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ppp-deflate.c revision 1.7.4.1
      1  1.7.4.1     lukem /*	$NetBSD: ppp-deflate.c,v 1.7.4.1 2001/08/03 04:13:52 lukem Exp $	*/
      2      1.4  christos /*	Id: ppp-deflate.c,v 1.5 1997/03/04 03:33:28 paulus Exp 	*/
      3      1.1    paulus 
      4      1.1    paulus /*
      5      1.1    paulus  * ppp_deflate.c - interface the zlib procedures for Deflate compression
      6      1.1    paulus  * and decompression (as used by gzip) to the PPP code.
      7      1.1    paulus  * This version is for use with mbufs on BSD-derived systems.
      8      1.1    paulus  *
      9      1.1    paulus  * Copyright (c) 1994 The Australian National University.
     10      1.1    paulus  * All rights reserved.
     11      1.1    paulus  *
     12      1.1    paulus  * Permission to use, copy, modify, and distribute this software and its
     13      1.1    paulus  * documentation is hereby granted, provided that the above copyright
     14      1.1    paulus  * notice appears in all copies.  This software is provided without any
     15      1.1    paulus  * warranty, express or implied. The Australian National University
     16      1.1    paulus  * makes no representations about the suitability of this software for
     17      1.1    paulus  * any purpose.
     18      1.1    paulus  *
     19      1.1    paulus  * IN NO EVENT SHALL THE AUSTRALIAN NATIONAL UNIVERSITY BE LIABLE TO ANY
     20      1.1    paulus  * PARTY FOR DIRECT, INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES
     21      1.1    paulus  * ARISING OUT OF THE USE OF THIS SOFTWARE AND ITS DOCUMENTATION, EVEN IF
     22      1.1    paulus  * THE AUSTRALIAN NATIONAL UNIVERSITY HAS BEEN ADVISED OF THE POSSIBILITY
     23      1.1    paulus  * OF SUCH DAMAGE.
     24      1.1    paulus  *
     25      1.1    paulus  * THE AUSTRALIAN NATIONAL UNIVERSITY SPECIFICALLY DISCLAIMS ANY WARRANTIES,
     26      1.1    paulus  * INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY
     27      1.1    paulus  * AND FITNESS FOR A PARTICULAR PURPOSE.  THE SOFTWARE PROVIDED HEREUNDER IS
     28      1.1    paulus  * ON AN "AS IS" BASIS, AND THE AUSTRALIAN NATIONAL UNIVERSITY HAS NO
     29      1.1    paulus  * OBLIGATION TO PROVIDE MAINTENANCE, SUPPORT, UPDATES, ENHANCEMENTS,
     30      1.1    paulus  * OR MODIFICATIONS.
     31      1.1    paulus  */
     32      1.1    paulus 
     33      1.1    paulus #include <sys/param.h>
     34      1.1    paulus #include <sys/types.h>
     35      1.1    paulus #include <sys/systm.h>
     36      1.1    paulus #include <sys/mbuf.h>
     37      1.1    paulus #include <net/ppp_defs.h>
     38      1.1    paulus #include <net/zlib.h>
     39      1.1    paulus 
     40      1.1    paulus #define PACKETPTR	struct mbuf *
     41      1.1    paulus #include <net/ppp-comp.h>
     42      1.1    paulus 
     43      1.1    paulus #if DO_DEFLATE
     44      1.1    paulus 
     45      1.4  christos #define DEFLATE_DEBUG	1
     46      1.4  christos 
     47      1.1    paulus /*
     48      1.1    paulus  * State for a Deflate (de)compressor.
     49      1.1    paulus  */
     50      1.1    paulus struct deflate_state {
     51      1.1    paulus     int		seqno;
     52      1.1    paulus     int		w_size;
     53      1.1    paulus     int		unit;
     54      1.1    paulus     int		hdrlen;
     55      1.1    paulus     int		mru;
     56      1.1    paulus     int		debug;
     57      1.1    paulus     z_stream	strm;
     58      1.1    paulus     struct compstat stats;
     59      1.1    paulus };
     60      1.1    paulus 
     61      1.1    paulus #define DEFLATE_OVHD	2		/* Deflate overhead/packet */
     62      1.1    paulus 
     63      1.1    paulus static void	*zalloc __P((void *, u_int items, u_int size));
     64      1.6  christos static void	zfree __P((void *, void *ptr));
     65      1.1    paulus static void	*z_comp_alloc __P((u_char *options, int opt_len));
     66      1.1    paulus static void	*z_decomp_alloc __P((u_char *options, int opt_len));
     67      1.1    paulus static void	z_comp_free __P((void *state));
     68      1.1    paulus static void	z_decomp_free __P((void *state));
     69      1.1    paulus static int	z_comp_init __P((void *state, u_char *options, int opt_len,
     70      1.1    paulus 				 int unit, int hdrlen, int debug));
     71      1.1    paulus static int	z_decomp_init __P((void *state, u_char *options, int opt_len,
     72      1.1    paulus 				     int unit, int hdrlen, int mru, int debug));
     73      1.1    paulus static int	z_compress __P((void *state, struct mbuf **mret,
     74      1.1    paulus 				  struct mbuf *mp, int slen, int maxolen));
     75      1.1    paulus static void	z_incomp __P((void *state, struct mbuf *dmsg));
     76      1.1    paulus static int	z_decompress __P((void *state, struct mbuf *cmp,
     77      1.1    paulus 				    struct mbuf **dmpp));
     78      1.1    paulus static void	z_comp_reset __P((void *state));
     79      1.1    paulus static void	z_decomp_reset __P((void *state));
     80      1.1    paulus static void	z_comp_stats __P((void *state, struct compstat *stats));
     81      1.1    paulus 
     82      1.1    paulus /*
     83      1.1    paulus  * Procedures exported to if_ppp.c.
     84      1.1    paulus  */
     85      1.1    paulus struct compressor ppp_deflate = {
     86      1.1    paulus     CI_DEFLATE,			/* compress_proto */
     87      1.1    paulus     z_comp_alloc,		/* comp_alloc */
     88      1.1    paulus     z_comp_free,		/* comp_free */
     89      1.1    paulus     z_comp_init,		/* comp_init */
     90      1.1    paulus     z_comp_reset,		/* comp_reset */
     91      1.1    paulus     z_compress,			/* compress */
     92      1.1    paulus     z_comp_stats,		/* comp_stat */
     93      1.1    paulus     z_decomp_alloc,		/* decomp_alloc */
     94      1.1    paulus     z_decomp_free,		/* decomp_free */
     95      1.1    paulus     z_decomp_init,		/* decomp_init */
     96      1.1    paulus     z_decomp_reset,		/* decomp_reset */
     97      1.1    paulus     z_decompress,		/* decompress */
     98      1.1    paulus     z_incomp,			/* incomp */
     99      1.1    paulus     z_comp_stats,		/* decomp_stat */
    100      1.1    paulus };
    101      1.1    paulus 
    102      1.6  christos struct compressor ppp_deflate_draft = {
    103      1.6  christos     CI_DEFLATE_DRAFT,		/* compress_proto */
    104      1.6  christos     z_comp_alloc,		/* comp_alloc */
    105      1.6  christos     z_comp_free,		/* comp_free */
    106      1.6  christos     z_comp_init,		/* comp_init */
    107      1.6  christos     z_comp_reset,		/* comp_reset */
    108      1.6  christos     z_compress,			/* compress */
    109      1.6  christos     z_comp_stats,		/* comp_stat */
    110      1.6  christos     z_decomp_alloc,		/* decomp_alloc */
    111      1.6  christos     z_decomp_free,		/* decomp_free */
    112      1.6  christos     z_decomp_init,		/* decomp_init */
    113      1.6  christos     z_decomp_reset,		/* decomp_reset */
    114      1.6  christos     z_decompress,		/* decompress */
    115      1.6  christos     z_incomp,			/* incomp */
    116      1.6  christos     z_comp_stats,		/* decomp_stat */
    117      1.6  christos };
    118      1.1    paulus /*
    119      1.1    paulus  * Space allocation and freeing routines for use by zlib routines.
    120      1.1    paulus  */
    121      1.1    paulus void *
    122      1.1    paulus zalloc(notused, items, size)
    123      1.1    paulus     void *notused;
    124      1.1    paulus     u_int items, size;
    125      1.1    paulus {
    126      1.1    paulus     void *ptr;
    127      1.1    paulus 
    128      1.7   thorpej     ptr = malloc(items * size, M_DEVBUF, M_NOWAIT);
    129      1.1    paulus     return ptr;
    130      1.1    paulus }
    131      1.1    paulus 
    132      1.1    paulus void
    133      1.6  christos zfree(notused, ptr)
    134      1.1    paulus     void *notused;
    135      1.1    paulus     void *ptr;
    136      1.1    paulus {
    137      1.7   thorpej     free(ptr, M_DEVBUF);
    138      1.1    paulus }
    139      1.1    paulus 
    140      1.1    paulus /*
    141      1.1    paulus  * Allocate space for a compressor.
    142      1.1    paulus  */
    143      1.1    paulus static void *
    144      1.1    paulus z_comp_alloc(options, opt_len)
    145      1.1    paulus     u_char *options;
    146      1.1    paulus     int opt_len;
    147      1.1    paulus {
    148      1.1    paulus     struct deflate_state *state;
    149      1.1    paulus     int w_size;
    150      1.1    paulus 
    151      1.6  christos     if (opt_len != CILEN_DEFLATE
    152      1.6  christos 	|| (options[0] != CI_DEFLATE && options[0] != CI_DEFLATE_DRAFT)
    153      1.1    paulus 	|| options[1] != CILEN_DEFLATE
    154      1.1    paulus 	|| DEFLATE_METHOD(options[2]) != DEFLATE_METHOD_VAL
    155      1.1    paulus 	|| options[3] != DEFLATE_CHK_SEQUENCE)
    156      1.1    paulus 	return NULL;
    157      1.1    paulus     w_size = DEFLATE_SIZE(options[2]);
    158      1.1    paulus     if (w_size < DEFLATE_MIN_SIZE || w_size > DEFLATE_MAX_SIZE)
    159      1.1    paulus 	return NULL;
    160      1.1    paulus 
    161      1.1    paulus     MALLOC(state, struct deflate_state *, sizeof(struct deflate_state),
    162      1.1    paulus 	   M_DEVBUF, M_NOWAIT);
    163      1.1    paulus     if (state == NULL)
    164      1.1    paulus 	return NULL;
    165      1.1    paulus 
    166      1.1    paulus     state->strm.next_in = NULL;
    167      1.1    paulus     state->strm.zalloc = zalloc;
    168      1.1    paulus     state->strm.zfree = zfree;
    169      1.1    paulus     if (deflateInit2(&state->strm, Z_DEFAULT_COMPRESSION, DEFLATE_METHOD_VAL,
    170      1.6  christos 		     -w_size, 8, Z_DEFAULT_STRATEGY) != Z_OK) {
    171      1.1    paulus 	FREE(state, M_DEVBUF);
    172      1.1    paulus 	return NULL;
    173      1.1    paulus     }
    174      1.1    paulus 
    175      1.1    paulus     state->w_size = w_size;
    176  1.7.4.1     lukem     memset(&state->stats, 0, sizeof(state->stats));
    177      1.1    paulus     return (void *) state;
    178      1.1    paulus }
    179      1.1    paulus 
    180      1.1    paulus static void
    181      1.1    paulus z_comp_free(arg)
    182      1.1    paulus     void *arg;
    183      1.1    paulus {
    184      1.1    paulus     struct deflate_state *state = (struct deflate_state *) arg;
    185      1.1    paulus 
    186      1.1    paulus     deflateEnd(&state->strm);
    187      1.1    paulus     FREE(state, M_DEVBUF);
    188      1.1    paulus }
    189      1.1    paulus 
    190      1.1    paulus static int
    191      1.1    paulus z_comp_init(arg, options, opt_len, unit, hdrlen, debug)
    192      1.1    paulus     void *arg;
    193      1.1    paulus     u_char *options;
    194      1.1    paulus     int opt_len, unit, hdrlen, debug;
    195      1.1    paulus {
    196      1.1    paulus     struct deflate_state *state = (struct deflate_state *) arg;
    197      1.1    paulus 
    198      1.6  christos     if (opt_len < CILEN_DEFLATE
    199      1.6  christos 	|| (options[0] != CI_DEFLATE && options[0] != CI_DEFLATE_DRAFT)
    200      1.1    paulus 	|| options[1] != CILEN_DEFLATE
    201      1.1    paulus 	|| DEFLATE_METHOD(options[2]) != DEFLATE_METHOD_VAL
    202      1.1    paulus 	|| DEFLATE_SIZE(options[2]) != state->w_size
    203      1.1    paulus 	|| options[3] != DEFLATE_CHK_SEQUENCE)
    204      1.1    paulus 	return 0;
    205      1.1    paulus 
    206      1.1    paulus     state->seqno = 0;
    207      1.1    paulus     state->unit = unit;
    208      1.1    paulus     state->hdrlen = hdrlen;
    209      1.1    paulus     state->debug = debug;
    210      1.1    paulus 
    211      1.1    paulus     deflateReset(&state->strm);
    212      1.1    paulus 
    213      1.1    paulus     return 1;
    214      1.1    paulus }
    215      1.1    paulus 
    216      1.1    paulus static void
    217      1.1    paulus z_comp_reset(arg)
    218      1.1    paulus     void *arg;
    219      1.1    paulus {
    220      1.1    paulus     struct deflate_state *state = (struct deflate_state *) arg;
    221      1.1    paulus 
    222      1.1    paulus     state->seqno = 0;
    223      1.1    paulus     deflateReset(&state->strm);
    224      1.1    paulus }
    225      1.1    paulus 
    226      1.1    paulus int
    227      1.1    paulus z_compress(arg, mret, mp, orig_len, maxolen)
    228      1.1    paulus     void *arg;
    229      1.1    paulus     struct mbuf **mret;		/* compressed packet (out) */
    230      1.1    paulus     struct mbuf *mp;		/* uncompressed packet (in) */
    231      1.1    paulus     int orig_len, maxolen;
    232      1.1    paulus {
    233      1.1    paulus     struct deflate_state *state = (struct deflate_state *) arg;
    234      1.1    paulus     u_char *rptr, *wptr;
    235      1.1    paulus     int proto, olen, wspace, r, flush;
    236      1.1    paulus     struct mbuf *m;
    237      1.1    paulus 
    238      1.1    paulus     /*
    239      1.1    paulus      * Check that the protocol is in the range we handle.
    240      1.1    paulus      */
    241      1.1    paulus     rptr = mtod(mp, u_char *);
    242      1.1    paulus     proto = PPP_PROTOCOL(rptr);
    243      1.1    paulus     if (proto > 0x3fff || proto == 0xfd || proto == 0xfb) {
    244      1.1    paulus 	*mret = NULL;
    245      1.1    paulus 	return orig_len;
    246      1.1    paulus     }
    247      1.1    paulus 
    248      1.1    paulus     /* Allocate one mbuf initially. */
    249      1.1    paulus     if (maxolen > orig_len)
    250      1.1    paulus 	maxolen = orig_len;
    251      1.1    paulus     MGET(m, M_DONTWAIT, MT_DATA);
    252      1.1    paulus     *mret = m;
    253      1.1    paulus     if (m != NULL) {
    254      1.1    paulus 	m->m_len = 0;
    255      1.1    paulus 	if (maxolen + state->hdrlen > MLEN)
    256      1.1    paulus 	    MCLGET(m, M_DONTWAIT);
    257      1.1    paulus 	wspace = M_TRAILINGSPACE(m);
    258      1.1    paulus 	if (state->hdrlen + PPP_HDRLEN + 2 < wspace) {
    259      1.1    paulus 	    m->m_data += state->hdrlen;
    260      1.1    paulus 	    wspace -= state->hdrlen;
    261      1.1    paulus 	}
    262      1.1    paulus 	wptr = mtod(m, u_char *);
    263      1.1    paulus 
    264      1.1    paulus 	/*
    265      1.1    paulus 	 * Copy over the PPP header and store the 2-byte sequence number.
    266      1.1    paulus 	 */
    267      1.1    paulus 	wptr[0] = PPP_ADDRESS(rptr);
    268      1.1    paulus 	wptr[1] = PPP_CONTROL(rptr);
    269      1.1    paulus 	wptr[2] = PPP_COMP >> 8;
    270      1.1    paulus 	wptr[3] = PPP_COMP;
    271      1.1    paulus 	wptr += PPP_HDRLEN;
    272      1.1    paulus 	wptr[0] = state->seqno >> 8;
    273      1.1    paulus 	wptr[1] = state->seqno;
    274      1.1    paulus 	wptr += 2;
    275      1.1    paulus 	state->strm.next_out = wptr;
    276      1.1    paulus 	state->strm.avail_out = wspace - (PPP_HDRLEN + 2);
    277      1.1    paulus     } else {
    278      1.1    paulus 	state->strm.next_out = NULL;
    279      1.1    paulus 	state->strm.avail_out = 1000000;
    280      1.1    paulus 	wptr = NULL;
    281      1.1    paulus 	wspace = 0;
    282      1.1    paulus     }
    283      1.1    paulus     ++state->seqno;
    284      1.1    paulus 
    285      1.1    paulus     rptr += (proto > 0xff)? 2: 3;	/* skip 1st proto byte if 0 */
    286      1.1    paulus     state->strm.next_in = rptr;
    287      1.1    paulus     state->strm.avail_in = mtod(mp, u_char *) + mp->m_len - rptr;
    288      1.1    paulus     mp = mp->m_next;
    289      1.1    paulus     flush = (mp == NULL)? Z_PACKET_FLUSH: Z_NO_FLUSH;
    290      1.1    paulus     olen = 0;
    291      1.1    paulus     for (;;) {
    292      1.1    paulus 	r = deflate(&state->strm, flush);
    293      1.1    paulus 	if (r != Z_OK) {
    294      1.3  christos 	    printf("z_compress: deflate returned %d (%s)\n",
    295      1.4  christos 		   r, (state->strm.msg? state->strm.msg: ""));
    296      1.1    paulus 	    break;
    297      1.1    paulus 	}
    298      1.1    paulus 	if (flush != Z_NO_FLUSH && state->strm.avail_out != 0)
    299      1.1    paulus 	    break;		/* all done */
    300      1.1    paulus 	if (state->strm.avail_in == 0 && mp != NULL) {
    301      1.1    paulus 	    state->strm.next_in = mtod(mp, u_char *);
    302      1.1    paulus 	    state->strm.avail_in = mp->m_len;
    303      1.1    paulus 	    mp = mp->m_next;
    304      1.1    paulus 	    if (mp == NULL)
    305      1.1    paulus 		flush = Z_PACKET_FLUSH;
    306      1.1    paulus 	}
    307      1.1    paulus 	if (state->strm.avail_out == 0) {
    308      1.1    paulus 	    if (m != NULL) {
    309      1.1    paulus 		m->m_len = wspace;
    310      1.1    paulus 		olen += wspace;
    311      1.1    paulus 		MGET(m->m_next, M_DONTWAIT, MT_DATA);
    312      1.1    paulus 		m = m->m_next;
    313      1.1    paulus 		if (m != NULL) {
    314      1.1    paulus 		    m->m_len = 0;
    315      1.1    paulus 		    if (maxolen - olen > MLEN)
    316      1.1    paulus 			MCLGET(m, M_DONTWAIT);
    317      1.1    paulus 		    state->strm.next_out = mtod(m, u_char *);
    318      1.1    paulus 		    state->strm.avail_out = wspace = M_TRAILINGSPACE(m);
    319      1.1    paulus 		}
    320      1.1    paulus 	    }
    321      1.1    paulus 	    if (m == NULL) {
    322      1.1    paulus 		state->strm.next_out = NULL;
    323      1.1    paulus 		state->strm.avail_out = 1000000;
    324      1.1    paulus 	    }
    325      1.1    paulus 	}
    326      1.1    paulus     }
    327      1.1    paulus     if (m != NULL)
    328      1.1    paulus 	olen += (m->m_len = wspace - state->strm.avail_out);
    329      1.1    paulus 
    330      1.1    paulus     /*
    331      1.1    paulus      * See if we managed to reduce the size of the packet.
    332      1.1    paulus      */
    333      1.6  christos     if (m != NULL && olen < orig_len) {
    334      1.1    paulus 	state->stats.comp_bytes += olen;
    335      1.1    paulus 	state->stats.comp_packets++;
    336      1.1    paulus     } else {
    337      1.1    paulus 	if (*mret != NULL) {
    338      1.1    paulus 	    m_freem(*mret);
    339      1.1    paulus 	    *mret = NULL;
    340      1.1    paulus 	}
    341      1.1    paulus 	state->stats.inc_bytes += orig_len;
    342      1.1    paulus 	state->stats.inc_packets++;
    343      1.1    paulus 	olen = orig_len;
    344      1.1    paulus     }
    345      1.1    paulus     state->stats.unc_bytes += orig_len;
    346      1.1    paulus     state->stats.unc_packets++;
    347      1.1    paulus 
    348      1.1    paulus     return olen;
    349      1.1    paulus }
    350      1.1    paulus 
    351      1.1    paulus static void
    352      1.1    paulus z_comp_stats(arg, stats)
    353      1.1    paulus     void *arg;
    354      1.1    paulus     struct compstat *stats;
    355      1.1    paulus {
    356      1.1    paulus     struct deflate_state *state = (struct deflate_state *) arg;
    357      1.1    paulus     u_int out;
    358      1.1    paulus 
    359      1.1    paulus     *stats = state->stats;
    360      1.1    paulus     stats->ratio = stats->unc_bytes;
    361      1.1    paulus     out = stats->comp_bytes + stats->inc_bytes;
    362      1.1    paulus     if (stats->ratio <= 0x7ffffff)
    363      1.1    paulus 	stats->ratio <<= 8;
    364      1.1    paulus     else
    365      1.1    paulus 	out >>= 8;
    366      1.1    paulus     if (out != 0)
    367      1.1    paulus 	stats->ratio /= out;
    368      1.1    paulus }
    369      1.1    paulus 
    370      1.1    paulus /*
    371      1.1    paulus  * Allocate space for a decompressor.
    372      1.1    paulus  */
    373      1.1    paulus static void *
    374      1.1    paulus z_decomp_alloc(options, opt_len)
    375      1.1    paulus     u_char *options;
    376      1.1    paulus     int opt_len;
    377      1.1    paulus {
    378      1.1    paulus     struct deflate_state *state;
    379      1.1    paulus     int w_size;
    380      1.1    paulus 
    381      1.6  christos     if (opt_len != CILEN_DEFLATE
    382      1.6  christos 	|| (options[0] != CI_DEFLATE && options[0] != CI_DEFLATE_DRAFT)
    383      1.1    paulus 	|| options[1] != CILEN_DEFLATE
    384      1.1    paulus 	|| DEFLATE_METHOD(options[2]) != DEFLATE_METHOD_VAL
    385      1.1    paulus 	|| options[3] != DEFLATE_CHK_SEQUENCE)
    386      1.1    paulus 	return NULL;
    387      1.1    paulus     w_size = DEFLATE_SIZE(options[2]);
    388      1.1    paulus     if (w_size < DEFLATE_MIN_SIZE || w_size > DEFLATE_MAX_SIZE)
    389      1.1    paulus 	return NULL;
    390      1.1    paulus 
    391      1.1    paulus     MALLOC(state, struct deflate_state *, sizeof(struct deflate_state),
    392      1.1    paulus 	   M_DEVBUF, M_NOWAIT);
    393      1.1    paulus     if (state == NULL)
    394      1.1    paulus 	return NULL;
    395      1.1    paulus 
    396      1.1    paulus     state->strm.next_out = NULL;
    397      1.1    paulus     state->strm.zalloc = zalloc;
    398      1.1    paulus     state->strm.zfree = zfree;
    399      1.1    paulus     if (inflateInit2(&state->strm, -w_size) != Z_OK) {
    400      1.1    paulus 	FREE(state, M_DEVBUF);
    401      1.1    paulus 	return NULL;
    402      1.1    paulus     }
    403      1.1    paulus 
    404      1.1    paulus     state->w_size = w_size;
    405  1.7.4.1     lukem     memset(&state->stats, 0, sizeof(state->stats));
    406      1.1    paulus     return (void *) state;
    407      1.1    paulus }
    408      1.1    paulus 
    409      1.1    paulus static void
    410      1.1    paulus z_decomp_free(arg)
    411      1.1    paulus     void *arg;
    412      1.1    paulus {
    413      1.1    paulus     struct deflate_state *state = (struct deflate_state *) arg;
    414      1.1    paulus 
    415      1.1    paulus     inflateEnd(&state->strm);
    416      1.1    paulus     FREE(state, M_DEVBUF);
    417      1.1    paulus }
    418      1.1    paulus 
    419      1.1    paulus static int
    420      1.1    paulus z_decomp_init(arg, options, opt_len, unit, hdrlen, mru, debug)
    421      1.1    paulus     void *arg;
    422      1.1    paulus     u_char *options;
    423      1.1    paulus     int opt_len, unit, hdrlen, mru, debug;
    424      1.1    paulus {
    425      1.1    paulus     struct deflate_state *state = (struct deflate_state *) arg;
    426      1.1    paulus 
    427      1.6  christos     if (opt_len < CILEN_DEFLATE
    428      1.6  christos 	|| (options[0] != CI_DEFLATE && options[0] != CI_DEFLATE_DRAFT)
    429      1.1    paulus 	|| options[1] != CILEN_DEFLATE
    430      1.1    paulus 	|| DEFLATE_METHOD(options[2]) != DEFLATE_METHOD_VAL
    431      1.1    paulus 	|| DEFLATE_SIZE(options[2]) != state->w_size
    432      1.1    paulus 	|| options[3] != DEFLATE_CHK_SEQUENCE)
    433      1.1    paulus 	return 0;
    434      1.1    paulus 
    435      1.1    paulus     state->seqno = 0;
    436      1.1    paulus     state->unit = unit;
    437      1.1    paulus     state->hdrlen = hdrlen;
    438      1.1    paulus     state->debug = debug;
    439      1.1    paulus     state->mru = mru;
    440      1.1    paulus 
    441      1.1    paulus     inflateReset(&state->strm);
    442      1.1    paulus 
    443      1.1    paulus     return 1;
    444      1.1    paulus }
    445      1.1    paulus 
    446      1.1    paulus static void
    447      1.1    paulus z_decomp_reset(arg)
    448      1.1    paulus     void *arg;
    449      1.1    paulus {
    450      1.1    paulus     struct deflate_state *state = (struct deflate_state *) arg;
    451      1.1    paulus 
    452      1.1    paulus     state->seqno = 0;
    453      1.1    paulus     inflateReset(&state->strm);
    454      1.1    paulus }
    455      1.1    paulus 
    456      1.1    paulus /*
    457      1.1    paulus  * Decompress a Deflate-compressed packet.
    458      1.1    paulus  *
    459      1.1    paulus  * Because of patent problems, we return DECOMP_ERROR for errors
    460      1.1    paulus  * found by inspecting the input data and for system problems, but
    461      1.1    paulus  * DECOMP_FATALERROR for any errors which could possibly be said to
    462      1.1    paulus  * be being detected "after" decompression.  For DECOMP_ERROR,
    463      1.1    paulus  * we can issue a CCP reset-request; for DECOMP_FATALERROR, we may be
    464      1.1    paulus  * infringing a patent of Motorola's if we do, so we take CCP down
    465      1.1    paulus  * instead.
    466      1.1    paulus  *
    467      1.1    paulus  * Given that the frame has the correct sequence number and a good FCS,
    468      1.1    paulus  * errors such as invalid codes in the input most likely indicate a
    469      1.1    paulus  * bug, so we return DECOMP_FATALERROR for them in order to turn off
    470      1.1    paulus  * compression, even though they are detected by inspecting the input.
    471      1.1    paulus  */
    472      1.1    paulus int
    473      1.1    paulus z_decompress(arg, mi, mop)
    474      1.1    paulus     void *arg;
    475      1.1    paulus     struct mbuf *mi, **mop;
    476      1.1    paulus {
    477      1.1    paulus     struct deflate_state *state = (struct deflate_state *) arg;
    478      1.1    paulus     struct mbuf *mo, *mo_head;
    479      1.1    paulus     u_char *rptr, *wptr;
    480      1.1    paulus     int rlen, olen, ospace;
    481      1.1    paulus     int seq, i, flush, r, decode_proto;
    482      1.1    paulus     u_char hdr[PPP_HDRLEN + DEFLATE_OVHD];
    483      1.1    paulus 
    484      1.1    paulus     *mop = NULL;
    485      1.1    paulus     rptr = mtod(mi, u_char *);
    486      1.1    paulus     rlen = mi->m_len;
    487      1.1    paulus     for (i = 0; i < PPP_HDRLEN + DEFLATE_OVHD; ++i) {
    488      1.1    paulus 	while (rlen <= 0) {
    489      1.1    paulus 	    mi = mi->m_next;
    490      1.1    paulus 	    if (mi == NULL)
    491      1.1    paulus 		return DECOMP_ERROR;
    492      1.1    paulus 	    rptr = mtod(mi, u_char *);
    493      1.1    paulus 	    rlen = mi->m_len;
    494      1.1    paulus 	}
    495      1.1    paulus 	hdr[i] = *rptr++;
    496      1.1    paulus 	--rlen;
    497      1.1    paulus     }
    498      1.1    paulus 
    499      1.1    paulus     /* Check the sequence number. */
    500      1.1    paulus     seq = (hdr[PPP_HDRLEN] << 8) + hdr[PPP_HDRLEN+1];
    501      1.1    paulus     if (seq != state->seqno) {
    502      1.1    paulus 	if (state->debug)
    503      1.3  christos 	    printf("z_decompress%d: bad seq # %d, expected %d\n",
    504      1.4  christos 		   state->unit, seq, state->seqno);
    505      1.1    paulus 	return DECOMP_ERROR;
    506      1.1    paulus     }
    507      1.1    paulus     ++state->seqno;
    508      1.1    paulus 
    509      1.1    paulus     /* Allocate an output mbuf. */
    510      1.1    paulus     MGETHDR(mo, M_DONTWAIT, MT_DATA);
    511      1.1    paulus     if (mo == NULL)
    512      1.1    paulus 	return DECOMP_ERROR;
    513      1.1    paulus     mo_head = mo;
    514      1.1    paulus     mo->m_len = 0;
    515      1.1    paulus     mo->m_next = NULL;
    516      1.1    paulus     MCLGET(mo, M_DONTWAIT);
    517      1.1    paulus     ospace = M_TRAILINGSPACE(mo);
    518      1.1    paulus     if (state->hdrlen + PPP_HDRLEN < ospace) {
    519      1.1    paulus 	mo->m_data += state->hdrlen;
    520      1.1    paulus 	ospace -= state->hdrlen;
    521      1.1    paulus     }
    522      1.1    paulus 
    523      1.1    paulus     /*
    524      1.1    paulus      * Fill in the first part of the PPP header.  The protocol field
    525      1.1    paulus      * comes from the decompressed data.
    526      1.1    paulus      */
    527      1.1    paulus     wptr = mtod(mo, u_char *);
    528      1.1    paulus     wptr[0] = PPP_ADDRESS(hdr);
    529      1.1    paulus     wptr[1] = PPP_CONTROL(hdr);
    530      1.1    paulus     wptr[2] = 0;
    531      1.1    paulus 
    532      1.1    paulus     /*
    533      1.1    paulus      * Set up to call inflate.  We set avail_out to 1 initially so we can
    534      1.1    paulus      * look at the first byte of the output and decide whether we have
    535      1.1    paulus      * a 1-byte or 2-byte protocol field.
    536      1.1    paulus      */
    537      1.1    paulus     state->strm.next_in = rptr;
    538      1.1    paulus     state->strm.avail_in = rlen;
    539      1.1    paulus     mi = mi->m_next;
    540      1.1    paulus     flush = (mi == NULL)? Z_PACKET_FLUSH: Z_NO_FLUSH;
    541      1.1    paulus     rlen += PPP_HDRLEN + DEFLATE_OVHD;
    542      1.1    paulus     state->strm.next_out = wptr + 3;
    543      1.1    paulus     state->strm.avail_out = 1;
    544      1.1    paulus     decode_proto = 1;
    545      1.1    paulus     olen = PPP_HDRLEN;
    546      1.1    paulus 
    547      1.1    paulus     /*
    548      1.1    paulus      * Call inflate, supplying more input or output as needed.
    549      1.1    paulus      */
    550      1.1    paulus     for (;;) {
    551      1.1    paulus 	r = inflate(&state->strm, flush);
    552      1.1    paulus 	if (r != Z_OK) {
    553      1.4  christos #if !DEFLATE_DEBUG
    554      1.1    paulus 	    if (state->debug)
    555      1.4  christos #endif
    556      1.3  christos 		printf("z_decompress%d: inflate returned %d (%s)\n",
    557      1.4  christos 		       state->unit, r, (state->strm.msg? state->strm.msg: ""));
    558      1.1    paulus 	    m_freem(mo_head);
    559      1.1    paulus 	    return DECOMP_FATALERROR;
    560      1.1    paulus 	}
    561      1.1    paulus 	if (flush != Z_NO_FLUSH && state->strm.avail_out != 0)
    562      1.1    paulus 	    break;		/* all done */
    563      1.1    paulus 	if (state->strm.avail_in == 0 && mi != NULL) {
    564      1.1    paulus 	    state->strm.next_in = mtod(mi, u_char *);
    565      1.1    paulus 	    state->strm.avail_in = mi->m_len;
    566      1.1    paulus 	    rlen += mi->m_len;
    567      1.1    paulus 	    mi = mi->m_next;
    568      1.1    paulus 	    if (mi == NULL)
    569      1.1    paulus 		flush = Z_PACKET_FLUSH;
    570      1.1    paulus 	}
    571      1.1    paulus 	if (state->strm.avail_out == 0) {
    572      1.1    paulus 	    if (decode_proto) {
    573      1.1    paulus 		state->strm.avail_out = ospace - PPP_HDRLEN;
    574      1.1    paulus 		if ((wptr[3] & 1) == 0) {
    575      1.1    paulus 		    /* 2-byte protocol field */
    576      1.1    paulus 		    wptr[2] = wptr[3];
    577      1.1    paulus 		    --state->strm.next_out;
    578      1.1    paulus 		    ++state->strm.avail_out;
    579      1.1    paulus 		    --olen;
    580      1.1    paulus 		}
    581      1.1    paulus 		decode_proto = 0;
    582      1.1    paulus 	    } else {
    583      1.1    paulus 		mo->m_len = ospace;
    584      1.1    paulus 		olen += ospace;
    585      1.1    paulus 		MGET(mo->m_next, M_DONTWAIT, MT_DATA);
    586      1.1    paulus 		mo = mo->m_next;
    587      1.1    paulus 		if (mo == NULL) {
    588      1.1    paulus 		    m_freem(mo_head);
    589      1.1    paulus 		    return DECOMP_ERROR;
    590      1.1    paulus 		}
    591      1.1    paulus 		MCLGET(mo, M_DONTWAIT);
    592      1.1    paulus 		state->strm.next_out = mtod(mo, u_char *);
    593      1.1    paulus 		state->strm.avail_out = ospace = M_TRAILINGSPACE(mo);
    594      1.1    paulus 	    }
    595      1.1    paulus 	}
    596      1.1    paulus     }
    597      1.1    paulus     if (decode_proto) {
    598      1.1    paulus 	m_freem(mo_head);
    599      1.1    paulus 	return DECOMP_ERROR;
    600      1.1    paulus     }
    601      1.1    paulus     olen += (mo->m_len = ospace - state->strm.avail_out);
    602      1.4  christos #if DEFLATE_DEBUG
    603      1.4  christos     if (olen > state->mru + PPP_HDRLEN)
    604      1.4  christos 	printf("ppp_deflate%d: exceeded mru (%d > %d)\n",
    605      1.4  christos 	       state->unit, olen, state->mru + PPP_HDRLEN);
    606      1.4  christos #endif
    607      1.1    paulus 
    608      1.1    paulus     state->stats.unc_bytes += olen;
    609      1.1    paulus     state->stats.unc_packets++;
    610      1.1    paulus     state->stats.comp_bytes += rlen;
    611      1.1    paulus     state->stats.comp_packets++;
    612      1.1    paulus 
    613      1.1    paulus     *mop = mo_head;
    614      1.1    paulus     return DECOMP_OK;
    615      1.1    paulus }
    616      1.1    paulus 
    617      1.1    paulus /*
    618      1.1    paulus  * Incompressible data has arrived - add it to the history.
    619      1.1    paulus  */
    620      1.1    paulus static void
    621      1.1    paulus z_incomp(arg, mi)
    622      1.1    paulus     void *arg;
    623      1.1    paulus     struct mbuf *mi;
    624      1.1    paulus {
    625      1.1    paulus     struct deflate_state *state = (struct deflate_state *) arg;
    626      1.1    paulus     u_char *rptr;
    627      1.1    paulus     int rlen, proto, r;
    628      1.1    paulus 
    629      1.1    paulus     /*
    630      1.1    paulus      * Check that the protocol is one we handle.
    631      1.1    paulus      */
    632      1.1    paulus     rptr = mtod(mi, u_char *);
    633      1.1    paulus     proto = PPP_PROTOCOL(rptr);
    634      1.1    paulus     if (proto > 0x3fff || proto == 0xfd || proto == 0xfb)
    635      1.1    paulus 	return;
    636      1.1    paulus 
    637      1.1    paulus     ++state->seqno;
    638      1.1    paulus 
    639      1.1    paulus     /*
    640      1.1    paulus      * Iterate through the mbufs, adding the characters in them
    641      1.1    paulus      * to the decompressor's history.  For the first mbuf, we start
    642      1.1    paulus      * at the either the 1st or 2nd byte of the protocol field,
    643      1.1    paulus      * depending on whether the protocol value is compressible.
    644      1.1    paulus      */
    645      1.1    paulus     rlen = mi->m_len;
    646      1.1    paulus     state->strm.next_in = rptr + 3;
    647      1.1    paulus     state->strm.avail_in = rlen - 3;
    648      1.1    paulus     if (proto > 0xff) {
    649      1.1    paulus 	--state->strm.next_in;
    650      1.1    paulus 	++state->strm.avail_in;
    651      1.1    paulus     }
    652      1.1    paulus     for (;;) {
    653      1.1    paulus 	r = inflateIncomp(&state->strm);
    654      1.1    paulus 	if (r != Z_OK) {
    655      1.1    paulus 	    /* gak! */
    656      1.4  christos #if !DEFLATE_DEBUG
    657      1.4  christos 	    if (state->debug)
    658      1.4  christos #endif
    659      1.3  christos 		printf("z_incomp%d: inflateIncomp returned %d (%s)\n",
    660      1.4  christos 		       state->unit, r, (state->strm.msg? state->strm.msg: ""));
    661      1.1    paulus 	    return;
    662      1.1    paulus 	}
    663      1.1    paulus 	mi = mi->m_next;
    664      1.1    paulus 	if (mi == NULL)
    665      1.1    paulus 	    break;
    666      1.1    paulus 	state->strm.next_in = mtod(mi, u_char *);
    667      1.1    paulus 	state->strm.avail_in = mi->m_len;
    668      1.1    paulus 	rlen += mi->m_len;
    669      1.1    paulus     }
    670      1.1    paulus 
    671      1.1    paulus     /*
    672      1.1    paulus      * Update stats.
    673      1.1    paulus      */
    674      1.1    paulus     state->stats.inc_bytes += rlen;
    675      1.1    paulus     state->stats.inc_packets++;
    676      1.1    paulus     state->stats.unc_bytes += rlen;
    677      1.1    paulus     state->stats.unc_packets++;
    678      1.1    paulus }
    679      1.1    paulus 
    680      1.1    paulus #endif /* DO_DEFLATE */
    681