Home | History | Annotate | Line # | Download | only in net
if_ether.h revision 1.71.2.1
      1  1.71.2.1  pgoyette /*	$NetBSD: if_ether.h,v 1.71.2.1 2018/04/22 07:20:27 pgoyette Exp $	*/
      2       1.2        is 
      3       1.2        is /*
      4       1.2        is  * Copyright (c) 1982, 1986, 1993
      5       1.2        is  *	The Regents of the University of California.  All rights reserved.
      6       1.2        is  *
      7       1.2        is  * Redistribution and use in source and binary forms, with or without
      8       1.2        is  * modification, are permitted provided that the following conditions
      9       1.2        is  * are met:
     10       1.2        is  * 1. Redistributions of source code must retain the above copyright
     11       1.2        is  *    notice, this list of conditions and the following disclaimer.
     12       1.2        is  * 2. Redistributions in binary form must reproduce the above copyright
     13       1.2        is  *    notice, this list of conditions and the following disclaimer in the
     14       1.2        is  *    documentation and/or other materials provided with the distribution.
     15      1.34       agc  * 3. Neither the name of the University nor the names of its contributors
     16       1.2        is  *    may be used to endorse or promote products derived from this software
     17       1.2        is  *    without specific prior written permission.
     18       1.2        is  *
     19       1.2        is  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     20       1.2        is  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     21       1.2        is  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     22       1.2        is  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     23       1.2        is  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     24       1.2        is  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     25       1.2        is  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     26       1.2        is  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     27       1.2        is  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     28       1.2        is  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     29       1.2        is  * SUCH DAMAGE.
     30       1.2        is  *
     31       1.2        is  *	@(#)if_ether.h	8.1 (Berkeley) 6/10/93
     32       1.2        is  */
     33       1.2        is 
     34       1.4     perry #ifndef _NET_IF_ETHER_H_
     35       1.4     perry #define _NET_IF_ETHER_H_
     36       1.4     perry 
     37      1.29      matt #ifdef _KERNEL
     38      1.33      tron #ifdef _KERNEL_OPT
     39      1.31    martin #include "opt_mbuftrace.h"
     40      1.32      tron #endif
     41      1.29      matt #include <sys/mbuf.h>
     42      1.29      matt #endif
     43      1.29      matt 
     44      1.59  dholland #ifndef _STANDALONE
     45      1.59  dholland #include <net/if.h>
     46      1.59  dholland #endif
     47      1.59  dholland 
     48       1.2        is /*
     49       1.7   thorpej  * Some basic Ethernet constants.
     50       1.7   thorpej  */
     51       1.7   thorpej #define	ETHER_ADDR_LEN	6	/* length of an Ethernet address */
     52       1.7   thorpej #define	ETHER_TYPE_LEN	2	/* length of the Ethernet type field */
     53       1.7   thorpej #define	ETHER_CRC_LEN	4	/* length of the Ethernet CRC */
     54       1.7   thorpej #define	ETHER_HDR_LEN	((ETHER_ADDR_LEN * 2) + ETHER_TYPE_LEN)
     55       1.7   thorpej #define	ETHER_MIN_LEN	64	/* minimum frame length, including CRC */
     56       1.7   thorpej #define	ETHER_MAX_LEN	1518	/* maximum frame length, including CRC */
     57      1.24   thorpej #define	ETHER_MAX_LEN_JUMBO 9018 /* maximum jumbo frame len, including CRC */
     58       1.7   thorpej 
     59       1.7   thorpej /*
     60      1.19   thorpej  * Some Ethernet extensions.
     61      1.19   thorpej  */
     62      1.69   msaitoh #define	ETHER_VLAN_ENCAP_LEN	4      /* length of 802.1Q VLAN encapsulation */
     63      1.69   msaitoh #define	EVL_VLANOFTAG(tag)	((tag) & 4095)		/* VLAN ID */
     64      1.69   msaitoh #define	EVL_PRIOFTAG(tag)	(((tag) >> 13) & 7)	/* Priority */
     65      1.69   msaitoh #define	EVL_CFIOFTAG(tag)	(((tag) >> 12) & 1)	/* CFI */
     66      1.69   msaitoh #define	ETHER_PPPOE_ENCAP_LEN	8	/* length of PPPoE encapsulation */
     67      1.19   thorpej 
     68      1.19   thorpej /*
     69       1.2        is  * Ethernet address - 6 octets
     70       1.2        is  * this is only used by the ethers(3) functions.
     71       1.2        is  */
     72       1.2        is struct ether_addr {
     73      1.49      matt 	uint8_t ether_addr_octet[ETHER_ADDR_LEN];
     74      1.47     perry } __packed;
     75       1.2        is 
     76       1.2        is /*
     77       1.2        is  * Structure of a 10Mb/s Ethernet header.
     78       1.2        is  */
     79      1.49      matt struct ether_header {
     80      1.49      matt 	uint8_t  ether_dhost[ETHER_ADDR_LEN];
     81      1.49      matt 	uint8_t  ether_shost[ETHER_ADDR_LEN];
     82      1.49      matt 	uint16_t ether_type;
     83      1.47     perry } __packed;
     84       1.2        is 
     85       1.2        is #include <net/ethertypes.h>
     86       1.2        is 
     87       1.2        is #define	ETHER_IS_MULTICAST(addr) (*(addr) & 0x01) /* is address mcast/bcast? */
     88      1.51    dyoung #define	ETHER_IS_LOCAL(addr) (*(addr) & 0x02) /* is address local? */
     89       1.2        is 
     90      1.24   thorpej #define	ETHERMTU_JUMBO	(ETHER_MAX_LEN_JUMBO - ETHER_HDR_LEN - ETHER_CRC_LEN)
     91       1.7   thorpej #define	ETHERMTU	(ETHER_MAX_LEN - ETHER_HDR_LEN - ETHER_CRC_LEN)
     92       1.7   thorpej #define	ETHERMIN	(ETHER_MIN_LEN - ETHER_HDR_LEN - ETHER_CRC_LEN)
     93       1.2        is 
     94      1.14   thorpej /*
     95      1.19   thorpej  * Compute the maximum frame size based on ethertype (i.e. possible
     96      1.19   thorpej  * encapsulation) and whether or not an FCS is present.
     97      1.19   thorpej  */
     98      1.25   thorpej #define	ETHER_MAX_FRAME(ifp, etype, hasfcs)				\
     99      1.25   thorpej 	((ifp)->if_mtu + ETHER_HDR_LEN +				\
    100      1.19   thorpej 	 ((hasfcs) ? ETHER_CRC_LEN : 0) +				\
    101      1.52  christos 	 (((etype) == ETHERTYPE_VLAN) ? ETHER_VLAN_ENCAP_LEN : 0) +	\
    102      1.52  christos 	 (((etype) == ETHERTYPE_PPPOE) ? ETHER_PPPOE_ENCAP_LEN : 0))
    103      1.19   thorpej 
    104      1.19   thorpej /*
    105      1.14   thorpej  * Ethernet CRC32 polynomials (big- and little-endian verions).
    106      1.14   thorpej  */
    107      1.14   thorpej #define	ETHER_CRC_POLY_LE	0xedb88320
    108      1.14   thorpej #define	ETHER_CRC_POLY_BE	0x04c11db6
    109      1.14   thorpej 
    110       1.8  drochner #ifndef _STANDALONE
    111      1.10   thorpej 
    112      1.10   thorpej /*
    113      1.10   thorpej  * Ethernet-specific mbuf flags.
    114      1.10   thorpej  */
    115      1.30    bouyer #define	M_HASFCS	M_LINK0	/* FCS included at end of frame */
    116      1.30    bouyer #define	M_PROMISC	M_LINK1	/* this packet is not for us */
    117       1.8  drochner 
    118       1.2        is #ifdef _KERNEL
    119       1.2        is /*
    120       1.2        is  * Macro to map an IP multicast address to an Ethernet multicast address.
    121       1.2        is  * The high-order 25 bits of the Ethernet address are statically assigned,
    122       1.2        is  * and the low-order 23 bits are taken from the low end of the IP address.
    123       1.2        is  */
    124       1.2        is #define ETHER_MAP_IP_MULTICAST(ipaddr, enaddr)				\
    125      1.44    dyoung 	/* const struct in_addr *ipaddr; */				\
    126      1.49      matt 	/* uint8_t enaddr[ETHER_ADDR_LEN]; */				\
    127      1.44    dyoung do {									\
    128       1.2        is 	(enaddr)[0] = 0x01;						\
    129       1.2        is 	(enaddr)[1] = 0x00;						\
    130       1.2        is 	(enaddr)[2] = 0x5e;						\
    131      1.49      matt 	(enaddr)[3] = ((const uint8_t *)ipaddr)[1] & 0x7f;		\
    132      1.49      matt 	(enaddr)[4] = ((const uint8_t *)ipaddr)[2];			\
    133      1.49      matt 	(enaddr)[5] = ((const uint8_t *)ipaddr)[3];			\
    134      1.44    dyoung } while (/*CONSTCOND*/0)
    135       1.9    itojun /*
    136       1.9    itojun  * Macro to map an IP6 multicast address to an Ethernet multicast address.
    137       1.9    itojun  * The high-order 16 bits of the Ethernet address are statically assigned,
    138       1.9    itojun  * and the low-order 32 bits are taken from the low end of the IP6 address.
    139       1.9    itojun  */
    140       1.9    itojun #define ETHER_MAP_IPV6_MULTICAST(ip6addr, enaddr)			\
    141       1.9    itojun 	/* struct in6_addr *ip6addr; */					\
    142      1.49      matt 	/* uint8_t enaddr[ETHER_ADDR_LEN]; */				\
    143       1.9    itojun {                                                                       \
    144       1.9    itojun 	(enaddr)[0] = 0x33;						\
    145       1.9    itojun 	(enaddr)[1] = 0x33;						\
    146      1.44    dyoung 	(enaddr)[2] = ((const uint8_t *)ip6addr)[12];			\
    147      1.44    dyoung 	(enaddr)[3] = ((const uint8_t *)ip6addr)[13];			\
    148      1.44    dyoung 	(enaddr)[4] = ((const uint8_t *)ip6addr)[14];			\
    149      1.44    dyoung 	(enaddr)[5] = ((const uint8_t *)ip6addr)[15];			\
    150       1.2        is }
    151       1.2        is #endif
    152       1.2        is 
    153      1.48    dyoung struct mii_data;
    154      1.48    dyoung 
    155      1.54    dyoung struct ethercom;
    156      1.54    dyoung 
    157      1.54    dyoung typedef int (*ether_cb_t)(struct ethercom *);
    158      1.54    dyoung 
    159       1.2        is /*
    160       1.2        is  * Structure shared between the ethernet driver modules and
    161       1.2        is  * the multicast list code.  For example, each ec_softc or il_softc
    162       1.2        is  * begins with this structure.
    163       1.2        is  */
    164      1.50       rtr struct ethercom {
    165      1.29      matt 	struct	ifnet ec_if;			/* network-visible interface */
    166      1.19   thorpej 	LIST_HEAD(, ether_multi) ec_multiaddrs;	/* list of ether multicast
    167      1.19   thorpej 						   addrs */
    168      1.29      matt 	int	ec_multicnt;			/* length of ec_multiaddrs
    169      1.19   thorpej 						   list */
    170      1.29      matt 	int	ec_capabilities;		/* capabilities, provided by
    171      1.19   thorpej 						   driver */
    172      1.29      matt 	int	ec_capenable;			/* tells hardware which
    173      1.19   thorpej 						   capabilities to enable */
    174      1.19   thorpej 
    175      1.29      matt 	int	ec_nvlans;			/* # VLANs on this interface */
    176      1.48    dyoung 	/* The device handle for the MII bus child device. */
    177      1.48    dyoung 	struct mii_data				*ec_mii;
    178      1.54    dyoung 	/* Called after a change to ec_if.if_flags.  Returns
    179      1.54    dyoung 	 * ENETRESET if the device should be reinitialized with
    180      1.54    dyoung 	 * ec_if.if_init, 0 on success, not 0 on failure.
    181      1.54    dyoung 	 */
    182      1.54    dyoung 	ether_cb_t				ec_ifflags_cb;
    183      1.66     ozaki 	kmutex_t				*ec_lock;
    184      1.29      matt #ifdef MBUFTRACE
    185      1.29      matt 	struct	mowner ec_rx_mowner;		/* mbufs received */
    186      1.29      matt 	struct	mowner ec_tx_mowner;		/* mbufs transmitted */
    187      1.29      matt #endif
    188       1.2        is };
    189      1.19   thorpej 
    190      1.19   thorpej #define	ETHERCAP_VLAN_MTU	0x00000001	/* VLAN-compatible MTU */
    191      1.21    bouyer #define	ETHERCAP_VLAN_HWTAGGING	0x00000002	/* hardware VLAN tag support */
    192      1.24   thorpej #define	ETHERCAP_JUMBO_MTU	0x00000004	/* 9000 byte MTU supported */
    193      1.62     pooka #define	ETHERCAP_MASK		0x00000007
    194       1.2        is 
    195      1.61   msaitoh #define	ECCAPBITS		\
    196      1.61   msaitoh 	"\020"			\
    197      1.61   msaitoh 	"\1VLAN_MTU"		\
    198      1.61   msaitoh 	"\2VLAN_HWTAGGING"	\
    199      1.61   msaitoh 	"\3JUMBO_MTU"
    200      1.61   msaitoh 
    201      1.61   msaitoh /* ioctl() for Ethernet capabilities */
    202      1.61   msaitoh struct eccapreq {
    203      1.61   msaitoh 	char		eccr_name[IFNAMSIZ];	/* if name, e.g. "en0" */
    204      1.61   msaitoh 	int		eccr_capabilities;	/* supported capabiliites */
    205      1.61   msaitoh 	int		eccr_capenable;		/* capabilities enabled */
    206      1.61   msaitoh };
    207      1.61   msaitoh 
    208       1.2        is #ifdef	_KERNEL
    209      1.36      yamt extern const uint8_t etherbroadcastaddr[ETHER_ADDR_LEN];
    210      1.39      yamt extern const uint8_t ethermulticastaddr_slowprotocols[ETHER_ADDR_LEN];
    211      1.36      yamt extern const uint8_t ether_ipmulticast_min[ETHER_ADDR_LEN];
    212      1.36      yamt extern const uint8_t ether_ipmulticast_max[ETHER_ADDR_LEN];
    213       1.2        is 
    214      1.54    dyoung void	ether_set_ifflags_cb(struct ethercom *, ether_cb_t);
    215      1.45  christos int	ether_ioctl(struct ifnet *, u_long, void *);
    216      1.46    dyoung int	ether_addmulti(const struct sockaddr *, struct ethercom *);
    217      1.46    dyoung int	ether_delmulti(const struct sockaddr *, struct ethercom *);
    218      1.49      matt int	ether_multiaddr(const struct sockaddr *, uint8_t[], uint8_t[]);
    219      1.60   msaitoh void    ether_input(struct ifnet *, struct mbuf *);
    220       1.2        is #endif /* _KERNEL */
    221       1.2        is 
    222       1.2        is /*
    223       1.2        is  * Ethernet multicast address structure.  There is one of these for each
    224       1.2        is  * multicast address or range of multicast addresses that we are supposed
    225       1.2        is  * to listen to on a particular interface.  They are kept in a linked list,
    226       1.5        is  * rooted in the interface's ethercom structure.
    227       1.2        is  */
    228       1.2        is struct ether_multi {
    229      1.49      matt 	uint8_t enm_addrlo[ETHER_ADDR_LEN]; /* low  or only address of range */
    230      1.49      matt 	uint8_t enm_addrhi[ETHER_ADDR_LEN]; /* high or only address of range */
    231       1.2        is 	u_int	 enm_refcount;		/* no. claims to this addr/range */
    232       1.2        is 	LIST_ENTRY(ether_multi) enm_list;
    233       1.2        is };
    234       1.2        is 
    235      1.63     joerg struct ether_multi_sysctl {
    236      1.63     joerg 	u_int   enm_refcount;
    237      1.63     joerg 	uint8_t enm_addrlo[ETHER_ADDR_LEN];
    238      1.63     joerg 	uint8_t enm_addrhi[ETHER_ADDR_LEN];
    239      1.63     joerg };
    240      1.63     joerg 
    241       1.2        is /*
    242       1.2        is  * Structure used by macros below to remember position when stepping through
    243       1.2        is  * all of the ether_multi records.
    244       1.2        is  */
    245       1.2        is struct ether_multistep {
    246       1.2        is 	struct ether_multi  *e_enm;
    247       1.2        is };
    248       1.2        is 
    249       1.2        is /*
    250       1.2        is  * Macro for looking up the ether_multi record for a given range of Ethernet
    251       1.2        is  * multicast addresses connected to a given ethercom structure.  If no matching
    252       1.2        is  * record is found, "enm" returns NULL.
    253       1.2        is  */
    254       1.2        is #define ETHER_LOOKUP_MULTI(addrlo, addrhi, ec, enm)			\
    255      1.49      matt 	/* uint8_t addrlo[ETHER_ADDR_LEN]; */				\
    256      1.49      matt 	/* uint8_t addrhi[ETHER_ADDR_LEN]; */				\
    257       1.2        is 	/* struct ethercom *ec; */					\
    258       1.2        is 	/* struct ether_multi *enm; */					\
    259       1.2        is {									\
    260      1.26      matt 	for ((enm) = LIST_FIRST(&(ec)->ec_multiaddrs);			\
    261       1.2        is 	    (enm) != NULL &&						\
    262      1.56    cegger 	    (memcmp((enm)->enm_addrlo, (addrlo), ETHER_ADDR_LEN) != 0 ||	\
    263      1.56    cegger 	     memcmp((enm)->enm_addrhi, (addrhi), ETHER_ADDR_LEN) != 0);	\
    264      1.26      matt 		(enm) = LIST_NEXT((enm), enm_list));			\
    265       1.2        is }
    266       1.2        is 
    267       1.2        is /*
    268       1.2        is  * Macro to step through all of the ether_multi records, one at a time.
    269       1.2        is  * The current position is remembered in "step", which the caller must
    270       1.2        is  * provide.  ETHER_FIRST_MULTI(), below, must be called to initialize "step"
    271       1.2        is  * and get the first record.  Both macros return a NULL "enm" when there
    272       1.2        is  * are no remaining records.
    273       1.2        is  */
    274       1.2        is #define ETHER_NEXT_MULTI(step, enm) \
    275       1.2        is 	/* struct ether_multistep step; */  \
    276       1.2        is 	/* struct ether_multi *enm; */  \
    277       1.2        is { \
    278       1.2        is 	if (((enm) = (step).e_enm) != NULL) \
    279      1.26      matt 		(step).e_enm = LIST_NEXT((enm), enm_list); \
    280       1.2        is }
    281       1.2        is 
    282       1.2        is #define ETHER_FIRST_MULTI(step, ec, enm) \
    283       1.2        is 	/* struct ether_multistep step; */ \
    284       1.2        is 	/* struct ethercom *ec; */ \
    285       1.2        is 	/* struct ether_multi *enm; */ \
    286       1.2        is { \
    287      1.26      matt 	(step).e_enm = LIST_FIRST(&(ec)->ec_multiaddrs); \
    288       1.2        is 	ETHER_NEXT_MULTI((step), (enm)); \
    289       1.2        is }
    290       1.2        is 
    291      1.38  jdolecek #ifdef _KERNEL
    292      1.38  jdolecek 
    293      1.66     ozaki #define ETHER_LOCK(ec)		mutex_enter((ec)->ec_lock)
    294      1.66     ozaki #define ETHER_UNLOCK(ec)	mutex_exit((ec)->ec_lock)
    295      1.66     ozaki 
    296      1.37  jdolecek /*
    297      1.37  jdolecek  * Ethernet 802.1Q VLAN structures.
    298      1.37  jdolecek  */
    299      1.37  jdolecek 
    300      1.37  jdolecek /* add VLAN tag to input/received packet */
    301  1.71.2.1  pgoyette static __inline void
    302      1.70   msaitoh vlan_set_tag(struct mbuf *m, uint16_t vlantag)
    303      1.53       dsl {
    304      1.69   msaitoh 	/* VLAN tag contains priority, CFI and VLAN ID */
    305      1.71      maxv 	KASSERT((m->m_flags & M_PKTHDR) != 0);
    306      1.69   msaitoh 	m->m_pkthdr.ether_vtag = vlantag;
    307      1.67  knakahar 	m->m_flags |= M_VLANTAG;
    308      1.67  knakahar 	return;
    309      1.53       dsl }
    310      1.53       dsl 
    311  1.71.2.1  pgoyette static __inline bool
    312      1.67  knakahar vlan_has_tag(struct mbuf *m)
    313      1.67  knakahar {
    314      1.67  knakahar 	return (m->m_flags & M_VLANTAG) != 0;
    315      1.67  knakahar }
    316      1.37  jdolecek 
    317      1.37  jdolecek /* extract VLAN ID value from a VLAN tag */
    318  1.71.2.1  pgoyette static __inline uint16_t
    319      1.67  knakahar vlan_get_tag(struct mbuf *m)
    320      1.67  knakahar {
    321      1.71      maxv 	KASSERT((m->m_flags & M_PKTHDR) != 0);
    322      1.68  christos 	KASSERT(m->m_flags & M_VLANTAG);
    323      1.67  knakahar 	return m->m_pkthdr.ether_vtag;
    324      1.67  knakahar }
    325      1.37  jdolecek 
    326      1.37  jdolecek /* test if any VLAN is configured for this interface */
    327      1.41  jdolecek #define VLAN_ATTACHED(ec)	((ec)->ec_nvlans > 0)
    328      1.37  jdolecek 
    329      1.64     ozaki void	etherinit(void);
    330      1.49      matt void	ether_ifattach(struct ifnet *, const uint8_t *);
    331      1.22   thorpej void	ether_ifdetach(struct ifnet *);
    332      1.48    dyoung int	ether_mediachange(struct ifnet *);
    333      1.48    dyoung void	ether_mediastatus(struct ifnet *, struct ifmediareq *);
    334      1.22   thorpej 
    335      1.49      matt char	*ether_sprintf(const uint8_t *);
    336      1.49      matt char	*ether_snprintf(char *, size_t, const uint8_t *);
    337      1.22   thorpej 
    338      1.49      matt uint32_t ether_crc32_le(const uint8_t *, size_t);
    339      1.49      matt uint32_t ether_crc32_be(const uint8_t *, size_t);
    340      1.23   thorpej 
    341      1.58  christos int	ether_aton_r(u_char *, size_t, const char *);
    342      1.65  christos int	ether_enable_vlan_mtu(struct ifnet *);
    343      1.65  christos int	ether_disable_vlan_mtu(struct ifnet *);
    344      1.14   thorpej #else
    345       1.2        is /*
    346       1.2        is  * Prototype ethers(3) functions.
    347       1.2        is  */
    348       1.2        is #include <sys/cdefs.h>
    349       1.2        is __BEGIN_DECLS
    350      1.55       dsl char *	ether_ntoa(const struct ether_addr *);
    351       1.2        is struct ether_addr *
    352      1.55       dsl 	ether_aton(const char *);
    353      1.55       dsl int	ether_ntohost(char *, const struct ether_addr *);
    354      1.55       dsl int	ether_hostton(const char *, struct ether_addr *);
    355      1.55       dsl int	ether_line(const char *, struct ether_addr *, char *);
    356       1.2        is __END_DECLS
    357       1.2        is #endif
    358       1.8  drochner 
    359       1.8  drochner #endif /* _STANDALONE */
    360       1.4     perry 
    361      1.40      elad #endif /* !_NET_IF_ETHER_H_ */
    362