try $ doBlock labels) <|> (end_do labels)++doBlock labels = +          do doStr <- string "do" <|> string "DO"+             updateState (+1)+             sp    <- spaces+             label <- (try numberedBlock) <|> (do { loop <- loop_control; return (Nothing, loop) })+             p     <- pre_parser $ (fst label) : labels+             return $ doStr ++ sp ++ snd label ++ p +++end_do labels = do label' <- optionMaybe (do {space; n <- num; space; return n})+                   sp     <- spaces+                   lookAhead (end_do_marker <|> continue)+                   ender <- +                     case (labels, label') of +                      ([], _)               -> do { ender <- end_do_marker; return $ sp ++ ender }+                      (Nothing:_, _)        -> do { ender <- end_do_marker; return $ sp ++ ender }+                      ((Just n):_, Nothing) -> do { ender <- end_do_marker; return $ sp ++ ender }+                      ((Just n):_, Just m)  -> if (n==m) then do ender <- end_do_marker <|> continue+                                                                 return $ " " ++ m ++ " " ++ sp ++ ender++                                                         else -- Labels don't match!+                                                              -- If the label doesn't appear anywhere in the label stack, +                                                              --   then this is allowed (e.g. extra 'continue' points)+                                                              if (not ((Just m) `elem` labels)) then+                                                                  do ender <- end_do_marker <|> continue_non_replace+                                                                     return $ " " ++ m ++ " " ++ sp ++ ender+                                                              else+                                                              -- otherwise, we consider the do loops to be not properly bracketted+                                                               error $ "Ill formed do blocks, labels do not match: " ++ n ++ " and " ++ m ++ +                                                                         " - with label stack " ++ (show labels)+                   level <- getState+                   updateState (\x -> x-1) -- "Level " ++ show level) `trace` (+                   p <- pre_parser (if labels == [] then [] else tail labels)+                   return $ ender ++ p++continue_non_replace = string "continue" <|> string "CONTINUE"++continue = do string "continue" <|> string "CONTINUE"+              return "end do  " -- replaces continue with 'end do', this is the goal!+                      +end_do_marker = do endStr <- string "end" <|> string "END"+                   sp <- spaces+                   doStr <- string "do" <|> string "DO"+                   return $ endStr ++ sp ++ doStr++numberedBlock = do label <- num+                   space +                   sp1   <- spaces+                   comma <- optionMaybe (string ",")+                   sp2   <- spaces+                   loop  <- loop_control+                   return $ (Just label, label ++ " " ++ sp1 ++ (maybe "" id comma) ++ sp2 ++ loop)++newline' = +    (try $ do { c <- char '\r'; +                n <- newline;+                return [c,n] })+       <|> do { n <- newline; +                return [n] }++loop_control = do var   <- ident+                  sp1   <- spaces+                  char '='+                  sp2   <- spaces+                  lower <- num <|> ident+                  sp3   <- spaces+                  char ','+                  sp4   <- spaces+                  upper <- num <|> ident+                  rest  <- manyTillEnd anyChar (try newline')+                  return $ var ++ sp1 ++ "=" ++ sp2 ++ lower ++ sp3 ++ "," ++ sp4 ++ upper ++ rest +                  +parseExpr :: String -> String -> String+parseExpr file input =+    case (runParser p (0::Int) "" input) of+      Left err  -> fail $ show err+      Right x   -> x+  where+    p = do  pos <- getPosition+            setPosition $ (flip setSourceName) file $+                          (flip setSourceLine) 1 $+                          (flip setSourceColumn) 1 $ pos+            x <- pre_parser []+            return x++pre_process input = parseExpr "" input+             +go filename = do args <- getArgs+                 srcfile <- readFile filename+                 return $ parseExpr filename srcfile
+ src/Language/Fortran/Pretty.hs view
@@ -0,0 +1,569 @@+-- +-- Pretty.hs  - +-- Based on code by Martin Erwig from Parameterized Fortran+--++{-# LANGUAGE ExistentialQuantification #-}+{-# LANGUAGE FlexibleContexts #-}+{-# LANGUAGE FlexibleInstances #-}+{-# LANGUAGE UndecidableInstances #-}+{-# LANGUAGE MultiParamTypeClasses #-}+{-# LANGUAGE DeriveDataTypeable #-}+{-# LANGUAGE QuasiQuotes #-}+{-# LANGUAGE DeriveFunctor #-}+{-# LANGUAGE ImplicitParams #-}+{-# LANGUAGE OverlappingInstances #-}++module Language.Fortran.Pretty where++import Language.Fortran++import Data.List++data Alt1 = Alt1+data Alt2 = Alt2++class Alts a +instance Alts Alt1+instance Alts Alt2++--instance (OutputF (ProgUnit p) Alt1) => Show (ProgUnit p) where+--    show p = let ?variant = Alt1 in outputF p++class OutputF t v where+    outputF :: (?variant :: v) => t -> String++class OutputG t v where+    outputG :: (?variant :: v) => t -> String++-- Default alt1 instance+instance (OutputF t Alt1) => OutputG t Alt1 where+    outputG = outputF++instance Alts v => OutputG Char v where+    outputG = show++instance Alts v => OutputG String v where+    outputG = id++instance (Alts v, OutputG a v, OutputG b v) => OutputG (a, b) v where+     outputG (a, b) = "(" ++ outputG a ++ ", " ++ outputG b ++ ")"++instance (Alts v, OutputG a v) => OutputG [a] v where+    outputG xs = "[" ++ go xs ++ "]" where go [] = "" +                                           go [x] = outputG x+                                           go (x:xs) = outputG x ++ ", " ++ (go xs)++instance (Alts v, OutputG a v) => OutputF [a] v where+    outputF xs = "[" ++ go xs ++ "]" where go [] = "" +                                           go [x] = outputG x+                                           go (x:xs) = outputG x ++ ", " ++ (go xs)++class OutputIndF t v where+    outputIndF :: (?variant :: v) => Int -> t -> String++class OutputIndG t v where+    outputIndG :: (?variant :: v) => Int -> t -> String++instance (OutputIndF t Alt1) => OutputIndG t Alt1 where+    outputIndG = outputIndF+++-- Fortran pretty printer ++--showAllocate ((e,b):[]) = outputG e++"("++showRanges b++")" --new+--showAllocate ((e,b):as) = outputG e++"("++showRanges b++")"++", "++showAllocate as	--new+++-- showElseIf :: Int -> (Expr,Fortran) -> String++showElseIf i (e,f) = (ind i)++"else if ("++outputG e++") then\n"++(ind (i+1))++outputG f++"\n"++showForall [] = "error"+showForall ((s,e,e',NullExpr _ _):[]) = s++"="++outputG e++":"++outputG e'+showForall ((s,e,e',e''):[]) = s++"="++outputG e++":"++outputG e'++"; "++outputG e''+showForall ((s,e,e',NullExpr _ _):is) = s++"="++outputG e++":"++outputG e'++", "++showForall is+showForall ((s,e,e',e''):is) = s++"="++outputG e++":"++outputG e'++"; "++outputG e''++", "++showForall is++showUse :: Uses p -> String+showUse (UseNil _) = ""+showUse (Use _ (n, []) us _) = ((ind 1)++"use "++n++"\n") ++ (showUse us)+showUse (Use _ (n, renames) us _) = ((ind 1)++"use "++n++", " ++ +                                     (concat $ intersperse ", " (map (\(a, b) -> a ++ " => " ++ b) renames)) +++                                   "\n") ++ (showUse us)++-- Printing declarations+-- +instance (OutputG (Arg p) v, +          OutputG (BaseType p) v,+          OutputG (Block p) v,+          OutputG (Decl p) v,+          OutputG (Fortran p) v, +          OutputG (Implicit p) v,+          OutputG (SubName p) v,+          OutputG (VarName p) v,+          OutputG (ProgUnit p) v,+          Alts v) => OutputF (ProgUnit p) v where+  outputF (Sub _ _ (Just p) n a b)  = outputG p ++ " subroutine "++(outputG n)++outputG a++"\n"+++                             outputG b+++                          "\nend subroutine "++(outputG n)++"\n"+  outputF (Sub _ _ Nothing n a b)  = "subroutine "++(outputG n)++outputG a++"\n"+++                             outputG b+++                          "\nend subroutine "++(outputG n)++"\n"+  outputF (Function _ _ (Just p) n a (Just r) b)  = outputG p ++ " function "++(outputG n)++outputG a++" result("++outputG r++")\n"+++                             outputG b+++                          "\nend function "++(outputG n)++"\n"+  outputF (Function _ _ (Just p) n a Nothing b)  = outputG p ++ " function "++(outputG n)++outputG a++"\n"+++                             outputG b+++                          "\nend function "++(outputG n)++"\n"+  outputF (Function _ _ Nothing n a (Just r) b) = "function "++(outputG n)++outputG a++" result("++outputG r++")\n"+++                             outputG b+++                          "\nend function "++(outputG n)++"\n"+  outputF (Function _ _ Nothing n a Nothing b) = "function "++(outputG n)++outputG a++"\n"+++                             outputG b+++                          "\nend function "++(outputG n)++"\n"+  outputF (Main _ _ n a b [])     = "program "++(outputG n) ++ +                                (if not (isEmptyArg a) then (outputG a) else ""++"\n") +++                                outputG b +++                                "\nend program "++ (outputG n) ++"\n"+  outputF (Main _ _ n a b ps)     = "program "++(outputG n) ++ +                                (if not (isEmptyArg a) then (outputG a) else ""++"\n") +++                                outputG b +++                                "\ncontains\n" +++                                (concatMap outputG ps) +++                                "\nend program "++(outputG n)++"\n"++  outputF (Module _ _ n us i ds []) = "module "++(outputG n)++"\n" +++                             showUse us +++                             outputG i +++                             outputG ds +++                          "end module " ++ (outputG n)++"\n"+  outputF (Module _ _ n us i ds ps) = "module "++(outputG n)++"\n" +++                             showUse us +++                             outputG i +++                             outputG ds +++			     "\ncontains\n" +++                             concatMap outputG ps +++                          "end module " ++ (outputG n)++"\n"+  outputF (BlockData _ _ n us i ds) = "block data " ++ (outputG n) ++ "\n" +++                             showUse us +++                             outputG i +++                             outputG ds +++                          "end block data " ++ (outputG n)++"\n"+  outputF (PSeq _ _ p p')  = outputG p++outputG p'+  outputF (Prog _ _ p)     = outputG p+  outputF (NullProg _ _)    = ""+  outputF (IncludeProg _ _ ds Nothing) = outputG ds +  outputF (IncludeProg _ _ ds (Just f)) = outputG ds ++ "\n" ++ outputG f++instance (OutputG (Fortran p) v, OutputG (Decl p) v, OutputG (Implicit p) v, Alts v) =>+            OutputF (Block p) v where+  outputF (Block _ (UseBlock us _) i sp ds f) = showUse us++outputG i++(outputG ds)++outputG f+++instance (OutputG (Expr p) v) => OutputF (DataForm p) v where+  outputF (Data _ ds) = "data "++(concat (intersperse "\n" (map show_data ds))) ++instance (Indentor (Decl p), +          OutputG (ArgList p) v,+          OutputG (Attr p) v,+          OutputG (BinOp p) v,+          OutputG (Decl p) v,+          OutputG (DataForm p) v,+          OutputG (Expr p) v, +          OutputG (GSpec p) v, +          OutputG (InterfaceSpec p) v, +          OutputG (MeasureUnitSpec p) v,+          OutputG (SubName p) v,+          OutputG (UnaryOp p) v, +          OutputG (VarName p) v,+          OutputG (Type p) v,+           Alts v) => OutputF (Decl p) v where+  outputF x@(Decl _ _ vs t)  = (indR x 1)++outputG t++" :: "++asSeq id (map showDV vs)++"\n"+  outputF (Namelist _ ns) = ind 1++"namelist "++show_namelist ns++"\n"+  outputF (DataDecl _ ds) = ind 1++ (outputG ds) ++"\n"+  outputF t@(Equivalence  _ _ vs) = (indR t 1)++"equivlance ("++(concat (intersperse "," (map outputF vs))) ++ ")\n"+  outputF (AttrStmt _ p gs) = ind 1++outputG p ++ " (" ++asSeq id (map showDV gs) ++ ") \n"+  outputF (AccessStmt _ p []) = ind 1++outputG p ++ "\n"+  outputF (AccessStmt _ p gs) = ind 1++outputG p ++ " :: " ++ (concat . intersperse ", " . map outputG) gs++"\n"+  outputF (ExternalStmt _ xs)  = ind 1++"external :: " ++ (concat (intersperse "," xs)) ++ "\n"+  outputF (Interface _ (Just g) is) = ind 1 ++ "interface " ++ outputG g ++ outputG is ++ ind 1 ++ "end interface" ++ outputG g ++ "\n"+  outputF (Common _ _ name exps) = ind 1++"common " ++ (case name of +                                                     Just n -> "/" ++ n ++ "/ "+                                                     Nothing -> "") ++ (concat (intersperse "," (map outputF exps))) ++ "\n"+  outputF (Interface _ Nothing  is) = ind 1 ++ "interface " ++ outputG is ++ ind 1 ++ "end interface\n"+  outputF (DerivedTypeDef _  _ n as ps ds) = ind 1 ++ "type " ++ outputFList as ++  " :: " ++ outputG n ++ "\n" ++ (concat (intersperse "\n" (map (outputG) ps))) ++ (if (length ps > 0) then "\n" else "") ++ (concatMap (((ind 2) ++) . outputG) ds) ++ ind 1 ++ "end type " ++ outputG n ++ "\n\n"+  outputF (MeasureUnitDef _ _ ds) = ind 1 ++ "unit :: " ++ (concat . intersperse ", " . map showDU) ds ++ "\n"+  outputF (Include _ i)  = "include "++outputG i+  outputF (DSeq _ d d')  = outputG d++outputG d'+  outputF (NullDecl _ _)    = ""+  +show_namelist ((x,xs):[]) = "/" ++ outputG x ++ "/" ++ (concat (intersperse ", " (map outputG xs)))+show_namelist ((x,xs):ys) = "/" ++ outputG x ++ "/" ++ (concat (intersperse ", " (map outputG xs))) ++ "," ++ show_namelist ys+show_data     ((xs,ys)) = "/" ++  outputG xs ++ "/" ++ outputG ys++-- showDV :: (Expr,Expr) -> String++showDV (v, NullExpr _ _, Just n)  = (outputF v) ++ "*" ++ show n+showDV (v, NullExpr _ _, Nothing) = outputF v+showDV (v,e,Nothing)              = outputF v++" = "++outputF e+showDV (v,e,Just n)              = (outputF v) ++ "*" ++ show n ++ " = "++(outputF e)++showDU (name,spec) = outputF name++" = "++outputF spec++instance (OutputG (ArgList p) v, +          OutputG (BinOp p) v, +          OutputG (UnaryOp p) v,+          OutputG (BaseType p) v,+          OutputG (Expr p) v,+          OutputG (MeasureUnitSpec p) v,+          OutputG (VarName p) v,+          Alts v) => OutputF (Type p) v where+  outputF (BaseType _ bt as (NullExpr _ _)  (NullExpr _ _))   = outputG bt++outputFList as+  outputF (BaseType _ bt as (NullExpr _ _) e')          = outputG bt++" (len="++outputG e'++")"++outputFList as+  outputF (BaseType _ bt as e (NullExpr _ _))           = outputG bt++" (kind="++outputG e++")"++outputFList as+  outputF (BaseType _ bt as e               e')                = outputG bt++" (len="++outputG e'++"kind="++outputG e++")"++outputFList as+  outputF (ArrayT _ [] bt as (NullExpr _ _) (NullExpr _ _))   = outputG bt++outputFList as+  outputF (ArrayT _ [] bt as (NullExpr _ _) e')         = outputG bt++" (len="++outputG e'++")"++outputFList as+  outputF (ArrayT _ [] bt as e (NullExpr _ _))          = outputG bt++" (kind="++outputG e++")"++outputFList as+  outputF (ArrayT _ [] bt as e                e')              = outputG bt++" (len="++outputG e'++"kind="++outputG e++")"++outputFList as+  outputF (ArrayT _ rs bt as (NullExpr _ _)  (NullExpr _ _))  = outputG bt++" , dimension ("++showRanges rs++")"++outputFList as+  outputF (ArrayT _ rs bt as (NullExpr _ _) e')         = outputG bt++" (len="++outputG e'++")"++" , dimension ("++showRanges rs++")"++outputFList as+  outputF (ArrayT _ rs bt as e (NullExpr _ _))          = outputG bt++" (kind="++outputG e++")"++" , dimension ("++showRanges rs++")"++outputFList as+  outputF (ArrayT _ rs bt as e               e')               = outputG bt++" (len="++outputG e'++"kind="++outputG e++")"++" , dimension ("++showRanges rs++")"++outputFList as+++instance (OutputG (MeasureUnitSpec p) v, Alts v) => OutputF (Attr p) v where --new+    outputF (Allocatable _)      = "allocatable "+    outputF (Parameter _)        = "parameter "+    outputF (External _)         = "external "+    outputF (Intent _  (In _))   = "intent(in) "+    outputF (Intent _ (Out _))   = "intent(out) "+    outputF (Intent _ (InOut _)) = "intent(inout) "+    outputF (Intrinsic _)        = "intrinsic "+    outputF (Optional _)         = "optional "+    outputF (Pointer _)          = "pointer "+    outputF (Save _)             = "save "+    outputF (Target _)           = "target "+    outputF (Volatile _)         = "volatile "+    outputF (Public _)           = "public "+    outputF (Private _)          = "private "+    outputF (Sequence _)         = "sequence "+    outputF (Dimension _ _)      = "dimension "+    outputF (MeasureUnit _ u)    = "unit("++outputG u++")"++instance (Alts v) => OutputF (MeasureUnitSpec p) v where+  outputF (UnitProduct _ units) = showUnits units+  outputF (UnitQuotient _ units1 units2) = showUnits units1++" / "++showUnits units2+  outputF (UnitNone _) = ""++instance (Alts v) => OutputF (Fraction p) v where+  outputF (IntegerConst _ s) = "**"++outputG s+  outputF (FractionConst _ p q) = "**("++outputG p++"/"++outputG q++")"+  outputF (NullFraction _) = ""++instance (OutputG (Arg p) v, OutputG (BinOp p) v, OutputG (Expr p) v, Alts v) => OutputF (GSpec p) v where+  outputF (GName _ s)  = outputG s+  outputF (GOper _ op) = "operator("++outputG op++")"+  outputF (GAssg _)    = "assignment(=)"++instance (OutputG (Arg p) v, OutputG (Decl p) v, OutputG (Implicit p) v,+          OutputG (SubName p) v, Alts v) => OutputF (InterfaceSpec p) v where+  outputF (FunctionInterface _ s as us i ds)   = (ind 1)++ "function " ++ outputG s ++ outputG as ++ showUse us ++ outputG i ++ outputG ds ++ "\nend function " ++ outputG s+  outputF (SubroutineInterface _ s as us i ds) = (ind 1)++ "subroutine " ++ outputG s ++ outputG as ++ showUse us ++ outputG i ++ outputG ds ++ "\nend subroutine " ++ outputG s+  outputF (ModuleProcedure _ ss) = (ind 2) ++ "module procedure " ++ concat (intersperse ", " (map (outputG) ss))++instance (Alts v, OutputF (Uses p) v) => OutputF (UseBlock p) v where+  outputF (UseBlock uses _) = outputF uses++instance (Alts v) => OutputF (Uses p) v where+  outputF u = showUse u++instance (OutputG (SubName p) v, Alts v) => OutputF (BaseType p) v where+  outputF (Integer _)       = "integer"+  outputF (Real    _)       = "real"+  outputF (Character  _)    = "character"+  outputF (Logical   _)     = "logical"+  outputF (DerivedType _ s) = "type ("++outputG s++")"+  outputF (SomeType _)      = error "sometype not valid in output source file"++-- Printing statements and expressions+-- +instance (OutputG (ArgList p) v,+          OutputG (BinOp p) v,+          OutputG (Expr p) v,+          OutputG (UnaryOp p) v,+          OutputG (VarName p) v,+          Alts v) => OutputF (Expr p) v where+  outputF (Con _ _ i)         = i+  outputF (ConL _ _ m s)        = m:("\'" ++ s ++ "\'")+  outputF (ConS _ _ s)        = s+  outputF (Var _ _ vs)        = showPartRefList vs+  outputF (Bin _ _ bop e@(Bin _ _ op _ _ ) e'@(Bin _ _ op' _ _)) = checkPrec bop op (paren) (outputG e)++outputG bop++ checkPrec bop op' (paren) (outputG e')+  outputF (Bin _ _ bop e@(Bin _ _ op _ _) e')                      = checkPrec bop op (paren) (outputG e)++outputG bop++outputG e'+  outputF (Bin _ _ bop e                    e'@(Bin _ _ op' _ _))  = outputG e++outputG bop++checkPrec bop op' (paren) (outputG e')+  outputF (Bin _ _ bop e                    e')                      = outputG e++outputG bop++outputG e'+  outputF (Unary _ _ uop e)   = "("++outputG uop++outputG e++")"+  outputF (CallExpr  _ _ s as) = outputG s ++ outputG as+  outputF (Null _ _)          = "NULL()"+  outputF (NullExpr _ _)      = ""+  outputF (ESeq _ _ (NullExpr _ _) e)     = outputG e+  outputF (ESeq _ _ e (NullExpr _ _))     = outputG e+  outputF (ESeq _ _ e e')     = outputG e++","++outputG e'+  outputF (Bound _ _ e e')    = outputG e++":"++outputG e'+  outputF (Sqrt _ _ e)        = "sqrt("++outputG e++")"+  outputF (ArrayCon _ _ es)   = "(\\" ++ concat (intersperse ", " (map (outputG) es)) ++ "\\)"+  outputF (AssgExpr _ _ v e)  = v ++ "=" ++ outputG e++instance (OutputIndF (Fortran p) v, Alts v) => OutputF (Fortran p) v where+  outputF = outputIndF 1++instance (OutputG (ArgName p) v, Alts v) => OutputF (Arg p) v where+  outputF (Arg _ vs _) = "("++ outputG vs ++")"+  +instance (OutputG (Expr p) v, Alts v) => OutputF (ArgList p) v where+  outputF (ArgList _ es) = "("++outputG es++")" -- asTuple outputG es+  +instance Alts v => OutputF (BinOp p) v where+  outputF (Plus  _) ="+"+  outputF (Minus _) ="-" +  outputF (Mul   _) ="*"+  outputF (Div   _) ="/"+  outputF (Or    _) =".or."+  outputF (And   _) =".and."+  outputF (Concat _) ="//"+  outputF (Power _) ="**"+  outputF (RelEQ _) ="=="+  outputF (RelNE _) ="/="+  outputF (RelLT _) ="<"+  outputF (RelLE _) ="<="+  outputF (RelGT _) =">"+  outputF (RelGE _) =">="++instance Alts v => OutputF (UnaryOp p) v where+  outputF (UMinus _) = "-"+  outputF (Not    _) = ".not."+  +instance Alts v => OutputF (VarName p) v where+  outputF (VarName _ v) = v  ++instance (OutputG (VarName p) v, OutputG (ArgName p) v, Alts v) => OutputF (ArgName p) v where+    outputF (ArgName _ a)                    = a  +    outputF (ASeq _ (NullArg _) (NullArg _)) = ""+    outputF (ASeq _ (NullArg _)  a')         = outputG a'+    outputF (ASeq _ a (NullArg _))           = outputG a+    outputF (ASeq _ a a')                    = outputG a++","++outputG a'+    outputF (NullArg _)                            = ""++instance Alts v => OutputF (SubName p) v where+  outputF (SubName _ n)   = n+  outputF (NullSubName _) = error "subroutine needs a name"++instance Alts v => OutputF ( Implicit p) v where+  outputF (ImplicitNone _) = "   implicit none\n"+  outputF (ImplicitNull _) = ""+  +instance (OutputG (Expr p) v, Alts v) => OutputF (Spec p) v where+  outputF (Access        _ s) = "access = " ++ outputG s+  outputF (Action        _ s) = "action = "++outputG s+  outputF (Advance       _ s) = "advance = "++outputG s+  outputF (Blank         _ s) = "blank = "++outputG s+  outputF (Delim         _ s) = "delim = "++outputG s+  outputF (Direct        _ s) = "direct = "++outputG s+  outputF (End           _ s) = "end = "++outputG s+  outputF (Eor           _ s) = "eor = "++outputG s+  outputF (Err           _ s) = "err = "++outputG s+  outputF (Exist         _ s) = "exist = "++outputG s+  outputF (File          _ s) = "file = "++outputG s+  outputF (FMT           _ s) = "fmt = "++outputG s+  outputF (Form          _ s) = "form = "++outputG s+  outputF (Formatted     _ s) = "formatted = "++outputG s+  outputF (Unformatted   _ s) = "unformatted = "++outputG s+  outputF (IOLength      _ s) = "iolength = "++outputG s+  outputF (IOStat        _ s) = "iostat = "++outputG s+  outputF (Opened        _ s) = "opened = "++outputG s+  outputF (Name          _ s) = "name = "++outputG s+  outputF (Named         _ s) = "named = "++outputG s+  outputF (NextRec       _ s) = "nextrec = "++outputG s+  outputF (NML           _ s) = "nml = "++outputG s+  outputF (NoSpec        _ s) = outputG s+  outputF (Floating      _ s1 s2) = outputG s1 ++ "F" ++ outputG s2+  outputF (Number        _ s) = "number = "++outputG s+  outputF (Pad           _ s) = "pad = "++outputG s+  outputF (Position      _ s) = "position = "++outputG s+  outputF (Read          _ s) = "read = "++outputG s+  outputF (ReadWrite     _ s) = "readwrite = "++outputG s+  outputF (WriteSp       _ s) = "write = "++outputG s+  outputF (Rec           _ s) = "rec = "++outputG s+  outputF (Recl          _ s) = "recl = "++outputG s+  outputF (Sequential    _ s) = "sequential = "++outputG s+  outputF (Size          _ s) = "size = "++outputG s+  outputF (Status        _ s) = "status = "++outputG s+  outputF (StringLit        _ s) = "'" ++ s ++ "'"+  outputF (Unit _ s)          = "unit = "++outputG s+  outputF (Delimiter _)       = "/"+++++isEmptyArg (Arg _ as _) = and (isEmptyArgName as)+isEmptyArgName (ASeq _ a a') = isEmptyArgName a ++ isEmptyArgName a'+isEmptyArgName (ArgName _ a) = [False]+isEmptyArgName (NullArg _)   = [True]++paren :: String -> String+paren s = "(" ++ s ++ ")"++checkPrec :: BinOp p -> BinOp p -> (a -> a) -> a -> a+checkPrec pop cop f s = if opPrec pop >= opPrec cop then f s else s++opPrec :: BinOp p -> Int+opPrec (Or    _) = 0+opPrec (And   _) = 1+opPrec (RelEQ _) = 2+opPrec (RelNE _) = 2+opPrec (RelLT _) = 2+opPrec (RelLE _) = 2 +opPrec (RelGT _) = 2+opPrec (RelGE _) = 2+opPrec (Concat _) = 3+opPrec (Plus  _) = 4+opPrec (Minus _) = 4+opPrec (Mul   _) = 5+opPrec (Div   _) = 5+opPrec (Power _) = 6++class Indentor t where+    indR :: t -> Int -> String++instance (Indentor (Fortran p), +          OutputG (VarName p) v,+          OutputG (Expr p) v,+          OutputG (UnaryOp p) v,+          OutputG (BinOp p) v, +          OutputG (ArgList p) v,+          OutputIndG (Fortran p) v,+          OutputG (DataForm p) v, +          OutputG (Fortran p) v, OutputG (Spec p) v, Alts v) => OutputIndF (Fortran p) v where++    outputIndF i t@(Assg _ _ v e)            = (indR t i)++outputG v++" = "++outputG e+    outputIndF i t@(For _ _  (VarName _ "") e e' e'' f)   = (indR t i)++"do \n"+++                                         (outputIndG (i+1) f)++"\n"++(indR t i)++"end do"+    outputIndF i t@(For _ _  v e e' e'' f)   = (indR t i)++"do"++" "++outputG v++" = "++outputG e++", "+++                                         outputG e'++", "++outputG e''++"\n"+++                                         (outputIndG (i+1) f)++"\n"++(indR t i)++"end do"+    outputIndF i t@(FSeq _ _  f f')              = outputIndG i f++"\n"++outputIndG i f'+    outputIndF i t@(If _ _  e f [] Nothing)      = (indR t i)++"if ("++outputG e++") then\n"+                                         ++(outputIndG (i+1) f)++"\n"+                                         ++(indR t i)++"end if"+    outputIndF i t@(If _ _  e f [] (Just f'))    = (indR t i)++"if ("++outputG e++") then\n"+                                         ++(outputIndG (i+1) f)++"\n"+                                         ++(indR t i)++"else\n"+                                         ++(outputIndG (i+1) f')++"\n"+                                         ++(indR t i)++"end if"+    outputIndF i t@(If _ _  e f elsif Nothing)    = (indR t i)++"if ("++outputG e++") then\n"+                                          ++(outputIndG (i+1) f)++"\n"+                                          ++concat (map (showElseIf i) elsif)+                                          ++(indR t i)++"end if"+    outputIndF i t@(If _ _  e f elsif (Just f')) = (indR t i)++"if ("++outputG e++") then\n"+                                          ++(outputIndG (i+1) f)++"\n"+                                          ++concat (map (showElseIf i) elsif)+                                          ++(indR t i)++"else\n"+                                          ++(outputIndG (i+1) f')++"\n"+                                          ++(indR t i)++"end if"+    outputIndF i t@(Allocate _ _  a (NullExpr _ _))    = (indR t i)++"allocate (" ++ outputG a ++ ")"+    outputIndF i t@(Allocate _ _  a s)              = (indR t i)++"allocate ("++ outputG a ++ ", STAT = "++outputG s++ ")"+    outputIndF i t@(Backspace _ _  ss)               = (indR t i)++"backspace "++asTuple outputG ss++"\n"+    outputIndF i t@(Call  _ _ sub al)                = indR t i++"call "++outputG sub++outputG al+    outputIndF i t@(Open  _ _ s)                     = (indR t i)++"open "++asTuple outputG s++"\n"++    outputIndF i t@(Close  _ _ ss)                   = (indR t i)++"close "++asTuple outputG ss++"\n"+    outputIndF i t@(Continue _ _)                   = (indR t i)++"continue"++"\n"+    outputIndF i t@(Cycle _ _ s)                    = (indR t i)++"cycle "++outputG s++"\n"+    outputIndF i t@(DataStmt _ _ d)                 = (indR t i)++(outputG d)++"\n"+    outputIndF i t@(Deallocate _ _ es e)            = (indR t i)++"deallocate "++asTuple outputG es++outputG e++"\n"+    outputIndF i t@(Endfile _ _ ss)                 = (indR t i)++"endfile "++asTuple outputG ss++"\n"+    outputIndF i t@(Exit _ _ s)                     = (indR t i)++"exit "++outputG s+    outputIndF i t@(Format      _  _ es)            = (indR t i)++"format " ++ (asTuple outputG es)+    outputIndF i t@(Forall _ _ (is, (NullExpr _ _)) f)    = (indR t i)++"forall ("++showForall is++") "++outputG f+    outputIndF i t@(Forall _ _ (is,e)            f) = (indR t i)++"forall ("++showForall is++","++outputG e++") "++outputG f+    outputIndF i t@(Goto _ _ s)                     = (indR t i)++"goto "++outputG s+    outputIndF i t@(Nullify _ _ es)                 = (indR t i)++"nullify "++asTuple outputG es++"\n"+    outputIndF i t@(Inquire _ _ ss es)              = (indR t i)++"inquire "++asTuple outputG ss++" "++(concat (intersperse "," (map outputG es)))++"\n"+    outputIndF i t@(Pause _ _ s)                  = (indR t i)++"pause "++ show s ++ "\n"+    outputIndF i t@(Rewind _ _  ss)                  = (indR t i)++"rewind "++asTuple outputG ss++"\n"+    outputIndF i t@(Stop _ _ e)                     = (indR t i)++"stop "++outputG e++"\n"+    outputIndF i t@(Where _ _ e f)                  = (indR t i)++"where ("++outputG e++") "++outputG f+    outputIndF i t@(Write _ _ ss es)                = (indR t i)++"write "++asTuple outputG ss++" "++(concat (intersperse "," (map outputG es)))++"\n"+    outputIndF i t@(PointerAssg _ _ e e')           = (indR t i)++outputG e++" => "++outputG e'++"\n"+    outputIndF i t@(Return _ _ e)                   = (indR t i)++"return "++outputG e++"\n"+    outputIndF i t@(Label _ _ s f)                  = s++" "++outputG f+    outputIndF i t@(Print _ _ e [])                 = (indR t i)++("print ")++outputG e++("\n")+    outputIndF i t@(Print _ _ e es)                 = (indR t i)++("print ")++outputG e++", "++(concat (intersperse "," (map outputG es)))++("\n")+    outputIndF i t@(ReadS _ _ ss es)                = (indR t i)++("read ")++(asTuple outputG ss)++" "++(concat (intersperse "," (map outputG es)))++("\n")+    outputIndF i t@(NullStmt _ _)		       = ""++-- infix 7 $++-- infix 7 $-+-- infix 8 $*+-- infix 9 $/++----------------------------------------------------------------------+-- PRINT UTILITIES+----------------------------------------------------------------------++showNQ :: Show a => a -> String+showNQ = filter ('"'/=) . show++-- Indenting++ind = indent 3 +indent i l = take (i*l) (repeat ' ')+++printList sep f xs = sep!!0++concat (intersperse (sep!!1) (map f xs))++sep!!2++asTuple = printList ["(",",",")"]+asSeq   = printList ["",",",""]+asList  = printList ["[",",","]"]+asSet   = printList ["{",",","}"]+asLisp  = printList ["("," ",")"]+asPlain f xs = if null xs then "" else printList [" "," ",""] f xs+asPlain' f xs = if null xs then "" else printList [""," ",""] f xs+asCases l = printList ["\n"++ind++"   ","\n"++ind++" | ",""] where ind = indent 4 l+asDefs n = printList ["\n"++n,"\n"++n,"\n"]+asParagraphs = printList ["\n","\n\n","\n"]++-- Auxiliary functions+-- +optTuple :: (?variant :: v, Alts v, OutputG (UnaryOp p) v, OutputF (Expr p) v) => [Expr p] -> String+optTuple [] = ""+optTuple xs = asTuple outputF xs+-- *optTuple xs = ""+-- indent and showInd enable indented printing+-- ++showUnits :: (Alts v, ?variant :: v, OutputF (Fraction p) v) => [(MeasureUnit, Fraction p)] -> String+showUnits units+  | null units = "1"+  | otherwise = printList [""," ",""] (\(unit, f) -> unit++outputF f) units+++outputFList :: (Alts v, ?variant :: v, OutputF a v) => [a] -> String+outputFList  = concat . map (", "++) . map (outputF)++++showBounds :: (Alts v, ?variant :: v, OutputF (Expr p) v) => (Expr p,Expr p) -> String+showBounds (NullExpr _ _, NullExpr _ _) = ":"+showBounds (NullExpr _ _, e) = outputF e+showBounds (e1,e2) = outputF e1++":"++outputF e2++showRanges :: (Alts v, ?variant :: v, OutputF (Expr p) v) => [(Expr p, Expr p)] -> String+showRanges = asSeq showBounds++showPartRefList :: (Alts v, ?variant :: v, OutputG (VarName p) v, +                    OutputG (UnaryOp p) v, OutputF (Expr p) v) => [(VarName p,[Expr p])] -> String+showPartRefList []           = ""+showPartRefList ((v,es):[]) = outputG v ++ optTuple es +showPartRefList ((v,es):xs) = outputG v ++ optTuple es ++ "%" ++ showPartRefList xs