Refactoring for stability, etc. Add new animation.
This commit is contained in:
@@ -49,20 +49,22 @@
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// DEBUG
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uint32_t dbg_counter = 0; // TODO RM
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const String state_names[] = {"Clock", "DiClock", "Spiral", "Tetris", "Snake", "PingPong"};
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const String state_names[] = {"Clock", "DiClock", "Spiral", "Tetris", "Snake", "PingPong", "Hearts"};
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// PERIODS for each state (different for stateAutoChange or Manual mode)
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const uint16_t PERIODS[2][NUM_STATES] = {{PERIOD_TIME_VISU_UPDATE, // stateAutoChange = 0
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PERIOD_TIME_VISU_UPDATE,
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PERIOD_ANIMATION,
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PERIOD_TETRIS,
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PERIOD_SNAKE,
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PERIOD_PONG},
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PERIOD_PONG,
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PERIOD_ANIMATION},
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{PERIOD_TIME_VISU_UPDATE, // stateAutoChange = 1
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PERIOD_TIME_VISU_UPDATE,
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PERIOD_ANIMATION,
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PERIOD_ANIMATION,
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PERIOD_ANIMATION,
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PERIOD_PONG}};
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PERIOD_PONG,
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PERIOD_ANIMATION}};
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// ----------------------------------------------------------------------------------
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// GLOBAL VARIABLES
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@@ -85,6 +87,7 @@ UDPLogger logger;
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// Statics
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static bool spiral_direction = false;
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static unsigned long last_led_direct = 0; // time of last direct LED command (=> fall back to normal mode after timeout)
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static WiFiUDP wifi_udp;
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static NTPClientPlus ntp_client = NTPClientPlus(wifi_udp, NTP_SERVER_URL, 1, true);
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@@ -92,16 +95,6 @@ static Pong pong = Pong(&led_matrix, &logger);
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static Snake snake = Snake(&led_matrix, &logger);
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static Tetris tetris = Tetris(&led_matrix, &logger);
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// Timestamp variables
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static unsigned long button_press_start = 0; // time of push button press start
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static unsigned long last_led_direct = 0; // time of last direct LED command (=> fall back to normal mode after timeout)
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static unsigned long last_animation_step = millis(); // time of last Matrix update
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static unsigned long last_heartbeat = millis(); // time of last heartbeat sending
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static unsigned long last_nightmode_check = millis(); // time of last nightmode check
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static unsigned long last_ntp_update = millis() - PERIOD_NTP_UPDATE - 5000; // time of last NTP update
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static unsigned long last_state_change = millis(); // time of last state change
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static unsigned long last_step = millis(); // time of last animation step
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static bool night_mode = false; // stores state of nightmode
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static bool state_auto_change = false; // stores state of automatic state change
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static float filter_factor = DEFAULT_SMOOTHING_FACTOR; // stores smoothing factor for led transition
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@@ -120,7 +113,6 @@ NightModeTimes_st night_mode_times = {
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// ----------------------------------------------------------------------------------
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// SETUP
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// ----------------------------------------------------------------------------------
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void setup()
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{
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// put your setup code here, to run once:
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@@ -196,12 +188,12 @@ void setup()
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if (resetInfo->reason != REASON_SOFT_RESTART)
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{
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// test quickly each LED
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for (int r = 0; r < MATRIX_HEIGHT; r++)
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for (int16_t row = 0; row < MATRIX_HEIGHT; row++)
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{
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for (int c = 0; c < MATRIX_WIDTH; c++)
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for (int16_t col = 0; col < MATRIX_WIDTH; col++)
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{
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matrix.fillScreen(0);
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matrix.drawPixel(c, r, LEDMatrix::color_24_to_16bit(colors_24bit[2]));
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matrix.drawPixel(col, row, LEDMatrix::color_24_to_16bit(colors_24bit[2]));
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matrix.show();
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delay(10);
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}
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@@ -270,6 +262,7 @@ void setup()
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{
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night_mode_times.nightmode_end_min = NIGHTMODE_END_MIN;
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}
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logger.log_string("Nightmode starts at: " + String(night_mode_times.nightmode_start_hour) + ":" + String(night_mode_times.nightmode_start_min));
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logger.log_string("Nightmode ends at: " + String(night_mode_times.nightmode_end_hour) + ":" + String(night_mode_times.nightmode_end_min));
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@@ -286,35 +279,79 @@ void setup()
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// ----------------------------------------------------------------------------------
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// LOOP
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// ----------------------------------------------------------------------------------
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void loop()
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{
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unsigned long current_time_ms = CURRENT_TIME_MS;
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// Timestamp variables
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static unsigned long last_animation_step = 0; // time of last animation step
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static unsigned long last_matrix_update = 0; // time of last Matrix update
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static unsigned long last_heartbeat = 0; // time of last heartbeat sending
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static unsigned long last_nightmode_check = 0; // time of last nightmode check
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static unsigned long last_ntp_update = 0; // time of last NTP update
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static unsigned long last_state_change = 0; // time of last state change
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handleOTA(); // handle OTA
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logger.log_string("After handleOTA");
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yield();
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webserver.handleClient(); // handle webserver
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logger.log_string("After handleClient");
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yield();
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send_heartbeat(); // send heartbeat update
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logger.log_string("After send_heartbeat");
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// send regularly heartbeat messages via UDP multicast
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if ((current_time_ms - last_heartbeat) > PERIOD_HEARTBEAT)
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{
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Serial.printf("a");
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Serial.println();
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send_heartbeat(); // send heartbeat update
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last_heartbeat = CURRENT_TIME_MS;
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yield();
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Serial.printf("A");
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}
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handle_current_state(); // handle current state - main process
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logger.log_string("After handle_current_state");
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if (!night_mode && ((current_time_ms - last_animation_step) > PERIODS[state_auto_change][current_state]) && ((current_time_ms - last_led_direct) > TIMEOUT_LEDDIRECT))
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{
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Serial.printf("b");
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handle_current_state(); // handle current state
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last_animation_step = CURRENT_TIME_MS;
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yield();
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Serial.printf("B");
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}
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update_matrix(); // update matrix
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logger.log_string("After update_matrix");
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if ((current_time_ms - last_matrix_update) > PERIOD_MATRIX_UPDATE)
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{
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Serial.printf("c");
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update_matrix(); // update matrix
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last_matrix_update = CURRENT_TIME_MS;
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yield();
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Serial.printf("C");
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}
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handle_button(); // handle button press
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logger.log_string("After handle_button");
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update_state_machine(); // handle state changes
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logger.log_string("After update_state_machine");
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if (!night_mode && state_auto_change && (current_time_ms - last_state_change > PERIOD_STATE_CHANGE))
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{
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Serial.printf("d");
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update_state_machine(); // handle state changes
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last_state_change = CURRENT_TIME_MS;
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yield();
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Serial.printf("D");
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}
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ntp_time_update(); // ntp time update
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logger.log_string("After ntp_time_update");
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if ((current_time_ms - last_ntp_update) > PERIOD_NTP_UPDATE)
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{
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Serial.printf("e");
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ntp_time_update(&last_ntp_update); // ntp time update
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yield();
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Serial.printf("E");
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}
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check_night_mode(); // check night mode
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logger.log_string("After check_night_mode");
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if ((current_time_ms - last_nightmode_check) > PERIOD_NIGHTMODE_CHECK)
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{
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Serial.printf("f");
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check_night_mode(); // check night mode
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last_nightmode_check = CURRENT_TIME_MS;
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Serial.printf("F");
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}
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}
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// ----------------------------------------------------------------------------------
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@@ -323,101 +360,92 @@ void loop()
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void update_state_machine()
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{
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unsigned long current_time_ms = millis();
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if (state_auto_change && (current_time_ms - last_state_change > PERIOD_STATE_CHANGE) && !night_mode)
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{
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// increment state variable and trigger state change
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state_change((current_state + 1) % NUM_STATES);
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// save last automatic state change
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last_state_change = current_time_ms;
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}
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// increment state variable and trigger state change
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state_change((current_state + 1) % (uint8_t)NUM_STATES);
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}
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void handle_current_state()
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{
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unsigned long current_time_ms = millis();
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// handle mode behaviours (trigger loopCycles of different modes depending on current mode)
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if (!night_mode && ((current_time_ms - last_step) > PERIODS[state_auto_change][current_state]) && ((current_time_ms - last_led_direct) > TIMEOUT_LEDDIRECT))
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switch (current_state)
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{
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switch (current_state)
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{
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case ST_CLOCK: // state clock
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{
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int hours = ntp_client.getHours24();
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int minutes = ntp_client.getMinutes();
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case ST_CLOCK: // state clock
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{
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int hours = ntp_client.getHours24();
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int minutes = ntp_client.getMinutes();
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(void)show_string_on_clock(time_to_string((uint8_t)hours, (uint8_t)minutes), main_color_clock);
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draw_minute_indicator((uint8_t)minutes, main_color_clock);
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break;
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}
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case ST_DICLOCK: // state diclock
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(void)show_string_on_clock(time_to_string((uint8_t)hours, (uint8_t)minutes), main_color_clock);
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draw_minute_indicator((uint8_t)minutes, main_color_clock);
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break;
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}
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case ST_DICLOCK: // state diclock
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{
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int hours = ntp_client.getHours24();
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int minutes = ntp_client.getMinutes();
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show_digital_clock((uint8_t)hours, (uint8_t)minutes, main_color_clock);
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break;
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}
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case ST_SPIRAL: // state spiral
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{
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int res = draw_spiral(false, spiral_direction, MATRIX_WIDTH - 6);
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if (res && spiral_direction == 0)
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{
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int hours = ntp_client.getHours24();
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int minutes = ntp_client.getMinutes();
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show_digital_clock((uint8_t)hours, (uint8_t)minutes, main_color_clock);
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break;
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// change spiral direction to closing (draw empty leds)
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spiral_direction = 1;
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// init spiral with new spiral direction
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draw_spiral(true, spiral_direction, MATRIX_WIDTH - 6);
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}
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case ST_SPIRAL: // state spiral
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else if (res && spiral_direction == 1)
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{
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int res = draw_spiral(false, spiral_direction, MATRIX_WIDTH - 6);
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if (res && spiral_direction == 0)
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{
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// change spiral direction to closing (draw empty leds)
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spiral_direction = 1;
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// init spiral with new spiral direction
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draw_spiral(true, spiral_direction, MATRIX_WIDTH - 6);
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}
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else if (res && spiral_direction == 1)
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{
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// reset spiral direction to normal drawing leds
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spiral_direction = 0;
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// init spiral with new spiral direction
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draw_spiral(true, spiral_direction, MATRIX_WIDTH - 6);
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}
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break;
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// reset spiral direction to normal drawing leds
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spiral_direction = 0;
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// init spiral with new spiral direction
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draw_spiral(true, spiral_direction, MATRIX_WIDTH - 6);
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}
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case ST_TETRIS: // state tetris
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break;
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}
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case ST_TETRIS: // state tetris
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{
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if (state_auto_change)
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{
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if (state_auto_change)
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{
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random_tetris(false);
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}
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else
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{
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tetris.loopCycle();
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}
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break;
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random_tetris(false);
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}
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case ST_SNAKE: // state snake
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else
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{
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if (state_auto_change)
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{
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led_matrix.flush();
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if (random_snake(false, 8, main_color_snake, -1))
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{
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// init snake for next run
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random_snake(true, 8, main_color_snake, -1);
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}
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}
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else
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{
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snake.loopCycle();
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}
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break;
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tetris.loopCycle();
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}
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case ST_PINGPONG: // state ping pong
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break;
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}
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case ST_SNAKE: // state snake
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{
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if (state_auto_change)
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{
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pong.loopCycle();
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break;
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led_matrix.flush();
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if (random_snake(false, 8, main_color_snake, -1))
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{
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// init snake for next run
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random_snake(true, 8, main_color_snake, -1);
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}
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}
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default:
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else
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{
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break;
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snake.loopCycle();
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}
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}
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last_step = millis();
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break;
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}
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case ST_PINGPONG: // state ping pong
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{
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pong.loopCycle();
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break;
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}
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case ST_HEARTS:
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{
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draw_heart_animation();
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break;
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}
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default:
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{
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break;
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}
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}
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}
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@@ -428,14 +456,8 @@ void handle_current_state()
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*/
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void update_matrix()
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{
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unsigned long current_time_ms = millis();
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// periodically write colors to matrix
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if ((current_time_ms - last_animation_step) > PERIOD_MATRIX_UPDATE)
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{
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led_matrix.draw_on_matrix_smooth(filter_factor);
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last_animation_step = current_time_ms;
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}
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led_matrix.draw_on_matrix_smooth(filter_factor);
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}
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/**
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@@ -445,25 +467,17 @@ void update_matrix()
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*/
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void send_heartbeat()
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{
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unsigned long current_time_ms = millis();
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// send regularly heartbeat messages via UDP multicast
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if ((current_time_ms - last_heartbeat) > PERIOD_HEARTBEAT)
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logger.log_string("Heartbeat, state: " + state_names[current_state] + ", FreeHeap: " + ESP.getFreeHeap() +
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", HeapFrag: " + ESP.getHeapFragmentation() + ", MaxFreeBlock: " + ESP.getMaxFreeBlockSize() + "\nCounter: " +
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dbg_counter + " , Hours: " + (float)(dbg_counter) / 3600.0 + "\n"); // TODO CHANGE
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// Check wifi status
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if (WiFi.status() != WL_CONNECTED)
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{
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logger.log_string("Heartbeat, state: " + state_names[current_state] + ", FreeHeap: " + ESP.getFreeHeap() + \
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", HeapFrag: " + ESP.getHeapFragmentation() + ", MaxFreeBlock: " + ESP.getMaxFreeBlockSize() + "\nCounter: " + \
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dbg_counter + " , Hours: " + (float)(dbg_counter) / 3600.0 + "\n"); // TODO CHANGE
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last_heartbeat = current_time_ms;
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// Check wifi status (only if no apmode)
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if (WiFi.status() != WL_CONNECTED)
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{
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Serial.println("WiFi connection lost!");
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led_matrix.grid_add_pixel(0, 5, colors_24bit[1]);
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led_matrix.draw_on_matrix_instant();
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}
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dbg_counter++; // TODO RM
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Serial.println("WiFi connection lost!");
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led_matrix.grid_add_pixel(0, 5, colors_24bit[1]);
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led_matrix.draw_on_matrix_instant();
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}
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dbg_counter++; // TODO RM
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}
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/**
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@@ -473,23 +487,17 @@ void send_heartbeat()
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*/
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void check_night_mode()
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{
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unsigned long current_time_ms = millis();
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// check if nightmode need to be activated
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if ((current_time_ms - last_nightmode_check) > PERIOD_NIGHTMODE_CHECK)
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{
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int hours = ntp_client.getHours24();
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int minutes = ntp_client.getMinutes();
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int hours = ntp_client.getHours24();
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int minutes = ntp_client.getMinutes();
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if (hours == night_mode_times.nightmode_start_hour && minutes == night_mode_times.nightmode_start_min)
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{
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set_night_mode(true);
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}
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else if (hours == night_mode_times.nightmode_end_hour && minutes == night_mode_times.nightmode_end_min)
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{
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set_night_mode(false);
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}
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last_nightmode_check = current_time_ms;
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if (hours == night_mode_times.nightmode_start_hour && minutes == night_mode_times.nightmode_start_min)
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{
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set_night_mode(true);
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}
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else if (hours == night_mode_times.nightmode_end_hour && minutes == night_mode_times.nightmode_end_min)
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{
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set_night_mode(false);
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}
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}
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@@ -498,63 +506,59 @@ void check_night_mode()
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*
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* @param None
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*/
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void ntp_time_update()
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void ntp_time_update(unsigned long *last_ntp_update)
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{
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unsigned long current_time_ms = millis();
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// NTP time update
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if ((current_time_ms - last_ntp_update) > PERIOD_NTP_UPDATE)
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{
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int ntp_retval = ntp_client.updateNTP();
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switch (ntp_retval)
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{
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case NTP_UPDATE_SUCCESS:
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{
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ntp_client.calcDate();
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logger.log_string("NTP-Update successful");
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logger.log_string("Time: " + ntp_client.getFormattedTime());
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logger.log_string("Date: " + ntp_client.getFormattedDate());
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logger.log_string("TimeOffset (seconds): " + String(ntp_client.getTimeOffset()));
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logger.log_string("Summertime: " + String(ntp_client.updateSWChange()));
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last_ntp_update = millis();
|
||||
watchdog_counter = 30;
|
||||
break;
|
||||
}
|
||||
case NTP_UPDATE_TIMEOUT:
|
||||
{
|
||||
logger.log_string("NTP-Update not successful. Reason: Timeout");
|
||||
last_ntp_update += 10000;
|
||||
watchdog_counter--;
|
||||
break;
|
||||
}
|
||||
case NTP_UPDATE_DIFFTOOHIGH:
|
||||
{
|
||||
logger.log_string("NTP-Update not successful. Reason: Too large time difference");
|
||||
logger.log_string("Time: " + ntp_client.getFormattedTime());
|
||||
logger.log_string("Date: " + ntp_client.getFormattedDate());
|
||||
logger.log_string("TimeOffset (seconds): " + String(ntp_client.getTimeOffset()));
|
||||
logger.log_string("Summertime: " + String(ntp_client.updateSWChange()));
|
||||
last_ntp_update += 10000;
|
||||
watchdog_counter--;
|
||||
break;
|
||||
}
|
||||
case NTP_UPDATE_TIME_INVALID:
|
||||
default:
|
||||
{
|
||||
logger.log_string("NTP-Update not successful. Reason: NTP time not valid (<1970)");
|
||||
last_ntp_update += 10000;
|
||||
watchdog_counter--;
|
||||
break;
|
||||
}
|
||||
}
|
||||
int ntp_retval = ntp_client.updateNTP();
|
||||
|
||||
logger.log_string("Watchdog Counter: " + String(watchdog_counter));
|
||||
if (watchdog_counter <= 0)
|
||||
{
|
||||
logger.log_string("Trigger restart due to watchdog...");
|
||||
delay(100);
|
||||
ESP.restart();
|
||||
}
|
||||
switch (ntp_retval)
|
||||
{
|
||||
case NTP_UPDATE_SUCCESS:
|
||||
{
|
||||
ntp_client.calcDate();
|
||||
logger.log_string("NTP-Update successful");
|
||||
logger.log_string("Time: " + ntp_client.getFormattedTime());
|
||||
logger.log_string("Date: " + ntp_client.getFormattedDate());
|
||||
logger.log_string("TimeOffset (seconds): " + String(ntp_client.getTimeOffset()));
|
||||
logger.log_string("Summertime: " + String(ntp_client.updateSWChange()));
|
||||
*last_ntp_update = CURRENT_TIME_MS;
|
||||
watchdog_counter = 30;
|
||||
break;
|
||||
}
|
||||
case NTP_UPDATE_TIMEOUT:
|
||||
{
|
||||
logger.log_string("NTP-Update not successful. Reason: Timeout");
|
||||
*last_ntp_update += 10000;
|
||||
watchdog_counter--;
|
||||
break;
|
||||
}
|
||||
case NTP_UPDATE_DIFFTOOHIGH:
|
||||
{
|
||||
logger.log_string("NTP-Update not successful. Reason: Too large time difference");
|
||||
logger.log_string("Time: " + ntp_client.getFormattedTime());
|
||||
logger.log_string("Date: " + ntp_client.getFormattedDate());
|
||||
logger.log_string("TimeOffset (seconds): " + String(ntp_client.getTimeOffset()));
|
||||
logger.log_string("Summertime: " + String(ntp_client.updateSWChange()));
|
||||
*last_ntp_update += 10000;
|
||||
watchdog_counter--;
|
||||
break;
|
||||
}
|
||||
case NTP_UPDATE_TIME_INVALID:
|
||||
default:
|
||||
{
|
||||
logger.log_string("NTP-Update not successful. Reason: NTP time not valid (<1970)");
|
||||
*last_ntp_update += 10000;
|
||||
watchdog_counter--;
|
||||
break;
|
||||
}
|
||||
}
|
||||
|
||||
logger.log_string("Watchdog Counter: " + String(watchdog_counter));
|
||||
if (watchdog_counter <= 0)
|
||||
{
|
||||
logger.log_string("Trigger restart due to watchdog...");
|
||||
delay(100);
|
||||
ESP.restart();
|
||||
}
|
||||
}
|
||||
|
||||
@@ -631,10 +635,9 @@ void state_change(uint8_t newState)
|
||||
{
|
||||
set_night_mode(false); // deactivate Nightmode
|
||||
}
|
||||
// first clear matrix
|
||||
led_matrix.flush();
|
||||
// set new state
|
||||
current_state = newState;
|
||||
|
||||
led_matrix.flush(); // first clear matrix
|
||||
current_state = newState; // set new state
|
||||
on_state_entry(current_state);
|
||||
logger.log_string("State change to: " + state_names[current_state]);
|
||||
delay(5);
|
||||
@@ -680,7 +683,7 @@ void handle_led_direct()
|
||||
}
|
||||
led_matrix.draw_on_matrix_instant();
|
||||
|
||||
last_led_direct = millis();
|
||||
last_led_direct = CURRENT_TIME_MS;
|
||||
}
|
||||
webserver.send(200, "text/plain", message);
|
||||
}
|
||||
@@ -692,28 +695,28 @@ void handle_led_direct()
|
||||
*/
|
||||
void handle_button()
|
||||
{
|
||||
static bool lastButtonState = false;
|
||||
bool buttonPressed = !digitalRead(BUTTON_PIN);
|
||||
bool button_pressed = !digitalRead(BUTTON_PIN);
|
||||
static bool last_button_state = false;
|
||||
static unsigned long button_press_start = 0; // time of push button press start
|
||||
|
||||
// check rising edge
|
||||
if (buttonPressed == true && lastButtonState == false)
|
||||
if (button_pressed == true && last_button_state == false)
|
||||
{
|
||||
// button press start
|
||||
logger.log_string("Button press started");
|
||||
button_press_start = millis();
|
||||
button_press_start = CURRENT_TIME_MS;
|
||||
}
|
||||
// check falling edge
|
||||
if (buttonPressed == false && lastButtonState == true)
|
||||
if (button_pressed == false && last_button_state == true)
|
||||
{
|
||||
// button press ended
|
||||
if ((millis() - button_press_start) > LONG_PRESS_MS)
|
||||
if ((CURRENT_TIME_MS - button_press_start) > LONG_PRESS_MS)
|
||||
{
|
||||
// longpress -> nightmode
|
||||
logger.log_string("Button press ended - long press");
|
||||
|
||||
set_night_mode(true);
|
||||
}
|
||||
else if ((millis() - button_press_start) > SHORT_PRESS_MS)
|
||||
else if ((CURRENT_TIME_MS - button_press_start) > SHORT_PRESS_MS)
|
||||
{
|
||||
// shortpress -> state change
|
||||
logger.log_string("Button press ended - short press");
|
||||
@@ -724,11 +727,11 @@ void handle_button()
|
||||
}
|
||||
else
|
||||
{
|
||||
state_change((current_state + 1) % NUM_STATES);
|
||||
state_change((current_state + 1) % (uint8_t)NUM_STATES);
|
||||
}
|
||||
}
|
||||
}
|
||||
lastButtonState = buttonPressed;
|
||||
last_button_state = button_pressed;
|
||||
}
|
||||
|
||||
/**
|
||||
@@ -755,7 +758,8 @@ void load_main_color()
|
||||
uint8_t red = EEPROM.read(ADR_MC_RED);
|
||||
uint8_t green = EEPROM.read(ADR_MC_GREEN);
|
||||
uint8_t blue = EEPROM.read(ADR_MC_BLUE);
|
||||
if (int(red) + int(green) + int(blue) < 50)
|
||||
|
||||
if ((int(red) + int(green) + int(blue)) < 50)
|
||||
{
|
||||
main_color_clock = colors_24bit[2];
|
||||
}
|
||||
@@ -821,6 +825,10 @@ void handle_command()
|
||||
{
|
||||
state_change(ST_PINGPONG);
|
||||
}
|
||||
else if (mode_str.equals("hearts"))
|
||||
{
|
||||
state_change(ST_HEARTS);
|
||||
}
|
||||
}
|
||||
else if (webserver.argName(0).equals("nightmode"))
|
||||
{
|
||||
@@ -946,6 +954,7 @@ void handle_command()
|
||||
pong.initGame(1);
|
||||
}
|
||||
}
|
||||
|
||||
webserver.send(204, "text/plain", "No Content"); // this page doesn't send back content --> 204
|
||||
}
|
||||
|
||||
|
||||
Reference in New Issue
Block a user