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166 lines
3.3 KiB
Plaintext
166 lines
3.3 KiB
Plaintext
module std::thread::channel(<Type>);
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distinct BufferedChannel = void*;
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struct BufferedChannelImpl @private
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{
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Allocator allocator;
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Mutex mu;
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bool closed;
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usz size;
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usz elems;
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usz sendx;
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usz send_waiting;
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ConditionVariable send_cond;
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usz readx;
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usz read_waiting;
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ConditionVariable read_cond;
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Type[?] buf;
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}
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fn void! BufferedChannel.new_init(&self, usz size = 1)
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{
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return self.init(size, allocator::heap());
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}
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fn void! BufferedChannel.init(&self, usz size = 1, Allocator allocator)
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{
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BufferedChannelImpl* channel = allocator::new_with_padding(allocator, BufferedChannelImpl, Type.sizeof * size)!;
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defer catch allocator::free(allocator, channel);
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channel.allocator = allocator;
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channel.size = size;
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channel.elems = 0;
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channel.sendx = 0;
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channel.send_waiting = 0;
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channel.readx = 0;
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channel.read_waiting = 0;
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channel.mu.init()!;
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defer catch (void)channel.mu.destroy();
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channel.send_cond.init()!;
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defer catch (void)channel.send_cond.destroy();
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channel.read_cond.init()!;
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defer catch (void)channel.read_cond.destroy();
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*self = (BufferedChannel)channel;
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}
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fn void! BufferedChannel.destroy(&self)
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{
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BufferedChannelImpl* channel = (BufferedChannelImpl*)(*self);
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anyfault err = @catch(channel.mu.destroy());
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err = @catch(channel.send_cond.destroy()) ?: err;
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err = @catch(channel.read_cond.destroy()) ?: err;
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allocator::free(channel.allocator, channel);
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*self = null;
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if (err) return err?;
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}
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fn void! BufferedChannel.push(self, Type val)
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{
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BufferedChannelImpl* channel = (BufferedChannelImpl*)self;
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channel.mu.lock()!;
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defer catch (void)channel.mu.unlock();
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// if channel is full -> wait
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while (channel.elems == channel.size && !channel.closed)
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{
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channel.send_waiting++;
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channel.send_cond.wait(&channel.mu)!;
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channel.send_waiting--;
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}
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// check if channel is closed
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if (channel.closed) return ThreadFault.CHANNEL_CLOSED?;
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// save value to buf
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channel.buf[channel.sendx] = val;
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// move pointer
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channel.sendx++;
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if (channel.sendx == channel.size)
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{
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channel.sendx = 0;
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}
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// channelge elems counter
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channel.elems++;
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// if someone is waiting -> awake him
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if (channel.read_waiting > 0)
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{
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channel.read_cond.signal()!;
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}
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channel.mu.unlock()!;
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}
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fn Type! BufferedChannel.pop(self)
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{
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BufferedChannelImpl* channel = (BufferedChannelImpl*)self;
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channel.mu.lock()!;
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defer catch (void)channel.mu.unlock();
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// if chan is empty -> wait for sender
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while (channel.elems == 0 && !channel.closed)
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{
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channel.read_waiting++;
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channel.read_cond.wait(&channel.mu)!;
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channel.read_waiting--;
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}
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// check if chan is closed and empty
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if (channel.closed && channel.elems == 0)
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{
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return ThreadFault.CHANNEL_CLOSED?;
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}
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// read from buf
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Type ret = channel.buf[channel.readx];
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// move pointer
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channel.readx++;
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if (channel.readx == channel.size)
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{
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channel.readx = 0;
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}
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// change elems counter
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channel.elems--;
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// if someone is waiting -> awake him
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if (channel.send_waiting > 0)
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{
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channel.send_cond.signal()!;
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}
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channel.mu.unlock()!;
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return ret;
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}
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fn void! BufferedChannel.close(self)
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{
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BufferedChannelImpl* channel = (BufferedChannelImpl*)self;
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anyfault err = @catch(channel.mu.lock());
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channel.closed = true;
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err = @catch(channel.read_cond.broadcast()) ?: err;
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err = @catch(channel.send_cond.broadcast()) ?: err;
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err = @catch(channel.mu.unlock()) ?: err;
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if (err) return err?;
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}
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