1 | /* $Id: mbuf.c 28800 2010-04-27 08:22:32Z vboxsync $ */
|
---|
2 | /** @file
|
---|
3 | * NAT - mbuf handling.
|
---|
4 | */
|
---|
5 |
|
---|
6 | /*
|
---|
7 | * Copyright (C) 2006-2010 Oracle Corporation
|
---|
8 | *
|
---|
9 | * This file is part of VirtualBox Open Source Edition (OSE), as
|
---|
10 | * available from http://www.virtualbox.org. This file is free software;
|
---|
11 | * you can redistribute it and/or modify it under the terms of the GNU
|
---|
12 | * General Public License (GPL) as published by the Free Software
|
---|
13 | * Foundation, in version 2 as it comes in the "COPYING" file of the
|
---|
14 | * VirtualBox OSE distribution. VirtualBox OSE is distributed in the
|
---|
15 | * hope that it will be useful, but WITHOUT ANY WARRANTY of any kind.
|
---|
16 | */
|
---|
17 |
|
---|
18 | /*
|
---|
19 | * This code is based on:
|
---|
20 | *
|
---|
21 | * Copyright (c) 1995 Danny Gasparovski
|
---|
22 | *
|
---|
23 | * Please read the file COPYRIGHT for the
|
---|
24 | * terms and conditions of the copyright.
|
---|
25 | */
|
---|
26 |
|
---|
27 | /*
|
---|
28 | * mbuf's in SLiRP are much simpler than the real mbufs in
|
---|
29 | * FreeBSD. They are fixed size, determined by the MTU,
|
---|
30 | * so that one whole packet can fit. Mbuf's cannot be
|
---|
31 | * chained together. If there's more data than the mbuf
|
---|
32 | * could hold, an external malloced buffer is pointed to
|
---|
33 | * by m_ext (and the data pointers) and M_EXT is set in
|
---|
34 | * the flags
|
---|
35 | */
|
---|
36 | #include <slirp.h>
|
---|
37 |
|
---|
38 | #define MBUF_ZONE_SIZE 100
|
---|
39 | static int mbuf_zone_init(PNATState pData)
|
---|
40 | {
|
---|
41 | struct mbuf_zone *mzone;
|
---|
42 | int i;
|
---|
43 | struct mbuf *m;
|
---|
44 | uint8_t *zone = RTMemAlloc(msize * MBUF_ZONE_SIZE);
|
---|
45 | if (zone == NULL)
|
---|
46 | {
|
---|
47 | LogRel(("NAT: can't allocate new zone\n"));
|
---|
48 | return -1;
|
---|
49 | }
|
---|
50 | mzone = RTMemAllocZ(sizeof (struct mbuf_zone));
|
---|
51 | if (mzone == NULL)
|
---|
52 | {
|
---|
53 | RTMemFree(zone);
|
---|
54 | LogRel(("NAT: can't allocate zone descriptor\n"));
|
---|
55 | return -1;
|
---|
56 | }
|
---|
57 |
|
---|
58 | for (i = 0; i < MBUF_ZONE_SIZE; ++i)
|
---|
59 | {
|
---|
60 | m = (struct mbuf *)((char *)zone + i*msize);
|
---|
61 | memset(m, 0, sizeof(struct mbuf));
|
---|
62 | #ifdef M_BUF_DEBUG
|
---|
63 | m->m_hdr.mh_id = pData->mbuf_zone_count * MBUF_ZONE_SIZE + i;
|
---|
64 | #endif
|
---|
65 | insque(pData, m, &m_freelist);
|
---|
66 | }
|
---|
67 | mzone->mbuf_zone_base_addr = zone;
|
---|
68 | LIST_INSERT_HEAD(&pData->mbuf_zone_head, mzone, list);
|
---|
69 | pData->mbuf_zone_count++;
|
---|
70 | pData->mbuf_water_line_limit = pData->mbuf_zone_count * MBUF_ZONE_SIZE;
|
---|
71 | return 0;
|
---|
72 | }
|
---|
73 |
|
---|
74 | void m_fini(PNATState pData)
|
---|
75 | {
|
---|
76 | struct mbuf_zone *mz;
|
---|
77 | struct mbuf *m;
|
---|
78 | int i;
|
---|
79 | void *zone;
|
---|
80 | while(!LIST_EMPTY(&pData->mbuf_zone_head))
|
---|
81 | {
|
---|
82 | mz = LIST_FIRST(&pData->mbuf_zone_head);
|
---|
83 | zone = mz->mbuf_zone_base_addr;
|
---|
84 | for (i = 0; i < MBUF_ZONE_SIZE; ++i)
|
---|
85 | {
|
---|
86 | m = (struct mbuf *)((char *)zone + i*msize);
|
---|
87 | if ( (m->m_flags & M_EXT)
|
---|
88 | && m->m_ext != NULL)
|
---|
89 | RTMemFree(m->m_ext);
|
---|
90 | }
|
---|
91 | RTMemFree(zone);
|
---|
92 | LIST_REMOVE(mz, list);
|
---|
93 | RTMemFree(mz);
|
---|
94 | }
|
---|
95 | }
|
---|
96 |
|
---|
97 | void
|
---|
98 | m_init(PNATState pData)
|
---|
99 | {
|
---|
100 | int rc = 0;
|
---|
101 | m_freelist.m_next = m_freelist.m_prev = &m_freelist;
|
---|
102 | m_usedlist.m_next = m_usedlist.m_prev = &m_usedlist;
|
---|
103 | mbuf_alloced = 0;
|
---|
104 | msize_init(pData);
|
---|
105 | #if 1
|
---|
106 | rc = RTCritSectInit(&pData->cs_mbuf_zone);
|
---|
107 | AssertRC(rc);
|
---|
108 | rc = mbuf_zone_init(pData);
|
---|
109 | Assert((rc == 0));
|
---|
110 | #endif
|
---|
111 | }
|
---|
112 |
|
---|
113 | void
|
---|
114 | msize_init(PNATState pData)
|
---|
115 | {
|
---|
116 | /*
|
---|
117 | * Find a nice value for msize
|
---|
118 | */
|
---|
119 | msize = (if_mtu>if_mru ? if_mtu : if_mru)
|
---|
120 | + sizeof(struct m_hdr) + sizeof(void *) /*pointer to the backstore*/
|
---|
121 | + if_maxlinkhdr ;
|
---|
122 | }
|
---|
123 | #ifdef m_get
|
---|
124 | # undef m_get
|
---|
125 | #endif
|
---|
126 |
|
---|
127 | #ifdef m_free
|
---|
128 | # undef m_free
|
---|
129 | #endif
|
---|
130 | /*
|
---|
131 | * Get an mbuf from the free list, if there are none
|
---|
132 | * malloc one
|
---|
133 | *
|
---|
134 | * Because fragmentation can occur if we alloc new mbufs and
|
---|
135 | * free old mbufs, we mark all mbufs above mbuf_thresh as M_DOFREE,
|
---|
136 | * which tells m_free to actually free() it
|
---|
137 | */
|
---|
138 | struct mbuf *
|
---|
139 | m_get(PNATState pData)
|
---|
140 | {
|
---|
141 | register struct mbuf *m;
|
---|
142 | int flags = 0;
|
---|
143 | int rc = 0;
|
---|
144 |
|
---|
145 | DEBUG_CALL("m_get");
|
---|
146 |
|
---|
147 | rc = RTCritSectEnter(&pData->cs_mbuf_zone);
|
---|
148 | AssertRC(rc);
|
---|
149 |
|
---|
150 | recheck_zone:
|
---|
151 | if (m_freelist.m_next == &m_freelist)
|
---|
152 | {
|
---|
153 | #if 1
|
---|
154 | rc = mbuf_zone_init(pData);
|
---|
155 | if (rc == 0)
|
---|
156 | goto recheck_zone;
|
---|
157 | AssertMsgFailed(("No mbufs on free list\n"));
|
---|
158 | m = NULL;
|
---|
159 | goto end_error;
|
---|
160 | #else
|
---|
161 | m = (struct mbuf *)RTMemAlloc(msize);
|
---|
162 | if (m == NULL)
|
---|
163 | goto end_error;
|
---|
164 | mbuf_alloced++;
|
---|
165 | if (mbuf_alloced > mbuf_thresh)
|
---|
166 | flags = M_DOFREE;
|
---|
167 | if (mbuf_alloced > mbuf_max)
|
---|
168 | mbuf_max = mbuf_alloced;
|
---|
169 | #endif
|
---|
170 | }
|
---|
171 | else
|
---|
172 | {
|
---|
173 | m = m_freelist.m_next;
|
---|
174 | remque(pData, m);
|
---|
175 | }
|
---|
176 |
|
---|
177 | STAM_COUNTER_INC(&pData->StatMBufAllocation);
|
---|
178 | /* Insert it in the used list */
|
---|
179 | mbuf_alloced++;
|
---|
180 | #if 0
|
---|
181 | if (mbuf_alloced >= MBUF_ZONE_SIZE/2)
|
---|
182 | {
|
---|
183 | pData->fmbuf_water_line = 1;
|
---|
184 | }
|
---|
185 | #endif
|
---|
186 | insque(pData, m, &m_usedlist);
|
---|
187 | m->m_flags = (flags | M_USEDLIST);
|
---|
188 |
|
---|
189 | /* Initialise it */
|
---|
190 | m->m_size = msize - sizeof(struct m_hdr);
|
---|
191 | m->m_data = m->m_dat;
|
---|
192 | m->m_len = 0;
|
---|
193 | m->m_nextpkt = 0;
|
---|
194 | m->m_prevpkt = 0;
|
---|
195 | m->m_la = NULL;
|
---|
196 | memset(m->m_data, 0, if_maxlinkhdr); /*initialization of ether area */
|
---|
197 |
|
---|
198 | end_error:
|
---|
199 | DEBUG_ARG("m = %lx", (long )m);
|
---|
200 | rc = RTCritSectLeave(&pData->cs_mbuf_zone);
|
---|
201 | AssertRC(rc);
|
---|
202 | return m;
|
---|
203 | }
|
---|
204 |
|
---|
205 | void
|
---|
206 | m_free(PNATState pData, struct mbuf *m)
|
---|
207 | {
|
---|
208 | int rc;
|
---|
209 | DEBUG_CALL("m_free");
|
---|
210 | DEBUG_ARG("m = %lx", (long )m);
|
---|
211 |
|
---|
212 | rc = RTCritSectEnter(&pData->cs_mbuf_zone);
|
---|
213 | AssertRC(rc);
|
---|
214 | mbuf_alloced--;
|
---|
215 | if(m)
|
---|
216 | {
|
---|
217 | /* Remove from m_usedlist */
|
---|
218 | if (m->m_flags & M_USEDLIST)
|
---|
219 | remque(pData, m);
|
---|
220 |
|
---|
221 | /* If it's M_EXT, free() it */
|
---|
222 | if (m->m_flags & M_EXT)
|
---|
223 | RTMemFree(m->m_ext);
|
---|
224 |
|
---|
225 | /*
|
---|
226 | * Either free() it or put it on the free list
|
---|
227 | */
|
---|
228 | if (m->m_flags & M_DOFREE)
|
---|
229 | {
|
---|
230 | #if 1
|
---|
231 | if ((m->m_flags & M_EXT) == 0)
|
---|
232 | memset(m->m_dat, 0, if_mtu);
|
---|
233 | insque(pData, m, &m_freelist);
|
---|
234 | m->m_flags = M_FREELIST; /* Clobber other flags */
|
---|
235 | #else
|
---|
236 | RTMemFree(m);
|
---|
237 | #endif
|
---|
238 | mbuf_alloced--;
|
---|
239 | }
|
---|
240 | else if ((m->m_flags & M_FREELIST) == 0)
|
---|
241 | {
|
---|
242 | insque(pData, m,&m_freelist);
|
---|
243 | m->m_flags = M_FREELIST; /* Clobber other flags */
|
---|
244 | }
|
---|
245 | STAM_COUNTER_INC(&pData->StatMBufAllocation);
|
---|
246 | } /* if(m) */
|
---|
247 | rc = RTCritSectLeave(&pData->cs_mbuf_zone);
|
---|
248 | AssertRC(rc);
|
---|
249 | }
|
---|
250 |
|
---|
251 | /* update macros for m_get/m_free*/
|
---|
252 | #undef m_get
|
---|
253 | #undef m_free
|
---|
254 | #include "mbuf.h"
|
---|
255 |
|
---|
256 | /*
|
---|
257 | * Copy data from one mbuf to the end of
|
---|
258 | * the other.. if result is too big for one mbuf, malloc()
|
---|
259 | * an M_EXT data segment
|
---|
260 | */
|
---|
261 | void
|
---|
262 | m_cat(PNATState pData, register struct mbuf *m, register struct mbuf *n)
|
---|
263 | {
|
---|
264 | /*
|
---|
265 | * If there's no room, realloc
|
---|
266 | */
|
---|
267 | if (M_FREEROOM(m) < n->m_len)
|
---|
268 | m_inc(m,m->m_size+MINCSIZE);
|
---|
269 |
|
---|
270 | memcpy(m->m_data+m->m_len, n->m_data, n->m_len);
|
---|
271 | m->m_len += n->m_len;
|
---|
272 |
|
---|
273 | m_free(pData, n);
|
---|
274 | }
|
---|
275 |
|
---|
276 |
|
---|
277 | /* make m size bytes large */
|
---|
278 | void
|
---|
279 | m_inc(struct mbuf *m, int size)
|
---|
280 | {
|
---|
281 | int datasize;
|
---|
282 |
|
---|
283 | /* some compiles throw up on gotos. This one we can fake. */
|
---|
284 | if (m->m_size > size)
|
---|
285 | return;
|
---|
286 |
|
---|
287 | if (m->m_flags & M_EXT)
|
---|
288 | {
|
---|
289 | void *pvNew;
|
---|
290 | datasize = m->m_data - m->m_ext;
|
---|
291 | pvNew = (char *)RTMemRealloc(m->m_ext, size);
|
---|
292 | if (pvNew)
|
---|
293 | return; /** @todo better error reporting. */
|
---|
294 | m->m_ext = (char *)pvNew;
|
---|
295 | m->m_data = m->m_ext + datasize;
|
---|
296 | }
|
---|
297 | else
|
---|
298 | {
|
---|
299 | char *dat;
|
---|
300 | datasize = m->m_data - m->m_dat;
|
---|
301 | dat = (char *)RTMemAlloc(size);
|
---|
302 | if (!dat)
|
---|
303 | return; /** @todo better error reporting. */
|
---|
304 | memcpy(dat, m->m_dat, m->m_size);
|
---|
305 |
|
---|
306 | m->m_ext = dat;
|
---|
307 | m->m_data = m->m_ext + datasize;
|
---|
308 | m->m_flags |= M_EXT;
|
---|
309 | }
|
---|
310 |
|
---|
311 | m->m_size = size;
|
---|
312 | }
|
---|
313 |
|
---|
314 |
|
---|
315 | void
|
---|
316 | m_adj(struct mbuf *m, int len)
|
---|
317 | {
|
---|
318 | if (m == NULL)
|
---|
319 | return;
|
---|
320 | if (len >= 0)
|
---|
321 | {
|
---|
322 | /* Trim from head */
|
---|
323 | m->m_data += len;
|
---|
324 | m->m_len -= len;
|
---|
325 | }
|
---|
326 | else
|
---|
327 | {
|
---|
328 | /* Trim from tail */
|
---|
329 | len = -len;
|
---|
330 | m->m_len -= len;
|
---|
331 | }
|
---|
332 | Assert(m->m_len >= 0);
|
---|
333 | }
|
---|
334 |
|
---|
335 |
|
---|
336 | /*
|
---|
337 | * Copy len bytes from m, starting off bytes into n
|
---|
338 | */
|
---|
339 | int
|
---|
340 | m_copy(struct mbuf *n, struct mbuf *m, int off, int len)
|
---|
341 | {
|
---|
342 | if (len > M_FREEROOM(n))
|
---|
343 | return -1;
|
---|
344 |
|
---|
345 | memcpy((n->m_data + n->m_len), (m->m_data + off), len);
|
---|
346 | n->m_len += len;
|
---|
347 | return 0;
|
---|
348 | }
|
---|
349 |
|
---|
350 |
|
---|
351 | /*
|
---|
352 | * Given a pointer into an mbuf, return the mbuf
|
---|
353 | * XXX This is a kludge, I should eliminate the need for it
|
---|
354 | * Fortunately, it's not used often
|
---|
355 | */
|
---|
356 | struct mbuf *
|
---|
357 | dtom(PNATState pData, void *dat)
|
---|
358 | {
|
---|
359 | struct mbuf *m;
|
---|
360 |
|
---|
361 | DEBUG_CALL("dtom");
|
---|
362 | DEBUG_ARG("dat = %lx", (long )dat);
|
---|
363 |
|
---|
364 | /* bug corrected for M_EXT buffers */
|
---|
365 | for (m = m_usedlist.m_next; m != &m_usedlist; m = m->m_next)
|
---|
366 | {
|
---|
367 | if (m->m_flags & M_EXT)
|
---|
368 | {
|
---|
369 | if ( (char *)dat >= m->m_ext
|
---|
370 | && (char *)dat < (m->m_ext + m->m_size))
|
---|
371 | return m;
|
---|
372 | }
|
---|
373 | else
|
---|
374 | {
|
---|
375 | if ( (char *)dat >= m->m_dat
|
---|
376 | && (char *)dat < (m->m_dat + m->m_size))
|
---|
377 | return m;
|
---|
378 | }
|
---|
379 | }
|
---|
380 |
|
---|
381 | DEBUG_ERROR((dfd, "dtom failed"));
|
---|
382 |
|
---|
383 | return (struct mbuf *)0;
|
---|
384 | }
|
---|
385 |
|
---|
386 | #ifndef VBOX_WITH_SLIRP_BSD_MBUF
|
---|
387 |
|
---|
388 | /**
|
---|
389 | * Interface that DrvNAT.cpp uses for allocating a buffer.
|
---|
390 | *
|
---|
391 | * @returns Opaque m_buf pointer.
|
---|
392 | *
|
---|
393 | * @param pData The NAT state.
|
---|
394 | * @param cbMin The minimum buffer size.
|
---|
395 | * @param ppvBuf Where to return the pointer to the start of the data
|
---|
396 | * buffer.
|
---|
397 | * @param pcbBuf Where to return the actual buffer size.
|
---|
398 | */
|
---|
399 | struct mbuf *slirp_ext_m_get(PNATState pData, size_t cbMin, void **ppvBuf, size_t *pcbBuf)
|
---|
400 | {
|
---|
401 | struct mbuf *m = m_get(pData);
|
---|
402 | if (!m)
|
---|
403 | return NULL;
|
---|
404 | if (cbMin > M_FREEROOM(m))
|
---|
405 | {
|
---|
406 | m_inc(m, cbMin);
|
---|
407 | if (RT_UNLIKELY(cbMin > M_FREEROOM(m)))
|
---|
408 | {
|
---|
409 | m_free(pData, m);
|
---|
410 | return NULL;
|
---|
411 | }
|
---|
412 | }
|
---|
413 |
|
---|
414 | *ppvBuf = mtod(m, void *);
|
---|
415 | *pcbBuf = M_FREEROOM(m);
|
---|
416 | return m;
|
---|
417 | }
|
---|
418 |
|
---|
419 | void slirp_ext_m_free(PNATState pData, struct mbuf *m)
|
---|
420 | {
|
---|
421 | m_free(pData, m);
|
---|
422 | }
|
---|
423 |
|
---|
424 | #endif /* VBOX_WITH_SLIRP_BSD_MBUF */
|
---|