mirror of
https://github.com/janet-lang/janet
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280 lines
7.8 KiB
Plaintext
280 lines
7.8 KiB
Plaintext
# Copyright (c) 2023 Calvin Rose & contributors
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#
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# Permission is hereby granted, free of charge, to any person obtaining a copy
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# of this software and associated documentation files (the "Software"), to
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# deal in the Software without restriction, including without limitation the
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# rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
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# sell copies of the Software, and to permit persons to whom the Software is
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# furnished to do so, subject to the following conditions:
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#
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# The above copyright notice and this permission notice shall be included in
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# all copies or substantial portions of the Software.
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#
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# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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# FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
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# IN THE SOFTWARE.
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(import ./helper :prefix "" :exit true)
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(start-suite 9)
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# Subprocess
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(def janet (dyn :executable))
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(repeat 10
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(let [p (os/spawn [janet "-e" `(print "hello")`] :p {:out :pipe})]
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(os/proc-wait p)
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(def x (:read (p :out) :all))
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(assert (deep= "hello" (string/trim x)) "capture stdout from os/spawn pre close."))
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(let [p (os/spawn [janet "-e" `(print "hello")`] :p {:out :pipe})]
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(def x (:read (p :out) 1024))
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(os/proc-wait p)
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(assert (deep= "hello" (string/trim x)) "capture stdout from os/spawn post close."))
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(let [p (os/spawn [janet "-e" `(file/read stdin :line)`] :px {:in :pipe})]
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(:write (p :in) "hello!\n")
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(assert-no-error "pipe stdin to process" (os/proc-wait p))))
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(let [p (os/spawn [janet "-e" `(print (file/read stdin :line))`] :px {:in :pipe :out :pipe})]
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(:write (p :in) "hello!\n")
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(def x (:read (p :out) 1024))
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(assert-no-error "pipe stdin to process 2" (os/proc-wait p))
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(assert (= "hello!" (string/trim x)) "round trip pipeline in process"))
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(let [p (os/spawn [janet "-e" `(do (ev/sleep 30) (os/exit 24)`] :p)]
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(os/proc-kill p)
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(def retval (os/proc-wait p))
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(assert (not= retval 24) "Process was *not* terminated by parent"))
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# Parallel subprocesses
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(defn calc-1
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"Run subprocess, read from stdout, then wait on subprocess."
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[code]
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(let [p (os/spawn [janet "-e" (string `(printf "%j" ` code `)`)] :px {:out :pipe})]
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(os/proc-wait p)
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(def output (:read (p :out) :all))
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(parse output)))
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(assert
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(deep=
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(ev/gather
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(calc-1 "(+ 1 2 3 4)")
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(calc-1 "(+ 5 6 7 8)")
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(calc-1 "(+ 9 10 11 12)"))
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@[10 26 42]) "parallel subprocesses 1")
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(defn calc-2
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"Run subprocess, wait on subprocess, then read from stdout. Read only up to 10 bytes instead of :all"
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[code]
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(let [p (os/spawn [janet "-e" (string `(printf "%j" ` code `)`)] :px {:out :pipe})]
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(def output (:read (p :out) 10))
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(os/proc-wait p)
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(parse output)))
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(assert
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(deep=
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(ev/gather
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(calc-2 "(+ 1 2 3 4)")
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(calc-2 "(+ 5 6 7 8)")
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(calc-2 "(+ 9 10 11 12)"))
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@[10 26 42]) "parallel subprocesses 2")
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# File piping
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(assert-no-error "file writing 1"
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(with [f (file/temp)]
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(os/execute [janet "-e" `(repeat 20 (print :hello))`] :p {:out f})))
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(assert-no-error "file writing 2"
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(with [f (file/open "unique.txt" :w)]
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(os/execute [janet "-e" `(repeat 20 (print :hello))`] :p {:out f})
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(file/flush f)))
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# Issue #593
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(assert-no-error "file writing 3"
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(def outfile (file/open "unique.txt" :w))
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(os/execute [janet "-e" "(pp (seq [i :range (1 10)] i))"] :p {:out outfile})
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(file/flush outfile)
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(file/close outfile)
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(os/rm "unique.txt"))
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# Ensure that the stream created by os/open works
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(assert-no-error "File writing 4.1"
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(def outstream (os/open "unique.txt" :wct))
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(defer (:close outstream)
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(:write outstream "123\n")
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(:write outstream "456\n"))
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# Cast to string to enable comparison
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(assert (= "123\n456\n" (string (slurp "unique.txt"))) "File writing 4.2")
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(os/rm "unique.txt"))
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# Test that the stream created by os/open can be read from
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(comment
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(assert-no-error "File reading 1.1"
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(def outstream (os/open "unique.txt" :wct))
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(defer (:close outstream)
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(:write outstream "123\n")
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(:write outstream "456\n"))
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(def outstream (os/open "unique.txt" :r))
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(defer (:close outstream)
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(assert (= "123\n456\n" (string (:read outstream :all))) "File reading 1.2"))
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(os/rm "unique.txt")))
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# ev/gather
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(assert (deep= @[1 2 3] (ev/gather 1 2 3)) "ev/gather 1")
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(assert (deep= @[] (ev/gather)) "ev/gather 2")
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(assert-error "ev/gather 3" (ev/gather 1 2 (error 3)))
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# Net testing
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(repeat 10
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(defn handler
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"Simple handler for connections."
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[stream]
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(defer (:close stream)
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(def id (gensym))
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(def b @"")
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(net/read stream 1024 b)
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(net/write stream b)
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(buffer/clear b)))
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(def s (net/server "127.0.0.1" "8000" handler))
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(assert s "made server 1")
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(defn test-echo [msg]
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(with [conn (net/connect "127.0.0.1" "8000")]
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(net/write conn msg)
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(def res (net/read conn 1024))
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(assert (= (string res) msg) (string "echo " msg))))
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(test-echo "hello")
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(test-echo "world")
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(test-echo (string/repeat "abcd" 200))
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(:close s))
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# Test on both server and client
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(defn names-handler
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[stream]
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(defer (:close stream)
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# prevent immediate close
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(ev/read stream 1)
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(def [host port] (net/localname stream))
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(assert (= host "127.0.0.1") "localname host server")
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(assert (= port 8000) "localname port server")))
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# Test localname and peername
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(repeat 10
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(with [s (net/server "127.0.0.1" "8000" names-handler)]
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(repeat 10
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(with [conn (net/connect "127.0.0.1" "8000")]
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(def [host port] (net/peername conn))
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(assert (= host "127.0.0.1") "peername host client ")
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(assert (= port 8000) "peername port client")
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# let server close
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(ev/write conn " "))))
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(gccollect))
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# Create pipe
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(var pipe-counter 0)
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(def chan (ev/chan 10))
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(let [[reader writer] (os/pipe)]
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(ev/spawn
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(while (ev/read reader 3)
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(++ pipe-counter))
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(assert (= 20 pipe-counter) "ev/pipe 1")
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(ev/give chan 1))
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(for i 0 10
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(ev/write writer "xxx---"))
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(ev/close writer)
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(ev/take chan))
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(var result nil)
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(var fiber nil)
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(set fiber
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(ev/spawn
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(set result (protect (ev/sleep 10)))
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(assert (= result '(false "boop")) "ev/cancel 1")))
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(ev/sleep 0)
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(ev/cancel fiber "boop")
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(assert (os/execute [janet "-e" `(+ 1 2 3)`] :xp) "os/execute self")
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# Test some channel
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(def c1 (ev/chan))
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(def c2 (ev/chan))
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(def arr @[])
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(ev/spawn
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(while (def x (ev/take c1))
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(array/push arr x))
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(ev/chan-close c2))
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(for i 0 1000
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(ev/give c1 i))
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(ev/chan-close c1)
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(ev/take c2)
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(assert (= (slice arr) (slice (range 1000))) "ev/chan-close 1")
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(def c1 (ev/chan))
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(def c2 (ev/chan))
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(def arr @[])
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(ev/spawn
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(while (def x (ev/take c1))
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(array/push arr x))
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(ev/sleep 0.1)
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(ev/chan-close c2))
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(for i 0 100
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(ev/give c1 i))
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(ev/chan-close c1)
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(ev/select c2)
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(assert (= (slice arr) (slice (range 100))) "ev/chan-close 2")
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(def c1 (ev/chan))
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(def c2 (ev/chan))
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(def arr @[])
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(ev/spawn
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(while (def x (ev/take c1))
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(array/push arr x))
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(ev/chan-close c2))
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(for i 0 100
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(ev/give c1 i))
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(ev/chan-close c1)
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(ev/rselect c2)
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(assert (= (slice arr) (slice (range 100))) "ev/chan-close 3")
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# threaded channels
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(def ch (ev/thread-chan 2))
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(def att (ev/thread-chan 109))
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(assert att "`att` was nil after creation")
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(ev/give ch att)
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(ev/do-thread
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(assert (ev/take ch) "channel packing bug for threaded abstracts on threaded channels."))
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# marshal channels
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(def ch (ev/chan 10))
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(ev/give ch "hello")
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(ev/give ch "world")
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(def ch2 (-> ch marshal unmarshal))
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(def item1 (ev/take ch2))
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(def item2 (ev/take ch2))
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(assert (= item1 "hello"))
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(assert (= item2 "world"))
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(end-suite)
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