uipc_mbuf.c revision 1.128 1 1.128 matt /* $NetBSD: uipc_mbuf.c,v 1.128 2008/07/02 14:47:34 matt Exp $ */
2 1.42 thorpej
3 1.42 thorpej /*-
4 1.53 thorpej * Copyright (c) 1999, 2001 The NetBSD Foundation, Inc.
5 1.42 thorpej * All rights reserved.
6 1.42 thorpej *
7 1.42 thorpej * This code is derived from software contributed to The NetBSD Foundation
8 1.42 thorpej * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
9 1.42 thorpej * NASA Ames Research Center.
10 1.42 thorpej *
11 1.42 thorpej * Redistribution and use in source and binary forms, with or without
12 1.42 thorpej * modification, are permitted provided that the following conditions
13 1.42 thorpej * are met:
14 1.42 thorpej * 1. Redistributions of source code must retain the above copyright
15 1.42 thorpej * notice, this list of conditions and the following disclaimer.
16 1.42 thorpej * 2. Redistributions in binary form must reproduce the above copyright
17 1.42 thorpej * notice, this list of conditions and the following disclaimer in the
18 1.42 thorpej * documentation and/or other materials provided with the distribution.
19 1.42 thorpej *
20 1.42 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
21 1.42 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
22 1.42 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
23 1.42 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
24 1.42 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
25 1.42 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
26 1.42 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
27 1.42 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
28 1.42 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
29 1.42 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
30 1.42 thorpej * POSSIBILITY OF SUCH DAMAGE.
31 1.42 thorpej */
32 1.10 cgd
33 1.1 cgd /*
34 1.9 mycroft * Copyright (c) 1982, 1986, 1988, 1991, 1993
35 1.9 mycroft * The Regents of the University of California. All rights reserved.
36 1.1 cgd *
37 1.1 cgd * Redistribution and use in source and binary forms, with or without
38 1.1 cgd * modification, are permitted provided that the following conditions
39 1.1 cgd * are met:
40 1.1 cgd * 1. Redistributions of source code must retain the above copyright
41 1.1 cgd * notice, this list of conditions and the following disclaimer.
42 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
43 1.1 cgd * notice, this list of conditions and the following disclaimer in the
44 1.1 cgd * documentation and/or other materials provided with the distribution.
45 1.70 agc * 3. Neither the name of the University nor the names of its contributors
46 1.1 cgd * may be used to endorse or promote products derived from this software
47 1.1 cgd * without specific prior written permission.
48 1.1 cgd *
49 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
50 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
51 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
52 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
53 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
54 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
55 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
56 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
57 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
58 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
59 1.1 cgd * SUCH DAMAGE.
60 1.1 cgd *
61 1.26 fvdl * @(#)uipc_mbuf.c 8.4 (Berkeley) 2/14/95
62 1.1 cgd */
63 1.56 lukem
64 1.56 lukem #include <sys/cdefs.h>
65 1.128 matt __KERNEL_RCSID(0, "$NetBSD: uipc_mbuf.c,v 1.128 2008/07/02 14:47:34 matt Exp $");
66 1.69 martin
67 1.69 martin #include "opt_mbuftrace.h"
68 1.105 yamt #include "opt_ddb.h"
69 1.24 mrg
70 1.6 mycroft #include <sys/param.h>
71 1.6 mycroft #include <sys/systm.h>
72 1.125 yamt #include <sys/atomic.h>
73 1.124 yamt #include <sys/cpu.h>
74 1.6 mycroft #include <sys/proc.h>
75 1.6 mycroft #include <sys/malloc.h>
76 1.1 cgd #define MBTYPES
77 1.6 mycroft #include <sys/mbuf.h>
78 1.6 mycroft #include <sys/kernel.h>
79 1.6 mycroft #include <sys/syslog.h>
80 1.6 mycroft #include <sys/domain.h>
81 1.6 mycroft #include <sys/protosw.h>
82 1.124 yamt #include <sys/percpu.h>
83 1.28 thorpej #include <sys/pool.h>
84 1.27 matt #include <sys/socket.h>
85 1.55 simonb #include <sys/sysctl.h>
86 1.55 simonb
87 1.27 matt #include <net/if.h>
88 1.14 christos
89 1.65 thorpej #include <uvm/uvm.h>
90 1.23 mrg
91 1.122 ad pool_cache_t mb_cache; /* mbuf cache */
92 1.122 ad pool_cache_t mcl_cache; /* mbuf cluster cache */
93 1.53 thorpej
94 1.18 thorpej struct mbstat mbstat;
95 1.18 thorpej int max_linkhdr;
96 1.18 thorpej int max_protohdr;
97 1.18 thorpej int max_hdr;
98 1.18 thorpej int max_datalen;
99 1.18 thorpej
100 1.65 thorpej static int mb_ctor(void *, void *, int);
101 1.65 thorpej
102 1.103 thorpej static void *mclpool_alloc(struct pool *, int);
103 1.103 thorpej static void mclpool_release(struct pool *, void *);
104 1.58 thorpej
105 1.103 thorpej static struct pool_allocator mclpool_allocator = {
106 1.113 christos .pa_alloc = mclpool_alloc,
107 1.113 christos .pa_free = mclpool_release,
108 1.58 thorpej };
109 1.58 thorpej
110 1.79 junyoung static struct mbuf *m_copym0(struct mbuf *, int, int, int, int);
111 1.85 yamt static struct mbuf *m_split0(struct mbuf *, int, int, int);
112 1.86 yamt static int m_copyback0(struct mbuf **, int, int, const void *, int, int);
113 1.85 yamt
114 1.85 yamt /* flags for m_copyback0 */
115 1.85 yamt #define M_COPYBACK0_COPYBACK 0x0001 /* copyback from cp */
116 1.85 yamt #define M_COPYBACK0_PRESERVE 0x0002 /* preserve original data */
117 1.85 yamt #define M_COPYBACK0_COW 0x0004 /* do copy-on-write */
118 1.85 yamt #define M_COPYBACK0_EXTEND 0x0008 /* extend chain */
119 1.28 thorpej
120 1.103 thorpej static const char mclpool_warnmsg[] =
121 1.42 thorpej "WARNING: mclpool limit reached; increase NMBCLUSTERS";
122 1.63 thorpej
123 1.63 thorpej MALLOC_DEFINE(M_MBUF, "mbuf", "mbuf");
124 1.42 thorpej
125 1.124 yamt static percpu_t *mbstat_percpu;
126 1.124 yamt
127 1.64 matt #ifdef MBUFTRACE
128 1.64 matt struct mownerhead mowners = LIST_HEAD_INITIALIZER(mowners);
129 1.64 matt struct mowner unknown_mowners[] = {
130 1.114 dogcow MOWNER_INIT("unknown", "free"),
131 1.114 dogcow MOWNER_INIT("unknown", "data"),
132 1.114 dogcow MOWNER_INIT("unknown", "header"),
133 1.114 dogcow MOWNER_INIT("unknown", "soname"),
134 1.114 dogcow MOWNER_INIT("unknown", "soopts"),
135 1.114 dogcow MOWNER_INIT("unknown", "ftable"),
136 1.114 dogcow MOWNER_INIT("unknown", "control"),
137 1.114 dogcow MOWNER_INIT("unknown", "oobdata"),
138 1.64 matt };
139 1.114 dogcow struct mowner revoked_mowner = MOWNER_INIT("revoked", "");
140 1.64 matt #endif
141 1.64 matt
142 1.125 yamt #define MEXT_ISEMBEDDED(m) ((m)->m_ext_ref == (m))
143 1.125 yamt
144 1.125 yamt #define MCLADDREFERENCE(o, n) \
145 1.125 yamt do { \
146 1.125 yamt KASSERT(((o)->m_flags & M_EXT) != 0); \
147 1.125 yamt KASSERT(((n)->m_flags & M_EXT) == 0); \
148 1.125 yamt KASSERT((o)->m_ext.ext_refcnt >= 1); \
149 1.125 yamt (n)->m_flags |= ((o)->m_flags & M_EXTCOPYFLAGS); \
150 1.125 yamt atomic_inc_uint(&(o)->m_ext.ext_refcnt); \
151 1.125 yamt (n)->m_ext_ref = (o)->m_ext_ref; \
152 1.125 yamt mowner_ref((n), (n)->m_flags); \
153 1.125 yamt MCLREFDEBUGN((n), __FILE__, __LINE__); \
154 1.125 yamt } while (/* CONSTCOND */ 0)
155 1.125 yamt
156 1.28 thorpej /*
157 1.68 simonb * Initialize the mbuf allocator.
158 1.28 thorpej */
159 1.4 jtc void
160 1.62 thorpej mbinit(void)
161 1.1 cgd {
162 1.65 thorpej
163 1.128 matt CTASSERT(sizeof(struct _m_ext) <= MHLEN);
164 1.128 matt CTASSERT(sizeof(struct mbuf) == MSIZE);
165 1.65 thorpej
166 1.111 yamt mclpool_allocator.pa_backingmap = mb_map;
167 1.53 thorpej
168 1.122 ad mb_cache = pool_cache_init(msize, 0, 0, 0, "mbpl",
169 1.122 ad NULL, IPL_VM, mb_ctor, NULL, NULL);
170 1.122 ad KASSERT(mb_cache != NULL);
171 1.122 ad
172 1.122 ad mcl_cache = pool_cache_init(mclbytes, 0, 0, 0, "mclpl",
173 1.122 ad &mclpool_allocator, IPL_VM, NULL, NULL, NULL);
174 1.122 ad KASSERT(mcl_cache != NULL);
175 1.59 thorpej
176 1.122 ad pool_cache_set_drain_hook(mb_cache, m_reclaim, NULL);
177 1.122 ad pool_cache_set_drain_hook(mcl_cache, m_reclaim, NULL);
178 1.37 thorpej
179 1.37 thorpej /*
180 1.39 thorpej * Set the hard limit on the mclpool to the number of
181 1.39 thorpej * mbuf clusters the kernel is to support. Log the limit
182 1.39 thorpej * reached message max once a minute.
183 1.39 thorpej */
184 1.122 ad pool_cache_sethardlimit(mcl_cache, nmbclusters, mclpool_warnmsg, 60);
185 1.42 thorpej
186 1.124 yamt mbstat_percpu = percpu_alloc(sizeof(struct mbstat_cpu));
187 1.124 yamt
188 1.39 thorpej /*
189 1.42 thorpej * Set a low water mark for both mbufs and clusters. This should
190 1.42 thorpej * help ensure that they can be allocated in a memory starvation
191 1.42 thorpej * situation. This is important for e.g. diskless systems which
192 1.42 thorpej * must allocate mbufs in order for the pagedaemon to clean pages.
193 1.37 thorpej */
194 1.122 ad pool_cache_setlowat(mb_cache, mblowat);
195 1.122 ad pool_cache_setlowat(mcl_cache, mcllowat);
196 1.64 matt
197 1.64 matt #ifdef MBUFTRACE
198 1.64 matt {
199 1.64 matt /*
200 1.64 matt * Attach the unknown mowners.
201 1.64 matt */
202 1.64 matt int i;
203 1.64 matt MOWNER_ATTACH(&revoked_mowner);
204 1.64 matt for (i = sizeof(unknown_mowners)/sizeof(unknown_mowners[0]);
205 1.64 matt i-- > 0; )
206 1.64 matt MOWNER_ATTACH(&unknown_mowners[i]);
207 1.64 matt }
208 1.64 matt #endif
209 1.42 thorpej }
210 1.42 thorpej
211 1.75 atatat /*
212 1.75 atatat * sysctl helper routine for the kern.mbuf subtree. nmbclusters may
213 1.75 atatat * or may not be writable, and mblowat and mcllowat need range
214 1.75 atatat * checking and pool tweaking after being reset.
215 1.75 atatat */
216 1.75 atatat static int
217 1.75 atatat sysctl_kern_mbuf(SYSCTLFN_ARGS)
218 1.42 thorpej {
219 1.42 thorpej int error, newval;
220 1.75 atatat struct sysctlnode node;
221 1.42 thorpej
222 1.75 atatat node = *rnode;
223 1.75 atatat node.sysctl_data = &newval;
224 1.75 atatat switch (rnode->sysctl_num) {
225 1.42 thorpej case MBUF_NMBCLUSTERS:
226 1.76 atatat if (mb_map != NULL) {
227 1.80 atatat node.sysctl_flags &= ~CTLFLAG_READWRITE;
228 1.80 atatat node.sysctl_flags |= CTLFLAG_READONLY;
229 1.75 atatat }
230 1.75 atatat /* FALLTHROUGH */
231 1.42 thorpej case MBUF_MBLOWAT:
232 1.42 thorpej case MBUF_MCLLOWAT:
233 1.75 atatat newval = *(int*)rnode->sysctl_data;
234 1.75 atatat break;
235 1.75 atatat default:
236 1.75 atatat return (EOPNOTSUPP);
237 1.75 atatat }
238 1.75 atatat
239 1.75 atatat error = sysctl_lookup(SYSCTLFN_CALL(&node));
240 1.75 atatat if (error || newp == NULL)
241 1.42 thorpej return (error);
242 1.75 atatat if (newval < 0)
243 1.75 atatat return (EINVAL);
244 1.75 atatat
245 1.75 atatat switch (node.sysctl_num) {
246 1.75 atatat case MBUF_NMBCLUSTERS:
247 1.75 atatat if (newval < nmbclusters)
248 1.75 atatat return (EINVAL);
249 1.75 atatat nmbclusters = newval;
250 1.122 ad pool_cache_sethardlimit(mcl_cache, nmbclusters,
251 1.122 ad mclpool_warnmsg, 60);
252 1.75 atatat break;
253 1.75 atatat case MBUF_MBLOWAT:
254 1.75 atatat mblowat = newval;
255 1.122 ad pool_cache_setlowat(mb_cache, mblowat);
256 1.75 atatat break;
257 1.75 atatat case MBUF_MCLLOWAT:
258 1.76 atatat mcllowat = newval;
259 1.122 ad pool_cache_setlowat(mcl_cache, mcllowat);
260 1.75 atatat break;
261 1.75 atatat }
262 1.75 atatat
263 1.75 atatat return (0);
264 1.75 atatat }
265 1.75 atatat
266 1.64 matt #ifdef MBUFTRACE
267 1.124 yamt static void
268 1.124 yamt mowner_conver_to_user_cb(void *v1, void *v2, struct cpu_info *ci)
269 1.124 yamt {
270 1.124 yamt struct mowner_counter *mc = v1;
271 1.124 yamt struct mowner_user *mo_user = v2;
272 1.124 yamt int i;
273 1.124 yamt
274 1.124 yamt for (i = 0; i < MOWNER_COUNTER_NCOUNTERS; i++) {
275 1.124 yamt mo_user->mo_counter[i] += mc->mc_counter[i];
276 1.124 yamt }
277 1.124 yamt }
278 1.124 yamt
279 1.124 yamt static void
280 1.124 yamt mowner_convert_to_user(struct mowner *mo, struct mowner_user *mo_user)
281 1.124 yamt {
282 1.124 yamt
283 1.124 yamt memset(mo_user, 0, sizeof(*mo_user));
284 1.128 matt CTASSERT(sizeof(mo_user->mo_name) == sizeof(mo->mo_name));
285 1.128 matt CTASSERT(sizeof(mo_user->mo_descr) == sizeof(mo->mo_descr));
286 1.124 yamt memcpy(mo_user->mo_name, mo->mo_name, sizeof(mo->mo_name));
287 1.124 yamt memcpy(mo_user->mo_descr, mo->mo_descr, sizeof(mo->mo_descr));
288 1.124 yamt percpu_foreach(mo->mo_counters, mowner_conver_to_user_cb, mo_user);
289 1.124 yamt }
290 1.124 yamt
291 1.75 atatat static int
292 1.75 atatat sysctl_kern_mbuf_mowners(SYSCTLFN_ARGS)
293 1.75 atatat {
294 1.75 atatat struct mowner *mo;
295 1.75 atatat size_t len = 0;
296 1.75 atatat int error = 0;
297 1.75 atatat
298 1.75 atatat if (namelen != 0)
299 1.75 atatat return (EINVAL);
300 1.75 atatat if (newp != NULL)
301 1.75 atatat return (EPERM);
302 1.75 atatat
303 1.75 atatat LIST_FOREACH(mo, &mowners, mo_link) {
304 1.124 yamt struct mowner_user mo_user;
305 1.124 yamt
306 1.124 yamt mowner_convert_to_user(mo, &mo_user);
307 1.124 yamt
308 1.75 atatat if (oldp != NULL) {
309 1.124 yamt if (*oldlenp - len < sizeof(mo_user)) {
310 1.75 atatat error = ENOMEM;
311 1.75 atatat break;
312 1.75 atatat }
313 1.124 yamt error = copyout(&mo_user, (char *)oldp + len,
314 1.124 yamt sizeof(mo_user));
315 1.75 atatat if (error)
316 1.75 atatat break;
317 1.64 matt }
318 1.124 yamt len += sizeof(mo_user);
319 1.75 atatat }
320 1.75 atatat
321 1.75 atatat if (error == 0)
322 1.64 matt *oldlenp = len;
323 1.75 atatat
324 1.75 atatat return (error);
325 1.75 atatat }
326 1.75 atatat #endif /* MBUFTRACE */
327 1.75 atatat
328 1.124 yamt static void
329 1.124 yamt mbstat_conver_to_user_cb(void *v1, void *v2, struct cpu_info *ci)
330 1.124 yamt {
331 1.124 yamt struct mbstat_cpu *mbsc = v1;
332 1.124 yamt struct mbstat *mbs = v2;
333 1.124 yamt int i;
334 1.124 yamt
335 1.124 yamt for (i = 0; i < __arraycount(mbs->m_mtypes); i++) {
336 1.124 yamt mbs->m_mtypes[i] += mbsc->m_mtypes[i];
337 1.124 yamt }
338 1.124 yamt }
339 1.124 yamt
340 1.124 yamt static void
341 1.124 yamt mbstat_convert_to_user(struct mbstat *mbs)
342 1.124 yamt {
343 1.124 yamt
344 1.124 yamt memset(mbs, 0, sizeof(*mbs));
345 1.124 yamt mbs->m_drain = mbstat.m_drain;
346 1.124 yamt percpu_foreach(mbstat_percpu, mbstat_conver_to_user_cb, mbs);
347 1.124 yamt }
348 1.124 yamt
349 1.124 yamt static int
350 1.124 yamt sysctl_kern_mbuf_stats(SYSCTLFN_ARGS)
351 1.124 yamt {
352 1.124 yamt struct sysctlnode node;
353 1.124 yamt struct mbstat mbs;
354 1.124 yamt
355 1.124 yamt mbstat_convert_to_user(&mbs);
356 1.124 yamt node = *rnode;
357 1.124 yamt node.sysctl_data = &mbs;
358 1.124 yamt node.sysctl_size = sizeof(mbs);
359 1.124 yamt return sysctl_lookup(SYSCTLFN_CALL(&node));
360 1.124 yamt }
361 1.124 yamt
362 1.75 atatat SYSCTL_SETUP(sysctl_kern_mbuf_setup, "sysctl kern.mbuf subtree setup")
363 1.75 atatat {
364 1.75 atatat
365 1.80 atatat sysctl_createv(clog, 0, NULL, NULL,
366 1.80 atatat CTLFLAG_PERMANENT,
367 1.75 atatat CTLTYPE_NODE, "kern", NULL,
368 1.75 atatat NULL, 0, NULL, 0,
369 1.75 atatat CTL_KERN, CTL_EOL);
370 1.80 atatat sysctl_createv(clog, 0, NULL, NULL,
371 1.80 atatat CTLFLAG_PERMANENT,
372 1.82 atatat CTLTYPE_NODE, "mbuf",
373 1.82 atatat SYSCTL_DESCR("mbuf control variables"),
374 1.75 atatat NULL, 0, NULL, 0,
375 1.75 atatat CTL_KERN, KERN_MBUF, CTL_EOL);
376 1.75 atatat
377 1.80 atatat sysctl_createv(clog, 0, NULL, NULL,
378 1.80 atatat CTLFLAG_PERMANENT|CTLFLAG_IMMEDIATE,
379 1.82 atatat CTLTYPE_INT, "msize",
380 1.82 atatat SYSCTL_DESCR("mbuf base size"),
381 1.75 atatat NULL, msize, NULL, 0,
382 1.75 atatat CTL_KERN, KERN_MBUF, MBUF_MSIZE, CTL_EOL);
383 1.80 atatat sysctl_createv(clog, 0, NULL, NULL,
384 1.80 atatat CTLFLAG_PERMANENT|CTLFLAG_IMMEDIATE,
385 1.82 atatat CTLTYPE_INT, "mclbytes",
386 1.82 atatat SYSCTL_DESCR("mbuf cluster size"),
387 1.75 atatat NULL, mclbytes, NULL, 0,
388 1.75 atatat CTL_KERN, KERN_MBUF, MBUF_MCLBYTES, CTL_EOL);
389 1.80 atatat sysctl_createv(clog, 0, NULL, NULL,
390 1.80 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
391 1.82 atatat CTLTYPE_INT, "nmbclusters",
392 1.82 atatat SYSCTL_DESCR("Limit on the number of mbuf clusters"),
393 1.75 atatat sysctl_kern_mbuf, 0, &nmbclusters, 0,
394 1.75 atatat CTL_KERN, KERN_MBUF, MBUF_NMBCLUSTERS, CTL_EOL);
395 1.80 atatat sysctl_createv(clog, 0, NULL, NULL,
396 1.80 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
397 1.82 atatat CTLTYPE_INT, "mblowat",
398 1.82 atatat SYSCTL_DESCR("mbuf low water mark"),
399 1.75 atatat sysctl_kern_mbuf, 0, &mblowat, 0,
400 1.75 atatat CTL_KERN, KERN_MBUF, MBUF_MBLOWAT, CTL_EOL);
401 1.80 atatat sysctl_createv(clog, 0, NULL, NULL,
402 1.80 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
403 1.82 atatat CTLTYPE_INT, "mcllowat",
404 1.82 atatat SYSCTL_DESCR("mbuf cluster low water mark"),
405 1.75 atatat sysctl_kern_mbuf, 0, &mcllowat, 0,
406 1.75 atatat CTL_KERN, KERN_MBUF, MBUF_MCLLOWAT, CTL_EOL);
407 1.80 atatat sysctl_createv(clog, 0, NULL, NULL,
408 1.80 atatat CTLFLAG_PERMANENT,
409 1.82 atatat CTLTYPE_STRUCT, "stats",
410 1.82 atatat SYSCTL_DESCR("mbuf allocation statistics"),
411 1.124 yamt sysctl_kern_mbuf_stats, 0, NULL, 0,
412 1.75 atatat CTL_KERN, KERN_MBUF, MBUF_STATS, CTL_EOL);
413 1.75 atatat #ifdef MBUFTRACE
414 1.80 atatat sysctl_createv(clog, 0, NULL, NULL,
415 1.80 atatat CTLFLAG_PERMANENT,
416 1.82 atatat CTLTYPE_STRUCT, "mowners",
417 1.82 atatat SYSCTL_DESCR("Information about mbuf owners"),
418 1.75 atatat sysctl_kern_mbuf_mowners, 0, NULL, 0,
419 1.75 atatat CTL_KERN, KERN_MBUF, MBUF_MOWNERS, CTL_EOL);
420 1.75 atatat #endif /* MBUFTRACE */
421 1.28 thorpej }
422 1.28 thorpej
423 1.103 thorpej static void *
424 1.116 yamt mclpool_alloc(struct pool *pp, int flags)
425 1.28 thorpej {
426 1.118 thorpej bool waitok = (flags & PR_WAITOK) ? true : false;
427 1.28 thorpej
428 1.93 yamt return ((void *)uvm_km_alloc_poolpage(mb_map, waitok));
429 1.1 cgd }
430 1.1 cgd
431 1.103 thorpej static void
432 1.116 yamt mclpool_release(struct pool *pp, void *v)
433 1.1 cgd {
434 1.1 cgd
435 1.93 yamt uvm_km_free_poolpage(mb_map, (vaddr_t)v);
436 1.65 thorpej }
437 1.65 thorpej
438 1.65 thorpej /*ARGSUSED*/
439 1.65 thorpej static int
440 1.116 yamt mb_ctor(void *arg, void *object, int flags)
441 1.65 thorpej {
442 1.65 thorpej struct mbuf *m = object;
443 1.65 thorpej
444 1.65 thorpej #ifdef POOL_VTOPHYS
445 1.65 thorpej m->m_paddr = POOL_VTOPHYS(m);
446 1.65 thorpej #else
447 1.65 thorpej m->m_paddr = M_PADDR_INVALID;
448 1.65 thorpej #endif
449 1.65 thorpej return (0);
450 1.1 cgd }
451 1.1 cgd
452 1.14 christos void
453 1.116 yamt m_reclaim(void *arg, int flags)
454 1.1 cgd {
455 1.27 matt struct domain *dp;
456 1.81 matt const struct protosw *pr;
457 1.27 matt struct ifnet *ifp;
458 1.122 ad int s;
459 1.1 cgd
460 1.122 ad KERNEL_LOCK(1, NULL);
461 1.122 ad s = splvm();
462 1.91 matt DOMAIN_FOREACH(dp) {
463 1.33 thorpej for (pr = dp->dom_protosw;
464 1.33 thorpej pr < dp->dom_protoswNPROTOSW; pr++)
465 1.33 thorpej if (pr->pr_drain)
466 1.33 thorpej (*pr->pr_drain)();
467 1.91 matt }
468 1.92 matt IFNET_FOREACH(ifp) {
469 1.27 matt if (ifp->if_drain)
470 1.27 matt (*ifp->if_drain)(ifp);
471 1.92 matt }
472 1.1 cgd splx(s);
473 1.1 cgd mbstat.m_drain++;
474 1.122 ad KERNEL_UNLOCK_ONE(NULL);
475 1.1 cgd }
476 1.1 cgd
477 1.1 cgd /*
478 1.1 cgd * Space allocation routines.
479 1.1 cgd * These are also available as macros
480 1.1 cgd * for critical paths.
481 1.1 cgd */
482 1.1 cgd struct mbuf *
483 1.62 thorpej m_get(int nowait, int type)
484 1.1 cgd {
485 1.27 matt struct mbuf *m;
486 1.1 cgd
487 1.124 yamt m = pool_cache_get(mb_cache,
488 1.124 yamt nowait == M_WAIT ? PR_WAITOK|PR_LIMITFAIL : 0);
489 1.124 yamt if (m == NULL)
490 1.124 yamt return NULL;
491 1.124 yamt
492 1.124 yamt mbstat_type_add(type, 1);
493 1.124 yamt mowner_init(m, type);
494 1.125 yamt m->m_ext_ref = m;
495 1.124 yamt m->m_type = type;
496 1.124 yamt m->m_next = NULL;
497 1.124 yamt m->m_nextpkt = NULL;
498 1.124 yamt m->m_data = m->m_dat;
499 1.124 yamt m->m_flags = 0;
500 1.124 yamt
501 1.124 yamt return m;
502 1.1 cgd }
503 1.1 cgd
504 1.1 cgd struct mbuf *
505 1.62 thorpej m_gethdr(int nowait, int type)
506 1.1 cgd {
507 1.27 matt struct mbuf *m;
508 1.1 cgd
509 1.124 yamt m = m_get(nowait, type);
510 1.124 yamt if (m == NULL)
511 1.124 yamt return NULL;
512 1.124 yamt
513 1.124 yamt m->m_data = m->m_pktdat;
514 1.124 yamt m->m_flags = M_PKTHDR;
515 1.124 yamt m->m_pkthdr.rcvif = NULL;
516 1.124 yamt m->m_pkthdr.csum_flags = 0;
517 1.124 yamt m->m_pkthdr.csum_data = 0;
518 1.124 yamt SLIST_INIT(&m->m_pkthdr.tags);
519 1.124 yamt
520 1.124 yamt return m;
521 1.1 cgd }
522 1.1 cgd
523 1.1 cgd struct mbuf *
524 1.62 thorpej m_getclr(int nowait, int type)
525 1.1 cgd {
526 1.27 matt struct mbuf *m;
527 1.1 cgd
528 1.5 cgd MGET(m, nowait, type);
529 1.1 cgd if (m == 0)
530 1.71 simonb return (NULL);
531 1.119 christos memset(mtod(m, void *), 0, MLEN);
532 1.1 cgd return (m);
533 1.1 cgd }
534 1.1 cgd
535 1.64 matt void
536 1.64 matt m_clget(struct mbuf *m, int nowait)
537 1.64 matt {
538 1.71 simonb
539 1.64 matt MCLGET(m, nowait);
540 1.64 matt }
541 1.64 matt
542 1.1 cgd struct mbuf *
543 1.62 thorpej m_free(struct mbuf *m)
544 1.1 cgd {
545 1.27 matt struct mbuf *n;
546 1.1 cgd
547 1.1 cgd MFREE(m, n);
548 1.1 cgd return (n);
549 1.1 cgd }
550 1.1 cgd
551 1.9 mycroft void
552 1.62 thorpej m_freem(struct mbuf *m)
553 1.1 cgd {
554 1.27 matt struct mbuf *n;
555 1.1 cgd
556 1.1 cgd if (m == NULL)
557 1.1 cgd return;
558 1.1 cgd do {
559 1.1 cgd MFREE(m, n);
560 1.18 thorpej m = n;
561 1.18 thorpej } while (m);
562 1.1 cgd }
563 1.1 cgd
564 1.64 matt #ifdef MBUFTRACE
565 1.83 jonathan /*
566 1.83 jonathan * Walk a chain of mbufs, claiming ownership of each mbuf in the chain.
567 1.83 jonathan */
568 1.64 matt void
569 1.83 jonathan m_claimm(struct mbuf *m, struct mowner *mo)
570 1.64 matt {
571 1.71 simonb
572 1.64 matt for (; m != NULL; m = m->m_next)
573 1.64 matt MCLAIM(m, mo);
574 1.64 matt }
575 1.64 matt #endif
576 1.64 matt
577 1.1 cgd /*
578 1.1 cgd * Mbuffer utility routines.
579 1.1 cgd */
580 1.1 cgd
581 1.1 cgd /*
582 1.1 cgd * Lesser-used path for M_PREPEND:
583 1.1 cgd * allocate new mbuf to prepend to chain,
584 1.1 cgd * copy junk along.
585 1.1 cgd */
586 1.1 cgd struct mbuf *
587 1.62 thorpej m_prepend(struct mbuf *m, int len, int how)
588 1.1 cgd {
589 1.1 cgd struct mbuf *mn;
590 1.1 cgd
591 1.9 mycroft MGET(mn, how, m->m_type);
592 1.1 cgd if (mn == (struct mbuf *)NULL) {
593 1.1 cgd m_freem(m);
594 1.1 cgd return ((struct mbuf *)NULL);
595 1.1 cgd }
596 1.1 cgd if (m->m_flags & M_PKTHDR) {
597 1.101 yamt M_MOVE_PKTHDR(mn, m);
598 1.64 matt } else {
599 1.64 matt MCLAIM(mn, m->m_owner);
600 1.1 cgd }
601 1.1 cgd mn->m_next = m;
602 1.1 cgd m = mn;
603 1.1 cgd if (len < MHLEN)
604 1.1 cgd MH_ALIGN(m, len);
605 1.1 cgd m->m_len = len;
606 1.1 cgd return (m);
607 1.1 cgd }
608 1.1 cgd
609 1.1 cgd /*
610 1.1 cgd * Make a copy of an mbuf chain starting "off0" bytes from the beginning,
611 1.1 cgd * continuing for "len" bytes. If len is M_COPYALL, copy to end of mbuf.
612 1.1 cgd * The wait parameter is a choice of M_WAIT/M_DONTWAIT from caller.
613 1.1 cgd */
614 1.1 cgd int MCFail;
615 1.1 cgd
616 1.1 cgd struct mbuf *
617 1.62 thorpej m_copym(struct mbuf *m, int off0, int len, int wait)
618 1.1 cgd {
619 1.71 simonb
620 1.44 itojun return m_copym0(m, off0, len, wait, 0); /* shallow copy on M_EXT */
621 1.44 itojun }
622 1.44 itojun
623 1.44 itojun struct mbuf *
624 1.62 thorpej m_dup(struct mbuf *m, int off0, int len, int wait)
625 1.44 itojun {
626 1.71 simonb
627 1.44 itojun return m_copym0(m, off0, len, wait, 1); /* deep copy */
628 1.44 itojun }
629 1.44 itojun
630 1.44 itojun static struct mbuf *
631 1.62 thorpej m_copym0(struct mbuf *m, int off0, int len, int wait, int deep)
632 1.44 itojun {
633 1.27 matt struct mbuf *n, **np;
634 1.27 matt int off = off0;
635 1.1 cgd struct mbuf *top;
636 1.1 cgd int copyhdr = 0;
637 1.1 cgd
638 1.1 cgd if (off < 0 || len < 0)
639 1.43 thorpej panic("m_copym: off %d, len %d", off, len);
640 1.1 cgd if (off == 0 && m->m_flags & M_PKTHDR)
641 1.1 cgd copyhdr = 1;
642 1.1 cgd while (off > 0) {
643 1.1 cgd if (m == 0)
644 1.90 matt panic("m_copym: m == 0, off %d", off);
645 1.1 cgd if (off < m->m_len)
646 1.1 cgd break;
647 1.1 cgd off -= m->m_len;
648 1.1 cgd m = m->m_next;
649 1.1 cgd }
650 1.1 cgd np = ⊤
651 1.1 cgd top = 0;
652 1.1 cgd while (len > 0) {
653 1.1 cgd if (m == 0) {
654 1.1 cgd if (len != M_COPYALL)
655 1.90 matt panic("m_copym: m == 0, len %d [!COPYALL]",
656 1.90 matt len);
657 1.1 cgd break;
658 1.1 cgd }
659 1.1 cgd MGET(n, wait, m->m_type);
660 1.1 cgd *np = n;
661 1.1 cgd if (n == 0)
662 1.1 cgd goto nospace;
663 1.64 matt MCLAIM(n, m->m_owner);
664 1.1 cgd if (copyhdr) {
665 1.1 cgd M_COPY_PKTHDR(n, m);
666 1.1 cgd if (len == M_COPYALL)
667 1.1 cgd n->m_pkthdr.len -= off0;
668 1.1 cgd else
669 1.1 cgd n->m_pkthdr.len = len;
670 1.1 cgd copyhdr = 0;
671 1.1 cgd }
672 1.9 mycroft n->m_len = min(len, m->m_len - off);
673 1.1 cgd if (m->m_flags & M_EXT) {
674 1.44 itojun if (!deep) {
675 1.44 itojun n->m_data = m->m_data + off;
676 1.44 itojun MCLADDREFERENCE(m, n);
677 1.44 itojun } else {
678 1.48 itojun /*
679 1.50 itojun * we are unsure about the way m was allocated.
680 1.50 itojun * copy into multiple MCLBYTES cluster mbufs.
681 1.48 itojun */
682 1.44 itojun MCLGET(n, wait);
683 1.50 itojun n->m_len = 0;
684 1.50 itojun n->m_len = M_TRAILINGSPACE(n);
685 1.50 itojun n->m_len = min(n->m_len, len);
686 1.50 itojun n->m_len = min(n->m_len, m->m_len - off);
687 1.119 christos memcpy(mtod(n, void *), mtod(m, char *) + off,
688 1.44 itojun (unsigned)n->m_len);
689 1.44 itojun }
690 1.1 cgd } else
691 1.119 christos memcpy(mtod(n, void *), mtod(m, char *) + off,
692 1.1 cgd (unsigned)n->m_len);
693 1.1 cgd if (len != M_COPYALL)
694 1.1 cgd len -= n->m_len;
695 1.50 itojun off += n->m_len;
696 1.50 itojun #ifdef DIAGNOSTIC
697 1.50 itojun if (off > m->m_len)
698 1.50 itojun panic("m_copym0 overrun");
699 1.50 itojun #endif
700 1.50 itojun if (off == m->m_len) {
701 1.50 itojun m = m->m_next;
702 1.50 itojun off = 0;
703 1.50 itojun }
704 1.1 cgd np = &n->m_next;
705 1.1 cgd }
706 1.1 cgd if (top == 0)
707 1.1 cgd MCFail++;
708 1.1 cgd return (top);
709 1.1 cgd nospace:
710 1.1 cgd m_freem(top);
711 1.1 cgd MCFail++;
712 1.71 simonb return (NULL);
713 1.1 cgd }
714 1.1 cgd
715 1.1 cgd /*
716 1.18 thorpej * Copy an entire packet, including header (which must be present).
717 1.18 thorpej * An optimization of the common case `m_copym(m, 0, M_COPYALL, how)'.
718 1.18 thorpej */
719 1.18 thorpej struct mbuf *
720 1.62 thorpej m_copypacket(struct mbuf *m, int how)
721 1.18 thorpej {
722 1.18 thorpej struct mbuf *top, *n, *o;
723 1.18 thorpej
724 1.18 thorpej MGET(n, how, m->m_type);
725 1.18 thorpej top = n;
726 1.18 thorpej if (!n)
727 1.18 thorpej goto nospace;
728 1.18 thorpej
729 1.64 matt MCLAIM(n, m->m_owner);
730 1.18 thorpej M_COPY_PKTHDR(n, m);
731 1.18 thorpej n->m_len = m->m_len;
732 1.18 thorpej if (m->m_flags & M_EXT) {
733 1.18 thorpej n->m_data = m->m_data;
734 1.18 thorpej MCLADDREFERENCE(m, n);
735 1.18 thorpej } else {
736 1.30 perry memcpy(mtod(n, char *), mtod(m, char *), n->m_len);
737 1.18 thorpej }
738 1.18 thorpej
739 1.18 thorpej m = m->m_next;
740 1.18 thorpej while (m) {
741 1.18 thorpej MGET(o, how, m->m_type);
742 1.18 thorpej if (!o)
743 1.18 thorpej goto nospace;
744 1.18 thorpej
745 1.64 matt MCLAIM(o, m->m_owner);
746 1.18 thorpej n->m_next = o;
747 1.18 thorpej n = n->m_next;
748 1.18 thorpej
749 1.18 thorpej n->m_len = m->m_len;
750 1.18 thorpej if (m->m_flags & M_EXT) {
751 1.18 thorpej n->m_data = m->m_data;
752 1.18 thorpej MCLADDREFERENCE(m, n);
753 1.18 thorpej } else {
754 1.30 perry memcpy(mtod(n, char *), mtod(m, char *), n->m_len);
755 1.18 thorpej }
756 1.18 thorpej
757 1.18 thorpej m = m->m_next;
758 1.18 thorpej }
759 1.18 thorpej return top;
760 1.18 thorpej nospace:
761 1.18 thorpej m_freem(top);
762 1.18 thorpej MCFail++;
763 1.71 simonb return NULL;
764 1.18 thorpej }
765 1.18 thorpej
766 1.18 thorpej /*
767 1.1 cgd * Copy data from an mbuf chain starting "off" bytes from the beginning,
768 1.1 cgd * continuing for "len" bytes, into the indicated buffer.
769 1.1 cgd */
770 1.14 christos void
771 1.100 martin m_copydata(struct mbuf *m, int off, int len, void *vp)
772 1.1 cgd {
773 1.94 tron unsigned count;
774 1.119 christos void * cp = vp;
775 1.1 cgd
776 1.1 cgd if (off < 0 || len < 0)
777 1.90 matt panic("m_copydata: off %d, len %d", off, len);
778 1.1 cgd while (off > 0) {
779 1.94 tron if (m == NULL)
780 1.94 tron panic("m_copydata: m == NULL, off %d", off);
781 1.1 cgd if (off < m->m_len)
782 1.1 cgd break;
783 1.1 cgd off -= m->m_len;
784 1.1 cgd m = m->m_next;
785 1.1 cgd }
786 1.1 cgd while (len > 0) {
787 1.94 tron if (m == NULL)
788 1.94 tron panic("m_copydata: m == NULL, len %d", len);
789 1.9 mycroft count = min(m->m_len - off, len);
790 1.119 christos memcpy(cp, mtod(m, char *) + off, count);
791 1.1 cgd len -= count;
792 1.119 christos cp = (char *)cp + count;
793 1.1 cgd off = 0;
794 1.1 cgd m = m->m_next;
795 1.1 cgd }
796 1.1 cgd }
797 1.1 cgd
798 1.1 cgd /*
799 1.1 cgd * Concatenate mbuf chain n to m.
800 1.72 itojun * n might be copied into m (when n->m_len is small), therefore data portion of
801 1.72 itojun * n could be copied into an mbuf of different mbuf type.
802 1.1 cgd * Any m_pkthdr is not updated.
803 1.1 cgd */
804 1.14 christos void
805 1.62 thorpej m_cat(struct mbuf *m, struct mbuf *n)
806 1.1 cgd {
807 1.73 yamt
808 1.1 cgd while (m->m_next)
809 1.1 cgd m = m->m_next;
810 1.1 cgd while (n) {
811 1.77 itojun if (M_READONLY(m) || n->m_len > M_TRAILINGSPACE(m)) {
812 1.1 cgd /* just join the two chains */
813 1.1 cgd m->m_next = n;
814 1.1 cgd return;
815 1.1 cgd }
816 1.1 cgd /* splat the data from one into the other */
817 1.119 christos memcpy(mtod(m, char *) + m->m_len, mtod(n, void *),
818 1.1 cgd (u_int)n->m_len);
819 1.1 cgd m->m_len += n->m_len;
820 1.1 cgd n = m_free(n);
821 1.1 cgd }
822 1.1 cgd }
823 1.1 cgd
824 1.11 mycroft void
825 1.62 thorpej m_adj(struct mbuf *mp, int req_len)
826 1.1 cgd {
827 1.27 matt int len = req_len;
828 1.27 matt struct mbuf *m;
829 1.27 matt int count;
830 1.1 cgd
831 1.1 cgd if ((m = mp) == NULL)
832 1.1 cgd return;
833 1.1 cgd if (len >= 0) {
834 1.1 cgd /*
835 1.1 cgd * Trim from head.
836 1.1 cgd */
837 1.1 cgd while (m != NULL && len > 0) {
838 1.1 cgd if (m->m_len <= len) {
839 1.1 cgd len -= m->m_len;
840 1.1 cgd m->m_len = 0;
841 1.1 cgd m = m->m_next;
842 1.1 cgd } else {
843 1.1 cgd m->m_len -= len;
844 1.1 cgd m->m_data += len;
845 1.1 cgd len = 0;
846 1.1 cgd }
847 1.1 cgd }
848 1.1 cgd m = mp;
849 1.1 cgd if (mp->m_flags & M_PKTHDR)
850 1.1 cgd m->m_pkthdr.len -= (req_len - len);
851 1.1 cgd } else {
852 1.1 cgd /*
853 1.1 cgd * Trim from tail. Scan the mbuf chain,
854 1.1 cgd * calculating its length and finding the last mbuf.
855 1.1 cgd * If the adjustment only affects this mbuf, then just
856 1.1 cgd * adjust and return. Otherwise, rescan and truncate
857 1.1 cgd * after the remaining size.
858 1.1 cgd */
859 1.1 cgd len = -len;
860 1.1 cgd count = 0;
861 1.1 cgd for (;;) {
862 1.1 cgd count += m->m_len;
863 1.1 cgd if (m->m_next == (struct mbuf *)0)
864 1.1 cgd break;
865 1.1 cgd m = m->m_next;
866 1.1 cgd }
867 1.1 cgd if (m->m_len >= len) {
868 1.1 cgd m->m_len -= len;
869 1.8 deraadt if (mp->m_flags & M_PKTHDR)
870 1.8 deraadt mp->m_pkthdr.len -= len;
871 1.1 cgd return;
872 1.1 cgd }
873 1.1 cgd count -= len;
874 1.1 cgd if (count < 0)
875 1.1 cgd count = 0;
876 1.1 cgd /*
877 1.1 cgd * Correct length for chain is "count".
878 1.1 cgd * Find the mbuf with last data, adjust its length,
879 1.1 cgd * and toss data from remaining mbufs on chain.
880 1.1 cgd */
881 1.1 cgd m = mp;
882 1.1 cgd if (m->m_flags & M_PKTHDR)
883 1.1 cgd m->m_pkthdr.len = count;
884 1.1 cgd for (; m; m = m->m_next) {
885 1.1 cgd if (m->m_len >= count) {
886 1.1 cgd m->m_len = count;
887 1.1 cgd break;
888 1.1 cgd }
889 1.1 cgd count -= m->m_len;
890 1.1 cgd }
891 1.110 christos if (m)
892 1.110 christos while (m->m_next)
893 1.110 christos (m = m->m_next)->m_len = 0;
894 1.1 cgd }
895 1.1 cgd }
896 1.1 cgd
897 1.1 cgd /*
898 1.102 skrll * Rearrange an mbuf chain so that len bytes are contiguous
899 1.1 cgd * and in the data area of an mbuf (so that mtod and dtom
900 1.1 cgd * will work for a structure of size len). Returns the resulting
901 1.1 cgd * mbuf chain on success, frees it and returns null on failure.
902 1.1 cgd * If there is room, it will add up to max_protohdr-len extra bytes to the
903 1.1 cgd * contiguous region in an attempt to avoid being called next time.
904 1.1 cgd */
905 1.1 cgd int MPFail;
906 1.1 cgd
907 1.1 cgd struct mbuf *
908 1.62 thorpej m_pullup(struct mbuf *n, int len)
909 1.1 cgd {
910 1.27 matt struct mbuf *m;
911 1.27 matt int count;
912 1.1 cgd int space;
913 1.1 cgd
914 1.1 cgd /*
915 1.1 cgd * If first mbuf has no cluster, and has room for len bytes
916 1.1 cgd * without shifting current data, pullup into it,
917 1.1 cgd * otherwise allocate a new mbuf to prepend to the chain.
918 1.1 cgd */
919 1.1 cgd if ((n->m_flags & M_EXT) == 0 &&
920 1.1 cgd n->m_data + len < &n->m_dat[MLEN] && n->m_next) {
921 1.1 cgd if (n->m_len >= len)
922 1.1 cgd return (n);
923 1.1 cgd m = n;
924 1.1 cgd n = n->m_next;
925 1.1 cgd len -= m->m_len;
926 1.1 cgd } else {
927 1.1 cgd if (len > MHLEN)
928 1.1 cgd goto bad;
929 1.1 cgd MGET(m, M_DONTWAIT, n->m_type);
930 1.1 cgd if (m == 0)
931 1.1 cgd goto bad;
932 1.64 matt MCLAIM(m, n->m_owner);
933 1.1 cgd m->m_len = 0;
934 1.1 cgd if (n->m_flags & M_PKTHDR) {
935 1.101 yamt M_MOVE_PKTHDR(m, n);
936 1.1 cgd }
937 1.1 cgd }
938 1.1 cgd space = &m->m_dat[MLEN] - (m->m_data + m->m_len);
939 1.1 cgd do {
940 1.1 cgd count = min(min(max(len, max_protohdr), space), n->m_len);
941 1.119 christos memcpy(mtod(m, char *) + m->m_len, mtod(n, void *),
942 1.1 cgd (unsigned)count);
943 1.1 cgd len -= count;
944 1.1 cgd m->m_len += count;
945 1.1 cgd n->m_len -= count;
946 1.1 cgd space -= count;
947 1.1 cgd if (n->m_len)
948 1.1 cgd n->m_data += count;
949 1.1 cgd else
950 1.1 cgd n = m_free(n);
951 1.1 cgd } while (len > 0 && n);
952 1.1 cgd if (len > 0) {
953 1.1 cgd (void) m_free(m);
954 1.1 cgd goto bad;
955 1.1 cgd }
956 1.1 cgd m->m_next = n;
957 1.1 cgd return (m);
958 1.1 cgd bad:
959 1.1 cgd m_freem(n);
960 1.1 cgd MPFail++;
961 1.71 simonb return (NULL);
962 1.60 thorpej }
963 1.60 thorpej
964 1.60 thorpej /*
965 1.60 thorpej * Like m_pullup(), except a new mbuf is always allocated, and we allow
966 1.60 thorpej * the amount of empty space before the data in the new mbuf to be specified
967 1.60 thorpej * (in the event that the caller expects to prepend later).
968 1.60 thorpej */
969 1.60 thorpej int MSFail;
970 1.60 thorpej
971 1.60 thorpej struct mbuf *
972 1.60 thorpej m_copyup(struct mbuf *n, int len, int dstoff)
973 1.60 thorpej {
974 1.60 thorpej struct mbuf *m;
975 1.60 thorpej int count, space;
976 1.60 thorpej
977 1.60 thorpej if (len > (MHLEN - dstoff))
978 1.60 thorpej goto bad;
979 1.60 thorpej MGET(m, M_DONTWAIT, n->m_type);
980 1.60 thorpej if (m == NULL)
981 1.60 thorpej goto bad;
982 1.64 matt MCLAIM(m, n->m_owner);
983 1.60 thorpej m->m_len = 0;
984 1.60 thorpej if (n->m_flags & M_PKTHDR) {
985 1.101 yamt M_MOVE_PKTHDR(m, n);
986 1.60 thorpej }
987 1.60 thorpej m->m_data += dstoff;
988 1.60 thorpej space = &m->m_dat[MLEN] - (m->m_data + m->m_len);
989 1.60 thorpej do {
990 1.60 thorpej count = min(min(max(len, max_protohdr), space), n->m_len);
991 1.119 christos memcpy(mtod(m, char *) + m->m_len, mtod(n, void *),
992 1.60 thorpej (unsigned)count);
993 1.60 thorpej len -= count;
994 1.60 thorpej m->m_len += count;
995 1.60 thorpej n->m_len -= count;
996 1.60 thorpej space -= count;
997 1.60 thorpej if (n->m_len)
998 1.60 thorpej n->m_data += count;
999 1.60 thorpej else
1000 1.60 thorpej n = m_free(n);
1001 1.60 thorpej } while (len > 0 && n);
1002 1.60 thorpej if (len > 0) {
1003 1.60 thorpej (void) m_free(m);
1004 1.60 thorpej goto bad;
1005 1.60 thorpej }
1006 1.60 thorpej m->m_next = n;
1007 1.60 thorpej return (m);
1008 1.60 thorpej bad:
1009 1.60 thorpej m_freem(n);
1010 1.60 thorpej MSFail++;
1011 1.60 thorpej return (NULL);
1012 1.9 mycroft }
1013 1.9 mycroft
1014 1.9 mycroft /*
1015 1.9 mycroft * Partition an mbuf chain in two pieces, returning the tail --
1016 1.9 mycroft * all but the first len0 bytes. In case of failure, it returns NULL and
1017 1.9 mycroft * attempts to restore the chain to its original state.
1018 1.9 mycroft */
1019 1.9 mycroft struct mbuf *
1020 1.62 thorpej m_split(struct mbuf *m0, int len0, int wait)
1021 1.9 mycroft {
1022 1.85 yamt
1023 1.87 yamt return m_split0(m0, len0, wait, 1);
1024 1.85 yamt }
1025 1.85 yamt
1026 1.85 yamt static struct mbuf *
1027 1.85 yamt m_split0(struct mbuf *m0, int len0, int wait, int copyhdr)
1028 1.85 yamt {
1029 1.27 matt struct mbuf *m, *n;
1030 1.22 thorpej unsigned len = len0, remain, len_save;
1031 1.9 mycroft
1032 1.9 mycroft for (m = m0; m && len > m->m_len; m = m->m_next)
1033 1.9 mycroft len -= m->m_len;
1034 1.9 mycroft if (m == 0)
1035 1.71 simonb return (NULL);
1036 1.9 mycroft remain = m->m_len - len;
1037 1.85 yamt if (copyhdr && (m0->m_flags & M_PKTHDR)) {
1038 1.9 mycroft MGETHDR(n, wait, m0->m_type);
1039 1.9 mycroft if (n == 0)
1040 1.71 simonb return (NULL);
1041 1.112 pavel MCLAIM(n, m0->m_owner);
1042 1.9 mycroft n->m_pkthdr.rcvif = m0->m_pkthdr.rcvif;
1043 1.9 mycroft n->m_pkthdr.len = m0->m_pkthdr.len - len0;
1044 1.22 thorpej len_save = m0->m_pkthdr.len;
1045 1.9 mycroft m0->m_pkthdr.len = len0;
1046 1.9 mycroft if (m->m_flags & M_EXT)
1047 1.9 mycroft goto extpacket;
1048 1.9 mycroft if (remain > MHLEN) {
1049 1.9 mycroft /* m can't be the lead packet */
1050 1.9 mycroft MH_ALIGN(n, 0);
1051 1.9 mycroft n->m_next = m_split(m, len, wait);
1052 1.9 mycroft if (n->m_next == 0) {
1053 1.9 mycroft (void) m_free(n);
1054 1.22 thorpej m0->m_pkthdr.len = len_save;
1055 1.71 simonb return (NULL);
1056 1.9 mycroft } else
1057 1.9 mycroft return (n);
1058 1.9 mycroft } else
1059 1.9 mycroft MH_ALIGN(n, remain);
1060 1.9 mycroft } else if (remain == 0) {
1061 1.9 mycroft n = m->m_next;
1062 1.9 mycroft m->m_next = 0;
1063 1.9 mycroft return (n);
1064 1.9 mycroft } else {
1065 1.9 mycroft MGET(n, wait, m->m_type);
1066 1.9 mycroft if (n == 0)
1067 1.71 simonb return (NULL);
1068 1.64 matt MCLAIM(n, m->m_owner);
1069 1.9 mycroft M_ALIGN(n, remain);
1070 1.9 mycroft }
1071 1.9 mycroft extpacket:
1072 1.9 mycroft if (m->m_flags & M_EXT) {
1073 1.125 yamt n->m_data = m->m_data + len;
1074 1.18 thorpej MCLADDREFERENCE(m, n);
1075 1.9 mycroft } else {
1076 1.119 christos memcpy(mtod(n, void *), mtod(m, char *) + len, remain);
1077 1.9 mycroft }
1078 1.9 mycroft n->m_len = remain;
1079 1.9 mycroft m->m_len = len;
1080 1.9 mycroft n->m_next = m->m_next;
1081 1.9 mycroft m->m_next = 0;
1082 1.9 mycroft return (n);
1083 1.9 mycroft }
1084 1.9 mycroft /*
1085 1.9 mycroft * Routine to copy from device local memory into mbufs.
1086 1.9 mycroft */
1087 1.9 mycroft struct mbuf *
1088 1.62 thorpej m_devget(char *buf, int totlen, int off0, struct ifnet *ifp,
1089 1.62 thorpej void (*copy)(const void *from, void *to, size_t len))
1090 1.9 mycroft {
1091 1.27 matt struct mbuf *m;
1092 1.9 mycroft struct mbuf *top = 0, **mp = ⊤
1093 1.27 matt int off = off0, len;
1094 1.27 matt char *cp;
1095 1.9 mycroft char *epkt;
1096 1.9 mycroft
1097 1.9 mycroft cp = buf;
1098 1.9 mycroft epkt = cp + totlen;
1099 1.9 mycroft if (off) {
1100 1.13 cgd /*
1101 1.13 cgd * If 'off' is non-zero, packet is trailer-encapsulated,
1102 1.13 cgd * so we have to skip the type and length fields.
1103 1.13 cgd */
1104 1.104 perry cp += off + 2 * sizeof(uint16_t);
1105 1.104 perry totlen -= 2 * sizeof(uint16_t);
1106 1.9 mycroft }
1107 1.9 mycroft MGETHDR(m, M_DONTWAIT, MT_DATA);
1108 1.9 mycroft if (m == 0)
1109 1.71 simonb return (NULL);
1110 1.9 mycroft m->m_pkthdr.rcvif = ifp;
1111 1.9 mycroft m->m_pkthdr.len = totlen;
1112 1.9 mycroft m->m_len = MHLEN;
1113 1.9 mycroft
1114 1.9 mycroft while (totlen > 0) {
1115 1.9 mycroft if (top) {
1116 1.9 mycroft MGET(m, M_DONTWAIT, MT_DATA);
1117 1.9 mycroft if (m == 0) {
1118 1.9 mycroft m_freem(top);
1119 1.71 simonb return (NULL);
1120 1.9 mycroft }
1121 1.9 mycroft m->m_len = MLEN;
1122 1.9 mycroft }
1123 1.9 mycroft len = min(totlen, epkt - cp);
1124 1.9 mycroft if (len >= MINCLSIZE) {
1125 1.9 mycroft MCLGET(m, M_DONTWAIT);
1126 1.19 mycroft if ((m->m_flags & M_EXT) == 0) {
1127 1.20 mycroft m_free(m);
1128 1.19 mycroft m_freem(top);
1129 1.71 simonb return (NULL);
1130 1.19 mycroft }
1131 1.19 mycroft m->m_len = len = min(len, MCLBYTES);
1132 1.9 mycroft } else {
1133 1.9 mycroft /*
1134 1.9 mycroft * Place initial small packet/header at end of mbuf.
1135 1.9 mycroft */
1136 1.9 mycroft if (len < m->m_len) {
1137 1.9 mycroft if (top == 0 && len + max_linkhdr <= m->m_len)
1138 1.9 mycroft m->m_data += max_linkhdr;
1139 1.9 mycroft m->m_len = len;
1140 1.9 mycroft } else
1141 1.9 mycroft len = m->m_len;
1142 1.9 mycroft }
1143 1.9 mycroft if (copy)
1144 1.119 christos copy(cp, mtod(m, void *), (size_t)len);
1145 1.9 mycroft else
1146 1.119 christos memcpy(mtod(m, void *), cp, (size_t)len);
1147 1.9 mycroft cp += len;
1148 1.9 mycroft *mp = m;
1149 1.9 mycroft mp = &m->m_next;
1150 1.9 mycroft totlen -= len;
1151 1.9 mycroft if (cp == epkt)
1152 1.9 mycroft cp = buf;
1153 1.9 mycroft }
1154 1.9 mycroft return (top);
1155 1.18 thorpej }
1156 1.18 thorpej
1157 1.18 thorpej /*
1158 1.18 thorpej * Copy data from a buffer back into the indicated mbuf chain,
1159 1.18 thorpej * starting "off" bytes from the beginning, extending the mbuf
1160 1.18 thorpej * chain if necessary.
1161 1.18 thorpej */
1162 1.18 thorpej void
1163 1.86 yamt m_copyback(struct mbuf *m0, int off, int len, const void *cp)
1164 1.18 thorpej {
1165 1.85 yamt #if defined(DEBUG)
1166 1.85 yamt struct mbuf *origm = m0;
1167 1.85 yamt int error;
1168 1.85 yamt #endif /* defined(DEBUG) */
1169 1.85 yamt
1170 1.85 yamt if (m0 == NULL)
1171 1.85 yamt return;
1172 1.85 yamt
1173 1.85 yamt #if defined(DEBUG)
1174 1.85 yamt error =
1175 1.85 yamt #endif /* defined(DEBUG) */
1176 1.85 yamt m_copyback0(&m0, off, len, cp,
1177 1.85 yamt M_COPYBACK0_COPYBACK|M_COPYBACK0_EXTEND, M_DONTWAIT);
1178 1.85 yamt
1179 1.85 yamt #if defined(DEBUG)
1180 1.85 yamt if (error != 0 || (m0 != NULL && origm != m0))
1181 1.85 yamt panic("m_copyback");
1182 1.85 yamt #endif /* defined(DEBUG) */
1183 1.85 yamt }
1184 1.85 yamt
1185 1.85 yamt struct mbuf *
1186 1.86 yamt m_copyback_cow(struct mbuf *m0, int off, int len, const void *cp, int how)
1187 1.85 yamt {
1188 1.85 yamt int error;
1189 1.85 yamt
1190 1.85 yamt /* don't support chain expansion */
1191 1.85 yamt KDASSERT(off + len <= m_length(m0));
1192 1.85 yamt
1193 1.85 yamt error = m_copyback0(&m0, off, len, cp,
1194 1.85 yamt M_COPYBACK0_COPYBACK|M_COPYBACK0_COW, how);
1195 1.85 yamt if (error) {
1196 1.85 yamt /*
1197 1.85 yamt * no way to recover from partial success.
1198 1.85 yamt * just free the chain.
1199 1.85 yamt */
1200 1.85 yamt m_freem(m0);
1201 1.85 yamt return NULL;
1202 1.85 yamt }
1203 1.85 yamt return m0;
1204 1.85 yamt }
1205 1.85 yamt
1206 1.85 yamt /*
1207 1.85 yamt * m_makewritable: ensure the specified range writable.
1208 1.85 yamt */
1209 1.85 yamt int
1210 1.85 yamt m_makewritable(struct mbuf **mp, int off, int len, int how)
1211 1.85 yamt {
1212 1.85 yamt int error;
1213 1.85 yamt #if defined(DEBUG)
1214 1.85 yamt struct mbuf *n;
1215 1.85 yamt int origlen, reslen;
1216 1.85 yamt
1217 1.85 yamt origlen = m_length(*mp);
1218 1.85 yamt #endif /* defined(DEBUG) */
1219 1.85 yamt
1220 1.85 yamt #if 0 /* M_COPYALL is large enough */
1221 1.85 yamt if (len == M_COPYALL)
1222 1.85 yamt len = m_length(*mp) - off; /* XXX */
1223 1.85 yamt #endif
1224 1.85 yamt
1225 1.85 yamt error = m_copyback0(mp, off, len, NULL,
1226 1.85 yamt M_COPYBACK0_PRESERVE|M_COPYBACK0_COW, how);
1227 1.85 yamt
1228 1.85 yamt #if defined(DEBUG)
1229 1.85 yamt reslen = 0;
1230 1.85 yamt for (n = *mp; n; n = n->m_next)
1231 1.85 yamt reslen += n->m_len;
1232 1.85 yamt if (origlen != reslen)
1233 1.85 yamt panic("m_makewritable: length changed");
1234 1.85 yamt if (((*mp)->m_flags & M_PKTHDR) != 0 && reslen != (*mp)->m_pkthdr.len)
1235 1.85 yamt panic("m_makewritable: inconsist");
1236 1.85 yamt #endif /* defined(DEBUG) */
1237 1.85 yamt
1238 1.85 yamt return error;
1239 1.85 yamt }
1240 1.85 yamt
1241 1.85 yamt int
1242 1.86 yamt m_copyback0(struct mbuf **mp0, int off, int len, const void *vp, int flags,
1243 1.86 yamt int how)
1244 1.85 yamt {
1245 1.27 matt int mlen;
1246 1.85 yamt struct mbuf *m, *n;
1247 1.85 yamt struct mbuf **mp;
1248 1.18 thorpej int totlen = 0;
1249 1.86 yamt const char *cp = vp;
1250 1.18 thorpej
1251 1.85 yamt KASSERT(mp0 != NULL);
1252 1.85 yamt KASSERT(*mp0 != NULL);
1253 1.85 yamt KASSERT((flags & M_COPYBACK0_PRESERVE) == 0 || cp == NULL);
1254 1.85 yamt KASSERT((flags & M_COPYBACK0_COPYBACK) == 0 || cp != NULL);
1255 1.85 yamt
1256 1.106 yamt /*
1257 1.106 yamt * we don't bother to update "totlen" in the case of M_COPYBACK0_COW,
1258 1.106 yamt * assuming that M_COPYBACK0_EXTEND and M_COPYBACK0_COW are exclusive.
1259 1.106 yamt */
1260 1.106 yamt
1261 1.106 yamt KASSERT((~flags & (M_COPYBACK0_EXTEND|M_COPYBACK0_COW)) != 0);
1262 1.106 yamt
1263 1.85 yamt mp = mp0;
1264 1.85 yamt m = *mp;
1265 1.18 thorpej while (off > (mlen = m->m_len)) {
1266 1.18 thorpej off -= mlen;
1267 1.18 thorpej totlen += mlen;
1268 1.109 yamt if (m->m_next == NULL) {
1269 1.109 yamt int tspace;
1270 1.109 yamt extend:
1271 1.85 yamt if ((flags & M_COPYBACK0_EXTEND) == 0)
1272 1.85 yamt goto out;
1273 1.109 yamt
1274 1.109 yamt /*
1275 1.109 yamt * try to make some space at the end of "m".
1276 1.109 yamt */
1277 1.109 yamt
1278 1.109 yamt mlen = m->m_len;
1279 1.109 yamt if (off + len >= MINCLSIZE &&
1280 1.109 yamt (m->m_flags & M_EXT) == 0 && m->m_len == 0) {
1281 1.109 yamt MCLGET(m, how);
1282 1.109 yamt }
1283 1.109 yamt tspace = M_TRAILINGSPACE(m);
1284 1.109 yamt if (tspace > 0) {
1285 1.109 yamt tspace = min(tspace, off + len);
1286 1.109 yamt KASSERT(tspace > 0);
1287 1.109 yamt memset(mtod(m, char *) + m->m_len, 0,
1288 1.109 yamt min(off, tspace));
1289 1.109 yamt m->m_len += tspace;
1290 1.109 yamt off += mlen;
1291 1.109 yamt totlen -= mlen;
1292 1.109 yamt continue;
1293 1.109 yamt }
1294 1.109 yamt
1295 1.109 yamt /*
1296 1.109 yamt * need to allocate an mbuf.
1297 1.109 yamt */
1298 1.109 yamt
1299 1.109 yamt if (off + len >= MINCLSIZE) {
1300 1.109 yamt n = m_getcl(how, m->m_type, 0);
1301 1.109 yamt } else {
1302 1.109 yamt n = m_get(how, m->m_type);
1303 1.109 yamt }
1304 1.109 yamt if (n == NULL) {
1305 1.18 thorpej goto out;
1306 1.109 yamt }
1307 1.109 yamt n->m_len = 0;
1308 1.109 yamt n->m_len = min(M_TRAILINGSPACE(n), off + len);
1309 1.109 yamt memset(mtod(n, char *), 0, min(n->m_len, off));
1310 1.18 thorpej m->m_next = n;
1311 1.18 thorpej }
1312 1.85 yamt mp = &m->m_next;
1313 1.18 thorpej m = m->m_next;
1314 1.18 thorpej }
1315 1.18 thorpej while (len > 0) {
1316 1.85 yamt mlen = m->m_len - off;
1317 1.85 yamt if (mlen != 0 && M_READONLY(m)) {
1318 1.85 yamt char *datap;
1319 1.85 yamt int eatlen;
1320 1.85 yamt
1321 1.85 yamt /*
1322 1.85 yamt * this mbuf is read-only.
1323 1.85 yamt * allocate a new writable mbuf and try again.
1324 1.85 yamt */
1325 1.85 yamt
1326 1.85 yamt #if defined(DIAGNOSTIC)
1327 1.85 yamt if ((flags & M_COPYBACK0_COW) == 0)
1328 1.85 yamt panic("m_copyback0: read-only");
1329 1.85 yamt #endif /* defined(DIAGNOSTIC) */
1330 1.85 yamt
1331 1.85 yamt /*
1332 1.85 yamt * if we're going to write into the middle of
1333 1.85 yamt * a mbuf, split it first.
1334 1.85 yamt */
1335 1.85 yamt if (off > 0 && len < mlen) {
1336 1.85 yamt n = m_split0(m, off, how, 0);
1337 1.85 yamt if (n == NULL)
1338 1.85 yamt goto enobufs;
1339 1.85 yamt m->m_next = n;
1340 1.85 yamt mp = &m->m_next;
1341 1.85 yamt m = n;
1342 1.85 yamt off = 0;
1343 1.85 yamt continue;
1344 1.85 yamt }
1345 1.85 yamt
1346 1.85 yamt /*
1347 1.85 yamt * XXX TODO coalesce into the trailingspace of
1348 1.85 yamt * the previous mbuf when possible.
1349 1.85 yamt */
1350 1.85 yamt
1351 1.85 yamt /*
1352 1.85 yamt * allocate a new mbuf. copy packet header if needed.
1353 1.85 yamt */
1354 1.85 yamt MGET(n, how, m->m_type);
1355 1.85 yamt if (n == NULL)
1356 1.85 yamt goto enobufs;
1357 1.85 yamt MCLAIM(n, m->m_owner);
1358 1.85 yamt if (off == 0 && (m->m_flags & M_PKTHDR) != 0) {
1359 1.101 yamt M_MOVE_PKTHDR(n, m);
1360 1.85 yamt n->m_len = MHLEN;
1361 1.85 yamt } else {
1362 1.85 yamt if (len >= MINCLSIZE)
1363 1.85 yamt MCLGET(n, M_DONTWAIT);
1364 1.85 yamt n->m_len =
1365 1.85 yamt (n->m_flags & M_EXT) ? MCLBYTES : MLEN;
1366 1.85 yamt }
1367 1.85 yamt if (n->m_len > len)
1368 1.85 yamt n->m_len = len;
1369 1.85 yamt
1370 1.85 yamt /*
1371 1.85 yamt * free the region which has been overwritten.
1372 1.85 yamt * copying data from old mbufs if requested.
1373 1.85 yamt */
1374 1.85 yamt if (flags & M_COPYBACK0_PRESERVE)
1375 1.85 yamt datap = mtod(n, char *);
1376 1.85 yamt else
1377 1.85 yamt datap = NULL;
1378 1.85 yamt eatlen = n->m_len;
1379 1.85 yamt KDASSERT(off == 0 || eatlen >= mlen);
1380 1.85 yamt if (off > 0) {
1381 1.85 yamt KDASSERT(len >= mlen);
1382 1.85 yamt m->m_len = off;
1383 1.85 yamt m->m_next = n;
1384 1.85 yamt if (datap) {
1385 1.85 yamt m_copydata(m, off, mlen, datap);
1386 1.85 yamt datap += mlen;
1387 1.85 yamt }
1388 1.85 yamt eatlen -= mlen;
1389 1.85 yamt mp = &m->m_next;
1390 1.85 yamt m = m->m_next;
1391 1.85 yamt }
1392 1.85 yamt while (m != NULL && M_READONLY(m) &&
1393 1.85 yamt n->m_type == m->m_type && eatlen > 0) {
1394 1.85 yamt mlen = min(eatlen, m->m_len);
1395 1.85 yamt if (datap) {
1396 1.85 yamt m_copydata(m, 0, mlen, datap);
1397 1.85 yamt datap += mlen;
1398 1.85 yamt }
1399 1.85 yamt m->m_data += mlen;
1400 1.85 yamt m->m_len -= mlen;
1401 1.85 yamt eatlen -= mlen;
1402 1.85 yamt if (m->m_len == 0)
1403 1.85 yamt *mp = m = m_free(m);
1404 1.85 yamt }
1405 1.85 yamt if (eatlen > 0)
1406 1.85 yamt n->m_len -= eatlen;
1407 1.85 yamt n->m_next = m;
1408 1.85 yamt *mp = m = n;
1409 1.85 yamt continue;
1410 1.85 yamt }
1411 1.85 yamt mlen = min(mlen, len);
1412 1.85 yamt if (flags & M_COPYBACK0_COPYBACK) {
1413 1.119 christos memcpy(mtod(m, char *) + off, cp, (unsigned)mlen);
1414 1.85 yamt cp += mlen;
1415 1.85 yamt }
1416 1.18 thorpej len -= mlen;
1417 1.18 thorpej mlen += off;
1418 1.18 thorpej off = 0;
1419 1.18 thorpej totlen += mlen;
1420 1.18 thorpej if (len == 0)
1421 1.18 thorpej break;
1422 1.109 yamt if (m->m_next == NULL) {
1423 1.109 yamt goto extend;
1424 1.18 thorpej }
1425 1.85 yamt mp = &m->m_next;
1426 1.18 thorpej m = m->m_next;
1427 1.18 thorpej }
1428 1.106 yamt out: if (((m = *mp0)->m_flags & M_PKTHDR) && (m->m_pkthdr.len < totlen)) {
1429 1.106 yamt KASSERT((flags & M_COPYBACK0_EXTEND) != 0);
1430 1.18 thorpej m->m_pkthdr.len = totlen;
1431 1.106 yamt }
1432 1.85 yamt
1433 1.85 yamt return 0;
1434 1.85 yamt
1435 1.85 yamt enobufs:
1436 1.85 yamt return ENOBUFS;
1437 1.66 thorpej }
1438 1.66 thorpej
1439 1.101 yamt void
1440 1.101 yamt m_move_pkthdr(struct mbuf *to, struct mbuf *from)
1441 1.101 yamt {
1442 1.101 yamt
1443 1.101 yamt KASSERT((to->m_flags & M_EXT) == 0);
1444 1.101 yamt KASSERT((to->m_flags & M_PKTHDR) == 0 || m_tag_first(to) == NULL);
1445 1.101 yamt KASSERT((from->m_flags & M_PKTHDR) != 0);
1446 1.101 yamt
1447 1.101 yamt to->m_pkthdr = from->m_pkthdr;
1448 1.101 yamt to->m_flags = from->m_flags & M_COPYFLAGS;
1449 1.101 yamt to->m_data = to->m_pktdat;
1450 1.101 yamt
1451 1.101 yamt from->m_flags &= ~M_PKTHDR;
1452 1.101 yamt }
1453 1.101 yamt
1454 1.66 thorpej /*
1455 1.66 thorpej * Apply function f to the data in an mbuf chain starting "off" bytes from the
1456 1.66 thorpej * beginning, continuing for "len" bytes.
1457 1.66 thorpej */
1458 1.66 thorpej int
1459 1.66 thorpej m_apply(struct mbuf *m, int off, int len,
1460 1.119 christos int (*f)(void *, void *, unsigned int), void *arg)
1461 1.66 thorpej {
1462 1.66 thorpej unsigned int count;
1463 1.66 thorpej int rval;
1464 1.66 thorpej
1465 1.66 thorpej KASSERT(len >= 0);
1466 1.66 thorpej KASSERT(off >= 0);
1467 1.66 thorpej
1468 1.66 thorpej while (off > 0) {
1469 1.66 thorpej KASSERT(m != NULL);
1470 1.66 thorpej if (off < m->m_len)
1471 1.66 thorpej break;
1472 1.66 thorpej off -= m->m_len;
1473 1.66 thorpej m = m->m_next;
1474 1.66 thorpej }
1475 1.66 thorpej while (len > 0) {
1476 1.66 thorpej KASSERT(m != NULL);
1477 1.66 thorpej count = min(m->m_len - off, len);
1478 1.66 thorpej
1479 1.119 christos rval = (*f)(arg, mtod(m, char *) + off, count);
1480 1.66 thorpej if (rval)
1481 1.66 thorpej return (rval);
1482 1.66 thorpej
1483 1.66 thorpej len -= count;
1484 1.66 thorpej off = 0;
1485 1.66 thorpej m = m->m_next;
1486 1.66 thorpej }
1487 1.66 thorpej
1488 1.66 thorpej return (0);
1489 1.66 thorpej }
1490 1.66 thorpej
1491 1.66 thorpej /*
1492 1.66 thorpej * Return a pointer to mbuf/offset of location in mbuf chain.
1493 1.66 thorpej */
1494 1.66 thorpej struct mbuf *
1495 1.66 thorpej m_getptr(struct mbuf *m, int loc, int *off)
1496 1.66 thorpej {
1497 1.66 thorpej
1498 1.66 thorpej while (loc >= 0) {
1499 1.66 thorpej /* Normal end of search */
1500 1.66 thorpej if (m->m_len > loc) {
1501 1.66 thorpej *off = loc;
1502 1.66 thorpej return (m);
1503 1.66 thorpej } else {
1504 1.66 thorpej loc -= m->m_len;
1505 1.66 thorpej
1506 1.66 thorpej if (m->m_next == NULL) {
1507 1.66 thorpej if (loc == 0) {
1508 1.66 thorpej /* Point at the end of valid data */
1509 1.66 thorpej *off = m->m_len;
1510 1.66 thorpej return (m);
1511 1.66 thorpej } else
1512 1.66 thorpej return (NULL);
1513 1.66 thorpej } else
1514 1.66 thorpej m = m->m_next;
1515 1.66 thorpej }
1516 1.66 thorpej }
1517 1.66 thorpej
1518 1.66 thorpej return (NULL);
1519 1.1 cgd }
1520 1.105 yamt
1521 1.125 yamt /*
1522 1.125 yamt * m_ext_free: release a reference to the mbuf external storage.
1523 1.125 yamt *
1524 1.125 yamt * => free the mbuf m itsself as well.
1525 1.125 yamt */
1526 1.125 yamt
1527 1.125 yamt void
1528 1.125 yamt m_ext_free(struct mbuf *m)
1529 1.125 yamt {
1530 1.125 yamt bool embedded = MEXT_ISEMBEDDED(m);
1531 1.125 yamt bool dofree = true;
1532 1.125 yamt u_int refcnt;
1533 1.125 yamt
1534 1.125 yamt KASSERT((m->m_flags & M_EXT) != 0);
1535 1.125 yamt KASSERT(MEXT_ISEMBEDDED(m->m_ext_ref));
1536 1.125 yamt KASSERT((m->m_ext_ref->m_flags & M_EXT) != 0);
1537 1.125 yamt KASSERT((m->m_flags & M_EXT_CLUSTER) ==
1538 1.125 yamt (m->m_ext_ref->m_flags & M_EXT_CLUSTER));
1539 1.125 yamt
1540 1.125 yamt if (__predict_true(m->m_ext.ext_refcnt == 1)) {
1541 1.125 yamt refcnt = m->m_ext.ext_refcnt = 0;
1542 1.125 yamt } else {
1543 1.125 yamt refcnt = atomic_dec_uint_nv(&m->m_ext.ext_refcnt);
1544 1.125 yamt }
1545 1.125 yamt if (refcnt > 0) {
1546 1.125 yamt if (embedded) {
1547 1.125 yamt /*
1548 1.125 yamt * other mbuf's m_ext_ref still points to us.
1549 1.125 yamt */
1550 1.125 yamt dofree = false;
1551 1.125 yamt } else {
1552 1.125 yamt m->m_ext_ref = m;
1553 1.125 yamt }
1554 1.125 yamt } else {
1555 1.125 yamt /*
1556 1.125 yamt * dropping the last reference
1557 1.125 yamt */
1558 1.125 yamt if (!embedded) {
1559 1.125 yamt m->m_ext.ext_refcnt++; /* XXX */
1560 1.125 yamt m_ext_free(m->m_ext_ref);
1561 1.125 yamt m->m_ext_ref = m;
1562 1.125 yamt } else if ((m->m_flags & M_EXT_CLUSTER) != 0) {
1563 1.125 yamt pool_cache_put_paddr((struct pool_cache *)
1564 1.125 yamt m->m_ext.ext_arg,
1565 1.125 yamt m->m_ext.ext_buf, m->m_ext.ext_paddr);
1566 1.125 yamt } else if (m->m_ext.ext_free) {
1567 1.125 yamt (*m->m_ext.ext_free)(m,
1568 1.125 yamt m->m_ext.ext_buf, m->m_ext.ext_size,
1569 1.125 yamt m->m_ext.ext_arg);
1570 1.125 yamt /*
1571 1.125 yamt * 'm' is already freed by the ext_free callback.
1572 1.125 yamt */
1573 1.125 yamt dofree = false;
1574 1.125 yamt } else {
1575 1.125 yamt free(m->m_ext.ext_buf, m->m_ext.ext_type);
1576 1.125 yamt }
1577 1.125 yamt }
1578 1.125 yamt if (dofree) {
1579 1.125 yamt pool_cache_put(mb_cache, m);
1580 1.125 yamt }
1581 1.125 yamt }
1582 1.125 yamt
1583 1.105 yamt #if defined(DDB)
1584 1.105 yamt void
1585 1.105 yamt m_print(const struct mbuf *m, const char *modif, void (*pr)(const char *, ...))
1586 1.105 yamt {
1587 1.105 yamt char ch;
1588 1.118 thorpej bool opt_c = false;
1589 1.105 yamt char buf[512];
1590 1.105 yamt
1591 1.105 yamt while ((ch = *(modif++)) != '\0') {
1592 1.105 yamt switch (ch) {
1593 1.105 yamt case 'c':
1594 1.118 thorpej opt_c = true;
1595 1.105 yamt break;
1596 1.105 yamt }
1597 1.105 yamt }
1598 1.105 yamt
1599 1.105 yamt nextchain:
1600 1.105 yamt (*pr)("MBUF %p\n", m);
1601 1.123 yamt bitmask_snprintf((u_int)m->m_flags, M_FLAGS_BITS, buf, sizeof(buf));
1602 1.105 yamt (*pr)(" data=%p, len=%d, type=%d, flags=0x%s\n",
1603 1.105 yamt m->m_data, m->m_len, m->m_type, buf);
1604 1.105 yamt (*pr)(" owner=%p, next=%p, nextpkt=%p\n", m->m_owner, m->m_next,
1605 1.105 yamt m->m_nextpkt);
1606 1.105 yamt (*pr)(" leadingspace=%u, trailingspace=%u, readonly=%u\n",
1607 1.105 yamt (int)M_LEADINGSPACE(m), (int)M_TRAILINGSPACE(m),
1608 1.105 yamt (int)M_READONLY(m));
1609 1.105 yamt if ((m->m_flags & M_PKTHDR) != 0) {
1610 1.105 yamt bitmask_snprintf(m->m_pkthdr.csum_flags, M_CSUM_BITS, buf,
1611 1.105 yamt sizeof(buf));
1612 1.105 yamt (*pr)(" pktlen=%d, rcvif=%p, csum_flags=0x%s, csum_data=0x%"
1613 1.105 yamt PRIx32 ", segsz=%u\n",
1614 1.105 yamt m->m_pkthdr.len, m->m_pkthdr.rcvif,
1615 1.105 yamt buf, m->m_pkthdr.csum_data, m->m_pkthdr.segsz);
1616 1.105 yamt }
1617 1.105 yamt if ((m->m_flags & M_EXT)) {
1618 1.125 yamt (*pr)(" ext_refcnt=%u, ext_buf=%p, ext_size=%zd, "
1619 1.105 yamt "ext_free=%p, ext_arg=%p\n",
1620 1.125 yamt m->m_ext.ext_refcnt,
1621 1.105 yamt m->m_ext.ext_buf, m->m_ext.ext_size,
1622 1.105 yamt m->m_ext.ext_free, m->m_ext.ext_arg);
1623 1.105 yamt }
1624 1.105 yamt if ((~m->m_flags & (M_EXT|M_EXT_PAGES)) == 0) {
1625 1.108 yamt vaddr_t sva = (vaddr_t)m->m_ext.ext_buf;
1626 1.108 yamt vaddr_t eva = sva + m->m_ext.ext_size;
1627 1.108 yamt int n = (round_page(eva) - trunc_page(sva)) >> PAGE_SHIFT;
1628 1.108 yamt int i;
1629 1.105 yamt
1630 1.105 yamt (*pr)(" pages:");
1631 1.108 yamt for (i = 0; i < n; i ++) {
1632 1.108 yamt (*pr)(" %p", m->m_ext.ext_pgs[i]);
1633 1.105 yamt }
1634 1.105 yamt (*pr)("\n");
1635 1.105 yamt }
1636 1.105 yamt
1637 1.105 yamt if (opt_c) {
1638 1.105 yamt m = m->m_next;
1639 1.105 yamt if (m != NULL) {
1640 1.105 yamt goto nextchain;
1641 1.105 yamt }
1642 1.105 yamt }
1643 1.105 yamt }
1644 1.105 yamt #endif /* defined(DDB) */
1645 1.124 yamt
1646 1.124 yamt void
1647 1.124 yamt mbstat_type_add(int type, int diff)
1648 1.124 yamt {
1649 1.124 yamt struct mbstat_cpu *mb;
1650 1.124 yamt int s;
1651 1.124 yamt
1652 1.124 yamt s = splvm();
1653 1.126 thorpej mb = percpu_getref(mbstat_percpu);
1654 1.124 yamt mb->m_mtypes[type] += diff;
1655 1.126 thorpej percpu_putref(mbstat_percpu);
1656 1.124 yamt splx(s);
1657 1.124 yamt }
1658 1.124 yamt
1659 1.124 yamt #if defined(MBUFTRACE)
1660 1.124 yamt void
1661 1.124 yamt mowner_attach(struct mowner *mo)
1662 1.124 yamt {
1663 1.124 yamt
1664 1.124 yamt KASSERT(mo->mo_counters == NULL);
1665 1.124 yamt mo->mo_counters = percpu_alloc(sizeof(struct mowner_counter));
1666 1.124 yamt
1667 1.124 yamt /* XXX lock */
1668 1.124 yamt LIST_INSERT_HEAD(&mowners, mo, mo_link);
1669 1.124 yamt }
1670 1.124 yamt
1671 1.124 yamt void
1672 1.124 yamt mowner_detach(struct mowner *mo)
1673 1.124 yamt {
1674 1.124 yamt
1675 1.124 yamt KASSERT(mo->mo_counters != NULL);
1676 1.124 yamt
1677 1.124 yamt /* XXX lock */
1678 1.124 yamt LIST_REMOVE(mo, mo_link);
1679 1.124 yamt
1680 1.124 yamt percpu_free(mo->mo_counters, sizeof(struct mowner_counter));
1681 1.124 yamt mo->mo_counters = NULL;
1682 1.124 yamt }
1683 1.124 yamt
1684 1.124 yamt void
1685 1.124 yamt mowner_init(struct mbuf *m, int type)
1686 1.124 yamt {
1687 1.124 yamt struct mowner_counter *mc;
1688 1.124 yamt struct mowner *mo;
1689 1.124 yamt int s;
1690 1.124 yamt
1691 1.124 yamt m->m_owner = mo = &unknown_mowners[type];
1692 1.124 yamt s = splvm();
1693 1.126 thorpej mc = percpu_getref(mo->mo_counters);
1694 1.124 yamt mc->mc_counter[MOWNER_COUNTER_CLAIMS]++;
1695 1.126 thorpej percpu_putref(mo->mo_counters);
1696 1.124 yamt splx(s);
1697 1.124 yamt }
1698 1.124 yamt
1699 1.124 yamt void
1700 1.124 yamt mowner_ref(struct mbuf *m, int flags)
1701 1.124 yamt {
1702 1.124 yamt struct mowner *mo = m->m_owner;
1703 1.124 yamt struct mowner_counter *mc;
1704 1.124 yamt int s;
1705 1.124 yamt
1706 1.124 yamt s = splvm();
1707 1.126 thorpej mc = percpu_getref(mo->mo_counters);
1708 1.124 yamt if ((flags & M_EXT) != 0)
1709 1.124 yamt mc->mc_counter[MOWNER_COUNTER_EXT_CLAIMS]++;
1710 1.124 yamt if ((flags & M_CLUSTER) != 0)
1711 1.124 yamt mc->mc_counter[MOWNER_COUNTER_CLUSTER_CLAIMS]++;
1712 1.126 thorpej percpu_putref(mo->mo_counters);
1713 1.124 yamt splx(s);
1714 1.124 yamt }
1715 1.124 yamt
1716 1.124 yamt void
1717 1.124 yamt mowner_revoke(struct mbuf *m, bool all, int flags)
1718 1.124 yamt {
1719 1.124 yamt struct mowner *mo = m->m_owner;
1720 1.124 yamt struct mowner_counter *mc;
1721 1.124 yamt int s;
1722 1.124 yamt
1723 1.124 yamt s = splvm();
1724 1.126 thorpej mc = percpu_getref(mo->mo_counters);
1725 1.124 yamt if ((flags & M_EXT) != 0)
1726 1.124 yamt mc->mc_counter[MOWNER_COUNTER_EXT_RELEASES]++;
1727 1.124 yamt if ((flags & M_CLUSTER) != 0)
1728 1.124 yamt mc->mc_counter[MOWNER_COUNTER_CLUSTER_RELEASES]++;
1729 1.124 yamt if (all)
1730 1.124 yamt mc->mc_counter[MOWNER_COUNTER_RELEASES]++;
1731 1.126 thorpej percpu_putref(mo->mo_counters);
1732 1.124 yamt splx(s);
1733 1.124 yamt if (all)
1734 1.124 yamt m->m_owner = &revoked_mowner;
1735 1.124 yamt }
1736 1.124 yamt
1737 1.124 yamt static void
1738 1.124 yamt mowner_claim(struct mbuf *m, struct mowner *mo)
1739 1.124 yamt {
1740 1.124 yamt struct mowner_counter *mc;
1741 1.124 yamt int flags = m->m_flags;
1742 1.124 yamt int s;
1743 1.124 yamt
1744 1.124 yamt s = splvm();
1745 1.126 thorpej mc = percpu_getref(mo->mo_counters);
1746 1.124 yamt mc->mc_counter[MOWNER_COUNTER_CLAIMS]++;
1747 1.124 yamt if ((flags & M_EXT) != 0)
1748 1.124 yamt mc->mc_counter[MOWNER_COUNTER_EXT_CLAIMS]++;
1749 1.124 yamt if ((flags & M_CLUSTER) != 0)
1750 1.124 yamt mc->mc_counter[MOWNER_COUNTER_CLUSTER_CLAIMS]++;
1751 1.126 thorpej percpu_putref(mo->mo_counters);
1752 1.124 yamt splx(s);
1753 1.124 yamt m->m_owner = mo;
1754 1.124 yamt }
1755 1.124 yamt
1756 1.124 yamt void
1757 1.124 yamt m_claim(struct mbuf *m, struct mowner *mo)
1758 1.124 yamt {
1759 1.124 yamt
1760 1.124 yamt if (m->m_owner == mo || mo == NULL)
1761 1.124 yamt return;
1762 1.124 yamt
1763 1.124 yamt mowner_revoke(m, true, m->m_flags);
1764 1.124 yamt mowner_claim(m, mo);
1765 1.124 yamt }
1766 1.124 yamt #endif /* defined(MBUFTRACE) */
1767