{-# OPTIONS -fglasgow-exts -cpp #-} {-# LANGUAGE MagicHash #-} module Language.C.Parser.Parser ( -- * Parse a C translation unit parseC, -- * Exposed Parsers translUnitP, extDeclP, statementP, expressionP ) where -- Relevant C99 sections: -- -- 6.5 Expressions .1 - .17 and 6.6 (almost literally) -- Supported GNU extensions: -- - Allow a compound statement as an expression -- - Various __builtin_* forms that take type parameters -- - `alignof' expression or type -- - `__extension__' to suppress warnings about extensions -- - Allow taking address of a label with: && label -- - Omitting the `then' part of conditional expressions -- - complex numbers -- -- 6.7 C Declarations .1 -.8 -- Supported GNU extensions: -- - '__thread' thread local storage (6.7.1) -- -- 6.8 Statements .1 - .8 -- Supported GNU extensions: -- - case ranges (C99 6.8.1) -- - '__label__ ident;' declarations (C99 6.8.2) -- - computed gotos (C99 6.8.6) -- -- 6.9 Translation unit -- Supported GNU extensions: -- - allow empty translation_unit -- - allow redundant ';' -- - allow extension keyword before external declaration -- - asm definitions -- -- Since some of the grammar productions are quite difficult to read, -- (especially those involved with the decleration syntax) we document them -- with an extended syntax that allows a more consise representation: -- -- Ordinary rules -- -- foo named terminal or non-terminal -- -- 'c' terminal, literal character token -- -- A B concatenation -- -- A | B alternation -- -- (A) grouping -- -- Extended rules -- -- A? optional, short hand for (A|) or [A]{ 0==A || 1==A } -- -- ... stands for some part of the grammar omitted for clarity -- -- {A} represents sequences, 0 or more. -- -- modifier which states that any permutation of the immediate subterms is valid -- -- --- TODO ---------------------------------------------------------------------- -- -- !* We ignore the C99 static keyword (see C99 6.7.5.3) -- !* We do not distinguish in the AST between incomplete array types and -- complete variable length arrays ([ '*' ] means the latter). (see C99 6.7.5.2) -- !* The AST doesn't allow recording __attribute__ of unnamed struct field -- (see , struct_default_declaring_list, struct_identifier_declarator) -- !* see `We're being far to liberal here' (... struct definition within structs) -- * Documentation isn't complete and consistent yet. import Prelude hiding (reverse) import qualified Data.List as List import Control.Monad (mplus) import Language.C.Parser.Builtin (builtinTypeNames) import Language.C.Parser.Lexer (lexC, parseError) import Language.C.Parser.Tokens (CToken(..), GnuCTok(..), posLenOfTok) import Language.C.Parser.ParserMonad (P, failP, execParser, getNewName, addTypedef, shadowTypedef, getCurrentPosition, enterScope, leaveScope, getLastToken, getSavedToken, ParseError(..)) import Language.C.Data.RList import Language.C.Data.InputStream import Language.C.Data.Ident import Language.C.Data.Name import Language.C.Data.Node import Language.C.Data.Position import Language.C.Syntax -- #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 (() -> ()) happyIn7 :: (CTranslUnit) -> (HappyAbsSyn ) happyIn7 x = unsafeCoerce# x {-# INLINE happyIn7 #-} happyOut7 :: (HappyAbsSyn ) -> (CTranslUnit) happyOut7 x = unsafeCoerce# x {-# INLINE happyOut7 #-} happyIn8 :: (Reversed [CExtDecl]) -> (HappyAbsSyn ) happyIn8 x = unsafeCoerce# x {-# INLINE happyIn8 #-} happyOut8 :: (HappyAbsSyn ) -> (Reversed [CExtDecl]) happyOut8 x = unsafeCoerce# x {-# INLINE happyOut8 #-} happyIn9 :: (CExtDecl) -> (HappyAbsSyn ) happyIn9 x = unsafeCoerce# x {-# INLINE happyIn9 #-} happyOut9 :: (HappyAbsSyn ) -> (CExtDecl) happyOut9 x = unsafeCoerce# x {-# INLINE happyOut9 #-} happyIn10 :: (CFunDef) -> (HappyAbsSyn ) happyIn10 x = unsafeCoerce# x {-# INLINE happyIn10 #-} happyOut10 :: (HappyAbsSyn ) -> (CFunDef) happyOut10 x = unsafeCoerce# x {-# INLINE happyOut10 #-} happyIn11 :: (CDeclr) -> (HappyAbsSyn ) happyIn11 x = unsafeCoerce# x {-# INLINE happyIn11 #-} happyOut11 :: (HappyAbsSyn ) -> (CDeclr) happyOut11 x = unsafeCoerce# x {-# INLINE happyOut11 #-} happyIn12 :: (CStat) -> (HappyAbsSyn ) happyIn12 x = unsafeCoerce# x {-# INLINE happyIn12 #-} happyOut12 :: (HappyAbsSyn ) -> (CStat) happyOut12 x = unsafeCoerce# x {-# INLINE happyOut12 #-} happyIn13 :: (CStat) -> (HappyAbsSyn ) happyIn13 x = unsafeCoerce# x {-# INLINE happyIn13 #-} happyOut13 :: (HappyAbsSyn ) -> (CStat) happyOut13 x = unsafeCoerce# x {-# INLINE happyOut13 #-} happyIn14 :: (CStat) -> (HappyAbsSyn ) happyIn14 x = unsafeCoerce# x {-# INLINE happyIn14 #-} happyOut14 :: (HappyAbsSyn ) -> (CStat) happyOut14 x = unsafeCoerce# x {-# INLINE happyOut14 #-} happyIn15 :: (()) -> (HappyAbsSyn ) happyIn15 x = unsafeCoerce# x {-# INLINE happyIn15 #-} happyOut15 :: (HappyAbsSyn ) -> (()) happyOut15 x = unsafeCoerce# x {-# INLINE happyOut15 #-} happyIn16 :: (()) -> (HappyAbsSyn ) happyIn16 x = unsafeCoerce# x {-# INLINE happyIn16 #-} happyOut16 :: (HappyAbsSyn ) -> (()) happyOut16 x = unsafeCoerce# x {-# INLINE happyOut16 #-} happyIn17 :: (Reversed [CBlockItem]) -> (HappyAbsSyn ) happyIn17 x = unsafeCoerce# x {-# INLINE happyIn17 #-} happyOut17 :: (HappyAbsSyn ) -> (Reversed [CBlockItem]) happyOut17 x = unsafeCoerce# x {-# INLINE happyOut17 #-} happyIn18 :: (CBlockItem) -> (HappyAbsSyn ) happyIn18 x = unsafeCoerce# x {-# INLINE happyIn18 #-} happyOut18 :: (HappyAbsSyn ) -> (CBlockItem) happyOut18 x = unsafeCoerce# x {-# INLINE happyOut18 #-} happyIn19 :: (CBlockItem) -> (HappyAbsSyn ) happyIn19 x = unsafeCoerce# x {-# INLINE happyIn19 #-} happyOut19 :: (HappyAbsSyn ) -> (CBlockItem) happyOut19 x = unsafeCoerce# x {-# INLINE happyOut19 #-} happyIn20 :: (CFunDef) -> (HappyAbsSyn ) happyIn20 x = unsafeCoerce# x {-# INLINE happyIn20 #-} happyOut20 :: (HappyAbsSyn ) -> (CFunDef) happyOut20 x = unsafeCoerce# x {-# INLINE happyOut20 #-} happyIn21 :: (Reversed [Ident]) -> (HappyAbsSyn ) happyIn21 x = unsafeCoerce# x {-# INLINE happyIn21 #-} happyOut21 :: (HappyAbsSyn ) -> (Reversed [Ident]) happyOut21 x = unsafeCoerce# x {-# INLINE happyOut21 #-} happyIn22 :: (CStat) -> (HappyAbsSyn ) happyIn22 x = unsafeCoerce# x {-# INLINE happyIn22 #-} happyOut22 :: (HappyAbsSyn ) -> (CStat) happyOut22 x = unsafeCoerce# x {-# INLINE happyOut22 #-} happyIn23 :: (CStat) -> (HappyAbsSyn ) happyIn23 x = unsafeCoerce# x {-# INLINE happyIn23 #-} happyOut23 :: (HappyAbsSyn ) -> (CStat) happyOut23 x = unsafeCoerce# x {-# INLINE happyOut23 #-} happyIn24 :: (CStat) -> (HappyAbsSyn ) happyIn24 x = unsafeCoerce# x {-# INLINE happyIn24 #-} happyOut24 :: (HappyAbsSyn ) -> (CStat) happyOut24 x = unsafeCoerce# x {-# INLINE happyOut24 #-} happyIn25 :: (CStat) -> (HappyAbsSyn ) happyIn25 x = unsafeCoerce# x {-# INLINE happyIn25 #-} happyOut25 :: (HappyAbsSyn ) -> (CStat) happyOut25 x = unsafeCoerce# x {-# INLINE happyOut25 #-} happyIn26 :: (CAsmStmt) -> (HappyAbsSyn ) happyIn26 x = unsafeCoerce# x {-# INLINE happyIn26 #-} happyOut26 :: (HappyAbsSyn ) -> (CAsmStmt) happyOut26 x = unsafeCoerce# x {-# INLINE happyOut26 #-} happyIn27 :: (Maybe CTypeQual) -> (HappyAbsSyn ) happyIn27 x = unsafeCoerce# x {-# INLINE happyIn27 #-} happyOut27 :: (HappyAbsSyn ) -> (Maybe CTypeQual) happyOut27 x = unsafeCoerce# x {-# INLINE happyOut27 #-} happyIn28 :: ([CAsmOperand]) -> (HappyAbsSyn ) happyIn28 x = unsafeCoerce# x {-# INLINE happyIn28 #-} happyOut28 :: (HappyAbsSyn ) -> ([CAsmOperand]) happyOut28 x = unsafeCoerce# x {-# INLINE happyOut28 #-} happyIn29 :: (Reversed [CAsmOperand]) -> (HappyAbsSyn ) happyIn29 x = unsafeCoerce# x {-# INLINE happyIn29 #-} happyOut29 :: (HappyAbsSyn ) -> (Reversed [CAsmOperand]) happyOut29 x = unsafeCoerce# x {-# INLINE happyOut29 #-} happyIn30 :: (CAsmOperand) -> (HappyAbsSyn ) happyIn30 x = unsafeCoerce# x {-# INLINE happyIn30 #-} happyOut30 :: (HappyAbsSyn ) -> (CAsmOperand) happyOut30 x = unsafeCoerce# x {-# INLINE happyOut30 #-} happyIn31 :: (Reversed [CStrLit]) -> (HappyAbsSyn ) happyIn31 x = unsafeCoerce# x {-# INLINE happyIn31 #-} happyOut31 :: (HappyAbsSyn ) -> (Reversed [CStrLit]) happyOut31 x = unsafeCoerce# x {-# INLINE happyOut31 #-} happyIn32 :: (CDecl) -> (HappyAbsSyn ) happyIn32 x = unsafeCoerce# x {-# INLINE happyIn32 #-} happyOut32 :: (HappyAbsSyn ) -> (CDecl) happyOut32 x = unsafeCoerce# x {-# INLINE happyOut32 #-} happyIn33 :: (Reversed [CDecl]) -> (HappyAbsSyn ) happyIn33 x = unsafeCoerce# x {-# INLINE happyIn33 #-} happyOut33 :: (HappyAbsSyn ) -> (Reversed [CDecl]) happyOut33 x = unsafeCoerce# x {-# INLINE happyOut33 #-} happyIn34 :: (CDecl) -> (HappyAbsSyn ) happyIn34 x = unsafeCoerce# x {-# INLINE happyIn34 #-} happyOut34 :: (HappyAbsSyn ) -> (CDecl) happyOut34 x = unsafeCoerce# x {-# INLINE happyOut34 #-} happyIn35 :: ((Maybe CStrLit, [CAttr])) -> (HappyAbsSyn ) happyIn35 x = unsafeCoerce# x {-# INLINE happyIn35 #-} happyOut35 :: (HappyAbsSyn ) -> ((Maybe CStrLit, [CAttr])) happyOut35 x = unsafeCoerce# x {-# INLINE happyOut35 #-} happyIn36 :: (CDecl) -> (HappyAbsSyn ) happyIn36 x = unsafeCoerce# x {-# INLINE happyIn36 #-} happyOut36 :: (HappyAbsSyn ) -> (CDecl) happyOut36 x = unsafeCoerce# x {-# INLINE happyOut36 #-} happyIn37 :: ([CDeclSpec]) -> (HappyAbsSyn ) happyIn37 x = unsafeCoerce# x {-# INLINE happyIn37 #-} happyOut37 :: (HappyAbsSyn ) -> ([CDeclSpec]) happyOut37 x = unsafeCoerce# x {-# INLINE happyOut37 #-} happyIn38 :: (Reversed [CDeclSpec]) -> (HappyAbsSyn ) happyIn38 x = unsafeCoerce# x {-# INLINE happyIn38 #-} happyOut38 :: (HappyAbsSyn ) -> (Reversed [CDeclSpec]) happyOut38 x = unsafeCoerce# x {-# INLINE happyOut38 #-} happyIn39 :: (CDeclSpec) -> (HappyAbsSyn ) happyIn39 x = unsafeCoerce# x {-# INLINE happyIn39 #-} happyOut39 :: (HappyAbsSyn ) -> (CDeclSpec) happyOut39 x = unsafeCoerce# x {-# INLINE happyOut39 #-} happyIn40 :: (CStorageSpec) -> (HappyAbsSyn ) happyIn40 x = unsafeCoerce# x {-# INLINE happyIn40 #-} happyOut40 :: (HappyAbsSyn ) -> (CStorageSpec) happyOut40 x = unsafeCoerce# x {-# INLINE happyOut40 #-} happyIn41 :: ([CDeclSpec]) -> (HappyAbsSyn ) happyIn41 x = unsafeCoerce# x {-# INLINE happyIn41 #-} happyOut41 :: (HappyAbsSyn ) -> ([CDeclSpec]) happyOut41 x = unsafeCoerce# x {-# INLINE happyOut41 #-} happyIn42 :: (CTypeSpec) -> (HappyAbsSyn ) happyIn42 x = unsafeCoerce# x {-# INLINE happyIn42 #-} happyOut42 :: (HappyAbsSyn ) -> (CTypeSpec) happyOut42 x = unsafeCoerce# x {-# INLINE happyOut42 #-} happyIn43 :: (Reversed [CDeclSpec]) -> (HappyAbsSyn ) happyIn43 x = unsafeCoerce# x {-# INLINE happyIn43 #-} happyOut43 :: (HappyAbsSyn ) -> (Reversed [CDeclSpec]) happyOut43 x = unsafeCoerce# x {-# INLINE happyOut43 #-} happyIn44 :: (Reversed [CDeclSpec]) -> (HappyAbsSyn ) happyIn44 x = unsafeCoerce# x {-# INLINE happyIn44 #-} happyOut44 :: (HappyAbsSyn ) -> (Reversed [CDeclSpec]) happyOut44 x = unsafeCoerce# x {-# INLINE happyOut44 #-} happyIn45 :: (Reversed [CDeclSpec]) -> (HappyAbsSyn ) happyIn45 x = unsafeCoerce# x {-# INLINE happyIn45 #-} happyOut45 :: (HappyAbsSyn ) -> (Reversed [CDeclSpec]) happyOut45 x = unsafeCoerce# x {-# INLINE happyOut45 #-} happyIn46 :: (Reversed [CDeclSpec]) -> (HappyAbsSyn ) happyIn46 x = unsafeCoerce# x {-# INLINE happyIn46 #-} happyOut46 :: (HappyAbsSyn ) -> (Reversed [CDeclSpec]) happyOut46 x = unsafeCoerce# x {-# INLINE happyOut46 #-} happyIn47 :: (Reversed [CDeclSpec]) -> (HappyAbsSyn ) happyIn47 x = unsafeCoerce# x {-# INLINE happyIn47 #-} happyOut47 :: (HappyAbsSyn ) -> (Reversed [CDeclSpec]) happyOut47 x = unsafeCoerce# x {-# INLINE happyOut47 #-} happyIn48 :: (Reversed [CDeclSpec]) -> (HappyAbsSyn ) happyIn48 x = unsafeCoerce# x {-# INLINE happyIn48 #-} happyOut48 :: (HappyAbsSyn ) -> (Reversed [CDeclSpec]) happyOut48 x = unsafeCoerce# x {-# INLINE happyOut48 #-} happyIn49 :: (CTypeSpec) -> (HappyAbsSyn ) happyIn49 x = unsafeCoerce# x {-# INLINE happyIn49 #-} happyOut49 :: (HappyAbsSyn ) -> (CTypeSpec) happyOut49 x = unsafeCoerce# x {-# INLINE happyOut49 #-} happyIn50 :: (CStructUnion) -> (HappyAbsSyn ) happyIn50 x = unsafeCoerce# x {-# INLINE happyIn50 #-} happyOut50 :: (HappyAbsSyn ) -> (CStructUnion) happyOut50 x = unsafeCoerce# x {-# INLINE happyOut50 #-} happyIn51 :: (Located CStructTag) -> (HappyAbsSyn ) happyIn51 x = unsafeCoerce# x {-# INLINE happyIn51 #-} happyOut51 :: (HappyAbsSyn ) -> (Located CStructTag) happyOut51 x = unsafeCoerce# x {-# INLINE happyOut51 #-} happyIn52 :: (Reversed [CDecl]) -> (HappyAbsSyn ) happyIn52 x = unsafeCoerce# x {-# INLINE happyIn52 #-} happyOut52 :: (HappyAbsSyn ) -> (Reversed [CDecl]) happyOut52 x = unsafeCoerce# x {-# INLINE happyOut52 #-} happyIn53 :: (CDecl) -> (HappyAbsSyn ) happyIn53 x = unsafeCoerce# x {-# INLINE happyIn53 #-} happyOut53 :: (HappyAbsSyn ) -> (CDecl) happyOut53 x = unsafeCoerce# x {-# INLINE happyOut53 #-} happyIn54 :: (CDecl) -> (HappyAbsSyn ) happyIn54 x = unsafeCoerce# x {-# INLINE happyIn54 #-} happyOut54 :: (HappyAbsSyn ) -> (CDecl) happyOut54 x = unsafeCoerce# x {-# INLINE happyOut54 #-} happyIn55 :: (CDecl) -> (HappyAbsSyn ) happyIn55 x = unsafeCoerce# x {-# INLINE happyIn55 #-} happyOut55 :: (HappyAbsSyn ) -> (CDecl) happyOut55 x = unsafeCoerce# x {-# INLINE happyOut55 #-} happyIn56 :: ((Maybe CDeclr, Maybe CExpr)) -> (HappyAbsSyn ) happyIn56 x = unsafeCoerce# x {-# INLINE happyIn56 #-} happyOut56 :: (HappyAbsSyn ) -> ((Maybe CDeclr, Maybe CExpr)) happyOut56 x = unsafeCoerce# x {-# INLINE happyOut56 #-} happyIn57 :: ((Maybe CDeclr, Maybe CExpr)) -> (HappyAbsSyn ) happyIn57 x = unsafeCoerce# x {-# INLINE happyIn57 #-} happyOut57 :: (HappyAbsSyn ) -> ((Maybe CDeclr, Maybe CExpr)) happyOut57 x = unsafeCoerce# x {-# INLINE happyOut57 #-} happyIn58 :: (CEnum) -> (HappyAbsSyn ) happyIn58 x = unsafeCoerce# x {-# INLINE happyIn58 #-} happyOut58 :: (HappyAbsSyn ) -> (CEnum) happyOut58 x = unsafeCoerce# x {-# INLINE happyOut58 #-} happyIn59 :: (Reversed [(Ident, Maybe CExpr)]) -> (HappyAbsSyn ) happyIn59 x = unsafeCoerce# x {-# INLINE happyIn59 #-} happyOut59 :: (HappyAbsSyn ) -> (Reversed [(Ident, Maybe CExpr)]) happyOut59 x = unsafeCoerce# x {-# INLINE happyOut59 #-} happyIn60 :: ((Ident, Maybe CExpr)) -> (HappyAbsSyn ) happyIn60 x = unsafeCoerce# x {-# INLINE happyIn60 #-} happyOut60 :: (HappyAbsSyn ) -> ((Ident, Maybe CExpr)) happyOut60 x = unsafeCoerce# x {-# INLINE happyOut60 #-} happyIn61 :: (CTypeQual) -> (HappyAbsSyn ) happyIn61 x = unsafeCoerce# x {-# INLINE happyIn61 #-} happyOut61 :: (HappyAbsSyn ) -> (CTypeQual) happyOut61 x = unsafeCoerce# x {-# INLINE happyOut61 #-} happyIn62 :: (Reversed [CTypeQual]) -> (HappyAbsSyn ) happyIn62 x = unsafeCoerce# x {-# INLINE happyIn62 #-} happyOut62 :: (HappyAbsSyn ) -> (Reversed [CTypeQual]) happyOut62 x = unsafeCoerce# x {-# INLINE happyOut62 #-} happyIn63 :: (CDeclrR) -> (HappyAbsSyn ) happyIn63 x = unsafeCoerce# x {-# INLINE happyIn63 #-} happyOut63 :: (HappyAbsSyn ) -> (CDeclrR) happyOut63 x = unsafeCoerce# x {-# INLINE happyOut63 #-} happyIn64 :: (Maybe CStrLit) -> (HappyAbsSyn ) happyIn64 x = unsafeCoerce# x {-# INLINE happyIn64 #-} happyOut64 :: (HappyAbsSyn ) -> (Maybe CStrLit) happyOut64 x = unsafeCoerce# x {-# INLINE happyOut64 #-} happyIn65 :: (CDeclrR) -> (HappyAbsSyn ) happyIn65 x = unsafeCoerce# x {-# INLINE happyIn65 #-} happyOut65 :: (HappyAbsSyn ) -> (CDeclrR) happyOut65 x = unsafeCoerce# x {-# INLINE happyOut65 #-} happyIn66 :: (CDeclrR) -> (HappyAbsSyn ) happyIn66 x = unsafeCoerce# x {-# INLINE happyIn66 #-} happyOut66 :: (HappyAbsSyn ) -> (CDeclrR) happyOut66 x = unsafeCoerce# x {-# INLINE happyOut66 #-} happyIn67 :: (CDeclrR) -> (HappyAbsSyn ) happyIn67 x = unsafeCoerce# x {-# INLINE happyIn67 #-} happyOut67 :: (HappyAbsSyn ) -> (CDeclrR) happyOut67 x = unsafeCoerce# x {-# INLINE happyOut67 #-} happyIn68 :: (CDeclrR) -> (HappyAbsSyn ) happyIn68 x = unsafeCoerce# x {-# INLINE happyIn68 #-} happyOut68 :: (HappyAbsSyn ) -> (CDeclrR) happyOut68 x = unsafeCoerce# x {-# INLINE happyOut68 #-} happyIn69 :: (CDeclrR) -> (HappyAbsSyn ) happyIn69 x = unsafeCoerce# x {-# INLINE happyIn69 #-} happyOut69 :: (HappyAbsSyn ) -> (CDeclrR) happyOut69 x = unsafeCoerce# x {-# INLINE happyOut69 #-} happyIn70 :: (CDeclrR) -> (HappyAbsSyn ) happyIn70 x = unsafeCoerce# x {-# INLINE happyIn70 #-} happyOut70 :: (HappyAbsSyn ) -> (CDeclrR) happyOut70 x = unsafeCoerce# x {-# INLINE happyOut70 #-} happyIn71 :: (CDeclrR) -> (HappyAbsSyn ) happyIn71 x = unsafeCoerce# x {-# INLINE happyIn71 #-} happyOut71 :: (HappyAbsSyn ) -> (CDeclrR) happyOut71 x = unsafeCoerce# x {-# INLINE happyOut71 #-} happyIn72 :: (CDeclrR) -> (HappyAbsSyn ) happyIn72 x = unsafeCoerce# x {-# INLINE happyIn72 #-} happyOut72 :: (HappyAbsSyn ) -> (CDeclrR) happyOut72 x = unsafeCoerce# x {-# INLINE happyOut72 #-} happyIn73 :: (CDeclrR) -> (HappyAbsSyn ) happyIn73 x = unsafeCoerce# x {-# INLINE happyIn73 #-} happyOut73 :: (HappyAbsSyn ) -> (CDeclrR) happyOut73 x = unsafeCoerce# x {-# INLINE happyOut73 #-} happyIn74 :: (CDeclrR) -> (HappyAbsSyn ) happyIn74 x = unsafeCoerce# x {-# INLINE happyIn74 #-} happyOut74 :: (HappyAbsSyn ) -> (CDeclrR) happyOut74 x = unsafeCoerce# x {-# INLINE happyOut74 #-} happyIn75 :: (CDeclrR) -> (HappyAbsSyn ) happyIn75 x = unsafeCoerce# x {-# INLINE happyIn75 #-} happyOut75 :: (HappyAbsSyn ) -> (CDeclrR) happyOut75 x = unsafeCoerce# x {-# INLINE happyOut75 #-} happyIn76 :: (CDeclr) -> (HappyAbsSyn ) happyIn76 x = unsafeCoerce# x {-# INLINE happyIn76 #-} happyOut76 :: (HappyAbsSyn ) -> (CDeclr) happyOut76 x = unsafeCoerce# x {-# INLINE happyOut76 #-} happyIn77 :: (CDeclrR) -> (HappyAbsSyn ) happyIn77 x = unsafeCoerce# x {-# INLINE happyIn77 #-} happyOut77 :: (HappyAbsSyn ) -> (CDeclrR) happyOut77 x = unsafeCoerce# x {-# INLINE happyOut77 #-} happyIn78 :: (CDeclrR) -> (HappyAbsSyn ) happyIn78 x = unsafeCoerce# x {-# INLINE happyIn78 #-} happyOut78 :: (HappyAbsSyn ) -> (CDeclrR) happyOut78 x = unsafeCoerce# x {-# INLINE happyOut78 #-} happyIn79 :: (([CDecl], Bool)) -> (HappyAbsSyn ) happyIn79 x = unsafeCoerce# x {-# INLINE happyIn79 #-} happyOut79 :: (HappyAbsSyn ) -> (([CDecl], Bool)) happyOut79 x = unsafeCoerce# x {-# INLINE happyOut79 #-} happyIn80 :: (Reversed [CDecl]) -> (HappyAbsSyn ) happyIn80 x = unsafeCoerce# x {-# INLINE happyIn80 #-} happyOut80 :: (HappyAbsSyn ) -> (Reversed [CDecl]) happyOut80 x = unsafeCoerce# x {-# INLINE happyOut80 #-} happyIn81 :: (CDecl) -> (HappyAbsSyn ) happyIn81 x = unsafeCoerce# x {-# INLINE happyIn81 #-} happyOut81 :: (HappyAbsSyn ) -> (CDecl) happyOut81 x = unsafeCoerce# x {-# INLINE happyOut81 #-} happyIn82 :: (Reversed [Ident]) -> (HappyAbsSyn ) happyIn82 x = unsafeCoerce# x {-# INLINE happyIn82 #-} happyOut82 :: (HappyAbsSyn ) -> (Reversed [Ident]) happyOut82 x = unsafeCoerce# x {-# INLINE happyOut82 #-} happyIn83 :: (CDecl) -> (HappyAbsSyn ) happyIn83 x = unsafeCoerce# x {-# INLINE happyIn83 #-} happyOut83 :: (HappyAbsSyn ) -> (CDecl) happyOut83 x = unsafeCoerce# x {-# INLINE happyOut83 #-} happyIn84 :: (CDeclrR) -> (HappyAbsSyn ) happyIn84 x = unsafeCoerce# x {-# INLINE happyIn84 #-} happyOut84 :: (HappyAbsSyn ) -> (CDeclrR) happyOut84 x = unsafeCoerce# x {-# INLINE happyOut84 #-} happyIn85 :: (CDeclrR -> CDeclrR) -> (HappyAbsSyn ) happyIn85 x = unsafeCoerce# x {-# INLINE happyIn85 #-} happyOut85 :: (HappyAbsSyn ) -> (CDeclrR -> CDeclrR) happyOut85 x = unsafeCoerce# x {-# INLINE happyOut85 #-} happyIn86 :: (CDeclrR -> CDeclrR) -> (HappyAbsSyn ) happyIn86 x = unsafeCoerce# x {-# INLINE happyIn86 #-} happyOut86 :: (HappyAbsSyn ) -> (CDeclrR -> CDeclrR) happyOut86 x = unsafeCoerce# x {-# INLINE happyOut86 #-} happyIn87 :: (CDeclrR -> CDeclrR) -> (HappyAbsSyn ) happyIn87 x = unsafeCoerce# x {-# INLINE happyIn87 #-} happyOut87 :: (HappyAbsSyn ) -> (CDeclrR -> CDeclrR) happyOut87 x = unsafeCoerce# x {-# INLINE happyOut87 #-} happyIn88 :: (CDeclrR) -> (HappyAbsSyn ) happyIn88 x = unsafeCoerce# x {-# INLINE happyIn88 #-} happyOut88 :: (HappyAbsSyn ) -> (CDeclrR) happyOut88 x = unsafeCoerce# x {-# INLINE happyOut88 #-} happyIn89 :: (CDeclrR) -> (HappyAbsSyn ) happyIn89 x = unsafeCoerce# x {-# INLINE happyIn89 #-} happyOut89 :: (HappyAbsSyn ) -> (CDeclrR) happyOut89 x = unsafeCoerce# x {-# INLINE happyOut89 #-} happyIn90 :: (CInit) -> (HappyAbsSyn ) happyIn90 x = unsafeCoerce# x {-# INLINE happyIn90 #-} happyOut90 :: (HappyAbsSyn ) -> (CInit) happyOut90 x = unsafeCoerce# x {-# INLINE happyOut90 #-} happyIn91 :: (Maybe CInit) -> (HappyAbsSyn ) happyIn91 x = unsafeCoerce# x {-# INLINE happyIn91 #-} happyOut91 :: (HappyAbsSyn ) -> (Maybe CInit) happyOut91 x = unsafeCoerce# x {-# INLINE happyOut91 #-} happyIn92 :: (Reversed CInitList) -> (HappyAbsSyn ) happyIn92 x = unsafeCoerce# x {-# INLINE happyIn92 #-} happyOut92 :: (HappyAbsSyn ) -> (Reversed CInitList) happyOut92 x = unsafeCoerce# x {-# INLINE happyOut92 #-} happyIn93 :: ([CDesignator]) -> (HappyAbsSyn ) happyIn93 x = unsafeCoerce# x {-# INLINE happyIn93 #-} happyOut93 :: (HappyAbsSyn ) -> ([CDesignator]) happyOut93 x = unsafeCoerce# x {-# INLINE happyOut93 #-} happyIn94 :: (Reversed [CDesignator]) -> (HappyAbsSyn ) happyIn94 x = unsafeCoerce# x {-# INLINE happyIn94 #-} happyOut94 :: (HappyAbsSyn ) -> (Reversed [CDesignator]) happyOut94 x = unsafeCoerce# x {-# INLINE happyOut94 #-} happyIn95 :: (CDesignator) -> (HappyAbsSyn ) happyIn95 x = unsafeCoerce# x {-# INLINE happyIn95 #-} happyOut95 :: (HappyAbsSyn ) -> (CDesignator) happyOut95 x = unsafeCoerce# x {-# INLINE happyOut95 #-} happyIn96 :: (CDesignator) -> (HappyAbsSyn ) happyIn96 x = unsafeCoerce# x {-# INLINE happyIn96 #-} happyOut96 :: (HappyAbsSyn ) -> (CDesignator) happyOut96 x = unsafeCoerce# x {-# INLINE happyOut96 #-} happyIn97 :: (CExpr) -> (HappyAbsSyn ) happyIn97 x = unsafeCoerce# x {-# INLINE happyIn97 #-} happyOut97 :: (HappyAbsSyn ) -> (CExpr) happyOut97 x = unsafeCoerce# x {-# INLINE happyOut97 #-} happyIn98 :: (Reversed [CDesignator]) -> (HappyAbsSyn ) happyIn98 x = unsafeCoerce# x {-# INLINE happyIn98 #-} happyOut98 :: (HappyAbsSyn ) -> (Reversed [CDesignator]) happyOut98 x = unsafeCoerce# x {-# INLINE happyOut98 #-} happyIn99 :: (CExpr) -> (HappyAbsSyn ) happyIn99 x = unsafeCoerce# x {-# INLINE happyIn99 #-} happyOut99 :: (HappyAbsSyn ) -> (CExpr) happyOut99 x = unsafeCoerce# x {-# INLINE happyOut99 #-} happyIn100 :: (Reversed [CExpr]) -> (HappyAbsSyn ) happyIn100 x = unsafeCoerce# x {-# INLINE happyIn100 #-} happyOut100 :: (HappyAbsSyn ) -> (Reversed [CExpr]) happyOut100 x = unsafeCoerce# x {-# INLINE happyOut100 #-} happyIn101 :: (CExpr) -> (HappyAbsSyn ) happyIn101 x = unsafeCoerce# x {-# INLINE happyIn101 #-} happyOut101 :: (HappyAbsSyn ) -> (CExpr) happyOut101 x = unsafeCoerce# x {-# INLINE happyOut101 #-} happyIn102 :: (Located CUnaryOp) -> (HappyAbsSyn ) happyIn102 x = unsafeCoerce# x {-# INLINE happyIn102 #-} happyOut102 :: (HappyAbsSyn ) -> (Located CUnaryOp) happyOut102 x = unsafeCoerce# x {-# INLINE happyOut102 #-} happyIn103 :: (CExpr) -> (HappyAbsSyn ) happyIn103 x = unsafeCoerce# x {-# INLINE happyIn103 #-} happyOut103 :: (HappyAbsSyn ) -> (CExpr) happyOut103 x = unsafeCoerce# x {-# INLINE happyOut103 #-} happyIn104 :: (CExpr) -> (HappyAbsSyn ) happyIn104 x = unsafeCoerce# x {-# INLINE happyIn104 #-} happyOut104 :: (HappyAbsSyn ) -> (CExpr) happyOut104 x = unsafeCoerce# x {-# INLINE happyOut104 #-} happyIn105 :: (CExpr) -> (HappyAbsSyn ) happyIn105 x = unsafeCoerce# x {-# INLINE happyIn105 #-} happyOut105 :: (HappyAbsSyn ) -> (CExpr) happyOut105 x = unsafeCoerce# x {-# INLINE happyOut105 #-} happyIn106 :: (CExpr) -> (HappyAbsSyn ) happyIn106 x = unsafeCoerce# x {-# INLINE happyIn106 #-} happyOut106 :: (HappyAbsSyn ) -> (CExpr) happyOut106 x = unsafeCoerce# x {-# INLINE happyOut106 #-} happyIn107 :: (CExpr) -> (HappyAbsSyn ) happyIn107 x = unsafeCoerce# x {-# INLINE happyIn107 #-} happyOut107 :: (HappyAbsSyn ) -> (CExpr) happyOut107 x = unsafeCoerce# x {-# INLINE happyOut107 #-} happyIn108 :: (CExpr) -> (HappyAbsSyn ) happyIn108 x = unsafeCoerce# x {-# INLINE happyIn108 #-} happyOut108 :: (HappyAbsSyn ) -> (CExpr) happyOut108 x = unsafeCoerce# x {-# INLINE happyOut108 #-} happyIn109 :: (CExpr) -> (HappyAbsSyn ) happyIn109 x = unsafeCoerce# x {-# INLINE happyIn109 #-} happyOut109 :: (HappyAbsSyn ) -> (CExpr) happyOut109 x = unsafeCoerce# x {-# INLINE happyOut109 #-} happyIn110 :: (CExpr) -> (HappyAbsSyn ) happyIn110 x = unsafeCoerce# x {-# INLINE happyIn110 #-} happyOut110 :: (HappyAbsSyn ) -> (CExpr) happyOut110 x = unsafeCoerce# x {-# INLINE happyOut110 #-} happyIn111 :: (CExpr) -> (HappyAbsSyn ) happyIn111 x = unsafeCoerce# x {-# INLINE happyIn111 #-} happyOut111 :: (HappyAbsSyn ) -> (CExpr) happyOut111 x = unsafeCoerce# x {-# INLINE happyOut111 #-} happyIn112 :: (CExpr) -> (HappyAbsSyn ) happyIn112 x = unsafeCoerce# x {-# INLINE happyIn112 #-} happyOut112 :: (HappyAbsSyn ) -> (CExpr) happyOut112 x = unsafeCoerce# x {-# INLINE happyOut112 #-} happyIn113 :: (CExpr) -> (HappyAbsSyn ) happyIn113 x = unsafeCoerce# x {-# INLINE happyIn113 #-} happyOut113 :: (HappyAbsSyn ) -> (CExpr) happyOut113 x = unsafeCoerce# x {-# INLINE happyOut113 #-} happyIn114 :: (CExpr) -> (HappyAbsSyn ) happyIn114 x = unsafeCoerce# x {-# INLINE happyIn114 #-} happyOut114 :: (HappyAbsSyn ) -> (CExpr) happyOut114 x = unsafeCoerce# x {-# INLINE happyOut114 #-} happyIn115 :: (CExpr) -> (HappyAbsSyn ) happyIn115 x = unsafeCoerce# x {-# INLINE happyIn115 #-} happyOut115 :: (HappyAbsSyn ) -> (CExpr) happyOut115 x = unsafeCoerce# x {-# INLINE happyOut115 #-} happyIn116 :: (Located CAssignOp) -> (HappyAbsSyn ) happyIn116 x = unsafeCoerce# x {-# INLINE happyIn116 #-} happyOut116 :: (HappyAbsSyn ) -> (Located CAssignOp) happyOut116 x = unsafeCoerce# x {-# INLINE happyOut116 #-} happyIn117 :: (CExpr) -> (HappyAbsSyn ) happyIn117 x = unsafeCoerce# x {-# INLINE happyIn117 #-} happyOut117 :: (HappyAbsSyn ) -> (CExpr) happyOut117 x = unsafeCoerce# x {-# INLINE happyOut117 #-} happyIn118 :: (Reversed [CExpr]) -> (HappyAbsSyn ) happyIn118 x = unsafeCoerce# x {-# INLINE happyIn118 #-} happyOut118 :: (HappyAbsSyn ) -> (Reversed [CExpr]) happyOut118 x = unsafeCoerce# x {-# INLINE happyOut118 #-} happyIn119 :: (Maybe CExpr) -> (HappyAbsSyn ) happyIn119 x = unsafeCoerce# x {-# INLINE happyIn119 #-} happyOut119 :: (HappyAbsSyn ) -> (Maybe CExpr) happyOut119 x = unsafeCoerce# x {-# INLINE happyOut119 #-} happyIn120 :: (Maybe CExpr) -> (HappyAbsSyn ) happyIn120 x = unsafeCoerce# x {-# INLINE happyIn120 #-} happyOut120 :: (HappyAbsSyn ) -> (Maybe CExpr) happyOut120 x = unsafeCoerce# x {-# INLINE happyOut120 #-} happyIn121 :: (CExpr) -> (HappyAbsSyn ) happyIn121 x = unsafeCoerce# x {-# INLINE happyIn121 #-} happyOut121 :: (HappyAbsSyn ) -> (CExpr) happyOut121 x = unsafeCoerce# x {-# INLINE happyOut121 #-} happyIn122 :: (CConst) -> (HappyAbsSyn ) happyIn122 x = unsafeCoerce# x {-# INLINE happyIn122 #-} happyOut122 :: (HappyAbsSyn ) -> (CConst) happyOut122 x = unsafeCoerce# x {-# INLINE happyOut122 #-} happyIn123 :: (CStrLit) -> (HappyAbsSyn ) happyIn123 x = unsafeCoerce# x {-# INLINE happyIn123 #-} happyOut123 :: (HappyAbsSyn ) -> (CStrLit) happyOut123 x = unsafeCoerce# x {-# INLINE happyOut123 #-} happyIn124 :: (Reversed [CString]) -> (HappyAbsSyn ) happyIn124 x = unsafeCoerce# x {-# INLINE happyIn124 #-} happyOut124 :: (HappyAbsSyn ) -> (Reversed [CString]) happyOut124 x = unsafeCoerce# x {-# INLINE happyOut124 #-} happyIn125 :: (Ident) -> (HappyAbsSyn ) happyIn125 x = unsafeCoerce# x {-# INLINE happyIn125 #-} happyOut125 :: (HappyAbsSyn ) -> (Ident) happyOut125 x = unsafeCoerce# x {-# INLINE happyOut125 #-} happyIn126 :: ([CAttr]) -> (HappyAbsSyn ) happyIn126 x = unsafeCoerce# x {-# INLINE happyIn126 #-} happyOut126 :: (HappyAbsSyn ) -> ([CAttr]) happyOut126 x = unsafeCoerce# x {-# INLINE happyOut126 #-} happyIn127 :: ([CAttr]) -> (HappyAbsSyn ) happyIn127 x = unsafeCoerce# x {-# INLINE happyIn127 #-} happyOut127 :: (HappyAbsSyn ) -> ([CAttr]) happyOut127 x = unsafeCoerce# x {-# INLINE happyOut127 #-} happyIn128 :: ([CAttr]) -> (HappyAbsSyn ) happyIn128 x = unsafeCoerce# x {-# INLINE happyIn128 #-} happyOut128 :: (HappyAbsSyn ) -> ([CAttr]) happyOut128 x = unsafeCoerce# x {-# INLINE happyOut128 #-} happyIn129 :: (Reversed [CAttr]) -> (HappyAbsSyn ) happyIn129 x = unsafeCoerce# x {-# INLINE happyIn129 #-} happyOut129 :: (HappyAbsSyn ) -> (Reversed [CAttr]) happyOut129 x = unsafeCoerce# x {-# INLINE happyOut129 #-} happyIn130 :: (Maybe CAttr) -> (HappyAbsSyn ) happyIn130 x = unsafeCoerce# x {-# INLINE happyIn130 #-} happyOut130 :: (HappyAbsSyn ) -> (Maybe CAttr) happyOut130 x = unsafeCoerce# x {-# INLINE happyOut130 #-} happyIn131 :: (Reversed [CExpr]) -> (HappyAbsSyn ) happyIn131 x = unsafeCoerce# x {-# INLINE happyIn131 #-} happyOut131 :: (HappyAbsSyn ) -> (Reversed [CExpr]) happyOut131 x = unsafeCoerce# x {-# INLINE happyOut131 #-} happyInTok :: CToken -> (HappyAbsSyn ) happyInTok x = unsafeCoerce# x {-# INLINE happyInTok #-} happyOutTok :: (HappyAbsSyn ) -> CToken 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 (4, 463) [ (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), 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(370 , happyReduce_370), (371 , happyReduce_371), (372 , happyReduce_372), (373 , happyReduce_373), (374 , happyReduce_374), (375 , happyReduce_375), (376 , happyReduce_376), (377 , happyReduce_377), (378 , happyReduce_378), (379 , happyReduce_379), (380 , happyReduce_380), (381 , happyReduce_381), (382 , happyReduce_382), (383 , happyReduce_383), (384 , happyReduce_384), (385 , happyReduce_385), (386 , happyReduce_386), (387 , happyReduce_387), (388 , happyReduce_388), (389 , happyReduce_389), (390 , happyReduce_390), (391 , happyReduce_391), (392 , happyReduce_392), (393 , happyReduce_393), (394 , happyReduce_394), (395 , happyReduce_395), (396 , happyReduce_396), (397 , happyReduce_397), (398 , happyReduce_398), (399 , happyReduce_399), (400 , happyReduce_400), (401 , happyReduce_401), (402 , happyReduce_402), (403 , happyReduce_403), (404 , happyReduce_404), (405 , happyReduce_405), (406 , happyReduce_406), (407 , happyReduce_407), (408 , happyReduce_408), (409 , happyReduce_409), (410 , happyReduce_410), (411 , happyReduce_411), (412 , happyReduce_412), (413 , happyReduce_413), (414 , happyReduce_414), (415 , happyReduce_415), (416 , happyReduce_416), (417 , happyReduce_417), (418 , happyReduce_418), (419 , happyReduce_419), (420 , happyReduce_420), (421 , happyReduce_421), (422 , happyReduce_422), (423 , happyReduce_423), (424 , happyReduce_424), (425 , happyReduce_425), (426 , happyReduce_426), (427 , happyReduce_427), (428 , happyReduce_428), (429 , happyReduce_429), (430 , happyReduce_430), (431 , happyReduce_431), (432 , happyReduce_432), (433 , happyReduce_433), (434 , happyReduce_434), (435 , happyReduce_435), (436 , happyReduce_436), (437 , happyReduce_437), (438 , happyReduce_438), (439 , happyReduce_439), (440 , happyReduce_440), (441 , happyReduce_441), (442 , happyReduce_442), (443 , happyReduce_443), (444 , happyReduce_444), (445 , happyReduce_445), (446 , happyReduce_446), (447 , happyReduce_447), (448 , happyReduce_448), (449 , happyReduce_449), (450 , happyReduce_450), (451 , happyReduce_451), (452 , happyReduce_452), (453 , happyReduce_453), (454 , happyReduce_454), (455 , happyReduce_455), (456 , happyReduce_456), (457 , happyReduce_457), (458 , happyReduce_458), (459 , happyReduce_459), (460 , happyReduce_460), (461 , happyReduce_461), (462 , happyReduce_462), (463 , happyReduce_463) ] happy_n_terms = 102 :: Int happy_n_nonterms = 125 :: Int happyReduce_4 = happyMonadReduce 1# 0# happyReduction_4 happyReduction_4 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut8 happy_x_1 of { happy_var_1 -> ( let decls = reverse happy_var_1 in case decls of [] -> do{ n <- getNewName; p <- getCurrentPosition; return $ CTranslUnit decls (mkNodeInfo' p (p,0) n) } (d:ds) -> withNodeInfo d $ CTranslUnit decls)} ) (\r -> happyReturn (happyIn7 r)) happyReduce_5 = happySpecReduce_0 1# happyReduction_5 happyReduction_5 = happyIn8 (empty ) happyReduce_6 = happySpecReduce_2 1# happyReduction_6 happyReduction_6 happy_x_2 happy_x_1 = case happyOut8 happy_x_1 of { happy_var_1 -> happyIn8 (happy_var_1 )} happyReduce_7 = happySpecReduce_2 1# happyReduction_7 happyReduction_7 happy_x_2 happy_x_1 = case happyOut8 happy_x_1 of { happy_var_1 -> case happyOut9 happy_x_2 of { happy_var_2 -> happyIn8 (happy_var_1 `snoc` happy_var_2 )}} happyReduce_8 = happySpecReduce_1 2# happyReduction_8 happyReduction_8 happy_x_1 = case happyOut10 happy_x_1 of { happy_var_1 -> happyIn9 (CFDefExt happy_var_1 )} happyReduce_9 = happySpecReduce_1 2# happyReduction_9 happyReduction_9 happy_x_1 = case happyOut32 happy_x_1 of { happy_var_1 -> happyIn9 (CDeclExt happy_var_1 )} happyReduce_10 = happySpecReduce_2 2# happyReduction_10 happyReduction_10 happy_x_2 happy_x_1 = case happyOut9 happy_x_2 of { happy_var_2 -> happyIn9 (happy_var_2 )} happyReduce_11 = happyMonadReduce 5# 2# happyReduction_11 happyReduction_11 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut123 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CAsmExt happy_var_3)}} ) (\r -> happyReturn (happyIn9 r)) happyReduce_12 = happyMonadReduce 2# 3# happyReduction_12 happyReduction_12 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut11 happy_x_1 of { happy_var_1 -> case happyOut14 happy_x_2 of { happy_var_2 -> ( leaveScope >> (withNodeInfo happy_var_1 $ CFunDef [] happy_var_1 [] happy_var_2))}} ) (\r -> happyReturn (happyIn10 r)) happyReduce_13 = happyMonadReduce 3# 3# happyReduction_13 happyReduction_13 (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 happyOut11 happy_x_2 of { happy_var_2 -> case happyOut14 happy_x_3 of { happy_var_3 -> ( leaveScope >> (withNodeInfo happy_var_1 $ CFunDef (liftCAttrs happy_var_1) happy_var_2 [] happy_var_3))}}} ) (\r -> happyReturn (happyIn10 r)) happyReduce_14 = happyMonadReduce 3# 3# happyReduction_14 happyReduction_14 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut37 happy_x_1 of { happy_var_1 -> case happyOut11 happy_x_2 of { happy_var_2 -> case happyOut14 happy_x_3 of { happy_var_3 -> ( leaveScope >> (withNodeInfo happy_var_1 $ CFunDef happy_var_1 happy_var_2 [] happy_var_3))}}} ) (\r -> happyReturn (happyIn10 r)) happyReduce_15 = happyMonadReduce 3# 3# happyReduction_15 happyReduction_15 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut41 happy_x_1 of { happy_var_1 -> case happyOut11 happy_x_2 of { happy_var_2 -> case happyOut14 happy_x_3 of { happy_var_3 -> ( leaveScope >> (withNodeInfo happy_var_1 $ CFunDef happy_var_1 happy_var_2 [] happy_var_3))}}} ) (\r -> happyReturn (happyIn10 r)) happyReduce_16 = happyMonadReduce 3# 3# happyReduction_16 happyReduction_16 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut38 happy_x_1 of { happy_var_1 -> case happyOut11 happy_x_2 of { happy_var_2 -> case happyOut14 happy_x_3 of { happy_var_3 -> ( leaveScope >> (withNodeInfo happy_var_1 $ CFunDef (reverse happy_var_1) happy_var_2 [] happy_var_3))}}} ) (\r -> happyReturn (happyIn10 r)) happyReduce_17 = happyMonadReduce 3# 3# happyReduction_17 happyReduction_17 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut11 happy_x_2 of { happy_var_2 -> case happyOut14 happy_x_3 of { happy_var_3 -> ( leaveScope >> (withNodeInfo happy_var_1 $ CFunDef (liftTypeQuals happy_var_1) happy_var_2 [] happy_var_3))}}} ) (\r -> happyReturn (happyIn10 r)) happyReduce_18 = happyMonadReduce 4# 3# happyReduction_18 happyReduction_18 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut11 happy_x_3 of { happy_var_3 -> case happyOut14 happy_x_4 of { happy_var_4 -> ( leaveScope >> (withNodeInfo happy_var_1 $ CFunDef (liftTypeQuals happy_var_1 ++ liftCAttrs happy_var_2) happy_var_3 [] happy_var_4))}}}} ) (\r -> happyReturn (happyIn10 r)) happyReduce_19 = happyMonadReduce 3# 3# happyReduction_19 happyReduction_19 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut76 happy_x_1 of { happy_var_1 -> case happyOut33 happy_x_2 of { happy_var_2 -> case happyOut14 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CFunDef [] happy_var_1 (reverse happy_var_2) happy_var_3)}}} ) (\r -> happyReturn (happyIn10 r)) happyReduce_20 = happyMonadReduce 4# 3# happyReduction_20 happyReduction_20 (happy_x_4 `HappyStk` 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 happyOut76 happy_x_2 of { happy_var_2 -> case happyOut33 happy_x_3 of { happy_var_3 -> case happyOut14 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_2 $ CFunDef (liftCAttrs happy_var_1) happy_var_2 (reverse happy_var_3) happy_var_4)}}}} ) (\r -> happyReturn (happyIn10 r)) happyReduce_21 = happyMonadReduce 4# 3# happyReduction_21 happyReduction_21 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut37 happy_x_1 of { happy_var_1 -> case happyOut76 happy_x_2 of { happy_var_2 -> case happyOut33 happy_x_3 of { happy_var_3 -> case happyOut14 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ CFunDef happy_var_1 happy_var_2 (reverse happy_var_3) happy_var_4)}}}} ) (\r -> happyReturn (happyIn10 r)) happyReduce_22 = happyMonadReduce 4# 3# happyReduction_22 happyReduction_22 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut41 happy_x_1 of { happy_var_1 -> case happyOut76 happy_x_2 of { happy_var_2 -> case happyOut33 happy_x_3 of { happy_var_3 -> case happyOut14 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ CFunDef happy_var_1 happy_var_2 (reverse happy_var_3) happy_var_4)}}}} ) (\r -> happyReturn (happyIn10 r)) happyReduce_23 = happyMonadReduce 4# 3# happyReduction_23 happyReduction_23 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut38 happy_x_1 of { happy_var_1 -> case happyOut76 happy_x_2 of { happy_var_2 -> case happyOut33 happy_x_3 of { happy_var_3 -> case happyOut14 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ CFunDef (reverse happy_var_1) happy_var_2 (reverse happy_var_3) happy_var_4)}}}} ) (\r -> happyReturn (happyIn10 r)) happyReduce_24 = happyMonadReduce 4# 3# happyReduction_24 happyReduction_24 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut76 happy_x_2 of { happy_var_2 -> case happyOut33 happy_x_3 of { happy_var_3 -> case happyOut14 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ CFunDef (liftTypeQuals happy_var_1) happy_var_2 (reverse happy_var_3) happy_var_4)}}}} ) (\r -> happyReturn (happyIn10 r)) happyReduce_25 = happyMonadReduce 5# 3# happyReduction_25 happyReduction_25 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut76 happy_x_3 of { happy_var_3 -> case happyOut33 happy_x_4 of { happy_var_4 -> case happyOut14 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_1 $ CFunDef (liftTypeQuals happy_var_1 ++ liftCAttrs happy_var_2) happy_var_3 (reverse happy_var_4) happy_var_5)}}}}} ) (\r -> happyReturn (happyIn10 r)) happyReduce_26 = happyMonadReduce 1# 4# happyReduction_26 happyReduction_26 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut72 happy_x_1 of { happy_var_1 -> ( let declr = reverseDeclr happy_var_1 in enterScope >> doFuncParamDeclIdent declr >> return declr)} ) (\r -> happyReturn (happyIn11 r)) happyReduce_27 = happySpecReduce_1 5# happyReduction_27 happyReduction_27 happy_x_1 = case happyOut13 happy_x_1 of { happy_var_1 -> happyIn12 (happy_var_1 )} happyReduce_28 = happySpecReduce_1 5# happyReduction_28 happyReduction_28 happy_x_1 = case happyOut14 happy_x_1 of { happy_var_1 -> happyIn12 (happy_var_1 )} happyReduce_29 = happySpecReduce_1 5# happyReduction_29 happyReduction_29 happy_x_1 = case happyOut22 happy_x_1 of { happy_var_1 -> happyIn12 (happy_var_1 )} happyReduce_30 = happySpecReduce_1 5# happyReduction_30 happyReduction_30 happy_x_1 = case happyOut23 happy_x_1 of { happy_var_1 -> happyIn12 (happy_var_1 )} happyReduce_31 = happySpecReduce_1 5# happyReduction_31 happyReduction_31 happy_x_1 = case happyOut24 happy_x_1 of { happy_var_1 -> happyIn12 (happy_var_1 )} happyReduce_32 = happySpecReduce_1 5# happyReduction_32 happyReduction_32 happy_x_1 = case happyOut25 happy_x_1 of { happy_var_1 -> happyIn12 (happy_var_1 )} happyReduce_33 = happyMonadReduce 1# 5# happyReduction_33 happyReduction_33 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut26 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 (CAsm happy_var_1))} ) (\r -> happyReturn (happyIn12 r)) happyReduce_34 = happyMonadReduce 4# 6# happyReduction_34 happyReduction_34 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut125 happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_3 of { happy_var_3 -> case happyOut12 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ CLabel happy_var_1 happy_var_4 happy_var_3)}}} ) (\r -> happyReturn (happyIn13 r)) happyReduce_35 = happyMonadReduce 4# 6# happyReduction_35 happyReduction_35 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut121 happy_x_2 of { happy_var_2 -> case happyOut12 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ CCase happy_var_2 happy_var_4)}}} ) (\r -> happyReturn (happyIn13 r)) happyReduce_36 = happyMonadReduce 3# 6# happyReduction_36 happyReduction_36 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut12 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CDefault happy_var_3)}} ) (\r -> happyReturn (happyIn13 r)) happyReduce_37 = happyMonadReduce 6# 6# happyReduction_37 happyReduction_37 (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 happyOutTok happy_x_1 of { happy_var_1 -> case happyOut121 happy_x_2 of { happy_var_2 -> case happyOut121 happy_x_4 of { happy_var_4 -> case happyOut12 happy_x_6 of { happy_var_6 -> ( withNodeInfo happy_var_1 $ CCases happy_var_2 happy_var_4 happy_var_6)}}}} ) (\r -> happyReturn (happyIn13 r)) happyReduce_38 = happyMonadReduce 5# 7# happyReduction_38 happyReduction_38 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut17 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CCompound [] (reverse happy_var_3))}} ) (\r -> happyReturn (happyIn14 r)) happyReduce_39 = happyMonadReduce 6# 7# happyReduction_39 happyReduction_39 (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 happyOutTok happy_x_1 of { happy_var_1 -> case happyOut21 happy_x_3 of { happy_var_3 -> case happyOut17 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ CCompound (reverse happy_var_3) (reverse happy_var_4))}}} ) (\r -> happyReturn (happyIn14 r)) happyReduce_40 = happyMonadReduce 0# 8# happyReduction_40 happyReduction_40 (happyRest) tk = happyThen (( enterScope) ) (\r -> happyReturn (happyIn15 r)) happyReduce_41 = happyMonadReduce 0# 9# happyReduction_41 happyReduction_41 (happyRest) tk = happyThen (( leaveScope) ) (\r -> happyReturn (happyIn16 r)) happyReduce_42 = happySpecReduce_0 10# happyReduction_42 happyReduction_42 = happyIn17 (empty ) happyReduce_43 = happySpecReduce_2 10# happyReduction_43 happyReduction_43 happy_x_2 happy_x_1 = case happyOut17 happy_x_1 of { happy_var_1 -> case happyOut18 happy_x_2 of { happy_var_2 -> happyIn17 (happy_var_1 `snoc` happy_var_2 )}} happyReduce_44 = happySpecReduce_1 11# happyReduction_44 happyReduction_44 happy_x_1 = case happyOut12 happy_x_1 of { happy_var_1 -> happyIn18 (CBlockStmt happy_var_1 )} happyReduce_45 = happySpecReduce_1 11# happyReduction_45 happyReduction_45 happy_x_1 = case happyOut19 happy_x_1 of { happy_var_1 -> happyIn18 (happy_var_1 )} happyReduce_46 = happySpecReduce_1 12# happyReduction_46 happyReduction_46 happy_x_1 = case happyOut32 happy_x_1 of { happy_var_1 -> happyIn19 (CBlockDecl happy_var_1 )} happyReduce_47 = happySpecReduce_1 12# happyReduction_47 happyReduction_47 happy_x_1 = case happyOut20 happy_x_1 of { happy_var_1 -> happyIn19 (CNestedFunDef happy_var_1 )} happyReduce_48 = happySpecReduce_2 12# happyReduction_48 happyReduction_48 happy_x_2 happy_x_1 = case happyOut19 happy_x_2 of { happy_var_2 -> happyIn19 (happy_var_2 )} happyReduce_49 = happyMonadReduce 3# 13# happyReduction_49 happyReduction_49 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut37 happy_x_1 of { happy_var_1 -> case happyOut11 happy_x_2 of { happy_var_2 -> case happyOut14 happy_x_3 of { happy_var_3 -> ( leaveScope >> (withNodeInfo happy_var_1 $ CFunDef happy_var_1 happy_var_2 [] happy_var_3))}}} ) (\r -> happyReturn (happyIn20 r)) happyReduce_50 = happyMonadReduce 3# 13# happyReduction_50 happyReduction_50 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut41 happy_x_1 of { happy_var_1 -> case happyOut11 happy_x_2 of { happy_var_2 -> case happyOut14 happy_x_3 of { happy_var_3 -> ( leaveScope >> (withNodeInfo happy_var_1 $ CFunDef happy_var_1 happy_var_2 [] happy_var_3))}}} ) (\r -> happyReturn (happyIn20 r)) happyReduce_51 = happyMonadReduce 3# 13# happyReduction_51 happyReduction_51 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut38 happy_x_1 of { happy_var_1 -> case happyOut11 happy_x_2 of { happy_var_2 -> case happyOut14 happy_x_3 of { happy_var_3 -> ( leaveScope >> (withNodeInfo happy_var_1 $ CFunDef (reverse happy_var_1) happy_var_2 [] happy_var_3))}}} ) (\r -> happyReturn (happyIn20 r)) happyReduce_52 = happyMonadReduce 3# 13# happyReduction_52 happyReduction_52 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut11 happy_x_2 of { happy_var_2 -> case happyOut14 happy_x_3 of { happy_var_3 -> ( leaveScope >> (withNodeInfo happy_var_1 $ CFunDef (liftTypeQuals happy_var_1) happy_var_2 [] happy_var_3))}}} ) (\r -> happyReturn (happyIn20 r)) happyReduce_53 = happyMonadReduce 4# 13# happyReduction_53 happyReduction_53 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut11 happy_x_3 of { happy_var_3 -> case happyOut14 happy_x_4 of { happy_var_4 -> ( leaveScope >> (withNodeInfo happy_var_1 $ CFunDef (liftTypeQuals happy_var_1 ++ liftCAttrs happy_var_2) happy_var_3 [] happy_var_4))}}}} ) (\r -> happyReturn (happyIn20 r)) happyReduce_54 = happySpecReduce_3 14# happyReduction_54 happyReduction_54 happy_x_3 happy_x_2 happy_x_1 = case happyOut82 happy_x_2 of { happy_var_2 -> happyIn21 (happy_var_2 )} happyReduce_55 = happyReduce 4# 14# happyReduction_55 happyReduction_55 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut21 happy_x_1 of { happy_var_1 -> case happyOut82 happy_x_3 of { happy_var_3 -> happyIn21 (happy_var_1 `rappendr` happy_var_3 ) `HappyStk` happyRest}} happyReduce_56 = happyMonadReduce 1# 15# happyReduction_56 happyReduction_56 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CExpr Nothing)} ) (\r -> happyReturn (happyIn22 r)) happyReduce_57 = happyMonadReduce 2# 15# happyReduction_57 happyReduction_57 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut117 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CExpr (Just happy_var_1))} ) (\r -> happyReturn (happyIn22 r)) happyReduce_58 = happyMonadReduce 5# 16# happyReduction_58 happyReduction_58 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut117 happy_x_3 of { happy_var_3 -> case happyOut12 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_1 $ CIf happy_var_3 happy_var_5 Nothing)}}} ) (\r -> happyReturn (happyIn23 r)) happyReduce_59 = happyMonadReduce 7# 16# happyReduction_59 happyReduction_59 (happy_x_7 `HappyStk` happy_x_6 `HappyStk` happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut117 happy_x_3 of { happy_var_3 -> case happyOut12 happy_x_5 of { happy_var_5 -> case happyOut12 happy_x_7 of { happy_var_7 -> ( withNodeInfo happy_var_1 $ CIf happy_var_3 happy_var_5 (Just happy_var_7))}}}} ) (\r -> happyReturn (happyIn23 r)) happyReduce_60 = happyMonadReduce 5# 16# happyReduction_60 happyReduction_60 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut117 happy_x_3 of { happy_var_3 -> case happyOut12 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_1 $ CSwitch happy_var_3 happy_var_5)}}} ) (\r -> happyReturn (happyIn23 r)) happyReduce_61 = happyMonadReduce 5# 17# 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) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut117 happy_x_3 of { happy_var_3 -> case happyOut12 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_1 $ CWhile happy_var_3 happy_var_5 False)}}} ) (\r -> happyReturn (happyIn24 r)) happyReduce_62 = happyMonadReduce 7# 17# happyReduction_62 happyReduction_62 (happy_x_7 `HappyStk` happy_x_6 `HappyStk` happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut12 happy_x_2 of { happy_var_2 -> case happyOut117 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_1 $ CWhile happy_var_5 happy_var_2 True)}}} ) (\r -> happyReturn (happyIn24 r)) happyReduce_63 = happyMonadReduce 9# 17# happyReduction_63 happyReduction_63 (happy_x_9 `HappyStk` happy_x_8 `HappyStk` happy_x_7 `HappyStk` happy_x_6 `HappyStk` happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut119 happy_x_3 of { happy_var_3 -> case happyOut119 happy_x_5 of { happy_var_5 -> case happyOut119 happy_x_7 of { happy_var_7 -> case happyOut12 happy_x_9 of { happy_var_9 -> ( withNodeInfo happy_var_1 $ CFor (Left happy_var_3) happy_var_5 happy_var_7 happy_var_9)}}}}} ) (\r -> happyReturn (happyIn24 r)) happyReduce_64 = happyMonadReduce 10# 17# happyReduction_64 happyReduction_64 (happy_x_10 `HappyStk` happy_x_9 `HappyStk` happy_x_8 `HappyStk` happy_x_7 `HappyStk` happy_x_6 `HappyStk` happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut32 happy_x_4 of { happy_var_4 -> case happyOut119 happy_x_5 of { happy_var_5 -> case happyOut119 happy_x_7 of { happy_var_7 -> case happyOut12 happy_x_9 of { happy_var_9 -> ( withNodeInfo happy_var_1 $ CFor (Right happy_var_4) happy_var_5 happy_var_7 happy_var_9)}}}}} ) (\r -> happyReturn (happyIn24 r)) happyReduce_65 = happyMonadReduce 3# 18# happyReduction_65 happyReduction_65 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut125 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CGoto happy_var_2)}} ) (\r -> happyReturn (happyIn25 r)) happyReduce_66 = happyMonadReduce 4# 18# happyReduction_66 happyReduction_66 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut117 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CGotoPtr happy_var_3)}} ) (\r -> happyReturn (happyIn25 r)) happyReduce_67 = happyMonadReduce 2# 18# happyReduction_67 happyReduction_67 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CCont)} ) (\r -> happyReturn (happyIn25 r)) happyReduce_68 = happyMonadReduce 2# 18# happyReduction_68 happyReduction_68 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CBreak)} ) (\r -> happyReturn (happyIn25 r)) happyReduce_69 = happyMonadReduce 3# 18# happyReduction_69 happyReduction_69 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut119 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CReturn happy_var_2)}} ) (\r -> happyReturn (happyIn25 r)) happyReduce_70 = happyMonadReduce 6# 19# happyReduction_70 happyReduction_70 (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 happyOutTok happy_x_1 of { happy_var_1 -> case happyOut27 happy_x_2 of { happy_var_2 -> case happyOut123 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ CAsmStmt happy_var_2 happy_var_4 [] [] [])}}} ) (\r -> happyReturn (happyIn26 r)) happyReduce_71 = happyMonadReduce 8# 19# happyReduction_71 happyReduction_71 (happy_x_8 `HappyStk` happy_x_7 `HappyStk` happy_x_6 `HappyStk` happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut27 happy_x_2 of { happy_var_2 -> case happyOut123 happy_x_4 of { happy_var_4 -> case happyOut28 happy_x_6 of { happy_var_6 -> ( withNodeInfo happy_var_1 $ CAsmStmt happy_var_2 happy_var_4 happy_var_6 [] [])}}}} ) (\r -> happyReturn (happyIn26 r)) happyReduce_72 = happyMonadReduce 10# 19# happyReduction_72 happyReduction_72 (happy_x_10 `HappyStk` happy_x_9 `HappyStk` happy_x_8 `HappyStk` happy_x_7 `HappyStk` happy_x_6 `HappyStk` happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut27 happy_x_2 of { happy_var_2 -> case happyOut123 happy_x_4 of { happy_var_4 -> case happyOut28 happy_x_6 of { happy_var_6 -> case happyOut28 happy_x_8 of { happy_var_8 -> ( withNodeInfo happy_var_1 $ CAsmStmt happy_var_2 happy_var_4 happy_var_6 happy_var_8 [])}}}}} ) (\r -> happyReturn (happyIn26 r)) happyReduce_73 = happyMonadReduce 12# 19# happyReduction_73 happyReduction_73 (happy_x_12 `HappyStk` happy_x_11 `HappyStk` happy_x_10 `HappyStk` happy_x_9 `HappyStk` happy_x_8 `HappyStk` happy_x_7 `HappyStk` happy_x_6 `HappyStk` happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut27 happy_x_2 of { happy_var_2 -> case happyOut123 happy_x_4 of { happy_var_4 -> case happyOut28 happy_x_6 of { happy_var_6 -> case happyOut28 happy_x_8 of { happy_var_8 -> case happyOut31 happy_x_10 of { happy_var_10 -> ( withNodeInfo happy_var_1 $ CAsmStmt happy_var_2 happy_var_4 happy_var_6 happy_var_8 (reverse happy_var_10))}}}}}} ) (\r -> happyReturn (happyIn26 r)) happyReduce_74 = happySpecReduce_0 20# happyReduction_74 happyReduction_74 = happyIn27 (Nothing ) happyReduce_75 = happySpecReduce_1 20# happyReduction_75 happyReduction_75 happy_x_1 = case happyOut61 happy_x_1 of { happy_var_1 -> happyIn27 (Just happy_var_1 )} happyReduce_76 = happySpecReduce_0 21# happyReduction_76 happyReduction_76 = happyIn28 ([] ) happyReduce_77 = happySpecReduce_1 21# happyReduction_77 happyReduction_77 happy_x_1 = case happyOut29 happy_x_1 of { happy_var_1 -> happyIn28 (reverse happy_var_1 )} happyReduce_78 = happySpecReduce_1 22# happyReduction_78 happyReduction_78 happy_x_1 = case happyOut30 happy_x_1 of { happy_var_1 -> happyIn29 (singleton happy_var_1 )} happyReduce_79 = happySpecReduce_3 22# happyReduction_79 happyReduction_79 happy_x_3 happy_x_2 happy_x_1 = case happyOut29 happy_x_1 of { happy_var_1 -> case happyOut30 happy_x_3 of { happy_var_3 -> happyIn29 (happy_var_1 `snoc` happy_var_3 )}} happyReduce_80 = happyMonadReduce 4# 23# happyReduction_80 happyReduction_80 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut123 happy_x_1 of { happy_var_1 -> case happyOut117 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CAsmOperand Nothing happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn30 r)) happyReduce_81 = happyMonadReduce 7# 23# happyReduction_81 happyReduction_81 (happy_x_7 `HappyStk` happy_x_6 `HappyStk` happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOutTok happy_x_2 of { (CTokIdent _ happy_var_2) -> case happyOut123 happy_x_4 of { happy_var_4 -> case happyOut117 happy_x_6 of { happy_var_6 -> ( withNodeInfo happy_var_1 $ CAsmOperand (Just happy_var_2) happy_var_4 happy_var_6)}}}} ) (\r -> happyReturn (happyIn30 r)) happyReduce_82 = happyMonadReduce 7# 23# happyReduction_82 happyReduction_82 (happy_x_7 `HappyStk` happy_x_6 `HappyStk` happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOutTok happy_x_2 of { (CTokTyIdent _ happy_var_2) -> case happyOut123 happy_x_4 of { happy_var_4 -> case happyOut117 happy_x_6 of { happy_var_6 -> ( withNodeInfo happy_var_1 $ CAsmOperand (Just happy_var_2) happy_var_4 happy_var_6)}}}} ) (\r -> happyReturn (happyIn30 r)) happyReduce_83 = happySpecReduce_1 24# happyReduction_83 happyReduction_83 happy_x_1 = case happyOut123 happy_x_1 of { happy_var_1 -> happyIn31 (singleton happy_var_1 )} happyReduce_84 = happySpecReduce_3 24# happyReduction_84 happyReduction_84 happy_x_3 happy_x_2 happy_x_1 = case happyOut31 happy_x_1 of { happy_var_1 -> case happyOut123 happy_x_3 of { happy_var_3 -> happyIn31 (happy_var_1 `snoc` happy_var_3 )}} happyReduce_85 = happyMonadReduce 2# 25# happyReduction_85 happyReduction_85 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut45 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CDecl (reverse happy_var_1) [])} ) (\r -> happyReturn (happyIn32 r)) happyReduce_86 = happyMonadReduce 2# 25# happyReduction_86 happyReduction_86 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut46 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CDecl (reverse happy_var_1) [])} ) (\r -> happyReturn (happyIn32 r)) happyReduce_87 = happyMonadReduce 2# 25# happyReduction_87 happyReduction_87 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut36 happy_x_1 of { happy_var_1 -> ( case happy_var_1 of CDecl declspecs dies at -> withLength at (CDecl declspecs (List.reverse dies)))} ) (\r -> happyReturn (happyIn32 r)) happyReduce_88 = happyMonadReduce 2# 25# happyReduction_88 happyReduction_88 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut34 happy_x_1 of { happy_var_1 -> ( case happy_var_1 of CDecl declspecs dies at -> withLength at (CDecl declspecs (List.reverse dies)))} ) (\r -> happyReturn (happyIn32 r)) happyReduce_89 = happySpecReduce_0 26# happyReduction_89 happyReduction_89 = happyIn33 (empty ) happyReduce_90 = happySpecReduce_2 26# happyReduction_90 happyReduction_90 happy_x_2 happy_x_1 = case happyOut33 happy_x_1 of { happy_var_1 -> case happyOut32 happy_x_2 of { happy_var_2 -> happyIn33 (happy_var_1 `snoc` happy_var_2 )}} happyReduce_91 = happyMonadReduce 4# 27# happyReduction_91 happyReduction_91 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut38 happy_x_1 of { happy_var_1 -> case happyOut72 happy_x_2 of { happy_var_2 -> case happyOut35 happy_x_3 of { happy_var_3 -> case happyOut91 happy_x_4 of { happy_var_4 -> ( let declspecs = reverse happy_var_1 in do{ declr <- withAsmNameAttrs happy_var_3 happy_var_2 ; doDeclIdent declspecs declr ; withNodeInfo happy_var_1 $ CDecl declspecs [(Just (reverseDeclr declr), happy_var_4, Nothing)] })}}}} ) (\r -> happyReturn (happyIn34 r)) happyReduce_92 = happyMonadReduce 4# 27# happyReduction_92 happyReduction_92 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut72 happy_x_2 of { happy_var_2 -> case happyOut35 happy_x_3 of { happy_var_3 -> case happyOut91 happy_x_4 of { happy_var_4 -> ( let declspecs = liftTypeQuals happy_var_1 in do{ declr <- withAsmNameAttrs happy_var_3 happy_var_2 ; doDeclIdent declspecs declr ; withNodeInfo happy_var_1 $ CDecl declspecs [(Just (reverseDeclr declr), happy_var_4, Nothing)] })}}}} ) (\r -> happyReturn (happyIn34 r)) happyReduce_93 = happyMonadReduce 5# 27# happyReduction_93 happyReduction_93 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut72 happy_x_3 of { happy_var_3 -> case happyOut35 happy_x_4 of { happy_var_4 -> case happyOut91 happy_x_5 of { happy_var_5 -> ( let declspecs = liftTypeQuals happy_var_1 in do{ declr <- withAsmNameAttrs happy_var_4 happy_var_3 ; doDeclIdent declspecs declr ; withNodeInfo happy_var_1 $ CDecl (declspecs ++ liftCAttrs happy_var_2) [(Just (reverseDeclr declr), happy_var_5, Nothing)] })}}}}} ) (\r -> happyReturn (happyIn34 r)) happyReduce_94 = happyMonadReduce 4# 27# happyReduction_94 happyReduction_94 (happy_x_4 `HappyStk` 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 happyOut72 happy_x_2 of { happy_var_2 -> case happyOut35 happy_x_3 of { happy_var_3 -> case happyOut91 happy_x_4 of { happy_var_4 -> ( let declspecs = liftCAttrs happy_var_1 in do{ declr <- withAsmNameAttrs happy_var_3 happy_var_2 ; doDeclIdent declspecs declr ; withNodeInfo happy_var_1 $ CDecl declspecs [(Just (reverseDeclr declr), happy_var_4, Nothing)] })}}}} ) (\r -> happyReturn (happyIn34 r)) happyReduce_95 = happyMonadReduce 6# 27# happyReduction_95 happyReduction_95 (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 happyOut34 happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_3 of { happy_var_3 -> case happyOut72 happy_x_4 of { happy_var_4 -> case happyOut35 happy_x_5 of { happy_var_5 -> case happyOut91 happy_x_6 of { happy_var_6 -> ( case happy_var_1 of CDecl declspecs dies at -> do declr <- withAsmNameAttrs (fst happy_var_5, snd happy_var_5 ++ happy_var_3) happy_var_4 doDeclIdent declspecs declr withLength at $ CDecl declspecs ((Just (reverseDeclr declr), happy_var_6, Nothing) : dies))}}}}} ) (\r -> happyReturn (happyIn34 r)) happyReduce_96 = happySpecReduce_2 28# happyReduction_96 happyReduction_96 happy_x_2 happy_x_1 = case happyOut64 happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_2 of { happy_var_2 -> happyIn35 ((happy_var_1,happy_var_2) )}} happyReduce_97 = happyMonadReduce 4# 29# happyReduction_97 happyReduction_97 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut37 happy_x_1 of { happy_var_1 -> case happyOut63 happy_x_2 of { happy_var_2 -> case happyOut35 happy_x_3 of { happy_var_3 -> case happyOut91 happy_x_4 of { happy_var_4 -> ( do{ declr <- withAsmNameAttrs happy_var_3 happy_var_2; doDeclIdent happy_var_1 declr; withNodeInfo happy_var_1 $ CDecl happy_var_1 [(Just (reverseDeclr declr), happy_var_4, Nothing)] })}}}} ) (\r -> happyReturn (happyIn36 r)) happyReduce_98 = happyMonadReduce 4# 29# happyReduction_98 happyReduction_98 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut41 happy_x_1 of { happy_var_1 -> case happyOut63 happy_x_2 of { happy_var_2 -> case happyOut35 happy_x_3 of { happy_var_3 -> case happyOut91 happy_x_4 of { happy_var_4 -> ( do{ declr <- withAsmNameAttrs happy_var_3 happy_var_2; doDeclIdent happy_var_1 declr; withNodeInfo happy_var_1 $ CDecl happy_var_1 [(Just (reverseDeclr declr), happy_var_4, Nothing)] })}}}} ) (\r -> happyReturn (happyIn36 r)) happyReduce_99 = happyMonadReduce 6# 29# happyReduction_99 happyReduction_99 (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 happyOut36 happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_3 of { happy_var_3 -> case happyOut63 happy_x_4 of { happy_var_4 -> case happyOut35 happy_x_5 of { happy_var_5 -> case happyOut91 happy_x_6 of { happy_var_6 -> ( case happy_var_1 of CDecl declspecs dies at -> do declr <- withAsmNameAttrs (fst happy_var_5, snd happy_var_5 ++ happy_var_3) happy_var_4 doDeclIdent declspecs declr return (CDecl declspecs ((Just (reverseDeclr declr), happy_var_6, Nothing) : dies) at))}}}}} ) (\r -> happyReturn (happyIn36 r)) happyReduce_100 = happySpecReduce_1 30# happyReduction_100 happyReduction_100 happy_x_1 = case happyOut43 happy_x_1 of { happy_var_1 -> happyIn37 (reverse happy_var_1 )} happyReduce_101 = happySpecReduce_1 30# happyReduction_101 happyReduction_101 happy_x_1 = case happyOut45 happy_x_1 of { happy_var_1 -> happyIn37 (reverse happy_var_1 )} happyReduce_102 = happySpecReduce_1 30# happyReduction_102 happyReduction_102 happy_x_1 = case happyOut47 happy_x_1 of { happy_var_1 -> happyIn37 (reverse happy_var_1 )} happyReduce_103 = happySpecReduce_1 31# happyReduction_103 happyReduction_103 happy_x_1 = case happyOut40 happy_x_1 of { happy_var_1 -> happyIn38 (singleton (CStorageSpec happy_var_1) )} happyReduce_104 = happySpecReduce_2 31# happyReduction_104 happyReduction_104 happy_x_2 happy_x_1 = case happyOut127 happy_x_1 of { happy_var_1 -> case happyOut40 happy_x_2 of { happy_var_2 -> happyIn38 (reverseList (liftCAttrs happy_var_1) `snoc` (CStorageSpec happy_var_2) )}} happyReduce_105 = happySpecReduce_2 31# happyReduction_105 happyReduction_105 happy_x_2 happy_x_1 = case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut40 happy_x_2 of { happy_var_2 -> happyIn38 (rmap CTypeQual happy_var_1 `snoc` CStorageSpec happy_var_2 )}} happyReduce_106 = happySpecReduce_3 31# happyReduction_106 happyReduction_106 happy_x_3 happy_x_2 happy_x_1 = case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut40 happy_x_3 of { happy_var_3 -> happyIn38 ((rmap CTypeQual happy_var_1 `rappend` liftCAttrs happy_var_2) `snoc` CStorageSpec happy_var_3 )}}} happyReduce_107 = happySpecReduce_2 31# happyReduction_107 happyReduction_107 happy_x_2 happy_x_1 = case happyOut38 happy_x_1 of { happy_var_1 -> case happyOut39 happy_x_2 of { happy_var_2 -> happyIn38 (happy_var_1 `snoc` happy_var_2 )}} happyReduce_108 = happySpecReduce_2 31# happyReduction_108 happyReduction_108 happy_x_2 happy_x_1 = case happyOut38 happy_x_1 of { happy_var_1 -> case happyOut128 happy_x_2 of { happy_var_2 -> happyIn38 (addTrailingAttrs happy_var_1 happy_var_2 )}} happyReduce_109 = happySpecReduce_1 32# happyReduction_109 happyReduction_109 happy_x_1 = case happyOut40 happy_x_1 of { happy_var_1 -> happyIn39 (CStorageSpec happy_var_1 )} happyReduce_110 = happySpecReduce_1 32# happyReduction_110 happyReduction_110 happy_x_1 = case happyOut61 happy_x_1 of { happy_var_1 -> happyIn39 (CTypeQual happy_var_1 )} happyReduce_111 = happyMonadReduce 1# 33# happyReduction_111 happyReduction_111 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CTypedef)} ) (\r -> happyReturn (happyIn40 r)) happyReduce_112 = happyMonadReduce 1# 33# happyReduction_112 happyReduction_112 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CExtern)} ) (\r -> happyReturn (happyIn40 r)) happyReduce_113 = happyMonadReduce 1# 33# happyReduction_113 happyReduction_113 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CStatic)} ) (\r -> happyReturn (happyIn40 r)) happyReduce_114 = happyMonadReduce 1# 33# happyReduction_114 happyReduction_114 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CAuto)} ) (\r -> happyReturn (happyIn40 r)) happyReduce_115 = happyMonadReduce 1# 33# happyReduction_115 happyReduction_115 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CRegister)} ) (\r -> happyReturn (happyIn40 r)) happyReduce_116 = happyMonadReduce 1# 33# happyReduction_116 happyReduction_116 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CThread)} ) (\r -> happyReturn (happyIn40 r)) happyReduce_117 = happySpecReduce_1 34# happyReduction_117 happyReduction_117 happy_x_1 = case happyOut44 happy_x_1 of { happy_var_1 -> happyIn41 (reverse happy_var_1 )} happyReduce_118 = happySpecReduce_1 34# happyReduction_118 happyReduction_118 happy_x_1 = case happyOut46 happy_x_1 of { happy_var_1 -> happyIn41 (reverse happy_var_1 )} happyReduce_119 = happySpecReduce_1 34# happyReduction_119 happyReduction_119 happy_x_1 = case happyOut48 happy_x_1 of { happy_var_1 -> happyIn41 (reverse happy_var_1 )} happyReduce_120 = happyMonadReduce 1# 35# happyReduction_120 happyReduction_120 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CVoidType)} ) (\r -> happyReturn (happyIn42 r)) happyReduce_121 = happyMonadReduce 1# 35# happyReduction_121 happyReduction_121 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CCharType)} ) (\r -> happyReturn (happyIn42 r)) happyReduce_122 = happyMonadReduce 1# 35# happyReduction_122 happyReduction_122 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CShortType)} ) (\r -> happyReturn (happyIn42 r)) happyReduce_123 = happyMonadReduce 1# 35# happyReduction_123 happyReduction_123 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CIntType)} ) (\r -> happyReturn (happyIn42 r)) happyReduce_124 = happyMonadReduce 1# 35# happyReduction_124 happyReduction_124 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CLongType)} ) (\r -> happyReturn (happyIn42 r)) happyReduce_125 = happyMonadReduce 1# 35# happyReduction_125 happyReduction_125 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CFloatType)} ) (\r -> happyReturn (happyIn42 r)) happyReduce_126 = happyMonadReduce 1# 35# happyReduction_126 happyReduction_126 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CDoubleType)} ) (\r -> happyReturn (happyIn42 r)) happyReduce_127 = happyMonadReduce 1# 35# happyReduction_127 happyReduction_127 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CSignedType)} ) (\r -> happyReturn (happyIn42 r)) happyReduce_128 = happyMonadReduce 1# 35# happyReduction_128 happyReduction_128 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CUnsigType)} ) (\r -> happyReturn (happyIn42 r)) happyReduce_129 = happyMonadReduce 1# 35# happyReduction_129 happyReduction_129 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CBoolType)} ) (\r -> happyReturn (happyIn42 r)) happyReduce_130 = happyMonadReduce 1# 35# happyReduction_130 happyReduction_130 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CComplexType)} ) (\r -> happyReturn (happyIn42 r)) happyReduce_131 = happySpecReduce_2 36# happyReduction_131 happyReduction_131 happy_x_2 happy_x_1 = case happyOut38 happy_x_1 of { happy_var_1 -> case happyOut42 happy_x_2 of { happy_var_2 -> happyIn43 (happy_var_1 `snoc` CTypeSpec happy_var_2 )}} happyReduce_132 = happySpecReduce_2 36# happyReduction_132 happyReduction_132 happy_x_2 happy_x_1 = case happyOut44 happy_x_1 of { happy_var_1 -> case happyOut40 happy_x_2 of { happy_var_2 -> happyIn43 (happy_var_1 `snoc` CStorageSpec happy_var_2 )}} happyReduce_133 = happySpecReduce_2 36# happyReduction_133 happyReduction_133 happy_x_2 happy_x_1 = case happyOut43 happy_x_1 of { happy_var_1 -> case happyOut39 happy_x_2 of { happy_var_2 -> happyIn43 (happy_var_1 `snoc` happy_var_2 )}} happyReduce_134 = happySpecReduce_2 36# happyReduction_134 happyReduction_134 happy_x_2 happy_x_1 = case happyOut43 happy_x_1 of { happy_var_1 -> case happyOut42 happy_x_2 of { happy_var_2 -> happyIn43 (happy_var_1 `snoc` CTypeSpec happy_var_2 )}} happyReduce_135 = happySpecReduce_2 36# happyReduction_135 happyReduction_135 happy_x_2 happy_x_1 = case happyOut43 happy_x_1 of { happy_var_1 -> case happyOut128 happy_x_2 of { happy_var_2 -> happyIn43 (addTrailingAttrs happy_var_1 happy_var_2 )}} happyReduce_136 = happySpecReduce_1 37# happyReduction_136 happyReduction_136 happy_x_1 = case happyOut42 happy_x_1 of { happy_var_1 -> happyIn44 (singleton (CTypeSpec happy_var_1) )} happyReduce_137 = happySpecReduce_2 37# happyReduction_137 happyReduction_137 happy_x_2 happy_x_1 = case happyOut127 happy_x_1 of { happy_var_1 -> case happyOut42 happy_x_2 of { happy_var_2 -> happyIn44 ((reverseList $ liftCAttrs happy_var_1) `snoc` (CTypeSpec happy_var_2) )}} happyReduce_138 = happySpecReduce_2 37# happyReduction_138 happyReduction_138 happy_x_2 happy_x_1 = case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut42 happy_x_2 of { happy_var_2 -> happyIn44 (rmap CTypeQual happy_var_1 `snoc` CTypeSpec happy_var_2 )}} happyReduce_139 = happySpecReduce_3 37# happyReduction_139 happyReduction_139 happy_x_3 happy_x_2 happy_x_1 = case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut42 happy_x_3 of { happy_var_3 -> happyIn44 (rmap CTypeQual happy_var_1 `rappend` (liftCAttrs happy_var_2) `snoc` CTypeSpec happy_var_3 )}}} happyReduce_140 = happySpecReduce_2 37# happyReduction_140 happyReduction_140 happy_x_2 happy_x_1 = case happyOut44 happy_x_1 of { happy_var_1 -> case happyOut61 happy_x_2 of { happy_var_2 -> happyIn44 (happy_var_1 `snoc` CTypeQual happy_var_2 )}} happyReduce_141 = happySpecReduce_2 37# happyReduction_141 happyReduction_141 happy_x_2 happy_x_1 = case happyOut44 happy_x_1 of { happy_var_1 -> case happyOut42 happy_x_2 of { happy_var_2 -> happyIn44 (happy_var_1 `snoc` CTypeSpec happy_var_2 )}} happyReduce_142 = happySpecReduce_2 37# happyReduction_142 happyReduction_142 happy_x_2 happy_x_1 = case happyOut44 happy_x_1 of { happy_var_1 -> case happyOut128 happy_x_2 of { happy_var_2 -> happyIn44 (addTrailingAttrs happy_var_1 happy_var_2 )}} happyReduce_143 = happySpecReduce_2 38# happyReduction_143 happyReduction_143 happy_x_2 happy_x_1 = case happyOut38 happy_x_1 of { happy_var_1 -> case happyOut49 happy_x_2 of { happy_var_2 -> happyIn45 (happy_var_1 `snoc` CTypeSpec happy_var_2 )}} happyReduce_144 = happySpecReduce_2 38# happyReduction_144 happyReduction_144 happy_x_2 happy_x_1 = case happyOut46 happy_x_1 of { happy_var_1 -> case happyOut40 happy_x_2 of { happy_var_2 -> happyIn45 (happy_var_1 `snoc` CStorageSpec happy_var_2 )}} happyReduce_145 = happySpecReduce_2 38# happyReduction_145 happyReduction_145 happy_x_2 happy_x_1 = case happyOut45 happy_x_1 of { happy_var_1 -> case happyOut39 happy_x_2 of { happy_var_2 -> happyIn45 (happy_var_1 `snoc` happy_var_2 )}} happyReduce_146 = happySpecReduce_2 38# happyReduction_146 happyReduction_146 happy_x_2 happy_x_1 = case happyOut45 happy_x_1 of { happy_var_1 -> case happyOut128 happy_x_2 of { happy_var_2 -> happyIn45 (addTrailingAttrs happy_var_1 happy_var_2 )}} happyReduce_147 = happySpecReduce_1 39# happyReduction_147 happyReduction_147 happy_x_1 = case happyOut49 happy_x_1 of { happy_var_1 -> happyIn46 (singleton (CTypeSpec happy_var_1) )} happyReduce_148 = happySpecReduce_2 39# happyReduction_148 happyReduction_148 happy_x_2 happy_x_1 = case happyOut127 happy_x_1 of { happy_var_1 -> case happyOut49 happy_x_2 of { happy_var_2 -> happyIn46 ((reverseList $ liftCAttrs happy_var_1) `snoc` (CTypeSpec happy_var_2) )}} happyReduce_149 = happySpecReduce_2 39# happyReduction_149 happyReduction_149 happy_x_2 happy_x_1 = case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut49 happy_x_2 of { happy_var_2 -> happyIn46 (rmap CTypeQual happy_var_1 `snoc` CTypeSpec happy_var_2 )}} happyReduce_150 = happySpecReduce_3 39# happyReduction_150 happyReduction_150 happy_x_3 happy_x_2 happy_x_1 = case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut49 happy_x_3 of { happy_var_3 -> happyIn46 (rmap CTypeQual happy_var_1 `rappend` (liftCAttrs happy_var_2) `snoc` CTypeSpec happy_var_3 )}}} happyReduce_151 = happySpecReduce_2 39# happyReduction_151 happyReduction_151 happy_x_2 happy_x_1 = case happyOut46 happy_x_1 of { happy_var_1 -> case happyOut61 happy_x_2 of { happy_var_2 -> happyIn46 (happy_var_1 `snoc` CTypeQual happy_var_2 )}} happyReduce_152 = happySpecReduce_2 39# happyReduction_152 happyReduction_152 happy_x_2 happy_x_1 = case happyOut46 happy_x_1 of { happy_var_1 -> case happyOut128 happy_x_2 of { happy_var_2 -> happyIn46 (addTrailingAttrs happy_var_1 happy_var_2 )}} happyReduce_153 = happySpecReduce_2 40# happyReduction_153 happyReduction_153 happy_x_2 happy_x_1 = case happyOut48 happy_x_1 of { happy_var_1 -> case happyOut40 happy_x_2 of { happy_var_2 -> happyIn47 (happy_var_1 `snoc` CStorageSpec happy_var_2 )}} happyReduce_154 = happyMonadReduce 2# 40# happyReduction_154 happyReduction_154 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut38 happy_x_1 of { happy_var_1 -> case happyOutTok happy_x_2 of { (CTokTyIdent _ happy_var_2) -> ( withNodeInfo happy_var_2 $ \at -> happy_var_1 `snoc` CTypeSpec (CTypeDef happy_var_2 at))}} ) (\r -> happyReturn (happyIn47 r)) happyReduce_155 = happyMonadReduce 5# 40# happyReduction_155 happyReduction_155 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut38 happy_x_1 of { happy_var_1 -> case happyOutTok happy_x_2 of { happy_var_2 -> case happyOut117 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_2 $ \at -> happy_var_1 `snoc` CTypeSpec (CTypeOfExpr happy_var_4 at))}}} ) (\r -> happyReturn (happyIn47 r)) happyReduce_156 = happyMonadReduce 5# 40# 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 happyOut38 happy_x_1 of { happy_var_1 -> case happyOutTok happy_x_2 of { happy_var_2 -> case happyOut83 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_2 $ \at -> happy_var_1 `snoc` CTypeSpec (CTypeOfType happy_var_4 at))}}} ) (\r -> happyReturn (happyIn47 r)) happyReduce_157 = happySpecReduce_2 40# happyReduction_157 happyReduction_157 happy_x_2 happy_x_1 = case happyOut47 happy_x_1 of { happy_var_1 -> case happyOut39 happy_x_2 of { happy_var_2 -> happyIn47 (happy_var_1 `snoc` happy_var_2 )}} happyReduce_158 = happySpecReduce_2 40# happyReduction_158 happyReduction_158 happy_x_2 happy_x_1 = case happyOut47 happy_x_1 of { happy_var_1 -> case happyOut128 happy_x_2 of { happy_var_2 -> happyIn47 (addTrailingAttrs happy_var_1 happy_var_2 )}} happyReduce_159 = happyMonadReduce 1# 41# happyReduction_159 happyReduction_159 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { (CTokTyIdent _ happy_var_1) -> ( withNodeInfo happy_var_1 $ \at -> singleton (CTypeSpec (CTypeDef happy_var_1 at)))} ) (\r -> happyReturn (happyIn48 r)) happyReduce_160 = happyMonadReduce 4# 41# happyReduction_160 happyReduction_160 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut117 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ \at -> singleton (CTypeSpec (CTypeOfExpr happy_var_3 at)))}} ) (\r -> happyReturn (happyIn48 r)) happyReduce_161 = happyMonadReduce 4# 41# happyReduction_161 happyReduction_161 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut83 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ \at -> singleton (CTypeSpec (CTypeOfType happy_var_3 at)))}} ) (\r -> happyReturn (happyIn48 r)) happyReduce_162 = happyMonadReduce 2# 41# happyReduction_162 happyReduction_162 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOutTok happy_x_2 of { (CTokTyIdent _ happy_var_2) -> ( withNodeInfo happy_var_2 $ \at -> rmap CTypeQual happy_var_1 `snoc` CTypeSpec (CTypeDef happy_var_2 at))}} ) (\r -> happyReturn (happyIn48 r)) happyReduce_163 = happyMonadReduce 5# 41# happyReduction_163 happyReduction_163 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOutTok happy_x_2 of { happy_var_2 -> case happyOut117 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_2 $ \at -> rmap CTypeQual happy_var_1 `snoc` CTypeSpec (CTypeOfExpr happy_var_4 at))}}} ) (\r -> happyReturn (happyIn48 r)) happyReduce_164 = happyMonadReduce 5# 41# happyReduction_164 happyReduction_164 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOutTok happy_x_2 of { happy_var_2 -> case happyOut83 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_2 $ \at -> rmap CTypeQual happy_var_1 `snoc` CTypeSpec (CTypeOfType happy_var_4 at))}}} ) (\r -> happyReturn (happyIn48 r)) happyReduce_165 = happyMonadReduce 2# 41# happyReduction_165 happyReduction_165 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut127 happy_x_1 of { happy_var_1 -> case happyOutTok happy_x_2 of { (CTokTyIdent _ happy_var_2) -> ( withNodeInfo happy_var_2 $ \at -> reverseList (liftCAttrs happy_var_1) `snoc` (CTypeSpec (CTypeDef happy_var_2 at)))}} ) (\r -> happyReturn (happyIn48 r)) happyReduce_166 = happyMonadReduce 5# 41# happyReduction_166 happyReduction_166 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut127 happy_x_1 of { happy_var_1 -> case happyOut117 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ \at -> reverseList (liftCAttrs happy_var_1) `snoc` (CTypeSpec (CTypeOfExpr happy_var_4 at)))}} ) (\r -> happyReturn (happyIn48 r)) happyReduce_167 = happyMonadReduce 5# 41# happyReduction_167 happyReduction_167 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut127 happy_x_1 of { happy_var_1 -> case happyOutTok happy_x_2 of { happy_var_2 -> case happyOut83 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_2 $ \at -> reverseList (liftCAttrs happy_var_1) `snoc` (CTypeSpec (CTypeOfType happy_var_4 at)))}}} ) (\r -> happyReturn (happyIn48 r)) happyReduce_168 = happyMonadReduce 3# 41# happyReduction_168 happyReduction_168 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOutTok happy_x_3 of { (CTokTyIdent _ happy_var_3) -> ( withNodeInfo happy_var_3 $ \at -> rmap CTypeQual happy_var_1 `rappend` (liftCAttrs happy_var_2) `snoc` CTypeSpec (CTypeDef happy_var_3 at))}}} ) (\r -> happyReturn (happyIn48 r)) happyReduce_169 = happyMonadReduce 6# 41# happyReduction_169 happyReduction_169 (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 happyOut62 happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOutTok happy_x_3 of { happy_var_3 -> case happyOut117 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_3 $ \at -> rmap CTypeQual happy_var_1 `rappend` (liftCAttrs happy_var_2) `snoc` CTypeSpec (CTypeOfExpr happy_var_5 at))}}}} ) (\r -> happyReturn (happyIn48 r)) happyReduce_170 = happyMonadReduce 6# 41# happyReduction_170 happyReduction_170 (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 happyOut62 happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOutTok happy_x_3 of { happy_var_3 -> case happyOut83 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_3 $ \at -> rmap CTypeQual happy_var_1 `rappend` (liftCAttrs happy_var_2) `snoc` CTypeSpec (CTypeOfType happy_var_5 at))}}}} ) (\r -> happyReturn (happyIn48 r)) happyReduce_171 = happySpecReduce_2 41# happyReduction_171 happyReduction_171 happy_x_2 happy_x_1 = case happyOut48 happy_x_1 of { happy_var_1 -> case happyOut61 happy_x_2 of { happy_var_2 -> happyIn48 (happy_var_1 `snoc` CTypeQual happy_var_2 )}} happyReduce_172 = happySpecReduce_2 41# happyReduction_172 happyReduction_172 happy_x_2 happy_x_1 = case happyOut48 happy_x_1 of { happy_var_1 -> case happyOut128 happy_x_2 of { happy_var_2 -> happyIn48 (addTrailingAttrs happy_var_1 happy_var_2 )}} happyReduce_173 = happyMonadReduce 1# 42# happyReduction_173 happyReduction_173 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut50 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CSUType happy_var_1)} ) (\r -> happyReturn (happyIn49 r)) happyReduce_174 = happyMonadReduce 1# 42# happyReduction_174 happyReduction_174 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut58 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CEnumType happy_var_1)} ) (\r -> happyReturn (happyIn49 r)) happyReduce_175 = happyMonadReduce 6# 43# happyReduction_175 happyReduction_175 (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 happyOut51 happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_2 of { happy_var_2 -> case happyOut125 happy_x_3 of { happy_var_3 -> case happyOut52 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_1 $ CStruct (unL happy_var_1) (Just happy_var_3) (Just$ reverse happy_var_5) happy_var_2)}}}} ) (\r -> happyReturn (happyIn50 r)) happyReduce_176 = happyMonadReduce 5# 43# happyReduction_176 happyReduction_176 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut51 happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_2 of { happy_var_2 -> case happyOut52 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ CStruct (unL happy_var_1) Nothing (Just$ reverse happy_var_4) happy_var_2)}}} ) (\r -> happyReturn (happyIn50 r)) happyReduce_177 = happyMonadReduce 3# 43# happyReduction_177 happyReduction_177 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut51 happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_2 of { happy_var_2 -> case happyOut125 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CStruct (unL happy_var_1) (Just happy_var_3) Nothing happy_var_2)}}} ) (\r -> happyReturn (happyIn50 r)) happyReduce_178 = happySpecReduce_1 44# happyReduction_178 happyReduction_178 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn51 (L CStructTag (posOf happy_var_1) )} happyReduce_179 = happySpecReduce_1 44# happyReduction_179 happyReduction_179 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn51 (L CUnionTag (posOf happy_var_1) )} happyReduce_180 = happySpecReduce_0 45# happyReduction_180 happyReduction_180 = happyIn52 (empty ) happyReduce_181 = happySpecReduce_2 45# happyReduction_181 happyReduction_181 happy_x_2 happy_x_1 = case happyOut52 happy_x_1 of { happy_var_1 -> happyIn52 (happy_var_1 )} happyReduce_182 = happySpecReduce_2 45# happyReduction_182 happyReduction_182 happy_x_2 happy_x_1 = case happyOut52 happy_x_1 of { happy_var_1 -> case happyOut53 happy_x_2 of { happy_var_2 -> happyIn52 (happy_var_1 `snoc` happy_var_2 )}} happyReduce_183 = happySpecReduce_2 46# happyReduction_183 happyReduction_183 happy_x_2 happy_x_1 = case happyOut55 happy_x_1 of { happy_var_1 -> happyIn53 (case happy_var_1 of CDecl declspecs dies at -> CDecl declspecs (List.reverse dies) at )} happyReduce_184 = happySpecReduce_2 46# happyReduction_184 happyReduction_184 happy_x_2 happy_x_1 = case happyOut54 happy_x_1 of { happy_var_1 -> happyIn53 (case happy_var_1 of CDecl declspecs dies at -> CDecl declspecs (List.reverse dies) at )} happyReduce_185 = happySpecReduce_2 46# happyReduction_185 happyReduction_185 happy_x_2 happy_x_1 = case happyOut53 happy_x_2 of { happy_var_2 -> happyIn53 (happy_var_2 )} happyReduce_186 = happyMonadReduce 3# 47# happyReduction_186 happyReduction_186 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_2 of { happy_var_2 -> case happyOut57 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ case happy_var_3 of (d,s) -> CDecl (liftTypeQuals happy_var_1 ++ liftCAttrs happy_var_2) [(d,Nothing,s)])}}} ) (\r -> happyReturn (happyIn54 r)) happyReduce_187 = happyMonadReduce 2# 47# happyReduction_187 happyReduction_187 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut127 happy_x_1 of { happy_var_1 -> case happyOut57 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ case happy_var_2 of (d,s) -> CDecl (liftCAttrs happy_var_1) [(d,Nothing,s)])}} ) (\r -> happyReturn (happyIn54 r)) happyReduce_188 = happyReduce 4# 47# happyReduction_188 happyReduction_188 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut54 happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_3 of { happy_var_3 -> case happyOut57 happy_x_4 of { happy_var_4 -> happyIn54 (case happy_var_1 of CDecl declspecs dies at -> case happy_var_4 of (Just d,s) -> CDecl declspecs ((Just $ appendObjAttrs happy_var_3 d,Nothing,s) : dies) at (Nothing,s) -> CDecl declspecs ((Nothing,Nothing,s) : dies) at ) `HappyStk` happyRest}}} happyReduce_189 = happyMonadReduce 3# 48# happyReduction_189 happyReduction_189 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut41 happy_x_1 of { happy_var_1 -> case happyOut56 happy_x_2 of { happy_var_2 -> case happyOut126 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ case happy_var_2 of { (Just d,s) -> CDecl happy_var_1 [(Just $! appendObjAttrs happy_var_3 d,Nothing,s)] ; (Nothing,s) -> CDecl happy_var_1 [(Nothing,Nothing,s)] })}}} ) (\r -> happyReturn (happyIn55 r)) happyReduce_190 = happyReduce 5# 48# happyReduction_190 happyReduction_190 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut55 happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_3 of { happy_var_3 -> case happyOut56 happy_x_4 of { happy_var_4 -> case happyOut126 happy_x_5 of { happy_var_5 -> happyIn55 (case happy_var_1 of CDecl declspecs dies attr -> case happy_var_4 of (Just d,s) -> CDecl declspecs ((Just$ appendObjAttrs (happy_var_3++happy_var_5) d,Nothing,s) : dies) attr (Nothing,s) -> CDecl declspecs ((Nothing,Nothing,s) : dies) attr ) `HappyStk` happyRest}}}} happyReduce_191 = happyMonadReduce 1# 48# happyReduction_191 happyReduction_191 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut41 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CDecl happy_var_1 [])} ) (\r -> happyReturn (happyIn55 r)) happyReduce_192 = happySpecReduce_1 49# happyReduction_192 happyReduction_192 happy_x_1 = case happyOut63 happy_x_1 of { happy_var_1 -> happyIn56 ((Just (reverseDeclr happy_var_1), Nothing) )} happyReduce_193 = happySpecReduce_2 49# happyReduction_193 happyReduction_193 happy_x_2 happy_x_1 = case happyOut121 happy_x_2 of { happy_var_2 -> happyIn56 ((Nothing, Just happy_var_2) )} happyReduce_194 = happySpecReduce_3 49# happyReduction_194 happyReduction_194 happy_x_3 happy_x_2 happy_x_1 = case happyOut63 happy_x_1 of { happy_var_1 -> case happyOut121 happy_x_3 of { happy_var_3 -> happyIn56 ((Just (reverseDeclr happy_var_1), Just happy_var_3) )}} happyReduce_195 = happySpecReduce_1 50# happyReduction_195 happyReduction_195 happy_x_1 = case happyOut72 happy_x_1 of { happy_var_1 -> happyIn57 ((Just (reverseDeclr happy_var_1), Nothing) )} happyReduce_196 = happySpecReduce_2 50# happyReduction_196 happyReduction_196 happy_x_2 happy_x_1 = case happyOut121 happy_x_2 of { happy_var_2 -> happyIn57 ((Nothing, Just happy_var_2) )} happyReduce_197 = happySpecReduce_3 50# happyReduction_197 happyReduction_197 happy_x_3 happy_x_2 happy_x_1 = case happyOut72 happy_x_1 of { happy_var_1 -> case happyOut121 happy_x_3 of { happy_var_3 -> happyIn57 ((Just (reverseDeclr happy_var_1), Just happy_var_3) )}} happyReduce_198 = happySpecReduce_2 50# happyReduction_198 happyReduction_198 happy_x_2 happy_x_1 = case happyOut57 happy_x_1 of { happy_var_1 -> case happyOut128 happy_x_2 of { happy_var_2 -> happyIn57 (case happy_var_1 of { (Nothing,expr) -> (Nothing,expr) {- FIXME -} ; (Just (CDeclr name derived asmname attrs node), bsz) -> (Just (CDeclr name derived asmname (attrs++happy_var_2) node),bsz) } )}} happyReduce_199 = happyMonadReduce 5# 51# happyReduction_199 happyReduction_199 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_2 of { happy_var_2 -> case happyOut59 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ CEnum Nothing (Just$ reverse happy_var_4) happy_var_2)}}} ) (\r -> happyReturn (happyIn58 r)) happyReduce_200 = happyMonadReduce 6# 51# happyReduction_200 happyReduction_200 (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 happyOutTok happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_2 of { happy_var_2 -> case happyOut59 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ CEnum Nothing (Just$ reverse happy_var_4) happy_var_2)}}} ) (\r -> happyReturn (happyIn58 r)) happyReduce_201 = happyMonadReduce 6# 51# happyReduction_201 happyReduction_201 (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 happyOutTok happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_2 of { happy_var_2 -> case happyOut125 happy_x_3 of { happy_var_3 -> case happyOut59 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_1 $ CEnum (Just happy_var_3) (Just$ reverse happy_var_5) happy_var_2)}}}} ) (\r -> happyReturn (happyIn58 r)) happyReduce_202 = happyMonadReduce 7# 51# happyReduction_202 happyReduction_202 (happy_x_7 `HappyStk` happy_x_6 `HappyStk` happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_2 of { happy_var_2 -> case happyOut125 happy_x_3 of { happy_var_3 -> case happyOut59 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_1 $ CEnum (Just happy_var_3) (Just$ reverse happy_var_5) happy_var_2)}}}} ) (\r -> happyReturn (happyIn58 r)) happyReduce_203 = happyMonadReduce 3# 51# happyReduction_203 happyReduction_203 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_2 of { happy_var_2 -> case happyOut125 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CEnum (Just happy_var_3) Nothing happy_var_2)}}} ) (\r -> happyReturn (happyIn58 r)) happyReduce_204 = happySpecReduce_1 52# happyReduction_204 happyReduction_204 happy_x_1 = case happyOut60 happy_x_1 of { happy_var_1 -> happyIn59 (singleton happy_var_1 )} happyReduce_205 = happySpecReduce_3 52# happyReduction_205 happyReduction_205 happy_x_3 happy_x_2 happy_x_1 = case happyOut59 happy_x_1 of { happy_var_1 -> case happyOut60 happy_x_3 of { happy_var_3 -> happyIn59 (happy_var_1 `snoc` happy_var_3 )}} happyReduce_206 = happySpecReduce_1 53# happyReduction_206 happyReduction_206 happy_x_1 = case happyOut125 happy_x_1 of { happy_var_1 -> happyIn60 ((happy_var_1, Nothing) )} happyReduce_207 = happySpecReduce_3 53# happyReduction_207 happyReduction_207 happy_x_3 happy_x_2 happy_x_1 = case happyOut125 happy_x_1 of { happy_var_1 -> case happyOut121 happy_x_3 of { happy_var_3 -> happyIn60 ((happy_var_1, Just happy_var_3) )}} happyReduce_208 = happyMonadReduce 1# 54# happyReduction_208 happyReduction_208 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CConstQual)} ) (\r -> happyReturn (happyIn61 r)) happyReduce_209 = happyMonadReduce 1# 54# happyReduction_209 happyReduction_209 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CVolatQual)} ) (\r -> happyReturn (happyIn61 r)) happyReduce_210 = happyMonadReduce 1# 54# happyReduction_210 happyReduction_210 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CRestrQual)} ) (\r -> happyReturn (happyIn61 r)) happyReduce_211 = happyMonadReduce 1# 54# happyReduction_211 happyReduction_211 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CInlineQual)} ) (\r -> happyReturn (happyIn61 r)) happyReduce_212 = happySpecReduce_2 55# happyReduction_212 happyReduction_212 happy_x_2 happy_x_1 = case happyOut126 happy_x_1 of { happy_var_1 -> case happyOut61 happy_x_2 of { happy_var_2 -> happyIn62 (reverseList (map CAttrQual happy_var_1) `snoc` happy_var_2 )}} happyReduce_213 = happySpecReduce_2 55# happyReduction_213 happyReduction_213 happy_x_2 happy_x_1 = case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut61 happy_x_2 of { happy_var_2 -> happyIn62 (happy_var_1 `snoc` happy_var_2 )}} happyReduce_214 = happySpecReduce_3 55# happyReduction_214 happyReduction_214 happy_x_3 happy_x_2 happy_x_1 = case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut61 happy_x_3 of { happy_var_3 -> happyIn62 ((happy_var_1 `rappend` map CAttrQual happy_var_2) `snoc` happy_var_3 )}}} happyReduce_215 = happySpecReduce_1 56# happyReduction_215 happyReduction_215 happy_x_1 = case happyOut72 happy_x_1 of { happy_var_1 -> happyIn63 (happy_var_1 )} happyReduce_216 = happySpecReduce_1 56# happyReduction_216 happyReduction_216 happy_x_1 = case happyOut65 happy_x_1 of { happy_var_1 -> happyIn63 (happy_var_1 )} happyReduce_217 = happySpecReduce_0 57# happyReduction_217 happyReduction_217 = happyIn64 (Nothing ) happyReduce_218 = happyReduce 4# 57# happyReduction_218 happyReduction_218 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut123 happy_x_3 of { happy_var_3 -> happyIn64 (Just happy_var_3 ) `HappyStk` happyRest} happyReduce_219 = happySpecReduce_1 58# happyReduction_219 happyReduction_219 happy_x_1 = case happyOut69 happy_x_1 of { happy_var_1 -> happyIn65 (happy_var_1 )} happyReduce_220 = happySpecReduce_1 58# happyReduction_220 happyReduction_220 happy_x_1 = case happyOut66 happy_x_1 of { happy_var_1 -> happyIn65 (happy_var_1 )} happyReduce_221 = happyMonadReduce 1# 59# happyReduction_221 happyReduction_221 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { (CTokTyIdent _ happy_var_1) -> ( withNodeInfo happy_var_1 $ mkVarDeclr happy_var_1)} ) (\r -> happyReturn (happyIn66 r)) happyReduce_222 = happyMonadReduce 2# 59# happyReduction_222 happyReduction_222 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { (CTokTyIdent _ happy_var_1) -> case happyOut85 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ \at -> happy_var_2 (mkVarDeclr happy_var_1 at))}} ) (\r -> happyReturn (happyIn66 r)) happyReduce_223 = happySpecReduce_1 59# happyReduction_223 happyReduction_223 happy_x_1 = case happyOut67 happy_x_1 of { happy_var_1 -> happyIn66 (happy_var_1 )} happyReduce_224 = happySpecReduce_1 60# happyReduction_224 happyReduction_224 happy_x_1 = case happyOut68 happy_x_1 of { happy_var_1 -> happyIn67 (happy_var_1 )} happyReduce_225 = happyMonadReduce 2# 60# happyReduction_225 happyReduction_225 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut66 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ ptrDeclr happy_var_2 [])}} ) (\r -> happyReturn (happyIn67 r)) happyReduce_226 = happyMonadReduce 3# 60# happyReduction_226 happyReduction_226 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut66 happy_x_3 of { happy_var_3 -> ( withAttribute happy_var_1 happy_var_2 $ ptrDeclr happy_var_3 [])}}} ) (\r -> happyReturn (happyIn67 r)) happyReduce_227 = happyMonadReduce 3# 60# happyReduction_227 happyReduction_227 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut66 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ ptrDeclr happy_var_3 (reverse happy_var_2))}}} ) (\r -> happyReturn (happyIn67 r)) happyReduce_228 = happyMonadReduce 4# 60# happyReduction_228 happyReduction_228 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut127 happy_x_3 of { happy_var_3 -> case happyOut66 happy_x_4 of { happy_var_4 -> ( withAttribute happy_var_1 happy_var_3 $ ptrDeclr happy_var_4 (reverse happy_var_2))}}}} ) (\r -> happyReturn (happyIn67 r)) happyReduce_229 = happySpecReduce_3 61# happyReduction_229 happyReduction_229 happy_x_3 happy_x_2 happy_x_1 = case happyOut67 happy_x_2 of { happy_var_2 -> happyIn68 (happy_var_2 )} happyReduce_230 = happyReduce 4# 61# happyReduction_230 happyReduction_230 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut67 happy_x_2 of { happy_var_2 -> case happyOut85 happy_x_4 of { happy_var_4 -> happyIn68 (happy_var_4 happy_var_2 ) `HappyStk` happyRest}} happyReduce_231 = happyReduce 4# 61# happyReduction_231 happyReduction_231 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut67 happy_x_3 of { happy_var_3 -> happyIn68 (appendDeclrAttrs happy_var_2 happy_var_3 ) `HappyStk` happyRest}} happyReduce_232 = happyReduce 5# 61# happyReduction_232 happyReduction_232 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut67 happy_x_3 of { happy_var_3 -> case happyOut85 happy_x_5 of { happy_var_5 -> happyIn68 (appendDeclrAttrs happy_var_2 (happy_var_5 happy_var_3) ) `HappyStk` happyRest}}} happyReduce_233 = happySpecReduce_1 62# happyReduction_233 happyReduction_233 happy_x_1 = case happyOut70 happy_x_1 of { happy_var_1 -> happyIn69 (happy_var_1 )} happyReduce_234 = happyMonadReduce 4# 62# happyReduction_234 happyReduction_234 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut71 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ ptrDeclr happy_var_3 [])}} ) (\r -> happyReturn (happyIn69 r)) happyReduce_235 = happyMonadReduce 5# 62# happyReduction_235 happyReduction_235 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut71 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ ptrDeclr happy_var_4 (reverse happy_var_2))}}} ) (\r -> happyReturn (happyIn69 r)) happyReduce_236 = happyMonadReduce 6# 62# happyReduction_236 happyReduction_236 (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 happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut127 happy_x_3 of { happy_var_3 -> case happyOut71 happy_x_5 of { happy_var_5 -> ( withAttribute happy_var_1 happy_var_3 $ ptrDeclr happy_var_5 (reverse happy_var_2))}}}} ) (\r -> happyReturn (happyIn69 r)) happyReduce_237 = happyMonadReduce 2# 62# happyReduction_237 happyReduction_237 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut69 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ ptrDeclr happy_var_2 [])}} ) (\r -> happyReturn (happyIn69 r)) happyReduce_238 = happyMonadReduce 3# 62# happyReduction_238 happyReduction_238 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut69 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ ptrDeclr happy_var_3 (reverse happy_var_2))}}} ) (\r -> happyReturn (happyIn69 r)) happyReduce_239 = happyMonadReduce 4# 62# happyReduction_239 happyReduction_239 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut127 happy_x_3 of { happy_var_3 -> case happyOut69 happy_x_4 of { happy_var_4 -> ( withAttribute happy_var_1 happy_var_3 $ ptrDeclr happy_var_4 (reverse happy_var_2))}}}} ) (\r -> happyReturn (happyIn69 r)) happyReduce_240 = happySpecReduce_3 63# happyReduction_240 happyReduction_240 happy_x_3 happy_x_2 happy_x_1 = case happyOut69 happy_x_2 of { happy_var_2 -> happyIn70 (happy_var_2 )} happyReduce_241 = happyReduce 4# 63# happyReduction_241 happyReduction_241 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut71 happy_x_2 of { happy_var_2 -> case happyOut85 happy_x_3 of { happy_var_3 -> happyIn70 (happy_var_3 happy_var_2 ) `HappyStk` happyRest}} happyReduce_242 = happyReduce 4# 63# happyReduction_242 happyReduction_242 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut69 happy_x_2 of { happy_var_2 -> case happyOut85 happy_x_4 of { happy_var_4 -> happyIn70 (happy_var_4 happy_var_2 ) `HappyStk` happyRest}} happyReduce_243 = happyMonadReduce 1# 64# happyReduction_243 happyReduction_243 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { (CTokTyIdent _ happy_var_1) -> ( withNodeInfo happy_var_1 $ mkVarDeclr happy_var_1)} ) (\r -> happyReturn (happyIn71 r)) happyReduce_244 = happySpecReduce_3 64# happyReduction_244 happyReduction_244 happy_x_3 happy_x_2 happy_x_1 = case happyOut71 happy_x_2 of { happy_var_2 -> happyIn71 (happy_var_2 )} happyReduce_245 = happySpecReduce_1 65# happyReduction_245 happyReduction_245 happy_x_1 = case happyOut73 happy_x_1 of { happy_var_1 -> happyIn72 (happy_var_1 )} happyReduce_246 = happySpecReduce_1 65# happyReduction_246 happyReduction_246 happy_x_1 = case happyOut75 happy_x_1 of { happy_var_1 -> happyIn72 (happy_var_1 )} happyReduce_247 = happySpecReduce_1 66# happyReduction_247 happyReduction_247 happy_x_1 = case happyOut74 happy_x_1 of { happy_var_1 -> happyIn73 (happy_var_1 )} happyReduce_248 = happyMonadReduce 2# 66# happyReduction_248 happyReduction_248 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut72 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ ptrDeclr happy_var_2 [])}} ) (\r -> happyReturn (happyIn73 r)) happyReduce_249 = happyMonadReduce 3# 66# happyReduction_249 happyReduction_249 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut72 happy_x_3 of { happy_var_3 -> ( withAttribute happy_var_1 happy_var_2 $ ptrDeclr happy_var_3 [])}}} ) (\r -> happyReturn (happyIn73 r)) happyReduce_250 = happyMonadReduce 3# 66# happyReduction_250 happyReduction_250 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut72 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ ptrDeclr happy_var_3 (reverse happy_var_2))}}} ) (\r -> happyReturn (happyIn73 r)) happyReduce_251 = happyMonadReduce 4# 66# happyReduction_251 happyReduction_251 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut127 happy_x_3 of { happy_var_3 -> case happyOut72 happy_x_4 of { happy_var_4 -> ( withAttribute happy_var_1 happy_var_3 $ ptrDeclr happy_var_4 (reverse happy_var_2))}}}} ) (\r -> happyReturn (happyIn73 r)) happyReduce_252 = happySpecReduce_2 67# happyReduction_252 happyReduction_252 happy_x_2 happy_x_1 = case happyOut75 happy_x_1 of { happy_var_1 -> case happyOut85 happy_x_2 of { happy_var_2 -> happyIn74 (happy_var_2 happy_var_1 )}} happyReduce_253 = happySpecReduce_3 67# happyReduction_253 happyReduction_253 happy_x_3 happy_x_2 happy_x_1 = case happyOut73 happy_x_2 of { happy_var_2 -> happyIn74 (happy_var_2 )} happyReduce_254 = happyReduce 4# 67# happyReduction_254 happyReduction_254 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut73 happy_x_2 of { happy_var_2 -> case happyOut85 happy_x_4 of { happy_var_4 -> happyIn74 (happy_var_4 happy_var_2 ) `HappyStk` happyRest}} happyReduce_255 = happyReduce 4# 67# happyReduction_255 happyReduction_255 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut73 happy_x_3 of { happy_var_3 -> happyIn74 (appendDeclrAttrs happy_var_2 happy_var_3 ) `HappyStk` happyRest}} happyReduce_256 = happyReduce 5# 67# happyReduction_256 happyReduction_256 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut73 happy_x_3 of { happy_var_3 -> case happyOut85 happy_x_5 of { happy_var_5 -> happyIn74 (appendDeclrAttrs happy_var_2 (happy_var_5 happy_var_3) ) `HappyStk` happyRest}}} happyReduce_257 = happyMonadReduce 1# 68# happyReduction_257 happyReduction_257 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { (CTokIdent _ happy_var_1) -> ( withNodeInfo happy_var_1 $ mkVarDeclr happy_var_1)} ) (\r -> happyReturn (happyIn75 r)) happyReduce_258 = happySpecReduce_3 68# happyReduction_258 happyReduction_258 happy_x_3 happy_x_2 happy_x_1 = case happyOut75 happy_x_2 of { happy_var_2 -> happyIn75 (happy_var_2 )} happyReduce_259 = happyReduce 4# 68# happyReduction_259 happyReduction_259 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut75 happy_x_3 of { happy_var_3 -> happyIn75 (appendDeclrAttrs happy_var_2 happy_var_3 ) `HappyStk` happyRest}} happyReduce_260 = happySpecReduce_1 69# happyReduction_260 happyReduction_260 happy_x_1 = case happyOut77 happy_x_1 of { happy_var_1 -> happyIn76 (reverseDeclr happy_var_1 )} happyReduce_261 = happySpecReduce_1 70# happyReduction_261 happyReduction_261 happy_x_1 = case happyOut78 happy_x_1 of { happy_var_1 -> happyIn77 (happy_var_1 )} happyReduce_262 = happyMonadReduce 2# 70# happyReduction_262 happyReduction_262 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut77 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ ptrDeclr happy_var_2 [])}} ) (\r -> happyReturn (happyIn77 r)) happyReduce_263 = happyMonadReduce 3# 70# happyReduction_263 happyReduction_263 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut77 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ ptrDeclr happy_var_3 (reverse happy_var_2))}}} ) (\r -> happyReturn (happyIn77 r)) happyReduce_264 = happyMonadReduce 4# 71# happyReduction_264 happyReduction_264 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut75 happy_x_1 of { happy_var_1 -> case happyOut82 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ funDeclr happy_var_1 (Left $ reverse happy_var_3) [])}} ) (\r -> happyReturn (happyIn78 r)) happyReduce_265 = happySpecReduce_3 71# happyReduction_265 happyReduction_265 happy_x_3 happy_x_2 happy_x_1 = case happyOut77 happy_x_2 of { happy_var_2 -> happyIn78 (happy_var_2 )} happyReduce_266 = happyReduce 4# 71# happyReduction_266 happyReduction_266 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut77 happy_x_2 of { happy_var_2 -> case happyOut85 happy_x_4 of { happy_var_4 -> happyIn78 (happy_var_4 happy_var_2 ) `HappyStk` happyRest}} happyReduce_267 = happySpecReduce_0 72# happyReduction_267 happyReduction_267 = happyIn79 (([], False) ) happyReduce_268 = happySpecReduce_1 72# happyReduction_268 happyReduction_268 happy_x_1 = case happyOut80 happy_x_1 of { happy_var_1 -> happyIn79 ((reverse happy_var_1, False) )} happyReduce_269 = happySpecReduce_3 72# happyReduction_269 happyReduction_269 happy_x_3 happy_x_2 happy_x_1 = case happyOut80 happy_x_1 of { happy_var_1 -> happyIn79 ((reverse happy_var_1, True) )} happyReduce_270 = happySpecReduce_1 73# happyReduction_270 happyReduction_270 happy_x_1 = case happyOut81 happy_x_1 of { happy_var_1 -> happyIn80 (singleton happy_var_1 )} happyReduce_271 = happySpecReduce_3 73# happyReduction_271 happyReduction_271 happy_x_3 happy_x_2 happy_x_1 = case happyOut80 happy_x_1 of { happy_var_1 -> case happyOut81 happy_x_3 of { happy_var_3 -> happyIn80 (happy_var_1 `snoc` happy_var_3 )}} happyReduce_272 = happyMonadReduce 1# 74# happyReduction_272 happyReduction_272 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut37 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CDecl happy_var_1 [])} ) (\r -> happyReturn (happyIn81 r)) happyReduce_273 = happyMonadReduce 2# 74# happyReduction_273 happyReduction_273 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut37 happy_x_1 of { happy_var_1 -> case happyOut84 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CDecl happy_var_1 [(Just (reverseDeclr happy_var_2), Nothing, Nothing)])}} ) (\r -> happyReturn (happyIn81 r)) happyReduce_274 = happyMonadReduce 3# 74# happyReduction_274 happyReduction_274 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut37 happy_x_1 of { happy_var_1 -> case happyOut72 happy_x_2 of { happy_var_2 -> case happyOut126 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CDecl happy_var_1 [(Just (reverseDeclr $! appendDeclrAttrs happy_var_3 happy_var_2), Nothing, Nothing)])}}} ) (\r -> happyReturn (happyIn81 r)) happyReduce_275 = happyMonadReduce 3# 74# happyReduction_275 happyReduction_275 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut37 happy_x_1 of { happy_var_1 -> case happyOut66 happy_x_2 of { happy_var_2 -> case happyOut126 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CDecl happy_var_1 [(Just (reverseDeclr $! appendDeclrAttrs happy_var_3 happy_var_2), Nothing, Nothing)])}}} ) (\r -> happyReturn (happyIn81 r)) happyReduce_276 = happyMonadReduce 1# 74# happyReduction_276 happyReduction_276 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut38 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CDecl (reverse happy_var_1) [])} ) (\r -> happyReturn (happyIn81 r)) happyReduce_277 = happyMonadReduce 2# 74# happyReduction_277 happyReduction_277 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut38 happy_x_1 of { happy_var_1 -> case happyOut84 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CDecl (reverse happy_var_1) [(Just (reverseDeclr happy_var_2), Nothing, Nothing)])}} ) (\r -> happyReturn (happyIn81 r)) happyReduce_278 = happyMonadReduce 3# 74# happyReduction_278 happyReduction_278 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut38 happy_x_1 of { happy_var_1 -> case happyOut72 happy_x_2 of { happy_var_2 -> case happyOut126 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CDecl (reverse happy_var_1) [(Just (reverseDeclr $! appendDeclrAttrs happy_var_3 happy_var_2), Nothing, Nothing)])}}} ) (\r -> happyReturn (happyIn81 r)) happyReduce_279 = happyMonadReduce 1# 74# happyReduction_279 happyReduction_279 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut41 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CDecl happy_var_1 [])} ) (\r -> happyReturn (happyIn81 r)) happyReduce_280 = happyMonadReduce 2# 74# happyReduction_280 happyReduction_280 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut41 happy_x_1 of { happy_var_1 -> case happyOut84 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CDecl happy_var_1 [(Just (reverseDeclr happy_var_2), Nothing, Nothing)])}} ) (\r -> happyReturn (happyIn81 r)) happyReduce_281 = happyMonadReduce 3# 74# happyReduction_281 happyReduction_281 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut41 happy_x_1 of { happy_var_1 -> case happyOut72 happy_x_2 of { happy_var_2 -> case happyOut126 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CDecl happy_var_1 [(Just (reverseDeclr $! appendDeclrAttrs happy_var_3 happy_var_2), Nothing, Nothing)])}}} ) (\r -> happyReturn (happyIn81 r)) happyReduce_282 = happyMonadReduce 3# 74# happyReduction_282 happyReduction_282 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut41 happy_x_1 of { happy_var_1 -> case happyOut66 happy_x_2 of { happy_var_2 -> case happyOut126 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CDecl happy_var_1 [(Just (reverseDeclr $! appendDeclrAttrs happy_var_3 happy_var_2), Nothing, Nothing)])}}} ) (\r -> happyReturn (happyIn81 r)) happyReduce_283 = happyMonadReduce 1# 74# happyReduction_283 happyReduction_283 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CDecl (liftTypeQuals happy_var_1) [])} ) (\r -> happyReturn (happyIn81 r)) happyReduce_284 = happyMonadReduce 2# 74# happyReduction_284 happyReduction_284 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut128 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CDecl (liftTypeQuals happy_var_1 ++ liftCAttrs happy_var_2) [])}} ) (\r -> happyReturn (happyIn81 r)) happyReduce_285 = happyMonadReduce 2# 74# happyReduction_285 happyReduction_285 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut84 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CDecl (liftTypeQuals happy_var_1) [(Just (reverseDeclr happy_var_2), Nothing, Nothing)])}} ) (\r -> happyReturn (happyIn81 r)) happyReduce_286 = happyMonadReduce 3# 74# happyReduction_286 happyReduction_286 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut72 happy_x_2 of { happy_var_2 -> case happyOut126 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CDecl (liftTypeQuals happy_var_1) [(Just (reverseDeclr$ appendDeclrAttrs happy_var_3 happy_var_2), Nothing, Nothing)])}}} ) (\r -> happyReturn (happyIn81 r)) happyReduce_287 = happySpecReduce_1 75# happyReduction_287 happyReduction_287 happy_x_1 = case happyOutTok happy_x_1 of { (CTokIdent _ happy_var_1) -> happyIn82 (singleton happy_var_1 )} happyReduce_288 = happySpecReduce_3 75# happyReduction_288 happyReduction_288 happy_x_3 happy_x_2 happy_x_1 = case happyOut82 happy_x_1 of { happy_var_1 -> case happyOutTok happy_x_3 of { (CTokIdent _ happy_var_3) -> happyIn82 (happy_var_1 `snoc` happy_var_3 )}} happyReduce_289 = happyMonadReduce 1# 76# happyReduction_289 happyReduction_289 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut41 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CDecl happy_var_1 [])} ) (\r -> happyReturn (happyIn83 r)) happyReduce_290 = happyMonadReduce 2# 76# happyReduction_290 happyReduction_290 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut41 happy_x_1 of { happy_var_1 -> case happyOut84 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CDecl happy_var_1 [(Just (reverseDeclr happy_var_2), Nothing, Nothing)])}} ) (\r -> happyReturn (happyIn83 r)) happyReduce_291 = happyMonadReduce 2# 76# happyReduction_291 happyReduction_291 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut128 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CDecl (liftTypeQuals happy_var_1 ++ liftCAttrs happy_var_2) [])}} ) (\r -> happyReturn (happyIn83 r)) happyReduce_292 = happyMonadReduce 2# 76# happyReduction_292 happyReduction_292 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut62 happy_x_1 of { happy_var_1 -> case happyOut84 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CDecl (liftTypeQuals happy_var_1) [(Just (reverseDeclr happy_var_2), Nothing, Nothing)])}} ) (\r -> happyReturn (happyIn83 r)) happyReduce_293 = happySpecReduce_1 77# happyReduction_293 happyReduction_293 happy_x_1 = case happyOut88 happy_x_1 of { happy_var_1 -> happyIn84 (happy_var_1 )} happyReduce_294 = happySpecReduce_1 77# happyReduction_294 happyReduction_294 happy_x_1 = case happyOut89 happy_x_1 of { happy_var_1 -> happyIn84 (happy_var_1 )} happyReduce_295 = happySpecReduce_1 77# happyReduction_295 happyReduction_295 happy_x_1 = case happyOut85 happy_x_1 of { happy_var_1 -> happyIn84 (happy_var_1 emptyDeclr )} happyReduce_296 = happySpecReduce_1 78# happyReduction_296 happyReduction_296 happy_x_1 = case happyOut86 happy_x_1 of { happy_var_1 -> happyIn85 (happy_var_1 )} happyReduce_297 = happyMonadReduce 3# 78# happyReduction_297 happyReduction_297 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut79 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ \at declr -> case happy_var_2 of (params, variadic) -> funDeclr declr (Right (params,variadic)) [] at)}} ) (\r -> happyReturn (happyIn85 r)) happyReduce_298 = happySpecReduce_1 79# happyReduction_298 happyReduction_298 happy_x_1 = case happyOut87 happy_x_1 of { happy_var_1 -> happyIn86 (happy_var_1 )} happyReduce_299 = happySpecReduce_2 79# happyReduction_299 happyReduction_299 happy_x_2 happy_x_1 = case happyOut86 happy_x_1 of { happy_var_1 -> case happyOut87 happy_x_2 of { happy_var_2 -> happyIn86 (\decl -> happy_var_2 (happy_var_1 decl) )}} happyReduce_300 = happyMonadReduce 3# 80# happyReduction_300 happyReduction_300 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut120 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ \at declr -> arrDeclr declr [] False False happy_var_2 at)}} ) (\r -> happyReturn (happyIn87 r)) happyReduce_301 = happyMonadReduce 4# 80# happyReduction_301 happyReduction_301 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut120 happy_x_3 of { happy_var_3 -> ( withAttributePF happy_var_1 happy_var_2 $ \at declr -> arrDeclr declr [] False False happy_var_3 at)}}} ) (\r -> happyReturn (happyIn87 r)) happyReduce_302 = happyMonadReduce 4# 80# happyReduction_302 happyReduction_302 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut120 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ \at declr -> arrDeclr declr (reverse happy_var_2) False False happy_var_3 at)}}} ) (\r -> happyReturn (happyIn87 r)) happyReduce_303 = happyMonadReduce 5# 80# happyReduction_303 happyReduction_303 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut127 happy_x_3 of { happy_var_3 -> case happyOut120 happy_x_4 of { happy_var_4 -> ( withAttributePF happy_var_1 happy_var_3 $ \at declr -> arrDeclr declr (reverse happy_var_2) False False happy_var_4 at)}}}} ) (\r -> happyReturn (happyIn87 r)) happyReduce_304 = happyMonadReduce 5# 80# happyReduction_304 happyReduction_304 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_3 of { happy_var_3 -> case happyOut115 happy_x_4 of { happy_var_4 -> ( withAttributePF happy_var_1 happy_var_3 $ \at declr -> arrDeclr declr [] False True (Just happy_var_4) at)}}} ) (\r -> happyReturn (happyIn87 r)) happyReduce_305 = happyMonadReduce 6# 80# happyReduction_305 happyReduction_305 (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 happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_3 of { happy_var_3 -> case happyOut126 happy_x_4 of { happy_var_4 -> case happyOut115 happy_x_5 of { happy_var_5 -> ( withAttributePF happy_var_1 happy_var_4 $ \at declr -> arrDeclr declr (reverse happy_var_3) False True (Just happy_var_5) at)}}}} ) (\r -> happyReturn (happyIn87 r)) happyReduce_306 = happyMonadReduce 7# 80# happyReduction_306 happyReduction_306 (happy_x_7 `HappyStk` happy_x_6 `HappyStk` happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut126 happy_x_3 of { happy_var_3 -> case happyOut126 happy_x_5 of { happy_var_5 -> case happyOut115 happy_x_6 of { happy_var_6 -> ( withAttributePF happy_var_1 (happy_var_3 ++ happy_var_5) $ \at declr -> arrDeclr declr (reverse happy_var_2) False True (Just happy_var_6) at)}}}}} ) (\r -> happyReturn (happyIn87 r)) happyReduce_307 = happyMonadReduce 4# 80# happyReduction_307 happyReduction_307 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut126 happy_x_3 of { happy_var_3 -> ( withAttributePF happy_var_1 happy_var_3 $ \at declr -> arrDeclr declr [] True False Nothing at)}} ) (\r -> happyReturn (happyIn87 r)) happyReduce_308 = happyMonadReduce 5# 80# happyReduction_308 happyReduction_308 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut126 happy_x_4 of { happy_var_4 -> ( withAttributePF happy_var_1 (happy_var_2 ++ happy_var_4) $ \at declr -> arrDeclr declr [] True False Nothing at)}}} ) (\r -> happyReturn (happyIn87 r)) happyReduce_309 = happyMonadReduce 5# 80# happyReduction_309 happyReduction_309 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut126 happy_x_4 of { happy_var_4 -> ( withAttributePF happy_var_1 happy_var_4 $ \at declr -> arrDeclr declr (reverse happy_var_2) True False Nothing at)}}} ) (\r -> happyReturn (happyIn87 r)) happyReduce_310 = happyMonadReduce 6# 80# happyReduction_310 happyReduction_310 (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 happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut127 happy_x_3 of { happy_var_3 -> case happyOut126 happy_x_5 of { happy_var_5 -> ( withAttributePF happy_var_1 (happy_var_3 ++ happy_var_5) $ \at declr -> arrDeclr declr (reverse happy_var_2) True False Nothing at)}}}} ) (\r -> happyReturn (happyIn87 r)) happyReduce_311 = happyMonadReduce 1# 81# happyReduction_311 happyReduction_311 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ ptrDeclr emptyDeclr [])} ) (\r -> happyReturn (happyIn88 r)) happyReduce_312 = happyMonadReduce 3# 81# happyReduction_312 happyReduction_312 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut126 happy_x_3 of { happy_var_3 -> ( withAttribute happy_var_1 happy_var_3 $ ptrDeclr emptyDeclr (reverse happy_var_2))}}} ) (\r -> happyReturn (happyIn88 r)) happyReduce_313 = happyMonadReduce 2# 81# happyReduction_313 happyReduction_313 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut84 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ ptrDeclr happy_var_2 [])}} ) (\r -> happyReturn (happyIn88 r)) happyReduce_314 = happyMonadReduce 3# 81# happyReduction_314 happyReduction_314 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut62 happy_x_2 of { happy_var_2 -> case happyOut84 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ ptrDeclr happy_var_3 (reverse happy_var_2))}}} ) (\r -> happyReturn (happyIn88 r)) happyReduce_315 = happyMonadReduce 2# 81# happyReduction_315 happyReduction_315 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> ( withAttribute happy_var_1 happy_var_2 $ ptrDeclr emptyDeclr [])}} ) (\r -> happyReturn (happyIn88 r)) happyReduce_316 = happyMonadReduce 3# 81# happyReduction_316 happyReduction_316 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut84 happy_x_3 of { happy_var_3 -> ( withAttribute happy_var_1 happy_var_2 $ ptrDeclr happy_var_3 [])}}} ) (\r -> happyReturn (happyIn88 r)) happyReduce_317 = happySpecReduce_3 82# happyReduction_317 happyReduction_317 happy_x_3 happy_x_2 happy_x_1 = case happyOut88 happy_x_2 of { happy_var_2 -> happyIn89 (happy_var_2 )} happyReduce_318 = happySpecReduce_3 82# happyReduction_318 happyReduction_318 happy_x_3 happy_x_2 happy_x_1 = case happyOut89 happy_x_2 of { happy_var_2 -> happyIn89 (happy_var_2 )} happyReduce_319 = happySpecReduce_3 82# happyReduction_319 happyReduction_319 happy_x_3 happy_x_2 happy_x_1 = case happyOut85 happy_x_2 of { happy_var_2 -> happyIn89 (happy_var_2 emptyDeclr )} happyReduce_320 = happyReduce 4# 82# happyReduction_320 happyReduction_320 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut88 happy_x_2 of { happy_var_2 -> case happyOut85 happy_x_4 of { happy_var_4 -> happyIn89 (happy_var_4 happy_var_2 ) `HappyStk` happyRest}} happyReduce_321 = happyReduce 4# 82# happyReduction_321 happyReduction_321 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut88 happy_x_3 of { happy_var_3 -> happyIn89 (appendDeclrAttrs happy_var_2 happy_var_3 ) `HappyStk` happyRest}} happyReduce_322 = happyReduce 4# 82# happyReduction_322 happyReduction_322 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut89 happy_x_3 of { happy_var_3 -> happyIn89 (appendDeclrAttrs happy_var_2 happy_var_3 ) `HappyStk` happyRest}} happyReduce_323 = happyReduce 4# 82# happyReduction_323 happyReduction_323 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut85 happy_x_3 of { happy_var_3 -> happyIn89 (appendDeclrAttrs happy_var_2 (happy_var_3 emptyDeclr) ) `HappyStk` happyRest}} happyReduce_324 = happyReduce 5# 82# happyReduction_324 happyReduction_324 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut127 happy_x_2 of { happy_var_2 -> case happyOut88 happy_x_3 of { happy_var_3 -> case happyOut85 happy_x_5 of { happy_var_5 -> happyIn89 (appendDeclrAttrs happy_var_2 (happy_var_5 happy_var_3) ) `HappyStk` happyRest}}} happyReduce_325 = happySpecReduce_2 82# happyReduction_325 happyReduction_325 happy_x_2 happy_x_1 = case happyOut89 happy_x_1 of { happy_var_1 -> case happyOut128 happy_x_2 of { happy_var_2 -> happyIn89 (appendDeclrAttrs happy_var_2 happy_var_1 )}} happyReduce_326 = happyMonadReduce 1# 83# happyReduction_326 happyReduction_326 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut115 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CInitExpr happy_var_1)} ) (\r -> happyReturn (happyIn90 r)) happyReduce_327 = happyMonadReduce 3# 83# happyReduction_327 happyReduction_327 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut92 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CInitList (reverse happy_var_2))}} ) (\r -> happyReturn (happyIn90 r)) happyReduce_328 = happyMonadReduce 4# 83# happyReduction_328 happyReduction_328 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut92 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CInitList (reverse happy_var_2))}} ) (\r -> happyReturn (happyIn90 r)) happyReduce_329 = happySpecReduce_0 84# happyReduction_329 happyReduction_329 = happyIn91 (Nothing ) happyReduce_330 = happySpecReduce_2 84# happyReduction_330 happyReduction_330 happy_x_2 happy_x_1 = case happyOut90 happy_x_2 of { happy_var_2 -> happyIn91 (Just happy_var_2 )} happyReduce_331 = happySpecReduce_0 85# happyReduction_331 happyReduction_331 = happyIn92 (empty ) happyReduce_332 = happySpecReduce_1 85# happyReduction_332 happyReduction_332 happy_x_1 = case happyOut90 happy_x_1 of { happy_var_1 -> happyIn92 (singleton ([],happy_var_1) )} happyReduce_333 = happySpecReduce_2 85# happyReduction_333 happyReduction_333 happy_x_2 happy_x_1 = case happyOut93 happy_x_1 of { happy_var_1 -> case happyOut90 happy_x_2 of { happy_var_2 -> happyIn92 (singleton (happy_var_1,happy_var_2) )}} happyReduce_334 = happySpecReduce_3 85# happyReduction_334 happyReduction_334 happy_x_3 happy_x_2 happy_x_1 = case happyOut92 happy_x_1 of { happy_var_1 -> case happyOut90 happy_x_3 of { happy_var_3 -> happyIn92 (happy_var_1 `snoc` ([],happy_var_3) )}} happyReduce_335 = happyReduce 4# 85# happyReduction_335 happyReduction_335 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) = case happyOut92 happy_x_1 of { happy_var_1 -> case happyOut93 happy_x_3 of { happy_var_3 -> case happyOut90 happy_x_4 of { happy_var_4 -> happyIn92 (happy_var_1 `snoc` (happy_var_3,happy_var_4) ) `HappyStk` happyRest}}} happyReduce_336 = happySpecReduce_2 86# happyReduction_336 happyReduction_336 happy_x_2 happy_x_1 = case happyOut94 happy_x_1 of { happy_var_1 -> happyIn93 (reverse happy_var_1 )} happyReduce_337 = happyMonadReduce 2# 86# happyReduction_337 happyReduction_337 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut125 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ \at -> [CMemberDesig happy_var_1 at])} ) (\r -> happyReturn (happyIn93 r)) happyReduce_338 = happySpecReduce_1 86# happyReduction_338 happyReduction_338 happy_x_1 = case happyOut96 happy_x_1 of { happy_var_1 -> happyIn93 ([happy_var_1] )} happyReduce_339 = happySpecReduce_1 87# happyReduction_339 happyReduction_339 happy_x_1 = case happyOut95 happy_x_1 of { happy_var_1 -> happyIn94 (singleton happy_var_1 )} happyReduce_340 = happySpecReduce_2 87# happyReduction_340 happyReduction_340 happy_x_2 happy_x_1 = case happyOut94 happy_x_1 of { happy_var_1 -> case happyOut95 happy_x_2 of { happy_var_2 -> happyIn94 (happy_var_1 `snoc` happy_var_2 )}} happyReduce_341 = happyMonadReduce 3# 88# happyReduction_341 happyReduction_341 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut121 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CArrDesig happy_var_2)}} ) (\r -> happyReturn (happyIn95 r)) happyReduce_342 = happyMonadReduce 2# 88# happyReduction_342 happyReduction_342 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut125 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CMemberDesig happy_var_2)}} ) (\r -> happyReturn (happyIn95 r)) happyReduce_343 = happySpecReduce_1 88# happyReduction_343 happyReduction_343 happy_x_1 = case happyOut96 happy_x_1 of { happy_var_1 -> happyIn95 (happy_var_1 )} happyReduce_344 = happyMonadReduce 5# 89# happyReduction_344 happyReduction_344 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut121 happy_x_2 of { happy_var_2 -> case happyOut121 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ CRangeDesig happy_var_2 happy_var_4)}}} ) (\r -> happyReturn (happyIn96 r)) happyReduce_345 = happyMonadReduce 1# 90# happyReduction_345 happyReduction_345 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { (CTokIdent _ happy_var_1) -> ( withNodeInfo happy_var_1 $ CVar happy_var_1)} ) (\r -> happyReturn (happyIn97 r)) happyReduce_346 = happySpecReduce_1 90# happyReduction_346 happyReduction_346 happy_x_1 = case happyOut122 happy_x_1 of { happy_var_1 -> happyIn97 (CConst happy_var_1 )} happyReduce_347 = happySpecReduce_1 90# happyReduction_347 happyReduction_347 happy_x_1 = case happyOut123 happy_x_1 of { happy_var_1 -> happyIn97 (CConst (liftStrLit happy_var_1) )} happyReduce_348 = happySpecReduce_3 90# happyReduction_348 happyReduction_348 happy_x_3 happy_x_2 happy_x_1 = case happyOut117 happy_x_2 of { happy_var_2 -> happyIn97 (happy_var_2 )} happyReduce_349 = happyMonadReduce 3# 90# happyReduction_349 happyReduction_349 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut14 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CStatExpr happy_var_2)}} ) (\r -> happyReturn (happyIn97 r)) happyReduce_350 = happyMonadReduce 6# 90# happyReduction_350 happyReduction_350 (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 happyOutTok happy_x_1 of { happy_var_1 -> case happyOut115 happy_x_3 of { happy_var_3 -> case happyOut83 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_1 $ CBuiltinExpr . CBuiltinVaArg happy_var_3 happy_var_5)}}} ) (\r -> happyReturn (happyIn97 r)) happyReduce_351 = happyMonadReduce 6# 90# happyReduction_351 happyReduction_351 (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 happyOutTok happy_x_1 of { happy_var_1 -> case happyOut83 happy_x_3 of { happy_var_3 -> case happyOut98 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_1 $ CBuiltinExpr . CBuiltinOffsetOf happy_var_3 (reverse happy_var_5))}}} ) (\r -> happyReturn (happyIn97 r)) happyReduce_352 = happyMonadReduce 6# 90# happyReduction_352 happyReduction_352 (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 happyOutTok happy_x_1 of { happy_var_1 -> case happyOut83 happy_x_3 of { happy_var_3 -> case happyOut83 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_1 $ CBuiltinExpr . CBuiltinTypesCompatible happy_var_3 happy_var_5)}}} ) (\r -> happyReturn (happyIn97 r)) happyReduce_353 = happyMonadReduce 1# 91# happyReduction_353 happyReduction_353 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut125 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ singleton . CMemberDesig happy_var_1)} ) (\r -> happyReturn (happyIn98 r)) happyReduce_354 = happyMonadReduce 3# 91# happyReduction_354 happyReduction_354 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut98 happy_x_1 of { happy_var_1 -> case happyOut125 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_3 $ (happy_var_1 `snoc`) . CMemberDesig happy_var_3)}} ) (\r -> happyReturn (happyIn98 r)) happyReduce_355 = happyMonadReduce 4# 91# happyReduction_355 happyReduction_355 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut98 happy_x_1 of { happy_var_1 -> case happyOut117 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_3 $ (happy_var_1 `snoc`) . CArrDesig happy_var_3)}} ) (\r -> happyReturn (happyIn98 r)) happyReduce_356 = happySpecReduce_1 92# happyReduction_356 happyReduction_356 happy_x_1 = case happyOut97 happy_x_1 of { happy_var_1 -> happyIn99 (happy_var_1 )} happyReduce_357 = happyMonadReduce 4# 92# happyReduction_357 happyReduction_357 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut99 happy_x_1 of { happy_var_1 -> case happyOut117 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CIndex happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn99 r)) happyReduce_358 = happyMonadReduce 3# 92# happyReduction_358 happyReduction_358 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut99 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CCall happy_var_1 [])} ) (\r -> happyReturn (happyIn99 r)) happyReduce_359 = happyMonadReduce 4# 92# happyReduction_359 happyReduction_359 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut99 happy_x_1 of { happy_var_1 -> case happyOut100 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CCall happy_var_1 (reverse happy_var_3))}} ) (\r -> happyReturn (happyIn99 r)) happyReduce_360 = happyMonadReduce 3# 92# happyReduction_360 happyReduction_360 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut99 happy_x_1 of { happy_var_1 -> case happyOut125 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CMember happy_var_1 happy_var_3 False)}} ) (\r -> happyReturn (happyIn99 r)) happyReduce_361 = happyMonadReduce 3# 92# happyReduction_361 happyReduction_361 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut99 happy_x_1 of { happy_var_1 -> case happyOut125 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CMember happy_var_1 happy_var_3 True)}} ) (\r -> happyReturn (happyIn99 r)) happyReduce_362 = happyMonadReduce 2# 92# happyReduction_362 happyReduction_362 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut99 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CUnary CPostIncOp happy_var_1)} ) (\r -> happyReturn (happyIn99 r)) happyReduce_363 = happyMonadReduce 2# 92# happyReduction_363 happyReduction_363 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut99 happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ CUnary CPostDecOp happy_var_1)} ) (\r -> happyReturn (happyIn99 r)) happyReduce_364 = happyMonadReduce 6# 92# happyReduction_364 happyReduction_364 (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 happyOutTok happy_x_1 of { happy_var_1 -> case happyOut83 happy_x_2 of { happy_var_2 -> case happyOut92 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_1 $ CCompoundLit happy_var_2 (reverse happy_var_5))}}} ) (\r -> happyReturn (happyIn99 r)) happyReduce_365 = happyMonadReduce 7# 92# happyReduction_365 happyReduction_365 (happy_x_7 `HappyStk` happy_x_6 `HappyStk` happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut83 happy_x_2 of { happy_var_2 -> case happyOut92 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_1 $ CCompoundLit happy_var_2 (reverse happy_var_5))}}} ) (\r -> happyReturn (happyIn99 r)) happyReduce_366 = happySpecReduce_1 93# happyReduction_366 happyReduction_366 happy_x_1 = case happyOut115 happy_x_1 of { happy_var_1 -> happyIn100 (singleton happy_var_1 )} happyReduce_367 = happySpecReduce_3 93# happyReduction_367 happyReduction_367 happy_x_3 happy_x_2 happy_x_1 = case happyOut100 happy_x_1 of { happy_var_1 -> case happyOut115 happy_x_3 of { happy_var_3 -> happyIn100 (happy_var_1 `snoc` happy_var_3 )}} happyReduce_368 = happySpecReduce_1 94# happyReduction_368 happyReduction_368 happy_x_1 = case happyOut99 happy_x_1 of { happy_var_1 -> happyIn101 (happy_var_1 )} happyReduce_369 = happyMonadReduce 2# 94# happyReduction_369 happyReduction_369 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut101 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CUnary CPreIncOp happy_var_2)}} ) (\r -> happyReturn (happyIn101 r)) happyReduce_370 = happyMonadReduce 2# 94# happyReduction_370 happyReduction_370 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut101 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CUnary CPreDecOp happy_var_2)}} ) (\r -> happyReturn (happyIn101 r)) happyReduce_371 = happySpecReduce_2 94# happyReduction_371 happyReduction_371 happy_x_2 happy_x_1 = case happyOut103 happy_x_2 of { happy_var_2 -> happyIn101 (happy_var_2 )} happyReduce_372 = happyMonadReduce 2# 94# happyReduction_372 happyReduction_372 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut102 happy_x_1 of { happy_var_1 -> case happyOut103 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CUnary (unL happy_var_1) happy_var_2)}} ) (\r -> happyReturn (happyIn101 r)) happyReduce_373 = happyMonadReduce 2# 94# happyReduction_373 happyReduction_373 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut101 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CSizeofExpr happy_var_2)}} ) (\r -> happyReturn (happyIn101 r)) happyReduce_374 = happyMonadReduce 4# 94# happyReduction_374 happyReduction_374 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut83 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CSizeofType happy_var_3)}} ) (\r -> happyReturn (happyIn101 r)) happyReduce_375 = happyMonadReduce 2# 94# happyReduction_375 happyReduction_375 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut101 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CAlignofExpr happy_var_2)}} ) (\r -> happyReturn (happyIn101 r)) happyReduce_376 = happyMonadReduce 4# 94# happyReduction_376 happyReduction_376 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut83 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CAlignofType happy_var_3)}} ) (\r -> happyReturn (happyIn101 r)) happyReduce_377 = happyMonadReduce 2# 94# happyReduction_377 happyReduction_377 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut101 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CComplexReal happy_var_2)}} ) (\r -> happyReturn (happyIn101 r)) happyReduce_378 = happyMonadReduce 2# 94# happyReduction_378 happyReduction_378 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut101 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CComplexImag happy_var_2)}} ) (\r -> happyReturn (happyIn101 r)) happyReduce_379 = happyMonadReduce 2# 94# happyReduction_379 happyReduction_379 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut125 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ CLabAddrExpr happy_var_2)}} ) (\r -> happyReturn (happyIn101 r)) happyReduce_380 = happySpecReduce_1 95# happyReduction_380 happyReduction_380 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn102 (L CAdrOp (posOf happy_var_1) )} happyReduce_381 = happySpecReduce_1 95# happyReduction_381 happyReduction_381 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn102 (L CIndOp (posOf happy_var_1) )} happyReduce_382 = happySpecReduce_1 95# happyReduction_382 happyReduction_382 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn102 (L CPlusOp (posOf happy_var_1) )} happyReduce_383 = happySpecReduce_1 95# happyReduction_383 happyReduction_383 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn102 (L CMinOp (posOf happy_var_1) )} happyReduce_384 = happySpecReduce_1 95# happyReduction_384 happyReduction_384 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn102 (L CCompOp (posOf happy_var_1) )} happyReduce_385 = happySpecReduce_1 95# happyReduction_385 happyReduction_385 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn102 (L CNegOp (posOf happy_var_1) )} happyReduce_386 = happySpecReduce_1 96# happyReduction_386 happyReduction_386 happy_x_1 = case happyOut101 happy_x_1 of { happy_var_1 -> happyIn103 (happy_var_1 )} happyReduce_387 = happyMonadReduce 4# 96# happyReduction_387 happyReduction_387 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut83 happy_x_2 of { happy_var_2 -> case happyOut103 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ CCast happy_var_2 happy_var_4)}}} ) (\r -> happyReturn (happyIn103 r)) happyReduce_388 = happySpecReduce_1 97# happyReduction_388 happyReduction_388 happy_x_1 = case happyOut103 happy_x_1 of { happy_var_1 -> happyIn104 (happy_var_1 )} happyReduce_389 = happyMonadReduce 3# 97# happyReduction_389 happyReduction_389 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut104 happy_x_1 of { happy_var_1 -> case happyOut103 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CMulOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn104 r)) happyReduce_390 = happyMonadReduce 3# 97# happyReduction_390 happyReduction_390 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut104 happy_x_1 of { happy_var_1 -> case happyOut103 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CDivOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn104 r)) happyReduce_391 = happyMonadReduce 3# 97# happyReduction_391 happyReduction_391 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut104 happy_x_1 of { happy_var_1 -> case happyOut103 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CRmdOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn104 r)) happyReduce_392 = happySpecReduce_1 98# happyReduction_392 happyReduction_392 happy_x_1 = case happyOut104 happy_x_1 of { happy_var_1 -> happyIn105 (happy_var_1 )} happyReduce_393 = happyMonadReduce 3# 98# happyReduction_393 happyReduction_393 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut105 happy_x_1 of { happy_var_1 -> case happyOut104 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CAddOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn105 r)) happyReduce_394 = happyMonadReduce 3# 98# happyReduction_394 happyReduction_394 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut105 happy_x_1 of { happy_var_1 -> case happyOut104 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CSubOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn105 r)) happyReduce_395 = happySpecReduce_1 99# happyReduction_395 happyReduction_395 happy_x_1 = case happyOut105 happy_x_1 of { happy_var_1 -> happyIn106 (happy_var_1 )} happyReduce_396 = happyMonadReduce 3# 99# happyReduction_396 happyReduction_396 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut106 happy_x_1 of { happy_var_1 -> case happyOut105 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CShlOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn106 r)) happyReduce_397 = happyMonadReduce 3# 99# happyReduction_397 happyReduction_397 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut106 happy_x_1 of { happy_var_1 -> case happyOut105 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CShrOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn106 r)) happyReduce_398 = happySpecReduce_1 100# happyReduction_398 happyReduction_398 happy_x_1 = case happyOut106 happy_x_1 of { happy_var_1 -> happyIn107 (happy_var_1 )} happyReduce_399 = happyMonadReduce 3# 100# happyReduction_399 happyReduction_399 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut107 happy_x_1 of { happy_var_1 -> case happyOut106 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CLeOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn107 r)) happyReduce_400 = happyMonadReduce 3# 100# happyReduction_400 happyReduction_400 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut107 happy_x_1 of { happy_var_1 -> case happyOut106 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CGrOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn107 r)) happyReduce_401 = happyMonadReduce 3# 100# happyReduction_401 happyReduction_401 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut107 happy_x_1 of { happy_var_1 -> case happyOut106 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CLeqOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn107 r)) happyReduce_402 = happyMonadReduce 3# 100# happyReduction_402 happyReduction_402 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut107 happy_x_1 of { happy_var_1 -> case happyOut106 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CGeqOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn107 r)) happyReduce_403 = happySpecReduce_1 101# happyReduction_403 happyReduction_403 happy_x_1 = case happyOut107 happy_x_1 of { happy_var_1 -> happyIn108 (happy_var_1 )} happyReduce_404 = happyMonadReduce 3# 101# happyReduction_404 happyReduction_404 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut108 happy_x_1 of { happy_var_1 -> case happyOut107 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CEqOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn108 r)) happyReduce_405 = happyMonadReduce 3# 101# happyReduction_405 happyReduction_405 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut108 happy_x_1 of { happy_var_1 -> case happyOut107 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CNeqOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn108 r)) happyReduce_406 = happySpecReduce_1 102# happyReduction_406 happyReduction_406 happy_x_1 = case happyOut108 happy_x_1 of { happy_var_1 -> happyIn109 (happy_var_1 )} happyReduce_407 = happyMonadReduce 3# 102# happyReduction_407 happyReduction_407 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut109 happy_x_1 of { happy_var_1 -> case happyOut108 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CAndOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn109 r)) happyReduce_408 = happySpecReduce_1 103# happyReduction_408 happyReduction_408 happy_x_1 = case happyOut109 happy_x_1 of { happy_var_1 -> happyIn110 (happy_var_1 )} happyReduce_409 = happyMonadReduce 3# 103# happyReduction_409 happyReduction_409 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut110 happy_x_1 of { happy_var_1 -> case happyOut109 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CXorOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn110 r)) happyReduce_410 = happySpecReduce_1 104# happyReduction_410 happyReduction_410 happy_x_1 = case happyOut110 happy_x_1 of { happy_var_1 -> happyIn111 (happy_var_1 )} happyReduce_411 = happyMonadReduce 3# 104# happyReduction_411 happyReduction_411 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut111 happy_x_1 of { happy_var_1 -> case happyOut110 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary COrOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn111 r)) happyReduce_412 = happySpecReduce_1 105# happyReduction_412 happyReduction_412 happy_x_1 = case happyOut111 happy_x_1 of { happy_var_1 -> happyIn112 (happy_var_1 )} happyReduce_413 = happyMonadReduce 3# 105# happyReduction_413 happyReduction_413 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut112 happy_x_1 of { happy_var_1 -> case happyOut111 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CLndOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn112 r)) happyReduce_414 = happySpecReduce_1 106# happyReduction_414 happyReduction_414 happy_x_1 = case happyOut112 happy_x_1 of { happy_var_1 -> happyIn113 (happy_var_1 )} happyReduce_415 = happyMonadReduce 3# 106# happyReduction_415 happyReduction_415 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut113 happy_x_1 of { happy_var_1 -> case happyOut112 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CBinary CLorOp happy_var_1 happy_var_3)}} ) (\r -> happyReturn (happyIn113 r)) happyReduce_416 = happySpecReduce_1 107# happyReduction_416 happyReduction_416 happy_x_1 = case happyOut113 happy_x_1 of { happy_var_1 -> happyIn114 (happy_var_1 )} happyReduce_417 = happyMonadReduce 5# 107# happyReduction_417 happyReduction_417 (happy_x_5 `HappyStk` happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut113 happy_x_1 of { happy_var_1 -> case happyOut117 happy_x_3 of { happy_var_3 -> case happyOut114 happy_x_5 of { happy_var_5 -> ( withNodeInfo happy_var_1 $ CCond happy_var_1 (Just happy_var_3) happy_var_5)}}} ) (\r -> happyReturn (happyIn114 r)) happyReduce_418 = happyMonadReduce 4# 107# happyReduction_418 happyReduction_418 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut113 happy_x_1 of { happy_var_1 -> case happyOut114 happy_x_4 of { happy_var_4 -> ( withNodeInfo happy_var_1 $ CCond happy_var_1 Nothing happy_var_4)}} ) (\r -> happyReturn (happyIn114 r)) happyReduce_419 = happySpecReduce_1 108# happyReduction_419 happyReduction_419 happy_x_1 = case happyOut114 happy_x_1 of { happy_var_1 -> happyIn115 (happy_var_1 )} happyReduce_420 = happyMonadReduce 3# 108# happyReduction_420 happyReduction_420 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut101 happy_x_1 of { happy_var_1 -> case happyOut116 happy_x_2 of { happy_var_2 -> case happyOut115 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ CAssign (unL happy_var_2) happy_var_1 happy_var_3)}}} ) (\r -> happyReturn (happyIn115 r)) happyReduce_421 = happySpecReduce_1 109# happyReduction_421 happyReduction_421 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn116 (L CAssignOp (posOf happy_var_1) )} happyReduce_422 = happySpecReduce_1 109# happyReduction_422 happyReduction_422 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn116 (L CMulAssOp (posOf happy_var_1) )} happyReduce_423 = happySpecReduce_1 109# happyReduction_423 happyReduction_423 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn116 (L CDivAssOp (posOf happy_var_1) )} happyReduce_424 = happySpecReduce_1 109# happyReduction_424 happyReduction_424 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn116 (L CRmdAssOp (posOf happy_var_1) )} happyReduce_425 = happySpecReduce_1 109# happyReduction_425 happyReduction_425 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn116 (L CAddAssOp (posOf happy_var_1) )} happyReduce_426 = happySpecReduce_1 109# happyReduction_426 happyReduction_426 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn116 (L CSubAssOp (posOf happy_var_1) )} happyReduce_427 = happySpecReduce_1 109# happyReduction_427 happyReduction_427 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn116 (L CShlAssOp (posOf happy_var_1) )} happyReduce_428 = happySpecReduce_1 109# happyReduction_428 happyReduction_428 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn116 (L CShrAssOp (posOf happy_var_1) )} happyReduce_429 = happySpecReduce_1 109# happyReduction_429 happyReduction_429 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn116 (L CAndAssOp (posOf happy_var_1) )} happyReduce_430 = happySpecReduce_1 109# happyReduction_430 happyReduction_430 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn116 (L CXorAssOp (posOf happy_var_1) )} happyReduce_431 = happySpecReduce_1 109# happyReduction_431 happyReduction_431 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn116 (L COrAssOp (posOf happy_var_1) )} happyReduce_432 = happySpecReduce_1 110# happyReduction_432 happyReduction_432 happy_x_1 = case happyOut115 happy_x_1 of { happy_var_1 -> happyIn117 (happy_var_1 )} happyReduce_433 = happyMonadReduce 3# 110# happyReduction_433 happyReduction_433 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOut115 happy_x_1 of { happy_var_1 -> case happyOut118 happy_x_3 of { happy_var_3 -> ( let es = reverse happy_var_3 in withNodeInfo es $ CComma (happy_var_1:es))}} ) (\r -> happyReturn (happyIn117 r)) happyReduce_434 = happySpecReduce_1 111# happyReduction_434 happyReduction_434 happy_x_1 = case happyOut115 happy_x_1 of { happy_var_1 -> happyIn118 (singleton happy_var_1 )} happyReduce_435 = happySpecReduce_3 111# happyReduction_435 happyReduction_435 happy_x_3 happy_x_2 happy_x_1 = case happyOut118 happy_x_1 of { happy_var_1 -> case happyOut115 happy_x_3 of { happy_var_3 -> happyIn118 (happy_var_1 `snoc` happy_var_3 )}} happyReduce_436 = happySpecReduce_0 112# happyReduction_436 happyReduction_436 = happyIn119 (Nothing ) happyReduce_437 = happySpecReduce_1 112# happyReduction_437 happyReduction_437 happy_x_1 = case happyOut117 happy_x_1 of { happy_var_1 -> happyIn119 (Just happy_var_1 )} happyReduce_438 = happySpecReduce_0 113# happyReduction_438 happyReduction_438 = happyIn120 (Nothing ) happyReduce_439 = happySpecReduce_1 113# happyReduction_439 happyReduction_439 happy_x_1 = case happyOut115 happy_x_1 of { happy_var_1 -> happyIn120 (Just happy_var_1 )} happyReduce_440 = happySpecReduce_1 114# happyReduction_440 happyReduction_440 happy_x_1 = case happyOut114 happy_x_1 of { happy_var_1 -> happyIn121 (happy_var_1 )} happyReduce_441 = happyMonadReduce 1# 115# happyReduction_441 happyReduction_441 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ case happy_var_1 of CTokILit _ i -> CIntConst i)} ) (\r -> happyReturn (happyIn122 r)) happyReduce_442 = happyMonadReduce 1# 115# happyReduction_442 happyReduction_442 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ case happy_var_1 of CTokCLit _ c -> CCharConst c)} ) (\r -> happyReturn (happyIn122 r)) happyReduce_443 = happyMonadReduce 1# 115# happyReduction_443 happyReduction_443 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ case happy_var_1 of CTokFLit _ f -> CFloatConst f)} ) (\r -> happyReturn (happyIn122 r)) happyReduce_444 = happyMonadReduce 1# 116# happyReduction_444 happyReduction_444 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ case happy_var_1 of CTokSLit _ s -> CStrLit s)} ) (\r -> happyReturn (happyIn123 r)) happyReduce_445 = happyMonadReduce 2# 116# happyReduction_445 happyReduction_445 (happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> case happyOut124 happy_x_2 of { happy_var_2 -> ( withNodeInfo happy_var_1 $ case happy_var_1 of CTokSLit _ s -> CStrLit (concatCStrings (s : reverse happy_var_2)))}} ) (\r -> happyReturn (happyIn123 r)) happyReduce_446 = happySpecReduce_1 117# happyReduction_446 happyReduction_446 happy_x_1 = case happyOutTok happy_x_1 of { happy_var_1 -> happyIn124 (case happy_var_1 of CTokSLit _ s -> singleton s )} happyReduce_447 = happySpecReduce_2 117# happyReduction_447 happyReduction_447 happy_x_2 happy_x_1 = case happyOut124 happy_x_1 of { happy_var_1 -> case happyOutTok happy_x_2 of { happy_var_2 -> happyIn124 (case happy_var_2 of CTokSLit _ s -> happy_var_1 `snoc` s )}} happyReduce_448 = happySpecReduce_1 118# happyReduction_448 happyReduction_448 happy_x_1 = case happyOutTok happy_x_1 of { (CTokIdent _ happy_var_1) -> happyIn125 (happy_var_1 )} happyReduce_449 = happySpecReduce_1 118# happyReduction_449 happyReduction_449 happy_x_1 = case happyOutTok happy_x_1 of { (CTokTyIdent _ happy_var_1) -> happyIn125 (happy_var_1 )} happyReduce_450 = happySpecReduce_0 119# happyReduction_450 happyReduction_450 = happyIn126 ([] ) happyReduce_451 = happySpecReduce_1 119# happyReduction_451 happyReduction_451 happy_x_1 = case happyOut127 happy_x_1 of { happy_var_1 -> happyIn126 (happy_var_1 )} happyReduce_452 = happySpecReduce_1 120# happyReduction_452 happyReduction_452 happy_x_1 = case happyOut128 happy_x_1 of { happy_var_1 -> happyIn127 (happy_var_1 )} happyReduce_453 = happySpecReduce_2 120# happyReduction_453 happyReduction_453 happy_x_2 happy_x_1 = case happyOut127 happy_x_1 of { happy_var_1 -> case happyOut128 happy_x_2 of { happy_var_2 -> happyIn127 (happy_var_1 ++ happy_var_2 )}} happyReduce_454 = happyReduce 6# 121# happyReduction_454 happyReduction_454 (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 happyOut129 happy_x_4 of { happy_var_4 -> happyIn128 (reverse happy_var_4 ) `HappyStk` happyRest} happyReduce_455 = happySpecReduce_1 122# happyReduction_455 happyReduction_455 happy_x_1 = case happyOut130 happy_x_1 of { happy_var_1 -> happyIn129 (case happy_var_1 of Nothing -> empty; Just attr -> singleton attr )} happyReduce_456 = happySpecReduce_3 122# happyReduction_456 happyReduction_456 happy_x_3 happy_x_2 happy_x_1 = case happyOut129 happy_x_1 of { happy_var_1 -> case happyOut130 happy_x_3 of { happy_var_3 -> happyIn129 ((maybe id (flip snoc) happy_var_3) happy_var_1 )}} happyReduce_457 = happySpecReduce_0 123# happyReduction_457 happyReduction_457 = happyIn130 (Nothing ) happyReduce_458 = happyMonadReduce 1# 123# happyReduction_458 happyReduction_458 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { (CTokIdent _ happy_var_1) -> ( withNodeInfo happy_var_1 $ Just . CAttr happy_var_1 [])} ) (\r -> happyReturn (happyIn130 r)) happyReduce_459 = happyMonadReduce 1# 123# happyReduction_459 happyReduction_459 (happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { happy_var_1 -> ( withNodeInfo happy_var_1 $ Just . CAttr (internalIdent "const") [])} ) (\r -> happyReturn (happyIn130 r)) happyReduce_460 = happyMonadReduce 4# 123# happyReduction_460 happyReduction_460 (happy_x_4 `HappyStk` happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { (CTokIdent _ happy_var_1) -> case happyOut131 happy_x_3 of { happy_var_3 -> ( withNodeInfo happy_var_1 $ Just . CAttr happy_var_1 (reverse happy_var_3))}} ) (\r -> happyReturn (happyIn130 r)) happyReduce_461 = happyMonadReduce 3# 123# happyReduction_461 happyReduction_461 (happy_x_3 `HappyStk` happy_x_2 `HappyStk` happy_x_1 `HappyStk` happyRest) tk = happyThen (case happyOutTok happy_x_1 of { (CTokIdent _ happy_var_1) -> ( withNodeInfo happy_var_1 $ Just . CAttr happy_var_1 [])} ) (\r -> happyReturn (happyIn130 r)) happyReduce_462 = happySpecReduce_1 124# happyReduction_462 happyReduction_462 happy_x_1 = case happyOut121 happy_x_1 of { happy_var_1 -> happyIn131 (singleton happy_var_1 )} happyReduce_463 = happySpecReduce_3 124# happyReduction_463 happyReduction_463 happy_x_3 happy_x_2 happy_x_1 = case happyOut131 happy_x_1 of { happy_var_1 -> case happyOut121 happy_x_3 of { happy_var_3 -> happyIn131 (happy_var_1 `snoc` happy_var_3 )}} happyNewToken action sts stk = lexC(\tk -> let cont i = happyDoAction i tk action sts stk in case tk of { CTokEof -> happyDoAction 101# tk action sts stk; CTokLParen _ -> cont 1#; CTokRParen _ -> cont 2#; CTokLBracket _ -> cont 3#; CTokRBracket _ -> cont 4#; CTokArrow _ -> cont 5#; CTokDot _ -> cont 6#; CTokExclam _ -> cont 7#; CTokTilde _ -> cont 8#; CTokInc _ -> cont 9#; CTokDec _ -> cont 10#; CTokPlus _ -> cont 11#; CTokMinus _ -> cont 12#; CTokStar _ -> cont 13#; CTokSlash _ -> cont 14#; CTokPercent _ -> cont 15#; CTokAmper _ -> cont 16#; CTokShiftL _ -> cont 17#; CTokShiftR _ -> cont 18#; CTokLess _ -> cont 19#; CTokLessEq _ -> cont 20#; CTokHigh _ -> cont 21#; CTokHighEq _ -> cont 22#; CTokEqual _ -> cont 23#; CTokUnequal _ -> cont 24#; CTokHat _ -> cont 25#; CTokBar _ -> cont 26#; CTokAnd _ -> cont 27#; CTokOr _ -> cont 28#; CTokQuest _ -> cont 29#; CTokColon _ -> cont 30#; CTokAssign _ -> cont 31#; CTokPlusAss _ -> cont 32#; CTokMinusAss _ -> cont 33#; CTokStarAss _ -> cont 34#; CTokSlashAss _ -> cont 35#; CTokPercAss _ -> cont 36#; CTokAmpAss _ -> cont 37#; CTokHatAss _ -> cont 38#; CTokBarAss _ -> cont 39#; CTokSLAss _ -> cont 40#; CTokSRAss _ -> cont 41#; CTokComma _ -> cont 42#; CTokSemic _ -> cont 43#; CTokLBrace _ -> cont 44#; CTokRBrace _ -> cont 45#; CTokEllipsis _ -> cont 46#; CTokAlignof _ -> cont 47#; CTokAsm _ -> cont 48#; CTokAuto _ -> cont 49#; CTokBreak _ -> cont 50#; CTokBool _ -> cont 51#; CTokCase _ -> cont 52#; CTokChar _ -> cont 53#; CTokConst _ -> cont 54#; CTokContinue _ -> cont 55#; CTokComplex _ -> cont 56#; CTokDefault _ -> cont 57#; CTokDo _ -> cont 58#; CTokDouble _ -> cont 59#; CTokElse _ -> cont 60#; CTokEnum _ -> cont 61#; CTokExtern _ -> cont 62#; CTokFloat _ -> cont 63#; CTokFor _ -> cont 64#; CTokGoto _ -> cont 65#; CTokIf _ -> cont 66#; CTokInline _ -> cont 67#; CTokInt _ -> cont 68#; CTokLong _ -> cont 69#; CTokLabel _ -> cont 70#; CTokRegister _ -> cont 71#; CTokRestrict _ -> cont 72#; CTokReturn _ -> cont 73#; CTokShort _ -> cont 74#; CTokSigned _ -> cont 75#; CTokSizeof _ -> cont 76#; CTokStatic _ -> cont 77#; CTokStruct _ -> cont 78#; CTokSwitch _ -> cont 79#; CTokTypedef _ -> cont 80#; CTokTypeof _ -> cont 81#; CTokThread _ -> cont 82#; CTokUnion _ -> cont 83#; CTokUnsigned _ -> cont 84#; CTokVoid _ -> cont 85#; CTokVolatile _ -> cont 86#; CTokWhile _ -> cont 87#; CTokCLit _ _ -> cont 88#; CTokILit _ _ -> cont 89#; CTokFLit _ _ -> cont 90#; CTokSLit _ _ -> cont 91#; CTokIdent _ happy_dollar_dollar -> cont 92#; CTokTyIdent _ happy_dollar_dollar -> cont 93#; CTokGnuC GnuCAttrTok _ -> cont 94#; CTokGnuC GnuCExtTok _ -> cont 95#; CTokGnuC GnuCComplexReal _ -> cont 96#; CTokGnuC GnuCComplexImag _ -> cont 97#; CTokGnuC GnuCVaArg _ -> cont 98#; CTokGnuC GnuCOffsetof _ -> cont 99#; CTokGnuC GnuCTyCompat _ -> cont 100#; _ -> 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' :: () => CToken -> P a happyError' tk = (\token -> happyError) tk translation_unit = happySomeParser where happySomeParser = happyThen (happyParse 0#) (\x -> happyReturn (happyOut7 x)) external_declaration = happySomeParser where happySomeParser = happyThen (happyParse 1#) (\x -> happyReturn (happyOut9 x)) statement = happySomeParser where happySomeParser = happyThen (happyParse 2#) (\x -> happyReturn (happyOut12 x)) expression = happySomeParser where happySomeParser = happyThen (happyParse 3#) (\x -> happyReturn (happyOut117 x)) happySeq = happyDontSeq -- sometimes it is neccessary to reverse an unreversed list reverseList :: [a] -> Reversed [a] reverseList = Reversed . List.reverse -- We occasionally need things to have a location when they don't naturally -- have one built in as tokens and most AST elements do. -- data Located a = L !a !Position unL :: Located a -> a unL (L a pos) = a instance Pos (Located a) where posOf (L _ pos) = pos -- FIXME: the next 3 inlines here increase the object file size by 70% -- Check whether the speed win is worth it {-# INLINE withNodeInfo #-} withNodeInfo :: Pos node => node -> (NodeInfo -> a) -> P a withNodeInfo node mkAttrNode = do name <- getNewName lastTok <- getSavedToken let firstPos = posOf node let attrs = mkNodeInfo' firstPos (posLenOfTok $! lastTok) name attrs `seq` return (mkAttrNode attrs) {-# INLINE withLength #-} withLength :: NodeInfo -> (NodeInfo -> a) -> P a withLength nodeinfo mkAttrNode = do lastTok <- getSavedToken let firstPos = posOfNode nodeinfo let attrs = mkNodeInfo' firstPos (posLenOfTok $! lastTok) (maybe (error "nameOfNode") id (nameOfNode nodeinfo)) attrs `seq` return (mkAttrNode attrs) data CDeclrR = CDeclrR (Maybe Ident) (Reversed [CDerivedDeclr]) (Maybe CStrLit) [CAttr] NodeInfo reverseDeclr :: CDeclrR -> CDeclr reverseDeclr (CDeclrR ide reversedDDs asmname cattrs at) = CDeclr ide (reverse reversedDDs) asmname cattrs at instance CNode (CDeclrR) where nodeInfo (CDeclrR _ _ _ _ n) = n instance Pos (CDeclrR) where posOf (CDeclrR _ _ _ _ n) = posOf n {-# INLINE withAttribute #-} withAttribute :: Pos node => node -> [CAttr] -> (NodeInfo -> CDeclrR) -> P CDeclrR withAttribute node cattrs mkDeclrNode = do name <- getNewName let attrs = mkNodeInfo (posOf node) name let newDeclr = appendDeclrAttrs cattrs $ mkDeclrNode attrs attrs `seq` newDeclr `seq` return newDeclr -- postfixing variant {-# INLINE withAttributePF #-} withAttributePF :: Pos node => node -> [CAttr] -> (NodeInfo -> CDeclrR -> CDeclrR) -> P (CDeclrR -> CDeclrR) withAttributePF node cattrs mkDeclrCtor = do name <- getNewName let attrs = mkNodeInfo (posOf node) name let newDeclr = appendDeclrAttrs cattrs . mkDeclrCtor attrs attrs `seq` newDeclr `seq` return newDeclr -- add top level attributes for a declarator. -- -- In the following example -- -- > int declr1, __attribute__((a1)) * __attribute__((a2)) y() __asm__("$" "y") __attribute__((a3)); -- -- the attributes `a1' and `a3' are top-level attributes for y. -- The (pseudo)-AST for the second declarator is -- -- > CDeclr "y" -- > [CFunDeclr ..., CPtrDeclr __attribute__((a2)) ... ] -- > (asm "$y") -- > [__attribute__((a1)), __attribute__((a3)) ] -- -- So assembler names and preceeding and trailing attributes are recorded in object declarator. -- appendObjAttrs :: [CAttr] -> CDeclr -> CDeclr appendObjAttrs newAttrs (CDeclr ident indirections asmname cAttrs at) = CDeclr ident indirections asmname (cAttrs ++ newAttrs) at appendObjAttrsR :: [CAttr] -> CDeclrR -> CDeclrR appendObjAttrsR newAttrs (CDeclrR ident indirections asmname cAttrs at) = CDeclrR ident indirections asmname (cAttrs ++ newAttrs) at setAsmName :: Maybe CStrLit -> CDeclrR -> P CDeclrR setAsmName mAsmName (CDeclrR ident indirections oldName cattrs at) = case combineName mAsmName oldName of Left (n1,n2) -> failP (posOf n2) ["Duplicate assembler name: ",showName n1,showName n2] Right newName -> return $ CDeclrR ident indirections newName cattrs at where combineName Nothing Nothing = Right Nothing combineName Nothing oldname@(Just _) = Right oldname combineName newname@(Just _) Nothing = Right newname combineName (Just n1) (Just n2) = Left (n1,n2) showName (CStrLit cstr _) = show cstr withAsmNameAttrs :: (Maybe CStrLit, [CAttr]) -> CDeclrR -> P CDeclrR withAsmNameAttrs (mAsmName, newAttrs) declr = setAsmName mAsmName (appendObjAttrsR newAttrs declr) appendDeclrAttrs :: [CAttr] -> CDeclrR -> CDeclrR appendDeclrAttrs newAttrs (CDeclrR ident (Reversed []) asmname cattrs at) = CDeclrR ident empty asmname (cattrs ++ newAttrs) at appendDeclrAttrs newAttrs (CDeclrR ident (Reversed (x:xs)) asmname cattrs at) = CDeclrR ident (Reversed (appendAttrs x : xs)) asmname cattrs at where appendAttrs (CPtrDeclr typeQuals at) = CPtrDeclr (typeQuals ++ map CAttrQual newAttrs) at appendAttrs (CArrDeclr typeQuals arraySize at) = CArrDeclr (typeQuals ++ map CAttrQual newAttrs) arraySize at appendAttrs (CFunDeclr parameters cattrs at) = CFunDeclr parameters (cattrs ++ newAttrs) at ptrDeclr :: CDeclrR -> [CTypeQual] -> NodeInfo -> CDeclrR ptrDeclr (CDeclrR ident derivedDeclrs asmname cattrs dat) tyquals at = CDeclrR ident (derivedDeclrs `snoc` CPtrDeclr tyquals at) asmname cattrs dat funDeclr :: CDeclrR -> (Either [Ident] ([CDecl],Bool)) -> [CAttr] -> NodeInfo -> CDeclrR funDeclr (CDeclrR ident derivedDeclrs asmname dcattrs dat) params cattrs at = CDeclrR ident (derivedDeclrs `snoc` CFunDeclr params cattrs at) asmname dcattrs dat arrDeclr :: CDeclrR -> [CTypeQual] -> Bool -> Bool -> Maybe CExpr -> NodeInfo -> CDeclrR arrDeclr (CDeclrR ident derivedDeclrs asmname cattrs dat) tyquals var_sized static_size size_expr_opt at = arr_sz `seq` ( CDeclrR ident (derivedDeclrs `snoc` CArrDeclr tyquals arr_sz at) asmname cattrs dat ) where arr_sz = case size_expr_opt of Just e -> CArrSize static_size e Nothing -> CNoArrSize var_sized liftTypeQuals :: Reversed [CTypeQual] -> [CDeclSpec] liftTypeQuals = map CTypeQual . reverse -- lift CAttrs to DeclSpecs -- liftCAttrs :: [CAttr] -> [CDeclSpec] liftCAttrs = map (CTypeQual . CAttrQual) -- when we parsed (decl_spec_1,...,decl_spec_n,attrs), add the __attributes__s to the declspec list -- needs special care when @decl_spec_n@ is a SUE definition addTrailingAttrs :: Reversed [CDeclSpec] -> [CAttr] -> Reversed [CDeclSpec] addTrailingAttrs declspecs new_attrs = case viewr declspecs of (specs_init, CTypeSpec (CSUType (CStruct tag name (Just def) def_attrs su_node) node)) -> (specs_init `snoc` CTypeSpec (CSUType (CStruct tag name (Just def) (def_attrs ++ new_attrs) su_node) node)) (specs_init, CTypeSpec (CEnumType (CEnum name (Just def) def_attrs e_node) node)) -> (specs_init `snoc` CTypeSpec (CEnumType (CEnum name (Just def) (def_attrs ++ new_attrs) e_node) node)) _ -> declspecs `rappend` (liftCAttrs new_attrs) -- convenient instance, the position of a list of things is the position of -- the first thing in the list -- instance Pos a => Pos [a] where posOf (x:_) = posOf x instance Pos a => Pos (Reversed a) where posOf (Reversed x) = posOf x emptyDeclr :: CDeclrR emptyDeclr = CDeclrR Nothing empty Nothing [] undefNode mkVarDeclr :: Ident -> NodeInfo -> CDeclrR mkVarDeclr ident = CDeclrR (Just ident) empty Nothing [] -- Take the identifiers and use them to update the typedef'ed identifier set -- if the decl is defining a typedef then we add it to the set, -- if it's a var decl then that shadows typedefed identifiers -- doDeclIdent :: [CDeclSpec] -> CDeclrR -> P () doDeclIdent declspecs (CDeclrR mIdent _ _ _ _) = case mIdent of Nothing -> return () Just ident | any iypedef declspecs -> addTypedef ident | otherwise -> shadowTypedef ident where iypedef (CStorageSpec (CTypedef _)) = True iypedef _ = False doFuncParamDeclIdent :: CDeclr -> P () doFuncParamDeclIdent (CDeclr _ (CFunDeclr params _ _ : _) _ _ _) = sequence_ [ case getCDeclrIdent declr of Nothing -> return () Just ident -> shadowTypedef ident | CDecl _ dle _ <- either (const []) fst params , (Just declr, _, _) <- dle ] doFuncParamDeclIdent _ = return () -- extract all identifiers getCDeclrIdent :: CDeclr -> Maybe Ident getCDeclrIdent (CDeclr mIdent _ _ _ _) = mIdent happyError :: P a happyError = parseError -- * public interface -- | @parseC input initialPos@ parses the given preprocessed C-source input and returns the AST or a list of parse errors. parseC :: InputStream -> Position -> Either ParseError CTranslUnit parseC input initialPosition = fmap fst $ execParser translUnitP input initialPosition builtinTypeNames (namesStartingFrom 0) -- | @translUnitP@ provides a parser for a complete C translation unit, i.e. a list of external declarations. translUnitP :: P CTranslUnit translUnitP = translation_unit -- | @extDeclP@ provides a parser for an external (file-scope) declaration extDeclP :: P CExtDecl extDeclP = external_declaration -- | @statementP@ provides a parser for C statements statementP :: P CStat statementP = statement -- | @expressionP@ provides a parser for C expressions expressionP :: P CExpr expressionP = expression {-# LINE 1 "GenericTemplate.hs" #-} {-# LINE 1 "" #-} {-# LINE 1 "" #-} {-# 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.