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npf_mbuf.c revision 1.18.14.4
      1        1.1     rmind /*-
      2        1.9     rmind  * Copyright (c) 2009-2012 The NetBSD Foundation, Inc.
      3        1.1     rmind  * All rights reserved.
      4        1.1     rmind  *
      5        1.1     rmind  * This material is based upon work partially supported by The
      6        1.1     rmind  * NetBSD Foundation under a contract with Mindaugas Rasiukevicius.
      7        1.1     rmind  *
      8        1.1     rmind  * Redistribution and use in source and binary forms, with or without
      9        1.1     rmind  * modification, are permitted provided that the following conditions
     10        1.1     rmind  * are met:
     11        1.1     rmind  * 1. Redistributions of source code must retain the above copyright
     12        1.1     rmind  *    notice, this list of conditions and the following disclaimer.
     13        1.1     rmind  * 2. Redistributions in binary form must reproduce the above copyright
     14        1.1     rmind  *    notice, this list of conditions and the following disclaimer in the
     15        1.1     rmind  *    documentation and/or other materials provided with the distribution.
     16        1.1     rmind  *
     17        1.1     rmind  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     18        1.1     rmind  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     19        1.1     rmind  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     20        1.1     rmind  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     21        1.1     rmind  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     22        1.1     rmind  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     23        1.1     rmind  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     24        1.1     rmind  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     25        1.1     rmind  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     26        1.1     rmind  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     27        1.1     rmind  * POSSIBILITY OF SUCH DAMAGE.
     28        1.1     rmind  */
     29        1.1     rmind 
     30        1.1     rmind /*
     31        1.1     rmind  * NPF network buffer management interface.
     32        1.1     rmind  *
     33        1.1     rmind  * Network buffer in NetBSD is mbuf.  Internal mbuf structures are
     34        1.1     rmind  * abstracted within this source.
     35        1.1     rmind  */
     36        1.1     rmind 
     37       1.18  christos #ifdef _KERNEL
     38        1.1     rmind #include <sys/cdefs.h>
     39  1.18.14.4  pgoyette __KERNEL_RCSID(0, "$NetBSD: npf_mbuf.c,v 1.18.14.4 2018/11/26 01:52:50 pgoyette Exp $");
     40        1.1     rmind 
     41        1.1     rmind #include <sys/param.h>
     42        1.1     rmind #include <sys/mbuf.h>
     43  1.18.14.1  pgoyette #include <netinet/in_offload.h>
     44       1.18  christos #endif
     45        1.1     rmind 
     46        1.1     rmind #include "npf_impl.h"
     47        1.1     rmind 
     48  1.18.14.2  pgoyette #ifdef _KERNEL
     49  1.18.14.2  pgoyette #ifdef INET6
     50  1.18.14.2  pgoyette #include <netinet6/in6.h>
     51  1.18.14.2  pgoyette #include <netinet6/in6_offload.h>
     52  1.18.14.2  pgoyette #endif
     53  1.18.14.2  pgoyette #endif
     54  1.18.14.2  pgoyette 
     55       1.18  christos #if defined(_NPF_STANDALONE)
     56       1.18  christos #define	m_length(m)		(nbuf)->nb_mops->getchainlen(m)
     57       1.18  christos #define	m_buflen(m)		(nbuf)->nb_mops->getlen(m)
     58       1.18  christos #define	m_next_ptr(m)		(nbuf)->nb_mops->getnext(m)
     59       1.18  christos #define	m_ensure_contig(m,t)	(nbuf)->nb_mops->ensure_contig((m), (t))
     60       1.18  christos #define	m_makewritable(m,o,l,f)	(nbuf)->nb_mops->ensure_writable((m), (o+l))
     61       1.18  christos #define	mtod(m,t)		((t)((nbuf)->nb_mops->getdata(m)))
     62       1.18  christos #define	m_flags_p(m,f)		true
     63       1.18  christos #else
     64       1.18  christos #define	m_next_ptr(m)		(m)->m_next
     65       1.18  christos #define	m_buflen(m)		(m)->m_len
     66       1.18  christos #define	m_flags_p(m,f)		(((m)->m_flags & (f)) != 0)
     67       1.18  christos #endif
     68       1.18  christos 
     69        1.9     rmind #define	NBUF_ENSURE_ALIGN	(MAX(COHERENCY_UNIT, 64))
     70        1.9     rmind #define	NBUF_ENSURE_MASK	(NBUF_ENSURE_ALIGN - 1)
     71        1.9     rmind #define	NBUF_ENSURE_ROUNDUP(x)	(((x) + NBUF_ENSURE_ALIGN) & ~NBUF_ENSURE_MASK)
     72        1.9     rmind 
     73        1.9     rmind void
     74       1.18  christos nbuf_init(npf_t *npf, nbuf_t *nbuf, struct mbuf *m, const ifnet_t *ifp)
     75        1.9     rmind {
     76       1.18  christos 	u_int ifid = npf_ifmap_getid(npf, ifp);
     77       1.12     rmind 
     78       1.18  christos 	KASSERT(m_flags_p(m, M_PKTHDR));
     79       1.18  christos 	nbuf->nb_mops = npf->mbufops;
     80        1.9     rmind 
     81        1.9     rmind 	nbuf->nb_mbuf0 = m;
     82        1.9     rmind 	nbuf->nb_ifp = ifp;
     83       1.14     rmind 	nbuf->nb_ifid = ifid;
     84        1.9     rmind 	nbuf_reset(nbuf);
     85        1.9     rmind }
     86        1.9     rmind 
     87        1.9     rmind void
     88        1.9     rmind nbuf_reset(nbuf_t *nbuf)
     89        1.9     rmind {
     90        1.9     rmind 	struct mbuf *m = nbuf->nb_mbuf0;
     91        1.9     rmind 
     92        1.9     rmind 	nbuf->nb_mbuf = m;
     93        1.9     rmind 	nbuf->nb_nptr = mtod(m, void *);
     94        1.9     rmind }
     95        1.9     rmind 
     96        1.1     rmind void *
     97        1.1     rmind nbuf_dataptr(nbuf_t *nbuf)
     98        1.1     rmind {
     99        1.9     rmind 	KASSERT(nbuf->nb_nptr);
    100        1.9     rmind 	return nbuf->nb_nptr;
    101        1.9     rmind }
    102        1.9     rmind 
    103        1.9     rmind size_t
    104        1.9     rmind nbuf_offset(const nbuf_t *nbuf)
    105        1.9     rmind {
    106        1.9     rmind 	const struct mbuf *m = nbuf->nb_mbuf;
    107        1.9     rmind 	const u_int off = (uintptr_t)nbuf->nb_nptr - mtod(m, uintptr_t);
    108        1.9     rmind 	const int poff = m_length(nbuf->nb_mbuf0) - m_length(m) + off;
    109        1.9     rmind 
    110        1.9     rmind 	return poff;
    111        1.9     rmind }
    112        1.9     rmind 
    113        1.9     rmind struct mbuf *
    114        1.9     rmind nbuf_head_mbuf(nbuf_t *nbuf)
    115        1.9     rmind {
    116        1.9     rmind 	return nbuf->nb_mbuf0;
    117        1.9     rmind }
    118        1.1     rmind 
    119        1.9     rmind bool
    120        1.9     rmind nbuf_flag_p(const nbuf_t *nbuf, int flag)
    121        1.9     rmind {
    122        1.9     rmind 	return (nbuf->nb_flags & flag) != 0;
    123        1.9     rmind }
    124        1.9     rmind 
    125        1.9     rmind void
    126        1.9     rmind nbuf_unset_flag(nbuf_t *nbuf, int flag)
    127        1.9     rmind {
    128        1.9     rmind 	nbuf->nb_flags &= ~flag;
    129        1.1     rmind }
    130        1.1     rmind 
    131        1.1     rmind /*
    132        1.9     rmind  * nbuf_advance: advance in nbuf or chain by specified amount of bytes and,
    133        1.9     rmind  * if requested, ensure that the area *after* advance is contiguous.
    134        1.1     rmind  *
    135        1.9     rmind  * => Returns new pointer to data in nbuf or NULL if offset is invalid.
    136        1.9     rmind  * => Current nbuf and the offset is stored in the nbuf metadata.
    137        1.1     rmind  */
    138        1.1     rmind void *
    139        1.9     rmind nbuf_advance(nbuf_t *nbuf, size_t len, size_t ensure)
    140        1.1     rmind {
    141        1.9     rmind 	struct mbuf *m = nbuf->nb_mbuf;
    142        1.1     rmind 	u_int off, wmark;
    143        1.1     rmind 	uint8_t *d;
    144        1.1     rmind 
    145        1.1     rmind 	/* Offset with amount to advance. */
    146        1.9     rmind 	off = (uintptr_t)nbuf->nb_nptr - mtod(m, uintptr_t) + len;
    147       1.18  christos 	wmark = m_buflen(m);
    148        1.1     rmind 
    149        1.1     rmind 	/* Find the mbuf according to offset. */
    150        1.1     rmind 	while (__predict_false(wmark <= off)) {
    151       1.18  christos 		m = m_next_ptr(m);
    152        1.1     rmind 		if (__predict_false(m == NULL)) {
    153        1.1     rmind 			/*
    154        1.9     rmind 			 * If end of the chain, then the offset is
    155        1.1     rmind 			 * higher than packet length.
    156        1.1     rmind 			 */
    157        1.1     rmind 			return NULL;
    158        1.1     rmind 		}
    159       1.18  christos 		wmark += m_buflen(m);
    160        1.1     rmind 	}
    161        1.9     rmind 	KASSERT(off < m_length(nbuf->nb_mbuf0));
    162        1.1     rmind 
    163        1.1     rmind 	/* Offset in mbuf data. */
    164        1.1     rmind 	d = mtod(m, uint8_t *);
    165       1.18  christos 	KASSERT(off >= (wmark - m_buflen(m)));
    166       1.18  christos 	d += (off - (wmark - m_buflen(m)));
    167        1.1     rmind 
    168        1.9     rmind 	nbuf->nb_mbuf = m;
    169        1.9     rmind 	nbuf->nb_nptr = d;
    170        1.9     rmind 
    171        1.9     rmind 	if (ensure) {
    172        1.9     rmind 		/* Ensure contiguousness (may change nbuf chain). */
    173        1.9     rmind 		d = nbuf_ensure_contig(nbuf, ensure);
    174        1.9     rmind 	}
    175        1.1     rmind 	return d;
    176        1.1     rmind }
    177        1.1     rmind 
    178        1.1     rmind /*
    179        1.9     rmind  * nbuf_ensure_contig: check whether the specified length from the current
    180        1.9     rmind  * point in the nbuf is contiguous.  If not, rearrange the chain to be so.
    181        1.1     rmind  *
    182        1.9     rmind  * => Returns pointer to the data at the current offset in the buffer.
    183        1.9     rmind  * => Returns NULL on failure and nbuf becomes invalid.
    184        1.1     rmind  */
    185        1.9     rmind void *
    186        1.9     rmind nbuf_ensure_contig(nbuf_t *nbuf, size_t len)
    187        1.1     rmind {
    188       1.10     rmind 	const struct mbuf * const n = nbuf->nb_mbuf;
    189       1.10     rmind 	const size_t off = (uintptr_t)nbuf->nb_nptr - mtod(n, uintptr_t);
    190        1.9     rmind 
    191       1.18  christos 	KASSERT(off <= m_buflen(n));
    192        1.9     rmind 
    193       1.18  christos 	if (__predict_false(m_buflen(n) < (off + len))) {
    194       1.10     rmind 		struct mbuf *m = nbuf->nb_mbuf0;
    195       1.10     rmind 		const size_t foff = nbuf_offset(nbuf);
    196       1.10     rmind 		const size_t plen = m_length(m);
    197       1.18  christos 		const size_t mlen = m_buflen(m);
    198       1.10     rmind 		size_t target;
    199       1.10     rmind 		bool success;
    200        1.9     rmind 
    201       1.18  christos 		//npf_stats_inc(npf, NPF_STAT_NBUF_NONCONTIG);
    202        1.9     rmind 
    203        1.9     rmind 		/* Attempt to round-up to NBUF_ENSURE_ALIGN bytes. */
    204       1.10     rmind 		if ((target = NBUF_ENSURE_ROUNDUP(foff + len)) > plen) {
    205       1.10     rmind 			target = foff + len;
    206        1.9     rmind 		}
    207        1.1     rmind 
    208        1.9     rmind 		/* Rearrange the chain to be contiguous. */
    209       1.18  christos 		KASSERT(m_flags_p(m, M_PKTHDR));
    210       1.10     rmind 		success = m_ensure_contig(&m, target);
    211       1.10     rmind 		KASSERT(m != NULL);
    212       1.10     rmind 
    213       1.10     rmind 		/* If no change in the chain: return what we have. */
    214       1.18  christos 		if (m == nbuf->nb_mbuf0 && m_buflen(m) == mlen) {
    215       1.10     rmind 			return success ? nbuf->nb_nptr : NULL;
    216        1.9     rmind 		}
    217        1.1     rmind 
    218        1.9     rmind 		/*
    219       1.10     rmind 		 * The mbuf chain was re-arranged.  Update the pointers
    220       1.10     rmind 		 * accordingly and indicate that the references to the data
    221       1.10     rmind 		 * might need a reset.
    222        1.9     rmind 		 */
    223       1.18  christos 		KASSERT(m_flags_p(m, M_PKTHDR));
    224       1.10     rmind 		nbuf->nb_mbuf0 = m;
    225       1.10     rmind 		nbuf->nb_mbuf = m;
    226       1.10     rmind 
    227       1.18  christos 		KASSERT(foff < m_buflen(m) && foff < m_length(m));
    228       1.10     rmind 		nbuf->nb_nptr = mtod(m, uint8_t *) + foff;
    229       1.10     rmind 		nbuf->nb_flags |= NBUF_DATAREF_RESET;
    230       1.10     rmind 
    231       1.10     rmind 		if (!success) {
    232       1.18  christos 			//npf_stats_inc(npf, NPF_STAT_NBUF_CONTIG_FAIL);
    233       1.10     rmind 			return NULL;
    234        1.1     rmind 		}
    235        1.1     rmind 	}
    236        1.9     rmind 	return nbuf->nb_nptr;
    237        1.1     rmind }
    238        1.1     rmind 
    239        1.9     rmind void *
    240        1.9     rmind nbuf_ensure_writable(nbuf_t *nbuf, size_t len)
    241        1.1     rmind {
    242        1.9     rmind 	struct mbuf *m = nbuf->nb_mbuf;
    243        1.9     rmind 	const u_int off = (uintptr_t)nbuf->nb_nptr - mtod(m, uintptr_t);
    244        1.9     rmind 	const int tlen = off + len;
    245        1.9     rmind 	bool head_buf;
    246        1.1     rmind 
    247        1.9     rmind 	KASSERT(off < m_length(nbuf->nb_mbuf0));
    248        1.1     rmind 
    249        1.9     rmind 	if (!M_UNWRITABLE(m, tlen)) {
    250        1.9     rmind 		return nbuf->nb_nptr;
    251        1.9     rmind 	}
    252        1.9     rmind 	head_buf = (nbuf->nb_mbuf0 == m);
    253        1.9     rmind 	if (m_makewritable(&m, 0, tlen, M_NOWAIT)) {
    254        1.9     rmind 		memset(nbuf, 0, sizeof(nbuf_t));
    255        1.9     rmind 		return NULL;
    256        1.9     rmind 	}
    257        1.9     rmind 	if (head_buf) {
    258       1.18  christos 		KASSERT(m_flags_p(m, M_PKTHDR));
    259        1.9     rmind 		KASSERT(off < m_length(m));
    260        1.9     rmind 		nbuf->nb_mbuf0 = m;
    261        1.9     rmind 	}
    262        1.9     rmind 	nbuf->nb_mbuf = m;
    263        1.9     rmind 	nbuf->nb_nptr = mtod(m, uint8_t *) + off;
    264        1.1     rmind 
    265        1.9     rmind 	return nbuf->nb_nptr;
    266        1.1     rmind }
    267        1.1     rmind 
    268        1.9     rmind bool
    269        1.9     rmind nbuf_cksum_barrier(nbuf_t *nbuf, int di)
    270        1.3     rmind {
    271       1.18  christos #ifdef _KERNEL
    272        1.9     rmind 	struct mbuf *m;
    273        1.3     rmind 
    274        1.9     rmind 	if (di != PFIL_OUT) {
    275        1.9     rmind 		return false;
    276        1.5     rmind 	}
    277        1.9     rmind 	m = nbuf->nb_mbuf0;
    278       1.18  christos 	KASSERT(m_flags_p(m, M_PKTHDR));
    279        1.8     rmind 
    280        1.8     rmind 	if (m->m_pkthdr.csum_flags & (M_CSUM_TCPv4 | M_CSUM_UDPv4)) {
    281  1.18.14.1  pgoyette 		in_undefer_cksum_tcpudp(m);
    282        1.8     rmind 		m->m_pkthdr.csum_flags &= ~(M_CSUM_TCPv4 | M_CSUM_UDPv4);
    283        1.9     rmind 		return true;
    284        1.8     rmind 	}
    285       1.16       mrg #ifdef INET6
    286       1.15   mlelstv 	if (m->m_pkthdr.csum_flags & (M_CSUM_TCPv6 | M_CSUM_UDPv6)) {
    287  1.18.14.2  pgoyette 		in6_undefer_cksum_tcpudp(m);
    288       1.15   mlelstv 		m->m_pkthdr.csum_flags &= ~(M_CSUM_TCPv6 | M_CSUM_UDPv6);
    289       1.15   mlelstv 		return true;
    290       1.15   mlelstv 	}
    291       1.16       mrg #endif
    292       1.18  christos #else
    293       1.18  christos 	(void)nbuf; (void)di;
    294       1.18  christos #endif
    295        1.9     rmind 	return false;
    296        1.8     rmind }
    297        1.8     rmind 
    298        1.5     rmind /*
    299        1.1     rmind  * nbuf_add_tag: add a tag to specified network buffer.
    300        1.1     rmind  *
    301        1.9     rmind  * => Returns 0 on success or errno on failure.
    302        1.1     rmind  */
    303        1.1     rmind int
    304       1.17     rmind nbuf_add_tag(nbuf_t *nbuf, uint32_t val)
    305        1.1     rmind {
    306       1.18  christos #ifdef _KERNEL
    307        1.9     rmind 	struct mbuf *m = nbuf->nb_mbuf0;
    308        1.1     rmind 	struct m_tag *mt;
    309        1.1     rmind 	uint32_t *dat;
    310        1.1     rmind 
    311       1.18  christos 	KASSERT(m_flags_p(m, M_PKTHDR));
    312        1.9     rmind 
    313        1.1     rmind 	mt = m_tag_get(PACKET_TAG_NPF, sizeof(uint32_t), M_NOWAIT);
    314        1.9     rmind 	if (mt == NULL) {
    315        1.1     rmind 		return ENOMEM;
    316        1.1     rmind 	}
    317        1.1     rmind 	dat = (uint32_t *)(mt + 1);
    318        1.1     rmind 	*dat = val;
    319        1.1     rmind 	m_tag_prepend(m, mt);
    320        1.1     rmind 	return 0;
    321       1.18  christos #else
    322       1.18  christos 	(void)nbuf; (void)val;
    323       1.18  christos 	return ENOTSUP;
    324       1.18  christos #endif
    325        1.1     rmind }
    326        1.1     rmind 
    327        1.1     rmind /*
    328        1.1     rmind  * nbuf_find_tag: find a tag in specified network buffer.
    329        1.1     rmind  *
    330        1.9     rmind  * => Returns 0 on success or errno on failure.
    331        1.1     rmind  */
    332        1.1     rmind int
    333       1.17     rmind nbuf_find_tag(nbuf_t *nbuf, uint32_t *val)
    334        1.1     rmind {
    335       1.18  christos #ifdef _KERNEL
    336        1.9     rmind 	struct mbuf *m = nbuf->nb_mbuf0;
    337        1.1     rmind 	struct m_tag *mt;
    338        1.1     rmind 
    339       1.18  christos 	KASSERT(m_flags_p(m, M_PKTHDR));
    340        1.9     rmind 
    341  1.18.14.4  pgoyette 	mt = m_tag_find(m, PACKET_TAG_NPF);
    342        1.9     rmind 	if (mt == NULL) {
    343        1.1     rmind 		return EINVAL;
    344        1.1     rmind 	}
    345       1.17     rmind 	*val = *(uint32_t *)(mt + 1);
    346        1.1     rmind 	return 0;
    347       1.18  christos #else
    348       1.18  christos 	(void)nbuf; (void)val;
    349       1.18  christos 	return ENOTSUP;
    350       1.18  christos #endif
    351        1.1     rmind }
    352