ppp-deflate.c revision 1.12 1 1.12 itojun /* $NetBSD: ppp-deflate.c,v 1.12 2002/09/13 14:32:11 itojun 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 1.12 itojun * Copyright (c) 1989-2002 Paul Mackerras. All rights reserved.
10 1.1 paulus *
11 1.12 itojun * Redistribution and use in source and binary forms, with or without
12 1.12 itojun * modification, are permitted provided that the following conditions
13 1.12 itojun * are met:
14 1.12 itojun *
15 1.12 itojun * 1. Redistributions of source code must retain the above copyright
16 1.12 itojun * notice, this list of conditions and the following disclaimer.
17 1.12 itojun *
18 1.12 itojun * 2. Redistributions in binary form must reproduce the above copyright
19 1.12 itojun * notice, this list of conditions and the following disclaimer in
20 1.12 itojun * the documentation and/or other materials provided with the
21 1.12 itojun * distribution.
22 1.12 itojun *
23 1.12 itojun * 3. The name(s) of the authors of this software must not be used to
24 1.12 itojun * endorse or promote products derived from this software without
25 1.12 itojun * prior written permission.
26 1.12 itojun *
27 1.12 itojun * 4. Redistributions of any form whatsoever must retain the following
28 1.12 itojun * acknowledgment:
29 1.12 itojun * "This product includes software developed by Paul Mackerras
30 1.12 itojun * <paulus (at) samba.org>".
31 1.12 itojun *
32 1.12 itojun * THE AUTHORS OF THIS SOFTWARE DISCLAIM ALL WARRANTIES WITH REGARD TO
33 1.12 itojun * THIS SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
34 1.12 itojun * AND FITNESS, IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY
35 1.12 itojun * SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
36 1.12 itojun * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN
37 1.12 itojun * AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING
38 1.12 itojun * OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
39 1.1 paulus */
40 1.9 lukem
41 1.9 lukem #include <sys/cdefs.h>
42 1.12 itojun __KERNEL_RCSID(0, "$NetBSD: ppp-deflate.c,v 1.12 2002/09/13 14:32:11 itojun Exp $");
43 1.1 paulus
44 1.1 paulus #include <sys/param.h>
45 1.1 paulus #include <sys/systm.h>
46 1.1 paulus #include <sys/mbuf.h>
47 1.1 paulus #include <net/ppp_defs.h>
48 1.1 paulus #include <net/zlib.h>
49 1.1 paulus
50 1.1 paulus #define PACKETPTR struct mbuf *
51 1.1 paulus #include <net/ppp-comp.h>
52 1.1 paulus
53 1.1 paulus #if DO_DEFLATE
54 1.1 paulus
55 1.4 christos #define DEFLATE_DEBUG 1
56 1.4 christos
57 1.1 paulus /*
58 1.1 paulus * State for a Deflate (de)compressor.
59 1.1 paulus */
60 1.1 paulus struct deflate_state {
61 1.1 paulus int seqno;
62 1.1 paulus int w_size;
63 1.1 paulus int unit;
64 1.1 paulus int hdrlen;
65 1.1 paulus int mru;
66 1.1 paulus int debug;
67 1.1 paulus z_stream strm;
68 1.1 paulus struct compstat stats;
69 1.1 paulus };
70 1.1 paulus
71 1.1 paulus #define DEFLATE_OVHD 2 /* Deflate overhead/packet */
72 1.1 paulus
73 1.1 paulus static void *zalloc __P((void *, u_int items, u_int size));
74 1.6 christos static void zfree __P((void *, void *ptr));
75 1.1 paulus static void *z_comp_alloc __P((u_char *options, int opt_len));
76 1.1 paulus static void *z_decomp_alloc __P((u_char *options, int opt_len));
77 1.1 paulus static void z_comp_free __P((void *state));
78 1.1 paulus static void z_decomp_free __P((void *state));
79 1.1 paulus static int z_comp_init __P((void *state, u_char *options, int opt_len,
80 1.1 paulus int unit, int hdrlen, int debug));
81 1.1 paulus static int z_decomp_init __P((void *state, u_char *options, int opt_len,
82 1.1 paulus int unit, int hdrlen, int mru, int debug));
83 1.1 paulus static int z_compress __P((void *state, struct mbuf **mret,
84 1.1 paulus struct mbuf *mp, int slen, int maxolen));
85 1.1 paulus static void z_incomp __P((void *state, struct mbuf *dmsg));
86 1.1 paulus static int z_decompress __P((void *state, struct mbuf *cmp,
87 1.1 paulus struct mbuf **dmpp));
88 1.1 paulus static void z_comp_reset __P((void *state));
89 1.1 paulus static void z_decomp_reset __P((void *state));
90 1.1 paulus static void z_comp_stats __P((void *state, struct compstat *stats));
91 1.1 paulus
92 1.1 paulus /*
93 1.1 paulus * Procedures exported to if_ppp.c.
94 1.1 paulus */
95 1.1 paulus struct compressor ppp_deflate = {
96 1.1 paulus CI_DEFLATE, /* compress_proto */
97 1.1 paulus z_comp_alloc, /* comp_alloc */
98 1.1 paulus z_comp_free, /* comp_free */
99 1.1 paulus z_comp_init, /* comp_init */
100 1.1 paulus z_comp_reset, /* comp_reset */
101 1.1 paulus z_compress, /* compress */
102 1.1 paulus z_comp_stats, /* comp_stat */
103 1.1 paulus z_decomp_alloc, /* decomp_alloc */
104 1.1 paulus z_decomp_free, /* decomp_free */
105 1.1 paulus z_decomp_init, /* decomp_init */
106 1.1 paulus z_decomp_reset, /* decomp_reset */
107 1.1 paulus z_decompress, /* decompress */
108 1.1 paulus z_incomp, /* incomp */
109 1.1 paulus z_comp_stats, /* decomp_stat */
110 1.1 paulus };
111 1.1 paulus
112 1.6 christos struct compressor ppp_deflate_draft = {
113 1.6 christos CI_DEFLATE_DRAFT, /* compress_proto */
114 1.6 christos z_comp_alloc, /* comp_alloc */
115 1.6 christos z_comp_free, /* comp_free */
116 1.6 christos z_comp_init, /* comp_init */
117 1.6 christos z_comp_reset, /* comp_reset */
118 1.6 christos z_compress, /* compress */
119 1.6 christos z_comp_stats, /* comp_stat */
120 1.6 christos z_decomp_alloc, /* decomp_alloc */
121 1.6 christos z_decomp_free, /* decomp_free */
122 1.6 christos z_decomp_init, /* decomp_init */
123 1.6 christos z_decomp_reset, /* decomp_reset */
124 1.6 christos z_decompress, /* decompress */
125 1.6 christos z_incomp, /* incomp */
126 1.6 christos z_comp_stats, /* decomp_stat */
127 1.6 christos };
128 1.1 paulus /*
129 1.1 paulus * Space allocation and freeing routines for use by zlib routines.
130 1.1 paulus */
131 1.1 paulus void *
132 1.1 paulus zalloc(notused, items, size)
133 1.1 paulus void *notused;
134 1.1 paulus u_int items, size;
135 1.1 paulus {
136 1.1 paulus void *ptr;
137 1.1 paulus
138 1.7 thorpej ptr = malloc(items * size, M_DEVBUF, M_NOWAIT);
139 1.1 paulus return ptr;
140 1.1 paulus }
141 1.1 paulus
142 1.1 paulus void
143 1.6 christos zfree(notused, ptr)
144 1.1 paulus void *notused;
145 1.1 paulus void *ptr;
146 1.1 paulus {
147 1.7 thorpej free(ptr, M_DEVBUF);
148 1.1 paulus }
149 1.1 paulus
150 1.1 paulus /*
151 1.1 paulus * Allocate space for a compressor.
152 1.1 paulus */
153 1.1 paulus static void *
154 1.1 paulus z_comp_alloc(options, opt_len)
155 1.1 paulus u_char *options;
156 1.1 paulus int opt_len;
157 1.1 paulus {
158 1.1 paulus struct deflate_state *state;
159 1.1 paulus int w_size;
160 1.1 paulus
161 1.6 christos if (opt_len != CILEN_DEFLATE
162 1.6 christos || (options[0] != CI_DEFLATE && options[0] != CI_DEFLATE_DRAFT)
163 1.1 paulus || options[1] != CILEN_DEFLATE
164 1.1 paulus || DEFLATE_METHOD(options[2]) != DEFLATE_METHOD_VAL
165 1.1 paulus || options[3] != DEFLATE_CHK_SEQUENCE)
166 1.1 paulus return NULL;
167 1.1 paulus w_size = DEFLATE_SIZE(options[2]);
168 1.1 paulus if (w_size < DEFLATE_MIN_SIZE || w_size > DEFLATE_MAX_SIZE)
169 1.1 paulus return NULL;
170 1.1 paulus
171 1.1 paulus MALLOC(state, struct deflate_state *, sizeof(struct deflate_state),
172 1.1 paulus M_DEVBUF, M_NOWAIT);
173 1.1 paulus if (state == NULL)
174 1.1 paulus return NULL;
175 1.1 paulus
176 1.1 paulus state->strm.next_in = NULL;
177 1.1 paulus state->strm.zalloc = zalloc;
178 1.1 paulus state->strm.zfree = zfree;
179 1.1 paulus if (deflateInit2(&state->strm, Z_DEFAULT_COMPRESSION, DEFLATE_METHOD_VAL,
180 1.6 christos -w_size, 8, Z_DEFAULT_STRATEGY) != Z_OK) {
181 1.1 paulus FREE(state, M_DEVBUF);
182 1.1 paulus return NULL;
183 1.1 paulus }
184 1.1 paulus
185 1.1 paulus state->w_size = w_size;
186 1.8 thorpej memset(&state->stats, 0, sizeof(state->stats));
187 1.1 paulus return (void *) state;
188 1.1 paulus }
189 1.1 paulus
190 1.1 paulus static void
191 1.1 paulus z_comp_free(arg)
192 1.1 paulus void *arg;
193 1.1 paulus {
194 1.1 paulus struct deflate_state *state = (struct deflate_state *) arg;
195 1.1 paulus
196 1.1 paulus deflateEnd(&state->strm);
197 1.1 paulus FREE(state, M_DEVBUF);
198 1.1 paulus }
199 1.1 paulus
200 1.1 paulus static int
201 1.1 paulus z_comp_init(arg, options, opt_len, unit, hdrlen, debug)
202 1.1 paulus void *arg;
203 1.1 paulus u_char *options;
204 1.1 paulus int opt_len, unit, hdrlen, debug;
205 1.1 paulus {
206 1.1 paulus struct deflate_state *state = (struct deflate_state *) arg;
207 1.1 paulus
208 1.6 christos if (opt_len < CILEN_DEFLATE
209 1.6 christos || (options[0] != CI_DEFLATE && options[0] != CI_DEFLATE_DRAFT)
210 1.1 paulus || options[1] != CILEN_DEFLATE
211 1.1 paulus || DEFLATE_METHOD(options[2]) != DEFLATE_METHOD_VAL
212 1.1 paulus || DEFLATE_SIZE(options[2]) != state->w_size
213 1.1 paulus || options[3] != DEFLATE_CHK_SEQUENCE)
214 1.1 paulus return 0;
215 1.1 paulus
216 1.1 paulus state->seqno = 0;
217 1.1 paulus state->unit = unit;
218 1.1 paulus state->hdrlen = hdrlen;
219 1.1 paulus state->debug = debug;
220 1.1 paulus
221 1.1 paulus deflateReset(&state->strm);
222 1.1 paulus
223 1.1 paulus return 1;
224 1.1 paulus }
225 1.1 paulus
226 1.1 paulus static void
227 1.1 paulus z_comp_reset(arg)
228 1.1 paulus void *arg;
229 1.1 paulus {
230 1.1 paulus struct deflate_state *state = (struct deflate_state *) arg;
231 1.1 paulus
232 1.1 paulus state->seqno = 0;
233 1.1 paulus deflateReset(&state->strm);
234 1.1 paulus }
235 1.1 paulus
236 1.1 paulus int
237 1.1 paulus z_compress(arg, mret, mp, orig_len, maxolen)
238 1.1 paulus void *arg;
239 1.1 paulus struct mbuf **mret; /* compressed packet (out) */
240 1.1 paulus struct mbuf *mp; /* uncompressed packet (in) */
241 1.1 paulus int orig_len, maxolen;
242 1.1 paulus {
243 1.1 paulus struct deflate_state *state = (struct deflate_state *) arg;
244 1.1 paulus u_char *rptr, *wptr;
245 1.1 paulus int proto, olen, wspace, r, flush;
246 1.1 paulus struct mbuf *m;
247 1.1 paulus
248 1.1 paulus /*
249 1.1 paulus * Check that the protocol is in the range we handle.
250 1.1 paulus */
251 1.1 paulus rptr = mtod(mp, u_char *);
252 1.1 paulus proto = PPP_PROTOCOL(rptr);
253 1.1 paulus if (proto > 0x3fff || proto == 0xfd || proto == 0xfb) {
254 1.1 paulus *mret = NULL;
255 1.1 paulus return orig_len;
256 1.1 paulus }
257 1.1 paulus
258 1.1 paulus /* Allocate one mbuf initially. */
259 1.1 paulus if (maxolen > orig_len)
260 1.1 paulus maxolen = orig_len;
261 1.1 paulus MGET(m, M_DONTWAIT, MT_DATA);
262 1.1 paulus *mret = m;
263 1.1 paulus if (m != NULL) {
264 1.1 paulus m->m_len = 0;
265 1.1 paulus if (maxolen + state->hdrlen > MLEN)
266 1.1 paulus MCLGET(m, M_DONTWAIT);
267 1.1 paulus wspace = M_TRAILINGSPACE(m);
268 1.1 paulus if (state->hdrlen + PPP_HDRLEN + 2 < wspace) {
269 1.1 paulus m->m_data += state->hdrlen;
270 1.1 paulus wspace -= state->hdrlen;
271 1.1 paulus }
272 1.1 paulus wptr = mtod(m, u_char *);
273 1.1 paulus
274 1.1 paulus /*
275 1.1 paulus * Copy over the PPP header and store the 2-byte sequence number.
276 1.1 paulus */
277 1.1 paulus wptr[0] = PPP_ADDRESS(rptr);
278 1.1 paulus wptr[1] = PPP_CONTROL(rptr);
279 1.1 paulus wptr[2] = PPP_COMP >> 8;
280 1.1 paulus wptr[3] = PPP_COMP;
281 1.1 paulus wptr += PPP_HDRLEN;
282 1.1 paulus wptr[0] = state->seqno >> 8;
283 1.1 paulus wptr[1] = state->seqno;
284 1.1 paulus wptr += 2;
285 1.1 paulus state->strm.next_out = wptr;
286 1.1 paulus state->strm.avail_out = wspace - (PPP_HDRLEN + 2);
287 1.1 paulus } else {
288 1.1 paulus state->strm.next_out = NULL;
289 1.1 paulus state->strm.avail_out = 1000000;
290 1.1 paulus wptr = NULL;
291 1.1 paulus wspace = 0;
292 1.1 paulus }
293 1.1 paulus ++state->seqno;
294 1.1 paulus
295 1.1 paulus rptr += (proto > 0xff)? 2: 3; /* skip 1st proto byte if 0 */
296 1.1 paulus state->strm.next_in = rptr;
297 1.1 paulus state->strm.avail_in = mtod(mp, u_char *) + mp->m_len - rptr;
298 1.1 paulus mp = mp->m_next;
299 1.1 paulus flush = (mp == NULL)? Z_PACKET_FLUSH: Z_NO_FLUSH;
300 1.1 paulus olen = 0;
301 1.1 paulus for (;;) {
302 1.1 paulus r = deflate(&state->strm, flush);
303 1.1 paulus if (r != Z_OK) {
304 1.3 christos printf("z_compress: deflate returned %d (%s)\n",
305 1.4 christos r, (state->strm.msg? state->strm.msg: ""));
306 1.1 paulus break;
307 1.1 paulus }
308 1.1 paulus if (flush != Z_NO_FLUSH && state->strm.avail_out != 0)
309 1.1 paulus break; /* all done */
310 1.1 paulus if (state->strm.avail_in == 0 && mp != NULL) {
311 1.1 paulus state->strm.next_in = mtod(mp, u_char *);
312 1.1 paulus state->strm.avail_in = mp->m_len;
313 1.1 paulus mp = mp->m_next;
314 1.1 paulus if (mp == NULL)
315 1.1 paulus flush = Z_PACKET_FLUSH;
316 1.1 paulus }
317 1.1 paulus if (state->strm.avail_out == 0) {
318 1.1 paulus if (m != NULL) {
319 1.1 paulus m->m_len = wspace;
320 1.1 paulus olen += wspace;
321 1.1 paulus MGET(m->m_next, M_DONTWAIT, MT_DATA);
322 1.1 paulus m = m->m_next;
323 1.1 paulus if (m != NULL) {
324 1.1 paulus m->m_len = 0;
325 1.1 paulus if (maxolen - olen > MLEN)
326 1.1 paulus MCLGET(m, M_DONTWAIT);
327 1.1 paulus state->strm.next_out = mtod(m, u_char *);
328 1.1 paulus state->strm.avail_out = wspace = M_TRAILINGSPACE(m);
329 1.1 paulus }
330 1.1 paulus }
331 1.1 paulus if (m == NULL) {
332 1.1 paulus state->strm.next_out = NULL;
333 1.1 paulus state->strm.avail_out = 1000000;
334 1.1 paulus }
335 1.1 paulus }
336 1.1 paulus }
337 1.1 paulus if (m != NULL)
338 1.1 paulus olen += (m->m_len = wspace - state->strm.avail_out);
339 1.1 paulus
340 1.1 paulus /*
341 1.1 paulus * See if we managed to reduce the size of the packet.
342 1.1 paulus */
343 1.6 christos if (m != NULL && olen < orig_len) {
344 1.1 paulus state->stats.comp_bytes += olen;
345 1.1 paulus state->stats.comp_packets++;
346 1.1 paulus } else {
347 1.1 paulus if (*mret != NULL) {
348 1.1 paulus m_freem(*mret);
349 1.1 paulus *mret = NULL;
350 1.1 paulus }
351 1.1 paulus state->stats.inc_bytes += orig_len;
352 1.1 paulus state->stats.inc_packets++;
353 1.1 paulus olen = orig_len;
354 1.1 paulus }
355 1.1 paulus state->stats.unc_bytes += orig_len;
356 1.1 paulus state->stats.unc_packets++;
357 1.1 paulus
358 1.1 paulus return olen;
359 1.1 paulus }
360 1.1 paulus
361 1.1 paulus static void
362 1.1 paulus z_comp_stats(arg, stats)
363 1.1 paulus void *arg;
364 1.1 paulus struct compstat *stats;
365 1.1 paulus {
366 1.1 paulus struct deflate_state *state = (struct deflate_state *) arg;
367 1.1 paulus u_int out;
368 1.1 paulus
369 1.1 paulus *stats = state->stats;
370 1.1 paulus stats->ratio = stats->unc_bytes;
371 1.1 paulus out = stats->comp_bytes + stats->inc_bytes;
372 1.1 paulus if (stats->ratio <= 0x7ffffff)
373 1.1 paulus stats->ratio <<= 8;
374 1.1 paulus else
375 1.1 paulus out >>= 8;
376 1.1 paulus if (out != 0)
377 1.1 paulus stats->ratio /= out;
378 1.1 paulus }
379 1.1 paulus
380 1.1 paulus /*
381 1.1 paulus * Allocate space for a decompressor.
382 1.1 paulus */
383 1.1 paulus static void *
384 1.1 paulus z_decomp_alloc(options, opt_len)
385 1.1 paulus u_char *options;
386 1.1 paulus int opt_len;
387 1.1 paulus {
388 1.1 paulus struct deflate_state *state;
389 1.1 paulus int w_size;
390 1.1 paulus
391 1.6 christos if (opt_len != CILEN_DEFLATE
392 1.6 christos || (options[0] != CI_DEFLATE && options[0] != CI_DEFLATE_DRAFT)
393 1.1 paulus || options[1] != CILEN_DEFLATE
394 1.1 paulus || DEFLATE_METHOD(options[2]) != DEFLATE_METHOD_VAL
395 1.1 paulus || options[3] != DEFLATE_CHK_SEQUENCE)
396 1.1 paulus return NULL;
397 1.1 paulus w_size = DEFLATE_SIZE(options[2]);
398 1.1 paulus if (w_size < DEFLATE_MIN_SIZE || w_size > DEFLATE_MAX_SIZE)
399 1.1 paulus return NULL;
400 1.1 paulus
401 1.1 paulus MALLOC(state, struct deflate_state *, sizeof(struct deflate_state),
402 1.1 paulus M_DEVBUF, M_NOWAIT);
403 1.1 paulus if (state == NULL)
404 1.1 paulus return NULL;
405 1.1 paulus
406 1.1 paulus state->strm.next_out = NULL;
407 1.1 paulus state->strm.zalloc = zalloc;
408 1.1 paulus state->strm.zfree = zfree;
409 1.1 paulus if (inflateInit2(&state->strm, -w_size) != Z_OK) {
410 1.1 paulus FREE(state, M_DEVBUF);
411 1.1 paulus return NULL;
412 1.1 paulus }
413 1.1 paulus
414 1.1 paulus state->w_size = w_size;
415 1.8 thorpej memset(&state->stats, 0, sizeof(state->stats));
416 1.1 paulus return (void *) state;
417 1.1 paulus }
418 1.1 paulus
419 1.1 paulus static void
420 1.1 paulus z_decomp_free(arg)
421 1.1 paulus void *arg;
422 1.1 paulus {
423 1.1 paulus struct deflate_state *state = (struct deflate_state *) arg;
424 1.1 paulus
425 1.1 paulus inflateEnd(&state->strm);
426 1.1 paulus FREE(state, M_DEVBUF);
427 1.1 paulus }
428 1.1 paulus
429 1.1 paulus static int
430 1.1 paulus z_decomp_init(arg, options, opt_len, unit, hdrlen, mru, debug)
431 1.1 paulus void *arg;
432 1.1 paulus u_char *options;
433 1.1 paulus int opt_len, unit, hdrlen, mru, debug;
434 1.1 paulus {
435 1.1 paulus struct deflate_state *state = (struct deflate_state *) arg;
436 1.1 paulus
437 1.6 christos if (opt_len < CILEN_DEFLATE
438 1.6 christos || (options[0] != CI_DEFLATE && options[0] != CI_DEFLATE_DRAFT)
439 1.1 paulus || options[1] != CILEN_DEFLATE
440 1.1 paulus || DEFLATE_METHOD(options[2]) != DEFLATE_METHOD_VAL
441 1.1 paulus || DEFLATE_SIZE(options[2]) != state->w_size
442 1.1 paulus || options[3] != DEFLATE_CHK_SEQUENCE)
443 1.1 paulus return 0;
444 1.1 paulus
445 1.1 paulus state->seqno = 0;
446 1.1 paulus state->unit = unit;
447 1.1 paulus state->hdrlen = hdrlen;
448 1.1 paulus state->debug = debug;
449 1.1 paulus state->mru = mru;
450 1.1 paulus
451 1.1 paulus inflateReset(&state->strm);
452 1.1 paulus
453 1.1 paulus return 1;
454 1.1 paulus }
455 1.1 paulus
456 1.1 paulus static void
457 1.1 paulus z_decomp_reset(arg)
458 1.1 paulus void *arg;
459 1.1 paulus {
460 1.1 paulus struct deflate_state *state = (struct deflate_state *) arg;
461 1.1 paulus
462 1.1 paulus state->seqno = 0;
463 1.1 paulus inflateReset(&state->strm);
464 1.1 paulus }
465 1.1 paulus
466 1.1 paulus /*
467 1.1 paulus * Decompress a Deflate-compressed packet.
468 1.1 paulus *
469 1.1 paulus * Because of patent problems, we return DECOMP_ERROR for errors
470 1.1 paulus * found by inspecting the input data and for system problems, but
471 1.1 paulus * DECOMP_FATALERROR for any errors which could possibly be said to
472 1.1 paulus * be being detected "after" decompression. For DECOMP_ERROR,
473 1.1 paulus * we can issue a CCP reset-request; for DECOMP_FATALERROR, we may be
474 1.1 paulus * infringing a patent of Motorola's if we do, so we take CCP down
475 1.1 paulus * instead.
476 1.1 paulus *
477 1.1 paulus * Given that the frame has the correct sequence number and a good FCS,
478 1.1 paulus * errors such as invalid codes in the input most likely indicate a
479 1.1 paulus * bug, so we return DECOMP_FATALERROR for them in order to turn off
480 1.1 paulus * compression, even though they are detected by inspecting the input.
481 1.1 paulus */
482 1.1 paulus int
483 1.1 paulus z_decompress(arg, mi, mop)
484 1.1 paulus void *arg;
485 1.1 paulus struct mbuf *mi, **mop;
486 1.1 paulus {
487 1.1 paulus struct deflate_state *state = (struct deflate_state *) arg;
488 1.1 paulus struct mbuf *mo, *mo_head;
489 1.1 paulus u_char *rptr, *wptr;
490 1.1 paulus int rlen, olen, ospace;
491 1.1 paulus int seq, i, flush, r, decode_proto;
492 1.1 paulus u_char hdr[PPP_HDRLEN + DEFLATE_OVHD];
493 1.1 paulus
494 1.1 paulus *mop = NULL;
495 1.1 paulus rptr = mtod(mi, u_char *);
496 1.1 paulus rlen = mi->m_len;
497 1.1 paulus for (i = 0; i < PPP_HDRLEN + DEFLATE_OVHD; ++i) {
498 1.1 paulus while (rlen <= 0) {
499 1.1 paulus mi = mi->m_next;
500 1.1 paulus if (mi == NULL)
501 1.1 paulus return DECOMP_ERROR;
502 1.1 paulus rptr = mtod(mi, u_char *);
503 1.1 paulus rlen = mi->m_len;
504 1.1 paulus }
505 1.1 paulus hdr[i] = *rptr++;
506 1.1 paulus --rlen;
507 1.1 paulus }
508 1.1 paulus
509 1.1 paulus /* Check the sequence number. */
510 1.1 paulus seq = (hdr[PPP_HDRLEN] << 8) + hdr[PPP_HDRLEN+1];
511 1.1 paulus if (seq != state->seqno) {
512 1.1 paulus if (state->debug)
513 1.3 christos printf("z_decompress%d: bad seq # %d, expected %d\n",
514 1.4 christos state->unit, seq, state->seqno);
515 1.1 paulus return DECOMP_ERROR;
516 1.1 paulus }
517 1.1 paulus ++state->seqno;
518 1.1 paulus
519 1.1 paulus /* Allocate an output mbuf. */
520 1.1 paulus MGETHDR(mo, M_DONTWAIT, MT_DATA);
521 1.1 paulus if (mo == NULL)
522 1.1 paulus return DECOMP_ERROR;
523 1.1 paulus mo_head = mo;
524 1.1 paulus mo->m_len = 0;
525 1.1 paulus mo->m_next = NULL;
526 1.1 paulus MCLGET(mo, M_DONTWAIT);
527 1.1 paulus ospace = M_TRAILINGSPACE(mo);
528 1.1 paulus if (state->hdrlen + PPP_HDRLEN < ospace) {
529 1.1 paulus mo->m_data += state->hdrlen;
530 1.1 paulus ospace -= state->hdrlen;
531 1.1 paulus }
532 1.1 paulus
533 1.1 paulus /*
534 1.1 paulus * Fill in the first part of the PPP header. The protocol field
535 1.1 paulus * comes from the decompressed data.
536 1.1 paulus */
537 1.1 paulus wptr = mtod(mo, u_char *);
538 1.1 paulus wptr[0] = PPP_ADDRESS(hdr);
539 1.1 paulus wptr[1] = PPP_CONTROL(hdr);
540 1.1 paulus wptr[2] = 0;
541 1.1 paulus
542 1.1 paulus /*
543 1.1 paulus * Set up to call inflate. We set avail_out to 1 initially so we can
544 1.1 paulus * look at the first byte of the output and decide whether we have
545 1.1 paulus * a 1-byte or 2-byte protocol field.
546 1.1 paulus */
547 1.1 paulus state->strm.next_in = rptr;
548 1.1 paulus state->strm.avail_in = rlen;
549 1.1 paulus mi = mi->m_next;
550 1.1 paulus flush = (mi == NULL)? Z_PACKET_FLUSH: Z_NO_FLUSH;
551 1.1 paulus rlen += PPP_HDRLEN + DEFLATE_OVHD;
552 1.1 paulus state->strm.next_out = wptr + 3;
553 1.1 paulus state->strm.avail_out = 1;
554 1.1 paulus decode_proto = 1;
555 1.11 fvdl olen = 0;
556 1.1 paulus
557 1.1 paulus /*
558 1.1 paulus * Call inflate, supplying more input or output as needed.
559 1.1 paulus */
560 1.1 paulus for (;;) {
561 1.1 paulus r = inflate(&state->strm, flush);
562 1.1 paulus if (r != Z_OK) {
563 1.4 christos #if !DEFLATE_DEBUG
564 1.1 paulus if (state->debug)
565 1.4 christos #endif
566 1.3 christos printf("z_decompress%d: inflate returned %d (%s)\n",
567 1.4 christos state->unit, r, (state->strm.msg? state->strm.msg: ""));
568 1.1 paulus m_freem(mo_head);
569 1.1 paulus return DECOMP_FATALERROR;
570 1.1 paulus }
571 1.1 paulus if (flush != Z_NO_FLUSH && state->strm.avail_out != 0)
572 1.1 paulus break; /* all done */
573 1.1 paulus if (state->strm.avail_in == 0 && mi != NULL) {
574 1.1 paulus state->strm.next_in = mtod(mi, u_char *);
575 1.1 paulus state->strm.avail_in = mi->m_len;
576 1.1 paulus rlen += mi->m_len;
577 1.1 paulus mi = mi->m_next;
578 1.1 paulus if (mi == NULL)
579 1.1 paulus flush = Z_PACKET_FLUSH;
580 1.1 paulus }
581 1.1 paulus if (state->strm.avail_out == 0) {
582 1.1 paulus if (decode_proto) {
583 1.1 paulus state->strm.avail_out = ospace - PPP_HDRLEN;
584 1.1 paulus if ((wptr[3] & 1) == 0) {
585 1.1 paulus /* 2-byte protocol field */
586 1.1 paulus wptr[2] = wptr[3];
587 1.1 paulus --state->strm.next_out;
588 1.1 paulus ++state->strm.avail_out;
589 1.1 paulus --olen;
590 1.1 paulus }
591 1.1 paulus decode_proto = 0;
592 1.1 paulus } else {
593 1.1 paulus mo->m_len = ospace;
594 1.1 paulus olen += ospace;
595 1.1 paulus MGET(mo->m_next, M_DONTWAIT, MT_DATA);
596 1.1 paulus mo = mo->m_next;
597 1.1 paulus if (mo == NULL) {
598 1.1 paulus m_freem(mo_head);
599 1.1 paulus return DECOMP_ERROR;
600 1.1 paulus }
601 1.1 paulus MCLGET(mo, M_DONTWAIT);
602 1.1 paulus state->strm.next_out = mtod(mo, u_char *);
603 1.1 paulus state->strm.avail_out = ospace = M_TRAILINGSPACE(mo);
604 1.1 paulus }
605 1.1 paulus }
606 1.1 paulus }
607 1.1 paulus if (decode_proto) {
608 1.1 paulus m_freem(mo_head);
609 1.1 paulus return DECOMP_ERROR;
610 1.1 paulus }
611 1.1 paulus olen += (mo->m_len = ospace - state->strm.avail_out);
612 1.4 christos #if DEFLATE_DEBUG
613 1.4 christos if (olen > state->mru + PPP_HDRLEN)
614 1.4 christos printf("ppp_deflate%d: exceeded mru (%d > %d)\n",
615 1.4 christos state->unit, olen, state->mru + PPP_HDRLEN);
616 1.4 christos #endif
617 1.1 paulus
618 1.1 paulus state->stats.unc_bytes += olen;
619 1.1 paulus state->stats.unc_packets++;
620 1.1 paulus state->stats.comp_bytes += rlen;
621 1.1 paulus state->stats.comp_packets++;
622 1.1 paulus
623 1.1 paulus *mop = mo_head;
624 1.1 paulus return DECOMP_OK;
625 1.1 paulus }
626 1.1 paulus
627 1.1 paulus /*
628 1.1 paulus * Incompressible data has arrived - add it to the history.
629 1.1 paulus */
630 1.1 paulus static void
631 1.1 paulus z_incomp(arg, mi)
632 1.1 paulus void *arg;
633 1.1 paulus struct mbuf *mi;
634 1.1 paulus {
635 1.1 paulus struct deflate_state *state = (struct deflate_state *) arg;
636 1.1 paulus u_char *rptr;
637 1.1 paulus int rlen, proto, r;
638 1.1 paulus
639 1.1 paulus /*
640 1.1 paulus * Check that the protocol is one we handle.
641 1.1 paulus */
642 1.1 paulus rptr = mtod(mi, u_char *);
643 1.1 paulus proto = PPP_PROTOCOL(rptr);
644 1.1 paulus if (proto > 0x3fff || proto == 0xfd || proto == 0xfb)
645 1.1 paulus return;
646 1.1 paulus
647 1.1 paulus ++state->seqno;
648 1.1 paulus
649 1.1 paulus /*
650 1.1 paulus * Iterate through the mbufs, adding the characters in them
651 1.1 paulus * to the decompressor's history. For the first mbuf, we start
652 1.1 paulus * at the either the 1st or 2nd byte of the protocol field,
653 1.1 paulus * depending on whether the protocol value is compressible.
654 1.1 paulus */
655 1.1 paulus rlen = mi->m_len;
656 1.1 paulus state->strm.next_in = rptr + 3;
657 1.1 paulus state->strm.avail_in = rlen - 3;
658 1.1 paulus if (proto > 0xff) {
659 1.1 paulus --state->strm.next_in;
660 1.1 paulus ++state->strm.avail_in;
661 1.1 paulus }
662 1.1 paulus for (;;) {
663 1.1 paulus r = inflateIncomp(&state->strm);
664 1.1 paulus if (r != Z_OK) {
665 1.1 paulus /* gak! */
666 1.4 christos #if !DEFLATE_DEBUG
667 1.4 christos if (state->debug)
668 1.4 christos #endif
669 1.3 christos printf("z_incomp%d: inflateIncomp returned %d (%s)\n",
670 1.4 christos state->unit, r, (state->strm.msg? state->strm.msg: ""));
671 1.1 paulus return;
672 1.1 paulus }
673 1.1 paulus mi = mi->m_next;
674 1.1 paulus if (mi == NULL)
675 1.1 paulus break;
676 1.1 paulus state->strm.next_in = mtod(mi, u_char *);
677 1.1 paulus state->strm.avail_in = mi->m_len;
678 1.1 paulus rlen += mi->m_len;
679 1.1 paulus }
680 1.1 paulus
681 1.1 paulus /*
682 1.1 paulus * Update stats.
683 1.1 paulus */
684 1.1 paulus state->stats.inc_bytes += rlen;
685 1.1 paulus state->stats.inc_packets++;
686 1.1 paulus state->stats.unc_bytes += rlen;
687 1.1 paulus state->stats.unc_packets++;
688 1.1 paulus }
689 1.1 paulus
690 1.1 paulus #endif /* DO_DEFLATE */
691