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Haskell 2019-04-01 06.52 pair #433316541
details
property
value
status
complete
benchmark
Prelude_readFloat_1.hs
ran by
Akihisa Yamada
cpu timeout
1200 seconds
wallclock timeout
300 seconds
memory limit
137438953472 bytes
execution host
n131.star.cs.uiowa.edu
space
full_haskell
run statistics
property
value
solver
AProVE
configuration
standard
runtime (wallclock)
199.099 seconds
cpu usage
228.783
user time
226.481
system time
2.30197
max virtual memory
1.828352E7
max residence set size
5323752.0
stage attributes
key
value
starexec-result
MAYBE
output
226.12/198.30 MAYBE 228.01/198.89 proof of /export/starexec/sandbox/benchmark/theBenchmark.hs 228.01/198.89 # AProVE Commit ID: 48fb2092695e11cc9f56e44b17a92a5f88ffb256 marcel 20180622 unpublished dirty 228.01/198.89 228.01/198.89 228.01/198.89 H-Termination with start terms of the given HASKELL could not be shown: 228.01/198.89 228.01/198.89 (0) HASKELL 228.01/198.89 (1) LR [EQUIVALENT, 0 ms] 228.01/198.89 (2) HASKELL 228.01/198.89 (3) CR [EQUIVALENT, 0 ms] 228.01/198.89 (4) HASKELL 228.01/198.89 (5) IFR [EQUIVALENT, 19 ms] 228.01/198.89 (6) HASKELL 228.01/198.89 (7) BR [EQUIVALENT, 0 ms] 228.01/198.89 (8) HASKELL 228.01/198.89 (9) COR [EQUIVALENT, 20 ms] 228.01/198.89 (10) HASKELL 228.01/198.89 (11) LetRed [EQUIVALENT, 55 ms] 228.01/198.89 (12) HASKELL 228.01/198.89 (13) NumRed [SOUND, 0 ms] 228.01/198.89 (14) HASKELL 228.01/198.89 228.01/198.89 228.01/198.89 ---------------------------------------- 228.01/198.89 228.01/198.89 (0) 228.01/198.89 Obligation: 228.01/198.89 mainModule Main 228.01/198.89 module Main where { 228.01/198.89 import qualified Prelude; 228.01/198.89 } 228.01/198.89 228.01/198.89 ---------------------------------------- 228.01/198.89 228.01/198.89 (1) LR (EQUIVALENT) 228.01/198.89 Lambda Reductions: 228.01/198.89 The following Lambda expression 228.01/198.89 "\nd->n * radix + d" 228.01/198.89 is transformed to 228.01/198.89 "readInt0 radix n d = n * radix + d; 228.01/198.89 " 228.01/198.89 The following Lambda expression 228.01/198.89 "\vu77->case vu77 of { 228.01/198.89 (ds,r) -> (foldl1 (readInt0 radix) (map (fromIntegral . digToInt) ds),r) : []; 228.01/198.89 _ -> []} 228.01/198.89 " 228.01/198.89 is transformed to 228.01/198.89 "readInt1 radix digToInt vu77 = case vu77 of { 228.01/198.89 (ds,r) -> (foldl1 (readInt0 radix) (map (fromIntegral . digToInt) ds),r) : []; 228.01/198.89 _ -> []} 228.01/198.89 ; 228.01/198.89 " 228.01/198.89 The following Lambda expression 228.01/198.89 "\vu54->case vu54 of { 228.01/198.89 (ch,''' : t) -> if ch /= ''' : [] then (''' : ch ++ ''' : [],t) : [] else []; 228.01/198.89 _ -> []} 228.01/198.89 " 228.01/198.89 is transformed to 228.01/198.89 "lex0 vu54 = case vu54 of { 228.01/198.89 (ch,''' : t) -> if ch /= ''' : [] then (''' : ch ++ ''' : [],t) : [] else []; 228.01/198.89 _ -> []} 228.01/198.89 ; 228.01/198.89 " 228.01/198.89 The following Lambda expression 228.01/198.89 "\vu56->case vu56 of { 228.01/198.89 (str,u) -> (ch ++ str,u) : []; 228.01/198.89 _ -> []} 228.01/198.89 " 228.01/198.89 is transformed to 228.01/198.89 "lexString0 ch vu56 = case vu56 of { 228.01/198.89 (str,u) -> (ch ++ str,u) : []; 228.01/198.89 _ -> []} 228.01/198.89 ; 228.01/198.89 " 228.01/198.89 The following Lambda expression 228.01/198.89 "\vu57->case vu57 of { 228.01/198.89 (ch,t) -> concatMap (lexString0 ch) (lexString t); 228.01/198.89 _ -> []} 228.01/198.89 " 228.01/198.89 is transformed to 228.01/198.89 "lexString1 vu57 = case vu57 of { 228.01/198.89 (ch,t) -> concatMap (lexString0 ch) (lexString t); 228.01/198.89 _ -> []} 228.01/198.89 ; 228.01/198.89 " 228.01/198.89 The following Lambda expression 228.01/198.89 "\vu58->case vu58 of { 228.01/198.89 '\' : t -> ([],t) : []; 228.01/198.89 _ -> []} 228.01/198.89 " 228.01/198.89 is transformed to 228.01/198.89 "lexStrItem0 vu58 = case vu58 of { 228.01/198.89 '\' : t -> ([],t) : []; 228.01/198.89 _ -> []} 228.01/198.89 ; 228.01/198.89 " 228.01/198.89 The following Lambda expression 228.01/198.89 "\vu55->case vu55 of { 228.01/198.89 (str,t) -> ('"' : str,t) : [];
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