📄 fsm.c
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/* fsm.c - {Link, IP} Control Protocol Finite State Machine *//* Copyright 1995 Wind River Systems, Inc. */#include "copyright_wrs.h"/* * Copyright (c) 1989 Carnegie Mellon University. * All rights reserved. * * Redistribution and use in source and binary forms are permitted * provided that the above copyright notice and this paragraph are * duplicated in all such forms and that any documentation, * advertising materials, and other materials related to such * distribution and use acknowledge that the software was developed * by Carnegie Mellon University. The name of the * University may not be used to endorse or promote products derived * from this software without specific prior written permission. * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR * IMPLIED WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED * WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR A PARTICULAR PURPOSE. *//*modification history--------------------01d,10sep98,sgv Added fix for interoperating with Windows01c,16jun95,dzb header file consolidation. changed [UN]TIMEOUT macros to PPP_[UN]TIMEOUT.01b,16jan95,dzb warnings cleanup.01a,21dec94,dab VxWorks port - first WRS version. +dzb added: path for ppp header files, WRS copyright, strLib.h.*//* * TODO: * Deal with variable outgoing MTU. */#include "vxWorks.h"#include "stdio.h"#include "strLib.h"#include "sys/types.h"#include "socket.h"#include "net/if.h"#include "pppLib.h"extern char *proto_name();static void fsm_timeout __ARGS((caddr_t));static void fsm_rconfreq __ARGS((fsm *, int, u_char *, int));static void fsm_rconfack __ARGS((fsm *, int, u_char *, int));static void fsm_rconfnakrej __ARGS((fsm *, int, int, u_char *, int));static void fsm_rtermreq __ARGS((fsm *, int));static void fsm_rtermack __ARGS((fsm *));static void fsm_rcoderej __ARGS((fsm *, u_char *, int));static void fsm_sconfreq __ARGS((fsm *, int));#define PROTO_NAME(f) ((f)->callbacks->proto_name)/* * fsm_init - Initialize fsm. * * Initialize fsm state. */voidfsm_init(f) fsm *f;{ f->state = INITIAL; f->flags = 0; f->id = (u_char)random(); f->timeouttime = DEFTIMEOUT; f->maxconfreqtransmits = DEFMAXCONFREQS; f->maxtermtransmits = DEFMAXTERMREQS; f->maxnakloops = DEFMAXNAKLOOPS;}/* * fsm_lowerup - The lower layer is up. */voidfsm_lowerup(f) fsm *f;{ switch( f->state ){ case INITIAL: f->state = CLOSED; break; case STARTING: if( f->flags & OPT_SILENT ) f->state = STOPPED; else { /* Send an initial configure-request */ fsm_sconfreq(f, 0); f->state = REQSENT; } break; default: FSMDEBUG((LOG_INFO, "%s: Up event in state %d!", PROTO_NAME(f), f->state)); }}/* * fsm_lowerdown - The lower layer is down. * * Cancel all timeouts and inform upper layers. */voidfsm_lowerdown(f) fsm *f;{ switch( f->state ){ case CLOSED: f->state = INITIAL; break; case STOPPED: f->state = STARTING; if( f->callbacks->starting ) (*f->callbacks->starting)(f); break; case CLOSING: f->state = INITIAL; PPP_UNTIMEOUT(fsm_timeout, (caddr_t) f); /* Cancel timeout */ break; case STOPPING: case REQSENT: case ACKRCVD: case ACKSENT: f->state = STARTING; PPP_UNTIMEOUT(fsm_timeout, (caddr_t) f); /* Cancel timeout */ break; case OPENED: if( f->callbacks->down ) (*f->callbacks->down)(f); f->state = STARTING; break; default: FSMDEBUG((LOG_INFO, "%s: Down event in state %d!", PROTO_NAME(f), f->state)); }}/* * fsm_open - Link is allowed to come up. */voidfsm_open(f) fsm *f;{ switch( f->state ){ case INITIAL: f->state = STARTING; if( f->callbacks->starting ) (*f->callbacks->starting)(f); break; case CLOSED: if( f->flags & OPT_SILENT ) f->state = STOPPED; else { /* Send an initial configure-request */ fsm_sconfreq(f, 0); f->state = REQSENT; } break; case CLOSING: f->state = STOPPING; /* fall through */ case STOPPED: case OPENED: if( f->flags & OPT_RESTART ){ fsm_lowerdown(f); fsm_lowerup(f); } break; }}/* * fsm_close - Start closing connection. * * Cancel timeouts and either initiate close or possibly go directly to * the CLOSED state. */voidfsm_close(f) fsm *f;{ switch( f->state ){ case STARTING: f->state = INITIAL; break; case STOPPED: f->state = CLOSED; break; case STOPPING: f->state = CLOSING; break; case REQSENT: case ACKRCVD: case ACKSENT: case OPENED: if( f->state != OPENED ) PPP_UNTIMEOUT(fsm_timeout, (caddr_t) f); /* Cancel timeout */ else if( f->callbacks->down ) (*f->callbacks->down)(f); /* Inform upper layers we're down */ /* Init restart counter, send Terminate-Request */ f->retransmits = f->maxtermtransmits; fsm_sdata(f, TERMREQ, f->reqid = ++f->id, NULL, 0); PPP_TIMEOUT(fsm_timeout, (caddr_t) f, f->timeouttime); --f->retransmits; f->state = CLOSING; break; }}/* * fsm_timeout - Timeout expired. */static voidfsm_timeout(arg) caddr_t arg;{ fsm *f = (fsm *) arg; switch (f->state) { case CLOSING: case STOPPING: if( f->retransmits <= 0 ){ /* * We've waited for an ack long enough. Peer probably heard us. */ f->state = (f->state == CLOSING)? CLOSED: STOPPED; if( f->callbacks->finished ) (*f->callbacks->finished)(f); } else { /* Send Terminate-Request */ fsm_sdata(f, TERMREQ, f->reqid = ++f->id, NULL, 0); PPP_TIMEOUT(fsm_timeout, (caddr_t) f, f->timeouttime); --f->retransmits; } break; case REQSENT: case ACKRCVD: case ACKSENT: if (f->retransmits <= 0) { syslog(LOG_WARNING, "%s: timeout sending Config-Requests", PROTO_NAME(f)); f->state = STOPPED; if( (f->flags & OPT_PASSIVE) == 0 && f->callbacks->finished ) (*f->callbacks->finished)(f); } else { /* Retransmit the configure-request */ if (f->callbacks->retransmit) (*f->callbacks->retransmit)(f); fsm_sconfreq(f, 1); /* Re-send Configure-Request */ if( f->state == ACKRCVD ) f->state = REQSENT; } break; default: FSMDEBUG((LOG_INFO, "%s: Timeout event in state %d!", PROTO_NAME(f), f->state)); }}/* * fsm_input - Input packet. */voidfsm_input(f, inpacket, l) fsm *f; u_char *inpacket; int l;{ u_char *inp; u_char code, id; int len; /* * Parse header (code, id and length). * If packet too short, drop it. */ inp = inpacket; if (l < HEADERLEN) { FSMDEBUG((LOG_WARNING, "fsm_input(%x): Rcvd short header.", f->protocol)); return; } GETCHAR(code, inp); GETCHAR(id, inp); GETSHORT(len, inp); if (len < HEADERLEN) { FSMDEBUG((LOG_INFO, "fsm_input(%x): Rcvd illegal length.", f->protocol)); return; } if (len > l) { FSMDEBUG((LOG_INFO, "fsm_input(%x): Rcvd short packet.", f->protocol)); return; } len -= HEADERLEN; /* subtract header length */ if( f->state == INITIAL || f->state == STARTING ){ FSMDEBUG((LOG_INFO, "fsm_input(%x): Rcvd packet in state %d.", f->protocol, f->state)); return; } /* * Action depends on code. */ switch (code) { case CONFREQ: fsm_rconfreq(f, id, inp, len); break; case CONFACK: fsm_rconfack(f, id, inp, len); break; case CONFNAK: case CONFREJ: fsm_rconfnakrej(f, code, id, inp, len); break; case TERMREQ: fsm_rtermreq(f, id); break; case TERMACK: fsm_rtermack(f); break; case CODEREJ: fsm_rcoderej(f, inp, len); break; default: if( !f->callbacks->extcode || !(*f->callbacks->extcode)(f, code, id, inp, len) ) fsm_sdata(f, CODEREJ, ++f->id, inpacket, len + HEADERLEN); break; }}/* * fsm_rconfreq - Receive Configure-Request. */static voidfsm_rconfreq(f, id, inp, len) fsm *f; u_char id; u_char *inp; int len;{ int code = 0, reject_if_disagree; FSMDEBUG((LOG_INFO, "fsm_rconfreq(%s): Rcvd id %d.", PROTO_NAME(f), id)); switch( f->state ){ case CLOSED: /* Go away, we're closed */ fsm_sdata(f, TERMACK, id, NULL, 0); return; case CLOSING: case STOPPING: return; case OPENED: /* Go down and restart negotiation */ if( f->callbacks->down ) (*f->callbacks->down)(f); /* Inform upper layers */ fsm_sconfreq(f, 0); /* Send initial Configure-Request */
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