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mirror of https://github.com/esp8266/Arduino.git synced 2025-04-21 10:26:06 +03:00

Merge pull request #77 from Links2004/esp8266

Add Esp.restart and Esp.getVCC, add standard includes to Arduino.h
This commit is contained in:
Ivan Grokhotkov 2015-04-19 10:23:59 +08:00
commit 809049ff04
5 changed files with 92 additions and 12 deletions

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@ -20,18 +20,23 @@
#ifndef Arduino_h #ifndef Arduino_h
#define Arduino_h #define Arduino_h
#ifdef __cplusplus
extern "C" {
#endif
#include <stdlib.h> #include <stdlib.h>
#include <stdint.h> #include <stdint.h>
#include <stdbool.h> #include <stdbool.h>
#include <stddef.h>
#include <stdarg.h>
#include <stdio.h>
#include <string.h> #include <string.h>
#include <math.h> #include <math.h>
#include "binary.h" #include "binary.h"
#include "pgmspace.h" #include "pgmspace.h"
#ifdef __cplusplus
extern "C" {
#endif
void yield(void); void yield(void);

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@ -40,12 +40,12 @@ void EspClass::wdtEnable(int)
ets_wdt_enable(); ets_wdt_enable();
} }
void EspClass::wdtDisable() void EspClass::wdtDisable(void)
{ {
ets_wdt_disable(); ets_wdt_disable();
} }
void EspClass::wdtFeed() void EspClass::wdtFeed(void)
{ {
wdt_feed(); wdt_feed();
} }
@ -56,7 +56,17 @@ void EspClass::deepSleep(uint32_t time_us, WakeMode mode)
system_deep_sleep(time_us); system_deep_sleep(time_us);
} }
void EspClass::reset() void EspClass::reset(void)
{ {
((void (*)(void))0x40000080)(); ((void (*)(void))0x40000080)();
} }
void EspClass::restart(void)
{
system_restart();
}
uint16_t EspClass::getVCC(void)
{
return system_get_vdd33();
}

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@ -35,12 +35,15 @@ class EspClass {
void wdtEnable(int timeout_ms = 0); void wdtEnable(int timeout_ms = 0);
// TODO: figure out how to set WDT timeout // TODO: figure out how to set WDT timeout
void wdtDisable(); void wdtDisable(void);
void wdtFeed(); void wdtFeed(void);
void deepSleep(uint32_t time_us, WakeMode mode = WAKE_RF_DEFAULT); void deepSleep(uint32_t time_us, WakeMode mode = WAKE_RF_DEFAULT);
void reset();
void reset(void);
void restart(void);
uint16_t getVCC(void);
}; };
extern EspClass ESP; extern EspClass ESP;

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@ -157,6 +157,8 @@ void ICACHE_FLASH_ATTR uart_interrupt_handler(uart_t* uart) {
// #################################################################################################### // ####################################################################################################
void ICACHE_FLASH_ATTR uart_wait_for_tx_fifo(uart_t* uart, size_t size_needed) { void ICACHE_FLASH_ATTR uart_wait_for_tx_fifo(uart_t* uart, size_t size_needed) {
if(uart == 0)
return;
if(uart->txEnabled) { if(uart->txEnabled) {
while(true) { while(true) {
size_t tx_count = (READ_PERI_REG(UART_STATUS(uart->uart_nr)) >> UART_TXFIFO_CNT_S) & UART_TXFIFO_CNT; size_t tx_count = (READ_PERI_REG(UART_STATUS(uart->uart_nr)) >> UART_TXFIFO_CNT_S) & UART_TXFIFO_CNT;
@ -167,6 +169,8 @@ void ICACHE_FLASH_ATTR uart_wait_for_tx_fifo(uart_t* uart, size_t size_needed) {
} }
size_t ICACHE_FLASH_ATTR uart_get_tx_fifo_room(uart_t* uart) { size_t ICACHE_FLASH_ATTR uart_get_tx_fifo_room(uart_t* uart) {
if(uart == 0)
return 0;
if(uart->txEnabled) { if(uart->txEnabled) {
return UART_TX_FIFO_SIZE - ((READ_PERI_REG(UART_STATUS(uart->uart_nr)) >> UART_TXFIFO_CNT_S) & UART_TXFIFO_CNT); return UART_TX_FIFO_SIZE - ((READ_PERI_REG(UART_STATUS(uart->uart_nr)) >> UART_TXFIFO_CNT_S) & UART_TXFIFO_CNT);
} }
@ -174,18 +178,24 @@ size_t ICACHE_FLASH_ATTR uart_get_tx_fifo_room(uart_t* uart) {
} }
void ICACHE_FLASH_ATTR uart_wait_for_transmit(uart_t* uart) { void ICACHE_FLASH_ATTR uart_wait_for_transmit(uart_t* uart) {
if(uart == 0)
return;
if(uart->txEnabled) { if(uart->txEnabled) {
uart_wait_for_tx_fifo(uart, UART_TX_FIFO_SIZE); uart_wait_for_tx_fifo(uart, UART_TX_FIFO_SIZE);
} }
} }
void ICACHE_FLASH_ATTR uart_transmit_char(uart_t* uart, char c) { void ICACHE_FLASH_ATTR uart_transmit_char(uart_t* uart, char c) {
if(uart == 0)
return;
if(uart->txEnabled) { if(uart->txEnabled) {
WRITE_PERI_REG(UART_FIFO(uart->uart_nr), c); WRITE_PERI_REG(UART_FIFO(uart->uart_nr), c);
} }
} }
void ICACHE_FLASH_ATTR uart_transmit(uart_t* uart, const char* buf, size_t size) { void ICACHE_FLASH_ATTR uart_transmit(uart_t* uart, const char* buf, size_t size) {
if(uart == 0)
return;
if(uart->txEnabled) { if(uart->txEnabled) {
while(size) { while(size) {
size_t part_size = (size > UART_TX_FIFO_SIZE) ? UART_TX_FIFO_SIZE : size; size_t part_size = (size > UART_TX_FIFO_SIZE) ? UART_TX_FIFO_SIZE : size;
@ -201,6 +211,9 @@ void ICACHE_FLASH_ATTR uart_transmit(uart_t* uart, const char* buf, size_t size)
void ICACHE_FLASH_ATTR uart_flush(uart_t* uart) { void ICACHE_FLASH_ATTR uart_flush(uart_t* uart) {
uint32_t tmp = 0x00000000; uint32_t tmp = 0x00000000;
if(uart == 0)
return;
if(uart->rxEnabled) { if(uart->rxEnabled) {
tmp |= UART_RXFIFO_RST; tmp |= UART_RXFIFO_RST;
} }
@ -214,6 +227,8 @@ void ICACHE_FLASH_ATTR uart_flush(uart_t* uart) {
} }
void ICACHE_FLASH_ATTR uart_interrupt_enable(uart_t* uart) { void ICACHE_FLASH_ATTR uart_interrupt_enable(uart_t* uart) {
if(uart == 0)
return;
WRITE_PERI_REG(UART_INT_CLR(uart->uart_nr), 0x1ff); WRITE_PERI_REG(UART_INT_CLR(uart->uart_nr), 0x1ff);
ETS_UART_INTR_ATTACH(&uart_interrupt_handler, uart); // uart parameter is not osed in irq function! ETS_UART_INTR_ATTACH(&uart_interrupt_handler, uart); // uart parameter is not osed in irq function!
if(uart->rxEnabled) { if(uart->rxEnabled) {
@ -223,6 +238,8 @@ void ICACHE_FLASH_ATTR uart_interrupt_enable(uart_t* uart) {
} }
void ICACHE_FLASH_ATTR uart_interrupt_disable(uart_t* uart) { void ICACHE_FLASH_ATTR uart_interrupt_disable(uart_t* uart) {
if(uart == 0)
return;
if(uart->rxEnabled) { if(uart->rxEnabled) {
CLEAR_PERI_REG_MASK(UART_INT_ENA(uart->uart_nr), UART_RXFIFO_FULL_INT_ENA); CLEAR_PERI_REG_MASK(UART_INT_ENA(uart->uart_nr), UART_RXFIFO_FULL_INT_ENA);
} }
@ -233,23 +250,31 @@ void ICACHE_FLASH_ATTR uart_interrupt_disable(uart_t* uart) {
} }
void ICACHE_FLASH_ATTR uart_arm_tx_interrupt(uart_t* uart) { void ICACHE_FLASH_ATTR uart_arm_tx_interrupt(uart_t* uart) {
if(uart == 0)
return;
if(uart->txEnabled) { if(uart->txEnabled) {
SET_PERI_REG_MASK(UART_INT_ENA(uart->uart_nr), UART_TXFIFO_EMPTY_INT_ENA); SET_PERI_REG_MASK(UART_INT_ENA(uart->uart_nr), UART_TXFIFO_EMPTY_INT_ENA);
} }
} }
void ICACHE_FLASH_ATTR uart_disarm_tx_interrupt(uart_t* uart) { void ICACHE_FLASH_ATTR uart_disarm_tx_interrupt(uart_t* uart) {
if(uart == 0)
return;
if(uart->txEnabled) { if(uart->txEnabled) {
CLEAR_PERI_REG_MASK(UART_INT_ENA(uart->uart_nr), UART_TXFIFO_EMPTY_INT_ENA); CLEAR_PERI_REG_MASK(UART_INT_ENA(uart->uart_nr), UART_TXFIFO_EMPTY_INT_ENA);
} }
} }
void ICACHE_FLASH_ATTR uart_set_baudrate(uart_t* uart, int baud_rate) { void ICACHE_FLASH_ATTR uart_set_baudrate(uart_t* uart, int baud_rate) {
if(uart == 0)
return;
uart->baud_rate = baud_rate; uart->baud_rate = baud_rate;
uart_div_modify(uart->uart_nr, UART_CLK_FREQ / (uart->baud_rate)); uart_div_modify(uart->uart_nr, UART_CLK_FREQ / (uart->baud_rate));
} }
int ICACHE_FLASH_ATTR uart_get_baudrate(uart_t* uart) { int ICACHE_FLASH_ATTR uart_get_baudrate(uart_t* uart) {
if(uart == 0)
return 0;
return uart->baud_rate; return uart->baud_rate;
} }
@ -257,6 +282,11 @@ uart_t* ICACHE_FLASH_ATTR uart_init(UARTnr_t uart_nr, int baudrate) {
uint32_t conf1 = 0x00000000; uint32_t conf1 = 0x00000000;
uart_t* uart = (uart_t*) os_malloc(sizeof(uart_t)); uart_t* uart = (uart_t*) os_malloc(sizeof(uart_t));
if(uart == 0) {
return 0;
}
uart->uart_nr = uart_nr; uart->uart_nr = uart_nr;
switch(uart->uart_nr) { switch(uart->uart_nr) {
@ -303,6 +333,8 @@ uart_t* ICACHE_FLASH_ATTR uart_init(UARTnr_t uart_nr, int baudrate) {
} }
void ICACHE_FLASH_ATTR uart_uninit(uart_t* uart) { void ICACHE_FLASH_ATTR uart_uninit(uart_t* uart) {
if(uart == 0)
return;
uart_interrupt_disable(uart); uart_interrupt_disable(uart);
switch(uart->rxPin) { switch(uart->rxPin) {
@ -316,7 +348,7 @@ void ICACHE_FLASH_ATTR uart_uninit(uart_t* uart) {
break; break;
} }
switch(uart->rxPin) { switch(uart->txPin) {
case 1: case 1:
PIN_FUNC_SELECT(PERIPHS_IO_MUX_U0TXD_U, FUNC_GPIO1); PIN_FUNC_SELECT(PERIPHS_IO_MUX_U0TXD_U, FUNC_GPIO1);
break; break;
@ -335,6 +367,8 @@ void ICACHE_FLASH_ATTR uart_uninit(uart_t* uart) {
} }
void ICACHE_FLASH_ATTR uart_swap(uart_t* uart) { void ICACHE_FLASH_ATTR uart_swap(uart_t* uart) {
if(uart == 0)
return;
switch(uart->uart_nr) { switch(uart->uart_nr) {
case UART0: case UART0:
if(uart->txPin == 1 && uart->rxPin == 3) { if(uart->txPin == 1 && uart->rxPin == 3) {
@ -461,6 +495,10 @@ void ICACHE_FLASH_ATTR HardwareSerial::begin(unsigned long baud, byte config) {
_uart = uart_init(_uart_nr, baud); _uart = uart_init(_uart_nr, baud);
if(_uart == 0) {
return;
}
if(_uart->rxEnabled) { if(_uart->rxEnabled) {
_rx_buffer = new cbuf(SERIAL_RX_BUFFER_SIZE); _rx_buffer = new cbuf(SERIAL_RX_BUFFER_SIZE);
} }
@ -481,10 +519,14 @@ void ICACHE_FLASH_ATTR HardwareSerial::end() {
} }
void ICACHE_FLASH_ATTR HardwareSerial::swap() { void ICACHE_FLASH_ATTR HardwareSerial::swap() {
if(_uart == 0)
return;
uart_swap(_uart); uart_swap(_uart);
} }
void ICACHE_FLASH_ATTR HardwareSerial::setDebugOutput(bool en) { void ICACHE_FLASH_ATTR HardwareSerial::setDebugOutput(bool en) {
if(_uart == 0)
return;
if(en) { if(en) {
uart_set_debug(_uart->uart_nr); uart_set_debug(_uart->uart_nr);
} else { } else {
@ -508,6 +550,8 @@ bool ICACHE_FLASH_ATTR HardwareSerial::isRxEnabled(void) {
} }
int ICACHE_FLASH_ATTR HardwareSerial::available(void) { int ICACHE_FLASH_ATTR HardwareSerial::available(void) {
if(_uart == 0)
return 0;
if(_uart->rxEnabled) { if(_uart->rxEnabled) {
return static_cast<int>(_rx_buffer->getSize()); return static_cast<int>(_rx_buffer->getSize());
} else { } else {
@ -516,6 +560,8 @@ int ICACHE_FLASH_ATTR HardwareSerial::available(void) {
} }
int ICACHE_FLASH_ATTR HardwareSerial::peek(void) { int ICACHE_FLASH_ATTR HardwareSerial::peek(void) {
if(_uart == 0)
return -1;
if(_uart->rxEnabled) { if(_uart->rxEnabled) {
return _rx_buffer->peek(); return _rx_buffer->peek();
} else { } else {
@ -524,6 +570,8 @@ int ICACHE_FLASH_ATTR HardwareSerial::peek(void) {
} }
int ICACHE_FLASH_ATTR HardwareSerial::read(void) { int ICACHE_FLASH_ATTR HardwareSerial::read(void) {
if(_uart == 0)
return -1;
if(_uart->rxEnabled) { if(_uart->rxEnabled) {
return _rx_buffer->read(); return _rx_buffer->read();
} else { } else {
@ -532,6 +580,8 @@ int ICACHE_FLASH_ATTR HardwareSerial::read(void) {
} }
int ICACHE_FLASH_ATTR HardwareSerial::availableForWrite(void) { int ICACHE_FLASH_ATTR HardwareSerial::availableForWrite(void) {
if(_uart == 0)
return 0;
if(_uart->txEnabled) { if(_uart->txEnabled) {
return static_cast<int>(_tx_buffer->room()); return static_cast<int>(_tx_buffer->room());
} else { } else {
@ -540,6 +590,8 @@ int ICACHE_FLASH_ATTR HardwareSerial::availableForWrite(void) {
} }
void ICACHE_FLASH_ATTR HardwareSerial::flush() { void ICACHE_FLASH_ATTR HardwareSerial::flush() {
if(_uart == 0)
return;
if(!_uart->txEnabled) if(!_uart->txEnabled)
return; return;
if(!_written) if(!_written)
@ -552,7 +604,7 @@ void ICACHE_FLASH_ATTR HardwareSerial::flush() {
} }
size_t ICACHE_FLASH_ATTR HardwareSerial::write(uint8_t c) { size_t ICACHE_FLASH_ATTR HardwareSerial::write(uint8_t c) {
if(!_uart->txEnabled) if(_uart == 0 || !_uart->txEnabled)
return 0; return 0;
_written = true; _written = true;
size_t room = uart_get_tx_fifo_room(_uart); size_t room = uart_get_tx_fifo_room(_uart);
@ -577,10 +629,16 @@ ICACHE_FLASH_ATTR HardwareSerial::operator bool() const {
} }
void ICACHE_FLASH_ATTR HardwareSerial::_rx_complete_irq(char c) { void ICACHE_FLASH_ATTR HardwareSerial::_rx_complete_irq(char c) {
if(_rx_buffer) {
_rx_buffer->write(c); _rx_buffer->write(c);
}
} }
void ICACHE_FLASH_ATTR HardwareSerial::_tx_empty_irq(void) { void ICACHE_FLASH_ATTR HardwareSerial::_tx_empty_irq(void) {
if(_uart == 0)
return;
if(_tx_buffer == 0)
return;
size_t queued = _tx_buffer->getSize(); size_t queued = _tx_buffer->getSize();
if(!queued) { if(!queued) {
uart_disarm_tx_interrupt(_uart); uart_disarm_tx_interrupt(_uart);

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@ -159,6 +159,10 @@ char* ICACHE_FLASH_ATTR strncat(char * dest, const char * src, size_t n) {
return dest; return dest;
} }
char* ICACHE_FLASH_ATTR strtok(char * str, const char * delimiters) {
return strtok_r(str, delimiters, NULL);
}
char* ICACHE_FLASH_ATTR strtok_r(char * str, const char * delimiters, char ** temp) { char* ICACHE_FLASH_ATTR strtok_r(char * str, const char * delimiters, char ** temp) {
static char * ret = NULL; static char * ret = NULL;
char * start = NULL; char * start = NULL;