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5 | 5 | #include "SdFat.h" |
6 | 6 |
|
7 | 7 | // define FIR filter |
8 | | -float coef[] = { |
9 | | --0.018296746249137946, |
10 | | --0.056723974384224739, |
11 | | -0.018540799820324621, |
12 | | -0.097644454515593698, |
13 | | --0.018688161556077588, |
14 | | --0.297627121039396536, |
15 | | -0.550301497785836702, |
16 | | --0.297627121039396536, |
17 | | --0.018688161556077588, |
18 | | -0.097644454515593698, |
19 | | -0.018540799820324621, |
20 | | --0.056723974384224739, |
21 | | --0.018296746249137946 |
| 8 | +int16_t coef[] = { |
| 9 | +-600, |
| 10 | +-1859, |
| 11 | +608, |
| 12 | +3200, |
| 13 | +-612, |
| 14 | +-9752, |
| 15 | +18032, |
| 16 | +-9752, |
| 17 | +-612, |
| 18 | +3200, |
| 19 | +608, |
| 20 | +-1859, |
| 21 | +-600 |
22 | 22 | }; |
23 | 23 | // |
24 | 24 | uint16_t sample_rate=44100; |
25 | 25 | uint8_t channels = 2; // The stream will have 2 channels |
26 | | -NoiseGenerator<int16_t> noise(32000); // subclass of SoundGenerator with max amplitude of 32000 |
27 | | -GeneratedSoundStream<int16_t> in_stream(noise); // Stream generated from sine wave |
28 | | -FilteredStream<int16_t, float> in_filtered(in_stream, channels); // Defiles the filter as BaseConverter |
| 26 | +SineWaveGenerator<int16_t> wave(32000); // subclass of SoundGenerator with max amplitude of 32000 |
| 27 | +GeneratedSoundStream<int16_t> in_stream(wave); // Stream generated from sine wave |
| 28 | +FilteredStream<int16_t, int16_t> in_filtered(in_stream, channels); // Defiles the filter as BaseConverter |
29 | 29 | SdFat sd; |
30 | 30 | SdFile file; |
31 | 31 | EncodedAudioStream out(&file, new WAVEncoder()); // encode as wav file |
32 | 32 | StreamCopy copier(out, in_filtered); // copies sound to out |
| 33 | +MusicalNotes notes; |
33 | 34 |
|
34 | 35 | void setup(){ |
35 | 36 | Serial.begin(115200); |
36 | 37 | AudioLogger::instance().begin(Serial, AudioLogger::Info); |
37 | 38 |
|
38 | | - auto cfg = noise.defaultConfig(); |
| 39 | + auto cfg = wave.defaultConfig(); |
39 | 40 | cfg.sample_rate = sample_rate; |
40 | 41 | cfg.channels = channels; |
41 | 42 | cfg.bits_per_sample = 16; |
42 | | - noise.begin(cfg); |
| 43 | + wave.begin(cfg, 20); |
43 | 44 | in_stream.begin(); |
44 | 45 | out.begin(); |
45 | 46 |
|
46 | 47 | // setup filters on channel 1 only |
47 | | - in_filtered.setFilter(1, new FIR<float>(coef)); |
| 48 | + in_filtered.setFilter(1, new FIR<int16_t>(coef)); |
48 | 49 |
|
49 | 50 | if (!sd.begin(SS, SPI_HALF_SPEED)) sd.initErrorHalt(); |
50 | | - if (!file.open("noise.wav", O_RDWR | O_CREAT)) { |
51 | | - sd.errorHalt("opening noise.wav for write failed"); |
| 51 | + if (!file.open("wave.wav", O_RDWR | O_CREAT)) { |
| 52 | + sd.errorHalt("opening wave.wav for write failed"); |
52 | 53 | } |
53 | 54 |
|
54 | | - for (int j=0;j<1024;j++){ |
55 | | - copier.copy(); |
| 55 | + for (int j=0;j<notes.frequencyCount();j++){ |
| 56 | + wave.setFrequency(notes.frequency(j)); |
| 57 | + for (int i=0;i<20;i++){ |
| 58 | + copier.copy(); |
| 59 | + } |
56 | 60 | } |
57 | 61 | file.close(); |
58 | 62 | stop(); |
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