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Have `statprof.test' fail gracefully when samples could not be collected.
* test-suite/tests/statprof.test ("statistical sample counts within expected range"): Throw unresolved when one of A-DATA, B-DATA, and C-DATA is #f, which means samples were not collected for this one.
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1 changed files with 30 additions and 24 deletions
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@ -57,18 +57,18 @@
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;; Disable partial evaluation so that `(+ i i)' doesn't get
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;; stripped.
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(compile '(lambda (n)
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(do ((i 0 (+ i 1))) ((= 200 i)) (+ i i)))
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#:opts '(#:partial-eval? #f)))
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(do ((i 0 (+ i 1))) ((= 200 i)) (+ i i)))
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#:opts '(#:partial-eval? #f)))
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(define run-test
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(compile '(lambda (num-calls funcs)
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(let loop ((x num-calls) (funcs funcs))
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(cond
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((positive? x)
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((car funcs) x)
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(loop (- x 1) (cdr funcs))))))))
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(let loop ((x num-calls) (funcs funcs))
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(cond
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((positive? x)
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((car funcs) x)
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(loop (- x 1) (cdr funcs))))))))
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(let ((num-calls 80000)
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(funcs (circular-list (make-func) (make-func) (make-func))))
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(funcs (circular-list (make-func) (make-func) (make-func))))
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;; Run test. 20000 us == 200 Hz.
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(statprof-reset 0 20000 #f #f)
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@ -76,22 +76,28 @@
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(run-test num-calls funcs)
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(statprof-stop)
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(let* ((a-data (statprof-proc-call-data (car funcs)))
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(b-data (statprof-proc-call-data (cadr funcs)))
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(c-data (statprof-proc-call-data (caddr funcs)))
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(samples (map statprof-call-data-cum-samples
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(list a-data b-data c-data)))
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(average (/ (apply + samples) 3))
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(max-allowed-drift 0.30) ; 30%
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(diffs (map (lambda (x) (abs (- x average)))
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samples))
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(max-diff (apply max diffs)))
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(let ((a-data (statprof-proc-call-data (car funcs)))
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(b-data (statprof-proc-call-data (cadr funcs)))
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(c-data (statprof-proc-call-data (caddr funcs))))
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(if (and a-data b-data c-data)
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(let* ((samples (map statprof-call-data-cum-samples
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(list a-data b-data c-data)))
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(average (/ (apply + samples) 3))
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(max-allowed-drift 0.30) ; 30%
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(diffs (map (lambda (x) (abs (- x average)))
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samples))
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(max-diff (apply max diffs)))
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(let ((drift-fraction (/ max-diff average)))
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(or (< drift-fraction max-allowed-drift)
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;; don't stop the test suite for what statistically is
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;; bound to happen.
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(throw 'unresolved (pk average drift-fraction))))))))
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(let ((drift-fraction (/ max-diff average)))
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(or (< drift-fraction max-allowed-drift)
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;; don't stop the test suite for what statistically is
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;; bound to happen.
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(throw 'unresolved (pk average drift-fraction)))))
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;; Samples were not collected for at least one of the
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;; functions, possibly because NUM-CALLS is too low compared
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;; to the CPU speed.
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(throw 'unresolved (pk (list a-data b-data c-data))))))))
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(pass-if "accurate call counting"
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(when-implemented
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