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53c9f6c0c4
o Supporting SYNC SIO device (But need a device driver) - add "set speed sync" o Fixing bug for Predictor-1 function. o Add new parameter that re-sent interval for set timeout commands. o Improving RTT (Round Trip Time) and reducing processor time. - Previous Timer service was using polling, and now using SIGALRM ;-) - A 0.94beta2 will not work correctly.... -- Follows are additinal feature not including 0.94beta2 o Support Proxy ARP - add "enable/disable proxy" commands o Marging common routine in CHAP/PAP. o Enhancing LCP/IPCP log information. o Support local Authfication connection on port 300x and tty. - You can set up pair of your "hostname -s" and password in ppp.secret. if either ppp.secret file nor your hostname line don't exist, It will notify a message and working as same as previous version.(Backword compatibility) - If you did set up them, It's allow connection but nothing to do except help and passwd command. - add "passwd yourpasswd" commands o Support afilter - keep Alive filter that a packet can send/receiving according to ifilter/ofilter but doesn't count it as preventing idle timer expires. - Same syntax of other filters. o Fixing bugs reported by current user for previous one. Thanks !! Reviewed by: Atsushi Murai (amurai@spec.co.jp)
219 lines
5.0 KiB
C
219 lines
5.0 KiB
C
#include "fsm.h"
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#include "hdlc.h"
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#include "lcpproto.h"
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#include "ccp.h"
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/*
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*
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* $Id:$
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*
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* pred.c -- Test program for Dave Rand's rendition of the
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* predictor algorithm
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* Updated by: iand@labtam.labtam.oz.au (Ian Donaldson)
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* Updated by: Carsten Bormann <cabo@cs.tu-berlin.de>
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* Original : Dave Rand <dlr@bungi.com>/<dave_rand@novell.com>
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*/
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/* The following hash code is the heart of the algorithm:
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* It builds a sliding hash sum of the previous 3-and-a-bit characters
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* which will be used to index the guess table.
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* A better hash function would result in additional compression,
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* at the expense of time.
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*/
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#define IHASH(x) iHash = (iHash << 4) ^ (x)
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#define OHASH(x) oHash = (oHash << 4) ^ (x)
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static unsigned short int iHash, oHash;
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static unsigned char InputGuessTable[65536];
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static unsigned char OutputGuessTable[65536];
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static int
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compress(source, dest, len)
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unsigned char *source, *dest;
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int len;
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{
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int i, bitmask;
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unsigned char *flagdest, flags, *orgdest;
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orgdest = dest;
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while (len) {
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flagdest = dest++; flags = 0; /* All guess wrong initially */
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for (bitmask=1, i=0; i < 8 && len; i++, bitmask <<= 1) {
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if (OutputGuessTable[oHash] == *source) {
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flags |= bitmask; /* Guess was right - don't output */
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} else {
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OutputGuessTable[oHash] = *source;
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*dest++ = *source; /* Guess wrong, output char */
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}
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OHASH(*source++);len--;
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}
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*flagdest = flags;
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}
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return(dest - orgdest);
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}
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static void
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SyncTable(source, dest, len)
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unsigned char *source, *dest;
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int len;
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{
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int i;
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while (len--) {
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if (InputGuessTable[iHash] != *source) {
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InputGuessTable[iHash] = *source;
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}
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IHASH(*dest++ = *source++);
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}
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}
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static int
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decompress(source, dest, len)
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unsigned char *source, *dest;
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int len;
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{
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int i, bitmask;
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unsigned char flags, *orgdest;
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orgdest = dest;
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while (len) {
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flags = *source++;
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len--;
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for (i=0, bitmask = 1; i < 8; i++, bitmask <<= 1) {
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if (flags & bitmask) {
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*dest = InputGuessTable[iHash]; /* Guess correct */
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} else {
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if (!len)
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break; /* we seem to be really done -- cabo */
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InputGuessTable[iHash] = *source; /* Guess wrong */
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*dest = *source++; /* Read from source */
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len--;
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}
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IHASH(*dest++);
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}
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}
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return(dest - orgdest);
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}
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#define SIZ1 2048
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void
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Pred1Init(direction)
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int direction;
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{
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if (direction & 1) { /* Input part */
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iHash = 0;
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bzero(InputGuessTable, sizeof(InputGuessTable));
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}
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if (direction & 2) { /* Output part */
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oHash = 0;
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bzero(OutputGuessTable, sizeof(OutputGuessTable));
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}
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}
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void
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Pred1Output(pri, proto, bp)
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int pri;
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u_short proto;
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struct mbuf *bp;
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{
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struct mbuf *mwp;
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u_char *cp, *wp, *hp;
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int orglen, len;
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u_char bufp[SIZ1];
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u_short fcs;
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orglen = plength(bp) + 2; /* add count of proto */
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mwp = mballoc((orglen+2)/8*9+12, MB_HDLCOUT);
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hp = wp = MBUF_CTOP(mwp);
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cp = bufp;
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*wp++ = *cp++ = orglen >> 8;
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*wp++ = *cp++ = orglen & 0377;
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*cp++ = proto >> 8;
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*cp++ = proto & 0377;
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mbread(bp, cp, orglen-2);
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fcs = HdlcFcs(INITFCS, bufp, 2+orglen);
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fcs = ~fcs;
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len = compress(bufp + 2, wp, orglen);
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#ifdef DEBUG
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logprintf("orglen (%d) --> len (%d)\n", orglen, len);
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#endif
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CcpInfo.orgout += orglen;
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if (len < orglen) {
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*hp |= 0x80;
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wp += len;
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CcpInfo.compout += len;
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} else {
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bcopy(bufp+2, wp, orglen);
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wp += orglen;
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CcpInfo.compout += orglen;
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}
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*wp++ = fcs & 0377;
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*wp++ = fcs >> 8;
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mwp->cnt = wp - MBUF_CTOP(mwp);
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HdlcOutput(pri, PROTO_COMPD, mwp);
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}
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void
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Pred1Input(bp)
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struct mbuf *bp;
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{
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u_char *cp, *pp;
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int len, olen, len1;
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struct mbuf *wp;
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u_char *bufp;
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u_short fcs, proto;
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wp = mballoc(SIZ1, MB_IPIN);
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cp = MBUF_CTOP(bp);
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olen = plength(bp);
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pp = bufp = MBUF_CTOP(wp);
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*pp++ = *cp & 0177;
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len = *cp++ << 8;
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*pp++ = *cp;
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len += *cp++;
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CcpInfo.orgin += len & 0x7fff;
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if (len & 0x8000) {
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len1 = decompress(cp, pp, olen - 4);
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CcpInfo.compin += olen;
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len &= 0x7fff;
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if (len != len1) { /* Error is detected. Send reset request */
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CcpSendResetReq(&CcpFsm);
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pfree(bp);
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return;
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}
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cp += olen - 4;
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pp += len1;
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} else {
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CcpInfo.compin += len;
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SyncTable(cp, pp, len);
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cp += len;
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pp += len;
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}
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*pp++ = *cp++; /* CRC */
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*pp++ = *cp++;
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fcs = HdlcFcs(INITFCS, bufp, wp->cnt = pp - bufp);
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#ifdef DEBUG
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logprintf("fcs = %04x (%s), len = %x, olen = %x\n",
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fcs, (fcs == GOODFCS)? "good" : "bad", len, olen);
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#endif
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if (fcs == GOODFCS) {
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wp->offset += 2; /* skip length */
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wp->cnt -= 4; /* skip length & CRC */
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pp = MBUF_CTOP(wp);
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proto = *pp++;
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if (proto & 1) {
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wp->offset++;
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wp->cnt--;
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} else {
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wp->offset += 2;
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wp->cnt -= 2;
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proto = (proto << 8) | *pp++;
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}
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DecodePacket(proto, wp);
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}
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pfree(bp);
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}
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