110b59a9bSPeter Grehan /*- 2718cf2ccSPedro F. Giffuni * SPDX-License-Identifier: BSD-2-Clause-FreeBSD 3718cf2ccSPedro F. Giffuni * 4abd6790cSBryan Venteicher * Copyright (c) 2011, Bryan Venteicher <bryanv@FreeBSD.org> 510b59a9bSPeter Grehan * All rights reserved. 610b59a9bSPeter Grehan * 710b59a9bSPeter Grehan * Redistribution and use in source and binary forms, with or without 810b59a9bSPeter Grehan * modification, are permitted provided that the following conditions 910b59a9bSPeter Grehan * are met: 1010b59a9bSPeter Grehan * 1. Redistributions of source code must retain the above copyright 1110b59a9bSPeter Grehan * notice unmodified, this list of conditions, and the following 1210b59a9bSPeter Grehan * disclaimer. 1310b59a9bSPeter Grehan * 2. Redistributions in binary form must reproduce the above copyright 1410b59a9bSPeter Grehan * notice, this list of conditions and the following disclaimer in the 1510b59a9bSPeter Grehan * documentation and/or other materials provided with the distribution. 1610b59a9bSPeter Grehan * 1710b59a9bSPeter Grehan * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 1810b59a9bSPeter Grehan * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 1910b59a9bSPeter Grehan * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 2010b59a9bSPeter Grehan * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 2110b59a9bSPeter Grehan * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 2210b59a9bSPeter Grehan * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 2310b59a9bSPeter Grehan * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 2410b59a9bSPeter Grehan * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 2510b59a9bSPeter Grehan * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 2610b59a9bSPeter Grehan * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 2710b59a9bSPeter Grehan * 2810b59a9bSPeter Grehan * $FreeBSD$ 2910b59a9bSPeter Grehan */ 3010b59a9bSPeter Grehan 3110b59a9bSPeter Grehan #ifndef _IF_VTNETVAR_H 3210b59a9bSPeter Grehan #define _IF_VTNETVAR_H 3310b59a9bSPeter Grehan 348f3600b1SBryan Venteicher struct vtnet_softc; 358f3600b1SBryan Venteicher 3610b59a9bSPeter Grehan struct vtnet_statistics { 378f3600b1SBryan Venteicher uint64_t mbuf_alloc_failed; 3810b59a9bSPeter Grehan 398f3600b1SBryan Venteicher uint64_t rx_frame_too_large; 408f3600b1SBryan Venteicher uint64_t rx_enq_replacement_failed; 418f3600b1SBryan Venteicher uint64_t rx_mergeable_failed; 428f3600b1SBryan Venteicher uint64_t rx_csum_bad_ethtype; 438f3600b1SBryan Venteicher uint64_t rx_csum_bad_ipproto; 448f3600b1SBryan Venteicher uint64_t rx_csum_bad_offset; 458f3600b1SBryan Venteicher uint64_t rx_csum_bad_proto; 468f3600b1SBryan Venteicher uint64_t tx_csum_bad_ethtype; 478f3600b1SBryan Venteicher uint64_t tx_tso_bad_ethtype; 488f3600b1SBryan Venteicher uint64_t tx_tso_not_tcp; 4954fb8142SBryan Venteicher uint64_t tx_defragged; 5054fb8142SBryan Venteicher uint64_t tx_defrag_failed; 5110b59a9bSPeter Grehan 528f3600b1SBryan Venteicher /* 538f3600b1SBryan Venteicher * These are accumulated from each Rx/Tx queue. 548f3600b1SBryan Venteicher */ 558f3600b1SBryan Venteicher uint64_t rx_csum_failed; 568f3600b1SBryan Venteicher uint64_t rx_csum_offloaded; 578f3600b1SBryan Venteicher uint64_t rx_task_rescheduled; 588f3600b1SBryan Venteicher uint64_t tx_csum_offloaded; 598f3600b1SBryan Venteicher uint64_t tx_tso_offloaded; 608f3600b1SBryan Venteicher uint64_t tx_task_rescheduled; 6110b59a9bSPeter Grehan }; 6210b59a9bSPeter Grehan 638f3600b1SBryan Venteicher struct vtnet_rxq_stats { 648f3600b1SBryan Venteicher uint64_t vrxs_ipackets; /* if_ipackets */ 658f3600b1SBryan Venteicher uint64_t vrxs_ibytes; /* if_ibytes */ 668f3600b1SBryan Venteicher uint64_t vrxs_iqdrops; /* if_iqdrops */ 678f3600b1SBryan Venteicher uint64_t vrxs_ierrors; /* if_ierrors */ 688f3600b1SBryan Venteicher uint64_t vrxs_csum; 698f3600b1SBryan Venteicher uint64_t vrxs_csum_failed; 708f3600b1SBryan Venteicher uint64_t vrxs_rescheduled; 718f3600b1SBryan Venteicher }; 728f3600b1SBryan Venteicher 738f3600b1SBryan Venteicher struct vtnet_rxq { 748f3600b1SBryan Venteicher struct mtx vtnrx_mtx; 758f3600b1SBryan Venteicher struct vtnet_softc *vtnrx_sc; 768f3600b1SBryan Venteicher struct virtqueue *vtnrx_vq; 77443c3d0bSBryan Venteicher struct sglist *vtnrx_sg; 788f3600b1SBryan Venteicher int vtnrx_id; 798f3600b1SBryan Venteicher struct vtnet_rxq_stats vtnrx_stats; 808f3600b1SBryan Venteicher struct taskqueue *vtnrx_tq; 818f3600b1SBryan Venteicher struct task vtnrx_intrtask; 822e42b74aSVincenzo Maffione #ifdef DEV_NETMAP 832d769e25SVincenzo Maffione uint32_t vtnrx_nm_refill; 842e42b74aSVincenzo Maffione struct virtio_net_hdr_mrg_rxbuf vtnrx_shrhdr; 852e42b74aSVincenzo Maffione #endif /* DEV_NETMAP */ 868f3600b1SBryan Venteicher char vtnrx_name[16]; 878f3600b1SBryan Venteicher } __aligned(CACHE_LINE_SIZE); 888f3600b1SBryan Venteicher 898f3600b1SBryan Venteicher #define VTNET_RXQ_LOCK(_rxq) mtx_lock(&(_rxq)->vtnrx_mtx) 908f3600b1SBryan Venteicher #define VTNET_RXQ_UNLOCK(_rxq) mtx_unlock(&(_rxq)->vtnrx_mtx) 918f3600b1SBryan Venteicher #define VTNET_RXQ_LOCK_ASSERT(_rxq) \ 928f3600b1SBryan Venteicher mtx_assert(&(_rxq)->vtnrx_mtx, MA_OWNED) 938f3600b1SBryan Venteicher #define VTNET_RXQ_LOCK_ASSERT_NOTOWNED(_rxq) \ 948f3600b1SBryan Venteicher mtx_assert(&(_rxq)->vtnrx_mtx, MA_NOTOWNED) 958f3600b1SBryan Venteicher 968f3600b1SBryan Venteicher struct vtnet_txq_stats { 978f3600b1SBryan Venteicher uint64_t vtxs_opackets; /* if_opackets */ 988f3600b1SBryan Venteicher uint64_t vtxs_obytes; /* if_obytes */ 998f3600b1SBryan Venteicher uint64_t vtxs_omcasts; /* if_omcasts */ 1008f3600b1SBryan Venteicher uint64_t vtxs_csum; 1018f3600b1SBryan Venteicher uint64_t vtxs_tso; 1028f3600b1SBryan Venteicher uint64_t vtxs_rescheduled; 1038f3600b1SBryan Venteicher }; 1048f3600b1SBryan Venteicher 1058f3600b1SBryan Venteicher struct vtnet_txq { 1068f3600b1SBryan Venteicher struct mtx vtntx_mtx; 1078f3600b1SBryan Venteicher struct vtnet_softc *vtntx_sc; 1088f3600b1SBryan Venteicher struct virtqueue *vtntx_vq; 109443c3d0bSBryan Venteicher struct sglist *vtntx_sg; 1108f3600b1SBryan Venteicher #ifndef VTNET_LEGACY_TX 1118f3600b1SBryan Venteicher struct buf_ring *vtntx_br; 1128f3600b1SBryan Venteicher #endif 1138f3600b1SBryan Venteicher int vtntx_id; 1148f3600b1SBryan Venteicher int vtntx_watchdog; 115baa5234fSBryan Venteicher int vtntx_intr_threshold; 1168f3600b1SBryan Venteicher struct vtnet_txq_stats vtntx_stats; 1178f3600b1SBryan Venteicher struct taskqueue *vtntx_tq; 1188f3600b1SBryan Venteicher struct task vtntx_intrtask; 1198f3600b1SBryan Venteicher #ifndef VTNET_LEGACY_TX 1208f3600b1SBryan Venteicher struct task vtntx_defrtask; 1218f3600b1SBryan Venteicher #endif 1222e42b74aSVincenzo Maffione #ifdef DEV_NETMAP 1232e42b74aSVincenzo Maffione struct virtio_net_hdr_mrg_rxbuf vtntx_shrhdr; 1242e42b74aSVincenzo Maffione #endif /* DEV_NETMAP */ 1258f3600b1SBryan Venteicher char vtntx_name[16]; 1268f3600b1SBryan Venteicher } __aligned(CACHE_LINE_SIZE); 1278f3600b1SBryan Venteicher 1288f3600b1SBryan Venteicher #define VTNET_TXQ_LOCK(_txq) mtx_lock(&(_txq)->vtntx_mtx) 1298f3600b1SBryan Venteicher #define VTNET_TXQ_TRYLOCK(_txq) mtx_trylock(&(_txq)->vtntx_mtx) 1308f3600b1SBryan Venteicher #define VTNET_TXQ_UNLOCK(_txq) mtx_unlock(&(_txq)->vtntx_mtx) 1318f3600b1SBryan Venteicher #define VTNET_TXQ_LOCK_ASSERT(_txq) \ 1328f3600b1SBryan Venteicher mtx_assert(&(_txq)->vtntx_mtx, MA_OWNED) 1338f3600b1SBryan Venteicher #define VTNET_TXQ_LOCK_ASSERT_NOTOWNED(_txq) \ 1348f3600b1SBryan Venteicher mtx_assert(&(_txq)->vtntx_mtx, MA_NOTOWNED) 1358f3600b1SBryan Venteicher 13610b59a9bSPeter Grehan struct vtnet_softc { 13710b59a9bSPeter Grehan device_t vtnet_dev; 13810b59a9bSPeter Grehan struct ifnet *vtnet_ifp; 1398f3600b1SBryan Venteicher struct vtnet_rxq *vtnet_rxqs; 1408f3600b1SBryan Venteicher struct vtnet_txq *vtnet_txqs; 141ed6cbf48SGleb Smirnoff pfil_head_t vtnet_pfil; 14210b59a9bSPeter Grehan 14310b59a9bSPeter Grehan uint32_t vtnet_flags; 1445e220811SBryan Venteicher #define VTNET_FLAG_MODERN 0x0001 1458f3600b1SBryan Venteicher #define VTNET_FLAG_MAC 0x0002 14610b59a9bSPeter Grehan #define VTNET_FLAG_CTRL_VQ 0x0004 14710b59a9bSPeter Grehan #define VTNET_FLAG_CTRL_RX 0x0008 1488f3600b1SBryan Venteicher #define VTNET_FLAG_CTRL_MAC 0x0010 1498f3600b1SBryan Venteicher #define VTNET_FLAG_VLAN_FILTER 0x0020 1508f3600b1SBryan Venteicher #define VTNET_FLAG_TSO_ECN 0x0040 1518f3600b1SBryan Venteicher #define VTNET_FLAG_MRG_RXBUFS 0x0080 1528f3600b1SBryan Venteicher #define VTNET_FLAG_LRO_NOMRG 0x0100 1535e220811SBryan Venteicher #define VTNET_FLAG_MQ 0x0200 154ab4c2818SBryan Venteicher #define VTNET_FLAG_INDIRECT 0x0400 155ab4c2818SBryan Venteicher #define VTNET_FLAG_EVENT_IDX 0x0800 1565e220811SBryan Venteicher #define VTNET_FLAG_SUSPENDED 0x1000 157fa7ca1e3SBryan Venteicher #define VTNET_FLAG_FIXUP_NEEDS_CSUM 0x2000 15810b59a9bSPeter Grehan 1598f3600b1SBryan Venteicher int vtnet_link_active; 16010b59a9bSPeter Grehan int vtnet_hdr_size; 16110b59a9bSPeter Grehan int vtnet_rx_process_limit; 162443c3d0bSBryan Venteicher int vtnet_rx_nsegs; 1638f3600b1SBryan Venteicher int vtnet_rx_nmbufs; 1645e220811SBryan Venteicher int vtnet_rx_clustersz; 165443c3d0bSBryan Venteicher int vtnet_tx_nsegs; 16610b59a9bSPeter Grehan int vtnet_if_flags; 167aabdf5b6SBryan Venteicher int vtnet_max_mtu; 1688f3600b1SBryan Venteicher int vtnet_act_vq_pairs; 1698f3600b1SBryan Venteicher int vtnet_max_vq_pairs; 1704be723f6SSteven Hartland int vtnet_requested_vq_pairs; 1718f3600b1SBryan Venteicher 1728f3600b1SBryan Venteicher struct virtqueue *vtnet_ctrl_vq; 1738f3600b1SBryan Venteicher struct vtnet_mac_filter *vtnet_mac_filter; 1748f3600b1SBryan Venteicher uint32_t *vtnet_vlan_filter; 1758f3600b1SBryan Venteicher 17610b59a9bSPeter Grehan uint64_t vtnet_features; 177*44559b26SBryan Venteicher uint64_t vtnet_negotiated_features; 17810b59a9bSPeter Grehan struct vtnet_statistics vtnet_stats; 17910b59a9bSPeter Grehan struct callout vtnet_tick_ch; 1808f3600b1SBryan Venteicher struct ifmedia vtnet_media; 18110b59a9bSPeter Grehan eventhandler_tag vtnet_vlan_attach; 18210b59a9bSPeter Grehan eventhandler_tag vtnet_vlan_detach; 18310b59a9bSPeter Grehan 1848f3600b1SBryan Venteicher struct mtx vtnet_mtx; 18510b59a9bSPeter Grehan char vtnet_mtx_name[16]; 1868f3600b1SBryan Venteicher char vtnet_hwaddr[ETHER_ADDR_LEN]; 18710b59a9bSPeter Grehan }; 18810b59a9bSPeter Grehan 1895e220811SBryan Venteicher static bool 1905e220811SBryan Venteicher vtnet_modern(struct vtnet_softc *sc) 1915e220811SBryan Venteicher { 1925e220811SBryan Venteicher return ((sc->vtnet_flags & VTNET_FLAG_MODERN) != 0); 1935e220811SBryan Venteicher } 1945e220811SBryan Venteicher 19510b59a9bSPeter Grehan /* 1968f3600b1SBryan Venteicher * Maximum number of queue pairs we will autoconfigure to. 1978f3600b1SBryan Venteicher */ 198fa7ca1e3SBryan Venteicher #define VTNET_MAX_QUEUE_PAIRS 32 1998f3600b1SBryan Venteicher 2008f3600b1SBryan Venteicher /* 2018f3600b1SBryan Venteicher * Additional completed entries can appear in a virtqueue before we can 2028f3600b1SBryan Venteicher * reenable interrupts. Number of times to retry before scheduling the 2038f3600b1SBryan Venteicher * taskqueue to process the completed entries. 2048f3600b1SBryan Venteicher */ 2058f3600b1SBryan Venteicher #define VTNET_INTR_DISABLE_RETRIES 4 2068f3600b1SBryan Venteicher 2078f3600b1SBryan Venteicher /* 20832487a89SBryan Venteicher * Similarly, additional completed entries can appear in a virtqueue 20932487a89SBryan Venteicher * between when lasted checked and before notifying the host. Number 21032487a89SBryan Venteicher * of times to retry before scheduling the taskqueue to process the 21132487a89SBryan Venteicher * queue. 21232487a89SBryan Venteicher */ 21332487a89SBryan Venteicher #define VTNET_NOTIFY_RETRIES 4 21432487a89SBryan Venteicher 21532487a89SBryan Venteicher /* 2168f3600b1SBryan Venteicher * Number of words to allocate for the VLAN shadow table. There is one 2178f3600b1SBryan Venteicher * bit for each VLAN. 2188f3600b1SBryan Venteicher */ 2198f3600b1SBryan Venteicher #define VTNET_VLAN_FILTER_NWORDS (4096 / 32) 2208f3600b1SBryan Venteicher 2215e220811SBryan Venteicher /* We depend on these being the same size (and same layout). */ 2225e220811SBryan Venteicher CTASSERT(sizeof(struct virtio_net_hdr_mrg_rxbuf) == 2235e220811SBryan Venteicher sizeof(struct virtio_net_hdr_v1)); 2245e220811SBryan Venteicher 2258f3600b1SBryan Venteicher /* 2265e220811SBryan Venteicher * In legacy VirtIO when mergeable buffers are not negotiated, this structure 2275e220811SBryan Venteicher * is placed at the beginning of the mbuf data. Use 4 bytes of pad to keep 2285e220811SBryan Venteicher * both the VirtIO header and the data non-contiguous and the frame's payload 2295e220811SBryan Venteicher * 4 byte aligned. Note this padding would not be necessary if the 2305e220811SBryan Venteicher * VIRTIO_F_ANY_LAYOUT feature was negotiated (but we don't support that yet). 23110b59a9bSPeter Grehan * 2325e220811SBryan Venteicher * In modern VirtIO or when mergeable buffers are negotiated, the host puts 2335e220811SBryan Venteicher * the VirtIO header in the beginning of the first mbuf's data. 23410b59a9bSPeter Grehan */ 23510b59a9bSPeter Grehan #define VTNET_RX_HEADER_PAD 4 23610b59a9bSPeter Grehan struct vtnet_rx_header { 2371cd1ed3fSBryan Venteicher struct virtio_net_hdr vrh_hdr; 23810b59a9bSPeter Grehan char vrh_pad[VTNET_RX_HEADER_PAD]; 23910b59a9bSPeter Grehan } __packed; 24010b59a9bSPeter Grehan 24110b59a9bSPeter Grehan /* 24210b59a9bSPeter Grehan * For each outgoing frame, the vtnet_tx_header below is allocated from 24310b59a9bSPeter Grehan * the vtnet_tx_header_zone. 24410b59a9bSPeter Grehan */ 24510b59a9bSPeter Grehan struct vtnet_tx_header { 24610b59a9bSPeter Grehan union { 24710b59a9bSPeter Grehan struct virtio_net_hdr hdr; 24810b59a9bSPeter Grehan struct virtio_net_hdr_mrg_rxbuf mhdr; 2495e220811SBryan Venteicher struct virtio_net_hdr_v1 v1hdr; 25010b59a9bSPeter Grehan } vth_uhdr; 25110b59a9bSPeter Grehan 25210b59a9bSPeter Grehan struct mbuf *vth_mbuf; 25310b59a9bSPeter Grehan }; 25410b59a9bSPeter Grehan 25510b59a9bSPeter Grehan /* 25610b59a9bSPeter Grehan * The VirtIO specification does not place a limit on the number of MAC 25710b59a9bSPeter Grehan * addresses the guest driver may request to be filtered. In practice, 25810b59a9bSPeter Grehan * the host is constrained by available resources. To simplify this driver, 25910b59a9bSPeter Grehan * impose a reasonably high limit of MAC addresses we will filter before 26010b59a9bSPeter Grehan * falling back to promiscuous or all-multicast modes. 26110b59a9bSPeter Grehan */ 26210b59a9bSPeter Grehan #define VTNET_MAX_MAC_ENTRIES 128 26310b59a9bSPeter Grehan 2645e220811SBryan Venteicher /* 2655e220811SBryan Venteicher * The driver version of struct virtio_net_ctrl_mac but with our predefined 2665e220811SBryan Venteicher * number of MAC addresses allocated. This structure is shared with the host, 2675e220811SBryan Venteicher * so nentries field is in the correct VirtIO endianness. 2685e220811SBryan Venteicher */ 26910b59a9bSPeter Grehan struct vtnet_mac_table { 27010b59a9bSPeter Grehan uint32_t nentries; 27110b59a9bSPeter Grehan uint8_t macs[VTNET_MAX_MAC_ENTRIES][ETHER_ADDR_LEN]; 27210b59a9bSPeter Grehan } __packed; 27310b59a9bSPeter Grehan 27410b59a9bSPeter Grehan struct vtnet_mac_filter { 27510b59a9bSPeter Grehan struct vtnet_mac_table vmf_unicast; 27610b59a9bSPeter Grehan uint32_t vmf_pad; /* Make tables non-contiguous. */ 27710b59a9bSPeter Grehan struct vtnet_mac_table vmf_multicast; 27810b59a9bSPeter Grehan }; 27910b59a9bSPeter Grehan 28010b59a9bSPeter Grehan /* 28110b59a9bSPeter Grehan * The MAC filter table is malloc(9)'d when needed. Ensure it will 28210b59a9bSPeter Grehan * always fit in one segment. 28310b59a9bSPeter Grehan */ 28410b59a9bSPeter Grehan CTASSERT(sizeof(struct vtnet_mac_filter) <= PAGE_SIZE); 28510b59a9bSPeter Grehan 2868f3600b1SBryan Venteicher #define VTNET_TX_TIMEOUT 5 287132ea9f2SMichael Tuexen #define VTNET_CSUM_OFFLOAD (CSUM_TCP | CSUM_UDP) 288132ea9f2SMichael Tuexen #define VTNET_CSUM_OFFLOAD_IPV6 (CSUM_TCP_IPV6 | CSUM_UDP_IPV6) 2898f3600b1SBryan Venteicher 2908f3600b1SBryan Venteicher #define VTNET_CSUM_ALL_OFFLOAD \ 2918f3600b1SBryan Venteicher (VTNET_CSUM_OFFLOAD | VTNET_CSUM_OFFLOAD_IPV6 | CSUM_TSO) 29210b59a9bSPeter Grehan 2935e220811SBryan Venteicher #define VTNET_COMMON_FEATURES \ 29410b59a9bSPeter Grehan (VIRTIO_NET_F_MAC | \ 29510b59a9bSPeter Grehan VIRTIO_NET_F_STATUS | \ 296aabdf5b6SBryan Venteicher VIRTIO_NET_F_MTU | \ 29710b59a9bSPeter Grehan VIRTIO_NET_F_CTRL_VQ | \ 29810b59a9bSPeter Grehan VIRTIO_NET_F_CTRL_RX | \ 2998f3600b1SBryan Venteicher VIRTIO_NET_F_CTRL_MAC_ADDR | \ 30010b59a9bSPeter Grehan VIRTIO_NET_F_CTRL_VLAN | \ 30110b59a9bSPeter Grehan VIRTIO_NET_F_CSUM | \ 30210b59a9bSPeter Grehan VIRTIO_NET_F_HOST_TSO4 | \ 30310b59a9bSPeter Grehan VIRTIO_NET_F_HOST_TSO6 | \ 30410b59a9bSPeter Grehan VIRTIO_NET_F_HOST_ECN | \ 30510b59a9bSPeter Grehan VIRTIO_NET_F_GUEST_CSUM | \ 30610b59a9bSPeter Grehan VIRTIO_NET_F_GUEST_TSO4 | \ 30710b59a9bSPeter Grehan VIRTIO_NET_F_GUEST_TSO6 | \ 30810b59a9bSPeter Grehan VIRTIO_NET_F_GUEST_ECN | \ 30910b59a9bSPeter Grehan VIRTIO_NET_F_MRG_RXBUF | \ 3108f3600b1SBryan Venteicher VIRTIO_NET_F_MQ | \ 3116a733393SBryan Venteicher VIRTIO_NET_F_SPEED_DUPLEX | \ 3128f3600b1SBryan Venteicher VIRTIO_RING_F_EVENT_IDX | \ 3131cd1ed3fSBryan Venteicher VIRTIO_RING_F_INDIRECT_DESC) 31410b59a9bSPeter Grehan 3155e220811SBryan Venteicher #define VTNET_MODERN_FEATURES (VTNET_COMMON_FEATURES) 3165e220811SBryan Venteicher #define VTNET_LEGACY_FEATURES (VTNET_COMMON_FEATURES | VIRTIO_NET_F_GSO) 3175e220811SBryan Venteicher 31810b59a9bSPeter Grehan /* 3198f3600b1SBryan Venteicher * The VIRTIO_NET_F_HOST_TSO[46] features permit us to send the host 3208f3600b1SBryan Venteicher * frames larger than 1514 bytes. 3218f3600b1SBryan Venteicher */ 3228f3600b1SBryan Venteicher #define VTNET_TSO_FEATURES (VIRTIO_NET_F_GSO | VIRTIO_NET_F_HOST_TSO4 | \ 3238f3600b1SBryan Venteicher VIRTIO_NET_F_HOST_TSO6 | VIRTIO_NET_F_HOST_ECN) 3248f3600b1SBryan Venteicher 3258f3600b1SBryan Venteicher /* 32610b59a9bSPeter Grehan * The VIRTIO_NET_F_GUEST_TSO[46] features permit the host to send us 32710b59a9bSPeter Grehan * frames larger than 1514 bytes. We do not yet support software LRO 32810b59a9bSPeter Grehan * via tcp_lro_rx(). 32910b59a9bSPeter Grehan */ 33010b59a9bSPeter Grehan #define VTNET_LRO_FEATURES (VIRTIO_NET_F_GUEST_TSO4 | \ 33110b59a9bSPeter Grehan VIRTIO_NET_F_GUEST_TSO6 | VIRTIO_NET_F_GUEST_ECN) 33210b59a9bSPeter Grehan 33310b59a9bSPeter Grehan #define VTNET_MAX_MTU 65536 33410b59a9bSPeter Grehan #define VTNET_MAX_RX_SIZE 65550 33510b59a9bSPeter Grehan 33610b59a9bSPeter Grehan /* 337fa7ca1e3SBryan Venteicher * Used to preallocate the VQ indirect descriptors. Modern and mergeable 338fa7ca1e3SBryan Venteicher * buffers do not required one segment for the VirtIO header since it is 339fa7ca1e3SBryan Venteicher * placed inline at the beginning of the receive buffer. 34010b59a9bSPeter Grehan */ 341fa7ca1e3SBryan Venteicher #define VTNET_RX_SEGS_HDR_INLINE 1 342fa7ca1e3SBryan Venteicher #define VTNET_RX_SEGS_HDR_SEPARATE 2 343fa7ca1e3SBryan Venteicher #define VTNET_RX_SEGS_LRO_NOMRG 34 344fa7ca1e3SBryan Venteicher #define VTNET_TX_SEGS_MIN 32 345fa7ca1e3SBryan Venteicher #define VTNET_TX_SEGS_MAX 64 34610b59a9bSPeter Grehan 347fa7ca1e3SBryan Venteicher CTASSERT(((VTNET_RX_SEGS_LRO_NOMRG - 1) * MCLBYTES) >= VTNET_MAX_RX_SIZE); 348fa7ca1e3SBryan Venteicher CTASSERT(((VTNET_TX_SEGS_MAX - 1) * MCLBYTES) >= VTNET_MAX_MTU); 34910b59a9bSPeter Grehan 35010b59a9bSPeter Grehan /* 3518f3600b1SBryan Venteicher * Number of slots in the Tx bufrings. This value matches most other 3528f3600b1SBryan Venteicher * multiqueue drivers. 3538f3600b1SBryan Venteicher */ 3548f3600b1SBryan Venteicher #define VTNET_DEFAULT_BUFRING_SIZE 4096 3558f3600b1SBryan Venteicher 3568f3600b1SBryan Venteicher #define VTNET_CORE_MTX(_sc) &(_sc)->vtnet_mtx 3578f3600b1SBryan Venteicher #define VTNET_CORE_LOCK(_sc) mtx_lock(VTNET_CORE_MTX((_sc))) 3588f3600b1SBryan Venteicher #define VTNET_CORE_UNLOCK(_sc) mtx_unlock(VTNET_CORE_MTX((_sc))) 3598f3600b1SBryan Venteicher #define VTNET_CORE_LOCK_DESTROY(_sc) mtx_destroy(VTNET_CORE_MTX((_sc))) 3608f3600b1SBryan Venteicher #define VTNET_CORE_LOCK_ASSERT(_sc) \ 3618f3600b1SBryan Venteicher mtx_assert(VTNET_CORE_MTX((_sc)), MA_OWNED) 3628f3600b1SBryan Venteicher #define VTNET_CORE_LOCK_ASSERT_NOTOWNED(_sc) \ 3638f3600b1SBryan Venteicher mtx_assert(VTNET_CORE_MTX((_sc)), MA_NOTOWNED) 36410b59a9bSPeter Grehan 3658f3600b1SBryan Venteicher #define VTNET_CORE_LOCK_INIT(_sc) do { \ 36610b59a9bSPeter Grehan snprintf((_sc)->vtnet_mtx_name, sizeof((_sc)->vtnet_mtx_name), \ 36710b59a9bSPeter Grehan "%s", device_get_nameunit((_sc)->vtnet_dev)); \ 3688f3600b1SBryan Venteicher mtx_init(VTNET_CORE_MTX((_sc)), (_sc)->vtnet_mtx_name, \ 36910b59a9bSPeter Grehan "VTNET Core Lock", MTX_DEF); \ 37010b59a9bSPeter Grehan } while (0) 37110b59a9bSPeter Grehan 37216f224b5SVincenzo Maffione /* 37316f224b5SVincenzo Maffione * Values for the init_mode argument of vtnet_init_locked(). 37416f224b5SVincenzo Maffione */ 37516f224b5SVincenzo Maffione #define VTNET_INIT_NETMAP_ENTER 1 37616f224b5SVincenzo Maffione #define VTNET_INIT_NETMAP_EXIT 2 37716f224b5SVincenzo Maffione 37810b59a9bSPeter Grehan #endif /* _IF_VTNETVAR_H */ 379