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(declare (uses db))
(declare (uses tdb))
(declare (uses common))
;; (declare (uses dcommon)) ;; needed for the steps processing
(declare (uses items))
(declare (uses runconfig))
;; (declare (uses sdb))
(include "common_records.scm")
(include "key_records.scm")
(include "db_records.scm")
(include "run_records.scm")
(include "test_records.scm")
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(declare (uses db))
(declare (uses tdb))
(declare (uses common))
;; (declare (uses dcommon)) ;; needed for the steps processing
(declare (uses items))
(declare (uses runconfig))
;; (declare (uses sdb))
(declare (uses server))
(include "common_records.scm")
(include "key_records.scm")
(include "db_records.scm")
(include "run_records.scm")
(include "test_records.scm")
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(b-config (tests:testqueue-get-testconfig b-record))
(a-raw-pri (config-lookup a-config "requirements" "priority"))
(b-raw-pri (config-lookup b-config "requirements" "priority"))
(a-priority (mungepriority a-raw-pri))
(b-priority (mungepriority b-raw-pri)))
(tests:testqueue-set-priority! a-record a-priority)
(tests:testqueue-set-priority! b-record b-priority)
(debug:print 0 "a=" a ", b=" b ", a-waitons=" a-waitons ", b-waitons=" b-waitons)
(cond
;; is
((member a b-waitons) ;; is b waiting on a?
(debug:print 0 "case1")
#t)
((member b a-waitons) ;; is a waiting on b?
(debug:print 0 "case2")
#f)
((and (not (null? a-waitons)) ;; both have waitons - do not disturb
(not (null? b-waitons)))
(debug:print 0 "case2.1")
#t)
((and (null? a-waitons) ;; no waitons for a but b has waitons
(not (null? b-waitons)))
(debug:print 0 "case3")
#f)
((and (not (null? a-waitons)) ;; a has waitons but b does not
(null? b-waitons))
(debug:print 0 "case4")
#t)
((not (eq? a-priority b-priority)) ;; use
(> a-priority b-priority))
(else
(debug:print 0 "case5")
(string>? a b))))))
(sort-fn2
(lambda (a b)
(> (mungepriority (tests:testqueue-get-priority (hash-table-ref test-records a)))
(mungepriority (tests:testqueue-get-priority (hash-table-ref test-records b)))))))
;; (let ((dot-res (tests:run-dot (tests:tests->dot test-records) "plain")))
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(b-config (tests:testqueue-get-testconfig b-record))
(a-raw-pri (config-lookup a-config "requirements" "priority"))
(b-raw-pri (config-lookup b-config "requirements" "priority"))
(a-priority (mungepriority a-raw-pri))
(b-priority (mungepriority b-raw-pri)))
(tests:testqueue-set-priority! a-record a-priority)
(tests:testqueue-set-priority! b-record b-priority)
;; (debug:print 0 "a=" a ", b=" b ", a-waitons=" a-waitons ", b-waitons=" b-waitons)
(cond
;; is
((member a b-waitons) ;; is b waiting on a?
;; (debug:print 0 "case1")
#t)
((member b a-waitons) ;; is a waiting on b?
;; (debug:print 0 "case2")
#f)
((and (not (null? a-waitons)) ;; both have waitons - do not disturb
(not (null? b-waitons)))
;; (debug:print 0 "case2.1")
#t)
((and (null? a-waitons) ;; no waitons for a but b has waitons
(not (null? b-waitons)))
;; (debug:print 0 "case3")
#f)
((and (not (null? a-waitons)) ;; a has waitons but b does not
(null? b-waitons))
;; (debug:print 0 "case4")
#t)
((not (eq? a-priority b-priority)) ;; use
(> a-priority b-priority))
(else
;; (debug:print 0 "case5")
(string>? a b))))))
(sort-fn2
(lambda (a b)
(> (mungepriority (tests:testqueue-get-priority (hash-table-ref test-records a)))
(mungepriority (tests:testqueue-get-priority (hash-table-ref test-records b)))))))
;; (let ((dot-res (tests:run-dot (tests:tests->dot test-records) "plain")))
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(lambda ()
(let ((res (read-lines)))
;; (delete-file temp-path)
res))))))
(define (tests:write-dot-file test-records fname)
(if (file-write-access? (pathname-directory fname))
(map print (tests:tests->dot test-records))))
(define (tests:tests->dot test-records)
(let ((all-testnames (hash-table-keys test-records)))
(if (null? all-testnames)
'()
(let loop ((hed (car all-testnames))
(tal (cdr all-testnames))
(res (list "digraph tests {")))
(let* ((testrec (hash-table-ref test-records hed))
(waitons (or (tests:testqueue-get-waitons testrec) '()))
(newres (append res
(map (lambda (waiton)
(conc " " waiton " -> " hed))
waitons))))
(if (null? tal)
(append newres (list "}"))
(loop (car tal)(cdr tal) newres)
))))))
;; (tests:run-dot (list "digraph tests {" "a -> b" "}") "plain")
(define (tests:run-dot indat outtype) ;; outtype is plain, fig, dot, etc. http://www.graphviz.org/content/output-formats
(print "indat: ")
(map print indat)
(let-values (((inp oup pid)(process "dot" (list "-T" outtype))))
(let ((th1 (make-thread (lambda ()
(with-output-to-port oup
(lambda ()
(map print indat))))
"dot writer")))
(thread-start! th1)
(let ((res (with-input-from-port inp
(lambda ()
(read-lines)))))
(thread-join! th1)
(close-input-port inp)
(close-output-port oup)
;; (process-wait pid)
res))))
;; for each test:
;;
(define (tests:filter-non-runnable run-id testkeynames testrecordshash)
(let ((runnables '()))
(for-each
(lambda (testkeyname)
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(lambda ()
(let ((res (read-lines)))
;; (delete-file temp-path)
res))))))
(define (tests:write-dot-file test-records fname)
(if (file-write-access? (pathname-directory fname))
(with-output-to-file fname
(lambda ()
(map print (tests:tests->dot test-records))))))
(define (tests:tests->dot test-records)
(let ((all-testnames (hash-table-keys test-records)))
(if (null? all-testnames)
'()
(let loop ((hed (car all-testnames))
(tal (cdr all-testnames))
(res (list "digraph tests {")))
(let* ((testrec (hash-table-ref test-records hed))
(waitons (or (tests:testqueue-get-waitons testrec) '()))
(newres (append res
(if (null? waitons)
(list (conc " \"" hed "\";"))
(map (lambda (waiton)
(conc " \"" waiton "\" -> \"" hed "\";"))
waitons)
))))
(if (null? tal)
(append newres (list "}"))
(loop (car tal)(cdr tal) newres)
))))))
;; (tests:run-dot (list "digraph tests {" "a -> b" "}") "plain")
(define (tests:run-dot indat outtype) ;; outtype is plain, fig, dot, etc. http://www.graphviz.org/content/output-formats
(let-values (((inp oup pid)(process "env -i PATH=$PATH dot" (list "-T" outtype))))
(with-output-to-port oup
(lambda ()
(map print indat)))
(close-output-port oup)
(let ((res (with-input-from-port inp
(lambda ()
(read-lines)))))
(close-input-port inp)
res)))
;; read data from tmp file or create if not exists
;; if exists regen in background
;;
(define (tests:lazy-dot testrecords outtype)
(let ((dfile (conc "/tmp/." (current-user-name) "-" (server:mk-signature) ".dot"))
(fname (conc "/tmp/." (current-user-name) "-" (server:mk-signature) ".dotdat")))
(tests:write-dot-file testrecords dfile)
(if (file-exists? fname)
(let ((res (with-input-from-file fname
(lambda ()
(read-lines)))))
(system (conc "env -i PATH=$PATH dot -T " outtype " < " dfile " > " fname "&"))
res)
(begin
(system (conc "env -i PATH=$PATH dot -T " outtype " < " dfile " > " fname))
(with-input-from-file fname
(lambda ()
(read-lines)))))))
;; for each test:
;;
(define (tests:filter-non-runnable run-id testkeynames testrecordshash)
(let ((runnables '()))
(for-each
(lambda (testkeyname)
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