mirror of
https://github.com/InfiniTimeOrg/InfiniTime.git
synced 2024-11-24 05:33:35 +03:00
Use push button to go to sleep/wake up.
Use a queue to transmit messages between system and display task (sleep & wake up for now).
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@ -28,6 +28,9 @@ I've tested this project on the actual PineTime hardware.
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* One big font to display the time (hours : minutes)
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* BLE advertising, connection and bonding
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* BLE CTS client (retrieves the time from the connected device if it implements a CTS server)
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* Push button to go to disable screen (and go to low power mode) / enable screen (and wake-up). **NOTE** : I'm not completely sure the power consumption is optimal, especially in sleep mode. Any help to measure and debug this is welcome.
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## How to build
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@ -6,6 +6,7 @@
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#include <nrf_font.h>
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#include <hal/nrf_rtc.h>
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#include "Components/Gfx/Gfx.h"
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#include <queue.h>
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using namespace Pinetime::Applications;
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@ -21,10 +22,7 @@ void DisplayApp::Process(void *instance) {
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app->InitHw();
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while (1) {
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app->Refresh();
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vTaskDelay(1000);
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}
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}
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@ -67,6 +65,56 @@ void DisplayApp::InitHw() {
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}
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void DisplayApp::Refresh() {
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TickType_t queueTimeout;
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switch(state) {
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case States::Idle:
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IdleState();
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queueTimeout = portMAX_DELAY;
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break;
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case States::Running:
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RunningState();
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queueTimeout = 1000;
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break;
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}
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Messages msg;
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if(xQueueReceive( msgQueue, &msg, queueTimeout)) {
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switch(msg) {
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case Messages::GoToSleep:
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nrf_gpio_pin_set(23);
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vTaskDelay(100);
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nrf_gpio_pin_set(22);
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vTaskDelay(100);
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nrf_gpio_pin_set(14);
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state = States::Idle;
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break;
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case Messages::GoToRunning:
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nrf_gpio_pin_clear(23);
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nrf_gpio_pin_clear(22);
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nrf_gpio_pin_clear(14);
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state = States::Running;
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break;
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}
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}
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}
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void DisplayApp::Minutes(uint8_t m) {
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// TODO yeah, I know, race condition...
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minutes = m;
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}
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void DisplayApp::Hours(uint8_t h) {
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// TODO yeah, I know, race condition too...
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hours = h;
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}
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void DisplayApp::SetTime(uint8_t minutes, uint8_t hours) {
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deltaSeconds = nrf_rtc_counter_get(portNRF_RTC_REG) / 1000;
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this->minutes = minutes;
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this->hours = hours;
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}
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void DisplayApp::RunningState() {
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uint32_t systick_counter = nrf_rtc_counter_get(portNRF_RTC_REG);
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auto raw = systick_counter / 1000;
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@ -118,21 +166,24 @@ void DisplayApp::Refresh() {
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gfx->DrawChar(&largeFont, minutesChar[1], &x, 78, 0xffff);
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currentChar[3] = minutesChar[1];
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}
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}
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void DisplayApp::IdleState() {
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}
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void DisplayApp::Minutes(uint8_t m) {
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// TODO yeah, I know, race condition...
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minutes = m;
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DisplayApp::DisplayApp() {
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msgQueue = xQueueCreate(queueSize, itemSize);
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}
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void DisplayApp::Hours(uint8_t h) {
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// TODO yeah, I know, race condition too...
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hours = h;
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}
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void DisplayApp::PushMessage(DisplayApp::Messages msg) {
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BaseType_t xHigherPriorityTaskWoken;
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xHigherPriorityTaskWoken = pdFALSE;
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xQueueSendFromISR( msgQueue, &msg, &xHigherPriorityTaskWoken );
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void DisplayApp::SetTime(uint8_t minutes, uint8_t hours) {
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deltaSeconds = nrf_rtc_counter_get(portNRF_RTC_REG) / 1000;
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this->minutes = minutes;
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this->hours = hours;
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/* Now the buffer is empty we can switch context if necessary. */
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if(xHigherPriorityTaskWoken) {
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/* Actual macro used here is port specific. */
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// TODO : should I do something here?
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}
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}
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@ -5,6 +5,7 @@
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#include <drivers/SpiMaster.h>
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#include <Components/Gfx/Gfx.h>
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#include <bits/unique_ptr.h>
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#include <queue.h>
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extern const FONT_INFO lCD_70ptFontInfo;
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@ -12,6 +13,9 @@ namespace Pinetime {
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namespace Applications {
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class DisplayApp {
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public:
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enum class States {Idle, Running};
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enum class Messages : uint8_t {GoToSleep, GoToRunning} ;
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DisplayApp();
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void Start();
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void Minutes(uint8_t m);
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@ -19,6 +23,8 @@ namespace Pinetime {
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void SetTime(uint8_t minutes, uint8_t hours);
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void PushMessage(Messages msg);
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private:
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TaskHandle_t taskHandle;
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static void Process(void* instance);
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@ -29,13 +35,20 @@ namespace Pinetime {
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const FONT_INFO largeFont {lCD_70ptFontInfo.height, lCD_70ptFontInfo.startChar, lCD_70ptFontInfo.endChar, lCD_70ptFontInfo.spacePixels, lCD_70ptFontInfo.charInfo, lCD_70ptFontInfo.data};
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void Refresh();
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uint8_t seconds = 0;
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uint8_t minutes = 0;
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uint8_t hours = 0;
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char currentChar[4];
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uint32_t deltaSeconds = 0;
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States state = States::Running;
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void RunningState();
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void IdleState();
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QueueHandle_t msgQueue;
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static constexpr uint8_t queueSize = 10;
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static constexpr uint8_t itemSize = 1;
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};
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}
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}
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48
src/main.cpp
48
src/main.cpp
@ -1,6 +1,5 @@
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#include <FreeRTOS.h>
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#include <task.h>
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#include <BlinkApp/BlinkApp.h>
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#include <libraries/bsp/bsp.h>
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#include <legacy/nrf_drv_clock.h>
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#include <libraries/timer/app_timer.h>
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@ -9,6 +8,8 @@
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#include <softdevice/common/nrf_sdh.h>
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#include <softdevice/common/nrf_sdh_freertos.h>
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#include <hal/nrf_rtc.h>
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#include <timers.h>
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#include "BLE/BleManager.h"
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@ -20,9 +21,10 @@ Pinetime::Logging::NrfLogger logger;
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Pinetime::Logging::DummyLogger logger;
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#endif
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Pinetime::Applications::BlinkApp blinkApp;
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Pinetime::Applications::DisplayApp displayApp;
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TaskHandle_t systemThread;
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bool isSleeping = false;
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TimerHandle_t debounceTimer;
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extern "C" {
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void vApplicationIdleHook() {
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@ -34,17 +36,48 @@ extern "C" {
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}
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}
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void nrfx_gpiote_evt_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t action) {
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BaseType_t xHigherPriorityTaskWoken = pdFALSE;
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xTimerStartFromISR(debounceTimer, &xHigherPriorityTaskWoken);
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// TODO should I do something if xHigherPriorityTaskWoken == pdTRUE?
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}
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void DebounceTimerCallback(TimerHandle_t xTimer) {
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xTimerStop(xTimer, 0);
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if(isSleeping) {
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displayApp.PushMessage(Pinetime::Applications::DisplayApp::Messages::GoToRunning);
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isSleeping = false;
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}
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else {
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displayApp.PushMessage(Pinetime::Applications::DisplayApp::Messages::GoToSleep);
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isSleeping = true;
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}
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}
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void SystemTask(void *) {
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APP_GPIOTE_INIT(2);
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app_timer_init();
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bool erase_bonds=false;
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nrf_sdh_freertos_init(ble_manager_start_advertising, &erase_bonds);
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// blinkApp.Start();
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displayApp.Start();
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while (1) {
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vTaskSuspend(nullptr);
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}
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debounceTimer = xTimerCreate ("debounceTimer", 200, pdFALSE, (void *) 0, DebounceTimerCallback);
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nrf_gpio_cfg_sense_input(13, (nrf_gpio_pin_pull_t)GPIO_PIN_CNF_PULL_Pulldown, (nrf_gpio_pin_sense_t)GPIO_PIN_CNF_SENSE_High);
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nrf_gpio_cfg_output(15);
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nrf_gpio_pin_set(15);
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nrfx_gpiote_in_config_t pinConfig;
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pinConfig.skip_gpio_setup = true;
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pinConfig.hi_accuracy = false;
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pinConfig.is_watcher = false;
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pinConfig.sense = (nrf_gpiote_polarity_t)NRF_GPIOTE_POLARITY_HITOLO;
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pinConfig.pull = (nrf_gpio_pin_pull_t)GPIO_PIN_CNF_PULL_Pulldown;
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nrfx_gpiote_in_init(13, &pinConfig, nrfx_gpiote_evt_handler);
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vTaskSuspend(nullptr);
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}
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void OnNewTime(uint8_t minutes, uint8_t hours) {
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@ -55,7 +88,6 @@ int main(void) {
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logger.Init();
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nrf_drv_clock_init();
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if (pdPASS != xTaskCreate(SystemTask, "MAIN", 256, nullptr, 0, &systemThread))
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APP_ERROR_HANDLER(NRF_ERROR_NO_MEM);
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@ -4839,13 +4839,13 @@
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// <e> NRFX_TIMER_ENABLED - nrfx_timer - TIMER periperal driver
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//==========================================================
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#ifndef NRFX_TIMER_ENABLED
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#define NRFX_TIMER_ENABLED 0
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#define NRFX_TIMER_ENABLED 1
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#endif
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// <q> NRFX_TIMER0_ENABLED - Enable TIMER0 instance
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#ifndef NRFX_TIMER0_ENABLED
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#define NRFX_TIMER0_ENABLED 0
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#define NRFX_TIMER0_ENABLED 1
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#endif
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// <q> NRFX_TIMER1_ENABLED - Enable TIMER1 instance
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