1718cf2ccSPedro F. Giffuni /*- 2718cf2ccSPedro F. Giffuni * SPDX-License-Identifier: BSD-2-Clause-FreeBSD 3718cf2ccSPedro F. Giffuni * 417885a7bSLuigi Rizzo * Copyright (C) 2013-2014 Universita` di Pisa. All rights reserved. 5f9790aebSLuigi Rizzo * 6f9790aebSLuigi Rizzo * Redistribution and use in source and binary forms, with or without 7f9790aebSLuigi Rizzo * modification, are permitted provided that the following conditions 8f9790aebSLuigi Rizzo * are met: 9f9790aebSLuigi Rizzo * 1. Redistributions of source code must retain the above copyright 10f9790aebSLuigi Rizzo * notice, this list of conditions and the following disclaimer. 11f9790aebSLuigi Rizzo * 2. Redistributions in binary form must reproduce the above copyright 12f9790aebSLuigi Rizzo * notice, this list of conditions and the following disclaimer in the 13f9790aebSLuigi Rizzo * documentation and/or other materials provided with the distribution. 14f9790aebSLuigi Rizzo * 15f9790aebSLuigi Rizzo * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 16f9790aebSLuigi Rizzo * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 17f9790aebSLuigi Rizzo * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 18f9790aebSLuigi Rizzo * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 19f9790aebSLuigi Rizzo * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 20f9790aebSLuigi Rizzo * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 21f9790aebSLuigi Rizzo * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 22f9790aebSLuigi Rizzo * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 23f9790aebSLuigi Rizzo * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 24f9790aebSLuigi Rizzo * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 25f9790aebSLuigi Rizzo * SUCH DAMAGE. 26f9790aebSLuigi Rizzo */ 27f9790aebSLuigi Rizzo 28f9790aebSLuigi Rizzo /* $FreeBSD$ */ 29847bf383SLuigi Rizzo #include "opt_inet.h" 30847bf383SLuigi Rizzo #include "opt_inet6.h" 31f9790aebSLuigi Rizzo 32ffaa5debSSepherosa Ziehau #include <sys/param.h> 33f9790aebSLuigi Rizzo #include <sys/module.h> 34f9790aebSLuigi Rizzo #include <sys/errno.h> 3504e0c883SConrad Meyer #include <sys/eventhandler.h> 36ffaa5debSSepherosa Ziehau #include <sys/jail.h> 37f0ea3689SLuigi Rizzo #include <sys/poll.h> /* POLLIN, POLLOUT */ 38f9790aebSLuigi Rizzo #include <sys/kernel.h> /* types used in module initialization */ 3937e3a6d3SLuigi Rizzo #include <sys/conf.h> /* DEV_MODULE_ORDERED */ 40f0ea3689SLuigi Rizzo #include <sys/endian.h> 4137e3a6d3SLuigi Rizzo #include <sys/syscallsubr.h> /* kern_ioctl() */ 42f9790aebSLuigi Rizzo 43f9790aebSLuigi Rizzo #include <sys/rwlock.h> 44f9790aebSLuigi Rizzo 45f9790aebSLuigi Rizzo #include <vm/vm.h> /* vtophys */ 46f9790aebSLuigi Rizzo #include <vm/pmap.h> /* vtophys */ 47f9790aebSLuigi Rizzo #include <vm/vm_param.h> 48f9790aebSLuigi Rizzo #include <vm/vm_object.h> 49f9790aebSLuigi Rizzo #include <vm/vm_page.h> 50f9790aebSLuigi Rizzo #include <vm/vm_pager.h> 51f9790aebSLuigi Rizzo #include <vm/uma.h> 52f9790aebSLuigi Rizzo 53f9790aebSLuigi Rizzo 54f9790aebSLuigi Rizzo #include <sys/malloc.h> 55f9790aebSLuigi Rizzo #include <sys/socket.h> /* sockaddrs */ 56f9790aebSLuigi Rizzo #include <sys/selinfo.h> 5737e3a6d3SLuigi Rizzo #include <sys/kthread.h> /* kthread_add() */ 5837e3a6d3SLuigi Rizzo #include <sys/proc.h> /* PROC_LOCK() */ 5937e3a6d3SLuigi Rizzo #include <sys/unistd.h> /* RFNOWAIT */ 6037e3a6d3SLuigi Rizzo #include <sys/sched.h> /* sched_bind() */ 6137e3a6d3SLuigi Rizzo #include <sys/smp.h> /* mp_maxid */ 6219c4ec08SVincenzo Maffione #include <sys/taskqueue.h> /* taskqueue_enqueue(), taskqueue_create(), ... */ 63f9790aebSLuigi Rizzo #include <net/if.h> 64f9790aebSLuigi Rizzo #include <net/if_var.h> 654bf50f18SLuigi Rizzo #include <net/if_types.h> /* IFT_ETHER */ 664bf50f18SLuigi Rizzo #include <net/ethernet.h> /* ether_ifdetach */ 674bf50f18SLuigi Rizzo #include <net/if_dl.h> /* LLADDR */ 68f9790aebSLuigi Rizzo #include <machine/bus.h> /* bus_dmamap_* */ 69f0ea3689SLuigi Rizzo #include <netinet/in.h> /* in6_cksum_pseudo() */ 70f0ea3689SLuigi Rizzo #include <machine/in_cksum.h> /* in_pseudo(), in_cksum_hdr() */ 71f9790aebSLuigi Rizzo 72f9790aebSLuigi Rizzo #include <net/netmap.h> 73f9790aebSLuigi Rizzo #include <dev/netmap/netmap_kern.h> 7437e3a6d3SLuigi Rizzo #include <net/netmap_virt.h> 75f9790aebSLuigi Rizzo #include <dev/netmap/netmap_mem2.h> 76f9790aebSLuigi Rizzo 77f9790aebSLuigi Rizzo 78f9790aebSLuigi Rizzo /* ======================== FREEBSD-SPECIFIC ROUTINES ================== */ 79f9790aebSLuigi Rizzo 8019c4ec08SVincenzo Maffione static void 8119c4ec08SVincenzo Maffione nm_kqueue_notify(void *opaque, int pending) 8219c4ec08SVincenzo Maffione { 8319c4ec08SVincenzo Maffione struct nm_selinfo *si = opaque; 8419c4ec08SVincenzo Maffione 8519c4ec08SVincenzo Maffione /* We use a non-zero hint to distinguish this notification call 8619c4ec08SVincenzo Maffione * from the call done in kqueue_scan(), which uses hint=0. 8719c4ec08SVincenzo Maffione */ 8819c4ec08SVincenzo Maffione KNOTE_UNLOCKED(&si->si.si_note, /*hint=*/0x100); 8919c4ec08SVincenzo Maffione } 9019c4ec08SVincenzo Maffione 9119c4ec08SVincenzo Maffione int nm_os_selinfo_init(NM_SELINFO_T *si, const char *name) { 9219c4ec08SVincenzo Maffione int err; 9319c4ec08SVincenzo Maffione 9419c4ec08SVincenzo Maffione TASK_INIT(&si->ntfytask, 0, nm_kqueue_notify, si); 9519c4ec08SVincenzo Maffione si->ntfytq = taskqueue_create(name, M_NOWAIT, 9619c4ec08SVincenzo Maffione taskqueue_thread_enqueue, &si->ntfytq); 9719c4ec08SVincenzo Maffione if (si->ntfytq == NULL) 9819c4ec08SVincenzo Maffione return -ENOMEM; 9919c4ec08SVincenzo Maffione err = taskqueue_start_threads(&si->ntfytq, 1, PI_NET, "tq %s", name); 10019c4ec08SVincenzo Maffione if (err) { 10119c4ec08SVincenzo Maffione taskqueue_free(si->ntfytq); 10219c4ec08SVincenzo Maffione si->ntfytq = NULL; 10319c4ec08SVincenzo Maffione return err; 10419c4ec08SVincenzo Maffione } 10519c4ec08SVincenzo Maffione 10619c4ec08SVincenzo Maffione snprintf(si->mtxname, sizeof(si->mtxname), "nmkl%s", name); 10719c4ec08SVincenzo Maffione mtx_init(&si->m, si->mtxname, NULL, MTX_DEF); 10819c4ec08SVincenzo Maffione knlist_init_mtx(&si->si.si_note, &si->m); 10945100257SVincenzo Maffione si->kqueue_users = 0; 11019c4ec08SVincenzo Maffione 11119c4ec08SVincenzo Maffione return (0); 11237e3a6d3SLuigi Rizzo } 11337e3a6d3SLuigi Rizzo 11437e3a6d3SLuigi Rizzo void 11537e3a6d3SLuigi Rizzo nm_os_selinfo_uninit(NM_SELINFO_T *si) 11637e3a6d3SLuigi Rizzo { 11719c4ec08SVincenzo Maffione if (si->ntfytq == NULL) { 11819c4ec08SVincenzo Maffione return; /* si was not initialized */ 11919c4ec08SVincenzo Maffione } 12019c4ec08SVincenzo Maffione taskqueue_drain(si->ntfytq, &si->ntfytask); 12119c4ec08SVincenzo Maffione taskqueue_free(si->ntfytq); 12219c4ec08SVincenzo Maffione si->ntfytq = NULL; 1238c9874f5SVincenzo Maffione knlist_delete(&si->si.si_note, curthread, /*islocked=*/0); 12437e3a6d3SLuigi Rizzo knlist_destroy(&si->si.si_note); 12537e3a6d3SLuigi Rizzo /* now we don't need the mutex anymore */ 12637e3a6d3SLuigi Rizzo mtx_destroy(&si->m); 12737e3a6d3SLuigi Rizzo } 12837e3a6d3SLuigi Rizzo 129c3e9b4dbSLuiz Otavio O Souza void * 130c3e9b4dbSLuiz Otavio O Souza nm_os_malloc(size_t size) 131c3e9b4dbSLuiz Otavio O Souza { 132c3e9b4dbSLuiz Otavio O Souza return malloc(size, M_DEVBUF, M_NOWAIT | M_ZERO); 133c3e9b4dbSLuiz Otavio O Souza } 134c3e9b4dbSLuiz Otavio O Souza 135c3e9b4dbSLuiz Otavio O Souza void * 136c3e9b4dbSLuiz Otavio O Souza nm_os_realloc(void *addr, size_t new_size, size_t old_size __unused) 137c3e9b4dbSLuiz Otavio O Souza { 138c3e9b4dbSLuiz Otavio O Souza return realloc(addr, new_size, M_DEVBUF, M_NOWAIT | M_ZERO); 139c3e9b4dbSLuiz Otavio O Souza } 140c3e9b4dbSLuiz Otavio O Souza 141c3e9b4dbSLuiz Otavio O Souza void 142c3e9b4dbSLuiz Otavio O Souza nm_os_free(void *addr) 143c3e9b4dbSLuiz Otavio O Souza { 144c3e9b4dbSLuiz Otavio O Souza free(addr, M_DEVBUF); 145c3e9b4dbSLuiz Otavio O Souza } 146c3e9b4dbSLuiz Otavio O Souza 14737e3a6d3SLuigi Rizzo void 14837e3a6d3SLuigi Rizzo nm_os_ifnet_lock(void) 14937e3a6d3SLuigi Rizzo { 150869d8878SAdrian Chadd IFNET_RLOCK(); 15137e3a6d3SLuigi Rizzo } 15237e3a6d3SLuigi Rizzo 15337e3a6d3SLuigi Rizzo void 15437e3a6d3SLuigi Rizzo nm_os_ifnet_unlock(void) 15537e3a6d3SLuigi Rizzo { 15667ca1051SAdrian Chadd IFNET_RUNLOCK(); 15737e3a6d3SLuigi Rizzo } 15837e3a6d3SLuigi Rizzo 15937e3a6d3SLuigi Rizzo static int netmap_use_count = 0; 16037e3a6d3SLuigi Rizzo 16137e3a6d3SLuigi Rizzo void 16237e3a6d3SLuigi Rizzo nm_os_get_module(void) 16337e3a6d3SLuigi Rizzo { 16437e3a6d3SLuigi Rizzo netmap_use_count++; 16537e3a6d3SLuigi Rizzo } 16637e3a6d3SLuigi Rizzo 16737e3a6d3SLuigi Rizzo void 16837e3a6d3SLuigi Rizzo nm_os_put_module(void) 16937e3a6d3SLuigi Rizzo { 17037e3a6d3SLuigi Rizzo netmap_use_count--; 17137e3a6d3SLuigi Rizzo } 17237e3a6d3SLuigi Rizzo 17337e3a6d3SLuigi Rizzo static void 17437e3a6d3SLuigi Rizzo netmap_ifnet_arrival_handler(void *arg __unused, struct ifnet *ifp) 17537e3a6d3SLuigi Rizzo { 17637e3a6d3SLuigi Rizzo netmap_undo_zombie(ifp); 17737e3a6d3SLuigi Rizzo } 17837e3a6d3SLuigi Rizzo 17937e3a6d3SLuigi Rizzo static void 18037e3a6d3SLuigi Rizzo netmap_ifnet_departure_handler(void *arg __unused, struct ifnet *ifp) 18137e3a6d3SLuigi Rizzo { 18237e3a6d3SLuigi Rizzo netmap_make_zombie(ifp); 18337e3a6d3SLuigi Rizzo } 18437e3a6d3SLuigi Rizzo 18537e3a6d3SLuigi Rizzo static eventhandler_tag nm_ifnet_ah_tag; 18637e3a6d3SLuigi Rizzo static eventhandler_tag nm_ifnet_dh_tag; 18737e3a6d3SLuigi Rizzo 18837e3a6d3SLuigi Rizzo int 18937e3a6d3SLuigi Rizzo nm_os_ifnet_init(void) 19037e3a6d3SLuigi Rizzo { 19137e3a6d3SLuigi Rizzo nm_ifnet_ah_tag = 19237e3a6d3SLuigi Rizzo EVENTHANDLER_REGISTER(ifnet_arrival_event, 19337e3a6d3SLuigi Rizzo netmap_ifnet_arrival_handler, 19437e3a6d3SLuigi Rizzo NULL, EVENTHANDLER_PRI_ANY); 19537e3a6d3SLuigi Rizzo nm_ifnet_dh_tag = 19637e3a6d3SLuigi Rizzo EVENTHANDLER_REGISTER(ifnet_departure_event, 19737e3a6d3SLuigi Rizzo netmap_ifnet_departure_handler, 19837e3a6d3SLuigi Rizzo NULL, EVENTHANDLER_PRI_ANY); 19937e3a6d3SLuigi Rizzo return 0; 20037e3a6d3SLuigi Rizzo } 20137e3a6d3SLuigi Rizzo 20237e3a6d3SLuigi Rizzo void 20337e3a6d3SLuigi Rizzo nm_os_ifnet_fini(void) 20437e3a6d3SLuigi Rizzo { 20537e3a6d3SLuigi Rizzo EVENTHANDLER_DEREGISTER(ifnet_arrival_event, 20637e3a6d3SLuigi Rizzo nm_ifnet_ah_tag); 20737e3a6d3SLuigi Rizzo EVENTHANDLER_DEREGISTER(ifnet_departure_event, 20837e3a6d3SLuigi Rizzo nm_ifnet_dh_tag); 20937e3a6d3SLuigi Rizzo } 21037e3a6d3SLuigi Rizzo 2114f80b14cSVincenzo Maffione unsigned 2124f80b14cSVincenzo Maffione nm_os_ifnet_mtu(struct ifnet *ifp) 2134f80b14cSVincenzo Maffione { 2144f80b14cSVincenzo Maffione #if __FreeBSD_version < 1100030 2154f80b14cSVincenzo Maffione return ifp->if_data.ifi_mtu; 2164f80b14cSVincenzo Maffione #else /* __FreeBSD_version >= 1100030 */ 2174f80b14cSVincenzo Maffione return ifp->if_mtu; 2184f80b14cSVincenzo Maffione #endif 2194f80b14cSVincenzo Maffione } 2204f80b14cSVincenzo Maffione 221e4166283SLuigi Rizzo rawsum_t 22237e3a6d3SLuigi Rizzo nm_os_csum_raw(uint8_t *data, size_t len, rawsum_t cur_sum) 223f0ea3689SLuigi Rizzo { 224f0ea3689SLuigi Rizzo /* TODO XXX please use the FreeBSD implementation for this. */ 225f0ea3689SLuigi Rizzo uint16_t *words = (uint16_t *)data; 226f0ea3689SLuigi Rizzo int nw = len / 2; 227f0ea3689SLuigi Rizzo int i; 228f0ea3689SLuigi Rizzo 229f0ea3689SLuigi Rizzo for (i = 0; i < nw; i++) 230f0ea3689SLuigi Rizzo cur_sum += be16toh(words[i]); 231f0ea3689SLuigi Rizzo 232f0ea3689SLuigi Rizzo if (len & 1) 233f0ea3689SLuigi Rizzo cur_sum += (data[len-1] << 8); 234f0ea3689SLuigi Rizzo 235f0ea3689SLuigi Rizzo return cur_sum; 236f0ea3689SLuigi Rizzo } 237f0ea3689SLuigi Rizzo 238f0ea3689SLuigi Rizzo /* Fold a raw checksum: 'cur_sum' is in host byte order, while the 239f0ea3689SLuigi Rizzo * return value is in network byte order. 240f0ea3689SLuigi Rizzo */ 241e4166283SLuigi Rizzo uint16_t 24237e3a6d3SLuigi Rizzo nm_os_csum_fold(rawsum_t cur_sum) 243f0ea3689SLuigi Rizzo { 244f0ea3689SLuigi Rizzo /* TODO XXX please use the FreeBSD implementation for this. */ 245f0ea3689SLuigi Rizzo while (cur_sum >> 16) 246f0ea3689SLuigi Rizzo cur_sum = (cur_sum & 0xFFFF) + (cur_sum >> 16); 247f0ea3689SLuigi Rizzo 248f0ea3689SLuigi Rizzo return htobe16((~cur_sum) & 0xFFFF); 249f0ea3689SLuigi Rizzo } 250f0ea3689SLuigi Rizzo 25137e3a6d3SLuigi Rizzo uint16_t nm_os_csum_ipv4(struct nm_iphdr *iph) 252f0ea3689SLuigi Rizzo { 253f0ea3689SLuigi Rizzo #if 0 254f0ea3689SLuigi Rizzo return in_cksum_hdr((void *)iph); 255f0ea3689SLuigi Rizzo #else 25637e3a6d3SLuigi Rizzo return nm_os_csum_fold(nm_os_csum_raw((uint8_t*)iph, sizeof(struct nm_iphdr), 0)); 257f0ea3689SLuigi Rizzo #endif 258f0ea3689SLuigi Rizzo } 259f0ea3689SLuigi Rizzo 260e4166283SLuigi Rizzo void 26137e3a6d3SLuigi Rizzo nm_os_csum_tcpudp_ipv4(struct nm_iphdr *iph, void *data, 262f0ea3689SLuigi Rizzo size_t datalen, uint16_t *check) 263f0ea3689SLuigi Rizzo { 2645a067ae1SLuigi Rizzo #ifdef INET 265f0ea3689SLuigi Rizzo uint16_t pseudolen = datalen + iph->protocol; 266f0ea3689SLuigi Rizzo 267f0ea3689SLuigi Rizzo /* Compute and insert the pseudo-header cheksum. */ 268f0ea3689SLuigi Rizzo *check = in_pseudo(iph->saddr, iph->daddr, 269f0ea3689SLuigi Rizzo htobe16(pseudolen)); 270f0ea3689SLuigi Rizzo /* Compute the checksum on TCP/UDP header + payload 271f0ea3689SLuigi Rizzo * (includes the pseudo-header). 272f0ea3689SLuigi Rizzo */ 27337e3a6d3SLuigi Rizzo *check = nm_os_csum_fold(nm_os_csum_raw(data, datalen, 0)); 2745a067ae1SLuigi Rizzo #else 2755a067ae1SLuigi Rizzo static int notsupported = 0; 2765a067ae1SLuigi Rizzo if (!notsupported) { 2775a067ae1SLuigi Rizzo notsupported = 1; 278a56136a1SVincenzo Maffione nm_prerr("inet4 segmentation not supported"); 2795a067ae1SLuigi Rizzo } 2805a067ae1SLuigi Rizzo #endif 281f0ea3689SLuigi Rizzo } 282f0ea3689SLuigi Rizzo 283e4166283SLuigi Rizzo void 28437e3a6d3SLuigi Rizzo nm_os_csum_tcpudp_ipv6(struct nm_ipv6hdr *ip6h, void *data, 285f0ea3689SLuigi Rizzo size_t datalen, uint16_t *check) 286f0ea3689SLuigi Rizzo { 287f0ea3689SLuigi Rizzo #ifdef INET6 288f0ea3689SLuigi Rizzo *check = in6_cksum_pseudo((void*)ip6h, datalen, ip6h->nexthdr, 0); 28937e3a6d3SLuigi Rizzo *check = nm_os_csum_fold(nm_os_csum_raw(data, datalen, 0)); 290f0ea3689SLuigi Rizzo #else 291f0ea3689SLuigi Rizzo static int notsupported = 0; 292f0ea3689SLuigi Rizzo if (!notsupported) { 293f0ea3689SLuigi Rizzo notsupported = 1; 294a56136a1SVincenzo Maffione nm_prerr("inet6 segmentation not supported"); 295f0ea3689SLuigi Rizzo } 296f0ea3689SLuigi Rizzo #endif 297f0ea3689SLuigi Rizzo } 298f0ea3689SLuigi Rizzo 29937e3a6d3SLuigi Rizzo /* on FreeBSD we send up one packet at a time */ 30037e3a6d3SLuigi Rizzo void * 30137e3a6d3SLuigi Rizzo nm_os_send_up(struct ifnet *ifp, struct mbuf *m, struct mbuf *prev) 30237e3a6d3SLuigi Rizzo { 30337e3a6d3SLuigi Rizzo NA(ifp)->if_input(ifp, m); 30437e3a6d3SLuigi Rizzo return NULL; 30537e3a6d3SLuigi Rizzo } 30637e3a6d3SLuigi Rizzo 30737e3a6d3SLuigi Rizzo int 3082a7db7a6SVincenzo Maffione nm_os_mbuf_has_csum_offld(struct mbuf *m) 30937e3a6d3SLuigi Rizzo { 31037e3a6d3SLuigi Rizzo return m->m_pkthdr.csum_flags & (CSUM_TCP | CSUM_UDP | CSUM_SCTP | 31137e3a6d3SLuigi Rizzo CSUM_TCP_IPV6 | CSUM_UDP_IPV6 | 3122a7db7a6SVincenzo Maffione CSUM_SCTP_IPV6); 3132a7db7a6SVincenzo Maffione } 3142a7db7a6SVincenzo Maffione 3152a7db7a6SVincenzo Maffione int 3162a7db7a6SVincenzo Maffione nm_os_mbuf_has_seg_offld(struct mbuf *m) 3172a7db7a6SVincenzo Maffione { 3182a7db7a6SVincenzo Maffione return m->m_pkthdr.csum_flags & CSUM_TSO; 31937e3a6d3SLuigi Rizzo } 32037e3a6d3SLuigi Rizzo 32137e3a6d3SLuigi Rizzo static void 32237e3a6d3SLuigi Rizzo freebsd_generic_rx_handler(struct ifnet *ifp, struct mbuf *m) 32337e3a6d3SLuigi Rizzo { 324c3e9b4dbSLuiz Otavio O Souza int stolen; 325c3e9b4dbSLuiz Otavio O Souza 326a56136a1SVincenzo Maffione if (unlikely(!NM_NA_VALID(ifp))) { 327a56136a1SVincenzo Maffione nm_prlim(1, "Warning: RX packet intercepted, but no" 328a56136a1SVincenzo Maffione " emulated adapter"); 329c3e9b4dbSLuiz Otavio O Souza return; 330c3e9b4dbSLuiz Otavio O Souza } 331c3e9b4dbSLuiz Otavio O Souza 332c3e9b4dbSLuiz Otavio O Souza stolen = generic_rx_handler(ifp, m); 333c3e9b4dbSLuiz Otavio O Souza if (!stolen) { 33437e3a6d3SLuigi Rizzo struct netmap_generic_adapter *gna = 33537e3a6d3SLuigi Rizzo (struct netmap_generic_adapter *)NA(ifp); 33637e3a6d3SLuigi Rizzo gna->save_if_input(ifp, m); 33737e3a6d3SLuigi Rizzo } 33837e3a6d3SLuigi Rizzo } 339f0ea3689SLuigi Rizzo 340f9790aebSLuigi Rizzo /* 341f9790aebSLuigi Rizzo * Intercept the rx routine in the standard device driver. 342f9790aebSLuigi Rizzo * Second argument is non-zero to intercept, 0 to restore 343f9790aebSLuigi Rizzo */ 344f9790aebSLuigi Rizzo int 34537e3a6d3SLuigi Rizzo nm_os_catch_rx(struct netmap_generic_adapter *gna, int intercept) 346f9790aebSLuigi Rizzo { 347847bf383SLuigi Rizzo struct netmap_adapter *na = &gna->up.up; 348f9790aebSLuigi Rizzo struct ifnet *ifp = na->ifp; 3494f80b14cSVincenzo Maffione int ret = 0; 350f9790aebSLuigi Rizzo 3514f80b14cSVincenzo Maffione nm_os_ifnet_lock(); 352f9790aebSLuigi Rizzo if (intercept) { 353f9790aebSLuigi Rizzo if (gna->save_if_input) { 354a56136a1SVincenzo Maffione nm_prerr("RX on %s already intercepted", na->name); 355a56136a1SVincenzo Maffione ret = EBUSY; /* already set */ 3564f80b14cSVincenzo Maffione goto out; 357f9790aebSLuigi Rizzo } 358f9790aebSLuigi Rizzo gna->save_if_input = ifp->if_input; 35937e3a6d3SLuigi Rizzo ifp->if_input = freebsd_generic_rx_handler; 360f9790aebSLuigi Rizzo } else { 361f9790aebSLuigi Rizzo if (!gna->save_if_input) { 362a56136a1SVincenzo Maffione nm_prerr("Failed to undo RX intercept on %s", 363a56136a1SVincenzo Maffione na->name); 3644f80b14cSVincenzo Maffione ret = EINVAL; /* not saved */ 3654f80b14cSVincenzo Maffione goto out; 366f9790aebSLuigi Rizzo } 367f9790aebSLuigi Rizzo ifp->if_input = gna->save_if_input; 368f9790aebSLuigi Rizzo gna->save_if_input = NULL; 369f9790aebSLuigi Rizzo } 3704f80b14cSVincenzo Maffione out: 3714f80b14cSVincenzo Maffione nm_os_ifnet_unlock(); 372f9790aebSLuigi Rizzo 3734f80b14cSVincenzo Maffione return ret; 374f9790aebSLuigi Rizzo } 375f9790aebSLuigi Rizzo 37617885a7bSLuigi Rizzo 377f9790aebSLuigi Rizzo /* 378f9790aebSLuigi Rizzo * Intercept the packet steering routine in the tx path, 379f9790aebSLuigi Rizzo * so that we can decide which queue is used for an mbuf. 380f9790aebSLuigi Rizzo * Second argument is non-zero to intercept, 0 to restore. 381f0ea3689SLuigi Rizzo * On freebsd we just intercept if_transmit. 382f9790aebSLuigi Rizzo */ 38337e3a6d3SLuigi Rizzo int 38437e3a6d3SLuigi Rizzo nm_os_catch_tx(struct netmap_generic_adapter *gna, int intercept) 385f9790aebSLuigi Rizzo { 38617885a7bSLuigi Rizzo struct netmap_adapter *na = &gna->up.up; 387847bf383SLuigi Rizzo struct ifnet *ifp = netmap_generic_getifp(gna); 38817885a7bSLuigi Rizzo 3894f80b14cSVincenzo Maffione nm_os_ifnet_lock(); 39037e3a6d3SLuigi Rizzo if (intercept) { 39117885a7bSLuigi Rizzo na->if_transmit = ifp->if_transmit; 39217885a7bSLuigi Rizzo ifp->if_transmit = netmap_transmit; 393f9790aebSLuigi Rizzo } else { 39417885a7bSLuigi Rizzo ifp->if_transmit = na->if_transmit; 395f9790aebSLuigi Rizzo } 3964f80b14cSVincenzo Maffione nm_os_ifnet_unlock(); 39737e3a6d3SLuigi Rizzo 39837e3a6d3SLuigi Rizzo return 0; 399f9790aebSLuigi Rizzo } 400f9790aebSLuigi Rizzo 40117885a7bSLuigi Rizzo 402f0ea3689SLuigi Rizzo /* 403f0ea3689SLuigi Rizzo * Transmit routine used by generic_netmap_txsync(). Returns 0 on success 404f9790aebSLuigi Rizzo * and non-zero on error (which may be packet drops or other errors). 405f9790aebSLuigi Rizzo * addr and len identify the netmap buffer, m is the (preallocated) 406f9790aebSLuigi Rizzo * mbuf to use for transmissions. 407f9790aebSLuigi Rizzo * 408f9790aebSLuigi Rizzo * We should add a reference to the mbuf so the m_freem() at the end 409f9790aebSLuigi Rizzo * of the transmission does not consume resources. 410f9790aebSLuigi Rizzo * 411f9790aebSLuigi Rizzo * On FreeBSD, and on multiqueue cards, we can force the queue using 412c2529042SHans Petter Selasky * if (M_HASHTYPE_GET(m) != M_HASHTYPE_NONE) 413f9790aebSLuigi Rizzo * i = m->m_pkthdr.flowid % adapter->num_queues; 414f9790aebSLuigi Rizzo * else 415f9790aebSLuigi Rizzo * i = curcpu % adapter->num_queues; 416f9790aebSLuigi Rizzo * 417f9790aebSLuigi Rizzo */ 418f9790aebSLuigi Rizzo int 41937e3a6d3SLuigi Rizzo nm_os_generic_xmit_frame(struct nm_os_gen_arg *a) 420f9790aebSLuigi Rizzo { 421f9790aebSLuigi Rizzo int ret; 42237e3a6d3SLuigi Rizzo u_int len = a->len; 42337e3a6d3SLuigi Rizzo struct ifnet *ifp = a->ifp; 42437e3a6d3SLuigi Rizzo struct mbuf *m = a->m; 425f9790aebSLuigi Rizzo 42637e3a6d3SLuigi Rizzo #if __FreeBSD_version < 1100000 427e4166283SLuigi Rizzo /* 42837e3a6d3SLuigi Rizzo * Old FreeBSD versions. The mbuf has a cluster attached, 42937e3a6d3SLuigi Rizzo * we need to copy from the cluster to the netmap buffer. 430e4166283SLuigi Rizzo */ 43137e3a6d3SLuigi Rizzo if (MBUF_REFCNT(m) != 1) { 432a56136a1SVincenzo Maffione nm_prerr("invalid refcnt %d for %p", MBUF_REFCNT(m), m); 433e4166283SLuigi Rizzo panic("in generic_xmit_frame"); 434e4166283SLuigi Rizzo } 435e4166283SLuigi Rizzo if (m->m_ext.ext_size < len) { 436a56136a1SVincenzo Maffione nm_prlim(2, "size %d < len %d", m->m_ext.ext_size, len); 437e4166283SLuigi Rizzo len = m->m_ext.ext_size; 438e4166283SLuigi Rizzo } 43937e3a6d3SLuigi Rizzo bcopy(a->addr, m->m_data, len); 44037e3a6d3SLuigi Rizzo #else /* __FreeBSD_version >= 1100000 */ 44137e3a6d3SLuigi Rizzo /* New FreeBSD versions. Link the external storage to 44237e3a6d3SLuigi Rizzo * the netmap buffer, so that no copy is necessary. */ 44337e3a6d3SLuigi Rizzo m->m_ext.ext_buf = m->m_data = a->addr; 44437e3a6d3SLuigi Rizzo m->m_ext.ext_size = len; 44537e3a6d3SLuigi Rizzo #endif /* __FreeBSD_version >= 1100000 */ 44637e3a6d3SLuigi Rizzo 44723ced944SVincenzo Maffione m->m_flags |= M_PKTHDR; 448e4166283SLuigi Rizzo m->m_len = m->m_pkthdr.len = len; 44937e3a6d3SLuigi Rizzo 45037e3a6d3SLuigi Rizzo /* mbuf refcnt is not contended, no need to use atomic 45137e3a6d3SLuigi Rizzo * (a memory barrier is enough). */ 45237e3a6d3SLuigi Rizzo SET_MBUF_REFCNT(m, 2); 453c2529042SHans Petter Selasky M_HASHTYPE_SET(m, M_HASHTYPE_OPAQUE); 45437e3a6d3SLuigi Rizzo m->m_pkthdr.flowid = a->ring_nr; 455f9790aebSLuigi Rizzo m->m_pkthdr.rcvif = ifp; /* used for tx notification */ 45623ced944SVincenzo Maffione CURVNET_SET(ifp->if_vnet); 45717885a7bSLuigi Rizzo ret = NA(ifp)->if_transmit(ifp, m); 45823ced944SVincenzo Maffione CURVNET_RESTORE(); 45937e3a6d3SLuigi Rizzo return ret ? -1 : 0; 460f9790aebSLuigi Rizzo } 461f9790aebSLuigi Rizzo 46217885a7bSLuigi Rizzo 4630dc809c0SLuigi Rizzo #if __FreeBSD_version >= 1100005 4640dc809c0SLuigi Rizzo struct netmap_adapter * 4650dc809c0SLuigi Rizzo netmap_getna(if_t ifp) 4660dc809c0SLuigi Rizzo { 4670dc809c0SLuigi Rizzo return (NA((struct ifnet *)ifp)); 4680dc809c0SLuigi Rizzo } 4690dc809c0SLuigi Rizzo #endif /* __FreeBSD_version >= 1100005 */ 4700dc809c0SLuigi Rizzo 471f9790aebSLuigi Rizzo /* 472f9790aebSLuigi Rizzo * The following two functions are empty until we have a generic 473f9790aebSLuigi Rizzo * way to extract the info from the ifp 474f9790aebSLuigi Rizzo */ 475f9790aebSLuigi Rizzo int 47637e3a6d3SLuigi Rizzo nm_os_generic_find_num_desc(struct ifnet *ifp, unsigned int *tx, unsigned int *rx) 477f9790aebSLuigi Rizzo { 478f9790aebSLuigi Rizzo return 0; 479f9790aebSLuigi Rizzo } 480f9790aebSLuigi Rizzo 48117885a7bSLuigi Rizzo 482f9790aebSLuigi Rizzo void 48337e3a6d3SLuigi Rizzo nm_os_generic_find_num_queues(struct ifnet *ifp, u_int *txq, u_int *rxq) 484f9790aebSLuigi Rizzo { 485c3e9b4dbSLuiz Otavio O Souza unsigned num_rings = netmap_generic_rings ? netmap_generic_rings : 1; 486c3e9b4dbSLuiz Otavio O Souza 487c3e9b4dbSLuiz Otavio O Souza *txq = num_rings; 488c3e9b4dbSLuiz Otavio O Souza *rxq = num_rings; 489f9790aebSLuigi Rizzo } 490f9790aebSLuigi Rizzo 49137e3a6d3SLuigi Rizzo void 49237e3a6d3SLuigi Rizzo nm_os_generic_set_features(struct netmap_generic_adapter *gna) 49337e3a6d3SLuigi Rizzo { 49437e3a6d3SLuigi Rizzo 49537e3a6d3SLuigi Rizzo gna->rxsg = 1; /* Supported through m_copydata. */ 49637e3a6d3SLuigi Rizzo gna->txqdisc = 0; /* Not supported. */ 49737e3a6d3SLuigi Rizzo } 49817885a7bSLuigi Rizzo 499e4166283SLuigi Rizzo void 50037e3a6d3SLuigi Rizzo nm_os_mitigation_init(struct nm_generic_mit *mit, int idx, struct netmap_adapter *na) 501f9790aebSLuigi Rizzo { 502f0ea3689SLuigi Rizzo mit->mit_pending = 0; 5034bf50f18SLuigi Rizzo mit->mit_ring_idx = idx; 504f0ea3689SLuigi Rizzo mit->mit_na = na; 505f9790aebSLuigi Rizzo } 506f9790aebSLuigi Rizzo 507f9790aebSLuigi Rizzo 508e4166283SLuigi Rizzo void 50937e3a6d3SLuigi Rizzo nm_os_mitigation_start(struct nm_generic_mit *mit) 510f9790aebSLuigi Rizzo { 511f9790aebSLuigi Rizzo } 512f9790aebSLuigi Rizzo 51317885a7bSLuigi Rizzo 514e4166283SLuigi Rizzo void 51537e3a6d3SLuigi Rizzo nm_os_mitigation_restart(struct nm_generic_mit *mit) 516f9790aebSLuigi Rizzo { 517f9790aebSLuigi Rizzo } 518f9790aebSLuigi Rizzo 51917885a7bSLuigi Rizzo 520e4166283SLuigi Rizzo int 52137e3a6d3SLuigi Rizzo nm_os_mitigation_active(struct nm_generic_mit *mit) 522f9790aebSLuigi Rizzo { 523a56136a1SVincenzo Maffione 524f9790aebSLuigi Rizzo return 0; 525f9790aebSLuigi Rizzo } 526f9790aebSLuigi Rizzo 52717885a7bSLuigi Rizzo 528e4166283SLuigi Rizzo void 52937e3a6d3SLuigi Rizzo nm_os_mitigation_cleanup(struct nm_generic_mit *mit) 530f9790aebSLuigi Rizzo { 531f9790aebSLuigi Rizzo } 532f9790aebSLuigi Rizzo 5334bf50f18SLuigi Rizzo static int 5344bf50f18SLuigi Rizzo nm_vi_dummy(struct ifnet *ifp, u_long cmd, caddr_t addr) 5354bf50f18SLuigi Rizzo { 536a56136a1SVincenzo Maffione 5374bf50f18SLuigi Rizzo return EINVAL; 5384bf50f18SLuigi Rizzo } 5394bf50f18SLuigi Rizzo 5404bf50f18SLuigi Rizzo static void 5414bf50f18SLuigi Rizzo nm_vi_start(struct ifnet *ifp) 5424bf50f18SLuigi Rizzo { 5434bf50f18SLuigi Rizzo panic("nm_vi_start() must not be called"); 5444bf50f18SLuigi Rizzo } 5454bf50f18SLuigi Rizzo 5464bf50f18SLuigi Rizzo /* 5474bf50f18SLuigi Rizzo * Index manager of persistent virtual interfaces. 5484bf50f18SLuigi Rizzo * It is used to decide the lowest byte of the MAC address. 5494bf50f18SLuigi Rizzo * We use the same algorithm with management of bridge port index. 5504bf50f18SLuigi Rizzo */ 5514bf50f18SLuigi Rizzo #define NM_VI_MAX 255 5524bf50f18SLuigi Rizzo static struct { 5534bf50f18SLuigi Rizzo uint8_t index[NM_VI_MAX]; /* XXX just for a reasonable number */ 5544bf50f18SLuigi Rizzo uint8_t active; 5554bf50f18SLuigi Rizzo struct mtx lock; 5564bf50f18SLuigi Rizzo } nm_vi_indices; 5574bf50f18SLuigi Rizzo 5584bf50f18SLuigi Rizzo void 55937e3a6d3SLuigi Rizzo nm_os_vi_init_index(void) 5604bf50f18SLuigi Rizzo { 5614bf50f18SLuigi Rizzo int i; 5624bf50f18SLuigi Rizzo for (i = 0; i < NM_VI_MAX; i++) 5634bf50f18SLuigi Rizzo nm_vi_indices.index[i] = i; 5644bf50f18SLuigi Rizzo nm_vi_indices.active = 0; 5654bf50f18SLuigi Rizzo mtx_init(&nm_vi_indices.lock, "nm_vi_indices_lock", NULL, MTX_DEF); 5664bf50f18SLuigi Rizzo } 5674bf50f18SLuigi Rizzo 5684bf50f18SLuigi Rizzo /* return -1 if no index available */ 5694bf50f18SLuigi Rizzo static int 5704bf50f18SLuigi Rizzo nm_vi_get_index(void) 5714bf50f18SLuigi Rizzo { 5724bf50f18SLuigi Rizzo int ret; 5734bf50f18SLuigi Rizzo 5744bf50f18SLuigi Rizzo mtx_lock(&nm_vi_indices.lock); 5754bf50f18SLuigi Rizzo ret = nm_vi_indices.active == NM_VI_MAX ? -1 : 5764bf50f18SLuigi Rizzo nm_vi_indices.index[nm_vi_indices.active++]; 5774bf50f18SLuigi Rizzo mtx_unlock(&nm_vi_indices.lock); 5784bf50f18SLuigi Rizzo return ret; 5794bf50f18SLuigi Rizzo } 5804bf50f18SLuigi Rizzo 5814bf50f18SLuigi Rizzo static void 5824bf50f18SLuigi Rizzo nm_vi_free_index(uint8_t val) 5834bf50f18SLuigi Rizzo { 5844bf50f18SLuigi Rizzo int i, lim; 5854bf50f18SLuigi Rizzo 5864bf50f18SLuigi Rizzo mtx_lock(&nm_vi_indices.lock); 5874bf50f18SLuigi Rizzo lim = nm_vi_indices.active; 5884bf50f18SLuigi Rizzo for (i = 0; i < lim; i++) { 5894bf50f18SLuigi Rizzo if (nm_vi_indices.index[i] == val) { 5904bf50f18SLuigi Rizzo /* swap index[lim-1] and j */ 5914bf50f18SLuigi Rizzo int tmp = nm_vi_indices.index[lim-1]; 5924bf50f18SLuigi Rizzo nm_vi_indices.index[lim-1] = val; 5934bf50f18SLuigi Rizzo nm_vi_indices.index[i] = tmp; 5944bf50f18SLuigi Rizzo nm_vi_indices.active--; 5954bf50f18SLuigi Rizzo break; 5964bf50f18SLuigi Rizzo } 5974bf50f18SLuigi Rizzo } 5984bf50f18SLuigi Rizzo if (lim == nm_vi_indices.active) 599a56136a1SVincenzo Maffione nm_prerr("Index %u not found", val); 6004bf50f18SLuigi Rizzo mtx_unlock(&nm_vi_indices.lock); 6014bf50f18SLuigi Rizzo } 6024bf50f18SLuigi Rizzo #undef NM_VI_MAX 6034bf50f18SLuigi Rizzo 6044bf50f18SLuigi Rizzo /* 6054bf50f18SLuigi Rizzo * Implementation of a netmap-capable virtual interface that 6064bf50f18SLuigi Rizzo * registered to the system. 6074bf50f18SLuigi Rizzo * It is based on if_tap.c and ip_fw_log.c in FreeBSD 9. 6084bf50f18SLuigi Rizzo * 6094bf50f18SLuigi Rizzo * Note: Linux sets refcount to 0 on allocation of net_device, 6104bf50f18SLuigi Rizzo * then increments it on registration to the system. 6114bf50f18SLuigi Rizzo * FreeBSD sets refcount to 1 on if_alloc(), and does not 6124bf50f18SLuigi Rizzo * increment this refcount on if_attach(). 6134bf50f18SLuigi Rizzo */ 6144bf50f18SLuigi Rizzo int 61537e3a6d3SLuigi Rizzo nm_os_vi_persist(const char *name, struct ifnet **ret) 6164bf50f18SLuigi Rizzo { 6174bf50f18SLuigi Rizzo struct ifnet *ifp; 6184bf50f18SLuigi Rizzo u_short macaddr_hi; 6194bf50f18SLuigi Rizzo uint32_t macaddr_mid; 6204bf50f18SLuigi Rizzo u_char eaddr[6]; 6214bf50f18SLuigi Rizzo int unit = nm_vi_get_index(); /* just to decide MAC address */ 6224bf50f18SLuigi Rizzo 6234bf50f18SLuigi Rizzo if (unit < 0) 6244bf50f18SLuigi Rizzo return EBUSY; 6254bf50f18SLuigi Rizzo /* 6264bf50f18SLuigi Rizzo * We use the same MAC address generation method with tap 6274bf50f18SLuigi Rizzo * except for the highest octet is 00:be instead of 00:bd 6284bf50f18SLuigi Rizzo */ 6294bf50f18SLuigi Rizzo macaddr_hi = htons(0x00be); /* XXX tap + 1 */ 6304bf50f18SLuigi Rizzo macaddr_mid = (uint32_t) ticks; 6314bf50f18SLuigi Rizzo bcopy(&macaddr_hi, eaddr, sizeof(short)); 6324bf50f18SLuigi Rizzo bcopy(&macaddr_mid, &eaddr[2], sizeof(uint32_t)); 6334bf50f18SLuigi Rizzo eaddr[5] = (uint8_t)unit; 6344bf50f18SLuigi Rizzo 6354bf50f18SLuigi Rizzo ifp = if_alloc(IFT_ETHER); 6364bf50f18SLuigi Rizzo if (ifp == NULL) { 637a56136a1SVincenzo Maffione nm_prerr("if_alloc failed"); 6384bf50f18SLuigi Rizzo return ENOMEM; 6394bf50f18SLuigi Rizzo } 6404bf50f18SLuigi Rizzo if_initname(ifp, name, IF_DUNIT_NONE); 6414bf50f18SLuigi Rizzo ifp->if_mtu = 65536; 6424bf50f18SLuigi Rizzo ifp->if_flags = IFF_UP | IFF_SIMPLEX | IFF_MULTICAST; 6434bf50f18SLuigi Rizzo ifp->if_init = (void *)nm_vi_dummy; 6444bf50f18SLuigi Rizzo ifp->if_ioctl = nm_vi_dummy; 6454bf50f18SLuigi Rizzo ifp->if_start = nm_vi_start; 6464bf50f18SLuigi Rizzo ifp->if_mtu = ETHERMTU; 6474bf50f18SLuigi Rizzo IFQ_SET_MAXLEN(&ifp->if_snd, ifqmaxlen); 6484bf50f18SLuigi Rizzo ifp->if_capabilities |= IFCAP_LINKSTATE; 6494bf50f18SLuigi Rizzo ifp->if_capenable |= IFCAP_LINKSTATE; 6504bf50f18SLuigi Rizzo 6514bf50f18SLuigi Rizzo ether_ifattach(ifp, eaddr); 6524bf50f18SLuigi Rizzo *ret = ifp; 6534bf50f18SLuigi Rizzo return 0; 6544bf50f18SLuigi Rizzo } 65537e3a6d3SLuigi Rizzo 6564bf50f18SLuigi Rizzo /* unregister from the system and drop the final refcount */ 6574bf50f18SLuigi Rizzo void 65837e3a6d3SLuigi Rizzo nm_os_vi_detach(struct ifnet *ifp) 6594bf50f18SLuigi Rizzo { 6604bf50f18SLuigi Rizzo nm_vi_free_index(((char *)IF_LLADDR(ifp))[5]); 6614bf50f18SLuigi Rizzo ether_ifdetach(ifp); 6624bf50f18SLuigi Rizzo if_free(ifp); 6634bf50f18SLuigi Rizzo } 66417885a7bSLuigi Rizzo 6652ff91c17SVincenzo Maffione #ifdef WITH_EXTMEM 6662ff91c17SVincenzo Maffione #include <vm/vm_map.h> 667*ee7ffaa2SVincenzo Maffione #include <vm/vm_extern.h> 6682ff91c17SVincenzo Maffione #include <vm/vm_kern.h> 6692ff91c17SVincenzo Maffione struct nm_os_extmem { 6702ff91c17SVincenzo Maffione vm_object_t obj; 6712ff91c17SVincenzo Maffione vm_offset_t kva; 6722ff91c17SVincenzo Maffione vm_offset_t size; 673cfa866f6SMatt Macy uintptr_t scan; 6742ff91c17SVincenzo Maffione }; 6752ff91c17SVincenzo Maffione 6762ff91c17SVincenzo Maffione void 6772ff91c17SVincenzo Maffione nm_os_extmem_delete(struct nm_os_extmem *e) 6782ff91c17SVincenzo Maffione { 679a56136a1SVincenzo Maffione nm_prinf("freeing %zx bytes", (size_t)e->size); 6802ff91c17SVincenzo Maffione vm_map_remove(kernel_map, e->kva, e->kva + e->size); 6812ff91c17SVincenzo Maffione nm_os_free(e); 6822ff91c17SVincenzo Maffione } 6832ff91c17SVincenzo Maffione 6842ff91c17SVincenzo Maffione char * 6852ff91c17SVincenzo Maffione nm_os_extmem_nextpage(struct nm_os_extmem *e) 6862ff91c17SVincenzo Maffione { 6872ff91c17SVincenzo Maffione char *rv = NULL; 6882ff91c17SVincenzo Maffione if (e->scan < e->kva + e->size) { 6892ff91c17SVincenzo Maffione rv = (char *)e->scan; 6902ff91c17SVincenzo Maffione e->scan += PAGE_SIZE; 6912ff91c17SVincenzo Maffione } 6922ff91c17SVincenzo Maffione return rv; 6932ff91c17SVincenzo Maffione } 6942ff91c17SVincenzo Maffione 6952ff91c17SVincenzo Maffione int 6962ff91c17SVincenzo Maffione nm_os_extmem_isequal(struct nm_os_extmem *e1, struct nm_os_extmem *e2) 6972ff91c17SVincenzo Maffione { 6983535fae8SMatt Macy return (e1->obj == e2->obj); 6992ff91c17SVincenzo Maffione } 7002ff91c17SVincenzo Maffione 7012ff91c17SVincenzo Maffione int 7022ff91c17SVincenzo Maffione nm_os_extmem_nr_pages(struct nm_os_extmem *e) 7032ff91c17SVincenzo Maffione { 7042ff91c17SVincenzo Maffione return e->size >> PAGE_SHIFT; 7052ff91c17SVincenzo Maffione } 7062ff91c17SVincenzo Maffione 7072ff91c17SVincenzo Maffione struct nm_os_extmem * 7082ff91c17SVincenzo Maffione nm_os_extmem_create(unsigned long p, struct nmreq_pools_info *pi, int *perror) 7092ff91c17SVincenzo Maffione { 7102ff91c17SVincenzo Maffione vm_map_t map; 7112ff91c17SVincenzo Maffione vm_map_entry_t entry; 7122ff91c17SVincenzo Maffione vm_object_t obj; 7132ff91c17SVincenzo Maffione vm_prot_t prot; 7142ff91c17SVincenzo Maffione vm_pindex_t index; 7152ff91c17SVincenzo Maffione boolean_t wired; 7162ff91c17SVincenzo Maffione struct nm_os_extmem *e = NULL; 7172ff91c17SVincenzo Maffione int rv, error = 0; 7182ff91c17SVincenzo Maffione 7192ff91c17SVincenzo Maffione e = nm_os_malloc(sizeof(*e)); 7202ff91c17SVincenzo Maffione if (e == NULL) { 7212ff91c17SVincenzo Maffione error = ENOMEM; 7222ff91c17SVincenzo Maffione goto out; 7232ff91c17SVincenzo Maffione } 7242ff91c17SVincenzo Maffione 7252ff91c17SVincenzo Maffione map = &curthread->td_proc->p_vmspace->vm_map; 7262ff91c17SVincenzo Maffione rv = vm_map_lookup(&map, p, VM_PROT_RW, &entry, 7272ff91c17SVincenzo Maffione &obj, &index, &prot, &wired); 7282ff91c17SVincenzo Maffione if (rv != KERN_SUCCESS) { 729a56136a1SVincenzo Maffione nm_prerr("address %lx not found", p); 730*ee7ffaa2SVincenzo Maffione error = vm_mmap_to_errno(rv); 7312ff91c17SVincenzo Maffione goto out_free; 7322ff91c17SVincenzo Maffione } 733*ee7ffaa2SVincenzo Maffione vm_object_reference(obj); 734*ee7ffaa2SVincenzo Maffione 7352ff91c17SVincenzo Maffione /* check that we are given the whole vm_object ? */ 7362ff91c17SVincenzo Maffione vm_map_lookup_done(map, entry); 7372ff91c17SVincenzo Maffione 7382ff91c17SVincenzo Maffione e->obj = obj; 739*ee7ffaa2SVincenzo Maffione /* Wire the memory and add the vm_object to the kernel map, 740*ee7ffaa2SVincenzo Maffione * to make sure that it is not freed even if all the processes 741*ee7ffaa2SVincenzo Maffione * that are mmap()ing should munmap() it. 7422ff91c17SVincenzo Maffione */ 7432ff91c17SVincenzo Maffione e->kva = vm_map_min(kernel_map); 7442ff91c17SVincenzo Maffione e->size = obj->size << PAGE_SHIFT; 7452ff91c17SVincenzo Maffione rv = vm_map_find(kernel_map, obj, 0, &e->kva, e->size, 0, 7462ff91c17SVincenzo Maffione VMFS_OPTIMAL_SPACE, VM_PROT_READ | VM_PROT_WRITE, 7472ff91c17SVincenzo Maffione VM_PROT_READ | VM_PROT_WRITE, 0); 7482ff91c17SVincenzo Maffione if (rv != KERN_SUCCESS) { 749a56136a1SVincenzo Maffione nm_prerr("vm_map_find(%zx) failed", (size_t)e->size); 750*ee7ffaa2SVincenzo Maffione error = vm_mmap_to_errno(rv); 7512ff91c17SVincenzo Maffione goto out_rel; 7522ff91c17SVincenzo Maffione } 7532ff91c17SVincenzo Maffione rv = vm_map_wire(kernel_map, e->kva, e->kva + e->size, 7542ff91c17SVincenzo Maffione VM_MAP_WIRE_SYSTEM | VM_MAP_WIRE_NOHOLES); 7552ff91c17SVincenzo Maffione if (rv != KERN_SUCCESS) { 756a56136a1SVincenzo Maffione nm_prerr("vm_map_wire failed"); 757*ee7ffaa2SVincenzo Maffione error = vm_mmap_to_errno(rv); 7582ff91c17SVincenzo Maffione goto out_rem; 7592ff91c17SVincenzo Maffione } 7602ff91c17SVincenzo Maffione 7612ff91c17SVincenzo Maffione e->scan = e->kva; 7622ff91c17SVincenzo Maffione 7632ff91c17SVincenzo Maffione return e; 7642ff91c17SVincenzo Maffione 7652ff91c17SVincenzo Maffione out_rem: 7662ff91c17SVincenzo Maffione vm_map_remove(kernel_map, e->kva, e->kva + e->size); 7672ff91c17SVincenzo Maffione out_rel: 7682ff91c17SVincenzo Maffione vm_object_deallocate(e->obj); 769*ee7ffaa2SVincenzo Maffione e->obj = NULL; 7702ff91c17SVincenzo Maffione out_free: 7712ff91c17SVincenzo Maffione nm_os_free(e); 7722ff91c17SVincenzo Maffione out: 7732ff91c17SVincenzo Maffione if (perror) 7742ff91c17SVincenzo Maffione *perror = error; 7752ff91c17SVincenzo Maffione return NULL; 7762ff91c17SVincenzo Maffione } 7772ff91c17SVincenzo Maffione #endif /* WITH_EXTMEM */ 7782ff91c17SVincenzo Maffione 779b6e66be2SVincenzo Maffione /* ================== PTNETMAP GUEST SUPPORT ==================== */ 78037e3a6d3SLuigi Rizzo 781b6e66be2SVincenzo Maffione #ifdef WITH_PTNETMAP 78237e3a6d3SLuigi Rizzo #include <sys/bus.h> 78337e3a6d3SLuigi Rizzo #include <sys/rman.h> 78437e3a6d3SLuigi Rizzo #include <machine/bus.h> /* bus_dmamap_* */ 78537e3a6d3SLuigi Rizzo #include <machine/resource.h> 78637e3a6d3SLuigi Rizzo #include <dev/pci/pcivar.h> 78737e3a6d3SLuigi Rizzo #include <dev/pci/pcireg.h> 78837e3a6d3SLuigi Rizzo /* 78937e3a6d3SLuigi Rizzo * ptnetmap memory device (memdev) for freebsd guest, 79037e3a6d3SLuigi Rizzo * ssed to expose host netmap memory to the guest through a PCI BAR. 79137e3a6d3SLuigi Rizzo */ 79237e3a6d3SLuigi Rizzo 79337e3a6d3SLuigi Rizzo /* 79437e3a6d3SLuigi Rizzo * ptnetmap memdev private data structure 79537e3a6d3SLuigi Rizzo */ 79637e3a6d3SLuigi Rizzo struct ptnetmap_memdev { 79737e3a6d3SLuigi Rizzo device_t dev; 79837e3a6d3SLuigi Rizzo struct resource *pci_io; 79937e3a6d3SLuigi Rizzo struct resource *pci_mem; 80037e3a6d3SLuigi Rizzo struct netmap_mem_d *nm_mem; 80137e3a6d3SLuigi Rizzo }; 80237e3a6d3SLuigi Rizzo 80337e3a6d3SLuigi Rizzo static int ptn_memdev_probe(device_t); 80437e3a6d3SLuigi Rizzo static int ptn_memdev_attach(device_t); 80537e3a6d3SLuigi Rizzo static int ptn_memdev_detach(device_t); 80637e3a6d3SLuigi Rizzo static int ptn_memdev_shutdown(device_t); 80737e3a6d3SLuigi Rizzo 80837e3a6d3SLuigi Rizzo static device_method_t ptn_memdev_methods[] = { 80937e3a6d3SLuigi Rizzo DEVMETHOD(device_probe, ptn_memdev_probe), 81037e3a6d3SLuigi Rizzo DEVMETHOD(device_attach, ptn_memdev_attach), 81137e3a6d3SLuigi Rizzo DEVMETHOD(device_detach, ptn_memdev_detach), 81237e3a6d3SLuigi Rizzo DEVMETHOD(device_shutdown, ptn_memdev_shutdown), 81337e3a6d3SLuigi Rizzo DEVMETHOD_END 81437e3a6d3SLuigi Rizzo }; 81537e3a6d3SLuigi Rizzo 81637e3a6d3SLuigi Rizzo static driver_t ptn_memdev_driver = { 81737e3a6d3SLuigi Rizzo PTNETMAP_MEMDEV_NAME, 81837e3a6d3SLuigi Rizzo ptn_memdev_methods, 81937e3a6d3SLuigi Rizzo sizeof(struct ptnetmap_memdev), 82037e3a6d3SLuigi Rizzo }; 82137e3a6d3SLuigi Rizzo 82237e3a6d3SLuigi Rizzo /* We use (SI_ORDER_MIDDLE+1) here, see DEV_MODULE_ORDERED() invocation 82337e3a6d3SLuigi Rizzo * below. */ 82437e3a6d3SLuigi Rizzo static devclass_t ptnetmap_devclass; 82537e3a6d3SLuigi Rizzo DRIVER_MODULE_ORDERED(ptn_memdev, pci, ptn_memdev_driver, ptnetmap_devclass, 82637e3a6d3SLuigi Rizzo NULL, NULL, SI_ORDER_MIDDLE + 1); 82737e3a6d3SLuigi Rizzo 82837e3a6d3SLuigi Rizzo /* 82937e3a6d3SLuigi Rizzo * Map host netmap memory through PCI-BAR in the guest OS, 83037e3a6d3SLuigi Rizzo * returning physical (nm_paddr) and virtual (nm_addr) addresses 83137e3a6d3SLuigi Rizzo * of the netmap memory mapped in the guest. 83237e3a6d3SLuigi Rizzo */ 83337e3a6d3SLuigi Rizzo int 834a2a74091SLuigi Rizzo nm_os_pt_memdev_iomap(struct ptnetmap_memdev *ptn_dev, vm_paddr_t *nm_paddr, 835844a6f0cSLuigi Rizzo void **nm_addr, uint64_t *mem_size) 83637e3a6d3SLuigi Rizzo { 83737e3a6d3SLuigi Rizzo int rid; 83837e3a6d3SLuigi Rizzo 839a56136a1SVincenzo Maffione nm_prinf("ptn_memdev_driver iomap"); 84037e3a6d3SLuigi Rizzo 84137e3a6d3SLuigi Rizzo rid = PCIR_BAR(PTNETMAP_MEM_PCI_BAR); 842844a6f0cSLuigi Rizzo *mem_size = bus_read_4(ptn_dev->pci_io, PTNET_MDEV_IO_MEMSIZE_HI); 843844a6f0cSLuigi Rizzo *mem_size = bus_read_4(ptn_dev->pci_io, PTNET_MDEV_IO_MEMSIZE_LO) | 844844a6f0cSLuigi Rizzo (*mem_size << 32); 84537e3a6d3SLuigi Rizzo 84637e3a6d3SLuigi Rizzo /* map memory allocator */ 84737e3a6d3SLuigi Rizzo ptn_dev->pci_mem = bus_alloc_resource(ptn_dev->dev, SYS_RES_MEMORY, 848844a6f0cSLuigi Rizzo &rid, 0, ~0, *mem_size, RF_ACTIVE); 84937e3a6d3SLuigi Rizzo if (ptn_dev->pci_mem == NULL) { 85037e3a6d3SLuigi Rizzo *nm_paddr = 0; 8514dd44461SLuiz Otavio O Souza *nm_addr = NULL; 85237e3a6d3SLuigi Rizzo return ENOMEM; 85337e3a6d3SLuigi Rizzo } 85437e3a6d3SLuigi Rizzo 85537e3a6d3SLuigi Rizzo *nm_paddr = rman_get_start(ptn_dev->pci_mem); 85637e3a6d3SLuigi Rizzo *nm_addr = rman_get_virtual(ptn_dev->pci_mem); 85737e3a6d3SLuigi Rizzo 858a56136a1SVincenzo Maffione nm_prinf("=== BAR %d start %lx len %lx mem_size %lx ===", 85937e3a6d3SLuigi Rizzo PTNETMAP_MEM_PCI_BAR, 860a2a74091SLuigi Rizzo (unsigned long)(*nm_paddr), 861a2a74091SLuigi Rizzo (unsigned long)rman_get_size(ptn_dev->pci_mem), 862844a6f0cSLuigi Rizzo (unsigned long)*mem_size); 86337e3a6d3SLuigi Rizzo return (0); 86437e3a6d3SLuigi Rizzo } 86537e3a6d3SLuigi Rizzo 866844a6f0cSLuigi Rizzo uint32_t 867844a6f0cSLuigi Rizzo nm_os_pt_memdev_ioread(struct ptnetmap_memdev *ptn_dev, unsigned int reg) 868844a6f0cSLuigi Rizzo { 869844a6f0cSLuigi Rizzo return bus_read_4(ptn_dev->pci_io, reg); 870844a6f0cSLuigi Rizzo } 871844a6f0cSLuigi Rizzo 87237e3a6d3SLuigi Rizzo /* Unmap host netmap memory. */ 87337e3a6d3SLuigi Rizzo void 87437e3a6d3SLuigi Rizzo nm_os_pt_memdev_iounmap(struct ptnetmap_memdev *ptn_dev) 87537e3a6d3SLuigi Rizzo { 876a56136a1SVincenzo Maffione nm_prinf("ptn_memdev_driver iounmap"); 87737e3a6d3SLuigi Rizzo 87837e3a6d3SLuigi Rizzo if (ptn_dev->pci_mem) { 87937e3a6d3SLuigi Rizzo bus_release_resource(ptn_dev->dev, SYS_RES_MEMORY, 88037e3a6d3SLuigi Rizzo PCIR_BAR(PTNETMAP_MEM_PCI_BAR), ptn_dev->pci_mem); 88137e3a6d3SLuigi Rizzo ptn_dev->pci_mem = NULL; 88237e3a6d3SLuigi Rizzo } 88337e3a6d3SLuigi Rizzo } 88437e3a6d3SLuigi Rizzo 88537e3a6d3SLuigi Rizzo /* Device identification routine, return BUS_PROBE_DEFAULT on success, 88637e3a6d3SLuigi Rizzo * positive on failure */ 88737e3a6d3SLuigi Rizzo static int 88837e3a6d3SLuigi Rizzo ptn_memdev_probe(device_t dev) 88937e3a6d3SLuigi Rizzo { 89037e3a6d3SLuigi Rizzo char desc[256]; 89137e3a6d3SLuigi Rizzo 89237e3a6d3SLuigi Rizzo if (pci_get_vendor(dev) != PTNETMAP_PCI_VENDOR_ID) 89337e3a6d3SLuigi Rizzo return (ENXIO); 89437e3a6d3SLuigi Rizzo if (pci_get_device(dev) != PTNETMAP_PCI_DEVICE_ID) 89537e3a6d3SLuigi Rizzo return (ENXIO); 89637e3a6d3SLuigi Rizzo 89737e3a6d3SLuigi Rizzo snprintf(desc, sizeof(desc), "%s PCI adapter", 89837e3a6d3SLuigi Rizzo PTNETMAP_MEMDEV_NAME); 89937e3a6d3SLuigi Rizzo device_set_desc_copy(dev, desc); 90037e3a6d3SLuigi Rizzo 90137e3a6d3SLuigi Rizzo return (BUS_PROBE_DEFAULT); 90237e3a6d3SLuigi Rizzo } 90337e3a6d3SLuigi Rizzo 90437e3a6d3SLuigi Rizzo /* Device initialization routine. */ 90537e3a6d3SLuigi Rizzo static int 90637e3a6d3SLuigi Rizzo ptn_memdev_attach(device_t dev) 90737e3a6d3SLuigi Rizzo { 90837e3a6d3SLuigi Rizzo struct ptnetmap_memdev *ptn_dev; 90937e3a6d3SLuigi Rizzo int rid; 91037e3a6d3SLuigi Rizzo uint16_t mem_id; 91137e3a6d3SLuigi Rizzo 91237e3a6d3SLuigi Rizzo ptn_dev = device_get_softc(dev); 91337e3a6d3SLuigi Rizzo ptn_dev->dev = dev; 91437e3a6d3SLuigi Rizzo 91537e3a6d3SLuigi Rizzo pci_enable_busmaster(dev); 91637e3a6d3SLuigi Rizzo 91737e3a6d3SLuigi Rizzo rid = PCIR_BAR(PTNETMAP_IO_PCI_BAR); 91837e3a6d3SLuigi Rizzo ptn_dev->pci_io = bus_alloc_resource_any(dev, SYS_RES_IOPORT, &rid, 91937e3a6d3SLuigi Rizzo RF_ACTIVE); 92037e3a6d3SLuigi Rizzo if (ptn_dev->pci_io == NULL) { 92137e3a6d3SLuigi Rizzo device_printf(dev, "cannot map I/O space\n"); 92237e3a6d3SLuigi Rizzo return (ENXIO); 92337e3a6d3SLuigi Rizzo } 92437e3a6d3SLuigi Rizzo 925844a6f0cSLuigi Rizzo mem_id = bus_read_4(ptn_dev->pci_io, PTNET_MDEV_IO_MEMID); 92637e3a6d3SLuigi Rizzo 92737e3a6d3SLuigi Rizzo /* create guest allocator */ 92837e3a6d3SLuigi Rizzo ptn_dev->nm_mem = netmap_mem_pt_guest_attach(ptn_dev, mem_id); 92937e3a6d3SLuigi Rizzo if (ptn_dev->nm_mem == NULL) { 93037e3a6d3SLuigi Rizzo ptn_memdev_detach(dev); 93137e3a6d3SLuigi Rizzo return (ENOMEM); 93237e3a6d3SLuigi Rizzo } 93337e3a6d3SLuigi Rizzo netmap_mem_get(ptn_dev->nm_mem); 93437e3a6d3SLuigi Rizzo 935a56136a1SVincenzo Maffione nm_prinf("ptnetmap memdev attached, host memid: %u", mem_id); 93637e3a6d3SLuigi Rizzo 93737e3a6d3SLuigi Rizzo return (0); 93837e3a6d3SLuigi Rizzo } 93937e3a6d3SLuigi Rizzo 94037e3a6d3SLuigi Rizzo /* Device removal routine. */ 94137e3a6d3SLuigi Rizzo static int 94237e3a6d3SLuigi Rizzo ptn_memdev_detach(device_t dev) 94337e3a6d3SLuigi Rizzo { 94437e3a6d3SLuigi Rizzo struct ptnetmap_memdev *ptn_dev; 94537e3a6d3SLuigi Rizzo 94637e3a6d3SLuigi Rizzo ptn_dev = device_get_softc(dev); 94737e3a6d3SLuigi Rizzo 94837e3a6d3SLuigi Rizzo if (ptn_dev->nm_mem) { 949a56136a1SVincenzo Maffione nm_prinf("ptnetmap memdev detached, host memid %u", 950a56136a1SVincenzo Maffione netmap_mem_get_id(ptn_dev->nm_mem)); 95137e3a6d3SLuigi Rizzo netmap_mem_put(ptn_dev->nm_mem); 95237e3a6d3SLuigi Rizzo ptn_dev->nm_mem = NULL; 95337e3a6d3SLuigi Rizzo } 95437e3a6d3SLuigi Rizzo if (ptn_dev->pci_mem) { 95537e3a6d3SLuigi Rizzo bus_release_resource(dev, SYS_RES_MEMORY, 95637e3a6d3SLuigi Rizzo PCIR_BAR(PTNETMAP_MEM_PCI_BAR), ptn_dev->pci_mem); 95737e3a6d3SLuigi Rizzo ptn_dev->pci_mem = NULL; 95837e3a6d3SLuigi Rizzo } 95937e3a6d3SLuigi Rizzo if (ptn_dev->pci_io) { 96037e3a6d3SLuigi Rizzo bus_release_resource(dev, SYS_RES_IOPORT, 96137e3a6d3SLuigi Rizzo PCIR_BAR(PTNETMAP_IO_PCI_BAR), ptn_dev->pci_io); 96237e3a6d3SLuigi Rizzo ptn_dev->pci_io = NULL; 96337e3a6d3SLuigi Rizzo } 96437e3a6d3SLuigi Rizzo 96537e3a6d3SLuigi Rizzo return (0); 96637e3a6d3SLuigi Rizzo } 96737e3a6d3SLuigi Rizzo 96837e3a6d3SLuigi Rizzo static int 96937e3a6d3SLuigi Rizzo ptn_memdev_shutdown(device_t dev) 97037e3a6d3SLuigi Rizzo { 97137e3a6d3SLuigi Rizzo return bus_generic_shutdown(dev); 97237e3a6d3SLuigi Rizzo } 97337e3a6d3SLuigi Rizzo 974b6e66be2SVincenzo Maffione #endif /* WITH_PTNETMAP */ 97537e3a6d3SLuigi Rizzo 976f9790aebSLuigi Rizzo /* 977f9790aebSLuigi Rizzo * In order to track whether pages are still mapped, we hook into 978f9790aebSLuigi Rizzo * the standard cdev_pager and intercept the constructor and 979f9790aebSLuigi Rizzo * destructor. 980f9790aebSLuigi Rizzo */ 981f9790aebSLuigi Rizzo 982f9790aebSLuigi Rizzo struct netmap_vm_handle_t { 983f9790aebSLuigi Rizzo struct cdev *dev; 984f9790aebSLuigi Rizzo struct netmap_priv_d *priv; 985f9790aebSLuigi Rizzo }; 986f9790aebSLuigi Rizzo 98717885a7bSLuigi Rizzo 988f9790aebSLuigi Rizzo static int 989f9790aebSLuigi Rizzo netmap_dev_pager_ctor(void *handle, vm_ooffset_t size, vm_prot_t prot, 990f9790aebSLuigi Rizzo vm_ooffset_t foff, struct ucred *cred, u_short *color) 991f9790aebSLuigi Rizzo { 992f9790aebSLuigi Rizzo struct netmap_vm_handle_t *vmh = handle; 993f0ea3689SLuigi Rizzo 994f0ea3689SLuigi Rizzo if (netmap_verbose) 995a56136a1SVincenzo Maffione nm_prinf("handle %p size %jd prot %d foff %jd", 996f9790aebSLuigi Rizzo handle, (intmax_t)size, prot, (intmax_t)foff); 9974e93beffSLuigi Rizzo if (color) 9984e93beffSLuigi Rizzo *color = 0; 999f9790aebSLuigi Rizzo dev_ref(vmh->dev); 1000f9790aebSLuigi Rizzo return 0; 1001f9790aebSLuigi Rizzo } 1002f9790aebSLuigi Rizzo 1003f9790aebSLuigi Rizzo 1004f9790aebSLuigi Rizzo static void 1005f9790aebSLuigi Rizzo netmap_dev_pager_dtor(void *handle) 1006f9790aebSLuigi Rizzo { 1007f9790aebSLuigi Rizzo struct netmap_vm_handle_t *vmh = handle; 1008f9790aebSLuigi Rizzo struct cdev *dev = vmh->dev; 1009f9790aebSLuigi Rizzo struct netmap_priv_d *priv = vmh->priv; 1010f0ea3689SLuigi Rizzo 1011f0ea3689SLuigi Rizzo if (netmap_verbose) 1012a56136a1SVincenzo Maffione nm_prinf("handle %p", handle); 1013f9790aebSLuigi Rizzo netmap_dtor(priv); 1014f9790aebSLuigi Rizzo free(vmh, M_DEVBUF); 1015f9790aebSLuigi Rizzo dev_rel(dev); 1016f9790aebSLuigi Rizzo } 1017f9790aebSLuigi Rizzo 101817885a7bSLuigi Rizzo 1019f9790aebSLuigi Rizzo static int 1020f9790aebSLuigi Rizzo netmap_dev_pager_fault(vm_object_t object, vm_ooffset_t offset, 1021f9790aebSLuigi Rizzo int prot, vm_page_t *mres) 1022f9790aebSLuigi Rizzo { 1023f9790aebSLuigi Rizzo struct netmap_vm_handle_t *vmh = object->handle; 1024f9790aebSLuigi Rizzo struct netmap_priv_d *priv = vmh->priv; 1025847bf383SLuigi Rizzo struct netmap_adapter *na = priv->np_na; 1026f9790aebSLuigi Rizzo vm_paddr_t paddr; 1027f9790aebSLuigi Rizzo vm_page_t page; 1028f9790aebSLuigi Rizzo vm_memattr_t memattr; 1029f9790aebSLuigi Rizzo 1030a56136a1SVincenzo Maffione nm_prdis("object %p offset %jd prot %d mres %p", 1031f9790aebSLuigi Rizzo object, (intmax_t)offset, prot, mres); 1032f9790aebSLuigi Rizzo memattr = object->memattr; 1033847bf383SLuigi Rizzo paddr = netmap_mem_ofstophys(na->nm_mem, offset); 1034f9790aebSLuigi Rizzo if (paddr == 0) 1035f9790aebSLuigi Rizzo return VM_PAGER_FAIL; 1036f9790aebSLuigi Rizzo 1037f9790aebSLuigi Rizzo if (((*mres)->flags & PG_FICTITIOUS) != 0) { 1038f9790aebSLuigi Rizzo /* 1039f9790aebSLuigi Rizzo * If the passed in result page is a fake page, update it with 1040f9790aebSLuigi Rizzo * the new physical address. 1041f9790aebSLuigi Rizzo */ 1042f9790aebSLuigi Rizzo page = *mres; 1043f9790aebSLuigi Rizzo vm_page_updatefake(page, paddr, memattr); 1044f9790aebSLuigi Rizzo } else { 1045f9790aebSLuigi Rizzo /* 1046f9790aebSLuigi Rizzo * Replace the passed in reqpage page with our own fake page and 1047f9790aebSLuigi Rizzo * free up the all of the original pages. 1048f9790aebSLuigi Rizzo */ 1049f9790aebSLuigi Rizzo #ifndef VM_OBJECT_WUNLOCK /* FreeBSD < 10.x */ 1050f9790aebSLuigi Rizzo #define VM_OBJECT_WUNLOCK VM_OBJECT_UNLOCK 1051f9790aebSLuigi Rizzo #define VM_OBJECT_WLOCK VM_OBJECT_LOCK 1052f9790aebSLuigi Rizzo #endif /* VM_OBJECT_WUNLOCK */ 1053f9790aebSLuigi Rizzo 1054f9790aebSLuigi Rizzo VM_OBJECT_WUNLOCK(object); 1055f9790aebSLuigi Rizzo page = vm_page_getfake(paddr, memattr); 1056f9790aebSLuigi Rizzo VM_OBJECT_WLOCK(object); 10573cf3b4e6SJeff Roberson vm_page_replace(page, object, (*mres)->pindex, *mres); 1058f9790aebSLuigi Rizzo *mres = page; 1059f9790aebSLuigi Rizzo } 10600012f373SJeff Roberson vm_page_valid(page); 1061f9790aebSLuigi Rizzo return (VM_PAGER_OK); 1062f9790aebSLuigi Rizzo } 1063f9790aebSLuigi Rizzo 1064f9790aebSLuigi Rizzo 1065f9790aebSLuigi Rizzo static struct cdev_pager_ops netmap_cdev_pager_ops = { 1066f9790aebSLuigi Rizzo .cdev_pg_ctor = netmap_dev_pager_ctor, 1067f9790aebSLuigi Rizzo .cdev_pg_dtor = netmap_dev_pager_dtor, 1068f9790aebSLuigi Rizzo .cdev_pg_fault = netmap_dev_pager_fault, 1069f9790aebSLuigi Rizzo }; 1070f9790aebSLuigi Rizzo 1071f9790aebSLuigi Rizzo 1072f9790aebSLuigi Rizzo static int 1073f9790aebSLuigi Rizzo netmap_mmap_single(struct cdev *cdev, vm_ooffset_t *foff, 1074f9790aebSLuigi Rizzo vm_size_t objsize, vm_object_t *objp, int prot) 1075f9790aebSLuigi Rizzo { 1076f9790aebSLuigi Rizzo int error; 1077f9790aebSLuigi Rizzo struct netmap_vm_handle_t *vmh; 1078f9790aebSLuigi Rizzo struct netmap_priv_d *priv; 1079f9790aebSLuigi Rizzo vm_object_t obj; 1080f9790aebSLuigi Rizzo 1081f0ea3689SLuigi Rizzo if (netmap_verbose) 1082a56136a1SVincenzo Maffione nm_prinf("cdev %p foff %jd size %jd objp %p prot %d", cdev, 1083f9790aebSLuigi Rizzo (intmax_t )*foff, (intmax_t )objsize, objp, prot); 1084f9790aebSLuigi Rizzo 1085f9790aebSLuigi Rizzo vmh = malloc(sizeof(struct netmap_vm_handle_t), M_DEVBUF, 1086f9790aebSLuigi Rizzo M_NOWAIT | M_ZERO); 1087f9790aebSLuigi Rizzo if (vmh == NULL) 1088f9790aebSLuigi Rizzo return ENOMEM; 1089f9790aebSLuigi Rizzo vmh->dev = cdev; 1090f9790aebSLuigi Rizzo 1091f9790aebSLuigi Rizzo NMG_LOCK(); 1092f9790aebSLuigi Rizzo error = devfs_get_cdevpriv((void**)&priv); 1093f9790aebSLuigi Rizzo if (error) 1094f9790aebSLuigi Rizzo goto err_unlock; 1095847bf383SLuigi Rizzo if (priv->np_nifp == NULL) { 1096847bf383SLuigi Rizzo error = EINVAL; 1097847bf383SLuigi Rizzo goto err_unlock; 1098847bf383SLuigi Rizzo } 1099f9790aebSLuigi Rizzo vmh->priv = priv; 11008fd44c93SLuigi Rizzo priv->np_refs++; 1101f9790aebSLuigi Rizzo NMG_UNLOCK(); 1102f9790aebSLuigi Rizzo 1103f9790aebSLuigi Rizzo obj = cdev_pager_allocate(vmh, OBJT_DEVICE, 1104f9790aebSLuigi Rizzo &netmap_cdev_pager_ops, objsize, prot, 1105f9790aebSLuigi Rizzo *foff, NULL); 1106f9790aebSLuigi Rizzo if (obj == NULL) { 1107a56136a1SVincenzo Maffione nm_prerr("cdev_pager_allocate failed"); 1108f9790aebSLuigi Rizzo error = EINVAL; 1109f9790aebSLuigi Rizzo goto err_deref; 1110f9790aebSLuigi Rizzo } 1111f9790aebSLuigi Rizzo 1112f9790aebSLuigi Rizzo *objp = obj; 1113f9790aebSLuigi Rizzo return 0; 1114f9790aebSLuigi Rizzo 1115f9790aebSLuigi Rizzo err_deref: 1116f9790aebSLuigi Rizzo NMG_LOCK(); 11178fd44c93SLuigi Rizzo priv->np_refs--; 1118f9790aebSLuigi Rizzo err_unlock: 1119f9790aebSLuigi Rizzo NMG_UNLOCK(); 1120f9790aebSLuigi Rizzo // err: 1121f9790aebSLuigi Rizzo free(vmh, M_DEVBUF); 1122f9790aebSLuigi Rizzo return error; 1123f9790aebSLuigi Rizzo } 1124f9790aebSLuigi Rizzo 1125847bf383SLuigi Rizzo /* 11268fd44c93SLuigi Rizzo * On FreeBSD the close routine is only called on the last close on 11278fd44c93SLuigi Rizzo * the device (/dev/netmap) so we cannot do anything useful. 11288fd44c93SLuigi Rizzo * To track close() on individual file descriptors we pass netmap_dtor() to 1129847bf383SLuigi Rizzo * devfs_set_cdevpriv() on open(). The FreeBSD kernel will call the destructor 1130847bf383SLuigi Rizzo * when the last fd pointing to the device is closed. 1131847bf383SLuigi Rizzo * 11328fd44c93SLuigi Rizzo * Note that FreeBSD does not even munmap() on close() so we also have 11338fd44c93SLuigi Rizzo * to track mmap() ourselves, and postpone the call to 1134847bf383SLuigi Rizzo * netmap_dtor() is called when the process has no open fds and no active 1135847bf383SLuigi Rizzo * memory maps on /dev/netmap, as in linux. 1136847bf383SLuigi Rizzo */ 1137f9790aebSLuigi Rizzo static int 1138f9790aebSLuigi Rizzo netmap_close(struct cdev *dev, int fflag, int devtype, struct thread *td) 1139f9790aebSLuigi Rizzo { 1140f9790aebSLuigi Rizzo if (netmap_verbose) 1141a56136a1SVincenzo Maffione nm_prinf("dev %p fflag 0x%x devtype %d td %p", 1142f9790aebSLuigi Rizzo dev, fflag, devtype, td); 1143f9790aebSLuigi Rizzo return 0; 1144f9790aebSLuigi Rizzo } 1145f9790aebSLuigi Rizzo 1146f9790aebSLuigi Rizzo 1147f9790aebSLuigi Rizzo static int 1148f9790aebSLuigi Rizzo netmap_open(struct cdev *dev, int oflags, int devtype, struct thread *td) 1149f9790aebSLuigi Rizzo { 1150f9790aebSLuigi Rizzo struct netmap_priv_d *priv; 1151f9790aebSLuigi Rizzo int error; 1152f9790aebSLuigi Rizzo 1153f9790aebSLuigi Rizzo (void)dev; 1154f9790aebSLuigi Rizzo (void)oflags; 1155f9790aebSLuigi Rizzo (void)devtype; 1156f9790aebSLuigi Rizzo (void)td; 1157f9790aebSLuigi Rizzo 115837e3a6d3SLuigi Rizzo NMG_LOCK(); 115937e3a6d3SLuigi Rizzo priv = netmap_priv_new(); 116037e3a6d3SLuigi Rizzo if (priv == NULL) { 116137e3a6d3SLuigi Rizzo error = ENOMEM; 116237e3a6d3SLuigi Rizzo goto out; 116337e3a6d3SLuigi Rizzo } 1164f9790aebSLuigi Rizzo error = devfs_set_cdevpriv(priv, netmap_dtor); 11658fd44c93SLuigi Rizzo if (error) { 116637e3a6d3SLuigi Rizzo netmap_priv_delete(priv); 11678fd44c93SLuigi Rizzo } 116837e3a6d3SLuigi Rizzo out: 116937e3a6d3SLuigi Rizzo NMG_UNLOCK(); 1170f9790aebSLuigi Rizzo return error; 1171f9790aebSLuigi Rizzo } 1172f9790aebSLuigi Rizzo 117337e3a6d3SLuigi Rizzo /******************** kthread wrapper ****************/ 117437e3a6d3SLuigi Rizzo #include <sys/sysproto.h> 117537e3a6d3SLuigi Rizzo u_int 117637e3a6d3SLuigi Rizzo nm_os_ncpus(void) 117737e3a6d3SLuigi Rizzo { 117837e3a6d3SLuigi Rizzo return mp_maxid + 1; 117937e3a6d3SLuigi Rizzo } 118037e3a6d3SLuigi Rizzo 1181c3e9b4dbSLuiz Otavio O Souza struct nm_kctx_ctx { 1182b6e66be2SVincenzo Maffione /* Userspace thread (kthread creator). */ 1183b6e66be2SVincenzo Maffione struct thread *user_td; 118437e3a6d3SLuigi Rizzo 118537e3a6d3SLuigi Rizzo /* worker function and parameter */ 1186c3e9b4dbSLuiz Otavio O Souza nm_kctx_worker_fn_t worker_fn; 118737e3a6d3SLuigi Rizzo void *worker_private; 118837e3a6d3SLuigi Rizzo 1189c3e9b4dbSLuiz Otavio O Souza struct nm_kctx *nmk; 119037e3a6d3SLuigi Rizzo 119137e3a6d3SLuigi Rizzo /* integer to manage multiple worker contexts (e.g., RX or TX on ptnetmap) */ 119237e3a6d3SLuigi Rizzo long type; 119337e3a6d3SLuigi Rizzo }; 119437e3a6d3SLuigi Rizzo 1195c3e9b4dbSLuiz Otavio O Souza struct nm_kctx { 119637e3a6d3SLuigi Rizzo struct thread *worker; 119737e3a6d3SLuigi Rizzo struct mtx worker_lock; 1198c3e9b4dbSLuiz Otavio O Souza struct nm_kctx_ctx worker_ctx; 119937e3a6d3SLuigi Rizzo int run; /* used to stop kthread */ 120037e3a6d3SLuigi Rizzo int attach_user; /* kthread attached to user_process */ 120137e3a6d3SLuigi Rizzo int affinity; 120237e3a6d3SLuigi Rizzo }; 120337e3a6d3SLuigi Rizzo 120437e3a6d3SLuigi Rizzo static void 1205c3e9b4dbSLuiz Otavio O Souza nm_kctx_worker(void *data) 120637e3a6d3SLuigi Rizzo { 1207c3e9b4dbSLuiz Otavio O Souza struct nm_kctx *nmk = data; 1208c3e9b4dbSLuiz Otavio O Souza struct nm_kctx_ctx *ctx = &nmk->worker_ctx; 120937e3a6d3SLuigi Rizzo 121037e3a6d3SLuigi Rizzo if (nmk->affinity >= 0) { 121137e3a6d3SLuigi Rizzo thread_lock(curthread); 121237e3a6d3SLuigi Rizzo sched_bind(curthread, nmk->affinity); 121337e3a6d3SLuigi Rizzo thread_unlock(curthread); 121437e3a6d3SLuigi Rizzo } 121537e3a6d3SLuigi Rizzo 121637e3a6d3SLuigi Rizzo while (nmk->run) { 121737e3a6d3SLuigi Rizzo /* 121837e3a6d3SLuigi Rizzo * check if the parent process dies 121937e3a6d3SLuigi Rizzo * (when kthread is attached to user process) 122037e3a6d3SLuigi Rizzo */ 122137e3a6d3SLuigi Rizzo if (ctx->user_td) { 122237e3a6d3SLuigi Rizzo PROC_LOCK(curproc); 122337e3a6d3SLuigi Rizzo thread_suspend_check(0); 122437e3a6d3SLuigi Rizzo PROC_UNLOCK(curproc); 122537e3a6d3SLuigi Rizzo } else { 122637e3a6d3SLuigi Rizzo kthread_suspend_check(); 122737e3a6d3SLuigi Rizzo } 122837e3a6d3SLuigi Rizzo 1229b6e66be2SVincenzo Maffione /* Continuously execute worker process. */ 1230b6e66be2SVincenzo Maffione ctx->worker_fn(ctx->worker_private); /* worker body */ 123137e3a6d3SLuigi Rizzo } 123237e3a6d3SLuigi Rizzo 123337e3a6d3SLuigi Rizzo kthread_exit(); 123437e3a6d3SLuigi Rizzo } 123537e3a6d3SLuigi Rizzo 123637e3a6d3SLuigi Rizzo void 1237c3e9b4dbSLuiz Otavio O Souza nm_os_kctx_worker_setaff(struct nm_kctx *nmk, int affinity) 123837e3a6d3SLuigi Rizzo { 123937e3a6d3SLuigi Rizzo nmk->affinity = affinity; 124037e3a6d3SLuigi Rizzo } 124137e3a6d3SLuigi Rizzo 1242c3e9b4dbSLuiz Otavio O Souza struct nm_kctx * 12432ff91c17SVincenzo Maffione nm_os_kctx_create(struct nm_kctx_cfg *cfg, void *opaque) 124437e3a6d3SLuigi Rizzo { 1245c3e9b4dbSLuiz Otavio O Souza struct nm_kctx *nmk = NULL; 1246844a6f0cSLuigi Rizzo 124737e3a6d3SLuigi Rizzo nmk = malloc(sizeof(*nmk), M_DEVBUF, M_NOWAIT | M_ZERO); 124837e3a6d3SLuigi Rizzo if (!nmk) 124937e3a6d3SLuigi Rizzo return NULL; 125037e3a6d3SLuigi Rizzo 1251869d8878SAdrian Chadd mtx_init(&nmk->worker_lock, "nm_kthread lock", NULL, MTX_DEF); 125237e3a6d3SLuigi Rizzo nmk->worker_ctx.worker_fn = cfg->worker_fn; 125337e3a6d3SLuigi Rizzo nmk->worker_ctx.worker_private = cfg->worker_private; 125437e3a6d3SLuigi Rizzo nmk->worker_ctx.type = cfg->type; 125537e3a6d3SLuigi Rizzo nmk->affinity = -1; 125637e3a6d3SLuigi Rizzo 125737e3a6d3SLuigi Rizzo /* attach kthread to user process (ptnetmap) */ 125837e3a6d3SLuigi Rizzo nmk->attach_user = cfg->attach_user; 125937e3a6d3SLuigi Rizzo 126037e3a6d3SLuigi Rizzo return nmk; 126137e3a6d3SLuigi Rizzo } 126237e3a6d3SLuigi Rizzo 126337e3a6d3SLuigi Rizzo int 1264c3e9b4dbSLuiz Otavio O Souza nm_os_kctx_worker_start(struct nm_kctx *nmk) 126537e3a6d3SLuigi Rizzo { 126637e3a6d3SLuigi Rizzo struct proc *p = NULL; 126737e3a6d3SLuigi Rizzo int error = 0; 126837e3a6d3SLuigi Rizzo 1269b6e66be2SVincenzo Maffione /* Temporarily disable this function as it is currently broken 1270b6e66be2SVincenzo Maffione * and causes kernel crashes. The failure can be triggered by 1271b6e66be2SVincenzo Maffione * the "vale_polling_enable_disable" test in ctrl-api-test.c. */ 1272b6e66be2SVincenzo Maffione return EOPNOTSUPP; 1273b6e66be2SVincenzo Maffione 1274b6e66be2SVincenzo Maffione if (nmk->worker) 127537e3a6d3SLuigi Rizzo return EBUSY; 127637e3a6d3SLuigi Rizzo 127737e3a6d3SLuigi Rizzo /* check if we want to attach kthread to user process */ 127837e3a6d3SLuigi Rizzo if (nmk->attach_user) { 127937e3a6d3SLuigi Rizzo nmk->worker_ctx.user_td = curthread; 128037e3a6d3SLuigi Rizzo p = curthread->td_proc; 128137e3a6d3SLuigi Rizzo } 128237e3a6d3SLuigi Rizzo 128337e3a6d3SLuigi Rizzo /* enable kthread main loop */ 128437e3a6d3SLuigi Rizzo nmk->run = 1; 128537e3a6d3SLuigi Rizzo /* create kthread */ 1286c3e9b4dbSLuiz Otavio O Souza if((error = kthread_add(nm_kctx_worker, nmk, p, 128737e3a6d3SLuigi Rizzo &nmk->worker, RFNOWAIT /* to be checked */, 0, "nm-kthread-%ld", 128837e3a6d3SLuigi Rizzo nmk->worker_ctx.type))) { 128937e3a6d3SLuigi Rizzo goto err; 129037e3a6d3SLuigi Rizzo } 129137e3a6d3SLuigi Rizzo 1292a56136a1SVincenzo Maffione nm_prinf("nm_kthread started td %p", nmk->worker); 129337e3a6d3SLuigi Rizzo 129437e3a6d3SLuigi Rizzo return 0; 129537e3a6d3SLuigi Rizzo err: 1296a56136a1SVincenzo Maffione nm_prerr("nm_kthread start failed err %d", error); 129737e3a6d3SLuigi Rizzo nmk->worker = NULL; 129837e3a6d3SLuigi Rizzo return error; 129937e3a6d3SLuigi Rizzo } 130037e3a6d3SLuigi Rizzo 130137e3a6d3SLuigi Rizzo void 1302c3e9b4dbSLuiz Otavio O Souza nm_os_kctx_worker_stop(struct nm_kctx *nmk) 130337e3a6d3SLuigi Rizzo { 1304b6e66be2SVincenzo Maffione if (!nmk->worker) 130537e3a6d3SLuigi Rizzo return; 1306b6e66be2SVincenzo Maffione 130737e3a6d3SLuigi Rizzo /* tell to kthread to exit from main loop */ 130837e3a6d3SLuigi Rizzo nmk->run = 0; 130937e3a6d3SLuigi Rizzo 131037e3a6d3SLuigi Rizzo /* wake up kthread if it sleeps */ 131137e3a6d3SLuigi Rizzo kthread_resume(nmk->worker); 131237e3a6d3SLuigi Rizzo 131337e3a6d3SLuigi Rizzo nmk->worker = NULL; 131437e3a6d3SLuigi Rizzo } 131537e3a6d3SLuigi Rizzo 131637e3a6d3SLuigi Rizzo void 1317c3e9b4dbSLuiz Otavio O Souza nm_os_kctx_destroy(struct nm_kctx *nmk) 131837e3a6d3SLuigi Rizzo { 131937e3a6d3SLuigi Rizzo if (!nmk) 132037e3a6d3SLuigi Rizzo return; 132137e3a6d3SLuigi Rizzo 1322b6e66be2SVincenzo Maffione if (nmk->worker) 1323b6e66be2SVincenzo Maffione nm_os_kctx_worker_stop(nmk); 132437e3a6d3SLuigi Rizzo 132537e3a6d3SLuigi Rizzo free(nmk, M_DEVBUF); 132637e3a6d3SLuigi Rizzo } 132737e3a6d3SLuigi Rizzo 1328f0ea3689SLuigi Rizzo /******************** kqueue support ****************/ 1329f0ea3689SLuigi Rizzo 1330f0ea3689SLuigi Rizzo /* 13318c9874f5SVincenzo Maffione * In addition to calling selwakeuppri(), nm_os_selwakeup() also 133219c4ec08SVincenzo Maffione * needs to call knote() to wake up kqueue listeners. 133319c4ec08SVincenzo Maffione * This operation is deferred to a taskqueue in order to avoid possible 133419c4ec08SVincenzo Maffione * lock order reversals; these may happen because knote() grabs a 133519c4ec08SVincenzo Maffione * private lock associated to the 'si' (see struct selinfo, 133619c4ec08SVincenzo Maffione * struct nm_selinfo, and nm_os_selinfo_init), and nm_os_selwakeup() 133719c4ec08SVincenzo Maffione * can be called while holding the lock associated to a different 133819c4ec08SVincenzo Maffione * 'si'. 133919c4ec08SVincenzo Maffione * When calling knote() we use a non-zero 'hint' argument to inform 134019c4ec08SVincenzo Maffione * the netmap_knrw() function that it is being called from 134119c4ec08SVincenzo Maffione * 'nm_os_selwakeup'; this is necessary because when netmap_knrw() is 134219c4ec08SVincenzo Maffione * called by the kevent subsystem (i.e. kevent_scan()) we also need to 134319c4ec08SVincenzo Maffione * call netmap_poll(). 1344f0ea3689SLuigi Rizzo * 13458c9874f5SVincenzo Maffione * The netmap_kqfilter() function registers one or another f_event 13468c9874f5SVincenzo Maffione * depending on read or write mode. A pointer to the struct 13478c9874f5SVincenzo Maffione * 'netmap_priv_d' is stored into kn->kn_hook, so that it can later 13488c9874f5SVincenzo Maffione * be passed to netmap_poll(). We pass NULL as a third argument to 13498c9874f5SVincenzo Maffione * netmap_poll(), so that the latter only runs the txsync/rxsync 13508c9874f5SVincenzo Maffione * (if necessary), and skips the nm_os_selrecord() calls. 1351f0ea3689SLuigi Rizzo */ 1352f0ea3689SLuigi Rizzo 1353f0ea3689SLuigi Rizzo 1354f0ea3689SLuigi Rizzo void 135537e3a6d3SLuigi Rizzo nm_os_selwakeup(struct nm_selinfo *si) 1356f0ea3689SLuigi Rizzo { 135737e3a6d3SLuigi Rizzo selwakeuppri(&si->si, PI_NET); 135845100257SVincenzo Maffione if (si->kqueue_users > 0) { 135919c4ec08SVincenzo Maffione taskqueue_enqueue(si->ntfytq, &si->ntfytask); 1360f0ea3689SLuigi Rizzo } 136145100257SVincenzo Maffione } 1362f0ea3689SLuigi Rizzo 136337e3a6d3SLuigi Rizzo void 136437e3a6d3SLuigi Rizzo nm_os_selrecord(struct thread *td, struct nm_selinfo *si) 136537e3a6d3SLuigi Rizzo { 136637e3a6d3SLuigi Rizzo selrecord(td, &si->si); 136737e3a6d3SLuigi Rizzo } 136837e3a6d3SLuigi Rizzo 1369f0ea3689SLuigi Rizzo static void 1370f0ea3689SLuigi Rizzo netmap_knrdetach(struct knote *kn) 1371f0ea3689SLuigi Rizzo { 1372f0ea3689SLuigi Rizzo struct netmap_priv_d *priv = (struct netmap_priv_d *)kn->kn_hook; 137345100257SVincenzo Maffione struct nm_selinfo *si = priv->np_si[NR_RX]; 1374f0ea3689SLuigi Rizzo 137545100257SVincenzo Maffione knlist_remove(&si->si.si_note, kn, /*islocked=*/0); 137645100257SVincenzo Maffione NMG_LOCK(); 137745100257SVincenzo Maffione KASSERT(si->kqueue_users > 0, ("kqueue_user underflow on %s", 137845100257SVincenzo Maffione si->mtxname)); 137945100257SVincenzo Maffione si->kqueue_users--; 138045100257SVincenzo Maffione nm_prinf("kqueue users for %s: %d", si->mtxname, si->kqueue_users); 138145100257SVincenzo Maffione NMG_UNLOCK(); 1382f0ea3689SLuigi Rizzo } 1383f0ea3689SLuigi Rizzo 1384f0ea3689SLuigi Rizzo static void 1385f0ea3689SLuigi Rizzo netmap_knwdetach(struct knote *kn) 1386f0ea3689SLuigi Rizzo { 1387f0ea3689SLuigi Rizzo struct netmap_priv_d *priv = (struct netmap_priv_d *)kn->kn_hook; 138845100257SVincenzo Maffione struct nm_selinfo *si = priv->np_si[NR_TX]; 1389f0ea3689SLuigi Rizzo 139045100257SVincenzo Maffione knlist_remove(&si->si.si_note, kn, /*islocked=*/0); 139145100257SVincenzo Maffione NMG_LOCK(); 139245100257SVincenzo Maffione si->kqueue_users--; 139345100257SVincenzo Maffione nm_prinf("kqueue users for %s: %d", si->mtxname, si->kqueue_users); 139445100257SVincenzo Maffione NMG_UNLOCK(); 1395f0ea3689SLuigi Rizzo } 1396f0ea3689SLuigi Rizzo 1397f0ea3689SLuigi Rizzo /* 13988c9874f5SVincenzo Maffione * Callback triggered by netmap notifications (see netmap_notify()), 13998c9874f5SVincenzo Maffione * and by the application calling kevent(). In the former case we 14008c9874f5SVincenzo Maffione * just return 1 (events ready), since we are not able to do better. 14018c9874f5SVincenzo Maffione * In the latter case we use netmap_poll() to see which events are 14028c9874f5SVincenzo Maffione * ready. 1403f0ea3689SLuigi Rizzo */ 1404f0ea3689SLuigi Rizzo static int 1405f0ea3689SLuigi Rizzo netmap_knrw(struct knote *kn, long hint, int events) 1406f0ea3689SLuigi Rizzo { 1407f0ea3689SLuigi Rizzo struct netmap_priv_d *priv; 1408f0ea3689SLuigi Rizzo int revents; 1409f0ea3689SLuigi Rizzo 1410f0ea3689SLuigi Rizzo if (hint != 0) { 14118c9874f5SVincenzo Maffione /* Called from netmap_notify(), typically from a 14128c9874f5SVincenzo Maffione * thread different from the one issuing kevent(). 14138c9874f5SVincenzo Maffione * Assume we are ready. */ 1414f0ea3689SLuigi Rizzo return 1; 1415f0ea3689SLuigi Rizzo } 14168c9874f5SVincenzo Maffione 14178c9874f5SVincenzo Maffione /* Called from kevent(). */ 14188c9874f5SVincenzo Maffione priv = kn->kn_hook; 14198c9874f5SVincenzo Maffione revents = netmap_poll(priv, events, /*thread=*/NULL); 14208c9874f5SVincenzo Maffione 14218c9874f5SVincenzo Maffione return (events & revents) ? 1 : 0; 1422f0ea3689SLuigi Rizzo } 1423f0ea3689SLuigi Rizzo 1424f0ea3689SLuigi Rizzo static int 1425f0ea3689SLuigi Rizzo netmap_knread(struct knote *kn, long hint) 1426f0ea3689SLuigi Rizzo { 1427f0ea3689SLuigi Rizzo return netmap_knrw(kn, hint, POLLIN); 1428f0ea3689SLuigi Rizzo } 1429f0ea3689SLuigi Rizzo 1430f0ea3689SLuigi Rizzo static int 1431f0ea3689SLuigi Rizzo netmap_knwrite(struct knote *kn, long hint) 1432f0ea3689SLuigi Rizzo { 1433f0ea3689SLuigi Rizzo return netmap_knrw(kn, hint, POLLOUT); 1434f0ea3689SLuigi Rizzo } 1435f0ea3689SLuigi Rizzo 1436f0ea3689SLuigi Rizzo static struct filterops netmap_rfiltops = { 1437f0ea3689SLuigi Rizzo .f_isfd = 1, 1438f0ea3689SLuigi Rizzo .f_detach = netmap_knrdetach, 1439f0ea3689SLuigi Rizzo .f_event = netmap_knread, 1440f0ea3689SLuigi Rizzo }; 1441f0ea3689SLuigi Rizzo 1442f0ea3689SLuigi Rizzo static struct filterops netmap_wfiltops = { 1443f0ea3689SLuigi Rizzo .f_isfd = 1, 1444f0ea3689SLuigi Rizzo .f_detach = netmap_knwdetach, 1445f0ea3689SLuigi Rizzo .f_event = netmap_knwrite, 1446f0ea3689SLuigi Rizzo }; 1447f0ea3689SLuigi Rizzo 1448f0ea3689SLuigi Rizzo 1449f0ea3689SLuigi Rizzo /* 1450f0ea3689SLuigi Rizzo * This is called when a thread invokes kevent() to record 1451f0ea3689SLuigi Rizzo * a change in the configuration of the kqueue(). 14528c9874f5SVincenzo Maffione * The 'priv' is the one associated to the open netmap device. 1453f0ea3689SLuigi Rizzo */ 1454f0ea3689SLuigi Rizzo static int 1455f0ea3689SLuigi Rizzo netmap_kqfilter(struct cdev *dev, struct knote *kn) 1456f0ea3689SLuigi Rizzo { 1457f0ea3689SLuigi Rizzo struct netmap_priv_d *priv; 1458f0ea3689SLuigi Rizzo int error; 1459f0ea3689SLuigi Rizzo struct netmap_adapter *na; 14600e73f29aSLuigi Rizzo struct nm_selinfo *si; 1461f0ea3689SLuigi Rizzo int ev = kn->kn_filter; 1462f0ea3689SLuigi Rizzo 1463f0ea3689SLuigi Rizzo if (ev != EVFILT_READ && ev != EVFILT_WRITE) { 1464a56136a1SVincenzo Maffione nm_prerr("bad filter request %d", ev); 1465f0ea3689SLuigi Rizzo return 1; 1466f0ea3689SLuigi Rizzo } 1467f0ea3689SLuigi Rizzo error = devfs_get_cdevpriv((void**)&priv); 1468f0ea3689SLuigi Rizzo if (error) { 1469a56136a1SVincenzo Maffione nm_prerr("device not yet setup"); 1470f0ea3689SLuigi Rizzo return 1; 1471f0ea3689SLuigi Rizzo } 1472f0ea3689SLuigi Rizzo na = priv->np_na; 1473f0ea3689SLuigi Rizzo if (na == NULL) { 1474a56136a1SVincenzo Maffione nm_prerr("no netmap adapter for this file descriptor"); 1475f0ea3689SLuigi Rizzo return 1; 1476f0ea3689SLuigi Rizzo } 1477f0ea3689SLuigi Rizzo /* the si is indicated in the priv */ 1478847bf383SLuigi Rizzo si = priv->np_si[(ev == EVFILT_WRITE) ? NR_TX : NR_RX]; 1479f0ea3689SLuigi Rizzo kn->kn_fop = (ev == EVFILT_WRITE) ? 1480f0ea3689SLuigi Rizzo &netmap_wfiltops : &netmap_rfiltops; 1481f0ea3689SLuigi Rizzo kn->kn_hook = priv; 148245100257SVincenzo Maffione NMG_LOCK(); 148345100257SVincenzo Maffione si->kqueue_users++; 148445100257SVincenzo Maffione nm_prinf("kqueue users for %s: %d", si->mtxname, si->kqueue_users); 148545100257SVincenzo Maffione NMG_UNLOCK(); 14868c9874f5SVincenzo Maffione knlist_add(&si->si.si_note, kn, /*islocked=*/0); 14878c9874f5SVincenzo Maffione 1488f0ea3689SLuigi Rizzo return 0; 1489f0ea3689SLuigi Rizzo } 1490f9790aebSLuigi Rizzo 149137e3a6d3SLuigi Rizzo static int 149237e3a6d3SLuigi Rizzo freebsd_netmap_poll(struct cdev *cdevi __unused, int events, struct thread *td) 149337e3a6d3SLuigi Rizzo { 149437e3a6d3SLuigi Rizzo struct netmap_priv_d *priv; 149537e3a6d3SLuigi Rizzo if (devfs_get_cdevpriv((void **)&priv)) { 149637e3a6d3SLuigi Rizzo return POLLERR; 149737e3a6d3SLuigi Rizzo } 149837e3a6d3SLuigi Rizzo return netmap_poll(priv, events, td); 149937e3a6d3SLuigi Rizzo } 150037e3a6d3SLuigi Rizzo 150137e3a6d3SLuigi Rizzo static int 150237e3a6d3SLuigi Rizzo freebsd_netmap_ioctl(struct cdev *dev __unused, u_long cmd, caddr_t data, 150337e3a6d3SLuigi Rizzo int ffla __unused, struct thread *td) 150437e3a6d3SLuigi Rizzo { 150537e3a6d3SLuigi Rizzo int error; 150637e3a6d3SLuigi Rizzo struct netmap_priv_d *priv; 150737e3a6d3SLuigi Rizzo 1508ffaa5debSSepherosa Ziehau CURVNET_SET(TD_TO_VNET(td)); 150937e3a6d3SLuigi Rizzo error = devfs_get_cdevpriv((void **)&priv); 151037e3a6d3SLuigi Rizzo if (error) { 151137e3a6d3SLuigi Rizzo /* XXX ENOENT should be impossible, since the priv 151237e3a6d3SLuigi Rizzo * is now created in the open */ 151337e3a6d3SLuigi Rizzo if (error == ENOENT) 151437e3a6d3SLuigi Rizzo error = ENXIO; 151537e3a6d3SLuigi Rizzo goto out; 151637e3a6d3SLuigi Rizzo } 15172ff91c17SVincenzo Maffione error = netmap_ioctl(priv, cmd, data, td, /*nr_body_is_user=*/1); 151837e3a6d3SLuigi Rizzo out: 151937e3a6d3SLuigi Rizzo CURVNET_RESTORE(); 152037e3a6d3SLuigi Rizzo 152137e3a6d3SLuigi Rizzo return error; 152237e3a6d3SLuigi Rizzo } 152337e3a6d3SLuigi Rizzo 15242a7db7a6SVincenzo Maffione void 15252a7db7a6SVincenzo Maffione nm_os_onattach(struct ifnet *ifp) 15262a7db7a6SVincenzo Maffione { 1527d55913f5SVincenzo Maffione ifp->if_capabilities |= IFCAP_NETMAP; 15282a7db7a6SVincenzo Maffione } 15292a7db7a6SVincenzo Maffione 15302a7db7a6SVincenzo Maffione void 15312a7db7a6SVincenzo Maffione nm_os_onenter(struct ifnet *ifp) 15322a7db7a6SVincenzo Maffione { 15332a7db7a6SVincenzo Maffione struct netmap_adapter *na = NA(ifp); 15342a7db7a6SVincenzo Maffione 15352a7db7a6SVincenzo Maffione na->if_transmit = ifp->if_transmit; 15362a7db7a6SVincenzo Maffione ifp->if_transmit = netmap_transmit; 15372a7db7a6SVincenzo Maffione ifp->if_capenable |= IFCAP_NETMAP; 15382a7db7a6SVincenzo Maffione } 15392a7db7a6SVincenzo Maffione 15402a7db7a6SVincenzo Maffione void 15412a7db7a6SVincenzo Maffione nm_os_onexit(struct ifnet *ifp) 15422a7db7a6SVincenzo Maffione { 15432a7db7a6SVincenzo Maffione struct netmap_adapter *na = NA(ifp); 15442a7db7a6SVincenzo Maffione 15452a7db7a6SVincenzo Maffione ifp->if_transmit = na->if_transmit; 15462a7db7a6SVincenzo Maffione ifp->if_capenable &= ~IFCAP_NETMAP; 15472a7db7a6SVincenzo Maffione } 15482a7db7a6SVincenzo Maffione 154937e3a6d3SLuigi Rizzo extern struct cdevsw netmap_cdevsw; /* XXX used in netmap.c, should go elsewhere */ 1550f9790aebSLuigi Rizzo struct cdevsw netmap_cdevsw = { 1551f9790aebSLuigi Rizzo .d_version = D_VERSION, 1552f9790aebSLuigi Rizzo .d_name = "netmap", 1553f9790aebSLuigi Rizzo .d_open = netmap_open, 1554f9790aebSLuigi Rizzo .d_mmap_single = netmap_mmap_single, 155537e3a6d3SLuigi Rizzo .d_ioctl = freebsd_netmap_ioctl, 155637e3a6d3SLuigi Rizzo .d_poll = freebsd_netmap_poll, 1557f0ea3689SLuigi Rizzo .d_kqfilter = netmap_kqfilter, 1558f9790aebSLuigi Rizzo .d_close = netmap_close, 1559f9790aebSLuigi Rizzo }; 1560f0ea3689SLuigi Rizzo /*--- end of kqueue support ----*/ 1561f9790aebSLuigi Rizzo 1562f9790aebSLuigi Rizzo /* 1563f9790aebSLuigi Rizzo * Kernel entry point. 1564f9790aebSLuigi Rizzo * 1565f9790aebSLuigi Rizzo * Initialize/finalize the module and return. 1566f9790aebSLuigi Rizzo * 1567f9790aebSLuigi Rizzo * Return 0 on success, errno on failure. 1568f9790aebSLuigi Rizzo */ 1569f9790aebSLuigi Rizzo static int 1570f9790aebSLuigi Rizzo netmap_loader(__unused struct module *module, int event, __unused void *arg) 1571f9790aebSLuigi Rizzo { 1572f9790aebSLuigi Rizzo int error = 0; 1573f9790aebSLuigi Rizzo 1574f9790aebSLuigi Rizzo switch (event) { 1575f9790aebSLuigi Rizzo case MOD_LOAD: 1576f9790aebSLuigi Rizzo error = netmap_init(); 1577f9790aebSLuigi Rizzo break; 1578f9790aebSLuigi Rizzo 1579f9790aebSLuigi Rizzo case MOD_UNLOAD: 1580847adfb7SLuigi Rizzo /* 1581847adfb7SLuigi Rizzo * if some one is still using netmap, 1582847adfb7SLuigi Rizzo * then the module can not be unloaded. 1583847adfb7SLuigi Rizzo */ 1584847adfb7SLuigi Rizzo if (netmap_use_count) { 1585a56136a1SVincenzo Maffione nm_prerr("netmap module can not be unloaded - netmap_use_count: %d", 1586847adfb7SLuigi Rizzo netmap_use_count); 1587847adfb7SLuigi Rizzo error = EBUSY; 1588847adfb7SLuigi Rizzo break; 1589847adfb7SLuigi Rizzo } 1590f9790aebSLuigi Rizzo netmap_fini(); 1591f9790aebSLuigi Rizzo break; 1592f9790aebSLuigi Rizzo 1593f9790aebSLuigi Rizzo default: 1594f9790aebSLuigi Rizzo error = EOPNOTSUPP; 1595f9790aebSLuigi Rizzo break; 1596f9790aebSLuigi Rizzo } 1597f9790aebSLuigi Rizzo 1598f9790aebSLuigi Rizzo return (error); 1599f9790aebSLuigi Rizzo } 1600f9790aebSLuigi Rizzo 160137e3a6d3SLuigi Rizzo #ifdef DEV_MODULE_ORDERED 160237e3a6d3SLuigi Rizzo /* 160337e3a6d3SLuigi Rizzo * The netmap module contains three drivers: (i) the netmap character device 160437e3a6d3SLuigi Rizzo * driver; (ii) the ptnetmap memdev PCI device driver, (iii) the ptnet PCI 160537e3a6d3SLuigi Rizzo * device driver. The attach() routines of both (ii) and (iii) need the 160637e3a6d3SLuigi Rizzo * lock of the global allocator, and such lock is initialized in netmap_init(), 160737e3a6d3SLuigi Rizzo * which is part of (i). 160837e3a6d3SLuigi Rizzo * Therefore, we make sure that (i) is loaded before (ii) and (iii), using 160937e3a6d3SLuigi Rizzo * the 'order' parameter of driver declaration macros. For (i), we specify 161037e3a6d3SLuigi Rizzo * SI_ORDER_MIDDLE, while higher orders are used with the DRIVER_MODULE_ORDERED 161137e3a6d3SLuigi Rizzo * macros for (ii) and (iii). 161237e3a6d3SLuigi Rizzo */ 161337e3a6d3SLuigi Rizzo DEV_MODULE_ORDERED(netmap, netmap_loader, NULL, SI_ORDER_MIDDLE); 161437e3a6d3SLuigi Rizzo #else /* !DEV_MODULE_ORDERED */ 1615f9790aebSLuigi Rizzo DEV_MODULE(netmap, netmap_loader, NULL); 161637e3a6d3SLuigi Rizzo #endif /* DEV_MODULE_ORDERED */ 161737e3a6d3SLuigi Rizzo MODULE_DEPEND(netmap, pci, 1, 1, 1); 1618735c8d95SLuigi Rizzo MODULE_VERSION(netmap, 1); 161937e3a6d3SLuigi Rizzo /* reduce conditional code */ 162037e3a6d3SLuigi Rizzo // linux API, use for the knlist in FreeBSD 162137e3a6d3SLuigi Rizzo /* use a private mutex for the knlist */ 1622