196f2e892SBill Paul /* 296f2e892SBill Paul * Copyright (c) 1997, 1998, 1999 396f2e892SBill Paul * Bill Paul <wpaul@ee.columbia.edu>. All rights reserved. 496f2e892SBill Paul * 596f2e892SBill Paul * Redistribution and use in source and binary forms, with or without 696f2e892SBill Paul * modification, are permitted provided that the following conditions 796f2e892SBill Paul * are met: 896f2e892SBill Paul * 1. Redistributions of source code must retain the above copyright 996f2e892SBill Paul * notice, this list of conditions and the following disclaimer. 1096f2e892SBill Paul * 2. Redistributions in binary form must reproduce the above copyright 1196f2e892SBill Paul * notice, this list of conditions and the following disclaimer in the 1296f2e892SBill Paul * documentation and/or other materials provided with the distribution. 1396f2e892SBill Paul * 3. All advertising materials mentioning features or use of this software 1496f2e892SBill Paul * must display the following acknowledgement: 1596f2e892SBill Paul * This product includes software developed by Bill Paul. 1696f2e892SBill Paul * 4. Neither the name of the author nor the names of any co-contributors 1796f2e892SBill Paul * may be used to endorse or promote products derived from this software 1896f2e892SBill Paul * without specific prior written permission. 1996f2e892SBill Paul * 2096f2e892SBill Paul * THIS SOFTWARE IS PROVIDED BY Bill Paul AND CONTRIBUTORS ``AS IS'' AND 2196f2e892SBill Paul * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 2296f2e892SBill Paul * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 2396f2e892SBill Paul * ARE DISCLAIMED. IN NO EVENT SHALL Bill Paul OR THE VOICES IN HIS HEAD 2496f2e892SBill Paul * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 2596f2e892SBill Paul * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 2696f2e892SBill Paul * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 2796f2e892SBill Paul * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 2896f2e892SBill Paul * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 2996f2e892SBill Paul * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF 3096f2e892SBill Paul * THE POSSIBILITY OF SUCH DAMAGE. 3196f2e892SBill Paul * 3296f2e892SBill Paul * $FreeBSD$ 3396f2e892SBill Paul */ 3496f2e892SBill Paul 3596f2e892SBill Paul /* 3696f2e892SBill Paul * DEC "tulip" clone ethernet driver. Supports the DEC/Intel 21143 3796f2e892SBill Paul * series chips and several workalikes including the following: 3896f2e892SBill Paul * 39ead7cde9SBill Paul * Macronix 98713/98715/98725/98727/98732 PMAC (www.macronix.com) 4096f2e892SBill Paul * Macronix/Lite-On 82c115 PNIC II (www.macronix.com) 4196f2e892SBill Paul * Lite-On 82c168/82c169 PNIC (www.litecom.com) 4296f2e892SBill Paul * ASIX Electronics AX88140A (www.asix.com.tw) 4396f2e892SBill Paul * ASIX Electronics AX88141 (www.asix.com.tw) 4496f2e892SBill Paul * ADMtek AL981 (www.admtek.com.tw) 4596f2e892SBill Paul * ADMtek AN985 (www.admtek.com.tw) 4688d739dcSBill Paul * Davicom DM9100, DM9102, DM9102A (www.davicom8.com) 479ca710f6SJeroen Ruigrok van der Werven * Accton EN1217 (www.accton.com) 48feb78939SJonathan Chen * Xircom X3201 (www.xircom.com) 491d5e5310SBill Paul * Abocom FE2500 501af8bec7SBill Paul * Conexant LANfinity (www.conexant.com) 5196f2e892SBill Paul * 5296f2e892SBill Paul * Datasheets for the 21143 are available at developer.intel.com. 5396f2e892SBill Paul * Datasheets for the clone parts can be found at their respective sites. 5496f2e892SBill Paul * (Except for the PNIC; see www.freebsd.org/~wpaul/PNIC/pnic.ps.gz.) 5596f2e892SBill Paul * The PNIC II is essentially a Macronix 98715A chip; the only difference 5696f2e892SBill Paul * worth noting is that its multicast hash table is only 128 bits wide 5796f2e892SBill Paul * instead of 512. 5896f2e892SBill Paul * 5996f2e892SBill Paul * Written by Bill Paul <wpaul@ee.columbia.edu> 6096f2e892SBill Paul * Electrical Engineering Department 6196f2e892SBill Paul * Columbia University, New York City 6296f2e892SBill Paul */ 6396f2e892SBill Paul 6496f2e892SBill Paul /* 6596f2e892SBill Paul * The Intel 21143 is the successor to the DEC 21140. It is basically 6696f2e892SBill Paul * the same as the 21140 but with a few new features. The 21143 supports 6796f2e892SBill Paul * three kinds of media attachments: 6896f2e892SBill Paul * 6996f2e892SBill Paul * o MII port, for 10Mbps and 100Mbps support and NWAY 7096f2e892SBill Paul * autonegotiation provided by an external PHY. 7196f2e892SBill Paul * o SYM port, for symbol mode 100Mbps support. 7296f2e892SBill Paul * o 10baseT port. 7396f2e892SBill Paul * o AUI/BNC port. 7496f2e892SBill Paul * 7596f2e892SBill Paul * The 100Mbps SYM port and 10baseT port can be used together in 7696f2e892SBill Paul * combination with the internal NWAY support to create a 10/100 7796f2e892SBill Paul * autosensing configuration. 7896f2e892SBill Paul * 7996f2e892SBill Paul * Note that not all tulip workalikes are handled in this driver: we only 8096f2e892SBill Paul * deal with those which are relatively well behaved. The Winbond is 8196f2e892SBill Paul * handled separately due to its different register offsets and the 8296f2e892SBill Paul * special handling needed for its various bugs. The PNIC is handled 8396f2e892SBill Paul * here, but I'm not thrilled about it. 8496f2e892SBill Paul * 8596f2e892SBill Paul * All of the workalike chips use some form of MII transceiver support 8696f2e892SBill Paul * with the exception of the Macronix chips, which also have a SYM port. 8796f2e892SBill Paul * The ASIX AX88140A is also documented to have a SYM port, but all 8896f2e892SBill Paul * the cards I've seen use an MII transceiver, probably because the 8996f2e892SBill Paul * AX88140A doesn't support internal NWAY. 9096f2e892SBill Paul */ 9196f2e892SBill Paul 9296f2e892SBill Paul #include <sys/param.h> 9396f2e892SBill Paul #include <sys/systm.h> 9496f2e892SBill Paul #include <sys/sockio.h> 9596f2e892SBill Paul #include <sys/mbuf.h> 9696f2e892SBill Paul #include <sys/malloc.h> 9796f2e892SBill Paul #include <sys/kernel.h> 9896f2e892SBill Paul #include <sys/socket.h> 9901faf54bSLuigi Rizzo #include <sys/sysctl.h> 10096f2e892SBill Paul 10196f2e892SBill Paul #include <net/if.h> 10296f2e892SBill Paul #include <net/if_arp.h> 10396f2e892SBill Paul #include <net/ethernet.h> 10496f2e892SBill Paul #include <net/if_dl.h> 10596f2e892SBill Paul #include <net/if_media.h> 106db40c1aeSDoug Ambrisko #include <net/if_types.h> 107db40c1aeSDoug Ambrisko #include <net/if_vlan_var.h> 10896f2e892SBill Paul 10996f2e892SBill Paul #include <net/bpf.h> 11096f2e892SBill Paul 11196f2e892SBill Paul #include <vm/vm.h> /* for vtophys */ 11296f2e892SBill Paul #include <vm/pmap.h> /* for vtophys */ 11396f2e892SBill Paul #include <machine/bus_pio.h> 11496f2e892SBill Paul #include <machine/bus_memio.h> 11596f2e892SBill Paul #include <machine/bus.h> 11696f2e892SBill Paul #include <machine/resource.h> 11796f2e892SBill Paul #include <sys/bus.h> 11896f2e892SBill Paul #include <sys/rman.h> 11996f2e892SBill Paul 12096f2e892SBill Paul #include <dev/mii/mii.h> 12196f2e892SBill Paul #include <dev/mii/miivar.h> 12296f2e892SBill Paul 12396f2e892SBill Paul #include <pci/pcireg.h> 12496f2e892SBill Paul #include <pci/pcivar.h> 12596f2e892SBill Paul 12696f2e892SBill Paul #define DC_USEIOSPACE 1275c1cfac4SBill Paul #ifdef __alpha__ 1285c1cfac4SBill Paul #define SRM_MEDIA 1295c1cfac4SBill Paul #endif 13096f2e892SBill Paul 13196f2e892SBill Paul #include <pci/if_dcreg.h> 13296f2e892SBill Paul 13395a16455SPeter Wemm MODULE_DEPEND(dc, miibus, 1, 1, 1); 13495a16455SPeter Wemm 13596f2e892SBill Paul /* "controller miibus0" required. See GENERIC if you get errors here. */ 13696f2e892SBill Paul #include "miibus_if.h" 13796f2e892SBill Paul 13896f2e892SBill Paul #ifndef lint 13996f2e892SBill Paul static const char rcsid[] = 14096f2e892SBill Paul "$FreeBSD$"; 14196f2e892SBill Paul #endif 14296f2e892SBill Paul 14396f2e892SBill Paul /* 14496f2e892SBill Paul * Various supported device vendors/types and their names. 14596f2e892SBill Paul */ 14696f2e892SBill Paul static struct dc_type dc_devs[] = { 14796f2e892SBill Paul { DC_VENDORID_DEC, DC_DEVICEID_21143, 14896f2e892SBill Paul "Intel 21143 10/100BaseTX" }, 14938deb45fSTom Rhodes { DC_VENDORID_DAVICOM, DC_DEVICEID_DM9009, 15038deb45fSTom Rhodes "Davicom DM9009 10/100BaseTX" }, 15196f2e892SBill Paul { DC_VENDORID_DAVICOM, DC_DEVICEID_DM9100, 15296f2e892SBill Paul "Davicom DM9100 10/100BaseTX" }, 15396f2e892SBill Paul { DC_VENDORID_DAVICOM, DC_DEVICEID_DM9102, 15496f2e892SBill Paul "Davicom DM9102 10/100BaseTX" }, 15588d739dcSBill Paul { DC_VENDORID_DAVICOM, DC_DEVICEID_DM9102, 15688d739dcSBill Paul "Davicom DM9102A 10/100BaseTX" }, 15796f2e892SBill Paul { DC_VENDORID_ADMTEK, DC_DEVICEID_AL981, 15896f2e892SBill Paul "ADMtek AL981 10/100BaseTX" }, 15996f2e892SBill Paul { DC_VENDORID_ADMTEK, DC_DEVICEID_AN985, 16096f2e892SBill Paul "ADMtek AN985 10/100BaseTX" }, 16196f2e892SBill Paul { DC_VENDORID_ASIX, DC_DEVICEID_AX88140A, 16296f2e892SBill Paul "ASIX AX88140A 10/100BaseTX" }, 16396f2e892SBill Paul { DC_VENDORID_ASIX, DC_DEVICEID_AX88140A, 16496f2e892SBill Paul "ASIX AX88141 10/100BaseTX" }, 16596f2e892SBill Paul { DC_VENDORID_MX, DC_DEVICEID_98713, 16696f2e892SBill Paul "Macronix 98713 10/100BaseTX" }, 16796f2e892SBill Paul { DC_VENDORID_MX, DC_DEVICEID_98713, 16896f2e892SBill Paul "Macronix 98713A 10/100BaseTX" }, 16996f2e892SBill Paul { DC_VENDORID_CP, DC_DEVICEID_98713_CP, 17096f2e892SBill Paul "Compex RL100-TX 10/100BaseTX" }, 17196f2e892SBill Paul { DC_VENDORID_CP, DC_DEVICEID_98713_CP, 17296f2e892SBill Paul "Compex RL100-TX 10/100BaseTX" }, 17396f2e892SBill Paul { DC_VENDORID_MX, DC_DEVICEID_987x5, 17496f2e892SBill Paul "Macronix 98715/98715A 10/100BaseTX" }, 17596f2e892SBill Paul { DC_VENDORID_MX, DC_DEVICEID_987x5, 17679d11e09SBill Paul "Macronix 98715AEC-C 10/100BaseTX" }, 17779d11e09SBill Paul { DC_VENDORID_MX, DC_DEVICEID_987x5, 17896f2e892SBill Paul "Macronix 98725 10/100BaseTX" }, 179ead7cde9SBill Paul { DC_VENDORID_MX, DC_DEVICEID_98727, 180ead7cde9SBill Paul "Macronix 98727/98732 10/100BaseTX" }, 18196f2e892SBill Paul { DC_VENDORID_LO, DC_DEVICEID_82C115, 18296f2e892SBill Paul "LC82C115 PNIC II 10/100BaseTX" }, 18396f2e892SBill Paul { DC_VENDORID_LO, DC_DEVICEID_82C168, 18496f2e892SBill Paul "82c168 PNIC 10/100BaseTX" }, 18596f2e892SBill Paul { DC_VENDORID_LO, DC_DEVICEID_82C168, 18696f2e892SBill Paul "82c169 PNIC 10/100BaseTX" }, 1879ca710f6SJeroen Ruigrok van der Werven { DC_VENDORID_ACCTON, DC_DEVICEID_EN1217, 1889ca710f6SJeroen Ruigrok van der Werven "Accton EN1217 10/100BaseTX" }, 189fa167b8eSBill Paul { DC_VENDORID_ACCTON, DC_DEVICEID_EN2242, 190fa167b8eSBill Paul "Accton EN2242 MiniPCI 10/100BaseTX" }, 191feb78939SJonathan Chen { DC_VENDORID_XIRCOM, DC_DEVICEID_X3201, 192feb78939SJonathan Chen "Xircom X3201 10/100BaseTX" }, 1931d5e5310SBill Paul { DC_VENDORID_ABOCOM, DC_DEVICEID_FE2500, 1941d5e5310SBill Paul "Abocom FE2500 10/100BaseTX" }, 1951af8bec7SBill Paul { DC_VENDORID_CONEXANT, DC_DEVICEID_RS7112, 1961af8bec7SBill Paul "Conexant LANfinity MiniPCI 10/100BaseTX" }, 197948c244dSWarner Losh { DC_VENDORID_HAWKING, DC_DEVICEID_HAWKING_PN672TX, 198948c244dSWarner Losh "Hawking CB102 CardBus 10/100" }, 19996f2e892SBill Paul { 0, 0, NULL } 20096f2e892SBill Paul }; 20196f2e892SBill Paul 202e51a25f8SAlfred Perlstein static int dc_probe (device_t); 203e51a25f8SAlfred Perlstein static int dc_attach (device_t); 204e51a25f8SAlfred Perlstein static int dc_detach (device_t); 205e8388e14SMitsuru IWASAKI static int dc_suspend (device_t); 206e8388e14SMitsuru IWASAKI static int dc_resume (device_t); 207e51a25f8SAlfred Perlstein static void dc_acpi (device_t); 208e51a25f8SAlfred Perlstein static struct dc_type *dc_devtype (device_t); 209e51a25f8SAlfred Perlstein static int dc_newbuf (struct dc_softc *, int, struct mbuf *); 210e51a25f8SAlfred Perlstein static int dc_encap (struct dc_softc *, struct mbuf *, u_int32_t *); 211e51a25f8SAlfred Perlstein static int dc_coal (struct dc_softc *, struct mbuf **); 212e51a25f8SAlfred Perlstein static void dc_pnic_rx_bug_war (struct dc_softc *, int); 213e51a25f8SAlfred Perlstein static int dc_rx_resync (struct dc_softc *); 214e51a25f8SAlfred Perlstein static void dc_rxeof (struct dc_softc *); 215e51a25f8SAlfred Perlstein static void dc_txeof (struct dc_softc *); 216e51a25f8SAlfred Perlstein static void dc_tick (void *); 217e51a25f8SAlfred Perlstein static void dc_tx_underrun (struct dc_softc *); 218e51a25f8SAlfred Perlstein static void dc_intr (void *); 219e51a25f8SAlfred Perlstein static void dc_start (struct ifnet *); 220e51a25f8SAlfred Perlstein static int dc_ioctl (struct ifnet *, u_long, caddr_t); 221e51a25f8SAlfred Perlstein static void dc_init (void *); 222e51a25f8SAlfred Perlstein static void dc_stop (struct dc_softc *); 223e51a25f8SAlfred Perlstein static void dc_watchdog (struct ifnet *); 224e51a25f8SAlfred Perlstein static void dc_shutdown (device_t); 225e51a25f8SAlfred Perlstein static int dc_ifmedia_upd (struct ifnet *); 226e51a25f8SAlfred Perlstein static void dc_ifmedia_sts (struct ifnet *, struct ifmediareq *); 22796f2e892SBill Paul 228e51a25f8SAlfred Perlstein static void dc_delay (struct dc_softc *); 229e51a25f8SAlfred Perlstein static void dc_eeprom_idle (struct dc_softc *); 230e51a25f8SAlfred Perlstein static void dc_eeprom_putbyte (struct dc_softc *, int); 231e51a25f8SAlfred Perlstein static void dc_eeprom_getword (struct dc_softc *, int, u_int16_t *); 23296f2e892SBill Paul static void dc_eeprom_getword_pnic 233e51a25f8SAlfred Perlstein (struct dc_softc *, int, u_int16_t *); 234feb78939SJonathan Chen static void dc_eeprom_getword_xircom 235e51a25f8SAlfred Perlstein (struct dc_softc *, int, u_int16_t *); 2363097aa70SWarner Losh static void dc_eeprom_width (struct dc_softc *); 237e51a25f8SAlfred Perlstein static void dc_read_eeprom (struct dc_softc *, caddr_t, int, int, int); 23896f2e892SBill Paul 239e51a25f8SAlfred Perlstein static void dc_mii_writebit (struct dc_softc *, int); 240e51a25f8SAlfred Perlstein static int dc_mii_readbit (struct dc_softc *); 241e51a25f8SAlfred Perlstein static void dc_mii_sync (struct dc_softc *); 242e51a25f8SAlfred Perlstein static void dc_mii_send (struct dc_softc *, u_int32_t, int); 243e51a25f8SAlfred Perlstein static int dc_mii_readreg (struct dc_softc *, struct dc_mii_frame *); 244e51a25f8SAlfred Perlstein static int dc_mii_writereg (struct dc_softc *, struct dc_mii_frame *); 245e51a25f8SAlfred Perlstein static int dc_miibus_readreg (device_t, int, int); 246e51a25f8SAlfred Perlstein static int dc_miibus_writereg (device_t, int, int, int); 247e51a25f8SAlfred Perlstein static void dc_miibus_statchg (device_t); 248e51a25f8SAlfred Perlstein static void dc_miibus_mediainit (device_t); 24996f2e892SBill Paul 250e51a25f8SAlfred Perlstein static void dc_setcfg (struct dc_softc *, int); 251e51a25f8SAlfred Perlstein static u_int32_t dc_crc_le (struct dc_softc *, caddr_t); 252e51a25f8SAlfred Perlstein static u_int32_t dc_crc_be (caddr_t); 253e51a25f8SAlfred Perlstein static void dc_setfilt_21143 (struct dc_softc *); 254e51a25f8SAlfred Perlstein static void dc_setfilt_asix (struct dc_softc *); 255e51a25f8SAlfred Perlstein static void dc_setfilt_admtek (struct dc_softc *); 256e51a25f8SAlfred Perlstein static void dc_setfilt_xircom (struct dc_softc *); 25796f2e892SBill Paul 258e51a25f8SAlfred Perlstein static void dc_setfilt (struct dc_softc *); 25996f2e892SBill Paul 260e51a25f8SAlfred Perlstein static void dc_reset (struct dc_softc *); 261e51a25f8SAlfred Perlstein static int dc_list_rx_init (struct dc_softc *); 262e51a25f8SAlfred Perlstein static int dc_list_tx_init (struct dc_softc *); 26396f2e892SBill Paul 2643097aa70SWarner Losh static void dc_read_srom (struct dc_softc *, int); 265e51a25f8SAlfred Perlstein static void dc_parse_21143_srom (struct dc_softc *); 266e51a25f8SAlfred Perlstein static void dc_decode_leaf_sia (struct dc_softc *, struct dc_eblock_sia *); 267e51a25f8SAlfred Perlstein static void dc_decode_leaf_mii (struct dc_softc *, struct dc_eblock_mii *); 268e51a25f8SAlfred Perlstein static void dc_decode_leaf_sym (struct dc_softc *, struct dc_eblock_sym *); 269e51a25f8SAlfred Perlstein static void dc_apply_fixup (struct dc_softc *, int); 2705c1cfac4SBill Paul 27196f2e892SBill Paul #ifdef DC_USEIOSPACE 27296f2e892SBill Paul #define DC_RES SYS_RES_IOPORT 27396f2e892SBill Paul #define DC_RID DC_PCI_CFBIO 27496f2e892SBill Paul #else 27596f2e892SBill Paul #define DC_RES SYS_RES_MEMORY 27696f2e892SBill Paul #define DC_RID DC_PCI_CFBMA 27796f2e892SBill Paul #endif 27896f2e892SBill Paul 27996f2e892SBill Paul static device_method_t dc_methods[] = { 28096f2e892SBill Paul /* Device interface */ 28196f2e892SBill Paul DEVMETHOD(device_probe, dc_probe), 28296f2e892SBill Paul DEVMETHOD(device_attach, dc_attach), 28396f2e892SBill Paul DEVMETHOD(device_detach, dc_detach), 284e8388e14SMitsuru IWASAKI DEVMETHOD(device_suspend, dc_suspend), 285e8388e14SMitsuru IWASAKI DEVMETHOD(device_resume, dc_resume), 28696f2e892SBill Paul DEVMETHOD(device_shutdown, dc_shutdown), 28796f2e892SBill Paul 28896f2e892SBill Paul /* bus interface */ 28996f2e892SBill Paul DEVMETHOD(bus_print_child, bus_generic_print_child), 29096f2e892SBill Paul DEVMETHOD(bus_driver_added, bus_generic_driver_added), 29196f2e892SBill Paul 29296f2e892SBill Paul /* MII interface */ 29396f2e892SBill Paul DEVMETHOD(miibus_readreg, dc_miibus_readreg), 29496f2e892SBill Paul DEVMETHOD(miibus_writereg, dc_miibus_writereg), 29596f2e892SBill Paul DEVMETHOD(miibus_statchg, dc_miibus_statchg), 296f43d9309SBill Paul DEVMETHOD(miibus_mediainit, dc_miibus_mediainit), 29796f2e892SBill Paul 29896f2e892SBill Paul { 0, 0 } 29996f2e892SBill Paul }; 30096f2e892SBill Paul 30196f2e892SBill Paul static driver_t dc_driver = { 30296f2e892SBill Paul "dc", 30396f2e892SBill Paul dc_methods, 30496f2e892SBill Paul sizeof(struct dc_softc) 30596f2e892SBill Paul }; 30696f2e892SBill Paul 30796f2e892SBill Paul static devclass_t dc_devclass; 30801faf54bSLuigi Rizzo #ifdef __i386__ 30901faf54bSLuigi Rizzo static int dc_quick=1; 31001faf54bSLuigi Rizzo SYSCTL_INT(_hw, OID_AUTO, dc_quick, CTLFLAG_RW, 31101faf54bSLuigi Rizzo &dc_quick,0,"do not mdevget in dc driver"); 31201faf54bSLuigi Rizzo #endif 31396f2e892SBill Paul 314feb78939SJonathan Chen DRIVER_MODULE(if_dc, cardbus, dc_driver, dc_devclass, 0, 0); 31596f2e892SBill Paul DRIVER_MODULE(if_dc, pci, dc_driver, dc_devclass, 0, 0); 31696f2e892SBill Paul DRIVER_MODULE(miibus, dc, miibus_driver, miibus_devclass, 0, 0); 31796f2e892SBill Paul 31896f2e892SBill Paul #define DC_SETBIT(sc, reg, x) \ 31996f2e892SBill Paul CSR_WRITE_4(sc, reg, CSR_READ_4(sc, reg) | (x)) 32096f2e892SBill Paul 32196f2e892SBill Paul #define DC_CLRBIT(sc, reg, x) \ 32296f2e892SBill Paul CSR_WRITE_4(sc, reg, CSR_READ_4(sc, reg) & ~(x)) 32396f2e892SBill Paul 32496f2e892SBill Paul #define SIO_SET(x) DC_SETBIT(sc, DC_SIO, (x)) 32596f2e892SBill Paul #define SIO_CLR(x) DC_CLRBIT(sc, DC_SIO, (x)) 32696f2e892SBill Paul 327b50c6312SJonathan Lemon #define IS_MPSAFE 0 328b50c6312SJonathan Lemon 329e3d2833aSAlfred Perlstein static void 330e3d2833aSAlfred Perlstein dc_delay(sc) 33196f2e892SBill Paul struct dc_softc *sc; 33296f2e892SBill Paul { 33396f2e892SBill Paul int idx; 33496f2e892SBill Paul 33596f2e892SBill Paul for (idx = (300 / 33) + 1; idx > 0; idx--) 33696f2e892SBill Paul CSR_READ_4(sc, DC_BUSCTL); 33796f2e892SBill Paul } 33896f2e892SBill Paul 3392c876e15SPoul-Henning Kamp static void 3402c876e15SPoul-Henning Kamp dc_eeprom_width(sc) 3413097aa70SWarner Losh struct dc_softc *sc; 3423097aa70SWarner Losh { 3433097aa70SWarner Losh int i; 3443097aa70SWarner Losh 3453097aa70SWarner Losh /* Force EEPROM to idle state. */ 3463097aa70SWarner Losh dc_eeprom_idle(sc); 3473097aa70SWarner Losh 3483097aa70SWarner Losh /* Enter EEPROM access mode. */ 3493097aa70SWarner Losh CSR_WRITE_4(sc, DC_SIO, DC_SIO_EESEL); 3503097aa70SWarner Losh dc_delay(sc); 3513097aa70SWarner Losh DC_SETBIT(sc, DC_SIO, DC_SIO_ROMCTL_READ); 3523097aa70SWarner Losh dc_delay(sc); 3533097aa70SWarner Losh DC_CLRBIT(sc, DC_SIO, DC_SIO_EE_CLK); 3543097aa70SWarner Losh dc_delay(sc); 3553097aa70SWarner Losh DC_SETBIT(sc, DC_SIO, DC_SIO_EE_CS); 3563097aa70SWarner Losh dc_delay(sc); 3573097aa70SWarner Losh 3583097aa70SWarner Losh for (i = 3; i--;) { 3593097aa70SWarner Losh if (6 & (1 << i)) 3603097aa70SWarner Losh DC_SETBIT(sc, DC_SIO, DC_SIO_EE_DATAIN); 3613097aa70SWarner Losh else 3623097aa70SWarner Losh DC_CLRBIT(sc, DC_SIO, DC_SIO_EE_DATAIN); 3633097aa70SWarner Losh dc_delay(sc); 3643097aa70SWarner Losh DC_SETBIT(sc, DC_SIO, DC_SIO_EE_CLK); 3653097aa70SWarner Losh dc_delay(sc); 3663097aa70SWarner Losh DC_CLRBIT(sc, DC_SIO, DC_SIO_EE_CLK); 3673097aa70SWarner Losh dc_delay(sc); 3683097aa70SWarner Losh } 3693097aa70SWarner Losh 3703097aa70SWarner Losh for (i = 1; i <= 12; i++) { 3713097aa70SWarner Losh DC_SETBIT(sc, DC_SIO, DC_SIO_EE_CLK); 3723097aa70SWarner Losh dc_delay(sc); 3733097aa70SWarner Losh if (!(CSR_READ_4(sc, DC_SIO) & DC_SIO_EE_DATAOUT)) { 3743097aa70SWarner Losh DC_CLRBIT(sc, DC_SIO, DC_SIO_EE_CLK); 3753097aa70SWarner Losh dc_delay(sc); 3763097aa70SWarner Losh break; 3773097aa70SWarner Losh } 3783097aa70SWarner Losh DC_CLRBIT(sc, DC_SIO, DC_SIO_EE_CLK); 3793097aa70SWarner Losh dc_delay(sc); 3803097aa70SWarner Losh } 3813097aa70SWarner Losh 3823097aa70SWarner Losh /* Turn off EEPROM access mode. */ 3833097aa70SWarner Losh dc_eeprom_idle(sc); 3843097aa70SWarner Losh 3853097aa70SWarner Losh if (i < 4 || i > 12) 3863097aa70SWarner Losh sc->dc_romwidth = 6; 3873097aa70SWarner Losh else 3883097aa70SWarner Losh sc->dc_romwidth = i; 3893097aa70SWarner Losh 3903097aa70SWarner Losh /* Enter EEPROM access mode. */ 3913097aa70SWarner Losh CSR_WRITE_4(sc, DC_SIO, DC_SIO_EESEL); 3923097aa70SWarner Losh dc_delay(sc); 3933097aa70SWarner Losh DC_SETBIT(sc, DC_SIO, DC_SIO_ROMCTL_READ); 3943097aa70SWarner Losh dc_delay(sc); 3953097aa70SWarner Losh DC_CLRBIT(sc, DC_SIO, DC_SIO_EE_CLK); 3963097aa70SWarner Losh dc_delay(sc); 3973097aa70SWarner Losh DC_SETBIT(sc, DC_SIO, DC_SIO_EE_CS); 3983097aa70SWarner Losh dc_delay(sc); 3993097aa70SWarner Losh 4003097aa70SWarner Losh /* Turn off EEPROM access mode. */ 4013097aa70SWarner Losh dc_eeprom_idle(sc); 4023097aa70SWarner Losh } 4033097aa70SWarner Losh 404e3d2833aSAlfred Perlstein static void 405e3d2833aSAlfred Perlstein dc_eeprom_idle(sc) 40696f2e892SBill Paul struct dc_softc *sc; 40796f2e892SBill Paul { 40896f2e892SBill Paul register int i; 40996f2e892SBill Paul 41096f2e892SBill Paul CSR_WRITE_4(sc, DC_SIO, DC_SIO_EESEL); 41196f2e892SBill Paul dc_delay(sc); 41296f2e892SBill Paul DC_SETBIT(sc, DC_SIO, DC_SIO_ROMCTL_READ); 41396f2e892SBill Paul dc_delay(sc); 41496f2e892SBill Paul DC_CLRBIT(sc, DC_SIO, DC_SIO_EE_CLK); 41596f2e892SBill Paul dc_delay(sc); 41696f2e892SBill Paul DC_SETBIT(sc, DC_SIO, DC_SIO_EE_CS); 41796f2e892SBill Paul dc_delay(sc); 41896f2e892SBill Paul 41996f2e892SBill Paul for (i = 0; i < 25; i++) { 42096f2e892SBill Paul DC_CLRBIT(sc, DC_SIO, DC_SIO_EE_CLK); 42196f2e892SBill Paul dc_delay(sc); 42296f2e892SBill Paul DC_SETBIT(sc, DC_SIO, DC_SIO_EE_CLK); 42396f2e892SBill Paul dc_delay(sc); 42496f2e892SBill Paul } 42596f2e892SBill Paul 42696f2e892SBill Paul DC_CLRBIT(sc, DC_SIO, DC_SIO_EE_CLK); 42796f2e892SBill Paul dc_delay(sc); 42896f2e892SBill Paul DC_CLRBIT(sc, DC_SIO, DC_SIO_EE_CS); 42996f2e892SBill Paul dc_delay(sc); 43096f2e892SBill Paul CSR_WRITE_4(sc, DC_SIO, 0x00000000); 43196f2e892SBill Paul 43296f2e892SBill Paul return; 43396f2e892SBill Paul } 43496f2e892SBill Paul 43596f2e892SBill Paul /* 43696f2e892SBill Paul * Send a read command and address to the EEPROM, check for ACK. 43796f2e892SBill Paul */ 438e3d2833aSAlfred Perlstein static void 439e3d2833aSAlfred Perlstein dc_eeprom_putbyte(sc, addr) 44096f2e892SBill Paul struct dc_softc *sc; 44196f2e892SBill Paul int addr; 44296f2e892SBill Paul { 44396f2e892SBill Paul register int d, i; 44496f2e892SBill Paul 4453097aa70SWarner Losh d = DC_EECMD_READ >> 6; 4463097aa70SWarner Losh for (i = 3; i--; ) { 4473097aa70SWarner Losh if (d & (1 << i)) 4483097aa70SWarner Losh DC_SETBIT(sc, DC_SIO, DC_SIO_EE_DATAIN); 44996f2e892SBill Paul else 4503097aa70SWarner Losh DC_CLRBIT(sc, DC_SIO, DC_SIO_EE_DATAIN); 4513097aa70SWarner Losh dc_delay(sc); 4523097aa70SWarner Losh DC_SETBIT(sc, DC_SIO, DC_SIO_EE_CLK); 4533097aa70SWarner Losh dc_delay(sc); 4543097aa70SWarner Losh DC_CLRBIT(sc, DC_SIO, DC_SIO_EE_CLK); 4553097aa70SWarner Losh dc_delay(sc); 4563097aa70SWarner Losh } 45796f2e892SBill Paul 45896f2e892SBill Paul /* 45996f2e892SBill Paul * Feed in each bit and strobe the clock. 46096f2e892SBill Paul */ 4613097aa70SWarner Losh for (i = sc->dc_romwidth; i--;) { 4623097aa70SWarner Losh if (addr & (1 << i)) { 46396f2e892SBill Paul SIO_SET(DC_SIO_EE_DATAIN); 46496f2e892SBill Paul } else { 46596f2e892SBill Paul SIO_CLR(DC_SIO_EE_DATAIN); 46696f2e892SBill Paul } 46796f2e892SBill Paul dc_delay(sc); 46896f2e892SBill Paul SIO_SET(DC_SIO_EE_CLK); 46996f2e892SBill Paul dc_delay(sc); 47096f2e892SBill Paul SIO_CLR(DC_SIO_EE_CLK); 47196f2e892SBill Paul dc_delay(sc); 47296f2e892SBill Paul } 47396f2e892SBill Paul 47496f2e892SBill Paul return; 47596f2e892SBill Paul } 47696f2e892SBill Paul 47796f2e892SBill Paul /* 47896f2e892SBill Paul * Read a word of data stored in the EEPROM at address 'addr.' 47996f2e892SBill Paul * The PNIC 82c168/82c169 has its own non-standard way to read 48096f2e892SBill Paul * the EEPROM. 48196f2e892SBill Paul */ 482e3d2833aSAlfred Perlstein static void 483e3d2833aSAlfred Perlstein dc_eeprom_getword_pnic(sc, addr, dest) 48496f2e892SBill Paul struct dc_softc *sc; 48596f2e892SBill Paul int addr; 48696f2e892SBill Paul u_int16_t *dest; 48796f2e892SBill Paul { 48896f2e892SBill Paul register int i; 48996f2e892SBill Paul u_int32_t r; 49096f2e892SBill Paul 49196f2e892SBill Paul CSR_WRITE_4(sc, DC_PN_SIOCTL, DC_PN_EEOPCODE_READ|addr); 49296f2e892SBill Paul 49396f2e892SBill Paul for (i = 0; i < DC_TIMEOUT; i++) { 49496f2e892SBill Paul DELAY(1); 49596f2e892SBill Paul r = CSR_READ_4(sc, DC_SIO); 49696f2e892SBill Paul if (!(r & DC_PN_SIOCTL_BUSY)) { 49796f2e892SBill Paul *dest = (u_int16_t)(r & 0xFFFF); 49896f2e892SBill Paul return; 49996f2e892SBill Paul } 50096f2e892SBill Paul } 50196f2e892SBill Paul 50296f2e892SBill Paul return; 50396f2e892SBill Paul } 50496f2e892SBill Paul 50596f2e892SBill Paul /* 50696f2e892SBill Paul * Read a word of data stored in the EEPROM at address 'addr.' 507feb78939SJonathan Chen * The Xircom X3201 has its own non-standard way to read 508feb78939SJonathan Chen * the EEPROM, too. 509feb78939SJonathan Chen */ 510e3d2833aSAlfred Perlstein static void 511e3d2833aSAlfred Perlstein dc_eeprom_getword_xircom(sc, addr, dest) 512feb78939SJonathan Chen struct dc_softc *sc; 513feb78939SJonathan Chen int addr; 514feb78939SJonathan Chen u_int16_t *dest; 515feb78939SJonathan Chen { 516feb78939SJonathan Chen SIO_SET(DC_SIO_ROMSEL | DC_SIO_ROMCTL_READ); 517feb78939SJonathan Chen 518feb78939SJonathan Chen addr *= 2; 519feb78939SJonathan Chen CSR_WRITE_4(sc, DC_ROM, addr | 0x160); 520feb78939SJonathan Chen *dest = (u_int16_t)CSR_READ_4(sc, DC_SIO)&0xff; 521feb78939SJonathan Chen addr += 1; 522feb78939SJonathan Chen CSR_WRITE_4(sc, DC_ROM, addr | 0x160); 523feb78939SJonathan Chen *dest |= ((u_int16_t)CSR_READ_4(sc, DC_SIO)&0xff) << 8; 524feb78939SJonathan Chen 525feb78939SJonathan Chen SIO_CLR(DC_SIO_ROMSEL | DC_SIO_ROMCTL_READ); 526feb78939SJonathan Chen return; 527feb78939SJonathan Chen } 528feb78939SJonathan Chen 529feb78939SJonathan Chen /* 530feb78939SJonathan Chen * Read a word of data stored in the EEPROM at address 'addr.' 53196f2e892SBill Paul */ 532e3d2833aSAlfred Perlstein static void 533e3d2833aSAlfred Perlstein dc_eeprom_getword(sc, addr, dest) 53496f2e892SBill Paul struct dc_softc *sc; 53596f2e892SBill Paul int addr; 53696f2e892SBill Paul u_int16_t *dest; 53796f2e892SBill Paul { 53896f2e892SBill Paul register int i; 53996f2e892SBill Paul u_int16_t word = 0; 54096f2e892SBill Paul 54196f2e892SBill Paul /* Force EEPROM to idle state. */ 54296f2e892SBill Paul dc_eeprom_idle(sc); 54396f2e892SBill Paul 54496f2e892SBill Paul /* Enter EEPROM access mode. */ 54596f2e892SBill Paul CSR_WRITE_4(sc, DC_SIO, DC_SIO_EESEL); 54696f2e892SBill Paul dc_delay(sc); 54796f2e892SBill Paul DC_SETBIT(sc, DC_SIO, DC_SIO_ROMCTL_READ); 54896f2e892SBill Paul dc_delay(sc); 54996f2e892SBill Paul DC_CLRBIT(sc, DC_SIO, DC_SIO_EE_CLK); 55096f2e892SBill Paul dc_delay(sc); 55196f2e892SBill Paul DC_SETBIT(sc, DC_SIO, DC_SIO_EE_CS); 55296f2e892SBill Paul dc_delay(sc); 55396f2e892SBill Paul 55496f2e892SBill Paul /* 55596f2e892SBill Paul * Send address of word we want to read. 55696f2e892SBill Paul */ 55796f2e892SBill Paul dc_eeprom_putbyte(sc, addr); 55896f2e892SBill Paul 55996f2e892SBill Paul /* 56096f2e892SBill Paul * Start reading bits from EEPROM. 56196f2e892SBill Paul */ 56296f2e892SBill Paul for (i = 0x8000; i; i >>= 1) { 56396f2e892SBill Paul SIO_SET(DC_SIO_EE_CLK); 56496f2e892SBill Paul dc_delay(sc); 56596f2e892SBill Paul if (CSR_READ_4(sc, DC_SIO) & DC_SIO_EE_DATAOUT) 56696f2e892SBill Paul word |= i; 56796f2e892SBill Paul dc_delay(sc); 56896f2e892SBill Paul SIO_CLR(DC_SIO_EE_CLK); 56996f2e892SBill Paul dc_delay(sc); 57096f2e892SBill Paul } 57196f2e892SBill Paul 57296f2e892SBill Paul /* Turn off EEPROM access mode. */ 57396f2e892SBill Paul dc_eeprom_idle(sc); 57496f2e892SBill Paul 57596f2e892SBill Paul *dest = word; 57696f2e892SBill Paul 57796f2e892SBill Paul return; 57896f2e892SBill Paul } 57996f2e892SBill Paul 58096f2e892SBill Paul /* 58196f2e892SBill Paul * Read a sequence of words from the EEPROM. 58296f2e892SBill Paul */ 583e3d2833aSAlfred Perlstein static void 584e3d2833aSAlfred Perlstein dc_read_eeprom(sc, dest, off, cnt, swap) 58596f2e892SBill Paul struct dc_softc *sc; 58696f2e892SBill Paul caddr_t dest; 58796f2e892SBill Paul int off; 58896f2e892SBill Paul int cnt; 58996f2e892SBill Paul int swap; 59096f2e892SBill Paul { 59196f2e892SBill Paul int i; 59296f2e892SBill Paul u_int16_t word = 0, *ptr; 59396f2e892SBill Paul 59496f2e892SBill Paul for (i = 0; i < cnt; i++) { 59596f2e892SBill Paul if (DC_IS_PNIC(sc)) 59696f2e892SBill Paul dc_eeprom_getword_pnic(sc, off + i, &word); 597feb78939SJonathan Chen else if (DC_IS_XIRCOM(sc)) 598feb78939SJonathan Chen dc_eeprom_getword_xircom(sc, off + i, &word); 59996f2e892SBill Paul else 60096f2e892SBill Paul dc_eeprom_getword(sc, off + i, &word); 60196f2e892SBill Paul ptr = (u_int16_t *)(dest + (i * 2)); 60296f2e892SBill Paul if (swap) 60396f2e892SBill Paul *ptr = ntohs(word); 60496f2e892SBill Paul else 60596f2e892SBill Paul *ptr = word; 60696f2e892SBill Paul } 60796f2e892SBill Paul 60896f2e892SBill Paul return; 60996f2e892SBill Paul } 61096f2e892SBill Paul 61196f2e892SBill Paul /* 61296f2e892SBill Paul * The following two routines are taken from the Macronix 98713 61396f2e892SBill Paul * Application Notes pp.19-21. 61496f2e892SBill Paul */ 61596f2e892SBill Paul /* 61696f2e892SBill Paul * Write a bit to the MII bus. 61796f2e892SBill Paul */ 618e3d2833aSAlfred Perlstein static void 619e3d2833aSAlfred Perlstein dc_mii_writebit(sc, bit) 62096f2e892SBill Paul struct dc_softc *sc; 62196f2e892SBill Paul int bit; 62296f2e892SBill Paul { 62396f2e892SBill Paul if (bit) 62496f2e892SBill Paul CSR_WRITE_4(sc, DC_SIO, 62596f2e892SBill Paul DC_SIO_ROMCTL_WRITE|DC_SIO_MII_DATAOUT); 62696f2e892SBill Paul else 62796f2e892SBill Paul CSR_WRITE_4(sc, DC_SIO, DC_SIO_ROMCTL_WRITE); 62896f2e892SBill Paul 62996f2e892SBill Paul DC_SETBIT(sc, DC_SIO, DC_SIO_MII_CLK); 63096f2e892SBill Paul DC_CLRBIT(sc, DC_SIO, DC_SIO_MII_CLK); 63196f2e892SBill Paul 63296f2e892SBill Paul return; 63396f2e892SBill Paul } 63496f2e892SBill Paul 63596f2e892SBill Paul /* 63696f2e892SBill Paul * Read a bit from the MII bus. 63796f2e892SBill Paul */ 638e3d2833aSAlfred Perlstein static int 639e3d2833aSAlfred Perlstein dc_mii_readbit(sc) 64096f2e892SBill Paul struct dc_softc *sc; 64196f2e892SBill Paul { 64296f2e892SBill Paul CSR_WRITE_4(sc, DC_SIO, DC_SIO_ROMCTL_READ|DC_SIO_MII_DIR); 64396f2e892SBill Paul CSR_READ_4(sc, DC_SIO); 64496f2e892SBill Paul DC_SETBIT(sc, DC_SIO, DC_SIO_MII_CLK); 64596f2e892SBill Paul DC_CLRBIT(sc, DC_SIO, DC_SIO_MII_CLK); 64696f2e892SBill Paul if (CSR_READ_4(sc, DC_SIO) & DC_SIO_MII_DATAIN) 64796f2e892SBill Paul return(1); 64896f2e892SBill Paul 64996f2e892SBill Paul return(0); 65096f2e892SBill Paul } 65196f2e892SBill Paul 65296f2e892SBill Paul /* 65396f2e892SBill Paul * Sync the PHYs by setting data bit and strobing the clock 32 times. 65496f2e892SBill Paul */ 655e3d2833aSAlfred Perlstein static void 656e3d2833aSAlfred Perlstein dc_mii_sync(sc) 65796f2e892SBill Paul struct dc_softc *sc; 65896f2e892SBill Paul { 65996f2e892SBill Paul register int i; 66096f2e892SBill Paul 66196f2e892SBill Paul CSR_WRITE_4(sc, DC_SIO, DC_SIO_ROMCTL_WRITE); 66296f2e892SBill Paul 66396f2e892SBill Paul for (i = 0; i < 32; i++) 66496f2e892SBill Paul dc_mii_writebit(sc, 1); 66596f2e892SBill Paul 66696f2e892SBill Paul return; 66796f2e892SBill Paul } 66896f2e892SBill Paul 66996f2e892SBill Paul /* 67096f2e892SBill Paul * Clock a series of bits through the MII. 67196f2e892SBill Paul */ 672e3d2833aSAlfred Perlstein static void 673e3d2833aSAlfred Perlstein dc_mii_send(sc, bits, cnt) 67496f2e892SBill Paul struct dc_softc *sc; 67596f2e892SBill Paul u_int32_t bits; 67696f2e892SBill Paul int cnt; 67796f2e892SBill Paul { 67896f2e892SBill Paul int i; 67996f2e892SBill Paul 68096f2e892SBill Paul for (i = (0x1 << (cnt - 1)); i; i >>= 1) 68196f2e892SBill Paul dc_mii_writebit(sc, bits & i); 68296f2e892SBill Paul } 68396f2e892SBill Paul 68496f2e892SBill Paul /* 68596f2e892SBill Paul * Read an PHY register through the MII. 68696f2e892SBill Paul */ 687e3d2833aSAlfred Perlstein static int 688e3d2833aSAlfred Perlstein dc_mii_readreg(sc, frame) 68996f2e892SBill Paul struct dc_softc *sc; 69096f2e892SBill Paul struct dc_mii_frame *frame; 69196f2e892SBill Paul 69296f2e892SBill Paul { 693d1ce9105SBill Paul int i, ack; 69496f2e892SBill Paul 695d1ce9105SBill Paul DC_LOCK(sc); 69696f2e892SBill Paul 69796f2e892SBill Paul /* 69896f2e892SBill Paul * Set up frame for RX. 69996f2e892SBill Paul */ 70096f2e892SBill Paul frame->mii_stdelim = DC_MII_STARTDELIM; 70196f2e892SBill Paul frame->mii_opcode = DC_MII_READOP; 70296f2e892SBill Paul frame->mii_turnaround = 0; 70396f2e892SBill Paul frame->mii_data = 0; 70496f2e892SBill Paul 70596f2e892SBill Paul /* 70696f2e892SBill Paul * Sync the PHYs. 70796f2e892SBill Paul */ 70896f2e892SBill Paul dc_mii_sync(sc); 70996f2e892SBill Paul 71096f2e892SBill Paul /* 71196f2e892SBill Paul * Send command/address info. 71296f2e892SBill Paul */ 71396f2e892SBill Paul dc_mii_send(sc, frame->mii_stdelim, 2); 71496f2e892SBill Paul dc_mii_send(sc, frame->mii_opcode, 2); 71596f2e892SBill Paul dc_mii_send(sc, frame->mii_phyaddr, 5); 71696f2e892SBill Paul dc_mii_send(sc, frame->mii_regaddr, 5); 71796f2e892SBill Paul 71896f2e892SBill Paul #ifdef notdef 71996f2e892SBill Paul /* Idle bit */ 72096f2e892SBill Paul dc_mii_writebit(sc, 1); 72196f2e892SBill Paul dc_mii_writebit(sc, 0); 72296f2e892SBill Paul #endif 72396f2e892SBill Paul 72496f2e892SBill Paul /* Check for ack */ 72596f2e892SBill Paul ack = dc_mii_readbit(sc); 72696f2e892SBill Paul 72796f2e892SBill Paul /* 72896f2e892SBill Paul * Now try reading data bits. If the ack failed, we still 72996f2e892SBill Paul * need to clock through 16 cycles to keep the PHY(s) in sync. 73096f2e892SBill Paul */ 73196f2e892SBill Paul if (ack) { 73296f2e892SBill Paul for(i = 0; i < 16; i++) { 73396f2e892SBill Paul dc_mii_readbit(sc); 73496f2e892SBill Paul } 73596f2e892SBill Paul goto fail; 73696f2e892SBill Paul } 73796f2e892SBill Paul 73896f2e892SBill Paul for (i = 0x8000; i; i >>= 1) { 73996f2e892SBill Paul if (!ack) { 74096f2e892SBill Paul if (dc_mii_readbit(sc)) 74196f2e892SBill Paul frame->mii_data |= i; 74296f2e892SBill Paul } 74396f2e892SBill Paul } 74496f2e892SBill Paul 74596f2e892SBill Paul fail: 74696f2e892SBill Paul 74796f2e892SBill Paul dc_mii_writebit(sc, 0); 74896f2e892SBill Paul dc_mii_writebit(sc, 0); 74996f2e892SBill Paul 750d1ce9105SBill Paul DC_UNLOCK(sc); 75196f2e892SBill Paul 75296f2e892SBill Paul if (ack) 75396f2e892SBill Paul return(1); 75496f2e892SBill Paul return(0); 75596f2e892SBill Paul } 75696f2e892SBill Paul 75796f2e892SBill Paul /* 75896f2e892SBill Paul * Write to a PHY register through the MII. 75996f2e892SBill Paul */ 760e3d2833aSAlfred Perlstein static int 761e3d2833aSAlfred Perlstein dc_mii_writereg(sc, frame) 76296f2e892SBill Paul struct dc_softc *sc; 76396f2e892SBill Paul struct dc_mii_frame *frame; 76496f2e892SBill Paul 76596f2e892SBill Paul { 766d1ce9105SBill Paul DC_LOCK(sc); 76796f2e892SBill Paul /* 76896f2e892SBill Paul * Set up frame for TX. 76996f2e892SBill Paul */ 77096f2e892SBill Paul 77196f2e892SBill Paul frame->mii_stdelim = DC_MII_STARTDELIM; 77296f2e892SBill Paul frame->mii_opcode = DC_MII_WRITEOP; 77396f2e892SBill Paul frame->mii_turnaround = DC_MII_TURNAROUND; 77496f2e892SBill Paul 77596f2e892SBill Paul /* 77696f2e892SBill Paul * Sync the PHYs. 77796f2e892SBill Paul */ 77896f2e892SBill Paul dc_mii_sync(sc); 77996f2e892SBill Paul 78096f2e892SBill Paul dc_mii_send(sc, frame->mii_stdelim, 2); 78196f2e892SBill Paul dc_mii_send(sc, frame->mii_opcode, 2); 78296f2e892SBill Paul dc_mii_send(sc, frame->mii_phyaddr, 5); 78396f2e892SBill Paul dc_mii_send(sc, frame->mii_regaddr, 5); 78496f2e892SBill Paul dc_mii_send(sc, frame->mii_turnaround, 2); 78596f2e892SBill Paul dc_mii_send(sc, frame->mii_data, 16); 78696f2e892SBill Paul 78796f2e892SBill Paul /* Idle bit. */ 78896f2e892SBill Paul dc_mii_writebit(sc, 0); 78996f2e892SBill Paul dc_mii_writebit(sc, 0); 79096f2e892SBill Paul 791d1ce9105SBill Paul DC_UNLOCK(sc); 79296f2e892SBill Paul 79396f2e892SBill Paul return(0); 79496f2e892SBill Paul } 79596f2e892SBill Paul 796e3d2833aSAlfred Perlstein static int 797e3d2833aSAlfred Perlstein dc_miibus_readreg(dev, phy, reg) 79896f2e892SBill Paul device_t dev; 79996f2e892SBill Paul int phy, reg; 80096f2e892SBill Paul { 80196f2e892SBill Paul struct dc_mii_frame frame; 80296f2e892SBill Paul struct dc_softc *sc; 803c85c4667SBill Paul int i, rval, phy_reg = 0; 80496f2e892SBill Paul 80596f2e892SBill Paul sc = device_get_softc(dev); 80696f2e892SBill Paul bzero((char *)&frame, sizeof(frame)); 80796f2e892SBill Paul 80896f2e892SBill Paul /* 80996f2e892SBill Paul * Note: both the AL981 and AN985 have internal PHYs, 81096f2e892SBill Paul * however the AL981 provides direct access to the PHY 81196f2e892SBill Paul * registers while the AN985 uses a serial MII interface. 81296f2e892SBill Paul * The AN985's MII interface is also buggy in that you 81396f2e892SBill Paul * can read from any MII address (0 to 31), but only address 1 81496f2e892SBill Paul * behaves normally. To deal with both cases, we pretend 81596f2e892SBill Paul * that the PHY is at MII address 1. 81696f2e892SBill Paul */ 81796f2e892SBill Paul if (DC_IS_ADMTEK(sc) && phy != DC_ADMTEK_PHYADDR) 81896f2e892SBill Paul return(0); 81996f2e892SBill Paul 8201af8bec7SBill Paul /* 8211af8bec7SBill Paul * Note: the ukphy probes of the RS7112 report a PHY at 8221af8bec7SBill Paul * MII address 0 (possibly HomePNA?) and 1 (ethernet) 8231af8bec7SBill Paul * so we only respond to correct one. 8241af8bec7SBill Paul */ 8251af8bec7SBill Paul if (DC_IS_CONEXANT(sc) && phy != DC_CONEXANT_PHYADDR) 8261af8bec7SBill Paul return(0); 8271af8bec7SBill Paul 8285c1cfac4SBill Paul if (sc->dc_pmode != DC_PMODE_MII) { 82996f2e892SBill Paul if (phy == (MII_NPHY - 1)) { 83096f2e892SBill Paul switch(reg) { 83196f2e892SBill Paul case MII_BMSR: 83296f2e892SBill Paul /* 83396f2e892SBill Paul * Fake something to make the probe 83496f2e892SBill Paul * code think there's a PHY here. 83596f2e892SBill Paul */ 83696f2e892SBill Paul return(BMSR_MEDIAMASK); 83796f2e892SBill Paul break; 83896f2e892SBill Paul case MII_PHYIDR1: 83996f2e892SBill Paul if (DC_IS_PNIC(sc)) 84096f2e892SBill Paul return(DC_VENDORID_LO); 84196f2e892SBill Paul return(DC_VENDORID_DEC); 84296f2e892SBill Paul break; 84396f2e892SBill Paul case MII_PHYIDR2: 84496f2e892SBill Paul if (DC_IS_PNIC(sc)) 84596f2e892SBill Paul return(DC_DEVICEID_82C168); 84696f2e892SBill Paul return(DC_DEVICEID_21143); 84796f2e892SBill Paul break; 84896f2e892SBill Paul default: 84996f2e892SBill Paul return(0); 85096f2e892SBill Paul break; 85196f2e892SBill Paul } 85296f2e892SBill Paul } else 85396f2e892SBill Paul return(0); 85496f2e892SBill Paul } 85596f2e892SBill Paul 85696f2e892SBill Paul if (DC_IS_PNIC(sc)) { 85796f2e892SBill Paul CSR_WRITE_4(sc, DC_PN_MII, DC_PN_MIIOPCODE_READ | 85896f2e892SBill Paul (phy << 23) | (reg << 18)); 85996f2e892SBill Paul for (i = 0; i < DC_TIMEOUT; i++) { 86096f2e892SBill Paul DELAY(1); 86196f2e892SBill Paul rval = CSR_READ_4(sc, DC_PN_MII); 86296f2e892SBill Paul if (!(rval & DC_PN_MII_BUSY)) { 86396f2e892SBill Paul rval &= 0xFFFF; 86496f2e892SBill Paul return(rval == 0xFFFF ? 0 : rval); 86596f2e892SBill Paul } 86696f2e892SBill Paul } 86796f2e892SBill Paul return(0); 86896f2e892SBill Paul } 86996f2e892SBill Paul 87096f2e892SBill Paul if (DC_IS_COMET(sc)) { 87196f2e892SBill Paul switch(reg) { 87296f2e892SBill Paul case MII_BMCR: 87396f2e892SBill Paul phy_reg = DC_AL_BMCR; 87496f2e892SBill Paul break; 87596f2e892SBill Paul case MII_BMSR: 87696f2e892SBill Paul phy_reg = DC_AL_BMSR; 87796f2e892SBill Paul break; 87896f2e892SBill Paul case MII_PHYIDR1: 87996f2e892SBill Paul phy_reg = DC_AL_VENID; 88096f2e892SBill Paul break; 88196f2e892SBill Paul case MII_PHYIDR2: 88296f2e892SBill Paul phy_reg = DC_AL_DEVID; 88396f2e892SBill Paul break; 88496f2e892SBill Paul case MII_ANAR: 88596f2e892SBill Paul phy_reg = DC_AL_ANAR; 88696f2e892SBill Paul break; 88796f2e892SBill Paul case MII_ANLPAR: 88896f2e892SBill Paul phy_reg = DC_AL_LPAR; 88996f2e892SBill Paul break; 89096f2e892SBill Paul case MII_ANER: 89196f2e892SBill Paul phy_reg = DC_AL_ANER; 89296f2e892SBill Paul break; 89396f2e892SBill Paul default: 89496f2e892SBill Paul printf("dc%d: phy_read: bad phy register %x\n", 89596f2e892SBill Paul sc->dc_unit, reg); 89696f2e892SBill Paul return(0); 89796f2e892SBill Paul break; 89896f2e892SBill Paul } 89996f2e892SBill Paul 90096f2e892SBill Paul rval = CSR_READ_4(sc, phy_reg) & 0x0000FFFF; 90196f2e892SBill Paul 90296f2e892SBill Paul if (rval == 0xFFFF) 90396f2e892SBill Paul return(0); 90496f2e892SBill Paul return(rval); 90596f2e892SBill Paul } 90696f2e892SBill Paul 90796f2e892SBill Paul frame.mii_phyaddr = phy; 90896f2e892SBill Paul frame.mii_regaddr = reg; 909419146d9SBill Paul if (sc->dc_type == DC_TYPE_98713) { 910f43d9309SBill Paul phy_reg = CSR_READ_4(sc, DC_NETCFG); 911f43d9309SBill Paul CSR_WRITE_4(sc, DC_NETCFG, phy_reg & ~DC_NETCFG_PORTSEL); 912419146d9SBill Paul } 91396f2e892SBill Paul dc_mii_readreg(sc, &frame); 914419146d9SBill Paul if (sc->dc_type == DC_TYPE_98713) 915f43d9309SBill Paul CSR_WRITE_4(sc, DC_NETCFG, phy_reg); 91696f2e892SBill Paul 91796f2e892SBill Paul return(frame.mii_data); 91896f2e892SBill Paul } 91996f2e892SBill Paul 920e3d2833aSAlfred Perlstein static int 921e3d2833aSAlfred Perlstein dc_miibus_writereg(dev, phy, reg, data) 92296f2e892SBill Paul device_t dev; 92396f2e892SBill Paul int phy, reg, data; 92496f2e892SBill Paul { 92596f2e892SBill Paul struct dc_softc *sc; 92696f2e892SBill Paul struct dc_mii_frame frame; 927c85c4667SBill Paul int i, phy_reg = 0; 92896f2e892SBill Paul 92996f2e892SBill Paul sc = device_get_softc(dev); 93096f2e892SBill Paul bzero((char *)&frame, sizeof(frame)); 93196f2e892SBill Paul 93296f2e892SBill Paul if (DC_IS_ADMTEK(sc) && phy != DC_ADMTEK_PHYADDR) 93396f2e892SBill Paul return(0); 93496f2e892SBill Paul 9351af8bec7SBill Paul if (DC_IS_CONEXANT(sc) && phy != DC_CONEXANT_PHYADDR) 9361af8bec7SBill Paul return(0); 9371af8bec7SBill Paul 93896f2e892SBill Paul if (DC_IS_PNIC(sc)) { 93996f2e892SBill Paul CSR_WRITE_4(sc, DC_PN_MII, DC_PN_MIIOPCODE_WRITE | 94096f2e892SBill Paul (phy << 23) | (reg << 10) | data); 94196f2e892SBill Paul for (i = 0; i < DC_TIMEOUT; i++) { 94296f2e892SBill Paul if (!(CSR_READ_4(sc, DC_PN_MII) & DC_PN_MII_BUSY)) 94396f2e892SBill Paul break; 94496f2e892SBill Paul } 94596f2e892SBill Paul return(0); 94696f2e892SBill Paul } 94796f2e892SBill Paul 94896f2e892SBill Paul if (DC_IS_COMET(sc)) { 94996f2e892SBill Paul switch(reg) { 95096f2e892SBill Paul case MII_BMCR: 95196f2e892SBill Paul phy_reg = DC_AL_BMCR; 95296f2e892SBill Paul break; 95396f2e892SBill Paul case MII_BMSR: 95496f2e892SBill Paul phy_reg = DC_AL_BMSR; 95596f2e892SBill Paul break; 95696f2e892SBill Paul case MII_PHYIDR1: 95796f2e892SBill Paul phy_reg = DC_AL_VENID; 95896f2e892SBill Paul break; 95996f2e892SBill Paul case MII_PHYIDR2: 96096f2e892SBill Paul phy_reg = DC_AL_DEVID; 96196f2e892SBill Paul break; 96296f2e892SBill Paul case MII_ANAR: 96396f2e892SBill Paul phy_reg = DC_AL_ANAR; 96496f2e892SBill Paul break; 96596f2e892SBill Paul case MII_ANLPAR: 96696f2e892SBill Paul phy_reg = DC_AL_LPAR; 96796f2e892SBill Paul break; 96896f2e892SBill Paul case MII_ANER: 96996f2e892SBill Paul phy_reg = DC_AL_ANER; 97096f2e892SBill Paul break; 97196f2e892SBill Paul default: 97296f2e892SBill Paul printf("dc%d: phy_write: bad phy register %x\n", 97396f2e892SBill Paul sc->dc_unit, reg); 97496f2e892SBill Paul return(0); 97596f2e892SBill Paul break; 97696f2e892SBill Paul } 97796f2e892SBill Paul 97896f2e892SBill Paul CSR_WRITE_4(sc, phy_reg, data); 97996f2e892SBill Paul return(0); 98096f2e892SBill Paul } 98196f2e892SBill Paul 98296f2e892SBill Paul frame.mii_phyaddr = phy; 98396f2e892SBill Paul frame.mii_regaddr = reg; 98496f2e892SBill Paul frame.mii_data = data; 98596f2e892SBill Paul 986419146d9SBill Paul if (sc->dc_type == DC_TYPE_98713) { 987f43d9309SBill Paul phy_reg = CSR_READ_4(sc, DC_NETCFG); 988f43d9309SBill Paul CSR_WRITE_4(sc, DC_NETCFG, phy_reg & ~DC_NETCFG_PORTSEL); 989419146d9SBill Paul } 99096f2e892SBill Paul dc_mii_writereg(sc, &frame); 991419146d9SBill Paul if (sc->dc_type == DC_TYPE_98713) 992f43d9309SBill Paul CSR_WRITE_4(sc, DC_NETCFG, phy_reg); 99396f2e892SBill Paul 99496f2e892SBill Paul return(0); 99596f2e892SBill Paul } 99696f2e892SBill Paul 997e3d2833aSAlfred Perlstein static void 998e3d2833aSAlfred Perlstein dc_miibus_statchg(dev) 99996f2e892SBill Paul device_t dev; 100096f2e892SBill Paul { 100196f2e892SBill Paul struct dc_softc *sc; 100296f2e892SBill Paul struct mii_data *mii; 1003f43d9309SBill Paul struct ifmedia *ifm; 100496f2e892SBill Paul 100596f2e892SBill Paul sc = device_get_softc(dev); 100696f2e892SBill Paul if (DC_IS_ADMTEK(sc)) 100796f2e892SBill Paul return; 10085c1cfac4SBill Paul 100996f2e892SBill Paul mii = device_get_softc(sc->dc_miibus); 1010f43d9309SBill Paul ifm = &mii->mii_media; 1011f43d9309SBill Paul if (DC_IS_DAVICOM(sc) && 101245521525SPoul-Henning Kamp IFM_SUBTYPE(ifm->ifm_media) == IFM_HPNA_1) { 1013f43d9309SBill Paul dc_setcfg(sc, ifm->ifm_media); 1014f43d9309SBill Paul sc->dc_if_media = ifm->ifm_media; 1015f43d9309SBill Paul } else { 101696f2e892SBill Paul dc_setcfg(sc, mii->mii_media_active); 101796f2e892SBill Paul sc->dc_if_media = mii->mii_media_active; 1018f43d9309SBill Paul } 1019f43d9309SBill Paul 1020f43d9309SBill Paul return; 1021f43d9309SBill Paul } 1022f43d9309SBill Paul 1023f43d9309SBill Paul /* 1024f43d9309SBill Paul * Special support for DM9102A cards with HomePNA PHYs. Note: 1025f43d9309SBill Paul * with the Davicom DM9102A/DM9801 eval board that I have, it seems 1026f43d9309SBill Paul * to be impossible to talk to the management interface of the DM9801 1027f43d9309SBill Paul * PHY (its MDIO pin is not connected to anything). Consequently, 1028f43d9309SBill Paul * the driver has to just 'know' about the additional mode and deal 1029f43d9309SBill Paul * with it itself. *sigh* 1030f43d9309SBill Paul */ 1031e3d2833aSAlfred Perlstein static void 1032e3d2833aSAlfred Perlstein dc_miibus_mediainit(dev) 1033f43d9309SBill Paul device_t dev; 1034f43d9309SBill Paul { 1035f43d9309SBill Paul struct dc_softc *sc; 1036f43d9309SBill Paul struct mii_data *mii; 1037f43d9309SBill Paul struct ifmedia *ifm; 1038f43d9309SBill Paul int rev; 1039f43d9309SBill Paul 1040f43d9309SBill Paul rev = pci_read_config(dev, DC_PCI_CFRV, 4) & 0xFF; 1041f43d9309SBill Paul 1042f43d9309SBill Paul sc = device_get_softc(dev); 1043f43d9309SBill Paul mii = device_get_softc(sc->dc_miibus); 1044f43d9309SBill Paul ifm = &mii->mii_media; 1045f43d9309SBill Paul 1046f43d9309SBill Paul if (DC_IS_DAVICOM(sc) && rev >= DC_REVISION_DM9102A) 104745521525SPoul-Henning Kamp ifmedia_add(ifm, IFM_ETHER|IFM_HPNA_1, 0, NULL); 104896f2e892SBill Paul 104996f2e892SBill Paul return; 105096f2e892SBill Paul } 105196f2e892SBill Paul 105296f2e892SBill Paul #define DC_POLY 0xEDB88320 105379d11e09SBill Paul #define DC_BITS_512 9 105479d11e09SBill Paul #define DC_BITS_128 7 105579d11e09SBill Paul #define DC_BITS_64 6 105696f2e892SBill Paul 1057e3d2833aSAlfred Perlstein static u_int32_t 1058e3d2833aSAlfred Perlstein dc_crc_le(sc, addr) 105996f2e892SBill Paul struct dc_softc *sc; 106096f2e892SBill Paul caddr_t addr; 106196f2e892SBill Paul { 106296f2e892SBill Paul u_int32_t idx, bit, data, crc; 106396f2e892SBill Paul 106496f2e892SBill Paul /* Compute CRC for the address value. */ 106596f2e892SBill Paul crc = 0xFFFFFFFF; /* initial value */ 106696f2e892SBill Paul 106796f2e892SBill Paul for (idx = 0; idx < 6; idx++) { 106896f2e892SBill Paul for (data = *addr++, bit = 0; bit < 8; bit++, data >>= 1) 106996f2e892SBill Paul crc = (crc >> 1) ^ (((crc ^ data) & 1) ? DC_POLY : 0); 107096f2e892SBill Paul } 107196f2e892SBill Paul 107279d11e09SBill Paul /* 107379d11e09SBill Paul * The hash table on the PNIC II and the MX98715AEC-C/D/E 107479d11e09SBill Paul * chips is only 128 bits wide. 107579d11e09SBill Paul */ 107679d11e09SBill Paul if (sc->dc_flags & DC_128BIT_HASH) 107779d11e09SBill Paul return (crc & ((1 << DC_BITS_128) - 1)); 107896f2e892SBill Paul 107979d11e09SBill Paul /* The hash table on the MX98715BEC is only 64 bits wide. */ 108079d11e09SBill Paul if (sc->dc_flags & DC_64BIT_HASH) 108179d11e09SBill Paul return (crc & ((1 << DC_BITS_64) - 1)); 108279d11e09SBill Paul 1083feb78939SJonathan Chen /* Xircom's hash filtering table is different (read: weird) */ 1084feb78939SJonathan Chen /* Xircom uses the LEAST significant bits */ 1085feb78939SJonathan Chen if (DC_IS_XIRCOM(sc)) { 1086feb78939SJonathan Chen if ((crc & 0x180) == 0x180) 1087feb78939SJonathan Chen return (crc & 0x0F) + (crc & 0x70)*3 + (14 << 4); 1088feb78939SJonathan Chen else 1089feb78939SJonathan Chen return (crc & 0x1F) + ((crc>>1) & 0xF0)*3 + (12 << 4); 1090feb78939SJonathan Chen } 1091feb78939SJonathan Chen 109279d11e09SBill Paul return (crc & ((1 << DC_BITS_512) - 1)); 109396f2e892SBill Paul } 109496f2e892SBill Paul 109596f2e892SBill Paul /* 109696f2e892SBill Paul * Calculate CRC of a multicast group address, return the lower 6 bits. 109796f2e892SBill Paul */ 1098e3d2833aSAlfred Perlstein static u_int32_t 1099e3d2833aSAlfred Perlstein dc_crc_be(addr) 110096f2e892SBill Paul caddr_t addr; 110196f2e892SBill Paul { 110296f2e892SBill Paul u_int32_t crc, carry; 110396f2e892SBill Paul int i, j; 110496f2e892SBill Paul u_int8_t c; 110596f2e892SBill Paul 110696f2e892SBill Paul /* Compute CRC for the address value. */ 110796f2e892SBill Paul crc = 0xFFFFFFFF; /* initial value */ 110896f2e892SBill Paul 110996f2e892SBill Paul for (i = 0; i < 6; i++) { 111096f2e892SBill Paul c = *(addr + i); 111196f2e892SBill Paul for (j = 0; j < 8; j++) { 111296f2e892SBill Paul carry = ((crc & 0x80000000) ? 1 : 0) ^ (c & 0x01); 111396f2e892SBill Paul crc <<= 1; 111496f2e892SBill Paul c >>= 1; 111596f2e892SBill Paul if (carry) 111696f2e892SBill Paul crc = (crc ^ 0x04c11db6) | carry; 111796f2e892SBill Paul } 111896f2e892SBill Paul } 111996f2e892SBill Paul 112096f2e892SBill Paul /* return the filter bit position */ 112196f2e892SBill Paul return((crc >> 26) & 0x0000003F); 112296f2e892SBill Paul } 112396f2e892SBill Paul 112496f2e892SBill Paul /* 112596f2e892SBill Paul * 21143-style RX filter setup routine. Filter programming is done by 112696f2e892SBill Paul * downloading a special setup frame into the TX engine. 21143, Macronix, 112796f2e892SBill Paul * PNIC, PNIC II and Davicom chips are programmed this way. 112896f2e892SBill Paul * 112996f2e892SBill Paul * We always program the chip using 'hash perfect' mode, i.e. one perfect 113096f2e892SBill Paul * address (our node address) and a 512-bit hash filter for multicast 113196f2e892SBill Paul * frames. We also sneak the broadcast address into the hash filter since 113296f2e892SBill Paul * we need that too. 113396f2e892SBill Paul */ 11342c876e15SPoul-Henning Kamp static void 1135e3d2833aSAlfred Perlstein dc_setfilt_21143(sc) 113696f2e892SBill Paul struct dc_softc *sc; 113796f2e892SBill Paul { 113896f2e892SBill Paul struct dc_desc *sframe; 113996f2e892SBill Paul u_int32_t h, *sp; 114096f2e892SBill Paul struct ifmultiaddr *ifma; 114196f2e892SBill Paul struct ifnet *ifp; 114296f2e892SBill Paul int i; 114396f2e892SBill Paul 114496f2e892SBill Paul ifp = &sc->arpcom.ac_if; 114596f2e892SBill Paul 114696f2e892SBill Paul i = sc->dc_cdata.dc_tx_prod; 114796f2e892SBill Paul DC_INC(sc->dc_cdata.dc_tx_prod, DC_TX_LIST_CNT); 114896f2e892SBill Paul sc->dc_cdata.dc_tx_cnt++; 114996f2e892SBill Paul sframe = &sc->dc_ldata->dc_tx_list[i]; 115096f2e892SBill Paul sp = (u_int32_t *)&sc->dc_cdata.dc_sbuf; 115196f2e892SBill Paul bzero((char *)sp, DC_SFRAME_LEN); 115296f2e892SBill Paul 115396f2e892SBill Paul sframe->dc_data = vtophys(&sc->dc_cdata.dc_sbuf); 115496f2e892SBill Paul sframe->dc_ctl = DC_SFRAME_LEN | DC_TXCTL_SETUP | DC_TXCTL_TLINK | 115596f2e892SBill Paul DC_FILTER_HASHPERF | DC_TXCTL_FINT; 115696f2e892SBill Paul 115796f2e892SBill Paul sc->dc_cdata.dc_tx_chain[i] = (struct mbuf *)&sc->dc_cdata.dc_sbuf; 115896f2e892SBill Paul 115996f2e892SBill Paul /* If we want promiscuous mode, set the allframes bit. */ 116096f2e892SBill Paul if (ifp->if_flags & IFF_PROMISC) 116196f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_RX_PROMISC); 116296f2e892SBill Paul else 116396f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_RX_PROMISC); 116496f2e892SBill Paul 116596f2e892SBill Paul if (ifp->if_flags & IFF_ALLMULTI) 116696f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_RX_ALLMULTI); 116796f2e892SBill Paul else 116896f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_RX_ALLMULTI); 116996f2e892SBill Paul 11706817526dSPoul-Henning Kamp TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) { 117196f2e892SBill Paul if (ifma->ifma_addr->sa_family != AF_LINK) 117296f2e892SBill Paul continue; 117396f2e892SBill Paul h = dc_crc_le(sc, 117496f2e892SBill Paul LLADDR((struct sockaddr_dl *)ifma->ifma_addr)); 117596f2e892SBill Paul sp[h >> 4] |= 1 << (h & 0xF); 117696f2e892SBill Paul } 117796f2e892SBill Paul 117896f2e892SBill Paul if (ifp->if_flags & IFF_BROADCAST) { 117996f2e892SBill Paul h = dc_crc_le(sc, (caddr_t)ðerbroadcastaddr); 118096f2e892SBill Paul sp[h >> 4] |= 1 << (h & 0xF); 118196f2e892SBill Paul } 118296f2e892SBill Paul 118396f2e892SBill Paul /* Set our MAC address */ 118496f2e892SBill Paul sp[39] = ((u_int16_t *)sc->arpcom.ac_enaddr)[0]; 118596f2e892SBill Paul sp[40] = ((u_int16_t *)sc->arpcom.ac_enaddr)[1]; 118696f2e892SBill Paul sp[41] = ((u_int16_t *)sc->arpcom.ac_enaddr)[2]; 118796f2e892SBill Paul 118896f2e892SBill Paul sframe->dc_status = DC_TXSTAT_OWN; 118996f2e892SBill Paul CSR_WRITE_4(sc, DC_TXSTART, 0xFFFFFFFF); 119096f2e892SBill Paul 119196f2e892SBill Paul /* 119296f2e892SBill Paul * The PNIC takes an exceedingly long time to process its 119396f2e892SBill Paul * setup frame; wait 10ms after posting the setup frame 119496f2e892SBill Paul * before proceeding, just so it has time to swallow its 119596f2e892SBill Paul * medicine. 119696f2e892SBill Paul */ 119796f2e892SBill Paul DELAY(10000); 119896f2e892SBill Paul 119996f2e892SBill Paul ifp->if_timer = 5; 120096f2e892SBill Paul 120196f2e892SBill Paul return; 120296f2e892SBill Paul } 120396f2e892SBill Paul 12042c876e15SPoul-Henning Kamp static void 1205e3d2833aSAlfred Perlstein dc_setfilt_admtek(sc) 120696f2e892SBill Paul struct dc_softc *sc; 120796f2e892SBill Paul { 120896f2e892SBill Paul struct ifnet *ifp; 120996f2e892SBill Paul int h = 0; 121096f2e892SBill Paul u_int32_t hashes[2] = { 0, 0 }; 121196f2e892SBill Paul struct ifmultiaddr *ifma; 121296f2e892SBill Paul 121396f2e892SBill Paul ifp = &sc->arpcom.ac_if; 121496f2e892SBill Paul 121596f2e892SBill Paul /* Init our MAC address */ 121696f2e892SBill Paul CSR_WRITE_4(sc, DC_AL_PAR0, *(u_int32_t *)(&sc->arpcom.ac_enaddr[0])); 121796f2e892SBill Paul CSR_WRITE_4(sc, DC_AL_PAR1, *(u_int32_t *)(&sc->arpcom.ac_enaddr[4])); 121896f2e892SBill Paul 121996f2e892SBill Paul /* If we want promiscuous mode, set the allframes bit. */ 122096f2e892SBill Paul if (ifp->if_flags & IFF_PROMISC) 122196f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_RX_PROMISC); 122296f2e892SBill Paul else 122396f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_RX_PROMISC); 122496f2e892SBill Paul 122596f2e892SBill Paul if (ifp->if_flags & IFF_ALLMULTI) 122696f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_RX_ALLMULTI); 122796f2e892SBill Paul else 122896f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_RX_ALLMULTI); 122996f2e892SBill Paul 123096f2e892SBill Paul /* first, zot all the existing hash bits */ 123196f2e892SBill Paul CSR_WRITE_4(sc, DC_AL_MAR0, 0); 123296f2e892SBill Paul CSR_WRITE_4(sc, DC_AL_MAR1, 0); 123396f2e892SBill Paul 123496f2e892SBill Paul /* 123596f2e892SBill Paul * If we're already in promisc or allmulti mode, we 123696f2e892SBill Paul * don't have to bother programming the multicast filter. 123796f2e892SBill Paul */ 123896f2e892SBill Paul if (ifp->if_flags & (IFF_PROMISC|IFF_ALLMULTI)) 123996f2e892SBill Paul return; 124096f2e892SBill Paul 124196f2e892SBill Paul /* now program new ones */ 12426817526dSPoul-Henning Kamp TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) { 124396f2e892SBill Paul if (ifma->ifma_addr->sa_family != AF_LINK) 124496f2e892SBill Paul continue; 124596f2e892SBill Paul h = dc_crc_be(LLADDR((struct sockaddr_dl *)ifma->ifma_addr)); 124696f2e892SBill Paul if (h < 32) 124796f2e892SBill Paul hashes[0] |= (1 << h); 124896f2e892SBill Paul else 124996f2e892SBill Paul hashes[1] |= (1 << (h - 32)); 125096f2e892SBill Paul } 125196f2e892SBill Paul 125296f2e892SBill Paul CSR_WRITE_4(sc, DC_AL_MAR0, hashes[0]); 125396f2e892SBill Paul CSR_WRITE_4(sc, DC_AL_MAR1, hashes[1]); 125496f2e892SBill Paul 125596f2e892SBill Paul return; 125696f2e892SBill Paul } 125796f2e892SBill Paul 12582c876e15SPoul-Henning Kamp static void 1259e3d2833aSAlfred Perlstein dc_setfilt_asix(sc) 126096f2e892SBill Paul struct dc_softc *sc; 126196f2e892SBill Paul { 126296f2e892SBill Paul struct ifnet *ifp; 126396f2e892SBill Paul int h = 0; 126496f2e892SBill Paul u_int32_t hashes[2] = { 0, 0 }; 126596f2e892SBill Paul struct ifmultiaddr *ifma; 126696f2e892SBill Paul 126796f2e892SBill Paul ifp = &sc->arpcom.ac_if; 126896f2e892SBill Paul 126996f2e892SBill Paul /* Init our MAC address */ 127096f2e892SBill Paul CSR_WRITE_4(sc, DC_AX_FILTIDX, DC_AX_FILTIDX_PAR0); 127196f2e892SBill Paul CSR_WRITE_4(sc, DC_AX_FILTDATA, 127296f2e892SBill Paul *(u_int32_t *)(&sc->arpcom.ac_enaddr[0])); 127396f2e892SBill Paul CSR_WRITE_4(sc, DC_AX_FILTIDX, DC_AX_FILTIDX_PAR1); 127496f2e892SBill Paul CSR_WRITE_4(sc, DC_AX_FILTDATA, 127596f2e892SBill Paul *(u_int32_t *)(&sc->arpcom.ac_enaddr[4])); 127696f2e892SBill Paul 127796f2e892SBill Paul /* If we want promiscuous mode, set the allframes bit. */ 127896f2e892SBill Paul if (ifp->if_flags & IFF_PROMISC) 127996f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_RX_PROMISC); 128096f2e892SBill Paul else 128196f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_RX_PROMISC); 128296f2e892SBill Paul 128396f2e892SBill Paul if (ifp->if_flags & IFF_ALLMULTI) 128496f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_RX_ALLMULTI); 128596f2e892SBill Paul else 128696f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_RX_ALLMULTI); 128796f2e892SBill Paul 128896f2e892SBill Paul /* 128996f2e892SBill Paul * The ASIX chip has a special bit to enable reception 129096f2e892SBill Paul * of broadcast frames. 129196f2e892SBill Paul */ 129296f2e892SBill Paul if (ifp->if_flags & IFF_BROADCAST) 129396f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_AX_NETCFG_RX_BROAD); 129496f2e892SBill Paul else 129596f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_AX_NETCFG_RX_BROAD); 129696f2e892SBill Paul 129796f2e892SBill Paul /* first, zot all the existing hash bits */ 129896f2e892SBill Paul CSR_WRITE_4(sc, DC_AX_FILTIDX, DC_AX_FILTIDX_MAR0); 129996f2e892SBill Paul CSR_WRITE_4(sc, DC_AX_FILTDATA, 0); 130096f2e892SBill Paul CSR_WRITE_4(sc, DC_AX_FILTIDX, DC_AX_FILTIDX_MAR1); 130196f2e892SBill Paul CSR_WRITE_4(sc, DC_AX_FILTDATA, 0); 130296f2e892SBill Paul 130396f2e892SBill Paul /* 130496f2e892SBill Paul * If we're already in promisc or allmulti mode, we 130596f2e892SBill Paul * don't have to bother programming the multicast filter. 130696f2e892SBill Paul */ 130796f2e892SBill Paul if (ifp->if_flags & (IFF_PROMISC|IFF_ALLMULTI)) 130896f2e892SBill Paul return; 130996f2e892SBill Paul 131096f2e892SBill Paul /* now program new ones */ 13116817526dSPoul-Henning Kamp TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) { 131296f2e892SBill Paul if (ifma->ifma_addr->sa_family != AF_LINK) 131396f2e892SBill Paul continue; 131496f2e892SBill Paul h = dc_crc_be(LLADDR((struct sockaddr_dl *)ifma->ifma_addr)); 131596f2e892SBill Paul if (h < 32) 131696f2e892SBill Paul hashes[0] |= (1 << h); 131796f2e892SBill Paul else 131896f2e892SBill Paul hashes[1] |= (1 << (h - 32)); 131996f2e892SBill Paul } 132096f2e892SBill Paul 132196f2e892SBill Paul CSR_WRITE_4(sc, DC_AX_FILTIDX, DC_AX_FILTIDX_MAR0); 132296f2e892SBill Paul CSR_WRITE_4(sc, DC_AX_FILTDATA, hashes[0]); 132396f2e892SBill Paul CSR_WRITE_4(sc, DC_AX_FILTIDX, DC_AX_FILTIDX_MAR1); 132496f2e892SBill Paul CSR_WRITE_4(sc, DC_AX_FILTDATA, hashes[1]); 132596f2e892SBill Paul 132696f2e892SBill Paul return; 132796f2e892SBill Paul } 132896f2e892SBill Paul 13292c876e15SPoul-Henning Kamp static void 1330e3d2833aSAlfred Perlstein dc_setfilt_xircom(sc) 1331feb78939SJonathan Chen struct dc_softc *sc; 1332feb78939SJonathan Chen { 1333feb78939SJonathan Chen struct dc_desc *sframe; 1334feb78939SJonathan Chen u_int32_t h, *sp; 1335feb78939SJonathan Chen struct ifmultiaddr *ifma; 1336feb78939SJonathan Chen struct ifnet *ifp; 1337feb78939SJonathan Chen int i; 1338feb78939SJonathan Chen 1339feb78939SJonathan Chen ifp = &sc->arpcom.ac_if; 1340feb78939SJonathan Chen DC_CLRBIT(sc, DC_NETCFG, (DC_NETCFG_TX_ON|DC_NETCFG_RX_ON)); 1341feb78939SJonathan Chen 1342feb78939SJonathan Chen i = sc->dc_cdata.dc_tx_prod; 1343feb78939SJonathan Chen DC_INC(sc->dc_cdata.dc_tx_prod, DC_TX_LIST_CNT); 1344feb78939SJonathan Chen sc->dc_cdata.dc_tx_cnt++; 1345feb78939SJonathan Chen sframe = &sc->dc_ldata->dc_tx_list[i]; 1346feb78939SJonathan Chen sp = (u_int32_t *)&sc->dc_cdata.dc_sbuf; 1347feb78939SJonathan Chen bzero((char *)sp, DC_SFRAME_LEN); 1348feb78939SJonathan Chen 1349feb78939SJonathan Chen sframe->dc_data = vtophys(&sc->dc_cdata.dc_sbuf); 1350feb78939SJonathan Chen sframe->dc_ctl = DC_SFRAME_LEN | DC_TXCTL_SETUP | DC_TXCTL_TLINK | 1351feb78939SJonathan Chen DC_FILTER_HASHPERF | DC_TXCTL_FINT; 1352feb78939SJonathan Chen 1353feb78939SJonathan Chen sc->dc_cdata.dc_tx_chain[i] = (struct mbuf *)&sc->dc_cdata.dc_sbuf; 1354feb78939SJonathan Chen 1355feb78939SJonathan Chen /* If we want promiscuous mode, set the allframes bit. */ 1356feb78939SJonathan Chen if (ifp->if_flags & IFF_PROMISC) 1357feb78939SJonathan Chen DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_RX_PROMISC); 1358feb78939SJonathan Chen else 1359feb78939SJonathan Chen DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_RX_PROMISC); 1360feb78939SJonathan Chen 1361feb78939SJonathan Chen if (ifp->if_flags & IFF_ALLMULTI) 1362feb78939SJonathan Chen DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_RX_ALLMULTI); 1363feb78939SJonathan Chen else 1364feb78939SJonathan Chen DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_RX_ALLMULTI); 1365feb78939SJonathan Chen 13666817526dSPoul-Henning Kamp TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) { 1367feb78939SJonathan Chen if (ifma->ifma_addr->sa_family != AF_LINK) 1368feb78939SJonathan Chen continue; 13691d5e5310SBill Paul h = dc_crc_le(sc, 13701d5e5310SBill Paul LLADDR((struct sockaddr_dl *)ifma->ifma_addr)); 1371feb78939SJonathan Chen sp[h >> 4] |= 1 << (h & 0xF); 1372feb78939SJonathan Chen } 1373feb78939SJonathan Chen 1374feb78939SJonathan Chen if (ifp->if_flags & IFF_BROADCAST) { 1375feb78939SJonathan Chen h = dc_crc_le(sc, (caddr_t)ðerbroadcastaddr); 1376feb78939SJonathan Chen sp[h >> 4] |= 1 << (h & 0xF); 1377feb78939SJonathan Chen } 1378feb78939SJonathan Chen 1379feb78939SJonathan Chen /* Set our MAC address */ 1380feb78939SJonathan Chen sp[0] = ((u_int16_t *)sc->arpcom.ac_enaddr)[0]; 1381feb78939SJonathan Chen sp[1] = ((u_int16_t *)sc->arpcom.ac_enaddr)[1]; 1382feb78939SJonathan Chen sp[2] = ((u_int16_t *)sc->arpcom.ac_enaddr)[2]; 1383feb78939SJonathan Chen 1384feb78939SJonathan Chen DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_TX_ON); 1385feb78939SJonathan Chen DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_RX_ON); 1386feb78939SJonathan Chen ifp->if_flags |= IFF_RUNNING; 1387feb78939SJonathan Chen sframe->dc_status = DC_TXSTAT_OWN; 1388feb78939SJonathan Chen CSR_WRITE_4(sc, DC_TXSTART, 0xFFFFFFFF); 1389feb78939SJonathan Chen 1390feb78939SJonathan Chen /* 1391feb78939SJonathan Chen * wait some time... 1392feb78939SJonathan Chen */ 1393feb78939SJonathan Chen DELAY(1000); 1394feb78939SJonathan Chen 1395feb78939SJonathan Chen ifp->if_timer = 5; 1396feb78939SJonathan Chen 1397feb78939SJonathan Chen return; 1398feb78939SJonathan Chen } 1399feb78939SJonathan Chen 1400e3d2833aSAlfred Perlstein static void 1401e3d2833aSAlfred Perlstein dc_setfilt(sc) 140296f2e892SBill Paul struct dc_softc *sc; 140396f2e892SBill Paul { 140496f2e892SBill Paul if (DC_IS_INTEL(sc) || DC_IS_MACRONIX(sc) || DC_IS_PNIC(sc) || 14051af8bec7SBill Paul DC_IS_PNICII(sc) || DC_IS_DAVICOM(sc) || DC_IS_CONEXANT(sc)) 140696f2e892SBill Paul dc_setfilt_21143(sc); 140796f2e892SBill Paul 140896f2e892SBill Paul if (DC_IS_ASIX(sc)) 140996f2e892SBill Paul dc_setfilt_asix(sc); 141096f2e892SBill Paul 141196f2e892SBill Paul if (DC_IS_ADMTEK(sc)) 141296f2e892SBill Paul dc_setfilt_admtek(sc); 141396f2e892SBill Paul 1414feb78939SJonathan Chen if (DC_IS_XIRCOM(sc)) 1415feb78939SJonathan Chen dc_setfilt_xircom(sc); 1416feb78939SJonathan Chen 141796f2e892SBill Paul return; 141896f2e892SBill Paul } 141996f2e892SBill Paul 142096f2e892SBill Paul /* 142196f2e892SBill Paul * In order to fiddle with the 142296f2e892SBill Paul * 'full-duplex' and '100Mbps' bits in the netconfig register, we 142396f2e892SBill Paul * first have to put the transmit and/or receive logic in the idle state. 142496f2e892SBill Paul */ 1425e3d2833aSAlfred Perlstein static void 1426e3d2833aSAlfred Perlstein dc_setcfg(sc, media) 142796f2e892SBill Paul struct dc_softc *sc; 142896f2e892SBill Paul int media; 142996f2e892SBill Paul { 143096f2e892SBill Paul int i, restart = 0; 143196f2e892SBill Paul u_int32_t isr; 143296f2e892SBill Paul 143396f2e892SBill Paul if (IFM_SUBTYPE(media) == IFM_NONE) 143496f2e892SBill Paul return; 143596f2e892SBill Paul 143696f2e892SBill Paul if (CSR_READ_4(sc, DC_NETCFG) & (DC_NETCFG_TX_ON|DC_NETCFG_RX_ON)) { 143796f2e892SBill Paul restart = 1; 143896f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, (DC_NETCFG_TX_ON|DC_NETCFG_RX_ON)); 143996f2e892SBill Paul 144096f2e892SBill Paul for (i = 0; i < DC_TIMEOUT; i++) { 144196f2e892SBill Paul isr = CSR_READ_4(sc, DC_ISR); 1442d467c136SBill Paul if (isr & DC_ISR_TX_IDLE && 1443351267c1SMartin Blapp ((isr & DC_ISR_RX_STATE) == DC_RXSTATE_STOPPED || 1444351267c1SMartin Blapp (isr & DC_ISR_RX_STATE) == DC_RXSTATE_WAIT)) 144596f2e892SBill Paul break; 1446d467c136SBill Paul DELAY(10); 144796f2e892SBill Paul } 144896f2e892SBill Paul 144996f2e892SBill Paul if (i == DC_TIMEOUT) 145096f2e892SBill Paul printf("dc%d: failed to force tx and " 145196f2e892SBill Paul "rx to idle state\n", sc->dc_unit); 145296f2e892SBill Paul } 145396f2e892SBill Paul 145496f2e892SBill Paul if (IFM_SUBTYPE(media) == IFM_100_TX) { 1455042c8f6eSBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_SPEEDSEL); 1456042c8f6eSBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_HEARTBEAT); 145796f2e892SBill Paul if (sc->dc_pmode == DC_PMODE_MII) { 14588273d5f8SBill Paul int watchdogreg; 14598273d5f8SBill Paul 1460bf645417SBill Paul if (DC_IS_INTEL(sc)) { 14618273d5f8SBill Paul /* there's a write enable bit here that reads as 1 */ 14628273d5f8SBill Paul watchdogreg = CSR_READ_4(sc, DC_WATCHDOG); 14638273d5f8SBill Paul watchdogreg &= ~DC_WDOG_CTLWREN; 14648273d5f8SBill Paul watchdogreg |= DC_WDOG_JABBERDIS; 14654c2efe27SBill Paul CSR_WRITE_4(sc, DC_WATCHDOG, watchdogreg); 1466bf645417SBill Paul } else { 1467bf645417SBill Paul DC_SETBIT(sc, DC_WATCHDOG, DC_WDOG_JABBERDIS); 1468bf645417SBill Paul } 146996f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, (DC_NETCFG_PCS| 147096f2e892SBill Paul DC_NETCFG_PORTSEL|DC_NETCFG_SCRAMBLER)); 147196f2e892SBill Paul if (sc->dc_type == DC_TYPE_98713) 147296f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, (DC_NETCFG_PCS| 147396f2e892SBill Paul DC_NETCFG_SCRAMBLER)); 147488d739dcSBill Paul if (!DC_IS_DAVICOM(sc)) 147596f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_PORTSEL); 147696f2e892SBill Paul DC_CLRBIT(sc, DC_10BTCTRL, 0xFFFF); 1477e99285a4SBill Paul if (DC_IS_INTEL(sc)) 1478e99285a4SBill Paul dc_apply_fixup(sc, IFM_AUTO); 147996f2e892SBill Paul } else { 148096f2e892SBill Paul if (DC_IS_PNIC(sc)) { 148196f2e892SBill Paul DC_PN_GPIO_SETBIT(sc, DC_PN_GPIO_SPEEDSEL); 148296f2e892SBill Paul DC_PN_GPIO_SETBIT(sc, DC_PN_GPIO_100TX_LOOP); 148396f2e892SBill Paul DC_SETBIT(sc, DC_PN_NWAY, DC_PN_NWAY_SPEEDSEL); 148496f2e892SBill Paul } 1485318b02fdSBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_PORTSEL); 1486318b02fdSBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_PCS); 1487318b02fdSBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_SCRAMBLER); 14885c1cfac4SBill Paul if (DC_IS_INTEL(sc)) 14895c1cfac4SBill Paul dc_apply_fixup(sc, 14905c1cfac4SBill Paul (media & IFM_GMASK) == IFM_FDX ? 14915c1cfac4SBill Paul IFM_100_TX|IFM_FDX : IFM_100_TX); 149296f2e892SBill Paul } 149396f2e892SBill Paul } 149496f2e892SBill Paul 149596f2e892SBill Paul if (IFM_SUBTYPE(media) == IFM_10_T) { 1496042c8f6eSBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_SPEEDSEL); 1497042c8f6eSBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_HEARTBEAT); 149896f2e892SBill Paul if (sc->dc_pmode == DC_PMODE_MII) { 14998273d5f8SBill Paul int watchdogreg; 15008273d5f8SBill Paul 15018273d5f8SBill Paul /* there's a write enable bit here that reads as 1 */ 15024c2efe27SBill Paul if (DC_IS_INTEL(sc)) { 15038273d5f8SBill Paul watchdogreg = CSR_READ_4(sc, DC_WATCHDOG); 15048273d5f8SBill Paul watchdogreg &= ~DC_WDOG_CTLWREN; 15058273d5f8SBill Paul watchdogreg |= DC_WDOG_JABBERDIS; 15068273d5f8SBill Paul CSR_WRITE_4(sc, DC_WATCHDOG, watchdogreg); 15074c2efe27SBill Paul } else { 15084c2efe27SBill Paul DC_SETBIT(sc, DC_WATCHDOG, DC_WDOG_JABBERDIS); 15094c2efe27SBill Paul } 151096f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, (DC_NETCFG_PCS| 151196f2e892SBill Paul DC_NETCFG_PORTSEL|DC_NETCFG_SCRAMBLER)); 151296f2e892SBill Paul if (sc->dc_type == DC_TYPE_98713) 151396f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_PCS); 151488d739dcSBill Paul if (!DC_IS_DAVICOM(sc)) 151596f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_PORTSEL); 151696f2e892SBill Paul DC_CLRBIT(sc, DC_10BTCTRL, 0xFFFF); 1517e99285a4SBill Paul if (DC_IS_INTEL(sc)) 1518e99285a4SBill Paul dc_apply_fixup(sc, IFM_AUTO); 151996f2e892SBill Paul } else { 152096f2e892SBill Paul if (DC_IS_PNIC(sc)) { 152196f2e892SBill Paul DC_PN_GPIO_CLRBIT(sc, DC_PN_GPIO_SPEEDSEL); 152296f2e892SBill Paul DC_PN_GPIO_SETBIT(sc, DC_PN_GPIO_100TX_LOOP); 152396f2e892SBill Paul DC_CLRBIT(sc, DC_PN_NWAY, DC_PN_NWAY_SPEEDSEL); 152496f2e892SBill Paul } 152596f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_PORTSEL); 1526318b02fdSBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_PCS); 152796f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_SCRAMBLER); 15285c1cfac4SBill Paul if (DC_IS_INTEL(sc)) { 15295c1cfac4SBill Paul DC_CLRBIT(sc, DC_SIARESET, DC_SIA_RESET); 15305c1cfac4SBill Paul DC_CLRBIT(sc, DC_10BTCTRL, 0xFFFF); 15315c1cfac4SBill Paul if ((media & IFM_GMASK) == IFM_FDX) 15325c1cfac4SBill Paul DC_SETBIT(sc, DC_10BTCTRL, 0x7F3D); 15335c1cfac4SBill Paul else 15345c1cfac4SBill Paul DC_SETBIT(sc, DC_10BTCTRL, 0x7F3F); 15355c1cfac4SBill Paul DC_SETBIT(sc, DC_SIARESET, DC_SIA_RESET); 15365c1cfac4SBill Paul DC_CLRBIT(sc, DC_10BTCTRL, 15375c1cfac4SBill Paul DC_TCTL_AUTONEGENBL); 15385c1cfac4SBill Paul dc_apply_fixup(sc, 15395c1cfac4SBill Paul (media & IFM_GMASK) == IFM_FDX ? 15405c1cfac4SBill Paul IFM_10_T|IFM_FDX : IFM_10_T); 15415c1cfac4SBill Paul DELAY(20000); 15425c1cfac4SBill Paul } 154396f2e892SBill Paul } 154496f2e892SBill Paul } 154596f2e892SBill Paul 1546f43d9309SBill Paul /* 1547f43d9309SBill Paul * If this is a Davicom DM9102A card with a DM9801 HomePNA 1548f43d9309SBill Paul * PHY and we want HomePNA mode, set the portsel bit to turn 1549f43d9309SBill Paul * on the external MII port. 1550f43d9309SBill Paul */ 1551f43d9309SBill Paul if (DC_IS_DAVICOM(sc)) { 155245521525SPoul-Henning Kamp if (IFM_SUBTYPE(media) == IFM_HPNA_1) { 1553f43d9309SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_PORTSEL); 1554f43d9309SBill Paul sc->dc_link = 1; 1555f43d9309SBill Paul } else { 1556f43d9309SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_PORTSEL); 1557f43d9309SBill Paul } 1558f43d9309SBill Paul } 1559f43d9309SBill Paul 156096f2e892SBill Paul if ((media & IFM_GMASK) == IFM_FDX) { 156196f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_FULLDUPLEX); 156296f2e892SBill Paul if (sc->dc_pmode == DC_PMODE_SYM && DC_IS_PNIC(sc)) 156396f2e892SBill Paul DC_SETBIT(sc, DC_PN_NWAY, DC_PN_NWAY_DUPLEX); 156496f2e892SBill Paul } else { 156596f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_FULLDUPLEX); 156696f2e892SBill Paul if (sc->dc_pmode == DC_PMODE_SYM && DC_IS_PNIC(sc)) 156796f2e892SBill Paul DC_CLRBIT(sc, DC_PN_NWAY, DC_PN_NWAY_DUPLEX); 156896f2e892SBill Paul } 156996f2e892SBill Paul 157096f2e892SBill Paul if (restart) 157196f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_TX_ON|DC_NETCFG_RX_ON); 157296f2e892SBill Paul 157396f2e892SBill Paul return; 157496f2e892SBill Paul } 157596f2e892SBill Paul 1576e3d2833aSAlfred Perlstein static void 1577e3d2833aSAlfred Perlstein dc_reset(sc) 157896f2e892SBill Paul struct dc_softc *sc; 157996f2e892SBill Paul { 158096f2e892SBill Paul register int i; 158196f2e892SBill Paul 158296f2e892SBill Paul DC_SETBIT(sc, DC_BUSCTL, DC_BUSCTL_RESET); 158396f2e892SBill Paul 158496f2e892SBill Paul for (i = 0; i < DC_TIMEOUT; i++) { 158596f2e892SBill Paul DELAY(10); 158696f2e892SBill Paul if (!(CSR_READ_4(sc, DC_BUSCTL) & DC_BUSCTL_RESET)) 158796f2e892SBill Paul break; 158896f2e892SBill Paul } 158996f2e892SBill Paul 15901af8bec7SBill Paul if (DC_IS_ASIX(sc) || DC_IS_ADMTEK(sc) || DC_IS_CONEXANT(sc) || 15911d5e5310SBill Paul DC_IS_XIRCOM(sc) || DC_IS_INTEL(sc)) { 159296f2e892SBill Paul DELAY(10000); 159396f2e892SBill Paul DC_CLRBIT(sc, DC_BUSCTL, DC_BUSCTL_RESET); 159496f2e892SBill Paul i = 0; 159596f2e892SBill Paul } 159696f2e892SBill Paul 159796f2e892SBill Paul if (i == DC_TIMEOUT) 159896f2e892SBill Paul printf("dc%d: reset never completed!\n", sc->dc_unit); 159996f2e892SBill Paul 160096f2e892SBill Paul /* Wait a little while for the chip to get its brains in order. */ 160196f2e892SBill Paul DELAY(1000); 160296f2e892SBill Paul 160396f2e892SBill Paul CSR_WRITE_4(sc, DC_IMR, 0x00000000); 160496f2e892SBill Paul CSR_WRITE_4(sc, DC_BUSCTL, 0x00000000); 160596f2e892SBill Paul CSR_WRITE_4(sc, DC_NETCFG, 0x00000000); 160696f2e892SBill Paul 160791cc2adbSBill Paul /* 160891cc2adbSBill Paul * Bring the SIA out of reset. In some cases, it looks 160991cc2adbSBill Paul * like failing to unreset the SIA soon enough gets it 161091cc2adbSBill Paul * into a state where it will never come out of reset 161191cc2adbSBill Paul * until we reset the whole chip again. 161291cc2adbSBill Paul */ 16135c1cfac4SBill Paul if (DC_IS_INTEL(sc)) { 161491cc2adbSBill Paul DC_SETBIT(sc, DC_SIARESET, DC_SIA_RESET); 16155c1cfac4SBill Paul CSR_WRITE_4(sc, DC_10BTCTRL, 0); 16165c1cfac4SBill Paul CSR_WRITE_4(sc, DC_WATCHDOG, 0); 16175c1cfac4SBill Paul } 161891cc2adbSBill Paul 161996f2e892SBill Paul return; 162096f2e892SBill Paul } 162196f2e892SBill Paul 1622e3d2833aSAlfred Perlstein static struct dc_type * 1623e3d2833aSAlfred Perlstein dc_devtype(dev) 162496f2e892SBill Paul device_t dev; 162596f2e892SBill Paul { 162696f2e892SBill Paul struct dc_type *t; 162796f2e892SBill Paul u_int32_t rev; 162896f2e892SBill Paul 162996f2e892SBill Paul t = dc_devs; 163096f2e892SBill Paul 163196f2e892SBill Paul while(t->dc_name != NULL) { 163296f2e892SBill Paul if ((pci_get_vendor(dev) == t->dc_vid) && 163396f2e892SBill Paul (pci_get_device(dev) == t->dc_did)) { 163496f2e892SBill Paul /* Check the PCI revision */ 163596f2e892SBill Paul rev = pci_read_config(dev, DC_PCI_CFRV, 4) & 0xFF; 163696f2e892SBill Paul if (t->dc_did == DC_DEVICEID_98713 && 163796f2e892SBill Paul rev >= DC_REVISION_98713A) 163896f2e892SBill Paul t++; 163996f2e892SBill Paul if (t->dc_did == DC_DEVICEID_98713_CP && 164096f2e892SBill Paul rev >= DC_REVISION_98713A) 164196f2e892SBill Paul t++; 164296f2e892SBill Paul if (t->dc_did == DC_DEVICEID_987x5 && 164379d11e09SBill Paul rev >= DC_REVISION_98715AEC_C) 164479d11e09SBill Paul t++; 164579d11e09SBill Paul if (t->dc_did == DC_DEVICEID_987x5 && 164696f2e892SBill Paul rev >= DC_REVISION_98725) 164796f2e892SBill Paul t++; 164896f2e892SBill Paul if (t->dc_did == DC_DEVICEID_AX88140A && 164996f2e892SBill Paul rev >= DC_REVISION_88141) 165096f2e892SBill Paul t++; 165196f2e892SBill Paul if (t->dc_did == DC_DEVICEID_82C168 && 165296f2e892SBill Paul rev >= DC_REVISION_82C169) 165396f2e892SBill Paul t++; 165488d739dcSBill Paul if (t->dc_did == DC_DEVICEID_DM9102 && 165588d739dcSBill Paul rev >= DC_REVISION_DM9102A) 165688d739dcSBill Paul t++; 165796f2e892SBill Paul return(t); 165896f2e892SBill Paul } 165996f2e892SBill Paul t++; 166096f2e892SBill Paul } 166196f2e892SBill Paul 166296f2e892SBill Paul return(NULL); 166396f2e892SBill Paul } 166496f2e892SBill Paul 166596f2e892SBill Paul /* 166696f2e892SBill Paul * Probe for a 21143 or clone chip. Check the PCI vendor and device 166796f2e892SBill Paul * IDs against our list and return a device name if we find a match. 166896f2e892SBill Paul * We do a little bit of extra work to identify the exact type of 166996f2e892SBill Paul * chip. The MX98713 and MX98713A have the same PCI vendor/device ID, 167096f2e892SBill Paul * but different revision IDs. The same is true for 98715/98715A 167196f2e892SBill Paul * chips and the 98725, as well as the ASIX and ADMtek chips. In some 167296f2e892SBill Paul * cases, the exact chip revision affects driver behavior. 167396f2e892SBill Paul */ 1674e3d2833aSAlfred Perlstein static int 1675e3d2833aSAlfred Perlstein dc_probe(dev) 167696f2e892SBill Paul device_t dev; 167796f2e892SBill Paul { 167896f2e892SBill Paul struct dc_type *t; 167996f2e892SBill Paul 168096f2e892SBill Paul t = dc_devtype(dev); 168196f2e892SBill Paul 168296f2e892SBill Paul if (t != NULL) { 168396f2e892SBill Paul device_set_desc(dev, t->dc_name); 168496f2e892SBill Paul return(0); 168596f2e892SBill Paul } 168696f2e892SBill Paul 168796f2e892SBill Paul return(ENXIO); 168896f2e892SBill Paul } 168996f2e892SBill Paul 1690e3d2833aSAlfred Perlstein static void 1691e3d2833aSAlfred Perlstein dc_acpi(dev) 169296f2e892SBill Paul device_t dev; 169396f2e892SBill Paul { 169496f2e892SBill Paul int unit; 169596f2e892SBill Paul 169696f2e892SBill Paul unit = device_get_unit(dev); 169796f2e892SBill Paul 169814a00c6cSBill Paul if (pci_get_powerstate(dev) != PCI_POWERSTATE_D0) { 169996f2e892SBill Paul u_int32_t iobase, membase, irq; 170096f2e892SBill Paul 170196f2e892SBill Paul /* Save important PCI config data. */ 170296f2e892SBill Paul iobase = pci_read_config(dev, DC_PCI_CFBIO, 4); 170396f2e892SBill Paul membase = pci_read_config(dev, DC_PCI_CFBMA, 4); 170496f2e892SBill Paul irq = pci_read_config(dev, DC_PCI_CFIT, 4); 170596f2e892SBill Paul 170696f2e892SBill Paul /* Reset the power state. */ 170796f2e892SBill Paul printf("dc%d: chip is in D%d power mode " 170814a00c6cSBill Paul "-- setting to D0\n", unit, 170914a00c6cSBill Paul pci_get_powerstate(dev)); 171014a00c6cSBill Paul pci_set_powerstate(dev, PCI_POWERSTATE_D0); 171196f2e892SBill Paul 171296f2e892SBill Paul /* Restore PCI config data. */ 171396f2e892SBill Paul pci_write_config(dev, DC_PCI_CFBIO, iobase, 4); 171496f2e892SBill Paul pci_write_config(dev, DC_PCI_CFBMA, membase, 4); 171596f2e892SBill Paul pci_write_config(dev, DC_PCI_CFIT, irq, 4); 171696f2e892SBill Paul } 171714a00c6cSBill Paul 171896f2e892SBill Paul return; 171996f2e892SBill Paul } 172096f2e892SBill Paul 1721e3d2833aSAlfred Perlstein static void 1722e3d2833aSAlfred Perlstein dc_apply_fixup(sc, media) 17235c1cfac4SBill Paul struct dc_softc *sc; 17245c1cfac4SBill Paul int media; 17255c1cfac4SBill Paul { 17265c1cfac4SBill Paul struct dc_mediainfo *m; 17275c1cfac4SBill Paul u_int8_t *p; 17285c1cfac4SBill Paul int i; 17295d801891SBill Paul u_int32_t reg; 17305c1cfac4SBill Paul 17315c1cfac4SBill Paul m = sc->dc_mi; 17325c1cfac4SBill Paul 17335c1cfac4SBill Paul while (m != NULL) { 17345c1cfac4SBill Paul if (m->dc_media == media) 17355c1cfac4SBill Paul break; 17365c1cfac4SBill Paul m = m->dc_next; 17375c1cfac4SBill Paul } 17385c1cfac4SBill Paul 17395c1cfac4SBill Paul if (m == NULL) 17405c1cfac4SBill Paul return; 17415c1cfac4SBill Paul 17425c1cfac4SBill Paul for (i = 0, p = m->dc_reset_ptr; i < m->dc_reset_len; i++, p += 2) { 17435c1cfac4SBill Paul reg = (p[0] | (p[1] << 8)) << 16; 17445c1cfac4SBill Paul CSR_WRITE_4(sc, DC_WATCHDOG, reg); 17455c1cfac4SBill Paul } 17465c1cfac4SBill Paul 17475c1cfac4SBill Paul for (i = 0, p = m->dc_gp_ptr; i < m->dc_gp_len; i++, p += 2) { 17485c1cfac4SBill Paul reg = (p[0] | (p[1] << 8)) << 16; 17495c1cfac4SBill Paul CSR_WRITE_4(sc, DC_WATCHDOG, reg); 17505c1cfac4SBill Paul } 17515c1cfac4SBill Paul 17525c1cfac4SBill Paul return; 17535c1cfac4SBill Paul } 17545c1cfac4SBill Paul 1755e3d2833aSAlfred Perlstein static void 1756e3d2833aSAlfred Perlstein dc_decode_leaf_sia(sc, l) 17575c1cfac4SBill Paul struct dc_softc *sc; 17585c1cfac4SBill Paul struct dc_eblock_sia *l; 17595c1cfac4SBill Paul { 17605c1cfac4SBill Paul struct dc_mediainfo *m; 17615c1cfac4SBill Paul 17625c1cfac4SBill Paul m = malloc(sizeof(struct dc_mediainfo), M_DEVBUF, M_NOWAIT); 17633019f2bfSBill Paul bzero(m, sizeof(struct dc_mediainfo)); 17645c1cfac4SBill Paul if (l->dc_sia_code == DC_SIA_CODE_10BT) 17655c1cfac4SBill Paul m->dc_media = IFM_10_T; 17665c1cfac4SBill Paul 17675c1cfac4SBill Paul if (l->dc_sia_code == DC_SIA_CODE_10BT_FDX) 17685c1cfac4SBill Paul m->dc_media = IFM_10_T|IFM_FDX; 17695c1cfac4SBill Paul 17705c1cfac4SBill Paul if (l->dc_sia_code == DC_SIA_CODE_10B2) 17715c1cfac4SBill Paul m->dc_media = IFM_10_2; 17725c1cfac4SBill Paul 17735c1cfac4SBill Paul if (l->dc_sia_code == DC_SIA_CODE_10B5) 17745c1cfac4SBill Paul m->dc_media = IFM_10_5; 17755c1cfac4SBill Paul 17765c1cfac4SBill Paul m->dc_gp_len = 2; 17775c1cfac4SBill Paul m->dc_gp_ptr = (u_int8_t *)&l->dc_sia_gpio_ctl; 17785c1cfac4SBill Paul 17795c1cfac4SBill Paul m->dc_next = sc->dc_mi; 17805c1cfac4SBill Paul sc->dc_mi = m; 17815c1cfac4SBill Paul 17825c1cfac4SBill Paul sc->dc_pmode = DC_PMODE_SIA; 17835c1cfac4SBill Paul 17845c1cfac4SBill Paul return; 17855c1cfac4SBill Paul } 17865c1cfac4SBill Paul 1787e3d2833aSAlfred Perlstein static void 1788e3d2833aSAlfred Perlstein dc_decode_leaf_sym(sc, l) 17895c1cfac4SBill Paul struct dc_softc *sc; 17905c1cfac4SBill Paul struct dc_eblock_sym *l; 17915c1cfac4SBill Paul { 17925c1cfac4SBill Paul struct dc_mediainfo *m; 17935c1cfac4SBill Paul 17945c1cfac4SBill Paul m = malloc(sizeof(struct dc_mediainfo), M_DEVBUF, M_NOWAIT); 17953019f2bfSBill Paul bzero(m, sizeof(struct dc_mediainfo)); 17965c1cfac4SBill Paul if (l->dc_sym_code == DC_SYM_CODE_100BT) 17975c1cfac4SBill Paul m->dc_media = IFM_100_TX; 17985c1cfac4SBill Paul 17995c1cfac4SBill Paul if (l->dc_sym_code == DC_SYM_CODE_100BT_FDX) 18005c1cfac4SBill Paul m->dc_media = IFM_100_TX|IFM_FDX; 18015c1cfac4SBill Paul 18025c1cfac4SBill Paul m->dc_gp_len = 2; 18035c1cfac4SBill Paul m->dc_gp_ptr = (u_int8_t *)&l->dc_sym_gpio_ctl; 18045c1cfac4SBill Paul 18055c1cfac4SBill Paul m->dc_next = sc->dc_mi; 18065c1cfac4SBill Paul sc->dc_mi = m; 18075c1cfac4SBill Paul 18085c1cfac4SBill Paul sc->dc_pmode = DC_PMODE_SYM; 18095c1cfac4SBill Paul 18105c1cfac4SBill Paul return; 18115c1cfac4SBill Paul } 18125c1cfac4SBill Paul 1813e3d2833aSAlfred Perlstein static void 1814e3d2833aSAlfred Perlstein dc_decode_leaf_mii(sc, l) 18155c1cfac4SBill Paul struct dc_softc *sc; 18165c1cfac4SBill Paul struct dc_eblock_mii *l; 18175c1cfac4SBill Paul { 18185c1cfac4SBill Paul u_int8_t *p; 18195c1cfac4SBill Paul struct dc_mediainfo *m; 18205c1cfac4SBill Paul 18215c1cfac4SBill Paul m = malloc(sizeof(struct dc_mediainfo), M_DEVBUF, M_NOWAIT); 18223019f2bfSBill Paul bzero(m, sizeof(struct dc_mediainfo)); 18235c1cfac4SBill Paul /* We abuse IFM_AUTO to represent MII. */ 18245c1cfac4SBill Paul m->dc_media = IFM_AUTO; 18255c1cfac4SBill Paul m->dc_gp_len = l->dc_gpr_len; 18265c1cfac4SBill Paul 18275c1cfac4SBill Paul p = (u_int8_t *)l; 18285c1cfac4SBill Paul p += sizeof(struct dc_eblock_mii); 18295c1cfac4SBill Paul m->dc_gp_ptr = p; 18305c1cfac4SBill Paul p += 2 * l->dc_gpr_len; 18315c1cfac4SBill Paul m->dc_reset_len = *p; 18325c1cfac4SBill Paul p++; 18335c1cfac4SBill Paul m->dc_reset_ptr = p; 18345c1cfac4SBill Paul 18355c1cfac4SBill Paul m->dc_next = sc->dc_mi; 18365c1cfac4SBill Paul sc->dc_mi = m; 18375c1cfac4SBill Paul 18385c1cfac4SBill Paul return; 18395c1cfac4SBill Paul } 18405c1cfac4SBill Paul 18412c876e15SPoul-Henning Kamp static void 18422c876e15SPoul-Henning Kamp dc_read_srom(sc, bits) 18433097aa70SWarner Losh struct dc_softc *sc; 18443097aa70SWarner Losh int bits; 18453097aa70SWarner Losh { 18463097aa70SWarner Losh int size; 18473097aa70SWarner Losh 18483097aa70SWarner Losh size = 2 << bits; 18493097aa70SWarner Losh sc->dc_srom = malloc(size, M_DEVBUF, M_NOWAIT); 18503097aa70SWarner Losh dc_read_eeprom(sc, (caddr_t)sc->dc_srom, 0, (size / 2), 0); 18513097aa70SWarner Losh } 18523097aa70SWarner Losh 1853e3d2833aSAlfred Perlstein static void 1854e3d2833aSAlfred Perlstein dc_parse_21143_srom(sc) 18555c1cfac4SBill Paul struct dc_softc *sc; 18565c1cfac4SBill Paul { 18575c1cfac4SBill Paul struct dc_leaf_hdr *lhdr; 18585c1cfac4SBill Paul struct dc_eblock_hdr *hdr; 18595c1cfac4SBill Paul int i, loff; 18605c1cfac4SBill Paul char *ptr; 18615c1cfac4SBill Paul 18625c1cfac4SBill Paul loff = sc->dc_srom[27]; 18635c1cfac4SBill Paul lhdr = (struct dc_leaf_hdr *)&(sc->dc_srom[loff]); 18645c1cfac4SBill Paul 18655c1cfac4SBill Paul ptr = (char *)lhdr; 18665c1cfac4SBill Paul ptr += sizeof(struct dc_leaf_hdr) - 1; 18675c1cfac4SBill Paul for (i = 0; i < lhdr->dc_mcnt; i++) { 18685c1cfac4SBill Paul hdr = (struct dc_eblock_hdr *)ptr; 18695c1cfac4SBill Paul switch(hdr->dc_type) { 18705c1cfac4SBill Paul case DC_EBLOCK_MII: 18715c1cfac4SBill Paul dc_decode_leaf_mii(sc, (struct dc_eblock_mii *)hdr); 18725c1cfac4SBill Paul break; 18735c1cfac4SBill Paul case DC_EBLOCK_SIA: 18745c1cfac4SBill Paul dc_decode_leaf_sia(sc, (struct dc_eblock_sia *)hdr); 18755c1cfac4SBill Paul break; 18765c1cfac4SBill Paul case DC_EBLOCK_SYM: 18775c1cfac4SBill Paul dc_decode_leaf_sym(sc, (struct dc_eblock_sym *)hdr); 18785c1cfac4SBill Paul break; 18795c1cfac4SBill Paul default: 18805c1cfac4SBill Paul /* Don't care. Yet. */ 18815c1cfac4SBill Paul break; 18825c1cfac4SBill Paul } 18835c1cfac4SBill Paul ptr += (hdr->dc_len & 0x7F); 18845c1cfac4SBill Paul ptr++; 18855c1cfac4SBill Paul } 18865c1cfac4SBill Paul 18875c1cfac4SBill Paul return; 18885c1cfac4SBill Paul } 18895c1cfac4SBill Paul 189096f2e892SBill Paul /* 189196f2e892SBill Paul * Attach the interface. Allocate softc structures, do ifmedia 189296f2e892SBill Paul * setup and ethernet/BPF attach. 189396f2e892SBill Paul */ 1894e3d2833aSAlfred Perlstein static int 1895e3d2833aSAlfred Perlstein dc_attach(dev) 189696f2e892SBill Paul device_t dev; 189796f2e892SBill Paul { 1898d1ce9105SBill Paul int tmp = 0; 189996f2e892SBill Paul u_char eaddr[ETHER_ADDR_LEN]; 190096f2e892SBill Paul u_int32_t command; 190196f2e892SBill Paul struct dc_softc *sc; 190296f2e892SBill Paul struct ifnet *ifp; 190396f2e892SBill Paul u_int32_t revision; 190496f2e892SBill Paul int unit, error = 0, rid, mac_offset; 1905e7b01d07SWarner Losh u_int8_t *mac; 190696f2e892SBill Paul 190796f2e892SBill Paul sc = device_get_softc(dev); 190896f2e892SBill Paul unit = device_get_unit(dev); 190996f2e892SBill Paul bzero(sc, sizeof(struct dc_softc)); 191096f2e892SBill Paul 19116008862bSJohn Baldwin mtx_init(&sc->dc_mtx, device_get_nameunit(dev), MTX_NETWORK_LOCK, 19126008862bSJohn Baldwin MTX_DEF | MTX_RECURSE); 1913031fc810SBill Paul 191496f2e892SBill Paul /* 191596f2e892SBill Paul * Handle power management nonsense. 191696f2e892SBill Paul */ 191796f2e892SBill Paul dc_acpi(dev); 191896f2e892SBill Paul 191996f2e892SBill Paul /* 192096f2e892SBill Paul * Map control/status registers. 192196f2e892SBill Paul */ 192207f65363SBill Paul pci_enable_busmaster(dev); 192375ff968cSBill Paul pci_enable_io(dev, SYS_RES_IOPORT); 192475ff968cSBill Paul pci_enable_io(dev, SYS_RES_MEMORY); 1925c48cc9ceSPeter Wemm command = pci_read_config(dev, PCIR_COMMAND, 4); 192696f2e892SBill Paul 192796f2e892SBill Paul #ifdef DC_USEIOSPACE 192896f2e892SBill Paul if (!(command & PCIM_CMD_PORTEN)) { 192996f2e892SBill Paul printf("dc%d: failed to enable I/O ports!\n", unit); 193096f2e892SBill Paul error = ENXIO; 1931608654d4SNate Lawson goto fail; 193296f2e892SBill Paul } 193396f2e892SBill Paul #else 193496f2e892SBill Paul if (!(command & PCIM_CMD_MEMEN)) { 193596f2e892SBill Paul printf("dc%d: failed to enable memory mapping!\n", unit); 193696f2e892SBill Paul error = ENXIO; 1937608654d4SNate Lawson goto fail; 193896f2e892SBill Paul } 193996f2e892SBill Paul #endif 194096f2e892SBill Paul 194196f2e892SBill Paul rid = DC_RID; 194296f2e892SBill Paul sc->dc_res = bus_alloc_resource(dev, DC_RES, &rid, 194396f2e892SBill Paul 0, ~0, 1, RF_ACTIVE); 194496f2e892SBill Paul 194596f2e892SBill Paul if (sc->dc_res == NULL) { 194696f2e892SBill Paul printf("dc%d: couldn't map ports/memory\n", unit); 194796f2e892SBill Paul error = ENXIO; 1948608654d4SNate Lawson goto fail; 194996f2e892SBill Paul } 195096f2e892SBill Paul 195196f2e892SBill Paul sc->dc_btag = rman_get_bustag(sc->dc_res); 195296f2e892SBill Paul sc->dc_bhandle = rman_get_bushandle(sc->dc_res); 195396f2e892SBill Paul 195496f2e892SBill Paul /* Need this info to decide on a chip type. */ 195596f2e892SBill Paul sc->dc_info = dc_devtype(dev); 195696f2e892SBill Paul revision = pci_read_config(dev, DC_PCI_CFRV, 4) & 0x000000FF; 195796f2e892SBill Paul 1958eecb3844SMartin Blapp /* Get the eeprom width, but PNIC and XIRCOM have no eeprom */ 1959eecb3844SMartin Blapp if (sc->dc_info->dc_did != DC_DEVICEID_82C168 && 1960eecb3844SMartin Blapp sc->dc_info->dc_did != DC_DEVICEID_X3201) 1961eecb3844SMartin Blapp dc_eeprom_width(sc); 1962eecb3844SMartin Blapp 196396f2e892SBill Paul switch(sc->dc_info->dc_did) { 196496f2e892SBill Paul case DC_DEVICEID_21143: 196596f2e892SBill Paul sc->dc_type = DC_TYPE_21143; 196696f2e892SBill Paul sc->dc_flags |= DC_TX_POLL|DC_TX_USE_TX_INTR; 1967042c8f6eSBill Paul sc->dc_flags |= DC_REDUCED_MII_POLL; 19685c1cfac4SBill Paul /* Save EEPROM contents so we can parse them later. */ 19693097aa70SWarner Losh dc_read_srom(sc, sc->dc_romwidth); 197096f2e892SBill Paul break; 197138deb45fSTom Rhodes case DC_DEVICEID_DM9009: 197296f2e892SBill Paul case DC_DEVICEID_DM9100: 197396f2e892SBill Paul case DC_DEVICEID_DM9102: 197496f2e892SBill Paul sc->dc_type = DC_TYPE_DM9102; 1975318a72d7SBill Paul sc->dc_flags |= DC_TX_COALESCE|DC_TX_INTR_ALWAYS; 1976318a72d7SBill Paul sc->dc_flags |= DC_REDUCED_MII_POLL|DC_TX_STORENFWD; 197796f2e892SBill Paul sc->dc_pmode = DC_PMODE_MII; 19780a46b1dcSBill Paul /* Increase the latency timer value. */ 19790a46b1dcSBill Paul command = pci_read_config(dev, DC_PCI_CFLT, 4); 19800a46b1dcSBill Paul command &= 0xFFFF00FF; 19810a46b1dcSBill Paul command |= 0x00008000; 19820a46b1dcSBill Paul pci_write_config(dev, DC_PCI_CFLT, command, 4); 198396f2e892SBill Paul break; 198496f2e892SBill Paul case DC_DEVICEID_AL981: 198596f2e892SBill Paul sc->dc_type = DC_TYPE_AL981; 198696f2e892SBill Paul sc->dc_flags |= DC_TX_USE_TX_INTR; 198796f2e892SBill Paul sc->dc_flags |= DC_TX_ADMTEK_WAR; 198896f2e892SBill Paul sc->dc_pmode = DC_PMODE_MII; 19893097aa70SWarner Losh dc_read_srom(sc, sc->dc_romwidth); 199096f2e892SBill Paul break; 199196f2e892SBill Paul case DC_DEVICEID_AN985: 199241fced74SPeter Wemm case DC_DEVICEID_FE2500: 1993fa167b8eSBill Paul case DC_DEVICEID_EN2242: 1994948c244dSWarner Losh case DC_DEVICEID_HAWKING_PN672TX: 199596f2e892SBill Paul sc->dc_type = DC_TYPE_AN985; 199696f2e892SBill Paul sc->dc_flags |= DC_TX_USE_TX_INTR; 199796f2e892SBill Paul sc->dc_flags |= DC_TX_ADMTEK_WAR; 199896f2e892SBill Paul sc->dc_pmode = DC_PMODE_MII; 19993097aa70SWarner Losh dc_read_srom(sc, sc->dc_romwidth); 200096f2e892SBill Paul break; 200196f2e892SBill Paul case DC_DEVICEID_98713: 200296f2e892SBill Paul case DC_DEVICEID_98713_CP: 200396f2e892SBill Paul if (revision < DC_REVISION_98713A) { 200496f2e892SBill Paul sc->dc_type = DC_TYPE_98713; 200596f2e892SBill Paul } 2006318b02fdSBill Paul if (revision >= DC_REVISION_98713A) { 200796f2e892SBill Paul sc->dc_type = DC_TYPE_98713A; 2008318b02fdSBill Paul sc->dc_flags |= DC_21143_NWAY; 2009318b02fdSBill Paul } 2010318b02fdSBill Paul sc->dc_flags |= DC_REDUCED_MII_POLL; 201196f2e892SBill Paul sc->dc_flags |= DC_TX_POLL|DC_TX_USE_TX_INTR; 201296f2e892SBill Paul break; 201396f2e892SBill Paul case DC_DEVICEID_987x5: 20149ca710f6SJeroen Ruigrok van der Werven case DC_DEVICEID_EN1217: 201579d11e09SBill Paul /* 201679d11e09SBill Paul * Macronix MX98715AEC-C/D/E parts have only a 201779d11e09SBill Paul * 128-bit hash table. We need to deal with these 201879d11e09SBill Paul * in the same manner as the PNIC II so that we 201979d11e09SBill Paul * get the right number of bits out of the 202079d11e09SBill Paul * CRC routine. 202179d11e09SBill Paul */ 202279d11e09SBill Paul if (revision >= DC_REVISION_98715AEC_C && 202379d11e09SBill Paul revision < DC_REVISION_98725) 202479d11e09SBill Paul sc->dc_flags |= DC_128BIT_HASH; 202596f2e892SBill Paul sc->dc_type = DC_TYPE_987x5; 202696f2e892SBill Paul sc->dc_flags |= DC_TX_POLL|DC_TX_USE_TX_INTR; 2027318b02fdSBill Paul sc->dc_flags |= DC_REDUCED_MII_POLL|DC_21143_NWAY; 202896f2e892SBill Paul break; 2029ead7cde9SBill Paul case DC_DEVICEID_98727: 2030ead7cde9SBill Paul sc->dc_type = DC_TYPE_987x5; 2031ead7cde9SBill Paul sc->dc_flags |= DC_TX_POLL|DC_TX_USE_TX_INTR; 2032ead7cde9SBill Paul sc->dc_flags |= DC_REDUCED_MII_POLL|DC_21143_NWAY; 2033ead7cde9SBill Paul break; 203496f2e892SBill Paul case DC_DEVICEID_82C115: 203596f2e892SBill Paul sc->dc_type = DC_TYPE_PNICII; 203679d11e09SBill Paul sc->dc_flags |= DC_TX_POLL|DC_TX_USE_TX_INTR|DC_128BIT_HASH; 2037318b02fdSBill Paul sc->dc_flags |= DC_REDUCED_MII_POLL|DC_21143_NWAY; 203896f2e892SBill Paul break; 203996f2e892SBill Paul case DC_DEVICEID_82C168: 204096f2e892SBill Paul sc->dc_type = DC_TYPE_PNIC; 204191cc2adbSBill Paul sc->dc_flags |= DC_TX_STORENFWD|DC_TX_INTR_ALWAYS; 204296f2e892SBill Paul sc->dc_flags |= DC_PNIC_RX_BUG_WAR; 204396f2e892SBill Paul sc->dc_pnic_rx_buf = malloc(DC_RXLEN * 5, M_DEVBUF, M_NOWAIT); 204496f2e892SBill Paul if (revision < DC_REVISION_82C169) 204596f2e892SBill Paul sc->dc_pmode = DC_PMODE_SYM; 204696f2e892SBill Paul break; 204796f2e892SBill Paul case DC_DEVICEID_AX88140A: 204896f2e892SBill Paul sc->dc_type = DC_TYPE_ASIX; 204996f2e892SBill Paul sc->dc_flags |= DC_TX_USE_TX_INTR|DC_TX_INTR_FIRSTFRAG; 205096f2e892SBill Paul sc->dc_flags |= DC_REDUCED_MII_POLL; 205196f2e892SBill Paul sc->dc_pmode = DC_PMODE_MII; 205296f2e892SBill Paul break; 2053feb78939SJonathan Chen case DC_DEVICEID_X3201: 2054feb78939SJonathan Chen sc->dc_type = DC_TYPE_XIRCOM; 20552dfc960aSLuigi Rizzo sc->dc_flags |= DC_TX_INTR_ALWAYS | DC_TX_COALESCE | 20562dfc960aSLuigi Rizzo DC_TX_ALIGN; 2057feb78939SJonathan Chen /* 2058feb78939SJonathan Chen * We don't actually need to coalesce, but we're doing 2059feb78939SJonathan Chen * it to obtain a double word aligned buffer. 20602dfc960aSLuigi Rizzo * The DC_TX_COALESCE flag is required. 2061feb78939SJonathan Chen */ 20623097aa70SWarner Losh sc->dc_pmode = DC_PMODE_MII; 2063feb78939SJonathan Chen break; 20641af8bec7SBill Paul case DC_DEVICEID_RS7112: 20651af8bec7SBill Paul sc->dc_type = DC_TYPE_CONEXANT; 20661af8bec7SBill Paul sc->dc_flags |= DC_TX_INTR_ALWAYS; 20671af8bec7SBill Paul sc->dc_flags |= DC_REDUCED_MII_POLL; 20681af8bec7SBill Paul sc->dc_pmode = DC_PMODE_MII; 20693097aa70SWarner Losh dc_read_srom(sc, sc->dc_romwidth); 20701af8bec7SBill Paul break; 207196f2e892SBill Paul default: 207296f2e892SBill Paul printf("dc%d: unknown device: %x\n", sc->dc_unit, 207396f2e892SBill Paul sc->dc_info->dc_did); 207496f2e892SBill Paul break; 207596f2e892SBill Paul } 207696f2e892SBill Paul 207796f2e892SBill Paul /* Save the cache line size. */ 207888d739dcSBill Paul if (DC_IS_DAVICOM(sc)) 207988d739dcSBill Paul sc->dc_cachesize = 0; 208088d739dcSBill Paul else 208188d739dcSBill Paul sc->dc_cachesize = pci_read_config(dev, 208288d739dcSBill Paul DC_PCI_CFLT, 4) & 0xFF; 208396f2e892SBill Paul 208496f2e892SBill Paul /* Reset the adapter. */ 208596f2e892SBill Paul dc_reset(sc); 208696f2e892SBill Paul 208796f2e892SBill Paul /* Take 21143 out of snooze mode */ 2088feb78939SJonathan Chen if (DC_IS_INTEL(sc) || DC_IS_XIRCOM(sc)) { 208996f2e892SBill Paul command = pci_read_config(dev, DC_PCI_CFDD, 4); 209096f2e892SBill Paul command &= ~(DC_CFDD_SNOOZE_MODE|DC_CFDD_SLEEP_MODE); 209196f2e892SBill Paul pci_write_config(dev, DC_PCI_CFDD, command, 4); 209296f2e892SBill Paul } 209396f2e892SBill Paul 209496f2e892SBill Paul /* 209596f2e892SBill Paul * Try to learn something about the supported media. 209696f2e892SBill Paul * We know that ASIX and ADMtek and Davicom devices 209796f2e892SBill Paul * will *always* be using MII media, so that's a no-brainer. 209896f2e892SBill Paul * The tricky ones are the Macronix/PNIC II and the 209996f2e892SBill Paul * Intel 21143. 210096f2e892SBill Paul */ 21015c1cfac4SBill Paul if (DC_IS_INTEL(sc)) 21025c1cfac4SBill Paul dc_parse_21143_srom(sc); 21035c1cfac4SBill Paul else if (DC_IS_MACRONIX(sc) || DC_IS_PNICII(sc)) { 210496f2e892SBill Paul if (sc->dc_type == DC_TYPE_98713) 210596f2e892SBill Paul sc->dc_pmode = DC_PMODE_MII; 210696f2e892SBill Paul else 210796f2e892SBill Paul sc->dc_pmode = DC_PMODE_SYM; 210896f2e892SBill Paul } else if (!sc->dc_pmode) 210996f2e892SBill Paul sc->dc_pmode = DC_PMODE_MII; 211096f2e892SBill Paul 211196f2e892SBill Paul /* 211296f2e892SBill Paul * Get station address from the EEPROM. 211396f2e892SBill Paul */ 211496f2e892SBill Paul switch(sc->dc_type) { 211596f2e892SBill Paul case DC_TYPE_98713: 211696f2e892SBill Paul case DC_TYPE_98713A: 211796f2e892SBill Paul case DC_TYPE_987x5: 211896f2e892SBill Paul case DC_TYPE_PNICII: 211996f2e892SBill Paul dc_read_eeprom(sc, (caddr_t)&mac_offset, 212096f2e892SBill Paul (DC_EE_NODEADDR_OFFSET / 2), 1, 0); 212196f2e892SBill Paul dc_read_eeprom(sc, (caddr_t)&eaddr, (mac_offset / 2), 3, 0); 212296f2e892SBill Paul break; 212396f2e892SBill Paul case DC_TYPE_PNIC: 212496f2e892SBill Paul dc_read_eeprom(sc, (caddr_t)&eaddr, 0, 3, 1); 212596f2e892SBill Paul break; 212696f2e892SBill Paul case DC_TYPE_DM9102: 212796f2e892SBill Paul case DC_TYPE_21143: 212896f2e892SBill Paul case DC_TYPE_ASIX: 212996f2e892SBill Paul dc_read_eeprom(sc, (caddr_t)&eaddr, DC_EE_NODEADDR, 3, 0); 213096f2e892SBill Paul break; 213196f2e892SBill Paul case DC_TYPE_AL981: 213296f2e892SBill Paul case DC_TYPE_AN985: 21333097aa70SWarner Losh bcopy(&sc->dc_srom[DC_AL_EE_NODEADDR], (caddr_t)&eaddr, 21343097aa70SWarner Losh ETHER_ADDR_LEN); 213596f2e892SBill Paul dc_read_eeprom(sc, (caddr_t)&eaddr, DC_AL_EE_NODEADDR, 3, 0); 213696f2e892SBill Paul break; 21371af8bec7SBill Paul case DC_TYPE_CONEXANT: 21381af8bec7SBill Paul bcopy(sc->dc_srom + DC_CONEXANT_EE_NODEADDR, &eaddr, 6); 21391af8bec7SBill Paul break; 2140feb78939SJonathan Chen case DC_TYPE_XIRCOM: 2141e7b01d07SWarner Losh /* The MAC comes from the CIS */ 2142e7b01d07SWarner Losh mac = pci_get_ether(dev); 2143e7b01d07SWarner Losh if (!mac) { 2144e7b01d07SWarner Losh device_printf(dev, "No station address in CIS!\n"); 2145608654d4SNate Lawson bus_release_resource(dev, DC_RES, DC_RID, sc->dc_res); 2146608654d4SNate Lawson error = ENXIO; 2147e7b01d07SWarner Losh goto fail; 2148e7b01d07SWarner Losh } 2149e7b01d07SWarner Losh bcopy(mac, eaddr, ETHER_ADDR_LEN); 2150feb78939SJonathan Chen break; 215196f2e892SBill Paul default: 215296f2e892SBill Paul dc_read_eeprom(sc, (caddr_t)&eaddr, DC_EE_NODEADDR, 3, 0); 215396f2e892SBill Paul break; 215496f2e892SBill Paul } 215596f2e892SBill Paul 215696f2e892SBill Paul /* 215796f2e892SBill Paul * A 21143 or clone chip was detected. Inform the world. 215896f2e892SBill Paul */ 215996f2e892SBill Paul printf("dc%d: Ethernet address: %6D\n", unit, eaddr, ":"); 216096f2e892SBill Paul 216196f2e892SBill Paul sc->dc_unit = unit; 216296f2e892SBill Paul bcopy(eaddr, (char *)&sc->arpcom.ac_enaddr, ETHER_ADDR_LEN); 216396f2e892SBill Paul 216496f2e892SBill Paul sc->dc_ldata = contigmalloc(sizeof(struct dc_list_data), M_DEVBUF, 216596f2e892SBill Paul M_NOWAIT, 0, 0xffffffff, PAGE_SIZE, 0); 216696f2e892SBill Paul 216796f2e892SBill Paul if (sc->dc_ldata == NULL) { 216896f2e892SBill Paul printf("dc%d: no memory for list buffers!\n", unit); 216996f2e892SBill Paul bus_release_resource(dev, DC_RES, DC_RID, sc->dc_res); 217096f2e892SBill Paul error = ENXIO; 217196f2e892SBill Paul goto fail; 217296f2e892SBill Paul } 217396f2e892SBill Paul 217496f2e892SBill Paul bzero(sc->dc_ldata, sizeof(struct dc_list_data)); 217596f2e892SBill Paul 217696f2e892SBill Paul ifp = &sc->arpcom.ac_if; 217796f2e892SBill Paul ifp->if_softc = sc; 217896f2e892SBill Paul ifp->if_unit = unit; 217996f2e892SBill Paul ifp->if_name = "dc"; 2180feb78939SJonathan Chen /* XXX: bleah, MTU gets overwritten in ether_ifattach() */ 218196f2e892SBill Paul ifp->if_mtu = ETHERMTU; 218296f2e892SBill Paul ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST; 218396f2e892SBill Paul ifp->if_ioctl = dc_ioctl; 218496f2e892SBill Paul ifp->if_output = ether_output; 218596f2e892SBill Paul ifp->if_start = dc_start; 218696f2e892SBill Paul ifp->if_watchdog = dc_watchdog; 218796f2e892SBill Paul ifp->if_init = dc_init; 218896f2e892SBill Paul ifp->if_baudrate = 10000000; 218996f2e892SBill Paul ifp->if_snd.ifq_maxlen = DC_TX_LIST_CNT - 1; 219096f2e892SBill Paul 219196f2e892SBill Paul /* 21925c1cfac4SBill Paul * Do MII setup. If this is a 21143, check for a PHY on the 21935c1cfac4SBill Paul * MII bus after applying any necessary fixups to twiddle the 21945c1cfac4SBill Paul * GPIO bits. If we don't end up finding a PHY, restore the 21955c1cfac4SBill Paul * old selection (SIA only or SIA/SYM) and attach the dcphy 21965c1cfac4SBill Paul * driver instead. 219796f2e892SBill Paul */ 21985c1cfac4SBill Paul if (DC_IS_INTEL(sc)) { 21995c1cfac4SBill Paul dc_apply_fixup(sc, IFM_AUTO); 22005c1cfac4SBill Paul tmp = sc->dc_pmode; 22015c1cfac4SBill Paul sc->dc_pmode = DC_PMODE_MII; 22025c1cfac4SBill Paul } 22035c1cfac4SBill Paul 220496f2e892SBill Paul error = mii_phy_probe(dev, &sc->dc_miibus, 220596f2e892SBill Paul dc_ifmedia_upd, dc_ifmedia_sts); 220696f2e892SBill Paul 220796f2e892SBill Paul if (error && DC_IS_INTEL(sc)) { 22085c1cfac4SBill Paul sc->dc_pmode = tmp; 22095c1cfac4SBill Paul if (sc->dc_pmode != DC_PMODE_SIA) 221096f2e892SBill Paul sc->dc_pmode = DC_PMODE_SYM; 2211042c8f6eSBill Paul sc->dc_flags |= DC_21143_NWAY; 221296f2e892SBill Paul mii_phy_probe(dev, &sc->dc_miibus, 221396f2e892SBill Paul dc_ifmedia_upd, dc_ifmedia_sts); 221478999dd1SBill Paul /* 221578999dd1SBill Paul * For non-MII cards, we need to have the 21143 221678999dd1SBill Paul * drive the LEDs. Except there are some systems 221778999dd1SBill Paul * like the NEC VersaPro NoteBook PC which have no 221878999dd1SBill Paul * LEDs, and twiddling these bits has adverse effects 221978999dd1SBill Paul * on them. (I.e. you suddenly can't get a link.) 222078999dd1SBill Paul */ 222178999dd1SBill Paul if (pci_read_config(dev, DC_PCI_CSID, 4) != 0x80281033) 222278999dd1SBill Paul sc->dc_flags |= DC_TULIP_LEDS; 222396f2e892SBill Paul error = 0; 222496f2e892SBill Paul } 222596f2e892SBill Paul 222696f2e892SBill Paul if (error) { 222796f2e892SBill Paul printf("dc%d: MII without any PHY!\n", sc->dc_unit); 222896f2e892SBill Paul bus_release_resource(dev, DC_RES, DC_RID, sc->dc_res); 222996f2e892SBill Paul error = ENXIO; 223096f2e892SBill Paul goto fail; 223196f2e892SBill Paul } 223296f2e892SBill Paul 2233feb78939SJonathan Chen if (DC_IS_XIRCOM(sc)) { 2234feb78939SJonathan Chen /* 2235feb78939SJonathan Chen * setup General Purpose Port mode and data so the tulip 2236feb78939SJonathan Chen * can talk to the MII. 2237feb78939SJonathan Chen */ 2238feb78939SJonathan Chen CSR_WRITE_4(sc, DC_SIAGP, DC_SIAGP_WRITE_EN | DC_SIAGP_INT1_EN | 2239feb78939SJonathan Chen DC_SIAGP_MD_GP2_OUTPUT | DC_SIAGP_MD_GP0_OUTPUT); 2240feb78939SJonathan Chen DELAY(10); 2241feb78939SJonathan Chen CSR_WRITE_4(sc, DC_SIAGP, DC_SIAGP_INT1_EN | 2242feb78939SJonathan Chen DC_SIAGP_MD_GP2_OUTPUT | DC_SIAGP_MD_GP0_OUTPUT); 2243feb78939SJonathan Chen DELAY(10); 2244feb78939SJonathan Chen } 2245feb78939SJonathan Chen 2246028a8491SMartin Blapp if (DC_IS_ADMTEK(sc)) { 2247028a8491SMartin Blapp /* 2248028a8491SMartin Blapp * Set automatic TX underrun recovery for the ADMtek chips 2249028a8491SMartin Blapp */ 2250028a8491SMartin Blapp DC_SETBIT(sc, DC_AL_CR, DC_AL_CR_ATUR); 2251028a8491SMartin Blapp } 2252028a8491SMartin Blapp 225396f2e892SBill Paul /* 2254db40c1aeSDoug Ambrisko * Tell the upper layer(s) we support long frames. 2255db40c1aeSDoug Ambrisko */ 2256db40c1aeSDoug Ambrisko ifp->if_data.ifi_hdrlen = sizeof(struct ether_vlan_header); 22579ef8b520SSam Leffler ifp->if_capabilities |= IFCAP_VLAN_MTU; 2258db40c1aeSDoug Ambrisko 2259b50c6312SJonathan Lemon callout_init(&sc->dc_stat_ch, IS_MPSAFE); 226096f2e892SBill Paul 22615c1cfac4SBill Paul #ifdef SRM_MEDIA 2262510a809eSMike Smith sc->dc_srm_media = 0; 2263510a809eSMike Smith 2264510a809eSMike Smith /* Remember the SRM console media setting */ 2265510a809eSMike Smith if (DC_IS_INTEL(sc)) { 2266510a809eSMike Smith command = pci_read_config(dev, DC_PCI_CFDD, 4); 2267510a809eSMike Smith command &= ~(DC_CFDD_SNOOZE_MODE|DC_CFDD_SLEEP_MODE); 2268510a809eSMike Smith switch ((command >> 8) & 0xff) { 2269510a809eSMike Smith case 3: 2270510a809eSMike Smith sc->dc_srm_media = IFM_10_T; 2271510a809eSMike Smith break; 2272510a809eSMike Smith case 4: 2273510a809eSMike Smith sc->dc_srm_media = IFM_10_T | IFM_FDX; 2274510a809eSMike Smith break; 2275510a809eSMike Smith case 5: 2276510a809eSMike Smith sc->dc_srm_media = IFM_100_TX; 2277510a809eSMike Smith break; 2278510a809eSMike Smith case 6: 2279510a809eSMike Smith sc->dc_srm_media = IFM_100_TX | IFM_FDX; 2280510a809eSMike Smith break; 2281510a809eSMike Smith } 2282510a809eSMike Smith if (sc->dc_srm_media) 2283510a809eSMike Smith sc->dc_srm_media |= IFM_ACTIVE | IFM_ETHER; 2284510a809eSMike Smith } 2285510a809eSMike Smith #endif 2286510a809eSMike Smith 2287608654d4SNate Lawson /* 2288608654d4SNate Lawson * Call MI attach routine. 2289608654d4SNate Lawson */ 2290608654d4SNate Lawson ether_ifattach(ifp, eaddr); 2291608654d4SNate Lawson 2292608654d4SNate Lawson /* Allocate interrupt */ 2293608654d4SNate Lawson rid = 0; 2294608654d4SNate Lawson sc->dc_irq = bus_alloc_resource(dev, SYS_RES_IRQ, &rid, 0, ~0, 1, 2295608654d4SNate Lawson RF_SHAREABLE | RF_ACTIVE); 2296608654d4SNate Lawson 2297608654d4SNate Lawson if (sc->dc_irq == NULL) { 2298608654d4SNate Lawson printf("dc%d: couldn't map interrupt\n", unit); 2299608654d4SNate Lawson bus_release_resource(dev, DC_RES, DC_RID, sc->dc_res); 2300608654d4SNate Lawson error = ENXIO; 2301608654d4SNate Lawson goto fail; 2302608654d4SNate Lawson } 2303608654d4SNate Lawson 2304608654d4SNate Lawson error = bus_setup_intr(dev, sc->dc_irq, INTR_TYPE_NET | 2305608654d4SNate Lawson (IS_MPSAFE ? INTR_MPSAFE : 0), 2306608654d4SNate Lawson dc_intr, sc, &sc->dc_intrhand); 2307608654d4SNate Lawson 2308608654d4SNate Lawson if (error) { 2309608654d4SNate Lawson bus_release_resource(dev, SYS_RES_IRQ, 0, sc->dc_irq); 2310608654d4SNate Lawson bus_release_resource(dev, DC_RES, DC_RID, sc->dc_res); 2311608654d4SNate Lawson printf("dc%d: couldn't set up irq\n", unit); 2312608654d4SNate Lawson } 2313510a809eSMike Smith 231496f2e892SBill Paul fail: 2315608654d4SNate Lawson if (error != 0) 2316d1ce9105SBill Paul mtx_destroy(&sc->dc_mtx); 231796f2e892SBill Paul return (error); 231896f2e892SBill Paul } 231996f2e892SBill Paul 2320e3d2833aSAlfred Perlstein static int 2321e3d2833aSAlfred Perlstein dc_detach(dev) 232296f2e892SBill Paul device_t dev; 232396f2e892SBill Paul { 232496f2e892SBill Paul struct dc_softc *sc; 232596f2e892SBill Paul struct ifnet *ifp; 23265c1cfac4SBill Paul struct dc_mediainfo *m; 232796f2e892SBill Paul 232896f2e892SBill Paul sc = device_get_softc(dev); 2329d1ce9105SBill Paul 2330d1ce9105SBill Paul DC_LOCK(sc); 2331d1ce9105SBill Paul 233296f2e892SBill Paul ifp = &sc->arpcom.ac_if; 233396f2e892SBill Paul 233496f2e892SBill Paul dc_stop(sc); 23359ef8b520SSam Leffler ether_ifdetach(ifp); 233696f2e892SBill Paul 233796f2e892SBill Paul bus_generic_detach(dev); 233896f2e892SBill Paul device_delete_child(dev, sc->dc_miibus); 233996f2e892SBill Paul 234096f2e892SBill Paul bus_teardown_intr(dev, sc->dc_irq, sc->dc_intrhand); 234196f2e892SBill Paul bus_release_resource(dev, SYS_RES_IRQ, 0, sc->dc_irq); 234296f2e892SBill Paul bus_release_resource(dev, DC_RES, DC_RID, sc->dc_res); 234396f2e892SBill Paul 234496f2e892SBill Paul contigfree(sc->dc_ldata, sizeof(struct dc_list_data), M_DEVBUF); 234596f2e892SBill Paul if (sc->dc_pnic_rx_buf != NULL) 234696f2e892SBill Paul free(sc->dc_pnic_rx_buf, M_DEVBUF); 234796f2e892SBill Paul 23485c1cfac4SBill Paul while(sc->dc_mi != NULL) { 23495c1cfac4SBill Paul m = sc->dc_mi->dc_next; 23505c1cfac4SBill Paul free(sc->dc_mi, M_DEVBUF); 23515c1cfac4SBill Paul sc->dc_mi = m; 23525c1cfac4SBill Paul } 23537efff076SWarner Losh free(sc->dc_srom, M_DEVBUF); 23545c1cfac4SBill Paul 2355d1ce9105SBill Paul DC_UNLOCK(sc); 2356d1ce9105SBill Paul mtx_destroy(&sc->dc_mtx); 235796f2e892SBill Paul 235896f2e892SBill Paul return(0); 235996f2e892SBill Paul } 236096f2e892SBill Paul 236196f2e892SBill Paul /* 236296f2e892SBill Paul * Initialize the transmit descriptors. 236396f2e892SBill Paul */ 2364e3d2833aSAlfred Perlstein static int 2365e3d2833aSAlfred Perlstein dc_list_tx_init(sc) 236696f2e892SBill Paul struct dc_softc *sc; 236796f2e892SBill Paul { 236896f2e892SBill Paul struct dc_chain_data *cd; 236996f2e892SBill Paul struct dc_list_data *ld; 237001faf54bSLuigi Rizzo int i, nexti; 237196f2e892SBill Paul 237296f2e892SBill Paul cd = &sc->dc_cdata; 237396f2e892SBill Paul ld = sc->dc_ldata; 237496f2e892SBill Paul for (i = 0; i < DC_TX_LIST_CNT; i++) { 237501faf54bSLuigi Rizzo nexti = (i == (DC_TX_LIST_CNT - 1)) ? 0 : i+1; 237601faf54bSLuigi Rizzo ld->dc_tx_list[i].dc_next = vtophys(&ld->dc_tx_list[nexti]); 237796f2e892SBill Paul cd->dc_tx_chain[i] = NULL; 237896f2e892SBill Paul ld->dc_tx_list[i].dc_data = 0; 237996f2e892SBill Paul ld->dc_tx_list[i].dc_ctl = 0; 238096f2e892SBill Paul } 238196f2e892SBill Paul 238296f2e892SBill Paul cd->dc_tx_prod = cd->dc_tx_cons = cd->dc_tx_cnt = 0; 238396f2e892SBill Paul 238496f2e892SBill Paul return(0); 238596f2e892SBill Paul } 238696f2e892SBill Paul 238796f2e892SBill Paul 238896f2e892SBill Paul /* 238996f2e892SBill Paul * Initialize the RX descriptors and allocate mbufs for them. Note that 239096f2e892SBill Paul * we arrange the descriptors in a closed ring, so that the last descriptor 239196f2e892SBill Paul * points back to the first. 239296f2e892SBill Paul */ 2393e3d2833aSAlfred Perlstein static int 2394e3d2833aSAlfred Perlstein dc_list_rx_init(sc) 239596f2e892SBill Paul struct dc_softc *sc; 239696f2e892SBill Paul { 239796f2e892SBill Paul struct dc_chain_data *cd; 239896f2e892SBill Paul struct dc_list_data *ld; 239901faf54bSLuigi Rizzo int i, nexti; 240096f2e892SBill Paul 240196f2e892SBill Paul cd = &sc->dc_cdata; 240296f2e892SBill Paul ld = sc->dc_ldata; 240396f2e892SBill Paul 240496f2e892SBill Paul for (i = 0; i < DC_RX_LIST_CNT; i++) { 240596f2e892SBill Paul if (dc_newbuf(sc, i, NULL) == ENOBUFS) 240696f2e892SBill Paul return(ENOBUFS); 240701faf54bSLuigi Rizzo nexti = (i == (DC_RX_LIST_CNT - 1)) ? 0 : i+1; 240801faf54bSLuigi Rizzo ld->dc_rx_list[i].dc_next = vtophys(&ld->dc_rx_list[nexti]); 240996f2e892SBill Paul } 241096f2e892SBill Paul 241196f2e892SBill Paul cd->dc_rx_prod = 0; 241296f2e892SBill Paul 241396f2e892SBill Paul return(0); 241496f2e892SBill Paul } 241596f2e892SBill Paul 241696f2e892SBill Paul /* 241796f2e892SBill Paul * Initialize an RX descriptor and attach an MBUF cluster. 241896f2e892SBill Paul */ 2419e3d2833aSAlfred Perlstein static int 2420e3d2833aSAlfred Perlstein dc_newbuf(sc, i, m) 242196f2e892SBill Paul struct dc_softc *sc; 242296f2e892SBill Paul int i; 242396f2e892SBill Paul struct mbuf *m; 242496f2e892SBill Paul { 242596f2e892SBill Paul struct mbuf *m_new = NULL; 242696f2e892SBill Paul struct dc_desc *c; 242796f2e892SBill Paul 242896f2e892SBill Paul c = &sc->dc_ldata->dc_rx_list[i]; 242996f2e892SBill Paul 243096f2e892SBill Paul if (m == NULL) { 243144956c98SAlfred Perlstein MGETHDR(m_new, M_NOWAIT, MT_DATA); 243240129585SLuigi Rizzo if (m_new == NULL) 243396f2e892SBill Paul return(ENOBUFS); 243496f2e892SBill Paul 243544956c98SAlfred Perlstein MCLGET(m_new, M_NOWAIT); 243696f2e892SBill Paul if (!(m_new->m_flags & M_EXT)) { 243796f2e892SBill Paul m_freem(m_new); 243896f2e892SBill Paul return(ENOBUFS); 243996f2e892SBill Paul } 244096f2e892SBill Paul m_new->m_len = m_new->m_pkthdr.len = MCLBYTES; 244196f2e892SBill Paul } else { 244296f2e892SBill Paul m_new = m; 244396f2e892SBill Paul m_new->m_len = m_new->m_pkthdr.len = MCLBYTES; 244496f2e892SBill Paul m_new->m_data = m_new->m_ext.ext_buf; 244596f2e892SBill Paul } 244696f2e892SBill Paul 244796f2e892SBill Paul m_adj(m_new, sizeof(u_int64_t)); 244896f2e892SBill Paul 244996f2e892SBill Paul /* 245096f2e892SBill Paul * If this is a PNIC chip, zero the buffer. This is part 245196f2e892SBill Paul * of the workaround for the receive bug in the 82c168 and 245296f2e892SBill Paul * 82c169 chips. 245396f2e892SBill Paul */ 245496f2e892SBill Paul if (sc->dc_flags & DC_PNIC_RX_BUG_WAR) 245596f2e892SBill Paul bzero((char *)mtod(m_new, char *), m_new->m_len); 245696f2e892SBill Paul 245796f2e892SBill Paul sc->dc_cdata.dc_rx_chain[i] = m_new; 245896f2e892SBill Paul c->dc_data = vtophys(mtod(m_new, caddr_t)); 245996f2e892SBill Paul c->dc_ctl = DC_RXCTL_RLINK | DC_RXLEN; 246096f2e892SBill Paul c->dc_status = DC_RXSTAT_OWN; 246196f2e892SBill Paul 246296f2e892SBill Paul return(0); 246396f2e892SBill Paul } 246496f2e892SBill Paul 246596f2e892SBill Paul /* 246696f2e892SBill Paul * Grrrrr. 246796f2e892SBill Paul * The PNIC chip has a terrible bug in it that manifests itself during 246896f2e892SBill Paul * periods of heavy activity. The exact mode of failure if difficult to 246996f2e892SBill Paul * pinpoint: sometimes it only happens in promiscuous mode, sometimes it 247096f2e892SBill Paul * will happen on slow machines. The bug is that sometimes instead of 247196f2e892SBill Paul * uploading one complete frame during reception, it uploads what looks 247296f2e892SBill Paul * like the entire contents of its FIFO memory. The frame we want is at 247396f2e892SBill Paul * the end of the whole mess, but we never know exactly how much data has 247496f2e892SBill Paul * been uploaded, so salvaging the frame is hard. 247596f2e892SBill Paul * 247696f2e892SBill Paul * There is only one way to do it reliably, and it's disgusting. 247796f2e892SBill Paul * Here's what we know: 247896f2e892SBill Paul * 247996f2e892SBill Paul * - We know there will always be somewhere between one and three extra 248096f2e892SBill Paul * descriptors uploaded. 248196f2e892SBill Paul * 248296f2e892SBill Paul * - We know the desired received frame will always be at the end of the 248396f2e892SBill Paul * total data upload. 248496f2e892SBill Paul * 248596f2e892SBill Paul * - We know the size of the desired received frame because it will be 248696f2e892SBill Paul * provided in the length field of the status word in the last descriptor. 248796f2e892SBill Paul * 248896f2e892SBill Paul * Here's what we do: 248996f2e892SBill Paul * 249096f2e892SBill Paul * - When we allocate buffers for the receive ring, we bzero() them. 249196f2e892SBill Paul * This means that we know that the buffer contents should be all 249296f2e892SBill Paul * zeros, except for data uploaded by the chip. 249396f2e892SBill Paul * 249496f2e892SBill Paul * - We also force the PNIC chip to upload frames that include the 249596f2e892SBill Paul * ethernet CRC at the end. 249696f2e892SBill Paul * 249796f2e892SBill Paul * - We gather all of the bogus frame data into a single buffer. 249896f2e892SBill Paul * 249996f2e892SBill Paul * - We then position a pointer at the end of this buffer and scan 250096f2e892SBill Paul * backwards until we encounter the first non-zero byte of data. 250196f2e892SBill Paul * This is the end of the received frame. We know we will encounter 250296f2e892SBill Paul * some data at the end of the frame because the CRC will always be 250396f2e892SBill Paul * there, so even if the sender transmits a packet of all zeros, 250496f2e892SBill Paul * we won't be fooled. 250596f2e892SBill Paul * 250696f2e892SBill Paul * - We know the size of the actual received frame, so we subtract 250796f2e892SBill Paul * that value from the current pointer location. This brings us 250896f2e892SBill Paul * to the start of the actual received packet. 250996f2e892SBill Paul * 251096f2e892SBill Paul * - We copy this into an mbuf and pass it on, along with the actual 251196f2e892SBill Paul * frame length. 251296f2e892SBill Paul * 251396f2e892SBill Paul * The performance hit is tremendous, but it beats dropping frames all 251496f2e892SBill Paul * the time. 251596f2e892SBill Paul */ 251696f2e892SBill Paul 251796f2e892SBill Paul #define DC_WHOLEFRAME (DC_RXSTAT_FIRSTFRAG|DC_RXSTAT_LASTFRAG) 2518e3d2833aSAlfred Perlstein static void 2519e3d2833aSAlfred Perlstein dc_pnic_rx_bug_war(sc, idx) 252096f2e892SBill Paul struct dc_softc *sc; 252196f2e892SBill Paul int idx; 252296f2e892SBill Paul { 252396f2e892SBill Paul struct dc_desc *cur_rx; 252496f2e892SBill Paul struct dc_desc *c = NULL; 252596f2e892SBill Paul struct mbuf *m = NULL; 252696f2e892SBill Paul unsigned char *ptr; 252796f2e892SBill Paul int i, total_len; 252896f2e892SBill Paul u_int32_t rxstat = 0; 252996f2e892SBill Paul 253096f2e892SBill Paul i = sc->dc_pnic_rx_bug_save; 253196f2e892SBill Paul cur_rx = &sc->dc_ldata->dc_rx_list[idx]; 253296f2e892SBill Paul ptr = sc->dc_pnic_rx_buf; 253396f2e892SBill Paul bzero(ptr, sizeof(DC_RXLEN * 5)); 253496f2e892SBill Paul 253596f2e892SBill Paul /* Copy all the bytes from the bogus buffers. */ 253696f2e892SBill Paul while (1) { 253796f2e892SBill Paul c = &sc->dc_ldata->dc_rx_list[i]; 253896f2e892SBill Paul rxstat = c->dc_status; 253996f2e892SBill Paul m = sc->dc_cdata.dc_rx_chain[i]; 254096f2e892SBill Paul bcopy(mtod(m, char *), ptr, DC_RXLEN); 254196f2e892SBill Paul ptr += DC_RXLEN; 254296f2e892SBill Paul /* If this is the last buffer, break out. */ 254396f2e892SBill Paul if (i == idx || rxstat & DC_RXSTAT_LASTFRAG) 254496f2e892SBill Paul break; 254596f2e892SBill Paul dc_newbuf(sc, i, m); 254696f2e892SBill Paul DC_INC(i, DC_RX_LIST_CNT); 254796f2e892SBill Paul } 254896f2e892SBill Paul 254996f2e892SBill Paul /* Find the length of the actual receive frame. */ 255096f2e892SBill Paul total_len = DC_RXBYTES(rxstat); 255196f2e892SBill Paul 255296f2e892SBill Paul /* Scan backwards until we hit a non-zero byte. */ 255396f2e892SBill Paul while(*ptr == 0x00) 255496f2e892SBill Paul ptr--; 255596f2e892SBill Paul 255696f2e892SBill Paul /* Round off. */ 255796f2e892SBill Paul if ((uintptr_t)(ptr) & 0x3) 255896f2e892SBill Paul ptr -= 1; 255996f2e892SBill Paul 256096f2e892SBill Paul /* Now find the start of the frame. */ 256196f2e892SBill Paul ptr -= total_len; 256296f2e892SBill Paul if (ptr < sc->dc_pnic_rx_buf) 256396f2e892SBill Paul ptr = sc->dc_pnic_rx_buf; 256496f2e892SBill Paul 256596f2e892SBill Paul /* 256696f2e892SBill Paul * Now copy the salvaged frame to the last mbuf and fake up 256796f2e892SBill Paul * the status word to make it look like a successful 256896f2e892SBill Paul * frame reception. 256996f2e892SBill Paul */ 257096f2e892SBill Paul dc_newbuf(sc, i, m); 257196f2e892SBill Paul bcopy(ptr, mtod(m, char *), total_len); 257296f2e892SBill Paul cur_rx->dc_status = rxstat | DC_RXSTAT_FIRSTFRAG; 257396f2e892SBill Paul 257496f2e892SBill Paul return; 257596f2e892SBill Paul } 257696f2e892SBill Paul 257796f2e892SBill Paul /* 257873bf949cSBill Paul * This routine searches the RX ring for dirty descriptors in the 257973bf949cSBill Paul * event that the rxeof routine falls out of sync with the chip's 258073bf949cSBill Paul * current descriptor pointer. This may happen sometimes as a result 258173bf949cSBill Paul * of a "no RX buffer available" condition that happens when the chip 258273bf949cSBill Paul * consumes all of the RX buffers before the driver has a chance to 258373bf949cSBill Paul * process the RX ring. This routine may need to be called more than 258473bf949cSBill Paul * once to bring the driver back in sync with the chip, however we 258573bf949cSBill Paul * should still be getting RX DONE interrupts to drive the search 258673bf949cSBill Paul * for new packets in the RX ring, so we should catch up eventually. 258773bf949cSBill Paul */ 2588e3d2833aSAlfred Perlstein static int 2589e3d2833aSAlfred Perlstein dc_rx_resync(sc) 259073bf949cSBill Paul struct dc_softc *sc; 259173bf949cSBill Paul { 259273bf949cSBill Paul int i, pos; 259373bf949cSBill Paul struct dc_desc *cur_rx; 259473bf949cSBill Paul 259573bf949cSBill Paul pos = sc->dc_cdata.dc_rx_prod; 259673bf949cSBill Paul 259773bf949cSBill Paul for (i = 0; i < DC_RX_LIST_CNT; i++) { 259873bf949cSBill Paul cur_rx = &sc->dc_ldata->dc_rx_list[pos]; 259973bf949cSBill Paul if (!(cur_rx->dc_status & DC_RXSTAT_OWN)) 260073bf949cSBill Paul break; 260173bf949cSBill Paul DC_INC(pos, DC_RX_LIST_CNT); 260273bf949cSBill Paul } 260373bf949cSBill Paul 260473bf949cSBill Paul /* If the ring really is empty, then just return. */ 260573bf949cSBill Paul if (i == DC_RX_LIST_CNT) 260673bf949cSBill Paul return(0); 260773bf949cSBill Paul 260873bf949cSBill Paul /* We've fallen behing the chip: catch it. */ 260973bf949cSBill Paul sc->dc_cdata.dc_rx_prod = pos; 261073bf949cSBill Paul 261173bf949cSBill Paul return(EAGAIN); 261273bf949cSBill Paul } 261373bf949cSBill Paul 261473bf949cSBill Paul /* 261596f2e892SBill Paul * A frame has been uploaded: pass the resulting mbuf chain up to 261696f2e892SBill Paul * the higher level protocols. 261796f2e892SBill Paul */ 2618e3d2833aSAlfred Perlstein static void 2619e3d2833aSAlfred Perlstein dc_rxeof(sc) 262096f2e892SBill Paul struct dc_softc *sc; 262196f2e892SBill Paul { 262296f2e892SBill Paul struct mbuf *m; 262396f2e892SBill Paul struct ifnet *ifp; 262496f2e892SBill Paul struct dc_desc *cur_rx; 262596f2e892SBill Paul int i, total_len = 0; 262696f2e892SBill Paul u_int32_t rxstat; 262796f2e892SBill Paul 262896f2e892SBill Paul ifp = &sc->arpcom.ac_if; 262996f2e892SBill Paul i = sc->dc_cdata.dc_rx_prod; 263096f2e892SBill Paul 263196f2e892SBill Paul while(!(sc->dc_ldata->dc_rx_list[i].dc_status & DC_RXSTAT_OWN)) { 263296f2e892SBill Paul 2633e4fc250cSLuigi Rizzo #ifdef DEVICE_POLLING 263462f76486SMaxim Sobolev if (ifp->if_flags & IFF_POLLING) { 2635e4fc250cSLuigi Rizzo if (sc->rxcycles <= 0) 2636e4fc250cSLuigi Rizzo break; 2637e4fc250cSLuigi Rizzo sc->rxcycles--; 2638e4fc250cSLuigi Rizzo } 2639e4fc250cSLuigi Rizzo #endif /* DEVICE_POLLING */ 264096f2e892SBill Paul cur_rx = &sc->dc_ldata->dc_rx_list[i]; 264196f2e892SBill Paul rxstat = cur_rx->dc_status; 264296f2e892SBill Paul m = sc->dc_cdata.dc_rx_chain[i]; 264396f2e892SBill Paul total_len = DC_RXBYTES(rxstat); 264496f2e892SBill Paul 264596f2e892SBill Paul if (sc->dc_flags & DC_PNIC_RX_BUG_WAR) { 264696f2e892SBill Paul if ((rxstat & DC_WHOLEFRAME) != DC_WHOLEFRAME) { 264796f2e892SBill Paul if (rxstat & DC_RXSTAT_FIRSTFRAG) 264896f2e892SBill Paul sc->dc_pnic_rx_bug_save = i; 264996f2e892SBill Paul if ((rxstat & DC_RXSTAT_LASTFRAG) == 0) { 265096f2e892SBill Paul DC_INC(i, DC_RX_LIST_CNT); 265196f2e892SBill Paul continue; 265296f2e892SBill Paul } 265396f2e892SBill Paul dc_pnic_rx_bug_war(sc, i); 265496f2e892SBill Paul rxstat = cur_rx->dc_status; 265596f2e892SBill Paul total_len = DC_RXBYTES(rxstat); 265696f2e892SBill Paul } 265796f2e892SBill Paul } 265896f2e892SBill Paul 265996f2e892SBill Paul sc->dc_cdata.dc_rx_chain[i] = NULL; 266096f2e892SBill Paul 266196f2e892SBill Paul /* 266296f2e892SBill Paul * If an error occurs, update stats, clear the 266396f2e892SBill Paul * status word and leave the mbuf cluster in place: 266496f2e892SBill Paul * it should simply get re-used next time this descriptor 2665db40c1aeSDoug Ambrisko * comes up in the ring. However, don't report long 2666db40c1aeSDoug Ambrisko * frames as errors since they could be vlans 266796f2e892SBill Paul */ 2668db40c1aeSDoug Ambrisko if ((rxstat & DC_RXSTAT_RXERR)){ 2669db40c1aeSDoug Ambrisko if (!(rxstat & DC_RXSTAT_GIANT) || 2670db40c1aeSDoug Ambrisko (rxstat & (DC_RXSTAT_CRCERR | DC_RXSTAT_DRIBBLE | 2671db40c1aeSDoug Ambrisko DC_RXSTAT_MIIERE | DC_RXSTAT_COLLSEEN | 2672db40c1aeSDoug Ambrisko DC_RXSTAT_RUNT | DC_RXSTAT_DE))) { 267396f2e892SBill Paul ifp->if_ierrors++; 267496f2e892SBill Paul if (rxstat & DC_RXSTAT_COLLSEEN) 267596f2e892SBill Paul ifp->if_collisions++; 267696f2e892SBill Paul dc_newbuf(sc, i, m); 267796f2e892SBill Paul if (rxstat & DC_RXSTAT_CRCERR) { 267896f2e892SBill Paul DC_INC(i, DC_RX_LIST_CNT); 267996f2e892SBill Paul continue; 268096f2e892SBill Paul } else { 268196f2e892SBill Paul dc_init(sc); 268296f2e892SBill Paul return; 268396f2e892SBill Paul } 268496f2e892SBill Paul } 2685db40c1aeSDoug Ambrisko } 268696f2e892SBill Paul 268796f2e892SBill Paul /* No errors; receive the packet. */ 268896f2e892SBill Paul total_len -= ETHER_CRC_LEN; 268901faf54bSLuigi Rizzo #ifdef __i386__ 269001faf54bSLuigi Rizzo /* 269101faf54bSLuigi Rizzo * On the x86 we do not have alignment problems, so try to 269201faf54bSLuigi Rizzo * allocate a new buffer for the receive ring, and pass up 269301faf54bSLuigi Rizzo * the one where the packet is already, saving the expensive 269401faf54bSLuigi Rizzo * copy done in m_devget(). 269501faf54bSLuigi Rizzo * If we are on an architecture with alignment problems, or 269601faf54bSLuigi Rizzo * if the allocation fails, then use m_devget and leave the 269701faf54bSLuigi Rizzo * existing buffer in the receive ring. 269801faf54bSLuigi Rizzo */ 269901faf54bSLuigi Rizzo if (dc_quick && dc_newbuf(sc, i, NULL) == 0) { 270001faf54bSLuigi Rizzo m->m_pkthdr.rcvif = ifp; 270101faf54bSLuigi Rizzo m->m_pkthdr.len = m->m_len = total_len; 270201faf54bSLuigi Rizzo DC_INC(i, DC_RX_LIST_CNT); 270301faf54bSLuigi Rizzo } else 270401faf54bSLuigi Rizzo #endif 270501faf54bSLuigi Rizzo { 270601faf54bSLuigi Rizzo struct mbuf *m0; 270796f2e892SBill Paul 270801faf54bSLuigi Rizzo m0 = m_devget(mtod(m, char *), total_len, 270901faf54bSLuigi Rizzo ETHER_ALIGN, ifp, NULL); 271096f2e892SBill Paul dc_newbuf(sc, i, m); 271196f2e892SBill Paul DC_INC(i, DC_RX_LIST_CNT); 271296f2e892SBill Paul if (m0 == NULL) { 271396f2e892SBill Paul ifp->if_ierrors++; 271496f2e892SBill Paul continue; 271596f2e892SBill Paul } 271696f2e892SBill Paul m = m0; 271701faf54bSLuigi Rizzo } 271896f2e892SBill Paul 271996f2e892SBill Paul ifp->if_ipackets++; 27209ef8b520SSam Leffler (*ifp->if_input)(ifp, m); 272196f2e892SBill Paul } 272296f2e892SBill Paul 272396f2e892SBill Paul sc->dc_cdata.dc_rx_prod = i; 272496f2e892SBill Paul } 272596f2e892SBill Paul 272696f2e892SBill Paul /* 272796f2e892SBill Paul * A frame was downloaded to the chip. It's safe for us to clean up 272896f2e892SBill Paul * the list buffers. 272996f2e892SBill Paul */ 273096f2e892SBill Paul 2731e3d2833aSAlfred Perlstein static void 2732e3d2833aSAlfred Perlstein dc_txeof(sc) 273396f2e892SBill Paul struct dc_softc *sc; 273496f2e892SBill Paul { 273596f2e892SBill Paul struct dc_desc *cur_tx = NULL; 273696f2e892SBill Paul struct ifnet *ifp; 273796f2e892SBill Paul int idx; 273896f2e892SBill Paul 273996f2e892SBill Paul ifp = &sc->arpcom.ac_if; 274096f2e892SBill Paul 274196f2e892SBill Paul /* 274296f2e892SBill Paul * Go through our tx list and free mbufs for those 274396f2e892SBill Paul * frames that have been transmitted. 274496f2e892SBill Paul */ 274596f2e892SBill Paul idx = sc->dc_cdata.dc_tx_cons; 274696f2e892SBill Paul while(idx != sc->dc_cdata.dc_tx_prod) { 274796f2e892SBill Paul u_int32_t txstat; 274896f2e892SBill Paul 274996f2e892SBill Paul cur_tx = &sc->dc_ldata->dc_tx_list[idx]; 275096f2e892SBill Paul txstat = cur_tx->dc_status; 275196f2e892SBill Paul 275296f2e892SBill Paul if (txstat & DC_TXSTAT_OWN) 275396f2e892SBill Paul break; 275496f2e892SBill Paul 275596f2e892SBill Paul if (!(cur_tx->dc_ctl & DC_TXCTL_LASTFRAG) || 275696f2e892SBill Paul cur_tx->dc_ctl & DC_TXCTL_SETUP) { 275796f2e892SBill Paul if (cur_tx->dc_ctl & DC_TXCTL_SETUP) { 275896f2e892SBill Paul /* 275996f2e892SBill Paul * Yes, the PNIC is so brain damaged 276096f2e892SBill Paul * that it will sometimes generate a TX 276196f2e892SBill Paul * underrun error while DMAing the RX 276296f2e892SBill Paul * filter setup frame. If we detect this, 276396f2e892SBill Paul * we have to send the setup frame again, 276496f2e892SBill Paul * or else the filter won't be programmed 276596f2e892SBill Paul * correctly. 276696f2e892SBill Paul */ 276796f2e892SBill Paul if (DC_IS_PNIC(sc)) { 276896f2e892SBill Paul if (txstat & DC_TXSTAT_ERRSUM) 276996f2e892SBill Paul dc_setfilt(sc); 277096f2e892SBill Paul } 277196f2e892SBill Paul sc->dc_cdata.dc_tx_chain[idx] = NULL; 277296f2e892SBill Paul } 2773bcb9ef4fSLuigi Rizzo sc->dc_cdata.dc_tx_cnt--; 277496f2e892SBill Paul DC_INC(idx, DC_TX_LIST_CNT); 277596f2e892SBill Paul continue; 277696f2e892SBill Paul } 277796f2e892SBill Paul 277829a2220aSBill Paul if (DC_IS_XIRCOM(sc) || DC_IS_CONEXANT(sc)) { 2779feb78939SJonathan Chen /* 2780feb78939SJonathan Chen * XXX: Why does my Xircom taunt me so? 2781feb78939SJonathan Chen * For some reason it likes setting the CARRLOST flag 278229a2220aSBill Paul * even when the carrier is there. wtf?!? 278329a2220aSBill Paul * Who knows, but Conexant chips have the 278429a2220aSBill Paul * same problem. Maybe they took lessons 278529a2220aSBill Paul * from Xircom. 278629a2220aSBill Paul */ 2787feb78939SJonathan Chen if (/*sc->dc_type == DC_TYPE_21143 &&*/ 2788feb78939SJonathan Chen sc->dc_pmode == DC_PMODE_MII && 2789feb78939SJonathan Chen ((txstat & 0xFFFF) & ~(DC_TXSTAT_ERRSUM| 2790feb78939SJonathan Chen DC_TXSTAT_NOCARRIER))) 2791feb78939SJonathan Chen txstat &= ~DC_TXSTAT_ERRSUM; 2792feb78939SJonathan Chen } else { 279396f2e892SBill Paul if (/*sc->dc_type == DC_TYPE_21143 &&*/ 279496f2e892SBill Paul sc->dc_pmode == DC_PMODE_MII && 279596f2e892SBill Paul ((txstat & 0xFFFF) & ~(DC_TXSTAT_ERRSUM| 279696f2e892SBill Paul DC_TXSTAT_NOCARRIER|DC_TXSTAT_CARRLOST))) 279796f2e892SBill Paul txstat &= ~DC_TXSTAT_ERRSUM; 2798feb78939SJonathan Chen } 279996f2e892SBill Paul 280096f2e892SBill Paul if (txstat & DC_TXSTAT_ERRSUM) { 280196f2e892SBill Paul ifp->if_oerrors++; 280296f2e892SBill Paul if (txstat & DC_TXSTAT_EXCESSCOLL) 280396f2e892SBill Paul ifp->if_collisions++; 280496f2e892SBill Paul if (txstat & DC_TXSTAT_LATECOLL) 280596f2e892SBill Paul ifp->if_collisions++; 280696f2e892SBill Paul if (!(txstat & DC_TXSTAT_UNDERRUN)) { 280796f2e892SBill Paul dc_init(sc); 280896f2e892SBill Paul return; 280996f2e892SBill Paul } 281096f2e892SBill Paul } 281196f2e892SBill Paul 281296f2e892SBill Paul ifp->if_collisions += (txstat & DC_TXSTAT_COLLCNT) >> 3; 281396f2e892SBill Paul 281496f2e892SBill Paul ifp->if_opackets++; 281596f2e892SBill Paul if (sc->dc_cdata.dc_tx_chain[idx] != NULL) { 281696f2e892SBill Paul m_freem(sc->dc_cdata.dc_tx_chain[idx]); 281796f2e892SBill Paul sc->dc_cdata.dc_tx_chain[idx] = NULL; 281896f2e892SBill Paul } 281996f2e892SBill Paul 282096f2e892SBill Paul sc->dc_cdata.dc_tx_cnt--; 282196f2e892SBill Paul DC_INC(idx, DC_TX_LIST_CNT); 282296f2e892SBill Paul } 282396f2e892SBill Paul 2824bcb9ef4fSLuigi Rizzo if (idx != sc->dc_cdata.dc_tx_cons) { 2825bcb9ef4fSLuigi Rizzo /* some buffers have been freed */ 282696f2e892SBill Paul sc->dc_cdata.dc_tx_cons = idx; 282796f2e892SBill Paul ifp->if_flags &= ~IFF_OACTIVE; 2828bcb9ef4fSLuigi Rizzo } 2829bcb9ef4fSLuigi Rizzo ifp->if_timer = (sc->dc_cdata.dc_tx_cnt == 0) ? 0 : 5; 283096f2e892SBill Paul 283196f2e892SBill Paul return; 283296f2e892SBill Paul } 283396f2e892SBill Paul 2834e3d2833aSAlfred Perlstein static void 2835e3d2833aSAlfred Perlstein dc_tick(xsc) 283696f2e892SBill Paul void *xsc; 283796f2e892SBill Paul { 283896f2e892SBill Paul struct dc_softc *sc; 283996f2e892SBill Paul struct mii_data *mii; 284096f2e892SBill Paul struct ifnet *ifp; 284196f2e892SBill Paul u_int32_t r; 284296f2e892SBill Paul 284396f2e892SBill Paul sc = xsc; 2844d1ce9105SBill Paul DC_LOCK(sc); 284596f2e892SBill Paul ifp = &sc->arpcom.ac_if; 284696f2e892SBill Paul mii = device_get_softc(sc->dc_miibus); 284796f2e892SBill Paul 284896f2e892SBill Paul if (sc->dc_flags & DC_REDUCED_MII_POLL) { 2849318b02fdSBill Paul if (sc->dc_flags & DC_21143_NWAY) { 2850318b02fdSBill Paul r = CSR_READ_4(sc, DC_10BTSTAT); 2851318b02fdSBill Paul if (IFM_SUBTYPE(mii->mii_media_active) == 2852318b02fdSBill Paul IFM_100_TX && (r & DC_TSTAT_LS100)) { 285396f2e892SBill Paul sc->dc_link = 0; 2854318b02fdSBill Paul mii_mediachg(mii); 2855318b02fdSBill Paul } 2856318b02fdSBill Paul if (IFM_SUBTYPE(mii->mii_media_active) == 2857318b02fdSBill Paul IFM_10_T && (r & DC_TSTAT_LS10)) { 2858318b02fdSBill Paul sc->dc_link = 0; 2859318b02fdSBill Paul mii_mediachg(mii); 2860318b02fdSBill Paul } 2861d675147eSBill Paul if (sc->dc_link == 0) 286296f2e892SBill Paul mii_tick(mii); 286396f2e892SBill Paul } else { 2864318b02fdSBill Paul r = CSR_READ_4(sc, DC_ISR); 286596f2e892SBill Paul if ((r & DC_ISR_RX_STATE) == DC_RXSTATE_WAIT && 2866259b8d84SMartin Blapp sc->dc_cdata.dc_tx_cnt == 0) { 286796f2e892SBill Paul mii_tick(mii); 2868042c8f6eSBill Paul if (!(mii->mii_media_status & IFM_ACTIVE)) 2869042c8f6eSBill Paul sc->dc_link = 0; 287096f2e892SBill Paul } 2871259b8d84SMartin Blapp } 287296f2e892SBill Paul } else 287396f2e892SBill Paul mii_tick(mii); 287496f2e892SBill Paul 287596f2e892SBill Paul /* 287696f2e892SBill Paul * When the init routine completes, we expect to be able to send 287796f2e892SBill Paul * packets right away, and in fact the network code will send a 287896f2e892SBill Paul * gratuitous ARP the moment the init routine marks the interface 287996f2e892SBill Paul * as running. However, even though the MAC may have been initialized, 288096f2e892SBill Paul * there may be a delay of a few seconds before the PHY completes 288196f2e892SBill Paul * autonegotiation and the link is brought up. Any transmissions 288296f2e892SBill Paul * made during that delay will be lost. Dealing with this is tricky: 288396f2e892SBill Paul * we can't just pause in the init routine while waiting for the 288496f2e892SBill Paul * PHY to come ready since that would bring the whole system to 288596f2e892SBill Paul * a screeching halt for several seconds. 288696f2e892SBill Paul * 288796f2e892SBill Paul * What we do here is prevent the TX start routine from sending 288896f2e892SBill Paul * any packets until a link has been established. After the 288996f2e892SBill Paul * interface has been initialized, the tick routine will poll 289096f2e892SBill Paul * the state of the PHY until the IFM_ACTIVE flag is set. Until 289196f2e892SBill Paul * that time, packets will stay in the send queue, and once the 289296f2e892SBill Paul * link comes up, they will be flushed out to the wire. 289396f2e892SBill Paul */ 2894cd62a9cbSJonathan Lemon if (!sc->dc_link && mii->mii_media_status & IFM_ACTIVE && 289596f2e892SBill Paul IFM_SUBTYPE(mii->mii_media_active) != IFM_NONE) { 289696f2e892SBill Paul sc->dc_link++; 289796f2e892SBill Paul if (ifp->if_snd.ifq_head != NULL) 289896f2e892SBill Paul dc_start(ifp); 289996f2e892SBill Paul } 290096f2e892SBill Paul 2901318b02fdSBill Paul if (sc->dc_flags & DC_21143_NWAY && !sc->dc_link) 2902b50c6312SJonathan Lemon callout_reset(&sc->dc_stat_ch, hz/10, dc_tick, sc); 2903318b02fdSBill Paul else 2904b50c6312SJonathan Lemon callout_reset(&sc->dc_stat_ch, hz, dc_tick, sc); 290596f2e892SBill Paul 2906d1ce9105SBill Paul DC_UNLOCK(sc); 290796f2e892SBill Paul 290896f2e892SBill Paul return; 290996f2e892SBill Paul } 291096f2e892SBill Paul 2911d467c136SBill Paul /* 2912d467c136SBill Paul * A transmit underrun has occurred. Back off the transmit threshold, 2913d467c136SBill Paul * or switch to store and forward mode if we have to. 2914d467c136SBill Paul */ 2915e3d2833aSAlfred Perlstein static void 2916e3d2833aSAlfred Perlstein dc_tx_underrun(sc) 2917d467c136SBill Paul struct dc_softc *sc; 2918d467c136SBill Paul { 2919d467c136SBill Paul u_int32_t isr; 2920d467c136SBill Paul int i; 2921d467c136SBill Paul 2922d467c136SBill Paul if (DC_IS_DAVICOM(sc)) 2923d467c136SBill Paul dc_init(sc); 2924d467c136SBill Paul 2925d467c136SBill Paul if (DC_IS_INTEL(sc)) { 2926d467c136SBill Paul /* 2927d467c136SBill Paul * The real 21143 requires that the transmitter be idle 2928d467c136SBill Paul * in order to change the transmit threshold or store 2929d467c136SBill Paul * and forward state. 2930d467c136SBill Paul */ 2931d467c136SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_TX_ON); 2932d467c136SBill Paul 2933d467c136SBill Paul for (i = 0; i < DC_TIMEOUT; i++) { 2934d467c136SBill Paul isr = CSR_READ_4(sc, DC_ISR); 2935d467c136SBill Paul if (isr & DC_ISR_TX_IDLE) 2936d467c136SBill Paul break; 2937d467c136SBill Paul DELAY(10); 2938d467c136SBill Paul } 2939d467c136SBill Paul if (i == DC_TIMEOUT) { 2940d467c136SBill Paul printf("dc%d: failed to force tx to idle state\n", 2941d467c136SBill Paul sc->dc_unit); 2942d467c136SBill Paul dc_init(sc); 2943d467c136SBill Paul } 2944d467c136SBill Paul } 2945d467c136SBill Paul 2946d467c136SBill Paul printf("dc%d: TX underrun -- ", sc->dc_unit); 2947d467c136SBill Paul sc->dc_txthresh += DC_TXTHRESH_INC; 2948d467c136SBill Paul if (sc->dc_txthresh > DC_TXTHRESH_MAX) { 2949d467c136SBill Paul printf("using store and forward mode\n"); 2950d467c136SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_STORENFWD); 2951d467c136SBill Paul } else { 2952d467c136SBill Paul printf("increasing TX threshold\n"); 2953d467c136SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_TX_THRESH); 2954d467c136SBill Paul DC_SETBIT(sc, DC_NETCFG, sc->dc_txthresh); 2955d467c136SBill Paul } 2956d467c136SBill Paul 2957d467c136SBill Paul if (DC_IS_INTEL(sc)) 2958d467c136SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_TX_ON); 2959d467c136SBill Paul 2960d467c136SBill Paul return; 2961d467c136SBill Paul } 2962d467c136SBill Paul 2963e4fc250cSLuigi Rizzo #ifdef DEVICE_POLLING 2964e4fc250cSLuigi Rizzo static poll_handler_t dc_poll; 2965e4fc250cSLuigi Rizzo 2966e4fc250cSLuigi Rizzo static void 2967e4fc250cSLuigi Rizzo dc_poll(struct ifnet *ifp, enum poll_cmd cmd, int count) 2968e4fc250cSLuigi Rizzo { 2969e4fc250cSLuigi Rizzo struct dc_softc *sc = ifp->if_softc; 2970e4fc250cSLuigi Rizzo 2971e4fc250cSLuigi Rizzo if (cmd == POLL_DEREGISTER) { /* final call, enable interrupts */ 2972e4fc250cSLuigi Rizzo /* Re-enable interrupts. */ 2973e4fc250cSLuigi Rizzo CSR_WRITE_4(sc, DC_IMR, DC_INTRS); 2974e4fc250cSLuigi Rizzo return; 2975e4fc250cSLuigi Rizzo } 2976e4fc250cSLuigi Rizzo sc->rxcycles = count; 2977e4fc250cSLuigi Rizzo dc_rxeof(sc); 2978e4fc250cSLuigi Rizzo dc_txeof(sc); 2979e4fc250cSLuigi Rizzo if (ifp->if_snd.ifq_head != NULL && !(ifp->if_flags & IFF_OACTIVE)) 2980e4fc250cSLuigi Rizzo dc_start(ifp); 2981e4fc250cSLuigi Rizzo 2982e4fc250cSLuigi Rizzo if (cmd == POLL_AND_CHECK_STATUS) { /* also check status register */ 2983e4fc250cSLuigi Rizzo u_int32_t status; 2984e4fc250cSLuigi Rizzo 2985e4fc250cSLuigi Rizzo status = CSR_READ_4(sc, DC_ISR); 2986e4fc250cSLuigi Rizzo status &= (DC_ISR_RX_WATDOGTIMEO|DC_ISR_RX_NOBUF| 2987e4fc250cSLuigi Rizzo DC_ISR_TX_NOBUF|DC_ISR_TX_IDLE|DC_ISR_TX_UNDERRUN| 2988e4fc250cSLuigi Rizzo DC_ISR_BUS_ERR); 2989e4fc250cSLuigi Rizzo if (!status) 2990e4fc250cSLuigi Rizzo return; 2991e4fc250cSLuigi Rizzo /* ack what we have */ 2992e4fc250cSLuigi Rizzo CSR_WRITE_4(sc, DC_ISR, status); 2993e4fc250cSLuigi Rizzo 2994e4fc250cSLuigi Rizzo if (status & (DC_ISR_RX_WATDOGTIMEO|DC_ISR_RX_NOBUF)) { 2995e4fc250cSLuigi Rizzo u_int32_t r = CSR_READ_4(sc, DC_FRAMESDISCARDED); 2996e4fc250cSLuigi Rizzo ifp->if_ierrors += (r & 0xffff) + ((r >> 17) & 0x7ff); 2997e4fc250cSLuigi Rizzo 2998e4fc250cSLuigi Rizzo if (dc_rx_resync(sc)) 2999e4fc250cSLuigi Rizzo dc_rxeof(sc); 3000e4fc250cSLuigi Rizzo } 3001e4fc250cSLuigi Rizzo /* restart transmit unit if necessary */ 3002e4fc250cSLuigi Rizzo if (status & DC_ISR_TX_IDLE && sc->dc_cdata.dc_tx_cnt) 3003e4fc250cSLuigi Rizzo CSR_WRITE_4(sc, DC_TXSTART, 0xFFFFFFFF); 3004e4fc250cSLuigi Rizzo 3005e4fc250cSLuigi Rizzo if (status & DC_ISR_TX_UNDERRUN) 3006e4fc250cSLuigi Rizzo dc_tx_underrun(sc); 3007e4fc250cSLuigi Rizzo 3008e4fc250cSLuigi Rizzo if (status & DC_ISR_BUS_ERR) { 3009e4fc250cSLuigi Rizzo printf("dc_poll: dc%d bus error\n", sc->dc_unit); 3010e4fc250cSLuigi Rizzo dc_reset(sc); 3011e4fc250cSLuigi Rizzo dc_init(sc); 3012e4fc250cSLuigi Rizzo } 3013e4fc250cSLuigi Rizzo } 3014e4fc250cSLuigi Rizzo } 3015e4fc250cSLuigi Rizzo #endif /* DEVICE_POLLING */ 3016e4fc250cSLuigi Rizzo 3017e3d2833aSAlfred Perlstein static void 3018e3d2833aSAlfred Perlstein dc_intr(arg) 301996f2e892SBill Paul void *arg; 302096f2e892SBill Paul { 302196f2e892SBill Paul struct dc_softc *sc; 302296f2e892SBill Paul struct ifnet *ifp; 302396f2e892SBill Paul u_int32_t status; 302496f2e892SBill Paul 302596f2e892SBill Paul sc = arg; 3026d2a1864bSWarner Losh 3027e8388e14SMitsuru IWASAKI if (sc->suspended) { 3028e8388e14SMitsuru IWASAKI return; 3029e8388e14SMitsuru IWASAKI } 3030e8388e14SMitsuru IWASAKI 3031d2a1864bSWarner Losh if ((CSR_READ_4(sc, DC_ISR) & DC_INTRS) == 0) 3032d2a1864bSWarner Losh return; 3033d2a1864bSWarner Losh 3034d1ce9105SBill Paul DC_LOCK(sc); 303596f2e892SBill Paul ifp = &sc->arpcom.ac_if; 3036e4fc250cSLuigi Rizzo #ifdef DEVICE_POLLING 303762f76486SMaxim Sobolev if (ifp->if_flags & IFF_POLLING) 3038e4fc250cSLuigi Rizzo goto done; 3039e4fc250cSLuigi Rizzo if (ether_poll_register(dc_poll, ifp)) { /* ok, disable interrupts */ 3040e4fc250cSLuigi Rizzo CSR_WRITE_4(sc, DC_IMR, 0x00000000); 3041e4fc250cSLuigi Rizzo goto done; 3042e4fc250cSLuigi Rizzo } 3043e4fc250cSLuigi Rizzo #endif /* DEVICE_POLLING */ 304496f2e892SBill Paul 3045d88a358cSLuigi Rizzo /* Suppress unwanted interrupts */ 304696f2e892SBill Paul if (!(ifp->if_flags & IFF_UP)) { 304796f2e892SBill Paul if (CSR_READ_4(sc, DC_ISR) & DC_INTRS) 304896f2e892SBill Paul dc_stop(sc); 3049d1ce9105SBill Paul DC_UNLOCK(sc); 305096f2e892SBill Paul return; 305196f2e892SBill Paul } 305296f2e892SBill Paul 305396f2e892SBill Paul /* Disable interrupts. */ 305496f2e892SBill Paul CSR_WRITE_4(sc, DC_IMR, 0x00000000); 305596f2e892SBill Paul 3056feb78939SJonathan Chen while(((status = CSR_READ_4(sc, DC_ISR)) & DC_INTRS) 3057feb78939SJonathan Chen && status != 0xFFFFFFFF) { 305896f2e892SBill Paul 305996f2e892SBill Paul CSR_WRITE_4(sc, DC_ISR, status); 306096f2e892SBill Paul 306173bf949cSBill Paul if (status & DC_ISR_RX_OK) { 306273bf949cSBill Paul int curpkts; 306373bf949cSBill Paul curpkts = ifp->if_ipackets; 306496f2e892SBill Paul dc_rxeof(sc); 306573bf949cSBill Paul if (curpkts == ifp->if_ipackets) { 306673bf949cSBill Paul while(dc_rx_resync(sc)) 306773bf949cSBill Paul dc_rxeof(sc); 306873bf949cSBill Paul } 306973bf949cSBill Paul } 307096f2e892SBill Paul 307196f2e892SBill Paul if (status & (DC_ISR_TX_OK|DC_ISR_TX_NOBUF)) 307296f2e892SBill Paul dc_txeof(sc); 307396f2e892SBill Paul 307496f2e892SBill Paul if (status & DC_ISR_TX_IDLE) { 307596f2e892SBill Paul dc_txeof(sc); 307696f2e892SBill Paul if (sc->dc_cdata.dc_tx_cnt) { 307796f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_TX_ON); 307896f2e892SBill Paul CSR_WRITE_4(sc, DC_TXSTART, 0xFFFFFFFF); 307996f2e892SBill Paul } 308096f2e892SBill Paul } 308196f2e892SBill Paul 3082d467c136SBill Paul if (status & DC_ISR_TX_UNDERRUN) 3083d467c136SBill Paul dc_tx_underrun(sc); 308496f2e892SBill Paul 308596f2e892SBill Paul if ((status & DC_ISR_RX_WATDOGTIMEO) 308673bf949cSBill Paul || (status & DC_ISR_RX_NOBUF)) { 308773bf949cSBill Paul int curpkts; 308873bf949cSBill Paul curpkts = ifp->if_ipackets; 308996f2e892SBill Paul dc_rxeof(sc); 309073bf949cSBill Paul if (curpkts == ifp->if_ipackets) { 309173bf949cSBill Paul while(dc_rx_resync(sc)) 309273bf949cSBill Paul dc_rxeof(sc); 309373bf949cSBill Paul } 309473bf949cSBill Paul } 309596f2e892SBill Paul 309696f2e892SBill Paul if (status & DC_ISR_BUS_ERR) { 309796f2e892SBill Paul dc_reset(sc); 309896f2e892SBill Paul dc_init(sc); 309996f2e892SBill Paul } 310096f2e892SBill Paul } 310196f2e892SBill Paul 310296f2e892SBill Paul /* Re-enable interrupts. */ 310396f2e892SBill Paul CSR_WRITE_4(sc, DC_IMR, DC_INTRS); 310496f2e892SBill Paul 310596f2e892SBill Paul if (ifp->if_snd.ifq_head != NULL) 310696f2e892SBill Paul dc_start(ifp); 310796f2e892SBill Paul 3108d9700bb5SBill Paul #ifdef DEVICE_POLLING 3109e4fc250cSLuigi Rizzo done: 3110d9700bb5SBill Paul #endif /* DEVICE_POLLING */ 3111d9700bb5SBill Paul 3112d1ce9105SBill Paul DC_UNLOCK(sc); 3113d1ce9105SBill Paul 311496f2e892SBill Paul return; 311596f2e892SBill Paul } 311696f2e892SBill Paul 311796f2e892SBill Paul /* 311896f2e892SBill Paul * Encapsulate an mbuf chain in a descriptor by coupling the mbuf data 311996f2e892SBill Paul * pointers to the fragment pointers. 312096f2e892SBill Paul */ 3121e3d2833aSAlfred Perlstein static int 3122e3d2833aSAlfred Perlstein dc_encap(sc, m_head, txidx) 312396f2e892SBill Paul struct dc_softc *sc; 312496f2e892SBill Paul struct mbuf *m_head; 312596f2e892SBill Paul u_int32_t *txidx; 312696f2e892SBill Paul { 312796f2e892SBill Paul struct dc_desc *f = NULL; 312896f2e892SBill Paul struct mbuf *m; 312996f2e892SBill Paul int frag, cur, cnt = 0; 313096f2e892SBill Paul 313196f2e892SBill Paul /* 313296f2e892SBill Paul * Start packing the mbufs in this chain into 313396f2e892SBill Paul * the fragment pointers. Stop when we run out 313496f2e892SBill Paul * of fragments or hit the end of the mbuf chain. 313596f2e892SBill Paul */ 313696f2e892SBill Paul m = m_head; 313796f2e892SBill Paul cur = frag = *txidx; 313896f2e892SBill Paul 313996f2e892SBill Paul for (m = m_head; m != NULL; m = m->m_next) { 314096f2e892SBill Paul if (m->m_len != 0) { 314196f2e892SBill Paul if (sc->dc_flags & DC_TX_ADMTEK_WAR) { 314296f2e892SBill Paul if (*txidx != sc->dc_cdata.dc_tx_prod && 314396f2e892SBill Paul frag == (DC_TX_LIST_CNT - 1)) 314496f2e892SBill Paul return(ENOBUFS); 314596f2e892SBill Paul } 314696f2e892SBill Paul if ((DC_TX_LIST_CNT - 314796f2e892SBill Paul (sc->dc_cdata.dc_tx_cnt + cnt)) < 5) 314896f2e892SBill Paul return(ENOBUFS); 314996f2e892SBill Paul 315096f2e892SBill Paul f = &sc->dc_ldata->dc_tx_list[frag]; 315196f2e892SBill Paul f->dc_ctl = DC_TXCTL_TLINK | m->m_len; 315296f2e892SBill Paul if (cnt == 0) { 315396f2e892SBill Paul f->dc_status = 0; 315496f2e892SBill Paul f->dc_ctl |= DC_TXCTL_FIRSTFRAG; 315596f2e892SBill Paul } else 315696f2e892SBill Paul f->dc_status = DC_TXSTAT_OWN; 315796f2e892SBill Paul f->dc_data = vtophys(mtod(m, vm_offset_t)); 315896f2e892SBill Paul cur = frag; 315996f2e892SBill Paul DC_INC(frag, DC_TX_LIST_CNT); 316096f2e892SBill Paul cnt++; 316196f2e892SBill Paul } 316296f2e892SBill Paul } 316396f2e892SBill Paul 316496f2e892SBill Paul if (m != NULL) 316596f2e892SBill Paul return(ENOBUFS); 316696f2e892SBill Paul 316796f2e892SBill Paul sc->dc_cdata.dc_tx_cnt += cnt; 316896f2e892SBill Paul sc->dc_cdata.dc_tx_chain[cur] = m_head; 316996f2e892SBill Paul sc->dc_ldata->dc_tx_list[cur].dc_ctl |= DC_TXCTL_LASTFRAG; 317096f2e892SBill Paul if (sc->dc_flags & DC_TX_INTR_FIRSTFRAG) 317196f2e892SBill Paul sc->dc_ldata->dc_tx_list[*txidx].dc_ctl |= DC_TXCTL_FINT; 317291cc2adbSBill Paul if (sc->dc_flags & DC_TX_INTR_ALWAYS) 317391cc2adbSBill Paul sc->dc_ldata->dc_tx_list[cur].dc_ctl |= DC_TXCTL_FINT; 317496f2e892SBill Paul if (sc->dc_flags & DC_TX_USE_TX_INTR && sc->dc_cdata.dc_tx_cnt > 64) 317596f2e892SBill Paul sc->dc_ldata->dc_tx_list[cur].dc_ctl |= DC_TXCTL_FINT; 317696f2e892SBill Paul sc->dc_ldata->dc_tx_list[*txidx].dc_status = DC_TXSTAT_OWN; 317796f2e892SBill Paul *txidx = frag; 317896f2e892SBill Paul 317996f2e892SBill Paul return(0); 318096f2e892SBill Paul } 318196f2e892SBill Paul 318296f2e892SBill Paul /* 3183fda39fd0SBill Paul * Coalesce an mbuf chain into a single mbuf cluster buffer. 3184fda39fd0SBill Paul * Needed for some really badly behaved chips that just can't 3185fda39fd0SBill Paul * do scatter/gather correctly. 3186fda39fd0SBill Paul */ 3187e3d2833aSAlfred Perlstein static int 3188e3d2833aSAlfred Perlstein dc_coal(sc, m_head) 3189fda39fd0SBill Paul struct dc_softc *sc; 3190fda39fd0SBill Paul struct mbuf **m_head; 3191fda39fd0SBill Paul { 3192fda39fd0SBill Paul struct mbuf *m_new, *m; 3193fda39fd0SBill Paul 3194fda39fd0SBill Paul m = *m_head; 319544956c98SAlfred Perlstein MGETHDR(m_new, M_NOWAIT, MT_DATA); 319640129585SLuigi Rizzo if (m_new == NULL) 3197fda39fd0SBill Paul return(ENOBUFS); 3198fda39fd0SBill Paul if (m->m_pkthdr.len > MHLEN) { 319944956c98SAlfred Perlstein MCLGET(m_new, M_NOWAIT); 3200fda39fd0SBill Paul if (!(m_new->m_flags & M_EXT)) { 3201fda39fd0SBill Paul m_freem(m_new); 3202fda39fd0SBill Paul return(ENOBUFS); 3203fda39fd0SBill Paul } 3204fda39fd0SBill Paul } 3205fda39fd0SBill Paul m_copydata(m, 0, m->m_pkthdr.len, mtod(m_new, caddr_t)); 3206fda39fd0SBill Paul m_new->m_pkthdr.len = m_new->m_len = m->m_pkthdr.len; 3207fda39fd0SBill Paul m_freem(m); 3208fda39fd0SBill Paul *m_head = m_new; 3209fda39fd0SBill Paul 3210fda39fd0SBill Paul return(0); 3211fda39fd0SBill Paul } 3212fda39fd0SBill Paul 3213fda39fd0SBill Paul /* 321496f2e892SBill Paul * Main transmit routine. To avoid having to do mbuf copies, we put pointers 321596f2e892SBill Paul * to the mbuf data regions directly in the transmit lists. We also save a 321696f2e892SBill Paul * copy of the pointers since the transmit list fragment pointers are 321796f2e892SBill Paul * physical addresses. 321896f2e892SBill Paul */ 321996f2e892SBill Paul 3220e3d2833aSAlfred Perlstein static void 3221e3d2833aSAlfred Perlstein dc_start(ifp) 322296f2e892SBill Paul struct ifnet *ifp; 322396f2e892SBill Paul { 322496f2e892SBill Paul struct dc_softc *sc; 322596f2e892SBill Paul struct mbuf *m_head = NULL; 322696f2e892SBill Paul int idx; 322796f2e892SBill Paul 322896f2e892SBill Paul sc = ifp->if_softc; 322996f2e892SBill Paul 3230d1ce9105SBill Paul DC_LOCK(sc); 323196f2e892SBill Paul 3232e7be9f9aSBill Paul if (!sc->dc_link && ifp->if_snd.ifq_len < 10) { 3233d1ce9105SBill Paul DC_UNLOCK(sc); 323496f2e892SBill Paul return; 3235d1ce9105SBill Paul } 3236d1ce9105SBill Paul 3237d1ce9105SBill Paul if (ifp->if_flags & IFF_OACTIVE) { 3238d1ce9105SBill Paul DC_UNLOCK(sc); 3239d1ce9105SBill Paul return; 3240d1ce9105SBill Paul } 324196f2e892SBill Paul 324296f2e892SBill Paul idx = sc->dc_cdata.dc_tx_prod; 324396f2e892SBill Paul 324496f2e892SBill Paul while(sc->dc_cdata.dc_tx_chain[idx] == NULL) { 324596f2e892SBill Paul IF_DEQUEUE(&ifp->if_snd, m_head); 324696f2e892SBill Paul if (m_head == NULL) 324796f2e892SBill Paul break; 324896f2e892SBill Paul 32492dfc960aSLuigi Rizzo if (sc->dc_flags & DC_TX_COALESCE && 32502dfc960aSLuigi Rizzo (m_head->m_next != NULL || 32512dfc960aSLuigi Rizzo sc->dc_flags & DC_TX_ALIGN)) { 3252fda39fd0SBill Paul if (dc_coal(sc, &m_head)) { 3253fda39fd0SBill Paul IF_PREPEND(&ifp->if_snd, m_head); 3254fda39fd0SBill Paul ifp->if_flags |= IFF_OACTIVE; 3255fda39fd0SBill Paul break; 3256fda39fd0SBill Paul } 3257fda39fd0SBill Paul } 3258fda39fd0SBill Paul 325996f2e892SBill Paul if (dc_encap(sc, m_head, &idx)) { 326096f2e892SBill Paul IF_PREPEND(&ifp->if_snd, m_head); 326196f2e892SBill Paul ifp->if_flags |= IFF_OACTIVE; 326296f2e892SBill Paul break; 326396f2e892SBill Paul } 326496f2e892SBill Paul 326596f2e892SBill Paul /* 326696f2e892SBill Paul * If there's a BPF listener, bounce a copy of this frame 326796f2e892SBill Paul * to him. 326896f2e892SBill Paul */ 32699ef8b520SSam Leffler BPF_MTAP(ifp, m_head); 32705c1cfac4SBill Paul 32715c1cfac4SBill Paul if (sc->dc_flags & DC_TX_ONE) { 32725c1cfac4SBill Paul ifp->if_flags |= IFF_OACTIVE; 32735c1cfac4SBill Paul break; 32745c1cfac4SBill Paul } 327596f2e892SBill Paul } 327696f2e892SBill Paul 327796f2e892SBill Paul /* Transmit */ 327896f2e892SBill Paul sc->dc_cdata.dc_tx_prod = idx; 327996f2e892SBill Paul if (!(sc->dc_flags & DC_TX_POLL)) 328096f2e892SBill Paul CSR_WRITE_4(sc, DC_TXSTART, 0xFFFFFFFF); 328196f2e892SBill Paul 328296f2e892SBill Paul /* 328396f2e892SBill Paul * Set a timeout in case the chip goes out to lunch. 328496f2e892SBill Paul */ 328596f2e892SBill Paul ifp->if_timer = 5; 328696f2e892SBill Paul 3287d1ce9105SBill Paul DC_UNLOCK(sc); 3288d1ce9105SBill Paul 328996f2e892SBill Paul return; 329096f2e892SBill Paul } 329196f2e892SBill Paul 3292e3d2833aSAlfred Perlstein static void 3293e3d2833aSAlfred Perlstein dc_init(xsc) 329496f2e892SBill Paul void *xsc; 329596f2e892SBill Paul { 329696f2e892SBill Paul struct dc_softc *sc = xsc; 329796f2e892SBill Paul struct ifnet *ifp = &sc->arpcom.ac_if; 329896f2e892SBill Paul struct mii_data *mii; 329996f2e892SBill Paul 3300d1ce9105SBill Paul DC_LOCK(sc); 330196f2e892SBill Paul 330296f2e892SBill Paul mii = device_get_softc(sc->dc_miibus); 330396f2e892SBill Paul 330496f2e892SBill Paul /* 330596f2e892SBill Paul * Cancel pending I/O and free all RX/TX buffers. 330696f2e892SBill Paul */ 330796f2e892SBill Paul dc_stop(sc); 330896f2e892SBill Paul dc_reset(sc); 330996f2e892SBill Paul 331096f2e892SBill Paul /* 331196f2e892SBill Paul * Set cache alignment and burst length. 331296f2e892SBill Paul */ 331388d739dcSBill Paul if (DC_IS_ASIX(sc) || DC_IS_DAVICOM(sc)) 331496f2e892SBill Paul CSR_WRITE_4(sc, DC_BUSCTL, 0); 331596f2e892SBill Paul else 331696f2e892SBill Paul CSR_WRITE_4(sc, DC_BUSCTL, DC_BUSCTL_MRME|DC_BUSCTL_MRLE); 3317935fe010SLuigi Rizzo /* 3318935fe010SLuigi Rizzo * Evenly share the bus between receive and transmit process. 3319935fe010SLuigi Rizzo */ 3320935fe010SLuigi Rizzo if (DC_IS_INTEL(sc)) 3321935fe010SLuigi Rizzo DC_SETBIT(sc, DC_BUSCTL, DC_BUSCTL_ARBITRATION); 332296f2e892SBill Paul if (DC_IS_DAVICOM(sc) || DC_IS_INTEL(sc)) { 332396f2e892SBill Paul DC_SETBIT(sc, DC_BUSCTL, DC_BURSTLEN_USECA); 332496f2e892SBill Paul } else { 332596f2e892SBill Paul DC_SETBIT(sc, DC_BUSCTL, DC_BURSTLEN_16LONG); 332696f2e892SBill Paul } 332796f2e892SBill Paul if (sc->dc_flags & DC_TX_POLL) 332896f2e892SBill Paul DC_SETBIT(sc, DC_BUSCTL, DC_TXPOLL_1); 332996f2e892SBill Paul switch(sc->dc_cachesize) { 333096f2e892SBill Paul case 32: 333196f2e892SBill Paul DC_SETBIT(sc, DC_BUSCTL, DC_CACHEALIGN_32LONG); 333296f2e892SBill Paul break; 333396f2e892SBill Paul case 16: 333496f2e892SBill Paul DC_SETBIT(sc, DC_BUSCTL, DC_CACHEALIGN_16LONG); 333596f2e892SBill Paul break; 333696f2e892SBill Paul case 8: 333796f2e892SBill Paul DC_SETBIT(sc, DC_BUSCTL, DC_CACHEALIGN_8LONG); 333896f2e892SBill Paul break; 333996f2e892SBill Paul case 0: 334096f2e892SBill Paul default: 334196f2e892SBill Paul DC_SETBIT(sc, DC_BUSCTL, DC_CACHEALIGN_NONE); 334296f2e892SBill Paul break; 334396f2e892SBill Paul } 334496f2e892SBill Paul 334596f2e892SBill Paul if (sc->dc_flags & DC_TX_STORENFWD) 334696f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_STORENFWD); 334796f2e892SBill Paul else { 3348d467c136SBill Paul if (sc->dc_txthresh > DC_TXTHRESH_MAX) { 334996f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_STORENFWD); 335096f2e892SBill Paul } else { 335196f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_STORENFWD); 335296f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, sc->dc_txthresh); 335396f2e892SBill Paul } 335496f2e892SBill Paul } 335596f2e892SBill Paul 335696f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_NO_RXCRC); 335796f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_TX_BACKOFF); 335896f2e892SBill Paul 335996f2e892SBill Paul if (DC_IS_MACRONIX(sc) || DC_IS_PNICII(sc)) { 336096f2e892SBill Paul /* 336196f2e892SBill Paul * The app notes for the 98713 and 98715A say that 336296f2e892SBill Paul * in order to have the chips operate properly, a magic 336396f2e892SBill Paul * number must be written to CSR16. Macronix does not 336496f2e892SBill Paul * document the meaning of these bits so there's no way 336596f2e892SBill Paul * to know exactly what they do. The 98713 has a magic 336696f2e892SBill Paul * number all its own; the rest all use a different one. 336796f2e892SBill Paul */ 336896f2e892SBill Paul DC_CLRBIT(sc, DC_MX_MAGICPACKET, 0xFFFF0000); 336996f2e892SBill Paul if (sc->dc_type == DC_TYPE_98713) 337096f2e892SBill Paul DC_SETBIT(sc, DC_MX_MAGICPACKET, DC_MX_MAGIC_98713); 337196f2e892SBill Paul else 337296f2e892SBill Paul DC_SETBIT(sc, DC_MX_MAGICPACKET, DC_MX_MAGIC_98715); 337396f2e892SBill Paul } 337496f2e892SBill Paul 3375feb78939SJonathan Chen if (DC_IS_XIRCOM(sc)) { 3376feb78939SJonathan Chen /* 3377feb78939SJonathan Chen * setup General Purpose Port mode and data so the tulip 3378feb78939SJonathan Chen * can talk to the MII. 3379feb78939SJonathan Chen */ 3380feb78939SJonathan Chen CSR_WRITE_4(sc, DC_SIAGP, DC_SIAGP_WRITE_EN | DC_SIAGP_INT1_EN | 3381feb78939SJonathan Chen DC_SIAGP_MD_GP2_OUTPUT | DC_SIAGP_MD_GP0_OUTPUT); 3382feb78939SJonathan Chen DELAY(10); 3383feb78939SJonathan Chen CSR_WRITE_4(sc, DC_SIAGP, DC_SIAGP_INT1_EN | 3384feb78939SJonathan Chen DC_SIAGP_MD_GP2_OUTPUT | DC_SIAGP_MD_GP0_OUTPUT); 3385feb78939SJonathan Chen DELAY(10); 3386feb78939SJonathan Chen } 3387feb78939SJonathan Chen 338896f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, DC_NETCFG_TX_THRESH); 3389d467c136SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_TXTHRESH_MIN); 339096f2e892SBill Paul 339196f2e892SBill Paul /* Init circular RX list. */ 339296f2e892SBill Paul if (dc_list_rx_init(sc) == ENOBUFS) { 339396f2e892SBill Paul printf("dc%d: initialization failed: no " 339496f2e892SBill Paul "memory for rx buffers\n", sc->dc_unit); 339596f2e892SBill Paul dc_stop(sc); 3396d1ce9105SBill Paul DC_UNLOCK(sc); 339796f2e892SBill Paul return; 339896f2e892SBill Paul } 339996f2e892SBill Paul 340096f2e892SBill Paul /* 340196f2e892SBill Paul * Init tx descriptors. 340296f2e892SBill Paul */ 340396f2e892SBill Paul dc_list_tx_init(sc); 340496f2e892SBill Paul 340596f2e892SBill Paul /* 340696f2e892SBill Paul * Load the address of the RX list. 340796f2e892SBill Paul */ 340896f2e892SBill Paul CSR_WRITE_4(sc, DC_RXADDR, vtophys(&sc->dc_ldata->dc_rx_list[0])); 340996f2e892SBill Paul CSR_WRITE_4(sc, DC_TXADDR, vtophys(&sc->dc_ldata->dc_tx_list[0])); 341096f2e892SBill Paul 341196f2e892SBill Paul /* 341296f2e892SBill Paul * Enable interrupts. 341396f2e892SBill Paul */ 3414e4fc250cSLuigi Rizzo #ifdef DEVICE_POLLING 3415e4fc250cSLuigi Rizzo /* 3416e4fc250cSLuigi Rizzo * ... but only if we are not polling, and make sure they are off in 3417e4fc250cSLuigi Rizzo * the case of polling. Some cards (e.g. fxp) turn interrupts on 3418e4fc250cSLuigi Rizzo * after a reset. 3419e4fc250cSLuigi Rizzo */ 342062f76486SMaxim Sobolev if (ifp->if_flags & IFF_POLLING) 3421e4fc250cSLuigi Rizzo CSR_WRITE_4(sc, DC_IMR, 0x00000000); 3422e4fc250cSLuigi Rizzo else 3423e4fc250cSLuigi Rizzo #endif 342496f2e892SBill Paul CSR_WRITE_4(sc, DC_IMR, DC_INTRS); 342596f2e892SBill Paul CSR_WRITE_4(sc, DC_ISR, 0xFFFFFFFF); 342696f2e892SBill Paul 342796f2e892SBill Paul /* Enable transmitter. */ 342896f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_TX_ON); 342996f2e892SBill Paul 343096f2e892SBill Paul /* 3431918434c8SBill Paul * If this is an Intel 21143 and we're not using the 3432918434c8SBill Paul * MII port, program the LED control pins so we get 3433918434c8SBill Paul * link and activity indications. 3434918434c8SBill Paul */ 343578999dd1SBill Paul if (sc->dc_flags & DC_TULIP_LEDS) { 3436918434c8SBill Paul CSR_WRITE_4(sc, DC_WATCHDOG, 3437918434c8SBill Paul DC_WDOG_CTLWREN|DC_WDOG_LINK|DC_WDOG_ACTIVITY); 343878999dd1SBill Paul CSR_WRITE_4(sc, DC_WATCHDOG, 0); 3439918434c8SBill Paul } 3440918434c8SBill Paul 3441918434c8SBill Paul /* 344296f2e892SBill Paul * Load the RX/multicast filter. We do this sort of late 344396f2e892SBill Paul * because the filter programming scheme on the 21143 and 344496f2e892SBill Paul * some clones requires DMAing a setup frame via the TX 344596f2e892SBill Paul * engine, and we need the transmitter enabled for that. 344696f2e892SBill Paul */ 344796f2e892SBill Paul dc_setfilt(sc); 344896f2e892SBill Paul 344996f2e892SBill Paul /* Enable receiver. */ 345096f2e892SBill Paul DC_SETBIT(sc, DC_NETCFG, DC_NETCFG_RX_ON); 345196f2e892SBill Paul CSR_WRITE_4(sc, DC_RXSTART, 0xFFFFFFFF); 345296f2e892SBill Paul 345396f2e892SBill Paul mii_mediachg(mii); 345496f2e892SBill Paul dc_setcfg(sc, sc->dc_if_media); 345596f2e892SBill Paul 345696f2e892SBill Paul ifp->if_flags |= IFF_RUNNING; 345796f2e892SBill Paul ifp->if_flags &= ~IFF_OACTIVE; 345896f2e892SBill Paul 3459857fd445SBill Paul /* Don't start the ticker if this is a homePNA link. */ 346045521525SPoul-Henning Kamp if (IFM_SUBTYPE(mii->mii_media.ifm_media) == IFM_HPNA_1) 3461857fd445SBill Paul sc->dc_link = 1; 3462857fd445SBill Paul else { 3463318b02fdSBill Paul if (sc->dc_flags & DC_21143_NWAY) 3464b50c6312SJonathan Lemon callout_reset(&sc->dc_stat_ch, hz/10, dc_tick, sc); 3465318b02fdSBill Paul else 3466b50c6312SJonathan Lemon callout_reset(&sc->dc_stat_ch, hz, dc_tick, sc); 3467857fd445SBill Paul } 346896f2e892SBill Paul 34695c1cfac4SBill Paul #ifdef SRM_MEDIA 3470510a809eSMike Smith if(sc->dc_srm_media) { 3471510a809eSMike Smith struct ifreq ifr; 3472510a809eSMike Smith 3473510a809eSMike Smith ifr.ifr_media = sc->dc_srm_media; 3474510a809eSMike Smith ifmedia_ioctl(ifp, &ifr, &mii->mii_media, SIOCSIFMEDIA); 3475510a809eSMike Smith sc->dc_srm_media = 0; 3476510a809eSMike Smith } 3477510a809eSMike Smith #endif 3478d1ce9105SBill Paul DC_UNLOCK(sc); 347996f2e892SBill Paul return; 348096f2e892SBill Paul } 348196f2e892SBill Paul 348296f2e892SBill Paul /* 348396f2e892SBill Paul * Set media options. 348496f2e892SBill Paul */ 3485e3d2833aSAlfred Perlstein static int 3486e3d2833aSAlfred Perlstein dc_ifmedia_upd(ifp) 348796f2e892SBill Paul struct ifnet *ifp; 348896f2e892SBill Paul { 348996f2e892SBill Paul struct dc_softc *sc; 349096f2e892SBill Paul struct mii_data *mii; 3491f43d9309SBill Paul struct ifmedia *ifm; 349296f2e892SBill Paul 349396f2e892SBill Paul sc = ifp->if_softc; 349496f2e892SBill Paul mii = device_get_softc(sc->dc_miibus); 349596f2e892SBill Paul mii_mediachg(mii); 3496f43d9309SBill Paul ifm = &mii->mii_media; 3497f43d9309SBill Paul 3498f43d9309SBill Paul if (DC_IS_DAVICOM(sc) && 349945521525SPoul-Henning Kamp IFM_SUBTYPE(ifm->ifm_media) == IFM_HPNA_1) 3500f43d9309SBill Paul dc_setcfg(sc, ifm->ifm_media); 3501f43d9309SBill Paul else 350296f2e892SBill Paul sc->dc_link = 0; 350396f2e892SBill Paul 350496f2e892SBill Paul return(0); 350596f2e892SBill Paul } 350696f2e892SBill Paul 350796f2e892SBill Paul /* 350896f2e892SBill Paul * Report current media status. 350996f2e892SBill Paul */ 3510e3d2833aSAlfred Perlstein static void 3511e3d2833aSAlfred Perlstein dc_ifmedia_sts(ifp, ifmr) 351296f2e892SBill Paul struct ifnet *ifp; 351396f2e892SBill Paul struct ifmediareq *ifmr; 351496f2e892SBill Paul { 351596f2e892SBill Paul struct dc_softc *sc; 351696f2e892SBill Paul struct mii_data *mii; 3517f43d9309SBill Paul struct ifmedia *ifm; 351896f2e892SBill Paul 351996f2e892SBill Paul sc = ifp->if_softc; 352096f2e892SBill Paul mii = device_get_softc(sc->dc_miibus); 352196f2e892SBill Paul mii_pollstat(mii); 3522f43d9309SBill Paul ifm = &mii->mii_media; 3523f43d9309SBill Paul if (DC_IS_DAVICOM(sc)) { 352445521525SPoul-Henning Kamp if (IFM_SUBTYPE(ifm->ifm_media) == IFM_HPNA_1) { 3525f43d9309SBill Paul ifmr->ifm_active = ifm->ifm_media; 3526f43d9309SBill Paul ifmr->ifm_status = 0; 3527f43d9309SBill Paul return; 3528f43d9309SBill Paul } 3529f43d9309SBill Paul } 353096f2e892SBill Paul ifmr->ifm_active = mii->mii_media_active; 353196f2e892SBill Paul ifmr->ifm_status = mii->mii_media_status; 353296f2e892SBill Paul 353396f2e892SBill Paul return; 353496f2e892SBill Paul } 353596f2e892SBill Paul 3536e3d2833aSAlfred Perlstein static int 3537e3d2833aSAlfred Perlstein dc_ioctl(ifp, command, data) 353896f2e892SBill Paul struct ifnet *ifp; 353996f2e892SBill Paul u_long command; 354096f2e892SBill Paul caddr_t data; 354196f2e892SBill Paul { 354296f2e892SBill Paul struct dc_softc *sc = ifp->if_softc; 354396f2e892SBill Paul struct ifreq *ifr = (struct ifreq *) data; 354496f2e892SBill Paul struct mii_data *mii; 3545d1ce9105SBill Paul int error = 0; 354696f2e892SBill Paul 3547d1ce9105SBill Paul DC_LOCK(sc); 354896f2e892SBill Paul 354996f2e892SBill Paul switch(command) { 355096f2e892SBill Paul case SIOCSIFFLAGS: 355196f2e892SBill Paul if (ifp->if_flags & IFF_UP) { 35525d6dfbbbSLuigi Rizzo int need_setfilt = (ifp->if_flags ^ sc->dc_if_flags) & 35535d6dfbbbSLuigi Rizzo (IFF_PROMISC | IFF_ALLMULTI); 35545d6dfbbbSLuigi Rizzo 35555d6dfbbbSLuigi Rizzo if (ifp->if_flags & IFF_RUNNING) { 35565d6dfbbbSLuigi Rizzo if (need_setfilt) 355796f2e892SBill Paul dc_setfilt(sc); 35585d6dfbbbSLuigi Rizzo } else { 355996f2e892SBill Paul sc->dc_txthresh = 0; 356096f2e892SBill Paul dc_init(sc); 356196f2e892SBill Paul } 356296f2e892SBill Paul } else { 356396f2e892SBill Paul if (ifp->if_flags & IFF_RUNNING) 356496f2e892SBill Paul dc_stop(sc); 356596f2e892SBill Paul } 356696f2e892SBill Paul sc->dc_if_flags = ifp->if_flags; 356796f2e892SBill Paul error = 0; 356896f2e892SBill Paul break; 356996f2e892SBill Paul case SIOCADDMULTI: 357096f2e892SBill Paul case SIOCDELMULTI: 357196f2e892SBill Paul dc_setfilt(sc); 357296f2e892SBill Paul error = 0; 357396f2e892SBill Paul break; 357496f2e892SBill Paul case SIOCGIFMEDIA: 357596f2e892SBill Paul case SIOCSIFMEDIA: 357696f2e892SBill Paul mii = device_get_softc(sc->dc_miibus); 357796f2e892SBill Paul error = ifmedia_ioctl(ifp, ifr, &mii->mii_media, command); 35785c1cfac4SBill Paul #ifdef SRM_MEDIA 3579510a809eSMike Smith if (sc->dc_srm_media) 3580510a809eSMike Smith sc->dc_srm_media = 0; 3581510a809eSMike Smith #endif 358296f2e892SBill Paul break; 358396f2e892SBill Paul default: 35849ef8b520SSam Leffler error = ether_ioctl(ifp, command, data); 358596f2e892SBill Paul break; 358696f2e892SBill Paul } 358796f2e892SBill Paul 3588d1ce9105SBill Paul DC_UNLOCK(sc); 358996f2e892SBill Paul 359096f2e892SBill Paul return(error); 359196f2e892SBill Paul } 359296f2e892SBill Paul 3593e3d2833aSAlfred Perlstein static void 3594e3d2833aSAlfred Perlstein dc_watchdog(ifp) 359596f2e892SBill Paul struct ifnet *ifp; 359696f2e892SBill Paul { 359796f2e892SBill Paul struct dc_softc *sc; 359896f2e892SBill Paul 359996f2e892SBill Paul sc = ifp->if_softc; 360096f2e892SBill Paul 3601d1ce9105SBill Paul DC_LOCK(sc); 3602d1ce9105SBill Paul 360396f2e892SBill Paul ifp->if_oerrors++; 360496f2e892SBill Paul printf("dc%d: watchdog timeout\n", sc->dc_unit); 360596f2e892SBill Paul 360696f2e892SBill Paul dc_stop(sc); 360796f2e892SBill Paul dc_reset(sc); 360896f2e892SBill Paul dc_init(sc); 360996f2e892SBill Paul 361096f2e892SBill Paul if (ifp->if_snd.ifq_head != NULL) 361196f2e892SBill Paul dc_start(ifp); 361296f2e892SBill Paul 3613d1ce9105SBill Paul DC_UNLOCK(sc); 3614d1ce9105SBill Paul 361596f2e892SBill Paul return; 361696f2e892SBill Paul } 361796f2e892SBill Paul 361896f2e892SBill Paul /* 361996f2e892SBill Paul * Stop the adapter and free any mbufs allocated to the 362096f2e892SBill Paul * RX and TX lists. 362196f2e892SBill Paul */ 3622e3d2833aSAlfred Perlstein static void 3623e3d2833aSAlfred Perlstein dc_stop(sc) 362496f2e892SBill Paul struct dc_softc *sc; 362596f2e892SBill Paul { 362696f2e892SBill Paul register int i; 362796f2e892SBill Paul struct ifnet *ifp; 362896f2e892SBill Paul 3629d1ce9105SBill Paul DC_LOCK(sc); 3630d1ce9105SBill Paul 363196f2e892SBill Paul ifp = &sc->arpcom.ac_if; 363296f2e892SBill Paul ifp->if_timer = 0; 363396f2e892SBill Paul 3634b50c6312SJonathan Lemon callout_stop(&sc->dc_stat_ch); 363596f2e892SBill Paul 36363b3ec200SPeter Wemm ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE); 3637e4fc250cSLuigi Rizzo #ifdef DEVICE_POLLING 3638e4fc250cSLuigi Rizzo ether_poll_deregister(ifp); 3639e4fc250cSLuigi Rizzo #endif 36403b3ec200SPeter Wemm 364196f2e892SBill Paul DC_CLRBIT(sc, DC_NETCFG, (DC_NETCFG_RX_ON|DC_NETCFG_TX_ON)); 364296f2e892SBill Paul CSR_WRITE_4(sc, DC_IMR, 0x00000000); 364396f2e892SBill Paul CSR_WRITE_4(sc, DC_TXADDR, 0x00000000); 364496f2e892SBill Paul CSR_WRITE_4(sc, DC_RXADDR, 0x00000000); 364596f2e892SBill Paul sc->dc_link = 0; 364696f2e892SBill Paul 364796f2e892SBill Paul /* 364896f2e892SBill Paul * Free data in the RX lists. 364996f2e892SBill Paul */ 365096f2e892SBill Paul for (i = 0; i < DC_RX_LIST_CNT; i++) { 365196f2e892SBill Paul if (sc->dc_cdata.dc_rx_chain[i] != NULL) { 365296f2e892SBill Paul m_freem(sc->dc_cdata.dc_rx_chain[i]); 365396f2e892SBill Paul sc->dc_cdata.dc_rx_chain[i] = NULL; 365496f2e892SBill Paul } 365596f2e892SBill Paul } 365696f2e892SBill Paul bzero((char *)&sc->dc_ldata->dc_rx_list, 365796f2e892SBill Paul sizeof(sc->dc_ldata->dc_rx_list)); 365896f2e892SBill Paul 365996f2e892SBill Paul /* 366096f2e892SBill Paul * Free the TX list buffers. 366196f2e892SBill Paul */ 366296f2e892SBill Paul for (i = 0; i < DC_TX_LIST_CNT; i++) { 366396f2e892SBill Paul if (sc->dc_cdata.dc_tx_chain[i] != NULL) { 366496f2e892SBill Paul if (sc->dc_ldata->dc_tx_list[i].dc_ctl & 366596f2e892SBill Paul DC_TXCTL_SETUP) { 366696f2e892SBill Paul sc->dc_cdata.dc_tx_chain[i] = NULL; 366796f2e892SBill Paul continue; 366896f2e892SBill Paul } 366996f2e892SBill Paul m_freem(sc->dc_cdata.dc_tx_chain[i]); 367096f2e892SBill Paul sc->dc_cdata.dc_tx_chain[i] = NULL; 367196f2e892SBill Paul } 367296f2e892SBill Paul } 367396f2e892SBill Paul 367496f2e892SBill Paul bzero((char *)&sc->dc_ldata->dc_tx_list, 367596f2e892SBill Paul sizeof(sc->dc_ldata->dc_tx_list)); 367696f2e892SBill Paul 3677d1ce9105SBill Paul DC_UNLOCK(sc); 3678d1ce9105SBill Paul 367996f2e892SBill Paul return; 368096f2e892SBill Paul } 368196f2e892SBill Paul 368296f2e892SBill Paul /* 3683e8388e14SMitsuru IWASAKI * Device suspend routine. Stop the interface and save some PCI 3684e8388e14SMitsuru IWASAKI * settings in case the BIOS doesn't restore them properly on 3685e8388e14SMitsuru IWASAKI * resume. 3686e8388e14SMitsuru IWASAKI */ 3687e3d2833aSAlfred Perlstein static int 3688e3d2833aSAlfred Perlstein dc_suspend(dev) 3689e8388e14SMitsuru IWASAKI device_t dev; 3690e8388e14SMitsuru IWASAKI { 3691e8388e14SMitsuru IWASAKI register int i; 3692e8388e14SMitsuru IWASAKI int s; 3693e8388e14SMitsuru IWASAKI struct dc_softc *sc; 3694e8388e14SMitsuru IWASAKI 3695e8388e14SMitsuru IWASAKI s = splimp(); 3696e8388e14SMitsuru IWASAKI 3697e8388e14SMitsuru IWASAKI sc = device_get_softc(dev); 3698e8388e14SMitsuru IWASAKI 3699e8388e14SMitsuru IWASAKI dc_stop(sc); 3700e8388e14SMitsuru IWASAKI 3701e8388e14SMitsuru IWASAKI for (i = 0; i < 5; i++) 3702e8388e14SMitsuru IWASAKI sc->saved_maps[i] = pci_read_config(dev, PCIR_MAPS + i * 4, 4); 3703e8388e14SMitsuru IWASAKI sc->saved_biosaddr = pci_read_config(dev, PCIR_BIOS, 4); 3704e8388e14SMitsuru IWASAKI sc->saved_intline = pci_read_config(dev, PCIR_INTLINE, 1); 3705e8388e14SMitsuru IWASAKI sc->saved_cachelnsz = pci_read_config(dev, PCIR_CACHELNSZ, 1); 3706e8388e14SMitsuru IWASAKI sc->saved_lattimer = pci_read_config(dev, PCIR_LATTIMER, 1); 3707e8388e14SMitsuru IWASAKI 3708e8388e14SMitsuru IWASAKI sc->suspended = 1; 3709e8388e14SMitsuru IWASAKI 3710e8388e14SMitsuru IWASAKI splx(s); 3711e8388e14SMitsuru IWASAKI return (0); 3712e8388e14SMitsuru IWASAKI } 3713e8388e14SMitsuru IWASAKI 3714e8388e14SMitsuru IWASAKI /* 3715e8388e14SMitsuru IWASAKI * Device resume routine. Restore some PCI settings in case the BIOS 3716e8388e14SMitsuru IWASAKI * doesn't, re-enable busmastering, and restart the interface if 3717e8388e14SMitsuru IWASAKI * appropriate. 3718e8388e14SMitsuru IWASAKI */ 3719e3d2833aSAlfred Perlstein static int 3720e3d2833aSAlfred Perlstein dc_resume(dev) 3721e8388e14SMitsuru IWASAKI device_t dev; 3722e8388e14SMitsuru IWASAKI { 3723e8388e14SMitsuru IWASAKI register int i; 3724e8388e14SMitsuru IWASAKI int s; 3725e8388e14SMitsuru IWASAKI struct dc_softc *sc; 3726e8388e14SMitsuru IWASAKI struct ifnet *ifp; 3727e8388e14SMitsuru IWASAKI 3728e8388e14SMitsuru IWASAKI s = splimp(); 3729e8388e14SMitsuru IWASAKI 3730e8388e14SMitsuru IWASAKI sc = device_get_softc(dev); 3731e8388e14SMitsuru IWASAKI ifp = &sc->arpcom.ac_if; 3732e8388e14SMitsuru IWASAKI 3733e8388e14SMitsuru IWASAKI dc_acpi(dev); 3734e8388e14SMitsuru IWASAKI 3735e8388e14SMitsuru IWASAKI /* better way to do this? */ 3736e8388e14SMitsuru IWASAKI for (i = 0; i < 5; i++) 3737e8388e14SMitsuru IWASAKI pci_write_config(dev, PCIR_MAPS + i * 4, sc->saved_maps[i], 4); 3738e8388e14SMitsuru IWASAKI pci_write_config(dev, PCIR_BIOS, sc->saved_biosaddr, 4); 3739e8388e14SMitsuru IWASAKI pci_write_config(dev, PCIR_INTLINE, sc->saved_intline, 1); 3740e8388e14SMitsuru IWASAKI pci_write_config(dev, PCIR_CACHELNSZ, sc->saved_cachelnsz, 1); 3741e8388e14SMitsuru IWASAKI pci_write_config(dev, PCIR_LATTIMER, sc->saved_lattimer, 1); 3742e8388e14SMitsuru IWASAKI 3743e8388e14SMitsuru IWASAKI /* reenable busmastering */ 3744e8388e14SMitsuru IWASAKI pci_enable_busmaster(dev); 3745e8388e14SMitsuru IWASAKI pci_enable_io(dev, DC_RES); 3746e8388e14SMitsuru IWASAKI 3747e8388e14SMitsuru IWASAKI /* reinitialize interface if necessary */ 3748e8388e14SMitsuru IWASAKI if (ifp->if_flags & IFF_UP) 3749e8388e14SMitsuru IWASAKI dc_init(sc); 3750e8388e14SMitsuru IWASAKI 3751e8388e14SMitsuru IWASAKI sc->suspended = 0; 3752e8388e14SMitsuru IWASAKI 3753e8388e14SMitsuru IWASAKI splx(s); 3754e8388e14SMitsuru IWASAKI return (0); 3755e8388e14SMitsuru IWASAKI } 3756e8388e14SMitsuru IWASAKI 3757e8388e14SMitsuru IWASAKI /* 375896f2e892SBill Paul * Stop all chip I/O so that the kernel's probe routines don't 375996f2e892SBill Paul * get confused by errant DMAs when rebooting. 376096f2e892SBill Paul */ 3761e3d2833aSAlfred Perlstein static void 3762e3d2833aSAlfred Perlstein dc_shutdown(dev) 376396f2e892SBill Paul device_t dev; 376496f2e892SBill Paul { 376596f2e892SBill Paul struct dc_softc *sc; 376696f2e892SBill Paul 376796f2e892SBill Paul sc = device_get_softc(dev); 376896f2e892SBill Paul 376996f2e892SBill Paul dc_stop(sc); 377096f2e892SBill Paul 377196f2e892SBill Paul return; 377296f2e892SBill Paul } 3773