210 lines
		
	
	
		
			4.8 KiB
		
	
	
	
		
			Factor
		
	
	
		
			Executable File
		
	
			
		
		
	
	
			210 lines
		
	
	
		
			4.8 KiB
		
	
	
	
		
			Factor
		
	
	
		
			Executable File
		
	
! Copyright (C) 2004, 2008 Slava Pestov.
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! Copyright (C) 2005 Mackenzie Straight.
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! See http://factorcode.org/license.txt for BSD license.
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IN: threads
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USING: arrays hashtables heaps kernel kernel.private math
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namespaces sequences vectors continuations continuations.private
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dlists assocs system combinators init boxes ;
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SYMBOL: initial-thread
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TUPLE: thread
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name quot exit-handler
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id
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continuation state
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mailbox variables sleep-entry ;
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: self ( -- thread ) 40 getenv ; inline
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! Thread-local storage
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: tnamespace ( -- assoc )
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    self dup thread-variables
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    [ ] [ H{ } clone dup rot set-thread-variables ] ?if ;
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: tget ( key -- value )
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    self thread-variables at ;
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: tset ( value key -- )
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    tnamespace set-at ;
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: tchange ( key quot -- )
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    tnamespace change-at ; inline
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: threads 41 getenv ;
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: thread ( id -- thread ) threads at ;
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: thread-registered? ( thread -- ? )
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    thread-id threads key? ;
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: check-unregistered
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    dup thread-registered?
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    [ "Thread already stopped" throw ] when ;
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: check-registered
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    dup thread-registered?
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    [ "Thread is not running" throw ] unless ;
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<PRIVATE
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: register-thread ( thread -- )
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    check-unregistered dup thread-id threads set-at ;
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: unregister-thread ( thread -- )
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    check-registered thread-id threads delete-at ;
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: set-self ( thread -- ) 40 setenv ; inline
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PRIVATE>
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: <thread> ( quot name -- thread )
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    \ thread counter <box> [ ] {
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        set-thread-quot
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        set-thread-name
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        set-thread-id
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        set-thread-continuation
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        set-thread-exit-handler
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    } \ thread construct ;
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: run-queue 42 getenv ;
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: sleep-queue 43 getenv ;
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: resume ( thread -- )
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    f over set-thread-state
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    check-registered run-queue push-front ;
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: resume-now ( thread -- )
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    f over set-thread-state
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    check-registered run-queue push-back ;
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: resume-with ( obj thread -- )
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    f over set-thread-state
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    check-registered 2array run-queue push-front ;
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: sleep-time ( -- ms/f )
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    {
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        { [ run-queue dlist-empty? not ] [ 0 ] }
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        { [ sleep-queue heap-empty? ] [ f ] }
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        { [ t ] [ sleep-queue heap-peek nip millis [-] ] }
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    } cond ;
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<PRIVATE
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: schedule-sleep ( thread ms -- )
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    >r check-registered dup r> sleep-queue heap-push*
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    swap set-thread-sleep-entry ;
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: expire-sleep? ( heap -- ? )
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    dup heap-empty?
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    [ drop f ] [ heap-peek nip millis <= ] if ;
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: expire-sleep ( thread -- )
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    f over set-thread-sleep-entry resume ;
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: expire-sleep-loop ( -- )
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    sleep-queue
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    [ dup expire-sleep? ]
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    [ dup heap-pop drop expire-sleep ]
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    [ ] while
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    drop ;
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: next ( -- * )
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    expire-sleep-loop
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    run-queue dup dlist-empty? [
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        ! We should never be in a state where the only threads
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        ! are sleeping; the I/O wait thread is always runnable.
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        ! However, if it dies, we handle this case
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        ! semi-gracefully.
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        !
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        ! And if sleep-time outputs f, there are no sleeping
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        ! threads either... so WTF.
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        drop sleep-time [ die 0 ] unless* (sleep) next
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    ] [
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        pop-back
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        dup array? [ first2 ] [ f swap ] if dup set-self
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        f over set-thread-state
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        thread-continuation box>
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        continue-with
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    ] if ;
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PRIVATE>
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: stop ( -- )
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    self dup thread-exit-handler call
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    unregister-thread next ;
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: suspend ( quot state -- obj )
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    [
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        self thread-continuation >box
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        self set-thread-state
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        self swap call next
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    ] callcc1 2nip ; inline
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: yield ( -- ) [ resume ] f suspend drop ;
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GENERIC: sleep-until ( time/f -- )
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M: integer sleep-until
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    [ schedule-sleep ] curry "sleep" suspend drop ;
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M: f sleep-until
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    drop [ drop ] "interrupt" suspend drop ;
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GENERIC: sleep ( ms -- )
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M: real sleep
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    millis + >integer sleep-until ;
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: interrupt ( thread -- )
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    dup thread-state [
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        dup thread-sleep-entry [ sleep-queue heap-delete ] when*
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        f over set-thread-sleep-entry
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        dup resume
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    ] when drop ;
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: (spawn) ( thread -- )
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    [
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        resume-now [
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            dup set-self
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            dup register-thread
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            V{ } set-catchstack
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            { } set-retainstack
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            >r { } set-datastack r>
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            thread-quot [ call stop ] call-clear
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        ] 1 (throw)
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    ] "spawn" suspend 2drop ;
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: spawn ( quot name -- thread )
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    <thread> [ (spawn) ] keep ;
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: spawn-server ( quot name -- thread )
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    >r [ [ ] [ ] while ] curry r> spawn ;
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: in-thread ( quot -- )
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    >r datastack namestack r>
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    [ >r set-namestack set-datastack r> call ] 3curry
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    "Thread" spawn drop ;
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GENERIC: error-in-thread ( error thread -- )
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<PRIVATE
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: init-threads ( -- )
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    H{ } clone 41 setenv
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    <dlist> 42 setenv
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    <min-heap> 43 setenv
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    initial-thread global
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    [ drop f "Initial" <thread> ] cache
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    <box> over set-thread-continuation
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    f over set-thread-state
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    dup register-thread
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    set-self ;
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[ self error-in-thread stop ]
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thread-error-hook set-global
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PRIVATE>
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[ init-threads ] "threads" add-init-hook
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