// link the instance to a real YoctoAPI object internal override void linkToHardware(string hwdName) { YBuzzer hwd = YBuzzer.FindBuzzer(hwdName); // first redo base_init to update all _func pointers base_init(hwd, hwdName); // then setup Yocto-API pointers and callbacks init(hwd); }
// perform the 2nd stage setup that requires YoctoAPI object protected void init(YBuzzer hwd) { if (hwd == null) { return; } base.init(hwd); InternalStuff.log("registering Buzzer callback"); _func.registerValueCallback(valueChangeCallback); }
/** * <summary> * Retrieves a buzzer for a given identifier. * <para> * The identifier can be specified using several formats: * </para> * <para> * </para> * <para> * - FunctionLogicalName * </para> * <para> * - ModuleSerialNumber.FunctionIdentifier * </para> * <para> * - ModuleSerialNumber.FunctionLogicalName * </para> * <para> * - ModuleLogicalName.FunctionIdentifier * </para> * <para> * - ModuleLogicalName.FunctionLogicalName * </para> * <para> * </para> * <para> * This function does not require that the buzzer is online at the time * it is invoked. The returned object is nevertheless valid. * Use the method <c>YBuzzer.isOnline()</c> to test if the buzzer is * indeed online at a given time. In case of ambiguity when looking for * a buzzer by logical name, no error is notified: the first instance * found is returned. The search is performed first by hardware name, * then by logical name. * </para> * </summary> * <param name="func"> * a string that uniquely characterizes the buzzer * </param> * <returns> * a <c>YBuzzer</c> object allowing you to drive the buzzer. * </returns> */ public static YBuzzer FindBuzzer(string func) { YBuzzer obj; obj = (YBuzzer)YFunction._FindFromCache("Buzzer", func); if (obj == null) { obj = new YBuzzer(func); YFunction._AddToCache("Buzzer", func, obj); } return(obj); }
public static YBuzzerProxy FindBuzzer(string name) { // cases to handle: // name ="" no matching unknwn // name ="" unknown exists // name != "" no matching unknown // name !="" unknown exists YBuzzer func = null; YBuzzerProxy res = (YBuzzerProxy)YFunctionProxy.FindSimilarUnknownFunction("YBuzzerProxy"); if (name == "") { if (res != null) { return(res); } res = (YBuzzerProxy)YFunctionProxy.FindSimilarKnownFunction("YBuzzerProxy"); if (res != null) { return(res); } func = YBuzzer.FirstBuzzer(); if (func != null) { name = func.get_hardwareId(); if (func.get_userData() != null) { return((YBuzzerProxy)func.get_userData()); } } } else { func = YBuzzer.FindBuzzer(name); if (func.get_userData() != null) { return((YBuzzerProxy)func.get_userData()); } } if (res == null) { res = new YBuzzerProxy(func, name); } if (func != null) { res.linkToHardware(name); if (func.isOnline()) { res.arrival(); } } return(res); }
/** * <summary> * Enumerates all functions of type Buzzer available on the devices * currently reachable by the library, and returns their unique hardware ID. * <para> * Each of these IDs can be provided as argument to the method * <c>YBuzzer.FindBuzzer</c> to obtain an object that can control the * corresponding device. * </para> * </summary> * <returns> * an array of strings, each string containing the unique hardwareId * of a device function currently connected. * </returns> */ public static new string[] GetSimilarFunctions() { List <string> res = new List <string>(); YBuzzer it = YBuzzer.FirstBuzzer(); while (it != null) { res.Add(it.get_hardwareId()); it = it.nextBuzzer(); } return(res.ToArray()); }
public override async Task <int> Run() { try { await YAPI.RegisterHub(HubURL); YBuzzer buz; YColorLedCluster leds; YQuadratureDecoder qd; YAnButton button; if (Target.ToLower() == "any") { buz = YBuzzer.FirstBuzzer(); if (buz == null) { WriteLine("No module connected (check USB cable) "); return(-1); } } else { buz = YBuzzer.FindBuzzer(Target + ".buzzer"); } if (!await buz.isOnline()) { WriteLine("Module not connected (check identification and USB cable)"); return(-1); } string serial = await(await buz.get_module()).get_serialNumber(); leds = YColorLedCluster.FindColorLedCluster(serial + ".colorLedCluster"); button = YAnButton.FindAnButton(serial + ".anButton1"); qd = YQuadratureDecoder.FindQuadratureDecoder(serial + ".quadratureDecoder1"); if ((!await button.isOnline()) || (!await qd.isOnline())) { WriteLine("Make sure the Yocto-MaxiBuzzer is configured with at least one anButton and one quadrature Decoder"); return(-1); } WriteLine("press a test button, or turn the encoder or hit Ctrl-C"); int lastPos = (int)await qd.get_currentValue(); await buz.set_volume(75); while (await button.isOnline()) { if ((await button.get_isPressed() == YAnButton.ISPRESSED_TRUE) && (lastPos != 0)) { lastPos = 0; await qd.set_currentValue(0); await buz.playNotes("'E32 C8"); await leds.set_rgbColor(0, 1, 0x000000); } else { int p = (int)await qd.get_currentValue(); if (lastPos != p) { lastPos = p; await buz.pulse(notefreq(p), 500); await leds.set_hslColor(0, 1, 0x00FF7f | (p % 255) << 16); } } } } catch (YAPI_Exception ex) { WriteLine("error: " + ex.Message); } YAPI.FreeAPI(); return(0); }
public override async Task <int> Run() { try { await YAPI.RegisterHub(HubURL); YBuzzer buz; YColorLed led; YAnButton button1, button2; if (Target.ToLower() == "any") { buz = YBuzzer.FirstBuzzer(); if (buz == null) { WriteLine("No module connected (check USB cable) "); return(-1); } } else { buz = YBuzzer.FindBuzzer(Target + ".buzzer"); } if (!await buz.isOnline()) { WriteLine("Module not connected (check identification and USB cable)"); return(-1); } string serial = await(await buz.get_module()).get_serialNumber(); led = YColorLed.FindColorLed(serial + ".colorLed"); button1 = YAnButton.FindAnButton(serial + ".anButton1"); button2 = YAnButton.FindAnButton(serial + ".anButton2"); WriteLine("press a test button"); while (await buz.isOnline()) { int frequency, volume, color; bool b1 = (await button1.get_isPressed() == YAnButton.ISPRESSED_TRUE); bool b2 = (await button2.get_isPressed() == YAnButton.ISPRESSED_TRUE); if (b1 || b2) { if (b1) { volume = 60; frequency = 1500; color = 0xff0000; } else { volume = 30; color = 0x00ff00; frequency = 750; } await led.resetBlinkSeq(); await led.addRgbMoveToBlinkSeq(color, 100); await led.addRgbMoveToBlinkSeq(0, 100); await led.startBlinkSeq(); await buz.set_volume(volume); for (int i = 0; i < 5; i++) { // this can be done using sequence as well await buz.set_frequency(frequency); await buz.freqMove(2 *frequency, 250); await YAPI.Sleep(250); } await buz.set_frequency(0); await led.stopBlinkSeq(); await led.set_rgbColor(0); } } } catch (YAPI_Exception ex) { WriteLine("error: " + ex.Message); } YAPI.FreeAPI(); return(0); }
static void Main(string[] args) { string errmsg = ""; string target, serial; YBuzzer buz; YLed led, led1, led2; YAnButton button1, button2; if (args.Length < 1) { usage(); } target = args[0].ToUpper(); if (YAPI.RegisterHub("usb", ref errmsg) != YAPI.SUCCESS) { Console.WriteLine("RegisterHub error: " + errmsg); Environment.Exit(0); } if (target == "ANY") { buz = YBuzzer.FirstBuzzer(); if (buz == null) { Console.WriteLine("No module connected (check USB cable) "); Environment.Exit(0); } } else { buz = YBuzzer.FindBuzzer(target + ".buzzer"); } if (!buz.isOnline()) { Console.WriteLine("Module not connected"); Console.WriteLine("check identification and USB cable"); Environment.Exit(0); } serial = buz.get_module().get_serialNumber(); led1 = YLed.FindLed(serial + ".led1"); led2 = YLed.FindLed(serial + ".led2"); button1 = YAnButton.FindAnButton(serial + ".anButton1"); button2 = YAnButton.FindAnButton(serial + ".anButton2"); Console.WriteLine("press a test button or hit Ctrl-C"); while (buz.isOnline()) { int frequency; bool b1 = (button1.get_isPressed() == YAnButton.ISPRESSED_TRUE); bool b2 = (button2.get_isPressed() == YAnButton.ISPRESSED_TRUE); if (b1 || b2) { if (b1) { led = led1; frequency = 1500; } else { led = led2; frequency = 750; } led.set_power(YLed.POWER_ON); led.set_luminosity(100); led.set_blinking(YLed.BLINKING_PANIC); for (int i = 0; i < 5; i++) // this can be done using sequence as well { buz.set_frequency(frequency); buz.freqMove(2 * frequency, 250); YAPI.Sleep(250, ref errmsg); } buz.set_frequency(0); led.set_power(YLed.POWER_OFF); } } YAPI.FreeAPI(); }
static void Main(string[] args) { string errmsg = ""; string target, serial; YBuzzer buz; YColorLed led; YAnButton button1, button2; if (args.Length < 1) { usage(); } target = args[0].ToUpper(); if (YAPI.RegisterHub("usb", ref errmsg) != YAPI.SUCCESS) { Console.WriteLine("RegisterHub error: " + errmsg); Environment.Exit(0); } if (target == "ANY") { buz = YBuzzer.FirstBuzzer(); if (buz == null) { Console.WriteLine("No module connected (check USB cable) "); Environment.Exit(0); } } else { buz = YBuzzer.FindBuzzer(target + ".buzzer"); } if (!buz.isOnline()) { Console.WriteLine("Module not connected"); Console.WriteLine("check identification and USB cable"); Environment.Exit(0); } serial = buz.get_module().get_serialNumber(); led = YColorLed.FindColorLed(serial + ".colorLed"); button1 = YAnButton.FindAnButton(serial + ".anButton1"); button2 = YAnButton.FindAnButton(serial + ".anButton2"); Console.WriteLine("press a test button or hit Ctrl-C"); while (buz.isOnline()) { int frequency; int color; int volume; bool b1 = (button1.get_isPressed() == YAnButton.ISPRESSED_TRUE); bool b2 = (button2.get_isPressed() == YAnButton.ISPRESSED_TRUE); if (b1 || b2) { if (b1) { volume = 60; frequency = 1500; color = 0xff0000; } else { volume = 30; color = 0x00ff00; frequency = 750; } led.resetBlinkSeq(); led.addRgbMoveToBlinkSeq(color, 100); led.addRgbMoveToBlinkSeq(0, 100); led.startBlinkSeq(); buz.set_volume(volume); for (int i = 0; i < 5; i++) { // this can be done using sequence as well buz.set_frequency(frequency); buz.freqMove(2 * frequency, 250); YAPI.Sleep(250, ref errmsg); } buz.set_frequency(0); led.stopBlinkSeq(); led.set_rgbColor(0); } } YAPI.FreeAPI(); }
/** * <summary> * Retrieves a buzzer for a given identifier. * <para> * The identifier can be specified using several formats: * </para> * <para> * </para> * <para> * - FunctionLogicalName * </para> * <para> * - ModuleSerialNumber.FunctionIdentifier * </para> * <para> * - ModuleSerialNumber.FunctionLogicalName * </para> * <para> * - ModuleLogicalName.FunctionIdentifier * </para> * <para> * - ModuleLogicalName.FunctionLogicalName * </para> * <para> * </para> * <para> * This function does not require that the buzzer is online at the time * it is invoked. The returned object is nevertheless valid. * Use the method <c>YBuzzer.isOnline()</c> to test if the buzzer is * indeed online at a given time. In case of ambiguity when looking for * a buzzer by logical name, no error is notified: the first instance * found is returned. The search is performed first by hardware name, * then by logical name. * </para> * </summary> * <param name="func"> * a string that uniquely characterizes the buzzer * </param> * <returns> * a <c>YBuzzer</c> object allowing you to drive the buzzer. * </returns> */ public static YBuzzer FindBuzzer(string func) { YBuzzer obj; obj = (YBuzzer) YFunction._FindFromCache("Buzzer", func); if (obj == null) { obj = new YBuzzer(func); YFunction._AddToCache("Buzzer", func, obj); } return obj; }
// perform the initial setup that may be done without a YoctoAPI object (hwd can be null) internal override void base_init(YFunction hwd, string instantiationName) { _func = (YBuzzer)hwd; base.base_init(hwd, instantiationName); }
//--- (end of YBuzzer definitions) //--- (YBuzzer implementation) internal YBuzzerProxy(YBuzzer hwd, string instantiationName) : base(hwd, instantiationName) { InternalStuff.log("Buzzer " + instantiationName + " instantiation"); base_init(hwd, instantiationName); }
public override async Task <int> Run() { try { await YAPI.RegisterHub(HubURL); YBuzzer buz; YLed led, led1, led2; YAnButton button1, button2; if (Target.ToLower() == "any") { buz = YBuzzer.FirstBuzzer(); if (buz == null) { WriteLine("No module connected (check USB cable) "); return(-1); } } else { buz = YBuzzer.FindBuzzer(Target + ".buzzer"); } if (!await buz.isOnline()) { WriteLine("Module not connected (check identification and USB cable)"); return(-1); } string serial = await(await buz.get_module()).get_serialNumber(); led1 = YLed.FindLed(serial + ".led1"); led2 = YLed.FindLed(serial + ".led2"); button1 = YAnButton.FindAnButton(serial + ".anButton1"); button2 = YAnButton.FindAnButton(serial + ".anButton2"); WriteLine("press a test button"); while (await buz.isOnline()) { int frequency; bool b1 = (await button1.get_isPressed() == YAnButton.ISPRESSED_TRUE); bool b2 = (await button2.get_isPressed() == YAnButton.ISPRESSED_TRUE); if (b1 || b2) { if (b1) { led = led1; frequency = 1500; } else { led = led2; frequency = 750; } await led.set_power(YLed.POWER_ON); await led.set_luminosity(100); await led.set_blinking(YLed.BLINKING_PANIC); for (int i = 0; i < 5; i++) { // this can be done using sequence as well await buz.set_frequency(frequency); await buz.freqMove(2 *frequency, 250); await YAPI.Sleep(250); } await buz.set_frequency(0); await led.set_power(YLed.POWER_OFF); } } } catch (YAPI_Exception ex) { WriteLine("error: " + ex.Message); } YAPI.FreeAPI(); return(0); }