11f7e3916SSepherosa Ziehau /* 21f7e3916SSepherosa Ziehau * Copyright (c) 2001-2011, Intel Corporation 31f7e3916SSepherosa Ziehau * All rights reserved. 41f7e3916SSepherosa Ziehau * 51f7e3916SSepherosa Ziehau * Redistribution and use in source and binary forms, with or without 61f7e3916SSepherosa Ziehau * modification, are permitted provided that the following conditions are met: 71f7e3916SSepherosa Ziehau * 81f7e3916SSepherosa Ziehau * 1. Redistributions of source code must retain the above copyright notice, 91f7e3916SSepherosa Ziehau * this list of conditions and the following disclaimer. 101f7e3916SSepherosa Ziehau * 111f7e3916SSepherosa Ziehau * 2. Redistributions in binary form must reproduce the above copyright 121f7e3916SSepherosa Ziehau * notice, this list of conditions and the following disclaimer in the 131f7e3916SSepherosa Ziehau * documentation and/or other materials provided with the distribution. 141f7e3916SSepherosa Ziehau * 151f7e3916SSepherosa Ziehau * 3. Neither the name of the Intel Corporation nor the names of its 161f7e3916SSepherosa Ziehau * contributors may be used to endorse or promote products derived from 171f7e3916SSepherosa Ziehau * this software without specific prior written permission. 181f7e3916SSepherosa Ziehau * 191f7e3916SSepherosa Ziehau * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" 201f7e3916SSepherosa Ziehau * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 211f7e3916SSepherosa Ziehau * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 221f7e3916SSepherosa Ziehau * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE 231f7e3916SSepherosa Ziehau * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 241f7e3916SSepherosa Ziehau * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 251f7e3916SSepherosa Ziehau * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 261f7e3916SSepherosa Ziehau * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 271f7e3916SSepherosa Ziehau * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 281f7e3916SSepherosa Ziehau * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 291f7e3916SSepherosa Ziehau * POSSIBILITY OF SUCH DAMAGE. 301f7e3916SSepherosa Ziehau */ 311f7e3916SSepherosa Ziehau 321f7e3916SSepherosa Ziehau #include "opt_polling.h" 338d6600daSSepherosa Ziehau #include "opt_igb.h" 341f7e3916SSepherosa Ziehau 351f7e3916SSepherosa Ziehau #include <sys/param.h> 361f7e3916SSepherosa Ziehau #include <sys/bus.h> 371f7e3916SSepherosa Ziehau #include <sys/endian.h> 381f7e3916SSepherosa Ziehau #include <sys/interrupt.h> 391f7e3916SSepherosa Ziehau #include <sys/kernel.h> 401f7e3916SSepherosa Ziehau #include <sys/malloc.h> 411f7e3916SSepherosa Ziehau #include <sys/mbuf.h> 421f7e3916SSepherosa Ziehau #include <sys/proc.h> 431f7e3916SSepherosa Ziehau #include <sys/rman.h> 441f7e3916SSepherosa Ziehau #include <sys/serialize.h> 451f7e3916SSepherosa Ziehau #include <sys/serialize2.h> 461f7e3916SSepherosa Ziehau #include <sys/socket.h> 471f7e3916SSepherosa Ziehau #include <sys/sockio.h> 481f7e3916SSepherosa Ziehau #include <sys/sysctl.h> 491f7e3916SSepherosa Ziehau #include <sys/systm.h> 501f7e3916SSepherosa Ziehau 511f7e3916SSepherosa Ziehau #include <net/bpf.h> 521f7e3916SSepherosa Ziehau #include <net/ethernet.h> 531f7e3916SSepherosa Ziehau #include <net/if.h> 541f7e3916SSepherosa Ziehau #include <net/if_arp.h> 551f7e3916SSepherosa Ziehau #include <net/if_dl.h> 561f7e3916SSepherosa Ziehau #include <net/if_media.h> 571f7e3916SSepherosa Ziehau #include <net/ifq_var.h> 581f7e3916SSepherosa Ziehau #include <net/toeplitz.h> 591f7e3916SSepherosa Ziehau #include <net/toeplitz2.h> 601f7e3916SSepherosa Ziehau #include <net/vlan/if_vlan_var.h> 611f7e3916SSepherosa Ziehau #include <net/vlan/if_vlan_ether.h> 621f7e3916SSepherosa Ziehau #include <net/if_poll.h> 631f7e3916SSepherosa Ziehau 641f7e3916SSepherosa Ziehau #include <netinet/in_systm.h> 651f7e3916SSepherosa Ziehau #include <netinet/in.h> 661f7e3916SSepherosa Ziehau #include <netinet/ip.h> 671f7e3916SSepherosa Ziehau #include <netinet/tcp.h> 681f7e3916SSepherosa Ziehau #include <netinet/udp.h> 691f7e3916SSepherosa Ziehau 701f7e3916SSepherosa Ziehau #include <bus/pci/pcivar.h> 711f7e3916SSepherosa Ziehau #include <bus/pci/pcireg.h> 721f7e3916SSepherosa Ziehau 731f7e3916SSepherosa Ziehau #include <dev/netif/ig_hal/e1000_api.h> 741f7e3916SSepherosa Ziehau #include <dev/netif/ig_hal/e1000_82575.h> 751f7e3916SSepherosa Ziehau #include <dev/netif/igb/if_igb.h> 761f7e3916SSepherosa Ziehau 778d6600daSSepherosa Ziehau #ifdef IGB_RSS_DEBUG 788d6600daSSepherosa Ziehau #define IGB_RSS_DPRINTF(sc, lvl, fmt, ...) \ 798d6600daSSepherosa Ziehau do { \ 808d6600daSSepherosa Ziehau if (sc->rss_debug >= lvl) \ 818d6600daSSepherosa Ziehau if_printf(&sc->arpcom.ac_if, fmt, __VA_ARGS__); \ 828d6600daSSepherosa Ziehau } while (0) 838d6600daSSepherosa Ziehau #else /* !IGB_RSS_DEBUG */ 848d6600daSSepherosa Ziehau #define IGB_RSS_DPRINTF(sc, lvl, fmt, ...) ((void)0) 858d6600daSSepherosa Ziehau #endif /* IGB_RSS_DEBUG */ 868d6600daSSepherosa Ziehau 871f7e3916SSepherosa Ziehau #define IGB_NAME "Intel(R) PRO/1000 " 881f7e3916SSepherosa Ziehau #define IGB_DEVICE(id) \ 891f7e3916SSepherosa Ziehau { IGB_VENDOR_ID, E1000_DEV_ID_##id, IGB_NAME #id } 901f7e3916SSepherosa Ziehau #define IGB_DEVICE_NULL { 0, 0, NULL } 911f7e3916SSepherosa Ziehau 921f7e3916SSepherosa Ziehau static struct igb_device { 931f7e3916SSepherosa Ziehau uint16_t vid; 941f7e3916SSepherosa Ziehau uint16_t did; 951f7e3916SSepherosa Ziehau const char *desc; 961f7e3916SSepherosa Ziehau } igb_devices[] = { 971f7e3916SSepherosa Ziehau IGB_DEVICE(82575EB_COPPER), 981f7e3916SSepherosa Ziehau IGB_DEVICE(82575EB_FIBER_SERDES), 991f7e3916SSepherosa Ziehau IGB_DEVICE(82575GB_QUAD_COPPER), 1001f7e3916SSepherosa Ziehau IGB_DEVICE(82576), 1011f7e3916SSepherosa Ziehau IGB_DEVICE(82576_NS), 1021f7e3916SSepherosa Ziehau IGB_DEVICE(82576_NS_SERDES), 1031f7e3916SSepherosa Ziehau IGB_DEVICE(82576_FIBER), 1041f7e3916SSepherosa Ziehau IGB_DEVICE(82576_SERDES), 1051f7e3916SSepherosa Ziehau IGB_DEVICE(82576_SERDES_QUAD), 1061f7e3916SSepherosa Ziehau IGB_DEVICE(82576_QUAD_COPPER), 1071f7e3916SSepherosa Ziehau IGB_DEVICE(82576_QUAD_COPPER_ET2), 1081f7e3916SSepherosa Ziehau IGB_DEVICE(82576_VF), 1091f7e3916SSepherosa Ziehau IGB_DEVICE(82580_COPPER), 1101f7e3916SSepherosa Ziehau IGB_DEVICE(82580_FIBER), 1111f7e3916SSepherosa Ziehau IGB_DEVICE(82580_SERDES), 1121f7e3916SSepherosa Ziehau IGB_DEVICE(82580_SGMII), 1131f7e3916SSepherosa Ziehau IGB_DEVICE(82580_COPPER_DUAL), 1141f7e3916SSepherosa Ziehau IGB_DEVICE(82580_QUAD_FIBER), 1151f7e3916SSepherosa Ziehau IGB_DEVICE(DH89XXCC_SERDES), 1161f7e3916SSepherosa Ziehau IGB_DEVICE(DH89XXCC_SGMII), 1171f7e3916SSepherosa Ziehau IGB_DEVICE(DH89XXCC_SFP), 1181f7e3916SSepherosa Ziehau IGB_DEVICE(DH89XXCC_BACKPLANE), 1191f7e3916SSepherosa Ziehau IGB_DEVICE(I350_COPPER), 1201f7e3916SSepherosa Ziehau IGB_DEVICE(I350_FIBER), 1211f7e3916SSepherosa Ziehau IGB_DEVICE(I350_SERDES), 1221f7e3916SSepherosa Ziehau IGB_DEVICE(I350_SGMII), 1231f7e3916SSepherosa Ziehau IGB_DEVICE(I350_VF), 1241f7e3916SSepherosa Ziehau 1251f7e3916SSepherosa Ziehau /* required last entry */ 1261f7e3916SSepherosa Ziehau IGB_DEVICE_NULL 1271f7e3916SSepherosa Ziehau }; 1281f7e3916SSepherosa Ziehau 1291f7e3916SSepherosa Ziehau static int igb_probe(device_t); 1301f7e3916SSepherosa Ziehau static int igb_attach(device_t); 1311f7e3916SSepherosa Ziehau static int igb_detach(device_t); 1321f7e3916SSepherosa Ziehau static int igb_shutdown(device_t); 1331f7e3916SSepherosa Ziehau static int igb_suspend(device_t); 1341f7e3916SSepherosa Ziehau static int igb_resume(device_t); 1351f7e3916SSepherosa Ziehau 1361f7e3916SSepherosa Ziehau static boolean_t igb_is_valid_ether_addr(const uint8_t *); 1371f7e3916SSepherosa Ziehau static void igb_setup_ifp(struct igb_softc *); 1381f7e3916SSepherosa Ziehau static int igb_txctx_pullup(struct igb_tx_ring *, struct mbuf **); 1391f7e3916SSepherosa Ziehau static boolean_t igb_txctx(struct igb_tx_ring *, struct mbuf *); 1401f7e3916SSepherosa Ziehau static void igb_add_sysctl(struct igb_softc *); 1411f7e3916SSepherosa Ziehau static int igb_sysctl_intr_rate(SYSCTL_HANDLER_ARGS); 142b6220144SSepherosa Ziehau static int igb_sysctl_tx_intr_nsegs(SYSCTL_HANDLER_ARGS); 1431f7e3916SSepherosa Ziehau 1441f7e3916SSepherosa Ziehau static void igb_vf_init_stats(struct igb_softc *); 1451f7e3916SSepherosa Ziehau static void igb_reset(struct igb_softc *); 1461f7e3916SSepherosa Ziehau static void igb_update_stats_counters(struct igb_softc *); 1471f7e3916SSepherosa Ziehau static void igb_update_vf_stats_counters(struct igb_softc *); 1481f7e3916SSepherosa Ziehau static void igb_update_link_status(struct igb_softc *); 1491f7e3916SSepherosa Ziehau static void igb_init_tx_unit(struct igb_softc *); 1501f7e3916SSepherosa Ziehau static void igb_init_rx_unit(struct igb_softc *); 1511f7e3916SSepherosa Ziehau 1521f7e3916SSepherosa Ziehau static void igb_set_vlan(struct igb_softc *); 1531f7e3916SSepherosa Ziehau static void igb_set_multi(struct igb_softc *); 1541f7e3916SSepherosa Ziehau static void igb_set_promisc(struct igb_softc *); 1551f7e3916SSepherosa Ziehau static void igb_disable_promisc(struct igb_softc *); 1561f7e3916SSepherosa Ziehau 157a619b256SSepherosa Ziehau static int igb_alloc_rings(struct igb_softc *); 158a619b256SSepherosa Ziehau static void igb_free_rings(struct igb_softc *); 1591f7e3916SSepherosa Ziehau static int igb_create_tx_ring(struct igb_tx_ring *); 1601f7e3916SSepherosa Ziehau static int igb_create_rx_ring(struct igb_rx_ring *); 1611f7e3916SSepherosa Ziehau static void igb_free_tx_ring(struct igb_tx_ring *); 1621f7e3916SSepherosa Ziehau static void igb_free_rx_ring(struct igb_rx_ring *); 1631f7e3916SSepherosa Ziehau static void igb_destroy_tx_ring(struct igb_tx_ring *, int); 1641f7e3916SSepherosa Ziehau static void igb_destroy_rx_ring(struct igb_rx_ring *, int); 1651f7e3916SSepherosa Ziehau static void igb_init_tx_ring(struct igb_tx_ring *); 1661f7e3916SSepherosa Ziehau static int igb_init_rx_ring(struct igb_rx_ring *); 1671f7e3916SSepherosa Ziehau static int igb_newbuf(struct igb_rx_ring *, int, boolean_t); 1681f7e3916SSepherosa Ziehau static int igb_encap(struct igb_tx_ring *, struct mbuf **); 1691f7e3916SSepherosa Ziehau 1701f7e3916SSepherosa Ziehau static void igb_stop(struct igb_softc *); 1711f7e3916SSepherosa Ziehau static void igb_init(void *); 1721f7e3916SSepherosa Ziehau static int igb_ioctl(struct ifnet *, u_long, caddr_t, struct ucred *); 1731f7e3916SSepherosa Ziehau static void igb_media_status(struct ifnet *, struct ifmediareq *); 1741f7e3916SSepherosa Ziehau static int igb_media_change(struct ifnet *); 1751f7e3916SSepherosa Ziehau static void igb_timer(void *); 1761f7e3916SSepherosa Ziehau static void igb_watchdog(struct ifnet *); 1771f7e3916SSepherosa Ziehau static void igb_start(struct ifnet *); 1781f7e3916SSepherosa Ziehau #ifdef DEVICE_POLLING 1791f7e3916SSepherosa Ziehau static void igb_poll(struct ifnet *, enum poll_cmd, int); 1801f7e3916SSepherosa Ziehau #endif 1817d235eb5SSepherosa Ziehau static void igb_serialize(struct ifnet *, enum ifnet_serialize); 1827d235eb5SSepherosa Ziehau static void igb_deserialize(struct ifnet *, enum ifnet_serialize); 1837d235eb5SSepherosa Ziehau static int igb_tryserialize(struct ifnet *, enum ifnet_serialize); 1847d235eb5SSepherosa Ziehau #ifdef INVARIANTS 1857d235eb5SSepherosa Ziehau static void igb_serialize_assert(struct ifnet *, enum ifnet_serialize, 1867d235eb5SSepherosa Ziehau boolean_t); 1877d235eb5SSepherosa Ziehau #endif 1881f7e3916SSepherosa Ziehau 1891f7e3916SSepherosa Ziehau static void igb_intr(void *); 190f6167a56SSepherosa Ziehau static void igb_shared_intr(void *); 1911f7e3916SSepherosa Ziehau static void igb_rxeof(struct igb_rx_ring *, int); 1921f7e3916SSepherosa Ziehau static void igb_txeof(struct igb_tx_ring *); 193f6167a56SSepherosa Ziehau static void igb_set_eitr(struct igb_softc *); 1941f7e3916SSepherosa Ziehau static void igb_enable_intr(struct igb_softc *); 1951f7e3916SSepherosa Ziehau static void igb_disable_intr(struct igb_softc *); 196f6167a56SSepherosa Ziehau static void igb_init_unshared_intr(struct igb_softc *); 197f6167a56SSepherosa Ziehau static void igb_init_intr(struct igb_softc *); 198f6167a56SSepherosa Ziehau static int igb_setup_intr(struct igb_softc *); 1998d6600daSSepherosa Ziehau static void igb_setup_tx_intr(struct igb_tx_ring *, int *, int); 2008d6600daSSepherosa Ziehau static void igb_setup_rx_intr(struct igb_rx_ring *, int *, int); 201be922da6SSepherosa Ziehau static void igb_set_intr_mask(struct igb_softc *); 2021f7e3916SSepherosa Ziehau 2031f7e3916SSepherosa Ziehau /* Management and WOL Support */ 2041f7e3916SSepherosa Ziehau static void igb_get_mgmt(struct igb_softc *); 2051f7e3916SSepherosa Ziehau static void igb_rel_mgmt(struct igb_softc *); 2061f7e3916SSepherosa Ziehau static void igb_get_hw_control(struct igb_softc *); 2071f7e3916SSepherosa Ziehau static void igb_rel_hw_control(struct igb_softc *); 2081f7e3916SSepherosa Ziehau static void igb_enable_wol(device_t); 2091f7e3916SSepherosa Ziehau 2101f7e3916SSepherosa Ziehau static device_method_t igb_methods[] = { 2111f7e3916SSepherosa Ziehau /* Device interface */ 2121f7e3916SSepherosa Ziehau DEVMETHOD(device_probe, igb_probe), 2131f7e3916SSepherosa Ziehau DEVMETHOD(device_attach, igb_attach), 2141f7e3916SSepherosa Ziehau DEVMETHOD(device_detach, igb_detach), 2151f7e3916SSepherosa Ziehau DEVMETHOD(device_shutdown, igb_shutdown), 2161f7e3916SSepherosa Ziehau DEVMETHOD(device_suspend, igb_suspend), 2171f7e3916SSepherosa Ziehau DEVMETHOD(device_resume, igb_resume), 2181f7e3916SSepherosa Ziehau { 0, 0 } 2191f7e3916SSepherosa Ziehau }; 2201f7e3916SSepherosa Ziehau 2211f7e3916SSepherosa Ziehau static driver_t igb_driver = { 2221f7e3916SSepherosa Ziehau "igb", 2231f7e3916SSepherosa Ziehau igb_methods, 2241f7e3916SSepherosa Ziehau sizeof(struct igb_softc), 2251f7e3916SSepherosa Ziehau }; 2261f7e3916SSepherosa Ziehau 2271f7e3916SSepherosa Ziehau static devclass_t igb_devclass; 2281f7e3916SSepherosa Ziehau 2291f7e3916SSepherosa Ziehau DECLARE_DUMMY_MODULE(if_igb); 2301f7e3916SSepherosa Ziehau MODULE_DEPEND(igb, ig_hal, 1, 1, 1); 2311f7e3916SSepherosa Ziehau DRIVER_MODULE(if_igb, pci, igb_driver, igb_devclass, NULL, NULL); 2321f7e3916SSepherosa Ziehau 2331f7e3916SSepherosa Ziehau static int igb_rxd = IGB_DEFAULT_RXD; 2341f7e3916SSepherosa Ziehau static int igb_txd = IGB_DEFAULT_TXD; 2358d6600daSSepherosa Ziehau static int igb_rxr = 0; 2361f7e3916SSepherosa Ziehau static int igb_msi_enable = 1; 2371f7e3916SSepherosa Ziehau static int igb_msix_enable = 1; 2381f7e3916SSepherosa Ziehau static int igb_eee_disabled = 1; /* Energy Efficient Ethernet */ 2391f7e3916SSepherosa Ziehau static int igb_fc_setting = e1000_fc_full; 2401f7e3916SSepherosa Ziehau 2411f7e3916SSepherosa Ziehau /* 2421f7e3916SSepherosa Ziehau * DMA Coalescing, only for i350 - default to off, 2431f7e3916SSepherosa Ziehau * this feature is for power savings 2441f7e3916SSepherosa Ziehau */ 2451f7e3916SSepherosa Ziehau static int igb_dma_coalesce = 0; 2461f7e3916SSepherosa Ziehau 2471f7e3916SSepherosa Ziehau TUNABLE_INT("hw.igb.rxd", &igb_rxd); 2481f7e3916SSepherosa Ziehau TUNABLE_INT("hw.igb.txd", &igb_txd); 2498d6600daSSepherosa Ziehau TUNABLE_INT("hw.igb.rxr", &igb_rxr); 2501f7e3916SSepherosa Ziehau TUNABLE_INT("hw.igb.msi.enable", &igb_msi_enable); 2511f7e3916SSepherosa Ziehau TUNABLE_INT("hw.igb.msix.enable", &igb_msix_enable); 2521f7e3916SSepherosa Ziehau TUNABLE_INT("hw.igb.fc_setting", &igb_fc_setting); 2531f7e3916SSepherosa Ziehau 2541f7e3916SSepherosa Ziehau /* i350 specific */ 2551f7e3916SSepherosa Ziehau TUNABLE_INT("hw.igb.eee_disabled", &igb_eee_disabled); 2561f7e3916SSepherosa Ziehau TUNABLE_INT("hw.igb.dma_coalesce", &igb_dma_coalesce); 2571f7e3916SSepherosa Ziehau 2581f7e3916SSepherosa Ziehau static __inline void 2591f7e3916SSepherosa Ziehau igb_rxcsum(uint32_t staterr, struct mbuf *mp) 2601f7e3916SSepherosa Ziehau { 2611f7e3916SSepherosa Ziehau /* Ignore Checksum bit is set */ 2621f7e3916SSepherosa Ziehau if (staterr & E1000_RXD_STAT_IXSM) 2631f7e3916SSepherosa Ziehau return; 2641f7e3916SSepherosa Ziehau 2651f7e3916SSepherosa Ziehau if ((staterr & (E1000_RXD_STAT_IPCS | E1000_RXDEXT_STATERR_IPE)) == 2661f7e3916SSepherosa Ziehau E1000_RXD_STAT_IPCS) 2671f7e3916SSepherosa Ziehau mp->m_pkthdr.csum_flags |= CSUM_IP_CHECKED | CSUM_IP_VALID; 2681f7e3916SSepherosa Ziehau 2691f7e3916SSepherosa Ziehau if (staterr & (E1000_RXD_STAT_TCPCS | E1000_RXD_STAT_UDPCS)) { 2701f7e3916SSepherosa Ziehau if ((staterr & E1000_RXDEXT_STATERR_TCPE) == 0) { 2711f7e3916SSepherosa Ziehau mp->m_pkthdr.csum_flags |= CSUM_DATA_VALID | 2721f7e3916SSepherosa Ziehau CSUM_PSEUDO_HDR | CSUM_FRAG_NOT_CHECKED; 2731f7e3916SSepherosa Ziehau mp->m_pkthdr.csum_data = htons(0xffff); 2741f7e3916SSepherosa Ziehau } 2751f7e3916SSepherosa Ziehau } 2761f7e3916SSepherosa Ziehau } 2771f7e3916SSepherosa Ziehau 2788d6600daSSepherosa Ziehau static __inline struct pktinfo * 2798d6600daSSepherosa Ziehau igb_rssinfo(struct mbuf *m, struct pktinfo *pi, 2808d6600daSSepherosa Ziehau uint32_t hash, uint32_t hashtype, uint32_t staterr) 2818d6600daSSepherosa Ziehau { 2828d6600daSSepherosa Ziehau switch (hashtype) { 2838d6600daSSepherosa Ziehau case E1000_RXDADV_RSSTYPE_IPV4_TCP: 2848d6600daSSepherosa Ziehau pi->pi_netisr = NETISR_IP; 2858d6600daSSepherosa Ziehau pi->pi_flags = 0; 2868d6600daSSepherosa Ziehau pi->pi_l3proto = IPPROTO_TCP; 2878d6600daSSepherosa Ziehau break; 2888d6600daSSepherosa Ziehau 2898d6600daSSepherosa Ziehau case E1000_RXDADV_RSSTYPE_IPV4: 2908d6600daSSepherosa Ziehau if (staterr & E1000_RXD_STAT_IXSM) 2918d6600daSSepherosa Ziehau return NULL; 2928d6600daSSepherosa Ziehau 2938d6600daSSepherosa Ziehau if ((staterr & 2948d6600daSSepherosa Ziehau (E1000_RXD_STAT_TCPCS | E1000_RXDEXT_STATERR_TCPE)) == 2958d6600daSSepherosa Ziehau E1000_RXD_STAT_TCPCS) { 2968d6600daSSepherosa Ziehau pi->pi_netisr = NETISR_IP; 2978d6600daSSepherosa Ziehau pi->pi_flags = 0; 2988d6600daSSepherosa Ziehau pi->pi_l3proto = IPPROTO_UDP; 2998d6600daSSepherosa Ziehau break; 3008d6600daSSepherosa Ziehau } 3018d6600daSSepherosa Ziehau /* FALL THROUGH */ 3028d6600daSSepherosa Ziehau default: 3038d6600daSSepherosa Ziehau return NULL; 3048d6600daSSepherosa Ziehau } 3058d6600daSSepherosa Ziehau 3068d6600daSSepherosa Ziehau m->m_flags |= M_HASH; 3078d6600daSSepherosa Ziehau m->m_pkthdr.hash = toeplitz_hash(hash); 3088d6600daSSepherosa Ziehau return pi; 3098d6600daSSepherosa Ziehau } 3108d6600daSSepherosa Ziehau 3111f7e3916SSepherosa Ziehau static int 3121f7e3916SSepherosa Ziehau igb_probe(device_t dev) 3131f7e3916SSepherosa Ziehau { 3141f7e3916SSepherosa Ziehau const struct igb_device *d; 3151f7e3916SSepherosa Ziehau uint16_t vid, did; 3161f7e3916SSepherosa Ziehau 3171f7e3916SSepherosa Ziehau vid = pci_get_vendor(dev); 3181f7e3916SSepherosa Ziehau did = pci_get_device(dev); 3191f7e3916SSepherosa Ziehau 3201f7e3916SSepherosa Ziehau for (d = igb_devices; d->desc != NULL; ++d) { 3211f7e3916SSepherosa Ziehau if (vid == d->vid && did == d->did) { 3221f7e3916SSepherosa Ziehau device_set_desc(dev, d->desc); 3231f7e3916SSepherosa Ziehau return 0; 3241f7e3916SSepherosa Ziehau } 3251f7e3916SSepherosa Ziehau } 3261f7e3916SSepherosa Ziehau return ENXIO; 3271f7e3916SSepherosa Ziehau } 3281f7e3916SSepherosa Ziehau 3291f7e3916SSepherosa Ziehau static int 3301f7e3916SSepherosa Ziehau igb_attach(device_t dev) 3311f7e3916SSepherosa Ziehau { 3321f7e3916SSepherosa Ziehau struct igb_softc *sc = device_get_softc(dev); 3331f7e3916SSepherosa Ziehau uint16_t eeprom_data; 3341f7e3916SSepherosa Ziehau u_int intr_flags; 3358d6600daSSepherosa Ziehau int error = 0, i, j, ring_max; 3361f7e3916SSepherosa Ziehau 3371f7e3916SSepherosa Ziehau #ifdef notyet 3381f7e3916SSepherosa Ziehau /* SYSCTL stuff */ 3391f7e3916SSepherosa Ziehau SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev), 3401f7e3916SSepherosa Ziehau SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), 3411f7e3916SSepherosa Ziehau OID_AUTO, "nvm", CTLTYPE_INT|CTLFLAG_RW, adapter, 0, 3421f7e3916SSepherosa Ziehau igb_sysctl_nvm_info, "I", "NVM Information"); 3431f7e3916SSepherosa Ziehau 3441f7e3916SSepherosa Ziehau SYSCTL_ADD_INT(device_get_sysctl_ctx(dev), 3451f7e3916SSepherosa Ziehau SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), 3461f7e3916SSepherosa Ziehau OID_AUTO, "enable_aim", CTLTYPE_INT|CTLFLAG_RW, 3471f7e3916SSepherosa Ziehau &igb_enable_aim, 1, "Interrupt Moderation"); 3481f7e3916SSepherosa Ziehau 3491f7e3916SSepherosa Ziehau SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev), 3501f7e3916SSepherosa Ziehau SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), 3511f7e3916SSepherosa Ziehau OID_AUTO, "flow_control", CTLTYPE_INT|CTLFLAG_RW, 3521f7e3916SSepherosa Ziehau adapter, 0, igb_set_flowcntl, "I", "Flow Control"); 3531f7e3916SSepherosa Ziehau #endif 3541f7e3916SSepherosa Ziehau 3551f7e3916SSepherosa Ziehau callout_init_mp(&sc->timer); 3561f7e3916SSepherosa Ziehau 3571f7e3916SSepherosa Ziehau sc->dev = sc->osdep.dev = dev; 3581f7e3916SSepherosa Ziehau 3591f7e3916SSepherosa Ziehau /* 3601f7e3916SSepherosa Ziehau * Determine hardware and mac type 3611f7e3916SSepherosa Ziehau */ 3621f7e3916SSepherosa Ziehau sc->hw.vendor_id = pci_get_vendor(dev); 3631f7e3916SSepherosa Ziehau sc->hw.device_id = pci_get_device(dev); 3641f7e3916SSepherosa Ziehau sc->hw.revision_id = pci_read_config(dev, PCIR_REVID, 1); 3651f7e3916SSepherosa Ziehau sc->hw.subsystem_vendor_id = pci_read_config(dev, PCIR_SUBVEND_0, 2); 3661f7e3916SSepherosa Ziehau sc->hw.subsystem_device_id = pci_read_config(dev, PCIR_SUBDEV_0, 2); 3671f7e3916SSepherosa Ziehau 3681f7e3916SSepherosa Ziehau if (e1000_set_mac_type(&sc->hw)) 3691f7e3916SSepherosa Ziehau return ENXIO; 3701f7e3916SSepherosa Ziehau 3711f7e3916SSepherosa Ziehau /* Are we a VF device? */ 3721f7e3916SSepherosa Ziehau if (sc->hw.mac.type == e1000_vfadapt || 3731f7e3916SSepherosa Ziehau sc->hw.mac.type == e1000_vfadapt_i350) 3741f7e3916SSepherosa Ziehau sc->vf_ifp = 1; 3751f7e3916SSepherosa Ziehau else 3761f7e3916SSepherosa Ziehau sc->vf_ifp = 0; 3771f7e3916SSepherosa Ziehau 3789b7aa975SSepherosa Ziehau /* 3799b7aa975SSepherosa Ziehau * Configure total supported RX/TX ring count 3809b7aa975SSepherosa Ziehau */ 3819b7aa975SSepherosa Ziehau switch (sc->hw.mac.type) { 3829b7aa975SSepherosa Ziehau case e1000_82575: 3839b7aa975SSepherosa Ziehau ring_max = IGB_MAX_RING_82575; 3849b7aa975SSepherosa Ziehau break; 3859b7aa975SSepherosa Ziehau case e1000_82580: 3869b7aa975SSepherosa Ziehau ring_max = IGB_MAX_RING_82580; 3879b7aa975SSepherosa Ziehau break; 3889b7aa975SSepherosa Ziehau case e1000_i350: 3899b7aa975SSepherosa Ziehau ring_max = IGB_MAX_RING_I350; 3909b7aa975SSepherosa Ziehau break; 3919b7aa975SSepherosa Ziehau case e1000_82576: 3929b7aa975SSepherosa Ziehau ring_max = IGB_MAX_RING_82576; 3939b7aa975SSepherosa Ziehau break; 3949b7aa975SSepherosa Ziehau default: 3959b7aa975SSepherosa Ziehau ring_max = IGB_MIN_RING; 3969b7aa975SSepherosa Ziehau break; 3979b7aa975SSepherosa Ziehau } 3989b7aa975SSepherosa Ziehau sc->rx_ring_cnt = device_getenv_int(dev, "rxr", igb_rxr); 3999b7aa975SSepherosa Ziehau sc->rx_ring_cnt = if_ring_count2(sc->rx_ring_cnt, ring_max); 4009b7aa975SSepherosa Ziehau #ifdef IGB_RSS_DEBUG 4019b7aa975SSepherosa Ziehau sc->rx_ring_cnt = device_getenv_int(dev, "rxr_debug", sc->rx_ring_cnt); 4029b7aa975SSepherosa Ziehau #endif 4039b7aa975SSepherosa Ziehau sc->rx_ring_inuse = sc->rx_ring_cnt; 4049b7aa975SSepherosa Ziehau sc->tx_ring_cnt = 1; /* XXX */ 4059b7aa975SSepherosa Ziehau 4061f7e3916SSepherosa Ziehau /* Enable bus mastering */ 4071f7e3916SSepherosa Ziehau pci_enable_busmaster(dev); 4081f7e3916SSepherosa Ziehau 4091f7e3916SSepherosa Ziehau /* 4101f7e3916SSepherosa Ziehau * Allocate IO memory 4111f7e3916SSepherosa Ziehau */ 4121f7e3916SSepherosa Ziehau sc->mem_rid = PCIR_BAR(0); 4131f7e3916SSepherosa Ziehau sc->mem_res = bus_alloc_resource_any(dev, SYS_RES_MEMORY, &sc->mem_rid, 4141f7e3916SSepherosa Ziehau RF_ACTIVE); 4151f7e3916SSepherosa Ziehau if (sc->mem_res == NULL) { 4161f7e3916SSepherosa Ziehau device_printf(dev, "Unable to allocate bus resource: memory\n"); 4171f7e3916SSepherosa Ziehau error = ENXIO; 4181f7e3916SSepherosa Ziehau goto failed; 4191f7e3916SSepherosa Ziehau } 4201f7e3916SSepherosa Ziehau sc->osdep.mem_bus_space_tag = rman_get_bustag(sc->mem_res); 4211f7e3916SSepherosa Ziehau sc->osdep.mem_bus_space_handle = rman_get_bushandle(sc->mem_res); 4221f7e3916SSepherosa Ziehau 4231f7e3916SSepherosa Ziehau sc->hw.hw_addr = (uint8_t *)&sc->osdep.mem_bus_space_handle; 4241f7e3916SSepherosa Ziehau 4251f7e3916SSepherosa Ziehau /* Save PCI command register for Shared Code */ 4261f7e3916SSepherosa Ziehau sc->hw.bus.pci_cmd_word = pci_read_config(dev, PCIR_COMMAND, 2); 4271f7e3916SSepherosa Ziehau sc->hw.back = &sc->osdep; 4281f7e3916SSepherosa Ziehau 4291f7e3916SSepherosa Ziehau sc->intr_rate = IGB_INTR_RATE; 4301f7e3916SSepherosa Ziehau 4311f7e3916SSepherosa Ziehau /* Do Shared Code initialization */ 4321f7e3916SSepherosa Ziehau if (e1000_setup_init_funcs(&sc->hw, TRUE)) { 4331f7e3916SSepherosa Ziehau device_printf(dev, "Setup of Shared code failed\n"); 4341f7e3916SSepherosa Ziehau error = ENXIO; 4351f7e3916SSepherosa Ziehau goto failed; 4361f7e3916SSepherosa Ziehau } 4371f7e3916SSepherosa Ziehau 4381f7e3916SSepherosa Ziehau e1000_get_bus_info(&sc->hw); 4391f7e3916SSepherosa Ziehau 4401f7e3916SSepherosa Ziehau sc->hw.mac.autoneg = DO_AUTO_NEG; 4411f7e3916SSepherosa Ziehau sc->hw.phy.autoneg_wait_to_complete = FALSE; 4421f7e3916SSepherosa Ziehau sc->hw.phy.autoneg_advertised = AUTONEG_ADV_DEFAULT; 4431f7e3916SSepherosa Ziehau 4441f7e3916SSepherosa Ziehau /* Copper options */ 4451f7e3916SSepherosa Ziehau if (sc->hw.phy.media_type == e1000_media_type_copper) { 4461f7e3916SSepherosa Ziehau sc->hw.phy.mdix = AUTO_ALL_MODES; 4471f7e3916SSepherosa Ziehau sc->hw.phy.disable_polarity_correction = FALSE; 4481f7e3916SSepherosa Ziehau sc->hw.phy.ms_type = IGB_MASTER_SLAVE; 4491f7e3916SSepherosa Ziehau } 4501f7e3916SSepherosa Ziehau 4511f7e3916SSepherosa Ziehau /* Set the frame limits assuming standard ethernet sized frames. */ 4521f7e3916SSepherosa Ziehau sc->max_frame_size = ETHERMTU + ETHER_HDR_LEN + ETHER_CRC_LEN; 4531f7e3916SSepherosa Ziehau 454a619b256SSepherosa Ziehau /* Allocate RX/TX rings */ 455a619b256SSepherosa Ziehau error = igb_alloc_rings(sc); 4561f7e3916SSepherosa Ziehau if (error) 4571f7e3916SSepherosa Ziehau goto failed; 4581f7e3916SSepherosa Ziehau 4597d235eb5SSepherosa Ziehau /* 460*a1647e40SSepherosa Ziehau * Allocate interrupt 461*a1647e40SSepherosa Ziehau */ 462*a1647e40SSepherosa Ziehau sc->intr_type = pci_alloc_1intr(dev, igb_msi_enable, 463*a1647e40SSepherosa Ziehau &sc->intr_rid, &intr_flags); 464*a1647e40SSepherosa Ziehau 465*a1647e40SSepherosa Ziehau sc->intr_res = bus_alloc_resource_any(dev, SYS_RES_IRQ, &sc->intr_rid, 466*a1647e40SSepherosa Ziehau intr_flags); 467*a1647e40SSepherosa Ziehau if (sc->intr_res == NULL) { 468*a1647e40SSepherosa Ziehau device_printf(dev, "Unable to allocate bus resource: " 469*a1647e40SSepherosa Ziehau "interrupt\n"); 470*a1647e40SSepherosa Ziehau error = ENXIO; 471*a1647e40SSepherosa Ziehau goto failed; 472*a1647e40SSepherosa Ziehau } 473*a1647e40SSepherosa Ziehau 474*a1647e40SSepherosa Ziehau /* 4757d235eb5SSepherosa Ziehau * Setup serializers 4767d235eb5SSepherosa Ziehau */ 4777d235eb5SSepherosa Ziehau lwkt_serialize_init(&sc->main_serialize); 4787d235eb5SSepherosa Ziehau i = 0; 4797d235eb5SSepherosa Ziehau sc->serializes[i++] = &sc->main_serialize; 4807d235eb5SSepherosa Ziehau 4817d235eb5SSepherosa Ziehau sc->tx_serialize = i; 4827d235eb5SSepherosa Ziehau for (j = 0; j < sc->tx_ring_cnt; ++j) 4837d235eb5SSepherosa Ziehau sc->serializes[i++] = &sc->tx_rings[j].tx_serialize; 4847d235eb5SSepherosa Ziehau 4857d235eb5SSepherosa Ziehau sc->rx_serialize = i; 4867d235eb5SSepherosa Ziehau for (j = 0; j < sc->rx_ring_cnt; ++j) 4877d235eb5SSepherosa Ziehau sc->serializes[i++] = &sc->rx_rings[j].rx_serialize; 4887d235eb5SSepherosa Ziehau 4897d235eb5SSepherosa Ziehau sc->serialize_cnt = i; 4907d235eb5SSepherosa Ziehau KKASSERT(sc->serialize_cnt <= IGB_NSERIALIZE); 4917d235eb5SSepherosa Ziehau 4921f7e3916SSepherosa Ziehau /* Allocate the appropriate stats memory */ 4931f7e3916SSepherosa Ziehau if (sc->vf_ifp) { 4941f7e3916SSepherosa Ziehau sc->stats = kmalloc(sizeof(struct e1000_vf_stats), M_DEVBUF, 4951f7e3916SSepherosa Ziehau M_WAITOK | M_ZERO); 4961f7e3916SSepherosa Ziehau igb_vf_init_stats(sc); 4971f7e3916SSepherosa Ziehau } else { 4981f7e3916SSepherosa Ziehau sc->stats = kmalloc(sizeof(struct e1000_hw_stats), M_DEVBUF, 4991f7e3916SSepherosa Ziehau M_WAITOK | M_ZERO); 5001f7e3916SSepherosa Ziehau } 5011f7e3916SSepherosa Ziehau 5021f7e3916SSepherosa Ziehau /* Allocate multicast array memory. */ 5031f7e3916SSepherosa Ziehau sc->mta = kmalloc(ETHER_ADDR_LEN * MAX_NUM_MULTICAST_ADDRESSES, 5041f7e3916SSepherosa Ziehau M_DEVBUF, M_WAITOK); 5051f7e3916SSepherosa Ziehau 5061f7e3916SSepherosa Ziehau /* Some adapter-specific advanced features */ 5071f7e3916SSepherosa Ziehau if (sc->hw.mac.type >= e1000_i350) { 5081f7e3916SSepherosa Ziehau #ifdef notyet 5091f7e3916SSepherosa Ziehau igb_set_sysctl_value(adapter, "dma_coalesce", 5101f7e3916SSepherosa Ziehau "configure dma coalesce", 5111f7e3916SSepherosa Ziehau &adapter->dma_coalesce, igb_dma_coalesce); 5121f7e3916SSepherosa Ziehau igb_set_sysctl_value(adapter, "eee_disabled", 5131f7e3916SSepherosa Ziehau "enable Energy Efficient Ethernet", 5141f7e3916SSepherosa Ziehau &adapter->hw.dev_spec._82575.eee_disable, 5151f7e3916SSepherosa Ziehau igb_eee_disabled); 5161f7e3916SSepherosa Ziehau #else 5171f7e3916SSepherosa Ziehau sc->dma_coalesce = igb_dma_coalesce; 5181f7e3916SSepherosa Ziehau sc->hw.dev_spec._82575.eee_disable = igb_eee_disabled; 5191f7e3916SSepherosa Ziehau #endif 5201f7e3916SSepherosa Ziehau e1000_set_eee_i350(&sc->hw); 5211f7e3916SSepherosa Ziehau } 5221f7e3916SSepherosa Ziehau 5231f7e3916SSepherosa Ziehau /* 5241f7e3916SSepherosa Ziehau * Start from a known state, this is important in reading the nvm and 5251f7e3916SSepherosa Ziehau * mac from that. 5261f7e3916SSepherosa Ziehau */ 5271f7e3916SSepherosa Ziehau e1000_reset_hw(&sc->hw); 5281f7e3916SSepherosa Ziehau 5291f7e3916SSepherosa Ziehau /* Make sure we have a good EEPROM before we read from it */ 5301f7e3916SSepherosa Ziehau if (e1000_validate_nvm_checksum(&sc->hw) < 0) { 5311f7e3916SSepherosa Ziehau /* 5321f7e3916SSepherosa Ziehau * Some PCI-E parts fail the first check due to 5331f7e3916SSepherosa Ziehau * the link being in sleep state, call it again, 5341f7e3916SSepherosa Ziehau * if it fails a second time its a real issue. 5351f7e3916SSepherosa Ziehau */ 5361f7e3916SSepherosa Ziehau if (e1000_validate_nvm_checksum(&sc->hw) < 0) { 5371f7e3916SSepherosa Ziehau device_printf(dev, 5381f7e3916SSepherosa Ziehau "The EEPROM Checksum Is Not Valid\n"); 5391f7e3916SSepherosa Ziehau error = EIO; 5401f7e3916SSepherosa Ziehau goto failed; 5411f7e3916SSepherosa Ziehau } 5421f7e3916SSepherosa Ziehau } 5431f7e3916SSepherosa Ziehau 5441f7e3916SSepherosa Ziehau /* Copy the permanent MAC address out of the EEPROM */ 5451f7e3916SSepherosa Ziehau if (e1000_read_mac_addr(&sc->hw) < 0) { 5461f7e3916SSepherosa Ziehau device_printf(dev, "EEPROM read error while reading MAC" 5471f7e3916SSepherosa Ziehau " address\n"); 5481f7e3916SSepherosa Ziehau error = EIO; 5491f7e3916SSepherosa Ziehau goto failed; 5501f7e3916SSepherosa Ziehau } 5511f7e3916SSepherosa Ziehau if (!igb_is_valid_ether_addr(sc->hw.mac.addr)) { 5521f7e3916SSepherosa Ziehau device_printf(dev, "Invalid MAC address\n"); 5531f7e3916SSepherosa Ziehau error = EIO; 5541f7e3916SSepherosa Ziehau goto failed; 5551f7e3916SSepherosa Ziehau } 5561f7e3916SSepherosa Ziehau 5571f7e3916SSepherosa Ziehau #ifdef notyet 5581f7e3916SSepherosa Ziehau /* 5591f7e3916SSepherosa Ziehau ** Configure Interrupts 5601f7e3916SSepherosa Ziehau */ 5611f7e3916SSepherosa Ziehau if ((adapter->msix > 1) && (igb_enable_msix)) 5621f7e3916SSepherosa Ziehau error = igb_allocate_msix(adapter); 5631f7e3916SSepherosa Ziehau else /* MSI or Legacy */ 5641f7e3916SSepherosa Ziehau error = igb_allocate_legacy(adapter); 5651f7e3916SSepherosa Ziehau if (error) 5661f7e3916SSepherosa Ziehau goto err_late; 5671f7e3916SSepherosa Ziehau #endif 5681f7e3916SSepherosa Ziehau 5691f7e3916SSepherosa Ziehau /* Setup OS specific network interface */ 5701f7e3916SSepherosa Ziehau igb_setup_ifp(sc); 5711f7e3916SSepherosa Ziehau 5721f7e3916SSepherosa Ziehau /* Add sysctl tree, must after igb_setup_ifp() */ 5731f7e3916SSepherosa Ziehau igb_add_sysctl(sc); 5741f7e3916SSepherosa Ziehau 5751f7e3916SSepherosa Ziehau /* Now get a good starting state */ 5761f7e3916SSepherosa Ziehau igb_reset(sc); 5771f7e3916SSepherosa Ziehau 5781f7e3916SSepherosa Ziehau /* Initialize statistics */ 5791f7e3916SSepherosa Ziehau igb_update_stats_counters(sc); 5801f7e3916SSepherosa Ziehau 5811f7e3916SSepherosa Ziehau sc->hw.mac.get_link_status = 1; 5821f7e3916SSepherosa Ziehau igb_update_link_status(sc); 5831f7e3916SSepherosa Ziehau 5841f7e3916SSepherosa Ziehau /* Indicate SOL/IDER usage */ 5851f7e3916SSepherosa Ziehau if (e1000_check_reset_block(&sc->hw)) { 5861f7e3916SSepherosa Ziehau device_printf(dev, 5871f7e3916SSepherosa Ziehau "PHY reset is blocked due to SOL/IDER session.\n"); 5881f7e3916SSepherosa Ziehau } 5891f7e3916SSepherosa Ziehau 5901f7e3916SSepherosa Ziehau /* Determine if we have to control management hardware */ 591396b7048SSepherosa Ziehau if (e1000_enable_mng_pass_thru(&sc->hw)) 592396b7048SSepherosa Ziehau sc->flags |= IGB_FLAG_HAS_MGMT; 5931f7e3916SSepherosa Ziehau 5941f7e3916SSepherosa Ziehau /* 5951f7e3916SSepherosa Ziehau * Setup Wake-on-Lan 5961f7e3916SSepherosa Ziehau */ 5971f7e3916SSepherosa Ziehau /* APME bit in EEPROM is mapped to WUC.APME */ 5981f7e3916SSepherosa Ziehau eeprom_data = E1000_READ_REG(&sc->hw, E1000_WUC) & E1000_WUC_APME; 5991f7e3916SSepherosa Ziehau if (eeprom_data) 6001f7e3916SSepherosa Ziehau sc->wol = E1000_WUFC_MAG; 6011f7e3916SSepherosa Ziehau /* XXX disable WOL */ 6021f7e3916SSepherosa Ziehau sc->wol = 0; 6031f7e3916SSepherosa Ziehau 6041f7e3916SSepherosa Ziehau #ifdef notyet 6051f7e3916SSepherosa Ziehau /* Register for VLAN events */ 6061f7e3916SSepherosa Ziehau adapter->vlan_attach = EVENTHANDLER_REGISTER(vlan_config, 6071f7e3916SSepherosa Ziehau igb_register_vlan, adapter, EVENTHANDLER_PRI_FIRST); 6081f7e3916SSepherosa Ziehau adapter->vlan_detach = EVENTHANDLER_REGISTER(vlan_unconfig, 6091f7e3916SSepherosa Ziehau igb_unregister_vlan, adapter, EVENTHANDLER_PRI_FIRST); 6101f7e3916SSepherosa Ziehau #endif 6111f7e3916SSepherosa Ziehau 6121f7e3916SSepherosa Ziehau #ifdef notyet 6131f7e3916SSepherosa Ziehau igb_add_hw_stats(adapter); 6141f7e3916SSepherosa Ziehau #endif 6151f7e3916SSepherosa Ziehau 616f6167a56SSepherosa Ziehau error = igb_setup_intr(sc); 6171f7e3916SSepherosa Ziehau if (error) { 6181f7e3916SSepherosa Ziehau ether_ifdetach(&sc->arpcom.ac_if); 6191f7e3916SSepherosa Ziehau goto failed; 6201f7e3916SSepherosa Ziehau } 6211f7e3916SSepherosa Ziehau return 0; 6221f7e3916SSepherosa Ziehau 6231f7e3916SSepherosa Ziehau failed: 6241f7e3916SSepherosa Ziehau igb_detach(dev); 6251f7e3916SSepherosa Ziehau return error; 6261f7e3916SSepherosa Ziehau } 6271f7e3916SSepherosa Ziehau 6281f7e3916SSepherosa Ziehau static int 6291f7e3916SSepherosa Ziehau igb_detach(device_t dev) 6301f7e3916SSepherosa Ziehau { 6311f7e3916SSepherosa Ziehau struct igb_softc *sc = device_get_softc(dev); 6321f7e3916SSepherosa Ziehau 6331f7e3916SSepherosa Ziehau if (device_is_attached(dev)) { 6341f7e3916SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 6351f7e3916SSepherosa Ziehau 6361f7e3916SSepherosa Ziehau ifnet_serialize_all(ifp); 6371f7e3916SSepherosa Ziehau 6381f7e3916SSepherosa Ziehau igb_stop(sc); 6391f7e3916SSepherosa Ziehau 6401f7e3916SSepherosa Ziehau e1000_phy_hw_reset(&sc->hw); 6411f7e3916SSepherosa Ziehau 6421f7e3916SSepherosa Ziehau /* Give control back to firmware */ 6431f7e3916SSepherosa Ziehau igb_rel_mgmt(sc); 6441f7e3916SSepherosa Ziehau igb_rel_hw_control(sc); 6451f7e3916SSepherosa Ziehau 6461f7e3916SSepherosa Ziehau if (sc->wol) { 6471f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_WUC, E1000_WUC_PME_EN); 6481f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_WUFC, sc->wol); 6491f7e3916SSepherosa Ziehau igb_enable_wol(dev); 6501f7e3916SSepherosa Ziehau } 6511f7e3916SSepherosa Ziehau 6521f7e3916SSepherosa Ziehau bus_teardown_intr(dev, sc->intr_res, sc->intr_tag); 6531f7e3916SSepherosa Ziehau 6541f7e3916SSepherosa Ziehau ifnet_deserialize_all(ifp); 6551f7e3916SSepherosa Ziehau 6561f7e3916SSepherosa Ziehau ether_ifdetach(ifp); 6571f7e3916SSepherosa Ziehau } else if (sc->mem_res != NULL) { 6581f7e3916SSepherosa Ziehau igb_rel_hw_control(sc); 6591f7e3916SSepherosa Ziehau } 6601f7e3916SSepherosa Ziehau bus_generic_detach(dev); 6611f7e3916SSepherosa Ziehau 6621f7e3916SSepherosa Ziehau if (sc->intr_res != NULL) { 6631f7e3916SSepherosa Ziehau bus_release_resource(dev, SYS_RES_IRQ, sc->intr_rid, 6641f7e3916SSepherosa Ziehau sc->intr_res); 6651f7e3916SSepherosa Ziehau } 6661f7e3916SSepherosa Ziehau if (sc->intr_type == PCI_INTR_TYPE_MSI) 6671f7e3916SSepherosa Ziehau pci_release_msi(dev); 6681f7e3916SSepherosa Ziehau 6691f7e3916SSepherosa Ziehau if (sc->mem_res != NULL) { 6701f7e3916SSepherosa Ziehau bus_release_resource(dev, SYS_RES_MEMORY, sc->mem_rid, 6711f7e3916SSepherosa Ziehau sc->mem_res); 6721f7e3916SSepherosa Ziehau } 6731f7e3916SSepherosa Ziehau 674a619b256SSepherosa Ziehau igb_free_rings(sc); 6751f7e3916SSepherosa Ziehau 6761f7e3916SSepherosa Ziehau if (sc->mta != NULL) 6771f7e3916SSepherosa Ziehau kfree(sc->mta, M_DEVBUF); 6781f7e3916SSepherosa Ziehau if (sc->stats != NULL) 6791f7e3916SSepherosa Ziehau kfree(sc->stats, M_DEVBUF); 6801f7e3916SSepherosa Ziehau 6811f7e3916SSepherosa Ziehau if (sc->sysctl_tree != NULL) 6821f7e3916SSepherosa Ziehau sysctl_ctx_free(&sc->sysctl_ctx); 6831f7e3916SSepherosa Ziehau 6841f7e3916SSepherosa Ziehau return 0; 6851f7e3916SSepherosa Ziehau } 6861f7e3916SSepherosa Ziehau 6871f7e3916SSepherosa Ziehau static int 6881f7e3916SSepherosa Ziehau igb_shutdown(device_t dev) 6891f7e3916SSepherosa Ziehau { 6901f7e3916SSepherosa Ziehau return igb_suspend(dev); 6911f7e3916SSepherosa Ziehau } 6921f7e3916SSepherosa Ziehau 6931f7e3916SSepherosa Ziehau static int 6941f7e3916SSepherosa Ziehau igb_suspend(device_t dev) 6951f7e3916SSepherosa Ziehau { 6961f7e3916SSepherosa Ziehau struct igb_softc *sc = device_get_softc(dev); 6971f7e3916SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 6981f7e3916SSepherosa Ziehau 6991f7e3916SSepherosa Ziehau ifnet_serialize_all(ifp); 7001f7e3916SSepherosa Ziehau 7011f7e3916SSepherosa Ziehau igb_stop(sc); 7021f7e3916SSepherosa Ziehau 7031f7e3916SSepherosa Ziehau igb_rel_mgmt(sc); 7041f7e3916SSepherosa Ziehau igb_rel_hw_control(sc); 7051f7e3916SSepherosa Ziehau 7061f7e3916SSepherosa Ziehau if (sc->wol) { 7071f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_WUC, E1000_WUC_PME_EN); 7081f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_WUFC, sc->wol); 7091f7e3916SSepherosa Ziehau igb_enable_wol(dev); 7101f7e3916SSepherosa Ziehau } 7111f7e3916SSepherosa Ziehau 7121f7e3916SSepherosa Ziehau ifnet_deserialize_all(ifp); 7131f7e3916SSepherosa Ziehau 7141f7e3916SSepherosa Ziehau return bus_generic_suspend(dev); 7151f7e3916SSepherosa Ziehau } 7161f7e3916SSepherosa Ziehau 7171f7e3916SSepherosa Ziehau static int 7181f7e3916SSepherosa Ziehau igb_resume(device_t dev) 7191f7e3916SSepherosa Ziehau { 7201f7e3916SSepherosa Ziehau struct igb_softc *sc = device_get_softc(dev); 7211f7e3916SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 7221f7e3916SSepherosa Ziehau 7231f7e3916SSepherosa Ziehau ifnet_serialize_all(ifp); 7241f7e3916SSepherosa Ziehau 7251f7e3916SSepherosa Ziehau igb_init(sc); 7261f7e3916SSepherosa Ziehau igb_get_mgmt(sc); 7271f7e3916SSepherosa Ziehau 7281f7e3916SSepherosa Ziehau if_devstart(ifp); 7291f7e3916SSepherosa Ziehau 7301f7e3916SSepherosa Ziehau ifnet_deserialize_all(ifp); 7311f7e3916SSepherosa Ziehau 7321f7e3916SSepherosa Ziehau return bus_generic_resume(dev); 7331f7e3916SSepherosa Ziehau } 7341f7e3916SSepherosa Ziehau 7351f7e3916SSepherosa Ziehau static int 7361f7e3916SSepherosa Ziehau igb_ioctl(struct ifnet *ifp, u_long command, caddr_t data, struct ucred *cr) 7371f7e3916SSepherosa Ziehau { 7381f7e3916SSepherosa Ziehau struct igb_softc *sc = ifp->if_softc; 7391f7e3916SSepherosa Ziehau struct ifreq *ifr = (struct ifreq *)data; 7401f7e3916SSepherosa Ziehau int max_frame_size, mask, reinit; 7411f7e3916SSepherosa Ziehau int error = 0; 7421f7e3916SSepherosa Ziehau 7431f7e3916SSepherosa Ziehau ASSERT_IFNET_SERIALIZED_ALL(ifp); 7441f7e3916SSepherosa Ziehau 7451f7e3916SSepherosa Ziehau switch (command) { 7461f7e3916SSepherosa Ziehau case SIOCSIFMTU: 7471f7e3916SSepherosa Ziehau max_frame_size = 9234; 7481f7e3916SSepherosa Ziehau if (ifr->ifr_mtu > max_frame_size - ETHER_HDR_LEN - 7491f7e3916SSepherosa Ziehau ETHER_CRC_LEN) { 7501f7e3916SSepherosa Ziehau error = EINVAL; 7511f7e3916SSepherosa Ziehau break; 7521f7e3916SSepherosa Ziehau } 7531f7e3916SSepherosa Ziehau 7541f7e3916SSepherosa Ziehau ifp->if_mtu = ifr->ifr_mtu; 7551f7e3916SSepherosa Ziehau sc->max_frame_size = ifp->if_mtu + ETHER_HDR_LEN + 7561f7e3916SSepherosa Ziehau ETHER_CRC_LEN; 7571f7e3916SSepherosa Ziehau 7581f7e3916SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) 7591f7e3916SSepherosa Ziehau igb_init(sc); 7601f7e3916SSepherosa Ziehau break; 7611f7e3916SSepherosa Ziehau 7621f7e3916SSepherosa Ziehau case SIOCSIFFLAGS: 7631f7e3916SSepherosa Ziehau if (ifp->if_flags & IFF_UP) { 7641f7e3916SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) { 7651f7e3916SSepherosa Ziehau if ((ifp->if_flags ^ sc->if_flags) & 7661f7e3916SSepherosa Ziehau (IFF_PROMISC | IFF_ALLMULTI)) { 7671f7e3916SSepherosa Ziehau igb_disable_promisc(sc); 7681f7e3916SSepherosa Ziehau igb_set_promisc(sc); 7691f7e3916SSepherosa Ziehau } 7701f7e3916SSepherosa Ziehau } else { 7711f7e3916SSepherosa Ziehau igb_init(sc); 7721f7e3916SSepherosa Ziehau } 7731f7e3916SSepherosa Ziehau } else if (ifp->if_flags & IFF_RUNNING) { 7741f7e3916SSepherosa Ziehau igb_stop(sc); 7751f7e3916SSepherosa Ziehau } 7761f7e3916SSepherosa Ziehau sc->if_flags = ifp->if_flags; 7771f7e3916SSepherosa Ziehau break; 7781f7e3916SSepherosa Ziehau 7791f7e3916SSepherosa Ziehau case SIOCADDMULTI: 7801f7e3916SSepherosa Ziehau case SIOCDELMULTI: 7811f7e3916SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) { 7821f7e3916SSepherosa Ziehau igb_disable_intr(sc); 7831f7e3916SSepherosa Ziehau igb_set_multi(sc); 7841f7e3916SSepherosa Ziehau #ifdef DEVICE_POLLING 7851f7e3916SSepherosa Ziehau if (!(ifp->if_flags & IFF_POLLING)) 7861f7e3916SSepherosa Ziehau #endif 7871f7e3916SSepherosa Ziehau igb_enable_intr(sc); 7881f7e3916SSepherosa Ziehau } 7891f7e3916SSepherosa Ziehau break; 7901f7e3916SSepherosa Ziehau 7911f7e3916SSepherosa Ziehau case SIOCSIFMEDIA: 7921f7e3916SSepherosa Ziehau /* 7931f7e3916SSepherosa Ziehau * As the speed/duplex settings are being 7941f7e3916SSepherosa Ziehau * changed, we need toreset the PHY. 7951f7e3916SSepherosa Ziehau */ 7961f7e3916SSepherosa Ziehau sc->hw.phy.reset_disable = FALSE; 7971f7e3916SSepherosa Ziehau 7981f7e3916SSepherosa Ziehau /* Check SOL/IDER usage */ 7991f7e3916SSepherosa Ziehau if (e1000_check_reset_block(&sc->hw)) { 8001f7e3916SSepherosa Ziehau if_printf(ifp, "Media change is " 8011f7e3916SSepherosa Ziehau "blocked due to SOL/IDER session.\n"); 8021f7e3916SSepherosa Ziehau break; 8031f7e3916SSepherosa Ziehau } 8041f7e3916SSepherosa Ziehau /* FALL THROUGH */ 8051f7e3916SSepherosa Ziehau 8061f7e3916SSepherosa Ziehau case SIOCGIFMEDIA: 8071f7e3916SSepherosa Ziehau error = ifmedia_ioctl(ifp, ifr, &sc->media, command); 8081f7e3916SSepherosa Ziehau break; 8091f7e3916SSepherosa Ziehau 8101f7e3916SSepherosa Ziehau case SIOCSIFCAP: 8111f7e3916SSepherosa Ziehau reinit = 0; 8121f7e3916SSepherosa Ziehau mask = ifr->ifr_reqcap ^ ifp->if_capenable; 8131f7e3916SSepherosa Ziehau if (mask & IFCAP_HWCSUM) { 8141f7e3916SSepherosa Ziehau ifp->if_capenable ^= (mask & IFCAP_HWCSUM); 8151f7e3916SSepherosa Ziehau reinit = 1; 8161f7e3916SSepherosa Ziehau } 8171f7e3916SSepherosa Ziehau if (mask & IFCAP_VLAN_HWTAGGING) { 8181f7e3916SSepherosa Ziehau ifp->if_capenable ^= IFCAP_VLAN_HWTAGGING; 8191f7e3916SSepherosa Ziehau reinit = 1; 8201f7e3916SSepherosa Ziehau } 8218d6600daSSepherosa Ziehau if (mask & IFCAP_RSS) 8228d6600daSSepherosa Ziehau ifp->if_capenable ^= IFCAP_RSS; 8231f7e3916SSepherosa Ziehau if (reinit && (ifp->if_flags & IFF_RUNNING)) 8241f7e3916SSepherosa Ziehau igb_init(sc); 8251f7e3916SSepherosa Ziehau break; 8261f7e3916SSepherosa Ziehau 8271f7e3916SSepherosa Ziehau default: 8281f7e3916SSepherosa Ziehau error = ether_ioctl(ifp, command, data); 8291f7e3916SSepherosa Ziehau break; 8301f7e3916SSepherosa Ziehau } 8311f7e3916SSepherosa Ziehau return error; 8321f7e3916SSepherosa Ziehau } 8331f7e3916SSepherosa Ziehau 8341f7e3916SSepherosa Ziehau static void 8351f7e3916SSepherosa Ziehau igb_init(void *xsc) 8361f7e3916SSepherosa Ziehau { 8371f7e3916SSepherosa Ziehau struct igb_softc *sc = xsc; 8381f7e3916SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 8391f7e3916SSepherosa Ziehau int i; 8401f7e3916SSepherosa Ziehau 8411f7e3916SSepherosa Ziehau ASSERT_IFNET_SERIALIZED_ALL(ifp); 8421f7e3916SSepherosa Ziehau 8431f7e3916SSepherosa Ziehau igb_stop(sc); 8441f7e3916SSepherosa Ziehau 8451f7e3916SSepherosa Ziehau /* Get the latest mac address, User can use a LAA */ 8461f7e3916SSepherosa Ziehau bcopy(IF_LLADDR(ifp), sc->hw.mac.addr, ETHER_ADDR_LEN); 8471f7e3916SSepherosa Ziehau 8481f7e3916SSepherosa Ziehau /* Put the address into the Receive Address Array */ 8491f7e3916SSepherosa Ziehau e1000_rar_set(&sc->hw, sc->hw.mac.addr, 0); 8501f7e3916SSepherosa Ziehau 8511f7e3916SSepherosa Ziehau igb_reset(sc); 8521f7e3916SSepherosa Ziehau igb_update_link_status(sc); 8531f7e3916SSepherosa Ziehau 8541f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_VET, ETHERTYPE_VLAN); 8551f7e3916SSepherosa Ziehau 8561f7e3916SSepherosa Ziehau /* Set hardware offload abilities */ 8571f7e3916SSepherosa Ziehau if (ifp->if_capenable & IFCAP_TXCSUM) 8581f7e3916SSepherosa Ziehau ifp->if_hwassist = IGB_CSUM_FEATURES; 8591f7e3916SSepherosa Ziehau else 8601f7e3916SSepherosa Ziehau ifp->if_hwassist = 0; 8611f7e3916SSepherosa Ziehau 8621f7e3916SSepherosa Ziehau /* Configure for OS presence */ 8631f7e3916SSepherosa Ziehau igb_get_mgmt(sc); 8641f7e3916SSepherosa Ziehau 865be922da6SSepherosa Ziehau if (IGB_ENABLE_HWRSS(sc)) { 866be922da6SSepherosa Ziehau if (sc->intr_type != PCI_INTR_TYPE_MSIX 867be922da6SSepherosa Ziehau #ifdef DEVICE_POLLING 868be922da6SSepherosa Ziehau || (ifp->if_flags & IFF_POLLING) 869be922da6SSepherosa Ziehau #endif 870be922da6SSepherosa Ziehau ) { 871be922da6SSepherosa Ziehau sc->rx_ring_inuse = IGB_MIN_RING_RSS; 872be922da6SSepherosa Ziehau if (bootverbose) { 873be922da6SSepherosa Ziehau if_printf(ifp, "RX rings %d/%d\n", 874be922da6SSepherosa Ziehau sc->rx_ring_inuse, sc->rx_ring_cnt); 875be922da6SSepherosa Ziehau } 876be922da6SSepherosa Ziehau } 877be922da6SSepherosa Ziehau } 878be922da6SSepherosa Ziehau 8791f7e3916SSepherosa Ziehau /* Prepare transmit descriptors and buffers */ 88027866bf1SSepherosa Ziehau for (i = 0; i < sc->tx_ring_cnt; ++i) 8811f7e3916SSepherosa Ziehau igb_init_tx_ring(&sc->tx_rings[i]); 8821f7e3916SSepherosa Ziehau igb_init_tx_unit(sc); 8831f7e3916SSepherosa Ziehau 8841f7e3916SSepherosa Ziehau /* Setup Multicast table */ 8851f7e3916SSepherosa Ziehau igb_set_multi(sc); 8861f7e3916SSepherosa Ziehau 8871f7e3916SSepherosa Ziehau #if 0 8881f7e3916SSepherosa Ziehau /* 8891f7e3916SSepherosa Ziehau * Figure out the desired mbuf pool 8901f7e3916SSepherosa Ziehau * for doing jumbo/packetsplit 8911f7e3916SSepherosa Ziehau */ 8921f7e3916SSepherosa Ziehau if (adapter->max_frame_size <= 2048) 8931f7e3916SSepherosa Ziehau adapter->rx_mbuf_sz = MCLBYTES; 8941f7e3916SSepherosa Ziehau else if (adapter->max_frame_size <= 4096) 8951f7e3916SSepherosa Ziehau adapter->rx_mbuf_sz = MJUMPAGESIZE; 8961f7e3916SSepherosa Ziehau else 8971f7e3916SSepherosa Ziehau adapter->rx_mbuf_sz = MJUM9BYTES; 8981f7e3916SSepherosa Ziehau #endif 8991f7e3916SSepherosa Ziehau 900f6167a56SSepherosa Ziehau /* Initialize interrupt */ 901f6167a56SSepherosa Ziehau igb_init_intr(sc); 902f6167a56SSepherosa Ziehau 9031f7e3916SSepherosa Ziehau /* Prepare receive descriptors and buffers */ 904be922da6SSepherosa Ziehau for (i = 0; i < sc->rx_ring_inuse; ++i) { 9051f7e3916SSepherosa Ziehau int error; 9061f7e3916SSepherosa Ziehau 9071f7e3916SSepherosa Ziehau error = igb_init_rx_ring(&sc->rx_rings[i]); 9081f7e3916SSepherosa Ziehau if (error) { 9091f7e3916SSepherosa Ziehau if_printf(ifp, "Could not setup receive structures\n"); 9101f7e3916SSepherosa Ziehau igb_stop(sc); 9111f7e3916SSepherosa Ziehau return; 9121f7e3916SSepherosa Ziehau } 9131f7e3916SSepherosa Ziehau } 9141f7e3916SSepherosa Ziehau igb_init_rx_unit(sc); 9151f7e3916SSepherosa Ziehau 9161f7e3916SSepherosa Ziehau /* Enable VLAN support */ 9171f7e3916SSepherosa Ziehau if (ifp->if_capenable & IFCAP_VLAN_HWTAGGING) 9181f7e3916SSepherosa Ziehau igb_set_vlan(sc); 9191f7e3916SSepherosa Ziehau 9201f7e3916SSepherosa Ziehau /* Don't lose promiscuous settings */ 9211f7e3916SSepherosa Ziehau igb_set_promisc(sc); 9221f7e3916SSepherosa Ziehau 9231f7e3916SSepherosa Ziehau ifp->if_flags |= IFF_RUNNING; 9241f7e3916SSepherosa Ziehau ifp->if_flags &= ~IFF_OACTIVE; 9251f7e3916SSepherosa Ziehau 9261f7e3916SSepherosa Ziehau callout_reset(&sc->timer, hz, igb_timer, sc); 9271f7e3916SSepherosa Ziehau e1000_clear_hw_cntrs_base_generic(&sc->hw); 9281f7e3916SSepherosa Ziehau 9291f7e3916SSepherosa Ziehau #if 0 9301f7e3916SSepherosa Ziehau if (adapter->msix > 1) /* Set up queue routing */ 9311f7e3916SSepherosa Ziehau igb_configure_queues(adapter); 9321f7e3916SSepherosa Ziehau #endif 9331f7e3916SSepherosa Ziehau 9341f7e3916SSepherosa Ziehau /* this clears any pending interrupts */ 9351f7e3916SSepherosa Ziehau E1000_READ_REG(&sc->hw, E1000_ICR); 9361f7e3916SSepherosa Ziehau #ifdef DEVICE_POLLING 9371f7e3916SSepherosa Ziehau /* 9381f7e3916SSepherosa Ziehau * Only enable interrupts if we are not polling, make sure 9391f7e3916SSepherosa Ziehau * they are off otherwise. 9401f7e3916SSepherosa Ziehau */ 9411f7e3916SSepherosa Ziehau if (ifp->if_flags & IFF_POLLING) 9421f7e3916SSepherosa Ziehau igb_disable_intr(sc); 9431f7e3916SSepherosa Ziehau else 9441f7e3916SSepherosa Ziehau #endif /* DEVICE_POLLING */ 9451f7e3916SSepherosa Ziehau { 9461f7e3916SSepherosa Ziehau igb_enable_intr(sc); 9471f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_ICS, E1000_ICS_LSC); 9481f7e3916SSepherosa Ziehau } 9491f7e3916SSepherosa Ziehau 9501f7e3916SSepherosa Ziehau /* Set Energy Efficient Ethernet */ 9511f7e3916SSepherosa Ziehau e1000_set_eee_i350(&sc->hw); 9521f7e3916SSepherosa Ziehau 9531f7e3916SSepherosa Ziehau /* Don't reset the phy next time init gets called */ 9541f7e3916SSepherosa Ziehau sc->hw.phy.reset_disable = TRUE; 9551f7e3916SSepherosa Ziehau } 9561f7e3916SSepherosa Ziehau 9571f7e3916SSepherosa Ziehau static void 9581f7e3916SSepherosa Ziehau igb_media_status(struct ifnet *ifp, struct ifmediareq *ifmr) 9591f7e3916SSepherosa Ziehau { 9601f7e3916SSepherosa Ziehau struct igb_softc *sc = ifp->if_softc; 9611f7e3916SSepherosa Ziehau u_char fiber_type = IFM_1000_SX; 9621f7e3916SSepherosa Ziehau 9631f7e3916SSepherosa Ziehau ASSERT_IFNET_SERIALIZED_ALL(ifp); 9641f7e3916SSepherosa Ziehau 9651f7e3916SSepherosa Ziehau igb_update_link_status(sc); 9661f7e3916SSepherosa Ziehau 9671f7e3916SSepherosa Ziehau ifmr->ifm_status = IFM_AVALID; 9681f7e3916SSepherosa Ziehau ifmr->ifm_active = IFM_ETHER; 9691f7e3916SSepherosa Ziehau 9701f7e3916SSepherosa Ziehau if (!sc->link_active) 9711f7e3916SSepherosa Ziehau return; 9721f7e3916SSepherosa Ziehau 9731f7e3916SSepherosa Ziehau ifmr->ifm_status |= IFM_ACTIVE; 9741f7e3916SSepherosa Ziehau 9751f7e3916SSepherosa Ziehau if (sc->hw.phy.media_type == e1000_media_type_fiber || 9761f7e3916SSepherosa Ziehau sc->hw.phy.media_type == e1000_media_type_internal_serdes) { 9771f7e3916SSepherosa Ziehau ifmr->ifm_active |= fiber_type | IFM_FDX; 9781f7e3916SSepherosa Ziehau } else { 9791f7e3916SSepherosa Ziehau switch (sc->link_speed) { 9801f7e3916SSepherosa Ziehau case 10: 9811f7e3916SSepherosa Ziehau ifmr->ifm_active |= IFM_10_T; 9821f7e3916SSepherosa Ziehau break; 9831f7e3916SSepherosa Ziehau 9841f7e3916SSepherosa Ziehau case 100: 9851f7e3916SSepherosa Ziehau ifmr->ifm_active |= IFM_100_TX; 9861f7e3916SSepherosa Ziehau break; 9871f7e3916SSepherosa Ziehau 9881f7e3916SSepherosa Ziehau case 1000: 9891f7e3916SSepherosa Ziehau ifmr->ifm_active |= IFM_1000_T; 9901f7e3916SSepherosa Ziehau break; 9911f7e3916SSepherosa Ziehau } 9921f7e3916SSepherosa Ziehau if (sc->link_duplex == FULL_DUPLEX) 9931f7e3916SSepherosa Ziehau ifmr->ifm_active |= IFM_FDX; 9941f7e3916SSepherosa Ziehau else 9951f7e3916SSepherosa Ziehau ifmr->ifm_active |= IFM_HDX; 9961f7e3916SSepherosa Ziehau } 9971f7e3916SSepherosa Ziehau } 9981f7e3916SSepherosa Ziehau 9991f7e3916SSepherosa Ziehau static int 10001f7e3916SSepherosa Ziehau igb_media_change(struct ifnet *ifp) 10011f7e3916SSepherosa Ziehau { 10021f7e3916SSepherosa Ziehau struct igb_softc *sc = ifp->if_softc; 10031f7e3916SSepherosa Ziehau struct ifmedia *ifm = &sc->media; 10041f7e3916SSepherosa Ziehau 10051f7e3916SSepherosa Ziehau ASSERT_IFNET_SERIALIZED_ALL(ifp); 10061f7e3916SSepherosa Ziehau 10071f7e3916SSepherosa Ziehau if (IFM_TYPE(ifm->ifm_media) != IFM_ETHER) 10081f7e3916SSepherosa Ziehau return EINVAL; 10091f7e3916SSepherosa Ziehau 10101f7e3916SSepherosa Ziehau switch (IFM_SUBTYPE(ifm->ifm_media)) { 10111f7e3916SSepherosa Ziehau case IFM_AUTO: 10121f7e3916SSepherosa Ziehau sc->hw.mac.autoneg = DO_AUTO_NEG; 10131f7e3916SSepherosa Ziehau sc->hw.phy.autoneg_advertised = AUTONEG_ADV_DEFAULT; 10141f7e3916SSepherosa Ziehau break; 10151f7e3916SSepherosa Ziehau 10161f7e3916SSepherosa Ziehau case IFM_1000_LX: 10171f7e3916SSepherosa Ziehau case IFM_1000_SX: 10181f7e3916SSepherosa Ziehau case IFM_1000_T: 10191f7e3916SSepherosa Ziehau sc->hw.mac.autoneg = DO_AUTO_NEG; 10201f7e3916SSepherosa Ziehau sc->hw.phy.autoneg_advertised = ADVERTISE_1000_FULL; 10211f7e3916SSepherosa Ziehau break; 10221f7e3916SSepherosa Ziehau 10231f7e3916SSepherosa Ziehau case IFM_100_TX: 10241f7e3916SSepherosa Ziehau sc->hw.mac.autoneg = FALSE; 10251f7e3916SSepherosa Ziehau sc->hw.phy.autoneg_advertised = 0; 10261f7e3916SSepherosa Ziehau if ((ifm->ifm_media & IFM_GMASK) == IFM_FDX) 10271f7e3916SSepherosa Ziehau sc->hw.mac.forced_speed_duplex = ADVERTISE_100_FULL; 10281f7e3916SSepherosa Ziehau else 10291f7e3916SSepherosa Ziehau sc->hw.mac.forced_speed_duplex = ADVERTISE_100_HALF; 10301f7e3916SSepherosa Ziehau break; 10311f7e3916SSepherosa Ziehau 10321f7e3916SSepherosa Ziehau case IFM_10_T: 10331f7e3916SSepherosa Ziehau sc->hw.mac.autoneg = FALSE; 10341f7e3916SSepherosa Ziehau sc->hw.phy.autoneg_advertised = 0; 10351f7e3916SSepherosa Ziehau if ((ifm->ifm_media & IFM_GMASK) == IFM_FDX) 10361f7e3916SSepherosa Ziehau sc->hw.mac.forced_speed_duplex = ADVERTISE_10_FULL; 10371f7e3916SSepherosa Ziehau else 10381f7e3916SSepherosa Ziehau sc->hw.mac.forced_speed_duplex = ADVERTISE_10_HALF; 10391f7e3916SSepherosa Ziehau break; 10401f7e3916SSepherosa Ziehau 10411f7e3916SSepherosa Ziehau default: 10421f7e3916SSepherosa Ziehau if_printf(ifp, "Unsupported media type\n"); 10431f7e3916SSepherosa Ziehau break; 10441f7e3916SSepherosa Ziehau } 10451f7e3916SSepherosa Ziehau 10461f7e3916SSepherosa Ziehau igb_init(sc); 10471f7e3916SSepherosa Ziehau 10481f7e3916SSepherosa Ziehau return 0; 10491f7e3916SSepherosa Ziehau } 10501f7e3916SSepherosa Ziehau 10511f7e3916SSepherosa Ziehau static void 10521f7e3916SSepherosa Ziehau igb_set_promisc(struct igb_softc *sc) 10531f7e3916SSepherosa Ziehau { 10541f7e3916SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 10551f7e3916SSepherosa Ziehau struct e1000_hw *hw = &sc->hw; 10561f7e3916SSepherosa Ziehau uint32_t reg; 10571f7e3916SSepherosa Ziehau 10581f7e3916SSepherosa Ziehau if (sc->vf_ifp) { 10591f7e3916SSepherosa Ziehau e1000_promisc_set_vf(hw, e1000_promisc_enabled); 10601f7e3916SSepherosa Ziehau return; 10611f7e3916SSepherosa Ziehau } 10621f7e3916SSepherosa Ziehau 10631f7e3916SSepherosa Ziehau reg = E1000_READ_REG(hw, E1000_RCTL); 10641f7e3916SSepherosa Ziehau if (ifp->if_flags & IFF_PROMISC) { 10651f7e3916SSepherosa Ziehau reg |= (E1000_RCTL_UPE | E1000_RCTL_MPE); 10661f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_RCTL, reg); 10671f7e3916SSepherosa Ziehau } else if (ifp->if_flags & IFF_ALLMULTI) { 10681f7e3916SSepherosa Ziehau reg |= E1000_RCTL_MPE; 10691f7e3916SSepherosa Ziehau reg &= ~E1000_RCTL_UPE; 10701f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_RCTL, reg); 10711f7e3916SSepherosa Ziehau } 10721f7e3916SSepherosa Ziehau } 10731f7e3916SSepherosa Ziehau 10741f7e3916SSepherosa Ziehau static void 10751f7e3916SSepherosa Ziehau igb_disable_promisc(struct igb_softc *sc) 10761f7e3916SSepherosa Ziehau { 10771f7e3916SSepherosa Ziehau struct e1000_hw *hw = &sc->hw; 10781f7e3916SSepherosa Ziehau uint32_t reg; 10791f7e3916SSepherosa Ziehau 10801f7e3916SSepherosa Ziehau if (sc->vf_ifp) { 10811f7e3916SSepherosa Ziehau e1000_promisc_set_vf(hw, e1000_promisc_disabled); 10821f7e3916SSepherosa Ziehau return; 10831f7e3916SSepherosa Ziehau } 10841f7e3916SSepherosa Ziehau reg = E1000_READ_REG(hw, E1000_RCTL); 10851f7e3916SSepherosa Ziehau reg &= ~E1000_RCTL_UPE; 10861f7e3916SSepherosa Ziehau reg &= ~E1000_RCTL_MPE; 10871f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_RCTL, reg); 10881f7e3916SSepherosa Ziehau } 10891f7e3916SSepherosa Ziehau 10901f7e3916SSepherosa Ziehau static void 10911f7e3916SSepherosa Ziehau igb_set_multi(struct igb_softc *sc) 10921f7e3916SSepherosa Ziehau { 10931f7e3916SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 10941f7e3916SSepherosa Ziehau struct ifmultiaddr *ifma; 10951f7e3916SSepherosa Ziehau uint32_t reg_rctl = 0; 10961f7e3916SSepherosa Ziehau uint8_t *mta; 10971f7e3916SSepherosa Ziehau int mcnt = 0; 10981f7e3916SSepherosa Ziehau 10991f7e3916SSepherosa Ziehau mta = sc->mta; 11001f7e3916SSepherosa Ziehau bzero(mta, ETH_ADDR_LEN * MAX_NUM_MULTICAST_ADDRESSES); 11011f7e3916SSepherosa Ziehau 11021f7e3916SSepherosa Ziehau TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) { 11031f7e3916SSepherosa Ziehau if (ifma->ifma_addr->sa_family != AF_LINK) 11041f7e3916SSepherosa Ziehau continue; 11051f7e3916SSepherosa Ziehau 11061f7e3916SSepherosa Ziehau if (mcnt == MAX_NUM_MULTICAST_ADDRESSES) 11071f7e3916SSepherosa Ziehau break; 11081f7e3916SSepherosa Ziehau 11091f7e3916SSepherosa Ziehau bcopy(LLADDR((struct sockaddr_dl *)ifma->ifma_addr), 11101f7e3916SSepherosa Ziehau &mta[mcnt * ETH_ADDR_LEN], ETH_ADDR_LEN); 11111f7e3916SSepherosa Ziehau mcnt++; 11121f7e3916SSepherosa Ziehau } 11131f7e3916SSepherosa Ziehau 11141f7e3916SSepherosa Ziehau if (mcnt >= MAX_NUM_MULTICAST_ADDRESSES) { 11151f7e3916SSepherosa Ziehau reg_rctl = E1000_READ_REG(&sc->hw, E1000_RCTL); 11161f7e3916SSepherosa Ziehau reg_rctl |= E1000_RCTL_MPE; 11171f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_RCTL, reg_rctl); 11181f7e3916SSepherosa Ziehau } else { 11191f7e3916SSepherosa Ziehau e1000_update_mc_addr_list(&sc->hw, mta, mcnt); 11201f7e3916SSepherosa Ziehau } 11211f7e3916SSepherosa Ziehau } 11221f7e3916SSepherosa Ziehau 11231f7e3916SSepherosa Ziehau static void 11241f7e3916SSepherosa Ziehau igb_timer(void *xsc) 11251f7e3916SSepherosa Ziehau { 11261f7e3916SSepherosa Ziehau struct igb_softc *sc = xsc; 11271f7e3916SSepherosa Ziehau 112827dd00d6SSepherosa Ziehau lwkt_serialize_enter(&sc->main_serialize); 11291f7e3916SSepherosa Ziehau 11301f7e3916SSepherosa Ziehau igb_update_link_status(sc); 11311f7e3916SSepherosa Ziehau igb_update_stats_counters(sc); 11321f7e3916SSepherosa Ziehau 11331f7e3916SSepherosa Ziehau callout_reset(&sc->timer, hz, igb_timer, sc); 11341f7e3916SSepherosa Ziehau 113527dd00d6SSepherosa Ziehau lwkt_serialize_exit(&sc->main_serialize); 11361f7e3916SSepherosa Ziehau } 11371f7e3916SSepherosa Ziehau 11381f7e3916SSepherosa Ziehau static void 11391f7e3916SSepherosa Ziehau igb_update_link_status(struct igb_softc *sc) 11401f7e3916SSepherosa Ziehau { 11411f7e3916SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 11421f7e3916SSepherosa Ziehau struct e1000_hw *hw = &sc->hw; 11431f7e3916SSepherosa Ziehau uint32_t link_check, thstat, ctrl; 11441f7e3916SSepherosa Ziehau 11451f7e3916SSepherosa Ziehau link_check = thstat = ctrl = 0; 11461f7e3916SSepherosa Ziehau 11471f7e3916SSepherosa Ziehau /* Get the cached link value or read for real */ 11481f7e3916SSepherosa Ziehau switch (hw->phy.media_type) { 11491f7e3916SSepherosa Ziehau case e1000_media_type_copper: 11501f7e3916SSepherosa Ziehau if (hw->mac.get_link_status) { 11511f7e3916SSepherosa Ziehau /* Do the work to read phy */ 11521f7e3916SSepherosa Ziehau e1000_check_for_link(hw); 11531f7e3916SSepherosa Ziehau link_check = !hw->mac.get_link_status; 11541f7e3916SSepherosa Ziehau } else { 11551f7e3916SSepherosa Ziehau link_check = TRUE; 11561f7e3916SSepherosa Ziehau } 11571f7e3916SSepherosa Ziehau break; 11581f7e3916SSepherosa Ziehau 11591f7e3916SSepherosa Ziehau case e1000_media_type_fiber: 11601f7e3916SSepherosa Ziehau e1000_check_for_link(hw); 11611f7e3916SSepherosa Ziehau link_check = E1000_READ_REG(hw, E1000_STATUS) & E1000_STATUS_LU; 11621f7e3916SSepherosa Ziehau break; 11631f7e3916SSepherosa Ziehau 11641f7e3916SSepherosa Ziehau case e1000_media_type_internal_serdes: 11651f7e3916SSepherosa Ziehau e1000_check_for_link(hw); 11661f7e3916SSepherosa Ziehau link_check = hw->mac.serdes_has_link; 11671f7e3916SSepherosa Ziehau break; 11681f7e3916SSepherosa Ziehau 11691f7e3916SSepherosa Ziehau /* VF device is type_unknown */ 11701f7e3916SSepherosa Ziehau case e1000_media_type_unknown: 11711f7e3916SSepherosa Ziehau e1000_check_for_link(hw); 11721f7e3916SSepherosa Ziehau link_check = !hw->mac.get_link_status; 11731f7e3916SSepherosa Ziehau /* Fall thru */ 11741f7e3916SSepherosa Ziehau default: 11751f7e3916SSepherosa Ziehau break; 11761f7e3916SSepherosa Ziehau } 11771f7e3916SSepherosa Ziehau 11781f7e3916SSepherosa Ziehau /* Check for thermal downshift or shutdown */ 11791f7e3916SSepherosa Ziehau if (hw->mac.type == e1000_i350) { 11801f7e3916SSepherosa Ziehau thstat = E1000_READ_REG(hw, E1000_THSTAT); 11811f7e3916SSepherosa Ziehau ctrl = E1000_READ_REG(hw, E1000_CTRL_EXT); 11821f7e3916SSepherosa Ziehau } 11831f7e3916SSepherosa Ziehau 11841f7e3916SSepherosa Ziehau /* Now we check if a transition has happened */ 11851f7e3916SSepherosa Ziehau if (link_check && sc->link_active == 0) { 11861f7e3916SSepherosa Ziehau e1000_get_speed_and_duplex(hw, 11871f7e3916SSepherosa Ziehau &sc->link_speed, &sc->link_duplex); 11881f7e3916SSepherosa Ziehau if (bootverbose) { 11891f7e3916SSepherosa Ziehau if_printf(ifp, "Link is up %d Mbps %s\n", 11901f7e3916SSepherosa Ziehau sc->link_speed, 11911f7e3916SSepherosa Ziehau sc->link_duplex == FULL_DUPLEX ? 11921f7e3916SSepherosa Ziehau "Full Duplex" : "Half Duplex"); 11931f7e3916SSepherosa Ziehau } 11941f7e3916SSepherosa Ziehau sc->link_active = 1; 11951f7e3916SSepherosa Ziehau 11961f7e3916SSepherosa Ziehau ifp->if_baudrate = sc->link_speed * 1000000; 11971f7e3916SSepherosa Ziehau if ((ctrl & E1000_CTRL_EXT_LINK_MODE_GMII) && 11981f7e3916SSepherosa Ziehau (thstat & E1000_THSTAT_LINK_THROTTLE)) 11991f7e3916SSepherosa Ziehau if_printf(ifp, "Link: thermal downshift\n"); 12001f7e3916SSepherosa Ziehau /* This can sleep */ 12011f7e3916SSepherosa Ziehau ifp->if_link_state = LINK_STATE_UP; 12021f7e3916SSepherosa Ziehau if_link_state_change(ifp); 12031f7e3916SSepherosa Ziehau } else if (!link_check && sc->link_active == 1) { 12041f7e3916SSepherosa Ziehau ifp->if_baudrate = sc->link_speed = 0; 12051f7e3916SSepherosa Ziehau sc->link_duplex = 0; 12061f7e3916SSepherosa Ziehau if (bootverbose) 12071f7e3916SSepherosa Ziehau if_printf(ifp, "Link is Down\n"); 12081f7e3916SSepherosa Ziehau if ((ctrl & E1000_CTRL_EXT_LINK_MODE_GMII) && 12091f7e3916SSepherosa Ziehau (thstat & E1000_THSTAT_PWR_DOWN)) 12101f7e3916SSepherosa Ziehau if_printf(ifp, "Link: thermal shutdown\n"); 12111f7e3916SSepherosa Ziehau sc->link_active = 0; 12121f7e3916SSepherosa Ziehau /* This can sleep */ 12131f7e3916SSepherosa Ziehau ifp->if_link_state = LINK_STATE_DOWN; 12141f7e3916SSepherosa Ziehau if_link_state_change(ifp); 12151f7e3916SSepherosa Ziehau } 12161f7e3916SSepherosa Ziehau } 12171f7e3916SSepherosa Ziehau 12181f7e3916SSepherosa Ziehau static void 12191f7e3916SSepherosa Ziehau igb_stop(struct igb_softc *sc) 12201f7e3916SSepherosa Ziehau { 12211f7e3916SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 12221f7e3916SSepherosa Ziehau int i; 12231f7e3916SSepherosa Ziehau 12241f7e3916SSepherosa Ziehau ASSERT_IFNET_SERIALIZED_ALL(ifp); 12251f7e3916SSepherosa Ziehau 12261f7e3916SSepherosa Ziehau igb_disable_intr(sc); 12271f7e3916SSepherosa Ziehau 12281f7e3916SSepherosa Ziehau callout_stop(&sc->timer); 12291f7e3916SSepherosa Ziehau 12301f7e3916SSepherosa Ziehau ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE); 12311f7e3916SSepherosa Ziehau ifp->if_timer = 0; 12321f7e3916SSepherosa Ziehau 12331f7e3916SSepherosa Ziehau e1000_reset_hw(&sc->hw); 12341f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_WUC, 0); 12351f7e3916SSepherosa Ziehau 12361f7e3916SSepherosa Ziehau e1000_led_off(&sc->hw); 12371f7e3916SSepherosa Ziehau e1000_cleanup_led(&sc->hw); 12381f7e3916SSepherosa Ziehau 123927866bf1SSepherosa Ziehau for (i = 0; i < sc->tx_ring_cnt; ++i) 12401f7e3916SSepherosa Ziehau igb_free_tx_ring(&sc->tx_rings[i]); 124127866bf1SSepherosa Ziehau for (i = 0; i < sc->rx_ring_cnt; ++i) 12421f7e3916SSepherosa Ziehau igb_free_rx_ring(&sc->rx_rings[i]); 12431f7e3916SSepherosa Ziehau } 12441f7e3916SSepherosa Ziehau 12451f7e3916SSepherosa Ziehau static void 12461f7e3916SSepherosa Ziehau igb_reset(struct igb_softc *sc) 12471f7e3916SSepherosa Ziehau { 12481f7e3916SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 12491f7e3916SSepherosa Ziehau struct e1000_hw *hw = &sc->hw; 12501f7e3916SSepherosa Ziehau struct e1000_fc_info *fc = &hw->fc; 12511f7e3916SSepherosa Ziehau uint32_t pba = 0; 12521f7e3916SSepherosa Ziehau uint16_t hwm; 12531f7e3916SSepherosa Ziehau 12541f7e3916SSepherosa Ziehau /* Let the firmware know the OS is in control */ 12551f7e3916SSepherosa Ziehau igb_get_hw_control(sc); 12561f7e3916SSepherosa Ziehau 12571f7e3916SSepherosa Ziehau /* 12581f7e3916SSepherosa Ziehau * Packet Buffer Allocation (PBA) 12591f7e3916SSepherosa Ziehau * Writing PBA sets the receive portion of the buffer 12601f7e3916SSepherosa Ziehau * the remainder is used for the transmit buffer. 12611f7e3916SSepherosa Ziehau */ 12621f7e3916SSepherosa Ziehau switch (hw->mac.type) { 12631f7e3916SSepherosa Ziehau case e1000_82575: 12641f7e3916SSepherosa Ziehau pba = E1000_PBA_32K; 12651f7e3916SSepherosa Ziehau break; 12661f7e3916SSepherosa Ziehau 12671f7e3916SSepherosa Ziehau case e1000_82576: 12681f7e3916SSepherosa Ziehau case e1000_vfadapt: 12691f7e3916SSepherosa Ziehau pba = E1000_READ_REG(hw, E1000_RXPBS); 12701f7e3916SSepherosa Ziehau pba &= E1000_RXPBS_SIZE_MASK_82576; 12711f7e3916SSepherosa Ziehau break; 12721f7e3916SSepherosa Ziehau 12731f7e3916SSepherosa Ziehau case e1000_82580: 12741f7e3916SSepherosa Ziehau case e1000_i350: 12751f7e3916SSepherosa Ziehau case e1000_vfadapt_i350: 12761f7e3916SSepherosa Ziehau pba = E1000_READ_REG(hw, E1000_RXPBS); 12771f7e3916SSepherosa Ziehau pba = e1000_rxpbs_adjust_82580(pba); 12781f7e3916SSepherosa Ziehau break; 12791f7e3916SSepherosa Ziehau /* XXX pba = E1000_PBA_35K; */ 12801f7e3916SSepherosa Ziehau 12811f7e3916SSepherosa Ziehau default: 12821f7e3916SSepherosa Ziehau break; 12831f7e3916SSepherosa Ziehau } 12841f7e3916SSepherosa Ziehau 12851f7e3916SSepherosa Ziehau /* Special needs in case of Jumbo frames */ 12861f7e3916SSepherosa Ziehau if (hw->mac.type == e1000_82575 && ifp->if_mtu > ETHERMTU) { 12871f7e3916SSepherosa Ziehau uint32_t tx_space, min_tx, min_rx; 12881f7e3916SSepherosa Ziehau 12891f7e3916SSepherosa Ziehau pba = E1000_READ_REG(hw, E1000_PBA); 12901f7e3916SSepherosa Ziehau tx_space = pba >> 16; 12911f7e3916SSepherosa Ziehau pba &= 0xffff; 12921f7e3916SSepherosa Ziehau 12931f7e3916SSepherosa Ziehau min_tx = (sc->max_frame_size + 12941f7e3916SSepherosa Ziehau sizeof(struct e1000_tx_desc) - ETHER_CRC_LEN) * 2; 12951f7e3916SSepherosa Ziehau min_tx = roundup2(min_tx, 1024); 12961f7e3916SSepherosa Ziehau min_tx >>= 10; 12971f7e3916SSepherosa Ziehau min_rx = sc->max_frame_size; 12981f7e3916SSepherosa Ziehau min_rx = roundup2(min_rx, 1024); 12991f7e3916SSepherosa Ziehau min_rx >>= 10; 13001f7e3916SSepherosa Ziehau if (tx_space < min_tx && (min_tx - tx_space) < pba) { 13011f7e3916SSepherosa Ziehau pba = pba - (min_tx - tx_space); 13021f7e3916SSepherosa Ziehau /* 13031f7e3916SSepherosa Ziehau * if short on rx space, rx wins 13041f7e3916SSepherosa Ziehau * and must trump tx adjustment 13051f7e3916SSepherosa Ziehau */ 13061f7e3916SSepherosa Ziehau if (pba < min_rx) 13071f7e3916SSepherosa Ziehau pba = min_rx; 13081f7e3916SSepherosa Ziehau } 13091f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_PBA, pba); 13101f7e3916SSepherosa Ziehau } 13111f7e3916SSepherosa Ziehau 13121f7e3916SSepherosa Ziehau /* 13131f7e3916SSepherosa Ziehau * These parameters control the automatic generation (Tx) and 13141f7e3916SSepherosa Ziehau * response (Rx) to Ethernet PAUSE frames. 13151f7e3916SSepherosa Ziehau * - High water mark should allow for at least two frames to be 13161f7e3916SSepherosa Ziehau * received after sending an XOFF. 13171f7e3916SSepherosa Ziehau * - Low water mark works best when it is very near the high water mark. 13181f7e3916SSepherosa Ziehau * This allows the receiver to restart by sending XON when it has 13191f7e3916SSepherosa Ziehau * drained a bit. 13201f7e3916SSepherosa Ziehau */ 13211f7e3916SSepherosa Ziehau hwm = min(((pba << 10) * 9 / 10), 13221f7e3916SSepherosa Ziehau ((pba << 10) - 2 * sc->max_frame_size)); 13231f7e3916SSepherosa Ziehau 13241f7e3916SSepherosa Ziehau if (hw->mac.type < e1000_82576) { 13251f7e3916SSepherosa Ziehau fc->high_water = hwm & 0xFFF8; /* 8-byte granularity */ 13261f7e3916SSepherosa Ziehau fc->low_water = fc->high_water - 8; 13271f7e3916SSepherosa Ziehau } else { 13281f7e3916SSepherosa Ziehau fc->high_water = hwm & 0xFFF0; /* 16-byte granularity */ 13291f7e3916SSepherosa Ziehau fc->low_water = fc->high_water - 16; 13301f7e3916SSepherosa Ziehau } 13311f7e3916SSepherosa Ziehau fc->pause_time = IGB_FC_PAUSE_TIME; 13321f7e3916SSepherosa Ziehau fc->send_xon = TRUE; 13331f7e3916SSepherosa Ziehau 13341f7e3916SSepherosa Ziehau /* Issue a global reset */ 13351f7e3916SSepherosa Ziehau e1000_reset_hw(hw); 13361f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_WUC, 0); 13371f7e3916SSepherosa Ziehau 13381f7e3916SSepherosa Ziehau if (e1000_init_hw(hw) < 0) 13391f7e3916SSepherosa Ziehau if_printf(ifp, "Hardware Initialization Failed\n"); 13401f7e3916SSepherosa Ziehau 13411f7e3916SSepherosa Ziehau /* Setup DMA Coalescing */ 13421f7e3916SSepherosa Ziehau if (hw->mac.type == e1000_i350 && sc->dma_coalesce) { 13431f7e3916SSepherosa Ziehau uint32_t reg; 13441f7e3916SSepherosa Ziehau 13451f7e3916SSepherosa Ziehau hwm = (pba - 4) << 10; 13461f7e3916SSepherosa Ziehau reg = ((pba - 6) << E1000_DMACR_DMACTHR_SHIFT) 13471f7e3916SSepherosa Ziehau & E1000_DMACR_DMACTHR_MASK; 13481f7e3916SSepherosa Ziehau 13491f7e3916SSepherosa Ziehau /* transition to L0x or L1 if available..*/ 13501f7e3916SSepherosa Ziehau reg |= (E1000_DMACR_DMAC_EN | E1000_DMACR_DMAC_LX_MASK); 13511f7e3916SSepherosa Ziehau 13521f7e3916SSepherosa Ziehau /* timer = +-1000 usec in 32usec intervals */ 13531f7e3916SSepherosa Ziehau reg |= (1000 >> 5); 13541f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_DMACR, reg); 13551f7e3916SSepherosa Ziehau 13561f7e3916SSepherosa Ziehau /* No lower threshold */ 13571f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_DMCRTRH, 0); 13581f7e3916SSepherosa Ziehau 13591f7e3916SSepherosa Ziehau /* set hwm to PBA - 2 * max frame size */ 13601f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_FCRTC, hwm); 13611f7e3916SSepherosa Ziehau 13621f7e3916SSepherosa Ziehau /* Set the interval before transition */ 13631f7e3916SSepherosa Ziehau reg = E1000_READ_REG(hw, E1000_DMCTLX); 13641f7e3916SSepherosa Ziehau reg |= 0x800000FF; /* 255 usec */ 13651f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_DMCTLX, reg); 13661f7e3916SSepherosa Ziehau 13671f7e3916SSepherosa Ziehau /* free space in tx packet buffer to wake from DMA coal */ 13681f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_DMCTXTH, 13691f7e3916SSepherosa Ziehau (20480 - (2 * sc->max_frame_size)) >> 6); 13701f7e3916SSepherosa Ziehau 13711f7e3916SSepherosa Ziehau /* make low power state decision controlled by DMA coal */ 13721f7e3916SSepherosa Ziehau reg = E1000_READ_REG(hw, E1000_PCIEMISC); 13731f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_PCIEMISC, 13741f7e3916SSepherosa Ziehau reg | E1000_PCIEMISC_LX_DECISION); 13751f7e3916SSepherosa Ziehau if_printf(ifp, "DMA Coalescing enabled\n"); 13761f7e3916SSepherosa Ziehau } 13771f7e3916SSepherosa Ziehau 13781f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_VET, ETHERTYPE_VLAN); 13791f7e3916SSepherosa Ziehau e1000_get_phy_info(hw); 13801f7e3916SSepherosa Ziehau e1000_check_for_link(hw); 13811f7e3916SSepherosa Ziehau } 13821f7e3916SSepherosa Ziehau 13831f7e3916SSepherosa Ziehau static void 13841f7e3916SSepherosa Ziehau igb_setup_ifp(struct igb_softc *sc) 13851f7e3916SSepherosa Ziehau { 13861f7e3916SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 13871f7e3916SSepherosa Ziehau 13881f7e3916SSepherosa Ziehau if_initname(ifp, device_get_name(sc->dev), device_get_unit(sc->dev)); 13891f7e3916SSepherosa Ziehau ifp->if_softc = sc; 13901f7e3916SSepherosa Ziehau ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST; 13911f7e3916SSepherosa Ziehau ifp->if_init = igb_init; 13921f7e3916SSepherosa Ziehau ifp->if_ioctl = igb_ioctl; 13931f7e3916SSepherosa Ziehau ifp->if_start = igb_start; 13947d235eb5SSepherosa Ziehau ifp->if_serialize = igb_serialize; 13957d235eb5SSepherosa Ziehau ifp->if_deserialize = igb_deserialize; 13967d235eb5SSepherosa Ziehau ifp->if_tryserialize = igb_tryserialize; 13977d235eb5SSepherosa Ziehau #ifdef INVARIANTS 13987d235eb5SSepherosa Ziehau ifp->if_serialize_assert = igb_serialize_assert; 13997d235eb5SSepherosa Ziehau #endif 14001f7e3916SSepherosa Ziehau #ifdef DEVICE_POLLING 14011f7e3916SSepherosa Ziehau ifp->if_poll = igb_poll; 14021f7e3916SSepherosa Ziehau #endif 14031f7e3916SSepherosa Ziehau ifp->if_watchdog = igb_watchdog; 14041f7e3916SSepherosa Ziehau 140591b8700aSSepherosa Ziehau ifq_set_maxlen(&ifp->if_snd, sc->tx_rings[0].num_tx_desc - 1); 14061f7e3916SSepherosa Ziehau ifq_set_ready(&ifp->if_snd); 14071f7e3916SSepherosa Ziehau 14081f7e3916SSepherosa Ziehau ether_ifattach(ifp, sc->hw.mac.addr, NULL); 14091f7e3916SSepherosa Ziehau 14101f7e3916SSepherosa Ziehau ifp->if_capabilities = 14111f7e3916SSepherosa Ziehau IFCAP_HWCSUM | IFCAP_VLAN_HWTAGGING | IFCAP_VLAN_MTU; 14128d6600daSSepherosa Ziehau if (IGB_ENABLE_HWRSS(sc)) 14138d6600daSSepherosa Ziehau ifp->if_capabilities |= IFCAP_RSS; 14141f7e3916SSepherosa Ziehau ifp->if_capenable = ifp->if_capabilities; 14151f7e3916SSepherosa Ziehau ifp->if_hwassist = IGB_CSUM_FEATURES; 14161f7e3916SSepherosa Ziehau 14171f7e3916SSepherosa Ziehau /* 14181f7e3916SSepherosa Ziehau * Tell the upper layer(s) we support long frames 14191f7e3916SSepherosa Ziehau */ 14201f7e3916SSepherosa Ziehau ifp->if_data.ifi_hdrlen = sizeof(struct ether_vlan_header); 14211f7e3916SSepherosa Ziehau 14221f7e3916SSepherosa Ziehau /* 14231f7e3916SSepherosa Ziehau * Specify the media types supported by this adapter and register 14241f7e3916SSepherosa Ziehau * callbacks to update media and link information 14251f7e3916SSepherosa Ziehau */ 14261f7e3916SSepherosa Ziehau ifmedia_init(&sc->media, IFM_IMASK, igb_media_change, igb_media_status); 14271f7e3916SSepherosa Ziehau if (sc->hw.phy.media_type == e1000_media_type_fiber || 14281f7e3916SSepherosa Ziehau sc->hw.phy.media_type == e1000_media_type_internal_serdes) { 14291f7e3916SSepherosa Ziehau ifmedia_add(&sc->media, IFM_ETHER | IFM_1000_SX | IFM_FDX, 14301f7e3916SSepherosa Ziehau 0, NULL); 14311f7e3916SSepherosa Ziehau ifmedia_add(&sc->media, IFM_ETHER | IFM_1000_SX, 0, NULL); 14321f7e3916SSepherosa Ziehau } else { 14331f7e3916SSepherosa Ziehau ifmedia_add(&sc->media, IFM_ETHER | IFM_10_T, 0, NULL); 14341f7e3916SSepherosa Ziehau ifmedia_add(&sc->media, IFM_ETHER | IFM_10_T | IFM_FDX, 14351f7e3916SSepherosa Ziehau 0, NULL); 14361f7e3916SSepherosa Ziehau ifmedia_add(&sc->media, IFM_ETHER | IFM_100_TX, 0, NULL); 14371f7e3916SSepherosa Ziehau ifmedia_add(&sc->media, IFM_ETHER | IFM_100_TX | IFM_FDX, 14381f7e3916SSepherosa Ziehau 0, NULL); 14391f7e3916SSepherosa Ziehau if (sc->hw.phy.type != e1000_phy_ife) { 14401f7e3916SSepherosa Ziehau ifmedia_add(&sc->media, 14411f7e3916SSepherosa Ziehau IFM_ETHER | IFM_1000_T | IFM_FDX, 0, NULL); 14421f7e3916SSepherosa Ziehau ifmedia_add(&sc->media, 14431f7e3916SSepherosa Ziehau IFM_ETHER | IFM_1000_T, 0, NULL); 14441f7e3916SSepherosa Ziehau } 14451f7e3916SSepherosa Ziehau } 14461f7e3916SSepherosa Ziehau ifmedia_add(&sc->media, IFM_ETHER | IFM_AUTO, 0, NULL); 14471f7e3916SSepherosa Ziehau ifmedia_set(&sc->media, IFM_ETHER | IFM_AUTO); 14481f7e3916SSepherosa Ziehau } 14491f7e3916SSepherosa Ziehau 14501f7e3916SSepherosa Ziehau static void 14511f7e3916SSepherosa Ziehau igb_add_sysctl(struct igb_softc *sc) 14521f7e3916SSepherosa Ziehau { 14538d6600daSSepherosa Ziehau #ifdef IGB_RSS_DEBUG 14548d6600daSSepherosa Ziehau char rx_pkt[32]; 14558d6600daSSepherosa Ziehau int i; 14568d6600daSSepherosa Ziehau #endif 14578d6600daSSepherosa Ziehau 14581f7e3916SSepherosa Ziehau sysctl_ctx_init(&sc->sysctl_ctx); 14591f7e3916SSepherosa Ziehau sc->sysctl_tree = SYSCTL_ADD_NODE(&sc->sysctl_ctx, 14601f7e3916SSepherosa Ziehau SYSCTL_STATIC_CHILDREN(_hw), OID_AUTO, 14611f7e3916SSepherosa Ziehau device_get_nameunit(sc->dev), CTLFLAG_RD, 0, ""); 14621f7e3916SSepherosa Ziehau if (sc->sysctl_tree == NULL) { 14631f7e3916SSepherosa Ziehau device_printf(sc->dev, "can't add sysctl node\n"); 14641f7e3916SSepherosa Ziehau return; 14651f7e3916SSepherosa Ziehau } 14661f7e3916SSepherosa Ziehau 14671f7e3916SSepherosa Ziehau SYSCTL_ADD_INT(&sc->sysctl_ctx, SYSCTL_CHILDREN(sc->sysctl_tree), 14688d6600daSSepherosa Ziehau OID_AUTO, "rxr", CTLFLAG_RD, &sc->rx_ring_cnt, 0, "# of RX rings"); 14691f7e3916SSepherosa Ziehau SYSCTL_ADD_INT(&sc->sysctl_ctx, SYSCTL_CHILDREN(sc->sysctl_tree), 1470be922da6SSepherosa Ziehau OID_AUTO, "rxr_inuse", CTLFLAG_RD, &sc->rx_ring_inuse, 0, 1471be922da6SSepherosa Ziehau "# of RX rings used"); 1472be922da6SSepherosa Ziehau SYSCTL_ADD_INT(&sc->sysctl_ctx, SYSCTL_CHILDREN(sc->sysctl_tree), 14738d6600daSSepherosa Ziehau OID_AUTO, "rxd", CTLFLAG_RD, &sc->rx_rings[0].num_rx_desc, 0, 14748d6600daSSepherosa Ziehau "# of RX descs"); 14758d6600daSSepherosa Ziehau SYSCTL_ADD_INT(&sc->sysctl_ctx, SYSCTL_CHILDREN(sc->sysctl_tree), 14768d6600daSSepherosa Ziehau OID_AUTO, "txd", CTLFLAG_RD, &sc->tx_rings[0].num_tx_desc, 0, 14778d6600daSSepherosa Ziehau "# of TX descs"); 14781f7e3916SSepherosa Ziehau 14791f7e3916SSepherosa Ziehau SYSCTL_ADD_PROC(&sc->sysctl_ctx, SYSCTL_CHILDREN(sc->sysctl_tree), 14801f7e3916SSepherosa Ziehau OID_AUTO, "intr_rate", CTLTYPE_INT | CTLFLAG_RW, 14811f7e3916SSepherosa Ziehau sc, 0, igb_sysctl_intr_rate, "I", "interrupt rate"); 1482b6220144SSepherosa Ziehau 1483b6220144SSepherosa Ziehau SYSCTL_ADD_PROC(&sc->sysctl_ctx, SYSCTL_CHILDREN(sc->sysctl_tree), 1484b6220144SSepherosa Ziehau OID_AUTO, "tx_intr_nsegs", CTLTYPE_INT | CTLFLAG_RW, 1485b6220144SSepherosa Ziehau sc, 0, igb_sysctl_tx_intr_nsegs, "I", 14868d6600daSSepherosa Ziehau "# of segments per TX interrupt"); 14878d6600daSSepherosa Ziehau 14888d6600daSSepherosa Ziehau #ifdef IGB_RSS_DEBUG 14898d6600daSSepherosa Ziehau SYSCTL_ADD_INT(&sc->sysctl_ctx, SYSCTL_CHILDREN(sc->sysctl_tree), 14908d6600daSSepherosa Ziehau OID_AUTO, "rss_debug", CTLFLAG_RW, &sc->rss_debug, 0, 14918d6600daSSepherosa Ziehau "RSS debug level"); 14928d6600daSSepherosa Ziehau for (i = 0; i < sc->rx_ring_cnt; ++i) { 14938d6600daSSepherosa Ziehau ksnprintf(rx_pkt, sizeof(rx_pkt), "rx%d_pkt", i); 14948d6600daSSepherosa Ziehau SYSCTL_ADD_ULONG(&sc->sysctl_ctx, 14958d6600daSSepherosa Ziehau SYSCTL_CHILDREN(sc->sysctl_tree), OID_AUTO, rx_pkt, 14968d6600daSSepherosa Ziehau CTLFLAG_RW, &sc->rx_rings[i].rx_packets, "RXed packets"); 14978d6600daSSepherosa Ziehau } 14988d6600daSSepherosa Ziehau #endif 14991f7e3916SSepherosa Ziehau } 15001f7e3916SSepherosa Ziehau 15011f7e3916SSepherosa Ziehau static int 1502a619b256SSepherosa Ziehau igb_alloc_rings(struct igb_softc *sc) 15031f7e3916SSepherosa Ziehau { 15041f7e3916SSepherosa Ziehau int error, i; 15051f7e3916SSepherosa Ziehau 15061f7e3916SSepherosa Ziehau /* 15071f7e3916SSepherosa Ziehau * Create top level busdma tag 15081f7e3916SSepherosa Ziehau */ 15091f7e3916SSepherosa Ziehau error = bus_dma_tag_create(NULL, 1, 0, 15101f7e3916SSepherosa Ziehau BUS_SPACE_MAXADDR, BUS_SPACE_MAXADDR, NULL, NULL, 15111f7e3916SSepherosa Ziehau BUS_SPACE_MAXSIZE_32BIT, 0, BUS_SPACE_MAXSIZE_32BIT, 0, 15121f7e3916SSepherosa Ziehau &sc->parent_tag); 15131f7e3916SSepherosa Ziehau if (error) { 15141f7e3916SSepherosa Ziehau device_printf(sc->dev, "could not create top level DMA tag\n"); 15151f7e3916SSepherosa Ziehau return error; 15161f7e3916SSepherosa Ziehau } 15171f7e3916SSepherosa Ziehau 15181f7e3916SSepherosa Ziehau /* 15191f7e3916SSepherosa Ziehau * Allocate TX descriptor rings and buffers 15201f7e3916SSepherosa Ziehau */ 152127866bf1SSepherosa Ziehau sc->tx_rings = kmalloc(sizeof(struct igb_tx_ring) * sc->tx_ring_cnt, 15221f7e3916SSepherosa Ziehau M_DEVBUF, M_WAITOK | M_ZERO); 152327866bf1SSepherosa Ziehau for (i = 0; i < sc->tx_ring_cnt; ++i) { 15241f7e3916SSepherosa Ziehau struct igb_tx_ring *txr = &sc->tx_rings[i]; 15251f7e3916SSepherosa Ziehau 15261f7e3916SSepherosa Ziehau /* Set up some basics */ 15271f7e3916SSepherosa Ziehau txr->sc = sc; 15281f7e3916SSepherosa Ziehau txr->me = i; 15297d235eb5SSepherosa Ziehau lwkt_serialize_init(&txr->tx_serialize); 15301f7e3916SSepherosa Ziehau 15311f7e3916SSepherosa Ziehau error = igb_create_tx_ring(txr); 15321f7e3916SSepherosa Ziehau if (error) 15331f7e3916SSepherosa Ziehau return error; 15341f7e3916SSepherosa Ziehau } 15351f7e3916SSepherosa Ziehau 15361f7e3916SSepherosa Ziehau /* 15371f7e3916SSepherosa Ziehau * Allocate RX descriptor rings and buffers 15381f7e3916SSepherosa Ziehau */ 153927866bf1SSepherosa Ziehau sc->rx_rings = kmalloc(sizeof(struct igb_rx_ring) * sc->rx_ring_cnt, 15401f7e3916SSepherosa Ziehau M_DEVBUF, M_WAITOK | M_ZERO); 154127866bf1SSepherosa Ziehau for (i = 0; i < sc->rx_ring_cnt; ++i) { 15421f7e3916SSepherosa Ziehau struct igb_rx_ring *rxr = &sc->rx_rings[i]; 15431f7e3916SSepherosa Ziehau 15441f7e3916SSepherosa Ziehau /* Set up some basics */ 15451f7e3916SSepherosa Ziehau rxr->sc = sc; 15461f7e3916SSepherosa Ziehau rxr->me = i; 15477d235eb5SSepherosa Ziehau lwkt_serialize_init(&rxr->rx_serialize); 15481f7e3916SSepherosa Ziehau 15491f7e3916SSepherosa Ziehau error = igb_create_rx_ring(rxr); 15501f7e3916SSepherosa Ziehau if (error) 15511f7e3916SSepherosa Ziehau return error; 15521f7e3916SSepherosa Ziehau } 15531f7e3916SSepherosa Ziehau 15541f7e3916SSepherosa Ziehau return 0; 15551f7e3916SSepherosa Ziehau } 15561f7e3916SSepherosa Ziehau 15571f7e3916SSepherosa Ziehau static void 1558a619b256SSepherosa Ziehau igb_free_rings(struct igb_softc *sc) 15591f7e3916SSepherosa Ziehau { 15601f7e3916SSepherosa Ziehau int i; 15611f7e3916SSepherosa Ziehau 15621f7e3916SSepherosa Ziehau if (sc->tx_rings != NULL) { 156391b8700aSSepherosa Ziehau for (i = 0; i < sc->tx_ring_cnt; ++i) { 156491b8700aSSepherosa Ziehau struct igb_tx_ring *txr = &sc->tx_rings[i]; 156591b8700aSSepherosa Ziehau 156691b8700aSSepherosa Ziehau igb_destroy_tx_ring(txr, txr->num_tx_desc); 156791b8700aSSepherosa Ziehau } 15681f7e3916SSepherosa Ziehau kfree(sc->tx_rings, M_DEVBUF); 15691f7e3916SSepherosa Ziehau } 15701f7e3916SSepherosa Ziehau 15711f7e3916SSepherosa Ziehau if (sc->rx_rings != NULL) { 157291b8700aSSepherosa Ziehau for (i = 0; i < sc->rx_ring_cnt; ++i) { 157391b8700aSSepherosa Ziehau struct igb_rx_ring *rxr = &sc->rx_rings[i]; 157491b8700aSSepherosa Ziehau 157591b8700aSSepherosa Ziehau igb_destroy_rx_ring(rxr, rxr->num_rx_desc); 157691b8700aSSepherosa Ziehau } 15771f7e3916SSepherosa Ziehau kfree(sc->rx_rings, M_DEVBUF); 15781f7e3916SSepherosa Ziehau } 15791f7e3916SSepherosa Ziehau } 15801f7e3916SSepherosa Ziehau 15811f7e3916SSepherosa Ziehau static int 15821f7e3916SSepherosa Ziehau igb_create_tx_ring(struct igb_tx_ring *txr) 15831f7e3916SSepherosa Ziehau { 15841f7e3916SSepherosa Ziehau int tsize, error, i; 15851f7e3916SSepherosa Ziehau 15861f7e3916SSepherosa Ziehau /* 15871f7e3916SSepherosa Ziehau * Validate number of transmit descriptors. It must not exceed 15881f7e3916SSepherosa Ziehau * hardware maximum, and must be multiple of IGB_DBA_ALIGN. 15891f7e3916SSepherosa Ziehau */ 15901f7e3916SSepherosa Ziehau if (((igb_txd * sizeof(struct e1000_tx_desc)) % IGB_DBA_ALIGN) != 0 || 15911f7e3916SSepherosa Ziehau (igb_txd > IGB_MAX_TXD) || (igb_txd < IGB_MIN_TXD)) { 15921f7e3916SSepherosa Ziehau device_printf(txr->sc->dev, 15931f7e3916SSepherosa Ziehau "Using %d TX descriptors instead of %d!\n", 15941f7e3916SSepherosa Ziehau IGB_DEFAULT_TXD, igb_txd); 159591b8700aSSepherosa Ziehau txr->num_tx_desc = IGB_DEFAULT_TXD; 15961f7e3916SSepherosa Ziehau } else { 159791b8700aSSepherosa Ziehau txr->num_tx_desc = igb_txd; 15981f7e3916SSepherosa Ziehau } 15991f7e3916SSepherosa Ziehau 16001f7e3916SSepherosa Ziehau /* 16011f7e3916SSepherosa Ziehau * Allocate TX descriptor ring 16021f7e3916SSepherosa Ziehau */ 160391b8700aSSepherosa Ziehau tsize = roundup2(txr->num_tx_desc * sizeof(union e1000_adv_tx_desc), 16041f7e3916SSepherosa Ziehau IGB_DBA_ALIGN); 16051f7e3916SSepherosa Ziehau txr->txdma.dma_vaddr = bus_dmamem_coherent_any(txr->sc->parent_tag, 16061f7e3916SSepherosa Ziehau IGB_DBA_ALIGN, tsize, BUS_DMA_WAITOK, 16071f7e3916SSepherosa Ziehau &txr->txdma.dma_tag, &txr->txdma.dma_map, &txr->txdma.dma_paddr); 16081f7e3916SSepherosa Ziehau if (txr->txdma.dma_vaddr == NULL) { 16091f7e3916SSepherosa Ziehau device_printf(txr->sc->dev, 16101f7e3916SSepherosa Ziehau "Unable to allocate TX Descriptor memory\n"); 16111f7e3916SSepherosa Ziehau return ENOMEM; 16121f7e3916SSepherosa Ziehau } 16131f7e3916SSepherosa Ziehau txr->tx_base = txr->txdma.dma_vaddr; 16141f7e3916SSepherosa Ziehau bzero(txr->tx_base, tsize); 16151f7e3916SSepherosa Ziehau 161691b8700aSSepherosa Ziehau txr->tx_buf = kmalloc(sizeof(struct igb_tx_buf) * txr->num_tx_desc, 16171f7e3916SSepherosa Ziehau M_DEVBUF, M_WAITOK | M_ZERO); 16181f7e3916SSepherosa Ziehau 16191f7e3916SSepherosa Ziehau /* 1620b6220144SSepherosa Ziehau * Allocate TX head write-back buffer 1621b6220144SSepherosa Ziehau */ 1622b6220144SSepherosa Ziehau txr->tx_hdr = bus_dmamem_coherent_any(txr->sc->parent_tag, 1623b6220144SSepherosa Ziehau __VM_CACHELINE_SIZE, __VM_CACHELINE_SIZE, BUS_DMA_WAITOK, 1624b6220144SSepherosa Ziehau &txr->tx_hdr_dtag, &txr->tx_hdr_dmap, &txr->tx_hdr_paddr); 1625b6220144SSepherosa Ziehau if (txr->tx_hdr == NULL) { 1626b6220144SSepherosa Ziehau device_printf(txr->sc->dev, 1627b6220144SSepherosa Ziehau "Unable to allocate TX head write-back buffer\n"); 1628b6220144SSepherosa Ziehau return ENOMEM; 1629b6220144SSepherosa Ziehau } 1630b6220144SSepherosa Ziehau 1631b6220144SSepherosa Ziehau /* 16321f7e3916SSepherosa Ziehau * Create DMA tag for TX buffers 16331f7e3916SSepherosa Ziehau */ 16341f7e3916SSepherosa Ziehau error = bus_dma_tag_create(txr->sc->parent_tag, 16351f7e3916SSepherosa Ziehau 1, 0, /* alignment, bounds */ 16361f7e3916SSepherosa Ziehau BUS_SPACE_MAXADDR, /* lowaddr */ 16371f7e3916SSepherosa Ziehau BUS_SPACE_MAXADDR, /* highaddr */ 16381f7e3916SSepherosa Ziehau NULL, NULL, /* filter, filterarg */ 16391f7e3916SSepherosa Ziehau IGB_TSO_SIZE, /* maxsize */ 16401f7e3916SSepherosa Ziehau IGB_MAX_SCATTER, /* nsegments */ 16411f7e3916SSepherosa Ziehau PAGE_SIZE, /* maxsegsize */ 16421f7e3916SSepherosa Ziehau BUS_DMA_WAITOK | BUS_DMA_ALLOCNOW | 16431f7e3916SSepherosa Ziehau BUS_DMA_ONEBPAGE, /* flags */ 16441f7e3916SSepherosa Ziehau &txr->tx_tag); 16451f7e3916SSepherosa Ziehau if (error) { 16461f7e3916SSepherosa Ziehau device_printf(txr->sc->dev, "Unable to allocate TX DMA tag\n"); 16471f7e3916SSepherosa Ziehau kfree(txr->tx_buf, M_DEVBUF); 16481f7e3916SSepherosa Ziehau txr->tx_buf = NULL; 16491f7e3916SSepherosa Ziehau return error; 16501f7e3916SSepherosa Ziehau } 16511f7e3916SSepherosa Ziehau 16521f7e3916SSepherosa Ziehau /* 16531f7e3916SSepherosa Ziehau * Create DMA maps for TX buffers 16541f7e3916SSepherosa Ziehau */ 165591b8700aSSepherosa Ziehau for (i = 0; i < txr->num_tx_desc; ++i) { 16561f7e3916SSepherosa Ziehau struct igb_tx_buf *txbuf = &txr->tx_buf[i]; 16571f7e3916SSepherosa Ziehau 16581f7e3916SSepherosa Ziehau error = bus_dmamap_create(txr->tx_tag, 16591f7e3916SSepherosa Ziehau BUS_DMA_WAITOK | BUS_DMA_ONEBPAGE, &txbuf->map); 16601f7e3916SSepherosa Ziehau if (error) { 16611f7e3916SSepherosa Ziehau device_printf(txr->sc->dev, 16621f7e3916SSepherosa Ziehau "Unable to create TX DMA map\n"); 16631f7e3916SSepherosa Ziehau igb_destroy_tx_ring(txr, i); 16641f7e3916SSepherosa Ziehau return error; 16651f7e3916SSepherosa Ziehau } 16661f7e3916SSepherosa Ziehau } 1667b6220144SSepherosa Ziehau 1668b6220144SSepherosa Ziehau /* 1669b6220144SSepherosa Ziehau * Initialize various watermark 1670b6220144SSepherosa Ziehau */ 1671b6220144SSepherosa Ziehau txr->spare_desc = IGB_TX_SPARE; 167291b8700aSSepherosa Ziehau txr->intr_nsegs = txr->num_tx_desc / 16; 167391b8700aSSepherosa Ziehau txr->oact_hi_desc = txr->num_tx_desc / 2; 167491b8700aSSepherosa Ziehau txr->oact_lo_desc = txr->num_tx_desc / 8; 1675b6220144SSepherosa Ziehau if (txr->oact_lo_desc > IGB_TX_OACTIVE_MAX) 1676b6220144SSepherosa Ziehau txr->oact_lo_desc = IGB_TX_OACTIVE_MAX; 1677b6220144SSepherosa Ziehau if (txr->oact_lo_desc < txr->spare_desc + IGB_TX_RESERVED) 1678b6220144SSepherosa Ziehau txr->oact_lo_desc = txr->spare_desc + IGB_TX_RESERVED; 1679b6220144SSepherosa Ziehau 16801f7e3916SSepherosa Ziehau return 0; 16811f7e3916SSepherosa Ziehau } 16821f7e3916SSepherosa Ziehau 16831f7e3916SSepherosa Ziehau static void 16841f7e3916SSepherosa Ziehau igb_free_tx_ring(struct igb_tx_ring *txr) 16851f7e3916SSepherosa Ziehau { 16861f7e3916SSepherosa Ziehau int i; 16871f7e3916SSepherosa Ziehau 168891b8700aSSepherosa Ziehau for (i = 0; i < txr->num_tx_desc; ++i) { 16891f7e3916SSepherosa Ziehau struct igb_tx_buf *txbuf = &txr->tx_buf[i]; 16901f7e3916SSepherosa Ziehau 16911f7e3916SSepherosa Ziehau if (txbuf->m_head != NULL) { 16921f7e3916SSepherosa Ziehau bus_dmamap_unload(txr->tx_tag, txbuf->map); 16931f7e3916SSepherosa Ziehau m_freem(txbuf->m_head); 16941f7e3916SSepherosa Ziehau txbuf->m_head = NULL; 16951f7e3916SSepherosa Ziehau } 16961f7e3916SSepherosa Ziehau } 16971f7e3916SSepherosa Ziehau } 16981f7e3916SSepherosa Ziehau 16991f7e3916SSepherosa Ziehau static void 17001f7e3916SSepherosa Ziehau igb_destroy_tx_ring(struct igb_tx_ring *txr, int ndesc) 17011f7e3916SSepherosa Ziehau { 17021f7e3916SSepherosa Ziehau int i; 17031f7e3916SSepherosa Ziehau 17041f7e3916SSepherosa Ziehau if (txr->txdma.dma_vaddr != NULL) { 17051f7e3916SSepherosa Ziehau bus_dmamap_unload(txr->txdma.dma_tag, txr->txdma.dma_map); 17061f7e3916SSepherosa Ziehau bus_dmamem_free(txr->txdma.dma_tag, txr->txdma.dma_vaddr, 17071f7e3916SSepherosa Ziehau txr->txdma.dma_map); 17081f7e3916SSepherosa Ziehau bus_dma_tag_destroy(txr->txdma.dma_tag); 17091f7e3916SSepherosa Ziehau txr->txdma.dma_vaddr = NULL; 17101f7e3916SSepherosa Ziehau } 17111f7e3916SSepherosa Ziehau 1712b6220144SSepherosa Ziehau if (txr->tx_hdr != NULL) { 1713b6220144SSepherosa Ziehau bus_dmamap_unload(txr->tx_hdr_dtag, txr->tx_hdr_dmap); 1714b6220144SSepherosa Ziehau bus_dmamem_free(txr->tx_hdr_dtag, txr->tx_hdr, 1715b6220144SSepherosa Ziehau txr->tx_hdr_dmap); 1716b6220144SSepherosa Ziehau bus_dma_tag_destroy(txr->tx_hdr_dtag); 1717b6220144SSepherosa Ziehau txr->tx_hdr = NULL; 1718b6220144SSepherosa Ziehau } 1719b6220144SSepherosa Ziehau 17201f7e3916SSepherosa Ziehau if (txr->tx_buf == NULL) 17211f7e3916SSepherosa Ziehau return; 17221f7e3916SSepherosa Ziehau 17231f7e3916SSepherosa Ziehau for (i = 0; i < ndesc; ++i) { 17241f7e3916SSepherosa Ziehau struct igb_tx_buf *txbuf = &txr->tx_buf[i]; 17251f7e3916SSepherosa Ziehau 17261f7e3916SSepherosa Ziehau KKASSERT(txbuf->m_head == NULL); 17271f7e3916SSepherosa Ziehau bus_dmamap_destroy(txr->tx_tag, txbuf->map); 17281f7e3916SSepherosa Ziehau } 17291f7e3916SSepherosa Ziehau bus_dma_tag_destroy(txr->tx_tag); 17301f7e3916SSepherosa Ziehau 17311f7e3916SSepherosa Ziehau kfree(txr->tx_buf, M_DEVBUF); 17321f7e3916SSepherosa Ziehau txr->tx_buf = NULL; 17331f7e3916SSepherosa Ziehau } 17341f7e3916SSepherosa Ziehau 17351f7e3916SSepherosa Ziehau static void 17361f7e3916SSepherosa Ziehau igb_init_tx_ring(struct igb_tx_ring *txr) 17371f7e3916SSepherosa Ziehau { 17381f7e3916SSepherosa Ziehau /* Clear the old descriptor contents */ 17391f7e3916SSepherosa Ziehau bzero(txr->tx_base, 174091b8700aSSepherosa Ziehau sizeof(union e1000_adv_tx_desc) * txr->num_tx_desc); 17411f7e3916SSepherosa Ziehau 1742b6220144SSepherosa Ziehau /* Clear TX head write-back buffer */ 1743b6220144SSepherosa Ziehau *(txr->tx_hdr) = 0; 1744b6220144SSepherosa Ziehau 17451f7e3916SSepherosa Ziehau /* Reset indices */ 17461f7e3916SSepherosa Ziehau txr->next_avail_desc = 0; 17471f7e3916SSepherosa Ziehau txr->next_to_clean = 0; 1748b6220144SSepherosa Ziehau txr->tx_nsegs = 0; 17491f7e3916SSepherosa Ziehau 17501f7e3916SSepherosa Ziehau /* Set number of descriptors available */ 175191b8700aSSepherosa Ziehau txr->tx_avail = txr->num_tx_desc; 17521f7e3916SSepherosa Ziehau } 17531f7e3916SSepherosa Ziehau 17541f7e3916SSepherosa Ziehau static void 17551f7e3916SSepherosa Ziehau igb_init_tx_unit(struct igb_softc *sc) 17561f7e3916SSepherosa Ziehau { 17571f7e3916SSepherosa Ziehau struct e1000_hw *hw = &sc->hw; 17581f7e3916SSepherosa Ziehau uint32_t tctl; 17591f7e3916SSepherosa Ziehau int i; 17601f7e3916SSepherosa Ziehau 17611f7e3916SSepherosa Ziehau /* Setup the Tx Descriptor Rings */ 176227866bf1SSepherosa Ziehau for (i = 0; i < sc->tx_ring_cnt; ++i) { 17631f7e3916SSepherosa Ziehau struct igb_tx_ring *txr = &sc->tx_rings[i]; 17641f7e3916SSepherosa Ziehau uint64_t bus_addr = txr->txdma.dma_paddr; 1765c3162c4eSSepherosa Ziehau uint64_t hdr_paddr = txr->tx_hdr_paddr; 17661f7e3916SSepherosa Ziehau uint32_t txdctl = 0; 1767b6220144SSepherosa Ziehau uint32_t dca_txctrl; 17681f7e3916SSepherosa Ziehau 17691f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_TDLEN(i), 177091b8700aSSepherosa Ziehau txr->num_tx_desc * sizeof(struct e1000_tx_desc)); 17711f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_TDBAH(i), 17721f7e3916SSepherosa Ziehau (uint32_t)(bus_addr >> 32)); 17731f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_TDBAL(i), 17741f7e3916SSepherosa Ziehau (uint32_t)bus_addr); 17751f7e3916SSepherosa Ziehau 17761f7e3916SSepherosa Ziehau /* Setup the HW Tx Head and Tail descriptor pointers */ 17771f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_TDT(i), 0); 17781f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_TDH(i), 0); 17791f7e3916SSepherosa Ziehau 17801f7e3916SSepherosa Ziehau txdctl |= IGB_TX_PTHRESH; 17811f7e3916SSepherosa Ziehau txdctl |= IGB_TX_HTHRESH << 8; 17821f7e3916SSepherosa Ziehau txdctl |= IGB_TX_WTHRESH << 16; 17831f7e3916SSepherosa Ziehau txdctl |= E1000_TXDCTL_QUEUE_ENABLE; 17841f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_TXDCTL(i), txdctl); 1785b6220144SSepherosa Ziehau 1786b6220144SSepherosa Ziehau dca_txctrl = E1000_READ_REG(hw, E1000_DCA_TXCTRL(i)); 1787b6220144SSepherosa Ziehau dca_txctrl &= ~E1000_DCA_TXCTRL_TX_WB_RO_EN; 1788b6220144SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_DCA_TXCTRL(i), dca_txctrl); 1789b6220144SSepherosa Ziehau 1790b6220144SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_TDWBAH(i), 1791c3162c4eSSepherosa Ziehau (uint32_t)(hdr_paddr >> 32)); 1792b6220144SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_TDWBAL(i), 1793c3162c4eSSepherosa Ziehau ((uint32_t)hdr_paddr) | E1000_TX_HEAD_WB_ENABLE); 17941f7e3916SSepherosa Ziehau } 17951f7e3916SSepherosa Ziehau 17961f7e3916SSepherosa Ziehau if (sc->vf_ifp) 17971f7e3916SSepherosa Ziehau return; 17981f7e3916SSepherosa Ziehau 17991f7e3916SSepherosa Ziehau e1000_config_collision_dist(hw); 18001f7e3916SSepherosa Ziehau 18011f7e3916SSepherosa Ziehau /* Program the Transmit Control Register */ 18021f7e3916SSepherosa Ziehau tctl = E1000_READ_REG(hw, E1000_TCTL); 18031f7e3916SSepherosa Ziehau tctl &= ~E1000_TCTL_CT; 18041f7e3916SSepherosa Ziehau tctl |= (E1000_TCTL_PSP | E1000_TCTL_RTLC | E1000_TCTL_EN | 18051f7e3916SSepherosa Ziehau (E1000_COLLISION_THRESHOLD << E1000_CT_SHIFT)); 18061f7e3916SSepherosa Ziehau 18071f7e3916SSepherosa Ziehau /* This write will effectively turn on the transmit unit. */ 18081f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_TCTL, tctl); 18091f7e3916SSepherosa Ziehau } 18101f7e3916SSepherosa Ziehau 18111f7e3916SSepherosa Ziehau static boolean_t 18121f7e3916SSepherosa Ziehau igb_txctx(struct igb_tx_ring *txr, struct mbuf *mp) 18131f7e3916SSepherosa Ziehau { 18141f7e3916SSepherosa Ziehau struct e1000_adv_tx_context_desc *TXD; 18151f7e3916SSepherosa Ziehau struct igb_tx_buf *txbuf; 18161f7e3916SSepherosa Ziehau uint32_t vlan_macip_lens, type_tucmd_mlhl, mss_l4len_idx; 18171f7e3916SSepherosa Ziehau struct ether_vlan_header *eh; 18181f7e3916SSepherosa Ziehau struct ip *ip = NULL; 18191f7e3916SSepherosa Ziehau int ehdrlen, ctxd, ip_hlen = 0; 18201f7e3916SSepherosa Ziehau uint16_t etype, vlantag = 0; 18211f7e3916SSepherosa Ziehau boolean_t offload = TRUE; 18221f7e3916SSepherosa Ziehau 18231f7e3916SSepherosa Ziehau if ((mp->m_pkthdr.csum_flags & IGB_CSUM_FEATURES) == 0) 18241f7e3916SSepherosa Ziehau offload = FALSE; 18251f7e3916SSepherosa Ziehau 18261f7e3916SSepherosa Ziehau vlan_macip_lens = type_tucmd_mlhl = mss_l4len_idx = 0; 18271f7e3916SSepherosa Ziehau ctxd = txr->next_avail_desc; 18281f7e3916SSepherosa Ziehau txbuf = &txr->tx_buf[ctxd]; 18291f7e3916SSepherosa Ziehau TXD = (struct e1000_adv_tx_context_desc *)&txr->tx_base[ctxd]; 18301f7e3916SSepherosa Ziehau 18311f7e3916SSepherosa Ziehau /* 18321f7e3916SSepherosa Ziehau * In advanced descriptors the vlan tag must 18331f7e3916SSepherosa Ziehau * be placed into the context descriptor, thus 18341f7e3916SSepherosa Ziehau * we need to be here just for that setup. 18351f7e3916SSepherosa Ziehau */ 18361f7e3916SSepherosa Ziehau if (mp->m_flags & M_VLANTAG) { 18371f7e3916SSepherosa Ziehau vlantag = htole16(mp->m_pkthdr.ether_vlantag); 18381f7e3916SSepherosa Ziehau vlan_macip_lens |= (vlantag << E1000_ADVTXD_VLAN_SHIFT); 18391f7e3916SSepherosa Ziehau } else if (!offload) { 18401f7e3916SSepherosa Ziehau return FALSE; 18411f7e3916SSepherosa Ziehau } 18421f7e3916SSepherosa Ziehau 18431f7e3916SSepherosa Ziehau /* 18441f7e3916SSepherosa Ziehau * Determine where frame payload starts. 18451f7e3916SSepherosa Ziehau * Jump over vlan headers if already present, 18461f7e3916SSepherosa Ziehau * helpful for QinQ too. 18471f7e3916SSepherosa Ziehau */ 18481f7e3916SSepherosa Ziehau KASSERT(mp->m_len >= ETHER_HDR_LEN, 18491f7e3916SSepherosa Ziehau ("igb_txctx_pullup is not called (eh)?\n")); 18501f7e3916SSepherosa Ziehau eh = mtod(mp, struct ether_vlan_header *); 18511f7e3916SSepherosa Ziehau if (eh->evl_encap_proto == htons(ETHERTYPE_VLAN)) { 18521f7e3916SSepherosa Ziehau KASSERT(mp->m_len >= ETHER_HDR_LEN + EVL_ENCAPLEN, 18531f7e3916SSepherosa Ziehau ("igb_txctx_pullup is not called (evh)?\n")); 18541f7e3916SSepherosa Ziehau etype = ntohs(eh->evl_proto); 18551f7e3916SSepherosa Ziehau ehdrlen = ETHER_HDR_LEN + EVL_ENCAPLEN; 18561f7e3916SSepherosa Ziehau } else { 18571f7e3916SSepherosa Ziehau etype = ntohs(eh->evl_encap_proto); 18581f7e3916SSepherosa Ziehau ehdrlen = ETHER_HDR_LEN; 18591f7e3916SSepherosa Ziehau } 18601f7e3916SSepherosa Ziehau 18611f7e3916SSepherosa Ziehau /* Set the ether header length */ 18621f7e3916SSepherosa Ziehau vlan_macip_lens |= ehdrlen << E1000_ADVTXD_MACLEN_SHIFT; 18631f7e3916SSepherosa Ziehau 18641f7e3916SSepherosa Ziehau switch (etype) { 18651f7e3916SSepherosa Ziehau case ETHERTYPE_IP: 18661f7e3916SSepherosa Ziehau KASSERT(mp->m_len >= ehdrlen + IGB_IPVHL_SIZE, 18671f7e3916SSepherosa Ziehau ("igb_txctx_pullup is not called (eh+ip_vhl)?\n")); 18681f7e3916SSepherosa Ziehau 18691f7e3916SSepherosa Ziehau /* NOTE: We could only safely access ip.ip_vhl part */ 18701f7e3916SSepherosa Ziehau ip = (struct ip *)(mp->m_data + ehdrlen); 18711f7e3916SSepherosa Ziehau ip_hlen = ip->ip_hl << 2; 18721f7e3916SSepherosa Ziehau 18731f7e3916SSepherosa Ziehau if (mp->m_pkthdr.csum_flags & CSUM_IP) 18741f7e3916SSepherosa Ziehau type_tucmd_mlhl |= E1000_ADVTXD_TUCMD_IPV4; 18751f7e3916SSepherosa Ziehau break; 18761f7e3916SSepherosa Ziehau 18771f7e3916SSepherosa Ziehau #ifdef notyet 18781f7e3916SSepherosa Ziehau case ETHERTYPE_IPV6: 18791f7e3916SSepherosa Ziehau ip6 = (struct ip6_hdr *)(mp->m_data + ehdrlen); 18801f7e3916SSepherosa Ziehau ip_hlen = sizeof(struct ip6_hdr); 18811f7e3916SSepherosa Ziehau type_tucmd_mlhl |= E1000_ADVTXD_TUCMD_IPV6; 18821f7e3916SSepherosa Ziehau break; 18831f7e3916SSepherosa Ziehau #endif 18841f7e3916SSepherosa Ziehau 18851f7e3916SSepherosa Ziehau default: 18861f7e3916SSepherosa Ziehau offload = FALSE; 18871f7e3916SSepherosa Ziehau break; 18881f7e3916SSepherosa Ziehau } 18891f7e3916SSepherosa Ziehau 18901f7e3916SSepherosa Ziehau vlan_macip_lens |= ip_hlen; 18911f7e3916SSepherosa Ziehau type_tucmd_mlhl |= E1000_ADVTXD_DCMD_DEXT | E1000_ADVTXD_DTYP_CTXT; 18921f7e3916SSepherosa Ziehau 18931f7e3916SSepherosa Ziehau if (mp->m_pkthdr.csum_flags & CSUM_TCP) 18941f7e3916SSepherosa Ziehau type_tucmd_mlhl |= E1000_ADVTXD_TUCMD_L4T_TCP; 18951f7e3916SSepherosa Ziehau else if (mp->m_pkthdr.csum_flags & CSUM_UDP) 18961f7e3916SSepherosa Ziehau type_tucmd_mlhl |= E1000_ADVTXD_TUCMD_L4T_UDP; 18971f7e3916SSepherosa Ziehau 18981f7e3916SSepherosa Ziehau /* 82575 needs the queue index added */ 18991f7e3916SSepherosa Ziehau if (txr->sc->hw.mac.type == e1000_82575) 19001f7e3916SSepherosa Ziehau mss_l4len_idx = txr->me << 4; 19011f7e3916SSepherosa Ziehau 19021f7e3916SSepherosa Ziehau /* Now copy bits into descriptor */ 19031f7e3916SSepherosa Ziehau TXD->vlan_macip_lens = htole32(vlan_macip_lens); 19041f7e3916SSepherosa Ziehau TXD->type_tucmd_mlhl = htole32(type_tucmd_mlhl); 19051f7e3916SSepherosa Ziehau TXD->seqnum_seed = htole32(0); 19061f7e3916SSepherosa Ziehau TXD->mss_l4len_idx = htole32(mss_l4len_idx); 19071f7e3916SSepherosa Ziehau 19081f7e3916SSepherosa Ziehau txbuf->m_head = NULL; 19091f7e3916SSepherosa Ziehau 19101f7e3916SSepherosa Ziehau /* We've consumed the first desc, adjust counters */ 191191b8700aSSepherosa Ziehau if (++ctxd == txr->num_tx_desc) 19121f7e3916SSepherosa Ziehau ctxd = 0; 19131f7e3916SSepherosa Ziehau txr->next_avail_desc = ctxd; 19141f7e3916SSepherosa Ziehau --txr->tx_avail; 19151f7e3916SSepherosa Ziehau 19161f7e3916SSepherosa Ziehau return offload; 19171f7e3916SSepherosa Ziehau } 19181f7e3916SSepherosa Ziehau 19191f7e3916SSepherosa Ziehau static void 19201f7e3916SSepherosa Ziehau igb_txeof(struct igb_tx_ring *txr) 19211f7e3916SSepherosa Ziehau { 19221f7e3916SSepherosa Ziehau struct ifnet *ifp = &txr->sc->arpcom.ac_if; 1923b6220144SSepherosa Ziehau int first, hdr, avail; 19241f7e3916SSepherosa Ziehau 192591b8700aSSepherosa Ziehau if (txr->tx_avail == txr->num_tx_desc) 19261f7e3916SSepherosa Ziehau return; 19271f7e3916SSepherosa Ziehau 19281f7e3916SSepherosa Ziehau first = txr->next_to_clean; 1929b6220144SSepherosa Ziehau hdr = *(txr->tx_hdr); 19301f7e3916SSepherosa Ziehau 1931b6220144SSepherosa Ziehau if (first == hdr) 1932b6220144SSepherosa Ziehau return; 19331f7e3916SSepherosa Ziehau 1934b6220144SSepherosa Ziehau avail = txr->tx_avail; 1935b6220144SSepherosa Ziehau while (first != hdr) { 1936b6220144SSepherosa Ziehau struct igb_tx_buf *txbuf = &txr->tx_buf[first]; 19371f7e3916SSepherosa Ziehau 1938b6220144SSepherosa Ziehau ++avail; 19391f7e3916SSepherosa Ziehau if (txbuf->m_head) { 19401f7e3916SSepherosa Ziehau bus_dmamap_unload(txr->tx_tag, txbuf->map); 19411f7e3916SSepherosa Ziehau m_freem(txbuf->m_head); 19421f7e3916SSepherosa Ziehau txbuf->m_head = NULL; 1943b6220144SSepherosa Ziehau ++ifp->if_opackets; 19441f7e3916SSepherosa Ziehau } 194591b8700aSSepherosa Ziehau if (++first == txr->num_tx_desc) 19461f7e3916SSepherosa Ziehau first = 0; 19471f7e3916SSepherosa Ziehau } 19481f7e3916SSepherosa Ziehau txr->next_to_clean = first; 1949b6220144SSepherosa Ziehau txr->tx_avail = avail; 19501f7e3916SSepherosa Ziehau 19511f7e3916SSepherosa Ziehau /* 19521f7e3916SSepherosa Ziehau * If we have a minimum free, clear IFF_OACTIVE 19531f7e3916SSepherosa Ziehau * to tell the stack that it is OK to send packets. 19541f7e3916SSepherosa Ziehau */ 1955b6220144SSepherosa Ziehau if (IGB_IS_NOT_OACTIVE(txr)) { 19561f7e3916SSepherosa Ziehau ifp->if_flags &= ~IFF_OACTIVE; 19571f7e3916SSepherosa Ziehau 19581f7e3916SSepherosa Ziehau /* 19591f7e3916SSepherosa Ziehau * We have enough TX descriptors, turn off 1960b6220144SSepherosa Ziehau * the watchdog. We allow small amount of 1961b6220144SSepherosa Ziehau * packets (roughly intr_nsegs) pending on 1962b6220144SSepherosa Ziehau * the transmit ring. 19631f7e3916SSepherosa Ziehau */ 19641f7e3916SSepherosa Ziehau ifp->if_timer = 0; 19651f7e3916SSepherosa Ziehau } 19661f7e3916SSepherosa Ziehau } 19671f7e3916SSepherosa Ziehau 19681f7e3916SSepherosa Ziehau static int 19691f7e3916SSepherosa Ziehau igb_create_rx_ring(struct igb_rx_ring *rxr) 19701f7e3916SSepherosa Ziehau { 19711f7e3916SSepherosa Ziehau int rsize, i, error; 19721f7e3916SSepherosa Ziehau 19731f7e3916SSepherosa Ziehau /* 19741f7e3916SSepherosa Ziehau * Validate number of receive descriptors. It must not exceed 19751f7e3916SSepherosa Ziehau * hardware maximum, and must be multiple of IGB_DBA_ALIGN. 19761f7e3916SSepherosa Ziehau */ 19771f7e3916SSepherosa Ziehau if (((igb_rxd * sizeof(struct e1000_rx_desc)) % IGB_DBA_ALIGN) != 0 || 19781f7e3916SSepherosa Ziehau (igb_rxd > IGB_MAX_RXD) || (igb_rxd < IGB_MIN_RXD)) { 19791f7e3916SSepherosa Ziehau device_printf(rxr->sc->dev, 19801f7e3916SSepherosa Ziehau "Using %d RX descriptors instead of %d!\n", 19811f7e3916SSepherosa Ziehau IGB_DEFAULT_RXD, igb_rxd); 198291b8700aSSepherosa Ziehau rxr->num_rx_desc = IGB_DEFAULT_RXD; 19831f7e3916SSepherosa Ziehau } else { 198491b8700aSSepherosa Ziehau rxr->num_rx_desc = igb_rxd; 19851f7e3916SSepherosa Ziehau } 19861f7e3916SSepherosa Ziehau 19871f7e3916SSepherosa Ziehau /* 19881f7e3916SSepherosa Ziehau * Allocate RX descriptor ring 19891f7e3916SSepherosa Ziehau */ 199091b8700aSSepherosa Ziehau rsize = roundup2(rxr->num_rx_desc * sizeof(union e1000_adv_rx_desc), 19911f7e3916SSepherosa Ziehau IGB_DBA_ALIGN); 19921f7e3916SSepherosa Ziehau rxr->rxdma.dma_vaddr = bus_dmamem_coherent_any(rxr->sc->parent_tag, 19931f7e3916SSepherosa Ziehau IGB_DBA_ALIGN, rsize, BUS_DMA_WAITOK, 19941f7e3916SSepherosa Ziehau &rxr->rxdma.dma_tag, &rxr->rxdma.dma_map, 19951f7e3916SSepherosa Ziehau &rxr->rxdma.dma_paddr); 19961f7e3916SSepherosa Ziehau if (rxr->rxdma.dma_vaddr == NULL) { 19971f7e3916SSepherosa Ziehau device_printf(rxr->sc->dev, 19981f7e3916SSepherosa Ziehau "Unable to allocate RxDescriptor memory\n"); 19991f7e3916SSepherosa Ziehau return ENOMEM; 20001f7e3916SSepherosa Ziehau } 20011f7e3916SSepherosa Ziehau rxr->rx_base = rxr->rxdma.dma_vaddr; 20021f7e3916SSepherosa Ziehau bzero(rxr->rx_base, rsize); 20031f7e3916SSepherosa Ziehau 200491b8700aSSepherosa Ziehau rxr->rx_buf = kmalloc(sizeof(struct igb_rx_buf) * rxr->num_rx_desc, 20051f7e3916SSepherosa Ziehau M_DEVBUF, M_WAITOK | M_ZERO); 20061f7e3916SSepherosa Ziehau 20071f7e3916SSepherosa Ziehau /* 20081f7e3916SSepherosa Ziehau * Create DMA tag for RX buffers 20091f7e3916SSepherosa Ziehau */ 20101f7e3916SSepherosa Ziehau error = bus_dma_tag_create(rxr->sc->parent_tag, 20111f7e3916SSepherosa Ziehau 1, 0, /* alignment, bounds */ 20121f7e3916SSepherosa Ziehau BUS_SPACE_MAXADDR, /* lowaddr */ 20131f7e3916SSepherosa Ziehau BUS_SPACE_MAXADDR, /* highaddr */ 20141f7e3916SSepherosa Ziehau NULL, NULL, /* filter, filterarg */ 20151f7e3916SSepherosa Ziehau MCLBYTES, /* maxsize */ 20161f7e3916SSepherosa Ziehau 1, /* nsegments */ 20171f7e3916SSepherosa Ziehau MCLBYTES, /* maxsegsize */ 20181f7e3916SSepherosa Ziehau BUS_DMA_WAITOK | BUS_DMA_ALLOCNOW, /* flags */ 20191f7e3916SSepherosa Ziehau &rxr->rx_tag); 20201f7e3916SSepherosa Ziehau if (error) { 20211f7e3916SSepherosa Ziehau device_printf(rxr->sc->dev, 20221f7e3916SSepherosa Ziehau "Unable to create RX payload DMA tag\n"); 20231f7e3916SSepherosa Ziehau kfree(rxr->rx_buf, M_DEVBUF); 20241f7e3916SSepherosa Ziehau rxr->rx_buf = NULL; 20251f7e3916SSepherosa Ziehau return error; 20261f7e3916SSepherosa Ziehau } 20271f7e3916SSepherosa Ziehau 20281f7e3916SSepherosa Ziehau /* 20291f7e3916SSepherosa Ziehau * Create spare DMA map for RX buffers 20301f7e3916SSepherosa Ziehau */ 20311f7e3916SSepherosa Ziehau error = bus_dmamap_create(rxr->rx_tag, BUS_DMA_WAITOK, 20321f7e3916SSepherosa Ziehau &rxr->rx_sparemap); 20331f7e3916SSepherosa Ziehau if (error) { 20341f7e3916SSepherosa Ziehau device_printf(rxr->sc->dev, 20351f7e3916SSepherosa Ziehau "Unable to create spare RX DMA maps\n"); 20361f7e3916SSepherosa Ziehau bus_dma_tag_destroy(rxr->rx_tag); 20371f7e3916SSepherosa Ziehau kfree(rxr->rx_buf, M_DEVBUF); 20381f7e3916SSepherosa Ziehau rxr->rx_buf = NULL; 20391f7e3916SSepherosa Ziehau return error; 20401f7e3916SSepherosa Ziehau } 20411f7e3916SSepherosa Ziehau 20421f7e3916SSepherosa Ziehau /* 20431f7e3916SSepherosa Ziehau * Create DMA maps for RX buffers 20441f7e3916SSepherosa Ziehau */ 204591b8700aSSepherosa Ziehau for (i = 0; i < rxr->num_rx_desc; i++) { 20461f7e3916SSepherosa Ziehau struct igb_rx_buf *rxbuf = &rxr->rx_buf[i]; 20471f7e3916SSepherosa Ziehau 20481f7e3916SSepherosa Ziehau error = bus_dmamap_create(rxr->rx_tag, 20491f7e3916SSepherosa Ziehau BUS_DMA_WAITOK, &rxbuf->map); 20501f7e3916SSepherosa Ziehau if (error) { 20511f7e3916SSepherosa Ziehau device_printf(rxr->sc->dev, 20521f7e3916SSepherosa Ziehau "Unable to create RX DMA maps\n"); 20531f7e3916SSepherosa Ziehau igb_destroy_rx_ring(rxr, i); 20541f7e3916SSepherosa Ziehau return error; 20551f7e3916SSepherosa Ziehau } 20561f7e3916SSepherosa Ziehau } 20571f7e3916SSepherosa Ziehau return 0; 20581f7e3916SSepherosa Ziehau } 20591f7e3916SSepherosa Ziehau 20601f7e3916SSepherosa Ziehau static void 20611f7e3916SSepherosa Ziehau igb_free_rx_ring(struct igb_rx_ring *rxr) 20621f7e3916SSepherosa Ziehau { 20631f7e3916SSepherosa Ziehau int i; 20641f7e3916SSepherosa Ziehau 206591b8700aSSepherosa Ziehau for (i = 0; i < rxr->num_rx_desc; ++i) { 20661f7e3916SSepherosa Ziehau struct igb_rx_buf *rxbuf = &rxr->rx_buf[i]; 20671f7e3916SSepherosa Ziehau 20681f7e3916SSepherosa Ziehau if (rxbuf->m_head != NULL) { 20691f7e3916SSepherosa Ziehau bus_dmamap_unload(rxr->rx_tag, rxbuf->map); 20701f7e3916SSepherosa Ziehau m_freem(rxbuf->m_head); 20711f7e3916SSepherosa Ziehau rxbuf->m_head = NULL; 20721f7e3916SSepherosa Ziehau } 20731f7e3916SSepherosa Ziehau } 20741f7e3916SSepherosa Ziehau 20751f7e3916SSepherosa Ziehau if (rxr->fmp != NULL) 20761f7e3916SSepherosa Ziehau m_freem(rxr->fmp); 20771f7e3916SSepherosa Ziehau rxr->fmp = NULL; 20781f7e3916SSepherosa Ziehau rxr->lmp = NULL; 20791f7e3916SSepherosa Ziehau } 20801f7e3916SSepherosa Ziehau 20811f7e3916SSepherosa Ziehau static void 20821f7e3916SSepherosa Ziehau igb_destroy_rx_ring(struct igb_rx_ring *rxr, int ndesc) 20831f7e3916SSepherosa Ziehau { 20841f7e3916SSepherosa Ziehau int i; 20851f7e3916SSepherosa Ziehau 20861f7e3916SSepherosa Ziehau if (rxr->rxdma.dma_vaddr != NULL) { 20871f7e3916SSepherosa Ziehau bus_dmamap_unload(rxr->rxdma.dma_tag, rxr->rxdma.dma_map); 20881f7e3916SSepherosa Ziehau bus_dmamem_free(rxr->rxdma.dma_tag, rxr->rxdma.dma_vaddr, 20891f7e3916SSepherosa Ziehau rxr->rxdma.dma_map); 20901f7e3916SSepherosa Ziehau bus_dma_tag_destroy(rxr->rxdma.dma_tag); 20911f7e3916SSepherosa Ziehau rxr->rxdma.dma_vaddr = NULL; 20921f7e3916SSepherosa Ziehau } 20931f7e3916SSepherosa Ziehau 20941f7e3916SSepherosa Ziehau if (rxr->rx_buf == NULL) 20951f7e3916SSepherosa Ziehau return; 20961f7e3916SSepherosa Ziehau 20971f7e3916SSepherosa Ziehau for (i = 0; i < ndesc; ++i) { 20981f7e3916SSepherosa Ziehau struct igb_rx_buf *rxbuf = &rxr->rx_buf[i]; 20991f7e3916SSepherosa Ziehau 21001f7e3916SSepherosa Ziehau KKASSERT(rxbuf->m_head == NULL); 21011f7e3916SSepherosa Ziehau bus_dmamap_destroy(rxr->rx_tag, rxbuf->map); 21021f7e3916SSepherosa Ziehau } 21031f7e3916SSepherosa Ziehau bus_dmamap_destroy(rxr->rx_tag, rxr->rx_sparemap); 21041f7e3916SSepherosa Ziehau bus_dma_tag_destroy(rxr->rx_tag); 21051f7e3916SSepherosa Ziehau 21061f7e3916SSepherosa Ziehau kfree(rxr->rx_buf, M_DEVBUF); 21071f7e3916SSepherosa Ziehau rxr->rx_buf = NULL; 21081f7e3916SSepherosa Ziehau } 21091f7e3916SSepherosa Ziehau 21101f7e3916SSepherosa Ziehau static void 21111f7e3916SSepherosa Ziehau igb_setup_rxdesc(union e1000_adv_rx_desc *rxd, const struct igb_rx_buf *rxbuf) 21121f7e3916SSepherosa Ziehau { 21131f7e3916SSepherosa Ziehau rxd->read.pkt_addr = htole64(rxbuf->paddr); 21141f7e3916SSepherosa Ziehau rxd->wb.upper.status_error = 0; 21151f7e3916SSepherosa Ziehau } 21161f7e3916SSepherosa Ziehau 21171f7e3916SSepherosa Ziehau static int 21181f7e3916SSepherosa Ziehau igb_newbuf(struct igb_rx_ring *rxr, int i, boolean_t wait) 21191f7e3916SSepherosa Ziehau { 21201f7e3916SSepherosa Ziehau struct mbuf *m; 21211f7e3916SSepherosa Ziehau bus_dma_segment_t seg; 21221f7e3916SSepherosa Ziehau bus_dmamap_t map; 21231f7e3916SSepherosa Ziehau struct igb_rx_buf *rxbuf; 21241f7e3916SSepherosa Ziehau int error, nseg; 21251f7e3916SSepherosa Ziehau 21261f7e3916SSepherosa Ziehau m = m_getcl(wait ? MB_WAIT : MB_DONTWAIT, MT_DATA, M_PKTHDR); 21271f7e3916SSepherosa Ziehau if (m == NULL) { 21281f7e3916SSepherosa Ziehau if (wait) { 21291f7e3916SSepherosa Ziehau if_printf(&rxr->sc->arpcom.ac_if, 21301f7e3916SSepherosa Ziehau "Unable to allocate RX mbuf\n"); 21311f7e3916SSepherosa Ziehau } 21321f7e3916SSepherosa Ziehau return ENOBUFS; 21331f7e3916SSepherosa Ziehau } 21341f7e3916SSepherosa Ziehau m->m_len = m->m_pkthdr.len = MCLBYTES; 21351f7e3916SSepherosa Ziehau 21361f7e3916SSepherosa Ziehau if (rxr->sc->max_frame_size <= MCLBYTES - ETHER_ALIGN) 21371f7e3916SSepherosa Ziehau m_adj(m, ETHER_ALIGN); 21381f7e3916SSepherosa Ziehau 21391f7e3916SSepherosa Ziehau error = bus_dmamap_load_mbuf_segment(rxr->rx_tag, 21401f7e3916SSepherosa Ziehau rxr->rx_sparemap, m, &seg, 1, &nseg, BUS_DMA_NOWAIT); 21411f7e3916SSepherosa Ziehau if (error) { 21421f7e3916SSepherosa Ziehau m_freem(m); 21431f7e3916SSepherosa Ziehau if (wait) { 21441f7e3916SSepherosa Ziehau if_printf(&rxr->sc->arpcom.ac_if, 21451f7e3916SSepherosa Ziehau "Unable to load RX mbuf\n"); 21461f7e3916SSepherosa Ziehau } 21471f7e3916SSepherosa Ziehau return error; 21481f7e3916SSepherosa Ziehau } 21491f7e3916SSepherosa Ziehau 21501f7e3916SSepherosa Ziehau rxbuf = &rxr->rx_buf[i]; 21511f7e3916SSepherosa Ziehau if (rxbuf->m_head != NULL) 21521f7e3916SSepherosa Ziehau bus_dmamap_unload(rxr->rx_tag, rxbuf->map); 21531f7e3916SSepherosa Ziehau 21541f7e3916SSepherosa Ziehau map = rxbuf->map; 21551f7e3916SSepherosa Ziehau rxbuf->map = rxr->rx_sparemap; 21561f7e3916SSepherosa Ziehau rxr->rx_sparemap = map; 21571f7e3916SSepherosa Ziehau 21581f7e3916SSepherosa Ziehau rxbuf->m_head = m; 21591f7e3916SSepherosa Ziehau rxbuf->paddr = seg.ds_addr; 21601f7e3916SSepherosa Ziehau 21611f7e3916SSepherosa Ziehau igb_setup_rxdesc(&rxr->rx_base[i], rxbuf); 21621f7e3916SSepherosa Ziehau return 0; 21631f7e3916SSepherosa Ziehau } 21641f7e3916SSepherosa Ziehau 21651f7e3916SSepherosa Ziehau static int 21661f7e3916SSepherosa Ziehau igb_init_rx_ring(struct igb_rx_ring *rxr) 21671f7e3916SSepherosa Ziehau { 21681f7e3916SSepherosa Ziehau int i; 21691f7e3916SSepherosa Ziehau 21701f7e3916SSepherosa Ziehau /* Clear the ring contents */ 21711f7e3916SSepherosa Ziehau bzero(rxr->rx_base, 217291b8700aSSepherosa Ziehau rxr->num_rx_desc * sizeof(union e1000_adv_rx_desc)); 21731f7e3916SSepherosa Ziehau 21741f7e3916SSepherosa Ziehau /* Now replenish the ring mbufs */ 217591b8700aSSepherosa Ziehau for (i = 0; i < rxr->num_rx_desc; ++i) { 21761f7e3916SSepherosa Ziehau int error; 21771f7e3916SSepherosa Ziehau 21781f7e3916SSepherosa Ziehau error = igb_newbuf(rxr, i, TRUE); 21791f7e3916SSepherosa Ziehau if (error) 21801f7e3916SSepherosa Ziehau return error; 21811f7e3916SSepherosa Ziehau } 21821f7e3916SSepherosa Ziehau 21831f7e3916SSepherosa Ziehau /* Setup our descriptor indices */ 21841f7e3916SSepherosa Ziehau rxr->next_to_check = 0; 21851f7e3916SSepherosa Ziehau 21861f7e3916SSepherosa Ziehau rxr->fmp = NULL; 21871f7e3916SSepherosa Ziehau rxr->lmp = NULL; 21881f7e3916SSepherosa Ziehau rxr->discard = FALSE; 21891f7e3916SSepherosa Ziehau 21901f7e3916SSepherosa Ziehau return 0; 21911f7e3916SSepherosa Ziehau } 21921f7e3916SSepherosa Ziehau 21931f7e3916SSepherosa Ziehau static void 21941f7e3916SSepherosa Ziehau igb_init_rx_unit(struct igb_softc *sc) 21951f7e3916SSepherosa Ziehau { 21961f7e3916SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 21971f7e3916SSepherosa Ziehau struct e1000_hw *hw = &sc->hw; 21981f7e3916SSepherosa Ziehau uint32_t rctl, rxcsum, srrctl = 0; 21991f7e3916SSepherosa Ziehau int i; 22001f7e3916SSepherosa Ziehau 22011f7e3916SSepherosa Ziehau /* 22021f7e3916SSepherosa Ziehau * Make sure receives are disabled while setting 22031f7e3916SSepherosa Ziehau * up the descriptor ring 22041f7e3916SSepherosa Ziehau */ 22051f7e3916SSepherosa Ziehau rctl = E1000_READ_REG(hw, E1000_RCTL); 22061f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_RCTL, rctl & ~E1000_RCTL_EN); 22071f7e3916SSepherosa Ziehau 22081f7e3916SSepherosa Ziehau #if 0 22091f7e3916SSepherosa Ziehau /* 22101f7e3916SSepherosa Ziehau ** Set up for header split 22111f7e3916SSepherosa Ziehau */ 22121f7e3916SSepherosa Ziehau if (igb_header_split) { 22131f7e3916SSepherosa Ziehau /* Use a standard mbuf for the header */ 22141f7e3916SSepherosa Ziehau srrctl |= IGB_HDR_BUF << E1000_SRRCTL_BSIZEHDRSIZE_SHIFT; 22151f7e3916SSepherosa Ziehau srrctl |= E1000_SRRCTL_DESCTYPE_HDR_SPLIT_ALWAYS; 22161f7e3916SSepherosa Ziehau } else 22171f7e3916SSepherosa Ziehau #endif 22181f7e3916SSepherosa Ziehau srrctl |= E1000_SRRCTL_DESCTYPE_ADV_ONEBUF; 22191f7e3916SSepherosa Ziehau 22201f7e3916SSepherosa Ziehau /* 22211f7e3916SSepherosa Ziehau ** Set up for jumbo frames 22221f7e3916SSepherosa Ziehau */ 22231f7e3916SSepherosa Ziehau if (ifp->if_mtu > ETHERMTU) { 22241f7e3916SSepherosa Ziehau rctl |= E1000_RCTL_LPE; 22251f7e3916SSepherosa Ziehau #if 0 22261f7e3916SSepherosa Ziehau if (adapter->rx_mbuf_sz == MJUMPAGESIZE) { 22271f7e3916SSepherosa Ziehau srrctl |= 4096 >> E1000_SRRCTL_BSIZEPKT_SHIFT; 22281f7e3916SSepherosa Ziehau rctl |= E1000_RCTL_SZ_4096 | E1000_RCTL_BSEX; 22291f7e3916SSepherosa Ziehau } else if (adapter->rx_mbuf_sz > MJUMPAGESIZE) { 22301f7e3916SSepherosa Ziehau srrctl |= 8192 >> E1000_SRRCTL_BSIZEPKT_SHIFT; 22311f7e3916SSepherosa Ziehau rctl |= E1000_RCTL_SZ_8192 | E1000_RCTL_BSEX; 22321f7e3916SSepherosa Ziehau } 22331f7e3916SSepherosa Ziehau /* Set maximum packet len */ 22341f7e3916SSepherosa Ziehau psize = adapter->max_frame_size; 22351f7e3916SSepherosa Ziehau /* are we on a vlan? */ 22361f7e3916SSepherosa Ziehau if (adapter->ifp->if_vlantrunk != NULL) 22371f7e3916SSepherosa Ziehau psize += VLAN_TAG_SIZE; 22381f7e3916SSepherosa Ziehau E1000_WRITE_REG(&adapter->hw, E1000_RLPML, psize); 22391f7e3916SSepherosa Ziehau #else 22401f7e3916SSepherosa Ziehau srrctl |= 2048 >> E1000_SRRCTL_BSIZEPKT_SHIFT; 22411f7e3916SSepherosa Ziehau rctl |= E1000_RCTL_SZ_2048; 22421f7e3916SSepherosa Ziehau #endif 22431f7e3916SSepherosa Ziehau } else { 22441f7e3916SSepherosa Ziehau rctl &= ~E1000_RCTL_LPE; 22451f7e3916SSepherosa Ziehau srrctl |= 2048 >> E1000_SRRCTL_BSIZEPKT_SHIFT; 22461f7e3916SSepherosa Ziehau rctl |= E1000_RCTL_SZ_2048; 22471f7e3916SSepherosa Ziehau } 22481f7e3916SSepherosa Ziehau 22491f7e3916SSepherosa Ziehau /* Setup the Base and Length of the Rx Descriptor Rings */ 2250be922da6SSepherosa Ziehau for (i = 0; i < sc->rx_ring_inuse; ++i) { 22511f7e3916SSepherosa Ziehau struct igb_rx_ring *rxr = &sc->rx_rings[i]; 22521f7e3916SSepherosa Ziehau uint64_t bus_addr = rxr->rxdma.dma_paddr; 22531f7e3916SSepherosa Ziehau uint32_t rxdctl; 22541f7e3916SSepherosa Ziehau 22551f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_RDLEN(i), 225691b8700aSSepherosa Ziehau rxr->num_rx_desc * sizeof(struct e1000_rx_desc)); 22571f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_RDBAH(i), 22581f7e3916SSepherosa Ziehau (uint32_t)(bus_addr >> 32)); 22591f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_RDBAL(i), 22601f7e3916SSepherosa Ziehau (uint32_t)bus_addr); 22611f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_SRRCTL(i), srrctl); 22621f7e3916SSepherosa Ziehau /* Enable this Queue */ 22631f7e3916SSepherosa Ziehau rxdctl = E1000_READ_REG(hw, E1000_RXDCTL(i)); 22641f7e3916SSepherosa Ziehau rxdctl |= E1000_RXDCTL_QUEUE_ENABLE; 22651f7e3916SSepherosa Ziehau rxdctl &= 0xFFF00000; 22661f7e3916SSepherosa Ziehau rxdctl |= IGB_RX_PTHRESH; 22671f7e3916SSepherosa Ziehau rxdctl |= IGB_RX_HTHRESH << 8; 22681f7e3916SSepherosa Ziehau rxdctl |= IGB_RX_WTHRESH << 16; 22691f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_RXDCTL(i), rxdctl); 22701f7e3916SSepherosa Ziehau } 22711f7e3916SSepherosa Ziehau 22728d6600daSSepherosa Ziehau rxcsum = E1000_READ_REG(&sc->hw, E1000_RXCSUM); 22738d6600daSSepherosa Ziehau rxcsum &= ~(E1000_RXCSUM_PCSS_MASK | E1000_RXCSUM_IPPCSE); 22741f7e3916SSepherosa Ziehau 22751f7e3916SSepherosa Ziehau /* 22768d6600daSSepherosa Ziehau * Receive Checksum Offload for TCP and UDP 22778d6600daSSepherosa Ziehau * 22788d6600daSSepherosa Ziehau * Checksum offloading is also enabled if multiple receive 22798d6600daSSepherosa Ziehau * queue is to be supported, since we need it to figure out 22808d6600daSSepherosa Ziehau * fragments. 22811f7e3916SSepherosa Ziehau */ 22828d6600daSSepherosa Ziehau if ((ifp->if_capenable & IFCAP_RXCSUM) || IGB_ENABLE_HWRSS(sc)) { 22838d6600daSSepherosa Ziehau /* 22848d6600daSSepherosa Ziehau * NOTE: 22858d6600daSSepherosa Ziehau * PCSD must be enabled to enable multiple 22868d6600daSSepherosa Ziehau * receive queues. 22878d6600daSSepherosa Ziehau */ 22888d6600daSSepherosa Ziehau rxcsum |= E1000_RXCSUM_IPOFL | E1000_RXCSUM_TUOFL | 22898d6600daSSepherosa Ziehau E1000_RXCSUM_PCSD; 22908d6600daSSepherosa Ziehau } else { 22918d6600daSSepherosa Ziehau rxcsum &= ~(E1000_RXCSUM_IPOFL | E1000_RXCSUM_TUOFL | 22928d6600daSSepherosa Ziehau E1000_RXCSUM_PCSD); 22931f7e3916SSepherosa Ziehau } 22948d6600daSSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_RXCSUM, rxcsum); 22958d6600daSSepherosa Ziehau 22968d6600daSSepherosa Ziehau if (IGB_ENABLE_HWRSS(sc)) { 22978d6600daSSepherosa Ziehau uint8_t key[IGB_NRSSRK * IGB_RSSRK_SIZE]; 2298d1218435SSepherosa Ziehau uint32_t reta_shift; 2299d1218435SSepherosa Ziehau int j, r; 23008d6600daSSepherosa Ziehau 23018d6600daSSepherosa Ziehau /* 23028d6600daSSepherosa Ziehau * NOTE: 23038d6600daSSepherosa Ziehau * When we reach here, RSS has already been disabled 23048d6600daSSepherosa Ziehau * in igb_stop(), so we could safely configure RSS key 23058d6600daSSepherosa Ziehau * and redirect table. 23068d6600daSSepherosa Ziehau */ 23078d6600daSSepherosa Ziehau 23088d6600daSSepherosa Ziehau /* 23098d6600daSSepherosa Ziehau * Configure RSS key 23108d6600daSSepherosa Ziehau */ 23118d6600daSSepherosa Ziehau toeplitz_get_key(key, sizeof(key)); 23128d6600daSSepherosa Ziehau for (i = 0; i < IGB_NRSSRK; ++i) { 23138d6600daSSepherosa Ziehau uint32_t rssrk; 23148d6600daSSepherosa Ziehau 23158d6600daSSepherosa Ziehau rssrk = IGB_RSSRK_VAL(key, i); 23168d6600daSSepherosa Ziehau IGB_RSS_DPRINTF(sc, 1, "rssrk%d 0x%08x\n", i, rssrk); 23178d6600daSSepherosa Ziehau 23188d6600daSSepherosa Ziehau E1000_WRITE_REG(hw, E1000_RSSRK(i), rssrk); 23198d6600daSSepherosa Ziehau } 23208d6600daSSepherosa Ziehau 23218d6600daSSepherosa Ziehau /* 23228d6600daSSepherosa Ziehau * Configure RSS redirect table in following fashion: 23238d6600daSSepherosa Ziehau * (hash & ring_cnt_mask) == rdr_table[(hash & rdr_table_mask)] 23248d6600daSSepherosa Ziehau */ 23258d6600daSSepherosa Ziehau reta_shift = IGB_RETA_SHIFT; 23268d6600daSSepherosa Ziehau if (hw->mac.type == e1000_82575) 23278d6600daSSepherosa Ziehau reta_shift = IGB_RETA_SHIFT_82575; 2328d1218435SSepherosa Ziehau 2329d1218435SSepherosa Ziehau r = 0; 2330d1218435SSepherosa Ziehau for (j = 0; j < IGB_NRETA; ++j) { 2331d1218435SSepherosa Ziehau uint32_t reta = 0; 2332d1218435SSepherosa Ziehau 23338d6600daSSepherosa Ziehau for (i = 0; i < IGB_RETA_SIZE; ++i) { 23348d6600daSSepherosa Ziehau uint32_t q; 23358d6600daSSepherosa Ziehau 2336be922da6SSepherosa Ziehau q = (r % sc->rx_ring_inuse) << reta_shift; 23378d6600daSSepherosa Ziehau reta |= q << (8 * i); 2338d1218435SSepherosa Ziehau ++r; 23398d6600daSSepherosa Ziehau } 23408d6600daSSepherosa Ziehau IGB_RSS_DPRINTF(sc, 1, "reta 0x%08x\n", reta); 2341d1218435SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_RETA(j), reta); 2342d1218435SSepherosa Ziehau } 23438d6600daSSepherosa Ziehau 23448d6600daSSepherosa Ziehau /* 23458d6600daSSepherosa Ziehau * Enable multiple receive queues. 23468d6600daSSepherosa Ziehau * Enable IPv4 RSS standard hash functions. 23478d6600daSSepherosa Ziehau * Disable RSS interrupt on 82575 23488d6600daSSepherosa Ziehau */ 23498d6600daSSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_MRQC, 23508d6600daSSepherosa Ziehau E1000_MRQC_ENABLE_RSS_4Q | 23518d6600daSSepherosa Ziehau E1000_MRQC_RSS_FIELD_IPV4_TCP | 23528d6600daSSepherosa Ziehau E1000_MRQC_RSS_FIELD_IPV4); 23538d6600daSSepherosa Ziehau } 23541f7e3916SSepherosa Ziehau 23551f7e3916SSepherosa Ziehau /* Setup the Receive Control Register */ 23561f7e3916SSepherosa Ziehau rctl &= ~(3 << E1000_RCTL_MO_SHIFT); 23571f7e3916SSepherosa Ziehau rctl |= E1000_RCTL_EN | E1000_RCTL_BAM | E1000_RCTL_LBM_NO | 23581f7e3916SSepherosa Ziehau E1000_RCTL_RDMTS_HALF | 23591f7e3916SSepherosa Ziehau (hw->mac.mc_filter_type << E1000_RCTL_MO_SHIFT); 23601f7e3916SSepherosa Ziehau /* Strip CRC bytes. */ 23611f7e3916SSepherosa Ziehau rctl |= E1000_RCTL_SECRC; 23621f7e3916SSepherosa Ziehau /* Make sure VLAN Filters are off */ 23631f7e3916SSepherosa Ziehau rctl &= ~E1000_RCTL_VFE; 23641f7e3916SSepherosa Ziehau /* Don't store bad packets */ 23651f7e3916SSepherosa Ziehau rctl &= ~E1000_RCTL_SBP; 23661f7e3916SSepherosa Ziehau 23671f7e3916SSepherosa Ziehau /* Enable Receives */ 23681f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_RCTL, rctl); 23691f7e3916SSepherosa Ziehau 23701f7e3916SSepherosa Ziehau /* 23711f7e3916SSepherosa Ziehau * Setup the HW Rx Head and Tail Descriptor Pointers 23721f7e3916SSepherosa Ziehau * - needs to be after enable 23731f7e3916SSepherosa Ziehau */ 2374be922da6SSepherosa Ziehau for (i = 0; i < sc->rx_ring_inuse; ++i) { 23751f7e3916SSepherosa Ziehau struct igb_rx_ring *rxr = &sc->rx_rings[i]; 23761f7e3916SSepherosa Ziehau 23771f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_RDH(i), rxr->next_to_check); 237891b8700aSSepherosa Ziehau E1000_WRITE_REG(hw, E1000_RDT(i), rxr->num_rx_desc - 1); 23791f7e3916SSepherosa Ziehau } 23801f7e3916SSepherosa Ziehau } 23811f7e3916SSepherosa Ziehau 23821f7e3916SSepherosa Ziehau static void 23831f7e3916SSepherosa Ziehau igb_rxeof(struct igb_rx_ring *rxr, int count) 23841f7e3916SSepherosa Ziehau { 23851f7e3916SSepherosa Ziehau struct ifnet *ifp = &rxr->sc->arpcom.ac_if; 23861f7e3916SSepherosa Ziehau union e1000_adv_rx_desc *cur; 23871f7e3916SSepherosa Ziehau uint32_t staterr; 23881f7e3916SSepherosa Ziehau int i; 23891f7e3916SSepherosa Ziehau 23901f7e3916SSepherosa Ziehau i = rxr->next_to_check; 23911f7e3916SSepherosa Ziehau cur = &rxr->rx_base[i]; 23921f7e3916SSepherosa Ziehau staterr = le32toh(cur->wb.upper.status_error); 23931f7e3916SSepherosa Ziehau 23941f7e3916SSepherosa Ziehau if ((staterr & E1000_RXD_STAT_DD) == 0) 23951f7e3916SSepherosa Ziehau return; 23961f7e3916SSepherosa Ziehau 23971f7e3916SSepherosa Ziehau while ((staterr & E1000_RXD_STAT_DD) && count != 0) { 23988d6600daSSepherosa Ziehau struct pktinfo *pi = NULL, pi0; 23991f7e3916SSepherosa Ziehau struct igb_rx_buf *rxbuf = &rxr->rx_buf[i]; 24001f7e3916SSepherosa Ziehau struct mbuf *m = NULL; 24011f7e3916SSepherosa Ziehau boolean_t eop; 24021f7e3916SSepherosa Ziehau 24031f7e3916SSepherosa Ziehau eop = (staterr & E1000_RXD_STAT_EOP) ? TRUE : FALSE; 24041f7e3916SSepherosa Ziehau if (eop) 24051f7e3916SSepherosa Ziehau --count; 24061f7e3916SSepherosa Ziehau 24071f7e3916SSepherosa Ziehau if ((staterr & E1000_RXDEXT_ERR_FRAME_ERR_MASK) == 0 && 24081f7e3916SSepherosa Ziehau !rxr->discard) { 24091f7e3916SSepherosa Ziehau struct mbuf *mp = rxbuf->m_head; 24108d6600daSSepherosa Ziehau uint32_t hash, hashtype; 24111f7e3916SSepherosa Ziehau uint16_t vlan; 24121f7e3916SSepherosa Ziehau int len; 24131f7e3916SSepherosa Ziehau 24141f7e3916SSepherosa Ziehau len = le16toh(cur->wb.upper.length); 24151f7e3916SSepherosa Ziehau if (rxr->sc->hw.mac.type == e1000_i350 && 24161f7e3916SSepherosa Ziehau (staterr & E1000_RXDEXT_STATERR_LB)) 24171f7e3916SSepherosa Ziehau vlan = be16toh(cur->wb.upper.vlan); 24181f7e3916SSepherosa Ziehau else 24191f7e3916SSepherosa Ziehau vlan = le16toh(cur->wb.upper.vlan); 24201f7e3916SSepherosa Ziehau 24218d6600daSSepherosa Ziehau hash = le32toh(cur->wb.lower.hi_dword.rss); 24228d6600daSSepherosa Ziehau hashtype = le32toh(cur->wb.lower.lo_dword.data) & 24238d6600daSSepherosa Ziehau E1000_RXDADV_RSSTYPE_MASK; 24248d6600daSSepherosa Ziehau 24258d6600daSSepherosa Ziehau IGB_RSS_DPRINTF(rxr->sc, 10, 24268d6600daSSepherosa Ziehau "ring%d, hash 0x%08x, hashtype %u\n", 24278d6600daSSepherosa Ziehau rxr->me, hash, hashtype); 24288d6600daSSepherosa Ziehau 24291f7e3916SSepherosa Ziehau bus_dmamap_sync(rxr->rx_tag, rxbuf->map, 24301f7e3916SSepherosa Ziehau BUS_DMASYNC_POSTREAD); 24311f7e3916SSepherosa Ziehau 24321f7e3916SSepherosa Ziehau if (igb_newbuf(rxr, i, FALSE) != 0) { 24331f7e3916SSepherosa Ziehau ifp->if_iqdrops++; 24341f7e3916SSepherosa Ziehau goto discard; 24351f7e3916SSepherosa Ziehau } 24361f7e3916SSepherosa Ziehau 24371f7e3916SSepherosa Ziehau mp->m_len = len; 24381f7e3916SSepherosa Ziehau if (rxr->fmp == NULL) { 24391f7e3916SSepherosa Ziehau mp->m_pkthdr.len = len; 24401f7e3916SSepherosa Ziehau rxr->fmp = mp; 24411f7e3916SSepherosa Ziehau rxr->lmp = mp; 24421f7e3916SSepherosa Ziehau } else { 24431f7e3916SSepherosa Ziehau rxr->lmp->m_next = mp; 24441f7e3916SSepherosa Ziehau rxr->lmp = rxr->lmp->m_next; 24451f7e3916SSepherosa Ziehau rxr->fmp->m_pkthdr.len += len; 24461f7e3916SSepherosa Ziehau } 24471f7e3916SSepherosa Ziehau 24481f7e3916SSepherosa Ziehau if (eop) { 24491f7e3916SSepherosa Ziehau m = rxr->fmp; 24501f7e3916SSepherosa Ziehau rxr->fmp = NULL; 24511f7e3916SSepherosa Ziehau rxr->lmp = NULL; 24521f7e3916SSepherosa Ziehau 24531f7e3916SSepherosa Ziehau m->m_pkthdr.rcvif = ifp; 24541f7e3916SSepherosa Ziehau ifp->if_ipackets++; 24551f7e3916SSepherosa Ziehau 24561f7e3916SSepherosa Ziehau if (ifp->if_capenable & IFCAP_RXCSUM) 24571f7e3916SSepherosa Ziehau igb_rxcsum(staterr, m); 24581f7e3916SSepherosa Ziehau 24591f7e3916SSepherosa Ziehau if (staterr & E1000_RXD_STAT_VP) { 24601f7e3916SSepherosa Ziehau m->m_pkthdr.ether_vlantag = vlan; 24611f7e3916SSepherosa Ziehau m->m_flags |= M_VLANTAG; 24621f7e3916SSepherosa Ziehau } 24631f7e3916SSepherosa Ziehau 24641f7e3916SSepherosa Ziehau if (ifp->if_capenable & IFCAP_RSS) { 24658d6600daSSepherosa Ziehau pi = igb_rssinfo(m, &pi0, 24668d6600daSSepherosa Ziehau hash, hashtype, staterr); 24671f7e3916SSepherosa Ziehau } 24688d6600daSSepherosa Ziehau #ifdef IGB_RSS_DEBUG 24698d6600daSSepherosa Ziehau rxr->rx_packets++; 24701f7e3916SSepherosa Ziehau #endif 24711f7e3916SSepherosa Ziehau } 24721f7e3916SSepherosa Ziehau } else { 24731f7e3916SSepherosa Ziehau ifp->if_ierrors++; 24741f7e3916SSepherosa Ziehau discard: 24751f7e3916SSepherosa Ziehau igb_setup_rxdesc(cur, rxbuf); 24761f7e3916SSepherosa Ziehau if (!eop) 24771f7e3916SSepherosa Ziehau rxr->discard = TRUE; 24781f7e3916SSepherosa Ziehau else 24791f7e3916SSepherosa Ziehau rxr->discard = FALSE; 24801f7e3916SSepherosa Ziehau if (rxr->fmp != NULL) { 24811f7e3916SSepherosa Ziehau m_freem(rxr->fmp); 24821f7e3916SSepherosa Ziehau rxr->fmp = NULL; 24831f7e3916SSepherosa Ziehau rxr->lmp = NULL; 24841f7e3916SSepherosa Ziehau } 24851f7e3916SSepherosa Ziehau m = NULL; 24861f7e3916SSepherosa Ziehau } 24871f7e3916SSepherosa Ziehau 24881f7e3916SSepherosa Ziehau if (m != NULL) 24898d6600daSSepherosa Ziehau ether_input_pkt(ifp, m, pi); 24901f7e3916SSepherosa Ziehau 24911f7e3916SSepherosa Ziehau /* Advance our pointers to the next descriptor. */ 249291b8700aSSepherosa Ziehau if (++i == rxr->num_rx_desc) 24931f7e3916SSepherosa Ziehau i = 0; 24941f7e3916SSepherosa Ziehau 24951f7e3916SSepherosa Ziehau cur = &rxr->rx_base[i]; 24961f7e3916SSepherosa Ziehau staterr = le32toh(cur->wb.upper.status_error); 24971f7e3916SSepherosa Ziehau } 24981f7e3916SSepherosa Ziehau rxr->next_to_check = i; 24991f7e3916SSepherosa Ziehau 25001f7e3916SSepherosa Ziehau if (--i < 0) 250191b8700aSSepherosa Ziehau i = rxr->num_rx_desc - 1; 25021f7e3916SSepherosa Ziehau E1000_WRITE_REG(&rxr->sc->hw, E1000_RDT(rxr->me), i); 25031f7e3916SSepherosa Ziehau } 25041f7e3916SSepherosa Ziehau 25051f7e3916SSepherosa Ziehau 25061f7e3916SSepherosa Ziehau static void 25071f7e3916SSepherosa Ziehau igb_set_vlan(struct igb_softc *sc) 25081f7e3916SSepherosa Ziehau { 25091f7e3916SSepherosa Ziehau struct e1000_hw *hw = &sc->hw; 25101f7e3916SSepherosa Ziehau uint32_t reg; 25111f7e3916SSepherosa Ziehau #if 0 25121f7e3916SSepherosa Ziehau struct ifnet *ifp = sc->arpcom.ac_if; 25131f7e3916SSepherosa Ziehau #endif 25141f7e3916SSepherosa Ziehau 25151f7e3916SSepherosa Ziehau if (sc->vf_ifp) { 25161f7e3916SSepherosa Ziehau e1000_rlpml_set_vf(hw, sc->max_frame_size + VLAN_TAG_SIZE); 25171f7e3916SSepherosa Ziehau return; 25181f7e3916SSepherosa Ziehau } 25191f7e3916SSepherosa Ziehau 25201f7e3916SSepherosa Ziehau reg = E1000_READ_REG(hw, E1000_CTRL); 25211f7e3916SSepherosa Ziehau reg |= E1000_CTRL_VME; 25221f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_CTRL, reg); 25231f7e3916SSepherosa Ziehau 25241f7e3916SSepherosa Ziehau #if 0 25251f7e3916SSepherosa Ziehau /* Enable the Filter Table */ 25261f7e3916SSepherosa Ziehau if (ifp->if_capenable & IFCAP_VLAN_HWFILTER) { 25271f7e3916SSepherosa Ziehau reg = E1000_READ_REG(hw, E1000_RCTL); 25281f7e3916SSepherosa Ziehau reg &= ~E1000_RCTL_CFIEN; 25291f7e3916SSepherosa Ziehau reg |= E1000_RCTL_VFE; 25301f7e3916SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_RCTL, reg); 25311f7e3916SSepherosa Ziehau } 25321f7e3916SSepherosa Ziehau #endif 25331f7e3916SSepherosa Ziehau 25341f7e3916SSepherosa Ziehau /* Update the frame size */ 25351f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_RLPML, 25361f7e3916SSepherosa Ziehau sc->max_frame_size + VLAN_TAG_SIZE); 25371f7e3916SSepherosa Ziehau 25381f7e3916SSepherosa Ziehau #if 0 25391f7e3916SSepherosa Ziehau /* Don't bother with table if no vlans */ 25401f7e3916SSepherosa Ziehau if ((adapter->num_vlans == 0) || 25411f7e3916SSepherosa Ziehau ((ifp->if_capenable & IFCAP_VLAN_HWFILTER) == 0)) 25421f7e3916SSepherosa Ziehau return; 25431f7e3916SSepherosa Ziehau /* 25441f7e3916SSepherosa Ziehau ** A soft reset zero's out the VFTA, so 25451f7e3916SSepherosa Ziehau ** we need to repopulate it now. 25461f7e3916SSepherosa Ziehau */ 25471f7e3916SSepherosa Ziehau for (int i = 0; i < IGB_VFTA_SIZE; i++) 25481f7e3916SSepherosa Ziehau if (adapter->shadow_vfta[i] != 0) { 25491f7e3916SSepherosa Ziehau if (adapter->vf_ifp) 25501f7e3916SSepherosa Ziehau e1000_vfta_set_vf(hw, 25511f7e3916SSepherosa Ziehau adapter->shadow_vfta[i], TRUE); 25521f7e3916SSepherosa Ziehau else 25531f7e3916SSepherosa Ziehau E1000_WRITE_REG_ARRAY(hw, E1000_VFTA, 25541f7e3916SSepherosa Ziehau i, adapter->shadow_vfta[i]); 25551f7e3916SSepherosa Ziehau } 25561f7e3916SSepherosa Ziehau #endif 25571f7e3916SSepherosa Ziehau } 25581f7e3916SSepherosa Ziehau 25591f7e3916SSepherosa Ziehau static void 25601f7e3916SSepherosa Ziehau igb_enable_intr(struct igb_softc *sc) 25611f7e3916SSepherosa Ziehau { 25627d235eb5SSepherosa Ziehau lwkt_serialize_handler_enable(&sc->main_serialize); 25631f7e3916SSepherosa Ziehau 2564f6167a56SSepherosa Ziehau if ((sc->flags & IGB_FLAG_SHARED_INTR) == 0) { 2565f6167a56SSepherosa Ziehau /* XXX MSI-X should use sc->intr_mask */ 2566f6167a56SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_EIAC, 0); 2567f6167a56SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_EIAM, sc->intr_mask); 2568f6167a56SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_EIMS, sc->intr_mask); 25691f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_IMS, E1000_IMS_LSC); 25701f7e3916SSepherosa Ziehau } else { 25711f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_IMS, IMS_ENABLE_MASK); 25721f7e3916SSepherosa Ziehau } 25731f7e3916SSepherosa Ziehau E1000_WRITE_FLUSH(&sc->hw); 25741f7e3916SSepherosa Ziehau } 25751f7e3916SSepherosa Ziehau 25761f7e3916SSepherosa Ziehau static void 25771f7e3916SSepherosa Ziehau igb_disable_intr(struct igb_softc *sc) 25781f7e3916SSepherosa Ziehau { 2579f6167a56SSepherosa Ziehau if ((sc->flags & IGB_FLAG_SHARED_INTR) == 0) { 25801f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_EIMC, 0xffffffff); 25811f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_EIAC, 0); 25821f7e3916SSepherosa Ziehau } 25831f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_IMC, 0xffffffff); 25841f7e3916SSepherosa Ziehau E1000_WRITE_FLUSH(&sc->hw); 25851f7e3916SSepherosa Ziehau 25867d235eb5SSepherosa Ziehau lwkt_serialize_handler_disable(&sc->main_serialize); 25871f7e3916SSepherosa Ziehau } 25881f7e3916SSepherosa Ziehau 25891f7e3916SSepherosa Ziehau /* 25901f7e3916SSepherosa Ziehau * Bit of a misnomer, what this really means is 25911f7e3916SSepherosa Ziehau * to enable OS management of the system... aka 25921f7e3916SSepherosa Ziehau * to disable special hardware management features 25931f7e3916SSepherosa Ziehau */ 25941f7e3916SSepherosa Ziehau static void 25951f7e3916SSepherosa Ziehau igb_get_mgmt(struct igb_softc *sc) 25961f7e3916SSepherosa Ziehau { 2597396b7048SSepherosa Ziehau if (sc->flags & IGB_FLAG_HAS_MGMT) { 25981f7e3916SSepherosa Ziehau int manc2h = E1000_READ_REG(&sc->hw, E1000_MANC2H); 25991f7e3916SSepherosa Ziehau int manc = E1000_READ_REG(&sc->hw, E1000_MANC); 26001f7e3916SSepherosa Ziehau 26011f7e3916SSepherosa Ziehau /* disable hardware interception of ARP */ 26021f7e3916SSepherosa Ziehau manc &= ~E1000_MANC_ARP_EN; 26031f7e3916SSepherosa Ziehau 26041f7e3916SSepherosa Ziehau /* enable receiving management packets to the host */ 26051f7e3916SSepherosa Ziehau manc |= E1000_MANC_EN_MNG2HOST; 26061f7e3916SSepherosa Ziehau manc2h |= 1 << 5; /* Mng Port 623 */ 26071f7e3916SSepherosa Ziehau manc2h |= 1 << 6; /* Mng Port 664 */ 26081f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_MANC2H, manc2h); 26091f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_MANC, manc); 26101f7e3916SSepherosa Ziehau } 26111f7e3916SSepherosa Ziehau } 26121f7e3916SSepherosa Ziehau 26131f7e3916SSepherosa Ziehau /* 26141f7e3916SSepherosa Ziehau * Give control back to hardware management controller 26151f7e3916SSepherosa Ziehau * if there is one. 26161f7e3916SSepherosa Ziehau */ 26171f7e3916SSepherosa Ziehau static void 26181f7e3916SSepherosa Ziehau igb_rel_mgmt(struct igb_softc *sc) 26191f7e3916SSepherosa Ziehau { 2620396b7048SSepherosa Ziehau if (sc->flags & IGB_FLAG_HAS_MGMT) { 26211f7e3916SSepherosa Ziehau int manc = E1000_READ_REG(&sc->hw, E1000_MANC); 26221f7e3916SSepherosa Ziehau 26231f7e3916SSepherosa Ziehau /* Re-enable hardware interception of ARP */ 26241f7e3916SSepherosa Ziehau manc |= E1000_MANC_ARP_EN; 26251f7e3916SSepherosa Ziehau manc &= ~E1000_MANC_EN_MNG2HOST; 26261f7e3916SSepherosa Ziehau 26271f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_MANC, manc); 26281f7e3916SSepherosa Ziehau } 26291f7e3916SSepherosa Ziehau } 26301f7e3916SSepherosa Ziehau 26311f7e3916SSepherosa Ziehau /* 26321f7e3916SSepherosa Ziehau * Sets CTRL_EXT:DRV_LOAD bit. 26331f7e3916SSepherosa Ziehau * 26341f7e3916SSepherosa Ziehau * For ASF and Pass Through versions of f/w this means that 26351f7e3916SSepherosa Ziehau * the driver is loaded. 26361f7e3916SSepherosa Ziehau */ 26371f7e3916SSepherosa Ziehau static void 26381f7e3916SSepherosa Ziehau igb_get_hw_control(struct igb_softc *sc) 26391f7e3916SSepherosa Ziehau { 26401f7e3916SSepherosa Ziehau uint32_t ctrl_ext; 26411f7e3916SSepherosa Ziehau 26421f7e3916SSepherosa Ziehau if (sc->vf_ifp) 26431f7e3916SSepherosa Ziehau return; 26441f7e3916SSepherosa Ziehau 26451f7e3916SSepherosa Ziehau /* Let firmware know the driver has taken over */ 26461f7e3916SSepherosa Ziehau ctrl_ext = E1000_READ_REG(&sc->hw, E1000_CTRL_EXT); 26471f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_CTRL_EXT, 26481f7e3916SSepherosa Ziehau ctrl_ext | E1000_CTRL_EXT_DRV_LOAD); 26491f7e3916SSepherosa Ziehau } 26501f7e3916SSepherosa Ziehau 26511f7e3916SSepherosa Ziehau /* 26521f7e3916SSepherosa Ziehau * Resets CTRL_EXT:DRV_LOAD bit. 26531f7e3916SSepherosa Ziehau * 26541f7e3916SSepherosa Ziehau * For ASF and Pass Through versions of f/w this means that the 26551f7e3916SSepherosa Ziehau * driver is no longer loaded. 26561f7e3916SSepherosa Ziehau */ 26571f7e3916SSepherosa Ziehau static void 26581f7e3916SSepherosa Ziehau igb_rel_hw_control(struct igb_softc *sc) 26591f7e3916SSepherosa Ziehau { 26601f7e3916SSepherosa Ziehau uint32_t ctrl_ext; 26611f7e3916SSepherosa Ziehau 26621f7e3916SSepherosa Ziehau if (sc->vf_ifp) 26631f7e3916SSepherosa Ziehau return; 26641f7e3916SSepherosa Ziehau 26651f7e3916SSepherosa Ziehau /* Let firmware taken over control of h/w */ 26661f7e3916SSepherosa Ziehau ctrl_ext = E1000_READ_REG(&sc->hw, E1000_CTRL_EXT); 26671f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_CTRL_EXT, 26681f7e3916SSepherosa Ziehau ctrl_ext & ~E1000_CTRL_EXT_DRV_LOAD); 26691f7e3916SSepherosa Ziehau } 26701f7e3916SSepherosa Ziehau 26711f7e3916SSepherosa Ziehau static int 26721f7e3916SSepherosa Ziehau igb_is_valid_ether_addr(const uint8_t *addr) 26731f7e3916SSepherosa Ziehau { 26741f7e3916SSepherosa Ziehau uint8_t zero_addr[ETHER_ADDR_LEN] = { 0, 0, 0, 0, 0, 0 }; 26751f7e3916SSepherosa Ziehau 26761f7e3916SSepherosa Ziehau if ((addr[0] & 1) || !bcmp(addr, zero_addr, ETHER_ADDR_LEN)) 26771f7e3916SSepherosa Ziehau return FALSE; 26781f7e3916SSepherosa Ziehau return TRUE; 26791f7e3916SSepherosa Ziehau } 26801f7e3916SSepherosa Ziehau 26811f7e3916SSepherosa Ziehau /* 26821f7e3916SSepherosa Ziehau * Enable PCI Wake On Lan capability 26831f7e3916SSepherosa Ziehau */ 26841f7e3916SSepherosa Ziehau static void 26851f7e3916SSepherosa Ziehau igb_enable_wol(device_t dev) 26861f7e3916SSepherosa Ziehau { 26871f7e3916SSepherosa Ziehau uint16_t cap, status; 26881f7e3916SSepherosa Ziehau uint8_t id; 26891f7e3916SSepherosa Ziehau 26901f7e3916SSepherosa Ziehau /* First find the capabilities pointer*/ 26911f7e3916SSepherosa Ziehau cap = pci_read_config(dev, PCIR_CAP_PTR, 2); 26921f7e3916SSepherosa Ziehau 26931f7e3916SSepherosa Ziehau /* Read the PM Capabilities */ 26941f7e3916SSepherosa Ziehau id = pci_read_config(dev, cap, 1); 26951f7e3916SSepherosa Ziehau if (id != PCIY_PMG) /* Something wrong */ 26961f7e3916SSepherosa Ziehau return; 26971f7e3916SSepherosa Ziehau 26981f7e3916SSepherosa Ziehau /* 26991f7e3916SSepherosa Ziehau * OK, we have the power capabilities, 27001f7e3916SSepherosa Ziehau * so now get the status register 27011f7e3916SSepherosa Ziehau */ 27021f7e3916SSepherosa Ziehau cap += PCIR_POWER_STATUS; 27031f7e3916SSepherosa Ziehau status = pci_read_config(dev, cap, 2); 27041f7e3916SSepherosa Ziehau status |= PCIM_PSTAT_PME | PCIM_PSTAT_PMEENABLE; 27051f7e3916SSepherosa Ziehau pci_write_config(dev, cap, status, 2); 27061f7e3916SSepherosa Ziehau } 27071f7e3916SSepherosa Ziehau 27081f7e3916SSepherosa Ziehau static void 27091f7e3916SSepherosa Ziehau igb_update_stats_counters(struct igb_softc *sc) 27101f7e3916SSepherosa Ziehau { 27111f7e3916SSepherosa Ziehau struct e1000_hw *hw = &sc->hw; 27121f7e3916SSepherosa Ziehau struct e1000_hw_stats *stats; 27131f7e3916SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 27141f7e3916SSepherosa Ziehau 27151f7e3916SSepherosa Ziehau /* 27161f7e3916SSepherosa Ziehau * The virtual function adapter has only a 27171f7e3916SSepherosa Ziehau * small controlled set of stats, do only 27181f7e3916SSepherosa Ziehau * those and return. 27191f7e3916SSepherosa Ziehau */ 27201f7e3916SSepherosa Ziehau if (sc->vf_ifp) { 27211f7e3916SSepherosa Ziehau igb_update_vf_stats_counters(sc); 27221f7e3916SSepherosa Ziehau return; 27231f7e3916SSepherosa Ziehau } 27241f7e3916SSepherosa Ziehau stats = sc->stats; 27251f7e3916SSepherosa Ziehau 27261f7e3916SSepherosa Ziehau if (sc->hw.phy.media_type == e1000_media_type_copper || 27271f7e3916SSepherosa Ziehau (E1000_READ_REG(hw, E1000_STATUS) & E1000_STATUS_LU)) { 27281f7e3916SSepherosa Ziehau stats->symerrs += 27291f7e3916SSepherosa Ziehau E1000_READ_REG(hw,E1000_SYMERRS); 27301f7e3916SSepherosa Ziehau stats->sec += E1000_READ_REG(hw, E1000_SEC); 27311f7e3916SSepherosa Ziehau } 27321f7e3916SSepherosa Ziehau 27331f7e3916SSepherosa Ziehau stats->crcerrs += E1000_READ_REG(hw, E1000_CRCERRS); 27341f7e3916SSepherosa Ziehau stats->mpc += E1000_READ_REG(hw, E1000_MPC); 27351f7e3916SSepherosa Ziehau stats->scc += E1000_READ_REG(hw, E1000_SCC); 27361f7e3916SSepherosa Ziehau stats->ecol += E1000_READ_REG(hw, E1000_ECOL); 27371f7e3916SSepherosa Ziehau 27381f7e3916SSepherosa Ziehau stats->mcc += E1000_READ_REG(hw, E1000_MCC); 27391f7e3916SSepherosa Ziehau stats->latecol += E1000_READ_REG(hw, E1000_LATECOL); 27401f7e3916SSepherosa Ziehau stats->colc += E1000_READ_REG(hw, E1000_COLC); 27411f7e3916SSepherosa Ziehau stats->dc += E1000_READ_REG(hw, E1000_DC); 27421f7e3916SSepherosa Ziehau stats->rlec += E1000_READ_REG(hw, E1000_RLEC); 27431f7e3916SSepherosa Ziehau stats->xonrxc += E1000_READ_REG(hw, E1000_XONRXC); 27441f7e3916SSepherosa Ziehau stats->xontxc += E1000_READ_REG(hw, E1000_XONTXC); 27451f7e3916SSepherosa Ziehau 27461f7e3916SSepherosa Ziehau /* 27471f7e3916SSepherosa Ziehau * For watchdog management we need to know if we have been 27481f7e3916SSepherosa Ziehau * paused during the last interval, so capture that here. 27491f7e3916SSepherosa Ziehau */ 27501f7e3916SSepherosa Ziehau sc->pause_frames = E1000_READ_REG(hw, E1000_XOFFRXC); 27511f7e3916SSepherosa Ziehau stats->xoffrxc += sc->pause_frames; 27521f7e3916SSepherosa Ziehau stats->xofftxc += E1000_READ_REG(hw, E1000_XOFFTXC); 27531f7e3916SSepherosa Ziehau stats->fcruc += E1000_READ_REG(hw, E1000_FCRUC); 27541f7e3916SSepherosa Ziehau stats->prc64 += E1000_READ_REG(hw, E1000_PRC64); 27551f7e3916SSepherosa Ziehau stats->prc127 += E1000_READ_REG(hw, E1000_PRC127); 27561f7e3916SSepherosa Ziehau stats->prc255 += E1000_READ_REG(hw, E1000_PRC255); 27571f7e3916SSepherosa Ziehau stats->prc511 += E1000_READ_REG(hw, E1000_PRC511); 27581f7e3916SSepherosa Ziehau stats->prc1023 += E1000_READ_REG(hw, E1000_PRC1023); 27591f7e3916SSepherosa Ziehau stats->prc1522 += E1000_READ_REG(hw, E1000_PRC1522); 27601f7e3916SSepherosa Ziehau stats->gprc += E1000_READ_REG(hw, E1000_GPRC); 27611f7e3916SSepherosa Ziehau stats->bprc += E1000_READ_REG(hw, E1000_BPRC); 27621f7e3916SSepherosa Ziehau stats->mprc += E1000_READ_REG(hw, E1000_MPRC); 27631f7e3916SSepherosa Ziehau stats->gptc += E1000_READ_REG(hw, E1000_GPTC); 27641f7e3916SSepherosa Ziehau 27651f7e3916SSepherosa Ziehau /* For the 64-bit byte counters the low dword must be read first. */ 27661f7e3916SSepherosa Ziehau /* Both registers clear on the read of the high dword */ 27671f7e3916SSepherosa Ziehau 27681f7e3916SSepherosa Ziehau stats->gorc += E1000_READ_REG(hw, E1000_GORCL) + 27691f7e3916SSepherosa Ziehau ((uint64_t)E1000_READ_REG(hw, E1000_GORCH) << 32); 27701f7e3916SSepherosa Ziehau stats->gotc += E1000_READ_REG(hw, E1000_GOTCL) + 27711f7e3916SSepherosa Ziehau ((uint64_t)E1000_READ_REG(hw, E1000_GOTCH) << 32); 27721f7e3916SSepherosa Ziehau 27731f7e3916SSepherosa Ziehau stats->rnbc += E1000_READ_REG(hw, E1000_RNBC); 27741f7e3916SSepherosa Ziehau stats->ruc += E1000_READ_REG(hw, E1000_RUC); 27751f7e3916SSepherosa Ziehau stats->rfc += E1000_READ_REG(hw, E1000_RFC); 27761f7e3916SSepherosa Ziehau stats->roc += E1000_READ_REG(hw, E1000_ROC); 27771f7e3916SSepherosa Ziehau stats->rjc += E1000_READ_REG(hw, E1000_RJC); 27781f7e3916SSepherosa Ziehau 27791f7e3916SSepherosa Ziehau stats->tor += E1000_READ_REG(hw, E1000_TORH); 27801f7e3916SSepherosa Ziehau stats->tot += E1000_READ_REG(hw, E1000_TOTH); 27811f7e3916SSepherosa Ziehau 27821f7e3916SSepherosa Ziehau stats->tpr += E1000_READ_REG(hw, E1000_TPR); 27831f7e3916SSepherosa Ziehau stats->tpt += E1000_READ_REG(hw, E1000_TPT); 27841f7e3916SSepherosa Ziehau stats->ptc64 += E1000_READ_REG(hw, E1000_PTC64); 27851f7e3916SSepherosa Ziehau stats->ptc127 += E1000_READ_REG(hw, E1000_PTC127); 27861f7e3916SSepherosa Ziehau stats->ptc255 += E1000_READ_REG(hw, E1000_PTC255); 27871f7e3916SSepherosa Ziehau stats->ptc511 += E1000_READ_REG(hw, E1000_PTC511); 27881f7e3916SSepherosa Ziehau stats->ptc1023 += E1000_READ_REG(hw, E1000_PTC1023); 27891f7e3916SSepherosa Ziehau stats->ptc1522 += E1000_READ_REG(hw, E1000_PTC1522); 27901f7e3916SSepherosa Ziehau stats->mptc += E1000_READ_REG(hw, E1000_MPTC); 27911f7e3916SSepherosa Ziehau stats->bptc += E1000_READ_REG(hw, E1000_BPTC); 27921f7e3916SSepherosa Ziehau 27931f7e3916SSepherosa Ziehau /* Interrupt Counts */ 27941f7e3916SSepherosa Ziehau 27951f7e3916SSepherosa Ziehau stats->iac += E1000_READ_REG(hw, E1000_IAC); 27961f7e3916SSepherosa Ziehau stats->icrxptc += E1000_READ_REG(hw, E1000_ICRXPTC); 27971f7e3916SSepherosa Ziehau stats->icrxatc += E1000_READ_REG(hw, E1000_ICRXATC); 27981f7e3916SSepherosa Ziehau stats->ictxptc += E1000_READ_REG(hw, E1000_ICTXPTC); 27991f7e3916SSepherosa Ziehau stats->ictxatc += E1000_READ_REG(hw, E1000_ICTXATC); 28001f7e3916SSepherosa Ziehau stats->ictxqec += E1000_READ_REG(hw, E1000_ICTXQEC); 28011f7e3916SSepherosa Ziehau stats->ictxqmtc += E1000_READ_REG(hw, E1000_ICTXQMTC); 28021f7e3916SSepherosa Ziehau stats->icrxdmtc += E1000_READ_REG(hw, E1000_ICRXDMTC); 28031f7e3916SSepherosa Ziehau stats->icrxoc += E1000_READ_REG(hw, E1000_ICRXOC); 28041f7e3916SSepherosa Ziehau 28051f7e3916SSepherosa Ziehau /* Host to Card Statistics */ 28061f7e3916SSepherosa Ziehau 28071f7e3916SSepherosa Ziehau stats->cbtmpc += E1000_READ_REG(hw, E1000_CBTMPC); 28081f7e3916SSepherosa Ziehau stats->htdpmc += E1000_READ_REG(hw, E1000_HTDPMC); 28091f7e3916SSepherosa Ziehau stats->cbrdpc += E1000_READ_REG(hw, E1000_CBRDPC); 28101f7e3916SSepherosa Ziehau stats->cbrmpc += E1000_READ_REG(hw, E1000_CBRMPC); 28111f7e3916SSepherosa Ziehau stats->rpthc += E1000_READ_REG(hw, E1000_RPTHC); 28121f7e3916SSepherosa Ziehau stats->hgptc += E1000_READ_REG(hw, E1000_HGPTC); 28131f7e3916SSepherosa Ziehau stats->htcbdpc += E1000_READ_REG(hw, E1000_HTCBDPC); 28141f7e3916SSepherosa Ziehau stats->hgorc += (E1000_READ_REG(hw, E1000_HGORCL) + 28151f7e3916SSepherosa Ziehau ((uint64_t)E1000_READ_REG(hw, E1000_HGORCH) << 32)); 28161f7e3916SSepherosa Ziehau stats->hgotc += (E1000_READ_REG(hw, E1000_HGOTCL) + 28171f7e3916SSepherosa Ziehau ((uint64_t)E1000_READ_REG(hw, E1000_HGOTCH) << 32)); 28181f7e3916SSepherosa Ziehau stats->lenerrs += E1000_READ_REG(hw, E1000_LENERRS); 28191f7e3916SSepherosa Ziehau stats->scvpc += E1000_READ_REG(hw, E1000_SCVPC); 28201f7e3916SSepherosa Ziehau stats->hrmpc += E1000_READ_REG(hw, E1000_HRMPC); 28211f7e3916SSepherosa Ziehau 28221f7e3916SSepherosa Ziehau stats->algnerrc += E1000_READ_REG(hw, E1000_ALGNERRC); 28231f7e3916SSepherosa Ziehau stats->rxerrc += E1000_READ_REG(hw, E1000_RXERRC); 28241f7e3916SSepherosa Ziehau stats->tncrs += E1000_READ_REG(hw, E1000_TNCRS); 28251f7e3916SSepherosa Ziehau stats->cexterr += E1000_READ_REG(hw, E1000_CEXTERR); 28261f7e3916SSepherosa Ziehau stats->tsctc += E1000_READ_REG(hw, E1000_TSCTC); 28271f7e3916SSepherosa Ziehau stats->tsctfc += E1000_READ_REG(hw, E1000_TSCTFC); 28281f7e3916SSepherosa Ziehau 28291f7e3916SSepherosa Ziehau ifp->if_collisions = stats->colc; 28301f7e3916SSepherosa Ziehau 28311f7e3916SSepherosa Ziehau /* Rx Errors */ 28321f7e3916SSepherosa Ziehau ifp->if_ierrors = stats->rxerrc + stats->crcerrs + stats->algnerrc + 28331f7e3916SSepherosa Ziehau stats->ruc + stats->roc + stats->mpc + stats->cexterr; 28341f7e3916SSepherosa Ziehau 28351f7e3916SSepherosa Ziehau /* Tx Errors */ 28361f7e3916SSepherosa Ziehau ifp->if_oerrors = stats->ecol + stats->latecol + sc->watchdog_events; 28371f7e3916SSepherosa Ziehau 28381f7e3916SSepherosa Ziehau /* Driver specific counters */ 28391f7e3916SSepherosa Ziehau sc->device_control = E1000_READ_REG(hw, E1000_CTRL); 28401f7e3916SSepherosa Ziehau sc->rx_control = E1000_READ_REG(hw, E1000_RCTL); 28411f7e3916SSepherosa Ziehau sc->int_mask = E1000_READ_REG(hw, E1000_IMS); 28421f7e3916SSepherosa Ziehau sc->eint_mask = E1000_READ_REG(hw, E1000_EIMS); 28431f7e3916SSepherosa Ziehau sc->packet_buf_alloc_tx = 28441f7e3916SSepherosa Ziehau ((E1000_READ_REG(hw, E1000_PBA) & 0xffff0000) >> 16); 28451f7e3916SSepherosa Ziehau sc->packet_buf_alloc_rx = 28461f7e3916SSepherosa Ziehau (E1000_READ_REG(hw, E1000_PBA) & 0xffff); 28471f7e3916SSepherosa Ziehau } 28481f7e3916SSepherosa Ziehau 28491f7e3916SSepherosa Ziehau static void 28501f7e3916SSepherosa Ziehau igb_vf_init_stats(struct igb_softc *sc) 28511f7e3916SSepherosa Ziehau { 28521f7e3916SSepherosa Ziehau struct e1000_hw *hw = &sc->hw; 28531f7e3916SSepherosa Ziehau struct e1000_vf_stats *stats; 28541f7e3916SSepherosa Ziehau 28551f7e3916SSepherosa Ziehau stats = sc->stats; 28561f7e3916SSepherosa Ziehau stats->last_gprc = E1000_READ_REG(hw, E1000_VFGPRC); 28571f7e3916SSepherosa Ziehau stats->last_gorc = E1000_READ_REG(hw, E1000_VFGORC); 28581f7e3916SSepherosa Ziehau stats->last_gptc = E1000_READ_REG(hw, E1000_VFGPTC); 28591f7e3916SSepherosa Ziehau stats->last_gotc = E1000_READ_REG(hw, E1000_VFGOTC); 28601f7e3916SSepherosa Ziehau stats->last_mprc = E1000_READ_REG(hw, E1000_VFMPRC); 28611f7e3916SSepherosa Ziehau } 28621f7e3916SSepherosa Ziehau 28631f7e3916SSepherosa Ziehau static void 28641f7e3916SSepherosa Ziehau igb_update_vf_stats_counters(struct igb_softc *sc) 28651f7e3916SSepherosa Ziehau { 28661f7e3916SSepherosa Ziehau struct e1000_hw *hw = &sc->hw; 28671f7e3916SSepherosa Ziehau struct e1000_vf_stats *stats; 28681f7e3916SSepherosa Ziehau 28691f7e3916SSepherosa Ziehau if (sc->link_speed == 0) 28701f7e3916SSepherosa Ziehau return; 28711f7e3916SSepherosa Ziehau 28721f7e3916SSepherosa Ziehau stats = sc->stats; 28731f7e3916SSepherosa Ziehau UPDATE_VF_REG(E1000_VFGPRC, stats->last_gprc, stats->gprc); 28741f7e3916SSepherosa Ziehau UPDATE_VF_REG(E1000_VFGORC, stats->last_gorc, stats->gorc); 28751f7e3916SSepherosa Ziehau UPDATE_VF_REG(E1000_VFGPTC, stats->last_gptc, stats->gptc); 28761f7e3916SSepherosa Ziehau UPDATE_VF_REG(E1000_VFGOTC, stats->last_gotc, stats->gotc); 28771f7e3916SSepherosa Ziehau UPDATE_VF_REG(E1000_VFMPRC, stats->last_mprc, stats->mprc); 28781f7e3916SSepherosa Ziehau } 28791f7e3916SSepherosa Ziehau 28801f7e3916SSepherosa Ziehau #ifdef DEVICE_POLLING 28811f7e3916SSepherosa Ziehau 28821f7e3916SSepherosa Ziehau static void 28831f7e3916SSepherosa Ziehau igb_poll(struct ifnet *ifp, enum poll_cmd cmd, int count) 28841f7e3916SSepherosa Ziehau { 28851f7e3916SSepherosa Ziehau struct igb_softc *sc = ifp->if_softc; 28861f7e3916SSepherosa Ziehau uint32_t reg_icr; 28871f7e3916SSepherosa Ziehau 28887d235eb5SSepherosa Ziehau ASSERT_SERIALIZED(&sc->main_serialize); 28891f7e3916SSepherosa Ziehau 28901f7e3916SSepherosa Ziehau switch (cmd) { 28911f7e3916SSepherosa Ziehau case POLL_REGISTER: 28921f7e3916SSepherosa Ziehau igb_disable_intr(sc); 28931f7e3916SSepherosa Ziehau break; 28941f7e3916SSepherosa Ziehau 28951f7e3916SSepherosa Ziehau case POLL_DEREGISTER: 28961f7e3916SSepherosa Ziehau igb_enable_intr(sc); 28971f7e3916SSepherosa Ziehau break; 28981f7e3916SSepherosa Ziehau 28991f7e3916SSepherosa Ziehau case POLL_AND_CHECK_STATUS: 29001f7e3916SSepherosa Ziehau reg_icr = E1000_READ_REG(&sc->hw, E1000_ICR); 29011f7e3916SSepherosa Ziehau if (reg_icr & (E1000_ICR_RXSEQ | E1000_ICR_LSC)) { 29021f7e3916SSepherosa Ziehau sc->hw.mac.get_link_status = 1; 29031f7e3916SSepherosa Ziehau igb_update_link_status(sc); 29041f7e3916SSepherosa Ziehau } 29051f7e3916SSepherosa Ziehau /* FALL THROUGH */ 29061f7e3916SSepherosa Ziehau case POLL_ONLY: 29071f7e3916SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) { 29087d235eb5SSepherosa Ziehau struct igb_tx_ring *txr; 29097d235eb5SSepherosa Ziehau int i; 29101f7e3916SSepherosa Ziehau 2911be922da6SSepherosa Ziehau for (i = 0; i < sc->rx_ring_inuse; ++i) { 29127d235eb5SSepherosa Ziehau struct igb_rx_ring *rxr = &sc->rx_rings[i]; 29137d235eb5SSepherosa Ziehau 29147d235eb5SSepherosa Ziehau lwkt_serialize_enter(&rxr->rx_serialize); 29157d235eb5SSepherosa Ziehau igb_rxeof(rxr, count); 29167d235eb5SSepherosa Ziehau lwkt_serialize_exit(&rxr->rx_serialize); 29177d235eb5SSepherosa Ziehau } 29187d235eb5SSepherosa Ziehau 29197d235eb5SSepherosa Ziehau txr = &sc->tx_rings[0]; 29207d235eb5SSepherosa Ziehau lwkt_serialize_enter(&txr->tx_serialize); 29217d235eb5SSepherosa Ziehau igb_txeof(txr); 29221f7e3916SSepherosa Ziehau if (!ifq_is_empty(&ifp->if_snd)) 29231f7e3916SSepherosa Ziehau if_devstart(ifp); 29247d235eb5SSepherosa Ziehau lwkt_serialize_exit(&txr->tx_serialize); 29251f7e3916SSepherosa Ziehau } 29261f7e3916SSepherosa Ziehau break; 29271f7e3916SSepherosa Ziehau } 29281f7e3916SSepherosa Ziehau } 29291f7e3916SSepherosa Ziehau 29301f7e3916SSepherosa Ziehau #endif /* DEVICE_POLLING */ 29311f7e3916SSepherosa Ziehau 29321f7e3916SSepherosa Ziehau static void 29331f7e3916SSepherosa Ziehau igb_intr(void *xsc) 29341f7e3916SSepherosa Ziehau { 29351f7e3916SSepherosa Ziehau struct igb_softc *sc = xsc; 29361f7e3916SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 2937f6167a56SSepherosa Ziehau uint32_t eicr; 2938f6167a56SSepherosa Ziehau 29397d235eb5SSepherosa Ziehau ASSERT_SERIALIZED(&sc->main_serialize); 2940f6167a56SSepherosa Ziehau 2941f6167a56SSepherosa Ziehau eicr = E1000_READ_REG(&sc->hw, E1000_EICR); 2942f6167a56SSepherosa Ziehau 2943f6167a56SSepherosa Ziehau if (eicr == 0) 2944f6167a56SSepherosa Ziehau return; 2945f6167a56SSepherosa Ziehau 2946f6167a56SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) { 29477d235eb5SSepherosa Ziehau struct igb_tx_ring *txr; 29487d235eb5SSepherosa Ziehau int i; 2949f6167a56SSepherosa Ziehau 2950be922da6SSepherosa Ziehau for (i = 0; i < sc->rx_ring_inuse; ++i) { 29517d235eb5SSepherosa Ziehau struct igb_rx_ring *rxr = &sc->rx_rings[i]; 29527d235eb5SSepherosa Ziehau 29537d235eb5SSepherosa Ziehau if (eicr & rxr->rx_intr_mask) { 29547d235eb5SSepherosa Ziehau lwkt_serialize_enter(&rxr->rx_serialize); 29557d235eb5SSepherosa Ziehau igb_rxeof(rxr, -1); 29567d235eb5SSepherosa Ziehau lwkt_serialize_exit(&rxr->rx_serialize); 29577d235eb5SSepherosa Ziehau } 29587d235eb5SSepherosa Ziehau } 29597d235eb5SSepherosa Ziehau 29607d235eb5SSepherosa Ziehau txr = &sc->tx_rings[0]; 29617d235eb5SSepherosa Ziehau if (eicr & txr->tx_intr_mask) { 29627d235eb5SSepherosa Ziehau lwkt_serialize_enter(&txr->tx_serialize); 29637d235eb5SSepherosa Ziehau igb_txeof(txr); 2964f6167a56SSepherosa Ziehau if (!ifq_is_empty(&ifp->if_snd)) 2965f6167a56SSepherosa Ziehau if_devstart(ifp); 29667d235eb5SSepherosa Ziehau lwkt_serialize_exit(&txr->tx_serialize); 2967f6167a56SSepherosa Ziehau } 2968f6167a56SSepherosa Ziehau } 2969f6167a56SSepherosa Ziehau 2970f6167a56SSepherosa Ziehau if (eicr & E1000_EICR_OTHER) { 2971f6167a56SSepherosa Ziehau uint32_t icr = E1000_READ_REG(&sc->hw, E1000_ICR); 2972f6167a56SSepherosa Ziehau 2973f6167a56SSepherosa Ziehau /* Link status change */ 2974f6167a56SSepherosa Ziehau if (icr & E1000_ICR_LSC) { 2975f6167a56SSepherosa Ziehau sc->hw.mac.get_link_status = 1; 2976f6167a56SSepherosa Ziehau igb_update_link_status(sc); 2977f6167a56SSepherosa Ziehau } 2978f6167a56SSepherosa Ziehau } 2979f6167a56SSepherosa Ziehau 2980f6167a56SSepherosa Ziehau /* 2981f6167a56SSepherosa Ziehau * Reading EICR has the side effect to clear interrupt mask, 2982f6167a56SSepherosa Ziehau * so all interrupts need to be enabled here. 2983f6167a56SSepherosa Ziehau */ 2984f6167a56SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_EIMS, sc->intr_mask); 2985f6167a56SSepherosa Ziehau } 2986f6167a56SSepherosa Ziehau 2987f6167a56SSepherosa Ziehau static void 2988f6167a56SSepherosa Ziehau igb_shared_intr(void *xsc) 2989f6167a56SSepherosa Ziehau { 2990f6167a56SSepherosa Ziehau struct igb_softc *sc = xsc; 2991f6167a56SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 29921f7e3916SSepherosa Ziehau uint32_t reg_icr; 29931f7e3916SSepherosa Ziehau 29947d235eb5SSepherosa Ziehau ASSERT_SERIALIZED(&sc->main_serialize); 29951f7e3916SSepherosa Ziehau 29961f7e3916SSepherosa Ziehau reg_icr = E1000_READ_REG(&sc->hw, E1000_ICR); 29971f7e3916SSepherosa Ziehau 29981f7e3916SSepherosa Ziehau /* Hot eject? */ 29991f7e3916SSepherosa Ziehau if (reg_icr == 0xffffffff) 30001f7e3916SSepherosa Ziehau return; 30011f7e3916SSepherosa Ziehau 30021f7e3916SSepherosa Ziehau /* Definitely not our interrupt. */ 30031f7e3916SSepherosa Ziehau if (reg_icr == 0x0) 30041f7e3916SSepherosa Ziehau return; 30051f7e3916SSepherosa Ziehau 30061f7e3916SSepherosa Ziehau if ((reg_icr & E1000_ICR_INT_ASSERTED) == 0) 30071f7e3916SSepherosa Ziehau return; 30081f7e3916SSepherosa Ziehau 30091f7e3916SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) { 301071b8b086SSepherosa Ziehau if (reg_icr & 301171b8b086SSepherosa Ziehau (E1000_ICR_RXT0 | E1000_ICR_RXDMT0 | E1000_ICR_RXO)) { 30127d235eb5SSepherosa Ziehau int i; 30131f7e3916SSepherosa Ziehau 3014be922da6SSepherosa Ziehau for (i = 0; i < sc->rx_ring_inuse; ++i) { 30157d235eb5SSepherosa Ziehau struct igb_rx_ring *rxr = &sc->rx_rings[i]; 30167d235eb5SSepherosa Ziehau 30177d235eb5SSepherosa Ziehau lwkt_serialize_enter(&rxr->rx_serialize); 30187d235eb5SSepherosa Ziehau igb_rxeof(rxr, -1); 30197d235eb5SSepherosa Ziehau lwkt_serialize_exit(&rxr->rx_serialize); 30207d235eb5SSepherosa Ziehau } 302171b8b086SSepherosa Ziehau } 30227d235eb5SSepherosa Ziehau 302371b8b086SSepherosa Ziehau if (reg_icr & E1000_ICR_TXDW) { 302471b8b086SSepherosa Ziehau struct igb_tx_ring *txr = &sc->tx_rings[0]; 302571b8b086SSepherosa Ziehau 30267d235eb5SSepherosa Ziehau lwkt_serialize_enter(&txr->tx_serialize); 30277d235eb5SSepherosa Ziehau igb_txeof(txr); 30281f7e3916SSepherosa Ziehau if (!ifq_is_empty(&ifp->if_snd)) 30291f7e3916SSepherosa Ziehau if_devstart(ifp); 30307d235eb5SSepherosa Ziehau lwkt_serialize_exit(&txr->tx_serialize); 30311f7e3916SSepherosa Ziehau } 303271b8b086SSepherosa Ziehau } 30331f7e3916SSepherosa Ziehau 30341f7e3916SSepherosa Ziehau /* Link status change */ 30351f7e3916SSepherosa Ziehau if (reg_icr & (E1000_ICR_RXSEQ | E1000_ICR_LSC)) { 30361f7e3916SSepherosa Ziehau sc->hw.mac.get_link_status = 1; 30371f7e3916SSepherosa Ziehau igb_update_link_status(sc); 30381f7e3916SSepherosa Ziehau } 30391f7e3916SSepherosa Ziehau 30401f7e3916SSepherosa Ziehau if (reg_icr & E1000_ICR_RXO) 30411f7e3916SSepherosa Ziehau sc->rx_overruns++; 30421f7e3916SSepherosa Ziehau } 30431f7e3916SSepherosa Ziehau 30441f7e3916SSepherosa Ziehau static int 30451f7e3916SSepherosa Ziehau igb_txctx_pullup(struct igb_tx_ring *txr, struct mbuf **m0) 30461f7e3916SSepherosa Ziehau { 30471f7e3916SSepherosa Ziehau struct mbuf *m = *m0; 30481f7e3916SSepherosa Ziehau struct ether_header *eh; 30491f7e3916SSepherosa Ziehau int len; 30501f7e3916SSepherosa Ziehau 30511f7e3916SSepherosa Ziehau txr->ctx_try_pullup++; 30521f7e3916SSepherosa Ziehau 30531f7e3916SSepherosa Ziehau len = ETHER_HDR_LEN + IGB_IPVHL_SIZE; 30541f7e3916SSepherosa Ziehau 30551f7e3916SSepherosa Ziehau if (__predict_false(!M_WRITABLE(m))) { 30561f7e3916SSepherosa Ziehau if (__predict_false(m->m_len < ETHER_HDR_LEN)) { 30571f7e3916SSepherosa Ziehau txr->ctx_drop1++; 30581f7e3916SSepherosa Ziehau m_freem(m); 30591f7e3916SSepherosa Ziehau *m0 = NULL; 30601f7e3916SSepherosa Ziehau return ENOBUFS; 30611f7e3916SSepherosa Ziehau } 30621f7e3916SSepherosa Ziehau eh = mtod(m, struct ether_header *); 30631f7e3916SSepherosa Ziehau 30641f7e3916SSepherosa Ziehau if (eh->ether_type == htons(ETHERTYPE_VLAN)) 30651f7e3916SSepherosa Ziehau len += EVL_ENCAPLEN; 30661f7e3916SSepherosa Ziehau 30671f7e3916SSepherosa Ziehau if (m->m_len < len) { 30681f7e3916SSepherosa Ziehau txr->ctx_drop2++; 30691f7e3916SSepherosa Ziehau m_freem(m); 30701f7e3916SSepherosa Ziehau *m0 = NULL; 30711f7e3916SSepherosa Ziehau return ENOBUFS; 30721f7e3916SSepherosa Ziehau } 30731f7e3916SSepherosa Ziehau return 0; 30741f7e3916SSepherosa Ziehau } 30751f7e3916SSepherosa Ziehau 30761f7e3916SSepherosa Ziehau if (__predict_false(m->m_len < ETHER_HDR_LEN)) { 30771f7e3916SSepherosa Ziehau txr->ctx_pullup1++; 30781f7e3916SSepherosa Ziehau m = m_pullup(m, ETHER_HDR_LEN); 30791f7e3916SSepherosa Ziehau if (m == NULL) { 30801f7e3916SSepherosa Ziehau txr->ctx_pullup1_failed++; 30811f7e3916SSepherosa Ziehau *m0 = NULL; 30821f7e3916SSepherosa Ziehau return ENOBUFS; 30831f7e3916SSepherosa Ziehau } 30841f7e3916SSepherosa Ziehau *m0 = m; 30851f7e3916SSepherosa Ziehau } 30861f7e3916SSepherosa Ziehau eh = mtod(m, struct ether_header *); 30871f7e3916SSepherosa Ziehau 30881f7e3916SSepherosa Ziehau if (eh->ether_type == htons(ETHERTYPE_VLAN)) 30891f7e3916SSepherosa Ziehau len += EVL_ENCAPLEN; 30901f7e3916SSepherosa Ziehau 30911f7e3916SSepherosa Ziehau if (m->m_len < len) { 30921f7e3916SSepherosa Ziehau txr->ctx_pullup2++; 30931f7e3916SSepherosa Ziehau m = m_pullup(m, len); 30941f7e3916SSepherosa Ziehau if (m == NULL) { 30951f7e3916SSepherosa Ziehau txr->ctx_pullup2_failed++; 30961f7e3916SSepherosa Ziehau *m0 = NULL; 30971f7e3916SSepherosa Ziehau return ENOBUFS; 30981f7e3916SSepherosa Ziehau } 30991f7e3916SSepherosa Ziehau *m0 = m; 31001f7e3916SSepherosa Ziehau } 31011f7e3916SSepherosa Ziehau return 0; 31021f7e3916SSepherosa Ziehau } 31031f7e3916SSepherosa Ziehau 31041f7e3916SSepherosa Ziehau static int 31051f7e3916SSepherosa Ziehau igb_encap(struct igb_tx_ring *txr, struct mbuf **m_headp) 31061f7e3916SSepherosa Ziehau { 31071f7e3916SSepherosa Ziehau bus_dma_segment_t segs[IGB_MAX_SCATTER]; 31081f7e3916SSepherosa Ziehau bus_dmamap_t map; 31091f7e3916SSepherosa Ziehau struct igb_tx_buf *tx_buf, *tx_buf_mapped; 31101f7e3916SSepherosa Ziehau union e1000_adv_tx_desc *txd = NULL; 31111f7e3916SSepherosa Ziehau struct mbuf *m_head = *m_headp; 3112b6220144SSepherosa Ziehau uint32_t olinfo_status = 0, cmd_type_len = 0, cmd_rs = 0; 3113b6220144SSepherosa Ziehau int maxsegs, nsegs, i, j, error, last = 0; 31141f7e3916SSepherosa Ziehau uint32_t hdrlen = 0; 31151f7e3916SSepherosa Ziehau 31161f7e3916SSepherosa Ziehau if (m_head->m_len < IGB_TXCSUM_MINHL && 31171f7e3916SSepherosa Ziehau ((m_head->m_pkthdr.csum_flags & IGB_CSUM_FEATURES) || 31181f7e3916SSepherosa Ziehau (m_head->m_flags & M_VLANTAG))) { 31191f7e3916SSepherosa Ziehau /* 31201f7e3916SSepherosa Ziehau * Make sure that ethernet header and ip.ip_hl are in 31211f7e3916SSepherosa Ziehau * contiguous memory, since if TXCSUM or VLANTAG is 31221f7e3916SSepherosa Ziehau * enabled, later TX context descriptor's setup need 31231f7e3916SSepherosa Ziehau * to access ip.ip_hl. 31241f7e3916SSepherosa Ziehau */ 31251f7e3916SSepherosa Ziehau error = igb_txctx_pullup(txr, m_headp); 31261f7e3916SSepherosa Ziehau if (error) { 31271f7e3916SSepherosa Ziehau KKASSERT(*m_headp == NULL); 31281f7e3916SSepherosa Ziehau return error; 31291f7e3916SSepherosa Ziehau } 31301f7e3916SSepherosa Ziehau m_head = *m_headp; 31311f7e3916SSepherosa Ziehau } 31321f7e3916SSepherosa Ziehau 31331f7e3916SSepherosa Ziehau /* Set basic descriptor constants */ 31341f7e3916SSepherosa Ziehau cmd_type_len |= E1000_ADVTXD_DTYP_DATA; 31351f7e3916SSepherosa Ziehau cmd_type_len |= E1000_ADVTXD_DCMD_IFCS | E1000_ADVTXD_DCMD_DEXT; 31361f7e3916SSepherosa Ziehau if (m_head->m_flags & M_VLANTAG) 31371f7e3916SSepherosa Ziehau cmd_type_len |= E1000_ADVTXD_DCMD_VLE; 31381f7e3916SSepherosa Ziehau 31391f7e3916SSepherosa Ziehau /* 31401f7e3916SSepherosa Ziehau * Map the packet for DMA. 31411f7e3916SSepherosa Ziehau */ 3142b6220144SSepherosa Ziehau tx_buf = &txr->tx_buf[txr->next_avail_desc]; 31431f7e3916SSepherosa Ziehau tx_buf_mapped = tx_buf; 31441f7e3916SSepherosa Ziehau map = tx_buf->map; 31451f7e3916SSepherosa Ziehau 3146b6220144SSepherosa Ziehau maxsegs = txr->tx_avail - IGB_TX_RESERVED; 3147b6220144SSepherosa Ziehau KASSERT(maxsegs >= txr->spare_desc, ("not enough spare TX desc\n")); 31481f7e3916SSepherosa Ziehau if (maxsegs > IGB_MAX_SCATTER) 31491f7e3916SSepherosa Ziehau maxsegs = IGB_MAX_SCATTER; 31501f7e3916SSepherosa Ziehau 31511f7e3916SSepherosa Ziehau error = bus_dmamap_load_mbuf_defrag(txr->tx_tag, map, m_headp, 31521f7e3916SSepherosa Ziehau segs, maxsegs, &nsegs, BUS_DMA_NOWAIT); 31531f7e3916SSepherosa Ziehau if (error) { 31541f7e3916SSepherosa Ziehau if (error == ENOBUFS) 31551f7e3916SSepherosa Ziehau txr->sc->mbuf_defrag_failed++; 31561f7e3916SSepherosa Ziehau else 31571f7e3916SSepherosa Ziehau txr->sc->no_tx_dma_setup++; 31581f7e3916SSepherosa Ziehau 31591f7e3916SSepherosa Ziehau m_freem(*m_headp); 31601f7e3916SSepherosa Ziehau *m_headp = NULL; 31611f7e3916SSepherosa Ziehau return error; 31621f7e3916SSepherosa Ziehau } 31631f7e3916SSepherosa Ziehau bus_dmamap_sync(txr->tx_tag, map, BUS_DMASYNC_PREWRITE); 31641f7e3916SSepherosa Ziehau 31651f7e3916SSepherosa Ziehau m_head = *m_headp; 31661f7e3916SSepherosa Ziehau 31671f7e3916SSepherosa Ziehau #if 0 31681f7e3916SSepherosa Ziehau /* 31691f7e3916SSepherosa Ziehau * Set up the context descriptor: 31701f7e3916SSepherosa Ziehau * used when any hardware offload is done. 31711f7e3916SSepherosa Ziehau * This includes CSUM, VLAN, and TSO. It 31721f7e3916SSepherosa Ziehau * will use the first descriptor. 31731f7e3916SSepherosa Ziehau */ 31741f7e3916SSepherosa Ziehau if (m_head->m_pkthdr.csum_flags & CSUM_TSO) { 31751f7e3916SSepherosa Ziehau if (igb_tso_setup(txr, m_head, &hdrlen)) { 31761f7e3916SSepherosa Ziehau cmd_type_len |= E1000_ADVTXD_DCMD_TSE; 31771f7e3916SSepherosa Ziehau olinfo_status |= E1000_TXD_POPTS_IXSM << 8; 31781f7e3916SSepherosa Ziehau olinfo_status |= E1000_TXD_POPTS_TXSM << 8; 31791f7e3916SSepherosa Ziehau } else 31801f7e3916SSepherosa Ziehau return (ENXIO); 31811f7e3916SSepherosa Ziehau } else if (igb_tx_ctx_setup(txr, m_head)) 31821f7e3916SSepherosa Ziehau olinfo_status |= E1000_TXD_POPTS_TXSM << 8; 31831f7e3916SSepherosa Ziehau #else 31841f7e3916SSepherosa Ziehau if (igb_txctx(txr, m_head)) { 31851f7e3916SSepherosa Ziehau olinfo_status |= (E1000_TXD_POPTS_IXSM << 8); 31861f7e3916SSepherosa Ziehau if (m_head->m_pkthdr.csum_flags & (CSUM_UDP | CSUM_TCP)) 31871f7e3916SSepherosa Ziehau olinfo_status |= (E1000_TXD_POPTS_TXSM << 8); 3188b6220144SSepherosa Ziehau txr->tx_nsegs++; 31891f7e3916SSepherosa Ziehau } 31901f7e3916SSepherosa Ziehau #endif 31911f7e3916SSepherosa Ziehau 3192b6220144SSepherosa Ziehau txr->tx_nsegs += nsegs; 3193b6220144SSepherosa Ziehau if (txr->tx_nsegs >= txr->intr_nsegs) { 3194b6220144SSepherosa Ziehau /* 3195b6220144SSepherosa Ziehau * Report Status (RS) is turned on every intr_nsegs 3196b6220144SSepherosa Ziehau * descriptors (roughly). 3197b6220144SSepherosa Ziehau */ 3198b6220144SSepherosa Ziehau txr->tx_nsegs = 0; 3199b6220144SSepherosa Ziehau cmd_rs = E1000_ADVTXD_DCMD_RS; 3200b6220144SSepherosa Ziehau } 3201b6220144SSepherosa Ziehau 32021f7e3916SSepherosa Ziehau /* Calculate payload length */ 32031f7e3916SSepherosa Ziehau olinfo_status |= ((m_head->m_pkthdr.len - hdrlen) 32041f7e3916SSepherosa Ziehau << E1000_ADVTXD_PAYLEN_SHIFT); 32051f7e3916SSepherosa Ziehau 32061f7e3916SSepherosa Ziehau /* 82575 needs the queue index added */ 32071f7e3916SSepherosa Ziehau if (txr->sc->hw.mac.type == e1000_82575) 32081f7e3916SSepherosa Ziehau olinfo_status |= txr->me << 4; 32091f7e3916SSepherosa Ziehau 32101f7e3916SSepherosa Ziehau /* Set up our transmit descriptors */ 32111f7e3916SSepherosa Ziehau i = txr->next_avail_desc; 32121f7e3916SSepherosa Ziehau for (j = 0; j < nsegs; j++) { 32131f7e3916SSepherosa Ziehau bus_size_t seg_len; 32141f7e3916SSepherosa Ziehau bus_addr_t seg_addr; 32151f7e3916SSepherosa Ziehau 32161f7e3916SSepherosa Ziehau tx_buf = &txr->tx_buf[i]; 32171f7e3916SSepherosa Ziehau txd = (union e1000_adv_tx_desc *)&txr->tx_base[i]; 32181f7e3916SSepherosa Ziehau seg_addr = segs[j].ds_addr; 32191f7e3916SSepherosa Ziehau seg_len = segs[j].ds_len; 32201f7e3916SSepherosa Ziehau 32211f7e3916SSepherosa Ziehau txd->read.buffer_addr = htole64(seg_addr); 32221f7e3916SSepherosa Ziehau txd->read.cmd_type_len = htole32(cmd_type_len | seg_len); 32231f7e3916SSepherosa Ziehau txd->read.olinfo_status = htole32(olinfo_status); 32241f7e3916SSepherosa Ziehau last = i; 322591b8700aSSepherosa Ziehau if (++i == txr->num_tx_desc) 32261f7e3916SSepherosa Ziehau i = 0; 32271f7e3916SSepherosa Ziehau tx_buf->m_head = NULL; 32281f7e3916SSepherosa Ziehau } 32291f7e3916SSepherosa Ziehau 32301f7e3916SSepherosa Ziehau KASSERT(txr->tx_avail > nsegs, ("invalid avail TX desc\n")); 32311f7e3916SSepherosa Ziehau txr->next_avail_desc = i; 32321f7e3916SSepherosa Ziehau txr->tx_avail -= nsegs; 32331f7e3916SSepherosa Ziehau 32341f7e3916SSepherosa Ziehau tx_buf->m_head = m_head; 32351f7e3916SSepherosa Ziehau tx_buf_mapped->map = tx_buf->map; 32361f7e3916SSepherosa Ziehau tx_buf->map = map; 32371f7e3916SSepherosa Ziehau 32381f7e3916SSepherosa Ziehau /* 3239b6220144SSepherosa Ziehau * Last Descriptor of Packet needs End Of Packet (EOP) 32401f7e3916SSepherosa Ziehau */ 3241b6220144SSepherosa Ziehau txd->read.cmd_type_len |= htole32(E1000_ADVTXD_DCMD_EOP | cmd_rs); 32421f7e3916SSepherosa Ziehau 32431f7e3916SSepherosa Ziehau /* 32441f7e3916SSepherosa Ziehau * Advance the Transmit Descriptor Tail (TDT), this tells the E1000 32451f7e3916SSepherosa Ziehau * that this frame is available to transmit. 32461f7e3916SSepherosa Ziehau */ 32471f7e3916SSepherosa Ziehau E1000_WRITE_REG(&txr->sc->hw, E1000_TDT(txr->me), i); 32481f7e3916SSepherosa Ziehau ++txr->tx_packets; 32491f7e3916SSepherosa Ziehau 32501f7e3916SSepherosa Ziehau return 0; 32511f7e3916SSepherosa Ziehau } 32521f7e3916SSepherosa Ziehau 32531f7e3916SSepherosa Ziehau static void 32541f7e3916SSepherosa Ziehau igb_start(struct ifnet *ifp) 32551f7e3916SSepherosa Ziehau { 32561f7e3916SSepherosa Ziehau struct igb_softc *sc = ifp->if_softc; 325727866bf1SSepherosa Ziehau struct igb_tx_ring *txr = &sc->tx_rings[0]; 32581f7e3916SSepherosa Ziehau struct mbuf *m_head; 32591f7e3916SSepherosa Ziehau 32607d235eb5SSepherosa Ziehau ASSERT_SERIALIZED(&txr->tx_serialize); 32611f7e3916SSepherosa Ziehau 32621f7e3916SSepherosa Ziehau if ((ifp->if_flags & (IFF_RUNNING|IFF_OACTIVE)) != IFF_RUNNING) 32631f7e3916SSepherosa Ziehau return; 32641f7e3916SSepherosa Ziehau 32651f7e3916SSepherosa Ziehau if (!sc->link_active) { 32661f7e3916SSepherosa Ziehau ifq_purge(&ifp->if_snd); 32671f7e3916SSepherosa Ziehau return; 32681f7e3916SSepherosa Ziehau } 32691f7e3916SSepherosa Ziehau 3270b6220144SSepherosa Ziehau if (!IGB_IS_NOT_OACTIVE(txr)) 32711f7e3916SSepherosa Ziehau igb_txeof(txr); 32721f7e3916SSepherosa Ziehau 32731f7e3916SSepherosa Ziehau while (!ifq_is_empty(&ifp->if_snd)) { 3274b6220144SSepherosa Ziehau if (IGB_IS_OACTIVE(txr)) { 32751f7e3916SSepherosa Ziehau ifp->if_flags |= IFF_OACTIVE; 32761f7e3916SSepherosa Ziehau /* Set watchdog on */ 32771f7e3916SSepherosa Ziehau ifp->if_timer = 5; 32781f7e3916SSepherosa Ziehau break; 32791f7e3916SSepherosa Ziehau } 32801f7e3916SSepherosa Ziehau 32811f7e3916SSepherosa Ziehau m_head = ifq_dequeue(&ifp->if_snd, NULL); 32821f7e3916SSepherosa Ziehau if (m_head == NULL) 32831f7e3916SSepherosa Ziehau break; 32841f7e3916SSepherosa Ziehau 32851f7e3916SSepherosa Ziehau if (igb_encap(txr, &m_head)) { 32861f7e3916SSepherosa Ziehau ifp->if_oerrors++; 32871f7e3916SSepherosa Ziehau continue; 32881f7e3916SSepherosa Ziehau } 32891f7e3916SSepherosa Ziehau 32901f7e3916SSepherosa Ziehau /* Send a copy of the frame to the BPF listener */ 32911f7e3916SSepherosa Ziehau ETHER_BPF_MTAP(ifp, m_head); 32921f7e3916SSepherosa Ziehau } 32931f7e3916SSepherosa Ziehau } 32941f7e3916SSepherosa Ziehau 32951f7e3916SSepherosa Ziehau static void 32961f7e3916SSepherosa Ziehau igb_watchdog(struct ifnet *ifp) 32971f7e3916SSepherosa Ziehau { 32981f7e3916SSepherosa Ziehau struct igb_softc *sc = ifp->if_softc; 329927866bf1SSepherosa Ziehau struct igb_tx_ring *txr = &sc->tx_rings[0]; 33001f7e3916SSepherosa Ziehau 33011f7e3916SSepherosa Ziehau ASSERT_IFNET_SERIALIZED_ALL(ifp); 33021f7e3916SSepherosa Ziehau 33031f7e3916SSepherosa Ziehau /* 33041f7e3916SSepherosa Ziehau * If flow control has paused us since last checking 33051f7e3916SSepherosa Ziehau * it invalidates the watchdog timing, so dont run it. 33061f7e3916SSepherosa Ziehau */ 33071f7e3916SSepherosa Ziehau if (sc->pause_frames) { 33081f7e3916SSepherosa Ziehau sc->pause_frames = 0; 33091f7e3916SSepherosa Ziehau ifp->if_timer = 5; 33101f7e3916SSepherosa Ziehau return; 33111f7e3916SSepherosa Ziehau } 33121f7e3916SSepherosa Ziehau 33131f7e3916SSepherosa Ziehau if_printf(ifp, "Watchdog timeout -- resetting\n"); 33141f7e3916SSepherosa Ziehau if_printf(ifp, "Queue(%d) tdh = %d, hw tdt = %d\n", txr->me, 33151f7e3916SSepherosa Ziehau E1000_READ_REG(&sc->hw, E1000_TDH(txr->me)), 33161f7e3916SSepherosa Ziehau E1000_READ_REG(&sc->hw, E1000_TDT(txr->me))); 33171f7e3916SSepherosa Ziehau if_printf(ifp, "TX(%d) desc avail = %d, " 33181f7e3916SSepherosa Ziehau "Next TX to Clean = %d\n", 33191f7e3916SSepherosa Ziehau txr->me, txr->tx_avail, txr->next_to_clean); 33201f7e3916SSepherosa Ziehau 33211f7e3916SSepherosa Ziehau ifp->if_oerrors++; 33221f7e3916SSepherosa Ziehau sc->watchdog_events++; 33231f7e3916SSepherosa Ziehau 33241f7e3916SSepherosa Ziehau igb_init(sc); 33251f7e3916SSepherosa Ziehau if (!ifq_is_empty(&ifp->if_snd)) 33261f7e3916SSepherosa Ziehau if_devstart(ifp); 33271f7e3916SSepherosa Ziehau } 33281f7e3916SSepherosa Ziehau 33291f7e3916SSepherosa Ziehau static void 3330f6167a56SSepherosa Ziehau igb_set_eitr(struct igb_softc *sc) 33311f7e3916SSepherosa Ziehau { 33321f7e3916SSepherosa Ziehau uint32_t itr = 0; 33331f7e3916SSepherosa Ziehau 33341f7e3916SSepherosa Ziehau if (sc->intr_rate > 0) { 33351f7e3916SSepherosa Ziehau if (sc->hw.mac.type == e1000_82575) { 33361f7e3916SSepherosa Ziehau itr = 1000000000 / 256 / sc->intr_rate; 33371f7e3916SSepherosa Ziehau /* 33381f7e3916SSepherosa Ziehau * NOTE: 33391f7e3916SSepherosa Ziehau * Document is wrong on the 2 bits left shift 33401f7e3916SSepherosa Ziehau */ 33411f7e3916SSepherosa Ziehau } else { 33421f7e3916SSepherosa Ziehau itr = 1000000 / sc->intr_rate; 33431f7e3916SSepherosa Ziehau itr <<= 2; 33441f7e3916SSepherosa Ziehau } 33451f7e3916SSepherosa Ziehau itr &= 0x7FFC; 33461f7e3916SSepherosa Ziehau } 33471f7e3916SSepherosa Ziehau if (sc->hw.mac.type == e1000_82575) 33481f7e3916SSepherosa Ziehau itr |= itr << 16; 33491f7e3916SSepherosa Ziehau else 33501f7e3916SSepherosa Ziehau itr |= E1000_EITR_CNT_IGNR; 33511f7e3916SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_EITR(0), itr); 33521f7e3916SSepherosa Ziehau } 33531f7e3916SSepherosa Ziehau 33541f7e3916SSepherosa Ziehau static int 33551f7e3916SSepherosa Ziehau igb_sysctl_intr_rate(SYSCTL_HANDLER_ARGS) 33561f7e3916SSepherosa Ziehau { 33571f7e3916SSepherosa Ziehau struct igb_softc *sc = (void *)arg1; 33581f7e3916SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 33591f7e3916SSepherosa Ziehau int error, intr_rate; 33601f7e3916SSepherosa Ziehau 33611f7e3916SSepherosa Ziehau intr_rate = sc->intr_rate; 33621f7e3916SSepherosa Ziehau error = sysctl_handle_int(oidp, &intr_rate, 0, req); 33631f7e3916SSepherosa Ziehau if (error || req->newptr == NULL) 33641f7e3916SSepherosa Ziehau return error; 33651f7e3916SSepherosa Ziehau if (intr_rate < 0) 33661f7e3916SSepherosa Ziehau return EINVAL; 33671f7e3916SSepherosa Ziehau 33681f7e3916SSepherosa Ziehau ifnet_serialize_all(ifp); 33691f7e3916SSepherosa Ziehau 33701f7e3916SSepherosa Ziehau sc->intr_rate = intr_rate; 33711f7e3916SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) 3372f6167a56SSepherosa Ziehau igb_set_eitr(sc); 33731f7e3916SSepherosa Ziehau 33741f7e3916SSepherosa Ziehau ifnet_deserialize_all(ifp); 33751f7e3916SSepherosa Ziehau 33761f7e3916SSepherosa Ziehau if (bootverbose) 33771f7e3916SSepherosa Ziehau if_printf(ifp, "Interrupt rate set to %d/sec\n", sc->intr_rate); 33781f7e3916SSepherosa Ziehau return 0; 33791f7e3916SSepherosa Ziehau } 3380b6220144SSepherosa Ziehau 3381b6220144SSepherosa Ziehau static int 3382b6220144SSepherosa Ziehau igb_sysctl_tx_intr_nsegs(SYSCTL_HANDLER_ARGS) 3383b6220144SSepherosa Ziehau { 3384b6220144SSepherosa Ziehau struct igb_softc *sc = (void *)arg1; 3385b6220144SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 338627866bf1SSepherosa Ziehau struct igb_tx_ring *txr = &sc->tx_rings[0]; 3387b6220144SSepherosa Ziehau int error, nsegs; 3388b6220144SSepherosa Ziehau 3389b6220144SSepherosa Ziehau nsegs = txr->intr_nsegs; 3390b6220144SSepherosa Ziehau error = sysctl_handle_int(oidp, &nsegs, 0, req); 3391b6220144SSepherosa Ziehau if (error || req->newptr == NULL) 3392b6220144SSepherosa Ziehau return error; 3393b6220144SSepherosa Ziehau if (nsegs <= 0) 3394b6220144SSepherosa Ziehau return EINVAL; 3395b6220144SSepherosa Ziehau 3396b6220144SSepherosa Ziehau ifnet_serialize_all(ifp); 3397b6220144SSepherosa Ziehau 339891b8700aSSepherosa Ziehau if (nsegs >= txr->num_tx_desc - txr->oact_lo_desc || 3399b6220144SSepherosa Ziehau nsegs >= txr->oact_hi_desc - IGB_MAX_SCATTER) { 3400b6220144SSepherosa Ziehau error = EINVAL; 3401b6220144SSepherosa Ziehau } else { 3402b6220144SSepherosa Ziehau error = 0; 3403b6220144SSepherosa Ziehau txr->intr_nsegs = nsegs; 3404b6220144SSepherosa Ziehau } 3405b6220144SSepherosa Ziehau 3406b6220144SSepherosa Ziehau ifnet_deserialize_all(ifp); 3407b6220144SSepherosa Ziehau 3408b6220144SSepherosa Ziehau return error; 3409b6220144SSepherosa Ziehau } 3410f6167a56SSepherosa Ziehau 3411f6167a56SSepherosa Ziehau static void 3412f6167a56SSepherosa Ziehau igb_init_intr(struct igb_softc *sc) 3413f6167a56SSepherosa Ziehau { 3414be922da6SSepherosa Ziehau igb_set_intr_mask(sc); 3415f6167a56SSepherosa Ziehau if (sc->flags & IGB_FLAG_SHARED_INTR) 3416f6167a56SSepherosa Ziehau igb_set_eitr(sc); 3417f6167a56SSepherosa Ziehau else 3418f6167a56SSepherosa Ziehau igb_init_unshared_intr(sc); 3419f6167a56SSepherosa Ziehau } 3420f6167a56SSepherosa Ziehau 3421f6167a56SSepherosa Ziehau static void 3422f6167a56SSepherosa Ziehau igb_init_unshared_intr(struct igb_softc *sc) 3423f6167a56SSepherosa Ziehau { 3424f6167a56SSepherosa Ziehau struct e1000_hw *hw = &sc->hw; 3425f6167a56SSepherosa Ziehau const struct igb_rx_ring *rxr; 3426f6167a56SSepherosa Ziehau const struct igb_tx_ring *txr; 3427f6167a56SSepherosa Ziehau uint32_t ivar, index; 3428f6167a56SSepherosa Ziehau int i; 3429f6167a56SSepherosa Ziehau 3430f6167a56SSepherosa Ziehau /* 3431f6167a56SSepherosa Ziehau * Enable extended mode 3432f6167a56SSepherosa Ziehau */ 3433f6167a56SSepherosa Ziehau if (sc->hw.mac.type != e1000_82575) { 3434f6167a56SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_GPIE, E1000_GPIE_NSICR); 3435f6167a56SSepherosa Ziehau } else { 3436f6167a56SSepherosa Ziehau uint32_t tmp; 3437f6167a56SSepherosa Ziehau 3438f6167a56SSepherosa Ziehau tmp = E1000_READ_REG(hw, E1000_CTRL_EXT); 3439f6167a56SSepherosa Ziehau tmp |= E1000_CTRL_EXT_IRCA; 3440f6167a56SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_CTRL_EXT, tmp); 3441f6167a56SSepherosa Ziehau } 3442f6167a56SSepherosa Ziehau 3443f6167a56SSepherosa Ziehau /* 3444f6167a56SSepherosa Ziehau * Map TX/RX interrupts to EICR 3445f6167a56SSepherosa Ziehau */ 3446f6167a56SSepherosa Ziehau switch (sc->hw.mac.type) { 3447f6167a56SSepherosa Ziehau case e1000_82580: 3448f6167a56SSepherosa Ziehau case e1000_i350: 3449f6167a56SSepherosa Ziehau case e1000_vfadapt: 3450f6167a56SSepherosa Ziehau case e1000_vfadapt_i350: 3451f6167a56SSepherosa Ziehau /* RX entries */ 3452be922da6SSepherosa Ziehau for (i = 0; i < sc->rx_ring_inuse; ++i) { 3453f6167a56SSepherosa Ziehau rxr = &sc->rx_rings[i]; 3454f6167a56SSepherosa Ziehau 3455f6167a56SSepherosa Ziehau index = i >> 1; 3456f6167a56SSepherosa Ziehau ivar = E1000_READ_REG_ARRAY(hw, E1000_IVAR0, index); 3457f6167a56SSepherosa Ziehau 3458f6167a56SSepherosa Ziehau if (i & 1) { 3459f6167a56SSepherosa Ziehau ivar &= 0xff00ffff; 3460f6167a56SSepherosa Ziehau ivar |= 3461f6167a56SSepherosa Ziehau (rxr->rx_intr_bit | E1000_IVAR_VALID) << 16; 3462f6167a56SSepherosa Ziehau } else { 3463f6167a56SSepherosa Ziehau ivar &= 0xffffff00; 3464f6167a56SSepherosa Ziehau ivar |= 3465f6167a56SSepherosa Ziehau (rxr->rx_intr_bit | E1000_IVAR_VALID); 3466f6167a56SSepherosa Ziehau } 3467f6167a56SSepherosa Ziehau E1000_WRITE_REG_ARRAY(hw, E1000_IVAR0, index, ivar); 3468f6167a56SSepherosa Ziehau } 3469f6167a56SSepherosa Ziehau /* TX entries */ 347027866bf1SSepherosa Ziehau for (i = 0; i < sc->tx_ring_cnt; ++i) { 3471f6167a56SSepherosa Ziehau txr = &sc->tx_rings[i]; 3472f6167a56SSepherosa Ziehau 3473f6167a56SSepherosa Ziehau index = i >> 1; 3474f6167a56SSepherosa Ziehau ivar = E1000_READ_REG_ARRAY(hw, E1000_IVAR0, index); 3475f6167a56SSepherosa Ziehau 3476f6167a56SSepherosa Ziehau if (i & 1) { 3477f6167a56SSepherosa Ziehau ivar &= 0x00ffffff; 3478f6167a56SSepherosa Ziehau ivar |= 3479f6167a56SSepherosa Ziehau (txr->tx_intr_bit | E1000_IVAR_VALID) << 24; 3480f6167a56SSepherosa Ziehau } else { 3481f6167a56SSepherosa Ziehau ivar &= 0xffff00ff; 3482f6167a56SSepherosa Ziehau ivar |= 3483f6167a56SSepherosa Ziehau (txr->tx_intr_bit | E1000_IVAR_VALID) << 8; 3484f6167a56SSepherosa Ziehau } 3485f6167a56SSepherosa Ziehau E1000_WRITE_REG_ARRAY(hw, E1000_IVAR0, index, ivar); 3486f6167a56SSepherosa Ziehau } 3487f6167a56SSepherosa Ziehau /* Clear unused IVAR_MISC */ 3488f6167a56SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_IVAR_MISC, 0); 3489f6167a56SSepherosa Ziehau break; 3490f6167a56SSepherosa Ziehau 3491f6167a56SSepherosa Ziehau case e1000_82576: 3492f6167a56SSepherosa Ziehau /* RX entries */ 3493be922da6SSepherosa Ziehau for (i = 0; i < sc->rx_ring_inuse; ++i) { 3494f6167a56SSepherosa Ziehau rxr = &sc->rx_rings[i]; 3495f6167a56SSepherosa Ziehau 3496f6167a56SSepherosa Ziehau index = i & 0x7; /* Each IVAR has two entries */ 3497f6167a56SSepherosa Ziehau ivar = E1000_READ_REG_ARRAY(hw, E1000_IVAR0, index); 3498f6167a56SSepherosa Ziehau 3499f6167a56SSepherosa Ziehau if (i < 8) { 3500f6167a56SSepherosa Ziehau ivar &= 0xffffff00; 3501f6167a56SSepherosa Ziehau ivar |= 3502f6167a56SSepherosa Ziehau (rxr->rx_intr_bit | E1000_IVAR_VALID); 3503f6167a56SSepherosa Ziehau } else { 3504f6167a56SSepherosa Ziehau ivar &= 0xff00ffff; 3505f6167a56SSepherosa Ziehau ivar |= 3506f6167a56SSepherosa Ziehau (rxr->rx_intr_bit | E1000_IVAR_VALID) << 16; 3507f6167a56SSepherosa Ziehau } 3508f6167a56SSepherosa Ziehau E1000_WRITE_REG_ARRAY(hw, E1000_IVAR0, index, ivar); 3509f6167a56SSepherosa Ziehau } 3510f6167a56SSepherosa Ziehau /* TX entries */ 351127866bf1SSepherosa Ziehau for (i = 0; i < sc->tx_ring_cnt; ++i) { 3512f6167a56SSepherosa Ziehau txr = &sc->tx_rings[i]; 3513f6167a56SSepherosa Ziehau 3514f6167a56SSepherosa Ziehau index = i & 0x7; /* Each IVAR has two entries */ 3515f6167a56SSepherosa Ziehau ivar = E1000_READ_REG_ARRAY(hw, E1000_IVAR0, index); 3516f6167a56SSepherosa Ziehau 3517f6167a56SSepherosa Ziehau if (i < 8) { 3518f6167a56SSepherosa Ziehau ivar &= 0xffff00ff; 3519f6167a56SSepherosa Ziehau ivar |= 3520f6167a56SSepherosa Ziehau (txr->tx_intr_bit | E1000_IVAR_VALID) << 8; 3521f6167a56SSepherosa Ziehau } else { 3522f6167a56SSepherosa Ziehau ivar &= 0x00ffffff; 3523f6167a56SSepherosa Ziehau ivar |= 3524f6167a56SSepherosa Ziehau (txr->tx_intr_bit | E1000_IVAR_VALID) << 24; 3525f6167a56SSepherosa Ziehau } 3526f6167a56SSepherosa Ziehau E1000_WRITE_REG_ARRAY(hw, E1000_IVAR0, index, ivar); 3527f6167a56SSepherosa Ziehau } 3528f6167a56SSepherosa Ziehau /* Clear unused IVAR_MISC */ 3529f6167a56SSepherosa Ziehau E1000_WRITE_REG(hw, E1000_IVAR_MISC, 0); 3530f6167a56SSepherosa Ziehau break; 3531f6167a56SSepherosa Ziehau 3532f6167a56SSepherosa Ziehau case e1000_82575: 3533f6167a56SSepherosa Ziehau /* 3534f6167a56SSepherosa Ziehau * Enable necessary interrupt bits. 3535f6167a56SSepherosa Ziehau * 3536f6167a56SSepherosa Ziehau * The name of the register is confusing; in addition to 3537f6167a56SSepherosa Ziehau * configuring the first vector of MSI-X, it also configures 3538f6167a56SSepherosa Ziehau * which bits of EICR could be set by the hardware even when 3539f6167a56SSepherosa Ziehau * MSI or line interrupt is used; it thus controls interrupt 3540f6167a56SSepherosa Ziehau * generation. It MUST be configured explicitly; the default 3541f6167a56SSepherosa Ziehau * value mentioned in the datasheet is wrong: RX queue0 and 3542f6167a56SSepherosa Ziehau * TX queue0 are NOT enabled by default. 3543f6167a56SSepherosa Ziehau */ 3544f6167a56SSepherosa Ziehau E1000_WRITE_REG(&sc->hw, E1000_MSIXBM(0), sc->intr_mask); 3545f6167a56SSepherosa Ziehau break; 3546f6167a56SSepherosa Ziehau 3547f6167a56SSepherosa Ziehau default: 3548f6167a56SSepherosa Ziehau break; 3549f6167a56SSepherosa Ziehau } 3550f6167a56SSepherosa Ziehau 3551f6167a56SSepherosa Ziehau /* 3552f6167a56SSepherosa Ziehau * Configure interrupt moderation 3553f6167a56SSepherosa Ziehau */ 3554f6167a56SSepherosa Ziehau igb_set_eitr(sc); 3555f6167a56SSepherosa Ziehau } 3556f6167a56SSepherosa Ziehau 3557f6167a56SSepherosa Ziehau static int 3558f6167a56SSepherosa Ziehau igb_setup_intr(struct igb_softc *sc) 3559f6167a56SSepherosa Ziehau { 3560f6167a56SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 35618d6600daSSepherosa Ziehau int error, i, intr_bit, intr_bitmax; 3562f6167a56SSepherosa Ziehau 3563f6167a56SSepherosa Ziehau /* 3564f6167a56SSepherosa Ziehau * Setup interrupt mask 3565f6167a56SSepherosa Ziehau */ 35668d6600daSSepherosa Ziehau switch (sc->hw.mac.type) { 35678d6600daSSepherosa Ziehau case e1000_82575: 35688d6600daSSepherosa Ziehau intr_bitmax = IGB_MAX_TXRXINT_82575; 35698d6600daSSepherosa Ziehau break; 35708d6600daSSepherosa Ziehau case e1000_82580: 35718d6600daSSepherosa Ziehau intr_bitmax = IGB_MAX_TXRXINT_82580; 35728d6600daSSepherosa Ziehau break; 35738d6600daSSepherosa Ziehau case e1000_i350: 35748d6600daSSepherosa Ziehau intr_bitmax = IGB_MAX_TXRXINT_I350; 35758d6600daSSepherosa Ziehau break; 35768d6600daSSepherosa Ziehau case e1000_82576: 35778d6600daSSepherosa Ziehau intr_bitmax = IGB_MAX_TXRXINT_82576; 35788d6600daSSepherosa Ziehau break; 35798d6600daSSepherosa Ziehau default: 35808d6600daSSepherosa Ziehau intr_bitmax = IGB_MIN_TXRXINT; 35818d6600daSSepherosa Ziehau break; 35828d6600daSSepherosa Ziehau } 35838d6600daSSepherosa Ziehau intr_bit = 0; 358427866bf1SSepherosa Ziehau for (i = 0; i < sc->tx_ring_cnt; ++i) 35858d6600daSSepherosa Ziehau igb_setup_tx_intr(&sc->tx_rings[i], &intr_bit, intr_bitmax); 358627866bf1SSepherosa Ziehau for (i = 0; i < sc->rx_ring_cnt; ++i) 35878d6600daSSepherosa Ziehau igb_setup_rx_intr(&sc->rx_rings[i], &intr_bit, intr_bitmax); 3588f6167a56SSepherosa Ziehau 3589be922da6SSepherosa Ziehau igb_set_intr_mask(sc); 3590f6167a56SSepherosa Ziehau 3591f6167a56SSepherosa Ziehau if (sc->intr_type == PCI_INTR_TYPE_LEGACY) { 3592f6167a56SSepherosa Ziehau int unshared; 3593f6167a56SSepherosa Ziehau 3594f6167a56SSepherosa Ziehau unshared = device_getenv_int(sc->dev, "irq.unshared", 0); 3595f6167a56SSepherosa Ziehau if (!unshared) { 3596f6167a56SSepherosa Ziehau sc->flags |= IGB_FLAG_SHARED_INTR; 3597f6167a56SSepherosa Ziehau if (bootverbose) 3598f6167a56SSepherosa Ziehau device_printf(sc->dev, "IRQ shared\n"); 3599f6167a56SSepherosa Ziehau } else if (bootverbose) { 3600f6167a56SSepherosa Ziehau device_printf(sc->dev, "IRQ unshared\n"); 3601f6167a56SSepherosa Ziehau } 3602f6167a56SSepherosa Ziehau } 3603f6167a56SSepherosa Ziehau 3604f6167a56SSepherosa Ziehau error = bus_setup_intr(sc->dev, sc->intr_res, INTR_MPSAFE, 3605f6167a56SSepherosa Ziehau (sc->flags & IGB_FLAG_SHARED_INTR) ? igb_shared_intr : igb_intr, 36067d235eb5SSepherosa Ziehau sc, &sc->intr_tag, &sc->main_serialize); 3607f6167a56SSepherosa Ziehau if (error) { 3608f6167a56SSepherosa Ziehau device_printf(sc->dev, "Failed to register interrupt handler"); 3609f6167a56SSepherosa Ziehau return error; 3610f6167a56SSepherosa Ziehau } 3611f6167a56SSepherosa Ziehau 3612f6167a56SSepherosa Ziehau ifp->if_cpuid = rman_get_cpuid(sc->intr_res); 3613f6167a56SSepherosa Ziehau KKASSERT(ifp->if_cpuid >= 0 && ifp->if_cpuid < ncpus); 3614f6167a56SSepherosa Ziehau 3615f6167a56SSepherosa Ziehau return 0; 3616f6167a56SSepherosa Ziehau } 3617f6167a56SSepherosa Ziehau 3618f6167a56SSepherosa Ziehau static void 36198d6600daSSepherosa Ziehau igb_setup_tx_intr(struct igb_tx_ring *txr, int *intr_bit0, int intr_bitmax) 3620f6167a56SSepherosa Ziehau { 3621f6167a56SSepherosa Ziehau if (txr->sc->hw.mac.type == e1000_82575) { 3622f6167a56SSepherosa Ziehau txr->tx_intr_bit = 0; /* unused */ 3623f6167a56SSepherosa Ziehau switch (txr->me) { 3624f6167a56SSepherosa Ziehau case 0: 3625f6167a56SSepherosa Ziehau txr->tx_intr_mask = E1000_EICR_TX_QUEUE0; 3626f6167a56SSepherosa Ziehau break; 3627f6167a56SSepherosa Ziehau case 1: 3628f6167a56SSepherosa Ziehau txr->tx_intr_mask = E1000_EICR_TX_QUEUE1; 3629f6167a56SSepherosa Ziehau break; 3630f6167a56SSepherosa Ziehau case 2: 3631f6167a56SSepherosa Ziehau txr->tx_intr_mask = E1000_EICR_TX_QUEUE2; 3632f6167a56SSepherosa Ziehau break; 3633f6167a56SSepherosa Ziehau case 3: 3634f6167a56SSepherosa Ziehau txr->tx_intr_mask = E1000_EICR_TX_QUEUE3; 3635f6167a56SSepherosa Ziehau break; 3636f6167a56SSepherosa Ziehau default: 3637f6167a56SSepherosa Ziehau panic("unsupported # of TX ring, %d\n", txr->me); 3638f6167a56SSepherosa Ziehau } 3639f6167a56SSepherosa Ziehau } else { 36408d6600daSSepherosa Ziehau int intr_bit = *intr_bit0; 36418d6600daSSepherosa Ziehau 36428d6600daSSepherosa Ziehau txr->tx_intr_bit = intr_bit % intr_bitmax; 3643f6167a56SSepherosa Ziehau txr->tx_intr_mask = 1 << txr->tx_intr_bit; 36448d6600daSSepherosa Ziehau 36458d6600daSSepherosa Ziehau *intr_bit0 = intr_bit + 1; 3646f6167a56SSepherosa Ziehau } 3647f6167a56SSepherosa Ziehau } 3648f6167a56SSepherosa Ziehau 3649f6167a56SSepherosa Ziehau static void 36508d6600daSSepherosa Ziehau igb_setup_rx_intr(struct igb_rx_ring *rxr, int *intr_bit0, int intr_bitmax) 3651f6167a56SSepherosa Ziehau { 3652f6167a56SSepherosa Ziehau if (rxr->sc->hw.mac.type == e1000_82575) { 3653f6167a56SSepherosa Ziehau rxr->rx_intr_bit = 0; /* unused */ 3654f6167a56SSepherosa Ziehau switch (rxr->me) { 3655f6167a56SSepherosa Ziehau case 0: 3656f6167a56SSepherosa Ziehau rxr->rx_intr_mask = E1000_EICR_RX_QUEUE0; 3657f6167a56SSepherosa Ziehau break; 3658f6167a56SSepherosa Ziehau case 1: 3659f6167a56SSepherosa Ziehau rxr->rx_intr_mask = E1000_EICR_RX_QUEUE1; 3660f6167a56SSepherosa Ziehau break; 3661f6167a56SSepherosa Ziehau case 2: 3662f6167a56SSepherosa Ziehau rxr->rx_intr_mask = E1000_EICR_RX_QUEUE2; 3663f6167a56SSepherosa Ziehau break; 3664f6167a56SSepherosa Ziehau case 3: 3665f6167a56SSepherosa Ziehau rxr->rx_intr_mask = E1000_EICR_RX_QUEUE3; 3666f6167a56SSepherosa Ziehau break; 3667f6167a56SSepherosa Ziehau default: 3668f6167a56SSepherosa Ziehau panic("unsupported # of RX ring, %d\n", rxr->me); 3669f6167a56SSepherosa Ziehau } 3670f6167a56SSepherosa Ziehau } else { 36718d6600daSSepherosa Ziehau int intr_bit = *intr_bit0; 36728d6600daSSepherosa Ziehau 36738d6600daSSepherosa Ziehau rxr->rx_intr_bit = intr_bit % intr_bitmax; 3674f6167a56SSepherosa Ziehau rxr->rx_intr_mask = 1 << rxr->rx_intr_bit; 36758d6600daSSepherosa Ziehau 36768d6600daSSepherosa Ziehau *intr_bit0 = intr_bit + 1; 3677f6167a56SSepherosa Ziehau } 3678f6167a56SSepherosa Ziehau } 36797d235eb5SSepherosa Ziehau 36807d235eb5SSepherosa Ziehau static void 36817d235eb5SSepherosa Ziehau igb_serialize(struct ifnet *ifp, enum ifnet_serialize slz) 36827d235eb5SSepherosa Ziehau { 36837d235eb5SSepherosa Ziehau struct igb_softc *sc = ifp->if_softc; 36847d235eb5SSepherosa Ziehau 36857d235eb5SSepherosa Ziehau ifnet_serialize_array_enter(sc->serializes, sc->serialize_cnt, 36867d235eb5SSepherosa Ziehau sc->tx_serialize, sc->rx_serialize, slz); 36877d235eb5SSepherosa Ziehau } 36887d235eb5SSepherosa Ziehau 36897d235eb5SSepherosa Ziehau static void 36907d235eb5SSepherosa Ziehau igb_deserialize(struct ifnet *ifp, enum ifnet_serialize slz) 36917d235eb5SSepherosa Ziehau { 36927d235eb5SSepherosa Ziehau struct igb_softc *sc = ifp->if_softc; 36937d235eb5SSepherosa Ziehau 36947d235eb5SSepherosa Ziehau ifnet_serialize_array_exit(sc->serializes, sc->serialize_cnt, 36957d235eb5SSepherosa Ziehau sc->tx_serialize, sc->rx_serialize, slz); 36967d235eb5SSepherosa Ziehau } 36977d235eb5SSepherosa Ziehau 36987d235eb5SSepherosa Ziehau static int 36997d235eb5SSepherosa Ziehau igb_tryserialize(struct ifnet *ifp, enum ifnet_serialize slz) 37007d235eb5SSepherosa Ziehau { 37017d235eb5SSepherosa Ziehau struct igb_softc *sc = ifp->if_softc; 37027d235eb5SSepherosa Ziehau 37037d235eb5SSepherosa Ziehau return ifnet_serialize_array_try(sc->serializes, sc->serialize_cnt, 37047d235eb5SSepherosa Ziehau sc->tx_serialize, sc->rx_serialize, slz); 37057d235eb5SSepherosa Ziehau } 37067d235eb5SSepherosa Ziehau 37077d235eb5SSepherosa Ziehau #ifdef INVARIANTS 37087d235eb5SSepherosa Ziehau 37097d235eb5SSepherosa Ziehau static void 37107d235eb5SSepherosa Ziehau igb_serialize_assert(struct ifnet *ifp, enum ifnet_serialize slz, 37117d235eb5SSepherosa Ziehau boolean_t serialized) 37127d235eb5SSepherosa Ziehau { 37137d235eb5SSepherosa Ziehau struct igb_softc *sc = ifp->if_softc; 37147d235eb5SSepherosa Ziehau 37157d235eb5SSepherosa Ziehau ifnet_serialize_array_assert(sc->serializes, sc->serialize_cnt, 37167d235eb5SSepherosa Ziehau sc->tx_serialize, sc->rx_serialize, slz, serialized); 37177d235eb5SSepherosa Ziehau } 37187d235eb5SSepherosa Ziehau 37197d235eb5SSepherosa Ziehau #endif /* INVARIANTS */ 3720be922da6SSepherosa Ziehau 3721be922da6SSepherosa Ziehau static void 3722be922da6SSepherosa Ziehau igb_set_intr_mask(struct igb_softc *sc) 3723be922da6SSepherosa Ziehau { 3724be922da6SSepherosa Ziehau int i; 3725be922da6SSepherosa Ziehau 3726be922da6SSepherosa Ziehau sc->intr_mask = E1000_EICR_OTHER; 3727be922da6SSepherosa Ziehau for (i = 0; i < sc->rx_ring_inuse; ++i) 3728be922da6SSepherosa Ziehau sc->intr_mask |= sc->rx_rings[i].rx_intr_mask; 3729be922da6SSepherosa Ziehau for (i = 0; i < sc->tx_ring_cnt; ++i) 3730be922da6SSepherosa Ziehau sc->intr_mask |= sc->tx_rings[i].tx_intr_mask; 3731be922da6SSepherosa Ziehau if (bootverbose) { 3732be922da6SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, "intr mask 0x%08x\n", 3733be922da6SSepherosa Ziehau sc->intr_mask); 3734be922da6SSepherosa Ziehau } 3735be922da6SSepherosa Ziehau } 3736