diff --git a/LICENCE b/LICENCE
new file mode 100644
--- /dev/null
+++ b/LICENCE
@@ -0,0 +1,5 @@
+LICENSE
+
+ArrSyn and ArrCode are released under the GNU General Public License.
+The rest is licenced under the BSD-style license of the base package
+in the Haskell hierarchical libraries.
diff --git a/README b/README
new file mode 100644
--- /dev/null
+++ b/README
@@ -0,0 +1,97 @@
+A prototype preprocessor for arrow notation.
+
+Ross Paterson <ross@soi.city.ac.uk>
+
+Note that recent versions of GHC support this notation directly, and
+give better error messages to boot.
+
+RUNNING THE ARROW PREPROCESSOR
+
+The program supports the following options:
+
+	--pretty=STYLE	pretty print in STYLE
+			[offside|semicolon|inline|none] (default = offside)
+	--help		display usage information
+
+Typically you create a Haskell module using the extended syntax, and
+call it Foo.as (for arrow script).  To convert this into a corresponding
+Haskell module, you say
+
+	arrowp Foo.as >Foo.hs
+or
+	arrowp Foo.as Foo.hs
+
+and then use Foo.hs with your favourite Haskell implementation.
+You can also run it with no arguments at all:
+
+	arrowp <Foo.as >Foo.hs
+
+but then it won't have a file name to put in the error messages.
+Sometimes the input has already been preprocessed, e.g. with unlit
+(from the GHC distribution).  For this situation, you can specify both
+the original file name (for error messages) and the input file name, as
+well as the output file name (which is obligatory in this situation), e.g.
+
+	unlit Foo.las Foo.as
+	arrowp Foo.las Foo.as Foo.hs
+
+or equivalently as
+
+	unlit Foo.las - | arrowp Foo.las - Foo.hs
+
+(both unlit and arrowp allow filename arguments of "-", meaning standard
+input or output as appropriate.)
+
+WARNING: if you give the program 2 (or 3) arguments, the last one will
+be overwritten.
+
+DIAGNOSING ERRORS IN YOUR CODE
+
+Syntax errors will be detected by the preprocessor, and the position in
+the source where they were detected is reported.  (As usual, the actual
+error may occur earlier.)  The preprocessor understands Haskell 98 plus
+multiparameter type classes and the arrow extensions, but not some of
+the other extensions supported by various Haskell implementations.
+The preprocessor doesn't handle operator precedence, so it may copy
+some erroneous expressions like `x == y == z'.  Otherwise, the output
+of the preprocessor should not generate any syntax errors -- if it does,
+please report it.
+
+Semantic errors are more difficult for simple preprocessors like this one.
+They will be detected by your Haskell implementation, whether they occur
+in the Haskell part or the arrows part, and are thus rather hard to
+trace back to the original source.  If you use --pretty=none and feed
+the output to GHC, the error it reports will refer to the first line
+of the declaration containing the error.  But if you need to read the
+preprocessor output to find the problem, omit the --pretty option.
+
+You can reduce the above problems by putting the parts of your program
+that need arrow syntax (and thus the preprocessor) in separate modules.
+
+BUGS
+
+- there is no type checking until the output is compiled,
+  resulting in incomprehensible error messages.
+- failable patterns are not handled as promised yet.
+  (And I'm starting to think they shouldn't be.)
+
+SOURCE NOTES
+
+This is based on hsparser, by Sven Panne, Simon Marlow and Noel Winstanley.
+It is now the haskell-src package distributed with GHC.
+
+My changes are
+
+	Lexer -- a few lines adding extra symbols (all marked)
+	Parser -- a few marked lines and several rules at the end,
+		mostly modified versions of existing rules.
+	ArrSyn, ArrCode, Utils -- new modules for arrow syntax.
+
+The parser gives 2 shift/reduce conflicts, inherited from the original.
+
+There was a reduce/reduce conflict:
+
+	qual -> 'let' declist .
+	qualA -> 'let' declist .
+
+but I've kludged the grammar (see stmtA) to avoid it.
diff --git a/Setup.hs b/Setup.hs
new file mode 100644
--- /dev/null
+++ b/Setup.hs
@@ -0,0 +1,2 @@
+import Distribution.Simple
+main = defaultMainWithHooks defaultUserHooks
diff --git a/arrowp.cabal b/arrowp.cabal
new file mode 100644
--- /dev/null
+++ b/arrowp.cabal
@@ -0,0 +1,32 @@
+Name:           arrowp
+Version:        0.5.0.1
+Cabal-Version:  >= 1.2
+Build-Type:     Simple
+License:        GPL
+License-File:   LICENCE
+Author:         Ross Paterson <ross@soi.city.ac.uk>
+Maintainer:     Ross Paterson <ross@soi.city.ac.uk>
+Homepage:       http://www.haskell.org/arrows/
+Category:       Development
+Synopsis:       preprocessor translating arrow notation into Haskell 98
+Description:    A preprocessor that reads Haskell with arrow notation
+                and outputs Haskell 98.  Note that GHC 6.2 or later has
+                built-in support for arrow notation, so if you're only
+                using GHC, you don't need this preprocessor: just rename
+                your arrow module as an ordinary Haskell source file and
+                invoke GHC with the -farrows option.  You'll get better
+                error messages for arrow code, too.
+Extra-Source-Files: README
+
+Flag small_base
+    description: Choose the new smaller, split-up base package.
+
+Executable arrowp
+    Main-is:        Main.lhs
+    Other-Modules:  ArrCode ArrSyn Lexer Parser Parser State Utils
+    if flag(small_base)
+        Build-Depends:  base >= 3, array, containers
+    else
+        Build-Depends:  base < 3
+    Build-Depends:  haskell-src
+    Hs-Source-Dirs: preprocessor
diff --git a/arrowp/arrowp-tmp/Parser.hs b/arrowp/arrowp-tmp/Parser.hs
new file mode 100644
--- /dev/null
+++ b/arrowp/arrowp-tmp/Parser.hs
@@ -0,0 +1,4802 @@
+{-# OPTIONS -fglasgow-exts -cpp #-}
+-----------------------------------------------------------------------------
+-- |
+-- Module      :  Parser
+-- Copyright   :  (c) Simon Marlow, Sven Panne 1997-2000
+-- License     :  BSD-style (see the file libraries/base/LICENSE)
+--
+-- Maintainer  :  libraries@haskell.org
+-- Stability   :  experimental
+-- Portability :  portable
+--
+-- Haskell parser.
+--
+-----------------------------------------------------------------------------
+module Parser (
+		parseModule, parseModuleWithMode,
+		ParseMode(..), defaultParseMode, ParseResult(..)) where
+
+import Language.Haskell.Syntax
+import Language.Haskell.ParseMonad
+import Lexer
+import Language.Haskell.ParseUtils
+
+import qualified ArrSyn		-- added for arrows
+#if __GLASGOW_HASKELL__ >= 503
+import Data.Array
+#else
+import Array
+#endif
+#if __GLASGOW_HASKELL__ >= 503
+import GHC.Exts
+#else
+import GlaExts
+#endif
+
+-- parser produced by Happy Version 1.16
+
+newtype HappyAbsSyn  = HappyAbsSyn (() -> ())
+happyIn4 :: (HsModule) -> (HappyAbsSyn )
+happyIn4 x = unsafeCoerce# x
+{-# INLINE happyIn4 #-}
+happyOut4 :: (HappyAbsSyn ) -> (HsModule)
+happyOut4 x = unsafeCoerce# x
+{-# INLINE happyOut4 #-}
+happyIn5 :: (([HsImportDecl],[HsDecl])) -> (HappyAbsSyn )
+happyIn5 x = unsafeCoerce# x
+{-# INLINE happyIn5 #-}
+happyOut5 :: (HappyAbsSyn ) -> (([HsImportDecl],[HsDecl]))
+happyOut5 x = unsafeCoerce# x
+{-# INLINE happyOut5 #-}
+happyIn6 :: (([HsImportDecl],[HsDecl])) -> (HappyAbsSyn )
+happyIn6 x = unsafeCoerce# x
+{-# INLINE happyIn6 #-}
+happyOut6 :: (HappyAbsSyn ) -> (([HsImportDecl],[HsDecl]))
+happyOut6 x = unsafeCoerce# x
+{-# INLINE happyOut6 #-}
+happyIn7 :: (()) -> (HappyAbsSyn )
+happyIn7 x = unsafeCoerce# x
+{-# INLINE happyIn7 #-}
+happyOut7 :: (HappyAbsSyn ) -> (())
+happyOut7 x = unsafeCoerce# x
+{-# INLINE happyOut7 #-}
+happyIn8 :: (()) -> (HappyAbsSyn )
+happyIn8 x = unsafeCoerce# x
+{-# INLINE happyIn8 #-}
+happyOut8 :: (HappyAbsSyn ) -> (())
+happyOut8 x = unsafeCoerce# x
+{-# INLINE happyOut8 #-}
+happyIn9 :: (Maybe [HsExportSpec]) -> (HappyAbsSyn )
+happyIn9 x = unsafeCoerce# x
+{-# INLINE happyIn9 #-}
+happyOut9 :: (HappyAbsSyn ) -> (Maybe [HsExportSpec])
+happyOut9 x = unsafeCoerce# x
+{-# INLINE happyOut9 #-}
+happyIn10 :: ([HsExportSpec]) -> (HappyAbsSyn )
+happyIn10 x = unsafeCoerce# x
+{-# INLINE happyIn10 #-}
+happyOut10 :: (HappyAbsSyn ) -> ([HsExportSpec])
+happyOut10 x = unsafeCoerce# x
+{-# INLINE happyOut10 #-}
+happyIn11 :: (()) -> (HappyAbsSyn )
+happyIn11 x = unsafeCoerce# x
+{-# INLINE happyIn11 #-}
+happyOut11 :: (HappyAbsSyn ) -> (())
+happyOut11 x = unsafeCoerce# x
+{-# INLINE happyOut11 #-}
+happyIn12 :: ([HsExportSpec]) -> (HappyAbsSyn )
+happyIn12 x = unsafeCoerce# x
+{-# INLINE happyIn12 #-}
+happyOut12 :: (HappyAbsSyn ) -> ([HsExportSpec])
+happyOut12 x = unsafeCoerce# x
+{-# INLINE happyOut12 #-}
+happyIn13 :: (HsExportSpec) -> (HappyAbsSyn )
+happyIn13 x = unsafeCoerce# x
+{-# INLINE happyIn13 #-}
+happyOut13 :: (HappyAbsSyn ) -> (HsExportSpec)
+happyOut13 x = unsafeCoerce# x
+{-# INLINE happyOut13 #-}
+happyIn14 :: ([HsImportDecl]) -> (HappyAbsSyn )
+happyIn14 x = unsafeCoerce# x
+{-# INLINE happyIn14 #-}
+happyOut14 :: (HappyAbsSyn ) -> ([HsImportDecl])
+happyOut14 x = unsafeCoerce# x
+{-# INLINE happyOut14 #-}
+happyIn15 :: (HsImportDecl) -> (HappyAbsSyn )
+happyIn15 x = unsafeCoerce# x
+{-# INLINE happyIn15 #-}
+happyOut15 :: (HappyAbsSyn ) -> (HsImportDecl)
+happyOut15 x = unsafeCoerce# x
+{-# INLINE happyOut15 #-}
+happyIn16 :: (Bool) -> (HappyAbsSyn )
+happyIn16 x = unsafeCoerce# x
+{-# INLINE happyIn16 #-}
+happyOut16 :: (HappyAbsSyn ) -> (Bool)
+happyOut16 x = unsafeCoerce# x
+{-# INLINE happyOut16 #-}
+happyIn17 :: (Maybe Module) -> (HappyAbsSyn )
+happyIn17 x = unsafeCoerce# x
+{-# INLINE happyIn17 #-}
+happyOut17 :: (HappyAbsSyn ) -> (Maybe Module)
+happyOut17 x = unsafeCoerce# x
+{-# INLINE happyOut17 #-}
+happyIn18 :: (Maybe (Bool, [HsImportSpec])) -> (HappyAbsSyn )
+happyIn18 x = unsafeCoerce# x
+{-# INLINE happyIn18 #-}
+happyOut18 :: (HappyAbsSyn ) -> (Maybe (Bool, [HsImportSpec]))
+happyOut18 x = unsafeCoerce# x
+{-# INLINE happyOut18 #-}
+happyIn19 :: ((Bool, [HsImportSpec])) -> (HappyAbsSyn )
+happyIn19 x = unsafeCoerce# x
+{-# INLINE happyIn19 #-}
+happyOut19 :: (HappyAbsSyn ) -> ((Bool, [HsImportSpec]))
+happyOut19 x = unsafeCoerce# x
+{-# INLINE happyOut19 #-}
+happyIn20 :: (Bool) -> (HappyAbsSyn )
+happyIn20 x = unsafeCoerce# x
+{-# INLINE happyIn20 #-}
+happyOut20 :: (HappyAbsSyn ) -> (Bool)
+happyOut20 x = unsafeCoerce# x
+{-# INLINE happyOut20 #-}
+happyIn21 :: ([HsImportSpec]) -> (HappyAbsSyn )
+happyIn21 x = unsafeCoerce# x
+{-# INLINE happyIn21 #-}
+happyOut21 :: (HappyAbsSyn ) -> ([HsImportSpec])
+happyOut21 x = unsafeCoerce# x
+{-# INLINE happyOut21 #-}
+happyIn22 :: (HsImportSpec) -> (HappyAbsSyn )
+happyIn22 x = unsafeCoerce# x
+{-# INLINE happyIn22 #-}
+happyOut22 :: (HappyAbsSyn ) -> (HsImportSpec)
+happyOut22 x = unsafeCoerce# x
+{-# INLINE happyOut22 #-}
+happyIn23 :: ([HsCName]) -> (HappyAbsSyn )
+happyIn23 x = unsafeCoerce# x
+{-# INLINE happyIn23 #-}
+happyOut23 :: (HappyAbsSyn ) -> ([HsCName])
+happyOut23 x = unsafeCoerce# x
+{-# INLINE happyOut23 #-}
+happyIn24 :: (HsCName) -> (HappyAbsSyn )
+happyIn24 x = unsafeCoerce# x
+{-# INLINE happyIn24 #-}
+happyOut24 :: (HappyAbsSyn ) -> (HsCName)
+happyOut24 x = unsafeCoerce# x
+{-# INLINE happyOut24 #-}
+happyIn25 :: (HsDecl) -> (HappyAbsSyn )
+happyIn25 x = unsafeCoerce# x
+{-# INLINE happyIn25 #-}
+happyOut25 :: (HappyAbsSyn ) -> (HsDecl)
+happyOut25 x = unsafeCoerce# x
+{-# INLINE happyOut25 #-}
+happyIn26 :: (Int) -> (HappyAbsSyn )
+happyIn26 x = unsafeCoerce# x
+{-# INLINE happyIn26 #-}
+happyOut26 :: (HappyAbsSyn ) -> (Int)
+happyOut26 x = unsafeCoerce# x
+{-# INLINE happyOut26 #-}
+happyIn27 :: (HsAssoc) -> (HappyAbsSyn )
+happyIn27 x = unsafeCoerce# x
+{-# INLINE happyIn27 #-}
+happyOut27 :: (HappyAbsSyn ) -> (HsAssoc)
+happyOut27 x = unsafeCoerce# x
+{-# INLINE happyOut27 #-}
+happyIn28 :: ([HsOp]) -> (HappyAbsSyn )
+happyIn28 x = unsafeCoerce# x
+{-# INLINE happyIn28 #-}
+happyOut28 :: (HappyAbsSyn ) -> ([HsOp])
+happyOut28 x = unsafeCoerce# x
+{-# INLINE happyOut28 #-}
+happyIn29 :: ([HsDecl]) -> (HappyAbsSyn )
+happyIn29 x = unsafeCoerce# x
+{-# INLINE happyIn29 #-}
+happyOut29 :: (HappyAbsSyn ) -> ([HsDecl])
+happyOut29 x = unsafeCoerce# x
+{-# INLINE happyOut29 #-}
+happyIn30 :: ([HsDecl]) -> (HappyAbsSyn )
+happyIn30 x = unsafeCoerce# x
+{-# INLINE happyIn30 #-}
+happyOut30 :: (HappyAbsSyn ) -> ([HsDecl])
+happyOut30 x = unsafeCoerce# x
+{-# INLINE happyOut30 #-}
+happyIn31 :: (HsDecl) -> (HappyAbsSyn )
+happyIn31 x = unsafeCoerce# x
+{-# INLINE happyIn31 #-}
+happyOut31 :: (HappyAbsSyn ) -> (HsDecl)
+happyOut31 x = unsafeCoerce# x
+{-# INLINE happyOut31 #-}
+happyIn32 :: ([HsType]) -> (HappyAbsSyn )
+happyIn32 x = unsafeCoerce# x
+{-# INLINE happyIn32 #-}
+happyOut32 :: (HappyAbsSyn ) -> ([HsType])
+happyOut32 x = unsafeCoerce# x
+{-# INLINE happyOut32 #-}
+happyIn33 :: ([HsDecl]) -> (HappyAbsSyn )
+happyIn33 x = unsafeCoerce# x
+{-# INLINE happyIn33 #-}
+happyOut33 :: (HappyAbsSyn ) -> ([HsDecl])
+happyOut33 x = unsafeCoerce# x
+{-# INLINE happyOut33 #-}
+happyIn34 :: ([HsDecl]) -> (HappyAbsSyn )
+happyIn34 x = unsafeCoerce# x
+{-# INLINE happyIn34 #-}
+happyOut34 :: (HappyAbsSyn ) -> ([HsDecl])
+happyOut34 x = unsafeCoerce# x
+{-# INLINE happyOut34 #-}
+happyIn35 :: (HsDecl) -> (HappyAbsSyn )
+happyIn35 x = unsafeCoerce# x
+{-# INLINE happyIn35 #-}
+happyOut35 :: (HappyAbsSyn ) -> (HsDecl)
+happyOut35 x = unsafeCoerce# x
+{-# INLINE happyOut35 #-}
+happyIn36 :: ([HsDecl]) -> (HappyAbsSyn )
+happyIn36 x = unsafeCoerce# x
+{-# INLINE happyIn36 #-}
+happyOut36 :: (HappyAbsSyn ) -> ([HsDecl])
+happyOut36 x = unsafeCoerce# x
+{-# INLINE happyOut36 #-}
+happyIn37 :: (HsDecl) -> (HappyAbsSyn )
+happyIn37 x = unsafeCoerce# x
+{-# INLINE happyIn37 #-}
+happyOut37 :: (HappyAbsSyn ) -> (HsDecl)
+happyOut37 x = unsafeCoerce# x
+{-# INLINE happyOut37 #-}
+happyIn38 :: ([HsName]) -> (HappyAbsSyn )
+happyIn38 x = unsafeCoerce# x
+{-# INLINE happyIn38 #-}
+happyOut38 :: (HappyAbsSyn ) -> ([HsName])
+happyOut38 x = unsafeCoerce# x
+{-# INLINE happyOut38 #-}
+happyIn39 :: (HsDecl) -> (HappyAbsSyn )
+happyIn39 x = unsafeCoerce# x
+{-# INLINE happyIn39 #-}
+happyOut39 :: (HappyAbsSyn ) -> (HsDecl)
+happyOut39 x = unsafeCoerce# x
+{-# INLINE happyOut39 #-}
+happyIn40 :: (HsSafety) -> (HappyAbsSyn )
+happyIn40 x = unsafeCoerce# x
+{-# INLINE happyIn40 #-}
+happyOut40 :: (HappyAbsSyn ) -> (HsSafety)
+happyOut40 x = unsafeCoerce# x
+{-# INLINE happyOut40 #-}
+happyIn41 :: (String) -> (HappyAbsSyn )
+happyIn41 x = unsafeCoerce# x
+{-# INLINE happyIn41 #-}
+happyOut41 :: (HappyAbsSyn ) -> (String)
+happyOut41 x = unsafeCoerce# x
+{-# INLINE happyOut41 #-}
+happyIn42 :: (HsName) -> (HappyAbsSyn )
+happyIn42 x = unsafeCoerce# x
+{-# INLINE happyIn42 #-}
+happyOut42 :: (HappyAbsSyn ) -> (HsName)
+happyOut42 x = unsafeCoerce# x
+{-# INLINE happyOut42 #-}
+happyIn43 :: (HsType) -> (HappyAbsSyn )
+happyIn43 x = unsafeCoerce# x
+{-# INLINE happyIn43 #-}
+happyOut43 :: (HappyAbsSyn ) -> (HsType)
+happyOut43 x = unsafeCoerce# x
+{-# INLINE happyOut43 #-}
+happyIn44 :: (HsType) -> (HappyAbsSyn )
+happyIn44 x = unsafeCoerce# x
+{-# INLINE happyIn44 #-}
+happyOut44 :: (HappyAbsSyn ) -> (HsType)
+happyOut44 x = unsafeCoerce# x
+{-# INLINE happyOut44 #-}
+happyIn45 :: (HsType) -> (HappyAbsSyn )
+happyIn45 x = unsafeCoerce# x
+{-# INLINE happyIn45 #-}
+happyOut45 :: (HappyAbsSyn ) -> (HsType)
+happyOut45 x = unsafeCoerce# x
+{-# INLINE happyOut45 #-}
+happyIn46 :: (HsQName) -> (HappyAbsSyn )
+happyIn46 x = unsafeCoerce# x
+{-# INLINE happyIn46 #-}
+happyOut46 :: (HappyAbsSyn ) -> (HsQName)
+happyOut46 x = unsafeCoerce# x
+{-# INLINE happyOut46 #-}
+happyIn47 :: (HsQualType) -> (HappyAbsSyn )
+happyIn47 x = unsafeCoerce# x
+{-# INLINE happyIn47 #-}
+happyOut47 :: (HappyAbsSyn ) -> (HsQualType)
+happyOut47 x = unsafeCoerce# x
+{-# INLINE happyOut47 #-}
+happyIn48 :: (HsContext) -> (HappyAbsSyn )
+happyIn48 x = unsafeCoerce# x
+{-# INLINE happyIn48 #-}
+happyOut48 :: (HappyAbsSyn ) -> (HsContext)
+happyOut48 x = unsafeCoerce# x
+{-# INLINE happyOut48 #-}
+happyIn49 :: ([HsType]) -> (HappyAbsSyn )
+happyIn49 x = unsafeCoerce# x
+{-# INLINE happyIn49 #-}
+happyOut49 :: (HappyAbsSyn ) -> ([HsType])
+happyOut49 x = unsafeCoerce# x
+{-# INLINE happyOut49 #-}
+happyIn50 :: ((HsName, [HsName])) -> (HappyAbsSyn )
+happyIn50 x = unsafeCoerce# x
+{-# INLINE happyIn50 #-}
+happyOut50 :: (HappyAbsSyn ) -> ((HsName, [HsName]))
+happyOut50 x = unsafeCoerce# x
+{-# INLINE happyOut50 #-}
+happyIn51 :: ([HsName]) -> (HappyAbsSyn )
+happyIn51 x = unsafeCoerce# x
+{-# INLINE happyIn51 #-}
+happyOut51 :: (HappyAbsSyn ) -> ([HsName])
+happyOut51 x = unsafeCoerce# x
+{-# INLINE happyOut51 #-}
+happyIn52 :: ([HsConDecl]) -> (HappyAbsSyn )
+happyIn52 x = unsafeCoerce# x
+{-# INLINE happyIn52 #-}
+happyOut52 :: (HappyAbsSyn ) -> ([HsConDecl])
+happyOut52 x = unsafeCoerce# x
+{-# INLINE happyOut52 #-}
+happyIn53 :: (HsConDecl) -> (HappyAbsSyn )
+happyIn53 x = unsafeCoerce# x
+{-# INLINE happyIn53 #-}
+happyOut53 :: (HappyAbsSyn ) -> (HsConDecl)
+happyOut53 x = unsafeCoerce# x
+{-# INLINE happyOut53 #-}
+happyIn54 :: ((HsName, [HsBangType])) -> (HappyAbsSyn )
+happyIn54 x = unsafeCoerce# x
+{-# INLINE happyIn54 #-}
+happyOut54 :: (HappyAbsSyn ) -> ((HsName, [HsBangType]))
+happyOut54 x = unsafeCoerce# x
+{-# INLINE happyOut54 #-}
+happyIn55 :: ((HsName, [HsBangType])) -> (HappyAbsSyn )
+happyIn55 x = unsafeCoerce# x
+{-# INLINE happyIn55 #-}
+happyOut55 :: (HappyAbsSyn ) -> ((HsName, [HsBangType]))
+happyOut55 x = unsafeCoerce# x
+{-# INLINE happyOut55 #-}
+happyIn56 :: (HsBangType) -> (HappyAbsSyn )
+happyIn56 x = unsafeCoerce# x
+{-# INLINE happyIn56 #-}
+happyOut56 :: (HappyAbsSyn ) -> (HsBangType)
+happyOut56 x = unsafeCoerce# x
+{-# INLINE happyOut56 #-}
+happyIn57 :: (HsBangType) -> (HappyAbsSyn )
+happyIn57 x = unsafeCoerce# x
+{-# INLINE happyIn57 #-}
+happyOut57 :: (HappyAbsSyn ) -> (HsBangType)
+happyOut57 x = unsafeCoerce# x
+{-# INLINE happyOut57 #-}
+happyIn58 :: ([([HsName],HsBangType)]) -> (HappyAbsSyn )
+happyIn58 x = unsafeCoerce# x
+{-# INLINE happyIn58 #-}
+happyOut58 :: (HappyAbsSyn ) -> ([([HsName],HsBangType)])
+happyOut58 x = unsafeCoerce# x
+{-# INLINE happyOut58 #-}
+happyIn59 :: (([HsName],HsBangType)) -> (HappyAbsSyn )
+happyIn59 x = unsafeCoerce# x
+{-# INLINE happyIn59 #-}
+happyOut59 :: (HappyAbsSyn ) -> (([HsName],HsBangType))
+happyOut59 x = unsafeCoerce# x
+{-# INLINE happyOut59 #-}
+happyIn60 :: (HsBangType) -> (HappyAbsSyn )
+happyIn60 x = unsafeCoerce# x
+{-# INLINE happyIn60 #-}
+happyOut60 :: (HappyAbsSyn ) -> (HsBangType)
+happyOut60 x = unsafeCoerce# x
+{-# INLINE happyOut60 #-}
+happyIn61 :: ([HsQName]) -> (HappyAbsSyn )
+happyIn61 x = unsafeCoerce# x
+{-# INLINE happyIn61 #-}
+happyOut61 :: (HappyAbsSyn ) -> ([HsQName])
+happyOut61 x = unsafeCoerce# x
+{-# INLINE happyOut61 #-}
+happyIn62 :: ([HsQName]) -> (HappyAbsSyn )
+happyIn62 x = unsafeCoerce# x
+{-# INLINE happyIn62 #-}
+happyOut62 :: (HappyAbsSyn ) -> ([HsQName])
+happyOut62 x = unsafeCoerce# x
+{-# INLINE happyOut62 #-}
+happyIn63 :: ([HsDecl]) -> (HappyAbsSyn )
+happyIn63 x = unsafeCoerce# x
+{-# INLINE happyIn63 #-}
+happyOut63 :: (HappyAbsSyn ) -> ([HsDecl])
+happyOut63 x = unsafeCoerce# x
+{-# INLINE happyOut63 #-}
+happyIn64 :: ([HsDecl]) -> (HappyAbsSyn )
+happyIn64 x = unsafeCoerce# x
+{-# INLINE happyIn64 #-}
+happyOut64 :: (HappyAbsSyn ) -> ([HsDecl])
+happyOut64 x = unsafeCoerce# x
+{-# INLINE happyOut64 #-}
+happyIn65 :: ([HsDecl]) -> (HappyAbsSyn )
+happyIn65 x = unsafeCoerce# x
+{-# INLINE happyIn65 #-}
+happyOut65 :: (HappyAbsSyn ) -> ([HsDecl])
+happyOut65 x = unsafeCoerce# x
+{-# INLINE happyOut65 #-}
+happyIn66 :: ([HsDecl]) -> (HappyAbsSyn )
+happyIn66 x = unsafeCoerce# x
+{-# INLINE happyIn66 #-}
+happyOut66 :: (HappyAbsSyn ) -> ([HsDecl])
+happyOut66 x = unsafeCoerce# x
+{-# INLINE happyOut66 #-}
+happyIn67 :: (HsDecl) -> (HappyAbsSyn )
+happyIn67 x = unsafeCoerce# x
+{-# INLINE happyIn67 #-}
+happyOut67 :: (HappyAbsSyn ) -> (HsDecl)
+happyOut67 x = unsafeCoerce# x
+{-# INLINE happyOut67 #-}
+happyIn68 :: ([HsDecl]) -> (HappyAbsSyn )
+happyIn68 x = unsafeCoerce# x
+{-# INLINE happyIn68 #-}
+happyOut68 :: (HappyAbsSyn ) -> ([HsDecl])
+happyOut68 x = unsafeCoerce# x
+{-# INLINE happyOut68 #-}
+happyIn69 :: (HsRhs) -> (HappyAbsSyn )
+happyIn69 x = unsafeCoerce# x
+{-# INLINE happyIn69 #-}
+happyOut69 :: (HappyAbsSyn ) -> (HsRhs)
+happyOut69 x = unsafeCoerce# x
+{-# INLINE happyOut69 #-}
+happyIn70 :: ([HsGuardedRhs]) -> (HappyAbsSyn )
+happyIn70 x = unsafeCoerce# x
+{-# INLINE happyIn70 #-}
+happyOut70 :: (HappyAbsSyn ) -> ([HsGuardedRhs])
+happyOut70 x = unsafeCoerce# x
+{-# INLINE happyOut70 #-}
+happyIn71 :: (HsGuardedRhs) -> (HappyAbsSyn )
+happyIn71 x = unsafeCoerce# x
+{-# INLINE happyIn71 #-}
+happyOut71 :: (HappyAbsSyn ) -> (HsGuardedRhs)
+happyOut71 x = unsafeCoerce# x
+{-# INLINE happyOut71 #-}
+happyIn72 :: (HsExp) -> (HappyAbsSyn )
+happyIn72 x = unsafeCoerce# x
+{-# INLINE happyIn72 #-}
+happyOut72 :: (HappyAbsSyn ) -> (HsExp)
+happyOut72 x = unsafeCoerce# x
+{-# INLINE happyOut72 #-}
+happyIn73 :: (HsExp) -> (HappyAbsSyn )
+happyIn73 x = unsafeCoerce# x
+{-# INLINE happyIn73 #-}
+happyOut73 :: (HappyAbsSyn ) -> (HsExp)
+happyOut73 x = unsafeCoerce# x
+{-# INLINE happyOut73 #-}
+happyIn74 :: (HsExp) -> (HappyAbsSyn )
+happyIn74 x = unsafeCoerce# x
+{-# INLINE happyIn74 #-}
+happyOut74 :: (HappyAbsSyn ) -> (HsExp)
+happyOut74 x = unsafeCoerce# x
+{-# INLINE happyOut74 #-}
+happyIn75 :: (HsExp) -> (HappyAbsSyn )
+happyIn75 x = unsafeCoerce# x
+{-# INLINE happyIn75 #-}
+happyOut75 :: (HappyAbsSyn ) -> (HsExp)
+happyOut75 x = unsafeCoerce# x
+{-# INLINE happyOut75 #-}
+happyIn76 :: (HsExp) -> (HappyAbsSyn )
+happyIn76 x = unsafeCoerce# x
+{-# INLINE happyIn76 #-}
+happyOut76 :: (HappyAbsSyn ) -> (HsExp)
+happyOut76 x = unsafeCoerce# x
+{-# INLINE happyOut76 #-}
+happyIn77 :: (HsExp) -> (HappyAbsSyn )
+happyIn77 x = unsafeCoerce# x
+{-# INLINE happyIn77 #-}
+happyOut77 :: (HappyAbsSyn ) -> (HsExp)
+happyOut77 x = unsafeCoerce# x
+{-# INLINE happyOut77 #-}
+happyIn78 :: (HsExp) -> (HappyAbsSyn )
+happyIn78 x = unsafeCoerce# x
+{-# INLINE happyIn78 #-}
+happyOut78 :: (HappyAbsSyn ) -> (HsExp)
+happyOut78 x = unsafeCoerce# x
+{-# INLINE happyOut78 #-}
+happyIn79 :: ([HsPat]) -> (HappyAbsSyn )
+happyIn79 x = unsafeCoerce# x
+{-# INLINE happyIn79 #-}
+happyOut79 :: (HappyAbsSyn ) -> ([HsPat])
+happyOut79 x = unsafeCoerce# x
+{-# INLINE happyOut79 #-}
+happyIn80 :: (HsPat) -> (HappyAbsSyn )
+happyIn80 x = unsafeCoerce# x
+{-# INLINE happyIn80 #-}
+happyOut80 :: (HappyAbsSyn ) -> (HsPat)
+happyOut80 x = unsafeCoerce# x
+{-# INLINE happyOut80 #-}
+happyIn81 :: (HsExp) -> (HappyAbsSyn )
+happyIn81 x = unsafeCoerce# x
+{-# INLINE happyIn81 #-}
+happyOut81 :: (HappyAbsSyn ) -> (HsExp)
+happyOut81 x = unsafeCoerce# x
+{-# INLINE happyOut81 #-}
+happyIn82 :: (HsExp) -> (HappyAbsSyn )
+happyIn82 x = unsafeCoerce# x
+{-# INLINE happyIn82 #-}
+happyOut82 :: (HappyAbsSyn ) -> (HsExp)
+happyOut82 x = unsafeCoerce# x
+{-# INLINE happyOut82 #-}
+happyIn83 :: (HsExp) -> (HappyAbsSyn )
+happyIn83 x = unsafeCoerce# x
+{-# INLINE happyIn83 #-}
+happyOut83 :: (HappyAbsSyn ) -> (HsExp)
+happyOut83 x = unsafeCoerce# x
+{-# INLINE happyOut83 #-}
+happyIn84 :: (Int) -> (HappyAbsSyn )
+happyIn84 x = unsafeCoerce# x
+{-# INLINE happyIn84 #-}
+happyOut84 :: (HappyAbsSyn ) -> (Int)
+happyOut84 x = unsafeCoerce# x
+{-# INLINE happyOut84 #-}
+happyIn85 :: ([HsExp]) -> (HappyAbsSyn )
+happyIn85 x = unsafeCoerce# x
+{-# INLINE happyIn85 #-}
+happyOut85 :: (HappyAbsSyn ) -> ([HsExp])
+happyOut85 x = unsafeCoerce# x
+{-# INLINE happyOut85 #-}
+happyIn86 :: (HsExp) -> (HappyAbsSyn )
+happyIn86 x = unsafeCoerce# x
+{-# INLINE happyIn86 #-}
+happyOut86 :: (HappyAbsSyn ) -> (HsExp)
+happyOut86 x = unsafeCoerce# x
+{-# INLINE happyOut86 #-}
+happyIn87 :: ([HsExp]) -> (HappyAbsSyn )
+happyIn87 x = unsafeCoerce# x
+{-# INLINE happyIn87 #-}
+happyOut87 :: (HappyAbsSyn ) -> ([HsExp])
+happyOut87 x = unsafeCoerce# x
+{-# INLINE happyOut87 #-}
+happyIn88 :: ([HsStmt]) -> (HappyAbsSyn )
+happyIn88 x = unsafeCoerce# x
+{-# INLINE happyIn88 #-}
+happyOut88 :: (HappyAbsSyn ) -> ([HsStmt])
+happyOut88 x = unsafeCoerce# x
+{-# INLINE happyOut88 #-}
+happyIn89 :: (HsStmt) -> (HappyAbsSyn )
+happyIn89 x = unsafeCoerce# x
+{-# INLINE happyIn89 #-}
+happyOut89 :: (HappyAbsSyn ) -> (HsStmt)
+happyOut89 x = unsafeCoerce# x
+{-# INLINE happyOut89 #-}
+happyIn90 :: ([HsAlt]) -> (HappyAbsSyn )
+happyIn90 x = unsafeCoerce# x
+{-# INLINE happyIn90 #-}
+happyOut90 :: (HappyAbsSyn ) -> ([HsAlt])
+happyOut90 x = unsafeCoerce# x
+{-# INLINE happyOut90 #-}
+happyIn91 :: ([HsAlt]) -> (HappyAbsSyn )
+happyIn91 x = unsafeCoerce# x
+{-# INLINE happyIn91 #-}
+happyOut91 :: (HappyAbsSyn ) -> ([HsAlt])
+happyOut91 x = unsafeCoerce# x
+{-# INLINE happyOut91 #-}
+happyIn92 :: ([HsAlt]) -> (HappyAbsSyn )
+happyIn92 x = unsafeCoerce# x
+{-# INLINE happyIn92 #-}
+happyOut92 :: (HappyAbsSyn ) -> ([HsAlt])
+happyOut92 x = unsafeCoerce# x
+{-# INLINE happyOut92 #-}
+happyIn93 :: (HsAlt) -> (HappyAbsSyn )
+happyIn93 x = unsafeCoerce# x
+{-# INLINE happyIn93 #-}
+happyOut93 :: (HappyAbsSyn ) -> (HsAlt)
+happyOut93 x = unsafeCoerce# x
+{-# INLINE happyOut93 #-}
+happyIn94 :: (HsGuardedAlts) -> (HappyAbsSyn )
+happyIn94 x = unsafeCoerce# x
+{-# INLINE happyIn94 #-}
+happyOut94 :: (HappyAbsSyn ) -> (HsGuardedAlts)
+happyOut94 x = unsafeCoerce# x
+{-# INLINE happyOut94 #-}
+happyIn95 :: ([HsGuardedAlt]) -> (HappyAbsSyn )
+happyIn95 x = unsafeCoerce# x
+{-# INLINE happyIn95 #-}
+happyOut95 :: (HappyAbsSyn ) -> ([HsGuardedAlt])
+happyOut95 x = unsafeCoerce# x
+{-# INLINE happyOut95 #-}
+happyIn96 :: (HsGuardedAlt) -> (HappyAbsSyn )
+happyIn96 x = unsafeCoerce# x
+{-# INLINE happyIn96 #-}
+happyOut96 :: (HappyAbsSyn ) -> (HsGuardedAlt)
+happyOut96 x = unsafeCoerce# x
+{-# INLINE happyOut96 #-}
+happyIn97 :: (HsPat) -> (HappyAbsSyn )
+happyIn97 x = unsafeCoerce# x
+{-# INLINE happyIn97 #-}
+happyOut97 :: (HappyAbsSyn ) -> (HsPat)
+happyOut97 x = unsafeCoerce# x
+{-# INLINE happyOut97 #-}
+happyIn98 :: ([HsStmt]) -> (HappyAbsSyn )
+happyIn98 x = unsafeCoerce# x
+{-# INLINE happyIn98 #-}
+happyOut98 :: (HappyAbsSyn ) -> ([HsStmt])
+happyOut98 x = unsafeCoerce# x
+{-# INLINE happyOut98 #-}
+happyIn99 :: ([HsStmt]) -> (HappyAbsSyn )
+happyIn99 x = unsafeCoerce# x
+{-# INLINE happyIn99 #-}
+happyOut99 :: (HappyAbsSyn ) -> ([HsStmt])
+happyOut99 x = unsafeCoerce# x
+{-# INLINE happyOut99 #-}
+happyIn100 :: ([HsFieldUpdate]) -> (HappyAbsSyn )
+happyIn100 x = unsafeCoerce# x
+{-# INLINE happyIn100 #-}
+happyOut100 :: (HappyAbsSyn ) -> ([HsFieldUpdate])
+happyOut100 x = unsafeCoerce# x
+{-# INLINE happyOut100 #-}
+happyIn101 :: (HsFieldUpdate) -> (HappyAbsSyn )
+happyIn101 x = unsafeCoerce# x
+{-# INLINE happyIn101 #-}
+happyOut101 :: (HappyAbsSyn ) -> (HsFieldUpdate)
+happyOut101 x = unsafeCoerce# x
+{-# INLINE happyOut101 #-}
+happyIn102 :: (ArrSyn.Cmd) -> (HappyAbsSyn )
+happyIn102 x = unsafeCoerce# x
+{-# INLINE happyIn102 #-}
+happyOut102 :: (HappyAbsSyn ) -> (ArrSyn.Cmd)
+happyOut102 x = unsafeCoerce# x
+{-# INLINE happyOut102 #-}
+happyIn103 :: (ArrSyn.Cmd) -> (HappyAbsSyn )
+happyIn103 x = unsafeCoerce# x
+{-# INLINE happyIn103 #-}
+happyOut103 :: (HappyAbsSyn ) -> (ArrSyn.Cmd)
+happyOut103 x = unsafeCoerce# x
+{-# INLINE happyOut103 #-}
+happyIn104 :: (ArrSyn.Cmd) -> (HappyAbsSyn )
+happyIn104 x = unsafeCoerce# x
+{-# INLINE happyIn104 #-}
+happyOut104 :: (HappyAbsSyn ) -> (ArrSyn.Cmd)
+happyOut104 x = unsafeCoerce# x
+{-# INLINE happyOut104 #-}
+happyIn105 :: (ArrSyn.Cmd) -> (HappyAbsSyn )
+happyIn105 x = unsafeCoerce# x
+{-# INLINE happyIn105 #-}
+happyOut105 :: (HappyAbsSyn ) -> (ArrSyn.Cmd)
+happyOut105 x = unsafeCoerce# x
+{-# INLINE happyOut105 #-}
+happyIn106 :: (ArrSyn.Cmd) -> (HappyAbsSyn )
+happyIn106 x = unsafeCoerce# x
+{-# INLINE happyIn106 #-}
+happyOut106 :: (HappyAbsSyn ) -> (ArrSyn.Cmd)
+happyOut106 x = unsafeCoerce# x
+{-# INLINE happyOut106 #-}
+happyIn107 :: (ArrSyn.Cmd) -> (HappyAbsSyn )
+happyIn107 x = unsafeCoerce# x
+{-# INLINE happyIn107 #-}
+happyOut107 :: (HappyAbsSyn ) -> (ArrSyn.Cmd)
+happyOut107 x = unsafeCoerce# x
+{-# INLINE happyOut107 #-}
+happyIn108 :: (ArrSyn.Cmd) -> (HappyAbsSyn )
+happyIn108 x = unsafeCoerce# x
+{-# INLINE happyIn108 #-}
+happyOut108 :: (HappyAbsSyn ) -> (ArrSyn.Cmd)
+happyOut108 x = unsafeCoerce# x
+{-# INLINE happyOut108 #-}
+happyIn109 :: (ArrSyn.Cmd) -> (HappyAbsSyn )
+happyIn109 x = unsafeCoerce# x
+{-# INLINE happyIn109 #-}
+happyOut109 :: (HappyAbsSyn ) -> (ArrSyn.Cmd)
+happyOut109 x = unsafeCoerce# x
+{-# INLINE happyOut109 #-}
+happyIn110 :: ([ArrSyn.Cmd]) -> (HappyAbsSyn )
+happyIn110 x = unsafeCoerce# x
+{-# INLINE happyIn110 #-}
+happyOut110 :: (HappyAbsSyn ) -> ([ArrSyn.Cmd])
+happyOut110 x = unsafeCoerce# x
+{-# INLINE happyOut110 #-}
+happyIn111 :: ([ArrSyn.Alt]) -> (HappyAbsSyn )
+happyIn111 x = unsafeCoerce# x
+{-# INLINE happyIn111 #-}
+happyOut111 :: (HappyAbsSyn ) -> ([ArrSyn.Alt])
+happyOut111 x = unsafeCoerce# x
+{-# INLINE happyOut111 #-}
+happyIn112 :: ([ArrSyn.Alt]) -> (HappyAbsSyn )
+happyIn112 x = unsafeCoerce# x
+{-# INLINE happyIn112 #-}
+happyOut112 :: (HappyAbsSyn ) -> ([ArrSyn.Alt])
+happyOut112 x = unsafeCoerce# x
+{-# INLINE happyOut112 #-}
+happyIn113 :: ([ArrSyn.Alt]) -> (HappyAbsSyn )
+happyIn113 x = unsafeCoerce# x
+{-# INLINE happyIn113 #-}
+happyOut113 :: (HappyAbsSyn ) -> ([ArrSyn.Alt])
+happyOut113 x = unsafeCoerce# x
+{-# INLINE happyOut113 #-}
+happyIn114 :: (ArrSyn.Alt) -> (HappyAbsSyn )
+happyIn114 x = unsafeCoerce# x
+{-# INLINE happyIn114 #-}
+happyOut114 :: (HappyAbsSyn ) -> (ArrSyn.Alt)
+happyOut114 x = unsafeCoerce# x
+{-# INLINE happyOut114 #-}
+happyIn115 :: (ArrSyn.GuardedAlts) -> (HappyAbsSyn )
+happyIn115 x = unsafeCoerce# x
+{-# INLINE happyIn115 #-}
+happyOut115 :: (HappyAbsSyn ) -> (ArrSyn.GuardedAlts)
+happyOut115 x = unsafeCoerce# x
+{-# INLINE happyOut115 #-}
+happyIn116 :: ([ArrSyn.GuardedAlt]) -> (HappyAbsSyn )
+happyIn116 x = unsafeCoerce# x
+{-# INLINE happyIn116 #-}
+happyOut116 :: (HappyAbsSyn ) -> ([ArrSyn.GuardedAlt])
+happyOut116 x = unsafeCoerce# x
+{-# INLINE happyOut116 #-}
+happyIn117 :: (ArrSyn.GuardedAlt) -> (HappyAbsSyn )
+happyIn117 x = unsafeCoerce# x
+{-# INLINE happyIn117 #-}
+happyOut117 :: (HappyAbsSyn ) -> (ArrSyn.GuardedAlt)
+happyOut117 x = unsafeCoerce# x
+{-# INLINE happyOut117 #-}
+happyIn118 :: (ArrSyn.Stmts) -> (HappyAbsSyn )
+happyIn118 x = unsafeCoerce# x
+{-# INLINE happyIn118 #-}
+happyOut118 :: (HappyAbsSyn ) -> (ArrSyn.Stmts)
+happyOut118 x = unsafeCoerce# x
+{-# INLINE happyOut118 #-}
+happyIn119 :: (ArrSyn.Stmts) -> (HappyAbsSyn )
+happyIn119 x = unsafeCoerce# x
+{-# INLINE happyIn119 #-}
+happyOut119 :: (HappyAbsSyn ) -> (ArrSyn.Stmts)
+happyOut119 x = unsafeCoerce# x
+{-# INLINE happyOut119 #-}
+happyIn120 :: (ArrSyn.Stmt) -> (HappyAbsSyn )
+happyIn120 x = unsafeCoerce# x
+{-# INLINE happyIn120 #-}
+happyOut120 :: (HappyAbsSyn ) -> (ArrSyn.Stmt)
+happyOut120 x = unsafeCoerce# x
+{-# INLINE happyOut120 #-}
+happyIn121 :: (ArrSyn.VarDecl ArrSyn.Cmd) -> (HappyAbsSyn )
+happyIn121 x = unsafeCoerce# x
+{-# INLINE happyIn121 #-}
+happyOut121 :: (HappyAbsSyn ) -> (ArrSyn.VarDecl ArrSyn.Cmd)
+happyOut121 x = unsafeCoerce# x
+{-# INLINE happyOut121 #-}
+happyIn122 :: ([ArrSyn.Stmt]) -> (HappyAbsSyn )
+happyIn122 x = unsafeCoerce# x
+{-# INLINE happyIn122 #-}
+happyOut122 :: (HappyAbsSyn ) -> ([ArrSyn.Stmt])
+happyOut122 x = unsafeCoerce# x
+{-# INLINE happyOut122 #-}
+happyIn123 :: ([ArrSyn.Stmt]) -> (HappyAbsSyn )
+happyIn123 x = unsafeCoerce# x
+{-# INLINE happyIn123 #-}
+happyOut123 :: (HappyAbsSyn ) -> ([ArrSyn.Stmt])
+happyOut123 x = unsafeCoerce# x
+{-# INLINE happyOut123 #-}
+happyIn124 :: (ArrSyn.Stmt) -> (HappyAbsSyn )
+happyIn124 x = unsafeCoerce# x
+{-# INLINE happyIn124 #-}
+happyOut124 :: (HappyAbsSyn ) -> (ArrSyn.Stmt)
+happyOut124 x = unsafeCoerce# x
+{-# INLINE happyOut124 #-}
+happyIn125 :: (HsExp) -> (HappyAbsSyn )
+happyIn125 x = unsafeCoerce# x
+{-# INLINE happyIn125 #-}
+happyOut125 :: (HappyAbsSyn ) -> (HsExp)
+happyOut125 x = unsafeCoerce# x
+{-# INLINE happyOut125 #-}
+happyIn126 :: (HsName) -> (HappyAbsSyn )
+happyIn126 x = unsafeCoerce# x
+{-# INLINE happyIn126 #-}
+happyOut126 :: (HappyAbsSyn ) -> (HsName)
+happyOut126 x = unsafeCoerce# x
+{-# INLINE happyOut126 #-}
+happyIn127 :: (HsQName) -> (HappyAbsSyn )
+happyIn127 x = unsafeCoerce# x
+{-# INLINE happyIn127 #-}
+happyOut127 :: (HappyAbsSyn ) -> (HsQName)
+happyOut127 x = unsafeCoerce# x
+{-# INLINE happyOut127 #-}
+happyIn128 :: (HsName) -> (HappyAbsSyn )
+happyIn128 x = unsafeCoerce# x
+{-# INLINE happyIn128 #-}
+happyOut128 :: (HappyAbsSyn ) -> (HsName)
+happyOut128 x = unsafeCoerce# x
+{-# INLINE happyOut128 #-}
+happyIn129 :: (HsQName) -> (HappyAbsSyn )
+happyIn129 x = unsafeCoerce# x
+{-# INLINE happyIn129 #-}
+happyOut129 :: (HappyAbsSyn ) -> (HsQName)
+happyOut129 x = unsafeCoerce# x
+{-# INLINE happyOut129 #-}
+happyIn130 :: (HsName) -> (HappyAbsSyn )
+happyIn130 x = unsafeCoerce# x
+{-# INLINE happyIn130 #-}
+happyOut130 :: (HappyAbsSyn ) -> (HsName)
+happyOut130 x = unsafeCoerce# x
+{-# INLINE happyOut130 #-}
+happyIn131 :: (HsQName) -> (HappyAbsSyn )
+happyIn131 x = unsafeCoerce# x
+{-# INLINE happyIn131 #-}
+happyOut131 :: (HappyAbsSyn ) -> (HsQName)
+happyOut131 x = unsafeCoerce# x
+{-# INLINE happyOut131 #-}
+happyIn132 :: (HsQName) -> (HappyAbsSyn )
+happyIn132 x = unsafeCoerce# x
+{-# INLINE happyIn132 #-}
+happyOut132 :: (HappyAbsSyn ) -> (HsQName)
+happyOut132 x = unsafeCoerce# x
+{-# INLINE happyOut132 #-}
+happyIn133 :: (HsName) -> (HappyAbsSyn )
+happyIn133 x = unsafeCoerce# x
+{-# INLINE happyIn133 #-}
+happyOut133 :: (HappyAbsSyn ) -> (HsName)
+happyOut133 x = unsafeCoerce# x
+{-# INLINE happyOut133 #-}
+happyIn134 :: (HsQName) -> (HappyAbsSyn )
+happyIn134 x = unsafeCoerce# x
+{-# INLINE happyIn134 #-}
+happyOut134 :: (HappyAbsSyn ) -> (HsQName)
+happyOut134 x = unsafeCoerce# x
+{-# INLINE happyOut134 #-}
+happyIn135 :: (HsOp) -> (HappyAbsSyn )
+happyIn135 x = unsafeCoerce# x
+{-# INLINE happyIn135 #-}
+happyOut135 :: (HappyAbsSyn ) -> (HsOp)
+happyOut135 x = unsafeCoerce# x
+{-# INLINE happyOut135 #-}
+happyIn136 :: (HsQOp) -> (HappyAbsSyn )
+happyIn136 x = unsafeCoerce# x
+{-# INLINE happyIn136 #-}
+happyOut136 :: (HappyAbsSyn ) -> (HsQOp)
+happyOut136 x = unsafeCoerce# x
+{-# INLINE happyOut136 #-}
+happyIn137 :: (HsQOp) -> (HappyAbsSyn )
+happyIn137 x = unsafeCoerce# x
+{-# INLINE happyIn137 #-}
+happyOut137 :: (HappyAbsSyn ) -> (HsQOp)
+happyOut137 x = unsafeCoerce# x
+{-# INLINE happyOut137 #-}
+happyIn138 :: (HsQName) -> (HappyAbsSyn )
+happyIn138 x = unsafeCoerce# x
+{-# INLINE happyIn138 #-}
+happyOut138 :: (HappyAbsSyn ) -> (HsQName)
+happyOut138 x = unsafeCoerce# x
+{-# INLINE happyOut138 #-}
+happyIn139 :: (HsQName) -> (HappyAbsSyn )
+happyIn139 x = unsafeCoerce# x
+{-# INLINE happyIn139 #-}
+happyOut139 :: (HappyAbsSyn ) -> (HsQName)
+happyOut139 x = unsafeCoerce# x
+{-# INLINE happyOut139 #-}
+happyIn140 :: (HsName) -> (HappyAbsSyn )
+happyIn140 x = unsafeCoerce# x
+{-# INLINE happyIn140 #-}
+happyOut140 :: (HappyAbsSyn ) -> (HsName)
+happyOut140 x = unsafeCoerce# x
+{-# INLINE happyOut140 #-}
+happyIn141 :: (HsQName) -> (HappyAbsSyn )
+happyIn141 x = unsafeCoerce# x
+{-# INLINE happyIn141 #-}
+happyOut141 :: (HappyAbsSyn ) -> (HsQName)
+happyOut141 x = unsafeCoerce# x
+{-# INLINE happyOut141 #-}
+happyIn142 :: (HsName) -> (HappyAbsSyn )
+happyIn142 x = unsafeCoerce# x
+{-# INLINE happyIn142 #-}
+happyOut142 :: (HappyAbsSyn ) -> (HsName)
+happyOut142 x = unsafeCoerce# x
+{-# INLINE happyOut142 #-}
+happyIn143 :: (HsQName) -> (HappyAbsSyn )
+happyIn143 x = unsafeCoerce# x
+{-# INLINE happyIn143 #-}
+happyOut143 :: (HappyAbsSyn ) -> (HsQName)
+happyOut143 x = unsafeCoerce# x
+{-# INLINE happyOut143 #-}
+happyIn144 :: (HsName) -> (HappyAbsSyn )
+happyIn144 x = unsafeCoerce# x
+{-# INLINE happyIn144 #-}
+happyOut144 :: (HappyAbsSyn ) -> (HsName)
+happyOut144 x = unsafeCoerce# x
+{-# INLINE happyOut144 #-}
+happyIn145 :: (HsQName) -> (HappyAbsSyn )
+happyIn145 x = unsafeCoerce# x
+{-# INLINE happyIn145 #-}
+happyOut145 :: (HappyAbsSyn ) -> (HsQName)
+happyOut145 x = unsafeCoerce# x
+{-# INLINE happyOut145 #-}
+happyIn146 :: (HsQName) -> (HappyAbsSyn )
+happyIn146 x = unsafeCoerce# x
+{-# INLINE happyIn146 #-}
+happyOut146 :: (HappyAbsSyn ) -> (HsQName)
+happyOut146 x = unsafeCoerce# x
+{-# INLINE happyOut146 #-}
+happyIn147 :: (HsName) -> (HappyAbsSyn )
+happyIn147 x = unsafeCoerce# x
+{-# INLINE happyIn147 #-}
+happyOut147 :: (HappyAbsSyn ) -> (HsName)
+happyOut147 x = unsafeCoerce# x
+{-# INLINE happyOut147 #-}
+happyIn148 :: (HsName) -> (HappyAbsSyn )
+happyIn148 x = unsafeCoerce# x
+{-# INLINE happyIn148 #-}
+happyOut148 :: (HappyAbsSyn ) -> (HsName)
+happyOut148 x = unsafeCoerce# x
+{-# INLINE happyOut148 #-}
+happyIn149 :: (HsQName) -> (HappyAbsSyn )
+happyIn149 x = unsafeCoerce# x
+{-# INLINE happyIn149 #-}
+happyOut149 :: (HappyAbsSyn ) -> (HsQName)
+happyOut149 x = unsafeCoerce# x
+{-# INLINE happyOut149 #-}
+happyIn150 :: (HsLiteral) -> (HappyAbsSyn )
+happyIn150 x = unsafeCoerce# x
+{-# INLINE happyIn150 #-}
+happyOut150 :: (HappyAbsSyn ) -> (HsLiteral)
+happyOut150 x = unsafeCoerce# x
+{-# INLINE happyOut150 #-}
+happyIn151 :: (SrcLoc) -> (HappyAbsSyn )
+happyIn151 x = unsafeCoerce# x
+{-# INLINE happyIn151 #-}
+happyOut151 :: (HappyAbsSyn ) -> (SrcLoc)
+happyOut151 x = unsafeCoerce# x
+{-# INLINE happyOut151 #-}
+happyIn152 :: (()) -> (HappyAbsSyn )
+happyIn152 x = unsafeCoerce# x
+{-# INLINE happyIn152 #-}
+happyOut152 :: (HappyAbsSyn ) -> (())
+happyOut152 x = unsafeCoerce# x
+{-# INLINE happyOut152 #-}
+happyIn153 :: (()) -> (HappyAbsSyn )
+happyIn153 x = unsafeCoerce# x
+{-# INLINE happyIn153 #-}
+happyOut153 :: (HappyAbsSyn ) -> (())
+happyOut153 x = unsafeCoerce# x
+{-# INLINE happyOut153 #-}
+happyIn154 :: (Module) -> (HappyAbsSyn )
+happyIn154 x = unsafeCoerce# x
+{-# INLINE happyIn154 #-}
+happyOut154 :: (HappyAbsSyn ) -> (Module)
+happyOut154 x = unsafeCoerce# x
+{-# INLINE happyOut154 #-}
+happyIn155 :: (HsName) -> (HappyAbsSyn )
+happyIn155 x = unsafeCoerce# x
+{-# INLINE happyIn155 #-}
+happyOut155 :: (HappyAbsSyn ) -> (HsName)
+happyOut155 x = unsafeCoerce# x
+{-# INLINE happyOut155 #-}
+happyIn156 :: (HsName) -> (HappyAbsSyn )
+happyIn156 x = unsafeCoerce# x
+{-# INLINE happyIn156 #-}
+happyOut156 :: (HappyAbsSyn ) -> (HsName)
+happyOut156 x = unsafeCoerce# x
+{-# INLINE happyOut156 #-}
+happyIn157 :: (HsQName) -> (HappyAbsSyn )
+happyIn157 x = unsafeCoerce# x
+{-# INLINE happyIn157 #-}
+happyOut157 :: (HappyAbsSyn ) -> (HsQName)
+happyOut157 x = unsafeCoerce# x
+{-# INLINE happyOut157 #-}
+happyIn158 :: (HsQName) -> (HappyAbsSyn )
+happyIn158 x = unsafeCoerce# x
+{-# INLINE happyIn158 #-}
+happyOut158 :: (HappyAbsSyn ) -> (HsQName)
+happyOut158 x = unsafeCoerce# x
+{-# INLINE happyOut158 #-}
+happyIn159 :: (HsName) -> (HappyAbsSyn )
+happyIn159 x = unsafeCoerce# x
+{-# INLINE happyIn159 #-}
+happyOut159 :: (HappyAbsSyn ) -> (HsName)
+happyOut159 x = unsafeCoerce# x
+{-# INLINE happyOut159 #-}
+happyInTok :: Token -> (HappyAbsSyn )
+happyInTok x = unsafeCoerce# x
+{-# INLINE happyInTok #-}
+happyOutTok :: (HappyAbsSyn ) -> Token
+happyOutTok x = unsafeCoerce# x
+{-# INLINE happyOutTok #-}
+
+happyActOffsets :: HappyAddr
+happyActOffsets = HappyA# 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+
+happyGotoOffsets :: HappyAddr
+happyGotoOffsets = HappyA# 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+
+happyDefActions :: HappyAddr
+happyDefActions = HappyA# 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+
+happyCheck :: HappyAddr
+happyCheck = HappyA# 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+
+happyTable :: HappyAddr
+happyTable = HappyA# 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+
+happyReduceArr = array (1, 358) [
+	(1 , happyReduce_1),
+	(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)
+	]
+
+happy_n_terms = 75 :: Int
+happy_n_nonterms = 156 :: Int
+
+happyReduce_1 = happyReduce 6# 0# happyReduction_1
+happyReduction_1 (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 happyOut154 happy_x_3 of { happy_var_3 -> 
+	case happyOut9 happy_x_4 of { happy_var_4 -> 
+	case happyOut5 happy_x_6 of { happy_var_6 -> 
+	happyIn4
+		 (HsModule happy_var_1 happy_var_3 happy_var_4 (fst happy_var_6) (snd happy_var_6)
+	) `HappyStk` happyRest}}}}
+
+happyReduce_2 = happySpecReduce_2  0# happyReduction_2
+happyReduction_2 happy_x_2
+	happy_x_1
+	 =  case happyOut151 happy_x_1 of { happy_var_1 -> 
+	case happyOut5 happy_x_2 of { happy_var_2 -> 
+	happyIn4
+		 (HsModule happy_var_1 main_mod (Just [HsEVar (UnQual main_name)])
+							(fst happy_var_2) (snd happy_var_2)
+	)}}
+
+happyReduce_3 = happySpecReduce_3  1# happyReduction_3
+happyReduction_3 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut6 happy_x_2 of { happy_var_2 -> 
+	happyIn5
+		 (happy_var_2
+	)}
+
+happyReduce_4 = happySpecReduce_3  1# happyReduction_4
+happyReduction_4 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut6 happy_x_2 of { happy_var_2 -> 
+	happyIn5
+		 (happy_var_2
+	)}
+
+happyReduce_5 = happyReduce 4# 2# happyReduction_5
+happyReduction_5 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut14 happy_x_2 of { happy_var_2 -> 
+	case happyOut29 happy_x_4 of { happy_var_4 -> 
+	happyIn6
+		 ((reverse happy_var_2, happy_var_4)
+	) `HappyStk` happyRest}}
+
+happyReduce_6 = happySpecReduce_2  2# happyReduction_6
+happyReduction_6 happy_x_2
+	happy_x_1
+	 =  case happyOut29 happy_x_2 of { happy_var_2 -> 
+	happyIn6
+		 (([], happy_var_2)
+	)}
+
+happyReduce_7 = happySpecReduce_3  2# happyReduction_7
+happyReduction_7 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut14 happy_x_2 of { happy_var_2 -> 
+	happyIn6
+		 ((reverse happy_var_2, [])
+	)}
+
+happyReduce_8 = happySpecReduce_1  2# happyReduction_8
+happyReduction_8 happy_x_1
+	 =  happyIn6
+		 (([], [])
+	)
+
+happyReduce_9 = happySpecReduce_2  3# happyReduction_9
+happyReduction_9 happy_x_2
+	happy_x_1
+	 =  happyIn7
+		 (()
+	)
+
+happyReduce_10 = happySpecReduce_1  4# happyReduction_10
+happyReduction_10 happy_x_1
+	 =  happyIn8
+		 (()
+	)
+
+happyReduce_11 = happySpecReduce_0  4# happyReduction_11
+happyReduction_11  =  happyIn8
+		 (()
+	)
+
+happyReduce_12 = happySpecReduce_1  5# happyReduction_12
+happyReduction_12 happy_x_1
+	 =  case happyOut10 happy_x_1 of { happy_var_1 -> 
+	happyIn9
+		 (Just happy_var_1
+	)}
+
+happyReduce_13 = happySpecReduce_0  5# happyReduction_13
+happyReduction_13  =  happyIn9
+		 (Nothing
+	)
+
+happyReduce_14 = happyReduce 4# 6# happyReduction_14
+happyReduction_14 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut12 happy_x_2 of { happy_var_2 -> 
+	happyIn10
+		 (reverse happy_var_2
+	) `HappyStk` happyRest}
+
+happyReduce_15 = happySpecReduce_3  6# happyReduction_15
+happyReduction_15 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  happyIn10
+		 ([]
+	)
+
+happyReduce_16 = happySpecReduce_1  7# happyReduction_16
+happyReduction_16 happy_x_1
+	 =  happyIn11
+		 (()
+	)
+
+happyReduce_17 = happySpecReduce_0  7# happyReduction_17
+happyReduction_17  =  happyIn11
+		 (()
+	)
+
+happyReduce_18 = happySpecReduce_3  8# happyReduction_18
+happyReduction_18 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut12 happy_x_1 of { happy_var_1 -> 
+	case happyOut13 happy_x_3 of { happy_var_3 -> 
+	happyIn12
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_19 = happySpecReduce_1  8# happyReduction_19
+happyReduction_19 happy_x_1
+	 =  case happyOut13 happy_x_1 of { happy_var_1 -> 
+	happyIn12
+		 ([happy_var_1]
+	)}
+
+happyReduce_20 = happySpecReduce_1  9# happyReduction_20
+happyReduction_20 happy_x_1
+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> 
+	happyIn13
+		 (HsEVar happy_var_1
+	)}
+
+happyReduce_21 = happySpecReduce_1  9# happyReduction_21
+happyReduction_21 happy_x_1
+	 =  case happyOut157 happy_x_1 of { happy_var_1 -> 
+	happyIn13
+		 (HsEAbs happy_var_1
+	)}
+
+happyReduce_22 = happyReduce 4# 9# happyReduction_22
+happyReduction_22 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut157 happy_x_1 of { happy_var_1 -> 
+	happyIn13
+		 (HsEThingAll happy_var_1
+	) `HappyStk` happyRest}
+
+happyReduce_23 = happySpecReduce_3  9# happyReduction_23
+happyReduction_23 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut157 happy_x_1 of { happy_var_1 -> 
+	happyIn13
+		 (HsEThingWith happy_var_1 []
+	)}
+
+happyReduce_24 = happyReduce 4# 9# happyReduction_24
+happyReduction_24 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut157 happy_x_1 of { happy_var_1 -> 
+	case happyOut23 happy_x_3 of { happy_var_3 -> 
+	happyIn13
+		 (HsEThingWith happy_var_1 (reverse happy_var_3)
+	) `HappyStk` happyRest}}
+
+happyReduce_25 = happySpecReduce_2  9# happyReduction_25
+happyReduction_25 happy_x_2
+	happy_x_1
+	 =  case happyOut154 happy_x_2 of { happy_var_2 -> 
+	happyIn13
+		 (HsEModuleContents happy_var_2
+	)}
+
+happyReduce_26 = happySpecReduce_3  10# happyReduction_26
+happyReduction_26 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut14 happy_x_1 of { happy_var_1 -> 
+	case happyOut15 happy_x_3 of { happy_var_3 -> 
+	happyIn14
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_27 = happySpecReduce_1  10# happyReduction_27
+happyReduction_27 happy_x_1
+	 =  case happyOut15 happy_x_1 of { happy_var_1 -> 
+	happyIn14
+		 ([happy_var_1]
+	)}
+
+happyReduce_28 = happyReduce 6# 11# happyReduction_28
+happyReduction_28 (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 happyOut16 happy_x_3 of { happy_var_3 -> 
+	case happyOut154 happy_x_4 of { happy_var_4 -> 
+	case happyOut17 happy_x_5 of { happy_var_5 -> 
+	case happyOut18 happy_x_6 of { happy_var_6 -> 
+	happyIn15
+		 (HsImportDecl happy_var_1 happy_var_4 happy_var_3 happy_var_5 happy_var_6
+	) `HappyStk` happyRest}}}}}
+
+happyReduce_29 = happySpecReduce_1  12# happyReduction_29
+happyReduction_29 happy_x_1
+	 =  happyIn16
+		 (True
+	)
+
+happyReduce_30 = happySpecReduce_0  12# happyReduction_30
+happyReduction_30  =  happyIn16
+		 (False
+	)
+
+happyReduce_31 = happySpecReduce_2  13# happyReduction_31
+happyReduction_31 happy_x_2
+	happy_x_1
+	 =  case happyOut154 happy_x_2 of { happy_var_2 -> 
+	happyIn17
+		 (Just happy_var_2
+	)}
+
+happyReduce_32 = happySpecReduce_0  13# happyReduction_32
+happyReduction_32  =  happyIn17
+		 (Nothing
+	)
+
+happyReduce_33 = happySpecReduce_1  14# happyReduction_33
+happyReduction_33 happy_x_1
+	 =  case happyOut19 happy_x_1 of { happy_var_1 -> 
+	happyIn18
+		 (Just happy_var_1
+	)}
+
+happyReduce_34 = happySpecReduce_0  14# happyReduction_34
+happyReduction_34  =  happyIn18
+		 (Nothing
+	)
+
+happyReduce_35 = happyReduce 5# 15# happyReduction_35
+happyReduction_35 (happy_x_5 `HappyStk`
+	happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut20 happy_x_1 of { happy_var_1 -> 
+	case happyOut21 happy_x_3 of { happy_var_3 -> 
+	happyIn19
+		 ((happy_var_1, reverse happy_var_3)
+	) `HappyStk` happyRest}}
+
+happyReduce_36 = happyReduce 4# 15# happyReduction_36
+happyReduction_36 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut20 happy_x_1 of { happy_var_1 -> 
+	happyIn19
+		 ((happy_var_1, [])
+	) `HappyStk` happyRest}
+
+happyReduce_37 = happySpecReduce_1  16# happyReduction_37
+happyReduction_37 happy_x_1
+	 =  happyIn20
+		 (True
+	)
+
+happyReduce_38 = happySpecReduce_0  16# happyReduction_38
+happyReduction_38  =  happyIn20
+		 (False
+	)
+
+happyReduce_39 = happySpecReduce_3  17# happyReduction_39
+happyReduction_39 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut21 happy_x_1 of { happy_var_1 -> 
+	case happyOut22 happy_x_3 of { happy_var_3 -> 
+	happyIn21
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_40 = happySpecReduce_1  17# happyReduction_40
+happyReduction_40 happy_x_1
+	 =  case happyOut22 happy_x_1 of { happy_var_1 -> 
+	happyIn21
+		 ([happy_var_1]
+	)}
+
+happyReduce_41 = happySpecReduce_1  18# happyReduction_41
+happyReduction_41 happy_x_1
+	 =  case happyOut126 happy_x_1 of { happy_var_1 -> 
+	happyIn22
+		 (HsIVar happy_var_1
+	)}
+
+happyReduce_42 = happySpecReduce_1  18# happyReduction_42
+happyReduction_42 happy_x_1
+	 =  case happyOut155 happy_x_1 of { happy_var_1 -> 
+	happyIn22
+		 (HsIAbs happy_var_1
+	)}
+
+happyReduce_43 = happyReduce 4# 18# happyReduction_43
+happyReduction_43 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut155 happy_x_1 of { happy_var_1 -> 
+	happyIn22
+		 (HsIThingAll happy_var_1
+	) `HappyStk` happyRest}
+
+happyReduce_44 = happySpecReduce_3  18# happyReduction_44
+happyReduction_44 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut155 happy_x_1 of { happy_var_1 -> 
+	happyIn22
+		 (HsIThingWith happy_var_1 []
+	)}
+
+happyReduce_45 = happyReduce 4# 18# happyReduction_45
+happyReduction_45 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut155 happy_x_1 of { happy_var_1 -> 
+	case happyOut23 happy_x_3 of { happy_var_3 -> 
+	happyIn22
+		 (HsIThingWith happy_var_1 (reverse happy_var_3)
+	) `HappyStk` happyRest}}
+
+happyReduce_46 = happySpecReduce_3  19# happyReduction_46
+happyReduction_46 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut23 happy_x_1 of { happy_var_1 -> 
+	case happyOut24 happy_x_3 of { happy_var_3 -> 
+	happyIn23
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_47 = happySpecReduce_1  19# happyReduction_47
+happyReduction_47 happy_x_1
+	 =  case happyOut24 happy_x_1 of { happy_var_1 -> 
+	happyIn23
+		 ([happy_var_1]
+	)}
+
+happyReduce_48 = happySpecReduce_1  20# happyReduction_48
+happyReduction_48 happy_x_1
+	 =  case happyOut126 happy_x_1 of { happy_var_1 -> 
+	happyIn24
+		 (HsVarName happy_var_1
+	)}
+
+happyReduce_49 = happySpecReduce_1  20# happyReduction_49
+happyReduction_49 happy_x_1
+	 =  case happyOut128 happy_x_1 of { happy_var_1 -> 
+	happyIn24
+		 (HsConName happy_var_1
+	)}
+
+happyReduce_50 = happyReduce 4# 21# happyReduction_50
+happyReduction_50 (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 happyOut27 happy_x_2 of { happy_var_2 -> 
+	case happyOut26 happy_x_3 of { happy_var_3 -> 
+	case happyOut28 happy_x_4 of { happy_var_4 -> 
+	happyIn25
+		 (HsInfixDecl happy_var_1 happy_var_2 happy_var_3 (reverse happy_var_4)
+	) `HappyStk` happyRest}}}}
+
+happyReduce_51 = happySpecReduce_0  22# happyReduction_51
+happyReduction_51  =  happyIn26
+		 (9
+	)
+
+happyReduce_52 = happyMonadReduce 1# 22# happyReduction_52
+happyReduction_52 (happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOutTok happy_x_1 of { (IntTok happy_var_1) -> 
+	( checkPrec happy_var_1)}
+	) (\r -> happyReturn (happyIn26 r))
+
+happyReduce_53 = happySpecReduce_1  23# happyReduction_53
+happyReduction_53 happy_x_1
+	 =  happyIn27
+		 (HsAssocNone
+	)
+
+happyReduce_54 = happySpecReduce_1  23# happyReduction_54
+happyReduction_54 happy_x_1
+	 =  happyIn27
+		 (HsAssocLeft
+	)
+
+happyReduce_55 = happySpecReduce_1  23# happyReduction_55
+happyReduction_55 happy_x_1
+	 =  happyIn27
+		 (HsAssocRight
+	)
+
+happyReduce_56 = happySpecReduce_3  24# happyReduction_56
+happyReduction_56 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut28 happy_x_1 of { happy_var_1 -> 
+	case happyOut135 happy_x_3 of { happy_var_3 -> 
+	happyIn28
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_57 = happySpecReduce_1  24# happyReduction_57
+happyReduction_57 happy_x_1
+	 =  case happyOut135 happy_x_1 of { happy_var_1 -> 
+	happyIn28
+		 ([happy_var_1]
+	)}
+
+happyReduce_58 = happyMonadReduce 2# 25# happyReduction_58
+happyReduction_58 (happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut30 happy_x_1 of { happy_var_1 -> 
+	( checkRevDecls happy_var_1)}
+	) (\r -> happyReturn (happyIn29 r))
+
+happyReduce_59 = happySpecReduce_3  26# happyReduction_59
+happyReduction_59 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut30 happy_x_1 of { happy_var_1 -> 
+	case happyOut31 happy_x_3 of { happy_var_3 -> 
+	happyIn30
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_60 = happySpecReduce_1  26# happyReduction_60
+happyReduction_60 happy_x_1
+	 =  case happyOut31 happy_x_1 of { happy_var_1 -> 
+	happyIn30
+		 ([happy_var_1]
+	)}
+
+happyReduce_61 = happyReduce 5# 27# happyReduction_61
+happyReduction_61 (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 happyOut50 happy_x_3 of { happy_var_3 -> 
+	case happyOut43 happy_x_5 of { happy_var_5 -> 
+	happyIn31
+		 (HsTypeDecl happy_var_1 (fst happy_var_3) (snd happy_var_3) happy_var_5
+	) `HappyStk` happyRest}}}
+
+happyReduce_62 = happyMonadReduce 6# 27# happyReduction_62
+happyReduction_62 (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 happyOut151 happy_x_1 of { happy_var_1 -> 
+	case happyOut47 happy_x_3 of { happy_var_3 -> 
+	case happyOut52 happy_x_5 of { happy_var_5 -> 
+	case happyOut61 happy_x_6 of { happy_var_6 -> 
+	( do { (cs,c,t) <- checkDataHeader happy_var_3;
+				return (HsDataDecl happy_var_1 cs c t (reverse happy_var_5) happy_var_6) })}}}}
+	) (\r -> happyReturn (happyIn31 r))
+
+happyReduce_63 = happyMonadReduce 6# 27# happyReduction_63
+happyReduction_63 (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 happyOut151 happy_x_1 of { happy_var_1 -> 
+	case happyOut47 happy_x_3 of { happy_var_3 -> 
+	case happyOut53 happy_x_5 of { happy_var_5 -> 
+	case happyOut61 happy_x_6 of { happy_var_6 -> 
+	( do { (cs,c,t) <- checkDataHeader happy_var_3;
+				return (HsNewTypeDecl happy_var_1 cs c t happy_var_5 happy_var_6) })}}}}
+	) (\r -> happyReturn (happyIn31 r))
+
+happyReduce_64 = happyMonadReduce 4# 27# happyReduction_64
+happyReduction_64 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut151 happy_x_1 of { happy_var_1 -> 
+	case happyOut47 happy_x_3 of { happy_var_3 -> 
+	case happyOut63 happy_x_4 of { happy_var_4 -> 
+	( do { (cs,c,vs) <- checkClassHeader happy_var_3;
+				return (HsClassDecl happy_var_1 cs c vs happy_var_4) })}}}
+	) (\r -> happyReturn (happyIn31 r))
+
+happyReduce_65 = happyMonadReduce 4# 27# happyReduction_65
+happyReduction_65 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut151 happy_x_1 of { happy_var_1 -> 
+	case happyOut47 happy_x_3 of { happy_var_3 -> 
+	case happyOut64 happy_x_4 of { happy_var_4 -> 
+	( do { (cs,c,ts) <- checkInstHeader happy_var_3;
+				return (HsInstDecl happy_var_1 cs c ts happy_var_4) })}}}
+	) (\r -> happyReturn (happyIn31 r))
+
+happyReduce_66 = happyReduce 5# 27# happyReduction_66
+happyReduction_66 (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 happyOut32 happy_x_4 of { happy_var_4 -> 
+	happyIn31
+		 (HsDefaultDecl happy_var_1 happy_var_4
+	) `HappyStk` happyRest}}
+
+happyReduce_67 = happySpecReduce_1  27# happyReduction_67
+happyReduction_67 happy_x_1
+	 =  case happyOut39 happy_x_1 of { happy_var_1 -> 
+	happyIn31
+		 (happy_var_1
+	)}
+
+happyReduce_68 = happySpecReduce_1  27# happyReduction_68
+happyReduction_68 happy_x_1
+	 =  case happyOut35 happy_x_1 of { happy_var_1 -> 
+	happyIn31
+		 (happy_var_1
+	)}
+
+happyReduce_69 = happySpecReduce_1  28# happyReduction_69
+happyReduction_69 happy_x_1
+	 =  case happyOut49 happy_x_1 of { happy_var_1 -> 
+	happyIn32
+		 (reverse happy_var_1
+	)}
+
+happyReduce_70 = happySpecReduce_1  28# happyReduction_70
+happyReduction_70 happy_x_1
+	 =  case happyOut43 happy_x_1 of { happy_var_1 -> 
+	happyIn32
+		 ([happy_var_1]
+	)}
+
+happyReduce_71 = happySpecReduce_0  28# happyReduction_71
+happyReduction_71  =  happyIn32
+		 ([]
+	)
+
+happyReduce_72 = happyMonadReduce 3# 29# happyReduction_72
+happyReduction_72 (happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut34 happy_x_2 of { happy_var_2 -> 
+	( checkRevDecls happy_var_2)}
+	) (\r -> happyReturn (happyIn33 r))
+
+happyReduce_73 = happySpecReduce_1  29# happyReduction_73
+happyReduction_73 happy_x_1
+	 =  happyIn33
+		 ([]
+	)
+
+happyReduce_74 = happySpecReduce_3  30# happyReduction_74
+happyReduction_74 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut34 happy_x_1 of { happy_var_1 -> 
+	case happyOut35 happy_x_3 of { happy_var_3 -> 
+	happyIn34
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_75 = happySpecReduce_1  30# happyReduction_75
+happyReduction_75 happy_x_1
+	 =  case happyOut35 happy_x_1 of { happy_var_1 -> 
+	happyIn34
+		 ([happy_var_1]
+	)}
+
+happyReduce_76 = happySpecReduce_1  31# happyReduction_76
+happyReduction_76 happy_x_1
+	 =  case happyOut37 happy_x_1 of { happy_var_1 -> 
+	happyIn35
+		 (happy_var_1
+	)}
+
+happyReduce_77 = happySpecReduce_1  31# happyReduction_77
+happyReduction_77 happy_x_1
+	 =  case happyOut25 happy_x_1 of { happy_var_1 -> 
+	happyIn35
+		 (happy_var_1
+	)}
+
+happyReduce_78 = happySpecReduce_1  31# happyReduction_78
+happyReduction_78 happy_x_1
+	 =  case happyOut67 happy_x_1 of { happy_var_1 -> 
+	happyIn35
+		 (happy_var_1
+	)}
+
+happyReduce_79 = happySpecReduce_3  32# happyReduction_79
+happyReduction_79 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut33 happy_x_2 of { happy_var_2 -> 
+	happyIn36
+		 (happy_var_2
+	)}
+
+happyReduce_80 = happySpecReduce_3  32# happyReduction_80
+happyReduction_80 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut33 happy_x_2 of { happy_var_2 -> 
+	happyIn36
+		 (happy_var_2
+	)}
+
+happyReduce_81 = happyReduce 4# 33# happyReduction_81
+happyReduction_81 (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 happyOut38 happy_x_2 of { happy_var_2 -> 
+	case happyOut47 happy_x_4 of { happy_var_4 -> 
+	happyIn37
+		 (HsTypeSig happy_var_1 (reverse happy_var_2) happy_var_4
+	) `HappyStk` happyRest}}}
+
+happyReduce_82 = happySpecReduce_3  34# happyReduction_82
+happyReduction_82 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut38 happy_x_1 of { happy_var_1 -> 
+	case happyOut126 happy_x_3 of { happy_var_3 -> 
+	happyIn38
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_83 = happyMonadReduce 1# 34# happyReduction_83
+happyReduction_83 (happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut127 happy_x_1 of { happy_var_1 -> 
+	( do { n <- checkUnQual happy_var_1;
+						return [n] })}
+	) (\r -> happyReturn (happyIn38 r))
+
+happyReduce_84 = happyReduce 9# 35# happyReduction_84
+happyReduction_84 (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 happyOut151 happy_x_1 of { happy_var_1 -> 
+	case happyOutTok happy_x_4 of { (VarId happy_var_4) -> 
+	case happyOut40 happy_x_5 of { happy_var_5 -> 
+	case happyOut41 happy_x_6 of { happy_var_6 -> 
+	case happyOut42 happy_x_7 of { happy_var_7 -> 
+	case happyOut43 happy_x_9 of { happy_var_9 -> 
+	happyIn39
+		 (HsForeignImport happy_var_1 happy_var_4 happy_var_5 happy_var_6 happy_var_7 happy_var_9
+	) `HappyStk` happyRest}}}}}}
+
+happyReduce_85 = happyReduce 8# 35# happyReduction_85
+happyReduction_85 (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 happyOut151 happy_x_1 of { happy_var_1 -> 
+	case happyOutTok happy_x_4 of { (VarId happy_var_4) -> 
+	case happyOut41 happy_x_5 of { happy_var_5 -> 
+	case happyOut42 happy_x_6 of { happy_var_6 -> 
+	case happyOut43 happy_x_8 of { happy_var_8 -> 
+	happyIn39
+		 (HsForeignExport happy_var_1 happy_var_4 happy_var_5 happy_var_6 happy_var_8
+	) `HappyStk` happyRest}}}}}
+
+happyReduce_86 = happySpecReduce_1  36# happyReduction_86
+happyReduction_86 happy_x_1
+	 =  happyIn40
+		 (HsSafe
+	)
+
+happyReduce_87 = happySpecReduce_1  36# happyReduction_87
+happyReduction_87 happy_x_1
+	 =  happyIn40
+		 (HsUnsafe
+	)
+
+happyReduce_88 = happySpecReduce_0  36# happyReduction_88
+happyReduction_88  =  happyIn40
+		 (HsSafe
+	)
+
+happyReduce_89 = happySpecReduce_1  37# happyReduction_89
+happyReduction_89 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (StringTok happy_var_1) -> 
+	happyIn41
+		 (happy_var_1
+	)}
+
+happyReduce_90 = happySpecReduce_0  37# happyReduction_90
+happyReduction_90  =  happyIn41
+		 (""
+	)
+
+happyReduce_91 = happySpecReduce_1  38# happyReduction_91
+happyReduction_91 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (VarId happy_var_1) -> 
+	happyIn42
+		 (HsIdent happy_var_1
+	)}
+
+happyReduce_92 = happySpecReduce_3  38# happyReduction_92
+happyReduction_92 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut147 happy_x_2 of { happy_var_2 -> 
+	happyIn42
+		 (happy_var_2
+	)}
+
+happyReduce_93 = happySpecReduce_3  39# happyReduction_93
+happyReduction_93 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut44 happy_x_1 of { happy_var_1 -> 
+	case happyOut43 happy_x_3 of { happy_var_3 -> 
+	happyIn43
+		 (HsTyFun happy_var_1 happy_var_3
+	)}}
+
+happyReduce_94 = happySpecReduce_1  39# happyReduction_94
+happyReduction_94 happy_x_1
+	 =  case happyOut44 happy_x_1 of { happy_var_1 -> 
+	happyIn43
+		 (happy_var_1
+	)}
+
+happyReduce_95 = happySpecReduce_2  40# happyReduction_95
+happyReduction_95 happy_x_2
+	happy_x_1
+	 =  case happyOut44 happy_x_1 of { happy_var_1 -> 
+	case happyOut45 happy_x_2 of { happy_var_2 -> 
+	happyIn44
+		 (HsTyApp happy_var_1 happy_var_2
+	)}}
+
+happyReduce_96 = happySpecReduce_1  40# happyReduction_96
+happyReduction_96 happy_x_1
+	 =  case happyOut45 happy_x_1 of { happy_var_1 -> 
+	happyIn44
+		 (happy_var_1
+	)}
+
+happyReduce_97 = happySpecReduce_1  41# happyReduction_97
+happyReduction_97 happy_x_1
+	 =  case happyOut46 happy_x_1 of { happy_var_1 -> 
+	happyIn45
+		 (HsTyCon happy_var_1
+	)}
+
+happyReduce_98 = happySpecReduce_1  41# happyReduction_98
+happyReduction_98 happy_x_1
+	 =  case happyOut159 happy_x_1 of { happy_var_1 -> 
+	happyIn45
+		 (HsTyVar happy_var_1
+	)}
+
+happyReduce_99 = happySpecReduce_3  41# happyReduction_99
+happyReduction_99 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut49 happy_x_2 of { happy_var_2 -> 
+	happyIn45
+		 (HsTyTuple (reverse happy_var_2)
+	)}
+
+happyReduce_100 = happySpecReduce_3  41# happyReduction_100
+happyReduction_100 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut43 happy_x_2 of { happy_var_2 -> 
+	happyIn45
+		 (HsTyApp list_tycon happy_var_2
+	)}
+
+happyReduce_101 = happySpecReduce_3  41# happyReduction_101
+happyReduction_101 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut43 happy_x_2 of { happy_var_2 -> 
+	happyIn45
+		 (happy_var_2
+	)}
+
+happyReduce_102 = happySpecReduce_1  42# happyReduction_102
+happyReduction_102 happy_x_1
+	 =  case happyOut141 happy_x_1 of { happy_var_1 -> 
+	happyIn46
+		 (happy_var_1
+	)}
+
+happyReduce_103 = happySpecReduce_2  42# happyReduction_103
+happyReduction_103 happy_x_2
+	happy_x_1
+	 =  happyIn46
+		 (unit_tycon_name
+	)
+
+happyReduce_104 = happySpecReduce_3  42# happyReduction_104
+happyReduction_104 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  happyIn46
+		 (fun_tycon_name
+	)
+
+happyReduce_105 = happySpecReduce_2  42# happyReduction_105
+happyReduction_105 happy_x_2
+	happy_x_1
+	 =  happyIn46
+		 (list_tycon_name
+	)
+
+happyReduce_106 = happySpecReduce_3  42# happyReduction_106
+happyReduction_106 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut84 happy_x_2 of { happy_var_2 -> 
+	happyIn46
+		 (tuple_tycon_name happy_var_2
+	)}
+
+happyReduce_107 = happySpecReduce_3  43# happyReduction_107
+happyReduction_107 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut48 happy_x_1 of { happy_var_1 -> 
+	case happyOut43 happy_x_3 of { happy_var_3 -> 
+	happyIn47
+		 (HsQualType happy_var_1 happy_var_3
+	)}}
+
+happyReduce_108 = happySpecReduce_1  43# happyReduction_108
+happyReduction_108 happy_x_1
+	 =  case happyOut43 happy_x_1 of { happy_var_1 -> 
+	happyIn47
+		 (HsQualType [] happy_var_1
+	)}
+
+happyReduce_109 = happyMonadReduce 1# 44# happyReduction_109
+happyReduction_109 (happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut44 happy_x_1 of { happy_var_1 -> 
+	( checkContext happy_var_1)}
+	) (\r -> happyReturn (happyIn48 r))
+
+happyReduce_110 = happySpecReduce_3  45# happyReduction_110
+happyReduction_110 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut49 happy_x_1 of { happy_var_1 -> 
+	case happyOut43 happy_x_3 of { happy_var_3 -> 
+	happyIn49
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_111 = happySpecReduce_3  45# happyReduction_111
+happyReduction_111 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut43 happy_x_1 of { happy_var_1 -> 
+	case happyOut43 happy_x_3 of { happy_var_3 -> 
+	happyIn49
+		 ([happy_var_3, happy_var_1]
+	)}}
+
+happyReduce_112 = happySpecReduce_2  46# happyReduction_112
+happyReduction_112 happy_x_2
+	happy_x_1
+	 =  case happyOut156 happy_x_1 of { happy_var_1 -> 
+	case happyOut51 happy_x_2 of { happy_var_2 -> 
+	happyIn50
+		 ((happy_var_1,reverse happy_var_2)
+	)}}
+
+happyReduce_113 = happySpecReduce_2  47# happyReduction_113
+happyReduction_113 happy_x_2
+	happy_x_1
+	 =  case happyOut51 happy_x_1 of { happy_var_1 -> 
+	case happyOut159 happy_x_2 of { happy_var_2 -> 
+	happyIn51
+		 (happy_var_2 : happy_var_1
+	)}}
+
+happyReduce_114 = happySpecReduce_0  47# happyReduction_114
+happyReduction_114  =  happyIn51
+		 ([]
+	)
+
+happyReduce_115 = happySpecReduce_3  48# happyReduction_115
+happyReduction_115 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut52 happy_x_1 of { happy_var_1 -> 
+	case happyOut53 happy_x_3 of { happy_var_3 -> 
+	happyIn52
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_116 = happySpecReduce_1  48# happyReduction_116
+happyReduction_116 happy_x_1
+	 =  case happyOut53 happy_x_1 of { happy_var_1 -> 
+	happyIn52
+		 ([happy_var_1]
+	)}
+
+happyReduce_117 = happySpecReduce_2  49# happyReduction_117
+happyReduction_117 happy_x_2
+	happy_x_1
+	 =  case happyOut151 happy_x_1 of { happy_var_1 -> 
+	case happyOut54 happy_x_2 of { happy_var_2 -> 
+	happyIn53
+		 (HsConDecl happy_var_1 (fst happy_var_2) (snd happy_var_2)
+	)}}
+
+happyReduce_118 = happyReduce 4# 49# happyReduction_118
+happyReduction_118 (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 happyOut57 happy_x_2 of { happy_var_2 -> 
+	case happyOut133 happy_x_3 of { happy_var_3 -> 
+	case happyOut57 happy_x_4 of { happy_var_4 -> 
+	happyIn53
+		 (HsConDecl happy_var_1 happy_var_3 [happy_var_2,happy_var_4]
+	) `HappyStk` happyRest}}}}
+
+happyReduce_119 = happyReduce 4# 49# happyReduction_119
+happyReduction_119 (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 happyOut128 happy_x_2 of { happy_var_2 -> 
+	happyIn53
+		 (HsRecDecl happy_var_1 happy_var_2 []
+	) `HappyStk` happyRest}}
+
+happyReduce_120 = happyReduce 5# 49# happyReduction_120
+happyReduction_120 (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 happyOut128 happy_x_2 of { happy_var_2 -> 
+	case happyOut58 happy_x_4 of { happy_var_4 -> 
+	happyIn53
+		 (HsRecDecl happy_var_1 happy_var_2 (reverse happy_var_4)
+	) `HappyStk` happyRest}}}
+
+happyReduce_121 = happyMonadReduce 1# 50# happyReduction_121
+happyReduction_121 (happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut44 happy_x_1 of { happy_var_1 -> 
+	( do { (c,ts) <- splitTyConApp happy_var_1;
+						return (c,map HsUnBangedTy ts) })}
+	) (\r -> happyReturn (happyIn54 r))
+
+happyReduce_122 = happySpecReduce_1  50# happyReduction_122
+happyReduction_122 happy_x_1
+	 =  case happyOut55 happy_x_1 of { happy_var_1 -> 
+	happyIn54
+		 (happy_var_1
+	)}
+
+happyReduce_123 = happyMonadReduce 3# 51# happyReduction_123
+happyReduction_123 (happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut44 happy_x_1 of { happy_var_1 -> 
+	case happyOut45 happy_x_3 of { happy_var_3 -> 
+	( do { (c,ts) <- splitTyConApp happy_var_1;
+						return (c,map HsUnBangedTy ts++
+							[HsBangedTy happy_var_3]) })}}
+	) (\r -> happyReturn (happyIn55 r))
+
+happyReduce_124 = happySpecReduce_2  51# happyReduction_124
+happyReduction_124 happy_x_2
+	happy_x_1
+	 =  case happyOut55 happy_x_1 of { happy_var_1 -> 
+	case happyOut56 happy_x_2 of { happy_var_2 -> 
+	happyIn55
+		 ((fst happy_var_1, snd happy_var_1 ++ [happy_var_2] )
+	)}}
+
+happyReduce_125 = happySpecReduce_1  52# happyReduction_125
+happyReduction_125 happy_x_1
+	 =  case happyOut45 happy_x_1 of { happy_var_1 -> 
+	happyIn56
+		 (HsUnBangedTy happy_var_1
+	)}
+
+happyReduce_126 = happySpecReduce_2  52# happyReduction_126
+happyReduction_126 happy_x_2
+	happy_x_1
+	 =  case happyOut45 happy_x_2 of { happy_var_2 -> 
+	happyIn56
+		 (HsBangedTy   happy_var_2
+	)}
+
+happyReduce_127 = happySpecReduce_1  53# happyReduction_127
+happyReduction_127 happy_x_1
+	 =  case happyOut44 happy_x_1 of { happy_var_1 -> 
+	happyIn57
+		 (HsUnBangedTy happy_var_1
+	)}
+
+happyReduce_128 = happySpecReduce_2  53# happyReduction_128
+happyReduction_128 happy_x_2
+	happy_x_1
+	 =  case happyOut45 happy_x_2 of { happy_var_2 -> 
+	happyIn57
+		 (HsBangedTy   happy_var_2
+	)}
+
+happyReduce_129 = happySpecReduce_3  54# happyReduction_129
+happyReduction_129 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut58 happy_x_1 of { happy_var_1 -> 
+	case happyOut59 happy_x_3 of { happy_var_3 -> 
+	happyIn58
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_130 = happySpecReduce_1  54# happyReduction_130
+happyReduction_130 happy_x_1
+	 =  case happyOut59 happy_x_1 of { happy_var_1 -> 
+	happyIn58
+		 ([happy_var_1]
+	)}
+
+happyReduce_131 = happySpecReduce_3  55# happyReduction_131
+happyReduction_131 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut38 happy_x_1 of { happy_var_1 -> 
+	case happyOut60 happy_x_3 of { happy_var_3 -> 
+	happyIn59
+		 ((reverse happy_var_1, happy_var_3)
+	)}}
+
+happyReduce_132 = happySpecReduce_1  56# happyReduction_132
+happyReduction_132 happy_x_1
+	 =  case happyOut43 happy_x_1 of { happy_var_1 -> 
+	happyIn60
+		 (HsUnBangedTy happy_var_1
+	)}
+
+happyReduce_133 = happySpecReduce_2  56# happyReduction_133
+happyReduction_133 happy_x_2
+	happy_x_1
+	 =  case happyOut45 happy_x_2 of { happy_var_2 -> 
+	happyIn60
+		 (HsBangedTy   happy_var_2
+	)}
+
+happyReduce_134 = happySpecReduce_0  57# happyReduction_134
+happyReduction_134  =  happyIn61
+		 ([]
+	)
+
+happyReduce_135 = happySpecReduce_2  57# happyReduction_135
+happyReduction_135 happy_x_2
+	happy_x_1
+	 =  case happyOut158 happy_x_2 of { happy_var_2 -> 
+	happyIn61
+		 ([happy_var_2]
+	)}
+
+happyReduce_136 = happySpecReduce_3  57# happyReduction_136
+happyReduction_136 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  happyIn61
+		 ([]
+	)
+
+happyReduce_137 = happyReduce 4# 57# happyReduction_137
+happyReduction_137 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut62 happy_x_3 of { happy_var_3 -> 
+	happyIn61
+		 (reverse happy_var_3
+	) `HappyStk` happyRest}
+
+happyReduce_138 = happySpecReduce_3  58# happyReduction_138
+happyReduction_138 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut62 happy_x_1 of { happy_var_1 -> 
+	case happyOut158 happy_x_3 of { happy_var_3 -> 
+	happyIn62
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_139 = happySpecReduce_1  58# happyReduction_139
+happyReduction_139 happy_x_1
+	 =  case happyOut158 happy_x_1 of { happy_var_1 -> 
+	happyIn62
+		 ([happy_var_1]
+	)}
+
+happyReduce_140 = happyMonadReduce 2# 59# happyReduction_140
+happyReduction_140 (happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut36 happy_x_2 of { happy_var_2 -> 
+	( checkClassBody happy_var_2)}
+	) (\r -> happyReturn (happyIn63 r))
+
+happyReduce_141 = happySpecReduce_0  59# happyReduction_141
+happyReduction_141  =  happyIn63
+		 ([]
+	)
+
+happyReduce_142 = happyMonadReduce 4# 60# happyReduction_142
+happyReduction_142 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut65 happy_x_3 of { happy_var_3 -> 
+	( checkClassBody happy_var_3)}
+	) (\r -> happyReturn (happyIn64 r))
+
+happyReduce_143 = happyMonadReduce 4# 60# happyReduction_143
+happyReduction_143 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut65 happy_x_3 of { happy_var_3 -> 
+	( checkClassBody happy_var_3)}
+	) (\r -> happyReturn (happyIn64 r))
+
+happyReduce_144 = happySpecReduce_0  60# happyReduction_144
+happyReduction_144  =  happyIn64
+		 ([]
+	)
+
+happyReduce_145 = happyMonadReduce 3# 61# happyReduction_145
+happyReduction_145 (happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut66 happy_x_2 of { happy_var_2 -> 
+	( checkRevDecls happy_var_2)}
+	) (\r -> happyReturn (happyIn65 r))
+
+happyReduce_146 = happySpecReduce_1  61# happyReduction_146
+happyReduction_146 happy_x_1
+	 =  happyIn65
+		 ([]
+	)
+
+happyReduce_147 = happySpecReduce_3  62# happyReduction_147
+happyReduction_147 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut66 happy_x_1 of { happy_var_1 -> 
+	case happyOut67 happy_x_3 of { happy_var_3 -> 
+	happyIn66
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_148 = happySpecReduce_1  62# happyReduction_148
+happyReduction_148 happy_x_1
+	 =  case happyOut67 happy_x_1 of { happy_var_1 -> 
+	happyIn66
+		 ([happy_var_1]
+	)}
+
+happyReduce_149 = happyMonadReduce 4# 63# happyReduction_149
+happyReduction_149 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut151 happy_x_1 of { happy_var_1 -> 
+	case happyOut75 happy_x_2 of { happy_var_2 -> 
+	case happyOut69 happy_x_3 of { happy_var_3 -> 
+	case happyOut68 happy_x_4 of { happy_var_4 -> 
+	( checkValDef happy_var_1 happy_var_2 happy_var_3 happy_var_4)}}}}
+	) (\r -> happyReturn (happyIn67 r))
+
+happyReduce_150 = happySpecReduce_2  64# happyReduction_150
+happyReduction_150 happy_x_2
+	happy_x_1
+	 =  case happyOut36 happy_x_2 of { happy_var_2 -> 
+	happyIn68
+		 (happy_var_2
+	)}
+
+happyReduce_151 = happySpecReduce_0  64# happyReduction_151
+happyReduction_151  =  happyIn68
+		 ([]
+	)
+
+happyReduce_152 = happyMonadReduce 2# 65# happyReduction_152
+happyReduction_152 (happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut72 happy_x_2 of { happy_var_2 -> 
+	( do { e <- checkExpr happy_var_2;
+						return (HsUnGuardedRhs e) })}
+	) (\r -> happyReturn (happyIn69 r))
+
+happyReduce_153 = happySpecReduce_1  65# happyReduction_153
+happyReduction_153 happy_x_1
+	 =  case happyOut70 happy_x_1 of { happy_var_1 -> 
+	happyIn69
+		 (HsGuardedRhss  (reverse happy_var_1)
+	)}
+
+happyReduce_154 = happySpecReduce_2  66# happyReduction_154
+happyReduction_154 happy_x_2
+	happy_x_1
+	 =  case happyOut70 happy_x_1 of { happy_var_1 -> 
+	case happyOut71 happy_x_2 of { happy_var_2 -> 
+	happyIn70
+		 (happy_var_2 : happy_var_1
+	)}}
+
+happyReduce_155 = happySpecReduce_1  66# happyReduction_155
+happyReduction_155 happy_x_1
+	 =  case happyOut71 happy_x_1 of { happy_var_1 -> 
+	happyIn70
+		 ([happy_var_1]
+	)}
+
+happyReduce_156 = happyMonadReduce 5# 67# happyReduction_156
+happyReduction_156 (happy_x_5 `HappyStk`
+	happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut151 happy_x_1 of { happy_var_1 -> 
+	case happyOut73 happy_x_3 of { happy_var_3 -> 
+	case happyOut72 happy_x_5 of { happy_var_5 -> 
+	( do { g <- checkExpr happy_var_3;
+						e <- checkExpr happy_var_5;
+						return (HsGuardedRhs happy_var_1 g e) })}}}
+	) (\r -> happyReturn (happyIn71 r))
+
+happyReduce_157 = happyReduce 4# 68# happyReduction_157
+happyReduction_157 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut75 happy_x_1 of { happy_var_1 -> 
+	case happyOut151 happy_x_3 of { happy_var_3 -> 
+	case happyOut47 happy_x_4 of { happy_var_4 -> 
+	happyIn72
+		 (HsExpTypeSig happy_var_3 happy_var_1 happy_var_4
+	) `HappyStk` happyRest}}}
+
+happyReduce_158 = happySpecReduce_1  68# happyReduction_158
+happyReduction_158 happy_x_1
+	 =  case happyOut73 happy_x_1 of { happy_var_1 -> 
+	happyIn72
+		 (happy_var_1
+	)}
+
+happyReduce_159 = happySpecReduce_1  69# happyReduction_159
+happyReduction_159 happy_x_1
+	 =  case happyOut74 happy_x_1 of { happy_var_1 -> 
+	happyIn73
+		 (happy_var_1
+	)}
+
+happyReduce_160 = happySpecReduce_1  69# happyReduction_160
+happyReduction_160 happy_x_1
+	 =  case happyOut75 happy_x_1 of { happy_var_1 -> 
+	happyIn73
+		 (happy_var_1
+	)}
+
+happyReduce_161 = happySpecReduce_3  70# happyReduction_161
+happyReduction_161 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut75 happy_x_1 of { happy_var_1 -> 
+	case happyOut136 happy_x_2 of { happy_var_2 -> 
+	case happyOut76 happy_x_3 of { happy_var_3 -> 
+	happyIn74
+		 (HsInfixApp happy_var_1 happy_var_2 happy_var_3
+	)}}}
+
+happyReduce_162 = happySpecReduce_1  70# happyReduction_162
+happyReduction_162 happy_x_1
+	 =  case happyOut76 happy_x_1 of { happy_var_1 -> 
+	happyIn74
+		 (happy_var_1
+	)}
+
+happyReduce_163 = happySpecReduce_3  71# happyReduction_163
+happyReduction_163 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut75 happy_x_1 of { happy_var_1 -> 
+	case happyOut136 happy_x_2 of { happy_var_2 -> 
+	case happyOut77 happy_x_3 of { happy_var_3 -> 
+	happyIn75
+		 (HsInfixApp happy_var_1 happy_var_2 happy_var_3
+	)}}}
+
+happyReduce_164 = happySpecReduce_1  71# happyReduction_164
+happyReduction_164 happy_x_1
+	 =  case happyOut77 happy_x_1 of { happy_var_1 -> 
+	happyIn75
+		 (happy_var_1
+	)}
+
+happyReduce_165 = happyReduce 5# 72# happyReduction_165
+happyReduction_165 (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_2 of { happy_var_2 -> 
+	case happyOut79 happy_x_3 of { happy_var_3 -> 
+	case happyOut72 happy_x_5 of { happy_var_5 -> 
+	happyIn76
+		 (HsLambda happy_var_2 (reverse happy_var_3) happy_var_5
+	) `HappyStk` happyRest}}}
+
+happyReduce_166 = happyReduce 4# 72# happyReduction_166
+happyReduction_166 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut36 happy_x_2 of { happy_var_2 -> 
+	case happyOut72 happy_x_4 of { happy_var_4 -> 
+	happyIn76
+		 (HsLet happy_var_2 happy_var_4
+	) `HappyStk` happyRest}}
+
+happyReduce_167 = happyReduce 6# 72# happyReduction_167
+happyReduction_167 (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 happyOut72 happy_x_2 of { happy_var_2 -> 
+	case happyOut72 happy_x_4 of { happy_var_4 -> 
+	case happyOut72 happy_x_6 of { happy_var_6 -> 
+	happyIn76
+		 (HsIf happy_var_2 happy_var_4 happy_var_6
+	) `HappyStk` happyRest}}}
+
+happyReduce_168 = happyReduce 4# 72# happyReduction_168
+happyReduction_168 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut80 happy_x_2 of { happy_var_2 -> 
+	case happyOut102 happy_x_4 of { happy_var_4 -> 
+	happyIn76
+		 (ArrSyn.translate happy_var_2 happy_var_4
+	) `HappyStk` happyRest}}
+
+happyReduce_169 = happyReduce 4# 73# happyReduction_169
+happyReduction_169 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut72 happy_x_2 of { happy_var_2 -> 
+	case happyOut90 happy_x_4 of { happy_var_4 -> 
+	happyIn77
+		 (HsCase happy_var_2 happy_var_4
+	) `HappyStk` happyRest}}
+
+happyReduce_170 = happySpecReduce_2  73# happyReduction_170
+happyReduction_170 happy_x_2
+	happy_x_1
+	 =  case happyOut78 happy_x_2 of { happy_var_2 -> 
+	happyIn77
+		 (HsNegApp happy_var_2
+	)}
+
+happyReduce_171 = happySpecReduce_2  73# happyReduction_171
+happyReduction_171 happy_x_2
+	happy_x_1
+	 =  case happyOut98 happy_x_2 of { happy_var_2 -> 
+	happyIn77
+		 (HsDo happy_var_2
+	)}
+
+happyReduce_172 = happySpecReduce_1  73# happyReduction_172
+happyReduction_172 happy_x_1
+	 =  case happyOut78 happy_x_1 of { happy_var_1 -> 
+	happyIn77
+		 (happy_var_1
+	)}
+
+happyReduce_173 = happySpecReduce_2  74# happyReduction_173
+happyReduction_173 happy_x_2
+	happy_x_1
+	 =  case happyOut78 happy_x_1 of { happy_var_1 -> 
+	case happyOut81 happy_x_2 of { happy_var_2 -> 
+	happyIn78
+		 (HsApp happy_var_1 happy_var_2
+	)}}
+
+happyReduce_174 = happySpecReduce_1  74# happyReduction_174
+happyReduction_174 happy_x_1
+	 =  case happyOut81 happy_x_1 of { happy_var_1 -> 
+	happyIn78
+		 (happy_var_1
+	)}
+
+happyReduce_175 = happySpecReduce_2  75# happyReduction_175
+happyReduction_175 happy_x_2
+	happy_x_1
+	 =  case happyOut79 happy_x_1 of { happy_var_1 -> 
+	case happyOut80 happy_x_2 of { happy_var_2 -> 
+	happyIn79
+		 (happy_var_2 : happy_var_1
+	)}}
+
+happyReduce_176 = happySpecReduce_1  75# happyReduction_176
+happyReduction_176 happy_x_1
+	 =  case happyOut80 happy_x_1 of { happy_var_1 -> 
+	happyIn79
+		 ([happy_var_1]
+	)}
+
+happyReduce_177 = happyMonadReduce 1# 76# happyReduction_177
+happyReduction_177 (happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut81 happy_x_1 of { happy_var_1 -> 
+	( checkPattern happy_var_1)}
+	) (\r -> happyReturn (happyIn80 r))
+
+happyReduce_178 = happyMonadReduce 3# 77# happyReduction_178
+happyReduction_178 (happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut127 happy_x_1 of { happy_var_1 -> 
+	case happyOut81 happy_x_3 of { happy_var_3 -> 
+	( do { n <- checkUnQual happy_var_1;
+						return (HsAsPat n happy_var_3) })}}
+	) (\r -> happyReturn (happyIn81 r))
+
+happyReduce_179 = happySpecReduce_2  77# happyReduction_179
+happyReduction_179 happy_x_2
+	happy_x_1
+	 =  case happyOut81 happy_x_2 of { happy_var_2 -> 
+	happyIn81
+		 (HsIrrPat happy_var_2
+	)}
+
+happyReduce_180 = happySpecReduce_1  77# happyReduction_180
+happyReduction_180 happy_x_1
+	 =  case happyOut82 happy_x_1 of { happy_var_1 -> 
+	happyIn81
+		 (happy_var_1
+	)}
+
+happyReduce_181 = happyMonadReduce 3# 78# happyReduction_181
+happyReduction_181 (happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut82 happy_x_1 of { happy_var_1 -> 
+	( mkRecConstrOrUpdate happy_var_1 [])}
+	) (\r -> happyReturn (happyIn82 r))
+
+happyReduce_182 = happyMonadReduce 4# 78# happyReduction_182
+happyReduction_182 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut82 happy_x_1 of { happy_var_1 -> 
+	case happyOut100 happy_x_3 of { happy_var_3 -> 
+	( mkRecConstrOrUpdate happy_var_1 (reverse happy_var_3))}}
+	) (\r -> happyReturn (happyIn82 r))
+
+happyReduce_183 = happySpecReduce_1  78# happyReduction_183
+happyReduction_183 happy_x_1
+	 =  case happyOut83 happy_x_1 of { happy_var_1 -> 
+	happyIn82
+		 (happy_var_1
+	)}
+
+happyReduce_184 = happySpecReduce_1  79# happyReduction_184
+happyReduction_184 happy_x_1
+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> 
+	happyIn83
+		 (HsVar happy_var_1
+	)}
+
+happyReduce_185 = happySpecReduce_1  79# happyReduction_185
+happyReduction_185 happy_x_1
+	 =  case happyOut125 happy_x_1 of { happy_var_1 -> 
+	happyIn83
+		 (happy_var_1
+	)}
+
+happyReduce_186 = happySpecReduce_1  79# happyReduction_186
+happyReduction_186 happy_x_1
+	 =  case happyOut150 happy_x_1 of { happy_var_1 -> 
+	happyIn83
+		 (HsLit happy_var_1
+	)}
+
+happyReduce_187 = happySpecReduce_3  79# happyReduction_187
+happyReduction_187 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut72 happy_x_2 of { happy_var_2 -> 
+	happyIn83
+		 (HsParen happy_var_2
+	)}
+
+happyReduce_188 = happySpecReduce_3  79# happyReduction_188
+happyReduction_188 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut85 happy_x_2 of { happy_var_2 -> 
+	happyIn83
+		 (HsTuple (reverse happy_var_2)
+	)}
+
+happyReduce_189 = happySpecReduce_3  79# happyReduction_189
+happyReduction_189 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut86 happy_x_2 of { happy_var_2 -> 
+	happyIn83
+		 (happy_var_2
+	)}
+
+happyReduce_190 = happyReduce 4# 79# happyReduction_190
+happyReduction_190 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut75 happy_x_2 of { happy_var_2 -> 
+	case happyOut136 happy_x_3 of { happy_var_3 -> 
+	happyIn83
+		 (HsLeftSection happy_var_2 happy_var_3
+	) `HappyStk` happyRest}}
+
+happyReduce_191 = happyReduce 4# 79# happyReduction_191
+happyReduction_191 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut137 happy_x_2 of { happy_var_2 -> 
+	case happyOut73 happy_x_3 of { happy_var_3 -> 
+	happyIn83
+		 (HsRightSection happy_var_2 happy_var_3
+	) `HappyStk` happyRest}}
+
+happyReduce_192 = happySpecReduce_1  79# happyReduction_192
+happyReduction_192 happy_x_1
+	 =  happyIn83
+		 (HsWildCard
+	)
+
+happyReduce_193 = happySpecReduce_2  80# happyReduction_193
+happyReduction_193 happy_x_2
+	happy_x_1
+	 =  case happyOut84 happy_x_1 of { happy_var_1 -> 
+	happyIn84
+		 (happy_var_1 + 1
+	)}
+
+happyReduce_194 = happySpecReduce_1  80# happyReduction_194
+happyReduction_194 happy_x_1
+	 =  happyIn84
+		 (1
+	)
+
+happyReduce_195 = happySpecReduce_3  81# happyReduction_195
+happyReduction_195 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut85 happy_x_1 of { happy_var_1 -> 
+	case happyOut72 happy_x_3 of { happy_var_3 -> 
+	happyIn85
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_196 = happySpecReduce_3  81# happyReduction_196
+happyReduction_196 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut72 happy_x_1 of { happy_var_1 -> 
+	case happyOut72 happy_x_3 of { happy_var_3 -> 
+	happyIn85
+		 ([happy_var_3,happy_var_1]
+	)}}
+
+happyReduce_197 = happySpecReduce_1  82# happyReduction_197
+happyReduction_197 happy_x_1
+	 =  case happyOut72 happy_x_1 of { happy_var_1 -> 
+	happyIn86
+		 (HsList [happy_var_1]
+	)}
+
+happyReduce_198 = happySpecReduce_1  82# happyReduction_198
+happyReduction_198 happy_x_1
+	 =  case happyOut87 happy_x_1 of { happy_var_1 -> 
+	happyIn86
+		 (HsList (reverse happy_var_1)
+	)}
+
+happyReduce_199 = happySpecReduce_2  82# happyReduction_199
+happyReduction_199 happy_x_2
+	happy_x_1
+	 =  case happyOut72 happy_x_1 of { happy_var_1 -> 
+	happyIn86
+		 (HsEnumFrom happy_var_1
+	)}
+
+happyReduce_200 = happyReduce 4# 82# happyReduction_200
+happyReduction_200 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut72 happy_x_1 of { happy_var_1 -> 
+	case happyOut72 happy_x_3 of { happy_var_3 -> 
+	happyIn86
+		 (HsEnumFromThen happy_var_1 happy_var_3
+	) `HappyStk` happyRest}}
+
+happyReduce_201 = happySpecReduce_3  82# happyReduction_201
+happyReduction_201 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut72 happy_x_1 of { happy_var_1 -> 
+	case happyOut72 happy_x_3 of { happy_var_3 -> 
+	happyIn86
+		 (HsEnumFromTo happy_var_1 happy_var_3
+	)}}
+
+happyReduce_202 = happyReduce 5# 82# happyReduction_202
+happyReduction_202 (happy_x_5 `HappyStk`
+	happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut72 happy_x_1 of { happy_var_1 -> 
+	case happyOut72 happy_x_3 of { happy_var_3 -> 
+	case happyOut72 happy_x_5 of { happy_var_5 -> 
+	happyIn86
+		 (HsEnumFromThenTo happy_var_1 happy_var_3 happy_var_5
+	) `HappyStk` happyRest}}}
+
+happyReduce_203 = happySpecReduce_3  82# happyReduction_203
+happyReduction_203 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut72 happy_x_1 of { happy_var_1 -> 
+	case happyOut88 happy_x_3 of { happy_var_3 -> 
+	happyIn86
+		 (HsListComp happy_var_1 (reverse happy_var_3)
+	)}}
+
+happyReduce_204 = happySpecReduce_3  83# happyReduction_204
+happyReduction_204 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut87 happy_x_1 of { happy_var_1 -> 
+	case happyOut72 happy_x_3 of { happy_var_3 -> 
+	happyIn87
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_205 = happySpecReduce_3  83# happyReduction_205
+happyReduction_205 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut72 happy_x_1 of { happy_var_1 -> 
+	case happyOut72 happy_x_3 of { happy_var_3 -> 
+	happyIn87
+		 ([happy_var_3,happy_var_1]
+	)}}
+
+happyReduce_206 = happySpecReduce_3  84# happyReduction_206
+happyReduction_206 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut88 happy_x_1 of { happy_var_1 -> 
+	case happyOut89 happy_x_3 of { happy_var_3 -> 
+	happyIn88
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_207 = happySpecReduce_1  84# happyReduction_207
+happyReduction_207 happy_x_1
+	 =  case happyOut89 happy_x_1 of { happy_var_1 -> 
+	happyIn88
+		 ([happy_var_1]
+	)}
+
+happyReduce_208 = happyReduce 4# 85# happyReduction_208
+happyReduction_208 (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 happyOut151 happy_x_2 of { happy_var_2 -> 
+	case happyOut72 happy_x_4 of { happy_var_4 -> 
+	happyIn89
+		 (HsGenerator happy_var_2 happy_var_1 happy_var_4
+	) `HappyStk` happyRest}}}
+
+happyReduce_209 = happySpecReduce_1  85# happyReduction_209
+happyReduction_209 happy_x_1
+	 =  case happyOut72 happy_x_1 of { happy_var_1 -> 
+	happyIn89
+		 (HsQualifier happy_var_1
+	)}
+
+happyReduce_210 = happySpecReduce_2  85# happyReduction_210
+happyReduction_210 happy_x_2
+	happy_x_1
+	 =  case happyOut36 happy_x_2 of { happy_var_2 -> 
+	happyIn89
+		 (HsLetStmt happy_var_2
+	)}
+
+happyReduce_211 = happySpecReduce_3  86# happyReduction_211
+happyReduction_211 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut91 happy_x_2 of { happy_var_2 -> 
+	happyIn90
+		 (happy_var_2
+	)}
+
+happyReduce_212 = happySpecReduce_3  86# happyReduction_212
+happyReduction_212 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut91 happy_x_2 of { happy_var_2 -> 
+	happyIn90
+		 (happy_var_2
+	)}
+
+happyReduce_213 = happySpecReduce_3  87# happyReduction_213
+happyReduction_213 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut92 happy_x_2 of { happy_var_2 -> 
+	happyIn91
+		 (reverse happy_var_2
+	)}
+
+happyReduce_214 = happySpecReduce_3  88# happyReduction_214
+happyReduction_214 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut92 happy_x_1 of { happy_var_1 -> 
+	case happyOut93 happy_x_3 of { happy_var_3 -> 
+	happyIn92
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_215 = happySpecReduce_1  88# happyReduction_215
+happyReduction_215 happy_x_1
+	 =  case happyOut93 happy_x_1 of { happy_var_1 -> 
+	happyIn92
+		 ([happy_var_1]
+	)}
+
+happyReduce_216 = happyReduce 4# 89# happyReduction_216
+happyReduction_216 (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 happyOut97 happy_x_2 of { happy_var_2 -> 
+	case happyOut94 happy_x_3 of { happy_var_3 -> 
+	case happyOut68 happy_x_4 of { happy_var_4 -> 
+	happyIn93
+		 (HsAlt happy_var_1 happy_var_2 happy_var_3 happy_var_4
+	) `HappyStk` happyRest}}}}
+
+happyReduce_217 = happySpecReduce_2  90# happyReduction_217
+happyReduction_217 happy_x_2
+	happy_x_1
+	 =  case happyOut72 happy_x_2 of { happy_var_2 -> 
+	happyIn94
+		 (HsUnGuardedAlt happy_var_2
+	)}
+
+happyReduce_218 = happySpecReduce_1  90# happyReduction_218
+happyReduction_218 happy_x_1
+	 =  case happyOut95 happy_x_1 of { happy_var_1 -> 
+	happyIn94
+		 (HsGuardedAlts (reverse happy_var_1)
+	)}
+
+happyReduce_219 = happySpecReduce_2  91# happyReduction_219
+happyReduction_219 happy_x_2
+	happy_x_1
+	 =  case happyOut95 happy_x_1 of { happy_var_1 -> 
+	case happyOut96 happy_x_2 of { happy_var_2 -> 
+	happyIn95
+		 (happy_var_2 : happy_var_1
+	)}}
+
+happyReduce_220 = happySpecReduce_1  91# happyReduction_220
+happyReduction_220 happy_x_1
+	 =  case happyOut96 happy_x_1 of { happy_var_1 -> 
+	happyIn95
+		 ([happy_var_1]
+	)}
+
+happyReduce_221 = happyReduce 5# 92# happyReduction_221
+happyReduction_221 (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 happyOut73 happy_x_3 of { happy_var_3 -> 
+	case happyOut72 happy_x_5 of { happy_var_5 -> 
+	happyIn96
+		 (HsGuardedAlt happy_var_1 happy_var_3 happy_var_5
+	) `HappyStk` happyRest}}}
+
+happyReduce_222 = happyMonadReduce 1# 93# happyReduction_222
+happyReduction_222 (happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (case happyOut75 happy_x_1 of { happy_var_1 -> 
+	( checkPattern happy_var_1)}
+	) (\r -> happyReturn (happyIn97 r))
+
+happyReduce_223 = happySpecReduce_3  94# happyReduction_223
+happyReduction_223 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut99 happy_x_2 of { happy_var_2 -> 
+	happyIn98
+		 (happy_var_2
+	)}
+
+happyReduce_224 = happySpecReduce_3  94# happyReduction_224
+happyReduction_224 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut99 happy_x_2 of { happy_var_2 -> 
+	happyIn98
+		 (happy_var_2
+	)}
+
+happyReduce_225 = happyReduce 4# 95# happyReduction_225
+happyReduction_225 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut36 happy_x_2 of { happy_var_2 -> 
+	case happyOut99 happy_x_4 of { happy_var_4 -> 
+	happyIn99
+		 (HsLetStmt happy_var_2 : happy_var_4
+	) `HappyStk` happyRest}}
+
+happyReduce_226 = happyReduce 6# 95# happyReduction_226
+happyReduction_226 (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 happyOut97 happy_x_1 of { happy_var_1 -> 
+	case happyOut151 happy_x_2 of { happy_var_2 -> 
+	case happyOut72 happy_x_4 of { happy_var_4 -> 
+	case happyOut99 happy_x_6 of { happy_var_6 -> 
+	happyIn99
+		 (HsGenerator happy_var_2 happy_var_1 happy_var_4 : happy_var_6
+	) `HappyStk` happyRest}}}}
+
+happyReduce_227 = happySpecReduce_3  95# happyReduction_227
+happyReduction_227 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut72 happy_x_1 of { happy_var_1 -> 
+	case happyOut99 happy_x_3 of { happy_var_3 -> 
+	happyIn99
+		 (HsQualifier happy_var_1 : happy_var_3
+	)}}
+
+happyReduce_228 = happySpecReduce_2  95# happyReduction_228
+happyReduction_228 happy_x_2
+	happy_x_1
+	 =  case happyOut99 happy_x_2 of { happy_var_2 -> 
+	happyIn99
+		 (happy_var_2
+	)}
+
+happyReduce_229 = happySpecReduce_2  95# happyReduction_229
+happyReduction_229 happy_x_2
+	happy_x_1
+	 =  case happyOut72 happy_x_1 of { happy_var_1 -> 
+	happyIn99
+		 ([HsQualifier happy_var_1]
+	)}
+
+happyReduce_230 = happySpecReduce_1  95# happyReduction_230
+happyReduction_230 happy_x_1
+	 =  case happyOut72 happy_x_1 of { happy_var_1 -> 
+	happyIn99
+		 ([HsQualifier happy_var_1]
+	)}
+
+happyReduce_231 = happySpecReduce_3  96# happyReduction_231
+happyReduction_231 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut100 happy_x_1 of { happy_var_1 -> 
+	case happyOut101 happy_x_3 of { happy_var_3 -> 
+	happyIn100
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_232 = happySpecReduce_1  96# happyReduction_232
+happyReduction_232 happy_x_1
+	 =  case happyOut101 happy_x_1 of { happy_var_1 -> 
+	happyIn100
+		 ([happy_var_1]
+	)}
+
+happyReduce_233 = happySpecReduce_3  97# happyReduction_233
+happyReduction_233 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut127 happy_x_1 of { happy_var_1 -> 
+	case happyOut72 happy_x_3 of { happy_var_3 -> 
+	happyIn101
+		 (HsFieldUpdate happy_var_1 happy_var_3
+	)}}
+
+happyReduce_234 = happySpecReduce_3  98# happyReduction_234
+happyReduction_234 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut75 happy_x_1 of { happy_var_1 -> 
+	case happyOut72 happy_x_3 of { happy_var_3 -> 
+	happyIn102
+		 (ArrSyn.Input happy_var_1 happy_var_3
+	)}}
+
+happyReduce_235 = happySpecReduce_3  98# happyReduction_235
+happyReduction_235 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut75 happy_x_1 of { happy_var_1 -> 
+	case happyOut72 happy_x_3 of { happy_var_3 -> 
+	happyIn102
+		 (ArrSyn.Input happy_var_1 happy_var_3
+	)}}
+
+happyReduce_236 = happySpecReduce_3  98# happyReduction_236
+happyReduction_236 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut75 happy_x_1 of { happy_var_1 -> 
+	case happyOut72 happy_x_3 of { happy_var_3 -> 
+	happyIn102
+		 (ArrSyn.Input happy_var_3 happy_var_1
+	)}}
+
+happyReduce_237 = happySpecReduce_3  98# happyReduction_237
+happyReduction_237 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut75 happy_x_1 of { happy_var_1 -> 
+	case happyOut72 happy_x_3 of { happy_var_3 -> 
+	happyIn102
+		 (ArrSyn.Input happy_var_3 happy_var_1
+	)}}
+
+happyReduce_238 = happySpecReduce_1  98# happyReduction_238
+happyReduction_238 happy_x_1
+	 =  case happyOut103 happy_x_1 of { happy_var_1 -> 
+	happyIn102
+		 (happy_var_1
+	)}
+
+happyReduce_239 = happySpecReduce_1  99# happyReduction_239
+happyReduction_239 happy_x_1
+	 =  case happyOut104 happy_x_1 of { happy_var_1 -> 
+	happyIn103
+		 (happy_var_1
+	)}
+
+happyReduce_240 = happySpecReduce_1  99# happyReduction_240
+happyReduction_240 happy_x_1
+	 =  case happyOut105 happy_x_1 of { happy_var_1 -> 
+	happyIn103
+		 (happy_var_1
+	)}
+
+happyReduce_241 = happySpecReduce_3  100# happyReduction_241
+happyReduction_241 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut105 happy_x_1 of { happy_var_1 -> 
+	case happyOut136 happy_x_2 of { happy_var_2 -> 
+	case happyOut106 happy_x_3 of { happy_var_3 -> 
+	happyIn104
+		 (ArrSyn.InfixOp happy_var_1 happy_var_2 happy_var_3
+	)}}}
+
+happyReduce_242 = happySpecReduce_1  100# happyReduction_242
+happyReduction_242 happy_x_1
+	 =  case happyOut106 happy_x_1 of { happy_var_1 -> 
+	happyIn104
+		 (happy_var_1
+	)}
+
+happyReduce_243 = happySpecReduce_3  101# happyReduction_243
+happyReduction_243 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut105 happy_x_1 of { happy_var_1 -> 
+	case happyOut136 happy_x_2 of { happy_var_2 -> 
+	case happyOut107 happy_x_3 of { happy_var_3 -> 
+	happyIn105
+		 (ArrSyn.InfixOp happy_var_1 happy_var_2 happy_var_3
+	)}}}
+
+happyReduce_244 = happySpecReduce_1  101# happyReduction_244
+happyReduction_244 happy_x_1
+	 =  case happyOut107 happy_x_1 of { happy_var_1 -> 
+	happyIn105
+		 (happy_var_1
+	)}
+
+happyReduce_245 = happyReduce 5# 102# happyReduction_245
+happyReduction_245 (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_2 of { happy_var_2 -> 
+	case happyOut79 happy_x_3 of { happy_var_3 -> 
+	case happyOut102 happy_x_5 of { happy_var_5 -> 
+	happyIn106
+		 (ArrSyn.Kappa happy_var_2 (reverse happy_var_3) happy_var_5
+	) `HappyStk` happyRest}}}
+
+happyReduce_246 = happyReduce 4# 102# happyReduction_246
+happyReduction_246 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut36 happy_x_2 of { happy_var_2 -> 
+	case happyOut102 happy_x_4 of { happy_var_4 -> 
+	happyIn106
+		 (ArrSyn.Let happy_var_2 happy_var_4
+	) `HappyStk` happyRest}}
+
+happyReduce_247 = happyReduce 4# 102# happyReduction_247
+happyReduction_247 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut121 happy_x_2 of { happy_var_2 -> 
+	case happyOut102 happy_x_4 of { happy_var_4 -> 
+	happyIn106
+		 (ArrSyn.LetCmd happy_var_2 happy_var_4
+	) `HappyStk` happyRest}}
+
+happyReduce_248 = happyReduce 6# 102# happyReduction_248
+happyReduction_248 (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 happyOut72 happy_x_2 of { happy_var_2 -> 
+	case happyOut102 happy_x_4 of { happy_var_4 -> 
+	case happyOut102 happy_x_6 of { happy_var_6 -> 
+	happyIn106
+		 (ArrSyn.If happy_var_2 happy_var_4 happy_var_6
+	) `HappyStk` happyRest}}}
+
+happyReduce_249 = happyReduce 4# 103# happyReduction_249
+happyReduction_249 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut72 happy_x_2 of { happy_var_2 -> 
+	case happyOut111 happy_x_4 of { happy_var_4 -> 
+	happyIn107
+		 (ArrSyn.Case happy_var_2 happy_var_4
+	) `HappyStk` happyRest}}
+
+happyReduce_250 = happySpecReduce_2  103# happyReduction_250
+happyReduction_250 happy_x_2
+	happy_x_1
+	 =  case happyOut118 happy_x_2 of { happy_var_2 -> 
+	happyIn107
+		 (ArrSyn.Do (fst happy_var_2) (snd happy_var_2)
+	)}
+
+happyReduce_251 = happySpecReduce_1  103# happyReduction_251
+happyReduction_251 happy_x_1
+	 =  case happyOut108 happy_x_1 of { happy_var_1 -> 
+	happyIn107
+		 (happy_var_1
+	)}
+
+happyReduce_252 = happySpecReduce_2  104# happyReduction_252
+happyReduction_252 happy_x_2
+	happy_x_1
+	 =  case happyOut108 happy_x_1 of { happy_var_1 -> 
+	case happyOut81 happy_x_2 of { happy_var_2 -> 
+	happyIn108
+		 (ArrSyn.App happy_var_1 happy_var_2
+	)}}
+
+happyReduce_253 = happySpecReduce_1  104# happyReduction_253
+happyReduction_253 happy_x_1
+	 =  case happyOut109 happy_x_1 of { happy_var_1 -> 
+	happyIn108
+		 (happy_var_1
+	)}
+
+happyReduce_254 = happySpecReduce_3  105# happyReduction_254
+happyReduction_254 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut102 happy_x_2 of { happy_var_2 -> 
+	happyIn109
+		 (ArrSyn.Paren happy_var_2
+	)}
+
+happyReduce_255 = happyReduce 4# 105# happyReduction_255
+happyReduction_255 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut81 happy_x_2 of { happy_var_2 -> 
+	case happyOut110 happy_x_3 of { happy_var_3 -> 
+	happyIn109
+		 (ArrSyn.Op happy_var_2 (reverse happy_var_3)
+	) `HappyStk` happyRest}}
+
+happyReduce_256 = happySpecReduce_2  105# happyReduction_256
+happyReduction_256 happy_x_2
+	happy_x_1
+	 =  case happyOut140 happy_x_2 of { happy_var_2 -> 
+	happyIn109
+		 (ArrSyn.CmdVar happy_var_2
+	)}
+
+happyReduce_257 = happySpecReduce_2  106# happyReduction_257
+happyReduction_257 happy_x_2
+	happy_x_1
+	 =  case happyOut110 happy_x_1 of { happy_var_1 -> 
+	case happyOut109 happy_x_2 of { happy_var_2 -> 
+	happyIn110
+		 (happy_var_2 : happy_var_1
+	)}}
+
+happyReduce_258 = happySpecReduce_1  106# happyReduction_258
+happyReduction_258 happy_x_1
+	 =  case happyOut109 happy_x_1 of { happy_var_1 -> 
+	happyIn110
+		 ([happy_var_1]
+	)}
+
+happyReduce_259 = happySpecReduce_3  107# happyReduction_259
+happyReduction_259 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut112 happy_x_2 of { happy_var_2 -> 
+	happyIn111
+		 (happy_var_2
+	)}
+
+happyReduce_260 = happySpecReduce_3  107# happyReduction_260
+happyReduction_260 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut112 happy_x_2 of { happy_var_2 -> 
+	happyIn111
+		 (happy_var_2
+	)}
+
+happyReduce_261 = happySpecReduce_3  108# happyReduction_261
+happyReduction_261 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut113 happy_x_2 of { happy_var_2 -> 
+	happyIn112
+		 (reverse happy_var_2
+	)}
+
+happyReduce_262 = happySpecReduce_3  109# happyReduction_262
+happyReduction_262 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut113 happy_x_1 of { happy_var_1 -> 
+	case happyOut114 happy_x_3 of { happy_var_3 -> 
+	happyIn113
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_263 = happySpecReduce_1  109# happyReduction_263
+happyReduction_263 happy_x_1
+	 =  case happyOut114 happy_x_1 of { happy_var_1 -> 
+	happyIn113
+		 ([happy_var_1]
+	)}
+
+happyReduce_264 = happyReduce 4# 110# happyReduction_264
+happyReduction_264 (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 happyOut97 happy_x_2 of { happy_var_2 -> 
+	case happyOut115 happy_x_3 of { happy_var_3 -> 
+	case happyOut68 happy_x_4 of { happy_var_4 -> 
+	happyIn114
+		 (ArrSyn.Alt happy_var_1 happy_var_2 happy_var_3 happy_var_4
+	) `HappyStk` happyRest}}}}
+
+happyReduce_265 = happySpecReduce_2  111# happyReduction_265
+happyReduction_265 happy_x_2
+	happy_x_1
+	 =  case happyOut102 happy_x_2 of { happy_var_2 -> 
+	happyIn115
+		 (ArrSyn.UnGuardedAlt happy_var_2
+	)}
+
+happyReduce_266 = happySpecReduce_1  111# happyReduction_266
+happyReduction_266 happy_x_1
+	 =  case happyOut116 happy_x_1 of { happy_var_1 -> 
+	happyIn115
+		 (ArrSyn.GuardedAlts (reverse happy_var_1)
+	)}
+
+happyReduce_267 = happySpecReduce_2  112# happyReduction_267
+happyReduction_267 happy_x_2
+	happy_x_1
+	 =  case happyOut116 happy_x_1 of { happy_var_1 -> 
+	case happyOut117 happy_x_2 of { happy_var_2 -> 
+	happyIn116
+		 (happy_var_2 : happy_var_1
+	)}}
+
+happyReduce_268 = happySpecReduce_1  112# happyReduction_268
+happyReduction_268 happy_x_1
+	 =  case happyOut117 happy_x_1 of { happy_var_1 -> 
+	happyIn116
+		 ([happy_var_1]
+	)}
+
+happyReduce_269 = happyReduce 5# 113# happyReduction_269
+happyReduction_269 (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 happyOut73 happy_x_3 of { happy_var_3 -> 
+	case happyOut102 happy_x_5 of { happy_var_5 -> 
+	happyIn117
+		 (ArrSyn.GuardedAlt happy_var_1 happy_var_3 happy_var_5
+	) `HappyStk` happyRest}}}
+
+happyReduce_270 = happySpecReduce_3  114# happyReduction_270
+happyReduction_270 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut119 happy_x_2 of { happy_var_2 -> 
+	happyIn118
+		 (happy_var_2
+	)}
+
+happyReduce_271 = happySpecReduce_3  114# happyReduction_271
+happyReduction_271 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut119 happy_x_2 of { happy_var_2 -> 
+	happyIn118
+		 (happy_var_2
+	)}
+
+happyReduce_272 = happySpecReduce_3  115# happyReduction_272
+happyReduction_272 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut120 happy_x_1 of { happy_var_1 -> 
+	case happyOut119 happy_x_3 of { happy_var_3 -> 
+	happyIn119
+		 ((happy_var_1 : fst happy_var_3, snd happy_var_3)
+	)}}
+
+happyReduce_273 = happySpecReduce_3  115# happyReduction_273
+happyReduction_273 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut102 happy_x_1 of { happy_var_1 -> 
+	case happyOut119 happy_x_3 of { happy_var_3 -> 
+	happyIn119
+		 ((ArrSyn.Generator undefined HsPWildCard happy_var_1 : fst happy_var_3, snd happy_var_3)
+	)}}
+
+happyReduce_274 = happyReduce 4# 115# happyReduction_274
+happyReduction_274 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut36 happy_x_2 of { happy_var_2 -> 
+	case happyOut119 happy_x_4 of { happy_var_4 -> 
+	happyIn119
+		 ((ArrSyn.LetStmt happy_var_2 : fst happy_var_4, snd happy_var_4)
+	) `HappyStk` happyRest}}
+
+happyReduce_275 = happySpecReduce_2  115# happyReduction_275
+happyReduction_275 happy_x_2
+	happy_x_1
+	 =  case happyOut119 happy_x_2 of { happy_var_2 -> 
+	happyIn119
+		 (happy_var_2
+	)}
+
+happyReduce_276 = happySpecReduce_2  115# happyReduction_276
+happyReduction_276 happy_x_2
+	happy_x_1
+	 =  case happyOut102 happy_x_1 of { happy_var_1 -> 
+	happyIn119
+		 (([], happy_var_1)
+	)}
+
+happyReduce_277 = happySpecReduce_1  115# happyReduction_277
+happyReduction_277 happy_x_1
+	 =  case happyOut102 happy_x_1 of { happy_var_1 -> 
+	happyIn119
+		 (([], happy_var_1)
+	)}
+
+happyReduce_278 = happyReduce 4# 116# happyReduction_278
+happyReduction_278 (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 happyOut151 happy_x_2 of { happy_var_2 -> 
+	case happyOut102 happy_x_4 of { happy_var_4 -> 
+	happyIn120
+		 (ArrSyn.Generator happy_var_2 happy_var_1 happy_var_4
+	) `HappyStk` happyRest}}}
+
+happyReduce_279 = happyReduce 4# 116# happyReduction_279
+happyReduction_279 (happy_x_4 `HappyStk`
+	happy_x_3 `HappyStk`
+	happy_x_2 `HappyStk`
+	happy_x_1 `HappyStk`
+	happyRest)
+	 = case happyOut102 happy_x_1 of { happy_var_1 -> 
+	case happyOut151 happy_x_3 of { happy_var_3 -> 
+	case happyOut97 happy_x_4 of { happy_var_4 -> 
+	happyIn120
+		 (ArrSyn.Generator happy_var_3 happy_var_4 happy_var_1
+	) `HappyStk` happyRest}}}
+
+happyReduce_280 = happySpecReduce_2  116# happyReduction_280
+happyReduction_280 happy_x_2
+	happy_x_1
+	 =  case happyOut122 happy_x_2 of { happy_var_2 -> 
+	happyIn120
+		 (ArrSyn.RecStmt (reverse happy_var_2)
+	)}
+
+happyReduce_281 = happySpecReduce_2  116# happyReduction_281
+happyReduction_281 happy_x_2
+	happy_x_1
+	 =  case happyOut121 happy_x_2 of { happy_var_2 -> 
+	happyIn120
+		 (ArrSyn.LetCmdStmt happy_var_2
+	)}
+
+happyReduce_282 = happyReduce 5# 117# happyReduction_282
+happyReduction_282 (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 happyOut140 happy_x_3 of { happy_var_3 -> 
+	case happyOut102 happy_x_5 of { happy_var_5 -> 
+	happyIn121
+		 (ArrSyn.VarDecl happy_var_1 happy_var_3 happy_var_5
+	) `HappyStk` happyRest}}}
+
+happyReduce_283 = happySpecReduce_3  118# happyReduction_283
+happyReduction_283 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut123 happy_x_2 of { happy_var_2 -> 
+	happyIn122
+		 (happy_var_2
+	)}
+
+happyReduce_284 = happySpecReduce_3  118# happyReduction_284
+happyReduction_284 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut123 happy_x_2 of { happy_var_2 -> 
+	happyIn122
+		 (happy_var_2
+	)}
+
+happyReduce_285 = happySpecReduce_3  119# happyReduction_285
+happyReduction_285 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut123 happy_x_1 of { happy_var_1 -> 
+	case happyOut124 happy_x_3 of { happy_var_3 -> 
+	happyIn123
+		 (happy_var_3 : happy_var_1
+	)}}
+
+happyReduce_286 = happySpecReduce_1  119# happyReduction_286
+happyReduction_286 happy_x_1
+	 =  case happyOut124 happy_x_1 of { happy_var_1 -> 
+	happyIn123
+		 ([happy_var_1]
+	)}
+
+happyReduce_287 = happySpecReduce_1  120# happyReduction_287
+happyReduction_287 happy_x_1
+	 =  case happyOut120 happy_x_1 of { happy_var_1 -> 
+	happyIn124
+		 (happy_var_1
+	)}
+
+happyReduce_288 = happySpecReduce_2  120# happyReduction_288
+happyReduction_288 happy_x_2
+	happy_x_1
+	 =  case happyOut36 happy_x_2 of { happy_var_2 -> 
+	happyIn124
+		 (ArrSyn.LetStmt happy_var_2
+	)}
+
+happyReduce_289 = happySpecReduce_2  121# happyReduction_289
+happyReduction_289 happy_x_2
+	happy_x_1
+	 =  happyIn125
+		 (unit_con
+	)
+
+happyReduce_290 = happySpecReduce_2  121# happyReduction_290
+happyReduction_290 happy_x_2
+	happy_x_1
+	 =  happyIn125
+		 (HsList []
+	)
+
+happyReduce_291 = happySpecReduce_3  121# happyReduction_291
+happyReduction_291 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut84 happy_x_2 of { happy_var_2 -> 
+	happyIn125
+		 (tuple_con happy_var_2
+	)}
+
+happyReduce_292 = happySpecReduce_1  121# happyReduction_292
+happyReduction_292 happy_x_1
+	 =  case happyOut129 happy_x_1 of { happy_var_1 -> 
+	happyIn125
+		 (HsCon happy_var_1
+	)}
+
+happyReduce_293 = happySpecReduce_1  122# happyReduction_293
+happyReduction_293 happy_x_1
+	 =  case happyOut140 happy_x_1 of { happy_var_1 -> 
+	happyIn126
+		 (happy_var_1
+	)}
+
+happyReduce_294 = happySpecReduce_3  122# happyReduction_294
+happyReduction_294 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut147 happy_x_2 of { happy_var_2 -> 
+	happyIn126
+		 (happy_var_2
+	)}
+
+happyReduce_295 = happySpecReduce_1  123# happyReduction_295
+happyReduction_295 happy_x_1
+	 =  case happyOut139 happy_x_1 of { happy_var_1 -> 
+	happyIn127
+		 (happy_var_1
+	)}
+
+happyReduce_296 = happySpecReduce_3  123# happyReduction_296
+happyReduction_296 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut145 happy_x_2 of { happy_var_2 -> 
+	happyIn127
+		 (happy_var_2
+	)}
+
+happyReduce_297 = happySpecReduce_1  124# happyReduction_297
+happyReduction_297 happy_x_1
+	 =  case happyOut142 happy_x_1 of { happy_var_1 -> 
+	happyIn128
+		 (happy_var_1
+	)}
+
+happyReduce_298 = happySpecReduce_3  124# happyReduction_298
+happyReduction_298 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut144 happy_x_2 of { happy_var_2 -> 
+	happyIn128
+		 (happy_var_2
+	)}
+
+happyReduce_299 = happySpecReduce_1  125# happyReduction_299
+happyReduction_299 happy_x_1
+	 =  case happyOut141 happy_x_1 of { happy_var_1 -> 
+	happyIn129
+		 (happy_var_1
+	)}
+
+happyReduce_300 = happySpecReduce_3  125# happyReduction_300
+happyReduction_300 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut138 happy_x_2 of { happy_var_2 -> 
+	happyIn129
+		 (happy_var_2
+	)}
+
+happyReduce_301 = happySpecReduce_1  126# happyReduction_301
+happyReduction_301 happy_x_1
+	 =  case happyOut147 happy_x_1 of { happy_var_1 -> 
+	happyIn130
+		 (happy_var_1
+	)}
+
+happyReduce_302 = happySpecReduce_3  126# happyReduction_302
+happyReduction_302 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut140 happy_x_2 of { happy_var_2 -> 
+	happyIn130
+		 (happy_var_2
+	)}
+
+happyReduce_303 = happySpecReduce_1  127# happyReduction_303
+happyReduction_303 happy_x_1
+	 =  case happyOut145 happy_x_1 of { happy_var_1 -> 
+	happyIn131
+		 (happy_var_1
+	)}
+
+happyReduce_304 = happySpecReduce_3  127# happyReduction_304
+happyReduction_304 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut139 happy_x_2 of { happy_var_2 -> 
+	happyIn131
+		 (happy_var_2
+	)}
+
+happyReduce_305 = happySpecReduce_1  128# happyReduction_305
+happyReduction_305 happy_x_1
+	 =  case happyOut146 happy_x_1 of { happy_var_1 -> 
+	happyIn132
+		 (happy_var_1
+	)}
+
+happyReduce_306 = happySpecReduce_3  128# happyReduction_306
+happyReduction_306 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut139 happy_x_2 of { happy_var_2 -> 
+	happyIn132
+		 (happy_var_2
+	)}
+
+happyReduce_307 = happySpecReduce_1  129# happyReduction_307
+happyReduction_307 happy_x_1
+	 =  case happyOut144 happy_x_1 of { happy_var_1 -> 
+	happyIn133
+		 (happy_var_1
+	)}
+
+happyReduce_308 = happySpecReduce_3  129# happyReduction_308
+happyReduction_308 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut142 happy_x_2 of { happy_var_2 -> 
+	happyIn133
+		 (happy_var_2
+	)}
+
+happyReduce_309 = happySpecReduce_1  130# happyReduction_309
+happyReduction_309 happy_x_1
+	 =  case happyOut138 happy_x_1 of { happy_var_1 -> 
+	happyIn134
+		 (happy_var_1
+	)}
+
+happyReduce_310 = happySpecReduce_3  130# happyReduction_310
+happyReduction_310 happy_x_3
+	happy_x_2
+	happy_x_1
+	 =  case happyOut141 happy_x_2 of { happy_var_2 -> 
+	happyIn134
+		 (happy_var_2
+	)}
+
+happyReduce_311 = happySpecReduce_1  131# happyReduction_311
+happyReduction_311 happy_x_1
+	 =  case happyOut130 happy_x_1 of { happy_var_1 -> 
+	happyIn135
+		 (HsVarOp happy_var_1
+	)}
+
+happyReduce_312 = happySpecReduce_1  131# happyReduction_312
+happyReduction_312 happy_x_1
+	 =  case happyOut133 happy_x_1 of { happy_var_1 -> 
+	happyIn135
+		 (HsConOp happy_var_1
+	)}
+
+happyReduce_313 = happySpecReduce_1  132# happyReduction_313
+happyReduction_313 happy_x_1
+	 =  case happyOut131 happy_x_1 of { happy_var_1 -> 
+	happyIn136
+		 (HsQVarOp happy_var_1
+	)}
+
+happyReduce_314 = happySpecReduce_1  132# happyReduction_314
+happyReduction_314 happy_x_1
+	 =  case happyOut134 happy_x_1 of { happy_var_1 -> 
+	happyIn136
+		 (HsQConOp happy_var_1
+	)}
+
+happyReduce_315 = happySpecReduce_1  133# happyReduction_315
+happyReduction_315 happy_x_1
+	 =  case happyOut132 happy_x_1 of { happy_var_1 -> 
+	happyIn137
+		 (HsQVarOp happy_var_1
+	)}
+
+happyReduce_316 = happySpecReduce_1  133# happyReduction_316
+happyReduction_316 happy_x_1
+	 =  case happyOut134 happy_x_1 of { happy_var_1 -> 
+	happyIn137
+		 (HsQConOp happy_var_1
+	)}
+
+happyReduce_317 = happySpecReduce_1  134# happyReduction_317
+happyReduction_317 happy_x_1
+	 =  happyIn138
+		 (list_cons_name
+	)
+
+happyReduce_318 = happySpecReduce_1  134# happyReduction_318
+happyReduction_318 happy_x_1
+	 =  case happyOut143 happy_x_1 of { happy_var_1 -> 
+	happyIn138
+		 (happy_var_1
+	)}
+
+happyReduce_319 = happySpecReduce_1  135# happyReduction_319
+happyReduction_319 happy_x_1
+	 =  case happyOut140 happy_x_1 of { happy_var_1 -> 
+	happyIn139
+		 (UnQual happy_var_1
+	)}
+
+happyReduce_320 = happySpecReduce_1  135# happyReduction_320
+happyReduction_320 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (QVarId happy_var_1) -> 
+	happyIn139
+		 (Qual (Module (fst happy_var_1)) (HsIdent (snd happy_var_1))
+	)}
+
+happyReduce_321 = happySpecReduce_1  136# happyReduction_321
+happyReduction_321 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (VarId happy_var_1) -> 
+	happyIn140
+		 (HsIdent happy_var_1
+	)}
+
+happyReduce_322 = happySpecReduce_1  136# happyReduction_322
+happyReduction_322 happy_x_1
+	 =  happyIn140
+		 (HsIdent "as"
+	)
+
+happyReduce_323 = happySpecReduce_1  136# happyReduction_323
+happyReduction_323 happy_x_1
+	 =  happyIn140
+		 (HsIdent "export"
+	)
+
+happyReduce_324 = happySpecReduce_1  136# happyReduction_324
+happyReduction_324 happy_x_1
+	 =  happyIn140
+		 (HsIdent "hiding"
+	)
+
+happyReduce_325 = happySpecReduce_1  136# happyReduction_325
+happyReduction_325 happy_x_1
+	 =  happyIn140
+		 (HsIdent "qualified"
+	)
+
+happyReduce_326 = happySpecReduce_1  136# happyReduction_326
+happyReduction_326 happy_x_1
+	 =  happyIn140
+		 (HsIdent "safe"
+	)
+
+happyReduce_327 = happySpecReduce_1  136# happyReduction_327
+happyReduction_327 happy_x_1
+	 =  happyIn140
+		 (HsIdent "unsafe"
+	)
+
+happyReduce_328 = happySpecReduce_1  137# happyReduction_328
+happyReduction_328 happy_x_1
+	 =  case happyOut142 happy_x_1 of { happy_var_1 -> 
+	happyIn141
+		 (UnQual happy_var_1
+	)}
+
+happyReduce_329 = happySpecReduce_1  137# happyReduction_329
+happyReduction_329 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (QConId happy_var_1) -> 
+	happyIn141
+		 (Qual (Module (fst happy_var_1)) (HsIdent (snd happy_var_1))
+	)}
+
+happyReduce_330 = happySpecReduce_1  138# happyReduction_330
+happyReduction_330 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (ConId happy_var_1) -> 
+	happyIn142
+		 (HsIdent happy_var_1
+	)}
+
+happyReduce_331 = happySpecReduce_1  139# happyReduction_331
+happyReduction_331 happy_x_1
+	 =  case happyOut144 happy_x_1 of { happy_var_1 -> 
+	happyIn143
+		 (UnQual happy_var_1
+	)}
+
+happyReduce_332 = happySpecReduce_1  139# happyReduction_332
+happyReduction_332 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (QConSym happy_var_1) -> 
+	happyIn143
+		 (Qual (Module (fst happy_var_1)) (HsSymbol (snd happy_var_1))
+	)}
+
+happyReduce_333 = happySpecReduce_1  140# happyReduction_333
+happyReduction_333 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (ConSym happy_var_1) -> 
+	happyIn144
+		 (HsSymbol happy_var_1
+	)}
+
+happyReduce_334 = happySpecReduce_1  141# happyReduction_334
+happyReduction_334 happy_x_1
+	 =  case happyOut147 happy_x_1 of { happy_var_1 -> 
+	happyIn145
+		 (UnQual happy_var_1
+	)}
+
+happyReduce_335 = happySpecReduce_1  141# happyReduction_335
+happyReduction_335 happy_x_1
+	 =  case happyOut149 happy_x_1 of { happy_var_1 -> 
+	happyIn145
+		 (happy_var_1
+	)}
+
+happyReduce_336 = happySpecReduce_1  142# happyReduction_336
+happyReduction_336 happy_x_1
+	 =  case happyOut148 happy_x_1 of { happy_var_1 -> 
+	happyIn146
+		 (UnQual happy_var_1
+	)}
+
+happyReduce_337 = happySpecReduce_1  142# happyReduction_337
+happyReduction_337 happy_x_1
+	 =  case happyOut149 happy_x_1 of { happy_var_1 -> 
+	happyIn146
+		 (happy_var_1
+	)}
+
+happyReduce_338 = happySpecReduce_1  143# happyReduction_338
+happyReduction_338 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (VarSym happy_var_1) -> 
+	happyIn147
+		 (HsSymbol happy_var_1
+	)}
+
+happyReduce_339 = happySpecReduce_1  143# happyReduction_339
+happyReduction_339 happy_x_1
+	 =  happyIn147
+		 (HsSymbol "-"
+	)
+
+happyReduce_340 = happySpecReduce_1  143# happyReduction_340
+happyReduction_340 happy_x_1
+	 =  happyIn147
+		 (HsSymbol "!"
+	)
+
+happyReduce_341 = happySpecReduce_1  144# happyReduction_341
+happyReduction_341 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (VarSym happy_var_1) -> 
+	happyIn148
+		 (HsSymbol happy_var_1
+	)}
+
+happyReduce_342 = happySpecReduce_1  144# happyReduction_342
+happyReduction_342 happy_x_1
+	 =  happyIn148
+		 (HsSymbol "!"
+	)
+
+happyReduce_343 = happySpecReduce_1  145# happyReduction_343
+happyReduction_343 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (QVarSym happy_var_1) -> 
+	happyIn149
+		 (Qual (Module (fst happy_var_1)) (HsSymbol (snd happy_var_1))
+	)}
+
+happyReduce_344 = happySpecReduce_1  146# happyReduction_344
+happyReduction_344 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (IntTok happy_var_1) -> 
+	happyIn150
+		 (HsInt happy_var_1
+	)}
+
+happyReduce_345 = happySpecReduce_1  146# happyReduction_345
+happyReduction_345 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (Character happy_var_1) -> 
+	happyIn150
+		 (HsChar happy_var_1
+	)}
+
+happyReduce_346 = happySpecReduce_1  146# happyReduction_346
+happyReduction_346 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (FloatTok happy_var_1) -> 
+	happyIn150
+		 (HsFrac happy_var_1
+	)}
+
+happyReduce_347 = happySpecReduce_1  146# happyReduction_347
+happyReduction_347 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (StringTok happy_var_1) -> 
+	happyIn150
+		 (HsString happy_var_1
+	)}
+
+happyReduce_348 = happyMonadReduce 0# 147# happyReduction_348
+happyReduction_348 (happyRest) tk
+	 = happyThen (( getSrcLoc)
+	) (\r -> happyReturn (happyIn151 r))
+
+happyReduce_349 = happyMonadReduce 0# 148# happyReduction_349
+happyReduction_349 (happyRest) tk
+	 = happyThen (( pushCurrentContext)
+	) (\r -> happyReturn (happyIn152 r))
+
+happyReduce_350 = happySpecReduce_1  149# happyReduction_350
+happyReduction_350 happy_x_1
+	 =  happyIn153
+		 (()
+	)
+
+happyReduce_351 = happyMonadReduce 1# 149# happyReduction_351
+happyReduction_351 (happy_x_1 `HappyStk`
+	happyRest) tk
+	 = happyThen (( popContext)
+	) (\r -> happyReturn (happyIn153 r))
+
+happyReduce_352 = happySpecReduce_1  150# happyReduction_352
+happyReduction_352 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (ConId happy_var_1) -> 
+	happyIn154
+		 (Module happy_var_1
+	)}
+
+happyReduce_353 = happySpecReduce_1  150# happyReduction_353
+happyReduction_353 happy_x_1
+	 =  case happyOutTok happy_x_1 of { (QConId happy_var_1) -> 
+	happyIn154
+		 (Module (fst happy_var_1 ++ '.':snd happy_var_1)
+	)}
+
+happyReduce_354 = happySpecReduce_1  151# happyReduction_354
+happyReduction_354 happy_x_1
+	 =  case happyOut142 happy_x_1 of { happy_var_1 -> 
+	happyIn155
+		 (happy_var_1
+	)}
+
+happyReduce_355 = happySpecReduce_1  152# happyReduction_355
+happyReduction_355 happy_x_1
+	 =  case happyOut142 happy_x_1 of { happy_var_1 -> 
+	happyIn156
+		 (happy_var_1
+	)}
+
+happyReduce_356 = happySpecReduce_1  153# happyReduction_356
+happyReduction_356 happy_x_1
+	 =  case happyOut141 happy_x_1 of { happy_var_1 -> 
+	happyIn157
+		 (happy_var_1
+	)}
+
+happyReduce_357 = happySpecReduce_1  154# happyReduction_357
+happyReduction_357 happy_x_1
+	 =  case happyOut141 happy_x_1 of { happy_var_1 -> 
+	happyIn158
+		 (happy_var_1
+	)}
+
+happyReduce_358 = happySpecReduce_1  155# happyReduction_358
+happyReduction_358 happy_x_1
+	 =  case happyOut140 happy_x_1 of { happy_var_1 -> 
+	happyIn159
+		 (happy_var_1
+	)}
+
+happyNewToken action sts stk
+	= lexer(\tk -> 
+	let cont i = happyDoAction i tk action sts stk in
+	case tk of {
+	EOF -> happyDoAction 74# tk action sts stk;
+	VarId happy_dollar_dollar -> cont 1#;
+	QVarId happy_dollar_dollar -> cont 2#;
+	ConId happy_dollar_dollar -> cont 3#;
+	QConId happy_dollar_dollar -> cont 4#;
+	VarSym happy_dollar_dollar -> cont 5#;
+	ConSym happy_dollar_dollar -> cont 6#;
+	QVarSym happy_dollar_dollar -> cont 7#;
+	QConSym happy_dollar_dollar -> cont 8#;
+	IntTok happy_dollar_dollar -> cont 9#;
+	FloatTok happy_dollar_dollar -> cont 10#;
+	Character happy_dollar_dollar -> cont 11#;
+	StringTok happy_dollar_dollar -> cont 12#;
+	LeftParen -> cont 13#;
+	RightParen -> cont 14#;
+	SemiColon -> cont 15#;
+	LeftCurly -> cont 16#;
+	RightCurly -> cont 17#;
+	VRightCurly -> cont 18#;
+	LeftSquare -> cont 19#;
+	RightSquare -> cont 20#;
+	Comma -> cont 21#;
+	Underscore -> cont 22#;
+	BackQuote -> cont 23#;
+	DotDot -> cont 24#;
+	Colon -> cont 25#;
+	DoubleColon -> cont 26#;
+	Equals -> cont 27#;
+	Backslash -> cont 28#;
+	Bar -> cont 29#;
+	LeftArrow -> cont 30#;
+	RightArrow -> cont 31#;
+	At -> cont 32#;
+	Tilde -> cont 33#;
+	DoubleArrow -> cont 34#;
+	LeftArrowTail -> cont 35#;
+	RightArrowTail -> cont 36#;
+	LeftArrowDTail -> cont 37#;
+	RightArrowDTail -> cont 38#;
+	LeftBanana -> cont 39#;
+	RightBanana -> cont 40#;
+	Minus -> cont 41#;
+	Exclamation -> cont 42#;
+	KW_Case -> cont 43#;
+	KW_Class -> cont 44#;
+	KW_Data -> cont 45#;
+	KW_Default -> cont 46#;
+	KW_Deriving -> cont 47#;
+	KW_Do -> cont 48#;
+	KW_Else -> cont 49#;
+	KW_Foreign -> cont 50#;
+	KW_If -> cont 51#;
+	KW_Import -> cont 52#;
+	KW_In -> cont 53#;
+	KW_Infix -> cont 54#;
+	KW_InfixL -> cont 55#;
+	KW_InfixR -> cont 56#;
+	KW_Instance -> cont 57#;
+	KW_Let -> cont 58#;
+	KW_Module -> cont 59#;
+	KW_NewType -> cont 60#;
+	KW_Of -> cont 61#;
+	KW_Then -> cont 62#;
+	KW_Type -> cont 63#;
+	KW_Where -> cont 64#;
+	KW_As -> cont 65#;
+	KW_Export -> cont 66#;
+	KW_Hiding -> cont 67#;
+	KW_Qualified -> cont 68#;
+	KW_Safe -> cont 69#;
+	KW_Unsafe -> cont 70#;
+	KW_Proc -> cont 71#;
+	KW_Rec -> cont 72#;
+	KW_Cmd -> cont 73#;
+	_ -> 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
+
+parse = happySomeParser where
+  happySomeParser = happyThen (happyParse 0#) (\x -> happyReturn (happyOut4 x))
+
+happySeq = happyDontSeq
+
+
+happyError :: P a
+happyError = fail "Parse error"
+
+-- | Parse of a string, which should contain a complete Haskell 98 module.
+parseModule :: String -> ParseResult HsModule
+parseModule = runParser parse
+
+-- | Parse of a string, which should contain a complete Haskell 98 module.
+parseModuleWithMode :: ParseMode -> String -> ParseResult HsModule
+parseModuleWithMode mode = runParserWithMode mode parse
+{-# LINE 1 "GenericTemplate.hs" #-}
+{-# LINE 1 "<built-in>" #-}
+{-# LINE 1 "<command line>" #-}
+{-# LINE 1 "GenericTemplate.hs" #-}
+-- Id: GenericTemplate.hs,v 1.26 2005/01/14 14:47:22 simonmar Exp 
+
+{-# LINE 28 "GenericTemplate.hs" #-}
+
+
+data Happy_IntList = HappyCons Int# Happy_IntList
+
+
+
+
+
+{-# LINE 49 "GenericTemplate.hs" #-}
+
+{-# LINE 59 "GenericTemplate.hs" #-}
+
+{-# LINE 68 "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 | (n <# (0# :: Int#)) -> {- nothing -}
+
+				     (happyReduceArr ! rule) i tk st
+				     where rule = (I# ((negateInt# ((n +# (1# :: Int#))))))
+		n		  -> {- nothing -}
+
+
+				     happyShift new_state i tk st
+				     where new_state = (n -# (1# :: Int#))
+   where off    = indexShortOffAddr happyActOffsets st
+	 off_i  = (off +# i)
+	 check  = if (off_i >=# (0# :: Int#))
+			then (indexShortOffAddr happyCheck off_i ==#  i)
+			else False
+ 	 action | check     = indexShortOffAddr happyTable off_i
+		| otherwise = indexShortOffAddr happyDefActions st
+
+{-# LINE 127 "GenericTemplate.hs" #-}
+
+
+indexShortOffAddr (HappyA# arr) off =
+#if __GLASGOW_HASKELL__ > 500
+	narrow16Int# i
+#elif __GLASGOW_HASKELL__ == 500
+	intToInt16# i
+#else
+	(i `iShiftL#` 16#) `iShiftRA#` 16#
+#endif
+  where
+#if __GLASGOW_HASKELL__ >= 503
+	i = word2Int# ((high `uncheckedShiftL#` 8#) `or#` low)
+#else
+	i = word2Int# ((high `shiftL#` 8#) `or#` low)
+#endif
+	high = int2Word# (ord# (indexCharOffAddr# arr (off' +# 1#)))
+	low  = int2Word# (ord# (indexCharOffAddr# arr off'))
+	off' = off *# 2#
+
+
+
+
+
+data HappyAddr = HappyA# Addr#
+
+
+
+
+-----------------------------------------------------------------------------
+-- HappyState data type (not arrays)
+
+{-# LINE 170 "GenericTemplate.hs" #-}
+
+-----------------------------------------------------------------------------
+-- Shifting a token
+
+happyShift new_state 0# tk st sts stk@(x `HappyStk` _) =
+     let i = (case unsafeCoerce# x of { (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 -# (1# :: 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 =
+        happyThen1 (fn stk tk) (\r -> happyGoto nt j tk st1 sts1 (r `HappyStk` drop_stk))
+       where sts1@((HappyCons (st1@(action)) (_))) = happyDrop k (HappyCons (st) (sts))
+             drop_stk = happyDropStk k 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 =
+       happyThen1 (fn stk tk) (\r -> happyNewToken new_state sts1 (r `HappyStk` drop_stk))
+       where sts1@((HappyCons (st1@(action)) (_))) = happyDrop k (HappyCons (st) (sts))
+             drop_stk = happyDropStk k stk
+
+             off    = indexShortOffAddr happyGotoOffsets st1
+             off_i  = (off +# nt)
+             new_state = indexShortOffAddr happyTable off_i
+
+
+
+
+happyDrop 0# l = l
+happyDrop n (HappyCons (_) (t)) = happyDrop (n -# (1# :: Int#)) t
+
+happyDropStk 0# l = l
+happyDropStk n (x `HappyStk` xs) = happyDropStk (n -# (1#::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 +# 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 =
+--	trace "failing" $ 
+    	happyError_ 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 ( (unsafeCoerce# (I# (i))) `HappyStk` stk)
+
+-- Internal happy errors:
+
+notHappyAtAll = error "Internal Happy error\n"
+
+-----------------------------------------------------------------------------
+-- Hack to get the typechecker to accept our action functions
+
+
+happyTcHack :: 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.
diff --git a/preprocessor/ArrCode.lhs b/preprocessor/ArrCode.lhs
new file mode 100644
--- /dev/null
+++ b/preprocessor/ArrCode.lhs
@@ -0,0 +1,240 @@
+> module ArrCode(
+>	Arrow,
+>	bind, anon,
+>	arr, arrLet, (>>>), arrowExp, applyOp, infixOp, (|||), first,
+>	VarDecl(VarDecl), letCmd,
+>	context, anonArgs, toHaskell,
+>	components,
+>	Tuple,
+>	isEmptyTuple, unionTuple, minusTuple, intersectTuple,
+>	patternTuple, expTuple,
+>	returnA_exp, arr_exp, compose_op, choice_op, first_exp,
+>	left_exp, right_exp, app_exp, loop_exp
+> ) where
+
+> import Utils
+
+> import Data.Set (Set)
+> import qualified Data.Set as Set
+> import Language.Haskell.Syntax
+
+> data Arrow = Arrow {
+>		code :: Code,
+>		context :: Tuple, -- named input components used by the arrow
+>		anonArgs :: Int   -- number of unnamed arguments
+>	}
+
+> data VarDecl a = VarDecl SrcLoc HsName a
+>	deriving (Eq,Show)
+
+> instance Functor VarDecl where
+>	fmap f (VarDecl loc name a) = VarDecl loc name (f a)
+
+> data Code
+>	= ReturnA			-- returnA = arr id
+>	| Arr Int HsPat [Binding] HsExp	-- arr (first^n (\p -> ... e))
+>	| Compose Code [Code] Code	-- composition of 2 or more elts
+>	| Op HsExp [Code]		-- combinator applied to arrows
+>	| InfixOp Code HsQOp Code
+>	| Let [VarDecl Code] Code
+
+> data Binding = BindLet [HsDecl] | BindCase HsPat HsExp
+
+-----------------------------------------------------------------------------
+Arrow constants
+
+> compose_op, choice_op :: HsQOp
+> returnA_exp, arr_exp, first_exp :: HsExp
+> left_exp, right_exp, app_exp, loop_exp :: HsExp
+
+> returnA_exp	= HsVar (UnQual (HsIdent "returnA"))
+> arr_exp	= HsVar (UnQual (HsIdent "arr"))
+> compose_op	= HsQVarOp (UnQual (HsSymbol ">>>"))
+> choice_op	= HsQVarOp (UnQual (HsSymbol "|||"))
+> first_exp	= HsVar (UnQual (HsIdent "first"))
+> left_exp	= HsCon (UnQual (HsIdent "Left"))
+> right_exp	= HsCon (UnQual (HsIdent "Right"))
+> app_exp	= HsVar (UnQual (HsIdent "app"))
+> loop_exp	= HsVar (UnQual (HsIdent "loop"))
+
+-----------------------------------------------------------------------------
+Arrow constructors
+
+> bind :: Set HsName -> Arrow -> Arrow
+> bind vars a = a {
+>		context = context a `minusTuple` vars
+>	}
+
+> anon :: Int -> Arrow -> Arrow
+> anon anonCount a = a {
+>		anonArgs = anonArgs a + anonCount
+>	}
+
+> arr :: Int -> Tuple -> HsPat -> HsExp -> Arrow
+> arr anons t p e = Arrow {
+>		code = if same p e then ReturnA else Arr anons p [] e,
+>		context = t `intersectTuple` freeVars e,
+>		anonArgs = anons
+>	}
+>	where	same :: HsPat -> HsExp -> Bool
+>		same (HsPApp n1 []) (HsCon n2) = n1 == n2
+>		same (HsPVar n1) (HsVar n2) = UnQual n1 == n2
+>		same (HsPTuple ps) (HsTuple es) =
+>			length ps == length es && and (zipWith same ps es)
+>		same (HsPAsPat n p) e = e == HsVar (UnQual n) || same p e
+>		same (HsPParen p) e = same p e
+>		same p (HsParen e) = same p e
+>		same _ _ = False	-- other cases don't arise
+
+> arrLet :: Int -> Tuple -> HsPat -> [HsDecl] -> HsExp -> Arrow
+> arrLet anons t p ds e = Arrow {
+>		code = Arr anons p [BindLet ds] e,
+>		context = t `intersectTuple` vs,
+>		anonArgs = anons
+>	}
+>	where	vs = (freeVars e `Set.union` freeVars ds)
+>				`Set.difference` definedVars ds
+
+> (>>>) :: Arrow -> Arrow -> Arrow
+> a1 >>> a2 = a1 { code = compose (code a1) (code a2) }
+
+> arrowExp :: HsExp -> Arrow
+> arrowExp e = Arrow {
+>		code = if e == returnA_exp then ReturnA else Op e [],
+>		context = emptyTuple,
+>		anonArgs = 0
+>	}
+
+> applyOp :: HsExp -> [Arrow] -> Arrow
+> applyOp e as = Arrow {
+>		code = Op e (map code as),
+>		context = foldr unionTuple emptyTuple (map context as),
+>		anonArgs = 0	-- BUG: see below
+>	}
+
+Setting anonArgs to 0 for infixOp is incorrect, but we can't know the
+correct value without types.
+
+> infixOp :: Arrow -> HsQOp -> Arrow -> Arrow
+> infixOp a1 op a2 = Arrow {
+>		code = InfixOp (code a1) op (code a2),
+>		context = context a1 `unionTuple` context a2,
+>		anonArgs = 0	-- BUG: as above
+>	}
+
+> first :: Arrow -> Tuple -> Arrow
+> first a ps = Arrow {
+>		code = Op first_exp [code a],
+>		context = context a `unionTuple` ps,
+>		anonArgs = 0
+>	}
+
+> (|||) :: Arrow -> Arrow -> Arrow
+> a1 ||| a2 = Arrow {
+>		code = InfixOp (code a1) choice_op (code a2),
+>		context = context a1 `unionTuple` context a2,
+>		anonArgs = 0
+>	}
+
+> letCmd :: [VarDecl Arrow] -> Arrow -> Arrow
+> letCmd defs a = Arrow {
+>		code = Let (map (fmap code) defs) (code a),
+>		context = context a,
+>		anonArgs = anonArgs a
+>	}
+
+Composition, with some simplification
+
+> compose :: Code -> Code -> Code
+> compose ReturnA a = a
+> compose a ReturnA = a
+> compose a1@(Arr n1 p1 ds1 e1) a2@(Arr n2 p2 ds2 e2)
+>	| n1 /= n2 = Compose a1 [] a2	-- could do better, but can this arise?
+>	| same p2 e1 = Arr n1 p1 (ds1 ++ ds2) e2
+>	| otherwise = Arr n1 p1 (ds1 ++ BindCase p2 e1:ds2) e2
+>	where	same :: HsPat -> HsExp -> Bool
+>		same (HsPApp n1 []) (HsCon n2) = n1 == n2
+>		same (HsPVar n1) (HsVar n2) = UnQual n1 == n2
+>		same (HsPTuple ps) (HsTuple es) =
+>			length ps == length es && and (zipWith same ps es)
+>		same (HsPParen p) e = same p e
+>		same p (HsParen e) = same p e
+>		same _ _ = False	-- other cases don't arise
+> compose (Compose f1 as1 g1) (Compose f2 as2 g2) =
+>	Compose f1 (as1 ++ (compose g1 f2 : as2)) g2
+> compose a (Compose f bs g) =
+>	Compose (compose a f) bs g
+> compose (Compose f as g) b =
+>	Compose f as (compose g b)
+> compose a1 a2 =
+>	Compose a1 [] a2
+
+-----------------------------------------------------------------------------
+Conversion to Haskell
+
+> toHaskell :: Arrow -> HsExp
+> toHaskell = toHaskellCode . code
+
+> toHaskellCode :: Code -> HsExp
+> toHaskellCode ReturnA =
+>	returnA_exp
+> toHaskellCode (Arr n p bs e) =
+>	HsApp arr_exp
+>		(times n (HsParen . HsApp first_exp) body)
+>	where	body = HsParen (HsLambda undefined [p] (foldr addBinding e bs))
+>		addBinding :: Binding -> HsExp -> HsExp
+>		addBinding (BindLet ds) e = HsLet ds e
+>		addBinding (BindCase p e) e' =
+>			HsCase e [HsAlt undefined p (HsUnGuardedAlt e') []]
+> toHaskellCode (Compose f as g) =
+>	foldr comp (toHaskellArg g) (map toHaskellArg (f:as))
+>	where	comp f g = HsInfixApp f compose_op g
+> toHaskellCode (Op op as) =
+>	foldl HsApp op (map (paren . toHaskellCode) as)
+> toHaskellCode (InfixOp a1 op a2) =
+>	HsInfixApp (toHaskellArg a1) op (toHaskellArg a2)
+> toHaskellCode (Let nas a) =
+>	HsLet (map toHaskellDecl nas) (toHaskellCode a)
+>	where	toHaskellDecl (VarDecl loc n a) =
+>			HsPatBind loc (HsPVar n)
+>				(HsUnGuardedRhs (toHaskellCode a)) []
+
+> toHaskellArg :: Code -> HsExp
+> toHaskellArg a = parenInfixArg (toHaskellCode a)
+
+-----------------------------------------------------------------------------
+Tuples, representing sets of variables.
+
+> newtype Tuple = Tuple (Set HsName)
+
+Tuple extractors, including matching expression and pattern.
+
+> isEmptyTuple :: Tuple -> Bool
+> isEmptyTuple (Tuple t) = Set.null t
+
+> patternTuple :: Tuple -> HsPat
+> patternTuple (Tuple t) = tupleP (map HsPVar (Set.toList t))
+
+> expTuple :: Tuple -> HsExp
+> expTuple (Tuple t) = tuple (map (HsVar . UnQual) (Set.toList t))
+
+Operations on tuples
+
+> emptyTuple :: Tuple
+> emptyTuple = Tuple Set.empty
+
+> unionTuple :: Tuple -> Tuple -> Tuple
+> unionTuple (Tuple a) (Tuple b) = Tuple (a `Set.union` b)
+
+Remove all usages of a set of variables.
+
+> minusTuple :: Tuple -> Set HsName -> Tuple
+> Tuple t `minusTuple` vs = Tuple (t `Set.difference` vs)
+
+> intersectTuple :: Tuple -> Set HsName -> Tuple
+> Tuple t `intersectTuple` vs = Tuple (t `Set.intersection` vs)
+
+The variable components of a pattern.
+
+> components :: HsPat -> Tuple
+> components p = Tuple (freeVars p)
diff --git a/preprocessor/ArrSyn.lhs b/preprocessor/ArrSyn.lhs
new file mode 100644
--- /dev/null
+++ b/preprocessor/ArrSyn.lhs
@@ -0,0 +1,302 @@
+Additional abstract syntax for arrow expressions
+
+> module ArrSyn(
+>	Cmd(..),
+>	Stmts, Stmt(..), CmdDecl, VarDecl(..),
+>	Alt(..), GuardedAlts(..), GuardedAlt(..),
+>	translate	-- :: HsPat -> Cmd -> HsExp
+> ) where
+
+> import ArrCode
+> import State		-- Haskell 98 version of Control.Monad.State
+> import Utils
+
+> import Data.List(mapAccumL)
+> import Data.Map (Map)
+> import qualified Data.Map as Map
+> import Data.Set (Set)
+> import qualified Data.Set as Set
+> import Language.Haskell.Syntax
+
+> data Cmd
+>	= Input HsExp HsExp
+>	| Kappa SrcLoc [HsPat] Cmd
+>	| Op HsExp [Cmd]
+>	| InfixOp Cmd HsQOp Cmd
+>	| Let [HsDecl] Cmd
+>	| LetCmd (VarDecl Cmd) Cmd
+>	| If HsExp Cmd Cmd
+>	| Case HsExp [Alt]
+>	| Paren Cmd
+>	| Do [Stmt] Cmd
+>	| App Cmd HsExp
+>	| CmdVar HsName
+>   deriving (Eq,Show)
+
+> type CmdDecl = (HsName, Cmd)
+> type Stmts = ([Stmt], Cmd)
+
+> data Stmt
+>	= Generator SrcLoc HsPat Cmd
+>	| RecStmt [Stmt]
+>	| LetStmt [HsDecl]
+>	| LetCmdStmt (VarDecl Cmd)
+>   deriving (Eq,Show)
+
+> data Alt
+>	= Alt SrcLoc HsPat GuardedAlts [HsDecl]
+>   deriving (Eq,Show)
+
+> data GuardedAlts
+>	= UnGuardedAlt Cmd
+>	| GuardedAlts [GuardedAlt]
+>   deriving (Eq,Show)
+
+> data GuardedAlt
+>	= GuardedAlt SrcLoc HsExp Cmd
+>   deriving (Eq,Show)
+
+-----------------------------------------------------------------------------
+Utilities
+
+> pair :: HsExp -> HsExp -> HsExp
+> pair e1 e2 = HsTuple [e1, e2]
+
+Turn redefined variables into wildcards, so the new pattern will be legal.
+
+> pairP :: HsPat -> HsPat -> HsPat
+> pairP p1 p2 = HsPTuple [hide p1, p2]
+>	where	vs = freeVars p2
+>		hide p@(HsPVar n)
+>			| n `Set.member` vs = HsPWildCard
+>			| otherwise = p
+>		hide (HsPNeg p) = HsPNeg (hide p)
+>		hide (HsPInfixApp p1 n p2) = HsPInfixApp (hide p1) n (hide p2)
+>		hide (HsPApp n ps) = HsPApp n (map hide ps)
+>		hide (HsPTuple ps) = HsPTuple (map hide ps)
+>		hide (HsPList ps) = HsPList (map hide ps)
+>		hide (HsPParen p) = HsPParen (hide p)
+>		hide (HsPRec n pfs) = HsPRec n (map hideField pfs)
+>			where	hideField (HsPFieldPat f p) =
+>					HsPFieldPat f (hide p)
+>		hide (HsPAsPat n p)
+>			| n `Set.member` vs = hide p
+>			| otherwise = HsPAsPat n (hide p)
+>		hide (HsPIrrPat p) = HsPIrrPat (hide p)
+>		hide p = p
+
+> left, right :: HsExp -> HsExp
+> left f = HsApp left_exp (paren f)
+> right f = HsApp right_exp (paren f)
+
+> loop :: Arrow -> Arrow
+> loop f = applyOp loop_exp [f]
+
+> app, returnA :: Arrow
+> app = arrowExp app_exp
+> returnA = arrowExp returnA_exp
+
+> returnCmd :: HsExp -> Cmd
+> returnCmd = Input returnA_exp
+
+-----------------------------------------------------------------------------
+Translation state
+
+> data TransState = TransState {
+>	locals :: Set HsName,	-- vars in scope defined in this proc
+>	input :: Tuple,		-- input components accessible here
+>	cmdVars :: Map HsName Arrow
+> }
+ 
+> startPattern :: HsPat -> (TransState, HsPat)
+> startPattern p =
+>	(TransState {
+>		locals = freeVars p,
+>		input = components p,
+>		cmdVars = Map.empty
+>	 }, p)
+
+> class AddVars a where
+>	addVars :: TransState -> a -> (TransState, a)
+
+> instance AddVars a => AddVars [a] where
+>	addVars = mapAccumL addVars
+
+> instance AddVars HsPat where
+>	addVars s p =
+>		(s {
+>			locals = locals s `Set.union` freeVars p,
+>			input = input s `unionTuple` components p
+>		 }, p)
+
+> instance AddVars HsDecl where
+>	addVars s d@(HsFunBind (HsMatch _ n _ _ _:_)) =
+>		(s', d)
+>		where	(s', _) = addVars s (HsPVar n)
+>	addVars s (HsPatBind loc p rhs decls) =
+>		(s', HsPatBind loc p' rhs decls)
+>		where	(s', p') = addVars s p
+>	addVars s d = (s, d)
+
+-----------------------------------------------------------------------------
+Translation to Haskell
+
+This is a 2-phase process:
+- transCmd generates an abstract arrow combinator language represented
+  by the Arrow type, and
+- toHaskell turns that into Haskell.
+
+> translate :: HsPat -> Cmd -> HsExp
+> translate p c = paren (toHaskell (transCmd s p' c))
+>	where	(s, p') = startPattern p
+
+The pattern argument is often pseudo-recursively defined in terms of
+the context part of the result of these functions.  (It's not real
+recursion, because that part is independent of the pattern.)
+
+> transCmd :: TransState -> HsPat -> Cmd -> Arrow
+> transCmd s p (Input f e)
+>	| Set.null (freeVars f `Set.intersection` locals s) =
+>		arr 0 (input s) p e >>> arrowExp f
+>	| otherwise =
+>		arr 0 (input s) p (pair f e) >>> app
+> transCmd s p (Kappa _ ps c) =
+>	anon (length ps) $ bind (freeVars ps) $
+>		transCmd s' (foldl pairP p ps') c
+>	where	(s', ps') = addVars s ps
+> transCmd s p (Op op cs) =
+>	applyOp op (map (transCmd s p) cs)
+> transCmd s p (InfixOp c1 op c2) =
+>	infixOp (transCmd s p c1) op (transCmd s p c2)
+> transCmd s p (Let decls c) =
+>	arrLet (anonArgs a) (input s) p decls' e >>> a
+>	where	(s', decls') = addVars s decls
+>		(e, a) = transTrimCmd s' c
+> transCmd s p (If e c1 c2) =
+>	arr 0 (input s) p (HsIf e (left e1) (right e2)) >>> (a1 ||| a2)
+>	where	(e1, a1) = transTrimCmd s c1
+>		(e2, a2) = transTrimCmd s c2
+> transCmd s p (Case e as) =
+>	transCase s p e as
+> transCmd s p (Paren c) =
+>	transCmd s p c
+> transCmd s p (Do ss c) =
+>	transDo s p ss c
+> transCmd s p (App c arg) =
+>	anon (-1) $
+>	arr (anonArgs a) (input s) p (pair e arg) >>> a
+>	where	(e, a) = transTrimCmd s c
+
+The following awful hack is there because if the command is recursively
+defined, computation of its context will not terminate.  So we plug in
+returnA (empty context) to get an arrow whose code is ignored in the
+recomputation of the real arrow for a1.
+Mutually recursive bindings will be a bit more tricky.
+
+> transCmd s p (LetCmd (VarDecl loc n c1) c2) =
+>	letCmd [VarDecl loc n a1] (transCmd s' p c2)
+>	where	(_, a1) = transTrimCmd s' c1
+>		s' = s { cmdVars = Map.insert n a0 (cmdVars s) }
+>		s0 = s { cmdVars = Map.insert n returnA (cmdVars s) }
+>		a0 = transCmd s0 p c1	-- hackety hack
+> transCmd s p (CmdVar n) =
+>	arr (anonArgs a) (input s) p e >>> arrowExp (HsVar (UnQual n))
+>	where	Just a = Map.lookup n (cmdVars s)
+>		e = expTuple (context a)
+
+Like TransCmd, but use the minimal input pattern.  The first component
+of the result is the matching expression to build this input.
+That is, the result is (e, proc p' -> c) with the minimal p' such that
+
+	proc p -> c = arr (first^n (p -> e)) >>> (proc p' -> c)
+
+where n is the number of anonymous arguments taken by c.
+
+> transTrimCmd :: TransState -> Cmd -> (HsExp, Arrow)
+> transTrimCmd s c = (expTuple (context a), a)
+>	where	a = transCmd s (patternTuple (context a)) c
+
+> transDo :: TransState -> HsPat -> [Stmt] -> Cmd -> Arrow
+> transDo s p [] c =
+>	transCmd s p c
+> transDo s p (Generator _ pg cg:ss) c =
+>	if isEmptyTuple u then
+>		transCmd s p cg >>> transDo s' pg ss c
+>	else
+>		arr 0 (input s) p (pair eg (expTuple u)) >>> first ag u >>> a
+>	where	(s', pg') = addVars s pg
+>		a = bind (freeVars pg)
+>			(transDo s' (pairP pg' (patternTuple u)) ss c)
+>		u = context a
+>		(eg, ag) = transTrimCmd s cg
+> transDo s p (LetStmt decls:ss) c =
+>	transCmd s p (Let decls (Do ss c))
+> transDo s p (RecStmt rss:ss) c =
+>	bind defined
+>		(loop (transDo s' (pairP p (irrPat (patternTuple feedback)))
+>			rss'
+>			(returnCmd (pair output (expTuple feedback)))
+>		      ) >>> a)
+>	where	defined = definedVars rss
+>		(s', rss') = addVars s rss
+>		(output, a) = transTrimCmd s' (Do ss c)
+>		feedback = context (transDo s' p rss'
+>				(returnCmd (foldr pair output $ map (HsVar . UnQual) $ Set.toList defined)))
+>			`intersectTuple` defined
+> transDo s p (LetCmdStmt vdecl:ss) c =
+>	transCmd s p (LetCmd vdecl (Do ss c))
+
+The set of variables defined by a list of statements in a rec.
+
+> instance DefinedVars Stmt where
+>	definedVars (Generator _ p _) = freeVars p
+>	definedVars (LetStmt decls) = definedVars decls
+>	definedVars (RecStmt stmts) = definedVars stmts
+>	definedVars (LetCmdStmt _vdecl) = Set.empty
+
+> instance AddVars Stmt where
+>	addVars s (Generator loc p c) =
+>		(s', Generator loc p' c)
+>		where	(s', p') = addVars s p
+>	addVars s (LetStmt decls) =
+>		(s', LetStmt decls')
+>		where	(s', decls') = addVars s decls
+>	addVars s (RecStmt stmts) =
+>		(s', RecStmt stmts')
+>		where	(s', stmts') = addVars s stmts
+>	addVars s stmt@(LetCmdStmt _vdecl) =
+>		(s, stmt)
+
+Translation of case commands uses a right-nested sum,
+corresponding to the right-associativity of (|||).
+(In future: use a balanced sum.)
+
+The state kept while traversing the expression is
+	(count of rhss, rhss in reverse order)
+
+> transCase :: TransState -> HsPat -> HsExp -> [Alt] -> Arrow
+> transCase s p e as =
+>	arr 0 (input s) p (HsCase e as') >>> foldr1 (|||) (reverse cases)
+>	where	(as', (ncases, cases)) =
+>			runState (mapM (transAlt s) as) (0, [])
+>		transAlt s (Alt loc p gas decls) = do
+>			let	(s', p') = addVars s p
+>				(s'', decls') = addVars s' decls
+>			gas' <- transGuardedAlts s'' gas
+>			return (HsAlt loc p' gas' decls')
+>		transGuardedAlts s (UnGuardedAlt c) = do
+>			body <- newAlt s c
+>			return (HsUnGuardedAlt body)
+>		transGuardedAlts s (GuardedAlts gas) = do
+>			gas' <- mapM (transGuardedAlt s) gas
+>			return (HsGuardedAlts gas')
+>		transGuardedAlt s (GuardedAlt loc e c) = do
+>			body <- newAlt s c
+>			return (HsGuardedAlt loc e body)
+>		newAlt s c = do
+>			let (e, a) = transTrimCmd s c
+>			(n, as) <- get
+>			put (n+1, a:as)
+>			return (label n e)
+>		label n e = times n right
+>				(if n < ncases-1 then left e else e)
diff --git a/preprocessor/Lexer.hs b/preprocessor/Lexer.hs
new file mode 100644
--- /dev/null
+++ b/preprocessor/Lexer.hs
@@ -0,0 +1,564 @@
+-- #hide
+-----------------------------------------------------------------------------
+-- |
+-- Module      :  Lexer
+-- Copyright   :  (c) The GHC Team, 1997-2000
+-- License     :  BSD-style (see the file libraries/base/LICENSE)
+-- 
+-- Maintainer  :  libraries@haskell.org
+-- Stability   :  experimental
+-- Portability :  portable
+--
+-- Lexer for Haskell.
+--
+-----------------------------------------------------------------------------
+
+-- ToDo: Introduce different tokens for decimal, octal and hexadecimal (?)
+-- ToDo: FloatTok should have three parts (integer part, fraction, exponent) (?)
+-- ToDo: Use a lexical analyser generator (lx?)
+
+module Lexer (Token(..), lexer) where
+
+import Language.Haskell.ParseMonad
+
+import Data.Char	(isAlpha, isLower, isUpper, toLower,
+			 isDigit, isHexDigit, isOctDigit, isSpace,
+			 ord, chr, digitToInt)
+import Data.Ratio
+
+data Token
+        = VarId String
+        | QVarId (String,String)
+	| ConId String
+        | QConId (String,String)
+        | VarSym String
+        | ConSym String
+        | QVarSym (String,String)
+        | QConSym (String,String)
+	| IntTok Integer
+	| FloatTok Rational
+	| Character Char
+        | StringTok String
+
+-- Symbols
+
+	| LeftParen
+	| RightParen
+	| SemiColon
+        | LeftCurly
+        | RightCurly
+        | VRightCurly			-- a virtual close brace
+        | LeftSquare
+        | RightSquare
+	| Comma
+        | Underscore
+        | BackQuote
+
+-- Reserved operators
+
+	| DotDot
+	| Colon
+	| DoubleColon
+	| Equals
+	| Backslash
+	| Bar
+	| LeftArrow
+	| RightArrow
+	| At
+	| Tilde
+	| DoubleArrow
+	| Minus
+	| Exclamation
+	| LeftArrowTail		-- added for arrows
+	| RightArrowTail	-- added for arrows
+	| LeftArrowDTail	-- added for arrows
+	| RightArrowDTail	-- added for arrows
+	| LeftBanana		-- added for arrows
+	| RightBanana		-- added for arrows
+
+-- Reserved Ids
+
+	| KW_Case
+	| KW_Class
+	| KW_Data
+	| KW_Default
+	| KW_Deriving
+	| KW_Do
+	| KW_Else
+	| KW_Foreign
+	| KW_If
+	| KW_Import
+	| KW_In
+	| KW_Infix
+	| KW_InfixL
+	| KW_InfixR
+	| KW_Instance
+	| KW_Let
+	| KW_Module
+	| KW_NewType
+	| KW_Of
+	| KW_Then
+	| KW_Type
+	| KW_Where
+
+-- Special Ids
+
+	| KW_As
+	| KW_Export
+	| KW_Hiding
+	| KW_Qualified
+	| KW_Safe
+	| KW_Unsafe
+	| KW_Proc		-- added for arrows
+	| KW_Rec		-- added for arrows
+	| KW_Form		-- added for arrows
+	| KW_Cmd		-- added for arrows
+
+        | EOF
+        deriving (Eq,Show)
+
+reserved_ops :: [(String,Token)]
+reserved_ops = [
+ ( "..", DotDot ),
+ ( ":",  Colon ),
+ ( "::", DoubleColon ),
+ ( "=",  Equals ),
+ ( "\\", Backslash ),
+ ( "|",  Bar ),
+ ( "<-", LeftArrow ),
+ ( "->", RightArrow ),
+ ( "@",  At ),
+ ( "~",  Tilde ),
+ ( "=>", DoubleArrow ),
+ ( "-<", LeftArrowTail ),	-- added for arrows
+ ( ">-", RightArrowTail ),	-- added for arrows
+ ( "-<<", LeftArrowDTail ),	-- added for arrows
+ ( ">>-", RightArrowDTail ),	-- added for arrows
+ ( "\\<", Backslash )		-- added for arrows
+ ]
+
+special_varops :: [(String,Token)]
+special_varops = [
+ ( "-",  Minus ),			--ToDo: shouldn't be here
+ ( "!",  Exclamation )		--ditto
+ ]
+
+reserved_ids :: [(String,Token)]
+reserved_ids = [
+ ( "_",         Underscore ),
+ ( "case",      KW_Case ),
+ ( "class",     KW_Class ),
+ ( "cmd",	KW_Cmd ),	-- added for arrows
+ ( "data",      KW_Data ),
+ ( "default",   KW_Default ),
+ ( "deriving",  KW_Deriving ),
+ ( "do",        KW_Do ),
+ ( "else",      KW_Else ),
+ ( "foreign",	KW_Foreign ),
+ ( "if",    	KW_If ),
+ ( "import",    KW_Import ),
+ ( "in", 	KW_In ),
+ ( "infix", 	KW_Infix ),
+ ( "infixl", 	KW_InfixL ),
+ ( "infixr", 	KW_InfixR ),
+ ( "instance",  KW_Instance ),
+ ( "let", 	KW_Let ),
+ ( "module", 	KW_Module ),
+ ( "newtype",   KW_NewType ),
+ ( "of", 	KW_Of ),
+ ( "proc",	KW_Proc ),	-- added for arrows
+ ( "rec",	KW_Rec ),	-- added for arrows
+ ( "then", 	KW_Then ),
+ ( "type", 	KW_Type ),
+ ( "where", 	KW_Where )
+ ]
+
+special_varids :: [(String,Token)]
+special_varids = [
+ ( "as", 	KW_As ),
+ ( "export", 	KW_Export ),
+ ( "hiding", 	KW_Hiding ),
+ ( "qualified", KW_Qualified ),
+ ( "safe",	KW_Safe ),
+ ( "unsafe", 	KW_Unsafe )
+ ]
+
+isIdent, isSymbol :: Char -> Bool
+isIdent  c = isAlpha c || isDigit c || c == '\'' || c == '_'
+isSymbol c = elem c ":!#$%&*+./<=>?@\\^|-~"
+
+matchChar :: Char -> String -> Lex a ()
+matchChar c msg = do
+	s <- getInput
+	if null s || head s /= c then fail msg else discard 1
+
+-- The top-level lexer.
+-- We need to know whether we are at the beginning of the line to decide
+-- whether to insert layout tokens.
+
+lexer :: (Token -> P a) -> P a
+lexer = runL $ do
+	bol <- checkBOL
+	bol <- lexWhiteSpace bol
+	startToken
+	if bol then lexBOL else lexToken
+
+lexWhiteSpace :: Bool -> Lex a Bool
+lexWhiteSpace bol = do
+	s <- getInput
+	case s of
+	    '{':'-':_ -> do
+		discard 2
+		bol <- lexNestedComment bol
+		lexWhiteSpace bol
+	    '-':'-':rest | all (== '-') (takeWhile isSymbol rest) -> do
+		lexWhile (== '-')
+		lexWhile (/= '\n')
+		s' <- getInput
+		case s' of
+		    [] -> fail "Unterminated end-of-line comment"
+		    _ -> do
+			lexNewline
+			lexWhiteSpace True
+	    '\n':_ -> do
+		lexNewline
+		lexWhiteSpace True
+	    '\t':_ -> do
+		lexTab
+		lexWhiteSpace bol
+	    c:_ | isSpace c -> do
+		discard 1
+		lexWhiteSpace bol
+	    _ -> return bol
+
+lexNestedComment :: Bool -> Lex a Bool
+lexNestedComment bol = do
+	s <- getInput
+	case s of
+	    '-':'}':_ -> discard 2 >> return bol
+	    '{':'-':_ -> do
+		discard 2
+		bol <- lexNestedComment bol	-- rest of the subcomment
+		lexNestedComment bol		-- rest of this comment
+	    '\t':_    -> lexTab >> lexNestedComment bol
+	    '\n':_    -> lexNewline >> lexNestedComment True
+	    _:_       -> discard 1 >> lexNestedComment bol
+	    []        -> fail "Unterminated nested comment"
+
+-- When we are lexing the first token of a line, check whether we need to
+-- insert virtual semicolons or close braces due to layout.
+
+lexBOL :: Lex a Token
+lexBOL = do
+	pos <- getOffside
+	case pos of
+	    LT -> do
+                -- trace "layout: inserting '}'\n" $
+        	-- Set col to 0, indicating that we're still at the
+        	-- beginning of the line, in case we need a semi-colon too.
+        	-- Also pop the context here, so that we don't insert
+        	-- another close brace before the parser can pop it.
+		setBOL
+		popContextL "lexBOL"
+		return VRightCurly
+	    EQ ->
+                -- trace "layout: inserting ';'\n" $
+		return SemiColon
+	    GT ->
+		lexToken
+
+lexToken :: Lex a Token
+lexToken = do
+    s <- getInput
+    case s of
+        [] -> return EOF
+
+	'0':c:d:_ | toLower c == 'o' && isOctDigit d -> do
+			discard 2
+			n <- lexOctal
+			return (IntTok n)
+		  | toLower c == 'x' && isHexDigit d -> do
+			discard 2
+			n <- lexHexadecimal
+			return (IntTok n)
+
+	'(':'|':c:_ | not (isSymbol c) -> do
+	    discard 2
+	    return LeftBanana
+
+	'|':')':_ -> do
+	    discard 2
+	    return RightBanana
+
+	c:_ | isDigit c -> lexDecimalOrFloat
+
+	    | isUpper c -> lexConIdOrQual ""
+
+	    | isLower c || c == '_' -> do
+		ident <- lexWhile isIdent
+		return $ case lookup ident (reserved_ids ++ special_varids) of
+			Just keyword -> keyword
+			Nothing -> VarId ident
+
+	    | isSymbol c -> do
+		sym <- lexWhile isSymbol
+		return $ case lookup sym (reserved_ops ++ special_varops) of
+			Just t  -> t
+			Nothing -> case c of
+			    ':' -> ConSym sym
+			    _   -> VarSym sym
+
+	    | otherwise -> do
+		discard 1
+		case c of
+
+		    -- First the special symbols
+		    '(' ->  return LeftParen
+		    ')' ->  return RightParen
+		    ',' ->  return Comma
+		    ';' ->  return SemiColon
+		    '[' ->  return LeftSquare
+		    ']' ->  return RightSquare
+		    '`' ->  return BackQuote
+		    '{' -> do
+			    pushContextL NoLayout
+			    return LeftCurly
+		    '}' -> do
+			    popContextL "lexToken"
+			    return RightCurly
+
+		    '\'' -> do
+			    c2 <- lexChar
+			    matchChar '\'' "Improperly terminated character constant"
+			    return (Character c2)
+
+		    '"' ->  lexString
+
+		    _ ->    fail ("Illegal character \'" ++ show c ++ "\'\n")
+
+lexDecimalOrFloat :: Lex a Token
+lexDecimalOrFloat = do
+	ds <- lexWhile isDigit
+	rest <- getInput
+	case rest of
+	    ('.':d:_) | isDigit d -> do
+		discard 1
+		frac <- lexWhile isDigit
+		let num = parseInteger 10 (ds ++ frac)
+		    decimals = toInteger (length frac)
+		exponent <- do
+			rest2 <- getInput
+			case rest2 of
+			    'e':_ -> lexExponent
+			    'E':_ -> lexExponent
+			    _     -> return 0
+		return (FloatTok ((num%1) * 10^^(exponent - decimals)))
+	    e:_ | toLower e == 'e' -> do
+		exponent <- lexExponent
+		return (FloatTok ((parseInteger 10 ds%1) * 10^^exponent))
+	    _ -> return (IntTok (parseInteger 10 ds))
+
+    where
+	lexExponent :: Lex a Integer
+	lexExponent = do
+		discard 1	-- 'e' or 'E'
+		r <- getInput
+		case r of
+		    '+':d:_ | isDigit d -> do
+			discard 1
+			lexDecimal
+		    '-':d:_ | isDigit d -> do
+			discard 1
+			n <- lexDecimal
+			return (negate n)
+		    d:_ | isDigit d -> lexDecimal
+		    _ -> fail "Float with missing exponent"
+
+lexConIdOrQual :: String -> Lex a Token
+lexConIdOrQual qual = do
+	con <- lexWhile isIdent
+	let conid | null qual = ConId con
+		  | otherwise = QConId (qual,con)
+	    qual' | null qual = con
+		  | otherwise = qual ++ '.':con
+	just_a_conid <- alternative (return conid)
+	rest <- getInput
+	case rest of
+	  '.':c:_
+	     | isLower c || c == '_' -> do	-- qualified varid?
+		discard 1
+		ident <- lexWhile isIdent
+		case lookup ident reserved_ids of
+		   -- cannot qualify a reserved word
+		   Just _  -> just_a_conid
+		   Nothing -> return (QVarId (qual', ident))
+
+	     | isUpper c -> do		-- qualified conid?
+		discard 1
+		lexConIdOrQual qual'
+
+	     | isSymbol c -> do	-- qualified symbol?
+		discard 1
+		sym <- lexWhile isSymbol
+		case lookup sym reserved_ops of
+		    -- cannot qualify a reserved operator
+		    Just _  -> just_a_conid
+		    Nothing -> return $ case c of
+			':' -> QConSym (qual', sym)
+			_   -> QVarSym (qual', sym)
+
+	  _ ->	return conid -- not a qualified thing
+
+lexChar :: Lex a Char
+lexChar = do
+	r <- getInput
+	case r of
+		'\\':_	-> lexEscape
+		c:_	-> discard 1 >> return c
+		[]	-> fail "Incomplete character constant"
+
+lexString :: Lex a Token
+lexString = loop ""
+    where
+	loop s = do
+		r <- getInput
+		case r of
+		    '\\':'&':_ -> do
+				discard 2
+				loop s
+		    '\\':c:_ | isSpace c -> do
+				discard 1
+				lexWhiteChars
+				matchChar '\\' "Illegal character in string gap"
+				loop s
+			     | otherwise -> do
+				ce <- lexEscape
+				loop (ce:s)
+		    '"':_ -> do
+				discard 1
+				return (StringTok (reverse s))
+		    c:_ -> do
+				discard 1
+				loop (c:s)
+		    [] ->	fail "Improperly terminated string"
+
+	lexWhiteChars :: Lex a ()
+	lexWhiteChars = do
+		s <- getInput
+		case s of
+		    '\n':_ -> do
+			lexNewline
+			lexWhiteChars
+		    '\t':_ -> do
+			lexTab
+			lexWhiteChars
+		    c:_ | isSpace c -> do
+			discard 1
+			lexWhiteChars
+		    _ -> return ()
+
+lexEscape :: Lex a Char
+lexEscape = do
+	discard 1
+	r <- getInput
+	case r of
+
+-- Production charesc from section B.2 (Note: \& is handled by caller)
+
+		'a':_		-> discard 1 >> return '\a'
+		'b':_		-> discard 1 >> return '\b'
+		'f':_		-> discard 1 >> return '\f'
+		'n':_		-> discard 1 >> return '\n'
+		'r':_		-> discard 1 >> return '\r'
+		't':_		-> discard 1 >> return '\t'
+		'v':_		-> discard 1 >> return '\v'
+		'\\':_		-> discard 1 >> return '\\'
+		'"':_		-> discard 1 >> return '\"'
+		'\'':_		-> discard 1 >> return '\''
+
+-- Production ascii from section B.2
+
+		'^':c:_		-> discard 2 >> cntrl c
+		'N':'U':'L':_	-> discard 3 >> return '\NUL'
+		'S':'O':'H':_	-> discard 3 >> return '\SOH'
+		'S':'T':'X':_	-> discard 3 >> return '\STX'
+		'E':'T':'X':_	-> discard 3 >> return '\ETX'
+		'E':'O':'T':_	-> discard 3 >> return '\EOT'
+		'E':'N':'Q':_	-> discard 3 >> return '\ENQ'
+		'A':'C':'K':_	-> discard 3 >> return '\ACK'
+		'B':'E':'L':_	-> discard 3 >> return '\BEL'
+		'B':'S':_	-> discard 2 >> return '\BS'
+		'H':'T':_	-> discard 2 >> return '\HT'
+		'L':'F':_	-> discard 2 >> return '\LF'
+		'V':'T':_	-> discard 2 >> return '\VT'
+		'F':'F':_	-> discard 2 >> return '\FF'
+		'C':'R':_	-> discard 2 >> return '\CR'
+		'S':'O':_	-> discard 2 >> return '\SO'
+		'S':'I':_	-> discard 2 >> return '\SI'
+		'D':'L':'E':_	-> discard 3 >> return '\DLE'
+		'D':'C':'1':_	-> discard 3 >> return '\DC1'
+		'D':'C':'2':_	-> discard 3 >> return '\DC2'
+		'D':'C':'3':_	-> discard 3 >> return '\DC3'
+		'D':'C':'4':_	-> discard 3 >> return '\DC4'
+		'N':'A':'K':_	-> discard 3 >> return '\NAK'
+		'S':'Y':'N':_	-> discard 3 >> return '\SYN'
+		'E':'T':'B':_	-> discard 3 >> return '\ETB'
+		'C':'A':'N':_	-> discard 3 >> return '\CAN'
+		'E':'M':_	-> discard 2 >> return '\EM'
+		'S':'U':'B':_	-> discard 3 >> return '\SUB'
+		'E':'S':'C':_	-> discard 3 >> return '\ESC'
+		'F':'S':_	-> discard 2 >> return '\FS'
+		'G':'S':_	-> discard 2 >> return '\GS'
+		'R':'S':_	-> discard 2 >> return '\RS'
+		'U':'S':_	-> discard 2 >> return '\US'
+		'S':'P':_	-> discard 2 >> return '\SP'
+		'D':'E':'L':_	-> discard 3 >> return '\DEL'
+
+-- Escaped numbers
+
+		'o':c:_ | isOctDigit c -> do
+					discard 1
+					n <- lexOctal
+					checkChar n
+		'x':c:_ | isHexDigit c -> do
+					discard 1
+					n <- lexHexadecimal
+					checkChar n
+		c:_ | isDigit c -> do
+					n <- lexDecimal
+					checkChar n
+
+		_		-> fail "Illegal escape sequence"
+
+    where
+	checkChar n | n <= 0x10FFFF = return (chr (fromInteger n))
+	checkChar _		    = fail "Character constant out of range"
+
+-- Production cntrl from section B.2
+
+	cntrl :: Char -> Lex a Char
+	cntrl c | c >= '@' && c <= '_' = return (chr (ord c - ord '@'))
+	cntrl _                        = fail "Illegal control character"
+
+-- assumes at least one octal digit
+lexOctal :: Lex a Integer
+lexOctal = do
+	ds <- lexWhile isOctDigit
+	return (parseInteger 8 ds)
+
+-- assumes at least one hexadecimal digit
+lexHexadecimal :: Lex a Integer
+lexHexadecimal = do
+	ds <- lexWhile isHexDigit
+	return (parseInteger 16 ds)
+
+-- assumes at least one decimal digit
+lexDecimal :: Lex a Integer
+lexDecimal = do
+	ds <- lexWhile isDigit
+	return (parseInteger 10 ds)
+
+-- Stolen from Hugs's Prelude
+parseInteger :: Integer -> String -> Integer
+parseInteger radix ds =
+	foldl1 (\n d -> n * radix + d) (map (toInteger . digitToInt) ds)
diff --git a/preprocessor/Main.lhs b/preprocessor/Main.lhs
new file mode 100644
--- /dev/null
+++ b/preprocessor/Main.lhs
@@ -0,0 +1,114 @@
+> module Main (main) where
+
+> import Data.List
+> import System.Console.GetOpt
+> import System.Environment
+> import System.Exit
+> import System.IO
+
+> import Language.Haskell.ParseMonad
+> import Language.Haskell.Syntax
+> import Language.Haskell.Pretty
+
+> import Parser
+
+> data Flag = ParsePretty PPLayout   -- pretty print in this style
+>           | Help                   -- give short usage info
+
+> usage :: String -> String
+> usage progName = unlines [
+>	"usage: " ++ progName ++
+>		" [OPTION]... [FILENAME] [SOURCE] [DEST]",
+>	"Read arrow notation from SOURCE (derived from FILENAME) and write",
+>	"standard Haskell to DEST.",
+>	"If no FILENAME, use SOURCE as the original name.",
+>	"If no DEST or if DEST is `-', write to standard output.",
+>	"If no SOURCE or if SOURCE is `-', read standard input."
+>   ]
+
+> sourceError :: SrcLoc -> String -> IO a
+> sourceError loc mesg = do
+>   hPutStrLn stderr
+>	(srcFilename loc ++ ":" ++ show (srcLine loc) ++ ": " ++ mesg ++
+>	" in column " ++ show (srcColumn loc))
+>   exitFailure
+
+> programError :: String -> IO a
+> programError mesg = do
+>   progName <- getProgName
+>   hPutStrLn stderr (progName ++ ": " ++ mesg)
+>   exitFailure
+
+> usageError :: String -> IO a
+> usageError mesg = do
+>   progName <- getProgName
+>   programError (mesg ++
+>	 "Try `" ++ progName ++ " --help' for more information.")
+
+> options :: [OptDescr Flag]
+> options =
+>    [ Option ['p']  ["pretty"]  (OptArg pStyle "STYLE")
+>	("pretty print in STYLE[" ++
+>	 concat (intersperse "|" (map fst styles)) ++
+>	 "](default = " ++ fst (head styles) ++ ")"),
+>      Option ['h','?'] ["help"] (NoArg Help) "display this help and exit"]
+
+Available styles: first is default
+
+> styles :: [(String, PPLayout)]
+> styles = [
+>	("offside",	PPOffsideRule),
+>	("semicolon",	PPSemiColon),
+>	("inline",	PPInLine),
+>	("none",	PPNoLayout)
+>   ]
+
+> pStyle :: Maybe String -> Flag
+> pStyle Nothing = ParsePretty defaultStyle
+> pStyle (Just s) = ParsePretty (lookupStyle s)
+
+> defaultStyle :: PPLayout
+> defaultStyle = snd (head styles)
+
+> lookupStyle :: String -> PPLayout
+> lookupStyle prefix =
+>	head ([s | (n, s) <- styles, prefix `isPrefixOf` n] ++ [defaultStyle])
+
+> main :: IO ()
+> main = do cmdline <- getArgs
+>           mainHugs cmdline
+
+> mainHugs :: [String] -> IO ()
+> mainHugs cmdline =
+>    case getOpt Permute options cmdline of
+>       (flags, args, []) -> do
+>	    action <- case flags of
+>		[]  -> return (ParsePretty defaultStyle)
+>		[f] -> return f
+>		_   -> usageError "too many options\n"
+>	    (origName, inName, outName) <- case args of
+>		[]      -> return ("-","-","-")
+>		[i]     -> return ( i , i ,"-")
+>		[i,o]   -> return ( i , i , o )
+>		[n,i,o] -> return ( n , i , o )
+>		_       -> usageError "too many arguments\n"
+>	    let mode = defaultParseMode {parseFilename = origName}
+>	    inp <- if inName == "-" then getContents else
+>		   readFile inName `catch` \_err ->
+>			programError ("can't read `" ++ inName ++ "'")
+>	    outH <- if outName == "-" then return stdout else
+>		    openFile outName WriteMode `catch` \_err ->
+>			programError ("can't write to `" ++ outName ++ "'")
+>	    outp <- case action of
+>		ParsePretty layout -> case parseModuleWithMode mode inp of
+>			ParseOk mod ->
+>				return $ prettyPrintWithMode defaultMode{
+>						layout = layout,
+>						linePragmas = True
+>					} mod
+>			ParseFailed loc err -> sourceError loc err
+>		Help -> do
+>			progName <- getProgName
+>			return $ usageInfo (usage progName) options
+>	    hPutStrLn outH outp
+>       (_,     _,    errors) -> usageError (concat errors)
diff --git a/preprocessor/Parser.ly b/preprocessor/Parser.ly
new file mode 100644
--- /dev/null
+++ b/preprocessor/Parser.ly
@@ -0,0 +1,988 @@
+> {
+> -----------------------------------------------------------------------------
+> -- |
+> -- Module      :  Parser
+> -- Copyright   :  (c) Simon Marlow, Sven Panne 1997-2000
+> -- License     :  BSD-style (see the file libraries/base/LICENSE)
+> --
+> -- Maintainer  :  libraries@haskell.org
+> -- Stability   :  experimental
+> -- Portability :  portable
+> --
+> -- Haskell parser.
+> --
+> -----------------------------------------------------------------------------
+>
+> module Parser (
+>		parseModule, parseModuleWithMode,
+>		ParseMode(..), defaultParseMode, ParseResult(..)) where
+> 
+> import Language.Haskell.Syntax
+> import Language.Haskell.ParseMonad
+> import Lexer
+> import Language.Haskell.ParseUtils
+> 
+> import qualified ArrSyn		-- added for arrows
+> }
+
+ToDo: Check exactly which names must be qualified with Prelude (commas and friends)
+ToDo: Inst (MPCs?)
+ToDo: Polish constr a bit
+ToDo: Ugly: exp0b is used for lhs, pat, exp0, ...
+ToDo: Differentiate between record updates and labeled construction.
+
+-----------------------------------------------------------------------------
+Conflicts: 2 shift/reduce
+
+2 for ambiguity in 'case x of y | let z = y in z :: Bool -> b'
+	(don't know whether to reduce 'Bool' as a btype or shift the '->'.
+	 Similarly lambda and if.  The default resolution in favour of the
+	 shift means that a guard can never end with a type signature.
+	 In mitigation: it's a rare case and no Haskell implementation
+	 allows these, because it would require unbounded lookahead.)
+	There are 2 conflicts rather than one because contexts are parsed
+	as btypes (cf ctype).
+
+-----------------------------------------------------------------------------
+
+> %token
+>	VARID 	 { VarId $$ }
+>	QVARID 	 { QVarId $$ }
+>	CONID	 { ConId $$ }
+>	QCONID   { QConId $$ }
+>	VARSYM	 { VarSym $$ }
+>	CONSYM	 { ConSym $$ }
+>	QVARSYM	 { QVarSym $$ }
+>	QCONSYM  { QConSym $$ }
+>	INT	 { IntTok $$ }
+>	RATIONAL { FloatTok $$ }
+>	CHAR	 { Character $$ }
+>	STRING   { StringTok $$ }
+
+Symbols
+
+>	'('	{ LeftParen }
+>	')'	{ RightParen }
+>	';'	{ SemiColon }
+>	'{'	{ LeftCurly }
+>	'}'	{ RightCurly }
+>	vccurly { VRightCurly }			-- a virtual close brace
+>	'['	{ LeftSquare }
+>	']'	{ RightSquare }
+>  	','	{ Comma }
+>	'_'	{ Underscore }
+>	'`'	{ BackQuote }
+
+Reserved operators
+
+>	'..'	{ DotDot }
+>	':'	{ Colon }
+>	'::'	{ DoubleColon }
+>	'='	{ Equals }
+>	'\\'	{ Backslash }
+>	'|'	{ Bar }
+>	'<-'	{ LeftArrow }
+>	'->'	{ RightArrow }
+>	'@'	{ At }
+>	'~'	{ Tilde }
+>	'=>'	{ DoubleArrow }
+>	'-<'	{ LeftArrowTail }		-- added for arrows
+>	'>-'	{ RightArrowTail }		-- added for arrows
+>	'-<<'	{ LeftArrowDTail }		-- added for arrows
+>	'>>-'	{ RightArrowDTail }		-- added for arrows
+>	'(|'	{ LeftBanana }			-- added for arrows
+>	'|)'	{ RightBanana }			-- added for arrows
+>	'-'	{ Minus }
+>	'!'	{ Exclamation }
+
+Reserved Ids
+
+>	'case'		{ KW_Case }
+>	'class'		{ KW_Class }
+>	'data'		{ KW_Data }
+>	'default'	{ KW_Default }
+>	'deriving'	{ KW_Deriving }
+>	'do'		{ KW_Do }
+>	'else'		{ KW_Else }
+>	'foreign'	{ KW_Foreign }
+>	'if'		{ KW_If }
+>	'import'	{ KW_Import }
+>	'in'		{ KW_In }
+>	'infix'		{ KW_Infix }
+>	'infixl'	{ KW_InfixL }
+>	'infixr'	{ KW_InfixR }
+>	'instance'	{ KW_Instance }
+>	'let'		{ KW_Let }
+>	'module'	{ KW_Module }
+>	'newtype'	{ KW_NewType }
+>	'of'		{ KW_Of }
+>	'then'		{ KW_Then }
+>	'type'		{ KW_Type }
+>	'where'		{ KW_Where }
+
+Special Ids
+
+>	'as'		{ KW_As }
+>	'export'	{ KW_Export }
+>	'hiding'	{ KW_Hiding }
+>	'qualified'	{ KW_Qualified }
+>	'safe'		{ KW_Safe }
+>	'unsafe'	{ KW_Unsafe }
+>	'proc'		{ KW_Proc }		-- added for arrows
+>	'rec'		{ KW_Rec }		-- added for arrows
+>	'cmd'		{ KW_Cmd }		-- added for arrows
+
+> %monad { P }
+> %lexer { lexer } { EOF }
+> %name parse
+> %tokentype { Token }
+> %%
+
+-----------------------------------------------------------------------------
+Module Header
+
+> module :: { HsModule }
+>	: srcloc 'module' modid maybeexports 'where' body
+>		{ HsModule $1 $3 $4 (fst $6) (snd $6) }
+>	| srcloc body
+>		{ HsModule $1 main_mod (Just [HsEVar (UnQual main_name)])
+>							(fst $2) (snd $2) }
+
+> body :: { ([HsImportDecl],[HsDecl]) }
+>	: '{'  bodyaux '}'			{ $2 }
+>	| open bodyaux close			{ $2 }
+
+> bodyaux :: { ([HsImportDecl],[HsDecl]) }
+>	: optsemis impdecls semis topdecls	{ (reverse $2, $4) }
+>	| optsemis                topdecls	{ ([], $2) }
+>	| optsemis impdecls optsemis		{ (reverse $2, []) }
+>	| optsemis				{ ([], []) }
+
+> semis :: { () }
+>	: optsemis ';'				{ () }
+
+> optsemis :: { () }
+>	: semis					{ () }
+>	| {- empty -}				{ () }
+
+-----------------------------------------------------------------------------
+The Export List
+
+> maybeexports :: { Maybe [HsExportSpec] }
+> 	:  exports				{ Just $1 }
+> 	|  {- empty -}				{ Nothing }
+
+> exports :: { [HsExportSpec] }
+>	: '(' exportlist optcomma ')'		{ reverse $2 }
+>	| '(' optcomma ')'			{ [] }
+
+> optcomma :: { () }
+>	: ','					{ () }
+>	| {- empty -}				{ () }
+
+> exportlist :: { [HsExportSpec] }
+> 	:  exportlist ',' export		{ $3 : $1 }
+> 	|  export				{ [$1]  }
+
+> export :: { HsExportSpec }
+> 	:  qvar					{ HsEVar $1 }
+> 	|  qtyconorcls				{ HsEAbs $1 }
+> 	|  qtyconorcls '(' '..' ')'		{ HsEThingAll $1 }
+> 	|  qtyconorcls '(' ')'		        { HsEThingWith $1 [] }
+>	|  qtyconorcls '(' cnames ')'		{ HsEThingWith $1 (reverse $3) }
+> 	|  'module' modid			{ HsEModuleContents $2 }
+
+-----------------------------------------------------------------------------
+Import Declarations
+
+> impdecls :: { [HsImportDecl] }
+>	: impdecls semis impdecl		{ $3 : $1 }
+>	| impdecl				{ [$1] }
+
+> impdecl :: { HsImportDecl }
+>	: srcloc 'import' optqualified modid maybeas maybeimpspec
+>				{ HsImportDecl $1 $4 $3 $5 $6 }
+
+> optqualified :: { Bool }
+>       : 'qualified'                           { True  }
+>       | {- empty -}				{ False }
+
+> maybeas :: { Maybe Module }
+>       : 'as' modid                            { Just $2 }
+>       | {- empty -}				{ Nothing }
+
+
+> maybeimpspec :: { Maybe (Bool, [HsImportSpec]) }
+>	: impspec				{ Just $1 }
+>	| {- empty -}				{ Nothing }
+
+> impspec :: { (Bool, [HsImportSpec]) }
+>	: opthiding '(' importlist optcomma ')'	{ ($1, reverse $3) }
+>	| opthiding '(' optcomma ')'		{ ($1, []) }
+
+> opthiding :: { Bool }
+>	: 'hiding'				{ True }
+>	| {- empty -}				{ False }
+
+> importlist :: { [HsImportSpec] }
+> 	:  importlist ',' importspec		{ $3 : $1 }
+> 	|  importspec				{ [$1]  }
+
+> importspec :: { HsImportSpec }
+> 	:  var					{ HsIVar $1 }
+> 	|  tyconorcls				{ HsIAbs $1 }
+> 	|  tyconorcls '(' '..' ')'		{ HsIThingAll $1 }
+> 	|  tyconorcls '(' ')'		        { HsIThingWith $1 [] }
+> 	|  tyconorcls '(' cnames ')'		{ HsIThingWith $1 (reverse $3) }
+
+> cnames :: { [HsCName] }
+> 	:  cnames ',' cname			{ $3 : $1 }
+> 	|  cname				{ [$1]  }
+
+> cname :: { HsCName }
+>	:  var					{ HsVarName $1 }
+> 	|  con					{ HsConName $1 }
+
+-----------------------------------------------------------------------------
+Fixity Declarations
+
+> fixdecl :: { HsDecl }
+> 	: srcloc infix prec ops			{ HsInfixDecl $1 $2 $3 (reverse $4) }
+
+> prec :: { Int }
+>	: {- empty -}				{ 9 }
+>	| INT					{% checkPrec $1 }
+
+> infix :: { HsAssoc }
+>	: 'infix'				{ HsAssocNone  }
+>	| 'infixl'				{ HsAssocLeft  }
+>	| 'infixr'				{ HsAssocRight }
+
+> ops   :: { [HsOp] }
+>	: ops ',' op				{ $3 : $1 }
+>	| op					{ [$1] }
+
+-----------------------------------------------------------------------------
+Top-Level Declarations
+
+Note: The report allows topdecls to be empty. This would result in another
+shift/reduce-conflict, so we don't handle this case here, but in bodyaux.
+
+> topdecls :: { [HsDecl] }
+>	: topdecls1 optsemis		{% checkRevDecls $1 }
+
+> topdecls1 :: { [HsDecl] }
+>	: topdecls1 semis topdecl	{ $3 : $1 }
+>	| topdecl			{ [$1] }
+
+> topdecl :: { HsDecl }
+>	: srcloc 'type' simpletype '=' type
+>			{ HsTypeDecl $1 (fst $3) (snd $3) $5 }
+>	| srcloc 'data' ctype '=' constrs deriving
+>			{% do { (cs,c,t) <- checkDataHeader $3;
+>				return (HsDataDecl $1 cs c t (reverse $5) $6) } }
+>	| srcloc 'newtype' ctype '=' constr deriving
+>			{% do { (cs,c,t) <- checkDataHeader $3;
+>				return (HsNewTypeDecl $1 cs c t $5 $6) } }
+>	| srcloc 'class' ctype optcbody
+>			{% do { (cs,c,vs) <- checkClassHeader $3;
+>				return (HsClassDecl $1 cs c vs $4) } }
+>	| srcloc 'instance' ctype optvaldefs
+>			{% do { (cs,c,ts) <- checkInstHeader $3;
+>				return (HsInstDecl $1 cs c ts $4) } }
+>	| srcloc 'default' '(' typelist ')'
+>			{ HsDefaultDecl $1 $4 }
+>	| foreigndecl	{ $1 }
+>       | decl		{ $1 }
+
+> typelist :: { [HsType] }
+>	: types				{ reverse $1 }
+>	| type				{ [$1] }
+>	| {- empty -}			{ [] }
+
+> decls :: { [HsDecl] }
+>	: optsemis decls1 optsemis	{% checkRevDecls $2 }
+>	| optsemis			{ [] }
+
+> decls1 :: { [HsDecl] }
+>	: decls1 semis decl		{ $3 : $1 }
+>	| decl				{ [$1] }
+
+> decl :: { HsDecl }
+>	: signdecl			{ $1 }
+>	| fixdecl			{ $1 }
+>	| valdef			{ $1 }
+
+> decllist :: { [HsDecl] }
+>	: '{'  decls '}'		{ $2 }
+>	| open decls close		{ $2 }
+
+> signdecl :: { HsDecl }
+>	: srcloc vars '::' ctype	{ HsTypeSig $1 (reverse $2) $4 }
+
+ATTENTION: Dirty Hackery Ahead! If the second alternative of vars is var
+instead of qvar, we get another shift/reduce-conflict. Consider the
+following programs:
+
+   { (+) :: ... }          only var
+   { (+) x y  = ... }      could (incorrectly) be qvar
+
+We re-use expressions for patterns, so a qvar would be allowed in patterns
+instead of a var only (which would be correct). But deciding what the + is,
+would require more lookahead. So let's check for ourselves...
+
+> vars	:: { [HsName] }
+>	: vars ',' var			{ $3 : $1 }
+>	| qvar				{% do { n <- checkUnQual $1;
+>						return [n] } }
+
+Foreign declarations
+- calling conventions are uninterpreted
+- external entities are not parsed
+- special ids are not allowed as internal names
+
+> foreigndecl :: { HsDecl }
+>	: srcloc 'foreign' 'import' VARID optsafety optentity fvar '::' type
+>			{ HsForeignImport $1 $4 $5 $6 $7 $9 }
+>	| srcloc 'foreign' 'export' VARID optentity fvar '::' type
+>			{ HsForeignExport $1 $4 $5 $6 $8 }
+
+> optsafety :: { HsSafety }
+>	: 'safe'			{ HsSafe }
+>	| 'unsafe'			{ HsUnsafe }
+>	| {- empty -}			{ HsSafe }
+
+> optentity :: { String }
+>	: STRING			{ $1 }
+>	| {- empty -}			{ "" }
+
+> fvar :: { HsName }
+>	: VARID				{ HsIdent $1 }
+>	| '(' varsym ')'		{ $2 }
+
+-----------------------------------------------------------------------------
+Types
+
+> type :: { HsType }
+>	: btype '->' type		{ HsTyFun $1 $3 }
+>	| btype				{ $1 }
+
+> btype :: { HsType }
+>	: btype atype			{ HsTyApp $1 $2 }
+>	| atype				{ $1 }
+
+> atype :: { HsType }
+>	: gtycon			{ HsTyCon $1 }
+>	| tyvar				{ HsTyVar $1 }
+>	| '(' types ')'			{ HsTyTuple (reverse $2) }
+>	| '[' type ']'			{ HsTyApp list_tycon $2 }
+>	| '(' type ')'			{ $2 }
+
+> gtycon :: { HsQName }
+>	: qconid			{ $1 }
+>	| '(' ')'			{ unit_tycon_name }
+>	| '(' '->' ')'			{ fun_tycon_name }
+>	| '[' ']'			{ list_tycon_name }
+>	| '(' commas ')'		{ tuple_tycon_name $2 }
+
+
+(Slightly edited) Comment from GHC's hsparser.y:
+"context => type" vs  "type" is a problem, because you can't distinguish between
+
+	foo :: (Baz a, Baz a)
+	bar :: (Baz a, Baz a) => [a] -> [a] -> [a]
+
+with one token of lookahead.  The HACK is to parse the context as a btype
+(more specifically as a tuple type), then check that it has the right form
+C a, or (C1 a, C2 b, ... Cn z) and convert it into a context.  Blaach!
+
+> ctype :: { HsQualType }
+>	: context '=>' type		{ HsQualType $1 $3 }
+>	| type				{ HsQualType [] $1 }
+
+> context :: { HsContext }
+>	: btype				{% checkContext $1 }
+
+> types	:: { [HsType] }
+>	: types ',' type		{ $3 : $1 }
+>	| type  ',' type		{ [$3, $1] }
+
+> simpletype :: { (HsName, [HsName]) }
+>	: tycon tyvars			{ ($1,reverse $2) }
+
+> tyvars :: { [HsName] }
+>	: tyvars tyvar			{ $2 : $1 }
+>	| {- empty -}			{ [] }
+
+-----------------------------------------------------------------------------
+Datatype declarations
+
+> constrs :: { [HsConDecl] }
+>	: constrs '|' constr		{ $3 : $1 }
+>	| constr			{ [$1] }
+
+> constr :: { HsConDecl }
+>	: srcloc scontype		{ HsConDecl $1 (fst $2) (snd $2) }
+>	| srcloc sbtype conop sbtype	{ HsConDecl $1 $3 [$2,$4] }
+>	| srcloc con '{' '}'		{ HsRecDecl $1 $2 [] }
+>	| srcloc con '{' fielddecls '}' { HsRecDecl $1 $2 (reverse $4) }
+
+> scontype :: { (HsName, [HsBangType]) }
+>	: btype				{% do { (c,ts) <- splitTyConApp $1;
+>						return (c,map HsUnBangedTy ts) } }
+>	| scontype1			{ $1 }
+
+> scontype1 :: { (HsName, [HsBangType]) }
+>	: btype '!' atype		{% do { (c,ts) <- splitTyConApp $1;
+>						return (c,map HsUnBangedTy ts++
+>							[HsBangedTy $3]) } }
+>	| scontype1 satype		{ (fst $1, snd $1 ++ [$2] ) }
+
+> satype :: { HsBangType }
+>	: atype				{ HsUnBangedTy $1 }
+>	| '!' atype			{ HsBangedTy   $2 }
+
+> sbtype :: { HsBangType }
+>	: btype				{ HsUnBangedTy $1 }
+>	| '!' atype			{ HsBangedTy   $2 }
+
+> fielddecls :: { [([HsName],HsBangType)] }
+>	: fielddecls ',' fielddecl	{ $3 : $1 }
+>	| fielddecl			{ [$1] }
+
+> fielddecl :: { ([HsName],HsBangType) }
+>	: vars '::' stype		{ (reverse $1, $3) }
+
+> stype :: { HsBangType }
+>	: type				{ HsUnBangedTy $1 }	
+>	| '!' atype			{ HsBangedTy   $2 }
+
+> deriving :: { [HsQName] }
+>	: {- empty -}			{ [] }
+>	| 'deriving' qtycls		{ [$2] }
+>	| 'deriving' '('          ')'	{ [] }
+>	| 'deriving' '(' dclasses ')'	{ reverse $3 }
+
+> dclasses :: { [HsQName] }
+>	: dclasses ',' qtycls		{ $3 : $1 }
+>       | qtycls			{ [$1] }
+
+-----------------------------------------------------------------------------
+Class declarations
+
+> optcbody :: { [HsDecl] }
+>	: 'where' decllist		{% checkClassBody $2 }
+>	| {- empty -}			{ [] }
+
+-----------------------------------------------------------------------------
+Instance declarations
+
+> optvaldefs :: { [HsDecl] }
+>	: 'where' '{'  valdefs '}'	{% checkClassBody $3 }
+>	| 'where' open valdefs close	{% checkClassBody $3 }
+>	| {- empty -}			{ [] }
+
+> valdefs :: { [HsDecl] }
+>	: optsemis valdefs1 optsemis	{% checkRevDecls $2 }
+>	| optsemis			{ [] }
+
+> valdefs1 :: { [HsDecl] }
+>	: valdefs1 semis valdef		{ $3 : $1 }
+>	| valdef			{ [$1] }
+
+-----------------------------------------------------------------------------
+Value definitions
+
+> valdef :: { HsDecl }
+>	: srcloc exp0b rhs optwhere	{% checkValDef $1 $2 $3 $4 }
+
+> optwhere :: { [HsDecl] }
+>	: 'where' decllist		{ $2 }
+>	| {- empty -}			{ [] }
+
+> rhs	:: { HsRhs }
+>	: '=' exp			{% do { e <- checkExpr $2;
+>						return (HsUnGuardedRhs e) } }
+>	| gdrhs				{ HsGuardedRhss  (reverse $1) }
+
+> gdrhs :: { [HsGuardedRhs] }
+>	: gdrhs gdrh			{ $2 : $1 }
+>	| gdrh				{ [$1] }
+
+> gdrh :: { HsGuardedRhs }
+>	: srcloc '|' exp0 '=' exp	{% do { g <- checkExpr $3;
+>						e <- checkExpr $5;
+>						return (HsGuardedRhs $1 g e) } }
+
+-----------------------------------------------------------------------------
+Expressions
+
+Note: The Report specifies a meta-rule for lambda, let and if expressions
+(the exp's that end with a subordinate exp): they extend as far to
+the right as possible.  That means they cannot be followed by a type
+signature or infix application.  To implement this without shift/reduce
+conflicts, we split exp10 into these expressions (exp10a) and the others
+(exp10b).  That also means that only an exp0 ending in an exp10b (an exp0b)
+can followed by a type signature or infix application.  So we duplicate
+the exp0 productions to distinguish these from the others (exp0a).
+
+> exp   :: { HsExp }
+>	: exp0b '::' srcloc ctype  	{ HsExpTypeSig $3 $1 $4 }
+>	| exp0				{ $1 }
+
+> exp0 :: { HsExp }
+>	: exp0a				{ $1 }
+>	| exp0b				{ $1 }
+
+> exp0a :: { HsExp }
+>	: exp0b qop exp10a		{ HsInfixApp $1 $2 $3 }
+>	| exp10a			{ $1 }
+
+> exp0b :: { HsExp }
+>	: exp0b qop exp10b		{ HsInfixApp $1 $2 $3 }
+>	| exp10b			{ $1 }
+
+> exp10a :: { HsExp }
+>	: '\\' srcloc apats '->' exp	{ HsLambda $2 (reverse $3) $5 }
+>  	| 'let' decllist 'in' exp	{ HsLet $2 $4 }
+>	| 'if' exp 'then' exp 'else' exp { HsIf $2 $4 $6 }
+>	| 'proc' apat '->' cmd		{ ArrSyn.translate $2 $4 }
+
+> exp10b :: { HsExp }
+>	: 'case' exp 'of' altslist	{ HsCase $2 $4 }
+>	| '-' fexp			{ HsNegApp $2 }
+>  	| 'do' stmtlist			{ HsDo $2 }
+>	| fexp				{ $1 }
+
+> fexp :: { HsExp }
+>	: fexp aexp			{ HsApp $1 $2 }
+>  	| aexp				{ $1 }
+
+> apats :: { [HsPat] }
+>	: apats apat			{ $2 : $1 }
+>  	| apat				{ [$1] }
+
+> apat :: { HsPat }
+>	: aexp				{% checkPattern $1 }
+
+UGLY: Because patterns and expressions are mixed, aexp has to be split into
+two rules: One right-recursive and one left-recursive. Otherwise we get two
+reduce/reduce-errors (for as-patterns and irrefutable patters).
+
+Even though the variable in an as-pattern cannot be qualified, we use
+qvar here to avoid a shift/reduce conflict, and then check it ourselves
+(as for vars above).
+
+> aexp	:: { HsExp }
+>	: qvar '@' aexp			{% do { n <- checkUnQual $1;
+>						return (HsAsPat n $3) } }
+>	| '~' aexp			{ HsIrrPat $2 }
+>  	| aexp1				{ $1 }
+
+Note: The first two alternatives of aexp1 are not necessarily record
+updates: they could be labeled constructions.
+
+> aexp1	:: { HsExp }
+>  	: aexp1 '{' '}' 		{% mkRecConstrOrUpdate $1 [] }
+>  	| aexp1 '{' fbinds '}' 		{% mkRecConstrOrUpdate $1 (reverse $3) }
+>  	| aexp2				{ $1 }
+
+According to the Report, the left section (e op) is legal iff (e op x)
+parses equivalently to ((e) op x).  Thus e must be an exp0b.
+
+> aexp2	:: { HsExp }
+>	: qvar				{ HsVar $1 }
+>	| gcon				{ $1 }
+>  	| literal			{ HsLit $1 }
+>	| '(' exp ')'			{ HsParen $2 }
+>	| '(' texps ')'			{ HsTuple (reverse $2) }
+>	| '[' list ']'                  { $2 }
+>	| '(' exp0b qop ')'		{ HsLeftSection $2 $3  }
+>	| '(' qopm exp0 ')'		{ HsRightSection $2 $3 }
+>	| '_'				{ HsWildCard }
+
+> commas :: { Int }
+>	: commas ','			{ $1 + 1 }
+>	| ','				{ 1 }
+
+> texps :: { [HsExp] }
+>	: texps ',' exp			{ $3 : $1 }
+>	| exp ',' exp			{ [$3,$1] }
+
+-----------------------------------------------------------------------------
+List expressions
+
+The rules below are little bit contorted to keep lexps left-recursive while
+avoiding another shift/reduce-conflict.
+
+> list :: { HsExp }
+>	: exp				{ HsList [$1] }
+>	| lexps 			{ HsList (reverse $1) }
+>	| exp '..'			{ HsEnumFrom $1 }
+>	| exp ',' exp '..' 		{ HsEnumFromThen $1 $3 }
+>	| exp '..' exp	 		{ HsEnumFromTo $1 $3 }
+>	| exp ',' exp '..' exp		{ HsEnumFromThenTo $1 $3 $5 }
+>	| exp '|' quals			{ HsListComp $1 (reverse $3) }
+
+> lexps :: { [HsExp] }
+>	: lexps ',' exp 		{ $3 : $1 }
+>	| exp ',' exp			{ [$3,$1] }
+
+-----------------------------------------------------------------------------
+List comprehensions
+
+> quals :: { [HsStmt] }
+>	: quals ',' qual		{ $3 : $1 }
+>	| qual				{ [$1] }
+
+> qual  :: { HsStmt }
+>	: pat srcloc '<-' exp		{ HsGenerator $2 $1 $4 }
+>	| exp				{ HsQualifier $1 }
+>  	| 'let' decllist		{ HsLetStmt $2 }
+
+-----------------------------------------------------------------------------
+Case alternatives
+
+> altslist :: { [HsAlt] }
+>	: '{'  alts '}'			{ $2 }
+>	| open alts close		{ $2 }
+
+> alts :: { [HsAlt] }
+>	: optsemis alts1 optsemis	{ reverse $2 }
+
+> alts1 :: { [HsAlt] }
+>	: alts1 semis alt		{ $3 : $1 }
+>	| alt				{ [$1] }
+
+> alt :: { HsAlt }
+>	: srcloc pat ralt optwhere	{ HsAlt $1 $2 $3 $4 }
+
+> ralt :: { HsGuardedAlts }
+>	: '->' exp			{ HsUnGuardedAlt $2 }
+>	| gdpats			{ HsGuardedAlts (reverse $1) }
+
+> gdpats :: { [HsGuardedAlt] }
+>	: gdpats gdpat			{ $2 : $1 }
+>	| gdpat				{ [$1] }
+
+> gdpat	:: { HsGuardedAlt }
+>	: srcloc '|' exp0 '->' exp	{ HsGuardedAlt $1 $3 $5 }
+
+> pat :: { HsPat }
+>	: exp0b				{% checkPattern $1 }
+
+-----------------------------------------------------------------------------
+Statement sequences
+
+As per the Report, but with stmt expanded to simplify building the list
+without introducing conflicts.  This also ensures that the last stmt is
+an expression.
+
+> stmtlist :: { [HsStmt] }
+>	: '{'  stmts '}'		{ $2 }
+>	| open stmts close		{ $2 }
+
+> stmts :: { [HsStmt] }
+>	: 'let' decllist ';' stmts	{ HsLetStmt $2 : $4 }
+>	| pat srcloc '<-' exp ';' stmts	{ HsGenerator $2 $1 $4 : $6 }
+>	| exp ';' stmts			{ HsQualifier $1 : $3 }
+>	| ';' stmts			{ $2 }
+>	| exp ';'			{ [HsQualifier $1] }
+>	| exp				{ [HsQualifier $1] }
+
+-----------------------------------------------------------------------------
+Record Field Update/Construction
+
+> fbinds :: { [HsFieldUpdate] }
+>	: fbinds ',' fbind		{ $3 : $1 }
+>	| fbind				{ [$1] }
+
+> fbind	:: { HsFieldUpdate }
+>	: qvar '=' exp			{ HsFieldUpdate $1 $3 }
+
+-----------------------------------------------------------------------------
+Commands (for arrow expressions)
+Largely analogous to the treatment of exp (qv), including the distinctions
+exp0a/exp0b and exp10a/exp10b.
+
+> cmd :: { ArrSyn.Cmd }
+>	: exp0b '-<' exp		{ ArrSyn.Input $1 $3 }
+>	| exp0b '-<<' exp		{ ArrSyn.Input $1 $3 }
+>	| exp0b '>-' exp		{ ArrSyn.Input $3 $1 }
+>	| exp0b '>>-' exp		{ ArrSyn.Input $3 $1 }
+>	| cmd0				{ $1 }
+
+> cmd0 :: { ArrSyn.Cmd }
+>	: cmd0a				{ $1 }
+>	| cmd0b				{ $1 }
+
+> cmd0a :: { ArrSyn.Cmd }
+>	: cmd0b qop cmd10a		{ ArrSyn.InfixOp $1 $2 $3 }
+>	| cmd10a			{ $1 }
+
+> cmd0b :: { ArrSyn.Cmd }
+>	: cmd0b qop cmd10b		{ ArrSyn.InfixOp $1 $2 $3 }
+>	| cmd10b			{ $1 }
+
+> cmd10a :: { ArrSyn.Cmd }
+>	: '\\' srcloc apats '->' cmd	{ ArrSyn.Kappa $2 (reverse $3) $5 }
+>	| 'let' decllist 'in' cmd	{ ArrSyn.Let $2 $4 }
+>	| 'let' cmddecl 'in' cmd	{ ArrSyn.LetCmd $2 $4 }
+>	| 'if' exp 'then' cmd 'else' cmd { ArrSyn.If $2 $4 $6 }
+
+> cmd10b :: { ArrSyn.Cmd }
+>	: 'case' exp 'of' altslistA	{ ArrSyn.Case $2 $4 }
+>	| 'do' stmtlistA		{ ArrSyn.Do (fst $2) (snd $2) }
+>	| fcmd				{ $1 }
+
+> fcmd :: { ArrSyn.Cmd }
+>	: fcmd aexp			{ ArrSyn.App $1 $2 }
+>	| acmd				{ $1 }
+
+> acmd :: { ArrSyn.Cmd }
+>	: '(' cmd ')'			{ ArrSyn.Paren $2 }
+>	| '(|' aexp acmds '|)'		{ ArrSyn.Op $2 (reverse $3) }
+>	| 'cmd' varid			{ ArrSyn.CmdVar $2 }
+
+> acmds :: { [ArrSyn.Cmd] }
+>	: acmds acmd			{ $2 : $1 }
+>	| acmd				{ [$1] }
+
+Case commands
+
+> altslistA :: { [ArrSyn.Alt] }
+>	: '{'  altsA '}'		{ $2 }
+>	| open altsA close		{ $2 }
+
+> altsA :: { [ArrSyn.Alt] }
+>	: optsemis alts1A optsemis	{ reverse $2 }
+
+> alts1A :: { [ArrSyn.Alt] }
+>	: alts1A semis altA		{ $3 : $1 }
+>	| altA				{ [$1] }
+
+> altA :: { ArrSyn.Alt }
+>	: srcloc pat raltA optwhere	{ ArrSyn.Alt $1 $2 $3 $4 }
+
+> raltA :: { ArrSyn.GuardedAlts }
+>	: '->' cmd			{ ArrSyn.UnGuardedAlt $2 }
+>	| gdpatsA			{ ArrSyn.GuardedAlts (reverse $1) }
+
+> gdpatsA :: { [ArrSyn.GuardedAlt] }
+>	: gdpatsA gdpatA		{ $2 : $1 }
+>	| gdpatA			{ [$1] }
+
+> gdpatA :: { ArrSyn.GuardedAlt }
+>	: srcloc '|' exp0 '->' cmd	{ ArrSyn.GuardedAlt $1 $3 $5 }
+
+The arrow version of do statements
+
+> stmtlistA :: { ArrSyn.Stmts }
+>	: '{'  stmtsA '}'		{ $2 }
+>	| open stmtsA close		{ $2 }
+
+Note that stmts/stmtsA must be right-recursive; otherwise it is not
+possible, in situations like
+
+	'proc' pat '->' 'do' '(' 'let' decls . ';'
+
+to choose between the productions
+
+	qual -> 'let' decls
+	qualA -> 'let' decls
+
+Now that decision is delayed until the trailing exp/cmd is seen.
+
+> stmtsA :: { ArrSyn.Stmts }
+>	: squalA ';' stmtsA		{ ($1 : fst $3, snd $3) }
+>	| cmd ';' stmtsA		{ (ArrSyn.Generator undefined HsPWildCard $1 : fst $3, snd $3) }
+>	| 'let' decllist ';' stmtsA	{ (ArrSyn.LetStmt $2 : fst $4, snd $4) }
+>	| ';' stmtsA			{ $2 }
+>	| cmd ';'			{ ([], $1) }
+>	| cmd				{ ([], $1) }
+
+> squalA :: { ArrSyn.Stmt }
+>	: pat srcloc '<-' cmd		{ ArrSyn.Generator $2 $1 $4 }
+>	| cmd '->' srcloc pat		{ ArrSyn.Generator $3 $4 $1 }
+>	| 'rec' defnsA			{ ArrSyn.RecStmt (reverse $2) }
+>	| 'let' cmddecl			{ ArrSyn.LetCmdStmt $2 }
+
+> cmddecl :: { ArrSyn.VarDecl ArrSyn.Cmd }
+>	: srcloc 'cmd' varid '=' cmd	{ ArrSyn.VarDecl $1 $3 $5 }
+
+> defnsA :: { [ArrSyn.Stmt] }
+>	: '{'  stmts1A '}'		{ $2 }
+>	| open stmts1A close		{ $2 }
+
+> stmts1A :: { [ArrSyn.Stmt] }
+>	: stmts1A ';' qualA		{ $3 : $1 }
+>	| qualA				{ [$1] }
+
+> qualA :: { ArrSyn.Stmt }
+>	: squalA			{ $1 }
+>	| 'let' decllist		{ ArrSyn.LetStmt $2 }
+
+-----------------------------------------------------------------------------
+Variables, Constructors and Operators.
+
+> gcon :: { HsExp }
+>  	: '(' ')'		{ unit_con }
+>	| '[' ']'		{ HsList [] }
+>	| '(' commas ')'	{ tuple_con $2 }
+>  	| qcon			{ HsCon $1 }
+
+> var 	:: { HsName }
+>	: varid			{ $1 }
+>	| '(' varsym ')'	{ $2 }
+
+> qvar 	:: { HsQName }
+>	: qvarid		{ $1 }
+>	| '(' qvarsym ')'	{ $2 }
+
+> con	:: { HsName }
+>	: conid			{ $1 }
+>	| '(' consym ')'        { $2 }
+
+> qcon	:: { HsQName }
+>	: qconid		{ $1 }
+>	| '(' gconsym ')'	{ $2 }
+
+> varop	:: { HsName }
+>	: varsym		{ $1 }
+>	| '`' varid '`'		{ $2 }
+
+> qvarop :: { HsQName }
+>	: qvarsym		{ $1 }
+>	| '`' qvarid '`'	{ $2 }
+
+> qvaropm :: { HsQName }
+>	: qvarsymm		{ $1 }
+>	| '`' qvarid '`'	{ $2 }
+
+> conop :: { HsName }
+>	: consym		{ $1 }	
+>	| '`' conid '`'		{ $2 }
+
+> qconop :: { HsQName }
+>	: gconsym		{ $1 }
+>	| '`' qconid '`'	{ $2 }
+
+> op	:: { HsOp }
+>	: varop			{ HsVarOp $1 }
+>	| conop 		{ HsConOp $1 }
+
+> qop	:: { HsQOp }
+>	: qvarop		{ HsQVarOp $1 }
+>	| qconop		{ HsQConOp $1 }
+
+> qopm	:: { HsQOp }
+>	: qvaropm		{ HsQVarOp $1 }
+>	| qconop		{ HsQConOp $1 }
+
+> gconsym :: { HsQName }
+>	: ':'			{ list_cons_name }
+>	| qconsym		{ $1 }
+
+-----------------------------------------------------------------------------
+Identifiers and Symbols
+
+> qvarid :: { HsQName }
+>	: varid			{ UnQual $1 }
+>	| QVARID		{ Qual (Module (fst $1)) (HsIdent (snd $1)) }
+
+> varid :: { HsName }
+>	: VARID			{ HsIdent $1 }
+>	| 'as'			{ HsIdent "as" }
+>	| 'export'		{ HsIdent "export" }
+>	| 'hiding'		{ HsIdent "hiding" }
+>	| 'qualified'		{ HsIdent "qualified" }
+>	| 'safe'		{ HsIdent "safe" }
+>	| 'unsafe'		{ HsIdent "unsafe" }
+
+> qconid :: { HsQName }
+>	: conid			{ UnQual $1 }
+>	| QCONID		{ Qual (Module (fst $1)) (HsIdent (snd $1)) }
+
+> conid :: { HsName }
+>	: CONID			{ HsIdent $1 }
+
+> qconsym :: { HsQName }
+>	: consym		{ UnQual $1 }
+>	| QCONSYM		{ Qual (Module (fst $1)) (HsSymbol (snd $1)) }
+
+> consym :: { HsName }
+>	: CONSYM		{ HsSymbol $1 }
+
+> qvarsym :: { HsQName }
+>	: varsym		{ UnQual $1 }
+>	| qvarsym1		{ $1 }
+
+> qvarsymm :: { HsQName }
+>	: varsymm		{ UnQual $1 }
+>	| qvarsym1		{ $1 }
+
+> varsym :: { HsName }
+>	: VARSYM		{ HsSymbol $1 }
+>	| '-'			{ HsSymbol "-" }
+>	| '!'			{ HsSymbol "!" }
+
+> varsymm :: { HsName } -- varsym not including '-'
+>	: VARSYM		{ HsSymbol $1 }
+>	| '!'			{ HsSymbol "!" }
+
+> qvarsym1 :: { HsQName }
+>	: QVARSYM		{ Qual (Module (fst $1)) (HsSymbol (snd $1)) }
+
+> literal :: { HsLiteral }
+>	: INT			{ HsInt $1 }
+>	| CHAR 			{ HsChar $1 }
+>	| RATIONAL		{ HsFrac $1 }
+>	| STRING		{ HsString $1 }
+
+> srcloc :: { SrcLoc }	:	{% getSrcLoc }
+ 
+-----------------------------------------------------------------------------
+Layout
+
+> open  :: { () }	:	{% pushCurrentContext }
+
+> close :: { () }
+>	: vccurly		{ () } -- context popped in lexer.
+>	| error			{% popContext }
+
+-----------------------------------------------------------------------------
+Miscellaneous (mostly renamings)
+
+> modid :: { Module }
+>	: CONID			{ Module $1 }
+>	| QCONID		{ Module (fst $1 ++ '.':snd $1) }
+
+> tyconorcls :: { HsName }
+>	: conid			{ $1 }
+
+> tycon :: { HsName }
+>	: conid			{ $1 }
+
+> qtyconorcls :: { HsQName }
+>	: qconid		{ $1 }
+
+> qtycls :: { HsQName }
+>	: qconid		{ $1 }
+
+> tyvar :: { HsName }
+>	: varid			{ $1 }
+
+-----------------------------------------------------------------------------
+
+> {
+> happyError :: P a
+> happyError = fail "Parse error"
+
+> -- | Parse of a string, which should contain a complete Haskell 98 module.
+> parseModule :: String -> ParseResult HsModule
+> parseModule = runParser parse
+
+> -- | Parse of a string, which should contain a complete Haskell 98 module.
+> parseModuleWithMode :: ParseMode -> String -> ParseResult HsModule
+> parseModuleWithMode mode = runParserWithMode mode parse
+> }
diff --git a/preprocessor/State.hs b/preprocessor/State.hs
new file mode 100644
--- /dev/null
+++ b/preprocessor/State.hs
@@ -0,0 +1,15 @@
+-- A Haskell-98-compatible subset of the Control.Monad.State module.
+
+module State(State, runState, get, put) where
+
+newtype State s a = State { runState :: s -> (a, s) }
+
+instance Monad (State s) where
+	return x = State (\n -> (x, n))
+	State v >>= f = State (\n -> let (x, n') = v n in runState (f x) n')
+
+get :: State s s
+get = State (\s -> (s, s))
+
+put :: s -> State s ()
+put s = State (\_ -> ((), s))
diff --git a/preprocessor/Utils.lhs b/preprocessor/Utils.lhs
new file mode 100644
--- /dev/null
+++ b/preprocessor/Utils.lhs
@@ -0,0 +1,204 @@
+Miscellaneous utilities on ordinary Haskell syntax used by the arrow
+translator.
+
+> module Utils(
+>	FreeVars(freeVars), DefinedVars(definedVars),
+>	failureFree, irrPat, paren, parenInfixArg,
+>	tuple, tupleP,
+>	times
+> ) where
+
+> import Data.Set (Set)
+> import qualified Data.Set as Set
+> import Language.Haskell.Syntax
+
+The set of free variables in some construct.
+
+> class FreeVars a where
+>	freeVars :: a -> Set HsName
+
+> instance FreeVars a => FreeVars [a] where
+>	freeVars = Set.unions . map freeVars
+
+> instance FreeVars HsPat where
+>	freeVars (HsPVar n) = Set.singleton n
+>	freeVars (HsPLit _) = Set.empty
+>	freeVars (HsPNeg p) = freeVars p
+>	freeVars (HsPInfixApp p1 _ p2) = freeVars p1 `Set.union` freeVars p2
+>	freeVars (HsPApp _ ps) = freeVars ps
+>	freeVars (HsPTuple ps) = freeVars ps
+>	freeVars (HsPList ps) = freeVars ps
+>	freeVars (HsPParen p) = freeVars p
+>	freeVars (HsPRec _ pfs) = freeVars pfs
+>	freeVars (HsPAsPat n p) = Set.insert n (freeVars p)
+>	freeVars (HsPWildCard) = Set.empty
+>	freeVars (HsPIrrPat p) = freeVars p
+
+> instance FreeVars HsPatField where
+>	freeVars (HsPFieldPat _ p) = freeVars p
+
+> instance FreeVars HsFieldUpdate where
+>	freeVars (HsFieldUpdate _ e) = freeVars e
+
+> instance FreeVars HsExp where
+>	freeVars (HsVar n) = freeVars n
+>	freeVars (HsCon _) = Set.empty
+>	freeVars (HsLit _) = Set.empty
+>	freeVars (HsInfixApp e1 op e2) =
+>		freeVars e1 `Set.union` freeVars op `Set.union` freeVars e2
+>	freeVars (HsApp f e) = freeVars f `Set.union` freeVars e
+>	freeVars (HsNegApp e) = freeVars e
+>	freeVars (HsLambda _ ps e) = freeVars e `Set.difference` freeVars ps
+>	freeVars (HsLet decls e) =
+>		(freeVars decls `Set.union` freeVars e) `Set.difference`
+>			definedVars decls
+>	freeVars (HsIf e1 e2 e3) =
+>		freeVars e1 `Set.union` freeVars e2 `Set.union` freeVars e3
+>	freeVars (HsCase e as) = freeVars e `Set.union` freeVars as
+>	freeVars (HsDo ss) = freeVarsStmts ss
+>	freeVars (HsTuple es) = freeVars es
+>	freeVars (HsList es) = freeVars es
+>	freeVars (HsParen e) = freeVars e
+>	freeVars (HsLeftSection e op) = freeVars e `Set.union` freeVars op
+>	freeVars (HsRightSection op e) = freeVars op `Set.union` freeVars e
+>	freeVars (HsRecConstr _ us) = freeVars us
+>	freeVars (HsRecUpdate e us) = freeVars e `Set.union` freeVars us
+>	freeVars (HsEnumFrom e) = freeVars e
+>	freeVars (HsEnumFromTo e1 e2) = freeVars e1 `Set.union` freeVars e2
+>	freeVars (HsEnumFromThen e1 e2) = freeVars e1 `Set.union` freeVars e2
+>	freeVars (HsEnumFromThenTo e1 e2 e3) =
+>		freeVars e1 `Set.union` freeVars e2 `Set.union` freeVars e3
+>	freeVars (HsListComp e ss) =
+>		freeVars e `Set.union` freeVarsStmts ss
+>	freeVars (HsExpTypeSig _ e _) = freeVars e
+>	freeVars (HsAsPat _ _) = error "freeVars (x @ p)"
+>	freeVars (HsWildCard) = error "freeVars _"
+>	freeVars (HsIrrPat _) = error "freeVars ~p"
+
+> instance FreeVars HsQOp where
+>	freeVars (HsQVarOp n) = freeVars n
+>	freeVars (HsQConOp _) = Set.empty
+
+> instance FreeVars HsQName where
+>	freeVars (UnQual v) = Set.singleton v
+>	freeVars _ = Set.empty
+
+> instance FreeVars HsAlt where
+>	freeVars (HsAlt _ p gas decls) =
+>		(freeVars gas `Set.union` freeVars decls) `Set.difference`
+>		(freeVars p `Set.union` definedVars decls)
+
+> instance FreeVars HsGuardedAlts where
+>	freeVars (HsUnGuardedAlt e) = freeVars e
+>	freeVars (HsGuardedAlts alts) = freeVars alts
+
+> instance FreeVars HsGuardedAlt where
+>	freeVars (HsGuardedAlt _ e1 e2) = freeVars e1 `Set.union` freeVars e2
+
+> instance FreeVars HsDecl where
+>	freeVars (HsFunBind ms) = freeVars ms
+>	freeVars (HsPatBind _ p rhs decls) =
+>		(freeVars rhs `Set.union` freeVars decls) `Set.difference`
+>		(freeVars p `Set.union` definedVars decls)
+>	freeVars _ = Set.empty
+
+> instance FreeVars HsMatch where
+>	freeVars (HsMatch _ n ps rhs decls) =
+>		(freeVars rhs `Set.union` freeVars decls) `Set.difference`
+>		(Set.insert n (freeVars ps) `Set.union` definedVars decls)
+
+> instance FreeVars HsRhs where
+>	freeVars (HsUnGuardedRhs e) = freeVars e
+>	freeVars (HsGuardedRhss grs) = freeVars grs
+
+> instance FreeVars HsGuardedRhs where
+>	freeVars (HsGuardedRhs _ e1 e2) = freeVars e1 `Set.union` freeVars e2
+
+> freeVarsStmts :: [HsStmt] -> Set HsName
+> freeVarsStmts = foldr addStmt Set.empty
+>	where	addStmt (HsGenerator _ p e) s =
+>			freeVars e `Set.union` (s `Set.difference` freeVars p)
+>		addStmt (HsQualifier e) _s = freeVars e
+>		addStmt (HsLetStmt decls) s =
+>			(freeVars decls `Set.union` s) `Set.difference` definedVars decls
+
+The set of variables defined by a construct.
+
+> class DefinedVars a where
+>	definedVars :: a -> Set HsName
+
+> instance DefinedVars a => DefinedVars [a] where
+>	definedVars = Set.unions . map definedVars
+
+> instance DefinedVars HsDecl where
+>	definedVars (HsFunBind (HsMatch _ n _ _ _:_)) = Set.singleton n
+>	definedVars (HsPatBind _ p _ _) = freeVars p
+>	definedVars _ = Set.empty
+
+Is the pattern failure-free?
+(This is incomplete at the moment, because patterns made with unique
+constructors should be failure-free, but we have no way of detecting them.)
+
+> failureFree :: HsPat -> Bool
+> failureFree (HsPVar _) = True
+> failureFree (HsPApp n ps) = n == unit_con_name && null ps
+> failureFree (HsPTuple ps) = all failureFree ps
+> failureFree (HsPParen p) = failureFree p
+> failureFree (HsPAsPat _ p) = failureFree p
+> failureFree (HsPWildCard) = True
+> failureFree (HsPIrrPat _) = True
+> failureFree _ = False
+
+Irrefutable version of a pattern
+
+> irrPat :: HsPat -> HsPat
+> irrPat p@(HsPVar _) = p
+> irrPat (HsPParen p) = HsPParen (irrPat p)
+> irrPat (HsPAsPat n p) = HsPAsPat n (irrPat p)
+> irrPat p@(HsPWildCard) = p
+> irrPat p@(HsPIrrPat _) = p
+> irrPat p = HsPIrrPat p
+
+Make an expression into an aexp, by adding parentheses if required.
+
+> paren :: HsExp -> HsExp
+> paren e = if isAexp e then e else HsParen e
+>	where	isAexp (HsVar _) = True
+>		isAexp (HsCon _) = True
+>		isAexp (HsLit _) = True
+>		isAexp (HsParen _) = True
+>		isAexp (HsTuple _) = True
+>		isAexp (HsList _) = True
+>		isAexp (HsEnumFrom _) = True
+>		isAexp (HsEnumFromTo _ _) = True
+>		isAexp (HsEnumFromThen _ _) = True
+>		isAexp (HsEnumFromThenTo _ _ _) = True
+>		isAexp (HsListComp _ _) = True
+>		isAexp (HsLeftSection _ _) = True
+>		isAexp (HsRightSection _ _) = True
+>		isAexp (HsRecConstr _ _) = True
+>		isAexp (HsRecUpdate _ _) = True
+>		isAexp _ = False
+
+Make an expression into an fexp, by adding parentheses if required.
+
+> parenInfixArg :: HsExp -> HsExp
+> parenInfixArg e@(HsApp _ _) = e
+> parenInfixArg e = paren e
+
+Tuples
+
+> tuple :: [HsExp] -> HsExp
+> tuple [] = unit_con
+> tuple [e] = e
+> tuple es = HsTuple es
+
+> tupleP :: [HsPat] -> HsPat
+> tupleP [] = HsPApp unit_con_name []
+> tupleP [e] = e
+> tupleP es = HsPTuple es
+
+Compose a function n times.
+
+> times :: Int -> (a -> a) -> a -> a
+> times n f a = foldr ($) a (replicate n f)
