Modify pad detectionfor OBP60 Light

This commit is contained in:
norbert-walter 2025-01-17 18:00:32 +01:00
parent 47db247471
commit 49be7f117a
3 changed files with 36 additions and 29 deletions

View File

@ -181,14 +181,7 @@ long starttime = 0; // Start time point for pressed key
#endif #endif
#ifdef HARDWARE_LIGHT #ifdef HARDWARE_LIGHT
// Keypad functions for OBP60 clone (thSensitivity is inactiv) int readSensorpads(){
int readKeypad(uint thSensitivity) {
pinMode(UP, INPUT);
pinMode(DOWN, INPUT);
pinMode(CONF, INPUT);
pinMode(MENUE, INPUT);
pinMode(EXIT, INPUT);
// Read key code // Read key code
if(digitalRead(UP) == LOW){ if(digitalRead(UP) == LOW){
keycode = 10; // Left swipe keycode = 10; // Left swipe
@ -208,6 +201,19 @@ long starttime = 0; // Start time point for pressed key
else{ else{
keycode = 0; // No key activ keycode = 0; // No key activ
} }
return keycode;
}
// Keypad functions for OBP60 clone (thSensitivity is inactiv)
int readKeypad(uint thSensitivity) {
pinMode(UP, INPUT);
pinMode(DOWN, INPUT);
pinMode(CONF, INPUT);
pinMode(MENUE, INPUT);
pinMode(EXIT, INPUT);
// Raed pad values
readSensorpads();
// Detect key // Detect key
if (keycode > 0 ){ if (keycode > 0 ){
@ -220,6 +226,7 @@ long starttime = 0; // Start time point for pressed key
keystatus = keycode; keystatus = keycode;
// Copy keycode // Copy keycode
keycodeold = keycode; keycodeold = keycode;
while(readSensorpads() > 0){} // Wait for pad lesease
delay(keydelay); delay(keydelay);
} }
} }

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@ -9,10 +9,10 @@ board_build.variants_dir = variants
#board = obp60_s3_n8 #ESP32-S3 N8, 8MB flash, no PSRAM #board = obp60_s3_n8 #ESP32-S3 N8, 8MB flash, no PSRAM
#board = obp60_s3_n16 #ESP32-S3 N16,16MB flash, no PSRAM, zero series #board = obp60_s3_n16 #ESP32-S3 N16,16MB flash, no PSRAM, zero series
#board = obp60_s3_n8r8 #ESP32-S3 N8R8, 8MB flash, 8MB PSRAM #board = obp60_s3_n8r8 #ESP32-S3 N8R8, 8MB flash, 8MB PSRAM
board = obp60_s3_n16r8 #ESP32-S3 N16R8, 16MB flash, 8MB PSRAM, production series #board = obp60_s3_n16r8 #ESP32-S3 N16R8, 16MB flash, 8MB PSRAM, production series
#board = obp60_s3_light_n8r8 #ESP32-S3 N8R8, 8MB flash, 8MB PSRAM, OBP60 clone board = obp60_s3_light_n8r8 #ESP32-S3 N8R8, 8MB flash, 8MB PSRAM, OBP60 clone
#board_build.partitions = default_8MB.csv #ESP32-S3 N8, 8MB flash board_build.partitions = default_8MB.csv #ESP32-S3 N8, 8MB flash
board_build.partitions = default_16MB.csv #ESP32-S3 N16, 16MB flash #board_build.partitions = default_16MB.csv #ESP32-S3 N16, 16MB flash
framework = arduino framework = arduino
lib_deps = lib_deps =
${basedeps.lib_deps} ${basedeps.lib_deps}
@ -40,22 +40,22 @@ lib_deps =
build_flags= build_flags=
#https://thingpulse.com/usb-settings-for-logging-with-the-esp32-s3-in-platformio/?srsltid=AfmBOopGskbkr4GoeVkNlFaZXe_zXkLceKF6Rn-tmoXABCeAR2vWsdHL #https://thingpulse.com/usb-settings-for-logging-with-the-esp32-s3-in-platformio/?srsltid=AfmBOopGskbkr4GoeVkNlFaZXe_zXkLceKF6Rn-tmoXABCeAR2vWsdHL
# -D ARDUINO_USB_MODE=1 #0=OTG (to implement other external devices), 1=CDC (is a serial device) # -D ARDUINO_USB_MODE=1 #0=OTG (to implement other external devices), 1=CDC (is a serial device)
# -D ARDUINO_USB_CDC_ON_BOOT=1 #0=JTAG, 1=CDC (serial device) -D ARDUINO_USB_CDC_ON_BOOT=0 #Serial output via RX/TX
# -D CORE_DEBUG_LEVEL=1 #Debug level for CPU core via CDC (seral device) # -D CORE_DEBUG_LEVEL=1 #Debug level for CPU core via CDC (seral device)
# -D TIME=$UNIX_TIME #Set PC time for RTC (only settable via VSC) # -D TIME=$UNIX_TIME #Set PC time for RTC (only settable via VSC)
-D DISABLE_DIAGNOSTIC_OUTPUT #Disable diagnostic output for GxEPD2 lib -D DISABLE_DIAGNOSTIC_OUTPUT #Disable diagnostic output for GxEPD2 lib
-D BOARD_OBP60S3 #Board OBP60 V2.1 with ESP32S3 -D BOARD_OBP60S3 #Board OBP60 V2.1 with ESP32S3
# -D HARDWARE_V20 #OBP60 hardware revision V2.0 # -D HARDWARE_V20 #OBP60 hardware revision V2.0
-D HARDWARE_V21 #OBP60 hardware revision V2.1 # -D HARDWARE_V21 #OBP60 hardware revision V2.1
# -D HARDWARE_LIGHT #OBP60 hardware clone -D HARDWARE_LIGHT #OBP60 hardware clone
# -D DISPLAY_GDEW042T2 #old E-Ink display from Waveshare, R10 0.47 ohm # -D DISPLAY_GDEW042T2 #old E-Ink display from Waveshare, R10 0.47 ohm
-D DISPLAY_GDEY042T81 #new E-Ink display from Waveshare, R10 2.2 ohm -D DISPLAY_GDEY042T81 #new E-Ink display from Waveshare, R10 2.2 ohm
# -D DISPLAY_GYE042A87 #alternativ E-Ink display from Genyo Optical, R10 2.2 ohm # -D DISPLAY_GYE042A87 #alternativ E-Ink display from Genyo Optical, R10 2.2 ohm
# -D DISPLAY_SE0420NQ04 #alternativ E-Ink display from SID Technology, R10 2.2 ohm # -D DISPLAY_SE0420NQ04 #alternativ E-Ink display from SID Technology, R10 2.2 ohm
${env.build_flags} ${env.build_flags}
#CONFIG_ESP_TASK_WDT_TIMEOUT_S = 10 #Task Watchdog timeout period (seconds) [1...60] 5 default #CONFIG_ESP_TASK_WDT_TIMEOUT_S = 10 #Task Watchdog timeout period (seconds) [1...60] 5 default
upload_port = /dev/ttyACM0 #OBP60 original #upload_port = /dev/ttyACM0 #OBP60 original
#upload_port = /dev/ttyUSB0 #OBP60 clone upload_port = /dev/ttyUSB0 #OBP60 clone
upload_protocol = esptool #firmware upload via USB OTG seriell, by first upload need to set the ESP32-S3 in the upload mode with shortcut GND to Pin27 upload_protocol = esptool #firmware upload via USB OTG seriell, by first upload need to set the ESP32-S3 in the upload mode with shortcut GND to Pin27
upload_speed = 230400 upload_speed = 230400
monitor_speed = 115200 monitor_speed = 115200

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@ -40,7 +40,7 @@ lib_deps =
build_flags= build_flags=
#https://thingpulse.com/usb-settings-for-logging-with-the-esp32-s3-in-platformio/?srsltid=AfmBOopGskbkr4GoeVkNlFaZXe_zXkLceKF6Rn-tmoXABCeAR2vWsdHL #https://thingpulse.com/usb-settings-for-logging-with-the-esp32-s3-in-platformio/?srsltid=AfmBOopGskbkr4GoeVkNlFaZXe_zXkLceKF6Rn-tmoXABCeAR2vWsdHL
# -D ARDUINO_USB_MODE=1 #0=OTG (to implement other external devices), 1=CDC (is a serial device) # -D ARDUINO_USB_MODE=1 #0=OTG (to implement other external devices), 1=CDC (is a serial device)
# -D ARDUINO_USB_CDC_ON_BOOT=1 #0=JTAG, 1=CDC (serial device) -D ARDUINO_USB_CDC_ON_BOOT=0 #Serial output via RX/TX
# -D CORE_DEBUG_LEVEL=1 #Debug level for CPU core via CDC (seral device) # -D CORE_DEBUG_LEVEL=1 #Debug level for CPU core via CDC (seral device)
# -D TIME=$UNIX_TIME #Set PC time for RTC (only settable via VSC) # -D TIME=$UNIX_TIME #Set PC time for RTC (only settable via VSC)
-D DISABLE_DIAGNOSTIC_OUTPUT #Disable diagnostic output for GxEPD2 lib -D DISABLE_DIAGNOSTIC_OUTPUT #Disable diagnostic output for GxEPD2 lib