3      Copyright (C) Dean Camera, 2013. 
   5   dean [at] fourwalledcubicle [dot] com 
  10   Copyright 2013  Dean Camera (dean [at] fourwalledcubicle [dot] com) 
  12   Permission to use, copy, modify, distribute, and sell this 
  13   software and its documentation for any purpose is hereby granted 
  14   without fee, provided that the above copyright notice appear in 
  15   all copies and that both that the copyright notice and this 
  16   permission notice and warranty disclaimer appear in supporting 
  17   documentation, and that the name of the author not be used in 
  18   advertising or publicity pertaining to distribution of the 
  19   software without specific, written prior permission. 
  21   The author disclaims all warranties with regard to this 
  22   software, including all implied warranties of merchantability 
  23   and fitness.  In no event shall the author be liable for any 
  24   special, indirect or consequential damages or any damages 
  25   whatsoever resulting from loss of use, data or profits, whether 
  26   in an action of contract, negligence or other tortious action, 
  27   arising out of or in connection with the use or performance of 
  33  *  Main source file for the AudioOutput demo. This file contains the main tasks of the demo and 
  34  *  is responsible for the initial application hardware configuration. 
  37 #include "AudioOutput.h" 
  39 /** Flag to indicate if the streaming audio alternative interface has been selected by the host. */ 
  40 static bool StreamingAudioInterfaceSelected 
= false; 
  42 /** Current audio sampling frequency of the streaming audio endpoint. */ 
  43 static uint32_t CurrentAudioSampleFrequency 
= 48000; 
  46 /** Main program entry point. This routine contains the overall program flow, including initial 
  47  *  setup of all components and the main program loop. 
  53         LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY
); 
  54         GlobalInterruptEnable(); 
  62 /** Configures the board hardware and chip peripherals for the demo's functionality. */ 
  63 void SetupHardware(void) 
  65 #if (ARCH == ARCH_AVR8) 
  66         /* Disable watchdog if enabled by bootloader/fuses */ 
  67         MCUSR 
&= ~(1 << WDRF
); 
  70         /* Disable clock division */ 
  71         clock_prescale_set(clock_div_1
); 
  74         /* Hardware Initialization */ 
  79 /** Event handler for the USB_Connect event. This indicates that the device is enumerating via the status LEDs, and 
  80  *  configures the sample update and PWM timers. 
  82 void EVENT_USB_Device_Connect(void) 
  84         /* Indicate USB enumerating */ 
  85         LEDs_SetAllLEDs(LEDMASK_USB_ENUMERATING
); 
  87         /* Sample reload timer initialization */ 
  88         TIMSK0 
= (1 << OCIE0A
); 
  89         OCR0A  
= ((F_CPU 
/ 8 / CurrentAudioSampleFrequency
) - 1); 
  90         TCCR0A 
= (1 << WGM01
);  // CTC mode 
  91         TCCR0B 
= (1 << CS01
);   // Fcpu/8 speed 
  93         #if defined(AUDIO_OUT_MONO) 
  94         /* Set speaker as output */ 
  96         #elif defined(AUDIO_OUT_STEREO) 
  97         /* Set speakers as outputs */ 
  98         DDRC  
|= ((1 << 6) | (1 << 5)); 
  99         #elif defined(AUDIO_OUT_PORTC) 
 100         /* Set PORTC as outputs */ 
 104         #if (defined(AUDIO_OUT_MONO) || defined(AUDIO_OUT_STEREO)) 
 105         /* PWM speaker timer initialization */ 
 106         TCCR3A 
= ((1 << WGM30
) | (1 << COM3A1
) | (1 << COM3A0
) 
 107                                | (1 << COM3B1
) | (1 << COM3B0
)); // Set on match, clear on TOP 
 108         TCCR3B 
= ((1 << WGM32
) | (1 << CS30
));  // Fast 8-Bit PWM, F_CPU speed 
 112 /** Event handler for the USB_Disconnect event. This indicates that the device is no longer connected to a host via 
 113  *  the status LEDs, disables the sample update and PWM output timers and stops the USB and Audio management tasks. 
 115 void EVENT_USB_Device_Disconnect(void) 
 117         /* Stop the timers */ 
 119         #if (defined(AUDIO_OUT_MONO) || defined(AUDIO_OUT_STEREO)) 
 123         #if defined(AUDIO_OUT_MONO) 
 124         /* Set speaker as input to reduce current draw */ 
 126         #elif defined(AUDIO_OUT_STEREO) 
 127         /* Set speakers as inputs to reduce current draw */ 
 128         DDRC  
&= ~((1 << 6) | (1 << 5)); 
 129         #elif defined(AUDIO_OUT_PORTC) 
 134         /* Indicate streaming audio interface not selected */ 
 135         StreamingAudioInterfaceSelected 
= false; 
 137         /* Indicate USB not ready */ 
 138         LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY
); 
 141 /** Event handler for the USB_ConfigurationChanged event. This is fired when the host set the current configuration 
 142  *  of the USB device after enumeration - the device endpoints are configured. 
 144 void EVENT_USB_Device_ConfigurationChanged(void) 
 146         bool ConfigSuccess 
= true; 
 148         /* Setup Audio Stream Endpoint */ 
 149         ConfigSuccess 
&= Endpoint_ConfigureEndpoint(AUDIO_STREAM_EPADDR
, EP_TYPE_ISOCHRONOUS
, AUDIO_STREAM_EPSIZE
, 2); 
 151         /* Indicate endpoint configuration success or failure */ 
 152         LEDs_SetAllLEDs(ConfigSuccess ? LEDMASK_USB_READY 
: LEDMASK_USB_ERROR
); 
 155 /** Event handler for the USB_ControlRequest event. This is used to catch and process control requests sent to 
 156  *  the device from the USB host before passing along unhandled control requests to the library for processing 
 159 void EVENT_USB_Device_ControlRequest(void) 
 161         /* Process General and Audio specific control requests */ 
 162         switch (USB_ControlRequest
.bRequest
) 
 164                 case REQ_SetInterface
: 
 165                         /* Set Interface is not handled by the library, as its function is application-specific */ 
 166                         if (USB_ControlRequest
.bmRequestType 
== (REQDIR_HOSTTODEVICE 
| REQTYPE_STANDARD 
| REQREC_INTERFACE
)) 
 168                                 Endpoint_ClearSETUP(); 
 169                                 Endpoint_ClearStatusStage(); 
 171                                 /* Check if the host is enabling the audio interface (setting AlternateSetting to 1) */ 
 172                                 StreamingAudioInterfaceSelected 
= ((USB_ControlRequest
.wValue
) != 0); 
 176                 case AUDIO_REQ_GetStatus
: 
 177                         /* Get Status request can be directed at either the interface or endpoint, neither is currently used 
 178                          * according to the latest USB Audio 1.0 standard, but must be ACKed with no data when requested */ 
 179                         if ((USB_ControlRequest
.bmRequestType 
== (REQDIR_HOSTTODEVICE 
| REQTYPE_CLASS 
| REQREC_INTERFACE
)) || 
 180                             (USB_ControlRequest
.bmRequestType 
== (REQDIR_HOSTTODEVICE 
| REQTYPE_CLASS 
| REQREC_ENDPOINT
))) 
 182                                 Endpoint_ClearSETUP(); 
 183                                 Endpoint_ClearStatusStage(); 
 187                 case AUDIO_REQ_SetCurrent
: 
 188                         if (USB_ControlRequest
.bmRequestType 
== (REQDIR_HOSTTODEVICE 
| REQTYPE_CLASS 
| REQREC_ENDPOINT
)) 
 190                                 /* Extract out the relevant request information to get the target Endpoint address and control being set */ 
 191                                 uint8_t EndpointAddress 
= (uint8_t)USB_ControlRequest
.wIndex
; 
 192                                 uint8_t EndpointControl 
= (USB_ControlRequest
.wValue 
>> 8); 
 194                                 /* Only handle SET CURRENT requests to the audio endpoint's sample frequency property */ 
 195                                 if ((EndpointAddress 
== AUDIO_STREAM_EPADDR
) && (EndpointControl 
== AUDIO_EPCONTROL_SamplingFreq
)) 
 197                                         uint8_t SampleRate
[3]; 
 199                                         Endpoint_ClearSETUP(); 
 200                                         Endpoint_Read_Control_Stream_LE(SampleRate
, sizeof(SampleRate
)); 
 203                                         /* Set the new sampling frequency to the value given by the host */ 
 204                                         CurrentAudioSampleFrequency 
= (((uint32_t)SampleRate
[2] << 16) | ((uint32_t)SampleRate
[1] << 8) | (uint32_t)SampleRate
[0]); 
 206                                         /* Adjust sample reload timer to the new frequency */ 
 207                                         OCR0A 
= ((F_CPU 
/ 8 / CurrentAudioSampleFrequency
) - 1); 
 212                 case AUDIO_REQ_GetCurrent
: 
 213                         if (USB_ControlRequest
.bmRequestType 
== (REQDIR_HOSTTODEVICE 
| REQTYPE_CLASS 
| REQREC_ENDPOINT
)) 
 215                                 /* Extract out the relevant request information to get the target Endpoint address and control being retrieved */ 
 216                                 uint8_t EndpointAddress 
= (uint8_t)USB_ControlRequest
.wIndex
; 
 217                                 uint8_t EndpointControl 
= (USB_ControlRequest
.wValue 
>> 8); 
 219                                 /* Only handle GET CURRENT requests to the audio endpoint's sample frequency property */ 
 220                                 if ((EndpointAddress 
== AUDIO_STREAM_EPADDR
) && (EndpointControl 
== AUDIO_EPCONTROL_SamplingFreq
)) 
 222                                         uint8_t SampleRate
[3]; 
 224                                         /* Convert the sampling rate value into the 24-bit format the host expects for the property */ 
 225                                         SampleRate
[2] = (CurrentAudioSampleFrequency 
>> 16); 
 226                                         SampleRate
[1] = (CurrentAudioSampleFrequency 
>> 8); 
 227                                         SampleRate
[0] = (CurrentAudioSampleFrequency 
&  0xFF); 
 229                                         Endpoint_ClearSETUP(); 
 230                                         Endpoint_Write_Control_Stream_LE(SampleRate
, sizeof(SampleRate
)); 
 239 /** ISR to handle the reloading of the PWM timer with the next sample. */ 
 240 ISR(TIMER0_COMPA_vect
, ISR_BLOCK
) 
 242         uint8_t PrevEndpoint 
= Endpoint_GetCurrentEndpoint(); 
 244         /* Select the audio stream endpoint */ 
 245         Endpoint_SelectEndpoint(AUDIO_STREAM_EPADDR
); 
 247         /* Check if the current endpoint can be read from (contains a packet) and the host is sending data */ 
 248         if (Endpoint_IsOUTReceived() && StreamingAudioInterfaceSelected
) 
 250                 /* Retrieve the signed 16-bit left and right audio samples, convert to 8-bit */ 
 251                 int8_t LeftSample_8Bit   
= ((int16_t)Endpoint_Read_16_LE() >> 8); 
 252                 int8_t RightSample_8Bit  
= ((int16_t)Endpoint_Read_16_LE() >> 8); 
 254                 /* Mix the two channels together to produce a mono, 8-bit sample */ 
 255                 int8_t MixedSample_8Bit  
= (((int16_t)LeftSample_8Bit 
+ (int16_t)RightSample_8Bit
) >> 1); 
 257                 /* Check to see if the bank is now empty */ 
 258                 if (!(Endpoint_IsReadWriteAllowed())) 
 260                         /* Acknowledge the packet, clear the bank ready for the next packet */ 
 264                 #if defined(AUDIO_OUT_MONO) 
 265                 /* Load the sample into the PWM timer channel */ 
 266                 OCR3A 
= (MixedSample_8Bit 
^ (1 << 7)); 
 267                 #elif defined(AUDIO_OUT_STEREO) 
 268                 /* Load the dual 8-bit samples into the PWM timer channels */ 
 269                 OCR3A 
= (LeftSample_8Bit  
^ (1 << 7)); 
 270                 OCR3B 
= (RightSample_8Bit 
^ (1 << 7)); 
 271                 #elif defined(AUDIO_OUT_PORTC) 
 272                 /* Load the 8-bit mixed sample into PORTC */ 
 273                 PORTC 
= MixedSample_8Bit
; 
 276                 uint8_t LEDMask 
= LEDS_NO_LEDS
; 
 278                 /* Turn on LEDs as the sample amplitude increases */ 
 279                 if (MixedSample_8Bit 
> 16) 
 280                   LEDMask 
= (LEDS_LED1 
| LEDS_LED2 
| LEDS_LED3 
| LEDS_LED4
); 
 281                 else if (MixedSample_8Bit 
> 8) 
 282                   LEDMask 
= (LEDS_LED1 
| LEDS_LED2 
| LEDS_LED3
); 
 283                 else if (MixedSample_8Bit 
> 4) 
 284                   LEDMask 
= (LEDS_LED1 
| LEDS_LED2
); 
 285                 else if (MixedSample_8Bit 
> 2) 
 286                   LEDMask 
= (LEDS_LED1
); 
 288                 LEDs_SetAllLEDs(LEDMask
); 
 291         Endpoint_SelectEndpoint(PrevEndpoint
);