add battery and sdcard pins 1-bit
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@ -265,7 +265,7 @@ lib_deps =
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https://github.com/takkaO/OpenFontRender
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https://github.com/takkaO/OpenFontRender
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bblanchon/ArduinoJson@^6.21.2
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bblanchon/ArduinoJson@^6.21.2
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https://github.com/tzapu/WiFiManager.git#v2.0.16-rc.2
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https://github.com/tzapu/WiFiManager.git#v2.0.16-rc.2
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mathertel/OneButton @ ^2.0.3
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mathertel/OneButton @ 2.0.3
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arduino-libraries/NTPClient
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arduino-libraries/NTPClient
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bodmer/TFT_eSPI @ ^2.5.31
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bodmer/TFT_eSPI @ ^2.5.31
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https://github.com/achillhasler/TFT_eTouch
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https://github.com/achillhasler/TFT_eTouch
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@ -9,30 +9,53 @@
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#define BUTTON1_PIN (0)
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#define BUTTON1_PIN (0)
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#define BUTTON2_PIN (21)
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#define BUTTON2_PIN (21)
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#define PIN_BUTTON_1 BUTTON1_PIN
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#define PIN_BUTTON_1 (0)
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// #define PIN_BUTTON_2 BUTTON2_PIN
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//#define PIN_BUTTON_2 (21)
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// touch screen
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// touch screen
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#define TOUCHSCREEN_SCLK_PIN (1)
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#define TOUCH_IRQ (9)
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#define TOUCHSCREEN_MISO_PIN (4)
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#define TOUCH_CLK (1)
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#define TOUCHSCREEN_MOSI_PIN (3)
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#define TOUCH_MISO (4)
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#define TOUCHSCREEN_CS_PIN (2)
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#define TOUCH_MOSI (3)
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#define TOUCHSCREEN_IRQ_PIN (9)
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#define ETOUCH_CS (2)
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#define TOUCH_CLK TOUCHSCREEN_SCLK_PIN
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#define TOUCH_MISO TOUCHSCREEN_MISO_PIN
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#define TOUCH_MOSI TOUCHSCREEN_MOSI_PIN
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#define ETOUCH_CS TOUCHSCREEN_CS_PIN
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// lcd
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// lcd
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#define LCD_DATA0_PIN (48)
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#define LCD_DATA1_PIN (47)
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#define LCD_DATA2_PIN (39)
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#define LCD_DATA3_PIN (40)
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#define LCD_DATA4_PIN (41)
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#define LCD_DATA5_PIN (42)
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#define LCD_DATA6_PIN (45)
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#define LCD_DATA7_PIN (46)
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#define PCLK_PIN (8)
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#define PCLK_PIN (8)
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#define CS_PIN (6)
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#define CS_PIN (6)
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#define DC_PIN (7)
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#define DC_PIN (7)
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#define RST_PIN (-1)
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#define RST_PIN (-1)
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#define BK_LIGHT_PIN (38)
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#define BK_LIGHT_PIN (38)
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#define BK_LIGHT_LEVEL (1)
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#define LED_PIN (8)
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#define LED_PIN (8)
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// sd card
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// 1-bit SD_MMC
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#ifdef DEFINE_1BIT
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#define SDMMC_CLK (12)
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#define SDMMC_CMD (11)
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#define SDMMC_D0 (13)
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#else
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#define SDSPI_MISO (13)
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#define SDSPI_MOSI (11)
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#define SDSPI_CLK (12)
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#endif
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#ifndef TFT_BL
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#ifndef TFT_BL
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// XXX - defined in User_Setups/Setup207_LilyGo_T_HMI.h:37
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// XXX - defined in User_Setups/Setup207_LilyGo_T_HMI.h:37
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#define TFT_BL (38) // LED back-light
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#define TFT_BL (38) // LED back-light
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@ -12,6 +12,9 @@
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#include "monitor.h"
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#include "monitor.h"
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#include "OpenFontRender.h"
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#include "OpenFontRender.h"
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#include <Arduino.h>
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#include <esp_adc_cal.h>
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#define WIDTH 320
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#define WIDTH 320
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#define HEIGHT 240
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#define HEIGHT 240
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@ -21,16 +24,38 @@ TFT_eSprite background = TFT_eSprite(&tft); // Invoke library sprite
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SPIClass hSPI(HSPI);
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SPIClass hSPI(HSPI);
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TFT_eTouch<TFT_eSPI> touch(tft, ETOUCH_CS, 0xFF, hSPI);
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// TFT_eTouch<TFT_eSPI> touch(tft, ETOUCH_CS, 0xFF, hSPI);
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bool showbtcprice = false;
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bool showbtcprice = false;
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extern monitor_data mMonitor;
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extern monitor_data mMonitor;
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extern pool_data pData;
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extern pool_data pData;
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extern DisplayDriver *currentDisplayDriver;
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extern DisplayDriver *currentDisplayDriver;
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uint32_t readAdcVoltage(int pin) {
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esp_adc_cal_characteristics_t adc_chars;
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esp_adc_cal_value_t val_type = esp_adc_cal_characterize(ADC_UNIT_1, ADC_ATTEN_DB_11, ADC_WIDTH_BIT_12, 1100, &adc_chars);
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return esp_adc_cal_raw_to_voltage(analogRead(pin), &adc_chars);
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}
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void printBatteryVoltage() {
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uint32_t voltage = readAdcVoltage(BAT_ADC_PIN) * 2;
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Serial.print("Battery voltage: ");
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Serial.println((float)voltage/1000);
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delay(500);
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}
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void t_hmiDisplay_Init(void)
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void t_hmiDisplay_Init(void)
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{
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{
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pinMode(PWR_ON_PIN, OUTPUT);
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digitalWrite(PWR_ON_PIN, HIGH);
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delay(10);
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Serial.println(F("Turn on the main power"));
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pinMode(PWR_EN_PIN, OUTPUT);
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digitalWrite(PWR_EN_PIN, HIGH);
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tft.init();
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tft.init();
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tft.setRotation(1);
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tft.setRotation(1);
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tft.setSwapBytes(true); // Swap the colour byte order when rendering
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tft.setSwapBytes(true); // Swap the colour byte order when rendering
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@ -51,10 +76,10 @@ void t_hmiDisplay_Init(void)
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TFT_eTouchBase::Calibation calibation = { 233, 3785, 3731, 120, 2 };
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TFT_eTouchBase::Calibation calibation = { 233, 3785, 3731, 120, 2 };
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touch.setCalibration(calibation);
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touch.setCalibration(calibation);
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*/
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*/
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Serial.println(F("Power on peripherals, such as the LCD backlight"));
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Serial.println(F("Turn on the LCD backlight"));
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pinMode(PWR_EN_PIN, OUTPUT);
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digitalWrite(PWR_EN_PIN, HIGH);
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pinMode(LED_PIN, OUTPUT);
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pinMode(LED_PIN, OUTPUT);
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pinMode(BK_LIGHT_PIN, OUTPUT);
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digitalWrite(BK_LIGHT_PIN, BK_LIGHT_LEVEL);
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pData.bestDifficulty = "0";
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pData.bestDifficulty = "0";
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pData.workersHash = "0";
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pData.workersHash = "0";
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pData.workersCount = 0;
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pData.workersCount = 0;
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@ -73,6 +98,7 @@ void t_hmiDisplay_AlternateRotation(void)
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tft.getRotation() == 1 ? tft.setRotation(3) : tft.setRotation(1);
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tft.getRotation() == 1 ? tft.setRotation(3) : tft.setRotation(1);
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}
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}
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void printPoolData()
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void printPoolData()
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{
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{
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// Serial.print("\nPool ============ Free Heap:");
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// Serial.print("\nPool ============ Free Heap:");
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@ -88,6 +114,7 @@ void printPoolData()
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render.setFontSize(18);
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render.setFontSize(18);
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render.drawString(pData.workersHash.c_str(), 216, 170+34, TFT_BLACK);
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render.drawString(pData.workersHash.c_str(), 216, 170+34, TFT_BLACK);
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render.drawString(pData.bestDifficulty.c_str(), 5, 170+34, TFT_BLACK);
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render.drawString(pData.bestDifficulty.c_str(), 5, 170+34, TFT_BLACK);
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// printBatteryVoltage();
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}
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}
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@ -116,6 +143,7 @@ void printMemPoolFees(unsigned long mElapsed)
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// render.drawChar('<', 245, 170+32, TFT_RED);
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// render.drawChar('<', 245, 170+32, TFT_RED);
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render.drawString(data.minimumFee.c_str(), 250, 170+32, TFT_RED);
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render.drawString(data.minimumFee.c_str(), 250, 170+32, TFT_RED);
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render.drawString(data.fastestFee.c_str(), 30, 170+32, TFT_BLACK);
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render.drawString(data.fastestFee.c_str(), 30, 170+32, TFT_BLACK);
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// printBatteryVoltage();
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}
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}
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void t_hmiDisplay_MinerScreen(unsigned long mElapsed)
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void t_hmiDisplay_MinerScreen(unsigned long mElapsed)
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