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1 /*
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2 *
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3 * Andrew McPherson and Victor Zappi
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4 * Queen Mary, University of London
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5 */
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6
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7 #include <BeagleRT.h>
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8 #include <Utilities.h>
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9 #include <cmath>
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10 #include <rtdk.h>
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11
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12 // setup() is called once before the audio rendering starts.
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13 // Use it to perform any initialisation and allocation which is dependent
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14 // on the period size or sample rate.
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15 //
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16 // userData holds an opaque pointer to a data structure that was passed
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17 // in from the call to initAudio().
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18 //
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19 // Return true on success; returning false halts the program.
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20
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21 bool setup(BeagleRTContext *context, void *userData)
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22 {
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23 return true;
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24 }
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25
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26 // render() is called regularly at the highest priority by the audio engine.
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27 // Input and output are given from the audio hardware and the other
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28 // ADCs and DACs (if available). If only audio is available, numAnalogFrames
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29 // will be 0.
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30
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31 void render(BeagleRTContext *context, void *userData)
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32 {
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33 //connect an LED in series with a 470ohm resistor between P8_07 and ground
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34 static int count=0; //counts elapsed samples
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35 float interval=0.5; //how often to toggle the LED (in seconds)
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36 static int status=GPIO_LOW;
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37 for(unsigned int n=0; n<context->digitalFrames; n++){
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38 if(count==context->digitalSampleRate*interval){ //if enough samples have elapsed
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39 count=0; //reset the counter
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40 // status=digitalReadFrame(context, 0, P8_07);
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41 if(status==GPIO_LOW) //toggle the status
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42 status=GPIO_HIGH;
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43 else
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44 status=GPIO_LOW;
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45 pinModeFrame(context, 0, P8_07, OUTPUT);
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46 digitalWriteFrame(context, n, P8_07, status); //write the status to the LED
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47 // rt_printf("there %d\n", context->digital[n]);
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48 }
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49 context->digital[n]=status*0x00010000;
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50 count++;
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51 }
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52 }
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53
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54 // cleanup() is called once at the end, after the audio has stopped.
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55 // Release any resources that were allocated in setup().
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56
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57 void cleanup(BeagleRTContext *context, void *userData)
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58 {
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59 // Nothing to do here
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60 }
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