211 lines
9.2 KiB
Racket
211 lines
9.2 KiB
Racket
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(module thread mzscheme
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(require "kw.rkt" "contract.rkt")
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(provide run-server
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consumer-thread)
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#|
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t accepts a function, f, and creates a thread. It returns the thread and a
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function, g. When g is applied it passes it's argument to f, and evaluates
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the call of f in the time of the thread that was created. Calls to g do not
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block.
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|#
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(define/kw (consumer-thread f #:optional [init void])
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(unless (procedure? f) (raise-type-error 'consumer-thread "procedure" f))
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(let ([sema (make-semaphore 0)]
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[protect (make-semaphore 1)]
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[front-state null]
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[back-state null])
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(values
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(thread
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(letrec ([loop
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(lambda ()
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(semaphore-wait sema)
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(let ([local-state
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(begin
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(semaphore-wait protect)
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(if (null? back-state)
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(let ([new-front (reverse front-state)])
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(set! back-state (cdr new-front))
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(set! front-state null)
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(semaphore-post protect)
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(car new-front))
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(begin0
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(car back-state)
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(set! back-state (cdr back-state))
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(semaphore-post protect))))])
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(apply f local-state))
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(loop))])
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(lambda ()
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(init)
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(loop))))
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(procedure-reduce-arity
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(lambda new-state
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(semaphore-wait protect)
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(set! front-state (cons new-state front-state))
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(semaphore-post protect)
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(semaphore-post sema))
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(procedure-arity f)))))
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(define/kw (run-server port-number handler connection-timeout
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#:optional
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[handle-exn void]
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[tcp-listen tcp-listen]
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[tcp-close tcp-close]
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[tcp-accept tcp-accept]
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[tcp-accept/enable-break tcp-accept/enable-break])
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(let ([l (tcp-listen port-number 5 #t)]
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[can-break? (break-enabled)])
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(dynamic-wind
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void
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(lambda ()
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;; All connections should use the same parameterization,
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;; to facilitate transferring continuations from one
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;; connection to another:
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(let ([paramz (current-parameterization)])
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;; Loop to handle connections:
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(let loop ()
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(with-handlers ([exn:fail:network? handle-exn])
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;; Make a custodian for the next session:
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(let ([c (make-custodian)])
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(parameterize ([current-custodian c])
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;; disable breaks during session set-up...
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(parameterize-break #f
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;; ... but enable breaks while blocked on an accept:
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(let-values ([(r w) ((if can-break?
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tcp-accept/enable-break
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tcp-accept)
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l)])
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;; Handler thread:
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(let ([t (thread (lambda ()
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;; First, install the parameterization
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;; used for all connections:
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(call-with-parameterization
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paramz
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(lambda ()
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;; Install this connection's custodian
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;; for this thread in the shared
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;; parameterization:
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(current-custodian c)
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;; Enable breaking:
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(when can-break?
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(break-enabled #t))
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;; Call the handler
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(handler r w)))))])
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;; Clean-up and timeout thread:
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(thread (lambda ()
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(sync/timeout connection-timeout t)
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(when (thread-running? t)
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;; Only happens if connection-timeout is not #f
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(break-thread t))
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(sync/timeout connection-timeout t)
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(custodian-shutdown-all c)))))))))
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(loop))))
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(lambda () (tcp-close l)))))
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;; ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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;; Couroutine
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;; ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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;; An X-coroutine-object is
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;; (make-coroutine-object thread semaphore channel channel X)
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(define-struct coroutine-object (worker can-stop-lock done-ch ex-ch result))
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;; coroutine : ((bool ->) -> X) -> X-coroutine-object
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(define (coroutine f)
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;;(printf "2. new coroutine\n")
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(let* ([can-stop-lock (make-semaphore 1)]
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[done-ch (make-channel)]
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[ex-ch (make-channel)]
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[proceed-sema (make-semaphore)]
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[stop-enabled? #t]
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[enable-stop
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(lambda (enable?)
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;;(printf "3. enabling ~a\n" enable?)
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(cond
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[(and enable? (not stop-enabled?))
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(semaphore-post can-stop-lock)
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(set! stop-enabled? #t)]
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[(and (not enable?) stop-enabled?)
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(semaphore-wait can-stop-lock)
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(set! stop-enabled? #f)])
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;;(printf "3. finished enabling\n")
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)]
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[tid (thread (lambda ()
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(semaphore-wait proceed-sema)
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;;(printf "3. creating coroutine thread\n")
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(with-handlers ([(lambda (exn) #t)
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(lambda (exn)
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(enable-stop #t)
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(channel-put ex-ch exn))])
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(let ([v (f enable-stop)])
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(enable-stop #t)
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(channel-put done-ch v)))))])
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(begin0 (make-coroutine-object tid can-stop-lock done-ch ex-ch #f)
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(thread-suspend tid)
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(semaphore-post proceed-sema))))
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;; coroutine : real-number X-coroutine-object -> bool
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(define (coroutine-run timeout w)
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(if (coroutine-object-worker w)
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(let ([can-stop-lock (coroutine-object-can-stop-lock w)]
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[worker (coroutine-object-worker w)])
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#;(printf "2. starting coroutine\n")
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(thread-resume worker)
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(dynamic-wind
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void
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;; Let the co-routine run...
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(lambda ()
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(sync (choice-evt (wrap-evt (if (evt? timeout)
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timeout
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(alarm-evt (+ timeout (current-inexact-milliseconds))))
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(lambda (x)
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#;(printf "2. alarm-evt\n")
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(semaphore-wait can-stop-lock)
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(thread-suspend worker)
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(semaphore-post can-stop-lock)
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#f))
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(wrap-evt (coroutine-object-done-ch w)
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(lambda (res)
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#;(printf "2. coroutine-done-evt\n")
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(set-coroutine-object-result! w res)
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(coroutine-kill w)
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#t))
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(wrap-evt (coroutine-object-ex-ch w)
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(lambda (exn)
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#;(printf "2. ex-evt\n")
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(coroutine-kill w)
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(raise exn))))))
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;; In case we escape through a break:
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(lambda ()
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(when (thread-running? worker)
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(semaphore-wait can-stop-lock)
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(thread-suspend worker)
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(semaphore-post can-stop-lock)))))
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#t))
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;; coroutine-result : X-coroutine-object -> X
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(define (coroutine-result w)
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(coroutine-object-result w))
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;; coroutine-kill : X-coroutine-object ->
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(define (coroutine-kill w)
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(set-coroutine-object-can-stop-lock! w #f)
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(set-coroutine-object-done-ch! w #f)
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(set-coroutine-object-ex-ch! w #f)
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(when (coroutine-object-worker w)
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(kill-thread (coroutine-object-worker w))
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(set-coroutine-object-worker! w #f)))
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(define (coroutine? x)
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(coroutine-object? x))
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(provide coroutine?)
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(provide/contract
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(coroutine (((any/c . -> . any) . -> . any) . -> . coroutine?))
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(coroutine-run ((or/c evt? real?) coroutine? . -> . boolean?))
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(coroutine-result (coroutine? . -> . any))
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(coroutine-kill (coroutine? . -> . any))))
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