Linux 4.9.243
[linux/fpc-iii.git] / drivers / net / ppp / ppp_mppe.c
blob92f52a73ec0ef855bb3b1fa3b3399f19817b062f
1 /*
2 * ppp_mppe.c - interface MPPE to the PPP code.
3 * This version is for use with Linux kernel 2.6.14+
5 * By Frank Cusack <fcusack@fcusack.com>.
6 * Copyright (c) 2002,2003,2004 Google, Inc.
7 * All rights reserved.
9 * License:
10 * Permission to use, copy, modify, and distribute this software and its
11 * documentation is hereby granted, provided that the above copyright
12 * notice appears in all copies. This software is provided without any
13 * warranty, express or implied.
15 * ALTERNATIVELY, provided that this notice is retained in full, this product
16 * may be distributed under the terms of the GNU General Public License (GPL),
17 * in which case the provisions of the GPL apply INSTEAD OF those given above.
19 * This program is free software; you can redistribute it and/or modify
20 * it under the terms of the GNU General Public License as published by
21 * the Free Software Foundation; either version 2 of the License, or
22 * (at your option) any later version.
24 * This program is distributed in the hope that it will be useful,
25 * but WITHOUT ANY WARRANTY; without even the implied warranty of
26 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
27 * GNU General Public License for more details.
29 * You should have received a copy of the GNU General Public License
30 * along with this program; if not, see <http://www.gnu.org/licenses/>.
33 * Changelog:
34 * 08/12/05 - Matt Domsch <Matt_Domsch@dell.com>
35 * Only need extra skb padding on transmit, not receive.
36 * 06/18/04 - Matt Domsch <Matt_Domsch@dell.com>, Oleg Makarenko <mole@quadra.ru>
37 * Use Linux kernel 2.6 arc4 and sha1 routines rather than
38 * providing our own.
39 * 2/15/04 - TS: added #include <version.h> and testing for Kernel
40 * version before using
41 * MOD_DEC_USAGE_COUNT/MOD_INC_USAGE_COUNT which are
42 * deprecated in 2.6
45 #include <crypto/hash.h>
46 #include <crypto/skcipher.h>
47 #include <linux/err.h>
48 #include <linux/module.h>
49 #include <linux/kernel.h>
50 #include <linux/init.h>
51 #include <linux/types.h>
52 #include <linux/slab.h>
53 #include <linux/string.h>
54 #include <linux/mm.h>
55 #include <linux/ppp_defs.h>
56 #include <linux/ppp-comp.h>
57 #include <linux/scatterlist.h>
58 #include <asm/unaligned.h>
60 #include "ppp_mppe.h"
62 MODULE_AUTHOR("Frank Cusack <fcusack@fcusack.com>");
63 MODULE_DESCRIPTION("Point-to-Point Protocol Microsoft Point-to-Point Encryption support");
64 MODULE_LICENSE("Dual BSD/GPL");
65 MODULE_ALIAS("ppp-compress-" __stringify(CI_MPPE));
66 MODULE_SOFTDEP("pre: arc4");
67 MODULE_VERSION("1.0.2");
69 static unsigned int
70 setup_sg(struct scatterlist *sg, const void *address, unsigned int length)
72 sg_set_buf(sg, address, length);
73 return length;
76 #define SHA1_PAD_SIZE 40
79 * kernel crypto API needs its arguments to be in kmalloc'd memory, not in the module
80 * static data area. That means sha_pad needs to be kmalloc'd.
83 struct sha_pad {
84 unsigned char sha_pad1[SHA1_PAD_SIZE];
85 unsigned char sha_pad2[SHA1_PAD_SIZE];
87 static struct sha_pad *sha_pad;
89 static inline void sha_pad_init(struct sha_pad *shapad)
91 memset(shapad->sha_pad1, 0x00, sizeof(shapad->sha_pad1));
92 memset(shapad->sha_pad2, 0xF2, sizeof(shapad->sha_pad2));
96 * State for an MPPE (de)compressor.
98 struct ppp_mppe_state {
99 struct crypto_skcipher *arc4;
100 struct crypto_ahash *sha1;
101 unsigned char *sha1_digest;
102 unsigned char master_key[MPPE_MAX_KEY_LEN];
103 unsigned char session_key[MPPE_MAX_KEY_LEN];
104 unsigned keylen; /* key length in bytes */
105 /* NB: 128-bit == 16, 40-bit == 8! */
106 /* If we want to support 56-bit, */
107 /* the unit has to change to bits */
108 unsigned char bits; /* MPPE control bits */
109 unsigned ccount; /* 12-bit coherency count (seqno) */
110 unsigned stateful; /* stateful mode flag */
111 int discard; /* stateful mode packet loss flag */
112 int sanity_errors; /* take down LCP if too many */
113 int unit;
114 int debug;
115 struct compstat stats;
118 /* struct ppp_mppe_state.bits definitions */
119 #define MPPE_BIT_A 0x80 /* Encryption table were (re)inititalized */
120 #define MPPE_BIT_B 0x40 /* MPPC only (not implemented) */
121 #define MPPE_BIT_C 0x20 /* MPPC only (not implemented) */
122 #define MPPE_BIT_D 0x10 /* This is an encrypted frame */
124 #define MPPE_BIT_FLUSHED MPPE_BIT_A
125 #define MPPE_BIT_ENCRYPTED MPPE_BIT_D
127 #define MPPE_BITS(p) ((p)[4] & 0xf0)
128 #define MPPE_CCOUNT(p) ((((p)[4] & 0x0f) << 8) + (p)[5])
129 #define MPPE_CCOUNT_SPACE 0x1000 /* The size of the ccount space */
131 #define MPPE_OVHD 2 /* MPPE overhead/packet */
132 #define SANITY_MAX 1600 /* Max bogon factor we will tolerate */
135 * Key Derivation, from RFC 3078, RFC 3079.
136 * Equivalent to Get_Key() for MS-CHAP as described in RFC 3079.
138 static void get_new_key_from_sha(struct ppp_mppe_state * state)
140 AHASH_REQUEST_ON_STACK(req, state->sha1);
141 struct scatterlist sg[4];
142 unsigned int nbytes;
144 sg_init_table(sg, 4);
146 nbytes = setup_sg(&sg[0], state->master_key, state->keylen);
147 nbytes += setup_sg(&sg[1], sha_pad->sha_pad1,
148 sizeof(sha_pad->sha_pad1));
149 nbytes += setup_sg(&sg[2], state->session_key, state->keylen);
150 nbytes += setup_sg(&sg[3], sha_pad->sha_pad2,
151 sizeof(sha_pad->sha_pad2));
153 ahash_request_set_tfm(req, state->sha1);
154 ahash_request_set_callback(req, 0, NULL, NULL);
155 ahash_request_set_crypt(req, sg, state->sha1_digest, nbytes);
157 crypto_ahash_digest(req);
158 ahash_request_zero(req);
162 * Perform the MPPE rekey algorithm, from RFC 3078, sec. 7.3.
163 * Well, not what's written there, but rather what they meant.
165 static void mppe_rekey(struct ppp_mppe_state * state, int initial_key)
167 struct scatterlist sg_in[1], sg_out[1];
168 SKCIPHER_REQUEST_ON_STACK(req, state->arc4);
170 skcipher_request_set_tfm(req, state->arc4);
171 skcipher_request_set_callback(req, 0, NULL, NULL);
173 get_new_key_from_sha(state);
174 if (!initial_key) {
175 crypto_skcipher_setkey(state->arc4, state->sha1_digest,
176 state->keylen);
177 sg_init_table(sg_in, 1);
178 sg_init_table(sg_out, 1);
179 setup_sg(sg_in, state->sha1_digest, state->keylen);
180 setup_sg(sg_out, state->session_key, state->keylen);
181 skcipher_request_set_crypt(req, sg_in, sg_out, state->keylen,
182 NULL);
183 if (crypto_skcipher_encrypt(req))
184 printk(KERN_WARNING "mppe_rekey: cipher_encrypt failed\n");
185 } else {
186 memcpy(state->session_key, state->sha1_digest, state->keylen);
188 if (state->keylen == 8) {
189 /* See RFC 3078 */
190 state->session_key[0] = 0xd1;
191 state->session_key[1] = 0x26;
192 state->session_key[2] = 0x9e;
194 crypto_skcipher_setkey(state->arc4, state->session_key, state->keylen);
195 skcipher_request_zero(req);
199 * Allocate space for a (de)compressor.
201 static void *mppe_alloc(unsigned char *options, int optlen)
203 struct ppp_mppe_state *state;
204 unsigned int digestsize;
206 if (optlen != CILEN_MPPE + sizeof(state->master_key) ||
207 options[0] != CI_MPPE || options[1] != CILEN_MPPE)
208 goto out;
210 state = kzalloc(sizeof(*state), GFP_KERNEL);
211 if (state == NULL)
212 goto out;
215 state->arc4 = crypto_alloc_skcipher("ecb(arc4)", 0, CRYPTO_ALG_ASYNC);
216 if (IS_ERR(state->arc4)) {
217 state->arc4 = NULL;
218 goto out_free;
221 state->sha1 = crypto_alloc_ahash("sha1", 0, CRYPTO_ALG_ASYNC);
222 if (IS_ERR(state->sha1)) {
223 state->sha1 = NULL;
224 goto out_free;
227 digestsize = crypto_ahash_digestsize(state->sha1);
228 if (digestsize < MPPE_MAX_KEY_LEN)
229 goto out_free;
231 state->sha1_digest = kmalloc(digestsize, GFP_KERNEL);
232 if (!state->sha1_digest)
233 goto out_free;
235 /* Save keys. */
236 memcpy(state->master_key, &options[CILEN_MPPE],
237 sizeof(state->master_key));
238 memcpy(state->session_key, state->master_key,
239 sizeof(state->master_key));
242 * We defer initial key generation until mppe_init(), as mppe_alloc()
243 * is called frequently during negotiation.
246 return (void *)state;
248 out_free:
249 kfree(state->sha1_digest);
250 crypto_free_ahash(state->sha1);
251 crypto_free_skcipher(state->arc4);
252 kfree(state);
253 out:
254 return NULL;
258 * Deallocate space for a (de)compressor.
260 static void mppe_free(void *arg)
262 struct ppp_mppe_state *state = (struct ppp_mppe_state *) arg;
263 if (state) {
264 kfree(state->sha1_digest);
265 crypto_free_ahash(state->sha1);
266 crypto_free_skcipher(state->arc4);
267 kfree(state);
272 * Initialize (de)compressor state.
274 static int
275 mppe_init(void *arg, unsigned char *options, int optlen, int unit, int debug,
276 const char *debugstr)
278 struct ppp_mppe_state *state = (struct ppp_mppe_state *) arg;
279 unsigned char mppe_opts;
281 if (optlen != CILEN_MPPE ||
282 options[0] != CI_MPPE || options[1] != CILEN_MPPE)
283 return 0;
285 MPPE_CI_TO_OPTS(&options[2], mppe_opts);
286 if (mppe_opts & MPPE_OPT_128)
287 state->keylen = 16;
288 else if (mppe_opts & MPPE_OPT_40)
289 state->keylen = 8;
290 else {
291 printk(KERN_WARNING "%s[%d]: unknown key length\n", debugstr,
292 unit);
293 return 0;
295 if (mppe_opts & MPPE_OPT_STATEFUL)
296 state->stateful = 1;
298 /* Generate the initial session key. */
299 mppe_rekey(state, 1);
301 if (debug) {
302 int i;
303 char mkey[sizeof(state->master_key) * 2 + 1];
304 char skey[sizeof(state->session_key) * 2 + 1];
306 printk(KERN_DEBUG "%s[%d]: initialized with %d-bit %s mode\n",
307 debugstr, unit, (state->keylen == 16) ? 128 : 40,
308 (state->stateful) ? "stateful" : "stateless");
310 for (i = 0; i < sizeof(state->master_key); i++)
311 sprintf(mkey + i * 2, "%02x", state->master_key[i]);
312 for (i = 0; i < sizeof(state->session_key); i++)
313 sprintf(skey + i * 2, "%02x", state->session_key[i]);
314 printk(KERN_DEBUG
315 "%s[%d]: keys: master: %s initial session: %s\n",
316 debugstr, unit, mkey, skey);
320 * Initialize the coherency count. The initial value is not specified
321 * in RFC 3078, but we can make a reasonable assumption that it will
322 * start at 0. Setting it to the max here makes the comp/decomp code
323 * do the right thing (determined through experiment).
325 state->ccount = MPPE_CCOUNT_SPACE - 1;
328 * Note that even though we have initialized the key table, we don't
329 * set the FLUSHED bit. This is contrary to RFC 3078, sec. 3.1.
331 state->bits = MPPE_BIT_ENCRYPTED;
333 state->unit = unit;
334 state->debug = debug;
336 return 1;
339 static int
340 mppe_comp_init(void *arg, unsigned char *options, int optlen, int unit,
341 int hdrlen, int debug)
343 /* ARGSUSED */
344 return mppe_init(arg, options, optlen, unit, debug, "mppe_comp_init");
348 * We received a CCP Reset-Request (actually, we are sending a Reset-Ack),
349 * tell the compressor to rekey. Note that we MUST NOT rekey for
350 * every CCP Reset-Request; we only rekey on the next xmit packet.
351 * We might get multiple CCP Reset-Requests if our CCP Reset-Ack is lost.
352 * So, rekeying for every CCP Reset-Request is broken as the peer will not
353 * know how many times we've rekeyed. (If we rekey and THEN get another
354 * CCP Reset-Request, we must rekey again.)
356 static void mppe_comp_reset(void *arg)
358 struct ppp_mppe_state *state = (struct ppp_mppe_state *) arg;
360 state->bits |= MPPE_BIT_FLUSHED;
364 * Compress (encrypt) a packet.
365 * It's strange to call this a compressor, since the output is always
366 * MPPE_OVHD + 2 bytes larger than the input.
368 static int
369 mppe_compress(void *arg, unsigned char *ibuf, unsigned char *obuf,
370 int isize, int osize)
372 struct ppp_mppe_state *state = (struct ppp_mppe_state *) arg;
373 SKCIPHER_REQUEST_ON_STACK(req, state->arc4);
374 int proto;
375 int err;
376 struct scatterlist sg_in[1], sg_out[1];
379 * Check that the protocol is in the range we handle.
381 proto = PPP_PROTOCOL(ibuf);
382 if (proto < 0x0021 || proto > 0x00fa)
383 return 0;
385 /* Make sure we have enough room to generate an encrypted packet. */
386 if (osize < isize + MPPE_OVHD + 2) {
387 /* Drop the packet if we should encrypt it, but can't. */
388 printk(KERN_DEBUG "mppe_compress[%d]: osize too small! "
389 "(have: %d need: %d)\n", state->unit,
390 osize, osize + MPPE_OVHD + 2);
391 return -1;
394 osize = isize + MPPE_OVHD + 2;
397 * Copy over the PPP header and set control bits.
399 obuf[0] = PPP_ADDRESS(ibuf);
400 obuf[1] = PPP_CONTROL(ibuf);
401 put_unaligned_be16(PPP_COMP, obuf + 2);
402 obuf += PPP_HDRLEN;
404 state->ccount = (state->ccount + 1) % MPPE_CCOUNT_SPACE;
405 if (state->debug >= 7)
406 printk(KERN_DEBUG "mppe_compress[%d]: ccount %d\n", state->unit,
407 state->ccount);
408 put_unaligned_be16(state->ccount, obuf);
410 if (!state->stateful || /* stateless mode */
411 ((state->ccount & 0xff) == 0xff) || /* "flag" packet */
412 (state->bits & MPPE_BIT_FLUSHED)) { /* CCP Reset-Request */
413 /* We must rekey */
414 if (state->debug && state->stateful)
415 printk(KERN_DEBUG "mppe_compress[%d]: rekeying\n",
416 state->unit);
417 mppe_rekey(state, 0);
418 state->bits |= MPPE_BIT_FLUSHED;
420 obuf[0] |= state->bits;
421 state->bits &= ~MPPE_BIT_FLUSHED; /* reset for next xmit */
423 obuf += MPPE_OVHD;
424 ibuf += 2; /* skip to proto field */
425 isize -= 2;
427 /* Encrypt packet */
428 sg_init_table(sg_in, 1);
429 sg_init_table(sg_out, 1);
430 setup_sg(sg_in, ibuf, isize);
431 setup_sg(sg_out, obuf, osize);
433 skcipher_request_set_tfm(req, state->arc4);
434 skcipher_request_set_callback(req, 0, NULL, NULL);
435 skcipher_request_set_crypt(req, sg_in, sg_out, isize, NULL);
436 err = crypto_skcipher_encrypt(req);
437 skcipher_request_zero(req);
438 if (err) {
439 printk(KERN_DEBUG "crypto_cypher_encrypt failed\n");
440 return -1;
443 state->stats.unc_bytes += isize;
444 state->stats.unc_packets++;
445 state->stats.comp_bytes += osize;
446 state->stats.comp_packets++;
448 return osize;
452 * Since every frame grows by MPPE_OVHD + 2 bytes, this is always going
453 * to look bad ... and the longer the link is up the worse it will get.
455 static void mppe_comp_stats(void *arg, struct compstat *stats)
457 struct ppp_mppe_state *state = (struct ppp_mppe_state *) arg;
459 *stats = state->stats;
462 static int
463 mppe_decomp_init(void *arg, unsigned char *options, int optlen, int unit,
464 int hdrlen, int mru, int debug)
466 /* ARGSUSED */
467 return mppe_init(arg, options, optlen, unit, debug, "mppe_decomp_init");
471 * We received a CCP Reset-Ack. Just ignore it.
473 static void mppe_decomp_reset(void *arg)
475 /* ARGSUSED */
476 return;
480 * Decompress (decrypt) an MPPE packet.
482 static int
483 mppe_decompress(void *arg, unsigned char *ibuf, int isize, unsigned char *obuf,
484 int osize)
486 struct ppp_mppe_state *state = (struct ppp_mppe_state *) arg;
487 SKCIPHER_REQUEST_ON_STACK(req, state->arc4);
488 unsigned ccount;
489 int flushed = MPPE_BITS(ibuf) & MPPE_BIT_FLUSHED;
490 struct scatterlist sg_in[1], sg_out[1];
492 if (isize <= PPP_HDRLEN + MPPE_OVHD) {
493 if (state->debug)
494 printk(KERN_DEBUG
495 "mppe_decompress[%d]: short pkt (%d)\n",
496 state->unit, isize);
497 return DECOMP_ERROR;
501 * Make sure we have enough room to decrypt the packet.
502 * Note that for our test we only subtract 1 byte whereas in
503 * mppe_compress() we added 2 bytes (+MPPE_OVHD);
504 * this is to account for possible PFC.
506 if (osize < isize - MPPE_OVHD - 1) {
507 printk(KERN_DEBUG "mppe_decompress[%d]: osize too small! "
508 "(have: %d need: %d)\n", state->unit,
509 osize, isize - MPPE_OVHD - 1);
510 return DECOMP_ERROR;
512 osize = isize - MPPE_OVHD - 2; /* assume no PFC */
514 ccount = MPPE_CCOUNT(ibuf);
515 if (state->debug >= 7)
516 printk(KERN_DEBUG "mppe_decompress[%d]: ccount %d\n",
517 state->unit, ccount);
519 /* sanity checks -- terminate with extreme prejudice */
520 if (!(MPPE_BITS(ibuf) & MPPE_BIT_ENCRYPTED)) {
521 printk(KERN_DEBUG
522 "mppe_decompress[%d]: ENCRYPTED bit not set!\n",
523 state->unit);
524 state->sanity_errors += 100;
525 goto sanity_error;
527 if (!state->stateful && !flushed) {
528 printk(KERN_DEBUG "mppe_decompress[%d]: FLUSHED bit not set in "
529 "stateless mode!\n", state->unit);
530 state->sanity_errors += 100;
531 goto sanity_error;
533 if (state->stateful && ((ccount & 0xff) == 0xff) && !flushed) {
534 printk(KERN_DEBUG "mppe_decompress[%d]: FLUSHED bit not set on "
535 "flag packet!\n", state->unit);
536 state->sanity_errors += 100;
537 goto sanity_error;
541 * Check the coherency count.
544 if (!state->stateful) {
545 /* Discard late packet */
546 if ((ccount - state->ccount) % MPPE_CCOUNT_SPACE
547 > MPPE_CCOUNT_SPACE / 2) {
548 state->sanity_errors++;
549 goto sanity_error;
552 /* RFC 3078, sec 8.1. Rekey for every packet. */
553 while (state->ccount != ccount) {
554 mppe_rekey(state, 0);
555 state->ccount = (state->ccount + 1) % MPPE_CCOUNT_SPACE;
557 } else {
558 /* RFC 3078, sec 8.2. */
559 if (!state->discard) {
560 /* normal state */
561 state->ccount = (state->ccount + 1) % MPPE_CCOUNT_SPACE;
562 if (ccount != state->ccount) {
564 * (ccount > state->ccount)
565 * Packet loss detected, enter the discard state.
566 * Signal the peer to rekey (by sending a CCP Reset-Request).
568 state->discard = 1;
569 return DECOMP_ERROR;
571 } else {
572 /* discard state */
573 if (!flushed) {
574 /* ccp.c will be silent (no additional CCP Reset-Requests). */
575 return DECOMP_ERROR;
576 } else {
577 /* Rekey for every missed "flag" packet. */
578 while ((ccount & ~0xff) !=
579 (state->ccount & ~0xff)) {
580 mppe_rekey(state, 0);
581 state->ccount =
582 (state->ccount +
583 256) % MPPE_CCOUNT_SPACE;
586 /* reset */
587 state->discard = 0;
588 state->ccount = ccount;
590 * Another problem with RFC 3078 here. It implies that the
591 * peer need not send a Reset-Ack packet. But RFC 1962
592 * requires it. Hopefully, M$ does send a Reset-Ack; even
593 * though it isn't required for MPPE synchronization, it is
594 * required to reset CCP state.
598 if (flushed)
599 mppe_rekey(state, 0);
603 * Fill in the first part of the PPP header. The protocol field
604 * comes from the decrypted data.
606 obuf[0] = PPP_ADDRESS(ibuf); /* +1 */
607 obuf[1] = PPP_CONTROL(ibuf); /* +1 */
608 obuf += 2;
609 ibuf += PPP_HDRLEN + MPPE_OVHD;
610 isize -= PPP_HDRLEN + MPPE_OVHD; /* -6 */
611 /* net osize: isize-4 */
614 * Decrypt the first byte in order to check if it is
615 * a compressed or uncompressed protocol field.
617 sg_init_table(sg_in, 1);
618 sg_init_table(sg_out, 1);
619 setup_sg(sg_in, ibuf, 1);
620 setup_sg(sg_out, obuf, 1);
622 skcipher_request_set_tfm(req, state->arc4);
623 skcipher_request_set_callback(req, 0, NULL, NULL);
624 skcipher_request_set_crypt(req, sg_in, sg_out, 1, NULL);
625 if (crypto_skcipher_decrypt(req)) {
626 printk(KERN_DEBUG "crypto_cypher_decrypt failed\n");
627 osize = DECOMP_ERROR;
628 goto out_zap_req;
632 * Do PFC decompression.
633 * This would be nicer if we were given the actual sk_buff
634 * instead of a char *.
636 if ((obuf[0] & 0x01) != 0) {
637 obuf[1] = obuf[0];
638 obuf[0] = 0;
639 obuf++;
640 osize++;
643 /* And finally, decrypt the rest of the packet. */
644 setup_sg(sg_in, ibuf + 1, isize - 1);
645 setup_sg(sg_out, obuf + 1, osize - 1);
646 skcipher_request_set_crypt(req, sg_in, sg_out, isize - 1, NULL);
647 if (crypto_skcipher_decrypt(req)) {
648 printk(KERN_DEBUG "crypto_cypher_decrypt failed\n");
649 osize = DECOMP_ERROR;
650 goto out_zap_req;
653 state->stats.unc_bytes += osize;
654 state->stats.unc_packets++;
655 state->stats.comp_bytes += isize;
656 state->stats.comp_packets++;
658 /* good packet credit */
659 state->sanity_errors >>= 1;
661 out_zap_req:
662 skcipher_request_zero(req);
663 return osize;
665 sanity_error:
666 if (state->sanity_errors < SANITY_MAX)
667 return DECOMP_ERROR;
668 else
669 /* Take LCP down if the peer is sending too many bogons.
670 * We don't want to do this for a single or just a few
671 * instances since it could just be due to packet corruption.
673 return DECOMP_FATALERROR;
677 * Incompressible data has arrived (this should never happen!).
678 * We should probably drop the link if the protocol is in the range
679 * of what should be encrypted. At the least, we should drop this
680 * packet. (How to do this?)
682 static void mppe_incomp(void *arg, unsigned char *ibuf, int icnt)
684 struct ppp_mppe_state *state = (struct ppp_mppe_state *) arg;
686 if (state->debug &&
687 (PPP_PROTOCOL(ibuf) >= 0x0021 && PPP_PROTOCOL(ibuf) <= 0x00fa))
688 printk(KERN_DEBUG
689 "mppe_incomp[%d]: incompressible (unencrypted) data! "
690 "(proto %04x)\n", state->unit, PPP_PROTOCOL(ibuf));
692 state->stats.inc_bytes += icnt;
693 state->stats.inc_packets++;
694 state->stats.unc_bytes += icnt;
695 state->stats.unc_packets++;
698 /*************************************************************
699 * Module interface table
700 *************************************************************/
703 * Procedures exported to if_ppp.c.
705 static struct compressor ppp_mppe = {
706 .compress_proto = CI_MPPE,
707 .comp_alloc = mppe_alloc,
708 .comp_free = mppe_free,
709 .comp_init = mppe_comp_init,
710 .comp_reset = mppe_comp_reset,
711 .compress = mppe_compress,
712 .comp_stat = mppe_comp_stats,
713 .decomp_alloc = mppe_alloc,
714 .decomp_free = mppe_free,
715 .decomp_init = mppe_decomp_init,
716 .decomp_reset = mppe_decomp_reset,
717 .decompress = mppe_decompress,
718 .incomp = mppe_incomp,
719 .decomp_stat = mppe_comp_stats,
720 .owner = THIS_MODULE,
721 .comp_extra = MPPE_PAD,
725 * ppp_mppe_init()
727 * Prior to allowing load, try to load the arc4 and sha1 crypto
728 * libraries. The actual use will be allocated later, but
729 * this way the module will fail to insmod if they aren't available.
732 static int __init ppp_mppe_init(void)
734 int answer;
735 if (!(crypto_has_skcipher("ecb(arc4)", 0, CRYPTO_ALG_ASYNC) &&
736 crypto_has_ahash("sha1", 0, CRYPTO_ALG_ASYNC)))
737 return -ENODEV;
739 sha_pad = kmalloc(sizeof(struct sha_pad), GFP_KERNEL);
740 if (!sha_pad)
741 return -ENOMEM;
742 sha_pad_init(sha_pad);
744 answer = ppp_register_compressor(&ppp_mppe);
746 if (answer == 0)
747 printk(KERN_INFO "PPP MPPE Compression module registered\n");
748 else
749 kfree(sha_pad);
751 return answer;
754 static void __exit ppp_mppe_cleanup(void)
756 ppp_unregister_compressor(&ppp_mppe);
757 kfree(sha_pad);
760 module_init(ppp_mppe_init);
761 module_exit(ppp_mppe_cleanup);