public static IEnumerable <WinUSBEnumeratedDevice> Enumerate() { return(WinUSBDevice.EnumerateDevices(new Guid("60d2a26c-1d22-4538-b7d5-337b2f07fff1"))); }
public static IEnumerable <WinUSBEnumeratedDevice> Enumerate() { return(WinUSBDevice.EnumerateDevices(new Guid("8ac47a88-cc26-4aa9-887b-42ca8cf07a63"))); }
// Temporary test application to validate functionality as it's being built. static void Main(string[] args) { Guid testGuid = new Guid("d2938a49-3191-4b25-ba33-e45f0828ced4"); Random r = new Random(); WinUSBEnumeratedDevice[] allDevices = WinUSBDevice.EnumerateAllDevices().ToArray(); foreach (WinUSBEnumeratedDevice devicePath in allDevices) { Console.Out.WriteLine(devicePath.ToString()); try { WinUSBDevice d = new WinUSBDevice(devicePath); try { DeviceDescriptor dev = d.GetDeviceDescriptor(); Console.Out.WriteLine(dev.ToString()); ConfigurationDescriptor cfg = d.GetConfigurationDescriptor(); Console.Out.WriteLine(cfg.ToString()); } finally { d.Close(); } } catch (Exception ex) { Console.Out.WriteLine("Exception while querying descriptors: {0}", ex); } } WinUSBEnumeratedDevice[] devices = WinUSBDevice.EnumerateDevices(testGuid).ToArray(); foreach (WinUSBEnumeratedDevice devicePath in devices) { Console.Out.WriteLine(devicePath); WinUSBDevice test = new WinUSBDevice(devicePath); // Try a data test. Test board just has OUT 3 looped back into IN 3 // Set pipe timeouts to avoid hanging forever. test.SetPipePolicy(0x03, WinUsbPipePolicy.PIPE_TRANSFER_TIMEOUT, 100); test.SetPipePolicy(0x83, WinUsbPipePolicy.PIPE_TRANSFER_TIMEOUT, 100); // Send some junk via OUT 3 byte[] data = new byte[128]; r.NextBytes(data); // Flush out any data that might have been here from a previous run... // Will take about as long as the transfer timeout. while (test.ReadPipe(0x83, 64).Length != 0) { ; } test.WritePipe(0x03, data); // read it back. byte[] returnData = test.ReadExactPipe(0x83, data.Length); for (int i = 0; i < data.Length; i++) { if (data[i] != returnData[i]) { throw new Exception("Error validating data returned from the device!"); } } Console.Out.WriteLine("Passed basic transfer test"); // Timeout test returnData = test.ReadPipe(0x83, 32); if (returnData.Length != 0) { throw new Exception("Pipe didn't timeout, where did it get that data?"); } Console.Out.WriteLine("Passed timeout test"); test.Close(); test.Close(); // checking that double close doesn't cause issues. } Console.Out.WriteLine("{0} device{1}", devices.Length, devices.Length == 1?"":"s"); WinUSBEnumeratedDevice[] hackrfs = HackRF.Enumerate().ToArray(); if (hackrfs.Length > 0) { Console.WriteLine("Connecting to hackrf device {0}", hackrfs[0].ToString()); HackRF rf = new HackRF(hackrfs[0]); Console.WriteLine("Version String: {0}", rf.ReadVersion()); // Do some benchmarking with the receive modes. rf.SetSampleRate(2000000); rf.ModeReceive(); rf.SetFrequency(100000000); // 100 MHz rf.SetSampleRate(10000000); int lastEaten = 0; int eaten = rf.PacketsEaten; long lastEatenBytes = 0; long eatenBytes = rf.BytesEaten; DateTime lastTime = DateTime.Now; while (true) { System.Threading.Thread.Sleep(2000); DateTime newTime = DateTime.Now; lastEaten = eaten; eaten = rf.PacketsEaten; lastEatenBytes = eatenBytes; eatenBytes = rf.BytesEaten; double seconds = newTime.Subtract(lastTime).TotalSeconds; double pps = (eaten - lastEaten) / seconds; double mbps = ((eatenBytes - lastEatenBytes) / seconds) / 1000000; lastTime = newTime; Console.WriteLine("Receiving... {0} {1:n2}pps {2:n4}MB/s", eaten, pps, mbps); string[] histogramData; lock (rf) { histogramData = rf.EatenHistogram.OrderByDescending(kv => kv.Value).Take(8).Select(kv => string.Format("{0}:{1}", kv.Key, kv.Value)).ToArray(); } Console.WriteLine(string.Join(" ", histogramData)); } } WinUSBEnumeratedDevice[] fadecandies = Fadecandy.Enumerate().ToArray(); if (fadecandies.Length > 0) { Fadecandy fc = new Fadecandy(fadecandies[0]); RgbRing ring = new RgbRing(24); double t = 0; while (true) { ring.Update(t); Array.Copy(ring.Ring, fc.Pixels, 24); fc.Pixels[64].G = Math.Sin(t) * 0.2 + 0.2; fc.FlushRange(0, 65); t += 0.01; System.Threading.Thread.Sleep(10); } } WinUSBEnumeratedDevice[] rgbbuttons = RgbButton.Enumerate().ToArray(); if (rgbbuttons.Length > 0) { RgbButton rb = new RgbButton(rgbbuttons[0]); #if false { // Put device into programming mode. rb.EnterProgrammingMode(); return; } #endif double t = 0; while (true) { rb.ButtonColors[0].G = Math.Sin(t) * 0.2 + 0.2; rb.ButtonColors[1].R = Math.Sin(t) * 0.2 + 0.2; rb.ButtonColors[2].G = 0.5 - rb.ButtonValues[0] / 256.0; rb.ButtonColors[2].R = 0.5 - rb.ButtonValues[1] / 256.0; rb.ButtonColors[2].B = 0.5 - rb.ButtonValues[3] / 256.0; rb.ButtonColors[3].B = (rb.DataCount & 1023) / 2048.0; rb.SendButtonColors(); t += 0.02; System.Threading.Thread.Sleep(20); Console.WriteLine("{0} {1} {2} {3}", rb.ButtonValues[0], rb.ButtonValues[1], rb.ButtonValues[2], rb.ButtonValues[3]); } } }
public static IEnumerable <WinUSBEnumeratedDevice> Enumerate() { return(WinUSBDevice.EnumerateDevices(new Guid("b86d3dd6-c9d8-4401-959b-efbbd9bf1f3c"))); }