1
0
Fork 0
CANopenNode/example/main.c

183 lines
5.6 KiB
C

/*
* CANopen main program file.
*
* This file is a template for other microcontrollers.
*
* @file main_generic.c
* @author Janez Paternoster
* @copyright 2004 - 2015 Janez Paternoster
*
* This file is part of CANopenNode, an opensource CANopen Stack.
* Project home page is <https://github.com/CANopenNode/CANopenNode>.
* For more information on CANopen see <http://www.can-cia.org/>.
*
* CANopenNode is free and open source 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 2 of the
* License, or (at your option) any later version.
*
* This program 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 <http://www.gnu.org/licenses/>.
*
* Following clarification and special exception to the GNU General Public
* License is included to the distribution terms of CANopenNode:
*
* Linking this library statically or dynamically with other modules is
* making a combined work based on this library. Thus, the terms and
* conditions of the GNU General Public License cover the whole combination.
*
* As a special exception, the copyright holders of this library give
* you permission to link this library with independent modules to
* produce an executable, regardless of the license terms of these
* independent modules, and to copy and distribute the resulting
* executable under terms of your choice, provided that you also meet,
* for each linked independent module, the terms and conditions of the
* license of that module. An independent module is a module which is
* not derived from or based on this library. If you modify this
* library, you may extend this exception to your version of the
* library, but you are not obliged to do so. If you do not wish
* to do so, delete this exception statement from your version.
*/
#include "CANopen.h"
#define TMR_TASK_INTERVAL (1000) /* Interval of tmrTask thread in microseconds */
#define INCREMENT_1MS(var) (var++) /* Increment 1ms variable in tmrTask */
/* Global variables and objects */
volatile uint16_t CO_timer1ms = 0U; /* variable increments each millisecond */
/* helpers */
void CANrx_lockCbSync(bool_t syncReceived) {
if(syncReceived) {
/* disable CAN receive, untill RPDOs are processed. */
}
}
/* main ***********************************************************************/
int main (void){
CO_NMT_reset_cmd_t reset = CO_RESET_NOT;
/* Configure microcontroller. */
/* initialize EEPROM */
/* increase variable each startup. Variable is stored in EEPROM. */
OD_powerOnCounter++;
while(reset != CO_RESET_APP){
/* CANopen communication reset - initialize CANopen objects *******************/
CO_ReturnError_t err;
uint16_t timer1msPrevious;
/* disable CAN and CAN interrupts */
CO->CANmodule[0]->CANnormal = false;
/* initialize CANopen */
err = CO_init(0/* CAN module address */, 10/* NodeID */, 125 /* bit rate */);
if(err != CO_ERROR_NO){
while(1);
/* CO_errorReport(CO->em, CO_EM_MEMORY_ALLOCATION_ERROR, CO_EMC_SOFTWARE_INTERNAL, err); */
}
/* Configure callback functions */
CO_SYNC_initCallback(CO->SYNC, CANrx_lockCbSync);
/* Configure Timer interrupt function for execution every 1 millisecond */
/* Configure CAN transmit and receive interrupt */
/* start CAN */
CO_CANsetNormalMode(CO->CANmodule[0]);
reset = CO_RESET_NOT;
timer1msPrevious = CO_timer1ms;
while(reset == CO_RESET_NOT){
/* loop for normal program execution ******************************************/
uint16_t timer1msCopy, timer1msDiff;
timer1msCopy = CO_timer1ms;
timer1msDiff = timer1msCopy - timer1msPrevious;
timer1msPrevious = timer1msCopy;
/* CANopen process */
reset = CO_process(CO, timer1msDiff, NULL);
/* Nonblocking application code may go here. */
/* Process EEPROM */
}
}
/* program exit ***************************************************************/
/* stop threads */
/* delete objects from memory */
CO_delete(0/* CAN module address */);
/* reset */
return 0;
}
/* timer thread executes in constant intervals ********************************/
static void tmrTask_thread(void){
for(;;) {
/* sleep for interval */
INCREMENT_1MS(CO_timer1ms);
if(CO->CANmodule[0]->CANnormal) {
bool_t syncWas;
/* Process Sync and read inputs */
syncWas = CO_process_SYNC_RPDO(CO, TMR_TASK_INTERVAL);
/* Reenable CANrx, if it was disabled by SYNC callback */
/* Further I/O or nonblocking application code may go here. */
/* Write outputs */
CO_process_TPDO(CO, syncWas, TMR_TASK_INTERVAL);
/* verify timer overflow */
if(0) {
CO_errorReport(CO->em, CO_EM_ISR_TIMER_OVERFLOW, CO_EMC_SOFTWARE_INTERNAL, 0U);
}
}
}
}
/* CAN interrupt function *****************************************************/
void /* interrupt */ CO_CAN1InterruptHandler(void){
CO_CANinterrupt(CO->CANmodule[0]);
/* clear interrupt flag */
}