Annotation of Net2/net/slcompress.c, revision 1.1.1.2

1.1       root        1: /*-
1.1.1.2 ! root        2:  * Copyright (c) 1989, 1991 Regents of the University of California.
1.1       root        3:  * All rights reserved.
                      4:  *
1.1.1.2 ! root        5:  * Redistribution and use in source and binary forms are permitted
        !             6:  * provided that the above copyright notice and this paragraph are
        !             7:  * duplicated in all such forms and that any documentation,
        !             8:  * advertising materials, and other materials related to such
        !             9:  * distribution and use acknowledge that the software was developed
        !            10:  * by the University of California, Berkeley.  The name of the
        !            11:  * University may not be used to endorse or promote products derived
        !            12:  * from this software without specific prior written permission.
        !            13:  * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR
        !            14:  * IMPLIED WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED
        !            15:  * WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR A PARTICULAR PURPOSE.
1.1       root       16:  *
1.1.1.2 ! root       17:  *    Van Jacobson ([email protected]), Dec 31, 1989:
        !            18:  *    - Initial distribution.
1.1       root       19:  */
1.1.1.2 ! root       20: #ifndef lint
        !            21: static char rcsid[] =
        !            22:        "@(#) $Header: /cvsroot/src/sys/net/slcompress.c,v 1.2 1993/03/25 00:28:01 cgd Exp $ (LBL)";
        !            23: #endif
        !            24:   
        !            25: #include <sys/types.h>
1.1       root       26: #include <sys/param.h>
                     27: #include <sys/mbuf.h>
                     28: #include <netinet/in.h>
                     29: #include <netinet/in_systm.h>
                     30: #include <netinet/ip.h>
                     31: #include <netinet/tcp.h>
                     32: 
                     33: #include "slcompress.h"
                     34: 
                     35: #ifndef SL_NO_STATS
                     36: #define INCR(counter) ++comp->counter;
                     37: #else
                     38: #define INCR(counter)
                     39: #endif
                     40: 
                     41: #define BCMP(p1, p2, n) bcmp((char *)(p1), (char *)(p2), (int)(n))
                     42: #define BCOPY(p1, p2, n) bcopy((char *)(p1), (char *)(p2), (int)(n))
                     43: #ifndef KERNEL
                     44: #define ovbcopy bcopy
                     45: #endif
                     46: 
                     47: 
                     48: void
                     49: sl_compress_init(comp)
                     50:        struct slcompress *comp;
                     51: {
                     52:        register u_int i;
                     53:        register struct cstate *tstate = comp->tstate;
                     54: 
                     55:        bzero((char *)comp, sizeof(*comp));
                     56:        for (i = MAX_STATES - 1; i > 0; --i) {
                     57:                tstate[i].cs_id = i;
                     58:                tstate[i].cs_next = &tstate[i - 1];
                     59:        }
                     60:        tstate[0].cs_next = &tstate[MAX_STATES - 1];
                     61:        tstate[0].cs_id = 0;
                     62:        comp->last_cs = &tstate[0];
                     63:        comp->last_recv = 255;
                     64:        comp->last_xmit = 255;
1.1.1.2 ! root       65:        comp->flags = SLF_TOSS;
1.1       root       66: }
                     67: 
                     68: 
                     69: /* ENCODE encodes a number that is known to be non-zero.  ENCODEZ
                     70:  * checks for zero (since zero has to be encoded in the long, 3 byte
                     71:  * form).
                     72:  */
                     73: #define ENCODE(n) { \
                     74:        if ((u_short)(n) >= 256) { \
                     75:                *cp++ = 0; \
                     76:                cp[1] = (n); \
                     77:                cp[0] = (n) >> 8; \
                     78:                cp += 2; \
                     79:        } else { \
                     80:                *cp++ = (n); \
                     81:        } \
                     82: }
                     83: #define ENCODEZ(n) { \
                     84:        if ((u_short)(n) >= 256 || (u_short)(n) == 0) { \
                     85:                *cp++ = 0; \
                     86:                cp[1] = (n); \
                     87:                cp[0] = (n) >> 8; \
                     88:                cp += 2; \
                     89:        } else { \
                     90:                *cp++ = (n); \
                     91:        } \
                     92: }
                     93: 
                     94: #define DECODEL(f) { \
                     95:        if (*cp == 0) {\
                     96:                (f) = htonl(ntohl(f) + ((cp[1] << 8) | cp[2])); \
                     97:                cp += 3; \
                     98:        } else { \
                     99:                (f) = htonl(ntohl(f) + (u_long)*cp++); \
                    100:        } \
                    101: }
                    102: 
                    103: #define DECODES(f) { \
                    104:        if (*cp == 0) {\
                    105:                (f) = htons(ntohs(f) + ((cp[1] << 8) | cp[2])); \
                    106:                cp += 3; \
                    107:        } else { \
                    108:                (f) = htons(ntohs(f) + (u_long)*cp++); \
                    109:        } \
                    110: }
                    111: 
                    112: #define DECODEU(f) { \
                    113:        if (*cp == 0) {\
                    114:                (f) = htons((cp[1] << 8) | cp[2]); \
                    115:                cp += 3; \
                    116:        } else { \
                    117:                (f) = htons((u_long)*cp++); \
                    118:        } \
                    119: }
                    120: 
                    121: 
                    122: u_char
                    123: sl_compress_tcp(m, ip, comp, compress_cid)
                    124:        struct mbuf *m;
                    125:        register struct ip *ip;
                    126:        struct slcompress *comp;
                    127:        int compress_cid;
                    128: {
                    129:        register struct cstate *cs = comp->last_cs->cs_next;
                    130:        register u_int hlen = ip->ip_hl;
                    131:        register struct tcphdr *oth;
                    132:        register struct tcphdr *th;
                    133:        register u_int deltaS, deltaA;
                    134:        register u_int changes = 0;
                    135:        u_char new_seq[16];
                    136:        register u_char *cp = new_seq;
                    137: 
                    138:        /*
                    139:         * Bail if this is an IP fragment or if the TCP packet isn't
                    140:         * `compressible' (i.e., ACK isn't set or some other control bit is
                    141:         * set).  (We assume that the caller has already made sure the
                    142:         * packet is IP proto TCP).
                    143:         */
                    144:        if ((ip->ip_off & htons(0x3fff)) || m->m_len < 40)
                    145:                return (TYPE_IP);
                    146: 
                    147:        th = (struct tcphdr *)&((int *)ip)[hlen];
                    148:        if ((th->th_flags & (TH_SYN|TH_FIN|TH_RST|TH_ACK)) != TH_ACK)
                    149:                return (TYPE_IP);
                    150:        /*
                    151:         * Packet is compressible -- we're going to send either a
                    152:         * COMPRESSED_TCP or UNCOMPRESSED_TCP packet.  Either way we need
                    153:         * to locate (or create) the connection state.  Special case the
                    154:         * most recently used connection since it's most likely to be used
                    155:         * again & we don't have to do any reordering if it's used.
                    156:         */
                    157:        INCR(sls_packets)
                    158:        if (ip->ip_src.s_addr != cs->cs_ip.ip_src.s_addr ||
                    159:            ip->ip_dst.s_addr != cs->cs_ip.ip_dst.s_addr ||
                    160:            *(int *)th != ((int *)&cs->cs_ip)[cs->cs_ip.ip_hl]) {
                    161:                /*
                    162:                 * Wasn't the first -- search for it.
                    163:                 *
                    164:                 * States are kept in a circularly linked list with
                    165:                 * last_cs pointing to the end of the list.  The
                    166:                 * list is kept in lru order by moving a state to the
                    167:                 * head of the list whenever it is referenced.  Since
                    168:                 * the list is short and, empirically, the connection
                    169:                 * we want is almost always near the front, we locate
                    170:                 * states via linear search.  If we don't find a state
                    171:                 * for the datagram, the oldest state is (re-)used.
                    172:                 */
                    173:                register struct cstate *lcs;
                    174:                register struct cstate *lastcs = comp->last_cs;
                    175: 
                    176:                do {
                    177:                        lcs = cs; cs = cs->cs_next;
                    178:                        INCR(sls_searches)
                    179:                        if (ip->ip_src.s_addr == cs->cs_ip.ip_src.s_addr
                    180:                            && ip->ip_dst.s_addr == cs->cs_ip.ip_dst.s_addr
                    181:                            && *(int *)th == ((int *)&cs->cs_ip)[cs->cs_ip.ip_hl])
                    182:                                goto found;
                    183:                } while (cs != lastcs);
                    184: 
                    185:                /*
                    186:                 * Didn't find it -- re-use oldest cstate.  Send an
                    187:                 * uncompressed packet that tells the other side what
                    188:                 * connection number we're using for this conversation.
                    189:                 * Note that since the state list is circular, the oldest
                    190:                 * state points to the newest and we only need to set
                    191:                 * last_cs to update the lru linkage.
                    192:                 */
                    193:                INCR(sls_misses)
                    194:                comp->last_cs = lcs;
                    195:                hlen += th->th_off;
                    196:                hlen <<= 2;
1.1.1.2 ! root      197:                if (hlen > m->m_len)
        !           198:                        return (TYPE_IP);
1.1       root      199:                goto uncompressed;
                    200: 
                    201:        found:
                    202:                /*
                    203:                 * Found it -- move to the front on the connection list.
                    204:                 */
                    205:                if (cs == lastcs)
                    206:                        comp->last_cs = lcs;
                    207:                else {
                    208:                        lcs->cs_next = cs->cs_next;
                    209:                        cs->cs_next = lastcs->cs_next;
                    210:                        lastcs->cs_next = cs;
                    211:                }
                    212:        }
                    213: 
                    214:        /*
                    215:         * Make sure that only what we expect to change changed. The first
                    216:         * line of the `if' checks the IP protocol version, header length &
                    217:         * type of service.  The 2nd line checks the "Don't fragment" bit.
                    218:         * The 3rd line checks the time-to-live and protocol (the protocol
                    219:         * check is unnecessary but costless).  The 4th line checks the TCP
                    220:         * header length.  The 5th line checks IP options, if any.  The 6th
                    221:         * line checks TCP options, if any.  If any of these things are
                    222:         * different between the previous & current datagram, we send the
                    223:         * current datagram `uncompressed'.
                    224:         */
                    225:        oth = (struct tcphdr *)&((int *)&cs->cs_ip)[hlen];
                    226:        deltaS = hlen;
                    227:        hlen += th->th_off;
                    228:        hlen <<= 2;
1.1.1.2 ! root      229:        if (hlen > m->m_len)
        !           230:                return (TYPE_IP);
1.1       root      231: 
                    232:        if (((u_short *)ip)[0] != ((u_short *)&cs->cs_ip)[0] ||
                    233:            ((u_short *)ip)[3] != ((u_short *)&cs->cs_ip)[3] ||
                    234:            ((u_short *)ip)[4] != ((u_short *)&cs->cs_ip)[4] ||
                    235:            th->th_off != oth->th_off ||
                    236:            (deltaS > 5 &&
                    237:             BCMP(ip + 1, &cs->cs_ip + 1, (deltaS - 5) << 2)) ||
                    238:            (th->th_off > 5 &&
                    239:             BCMP(th + 1, oth + 1, (th->th_off - 5) << 2)))
                    240:                goto uncompressed;
                    241: 
                    242:        /*
                    243:         * Figure out which of the changing fields changed.  The
                    244:         * receiver expects changes in the order: urgent, window,
                    245:         * ack, seq (the order minimizes the number of temporaries
                    246:         * needed in this section of code).
                    247:         */
                    248:        if (th->th_flags & TH_URG) {
                    249:                deltaS = ntohs(th->th_urp);
                    250:                ENCODEZ(deltaS);
                    251:                changes |= NEW_U;
                    252:        } else if (th->th_urp != oth->th_urp)
                    253:                /* argh! URG not set but urp changed -- a sensible
                    254:                 * implementation should never do this but RFC793
                    255:                 * doesn't prohibit the change so we have to deal
                    256:                 * with it. */
                    257:                 goto uncompressed;
                    258: 
                    259:        if (deltaS = (u_short)(ntohs(th->th_win) - ntohs(oth->th_win))) {
                    260:                ENCODE(deltaS);
                    261:                changes |= NEW_W;
                    262:        }
                    263: 
                    264:        if (deltaA = ntohl(th->th_ack) - ntohl(oth->th_ack)) {
                    265:                if (deltaA > 0xffff)
                    266:                        goto uncompressed;
                    267:                ENCODE(deltaA);
                    268:                changes |= NEW_A;
                    269:        }
                    270: 
                    271:        if (deltaS = ntohl(th->th_seq) - ntohl(oth->th_seq)) {
                    272:                if (deltaS > 0xffff)
                    273:                        goto uncompressed;
                    274:                ENCODE(deltaS);
                    275:                changes |= NEW_S;
                    276:        }
                    277: 
                    278:        switch(changes) {
                    279: 
                    280:        case 0:
                    281:                /*
                    282:                 * Nothing changed. If this packet contains data and the
                    283:                 * last one didn't, this is probably a data packet following
                    284:                 * an ack (normal on an interactive connection) and we send
                    285:                 * it compressed.  Otherwise it's probably a retransmit,
                    286:                 * retransmitted ack or window probe.  Send it uncompressed
                    287:                 * in case the other side missed the compressed version.
                    288:                 */
                    289:                if (ip->ip_len != cs->cs_ip.ip_len &&
                    290:                    ntohs(cs->cs_ip.ip_len) == hlen)
                    291:                        break;
                    292: 
                    293:                /* (fall through) */
                    294: 
                    295:        case SPECIAL_I:
                    296:        case SPECIAL_D:
                    297:                /*
                    298:                 * actual changes match one of our special case encodings --
                    299:                 * send packet uncompressed.
                    300:                 */
                    301:                goto uncompressed;
                    302: 
                    303:        case NEW_S|NEW_A:
                    304:                if (deltaS == deltaA &&
                    305:                    deltaS == ntohs(cs->cs_ip.ip_len) - hlen) {
                    306:                        /* special case for echoed terminal traffic */
                    307:                        changes = SPECIAL_I;
                    308:                        cp = new_seq;
                    309:                }
                    310:                break;
                    311: 
                    312:        case NEW_S:
                    313:                if (deltaS == ntohs(cs->cs_ip.ip_len) - hlen) {
                    314:                        /* special case for data xfer */
                    315:                        changes = SPECIAL_D;
                    316:                        cp = new_seq;
                    317:                }
                    318:                break;
                    319:        }
                    320: 
                    321:        deltaS = ntohs(ip->ip_id) - ntohs(cs->cs_ip.ip_id);
                    322:        if (deltaS != 1) {
                    323:                ENCODEZ(deltaS);
                    324:                changes |= NEW_I;
                    325:        }
                    326:        if (th->th_flags & TH_PUSH)
                    327:                changes |= TCP_PUSH_BIT;
                    328:        /*
                    329:         * Grab the cksum before we overwrite it below.  Then update our
                    330:         * state with this packet's header.
                    331:         */
                    332:        deltaA = ntohs(th->th_sum);
                    333:        BCOPY(ip, &cs->cs_ip, hlen);
                    334: 
                    335:        /*
                    336:         * We want to use the original packet as our compressed packet.
                    337:         * (cp - new_seq) is the number of bytes we need for compressed
                    338:         * sequence numbers.  In addition we need one byte for the change
                    339:         * mask, one for the connection id and two for the tcp checksum.
                    340:         * So, (cp - new_seq) + 4 bytes of header are needed.  hlen is how
                    341:         * many bytes of the original packet to toss so subtract the two to
                    342:         * get the new packet size.
                    343:         */
                    344:        deltaS = cp - new_seq;
                    345:        cp = (u_char *)ip;
                    346:        if (compress_cid == 0 || comp->last_xmit != cs->cs_id) {
                    347:                comp->last_xmit = cs->cs_id;
                    348:                hlen -= deltaS + 4;
                    349:                cp += hlen;
                    350:                *cp++ = changes | NEW_C;
                    351:                *cp++ = cs->cs_id;
                    352:        } else {
                    353:                hlen -= deltaS + 3;
                    354:                cp += hlen;
                    355:                *cp++ = changes;
                    356:        }
                    357:        m->m_len -= hlen;
                    358:        m->m_data += hlen;
                    359:        *cp++ = deltaA >> 8;
                    360:        *cp++ = deltaA;
                    361:        BCOPY(new_seq, cp, deltaS);
                    362:        INCR(sls_compressed)
                    363:        return (TYPE_COMPRESSED_TCP);
                    364: 
                    365:        /*
                    366:         * Update connection state cs & send uncompressed packet ('uncompressed'
                    367:         * means a regular ip/tcp packet but with the 'conversation id' we hope
                    368:         * to use on future compressed packets in the protocol field).
                    369:         */
                    370: uncompressed:
                    371:        BCOPY(ip, &cs->cs_ip, hlen);
                    372:        ip->ip_p = cs->cs_id;
                    373:        comp->last_xmit = cs->cs_id;
                    374:        return (TYPE_UNCOMPRESSED_TCP);
                    375: }
                    376: 
                    377: 
                    378: int
                    379: sl_uncompress_tcp(bufp, len, type, comp)
                    380:        u_char **bufp;
                    381:        int len;
                    382:        u_int type;
                    383:        struct slcompress *comp;
                    384: {
                    385:        register u_char *cp;
                    386:        register u_int hlen, changes;
                    387:        register struct tcphdr *th;
                    388:        register struct cstate *cs;
                    389:        register struct ip *ip;
                    390: 
                    391:        switch (type) {
                    392: 
                    393:        case TYPE_UNCOMPRESSED_TCP:
                    394:                ip = (struct ip *) *bufp;
                    395:                if (ip->ip_p >= MAX_STATES)
                    396:                        goto bad;
                    397:                cs = &comp->rstate[comp->last_recv = ip->ip_p];
                    398:                comp->flags &=~ SLF_TOSS;
                    399:                ip->ip_p = IPPROTO_TCP;
                    400:                hlen = ip->ip_hl;
                    401:                hlen += ((struct tcphdr *)&((int *)ip)[hlen])->th_off;
                    402:                hlen <<= 2;
                    403:                BCOPY(ip, &cs->cs_ip, hlen);
                    404:                cs->cs_ip.ip_sum = 0;
                    405:                cs->cs_hlen = hlen;
                    406:                INCR(sls_uncompressedin)
                    407:                return (len);
                    408: 
                    409:        default:
                    410:                goto bad;
                    411: 
                    412:        case TYPE_COMPRESSED_TCP:
                    413:                break;
                    414:        }
                    415:        /* We've got a compressed packet. */
                    416:        INCR(sls_compressedin)
                    417:        cp = *bufp;
                    418:        changes = *cp++;
                    419:        if (changes & NEW_C) {
                    420:                /* Make sure the state index is in range, then grab the state.
                    421:                 * If we have a good state index, clear the 'discard' flag. */
                    422:                if (*cp >= MAX_STATES)
                    423:                        goto bad;
                    424: 
                    425:                comp->flags &=~ SLF_TOSS;
                    426:                comp->last_recv = *cp++;
                    427:        } else {
                    428:                /* this packet has an implicit state index.  If we've
                    429:                 * had a line error since the last time we got an
                    430:                 * explicit state index, we have to toss the packet. */
                    431:                if (comp->flags & SLF_TOSS) {
                    432:                        INCR(sls_tossed)
                    433:                        return (0);
                    434:                }
                    435:        }
                    436:        cs = &comp->rstate[comp->last_recv];
                    437:        hlen = cs->cs_ip.ip_hl << 2;
                    438:        th = (struct tcphdr *)&((u_char *)&cs->cs_ip)[hlen];
                    439:        th->th_sum = htons((*cp << 8) | cp[1]);
                    440:        cp += 2;
                    441:        if (changes & TCP_PUSH_BIT)
                    442:                th->th_flags |= TH_PUSH;
                    443:        else
                    444:                th->th_flags &=~ TH_PUSH;
                    445: 
                    446:        switch (changes & SPECIALS_MASK) {
                    447:        case SPECIAL_I:
                    448:                {
                    449:                register u_int i = ntohs(cs->cs_ip.ip_len) - cs->cs_hlen;
                    450:                th->th_ack = htonl(ntohl(th->th_ack) + i);
                    451:                th->th_seq = htonl(ntohl(th->th_seq) + i);
                    452:                }
                    453:                break;
                    454: 
                    455:        case SPECIAL_D:
                    456:                th->th_seq = htonl(ntohl(th->th_seq) + ntohs(cs->cs_ip.ip_len)
                    457:                                   - cs->cs_hlen);
                    458:                break;
                    459: 
                    460:        default:
                    461:                if (changes & NEW_U) {
                    462:                        th->th_flags |= TH_URG;
                    463:                        DECODEU(th->th_urp)
                    464:                } else
                    465:                        th->th_flags &=~ TH_URG;
                    466:                if (changes & NEW_W)
                    467:                        DECODES(th->th_win)
                    468:                if (changes & NEW_A)
                    469:                        DECODEL(th->th_ack)
                    470:                if (changes & NEW_S)
                    471:                        DECODEL(th->th_seq)
                    472:                break;
                    473:        }
                    474:        if (changes & NEW_I) {
                    475:                DECODES(cs->cs_ip.ip_id)
                    476:        } else
                    477:                cs->cs_ip.ip_id = htons(ntohs(cs->cs_ip.ip_id) + 1);
                    478: 
                    479:        /*
                    480:         * At this point, cp points to the first byte of data in the
                    481:         * packet.  If we're not aligned on a 4-byte boundary, copy the
                    482:         * data down so the ip & tcp headers will be aligned.  Then back up
                    483:         * cp by the tcp/ip header length to make room for the reconstructed
                    484:         * header (we assume the packet we were handed has enough space to
                    485:         * prepend 128 bytes of header).  Adjust the length to account for
                    486:         * the new header & fill in the IP total length.
                    487:         */
                    488:        len -= (cp - *bufp);
                    489:        if (len < 0)
                    490:                /* we must have dropped some characters (crc should detect
                    491:                 * this but the old slip framing won't) */
                    492:                goto bad;
                    493: 
                    494:        if ((int)cp & 3) {
                    495:                if (len > 0)
                    496:                        (void) ovbcopy(cp, (caddr_t)((int)cp &~ 3), len);
                    497:                cp = (u_char *)((int)cp &~ 3);
                    498:        }
                    499:        cp -= cs->cs_hlen;
                    500:        len += cs->cs_hlen;
                    501:        cs->cs_ip.ip_len = htons(len);
                    502:        BCOPY(&cs->cs_ip, cp, cs->cs_hlen);
                    503:        *bufp = cp;
                    504: 
                    505:        /* recompute the ip header checksum */
                    506:        {
                    507:                register u_short *bp = (u_short *)cp;
                    508:                for (changes = 0; hlen > 0; hlen -= 2)
                    509:                        changes += *bp++;
                    510:                changes = (changes & 0xffff) + (changes >> 16);
                    511:                changes = (changes & 0xffff) + (changes >> 16);
                    512:                ((struct ip *)cp)->ip_sum = ~ changes;
                    513:        }
                    514:        return (len);
                    515: bad:
                    516:        comp->flags |= SLF_TOSS;
                    517:        INCR(sls_errorin)
                    518:        return (0);
                    519: }

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