#ifndef _NET_LAGG_H
#define _NET_LAGG_H
#define LAGG_MAX_PORTS 32
#define LAGG_MAX_NAMESIZE 32
#define LAGG_MAX_STACKING 4
#define LAGG_F_HASHL2 0x00000001
#define LAGG_F_HASHL3 0x00000002
#define LAGG_F_HASHL4 0x00000004
#define LAGG_F_HASHMASK 0x00000007
#define LAGG_PORT_SLAVE 0x00000000
#define LAGG_PORT_MASTER 0x00000001
#define LAGG_PORT_STACK 0x00000002
#define LAGG_PORT_ACTIVE 0x00000004
#define LAGG_PORT_COLLECTING 0x00000008
#define LAGG_PORT_DISTRIBUTING 0x00000010
#define LAGG_PORT_BITS "\20\01MASTER\02STACK\03ACTIVE\04COLLECTING" \
"\05DISTRIBUTING"
typedef enum {
LAGG_PROTO_NONE = 0,
LAGG_PROTO_ROUNDROBIN,
LAGG_PROTO_FAILOVER,
LAGG_PROTO_LOADBALANCE,
LAGG_PROTO_LACP,
LAGG_PROTO_BROADCAST,
LAGG_PROTO_MAX,
} lagg_proto;
struct lagg_protos {
const char *lpr_name;
lagg_proto lpr_proto;
};
#define LAGG_PROTO_DEFAULT LAGG_PROTO_FAILOVER
#define LAGG_PROTOS { \
{ "failover", LAGG_PROTO_FAILOVER }, \
{ "lacp", LAGG_PROTO_LACP }, \
{ "loadbalance", LAGG_PROTO_LOADBALANCE }, \
{ "roundrobin", LAGG_PROTO_ROUNDROBIN }, \
{ "broadcast", LAGG_PROTO_BROADCAST }, \
{ "none", LAGG_PROTO_NONE }, \
{ "default", LAGG_PROTO_DEFAULT } \
}
typedef enum {
LAGG_TYPE_ETHERNET = 0,
LAGG_TYPE_INFINIBAND,
LAGG_TYPE_MAX,
} lagg_type;
struct lagg_types {
const char *lt_name;
lagg_type lt_value;
};
#define LAGG_TYPE_DEFAULT LAGG_TYPE_ETHERNET
#define LAGG_TYPES { \
{ "ethernet", LAGG_TYPE_ETHERNET }, \
{ "infiniband", LAGG_TYPE_INFINIBAND }, \
}
struct iflaggparam {
uint8_t lagg_type;
uint8_t reserved_8[3];
uint32_t reserved_32[3];
};
struct lacp_opreq {
uint16_t actor_prio;
uint8_t actor_mac[ETHER_ADDR_LEN];
uint16_t actor_key;
uint16_t actor_portprio;
uint16_t actor_portno;
uint8_t actor_state;
uint16_t partner_prio;
uint8_t partner_mac[ETHER_ADDR_LEN];
uint16_t partner_key;
uint16_t partner_portprio;
uint16_t partner_portno;
uint8_t partner_state;
};
struct lagg_reqport {
char rp_ifname[IFNAMSIZ];
char rp_portname[IFNAMSIZ];
u_int32_t rp_prio;
u_int32_t rp_flags;
union {
struct lacp_opreq rpsc_lacp;
} rp_psc;
#define rp_lacpreq rp_psc.rpsc_lacp
};
#define SIOCGLAGGPORT _IOWR('i', 140, struct lagg_reqport)
#define SIOCSLAGGPORT _IOW('i', 141, struct lagg_reqport)
#define SIOCSLAGGDELPORT _IOW('i', 142, struct lagg_reqport)
struct lagg_reqall {
char ra_ifname[IFNAMSIZ];
u_int ra_proto;
size_t ra_size;
struct lagg_reqport *ra_port;
int ra_ports;
union {
struct lacp_opreq rpsc_lacp;
} ra_psc;
#define ra_lacpreq ra_psc.rpsc_lacp
};
#define SIOCGLAGG _IOWR('i', 143, struct lagg_reqall)
#define SIOCSLAGG _IOW('i', 144, struct lagg_reqall)
struct lagg_reqflags {
char rf_ifname[IFNAMSIZ];
uint32_t rf_flags;
};
#define SIOCGLAGGFLAGS _IOWR('i', 145, struct lagg_reqflags)
#define SIOCSLAGGHASH _IOW('i', 146, struct lagg_reqflags)
struct lagg_reqopts {
char ro_ifname[IFNAMSIZ];
int ro_opts;
#define LAGG_OPT_NONE 0x00
#define LAGG_OPT_USE_FLOWID 0x01
#define LAGG_OPT_FLOWIDSHIFT 0x02
#define LAGG_OPT_USE_NUMA 0x04
#define LAGG_OPT_FLOWIDSHIFT_MASK 0x1f
#define LAGG_OPT_LACP_STRICT 0x10
#define LAGG_OPT_LACP_TXTEST 0x20
#define LAGG_OPT_LACP_RXTEST 0x40
#define LAGG_OPT_LACP_FAST_TIMO 0x80
#define LAGG_OPT_RR_LIMIT 0x100
u_int ro_count;
u_int ro_active;
u_int ro_flapping;
int ro_flowid_shift;
uint32_t ro_bkt;
};
#define SIOCGLAGGOPTS _IOWR('i', 152, struct lagg_reqopts)
#define SIOCSLAGGOPTS _IOW('i', 153, struct lagg_reqopts)
#define LAGG_OPT_BITS "\020\001USE_FLOWID\003USE_NUMA" \
"\005LACP_STRICT\006LACP_TXTEST" \
"\007LACP_RXTEST\010LACP_FAST_TIMO"
#ifdef _KERNEL
#define LAGG_PORTACTIVE(_tp) ( \
((_tp)->lp_ifp->if_link_state == LINK_STATE_UP) && \
((_tp)->lp_ifp->if_flags & IFF_UP) \
)
struct lagg_ifreq {
union {
struct ifreq ifreq;
struct {
char ifr_name[IFNAMSIZ];
struct sockaddr_storage ifr_ss;
} ifreq_storage;
} ifreq;
};
#define sc_ifflags sc_ifp->if_flags
#define sc_ifname sc_ifp->if_xname
struct lagg_lb {
u_int32_t lb_key;
struct lagg_port *lb_ports[LAGG_MAX_PORTS];
};
struct lagg_mc {
struct sockaddr_dl mc_addr;
struct ifmultiaddr *mc_ifma;
SLIST_ENTRY(lagg_mc) mc_entries;
};
struct lagg_counters {
uint64_t val[IFCOUNTERS];
};
struct lagg_softc {
struct ifnet *sc_ifp;
struct mtx sc_mtx;
struct sx sc_sx;
int sc_proto;
u_int sc_count;
u_int sc_active;
u_int sc_flapping;
struct lagg_port *sc_primary;
struct ifmedia sc_media;
void *sc_psc;
uint32_t sc_seq;
uint32_t sc_stride;
uint32_t sc_flags;
int sc_destroying;
CK_SLIST_HEAD(__tplhd, lagg_port) sc_ports;
SLIST_ENTRY(lagg_softc) sc_entries;
eventhandler_tag vlan_attach;
eventhandler_tag vlan_detach;
struct callout sc_callout;
u_int sc_opts;
int flowid_shift;
struct lagg_counters detached_counters;
struct callout sc_watchdog;
#define LAGG_ADDR_LEN \
MAX(INFINIBAND_ADDR_LEN, ETHER_ADDR_LEN)
uint8_t sc_bcast_addr[LAGG_ADDR_LEN];
};
struct lagg_port {
struct ifnet *lp_ifp;
struct lagg_softc *lp_softc;
uint8_t lp_lladdr[LAGG_ADDR_LEN];
u_char lp_iftype;
uint32_t lp_prio;
uint32_t lp_flags;
int lp_ifflags;
int lp_ifcapenable;
int lp_ifcapenable2;
void *lh_cookie;
void *lp_psc;
int lp_detaching;
SLIST_HEAD(__mclhd, lagg_mc) lp_mc_head;
int (*lp_ioctl)(struct ifnet *, u_long, caddr_t);
int (*lp_output)(struct ifnet *, struct mbuf *,
const struct sockaddr *, struct route *);
struct lagg_counters port_counters;
CK_SLIST_ENTRY(lagg_port) lp_entries;
struct epoch_context lp_epoch_ctx;
};
extern struct mbuf *(*lagg_input_ethernet_p)(struct ifnet *, struct mbuf *);
extern struct mbuf *(*lagg_input_infiniband_p)(struct ifnet *, struct mbuf *);
extern void (*lagg_linkstate_p)(struct ifnet *, int );
int lagg_enqueue(struct ifnet *, struct mbuf *);
SYSCTL_DECL(_net_link_lagg);
#endif
#endif