Fixed LED display driver that enables ESP32 as controller.
This commit is contained in:
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2c44f8b873
commit
b0fdd05bf2
7 changed files with 93 additions and 68 deletions
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@ -17,3 +17,5 @@ lib_deps =
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SPI
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SPI
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adafruit/Adafruit GFX Library@^1.10.1
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adafruit/Adafruit GFX Library@^1.10.1
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adafruit/Adafruit BusIO@1.4.1
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adafruit/Adafruit BusIO@1.4.1
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makuna/NeoPixelBus@^2.6.0
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aligator/NeoPixelBusGfx@^1.1.0
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@ -7,13 +7,47 @@
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#include <Adafruit_NeoPixel.h>
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#include <Adafruit_NeoPixel.h>
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#include <EepromManager.h>
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#include <EepromManager.h>
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#include "esp_task_wdt.h"
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#include "esp_task_wdt.h"
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#include <NeoPixelBrightnessBusGfx.h>
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#include <NeoPixelBrightnessBus.h>
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// function for updater task on core 0
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void updateDisplayGlobal(void* object);
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//extern LedDisplayController *ledDisplayControllerGlobal;
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class LedDisplayController
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class LedDisplayController
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{
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{
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public:
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public:
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explicit LedDisplayController(Adafruit_NeoMatrix *matrix);
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template<typename T_COLOR_FEATURE, typename T_METHOD>
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explicit LedDisplayController(NeoPixelBrightnessBusGfx<T_COLOR_FEATURE, T_METHOD> *matrix )
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{
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this->eepromUnit = nullptr;
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//ledDisplayControllerGlobal = this;
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this->loadTextSets();
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this->matrix = matrix;
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this->matrix->Begin();
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//this->matrix->setRemapFunction(&remap);
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this->matrix->setTextWrap(false);
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this->matrix->SetBrightness(40);
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text_curr_nr = 0;
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text_set_starttime = 0;
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text_pass = 0;
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textpixel = 0;
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disp_brightness = 5;
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disp_show = false;
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this->disp_init();
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// create updater task
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xTaskCreatePinnedToCore(updateDisplayGlobal, "DisplayUpdateTask", 10000, this, 1, &displayUpdateTask, 0);
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} ;
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~LedDisplayController();
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~LedDisplayController();
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//typedef uint16_t (*remapfn)(uint16_t, uint16_t);
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enum text_align_t
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enum text_align_t
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{
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{
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AlignLeft,
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AlignLeft,
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@ -63,7 +97,7 @@ public:
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private:
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private:
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// matrix objects
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// matrix objects
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TaskHandle_t displayUpdateTask;
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TaskHandle_t displayUpdateTask;
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Adafruit_NeoMatrix *matrix;
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NeoPixelBrightnessBusGfx<NeoGrbFeature, Neo800KbpsMethod> *matrix;
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// matrix variables
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// matrix variables
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uint16_t text_curr_nr;
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uint16_t text_curr_nr;
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@ -76,6 +110,7 @@ private:
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bool disp_show;
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bool disp_show;
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// matrix control
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// matrix control
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//uint16_t remap(uint16_t x, uint16_t y);
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void disp_init();
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void disp_init();
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void disp_start_set();
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void disp_start_set();
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void disp_scroll_text();
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void disp_scroll_text();
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@ -102,7 +137,7 @@ private:
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} sets_t;
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} sets_t;
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// storage variables
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// storage variables
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const text_set_t defaultTextSet {"", false, 0, "", AlignCenter, false, 0, 0};
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const text_set_t defaultTextSet {"Hallo", true, 1000, "", AlignCenter, false, 0, 0};
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sets_t text_sets;
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sets_t text_sets;
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// storage control
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// storage control
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@ -112,8 +147,6 @@ private:
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bool loadTextSets();
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bool loadTextSets();
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};
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};
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// function for updater task on core 0
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void updateDisplayGlobal(void *);
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extern LedDisplayController *ledDisplayControllerGlobal;
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#endif // LED_DISPLAY_CONTROLLER
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#endif // LED_DISPLAY_CONTROLLER
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@ -8,11 +8,32 @@
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#include "BluetoothLeUartServer.h"
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#include "BluetoothLeUartServer.h"
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#include "LedDisplayController.h"
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#include "LedDisplayController.h"
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class OmobiLedDisplay : protected BluetoothLeUartServerCallbacks
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class OmobiLedDisplay : protected BluetoothLeUartServerCallbacks
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{
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{
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public:
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public:
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explicit OmobiLedDisplay(String deviceName, Adafruit_NeoMatrix *ledDisplayMatrix);
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template<typename T_COLOR_FEATURE, typename T_METHOD>
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explicit OmobiLedDisplay(String deviceName, NeoPixelBrightnessBusGfx<T_COLOR_FEATURE, T_METHOD> *ledDisplayMatrix)
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{
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this->lastKeepAlive = -1;
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this->sessionAuthorized = false;
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// init eeprom manager
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this->eepromManager = new EepromManager();
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// init led display controller
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this->ledDisplayController = new LedDisplayController(ledDisplayMatrix);
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this->ledDisplayController->registerEepromUnit(this->eepromManager);
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// init ble server
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this->bleServer = new BluetoothLeUartServer("Omobi Display", "92fecb20-1406-426a-afa5-cd5c1f306462", "92fecb21-1406-426a-afa5-cd5c1f306462", "92fecb22-1406-426a-afa5-cd5c1f306462");
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this->bleServer->setCallbacks(this);
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this->eepromUnit = this->eepromManager->registerEempromUnit(sizeof(DisplayProperties));
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this->loadProperties();
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};
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// befriend for callbacks
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// befriend for callbacks
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friend class BluetoothLeUartServer;
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friend class BluetoothLeUartServer;
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@ -22,5 +22,7 @@ lib_deps =
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adafruit/Adafruit NeoPixel@^1.6.0
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adafruit/Adafruit NeoPixel@^1.6.0
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adafruit/Adafruit NeoMatrix@^1.1.5
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adafruit/Adafruit NeoMatrix@^1.1.5
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bblanchon/ArduinoJson@^6.16.1
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bblanchon/ArduinoJson@^6.16.1
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makuna/NeoPixelBus
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aligator/NeoPixelBusGfx@^1.1.0
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monitor_filters = esp32_exception_decoder
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monitor_filters = esp32_exception_decoder
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monitor_speed = 115200
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monitor_speed = 115200
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@ -2,29 +2,7 @@
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LedDisplayController *ledDisplayControllerGlobal = nullptr;
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LedDisplayController *ledDisplayControllerGlobal = nullptr;
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LedDisplayController::LedDisplayController(Adafruit_NeoMatrix *matrix)
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{
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this->eepromUnit = nullptr;
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ledDisplayControllerGlobal = this;
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this->loadTextSets();
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this->matrix = matrix;
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this->matrix->begin();
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this->matrix->setTextWrap(false);
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this->matrix->setBrightness(40);
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text_curr_nr = 0;
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text_set_starttime = 0;
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text_pass = 0;
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textpixel = 0;
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disp_brightness = 5;
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disp_show = false;
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this->disp_init();
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// create updater task
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xTaskCreatePinnedToCore(updateDisplayGlobal, "DisplayUpdateTask", 10000, NULL, 1, &displayUpdateTask, 0);
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}
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// --------------------
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// --------------------
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// - Public functions -
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// - Public functions -
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@ -108,6 +86,7 @@ void LedDisplayController::disp_start_set()
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((text_sets.sets[text_curr_nr].scroll == true) && (text_sets.sets[text_curr_nr].scrollCount > 0) && (text_pass >= text_sets.sets[text_curr_nr].scrollCount)) ||
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((text_sets.sets[text_curr_nr].scroll == true) && (text_sets.sets[text_curr_nr].scrollCount > 0) && (text_pass >= text_sets.sets[text_curr_nr].scrollCount)) ||
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(((text_sets.sets[text_curr_nr].scrollCount == 0) || text_sets.sets[text_curr_nr].scroll == false) && (text_sets.sets[text_curr_nr].runtime == 0) && ((millis() - text_set_starttime) >= 10000)))
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(((text_sets.sets[text_curr_nr].scrollCount == 0) || text_sets.sets[text_curr_nr].scroll == false) && (text_sets.sets[text_curr_nr].runtime == 0) && ((millis() - text_set_starttime) >= 10000)))
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{
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{
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//Serial.printf("[%lu] Meet start set condition. Curr set is %d. \n", millis(), text_curr_nr);
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//Serial.printf("[%lu] Meet start set condition. Curr set is %d. \n", millis(), text_curr_nr);
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if (0 < text_set_starttime || text_sets.sets[text_curr_nr].text == '\0' || text_sets.sets[text_curr_nr].active == false)
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if (0 < text_set_starttime || text_sets.sets[text_curr_nr].text == '\0' || text_sets.sets[text_curr_nr].active == false)
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text_curr_nr++;
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text_curr_nr++;
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@ -163,9 +142,9 @@ void LedDisplayController::show_matrix(const char *text, int pos, const char *co
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this->matrix->setTextColor(this->colorFromHex(String(color)));
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this->matrix->setTextColor(this->colorFromHex(String(color)));
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this->matrix->setCursor(pos, 0);
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this->matrix->setCursor(pos, 0);
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this->matrix->print(text);
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this->matrix->print(text);
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portDISABLE_INTERRUPTS();
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//portDISABLE_INTERRUPTS();
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this->matrix->show();
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this->matrix->Show();
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portENABLE_INTERRUPTS();
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//portENABLE_INTERRUPTS();
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}
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}
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uint16_t LedDisplayController::colorFromHex(String hex)
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uint16_t LedDisplayController::colorFromHex(String hex)
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@ -336,7 +315,7 @@ bool LedDisplayController::loadTextSets()
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if (strcmp(buf.valid, "OK") == 0)
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if (strcmp(buf.valid, "OK") == 0)
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{
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{
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memcpy(&text_sets, &buf, sizeof(sets_t));
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memcpy(&text_sets, &buf, sizeof(sets_t));
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Serial.println("OK");
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Serial.printf("OK: '%s\n", text_sets.sets[0].text);
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return true;
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return true;
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}
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}
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else
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else
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@ -359,12 +338,12 @@ bool LedDisplayController::loadTextSets()
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// - Extern -
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// - Extern -
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// ----------
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// ----------
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void updateDisplayGlobal(void *)
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void updateDisplayGlobal(void* object)
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{
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{
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for (;;)
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for (;;)
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{
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{
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esp_task_wdt_reset();
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esp_task_wdt_reset();
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delay(1);
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delay(1);
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ledDisplayControllerGlobal->loop();
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((LedDisplayController*)(object))->loop();
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}
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}
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}
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}
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@ -1,24 +1,7 @@
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#include "OmobiLedDisplay.h"
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#include "OmobiLedDisplay.h"
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OmobiLedDisplay::OmobiLedDisplay(String deviceName, Adafruit_NeoMatrix *ledDisplayMatrix)
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//OmobiLedDisplay::OmobiLedDisplay(String deviceName, Adafruit_NeoMatrix *ledDisplayMatrix)
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{
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this->lastKeepAlive = -1;
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this->sessionAuthorized = false;
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// init eeprom manager
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this->eepromManager = new EepromManager();
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// init led display controller
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this->ledDisplayController = new LedDisplayController(ledDisplayMatrix);
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this->ledDisplayController->registerEepromUnit(this->eepromManager);
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// init ble server
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this->bleServer = new BluetoothLeUartServer("Omobi Display", "92fecb20-1406-426a-afa5-cd5c1f306462", "92fecb21-1406-426a-afa5-cd5c1f306462", "92fecb22-1406-426a-afa5-cd5c1f306462");
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this->bleServer->setCallbacks(this);
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this->eepromUnit = this->eepromManager->registerEempromUnit(sizeof(DisplayProperties));
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this->loadProperties();
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}
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void OmobiLedDisplay::loop()
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void OmobiLedDisplay::loop()
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{
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{
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@ -1,27 +1,32 @@
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#include <Arduino.h>
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#include <Arduino.h>
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#include "OmobiLedDisplay.h"
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#include "OmobiLedDisplay.h"
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#define PIN 4
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#define MATRIX_PIN 4
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#define TILE_PIXEL_ROWS 8
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#define TILE_PIXEL_COLS 8
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#define MATRIX_TILES_ROW 1
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#define MATRIX_TILES_COL 2
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#define MATRIX_PIXEL_WIDTH TILE_PIXEL_COLS*MATRIX_TILES_COL
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#define MATRIX_PIXEL_HEIGHT TILE_PIXEL_ROWS*MATRIX_TILES_ROW
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OmobiLedDisplay *display;
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OmobiLedDisplay *display;
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NeoPixelBrightnessBusGfx<NeoGrbFeature, Neo800KbpsMethod> *displayMatrix = new NeoPixelBrightnessBusGfx<NeoGrbFeature, Neo800KbpsMethod>(MATRIX_PIXEL_WIDTH, MATRIX_PIXEL_HEIGHT, MATRIX_PIN);
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NeoTiles <RowMajorLayout, RowMajorLayout> tiles(TILE_PIXEL_COLS, TILE_PIXEL_ROWS, MATRIX_TILES_COL,MATRIX_TILES_ROW);
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// use a remap function to remap based on the topology, tile or mosaik
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// this function is passed as remap function to the matrix
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uint16_t remap(uint16_t x, uint16_t y) {
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return tiles.Map(x, y);
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}
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void setup()
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void setup()
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{
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{
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Serial.begin(115200);
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Serial.begin(115200);
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Serial.printf("Los\n");
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Serial.printf("Los\n");
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Adafruit_NeoMatrix *displayMatrix = new Adafruit_NeoMatrix(
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8,
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8,
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1,
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1,
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PIN,
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NEO_TILE_TOP + NEO_TILE_LEFT + NEO_TILE_ROWS + NEO_TILE_PROGRESSIVE +
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NEO_MATRIX_TOP + NEO_MATRIX_LEFT + NEO_MATRIX_ROWS + NEO_TILE_PROGRESSIVE,
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NEO_GRB + NEO_KHZ800);
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// create our display
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// create our display
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displayMatrix->setRemapFunction(&remap);
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display = new OmobiLedDisplay("OmobiLedDisplay1", displayMatrix);
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display = new OmobiLedDisplay("OmobiLedDisplay1", displayMatrix);
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}
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}
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void loop()
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void loop()
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