12d586421SSepherosa Ziehau /****************************************************************************** 22d586421SSepherosa Ziehau * 32d586421SSepherosa Ziehau * Name : sky2.c 42d586421SSepherosa Ziehau * Project: Gigabit Ethernet Driver for FreeBSD 5.x/6.x 52d586421SSepherosa Ziehau * Version: $Revision: 1.23 $ 62d586421SSepherosa Ziehau * Date : $Date: 2005/12/22 09:04:11 $ 72d586421SSepherosa Ziehau * Purpose: Main driver source file 82d586421SSepherosa Ziehau * 92d586421SSepherosa Ziehau *****************************************************************************/ 102d586421SSepherosa Ziehau 112d586421SSepherosa Ziehau /****************************************************************************** 122d586421SSepherosa Ziehau * 132d586421SSepherosa Ziehau * LICENSE: 142d586421SSepherosa Ziehau * Copyright (C) Marvell International Ltd. and/or its affiliates 152d586421SSepherosa Ziehau * 162d586421SSepherosa Ziehau * The computer program files contained in this folder ("Files") 172d586421SSepherosa Ziehau * are provided to you under the BSD-type license terms provided 182d586421SSepherosa Ziehau * below, and any use of such Files and any derivative works 192d586421SSepherosa Ziehau * thereof created by you shall be governed by the following terms 202d586421SSepherosa Ziehau * and conditions: 212d586421SSepherosa Ziehau * 222d586421SSepherosa Ziehau * - Redistributions of source code must retain the above copyright 232d586421SSepherosa Ziehau * notice, this list of conditions and the following disclaimer. 242d586421SSepherosa Ziehau * - Redistributions in binary form must reproduce the above 252d586421SSepherosa Ziehau * copyright notice, this list of conditions and the following 262d586421SSepherosa Ziehau * disclaimer in the documentation and/or other materials provided 272d586421SSepherosa Ziehau * with the distribution. 282d586421SSepherosa Ziehau * - Neither the name of Marvell nor the names of its contributors 292d586421SSepherosa Ziehau * may be used to endorse or promote products derived from this 302d586421SSepherosa Ziehau * software without specific prior written permission. 312d586421SSepherosa Ziehau * 322d586421SSepherosa Ziehau * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 332d586421SSepherosa Ziehau * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 342d586421SSepherosa Ziehau * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS 352d586421SSepherosa Ziehau * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE 362d586421SSepherosa Ziehau * COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, 372d586421SSepherosa Ziehau * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, 382d586421SSepherosa Ziehau * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; 392d586421SSepherosa Ziehau * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 402d586421SSepherosa Ziehau * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, 412d586421SSepherosa Ziehau * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 422d586421SSepherosa Ziehau * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED 432d586421SSepherosa Ziehau * OF THE POSSIBILITY OF SUCH DAMAGE. 442d586421SSepherosa Ziehau * /LICENSE 452d586421SSepherosa Ziehau * 462d586421SSepherosa Ziehau *****************************************************************************/ 472d586421SSepherosa Ziehau 482d586421SSepherosa Ziehau /*- 492d586421SSepherosa Ziehau * Copyright (c) 1997, 1998, 1999, 2000 502d586421SSepherosa Ziehau * Bill Paul <wpaul@ctr.columbia.edu>. All rights reserved. 512d586421SSepherosa Ziehau * 522d586421SSepherosa Ziehau * Redistribution and use in source and binary forms, with or without 532d586421SSepherosa Ziehau * modification, are permitted provided that the following conditions 542d586421SSepherosa Ziehau * are met: 552d586421SSepherosa Ziehau * 1. Redistributions of source code must retain the above copyright 562d586421SSepherosa Ziehau * notice, this list of conditions and the following disclaimer. 572d586421SSepherosa Ziehau * 2. Redistributions in binary form must reproduce the above copyright 582d586421SSepherosa Ziehau * notice, this list of conditions and the following disclaimer in the 592d586421SSepherosa Ziehau * documentation and/or other materials provided with the distribution. 602d586421SSepherosa Ziehau * 3. All advertising materials mentioning features or use of this software 612d586421SSepherosa Ziehau * must display the following acknowledgement: 622d586421SSepherosa Ziehau * This product includes software developed by Bill Paul. 632d586421SSepherosa Ziehau * 4. Neither the name of the author nor the names of any co-contributors 642d586421SSepherosa Ziehau * may be used to endorse or promote products derived from this software 652d586421SSepherosa Ziehau * without specific prior written permission. 662d586421SSepherosa Ziehau * 672d586421SSepherosa Ziehau * THIS SOFTWARE IS PROVIDED BY Bill Paul AND CONTRIBUTORS ``AS IS'' AND 682d586421SSepherosa Ziehau * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 692d586421SSepherosa Ziehau * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 702d586421SSepherosa Ziehau * ARE DISCLAIMED. IN NO EVENT SHALL Bill Paul OR THE VOICES IN HIS HEAD 712d586421SSepherosa Ziehau * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 722d586421SSepherosa Ziehau * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 732d586421SSepherosa Ziehau * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 742d586421SSepherosa Ziehau * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 752d586421SSepherosa Ziehau * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 762d586421SSepherosa Ziehau * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF 772d586421SSepherosa Ziehau * THE POSSIBILITY OF SUCH DAMAGE. 782d586421SSepherosa Ziehau */ 792d586421SSepherosa Ziehau /*- 802d586421SSepherosa Ziehau * Copyright (c) 2003 Nathan L. Binkert <binkertn@umich.edu> 812d586421SSepherosa Ziehau * 822d586421SSepherosa Ziehau * Permission to use, copy, modify, and distribute this software for any 832d586421SSepherosa Ziehau * purpose with or without fee is hereby granted, provided that the above 842d586421SSepherosa Ziehau * copyright notice and this permission notice appear in all copies. 852d586421SSepherosa Ziehau * 862d586421SSepherosa Ziehau * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES 872d586421SSepherosa Ziehau * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF 882d586421SSepherosa Ziehau * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR 892d586421SSepherosa Ziehau * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES 902d586421SSepherosa Ziehau * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN 912d586421SSepherosa Ziehau * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF 922d586421SSepherosa Ziehau * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. 932d586421SSepherosa Ziehau */ 942d586421SSepherosa Ziehau 952d586421SSepherosa Ziehau /* $FreeBSD: src/sys/dev/msk/if_msk.c,v 1.26 2007/12/05 09:41:58 remko Exp $ */ 962d586421SSepherosa Ziehau 972d586421SSepherosa Ziehau /* 982d586421SSepherosa Ziehau * Device driver for the Marvell Yukon II Ethernet controller. 992d586421SSepherosa Ziehau * Due to lack of documentation, this driver is based on the code from 1002d586421SSepherosa Ziehau * sk(4) and Marvell's myk(4) driver for FreeBSD 5.x. 1012d586421SSepherosa Ziehau */ 1022d586421SSepherosa Ziehau 1032d586421SSepherosa Ziehau #include <sys/param.h> 1042d586421SSepherosa Ziehau #include <sys/endian.h> 1052d586421SSepherosa Ziehau #include <sys/kernel.h> 1062d586421SSepherosa Ziehau #include <sys/bus.h> 1072d586421SSepherosa Ziehau #include <sys/in_cksum.h> 1089db4b353SSepherosa Ziehau #include <sys/interrupt.h> 1092d586421SSepherosa Ziehau #include <sys/malloc.h> 1102d586421SSepherosa Ziehau #include <sys/proc.h> 1112d586421SSepherosa Ziehau #include <sys/rman.h> 1122d586421SSepherosa Ziehau #include <sys/serialize.h> 1132d586421SSepherosa Ziehau #include <sys/socket.h> 1142d586421SSepherosa Ziehau #include <sys/sockio.h> 1152d586421SSepherosa Ziehau #include <sys/sysctl.h> 1162d586421SSepherosa Ziehau 1172d586421SSepherosa Ziehau #include <net/ethernet.h> 1182d586421SSepherosa Ziehau #include <net/if.h> 1192d586421SSepherosa Ziehau #include <net/bpf.h> 1202d586421SSepherosa Ziehau #include <net/if_arp.h> 1212d586421SSepherosa Ziehau #include <net/if_dl.h> 1222d586421SSepherosa Ziehau #include <net/if_media.h> 1232d586421SSepherosa Ziehau #include <net/ifq_var.h> 1242d586421SSepherosa Ziehau #include <net/vlan/if_vlan_var.h> 1252d586421SSepherosa Ziehau 1262d586421SSepherosa Ziehau #include <netinet/ip.h> 1272d586421SSepherosa Ziehau #include <netinet/ip_var.h> 1282d586421SSepherosa Ziehau 1292d586421SSepherosa Ziehau #include <dev/netif/mii_layer/miivar.h> 1302d586421SSepherosa Ziehau 1312d586421SSepherosa Ziehau #include <bus/pci/pcireg.h> 1322d586421SSepherosa Ziehau #include <bus/pci/pcivar.h> 1332d586421SSepherosa Ziehau 1342d586421SSepherosa Ziehau #include "if_mskreg.h" 1352d586421SSepherosa Ziehau 1362d586421SSepherosa Ziehau /* "device miibus" required. See GENERIC if you get errors here. */ 1372d586421SSepherosa Ziehau #include "miibus_if.h" 1382d586421SSepherosa Ziehau 1392d586421SSepherosa Ziehau #define MSK_CSUM_FEATURES (CSUM_TCP | CSUM_UDP) 1402d586421SSepherosa Ziehau 1412d586421SSepherosa Ziehau /* 1422d586421SSepherosa Ziehau * Devices supported by this driver. 1432d586421SSepherosa Ziehau */ 1442d586421SSepherosa Ziehau static const struct msk_product { 1452d586421SSepherosa Ziehau uint16_t msk_vendorid; 1462d586421SSepherosa Ziehau uint16_t msk_deviceid; 1472d586421SSepherosa Ziehau const char *msk_name; 1482d586421SSepherosa Ziehau } msk_products[] = { 1492d586421SSepherosa Ziehau { VENDORID_SK, DEVICEID_SK_YUKON2, 1502d586421SSepherosa Ziehau "SK-9Sxx Gigabit Ethernet" }, 1512d586421SSepherosa Ziehau { VENDORID_SK, DEVICEID_SK_YUKON2_EXPR, 1522d586421SSepherosa Ziehau "SK-9Exx Gigabit Ethernet"}, 1532d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_8021CU, 1542d586421SSepherosa Ziehau "Marvell Yukon 88E8021CU Gigabit Ethernet" }, 1552d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_8021X, 1562d586421SSepherosa Ziehau "Marvell Yukon 88E8021 SX/LX Gigabit Ethernet" }, 1572d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_8022CU, 1582d586421SSepherosa Ziehau "Marvell Yukon 88E8022CU Gigabit Ethernet" }, 1592d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_8022X, 1602d586421SSepherosa Ziehau "Marvell Yukon 88E8022 SX/LX Gigabit Ethernet" }, 1612d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_8061CU, 1622d586421SSepherosa Ziehau "Marvell Yukon 88E8061CU Gigabit Ethernet" }, 1632d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_8061X, 1642d586421SSepherosa Ziehau "Marvell Yukon 88E8061 SX/LX Gigabit Ethernet" }, 1652d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_8062CU, 1662d586421SSepherosa Ziehau "Marvell Yukon 88E8062CU Gigabit Ethernet" }, 1672d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_8062X, 1682d586421SSepherosa Ziehau "Marvell Yukon 88E8062 SX/LX Gigabit Ethernet" }, 1692d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_8035, 1702d586421SSepherosa Ziehau "Marvell Yukon 88E8035 Gigabit Ethernet" }, 1712d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_8036, 1722d586421SSepherosa Ziehau "Marvell Yukon 88E8036 Gigabit Ethernet" }, 1732d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_8038, 1742d586421SSepherosa Ziehau "Marvell Yukon 88E8038 Gigabit Ethernet" }, 1752d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_8039, 1762d586421SSepherosa Ziehau "Marvell Yukon 88E8039 Gigabit Ethernet" }, 1772d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_4361, 1782d586421SSepherosa Ziehau "Marvell Yukon 88E8050 Gigabit Ethernet" }, 1792d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_4360, 1802d586421SSepherosa Ziehau "Marvell Yukon 88E8052 Gigabit Ethernet" }, 1812d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_4362, 1822d586421SSepherosa Ziehau "Marvell Yukon 88E8053 Gigabit Ethernet" }, 1832d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_4363, 1842d586421SSepherosa Ziehau "Marvell Yukon 88E8055 Gigabit Ethernet" }, 1852d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_4364, 1862d586421SSepherosa Ziehau "Marvell Yukon 88E8056 Gigabit Ethernet" }, 1872d586421SSepherosa Ziehau { VENDORID_MARVELL, DEVICEID_MRVL_436A, 1882d586421SSepherosa Ziehau "Marvell Yukon 88E8058 Gigabit Ethernet" }, 1892d586421SSepherosa Ziehau { VENDORID_DLINK, DEVICEID_DLINK_DGE550SX, 1902d586421SSepherosa Ziehau "D-Link 550SX Gigabit Ethernet" }, 1912d586421SSepherosa Ziehau { VENDORID_DLINK, DEVICEID_DLINK_DGE560T, 1922d586421SSepherosa Ziehau "D-Link 560T Gigabit Ethernet" }, 1932d586421SSepherosa Ziehau { 0, 0, NULL } 1942d586421SSepherosa Ziehau }; 1952d586421SSepherosa Ziehau 1962d586421SSepherosa Ziehau static const char *model_name[] = { 1972d586421SSepherosa Ziehau "Yukon XL", 1982d586421SSepherosa Ziehau "Yukon EC Ultra", 1992d586421SSepherosa Ziehau "Yukon Unknown", 2002d586421SSepherosa Ziehau "Yukon EC", 2012d586421SSepherosa Ziehau "Yukon FE" 2022d586421SSepherosa Ziehau }; 2032d586421SSepherosa Ziehau 2042d586421SSepherosa Ziehau static int mskc_probe(device_t); 2052d586421SSepherosa Ziehau static int mskc_attach(device_t); 2062d586421SSepherosa Ziehau static int mskc_detach(device_t); 2072d586421SSepherosa Ziehau static int mskc_shutdown(device_t); 2082d586421SSepherosa Ziehau static int mskc_suspend(device_t); 2092d586421SSepherosa Ziehau static int mskc_resume(device_t); 2102d586421SSepherosa Ziehau static void mskc_intr(void *); 2112d586421SSepherosa Ziehau 2122d586421SSepherosa Ziehau static void mskc_reset(struct msk_softc *); 213f59f1081SSepherosa Ziehau static void mskc_set_imtimer(struct msk_softc *); 2142d586421SSepherosa Ziehau static void mskc_intr_hwerr(struct msk_softc *); 2152d586421SSepherosa Ziehau static int mskc_handle_events(struct msk_softc *); 2162d586421SSepherosa Ziehau static void mskc_phy_power(struct msk_softc *, int); 2172d586421SSepherosa Ziehau static int mskc_setup_rambuffer(struct msk_softc *); 2182d586421SSepherosa Ziehau static int mskc_status_dma_alloc(struct msk_softc *); 2192d586421SSepherosa Ziehau static void mskc_status_dma_free(struct msk_softc *); 220f59f1081SSepherosa Ziehau static int mskc_sysctl_proc_limit(SYSCTL_HANDLER_ARGS); 221f59f1081SSepherosa Ziehau static int mskc_sysctl_intr_rate(SYSCTL_HANDLER_ARGS); 222f59f1081SSepherosa Ziehau 2232d586421SSepherosa Ziehau static int msk_probe(device_t); 2242d586421SSepherosa Ziehau static int msk_attach(device_t); 2252d586421SSepherosa Ziehau static int msk_detach(device_t); 2262d586421SSepherosa Ziehau static int msk_miibus_readreg(device_t, int, int); 2272d586421SSepherosa Ziehau static int msk_miibus_writereg(device_t, int, int, int); 2282d586421SSepherosa Ziehau static void msk_miibus_statchg(device_t); 2292d586421SSepherosa Ziehau 2302d586421SSepherosa Ziehau static void msk_init(void *); 2312d586421SSepherosa Ziehau static int msk_ioctl(struct ifnet *, u_long, caddr_t, struct ucred *); 2322d586421SSepherosa Ziehau static void msk_start(struct ifnet *); 2332d586421SSepherosa Ziehau static void msk_watchdog(struct ifnet *); 2342d586421SSepherosa Ziehau static int msk_mediachange(struct ifnet *); 2352d586421SSepherosa Ziehau static void msk_mediastatus(struct ifnet *, struct ifmediareq *); 2362d586421SSepherosa Ziehau 2372d586421SSepherosa Ziehau static void msk_tick(void *); 2382d586421SSepherosa Ziehau static void msk_intr_phy(struct msk_if_softc *); 2392d586421SSepherosa Ziehau static void msk_intr_gmac(struct msk_if_softc *); 2402d586421SSepherosa Ziehau static __inline void 2412d586421SSepherosa Ziehau msk_rxput(struct msk_if_softc *); 2422d586421SSepherosa Ziehau static void msk_handle_hwerr(struct msk_if_softc *, uint32_t); 2430ae155c2SSepherosa Ziehau static void msk_rxeof(struct msk_if_softc *, uint32_t, int, 2440ae155c2SSepherosa Ziehau struct mbuf_chain *); 2452d586421SSepherosa Ziehau static void msk_txeof(struct msk_if_softc *, int); 2462d586421SSepherosa Ziehau static void msk_set_prefetch(struct msk_softc *, int, bus_addr_t, uint32_t); 2472d586421SSepherosa Ziehau static void msk_set_rambuffer(struct msk_if_softc *); 2482d586421SSepherosa Ziehau static void msk_stop(struct msk_if_softc *); 2492d586421SSepherosa Ziehau 2502d586421SSepherosa Ziehau static int msk_txrx_dma_alloc(struct msk_if_softc *); 2512d586421SSepherosa Ziehau static void msk_txrx_dma_free(struct msk_if_softc *); 2522d586421SSepherosa Ziehau static int msk_init_rx_ring(struct msk_if_softc *); 2532d586421SSepherosa Ziehau static void msk_init_tx_ring(struct msk_if_softc *); 2542d586421SSepherosa Ziehau static __inline void 2552d586421SSepherosa Ziehau msk_discard_rxbuf(struct msk_if_softc *, int); 2562499c577SSepherosa Ziehau static int msk_newbuf(struct msk_if_softc *, int, int); 2572d586421SSepherosa Ziehau static int msk_encap(struct msk_if_softc *, struct mbuf **); 2582d586421SSepherosa Ziehau 2592d586421SSepherosa Ziehau #ifdef MSK_JUMBO 2602d586421SSepherosa Ziehau static int msk_init_jumbo_rx_ring(struct msk_if_softc *); 2612d586421SSepherosa Ziehau static __inline void msk_discard_jumbo_rxbuf(struct msk_if_softc *, int); 2622d586421SSepherosa Ziehau static int msk_jumbo_newbuf(struct msk_if_softc *, int); 2632d586421SSepherosa Ziehau static void msk_jumbo_rxeof(struct msk_if_softc *, uint32_t, int); 2642d586421SSepherosa Ziehau static void *msk_jalloc(struct msk_if_softc *); 2652d586421SSepherosa Ziehau static void msk_jfree(void *, void *); 2662d586421SSepherosa Ziehau #endif 2672d586421SSepherosa Ziehau 2682d586421SSepherosa Ziehau static int msk_phy_readreg(struct msk_if_softc *, int, int); 2692d586421SSepherosa Ziehau static int msk_phy_writereg(struct msk_if_softc *, int, int, int); 2702d586421SSepherosa Ziehau 2712d586421SSepherosa Ziehau static void msk_setmulti(struct msk_if_softc *); 2722d586421SSepherosa Ziehau static void msk_setvlan(struct msk_if_softc *, struct ifnet *); 2732d586421SSepherosa Ziehau static void msk_setpromisc(struct msk_if_softc *); 2742d586421SSepherosa Ziehau 2752d586421SSepherosa Ziehau static int msk_dmamem_create(device_t, bus_size_t, bus_dma_tag_t *, 2762d586421SSepherosa Ziehau void **, bus_addr_t *, bus_dmamap_t *); 2772d586421SSepherosa Ziehau static void msk_dmamem_destroy(bus_dma_tag_t, void *, bus_dmamap_t); 2782d586421SSepherosa Ziehau 2792d586421SSepherosa Ziehau static device_method_t mskc_methods[] = { 2802d586421SSepherosa Ziehau /* Device interface */ 2812d586421SSepherosa Ziehau DEVMETHOD(device_probe, mskc_probe), 2822d586421SSepherosa Ziehau DEVMETHOD(device_attach, mskc_attach), 2832d586421SSepherosa Ziehau DEVMETHOD(device_detach, mskc_detach), 2842d586421SSepherosa Ziehau DEVMETHOD(device_suspend, mskc_suspend), 2852d586421SSepherosa Ziehau DEVMETHOD(device_resume, mskc_resume), 2862d586421SSepherosa Ziehau DEVMETHOD(device_shutdown, mskc_shutdown), 2872d586421SSepherosa Ziehau 2882d586421SSepherosa Ziehau /* bus interface */ 2892d586421SSepherosa Ziehau DEVMETHOD(bus_print_child, bus_generic_print_child), 2902d586421SSepherosa Ziehau DEVMETHOD(bus_driver_added, bus_generic_driver_added), 2912d586421SSepherosa Ziehau 2922d586421SSepherosa Ziehau { NULL, NULL } 2932d586421SSepherosa Ziehau }; 2942d586421SSepherosa Ziehau 2952d586421SSepherosa Ziehau static DEFINE_CLASS_0(mskc, mskc_driver, mskc_methods, sizeof(struct msk_softc)); 2962d586421SSepherosa Ziehau static devclass_t mskc_devclass; 2972d586421SSepherosa Ziehau 2982d586421SSepherosa Ziehau static device_method_t msk_methods[] = { 2992d586421SSepherosa Ziehau /* Device interface */ 3002d586421SSepherosa Ziehau DEVMETHOD(device_probe, msk_probe), 3012d586421SSepherosa Ziehau DEVMETHOD(device_attach, msk_attach), 3022d586421SSepherosa Ziehau DEVMETHOD(device_detach, msk_detach), 3032d586421SSepherosa Ziehau DEVMETHOD(device_shutdown, bus_generic_shutdown), 3042d586421SSepherosa Ziehau 3052d586421SSepherosa Ziehau /* bus interface */ 3062d586421SSepherosa Ziehau DEVMETHOD(bus_print_child, bus_generic_print_child), 3072d586421SSepherosa Ziehau DEVMETHOD(bus_driver_added, bus_generic_driver_added), 3082d586421SSepherosa Ziehau 3092d586421SSepherosa Ziehau /* MII interface */ 3102d586421SSepherosa Ziehau DEVMETHOD(miibus_readreg, msk_miibus_readreg), 3112d586421SSepherosa Ziehau DEVMETHOD(miibus_writereg, msk_miibus_writereg), 3122d586421SSepherosa Ziehau DEVMETHOD(miibus_statchg, msk_miibus_statchg), 3132d586421SSepherosa Ziehau 3142d586421SSepherosa Ziehau { NULL, NULL } 3152d586421SSepherosa Ziehau }; 3162d586421SSepherosa Ziehau 3172d586421SSepherosa Ziehau static DEFINE_CLASS_0(msk, msk_driver, msk_methods, sizeof(struct msk_if_softc)); 3182d586421SSepherosa Ziehau static devclass_t msk_devclass; 3192d586421SSepherosa Ziehau 3202d586421SSepherosa Ziehau DECLARE_DUMMY_MODULE(if_msk); 321aa2b9d05SSascha Wildner DRIVER_MODULE(if_msk, pci, mskc_driver, mskc_devclass, NULL, NULL); 322aa2b9d05SSascha Wildner DRIVER_MODULE(if_msk, mskc, msk_driver, msk_devclass, NULL, NULL); 323aa2b9d05SSascha Wildner DRIVER_MODULE(miibus, msk, miibus_driver, miibus_devclass, NULL, NULL); 3242d586421SSepherosa Ziehau 325f59f1081SSepherosa Ziehau static int mskc_intr_rate = 0; 326f59f1081SSepherosa Ziehau static int mskc_process_limit = MSK_PROC_DEFAULT; 327f59f1081SSepherosa Ziehau 328f59f1081SSepherosa Ziehau TUNABLE_INT("hw.mskc.intr_rate", &mskc_intr_rate); 329f59f1081SSepherosa Ziehau TUNABLE_INT("hw.mskc.process_limit", &mskc_process_limit); 330f59f1081SSepherosa Ziehau 3312d586421SSepherosa Ziehau static int 3322d586421SSepherosa Ziehau msk_miibus_readreg(device_t dev, int phy, int reg) 3332d586421SSepherosa Ziehau { 3342d586421SSepherosa Ziehau struct msk_if_softc *sc_if; 3352d586421SSepherosa Ziehau 3362d586421SSepherosa Ziehau if (phy != PHY_ADDR_MARV) 3372d586421SSepherosa Ziehau return (0); 3382d586421SSepherosa Ziehau 3392d586421SSepherosa Ziehau sc_if = device_get_softc(dev); 3402d586421SSepherosa Ziehau 3412d586421SSepherosa Ziehau return (msk_phy_readreg(sc_if, phy, reg)); 3422d586421SSepherosa Ziehau } 3432d586421SSepherosa Ziehau 3442d586421SSepherosa Ziehau static int 3452d586421SSepherosa Ziehau msk_phy_readreg(struct msk_if_softc *sc_if, int phy, int reg) 3462d586421SSepherosa Ziehau { 3472d586421SSepherosa Ziehau struct msk_softc *sc; 3482d586421SSepherosa Ziehau int i, val; 3492d586421SSepherosa Ziehau 3502d586421SSepherosa Ziehau sc = sc_if->msk_softc; 3512d586421SSepherosa Ziehau 3522d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_SMI_CTRL, 3532d586421SSepherosa Ziehau GM_SMI_CT_PHY_AD(phy) | GM_SMI_CT_REG_AD(reg) | GM_SMI_CT_OP_RD); 3542d586421SSepherosa Ziehau 3552d586421SSepherosa Ziehau for (i = 0; i < MSK_TIMEOUT; i++) { 3562d586421SSepherosa Ziehau DELAY(1); 3572d586421SSepherosa Ziehau val = GMAC_READ_2(sc, sc_if->msk_port, GM_SMI_CTRL); 3582d586421SSepherosa Ziehau if ((val & GM_SMI_CT_RD_VAL) != 0) { 3592d586421SSepherosa Ziehau val = GMAC_READ_2(sc, sc_if->msk_port, GM_SMI_DATA); 3602d586421SSepherosa Ziehau break; 3612d586421SSepherosa Ziehau } 3622d586421SSepherosa Ziehau } 3632d586421SSepherosa Ziehau 3642d586421SSepherosa Ziehau if (i == MSK_TIMEOUT) { 3652d586421SSepherosa Ziehau if_printf(sc_if->msk_ifp, "phy failed to come ready\n"); 3662d586421SSepherosa Ziehau val = 0; 3672d586421SSepherosa Ziehau } 3682d586421SSepherosa Ziehau 3692d586421SSepherosa Ziehau return (val); 3702d586421SSepherosa Ziehau } 3712d586421SSepherosa Ziehau 3722d586421SSepherosa Ziehau static int 3732d586421SSepherosa Ziehau msk_miibus_writereg(device_t dev, int phy, int reg, int val) 3742d586421SSepherosa Ziehau { 3752d586421SSepherosa Ziehau struct msk_if_softc *sc_if; 3762d586421SSepherosa Ziehau 3772d586421SSepherosa Ziehau if (phy != PHY_ADDR_MARV) 3782d586421SSepherosa Ziehau return (0); 3792d586421SSepherosa Ziehau 3802d586421SSepherosa Ziehau sc_if = device_get_softc(dev); 3812d586421SSepherosa Ziehau 3822d586421SSepherosa Ziehau return (msk_phy_writereg(sc_if, phy, reg, val)); 3832d586421SSepherosa Ziehau } 3842d586421SSepherosa Ziehau 3852d586421SSepherosa Ziehau static int 3862d586421SSepherosa Ziehau msk_phy_writereg(struct msk_if_softc *sc_if, int phy, int reg, int val) 3872d586421SSepherosa Ziehau { 3882d586421SSepherosa Ziehau struct msk_softc *sc; 3892d586421SSepherosa Ziehau int i; 3902d586421SSepherosa Ziehau 3912d586421SSepherosa Ziehau sc = sc_if->msk_softc; 3922d586421SSepherosa Ziehau 3932d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_SMI_DATA, val); 3942d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_SMI_CTRL, 3952d586421SSepherosa Ziehau GM_SMI_CT_PHY_AD(phy) | GM_SMI_CT_REG_AD(reg)); 3962d586421SSepherosa Ziehau for (i = 0; i < MSK_TIMEOUT; i++) { 3972d586421SSepherosa Ziehau DELAY(1); 3982d586421SSepherosa Ziehau if ((GMAC_READ_2(sc, sc_if->msk_port, GM_SMI_CTRL) & 3992d586421SSepherosa Ziehau GM_SMI_CT_BUSY) == 0) 4002d586421SSepherosa Ziehau break; 4012d586421SSepherosa Ziehau } 4022d586421SSepherosa Ziehau if (i == MSK_TIMEOUT) 4032d586421SSepherosa Ziehau if_printf(sc_if->msk_ifp, "phy write timeout\n"); 4042d586421SSepherosa Ziehau 4052d586421SSepherosa Ziehau return (0); 4062d586421SSepherosa Ziehau } 4072d586421SSepherosa Ziehau 4082d586421SSepherosa Ziehau static void 4092d586421SSepherosa Ziehau msk_miibus_statchg(device_t dev) 4102d586421SSepherosa Ziehau { 4112d586421SSepherosa Ziehau struct msk_if_softc *sc_if; 4122d586421SSepherosa Ziehau struct msk_softc *sc; 4132d586421SSepherosa Ziehau struct mii_data *mii; 4142d586421SSepherosa Ziehau struct ifnet *ifp; 4152d586421SSepherosa Ziehau uint32_t gmac; 4162d586421SSepherosa Ziehau 4172d586421SSepherosa Ziehau sc_if = device_get_softc(dev); 4182d586421SSepherosa Ziehau sc = sc_if->msk_softc; 4192d586421SSepherosa Ziehau 4202d586421SSepherosa Ziehau mii = device_get_softc(sc_if->msk_miibus); 4212d586421SSepherosa Ziehau ifp = sc_if->msk_ifp; 4222d586421SSepherosa Ziehau 4232d586421SSepherosa Ziehau if (mii->mii_media_status & IFM_ACTIVE) { 4242d586421SSepherosa Ziehau if (IFM_SUBTYPE(mii->mii_media_active) != IFM_NONE) 4252d586421SSepherosa Ziehau sc_if->msk_link = 1; 4262d586421SSepherosa Ziehau } else 4272d586421SSepherosa Ziehau sc_if->msk_link = 0; 4282d586421SSepherosa Ziehau 4292d586421SSepherosa Ziehau if (sc_if->msk_link != 0) { 4302d586421SSepherosa Ziehau /* Enable Tx FIFO Underrun. */ 4312d586421SSepherosa Ziehau CSR_WRITE_1(sc, MR_ADDR(sc_if->msk_port, GMAC_IRQ_MSK), 4322d586421SSepherosa Ziehau GM_IS_TX_FF_UR | GM_IS_RX_FF_OR); 4332d586421SSepherosa Ziehau /* 4342d586421SSepherosa Ziehau * Because mii(4) notify msk(4) that it detected link status 4352d586421SSepherosa Ziehau * change, there is no need to enable automatic 4362d586421SSepherosa Ziehau * speed/flow-control/duplex updates. 4372d586421SSepherosa Ziehau */ 4382d586421SSepherosa Ziehau gmac = GM_GPCR_AU_ALL_DIS; 4392d586421SSepherosa Ziehau switch (IFM_SUBTYPE(mii->mii_media_active)) { 4402d586421SSepherosa Ziehau case IFM_1000_SX: 4412d586421SSepherosa Ziehau case IFM_1000_T: 4422d586421SSepherosa Ziehau gmac |= GM_GPCR_SPEED_1000; 4432d586421SSepherosa Ziehau break; 4442d586421SSepherosa Ziehau case IFM_100_TX: 4452d586421SSepherosa Ziehau gmac |= GM_GPCR_SPEED_100; 4462d586421SSepherosa Ziehau break; 4472d586421SSepherosa Ziehau case IFM_10_T: 4482d586421SSepherosa Ziehau break; 4492d586421SSepherosa Ziehau } 4502d586421SSepherosa Ziehau 4512d586421SSepherosa Ziehau if (((mii->mii_media_active & IFM_GMASK) & IFM_FDX) != 0) 4522d586421SSepherosa Ziehau gmac |= GM_GPCR_DUP_FULL; 4532d586421SSepherosa Ziehau /* Disable Rx flow control. */ 4542d586421SSepherosa Ziehau if (((mii->mii_media_active & IFM_GMASK) & IFM_FLAG0) == 0) 4552d586421SSepherosa Ziehau gmac |= GM_GPCR_FC_RX_DIS; 4562d586421SSepherosa Ziehau /* Disable Tx flow control. */ 4572d586421SSepherosa Ziehau if (((mii->mii_media_active & IFM_GMASK) & IFM_FLAG1) == 0) 4582d586421SSepherosa Ziehau gmac |= GM_GPCR_FC_TX_DIS; 4592d586421SSepherosa Ziehau gmac |= GM_GPCR_RX_ENA | GM_GPCR_TX_ENA; 4602d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_GP_CTRL, gmac); 4612d586421SSepherosa Ziehau /* Read again to ensure writing. */ 4622d586421SSepherosa Ziehau GMAC_READ_2(sc, sc_if->msk_port, GM_GP_CTRL); 4632d586421SSepherosa Ziehau 4642d586421SSepherosa Ziehau gmac = GMC_PAUSE_ON; 4652d586421SSepherosa Ziehau if (((mii->mii_media_active & IFM_GMASK) & 4662d586421SSepherosa Ziehau (IFM_FLAG0 | IFM_FLAG1)) == 0) 4672d586421SSepherosa Ziehau gmac = GMC_PAUSE_OFF; 4682d586421SSepherosa Ziehau /* Diable pause for 10/100 Mbps in half-duplex mode. */ 4692d586421SSepherosa Ziehau if ((((mii->mii_media_active & IFM_GMASK) & IFM_FDX) == 0) && 4702d586421SSepherosa Ziehau (IFM_SUBTYPE(mii->mii_media_active) == IFM_100_TX || 4712d586421SSepherosa Ziehau IFM_SUBTYPE(mii->mii_media_active) == IFM_10_T)) 4722d586421SSepherosa Ziehau gmac = GMC_PAUSE_OFF; 4732d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, GMAC_CTRL), gmac); 4742d586421SSepherosa Ziehau 4752d586421SSepherosa Ziehau /* Enable PHY interrupt for FIFO underrun/overflow. */ 4762d586421SSepherosa Ziehau msk_phy_writereg(sc_if, PHY_ADDR_MARV, 4772d586421SSepherosa Ziehau PHY_MARV_INT_MASK, PHY_M_IS_FIFO_ERROR); 4782d586421SSepherosa Ziehau } else { 4792d586421SSepherosa Ziehau /* 4802d586421SSepherosa Ziehau * Link state changed to down. 4812d586421SSepherosa Ziehau * Disable PHY interrupts. 4822d586421SSepherosa Ziehau */ 4832d586421SSepherosa Ziehau msk_phy_writereg(sc_if, PHY_ADDR_MARV, PHY_MARV_INT_MASK, 0); 4842d586421SSepherosa Ziehau /* Disable Rx/Tx MAC. */ 4852d586421SSepherosa Ziehau gmac = GMAC_READ_2(sc, sc_if->msk_port, GM_GP_CTRL); 4862d586421SSepherosa Ziehau gmac &= ~(GM_GPCR_RX_ENA | GM_GPCR_TX_ENA); 4872d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_GP_CTRL, gmac); 4882d586421SSepherosa Ziehau /* Read again to ensure writing. */ 4892d586421SSepherosa Ziehau GMAC_READ_2(sc, sc_if->msk_port, GM_GP_CTRL); 4902d586421SSepherosa Ziehau } 4912d586421SSepherosa Ziehau } 4922d586421SSepherosa Ziehau 4932d586421SSepherosa Ziehau static void 4942d586421SSepherosa Ziehau msk_setmulti(struct msk_if_softc *sc_if) 4952d586421SSepherosa Ziehau { 4962d586421SSepherosa Ziehau struct msk_softc *sc; 4972d586421SSepherosa Ziehau struct ifnet *ifp; 4982d586421SSepherosa Ziehau struct ifmultiaddr *ifma; 4992d586421SSepherosa Ziehau uint32_t mchash[2]; 5002d586421SSepherosa Ziehau uint32_t crc; 5012d586421SSepherosa Ziehau uint16_t mode; 5022d586421SSepherosa Ziehau 5032d586421SSepherosa Ziehau sc = sc_if->msk_softc; 5042d586421SSepherosa Ziehau ifp = sc_if->msk_ifp; 5052d586421SSepherosa Ziehau 5062d586421SSepherosa Ziehau bzero(mchash, sizeof(mchash)); 5072d586421SSepherosa Ziehau mode = GMAC_READ_2(sc, sc_if->msk_port, GM_RX_CTRL); 5082d586421SSepherosa Ziehau mode |= GM_RXCR_UCF_ENA; 5092d586421SSepherosa Ziehau if ((ifp->if_flags & (IFF_PROMISC | IFF_ALLMULTI)) != 0) { 5102d586421SSepherosa Ziehau if ((ifp->if_flags & IFF_PROMISC) != 0) 5112d586421SSepherosa Ziehau mode &= ~(GM_RXCR_UCF_ENA | GM_RXCR_MCF_ENA); 5122d586421SSepherosa Ziehau else if ((ifp->if_flags & IFF_ALLMULTI) != 0) { 5132d586421SSepherosa Ziehau mchash[0] = 0xffff; 5142d586421SSepherosa Ziehau mchash[1] = 0xffff; 5152d586421SSepherosa Ziehau } 5162d586421SSepherosa Ziehau } else { 517441d34b2SSascha Wildner TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) { 5182d586421SSepherosa Ziehau if (ifma->ifma_addr->sa_family != AF_LINK) 5192d586421SSepherosa Ziehau continue; 5202d586421SSepherosa Ziehau crc = ether_crc32_be(LLADDR((struct sockaddr_dl *) 5212d586421SSepherosa Ziehau ifma->ifma_addr), ETHER_ADDR_LEN); 5222d586421SSepherosa Ziehau /* Just want the 6 least significant bits. */ 5232d586421SSepherosa Ziehau crc &= 0x3f; 5242d586421SSepherosa Ziehau /* Set the corresponding bit in the hash table. */ 5252d586421SSepherosa Ziehau mchash[crc >> 5] |= 1 << (crc & 0x1f); 5262d586421SSepherosa Ziehau } 5272d586421SSepherosa Ziehau mode |= GM_RXCR_MCF_ENA; 5282d586421SSepherosa Ziehau } 5292d586421SSepherosa Ziehau 5302d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_MC_ADDR_H1, 5312d586421SSepherosa Ziehau mchash[0] & 0xffff); 5322d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_MC_ADDR_H2, 5332d586421SSepherosa Ziehau (mchash[0] >> 16) & 0xffff); 5342d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_MC_ADDR_H3, 5352d586421SSepherosa Ziehau mchash[1] & 0xffff); 5362d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_MC_ADDR_H4, 5372d586421SSepherosa Ziehau (mchash[1] >> 16) & 0xffff); 5382d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_RX_CTRL, mode); 5392d586421SSepherosa Ziehau } 5402d586421SSepherosa Ziehau 5412d586421SSepherosa Ziehau static void 5422d586421SSepherosa Ziehau msk_setvlan(struct msk_if_softc *sc_if, struct ifnet *ifp) 5432d586421SSepherosa Ziehau { 5442d586421SSepherosa Ziehau struct msk_softc *sc; 5452d586421SSepherosa Ziehau 5462d586421SSepherosa Ziehau sc = sc_if->msk_softc; 5472d586421SSepherosa Ziehau if ((ifp->if_capenable & IFCAP_VLAN_HWTAGGING) != 0) { 5482d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, RX_GMF_CTRL_T), 5492d586421SSepherosa Ziehau RX_VLAN_STRIP_ON); 5502d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, TX_GMF_CTRL_T), 5512d586421SSepherosa Ziehau TX_VLAN_TAG_ON); 5522d586421SSepherosa Ziehau } else { 5532d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, RX_GMF_CTRL_T), 5542d586421SSepherosa Ziehau RX_VLAN_STRIP_OFF); 5552d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, TX_GMF_CTRL_T), 5562d586421SSepherosa Ziehau TX_VLAN_TAG_OFF); 5572d586421SSepherosa Ziehau } 5582d586421SSepherosa Ziehau } 5592d586421SSepherosa Ziehau 5602d586421SSepherosa Ziehau static void 5612d586421SSepherosa Ziehau msk_setpromisc(struct msk_if_softc *sc_if) 5622d586421SSepherosa Ziehau { 5632d586421SSepherosa Ziehau struct msk_softc *sc; 5642d586421SSepherosa Ziehau struct ifnet *ifp; 5652d586421SSepherosa Ziehau uint16_t mode; 5662d586421SSepherosa Ziehau 5672d586421SSepherosa Ziehau sc = sc_if->msk_softc; 5682d586421SSepherosa Ziehau ifp = sc_if->msk_ifp; 5692d586421SSepherosa Ziehau 5702d586421SSepherosa Ziehau mode = GMAC_READ_2(sc, sc_if->msk_port, GM_RX_CTRL); 5712d586421SSepherosa Ziehau if (ifp->if_flags & IFF_PROMISC) 5722d586421SSepherosa Ziehau mode &= ~(GM_RXCR_UCF_ENA | GM_RXCR_MCF_ENA); 5732d586421SSepherosa Ziehau else 5742d586421SSepherosa Ziehau mode |= (GM_RXCR_UCF_ENA | GM_RXCR_MCF_ENA); 5752d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_RX_CTRL, mode); 5762d586421SSepherosa Ziehau } 5772d586421SSepherosa Ziehau 5782d586421SSepherosa Ziehau static int 5792d586421SSepherosa Ziehau msk_init_rx_ring(struct msk_if_softc *sc_if) 5802d586421SSepherosa Ziehau { 5812d586421SSepherosa Ziehau struct msk_ring_data *rd; 5822d586421SSepherosa Ziehau struct msk_rxdesc *rxd; 5832d586421SSepherosa Ziehau int i, prod; 5842d586421SSepherosa Ziehau 5852d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_cons = 0; 5862d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_prod = 0; 5872d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_putwm = MSK_PUT_WM; 5882d586421SSepherosa Ziehau 5892d586421SSepherosa Ziehau rd = &sc_if->msk_rdata; 5902d586421SSepherosa Ziehau bzero(rd->msk_rx_ring, sizeof(struct msk_rx_desc) * MSK_RX_RING_CNT); 5912d586421SSepherosa Ziehau prod = sc_if->msk_cdata.msk_rx_prod; 5922d586421SSepherosa Ziehau for (i = 0; i < MSK_RX_RING_CNT; i++) { 5932d586421SSepherosa Ziehau rxd = &sc_if->msk_cdata.msk_rxdesc[prod]; 5942d586421SSepherosa Ziehau rxd->rx_m = NULL; 5952d586421SSepherosa Ziehau rxd->rx_le = &rd->msk_rx_ring[prod]; 5962499c577SSepherosa Ziehau if (msk_newbuf(sc_if, prod, 1) != 0) 5972d586421SSepherosa Ziehau return (ENOBUFS); 5982d586421SSepherosa Ziehau MSK_INC(prod, MSK_RX_RING_CNT); 5992d586421SSepherosa Ziehau } 6002d586421SSepherosa Ziehau 6012d586421SSepherosa Ziehau /* Update prefetch unit. */ 6022d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_prod = MSK_RX_RING_CNT - 1; 6032d586421SSepherosa Ziehau CSR_WRITE_2(sc_if->msk_softc, 6042d586421SSepherosa Ziehau Y2_PREF_Q_ADDR(sc_if->msk_rxq, PREF_UNIT_PUT_IDX_REG), 6052d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_prod); 6062d586421SSepherosa Ziehau 6072d586421SSepherosa Ziehau return (0); 6082d586421SSepherosa Ziehau } 6092d586421SSepherosa Ziehau 6102d586421SSepherosa Ziehau #ifdef MSK_JUMBO 6112d586421SSepherosa Ziehau static int 6122d586421SSepherosa Ziehau msk_init_jumbo_rx_ring(struct msk_if_softc *sc_if) 6132d586421SSepherosa Ziehau { 6142d586421SSepherosa Ziehau struct msk_ring_data *rd; 6152d586421SSepherosa Ziehau struct msk_rxdesc *rxd; 6162d586421SSepherosa Ziehau int i, prod; 6172d586421SSepherosa Ziehau 6182d586421SSepherosa Ziehau MSK_IF_LOCK_ASSERT(sc_if); 6192d586421SSepherosa Ziehau 6202d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_cons = 0; 6212d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_prod = 0; 6222d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_putwm = MSK_PUT_WM; 6232d586421SSepherosa Ziehau 6242d586421SSepherosa Ziehau rd = &sc_if->msk_rdata; 6252d586421SSepherosa Ziehau bzero(rd->msk_jumbo_rx_ring, 6262d586421SSepherosa Ziehau sizeof(struct msk_rx_desc) * MSK_JUMBO_RX_RING_CNT); 6272d586421SSepherosa Ziehau prod = sc_if->msk_cdata.msk_rx_prod; 6282d586421SSepherosa Ziehau for (i = 0; i < MSK_JUMBO_RX_RING_CNT; i++) { 6292d586421SSepherosa Ziehau rxd = &sc_if->msk_cdata.msk_jumbo_rxdesc[prod]; 6302d586421SSepherosa Ziehau rxd->rx_m = NULL; 6312d586421SSepherosa Ziehau rxd->rx_le = &rd->msk_jumbo_rx_ring[prod]; 6322d586421SSepherosa Ziehau if (msk_jumbo_newbuf(sc_if, prod) != 0) 6332d586421SSepherosa Ziehau return (ENOBUFS); 6342d586421SSepherosa Ziehau MSK_INC(prod, MSK_JUMBO_RX_RING_CNT); 6352d586421SSepherosa Ziehau } 6362d586421SSepherosa Ziehau 6372d586421SSepherosa Ziehau bus_dmamap_sync(sc_if->msk_cdata.msk_jumbo_rx_ring_tag, 6382d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_rx_ring_map, 6392d586421SSepherosa Ziehau BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 6402d586421SSepherosa Ziehau 6412d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_prod = MSK_JUMBO_RX_RING_CNT - 1; 6422d586421SSepherosa Ziehau CSR_WRITE_2(sc_if->msk_softc, 6432d586421SSepherosa Ziehau Y2_PREF_Q_ADDR(sc_if->msk_rxq, PREF_UNIT_PUT_IDX_REG), 6442d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_prod); 6452d586421SSepherosa Ziehau 6462d586421SSepherosa Ziehau return (0); 6472d586421SSepherosa Ziehau } 6482d586421SSepherosa Ziehau #endif 6492d586421SSepherosa Ziehau 6502d586421SSepherosa Ziehau static void 6512d586421SSepherosa Ziehau msk_init_tx_ring(struct msk_if_softc *sc_if) 6522d586421SSepherosa Ziehau { 6532d586421SSepherosa Ziehau struct msk_ring_data *rd; 6542d586421SSepherosa Ziehau struct msk_txdesc *txd; 6552d586421SSepherosa Ziehau int i; 6562d586421SSepherosa Ziehau 6572d586421SSepherosa Ziehau sc_if->msk_cdata.msk_tx_prod = 0; 6582d586421SSepherosa Ziehau sc_if->msk_cdata.msk_tx_cons = 0; 6592d586421SSepherosa Ziehau sc_if->msk_cdata.msk_tx_cnt = 0; 6602d586421SSepherosa Ziehau 6612d586421SSepherosa Ziehau rd = &sc_if->msk_rdata; 6622d586421SSepherosa Ziehau bzero(rd->msk_tx_ring, sizeof(struct msk_tx_desc) * MSK_TX_RING_CNT); 6632d586421SSepherosa Ziehau for (i = 0; i < MSK_TX_RING_CNT; i++) { 6642d586421SSepherosa Ziehau txd = &sc_if->msk_cdata.msk_txdesc[i]; 6652d586421SSepherosa Ziehau txd->tx_m = NULL; 6662d586421SSepherosa Ziehau txd->tx_le = &rd->msk_tx_ring[i]; 6672d586421SSepherosa Ziehau } 6682d586421SSepherosa Ziehau } 6692d586421SSepherosa Ziehau 6702d586421SSepherosa Ziehau static __inline void 6712d586421SSepherosa Ziehau msk_discard_rxbuf(struct msk_if_softc *sc_if, int idx) 6722d586421SSepherosa Ziehau { 6732d586421SSepherosa Ziehau struct msk_rx_desc *rx_le; 6742d586421SSepherosa Ziehau struct msk_rxdesc *rxd; 6752d586421SSepherosa Ziehau struct mbuf *m; 6762d586421SSepherosa Ziehau 6772d586421SSepherosa Ziehau rxd = &sc_if->msk_cdata.msk_rxdesc[idx]; 6782d586421SSepherosa Ziehau m = rxd->rx_m; 6792d586421SSepherosa Ziehau rx_le = rxd->rx_le; 6802d586421SSepherosa Ziehau rx_le->msk_control = htole32(m->m_len | OP_PACKET | HW_OWNER); 6812d586421SSepherosa Ziehau } 6822d586421SSepherosa Ziehau 6832d586421SSepherosa Ziehau #ifdef MSK_JUMBO 6842d586421SSepherosa Ziehau static __inline void 6852d586421SSepherosa Ziehau msk_discard_jumbo_rxbuf(struct msk_if_softc *sc_if, int idx) 6862d586421SSepherosa Ziehau { 6872d586421SSepherosa Ziehau struct msk_rx_desc *rx_le; 6882d586421SSepherosa Ziehau struct msk_rxdesc *rxd; 6892d586421SSepherosa Ziehau struct mbuf *m; 6902d586421SSepherosa Ziehau 6912d586421SSepherosa Ziehau rxd = &sc_if->msk_cdata.msk_jumbo_rxdesc[idx]; 6922d586421SSepherosa Ziehau m = rxd->rx_m; 6932d586421SSepherosa Ziehau rx_le = rxd->rx_le; 6942d586421SSepherosa Ziehau rx_le->msk_control = htole32(m->m_len | OP_PACKET | HW_OWNER); 6952d586421SSepherosa Ziehau } 6962d586421SSepherosa Ziehau #endif 6972d586421SSepherosa Ziehau 6982d586421SSepherosa Ziehau static int 6992499c577SSepherosa Ziehau msk_newbuf(struct msk_if_softc *sc_if, int idx, int init) 7002d586421SSepherosa Ziehau { 7012d586421SSepherosa Ziehau struct msk_rx_desc *rx_le; 7022d586421SSepherosa Ziehau struct msk_rxdesc *rxd; 7032d586421SSepherosa Ziehau struct mbuf *m; 7042d586421SSepherosa Ziehau bus_dma_segment_t seg; 7052d586421SSepherosa Ziehau bus_dmamap_t map; 7062499c577SSepherosa Ziehau int error, nseg; 7072d586421SSepherosa Ziehau 7082499c577SSepherosa Ziehau m = m_getcl(init ? MB_WAIT : MB_DONTWAIT, MT_DATA, M_PKTHDR); 7092d586421SSepherosa Ziehau if (m == NULL) 7102d586421SSepherosa Ziehau return (ENOBUFS); 7112d586421SSepherosa Ziehau 7122d586421SSepherosa Ziehau m->m_len = m->m_pkthdr.len = MCLBYTES; 7132d586421SSepherosa Ziehau m_adj(m, ETHER_ALIGN); 7142d586421SSepherosa Ziehau 7152499c577SSepherosa Ziehau error = bus_dmamap_load_mbuf_segment(sc_if->msk_cdata.msk_rx_tag, 7162499c577SSepherosa Ziehau sc_if->msk_cdata.msk_rx_sparemap, 7172499c577SSepherosa Ziehau m, &seg, 1, &nseg, BUS_DMA_NOWAIT); 7182499c577SSepherosa Ziehau if (error) { 7192d586421SSepherosa Ziehau m_freem(m); 7202499c577SSepherosa Ziehau if (init) 7212499c577SSepherosa Ziehau if_printf(&sc_if->arpcom.ac_if, "can't load RX mbuf\n"); 7222499c577SSepherosa Ziehau return (error); 7232d586421SSepherosa Ziehau } 7242d586421SSepherosa Ziehau 7252d586421SSepherosa Ziehau rxd = &sc_if->msk_cdata.msk_rxdesc[idx]; 7262d586421SSepherosa Ziehau if (rxd->rx_m != NULL) { 7272d586421SSepherosa Ziehau bus_dmamap_sync(sc_if->msk_cdata.msk_rx_tag, rxd->rx_dmamap, 7282d586421SSepherosa Ziehau BUS_DMASYNC_POSTREAD); 7292d586421SSepherosa Ziehau bus_dmamap_unload(sc_if->msk_cdata.msk_rx_tag, rxd->rx_dmamap); 7302d586421SSepherosa Ziehau } 7312499c577SSepherosa Ziehau 7322d586421SSepherosa Ziehau map = rxd->rx_dmamap; 7332d586421SSepherosa Ziehau rxd->rx_dmamap = sc_if->msk_cdata.msk_rx_sparemap; 7342d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_sparemap = map; 7352499c577SSepherosa Ziehau 7362d586421SSepherosa Ziehau rxd->rx_m = m; 7372d586421SSepherosa Ziehau rx_le = rxd->rx_le; 7382d586421SSepherosa Ziehau rx_le->msk_addr = htole32(MSK_ADDR_LO(seg.ds_addr)); 7392499c577SSepherosa Ziehau rx_le->msk_control = htole32(seg.ds_len | OP_PACKET | HW_OWNER); 7402d586421SSepherosa Ziehau 7412d586421SSepherosa Ziehau return (0); 7422d586421SSepherosa Ziehau } 7432d586421SSepherosa Ziehau 7442d586421SSepherosa Ziehau #ifdef MSK_JUMBO 7452d586421SSepherosa Ziehau static int 7462d586421SSepherosa Ziehau msk_jumbo_newbuf(struct msk_if_softc *sc_if, int idx) 7472d586421SSepherosa Ziehau { 7482d586421SSepherosa Ziehau struct msk_rx_desc *rx_le; 7492d586421SSepherosa Ziehau struct msk_rxdesc *rxd; 7502d586421SSepherosa Ziehau struct mbuf *m; 7512d586421SSepherosa Ziehau bus_dma_segment_t segs[1]; 7522d586421SSepherosa Ziehau bus_dmamap_t map; 7532d586421SSepherosa Ziehau int nsegs; 7542d586421SSepherosa Ziehau void *buf; 7552d586421SSepherosa Ziehau 7562d586421SSepherosa Ziehau MGETHDR(m, M_DONTWAIT, MT_DATA); 7572d586421SSepherosa Ziehau if (m == NULL) 7582d586421SSepherosa Ziehau return (ENOBUFS); 7592d586421SSepherosa Ziehau buf = msk_jalloc(sc_if); 7602d586421SSepherosa Ziehau if (buf == NULL) { 7612d586421SSepherosa Ziehau m_freem(m); 7622d586421SSepherosa Ziehau return (ENOBUFS); 7632d586421SSepherosa Ziehau } 7642d586421SSepherosa Ziehau /* Attach the buffer to the mbuf. */ 7652d586421SSepherosa Ziehau MEXTADD(m, buf, MSK_JLEN, msk_jfree, (struct msk_if_softc *)sc_if, 0, 7662d586421SSepherosa Ziehau EXT_NET_DRV); 7672d586421SSepherosa Ziehau if ((m->m_flags & M_EXT) == 0) { 7682d586421SSepherosa Ziehau m_freem(m); 7692d586421SSepherosa Ziehau return (ENOBUFS); 7702d586421SSepherosa Ziehau } 7712d586421SSepherosa Ziehau m->m_pkthdr.len = m->m_len = MSK_JLEN; 7722d586421SSepherosa Ziehau m_adj(m, ETHER_ALIGN); 7732d586421SSepherosa Ziehau 7742d586421SSepherosa Ziehau if (bus_dmamap_load_mbuf_sg(sc_if->msk_cdata.msk_jumbo_rx_tag, 7752d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_rx_sparemap, m, segs, &nsegs, 7762d586421SSepherosa Ziehau BUS_DMA_NOWAIT) != 0) { 7772d586421SSepherosa Ziehau m_freem(m); 7782d586421SSepherosa Ziehau return (ENOBUFS); 7792d586421SSepherosa Ziehau } 7802d586421SSepherosa Ziehau KASSERT(nsegs == 1, ("%s: %d segments returned!", __func__, nsegs)); 7812d586421SSepherosa Ziehau 7822d586421SSepherosa Ziehau rxd = &sc_if->msk_cdata.msk_jumbo_rxdesc[idx]; 7832d586421SSepherosa Ziehau if (rxd->rx_m != NULL) { 7842d586421SSepherosa Ziehau bus_dmamap_sync(sc_if->msk_cdata.msk_jumbo_rx_tag, 7852d586421SSepherosa Ziehau rxd->rx_dmamap, BUS_DMASYNC_POSTREAD); 7862d586421SSepherosa Ziehau bus_dmamap_unload(sc_if->msk_cdata.msk_jumbo_rx_tag, 7872d586421SSepherosa Ziehau rxd->rx_dmamap); 7882d586421SSepherosa Ziehau } 7892d586421SSepherosa Ziehau map = rxd->rx_dmamap; 7902d586421SSepherosa Ziehau rxd->rx_dmamap = sc_if->msk_cdata.msk_jumbo_rx_sparemap; 7912d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_rx_sparemap = map; 7922d586421SSepherosa Ziehau bus_dmamap_sync(sc_if->msk_cdata.msk_jumbo_rx_tag, rxd->rx_dmamap, 7932d586421SSepherosa Ziehau BUS_DMASYNC_PREREAD); 7942d586421SSepherosa Ziehau rxd->rx_m = m; 7952d586421SSepherosa Ziehau rx_le = rxd->rx_le; 7962d586421SSepherosa Ziehau rx_le->msk_addr = htole32(MSK_ADDR_LO(segs[0].ds_addr)); 7972d586421SSepherosa Ziehau rx_le->msk_control = 7982d586421SSepherosa Ziehau htole32(segs[0].ds_len | OP_PACKET | HW_OWNER); 7992d586421SSepherosa Ziehau 8002d586421SSepherosa Ziehau return (0); 8012d586421SSepherosa Ziehau } 8022d586421SSepherosa Ziehau #endif 8032d586421SSepherosa Ziehau 8042d586421SSepherosa Ziehau /* 8052d586421SSepherosa Ziehau * Set media options. 8062d586421SSepherosa Ziehau */ 8072d586421SSepherosa Ziehau static int 8082d586421SSepherosa Ziehau msk_mediachange(struct ifnet *ifp) 8092d586421SSepherosa Ziehau { 8102d586421SSepherosa Ziehau struct msk_if_softc *sc_if = ifp->if_softc; 8112d586421SSepherosa Ziehau struct mii_data *mii; 8122d586421SSepherosa Ziehau 8132d586421SSepherosa Ziehau mii = device_get_softc(sc_if->msk_miibus); 8142d586421SSepherosa Ziehau mii_mediachg(mii); 8152d586421SSepherosa Ziehau 8162d586421SSepherosa Ziehau return (0); 8172d586421SSepherosa Ziehau } 8182d586421SSepherosa Ziehau 8192d586421SSepherosa Ziehau /* 8202d586421SSepherosa Ziehau * Report current media status. 8212d586421SSepherosa Ziehau */ 8222d586421SSepherosa Ziehau static void 8232d586421SSepherosa Ziehau msk_mediastatus(struct ifnet *ifp, struct ifmediareq *ifmr) 8242d586421SSepherosa Ziehau { 8252d586421SSepherosa Ziehau struct msk_if_softc *sc_if = ifp->if_softc; 8262d586421SSepherosa Ziehau struct mii_data *mii; 8272d586421SSepherosa Ziehau 8282d586421SSepherosa Ziehau mii = device_get_softc(sc_if->msk_miibus); 8292d586421SSepherosa Ziehau mii_pollstat(mii); 8302d586421SSepherosa Ziehau 8312d586421SSepherosa Ziehau ifmr->ifm_active = mii->mii_media_active; 8322d586421SSepherosa Ziehau ifmr->ifm_status = mii->mii_media_status; 8332d586421SSepherosa Ziehau } 8342d586421SSepherosa Ziehau 8352d586421SSepherosa Ziehau static int 8362d586421SSepherosa Ziehau msk_ioctl(struct ifnet *ifp, u_long command, caddr_t data, struct ucred *cr) 8372d586421SSepherosa Ziehau { 8382d586421SSepherosa Ziehau struct msk_if_softc *sc_if; 8392d586421SSepherosa Ziehau struct ifreq *ifr; 8402d586421SSepherosa Ziehau struct mii_data *mii; 8412d586421SSepherosa Ziehau int error, mask; 8422d586421SSepherosa Ziehau 8432d586421SSepherosa Ziehau sc_if = ifp->if_softc; 8442d586421SSepherosa Ziehau ifr = (struct ifreq *)data; 8452d586421SSepherosa Ziehau error = 0; 8462d586421SSepherosa Ziehau 8472d586421SSepherosa Ziehau switch(command) { 8482d586421SSepherosa Ziehau case SIOCSIFMTU: 8492d586421SSepherosa Ziehau #ifdef MSK_JUMBO 8502d586421SSepherosa Ziehau if (ifr->ifr_mtu > MSK_JUMBO_MTU || ifr->ifr_mtu < ETHERMIN) { 8512d586421SSepherosa Ziehau error = EINVAL; 8522d586421SSepherosa Ziehau break; 8532d586421SSepherosa Ziehau } 8542d586421SSepherosa Ziehau if (sc_if->msk_softc->msk_hw_id == CHIP_ID_YUKON_FE && 8552d586421SSepherosa Ziehau ifr->ifr_mtu > MSK_MAX_FRAMELEN) { 8562d586421SSepherosa Ziehau error = EINVAL; 8572d586421SSepherosa Ziehau break; 8582d586421SSepherosa Ziehau } 8592d586421SSepherosa Ziehau ifp->if_mtu = ifr->ifr_mtu; 8602d586421SSepherosa Ziehau if ((ifp->if_flags & IFF_RUNNING) != 0) 8612d586421SSepherosa Ziehau msk_init(sc_if); 8622d586421SSepherosa Ziehau #else 8632d586421SSepherosa Ziehau error = EOPNOTSUPP; 8642d586421SSepherosa Ziehau #endif 8652d586421SSepherosa Ziehau break; 8662d586421SSepherosa Ziehau 8672d586421SSepherosa Ziehau case SIOCSIFFLAGS: 8682d586421SSepherosa Ziehau if (ifp->if_flags & IFF_UP) { 8692d586421SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) { 8702d586421SSepherosa Ziehau if (((ifp->if_flags ^ sc_if->msk_if_flags) 8712d586421SSepherosa Ziehau & IFF_PROMISC) != 0) { 8722d586421SSepherosa Ziehau msk_setpromisc(sc_if); 8732d586421SSepherosa Ziehau msk_setmulti(sc_if); 8742d586421SSepherosa Ziehau } 8752d586421SSepherosa Ziehau } else { 8762d586421SSepherosa Ziehau if (sc_if->msk_detach == 0) 8772d586421SSepherosa Ziehau msk_init(sc_if); 8782d586421SSepherosa Ziehau } 8792d586421SSepherosa Ziehau } else { 8802d586421SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) 8812d586421SSepherosa Ziehau msk_stop(sc_if); 8822d586421SSepherosa Ziehau } 8832d586421SSepherosa Ziehau sc_if->msk_if_flags = ifp->if_flags; 8842d586421SSepherosa Ziehau break; 8852d586421SSepherosa Ziehau 8862d586421SSepherosa Ziehau case SIOCADDMULTI: 8872d586421SSepherosa Ziehau case SIOCDELMULTI: 8882d586421SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) 8892d586421SSepherosa Ziehau msk_setmulti(sc_if); 8902d586421SSepherosa Ziehau break; 8912d586421SSepherosa Ziehau 8922d586421SSepherosa Ziehau case SIOCGIFMEDIA: 8932d586421SSepherosa Ziehau case SIOCSIFMEDIA: 8942d586421SSepherosa Ziehau mii = device_get_softc(sc_if->msk_miibus); 8952d586421SSepherosa Ziehau error = ifmedia_ioctl(ifp, ifr, &mii->mii_media, command); 8962d586421SSepherosa Ziehau break; 8972d586421SSepherosa Ziehau 8982d586421SSepherosa Ziehau case SIOCSIFCAP: 8992d586421SSepherosa Ziehau mask = ifr->ifr_reqcap ^ ifp->if_capenable; 9002d586421SSepherosa Ziehau if ((mask & IFCAP_TXCSUM) != 0) { 9012d586421SSepherosa Ziehau ifp->if_capenable ^= IFCAP_TXCSUM; 9022d586421SSepherosa Ziehau if ((IFCAP_TXCSUM & ifp->if_capenable) != 0 && 9032d586421SSepherosa Ziehau (IFCAP_TXCSUM & ifp->if_capabilities) != 0) 9042d586421SSepherosa Ziehau ifp->if_hwassist |= MSK_CSUM_FEATURES; 9052d586421SSepherosa Ziehau else 9062d586421SSepherosa Ziehau ifp->if_hwassist &= ~MSK_CSUM_FEATURES; 9072d586421SSepherosa Ziehau } 9082d586421SSepherosa Ziehau #ifdef notyet 9092d586421SSepherosa Ziehau if ((mask & IFCAP_VLAN_HWTAGGING) != 0) { 9102d586421SSepherosa Ziehau ifp->if_capenable ^= IFCAP_VLAN_HWTAGGING; 9112d586421SSepherosa Ziehau msk_setvlan(sc_if, ifp); 9122d586421SSepherosa Ziehau } 9132d586421SSepherosa Ziehau #endif 9142d586421SSepherosa Ziehau 9152d586421SSepherosa Ziehau if (sc_if->msk_framesize > MSK_MAX_FRAMELEN && 9162d586421SSepherosa Ziehau sc_if->msk_softc->msk_hw_id == CHIP_ID_YUKON_EC_U) { 9172d586421SSepherosa Ziehau /* 9182d586421SSepherosa Ziehau * In Yukon EC Ultra, TSO & checksum offload is not 9192d586421SSepherosa Ziehau * supported for jumbo frame. 9202d586421SSepherosa Ziehau */ 9212d586421SSepherosa Ziehau ifp->if_hwassist &= ~MSK_CSUM_FEATURES; 9222d586421SSepherosa Ziehau ifp->if_capenable &= ~IFCAP_TXCSUM; 9232d586421SSepherosa Ziehau } 9242d586421SSepherosa Ziehau break; 9252d586421SSepherosa Ziehau 9262d586421SSepherosa Ziehau default: 9272d586421SSepherosa Ziehau error = ether_ioctl(ifp, command, data); 9282d586421SSepherosa Ziehau break; 9292d586421SSepherosa Ziehau } 9302d586421SSepherosa Ziehau 9312d586421SSepherosa Ziehau return (error); 9322d586421SSepherosa Ziehau } 9332d586421SSepherosa Ziehau 9342d586421SSepherosa Ziehau static int 9352d586421SSepherosa Ziehau mskc_probe(device_t dev) 9362d586421SSepherosa Ziehau { 9372d586421SSepherosa Ziehau const struct msk_product *mp; 9382d586421SSepherosa Ziehau uint16_t vendor, devid; 9392d586421SSepherosa Ziehau 9402d586421SSepherosa Ziehau vendor = pci_get_vendor(dev); 9412d586421SSepherosa Ziehau devid = pci_get_device(dev); 9422d586421SSepherosa Ziehau for (mp = msk_products; mp->msk_name != NULL; ++mp) { 9432d586421SSepherosa Ziehau if (vendor == mp->msk_vendorid && devid == mp->msk_deviceid) { 9442d586421SSepherosa Ziehau device_set_desc(dev, mp->msk_name); 9452d586421SSepherosa Ziehau return (0); 9462d586421SSepherosa Ziehau } 9472d586421SSepherosa Ziehau } 9482d586421SSepherosa Ziehau return (ENXIO); 9492d586421SSepherosa Ziehau } 9502d586421SSepherosa Ziehau 9512d586421SSepherosa Ziehau static int 9522d586421SSepherosa Ziehau mskc_setup_rambuffer(struct msk_softc *sc) 9532d586421SSepherosa Ziehau { 9542d586421SSepherosa Ziehau int next; 9552d586421SSepherosa Ziehau int i; 9562d586421SSepherosa Ziehau uint8_t val; 9572d586421SSepherosa Ziehau 9582d586421SSepherosa Ziehau /* Get adapter SRAM size. */ 9592d586421SSepherosa Ziehau val = CSR_READ_1(sc, B2_E_0); 9602d586421SSepherosa Ziehau sc->msk_ramsize = (val == 0) ? 128 : val * 4; 9612d586421SSepherosa Ziehau if (bootverbose) { 9622d586421SSepherosa Ziehau device_printf(sc->msk_dev, 9632d586421SSepherosa Ziehau "RAM buffer size : %dKB\n", sc->msk_ramsize); 9642d586421SSepherosa Ziehau } 9652d586421SSepherosa Ziehau /* 9662d586421SSepherosa Ziehau * Give receiver 2/3 of memory and round down to the multiple 9672d586421SSepherosa Ziehau * of 1024. Tx/Rx RAM buffer size of Yukon II shoud be multiple 9682d586421SSepherosa Ziehau * of 1024. 9692d586421SSepherosa Ziehau */ 9702d586421SSepherosa Ziehau sc->msk_rxqsize = rounddown((sc->msk_ramsize * 1024 * 2) / 3, 1024); 9712d586421SSepherosa Ziehau sc->msk_txqsize = (sc->msk_ramsize * 1024) - sc->msk_rxqsize; 9722d586421SSepherosa Ziehau for (i = 0, next = 0; i < sc->msk_num_port; i++) { 9732d586421SSepherosa Ziehau sc->msk_rxqstart[i] = next; 9742d586421SSepherosa Ziehau sc->msk_rxqend[i] = next + sc->msk_rxqsize - 1; 9752d586421SSepherosa Ziehau next = sc->msk_rxqend[i] + 1; 9762d586421SSepherosa Ziehau sc->msk_txqstart[i] = next; 9772d586421SSepherosa Ziehau sc->msk_txqend[i] = next + sc->msk_txqsize - 1; 9782d586421SSepherosa Ziehau next = sc->msk_txqend[i] + 1; 9792d586421SSepherosa Ziehau if (bootverbose) { 9802d586421SSepherosa Ziehau device_printf(sc->msk_dev, 9812d586421SSepherosa Ziehau "Port %d : Rx Queue %dKB(0x%08x:0x%08x)\n", i, 9822d586421SSepherosa Ziehau sc->msk_rxqsize / 1024, sc->msk_rxqstart[i], 9832d586421SSepherosa Ziehau sc->msk_rxqend[i]); 9842d586421SSepherosa Ziehau device_printf(sc->msk_dev, 9852d586421SSepherosa Ziehau "Port %d : Tx Queue %dKB(0x%08x:0x%08x)\n", i, 9862d586421SSepherosa Ziehau sc->msk_txqsize / 1024, sc->msk_txqstart[i], 9872d586421SSepherosa Ziehau sc->msk_txqend[i]); 9882d586421SSepherosa Ziehau } 9892d586421SSepherosa Ziehau } 9902d586421SSepherosa Ziehau 9912d586421SSepherosa Ziehau return (0); 9922d586421SSepherosa Ziehau } 9932d586421SSepherosa Ziehau 9942d586421SSepherosa Ziehau static void 9952d586421SSepherosa Ziehau mskc_phy_power(struct msk_softc *sc, int mode) 9962d586421SSepherosa Ziehau { 9972d586421SSepherosa Ziehau uint32_t val; 9982d586421SSepherosa Ziehau int i; 9992d586421SSepherosa Ziehau 10002d586421SSepherosa Ziehau switch (mode) { 10012d586421SSepherosa Ziehau case MSK_PHY_POWERUP: 10022d586421SSepherosa Ziehau /* Switch power to VCC (WA for VAUX problem). */ 10032d586421SSepherosa Ziehau CSR_WRITE_1(sc, B0_POWER_CTRL, 10042d586421SSepherosa Ziehau PC_VAUX_ENA | PC_VCC_ENA | PC_VAUX_OFF | PC_VCC_ON); 10052d586421SSepherosa Ziehau /* Disable Core Clock Division, set Clock Select to 0. */ 10062d586421SSepherosa Ziehau CSR_WRITE_4(sc, B2_Y2_CLK_CTRL, Y2_CLK_DIV_DIS); 10072d586421SSepherosa Ziehau 10082d586421SSepherosa Ziehau val = 0; 10092d586421SSepherosa Ziehau if (sc->msk_hw_id == CHIP_ID_YUKON_XL && 10102d586421SSepherosa Ziehau sc->msk_hw_rev > CHIP_REV_YU_XL_A1) { 10112d586421SSepherosa Ziehau /* Enable bits are inverted. */ 10122d586421SSepherosa Ziehau val = Y2_PCI_CLK_LNK1_DIS | Y2_COR_CLK_LNK1_DIS | 10132d586421SSepherosa Ziehau Y2_CLK_GAT_LNK1_DIS | Y2_PCI_CLK_LNK2_DIS | 10142d586421SSepherosa Ziehau Y2_COR_CLK_LNK2_DIS | Y2_CLK_GAT_LNK2_DIS; 10152d586421SSepherosa Ziehau } 10162d586421SSepherosa Ziehau /* 10172d586421SSepherosa Ziehau * Enable PCI & Core Clock, enable clock gating for both Links. 10182d586421SSepherosa Ziehau */ 10192d586421SSepherosa Ziehau CSR_WRITE_1(sc, B2_Y2_CLK_GATE, val); 10202d586421SSepherosa Ziehau 10212d586421SSepherosa Ziehau val = pci_read_config(sc->msk_dev, PCI_OUR_REG_1, 4); 10222d586421SSepherosa Ziehau val &= ~(PCI_Y2_PHY1_POWD | PCI_Y2_PHY2_POWD); 10232d586421SSepherosa Ziehau if (sc->msk_hw_id == CHIP_ID_YUKON_XL && 10242d586421SSepherosa Ziehau sc->msk_hw_rev > CHIP_REV_YU_XL_A1) { 10252d586421SSepherosa Ziehau /* Deassert Low Power for 1st PHY. */ 10262d586421SSepherosa Ziehau val |= PCI_Y2_PHY1_COMA; 10272d586421SSepherosa Ziehau if (sc->msk_num_port > 1) 10282d586421SSepherosa Ziehau val |= PCI_Y2_PHY2_COMA; 10292d586421SSepherosa Ziehau } else if (sc->msk_hw_id == CHIP_ID_YUKON_EC_U) { 10302d586421SSepherosa Ziehau uint32_t our; 10312d586421SSepherosa Ziehau 10322d586421SSepherosa Ziehau CSR_WRITE_2(sc, B0_CTST, Y2_HW_WOL_ON); 10332d586421SSepherosa Ziehau 10342d586421SSepherosa Ziehau /* Enable all clocks. */ 10352d586421SSepherosa Ziehau pci_write_config(sc->msk_dev, PCI_OUR_REG_3, 0, 4); 10362d586421SSepherosa Ziehau our = pci_read_config(sc->msk_dev, PCI_OUR_REG_4, 4); 10372d586421SSepherosa Ziehau our &= (PCI_FORCE_ASPM_REQUEST|PCI_ASPM_GPHY_LINK_DOWN| 10382d586421SSepherosa Ziehau PCI_ASPM_INT_FIFO_EMPTY|PCI_ASPM_CLKRUN_REQUEST); 10392d586421SSepherosa Ziehau /* Set all bits to 0 except bits 15..12. */ 10402d586421SSepherosa Ziehau pci_write_config(sc->msk_dev, PCI_OUR_REG_4, our, 4); 10412d586421SSepherosa Ziehau /* Set to default value. */ 10422d586421SSepherosa Ziehau pci_write_config(sc->msk_dev, PCI_OUR_REG_5, 0, 4); 10432d586421SSepherosa Ziehau } 10442d586421SSepherosa Ziehau /* Release PHY from PowerDown/COMA mode. */ 10452d586421SSepherosa Ziehau pci_write_config(sc->msk_dev, PCI_OUR_REG_1, val, 4); 10462d586421SSepherosa Ziehau for (i = 0; i < sc->msk_num_port; i++) { 10472d586421SSepherosa Ziehau CSR_WRITE_2(sc, MR_ADDR(i, GMAC_LINK_CTRL), 10482d586421SSepherosa Ziehau GMLC_RST_SET); 10492d586421SSepherosa Ziehau CSR_WRITE_2(sc, MR_ADDR(i, GMAC_LINK_CTRL), 10502d586421SSepherosa Ziehau GMLC_RST_CLR); 10512d586421SSepherosa Ziehau } 10522d586421SSepherosa Ziehau break; 10532d586421SSepherosa Ziehau case MSK_PHY_POWERDOWN: 10542d586421SSepherosa Ziehau val = pci_read_config(sc->msk_dev, PCI_OUR_REG_1, 4); 10552d586421SSepherosa Ziehau val |= PCI_Y2_PHY1_POWD | PCI_Y2_PHY2_POWD; 10562d586421SSepherosa Ziehau if (sc->msk_hw_id == CHIP_ID_YUKON_XL && 10572d586421SSepherosa Ziehau sc->msk_hw_rev > CHIP_REV_YU_XL_A1) { 10582d586421SSepherosa Ziehau val &= ~PCI_Y2_PHY1_COMA; 10592d586421SSepherosa Ziehau if (sc->msk_num_port > 1) 10602d586421SSepherosa Ziehau val &= ~PCI_Y2_PHY2_COMA; 10612d586421SSepherosa Ziehau } 10622d586421SSepherosa Ziehau pci_write_config(sc->msk_dev, PCI_OUR_REG_1, val, 4); 10632d586421SSepherosa Ziehau 10642d586421SSepherosa Ziehau val = Y2_PCI_CLK_LNK1_DIS | Y2_COR_CLK_LNK1_DIS | 10652d586421SSepherosa Ziehau Y2_CLK_GAT_LNK1_DIS | Y2_PCI_CLK_LNK2_DIS | 10662d586421SSepherosa Ziehau Y2_COR_CLK_LNK2_DIS | Y2_CLK_GAT_LNK2_DIS; 10672d586421SSepherosa Ziehau if (sc->msk_hw_id == CHIP_ID_YUKON_XL && 10682d586421SSepherosa Ziehau sc->msk_hw_rev > CHIP_REV_YU_XL_A1) { 10692d586421SSepherosa Ziehau /* Enable bits are inverted. */ 10702d586421SSepherosa Ziehau val = 0; 10712d586421SSepherosa Ziehau } 10722d586421SSepherosa Ziehau /* 10732d586421SSepherosa Ziehau * Disable PCI & Core Clock, disable clock gating for 10742d586421SSepherosa Ziehau * both Links. 10752d586421SSepherosa Ziehau */ 10762d586421SSepherosa Ziehau CSR_WRITE_1(sc, B2_Y2_CLK_GATE, val); 10772d586421SSepherosa Ziehau CSR_WRITE_1(sc, B0_POWER_CTRL, 10782d586421SSepherosa Ziehau PC_VAUX_ENA | PC_VCC_ENA | PC_VAUX_ON | PC_VCC_OFF); 10792d586421SSepherosa Ziehau break; 10802d586421SSepherosa Ziehau default: 10812d586421SSepherosa Ziehau break; 10822d586421SSepherosa Ziehau } 10832d586421SSepherosa Ziehau } 10842d586421SSepherosa Ziehau 10852d586421SSepherosa Ziehau static void 10862d586421SSepherosa Ziehau mskc_reset(struct msk_softc *sc) 10872d586421SSepherosa Ziehau { 10882d586421SSepherosa Ziehau bus_addr_t addr; 10892d586421SSepherosa Ziehau uint16_t status; 10902d586421SSepherosa Ziehau uint32_t val; 10912d586421SSepherosa Ziehau int i; 10922d586421SSepherosa Ziehau 10932d586421SSepherosa Ziehau CSR_WRITE_2(sc, B0_CTST, CS_RST_CLR); 10942d586421SSepherosa Ziehau 10952d586421SSepherosa Ziehau /* Disable ASF. */ 10962d586421SSepherosa Ziehau if (sc->msk_hw_id < CHIP_ID_YUKON_XL) { 10972d586421SSepherosa Ziehau CSR_WRITE_4(sc, B28_Y2_ASF_STAT_CMD, Y2_ASF_RESET); 10982d586421SSepherosa Ziehau CSR_WRITE_2(sc, B0_CTST, Y2_ASF_DISABLE); 10992d586421SSepherosa Ziehau } 11002d586421SSepherosa Ziehau /* 11012d586421SSepherosa Ziehau * Since we disabled ASF, S/W reset is required for Power Management. 11022d586421SSepherosa Ziehau */ 11032d586421SSepherosa Ziehau CSR_WRITE_2(sc, B0_CTST, CS_RST_SET); 11042d586421SSepherosa Ziehau CSR_WRITE_2(sc, B0_CTST, CS_RST_CLR); 11052d586421SSepherosa Ziehau 11062d586421SSepherosa Ziehau /* Clear all error bits in the PCI status register. */ 11072d586421SSepherosa Ziehau status = pci_read_config(sc->msk_dev, PCIR_STATUS, 2); 11082d586421SSepherosa Ziehau CSR_WRITE_1(sc, B2_TST_CTRL1, TST_CFG_WRITE_ON); 11092d586421SSepherosa Ziehau 11102d586421SSepherosa Ziehau pci_write_config(sc->msk_dev, PCIR_STATUS, status | 11112d586421SSepherosa Ziehau PCIM_STATUS_PERR | PCIM_STATUS_SERR | PCIM_STATUS_RMABORT | 11122d586421SSepherosa Ziehau PCIM_STATUS_RTABORT | PCIM_STATUS_PERRREPORT, 2); 11132d586421SSepherosa Ziehau CSR_WRITE_2(sc, B0_CTST, CS_MRST_CLR); 11142d586421SSepherosa Ziehau 11152d586421SSepherosa Ziehau switch (sc->msk_bustype) { 11162d586421SSepherosa Ziehau case MSK_PEX_BUS: 11172d586421SSepherosa Ziehau /* Clear all PEX errors. */ 11182d586421SSepherosa Ziehau CSR_PCI_WRITE_4(sc, PEX_UNC_ERR_STAT, 0xffffffff); 11192d586421SSepherosa Ziehau val = CSR_PCI_READ_4(sc, PEX_UNC_ERR_STAT); 11202d586421SSepherosa Ziehau if ((val & PEX_RX_OV) != 0) { 11212d586421SSepherosa Ziehau sc->msk_intrmask &= ~Y2_IS_HW_ERR; 11222d586421SSepherosa Ziehau sc->msk_intrhwemask &= ~Y2_IS_PCI_EXP; 11232d586421SSepherosa Ziehau } 11242d586421SSepherosa Ziehau break; 11252d586421SSepherosa Ziehau case MSK_PCI_BUS: 11262d586421SSepherosa Ziehau case MSK_PCIX_BUS: 11272d586421SSepherosa Ziehau /* Set Cache Line Size to 2(8bytes) if configured to 0. */ 11282d586421SSepherosa Ziehau val = pci_read_config(sc->msk_dev, PCIR_CACHELNSZ, 1); 11292d586421SSepherosa Ziehau if (val == 0) 11302d586421SSepherosa Ziehau pci_write_config(sc->msk_dev, PCIR_CACHELNSZ, 2, 1); 11312d586421SSepherosa Ziehau if (sc->msk_bustype == MSK_PCIX_BUS) { 11322d586421SSepherosa Ziehau /* Set Cache Line Size opt. */ 11332d586421SSepherosa Ziehau val = pci_read_config(sc->msk_dev, PCI_OUR_REG_1, 4); 11342d586421SSepherosa Ziehau val |= PCI_CLS_OPT; 11352d586421SSepherosa Ziehau pci_write_config(sc->msk_dev, PCI_OUR_REG_1, val, 4); 11362d586421SSepherosa Ziehau } 11372d586421SSepherosa Ziehau break; 11382d586421SSepherosa Ziehau } 11392d586421SSepherosa Ziehau /* Set PHY power state. */ 11402d586421SSepherosa Ziehau mskc_phy_power(sc, MSK_PHY_POWERUP); 11412d586421SSepherosa Ziehau 11422d586421SSepherosa Ziehau /* Reset GPHY/GMAC Control */ 11432d586421SSepherosa Ziehau for (i = 0; i < sc->msk_num_port; i++) { 11442d586421SSepherosa Ziehau /* GPHY Control reset. */ 11452d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(i, GPHY_CTRL), GPC_RST_SET); 11462d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(i, GPHY_CTRL), GPC_RST_CLR); 11472d586421SSepherosa Ziehau /* GMAC Control reset. */ 11482d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(i, GMAC_CTRL), GMC_RST_SET); 11492d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(i, GMAC_CTRL), GMC_RST_CLR); 11502d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(i, GMAC_CTRL), GMC_F_LOOPB_OFF); 11512d586421SSepherosa Ziehau } 11522d586421SSepherosa Ziehau CSR_WRITE_1(sc, B2_TST_CTRL1, TST_CFG_WRITE_OFF); 11532d586421SSepherosa Ziehau 11542d586421SSepherosa Ziehau /* LED On. */ 11552d586421SSepherosa Ziehau CSR_WRITE_2(sc, B0_CTST, Y2_LED_STAT_ON); 11562d586421SSepherosa Ziehau 11572d586421SSepherosa Ziehau /* Clear TWSI IRQ. */ 11582d586421SSepherosa Ziehau CSR_WRITE_4(sc, B2_I2C_IRQ, I2C_CLR_IRQ); 11592d586421SSepherosa Ziehau 11602d586421SSepherosa Ziehau /* Turn off hardware timer. */ 11612d586421SSepherosa Ziehau CSR_WRITE_1(sc, B2_TI_CTRL, TIM_STOP); 11622d586421SSepherosa Ziehau CSR_WRITE_1(sc, B2_TI_CTRL, TIM_CLR_IRQ); 11632d586421SSepherosa Ziehau 11642d586421SSepherosa Ziehau /* Turn off descriptor polling. */ 11652d586421SSepherosa Ziehau CSR_WRITE_1(sc, B28_DPT_CTRL, DPT_STOP); 11662d586421SSepherosa Ziehau 11672d586421SSepherosa Ziehau /* Turn off time stamps. */ 11682d586421SSepherosa Ziehau CSR_WRITE_1(sc, GMAC_TI_ST_CTRL, GMT_ST_STOP); 11692d586421SSepherosa Ziehau CSR_WRITE_1(sc, GMAC_TI_ST_CTRL, GMT_ST_CLR_IRQ); 11702d586421SSepherosa Ziehau 11712d586421SSepherosa Ziehau /* Configure timeout values. */ 11722d586421SSepherosa Ziehau for (i = 0; i < sc->msk_num_port; i++) { 11732d586421SSepherosa Ziehau CSR_WRITE_2(sc, SELECT_RAM_BUFFER(i, B3_RI_CTRL), RI_RST_SET); 11742d586421SSepherosa Ziehau CSR_WRITE_2(sc, SELECT_RAM_BUFFER(i, B3_RI_CTRL), RI_RST_CLR); 11752d586421SSepherosa Ziehau CSR_WRITE_1(sc, SELECT_RAM_BUFFER(i, B3_RI_WTO_R1), 11762d586421SSepherosa Ziehau MSK_RI_TO_53); 11772d586421SSepherosa Ziehau CSR_WRITE_1(sc, SELECT_RAM_BUFFER(i, B3_RI_WTO_XA1), 11782d586421SSepherosa Ziehau MSK_RI_TO_53); 11792d586421SSepherosa Ziehau CSR_WRITE_1(sc, SELECT_RAM_BUFFER(i, B3_RI_WTO_XS1), 11802d586421SSepherosa Ziehau MSK_RI_TO_53); 11812d586421SSepherosa Ziehau CSR_WRITE_1(sc, SELECT_RAM_BUFFER(i, B3_RI_RTO_R1), 11822d586421SSepherosa Ziehau MSK_RI_TO_53); 11832d586421SSepherosa Ziehau CSR_WRITE_1(sc, SELECT_RAM_BUFFER(i, B3_RI_RTO_XA1), 11842d586421SSepherosa Ziehau MSK_RI_TO_53); 11852d586421SSepherosa Ziehau CSR_WRITE_1(sc, SELECT_RAM_BUFFER(i, B3_RI_RTO_XS1), 11862d586421SSepherosa Ziehau MSK_RI_TO_53); 11872d586421SSepherosa Ziehau CSR_WRITE_1(sc, SELECT_RAM_BUFFER(i, B3_RI_WTO_R2), 11882d586421SSepherosa Ziehau MSK_RI_TO_53); 11892d586421SSepherosa Ziehau CSR_WRITE_1(sc, SELECT_RAM_BUFFER(i, B3_RI_WTO_XA2), 11902d586421SSepherosa Ziehau MSK_RI_TO_53); 11912d586421SSepherosa Ziehau CSR_WRITE_1(sc, SELECT_RAM_BUFFER(i, B3_RI_WTO_XS2), 11922d586421SSepherosa Ziehau MSK_RI_TO_53); 11932d586421SSepherosa Ziehau CSR_WRITE_1(sc, SELECT_RAM_BUFFER(i, B3_RI_RTO_R2), 11942d586421SSepherosa Ziehau MSK_RI_TO_53); 11952d586421SSepherosa Ziehau CSR_WRITE_1(sc, SELECT_RAM_BUFFER(i, B3_RI_RTO_XA2), 11962d586421SSepherosa Ziehau MSK_RI_TO_53); 11972d586421SSepherosa Ziehau CSR_WRITE_1(sc, SELECT_RAM_BUFFER(i, B3_RI_RTO_XS2), 11982d586421SSepherosa Ziehau MSK_RI_TO_53); 11992d586421SSepherosa Ziehau } 12002d586421SSepherosa Ziehau 12012d586421SSepherosa Ziehau /* Disable all interrupts. */ 12022d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_HWE_IMSK, 0); 12032d586421SSepherosa Ziehau CSR_READ_4(sc, B0_HWE_IMSK); 12042d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_IMSK, 0); 12052d586421SSepherosa Ziehau CSR_READ_4(sc, B0_IMSK); 12062d586421SSepherosa Ziehau 12072d586421SSepherosa Ziehau /* 12082d586421SSepherosa Ziehau * On dual port PCI-X card, there is an problem where status 12092d586421SSepherosa Ziehau * can be received out of order due to split transactions. 12102d586421SSepherosa Ziehau */ 12112d586421SSepherosa Ziehau if (sc->msk_bustype == MSK_PCIX_BUS && sc->msk_num_port > 1) { 12122d586421SSepherosa Ziehau uint16_t pcix_cmd; 12132d586421SSepherosa Ziehau uint8_t pcix; 12142d586421SSepherosa Ziehau 12152d586421SSepherosa Ziehau pcix = pci_get_pcixcap_ptr(sc->msk_dev); 12162d586421SSepherosa Ziehau 12172d586421SSepherosa Ziehau pcix_cmd = pci_read_config(sc->msk_dev, pcix + 2, 2); 12182d586421SSepherosa Ziehau /* Clear Max Outstanding Split Transactions. */ 12192d586421SSepherosa Ziehau pcix_cmd &= ~0x70; 12202d586421SSepherosa Ziehau CSR_WRITE_1(sc, B2_TST_CTRL1, TST_CFG_WRITE_ON); 12212d586421SSepherosa Ziehau pci_write_config(sc->msk_dev, pcix + 2, pcix_cmd, 2); 12222d586421SSepherosa Ziehau CSR_WRITE_1(sc, B2_TST_CTRL1, TST_CFG_WRITE_OFF); 12232d586421SSepherosa Ziehau } 12242d586421SSepherosa Ziehau if (sc->msk_bustype == MSK_PEX_BUS) { 12252d586421SSepherosa Ziehau uint16_t v, width; 12262d586421SSepherosa Ziehau 12272d586421SSepherosa Ziehau v = pci_read_config(sc->msk_dev, PEX_DEV_CTRL, 2); 12282d586421SSepherosa Ziehau /* Change Max. Read Request Size to 4096 bytes. */ 12292d586421SSepherosa Ziehau v &= ~PEX_DC_MAX_RRS_MSK; 12302d586421SSepherosa Ziehau v |= PEX_DC_MAX_RD_RQ_SIZE(5); 12312d586421SSepherosa Ziehau pci_write_config(sc->msk_dev, PEX_DEV_CTRL, v, 2); 12322d586421SSepherosa Ziehau width = pci_read_config(sc->msk_dev, PEX_LNK_STAT, 2); 12332d586421SSepherosa Ziehau width = (width & PEX_LS_LINK_WI_MSK) >> 4; 12342d586421SSepherosa Ziehau v = pci_read_config(sc->msk_dev, PEX_LNK_CAP, 2); 12352d586421SSepherosa Ziehau v = (v & PEX_LS_LINK_WI_MSK) >> 4; 12362d586421SSepherosa Ziehau if (v != width) { 12372d586421SSepherosa Ziehau device_printf(sc->msk_dev, 12382d586421SSepherosa Ziehau "negotiated width of link(x%d) != " 12392d586421SSepherosa Ziehau "max. width of link(x%d)\n", width, v); 12402d586421SSepherosa Ziehau } 12412d586421SSepherosa Ziehau } 12422d586421SSepherosa Ziehau 12432d586421SSepherosa Ziehau /* Clear status list. */ 12442d586421SSepherosa Ziehau bzero(sc->msk_stat_ring, 12452d586421SSepherosa Ziehau sizeof(struct msk_stat_desc) * MSK_STAT_RING_CNT); 12462d586421SSepherosa Ziehau sc->msk_stat_cons = 0; 12472d586421SSepherosa Ziehau CSR_WRITE_4(sc, STAT_CTRL, SC_STAT_RST_SET); 12482d586421SSepherosa Ziehau CSR_WRITE_4(sc, STAT_CTRL, SC_STAT_RST_CLR); 12492d586421SSepherosa Ziehau /* Set the status list base address. */ 12502d586421SSepherosa Ziehau addr = sc->msk_stat_ring_paddr; 12512d586421SSepherosa Ziehau CSR_WRITE_4(sc, STAT_LIST_ADDR_LO, MSK_ADDR_LO(addr)); 12522d586421SSepherosa Ziehau CSR_WRITE_4(sc, STAT_LIST_ADDR_HI, MSK_ADDR_HI(addr)); 12532d586421SSepherosa Ziehau /* Set the status list last index. */ 12542d586421SSepherosa Ziehau CSR_WRITE_2(sc, STAT_LAST_IDX, MSK_STAT_RING_CNT - 1); 12552d586421SSepherosa Ziehau if (sc->msk_hw_id == CHIP_ID_YUKON_EC && 12562d586421SSepherosa Ziehau sc->msk_hw_rev == CHIP_REV_YU_EC_A1) { 12572d586421SSepherosa Ziehau /* WA for dev. #4.3 */ 12582d586421SSepherosa Ziehau CSR_WRITE_2(sc, STAT_TX_IDX_TH, ST_TXTH_IDX_MASK); 12592d586421SSepherosa Ziehau /* WA for dev. #4.18 */ 12602d586421SSepherosa Ziehau CSR_WRITE_1(sc, STAT_FIFO_WM, 0x21); 12612d586421SSepherosa Ziehau CSR_WRITE_1(sc, STAT_FIFO_ISR_WM, 0x07); 12622d586421SSepherosa Ziehau } else { 12632d586421SSepherosa Ziehau CSR_WRITE_2(sc, STAT_TX_IDX_TH, 0x0a); 12642d586421SSepherosa Ziehau CSR_WRITE_1(sc, STAT_FIFO_WM, 0x10); 12652d586421SSepherosa Ziehau if (sc->msk_hw_id == CHIP_ID_YUKON_XL && 12662d586421SSepherosa Ziehau sc->msk_hw_rev == CHIP_REV_YU_XL_A0) 12672d586421SSepherosa Ziehau CSR_WRITE_1(sc, STAT_FIFO_ISR_WM, 0x04); 12682d586421SSepherosa Ziehau else 12692d586421SSepherosa Ziehau CSR_WRITE_1(sc, STAT_FIFO_ISR_WM, 0x10); 12702d586421SSepherosa Ziehau CSR_WRITE_4(sc, STAT_ISR_TIMER_INI, 0x0190); 12712d586421SSepherosa Ziehau } 12722d586421SSepherosa Ziehau /* 12732d586421SSepherosa Ziehau * Use default value for STAT_ISR_TIMER_INI, STAT_LEV_TIMER_INI. 12742d586421SSepherosa Ziehau */ 12752d586421SSepherosa Ziehau CSR_WRITE_4(sc, STAT_TX_TIMER_INI, MSK_USECS(sc, 1000)); 12762d586421SSepherosa Ziehau 12772d586421SSepherosa Ziehau /* Enable status unit. */ 12782d586421SSepherosa Ziehau CSR_WRITE_4(sc, STAT_CTRL, SC_STAT_OP_ON); 12792d586421SSepherosa Ziehau 12802d586421SSepherosa Ziehau CSR_WRITE_1(sc, STAT_TX_TIMER_CTRL, TIM_START); 12812d586421SSepherosa Ziehau CSR_WRITE_1(sc, STAT_LEV_TIMER_CTRL, TIM_START); 12822d586421SSepherosa Ziehau CSR_WRITE_1(sc, STAT_ISR_TIMER_CTRL, TIM_START); 12832d586421SSepherosa Ziehau } 12842d586421SSepherosa Ziehau 12852d586421SSepherosa Ziehau static int 12862d586421SSepherosa Ziehau msk_probe(device_t dev) 12872d586421SSepherosa Ziehau { 12882d586421SSepherosa Ziehau struct msk_softc *sc = device_get_softc(device_get_parent(dev)); 12892d586421SSepherosa Ziehau char desc[100]; 12902d586421SSepherosa Ziehau 12912d586421SSepherosa Ziehau /* 12922d586421SSepherosa Ziehau * Not much to do here. We always know there will be 12932d586421SSepherosa Ziehau * at least one GMAC present, and if there are two, 12942d586421SSepherosa Ziehau * mskc_attach() will create a second device instance 12952d586421SSepherosa Ziehau * for us. 12962d586421SSepherosa Ziehau */ 12972d586421SSepherosa Ziehau ksnprintf(desc, sizeof(desc), 12982d586421SSepherosa Ziehau "Marvell Technology Group Ltd. %s Id 0x%02x Rev 0x%02x", 12992d586421SSepherosa Ziehau model_name[sc->msk_hw_id - CHIP_ID_YUKON_XL], sc->msk_hw_id, 13002d586421SSepherosa Ziehau sc->msk_hw_rev); 13012d586421SSepherosa Ziehau device_set_desc_copy(dev, desc); 13022d586421SSepherosa Ziehau 13032d586421SSepherosa Ziehau return (0); 13042d586421SSepherosa Ziehau } 13052d586421SSepherosa Ziehau 13062d586421SSepherosa Ziehau static int 13072d586421SSepherosa Ziehau msk_attach(device_t dev) 13082d586421SSepherosa Ziehau { 13092d586421SSepherosa Ziehau struct msk_softc *sc = device_get_softc(device_get_parent(dev)); 13102d586421SSepherosa Ziehau struct msk_if_softc *sc_if = device_get_softc(dev); 13112d586421SSepherosa Ziehau struct ifnet *ifp = &sc_if->arpcom.ac_if; 13122d586421SSepherosa Ziehau int i, port, error; 13132d586421SSepherosa Ziehau uint8_t eaddr[ETHER_ADDR_LEN]; 13142d586421SSepherosa Ziehau 13152d586421SSepherosa Ziehau port = *(int *)device_get_ivars(dev); 13162d586421SSepherosa Ziehau KKASSERT(port == MSK_PORT_A || port == MSK_PORT_B); 13172d586421SSepherosa Ziehau 13182d586421SSepherosa Ziehau kfree(device_get_ivars(dev), M_DEVBUF); 13192d586421SSepherosa Ziehau device_set_ivars(dev, NULL); 13202d586421SSepherosa Ziehau 13212d586421SSepherosa Ziehau callout_init(&sc_if->msk_tick_ch); 13222d586421SSepherosa Ziehau if_initname(ifp, device_get_name(dev), device_get_unit(dev)); 13232d586421SSepherosa Ziehau 13242d586421SSepherosa Ziehau sc_if->msk_if_dev = dev; 13252d586421SSepherosa Ziehau sc_if->msk_port = port; 13262d586421SSepherosa Ziehau sc_if->msk_softc = sc; 13272d586421SSepherosa Ziehau sc_if->msk_ifp = ifp; 13282d586421SSepherosa Ziehau sc->msk_if[port] = sc_if; 13292d586421SSepherosa Ziehau 13302d586421SSepherosa Ziehau /* Setup Tx/Rx queue register offsets. */ 13312d586421SSepherosa Ziehau if (port == MSK_PORT_A) { 13322d586421SSepherosa Ziehau sc_if->msk_txq = Q_XA1; 13332d586421SSepherosa Ziehau sc_if->msk_txsq = Q_XS1; 13342d586421SSepherosa Ziehau sc_if->msk_rxq = Q_R1; 13352d586421SSepherosa Ziehau } else { 13362d586421SSepherosa Ziehau sc_if->msk_txq = Q_XA2; 13372d586421SSepherosa Ziehau sc_if->msk_txsq = Q_XS2; 13382d586421SSepherosa Ziehau sc_if->msk_rxq = Q_R2; 13392d586421SSepherosa Ziehau } 13402d586421SSepherosa Ziehau 13412d586421SSepherosa Ziehau error = msk_txrx_dma_alloc(sc_if); 13422d586421SSepherosa Ziehau if (error) 13432d586421SSepherosa Ziehau goto fail; 13442d586421SSepherosa Ziehau 13452d586421SSepherosa Ziehau ifp->if_softc = sc_if; 13462d586421SSepherosa Ziehau ifp->if_mtu = ETHERMTU; 13472d586421SSepherosa Ziehau ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST; 13482d586421SSepherosa Ziehau ifp->if_init = msk_init; 13492d586421SSepherosa Ziehau ifp->if_ioctl = msk_ioctl; 13502d586421SSepherosa Ziehau ifp->if_start = msk_start; 13512d586421SSepherosa Ziehau ifp->if_watchdog = msk_watchdog; 13522d586421SSepherosa Ziehau ifq_set_maxlen(&ifp->if_snd, MSK_TX_RING_CNT - 1); 13532d586421SSepherosa Ziehau ifq_set_ready(&ifp->if_snd); 13542d586421SSepherosa Ziehau 13552d586421SSepherosa Ziehau #ifdef notyet 13562d586421SSepherosa Ziehau /* 13572d586421SSepherosa Ziehau * IFCAP_RXCSUM capability is intentionally disabled as the hardware 13582d586421SSepherosa Ziehau * has serious bug in Rx checksum offload for all Yukon II family 13592d586421SSepherosa Ziehau * hardware. It seems there is a workaround to make it work somtimes. 13602d586421SSepherosa Ziehau * However, the workaround also have to check OP code sequences to 13612d586421SSepherosa Ziehau * verify whether the OP code is correct. Sometimes it should compute 13622d586421SSepherosa Ziehau * IP/TCP/UDP checksum in driver in order to verify correctness of 13632d586421SSepherosa Ziehau * checksum computed by hardware. If you have to compute checksum 13642d586421SSepherosa Ziehau * with software to verify the hardware's checksum why have hardware 13652d586421SSepherosa Ziehau * compute the checksum? I think there is no reason to spend time to 13662d586421SSepherosa Ziehau * make Rx checksum offload work on Yukon II hardware. 13672d586421SSepherosa Ziehau */ 13682d586421SSepherosa Ziehau ifp->if_capabilities = IFCAP_TXCSUM | IFCAP_VLAN_MTU | 13692d586421SSepherosa Ziehau IFCAP_VLAN_HWTAGGING | IFCAP_VLAN_HWCSUM; 13702d586421SSepherosa Ziehau ifp->if_hwassist = MSK_CSUM_FEATURES; 13712d586421SSepherosa Ziehau ifp->if_capenable = ifp->if_capabilities; 13722d586421SSepherosa Ziehau #endif 13732d586421SSepherosa Ziehau 13742d586421SSepherosa Ziehau /* 13752d586421SSepherosa Ziehau * Get station address for this interface. Note that 13762d586421SSepherosa Ziehau * dual port cards actually come with three station 13772d586421SSepherosa Ziehau * addresses: one for each port, plus an extra. The 13782d586421SSepherosa Ziehau * extra one is used by the SysKonnect driver software 13792d586421SSepherosa Ziehau * as a 'virtual' station address for when both ports 13802d586421SSepherosa Ziehau * are operating in failover mode. Currently we don't 13812d586421SSepherosa Ziehau * use this extra address. 13822d586421SSepherosa Ziehau */ 13832d586421SSepherosa Ziehau for (i = 0; i < ETHER_ADDR_LEN; i++) 13842d586421SSepherosa Ziehau eaddr[i] = CSR_READ_1(sc, B2_MAC_1 + (port * 8) + i); 13852d586421SSepherosa Ziehau 13862d586421SSepherosa Ziehau sc_if->msk_framesize = ifp->if_mtu + ETHER_HDR_LEN + EVL_ENCAPLEN; 13872d586421SSepherosa Ziehau 13882d586421SSepherosa Ziehau /* 13892d586421SSepherosa Ziehau * Do miibus setup. 13902d586421SSepherosa Ziehau */ 13912d586421SSepherosa Ziehau error = mii_phy_probe(dev, &sc_if->msk_miibus, 13922d586421SSepherosa Ziehau msk_mediachange, msk_mediastatus); 13932d586421SSepherosa Ziehau if (error) { 13942d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, "no PHY found!\n"); 13952d586421SSepherosa Ziehau goto fail; 13962d586421SSepherosa Ziehau } 13972d586421SSepherosa Ziehau 13982d586421SSepherosa Ziehau /* 13992d586421SSepherosa Ziehau * Call MI attach routine. Can't hold locks when calling into ether_*. 14002d586421SSepherosa Ziehau */ 14012d586421SSepherosa Ziehau ether_ifattach(ifp, eaddr, &sc->msk_serializer); 14022d586421SSepherosa Ziehau #if 0 14032d586421SSepherosa Ziehau /* 14042d586421SSepherosa Ziehau * Tell the upper layer(s) we support long frames. 14052d586421SSepherosa Ziehau * Must appear after the call to ether_ifattach() because 14062d586421SSepherosa Ziehau * ether_ifattach() sets ifi_hdrlen to the default value. 14072d586421SSepherosa Ziehau */ 14082d586421SSepherosa Ziehau ifp->if_data.ifi_hdrlen = sizeof(struct ether_vlan_header); 14092d586421SSepherosa Ziehau #endif 14102d586421SSepherosa Ziehau 14112d586421SSepherosa Ziehau return 0; 14122d586421SSepherosa Ziehau fail: 14132d586421SSepherosa Ziehau msk_detach(dev); 14142d586421SSepherosa Ziehau sc->msk_if[port] = NULL; 14152d586421SSepherosa Ziehau return (error); 14162d586421SSepherosa Ziehau } 14172d586421SSepherosa Ziehau 14182d586421SSepherosa Ziehau /* 14192d586421SSepherosa Ziehau * Attach the interface. Allocate softc structures, do ifmedia 14202d586421SSepherosa Ziehau * setup and ethernet/BPF attach. 14212d586421SSepherosa Ziehau */ 14222d586421SSepherosa Ziehau static int 14232d586421SSepherosa Ziehau mskc_attach(device_t dev) 14242d586421SSepherosa Ziehau { 14252d586421SSepherosa Ziehau struct msk_softc *sc; 14269db4b353SSepherosa Ziehau int error, *port, cpuid; 14272d586421SSepherosa Ziehau 14282d586421SSepherosa Ziehau sc = device_get_softc(dev); 14292d586421SSepherosa Ziehau sc->msk_dev = dev; 14302d586421SSepherosa Ziehau lwkt_serialize_init(&sc->msk_serializer); 14312d586421SSepherosa Ziehau 1432f59f1081SSepherosa Ziehau /* 1433f59f1081SSepherosa Ziehau * Initailize sysctl variables 1434f59f1081SSepherosa Ziehau */ 1435f59f1081SSepherosa Ziehau sc->msk_process_limit = mskc_process_limit; 1436f59f1081SSepherosa Ziehau sc->msk_intr_rate = mskc_intr_rate; 1437f59f1081SSepherosa Ziehau 14382d586421SSepherosa Ziehau #ifndef BURN_BRIDGES 14392d586421SSepherosa Ziehau /* 14402d586421SSepherosa Ziehau * Handle power management nonsense. 14412d586421SSepherosa Ziehau */ 14422d586421SSepherosa Ziehau if (pci_get_powerstate(dev) != PCI_POWERSTATE_D0) { 14432d586421SSepherosa Ziehau uint32_t irq, bar0, bar1; 14442d586421SSepherosa Ziehau 14452d586421SSepherosa Ziehau /* Save important PCI config data. */ 14462d586421SSepherosa Ziehau bar0 = pci_read_config(dev, PCIR_BAR(0), 4); 14472d586421SSepherosa Ziehau bar1 = pci_read_config(dev, PCIR_BAR(1), 4); 14482d586421SSepherosa Ziehau irq = pci_read_config(dev, PCIR_INTLINE, 4); 14492d586421SSepherosa Ziehau 14502d586421SSepherosa Ziehau /* Reset the power state. */ 14512d586421SSepherosa Ziehau device_printf(dev, "chip is in D%d power mode " 14522d586421SSepherosa Ziehau "-- setting to D0\n", pci_get_powerstate(dev)); 14532d586421SSepherosa Ziehau 14542d586421SSepherosa Ziehau pci_set_powerstate(dev, PCI_POWERSTATE_D0); 14552d586421SSepherosa Ziehau 14562d586421SSepherosa Ziehau /* Restore PCI config data. */ 14572d586421SSepherosa Ziehau pci_write_config(dev, PCIR_BAR(0), bar0, 4); 14582d586421SSepherosa Ziehau pci_write_config(dev, PCIR_BAR(1), bar1, 4); 14592d586421SSepherosa Ziehau pci_write_config(dev, PCIR_INTLINE, irq, 4); 14602d586421SSepherosa Ziehau } 14612d586421SSepherosa Ziehau #endif /* BURN_BRIDGES */ 14622d586421SSepherosa Ziehau 14632d586421SSepherosa Ziehau /* 14642d586421SSepherosa Ziehau * Map control/status registers. 14652d586421SSepherosa Ziehau */ 14662d586421SSepherosa Ziehau pci_enable_busmaster(dev); 14672d586421SSepherosa Ziehau 14682d586421SSepherosa Ziehau /* 14692d586421SSepherosa Ziehau * Allocate I/O resource 14702d586421SSepherosa Ziehau */ 14712d586421SSepherosa Ziehau #ifdef MSK_USEIOSPACE 14722d586421SSepherosa Ziehau sc->msk_res_type = SYS_RES_IOPORT; 14732d586421SSepherosa Ziehau sc->msk_res_rid = PCIR_BAR(1); 14742d586421SSepherosa Ziehau #else 14752d586421SSepherosa Ziehau sc->msk_res_type = SYS_RES_MEMORY; 14762d586421SSepherosa Ziehau sc->msk_res_rid = PCIR_BAR(0); 14772d586421SSepherosa Ziehau #endif 14782d586421SSepherosa Ziehau sc->msk_res = bus_alloc_resource_any(dev, sc->msk_res_type, 14792d586421SSepherosa Ziehau &sc->msk_res_rid, RF_ACTIVE); 14802d586421SSepherosa Ziehau if (sc->msk_res == NULL) { 14812d586421SSepherosa Ziehau if (sc->msk_res_type == SYS_RES_MEMORY) { 14822d586421SSepherosa Ziehau sc->msk_res_type = SYS_RES_IOPORT; 14832d586421SSepherosa Ziehau sc->msk_res_rid = PCIR_BAR(1); 14842d586421SSepherosa Ziehau } else { 14852d586421SSepherosa Ziehau sc->msk_res_type = SYS_RES_MEMORY; 14862d586421SSepherosa Ziehau sc->msk_res_rid = PCIR_BAR(0); 14872d586421SSepherosa Ziehau } 14882d586421SSepherosa Ziehau sc->msk_res = bus_alloc_resource_any(dev, sc->msk_res_type, 14892d586421SSepherosa Ziehau &sc->msk_res_rid, 14902d586421SSepherosa Ziehau RF_ACTIVE); 14912d586421SSepherosa Ziehau if (sc->msk_res == NULL) { 14922d586421SSepherosa Ziehau device_printf(dev, "couldn't allocate %s resources\n", 14932d586421SSepherosa Ziehau sc->msk_res_type == SYS_RES_MEMORY ? "memory" : "I/O"); 14942d586421SSepherosa Ziehau return (ENXIO); 14952d586421SSepherosa Ziehau } 14962d586421SSepherosa Ziehau } 14972d586421SSepherosa Ziehau sc->msk_res_bt = rman_get_bustag(sc->msk_res); 14982d586421SSepherosa Ziehau sc->msk_res_bh = rman_get_bushandle(sc->msk_res); 14992d586421SSepherosa Ziehau 15002d586421SSepherosa Ziehau /* 15012d586421SSepherosa Ziehau * Allocate IRQ 15022d586421SSepherosa Ziehau */ 15032d586421SSepherosa Ziehau sc->msk_irq_rid = 0; 15042d586421SSepherosa Ziehau sc->msk_irq = bus_alloc_resource_any(dev, SYS_RES_IRQ, 15052d586421SSepherosa Ziehau &sc->msk_irq_rid, 15062d586421SSepherosa Ziehau RF_SHAREABLE | RF_ACTIVE); 15072d586421SSepherosa Ziehau if (sc->msk_irq == NULL) { 15082d586421SSepherosa Ziehau device_printf(dev, "couldn't allocate IRQ resources\n"); 15092d586421SSepherosa Ziehau error = ENXIO; 15102d586421SSepherosa Ziehau goto fail; 15112d586421SSepherosa Ziehau } 15122d586421SSepherosa Ziehau 15132d586421SSepherosa Ziehau CSR_WRITE_2(sc, B0_CTST, CS_RST_CLR); 15142d586421SSepherosa Ziehau sc->msk_hw_id = CSR_READ_1(sc, B2_CHIP_ID); 15152d586421SSepherosa Ziehau sc->msk_hw_rev = (CSR_READ_1(sc, B2_MAC_CFG) >> 4) & 0x0f; 15162d586421SSepherosa Ziehau /* Bail out if chip is not recognized. */ 15172d586421SSepherosa Ziehau if (sc->msk_hw_id < CHIP_ID_YUKON_XL || 15182d586421SSepherosa Ziehau sc->msk_hw_id > CHIP_ID_YUKON_FE) { 15192d586421SSepherosa Ziehau device_printf(dev, "unknown device: id=0x%02x, rev=0x%02x\n", 15202d586421SSepherosa Ziehau sc->msk_hw_id, sc->msk_hw_rev); 15212d586421SSepherosa Ziehau error = ENXIO; 15222d586421SSepherosa Ziehau goto fail; 15232d586421SSepherosa Ziehau } 15242d586421SSepherosa Ziehau 1525f59f1081SSepherosa Ziehau /* 1526f59f1081SSepherosa Ziehau * Create sysctl tree 1527f59f1081SSepherosa Ziehau */ 1528f59f1081SSepherosa Ziehau sysctl_ctx_init(&sc->msk_sysctl_ctx); 1529f59f1081SSepherosa Ziehau sc->msk_sysctl_tree = SYSCTL_ADD_NODE(&sc->msk_sysctl_ctx, 1530f59f1081SSepherosa Ziehau SYSCTL_STATIC_CHILDREN(_hw), 1531f59f1081SSepherosa Ziehau OID_AUTO, 1532f59f1081SSepherosa Ziehau device_get_nameunit(dev), 1533f59f1081SSepherosa Ziehau CTLFLAG_RD, 0, ""); 1534f59f1081SSepherosa Ziehau if (sc->msk_sysctl_tree == NULL) { 1535f59f1081SSepherosa Ziehau device_printf(dev, "can't add sysctl node\n"); 1536f59f1081SSepherosa Ziehau error = ENXIO; 1537f59f1081SSepherosa Ziehau goto fail; 1538f59f1081SSepherosa Ziehau } 1539f59f1081SSepherosa Ziehau 1540f59f1081SSepherosa Ziehau SYSCTL_ADD_PROC(&sc->msk_sysctl_ctx, 1541f59f1081SSepherosa Ziehau SYSCTL_CHILDREN(sc->msk_sysctl_tree), 15422d586421SSepherosa Ziehau OID_AUTO, "process_limit", CTLTYPE_INT | CTLFLAG_RW, 1543f59f1081SSepherosa Ziehau &sc->msk_process_limit, 0, mskc_sysctl_proc_limit, 1544f59f1081SSepherosa Ziehau "I", "max number of Rx events to process"); 1545f59f1081SSepherosa Ziehau SYSCTL_ADD_PROC(&sc->msk_sysctl_ctx, 1546f59f1081SSepherosa Ziehau SYSCTL_CHILDREN(sc->msk_sysctl_tree), 1547f59f1081SSepherosa Ziehau OID_AUTO, "intr_rate", CTLTYPE_INT | CTLFLAG_RW, 1548f59f1081SSepherosa Ziehau sc, 0, mskc_sysctl_intr_rate, 1549f59f1081SSepherosa Ziehau "I", "max number of interrupt per second"); 15505bda51d4SSepherosa Ziehau SYSCTL_ADD_INT(&sc->msk_sysctl_ctx, 15515bda51d4SSepherosa Ziehau SYSCTL_CHILDREN(sc->msk_sysctl_tree), OID_AUTO, 15525bda51d4SSepherosa Ziehau "defrag_avoided", CTLFLAG_RW, &sc->msk_defrag_avoided, 15535bda51d4SSepherosa Ziehau 0, "# of avoided m_defrag on TX path"); 15545bda51d4SSepherosa Ziehau SYSCTL_ADD_INT(&sc->msk_sysctl_ctx, 15555bda51d4SSepherosa Ziehau SYSCTL_CHILDREN(sc->msk_sysctl_tree), OID_AUTO, 15565bda51d4SSepherosa Ziehau "leading_copied", CTLFLAG_RW, &sc->msk_leading_copied, 15575bda51d4SSepherosa Ziehau 0, "# of leading copies on TX path"); 15585bda51d4SSepherosa Ziehau SYSCTL_ADD_INT(&sc->msk_sysctl_ctx, 15595bda51d4SSepherosa Ziehau SYSCTL_CHILDREN(sc->msk_sysctl_tree), OID_AUTO, 15605bda51d4SSepherosa Ziehau "trailing_copied", CTLFLAG_RW, &sc->msk_trailing_copied, 15615bda51d4SSepherosa Ziehau 0, "# of trailing copies on TX path"); 15622d586421SSepherosa Ziehau 15632d586421SSepherosa Ziehau /* Soft reset. */ 15642d586421SSepherosa Ziehau CSR_WRITE_2(sc, B0_CTST, CS_RST_SET); 15652d586421SSepherosa Ziehau CSR_WRITE_2(sc, B0_CTST, CS_RST_CLR); 15662d586421SSepherosa Ziehau sc->msk_pmd = CSR_READ_1(sc, B2_PMD_TYP); 15672d586421SSepherosa Ziehau if (sc->msk_pmd == 'L' || sc->msk_pmd == 'S') 15682d586421SSepherosa Ziehau sc->msk_coppertype = 0; 15692d586421SSepherosa Ziehau else 15702d586421SSepherosa Ziehau sc->msk_coppertype = 1; 15712d586421SSepherosa Ziehau /* Check number of MACs. */ 15722d586421SSepherosa Ziehau sc->msk_num_port = 1; 15732d586421SSepherosa Ziehau if ((CSR_READ_1(sc, B2_Y2_HW_RES) & CFG_DUAL_MAC_MSK) == 15742d586421SSepherosa Ziehau CFG_DUAL_MAC_MSK) { 15752d586421SSepherosa Ziehau if (!(CSR_READ_1(sc, B2_Y2_CLK_GATE) & Y2_STATUS_LNK2_INAC)) 15762d586421SSepherosa Ziehau sc->msk_num_port++; 15772d586421SSepherosa Ziehau } 15782d586421SSepherosa Ziehau 15792d586421SSepherosa Ziehau /* Check bus type. */ 15802d586421SSepherosa Ziehau if (pci_is_pcie(sc->msk_dev) == 0) 15812d586421SSepherosa Ziehau sc->msk_bustype = MSK_PEX_BUS; 15822d586421SSepherosa Ziehau else if (pci_is_pcix(sc->msk_dev) == 0) 15832d586421SSepherosa Ziehau sc->msk_bustype = MSK_PCIX_BUS; 15842d586421SSepherosa Ziehau else 15852d586421SSepherosa Ziehau sc->msk_bustype = MSK_PCI_BUS; 15862d586421SSepherosa Ziehau 15872d586421SSepherosa Ziehau switch (sc->msk_hw_id) { 15882d586421SSepherosa Ziehau case CHIP_ID_YUKON_EC: 15892d586421SSepherosa Ziehau case CHIP_ID_YUKON_EC_U: 15902d586421SSepherosa Ziehau sc->msk_clock = 125; /* 125 Mhz */ 15912d586421SSepherosa Ziehau break; 15922d586421SSepherosa Ziehau case CHIP_ID_YUKON_FE: 15932d586421SSepherosa Ziehau sc->msk_clock = 100; /* 100 Mhz */ 15942d586421SSepherosa Ziehau break; 15952d586421SSepherosa Ziehau case CHIP_ID_YUKON_XL: 15962d586421SSepherosa Ziehau sc->msk_clock = 156; /* 156 Mhz */ 15972d586421SSepherosa Ziehau break; 15982d586421SSepherosa Ziehau default: 15992d586421SSepherosa Ziehau sc->msk_clock = 156; /* 156 Mhz */ 16002d586421SSepherosa Ziehau break; 16012d586421SSepherosa Ziehau } 16022d586421SSepherosa Ziehau 16032d586421SSepherosa Ziehau error = mskc_status_dma_alloc(sc); 16042d586421SSepherosa Ziehau if (error) 16052d586421SSepherosa Ziehau goto fail; 16062d586421SSepherosa Ziehau 16072d586421SSepherosa Ziehau /* Set base interrupt mask. */ 16082d586421SSepherosa Ziehau sc->msk_intrmask = Y2_IS_HW_ERR | Y2_IS_STAT_BMU; 16092d586421SSepherosa Ziehau sc->msk_intrhwemask = Y2_IS_TIST_OV | Y2_IS_MST_ERR | 16102d586421SSepherosa Ziehau Y2_IS_IRQ_STAT | Y2_IS_PCI_EXP | Y2_IS_PCI_NEXP; 16112d586421SSepherosa Ziehau 16122d586421SSepherosa Ziehau /* Reset the adapter. */ 16132d586421SSepherosa Ziehau mskc_reset(sc); 16142d586421SSepherosa Ziehau 16152d586421SSepherosa Ziehau error = mskc_setup_rambuffer(sc); 16162d586421SSepherosa Ziehau if (error) 16172d586421SSepherosa Ziehau goto fail; 16182d586421SSepherosa Ziehau 16192d586421SSepherosa Ziehau sc->msk_devs[MSK_PORT_A] = device_add_child(dev, "msk", -1); 16202d586421SSepherosa Ziehau if (sc->msk_devs[MSK_PORT_A] == NULL) { 16212d586421SSepherosa Ziehau device_printf(dev, "failed to add child for PORT_A\n"); 16222d586421SSepherosa Ziehau error = ENXIO; 16232d586421SSepherosa Ziehau goto fail; 16242d586421SSepherosa Ziehau } 16252d586421SSepherosa Ziehau port = kmalloc(sizeof(*port), M_DEVBUF, M_WAITOK); 16262d586421SSepherosa Ziehau *port = MSK_PORT_A; 16272d586421SSepherosa Ziehau device_set_ivars(sc->msk_devs[MSK_PORT_A], port); 16282d586421SSepherosa Ziehau 16292d586421SSepherosa Ziehau if (sc->msk_num_port > 1) { 16302d586421SSepherosa Ziehau sc->msk_devs[MSK_PORT_B] = device_add_child(dev, "msk", -1); 16312d586421SSepherosa Ziehau if (sc->msk_devs[MSK_PORT_B] == NULL) { 16322d586421SSepherosa Ziehau device_printf(dev, "failed to add child for PORT_B\n"); 16332d586421SSepherosa Ziehau error = ENXIO; 16342d586421SSepherosa Ziehau goto fail; 16352d586421SSepherosa Ziehau } 16362d586421SSepherosa Ziehau port = kmalloc(sizeof(*port), M_DEVBUF, M_WAITOK); 16372d586421SSepherosa Ziehau *port = MSK_PORT_B; 16382d586421SSepherosa Ziehau device_set_ivars(sc->msk_devs[MSK_PORT_B], port); 16392d586421SSepherosa Ziehau } 16402d586421SSepherosa Ziehau 16412d586421SSepherosa Ziehau bus_generic_attach(dev); 16422d586421SSepherosa Ziehau 16432d586421SSepherosa Ziehau error = bus_setup_intr(dev, sc->msk_irq, INTR_MPSAFE, 16442d586421SSepherosa Ziehau mskc_intr, sc, &sc->msk_intrhand, 16452d586421SSepherosa Ziehau &sc->msk_serializer); 16462d586421SSepherosa Ziehau if (error) { 16472d586421SSepherosa Ziehau device_printf(dev, "couldn't set up interrupt handler\n"); 16482d586421SSepherosa Ziehau goto fail; 16492d586421SSepherosa Ziehau } 16509db4b353SSepherosa Ziehau 16519db4b353SSepherosa Ziehau cpuid = ithread_cpuid(rman_get_start(sc->msk_irq)); 16529db4b353SSepherosa Ziehau KKASSERT(cpuid >= 0 && cpuid < ncpus); 16539db4b353SSepherosa Ziehau 16549db4b353SSepherosa Ziehau if (sc->msk_if[0] != NULL) 16559db4b353SSepherosa Ziehau sc->msk_if[0]->msk_ifp->if_cpuid = cpuid; 16569db4b353SSepherosa Ziehau if (sc->msk_if[1] != NULL) 16579db4b353SSepherosa Ziehau sc->msk_if[1]->msk_ifp->if_cpuid = cpuid; 16582d586421SSepherosa Ziehau return 0; 16592d586421SSepherosa Ziehau fail: 16602d586421SSepherosa Ziehau mskc_detach(dev); 16612d586421SSepherosa Ziehau return (error); 16622d586421SSepherosa Ziehau } 16632d586421SSepherosa Ziehau 16642d586421SSepherosa Ziehau /* 16652d586421SSepherosa Ziehau * Shutdown hardware and free up resources. This can be called any 16662d586421SSepherosa Ziehau * time after the mutex has been initialized. It is called in both 16672d586421SSepherosa Ziehau * the error case in attach and the normal detach case so it needs 16682d586421SSepherosa Ziehau * to be careful about only freeing resources that have actually been 16692d586421SSepherosa Ziehau * allocated. 16702d586421SSepherosa Ziehau */ 16712d586421SSepherosa Ziehau static int 16722d586421SSepherosa Ziehau msk_detach(device_t dev) 16732d586421SSepherosa Ziehau { 16742d586421SSepherosa Ziehau struct msk_if_softc *sc_if = device_get_softc(dev); 16752d586421SSepherosa Ziehau 16762d586421SSepherosa Ziehau if (device_is_attached(dev)) { 16772d586421SSepherosa Ziehau struct msk_softc *sc = sc_if->msk_softc; 16782d586421SSepherosa Ziehau struct ifnet *ifp = &sc_if->arpcom.ac_if; 16792d586421SSepherosa Ziehau 16802d586421SSepherosa Ziehau lwkt_serialize_enter(ifp->if_serializer); 16812d586421SSepherosa Ziehau 16822d586421SSepherosa Ziehau if (sc->msk_intrhand != NULL) { 16832d586421SSepherosa Ziehau if (sc->msk_if[MSK_PORT_A] != NULL) 16842d586421SSepherosa Ziehau msk_stop(sc->msk_if[MSK_PORT_A]); 16852d586421SSepherosa Ziehau if (sc->msk_if[MSK_PORT_B] != NULL) 16862d586421SSepherosa Ziehau msk_stop(sc->msk_if[MSK_PORT_B]); 16872d586421SSepherosa Ziehau 16882d586421SSepherosa Ziehau bus_teardown_intr(sc->msk_dev, sc->msk_irq, 16892d586421SSepherosa Ziehau sc->msk_intrhand); 16902d586421SSepherosa Ziehau sc->msk_intrhand = NULL; 16912d586421SSepherosa Ziehau } 16922d586421SSepherosa Ziehau 16932d586421SSepherosa Ziehau lwkt_serialize_exit(ifp->if_serializer); 16942d586421SSepherosa Ziehau 16952d586421SSepherosa Ziehau ether_ifdetach(ifp); 16962d586421SSepherosa Ziehau } 16972d586421SSepherosa Ziehau 16982d586421SSepherosa Ziehau if (sc_if->msk_miibus != NULL) 16992d586421SSepherosa Ziehau device_delete_child(dev, sc_if->msk_miibus); 17002d586421SSepherosa Ziehau 17012d586421SSepherosa Ziehau msk_txrx_dma_free(sc_if); 17022d586421SSepherosa Ziehau return (0); 17032d586421SSepherosa Ziehau } 17042d586421SSepherosa Ziehau 17052d586421SSepherosa Ziehau static int 17062d586421SSepherosa Ziehau mskc_detach(device_t dev) 17072d586421SSepherosa Ziehau { 17082d586421SSepherosa Ziehau struct msk_softc *sc = device_get_softc(dev); 17092d586421SSepherosa Ziehau int *port, i; 17102d586421SSepherosa Ziehau 17112d586421SSepherosa Ziehau #ifdef INVARIANTS 17122d586421SSepherosa Ziehau if (device_is_attached(dev)) { 17132d586421SSepherosa Ziehau KASSERT(sc->msk_intrhand == NULL, 17142d586421SSepherosa Ziehau ("intr is not torn down yet\n")); 17152d586421SSepherosa Ziehau } 17162d586421SSepherosa Ziehau #endif 17172d586421SSepherosa Ziehau 17182d586421SSepherosa Ziehau for (i = 0; i < sc->msk_num_port; ++i) { 17192d586421SSepherosa Ziehau if (sc->msk_devs[i] != NULL) { 17202d586421SSepherosa Ziehau port = device_get_ivars(sc->msk_devs[i]); 17212d586421SSepherosa Ziehau if (port != NULL) { 17222d586421SSepherosa Ziehau kfree(port, M_DEVBUF); 17232d586421SSepherosa Ziehau device_set_ivars(sc->msk_devs[i], NULL); 17242d586421SSepherosa Ziehau } 17252d586421SSepherosa Ziehau device_delete_child(dev, sc->msk_devs[i]); 17262d586421SSepherosa Ziehau } 17272d586421SSepherosa Ziehau } 17282d586421SSepherosa Ziehau 17292d586421SSepherosa Ziehau /* Disable all interrupts. */ 17302d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_IMSK, 0); 17312d586421SSepherosa Ziehau CSR_READ_4(sc, B0_IMSK); 17322d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_HWE_IMSK, 0); 17332d586421SSepherosa Ziehau CSR_READ_4(sc, B0_HWE_IMSK); 17342d586421SSepherosa Ziehau 17352d586421SSepherosa Ziehau /* LED Off. */ 17362d586421SSepherosa Ziehau CSR_WRITE_2(sc, B0_CTST, Y2_LED_STAT_OFF); 17372d586421SSepherosa Ziehau 17382d586421SSepherosa Ziehau /* Put hardware reset. */ 17392d586421SSepherosa Ziehau CSR_WRITE_2(sc, B0_CTST, CS_RST_SET); 17402d586421SSepherosa Ziehau 17412d586421SSepherosa Ziehau mskc_status_dma_free(sc); 17422d586421SSepherosa Ziehau 17432d586421SSepherosa Ziehau if (sc->msk_irq != NULL) { 17442d586421SSepherosa Ziehau bus_release_resource(dev, SYS_RES_IRQ, sc->msk_irq_rid, 17452d586421SSepherosa Ziehau sc->msk_irq); 17462d586421SSepherosa Ziehau } 17472d586421SSepherosa Ziehau if (sc->msk_res != NULL) { 17482d586421SSepherosa Ziehau bus_release_resource(dev, sc->msk_res_type, sc->msk_res_rid, 17492d586421SSepherosa Ziehau sc->msk_res); 17502d586421SSepherosa Ziehau } 17512d586421SSepherosa Ziehau 1752f59f1081SSepherosa Ziehau if (sc->msk_sysctl_tree != NULL) 1753f59f1081SSepherosa Ziehau sysctl_ctx_free(&sc->msk_sysctl_ctx); 1754f59f1081SSepherosa Ziehau 17552d586421SSepherosa Ziehau return (0); 17562d586421SSepherosa Ziehau } 17572d586421SSepherosa Ziehau 17582d586421SSepherosa Ziehau /* Create status DMA region. */ 17592d586421SSepherosa Ziehau static int 17602d586421SSepherosa Ziehau mskc_status_dma_alloc(struct msk_softc *sc) 17612d586421SSepherosa Ziehau { 1762c78f83cbSSepherosa Ziehau bus_dmamem_t dmem; 17632d586421SSepherosa Ziehau int error; 17642d586421SSepherosa Ziehau 1765c78f83cbSSepherosa Ziehau error = bus_dmamem_coherent(NULL/* XXX parent */, MSK_STAT_ALIGN, 0, 1766c78f83cbSSepherosa Ziehau BUS_SPACE_MAXADDR, BUS_SPACE_MAXADDR, 1767c78f83cbSSepherosa Ziehau MSK_STAT_RING_SZ, BUS_DMA_WAITOK | BUS_DMA_ZERO, &dmem); 17682d586421SSepherosa Ziehau if (error) { 17692d586421SSepherosa Ziehau device_printf(sc->msk_dev, 1770c78f83cbSSepherosa Ziehau "failed to create status coherent DMA memory\n"); 1771c78f83cbSSepherosa Ziehau return error; 17722d586421SSepherosa Ziehau } 1773c78f83cbSSepherosa Ziehau sc->msk_stat_tag = dmem.dmem_tag; 1774c78f83cbSSepherosa Ziehau sc->msk_stat_map = dmem.dmem_map; 1775c78f83cbSSepherosa Ziehau sc->msk_stat_ring = dmem.dmem_addr; 1776c78f83cbSSepherosa Ziehau sc->msk_stat_ring_paddr = dmem.dmem_busaddr; 17772d586421SSepherosa Ziehau 17782d586421SSepherosa Ziehau return (0); 17792d586421SSepherosa Ziehau } 17802d586421SSepherosa Ziehau 17812d586421SSepherosa Ziehau static void 17822d586421SSepherosa Ziehau mskc_status_dma_free(struct msk_softc *sc) 17832d586421SSepherosa Ziehau { 17842d586421SSepherosa Ziehau /* Destroy status block. */ 17852d586421SSepherosa Ziehau if (sc->msk_stat_tag) { 17862d586421SSepherosa Ziehau bus_dmamap_unload(sc->msk_stat_tag, sc->msk_stat_map); 17872d586421SSepherosa Ziehau bus_dmamem_free(sc->msk_stat_tag, sc->msk_stat_ring, 17882d586421SSepherosa Ziehau sc->msk_stat_map); 17892d586421SSepherosa Ziehau bus_dma_tag_destroy(sc->msk_stat_tag); 17902d586421SSepherosa Ziehau sc->msk_stat_tag = NULL; 17912d586421SSepherosa Ziehau } 17922d586421SSepherosa Ziehau } 17932d586421SSepherosa Ziehau 17942d586421SSepherosa Ziehau static int 17952d586421SSepherosa Ziehau msk_txrx_dma_alloc(struct msk_if_softc *sc_if) 17962d586421SSepherosa Ziehau { 17972d586421SSepherosa Ziehau int error, i, j; 17982d586421SSepherosa Ziehau #ifdef MSK_JUMBO 17992d586421SSepherosa Ziehau struct msk_rxdesc *jrxd; 18002d586421SSepherosa Ziehau struct msk_jpool_entry *entry; 18012d586421SSepherosa Ziehau uint8_t *ptr; 18022d586421SSepherosa Ziehau #endif 18032d586421SSepherosa Ziehau 18042d586421SSepherosa Ziehau /* Create parent DMA tag. */ 18052d586421SSepherosa Ziehau /* 18062d586421SSepherosa Ziehau * XXX 18072d586421SSepherosa Ziehau * It seems that Yukon II supports full 64bits DMA operations. But 18082d586421SSepherosa Ziehau * it needs two descriptors(list elements) for 64bits DMA operations. 18092d586421SSepherosa Ziehau * Since we don't know what DMA address mappings(32bits or 64bits) 18102d586421SSepherosa Ziehau * would be used in advance for each mbufs, we limits its DMA space 18112d586421SSepherosa Ziehau * to be in range of 32bits address space. Otherwise, we should check 18122d586421SSepherosa Ziehau * what DMA address is used and chain another descriptor for the 18132d586421SSepherosa Ziehau * 64bits DMA operation. This also means descriptor ring size is 18142d586421SSepherosa Ziehau * variable. Limiting DMA address to be in 32bit address space greatly 18152d586421SSepherosa Ziehau * simplyfies descriptor handling and possibly would increase 18162d586421SSepherosa Ziehau * performance a bit due to efficient handling of descriptors. 18172d586421SSepherosa Ziehau * Apart from harassing checksum offloading mechanisms, it seems 18182d586421SSepherosa Ziehau * it's really bad idea to use a seperate descriptor for 64bit 18192d586421SSepherosa Ziehau * DMA operation to save small descriptor memory. Anyway, I've 18202d586421SSepherosa Ziehau * never seen these exotic scheme on ethernet interface hardware. 18212d586421SSepherosa Ziehau */ 18222d586421SSepherosa Ziehau error = bus_dma_tag_create( 18232d586421SSepherosa Ziehau NULL, /* parent */ 18242d586421SSepherosa Ziehau 1, 0, /* alignment, boundary */ 18252d586421SSepherosa Ziehau BUS_SPACE_MAXADDR_32BIT, /* lowaddr */ 18262d586421SSepherosa Ziehau BUS_SPACE_MAXADDR, /* highaddr */ 18272d586421SSepherosa Ziehau NULL, NULL, /* filter, filterarg */ 18282d586421SSepherosa Ziehau BUS_SPACE_MAXSIZE_32BIT, /* maxsize */ 18292d586421SSepherosa Ziehau 0, /* nsegments */ 18302d586421SSepherosa Ziehau BUS_SPACE_MAXSIZE_32BIT, /* maxsegsize */ 18312d586421SSepherosa Ziehau 0, /* flags */ 18322d586421SSepherosa Ziehau &sc_if->msk_cdata.msk_parent_tag); 18332d586421SSepherosa Ziehau if (error) { 18342d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 18352d586421SSepherosa Ziehau "failed to create parent DMA tag\n"); 18362d586421SSepherosa Ziehau return error; 18372d586421SSepherosa Ziehau } 18382d586421SSepherosa Ziehau 18392d586421SSepherosa Ziehau /* Create DMA stuffs for Tx ring. */ 18402d586421SSepherosa Ziehau error = msk_dmamem_create(sc_if->msk_if_dev, MSK_TX_RING_SZ, 18412d586421SSepherosa Ziehau &sc_if->msk_cdata.msk_tx_ring_tag, 1842da44240fSMatthew Dillon (void *)&sc_if->msk_rdata.msk_tx_ring, 18432d586421SSepherosa Ziehau &sc_if->msk_rdata.msk_tx_ring_paddr, 18442d586421SSepherosa Ziehau &sc_if->msk_cdata.msk_tx_ring_map); 18452d586421SSepherosa Ziehau if (error) { 18462d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 18472d586421SSepherosa Ziehau "failed to create TX ring DMA stuffs\n"); 18482d586421SSepherosa Ziehau return error; 18492d586421SSepherosa Ziehau } 18502d586421SSepherosa Ziehau 18512d586421SSepherosa Ziehau /* Create DMA stuffs for Rx ring. */ 18522d586421SSepherosa Ziehau error = msk_dmamem_create(sc_if->msk_if_dev, MSK_RX_RING_SZ, 18532d586421SSepherosa Ziehau &sc_if->msk_cdata.msk_rx_ring_tag, 1854da44240fSMatthew Dillon (void *)&sc_if->msk_rdata.msk_rx_ring, 18552d586421SSepherosa Ziehau &sc_if->msk_rdata.msk_rx_ring_paddr, 18562d586421SSepherosa Ziehau &sc_if->msk_cdata.msk_rx_ring_map); 18572d586421SSepherosa Ziehau if (error) { 18582d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 18592d586421SSepherosa Ziehau "failed to create RX ring DMA stuffs\n"); 18602d586421SSepherosa Ziehau return error; 18612d586421SSepherosa Ziehau } 18622d586421SSepherosa Ziehau 18632d586421SSepherosa Ziehau /* Create tag for Tx buffers. */ 18642d586421SSepherosa Ziehau error = bus_dma_tag_create(sc_if->msk_cdata.msk_parent_tag,/* parent */ 18652d586421SSepherosa Ziehau 1, 0, /* alignment, boundary */ 18662d586421SSepherosa Ziehau BUS_SPACE_MAXADDR, /* lowaddr */ 18672d586421SSepherosa Ziehau BUS_SPACE_MAXADDR, /* highaddr */ 18682d586421SSepherosa Ziehau NULL, NULL, /* filter, filterarg */ 1869ad3a1ee4SSepherosa Ziehau MSK_JUMBO_FRAMELEN, /* maxsize */ 18702d586421SSepherosa Ziehau MSK_MAXTXSEGS, /* nsegments */ 1871ad3a1ee4SSepherosa Ziehau MSK_MAXSGSIZE, /* maxsegsize */ 1872ad3a1ee4SSepherosa Ziehau BUS_DMA_ALLOCNOW | BUS_DMA_WAITOK | 1873ad3a1ee4SSepherosa Ziehau BUS_DMA_ONEBPAGE, /* flags */ 18742d586421SSepherosa Ziehau &sc_if->msk_cdata.msk_tx_tag); 18752d586421SSepherosa Ziehau if (error) { 18762d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 18772d586421SSepherosa Ziehau "failed to create Tx DMA tag\n"); 18782d586421SSepherosa Ziehau return error; 18792d586421SSepherosa Ziehau } 18802d586421SSepherosa Ziehau 18812d586421SSepherosa Ziehau /* Create DMA maps for Tx buffers. */ 18822d586421SSepherosa Ziehau for (i = 0; i < MSK_TX_RING_CNT; i++) { 18832d586421SSepherosa Ziehau struct msk_txdesc *txd = &sc_if->msk_cdata.msk_txdesc[i]; 18842d586421SSepherosa Ziehau 1885ad3a1ee4SSepherosa Ziehau error = bus_dmamap_create(sc_if->msk_cdata.msk_tx_tag, 1886ad3a1ee4SSepherosa Ziehau BUS_DMA_WAITOK | BUS_DMA_ONEBPAGE, 18872d586421SSepherosa Ziehau &txd->tx_dmamap); 18882d586421SSepherosa Ziehau if (error) { 18892d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 18902d586421SSepherosa Ziehau "failed to create %dth Tx dmamap\n", i); 18912d586421SSepherosa Ziehau 18922d586421SSepherosa Ziehau for (j = 0; j < i; ++j) { 18932d586421SSepherosa Ziehau txd = &sc_if->msk_cdata.msk_txdesc[j]; 18942d586421SSepherosa Ziehau bus_dmamap_destroy(sc_if->msk_cdata.msk_tx_tag, 18952d586421SSepherosa Ziehau txd->tx_dmamap); 18962d586421SSepherosa Ziehau } 18972d586421SSepherosa Ziehau bus_dma_tag_destroy(sc_if->msk_cdata.msk_tx_tag); 18982d586421SSepherosa Ziehau sc_if->msk_cdata.msk_tx_tag = NULL; 18992d586421SSepherosa Ziehau 19002d586421SSepherosa Ziehau return error; 19012d586421SSepherosa Ziehau } 19022d586421SSepherosa Ziehau } 19032d586421SSepherosa Ziehau 19042d586421SSepherosa Ziehau /* Create tag for Rx buffers. */ 19052d586421SSepherosa Ziehau error = bus_dma_tag_create(sc_if->msk_cdata.msk_parent_tag,/* parent */ 19062d586421SSepherosa Ziehau 1, 0, /* alignment, boundary */ 19072d586421SSepherosa Ziehau BUS_SPACE_MAXADDR, /* lowaddr */ 19082d586421SSepherosa Ziehau BUS_SPACE_MAXADDR, /* highaddr */ 19092d586421SSepherosa Ziehau NULL, NULL, /* filter, filterarg */ 19102d586421SSepherosa Ziehau MCLBYTES, /* maxsize */ 19112d586421SSepherosa Ziehau 1, /* nsegments */ 19122d586421SSepherosa Ziehau MCLBYTES, /* maxsegsize */ 1913ad3a1ee4SSepherosa Ziehau BUS_DMA_ALLOCNOW | BUS_DMA_WAITOK,/* flags */ 19142d586421SSepherosa Ziehau &sc_if->msk_cdata.msk_rx_tag); 19152d586421SSepherosa Ziehau if (error) { 19162d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 19172d586421SSepherosa Ziehau "failed to create Rx DMA tag\n"); 19182d586421SSepherosa Ziehau return error; 19192d586421SSepherosa Ziehau } 19202d586421SSepherosa Ziehau 19212d586421SSepherosa Ziehau /* Create DMA maps for Rx buffers. */ 1922ad3a1ee4SSepherosa Ziehau error = bus_dmamap_create(sc_if->msk_cdata.msk_rx_tag, BUS_DMA_WAITOK, 19232d586421SSepherosa Ziehau &sc_if->msk_cdata.msk_rx_sparemap); 19242d586421SSepherosa Ziehau if (error) { 19252d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 19262d586421SSepherosa Ziehau "failed to create spare Rx dmamap\n"); 19272d586421SSepherosa Ziehau bus_dma_tag_destroy(sc_if->msk_cdata.msk_rx_tag); 19282d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_tag = NULL; 19292d586421SSepherosa Ziehau return error; 19302d586421SSepherosa Ziehau } 19312d586421SSepherosa Ziehau for (i = 0; i < MSK_RX_RING_CNT; i++) { 19322d586421SSepherosa Ziehau struct msk_rxdesc *rxd = &sc_if->msk_cdata.msk_rxdesc[i]; 19332d586421SSepherosa Ziehau 1934ad3a1ee4SSepherosa Ziehau error = bus_dmamap_create(sc_if->msk_cdata.msk_rx_tag, 1935ad3a1ee4SSepherosa Ziehau BUS_DMA_WAITOK, &rxd->rx_dmamap); 19362d586421SSepherosa Ziehau if (error) { 19372d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 19382d586421SSepherosa Ziehau "failed to create %dth Rx dmamap\n", i); 19392d586421SSepherosa Ziehau 19402d586421SSepherosa Ziehau for (j = 0; j < i; ++j) { 19412d586421SSepherosa Ziehau rxd = &sc_if->msk_cdata.msk_rxdesc[j]; 19422d586421SSepherosa Ziehau bus_dmamap_destroy(sc_if->msk_cdata.msk_rx_tag, 19432d586421SSepherosa Ziehau rxd->rx_dmamap); 19442d586421SSepherosa Ziehau } 19457f582564SSepherosa Ziehau bus_dmamap_destroy(sc_if->msk_cdata.msk_rx_tag, 19467f582564SSepherosa Ziehau sc_if->msk_cdata.msk_rx_sparemap); 19472d586421SSepherosa Ziehau bus_dma_tag_destroy(sc_if->msk_cdata.msk_rx_tag); 19482d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_tag = NULL; 19492d586421SSepherosa Ziehau 19502d586421SSepherosa Ziehau return error; 19512d586421SSepherosa Ziehau } 19522d586421SSepherosa Ziehau } 19532d586421SSepherosa Ziehau 19542d586421SSepherosa Ziehau #ifdef MSK_JUMBO 19552d586421SSepherosa Ziehau SLIST_INIT(&sc_if->msk_jfree_listhead); 19562d586421SSepherosa Ziehau SLIST_INIT(&sc_if->msk_jinuse_listhead); 19572d586421SSepherosa Ziehau 19582d586421SSepherosa Ziehau /* Create tag for jumbo Rx ring. */ 19592d586421SSepherosa Ziehau error = bus_dma_tag_create(sc_if->msk_cdata.msk_parent_tag,/* parent */ 19602d586421SSepherosa Ziehau MSK_RING_ALIGN, 0, /* alignment, boundary */ 19612d586421SSepherosa Ziehau BUS_SPACE_MAXADDR, /* lowaddr */ 19622d586421SSepherosa Ziehau BUS_SPACE_MAXADDR, /* highaddr */ 19632d586421SSepherosa Ziehau NULL, NULL, /* filter, filterarg */ 19642d586421SSepherosa Ziehau MSK_JUMBO_RX_RING_SZ, /* maxsize */ 19652d586421SSepherosa Ziehau 1, /* nsegments */ 19662d586421SSepherosa Ziehau MSK_JUMBO_RX_RING_SZ, /* maxsegsize */ 19672d586421SSepherosa Ziehau 0, /* flags */ 19682d586421SSepherosa Ziehau NULL, NULL, /* lockfunc, lockarg */ 19692d586421SSepherosa Ziehau &sc_if->msk_cdata.msk_jumbo_rx_ring_tag); 19702d586421SSepherosa Ziehau if (error != 0) { 19712d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 19722d586421SSepherosa Ziehau "failed to create jumbo Rx ring DMA tag\n"); 19732d586421SSepherosa Ziehau goto fail; 19742d586421SSepherosa Ziehau } 19752d586421SSepherosa Ziehau 19762d586421SSepherosa Ziehau /* Allocate DMA'able memory and load the DMA map for jumbo Rx ring. */ 19772d586421SSepherosa Ziehau error = bus_dmamem_alloc(sc_if->msk_cdata.msk_jumbo_rx_ring_tag, 19782d586421SSepherosa Ziehau (void **)&sc_if->msk_rdata.msk_jumbo_rx_ring, 19792d586421SSepherosa Ziehau BUS_DMA_WAITOK | BUS_DMA_COHERENT | BUS_DMA_ZERO, 19802d586421SSepherosa Ziehau &sc_if->msk_cdata.msk_jumbo_rx_ring_map); 19812d586421SSepherosa Ziehau if (error != 0) { 19822d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 19832d586421SSepherosa Ziehau "failed to allocate DMA'able memory for jumbo Rx ring\n"); 19842d586421SSepherosa Ziehau goto fail; 19852d586421SSepherosa Ziehau } 19862d586421SSepherosa Ziehau 19872d586421SSepherosa Ziehau ctx.msk_busaddr = 0; 19882d586421SSepherosa Ziehau error = bus_dmamap_load(sc_if->msk_cdata.msk_jumbo_rx_ring_tag, 19892d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_rx_ring_map, 19902d586421SSepherosa Ziehau sc_if->msk_rdata.msk_jumbo_rx_ring, MSK_JUMBO_RX_RING_SZ, 19912d586421SSepherosa Ziehau msk_dmamap_cb, &ctx, 0); 19922d586421SSepherosa Ziehau if (error != 0) { 19932d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 19942d586421SSepherosa Ziehau "failed to load DMA'able memory for jumbo Rx ring\n"); 19952d586421SSepherosa Ziehau goto fail; 19962d586421SSepherosa Ziehau } 19972d586421SSepherosa Ziehau sc_if->msk_rdata.msk_jumbo_rx_ring_paddr = ctx.msk_busaddr; 19982d586421SSepherosa Ziehau 19992d586421SSepherosa Ziehau /* Create tag for jumbo buffer blocks. */ 20002d586421SSepherosa Ziehau error = bus_dma_tag_create(sc_if->msk_cdata.msk_parent_tag,/* parent */ 20012d586421SSepherosa Ziehau PAGE_SIZE, 0, /* alignment, boundary */ 20022d586421SSepherosa Ziehau BUS_SPACE_MAXADDR, /* lowaddr */ 20032d586421SSepherosa Ziehau BUS_SPACE_MAXADDR, /* highaddr */ 20042d586421SSepherosa Ziehau NULL, NULL, /* filter, filterarg */ 20052d586421SSepherosa Ziehau MSK_JMEM, /* maxsize */ 20062d586421SSepherosa Ziehau 1, /* nsegments */ 20072d586421SSepherosa Ziehau MSK_JMEM, /* maxsegsize */ 20082d586421SSepherosa Ziehau 0, /* flags */ 20092d586421SSepherosa Ziehau NULL, NULL, /* lockfunc, lockarg */ 20102d586421SSepherosa Ziehau &sc_if->msk_cdata.msk_jumbo_tag); 20112d586421SSepherosa Ziehau if (error != 0) { 20122d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 20132d586421SSepherosa Ziehau "failed to create jumbo Rx buffer block DMA tag\n"); 20142d586421SSepherosa Ziehau goto fail; 20152d586421SSepherosa Ziehau } 20162d586421SSepherosa Ziehau 20172d586421SSepherosa Ziehau /* Create tag for jumbo Rx buffers. */ 20182d586421SSepherosa Ziehau error = bus_dma_tag_create(sc_if->msk_cdata.msk_parent_tag,/* parent */ 20192d586421SSepherosa Ziehau PAGE_SIZE, 0, /* alignment, boundary */ 20202d586421SSepherosa Ziehau BUS_SPACE_MAXADDR, /* lowaddr */ 20212d586421SSepherosa Ziehau BUS_SPACE_MAXADDR, /* highaddr */ 20222d586421SSepherosa Ziehau NULL, NULL, /* filter, filterarg */ 20232d586421SSepherosa Ziehau MCLBYTES * MSK_MAXRXSEGS, /* maxsize */ 20242d586421SSepherosa Ziehau MSK_MAXRXSEGS, /* nsegments */ 20252d586421SSepherosa Ziehau MSK_JLEN, /* maxsegsize */ 20262d586421SSepherosa Ziehau 0, /* flags */ 20272d586421SSepherosa Ziehau NULL, NULL, /* lockfunc, lockarg */ 20282d586421SSepherosa Ziehau &sc_if->msk_cdata.msk_jumbo_rx_tag); 20292d586421SSepherosa Ziehau if (error != 0) { 20302d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 20312d586421SSepherosa Ziehau "failed to create jumbo Rx DMA tag\n"); 20322d586421SSepherosa Ziehau goto fail; 20332d586421SSepherosa Ziehau } 20342d586421SSepherosa Ziehau 20352d586421SSepherosa Ziehau /* Create DMA maps for jumbo Rx buffers. */ 20362d586421SSepherosa Ziehau if ((error = bus_dmamap_create(sc_if->msk_cdata.msk_jumbo_rx_tag, 0, 20372d586421SSepherosa Ziehau &sc_if->msk_cdata.msk_jumbo_rx_sparemap)) != 0) { 20382d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 20392d586421SSepherosa Ziehau "failed to create spare jumbo Rx dmamap\n"); 20402d586421SSepherosa Ziehau goto fail; 20412d586421SSepherosa Ziehau } 20422d586421SSepherosa Ziehau for (i = 0; i < MSK_JUMBO_RX_RING_CNT; i++) { 20432d586421SSepherosa Ziehau jrxd = &sc_if->msk_cdata.msk_jumbo_rxdesc[i]; 20442d586421SSepherosa Ziehau jrxd->rx_m = NULL; 20452d586421SSepherosa Ziehau jrxd->rx_dmamap = NULL; 20462d586421SSepherosa Ziehau error = bus_dmamap_create(sc_if->msk_cdata.msk_jumbo_rx_tag, 0, 20472d586421SSepherosa Ziehau &jrxd->rx_dmamap); 20482d586421SSepherosa Ziehau if (error != 0) { 20492d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 20502d586421SSepherosa Ziehau "failed to create jumbo Rx dmamap\n"); 20512d586421SSepherosa Ziehau goto fail; 20522d586421SSepherosa Ziehau } 20532d586421SSepherosa Ziehau } 20542d586421SSepherosa Ziehau 20552d586421SSepherosa Ziehau /* Allocate DMA'able memory and load the DMA map for jumbo buf. */ 20562d586421SSepherosa Ziehau error = bus_dmamem_alloc(sc_if->msk_cdata.msk_jumbo_tag, 20572d586421SSepherosa Ziehau (void **)&sc_if->msk_rdata.msk_jumbo_buf, 20582d586421SSepherosa Ziehau BUS_DMA_WAITOK | BUS_DMA_COHERENT | BUS_DMA_ZERO, 20592d586421SSepherosa Ziehau &sc_if->msk_cdata.msk_jumbo_map); 20602d586421SSepherosa Ziehau if (error != 0) { 20612d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 20622d586421SSepherosa Ziehau "failed to allocate DMA'able memory for jumbo buf\n"); 20632d586421SSepherosa Ziehau goto fail; 20642d586421SSepherosa Ziehau } 20652d586421SSepherosa Ziehau 20662d586421SSepherosa Ziehau ctx.msk_busaddr = 0; 20672d586421SSepherosa Ziehau error = bus_dmamap_load(sc_if->msk_cdata.msk_jumbo_tag, 20682d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_map, sc_if->msk_rdata.msk_jumbo_buf, 20692d586421SSepherosa Ziehau MSK_JMEM, msk_dmamap_cb, &ctx, 0); 20702d586421SSepherosa Ziehau if (error != 0) { 20712d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 20722d586421SSepherosa Ziehau "failed to load DMA'able memory for jumbobuf\n"); 20732d586421SSepherosa Ziehau goto fail; 20742d586421SSepherosa Ziehau } 20752d586421SSepherosa Ziehau sc_if->msk_rdata.msk_jumbo_buf_paddr = ctx.msk_busaddr; 20762d586421SSepherosa Ziehau 20772d586421SSepherosa Ziehau /* 20782d586421SSepherosa Ziehau * Now divide it up into 9K pieces and save the addresses 20792d586421SSepherosa Ziehau * in an array. 20802d586421SSepherosa Ziehau */ 20812d586421SSepherosa Ziehau ptr = sc_if->msk_rdata.msk_jumbo_buf; 20822d586421SSepherosa Ziehau for (i = 0; i < MSK_JSLOTS; i++) { 20832d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jslots[i] = ptr; 20842d586421SSepherosa Ziehau ptr += MSK_JLEN; 20852d586421SSepherosa Ziehau entry = malloc(sizeof(struct msk_jpool_entry), 20862d586421SSepherosa Ziehau M_DEVBUF, M_WAITOK); 20872d586421SSepherosa Ziehau if (entry == NULL) { 20882d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 20892d586421SSepherosa Ziehau "no memory for jumbo buffers!\n"); 20902d586421SSepherosa Ziehau error = ENOMEM; 20912d586421SSepherosa Ziehau goto fail; 20922d586421SSepherosa Ziehau } 20932d586421SSepherosa Ziehau entry->slot = i; 20942d586421SSepherosa Ziehau SLIST_INSERT_HEAD(&sc_if->msk_jfree_listhead, entry, 20952d586421SSepherosa Ziehau jpool_entries); 20962d586421SSepherosa Ziehau } 20972d586421SSepherosa Ziehau #endif 20982d586421SSepherosa Ziehau return 0; 20992d586421SSepherosa Ziehau } 21002d586421SSepherosa Ziehau 21012d586421SSepherosa Ziehau static void 21022d586421SSepherosa Ziehau msk_txrx_dma_free(struct msk_if_softc *sc_if) 21032d586421SSepherosa Ziehau { 21042d586421SSepherosa Ziehau struct msk_txdesc *txd; 21052d586421SSepherosa Ziehau struct msk_rxdesc *rxd; 21062d586421SSepherosa Ziehau #ifdef MSK_JUMBO 21072d586421SSepherosa Ziehau struct msk_rxdesc *jrxd; 21082d586421SSepherosa Ziehau struct msk_jpool_entry *entry; 21092d586421SSepherosa Ziehau #endif 21102d586421SSepherosa Ziehau int i; 21112d586421SSepherosa Ziehau 21122d586421SSepherosa Ziehau #ifdef MSK_JUMBO 21132d586421SSepherosa Ziehau MSK_JLIST_LOCK(sc_if); 21142d586421SSepherosa Ziehau while ((entry = SLIST_FIRST(&sc_if->msk_jinuse_listhead))) { 21152d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 21162d586421SSepherosa Ziehau "asked to free buffer that is in use!\n"); 21172d586421SSepherosa Ziehau SLIST_REMOVE_HEAD(&sc_if->msk_jinuse_listhead, jpool_entries); 21182d586421SSepherosa Ziehau SLIST_INSERT_HEAD(&sc_if->msk_jfree_listhead, entry, 21192d586421SSepherosa Ziehau jpool_entries); 21202d586421SSepherosa Ziehau } 21212d586421SSepherosa Ziehau 21222d586421SSepherosa Ziehau while (!SLIST_EMPTY(&sc_if->msk_jfree_listhead)) { 21232d586421SSepherosa Ziehau entry = SLIST_FIRST(&sc_if->msk_jfree_listhead); 21242d586421SSepherosa Ziehau SLIST_REMOVE_HEAD(&sc_if->msk_jfree_listhead, jpool_entries); 21252d586421SSepherosa Ziehau free(entry, M_DEVBUF); 21262d586421SSepherosa Ziehau } 21272d586421SSepherosa Ziehau MSK_JLIST_UNLOCK(sc_if); 21282d586421SSepherosa Ziehau 21292d586421SSepherosa Ziehau /* Destroy jumbo buffer block. */ 21302d586421SSepherosa Ziehau if (sc_if->msk_cdata.msk_jumbo_map) 21312d586421SSepherosa Ziehau bus_dmamap_unload(sc_if->msk_cdata.msk_jumbo_tag, 21322d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_map); 21332d586421SSepherosa Ziehau 21342d586421SSepherosa Ziehau if (sc_if->msk_rdata.msk_jumbo_buf) { 21352d586421SSepherosa Ziehau bus_dmamem_free(sc_if->msk_cdata.msk_jumbo_tag, 21362d586421SSepherosa Ziehau sc_if->msk_rdata.msk_jumbo_buf, 21372d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_map); 21382d586421SSepherosa Ziehau sc_if->msk_rdata.msk_jumbo_buf = NULL; 21392d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_map = NULL; 21402d586421SSepherosa Ziehau } 21412d586421SSepherosa Ziehau 21422d586421SSepherosa Ziehau /* Jumbo Rx ring. */ 21432d586421SSepherosa Ziehau if (sc_if->msk_cdata.msk_jumbo_rx_ring_tag) { 21442d586421SSepherosa Ziehau if (sc_if->msk_cdata.msk_jumbo_rx_ring_map) 21452d586421SSepherosa Ziehau bus_dmamap_unload(sc_if->msk_cdata.msk_jumbo_rx_ring_tag, 21462d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_rx_ring_map); 21472d586421SSepherosa Ziehau if (sc_if->msk_cdata.msk_jumbo_rx_ring_map && 21482d586421SSepherosa Ziehau sc_if->msk_rdata.msk_jumbo_rx_ring) 21492d586421SSepherosa Ziehau bus_dmamem_free(sc_if->msk_cdata.msk_jumbo_rx_ring_tag, 21502d586421SSepherosa Ziehau sc_if->msk_rdata.msk_jumbo_rx_ring, 21512d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_rx_ring_map); 21522d586421SSepherosa Ziehau sc_if->msk_rdata.msk_jumbo_rx_ring = NULL; 21532d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_rx_ring_map = NULL; 21542d586421SSepherosa Ziehau bus_dma_tag_destroy(sc_if->msk_cdata.msk_jumbo_rx_ring_tag); 21552d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_rx_ring_tag = NULL; 21562d586421SSepherosa Ziehau } 21572d586421SSepherosa Ziehau 21582d586421SSepherosa Ziehau /* Jumbo Rx buffers. */ 21592d586421SSepherosa Ziehau if (sc_if->msk_cdata.msk_jumbo_rx_tag) { 21602d586421SSepherosa Ziehau for (i = 0; i < MSK_JUMBO_RX_RING_CNT; i++) { 21612d586421SSepherosa Ziehau jrxd = &sc_if->msk_cdata.msk_jumbo_rxdesc[i]; 21622d586421SSepherosa Ziehau if (jrxd->rx_dmamap) { 21632d586421SSepherosa Ziehau bus_dmamap_destroy( 21642d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_rx_tag, 21652d586421SSepherosa Ziehau jrxd->rx_dmamap); 21662d586421SSepherosa Ziehau jrxd->rx_dmamap = NULL; 21672d586421SSepherosa Ziehau } 21682d586421SSepherosa Ziehau } 21692d586421SSepherosa Ziehau if (sc_if->msk_cdata.msk_jumbo_rx_sparemap) { 21702d586421SSepherosa Ziehau bus_dmamap_destroy(sc_if->msk_cdata.msk_jumbo_rx_tag, 21712d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_rx_sparemap); 21722d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_rx_sparemap = 0; 21732d586421SSepherosa Ziehau } 21742d586421SSepherosa Ziehau bus_dma_tag_destroy(sc_if->msk_cdata.msk_jumbo_rx_tag); 21752d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_rx_tag = NULL; 21762d586421SSepherosa Ziehau } 21772d586421SSepherosa Ziehau #endif 21782d586421SSepherosa Ziehau 21792d586421SSepherosa Ziehau /* Tx ring. */ 21802d586421SSepherosa Ziehau msk_dmamem_destroy(sc_if->msk_cdata.msk_tx_ring_tag, 21812d586421SSepherosa Ziehau sc_if->msk_rdata.msk_tx_ring, 21822d586421SSepherosa Ziehau sc_if->msk_cdata.msk_tx_ring_map); 21832d586421SSepherosa Ziehau 21842d586421SSepherosa Ziehau /* Rx ring. */ 21852d586421SSepherosa Ziehau msk_dmamem_destroy(sc_if->msk_cdata.msk_rx_ring_tag, 21862d586421SSepherosa Ziehau sc_if->msk_rdata.msk_rx_ring, 21872d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_ring_map); 21882d586421SSepherosa Ziehau 21892d586421SSepherosa Ziehau /* Tx buffers. */ 21902d586421SSepherosa Ziehau if (sc_if->msk_cdata.msk_tx_tag) { 21912d586421SSepherosa Ziehau for (i = 0; i < MSK_TX_RING_CNT; i++) { 21922d586421SSepherosa Ziehau txd = &sc_if->msk_cdata.msk_txdesc[i]; 21932d586421SSepherosa Ziehau bus_dmamap_destroy(sc_if->msk_cdata.msk_tx_tag, 21942d586421SSepherosa Ziehau txd->tx_dmamap); 21952d586421SSepherosa Ziehau } 21962d586421SSepherosa Ziehau bus_dma_tag_destroy(sc_if->msk_cdata.msk_tx_tag); 21972d586421SSepherosa Ziehau sc_if->msk_cdata.msk_tx_tag = NULL; 21982d586421SSepherosa Ziehau } 21992d586421SSepherosa Ziehau 22002d586421SSepherosa Ziehau /* Rx buffers. */ 22012d586421SSepherosa Ziehau if (sc_if->msk_cdata.msk_rx_tag) { 22022d586421SSepherosa Ziehau for (i = 0; i < MSK_RX_RING_CNT; i++) { 22032d586421SSepherosa Ziehau rxd = &sc_if->msk_cdata.msk_rxdesc[i]; 22042d586421SSepherosa Ziehau bus_dmamap_destroy(sc_if->msk_cdata.msk_rx_tag, 22052d586421SSepherosa Ziehau rxd->rx_dmamap); 22062d586421SSepherosa Ziehau } 22072d586421SSepherosa Ziehau bus_dmamap_destroy(sc_if->msk_cdata.msk_rx_tag, 22082d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_sparemap); 22092d586421SSepherosa Ziehau bus_dma_tag_destroy(sc_if->msk_cdata.msk_rx_tag); 22102d586421SSepherosa Ziehau sc_if->msk_cdata.msk_rx_tag = NULL; 22112d586421SSepherosa Ziehau } 22122d586421SSepherosa Ziehau 22132d586421SSepherosa Ziehau if (sc_if->msk_cdata.msk_parent_tag) { 22142d586421SSepherosa Ziehau bus_dma_tag_destroy(sc_if->msk_cdata.msk_parent_tag); 22152d586421SSepherosa Ziehau sc_if->msk_cdata.msk_parent_tag = NULL; 22162d586421SSepherosa Ziehau } 22172d586421SSepherosa Ziehau } 22182d586421SSepherosa Ziehau 22192d586421SSepherosa Ziehau #ifdef MSK_JUMBO 22202d586421SSepherosa Ziehau /* 22212d586421SSepherosa Ziehau * Allocate a jumbo buffer. 22222d586421SSepherosa Ziehau */ 22232d586421SSepherosa Ziehau static void * 22242d586421SSepherosa Ziehau msk_jalloc(struct msk_if_softc *sc_if) 22252d586421SSepherosa Ziehau { 22262d586421SSepherosa Ziehau struct msk_jpool_entry *entry; 22272d586421SSepherosa Ziehau 22282d586421SSepherosa Ziehau MSK_JLIST_LOCK(sc_if); 22292d586421SSepherosa Ziehau 22302d586421SSepherosa Ziehau entry = SLIST_FIRST(&sc_if->msk_jfree_listhead); 22312d586421SSepherosa Ziehau 22322d586421SSepherosa Ziehau if (entry == NULL) { 22332d586421SSepherosa Ziehau MSK_JLIST_UNLOCK(sc_if); 22342d586421SSepherosa Ziehau return (NULL); 22352d586421SSepherosa Ziehau } 22362d586421SSepherosa Ziehau 22372d586421SSepherosa Ziehau SLIST_REMOVE_HEAD(&sc_if->msk_jfree_listhead, jpool_entries); 22382d586421SSepherosa Ziehau SLIST_INSERT_HEAD(&sc_if->msk_jinuse_listhead, entry, jpool_entries); 22392d586421SSepherosa Ziehau 22402d586421SSepherosa Ziehau MSK_JLIST_UNLOCK(sc_if); 22412d586421SSepherosa Ziehau 22422d586421SSepherosa Ziehau return (sc_if->msk_cdata.msk_jslots[entry->slot]); 22432d586421SSepherosa Ziehau } 22442d586421SSepherosa Ziehau 22452d586421SSepherosa Ziehau /* 22462d586421SSepherosa Ziehau * Release a jumbo buffer. 22472d586421SSepherosa Ziehau */ 22482d586421SSepherosa Ziehau static void 22492d586421SSepherosa Ziehau msk_jfree(void *buf, void *args) 22502d586421SSepherosa Ziehau { 22512d586421SSepherosa Ziehau struct msk_if_softc *sc_if; 22522d586421SSepherosa Ziehau struct msk_jpool_entry *entry; 22532d586421SSepherosa Ziehau int i; 22542d586421SSepherosa Ziehau 22552d586421SSepherosa Ziehau /* Extract the softc struct pointer. */ 22562d586421SSepherosa Ziehau sc_if = (struct msk_if_softc *)args; 22572d586421SSepherosa Ziehau KASSERT(sc_if != NULL, ("%s: can't find softc pointer!", __func__)); 22582d586421SSepherosa Ziehau 22592d586421SSepherosa Ziehau MSK_JLIST_LOCK(sc_if); 22602d586421SSepherosa Ziehau /* Calculate the slot this buffer belongs to. */ 22612d586421SSepherosa Ziehau i = ((vm_offset_t)buf 22622d586421SSepherosa Ziehau - (vm_offset_t)sc_if->msk_rdata.msk_jumbo_buf) / MSK_JLEN; 22632d586421SSepherosa Ziehau KASSERT(i >= 0 && i < MSK_JSLOTS, 22642d586421SSepherosa Ziehau ("%s: asked to free buffer that we don't manage!", __func__)); 22652d586421SSepherosa Ziehau 22662d586421SSepherosa Ziehau entry = SLIST_FIRST(&sc_if->msk_jinuse_listhead); 22672d586421SSepherosa Ziehau KASSERT(entry != NULL, ("%s: buffer not in use!", __func__)); 22682d586421SSepherosa Ziehau entry->slot = i; 22692d586421SSepherosa Ziehau SLIST_REMOVE_HEAD(&sc_if->msk_jinuse_listhead, jpool_entries); 22702d586421SSepherosa Ziehau SLIST_INSERT_HEAD(&sc_if->msk_jfree_listhead, entry, jpool_entries); 22712d586421SSepherosa Ziehau if (SLIST_EMPTY(&sc_if->msk_jinuse_listhead)) 22722d586421SSepherosa Ziehau wakeup(sc_if); 22732d586421SSepherosa Ziehau 22742d586421SSepherosa Ziehau MSK_JLIST_UNLOCK(sc_if); 22752d586421SSepherosa Ziehau } 22762d586421SSepherosa Ziehau #endif 22772d586421SSepherosa Ziehau 22782d586421SSepherosa Ziehau static int 22792d586421SSepherosa Ziehau msk_encap(struct msk_if_softc *sc_if, struct mbuf **m_head) 22802d586421SSepherosa Ziehau { 22812d586421SSepherosa Ziehau struct msk_txdesc *txd, *txd_last; 22822d586421SSepherosa Ziehau struct msk_tx_desc *tx_le; 22832d586421SSepherosa Ziehau struct mbuf *m; 22842d586421SSepherosa Ziehau bus_dmamap_t map; 22852d586421SSepherosa Ziehau bus_dma_segment_t txsegs[MSK_MAXTXSEGS]; 22862d586421SSepherosa Ziehau uint32_t control, prod, si; 22872d586421SSepherosa Ziehau uint16_t offset, tcp_offset; 22885bda51d4SSepherosa Ziehau int error, i, nsegs, maxsegs, defrag; 2289def0e148SSepherosa Ziehau 2290def0e148SSepherosa Ziehau maxsegs = MSK_TX_RING_CNT - sc_if->msk_cdata.msk_tx_cnt - 2291def0e148SSepherosa Ziehau MSK_RESERVED_TX_DESC_CNT; 2292def0e148SSepherosa Ziehau KASSERT(maxsegs >= MSK_SPARE_TX_DESC_CNT, 2293def0e148SSepherosa Ziehau ("not enough spare TX desc\n")); 2294def0e148SSepherosa Ziehau if (maxsegs > MSK_MAXTXSEGS) 2295def0e148SSepherosa Ziehau maxsegs = MSK_MAXTXSEGS; 22962d586421SSepherosa Ziehau 22975bda51d4SSepherosa Ziehau /* 2298e71dee4bSSepherosa Ziehau * Align TX buffer to 64bytes boundary. This greately improves 22995bda51d4SSepherosa Ziehau * bulk data TX performance on my 88E8053 (+100Mbps) at least. 23005bda51d4SSepherosa Ziehau * Try avoiding m_defrag(), if the mbufs are not chained together 23015bda51d4SSepherosa Ziehau * by m_next (i.e. m->m_len == m->m_pkthdr.len). 23025bda51d4SSepherosa Ziehau */ 23035bda51d4SSepherosa Ziehau 2304e71dee4bSSepherosa Ziehau #define MSK_TXBUF_ALIGN 64 23055bda51d4SSepherosa Ziehau #define MSK_TXBUF_MASK (MSK_TXBUF_ALIGN - 1) 23065bda51d4SSepherosa Ziehau 23075bda51d4SSepherosa Ziehau defrag = 1; 23082d586421SSepherosa Ziehau m = *m_head; 23095bda51d4SSepherosa Ziehau if (m->m_len == m->m_pkthdr.len) { 23105bda51d4SSepherosa Ziehau int space; 23115bda51d4SSepherosa Ziehau 23125bda51d4SSepherosa Ziehau space = ((uintptr_t)m->m_data & MSK_TXBUF_MASK); 23135bda51d4SSepherosa Ziehau if (space) { 23145bda51d4SSepherosa Ziehau if (M_WRITABLE(m)) { 23155bda51d4SSepherosa Ziehau if (M_TRAILINGSPACE(m) >= space) { 23165bda51d4SSepherosa Ziehau /* e.g. TCP ACKs */ 23175bda51d4SSepherosa Ziehau bcopy(m->m_data, m->m_data + space, 23185bda51d4SSepherosa Ziehau m->m_len); 23195bda51d4SSepherosa Ziehau m->m_data += space; 23205bda51d4SSepherosa Ziehau defrag = 0; 23215bda51d4SSepherosa Ziehau sc_if->msk_softc->msk_trailing_copied++; 23225bda51d4SSepherosa Ziehau } else { 23235bda51d4SSepherosa Ziehau space = MSK_TXBUF_ALIGN - space; 23245bda51d4SSepherosa Ziehau if (M_LEADINGSPACE(m) >= space) { 23255bda51d4SSepherosa Ziehau /* e.g. Small UDP datagrams */ 23265bda51d4SSepherosa Ziehau bcopy(m->m_data, 23275bda51d4SSepherosa Ziehau m->m_data - space, 23285bda51d4SSepherosa Ziehau m->m_len); 23295bda51d4SSepherosa Ziehau m->m_data -= space; 23305bda51d4SSepherosa Ziehau defrag = 0; 23315bda51d4SSepherosa Ziehau sc_if->msk_softc-> 23325bda51d4SSepherosa Ziehau msk_leading_copied++; 23335bda51d4SSepherosa Ziehau } 23345bda51d4SSepherosa Ziehau } 23355bda51d4SSepherosa Ziehau } 23365bda51d4SSepherosa Ziehau } else { 23375bda51d4SSepherosa Ziehau /* e.g. on forwarding path */ 23385bda51d4SSepherosa Ziehau defrag = 0; 23395bda51d4SSepherosa Ziehau } 23405bda51d4SSepherosa Ziehau } 23415bda51d4SSepherosa Ziehau if (defrag) { 23425bda51d4SSepherosa Ziehau m = m_defrag(*m_head, MB_DONTWAIT); 23435bda51d4SSepherosa Ziehau if (m == NULL) { 23445bda51d4SSepherosa Ziehau m_freem(*m_head); 23455bda51d4SSepherosa Ziehau *m_head = NULL; 23465bda51d4SSepherosa Ziehau return ENOBUFS; 23475bda51d4SSepherosa Ziehau } 23485bda51d4SSepherosa Ziehau *m_head = m; 23495bda51d4SSepherosa Ziehau } else { 23505bda51d4SSepherosa Ziehau sc_if->msk_softc->msk_defrag_avoided++; 23515bda51d4SSepherosa Ziehau } 23525bda51d4SSepherosa Ziehau 23535bda51d4SSepherosa Ziehau #undef MSK_TXBUF_MASK 23545bda51d4SSepherosa Ziehau #undef MSK_TXBUF_ALIGN 23555bda51d4SSepherosa Ziehau 23565bda51d4SSepherosa Ziehau tcp_offset = offset = 0; 23572d586421SSepherosa Ziehau if (m->m_pkthdr.csum_flags & MSK_CSUM_FEATURES) { 23582d586421SSepherosa Ziehau /* 23592d586421SSepherosa Ziehau * Since mbuf has no protocol specific structure information 23602d586421SSepherosa Ziehau * in it we have to inspect protocol information here to 23612d586421SSepherosa Ziehau * setup TSO and checksum offload. I don't know why Marvell 23622d586421SSepherosa Ziehau * made a such decision in chip design because other GigE 23632d586421SSepherosa Ziehau * hardwares normally takes care of all these chores in 23642d586421SSepherosa Ziehau * hardware. However, TSO performance of Yukon II is very 23652d586421SSepherosa Ziehau * good such that it's worth to implement it. 23662d586421SSepherosa Ziehau */ 23672d586421SSepherosa Ziehau struct ether_header *eh; 23682d586421SSepherosa Ziehau struct ip *ip; 23692d586421SSepherosa Ziehau 23702d586421SSepherosa Ziehau /* TODO check for M_WRITABLE(m) */ 23712d586421SSepherosa Ziehau 23722d586421SSepherosa Ziehau offset = sizeof(struct ether_header); 23732d586421SSepherosa Ziehau m = m_pullup(m, offset); 23742d586421SSepherosa Ziehau if (m == NULL) { 23752d586421SSepherosa Ziehau *m_head = NULL; 23762d586421SSepherosa Ziehau return (ENOBUFS); 23772d586421SSepherosa Ziehau } 23782d586421SSepherosa Ziehau eh = mtod(m, struct ether_header *); 23792d586421SSepherosa Ziehau /* Check if hardware VLAN insertion is off. */ 23802d586421SSepherosa Ziehau if (eh->ether_type == htons(ETHERTYPE_VLAN)) { 23812d586421SSepherosa Ziehau offset = sizeof(struct ether_vlan_header); 23822d586421SSepherosa Ziehau m = m_pullup(m, offset); 23832d586421SSepherosa Ziehau if (m == NULL) { 23842d586421SSepherosa Ziehau *m_head = NULL; 23852d586421SSepherosa Ziehau return (ENOBUFS); 23862d586421SSepherosa Ziehau } 23872d586421SSepherosa Ziehau } 23882d586421SSepherosa Ziehau m = m_pullup(m, offset + sizeof(struct ip)); 23892d586421SSepherosa Ziehau if (m == NULL) { 23902d586421SSepherosa Ziehau *m_head = NULL; 23912d586421SSepherosa Ziehau return (ENOBUFS); 23922d586421SSepherosa Ziehau } 23932d586421SSepherosa Ziehau ip = (struct ip *)(mtod(m, char *) + offset); 23942d586421SSepherosa Ziehau offset += (ip->ip_hl << 2); 23952d586421SSepherosa Ziehau tcp_offset = offset; 23962d586421SSepherosa Ziehau /* 23972d586421SSepherosa Ziehau * It seems that Yukon II has Tx checksum offload bug for 23982d586421SSepherosa Ziehau * small TCP packets that's less than 60 bytes in size 23992d586421SSepherosa Ziehau * (e.g. TCP window probe packet, pure ACK packet). 24002d586421SSepherosa Ziehau * Common work around like padding with zeros to make the 24012d586421SSepherosa Ziehau * frame minimum ethernet frame size didn't work at all. 24022d586421SSepherosa Ziehau * Instead of disabling checksum offload completely we 24032d586421SSepherosa Ziehau * resort to S/W checksum routine when we encounter short 24042d586421SSepherosa Ziehau * TCP frames. 24052d586421SSepherosa Ziehau * Short UDP packets appear to be handled correctly by 24062d586421SSepherosa Ziehau * Yukon II. 24072d586421SSepherosa Ziehau */ 24082d586421SSepherosa Ziehau if (m->m_pkthdr.len < MSK_MIN_FRAMELEN && 24092d586421SSepherosa Ziehau (m->m_pkthdr.csum_flags & CSUM_TCP) != 0) { 24102d586421SSepherosa Ziehau uint16_t csum; 24112d586421SSepherosa Ziehau 24122d586421SSepherosa Ziehau csum = in_cksum_skip(m, ntohs(ip->ip_len) + offset - 24132d586421SSepherosa Ziehau (ip->ip_hl << 2), offset); 24142d586421SSepherosa Ziehau *(uint16_t *)(m->m_data + offset + 24152d586421SSepherosa Ziehau m->m_pkthdr.csum_data) = csum; 24162d586421SSepherosa Ziehau m->m_pkthdr.csum_flags &= ~CSUM_TCP; 24172d586421SSepherosa Ziehau } 24182d586421SSepherosa Ziehau *m_head = m; 24192d586421SSepherosa Ziehau } 24202d586421SSepherosa Ziehau 24212d586421SSepherosa Ziehau prod = sc_if->msk_cdata.msk_tx_prod; 24222d586421SSepherosa Ziehau txd = &sc_if->msk_cdata.msk_txdesc[prod]; 24232d586421SSepherosa Ziehau txd_last = txd; 24242d586421SSepherosa Ziehau map = txd->tx_dmamap; 2425def0e148SSepherosa Ziehau 2426def0e148SSepherosa Ziehau error = bus_dmamap_load_mbuf_defrag(sc_if->msk_cdata.msk_tx_tag, map, 2427def0e148SSepherosa Ziehau m_head, txsegs, maxsegs, &nsegs, BUS_DMA_NOWAIT); 2428def0e148SSepherosa Ziehau if (error) { 24292d586421SSepherosa Ziehau m_freem(*m_head); 24302d586421SSepherosa Ziehau *m_head = NULL; 2431def0e148SSepherosa Ziehau return error; 24322d586421SSepherosa Ziehau } 2433def0e148SSepherosa Ziehau bus_dmamap_sync(sc_if->msk_cdata.msk_tx_tag, map, BUS_DMASYNC_PREWRITE); 24342d586421SSepherosa Ziehau 2435def0e148SSepherosa Ziehau m = *m_head; 24362d586421SSepherosa Ziehau control = 0; 24372d586421SSepherosa Ziehau tx_le = NULL; 24382d586421SSepherosa Ziehau 24392d586421SSepherosa Ziehau #ifdef notyet 24402d586421SSepherosa Ziehau /* Check if we have a VLAN tag to insert. */ 24412d586421SSepherosa Ziehau if ((m->m_flags & M_VLANTAG) != 0) { 24422d586421SSepherosa Ziehau tx_le = &sc_if->msk_rdata.msk_tx_ring[prod]; 24432d586421SSepherosa Ziehau tx_le->msk_addr = htole32(0); 24442d586421SSepherosa Ziehau tx_le->msk_control = htole32(OP_VLAN | HW_OWNER | 24452d586421SSepherosa Ziehau htons(m->m_pkthdr.ether_vtag)); 24462d586421SSepherosa Ziehau sc_if->msk_cdata.msk_tx_cnt++; 24472d586421SSepherosa Ziehau MSK_INC(prod, MSK_TX_RING_CNT); 24482d586421SSepherosa Ziehau control |= INS_VLAN; 24492d586421SSepherosa Ziehau } 24502d586421SSepherosa Ziehau #endif 24512d586421SSepherosa Ziehau /* Check if we have to handle checksum offload. */ 24522d586421SSepherosa Ziehau if (m->m_pkthdr.csum_flags & MSK_CSUM_FEATURES) { 24532d586421SSepherosa Ziehau tx_le = &sc_if->msk_rdata.msk_tx_ring[prod]; 24542d586421SSepherosa Ziehau tx_le->msk_addr = htole32(((tcp_offset + m->m_pkthdr.csum_data) 24552d586421SSepherosa Ziehau & 0xffff) | ((uint32_t)tcp_offset << 16)); 24562d586421SSepherosa Ziehau tx_le->msk_control = htole32(1 << 16 | (OP_TCPLISW | HW_OWNER)); 24572d586421SSepherosa Ziehau control = CALSUM | WR_SUM | INIT_SUM | LOCK_SUM; 24582d586421SSepherosa Ziehau if ((m->m_pkthdr.csum_flags & CSUM_UDP) != 0) 24592d586421SSepherosa Ziehau control |= UDPTCP; 24602d586421SSepherosa Ziehau sc_if->msk_cdata.msk_tx_cnt++; 24612d586421SSepherosa Ziehau MSK_INC(prod, MSK_TX_RING_CNT); 24622d586421SSepherosa Ziehau } 24632d586421SSepherosa Ziehau 24642d586421SSepherosa Ziehau si = prod; 24652d586421SSepherosa Ziehau tx_le = &sc_if->msk_rdata.msk_tx_ring[prod]; 24662d586421SSepherosa Ziehau tx_le->msk_addr = htole32(MSK_ADDR_LO(txsegs[0].ds_addr)); 24672d586421SSepherosa Ziehau tx_le->msk_control = htole32(txsegs[0].ds_len | control | 24682d586421SSepherosa Ziehau OP_PACKET); 24692d586421SSepherosa Ziehau sc_if->msk_cdata.msk_tx_cnt++; 24702d586421SSepherosa Ziehau MSK_INC(prod, MSK_TX_RING_CNT); 24712d586421SSepherosa Ziehau 2472def0e148SSepherosa Ziehau for (i = 1; i < nsegs; i++) { 24732d586421SSepherosa Ziehau tx_le = &sc_if->msk_rdata.msk_tx_ring[prod]; 24742d586421SSepherosa Ziehau tx_le->msk_addr = htole32(MSK_ADDR_LO(txsegs[i].ds_addr)); 24752d586421SSepherosa Ziehau tx_le->msk_control = htole32(txsegs[i].ds_len | control | 24762d586421SSepherosa Ziehau OP_BUFFER | HW_OWNER); 24772d586421SSepherosa Ziehau sc_if->msk_cdata.msk_tx_cnt++; 24782d586421SSepherosa Ziehau MSK_INC(prod, MSK_TX_RING_CNT); 24792d586421SSepherosa Ziehau } 24802d586421SSepherosa Ziehau /* Update producer index. */ 24812d586421SSepherosa Ziehau sc_if->msk_cdata.msk_tx_prod = prod; 24822d586421SSepherosa Ziehau 24832d586421SSepherosa Ziehau /* Set EOP on the last desciptor. */ 24842d586421SSepherosa Ziehau prod = (prod + MSK_TX_RING_CNT - 1) % MSK_TX_RING_CNT; 24852d586421SSepherosa Ziehau tx_le = &sc_if->msk_rdata.msk_tx_ring[prod]; 24862d586421SSepherosa Ziehau tx_le->msk_control |= htole32(EOP); 24872d586421SSepherosa Ziehau 24882d586421SSepherosa Ziehau /* Turn the first descriptor ownership to hardware. */ 24892d586421SSepherosa Ziehau tx_le = &sc_if->msk_rdata.msk_tx_ring[si]; 24902d586421SSepherosa Ziehau tx_le->msk_control |= htole32(HW_OWNER); 24912d586421SSepherosa Ziehau 24922d586421SSepherosa Ziehau txd = &sc_if->msk_cdata.msk_txdesc[prod]; 24932d586421SSepherosa Ziehau map = txd_last->tx_dmamap; 24942d586421SSepherosa Ziehau txd_last->tx_dmamap = txd->tx_dmamap; 24952d586421SSepherosa Ziehau txd->tx_dmamap = map; 24962d586421SSepherosa Ziehau txd->tx_m = m; 24972d586421SSepherosa Ziehau 24982d586421SSepherosa Ziehau return (0); 24992d586421SSepherosa Ziehau } 25002d586421SSepherosa Ziehau 25012d586421SSepherosa Ziehau static void 25022d586421SSepherosa Ziehau msk_start(struct ifnet *ifp) 25032d586421SSepherosa Ziehau { 25042d586421SSepherosa Ziehau struct msk_if_softc *sc_if; 25052d586421SSepherosa Ziehau struct mbuf *m_head; 25062d586421SSepherosa Ziehau int enq; 25072d586421SSepherosa Ziehau 25082d586421SSepherosa Ziehau sc_if = ifp->if_softc; 25092d586421SSepherosa Ziehau 25102d586421SSepherosa Ziehau ASSERT_SERIALIZED(ifp->if_serializer); 25112d586421SSepherosa Ziehau 25129db4b353SSepherosa Ziehau if (!sc_if->msk_link) { 25139db4b353SSepherosa Ziehau ifq_purge(&ifp->if_snd); 25149db4b353SSepherosa Ziehau return; 25159db4b353SSepherosa Ziehau } 25169db4b353SSepherosa Ziehau 25179db4b353SSepherosa Ziehau if ((ifp->if_flags & (IFF_RUNNING | IFF_OACTIVE)) != IFF_RUNNING) 25182d586421SSepherosa Ziehau return; 25192d586421SSepherosa Ziehau 2520def0e148SSepherosa Ziehau enq = 0; 2521def0e148SSepherosa Ziehau while (!ifq_is_empty(&ifp->if_snd)) { 2522def0e148SSepherosa Ziehau if (MSK_IS_OACTIVE(sc_if)) { 2523def0e148SSepherosa Ziehau ifp->if_flags |= IFF_OACTIVE; 2524def0e148SSepherosa Ziehau break; 2525def0e148SSepherosa Ziehau } 2526def0e148SSepherosa Ziehau 25272d586421SSepherosa Ziehau m_head = ifq_dequeue(&ifp->if_snd, NULL); 25282d586421SSepherosa Ziehau if (m_head == NULL) 25292d586421SSepherosa Ziehau break; 25302d586421SSepherosa Ziehau 25312d586421SSepherosa Ziehau /* 25322d586421SSepherosa Ziehau * Pack the data into the transmit ring. If we 25332d586421SSepherosa Ziehau * don't have room, set the OACTIVE flag and wait 25342d586421SSepherosa Ziehau * for the NIC to drain the ring. 25352d586421SSepherosa Ziehau */ 25362d586421SSepherosa Ziehau if (msk_encap(sc_if, &m_head) != 0) { 25375bda51d4SSepherosa Ziehau ifp->if_oerrors++; 2538def0e148SSepherosa Ziehau if (sc_if->msk_cdata.msk_tx_cnt == 0) { 2539def0e148SSepherosa Ziehau continue; 2540def0e148SSepherosa Ziehau } else { 25412d586421SSepherosa Ziehau ifp->if_flags |= IFF_OACTIVE; 25422d586421SSepherosa Ziehau break; 25432d586421SSepherosa Ziehau } 2544def0e148SSepherosa Ziehau } 2545def0e148SSepherosa Ziehau enq = 1; 25462d586421SSepherosa Ziehau 25472d586421SSepherosa Ziehau /* 25482d586421SSepherosa Ziehau * If there's a BPF listener, bounce a copy of this frame 25492d586421SSepherosa Ziehau * to him. 25502d586421SSepherosa Ziehau */ 25512d586421SSepherosa Ziehau BPF_MTAP(ifp, m_head); 25522d586421SSepherosa Ziehau } 25532d586421SSepherosa Ziehau 2554def0e148SSepherosa Ziehau if (enq) { 25552d586421SSepherosa Ziehau /* Transmit */ 25562d586421SSepherosa Ziehau CSR_WRITE_2(sc_if->msk_softc, 25572d586421SSepherosa Ziehau Y2_PREF_Q_ADDR(sc_if->msk_txq, PREF_UNIT_PUT_IDX_REG), 25582d586421SSepherosa Ziehau sc_if->msk_cdata.msk_tx_prod); 25592d586421SSepherosa Ziehau 25602d586421SSepherosa Ziehau /* Set a timeout in case the chip goes out to lunch. */ 25612d586421SSepherosa Ziehau ifp->if_timer = MSK_TX_TIMEOUT; 25622d586421SSepherosa Ziehau } 25632d586421SSepherosa Ziehau } 25642d586421SSepherosa Ziehau 25652d586421SSepherosa Ziehau static void 25662d586421SSepherosa Ziehau msk_watchdog(struct ifnet *ifp) 25672d586421SSepherosa Ziehau { 25682d586421SSepherosa Ziehau struct msk_if_softc *sc_if = ifp->if_softc; 25692d586421SSepherosa Ziehau uint32_t ridx; 25702d586421SSepherosa Ziehau int idx; 25712d586421SSepherosa Ziehau 25722d586421SSepherosa Ziehau ASSERT_SERIALIZED(ifp->if_serializer); 25732d586421SSepherosa Ziehau 25742d586421SSepherosa Ziehau if (sc_if->msk_link == 0) { 25752d586421SSepherosa Ziehau if (bootverbose) 25762d586421SSepherosa Ziehau if_printf(sc_if->msk_ifp, "watchdog timeout " 25772d586421SSepherosa Ziehau "(missed link)\n"); 25782d586421SSepherosa Ziehau ifp->if_oerrors++; 25792d586421SSepherosa Ziehau msk_init(sc_if); 25802d586421SSepherosa Ziehau return; 25812d586421SSepherosa Ziehau } 25822d586421SSepherosa Ziehau 25832d586421SSepherosa Ziehau /* 25842d586421SSepherosa Ziehau * Reclaim first as there is a possibility of losing Tx completion 25852d586421SSepherosa Ziehau * interrupts. 25862d586421SSepherosa Ziehau */ 25872d586421SSepherosa Ziehau ridx = sc_if->msk_port == MSK_PORT_A ? STAT_TXA1_RIDX : STAT_TXA2_RIDX; 25882d586421SSepherosa Ziehau idx = CSR_READ_2(sc_if->msk_softc, ridx); 25892d586421SSepherosa Ziehau if (sc_if->msk_cdata.msk_tx_cons != idx) { 25902d586421SSepherosa Ziehau msk_txeof(sc_if, idx); 25912d586421SSepherosa Ziehau if (sc_if->msk_cdata.msk_tx_cnt == 0) { 25922d586421SSepherosa Ziehau if_printf(ifp, "watchdog timeout (missed Tx interrupts) " 25932d586421SSepherosa Ziehau "-- recovering\n"); 25942d586421SSepherosa Ziehau if (!ifq_is_empty(&ifp->if_snd)) 25959db4b353SSepherosa Ziehau if_devstart(ifp); 25962d586421SSepherosa Ziehau return; 25972d586421SSepherosa Ziehau } 25982d586421SSepherosa Ziehau } 25992d586421SSepherosa Ziehau 26002d586421SSepherosa Ziehau if_printf(ifp, "watchdog timeout\n"); 26012d586421SSepherosa Ziehau ifp->if_oerrors++; 26022d586421SSepherosa Ziehau msk_init(sc_if); 26032d586421SSepherosa Ziehau if (!ifq_is_empty(&ifp->if_snd)) 26049db4b353SSepherosa Ziehau if_devstart(ifp); 26052d586421SSepherosa Ziehau } 26062d586421SSepherosa Ziehau 26072d586421SSepherosa Ziehau static int 26082d586421SSepherosa Ziehau mskc_shutdown(device_t dev) 26092d586421SSepherosa Ziehau { 26102d586421SSepherosa Ziehau struct msk_softc *sc = device_get_softc(dev); 26112d586421SSepherosa Ziehau int i; 26122d586421SSepherosa Ziehau 26132d586421SSepherosa Ziehau lwkt_serialize_enter(&sc->msk_serializer); 26142d586421SSepherosa Ziehau 26152d586421SSepherosa Ziehau for (i = 0; i < sc->msk_num_port; i++) { 26162d586421SSepherosa Ziehau if (sc->msk_if[i] != NULL) 26172d586421SSepherosa Ziehau msk_stop(sc->msk_if[i]); 26182d586421SSepherosa Ziehau } 26192d586421SSepherosa Ziehau 26202d586421SSepherosa Ziehau /* Disable all interrupts. */ 26212d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_IMSK, 0); 26222d586421SSepherosa Ziehau CSR_READ_4(sc, B0_IMSK); 26232d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_HWE_IMSK, 0); 26242d586421SSepherosa Ziehau CSR_READ_4(sc, B0_HWE_IMSK); 26252d586421SSepherosa Ziehau 26262d586421SSepherosa Ziehau /* Put hardware reset. */ 26272d586421SSepherosa Ziehau CSR_WRITE_2(sc, B0_CTST, CS_RST_SET); 26282d586421SSepherosa Ziehau 26292d586421SSepherosa Ziehau lwkt_serialize_exit(&sc->msk_serializer); 26302d586421SSepherosa Ziehau return (0); 26312d586421SSepherosa Ziehau } 26322d586421SSepherosa Ziehau 26332d586421SSepherosa Ziehau static int 26342d586421SSepherosa Ziehau mskc_suspend(device_t dev) 26352d586421SSepherosa Ziehau { 26362d586421SSepherosa Ziehau struct msk_softc *sc = device_get_softc(dev); 26372d586421SSepherosa Ziehau int i; 26382d586421SSepherosa Ziehau 26392d586421SSepherosa Ziehau lwkt_serialize_enter(&sc->msk_serializer); 26402d586421SSepherosa Ziehau 26412d586421SSepherosa Ziehau for (i = 0; i < sc->msk_num_port; i++) { 26422d586421SSepherosa Ziehau if (sc->msk_if[i] != NULL && sc->msk_if[i]->msk_ifp != NULL && 26432d586421SSepherosa Ziehau ((sc->msk_if[i]->msk_ifp->if_flags & IFF_RUNNING) != 0)) 26442d586421SSepherosa Ziehau msk_stop(sc->msk_if[i]); 26452d586421SSepherosa Ziehau } 26462d586421SSepherosa Ziehau 26472d586421SSepherosa Ziehau /* Disable all interrupts. */ 26482d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_IMSK, 0); 26492d586421SSepherosa Ziehau CSR_READ_4(sc, B0_IMSK); 26502d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_HWE_IMSK, 0); 26512d586421SSepherosa Ziehau CSR_READ_4(sc, B0_HWE_IMSK); 26522d586421SSepherosa Ziehau 26532d586421SSepherosa Ziehau mskc_phy_power(sc, MSK_PHY_POWERDOWN); 26542d586421SSepherosa Ziehau 26552d586421SSepherosa Ziehau /* Put hardware reset. */ 26562d586421SSepherosa Ziehau CSR_WRITE_2(sc, B0_CTST, CS_RST_SET); 26572d586421SSepherosa Ziehau sc->msk_suspended = 1; 26582d586421SSepherosa Ziehau 26592d586421SSepherosa Ziehau lwkt_serialize_exit(&sc->msk_serializer); 26602d586421SSepherosa Ziehau 26612d586421SSepherosa Ziehau return (0); 26622d586421SSepherosa Ziehau } 26632d586421SSepherosa Ziehau 26642d586421SSepherosa Ziehau static int 26652d586421SSepherosa Ziehau mskc_resume(device_t dev) 26662d586421SSepherosa Ziehau { 26672d586421SSepherosa Ziehau struct msk_softc *sc = device_get_softc(dev); 26682d586421SSepherosa Ziehau int i; 26692d586421SSepherosa Ziehau 26702d586421SSepherosa Ziehau lwkt_serialize_enter(&sc->msk_serializer); 26712d586421SSepherosa Ziehau 26722d586421SSepherosa Ziehau mskc_reset(sc); 26732d586421SSepherosa Ziehau for (i = 0; i < sc->msk_num_port; i++) { 26742d586421SSepherosa Ziehau if (sc->msk_if[i] != NULL && sc->msk_if[i]->msk_ifp != NULL && 26752d586421SSepherosa Ziehau ((sc->msk_if[i]->msk_ifp->if_flags & IFF_UP) != 0)) 26762d586421SSepherosa Ziehau msk_init(sc->msk_if[i]); 26772d586421SSepherosa Ziehau } 26782d586421SSepherosa Ziehau sc->msk_suspended = 0; 26792d586421SSepherosa Ziehau 26802d586421SSepherosa Ziehau lwkt_serialize_exit(&sc->msk_serializer); 26812d586421SSepherosa Ziehau 26822d586421SSepherosa Ziehau return (0); 26832d586421SSepherosa Ziehau } 26842d586421SSepherosa Ziehau 26852d586421SSepherosa Ziehau static void 26860ae155c2SSepherosa Ziehau msk_rxeof(struct msk_if_softc *sc_if, uint32_t status, int len, 26870ae155c2SSepherosa Ziehau struct mbuf_chain *chain) 26882d586421SSepherosa Ziehau { 26892d586421SSepherosa Ziehau struct mbuf *m; 26902d586421SSepherosa Ziehau struct ifnet *ifp; 26912d586421SSepherosa Ziehau struct msk_rxdesc *rxd; 26922d586421SSepherosa Ziehau int cons, rxlen; 26932d586421SSepherosa Ziehau 26942d586421SSepherosa Ziehau ifp = sc_if->msk_ifp; 26952d586421SSepherosa Ziehau 26962d586421SSepherosa Ziehau cons = sc_if->msk_cdata.msk_rx_cons; 26972d586421SSepherosa Ziehau do { 26982d586421SSepherosa Ziehau rxlen = status >> 16; 26992d586421SSepherosa Ziehau if ((status & GMR_FS_VLAN) != 0 && 27002d586421SSepherosa Ziehau (ifp->if_capenable & IFCAP_VLAN_HWTAGGING) != 0) 27012d586421SSepherosa Ziehau rxlen -= EVL_ENCAPLEN; 27022d586421SSepherosa Ziehau if (len > sc_if->msk_framesize || 27032d586421SSepherosa Ziehau ((status & GMR_FS_ANY_ERR) != 0) || 27042d586421SSepherosa Ziehau ((status & GMR_FS_RX_OK) == 0) || (rxlen != len)) { 27052d586421SSepherosa Ziehau /* Don't count flow-control packet as errors. */ 27062d586421SSepherosa Ziehau if ((status & GMR_FS_GOOD_FC) == 0) 27072d586421SSepherosa Ziehau ifp->if_ierrors++; 27082d586421SSepherosa Ziehau msk_discard_rxbuf(sc_if, cons); 27092d586421SSepherosa Ziehau break; 27102d586421SSepherosa Ziehau } 27112d586421SSepherosa Ziehau rxd = &sc_if->msk_cdata.msk_rxdesc[cons]; 27122d586421SSepherosa Ziehau m = rxd->rx_m; 27132499c577SSepherosa Ziehau if (msk_newbuf(sc_if, cons, 0) != 0) { 27142d586421SSepherosa Ziehau ifp->if_iqdrops++; 27152d586421SSepherosa Ziehau /* Reuse old buffer. */ 27162d586421SSepherosa Ziehau msk_discard_rxbuf(sc_if, cons); 27172d586421SSepherosa Ziehau break; 27182d586421SSepherosa Ziehau } 27192d586421SSepherosa Ziehau m->m_pkthdr.rcvif = ifp; 27202d586421SSepherosa Ziehau m->m_pkthdr.len = m->m_len = len; 27212d586421SSepherosa Ziehau ifp->if_ipackets++; 27222d586421SSepherosa Ziehau #ifdef notyet 27232d586421SSepherosa Ziehau /* Check for VLAN tagged packets. */ 27242d586421SSepherosa Ziehau if ((status & GMR_FS_VLAN) != 0 && 27252d586421SSepherosa Ziehau (ifp->if_capenable & IFCAP_VLAN_HWTAGGING) != 0) { 27262d586421SSepherosa Ziehau m->m_pkthdr.ether_vtag = sc_if->msk_vtag; 27272d586421SSepherosa Ziehau m->m_flags |= M_VLANTAG; 27282d586421SSepherosa Ziehau } 27292d586421SSepherosa Ziehau #endif 27300ae155c2SSepherosa Ziehau 27312eb0d069SSepherosa Ziehau ether_input_chain(ifp, m, NULL, chain); 27322d586421SSepherosa Ziehau } while (0); 27332d586421SSepherosa Ziehau 27342d586421SSepherosa Ziehau MSK_INC(sc_if->msk_cdata.msk_rx_cons, MSK_RX_RING_CNT); 27352d586421SSepherosa Ziehau MSK_INC(sc_if->msk_cdata.msk_rx_prod, MSK_RX_RING_CNT); 27362d586421SSepherosa Ziehau } 27372d586421SSepherosa Ziehau 27382d586421SSepherosa Ziehau #ifdef MSK_JUMBO 27392d586421SSepherosa Ziehau static void 27402d586421SSepherosa Ziehau msk_jumbo_rxeof(struct msk_if_softc *sc_if, uint32_t status, int len) 27412d586421SSepherosa Ziehau { 27422d586421SSepherosa Ziehau struct mbuf *m; 27432d586421SSepherosa Ziehau struct ifnet *ifp; 27442d586421SSepherosa Ziehau struct msk_rxdesc *jrxd; 27452d586421SSepherosa Ziehau int cons, rxlen; 27462d586421SSepherosa Ziehau 27472d586421SSepherosa Ziehau ifp = sc_if->msk_ifp; 27482d586421SSepherosa Ziehau 27492d586421SSepherosa Ziehau MSK_IF_LOCK_ASSERT(sc_if); 27502d586421SSepherosa Ziehau 27512d586421SSepherosa Ziehau cons = sc_if->msk_cdata.msk_rx_cons; 27522d586421SSepherosa Ziehau do { 27532d586421SSepherosa Ziehau rxlen = status >> 16; 27542d586421SSepherosa Ziehau if ((status & GMR_FS_VLAN) != 0 && 27552d586421SSepherosa Ziehau (ifp->if_capenable & IFCAP_VLAN_HWTAGGING) != 0) 27562d586421SSepherosa Ziehau rxlen -= ETHER_VLAN_ENCAP_LEN; 27572d586421SSepherosa Ziehau if (len > sc_if->msk_framesize || 27582d586421SSepherosa Ziehau ((status & GMR_FS_ANY_ERR) != 0) || 27592d586421SSepherosa Ziehau ((status & GMR_FS_RX_OK) == 0) || (rxlen != len)) { 27602d586421SSepherosa Ziehau /* Don't count flow-control packet as errors. */ 27612d586421SSepherosa Ziehau if ((status & GMR_FS_GOOD_FC) == 0) 27622d586421SSepherosa Ziehau ifp->if_ierrors++; 27632d586421SSepherosa Ziehau msk_discard_jumbo_rxbuf(sc_if, cons); 27642d586421SSepherosa Ziehau break; 27652d586421SSepherosa Ziehau } 27662d586421SSepherosa Ziehau jrxd = &sc_if->msk_cdata.msk_jumbo_rxdesc[cons]; 27672d586421SSepherosa Ziehau m = jrxd->rx_m; 27682d586421SSepherosa Ziehau if (msk_jumbo_newbuf(sc_if, cons) != 0) { 27692d586421SSepherosa Ziehau ifp->if_iqdrops++; 27702d586421SSepherosa Ziehau /* Reuse old buffer. */ 27712d586421SSepherosa Ziehau msk_discard_jumbo_rxbuf(sc_if, cons); 27722d586421SSepherosa Ziehau break; 27732d586421SSepherosa Ziehau } 27742d586421SSepherosa Ziehau m->m_pkthdr.rcvif = ifp; 27752d586421SSepherosa Ziehau m->m_pkthdr.len = m->m_len = len; 27762d586421SSepherosa Ziehau ifp->if_ipackets++; 27772d586421SSepherosa Ziehau /* Check for VLAN tagged packets. */ 27782d586421SSepherosa Ziehau if ((status & GMR_FS_VLAN) != 0 && 27792d586421SSepherosa Ziehau (ifp->if_capenable & IFCAP_VLAN_HWTAGGING) != 0) { 27802d586421SSepherosa Ziehau m->m_pkthdr.ether_vtag = sc_if->msk_vtag; 27812d586421SSepherosa Ziehau m->m_flags |= M_VLANTAG; 27822d586421SSepherosa Ziehau } 27832d586421SSepherosa Ziehau MSK_IF_UNLOCK(sc_if); 27842d586421SSepherosa Ziehau (*ifp->if_input)(ifp, m); 27852d586421SSepherosa Ziehau MSK_IF_LOCK(sc_if); 27862d586421SSepherosa Ziehau } while (0); 27872d586421SSepherosa Ziehau 27882d586421SSepherosa Ziehau MSK_INC(sc_if->msk_cdata.msk_rx_cons, MSK_JUMBO_RX_RING_CNT); 27892d586421SSepherosa Ziehau MSK_INC(sc_if->msk_cdata.msk_rx_prod, MSK_JUMBO_RX_RING_CNT); 27902d586421SSepherosa Ziehau } 27912d586421SSepherosa Ziehau #endif 27922d586421SSepherosa Ziehau 27932d586421SSepherosa Ziehau static void 27942d586421SSepherosa Ziehau msk_txeof(struct msk_if_softc *sc_if, int idx) 27952d586421SSepherosa Ziehau { 27962d586421SSepherosa Ziehau struct msk_txdesc *txd; 27972d586421SSepherosa Ziehau struct msk_tx_desc *cur_tx; 27982d586421SSepherosa Ziehau struct ifnet *ifp; 27992d586421SSepherosa Ziehau uint32_t control; 28002d586421SSepherosa Ziehau int cons, prog; 28012d586421SSepherosa Ziehau 28022d586421SSepherosa Ziehau ifp = sc_if->msk_ifp; 28032d586421SSepherosa Ziehau 28042d586421SSepherosa Ziehau /* 28052d586421SSepherosa Ziehau * Go through our tx ring and free mbufs for those 28062d586421SSepherosa Ziehau * frames that have been sent. 28072d586421SSepherosa Ziehau */ 28082d586421SSepherosa Ziehau cons = sc_if->msk_cdata.msk_tx_cons; 28092d586421SSepherosa Ziehau prog = 0; 28102d586421SSepherosa Ziehau for (; cons != idx; MSK_INC(cons, MSK_TX_RING_CNT)) { 28112d586421SSepherosa Ziehau if (sc_if->msk_cdata.msk_tx_cnt <= 0) 28122d586421SSepherosa Ziehau break; 28132d586421SSepherosa Ziehau prog++; 28142d586421SSepherosa Ziehau cur_tx = &sc_if->msk_rdata.msk_tx_ring[cons]; 28152d586421SSepherosa Ziehau control = le32toh(cur_tx->msk_control); 28162d586421SSepherosa Ziehau sc_if->msk_cdata.msk_tx_cnt--; 28172d586421SSepherosa Ziehau if ((control & EOP) == 0) 28182d586421SSepherosa Ziehau continue; 28192d586421SSepherosa Ziehau txd = &sc_if->msk_cdata.msk_txdesc[cons]; 28202d586421SSepherosa Ziehau bus_dmamap_unload(sc_if->msk_cdata.msk_tx_tag, txd->tx_dmamap); 28212d586421SSepherosa Ziehau 28222d586421SSepherosa Ziehau ifp->if_opackets++; 28232d586421SSepherosa Ziehau KASSERT(txd->tx_m != NULL, ("%s: freeing NULL mbuf!", 28242d586421SSepherosa Ziehau __func__)); 28252d586421SSepherosa Ziehau m_freem(txd->tx_m); 28262d586421SSepherosa Ziehau txd->tx_m = NULL; 28272d586421SSepherosa Ziehau } 28282d586421SSepherosa Ziehau 28292d586421SSepherosa Ziehau if (prog > 0) { 28302d586421SSepherosa Ziehau sc_if->msk_cdata.msk_tx_cons = cons; 2831def0e148SSepherosa Ziehau if (!MSK_IS_OACTIVE(sc_if)) 2832def0e148SSepherosa Ziehau ifp->if_flags &= ~IFF_OACTIVE; 28332d586421SSepherosa Ziehau if (sc_if->msk_cdata.msk_tx_cnt == 0) 28342d586421SSepherosa Ziehau ifp->if_timer = 0; 28352d586421SSepherosa Ziehau /* No need to sync LEs as we didn't update LEs. */ 28362d586421SSepherosa Ziehau } 28372d586421SSepherosa Ziehau } 28382d586421SSepherosa Ziehau 28392d586421SSepherosa Ziehau static void 28402d586421SSepherosa Ziehau msk_tick(void *xsc_if) 28412d586421SSepherosa Ziehau { 28422d586421SSepherosa Ziehau struct msk_if_softc *sc_if = xsc_if; 28432d586421SSepherosa Ziehau struct ifnet *ifp = &sc_if->arpcom.ac_if; 28442d586421SSepherosa Ziehau struct mii_data *mii; 28452d586421SSepherosa Ziehau 28462d586421SSepherosa Ziehau lwkt_serialize_enter(ifp->if_serializer); 28472d586421SSepherosa Ziehau 28482d586421SSepherosa Ziehau mii = device_get_softc(sc_if->msk_miibus); 28492d586421SSepherosa Ziehau 28502d586421SSepherosa Ziehau mii_tick(mii); 28512d586421SSepherosa Ziehau callout_reset(&sc_if->msk_tick_ch, hz, msk_tick, sc_if); 28522d586421SSepherosa Ziehau 28532d586421SSepherosa Ziehau lwkt_serialize_exit(ifp->if_serializer); 28542d586421SSepherosa Ziehau } 28552d586421SSepherosa Ziehau 28562d586421SSepherosa Ziehau static void 28572d586421SSepherosa Ziehau msk_intr_phy(struct msk_if_softc *sc_if) 28582d586421SSepherosa Ziehau { 28592d586421SSepherosa Ziehau uint16_t status; 28602d586421SSepherosa Ziehau 28612d586421SSepherosa Ziehau msk_phy_readreg(sc_if, PHY_ADDR_MARV, PHY_MARV_INT_STAT); 28622d586421SSepherosa Ziehau status = msk_phy_readreg(sc_if, PHY_ADDR_MARV, PHY_MARV_INT_STAT); 28632d586421SSepherosa Ziehau /* Handle FIFO Underrun/Overflow? */ 28642d586421SSepherosa Ziehau if (status & PHY_M_IS_FIFO_ERROR) { 28652d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 28662d586421SSepherosa Ziehau "PHY FIFO underrun/overflow.\n"); 28672d586421SSepherosa Ziehau } 28682d586421SSepherosa Ziehau } 28692d586421SSepherosa Ziehau 28702d586421SSepherosa Ziehau static void 28712d586421SSepherosa Ziehau msk_intr_gmac(struct msk_if_softc *sc_if) 28722d586421SSepherosa Ziehau { 28732d586421SSepherosa Ziehau struct msk_softc *sc; 28742d586421SSepherosa Ziehau uint8_t status; 28752d586421SSepherosa Ziehau 28762d586421SSepherosa Ziehau sc = sc_if->msk_softc; 28772d586421SSepherosa Ziehau status = CSR_READ_1(sc, MR_ADDR(sc_if->msk_port, GMAC_IRQ_SRC)); 28782d586421SSepherosa Ziehau 28792d586421SSepherosa Ziehau /* GMAC Rx FIFO overrun. */ 28802d586421SSepherosa Ziehau if ((status & GM_IS_RX_FF_OR) != 0) { 28812d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, RX_GMF_CTRL_T), 28822d586421SSepherosa Ziehau GMF_CLI_RX_FO); 28832d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, "Rx FIFO overrun!\n"); 28842d586421SSepherosa Ziehau } 28852d586421SSepherosa Ziehau /* GMAC Tx FIFO underrun. */ 28862d586421SSepherosa Ziehau if ((status & GM_IS_TX_FF_UR) != 0) { 28872d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, TX_GMF_CTRL_T), 28882d586421SSepherosa Ziehau GMF_CLI_TX_FU); 28892d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, "Tx FIFO underrun!\n"); 28902d586421SSepherosa Ziehau /* 28912d586421SSepherosa Ziehau * XXX 28922d586421SSepherosa Ziehau * In case of Tx underrun, we may need to flush/reset 28932d586421SSepherosa Ziehau * Tx MAC but that would also require resynchronization 28942d586421SSepherosa Ziehau * with status LEs. Reintializing status LEs would 28952d586421SSepherosa Ziehau * affect other port in dual MAC configuration so it 28962d586421SSepherosa Ziehau * should be avoided as possible as we can. 28972d586421SSepherosa Ziehau * Due to lack of documentation it's all vague guess but 28982d586421SSepherosa Ziehau * it needs more investigation. 28992d586421SSepherosa Ziehau */ 29002d586421SSepherosa Ziehau } 29012d586421SSepherosa Ziehau } 29022d586421SSepherosa Ziehau 29032d586421SSepherosa Ziehau static void 29042d586421SSepherosa Ziehau msk_handle_hwerr(struct msk_if_softc *sc_if, uint32_t status) 29052d586421SSepherosa Ziehau { 29062d586421SSepherosa Ziehau struct msk_softc *sc; 29072d586421SSepherosa Ziehau 29082d586421SSepherosa Ziehau sc = sc_if->msk_softc; 29092d586421SSepherosa Ziehau if ((status & Y2_IS_PAR_RD1) != 0) { 29102d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 29112d586421SSepherosa Ziehau "RAM buffer read parity error\n"); 29122d586421SSepherosa Ziehau /* Clear IRQ. */ 29132d586421SSepherosa Ziehau CSR_WRITE_2(sc, SELECT_RAM_BUFFER(sc_if->msk_port, B3_RI_CTRL), 29142d586421SSepherosa Ziehau RI_CLR_RD_PERR); 29152d586421SSepherosa Ziehau } 29162d586421SSepherosa Ziehau if ((status & Y2_IS_PAR_WR1) != 0) { 29172d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 29182d586421SSepherosa Ziehau "RAM buffer write parity error\n"); 29192d586421SSepherosa Ziehau /* Clear IRQ. */ 29202d586421SSepherosa Ziehau CSR_WRITE_2(sc, SELECT_RAM_BUFFER(sc_if->msk_port, B3_RI_CTRL), 29212d586421SSepherosa Ziehau RI_CLR_WR_PERR); 29222d586421SSepherosa Ziehau } 29232d586421SSepherosa Ziehau if ((status & Y2_IS_PAR_MAC1) != 0) { 29242d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, "Tx MAC parity error\n"); 29252d586421SSepherosa Ziehau /* Clear IRQ. */ 29262d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, TX_GMF_CTRL_T), 29272d586421SSepherosa Ziehau GMF_CLI_TX_PE); 29282d586421SSepherosa Ziehau } 29292d586421SSepherosa Ziehau if ((status & Y2_IS_PAR_RX1) != 0) { 29302d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, "Rx parity error\n"); 29312d586421SSepherosa Ziehau /* Clear IRQ. */ 29322d586421SSepherosa Ziehau CSR_WRITE_4(sc, Q_ADDR(sc_if->msk_rxq, Q_CSR), BMU_CLR_IRQ_PAR); 29332d586421SSepherosa Ziehau } 29342d586421SSepherosa Ziehau if ((status & (Y2_IS_TCP_TXS1 | Y2_IS_TCP_TXA1)) != 0) { 29352d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, "TCP segmentation error\n"); 29362d586421SSepherosa Ziehau /* Clear IRQ. */ 29372d586421SSepherosa Ziehau CSR_WRITE_4(sc, Q_ADDR(sc_if->msk_txq, Q_CSR), BMU_CLR_IRQ_TCP); 29382d586421SSepherosa Ziehau } 29392d586421SSepherosa Ziehau } 29402d586421SSepherosa Ziehau 29412d586421SSepherosa Ziehau static void 29422d586421SSepherosa Ziehau mskc_intr_hwerr(struct msk_softc *sc) 29432d586421SSepherosa Ziehau { 29442d586421SSepherosa Ziehau uint32_t status; 29452d586421SSepherosa Ziehau uint32_t tlphead[4]; 29462d586421SSepherosa Ziehau 29472d586421SSepherosa Ziehau status = CSR_READ_4(sc, B0_HWE_ISRC); 29482d586421SSepherosa Ziehau /* Time Stamp timer overflow. */ 29492d586421SSepherosa Ziehau if ((status & Y2_IS_TIST_OV) != 0) 29502d586421SSepherosa Ziehau CSR_WRITE_1(sc, GMAC_TI_ST_CTRL, GMT_ST_CLR_IRQ); 29512d586421SSepherosa Ziehau if ((status & Y2_IS_PCI_NEXP) != 0) { 29522d586421SSepherosa Ziehau /* 29532d586421SSepherosa Ziehau * PCI Express Error occured which is not described in PEX 29542d586421SSepherosa Ziehau * spec. 29552d586421SSepherosa Ziehau * This error is also mapped either to Master Abort( 29562d586421SSepherosa Ziehau * Y2_IS_MST_ERR) or Target Abort (Y2_IS_IRQ_STAT) bit and 29572d586421SSepherosa Ziehau * can only be cleared there. 29582d586421SSepherosa Ziehau */ 29592d586421SSepherosa Ziehau device_printf(sc->msk_dev, 29602d586421SSepherosa Ziehau "PCI Express protocol violation error\n"); 29612d586421SSepherosa Ziehau } 29622d586421SSepherosa Ziehau 29632d586421SSepherosa Ziehau if ((status & (Y2_IS_MST_ERR | Y2_IS_IRQ_STAT)) != 0) { 29642d586421SSepherosa Ziehau uint16_t v16; 29652d586421SSepherosa Ziehau 29662d586421SSepherosa Ziehau if ((status & Y2_IS_MST_ERR) != 0) 29672d586421SSepherosa Ziehau device_printf(sc->msk_dev, 29682d586421SSepherosa Ziehau "unexpected IRQ Status error\n"); 29692d586421SSepherosa Ziehau else 29702d586421SSepherosa Ziehau device_printf(sc->msk_dev, 29712d586421SSepherosa Ziehau "unexpected IRQ Master error\n"); 29722d586421SSepherosa Ziehau /* Reset all bits in the PCI status register. */ 29732d586421SSepherosa Ziehau v16 = pci_read_config(sc->msk_dev, PCIR_STATUS, 2); 29742d586421SSepherosa Ziehau CSR_WRITE_1(sc, B2_TST_CTRL1, TST_CFG_WRITE_ON); 29752d586421SSepherosa Ziehau pci_write_config(sc->msk_dev, PCIR_STATUS, v16 | 29762d586421SSepherosa Ziehau PCIM_STATUS_PERR | PCIM_STATUS_SERR | PCIM_STATUS_RMABORT | 29772d586421SSepherosa Ziehau PCIM_STATUS_RTABORT | PCIM_STATUS_PERRREPORT, 2); 29782d586421SSepherosa Ziehau CSR_WRITE_1(sc, B2_TST_CTRL1, TST_CFG_WRITE_OFF); 29792d586421SSepherosa Ziehau } 29802d586421SSepherosa Ziehau 29812d586421SSepherosa Ziehau /* Check for PCI Express Uncorrectable Error. */ 29822d586421SSepherosa Ziehau if ((status & Y2_IS_PCI_EXP) != 0) { 29832d586421SSepherosa Ziehau uint32_t v32; 29842d586421SSepherosa Ziehau 29852d586421SSepherosa Ziehau /* 29862d586421SSepherosa Ziehau * On PCI Express bus bridges are called root complexes (RC). 29872d586421SSepherosa Ziehau * PCI Express errors are recognized by the root complex too, 29882d586421SSepherosa Ziehau * which requests the system to handle the problem. After 29892d586421SSepherosa Ziehau * error occurence it may be that no access to the adapter 29902d586421SSepherosa Ziehau * may be performed any longer. 29912d586421SSepherosa Ziehau */ 29922d586421SSepherosa Ziehau 29932d586421SSepherosa Ziehau v32 = CSR_PCI_READ_4(sc, PEX_UNC_ERR_STAT); 29942d586421SSepherosa Ziehau if ((v32 & PEX_UNSUP_REQ) != 0) { 29952d586421SSepherosa Ziehau /* Ignore unsupported request error. */ 29962d586421SSepherosa Ziehau if (bootverbose) { 29972d586421SSepherosa Ziehau device_printf(sc->msk_dev, 29982d586421SSepherosa Ziehau "Uncorrectable PCI Express error\n"); 29992d586421SSepherosa Ziehau } 30002d586421SSepherosa Ziehau } 30012d586421SSepherosa Ziehau if ((v32 & (PEX_FATAL_ERRORS | PEX_POIS_TLP)) != 0) { 30022d586421SSepherosa Ziehau int i; 30032d586421SSepherosa Ziehau 30042d586421SSepherosa Ziehau /* Get TLP header form Log Registers. */ 30052d586421SSepherosa Ziehau for (i = 0; i < 4; i++) 30062d586421SSepherosa Ziehau tlphead[i] = CSR_PCI_READ_4(sc, 30072d586421SSepherosa Ziehau PEX_HEADER_LOG + i * 4); 30082d586421SSepherosa Ziehau /* Check for vendor defined broadcast message. */ 30092d586421SSepherosa Ziehau if (!(tlphead[0] == 0x73004001 && tlphead[1] == 0x7f)) { 30102d586421SSepherosa Ziehau sc->msk_intrhwemask &= ~Y2_IS_PCI_EXP; 30112d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_HWE_IMSK, 30122d586421SSepherosa Ziehau sc->msk_intrhwemask); 30132d586421SSepherosa Ziehau CSR_READ_4(sc, B0_HWE_IMSK); 30142d586421SSepherosa Ziehau } 30152d586421SSepherosa Ziehau } 30162d586421SSepherosa Ziehau /* Clear the interrupt. */ 30172d586421SSepherosa Ziehau CSR_WRITE_1(sc, B2_TST_CTRL1, TST_CFG_WRITE_ON); 30182d586421SSepherosa Ziehau CSR_PCI_WRITE_4(sc, PEX_UNC_ERR_STAT, 0xffffffff); 30192d586421SSepherosa Ziehau CSR_WRITE_1(sc, B2_TST_CTRL1, TST_CFG_WRITE_OFF); 30202d586421SSepherosa Ziehau } 30212d586421SSepherosa Ziehau 30222d586421SSepherosa Ziehau if ((status & Y2_HWE_L1_MASK) != 0 && sc->msk_if[MSK_PORT_A] != NULL) 30232d586421SSepherosa Ziehau msk_handle_hwerr(sc->msk_if[MSK_PORT_A], status); 30242d586421SSepherosa Ziehau if ((status & Y2_HWE_L2_MASK) != 0 && sc->msk_if[MSK_PORT_B] != NULL) 30252d586421SSepherosa Ziehau msk_handle_hwerr(sc->msk_if[MSK_PORT_B], status >> 8); 30262d586421SSepherosa Ziehau } 30272d586421SSepherosa Ziehau 30282d586421SSepherosa Ziehau static __inline void 30292d586421SSepherosa Ziehau msk_rxput(struct msk_if_softc *sc_if) 30302d586421SSepherosa Ziehau { 30312d586421SSepherosa Ziehau struct msk_softc *sc; 30322d586421SSepherosa Ziehau 30332d586421SSepherosa Ziehau sc = sc_if->msk_softc; 30342d586421SSepherosa Ziehau #ifdef MSK_JUMBO 30352d586421SSepherosa Ziehau if (sc_if->msk_framesize > (MCLBYTES - ETHER_HDR_LEN)) { 30362d586421SSepherosa Ziehau bus_dmamap_sync( 30372d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_rx_ring_tag, 30382d586421SSepherosa Ziehau sc_if->msk_cdata.msk_jumbo_rx_ring_map, 30392d586421SSepherosa Ziehau BUS_DMASYNC_PREWRITE); 30402d586421SSepherosa Ziehau } 3041c78f83cbSSepherosa Ziehau #endif 30422d586421SSepherosa Ziehau CSR_WRITE_2(sc, Y2_PREF_Q_ADDR(sc_if->msk_rxq, 30432d586421SSepherosa Ziehau PREF_UNIT_PUT_IDX_REG), sc_if->msk_cdata.msk_rx_prod); 30442d586421SSepherosa Ziehau } 30452d586421SSepherosa Ziehau 30462d586421SSepherosa Ziehau static int 30472d586421SSepherosa Ziehau mskc_handle_events(struct msk_softc *sc) 30482d586421SSepherosa Ziehau { 30492d586421SSepherosa Ziehau struct msk_if_softc *sc_if; 30502d586421SSepherosa Ziehau int rxput[2]; 30512d586421SSepherosa Ziehau struct msk_stat_desc *sd; 30522d586421SSepherosa Ziehau uint32_t control, status; 30532d586421SSepherosa Ziehau int cons, idx, len, port, rxprog; 3054a75a1559SSepherosa Ziehau struct mbuf_chain chain[MAXCPU]; 30552d586421SSepherosa Ziehau 30562d586421SSepherosa Ziehau idx = CSR_READ_2(sc, STAT_PUT_IDX); 30572d586421SSepherosa Ziehau if (idx == sc->msk_stat_cons) 30582d586421SSepherosa Ziehau return (0); 30592d586421SSepherosa Ziehau 30600ae155c2SSepherosa Ziehau ether_input_chain_init(chain); 30610ae155c2SSepherosa Ziehau 30622d586421SSepherosa Ziehau rxput[MSK_PORT_A] = rxput[MSK_PORT_B] = 0; 30632d586421SSepherosa Ziehau 30642d586421SSepherosa Ziehau rxprog = 0; 30652d586421SSepherosa Ziehau for (cons = sc->msk_stat_cons; cons != idx;) { 30662d586421SSepherosa Ziehau sd = &sc->msk_stat_ring[cons]; 30672d586421SSepherosa Ziehau control = le32toh(sd->msk_control); 30682d586421SSepherosa Ziehau if ((control & HW_OWNER) == 0) 30692d586421SSepherosa Ziehau break; 30702d586421SSepherosa Ziehau /* 30712d586421SSepherosa Ziehau * Marvell's FreeBSD driver updates status LE after clearing 30722d586421SSepherosa Ziehau * HW_OWNER. However we don't have a way to sync single LE 30732d586421SSepherosa Ziehau * with bus_dma(9) API. bus_dma(9) provides a way to sync 30742d586421SSepherosa Ziehau * an entire DMA map. So don't sync LE until we have a better 30752d586421SSepherosa Ziehau * way to sync LEs. 30762d586421SSepherosa Ziehau */ 30772d586421SSepherosa Ziehau control &= ~HW_OWNER; 30782d586421SSepherosa Ziehau sd->msk_control = htole32(control); 30792d586421SSepherosa Ziehau status = le32toh(sd->msk_status); 30802d586421SSepherosa Ziehau len = control & STLE_LEN_MASK; 30812d586421SSepherosa Ziehau port = (control >> 16) & 0x01; 30822d586421SSepherosa Ziehau sc_if = sc->msk_if[port]; 30832d586421SSepherosa Ziehau if (sc_if == NULL) { 30842d586421SSepherosa Ziehau device_printf(sc->msk_dev, "invalid port opcode " 30852d586421SSepherosa Ziehau "0x%08x\n", control & STLE_OP_MASK); 30862d586421SSepherosa Ziehau continue; 30872d586421SSepherosa Ziehau } 30882d586421SSepherosa Ziehau 30892d586421SSepherosa Ziehau switch (control & STLE_OP_MASK) { 30902d586421SSepherosa Ziehau case OP_RXVLAN: 30912d586421SSepherosa Ziehau sc_if->msk_vtag = ntohs(len); 30922d586421SSepherosa Ziehau break; 30932d586421SSepherosa Ziehau case OP_RXCHKSVLAN: 30942d586421SSepherosa Ziehau sc_if->msk_vtag = ntohs(len); 30952d586421SSepherosa Ziehau break; 30962d586421SSepherosa Ziehau case OP_RXSTAT: 30972d586421SSepherosa Ziehau #ifdef MSK_JUMBO 30982d586421SSepherosa Ziehau if (sc_if->msk_framesize > (MCLBYTES - ETHER_HDR_LEN)) 30992d586421SSepherosa Ziehau msk_jumbo_rxeof(sc_if, status, len); 31002d586421SSepherosa Ziehau else 31012d586421SSepherosa Ziehau #endif 31020ae155c2SSepherosa Ziehau msk_rxeof(sc_if, status, len, chain); 31032d586421SSepherosa Ziehau rxprog++; 31042d586421SSepherosa Ziehau /* 31052d586421SSepherosa Ziehau * Because there is no way to sync single Rx LE 31062d586421SSepherosa Ziehau * put the DMA sync operation off until the end of 31072d586421SSepherosa Ziehau * event processing. 31082d586421SSepherosa Ziehau */ 31092d586421SSepherosa Ziehau rxput[port]++; 31102d586421SSepherosa Ziehau /* Update prefetch unit if we've passed water mark. */ 31112d586421SSepherosa Ziehau if (rxput[port] >= sc_if->msk_cdata.msk_rx_putwm) { 31122d586421SSepherosa Ziehau msk_rxput(sc_if); 31132d586421SSepherosa Ziehau rxput[port] = 0; 31142d586421SSepherosa Ziehau } 31152d586421SSepherosa Ziehau break; 31162d586421SSepherosa Ziehau case OP_TXINDEXLE: 31172d586421SSepherosa Ziehau if (sc->msk_if[MSK_PORT_A] != NULL) { 31182d586421SSepherosa Ziehau msk_txeof(sc->msk_if[MSK_PORT_A], 31192d586421SSepherosa Ziehau status & STLE_TXA1_MSKL); 31202d586421SSepherosa Ziehau } 31212d586421SSepherosa Ziehau if (sc->msk_if[MSK_PORT_B] != NULL) { 31222d586421SSepherosa Ziehau msk_txeof(sc->msk_if[MSK_PORT_B], 31232d586421SSepherosa Ziehau ((status & STLE_TXA2_MSKL) >> 31242d586421SSepherosa Ziehau STLE_TXA2_SHIFTL) | 31252d586421SSepherosa Ziehau ((len & STLE_TXA2_MSKH) << 31262d586421SSepherosa Ziehau STLE_TXA2_SHIFTH)); 31272d586421SSepherosa Ziehau } 31282d586421SSepherosa Ziehau break; 31292d586421SSepherosa Ziehau default: 31302d586421SSepherosa Ziehau device_printf(sc->msk_dev, "unhandled opcode 0x%08x\n", 31312d586421SSepherosa Ziehau control & STLE_OP_MASK); 31322d586421SSepherosa Ziehau break; 31332d586421SSepherosa Ziehau } 31342d586421SSepherosa Ziehau MSK_INC(cons, MSK_STAT_RING_CNT); 31352d586421SSepherosa Ziehau if (rxprog > sc->msk_process_limit) 31362d586421SSepherosa Ziehau break; 31372d586421SSepherosa Ziehau } 31382d586421SSepherosa Ziehau 31390ae155c2SSepherosa Ziehau if (rxprog > 0) 31400ae155c2SSepherosa Ziehau ether_input_dispatch(chain); 31410ae155c2SSepherosa Ziehau 31422d586421SSepherosa Ziehau sc->msk_stat_cons = cons; 31432d586421SSepherosa Ziehau /* XXX We should sync status LEs here. See above notes. */ 31442d586421SSepherosa Ziehau 31452d586421SSepherosa Ziehau if (rxput[MSK_PORT_A] > 0) 31462d586421SSepherosa Ziehau msk_rxput(sc->msk_if[MSK_PORT_A]); 31472d586421SSepherosa Ziehau if (rxput[MSK_PORT_B] > 0) 31482d586421SSepherosa Ziehau msk_rxput(sc->msk_if[MSK_PORT_B]); 31492d586421SSepherosa Ziehau 31502d586421SSepherosa Ziehau return (sc->msk_stat_cons != CSR_READ_2(sc, STAT_PUT_IDX)); 31512d586421SSepherosa Ziehau } 31522d586421SSepherosa Ziehau 31532d586421SSepherosa Ziehau /* Legacy interrupt handler for shared interrupt. */ 31542d586421SSepherosa Ziehau static void 31552d586421SSepherosa Ziehau mskc_intr(void *xsc) 31562d586421SSepherosa Ziehau { 31572d586421SSepherosa Ziehau struct msk_softc *sc; 31582d586421SSepherosa Ziehau struct msk_if_softc *sc_if0, *sc_if1; 31592d586421SSepherosa Ziehau struct ifnet *ifp0, *ifp1; 31602d586421SSepherosa Ziehau uint32_t status; 31612d586421SSepherosa Ziehau 31622d586421SSepherosa Ziehau sc = xsc; 31632d586421SSepherosa Ziehau ASSERT_SERIALIZED(&sc->msk_serializer); 31642d586421SSepherosa Ziehau 31652d586421SSepherosa Ziehau /* Reading B0_Y2_SP_ISRC2 masks further interrupts. */ 31662d586421SSepherosa Ziehau status = CSR_READ_4(sc, B0_Y2_SP_ISRC2); 31672d586421SSepherosa Ziehau if (status == 0 || status == 0xffffffff || sc->msk_suspended != 0 || 31682d586421SSepherosa Ziehau (status & sc->msk_intrmask) == 0) { 31692d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_Y2_SP_ICR, 2); 31702d586421SSepherosa Ziehau return; 31712d586421SSepherosa Ziehau } 31722d586421SSepherosa Ziehau 31732d586421SSepherosa Ziehau sc_if0 = sc->msk_if[MSK_PORT_A]; 31742d586421SSepherosa Ziehau sc_if1 = sc->msk_if[MSK_PORT_B]; 31752d586421SSepherosa Ziehau ifp0 = ifp1 = NULL; 31762d586421SSepherosa Ziehau if (sc_if0 != NULL) 31772d586421SSepherosa Ziehau ifp0 = sc_if0->msk_ifp; 31782d586421SSepherosa Ziehau if (sc_if1 != NULL) 31792d586421SSepherosa Ziehau ifp1 = sc_if1->msk_ifp; 31802d586421SSepherosa Ziehau 31812d586421SSepherosa Ziehau if ((status & Y2_IS_IRQ_PHY1) != 0 && sc_if0 != NULL) 31822d586421SSepherosa Ziehau msk_intr_phy(sc_if0); 31832d586421SSepherosa Ziehau if ((status & Y2_IS_IRQ_PHY2) != 0 && sc_if1 != NULL) 31842d586421SSepherosa Ziehau msk_intr_phy(sc_if1); 31852d586421SSepherosa Ziehau if ((status & Y2_IS_IRQ_MAC1) != 0 && sc_if0 != NULL) 31862d586421SSepherosa Ziehau msk_intr_gmac(sc_if0); 31872d586421SSepherosa Ziehau if ((status & Y2_IS_IRQ_MAC2) != 0 && sc_if1 != NULL) 31882d586421SSepherosa Ziehau msk_intr_gmac(sc_if1); 31892d586421SSepherosa Ziehau if ((status & (Y2_IS_CHK_RX1 | Y2_IS_CHK_RX2)) != 0) { 31902d586421SSepherosa Ziehau device_printf(sc->msk_dev, "Rx descriptor error\n"); 31912d586421SSepherosa Ziehau sc->msk_intrmask &= ~(Y2_IS_CHK_RX1 | Y2_IS_CHK_RX2); 31922d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_IMSK, sc->msk_intrmask); 31932d586421SSepherosa Ziehau CSR_READ_4(sc, B0_IMSK); 31942d586421SSepherosa Ziehau } 31952d586421SSepherosa Ziehau if ((status & (Y2_IS_CHK_TXA1 | Y2_IS_CHK_TXA2)) != 0) { 31962d586421SSepherosa Ziehau device_printf(sc->msk_dev, "Tx descriptor error\n"); 31972d586421SSepherosa Ziehau sc->msk_intrmask &= ~(Y2_IS_CHK_TXA1 | Y2_IS_CHK_TXA2); 31982d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_IMSK, sc->msk_intrmask); 31992d586421SSepherosa Ziehau CSR_READ_4(sc, B0_IMSK); 32002d586421SSepherosa Ziehau } 32012d586421SSepherosa Ziehau if ((status & Y2_IS_HW_ERR) != 0) 32022d586421SSepherosa Ziehau mskc_intr_hwerr(sc); 32032d586421SSepherosa Ziehau 32042d586421SSepherosa Ziehau while (mskc_handle_events(sc) != 0) 32052d586421SSepherosa Ziehau ; 32062d586421SSepherosa Ziehau if ((status & Y2_IS_STAT_BMU) != 0) 32072d586421SSepherosa Ziehau CSR_WRITE_4(sc, STAT_CTRL, SC_STAT_CLR_IRQ); 32082d586421SSepherosa Ziehau 32092d586421SSepherosa Ziehau /* Reenable interrupts. */ 32102d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_Y2_SP_ICR, 2); 32112d586421SSepherosa Ziehau 32122d586421SSepherosa Ziehau if (ifp0 != NULL && (ifp0->if_flags & IFF_RUNNING) != 0 && 32132d586421SSepherosa Ziehau !ifq_is_empty(&ifp0->if_snd)) 32149db4b353SSepherosa Ziehau if_devstart(ifp0); 32152d586421SSepherosa Ziehau if (ifp1 != NULL && (ifp1->if_flags & IFF_RUNNING) != 0 && 32162d586421SSepherosa Ziehau !ifq_is_empty(&ifp1->if_snd)) 32179db4b353SSepherosa Ziehau if_devstart(ifp1); 32182d586421SSepherosa Ziehau } 32192d586421SSepherosa Ziehau 32202d586421SSepherosa Ziehau static void 32212d586421SSepherosa Ziehau msk_init(void *xsc) 32222d586421SSepherosa Ziehau { 32232d586421SSepherosa Ziehau struct msk_if_softc *sc_if = xsc; 32242d586421SSepherosa Ziehau struct msk_softc *sc = sc_if->msk_softc; 32252d586421SSepherosa Ziehau struct ifnet *ifp = sc_if->msk_ifp; 32262d586421SSepherosa Ziehau struct mii_data *mii; 32272d586421SSepherosa Ziehau uint16_t eaddr[ETHER_ADDR_LEN / 2]; 32282d586421SSepherosa Ziehau uint16_t gmac; 32292d586421SSepherosa Ziehau int error, i; 32302d586421SSepherosa Ziehau 32312d586421SSepherosa Ziehau ASSERT_SERIALIZED(ifp->if_serializer); 32322d586421SSepherosa Ziehau 32332d586421SSepherosa Ziehau mii = device_get_softc(sc_if->msk_miibus); 32342d586421SSepherosa Ziehau 32352d586421SSepherosa Ziehau error = 0; 32362d586421SSepherosa Ziehau /* Cancel pending I/O and free all Rx/Tx buffers. */ 32372d586421SSepherosa Ziehau msk_stop(sc_if); 32382d586421SSepherosa Ziehau 32392d586421SSepherosa Ziehau sc_if->msk_framesize = ifp->if_mtu + ETHER_HDR_LEN + EVL_ENCAPLEN; 32402d586421SSepherosa Ziehau if (sc_if->msk_framesize > MSK_MAX_FRAMELEN && 32412d586421SSepherosa Ziehau sc_if->msk_softc->msk_hw_id == CHIP_ID_YUKON_EC_U) { 32422d586421SSepherosa Ziehau /* 32432d586421SSepherosa Ziehau * In Yukon EC Ultra, TSO & checksum offload is not 32442d586421SSepherosa Ziehau * supported for jumbo frame. 32452d586421SSepherosa Ziehau */ 32462d586421SSepherosa Ziehau ifp->if_hwassist &= ~MSK_CSUM_FEATURES; 32472d586421SSepherosa Ziehau ifp->if_capenable &= ~IFCAP_TXCSUM; 32482d586421SSepherosa Ziehau } 32492d586421SSepherosa Ziehau 32502d586421SSepherosa Ziehau /* 32512d586421SSepherosa Ziehau * Initialize GMAC first. 32522d586421SSepherosa Ziehau * Without this initialization, Rx MAC did not work as expected 32532d586421SSepherosa Ziehau * and Rx MAC garbled status LEs and it resulted in out-of-order 32542d586421SSepherosa Ziehau * or duplicated frame delivery which in turn showed very poor 32552d586421SSepherosa Ziehau * Rx performance.(I had to write a packet analysis code that 32562d586421SSepherosa Ziehau * could be embeded in driver to diagnose this issue.) 32572d586421SSepherosa Ziehau * I've spent almost 2 months to fix this issue. If I have had 32582d586421SSepherosa Ziehau * datasheet for Yukon II I wouldn't have encountered this. :-( 32592d586421SSepherosa Ziehau */ 32602d586421SSepherosa Ziehau gmac = GM_GPCR_SPEED_100 | GM_GPCR_SPEED_1000 | GM_GPCR_DUP_FULL; 32612d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_GP_CTRL, gmac); 32622d586421SSepherosa Ziehau 32632d586421SSepherosa Ziehau /* Dummy read the Interrupt Source Register. */ 32642d586421SSepherosa Ziehau CSR_READ_1(sc, MR_ADDR(sc_if->msk_port, GMAC_IRQ_SRC)); 32652d586421SSepherosa Ziehau 32662d586421SSepherosa Ziehau /* Set MIB Clear Counter Mode. */ 32672d586421SSepherosa Ziehau gmac = GMAC_READ_2(sc, sc_if->msk_port, GM_PHY_ADDR); 32682d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_PHY_ADDR, gmac | GM_PAR_MIB_CLR); 32692d586421SSepherosa Ziehau /* Read all MIB Counters with Clear Mode set. */ 32702d586421SSepherosa Ziehau for (i = 0; i < GM_MIB_CNT_SIZE; i++) 32712d586421SSepherosa Ziehau GMAC_READ_2(sc, sc_if->msk_port, GM_MIB_CNT_BASE + 8 * i); 32722d586421SSepherosa Ziehau /* Clear MIB Clear Counter Mode. */ 32732d586421SSepherosa Ziehau gmac &= ~GM_PAR_MIB_CLR; 32742d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_PHY_ADDR, gmac); 32752d586421SSepherosa Ziehau 32762d586421SSepherosa Ziehau /* Disable FCS. */ 32772d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_RX_CTRL, GM_RXCR_CRC_DIS); 32782d586421SSepherosa Ziehau 32792d586421SSepherosa Ziehau /* Setup Transmit Control Register. */ 32802d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_TX_CTRL, TX_COL_THR(TX_COL_DEF)); 32812d586421SSepherosa Ziehau 32822d586421SSepherosa Ziehau /* Setup Transmit Flow Control Register. */ 32832d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_TX_FLOW_CTRL, 0xffff); 32842d586421SSepherosa Ziehau 32852d586421SSepherosa Ziehau /* Setup Transmit Parameter Register. */ 32862d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_TX_PARAM, 32872d586421SSepherosa Ziehau TX_JAM_LEN_VAL(TX_JAM_LEN_DEF) | TX_JAM_IPG_VAL(TX_JAM_IPG_DEF) | 32882d586421SSepherosa Ziehau TX_IPG_JAM_DATA(TX_IPG_JAM_DEF) | TX_BACK_OFF_LIM(TX_BOF_LIM_DEF)); 32892d586421SSepherosa Ziehau 32902d586421SSepherosa Ziehau gmac = DATA_BLIND_VAL(DATA_BLIND_DEF) | 32912d586421SSepherosa Ziehau GM_SMOD_VLAN_ENA | IPG_DATA_VAL(IPG_DATA_DEF); 32922d586421SSepherosa Ziehau 32932d586421SSepherosa Ziehau if (sc_if->msk_framesize > MSK_MAX_FRAMELEN) 32942d586421SSepherosa Ziehau gmac |= GM_SMOD_JUMBO_ENA; 32952d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_SERIAL_MODE, gmac); 32962d586421SSepherosa Ziehau 32972d586421SSepherosa Ziehau /* Set station address. */ 32982d586421SSepherosa Ziehau bcopy(IF_LLADDR(ifp), eaddr, ETHER_ADDR_LEN); 32992d586421SSepherosa Ziehau for (i = 0; i < ETHER_ADDR_LEN /2; i++) 33002d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_SRC_ADDR_1L + i * 4, 33012d586421SSepherosa Ziehau eaddr[i]); 33022d586421SSepherosa Ziehau for (i = 0; i < ETHER_ADDR_LEN /2; i++) 33032d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_SRC_ADDR_2L + i * 4, 33042d586421SSepherosa Ziehau eaddr[i]); 33052d586421SSepherosa Ziehau 33062d586421SSepherosa Ziehau /* Disable interrupts for counter overflows. */ 33072d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_TX_IRQ_MSK, 0); 33082d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_RX_IRQ_MSK, 0); 33092d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_TR_IRQ_MSK, 0); 33102d586421SSepherosa Ziehau 33112d586421SSepherosa Ziehau /* Configure Rx MAC FIFO. */ 33122d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, RX_GMF_CTRL_T), GMF_RST_SET); 33132d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, RX_GMF_CTRL_T), GMF_RST_CLR); 33142d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, RX_GMF_CTRL_T), 33152d586421SSepherosa Ziehau GMF_OPER_ON | GMF_RX_F_FL_ON); 33162d586421SSepherosa Ziehau 33172d586421SSepherosa Ziehau /* Set promiscuous mode. */ 33182d586421SSepherosa Ziehau msk_setpromisc(sc_if); 33192d586421SSepherosa Ziehau 33202d586421SSepherosa Ziehau /* Set multicast filter. */ 33212d586421SSepherosa Ziehau msk_setmulti(sc_if); 33222d586421SSepherosa Ziehau 33232d586421SSepherosa Ziehau /* Flush Rx MAC FIFO on any flow control or error. */ 33242d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, RX_GMF_FL_MSK), 33252d586421SSepherosa Ziehau GMR_FS_ANY_ERR); 33262d586421SSepherosa Ziehau 3327*8510fba4SSepherosa Ziehau /* 3328*8510fba4SSepherosa Ziehau * Set Rx FIFO flush threshold to 64 bytes 1 FIFO word 3329*8510fba4SSepherosa Ziehau * due to hardware hang on receipt of pause frames. 3330*8510fba4SSepherosa Ziehau */ 33312d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, RX_GMF_FL_THR), 3332*8510fba4SSepherosa Ziehau RX_GMF_FL_THR_DEF + 1); 33332d586421SSepherosa Ziehau 33342d586421SSepherosa Ziehau /* Configure Tx MAC FIFO. */ 33352d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, TX_GMF_CTRL_T), GMF_RST_SET); 33362d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, TX_GMF_CTRL_T), GMF_RST_CLR); 33372d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, TX_GMF_CTRL_T), GMF_OPER_ON); 33382d586421SSepherosa Ziehau 33392d586421SSepherosa Ziehau /* Configure hardware VLAN tag insertion/stripping. */ 33402d586421SSepherosa Ziehau msk_setvlan(sc_if, ifp); 33412d586421SSepherosa Ziehau 33422d586421SSepherosa Ziehau if (sc->msk_hw_id == CHIP_ID_YUKON_EC_U) { 33432d586421SSepherosa Ziehau /* Set Rx Pause threshould. */ 33442d586421SSepherosa Ziehau CSR_WRITE_1(sc, MR_ADDR(sc_if->msk_port, RX_GMF_LP_THR), 33452d586421SSepherosa Ziehau MSK_ECU_LLPP); 33462d586421SSepherosa Ziehau CSR_WRITE_1(sc, MR_ADDR(sc_if->msk_port, RX_GMF_UP_THR), 33472d586421SSepherosa Ziehau MSK_ECU_ULPP); 33482d586421SSepherosa Ziehau if (sc_if->msk_framesize > MSK_MAX_FRAMELEN) { 33492d586421SSepherosa Ziehau /* 33502d586421SSepherosa Ziehau * Set Tx GMAC FIFO Almost Empty Threshold. 33512d586421SSepherosa Ziehau */ 33522d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, TX_GMF_AE_THR), 33532d586421SSepherosa Ziehau MSK_ECU_JUMBO_WM << 16 | MSK_ECU_AE_THR); 33542d586421SSepherosa Ziehau /* Disable Store & Forward mode for Tx. */ 33552d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, TX_GMF_CTRL_T), 33562d586421SSepherosa Ziehau TX_JUMBO_ENA | TX_STFW_DIS); 33572d586421SSepherosa Ziehau } else { 33582d586421SSepherosa Ziehau /* Enable Store & Forward mode for Tx. */ 33592d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, TX_GMF_CTRL_T), 33602d586421SSepherosa Ziehau TX_JUMBO_DIS | TX_STFW_ENA); 33612d586421SSepherosa Ziehau } 33622d586421SSepherosa Ziehau } 33632d586421SSepherosa Ziehau 33642d586421SSepherosa Ziehau /* 33652d586421SSepherosa Ziehau * Disable Force Sync bit and Alloc bit in Tx RAM interface 33662d586421SSepherosa Ziehau * arbiter as we don't use Sync Tx queue. 33672d586421SSepherosa Ziehau */ 33682d586421SSepherosa Ziehau CSR_WRITE_1(sc, MR_ADDR(sc_if->msk_port, TXA_CTRL), 33692d586421SSepherosa Ziehau TXA_DIS_FSYNC | TXA_DIS_ALLOC | TXA_STOP_RC); 33702d586421SSepherosa Ziehau /* Enable the RAM Interface Arbiter. */ 33712d586421SSepherosa Ziehau CSR_WRITE_1(sc, MR_ADDR(sc_if->msk_port, TXA_CTRL), TXA_ENA_ARB); 33722d586421SSepherosa Ziehau 33732d586421SSepherosa Ziehau /* Setup RAM buffer. */ 33742d586421SSepherosa Ziehau msk_set_rambuffer(sc_if); 33752d586421SSepherosa Ziehau 33762d586421SSepherosa Ziehau /* Disable Tx sync Queue. */ 33772d586421SSepherosa Ziehau CSR_WRITE_1(sc, RB_ADDR(sc_if->msk_txsq, RB_CTRL), RB_RST_SET); 33782d586421SSepherosa Ziehau 33792d586421SSepherosa Ziehau /* Setup Tx Queue Bus Memory Interface. */ 33802d586421SSepherosa Ziehau CSR_WRITE_4(sc, Q_ADDR(sc_if->msk_txq, Q_CSR), BMU_CLR_RESET); 33812d586421SSepherosa Ziehau CSR_WRITE_4(sc, Q_ADDR(sc_if->msk_txq, Q_CSR), BMU_OPER_INIT); 33822d586421SSepherosa Ziehau CSR_WRITE_4(sc, Q_ADDR(sc_if->msk_txq, Q_CSR), BMU_FIFO_OP_ON); 33832d586421SSepherosa Ziehau CSR_WRITE_2(sc, Q_ADDR(sc_if->msk_txq, Q_WM), MSK_BMU_TX_WM); 33842d586421SSepherosa Ziehau if (sc->msk_hw_id == CHIP_ID_YUKON_EC_U && 33852d586421SSepherosa Ziehau sc->msk_hw_rev == CHIP_REV_YU_EC_U_A0) { 33862d586421SSepherosa Ziehau /* Fix for Yukon-EC Ultra: set BMU FIFO level */ 33872d586421SSepherosa Ziehau CSR_WRITE_2(sc, Q_ADDR(sc_if->msk_txq, Q_AL), MSK_ECU_TXFF_LEV); 33882d586421SSepherosa Ziehau } 33892d586421SSepherosa Ziehau 33902d586421SSepherosa Ziehau /* Setup Rx Queue Bus Memory Interface. */ 33912d586421SSepherosa Ziehau CSR_WRITE_4(sc, Q_ADDR(sc_if->msk_rxq, Q_CSR), BMU_CLR_RESET); 33922d586421SSepherosa Ziehau CSR_WRITE_4(sc, Q_ADDR(sc_if->msk_rxq, Q_CSR), BMU_OPER_INIT); 33932d586421SSepherosa Ziehau CSR_WRITE_4(sc, Q_ADDR(sc_if->msk_rxq, Q_CSR), BMU_FIFO_OP_ON); 33942d586421SSepherosa Ziehau CSR_WRITE_2(sc, Q_ADDR(sc_if->msk_rxq, Q_WM), MSK_BMU_RX_WM); 33952d586421SSepherosa Ziehau if (sc->msk_hw_id == CHIP_ID_YUKON_EC_U && 33962d586421SSepherosa Ziehau sc->msk_hw_rev >= CHIP_REV_YU_EC_U_A1) { 33972d586421SSepherosa Ziehau /* MAC Rx RAM Read is controlled by hardware. */ 33982d586421SSepherosa Ziehau CSR_WRITE_4(sc, Q_ADDR(sc_if->msk_rxq, Q_F), F_M_RX_RAM_DIS); 33992d586421SSepherosa Ziehau } 34002d586421SSepherosa Ziehau 34012d586421SSepherosa Ziehau msk_set_prefetch(sc, sc_if->msk_txq, 34022d586421SSepherosa Ziehau sc_if->msk_rdata.msk_tx_ring_paddr, MSK_TX_RING_CNT - 1); 34032d586421SSepherosa Ziehau msk_init_tx_ring(sc_if); 34042d586421SSepherosa Ziehau 34052d586421SSepherosa Ziehau /* Disable Rx checksum offload and RSS hash. */ 34062d586421SSepherosa Ziehau CSR_WRITE_4(sc, Q_ADDR(sc_if->msk_rxq, Q_CSR), 34072d586421SSepherosa Ziehau BMU_DIS_RX_CHKSUM | BMU_DIS_RX_RSS_HASH); 34082d586421SSepherosa Ziehau #ifdef MSK_JUMBO 34092d586421SSepherosa Ziehau if (sc_if->msk_framesize > (MCLBYTES - ETHER_HDR_LEN)) { 34102d586421SSepherosa Ziehau msk_set_prefetch(sc, sc_if->msk_rxq, 34112d586421SSepherosa Ziehau sc_if->msk_rdata.msk_jumbo_rx_ring_paddr, 34122d586421SSepherosa Ziehau MSK_JUMBO_RX_RING_CNT - 1); 34132d586421SSepherosa Ziehau error = msk_init_jumbo_rx_ring(sc_if); 34142d586421SSepherosa Ziehau } else 34152d586421SSepherosa Ziehau #endif 34162d586421SSepherosa Ziehau { 34172d586421SSepherosa Ziehau msk_set_prefetch(sc, sc_if->msk_rxq, 34182d586421SSepherosa Ziehau sc_if->msk_rdata.msk_rx_ring_paddr, 34192d586421SSepherosa Ziehau MSK_RX_RING_CNT - 1); 34202d586421SSepherosa Ziehau error = msk_init_rx_ring(sc_if); 34212d586421SSepherosa Ziehau } 34222d586421SSepherosa Ziehau if (error != 0) { 34232d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, 34242d586421SSepherosa Ziehau "initialization failed: no memory for Rx buffers\n"); 34252d586421SSepherosa Ziehau msk_stop(sc_if); 34262d586421SSepherosa Ziehau return; 34272d586421SSepherosa Ziehau } 34282d586421SSepherosa Ziehau 34292d586421SSepherosa Ziehau /* Configure interrupt handling. */ 34302d586421SSepherosa Ziehau if (sc_if->msk_port == MSK_PORT_A) { 34312d586421SSepherosa Ziehau sc->msk_intrmask |= Y2_IS_PORT_A; 34322d586421SSepherosa Ziehau sc->msk_intrhwemask |= Y2_HWE_L1_MASK; 34332d586421SSepherosa Ziehau } else { 34342d586421SSepherosa Ziehau sc->msk_intrmask |= Y2_IS_PORT_B; 34352d586421SSepherosa Ziehau sc->msk_intrhwemask |= Y2_HWE_L2_MASK; 34362d586421SSepherosa Ziehau } 34372d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_HWE_IMSK, sc->msk_intrhwemask); 34382d586421SSepherosa Ziehau CSR_READ_4(sc, B0_HWE_IMSK); 34392d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_IMSK, sc->msk_intrmask); 34402d586421SSepherosa Ziehau CSR_READ_4(sc, B0_IMSK); 34412d586421SSepherosa Ziehau 34422d586421SSepherosa Ziehau sc_if->msk_link = 0; 34432d586421SSepherosa Ziehau mii_mediachg(mii); 34442d586421SSepherosa Ziehau 3445f59f1081SSepherosa Ziehau mskc_set_imtimer(sc); 3446f59f1081SSepherosa Ziehau 34472d586421SSepherosa Ziehau ifp->if_flags |= IFF_RUNNING; 34482d586421SSepherosa Ziehau ifp->if_flags &= ~IFF_OACTIVE; 34492d586421SSepherosa Ziehau 34502d586421SSepherosa Ziehau callout_reset(&sc_if->msk_tick_ch, hz, msk_tick, sc_if); 34512d586421SSepherosa Ziehau } 34522d586421SSepherosa Ziehau 34532d586421SSepherosa Ziehau static void 34542d586421SSepherosa Ziehau msk_set_rambuffer(struct msk_if_softc *sc_if) 34552d586421SSepherosa Ziehau { 34562d586421SSepherosa Ziehau struct msk_softc *sc; 34572d586421SSepherosa Ziehau int ltpp, utpp; 34582d586421SSepherosa Ziehau 34592d586421SSepherosa Ziehau sc = sc_if->msk_softc; 34602d586421SSepherosa Ziehau 34612d586421SSepherosa Ziehau /* Setup Rx Queue. */ 34622d586421SSepherosa Ziehau CSR_WRITE_1(sc, RB_ADDR(sc_if->msk_rxq, RB_CTRL), RB_RST_CLR); 34632d586421SSepherosa Ziehau CSR_WRITE_4(sc, RB_ADDR(sc_if->msk_rxq, RB_START), 34642d586421SSepherosa Ziehau sc->msk_rxqstart[sc_if->msk_port] / 8); 34652d586421SSepherosa Ziehau CSR_WRITE_4(sc, RB_ADDR(sc_if->msk_rxq, RB_END), 34662d586421SSepherosa Ziehau sc->msk_rxqend[sc_if->msk_port] / 8); 34672d586421SSepherosa Ziehau CSR_WRITE_4(sc, RB_ADDR(sc_if->msk_rxq, RB_WP), 34682d586421SSepherosa Ziehau sc->msk_rxqstart[sc_if->msk_port] / 8); 34692d586421SSepherosa Ziehau CSR_WRITE_4(sc, RB_ADDR(sc_if->msk_rxq, RB_RP), 34702d586421SSepherosa Ziehau sc->msk_rxqstart[sc_if->msk_port] / 8); 34712d586421SSepherosa Ziehau 34722d586421SSepherosa Ziehau utpp = (sc->msk_rxqend[sc_if->msk_port] + 1 - 34732d586421SSepherosa Ziehau sc->msk_rxqstart[sc_if->msk_port] - MSK_RB_ULPP) / 8; 34742d586421SSepherosa Ziehau ltpp = (sc->msk_rxqend[sc_if->msk_port] + 1 - 34752d586421SSepherosa Ziehau sc->msk_rxqstart[sc_if->msk_port] - MSK_RB_LLPP_B) / 8; 34762d586421SSepherosa Ziehau if (sc->msk_rxqsize < MSK_MIN_RXQ_SIZE) 34772d586421SSepherosa Ziehau ltpp += (MSK_RB_LLPP_B - MSK_RB_LLPP_S) / 8; 34782d586421SSepherosa Ziehau CSR_WRITE_4(sc, RB_ADDR(sc_if->msk_rxq, RB_RX_UTPP), utpp); 34792d586421SSepherosa Ziehau CSR_WRITE_4(sc, RB_ADDR(sc_if->msk_rxq, RB_RX_LTPP), ltpp); 34802d586421SSepherosa Ziehau /* Set Rx priority(RB_RX_UTHP/RB_RX_LTHP) thresholds? */ 34812d586421SSepherosa Ziehau 34822d586421SSepherosa Ziehau CSR_WRITE_1(sc, RB_ADDR(sc_if->msk_rxq, RB_CTRL), RB_ENA_OP_MD); 34832d586421SSepherosa Ziehau CSR_READ_1(sc, RB_ADDR(sc_if->msk_rxq, RB_CTRL)); 34842d586421SSepherosa Ziehau 34852d586421SSepherosa Ziehau /* Setup Tx Queue. */ 34862d586421SSepherosa Ziehau CSR_WRITE_1(sc, RB_ADDR(sc_if->msk_txq, RB_CTRL), RB_RST_CLR); 34872d586421SSepherosa Ziehau CSR_WRITE_4(sc, RB_ADDR(sc_if->msk_txq, RB_START), 34882d586421SSepherosa Ziehau sc->msk_txqstart[sc_if->msk_port] / 8); 34892d586421SSepherosa Ziehau CSR_WRITE_4(sc, RB_ADDR(sc_if->msk_txq, RB_END), 34902d586421SSepherosa Ziehau sc->msk_txqend[sc_if->msk_port] / 8); 34912d586421SSepherosa Ziehau CSR_WRITE_4(sc, RB_ADDR(sc_if->msk_txq, RB_WP), 34922d586421SSepherosa Ziehau sc->msk_txqstart[sc_if->msk_port] / 8); 34932d586421SSepherosa Ziehau CSR_WRITE_4(sc, RB_ADDR(sc_if->msk_txq, RB_RP), 34942d586421SSepherosa Ziehau sc->msk_txqstart[sc_if->msk_port] / 8); 34952d586421SSepherosa Ziehau /* Enable Store & Forward for Tx side. */ 34962d586421SSepherosa Ziehau CSR_WRITE_1(sc, RB_ADDR(sc_if->msk_txq, RB_CTRL), RB_ENA_STFWD); 34972d586421SSepherosa Ziehau CSR_WRITE_1(sc, RB_ADDR(sc_if->msk_txq, RB_CTRL), RB_ENA_OP_MD); 34982d586421SSepherosa Ziehau CSR_READ_1(sc, RB_ADDR(sc_if->msk_txq, RB_CTRL)); 34992d586421SSepherosa Ziehau } 35002d586421SSepherosa Ziehau 35012d586421SSepherosa Ziehau static void 35022d586421SSepherosa Ziehau msk_set_prefetch(struct msk_softc *sc, int qaddr, bus_addr_t addr, 35032d586421SSepherosa Ziehau uint32_t count) 35042d586421SSepherosa Ziehau { 35052d586421SSepherosa Ziehau 35062d586421SSepherosa Ziehau /* Reset the prefetch unit. */ 35072d586421SSepherosa Ziehau CSR_WRITE_4(sc, Y2_PREF_Q_ADDR(qaddr, PREF_UNIT_CTRL_REG), 35082d586421SSepherosa Ziehau PREF_UNIT_RST_SET); 35092d586421SSepherosa Ziehau CSR_WRITE_4(sc, Y2_PREF_Q_ADDR(qaddr, PREF_UNIT_CTRL_REG), 35102d586421SSepherosa Ziehau PREF_UNIT_RST_CLR); 35112d586421SSepherosa Ziehau /* Set LE base address. */ 35122d586421SSepherosa Ziehau CSR_WRITE_4(sc, Y2_PREF_Q_ADDR(qaddr, PREF_UNIT_ADDR_LOW_REG), 35132d586421SSepherosa Ziehau MSK_ADDR_LO(addr)); 35142d586421SSepherosa Ziehau CSR_WRITE_4(sc, Y2_PREF_Q_ADDR(qaddr, PREF_UNIT_ADDR_HI_REG), 35152d586421SSepherosa Ziehau MSK_ADDR_HI(addr)); 35162d586421SSepherosa Ziehau /* Set the list last index. */ 35172d586421SSepherosa Ziehau CSR_WRITE_2(sc, Y2_PREF_Q_ADDR(qaddr, PREF_UNIT_LAST_IDX_REG), 35182d586421SSepherosa Ziehau count); 35192d586421SSepherosa Ziehau /* Turn on prefetch unit. */ 35202d586421SSepherosa Ziehau CSR_WRITE_4(sc, Y2_PREF_Q_ADDR(qaddr, PREF_UNIT_CTRL_REG), 35212d586421SSepherosa Ziehau PREF_UNIT_OP_ON); 35222d586421SSepherosa Ziehau /* Dummy read to ensure write. */ 35232d586421SSepherosa Ziehau CSR_READ_4(sc, Y2_PREF_Q_ADDR(qaddr, PREF_UNIT_CTRL_REG)); 35242d586421SSepherosa Ziehau } 35252d586421SSepherosa Ziehau 35262d586421SSepherosa Ziehau static void 35272d586421SSepherosa Ziehau msk_stop(struct msk_if_softc *sc_if) 35282d586421SSepherosa Ziehau { 35292d586421SSepherosa Ziehau struct msk_softc *sc = sc_if->msk_softc; 35302d586421SSepherosa Ziehau struct ifnet *ifp = sc_if->msk_ifp; 35312d586421SSepherosa Ziehau struct msk_txdesc *txd; 35322d586421SSepherosa Ziehau struct msk_rxdesc *rxd; 35332d586421SSepherosa Ziehau #ifdef MSK_JUMBO 35342d586421SSepherosa Ziehau struct msk_rxdesc *jrxd; 35352d586421SSepherosa Ziehau #endif 35362d586421SSepherosa Ziehau uint32_t val; 35372d586421SSepherosa Ziehau int i; 35382d586421SSepherosa Ziehau 35392d586421SSepherosa Ziehau ASSERT_SERIALIZED(ifp->if_serializer); 35402d586421SSepherosa Ziehau 35412d586421SSepherosa Ziehau callout_stop(&sc_if->msk_tick_ch); 35422d586421SSepherosa Ziehau ifp->if_timer = 0; 35432d586421SSepherosa Ziehau 35442d586421SSepherosa Ziehau /* Disable interrupts. */ 35452d586421SSepherosa Ziehau if (sc_if->msk_port == MSK_PORT_A) { 35462d586421SSepherosa Ziehau sc->msk_intrmask &= ~Y2_IS_PORT_A; 35472d586421SSepherosa Ziehau sc->msk_intrhwemask &= ~Y2_HWE_L1_MASK; 35482d586421SSepherosa Ziehau } else { 35492d586421SSepherosa Ziehau sc->msk_intrmask &= ~Y2_IS_PORT_B; 35502d586421SSepherosa Ziehau sc->msk_intrhwemask &= ~Y2_HWE_L2_MASK; 35512d586421SSepherosa Ziehau } 35522d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_HWE_IMSK, sc->msk_intrhwemask); 35532d586421SSepherosa Ziehau CSR_READ_4(sc, B0_HWE_IMSK); 35542d586421SSepherosa Ziehau CSR_WRITE_4(sc, B0_IMSK, sc->msk_intrmask); 35552d586421SSepherosa Ziehau CSR_READ_4(sc, B0_IMSK); 35562d586421SSepherosa Ziehau 35572d586421SSepherosa Ziehau /* Disable Tx/Rx MAC. */ 35582d586421SSepherosa Ziehau val = GMAC_READ_2(sc, sc_if->msk_port, GM_GP_CTRL); 35592d586421SSepherosa Ziehau val &= ~(GM_GPCR_RX_ENA | GM_GPCR_TX_ENA); 35602d586421SSepherosa Ziehau GMAC_WRITE_2(sc, sc_if->msk_port, GM_GP_CTRL, val); 35612d586421SSepherosa Ziehau /* Read again to ensure writing. */ 35622d586421SSepherosa Ziehau GMAC_READ_2(sc, sc_if->msk_port, GM_GP_CTRL); 35632d586421SSepherosa Ziehau 35642d586421SSepherosa Ziehau /* Stop Tx BMU. */ 35652d586421SSepherosa Ziehau CSR_WRITE_4(sc, Q_ADDR(sc_if->msk_txq, Q_CSR), BMU_STOP); 35662d586421SSepherosa Ziehau val = CSR_READ_4(sc, Q_ADDR(sc_if->msk_txq, Q_CSR)); 35672d586421SSepherosa Ziehau for (i = 0; i < MSK_TIMEOUT; i++) { 35682d586421SSepherosa Ziehau if ((val & (BMU_STOP | BMU_IDLE)) == 0) { 35692d586421SSepherosa Ziehau CSR_WRITE_4(sc, Q_ADDR(sc_if->msk_txq, Q_CSR), 35702d586421SSepherosa Ziehau BMU_STOP); 357169853fa0SSepherosa Ziehau val = CSR_READ_4(sc, Q_ADDR(sc_if->msk_txq, Q_CSR)); 35722d586421SSepherosa Ziehau } else 35732d586421SSepherosa Ziehau break; 35742d586421SSepherosa Ziehau DELAY(1); 35752d586421SSepherosa Ziehau } 35762d586421SSepherosa Ziehau if (i == MSK_TIMEOUT) 35772d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, "Tx BMU stop failed\n"); 35782d586421SSepherosa Ziehau CSR_WRITE_1(sc, RB_ADDR(sc_if->msk_txq, RB_CTRL), 35792d586421SSepherosa Ziehau RB_RST_SET | RB_DIS_OP_MD); 35802d586421SSepherosa Ziehau 35812d586421SSepherosa Ziehau /* Disable all GMAC interrupt. */ 35822d586421SSepherosa Ziehau CSR_WRITE_1(sc, MR_ADDR(sc_if->msk_port, GMAC_IRQ_MSK), 0); 35832d586421SSepherosa Ziehau /* Disable PHY interrupt. */ 35842d586421SSepherosa Ziehau msk_phy_writereg(sc_if, PHY_ADDR_MARV, PHY_MARV_INT_MASK, 0); 35852d586421SSepherosa Ziehau 35862d586421SSepherosa Ziehau /* Disable the RAM Interface Arbiter. */ 35872d586421SSepherosa Ziehau CSR_WRITE_1(sc, MR_ADDR(sc_if->msk_port, TXA_CTRL), TXA_DIS_ARB); 35882d586421SSepherosa Ziehau 35892d586421SSepherosa Ziehau /* Reset the PCI FIFO of the async Tx queue */ 35902d586421SSepherosa Ziehau CSR_WRITE_4(sc, Q_ADDR(sc_if->msk_txq, Q_CSR), 35912d586421SSepherosa Ziehau BMU_RST_SET | BMU_FIFO_RST); 35922d586421SSepherosa Ziehau 35932d586421SSepherosa Ziehau /* Reset the Tx prefetch units. */ 35942d586421SSepherosa Ziehau CSR_WRITE_4(sc, Y2_PREF_Q_ADDR(sc_if->msk_txq, PREF_UNIT_CTRL_REG), 35952d586421SSepherosa Ziehau PREF_UNIT_RST_SET); 35962d586421SSepherosa Ziehau 35972d586421SSepherosa Ziehau /* Reset the RAM Buffer async Tx queue. */ 35982d586421SSepherosa Ziehau CSR_WRITE_1(sc, RB_ADDR(sc_if->msk_txq, RB_CTRL), RB_RST_SET); 35992d586421SSepherosa Ziehau 36002d586421SSepherosa Ziehau /* Reset Tx MAC FIFO. */ 36012d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, TX_GMF_CTRL_T), GMF_RST_SET); 36022d586421SSepherosa Ziehau /* Set Pause Off. */ 36032d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, GMAC_CTRL), GMC_PAUSE_OFF); 36042d586421SSepherosa Ziehau 36052d586421SSepherosa Ziehau /* 36062d586421SSepherosa Ziehau * The Rx Stop command will not work for Yukon-2 if the BMU does not 36072d586421SSepherosa Ziehau * reach the end of packet and since we can't make sure that we have 36082d586421SSepherosa Ziehau * incoming data, we must reset the BMU while it is not during a DMA 36092d586421SSepherosa Ziehau * transfer. Since it is possible that the Rx path is still active, 36102d586421SSepherosa Ziehau * the Rx RAM buffer will be stopped first, so any possible incoming 36112d586421SSepherosa Ziehau * data will not trigger a DMA. After the RAM buffer is stopped, the 36122d586421SSepherosa Ziehau * BMU is polled until any DMA in progress is ended and only then it 36132d586421SSepherosa Ziehau * will be reset. 36142d586421SSepherosa Ziehau */ 36152d586421SSepherosa Ziehau 36162d586421SSepherosa Ziehau /* Disable the RAM Buffer receive queue. */ 36172d586421SSepherosa Ziehau CSR_WRITE_1(sc, RB_ADDR(sc_if->msk_rxq, RB_CTRL), RB_DIS_OP_MD); 36182d586421SSepherosa Ziehau for (i = 0; i < MSK_TIMEOUT; i++) { 36192d586421SSepherosa Ziehau if (CSR_READ_1(sc, RB_ADDR(sc_if->msk_rxq, Q_RSL)) == 36202d586421SSepherosa Ziehau CSR_READ_1(sc, RB_ADDR(sc_if->msk_rxq, Q_RL))) 36212d586421SSepherosa Ziehau break; 36222d586421SSepherosa Ziehau DELAY(1); 36232d586421SSepherosa Ziehau } 36242d586421SSepherosa Ziehau if (i == MSK_TIMEOUT) 36252d586421SSepherosa Ziehau device_printf(sc_if->msk_if_dev, "Rx BMU stop failed\n"); 36262d586421SSepherosa Ziehau CSR_WRITE_4(sc, Q_ADDR(sc_if->msk_rxq, Q_CSR), 36272d586421SSepherosa Ziehau BMU_RST_SET | BMU_FIFO_RST); 36282d586421SSepherosa Ziehau /* Reset the Rx prefetch unit. */ 36292d586421SSepherosa Ziehau CSR_WRITE_4(sc, Y2_PREF_Q_ADDR(sc_if->msk_rxq, PREF_UNIT_CTRL_REG), 36302d586421SSepherosa Ziehau PREF_UNIT_RST_SET); 36312d586421SSepherosa Ziehau /* Reset the RAM Buffer receive queue. */ 36322d586421SSepherosa Ziehau CSR_WRITE_1(sc, RB_ADDR(sc_if->msk_rxq, RB_CTRL), RB_RST_SET); 36332d586421SSepherosa Ziehau /* Reset Rx MAC FIFO. */ 36342d586421SSepherosa Ziehau CSR_WRITE_4(sc, MR_ADDR(sc_if->msk_port, RX_GMF_CTRL_T), GMF_RST_SET); 36352d586421SSepherosa Ziehau 36362d586421SSepherosa Ziehau /* Free Rx and Tx mbufs still in the queues. */ 36372d586421SSepherosa Ziehau for (i = 0; i < MSK_RX_RING_CNT; i++) { 36382d586421SSepherosa Ziehau rxd = &sc_if->msk_cdata.msk_rxdesc[i]; 36392d586421SSepherosa Ziehau if (rxd->rx_m != NULL) { 36402d586421SSepherosa Ziehau bus_dmamap_unload(sc_if->msk_cdata.msk_rx_tag, 36412d586421SSepherosa Ziehau rxd->rx_dmamap); 36422d586421SSepherosa Ziehau m_freem(rxd->rx_m); 36432d586421SSepherosa Ziehau rxd->rx_m = NULL; 36442d586421SSepherosa Ziehau } 36452d586421SSepherosa Ziehau } 36462d586421SSepherosa Ziehau #ifdef MSK_JUMBO 36472d586421SSepherosa Ziehau for (i = 0; i < MSK_JUMBO_RX_RING_CNT; i++) { 36482d586421SSepherosa Ziehau jrxd = &sc_if->msk_cdata.msk_jumbo_rxdesc[i]; 36492d586421SSepherosa Ziehau if (jrxd->rx_m != NULL) { 36502d586421SSepherosa Ziehau bus_dmamap_sync(sc_if->msk_cdata.msk_jumbo_rx_tag, 36512d586421SSepherosa Ziehau jrxd->rx_dmamap, BUS_DMASYNC_POSTREAD); 36522d586421SSepherosa Ziehau bus_dmamap_unload(sc_if->msk_cdata.msk_jumbo_rx_tag, 36532d586421SSepherosa Ziehau jrxd->rx_dmamap); 36542d586421SSepherosa Ziehau m_freem(jrxd->rx_m); 36552d586421SSepherosa Ziehau jrxd->rx_m = NULL; 36562d586421SSepherosa Ziehau } 36572d586421SSepherosa Ziehau } 36582d586421SSepherosa Ziehau #endif 36592d586421SSepherosa Ziehau for (i = 0; i < MSK_TX_RING_CNT; i++) { 36602d586421SSepherosa Ziehau txd = &sc_if->msk_cdata.msk_txdesc[i]; 36612d586421SSepherosa Ziehau if (txd->tx_m != NULL) { 36622d586421SSepherosa Ziehau bus_dmamap_unload(sc_if->msk_cdata.msk_tx_tag, 36632d586421SSepherosa Ziehau txd->tx_dmamap); 36642d586421SSepherosa Ziehau m_freem(txd->tx_m); 36652d586421SSepherosa Ziehau txd->tx_m = NULL; 36662d586421SSepherosa Ziehau } 36672d586421SSepherosa Ziehau } 36682d586421SSepherosa Ziehau 36692d586421SSepherosa Ziehau /* 36702d586421SSepherosa Ziehau * Mark the interface down. 36712d586421SSepherosa Ziehau */ 36722d586421SSepherosa Ziehau ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE); 36732d586421SSepherosa Ziehau sc_if->msk_link = 0; 36742d586421SSepherosa Ziehau } 36752d586421SSepherosa Ziehau 36762d586421SSepherosa Ziehau static int 3677f59f1081SSepherosa Ziehau mskc_sysctl_proc_limit(SYSCTL_HANDLER_ARGS) 36782d586421SSepherosa Ziehau { 3679f59f1081SSepherosa Ziehau return sysctl_int_range(oidp, arg1, arg2, req, 3680f59f1081SSepherosa Ziehau MSK_PROC_MIN, MSK_PROC_MAX); 36812d586421SSepherosa Ziehau } 36822d586421SSepherosa Ziehau 3683f59f1081SSepherosa Ziehau static int 3684f59f1081SSepherosa Ziehau mskc_sysctl_intr_rate(SYSCTL_HANDLER_ARGS) 3685f59f1081SSepherosa Ziehau { 3686f59f1081SSepherosa Ziehau struct msk_softc *sc = arg1; 3687f59f1081SSepherosa Ziehau struct lwkt_serialize *serializer = &sc->msk_serializer; 3688f59f1081SSepherosa Ziehau int error = 0, v; 3689f59f1081SSepherosa Ziehau 3690f59f1081SSepherosa Ziehau lwkt_serialize_enter(serializer); 3691f59f1081SSepherosa Ziehau 3692f59f1081SSepherosa Ziehau v = sc->msk_intr_rate; 3693f59f1081SSepherosa Ziehau error = sysctl_handle_int(oidp, &v, 0, req); 3694f59f1081SSepherosa Ziehau if (error || req->newptr == NULL) 3695f59f1081SSepherosa Ziehau goto back; 3696f59f1081SSepherosa Ziehau if (v < 0) { 3697f59f1081SSepherosa Ziehau error = EINVAL; 3698f59f1081SSepherosa Ziehau goto back; 3699f59f1081SSepherosa Ziehau } 3700f59f1081SSepherosa Ziehau 3701f59f1081SSepherosa Ziehau if (sc->msk_intr_rate != v) { 3702f59f1081SSepherosa Ziehau int flag = 0, i; 3703f59f1081SSepherosa Ziehau 3704f59f1081SSepherosa Ziehau sc->msk_intr_rate = v; 3705f59f1081SSepherosa Ziehau for (i = 0; i < 2; ++i) { 3706f59f1081SSepherosa Ziehau if (sc->msk_if[i] != NULL) { 3707f59f1081SSepherosa Ziehau flag |= sc->msk_if[i]-> 3708f59f1081SSepherosa Ziehau arpcom.ac_if.if_flags & IFF_RUNNING; 3709f59f1081SSepherosa Ziehau } 3710f59f1081SSepherosa Ziehau } 3711f59f1081SSepherosa Ziehau if (flag) 3712f59f1081SSepherosa Ziehau mskc_set_imtimer(sc); 3713f59f1081SSepherosa Ziehau } 3714f59f1081SSepherosa Ziehau back: 3715f59f1081SSepherosa Ziehau lwkt_serialize_exit(serializer); 3716f59f1081SSepherosa Ziehau return error; 3717f59f1081SSepherosa Ziehau } 37182d586421SSepherosa Ziehau 37192d586421SSepherosa Ziehau static int 37202d586421SSepherosa Ziehau msk_dmamem_create(device_t dev, bus_size_t size, bus_dma_tag_t *dtag, 37212d586421SSepherosa Ziehau void **addr, bus_addr_t *paddr, bus_dmamap_t *dmap) 37222d586421SSepherosa Ziehau { 37232d586421SSepherosa Ziehau struct msk_if_softc *sc_if = device_get_softc(dev); 3724c78f83cbSSepherosa Ziehau bus_dmamem_t dmem; 37252d586421SSepherosa Ziehau int error; 37262d586421SSepherosa Ziehau 3727c78f83cbSSepherosa Ziehau error = bus_dmamem_coherent(sc_if->msk_cdata.msk_parent_tag, 37282d586421SSepherosa Ziehau MSK_RING_ALIGN, 0, 37292d586421SSepherosa Ziehau BUS_SPACE_MAXADDR, BUS_SPACE_MAXADDR, 3730c78f83cbSSepherosa Ziehau size, BUS_DMA_WAITOK | BUS_DMA_ZERO, &dmem); 37312d586421SSepherosa Ziehau if (error) { 3732c78f83cbSSepherosa Ziehau device_printf(dev, "can't create coherent DMA memory\n"); 37332d586421SSepherosa Ziehau return error; 37342d586421SSepherosa Ziehau } 37352d586421SSepherosa Ziehau 3736c78f83cbSSepherosa Ziehau *dtag = dmem.dmem_tag; 3737c78f83cbSSepherosa Ziehau *dmap = dmem.dmem_map; 3738c78f83cbSSepherosa Ziehau *addr = dmem.dmem_addr; 3739c78f83cbSSepherosa Ziehau *paddr = dmem.dmem_busaddr; 37402d586421SSepherosa Ziehau 37412d586421SSepherosa Ziehau return 0; 37422d586421SSepherosa Ziehau } 37432d586421SSepherosa Ziehau 37442d586421SSepherosa Ziehau static void 37452d586421SSepherosa Ziehau msk_dmamem_destroy(bus_dma_tag_t dtag, void *addr, bus_dmamap_t dmap) 37462d586421SSepherosa Ziehau { 37472d586421SSepherosa Ziehau if (dtag != NULL) { 37482d586421SSepherosa Ziehau bus_dmamap_unload(dtag, dmap); 37492d586421SSepherosa Ziehau bus_dmamem_free(dtag, addr, dmap); 37502d586421SSepherosa Ziehau bus_dma_tag_destroy(dtag); 37512d586421SSepherosa Ziehau } 37522d586421SSepherosa Ziehau } 3753f59f1081SSepherosa Ziehau 3754f59f1081SSepherosa Ziehau static void 3755f59f1081SSepherosa Ziehau mskc_set_imtimer(struct msk_softc *sc) 3756f59f1081SSepherosa Ziehau { 3757f59f1081SSepherosa Ziehau if (sc->msk_intr_rate > 0) { 3758f59f1081SSepherosa Ziehau /* 3759f59f1081SSepherosa Ziehau * XXX myk(4) seems to use 125MHz for EC/FE/XL 3760f59f1081SSepherosa Ziehau * and 78.125MHz for rest of chip types 3761f59f1081SSepherosa Ziehau */ 3762f59f1081SSepherosa Ziehau CSR_WRITE_4(sc, B2_IRQM_INI, 3763f59f1081SSepherosa Ziehau MSK_USECS(sc, 1000000 / sc->msk_intr_rate)); 3764f59f1081SSepherosa Ziehau CSR_WRITE_4(sc, B2_IRQM_MSK, sc->msk_intrmask); 3765f59f1081SSepherosa Ziehau CSR_WRITE_4(sc, B2_IRQM_CTRL, TIM_START); 3766f59f1081SSepherosa Ziehau } else { 3767f59f1081SSepherosa Ziehau CSR_WRITE_4(sc, B2_IRQM_CTRL, TIM_STOP); 3768f59f1081SSepherosa Ziehau } 3769f59f1081SSepherosa Ziehau } 3770