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pru.c
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pru.c
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/** \file
* Userspace interface to the BeagleBone PRU.
*
* Wraps the prussdrv library in a sane interface.
*/
#include <stdio.h>
#include <stdlib.h>
#include <stdint.h>
#include <string.h>
#include <inttypes.h>
#include <sys/mman.h>
#include <fcntl.h>
#include <errno.h>
#include <unistd.h>
#include <prussdrv.h>
#include <pruss_intc_mapping.h>
#include "pru.h"
static unsigned int proc_read(const char *const fname) {
FILE *const f = fopen(fname, "r");
if (!f)
die("%s: Unable to open: %s", fname, strerror(errno));
unsigned int x;
fscanf(f, "%x", &x);
fclose(f);
return x;
}
pru_t *pru_init(const unsigned short pru_num) {
prussdrv_init();
int ret = prussdrv_open(PRU_EVTOUT_0);
if (ret)
die("prussdrv_open open failed\n");
tpruss_intc_initdata pruss_intc_initdata = PRUSS_INTC_INITDATA;
prussdrv_pruintc_init(&pruss_intc_initdata);
void *pru_data_mem;
prussdrv_map_prumem(pru_num == 0 ? PRUSS0_PRU0_DATARAM : PRUSS0_PRU1_DATARAM,
&pru_data_mem);
const int mem_fd = open("/dev/mem", O_RDWR);
if (mem_fd < 0)
die("Failed to open /dev/mem: %s\n", strerror(errno));
const uintptr_t ddr_addr = proc_read("/sys/class/uio/uio0/maps/map1/addr");
const uintptr_t ddr_size = proc_read("/sys/class/uio/uio0/maps/map1/size");
const uintptr_t ddr_start = 0x10000000;
const uintptr_t ddr_offset = ddr_addr - ddr_start;
const size_t ddr_filelen = ddr_size + ddr_start;
/* map the memory */
uint8_t *const ddr_mem = mmap(0, ddr_filelen, PROT_WRITE | PROT_READ,
MAP_SHARED, mem_fd, ddr_offset);
if (ddr_mem == MAP_FAILED)
die("Failed to mmap offset %" PRIxPTR " @ %zu bytes: %s\n", ddr_offset,
ddr_filelen, strerror(errno));
close(mem_fd);
pru_t *const pru = calloc(1, sizeof(*pru));
if (!pru)
die("calloc failed: %s", strerror(errno));
*pru = (pru_t) { .pru_num = pru_num,
.data_ram = pru_data_mem,
.data_ram_size = 8192, // how to determine?
.ddr_addr = ddr_addr,
.ddr = (void *)(ddr_mem + ddr_start),
.ddr_size = ddr_size, };
printf("%s: PRU %d: data %p @ %zu bytes, DMA %p / %" PRIxPTR
" @ %zu bytes\n",
__func__, pru_num, pru->data_ram, pru->data_ram_size, pru->ddr,
pru->ddr_addr, pru->ddr_size);
return pru;
}
void pru_exec(pru_t *const pru, const char *const program) {
char *program_unconst = (char *)(uintptr_t)program;
if (prussdrv_exec_program(pru->pru_num, program_unconst) < 0)
die("%s failed", program);
}
void pru_close(pru_t *const pru) {
// \todo unmap memory
prussdrv_pru_wait_event(PRU_EVTOUT_0);
prussdrv_pru_clear_event(PRU_EVTOUT_0, PRU0_ARM_INTERRUPT);
prussdrv_pru_disable(pru->pru_num);
prussdrv_exit();
}
int pru_gpio(const unsigned gpio, const unsigned pin, const unsigned direction,
const unsigned initial_value) {
const unsigned pin_num = gpio * 32 + pin;
const char *export_name = "/sys/class/gpio/export";
FILE *const export = fopen(export_name, "w");
if (!export)
die("%s: Unable to open? %s\n", export_name, strerror(errno));
fprintf(export, "%d\n", pin_num);
fclose(export);
char value_name[64];
snprintf(value_name, sizeof(value_name), "/sys/class/gpio/gpio%u/value",
pin_num);
FILE *const value = fopen(value_name, "w");
if (!value)
die("%s: Unable to open? %s\n", value_name, strerror(errno));
fprintf(value, "%d\n", initial_value);
fclose(value);
char dir_name[64];
snprintf(dir_name, sizeof(dir_name), "/sys/class/gpio/gpio%u/direction",
pin_num);
FILE *const dir = fopen(dir_name, "w");
if (!dir)
die("%s: Unable to open? %s\n", dir_name, strerror(errno));
fprintf(dir, "%s\n", direction ? "out" : "in");
fclose(dir);
return 0;
}