/******************************************************************** * Description: threads.c * This file, 'threads.c', is a HAL component that * provides a way to create realtime threads but * contains no other functionality. * * Author: John Kasunich * License: GPL Version 2 * * Copyright (c) 2003 All rights reserved. * * Last change: ********************************************************************/ /** This file, 'threads.c', is a HAL component that provides a way to create realtime threads but contains no other functionality. It will mostly be used for testing - when EMC is run normally, the motion module creates all the neccessary threads. The module has three pairs of parameters, "name1, period1", etc. */ /** Copyright (C) 2003 John Kasunich */ /** This program is free software; you can redistribute it and/or modify it under the terms of version 2 of the GNU General Public License as published by the Free Software Foundation. This library 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 library; if not, write to the Free Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111 USA THE AUTHORS OF THIS LIBRARY ACCEPT ABSOLUTELY NO LIABILITY FOR ANY HARM OR LOSS RESULTING FROM ITS USE. IT IS _EXTREMELY_ UNWISE TO RELY ON SOFTWARE ALONE FOR SAFETY. Any machinery capable of harming persons must have provisions for completely removing power from all motors, etc, before persons enter any danger area. All machinery must be designed to comply with local and national safety codes, and the authors of this software can not, and do not, take any responsibility for such compliance. This code was written as part of the EMC HAL project. For more information, go to www.linuxcnc.org. */ #include "rtapi.h" /* RTAPI realtime OS API */ #include "rtapi_app.h" /* RTAPI realtime module decls */ #include "hal.h" /* HAL public API decls */ #include "rtapi_string.h" /* module information */ MODULE_AUTHOR("John Kasunich"); MODULE_DESCRIPTION("Thread Module for HAL"); MODULE_LICENSE("GPL"); static char *name1 = "thread1"; /* name of thread */ RTAPI_MP_STRING(name1, "name of thread 1"); static int fp1 = 1; /* use floating point? default = yes */ RTAPI_MP_INT(fp1, "thread1 uses floating point"); static long period1 = 1000000; /* thread period - default = 1ms thread */ RTAPI_MP_LONG(period1, "thread1 period (nsecs)"); static char *name2 = NULL; /* name of thread */ RTAPI_MP_STRING(name2, "name of thread 2"); static int fp2 = 1; /* use floating point? default = yes */ RTAPI_MP_INT(fp2, "thread2 uses floating point"); static long period2 = 0; /* thread period - default = no thread */ RTAPI_MP_LONG(period2, "thread2 period (nsecs)"); static char *name3 = NULL; /* name of thread */ RTAPI_MP_STRING(name3, "name of thread 3"); static int fp3 = 1; /* use floating point? default = yes */ RTAPI_MP_INT(fp3, "thread1 uses floating point"); static long period3 = 0; /* thread period - default = no thread */ RTAPI_MP_LONG(period3, "thread3 period (nsecs)"); /*********************************************************************** * STRUCTURES AND GLOBAL VARIABLES * ************************************************************************/ /* other globals */ static int comp_id; /* component ID */ /*********************************************************************** * LOCAL FUNCTION DECLARATIONS * ************************************************************************/ /*********************************************************************** * INIT AND EXIT CODE * ************************************************************************/ int rtapi_app_main(void) { int retval; /* have good config info, connect to the HAL */ comp_id = hal_init("threads"); if (comp_id < 0) { rtapi_print_msg(RTAPI_MSG_ERR, "THREADS: ERROR: hal_init() failed\n"); return -1; } /* was 'period' specified in the insmod command? */ if ((period1 > 0) && (name1 != NULL) && (*name1 != '\0')) { /* create a thread */ retval = hal_create_thread(name1, period1, fp1); if (retval < 0) { rtapi_print_msg(RTAPI_MSG_ERR, "THREADS: ERROR: could not create thread '%s'\n", name1); hal_exit(comp_id); return -1; } else { rtapi_print_msg(RTAPI_MSG_INFO, "THREADS: created %ld uS thread\n", period1 / 1000); } } if ((period2 > 0) && (name2 != NULL) && (*name2 != '\0')) { /* create a thread */ retval = hal_create_thread(name2, period2, fp2); if (retval < 0) { rtapi_print_msg(RTAPI_MSG_ERR, "THREADS: ERROR: could not create thread '%s'\n", name2); hal_exit(comp_id); return -1; } else { rtapi_print_msg(RTAPI_MSG_INFO, "THREADS: created %ld uS thread\n", period2 / 1000); } } if ((period3 > 0) && (name3 != NULL) && (*name3 != '\0')) { /* create a thread */ retval = hal_create_thread(name3, period3, fp3); if (retval < 0) { rtapi_print_msg(RTAPI_MSG_ERR, "THREADS: ERROR: could not create thread '%s'\n", name3); hal_exit(comp_id); return -1; } else { rtapi_print_msg(RTAPI_MSG_INFO, "THREADS: created %ld uS thread\n", period3 / 1000); } } hal_ready(comp_id); return 0; } void rtapi_app_exit(void) { hal_exit(comp_id); }