/*
* This file is free software: you can redistribute it and/or modify it
* under the terms of the GNU General Public License as published by the
* Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* This file is distributed in the hope that it will be useful, but
* WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
* See the GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License along
* with this program. If not, see .
*
* Code by Andrew Tridgell and Siddharth Bharat Purohit
*/
#include "GPIO.h"
#if CONFIG_HAL_BOARD == HAL_BOARD_CHIBIOS
#include
using namespace ChibiOS;
// GPIO pin table from hwdef.dat
static struct gpio_entry {
uint8_t pin_num;
bool enabled;
uint8_t pwm_num;
ioline_t pal_line;
} _gpio_tab[] = HAL_GPIO_PINS;
#define NUM_PINS ARRAY_SIZE_SIMPLE(_gpio_tab)
#define PIN_ENABLED(pin) ((pin)pwm_num != 0) {
g->enabled = g->pwm_num > pwm_count;
}
}
}
void GPIO::pinMode(uint8_t pin, uint8_t output)
{
struct gpio_entry *g = gpio_by_pin_num(pin);
if (g) {
palSetLineMode(g->pal_line, output);
}
}
int8_t GPIO::analogPinToDigitalPin(uint8_t pin)
{
return -1;
}
uint8_t GPIO::read(uint8_t pin)
{
struct gpio_entry *g = gpio_by_pin_num(pin);
if (g) {
return palReadLine(g->pal_line);
}
return 0;
}
void GPIO::write(uint8_t pin, uint8_t value)
{
struct gpio_entry *g = gpio_by_pin_num(pin);
if (g) {
if (value == PAL_LOW) {
palClearLine(g->pal_line);
} else {
palSetLine(g->pal_line);
}
}
}
void GPIO::toggle(uint8_t pin)
{
struct gpio_entry *g = gpio_by_pin_num(pin);
if (g) {
palToggleLine(g->pal_line);
}
}
/* Alternative interface: */
AP_HAL::DigitalSource* GPIO::channel(uint16_t n) {
return new DigitalSource(0);
}
/* Interrupt interface: */
bool GPIO::attach_interrupt(uint8_t interrupt_num, AP_HAL::Proc p, uint8_t mode) {
extStop(&EXTD1);
switch(mode) {
case HAL_GPIO_INTERRUPT_LOW:
extcfg.channels[interrupt_num].mode = EXT_CH_MODE_LOW_LEVEL;
break;
case HAL_GPIO_INTERRUPT_FALLING:
extcfg.channels[interrupt_num].mode = EXT_CH_MODE_FALLING_EDGE;
break;
case HAL_GPIO_INTERRUPT_RISING:
extcfg.channels[interrupt_num].mode = EXT_CH_MODE_RISING_EDGE;
break;
case HAL_GPIO_INTERRUPT_BOTH:
extcfg.channels[interrupt_num].mode = EXT_CH_MODE_BOTH_EDGES;
break;
default: return false;
}
extcfg.channels[interrupt_num].mode |= EXT_CH_MODE_AUTOSTART | irq_port_list[interrupt_num];
ext_irq[interrupt_num] = p;
extcfg.channels[interrupt_num].cb = ext_interrupt_cb;
extStart(&EXTD1, &extcfg);
return true;
}
bool GPIO::usb_connected(void)
{
return _usb_connected;
}
DigitalSource::DigitalSource(uint8_t v) :
_v(v)
{}
void DigitalSource::mode(uint8_t output)
{}
uint8_t DigitalSource::read() {
return _v;
}
void DigitalSource::write(uint8_t value) {
_v = value;
}
void DigitalSource::toggle() {
_v = !_v;
}
void ext_interrupt_cb(EXTDriver *extp, expchannel_t channel) {
if (ext_irq[channel] != nullptr) {
ext_irq[channel]();
}
}
#endif //HAL_BOARD_ChibiOS