Refactored UART frontent retrieval system

This commit is contained in:
Ea-r-th
2025-09-10 01:43:11 -07:00
parent 2f8ba8d9ee
commit 8f3bd7ebd8
7 changed files with 70 additions and 74 deletions

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@@ -369,16 +369,16 @@ typedef struct
typedef struct typedef struct
{ {
__IO uint32_t MODER; /*!< GPIO port mode register, Address offset: 0x00 */ __IO uint32_t MODER; /*!< SHAL_GPIO port mode register, Address offset: 0x00 */
__IO uint32_t OTYPER; /*!< GPIO port output type register, Address offset: 0x04 */ __IO uint32_t OTYPER; /*!< SHAL_GPIO port output type register, Address offset: 0x04 */
__IO uint32_t OSPEEDR; /*!< GPIO port output speed register, Address offset: 0x08 */ __IO uint32_t OSPEEDR; /*!< SHAL_GPIO port output speed register, Address offset: 0x08 */
__IO uint32_t PUPDR; /*!< GPIO port pull-up/pull-down register, Address offset: 0x0C */ __IO uint32_t PUPDR; /*!< SHAL_GPIO port pull-up/pull-down register, Address offset: 0x0C */
__IO uint32_t IDR; /*!< GPIO port input data register, Address offset: 0x10 */ __IO uint32_t IDR; /*!< SHAL_GPIO port input data register, Address offset: 0x10 */
__IO uint32_t ODR; /*!< GPIO port output data register, Address offset: 0x14 */ __IO uint32_t ODR; /*!< SHAL_GPIO port output data register, Address offset: 0x14 */
__IO uint32_t BSRR; /*!< GPIO port bit set/reset register, Address offset: 0x1A */ __IO uint32_t BSRR; /*!< SHAL_GPIO port bit set/reset register, Address offset: 0x1A */
__IO uint32_t LCKR; /*!< GPIO port configuration lock register, Address offset: 0x1C */ __IO uint32_t LCKR; /*!< SHAL_GPIO port configuration lock register, Address offset: 0x1C */
__IO uint32_t AFR[2]; /*!< GPIO alternate function low register, Address offset: 0x20-0x24 */ __IO uint32_t AFR[2]; /*!< SHAL_GPIO alternate function low register, Address offset: 0x20-0x24 */
__IO uint32_t BRR; /*!< GPIO bit reset register, Address offset: 0x28 */ __IO uint32_t BRR; /*!< SHAL_GPIO bit reset register, Address offset: 0x28 */
} GPIO_TypeDef; } GPIO_TypeDef;
/** /**
@@ -6490,7 +6490,7 @@ typedef struct
/******************************************************************************/ /******************************************************************************/
/* */ /* */
/* General Purpose IOs (GPIO) */ /* General Purpose IOs (SHAL_GPIO) */
/* */ /* */
/******************************************************************************/ /******************************************************************************/
/******************* Bit definition for GPIO_MODER register *****************/ /******************* Bit definition for GPIO_MODER register *****************/
@@ -10933,7 +10933,7 @@ typedef struct
((INSTANCE) == DMA1_Channel6) || \ ((INSTANCE) == DMA1_Channel6) || \
((INSTANCE) == DMA1_Channel7)) ((INSTANCE) == DMA1_Channel7))
/****************************** GPIO Instances ********************************/ /****************************** SHAL_GPIO Instances ********************************/
#define IS_GPIO_ALL_INSTANCE(INSTANCE) (((INSTANCE) == GPIOA) || \ #define IS_GPIO_ALL_INSTANCE(INSTANCE) (((INSTANCE) == GPIOA) || \
((INSTANCE) == GPIOB) || \ ((INSTANCE) == GPIOB) || \
((INSTANCE) == GPIOC) || \ ((INSTANCE) == GPIOC) || \
@@ -10941,14 +10941,14 @@ typedef struct
((INSTANCE) == GPIOE) || \ ((INSTANCE) == GPIOE) || \
((INSTANCE) == GPIOF)) ((INSTANCE) == GPIOF))
/**************************** GPIO Alternate Function Instances ***************/ /**************************** SHAL_GPIO Alternate Function Instances ***************/
#define IS_GPIO_AF_INSTANCE(INSTANCE) (((INSTANCE) == GPIOA) || \ #define IS_GPIO_AF_INSTANCE(INSTANCE) (((INSTANCE) == GPIOA) || \
((INSTANCE) == GPIOB) || \ ((INSTANCE) == GPIOB) || \
((INSTANCE) == GPIOC) || \ ((INSTANCE) == GPIOC) || \
((INSTANCE) == GPIOD) || \ ((INSTANCE) == GPIOD) || \
((INSTANCE) == GPIOE)) ((INSTANCE) == GPIOE))
/****************************** GPIO Lock Instances ***************************/ /****************************** SHAL_GPIO Lock Instances ***************************/
#define IS_GPIO_LOCK_INSTANCE(INSTANCE) (((INSTANCE) == GPIOA) || \ #define IS_GPIO_LOCK_INSTANCE(INSTANCE) (((INSTANCE) == GPIOA) || \
((INSTANCE) == GPIOB)) ((INSTANCE) == GPIOB))
@@ -11192,11 +11192,11 @@ typedef struct
/****************************** TSC Instances *********************************/ /****************************** TSC Instances *********************************/
#define IS_TSC_ALL_INSTANCE(INSTANCE) ((INSTANCE) == TSC) #define IS_TSC_ALL_INSTANCE(INSTANCE) ((INSTANCE) == TSC)
/*********************** UART Instances : IRDA mode ***************************/ /*********************** SHAL_UART Instances : IRDA mode ***************************/
#define IS_IRDA_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \ #define IS_IRDA_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \
((INSTANCE) == USART2)) ((INSTANCE) == USART2))
/********************* UART Instances : Smard card mode ***********************/ /********************* SHAL_UART Instances : Smard card mode ***********************/
#define IS_SMARTCARD_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \ #define IS_SMARTCARD_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \
((INSTANCE) == USART2)) ((INSTANCE) == USART2))
@@ -11210,35 +11210,35 @@ typedef struct
#define IS_USART_AUTOBAUDRATE_DETECTION_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \ #define IS_USART_AUTOBAUDRATE_DETECTION_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \
((INSTANCE) == USART2)) ((INSTANCE) == USART2))
/******************** UART Instances : Asynchronous mode **********************/ /******************** SHAL_UART Instances : Asynchronous mode **********************/
#define IS_UART_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \ #define IS_UART_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \
((INSTANCE) == USART2) || \ ((INSTANCE) == USART2) || \
((INSTANCE) == USART3) || \ ((INSTANCE) == USART3) || \
((INSTANCE) == USART4)) ((INSTANCE) == USART4))
/******************** UART Instances : Half-Duplex mode **********************/ /******************** SHAL_UART Instances : Half-Duplex mode **********************/
#define IS_UART_HALFDUPLEX_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \ #define IS_UART_HALFDUPLEX_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \
((INSTANCE) == USART2) || \ ((INSTANCE) == USART2) || \
((INSTANCE) == USART3) || \ ((INSTANCE) == USART3) || \
((INSTANCE) == USART4)) ((INSTANCE) == USART4))
/****************** UART Instances : Hardware Flow control ********************/ /****************** SHAL_UART Instances : Hardware Flow control ********************/
#define IS_UART_HWFLOW_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \ #define IS_UART_HWFLOW_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \
((INSTANCE) == USART2) || \ ((INSTANCE) == USART2) || \
((INSTANCE) == USART3) || \ ((INSTANCE) == USART3) || \
((INSTANCE) == USART4)) ((INSTANCE) == USART4))
/****************** UART Instances : LIN mode ********************/ /****************** SHAL_UART Instances : LIN mode ********************/
#define IS_UART_LIN_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \ #define IS_UART_LIN_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \
((INSTANCE) == USART2)) ((INSTANCE) == USART2))
/****************** UART Instances : wakeup from stop mode ********************/ /****************** SHAL_UART Instances : wakeup from stop mode ********************/
#define IS_UART_WAKEUP_FROMSTOP_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \ #define IS_UART_WAKEUP_FROMSTOP_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \
((INSTANCE) == USART2)) ((INSTANCE) == USART2))
/* Old macro definition maintained for legacy purpose */ /* Old macro definition maintained for legacy purpose */
#define IS_UART_WAKEUP_INSTANCE IS_UART_WAKEUP_FROMSTOP_INSTANCE #define IS_UART_WAKEUP_INSTANCE IS_UART_WAKEUP_FROMSTOP_INSTANCE
/****************** UART Instances : Driver enable detection ********************/ /****************** SHAL_UART Instances : Driver enable detection ********************/
#define IS_UART_DRIVER_ENABLE_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \ #define IS_UART_DRIVER_ENABLE_INSTANCE(INSTANCE) (((INSTANCE) == USART1) || \
((INSTANCE) == USART2) || \ ((INSTANCE) == USART2) || \
((INSTANCE) == USART3) || \ ((INSTANCE) == USART3) || \

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@@ -20,7 +20,7 @@
X(C0) X(C1) X(C2) X(C3) X(C4) X(C5) X(C6) X(C7) X(C8) X(C9) X(C10) X(C11) X(C12) X(C13) X(C14) X(C15) X(C0) X(C1) X(C2) X(C3) X(C4) X(C5) X(C6) X(C7) X(C8) X(C9) X(C10) X(C11) X(C12) X(C13) X(C14) X(C15)
//Build enum map of available GPIO pins //Build enum map of available SHAL_GPIO pins
enum class GPIO_Key : uint8_t { enum class GPIO_Key : uint8_t {
#define X(key) key, #define X(key) key,
AVAILABLE_GPIO AVAILABLE_GPIO

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@@ -15,8 +15,8 @@
//Abstraction of GPIO registers //Abstraction of SHAL_GPIO registers
class GPIO{ class SHAL_GPIO{
public: public:
@@ -43,8 +43,8 @@ private:
friend class GPIOManager; friend class GPIOManager;
explicit GPIO(GPIO_Key key); explicit SHAL_GPIO(GPIO_Key key);
GPIO(); SHAL_GPIO();
GPIO_Key m_GPIO_KEY = GPIO_Key::INVALID; GPIO_Key m_GPIO_KEY = GPIO_Key::INVALID;
@@ -54,7 +54,7 @@ private:
//Init GPIO for normal use //Init SHAL_GPIO for normal use
#define PIN_TO_KEY(name) GPIO_Key::name #define PIN_TO_KEY(name) GPIO_Key::name
#define PIN(name) GPIOManager::get(PIN_TO_KEY(name)) #define PIN(name) GPIOManager::get(PIN_TO_KEY(name))
@@ -62,19 +62,19 @@ private:
#define GPIO_A #define GPIO_A
//Manages instances of GPIO objects //Manages instances of SHAL_GPIO objects
class GPIOManager{ class GPIOManager{
public: public:
static GPIO& get(GPIO_Key); static SHAL_GPIO& get(GPIO_Key);
GPIOManager() = delete; GPIOManager() = delete;
private: private:
inline static GPIO m_gpios[AVAILABLE_PORTS][PINS_PER_PORT] = {{}}; inline static SHAL_GPIO m_gpios[AVAILABLE_PORTS][PINS_PER_PORT] = {{}};
}; };

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@@ -2,7 +2,7 @@
****************************************************************************** ******************************************************************************
* @file SHAL_TIM.h * @file SHAL_TIM.h
* @author Luca Lizaranzu * @author Luca Lizaranzu
* @brief Relating to UART and USART object abstractions * @brief Relating to SHAL_UART and USART object abstractions
****************************************************************************** ******************************************************************************
*/ */
@@ -11,11 +11,13 @@
#include "SHAL_UART_REG.h" #include "SHAL_UART_REG.h"
class UART{ class SHAL_UART{
friend class UARTManager; friend class UARTManager;
public: public:
void init(UART_Pair pair);
//begins Tx and Usart TODO either modify this function or add a new one that supports Rx //begins Tx and Usart TODO either modify this function or add a new one that supports Rx
void begin(uint32_t baudRate) volatile; void begin(uint32_t baudRate) volatile;
@@ -27,30 +29,29 @@ public:
private: private:
UART() = default; //Initializer for array SHAL_UART() = default; //Initializer for array
//Creates a UART based on a pair of two valid U(S)ART pins //Creates a SHAL_UART based on a pair of two valid U(S)ART pins
explicit UART(UART_Pair pair);
UART_Pair m_UARTPair = UART_Pair::INVALID; UART_Pair m_UARTPair = UART_Pair::INVALID;
}; };
#define getUART(uart_pair) UARTManager::get(uart_pair) #define UART(num) UARTManager::get(num)
class UARTManager{ class UARTManager{
public: public:
static UART& get(UART_Pair pair); static SHAL_UART& get(uint8_t uart);
UARTManager() = delete; UARTManager() = delete;
private: private:
inline static UART m_UARTs[NUM_USART_LINES] = {}; inline static SHAL_UART m_UARTs[NUM_USART_LINES] = {};
}; };

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@@ -7,11 +7,11 @@
GPIO::GPIO() : m_GPIO_KEY(GPIO_Key::INVALID){ SHAL_GPIO::SHAL_GPIO() : m_GPIO_KEY(GPIO_Key::INVALID){
//Do not initialize anything //Do not initialize anything
} }
GPIO::GPIO(GPIO_Key key) : m_GPIO_KEY(key) { SHAL_GPIO::SHAL_GPIO(GPIO_Key key) : m_GPIO_KEY(key) {
volatile unsigned long* gpioEnable = getGPIORCCEnable(key).reg; volatile unsigned long* gpioEnable = getGPIORCCEnable(key).reg;
unsigned long gpioOffset = getGPIORCCEnable(key).offset; unsigned long gpioOffset = getGPIORCCEnable(key).offset;
@@ -19,41 +19,41 @@ GPIO::GPIO(GPIO_Key key) : m_GPIO_KEY(key) {
*gpioEnable |= (1 << gpioOffset); //Set enable flag *gpioEnable |= (1 << gpioOffset); //Set enable flag
} }
void GPIO::setLow() { void SHAL_GPIO::setLow() {
auto gpioPeripheral = getGPIORegister(m_GPIO_KEY); auto gpioPeripheral = getGPIORegister(m_GPIO_KEY);
gpioPeripheral.reg->ODR &= ~(1 << gpioPeripheral.global_offset); gpioPeripheral.reg->ODR &= ~(1 << gpioPeripheral.global_offset);
} }
void GPIO::setHigh() { void SHAL_GPIO::setHigh() {
auto gpioPeripheral = getGPIORegister(m_GPIO_KEY); auto gpioPeripheral = getGPIORegister(m_GPIO_KEY);
gpioPeripheral.reg->ODR |= (1 << gpioPeripheral.global_offset); gpioPeripheral.reg->ODR |= (1 << gpioPeripheral.global_offset);
} }
void GPIO::toggle() volatile { void SHAL_GPIO::toggle() volatile {
SHAL_GPIO_Peripheral gpioPeripheral = getGPIORegister(m_GPIO_KEY); SHAL_GPIO_Peripheral gpioPeripheral = getGPIORegister(m_GPIO_KEY);
gpioPeripheral.reg->ODR ^= (1 << gpioPeripheral.global_offset); gpioPeripheral.reg->ODR ^= (1 << gpioPeripheral.global_offset);
} }
void GPIO::setPinType(PinType type) volatile { void SHAL_GPIO::setPinType(PinType type) volatile {
SHAL_GPIO_Peripheral gpioPeripheral = getGPIORegister(m_GPIO_KEY); SHAL_GPIO_Peripheral gpioPeripheral = getGPIORegister(m_GPIO_KEY);
gpioPeripheral.reg->OTYPER &= ~(1 << gpioPeripheral.global_offset); gpioPeripheral.reg->OTYPER &= ~(1 << gpioPeripheral.global_offset);
gpioPeripheral.reg->OTYPER |= (static_cast<uint8_t>(type) << gpioPeripheral.global_offset); gpioPeripheral.reg->OTYPER |= (static_cast<uint8_t>(type) << gpioPeripheral.global_offset);
} }
void GPIO::setOutputSpeed(OutputSpeed speed) volatile { void SHAL_GPIO::setOutputSpeed(OutputSpeed speed) volatile {
SHAL_GPIO_Peripheral gpioPeripheral = getGPIORegister(m_GPIO_KEY); SHAL_GPIO_Peripheral gpioPeripheral = getGPIORegister(m_GPIO_KEY);
gpioPeripheral.reg->OSPEEDR |= (static_cast<uint8_t>(speed) << (2 * gpioPeripheral.global_offset)); gpioPeripheral.reg->OSPEEDR |= (static_cast<uint8_t>(speed) << (2 * gpioPeripheral.global_offset));
} }
void GPIO::setInternalResistor(InternalResistorType type) volatile { void SHAL_GPIO::setInternalResistor(InternalResistorType type) volatile {
SHAL_GPIO_Peripheral gpioPeripheral = getGPIORegister(m_GPIO_KEY); SHAL_GPIO_Peripheral gpioPeripheral = getGPIORegister(m_GPIO_KEY);
gpioPeripheral.reg->PUPDR &= ~(0x03 << (2 * gpioPeripheral.global_offset)); gpioPeripheral.reg->PUPDR &= ~(0x03 << (2 * gpioPeripheral.global_offset));
gpioPeripheral.reg->PUPDR |= (static_cast<uint8_t>(type) << (2 * gpioPeripheral.global_offset)); gpioPeripheral.reg->PUPDR |= (static_cast<uint8_t>(type) << (2 * gpioPeripheral.global_offset));
} }
void GPIO::setAlternateFunction(GPIO_Alternate_Function AF) volatile { void SHAL_GPIO::setAlternateFunction(GPIO_Alternate_Function AF) volatile {
SHAL_GPIO_Peripheral gpioPeripheral = getGPIORegister(m_GPIO_KEY); SHAL_GPIO_Peripheral gpioPeripheral = getGPIORegister(m_GPIO_KEY);
int afrIndex = gpioPeripheral.global_offset < 8 ? 0 : 1; //Get index of AFR int afrIndex = gpioPeripheral.global_offset < 8 ? 0 : 1; //Get index of AFR
@@ -62,13 +62,13 @@ void GPIO::setAlternateFunction(GPIO_Alternate_Function AF) volatile {
gpioPeripheral.reg->AFR[afrIndex] |= (static_cast<int>(AF) << (gpioPeripheral.global_offset * 4)); gpioPeripheral.reg->AFR[afrIndex] |= (static_cast<int>(AF) << (gpioPeripheral.global_offset * 4));
} }
void GPIO::setPinMode(PinMode mode) volatile { void SHAL_GPIO::setPinMode(PinMode mode) volatile {
SHAL_GPIO_Peripheral gpioPeripheral = getGPIORegister(m_GPIO_KEY); SHAL_GPIO_Peripheral gpioPeripheral = getGPIORegister(m_GPIO_KEY);
gpioPeripheral.reg->MODER &= ~(0x03 << (2 * gpioPeripheral.global_offset)); //Clear any previous mode gpioPeripheral.reg->MODER &= ~(0x03 << (2 * gpioPeripheral.global_offset)); //Clear any previous mode
gpioPeripheral.reg->MODER |= (static_cast<uint8_t>(mode) << (2 * gpioPeripheral.global_offset)); //Set mode based on pinmode bit structure gpioPeripheral.reg->MODER |= (static_cast<uint8_t>(mode) << (2 * gpioPeripheral.global_offset)); //Set mode based on pinmode bit structure
} }
void GPIO::useAsExternalInterrupt(TriggerMode mode, EXTICallback callback) { void SHAL_GPIO::useAsExternalInterrupt(TriggerMode mode, EXTICallback callback) {
uint32_t gpioPin = getGPIORegister(m_GPIO_KEY).global_offset; //Use existing structs to get offset uint32_t gpioPin = getGPIORegister(m_GPIO_KEY).global_offset; //Use existing structs to get offset
@@ -108,13 +108,13 @@ void GPIO::useAsExternalInterrupt(TriggerMode mode, EXTICallback callback) {
} }
GPIO& GPIOManager::get(GPIO_Key key) { SHAL_GPIO& GPIOManager::get(GPIO_Key key) {
unsigned int gpioPort = getGPIOPortNumber(key); unsigned int gpioPort = getGPIOPortNumber(key);
unsigned long gpioPin = getGPIORegister(key).global_offset; //Use existing structs to get offset unsigned long gpioPin = getGPIORegister(key).global_offset; //Use existing structs to get offset
if (m_gpios[gpioPort][gpioPin].m_GPIO_KEY == GPIO_Key::INVALID){ if (m_gpios[gpioPort][gpioPin].m_GPIO_KEY == GPIO_Key::INVALID){
m_gpios[gpioPort][gpioPin] = GPIO(key); m_gpios[gpioPort][gpioPin] = SHAL_GPIO(key);
} }
return m_gpios[gpioPort][gpioPin]; return m_gpios[gpioPort][gpioPin];

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@@ -2,7 +2,7 @@
****************************************************************************** ******************************************************************************
* @file SHAL_TIM.h * @file SHAL_TIM.h
* @author Luca Lizaranzu * @author Luca Lizaranzu
* @brief Related to USART and UART abstractions * @brief Related to USART and SHAL_UART abstractions
****************************************************************************** ******************************************************************************
*/ */
@@ -10,10 +10,13 @@
#include "SHAL_UART.h" #include "SHAL_UART.h"
#include "SHAL_GPIO.h" #include "SHAL_GPIO.h"
UART::UART(const UART_Pair pair) : m_UARTPair(pair){ void SHAL_UART::init(const UART_Pair pair){
m_UARTPair = pair;
SHAL_UART_Pair uart_pair = getUARTPair(pair); //Get the UART_PAIR information to be initialized SHAL_UART_Pair uart_pair = getUARTPair(pair); //Get the UART_PAIR information to be initialized
//Get the GPIO pins for this UART setup //Get the SHAL_GPIO pins for this SHAL_UART setup
GPIO_Key Tx_Key = uart_pair.TxKey; //Tx pin GPIO_Key Tx_Key = uart_pair.TxKey; //Tx pin
GPIO_Key Rx_Key = uart_pair.RxKey; //Rx pin GPIO_Key Rx_Key = uart_pair.RxKey; //Rx pin
@@ -23,12 +26,12 @@ UART::UART(const UART_Pair pair) : m_UARTPair(pair){
GET_GPIO(Tx_Key).setAlternateFunction(uart_pair.TxAlternateFunctionMask); GET_GPIO(Tx_Key).setAlternateFunction(uart_pair.TxAlternateFunctionMask);
GET_GPIO(Rx_Key).setAlternateFunction(uart_pair.RxAlternateFunctionMask); GET_GPIO(Rx_Key).setAlternateFunction(uart_pair.RxAlternateFunctionMask);
SHAL_UART_ENABLE_REG pairUARTEnable = getUARTEnableReg(pair); //Register and mask to enable the UART channel SHAL_UART_ENABLE_REG pairUARTEnable = getUARTEnableReg(pair); //Register and mask to enable the SHAL_UART channel
*pairUARTEnable.reg |= pairUARTEnable.mask; //Enable UART line *pairUARTEnable.reg |= pairUARTEnable.mask; //Enable SHAL_UART line
} }
void UART::begin(uint32_t baudRate) volatile { void SHAL_UART::begin(uint32_t baudRate) volatile {
USART_TypeDef* usart = getUARTPair(m_UARTPair).USARTReg; USART_TypeDef* usart = getUARTPair(m_UARTPair).USARTReg;
@@ -44,11 +47,11 @@ void UART::begin(uint32_t baudRate) volatile {
} }
void UART::sendString(const char *s) volatile { void SHAL_UART::sendString(const char *s) volatile {
while (*s) sendChar(*s++); //Send chars while we haven't reached end of s while (*s) sendChar(*s++); //Send chars while we haven't reached end of s
} }
void UART::sendChar(char c) volatile { void SHAL_UART::sendChar(char c) volatile {
USART_TypeDef* usart = getUARTPair(m_UARTPair).USARTReg; USART_TypeDef* usart = getUARTPair(m_UARTPair).USARTReg;
@@ -59,11 +62,6 @@ void UART::sendChar(char c) volatile {
UART& UARTManager::get(UART_Pair pair) { SHAL_UART& UARTManager::get(uint8_t uart) {
return m_UARTs[uart];
//Reassign if pair doesn't match
if(m_UARTs[getUARTChannel(pair)].m_UARTPair != pair) {
m_UARTs[getUARTChannel(pair)] = UART(pair);
}
return m_UARTs[getUARTChannel(pair)];
} }

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@@ -2,13 +2,9 @@
#include "stm32f0xx.h" #include "stm32f0xx.h"
volatile GPIO* blueLED = nullptr;
volatile GPIO* greenLED = nullptr;
volatile UART* uart2;
void c3Interrupt(){ void c3Interrupt(){
PIN(A5).toggle(); PIN(A5).toggle();
uart2->sendString("test"); UART(2).sendString("New test");
} }
void tim2Handler(){ void tim2Handler(){
@@ -17,9 +13,10 @@ void tim2Handler(){
int main() { int main() {
uart2 = &getUART(UART_Pair::Tx2A2_Rx2A3);
uart2->begin(115200); UART(2).init(UART_Pair::Tx2A2_Rx2A3);
UART(2).begin(115200);
PIN(C3).useAsExternalInterrupt(TriggerMode::RISING_EDGE,c3Interrupt); PIN(C3).useAsExternalInterrupt(TriggerMode::RISING_EDGE,c3Interrupt);