InfiniTime/src/main.cpp
Jean-François Milants 25f35c7d0e Generate pinetime-recovery : a light version of InfiniTime design to be used as a recovery firmware : it only provides basic UI and BLE connectivity for OTA.
This new FW is build on the same codebasse than the actual InfiniTime. Only the display task is different (this allows to remove lvgl from the recovery fw, which is very heavy).

CMake builds and docker have been modified accordingly.
Note than the fw is converted into an image and then into a DFU in the cmake build (previously, it was only done in the
2021-01-26 20:31:45 +01:00

268 lines
7.1 KiB
C++

// nrf
#include <hal/nrf_rtc.h>
#include <hal/nrf_wdt.h>
#include <legacy/nrf_drv_clock.h>
#include <libraries/gpiote/app_gpiote.h>
#include <libraries/timer/app_timer.h>
#include <softdevice/common/nrf_sdh.h>
// nimble
#define min // workaround: nimble's min/max macros conflict with libstdc++
#define max
#include <controller/ble_ll.h>
#include <host/ble_hs.h>
#include <host/util/util.h>
#include <nimble/nimble_port.h>
#include <nimble/nimble_port_freertos.h>
#include <nimble/npl_freertos.h>
#include <os/os_cputime.h>
#include <services/gap/ble_svc_gap.h>
#include <transport/ram/ble_hci_ram.h>
#undef max
#undef min
// FreeRTOS
#include <FreeRTOS.h>
#include <task.h>
#include <timers.h>
#include <drivers/Hrs3300.h>
#include "components/battery/BatteryController.h"
#include "components/ble/BleController.h"
#include "components/ble/NotificationManager.h"
#include "components/datetime/DateTimeController.h"
#include "drivers/Spi.h"
#include "drivers/SpiMaster.h"
#include "drivers/SpiNorFlash.h"
#include "drivers/St7789.h"
#include "drivers/TwiMaster.h"
#include "drivers/Cst816s.h"
#include "systemtask/SystemTask.h"
#if NRF_LOG_ENABLED
#include "logging/NrfLogger.h"
Pinetime::Logging::NrfLogger logger;
#else
#include "logging/DummyLogger.h"
Pinetime::Logging::DummyLogger logger;
#endif
static constexpr uint8_t pinSpiSck = 2;
static constexpr uint8_t pinSpiMosi = 3;
static constexpr uint8_t pinSpiMiso = 4;
static constexpr uint8_t pinSpiFlashCsn = 5;
static constexpr uint8_t pinLcdCsn = 25;
static constexpr uint8_t pinLcdDataCommand = 18;
static constexpr uint8_t pinTwiScl = 7;
static constexpr uint8_t pinTwiSda = 6;
static constexpr uint8_t touchPanelTwiAddress = 0x15;
static constexpr uint8_t heartRateSensorTwiAddress = 0x44;
Pinetime::Drivers::SpiMaster spi{Pinetime::Drivers::SpiMaster::SpiModule::SPI0, {
Pinetime::Drivers::SpiMaster::BitOrder::Msb_Lsb,
Pinetime::Drivers::SpiMaster::Modes::Mode3,
Pinetime::Drivers::SpiMaster::Frequencies::Freq8Mhz,
pinSpiSck,
pinSpiMosi,
pinSpiMiso
}
};
Pinetime::Drivers::Spi lcdSpi {spi, pinLcdCsn};
Pinetime::Drivers::St7789 lcd {lcdSpi, pinLcdDataCommand};
Pinetime::Drivers::Spi flashSpi {spi, pinSpiFlashCsn};
Pinetime::Drivers::SpiNorFlash spiNorFlash {flashSpi};
// The TWI device should work @ up to 400Khz but there is a HW bug which prevent it from
// respecting correct timings. According to erratas heet, this magic value makes it run
// at ~390Khz with correct timings.
static constexpr uint32_t MaxTwiFrequencyWithoutHardwareBug{0x06200000};
Pinetime::Drivers::TwiMaster twiMaster{Pinetime::Drivers::TwiMaster::Modules::TWIM1,
Pinetime::Drivers::TwiMaster::Parameters {
MaxTwiFrequencyWithoutHardwareBug, pinTwiSda, pinTwiScl}};
Pinetime::Drivers::Cst816S touchPanel {twiMaster, touchPanelTwiAddress};
#ifdef PINETIME_IS_RECOVERY
static constexpr bool isFactory = true;
#include "displayapp/DummyLittleVgl.h"
#include "displayapp/DisplayAppRecovery.h"
Pinetime::Components::LittleVgl lvgl {lcd, touchPanel};
#else
static constexpr bool isFactory = false;
#include "displayapp/LittleVgl.h"
#include "displayapp/DisplayApp.h"
Pinetime::Components::LittleVgl lvgl {lcd, touchPanel};
#endif
Pinetime::Drivers::Hrs3300 heartRateSensor {twiMaster, heartRateSensorTwiAddress};
TimerHandle_t debounceTimer;
Pinetime::Controllers::Battery batteryController;
Pinetime::Controllers::Ble bleController;
Pinetime::Controllers::DateTime dateTimeController;
void ble_manager_set_ble_connection_callback(void (*connection)());
void ble_manager_set_ble_disconnection_callback(void (*disconnection)());
static constexpr uint8_t pinTouchIrq = 28;
std::unique_ptr<Pinetime::System::SystemTask> systemTask;
Pinetime::Controllers::NotificationManager notificationManager;
void nrfx_gpiote_evt_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t action) {
if(pin == pinTouchIrq) {
systemTask->OnTouchEvent();
return ;
}
BaseType_t xHigherPriorityTaskWoken = pdFALSE;
xTimerStartFromISR(debounceTimer, &xHigherPriorityTaskWoken);
portYIELD_FROM_ISR(xHigherPriorityTaskWoken);
}
extern "C" {
void vApplicationIdleHook(void) {
if(!isFactory)
lv_tick_inc(1);
}
}
void DebounceTimerCallback(TimerHandle_t xTimer) {
xTimerStop(xTimer, 0);
systemTask->OnButtonPushed();
}
void SPIM0_SPIS0_TWIM0_TWIS0_SPI0_TWI0_IRQHandler(void) {
if(((NRF_SPIM0->INTENSET & (1<<6)) != 0) && NRF_SPIM0->EVENTS_END == 1) {
NRF_SPIM0->EVENTS_END = 0;
spi.OnEndEvent();
}
if(((NRF_SPIM0->INTENSET & (1<<19)) != 0) && NRF_SPIM0->EVENTS_STARTED == 1) {
NRF_SPIM0->EVENTS_STARTED = 0;
spi.OnStartedEvent();
}
if(((NRF_SPIM0->INTENSET & (1<<1)) != 0) && NRF_SPIM0->EVENTS_STOPPED == 1) {
NRF_SPIM0->EVENTS_STOPPED = 0;
}
}
static void (*radio_isr_addr)(void) ;
static void (*rng_isr_addr)(void) ;
static void (*rtc0_isr_addr)(void) ;
/* Some interrupt handlers required for NimBLE radio driver */
extern "C" {
void RADIO_IRQHandler(void) {
((void (*)(void)) radio_isr_addr)();
}
void RNG_IRQHandler(void) {
((void (*)(void)) rng_isr_addr)();
}
void RTC0_IRQHandler(void) {
((void (*)(void)) rtc0_isr_addr)();
}
void WDT_IRQHandler(void) {
nrf_wdt_event_clear(NRF_WDT_EVENT_TIMEOUT);
}
void npl_freertos_hw_set_isr(int irqn, void (*addr)(void)) {
switch (irqn) {
case RADIO_IRQn:
radio_isr_addr = addr;
break;
case RNG_IRQn:
rng_isr_addr = addr;
break;
case RTC0_IRQn:
rtc0_isr_addr = addr;
break;
}
}
uint32_t
npl_freertos_hw_enter_critical(void) {
uint32_t ctx = __get_PRIMASK();
__disable_irq();
return (ctx & 0x01);
}
void npl_freertos_hw_exit_critical(uint32_t ctx) {
if (!ctx) {
__enable_irq();
}
}
static struct ble_npl_eventq g_eventq_dflt;
struct ble_npl_eventq *
nimble_port_get_dflt_eventq(void) {
return &g_eventq_dflt;
}
void nimble_port_run(void) {
struct ble_npl_event *ev;
while (1) {
ev = ble_npl_eventq_get(&g_eventq_dflt, BLE_NPL_TIME_FOREVER);
ble_npl_event_run(ev);
}
}
void BleHost(void *) {
nimble_port_run();
}
void nimble_port_init(void) {
void os_msys_init(void);
void ble_store_ram_init(void);
ble_npl_eventq_init(&g_eventq_dflt);
os_msys_init();
ble_hs_init();
ble_store_ram_init();
int res;
res = hal_timer_init(5, NULL);
ASSERT(res == 0);
res = os_cputime_init(32768);
ASSERT(res == 0);
ble_ll_init();
ble_hci_ram_init();
nimble_port_freertos_init(BleHost);
}
void nimble_port_ll_task_func(void *args) {
extern void ble_ll_task(void *);
ble_ll_task(args);
}
}
int main(void) {
logger.Init();
nrf_drv_clock_init();
debounceTimer = xTimerCreate ("debounceTimer", 200, pdFALSE, (void *) 0, DebounceTimerCallback);
systemTask.reset(new Pinetime::System::SystemTask(spi, lcd, spiNorFlash, twiMaster, touchPanel, lvgl, batteryController, bleController,
dateTimeController, notificationManager, heartRateSensor));
systemTask->Start();
nimble_port_init();
vTaskStartScheduler();
for (;;) {
APP_ERROR_HANDLER(NRF_ERROR_FORBIDDEN);
}
}