343 lines
8.2 KiB
C++
343 lines
8.2 KiB
C++
//
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// wirelessly connected cloud (based on a LPWAN, called ESP-NOW)
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//
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//
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// puredata gathering @ ururu.cloud, Seoul
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//
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//
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// 2024 02 17
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//
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// this module will be an esp-now node in a group.
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// like, a bird in a group of birds.
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//
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// esp-now @ esp8266 w/ broadcast address (FF:FF:FF:FF:FF:FF)
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// always broadcasting. everyone is 'talkative'.
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//
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//============<identities>============
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#define MY_GROUP_ID (4000)
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#define MY_ID (MY_GROUP_ID + 1)
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#define MY_SIGN ("ROLLER2")
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//============</identities>============
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//============<parameters>============
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#define WIFI_CHANNEL 1
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//============</parameters>===========
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//arduino
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#include <Arduino.h>
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//network credentials
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char ssid[] = "KT_GiGA_D565"; // ssid
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char pass[] = "bhc1dd4971"; // password
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////udp
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#include <ESP8266WiFi.h>
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#include <WiFiUdp.h>
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WiFiUDP Udp;
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// destination IP & Port
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// const IPAddress dest_ip(192,168,43,255);
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const IPAddress dest_ip(255,255,255,255);
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const unsigned int dest_port = 5555;
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// - Local broadcast address (255.255.255.255)
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// - Directed broadcast address (192.168.25.255 or 192.168.255.255 depends on your subnet)
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// difference between 'Directed broadcast' vs 'Local broadcast'
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// ==> https://serverfault.com/a/219767
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// ==> https://www.sysnet.pe.kr/2/0/11368
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// listening Port
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const unsigned int listening_port = 5555; // listening port
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//message types
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#include "message.h"
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//osc
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#include <OSCMessage.h>
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#include <OSCBundle.h>
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OSCErrorCode error;
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//task
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#include <TaskScheduler.h>
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Scheduler runner;
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//-*-*-*-*-*-*-*-*-*-*-*-*-
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// servo
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#define MOTOR_1A (D6)
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#define MOTOR_1B (D5)
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// my tasks
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int speed = 0;
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bool isactive = false;
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void set_speed() {
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int r = speed;
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//
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if (r >= 0) {
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digitalWrite(MOTOR_1A, LOW);
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analogWrite(MOTOR_1B, r);
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} else {
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digitalWrite(MOTOR_1B, LOW);
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analogWrite(MOTOR_1A, r*(-1));
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}
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Serial.print("set_speed:");
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Serial.println(r);
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isactive = true;
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}
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Task set_speed_task(0, TASK_ONCE, &set_speed, &runner, false);
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//
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void rest() {
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analogWrite(MOTOR_1A, LOW);
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analogWrite(MOTOR_1B, LOW);
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isactive = false;
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}
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Task rest_task(0, TASK_ONCE, &rest, &runner, false);
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//
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uint8_t watch_counter = 0;
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void watcher() {
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if (isactive) {
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if (watch_counter > 3) {
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rest_task.restartDelayed(10);
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watch_counter = 0;
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} else {
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watch_counter++;
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}
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}
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}
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Task watcher_task(1000, TASK_FOREVER, &watcher, &runner, true);
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//
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#define MOTOR_2A (D3)
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#define MOTOR_2B (D2)
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// my tasks
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int speed2 = 0;
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bool isactive2 = false;
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void set_speed2() {
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int r = speed2;
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//
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if (r >= 0) {
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digitalWrite(MOTOR_2A, LOW);
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analogWrite(MOTOR_2B, r);
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} else {
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digitalWrite(MOTOR_2B, LOW);
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analogWrite(MOTOR_2A, r*(-1));
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}
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Serial.print("set_speed2:");
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Serial.println(r);
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isactive2 = true;
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}
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Task set_speed2_task(0, TASK_ONCE, &set_speed2, &runner, false);
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//
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void rest2() {
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analogWrite(MOTOR_2A, LOW);
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analogWrite(MOTOR_2B, LOW);
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isactive2 = false;
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}
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Task rest2_task(0, TASK_ONCE, &rest2, &runner, false);
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//
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uint8_t watch2_counter = 0;
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void watcher2() {
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if (isactive2) {
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if (watch2_counter > 3) {
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rest2_task.restartDelayed(10);
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watch2_counter = 0;
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} else {
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watch2_counter++;
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}
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}
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}
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Task watcher2_task(1000, TASK_FOREVER, &watcher2, &runner, true);
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//*-*-*-*-*-*-*-*-*-*-*-*-*
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// on 'Note'
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void onNoteHandler(Note & n) {
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Serial.println(n.to_string());
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//is it for me?
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if (n.id == MY_GROUP_ID || n.id == MY_ID) {
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//
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if (n.pitch == 0) {
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speed = n.velocity;
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//
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if (n.onoff == 1) {
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set_speed_task.restartDelayed(10);
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watch_counter = 0;
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} else if (n.onoff == 0) {
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rest_task.restartDelayed(10);
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} else if (n.onoff == 2) {
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set_speed_task.restartDelayed(10);
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rest_task.restartDelayed(10 + n.x1);
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}
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}
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//
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else if (n.pitch == 1) {
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speed2 = n.velocity;
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//
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if (n.onoff == 1) {
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set_speed2_task.restartDelayed(10);
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watch2_counter = 0;
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} else if (n.onoff == 0) {
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rest2_task.restartDelayed(10);
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} else if (n.onoff == 2) {
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set_speed2_task.restartDelayed(10);
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rest2_task.restartDelayed(10 + n.x1);
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}
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}
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//
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}
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}
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//*-*-*-*-*-*-*-*-*-*-*-*-*
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//common task #0 : blink led
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#define LED_PERIOD (11111)
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#define LED_ONTIME (1)
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#define LED_GAPTIME (222)
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#define LED_PIN 2
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extern Task blink_task;
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void blink() {
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//
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static int count = 0;
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count++;
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//
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switch (count % 4) {
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case 0:
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digitalWrite(LED_PIN, LOW); // first ON
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blink_task.delay(LED_ONTIME);
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break;
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case 1:
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digitalWrite(LED_PIN, HIGH); // first OFF
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blink_task.delay(LED_GAPTIME);
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break;
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case 2:
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digitalWrite(LED_PIN, LOW); // second ON
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blink_task.delay(LED_ONTIME);
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break;
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case 3:
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digitalWrite(LED_PIN, HIGH); // second OFF
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blink_task.delay(LED_PERIOD - 2* LED_ONTIME - LED_GAPTIME);
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break;
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}
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}
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Task blink_task(0, TASK_FOREVER, &blink, &runner, true); // -> ENABLED, at start-up.
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//common task #1 : listen on osc messages
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// - osc processing
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void route_note(OSCMessage& msg, int offset) {
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// Serial.println("got route_note!");
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// matches will happen in the order. that the bundle is packed.
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static Note note;
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// (1) --> /onoff
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if (msg.fullMatch("/onoff", offset)) {
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//
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note.clear();
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//
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note.onoff = msg.getFloat(0);
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// if (note.onoff != 0) note.onoff = 1;
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}
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// (2) --> /velocity
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if (msg.fullMatch("/velocity", offset)) {
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note.velocity = msg.getFloat(0);
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}
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// (3) --> /pitch
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if (msg.fullMatch("/pitch", offset)) {
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note.pitch = msg.getFloat(0);
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}
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// (4) --> /id
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if (msg.fullMatch("/id", offset)) {
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note.id = msg.getInt(0);
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}
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// (5) --> /x
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if (msg.fullMatch("/x", offset)) {
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note.x1 = msg.getFloat(0);
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note.x2 = msg.getFloat(1);
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note.x3 = msg.getFloat(2);
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note.x4 = msg.getFloat(3);
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note.ps = msg.getFloat(4);
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//
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onNoteHandler(note);
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//
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}
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}
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// - osc task
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extern Task osc_task;
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void osc()
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{
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//osc
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OSCBundle bundleIN;
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int size = Udp.parsePacket();
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if (size > 0) {
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Serial.println(size);
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while (size--) {
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bundleIN.fill(Udp.read());
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}
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if (!bundleIN.hasError()) {
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// on '/note'
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bundleIN.route("/note", route_note);
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} else {
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error = bundleIN.getError();
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Serial.print("error: ");
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Serial.println(error);
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}
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}
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}
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Task osc_task(1, TASK_FOREVER, &osc, &runner, false); // -> ENABLED, at start-up.
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//*-*-*-*-*-*-*-*-*-*-*-*-*
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//
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void setup() {
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//led
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pinMode(LED_PIN, OUTPUT);
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//pwm freq.
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analogWriteFreq(40000);
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//serial
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Serial.begin(115200);
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delay(100);
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//wifi
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Serial.println();
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Serial.println();
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Serial.print("Connecting to ");
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Serial.println(ssid);
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WiFi.begin(ssid, pass);
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while (WiFi.status() != WL_CONNECTED) {
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delay(500);
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Serial.print(".");
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}
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Serial.println("");
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Serial.println("WiFi connected");
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Serial.println("IP address: ");
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Serial.println(WiFi.localIP());
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Serial.println("Starting UDP");
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Udp.begin(listening_port);
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Serial.print("Local port: ");
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Serial.println(Udp.localPort());
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Udp.flush();
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//start osc processing
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osc_task.restartDelayed(10);
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//info
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Serial.println();
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Serial.println();
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Serial.println("\"hi, i m your postman.\"");
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Serial.println("-");
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Serial.println("- my id: " + String(MY_ID) + ", gid: " + String(MY_GROUP_ID) + ", call me ==> \"" + String(MY_SIGN) + "\"");
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Serial.println("- mac address: " + WiFi.macAddress() + ", channel: " + String(WIFI_CHANNEL));
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Serial.println("-");
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Serial.println("\".-.-.-. :)\"");
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Serial.println();
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//random seed
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randomSeed(analogRead(0));
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}
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void loop() {
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//
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runner.execute();
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//
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}
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