2020-08-17 23:35:36 +02:00
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import time
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2020-08-14 21:18:42 +02:00
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fn do_rec_i64(ch chan i64) {
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mut sum := i64(0)
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for _ in 0 .. 300 {
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2020-08-17 23:35:36 +02:00
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sum += <-ch
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2020-08-14 21:18:42 +02:00
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}
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assert sum == 300 * (300 - 1) / 2
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}
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fn do_send_int(ch chan int) {
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for i in 0 .. 300 {
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2020-08-17 23:35:36 +02:00
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ch <- i
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2020-08-14 21:18:42 +02:00
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}
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}
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2022-04-15 13:58:56 +02:00
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fn do_send_u8(ch chan byte) {
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2020-08-14 21:18:42 +02:00
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for i in 0 .. 300 {
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2022-04-15 13:58:56 +02:00
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ch <- u8(i)
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2020-08-14 21:18:42 +02:00
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}
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}
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2020-08-17 23:35:36 +02:00
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fn do_send_i64(ch chan i64) {
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2020-08-14 21:18:42 +02:00
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for i in 0 .. 300 {
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2020-08-17 23:35:36 +02:00
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ch <- i
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2020-08-14 21:18:42 +02:00
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}
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}
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fn test_select() {
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chi := chan int{}
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2020-08-17 23:35:36 +02:00
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chl := chan i64{cap: 1}
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2020-08-14 21:18:42 +02:00
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chb := chan byte{cap: 10}
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recch := chan i64{cap: 0}
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go do_rec_i64(recch)
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go do_send_int(chi)
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2022-04-15 13:58:56 +02:00
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go do_send_u8(chb)
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2020-08-17 23:35:36 +02:00
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go do_send_i64(chl)
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2020-08-14 21:18:42 +02:00
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mut sum := i64(0)
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mut rl := i64(0)
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mut sl := i64(0)
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for _ in 0 .. 1200 {
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2020-09-20 03:50:09 +02:00
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select {
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ri := <-chi {
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2020-08-14 21:18:42 +02:00
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sum += ri
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}
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2020-09-20 03:50:09 +02:00
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recch <- sl {
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2020-08-14 21:18:42 +02:00
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sl++
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}
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2020-09-20 03:50:09 +02:00
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rl = <-chl {
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2020-08-14 21:18:42 +02:00
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sum += rl
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}
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2020-09-20 03:50:09 +02:00
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rb := <-chb {
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2020-08-14 21:18:42 +02:00
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sum += rb
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}
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}
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}
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// Use Gauß' formula for the first 2 contributions
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2020-10-14 21:51:16 +02:00
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// the 3rd contribution is `byte` and must be seen modulo 256
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2021-02-21 16:05:03 +01:00
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expected_sum := 2 * (300 * (300 - 1) / 2) + 256 * (256 - 1) / 2 + 44 * (44 - 1) / 2
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2020-08-14 21:18:42 +02:00
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assert sum == expected_sum
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2021-02-27 18:41:06 +01:00
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time.sleep(20 * time.millisecond) // to give assert in coroutine enough time
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2020-08-14 21:18:42 +02:00
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}
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