188.98/169.76 MAYBE 191.24/170.37 proof of /export/starexec/sandbox/benchmark/theBenchmark.hs 191.24/170.37 # AProVE Commit ID: 48fb2092695e11cc9f56e44b17a92a5f88ffb256 marcel 20180622 unpublished dirty 191.24/170.37 191.24/170.37 191.24/170.37 H-Termination with start terms of the given HASKELL could not be shown: 191.24/170.37 191.24/170.37 (0) HASKELL 191.24/170.37 (1) LR [EQUIVALENT, 0 ms] 191.24/170.37 (2) HASKELL 191.24/170.37 (3) CR [EQUIVALENT, 0 ms] 191.24/170.37 (4) HASKELL 191.24/170.37 (5) IFR [EQUIVALENT, 0 ms] 191.24/170.37 (6) HASKELL 191.24/170.37 (7) BR [EQUIVALENT, 0 ms] 191.24/170.37 (8) HASKELL 191.24/170.37 (9) COR [EQUIVALENT, 0 ms] 191.24/170.37 (10) HASKELL 191.24/170.37 (11) LetRed [EQUIVALENT, 0 ms] 191.24/170.37 (12) HASKELL 191.24/170.37 (13) NumRed [SOUND, 18 ms] 191.24/170.37 (14) HASKELL 191.24/170.37 191.24/170.37 191.24/170.37 ---------------------------------------- 191.24/170.37 191.24/170.37 (0) 191.24/170.37 Obligation: 191.24/170.37 mainModule Main 191.24/170.37 module Main where { 191.24/170.37 import qualified Prelude; 191.24/170.37 } 191.24/170.37 191.24/170.37 ---------------------------------------- 191.24/170.37 191.24/170.37 (1) LR (EQUIVALENT) 191.24/170.37 Lambda Reductions: 191.24/170.37 The following Lambda expression 191.24/170.37 "\vu54->case vu54 of { 191.24/170.37 (ch,''' : t) -> if ch /= ''' : [] then (''' : ch ++ ''' : [],t) : [] else []; 191.24/170.37 _ -> []} 191.24/170.37 " 191.24/170.37 is transformed to 191.24/170.37 "lex0 vu54 = case vu54 of { 191.24/170.37 (ch,''' : t) -> if ch /= ''' : [] then (''' : ch ++ ''' : [],t) : [] else []; 191.24/170.37 _ -> []} 191.24/170.37 ; 191.24/170.37 " 191.24/170.37 The following Lambda expression 191.24/170.37 "\vu56->case vu56 of { 191.24/170.37 (str,u) -> (ch ++ str,u) : []; 191.24/170.37 _ -> []} 191.24/170.37 " 191.24/170.37 is transformed to 191.24/170.37 "lexString0 ch vu56 = case vu56 of { 191.24/170.37 (str,u) -> (ch ++ str,u) : []; 191.24/170.37 _ -> []} 191.24/170.37 ; 191.24/170.37 " 191.24/170.37 The following Lambda expression 191.24/170.37 "\vu57->case vu57 of { 191.24/170.37 (ch,t) -> concatMap (lexString0 ch) (lexString t); 191.24/170.37 _ -> []} 191.24/170.37 " 191.24/170.37 is transformed to 191.24/170.37 "lexString1 vu57 = case vu57 of { 191.24/170.37 (ch,t) -> concatMap (lexString0 ch) (lexString t); 191.24/170.37 _ -> []} 191.24/170.37 ; 191.24/170.37 " 191.24/170.37 The following Lambda expression 191.24/170.37 "\vu58->case vu58 of { 191.24/170.37 '\' : t -> ([],t) : []; 191.24/170.37 _ -> []} 191.24/170.37 " 191.24/170.37 is transformed to 191.24/170.37 "lexStrItem0 vu58 = case vu58 of { 191.24/170.37 '\' : t -> ([],t) : []; 191.24/170.37 _ -> []} 191.24/170.37 ; 191.24/170.37 " 191.24/170.37 The following Lambda expression 191.24/170.37 "\vu55->case vu55 of { 191.24/170.37 (str,t) -> ('"' : str,t) : []; 191.24/170.37 _ -> []} 191.24/170.37 " 191.24/170.37 is transformed to 191.24/170.37 "lex1 vu55 = case vu55 of { 191.24/170.37 (str,t) -> ('"' : str,t) : []; 191.24/170.37 _ -> []} 191.24/170.37 ; 191.24/170.37 " 191.24/170.37 The following Lambda expression 191.24/170.37 "\vu63->case vu63 of { 191.24/170.37 (e,u) -> ('.' : ds ++ e,u) : []; 191.24/170.37 _ -> []} 191.24/170.37 " 191.24/170.37 is transformed to 191.24/170.37 "lexFracExp0 ds vu63 = case vu63 of { 191.24/170.37 (e,u) -> ('.' : ds ++ e,u) : []; 191.24/170.37 _ -> []} 191.24/170.37 ; 191.24/170.37 " 191.24/170.37 The following Lambda expression 191.24/170.37 "\vu64->case vu64 of { 191.24/170.37 (ds,t) -> concatMap (lexFracExp0 ds) (lexExp t); 191.24/170.37 _ -> []} 191.24/170.37 " 191.24/170.37 is transformed to 191.24/170.37 "lexFracExp1 vu64 = case vu64 of { 191.24/170.37 (ds,t) -> concatMap (lexFracExp0 ds) (lexExp t); 191.24/170.37 _ -> []} 191.24/170.37 ; 191.24/170.37 " 191.24/170.37 The following Lambda expression 191.24/170.37 "\vu65->case vu65 of { 191.24/170.37 (ds,u) -> (e : c : ds,u) : []; 191.24/170.37 _ -> []} 191.24/170.37 " 191.24/170.37 is transformed to 191.24/170.37 "lexExp0 e c vu65 = case vu65 of { 191.24/170.37 (ds,u) -> (e : c : ds,u) : []; 191.24/170.37 _ -> []} 191.24/170.37 ; 191.24/170.37 " 191.24/170.37 The following Lambda expression 191.24/170.37 "\vu66->case vu66 of { 191.24/170.37 c : t -> if c `elem` '+' : '-' : [] then concatMap (lexExp0 e c) (lexDigits t) else []; 191.24/170.37 _ -> []} 191.24/170.37 " 191.24/170.37 is transformed to 191.24/170.37 "lexExp1 e vu66 = case vu66 of { 191.24/170.37 c : t -> if c `elem` '+' : '-' : [] then concatMap (lexExp0 e c) (lexDigits t) else []; 191.24/170.37 _ -> []} 191.24/170.37 ; 191.24/170.37 " 191.24/170.37 The following Lambda expression 191.24/170.37 "\vu67->case vu67 of { 191.24/170.37 (ds,t) -> (e : ds,t) : []; 191.24/170.37 _ -> []} 191.24/170.37 " 191.24/170.37 is transformed to 191.24/170.37 "lexExp2 e vu67 = case vu67 of { 191.24/170.37 (ds,t) -> (e : ds,t) : []; 191.24/170.37 _ -> []} 191.24/170.37 ; 191.24/170.37 " 191.24/170.37 The following Lambda expression 191.24/170.37 "\vu59->case vu59 of { 191.24/170.37 (sym,t) -> (c : sym,t) : []; 191.24/170.37 _ -> []} 191.24/170.37 " 191.24/170.37 is transformed to 191.24/170.38 "lex2 c vu59 = case vu59 of { 191.24/170.38 (sym,t) -> (c : sym,t) : []; 191.24/170.38 _ -> []} 191.24/170.38 ; 191.24/170.38 " 191.24/170.38 The following Lambda expression 191.24/170.38 "\vu60->case vu60 of { 191.24/170.38 (nam,t) -> (c : nam,t) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lex3 c vu60 = case vu60 of { 191.24/170.38 (nam,t) -> (c : nam,t) : []; 191.24/170.38 _ -> []} 191.24/170.38 ; 191.24/170.38 " 191.24/170.38 The following Lambda expression 191.24/170.38 "\vu61->case vu61 of { 191.24/170.38 (fe,t) -> (c : ds ++ fe,t) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lex4 c ds vu61 = case vu61 of { 191.24/170.38 (fe,t) -> (c : ds ++ fe,t) : []; 191.24/170.38 _ -> []} 191.24/170.38 ; 191.24/170.38 " 191.24/170.38 The following Lambda expression 191.24/170.38 "\vu62->case vu62 of { 191.24/170.38 (ds,s) -> concatMap (lex4 c ds) (lexFracExp s); 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lex5 c vu62 = case vu62 of { 191.24/170.38 (ds,s) -> concatMap (lex4 c ds) (lexFracExp s); 191.24/170.38 _ -> []} 191.24/170.38 ; 191.24/170.38 " 191.24/170.38 The following Lambda expression 191.24/170.38 "\ab->(a,b)" 191.24/170.38 is transformed to 191.24/170.38 "zip0 a b = (a,b); 191.24/170.38 " 191.24/170.38 The following Lambda expression 191.24/170.38 "\vu68->case vu68 of { 191.24/170.38 (cs@(_ : _),t) -> (cs,t) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "nonnull0 vu68 = case vu68 of { 191.24/170.38 (cs@(_ : _),t) -> (cs,t) : []; 191.24/170.38 _ -> []} 191.24/170.38 ; 191.24/170.38 " 191.24/170.38 The following Lambda expression 191.24/170.38 "\vu48->case vu48 of { 191.24/170.38 (')' : [],u) -> (x,u) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "mandatory0 x vu48 = case vu48 of { 191.24/170.38 (')' : [],u) -> (x,u) : []; 191.24/170.38 _ -> []} 191.24/170.38 ; 191.24/170.38 " 191.24/170.38 The following Lambda expression 191.24/170.38 "\vu49->case vu49 of { 191.24/170.38 (x,t) -> concatMap (mandatory0 x) (lex t); 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "mandatory1 vu49 = case vu49 of { 191.24/170.38 (x,t) -> concatMap (mandatory0 x) (lex t); 191.24/170.38 _ -> []} 191.24/170.38 ; 191.24/170.38 " 191.24/170.38 The following Lambda expression 191.24/170.38 "\vu50->case vu50 of { 191.24/170.38 ('(' : [],s) -> concatMap mandatory1 (optional s); 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "mandatory2 vu50 = case vu50 of { 191.24/170.38 ('(' : [],s) -> concatMap mandatory1 (optional s); 191.24/170.38 _ -> []} 191.24/170.38 ; 191.24/170.38 " 191.24/170.38 The following Lambda expression 191.24/170.38 "\vu69->case vu69 of { 191.24/170.38 ([],s') -> (mne,s') : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexEsc0 mne vu69 = case vu69 of { 191.24/170.38 ([],s') -> (mne,s') : []; 191.24/170.38 _ -> []} 191.24/170.38 ; 191.24/170.38 " 191.24/170.38 The following Lambda expression 191.24/170.38 "\vu70->case vu70 of { 191.24/170.38 (c,mne) -> concatMap (lexEsc0 mne) (lexmatch mne s : []); 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexEsc1 s vu70 = case vu70 of { 191.24/170.38 (c,mne) -> concatMap (lexEsc0 mne) (lexmatch mne s : []); 191.24/170.38 _ -> []} 191.24/170.38 ; 191.24/170.38 " 191.24/170.38 The following Lambda expression 191.24/170.38 "\(_,zs)->zs" 191.24/170.38 is transformed to 191.24/170.38 "zs0 (_,zs) = zs; 191.24/170.38 " 191.24/170.38 The following Lambda expression 191.24/170.38 "\(ys,_)->ys" 191.24/170.38 is transformed to 191.24/170.38 "ys0 (ys,_) = ys; 191.24/170.38 " 191.24/170.38 191.24/170.38 ---------------------------------------- 191.24/170.38 191.24/170.38 (2) 191.24/170.38 Obligation: 191.24/170.38 mainModule Main 191.24/170.38 module Main where { 191.24/170.38 import qualified Prelude; 191.24/170.38 } 191.24/170.38 191.24/170.38 ---------------------------------------- 191.24/170.38 191.24/170.38 (3) CR (EQUIVALENT) 191.24/170.38 Case Reductions: 191.24/170.38 The following Case expression 191.24/170.38 "case vu55 of { 191.24/170.38 (str,t) -> ('"' : str,t) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lex10 (str,t) = ('"' : str,t) : []; 191.24/170.38 lex10 _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu57 of { 191.24/170.38 (ch,t) -> concatMap (lexString0 ch) (lexString t); 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexString10 (ch,t) = concatMap (lexString0 ch) (lexString t); 191.24/170.38 lexString10 _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu56 of { 191.24/170.38 (str,u) -> (ch ++ str,u) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexString00 ch (str,u) = (ch ++ str,u) : []; 191.24/170.38 lexString00 ch _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu58 of { 191.24/170.38 '\' : t -> ([],t) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexStrItem00 ('\' : t) = ([],t) : []; 191.24/170.38 lexStrItem00 _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu59 of { 191.24/170.38 (sym,t) -> (c : sym,t) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lex20 c (sym,t) = (c : sym,t) : []; 191.24/170.38 lex20 c _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu67 of { 191.24/170.38 (ds,t) -> (e : ds,t) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexExp20 e (ds,t) = (e : ds,t) : []; 191.24/170.38 lexExp20 e _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu65 of { 191.24/170.38 (ds,u) -> (e : c : ds,u) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexExp00 e c (ds,u) = (e : c : ds,u) : []; 191.24/170.38 lexExp00 e c _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu62 of { 191.24/170.38 (ds,s) -> concatMap (lex4 c ds) (lexFracExp s); 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lex50 c (ds,s) = concatMap (lex4 c ds) (lexFracExp s); 191.24/170.38 lex50 c _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu66 of { 191.24/170.38 c : t -> if c `elem` '+' : '-' : [] then concatMap (lexExp0 e c) (lexDigits t) else []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexExp10 e (c : t) = if c `elem` '+' : '-' : [] then concatMap (lexExp0 e c) (lexDigits t) else []; 191.24/170.38 lexExp10 e _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu60 of { 191.24/170.38 (nam,t) -> (c : nam,t) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lex30 c (nam,t) = (c : nam,t) : []; 191.24/170.38 lex30 c _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu61 of { 191.24/170.38 (fe,t) -> (c : ds ++ fe,t) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lex40 c ds (fe,t) = (c : ds ++ fe,t) : []; 191.24/170.38 lex40 c ds _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu63 of { 191.24/170.38 (e,u) -> ('.' : ds ++ e,u) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexFracExp00 ds (e,u) = ('.' : ds ++ e,u) : []; 191.24/170.38 lexFracExp00 ds _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu64 of { 191.24/170.38 (ds,t) -> concatMap (lexFracExp0 ds) (lexExp t); 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexFracExp10 (ds,t) = concatMap (lexFracExp0 ds) (lexExp t); 191.24/170.38 lexFracExp10 _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu54 of { 191.24/170.38 (ch,''' : t) -> if ch /= ''' : [] then (''' : ch ++ ''' : [],t) : [] else []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lex00 (ch,''' : t) = if ch /= ''' : [] then (''' : ch ++ ''' : [],t) : [] else []; 191.24/170.38 lex00 _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu48 of { 191.24/170.38 (')' : [],u) -> (x,u) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "mandatory00 x (')' : [],u) = (x,u) : []; 191.24/170.38 mandatory00 x _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu49 of { 191.24/170.38 (x,t) -> concatMap (mandatory0 x) (lex t); 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "mandatory10 (x,t) = concatMap (mandatory0 x) (lex t); 191.24/170.38 mandatory10 _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu50 of { 191.24/170.38 ('(' : [],s) -> concatMap mandatory1 (optional s); 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "mandatory20 ('(' : [],s) = concatMap mandatory1 (optional s); 191.24/170.38 mandatory20 _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu68 of { 191.24/170.38 (cs@(_ : _),t) -> (cs,t) : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "nonnull00 (cs@(_ : _),t) = (cs,t) : []; 191.24/170.38 nonnull00 _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case concatMap (lexEsc1 s) table of { 191.24/170.38 pr : _ -> pr : []; 191.24/170.38 [] -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexEsc2 (pr : _) = pr : []; 191.24/170.38 lexEsc2 [] = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu69 of { 191.24/170.38 ([],s') -> (mne,s') : []; 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexEsc00 mne ([],s') = (mne,s') : []; 191.24/170.38 lexEsc00 mne _ = []; 191.24/170.38 " 191.24/170.38 The following Case expression 191.24/170.38 "case vu70 of { 191.24/170.38 (c,mne) -> concatMap (lexEsc0 mne) (lexmatch mne s : []); 191.24/170.38 _ -> []} 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexEsc10 s (c,mne) = concatMap (lexEsc0 mne) (lexmatch mne s : []); 191.24/170.38 lexEsc10 s _ = []; 191.24/170.38 " 191.24/170.38 191.24/170.38 ---------------------------------------- 191.24/170.38 191.24/170.38 (4) 191.24/170.38 Obligation: 191.24/170.38 mainModule Main 191.24/170.38 module Main where { 191.24/170.38 import qualified Prelude; 191.24/170.38 } 191.24/170.38 191.24/170.38 ---------------------------------------- 191.24/170.38 191.24/170.38 (5) IFR (EQUIVALENT) 191.24/170.38 If Reductions: 191.24/170.38 The following If expression 191.24/170.38 "if c `elem` '+' : '-' : [] then concatMap (lexExp0 e c) (lexDigits t) else []" 191.24/170.38 is transformed to 191.24/170.38 "lexExp100 e c t True = concatMap (lexExp0 e c) (lexDigits t); 191.24/170.38 lexExp100 e c t False = []; 191.24/170.38 " 191.24/170.38 The following If expression 191.24/170.38 "if b then mandatory else optional" 191.24/170.38 is transformed to 191.24/170.38 "readParen0 True = mandatory; 191.24/170.38 readParen0 False = optional; 191.24/170.38 " 191.24/170.38 The following If expression 191.24/170.38 "if ch /= ''' : [] then (''' : ch ++ ''' : [],t) : [] else []" 191.24/170.38 is transformed to 191.24/170.38 "lex000 ch t True = (''' : ch ++ ''' : [],t) : []; 191.24/170.38 lex000 ch t False = []; 191.24/170.38 " 191.24/170.38 191.24/170.38 ---------------------------------------- 191.24/170.38 191.24/170.38 (6) 191.24/170.38 Obligation: 191.24/170.38 mainModule Main 191.24/170.38 module Main where { 191.24/170.38 import qualified Prelude; 191.24/170.38 } 191.24/170.38 191.24/170.38 ---------------------------------------- 191.24/170.38 191.24/170.38 (7) BR (EQUIVALENT) 191.24/170.38 Replaced joker patterns by fresh variables and removed binding patterns. 191.24/170.38 191.24/170.38 Binding Reductions: 191.24/170.38 The bind variable of the following binding Pattern 191.24/170.38 "cs@(wu : wv)" 191.24/170.38 is replaced by the following term 191.24/170.38 "wu : wv" 191.24/170.38 The bind variable of the following binding Pattern 191.24/170.38 "xs@(zz : vuu)" 191.24/170.38 is replaced by the following term 191.24/170.38 "zz : vuu" 191.24/170.38 The bind variable of the following binding Pattern 191.24/170.38 "s@(vux : vuy)" 191.24/170.38 is replaced by the following term 191.24/170.38 "vux : vuy" 191.24/170.38 The bind variable of the following binding Pattern 191.24/170.38 "xs@(vvx : vvy)" 191.24/170.38 is replaced by the following term 191.24/170.38 "vvx : vvy" 191.24/170.38 191.24/170.38 ---------------------------------------- 191.24/170.38 191.24/170.38 (8) 191.24/170.38 Obligation: 191.24/170.38 mainModule Main 191.24/170.38 module Main where { 191.24/170.38 import qualified Prelude; 191.24/170.38 } 191.24/170.38 191.24/170.38 ---------------------------------------- 191.24/170.38 191.24/170.38 (9) COR (EQUIVALENT) 191.24/170.38 Cond Reductions: 191.24/170.38 The following Function with conditions 191.24/170.38 "takeWhile p [] = []; 191.24/170.38 takeWhile p (x : xs)|p xx : takeWhile p xs|otherwise[]; 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "takeWhile p [] = takeWhile3 p []; 191.24/170.38 takeWhile p (x : xs) = takeWhile2 p (x : xs); 191.24/170.38 " 191.24/170.38 "takeWhile1 p x xs True = x : takeWhile p xs; 191.24/170.38 takeWhile1 p x xs False = takeWhile0 p x xs otherwise; 191.24/170.38 " 191.24/170.38 "takeWhile0 p x xs True = []; 191.24/170.38 " 191.24/170.38 "takeWhile2 p (x : xs) = takeWhile1 p x xs (p x); 191.24/170.38 " 191.24/170.38 "takeWhile3 p [] = []; 191.24/170.38 takeWhile3 vwx vwy = takeWhile2 vwx vwy; 191.24/170.38 " 191.24/170.38 The following Function with conditions 191.24/170.38 "lexString ('"' : s) = ('"' : [],s) : []; 191.24/170.38 lexString s = concatMap lexString1 (lexStrItem s); 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexString (vxu : s) = lexString4 (vxu : s); 191.24/170.38 lexString s = lexString2 s; 191.24/170.38 " 191.24/170.38 "lexString2 s = concatMap lexString1 (lexStrItem s); 191.24/170.38 " 191.24/170.38 "lexString3 True (vxu : s) = ('"' : [],s) : []; 191.24/170.38 lexString3 vxv vxw = lexString2 vxw; 191.24/170.38 " 191.24/170.38 "lexString4 (vxu : s) = lexString3 (vxu == '"') (vxu : s); 191.24/170.38 lexString4 vxx = lexString2 vxx; 191.24/170.38 " 191.24/170.38 The following Function with conditions 191.24/170.38 "lexStrItem ('\' : '&' : s) = ('\' : '&' : [],s) : []; 191.24/170.38 lexStrItem ('\' : c : s)|isSpace cconcatMap lexStrItem0 (dropWhile isSpace s : []); 191.24/170.38 lexStrItem s = lexLitChar s; 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexStrItem (vzv : vzz) = lexStrItem7 (vzv : vzz); 191.24/170.38 lexStrItem (vxz : vyw) = lexStrItem4 (vxz : vyw); 191.24/170.38 lexStrItem s = lexStrItem1 s; 191.24/170.38 " 191.24/170.38 "lexStrItem1 s = lexLitChar s; 191.24/170.38 " 191.24/170.38 "lexStrItem2 vxz c s True = concatMap lexStrItem0 (dropWhile isSpace s : []); 191.24/170.38 lexStrItem2 vxz c s False = lexStrItem1 (vxz : c : s); 191.24/170.38 " 191.24/170.38 "lexStrItem3 True (vxz : c : s) = lexStrItem2 vxz c s (isSpace c); 191.24/170.38 lexStrItem3 vyx vyy = lexStrItem1 vyy; 191.24/170.38 " 191.24/170.38 "lexStrItem4 (vxz : vyw) = lexStrItem3 (vxz == '\') (vxz : vyw); 191.24/170.38 lexStrItem4 vyz = lexStrItem1 vyz; 191.24/170.38 " 191.24/170.38 "lexStrItem5 True (vzv : vzx : s) = ('\' : '&' : [],s) : []; 191.24/170.38 lexStrItem5 wuu wuv = lexStrItem4 wuv; 191.24/170.38 " 191.24/170.38 "lexStrItem6 True (vzv : vzx : s) = lexStrItem5 (vzx == '&') (vzv : vzx : s); 191.24/170.38 lexStrItem6 wuw wux = lexStrItem4 wux; 191.24/170.38 " 191.24/170.38 "lexStrItem7 (vzv : vzz) = lexStrItem6 (vzv == '\') (vzv : vzz); 191.24/170.38 lexStrItem7 wuy = lexStrItem4 wuy; 191.24/170.38 " 191.24/170.38 The following Function with conditions 191.24/170.38 "lexStrItem00 ('\' : t) = ([],t) : []; 191.24/170.38 lexStrItem00 wz = []; 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexStrItem00 (wvu : t) = lexStrItem002 (wvu : t); 191.24/170.38 lexStrItem00 wz = lexStrItem000 wz; 191.24/170.38 " 191.24/170.38 "lexStrItem000 wz = []; 191.24/170.38 " 191.24/170.38 "lexStrItem001 True (wvu : t) = ([],t) : []; 191.24/170.38 lexStrItem001 wvv wvw = lexStrItem000 wvw; 191.24/170.38 " 191.24/170.38 "lexStrItem002 (wvu : t) = lexStrItem001 (wvu == '\') (wvu : t); 191.24/170.38 lexStrItem002 wvx = lexStrItem000 wvx; 191.24/170.38 " 191.24/170.38 The following Function with conditions 191.24/170.38 "lexExp (e : s)|e `elem` 'e' : 'E' : []concatMap (lexExp1 e) (s : []) ++ concatMap (lexExp2 e) (lexDigits s); 191.24/170.38 lexExp s = ([],s) : []; 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexExp (e : s) = lexExp5 (e : s); 191.24/170.38 lexExp s = lexExp3 s; 191.24/170.38 " 191.24/170.38 "lexExp3 s = ([],s) : []; 191.24/170.38 " 191.24/170.38 "lexExp4 e s True = concatMap (lexExp1 e) (s : []) ++ concatMap (lexExp2 e) (lexDigits s); 191.24/170.38 lexExp4 e s False = lexExp3 (e : s); 191.24/170.38 " 191.24/170.38 "lexExp5 (e : s) = lexExp4 e s (e `elem` 'e' : 'E' : []); 191.24/170.38 lexExp5 wvz = lexExp3 wvz; 191.24/170.38 " 191.24/170.38 The following Function with conditions 191.24/170.38 "lexFracExp ('.' : c : cs)|isDigit cconcatMap lexFracExp1 (lexDigits (c : cs)); 191.24/170.38 lexFracExp s = lexExp s; 191.24/170.38 " 191.24/170.38 is transformed to 191.24/170.38 "lexFracExp (wwv : wwy) = lexFracExp5 (wwv : wwy); 191.24/170.38 lexFracExp s = lexFracExp2 s; 191.24/170.38 " 191.24/170.38 "lexFracExp2 s = lexExp s; 191.24/170.38 " 191.24/170.38 "lexFracExp3 wwv c cs True = concatMap lexFracExp1 (lexDigits (c : cs)); 191.24/170.38 lexFracExp3 wwv c cs False = lexFracExp2 (wwv : c : cs); 191.24/170.38 " 191.24/170.38 "lexFracExp4 True (wwv : c : cs) = lexFracExp3 wwv c cs (isDigit c); 191.24/170.38 lexFracExp4 wwz wxu = lexFracExp2 wxu; 191.24/170.38 " 191.24/170.38 "lexFracExp5 (wwv : wwy) = lexFracExp4 (wwv == '.') (wwv : wwy); 191.24/170.38 lexFracExp5 wxv = lexFracExp2 wxv; 191.24/170.38 " 191.24/170.38 The following Function with conditions 191.24/170.38 "lex [] = ([],[]) : []; 191.24/170.38 lex (c : s)|isSpace clex (dropWhile isSpace s); 191.24/170.38 lex (''' : s) = concatMap lex0 (lexLitChar s); 191.24/170.38 lex ('"' : s) = concatMap lex1 (lexString s) where { 191.24/170.38 lex1 vu55 = lex10 vu55; 191.24/170.38 ; 191.24/170.38 lex10 (str,t) = ('"' : str,t) : []; 191.24/170.38 lex10 xu = []; 191.24/170.38 ; 191.24/170.38 lexStrItem ('\' : '&' : s) = ('\' : '&' : [],s) : []; 191.24/170.38 lexStrItem ('\' : c : s)|isSpace cconcatMap lexStrItem0 (dropWhile isSpace s : []); 191.24/170.38 lexStrItem s = lexLitChar s; 191.24/170.38 ; 191.24/170.38 lexStrItem0 vu58 = lexStrItem00 vu58; 191.24/170.38 ; 191.24/170.38 lexStrItem00 ('\' : t) = ([],t) : []; 191.24/170.38 lexStrItem00 wz = []; 191.24/170.38 ; 191.24/170.38 lexString ('"' : s) = ('"' : [],s) : []; 191.24/170.38 lexString s = concatMap lexString1 (lexStrItem s); 191.24/170.38 ; 191.24/170.38 lexString0 ch vu56 = lexString00 ch vu56; 191.24/170.38 ; 191.24/170.38 lexString00 ch (str,u) = (ch ++ str,u) : []; 191.24/170.38 lexString00 ch wx = []; 191.24/170.38 ; 191.24/170.38 lexString1 vu57 = lexString10 vu57; 191.24/170.38 ; 191.24/170.38 lexString10 (ch,t) = concatMap (lexString0 ch) (lexString t); 191.24/170.38 lexString10 wy = []; 191.24/170.38 } 191.24/170.38 ; 191.24/170.38 lex (c : s)|isSingle c(c : [],s) : []|isSym cconcatMap (lex2 c) (span isSym s : [])|isAlpha cconcatMap (lex3 c) (span isIdChar s : [])|isDigit cconcatMap (lex5 c) (span isDigit s : [])|otherwise[] where { 191.24/170.38 isIdChar c = isAlphaNum c || c `elem` '_' : ''' : []; 191.24/170.38 ; 191.24/170.38 isSingle c = c `elem` ',' : ';' : '(' : ')' : '[' : ']' : '{' : '}' : '_' : '`' : []; 191.24/170.38 ; 191.24/170.38 isSym c = c `elem` '!' : '@' : '#' : '$' : '%' : '&' : '*' : '+' : '.' : '/' : '<' : '=' : '>' : '?' : '\' : '^' : '|' : ':' : '-' : '~' : []; 191.24/170.38 ; 191.24/170.38 lex2 c vu59 = lex20 c vu59; 191.24/170.38 ; 191.24/170.38 lex20 c (sym,t) = (c : sym,t) : []; 191.24/170.38 lex20 c yw = []; 191.24/170.38 ; 191.24/170.38 lex3 c vu60 = lex30 c vu60; 191.24/170.38 ; 191.24/170.38 lex30 c (nam,t) = (c : nam,t) : []; 191.24/170.38 lex30 c yx = []; 191.24/170.38 ; 191.24/170.38 lex4 c ds vu61 = lex40 c ds vu61; 191.24/170.38 ; 191.24/170.38 lex40 c ds (fe,t) = (c : ds ++ fe,t) : []; 191.24/170.38 lex40 c ds yu = []; 191.64/170.47 ; 191.64/170.47 lex5 c vu62 = lex50 c vu62; 191.64/170.47 ; 191.64/170.47 lex50 c (ds,s) = concatMap (lex4 c ds) (lexFracExp s); 191.64/170.47 lex50 c yv = []; 191.64/170.47 ; 191.64/170.47 lexExp (e : s)|e `elem` 'e' : 'E' : []concatMap (lexExp1 e) (s : []) ++ concatMap (lexExp2 e) (lexDigits s); 191.64/170.47 lexExp s = ([],s) : []; 191.64/170.47 ; 191.64/170.47 lexExp0 e c vu65 = lexExp00 e c vu65; 191.64/170.47 ; 191.64/170.47 lexExp00 e c (ds,u) = (e : c : ds,u) : []; 191.64/170.47 lexExp00 e c xv = []; 191.64/170.47 ; 191.64/170.47 lexExp1 e vu66 = lexExp10 e vu66; 191.64/170.47 ; 191.64/170.47 lexExp10 e (c : t) = lexExp100 e c t (c `elem` '+' : '-' : []); 191.64/170.47 lexExp10 e xx = []; 191.64/170.47 ; 191.64/170.47 lexExp100 e c t True = concatMap (lexExp0 e c) (lexDigits t); 191.64/170.47 lexExp100 e c t False = []; 191.64/170.47 ; 191.64/170.47 lexExp2 e vu67 = lexExp20 e vu67; 191.64/170.47 ; 191.64/170.47 lexExp20 e (ds,t) = (e : ds,t) : []; 191.64/170.47 lexExp20 e xw = []; 191.64/170.47 ; 191.64/170.47 lexFracExp ('.' : c : cs)|isDigit cconcatMap lexFracExp1 (lexDigits (c : cs)); 191.64/170.47 lexFracExp s = lexExp s; 191.64/170.47 ; 191.64/170.47 lexFracExp0 ds vu63 = lexFracExp00 ds vu63; 191.64/170.47 ; 191.64/170.47 lexFracExp00 ds (e,u) = ('.' : ds ++ e,u) : []; 191.64/170.47 lexFracExp00 ds xz = []; 191.64/170.47 ; 191.64/170.47 lexFracExp1 vu64 = lexFracExp10 vu64; 191.64/170.47 ; 191.64/170.47 lexFracExp10 (ds,t) = concatMap (lexFracExp0 ds) (lexExp t); 191.64/170.47 lexFracExp10 xy = []; 191.64/170.47 } 191.64/170.47 ; 191.64/170.47 " 191.64/170.47 is transformed to 191.64/170.47 "lex [] = lex19 []; 191.64/170.47 lex (c : s) = lex18 (c : s); 191.64/170.47 lex (wyx : s) = lex16 (wyx : s); 191.64/170.47 lex (wxy : s) = lex14 (wxy : s); 191.64/170.47 lex (c : s) = lex12 (c : s); 191.64/170.47 " 191.64/170.47 "lex12 (c : s) = lex11 c s (isSingle c) where { 191.64/170.47 isIdChar c = isAlphaNum c || c `elem` '_' : ''' : []; 191.64/170.47 ; 191.64/170.47 isSingle c = c `elem` ',' : ';' : '(' : ')' : '[' : ']' : '{' : '}' : '_' : '`' : []; 191.64/170.47 ; 191.64/170.47 isSym c = c `elem` '!' : '@' : '#' : '$' : '%' : '&' : '*' : '+' : '.' : '/' : '<' : '=' : '>' : '?' : '\' : '^' : '|' : ':' : '-' : '~' : []; 191.64/170.47 ; 191.64/170.47 lex11 c s True = (c : [],s) : []; 191.64/170.47 lex11 c s False = lex9 c s (isSym c); 191.64/170.47 ; 191.64/170.47 lex2 c vu59 = lex20 c vu59; 191.64/170.47 ; 191.64/170.47 lex20 c (sym,t) = (c : sym,t) : []; 191.64/170.47 lex20 c yw = []; 191.64/170.47 ; 191.64/170.47 lex3 c vu60 = lex30 c vu60; 191.64/170.47 ; 191.64/170.47 lex30 c (nam,t) = (c : nam,t) : []; 191.64/170.47 lex30 c yx = []; 191.64/170.47 ; 191.64/170.47 lex4 c ds vu61 = lex40 c ds vu61; 191.64/170.47 ; 191.64/170.47 lex40 c ds (fe,t) = (c : ds ++ fe,t) : []; 191.64/170.47 lex40 c ds yu = []; 191.64/170.47 ; 191.64/170.47 lex5 c vu62 = lex50 c vu62; 191.64/170.47 ; 191.64/170.47 lex50 c (ds,s) = concatMap (lex4 c ds) (lexFracExp s); 191.64/170.47 lex50 c yv = []; 191.64/170.47 ; 191.64/170.47 lex6 c s True = []; 191.64/170.47 ; 191.64/170.47 lex7 c s True = concatMap (lex5 c) (span isDigit s : []); 191.64/170.47 lex7 c s False = lex6 c s otherwise; 191.64/170.47 ; 191.64/170.47 lex8 c s True = concatMap (lex3 c) (span isIdChar s : []); 191.64/170.47 lex8 c s False = lex7 c s (isDigit c); 191.64/170.47 ; 191.64/170.47 lex9 c s True = concatMap (lex2 c) (span isSym s : []); 191.64/170.47 lex9 c s False = lex8 c s (isAlpha c); 191.64/170.47 ; 191.64/170.47 lexExp (e : s) = lexExp5 (e : s); 191.64/170.47 lexExp s = lexExp3 s; 191.64/170.47 ; 191.64/170.47 lexExp0 e c vu65 = lexExp00 e c vu65; 191.64/170.47 ; 191.64/170.47 lexExp00 e c (ds,u) = (e : c : ds,u) : []; 191.64/170.47 lexExp00 e c xv = []; 191.64/170.47 ; 191.64/170.47 lexExp1 e vu66 = lexExp10 e vu66; 191.64/170.47 ; 191.64/170.47 lexExp10 e (c : t) = lexExp100 e c t (c `elem` '+' : '-' : []); 191.64/170.47 lexExp10 e xx = []; 191.64/170.47 ; 191.64/170.47 lexExp100 e c t True = concatMap (lexExp0 e c) (lexDigits t); 191.64/170.47 lexExp100 e c t False = []; 191.64/170.47 ; 191.64/170.47 lexExp2 e vu67 = lexExp20 e vu67; 191.64/170.47 ; 191.64/170.47 lexExp20 e (ds,t) = (e : ds,t) : []; 191.64/170.47 lexExp20 e xw = []; 191.64/170.47 ; 191.64/170.47 lexExp3 s = ([],s) : []; 191.64/170.47 ; 191.64/170.47 lexExp4 e s True = concatMap (lexExp1 e) (s : []) ++ concatMap (lexExp2 e) (lexDigits s); 191.64/170.47 lexExp4 e s False = lexExp3 (e : s); 191.64/170.47 ; 191.64/170.47 lexExp5 (e : s) = lexExp4 e s (e `elem` 'e' : 'E' : []); 191.64/170.47 lexExp5 wvz = lexExp3 wvz; 191.64/170.47 ; 191.64/170.47 lexFracExp (wwv : wwy) = lexFracExp5 (wwv : wwy); 191.64/170.47 lexFracExp s = lexFracExp2 s; 191.64/170.47 ; 191.64/170.47 lexFracExp0 ds vu63 = lexFracExp00 ds vu63; 191.64/170.47 ; 191.64/170.47 lexFracExp00 ds (e,u) = ('.' : ds ++ e,u) : []; 191.64/170.47 lexFracExp00 ds xz = []; 191.64/170.47 ; 191.64/170.47 lexFracExp1 vu64 = lexFracExp10 vu64; 191.64/170.47 ; 191.64/170.47 lexFracExp10 (ds,t) = concatMap (lexFracExp0 ds) (lexExp t); 191.64/170.47 lexFracExp10 xy = []; 191.64/170.47 ; 191.64/170.47 lexFracExp2 s = lexExp s; 191.64/170.47 ; 191.64/170.47 lexFracExp3 wwv c cs True = concatMap lexFracExp1 (lexDigits (c : cs)); 191.64/170.47 lexFracExp3 wwv c cs False = lexFracExp2 (wwv : c : cs); 191.64/170.47 ; 191.64/170.47 lexFracExp4 True (wwv : c : cs) = lexFracExp3 wwv c cs (isDigit c); 191.64/170.47 lexFracExp4 wwz wxu = lexFracExp2 wxu; 191.64/170.47 ; 191.64/170.47 lexFracExp5 (wwv : wwy) = lexFracExp4 (wwv == '.') (wwv : wwy); 191.64/170.47 lexFracExp5 wxv = lexFracExp2 wxv; 191.64/170.47 } 191.64/170.47 ; 191.64/170.47 " 191.64/170.47 "lex13 True (wxy : s) = concatMap lex1 (lexString s) where { 191.64/170.47 lex1 vu55 = lex10 vu55; 191.64/170.47 ; 191.64/170.47 lex10 (str,t) = ('"' : str,t) : []; 191.64/170.47 lex10 xu = []; 191.64/170.47 ; 191.64/170.47 lexStrItem (vzv : vzz) = lexStrItem7 (vzv : vzz); 191.64/170.47 lexStrItem (vxz : vyw) = lexStrItem4 (vxz : vyw); 191.64/170.47 lexStrItem s = lexStrItem1 s; 191.64/170.47 ; 191.64/170.47 lexStrItem0 vu58 = lexStrItem00 vu58; 191.64/170.47 ; 191.64/170.47 lexStrItem00 (wvu : t) = lexStrItem002 (wvu : t); 191.64/170.47 lexStrItem00 wz = lexStrItem000 wz; 191.64/170.47 ; 191.64/170.47 lexStrItem000 wz = []; 191.64/170.47 ; 191.64/170.47 lexStrItem001 True (wvu : t) = ([],t) : []; 191.64/170.47 lexStrItem001 wvv wvw = lexStrItem000 wvw; 191.64/170.47 ; 191.64/170.47 lexStrItem002 (wvu : t) = lexStrItem001 (wvu == '\') (wvu : t); 191.64/170.47 lexStrItem002 wvx = lexStrItem000 wvx; 191.64/170.47 ; 191.64/170.47 lexStrItem1 s = lexLitChar s; 191.64/170.47 ; 191.64/170.47 lexStrItem2 vxz c s True = concatMap lexStrItem0 (dropWhile isSpace s : []); 191.64/170.47 lexStrItem2 vxz c s False = lexStrItem1 (vxz : c : s); 191.64/170.47 ; 191.64/170.47 lexStrItem3 True (vxz : c : s) = lexStrItem2 vxz c s (isSpace c); 191.64/170.47 lexStrItem3 vyx vyy = lexStrItem1 vyy; 191.64/170.47 ; 191.64/170.47 lexStrItem4 (vxz : vyw) = lexStrItem3 (vxz == '\') (vxz : vyw); 191.64/170.47 lexStrItem4 vyz = lexStrItem1 vyz; 191.64/170.47 ; 191.64/170.47 lexStrItem5 True (vzv : vzx : s) = ('\' : '&' : [],s) : []; 191.64/170.47 lexStrItem5 wuu wuv = lexStrItem4 wuv; 191.64/170.47 ; 191.64/170.47 lexStrItem6 True (vzv : vzx : s) = lexStrItem5 (vzx == '&') (vzv : vzx : s); 191.64/170.47 lexStrItem6 wuw wux = lexStrItem4 wux; 191.64/170.47 ; 191.64/170.47 lexStrItem7 (vzv : vzz) = lexStrItem6 (vzv == '\') (vzv : vzz); 191.64/170.47 lexStrItem7 wuy = lexStrItem4 wuy; 191.64/170.47 ; 191.64/170.47 lexString (vxu : s) = lexString4 (vxu : s); 191.64/170.47 lexString s = lexString2 s; 191.64/170.47 ; 191.64/170.47 lexString0 ch vu56 = lexString00 ch vu56; 191.64/170.47 ; 191.64/170.47 lexString00 ch (str,u) = (ch ++ str,u) : []; 191.64/170.47 lexString00 ch wx = []; 191.64/170.47 ; 191.64/170.47 lexString1 vu57 = lexString10 vu57; 191.64/170.47 ; 191.64/170.47 lexString10 (ch,t) = concatMap (lexString0 ch) (lexString t); 191.64/170.47 lexString10 wy = []; 191.64/170.47 ; 191.64/170.47 lexString2 s = concatMap lexString1 (lexStrItem s); 191.64/170.47 ; 191.64/170.47 lexString3 True (vxu : s) = ('"' : [],s) : []; 191.64/170.47 lexString3 vxv vxw = lexString2 vxw; 191.64/170.47 ; 191.64/170.47 lexString4 (vxu : s) = lexString3 (vxu == '"') (vxu : s); 191.64/170.47 lexString4 vxx = lexString2 vxx; 191.64/170.47 } 191.64/170.47 ; 191.64/170.47 lex13 wxz wyu = lex12 wyu; 191.64/170.47 " 191.64/170.47 "lex14 (wxy : s) = lex13 (wxy == '"') (wxy : s); 191.64/170.47 lex14 wyv = lex12 wyv; 191.64/170.47 " 191.64/170.47 "lex15 True (wyx : s) = concatMap lex0 (lexLitChar s); 191.64/170.47 lex15 wyy wyz = lex14 wyz; 191.64/170.47 " 191.64/170.47 "lex16 (wyx : s) = lex15 (wyx == ''') (wyx : s); 191.64/170.47 lex16 wzu = lex14 wzu; 191.64/170.47 " 191.64/170.47 "lex17 c s True = lex (dropWhile isSpace s); 191.64/170.47 lex17 c s False = lex16 (c : s); 191.64/170.47 " 191.64/170.47 "lex18 (c : s) = lex17 c s (isSpace c); 191.64/170.47 lex18 wzw = lex16 wzw; 191.64/170.47 " 191.64/170.47 "lex19 [] = ([],[]) : []; 191.64/170.47 lex19 wzy = lex18 wzy; 191.64/170.47 " 191.64/170.47 The following Function with conditions 191.64/170.47 "lexmatch (x : xs) (y : ys)|x == ylexmatch xs ys; 191.64/170.47 lexmatch xs ys = (xs,ys); 191.64/170.47 " 191.64/170.47 is transformed to 191.64/170.47 "lexmatch (x : xs) (y : ys) = lexmatch2 (x : xs) (y : ys); 191.64/170.47 lexmatch xs ys = lexmatch0 xs ys; 191.64/170.47 " 191.64/170.47 "lexmatch0 xs ys = (xs,ys); 191.64/170.47 " 191.64/170.47 "lexmatch1 x xs y ys True = lexmatch xs ys; 191.64/170.47 lexmatch1 x xs y ys False = lexmatch0 (x : xs) (y : ys); 191.64/170.47 " 191.64/170.47 "lexmatch2 (x : xs) (y : ys) = lexmatch1 x xs y ys (x == y); 191.64/170.47 lexmatch2 xuv xuw = lexmatch0 xuv xuw; 191.64/170.47 " 191.64/170.47 The following Function with conditions 191.64/170.47 "undefined |Falseundefined; 191.64/170.47 " 191.64/170.47 is transformed to 191.64/170.47 "undefined = undefined1; 191.64/170.47 " 191.64/170.47 "undefined0 True = undefined; 191.64/170.47 " 191.64/170.47 "undefined1 = undefined0 False; 191.64/170.47 " 191.64/170.47 The following Function with conditions 191.64/170.47 "mandatory20 ('(' : [],s) = concatMap mandatory1 (optional s); 191.64/170.47 mandatory20 zw = []; 191.64/170.47 " 191.64/170.47 is transformed to 191.64/170.47 "mandatory20 (xuz : xvu,s) = mandatory202 (xuz : xvu,s); 191.64/170.47 mandatory20 zw = mandatory200 zw; 191.64/170.47 " 191.64/170.47 "mandatory200 zw = []; 191.64/170.47 " 191.64/170.47 "mandatory201 True (xuz : [],s) = concatMap mandatory1 (optional s); 191.64/170.47 mandatory201 xvv xvw = mandatory200 xvw; 191.64/170.47 " 191.64/170.47 "mandatory202 (xuz : xvu,s) = mandatory201 (xuz == '(') (xuz : xvu,s); 191.64/170.47 mandatory202 xvx = mandatory200 xvx; 191.64/170.47 " 191.64/170.47 The following Function with conditions 191.64/170.47 "mandatory00 x (')' : [],u) = (x,u) : []; 191.64/170.47 mandatory00 x zx = []; 191.64/170.47 " 191.64/170.47 is transformed to 191.64/170.47 "mandatory00 x (xwu : xwv,u) = mandatory002 x (xwu : xwv,u); 191.64/170.47 mandatory00 x zx = mandatory000 x zx; 191.64/170.47 " 191.64/170.47 "mandatory000 x zx = []; 191.64/170.47 " 191.64/170.47 "mandatory001 True x (xwu : [],u) = (x,u) : []; 191.64/170.47 mandatory001 xww xwx xwy = mandatory000 xwx xwy; 191.64/170.47 " 191.64/170.47 "mandatory002 x (xwu : xwv,u) = mandatory001 (xwu == ')') x (xwu : xwv,u); 191.64/170.47 mandatory002 xwz xxu = mandatory000 xwz xxu; 191.64/170.47 " 191.64/170.47 The following Function with conditions 191.64/170.47 "dropWhile p [] = []; 191.64/170.47 dropWhile p (zz : vuu)|p zzdropWhile p vuu|otherwisezz : vuu; 191.64/170.47 " 191.64/170.47 is transformed to 191.64/170.47 "dropWhile p [] = dropWhile3 p []; 191.64/170.47 dropWhile p (zz : vuu) = dropWhile2 p (zz : vuu); 191.64/170.47 " 191.64/170.47 "dropWhile0 p zz vuu True = zz : vuu; 191.64/170.47 " 191.64/170.47 "dropWhile1 p zz vuu True = dropWhile p vuu; 191.64/170.47 dropWhile1 p zz vuu False = dropWhile0 p zz vuu otherwise; 191.64/170.47 " 191.64/170.47 "dropWhile2 p (zz : vuu) = dropWhile1 p zz vuu (p zz); 191.64/170.47 " 191.64/170.47 "dropWhile3 p [] = []; 191.64/170.47 dropWhile3 xxx xxy = dropWhile2 xxx xxy; 191.64/170.47 " 191.64/170.47 The following Function with conditions 191.64/170.47 "lex00 (ch,''' : t) = lex000 ch t (ch /= ''' : []); 191.64/170.47 lex00 vuv = []; 191.64/170.47 " 191.64/170.47 is transformed to 191.64/170.47 "lex00 (ch,xyv : t) = lex003 (ch,xyv : t); 191.64/170.47 lex00 vuv = lex001 vuv; 191.64/170.47 " 191.64/170.47 "lex001 vuv = []; 191.64/170.47 " 191.64/170.47 "lex002 True (ch,xyv : t) = lex000 ch t (ch /= ''' : []); 191.64/170.47 lex002 xyw xyx = lex001 xyx; 191.64/170.47 " 191.64/170.47 "lex003 (ch,xyv : t) = lex002 (xyv == ''') (ch,xyv : t); 191.64/170.47 lex003 xyy = lex001 xyy; 191.64/170.47 " 191.64/170.47 The following Function with conditions 191.64/170.47 "lexEsc (c : s)|c `elem` 'a' : 'b' : 'f' : 'n' : 'r' : 't' : 'v' : '\' : '"' : ''' : [](c : [],s) : []; 191.64/170.47 lexEsc ('^' : c : s)|c >= '@' && c <= '_'('^' : c : [],s) : []; 191.64/170.47 lexEsc ('o' : s) = prefix 'o' (span isOctDigit s) : []; 191.64/170.47 lexEsc ('x' : s) = prefix 'x' (span isHexDigit s) : []; 191.64/170.47 lexEsc (vux : vuy)|isDigit vuxspan isDigit (vux : vuy) : []|isUpper vuxlexEsc2 (concatMap (lexEsc1 (vux : vuy)) table); 191.64/170.47 lexEsc vuz = []; 191.64/170.47 " 191.64/170.47 is transformed to 191.64/170.47 "lexEsc (c : s) = lexEsc16 (c : s); 191.64/170.47 lexEsc (yvu : yvx) = lexEsc14 (yvu : yvx); 191.64/170.47 lexEsc (yuv : s) = lexEsc11 (yuv : s); 191.64/170.47 lexEsc (xzw : s) = lexEsc8 (xzw : s); 191.64/170.47 lexEsc (vux : vuy) = lexEsc6 (vux : vuy); 191.64/170.47 lexEsc vuz = lexEsc3 vuz; 191.64/170.47 " 191.64/170.47 "lexEsc3 vuz = []; 191.64/170.47 " 191.64/170.47 "lexEsc4 vux vuy True = lexEsc2 (concatMap (lexEsc1 (vux : vuy)) table); 191.64/170.47 lexEsc4 vux vuy False = lexEsc3 (vux : vuy); 191.64/170.47 " 191.64/170.47 "lexEsc5 vux vuy True = span isDigit (vux : vuy) : []; 191.64/170.47 lexEsc5 vux vuy False = lexEsc4 vux vuy (isUpper vux); 191.64/170.47 " 191.64/170.47 "lexEsc6 (vux : vuy) = lexEsc5 vux vuy (isDigit vux); 191.64/170.47 lexEsc6 xzu = lexEsc3 xzu; 191.64/170.47 " 191.64/170.47 "lexEsc7 True (xzw : s) = prefix 'x' (span isHexDigit s) : []; 191.64/170.47 lexEsc7 xzx xzy = lexEsc6 xzy; 191.64/170.47 " 191.64/170.47 "lexEsc8 (xzw : s) = lexEsc7 (xzw == 'x') (xzw : s); 191.64/170.47 lexEsc8 xzz = lexEsc6 xzz; 191.64/170.47 " 191.64/170.47 "lexEsc9 True (yuv : s) = prefix 'o' (span isOctDigit s) : []; 191.64/170.47 lexEsc9 yuw yux = lexEsc8 yux; 191.64/170.47 " 191.64/170.47 "lexEsc11 (yuv : s) = lexEsc9 (yuv == 'o') (yuv : s); 191.64/170.47 lexEsc11 yuy = lexEsc8 yuy; 191.64/170.47 " 191.64/170.47 "lexEsc12 yvu c s True = ('^' : c : [],s) : []; 191.64/170.47 lexEsc12 yvu c s False = lexEsc11 (yvu : c : s); 191.64/170.47 " 191.64/170.47 "lexEsc13 True (yvu : c : s) = lexEsc12 yvu c s (c >= '@' && c <= '_'); 191.64/170.47 lexEsc13 yvy yvz = lexEsc11 yvz; 191.64/170.47 " 191.64/170.47 "lexEsc14 (yvu : yvx) = lexEsc13 (yvu == '^') (yvu : yvx); 191.64/170.47 lexEsc14 ywu = lexEsc11 ywu; 191.64/170.47 " 191.64/170.47 "lexEsc15 c s True = (c : [],s) : []; 191.64/170.47 lexEsc15 c s False = lexEsc14 (c : s); 191.64/170.47 " 191.64/170.47 "lexEsc16 (c : s) = lexEsc15 c s (c `elem` 'a' : 'b' : 'f' : 'n' : 'r' : 't' : 'v' : '\' : '"' : ''' : []); 191.64/170.47 lexEsc16 yww = lexEsc14 yww; 191.64/170.47 " 191.64/170.47 The following Function with conditions 191.64/170.47 "lexLitChar [] = []; 191.64/170.47 lexLitChar (c : s)|c /= '\'(c : [],s) : []|otherwisemap (prefix '\') (lexEsc s) where { 191.64/170.47 lexEsc (c : s)|c `elem` 'a' : 'b' : 'f' : 'n' : 'r' : 't' : 'v' : '\' : '"' : ''' : [](c : [],s) : []; 191.64/170.47 lexEsc ('^' : c : s)|c >= '@' && c <= '_'('^' : c : [],s) : []; 191.64/170.47 lexEsc ('o' : s) = prefix 'o' (span isOctDigit s) : []; 191.64/170.47 lexEsc ('x' : s) = prefix 'x' (span isHexDigit s) : []; 191.64/170.47 lexEsc (vux : vuy)|isDigit vuxspan isDigit (vux : vuy) : []|isUpper vuxlexEsc2 (concatMap (lexEsc1 (vux : vuy)) table); 191.64/170.47 lexEsc vuz = []; 191.64/170.47 ; 191.64/170.47 lexEsc0 mne vu69 = lexEsc00 mne vu69; 191.64/170.47 ; 191.64/170.47 lexEsc00 mne ([],s') = (mne,s') : []; 191.64/170.47 lexEsc00 mne vvv = []; 191.64/170.47 ; 191.64/170.47 lexEsc1 s vu70 = lexEsc10 s vu70; 191.64/170.47 ; 191.64/170.47 lexEsc10 s (c,mne) = concatMap (lexEsc0 mne) (lexmatch mne s : []); 191.64/170.47 lexEsc10 s vvw = []; 191.64/170.47 ; 191.64/170.47 lexEsc2 (pr : vvu) = pr : []; 191.64/170.47 lexEsc2 [] = []; 191.64/170.47 ; 191.64/170.47 prefix c (t,s) = (c : t,s); 191.64/170.47 ; 191.64/170.47 table = ('\127','D' : 'E' : 'L' : []) : asciiTab; 191.64/170.47 } 191.64/170.47 ; 191.64/170.47 " 191.64/170.47 is transformed to 191.64/170.47 "lexLitChar [] = lexLitChar3 []; 191.64/170.47 lexLitChar (c : s) = lexLitChar2 (c : s); 191.64/170.47 " 191.64/170.47 "lexLitChar2 (c : s) = lexLitChar1 c s (c /= '\') where { 191.64/170.47 lexEsc (c : s) = lexEsc16 (c : s); 191.64/170.47 lexEsc (yvu : yvx) = lexEsc14 (yvu : yvx); 191.64/170.47 lexEsc (yuv : s) = lexEsc11 (yuv : s); 191.64/170.47 lexEsc (xzw : s) = lexEsc8 (xzw : s); 191.64/170.47 lexEsc (vux : vuy) = lexEsc6 (vux : vuy); 191.64/170.47 lexEsc vuz = lexEsc3 vuz; 191.64/170.47 ; 191.64/170.47 lexEsc0 mne vu69 = lexEsc00 mne vu69; 191.64/170.47 ; 191.64/170.47 lexEsc00 mne ([],s') = (mne,s') : []; 191.64/170.47 lexEsc00 mne vvv = []; 191.64/170.47 ; 191.64/170.47 lexEsc1 s vu70 = lexEsc10 s vu70; 191.64/170.47 ; 191.64/170.47 lexEsc10 s (c,mne) = concatMap (lexEsc0 mne) (lexmatch mne s : []); 191.64/170.47 lexEsc10 s vvw = []; 191.64/170.47 ; 191.64/170.47 lexEsc11 (yuv : s) = lexEsc9 (yuv == 'o') (yuv : s); 191.64/170.47 lexEsc11 yuy = lexEsc8 yuy; 191.64/170.47 ; 191.64/170.47 lexEsc12 yvu c s True = ('^' : c : [],s) : []; 191.64/170.47 lexEsc12 yvu c s False = lexEsc11 (yvu : c : s); 191.64/170.47 ; 191.64/170.47 lexEsc13 True (yvu : c : s) = lexEsc12 yvu c s (c >= '@' && c <= '_'); 191.64/170.47 lexEsc13 yvy yvz = lexEsc11 yvz; 191.64/170.47 ; 191.64/170.47 lexEsc14 (yvu : yvx) = lexEsc13 (yvu == '^') (yvu : yvx); 191.64/170.47 lexEsc14 ywu = lexEsc11 ywu; 191.64/170.47 ; 191.64/170.47 lexEsc15 c s True = (c : [],s) : []; 191.64/170.47 lexEsc15 c s False = lexEsc14 (c : s); 191.64/170.47 ; 191.64/170.47 lexEsc16 (c : s) = lexEsc15 c s (c `elem` 'a' : 'b' : 'f' : 'n' : 'r' : 't' : 'v' : '\' : '"' : ''' : []); 191.64/170.47 lexEsc16 yww = lexEsc14 yww; 191.64/170.47 ; 191.64/170.47 lexEsc2 (pr : vvu) = pr : []; 191.64/170.47 lexEsc2 [] = []; 191.64/170.47 ; 191.64/170.47 lexEsc3 vuz = []; 191.64/170.47 ; 191.64/170.47 lexEsc4 vux vuy True = lexEsc2 (concatMap (lexEsc1 (vux : vuy)) table); 191.64/170.47 lexEsc4 vux vuy False = lexEsc3 (vux : vuy); 191.64/170.47 ; 191.64/170.47 lexEsc5 vux vuy True = span isDigit (vux : vuy) : []; 191.64/170.47 lexEsc5 vux vuy False = lexEsc4 vux vuy (isUpper vux); 191.64/170.47 ; 191.64/170.47 lexEsc6 (vux : vuy) = lexEsc5 vux vuy (isDigit vux); 191.64/170.47 lexEsc6 xzu = lexEsc3 xzu; 191.64/170.47 ; 191.64/170.47 lexEsc7 True (xzw : s) = prefix 'x' (span isHexDigit s) : []; 191.64/170.47 lexEsc7 xzx xzy = lexEsc6 xzy; 191.64/170.47 ; 191.64/170.47 lexEsc8 (xzw : s) = lexEsc7 (xzw == 'x') (xzw : s); 191.64/170.47 lexEsc8 xzz = lexEsc6 xzz; 191.64/170.47 ; 191.64/170.47 lexEsc9 True (yuv : s) = prefix 'o' (span isOctDigit s) : []; 191.64/170.47 lexEsc9 yuw yux = lexEsc8 yux; 191.64/170.47 ; 191.64/170.47 lexLitChar0 c s True = map (prefix '\') (lexEsc s); 191.64/170.47 ; 191.64/170.47 lexLitChar1 c s True = (c : [],s) : []; 191.64/170.47 lexLitChar1 c s False = lexLitChar0 c s otherwise; 191.64/170.47 ; 191.64/170.47 prefix c (t,s) = (c : t,s); 191.64/170.47 ; 191.64/170.47 table = ('\127','D' : 'E' : 'L' : []) : asciiTab; 191.64/170.47 } 191.64/170.47 ; 191.64/170.47 " 191.64/170.47 "lexLitChar3 [] = []; 191.64/170.47 lexLitChar3 ywz = lexLitChar2 ywz; 191.64/170.47 " 191.64/170.47 The following Function with conditions 191.64/170.47 "span p [] = ([],[]); 191.64/170.47 span p (vvx : vvy)|p vvx(vvx : ys,zs)|otherwise([],vvx : vvy) where { 191.64/170.47 vu43 = span p vvy; 191.64/170.47 ; 191.64/170.47 ys = ys0 vu43; 191.64/170.47 ; 191.64/170.47 ys0 (ys,vwu) = ys; 191.64/170.47 ; 191.64/170.47 zs = zs0 vu43; 191.64/170.47 ; 191.64/170.47 zs0 (vvz,zs) = zs; 191.64/170.47 } 191.64/170.47 ; 191.64/170.47 " 191.64/170.47 is transformed to 191.64/170.47 "span p [] = span3 p []; 191.64/170.47 span p (vvx : vvy) = span2 p (vvx : vvy); 191.64/170.47 " 191.64/170.47 "span2 p (vvx : vvy) = span1 p vvx vvy (p vvx) where { 191.64/170.47 span0 p vvx vvy True = ([],vvx : vvy); 191.64/170.47 ; 191.64/170.47 span1 p vvx vvy True = (vvx : ys,zs); 191.64/170.47 span1 p vvx vvy False = span0 p vvx vvy otherwise; 191.64/170.47 ; 191.64/170.47 vu43 = span p vvy; 191.64/170.47 ; 191.64/170.47 ys = ys0 vu43; 191.64/170.47 ; 191.64/170.47 ys0 (ys,vwu) = ys; 191.64/170.47 ; 191.64/170.47 zs = zs0 vu43; 191.64/170.47 ; 191.64/170.47 zs0 (vvz,zs) = zs; 191.64/170.47 } 191.64/170.47 ; 191.64/170.47 " 191.64/170.47 "span3 p [] = ([],[]); 191.64/170.47 span3 yxw yxx = span2 yxw yxx; 191.64/170.47 " 191.64/170.47 191.64/170.47 ---------------------------------------- 191.64/170.47 191.64/170.47 (10) 191.64/170.47 Obligation: 191.64/170.47 mainModule Main 191.64/170.47 module Main where { 191.64/170.47 import qualified Prelude; 191.64/170.47 } 191.64/170.47 191.64/170.47 ---------------------------------------- 191.64/170.48 191.64/170.48 (11) LetRed (EQUIVALENT) 191.64/170.48 Let/Where Reductions: 191.64/170.48 The bindings of the following Let/Where expression 191.64/170.48 "concatMap lex1 (lexString s) where { 191.64/170.48 lex1 vu55 = lex10 vu55; 191.64/170.48 ; 191.64/170.48 lex10 (str,t) = ('"' : str,t) : []; 191.64/170.48 lex10 xu = []; 191.64/170.48 ; 191.64/170.48 lexStrItem (vzv : vzz) = lexStrItem7 (vzv : vzz); 191.64/170.48 lexStrItem (vxz : vyw) = lexStrItem4 (vxz : vyw); 191.64/170.48 lexStrItem s = lexStrItem1 s; 191.64/170.48 ; 191.64/170.48 lexStrItem0 vu58 = lexStrItem00 vu58; 191.64/170.48 ; 191.64/170.48 lexStrItem00 (wvu : t) = lexStrItem002 (wvu : t); 191.64/170.48 lexStrItem00 wz = lexStrItem000 wz; 191.64/170.48 ; 191.64/170.48 lexStrItem000 wz = []; 191.64/170.48 ; 191.64/170.48 lexStrItem001 True (wvu : t) = ([],t) : []; 191.64/170.48 lexStrItem001 wvv wvw = lexStrItem000 wvw; 191.64/170.48 ; 191.64/170.48 lexStrItem002 (wvu : t) = lexStrItem001 (wvu == '\') (wvu : t); 191.64/170.48 lexStrItem002 wvx = lexStrItem000 wvx; 191.64/170.48 ; 191.64/170.48 lexStrItem1 s = lexLitChar s; 191.64/170.48 ; 191.64/170.48 lexStrItem2 vxz c s True = concatMap lexStrItem0 (dropWhile isSpace s : []); 191.64/170.48 lexStrItem2 vxz c s False = lexStrItem1 (vxz : c : s); 191.64/170.48 ; 191.64/170.48 lexStrItem3 True (vxz : c : s) = lexStrItem2 vxz c s (isSpace c); 191.64/170.48 lexStrItem3 vyx vyy = lexStrItem1 vyy; 191.64/170.48 ; 191.64/170.48 lexStrItem4 (vxz : vyw) = lexStrItem3 (vxz == '\') (vxz : vyw); 191.64/170.48 lexStrItem4 vyz = lexStrItem1 vyz; 191.64/170.48 ; 191.64/170.48 lexStrItem5 True (vzv : vzx : s) = ('\' : '&' : [],s) : []; 191.64/170.48 lexStrItem5 wuu wuv = lexStrItem4 wuv; 191.64/170.48 ; 191.64/170.48 lexStrItem6 True (vzv : vzx : s) = lexStrItem5 (vzx == '&') (vzv : vzx : s); 191.64/170.48 lexStrItem6 wuw wux = lexStrItem4 wux; 191.64/170.48 ; 191.64/170.48 lexStrItem7 (vzv : vzz) = lexStrItem6 (vzv == '\') (vzv : vzz); 191.64/170.48 lexStrItem7 wuy = lexStrItem4 wuy; 191.64/170.48 ; 191.64/170.48 lexString (vxu : s) = lexString4 (vxu : s); 191.64/170.48 lexString s = lexString2 s; 191.64/170.48 ; 191.64/170.48 lexString0 ch vu56 = lexString00 ch vu56; 191.64/170.48 ; 191.64/170.48 lexString00 ch (str,u) = (ch ++ str,u) : []; 191.64/170.48 lexString00 ch wx = []; 191.64/170.48 ; 191.64/170.48 lexString1 vu57 = lexString10 vu57; 191.64/170.48 ; 191.64/170.48 lexString10 (ch,t) = concatMap (lexString0 ch) (lexString t); 191.64/170.48 lexString10 wy = []; 191.64/170.48 ; 191.64/170.48 lexString2 s = concatMap lexString1 (lexStrItem s); 191.64/170.48 ; 191.64/170.48 lexString3 True (vxu : s) = ('"' : [],s) : []; 191.64/170.48 lexString3 vxv vxw = lexString2 vxw; 191.64/170.48 ; 191.64/170.48 lexString4 (vxu : s) = lexString3 (vxu == '"') (vxu : s); 191.64/170.48 lexString4 vxx = lexString2 vxx; 191.64/170.48 } 191.64/170.48 " 191.64/170.48 are unpacked to the following functions on top level 191.64/170.48 "lex13LexString3 True (vxu : s) = ('"' : [],s) : []; 191.64/170.48 lex13LexString3 vxv vxw = lex13LexString2 vxw; 191.64/170.48 " 191.64/170.48 "lex13LexString0 ch vu56 = lex13LexString00 ch vu56; 191.64/170.48 " 191.64/170.48 "lex13LexStrItem00 (wvu : t) = lex13LexStrItem002 (wvu : t); 191.64/170.48 lex13LexStrItem00 wz = lex13LexStrItem000 wz; 191.64/170.48 " 191.64/170.48 "lex13LexString1 vu57 = lex13LexString10 vu57; 191.64/170.48 " 191.64/170.48 "lex13LexStrItem001 True (wvu : t) = ([],t) : []; 191.64/170.48 lex13LexStrItem001 wvv wvw = lex13LexStrItem000 wvw; 191.64/170.48 " 191.64/170.48 "lex13LexStrItem002 (wvu : t) = lex13LexStrItem001 (wvu == '\') (wvu : t); 191.64/170.48 lex13LexStrItem002 wvx = lex13LexStrItem000 wvx; 191.64/170.48 " 191.64/170.48 "lex13LexString4 (vxu : s) = lex13LexString3 (vxu == '"') (vxu : s); 191.64/170.48 lex13LexString4 vxx = lex13LexString2 vxx; 191.64/170.48 " 191.64/170.48 "lex13LexStrItem4 (vxz : vyw) = lex13LexStrItem3 (vxz == '\') (vxz : vyw); 191.64/170.48 lex13LexStrItem4 vyz = lex13LexStrItem1 vyz; 191.64/170.48 " 191.64/170.48 "lex13LexStrItem3 True (vxz : c : s) = lex13LexStrItem2 vxz c s (isSpace c); 191.64/170.48 lex13LexStrItem3 vyx vyy = lex13LexStrItem1 vyy; 191.64/170.48 " 191.64/170.48 "lex13LexString10 (ch,t) = concatMap (lex13LexString0 ch) (lex13LexString t); 191.64/170.48 lex13LexString10 wy = []; 191.64/170.48 " 191.64/170.48 "lex13LexStrItem7 (vzv : vzz) = lex13LexStrItem6 (vzv == '\') (vzv : vzz); 191.64/170.48 lex13LexStrItem7 wuy = lex13LexStrItem4 wuy; 191.64/170.48 " 191.64/170.48 "lex13LexStrItem0 vu58 = lex13LexStrItem00 vu58; 191.64/170.48 " 191.64/170.48 "lex13LexStrItem (vzv : vzz) = lex13LexStrItem7 (vzv : vzz); 191.64/170.48 lex13LexStrItem (vxz : vyw) = lex13LexStrItem4 (vxz : vyw); 191.64/170.48 lex13LexStrItem s = lex13LexStrItem1 s; 191.64/170.48 " 191.64/170.48 "lex13LexStrItem6 True (vzv : vzx : s) = lex13LexStrItem5 (vzx == '&') (vzv : vzx : s); 191.64/170.48 lex13LexStrItem6 wuw wux = lex13LexStrItem4 wux; 191.64/170.48 " 191.64/170.48 "lex13Lex10 (str,t) = ('"' : str,t) : []; 191.64/170.48 lex13Lex10 xu = []; 191.64/170.48 " 191.64/170.48 "lex13LexStrItem000 wz = []; 191.64/170.48 " 191.64/170.48 "lex13LexStrItem2 vxz c s True = concatMap lex13LexStrItem0 (dropWhile isSpace s : []); 191.64/170.48 lex13LexStrItem2 vxz c s False = lex13LexStrItem1 (vxz : c : s); 191.64/170.48 " 191.64/170.48 "lex13Lex1 vu55 = lex13Lex10 vu55; 191.64/170.48 " 191.64/170.48 "lex13LexString (vxu : s) = lex13LexString4 (vxu : s); 191.64/170.48 lex13LexString s = lex13LexString2 s; 191.64/170.48 " 191.64/170.48 "lex13LexStrItem1 s = lexLitChar s; 191.64/170.48 " 191.64/170.48 "lex13LexStrItem5 True (vzv : vzx : s) = ('\' : '&' : [],s) : []; 191.64/170.48 lex13LexStrItem5 wuu wuv = lex13LexStrItem4 wuv; 191.64/170.48 " 191.64/170.48 "lex13LexString00 ch (str,u) = (ch ++ str,u) : []; 191.64/170.48 lex13LexString00 ch wx = []; 191.64/170.48 " 191.64/170.48 "lex13LexString2 s = concatMap lex13LexString1 (lex13LexStrItem s); 191.64/170.48 " 191.64/170.48 The bindings of the following Let/Where expression 191.64/170.48 "span1 p vvx vvy (p vvx) where { 191.64/170.48 span0 p vvx vvy True = ([],vvx : vvy); 191.64/170.48 ; 191.64/170.48 span1 p vvx vvy True = (vvx : ys,zs); 191.64/170.48 span1 p vvx vvy False = span0 p vvx vvy otherwise; 191.64/170.48 ; 191.64/170.48 vu43 = span p vvy; 191.64/170.48 ; 191.64/170.48 ys = ys0 vu43; 191.64/170.48 ; 191.64/170.48 ys0 (ys,vwu) = ys; 191.64/170.48 ; 191.64/170.48 zs = zs0 vu43; 191.64/170.48 ; 191.64/170.48 zs0 (vvz,zs) = zs; 191.64/170.48 } 191.64/170.48 " 191.64/170.48 are unpacked to the following functions on top level 191.64/170.48 "span2Zs yxy yxz = span2Zs0 yxy yxz (span2Vu43 yxy yxz); 191.64/170.48 " 191.64/170.48 "span2Ys0 yxy yxz (ys,vwu) = ys; 191.64/170.48 " 191.64/170.48 "span2Vu43 yxy yxz = span yxy yxz; 191.64/170.48 " 191.64/170.48 "span2Zs0 yxy yxz (vvz,zs) = zs; 191.64/170.48 " 191.64/170.48 "span2Span1 yxy yxz p vvx vvy True = (vvx : span2Ys yxy yxz,span2Zs yxy yxz); 191.64/170.48 span2Span1 yxy yxz p vvx vvy False = span2Span0 yxy yxz p vvx vvy otherwise; 191.64/170.48 " 191.64/170.48 "span2Ys yxy yxz = span2Ys0 yxy yxz (span2Vu43 yxy yxz); 191.64/170.48 " 191.64/170.48 "span2Span0 yxy yxz p vvx vvy True = ([],vvx : vvy); 191.64/170.48 " 191.64/170.48 The bindings of the following Let/Where expression 191.64/170.48 "lex11 c s (isSingle c) where { 191.64/170.48 isIdChar c = isAlphaNum c || c `elem` '_' : ''' : []; 191.64/170.48 ; 191.64/170.48 isSingle c = c `elem` ',' : ';' : '(' : ')' : '[' : ']' : '{' : '}' : '_' : '`' : []; 191.64/170.48 ; 191.64/170.48 isSym c = c `elem` '!' : '@' : '#' : '$' : '%' : '&' : '*' : '+' : '.' : '/' : '<' : '=' : '>' : '?' : '\' : '^' : '|' : ':' : '-' : '~' : []; 191.64/170.48 ; 191.64/170.48 lex11 c s True = (c : [],s) : []; 191.64/170.48 lex11 c s False = lex9 c s (isSym c); 191.64/170.48 ; 191.64/170.48 lex2 c vu59 = lex20 c vu59; 191.64/170.48 ; 191.64/170.48 lex20 c (sym,t) = (c : sym,t) : []; 191.64/170.48 lex20 c yw = []; 191.64/170.48 ; 191.64/170.48 lex3 c vu60 = lex30 c vu60; 191.64/170.48 ; 191.64/170.48 lex30 c (nam,t) = (c : nam,t) : []; 191.64/170.48 lex30 c yx = []; 191.64/170.48 ; 191.64/170.48 lex4 c ds vu61 = lex40 c ds vu61; 191.64/170.48 ; 191.64/170.48 lex40 c ds (fe,t) = (c : ds ++ fe,t) : []; 191.64/170.48 lex40 c ds yu = []; 191.64/170.48 ; 191.64/170.48 lex5 c vu62 = lex50 c vu62; 191.64/170.48 ; 191.64/170.48 lex50 c (ds,s) = concatMap (lex4 c ds) (lexFracExp s); 191.64/170.48 lex50 c yv = []; 191.64/170.48 ; 191.64/170.48 lex6 c s True = []; 191.64/170.48 ; 191.64/170.48 lex7 c s True = concatMap (lex5 c) (span isDigit s : []); 191.64/170.48 lex7 c s False = lex6 c s otherwise; 191.64/170.48 ; 191.64/170.48 lex8 c s True = concatMap (lex3 c) (span isIdChar s : []); 191.64/170.48 lex8 c s False = lex7 c s (isDigit c); 191.64/170.48 ; 191.64/170.48 lex9 c s True = concatMap (lex2 c) (span isSym s : []); 191.64/170.48 lex9 c s False = lex8 c s (isAlpha c); 191.64/170.48 ; 191.64/170.48 lexExp (e : s) = lexExp5 (e : s); 191.64/170.48 lexExp s = lexExp3 s; 191.64/170.48 ; 191.64/170.48 lexExp0 e c vu65 = lexExp00 e c vu65; 191.64/170.48 ; 191.64/170.48 lexExp00 e c (ds,u) = (e : c : ds,u) : []; 191.64/170.48 lexExp00 e c xv = []; 191.64/170.48 ; 191.64/170.48 lexExp1 e vu66 = lexExp10 e vu66; 191.64/170.48 ; 191.64/170.48 lexExp10 e (c : t) = lexExp100 e c t (c `elem` '+' : '-' : []); 191.64/170.48 lexExp10 e xx = []; 191.64/170.48 ; 191.64/170.48 lexExp100 e c t True = concatMap (lexExp0 e c) (lexDigits t); 191.64/170.48 lexExp100 e c t False = []; 191.64/170.48 ; 191.64/170.48 lexExp2 e vu67 = lexExp20 e vu67; 191.64/170.48 ; 191.64/170.48 lexExp20 e (ds,t) = (e : ds,t) : []; 191.64/170.48 lexExp20 e xw = []; 191.64/170.48 ; 191.64/170.48 lexExp3 s = ([],s) : []; 191.64/170.48 ; 191.64/170.48 lexExp4 e s True = concatMap (lexExp1 e) (s : []) ++ concatMap (lexExp2 e) (lexDigits s); 191.64/170.48 lexExp4 e s False = lexExp3 (e : s); 191.64/170.48 ; 191.64/170.48 lexExp5 (e : s) = lexExp4 e s (e `elem` 'e' : 'E' : []); 191.64/170.48 lexExp5 wvz = lexExp3 wvz; 191.64/170.48 ; 191.64/170.48 lexFracExp (wwv : wwy) = lexFracExp5 (wwv : wwy); 191.64/170.48 lexFracExp s = lexFracExp2 s; 191.64/170.48 ; 191.64/170.48 lexFracExp0 ds vu63 = lexFracExp00 ds vu63; 191.64/170.48 ; 191.64/170.48 lexFracExp00 ds (e,u) = ('.' : ds ++ e,u) : []; 191.64/170.48 lexFracExp00 ds xz = []; 191.64/170.48 ; 191.64/170.48 lexFracExp1 vu64 = lexFracExp10 vu64; 191.64/170.48 ; 191.64/170.48 lexFracExp10 (ds,t) = concatMap (lexFracExp0 ds) (lexExp t); 191.64/170.48 lexFracExp10 xy = []; 191.64/170.48 ; 191.64/170.48 lexFracExp2 s = lexExp s; 191.64/170.48 ; 191.64/170.48 lexFracExp3 wwv c cs True = concatMap lexFracExp1 (lexDigits (c : cs)); 191.64/170.48 lexFracExp3 wwv c cs False = lexFracExp2 (wwv : c : cs); 191.64/170.48 ; 191.64/170.48 lexFracExp4 True (wwv : c : cs) = lexFracExp3 wwv c cs (isDigit c); 191.64/170.48 lexFracExp4 wwz wxu = lexFracExp2 wxu; 191.64/170.48 ; 191.64/170.48 lexFracExp5 (wwv : wwy) = lexFracExp4 (wwv == '.') (wwv : wwy); 191.64/170.48 lexFracExp5 wxv = lexFracExp2 wxv; 191.64/170.48 } 191.64/170.48 " 191.64/170.48 are unpacked to the following functions on top level 191.64/170.48 "lex12LexExp1 e vu66 = lex12LexExp10 e vu66; 191.64/170.48 " 191.64/170.48 "lex12LexExp00 e c (ds,u) = (e : c : ds,u) : []; 191.64/170.48 lex12LexExp00 e c xv = []; 191.64/170.48 " 191.64/170.48 "lex12LexExp5 (e : s) = lex12LexExp4 e s (e `elem` 'e' : 'E' : []); 191.64/170.48 lex12LexExp5 wvz = lex12LexExp3 wvz; 191.64/170.48 " 191.64/170.48 "lex12IsSingle c = c `elem` ',' : ';' : '(' : ')' : '[' : ']' : '{' : '}' : '_' : '`' : []; 191.64/170.48 " 191.64/170.48 "lex12LexFracExp (wwv : wwy) = lex12LexFracExp5 (wwv : wwy); 191.64/170.48 lex12LexFracExp s = lex12LexFracExp2 s; 191.64/170.48 " 191.64/170.48 "lex12LexExp100 e c t True = concatMap (lex12LexExp0 e c) (lexDigits t); 191.64/170.48 lex12LexExp100 e c t False = []; 191.64/170.48 " 191.64/170.48 "lex12LexFracExp3 wwv c cs True = concatMap lex12LexFracExp1 (lexDigits (c : cs)); 191.64/170.48 lex12LexFracExp3 wwv c cs False = lex12LexFracExp2 (wwv : c : cs); 191.64/170.48 " 191.64/170.48 "lex12LexFracExp2 s = lex12LexExp s; 191.64/170.48 " 191.64/170.48 "lex12Lex9 c s True = concatMap (lex12Lex2 c) (span lex12IsSym s : []); 191.64/170.48 lex12Lex9 c s False = lex12Lex8 c s (isAlpha c); 191.64/170.48 " 191.64/170.48 "lex12LexFracExp4 True (wwv : c : cs) = lex12LexFracExp3 wwv c cs (isDigit c); 191.64/170.48 lex12LexFracExp4 wwz wxu = lex12LexFracExp2 wxu; 191.64/170.48 " 191.64/170.48 "lex12LexExp (e : s) = lex12LexExp5 (e : s); 191.64/170.48 lex12LexExp s = lex12LexExp3 s; 191.64/170.48 " 191.64/170.48 "lex12LexExp0 e c vu65 = lex12LexExp00 e c vu65; 191.64/170.48 " 191.64/170.48 "lex12IsSym c = c `elem` '!' : '@' : '#' : '$' : '%' : '&' : '*' : '+' : '.' : '/' : '<' : '=' : '>' : '?' : '\' : '^' : '|' : ':' : '-' : '~' : []; 191.64/170.48 " 191.64/170.48 "lex12LexExp20 e (ds,t) = (e : ds,t) : []; 191.64/170.48 lex12LexExp20 e xw = []; 191.64/170.48 " 191.64/170.48 "lex12Lex5 c vu62 = lex12Lex50 c vu62; 191.64/170.48 " 191.64/170.48 "lex12LexFracExp1 vu64 = lex12LexFracExp10 vu64; 191.64/170.48 " 191.64/170.48 "lex12LexExp3 s = ([],s) : []; 191.64/170.48 " 191.64/170.48 "lex12LexFracExp0 ds vu63 = lex12LexFracExp00 ds vu63; 191.64/170.48 " 191.64/170.48 "lex12LexExp2 e vu67 = lex12LexExp20 e vu67; 191.64/170.48 " 191.64/170.48 "lex12LexExp10 e (c : t) = lex12LexExp100 e c t (c `elem` '+' : '-' : []); 191.64/170.48 lex12LexExp10 e xx = []; 191.64/170.48 " 191.64/170.48 "lex12Lex4 c ds vu61 = lex12Lex40 c ds vu61; 191.64/170.48 " 191.64/170.48 "lex12LexFracExp5 (wwv : wwy) = lex12LexFracExp4 (wwv == '.') (wwv : wwy); 191.64/170.48 lex12LexFracExp5 wxv = lex12LexFracExp2 wxv; 191.64/170.48 " 191.64/170.48 "lex12Lex20 c (sym,t) = (c : sym,t) : []; 191.64/170.48 lex12Lex20 c yw = []; 191.64/170.48 " 191.64/170.48 "lex12LexFracExp00 ds (e,u) = ('.' : ds ++ e,u) : []; 191.64/170.48 lex12LexFracExp00 ds xz = []; 191.64/170.48 " 191.64/170.48 "lex12LexExp4 e s True = concatMap (lex12LexExp1 e) (s : []) ++ concatMap (lex12LexExp2 e) (lexDigits s); 191.64/170.48 lex12LexExp4 e s False = lex12LexExp3 (e : s); 191.64/170.48 " 191.64/170.48 "lex12Lex30 c (nam,t) = (c : nam,t) : []; 191.64/170.48 lex12Lex30 c yx = []; 191.64/170.48 " 191.64/170.48 "lex12Lex50 c (ds,s) = concatMap (lex12Lex4 c ds) (lex12LexFracExp s); 191.64/170.48 lex12Lex50 c yv = []; 191.64/170.48 " 191.64/170.48 "lex12Lex6 c s True = []; 191.64/170.48 " 191.64/170.48 "lex12Lex7 c s True = concatMap (lex12Lex5 c) (span isDigit s : []); 191.64/170.48 lex12Lex7 c s False = lex12Lex6 c s otherwise; 191.64/170.48 " 191.64/170.48 "lex12Lex8 c s True = concatMap (lex12Lex3 c) (span lex12IsIdChar s : []); 191.64/170.48 lex12Lex8 c s False = lex12Lex7 c s (isDigit c); 191.64/170.48 " 191.64/170.48 "lex12Lex40 c ds (fe,t) = (c : ds ++ fe,t) : []; 191.64/170.48 lex12Lex40 c ds yu = []; 191.64/170.48 " 191.64/170.48 "lex12IsIdChar c = isAlphaNum c || c `elem` '_' : ''' : []; 191.64/170.48 " 191.64/170.48 "lex12Lex3 c vu60 = lex12Lex30 c vu60; 191.64/170.48 " 191.64/170.48 "lex12Lex2 c vu59 = lex12Lex20 c vu59; 191.64/170.48 " 191.64/170.48 "lex12Lex11 c s True = (c : [],s) : []; 191.64/170.48 lex12Lex11 c s False = lex12Lex9 c s (lex12IsSym c); 191.64/170.48 " 191.64/170.48 "lex12LexFracExp10 (ds,t) = concatMap (lex12LexFracExp0 ds) (lex12LexExp t); 191.64/170.48 lex12LexFracExp10 xy = []; 191.64/170.48 " 191.64/170.48 The bindings of the following Let/Where expression 191.64/170.48 "lexLitChar1 c s (c /= '\') where { 191.64/170.48 lexEsc (c : s) = lexEsc16 (c : s); 191.64/170.48 lexEsc (yvu : yvx) = lexEsc14 (yvu : yvx); 191.64/170.48 lexEsc (yuv : s) = lexEsc11 (yuv : s); 191.64/170.48 lexEsc (xzw : s) = lexEsc8 (xzw : s); 191.64/170.48 lexEsc (vux : vuy) = lexEsc6 (vux : vuy); 191.64/170.48 lexEsc vuz = lexEsc3 vuz; 191.64/170.48 ; 191.64/170.48 lexEsc0 mne vu69 = lexEsc00 mne vu69; 191.64/170.48 ; 191.64/170.48 lexEsc00 mne ([],s') = (mne,s') : []; 191.64/170.48 lexEsc00 mne vvv = []; 191.64/170.48 ; 191.64/170.48 lexEsc1 s vu70 = lexEsc10 s vu70; 191.64/170.48 ; 191.64/170.48 lexEsc10 s (c,mne) = concatMap (lexEsc0 mne) (lexmatch mne s : []); 191.64/170.48 lexEsc10 s vvw = []; 191.64/170.48 ; 191.64/170.48 lexEsc11 (yuv : s) = lexEsc9 (yuv == 'o') (yuv : s); 191.64/170.48 lexEsc11 yuy = lexEsc8 yuy; 191.64/170.48 ; 191.64/170.48 lexEsc12 yvu c s True = ('^' : c : [],s) : []; 191.64/170.48 lexEsc12 yvu c s False = lexEsc11 (yvu : c : s); 191.64/170.48 ; 191.64/170.48 lexEsc13 True (yvu : c : s) = lexEsc12 yvu c s (c >= '@' && c <= '_'); 191.64/170.48 lexEsc13 yvy yvz = lexEsc11 yvz; 191.64/170.48 ; 191.64/170.48 lexEsc14 (yvu : yvx) = lexEsc13 (yvu == '^') (yvu : yvx); 191.64/170.48 lexEsc14 ywu = lexEsc11 ywu; 191.64/170.48 ; 191.64/170.48 lexEsc15 c s True = (c : [],s) : []; 191.64/170.48 lexEsc15 c s False = lexEsc14 (c : s); 191.64/170.48 ; 191.64/170.48 lexEsc16 (c : s) = lexEsc15 c s (c `elem` 'a' : 'b' : 'f' : 'n' : 'r' : 't' : 'v' : '\' : '"' : ''' : []); 191.64/170.48 lexEsc16 yww = lexEsc14 yww; 191.64/170.48 ; 191.64/170.48 lexEsc2 (pr : vvu) = pr : []; 191.64/170.48 lexEsc2 [] = []; 191.64/170.48 ; 191.64/170.48 lexEsc3 vuz = []; 191.64/170.48 ; 191.64/170.48 lexEsc4 vux vuy True = lexEsc2 (concatMap (lexEsc1 (vux : vuy)) table); 191.64/170.48 lexEsc4 vux vuy False = lexEsc3 (vux : vuy); 191.64/170.48 ; 191.64/170.48 lexEsc5 vux vuy True = span isDigit (vux : vuy) : []; 191.64/170.48 lexEsc5 vux vuy False = lexEsc4 vux vuy (isUpper vux); 191.64/170.48 ; 191.64/170.48 lexEsc6 (vux : vuy) = lexEsc5 vux vuy (isDigit vux); 191.64/170.48 lexEsc6 xzu = lexEsc3 xzu; 191.64/170.48 ; 191.64/170.48 lexEsc7 True (xzw : s) = prefix 'x' (span isHexDigit s) : []; 191.64/170.48 lexEsc7 xzx xzy = lexEsc6 xzy; 191.64/170.48 ; 191.64/170.48 lexEsc8 (xzw : s) = lexEsc7 (xzw == 'x') (xzw : s); 191.64/170.48 lexEsc8 xzz = lexEsc6 xzz; 191.64/170.48 ; 191.64/170.48 lexEsc9 True (yuv : s) = prefix 'o' (span isOctDigit s) : []; 191.64/170.48 lexEsc9 yuw yux = lexEsc8 yux; 191.64/170.48 ; 191.64/170.48 lexLitChar0 c s True = map (prefix '\') (lexEsc s); 191.64/170.48 ; 191.64/170.48 lexLitChar1 c s True = (c : [],s) : []; 191.64/170.48 lexLitChar1 c s False = lexLitChar0 c s otherwise; 191.64/170.48 ; 191.64/170.48 prefix c (t,s) = (c : t,s); 191.64/170.48 ; 191.64/170.48 table = ('\127','D' : 'E' : 'L' : []) : asciiTab; 191.64/170.48 } 191.64/170.48 " 191.64/170.48 are unpacked to the following functions on top level 191.64/170.48 "lexLitChar2Table = ('\127','D' : 'E' : 'L' : []) : asciiTab; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc1 s vu70 = lexLitChar2LexEsc10 s vu70; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc00 mne ([],s') = (mne,s') : []; 191.64/170.48 lexLitChar2LexEsc00 mne vvv = []; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc6 (vux : vuy) = lexLitChar2LexEsc5 vux vuy (isDigit vux); 191.64/170.48 lexLitChar2LexEsc6 xzu = lexLitChar2LexEsc3 xzu; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc10 s (c,mne) = concatMap (lexLitChar2LexEsc0 mne) (lexmatch mne s : []); 191.64/170.48 lexLitChar2LexEsc10 s vvw = []; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc7 True (xzw : s) = lexLitChar2Prefix 'x' (span isHexDigit s) : []; 191.64/170.48 lexLitChar2LexEsc7 xzx xzy = lexLitChar2LexEsc6 xzy; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc (c : s) = lexLitChar2LexEsc16 (c : s); 191.64/170.48 lexLitChar2LexEsc (yvu : yvx) = lexLitChar2LexEsc14 (yvu : yvx); 191.64/170.48 lexLitChar2LexEsc (yuv : s) = lexLitChar2LexEsc11 (yuv : s); 191.64/170.48 lexLitChar2LexEsc (xzw : s) = lexLitChar2LexEsc8 (xzw : s); 191.64/170.48 lexLitChar2LexEsc (vux : vuy) = lexLitChar2LexEsc6 (vux : vuy); 191.64/170.48 lexLitChar2LexEsc vuz = lexLitChar2LexEsc3 vuz; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc16 (c : s) = lexLitChar2LexEsc15 c s (c `elem` 'a' : 'b' : 'f' : 'n' : 'r' : 't' : 'v' : '\' : '"' : ''' : []); 191.64/170.48 lexLitChar2LexEsc16 yww = lexLitChar2LexEsc14 yww; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc15 c s True = (c : [],s) : []; 191.64/170.48 lexLitChar2LexEsc15 c s False = lexLitChar2LexEsc14 (c : s); 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc11 (yuv : s) = lexLitChar2LexEsc9 (yuv == 'o') (yuv : s); 191.64/170.48 lexLitChar2LexEsc11 yuy = lexLitChar2LexEsc8 yuy; 191.64/170.48 " 191.64/170.48 "lexLitChar2Prefix c (t,s) = (c : t,s); 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc9 True (yuv : s) = lexLitChar2Prefix 'o' (span isOctDigit s) : []; 191.64/170.48 lexLitChar2LexEsc9 yuw yux = lexLitChar2LexEsc8 yux; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc4 vux vuy True = lexLitChar2LexEsc2 (concatMap (lexLitChar2LexEsc1 (vux : vuy)) lexLitChar2Table); 191.64/170.48 lexLitChar2LexEsc4 vux vuy False = lexLitChar2LexEsc3 (vux : vuy); 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc2 (pr : vvu) = pr : []; 191.64/170.48 lexLitChar2LexEsc2 [] = []; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexLitChar0 c s True = map (lexLitChar2Prefix '\') (lexLitChar2LexEsc s); 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc13 True (yvu : c : s) = lexLitChar2LexEsc12 yvu c s (c >= '@' && c <= '_'); 191.64/170.48 lexLitChar2LexEsc13 yvy yvz = lexLitChar2LexEsc11 yvz; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc3 vuz = []; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc0 mne vu69 = lexLitChar2LexEsc00 mne vu69; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexLitChar1 c s True = (c : [],s) : []; 191.64/170.48 lexLitChar2LexLitChar1 c s False = lexLitChar2LexLitChar0 c s otherwise; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc14 (yvu : yvx) = lexLitChar2LexEsc13 (yvu == '^') (yvu : yvx); 191.64/170.48 lexLitChar2LexEsc14 ywu = lexLitChar2LexEsc11 ywu; 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc5 vux vuy True = span isDigit (vux : vuy) : []; 191.64/170.48 lexLitChar2LexEsc5 vux vuy False = lexLitChar2LexEsc4 vux vuy (isUpper vux); 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc12 yvu c s True = ('^' : c : [],s) : []; 191.64/170.48 lexLitChar2LexEsc12 yvu c s False = lexLitChar2LexEsc11 (yvu : c : s); 191.64/170.48 " 191.64/170.48 "lexLitChar2LexEsc8 (xzw : s) = lexLitChar2LexEsc7 (xzw == 'x') (xzw : s); 191.64/170.48 lexLitChar2LexEsc8 xzz = lexLitChar2LexEsc6 xzz; 191.64/170.48 " 191.64/170.48 The bindings of the following Let/Where expression 191.64/170.48 "readParen0 b where { 191.64/170.48 mandatory r = concatMap mandatory2 (lex r); 191.64/170.48 ; 191.64/170.48 mandatory0 x vu48 = mandatory00 x vu48; 191.64/170.48 ; 191.64/170.48 mandatory00 x (xwu : xwv,u) = mandatory002 x (xwu : xwv,u); 191.64/170.48 mandatory00 x zx = mandatory000 x zx; 191.64/170.48 ; 191.64/170.48 mandatory000 x zx = []; 191.64/170.48 ; 191.64/170.48 mandatory001 True x (xwu : [],u) = (x,u) : []; 191.64/170.48 mandatory001 xww xwx xwy = mandatory000 xwx xwy; 191.64/170.48 ; 191.64/170.48 mandatory002 x (xwu : xwv,u) = mandatory001 (xwu == ')') x (xwu : xwv,u); 191.64/170.48 mandatory002 xwz xxu = mandatory000 xwz xxu; 191.64/170.48 ; 191.64/170.48 mandatory1 vu49 = mandatory10 vu49; 191.64/170.48 ; 191.64/170.48 mandatory10 (x,t) = concatMap (mandatory0 x) (lex t); 191.64/170.48 mandatory10 zy = []; 191.64/170.48 ; 191.64/170.48 mandatory2 vu50 = mandatory20 vu50; 191.64/170.48 ; 191.64/170.48 mandatory20 (xuz : xvu,s) = mandatory202 (xuz : xvu,s); 191.64/170.48 mandatory20 zw = mandatory200 zw; 191.64/170.48 ; 191.64/170.48 mandatory200 zw = []; 191.64/170.48 ; 191.64/170.48 mandatory201 True (xuz : [],s) = concatMap mandatory1 (optional s); 191.64/170.48 mandatory201 xvv xvw = mandatory200 xvw; 191.64/170.48 ; 191.64/170.48 mandatory202 (xuz : xvu,s) = mandatory201 (xuz == '(') (xuz : xvu,s); 191.64/170.48 mandatory202 xvx = mandatory200 xvx; 191.64/170.48 ; 191.64/170.48 optional r = g r ++ mandatory r; 191.64/170.48 ; 191.64/170.48 readParen0 True = mandatory; 191.64/170.48 readParen0 False = optional; 191.64/170.48 } 191.64/170.48 " 191.64/170.48 are unpacked to the following functions on top level 191.64/170.48 "readParenMandatory002 yyu x (xwu : xwv,u) = readParenMandatory001 yyu (xwu == ')') x (xwu : xwv,u); 191.64/170.48 readParenMandatory002 yyu xwz xxu = readParenMandatory000 yyu xwz xxu; 191.64/170.48 " 191.64/170.48 "readParenMandatory202 yyu (xuz : xvu,s) = readParenMandatory201 yyu (xuz == '(') (xuz : xvu,s); 191.64/170.48 readParenMandatory202 yyu xvx = readParenMandatory200 yyu xvx; 191.64/170.48 " 191.64/170.48 "readParenMandatory001 yyu True x (xwu : [],u) = (x,u) : []; 191.64/170.48 readParenMandatory001 yyu xww xwx xwy = readParenMandatory000 yyu xwx xwy; 191.64/170.48 " 191.64/170.48 "readParenMandatory2 yyu vu50 = readParenMandatory20 yyu vu50; 191.64/170.48 " 191.64/170.48 "readParenMandatory10 yyu (x,t) = concatMap (readParenMandatory0 yyu x) (lex t); 191.64/170.48 readParenMandatory10 yyu zy = []; 191.64/170.48 " 191.64/170.48 "readParenMandatory00 yyu x (xwu : xwv,u) = readParenMandatory002 yyu x (xwu : xwv,u); 191.64/170.48 readParenMandatory00 yyu x zx = readParenMandatory000 yyu x zx; 191.64/170.48 " 191.64/170.48 "readParenMandatory000 yyu x zx = []; 191.64/170.48 " 191.64/170.48 "readParenMandatory0 yyu x vu48 = readParenMandatory00 yyu x vu48; 191.64/170.48 " 191.64/170.48 "readParenMandatory20 yyu (xuz : xvu,s) = readParenMandatory202 yyu (xuz : xvu,s); 191.64/170.48 readParenMandatory20 yyu zw = readParenMandatory200 yyu zw; 191.64/170.48 " 191.64/170.48 "readParenReadParen0 yyu True = readParenMandatory yyu; 191.64/170.48 readParenReadParen0 yyu False = readParenOptional yyu; 191.64/170.48 " 191.64/170.48 "readParenMandatory200 yyu zw = []; 191.64/170.48 " 191.64/170.48 "readParenOptional yyu r = yyu r ++ readParenMandatory yyu r; 191.64/170.48 " 191.64/170.48 "readParenMandatory yyu r = concatMap (readParenMandatory2 yyu) (lex r); 191.64/170.48 " 191.64/170.48 "readParenMandatory201 yyu True (xuz : [],s) = concatMap (readParenMandatory1 yyu) (readParenOptional yyu s); 191.64/170.48 readParenMandatory201 yyu xvv xvw = readParenMandatory200 yyu xvw; 191.64/170.48 " 191.64/170.48 "readParenMandatory1 yyu vu49 = readParenMandatory10 yyu vu49; 191.64/170.48 " 191.64/170.48 191.64/170.48 ---------------------------------------- 191.64/170.48 191.64/170.48 (12) 191.64/170.48 Obligation: 191.64/170.48 mainModule Main 191.64/170.48 module Main where { 191.64/170.48 import qualified Prelude; 191.64/170.48 } 191.64/170.48 191.64/170.48 ---------------------------------------- 191.64/170.48 191.64/170.48 (13) NumRed (SOUND) 191.64/170.48 Num Reduction:All numbers are transformed to their corresponding representation with Succ, Pred and Zero. 191.64/170.48 ---------------------------------------- 191.64/170.48 191.64/170.48 (14) 191.64/170.48 Obligation: 191.64/170.48 mainModule Main 191.64/170.48 module Main where { 191.64/170.48 import qualified Prelude; 191.64/170.48 } 191.64/170.52 EOF