giuliomoro@181
|
1 /*
|
giuliomoro@181
|
2 * render.cpp
|
giuliomoro@181
|
3 *
|
giuliomoro@181
|
4 * Created on: Oct 24, 2014
|
giuliomoro@181
|
5 * Author: parallels
|
giuliomoro@181
|
6 */
|
giuliomoro@181
|
7
|
giuliomoro@181
|
8 #include <BeagleRT.h>
|
giuliomoro@181
|
9 #include <Midi.h>
|
giuliomoro@187
|
10 #include <Utilities.h>
|
giuliomoro@181
|
11 #include <stdlib.h>
|
giuliomoro@181
|
12 #include <rtdk.h>
|
giuliomoro@181
|
13 #include <cmath>
|
giuliomoro@181
|
14
|
giuliomoro@181
|
15 // setup() is called once before the audio rendering starts.
|
giuliomoro@181
|
16 // Use it to perform any initialisation and allocation which is dependent
|
giuliomoro@181
|
17 // on the period size or sample rate.
|
giuliomoro@181
|
18 //
|
giuliomoro@181
|
19 // userData holds an opaque pointer to a data structure that was passed
|
giuliomoro@181
|
20 // in from the call to initAudio().
|
giuliomoro@181
|
21 //
|
giuliomoro@181
|
22 // Return true on success; returning false halts the program.
|
giuliomoro@181
|
23 Midi midi;
|
giuliomoro@181
|
24 bool setup(BeagleRTContext *context, void *userData)
|
giuliomoro@181
|
25 {
|
giuliomoro@181
|
26 midi.readFrom(0);
|
giuliomoro@191
|
27 midi.writeTo(0);
|
giuliomoro@181
|
28 if(context->analogFrames == 0) {
|
giuliomoro@181
|
29 rt_printf("Error: this example needs the matrix enabled\n");
|
giuliomoro@181
|
30 return false;
|
giuliomoro@181
|
31 }
|
giuliomoro@181
|
32 return true;
|
giuliomoro@181
|
33 }
|
giuliomoro@181
|
34
|
giuliomoro@181
|
35 // render() is called regularly at the highest priority by the audio engine.
|
giuliomoro@181
|
36 // Input and output are given from the audio hardware and the other
|
giuliomoro@181
|
37 // ADCs and DACs (if available). If only audio is available, numMatrixFrames
|
giuliomoro@181
|
38 // will be 0.
|
giuliomoro@181
|
39
|
giuliomoro@191
|
40 static midi_byte_t noteOnStatus = 0x90; //on channel 1
|
giuliomoro@181
|
41
|
giuliomoro@181
|
42 enum {kVelocity, kNoteOn, kNoteNumber};
|
giuliomoro@181
|
43 void render(BeagleRTContext *context, void *userData)
|
giuliomoro@181
|
44 {
|
giuliomoro@181
|
45 static float f0;
|
giuliomoro@181
|
46 static float phaseIncrement = 0;
|
giuliomoro@181
|
47 int message;
|
giuliomoro@181
|
48 static bool noteOn = 0;
|
giuliomoro@181
|
49 static int velocity = 0;
|
giuliomoro@181
|
50 static int noteNumber = 0;
|
giuliomoro@181
|
51 static int waitingFor = kNoteOn;
|
giuliomoro@184
|
52 static int playingNote = -1;
|
giuliomoro@181
|
53 while ((message = midi.getInput()) >= 0){
|
giuliomoro@191
|
54 rt_printf("%d\n", message);
|
giuliomoro@181
|
55 switch(waitingFor){
|
giuliomoro@181
|
56 case kNoteOn:
|
giuliomoro@181
|
57 if(message == noteOnStatus){
|
giuliomoro@181
|
58 waitingFor = kNoteNumber;
|
giuliomoro@181
|
59 }
|
giuliomoro@181
|
60 break;
|
giuliomoro@181
|
61 case kNoteNumber:
|
giuliomoro@181
|
62 if((message & (1<<8)) == 0){
|
giuliomoro@181
|
63 noteNumber = message;
|
giuliomoro@181
|
64 waitingFor = kVelocity;
|
giuliomoro@181
|
65 }
|
giuliomoro@181
|
66 break;
|
giuliomoro@181
|
67 case kVelocity:
|
giuliomoro@181
|
68 if((message & (1<<8)) == 0){
|
giuliomoro@184
|
69 int _velocity = message;
|
giuliomoro@181
|
70 waitingFor = kNoteOn;
|
giuliomoro@184
|
71 // "monophonic" behaviour, with priority to the latest note on
|
giuliomoro@184
|
72 // i.e.: a note off from a previous note does not stop the current note
|
giuliomoro@184
|
73 // still you might end up having a key down and no note being played if you pressed and released another
|
giuliomoro@184
|
74 // key in the meantime
|
giuliomoro@184
|
75 if(_velocity == 0 && noteNumber == playingNote){
|
giuliomoro@181
|
76 noteOn = false;
|
giuliomoro@184
|
77 playingNote = -1;
|
giuliomoro@184
|
78 velocity = _velocity;
|
giuliomoro@184
|
79 } else if (_velocity > 0) {
|
giuliomoro@184
|
80 noteOn = true;
|
giuliomoro@184
|
81 velocity = _velocity;
|
giuliomoro@184
|
82 playingNote = noteNumber;
|
giuliomoro@184
|
83 f0 = powf(2, (playingNote-69)/12.0f) * 440;
|
giuliomoro@184
|
84 phaseIncrement = 2 * M_PI * f0 / context->audioSampleRate;
|
giuliomoro@184
|
85 }
|
giuliomoro@181
|
86 rt_printf("NoteOn: %d, NoteNumber: %d, velocity: %d\n", noteOn, noteNumber, velocity);
|
giuliomoro@181
|
87 }
|
giuliomoro@181
|
88 break;
|
giuliomoro@181
|
89 }
|
giuliomoro@181
|
90 }
|
giuliomoro@191
|
91
|
giuliomoro@191
|
92 for(unsigned int n = 0; n < context->analogFrames; n++){
|
giuliomoro@191
|
93 static int count = 0;
|
giuliomoro@191
|
94 static bool state = 0;
|
giuliomoro@191
|
95 analogWriteFrameOnce(context, n, 1, state);
|
giuliomoro@191
|
96 if(count % 40000 == 0){
|
giuliomoro@191
|
97 state = !state;
|
giuliomoro@191
|
98 midi_byte_t bytes[6] = {176, 30, state*127, 176, 67, 30}; // toggle the OWL led and ask for the led status
|
giuliomoro@191
|
99 midi.writeOutput(bytes, 6);
|
giuliomoro@191
|
100 }
|
giuliomoro@191
|
101
|
giuliomoro@181
|
102 if(noteOn == 1){
|
giuliomoro@181
|
103 static float phase = 0;
|
giuliomoro@181
|
104 phase += phaseIncrement;
|
giuliomoro@181
|
105 if(phase > 2 * M_PI)
|
giuliomoro@181
|
106 phase -= 2 * M_PI;
|
giuliomoro@181
|
107 float value = sinf(phase) * velocity/128.0f;
|
giuliomoro@181
|
108 audioWriteFrame(context, n, 0, value);
|
giuliomoro@181
|
109 audioWriteFrame(context, n, 1, value);
|
giuliomoro@181
|
110 } else {
|
giuliomoro@181
|
111 audioWriteFrame(context, n, 0, 0);
|
giuliomoro@181
|
112 audioWriteFrame(context, n, 1, 0);
|
giuliomoro@181
|
113 }
|
giuliomoro@191
|
114 count++;
|
giuliomoro@181
|
115 }
|
giuliomoro@181
|
116 }
|
giuliomoro@181
|
117
|
giuliomoro@181
|
118 // cleanup() is called once at the end, after the audio has stopped.
|
giuliomoro@181
|
119 // Release any resources that were allocated in setup().
|
giuliomoro@181
|
120
|
giuliomoro@181
|
121 void cleanup(BeagleRTContext *context, void *userData)
|
giuliomoro@181
|
122 {
|
giuliomoro@181
|
123
|
giuliomoro@181
|
124 }
|