die hard.
+ i tried so eagerly to achieve somewhat stability. yet, to be frustrated. + nothing gained. wanna go back. + but just wanna leave some trace.
This commit is contained in:
parent
dec2431084
commit
c839359313
7 changed files with 336 additions and 153 deletions
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@ -6,23 +6,26 @@
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//
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//
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// COSMO40 @ Incheon w/ Factory2
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// RTA @ Seoul w/ Post Territory Ujeongguk
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//
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//
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// 2019 12 11
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// 2020 1 2
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//
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// (part-2) teensy35 : 'client:osc' (osc over slip --> mesh post)
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//
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// especially, MIDI-like.
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// collect following OSC msg.
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// collect following MIDI-like. OSC msg.
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// + extra. direction msg. ('/timing/offset', '/timing/loop', '/timing/interval')
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//
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// "/note/onoff"
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// "/note/velocity"
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// "/note/key"
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// "/note/pitch"
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// +
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// "/timing/offset"
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// "/timing/loop"
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// "/timing/interval"
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//
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// and build a MIDI-like letter post.
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// and build one letter post.
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// and give it to the postman
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//
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@ -33,13 +36,22 @@
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// : [123456789012345678901234567890]
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// 'MIDI' letter frame
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// : [123456789012345678901234567890]
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// : [KKKVVVG.......................]
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// : [KKKVVVGOOOOOLIIIII............]
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// : KKK - Key
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// .substring(1, 4);
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// : VVV - Velocity (volume/amp.)
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// .substring(4, 7);
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// : G - Gate (note on/off)
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// .substring(7, 8);
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// : O - timing offset (plz start after this milli-sec)
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// .substring(8, 13);
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// : L - looping mode (plz do no/auto/manual-looping)
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// .substring(13, 14);
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// L == 1 -> no-looping. play once.
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// L == 2 -> auto-restart when the playback ends.
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// L == 3 -> restart after 'timing interval' milli-sec.
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// : I - looping interval (only valid for 'manual-looping')
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// .substring(14, 19); ==> check 'special cases' first.
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//
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//arduino
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@ -91,6 +103,37 @@ void setup() {
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SLIPSerial.begin(57600);
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}
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//
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static int t_offset = 0;
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static int t_loop = 0;
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static int t_interval = 0;
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void timingnote(OSCMessage& msg, int offset) {
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// matches will happen in the order. that the bundle is packed.
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// (1) --> /offset
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if (msg.fullMatch("/offset", offset)) {
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//
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t_offset = 0;
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t_loop = 0;
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t_interval = 0;
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//
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t_offset = msg.getInt(0);
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if (t_offset < 0) t_offset = 0;
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if (t_offset > 99999) t_offset = 99999;
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}
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// (2) --> /loop
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if (msg.fullMatch("/loop", offset)) {
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t_loop = msg.getInt(0);
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if (t_loop < 1) t_loop = 1;
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if (t_loop > 9) t_loop = 9;
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}
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// (3) --> /interval
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if (msg.fullMatch("/interval", offset)) {
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//
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t_interval = msg.getInt(0);
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if (t_interval < 0) t_interval = 0;
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if (t_interval > 99999) t_interval = 99999;
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}
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}
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//
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void midinote(OSCMessage& msg, int offset) {
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// matches will happen in the order. that the bundle is packed.
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@ -120,7 +163,7 @@ void midinote(OSCMessage& msg, int offset) {
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if (pitch > 127) pitch = 127;
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//
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// while (new_letter != false) {}; // <-- sort of semaphore.. but it doesn't work yet.. buggy.
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sprintf(letter_outro, "[%03d%03d%01d.......................]", pitch, velocity, onoff);
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sprintf(letter_outro, "[%03d%03d%01d%05d%01d%05d............]", pitch, velocity, onoff, t_offset, t_loop, t_interval);
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new_letter = true;
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}
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}
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@ -140,6 +183,7 @@ void loop() {
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}
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if(!bundleIN.hasError()) {
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bundleIN.route("/note", midinote);
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bundleIN.route("/timing", timingnote);
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}
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// else {
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// str = "error! : " + String(bundleIN.getError());
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@ -89,7 +89,7 @@ void register_nodes(){
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#define MESH_PASSWORD "cc*vvvv/kkk"
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#define MESH_PORT 5555
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#define MESH_CHANNEL 5
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#define LONELY_TO_DIE (1000)
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#define LONELY_TO_DIE (1000)
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//============</parameters>===========
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//
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@ -43,7 +43,7 @@ public:
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uint32_t lengthMillis(void);
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virtual void update(void);
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private:
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File wavfile;
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FsFile wavfile;
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bool consume(uint32_t size);
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bool parse_format(void);
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uint32_t header[10]; // temporary storage of wav header data
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1
sampler/lib/SdFat-beta
Submodule
1
sampler/lib/SdFat-beta
Submodule
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@ -0,0 +1 @@
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Subproject commit 172c6856246738f538a1e48746c32318408dac5c
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@ -15,7 +15,7 @@ default_envs = teensy35
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lib_ignore = Audio, SD
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lib_deps =
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721 ; TaskScheduler
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322 ; SdFat
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; 322 ; SdFat
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401 ; Adafruit SleepyDog Library
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[env:teensy35]
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@ -6,22 +6,13 @@
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//
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//
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// COSMO40 @ Incheon w/ Factory2
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// RTA @ Seoul w/ Post Territory Ujeongguk
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//
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//
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// 2019 12 11
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//
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// (part-3) teensy35 : 'client:sampler' (mesh post --> play sounds)
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//
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//
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// 2019 12 29
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//
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// multiple sound playback -> 4 voices -- TESTING
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//
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//----------<configuration>----------
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//
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// 'ANALOG_REF_EXTERNAL_3P3V'
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@ -31,21 +22,57 @@
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// teensy35 was okay since they are stronger (5V compatible I/O)
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//
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// #define ANALOG_REF_EXTERNAL_3P3V
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//
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// 'LED_INDICATOR'
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// --> this will enable red LED on/off according to the file playback status.
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//
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#define LED_INDICATOR
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//
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// 'USE_SD'
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// --> a original sd card driver..
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//
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// #define USE_SD
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//
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// 'USE_SDFATSDIO'
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// --> a faster sd card driver..
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//
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// #define USE_SDFATSDIO
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//
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// 'USE_SDFATBETA'
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// --> a faster sd card driver..
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//
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#define USE_SDFATBETA
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//----------</configuration>----------
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//watchdog
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#include <Adafruit_SleepyDog.h>
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//teensy audio
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#if defined(USE_SD)
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#include <Audio.h>
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#include <Wire.h>
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#include <SPI.h>
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#include <SD.h>
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#include <SerialFlash.h>
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#define xFile File
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//
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#elif defined(USE_SDFATSDIO)
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#include <Audio.h>
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#include <SdFat.h>
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SdFatSdioEX SD;
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SdFatSdio SD;
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// SdFatSdioEX SD;
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#include <SerialFlash.h>
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//teensy 3.5 with SD card
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#define SDCARD_CS_PIN BUILTIN_SDCARD
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#define SDCARD_MOSI_PIN 11 // not actually used
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#define SDCARD_SCK_PIN 13 // not actually used
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#define xFile File
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//
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#elif defined(USE_SDFATBETA)
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#include <Audio.h>
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#include <SdFat.h>
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#include <SerialFlash.h>
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SdFs SD;
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#define xFile FsFile
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// SdExFat SD;
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// #define xFile ExFile
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#endif
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// GUItool: begin automatically generated code
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AudioPlaySdWav playSdWav1; //xy=183,90
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@ -83,8 +110,54 @@ AudioConnection patchCord17(mixer2, 0, dacs1, 1);
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AudioConnection patchCord18(mixer1, 0, dacs1, 0);
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// GUItool: end automatically generated code
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//threads
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#include <TeensyThreads.h>
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//following class is from --> https://github.com/ftrias/TeensyThreads/blob/master/examples/Runnable/
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class Runnable {
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private:
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protected:
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virtual void runTarget(void *arg) = 0;
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public:
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virtual ~Runnable(){
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}
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static void runThread(void *arg) {
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Runnable *_runnable = static_cast<Runnable*> (arg);
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_runnable->runTarget(arg);
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}
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};
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//NOTE: using TeensyThreads == nightmare of 'volatile' problems.
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// ==> wrap all the variables that is used to comm. between threads into a 'global' & 'volatile' object..
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class vVoice {
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public:
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int note_now;
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int velocity_now;
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int start_offset;
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bool note_on_req;
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bool note_off_req;
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bool is_playing;
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vVoice() {
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note_now = 0;
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velocity_now = 0;
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start_offset = 0;
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note_on_req = false;
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note_off_req = false;
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is_playing = false;
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}
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vVoice(const vVoice &vv) {
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note_now = vv.note_now;
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velocity_now = vv.velocity_now;
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start_offset = vv.start_offset;
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note_on_req = vv.note_on_req;
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note_off_req = vv.note_off_req;
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is_playing = vv.is_playing;
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}
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};
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//
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class Voice {
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class Voice : public Runnable {
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//private
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//teensy audio
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@ -92,83 +165,105 @@ class Voice {
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AudioAmplifier& ampL;
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AudioAmplifier& ampR;
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// a filename buffer
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char filename[13];
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//teensythreads
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std::thread* thrd;
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protected:
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//teensythreads
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void runTarget(void *arg) {
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// a filename buffer
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char filename[13] = "NN.WAV";
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//
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while(1) {
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{
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Threads::Scope m(mx);
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// 'note off' request
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if (vv.note_off_req == true) {
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vv.note_off_req = false;
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player.stop();
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vv.note_now = 0; // declare that [i'm free.]
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vv.is_playing = false;
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}
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// 'note on' request
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else if (vv.note_on_req == true) {
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vv.note_on_req = false;
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// set filename to play...
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int nn = (vv.note_now % 100); // 0~99
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filename[0] = '0' + (nn / 10); // [N]N.WAV
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filename[1] = '0' + (nn % 10); // N[N].WAV
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// the filename to play is...
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Serial.println(filename);
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// go! (re-triggering)
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// threads.delay(vv.start_offset); // <-- so.. this also means 'yield' so.. sth. unexpected happening here? so, we cannot do this? -> SAD.
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AudioNoInterrupts(); // maybe .. 'AudioNoInterrupts' helps for the stability?
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// apply gains
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int val = vv.velocity_now;
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if (val < 0) val = 0;
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float gg = (float)val / 127; // allowing +gain for values over 127.
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ampL.gain(gg);
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ampR.gain(gg);
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bool res = player.play(filename);
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Serial.print("player.play -> "); Serial.println(res); // maybe.. meaningless? play() is kinda blocking call... -> SAD
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AudioInterrupts();
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// --> we just believe that this 'file' is existing & available. NO additional checking.
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// threads.delay(10);
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// --> let's wait a bit before exit, to give more room to work for background workers(==filesystem|audio-interrupts)
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// --> if we get too fast 'player.play' twice, then the system might get broken/stalled. ?
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vv.is_playing = true;
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}
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}
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//
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threads.yield();
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// threads.delay(5);
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}
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}
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public:
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//
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int note_now;
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int velocity_now;
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//mutex
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Threads::Mutex& mx; // BETTER hav only 1 mutex. for all? so, only 1 change can happen at a time.
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//variables for Voice
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volatile vVoice& vv;
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//
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Voice(AudioPlaySdWav& player_, AudioAmplifier& ampL_, AudioAmplifier& ampR_)
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: player(player_)
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, ampL(ampL_)
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, ampR(ampR_)
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{
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//initializations
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note_now = 0;
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velocity_now = 0;
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strcpy(filename, "NN.WAV");
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Voice(AudioPlaySdWav& player_, AudioAmplifier& ampL_, AudioAmplifier& ampR_, Threads::Mutex& mx_, volatile vVoice& vv_)
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: player(player_), ampL(ampL_), ampR(ampR_), mx(mx_), vv(vv_) {
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}
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//
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void noteOn(int note) {
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// present my 'note' -> 'occupied'.
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note_now = note;
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// set filename to play...
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int nn = (note % 100); // 0~99
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filename[0] = '0' + (nn / 10); // [N]N.WAV
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filename[1] = '0' + (nn % 10); // N[N].WAV
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// the filename to play is...
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Serial.println(filename);
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// go! (re-triggering)
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// if (player.isPlaying()) player.stop();
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player.play(filename);
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Serial.println("1");
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// --> we just believe that this 'file' is existing & available. NO additional checking.
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delay(10);
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Serial.println("2");
|
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// --> let's wait a bit before exit, to give more room to work for background workers(==filesystem|audio-interrupts)
|
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// --> if we get too fast 'player.play' twice, then the system might get broken/stalled. ?
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}
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//
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void noteOff() {
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player.stop();
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delay(10); // wait to close file?
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// present my 'note' -> 'free'.
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note_now = 0;
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}
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//
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void setVelocity(int val) {
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if (val < 0) val = 0;
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float vv = (float)val / 127; // allowing +gain for values over 127.
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ampL.gain(vv);
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ampR.gain(vv);
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}
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//
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bool isPlaying() {
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return player.isPlaying();
|
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//threading
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void start() {
|
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thrd = new std::thread(&Runnable::runThread, this);
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}
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||||
};
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// voice banks
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#include <vector>
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#include <deque>
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static Voice __voice_1(playSdWav1, amp1, amp2);
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static Voice __voice_2(playSdWav2, amp3, amp4);
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static Voice __voice_3(playSdWav3, amp5, amp6);
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static Voice __voice_4(playSdWav4, amp7, amp8);
|
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//NOTE: stronger locking? there's only 1 locking mutex.
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Threads::Mutex __mx;
|
||||
//NOTE: using TeensyThreads == nightmare of 'volatile' problems.
|
||||
// ==> wrap all the variables that is used to comm. between threads into a 'global' & 'volatile' object..
|
||||
static volatile vVoice __vv1;
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static volatile vVoice __vv2;
|
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// static volatile vVoice __vv3;
|
||||
// static volatile vVoice __vv4;
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||||
// ==> and link global volatile objects to the actual objects like :
|
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static Voice __voice_1(playSdWav1, amp1, amp2, __mx, __vv1);
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static Voice __voice_2(playSdWav2, amp3, amp4, __mx, __vv2);
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// static Voice __voice_3(playSdWav3, amp5, amp6, __mx, __vv3);
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// static Voice __voice_4(playSdWav4, amp7, amp8, __mx, __vv4);
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static std::vector<Voice> poly_bank;
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static std::deque< std::pair<int, int> > poly_queue;
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|
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//task
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||||
#include <TaskScheduler.h>
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Scheduler runner;
|
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// polyphonics
|
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static int note_sched = 0;
|
||||
static int velocity_sched = 0;
|
||||
static int offset_sched = 0;
|
||||
void scheduleNoteOn()
|
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{
|
||||
//filename buffer - 8.3 naming convension! 8+1+3+1 = 13
|
||||
|
|
@ -197,9 +292,13 @@ void scheduleNoteOn()
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// (1) re-trigger (stop-and-restart)
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is_already = true;
|
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Voice& v = poly_bank[poly_queue[idx].first];
|
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v.noteOff();
|
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v.noteOn(note);
|
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v.setVelocity(velocity_sched);
|
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{
|
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Threads::Scope m(v.mx);
|
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v.vv.note_now = note;
|
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v.vv.velocity_now = velocity_sched;
|
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v.vv.start_offset = offset_sched;
|
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v.vv.note_on_req = true;
|
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}
|
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break;
|
||||
// (2) do nothing (just let it play till end)
|
||||
// is_already = true;
|
||||
|
|
@ -216,30 +315,40 @@ void scheduleNoteOn()
|
|||
//fine, is there idle voice?
|
||||
bool is_found_idle = false;
|
||||
for (uint32_t idx = 0; idx < poly_bank.size(); idx++) {
|
||||
if (poly_bank[idx].note_now == 0) {
|
||||
//cool, got one.
|
||||
is_found_idle = true;
|
||||
//play start-up
|
||||
Voice& v = poly_bank[idx];
|
||||
v.noteOn(note);
|
||||
v.setVelocity(velocity_sched);
|
||||
//leave a record : (# of voice bank, playing note #)
|
||||
poly_queue.push_back(std::pair<int, int>(idx, note));
|
||||
break;
|
||||
Voice& v = poly_bank[idx];
|
||||
{
|
||||
Threads::Scope m(v.mx);
|
||||
if (v.vv.note_now == 0) {
|
||||
//cool, got one.
|
||||
is_found_idle = true;
|
||||
//play start-up
|
||||
v.vv.note_now = note;
|
||||
v.vv.velocity_now = velocity_sched;
|
||||
v.vv.start_offset = offset_sched;
|
||||
v.vv.note_on_req = true;
|
||||
//leave a record : (# of voice bank, playing note #)
|
||||
poly_queue.push_back(std::pair<int, int>(idx, note));
|
||||
break;
|
||||
}
|
||||
}
|
||||
}
|
||||
//oh, no idle one!
|
||||
if (is_found_idle == false) {
|
||||
//then, who's the oldest?
|
||||
int oldest = poly_queue.front().first;
|
||||
poly_bank[oldest].noteOff();
|
||||
//poly_bank[oldest].noteOff();
|
||||
poly_queue.pop_front();
|
||||
//
|
||||
int newentry = oldest;
|
||||
//
|
||||
Voice& v = poly_bank[newentry];
|
||||
v.noteOn(note);
|
||||
v.setVelocity(velocity_sched);
|
||||
{
|
||||
Threads::Scope m(v.mx);
|
||||
v.vv.note_now = note;
|
||||
v.vv.velocity_now = velocity_sched;
|
||||
v.vv.start_offset = offset_sched;
|
||||
v.vv.note_on_req = true;
|
||||
}
|
||||
//leave a record : (# of voice bank, playing note #)
|
||||
poly_queue.push_back(std::pair<int, int>(newentry, note));
|
||||
}
|
||||
|
|
@ -259,8 +368,6 @@ void scheduleNoteOn()
|
|||
Serial.println();
|
||||
}
|
||||
//
|
||||
Task scheduleNoteOn_task(0, TASK_ONCE, scheduleNoteOn);
|
||||
//
|
||||
void scheduleNoteOff() {
|
||||
for (auto it = poly_queue.begin(); it != poly_queue.end(); ++it) {
|
||||
//is this meaningful, btw?
|
||||
|
|
@ -268,7 +375,11 @@ void scheduleNoteOff() {
|
|||
//okay. we've got that.
|
||||
Serial.println("okay. we've got that.");
|
||||
//a record : (# of voice bank, playing note #)
|
||||
poly_bank[(*it).first].noteOff(); // stop the bank
|
||||
Voice& v = poly_bank[(*it).first];
|
||||
{
|
||||
Threads::Scope m(v.mx);
|
||||
v.vv.note_off_req = true; // stop the bank
|
||||
}
|
||||
poly_queue.erase(it); // remove the record
|
||||
break;
|
||||
}
|
||||
|
|
@ -285,33 +396,38 @@ void scheduleNoteOff() {
|
|||
}
|
||||
Serial.println();
|
||||
}
|
||||
//
|
||||
Task scheduleNoteOff_task(0, TASK_ONCE, scheduleNoteOff);
|
||||
|
||||
//
|
||||
void playcheck() {
|
||||
bool is_nosound = true;
|
||||
for (uint32_t idx = 0; idx < poly_bank.size(); idx++) {
|
||||
if (poly_bank[idx].isPlaying()) {
|
||||
is_nosound = false;
|
||||
while(1) {
|
||||
#if defined(LED_INDICATOR)
|
||||
bool is_nosound = true;
|
||||
for (uint32_t idx = 0; idx < poly_bank.size(); idx++) {
|
||||
Voice& v = poly_bank[idx];
|
||||
{
|
||||
Threads::Scope m(v.mx);
|
||||
if (v.vv.is_playing) is_nosound = false;
|
||||
}
|
||||
}
|
||||
}
|
||||
if (is_nosound) {
|
||||
//mark the indicator : LOW: OFF
|
||||
digitalWrite(13, LOW);
|
||||
} else {
|
||||
//mark the indicator : HIGH: ON
|
||||
digitalWrite(13, HIGH);
|
||||
}
|
||||
// //
|
||||
// Serial.print("AM_max:");
|
||||
// Serial.println(AudioMemoryUsageMax());
|
||||
if (is_nosound) {
|
||||
//mark the indicator : LOW: OFF
|
||||
digitalWrite(13, LOW);
|
||||
} else {
|
||||
//mark the indicator : HIGH: ON
|
||||
digitalWrite(13, HIGH);
|
||||
}
|
||||
#endif
|
||||
|
||||
//watchdog
|
||||
Watchdog.reset();
|
||||
// //
|
||||
// Serial.print("AM_max:");
|
||||
// Serial.println(AudioMemoryUsageMax());
|
||||
|
||||
//watchdog
|
||||
Watchdog.reset();
|
||||
|
||||
threads.delay(100);
|
||||
}
|
||||
}
|
||||
//
|
||||
Task playcheck_task(100, TASK_FOREVER, playcheck, &runner, true);
|
||||
|
||||
//i2c
|
||||
#include <Wire.h>
|
||||
|
|
@ -340,71 +456,91 @@ void receiveEvent(int numBytes) {
|
|||
|
||||
// 'MIDI' letter frame
|
||||
// : [123456789012345678901234567890]
|
||||
// : [KKKVVVG.......................]
|
||||
// : [KKKVVVGOOOOOLIIIII............]
|
||||
// : KKK - Key
|
||||
// .substring(1, 4);
|
||||
// : VVV - Velocity (volume/amp.)
|
||||
// .substring(4, 7);
|
||||
// : G - Gate (note on/off)
|
||||
// .substring(7, 8);
|
||||
// : O - timing offset (plz start after this milli-sec)
|
||||
// .substring(8, 13);
|
||||
// : L - looping mode (plz do no/auto/manual-looping)
|
||||
// .substring(13, 14);
|
||||
// L == 1 -> no-looping. play once.
|
||||
// L == 2 -> auto-restart when the playback ends.
|
||||
// L == 3 -> restart after 'timing interval' milli-sec.
|
||||
// : I - looping interval (only valid for 'manual-looping')
|
||||
// .substring(14, 19); ==> check 'special cases' first.
|
||||
|
||||
String str_key = msg.substring(1, 4);
|
||||
String str_velocity = msg.substring(4, 7);
|
||||
String str_gate = msg.substring(7, 8);
|
||||
// Serial.println(str_key);
|
||||
// Serial.println(str_velocity);
|
||||
// Serial.println(str_gate);
|
||||
String str_offset = msg.substring(8, 13);
|
||||
String str_loop = msg.substring(13, 14);
|
||||
String str_interval = msg.substring(14, 19);
|
||||
|
||||
//
|
||||
int key = str_key.toInt();
|
||||
int velocity = str_velocity.toInt(); // 0 ~ 127
|
||||
int gate = str_gate.toInt();
|
||||
int offset = str_offset.toInt();
|
||||
int loop = str_loop.toInt();
|
||||
int interval = str_interval.toInt();
|
||||
|
||||
//
|
||||
if (gate == 0) {
|
||||
note_sched = key;
|
||||
scheduleNoteOff_task.restart();
|
||||
scheduleNoteOff();
|
||||
} else {
|
||||
note_sched = key;
|
||||
velocity_sched = velocity;
|
||||
scheduleNoteOn_task.restart();
|
||||
offset_sched = offset;
|
||||
scheduleNoteOn();
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// SD TEST
|
||||
void printDirectory(File dir, int numTabs) {
|
||||
void printDirectory(xFile dir, int numTabs) {
|
||||
char filename[256] = "";
|
||||
while(true) {
|
||||
|
||||
File entry = dir.openNextFile();
|
||||
xFile entry = dir.openNextFile();
|
||||
if (!entry) {
|
||||
// no more files
|
||||
Serial.println("**nomorefiles**");
|
||||
break;
|
||||
}
|
||||
for (uint8_t i=0; i<numTabs; i++) {
|
||||
Serial.print('\t');
|
||||
}
|
||||
#if defined(USE_SD)
|
||||
Serial.print(entry.name());
|
||||
#elif defined(USE_SDFATSDIO)
|
||||
entry.getName(filename, 256);
|
||||
Serial.print(filename);
|
||||
#elif defined(USE_SDFATBETA)
|
||||
entry.getName(filename, 256);
|
||||
Serial.print(filename);
|
||||
#endif
|
||||
if (entry.isDirectory()) {
|
||||
Serial.println("/");
|
||||
printDirectory(entry, numTabs+1);
|
||||
} else {
|
||||
// files have sizes, directories do not
|
||||
Serial.print("\t\t");
|
||||
Serial.println(entry.size(), DEC);
|
||||
Serial.println((unsigned int)entry.size(), DEC);
|
||||
}
|
||||
entry.close();
|
||||
}
|
||||
}
|
||||
|
||||
//
|
||||
File root;
|
||||
xFile root;
|
||||
void setup() {
|
||||
|
||||
//serial monitor
|
||||
Serial.begin(115200);
|
||||
delay(50);
|
||||
while (!Serial) {}
|
||||
|
||||
//i2c
|
||||
Wire.begin(I2C_ADDR);
|
||||
|
|
@ -413,7 +549,14 @@ void setup() {
|
|||
// Wire.onRequest(requestEvent);
|
||||
|
||||
//SD
|
||||
if (!SD.begin()) {
|
||||
#if defined(USE_SD)
|
||||
if (!(SD.begin(BUILTIN_SDCARD)))
|
||||
#elif defined(USE_SDFATSDIO)
|
||||
if (!SD.begin())
|
||||
#elif defined(USE_SDFATBETA)
|
||||
if (!SD.begin(SdioConfig(FIFO_SDIO)))
|
||||
#endif
|
||||
{
|
||||
Serial.println("[sd] initialization failed!");
|
||||
return;
|
||||
}
|
||||
|
|
@ -422,10 +565,10 @@ void setup() {
|
|||
printDirectory(root, 0);
|
||||
|
||||
//polyphonics - 4 voices
|
||||
poly_bank.push_back(__voice_1);
|
||||
poly_bank.push_back(__voice_2);
|
||||
poly_bank.push_back(__voice_3);
|
||||
poly_bank.push_back(__voice_4);
|
||||
poly_bank.push_back(__voice_1); __voice_1.start();
|
||||
poly_bank.push_back(__voice_2); __voice_2.start();
|
||||
// poly_bank.push_back(__voice_3); __voice_3.start();
|
||||
// poly_bank.push_back(__voice_4); __voice_4.start();
|
||||
|
||||
//audio
|
||||
AudioMemory(20); // <-- used AudioMemoryUsageMax() to check out!
|
||||
|
|
@ -455,12 +598,8 @@ void setup() {
|
|||
amp7.gain(1.0);
|
||||
amp8.gain(1.0);
|
||||
|
||||
//tasks
|
||||
// runner.addTask(playcheck_task);
|
||||
// playcheck_task.enable();
|
||||
//
|
||||
runner.addTask(scheduleNoteOn_task);
|
||||
runner.addTask(scheduleNoteOff_task);
|
||||
//teensythreads
|
||||
threads.addThread(playcheck);
|
||||
|
||||
//led
|
||||
pinMode(13, OUTPUT);
|
||||
|
|
@ -470,9 +609,8 @@ void setup() {
|
|||
Serial.println("[setup] done.");
|
||||
|
||||
//watchdog
|
||||
Watchdog.enable(1000);
|
||||
Watchdog.enable(3000);
|
||||
}
|
||||
|
||||
void loop() {
|
||||
runner.execute();
|
||||
}
|
||||
|
|
|
|||
|
|
@ -64,7 +64,7 @@
|
|||
|
||||
//==========<preset>===========
|
||||
// (1) the backbone AP
|
||||
#if 1
|
||||
#if 0
|
||||
#define DISABLE_I2C_REQ
|
||||
#define SET_CONTAINSROOT
|
||||
// (2) osc client (the ROOT)
|
||||
|
|
@ -72,7 +72,7 @@
|
|||
#define SET_ROOT
|
||||
#define SET_CONTAINSROOT
|
||||
// (3) sampler client
|
||||
#elif 0
|
||||
#elif 1
|
||||
#define DISABLE_AP
|
||||
#define DISABLE_I2C_REQ
|
||||
//
|
||||
|
|
|
|||
Loading…
Reference in a new issue