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bsd-comp.c revision 1.18.4.1
      1  1.18.4.1     skrll /*	$NetBSD: bsd-comp.c,v 1.18.4.1 2009/01/19 13:20:11 skrll Exp $	*/
      2       1.7  christos /*	Id: bsd-comp.c,v 1.6 1996/08/28 06:31:58 paulus Exp 	*/
      3       1.1    paulus 
      4       1.1    paulus /* Because this code is derived from the 4.3BSD compress source:
      5       1.1    paulus  *
      6       1.1    paulus  *
      7       1.1    paulus  * Copyright (c) 1985, 1986 The Regents of the University of California.
      8       1.1    paulus  * All rights reserved.
      9       1.1    paulus  *
     10       1.1    paulus  * This code is derived from software contributed to Berkeley by
     11       1.1    paulus  * James A. Woods, derived from original work by Spencer Thomas
     12       1.1    paulus  * and Joseph Orost.
     13       1.1    paulus  *
     14       1.1    paulus  * Redistribution and use in source and binary forms, with or without
     15       1.1    paulus  * modification, are permitted provided that the following conditions
     16       1.1    paulus  * are met:
     17       1.1    paulus  * 1. Redistributions of source code must retain the above copyright
     18       1.1    paulus  *    notice, this list of conditions and the following disclaimer.
     19       1.1    paulus  * 2. Redistributions in binary form must reproduce the above copyright
     20       1.1    paulus  *    notice, this list of conditions and the following disclaimer in the
     21       1.1    paulus  *    documentation and/or other materials provided with the distribution.
     22      1.12       agc  * 3. Neither the name of the University nor the names of its contributors
     23       1.1    paulus  *    may be used to endorse or promote products derived from this software
     24       1.1    paulus  *    without specific prior written permission.
     25       1.1    paulus  *
     26       1.1    paulus  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     27       1.1    paulus  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     28       1.1    paulus  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     29       1.1    paulus  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     30       1.1    paulus  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     31       1.1    paulus  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     32       1.1    paulus  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     33       1.1    paulus  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     34       1.1    paulus  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     35       1.1    paulus  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     36       1.1    paulus  * SUCH DAMAGE.
     37       1.1    paulus  */
     38       1.1    paulus 
     39       1.1    paulus /*
     40       1.1    paulus  * This version is for use with mbufs on BSD-derived systems.
     41       1.1    paulus  */
     42      1.10     lukem 
     43      1.10     lukem #include <sys/cdefs.h>
     44  1.18.4.1     skrll __KERNEL_RCSID(0, "$NetBSD: bsd-comp.c,v 1.18.4.1 2009/01/19 13:20:11 skrll Exp $");
     45       1.1    paulus 
     46       1.1    paulus #include <sys/param.h>
     47       1.2  christos #include <sys/systm.h>
     48       1.1    paulus #include <sys/mbuf.h>
     49       1.1    paulus #include <sys/socket.h>
     50  1.18.4.1     skrll #include <sys/module.h>
     51       1.1    paulus #include <net/if.h>
     52       1.1    paulus #include <net/if_types.h>
     53       1.1    paulus #include <net/ppp_defs.h>
     54       1.1    paulus #include <net/if_ppp.h>
     55       1.1    paulus 
     56       1.1    paulus #define PACKETPTR	struct mbuf *
     57       1.1    paulus #include <net/ppp-comp.h>
     58       1.1    paulus 
     59       1.1    paulus #if DO_BSD_COMPRESS
     60       1.1    paulus /*
     61       1.1    paulus  * PPP "BSD compress" compression
     62       1.1    paulus  *  The differences between this compression and the classic BSD LZW
     63       1.1    paulus  *  source are obvious from the requirement that the classic code worked
     64       1.1    paulus  *  with files while this handles arbitrarily long streams that
     65       1.1    paulus  *  are broken into packets.  They are:
     66       1.1    paulus  *
     67       1.1    paulus  *	When the code size expands, a block of junk is not emitted by
     68       1.1    paulus  *	    the compressor and not expected by the decompressor.
     69       1.1    paulus  *
     70       1.1    paulus  *	New codes are not necessarily assigned every time an old
     71       1.1    paulus  *	    code is output by the compressor.  This is because a packet
     72       1.1    paulus  *	    end forces a code to be emitted, but does not imply that a
     73       1.1    paulus  *	    new sequence has been seen.
     74       1.1    paulus  *
     75       1.1    paulus  *	The compression ratio is checked at the first end of a packet
     76       1.1    paulus  *	    after the appropriate gap.	Besides simplifying and speeding
     77       1.1    paulus  *	    things up, this makes it more likely that the transmitter
     78       1.1    paulus  *	    and receiver will agree when the dictionary is cleared when
     79       1.1    paulus  *	    compression is not going well.
     80       1.1    paulus  */
     81       1.1    paulus 
     82       1.1    paulus /*
     83       1.1    paulus  * A dictionary for doing BSD compress.
     84       1.1    paulus  */
     85       1.1    paulus struct bsd_db {
     86       1.1    paulus     int	    totlen;			/* length of this structure */
     87       1.1    paulus     u_int   hsize;			/* size of the hash table */
     88       1.1    paulus     u_char  hshift;			/* used in hash function */
     89       1.1    paulus     u_char  n_bits;			/* current bits/code */
     90       1.1    paulus     u_char  maxbits;
     91       1.1    paulus     u_char  debug;
     92       1.1    paulus     u_char  unit;
     93      1.17      matt     uint16_t seqno;			/* sequence # of next packet */
     94       1.1    paulus     u_int   hdrlen;			/* header length to preallocate */
     95       1.1    paulus     u_int   mru;
     96       1.1    paulus     u_int   maxmaxcode;			/* largest valid code */
     97       1.1    paulus     u_int   max_ent;			/* largest code in use */
     98       1.1    paulus     u_int   in_count;			/* uncompressed bytes, aged */
     99       1.1    paulus     u_int   bytes_out;			/* compressed bytes, aged */
    100       1.1    paulus     u_int   ratio;			/* recent compression ratio */
    101       1.1    paulus     u_int   checkpoint;			/* when to next check the ratio */
    102       1.1    paulus     u_int   clear_count;		/* times dictionary cleared */
    103       1.1    paulus     u_int   incomp_count;		/* incompressible packets */
    104       1.1    paulus     u_int   incomp_bytes;		/* incompressible bytes */
    105       1.1    paulus     u_int   uncomp_count;		/* uncompressed packets */
    106       1.1    paulus     u_int   uncomp_bytes;		/* uncompressed bytes */
    107       1.1    paulus     u_int   comp_count;			/* compressed packets */
    108       1.1    paulus     u_int   comp_bytes;			/* compressed bytes */
    109      1.17      matt     uint16_t *lens;			/* array of lengths of codes */
    110       1.1    paulus     struct bsd_dict {
    111       1.1    paulus 	union {				/* hash value */
    112      1.17      matt 	    uint32_t	fcode;
    113       1.1    paulus 	    struct {
    114       1.1    paulus #if BYTE_ORDER == LITTLE_ENDIAN
    115      1.17      matt 		uint16_t prefix;	/* preceding code */
    116       1.1    paulus 		u_char	suffix;		/* last character of new code */
    117       1.1    paulus 		u_char	pad;
    118       1.1    paulus #else
    119       1.1    paulus 		u_char	pad;
    120       1.1    paulus 		u_char	suffix;		/* last character of new code */
    121      1.17      matt 		uint16_t prefix;	/* preceding code */
    122       1.1    paulus #endif
    123       1.1    paulus 	    } hs;
    124       1.1    paulus 	} f;
    125      1.17      matt 	uint16_t codem1;		/* output of hash table -1 */
    126      1.17      matt 	uint16_t cptr;			/* map code to hash table entry */
    127       1.1    paulus     } dict[1];
    128       1.1    paulus };
    129       1.1    paulus 
    130       1.1    paulus #define BSD_OVHD	2		/* BSD compress overhead/packet */
    131       1.1    paulus #define BSD_INIT_BITS	BSD_MIN_BITS
    132       1.1    paulus 
    133      1.14   thorpej static void	*bsd_comp_alloc(u_char *options, int opt_len);
    134      1.14   thorpej static void	*bsd_decomp_alloc(u_char *options, int opt_len);
    135      1.14   thorpej static void	bsd_free(void *state);
    136      1.14   thorpej static int	bsd_comp_init(void *state, u_char *options, int opt_len,
    137      1.14   thorpej 			      int unit, int hdrlen, int debug);
    138      1.14   thorpej static int	bsd_decomp_init(void *state, u_char *options, int opt_len,
    139      1.14   thorpej 				int unit, int hdrlen, int mru, int debug);
    140      1.14   thorpej static int	bsd_compress(void *state, struct mbuf **mret,
    141      1.14   thorpej 			     struct mbuf *mp, int slen, int maxolen);
    142      1.14   thorpej static void	bsd_incomp(void *state, struct mbuf *dmsg);
    143      1.14   thorpej static int	bsd_decompress(void *state, struct mbuf *cmp,
    144      1.14   thorpej 			       struct mbuf **dmpp);
    145      1.14   thorpej static void	bsd_reset(void *state);
    146      1.14   thorpej static void	bsd_comp_stats(void *state, struct compstat *stats);
    147       1.1    paulus 
    148       1.1    paulus /*
    149       1.1    paulus  * Procedures exported to if_ppp.c.
    150       1.1    paulus  */
    151  1.18.4.1     skrll static struct compressor ppp_bsd_compress = {
    152  1.18.4.1     skrll     .compress_proto =	CI_BSD_COMPRESS,
    153  1.18.4.1     skrll     .comp_alloc =	bsd_comp_alloc,
    154  1.18.4.1     skrll     .comp_free =	bsd_free,
    155  1.18.4.1     skrll     .comp_init =	bsd_comp_init,
    156  1.18.4.1     skrll     .comp_reset =	bsd_reset,
    157  1.18.4.1     skrll     .compress =		bsd_compress,
    158  1.18.4.1     skrll     .comp_stat =	bsd_comp_stats,
    159  1.18.4.1     skrll     .decomp_alloc =	bsd_decomp_alloc,
    160  1.18.4.1     skrll     .decomp_free =	bsd_free,
    161  1.18.4.1     skrll     .decomp_init =	bsd_decomp_init,
    162  1.18.4.1     skrll     .decomp_reset =	bsd_reset,
    163  1.18.4.1     skrll     .decompress =	bsd_decompress,
    164  1.18.4.1     skrll     .incomp =		bsd_incomp,
    165  1.18.4.1     skrll     .decomp_stat =	bsd_comp_stats,
    166       1.1    paulus };
    167       1.1    paulus 
    168       1.1    paulus /*
    169       1.1    paulus  * the next two codes should not be changed lightly, as they must not
    170       1.1    paulus  * lie within the contiguous general code space.
    171       1.1    paulus  */
    172       1.1    paulus #define CLEAR	256			/* table clear output code */
    173       1.1    paulus #define FIRST	257			/* first free entry */
    174       1.1    paulus #define LAST	255
    175       1.1    paulus 
    176       1.1    paulus #define MAXCODE(b)	((1 << (b)) - 1)
    177       1.1    paulus #define BADCODEM1	MAXCODE(BSD_MAX_BITS)
    178       1.1    paulus 
    179      1.17      matt #define BSD_HASH(prefix,suffix,hshift)	((((uint32_t)(suffix)) << (hshift)) \
    180      1.17      matt 					 ^ (uint32_t)(prefix))
    181      1.17      matt #define BSD_KEY(prefix,suffix)		((((uint32_t)(suffix)) << 16) \
    182      1.17      matt 					 + (uint32_t)(prefix))
    183       1.1    paulus 
    184       1.1    paulus #define CHECK_GAP	10000		/* Ratio check interval */
    185       1.1    paulus 
    186       1.1    paulus #define RATIO_SCALE_LOG	8
    187       1.1    paulus #define RATIO_SCALE	(1<<RATIO_SCALE_LOG)
    188       1.1    paulus #define RATIO_MAX	(0x7fffffff>>RATIO_SCALE_LOG)
    189       1.1    paulus 
    190      1.14   thorpej static void	bsd_clear(struct bsd_db *);
    191      1.14   thorpej static int	bsd_check(struct bsd_db *);
    192      1.14   thorpej static void	*bsd_alloc(u_char *, int, int);
    193      1.14   thorpej static int	bsd_init(struct bsd_db *, u_char *, int, int, int, int,
    194      1.14   thorpej 			 int, int);
    195       1.2  christos 
    196       1.1    paulus /*
    197       1.1    paulus  * clear the dictionary
    198       1.1    paulus  */
    199       1.1    paulus static void
    200      1.14   thorpej bsd_clear(struct bsd_db *db)
    201       1.1    paulus {
    202       1.1    paulus     db->clear_count++;
    203       1.1    paulus     db->max_ent = FIRST-1;
    204       1.1    paulus     db->n_bits = BSD_INIT_BITS;
    205       1.1    paulus     db->ratio = 0;
    206       1.1    paulus     db->bytes_out = 0;
    207       1.1    paulus     db->in_count = 0;
    208       1.1    paulus     db->checkpoint = CHECK_GAP;
    209       1.1    paulus }
    210       1.1    paulus 
    211       1.1    paulus /*
    212       1.1    paulus  * If the dictionary is full, then see if it is time to reset it.
    213       1.1    paulus  *
    214       1.1    paulus  * Compute the compression ratio using fixed-point arithmetic
    215       1.1    paulus  * with 8 fractional bits.
    216       1.1    paulus  *
    217       1.1    paulus  * Since we have an infinite stream instead of a single file,
    218       1.1    paulus  * watch only the local compression ratio.
    219       1.1    paulus  *
    220       1.1    paulus  * Since both peers must reset the dictionary at the same time even in
    221       1.1    paulus  * the absence of CLEAR codes (while packets are incompressible), they
    222       1.1    paulus  * must compute the same ratio.
    223       1.1    paulus  */
    224       1.1    paulus static int				/* 1=output CLEAR */
    225      1.14   thorpej bsd_check(struct bsd_db *db)
    226       1.1    paulus {
    227       1.1    paulus     u_int new_ratio;
    228       1.1    paulus 
    229       1.1    paulus     if (db->in_count >= db->checkpoint) {
    230       1.1    paulus 	/* age the ratio by limiting the size of the counts */
    231       1.1    paulus 	if (db->in_count >= RATIO_MAX
    232       1.1    paulus 	    || db->bytes_out >= RATIO_MAX) {
    233       1.1    paulus 	    db->in_count -= db->in_count/4;
    234       1.1    paulus 	    db->bytes_out -= db->bytes_out/4;
    235       1.1    paulus 	}
    236       1.1    paulus 
    237       1.1    paulus 	db->checkpoint = db->in_count + CHECK_GAP;
    238       1.1    paulus 
    239       1.1    paulus 	if (db->max_ent >= db->maxmaxcode) {
    240       1.1    paulus 	    /* Reset the dictionary only if the ratio is worse,
    241       1.1    paulus 	     * or if it looks as if it has been poisoned
    242       1.1    paulus 	     * by incompressible data.
    243       1.1    paulus 	     *
    244       1.1    paulus 	     * This does not overflow, because
    245       1.1    paulus 	     *	db->in_count <= RATIO_MAX.
    246       1.1    paulus 	     */
    247       1.1    paulus 	    new_ratio = db->in_count << RATIO_SCALE_LOG;
    248       1.1    paulus 	    if (db->bytes_out != 0)
    249       1.1    paulus 		new_ratio /= db->bytes_out;
    250       1.1    paulus 
    251       1.1    paulus 	    if (new_ratio < db->ratio || new_ratio < 1 * RATIO_SCALE) {
    252       1.1    paulus 		bsd_clear(db);
    253       1.1    paulus 		return 1;
    254       1.1    paulus 	    }
    255       1.1    paulus 	    db->ratio = new_ratio;
    256       1.1    paulus 	}
    257       1.1    paulus     }
    258       1.1    paulus     return 0;
    259       1.1    paulus }
    260       1.1    paulus 
    261       1.1    paulus /*
    262       1.1    paulus  * Return statistics.
    263       1.1    paulus  */
    264       1.1    paulus static void
    265      1.14   thorpej bsd_comp_stats(void *state, struct compstat *stats)
    266       1.1    paulus {
    267       1.1    paulus     struct bsd_db *db = (struct bsd_db *) state;
    268       1.1    paulus     u_int out;
    269       1.1    paulus 
    270       1.1    paulus     stats->unc_bytes = db->uncomp_bytes;
    271       1.1    paulus     stats->unc_packets = db->uncomp_count;
    272       1.1    paulus     stats->comp_bytes = db->comp_bytes;
    273       1.1    paulus     stats->comp_packets = db->comp_count;
    274       1.1    paulus     stats->inc_bytes = db->incomp_bytes;
    275       1.1    paulus     stats->inc_packets = db->incomp_count;
    276       1.1    paulus     stats->ratio = db->in_count;
    277       1.1    paulus     out = db->bytes_out;
    278       1.1    paulus     if (stats->ratio <= 0x7fffff)
    279       1.1    paulus 	stats->ratio <<= 8;
    280       1.1    paulus     else
    281       1.1    paulus 	out >>= 8;
    282       1.1    paulus     if (out != 0)
    283       1.1    paulus 	stats->ratio /= out;
    284       1.1    paulus }
    285       1.1    paulus 
    286       1.1    paulus /*
    287       1.1    paulus  * Reset state, as on a CCP ResetReq.
    288       1.1    paulus  */
    289       1.1    paulus static void
    290      1.14   thorpej bsd_reset(void *state)
    291       1.1    paulus {
    292       1.1    paulus     struct bsd_db *db = (struct bsd_db *) state;
    293       1.1    paulus 
    294       1.1    paulus     db->seqno = 0;
    295       1.1    paulus     bsd_clear(db);
    296       1.1    paulus     db->clear_count = 0;
    297       1.1    paulus }
    298       1.1    paulus 
    299       1.1    paulus /*
    300       1.1    paulus  * Allocate space for a (de) compressor.
    301       1.1    paulus  */
    302       1.1    paulus static void *
    303      1.14   thorpej bsd_alloc(u_char *options, int opt_len, int decomp)
    304       1.1    paulus {
    305       1.1    paulus     int bits;
    306       1.1    paulus     u_int newlen, hsize, hshift, maxmaxcode;
    307       1.1    paulus     struct bsd_db *db;
    308       1.1    paulus 
    309       1.4    paulus     if (opt_len < CILEN_BSD_COMPRESS || options[0] != CI_BSD_COMPRESS
    310       1.1    paulus 	|| options[1] != CILEN_BSD_COMPRESS
    311       1.1    paulus 	|| BSD_VERSION(options[2]) != BSD_CURRENT_VERSION)
    312       1.1    paulus 	return NULL;
    313       1.1    paulus     bits = BSD_NBITS(options[2]);
    314       1.1    paulus     switch (bits) {
    315       1.1    paulus     case 9:			/* needs 82152 for both directions */
    316       1.1    paulus     case 10:			/* needs 84144 */
    317       1.1    paulus     case 11:			/* needs 88240 */
    318       1.1    paulus     case 12:			/* needs 96432 */
    319       1.1    paulus 	hsize = 5003;
    320       1.1    paulus 	hshift = 4;
    321       1.1    paulus 	break;
    322       1.1    paulus     case 13:			/* needs 176784 */
    323       1.1    paulus 	hsize = 9001;
    324       1.1    paulus 	hshift = 5;
    325       1.1    paulus 	break;
    326       1.1    paulus     case 14:			/* needs 353744 */
    327       1.1    paulus 	hsize = 18013;
    328       1.1    paulus 	hshift = 6;
    329       1.1    paulus 	break;
    330       1.1    paulus     case 15:			/* needs 691440 */
    331       1.1    paulus 	hsize = 35023;
    332       1.1    paulus 	hshift = 7;
    333       1.1    paulus 	break;
    334       1.1    paulus     case 16:			/* needs 1366160--far too much, */
    335       1.1    paulus 	/* hsize = 69001; */	/* and 69001 is too big for cptr */
    336       1.1    paulus 	/* hshift = 8; */	/* in struct bsd_db */
    337       1.1    paulus 	/* break; */
    338       1.1    paulus     default:
    339       1.1    paulus 	return NULL;
    340       1.1    paulus     }
    341       1.1    paulus 
    342       1.1    paulus     maxmaxcode = MAXCODE(bits);
    343       1.1    paulus     newlen = sizeof(*db) + (hsize-1) * (sizeof(db->dict[0]));
    344      1.18  christos     db = malloc(newlen, M_DEVBUF, M_NOWAIT|M_ZERO);
    345       1.1    paulus     if (!db)
    346       1.1    paulus 	return NULL;
    347       1.1    paulus 
    348       1.1    paulus     if (!decomp) {
    349       1.1    paulus 	db->lens = NULL;
    350       1.1    paulus     } else {
    351       1.8   thorpej 	db->lens = malloc((maxmaxcode+1) * sizeof(db->lens[0]),
    352       1.8   thorpej 	    M_DEVBUF, M_NOWAIT);
    353       1.1    paulus 	if (!db->lens) {
    354       1.8   thorpej 	    free(db, M_DEVBUF);
    355       1.1    paulus 	    return NULL;
    356       1.1    paulus 	}
    357       1.1    paulus     }
    358       1.1    paulus 
    359       1.1    paulus     db->totlen = newlen;
    360       1.1    paulus     db->hsize = hsize;
    361       1.1    paulus     db->hshift = hshift;
    362       1.1    paulus     db->maxmaxcode = maxmaxcode;
    363       1.1    paulus     db->maxbits = bits;
    364       1.1    paulus 
    365       1.1    paulus     return (void *) db;
    366       1.1    paulus }
    367       1.1    paulus 
    368       1.1    paulus static void
    369      1.14   thorpej bsd_free(void *state)
    370       1.1    paulus {
    371       1.1    paulus     struct bsd_db *db = (struct bsd_db *) state;
    372       1.1    paulus 
    373       1.1    paulus     if (db->lens)
    374       1.8   thorpej 	free(db->lens, M_DEVBUF);
    375       1.8   thorpej     free(db, M_DEVBUF);
    376       1.1    paulus }
    377       1.1    paulus 
    378       1.1    paulus static void *
    379      1.14   thorpej bsd_comp_alloc(u_char *options, int opt_len)
    380       1.1    paulus {
    381       1.1    paulus     return bsd_alloc(options, opt_len, 0);
    382       1.1    paulus }
    383       1.1    paulus 
    384       1.1    paulus static void *
    385      1.14   thorpej bsd_decomp_alloc(u_char *options, int opt_len)
    386       1.1    paulus {
    387       1.1    paulus     return bsd_alloc(options, opt_len, 1);
    388       1.1    paulus }
    389       1.1    paulus 
    390       1.1    paulus /*
    391       1.1    paulus  * Initialize the database.
    392       1.1    paulus  */
    393       1.1    paulus static int
    394      1.14   thorpej bsd_init(struct bsd_db *db, u_char *options, int opt_len, int unit, int hdrlen,
    395      1.16  christos     int mru, int debug, int decomp)
    396       1.1    paulus {
    397       1.1    paulus     int i;
    398       1.1    paulus 
    399       1.4    paulus     if (opt_len < CILEN_BSD_COMPRESS || options[0] != CI_BSD_COMPRESS
    400       1.1    paulus 	|| options[1] != CILEN_BSD_COMPRESS
    401       1.1    paulus 	|| BSD_VERSION(options[2]) != BSD_CURRENT_VERSION
    402       1.1    paulus 	|| BSD_NBITS(options[2]) != db->maxbits
    403       1.2  christos 	|| (decomp && db->lens == NULL))
    404       1.1    paulus 	return 0;
    405       1.1    paulus 
    406       1.1    paulus     if (decomp) {
    407       1.1    paulus 	i = LAST+1;
    408       1.1    paulus 	while (i != 0)
    409       1.1    paulus 	    db->lens[--i] = 1;
    410       1.1    paulus     }
    411       1.1    paulus     i = db->hsize;
    412       1.1    paulus     while (i != 0) {
    413       1.1    paulus 	db->dict[--i].codem1 = BADCODEM1;
    414       1.1    paulus 	db->dict[i].cptr = 0;
    415       1.1    paulus     }
    416       1.1    paulus 
    417       1.1    paulus     db->unit = unit;
    418       1.1    paulus     db->hdrlen = hdrlen;
    419       1.1    paulus     db->mru = mru;
    420       1.1    paulus #ifndef DEBUG
    421       1.1    paulus     if (debug)
    422       1.1    paulus #endif
    423       1.1    paulus 	db->debug = 1;
    424       1.1    paulus 
    425       1.1    paulus     bsd_reset(db);
    426       1.1    paulus 
    427       1.1    paulus     return 1;
    428       1.1    paulus }
    429       1.1    paulus 
    430       1.1    paulus static int
    431      1.14   thorpej bsd_comp_init(void *state, u_char *options, int opt_len, int unit, int hdrlen,
    432      1.14   thorpej               int debug)
    433       1.1    paulus {
    434       1.1    paulus     return bsd_init((struct bsd_db *) state, options, opt_len,
    435       1.1    paulus 		    unit, hdrlen, 0, debug, 0);
    436       1.1    paulus }
    437       1.1    paulus 
    438       1.1    paulus static int
    439      1.14   thorpej bsd_decomp_init(void *state, u_char *options, int opt_len, int unit, int hdrlen,
    440      1.14   thorpej                 int mru, int debug)
    441       1.1    paulus {
    442       1.1    paulus     return bsd_init((struct bsd_db *) state, options, opt_len,
    443       1.1    paulus 		    unit, hdrlen, mru, debug, 1);
    444       1.1    paulus }
    445       1.1    paulus 
    446       1.1    paulus 
    447       1.1    paulus /*
    448       1.1    paulus  * compress a packet
    449       1.1    paulus  *	One change from the BSD compress command is that when the
    450       1.1    paulus  *	code size expands, we do not output a bunch of padding.
    451       1.1    paulus  */
    452       1.1    paulus int					/* new slen */
    453      1.14   thorpej bsd_compress(void *state,
    454      1.14   thorpej              struct mbuf **mret /* return compressed mbuf chain here */,
    455      1.14   thorpej 	     struct mbuf *mp /* from here */,
    456      1.14   thorpej 	     int slen, int maxolen)
    457       1.1    paulus {
    458       1.1    paulus     struct bsd_db *db = (struct bsd_db *) state;
    459       1.1    paulus     int hshift = db->hshift;
    460       1.1    paulus     u_int max_ent = db->max_ent;
    461       1.1    paulus     u_int n_bits = db->n_bits;
    462       1.1    paulus     u_int bitno = 32;
    463      1.17      matt     uint32_t accm = 0, fcode;
    464       1.1    paulus     struct bsd_dict *dictp;
    465       1.1    paulus     u_char c;
    466       1.1    paulus     int hval, disp, ent, ilen;
    467       1.1    paulus     u_char *rptr, *wptr;
    468       1.1    paulus     u_char *cp_end;
    469       1.1    paulus     int olen;
    470       1.2  christos     struct mbuf *m;
    471       1.1    paulus 
    472       1.1    paulus #define PUTBYTE(v) {					\
    473       1.1    paulus     ++olen;						\
    474       1.1    paulus     if (wptr) {						\
    475       1.1    paulus 	*wptr++ = (v);					\
    476       1.1    paulus 	if (wptr >= cp_end) {				\
    477       1.1    paulus 	    m->m_len = wptr - mtod(m, u_char *);	\
    478       1.1    paulus 	    MGET(m->m_next, M_DONTWAIT, MT_DATA);	\
    479       1.1    paulus 	    m = m->m_next;				\
    480       1.1    paulus 	    if (m) {					\
    481       1.1    paulus 		m->m_len = 0;				\
    482       1.1    paulus 		if (maxolen - olen > MLEN)		\
    483       1.1    paulus 		    MCLGET(m, M_DONTWAIT);		\
    484       1.1    paulus 		wptr = mtod(m, u_char *);		\
    485       1.1    paulus 		cp_end = wptr + M_TRAILINGSPACE(m);	\
    486       1.1    paulus 	    } else					\
    487       1.1    paulus 		wptr = NULL;				\
    488       1.1    paulus 	}						\
    489       1.1    paulus     }							\
    490       1.1    paulus }
    491       1.1    paulus 
    492       1.1    paulus #define OUTPUT(ent) {					\
    493       1.1    paulus     bitno -= n_bits;					\
    494       1.1    paulus     accm |= ((ent) << bitno);				\
    495       1.1    paulus     do {						\
    496       1.1    paulus 	PUTBYTE(accm >> 24);				\
    497       1.1    paulus 	accm <<= 8;					\
    498       1.1    paulus 	bitno += 8;					\
    499       1.1    paulus     } while (bitno <= 24);				\
    500       1.1    paulus }
    501       1.1    paulus 
    502       1.1    paulus     /*
    503       1.1    paulus      * If the protocol is not in the range we're interested in,
    504       1.1    paulus      * just return without compressing the packet.  If it is,
    505       1.1    paulus      * the protocol becomes the first byte to compress.
    506       1.1    paulus      */
    507       1.1    paulus     rptr = mtod(mp, u_char *);
    508       1.1    paulus     ent = PPP_PROTOCOL(rptr);
    509       1.1    paulus     if (ent < 0x21 || ent > 0xf9) {
    510       1.1    paulus 	*mret = NULL;
    511       1.1    paulus 	return slen;
    512       1.1    paulus     }
    513       1.1    paulus 
    514       1.1    paulus     /* Don't generate compressed packets which are larger than
    515       1.1    paulus        the uncompressed packet. */
    516       1.1    paulus     if (maxolen > slen)
    517       1.1    paulus 	maxolen = slen;
    518       1.1    paulus 
    519       1.1    paulus     /* Allocate one mbuf to start with. */
    520       1.1    paulus     MGET(m, M_DONTWAIT, MT_DATA);
    521       1.1    paulus     *mret = m;
    522       1.1    paulus     if (m != NULL) {
    523       1.1    paulus 	m->m_len = 0;
    524       1.1    paulus 	if (maxolen + db->hdrlen > MLEN)
    525       1.1    paulus 	    MCLGET(m, M_DONTWAIT);
    526       1.1    paulus 	m->m_data += db->hdrlen;
    527       1.1    paulus 	wptr = mtod(m, u_char *);
    528       1.1    paulus 	cp_end = wptr + M_TRAILINGSPACE(m);
    529       1.1    paulus     } else
    530       1.1    paulus 	wptr = cp_end = NULL;
    531       1.1    paulus 
    532       1.1    paulus     /*
    533       1.1    paulus      * Copy the PPP header over, changing the protocol,
    534       1.1    paulus      * and install the 2-byte packet sequence number.
    535       1.1    paulus      */
    536       1.1    paulus     if (wptr) {
    537       1.1    paulus 	*wptr++ = PPP_ADDRESS(rptr);	/* assumes the ppp header is */
    538       1.1    paulus 	*wptr++ = PPP_CONTROL(rptr);	/* all in one mbuf */
    539       1.1    paulus 	*wptr++ = 0;			/* change the protocol */
    540       1.1    paulus 	*wptr++ = PPP_COMP;
    541       1.1    paulus 	*wptr++ = db->seqno >> 8;
    542       1.1    paulus 	*wptr++ = db->seqno;
    543       1.1    paulus     }
    544       1.1    paulus     ++db->seqno;
    545       1.1    paulus 
    546       1.1    paulus     olen = 0;
    547       1.1    paulus     rptr += PPP_HDRLEN;
    548       1.1    paulus     slen = mp->m_len - PPP_HDRLEN;
    549       1.1    paulus     ilen = slen + 1;
    550       1.1    paulus     for (;;) {
    551       1.1    paulus 	if (slen <= 0) {
    552       1.1    paulus 	    mp = mp->m_next;
    553       1.1    paulus 	    if (!mp)
    554       1.1    paulus 		break;
    555       1.1    paulus 	    rptr = mtod(mp, u_char *);
    556       1.1    paulus 	    slen = mp->m_len;
    557       1.1    paulus 	    if (!slen)
    558       1.1    paulus 		continue;   /* handle 0-length buffers */
    559       1.1    paulus 	    ilen += slen;
    560       1.1    paulus 	}
    561       1.1    paulus 
    562       1.1    paulus 	slen--;
    563       1.1    paulus 	c = *rptr++;
    564       1.1    paulus 	fcode = BSD_KEY(ent, c);
    565       1.1    paulus 	hval = BSD_HASH(ent, c, hshift);
    566       1.1    paulus 	dictp = &db->dict[hval];
    567       1.1    paulus 
    568       1.1    paulus 	/* Validate and then check the entry. */
    569       1.1    paulus 	if (dictp->codem1 >= max_ent)
    570       1.1    paulus 	    goto nomatch;
    571       1.1    paulus 	if (dictp->f.fcode == fcode) {
    572       1.1    paulus 	    ent = dictp->codem1+1;
    573       1.1    paulus 	    continue;	/* found (prefix,suffix) */
    574       1.1    paulus 	}
    575       1.1    paulus 
    576       1.1    paulus 	/* continue probing until a match or invalid entry */
    577       1.1    paulus 	disp = (hval == 0) ? 1 : hval;
    578       1.1    paulus 	do {
    579       1.1    paulus 	    hval += disp;
    580       1.1    paulus 	    if (hval >= db->hsize)
    581       1.1    paulus 		hval -= db->hsize;
    582       1.1    paulus 	    dictp = &db->dict[hval];
    583       1.1    paulus 	    if (dictp->codem1 >= max_ent)
    584       1.1    paulus 		goto nomatch;
    585       1.1    paulus 	} while (dictp->f.fcode != fcode);
    586       1.1    paulus 	ent = dictp->codem1 + 1;	/* finally found (prefix,suffix) */
    587       1.1    paulus 	continue;
    588       1.1    paulus 
    589       1.1    paulus     nomatch:
    590       1.1    paulus 	OUTPUT(ent);		/* output the prefix */
    591       1.1    paulus 
    592       1.1    paulus 	/* code -> hashtable */
    593       1.1    paulus 	if (max_ent < db->maxmaxcode) {
    594       1.1    paulus 	    struct bsd_dict *dictp2;
    595       1.1    paulus 	    /* expand code size if needed */
    596       1.1    paulus 	    if (max_ent >= MAXCODE(n_bits))
    597       1.1    paulus 		db->n_bits = ++n_bits;
    598       1.1    paulus 
    599       1.1    paulus 	    /* Invalidate old hash table entry using
    600       1.1    paulus 	     * this code, and then take it over.
    601       1.1    paulus 	     */
    602       1.1    paulus 	    dictp2 = &db->dict[max_ent+1];
    603       1.1    paulus 	    if (db->dict[dictp2->cptr].codem1 == max_ent)
    604       1.1    paulus 		db->dict[dictp2->cptr].codem1 = BADCODEM1;
    605       1.1    paulus 	    dictp2->cptr = hval;
    606       1.1    paulus 	    dictp->codem1 = max_ent;
    607       1.1    paulus 	    dictp->f.fcode = fcode;
    608       1.1    paulus 
    609       1.1    paulus 	    db->max_ent = ++max_ent;
    610       1.1    paulus 	}
    611       1.1    paulus 	ent = c;
    612       1.1    paulus     }
    613       1.1    paulus 
    614       1.1    paulus     OUTPUT(ent);		/* output the last code */
    615       1.1    paulus     db->bytes_out += olen;
    616       1.1    paulus     db->in_count += ilen;
    617       1.1    paulus     if (bitno < 32)
    618       1.1    paulus 	++db->bytes_out;	/* count complete bytes */
    619       1.1    paulus 
    620       1.1    paulus     if (bsd_check(db))
    621       1.1    paulus 	OUTPUT(CLEAR);		/* do not count the CLEAR */
    622       1.1    paulus 
    623       1.1    paulus     /*
    624       1.1    paulus      * Pad dribble bits of last code with ones.
    625       1.1    paulus      * Do not emit a completely useless byte of ones.
    626       1.1    paulus      */
    627       1.1    paulus     if (bitno != 32)
    628       1.1    paulus 	PUTBYTE((accm | (0xff << (bitno-8))) >> 24);
    629       1.1    paulus 
    630       1.1    paulus     if (m != NULL) {
    631       1.1    paulus 	m->m_len = wptr - mtod(m, u_char *);
    632       1.1    paulus 	m->m_next = NULL;
    633       1.1    paulus     }
    634       1.1    paulus 
    635       1.1    paulus     /*
    636       1.1    paulus      * Increase code size if we would have without the packet
    637       1.1    paulus      * boundary and as the decompressor will.
    638       1.1    paulus      */
    639       1.1    paulus     if (max_ent >= MAXCODE(n_bits) && max_ent < db->maxmaxcode)
    640       1.1    paulus 	db->n_bits++;
    641       1.1    paulus 
    642       1.1    paulus     db->uncomp_bytes += ilen;
    643       1.1    paulus     ++db->uncomp_count;
    644       1.1    paulus     if (olen + PPP_HDRLEN + BSD_OVHD > maxolen) {
    645       1.1    paulus 	/* throw away the compressed stuff if it is longer than uncompressed */
    646       1.1    paulus 	if (*mret != NULL) {
    647       1.1    paulus 	    m_freem(*mret);
    648       1.1    paulus 	    *mret = NULL;
    649       1.1    paulus 	}
    650       1.1    paulus 	++db->incomp_count;
    651       1.1    paulus 	db->incomp_bytes += ilen;
    652       1.1    paulus     } else {
    653       1.1    paulus 	++db->comp_count;
    654       1.1    paulus 	db->comp_bytes += olen + BSD_OVHD;
    655       1.1    paulus     }
    656       1.1    paulus 
    657       1.1    paulus     return olen + PPP_HDRLEN + BSD_OVHD;
    658       1.1    paulus #undef OUTPUT
    659       1.1    paulus #undef PUTBYTE
    660       1.1    paulus }
    661       1.1    paulus 
    662       1.1    paulus 
    663       1.1    paulus /*
    664       1.1    paulus  * Update the "BSD Compress" dictionary on the receiver for
    665       1.1    paulus  * incompressible data by pretending to compress the incoming data.
    666       1.1    paulus  */
    667       1.1    paulus static void
    668      1.14   thorpej bsd_incomp(void *state, struct mbuf *dmsg)
    669       1.1    paulus {
    670       1.1    paulus     struct bsd_db *db = (struct bsd_db *) state;
    671       1.1    paulus     u_int hshift = db->hshift;
    672       1.1    paulus     u_int max_ent = db->max_ent;
    673       1.1    paulus     u_int n_bits = db->n_bits;
    674       1.1    paulus     struct bsd_dict *dictp;
    675      1.17      matt     uint32_t fcode;
    676       1.1    paulus     u_char c;
    677      1.17      matt     uint32_t hval, disp;
    678       1.1    paulus     int slen, ilen;
    679       1.1    paulus     u_int bitno = 7;
    680       1.1    paulus     u_char *rptr;
    681       1.1    paulus     u_int ent;
    682       1.1    paulus 
    683       1.1    paulus     /*
    684       1.1    paulus      * If the protocol is not in the range we're interested in,
    685       1.1    paulus      * just return without looking at the packet.  If it is,
    686       1.1    paulus      * the protocol becomes the first byte to "compress".
    687       1.1    paulus      */
    688       1.1    paulus     rptr = mtod(dmsg, u_char *);
    689       1.1    paulus     ent = PPP_PROTOCOL(rptr);
    690       1.1    paulus     if (ent < 0x21 || ent > 0xf9)
    691       1.1    paulus 	return;
    692       1.1    paulus 
    693       1.1    paulus     db->seqno++;
    694       1.1    paulus     ilen = 1;		/* count the protocol as 1 byte */
    695       1.1    paulus     rptr += PPP_HDRLEN;
    696       1.1    paulus     slen = dmsg->m_len - PPP_HDRLEN;
    697       1.1    paulus     for (;;) {
    698       1.1    paulus 	if (slen <= 0) {
    699       1.1    paulus 	    dmsg = dmsg->m_next;
    700       1.1    paulus 	    if (!dmsg)
    701       1.1    paulus 		break;
    702       1.1    paulus 	    rptr = mtod(dmsg, u_char *);
    703       1.1    paulus 	    slen = dmsg->m_len;
    704       1.1    paulus 	    continue;
    705       1.1    paulus 	}
    706       1.1    paulus 	ilen += slen;
    707       1.1    paulus 
    708       1.1    paulus 	do {
    709       1.1    paulus 	    c = *rptr++;
    710       1.1    paulus 	    fcode = BSD_KEY(ent, c);
    711       1.1    paulus 	    hval = BSD_HASH(ent, c, hshift);
    712       1.1    paulus 	    dictp = &db->dict[hval];
    713       1.1    paulus 
    714       1.1    paulus 	    /* validate and then check the entry */
    715       1.1    paulus 	    if (dictp->codem1 >= max_ent)
    716       1.1    paulus 		goto nomatch;
    717       1.1    paulus 	    if (dictp->f.fcode == fcode) {
    718       1.1    paulus 		ent = dictp->codem1+1;
    719       1.1    paulus 		continue;   /* found (prefix,suffix) */
    720       1.1    paulus 	    }
    721       1.1    paulus 
    722       1.1    paulus 	    /* continue probing until a match or invalid entry */
    723       1.1    paulus 	    disp = (hval == 0) ? 1 : hval;
    724       1.1    paulus 	    do {
    725       1.1    paulus 		hval += disp;
    726       1.1    paulus 		if (hval >= db->hsize)
    727       1.1    paulus 		    hval -= db->hsize;
    728       1.1    paulus 		dictp = &db->dict[hval];
    729       1.1    paulus 		if (dictp->codem1 >= max_ent)
    730       1.1    paulus 		    goto nomatch;
    731       1.1    paulus 	    } while (dictp->f.fcode != fcode);
    732       1.1    paulus 	    ent = dictp->codem1+1;
    733       1.1    paulus 	    continue;	/* finally found (prefix,suffix) */
    734       1.1    paulus 
    735       1.1    paulus 	nomatch:		/* output (count) the prefix */
    736       1.1    paulus 	    bitno += n_bits;
    737       1.1    paulus 
    738       1.1    paulus 	    /* code -> hashtable */
    739       1.1    paulus 	    if (max_ent < db->maxmaxcode) {
    740       1.1    paulus 		struct bsd_dict *dictp2;
    741       1.1    paulus 		/* expand code size if needed */
    742       1.1    paulus 		if (max_ent >= MAXCODE(n_bits))
    743       1.1    paulus 		    db->n_bits = ++n_bits;
    744       1.1    paulus 
    745       1.1    paulus 		/* Invalidate previous hash table entry
    746       1.1    paulus 		 * assigned this code, and then take it over.
    747       1.1    paulus 		 */
    748       1.1    paulus 		dictp2 = &db->dict[max_ent+1];
    749       1.1    paulus 		if (db->dict[dictp2->cptr].codem1 == max_ent)
    750       1.1    paulus 		    db->dict[dictp2->cptr].codem1 = BADCODEM1;
    751       1.1    paulus 		dictp2->cptr = hval;
    752       1.1    paulus 		dictp->codem1 = max_ent;
    753       1.1    paulus 		dictp->f.fcode = fcode;
    754       1.1    paulus 
    755       1.1    paulus 		db->max_ent = ++max_ent;
    756       1.1    paulus 		db->lens[max_ent] = db->lens[ent]+1;
    757       1.1    paulus 	    }
    758       1.1    paulus 	    ent = c;
    759       1.1    paulus 	} while (--slen != 0);
    760       1.1    paulus     }
    761       1.1    paulus     bitno += n_bits;		/* output (count) the last code */
    762       1.1    paulus     db->bytes_out += bitno/8;
    763       1.1    paulus     db->in_count += ilen;
    764       1.1    paulus     (void)bsd_check(db);
    765       1.1    paulus 
    766       1.1    paulus     ++db->incomp_count;
    767       1.1    paulus     db->incomp_bytes += ilen;
    768       1.1    paulus     ++db->uncomp_count;
    769       1.1    paulus     db->uncomp_bytes += ilen;
    770       1.1    paulus 
    771       1.1    paulus     /* Increase code size if we would have without the packet
    772       1.1    paulus      * boundary and as the decompressor will.
    773       1.1    paulus      */
    774       1.1    paulus     if (max_ent >= MAXCODE(n_bits) && max_ent < db->maxmaxcode)
    775       1.1    paulus 	db->n_bits++;
    776       1.1    paulus }
    777       1.1    paulus 
    778       1.1    paulus 
    779       1.1    paulus /*
    780       1.1    paulus  * Decompress "BSD Compress".
    781       1.1    paulus  *
    782       1.1    paulus  * Because of patent problems, we return DECOMP_ERROR for errors
    783       1.1    paulus  * found by inspecting the input data and for system problems, but
    784       1.1    paulus  * DECOMP_FATALERROR for any errors which could possibly be said to
    785       1.1    paulus  * be being detected "after" decompression.  For DECOMP_ERROR,
    786       1.1    paulus  * we can issue a CCP reset-request; for DECOMP_FATALERROR, we may be
    787       1.1    paulus  * infringing a patent of Motorola's if we do, so we take CCP down
    788       1.1    paulus  * instead.
    789       1.1    paulus  *
    790       1.1    paulus  * Given that the frame has the correct sequence number and a good FCS,
    791       1.1    paulus  * errors such as invalid codes in the input most likely indicate a
    792       1.1    paulus  * bug, so we return DECOMP_FATALERROR for them in order to turn off
    793       1.1    paulus  * compression, even though they are detected by inspecting the input.
    794       1.1    paulus  */
    795       1.1    paulus int
    796      1.14   thorpej bsd_decompress(void *state, struct mbuf *cmp, struct mbuf **dmpp)
    797       1.1    paulus {
    798       1.1    paulus     struct bsd_db *db = (struct bsd_db *) state;
    799       1.1    paulus     u_int max_ent = db->max_ent;
    800      1.17      matt     uint32_t accm = 0;
    801       1.1    paulus     u_int bitno = 32;		/* 1st valid bit in accm */
    802       1.1    paulus     u_int n_bits = db->n_bits;
    803       1.1    paulus     u_int tgtbitno = 32-n_bits;	/* bitno when we have a code */
    804       1.1    paulus     struct bsd_dict *dictp;
    805       1.1    paulus     int explen, i, seq, len;
    806       1.1    paulus     u_int incode, oldcode, finchar;
    807       1.1    paulus     u_char *p, *rptr, *wptr;
    808       1.1    paulus     struct mbuf *m, *dmp, *mret;
    809       1.1    paulus     int adrs, ctrl, ilen;
    810       1.1    paulus     int space, codelen, extra;
    811       1.1    paulus 
    812       1.1    paulus     /*
    813       1.1    paulus      * Save the address/control from the PPP header
    814       1.1    paulus      * and then get the sequence number.
    815       1.1    paulus      */
    816       1.1    paulus     *dmpp = NULL;
    817       1.1    paulus     rptr = mtod(cmp, u_char *);
    818       1.1    paulus     adrs = PPP_ADDRESS(rptr);
    819       1.1    paulus     ctrl = PPP_CONTROL(rptr);
    820       1.1    paulus     rptr += PPP_HDRLEN;
    821       1.1    paulus     len = cmp->m_len - PPP_HDRLEN;
    822       1.1    paulus     seq = 0;
    823       1.1    paulus     for (i = 0; i < 2; ++i) {
    824       1.1    paulus 	while (len <= 0) {
    825       1.1    paulus 	    cmp = cmp->m_next;
    826       1.1    paulus 	    if (cmp == NULL)
    827       1.1    paulus 		return DECOMP_ERROR;
    828       1.1    paulus 	    rptr = mtod(cmp, u_char *);
    829       1.1    paulus 	    len = cmp->m_len;
    830       1.1    paulus 	}
    831       1.1    paulus 	seq = (seq << 8) + *rptr++;
    832       1.1    paulus 	--len;
    833       1.1    paulus     }
    834       1.1    paulus 
    835       1.1    paulus     /*
    836       1.1    paulus      * Check the sequence number and give up if it differs from
    837       1.1    paulus      * the value we're expecting.
    838       1.1    paulus      */
    839       1.1    paulus     if (seq != db->seqno) {
    840       1.1    paulus 	if (db->debug)
    841       1.6  christos 	    printf("bsd_decomp%d: bad sequence # %d, expected %d\n",
    842       1.7  christos 		   db->unit, seq, db->seqno - 1);
    843       1.1    paulus 	return DECOMP_ERROR;
    844       1.1    paulus     }
    845       1.1    paulus     ++db->seqno;
    846       1.1    paulus 
    847       1.1    paulus     /*
    848       1.1    paulus      * Allocate one mbuf to start with.
    849       1.1    paulus      */
    850       1.1    paulus     MGETHDR(dmp, M_DONTWAIT, MT_DATA);
    851       1.1    paulus     if (dmp == NULL)
    852       1.1    paulus 	return DECOMP_ERROR;
    853       1.1    paulus     mret = dmp;
    854       1.1    paulus     dmp->m_len = 0;
    855       1.1    paulus     dmp->m_next = NULL;
    856       1.1    paulus     MCLGET(dmp, M_DONTWAIT);
    857       1.1    paulus     dmp->m_data += db->hdrlen;
    858       1.1    paulus     wptr = mtod(dmp, u_char *);
    859       1.1    paulus     space = M_TRAILINGSPACE(dmp) - PPP_HDRLEN + 1;
    860       1.1    paulus 
    861       1.1    paulus     /*
    862       1.1    paulus      * Fill in the ppp header, but not the last byte of the protocol
    863       1.1    paulus      * (that comes from the decompressed data).
    864       1.1    paulus      */
    865       1.1    paulus     wptr[0] = adrs;
    866       1.1    paulus     wptr[1] = ctrl;
    867       1.1    paulus     wptr[2] = 0;
    868       1.1    paulus     wptr += PPP_HDRLEN - 1;
    869       1.1    paulus 
    870       1.1    paulus     ilen = len;
    871       1.1    paulus     oldcode = CLEAR;
    872       1.1    paulus     explen = 0;
    873       1.1    paulus     for (;;) {
    874       1.1    paulus 	if (len == 0) {
    875       1.1    paulus 	    cmp = cmp->m_next;
    876       1.1    paulus 	    if (!cmp)		/* quit at end of message */
    877       1.1    paulus 		break;
    878       1.1    paulus 	    rptr = mtod(cmp, u_char *);
    879       1.1    paulus 	    len = cmp->m_len;
    880       1.1    paulus 	    ilen += len;
    881       1.1    paulus 	    continue;		/* handle 0-length buffers */
    882       1.1    paulus 	}
    883       1.1    paulus 
    884       1.1    paulus 	/*
    885       1.1    paulus 	 * Accumulate bytes until we have a complete code.
    886       1.1    paulus 	 * Then get the next code, relying on the 32-bit,
    887       1.1    paulus 	 * unsigned accm to mask the result.
    888       1.1    paulus 	 */
    889       1.1    paulus 	bitno -= 8;
    890       1.1    paulus 	accm |= *rptr++ << bitno;
    891       1.1    paulus 	--len;
    892       1.1    paulus 	if (tgtbitno < bitno)
    893       1.1    paulus 	    continue;
    894       1.1    paulus 	incode = accm >> tgtbitno;
    895       1.1    paulus 	accm <<= n_bits;
    896       1.1    paulus 	bitno += n_bits;
    897       1.1    paulus 
    898       1.1    paulus 	if (incode == CLEAR) {
    899       1.1    paulus 	    /*
    900       1.1    paulus 	     * The dictionary must only be cleared at
    901       1.1    paulus 	     * the end of a packet.  But there could be an
    902       1.1    paulus 	     * empty mbuf at the end.
    903       1.1    paulus 	     */
    904       1.1    paulus 	    if (len > 0 || cmp->m_next != NULL) {
    905       1.1    paulus 		while ((cmp = cmp->m_next) != NULL)
    906       1.1    paulus 		    len += cmp->m_len;
    907       1.1    paulus 		if (len > 0) {
    908       1.1    paulus 		    m_freem(mret);
    909       1.1    paulus 		    if (db->debug)
    910       1.6  christos 			printf("bsd_decomp%d: bad CLEAR\n", db->unit);
    911       1.1    paulus 		    return DECOMP_FATALERROR;	/* probably a bug */
    912       1.1    paulus 		}
    913       1.1    paulus 	    }
    914       1.1    paulus 	    bsd_clear(db);
    915       1.1    paulus 	    explen = ilen = 0;
    916       1.1    paulus 	    break;
    917       1.1    paulus 	}
    918       1.1    paulus 
    919       1.1    paulus 	if (incode > max_ent + 2 || incode > db->maxmaxcode
    920       1.2  christos 	    || (incode > max_ent && oldcode == CLEAR)) {
    921       1.1    paulus 	    m_freem(mret);
    922       1.1    paulus 	    if (db->debug) {
    923       1.6  christos 		printf("bsd_decomp%d: bad code 0x%x oldcode=0x%x ",
    924       1.7  christos 		       db->unit, incode, oldcode);
    925       1.6  christos 		printf("max_ent=0x%x explen=%d seqno=%d\n",
    926       1.7  christos 		       max_ent, explen, db->seqno);
    927       1.1    paulus 	    }
    928       1.1    paulus 	    return DECOMP_FATALERROR;	/* probably a bug */
    929       1.1    paulus 	}
    930       1.1    paulus 
    931       1.1    paulus 	/* Special case for KwKwK string. */
    932       1.1    paulus 	if (incode > max_ent) {
    933       1.1    paulus 	    finchar = oldcode;
    934       1.1    paulus 	    extra = 1;
    935       1.1    paulus 	} else {
    936       1.1    paulus 	    finchar = incode;
    937       1.1    paulus 	    extra = 0;
    938       1.1    paulus 	}
    939       1.1    paulus 
    940       1.1    paulus 	codelen = db->lens[finchar];
    941       1.1    paulus 	explen += codelen + extra;
    942       1.1    paulus 	if (explen > db->mru + 1) {
    943       1.1    paulus 	    m_freem(mret);
    944       1.1    paulus 	    if (db->debug) {
    945       1.6  christos 		printf("bsd_decomp%d: ran out of mru\n", db->unit);
    946       1.1    paulus #ifdef DEBUG
    947       1.1    paulus 		while ((cmp = cmp->m_next) != NULL)
    948       1.1    paulus 		    len += cmp->m_len;
    949       1.6  christos 		printf("  len=%d, finchar=0x%x, codelen=%d, explen=%d\n",
    950       1.1    paulus 		       len, finchar, codelen, explen);
    951       1.1    paulus #endif
    952       1.1    paulus 	    }
    953       1.1    paulus 	    return DECOMP_FATALERROR;
    954       1.1    paulus 	}
    955       1.1    paulus 
    956       1.1    paulus 	/*
    957       1.1    paulus 	 * For simplicity, the decoded characters go in a single mbuf,
    958       1.1    paulus 	 * so we allocate a single extra cluster mbuf if necessary.
    959       1.1    paulus 	 */
    960       1.1    paulus 	if ((space -= codelen + extra) < 0) {
    961       1.1    paulus 	    dmp->m_len = wptr - mtod(dmp, u_char *);
    962       1.1    paulus 	    MGET(m, M_DONTWAIT, MT_DATA);
    963       1.1    paulus 	    if (m == NULL) {
    964       1.1    paulus 		m_freem(mret);
    965       1.1    paulus 		return DECOMP_ERROR;
    966       1.1    paulus 	    }
    967       1.1    paulus 	    m->m_len = 0;
    968       1.1    paulus 	    m->m_next = NULL;
    969       1.1    paulus 	    dmp->m_next = m;
    970       1.1    paulus 	    MCLGET(m, M_DONTWAIT);
    971       1.1    paulus 	    space = M_TRAILINGSPACE(m) - (codelen + extra);
    972       1.1    paulus 	    if (space < 0) {
    973       1.1    paulus 		/* now that's what I call *compression*. */
    974       1.1    paulus 		m_freem(mret);
    975       1.1    paulus 		return DECOMP_ERROR;
    976       1.1    paulus 	    }
    977       1.1    paulus 	    dmp = m;
    978       1.1    paulus 	    wptr = mtod(dmp, u_char *);
    979       1.1    paulus 	}
    980       1.1    paulus 
    981       1.1    paulus 	/*
    982       1.1    paulus 	 * Decode this code and install it in the decompressed buffer.
    983       1.1    paulus 	 */
    984       1.1    paulus 	p = (wptr += codelen);
    985       1.1    paulus 	while (finchar > LAST) {
    986       1.1    paulus 	    dictp = &db->dict[db->dict[finchar].cptr];
    987       1.1    paulus #ifdef DEBUG
    988       1.1    paulus 	    if (--codelen <= 0 || dictp->codem1 != finchar-1)
    989       1.1    paulus 		goto bad;
    990       1.1    paulus #endif
    991       1.1    paulus 	    *--p = dictp->f.hs.suffix;
    992       1.1    paulus 	    finchar = dictp->f.hs.prefix;
    993       1.1    paulus 	}
    994       1.1    paulus 	*--p = finchar;
    995       1.1    paulus 
    996       1.1    paulus #ifdef DEBUG
    997       1.1    paulus 	if (--codelen != 0)
    998       1.6  christos 	    printf("bsd_decomp%d: short by %d after code 0x%x, max_ent=0x%x\n",
    999       1.7  christos 		   db->unit, codelen, incode, max_ent);
   1000       1.1    paulus #endif
   1001       1.1    paulus 
   1002       1.1    paulus 	if (extra)		/* the KwKwK case again */
   1003       1.1    paulus 	    *wptr++ = finchar;
   1004       1.1    paulus 
   1005       1.1    paulus 	/*
   1006       1.1    paulus 	 * If not first code in a packet, and
   1007       1.1    paulus 	 * if not out of code space, then allocate a new code.
   1008       1.1    paulus 	 *
   1009       1.1    paulus 	 * Keep the hash table correct so it can be used
   1010       1.1    paulus 	 * with uncompressed packets.
   1011       1.1    paulus 	 */
   1012       1.1    paulus 	if (oldcode != CLEAR && max_ent < db->maxmaxcode) {
   1013       1.1    paulus 	    struct bsd_dict *dictp2;
   1014      1.17      matt 	    uint32_t fcode;
   1015      1.17      matt 	    uint32_t hval, disp;
   1016       1.1    paulus 
   1017       1.1    paulus 	    fcode = BSD_KEY(oldcode,finchar);
   1018       1.1    paulus 	    hval = BSD_HASH(oldcode,finchar,db->hshift);
   1019       1.1    paulus 	    dictp = &db->dict[hval];
   1020       1.1    paulus 
   1021       1.1    paulus 	    /* look for a free hash table entry */
   1022       1.1    paulus 	    if (dictp->codem1 < max_ent) {
   1023       1.1    paulus 		disp = (hval == 0) ? 1 : hval;
   1024       1.1    paulus 		do {
   1025       1.1    paulus 		    hval += disp;
   1026       1.1    paulus 		    if (hval >= db->hsize)
   1027       1.1    paulus 			hval -= db->hsize;
   1028       1.1    paulus 		    dictp = &db->dict[hval];
   1029       1.1    paulus 		} while (dictp->codem1 < max_ent);
   1030       1.1    paulus 	    }
   1031       1.1    paulus 
   1032       1.1    paulus 	    /*
   1033       1.1    paulus 	     * Invalidate previous hash table entry
   1034       1.1    paulus 	     * assigned this code, and then take it over
   1035       1.1    paulus 	     */
   1036       1.1    paulus 	    dictp2 = &db->dict[max_ent+1];
   1037       1.1    paulus 	    if (db->dict[dictp2->cptr].codem1 == max_ent) {
   1038       1.1    paulus 		db->dict[dictp2->cptr].codem1 = BADCODEM1;
   1039       1.1    paulus 	    }
   1040       1.1    paulus 	    dictp2->cptr = hval;
   1041       1.1    paulus 	    dictp->codem1 = max_ent;
   1042       1.1    paulus 	    dictp->f.fcode = fcode;
   1043       1.1    paulus 
   1044       1.1    paulus 	    db->max_ent = ++max_ent;
   1045       1.1    paulus 	    db->lens[max_ent] = db->lens[oldcode]+1;
   1046       1.1    paulus 
   1047       1.1    paulus 	    /* Expand code size if needed. */
   1048       1.1    paulus 	    if (max_ent >= MAXCODE(n_bits) && max_ent < db->maxmaxcode) {
   1049       1.1    paulus 		db->n_bits = ++n_bits;
   1050       1.1    paulus 		tgtbitno = 32-n_bits;
   1051       1.1    paulus 	    }
   1052       1.1    paulus 	}
   1053       1.1    paulus 	oldcode = incode;
   1054       1.1    paulus     }
   1055       1.1    paulus     dmp->m_len = wptr - mtod(dmp, u_char *);
   1056       1.1    paulus 
   1057       1.1    paulus     /*
   1058       1.1    paulus      * Keep the checkpoint right so that incompressible packets
   1059       1.1    paulus      * clear the dictionary at the right times.
   1060       1.1    paulus      */
   1061       1.1    paulus     db->bytes_out += ilen;
   1062       1.1    paulus     db->in_count += explen;
   1063       1.1    paulus     if (bsd_check(db) && db->debug) {
   1064       1.6  christos 	printf("bsd_decomp%d: peer should have cleared dictionary\n",
   1065       1.1    paulus 	       db->unit);
   1066       1.1    paulus     }
   1067       1.1    paulus 
   1068       1.1    paulus     ++db->comp_count;
   1069       1.1    paulus     db->comp_bytes += ilen + BSD_OVHD;
   1070       1.1    paulus     ++db->uncomp_count;
   1071       1.1    paulus     db->uncomp_bytes += explen;
   1072       1.1    paulus 
   1073       1.1    paulus     *dmpp = mret;
   1074       1.1    paulus     return DECOMP_OK;
   1075       1.1    paulus 
   1076       1.1    paulus #ifdef DEBUG
   1077       1.1    paulus  bad:
   1078       1.1    paulus     if (codelen <= 0) {
   1079       1.6  christos 	printf("bsd_decomp%d: fell off end of chain ", db->unit);
   1080       1.6  christos 	printf("0x%x at 0x%x by 0x%x, max_ent=0x%x\n",
   1081       1.1    paulus 	       incode, finchar, db->dict[finchar].cptr, max_ent);
   1082       1.1    paulus     } else if (dictp->codem1 != finchar-1) {
   1083       1.6  christos 	printf("bsd_decomp%d: bad code chain 0x%x finchar=0x%x ",
   1084       1.1    paulus 	       db->unit, incode, finchar);
   1085       1.6  christos 	printf("oldcode=0x%x cptr=0x%x codem1=0x%x\n", oldcode,
   1086       1.1    paulus 	       db->dict[finchar].cptr, dictp->codem1);
   1087       1.1    paulus     }
   1088       1.1    paulus     m_freem(mret);
   1089       1.1    paulus     return DECOMP_FATALERROR;
   1090       1.1    paulus #endif /* DEBUG */
   1091       1.1    paulus }
   1092  1.18.4.1     skrll 
   1093  1.18.4.1     skrll MODULE(MODULE_CLASS_MISC, ppp_bsdcomp, NULL);
   1094  1.18.4.1     skrll 
   1095  1.18.4.1     skrll static int
   1096  1.18.4.1     skrll ppp_bsdcomp_modcmd(modcmd_t cmd, void *arg)
   1097  1.18.4.1     skrll {
   1098  1.18.4.1     skrll 
   1099  1.18.4.1     skrll 	switch (cmd) {
   1100  1.18.4.1     skrll 	case MODULE_CMD_INIT:
   1101  1.18.4.1     skrll 		return ppp_register_compressor(&ppp_bsd_compress, 1);
   1102  1.18.4.1     skrll 	case MODULE_CMD_FINI:
   1103  1.18.4.1     skrll 		return ppp_unregister_compressor(&ppp_bsd_compress, 1);
   1104  1.18.4.1     skrll 	case MODULE_CMD_STAT:
   1105  1.18.4.1     skrll 		return 0;
   1106  1.18.4.1     skrll 	default:
   1107  1.18.4.1     skrll 		return ENOTTY;
   1108  1.18.4.1     skrll 	}
   1109  1.18.4.1     skrll 
   1110  1.18.4.1     skrll 	return ENOTTY;
   1111  1.18.4.1     skrll }
   1112       1.1    paulus #endif /* DO_BSD_COMPRESS */
   1113