Template for zigbee serial readout

This commit is contained in:
divaldo 2022-09-09 17:34:07 +02:00
parent f8567a2bce
commit 021f99a603
4 changed files with 459 additions and 0 deletions

21
Makefile Normal file
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#makefile for serial project
#DE TTK - Villamosmérnök BSC - Baranyai Dávid
#Compiler:
CC = gcc
#Compiler flags:
CFLAGS = -lcurl
TARGET = serial_zigbee
SERIALHANDLER = serialhandler
all: $(TARGET) $(SERIALHANDLER)
$(SERIALHANDLER): $(SERIALHANDLER).c $(SERIALHANDLER).h
$(CC) -c $(SERIALHANDLER).c -o $(SERIALHANDLER).o
$(TARGET): $(TARGET).c $(SERIALHANDLER)
$(CC) -o $(TARGET) $(TARGET).c $(CFLAGS) $(SERIALHANDLER).o
clean:
$(RM) $(TARGET)

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serial_zigbee.c Normal file
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#include <stdio.h>
#include <stdlib.h>
#include <stdint.h>
#include <stdarg.h>
#include <string.h>
#include <termios.h>
#include <unistd.h>
#include <fcntl.h>
#include <sys/ioctl.h>
#include <sys/types.h>
#include <sys/stat.h>
#include <pthread.h>
#include <signal.h>
#include <math.h>
#include <time.h>
#include <unistd.h>
#include <curl/curl.h>
#include "serialhandler.h"
#define ADDRESS "http://127.0.0.1:3000"
#define packet_size 28
char *jsonString =
"{\n\
\t\"sensorid\": %d\n\
}";
void sigintHandler(int sig_num)
{
signal(SIGINT, sigintHandler);
curl_global_cleanup();
exit(1);
}
int send_curl_data(char *message)
{
CURL *curl = curl_easy_init();
if(curl)
{
CURLcode res;
struct curl_slist *headers = NULL;
curl_slist_append(headers, "Accept: application/json");
curl_slist_append(headers, "Content-Type: application/json");
curl_slist_append(headers, "charset: utf-8");
curl_easy_setopt(curl, CURLOPT_URL, ADDRESS);
//curl_easy_setopt(curl, CURLOPT_VERBOSE, 1L);
curl_easy_setopt(curl, CURLOPT_HTTPHEADER, headers);
curl_easy_setopt(curl, CURLOPT_POST, 1L);
curl_easy_setopt(curl, CURLOPT_COPYPOSTFIELDS, message);
curl_easy_setopt(curl, CURLOPT_USERAGENT, "libcrp/0.1");
/* Set the expected POST size. */
//curl_easy_setopt(curl, CURLOPT_POSTFIELDSIZE, strlen(jsonObj));
res = curl_easy_perform(curl);
printf("Curl returned with code %d\n", res);
if(res != CURLE_OK)
fprintf(stderr, "curl_easy_perform() failed: %s\n",
curl_easy_strerror(res));
/* always cleanup */
curl_easy_cleanup(curl);
}
}
int read_packet(uint16_t size, uint8_t buff[], const int fd)
{
uint16_t i;
//find start
do{ //olvasás amíg nem a start header(0xFB55) első bájtja
//(0x55 a litle endian miatt(kisebb hejiértékü bájt érkezik hamarabb))
while(! (serialDataAvail(fd) > 0)) //vár amíg nincs adat
{
usleep(200);
}
buff[0] = serialGetchar (fd);
}while(buff[0] != 0x55); //ha start header eleje akkro tovább
while(! (serialDataAvail(fd) > 0)) //vár amíg nincs adat
{
//thread sleep? kelhet
}
buff[1] = serialGetchar (fd);
if(buff[1] != 0xFB) //nem start header return error
return -1;
//ha igen akkor beolvassa a maradék 22 bájtot
while(! (serialDataAvail(fd) >= (size-2))) //vár amíg nincs adat
{
usleep(1);
}
if(serialGetarray(fd, &buff[2], (size-2)) == -1) //beolvas 22 bájtott a bufferbe a header utánra
{
return -1; //uart hiba
}
if(buff[size-2] != 0xAA | buff[size-1] != 0xFE) //ha az end header nem passzol error
return -1;
//todo crc check
return 1; //adat beolvasva
}
int main(int argc, char** argv)
{
signal(SIGINT, sigintHandler);
uint8_t raw_buff[packet_size + 10]; //packet_size + egy kis tartalék, ha nincs hiba sehol akkor nem kell
curl_global_init(CURL_GLOBAL_ALL);
char *device = "/dev/ttyACM0";
int c, index;
while((c = getopt(argc, argv, "d:")) != -1)
{
switch (c)
{
case 'd':
device = (char*)malloc(sizeof(optarg));
strcpy(device, optarg);
break;
default:
abort();
}
}
for (index = optind; index < argc; index++) printf ("Non-option argument %s\n", argv[index]);
int fd = 0;
int connect_retry_count = 0;
do
{
break;
if (connect_retry_count == 0) //if not the first time
{
printf("Cannot open %s. Trying again... (%d)\n", device, connect_retry_count);
sleep(1000);
}
fd=serialOpen(device, 115200);
connect_retry_count++;
} while (fd < 0);
int stringSize = strlen(jsonString) + 200;
char* jsonObj = (char*)malloc(stringSize); //"{ \"name\" : \"Pedro\" , \"age\" : \"22\" }";
snprintf(jsonObj, stringSize, jsonString, 15);
while (1)
{
if (1)//if(read_packet(packet_size, &raw_buff[0], fd) != -1)
{
printf("Sending: %s\n", jsonObj);
send_curl_data(jsonObj);
sleep(3);
}
}
}

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serialhandler.c Normal file
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#include "serialhandler.h"
/*
* serialOpen:
* Open and initialise the serial port, setting all the right
* port parameters - or as many as are required - hopefully!
*********************************************************************************
*/
int serialOpen (const char *device, const int baud)
{
struct termios options ;
speed_t myBaud ;
int status, fd ;
switch (baud)
{
case 50: myBaud = B50 ; break ;
case 75: myBaud = B75 ; break ;
case 110: myBaud = B110 ; break ;
case 134: myBaud = B134 ; break ;
case 150: myBaud = B150 ; break ;
case 200: myBaud = B200 ; break ;
case 300: myBaud = B300 ; break ;
case 600: myBaud = B600 ; break ;
case 1200: myBaud = B1200 ; break ;
case 1800: myBaud = B1800 ; break ;
case 2400: myBaud = B2400 ; break ;
case 4800: myBaud = B4800 ; break ;
case 9600: myBaud = B9600 ; break ;
case 19200: myBaud = B19200 ; break ;
case 38400: myBaud = B38400 ; break ;
case 57600: myBaud = B57600 ; break ;
case 115200: myBaud = B115200 ; break ;
case 230400: myBaud = B230400 ; break ;
case 460800: myBaud = B460800 ; break ;
default:
return -2 ;
}
if ((fd = open (device, O_RDWR | O_NOCTTY | O_NDELAY | O_NONBLOCK)) == -1)
return -1 ;
fcntl (fd, F_SETFL, O_RDWR) ;
// Get and modify current options:
tcgetattr (fd, &options) ;
cfmakeraw (&options) ;
cfsetispeed (&options, myBaud) ;
cfsetospeed (&options, myBaud) ;
options.c_cflag |= (CLOCAL | CREAD) ;
options.c_cflag &= ~PARENB ;
options.c_cflag &= ~CSTOPB ;
options.c_cflag &= ~CSIZE ;
options.c_cflag |= CS8 ;
options.c_lflag &= ~(ICANON | ECHO | ECHOE | ISIG) ;
options.c_oflag &= ~OPOST ;
options.c_cc [VMIN] = 0 ;
options.c_cc [VTIME] = 100 ; // Ten seconds (100 deciseconds)
tcsetattr (fd, TCSANOW | TCSAFLUSH, &options) ;
ioctl (fd, TIOCMGET, &status);
status |= TIOCM_DTR ;
status |= TIOCM_RTS ;
ioctl (fd, TIOCMSET, &status);
usleep (10000) ; // 10mS
return fd ;
}
/*
* serialFlush:
* Flush the serial buffers (both tx & rx)
*********************************************************************************
*/
void serialFlush (const int fd)
{
tcflush (fd, TCIOFLUSH) ;
}
/*
* serialClose:
* Release the serial port
*********************************************************************************
*/
void serialClose (const int fd)
{
close (fd) ;
}
/*
* serialPutchar:
* Send a single character to the serial port
*********************************************************************************
*/
void serialPutchar (const int fd, const unsigned char c)
{
write (fd, &c, 1) ;
}
/*
* serialPuts:
* Send a string to the serial port
*********************************************************************************
*/
void serialPuts (const int fd, const char *s)
{
write (fd, s, strlen (s)) ;
}
/*
* serialPrintf:
* Printf over Serial
*********************************************************************************
*/
void serialPrintf (const int fd, const char *message, ...)
{
va_list argp ;
char buffer [1024] ;
va_start (argp, message) ;
vsnprintf (buffer, 1023, message, argp) ;
va_end (argp) ;
serialPuts (fd, buffer) ;
}
/*
* serialDataAvail:
* Return the number of bytes of data avalable to be read in the serial port
*********************************************************************************
*/
int serialDataAvail (const int fd)
{
int result ;
if (ioctl (fd, FIONREAD, &result) == -1)
return -1 ;
return result ;
}
/*
* serialGetchar:
* Get a single character from the serial device.
* Note: Zero is a valid character and this function will time-out after
* 10 seconds.
*********************************************************************************
*/
int serialGetchar (const int fd)
{
uint8_t x ;
if (read (fd, &x, 1) != 1)
return -1 ;
return ((int)x) & 0xFF ;
}
int serialGetarray(const int fd, uint8_t out[], unsigned int size)
{
int i;
uint8_t x;
if((out == 0) | (fd == 0)) return -1;
if(size == 0) return -1;
for(i=0;i<size;i++)
{
if(read (fd, &out[i], 1) != 1)
return -1;
}
return 0; //nincs hiba
}

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#ifndef SerialHandler_h
#define SerialHandler_h
#include <stdio.h>
#include <stdint.h>
#include <stdarg.h>
#include <string.h>
#include <termios.h>
#include <fcntl.h>
#include <sys/ioctl.h>
#include <sys/types.h>
#include <unistd.h>
/*
* serialOpen:
* Open and initialise the serial port, setting all the right
* port parameters - or as many as are required - hopefully!
*********************************************************************************
*/
int serialOpen (const char *device, const int baud);
/*
* serialFlush:
* Flush the serial buffers (both tx & rx)
*********************************************************************************
*/
void serialFlush (const int fd);
/*
* serialClose:
* Release the serial port
*********************************************************************************
*/
void serialClose (const int fd);
/*
* serialPutchar:
* Send a single character to the serial port
*********************************************************************************
*/
void serialPutchar (const int fd, const unsigned char c);
/*
* serialPuts:
* Send a string to the serial port
*********************************************************************************
*/
void serialPuts (const int fd, const char *s);
/*
* serialPrintf:
* Printf over Serial
*********************************************************************************
*/
void serialPrintf (const int fd, const char *message, ...);
/*
* serialDataAvail:
* Return the number of bytes of data avalable to be read in the serial port
*********************************************************************************
*/
int serialDataAvail (const int fd);
/*
* serialGetchar:
* Get a single character from the serial device.
* Note: Zero is a valid character and this function will time-out after
* 10 seconds.
*********************************************************************************
*/
int serialGetchar (const int fd);
int serialGetarray(const int fd, uint8_t out[], unsigned int size);
#endif