Files
ardupilot/libraries/AP_HAL_Linux/GPIO_PB2.cpp
T
juvinski de3f499561 AP_HAL_Linux: Adding PocketBeagle2 GPIO support
This add support for the PocketBeagle 2 GPIO.
On the PocketBeagle 2 to handle GPIO there is SET/GET registers, what
make the /dev/mem access safe.
2025-10-09 22:34:20 +11:00

131 lines
3.5 KiB
C++

#include <AP_HAL/AP_HAL.h>
#if HAL_LINUX_GPIO_PB2_ENABLED
#include "GPIO.h"
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <errno.h>
#include <unistd.h>
#include <fcntl.h>
#include <poll.h>
#include <sys/mman.h>
#include <sys/stat.h>
#define LOW 0
#define HIGH 1
using namespace Linux;
GPIO_PB2::GPIO_PB2()
{}
void GPIO_PB2::init()
{
int mem_fd;
/* open /dev/mem */
if ((mem_fd = open("/dev/mem", O_RDWR|O_SYNC|O_CLOEXEC)) < 0) {
printf("can't open /dev/mem \n");
exit (-1);
}
off_t offsets[LINUX_GPIO_NUM_BANKS] = { GPIO1_BASE, GPIO0_BASE, GPIO0_BASE, GPIO1_BASE, GPIO0_BASE, GPIO0_BASE};
uint32_t gpio_dir[LINUX_GPIO_NUM_BANKS] = {GPIO_DIR01, GPIO_DIR01, GPIO_DIR23, GPIO_DIR23, GPIO_DIR45, GPIO_DIR45};
uint32_t gpio_set[LINUX_GPIO_NUM_BANKS] = {GPIO_SET_DATA01, GPIO_SET_DATA01, GPIO_SET_DATA23, GPIO_SET_DATA23, GPIO_SET_DATA45, GPIO_SET_DATA45};
uint32_t gpio_out[LINUX_GPIO_NUM_BANKS] = {GPIO_OUT_DATA01, GPIO_OUT_DATA01, GPIO_OUT_DATA23, GPIO_OUT_DATA23, GPIO_OUT_DATA45, GPIO_OUT_DATA45};
uint32_t gpio_clr[LINUX_GPIO_NUM_BANKS] = {GPIO_CLR_DATA01, GPIO_CLR_DATA01, GPIO_CLR_DATA23, GPIO_CLR_DATA23, GPIO_CLR_DATA45, GPIO_CLR_DATA45};
uint32_t gpio_in[LINUX_GPIO_NUM_BANKS] = {GPIO_IN_DATA01, GPIO_IN_DATA01, GPIO_IN_DATA23, GPIO_IN_DATA23, GPIO_IN_DATA45, GPIO_IN_DATA45};
for (uint8_t i=0; i<LINUX_GPIO_NUM_BANKS; i++) {
gpio_bank[i].gpio_base = (volatile unsigned *)mmap(0, GPIO_SIZE, PROT_READ|PROT_WRITE, MAP_SHARED, mem_fd, offsets[i]);
if ((char *)gpio_bank[i].gpio_base == MAP_FAILED) {
AP_HAL::panic("unable to map GPIO bank");
}
gpio_bank[i].gpio_direction = gpio_bank[i].gpio_base + gpio_dir[i];
gpio_bank[i].gpio_set = gpio_bank[i].gpio_base + gpio_set[i];
gpio_bank[i].gpio_clear = gpio_bank[i].gpio_base + gpio_clr[i];
gpio_bank[i].gpio_out = gpio_bank[i].gpio_base + gpio_out[i];
gpio_bank[i].gpio_in = gpio_bank[i].gpio_base + gpio_in[i];
}
close(mem_fd);
}
void GPIO_PB2::pinMode(uint8_t pin, uint8_t output) {
uint8_t bank = pin/16;
uint8_t bankpin = 0;
if(pin < 64)
bankpin = pin & 0xF;
else
bankpin = pin & 0x1F;
if (bank >= LINUX_GPIO_NUM_BANKS) {
return;
}
if (output == HAL_GPIO_INPUT) {
*gpio_bank[bank].gpio_direction |= (1U<<bankpin);
} else {
*gpio_bank[bank].gpio_direction &= ~(1U<<bankpin);
}
}
uint8_t GPIO_PB2::read(uint8_t pin) {
uint8_t bank = pin/16;
uint8_t bankpin = 0;
if(pin < 64)
bankpin = pin & 0xF;
else
bankpin = pin & 0x1F;
if (bank >= LINUX_GPIO_NUM_BANKS) {
return 0;
}
return *gpio_bank[bank].gpio_in & (1U<<bankpin) ? HIGH : LOW;
}
void GPIO_PB2::write(uint8_t pin, uint8_t value) {
uint8_t bank = pin/16;
uint8_t bankpin = 0;
if(pin < 64)
bankpin = pin & 0xF;
else
bankpin = pin & 0x1F;
if (bank >= LINUX_GPIO_NUM_BANKS) {
return;
}
if (value == LOW) {
*gpio_bank[bank].gpio_clear |= 1U<<bankpin;
*gpio_bank[bank].gpio_out &= ~(1U<<bankpin);
} else {
*gpio_bank[bank].gpio_set |= 1U<<bankpin;
*gpio_bank[bank].gpio_out |= 1U<<bankpin;
}
}
void GPIO_PB2::toggle(uint8_t pin) {
write(pin, !read(pin));
}
/* Alternative interface: */
AP_HAL::DigitalSource* GPIO_PB2::channel(uint16_t n) {
return NEW_NOTHROW DigitalSource(n);
}
bool GPIO_PB2::usb_connected(void)
{
return false;
}
#endif // HAL_LINUX_GPIO_PB2_ENABLED