add a .clang-format file (#9154)

This commit is contained in:
Jorropo
2026-01-03 14:19:24 -06:00
committed by GitHub
co-authored by GitHub
parent abab6ce815
commit 0d11331d18
771 changed files with 77752 additions and 83184 deletions
@@ -27,9 +27,8 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
}
@@ -25,94 +25,93 @@
// Button feedback
#include "buzz.h"
void setupNicheGraphics()
{
using namespace NicheGraphics;
void setupNicheGraphics() {
using namespace NicheGraphics;
// SPI
// -----------------------------
// SPI
// -----------------------------
// For NRF52 platforms, SPI pins are defined in variant.h
SPI1.begin();
// For NRF52 platforms, SPI pins are defined in variant.h
SPI1.begin();
// E-Ink Driver
// -----------------------------
// E-Ink Driver
// -----------------------------
Drivers::EInk *driver = new Drivers::GDEY0154D67;
driver->begin(&SPI1, PIN_EINK_DC, PIN_EINK_CS, PIN_EINK_BUSY, PIN_EINK_RES);
Drivers::EInk *driver = new Drivers::GDEY0154D67;
driver->begin(&SPI1, PIN_EINK_DC, PIN_EINK_CS, PIN_EINK_BUSY, PIN_EINK_RES);
// InkHUD
// ----------------------------
// InkHUD
// ----------------------------
InkHUD::InkHUD *inkhud = InkHUD::InkHUD::getInstance();
InkHUD::InkHUD *inkhud = InkHUD::InkHUD::getInstance();
// Set the E-Ink driver
inkhud->setDriver(driver);
// Set the E-Ink driver
inkhud->setDriver(driver);
// Set how many FAST updates per FULL update
// Set how unhealthy additional FAST updates beyond this number are
// Todo: observe the display's performance in-person and adjust accordingly.
// Currently set to the values given by Elecrow for EInkDynamicDisplay.
inkhud->setDisplayResilience(10, 1.5);
// Set how many FAST updates per FULL update
// Set how unhealthy additional FAST updates beyond this number are
// Todo: observe the display's performance in-person and adjust accordingly.
// Currently set to the values given by Elecrow for EInkDynamicDisplay.
inkhud->setDisplayResilience(10, 1.5);
// Select fonts
InkHUD::Applet::fontLarge = FREESANS_12PT_WIN1252;
InkHUD::Applet::fontMedium = FREESANS_9PT_WIN1252;
InkHUD::Applet::fontSmall = FREESANS_6PT_WIN1252;
// Select fonts
InkHUD::Applet::fontLarge = FREESANS_12PT_WIN1252;
InkHUD::Applet::fontMedium = FREESANS_9PT_WIN1252;
InkHUD::Applet::fontSmall = FREESANS_6PT_WIN1252;
// Customize default settings
inkhud->persistence->settings.userTiles.maxCount = 2; // Two applets side-by-side
inkhud->persistence->settings.optionalFeatures.batteryIcon = true; // Device definitely has a battery
// Customize default settings
inkhud->persistence->settings.userTiles.maxCount = 2; // Two applets side-by-side
inkhud->persistence->settings.optionalFeatures.batteryIcon = true; // Device definitely has a battery
// Setup backlight controller
// Note: button is attached further down
Drivers::LatchingBacklight *backlight = Drivers::LatchingBacklight::getInstance();
backlight->setPin(PIN_EINK_EN);
// Setup backlight controller
// Note: button is attached further down
Drivers::LatchingBacklight *backlight = Drivers::LatchingBacklight::getInstance();
backlight->setPin(PIN_EINK_EN);
// Pick applets
// Note: order of applets determines priority of "auto-show" feature
inkhud->addApplet("All Messages", new InkHUD::AllMessageApplet, true, true); // Activated, autoshown
inkhud->addApplet("DMs", new InkHUD::DMApplet); // -
inkhud->addApplet("Channel 0", new InkHUD::ThreadedMessageApplet(0)); // -
inkhud->addApplet("Channel 1", new InkHUD::ThreadedMessageApplet(1)); // -
inkhud->addApplet("Positions", new InkHUD::PositionsApplet, true); // Activated
inkhud->addApplet("Recents List", new InkHUD::RecentsListApplet); // -
inkhud->addApplet("Heard", new InkHUD::HeardApplet, true, false, 0); // Activated, no autoshow, default on tile 0
// Pick applets
// Note: order of applets determines priority of "auto-show" feature
inkhud->addApplet("All Messages", new InkHUD::AllMessageApplet, true, true); // Activated, autoshown
inkhud->addApplet("DMs", new InkHUD::DMApplet); // -
inkhud->addApplet("Channel 0", new InkHUD::ThreadedMessageApplet(0)); // -
inkhud->addApplet("Channel 1", new InkHUD::ThreadedMessageApplet(1)); // -
inkhud->addApplet("Positions", new InkHUD::PositionsApplet, true); // Activated
inkhud->addApplet("Recents List", new InkHUD::RecentsListApplet); // -
inkhud->addApplet("Heard", new InkHUD::HeardApplet, true, false, 0); // Activated, no autoshow, default on tile 0
// Start running InkHUD
inkhud->begin();
// Start running InkHUD
inkhud->begin();
// Buttons
// --------------------------
// Buttons
// --------------------------
Inputs::TwoButton *buttons = Inputs::TwoButton::getInstance(); // Shared NicheGraphics component
Inputs::TwoButton *buttons = Inputs::TwoButton::getInstance(); // Shared NicheGraphics component
// Elecrow diagram: https://www.elecrow.com/download/product/CIL12901M/ThinkNode-M1_User_Manual.pdf
// Elecrow diagram: https://www.elecrow.com/download/product/CIL12901M/ThinkNode-M1_User_Manual.pdf
// #0: Main User Button
// Labeled "Page Turn Button" by manual
buttons->setWiring(0, PIN_BUTTON2);
buttons->setTiming(0, 50, 500); // Todo: confirm 50ms is adequate debounce
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->longpress(); });
// #0: Main User Button
// Labeled "Page Turn Button" by manual
buttons->setWiring(0, PIN_BUTTON2);
buttons->setTiming(0, 50, 500); // Todo: confirm 50ms is adequate debounce
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->longpress(); });
// #1: Aux Button
// Labeled "Function Button" by manual
// Todo: additional features
buttons->setWiring(1, PIN_BUTTON1);
buttons->setTiming(1, 50, 500); // 500ms before latch
buttons->setHandlerDown(1, [backlight]() { backlight->peek(); });
buttons->setHandlerLongPress(1, [backlight]() {
backlight->latch();
playBoop();
});
buttons->setHandlerShortPress(1, [backlight]() {
backlight->off();
playChirp();
});
// #1: Aux Button
// Labeled "Function Button" by manual
// Todo: additional features
buttons->setWiring(1, PIN_BUTTON1);
buttons->setTiming(1, 50, 500); // 500ms before latch
buttons->setHandlerDown(1, [backlight]() { backlight->peek(); });
buttons->setHandlerLongPress(1, [backlight]() {
backlight->latch();
playBoop();
});
buttons->setHandlerShortPress(1, [backlight]() {
backlight->off();
playChirp();
});
// Begin handling button events
buttons->start();
// Begin handling button events
buttons->start();
}
#endif
@@ -30,15 +30,14 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED3, OUTPUT);
ledOff(PIN_LED3);
pinMode(PIN_LED3, OUTPUT);
ledOff(PIN_LED3);
}
@@ -117,8 +117,8 @@ External serial flash WP25R1635FZUIL0
#define SX126X_CS (0 + 24) // FIXME - we really should define LORA_CS instead
#define SX126X_DIO1 (0 + 20)
// Note DIO2 is attached internally to the module to an analog switch for TX/RX switching
// #define SX1262_DIO3 (0 + 21) // This is used as an *output* from the sx1262 and connected internally to power the tcxo, do not
// drive from the main
// #define SX1262_DIO3 (0 + 21) // This is used as an *output* from the sx1262 and connected internally to power the
// tcxo, do not drive from the main
#define SX126X_BUSY (0 + 17)
#define SX126X_RESET (0 + 25)
#define SX126X_DIO2_AS_RF_SWITCH
@@ -8,8 +8,6 @@ static const uint32_t rfswitch_dio_pins[] = {RADIOLIB_LR11X0_DIO5, RADIOLIB_LR11
static const Module::RfSwitchMode_t rfswitch_table[] = {
// mode DIO5 DIO6
{LR11x0::MODE_STBY, {LOW, LOW}}, {LR11x0::MODE_RX, {HIGH, LOW}},
{LR11x0::MODE_TX, {HIGH, HIGH}}, {LR11x0::MODE_TX_HP, {LOW, HIGH}},
{LR11x0::MODE_TX_HF, {LOW, LOW}}, {LR11x0::MODE_GNSS, {LOW, LOW}},
{LR11x0::MODE_WIFI, {LOW, LOW}}, END_OF_MODE_TABLE,
{LR11x0::MODE_STBY, {LOW, LOW}}, {LR11x0::MODE_RX, {HIGH, LOW}}, {LR11x0::MODE_TX, {HIGH, HIGH}}, {LR11x0::MODE_TX_HP, {LOW, HIGH}},
{LR11x0::MODE_TX_HF, {LOW, LOW}}, {LR11x0::MODE_GNSS, {LOW, LOW}}, {LR11x0::MODE_WIFI, {LOW, LOW}}, END_OF_MODE_TABLE,
};
@@ -31,74 +31,71 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
pinMode(KEY_POWER, OUTPUT);
digitalWrite(KEY_POWER, HIGH);
pinMode(RGB_POWER, OUTPUT);
digitalWrite(RGB_POWER, HIGH);
pinMode(green_LED_PIN, OUTPUT);
digitalWrite(green_LED_PIN, LED_STATE_OFF);
pinMode(LED_BLUE, OUTPUT);
pinMode(PIN_POWER_USB, INPUT);
pinMode(PIN_POWER_DONE, INPUT);
pinMode(PIN_POWER_CHRG, INPUT);
pinMode(BUTTON_PIN, INPUT_PULLUP);
pinMode(EEPROM_POWER, OUTPUT);
digitalWrite(EEPROM_POWER, HIGH);
pinMode(PIN_EN1, OUTPUT);
digitalWrite(PIN_EN1, HIGH);
pinMode(PIN_EN2, OUTPUT);
digitalWrite(PIN_EN2, HIGH);
pinMode(ACC_POWER, OUTPUT);
digitalWrite(ACC_POWER, LOW);
pinMode(DHT_POWER, OUTPUT);
digitalWrite(DHT_POWER, HIGH);
pinMode(Battery_POWER, OUTPUT);
digitalWrite(Battery_POWER, HIGH);
pinMode(GPS_POWER, OUTPUT);
digitalWrite(GPS_POWER, HIGH);
void initVariant() {
pinMode(KEY_POWER, OUTPUT);
digitalWrite(KEY_POWER, HIGH);
pinMode(RGB_POWER, OUTPUT);
digitalWrite(RGB_POWER, HIGH);
pinMode(green_LED_PIN, OUTPUT);
digitalWrite(green_LED_PIN, LED_STATE_OFF);
pinMode(LED_BLUE, OUTPUT);
pinMode(PIN_POWER_USB, INPUT);
pinMode(PIN_POWER_DONE, INPUT);
pinMode(PIN_POWER_CHRG, INPUT);
pinMode(BUTTON_PIN, INPUT_PULLUP);
pinMode(EEPROM_POWER, OUTPUT);
digitalWrite(EEPROM_POWER, HIGH);
pinMode(PIN_EN1, OUTPUT);
digitalWrite(PIN_EN1, HIGH);
pinMode(PIN_EN2, OUTPUT);
digitalWrite(PIN_EN2, HIGH);
pinMode(ACC_POWER, OUTPUT);
digitalWrite(ACC_POWER, LOW);
pinMode(DHT_POWER, OUTPUT);
digitalWrite(DHT_POWER, HIGH);
pinMode(Battery_POWER, OUTPUT);
digitalWrite(Battery_POWER, HIGH);
pinMode(GPS_POWER, OUTPUT);
digitalWrite(GPS_POWER, HIGH);
}
// called from main-nrf52.cpp during the cpuDeepSleep() function
void variant_shutdown()
{
digitalWrite(red_LED_PIN, HIGH);
digitalWrite(green_LED_PIN, HIGH);
digitalWrite(LED_BLUE, HIGH);
void variant_shutdown() {
digitalWrite(red_LED_PIN, HIGH);
digitalWrite(green_LED_PIN, HIGH);
digitalWrite(LED_BLUE, HIGH);
digitalWrite(PIN_EN1, LOW);
digitalWrite(PIN_EN2, LOW);
digitalWrite(EEPROM_POWER, LOW);
digitalWrite(KEY_POWER, LOW);
digitalWrite(DHT_POWER, LOW);
digitalWrite(ACC_POWER, LOW);
digitalWrite(Battery_POWER, LOW);
digitalWrite(GPS_POWER, LOW);
digitalWrite(PIN_EN1, LOW);
digitalWrite(PIN_EN2, LOW);
digitalWrite(EEPROM_POWER, LOW);
digitalWrite(KEY_POWER, LOW);
digitalWrite(DHT_POWER, LOW);
digitalWrite(ACC_POWER, LOW);
digitalWrite(Battery_POWER, LOW);
digitalWrite(GPS_POWER, LOW);
// This sets the pin to OUTPUT and LOW for the pins *not* in the if block.
for (int pin = 0; pin < 48; pin++) {
if (pin == PIN_POWER_USB || pin == BUTTON_PIN || pin == PIN_EN1 || pin == PIN_EN2 || pin == DHT_POWER ||
pin == ACC_POWER || pin == Battery_POWER || pin == GPS_POWER || pin == LR1110_SPI_MISO_PIN ||
pin == LR1110_SPI_MOSI_PIN || pin == LR1110_SPI_SCK_PIN || pin == LR1110_SPI_NSS_PIN || pin == LR1110_BUSY_PIN ||
pin == LR1110_NRESET_PIN || pin == LR1110_IRQ_PIN || pin == GPS_TX_PIN || pin == GPS_RX_PIN || pin == green_LED_PIN ||
pin == red_LED_PIN || pin == LED_BLUE) {
continue;
}
pinMode(pin, OUTPUT);
digitalWrite(pin, LOW);
if (pin >= 32) {
NRF_P1->DIRCLR = (1 << (pin - 32));
} else {
NRF_GPIO->DIRCLR = (1 << pin);
}
// This sets the pin to OUTPUT and LOW for the pins *not* in the if block.
for (int pin = 0; pin < 48; pin++) {
if (pin == PIN_POWER_USB || pin == BUTTON_PIN || pin == PIN_EN1 || pin == PIN_EN2 || pin == DHT_POWER || pin == ACC_POWER ||
pin == Battery_POWER || pin == GPS_POWER || pin == LR1110_SPI_MISO_PIN || pin == LR1110_SPI_MOSI_PIN || pin == LR1110_SPI_SCK_PIN ||
pin == LR1110_SPI_NSS_PIN || pin == LR1110_BUSY_PIN || pin == LR1110_NRESET_PIN || pin == LR1110_IRQ_PIN || pin == GPS_TX_PIN ||
pin == GPS_RX_PIN || pin == green_LED_PIN || pin == red_LED_PIN || pin == LED_BLUE) {
continue;
}
pinMode(pin, OUTPUT);
digitalWrite(pin, LOW);
if (pin >= 32) {
NRF_P1->DIRCLR = (1 << (pin - 32));
} else {
NRF_GPIO->DIRCLR = (1 << pin);
}
}
nrf_gpio_cfg_input(BUTTON_PIN, NRF_GPIO_PIN_PULLUP); // Configure the pin to be woken up as an input
nrf_gpio_pin_sense_t sense1 = NRF_GPIO_PIN_SENSE_LOW;
nrf_gpio_cfg_sense_set(BUTTON_PIN, sense1);
nrf_gpio_cfg_input(BUTTON_PIN, NRF_GPIO_PIN_PULLUP); // Configure the pin to be woken up as an input
nrf_gpio_pin_sense_t sense1 = NRF_GPIO_PIN_SENSE_LOW;
nrf_gpio_cfg_sense_set(BUTTON_PIN, sense1);
nrf_gpio_cfg_input(PIN_POWER_USB, NRF_GPIO_PIN_PULLDOWN); // Configure the pin to be woken up as an input
nrf_gpio_pin_sense_t sense2 = NRF_GPIO_PIN_SENSE_HIGH;
nrf_gpio_cfg_sense_set(PIN_POWER_USB, sense2);
nrf_gpio_cfg_input(PIN_POWER_USB, NRF_GPIO_PIN_PULLDOWN); // Configure the pin to be woken up as an input
nrf_gpio_pin_sense_t sense2 = NRF_GPIO_PIN_SENSE_HIGH;
nrf_gpio_cfg_sense_set(PIN_POWER_USB, sense2);
}
@@ -30,41 +30,38 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
pinMode(LED_CHARGE, OUTPUT);
ledOff(LED_CHARGE);
void initVariant() {
pinMode(LED_CHARGE, OUTPUT);
ledOff(LED_CHARGE);
pinMode(LED_PAIRING, OUTPUT);
ledOff(LED_PAIRING);
pinMode(LED_PAIRING, OUTPUT);
ledOff(LED_PAIRING);
pinMode(VDD_FLASH_EN, OUTPUT);
digitalWrite(VDD_FLASH_EN, HIGH);
pinMode(VDD_FLASH_EN, OUTPUT);
digitalWrite(VDD_FLASH_EN, HIGH);
}
// called from main-nrf52.cpp during the cpuDeepSleep() function
void variant_shutdown()
{
// This sets the pin to OUTPUT and LOW for the pins *not* in the if block.
for (int pin = 0; pin < 48; pin++) {
if (pin == PIN_GPS_EN || pin == ADC_CTRL || pin == PIN_BUTTON1 || pin == PIN_SPI_MISO || pin == PIN_SPI_MOSI ||
pin == PIN_SPI_SCK) {
continue;
}
pinMode(pin, OUTPUT);
digitalWrite(pin, LOW);
if (pin >= 32) {
NRF_P1->DIRCLR = (1 << (pin - 32));
} else {
NRF_GPIO->DIRCLR = (1 << pin);
}
void variant_shutdown() {
// This sets the pin to OUTPUT and LOW for the pins *not* in the if block.
for (int pin = 0; pin < 48; pin++) {
if (pin == PIN_GPS_EN || pin == ADC_CTRL || pin == PIN_BUTTON1 || pin == PIN_SPI_MISO || pin == PIN_SPI_MOSI || pin == PIN_SPI_SCK) {
continue;
}
pinMode(pin, OUTPUT);
digitalWrite(pin, LOW);
if (pin >= 32) {
NRF_P1->DIRCLR = (1 << (pin - 32));
} else {
NRF_GPIO->DIRCLR = (1 << pin);
}
}
digitalWrite(PIN_GPS_EN, LOW);
digitalWrite(ADC_CTRL, LOW);
// digitalWrite(RTC_POWER, LOW);
digitalWrite(PIN_GPS_EN, LOW);
digitalWrite(ADC_CTRL, LOW);
// digitalWrite(RTC_POWER, LOW);
nrf_gpio_cfg_input(PIN_BUTTON1, NRF_GPIO_PIN_PULLUP); // Configure the pin to be woken up as an input
nrf_gpio_pin_sense_t sense1 = NRF_GPIO_PIN_SENSE_LOW;
nrf_gpio_cfg_sense_set(PIN_BUTTON1, sense1);
nrf_gpio_cfg_input(PIN_BUTTON1, NRF_GPIO_PIN_PULLUP); // Configure the pin to be woken up as an input
nrf_gpio_pin_sense_t sense1 = NRF_GPIO_PIN_SENSE_LOW;
nrf_gpio_cfg_sense_set(PIN_BUTTON1, sense1);
}
+2 -4
View File
@@ -8,8 +8,6 @@ static const uint32_t rfswitch_dio_pins[] = {RADIOLIB_LR11X0_DIO5, RADIOLIB_LR11
static const Module::RfSwitchMode_t rfswitch_table[] = {
// mode DIO5 DIO6
{LR11x0::MODE_STBY, {LOW, LOW}}, {LR11x0::MODE_RX, {HIGH, LOW}},
{LR11x0::MODE_TX, {HIGH, HIGH}}, {LR11x0::MODE_TX_HP, {LOW, HIGH}},
{LR11x0::MODE_TX_HF, {LOW, LOW}}, {LR11x0::MODE_GNSS, {LOW, LOW}},
{LR11x0::MODE_WIFI, {LOW, LOW}}, END_OF_MODE_TABLE,
{LR11x0::MODE_STBY, {LOW, LOW}}, {LR11x0::MODE_RX, {HIGH, LOW}}, {LR11x0::MODE_TX, {HIGH, HIGH}}, {LR11x0::MODE_TX_HP, {LOW, HIGH}},
{LR11x0::MODE_TX_HF, {LOW, LOW}}, {LR11x0::MODE_GNSS, {LOW, LOW}}, {LR11x0::MODE_WIFI, {LOW, LOW}}, END_OF_MODE_TABLE,
};
@@ -30,11 +30,10 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
pinMode(LED_PIN, OUTPUT);
digitalWrite(LED_PIN, LOW);
void initVariant() {
pinMode(LED_PIN, OUTPUT);
digitalWrite(LED_PIN, LOW);
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}
@@ -8,8 +8,6 @@ static const uint32_t rfswitch_dio_pins[] = {RADIOLIB_LR11X0_DIO5, RADIOLIB_LR11
static const Module::RfSwitchMode_t rfswitch_table[] = {
// mode DIO5 DIO6
{LR11x0::MODE_STBY, {LOW, LOW}}, {LR11x0::MODE_RX, {HIGH, LOW}},
{LR11x0::MODE_TX, {HIGH, HIGH}}, {LR11x0::MODE_TX_HP, {LOW, HIGH}},
{LR11x0::MODE_TX_HF, {LOW, LOW}}, {LR11x0::MODE_GNSS, {LOW, LOW}},
{LR11x0::MODE_WIFI, {LOW, LOW}}, END_OF_MODE_TABLE,
{LR11x0::MODE_STBY, {LOW, LOW}}, {LR11x0::MODE_RX, {HIGH, LOW}}, {LR11x0::MODE_TX, {HIGH, HIGH}}, {LR11x0::MODE_TX_HP, {LOW, HIGH}},
{LR11x0::MODE_TX_HF, {LOW, LOW}}, {LR11x0::MODE_GNSS, {LOW, LOW}}, {LR11x0::MODE_WIFI, {LOW, LOW}}, END_OF_MODE_TABLE,
};
@@ -30,11 +30,10 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
pinMode(LED_PIN, OUTPUT);
digitalWrite(LED_PIN, LOW);
void initVariant() {
pinMode(LED_PIN, OUTPUT);
digitalWrite(LED_PIN, LOW);
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}
@@ -27,12 +27,11 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
}
@@ -27,12 +27,11 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
}
+6 -7
View File
@@ -27,12 +27,11 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
}
+17 -18
View File
@@ -30,27 +30,26 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LEDs
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LEDs
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED3, OUTPUT);
ledOff(PIN_LED3);
pinMode(PIN_LED3, OUTPUT);
ledOff(PIN_LED3);
// Turn on power to the GPS and LoRa
pinMode(PIN_PWR_EN, OUTPUT);
digitalWrite(PIN_PWR_EN, HIGH);
// Turn on power to the GPS and LoRa
pinMode(PIN_PWR_EN, OUTPUT);
digitalWrite(PIN_PWR_EN, HIGH);
// Pull the GPS out of reset
pinMode(GPS_RESET_PIN, OUTPUT);
digitalWrite(GPS_RESET_PIN, HIGH);
// Pull the GPS out of reset
pinMode(GPS_RESET_PIN, OUTPUT);
digitalWrite(GPS_RESET_PIN, HIGH);
// Pull the LoRa out of reset
pinMode(LORA_RF_PWR, OUTPUT);
digitalWrite(LORA_RF_PWR, HIGH);
// Pull the LoRa out of reset
pinMode(LORA_RF_PWR, OUTPUT);
digitalWrite(LORA_RF_PWR, HIGH);
}
+2 -1
View File
@@ -148,7 +148,8 @@ static const uint8_t A0 = PIN_A0;
#define PIN_SPI_MOSI (GPIO_PORT0 + 22)
#define PIN_SPI_SCK (GPIO_PORT0 + 19)
// #define PIN_SPI1_MISO (GPIO_PORT1 + 6) // FIXME not really needed, but for now the SPI code requires something to be defined,
// #define PIN_SPI1_MISO (GPIO_PORT1 + 6) // FIXME not really needed, but for now the SPI code requires something to be
// defined,
// pick an used GPIO #define PIN_SPI1_MOSI (GPIO_PORT1 + 8) #define PIN_SPI1_SCK (GPIO_PORT1 + 9)
#define PIN_PWR_EN (GPIO_PORT0 + 12)
+56 -74
View File
@@ -5,11 +5,11 @@
* SPDX-License-Identifier: BSD-3-Clause
*/
// MESHTASTIC/@geeksville note: This file is copied from the Adafruit nrf52 arduino lib. And we use a special -include in
// nrf52.ini to load it before EVERY file we do this hack because the default definitions for LFS_ASSERT are quite poor and we
// don't want to fork the adafruit lib (again) and send in a PR that they probably won't merge anyways. This file might break if
// they ever update lfs.util on their side, in which case we'll need to update this file to match their new version. The version
// this is a copy from is almost exactly
// MESHTASTIC/@geeksville note: This file is copied from the Adafruit nrf52 arduino lib. And we use a special -include
// in nrf52.ini to load it before EVERY file we do this hack because the default definitions for LFS_ASSERT are quite
// poor and we don't want to fork the adafruit lib (again) and send in a PR that they probably won't merge anyways. This
// file might break if they ever update lfs.util on their side, in which case we'll need to update this file to match
// their new version. The version this is a copy from is almost exactly
// https://github.com/adafruit/Adafruit_nRF52_Arduino/blob/c25d93268a3b9c23e9a1ccfcaf9b208beca624ca/libraries/Adafruit_LittleFS/src/littlefs/lfs_util.h
#ifndef LFS_UTIL_H
@@ -77,9 +77,9 @@ void logLegacy(const char *level, const char *fmt, ...);
#define LFS_ASSERT(test) assert(test)
#else
extern void lfs_assert(const char *reason);
#define LFS_ASSERT(test) \
if (!(test)) \
lfs_assert(#test)
#define LFS_ASSERT(test) \
if (!(test)) \
lfs_assert(#test)
#endif
// Builtin functions, these may be replaced by more efficient
@@ -87,116 +87,98 @@ extern void lfs_assert(const char *reason);
// expensive basic C implementation for debugging purposes
// Min/max functions for unsigned 32-bit numbers
static inline uint32_t lfs_max(uint32_t a, uint32_t b)
{
return (a > b) ? a : b;
}
static inline uint32_t lfs_max(uint32_t a, uint32_t b) { return (a > b) ? a : b; }
static inline uint32_t lfs_min(uint32_t a, uint32_t b)
{
return (a < b) ? a : b;
}
static inline uint32_t lfs_min(uint32_t a, uint32_t b) { return (a < b) ? a : b; }
// Find the next smallest power of 2 less than or equal to a
static inline uint32_t lfs_npw2(uint32_t a)
{
static inline uint32_t lfs_npw2(uint32_t a) {
#if !defined(LFS_NO_INTRINSICS) && (defined(__GNUC__) || defined(__CC_ARM))
return 32 - __builtin_clz(a - 1);
return 32 - __builtin_clz(a - 1);
#else
uint32_t r = 0;
uint32_t s;
a -= 1;
s = (a > 0xffff) << 4;
a >>= s;
r |= s;
s = (a > 0xff) << 3;
a >>= s;
r |= s;
s = (a > 0xf) << 2;
a >>= s;
r |= s;
s = (a > 0x3) << 1;
a >>= s;
r |= s;
return (r | (a >> 1)) + 1;
uint32_t r = 0;
uint32_t s;
a -= 1;
s = (a > 0xffff) << 4;
a >>= s;
r |= s;
s = (a > 0xff) << 3;
a >>= s;
r |= s;
s = (a > 0xf) << 2;
a >>= s;
r |= s;
s = (a > 0x3) << 1;
a >>= s;
r |= s;
return (r | (a >> 1)) + 1;
#endif
}
// Count the number of trailing binary zeros in a
// lfs_ctz(0) may be undefined
static inline uint32_t lfs_ctz(uint32_t a)
{
static inline uint32_t lfs_ctz(uint32_t a) {
#if !defined(LFS_NO_INTRINSICS) && defined(__GNUC__)
return __builtin_ctz(a);
return __builtin_ctz(a);
#else
return lfs_npw2((a & -a) + 1) - 1;
return lfs_npw2((a & -a) + 1) - 1;
#endif
}
// Count the number of binary ones in a
static inline uint32_t lfs_popc(uint32_t a)
{
static inline uint32_t lfs_popc(uint32_t a) {
#if !defined(LFS_NO_INTRINSICS) && (defined(__GNUC__) || defined(__CC_ARM))
return __builtin_popcount(a);
return __builtin_popcount(a);
#else
a = a - ((a >> 1) & 0x55555555);
a = (a & 0x33333333) + ((a >> 2) & 0x33333333);
return (((a + (a >> 4)) & 0xf0f0f0f) * 0x1010101) >> 24;
a = a - ((a >> 1) & 0x55555555);
a = (a & 0x33333333) + ((a >> 2) & 0x33333333);
return (((a + (a >> 4)) & 0xf0f0f0f) * 0x1010101) >> 24;
#endif
}
// Find the sequence comparison of a and b, this is the distance
// between a and b ignoring overflow
static inline int lfs_scmp(uint32_t a, uint32_t b)
{
return (int)(unsigned)(a - b);
}
static inline int lfs_scmp(uint32_t a, uint32_t b) { return (int)(unsigned)(a - b); }
// Convert from 32-bit little-endian to native order
static inline uint32_t lfs_fromle32(uint32_t a)
{
#if !defined(LFS_NO_INTRINSICS) && ((defined(BYTE_ORDER) && BYTE_ORDER == ORDER_LITTLE_ENDIAN) || \
(defined(__BYTE_ORDER) && __BYTE_ORDER == __ORDER_LITTLE_ENDIAN) || \
(defined(__BYTE_ORDER__) && __BYTE_ORDER__ == __ORDER_LITTLE_ENDIAN__))
return a;
#elif !defined(LFS_NO_INTRINSICS) && \
((defined(BYTE_ORDER) && BYTE_ORDER == ORDER_BIG_ENDIAN) || (defined(__BYTE_ORDER) && __BYTE_ORDER == __ORDER_BIG_ENDIAN) || \
static inline uint32_t lfs_fromle32(uint32_t a) {
#if !defined(LFS_NO_INTRINSICS) && \
((defined(BYTE_ORDER) && BYTE_ORDER == ORDER_LITTLE_ENDIAN) || (defined(__BYTE_ORDER) && __BYTE_ORDER == __ORDER_LITTLE_ENDIAN) || \
(defined(__BYTE_ORDER__) && __BYTE_ORDER__ == __ORDER_LITTLE_ENDIAN__))
return a;
#elif !defined(LFS_NO_INTRINSICS) && \
((defined(BYTE_ORDER) && BYTE_ORDER == ORDER_BIG_ENDIAN) || (defined(__BYTE_ORDER) && __BYTE_ORDER == __ORDER_BIG_ENDIAN) || \
(defined(__BYTE_ORDER__) && __BYTE_ORDER__ == __ORDER_BIG_ENDIAN__))
return __builtin_bswap32(a);
return __builtin_bswap32(a);
#else
return (((uint8_t *)&a)[0] << 0) | (((uint8_t *)&a)[1] << 8) | (((uint8_t *)&a)[2] << 16) | (((uint8_t *)&a)[3] << 24);
return (((uint8_t *)&a)[0] << 0) | (((uint8_t *)&a)[1] << 8) | (((uint8_t *)&a)[2] << 16) | (((uint8_t *)&a)[3] << 24);
#endif
}
// Convert to 32-bit little-endian from native order
static inline uint32_t lfs_tole32(uint32_t a)
{
return lfs_fromle32(a);
}
static inline uint32_t lfs_tole32(uint32_t a) { return lfs_fromle32(a); }
// Calculate CRC-32 with polynomial = 0x04c11db7
void lfs_crc(uint32_t *crc, const void *buffer, size_t size);
// Allocate memory, only used if buffers are not provided to littlefs
static inline void *lfs_malloc(size_t size)
{
static inline void *lfs_malloc(size_t size) {
#ifndef LFS_NO_MALLOC
extern void *pvPortMalloc(size_t xWantedSize);
return pvPortMalloc(size);
extern void *pvPortMalloc(size_t xWantedSize);
return pvPortMalloc(size);
#else
(void)size;
return NULL;
(void)size;
return NULL;
#endif
}
// Deallocate memory, only used if buffers are not provided to littlefs
static inline void lfs_free(void *p)
{
static inline void lfs_free(void *p) {
#ifndef LFS_NO_MALLOC
extern void vPortFree(void *pv);
vPortFree(p);
extern void vPortFree(void *pv);
vPortFree(p);
#else
(void)p;
(void)p;
#endif
}
@@ -29,67 +29,66 @@
#error If not using a DIY preset, display model and resilience must be set manually
#endif
void setupNicheGraphics()
{
using namespace NicheGraphics;
void setupNicheGraphics() {
using namespace NicheGraphics;
// SPI
// -----------------------------
SPI.begin();
// SPI
// -----------------------------
SPI.begin();
// Driver
// -----------------------------
// Driver
// -----------------------------
// Use E-Ink driver
Drivers::EInk *driver = new Drivers::INKHUD_BUILDCONF_DRIVER;
driver->begin(&SPI, PIN_EINK_DC, PIN_EINK_CS, PIN_EINK_BUSY, PIN_EINK_RES);
// Use E-Ink driver
Drivers::EInk *driver = new Drivers::INKHUD_BUILDCONF_DRIVER;
driver->begin(&SPI, PIN_EINK_DC, PIN_EINK_CS, PIN_EINK_BUSY, PIN_EINK_RES);
// InkHUD
// ----------------------------
// InkHUD
// ----------------------------
InkHUD::InkHUD *inkhud = InkHUD::InkHUD::getInstance();
InkHUD::InkHUD *inkhud = InkHUD::InkHUD::getInstance();
// Set the driver
inkhud->setDriver(driver);
// Set the driver
inkhud->setDriver(driver);
// Set how many FAST updates per FULL update.
inkhud->setDisplayResilience(INKHUD_BUILDCONF_DISPLAYRESILIENCE); // Suggest roughly ten
// Set how many FAST updates per FULL update.
inkhud->setDisplayResilience(INKHUD_BUILDCONF_DISPLAYRESILIENCE); // Suggest roughly ten
// Select fonts
InkHUD::Applet::fontLarge = FREESANS_12PT_WIN1252;
InkHUD::Applet::fontMedium = FREESANS_9PT_WIN1252;
InkHUD::Applet::fontSmall = FREESANS_6PT_WIN1252;
// Select fonts
InkHUD::Applet::fontLarge = FREESANS_12PT_WIN1252;
InkHUD::Applet::fontMedium = FREESANS_9PT_WIN1252;
InkHUD::Applet::fontSmall = FREESANS_6PT_WIN1252;
// Init settings, and customize defaults
// Values ignored individually if found saved to flash
inkhud->persistence->settings.rotation = (driver->height > driver->width ? 1 : 0); // Rotate 90deg to landscape, if needed
inkhud->persistence->settings.userTiles.maxCount = 4;
inkhud->persistence->settings.optionalFeatures.batteryIcon = true;
// Init settings, and customize defaults
// Values ignored individually if found saved to flash
inkhud->persistence->settings.rotation = (driver->height > driver->width ? 1 : 0); // Rotate 90deg to landscape, if needed
inkhud->persistence->settings.userTiles.maxCount = 4;
inkhud->persistence->settings.optionalFeatures.batteryIcon = true;
// Pick applets
// Note: order of applets determines priority of "auto-show" feature
inkhud->addApplet("All Messages", new InkHUD::AllMessageApplet);
inkhud->addApplet("DMs", new InkHUD::DMApplet, true, false, 3); // Default on tile 3
inkhud->addApplet("Channel 0", new InkHUD::ThreadedMessageApplet(0), true, false, 2); // Default on tile 2
inkhud->addApplet("Channel 1", new InkHUD::ThreadedMessageApplet(1));
inkhud->addApplet("Positions", new InkHUD::PositionsApplet, true, false, 1); // Default on tile 1
inkhud->addApplet("Recents List", new InkHUD::RecentsListApplet, true, false, 0); // Default on tile 0
inkhud->addApplet("Heard", new InkHUD::HeardApplet, true); // Background
// Pick applets
// Note: order of applets determines priority of "auto-show" feature
inkhud->addApplet("All Messages", new InkHUD::AllMessageApplet);
inkhud->addApplet("DMs", new InkHUD::DMApplet, true, false, 3); // Default on tile 3
inkhud->addApplet("Channel 0", new InkHUD::ThreadedMessageApplet(0), true, false, 2); // Default on tile 2
inkhud->addApplet("Channel 1", new InkHUD::ThreadedMessageApplet(1));
inkhud->addApplet("Positions", new InkHUD::PositionsApplet, true, false, 1); // Default on tile 1
inkhud->addApplet("Recents List", new InkHUD::RecentsListApplet, true, false, 0); // Default on tile 0
inkhud->addApplet("Heard", new InkHUD::HeardApplet, true); // Background
// Start running InkHUD
inkhud->begin();
// Start running InkHUD
inkhud->begin();
// Buttons
// --------------------------
// Buttons
// --------------------------
Inputs::TwoButton *buttons = Inputs::TwoButton::getInstance(); // Shared NicheGraphics component
Inputs::TwoButton *buttons = Inputs::TwoButton::getInstance(); // Shared NicheGraphics component
// Setup the main user button
buttons->setWiring(0, Inputs::TwoButton::getUserButtonPin(), true); // Internal pull up
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->longpress(); });
// Setup the main user button
buttons->setWiring(0, Inputs::TwoButton::getUserButtonPin(), true); // Internal pull up
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->longpress(); });
buttons->start();
buttons->start();
}
#endif
@@ -8,8 +8,7 @@
// DIO6 -> RFSW1_V2
// DIO7 -> not connected on E80 module - note that GNSS and Wifi scanning are not possible.
static const uint32_t rfswitch_dio_pins[] = {RADIOLIB_LR11X0_DIO5, RADIOLIB_LR11X0_DIO6, RADIOLIB_LR11X0_DIO7, RADIOLIB_NC,
RADIOLIB_NC};
static const uint32_t rfswitch_dio_pins[] = {RADIOLIB_LR11X0_DIO5, RADIOLIB_LR11X0_DIO6, RADIOLIB_LR11X0_DIO7, RADIOLIB_NC, RADIOLIB_NC};
static const Module::RfSwitchMode_t rfswitch_table[] = {
// mode DIO5 DIO6 DIO7
@@ -30,9 +30,8 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
void initVariant() {
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}
@@ -136,8 +136,8 @@ NRF52 PRO MICRO PIN ASSIGNMENT
// SX126X CONFIG
#define SX126X_CS (32 + 13) // P1.13 FIXME - we really should define LORA_CS instead
#define SX126X_DIO1 (0 + 10) // P0.10 IRQ
#define SX126X_DIO2_AS_RF_SWITCH // Note for E22 modules: DIO2 is not attached internally to TXEN for automatic TX/RX switching,
// so it needs connecting externally if it is used in this way
#define SX126X_DIO2_AS_RF_SWITCH // Note for E22 modules: DIO2 is not attached internally to TXEN for automatic TX/RX
// switching, so it needs connecting externally if it is used in this way
#define SX126X_BUSY (0 + 29) // P0.29
#define SX126X_RESET (0 + 9) // P0.09
#define SX126X_RXEN (0 + 17) // P0.17
@@ -159,8 +159,8 @@ NRF52 PRO MICRO PIN ASSIGNMENT
// #define SX126X_MAX_POWER 8 set this if using a high-power board!
/*
On the SX1262, DIO3 sets the voltage for an external TCXO, if one is present. If one is not present, use TCXO_OPTIONAL to try both
settings.
On the SX1262, DIO3 sets the voltage for an external TCXO, if one is present. If one is not present, use TCXO_OPTIONAL
to try both settings.
| Mfr | Module | TCXO | RF Switch | Notes |
| ------------ | ---------------- | ---- | --------- | ------------------------------------- |
@@ -54,9 +54,8 @@ const uint32_t g_ADigitalPinMap[] = {
31, // D32 is P0.10 (VBAT)
};
void initVariant()
{
// Set BQ25101 ISET to 100mA instead of 50mA
pinMode(HICHG, OUTPUT);
digitalWrite(HICHG, LOW);
void initVariant() {
// Set BQ25101 ISET to 100mA instead of 50mA
pinMode(HICHG, OUTPUT);
digitalWrite(HICHG, LOW);
}
@@ -30,16 +30,15 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}
@@ -195,8 +195,8 @@ Important for successful SX1262 initialization:
* Setup DIO2 to control the antenna switch
* Setup DIO3 to control the TCXO power supply
* Setup the SX1262 to use it's DCDC regulator and not the LDO
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do the
control of the antenna switch
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do
the control of the antenna switch
SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
@@ -232,11 +232,9 @@ SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
// RAK1910 GPS module
// If using the wisblock GPS module and pluged into Port A on WisBlock base
// IO1 is hooked to PPS (pin 12 on header) = gpio 17
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power (1 is on).
// Therefore must be 1 to keep peripherals powered
// Power is on the controllable 3V3_S rail
// #define PIN_GPS_RESET (34)
// #define PIN_GPS_EN PIN_3V3_EN
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power
// (1 is on). Therefore must be 1 to keep peripherals powered Power is on the controllable 3V3_S rail #define
// PIN_GPS_RESET (34) #define PIN_GPS_EN PIN_3V3_EN
#define PIN_GPS_PPS (17) // Pulse per second input from the GPS
#define GPS_BAUDRATE 9600
@@ -30,67 +30,66 @@
#error If not using a DIY preset, display model and resilience must be set manually
#endif
void setupNicheGraphics()
{
using namespace NicheGraphics;
void setupNicheGraphics() {
using namespace NicheGraphics;
// SPI
// -----------------------------
SPI1.begin();
// SPI
// -----------------------------
SPI1.begin();
// Driver
// -----------------------------
// Driver
// -----------------------------
// Use E-Ink driver
Drivers::EInk *driver = new Drivers::INKHUD_BUILDCONF_DRIVER;
driver->begin(&SPI1, PIN_EINK_DC, PIN_EINK_CS, PIN_EINK_BUSY, PIN_EINK_RES);
// Use E-Ink driver
Drivers::EInk *driver = new Drivers::INKHUD_BUILDCONF_DRIVER;
driver->begin(&SPI1, PIN_EINK_DC, PIN_EINK_CS, PIN_EINK_BUSY, PIN_EINK_RES);
// InkHUD
// ----------------------------
// InkHUD
// ----------------------------
InkHUD::InkHUD *inkhud = InkHUD::InkHUD::getInstance();
InkHUD::InkHUD *inkhud = InkHUD::InkHUD::getInstance();
// Set the driver
inkhud->setDriver(driver);
// Set the driver
inkhud->setDriver(driver);
// Set how many FAST updates per FULL update.
inkhud->setDisplayResilience(INKHUD_BUILDCONF_DISPLAYRESILIENCE); // Suggest roughly ten
// Set how many FAST updates per FULL update.
inkhud->setDisplayResilience(INKHUD_BUILDCONF_DISPLAYRESILIENCE); // Suggest roughly ten
// Select fonts
InkHUD::Applet::fontLarge = FREESANS_12PT_WIN1252;
InkHUD::Applet::fontMedium = FREESANS_9PT_WIN1252;
InkHUD::Applet::fontSmall = FREESANS_6PT_WIN1252;
// Select fonts
InkHUD::Applet::fontLarge = FREESANS_12PT_WIN1252;
InkHUD::Applet::fontMedium = FREESANS_9PT_WIN1252;
InkHUD::Applet::fontSmall = FREESANS_6PT_WIN1252;
// Init settings, and customize defaults
// Values ignored individually if found saved to flash
inkhud->persistence->settings.rotation = (driver->height > driver->width ? 1 : 0); // Rotate 90deg to landscape, if needed
inkhud->persistence->settings.userTiles.maxCount = 4;
inkhud->persistence->settings.optionalFeatures.batteryIcon = true;
// Init settings, and customize defaults
// Values ignored individually if found saved to flash
inkhud->persistence->settings.rotation = (driver->height > driver->width ? 1 : 0); // Rotate 90deg to landscape, if needed
inkhud->persistence->settings.userTiles.maxCount = 4;
inkhud->persistence->settings.optionalFeatures.batteryIcon = true;
// Pick applets
// Note: order of applets determines priority of "auto-show" feature
inkhud->addApplet("All Messages", new InkHUD::AllMessageApplet);
inkhud->addApplet("DMs", new InkHUD::DMApplet, true, false, 3); // Default on tile 3
inkhud->addApplet("Channel 0", new InkHUD::ThreadedMessageApplet(0), true, false, 2); // Default on tile 2
inkhud->addApplet("Channel 1", new InkHUD::ThreadedMessageApplet(1));
inkhud->addApplet("Positions", new InkHUD::PositionsApplet, true, false, 1); // Default on tile 1
inkhud->addApplet("Recents List", new InkHUD::RecentsListApplet, true, false, 0); // Default on tile 0
inkhud->addApplet("Heard", new InkHUD::HeardApplet, true); // Background
// Pick applets
// Note: order of applets determines priority of "auto-show" feature
inkhud->addApplet("All Messages", new InkHUD::AllMessageApplet);
inkhud->addApplet("DMs", new InkHUD::DMApplet, true, false, 3); // Default on tile 3
inkhud->addApplet("Channel 0", new InkHUD::ThreadedMessageApplet(0), true, false, 2); // Default on tile 2
inkhud->addApplet("Channel 1", new InkHUD::ThreadedMessageApplet(1));
inkhud->addApplet("Positions", new InkHUD::PositionsApplet, true, false, 1); // Default on tile 1
inkhud->addApplet("Recents List", new InkHUD::RecentsListApplet, true, false, 0); // Default on tile 0
inkhud->addApplet("Heard", new InkHUD::HeardApplet, true); // Background
// Start running InkHUD
inkhud->begin();
// Start running InkHUD
inkhud->begin();
// Buttons
// --------------------------
// Buttons
// --------------------------
Inputs::TwoButton *buttons = Inputs::TwoButton::getInstance(); // Shared NicheGraphics component
Inputs::TwoButton *buttons = Inputs::TwoButton::getInstance(); // Shared NicheGraphics component
// #0: Main User Button
buttons->setWiring(0, Inputs::TwoButton::getUserButtonPin());
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->longpress(); });
// #0: Main User Button
buttons->setWiring(0, Inputs::TwoButton::getUserButtonPin());
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->longpress(); });
buttons->start();
buttons->start();
}
#endif
@@ -30,9 +30,8 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
}
@@ -1,5 +1,6 @@
// Unlike many other InkHUD variants, this environment does require its own variant.h file
// This is because the default T114 variant maps SPI1 pins to the optional TFT display, and those pins are not broken out
// This is because the default T114 variant maps SPI1 pins to the optional TFT display, and those pins are not broken
// out
#ifndef _VARIANT_HELTEC_NRF_
#define _VARIANT_HELTEC_NRF_
@@ -42,8 +43,8 @@ extern "C" {
* Buttons
*/
#define PIN_BUTTON1 (32 + 10)
// #define PIN_BUTTON2 (0 + 18) // 0.18 is labeled on the board as RESET but we configure it in the bootloader as a regular
// GPIO
// #define PIN_BUTTON2 (0 + 18) // 0.18 is labeled on the board as RESET but we configure it in the bootloader as a
// regular GPIO
/*
No longer populated on PCB
@@ -30,9 +30,8 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
}
@@ -86,8 +86,8 @@ extern "C" {
* Buttons
*/
#define PIN_BUTTON1 (32 + 10)
// #define PIN_BUTTON2 (0 + 18) // 0.18 is labeled on the board as RESET but we configure it in the bootloader as a regular
// GPIO
// #define PIN_BUTTON2 (0 + 18) // 0.18 is labeled on the board as RESET but we configure it in the bootloader as a
// regular GPIO
/*
No longer populated on PCB
@@ -145,8 +145,7 @@ No longer populated on PCB
#define SX126X_DIO2_AS_RF_SWITCH
#define SX126X_DIO3_TCXO_VOLTAGE 1.8
#define PIN_SPI1_MISO \
ST7789_MISO // FIXME not really needed, but for now the SPI code requires something to be defined, pick an used GPIO
#define PIN_SPI1_MISO ST7789_MISO // FIXME not really needed, but for now the SPI code requires something to be defined, pick an used GPIO
#define PIN_SPI1_MOSI ST7789_SDA
#define PIN_SPI1_SCK ST7789_SCK
@@ -21,70 +21,69 @@
#include "graphics/niche/Drivers/EInk/LCMEN2R13ECC1.h"
#include "graphics/niche/Inputs/TwoButton.h"
void setupNicheGraphics()
{
using namespace NicheGraphics;
void setupNicheGraphics() {
using namespace NicheGraphics;
// SPI
// -----------------------------
// SPI
// -----------------------------
// For NRF52 platforms, SPI pins are defined in variant.h
SPI1.begin();
// For NRF52 platforms, SPI pins are defined in variant.h
SPI1.begin();
// E-Ink Driver
// -----------------------------
// E-Ink Driver
// -----------------------------
Drivers::EInk *driver = new Drivers::LCMEN2R13ECC1;
driver->begin(&SPI1, PIN_EINK_DC, PIN_EINK_CS, PIN_EINK_BUSY, PIN_EINK_RES);
Drivers::EInk *driver = new Drivers::LCMEN2R13ECC1;
driver->begin(&SPI1, PIN_EINK_DC, PIN_EINK_CS, PIN_EINK_BUSY, PIN_EINK_RES);
// InkHUD
// ----------------------------
// InkHUD
// ----------------------------
InkHUD::InkHUD *inkhud = InkHUD::InkHUD::getInstance();
InkHUD::InkHUD *inkhud = InkHUD::InkHUD::getInstance();
// Set the E-Ink driver
inkhud->setDriver(driver);
// Set the E-Ink driver
inkhud->setDriver(driver);
// Set how many FAST updates per FULL update
// Set how unhealthy additional FAST updates beyond this number are
inkhud->setDisplayResilience(10, 1.5);
// Set how many FAST updates per FULL update
// Set how unhealthy additional FAST updates beyond this number are
inkhud->setDisplayResilience(10, 1.5);
// Select fonts
InkHUD::Applet::fontLarge = FREESANS_12PT_WIN1252;
InkHUD::Applet::fontMedium = FREESANS_9PT_WIN1252;
InkHUD::Applet::fontSmall = FREESANS_6PT_WIN1252;
// Select fonts
InkHUD::Applet::fontLarge = FREESANS_12PT_WIN1252;
InkHUD::Applet::fontMedium = FREESANS_9PT_WIN1252;
InkHUD::Applet::fontSmall = FREESANS_6PT_WIN1252;
// Customize default settings
inkhud->persistence->settings.userTiles.maxCount = 2; // How many tiles can the display handle?
inkhud->persistence->settings.rotation = 3; // 270 degrees clockwise
inkhud->persistence->settings.userTiles.count = 1; // One tile only by default, keep things simple for new users
inkhud->persistence->settings.optionalMenuItems.nextTile = true;
// Customize default settings
inkhud->persistence->settings.userTiles.maxCount = 2; // How many tiles can the display handle?
inkhud->persistence->settings.rotation = 3; // 270 degrees clockwise
inkhud->persistence->settings.userTiles.count = 1; // One tile only by default, keep things simple for new users
inkhud->persistence->settings.optionalMenuItems.nextTile = true;
// Pick applets
// Note: order of applets determines priority of "auto-show" feature
inkhud->addApplet("All Messages", new InkHUD::AllMessageApplet, true, true); // Activated, autoshown
inkhud->addApplet("DMs", new InkHUD::DMApplet); // -
inkhud->addApplet("Channel 0", new InkHUD::ThreadedMessageApplet(0)); // -
inkhud->addApplet("Channel 1", new InkHUD::ThreadedMessageApplet(1)); // -
inkhud->addApplet("Positions", new InkHUD::PositionsApplet, true); // Activated
inkhud->addApplet("Recents List", new InkHUD::RecentsListApplet); // -
inkhud->addApplet("Heard", new InkHUD::HeardApplet, true, false, 0); // Activated, no autoshow, default on tile 0
// Pick applets
// Note: order of applets determines priority of "auto-show" feature
inkhud->addApplet("All Messages", new InkHUD::AllMessageApplet, true, true); // Activated, autoshown
inkhud->addApplet("DMs", new InkHUD::DMApplet); // -
inkhud->addApplet("Channel 0", new InkHUD::ThreadedMessageApplet(0)); // -
inkhud->addApplet("Channel 1", new InkHUD::ThreadedMessageApplet(1)); // -
inkhud->addApplet("Positions", new InkHUD::PositionsApplet, true); // Activated
inkhud->addApplet("Recents List", new InkHUD::RecentsListApplet); // -
inkhud->addApplet("Heard", new InkHUD::HeardApplet, true, false, 0); // Activated, no autoshow, default on tile 0
// Start running InkHUD
inkhud->begin();
// Start running InkHUD
inkhud->begin();
// Buttons
// --------------------------
// Buttons
// --------------------------
Inputs::TwoButton *buttons = Inputs::TwoButton::getInstance(); // Shared NicheGraphics component
Inputs::TwoButton *buttons = Inputs::TwoButton::getInstance(); // Shared NicheGraphics component
// #0: Main User Button
buttons->setWiring(0, Inputs::TwoButton::getUserButtonPin());
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->longpress(); });
// #0: Main User Button
buttons->setWiring(0, Inputs::TwoButton::getUserButtonPin());
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->longpress(); });
// Begin handling button events
buttons->start();
// Begin handling button events
buttons->start();
}
#endif
@@ -34,8 +34,8 @@ extern "C" {
* Buttons
*/
#define PIN_BUTTON1 (32 + 10)
// #define PIN_BUTTON2 (0 + 18) // 0.18 is labeled on the board as RESET but we configure it in the bootloader as a regular
// GPIO
// #define PIN_BUTTON2 (0 + 18) // 0.18 is labeled on the board as RESET but we configure it in the bootloader as a
// regular GPIO
/*
No longer populated on PCB
@@ -21,70 +21,69 @@
#include "graphics/niche/Drivers/EInk/E0213A367.h"
#include "graphics/niche/Inputs/TwoButton.h"
void setupNicheGraphics()
{
using namespace NicheGraphics;
void setupNicheGraphics() {
using namespace NicheGraphics;
// SPI
// -----------------------------
// SPI
// -----------------------------
// For NRF52 platforms, SPI pins are defined in variant.h
SPI1.begin();
// For NRF52 platforms, SPI pins are defined in variant.h
SPI1.begin();
// E-Ink Driver
// -----------------------------
// E-Ink Driver
// -----------------------------
Drivers::EInk *driver = new Drivers::E0213A367;
driver->begin(&SPI1, PIN_EINK_DC, PIN_EINK_CS, PIN_EINK_BUSY, PIN_EINK_RES);
Drivers::EInk *driver = new Drivers::E0213A367;
driver->begin(&SPI1, PIN_EINK_DC, PIN_EINK_CS, PIN_EINK_BUSY, PIN_EINK_RES);
// InkHUD
// ----------------------------
// InkHUD
// ----------------------------
InkHUD::InkHUD *inkhud = InkHUD::InkHUD::getInstance();
InkHUD::InkHUD *inkhud = InkHUD::InkHUD::getInstance();
// Set the E-Ink driver
inkhud->setDriver(driver);
// Set the E-Ink driver
inkhud->setDriver(driver);
// Set how many FAST updates per FULL update
// Set how unhealthy additional FAST updates beyond this number are
inkhud->setDisplayResilience(10, 1.5);
// Set how many FAST updates per FULL update
// Set how unhealthy additional FAST updates beyond this number are
inkhud->setDisplayResilience(10, 1.5);
// Select fonts
InkHUD::Applet::fontLarge = FREESANS_12PT_WIN1252;
InkHUD::Applet::fontMedium = FREESANS_9PT_WIN1252;
InkHUD::Applet::fontSmall = FREESANS_6PT_WIN1252;
// Select fonts
InkHUD::Applet::fontLarge = FREESANS_12PT_WIN1252;
InkHUD::Applet::fontMedium = FREESANS_9PT_WIN1252;
InkHUD::Applet::fontSmall = FREESANS_6PT_WIN1252;
// Customize default settings
inkhud->persistence->settings.userTiles.maxCount = 2; // How many tiles can the display handle?
inkhud->persistence->settings.rotation = 3; // 270 degrees clockwise
inkhud->persistence->settings.userTiles.count = 1; // One tile only by default, keep things simple for new users
inkhud->persistence->settings.optionalMenuItems.nextTile = true;
// Customize default settings
inkhud->persistence->settings.userTiles.maxCount = 2; // How many tiles can the display handle?
inkhud->persistence->settings.rotation = 3; // 270 degrees clockwise
inkhud->persistence->settings.userTiles.count = 1; // One tile only by default, keep things simple for new users
inkhud->persistence->settings.optionalMenuItems.nextTile = true;
// Pick applets
// Note: order of applets determines priority of "auto-show" feature
inkhud->addApplet("All Messages", new InkHUD::AllMessageApplet, true, true); // Activated, autoshown
inkhud->addApplet("DMs", new InkHUD::DMApplet); // -
inkhud->addApplet("Channel 0", new InkHUD::ThreadedMessageApplet(0)); // -
inkhud->addApplet("Channel 1", new InkHUD::ThreadedMessageApplet(1)); // -
inkhud->addApplet("Positions", new InkHUD::PositionsApplet, true); // Activated
inkhud->addApplet("Recents List", new InkHUD::RecentsListApplet); // -
inkhud->addApplet("Heard", new InkHUD::HeardApplet, true, false, 0); // Activated, no autoshow, default on tile 0
// Pick applets
// Note: order of applets determines priority of "auto-show" feature
inkhud->addApplet("All Messages", new InkHUD::AllMessageApplet, true, true); // Activated, autoshown
inkhud->addApplet("DMs", new InkHUD::DMApplet); // -
inkhud->addApplet("Channel 0", new InkHUD::ThreadedMessageApplet(0)); // -
inkhud->addApplet("Channel 1", new InkHUD::ThreadedMessageApplet(1)); // -
inkhud->addApplet("Positions", new InkHUD::PositionsApplet, true); // Activated
inkhud->addApplet("Recents List", new InkHUD::RecentsListApplet); // -
inkhud->addApplet("Heard", new InkHUD::HeardApplet, true, false, 0); // Activated, no autoshow, default on tile 0
// Start running InkHUD
inkhud->begin();
// Start running InkHUD
inkhud->begin();
// Buttons
// --------------------------
// Buttons
// --------------------------
Inputs::TwoButton *buttons = Inputs::TwoButton::getInstance(); // Shared NicheGraphics component
Inputs::TwoButton *buttons = Inputs::TwoButton::getInstance(); // Shared NicheGraphics component
// #0: Main User Button
buttons->setWiring(0, Inputs::TwoButton::getUserButtonPin());
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->longpress(); });
// #0: Main User Button
buttons->setWiring(0, Inputs::TwoButton::getUserButtonPin());
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->longpress(); });
// Begin handling button events
buttons->start();
// Begin handling button events
buttons->start();
}
#endif
@@ -30,11 +30,10 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
pinMode(BQ4050_EMERGENCY_SHUTDOWN_PIN, INPUT);
void initVariant() {
pinMode(BQ4050_EMERGENCY_SHUTDOWN_PIN, INPUT);
#if defined(PIN_SCREEN_VDD_CTL)
pinMode(PIN_SCREEN_VDD_CTL, OUTPUT);
digitalWrite(PIN_SCREEN_VDD_CTL, LOW); // Start with power on
pinMode(PIN_SCREEN_VDD_CTL, OUTPUT);
digitalWrite(PIN_SCREEN_VDD_CTL, LOW); // Start with power on
#endif
}
@@ -54,8 +54,8 @@ extern "C" {
* Buttons
*/
#define PIN_BUTTON1 (32 + 10)
// #define PIN_BUTTON2 (0 + 18) // 0.18 is labeled on the board as RESET but we configure it in the bootloader as a regular
// GPIO
// #define PIN_BUTTON2 (0 + 18) // 0.18 is labeled on the board as RESET but we configure it in the bootloader as a
// regular GPIO
/*
No longer populated on PCB
+6 -7
View File
@@ -10,14 +10,13 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
pinMode(PIN_LED1, OUTPUT);
digitalWrite(PIN_LED1, HIGH); // turn off the white led while booting
// otherwise it will stay lit for several seconds (could be annoying)
void initVariant() {
pinMode(PIN_LED1, OUTPUT);
digitalWrite(PIN_LED1, HIGH); // turn off the white led while booting
// otherwise it will stay lit for several seconds (could be annoying)
#ifdef PIN_WD_EN
pinMode(PIN_WD_EN, OUTPUT);
digitalWrite(PIN_WD_EN, HIGH); // Enable the Watchdog at boot
pinMode(PIN_WD_EN, OUTPUT);
digitalWrite(PIN_WD_EN, HIGH); // Enable the Watchdog at boot
#endif
}
+16 -17
View File
@@ -30,25 +30,24 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// Initialize Encoder pins
pinMode(INPUTDRIVER_ENCODER_UP, INPUT_PULLUP);
pinMode(INPUTDRIVER_ENCODER_DOWN, INPUT_PULLUP);
pinMode(INPUTDRIVER_ENCODER_BTN, INPUT_PULLUP);
// Initialize Encoder pins
pinMode(INPUTDRIVER_ENCODER_UP, INPUT_PULLUP);
pinMode(INPUTDRIVER_ENCODER_DOWN, INPUT_PULLUP);
pinMode(INPUTDRIVER_ENCODER_BTN, INPUT_PULLUP);
// Initialize Buzzer pin
pinMode(PIN_BUZZER, OUTPUT);
digitalWrite(PIN_BUZZER, LOW);
// Initialize Buzzer pin
pinMode(PIN_BUZZER, OUTPUT);
digitalWrite(PIN_BUZZER, LOW);
}
+6 -7
View File
@@ -30,12 +30,11 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
}
+2 -2
View File
@@ -176,8 +176,8 @@ Important for successful SX1262 initialization:
* Setup DIO2 to control the antenna switch
* Setup DIO3 to control the TCXO power supply
* Setup the SX1262 to use it's DCDC regulator and not the LDO
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do the
control of the antenna switch
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do
the control of the antenna switch
SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
+2 -4
View File
@@ -4,8 +4,6 @@ static const uint32_t rfswitch_dio_pins[] = {RADIOLIB_LR11X0_DIO5, RADIOLIB_LR11
static const Module::RfSwitchMode_t rfswitch_table[] = {
// mode DIO5 DIO6
{LR11x0::MODE_STBY, {LOW, LOW}}, {LR11x0::MODE_RX, {HIGH, LOW}},
{LR11x0::MODE_TX, {LOW, HIGH}}, {LR11x0::MODE_TX_HP, {LOW, HIGH}},
{LR11x0::MODE_TX_HF, {LOW, LOW}}, {LR11x0::MODE_GNSS, {LOW, LOW}},
{LR11x0::MODE_WIFI, {LOW, LOW}}, END_OF_MODE_TABLE,
{LR11x0::MODE_STBY, {LOW, LOW}}, {LR11x0::MODE_RX, {HIGH, LOW}}, {LR11x0::MODE_TX, {LOW, HIGH}}, {LR11x0::MODE_TX_HP, {LOW, HIGH}},
{LR11x0::MODE_TX_HF, {LOW, LOW}}, {LR11x0::MODE_GNSS, {LOW, LOW}}, {LR11x0::MODE_WIFI, {LOW, LOW}}, END_OF_MODE_TABLE,
};
+16 -17
View File
@@ -57,27 +57,26 @@ const uint32_t g_ADigitalPinMap[] = {
47,
};
void initVariant()
{
// Initialize the digital pins as inputs or outputs
pinMode(PIN_LED1, OUTPUT);
digitalWrite(PIN_LED1, HIGH);
void initVariant() {
// Initialize the digital pins as inputs or outputs
pinMode(PIN_LED1, OUTPUT);
digitalWrite(PIN_LED1, HIGH);
pinMode(PIN_LED2, OUTPUT);
digitalWrite(PIN_LED2, HIGH);
pinMode(PIN_LED2, OUTPUT);
digitalWrite(PIN_LED2, HIGH);
// Initialize LoRa pins
pinMode(SX126X_RESET, OUTPUT);
digitalWrite(SX126X_RESET, HIGH);
// Initialize LoRa pins
pinMode(SX126X_RESET, OUTPUT);
digitalWrite(SX126X_RESET, HIGH);
pinMode(SX126X_CS, OUTPUT);
digitalWrite(SX126X_CS, HIGH);
pinMode(SX126X_CS, OUTPUT);
digitalWrite(SX126X_CS, HIGH);
pinMode(GPS_EN_GPIO, OUTPUT);
digitalWrite(GPS_EN_GPIO, HIGH); // GPS on initially
pinMode(GPS_EN_GPIO, OUTPUT);
digitalWrite(GPS_EN_GPIO, HIGH); // GPS on initially
pinMode(SCREEN_12V_ENABLE, OUTPUT);
digitalWrite(SCREEN_12V_ENABLE, LOW); //
pinMode(SCREEN_12V_ENABLE, OUTPUT);
digitalWrite(SCREEN_12V_ENABLE, LOW); //
pinMode(BATTERY_CHARGING_INV, INPUT);
pinMode(BATTERY_CHARGING_INV, INPUT);
}
+26 -31
View File
@@ -132,37 +132,32 @@ extern "C" {
#define USERPREFS_OEM_FONT_SIZE 0
#define USERPREFS_OEM_IMAGE_WIDTH 88 // 11 bytes wide
#define USERPREFS_OEM_IMAGE_HEIGHT 47 // 517 bytes total
#define USERPREFS_OEM_IMAGE_DATA \
{ \
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xC0, 0xFF, 0xFF, 0x7F, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xC0, 0xFF, \
0xFF, 0x7F, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xC0, 0xFF, 0xFF, 0x7F, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, \
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, \
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xC0, 0x03, 0x3C, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, \
0xF7, 0x0F, 0xFF, 0x00, 0xF0, 0xFF, 0x0F, 0xC0, 0xFF, 0x07, 0x78, 0xFF, 0x9F, 0xFF, 0x01, 0xF0, 0xFF, 0x0F, 0xC0, \
0xFF, 0x03, 0x78, 0x3F, 0xFE, 0xF3, 0x01, 0xF0, 0xFF, 0x0F, 0x00, 0xE0, 0x03, 0x78, 0x1F, 0xFC, 0xC0, 0x03, 0xF0, \
0xFF, 0x0F, 0x00, 0xE0, 0x01, 0x78, 0x0F, 0xF8, 0x80, 0x03, 0xF0, 0xFF, 0x0F, 0x00, 0xF0, 0x00, 0x78, 0x0F, 0x78, \
0x80, 0x03, 0xF0, 0xFF, 0x0F, 0x00, 0x70, 0x00, 0x78, 0x07, 0x70, 0x80, 0x03, 0xF0, 0xFF, 0x0F, 0x00, 0x78, 0x00, \
0x78, 0x07, 0x70, 0x80, 0x03, 0xF0, 0xFF, 0x0F, 0x00, 0x3C, 0x00, 0x78, 0x07, 0x70, 0x80, 0x03, 0xF0, 0xFF, 0x0F, \
0x00, 0x1C, 0x00, 0x78, 0x07, 0x70, 0x80, 0x03, 0xF0, 0xFF, 0x0F, 0x00, 0x1E, 0x00, 0x78, 0x07, 0x70, 0x80, 0x03, \
0xE0, 0xFF, 0x0F, 0x00, 0x0F, 0x00, 0x78, 0x07, 0x70, 0x80, 0x03, 0xE0, 0xFF, 0x07, 0x80, 0x07, 0x00, 0x78, 0x07, \
0x70, 0x80, 0x03, 0xC0, 0xFF, 0x07, 0x80, 0x07, 0x00, 0x78, 0x07, 0x70, 0x80, 0x03, 0xC0, 0xFF, 0x03, 0xC0, 0xFF, \
0x07, 0x78, 0x07, 0x70, 0x80, 0x03, 0x00, 0xFF, 0x01, 0xE0, 0xFF, 0x07, 0x78, 0x07, 0x70, 0x80, 0x03, 0x00, 0x7C, \
0x00, 0xF0, 0xFF, 0x07, 0x78, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, \
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, \
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, \
0xFF, 0xFF, 0x7F, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0x7F, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, \
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0x7F, 0xE3, 0xE7, 0xC7, 0x1F, 0xF8, 0x0F, 0xF0, 0xE7, 0xE3, 0x07, 0x7C, 0xC7, 0xE7, \
0xC3, 0x0F, 0xE0, 0x07, 0xE0, 0xC7, 0xE1, 0x03, 0x70, 0xC7, 0xC3, 0xE3, 0x87, 0xC1, 0x07, 0xC0, 0xC7, 0xF8, 0xE3, \
0x71, 0xC7, 0xC3, 0xE3, 0xE3, 0xC7, 0xC7, 0xC7, 0x47, 0xF8, 0xF3, 0x7F, 0x8F, 0xC3, 0xF1, 0xE3, 0x8F, 0xC7, 0x8F, \
0x27, 0xFC, 0xE3, 0x7F, 0x8F, 0x81, 0xF1, 0xF1, 0x8F, 0xC7, 0xCF, 0x07, 0xFE, 0x03, 0x7E, 0x8F, 0x99, 0xF1, 0xF1, \
0x8F, 0x07, 0xC0, 0x07, 0xFF, 0x07, 0x78, 0x9F, 0x99, 0xF9, 0xF1, 0x8F, 0x07, 0xE0, 0x07, 0xFE, 0x3F, 0x70, 0x1F, \
0x18, 0xF8, 0xF3, 0x8F, 0x07, 0xF0, 0x27, 0xFC, 0xFF, 0x71, 0x3F, 0x18, 0xF8, 0xE3, 0xC7, 0xC7, 0xF1, 0x47, 0xF8, \
0xF3, 0x63, 0x3F, 0x3C, 0xFC, 0xC3, 0xC3, 0xC7, 0xE3, 0xC7, 0xF0, 0xE1, 0x71, 0x3F, 0x3C, 0xFC, 0x07, 0xE0, 0xC7, \
0xC7, 0xC7, 0xE1, 0x03, 0x70, 0x7F, 0x7E, 0xFE, 0x0F, 0xF0, 0xC7, 0x87, 0xC7, 0xC3, 0x07, 0x78, 0xFF, 0xFF, 0xFF, \
0x7F, 0xFC, 0xFF, 0xFF, 0xFF, 0xFF, 0x1F, 0x7E, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0x7F, \
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0x7F, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, \
0xFF, 0xFF, 0x7F \
}
#define USERPREFS_OEM_IMAGE_DATA \
{ \
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xC0, 0xFF, 0xFF, 0x7F, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xC0, 0xFF, 0xFF, 0x7F, 0x00, 0x00, \
0x00, 0x00, 0x00, 0x00, 0x00, 0xC0, 0xFF, 0xFF, 0x7F, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, \
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xC0, 0x03, 0x3C, 0x00, \
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xF7, 0x0F, 0xFF, 0x00, 0xF0, 0xFF, 0x0F, 0xC0, 0xFF, 0x07, 0x78, 0xFF, 0x9F, 0xFF, 0x01, 0xF0, \
0xFF, 0x0F, 0xC0, 0xFF, 0x03, 0x78, 0x3F, 0xFE, 0xF3, 0x01, 0xF0, 0xFF, 0x0F, 0x00, 0xE0, 0x03, 0x78, 0x1F, 0xFC, 0xC0, 0x03, 0xF0, 0xFF, \
0x0F, 0x00, 0xE0, 0x01, 0x78, 0x0F, 0xF8, 0x80, 0x03, 0xF0, 0xFF, 0x0F, 0x00, 0xF0, 0x00, 0x78, 0x0F, 0x78, 0x80, 0x03, 0xF0, 0xFF, 0x0F, \
0x00, 0x70, 0x00, 0x78, 0x07, 0x70, 0x80, 0x03, 0xF0, 0xFF, 0x0F, 0x00, 0x78, 0x00, 0x78, 0x07, 0x70, 0x80, 0x03, 0xF0, 0xFF, 0x0F, 0x00, \
0x3C, 0x00, 0x78, 0x07, 0x70, 0x80, 0x03, 0xF0, 0xFF, 0x0F, 0x00, 0x1C, 0x00, 0x78, 0x07, 0x70, 0x80, 0x03, 0xF0, 0xFF, 0x0F, 0x00, 0x1E, \
0x00, 0x78, 0x07, 0x70, 0x80, 0x03, 0xE0, 0xFF, 0x0F, 0x00, 0x0F, 0x00, 0x78, 0x07, 0x70, 0x80, 0x03, 0xE0, 0xFF, 0x07, 0x80, 0x07, 0x00, \
0x78, 0x07, 0x70, 0x80, 0x03, 0xC0, 0xFF, 0x07, 0x80, 0x07, 0x00, 0x78, 0x07, 0x70, 0x80, 0x03, 0xC0, 0xFF, 0x03, 0xC0, 0xFF, 0x07, 0x78, \
0x07, 0x70, 0x80, 0x03, 0x00, 0xFF, 0x01, 0xE0, 0xFF, 0x07, 0x78, 0x07, 0x70, 0x80, 0x03, 0x00, 0x7C, 0x00, 0xF0, 0xFF, 0x07, 0x78, 0x00, \
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, \
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xFF, 0xFF, 0xFF, \
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0x7F, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0x7F, 0xFF, 0xFF, 0xFF, 0xFF, \
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0x7F, 0xE3, 0xE7, 0xC7, 0x1F, 0xF8, 0x0F, 0xF0, 0xE7, 0xE3, 0x07, 0x7C, 0xC7, 0xE7, 0xC3, 0x0F, 0xE0, \
0x07, 0xE0, 0xC7, 0xE1, 0x03, 0x70, 0xC7, 0xC3, 0xE3, 0x87, 0xC1, 0x07, 0xC0, 0xC7, 0xF8, 0xE3, 0x71, 0xC7, 0xC3, 0xE3, 0xE3, 0xC7, 0xC7, \
0xC7, 0x47, 0xF8, 0xF3, 0x7F, 0x8F, 0xC3, 0xF1, 0xE3, 0x8F, 0xC7, 0x8F, 0x27, 0xFC, 0xE3, 0x7F, 0x8F, 0x81, 0xF1, 0xF1, 0x8F, 0xC7, 0xCF, \
0x07, 0xFE, 0x03, 0x7E, 0x8F, 0x99, 0xF1, 0xF1, 0x8F, 0x07, 0xC0, 0x07, 0xFF, 0x07, 0x78, 0x9F, 0x99, 0xF9, 0xF1, 0x8F, 0x07, 0xE0, 0x07, \
0xFE, 0x3F, 0x70, 0x1F, 0x18, 0xF8, 0xF3, 0x8F, 0x07, 0xF0, 0x27, 0xFC, 0xFF, 0x71, 0x3F, 0x18, 0xF8, 0xE3, 0xC7, 0xC7, 0xF1, 0x47, 0xF8, \
0xF3, 0x63, 0x3F, 0x3C, 0xFC, 0xC3, 0xC3, 0xC7, 0xE3, 0xC7, 0xF0, 0xE1, 0x71, 0x3F, 0x3C, 0xFC, 0x07, 0xE0, 0xC7, 0xC7, 0xC7, 0xE1, 0x03, \
0x70, 0x7F, 0x7E, 0xFE, 0x0F, 0xF0, 0xC7, 0x87, 0xC7, 0xC3, 0x07, 0x78, 0xFF, 0xFF, 0xFF, 0x7F, 0xFC, 0xFF, 0xFF, 0xFF, 0xFF, 0x1F, 0x7E, \
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0x7F, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0x7F, 0xFF, \
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0x7F \
}
// QSPI Pins
#define PIN_QSPI_SCK (0 + 3)
+2 -3
View File
@@ -30,7 +30,6 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// Nothing need to be inited for now
void initVariant() {
// Nothing need to be inited for now
}
+2 -1
View File
@@ -112,7 +112,8 @@ External serial flash W25Q16JV_IQ
#define SX126X_DIO1 (32 + 10)
// Note DIO2 is attached internally to the module to an analog switch for TX/RX switching
// #define SX1262_DIO3 (0 + 21)
// This is used as an *output* from the sx1262 and connected internally to power the tcxo, do not drive from the main CPU?
// This is used as an *output* from the sx1262 and connected internally to power the tcxo, do not drive from the main
// CPU?
#define SX126X_BUSY (32 + 11)
#define SX126X_RESET (32 + 15)
// DIO2 controlls an antenna switch and the TCXO voltage is controlled by DIO3
+9 -10
View File
@@ -30,16 +30,15 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
// pinMode(PIN_3V3_EN, OUTPUT);
// digitalWrite(PIN_3V3_EN, HIGH);
// 3V3 Power Rail
// pinMode(PIN_3V3_EN, OUTPUT);
// digitalWrite(PIN_3V3_EN, HIGH);
}
+9 -10
View File
@@ -30,16 +30,15 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}
+5 -7
View File
@@ -184,8 +184,8 @@ Important for successful SX1262 initialization:
* Setup DIO2 to control the antenna switch
* Setup DIO3 to control the TCXO power supply
* Setup the SX1262 to use it's DCDC regulator and not the LDO
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do the
control of the antenna switch
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do
the control of the antenna switch
SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
@@ -215,11 +215,9 @@ SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
// RAK1910 GPS module
// If using the wisblock GPS module and pluged into Port A on WisBlock base
// IO1 is hooked to PPS (pin 12 on header) = gpio 17
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power (1 is on).
// Therefore must be 1 to keep peripherals powered
// Power is on the controllable 3V3_S rail
// #define PIN_GPS_RESET (34)
// #define PIN_GPS_EN PIN_3V3_EN
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power
// (1 is on). Therefore must be 1 to keep peripherals powered Power is on the controllable 3V3_S rail #define
// PIN_GPS_RESET (34) #define PIN_GPS_EN PIN_3V3_EN
#define PIN_GPS_PPS (17) // Pulse per second input from the GPS
#define GPS_SERIAL_PORT Serial2
+9 -10
View File
@@ -30,16 +30,15 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}
+3 -5
View File
@@ -181,11 +181,9 @@ static const uint8_t SCK = PIN_SPI_SCK;
// RAK1910 GPS module
// If using the wisblock GPS module and pluged into Port A on WisBlock base
// IO1 is hooked to PPS (pin 12 on header) = gpio 17
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power (1 is on).
// Therefore must be 1 to keep peripherals powered
// Power is on the controllable 3V3_S rail
// #define PIN_GPS_RESET (34)
// #define PIN_GPS_EN PIN_3V3_EN
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power
// (1 is on). Therefore must be 1 to keep peripherals powered Power is on the controllable 3V3_S rail #define
// PIN_GPS_RESET (34) #define PIN_GPS_EN PIN_3V3_EN
#define PIN_GPS_PPS (17) // Pulse per second input from the GPS
#define GPS_RX_PIN PIN_SERIAL1_RX
+9 -10
View File
@@ -30,16 +30,15 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}
+5 -7
View File
@@ -195,8 +195,8 @@ Important for successful SX1262 initialization:
* Setup DIO2 to control the antenna switch
* Setup DIO3 to control the TCXO power supply
* Setup the SX1262 to use it's DCDC regulator and not the LDO
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do the
control of the antenna switch
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do
the control of the antenna switch
SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
@@ -237,11 +237,9 @@ SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
// RAK1910 GPS module
// If using the wisblock GPS module and pluged into Port A on WisBlock base
// IO1 is hooked to PPS (pin 12 on header) = gpio 17
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power (1 is on).
// Therefore must be 1 to keep peripherals powered
// Power is on the controllable 3V3_S rail
// #define PIN_GPS_RESET (34)
// #define PIN_GPS_EN PIN_3V3_EN
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power
// (1 is on). Therefore must be 1 to keep peripherals powered Power is on the controllable 3V3_S rail #define
// PIN_GPS_RESET (34) #define PIN_GPS_EN PIN_3V3_EN
#define PIN_GPS_PPS (17) // Pulse per second input from the GPS
#define GPS_RX_PIN PIN_SERIAL1_RX
+9 -10
View File
@@ -30,16 +30,15 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}
+3 -4
View File
@@ -195,10 +195,9 @@ static const uint8_t SCK = PIN_SPI_SCK;
// RAK1910 GPS module
// If using the wisblock GPS module and pluged into Port A on WisBlock base
// IO1 is hooked to PPS (pin 12 on header) = gpio 17
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power (1 is on).
// Therefore must be 1 to keep peripherals powered
// Power is on the controllable 3V3_S rail
// #define PIN_GPS_RESET (34)
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power
// (1 is on). Therefore must be 1 to keep peripherals powered Power is on the controllable 3V3_S rail #define
// PIN_GPS_RESET (34)
#define PIN_GPS_EN PIN_3V3_EN
#define PIN_GPS_PPS (17) // Pulse per second input from the GPS
@@ -30,16 +30,15 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}
@@ -171,12 +171,9 @@ static const uint8_t SCK = PIN_SPI_SCK;
// RAK1910 GPS module
// If using the wisblock GPS module and pluged into Port A on WisBlock base
// IO1 is hooked to PPS (pin 12 on header) = gpio 17
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power (1 is on).
// Therefore must be 1 to keep peripherals powered
// Power is on the controllable 3V3_S rail
// #define PIN_GPS_RESET (34)
// #define PIN_GPS_EN PIN_3V3_EN
// #define PIN_GPS_PPS (17) // Pulse per second input from the GPS
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power
// (1 is on). Therefore must be 1 to keep peripherals powered Power is on the controllable 3V3_S rail #define
// PIN_GPS_RESET (34) #define PIN_GPS_EN PIN_3V3_EN #define PIN_GPS_PPS (17) // Pulse per second input from the GPS
// #define GPS_RX_PIN PIN_SERIAL1_RX
// #define GPS_TX_PIN PIN_SERIAL1_TX
+9 -10
View File
@@ -30,16 +30,15 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}
+5 -7
View File
@@ -192,8 +192,8 @@ Important for successful SX1262 initialization:
* Setup DIO2 to control the antenna switch
* Setup DIO3 to control the TCXO power supply
* Setup the SX1262 to use it's DCDC regulator and not the LDO
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do the
control of the antenna switch
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do
the control of the antenna switch
SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
@@ -224,11 +224,9 @@ SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
// RAK1910 GPS module
// If using the wisblock GPS module and pluged into Port A on WisBlock base
// IO1 is hooked to PPS (pin 12 on header) = gpio 17
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power (1 is on).
// Therefore must be 1 to keep peripherals powered
// Power is on the controllable 3V3_S rail
// #define PIN_GPS_RESET (34)
// #define PIN_GPS_EN PIN_3V3_EN
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power
// (1 is on). Therefore must be 1 to keep peripherals powered Power is on the controllable 3V3_S rail #define
// PIN_GPS_RESET (34) #define PIN_GPS_EN PIN_3V3_EN
#define PIN_GPS_PPS (17) // Pulse per second input from the GPS
#define GPS_RX_PIN PIN_SERIAL1_RX
@@ -30,16 +30,15 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}
@@ -191,8 +191,8 @@ Important for successful SX1262 initialization:
* Setup DIO2 to control the antenna switch
* Setup DIO3 to control the TCXO power supply
* Setup the SX1262 to use it's DCDC regulator and not the LDO
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do the
control of the antenna switch
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do
the control of the antenna switch
SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
@@ -222,11 +222,9 @@ SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
// RAK1910 GPS module
// If using the wisblock GPS module and pluged into Port A on WisBlock base
// IO1 is hooked to PPS (pin 12 on header) = gpio 17
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power (1 is on).
// Therefore must be 1 to keep peripherals powered
// Power is on the controllable 3V3_S rail
// #define PIN_GPS_RESET (34)
// #define PIN_GPS_EN PIN_3V3_EN
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power
// (1 is on). Therefore must be 1 to keep peripherals powered Power is on the controllable 3V3_S rail #define
// PIN_GPS_RESET (34) #define PIN_GPS_EN PIN_3V3_EN
#define PIN_GPS_PPS (17) // Pulse per second input from the GPS
#define GPS_RX_PIN PIN_SERIAL1_RX
+9 -10
View File
@@ -30,16 +30,15 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}
+2 -2
View File
@@ -182,8 +182,8 @@ Important for successful SX1262 initialization:
* Setup DIO2 to control the antenna switch
* Setup DIO3 to control the TCXO power supply
* Setup the SX1262 to use it's DCDC regulator and not the LDO
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do the
control of the antenna switch
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do
the control of the antenna switch
SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
+9 -10
View File
@@ -30,16 +30,15 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}
+5 -7
View File
@@ -213,8 +213,8 @@ Important for successful SX1262 initialization:
* Setup DIO2 to control the antenna switch
* Setup DIO3 to control the TCXO power supply
* Setup the SX1262 to use it's DCDC regulator and not the LDO
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do the
control of the antenna switch
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do
the control of the antenna switch
SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
@@ -241,11 +241,9 @@ SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
// RAK1910 GPS module
// If using the wisblock GPS module and pluged into Port A on WisBlock base
// IO1 is hooked to PPS (pin 12 on header) = gpio 17
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power (1 is on).
// Therefore must be 1 to keep peripherals powered
// Power is on the controllable 3V3_S rail
// #define PIN_GPS_RESET (34)
// #define PIN_GPS_EN PIN_3V3_EN
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power
// (1 is on). Therefore must be 1 to keep peripherals powered Power is on the controllable 3V3_S rail #define
// PIN_GPS_RESET (34) #define PIN_GPS_EN PIN_3V3_EN
#define PIN_GPS_PPS (17) // Pulse per second input from the GPS
#define GPS_RX_PIN PIN_SERIAL1_RX
+17 -18
View File
@@ -84,25 +84,24 @@ const uint32_t g_ADigitalPinMap[] = {
};
}
void initVariant()
{
pinMode(PIN_QSPI_CS, OUTPUT);
digitalWrite(PIN_QSPI_CS, HIGH);
// This setup is crucial for ensuring low power consumption and proper initialization of the hardware components.
pinMode(GPS_EN, OUTPUT);
digitalWrite(GPS_EN, LOW);
void initVariant() {
pinMode(PIN_QSPI_CS, OUTPUT);
digitalWrite(PIN_QSPI_CS, HIGH);
// This setup is crucial for ensuring low power consumption and proper initialization of the hardware components.
pinMode(GPS_EN, OUTPUT);
digitalWrite(GPS_EN, LOW);
// VBAT_ENABLE
pinMode(BAT_READ, OUTPUT);
digitalWrite(BAT_READ, LOW);
// VBAT_ENABLE
pinMode(BAT_READ, OUTPUT);
digitalWrite(BAT_READ, LOW);
pinMode(PIN_LED1, OUTPUT);
digitalWrite(PIN_LED1, LOW);
pinMode(PIN_LED2, OUTPUT);
digitalWrite(PIN_LED2, LOW);
pinMode(PIN_LED2, OUTPUT);
// digitalWrite(LED_PIN, LOW);
pinMode(PIN_LED1, OUTPUT);
digitalWrite(PIN_LED1, LOW);
pinMode(PIN_LED2, OUTPUT);
digitalWrite(PIN_LED2, LOW);
pinMode(PIN_LED2, OUTPUT);
// digitalWrite(LED_PIN, LOW);
pinMode(GPS_EN, OUTPUT);
digitalWrite(GPS_EN, HIGH);
pinMode(GPS_EN, OUTPUT);
digitalWrite(GPS_EN, HIGH);
}
+5 -4
View File
@@ -98,14 +98,15 @@ static const uint8_t SCL = PIN_WIRE_SCL;
#define SX126X_DIO3_TCXO_VOLTAGE 1.8 // TCXO supply voltage
#define SX126X_RXEN D5 // RX enable control
#define SX126X_TXEN RADIOLIB_NC
#define SX126X_DIO2_AS_RF_SWITCH // This Line is really necessary for SX1262 to work with RF switch or will loss TX power
#define SX126X_DIO2_AS_RF_SWITCH // This Line is really necessary for SX1262 to work with RF switch or will loss TX
// power
// ━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
// Power Management
// ━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
#define BAT_READ \
D19 // P0_14 = 14 Reads battery voltage from divider on signal board. (PIN_VBAT is reading voltage divider on XIAO and is
// program pin 32 / or P0.31)
#define BAT_READ \
D19 // P0_14 = 14 Reads battery voltage from divider on signal board. (PIN_VBAT is reading voltage divider on XIAO
// and is program pin 32 / or P0.31)
#define BATTERY_SENSE_RESOLUTION_BITS 12
#define ADC_MULTIPLIER 3.3
#define BATTERY_PIN PIN_VBAT // PIN_A7
@@ -79,18 +79,17 @@ const uint32_t g_ADigitalPinMap[] = {
};
}
void initVariant()
{
pinMode(PIN_QSPI_CS, OUTPUT);
digitalWrite(PIN_QSPI_CS, HIGH);
// This setup is crucial for ensuring low power consumption and proper initialization of the hardware components.
// VBAT_ENABLE
pinMode(BAT_READ, OUTPUT);
digitalWrite(BAT_READ, HIGH);
void initVariant() {
pinMode(PIN_QSPI_CS, OUTPUT);
digitalWrite(PIN_QSPI_CS, HIGH);
// This setup is crucial for ensuring low power consumption and proper initialization of the hardware components.
// VBAT_ENABLE
pinMode(BAT_READ, OUTPUT);
digitalWrite(BAT_READ, HIGH);
pinMode(PIN_LED1, OUTPUT);
digitalWrite(PIN_LED1, LOW);
pinMode(PIN_LED2, OUTPUT);
digitalWrite(PIN_LED2, LOW);
pinMode(PIN_LED2, OUTPUT);
pinMode(PIN_LED1, OUTPUT);
digitalWrite(PIN_LED1, LOW);
pinMode(PIN_LED2, OUTPUT);
digitalWrite(PIN_LED2, LOW);
pinMode(PIN_LED2, OUTPUT);
}
@@ -104,7 +104,8 @@ static const uint8_t SCL = PIN_WIRE_SCL;
#define SX126X_DIO3_TCXO_VOLTAGE 1.8 // TCXO supply voltage
#define SX126X_RXEN D5 // RX enable control
#define SX126X_TXEN RADIOLIB_NC
#define SX126X_DIO2_AS_RF_SWITCH // This Line is really necessary for SX1262 to work with RF switch or will loss TX power
#define SX126X_DIO2_AS_RF_SWITCH // This Line is really necessary for SX1262 to work with RF switch or will loss TX
// power
// ━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
// Power Management
// ━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
@@ -21,95 +21,94 @@
#include "graphics/niche/Drivers/EInk/ZJY122250_0213BAAMFGN.h"
#include "graphics/niche/Inputs/TwoButtonExtended.h"
void setupNicheGraphics()
{
using namespace NicheGraphics;
void setupNicheGraphics() {
using namespace NicheGraphics;
// SPI
// -----------------------------
// SPI
// -----------------------------
// For NRF52 platforms, SPI pins are defined in variant.h
SPI1.begin();
// For NRF52 platforms, SPI pins are defined in variant.h
SPI1.begin();
// E-Ink Driver
// -----------------------------
// E-Ink Driver
// -----------------------------
Drivers::EInk *driver = new Drivers::ZJY122250_0213BAAMFGN;
driver->begin(&SPI1, PIN_EINK_DC, PIN_EINK_CS, PIN_EINK_BUSY, PIN_EINK_RES);
Drivers::EInk *driver = new Drivers::ZJY122250_0213BAAMFGN;
driver->begin(&SPI1, PIN_EINK_DC, PIN_EINK_CS, PIN_EINK_BUSY, PIN_EINK_RES);
// InkHUD
// ----------------------------
// InkHUD
// ----------------------------
InkHUD::InkHUD *inkhud = InkHUD::InkHUD::getInstance();
InkHUD::InkHUD *inkhud = InkHUD::InkHUD::getInstance();
// Set the E-Ink driver
inkhud->setDriver(driver);
// Set the E-Ink driver
inkhud->setDriver(driver);
// Set how many FAST updates per FULL update
inkhud->setDisplayResilience(15);
// Set how many FAST updates per FULL update
inkhud->setDisplayResilience(15);
// Select fonts
InkHUD::Applet::fontLarge = FREESANS_12PT_WIN1252;
InkHUD::Applet::fontMedium = FREESANS_9PT_WIN1252;
InkHUD::Applet::fontSmall = FREESANS_6PT_WIN1252;
// Select fonts
InkHUD::Applet::fontLarge = FREESANS_12PT_WIN1252;
InkHUD::Applet::fontMedium = FREESANS_9PT_WIN1252;
InkHUD::Applet::fontSmall = FREESANS_6PT_WIN1252;
// Customize default settings
inkhud->persistence->settings.rotation = 1; // 90 degrees clockwise
// Customize default settings
inkhud->persistence->settings.rotation = 1; // 90 degrees clockwise
#if HAS_TRACKBALL
inkhud->persistence->settings.joystick.enabled = true; // Device uses a joystick
inkhud->persistence->settings.joystick.alignment = 3; // 270 degrees
inkhud->persistence->settings.optionalMenuItems.nextTile = false; // Use joystick instead
inkhud->persistence->settings.joystick.enabled = true; // Device uses a joystick
inkhud->persistence->settings.joystick.alignment = 3; // 270 degrees
inkhud->persistence->settings.optionalMenuItems.nextTile = false; // Use joystick instead
#endif
inkhud->persistence->settings.optionalFeatures.batteryIcon = true; // Device definitely has a battery
inkhud->persistence->settings.userTiles.count = 1; // One tile only by default, keep things simple for new users
inkhud->persistence->settings.userTiles.maxCount = 2; // Two applets side-by-side
inkhud->persistence->settings.optionalFeatures.batteryIcon = true; // Device definitely has a battery
inkhud->persistence->settings.userTiles.count = 1; // One tile only by default, keep things simple for new users
inkhud->persistence->settings.userTiles.maxCount = 2; // Two applets side-by-side
// Pick applets
// Note: order of applets determines priority of "auto-show" feature
inkhud->addApplet("All Messages", new InkHUD::AllMessageApplet, true, true); // Activated, autoshown
inkhud->addApplet("DMs", new InkHUD::DMApplet); // -
inkhud->addApplet("Channel 0", new InkHUD::ThreadedMessageApplet(0)); // -
inkhud->addApplet("Channel 1", new InkHUD::ThreadedMessageApplet(1)); // -
inkhud->addApplet("Positions", new InkHUD::PositionsApplet, true); // Activated
inkhud->addApplet("Recents List", new InkHUD::RecentsListApplet); // -
inkhud->addApplet("Heard", new InkHUD::HeardApplet, true, false, 0); // Activated, no autoshow, default on tile 0
// Pick applets
// Note: order of applets determines priority of "auto-show" feature
inkhud->addApplet("All Messages", new InkHUD::AllMessageApplet, true, true); // Activated, autoshown
inkhud->addApplet("DMs", new InkHUD::DMApplet); // -
inkhud->addApplet("Channel 0", new InkHUD::ThreadedMessageApplet(0)); // -
inkhud->addApplet("Channel 1", new InkHUD::ThreadedMessageApplet(1)); // -
inkhud->addApplet("Positions", new InkHUD::PositionsApplet, true); // Activated
inkhud->addApplet("Recents List", new InkHUD::RecentsListApplet); // -
inkhud->addApplet("Heard", new InkHUD::HeardApplet, true, false, 0); // Activated, no autoshow, default on tile 0
// Start running InkHUD
inkhud->begin();
// Start running InkHUD
inkhud->begin();
// Buttons
// --------------------------
// Buttons
// --------------------------
Inputs::TwoButtonExtended *buttons = Inputs::TwoButtonExtended::getInstance(); // Shared NicheGraphics component
Inputs::TwoButtonExtended *buttons = Inputs::TwoButtonExtended::getInstance(); // Shared NicheGraphics component
#if HAS_TRACKBALL
// #0: Exit Button
buttons->setWiring(0, Inputs::TwoButtonExtended::getUserButtonPin());
buttons->setTiming(0, 75, 500);
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->exitShort(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->exitLong(); });
// #0: Exit Button
buttons->setWiring(0, Inputs::TwoButtonExtended::getUserButtonPin());
buttons->setTiming(0, 75, 500);
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->exitShort(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->exitLong(); });
// #1: Joystick Center
buttons->setWiring(1, TB_PRESS);
buttons->setTiming(1, 75, 500);
buttons->setHandlerShortPress(1, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(1, [inkhud]() { inkhud->longpress(); });
// #1: Joystick Center
buttons->setWiring(1, TB_PRESS);
buttons->setTiming(1, 75, 500);
buttons->setHandlerShortPress(1, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(1, [inkhud]() { inkhud->longpress(); });
// Joystick Directions
buttons->setJoystickWiring(TB_UP, TB_DOWN, TB_LEFT, TB_RIGHT);
buttons->setJoystickDebounce(50);
buttons->setJoystickPressHandlers([inkhud]() { inkhud->navUp(); }, [inkhud]() { inkhud->navDown(); },
[inkhud]() { inkhud->navLeft(); }, [inkhud]() { inkhud->navRight(); });
// Joystick Directions
buttons->setJoystickWiring(TB_UP, TB_DOWN, TB_LEFT, TB_RIGHT);
buttons->setJoystickDebounce(50);
buttons->setJoystickPressHandlers([inkhud]() { inkhud->navUp(); }, [inkhud]() { inkhud->navDown(); }, [inkhud]() { inkhud->navLeft(); },
[inkhud]() { inkhud->navRight(); });
#else
// #0: User Button
buttons->setWiring(0, Inputs::TwoButtonExtended::getUserButtonPin());
buttons->setTiming(0, 75, 500);
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->longpress(); });
// #0: User Button
buttons->setWiring(0, Inputs::TwoButtonExtended::getUserButtonPin());
buttons->setTiming(0, 75, 500);
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->longpress(); });
#endif
// Begin handling button events
buttons->start();
// Begin handling button events
buttons->start();
}
#endif
@@ -87,17 +87,16 @@ const uint32_t g_ADigitalPinMap[] = {
};
}
void initVariant()
{
pinMode(PIN_QSPI_CS, OUTPUT);
digitalWrite(PIN_QSPI_CS, HIGH);
// This setup is crucial for ensuring low power consumption and proper initialization of the hardware components.
// VBAT_ENABLE
pinMode(BAT_READ, OUTPUT);
digitalWrite(BAT_READ, HIGH);
void initVariant() {
pinMode(PIN_QSPI_CS, OUTPUT);
digitalWrite(PIN_QSPI_CS, HIGH);
// This setup is crucial for ensuring low power consumption and proper initialization of the hardware components.
// VBAT_ENABLE
pinMode(BAT_READ, OUTPUT);
digitalWrite(BAT_READ, HIGH);
pinMode(PIN_LED1, OUTPUT);
digitalWrite(PIN_LED1, LOW);
pinMode(PIN_LED2, OUTPUT);
digitalWrite(PIN_LED2, LOW);
pinMode(PIN_LED1, OUTPUT);
digitalWrite(PIN_LED1, LOW);
pinMode(PIN_LED2, OUTPUT);
digitalWrite(PIN_LED2, LOW);
}
@@ -96,7 +96,8 @@ static const uint8_t SCL = PIN_WIRE_SCL;
#define SX126X_DIO3_TCXO_VOLTAGE 1.8 // TCXO supply voltage
#define SX126X_RXEN D5 // RX enable control
#define SX126X_TXEN RADIOLIB_NC
#define SX126X_DIO2_AS_RF_SWITCH // This Line is really necessary for SX1262 to work with RF switch or will loss TX power
#define SX126X_DIO2_AS_RF_SWITCH // This Line is really necessary for SX1262 to work with RF switch or will loss TX
// power
// ━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
// EINK
@@ -78,19 +78,18 @@ const uint32_t g_ADigitalPinMap[] = {
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
void initVariant()
{
// Set BQ25101 ISET to 100mA instead of 50mA
pinMode(HICHG, OUTPUT);
digitalWrite(HICHG, LOW);
void initVariant() {
// Set BQ25101 ISET to 100mA instead of 50mA
pinMode(HICHG, OUTPUT);
digitalWrite(HICHG, LOW);
// LEDs
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
// LEDs
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED3, OUTPUT);
ledOff(PIN_LED3);
pinMode(PIN_LED3, OUTPUT);
ledOff(PIN_LED3);
}
+8 -9
View File
@@ -30,15 +30,14 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED3, OUTPUT);
ledOff(PIN_LED3);
pinMode(PIN_LED3, OUTPUT);
ledOff(PIN_LED3);
}
+70 -71
View File
@@ -28,99 +28,98 @@
// To avoid this, we lockout the button during TX
#include "mesh/RadioLibInterface.h"
void setupNicheGraphics()
{
using namespace NicheGraphics;
void setupNicheGraphics() {
using namespace NicheGraphics;
// SPI
// -----------------------------
// SPI
// -----------------------------
// For NRF52 platforms, SPI pins are defined in variant.h
SPI1.begin();
// For NRF52 platforms, SPI pins are defined in variant.h
SPI1.begin();
// E-Ink Driver
// -----------------------------
// E-Ink Driver
// -----------------------------
Drivers::EInk *driver = new Drivers::GDEY0154D67;
driver->begin(&SPI1, PIN_EINK_DC, PIN_EINK_CS, PIN_EINK_BUSY, PIN_EINK_RES);
Drivers::EInk *driver = new Drivers::GDEY0154D67;
driver->begin(&SPI1, PIN_EINK_DC, PIN_EINK_CS, PIN_EINK_BUSY, PIN_EINK_RES);
// InkHUD
// ----------------------------
// InkHUD
// ----------------------------
InkHUD::InkHUD *inkhud = InkHUD::InkHUD::getInstance();
InkHUD::InkHUD *inkhud = InkHUD::InkHUD::getInstance();
// Set the E-Ink driver
inkhud->setDriver(driver);
// Set the E-Ink driver
inkhud->setDriver(driver);
// Set how many FAST updates per FULL update
// Set how unhealthy additional FAST updates beyond this number are
inkhud->setDisplayResilience(20, 1.5);
// Set how many FAST updates per FULL update
// Set how unhealthy additional FAST updates beyond this number are
inkhud->setDisplayResilience(20, 1.5);
// Select fonts
InkHUD::Applet::fontLarge = FREESANS_12PT_WIN1252;
InkHUD::Applet::fontMedium = FREESANS_9PT_WIN1252;
InkHUD::Applet::fontSmall = FREESANS_6PT_WIN1252;
// Select fonts
InkHUD::Applet::fontLarge = FREESANS_12PT_WIN1252;
InkHUD::Applet::fontMedium = FREESANS_9PT_WIN1252;
InkHUD::Applet::fontSmall = FREESANS_6PT_WIN1252;
// Customize default settings
inkhud->persistence->settings.userTiles.maxCount = 2; // Two applets side-by-side
inkhud->persistence->settings.rotation = 3; // 270 degrees clockwise
inkhud->persistence->settings.optionalFeatures.batteryIcon = true; // Device definitely has a battery
inkhud->persistence->settings.optionalMenuItems.backlight = true; // Until proves capacitive button works by touching it
// Customize default settings
inkhud->persistence->settings.userTiles.maxCount = 2; // Two applets side-by-side
inkhud->persistence->settings.rotation = 3; // 270 degrees clockwise
inkhud->persistence->settings.optionalFeatures.batteryIcon = true; // Device definitely has a battery
inkhud->persistence->settings.optionalMenuItems.backlight = true; // Until proves capacitive button works by touching it
// Setup backlight controller
// Note: AUX button attached further down
Drivers::LatchingBacklight *backlight = Drivers::LatchingBacklight::getInstance();
backlight->setPin(PIN_EINK_EN);
// Setup backlight controller
// Note: AUX button attached further down
Drivers::LatchingBacklight *backlight = Drivers::LatchingBacklight::getInstance();
backlight->setPin(PIN_EINK_EN);
// Pick applets
// Note: order of applets determines priority of "auto-show" feature
inkhud->addApplet("All Messages", new InkHUD::AllMessageApplet, true, true); // Activated, autoshown
inkhud->addApplet("DMs", new InkHUD::DMApplet); // -
inkhud->addApplet("Channel 0", new InkHUD::ThreadedMessageApplet(0)); // -
inkhud->addApplet("Channel 1", new InkHUD::ThreadedMessageApplet(1)); // -
inkhud->addApplet("Positions", new InkHUD::PositionsApplet, true); // Activated
inkhud->addApplet("Recents List", new InkHUD::RecentsListApplet); // -
inkhud->addApplet("Heard", new InkHUD::HeardApplet, true, false, 0); // Activated, no autoshow, default on tile 0
// Pick applets
// Note: order of applets determines priority of "auto-show" feature
inkhud->addApplet("All Messages", new InkHUD::AllMessageApplet, true, true); // Activated, autoshown
inkhud->addApplet("DMs", new InkHUD::DMApplet); // -
inkhud->addApplet("Channel 0", new InkHUD::ThreadedMessageApplet(0)); // -
inkhud->addApplet("Channel 1", new InkHUD::ThreadedMessageApplet(1)); // -
inkhud->addApplet("Positions", new InkHUD::PositionsApplet, true); // Activated
inkhud->addApplet("Recents List", new InkHUD::RecentsListApplet); // -
inkhud->addApplet("Heard", new InkHUD::HeardApplet, true, false, 0); // Activated, no autoshow, default on tile 0
// Start running InkHUD
inkhud->begin();
// Start running InkHUD
inkhud->begin();
// Buttons
// --------------------------
// Buttons
// --------------------------
Inputs::TwoButton *buttons = Inputs::TwoButton::getInstance(); // Shared NicheGraphics component
Inputs::TwoButton *buttons = Inputs::TwoButton::getInstance(); // Shared NicheGraphics component
// #0: Main User Button
buttons->setWiring(0, Inputs::TwoButton::getUserButtonPin());
buttons->setTiming(0, 75, 500);
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->longpress(); });
// #0: Main User Button
buttons->setWiring(0, Inputs::TwoButton::getUserButtonPin());
buttons->setTiming(0, 75, 500);
buttons->setHandlerShortPress(0, [inkhud]() { inkhud->shortpress(); });
buttons->setHandlerLongPress(0, [inkhud]() { inkhud->longpress(); });
// #1: Aux Button (Capacitive Touch Button)
// - short: momentary backlight
// - long: latch backlight on
buttons->setWiring(1, PIN_BUTTON_TOUCH);
buttons->setTiming(1, 50, 5000); // 5 seconds before latch - limited by T-Echo's capacitive touch IC
// #1: Aux Button (Capacitive Touch Button)
// - short: momentary backlight
// - long: latch backlight on
buttons->setWiring(1, PIN_BUTTON_TOUCH);
buttons->setTiming(1, 50, 5000); // 5 seconds before latch - limited by T-Echo's capacitive touch IC
buttons->setHandlerDown(1, [inkhud, backlight]() {
// Discard the button press if radio is active
// Rare hardware fault: LoRa activity triggers touch button
if (!RadioLibInterface::instance || RadioLibInterface::instance->isSending())
return;
buttons->setHandlerDown(1, [inkhud, backlight]() {
// Discard the button press if radio is active
// Rare hardware fault: LoRa activity triggers touch button
if (!RadioLibInterface::instance || RadioLibInterface::instance->isSending())
return;
// Backlight on (while held)
backlight->peek();
// Backlight on (while held)
backlight->peek();
// Handler has run, which confirms touch button wasn't removed as part of DIY build.
// No longer need the fallback backlight toggle in menu.
inkhud->persistence->settings.optionalMenuItems.backlight = false;
});
// Handler has run, which confirms touch button wasn't removed as part of DIY build.
// No longer need the fallback backlight toggle in menu.
inkhud->persistence->settings.optionalMenuItems.backlight = false;
});
buttons->setHandlerLongPress(1, [backlight]() { backlight->latch(); });
buttons->setHandlerShortPress(1, [backlight]() { backlight->off(); });
buttons->setHandlerLongPress(1, [backlight]() { backlight->latch(); });
buttons->setHandlerShortPress(1, [backlight]() { backlight->off(); });
// Begin handling button events
buttons->start();
// Begin handling button events
buttons->start();
}
#endif
+8 -9
View File
@@ -30,15 +30,14 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED3, OUTPUT);
ledOff(PIN_LED3);
pinMode(PIN_LED3, OUTPUT);
ledOff(PIN_LED3);
}
+6 -6
View File
@@ -133,8 +133,9 @@ External serial flash WP25R1635FZUIL0
#define SX126X_CS (0 + 24) // FIXME - we really should define LORA_CS instead
#define SX126X_DIO1 (0 + 20)
// Note DIO2 is attached internally to the module to an analog switch for TX/RX switching
#define SX1262_DIO3 \
(0 + 21) // This is used as an *output* from the sx1262 and connected internally to power the tcxo, do not drive from the main
#define SX1262_DIO3 \
(0 + 21) // This is used as an *output* from the sx1262 and connected internally to power the tcxo, do not drive from
// the main
// CPU?
#define SX126X_BUSY (0 + 17)
#define SX126X_RESET (0 + 25)
@@ -142,8 +143,8 @@ External serial flash WP25R1635FZUIL0
#define SX126X_DIO2_AS_RF_SWITCH
#define SX126X_DIO3_TCXO_VOLTAGE 1.8
#define TCXO_OPTIONAL
// Internally the TTGO module hooks the SX1262-DIO2 in to control the TX/RX switch (which is the default for the sx1262interface
// code)
// Internally the TTGO module hooks the SX1262-DIO2 in to control the TX/RX switch (which is the default for the
// sx1262interface code)
// #define LORA_DISABLE_SENDING // Define this to disable transmission for testing (power testing etc...)
@@ -165,8 +166,7 @@ External serial flash WP25R1635FZUIL0
#define PIN_POWER_EN (0 + 12)
// #define PIN_POWER_EN1 (0 + 13)
#define PIN_SPI1_MISO \
(32 + 7) // FIXME not really needed, but for now the SPI code requires something to be defined, pick an used GPIO
#define PIN_SPI1_MISO (32 + 7) // FIXME not really needed, but for now the SPI code requires something to be defined, pick an used GPIO
#define PIN_SPI1_MOSI PIN_EINK_MOSI
#define PIN_SPI1_SCK PIN_EINK_SCLK
+2 -2
View File
@@ -1,8 +1,8 @@
#include "RadioLib.h"
#include "nrf.h"
static const uint32_t rfswitch_dio_pins[Module::RFSWITCH_MAX_PINS] = {RADIOLIB_LR11X0_DIO5, RADIOLIB_LR11X0_DIO6,
RADIOLIB_LR11X0_DIO7, RADIOLIB_LR11X0_DIO8, RADIOLIB_NC};
static const uint32_t rfswitch_dio_pins[Module::RFSWITCH_MAX_PINS] = {RADIOLIB_LR11X0_DIO5, RADIOLIB_LR11X0_DIO6, RADIOLIB_LR11X0_DIO7,
RADIOLIB_LR11X0_DIO8, RADIOLIB_NC};
static const Module::RfSwitchMode_t rfswitch_table[] = {
// mode DIO5 DIO6 DIO7 DIO8
+21 -22
View File
@@ -30,35 +30,34 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(LED_PIN, OUTPUT);
digitalWrite(LED_PIN, LOW);
void initVariant() {
// LED1 & LED2
pinMode(LED_PIN, OUTPUT);
digitalWrite(LED_PIN, LOW);
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
pinMode(PIN_3V3_ACC_EN, OUTPUT);
digitalWrite(PIN_3V3_ACC_EN, HIGH);
pinMode(PIN_3V3_ACC_EN, OUTPUT);
digitalWrite(PIN_3V3_ACC_EN, HIGH);
pinMode(BUZZER_EN_PIN, OUTPUT);
digitalWrite(BUZZER_EN_PIN, HIGH);
pinMode(BUZZER_EN_PIN, OUTPUT);
digitalWrite(BUZZER_EN_PIN, HIGH);
pinMode(PIN_GPS_EN, OUTPUT);
digitalWrite(PIN_GPS_EN, LOW);
pinMode(PIN_GPS_EN, OUTPUT);
digitalWrite(PIN_GPS_EN, LOW);
pinMode(GPS_VRTC_EN, OUTPUT);
digitalWrite(GPS_VRTC_EN, HIGH);
pinMode(GPS_VRTC_EN, OUTPUT);
digitalWrite(GPS_VRTC_EN, HIGH);
pinMode(PIN_GPS_RESET, OUTPUT);
digitalWrite(PIN_GPS_RESET, LOW);
pinMode(PIN_GPS_RESET, OUTPUT);
digitalWrite(PIN_GPS_RESET, LOW);
pinMode(GPS_SLEEP_INT, OUTPUT);
digitalWrite(GPS_SLEEP_INT, HIGH);
pinMode(GPS_SLEEP_INT, OUTPUT);
digitalWrite(GPS_SLEEP_INT, HIGH);
pinMode(GPS_RTC_INT, OUTPUT);
digitalWrite(GPS_RTC_INT, LOW);
pinMode(GPS_RTC_INT, OUTPUT);
digitalWrite(GPS_RTC_INT, LOW);
pinMode(GPS_RESETB_OUT, INPUT);
pinMode(GPS_RESETB_OUT, INPUT);
}
+2 -4
View File
@@ -8,8 +8,6 @@ static const uint32_t rfswitch_dio_pins[] = {RADIOLIB_LR11X0_DIO5, RADIOLIB_LR11
static const Module::RfSwitchMode_t rfswitch_table[] = {
// mode DIO5 DIO6
{LR11x0::MODE_STBY, {LOW, LOW}}, {LR11x0::MODE_RX, {HIGH, LOW}},
{LR11x0::MODE_TX, {HIGH, HIGH}}, {LR11x0::MODE_TX_HP, {LOW, HIGH}},
{LR11x0::MODE_TX_HF, {LOW, LOW}}, {LR11x0::MODE_GNSS, {LOW, LOW}},
{LR11x0::MODE_WIFI, {LOW, LOW}}, END_OF_MODE_TABLE,
{LR11x0::MODE_STBY, {LOW, LOW}}, {LR11x0::MODE_RX, {HIGH, LOW}}, {LR11x0::MODE_TX, {HIGH, HIGH}}, {LR11x0::MODE_TX_HP, {LOW, HIGH}},
{LR11x0::MODE_TX_HF, {LOW, LOW}}, {LR11x0::MODE_GNSS, {LOW, LOW}}, {LR11x0::MODE_WIFI, {LOW, LOW}}, END_OF_MODE_TABLE,
};
+9 -10
View File
@@ -30,16 +30,15 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}
+2 -2
View File
@@ -1,8 +1,8 @@
#include "RadioLib.h"
#include "nrf.h"
static const uint32_t rfswitch_dio_pins[Module::RFSWITCH_MAX_PINS] = {RADIOLIB_LR11X0_DIO5, RADIOLIB_LR11X0_DIO6,
RADIOLIB_LR11X0_DIO7, RADIOLIB_LR11X0_DIO8, RADIOLIB_NC};
static const uint32_t rfswitch_dio_pins[Module::RFSWITCH_MAX_PINS] = {RADIOLIB_LR11X0_DIO5, RADIOLIB_LR11X0_DIO6, RADIOLIB_LR11X0_DIO7,
RADIOLIB_LR11X0_DIO8, RADIOLIB_NC};
static const Module::RfSwitchMode_t rfswitch_table[] = {
// mode DIO5 DIO6 DIO7 DIO8
+21 -22
View File
@@ -30,35 +30,34 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(LED_PIN, OUTPUT);
digitalWrite(LED_PIN, LOW);
void initVariant() {
// LED1 & LED2
pinMode(LED_PIN, OUTPUT);
digitalWrite(LED_PIN, LOW);
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
pinMode(PIN_3V3_ACC_EN, OUTPUT);
digitalWrite(PIN_3V3_ACC_EN, LOW);
pinMode(PIN_3V3_ACC_EN, OUTPUT);
digitalWrite(PIN_3V3_ACC_EN, LOW);
pinMode(BUZZER_EN_PIN, OUTPUT);
digitalWrite(BUZZER_EN_PIN, HIGH);
pinMode(BUZZER_EN_PIN, OUTPUT);
digitalWrite(BUZZER_EN_PIN, HIGH);
pinMode(PIN_GPS_EN, OUTPUT);
digitalWrite(PIN_GPS_EN, LOW);
pinMode(PIN_GPS_EN, OUTPUT);
digitalWrite(PIN_GPS_EN, LOW);
pinMode(GPS_VRTC_EN, OUTPUT);
digitalWrite(GPS_VRTC_EN, HIGH);
pinMode(GPS_VRTC_EN, OUTPUT);
digitalWrite(GPS_VRTC_EN, HIGH);
pinMode(PIN_GPS_RESET, OUTPUT);
digitalWrite(PIN_GPS_RESET, LOW);
pinMode(PIN_GPS_RESET, OUTPUT);
digitalWrite(PIN_GPS_RESET, LOW);
pinMode(GPS_SLEEP_INT, OUTPUT);
digitalWrite(GPS_SLEEP_INT, HIGH);
pinMode(GPS_SLEEP_INT, OUTPUT);
digitalWrite(GPS_SLEEP_INT, HIGH);
pinMode(GPS_RTC_INT, OUTPUT);
digitalWrite(GPS_RTC_INT, LOW);
pinMode(GPS_RTC_INT, OUTPUT);
digitalWrite(GPS_RTC_INT, LOW);
pinMode(GPS_RESETB_OUT, INPUT);
pinMode(GPS_RESETB_OUT, INPUT);
}
@@ -8,8 +8,6 @@ static const uint32_t rfswitch_dio_pins[] = {RADIOLIB_LR11X0_DIO5, RADIOLIB_LR11
static const Module::RfSwitchMode_t rfswitch_table[] = {
// mode DIO5 DIO6
{LR11x0::MODE_STBY, {LOW, LOW}}, {LR11x0::MODE_RX, {HIGH, LOW}},
{LR11x0::MODE_TX, {HIGH, HIGH}}, {LR11x0::MODE_TX_HP, {LOW, HIGH}},
{LR11x0::MODE_TX_HF, {LOW, LOW}}, {LR11x0::MODE_GNSS, {LOW, LOW}},
{LR11x0::MODE_WIFI, {LOW, LOW}}, END_OF_MODE_TABLE,
{LR11x0::MODE_STBY, {LOW, LOW}}, {LR11x0::MODE_RX, {HIGH, LOW}}, {LR11x0::MODE_TX, {HIGH, HIGH}}, {LR11x0::MODE_TX_HP, {LOW, HIGH}},
{LR11x0::MODE_TX_HF, {LOW, LOW}}, {LR11x0::MODE_GNSS, {LOW, LOW}}, {LR11x0::MODE_WIFI, {LOW, LOW}}, END_OF_MODE_TABLE,
};
@@ -30,16 +30,15 @@ const uint32_t g_ADigitalPinMap[] = {
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
void initVariant() {
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
}