new button lib
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0a36377e66
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@ -1,7 +1,7 @@
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#ifndef _BUTTON_H
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#ifndef _BUTTON_H
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#define _BUTTON_H
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#define _BUTTON_H
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#include <SimpleButton.h>
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#include <OneButton.h>
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#include "irqhandler.h"
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#include "irqhandler.h"
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#include "senddata.h"
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#include "senddata.h"
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#include "display.h"
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#include "display.h"
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@ -11,7 +11,13 @@
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#define BUTTON_ACTIVEHIGH 0
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#define BUTTON_ACTIVEHIGH 0
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#endif
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#endif
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void button_init(int pin);
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#ifndef BUTTON_PULLUP
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void readButton();
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#define BUTTON_PULLUP 0
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#endif
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extern TaskHandle_t buttonLoopTask;
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void button_init(void);
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void IRAM_ATTR readButton(void);
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#endif
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#endif
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@ -13,6 +13,7 @@
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#include "reset.h"
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#include "reset.h"
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#include "led.h"
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#include "led.h"
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#include "power.h"
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#include "power.h"
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#include "button.h"
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extern Ticker cyclicTimer;
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extern Ticker cyclicTimer;
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@ -36,12 +36,4 @@ void IRAM_ATTR DisplayIRQ();
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void IRAM_ATTR MatrixDisplayIRQ();
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void IRAM_ATTR MatrixDisplayIRQ();
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#endif
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#endif
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#ifdef HAS_BUTTON
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void IRAM_ATTR ButtonIRQ();
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#endif
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#ifdef HAS_PMU
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void IRAM_ATTR PMUIRQ();
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#endif
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#endif
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#endif
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@ -81,7 +81,7 @@ lib_deps_basic =
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https://github.com/SukkoPera/Arduino-Rokkit-Hash.git
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https://github.com/SukkoPera/Arduino-Rokkit-Hash.git
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bblanchon/ArduinoJson @ ^6
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bblanchon/ArduinoJson @ ^6
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makuna/RTC @ ^2.3.5
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makuna/RTC @ ^2.3.5
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spacehuhn/SimpleButton
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mathertel/OneButton @ ^2.0.3
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lewisxhe/XPowersLib @ ^0.1.4
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lewisxhe/XPowersLib @ ^0.1.4
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256dpi/MQTT @ ^2.5.0
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256dpi/MQTT @ ^2.5.0
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lib_deps_all =
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lib_deps_all =
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@ -29,7 +29,7 @@ lib_deps_all =
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https://github.com/cyberman54/libpax.git
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https://github.com/cyberman54/libpax.git
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https://github.com/SukkoPera/Arduino-Rokkit-Hash.git
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https://github.com/SukkoPera/Arduino-Rokkit-Hash.git
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bblanchon/ArduinoJson @ ^6
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bblanchon/ArduinoJson @ ^6
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spacehuhn/SimpleButton
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mathertel/OneButton @ ^2.0.3
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256dpi/MQTT @ ^2.5.0
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256dpi/MQTT @ ^2.5.0
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ricmoo/QRCode @ ^0.0.1
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ricmoo/QRCode @ ^0.0.1
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build_flags_basic =
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build_flags_basic =
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@ -3,42 +3,49 @@
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#include "globals.h"
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#include "globals.h"
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#include "button.h"
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#include "button.h"
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using namespace simplebutton;
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// Local logging tag
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// Local logging tag
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static const char TAG[] = __FILE__;
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static const char TAG[] = __FILE__;
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static Button *b = NULL;
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OneButton button(HAS_BUTTON, !BUTTON_ACTIVEHIGH, !!BUTTON_PULLUP);
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TaskHandle_t buttonLoopTask;
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void button_init(int pin) {
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void IRAM_ATTR readButton(void) { button.tick(); }
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#ifdef BUTTON_PULLUP
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b = new ButtonPullup(pin);
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#else
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b = new Button(pin, !BUTTON_ACTIVEHIGH);
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#endif
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// attach events to the button
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void singleClick(void) {
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b->setOnDoubleClicked([]() {});
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b->setOnClicked([]() {
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#ifdef HAS_DISPLAY
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#ifdef HAS_DISPLAY
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dp_refresh(true); // switch to next display page
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dp_refresh(true); // switch to next display page
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#endif
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#endif
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#ifdef HAS_MATRIX_DISPLAY
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#ifdef HAS_MATRIX_DISPLAY
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refreshTheMatrixDisplay(true); // switch to next display page
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refreshTheMatrixDisplay(true); // switch to next display page
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#endif
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#endif
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});
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b->setOnHolding([]() {
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payload.reset();
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payload.addButton(0x01);
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SendPayload(BUTTONPORT);
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});
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// attach interrupt to the button
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attachInterrupt(digitalPinToInterrupt(pin), ButtonIRQ, CHANGE);
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}
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}
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void readButton() { b->update(); }
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void longPressStart(void) {
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payload.reset();
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payload.addButton(0x01);
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SendPayload(BUTTONPORT);
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}
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void buttonLoop(void *parameter) {
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while (1) {
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doIRQ(BUTTON_IRQ);
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delay(20);
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}
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}
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void button_init(void) {
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ESP_LOGI(TAG, "Starting button Controller...");
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xTaskCreatePinnedToCore(buttonLoop, // task function
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"buttonloop", // name of task
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2048, // stack size of task
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(void *)1, // parameter of the task
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2, // priority of the task
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&buttonLoopTask, // task handle
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1); // CPU core
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button.setPressTicks(1000);
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button.attachClick(singleClick);
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button.attachLongPressStart(longPressStart);
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};
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#endif
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#endif
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@ -71,6 +71,13 @@ void doHousekeeping() {
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eTaskGetState(ledLoopTask));
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eTaskGetState(ledLoopTask));
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#endif
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#endif
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#ifdef HAS_BUTTON
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if (buttonLoopTask != NULL)
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ESP_LOGD(TAG, "Buttonloop %d bytes left | Taskstate = %d",
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uxTaskGetStackHighWaterMark(buttonLoopTask),
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eTaskGetState(buttonLoopTask));
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#endif
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// read battery voltage into global variable
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// read battery voltage into global variable
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#if (defined BAT_MEASURE_ADC || defined HAS_PMU || defined HAS_IP5306)
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#if (defined BAT_MEASURE_ADC || defined HAS_PMU || defined HAS_IP5306)
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batt_level = read_battlevel();
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batt_level = read_battlevel();
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@ -13,10 +13,10 @@ void irqHandler(void *pvParameters) {
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// task remains in blocked state until it is notified by an irq
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// task remains in blocked state until it is notified by an irq
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for (;;) {
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for (;;) {
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xTaskNotifyWait(0x00, // Don't clear any bits on entry
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xTaskNotifyWait(0x00, // Don't clear any bits on entry
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ULONG_MAX, // Clear all bits on exit
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ULONG_MAX, // Clear all bits on exit
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&irqSource, // Receives the notification value
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&irqSource, // Receives the notification value
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portMAX_DELAY); // wait forever
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portMAX_DELAY); // wait forever
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if (irqSource & UNMASK_IRQ) // interrupt handler to be enabled?
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if (irqSource & UNMASK_IRQ) // interrupt handler to be enabled?
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irqSource &= ~MASK_IRQ; // then clear irq mask flag
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irqSource &= ~MASK_IRQ; // then clear irq mask flag
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@ -102,14 +102,6 @@ void IRAM_ATTR DisplayIRQ() { doIRQ(DISPLAY_IRQ); }
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void IRAM_ATTR MatrixDisplayIRQ() { doIRQ(MATRIX_DISPLAY_IRQ); }
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void IRAM_ATTR MatrixDisplayIRQ() { doIRQ(MATRIX_DISPLAY_IRQ); }
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#endif
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#endif
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#ifdef HAS_BUTTON
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void IRAM_ATTR ButtonIRQ() { doIRQ(BUTTON_IRQ); }
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#endif
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#ifdef HAS_PMU
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void IRAM_ATTR PMUIRQ() { doIRQ(PMU_IRQ); }
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#endif
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void mask_user_IRQ() { xTaskNotify(irqHandlerTask, MASK_IRQ, eSetBits); }
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void mask_user_IRQ() { xTaskNotify(irqHandlerTask, MASK_IRQ, eSetBits); }
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void unmask_user_IRQ() { xTaskNotify(irqHandlerTask, UNMASK_IRQ, eSetBits); }
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void unmask_user_IRQ() { xTaskNotify(irqHandlerTask, UNMASK_IRQ, eSetBits); }
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@ -28,6 +28,7 @@ licenses. Refer to LICENSE.txt file in repository for more details.
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Task Core Prio Purpose
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Task Core Prio Purpose
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-------------------------------------------------------------------------------
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-------------------------------------------------------------------------------
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ledloop* 1 1 blinks LEDs
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ledloop* 1 1 blinks LEDs
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buttonloop* 1 2 reads button
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spiloop# 0 2 reads/writes data on spi interface
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spiloop# 0 2 reads/writes data on spi interface
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lmictask* 1 2 MCCI LMiC LORAWAN stack
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lmictask* 1 2 MCCI LMiC LORAWAN stack
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clockloop# 1 6 generates realtime telegrams for external clock
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clockloop# 1 6 generates realtime telegrams for external clock
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@ -468,7 +469,7 @@ void setup() {
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#else
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#else
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strcat_P(features, "PD");
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strcat_P(features, "PD");
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#endif // BUTTON_PULLUP
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#endif // BUTTON_PULLUP
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button_init(HAS_BUTTON);
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button_init();
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#endif // HAS_BUTTON
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#endif // HAS_BUTTON
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// only if we have a timesource we do timesync
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// only if we have a timesource we do timesync
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@ -25,6 +25,8 @@ static const adc_unit_t unit = ADC_UNIT_1;
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#ifdef HAS_PMU
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#ifdef HAS_PMU
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XPowersPMU pmu;
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XPowersPMU pmu;
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void IRAM_ATTR PMUIRQ() { doIRQ(PMU_IRQ); }
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void AXP192_powerevent_IRQ(void) {
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void AXP192_powerevent_IRQ(void) {
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pmu.getIrqStatus();
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pmu.getIrqStatus();
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