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093_async9: small fixes
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@@ -33,7 +33,7 @@
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// Let's try a slightly simplified example from signal processing:
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// Suppose we're looking for the beginning of a signal above the noise
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// level. To do this, we compare each entry from beginning to end with
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// the threshold.To speed things up a bit, we split the signal into
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// the threshold. To speed things up a bit, we split the signal into
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// two halves and have two parallel workers search for them.
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// Who finds the beginning first "wins" and thus ends the other one.
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//
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@@ -61,10 +61,11 @@ pub fn main(init: std.process.Init) !void {
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var queue = Io.Queue(SearchResult).init(&buf);
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// Launch two workers, each searching half the array.
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var f1 = ???(searchRange, .{ data[0..mid], target, 0, 0, &queue, io });
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// Remember, we want them to be guaranteed separate units of concurrency.
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var f1 = ???(searchThreshold, .{ io, data[0..mid], threshold, 0, 0, &queue });
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defer _ = f1.cancel(io);
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var f2 = ???(searchRange, .{ data[mid..], target, mid, 1, &queue, io });
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var f2 = ???(searchThreshold, .{ io, data[mid..], threshold, mid, 1, &queue });
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defer _ = f2.cancel(io);
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// Wait for the first result.
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@@ -87,7 +88,7 @@ fn searchThreshold(
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// all workers would continue until the end.
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io.sleep(Io.Duration.fromMilliseconds(1), .awake) catch return;
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// To test this, you can view the work of the workers
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// To test this, you can uncomment this to view the work of the workers
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// and then comment out the pause.
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// print("id: {} - val: {}\n", .{ worker_id, val });
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@@ -100,4 +101,3 @@ fn searchThreshold(
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}
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}
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}
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