1b2d3d26fSGleb Smirnoff /*- 2b2d3d26fSGleb Smirnoff * Copyright (c) 1997, 1998 3b2d3d26fSGleb Smirnoff * Bill Paul <wpaul@ctr.columbia.edu>. All rights reserved. 4b2d3d26fSGleb Smirnoff * 5b2d3d26fSGleb Smirnoff * Redistribution and use in source and binary forms, with or without 6b2d3d26fSGleb Smirnoff * modification, are permitted provided that the following conditions 7b2d3d26fSGleb Smirnoff * are met: 8b2d3d26fSGleb Smirnoff * 1. Redistributions of source code must retain the above copyright 9b2d3d26fSGleb Smirnoff * notice, this list of conditions and the following disclaimer. 10b2d3d26fSGleb Smirnoff * 2. Redistributions in binary form must reproduce the above copyright 11b2d3d26fSGleb Smirnoff * notice, this list of conditions and the following disclaimer in the 12b2d3d26fSGleb Smirnoff * documentation and/or other materials provided with the distribution. 13b2d3d26fSGleb Smirnoff * 3. All advertising materials mentioning features or use of this software 14b2d3d26fSGleb Smirnoff * must display the following acknowledgement: 15b2d3d26fSGleb Smirnoff * This product includes software developed by Bill Paul. 16b2d3d26fSGleb Smirnoff * 4. Neither the name of the author nor the names of any co-contributors 17b2d3d26fSGleb Smirnoff * may be used to endorse or promote products derived from this software 18b2d3d26fSGleb Smirnoff * without specific prior written permission. 19b2d3d26fSGleb Smirnoff * 20b2d3d26fSGleb Smirnoff * THIS SOFTWARE IS PROVIDED BY Bill Paul AND CONTRIBUTORS ``AS IS'' AND 21b2d3d26fSGleb Smirnoff * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 22b2d3d26fSGleb Smirnoff * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 23b2d3d26fSGleb Smirnoff * ARE DISCLAIMED. IN NO EVENT SHALL Bill Paul OR THE VOICES IN HIS HEAD 24b2d3d26fSGleb Smirnoff * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 25b2d3d26fSGleb Smirnoff * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 26b2d3d26fSGleb Smirnoff * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 27b2d3d26fSGleb Smirnoff * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 28b2d3d26fSGleb Smirnoff * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 29b2d3d26fSGleb Smirnoff * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF 30b2d3d26fSGleb Smirnoff * THE POSSIBILITY OF SUCH DAMAGE. 31b2d3d26fSGleb Smirnoff */ 32b2d3d26fSGleb Smirnoff 33b2d3d26fSGleb Smirnoff #include <sys/cdefs.h> 34b2d3d26fSGleb Smirnoff __FBSDID("$FreeBSD$"); 35b2d3d26fSGleb Smirnoff 36b2d3d26fSGleb Smirnoff /* 37b2d3d26fSGleb Smirnoff * RealTek 8129/8139 PCI NIC driver 38b2d3d26fSGleb Smirnoff * 39b2d3d26fSGleb Smirnoff * Supports several extremely cheap PCI 10/100 adapters based on 40b2d3d26fSGleb Smirnoff * the RealTek chipset. Datasheets can be obtained from 41b2d3d26fSGleb Smirnoff * www.realtek.com.tw. 42b2d3d26fSGleb Smirnoff * 43b2d3d26fSGleb Smirnoff * Written by Bill Paul <wpaul@ctr.columbia.edu> 44b2d3d26fSGleb Smirnoff * Electrical Engineering Department 45b2d3d26fSGleb Smirnoff * Columbia University, New York City 46b2d3d26fSGleb Smirnoff */ 47b2d3d26fSGleb Smirnoff /* 48b2d3d26fSGleb Smirnoff * The RealTek 8139 PCI NIC redefines the meaning of 'low end.' This is 49b2d3d26fSGleb Smirnoff * probably the worst PCI ethernet controller ever made, with the possible 50b2d3d26fSGleb Smirnoff * exception of the FEAST chip made by SMC. The 8139 supports bus-master 51b2d3d26fSGleb Smirnoff * DMA, but it has a terrible interface that nullifies any performance 52b2d3d26fSGleb Smirnoff * gains that bus-master DMA usually offers. 53b2d3d26fSGleb Smirnoff * 54b2d3d26fSGleb Smirnoff * For transmission, the chip offers a series of four TX descriptor 55b2d3d26fSGleb Smirnoff * registers. Each transmit frame must be in a contiguous buffer, aligned 56b2d3d26fSGleb Smirnoff * on a longword (32-bit) boundary. This means we almost always have to 57b2d3d26fSGleb Smirnoff * do mbuf copies in order to transmit a frame, except in the unlikely 58b2d3d26fSGleb Smirnoff * case where a) the packet fits into a single mbuf, and b) the packet 59b2d3d26fSGleb Smirnoff * is 32-bit aligned within the mbuf's data area. The presence of only 60b2d3d26fSGleb Smirnoff * four descriptor registers means that we can never have more than four 61b2d3d26fSGleb Smirnoff * packets queued for transmission at any one time. 62b2d3d26fSGleb Smirnoff * 63b2d3d26fSGleb Smirnoff * Reception is not much better. The driver has to allocate a single large 64b2d3d26fSGleb Smirnoff * buffer area (up to 64K in size) into which the chip will DMA received 65b2d3d26fSGleb Smirnoff * frames. Because we don't know where within this region received packets 66b2d3d26fSGleb Smirnoff * will begin or end, we have no choice but to copy data from the buffer 67b2d3d26fSGleb Smirnoff * area into mbufs in order to pass the packets up to the higher protocol 68b2d3d26fSGleb Smirnoff * levels. 69b2d3d26fSGleb Smirnoff * 70b2d3d26fSGleb Smirnoff * It's impossible given this rotten design to really achieve decent 71b2d3d26fSGleb Smirnoff * performance at 100Mbps, unless you happen to have a 400Mhz PII or 72b2d3d26fSGleb Smirnoff * some equally overmuscled CPU to drive it. 73b2d3d26fSGleb Smirnoff * 74b2d3d26fSGleb Smirnoff * On the bright side, the 8139 does have a built-in PHY, although 75b2d3d26fSGleb Smirnoff * rather than using an MDIO serial interface like most other NICs, the 76b2d3d26fSGleb Smirnoff * PHY registers are directly accessible through the 8139's register 77b2d3d26fSGleb Smirnoff * space. The 8139 supports autonegotiation, as well as a 64-bit multicast 78b2d3d26fSGleb Smirnoff * filter. 79b2d3d26fSGleb Smirnoff * 80b2d3d26fSGleb Smirnoff * The 8129 chip is an older version of the 8139 that uses an external PHY 81b2d3d26fSGleb Smirnoff * chip. The 8129 has a serial MDIO interface for accessing the MII where 82b2d3d26fSGleb Smirnoff * the 8139 lets you directly access the on-board PHY registers. We need 83b2d3d26fSGleb Smirnoff * to select which interface to use depending on the chip type. 84b2d3d26fSGleb Smirnoff */ 85b2d3d26fSGleb Smirnoff 86b2d3d26fSGleb Smirnoff #ifdef HAVE_KERNEL_OPTION_HEADERS 87b2d3d26fSGleb Smirnoff #include "opt_device_polling.h" 88b2d3d26fSGleb Smirnoff #endif 89b2d3d26fSGleb Smirnoff 90b2d3d26fSGleb Smirnoff #include <sys/param.h> 91b2d3d26fSGleb Smirnoff #include <sys/endian.h> 92b2d3d26fSGleb Smirnoff #include <sys/systm.h> 93b2d3d26fSGleb Smirnoff #include <sys/sockio.h> 94b2d3d26fSGleb Smirnoff #include <sys/mbuf.h> 95b2d3d26fSGleb Smirnoff #include <sys/malloc.h> 96b2d3d26fSGleb Smirnoff #include <sys/kernel.h> 97b2d3d26fSGleb Smirnoff #include <sys/module.h> 98b2d3d26fSGleb Smirnoff #include <sys/socket.h> 99b2d3d26fSGleb Smirnoff #include <sys/sysctl.h> 100b2d3d26fSGleb Smirnoff 101b2d3d26fSGleb Smirnoff #include <net/if.h> 102b2d3d26fSGleb Smirnoff #include <net/if_var.h> 103b2d3d26fSGleb Smirnoff #include <net/if_arp.h> 104b2d3d26fSGleb Smirnoff #include <net/ethernet.h> 105b2d3d26fSGleb Smirnoff #include <net/if_dl.h> 106b2d3d26fSGleb Smirnoff #include <net/if_media.h> 107b2d3d26fSGleb Smirnoff #include <net/if_types.h> 108b2d3d26fSGleb Smirnoff 109b2d3d26fSGleb Smirnoff #include <net/bpf.h> 110b2d3d26fSGleb Smirnoff 111b2d3d26fSGleb Smirnoff #include <machine/bus.h> 112b2d3d26fSGleb Smirnoff #include <machine/resource.h> 113b2d3d26fSGleb Smirnoff #include <sys/bus.h> 114b2d3d26fSGleb Smirnoff #include <sys/rman.h> 115b2d3d26fSGleb Smirnoff 116b2d3d26fSGleb Smirnoff #include <dev/mii/mii.h> 117b2d3d26fSGleb Smirnoff #include <dev/mii/mii_bitbang.h> 118b2d3d26fSGleb Smirnoff #include <dev/mii/miivar.h> 119b2d3d26fSGleb Smirnoff 120b2d3d26fSGleb Smirnoff #include <dev/pci/pcireg.h> 121b2d3d26fSGleb Smirnoff #include <dev/pci/pcivar.h> 122b2d3d26fSGleb Smirnoff 123b2d3d26fSGleb Smirnoff MODULE_DEPEND(rl, pci, 1, 1, 1); 124b2d3d26fSGleb Smirnoff MODULE_DEPEND(rl, ether, 1, 1, 1); 125b2d3d26fSGleb Smirnoff MODULE_DEPEND(rl, miibus, 1, 1, 1); 126b2d3d26fSGleb Smirnoff 127b2d3d26fSGleb Smirnoff /* "device miibus" required. See GENERIC if you get errors here. */ 128b2d3d26fSGleb Smirnoff #include "miibus_if.h" 129b2d3d26fSGleb Smirnoff 130b2d3d26fSGleb Smirnoff #include <dev/rl/if_rlreg.h> 131b2d3d26fSGleb Smirnoff 132b2d3d26fSGleb Smirnoff /* 133b2d3d26fSGleb Smirnoff * Various supported device vendors/types and their names. 134b2d3d26fSGleb Smirnoff */ 135b2d3d26fSGleb Smirnoff static const struct rl_type rl_devs[] = { 136b2d3d26fSGleb Smirnoff { RT_VENDORID, RT_DEVICEID_8129, RL_8129, 137b2d3d26fSGleb Smirnoff "RealTek 8129 10/100BaseTX" }, 138b2d3d26fSGleb Smirnoff { RT_VENDORID, RT_DEVICEID_8139, RL_8139, 139b2d3d26fSGleb Smirnoff "RealTek 8139 10/100BaseTX" }, 140b2d3d26fSGleb Smirnoff { RT_VENDORID, RT_DEVICEID_8139D, RL_8139, 141b2d3d26fSGleb Smirnoff "RealTek 8139 10/100BaseTX" }, 142b2d3d26fSGleb Smirnoff { RT_VENDORID, RT_DEVICEID_8138, RL_8139, 143b2d3d26fSGleb Smirnoff "RealTek 8139 10/100BaseTX CardBus" }, 144b2d3d26fSGleb Smirnoff { RT_VENDORID, RT_DEVICEID_8100, RL_8139, 145b2d3d26fSGleb Smirnoff "RealTek 8100 10/100BaseTX" }, 146b2d3d26fSGleb Smirnoff { ACCTON_VENDORID, ACCTON_DEVICEID_5030, RL_8139, 147b2d3d26fSGleb Smirnoff "Accton MPX 5030/5038 10/100BaseTX" }, 148b2d3d26fSGleb Smirnoff { DELTA_VENDORID, DELTA_DEVICEID_8139, RL_8139, 149b2d3d26fSGleb Smirnoff "Delta Electronics 8139 10/100BaseTX" }, 150b2d3d26fSGleb Smirnoff { ADDTRON_VENDORID, ADDTRON_DEVICEID_8139, RL_8139, 151b2d3d26fSGleb Smirnoff "Addtron Technology 8139 10/100BaseTX" }, 152b2d3d26fSGleb Smirnoff { DLINK_VENDORID, DLINK_DEVICEID_520TX_REVC1, RL_8139, 153b2d3d26fSGleb Smirnoff "D-Link DFE-520TX (rev. C1) 10/100BaseTX" }, 154b2d3d26fSGleb Smirnoff { DLINK_VENDORID, DLINK_DEVICEID_530TXPLUS, RL_8139, 155b2d3d26fSGleb Smirnoff "D-Link DFE-530TX+ 10/100BaseTX" }, 156b2d3d26fSGleb Smirnoff { DLINK_VENDORID, DLINK_DEVICEID_690TXD, RL_8139, 157b2d3d26fSGleb Smirnoff "D-Link DFE-690TXD 10/100BaseTX" }, 158b2d3d26fSGleb Smirnoff { NORTEL_VENDORID, ACCTON_DEVICEID_5030, RL_8139, 159b2d3d26fSGleb Smirnoff "Nortel Networks 10/100BaseTX" }, 160b2d3d26fSGleb Smirnoff { COREGA_VENDORID, COREGA_DEVICEID_FETHERCBTXD, RL_8139, 161b2d3d26fSGleb Smirnoff "Corega FEther CB-TXD" }, 162b2d3d26fSGleb Smirnoff { COREGA_VENDORID, COREGA_DEVICEID_FETHERIICBTXD, RL_8139, 163b2d3d26fSGleb Smirnoff "Corega FEtherII CB-TXD" }, 164b2d3d26fSGleb Smirnoff { PEPPERCON_VENDORID, PEPPERCON_DEVICEID_ROLF, RL_8139, 165b2d3d26fSGleb Smirnoff "Peppercon AG ROL-F" }, 166b2d3d26fSGleb Smirnoff { PLANEX_VENDORID, PLANEX_DEVICEID_FNW3603TX, RL_8139, 167b2d3d26fSGleb Smirnoff "Planex FNW-3603-TX" }, 168b2d3d26fSGleb Smirnoff { PLANEX_VENDORID, PLANEX_DEVICEID_FNW3800TX, RL_8139, 169b2d3d26fSGleb Smirnoff "Planex FNW-3800-TX" }, 170b2d3d26fSGleb Smirnoff { CP_VENDORID, RT_DEVICEID_8139, RL_8139, 171b2d3d26fSGleb Smirnoff "Compaq HNE-300" }, 172b2d3d26fSGleb Smirnoff { LEVEL1_VENDORID, LEVEL1_DEVICEID_FPC0106TX, RL_8139, 173b2d3d26fSGleb Smirnoff "LevelOne FPC-0106TX" }, 174b2d3d26fSGleb Smirnoff { EDIMAX_VENDORID, EDIMAX_DEVICEID_EP4103DL, RL_8139, 175b2d3d26fSGleb Smirnoff "Edimax EP-4103DL CardBus" } 176b2d3d26fSGleb Smirnoff }; 177b2d3d26fSGleb Smirnoff 178b2d3d26fSGleb Smirnoff static int rl_attach(device_t); 179b2d3d26fSGleb Smirnoff static int rl_detach(device_t); 180b2d3d26fSGleb Smirnoff static void rl_dmamap_cb(void *, bus_dma_segment_t *, int, int); 181b2d3d26fSGleb Smirnoff static int rl_dma_alloc(struct rl_softc *); 182b2d3d26fSGleb Smirnoff static void rl_dma_free(struct rl_softc *); 183b2d3d26fSGleb Smirnoff static void rl_eeprom_putbyte(struct rl_softc *, int); 184b2d3d26fSGleb Smirnoff static void rl_eeprom_getword(struct rl_softc *, int, uint16_t *); 185b2d3d26fSGleb Smirnoff static int rl_encap(struct rl_softc *, struct mbuf **); 186b2d3d26fSGleb Smirnoff static int rl_list_tx_init(struct rl_softc *); 187b2d3d26fSGleb Smirnoff static int rl_list_rx_init(struct rl_softc *); 188b2d3d26fSGleb Smirnoff static int rl_ifmedia_upd(struct ifnet *); 189b2d3d26fSGleb Smirnoff static void rl_ifmedia_sts(struct ifnet *, struct ifmediareq *); 190b2d3d26fSGleb Smirnoff static int rl_ioctl(struct ifnet *, u_long, caddr_t); 191b2d3d26fSGleb Smirnoff static void rl_intr(void *); 192b2d3d26fSGleb Smirnoff static void rl_init(void *); 193b2d3d26fSGleb Smirnoff static void rl_init_locked(struct rl_softc *sc); 194b2d3d26fSGleb Smirnoff static int rl_miibus_readreg(device_t, int, int); 195b2d3d26fSGleb Smirnoff static void rl_miibus_statchg(device_t); 196b2d3d26fSGleb Smirnoff static int rl_miibus_writereg(device_t, int, int, int); 197b2d3d26fSGleb Smirnoff #ifdef DEVICE_POLLING 198b2d3d26fSGleb Smirnoff static int rl_poll(struct ifnet *ifp, enum poll_cmd cmd, int count); 199b2d3d26fSGleb Smirnoff static int rl_poll_locked(struct ifnet *ifp, enum poll_cmd cmd, int count); 200b2d3d26fSGleb Smirnoff #endif 201b2d3d26fSGleb Smirnoff static int rl_probe(device_t); 202b2d3d26fSGleb Smirnoff static void rl_read_eeprom(struct rl_softc *, uint8_t *, int, int, int); 203b2d3d26fSGleb Smirnoff static void rl_reset(struct rl_softc *); 204b2d3d26fSGleb Smirnoff static int rl_resume(device_t); 205b2d3d26fSGleb Smirnoff static int rl_rxeof(struct rl_softc *); 206b2d3d26fSGleb Smirnoff static void rl_rxfilter(struct rl_softc *); 207b2d3d26fSGleb Smirnoff static int rl_shutdown(device_t); 208b2d3d26fSGleb Smirnoff static void rl_start(struct ifnet *); 209b2d3d26fSGleb Smirnoff static void rl_start_locked(struct ifnet *); 210b2d3d26fSGleb Smirnoff static void rl_stop(struct rl_softc *); 211b2d3d26fSGleb Smirnoff static int rl_suspend(device_t); 212b2d3d26fSGleb Smirnoff static void rl_tick(void *); 213b2d3d26fSGleb Smirnoff static void rl_txeof(struct rl_softc *); 214b2d3d26fSGleb Smirnoff static void rl_watchdog(struct rl_softc *); 215b2d3d26fSGleb Smirnoff static void rl_setwol(struct rl_softc *); 216b2d3d26fSGleb Smirnoff static void rl_clrwol(struct rl_softc *); 217b2d3d26fSGleb Smirnoff 218b2d3d26fSGleb Smirnoff /* 219b2d3d26fSGleb Smirnoff * MII bit-bang glue 220b2d3d26fSGleb Smirnoff */ 221b2d3d26fSGleb Smirnoff static uint32_t rl_mii_bitbang_read(device_t); 222b2d3d26fSGleb Smirnoff static void rl_mii_bitbang_write(device_t, uint32_t); 223b2d3d26fSGleb Smirnoff 224b2d3d26fSGleb Smirnoff static const struct mii_bitbang_ops rl_mii_bitbang_ops = { 225b2d3d26fSGleb Smirnoff rl_mii_bitbang_read, 226b2d3d26fSGleb Smirnoff rl_mii_bitbang_write, 227b2d3d26fSGleb Smirnoff { 228b2d3d26fSGleb Smirnoff RL_MII_DATAOUT, /* MII_BIT_MDO */ 229b2d3d26fSGleb Smirnoff RL_MII_DATAIN, /* MII_BIT_MDI */ 230b2d3d26fSGleb Smirnoff RL_MII_CLK, /* MII_BIT_MDC */ 231b2d3d26fSGleb Smirnoff RL_MII_DIR, /* MII_BIT_DIR_HOST_PHY */ 232b2d3d26fSGleb Smirnoff 0, /* MII_BIT_DIR_PHY_HOST */ 233b2d3d26fSGleb Smirnoff } 234b2d3d26fSGleb Smirnoff }; 235b2d3d26fSGleb Smirnoff 236b2d3d26fSGleb Smirnoff static device_method_t rl_methods[] = { 237b2d3d26fSGleb Smirnoff /* Device interface */ 238b2d3d26fSGleb Smirnoff DEVMETHOD(device_probe, rl_probe), 239b2d3d26fSGleb Smirnoff DEVMETHOD(device_attach, rl_attach), 240b2d3d26fSGleb Smirnoff DEVMETHOD(device_detach, rl_detach), 241b2d3d26fSGleb Smirnoff DEVMETHOD(device_suspend, rl_suspend), 242b2d3d26fSGleb Smirnoff DEVMETHOD(device_resume, rl_resume), 243b2d3d26fSGleb Smirnoff DEVMETHOD(device_shutdown, rl_shutdown), 244b2d3d26fSGleb Smirnoff 245b2d3d26fSGleb Smirnoff /* MII interface */ 246b2d3d26fSGleb Smirnoff DEVMETHOD(miibus_readreg, rl_miibus_readreg), 247b2d3d26fSGleb Smirnoff DEVMETHOD(miibus_writereg, rl_miibus_writereg), 248b2d3d26fSGleb Smirnoff DEVMETHOD(miibus_statchg, rl_miibus_statchg), 249b2d3d26fSGleb Smirnoff 250b2d3d26fSGleb Smirnoff DEVMETHOD_END 251b2d3d26fSGleb Smirnoff }; 252b2d3d26fSGleb Smirnoff 253b2d3d26fSGleb Smirnoff static driver_t rl_driver = { 254b2d3d26fSGleb Smirnoff "rl", 255b2d3d26fSGleb Smirnoff rl_methods, 256b2d3d26fSGleb Smirnoff sizeof(struct rl_softc) 257b2d3d26fSGleb Smirnoff }; 258b2d3d26fSGleb Smirnoff 259b2d3d26fSGleb Smirnoff static devclass_t rl_devclass; 260b2d3d26fSGleb Smirnoff 261b2d3d26fSGleb Smirnoff DRIVER_MODULE(rl, pci, rl_driver, rl_devclass, 0, 0); 262b2d3d26fSGleb Smirnoff DRIVER_MODULE(rl, cardbus, rl_driver, rl_devclass, 0, 0); 263b2d3d26fSGleb Smirnoff DRIVER_MODULE(miibus, rl, miibus_driver, miibus_devclass, 0, 0); 264b2d3d26fSGleb Smirnoff 265b2d3d26fSGleb Smirnoff #define EE_SET(x) \ 266b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_EECMD, \ 267b2d3d26fSGleb Smirnoff CSR_READ_1(sc, RL_EECMD) | x) 268b2d3d26fSGleb Smirnoff 269b2d3d26fSGleb Smirnoff #define EE_CLR(x) \ 270b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_EECMD, \ 271b2d3d26fSGleb Smirnoff CSR_READ_1(sc, RL_EECMD) & ~x) 272b2d3d26fSGleb Smirnoff 273b2d3d26fSGleb Smirnoff /* 274b2d3d26fSGleb Smirnoff * Send a read command and address to the EEPROM, check for ACK. 275b2d3d26fSGleb Smirnoff */ 276b2d3d26fSGleb Smirnoff static void 277b2d3d26fSGleb Smirnoff rl_eeprom_putbyte(struct rl_softc *sc, int addr) 278b2d3d26fSGleb Smirnoff { 279b2d3d26fSGleb Smirnoff register int d, i; 280b2d3d26fSGleb Smirnoff 281b2d3d26fSGleb Smirnoff d = addr | sc->rl_eecmd_read; 282b2d3d26fSGleb Smirnoff 283b2d3d26fSGleb Smirnoff /* 284b2d3d26fSGleb Smirnoff * Feed in each bit and strobe the clock. 285b2d3d26fSGleb Smirnoff */ 286b2d3d26fSGleb Smirnoff for (i = 0x400; i; i >>= 1) { 287b2d3d26fSGleb Smirnoff if (d & i) { 288b2d3d26fSGleb Smirnoff EE_SET(RL_EE_DATAIN); 289b2d3d26fSGleb Smirnoff } else { 290b2d3d26fSGleb Smirnoff EE_CLR(RL_EE_DATAIN); 291b2d3d26fSGleb Smirnoff } 292b2d3d26fSGleb Smirnoff DELAY(100); 293b2d3d26fSGleb Smirnoff EE_SET(RL_EE_CLK); 294b2d3d26fSGleb Smirnoff DELAY(150); 295b2d3d26fSGleb Smirnoff EE_CLR(RL_EE_CLK); 296b2d3d26fSGleb Smirnoff DELAY(100); 297b2d3d26fSGleb Smirnoff } 298b2d3d26fSGleb Smirnoff } 299b2d3d26fSGleb Smirnoff 300b2d3d26fSGleb Smirnoff /* 301b2d3d26fSGleb Smirnoff * Read a word of data stored in the EEPROM at address 'addr.' 302b2d3d26fSGleb Smirnoff */ 303b2d3d26fSGleb Smirnoff static void 304b2d3d26fSGleb Smirnoff rl_eeprom_getword(struct rl_softc *sc, int addr, uint16_t *dest) 305b2d3d26fSGleb Smirnoff { 306b2d3d26fSGleb Smirnoff register int i; 307b2d3d26fSGleb Smirnoff uint16_t word = 0; 308b2d3d26fSGleb Smirnoff 309b2d3d26fSGleb Smirnoff /* Enter EEPROM access mode. */ 310b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_EECMD, RL_EEMODE_PROGRAM|RL_EE_SEL); 311b2d3d26fSGleb Smirnoff 312b2d3d26fSGleb Smirnoff /* 313b2d3d26fSGleb Smirnoff * Send address of word we want to read. 314b2d3d26fSGleb Smirnoff */ 315b2d3d26fSGleb Smirnoff rl_eeprom_putbyte(sc, addr); 316b2d3d26fSGleb Smirnoff 317b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_EECMD, RL_EEMODE_PROGRAM|RL_EE_SEL); 318b2d3d26fSGleb Smirnoff 319b2d3d26fSGleb Smirnoff /* 320b2d3d26fSGleb Smirnoff * Start reading bits from EEPROM. 321b2d3d26fSGleb Smirnoff */ 322b2d3d26fSGleb Smirnoff for (i = 0x8000; i; i >>= 1) { 323b2d3d26fSGleb Smirnoff EE_SET(RL_EE_CLK); 324b2d3d26fSGleb Smirnoff DELAY(100); 325b2d3d26fSGleb Smirnoff if (CSR_READ_1(sc, RL_EECMD) & RL_EE_DATAOUT) 326b2d3d26fSGleb Smirnoff word |= i; 327b2d3d26fSGleb Smirnoff EE_CLR(RL_EE_CLK); 328b2d3d26fSGleb Smirnoff DELAY(100); 329b2d3d26fSGleb Smirnoff } 330b2d3d26fSGleb Smirnoff 331b2d3d26fSGleb Smirnoff /* Turn off EEPROM access mode. */ 332b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_EECMD, RL_EEMODE_OFF); 333b2d3d26fSGleb Smirnoff 334b2d3d26fSGleb Smirnoff *dest = word; 335b2d3d26fSGleb Smirnoff } 336b2d3d26fSGleb Smirnoff 337b2d3d26fSGleb Smirnoff /* 338b2d3d26fSGleb Smirnoff * Read a sequence of words from the EEPROM. 339b2d3d26fSGleb Smirnoff */ 340b2d3d26fSGleb Smirnoff static void 341b2d3d26fSGleb Smirnoff rl_read_eeprom(struct rl_softc *sc, uint8_t *dest, int off, int cnt, int swap) 342b2d3d26fSGleb Smirnoff { 343b2d3d26fSGleb Smirnoff int i; 344b2d3d26fSGleb Smirnoff uint16_t word = 0, *ptr; 345b2d3d26fSGleb Smirnoff 346b2d3d26fSGleb Smirnoff for (i = 0; i < cnt; i++) { 347b2d3d26fSGleb Smirnoff rl_eeprom_getword(sc, off + i, &word); 348b2d3d26fSGleb Smirnoff ptr = (uint16_t *)(dest + (i * 2)); 349b2d3d26fSGleb Smirnoff if (swap) 350b2d3d26fSGleb Smirnoff *ptr = ntohs(word); 351b2d3d26fSGleb Smirnoff else 352b2d3d26fSGleb Smirnoff *ptr = word; 353b2d3d26fSGleb Smirnoff } 354b2d3d26fSGleb Smirnoff } 355b2d3d26fSGleb Smirnoff 356b2d3d26fSGleb Smirnoff /* 357b2d3d26fSGleb Smirnoff * Read the MII serial port for the MII bit-bang module. 358b2d3d26fSGleb Smirnoff */ 359b2d3d26fSGleb Smirnoff static uint32_t 360b2d3d26fSGleb Smirnoff rl_mii_bitbang_read(device_t dev) 361b2d3d26fSGleb Smirnoff { 362b2d3d26fSGleb Smirnoff struct rl_softc *sc; 363b2d3d26fSGleb Smirnoff uint32_t val; 364b2d3d26fSGleb Smirnoff 365b2d3d26fSGleb Smirnoff sc = device_get_softc(dev); 366b2d3d26fSGleb Smirnoff 367b2d3d26fSGleb Smirnoff val = CSR_READ_1(sc, RL_MII); 368b2d3d26fSGleb Smirnoff CSR_BARRIER(sc, RL_MII, 1, 369b2d3d26fSGleb Smirnoff BUS_SPACE_BARRIER_READ | BUS_SPACE_BARRIER_WRITE); 370b2d3d26fSGleb Smirnoff 371b2d3d26fSGleb Smirnoff return (val); 372b2d3d26fSGleb Smirnoff } 373b2d3d26fSGleb Smirnoff 374b2d3d26fSGleb Smirnoff /* 375b2d3d26fSGleb Smirnoff * Write the MII serial port for the MII bit-bang module. 376b2d3d26fSGleb Smirnoff */ 377b2d3d26fSGleb Smirnoff static void 378b2d3d26fSGleb Smirnoff rl_mii_bitbang_write(device_t dev, uint32_t val) 379b2d3d26fSGleb Smirnoff { 380b2d3d26fSGleb Smirnoff struct rl_softc *sc; 381b2d3d26fSGleb Smirnoff 382b2d3d26fSGleb Smirnoff sc = device_get_softc(dev); 383b2d3d26fSGleb Smirnoff 384b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_MII, val); 385b2d3d26fSGleb Smirnoff CSR_BARRIER(sc, RL_MII, 1, 386b2d3d26fSGleb Smirnoff BUS_SPACE_BARRIER_READ | BUS_SPACE_BARRIER_WRITE); 387b2d3d26fSGleb Smirnoff } 388b2d3d26fSGleb Smirnoff 389b2d3d26fSGleb Smirnoff static int 390b2d3d26fSGleb Smirnoff rl_miibus_readreg(device_t dev, int phy, int reg) 391b2d3d26fSGleb Smirnoff { 392b2d3d26fSGleb Smirnoff struct rl_softc *sc; 393b2d3d26fSGleb Smirnoff uint16_t rl8139_reg; 394b2d3d26fSGleb Smirnoff 395b2d3d26fSGleb Smirnoff sc = device_get_softc(dev); 396b2d3d26fSGleb Smirnoff 397b2d3d26fSGleb Smirnoff if (sc->rl_type == RL_8139) { 398b2d3d26fSGleb Smirnoff switch (reg) { 399b2d3d26fSGleb Smirnoff case MII_BMCR: 400b2d3d26fSGleb Smirnoff rl8139_reg = RL_BMCR; 401b2d3d26fSGleb Smirnoff break; 402b2d3d26fSGleb Smirnoff case MII_BMSR: 403b2d3d26fSGleb Smirnoff rl8139_reg = RL_BMSR; 404b2d3d26fSGleb Smirnoff break; 405b2d3d26fSGleb Smirnoff case MII_ANAR: 406b2d3d26fSGleb Smirnoff rl8139_reg = RL_ANAR; 407b2d3d26fSGleb Smirnoff break; 408b2d3d26fSGleb Smirnoff case MII_ANER: 409b2d3d26fSGleb Smirnoff rl8139_reg = RL_ANER; 410b2d3d26fSGleb Smirnoff break; 411b2d3d26fSGleb Smirnoff case MII_ANLPAR: 412b2d3d26fSGleb Smirnoff rl8139_reg = RL_LPAR; 413b2d3d26fSGleb Smirnoff break; 414b2d3d26fSGleb Smirnoff case MII_PHYIDR1: 415b2d3d26fSGleb Smirnoff case MII_PHYIDR2: 416b2d3d26fSGleb Smirnoff return (0); 417b2d3d26fSGleb Smirnoff /* 418b2d3d26fSGleb Smirnoff * Allow the rlphy driver to read the media status 419b2d3d26fSGleb Smirnoff * register. If we have a link partner which does not 420b2d3d26fSGleb Smirnoff * support NWAY, this is the register which will tell 421b2d3d26fSGleb Smirnoff * us the results of parallel detection. 422b2d3d26fSGleb Smirnoff */ 423b2d3d26fSGleb Smirnoff case RL_MEDIASTAT: 424b2d3d26fSGleb Smirnoff return (CSR_READ_1(sc, RL_MEDIASTAT)); 425b2d3d26fSGleb Smirnoff default: 426b2d3d26fSGleb Smirnoff device_printf(sc->rl_dev, "bad phy register\n"); 427b2d3d26fSGleb Smirnoff return (0); 428b2d3d26fSGleb Smirnoff } 429b2d3d26fSGleb Smirnoff return (CSR_READ_2(sc, rl8139_reg)); 430b2d3d26fSGleb Smirnoff } 431b2d3d26fSGleb Smirnoff 432b2d3d26fSGleb Smirnoff return (mii_bitbang_readreg(dev, &rl_mii_bitbang_ops, phy, reg)); 433b2d3d26fSGleb Smirnoff } 434b2d3d26fSGleb Smirnoff 435b2d3d26fSGleb Smirnoff static int 436b2d3d26fSGleb Smirnoff rl_miibus_writereg(device_t dev, int phy, int reg, int data) 437b2d3d26fSGleb Smirnoff { 438b2d3d26fSGleb Smirnoff struct rl_softc *sc; 439b2d3d26fSGleb Smirnoff uint16_t rl8139_reg; 440b2d3d26fSGleb Smirnoff 441b2d3d26fSGleb Smirnoff sc = device_get_softc(dev); 442b2d3d26fSGleb Smirnoff 443b2d3d26fSGleb Smirnoff if (sc->rl_type == RL_8139) { 444b2d3d26fSGleb Smirnoff switch (reg) { 445b2d3d26fSGleb Smirnoff case MII_BMCR: 446b2d3d26fSGleb Smirnoff rl8139_reg = RL_BMCR; 447b2d3d26fSGleb Smirnoff break; 448b2d3d26fSGleb Smirnoff case MII_BMSR: 449b2d3d26fSGleb Smirnoff rl8139_reg = RL_BMSR; 450b2d3d26fSGleb Smirnoff break; 451b2d3d26fSGleb Smirnoff case MII_ANAR: 452b2d3d26fSGleb Smirnoff rl8139_reg = RL_ANAR; 453b2d3d26fSGleb Smirnoff break; 454b2d3d26fSGleb Smirnoff case MII_ANER: 455b2d3d26fSGleb Smirnoff rl8139_reg = RL_ANER; 456b2d3d26fSGleb Smirnoff break; 457b2d3d26fSGleb Smirnoff case MII_ANLPAR: 458b2d3d26fSGleb Smirnoff rl8139_reg = RL_LPAR; 459b2d3d26fSGleb Smirnoff break; 460b2d3d26fSGleb Smirnoff case MII_PHYIDR1: 461b2d3d26fSGleb Smirnoff case MII_PHYIDR2: 462b2d3d26fSGleb Smirnoff return (0); 463b2d3d26fSGleb Smirnoff break; 464b2d3d26fSGleb Smirnoff default: 465b2d3d26fSGleb Smirnoff device_printf(sc->rl_dev, "bad phy register\n"); 466b2d3d26fSGleb Smirnoff return (0); 467b2d3d26fSGleb Smirnoff } 468b2d3d26fSGleb Smirnoff CSR_WRITE_2(sc, rl8139_reg, data); 469b2d3d26fSGleb Smirnoff return (0); 470b2d3d26fSGleb Smirnoff } 471b2d3d26fSGleb Smirnoff 472b2d3d26fSGleb Smirnoff mii_bitbang_writereg(dev, &rl_mii_bitbang_ops, phy, reg, data); 473b2d3d26fSGleb Smirnoff 474b2d3d26fSGleb Smirnoff return (0); 475b2d3d26fSGleb Smirnoff } 476b2d3d26fSGleb Smirnoff 477b2d3d26fSGleb Smirnoff static void 478b2d3d26fSGleb Smirnoff rl_miibus_statchg(device_t dev) 479b2d3d26fSGleb Smirnoff { 480b2d3d26fSGleb Smirnoff struct rl_softc *sc; 481b2d3d26fSGleb Smirnoff struct ifnet *ifp; 482b2d3d26fSGleb Smirnoff struct mii_data *mii; 483b2d3d26fSGleb Smirnoff 484b2d3d26fSGleb Smirnoff sc = device_get_softc(dev); 485b2d3d26fSGleb Smirnoff mii = device_get_softc(sc->rl_miibus); 486b2d3d26fSGleb Smirnoff ifp = sc->rl_ifp; 487b2d3d26fSGleb Smirnoff if (mii == NULL || ifp == NULL || 488b2d3d26fSGleb Smirnoff (ifp->if_drv_flags & IFF_DRV_RUNNING) == 0) 489b2d3d26fSGleb Smirnoff return; 490b2d3d26fSGleb Smirnoff 491b2d3d26fSGleb Smirnoff sc->rl_flags &= ~RL_FLAG_LINK; 492b2d3d26fSGleb Smirnoff if ((mii->mii_media_status & (IFM_ACTIVE | IFM_AVALID)) == 493b2d3d26fSGleb Smirnoff (IFM_ACTIVE | IFM_AVALID)) { 494b2d3d26fSGleb Smirnoff switch (IFM_SUBTYPE(mii->mii_media_active)) { 495b2d3d26fSGleb Smirnoff case IFM_10_T: 496b2d3d26fSGleb Smirnoff case IFM_100_TX: 497b2d3d26fSGleb Smirnoff sc->rl_flags |= RL_FLAG_LINK; 498b2d3d26fSGleb Smirnoff break; 499b2d3d26fSGleb Smirnoff default: 500b2d3d26fSGleb Smirnoff break; 501b2d3d26fSGleb Smirnoff } 502b2d3d26fSGleb Smirnoff } 503b2d3d26fSGleb Smirnoff /* 504b2d3d26fSGleb Smirnoff * RealTek controllers do not provide any interface to 505b2d3d26fSGleb Smirnoff * Tx/Rx MACs for resolved speed, duplex and flow-control 506b2d3d26fSGleb Smirnoff * parameters. 507b2d3d26fSGleb Smirnoff */ 508b2d3d26fSGleb Smirnoff } 509b2d3d26fSGleb Smirnoff 510b2d3d26fSGleb Smirnoff /* 511b2d3d26fSGleb Smirnoff * Program the 64-bit multicast hash filter. 512b2d3d26fSGleb Smirnoff */ 513b2d3d26fSGleb Smirnoff static void 514b2d3d26fSGleb Smirnoff rl_rxfilter(struct rl_softc *sc) 515b2d3d26fSGleb Smirnoff { 516b2d3d26fSGleb Smirnoff struct ifnet *ifp = sc->rl_ifp; 517b2d3d26fSGleb Smirnoff int h = 0; 518b2d3d26fSGleb Smirnoff uint32_t hashes[2] = { 0, 0 }; 519b2d3d26fSGleb Smirnoff struct ifmultiaddr *ifma; 520b2d3d26fSGleb Smirnoff uint32_t rxfilt; 521b2d3d26fSGleb Smirnoff 522b2d3d26fSGleb Smirnoff RL_LOCK_ASSERT(sc); 523b2d3d26fSGleb Smirnoff 524b2d3d26fSGleb Smirnoff rxfilt = CSR_READ_4(sc, RL_RXCFG); 525b2d3d26fSGleb Smirnoff rxfilt &= ~(RL_RXCFG_RX_ALLPHYS | RL_RXCFG_RX_BROAD | 526b2d3d26fSGleb Smirnoff RL_RXCFG_RX_MULTI); 527b2d3d26fSGleb Smirnoff /* Always accept frames destined for this host. */ 528b2d3d26fSGleb Smirnoff rxfilt |= RL_RXCFG_RX_INDIV; 529b2d3d26fSGleb Smirnoff /* Set capture broadcast bit to capture broadcast frames. */ 530b2d3d26fSGleb Smirnoff if (ifp->if_flags & IFF_BROADCAST) 531b2d3d26fSGleb Smirnoff rxfilt |= RL_RXCFG_RX_BROAD; 532b2d3d26fSGleb Smirnoff if (ifp->if_flags & IFF_ALLMULTI || ifp->if_flags & IFF_PROMISC) { 533b2d3d26fSGleb Smirnoff rxfilt |= RL_RXCFG_RX_MULTI; 534b2d3d26fSGleb Smirnoff if (ifp->if_flags & IFF_PROMISC) 535b2d3d26fSGleb Smirnoff rxfilt |= RL_RXCFG_RX_ALLPHYS; 536b2d3d26fSGleb Smirnoff hashes[0] = 0xFFFFFFFF; 537b2d3d26fSGleb Smirnoff hashes[1] = 0xFFFFFFFF; 538b2d3d26fSGleb Smirnoff } else { 539b2d3d26fSGleb Smirnoff /* Now program new ones. */ 540b2d3d26fSGleb Smirnoff if_maddr_rlock(ifp); 541b2d3d26fSGleb Smirnoff TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) { 542b2d3d26fSGleb Smirnoff if (ifma->ifma_addr->sa_family != AF_LINK) 543b2d3d26fSGleb Smirnoff continue; 544b2d3d26fSGleb Smirnoff h = ether_crc32_be(LLADDR((struct sockaddr_dl *) 545b2d3d26fSGleb Smirnoff ifma->ifma_addr), ETHER_ADDR_LEN) >> 26; 546b2d3d26fSGleb Smirnoff if (h < 32) 547b2d3d26fSGleb Smirnoff hashes[0] |= (1 << h); 548b2d3d26fSGleb Smirnoff else 549b2d3d26fSGleb Smirnoff hashes[1] |= (1 << (h - 32)); 550b2d3d26fSGleb Smirnoff } 551b2d3d26fSGleb Smirnoff if_maddr_runlock(ifp); 552b2d3d26fSGleb Smirnoff if (hashes[0] != 0 || hashes[1] != 0) 553b2d3d26fSGleb Smirnoff rxfilt |= RL_RXCFG_RX_MULTI; 554b2d3d26fSGleb Smirnoff } 555b2d3d26fSGleb Smirnoff 556b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_MAR0, hashes[0]); 557b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_MAR4, hashes[1]); 558b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_RXCFG, rxfilt); 559b2d3d26fSGleb Smirnoff } 560b2d3d26fSGleb Smirnoff 561b2d3d26fSGleb Smirnoff static void 562b2d3d26fSGleb Smirnoff rl_reset(struct rl_softc *sc) 563b2d3d26fSGleb Smirnoff { 564b2d3d26fSGleb Smirnoff register int i; 565b2d3d26fSGleb Smirnoff 566b2d3d26fSGleb Smirnoff RL_LOCK_ASSERT(sc); 567b2d3d26fSGleb Smirnoff 568b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_COMMAND, RL_CMD_RESET); 569b2d3d26fSGleb Smirnoff 570b2d3d26fSGleb Smirnoff for (i = 0; i < RL_TIMEOUT; i++) { 571b2d3d26fSGleb Smirnoff DELAY(10); 572b2d3d26fSGleb Smirnoff if (!(CSR_READ_1(sc, RL_COMMAND) & RL_CMD_RESET)) 573b2d3d26fSGleb Smirnoff break; 574b2d3d26fSGleb Smirnoff } 575b2d3d26fSGleb Smirnoff if (i == RL_TIMEOUT) 576b2d3d26fSGleb Smirnoff device_printf(sc->rl_dev, "reset never completed!\n"); 577b2d3d26fSGleb Smirnoff } 578b2d3d26fSGleb Smirnoff 579b2d3d26fSGleb Smirnoff /* 580b2d3d26fSGleb Smirnoff * Probe for a RealTek 8129/8139 chip. Check the PCI vendor and device 581b2d3d26fSGleb Smirnoff * IDs against our list and return a device name if we find a match. 582b2d3d26fSGleb Smirnoff */ 583b2d3d26fSGleb Smirnoff static int 584b2d3d26fSGleb Smirnoff rl_probe(device_t dev) 585b2d3d26fSGleb Smirnoff { 586b2d3d26fSGleb Smirnoff const struct rl_type *t; 587b2d3d26fSGleb Smirnoff uint16_t devid, revid, vendor; 588b2d3d26fSGleb Smirnoff int i; 589b2d3d26fSGleb Smirnoff 590b2d3d26fSGleb Smirnoff vendor = pci_get_vendor(dev); 591b2d3d26fSGleb Smirnoff devid = pci_get_device(dev); 592b2d3d26fSGleb Smirnoff revid = pci_get_revid(dev); 593b2d3d26fSGleb Smirnoff 594b2d3d26fSGleb Smirnoff if (vendor == RT_VENDORID && devid == RT_DEVICEID_8139) { 595b2d3d26fSGleb Smirnoff if (revid == 0x20) { 596b2d3d26fSGleb Smirnoff /* 8139C+, let re(4) take care of this device. */ 597b2d3d26fSGleb Smirnoff return (ENXIO); 598b2d3d26fSGleb Smirnoff } 599b2d3d26fSGleb Smirnoff } 600b2d3d26fSGleb Smirnoff t = rl_devs; 601*73a1170aSPedro F. Giffuni for (i = 0; i < nitems(rl_devs); i++, t++) { 602b2d3d26fSGleb Smirnoff if (vendor == t->rl_vid && devid == t->rl_did) { 603b2d3d26fSGleb Smirnoff device_set_desc(dev, t->rl_name); 604b2d3d26fSGleb Smirnoff return (BUS_PROBE_DEFAULT); 605b2d3d26fSGleb Smirnoff } 606b2d3d26fSGleb Smirnoff } 607b2d3d26fSGleb Smirnoff 608b2d3d26fSGleb Smirnoff return (ENXIO); 609b2d3d26fSGleb Smirnoff } 610b2d3d26fSGleb Smirnoff 611b2d3d26fSGleb Smirnoff struct rl_dmamap_arg { 612b2d3d26fSGleb Smirnoff bus_addr_t rl_busaddr; 613b2d3d26fSGleb Smirnoff }; 614b2d3d26fSGleb Smirnoff 615b2d3d26fSGleb Smirnoff static void 616b2d3d26fSGleb Smirnoff rl_dmamap_cb(void *arg, bus_dma_segment_t *segs, int nsegs, int error) 617b2d3d26fSGleb Smirnoff { 618b2d3d26fSGleb Smirnoff struct rl_dmamap_arg *ctx; 619b2d3d26fSGleb Smirnoff 620b2d3d26fSGleb Smirnoff if (error != 0) 621b2d3d26fSGleb Smirnoff return; 622b2d3d26fSGleb Smirnoff 623b2d3d26fSGleb Smirnoff KASSERT(nsegs == 1, ("%s: %d segments returned!", __func__, nsegs)); 624b2d3d26fSGleb Smirnoff 625b2d3d26fSGleb Smirnoff ctx = (struct rl_dmamap_arg *)arg; 626b2d3d26fSGleb Smirnoff ctx->rl_busaddr = segs[0].ds_addr; 627b2d3d26fSGleb Smirnoff } 628b2d3d26fSGleb Smirnoff 629b2d3d26fSGleb Smirnoff /* 630b2d3d26fSGleb Smirnoff * Attach the interface. Allocate softc structures, do ifmedia 631b2d3d26fSGleb Smirnoff * setup and ethernet/BPF attach. 632b2d3d26fSGleb Smirnoff */ 633b2d3d26fSGleb Smirnoff static int 634b2d3d26fSGleb Smirnoff rl_attach(device_t dev) 635b2d3d26fSGleb Smirnoff { 636b2d3d26fSGleb Smirnoff uint8_t eaddr[ETHER_ADDR_LEN]; 637b2d3d26fSGleb Smirnoff uint16_t as[3]; 638b2d3d26fSGleb Smirnoff struct ifnet *ifp; 639b2d3d26fSGleb Smirnoff struct rl_softc *sc; 640b2d3d26fSGleb Smirnoff const struct rl_type *t; 641b2d3d26fSGleb Smirnoff struct sysctl_ctx_list *ctx; 642b2d3d26fSGleb Smirnoff struct sysctl_oid_list *children; 643b2d3d26fSGleb Smirnoff int error = 0, hwrev, i, phy, pmc, rid; 644b2d3d26fSGleb Smirnoff int prefer_iomap, unit; 645b2d3d26fSGleb Smirnoff uint16_t rl_did = 0; 646b2d3d26fSGleb Smirnoff char tn[32]; 647b2d3d26fSGleb Smirnoff 648b2d3d26fSGleb Smirnoff sc = device_get_softc(dev); 649b2d3d26fSGleb Smirnoff unit = device_get_unit(dev); 650b2d3d26fSGleb Smirnoff sc->rl_dev = dev; 651b2d3d26fSGleb Smirnoff 652b2d3d26fSGleb Smirnoff sc->rl_twister_enable = 0; 653b2d3d26fSGleb Smirnoff snprintf(tn, sizeof(tn), "dev.rl.%d.twister_enable", unit); 654b2d3d26fSGleb Smirnoff TUNABLE_INT_FETCH(tn, &sc->rl_twister_enable); 655b2d3d26fSGleb Smirnoff ctx = device_get_sysctl_ctx(sc->rl_dev); 656b2d3d26fSGleb Smirnoff children = SYSCTL_CHILDREN(device_get_sysctl_tree(sc->rl_dev)); 657b2d3d26fSGleb Smirnoff SYSCTL_ADD_INT(ctx, children, OID_AUTO, "twister_enable", CTLFLAG_RD, 658b2d3d26fSGleb Smirnoff &sc->rl_twister_enable, 0, ""); 659b2d3d26fSGleb Smirnoff 660b2d3d26fSGleb Smirnoff mtx_init(&sc->rl_mtx, device_get_nameunit(dev), MTX_NETWORK_LOCK, 661b2d3d26fSGleb Smirnoff MTX_DEF); 662b2d3d26fSGleb Smirnoff callout_init_mtx(&sc->rl_stat_callout, &sc->rl_mtx, 0); 663b2d3d26fSGleb Smirnoff 664b2d3d26fSGleb Smirnoff pci_enable_busmaster(dev); 665b2d3d26fSGleb Smirnoff 666b2d3d26fSGleb Smirnoff 667b2d3d26fSGleb Smirnoff /* 668b2d3d26fSGleb Smirnoff * Map control/status registers. 669b2d3d26fSGleb Smirnoff * Default to using PIO access for this driver. On SMP systems, 670b2d3d26fSGleb Smirnoff * there appear to be problems with memory mapped mode: it looks 671b2d3d26fSGleb Smirnoff * like doing too many memory mapped access back to back in rapid 672b2d3d26fSGleb Smirnoff * succession can hang the bus. I'm inclined to blame this on 673b2d3d26fSGleb Smirnoff * crummy design/construction on the part of RealTek. Memory 674b2d3d26fSGleb Smirnoff * mapped mode does appear to work on uniprocessor systems though. 675b2d3d26fSGleb Smirnoff */ 676b2d3d26fSGleb Smirnoff prefer_iomap = 1; 677b2d3d26fSGleb Smirnoff snprintf(tn, sizeof(tn), "dev.rl.%d.prefer_iomap", unit); 678b2d3d26fSGleb Smirnoff TUNABLE_INT_FETCH(tn, &prefer_iomap); 679b2d3d26fSGleb Smirnoff if (prefer_iomap) { 680b2d3d26fSGleb Smirnoff sc->rl_res_id = PCIR_BAR(0); 681b2d3d26fSGleb Smirnoff sc->rl_res_type = SYS_RES_IOPORT; 682b2d3d26fSGleb Smirnoff sc->rl_res = bus_alloc_resource_any(dev, sc->rl_res_type, 683b2d3d26fSGleb Smirnoff &sc->rl_res_id, RF_ACTIVE); 684b2d3d26fSGleb Smirnoff } 685b2d3d26fSGleb Smirnoff if (prefer_iomap == 0 || sc->rl_res == NULL) { 686b2d3d26fSGleb Smirnoff sc->rl_res_id = PCIR_BAR(1); 687b2d3d26fSGleb Smirnoff sc->rl_res_type = SYS_RES_MEMORY; 688b2d3d26fSGleb Smirnoff sc->rl_res = bus_alloc_resource_any(dev, sc->rl_res_type, 689b2d3d26fSGleb Smirnoff &sc->rl_res_id, RF_ACTIVE); 690b2d3d26fSGleb Smirnoff } 691b2d3d26fSGleb Smirnoff if (sc->rl_res == NULL) { 692b2d3d26fSGleb Smirnoff device_printf(dev, "couldn't map ports/memory\n"); 693b2d3d26fSGleb Smirnoff error = ENXIO; 694b2d3d26fSGleb Smirnoff goto fail; 695b2d3d26fSGleb Smirnoff } 696b2d3d26fSGleb Smirnoff 697b2d3d26fSGleb Smirnoff #ifdef notdef 698b2d3d26fSGleb Smirnoff /* 699b2d3d26fSGleb Smirnoff * Detect the Realtek 8139B. For some reason, this chip is very 700b2d3d26fSGleb Smirnoff * unstable when left to autoselect the media 701b2d3d26fSGleb Smirnoff * The best workaround is to set the device to the required 702b2d3d26fSGleb Smirnoff * media type or to set it to the 10 Meg speed. 703b2d3d26fSGleb Smirnoff */ 704b2d3d26fSGleb Smirnoff if ((rman_get_end(sc->rl_res) - rman_get_start(sc->rl_res)) == 0xFF) 705b2d3d26fSGleb Smirnoff device_printf(dev, 706b2d3d26fSGleb Smirnoff "Realtek 8139B detected. Warning, this may be unstable in autoselect mode\n"); 707b2d3d26fSGleb Smirnoff #endif 708b2d3d26fSGleb Smirnoff 709b2d3d26fSGleb Smirnoff sc->rl_btag = rman_get_bustag(sc->rl_res); 710b2d3d26fSGleb Smirnoff sc->rl_bhandle = rman_get_bushandle(sc->rl_res); 711b2d3d26fSGleb Smirnoff 712b2d3d26fSGleb Smirnoff /* Allocate interrupt */ 713b2d3d26fSGleb Smirnoff rid = 0; 714b2d3d26fSGleb Smirnoff sc->rl_irq[0] = bus_alloc_resource_any(dev, SYS_RES_IRQ, &rid, 715b2d3d26fSGleb Smirnoff RF_SHAREABLE | RF_ACTIVE); 716b2d3d26fSGleb Smirnoff 717b2d3d26fSGleb Smirnoff if (sc->rl_irq[0] == NULL) { 718b2d3d26fSGleb Smirnoff device_printf(dev, "couldn't map interrupt\n"); 719b2d3d26fSGleb Smirnoff error = ENXIO; 720b2d3d26fSGleb Smirnoff goto fail; 721b2d3d26fSGleb Smirnoff } 722b2d3d26fSGleb Smirnoff 723b2d3d26fSGleb Smirnoff sc->rl_cfg0 = RL_8139_CFG0; 724b2d3d26fSGleb Smirnoff sc->rl_cfg1 = RL_8139_CFG1; 725b2d3d26fSGleb Smirnoff sc->rl_cfg2 = 0; 726b2d3d26fSGleb Smirnoff sc->rl_cfg3 = RL_8139_CFG3; 727b2d3d26fSGleb Smirnoff sc->rl_cfg4 = RL_8139_CFG4; 728b2d3d26fSGleb Smirnoff sc->rl_cfg5 = RL_8139_CFG5; 729b2d3d26fSGleb Smirnoff 730b2d3d26fSGleb Smirnoff /* 731b2d3d26fSGleb Smirnoff * Reset the adapter. Only take the lock here as it's needed in 732b2d3d26fSGleb Smirnoff * order to call rl_reset(). 733b2d3d26fSGleb Smirnoff */ 734b2d3d26fSGleb Smirnoff RL_LOCK(sc); 735b2d3d26fSGleb Smirnoff rl_reset(sc); 736b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 737b2d3d26fSGleb Smirnoff 738b2d3d26fSGleb Smirnoff sc->rl_eecmd_read = RL_EECMD_READ_6BIT; 739b2d3d26fSGleb Smirnoff rl_read_eeprom(sc, (uint8_t *)&rl_did, 0, 1, 0); 740b2d3d26fSGleb Smirnoff if (rl_did != 0x8129) 741b2d3d26fSGleb Smirnoff sc->rl_eecmd_read = RL_EECMD_READ_8BIT; 742b2d3d26fSGleb Smirnoff 743b2d3d26fSGleb Smirnoff /* 744b2d3d26fSGleb Smirnoff * Get station address from the EEPROM. 745b2d3d26fSGleb Smirnoff */ 746b2d3d26fSGleb Smirnoff rl_read_eeprom(sc, (uint8_t *)as, RL_EE_EADDR, 3, 0); 747b2d3d26fSGleb Smirnoff for (i = 0; i < 3; i++) { 748b2d3d26fSGleb Smirnoff eaddr[(i * 2) + 0] = as[i] & 0xff; 749b2d3d26fSGleb Smirnoff eaddr[(i * 2) + 1] = as[i] >> 8; 750b2d3d26fSGleb Smirnoff } 751b2d3d26fSGleb Smirnoff 752b2d3d26fSGleb Smirnoff /* 753b2d3d26fSGleb Smirnoff * Now read the exact device type from the EEPROM to find 754b2d3d26fSGleb Smirnoff * out if it's an 8129 or 8139. 755b2d3d26fSGleb Smirnoff */ 756b2d3d26fSGleb Smirnoff rl_read_eeprom(sc, (uint8_t *)&rl_did, RL_EE_PCI_DID, 1, 0); 757b2d3d26fSGleb Smirnoff 758b2d3d26fSGleb Smirnoff t = rl_devs; 759b2d3d26fSGleb Smirnoff sc->rl_type = 0; 760b2d3d26fSGleb Smirnoff while(t->rl_name != NULL) { 761b2d3d26fSGleb Smirnoff if (rl_did == t->rl_did) { 762b2d3d26fSGleb Smirnoff sc->rl_type = t->rl_basetype; 763b2d3d26fSGleb Smirnoff break; 764b2d3d26fSGleb Smirnoff } 765b2d3d26fSGleb Smirnoff t++; 766b2d3d26fSGleb Smirnoff } 767b2d3d26fSGleb Smirnoff 768b2d3d26fSGleb Smirnoff if (sc->rl_type == 0) { 769b2d3d26fSGleb Smirnoff device_printf(dev, "unknown device ID: %x assuming 8139\n", 770b2d3d26fSGleb Smirnoff rl_did); 771b2d3d26fSGleb Smirnoff sc->rl_type = RL_8139; 772b2d3d26fSGleb Smirnoff /* 773b2d3d26fSGleb Smirnoff * Read RL_IDR register to get ethernet address as accessing 774b2d3d26fSGleb Smirnoff * EEPROM may not extract correct address. 775b2d3d26fSGleb Smirnoff */ 776b2d3d26fSGleb Smirnoff for (i = 0; i < ETHER_ADDR_LEN; i++) 777b2d3d26fSGleb Smirnoff eaddr[i] = CSR_READ_1(sc, RL_IDR0 + i); 778b2d3d26fSGleb Smirnoff } 779b2d3d26fSGleb Smirnoff 780b2d3d26fSGleb Smirnoff if ((error = rl_dma_alloc(sc)) != 0) 781b2d3d26fSGleb Smirnoff goto fail; 782b2d3d26fSGleb Smirnoff 783b2d3d26fSGleb Smirnoff ifp = sc->rl_ifp = if_alloc(IFT_ETHER); 784b2d3d26fSGleb Smirnoff if (ifp == NULL) { 785b2d3d26fSGleb Smirnoff device_printf(dev, "can not if_alloc()\n"); 786b2d3d26fSGleb Smirnoff error = ENOSPC; 787b2d3d26fSGleb Smirnoff goto fail; 788b2d3d26fSGleb Smirnoff } 789b2d3d26fSGleb Smirnoff 790b2d3d26fSGleb Smirnoff #define RL_PHYAD_INTERNAL 0 791b2d3d26fSGleb Smirnoff 792b2d3d26fSGleb Smirnoff /* Do MII setup */ 793b2d3d26fSGleb Smirnoff phy = MII_PHY_ANY; 794b2d3d26fSGleb Smirnoff if (sc->rl_type == RL_8139) 795b2d3d26fSGleb Smirnoff phy = RL_PHYAD_INTERNAL; 796b2d3d26fSGleb Smirnoff error = mii_attach(dev, &sc->rl_miibus, ifp, rl_ifmedia_upd, 797b2d3d26fSGleb Smirnoff rl_ifmedia_sts, BMSR_DEFCAPMASK, phy, MII_OFFSET_ANY, 0); 798b2d3d26fSGleb Smirnoff if (error != 0) { 799b2d3d26fSGleb Smirnoff device_printf(dev, "attaching PHYs failed\n"); 800b2d3d26fSGleb Smirnoff goto fail; 801b2d3d26fSGleb Smirnoff } 802b2d3d26fSGleb Smirnoff 803b2d3d26fSGleb Smirnoff ifp->if_softc = sc; 804b2d3d26fSGleb Smirnoff if_initname(ifp, device_get_name(dev), device_get_unit(dev)); 805b2d3d26fSGleb Smirnoff ifp->if_mtu = ETHERMTU; 806b2d3d26fSGleb Smirnoff ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST; 807b2d3d26fSGleb Smirnoff ifp->if_ioctl = rl_ioctl; 808b2d3d26fSGleb Smirnoff ifp->if_start = rl_start; 809b2d3d26fSGleb Smirnoff ifp->if_init = rl_init; 810b2d3d26fSGleb Smirnoff ifp->if_capabilities = IFCAP_VLAN_MTU; 811b2d3d26fSGleb Smirnoff /* Check WOL for RTL8139B or newer controllers. */ 812b2d3d26fSGleb Smirnoff if (sc->rl_type == RL_8139 && 813b2d3d26fSGleb Smirnoff pci_find_cap(sc->rl_dev, PCIY_PMG, &pmc) == 0) { 814b2d3d26fSGleb Smirnoff hwrev = CSR_READ_4(sc, RL_TXCFG) & RL_TXCFG_HWREV; 815b2d3d26fSGleb Smirnoff switch (hwrev) { 816b2d3d26fSGleb Smirnoff case RL_HWREV_8139B: 817b2d3d26fSGleb Smirnoff case RL_HWREV_8130: 818b2d3d26fSGleb Smirnoff case RL_HWREV_8139C: 819b2d3d26fSGleb Smirnoff case RL_HWREV_8139D: 820b2d3d26fSGleb Smirnoff case RL_HWREV_8101: 821b2d3d26fSGleb Smirnoff case RL_HWREV_8100: 822b2d3d26fSGleb Smirnoff ifp->if_capabilities |= IFCAP_WOL; 823b2d3d26fSGleb Smirnoff /* Disable WOL. */ 824b2d3d26fSGleb Smirnoff rl_clrwol(sc); 825b2d3d26fSGleb Smirnoff break; 826b2d3d26fSGleb Smirnoff default: 827b2d3d26fSGleb Smirnoff break; 828b2d3d26fSGleb Smirnoff } 829b2d3d26fSGleb Smirnoff } 830b2d3d26fSGleb Smirnoff ifp->if_capenable = ifp->if_capabilities; 831b2d3d26fSGleb Smirnoff ifp->if_capenable &= ~(IFCAP_WOL_UCAST | IFCAP_WOL_MCAST); 832b2d3d26fSGleb Smirnoff #ifdef DEVICE_POLLING 833b2d3d26fSGleb Smirnoff ifp->if_capabilities |= IFCAP_POLLING; 834b2d3d26fSGleb Smirnoff #endif 835b2d3d26fSGleb Smirnoff IFQ_SET_MAXLEN(&ifp->if_snd, ifqmaxlen); 836b2d3d26fSGleb Smirnoff ifp->if_snd.ifq_drv_maxlen = ifqmaxlen; 837b2d3d26fSGleb Smirnoff IFQ_SET_READY(&ifp->if_snd); 838b2d3d26fSGleb Smirnoff 839b2d3d26fSGleb Smirnoff /* 840b2d3d26fSGleb Smirnoff * Call MI attach routine. 841b2d3d26fSGleb Smirnoff */ 842b2d3d26fSGleb Smirnoff ether_ifattach(ifp, eaddr); 843b2d3d26fSGleb Smirnoff 844b2d3d26fSGleb Smirnoff /* Hook interrupt last to avoid having to lock softc */ 845b2d3d26fSGleb Smirnoff error = bus_setup_intr(dev, sc->rl_irq[0], INTR_TYPE_NET | INTR_MPSAFE, 846b2d3d26fSGleb Smirnoff NULL, rl_intr, sc, &sc->rl_intrhand[0]); 847b2d3d26fSGleb Smirnoff if (error) { 848b2d3d26fSGleb Smirnoff device_printf(sc->rl_dev, "couldn't set up irq\n"); 849b2d3d26fSGleb Smirnoff ether_ifdetach(ifp); 850b2d3d26fSGleb Smirnoff } 851b2d3d26fSGleb Smirnoff 852b2d3d26fSGleb Smirnoff fail: 853b2d3d26fSGleb Smirnoff if (error) 854b2d3d26fSGleb Smirnoff rl_detach(dev); 855b2d3d26fSGleb Smirnoff 856b2d3d26fSGleb Smirnoff return (error); 857b2d3d26fSGleb Smirnoff } 858b2d3d26fSGleb Smirnoff 859b2d3d26fSGleb Smirnoff /* 860b2d3d26fSGleb Smirnoff * Shutdown hardware and free up resources. This can be called any 861b2d3d26fSGleb Smirnoff * time after the mutex has been initialized. It is called in both 862b2d3d26fSGleb Smirnoff * the error case in attach and the normal detach case so it needs 863b2d3d26fSGleb Smirnoff * to be careful about only freeing resources that have actually been 864b2d3d26fSGleb Smirnoff * allocated. 865b2d3d26fSGleb Smirnoff */ 866b2d3d26fSGleb Smirnoff static int 867b2d3d26fSGleb Smirnoff rl_detach(device_t dev) 868b2d3d26fSGleb Smirnoff { 869b2d3d26fSGleb Smirnoff struct rl_softc *sc; 870b2d3d26fSGleb Smirnoff struct ifnet *ifp; 871b2d3d26fSGleb Smirnoff 872b2d3d26fSGleb Smirnoff sc = device_get_softc(dev); 873b2d3d26fSGleb Smirnoff ifp = sc->rl_ifp; 874b2d3d26fSGleb Smirnoff 875b2d3d26fSGleb Smirnoff KASSERT(mtx_initialized(&sc->rl_mtx), ("rl mutex not initialized")); 876b2d3d26fSGleb Smirnoff 877b2d3d26fSGleb Smirnoff #ifdef DEVICE_POLLING 878b2d3d26fSGleb Smirnoff if (ifp->if_capenable & IFCAP_POLLING) 879b2d3d26fSGleb Smirnoff ether_poll_deregister(ifp); 880b2d3d26fSGleb Smirnoff #endif 881b2d3d26fSGleb Smirnoff /* These should only be active if attach succeeded */ 882b2d3d26fSGleb Smirnoff if (device_is_attached(dev)) { 883b2d3d26fSGleb Smirnoff RL_LOCK(sc); 884b2d3d26fSGleb Smirnoff rl_stop(sc); 885b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 886b2d3d26fSGleb Smirnoff callout_drain(&sc->rl_stat_callout); 887b2d3d26fSGleb Smirnoff ether_ifdetach(ifp); 888b2d3d26fSGleb Smirnoff } 889b2d3d26fSGleb Smirnoff #if 0 890b2d3d26fSGleb Smirnoff sc->suspended = 1; 891b2d3d26fSGleb Smirnoff #endif 892b2d3d26fSGleb Smirnoff if (sc->rl_miibus) 893b2d3d26fSGleb Smirnoff device_delete_child(dev, sc->rl_miibus); 894b2d3d26fSGleb Smirnoff bus_generic_detach(dev); 895b2d3d26fSGleb Smirnoff 896b2d3d26fSGleb Smirnoff if (sc->rl_intrhand[0]) 897b2d3d26fSGleb Smirnoff bus_teardown_intr(dev, sc->rl_irq[0], sc->rl_intrhand[0]); 898b2d3d26fSGleb Smirnoff if (sc->rl_irq[0]) 899b2d3d26fSGleb Smirnoff bus_release_resource(dev, SYS_RES_IRQ, 0, sc->rl_irq[0]); 900b2d3d26fSGleb Smirnoff if (sc->rl_res) 901b2d3d26fSGleb Smirnoff bus_release_resource(dev, sc->rl_res_type, sc->rl_res_id, 902b2d3d26fSGleb Smirnoff sc->rl_res); 903b2d3d26fSGleb Smirnoff 904b2d3d26fSGleb Smirnoff if (ifp) 905b2d3d26fSGleb Smirnoff if_free(ifp); 906b2d3d26fSGleb Smirnoff 907b2d3d26fSGleb Smirnoff rl_dma_free(sc); 908b2d3d26fSGleb Smirnoff 909b2d3d26fSGleb Smirnoff mtx_destroy(&sc->rl_mtx); 910b2d3d26fSGleb Smirnoff 911b2d3d26fSGleb Smirnoff return (0); 912b2d3d26fSGleb Smirnoff } 913b2d3d26fSGleb Smirnoff 914b2d3d26fSGleb Smirnoff static int 915b2d3d26fSGleb Smirnoff rl_dma_alloc(struct rl_softc *sc) 916b2d3d26fSGleb Smirnoff { 917b2d3d26fSGleb Smirnoff struct rl_dmamap_arg ctx; 918b2d3d26fSGleb Smirnoff int error, i; 919b2d3d26fSGleb Smirnoff 920b2d3d26fSGleb Smirnoff /* 921b2d3d26fSGleb Smirnoff * Allocate the parent bus DMA tag appropriate for PCI. 922b2d3d26fSGleb Smirnoff */ 923b2d3d26fSGleb Smirnoff error = bus_dma_tag_create(bus_get_dma_tag(sc->rl_dev), /* parent */ 924b2d3d26fSGleb Smirnoff 1, 0, /* alignment, boundary */ 925b2d3d26fSGleb Smirnoff BUS_SPACE_MAXADDR_32BIT, /* lowaddr */ 926b2d3d26fSGleb Smirnoff BUS_SPACE_MAXADDR, /* highaddr */ 927b2d3d26fSGleb Smirnoff NULL, NULL, /* filter, filterarg */ 928b2d3d26fSGleb Smirnoff BUS_SPACE_MAXSIZE_32BIT, 0, /* maxsize, nsegments */ 929b2d3d26fSGleb Smirnoff BUS_SPACE_MAXSIZE_32BIT, /* maxsegsize */ 930b2d3d26fSGleb Smirnoff 0, /* flags */ 931b2d3d26fSGleb Smirnoff NULL, NULL, /* lockfunc, lockarg */ 932b2d3d26fSGleb Smirnoff &sc->rl_parent_tag); 933b2d3d26fSGleb Smirnoff if (error) { 934b2d3d26fSGleb Smirnoff device_printf(sc->rl_dev, 935b2d3d26fSGleb Smirnoff "failed to create parent DMA tag.\n"); 936b2d3d26fSGleb Smirnoff goto fail; 937b2d3d26fSGleb Smirnoff } 938b2d3d26fSGleb Smirnoff /* Create DMA tag for Rx memory block. */ 939b2d3d26fSGleb Smirnoff error = bus_dma_tag_create(sc->rl_parent_tag, /* parent */ 940b2d3d26fSGleb Smirnoff RL_RX_8139_BUF_ALIGN, 0, /* alignment, boundary */ 941b2d3d26fSGleb Smirnoff BUS_SPACE_MAXADDR, /* lowaddr */ 942b2d3d26fSGleb Smirnoff BUS_SPACE_MAXADDR, /* highaddr */ 943b2d3d26fSGleb Smirnoff NULL, NULL, /* filter, filterarg */ 944b2d3d26fSGleb Smirnoff RL_RXBUFLEN + RL_RX_8139_BUF_GUARD_SZ, 1, /* maxsize,nsegments */ 945b2d3d26fSGleb Smirnoff RL_RXBUFLEN + RL_RX_8139_BUF_GUARD_SZ, /* maxsegsize */ 946b2d3d26fSGleb Smirnoff 0, /* flags */ 947b2d3d26fSGleb Smirnoff NULL, NULL, /* lockfunc, lockarg */ 948b2d3d26fSGleb Smirnoff &sc->rl_cdata.rl_rx_tag); 949b2d3d26fSGleb Smirnoff if (error) { 950b2d3d26fSGleb Smirnoff device_printf(sc->rl_dev, 951b2d3d26fSGleb Smirnoff "failed to create Rx memory block DMA tag.\n"); 952b2d3d26fSGleb Smirnoff goto fail; 953b2d3d26fSGleb Smirnoff } 954b2d3d26fSGleb Smirnoff /* Create DMA tag for Tx buffer. */ 955b2d3d26fSGleb Smirnoff error = bus_dma_tag_create(sc->rl_parent_tag, /* parent */ 956b2d3d26fSGleb Smirnoff RL_TX_8139_BUF_ALIGN, 0, /* alignment, boundary */ 957b2d3d26fSGleb Smirnoff BUS_SPACE_MAXADDR, /* lowaddr */ 958b2d3d26fSGleb Smirnoff BUS_SPACE_MAXADDR, /* highaddr */ 959b2d3d26fSGleb Smirnoff NULL, NULL, /* filter, filterarg */ 960b2d3d26fSGleb Smirnoff MCLBYTES, 1, /* maxsize, nsegments */ 961b2d3d26fSGleb Smirnoff MCLBYTES, /* maxsegsize */ 962b2d3d26fSGleb Smirnoff 0, /* flags */ 963b2d3d26fSGleb Smirnoff NULL, NULL, /* lockfunc, lockarg */ 964b2d3d26fSGleb Smirnoff &sc->rl_cdata.rl_tx_tag); 965b2d3d26fSGleb Smirnoff if (error) { 966b2d3d26fSGleb Smirnoff device_printf(sc->rl_dev, "failed to create Tx DMA tag.\n"); 967b2d3d26fSGleb Smirnoff goto fail; 968b2d3d26fSGleb Smirnoff } 969b2d3d26fSGleb Smirnoff 970b2d3d26fSGleb Smirnoff /* 971b2d3d26fSGleb Smirnoff * Allocate DMA'able memory and load DMA map for Rx memory block. 972b2d3d26fSGleb Smirnoff */ 973b2d3d26fSGleb Smirnoff error = bus_dmamem_alloc(sc->rl_cdata.rl_rx_tag, 974b2d3d26fSGleb Smirnoff (void **)&sc->rl_cdata.rl_rx_buf, BUS_DMA_WAITOK | 975b2d3d26fSGleb Smirnoff BUS_DMA_COHERENT | BUS_DMA_ZERO, &sc->rl_cdata.rl_rx_dmamap); 976b2d3d26fSGleb Smirnoff if (error != 0) { 977b2d3d26fSGleb Smirnoff device_printf(sc->rl_dev, 978b2d3d26fSGleb Smirnoff "failed to allocate Rx DMA memory block.\n"); 979b2d3d26fSGleb Smirnoff goto fail; 980b2d3d26fSGleb Smirnoff } 981b2d3d26fSGleb Smirnoff ctx.rl_busaddr = 0; 982b2d3d26fSGleb Smirnoff error = bus_dmamap_load(sc->rl_cdata.rl_rx_tag, 983b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_rx_dmamap, sc->rl_cdata.rl_rx_buf, 984b2d3d26fSGleb Smirnoff RL_RXBUFLEN + RL_RX_8139_BUF_GUARD_SZ, rl_dmamap_cb, &ctx, 985b2d3d26fSGleb Smirnoff BUS_DMA_NOWAIT); 986b2d3d26fSGleb Smirnoff if (error != 0 || ctx.rl_busaddr == 0) { 987b2d3d26fSGleb Smirnoff device_printf(sc->rl_dev, 988b2d3d26fSGleb Smirnoff "could not load Rx DMA memory block.\n"); 989b2d3d26fSGleb Smirnoff goto fail; 990b2d3d26fSGleb Smirnoff } 991b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_rx_buf_paddr = ctx.rl_busaddr; 992b2d3d26fSGleb Smirnoff 993b2d3d26fSGleb Smirnoff /* Create DMA maps for Tx buffers. */ 994b2d3d26fSGleb Smirnoff for (i = 0; i < RL_TX_LIST_CNT; i++) { 995b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_tx_chain[i] = NULL; 996b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_tx_dmamap[i] = NULL; 997b2d3d26fSGleb Smirnoff error = bus_dmamap_create(sc->rl_cdata.rl_tx_tag, 0, 998b2d3d26fSGleb Smirnoff &sc->rl_cdata.rl_tx_dmamap[i]); 999b2d3d26fSGleb Smirnoff if (error != 0) { 1000b2d3d26fSGleb Smirnoff device_printf(sc->rl_dev, 1001b2d3d26fSGleb Smirnoff "could not create Tx dmamap.\n"); 1002b2d3d26fSGleb Smirnoff goto fail; 1003b2d3d26fSGleb Smirnoff } 1004b2d3d26fSGleb Smirnoff } 1005b2d3d26fSGleb Smirnoff 1006b2d3d26fSGleb Smirnoff /* Leave a few bytes before the start of the RX ring buffer. */ 1007b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_rx_buf_ptr = sc->rl_cdata.rl_rx_buf; 1008b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_rx_buf += RL_RX_8139_BUF_RESERVE; 1009b2d3d26fSGleb Smirnoff 1010b2d3d26fSGleb Smirnoff fail: 1011b2d3d26fSGleb Smirnoff return (error); 1012b2d3d26fSGleb Smirnoff } 1013b2d3d26fSGleb Smirnoff 1014b2d3d26fSGleb Smirnoff static void 1015b2d3d26fSGleb Smirnoff rl_dma_free(struct rl_softc *sc) 1016b2d3d26fSGleb Smirnoff { 1017b2d3d26fSGleb Smirnoff int i; 1018b2d3d26fSGleb Smirnoff 1019b2d3d26fSGleb Smirnoff /* Rx memory block. */ 1020b2d3d26fSGleb Smirnoff if (sc->rl_cdata.rl_rx_tag != NULL) { 1021b2d3d26fSGleb Smirnoff if (sc->rl_cdata.rl_rx_buf_paddr != 0) 1022b2d3d26fSGleb Smirnoff bus_dmamap_unload(sc->rl_cdata.rl_rx_tag, 1023b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_rx_dmamap); 1024b2d3d26fSGleb Smirnoff if (sc->rl_cdata.rl_rx_buf_ptr != NULL) 1025b2d3d26fSGleb Smirnoff bus_dmamem_free(sc->rl_cdata.rl_rx_tag, 1026b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_rx_buf_ptr, 1027b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_rx_dmamap); 1028b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_rx_buf_ptr = NULL; 1029b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_rx_buf = NULL; 1030b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_rx_buf_paddr = 0; 1031b2d3d26fSGleb Smirnoff bus_dma_tag_destroy(sc->rl_cdata.rl_rx_tag); 1032b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_tx_tag = NULL; 1033b2d3d26fSGleb Smirnoff } 1034b2d3d26fSGleb Smirnoff 1035b2d3d26fSGleb Smirnoff /* Tx buffers. */ 1036b2d3d26fSGleb Smirnoff if (sc->rl_cdata.rl_tx_tag != NULL) { 1037b2d3d26fSGleb Smirnoff for (i = 0; i < RL_TX_LIST_CNT; i++) { 1038b2d3d26fSGleb Smirnoff if (sc->rl_cdata.rl_tx_dmamap[i] != NULL) { 1039b2d3d26fSGleb Smirnoff bus_dmamap_destroy( 1040b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_tx_tag, 1041b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_tx_dmamap[i]); 1042b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_tx_dmamap[i] = NULL; 1043b2d3d26fSGleb Smirnoff } 1044b2d3d26fSGleb Smirnoff } 1045b2d3d26fSGleb Smirnoff bus_dma_tag_destroy(sc->rl_cdata.rl_tx_tag); 1046b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_tx_tag = NULL; 1047b2d3d26fSGleb Smirnoff } 1048b2d3d26fSGleb Smirnoff 1049b2d3d26fSGleb Smirnoff if (sc->rl_parent_tag != NULL) { 1050b2d3d26fSGleb Smirnoff bus_dma_tag_destroy(sc->rl_parent_tag); 1051b2d3d26fSGleb Smirnoff sc->rl_parent_tag = NULL; 1052b2d3d26fSGleb Smirnoff } 1053b2d3d26fSGleb Smirnoff } 1054b2d3d26fSGleb Smirnoff 1055b2d3d26fSGleb Smirnoff /* 1056b2d3d26fSGleb Smirnoff * Initialize the transmit descriptors. 1057b2d3d26fSGleb Smirnoff */ 1058b2d3d26fSGleb Smirnoff static int 1059b2d3d26fSGleb Smirnoff rl_list_tx_init(struct rl_softc *sc) 1060b2d3d26fSGleb Smirnoff { 1061b2d3d26fSGleb Smirnoff struct rl_chain_data *cd; 1062b2d3d26fSGleb Smirnoff int i; 1063b2d3d26fSGleb Smirnoff 1064b2d3d26fSGleb Smirnoff RL_LOCK_ASSERT(sc); 1065b2d3d26fSGleb Smirnoff 1066b2d3d26fSGleb Smirnoff cd = &sc->rl_cdata; 1067b2d3d26fSGleb Smirnoff for (i = 0; i < RL_TX_LIST_CNT; i++) { 1068b2d3d26fSGleb Smirnoff cd->rl_tx_chain[i] = NULL; 1069b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, 1070b2d3d26fSGleb Smirnoff RL_TXADDR0 + (i * sizeof(uint32_t)), 0x0000000); 1071b2d3d26fSGleb Smirnoff } 1072b2d3d26fSGleb Smirnoff 1073b2d3d26fSGleb Smirnoff sc->rl_cdata.cur_tx = 0; 1074b2d3d26fSGleb Smirnoff sc->rl_cdata.last_tx = 0; 1075b2d3d26fSGleb Smirnoff 1076b2d3d26fSGleb Smirnoff return (0); 1077b2d3d26fSGleb Smirnoff } 1078b2d3d26fSGleb Smirnoff 1079b2d3d26fSGleb Smirnoff static int 1080b2d3d26fSGleb Smirnoff rl_list_rx_init(struct rl_softc *sc) 1081b2d3d26fSGleb Smirnoff { 1082b2d3d26fSGleb Smirnoff 1083b2d3d26fSGleb Smirnoff RL_LOCK_ASSERT(sc); 1084b2d3d26fSGleb Smirnoff 1085b2d3d26fSGleb Smirnoff bzero(sc->rl_cdata.rl_rx_buf_ptr, 1086b2d3d26fSGleb Smirnoff RL_RXBUFLEN + RL_RX_8139_BUF_GUARD_SZ); 1087b2d3d26fSGleb Smirnoff bus_dmamap_sync(sc->rl_cdata.rl_tx_tag, sc->rl_cdata.rl_rx_dmamap, 1088b2d3d26fSGleb Smirnoff BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 1089b2d3d26fSGleb Smirnoff 1090b2d3d26fSGleb Smirnoff return (0); 1091b2d3d26fSGleb Smirnoff } 1092b2d3d26fSGleb Smirnoff 1093b2d3d26fSGleb Smirnoff /* 1094b2d3d26fSGleb Smirnoff * A frame has been uploaded: pass the resulting mbuf chain up to 1095b2d3d26fSGleb Smirnoff * the higher level protocols. 1096b2d3d26fSGleb Smirnoff * 1097b2d3d26fSGleb Smirnoff * You know there's something wrong with a PCI bus-master chip design 1098b2d3d26fSGleb Smirnoff * when you have to use m_devget(). 1099b2d3d26fSGleb Smirnoff * 1100b2d3d26fSGleb Smirnoff * The receive operation is badly documented in the datasheet, so I'll 1101b2d3d26fSGleb Smirnoff * attempt to document it here. The driver provides a buffer area and 1102b2d3d26fSGleb Smirnoff * places its base address in the RX buffer start address register. 1103b2d3d26fSGleb Smirnoff * The chip then begins copying frames into the RX buffer. Each frame 1104b2d3d26fSGleb Smirnoff * is preceded by a 32-bit RX status word which specifies the length 1105b2d3d26fSGleb Smirnoff * of the frame and certain other status bits. Each frame (starting with 1106b2d3d26fSGleb Smirnoff * the status word) is also 32-bit aligned. The frame length is in the 1107b2d3d26fSGleb Smirnoff * first 16 bits of the status word; the lower 15 bits correspond with 1108b2d3d26fSGleb Smirnoff * the 'rx status register' mentioned in the datasheet. 1109b2d3d26fSGleb Smirnoff * 1110b2d3d26fSGleb Smirnoff * Note: to make the Alpha happy, the frame payload needs to be aligned 1111b2d3d26fSGleb Smirnoff * on a 32-bit boundary. To achieve this, we pass RL_ETHER_ALIGN (2 bytes) 1112b2d3d26fSGleb Smirnoff * as the offset argument to m_devget(). 1113b2d3d26fSGleb Smirnoff */ 1114b2d3d26fSGleb Smirnoff static int 1115b2d3d26fSGleb Smirnoff rl_rxeof(struct rl_softc *sc) 1116b2d3d26fSGleb Smirnoff { 1117b2d3d26fSGleb Smirnoff struct mbuf *m; 1118b2d3d26fSGleb Smirnoff struct ifnet *ifp = sc->rl_ifp; 1119b2d3d26fSGleb Smirnoff uint8_t *rxbufpos; 1120b2d3d26fSGleb Smirnoff int total_len = 0; 1121b2d3d26fSGleb Smirnoff int wrap = 0; 1122b2d3d26fSGleb Smirnoff int rx_npkts = 0; 1123b2d3d26fSGleb Smirnoff uint32_t rxstat; 1124b2d3d26fSGleb Smirnoff uint16_t cur_rx; 1125b2d3d26fSGleb Smirnoff uint16_t limit; 1126b2d3d26fSGleb Smirnoff uint16_t max_bytes, rx_bytes = 0; 1127b2d3d26fSGleb Smirnoff 1128b2d3d26fSGleb Smirnoff RL_LOCK_ASSERT(sc); 1129b2d3d26fSGleb Smirnoff 1130b2d3d26fSGleb Smirnoff bus_dmamap_sync(sc->rl_cdata.rl_rx_tag, sc->rl_cdata.rl_rx_dmamap, 1131b2d3d26fSGleb Smirnoff BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE); 1132b2d3d26fSGleb Smirnoff 1133b2d3d26fSGleb Smirnoff cur_rx = (CSR_READ_2(sc, RL_CURRXADDR) + 16) % RL_RXBUFLEN; 1134b2d3d26fSGleb Smirnoff 1135b2d3d26fSGleb Smirnoff /* Do not try to read past this point. */ 1136b2d3d26fSGleb Smirnoff limit = CSR_READ_2(sc, RL_CURRXBUF) % RL_RXBUFLEN; 1137b2d3d26fSGleb Smirnoff 1138b2d3d26fSGleb Smirnoff if (limit < cur_rx) 1139b2d3d26fSGleb Smirnoff max_bytes = (RL_RXBUFLEN - cur_rx) + limit; 1140b2d3d26fSGleb Smirnoff else 1141b2d3d26fSGleb Smirnoff max_bytes = limit - cur_rx; 1142b2d3d26fSGleb Smirnoff 1143b2d3d26fSGleb Smirnoff while((CSR_READ_1(sc, RL_COMMAND) & RL_CMD_EMPTY_RXBUF) == 0) { 1144b2d3d26fSGleb Smirnoff #ifdef DEVICE_POLLING 1145b2d3d26fSGleb Smirnoff if (ifp->if_capenable & IFCAP_POLLING) { 1146b2d3d26fSGleb Smirnoff if (sc->rxcycles <= 0) 1147b2d3d26fSGleb Smirnoff break; 1148b2d3d26fSGleb Smirnoff sc->rxcycles--; 1149b2d3d26fSGleb Smirnoff } 1150b2d3d26fSGleb Smirnoff #endif 1151b2d3d26fSGleb Smirnoff rxbufpos = sc->rl_cdata.rl_rx_buf + cur_rx; 1152b2d3d26fSGleb Smirnoff rxstat = le32toh(*(uint32_t *)rxbufpos); 1153b2d3d26fSGleb Smirnoff 1154b2d3d26fSGleb Smirnoff /* 1155b2d3d26fSGleb Smirnoff * Here's a totally undocumented fact for you. When the 1156b2d3d26fSGleb Smirnoff * RealTek chip is in the process of copying a packet into 1157b2d3d26fSGleb Smirnoff * RAM for you, the length will be 0xfff0. If you spot a 1158b2d3d26fSGleb Smirnoff * packet header with this value, you need to stop. The 1159b2d3d26fSGleb Smirnoff * datasheet makes absolutely no mention of this and 1160b2d3d26fSGleb Smirnoff * RealTek should be shot for this. 1161b2d3d26fSGleb Smirnoff */ 1162b2d3d26fSGleb Smirnoff total_len = rxstat >> 16; 1163b2d3d26fSGleb Smirnoff if (total_len == RL_RXSTAT_UNFINISHED) 1164b2d3d26fSGleb Smirnoff break; 1165b2d3d26fSGleb Smirnoff 1166b2d3d26fSGleb Smirnoff if (!(rxstat & RL_RXSTAT_RXOK) || 1167b2d3d26fSGleb Smirnoff total_len < ETHER_MIN_LEN || 1168b2d3d26fSGleb Smirnoff total_len > ETHER_MAX_LEN + ETHER_VLAN_ENCAP_LEN) { 1169e3393dafSGleb Smirnoff if_inc_counter(ifp, IFCOUNTER_IERRORS, 1); 1170b2d3d26fSGleb Smirnoff ifp->if_drv_flags &= ~IFF_DRV_RUNNING; 1171b2d3d26fSGleb Smirnoff rl_init_locked(sc); 1172b2d3d26fSGleb Smirnoff return (rx_npkts); 1173b2d3d26fSGleb Smirnoff } 1174b2d3d26fSGleb Smirnoff 1175b2d3d26fSGleb Smirnoff /* No errors; receive the packet. */ 1176b2d3d26fSGleb Smirnoff rx_bytes += total_len + 4; 1177b2d3d26fSGleb Smirnoff 1178b2d3d26fSGleb Smirnoff /* 1179b2d3d26fSGleb Smirnoff * XXX The RealTek chip includes the CRC with every 1180b2d3d26fSGleb Smirnoff * received frame, and there's no way to turn this 1181b2d3d26fSGleb Smirnoff * behavior off (at least, I can't find anything in 1182b2d3d26fSGleb Smirnoff * the manual that explains how to do it) so we have 1183b2d3d26fSGleb Smirnoff * to trim off the CRC manually. 1184b2d3d26fSGleb Smirnoff */ 1185b2d3d26fSGleb Smirnoff total_len -= ETHER_CRC_LEN; 1186b2d3d26fSGleb Smirnoff 1187b2d3d26fSGleb Smirnoff /* 1188b2d3d26fSGleb Smirnoff * Avoid trying to read more bytes than we know 1189b2d3d26fSGleb Smirnoff * the chip has prepared for us. 1190b2d3d26fSGleb Smirnoff */ 1191b2d3d26fSGleb Smirnoff if (rx_bytes > max_bytes) 1192b2d3d26fSGleb Smirnoff break; 1193b2d3d26fSGleb Smirnoff 1194b2d3d26fSGleb Smirnoff rxbufpos = sc->rl_cdata.rl_rx_buf + 1195b2d3d26fSGleb Smirnoff ((cur_rx + sizeof(uint32_t)) % RL_RXBUFLEN); 1196b2d3d26fSGleb Smirnoff if (rxbufpos == (sc->rl_cdata.rl_rx_buf + RL_RXBUFLEN)) 1197b2d3d26fSGleb Smirnoff rxbufpos = sc->rl_cdata.rl_rx_buf; 1198b2d3d26fSGleb Smirnoff 1199b2d3d26fSGleb Smirnoff wrap = (sc->rl_cdata.rl_rx_buf + RL_RXBUFLEN) - rxbufpos; 1200b2d3d26fSGleb Smirnoff if (total_len > wrap) { 1201b2d3d26fSGleb Smirnoff m = m_devget(rxbufpos, total_len, RL_ETHER_ALIGN, ifp, 1202b2d3d26fSGleb Smirnoff NULL); 1203b2d3d26fSGleb Smirnoff if (m != NULL) 1204b2d3d26fSGleb Smirnoff m_copyback(m, wrap, total_len - wrap, 1205b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_rx_buf); 1206b2d3d26fSGleb Smirnoff cur_rx = (total_len - wrap + ETHER_CRC_LEN); 1207b2d3d26fSGleb Smirnoff } else { 1208b2d3d26fSGleb Smirnoff m = m_devget(rxbufpos, total_len, RL_ETHER_ALIGN, ifp, 1209b2d3d26fSGleb Smirnoff NULL); 1210b2d3d26fSGleb Smirnoff cur_rx += total_len + 4 + ETHER_CRC_LEN; 1211b2d3d26fSGleb Smirnoff } 1212b2d3d26fSGleb Smirnoff 1213b2d3d26fSGleb Smirnoff /* Round up to 32-bit boundary. */ 1214b2d3d26fSGleb Smirnoff cur_rx = (cur_rx + 3) & ~3; 1215b2d3d26fSGleb Smirnoff CSR_WRITE_2(sc, RL_CURRXADDR, cur_rx - 16); 1216b2d3d26fSGleb Smirnoff 1217b2d3d26fSGleb Smirnoff if (m == NULL) { 1218e3393dafSGleb Smirnoff if_inc_counter(ifp, IFCOUNTER_IQDROPS, 1); 1219b2d3d26fSGleb Smirnoff continue; 1220b2d3d26fSGleb Smirnoff } 1221b2d3d26fSGleb Smirnoff 1222e3393dafSGleb Smirnoff if_inc_counter(ifp, IFCOUNTER_IPACKETS, 1); 1223b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 1224b2d3d26fSGleb Smirnoff (*ifp->if_input)(ifp, m); 1225b2d3d26fSGleb Smirnoff RL_LOCK(sc); 1226b2d3d26fSGleb Smirnoff rx_npkts++; 1227b2d3d26fSGleb Smirnoff } 1228b2d3d26fSGleb Smirnoff 1229b2d3d26fSGleb Smirnoff /* No need to sync Rx memory block as we didn't modify it. */ 1230b2d3d26fSGleb Smirnoff return (rx_npkts); 1231b2d3d26fSGleb Smirnoff } 1232b2d3d26fSGleb Smirnoff 1233b2d3d26fSGleb Smirnoff /* 1234b2d3d26fSGleb Smirnoff * A frame was downloaded to the chip. It's safe for us to clean up 1235b2d3d26fSGleb Smirnoff * the list buffers. 1236b2d3d26fSGleb Smirnoff */ 1237b2d3d26fSGleb Smirnoff static void 1238b2d3d26fSGleb Smirnoff rl_txeof(struct rl_softc *sc) 1239b2d3d26fSGleb Smirnoff { 1240b2d3d26fSGleb Smirnoff struct ifnet *ifp = sc->rl_ifp; 1241b2d3d26fSGleb Smirnoff uint32_t txstat; 1242b2d3d26fSGleb Smirnoff 1243b2d3d26fSGleb Smirnoff RL_LOCK_ASSERT(sc); 1244b2d3d26fSGleb Smirnoff 1245b2d3d26fSGleb Smirnoff /* 1246b2d3d26fSGleb Smirnoff * Go through our tx list and free mbufs for those 1247b2d3d26fSGleb Smirnoff * frames that have been uploaded. 1248b2d3d26fSGleb Smirnoff */ 1249b2d3d26fSGleb Smirnoff do { 1250b2d3d26fSGleb Smirnoff if (RL_LAST_TXMBUF(sc) == NULL) 1251b2d3d26fSGleb Smirnoff break; 1252b2d3d26fSGleb Smirnoff txstat = CSR_READ_4(sc, RL_LAST_TXSTAT(sc)); 1253b2d3d26fSGleb Smirnoff if (!(txstat & (RL_TXSTAT_TX_OK| 1254b2d3d26fSGleb Smirnoff RL_TXSTAT_TX_UNDERRUN|RL_TXSTAT_TXABRT))) 1255b2d3d26fSGleb Smirnoff break; 1256b2d3d26fSGleb Smirnoff 1257e3393dafSGleb Smirnoff if_inc_counter(ifp, IFCOUNTER_COLLISIONS, (txstat & RL_TXSTAT_COLLCNT) >> 24); 1258b2d3d26fSGleb Smirnoff 1259b2d3d26fSGleb Smirnoff bus_dmamap_sync(sc->rl_cdata.rl_tx_tag, RL_LAST_DMAMAP(sc), 1260b2d3d26fSGleb Smirnoff BUS_DMASYNC_POSTWRITE); 1261b2d3d26fSGleb Smirnoff bus_dmamap_unload(sc->rl_cdata.rl_tx_tag, RL_LAST_DMAMAP(sc)); 1262b2d3d26fSGleb Smirnoff m_freem(RL_LAST_TXMBUF(sc)); 1263b2d3d26fSGleb Smirnoff RL_LAST_TXMBUF(sc) = NULL; 1264b2d3d26fSGleb Smirnoff /* 1265b2d3d26fSGleb Smirnoff * If there was a transmit underrun, bump the TX threshold. 1266b2d3d26fSGleb Smirnoff * Make sure not to overflow the 63 * 32byte we can address 1267b2d3d26fSGleb Smirnoff * with the 6 available bit. 1268b2d3d26fSGleb Smirnoff */ 1269b2d3d26fSGleb Smirnoff if ((txstat & RL_TXSTAT_TX_UNDERRUN) && 1270b2d3d26fSGleb Smirnoff (sc->rl_txthresh < 2016)) 1271b2d3d26fSGleb Smirnoff sc->rl_txthresh += 32; 1272b2d3d26fSGleb Smirnoff if (txstat & RL_TXSTAT_TX_OK) 1273e3393dafSGleb Smirnoff if_inc_counter(ifp, IFCOUNTER_OPACKETS, 1); 1274b2d3d26fSGleb Smirnoff else { 1275b2d3d26fSGleb Smirnoff int oldthresh; 1276e3393dafSGleb Smirnoff if_inc_counter(ifp, IFCOUNTER_OERRORS, 1); 1277b2d3d26fSGleb Smirnoff if ((txstat & RL_TXSTAT_TXABRT) || 1278b2d3d26fSGleb Smirnoff (txstat & RL_TXSTAT_OUTOFWIN)) 1279b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_TXCFG, RL_TXCFG_CONFIG); 1280b2d3d26fSGleb Smirnoff oldthresh = sc->rl_txthresh; 1281b2d3d26fSGleb Smirnoff /* error recovery */ 1282b2d3d26fSGleb Smirnoff ifp->if_drv_flags &= ~IFF_DRV_RUNNING; 1283b2d3d26fSGleb Smirnoff rl_init_locked(sc); 1284b2d3d26fSGleb Smirnoff /* restore original threshold */ 1285b2d3d26fSGleb Smirnoff sc->rl_txthresh = oldthresh; 1286b2d3d26fSGleb Smirnoff return; 1287b2d3d26fSGleb Smirnoff } 1288b2d3d26fSGleb Smirnoff RL_INC(sc->rl_cdata.last_tx); 1289b2d3d26fSGleb Smirnoff ifp->if_drv_flags &= ~IFF_DRV_OACTIVE; 1290b2d3d26fSGleb Smirnoff } while (sc->rl_cdata.last_tx != sc->rl_cdata.cur_tx); 1291b2d3d26fSGleb Smirnoff 1292b2d3d26fSGleb Smirnoff if (RL_LAST_TXMBUF(sc) == NULL) 1293b2d3d26fSGleb Smirnoff sc->rl_watchdog_timer = 0; 1294b2d3d26fSGleb Smirnoff } 1295b2d3d26fSGleb Smirnoff 1296b2d3d26fSGleb Smirnoff static void 1297b2d3d26fSGleb Smirnoff rl_twister_update(struct rl_softc *sc) 1298b2d3d26fSGleb Smirnoff { 1299b2d3d26fSGleb Smirnoff uint16_t linktest; 1300b2d3d26fSGleb Smirnoff /* 1301b2d3d26fSGleb Smirnoff * Table provided by RealTek (Kinston <shangh@realtek.com.tw>) for 1302b2d3d26fSGleb Smirnoff * Linux driver. Values undocumented otherwise. 1303b2d3d26fSGleb Smirnoff */ 1304b2d3d26fSGleb Smirnoff static const uint32_t param[4][4] = { 1305b2d3d26fSGleb Smirnoff {0xcb39de43, 0xcb39ce43, 0xfb38de03, 0xcb38de43}, 1306b2d3d26fSGleb Smirnoff {0xcb39de43, 0xcb39ce43, 0xcb39ce83, 0xcb39ce83}, 1307b2d3d26fSGleb Smirnoff {0xcb39de43, 0xcb39ce43, 0xcb39ce83, 0xcb39ce83}, 1308b2d3d26fSGleb Smirnoff {0xbb39de43, 0xbb39ce43, 0xbb39ce83, 0xbb39ce83} 1309b2d3d26fSGleb Smirnoff }; 1310b2d3d26fSGleb Smirnoff 1311b2d3d26fSGleb Smirnoff /* 1312b2d3d26fSGleb Smirnoff * Tune the so-called twister registers of the RTL8139. These 1313b2d3d26fSGleb Smirnoff * are used to compensate for impedance mismatches. The 1314b2d3d26fSGleb Smirnoff * method for tuning these registers is undocumented and the 1315b2d3d26fSGleb Smirnoff * following procedure is collected from public sources. 1316b2d3d26fSGleb Smirnoff */ 1317b2d3d26fSGleb Smirnoff switch (sc->rl_twister) 1318b2d3d26fSGleb Smirnoff { 1319b2d3d26fSGleb Smirnoff case CHK_LINK: 1320b2d3d26fSGleb Smirnoff /* 1321b2d3d26fSGleb Smirnoff * If we have a sufficient link, then we can proceed in 1322b2d3d26fSGleb Smirnoff * the state machine to the next stage. If not, then 1323b2d3d26fSGleb Smirnoff * disable further tuning after writing sane defaults. 1324b2d3d26fSGleb Smirnoff */ 1325b2d3d26fSGleb Smirnoff if (CSR_READ_2(sc, RL_CSCFG) & RL_CSCFG_LINK_OK) { 1326b2d3d26fSGleb Smirnoff CSR_WRITE_2(sc, RL_CSCFG, RL_CSCFG_LINK_DOWN_OFF_CMD); 1327b2d3d26fSGleb Smirnoff sc->rl_twister = FIND_ROW; 1328b2d3d26fSGleb Smirnoff } else { 1329b2d3d26fSGleb Smirnoff CSR_WRITE_2(sc, RL_CSCFG, RL_CSCFG_LINK_DOWN_CMD); 1330b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_NWAYTST, RL_NWAYTST_CBL_TEST); 1331b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_PARA78, RL_PARA78_DEF); 1332b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_PARA7C, RL_PARA7C_DEF); 1333b2d3d26fSGleb Smirnoff sc->rl_twister = DONE; 1334b2d3d26fSGleb Smirnoff } 1335b2d3d26fSGleb Smirnoff break; 1336b2d3d26fSGleb Smirnoff case FIND_ROW: 1337b2d3d26fSGleb Smirnoff /* 1338b2d3d26fSGleb Smirnoff * Read how long it took to see the echo to find the tuning 1339b2d3d26fSGleb Smirnoff * row to use. 1340b2d3d26fSGleb Smirnoff */ 1341b2d3d26fSGleb Smirnoff linktest = CSR_READ_2(sc, RL_CSCFG) & RL_CSCFG_STATUS; 1342b2d3d26fSGleb Smirnoff if (linktest == RL_CSCFG_ROW3) 1343b2d3d26fSGleb Smirnoff sc->rl_twist_row = 3; 1344b2d3d26fSGleb Smirnoff else if (linktest == RL_CSCFG_ROW2) 1345b2d3d26fSGleb Smirnoff sc->rl_twist_row = 2; 1346b2d3d26fSGleb Smirnoff else if (linktest == RL_CSCFG_ROW1) 1347b2d3d26fSGleb Smirnoff sc->rl_twist_row = 1; 1348b2d3d26fSGleb Smirnoff else 1349b2d3d26fSGleb Smirnoff sc->rl_twist_row = 0; 1350b2d3d26fSGleb Smirnoff sc->rl_twist_col = 0; 1351b2d3d26fSGleb Smirnoff sc->rl_twister = SET_PARAM; 1352b2d3d26fSGleb Smirnoff break; 1353b2d3d26fSGleb Smirnoff case SET_PARAM: 1354b2d3d26fSGleb Smirnoff if (sc->rl_twist_col == 0) 1355b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_NWAYTST, RL_NWAYTST_RESET); 1356b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_PARA7C, 1357b2d3d26fSGleb Smirnoff param[sc->rl_twist_row][sc->rl_twist_col]); 1358b2d3d26fSGleb Smirnoff if (++sc->rl_twist_col == 4) { 1359b2d3d26fSGleb Smirnoff if (sc->rl_twist_row == 3) 1360b2d3d26fSGleb Smirnoff sc->rl_twister = RECHK_LONG; 1361b2d3d26fSGleb Smirnoff else 1362b2d3d26fSGleb Smirnoff sc->rl_twister = DONE; 1363b2d3d26fSGleb Smirnoff } 1364b2d3d26fSGleb Smirnoff break; 1365b2d3d26fSGleb Smirnoff case RECHK_LONG: 1366b2d3d26fSGleb Smirnoff /* 1367b2d3d26fSGleb Smirnoff * For long cables, we have to double check to make sure we 1368b2d3d26fSGleb Smirnoff * don't mistune. 1369b2d3d26fSGleb Smirnoff */ 1370b2d3d26fSGleb Smirnoff linktest = CSR_READ_2(sc, RL_CSCFG) & RL_CSCFG_STATUS; 1371b2d3d26fSGleb Smirnoff if (linktest == RL_CSCFG_ROW3) 1372b2d3d26fSGleb Smirnoff sc->rl_twister = DONE; 1373b2d3d26fSGleb Smirnoff else { 1374b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_PARA7C, RL_PARA7C_RETUNE); 1375b2d3d26fSGleb Smirnoff sc->rl_twister = RETUNE; 1376b2d3d26fSGleb Smirnoff } 1377b2d3d26fSGleb Smirnoff break; 1378b2d3d26fSGleb Smirnoff case RETUNE: 1379b2d3d26fSGleb Smirnoff /* Retune for a shorter cable (try column 2) */ 1380b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_NWAYTST, RL_NWAYTST_CBL_TEST); 1381b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_PARA78, RL_PARA78_DEF); 1382b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_PARA7C, RL_PARA7C_DEF); 1383b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_NWAYTST, RL_NWAYTST_RESET); 1384b2d3d26fSGleb Smirnoff sc->rl_twist_row--; 1385b2d3d26fSGleb Smirnoff sc->rl_twist_col = 0; 1386b2d3d26fSGleb Smirnoff sc->rl_twister = SET_PARAM; 1387b2d3d26fSGleb Smirnoff break; 1388b2d3d26fSGleb Smirnoff 1389b2d3d26fSGleb Smirnoff case DONE: 1390b2d3d26fSGleb Smirnoff break; 1391b2d3d26fSGleb Smirnoff } 1392b2d3d26fSGleb Smirnoff 1393b2d3d26fSGleb Smirnoff } 1394b2d3d26fSGleb Smirnoff 1395b2d3d26fSGleb Smirnoff static void 1396b2d3d26fSGleb Smirnoff rl_tick(void *xsc) 1397b2d3d26fSGleb Smirnoff { 1398b2d3d26fSGleb Smirnoff struct rl_softc *sc = xsc; 1399b2d3d26fSGleb Smirnoff struct mii_data *mii; 1400b2d3d26fSGleb Smirnoff int ticks; 1401b2d3d26fSGleb Smirnoff 1402b2d3d26fSGleb Smirnoff RL_LOCK_ASSERT(sc); 1403b2d3d26fSGleb Smirnoff /* 1404b2d3d26fSGleb Smirnoff * If we're doing the twister cable calibration, then we need to defer 1405b2d3d26fSGleb Smirnoff * watchdog timeouts. This is a no-op in normal operations, but 1406b2d3d26fSGleb Smirnoff * can falsely trigger when the cable calibration takes a while and 1407b2d3d26fSGleb Smirnoff * there was traffic ready to go when rl was started. 1408b2d3d26fSGleb Smirnoff * 1409b2d3d26fSGleb Smirnoff * We don't defer mii_tick since that updates the mii status, which 1410b2d3d26fSGleb Smirnoff * helps the twister process, at least according to similar patches 1411b2d3d26fSGleb Smirnoff * for the Linux driver I found online while doing the fixes. Worst 1412b2d3d26fSGleb Smirnoff * case is a few extra mii reads during calibration. 1413b2d3d26fSGleb Smirnoff */ 1414b2d3d26fSGleb Smirnoff mii = device_get_softc(sc->rl_miibus); 1415b2d3d26fSGleb Smirnoff mii_tick(mii); 1416b2d3d26fSGleb Smirnoff if ((sc->rl_flags & RL_FLAG_LINK) == 0) 1417b2d3d26fSGleb Smirnoff rl_miibus_statchg(sc->rl_dev); 1418b2d3d26fSGleb Smirnoff if (sc->rl_twister_enable) { 1419b2d3d26fSGleb Smirnoff if (sc->rl_twister == DONE) 1420b2d3d26fSGleb Smirnoff rl_watchdog(sc); 1421b2d3d26fSGleb Smirnoff else 1422b2d3d26fSGleb Smirnoff rl_twister_update(sc); 1423b2d3d26fSGleb Smirnoff if (sc->rl_twister == DONE) 1424b2d3d26fSGleb Smirnoff ticks = hz; 1425b2d3d26fSGleb Smirnoff else 1426b2d3d26fSGleb Smirnoff ticks = hz / 10; 1427b2d3d26fSGleb Smirnoff } else { 1428b2d3d26fSGleb Smirnoff rl_watchdog(sc); 1429b2d3d26fSGleb Smirnoff ticks = hz; 1430b2d3d26fSGleb Smirnoff } 1431b2d3d26fSGleb Smirnoff 1432b2d3d26fSGleb Smirnoff callout_reset(&sc->rl_stat_callout, ticks, rl_tick, sc); 1433b2d3d26fSGleb Smirnoff } 1434b2d3d26fSGleb Smirnoff 1435b2d3d26fSGleb Smirnoff #ifdef DEVICE_POLLING 1436b2d3d26fSGleb Smirnoff static int 1437b2d3d26fSGleb Smirnoff rl_poll(struct ifnet *ifp, enum poll_cmd cmd, int count) 1438b2d3d26fSGleb Smirnoff { 1439b2d3d26fSGleb Smirnoff struct rl_softc *sc = ifp->if_softc; 1440b2d3d26fSGleb Smirnoff int rx_npkts = 0; 1441b2d3d26fSGleb Smirnoff 1442b2d3d26fSGleb Smirnoff RL_LOCK(sc); 1443b2d3d26fSGleb Smirnoff if (ifp->if_drv_flags & IFF_DRV_RUNNING) 1444b2d3d26fSGleb Smirnoff rx_npkts = rl_poll_locked(ifp, cmd, count); 1445b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 1446b2d3d26fSGleb Smirnoff return (rx_npkts); 1447b2d3d26fSGleb Smirnoff } 1448b2d3d26fSGleb Smirnoff 1449b2d3d26fSGleb Smirnoff static int 1450b2d3d26fSGleb Smirnoff rl_poll_locked(struct ifnet *ifp, enum poll_cmd cmd, int count) 1451b2d3d26fSGleb Smirnoff { 1452b2d3d26fSGleb Smirnoff struct rl_softc *sc = ifp->if_softc; 1453b2d3d26fSGleb Smirnoff int rx_npkts; 1454b2d3d26fSGleb Smirnoff 1455b2d3d26fSGleb Smirnoff RL_LOCK_ASSERT(sc); 1456b2d3d26fSGleb Smirnoff 1457b2d3d26fSGleb Smirnoff sc->rxcycles = count; 1458b2d3d26fSGleb Smirnoff rx_npkts = rl_rxeof(sc); 1459b2d3d26fSGleb Smirnoff rl_txeof(sc); 1460b2d3d26fSGleb Smirnoff 1461b2d3d26fSGleb Smirnoff if (!IFQ_DRV_IS_EMPTY(&ifp->if_snd)) 1462b2d3d26fSGleb Smirnoff rl_start_locked(ifp); 1463b2d3d26fSGleb Smirnoff 1464b2d3d26fSGleb Smirnoff if (cmd == POLL_AND_CHECK_STATUS) { 1465b2d3d26fSGleb Smirnoff uint16_t status; 1466b2d3d26fSGleb Smirnoff 1467b2d3d26fSGleb Smirnoff /* We should also check the status register. */ 1468b2d3d26fSGleb Smirnoff status = CSR_READ_2(sc, RL_ISR); 1469b2d3d26fSGleb Smirnoff if (status == 0xffff) 1470b2d3d26fSGleb Smirnoff return (rx_npkts); 1471b2d3d26fSGleb Smirnoff if (status != 0) 1472b2d3d26fSGleb Smirnoff CSR_WRITE_2(sc, RL_ISR, status); 1473b2d3d26fSGleb Smirnoff 1474b2d3d26fSGleb Smirnoff /* XXX We should check behaviour on receiver stalls. */ 1475b2d3d26fSGleb Smirnoff 1476b2d3d26fSGleb Smirnoff if (status & RL_ISR_SYSTEM_ERR) { 1477b2d3d26fSGleb Smirnoff ifp->if_drv_flags &= ~IFF_DRV_RUNNING; 1478b2d3d26fSGleb Smirnoff rl_init_locked(sc); 1479b2d3d26fSGleb Smirnoff } 1480b2d3d26fSGleb Smirnoff } 1481b2d3d26fSGleb Smirnoff return (rx_npkts); 1482b2d3d26fSGleb Smirnoff } 1483b2d3d26fSGleb Smirnoff #endif /* DEVICE_POLLING */ 1484b2d3d26fSGleb Smirnoff 1485b2d3d26fSGleb Smirnoff static void 1486b2d3d26fSGleb Smirnoff rl_intr(void *arg) 1487b2d3d26fSGleb Smirnoff { 1488b2d3d26fSGleb Smirnoff struct rl_softc *sc = arg; 1489b2d3d26fSGleb Smirnoff struct ifnet *ifp = sc->rl_ifp; 1490b2d3d26fSGleb Smirnoff uint16_t status; 1491b2d3d26fSGleb Smirnoff int count; 1492b2d3d26fSGleb Smirnoff 1493b2d3d26fSGleb Smirnoff RL_LOCK(sc); 1494b2d3d26fSGleb Smirnoff 1495b2d3d26fSGleb Smirnoff if (sc->suspended) 1496b2d3d26fSGleb Smirnoff goto done_locked; 1497b2d3d26fSGleb Smirnoff 1498b2d3d26fSGleb Smirnoff #ifdef DEVICE_POLLING 1499b2d3d26fSGleb Smirnoff if (ifp->if_capenable & IFCAP_POLLING) 1500b2d3d26fSGleb Smirnoff goto done_locked; 1501b2d3d26fSGleb Smirnoff #endif 1502b2d3d26fSGleb Smirnoff 1503b2d3d26fSGleb Smirnoff if ((ifp->if_drv_flags & IFF_DRV_RUNNING) == 0) 1504b2d3d26fSGleb Smirnoff goto done_locked2; 1505b2d3d26fSGleb Smirnoff status = CSR_READ_2(sc, RL_ISR); 1506b2d3d26fSGleb Smirnoff if (status == 0xffff || (status & RL_INTRS) == 0) 1507b2d3d26fSGleb Smirnoff goto done_locked; 1508b2d3d26fSGleb Smirnoff /* 1509b2d3d26fSGleb Smirnoff * Ours, disable further interrupts. 1510b2d3d26fSGleb Smirnoff */ 1511b2d3d26fSGleb Smirnoff CSR_WRITE_2(sc, RL_IMR, 0); 1512b2d3d26fSGleb Smirnoff for (count = 16; count > 0; count--) { 1513b2d3d26fSGleb Smirnoff CSR_WRITE_2(sc, RL_ISR, status); 1514b2d3d26fSGleb Smirnoff if (ifp->if_drv_flags & IFF_DRV_RUNNING) { 1515b2d3d26fSGleb Smirnoff if (status & (RL_ISR_RX_OK | RL_ISR_RX_ERR)) 1516b2d3d26fSGleb Smirnoff rl_rxeof(sc); 1517b2d3d26fSGleb Smirnoff if (status & (RL_ISR_TX_OK | RL_ISR_TX_ERR)) 1518b2d3d26fSGleb Smirnoff rl_txeof(sc); 1519b2d3d26fSGleb Smirnoff if (status & RL_ISR_SYSTEM_ERR) { 1520b2d3d26fSGleb Smirnoff ifp->if_drv_flags &= ~IFF_DRV_RUNNING; 1521b2d3d26fSGleb Smirnoff rl_init_locked(sc); 1522b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 1523b2d3d26fSGleb Smirnoff return; 1524b2d3d26fSGleb Smirnoff } 1525b2d3d26fSGleb Smirnoff } 1526b2d3d26fSGleb Smirnoff status = CSR_READ_2(sc, RL_ISR); 1527b2d3d26fSGleb Smirnoff /* If the card has gone away, the read returns 0xffff. */ 1528b2d3d26fSGleb Smirnoff if (status == 0xffff || (status & RL_INTRS) == 0) 1529b2d3d26fSGleb Smirnoff break; 1530b2d3d26fSGleb Smirnoff } 1531b2d3d26fSGleb Smirnoff 1532b2d3d26fSGleb Smirnoff if (!IFQ_DRV_IS_EMPTY(&ifp->if_snd)) 1533b2d3d26fSGleb Smirnoff rl_start_locked(ifp); 1534b2d3d26fSGleb Smirnoff 1535b2d3d26fSGleb Smirnoff done_locked2: 1536b2d3d26fSGleb Smirnoff if (ifp->if_drv_flags & IFF_DRV_RUNNING) 1537b2d3d26fSGleb Smirnoff CSR_WRITE_2(sc, RL_IMR, RL_INTRS); 1538b2d3d26fSGleb Smirnoff done_locked: 1539b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 1540b2d3d26fSGleb Smirnoff } 1541b2d3d26fSGleb Smirnoff 1542b2d3d26fSGleb Smirnoff /* 1543b2d3d26fSGleb Smirnoff * Encapsulate an mbuf chain in a descriptor by coupling the mbuf data 1544b2d3d26fSGleb Smirnoff * pointers to the fragment pointers. 1545b2d3d26fSGleb Smirnoff */ 1546b2d3d26fSGleb Smirnoff static int 1547b2d3d26fSGleb Smirnoff rl_encap(struct rl_softc *sc, struct mbuf **m_head) 1548b2d3d26fSGleb Smirnoff { 1549b2d3d26fSGleb Smirnoff struct mbuf *m; 1550b2d3d26fSGleb Smirnoff bus_dma_segment_t txsegs[1]; 1551b2d3d26fSGleb Smirnoff int error, nsegs, padlen; 1552b2d3d26fSGleb Smirnoff 1553b2d3d26fSGleb Smirnoff RL_LOCK_ASSERT(sc); 1554b2d3d26fSGleb Smirnoff 1555b2d3d26fSGleb Smirnoff m = *m_head; 1556b2d3d26fSGleb Smirnoff padlen = 0; 1557b2d3d26fSGleb Smirnoff /* 1558b2d3d26fSGleb Smirnoff * Hardware doesn't auto-pad, so we have to make sure 1559b2d3d26fSGleb Smirnoff * pad short frames out to the minimum frame length. 1560b2d3d26fSGleb Smirnoff */ 1561b2d3d26fSGleb Smirnoff if (m->m_pkthdr.len < RL_MIN_FRAMELEN) 1562b2d3d26fSGleb Smirnoff padlen = RL_MIN_FRAMELEN - m->m_pkthdr.len; 1563b2d3d26fSGleb Smirnoff /* 1564b2d3d26fSGleb Smirnoff * The RealTek is brain damaged and wants longword-aligned 1565b2d3d26fSGleb Smirnoff * TX buffers, plus we can only have one fragment buffer 1566b2d3d26fSGleb Smirnoff * per packet. We have to copy pretty much all the time. 1567b2d3d26fSGleb Smirnoff */ 1568b2d3d26fSGleb Smirnoff if (m->m_next != NULL || (mtod(m, uintptr_t) & 3) != 0 || 1569b2d3d26fSGleb Smirnoff (padlen > 0 && M_TRAILINGSPACE(m) < padlen)) { 1570b2d3d26fSGleb Smirnoff m = m_defrag(*m_head, M_NOWAIT); 1571b2d3d26fSGleb Smirnoff if (m == NULL) { 1572b2d3d26fSGleb Smirnoff m_freem(*m_head); 1573b2d3d26fSGleb Smirnoff *m_head = NULL; 1574b2d3d26fSGleb Smirnoff return (ENOMEM); 1575b2d3d26fSGleb Smirnoff } 1576b2d3d26fSGleb Smirnoff } 1577b2d3d26fSGleb Smirnoff *m_head = m; 1578b2d3d26fSGleb Smirnoff 1579b2d3d26fSGleb Smirnoff if (padlen > 0) { 1580b2d3d26fSGleb Smirnoff /* 1581b2d3d26fSGleb Smirnoff * Make security-conscious people happy: zero out the 1582b2d3d26fSGleb Smirnoff * bytes in the pad area, since we don't know what 1583b2d3d26fSGleb Smirnoff * this mbuf cluster buffer's previous user might 1584b2d3d26fSGleb Smirnoff * have left in it. 1585b2d3d26fSGleb Smirnoff */ 1586b2d3d26fSGleb Smirnoff bzero(mtod(m, char *) + m->m_pkthdr.len, padlen); 1587b2d3d26fSGleb Smirnoff m->m_pkthdr.len += padlen; 1588b2d3d26fSGleb Smirnoff m->m_len = m->m_pkthdr.len; 1589b2d3d26fSGleb Smirnoff } 1590b2d3d26fSGleb Smirnoff 1591b2d3d26fSGleb Smirnoff error = bus_dmamap_load_mbuf_sg(sc->rl_cdata.rl_tx_tag, 1592b2d3d26fSGleb Smirnoff RL_CUR_DMAMAP(sc), m, txsegs, &nsegs, 0); 1593b2d3d26fSGleb Smirnoff if (error != 0) 1594b2d3d26fSGleb Smirnoff return (error); 1595b2d3d26fSGleb Smirnoff if (nsegs == 0) { 1596b2d3d26fSGleb Smirnoff m_freem(*m_head); 1597b2d3d26fSGleb Smirnoff *m_head = NULL; 1598b2d3d26fSGleb Smirnoff return (EIO); 1599b2d3d26fSGleb Smirnoff } 1600b2d3d26fSGleb Smirnoff 1601b2d3d26fSGleb Smirnoff RL_CUR_TXMBUF(sc) = m; 1602b2d3d26fSGleb Smirnoff bus_dmamap_sync(sc->rl_cdata.rl_tx_tag, RL_CUR_DMAMAP(sc), 1603b2d3d26fSGleb Smirnoff BUS_DMASYNC_PREWRITE); 1604b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_CUR_TXADDR(sc), RL_ADDR_LO(txsegs[0].ds_addr)); 1605b2d3d26fSGleb Smirnoff 1606b2d3d26fSGleb Smirnoff return (0); 1607b2d3d26fSGleb Smirnoff } 1608b2d3d26fSGleb Smirnoff 1609b2d3d26fSGleb Smirnoff /* 1610b2d3d26fSGleb Smirnoff * Main transmit routine. 1611b2d3d26fSGleb Smirnoff */ 1612b2d3d26fSGleb Smirnoff static void 1613b2d3d26fSGleb Smirnoff rl_start(struct ifnet *ifp) 1614b2d3d26fSGleb Smirnoff { 1615b2d3d26fSGleb Smirnoff struct rl_softc *sc = ifp->if_softc; 1616b2d3d26fSGleb Smirnoff 1617b2d3d26fSGleb Smirnoff RL_LOCK(sc); 1618b2d3d26fSGleb Smirnoff rl_start_locked(ifp); 1619b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 1620b2d3d26fSGleb Smirnoff } 1621b2d3d26fSGleb Smirnoff 1622b2d3d26fSGleb Smirnoff static void 1623b2d3d26fSGleb Smirnoff rl_start_locked(struct ifnet *ifp) 1624b2d3d26fSGleb Smirnoff { 1625b2d3d26fSGleb Smirnoff struct rl_softc *sc = ifp->if_softc; 1626b2d3d26fSGleb Smirnoff struct mbuf *m_head = NULL; 1627b2d3d26fSGleb Smirnoff 1628b2d3d26fSGleb Smirnoff RL_LOCK_ASSERT(sc); 1629b2d3d26fSGleb Smirnoff 1630b2d3d26fSGleb Smirnoff if ((ifp->if_drv_flags & (IFF_DRV_RUNNING | IFF_DRV_OACTIVE)) != 1631b2d3d26fSGleb Smirnoff IFF_DRV_RUNNING || (sc->rl_flags & RL_FLAG_LINK) == 0) 1632b2d3d26fSGleb Smirnoff return; 1633b2d3d26fSGleb Smirnoff 1634b2d3d26fSGleb Smirnoff while (RL_CUR_TXMBUF(sc) == NULL) { 1635b2d3d26fSGleb Smirnoff 1636b2d3d26fSGleb Smirnoff IFQ_DRV_DEQUEUE(&ifp->if_snd, m_head); 1637b2d3d26fSGleb Smirnoff 1638b2d3d26fSGleb Smirnoff if (m_head == NULL) 1639b2d3d26fSGleb Smirnoff break; 1640b2d3d26fSGleb Smirnoff 1641b2d3d26fSGleb Smirnoff if (rl_encap(sc, &m_head)) { 1642b2d3d26fSGleb Smirnoff if (m_head == NULL) 1643b2d3d26fSGleb Smirnoff break; 1644b2d3d26fSGleb Smirnoff IFQ_DRV_PREPEND(&ifp->if_snd, m_head); 1645b2d3d26fSGleb Smirnoff ifp->if_drv_flags |= IFF_DRV_OACTIVE; 1646b2d3d26fSGleb Smirnoff break; 1647b2d3d26fSGleb Smirnoff } 1648b2d3d26fSGleb Smirnoff 1649b2d3d26fSGleb Smirnoff /* Pass a copy of this mbuf chain to the bpf subsystem. */ 1650b2d3d26fSGleb Smirnoff BPF_MTAP(ifp, RL_CUR_TXMBUF(sc)); 1651b2d3d26fSGleb Smirnoff 1652b2d3d26fSGleb Smirnoff /* Transmit the frame. */ 1653b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_CUR_TXSTAT(sc), 1654b2d3d26fSGleb Smirnoff RL_TXTHRESH(sc->rl_txthresh) | 1655b2d3d26fSGleb Smirnoff RL_CUR_TXMBUF(sc)->m_pkthdr.len); 1656b2d3d26fSGleb Smirnoff 1657b2d3d26fSGleb Smirnoff RL_INC(sc->rl_cdata.cur_tx); 1658b2d3d26fSGleb Smirnoff 1659b2d3d26fSGleb Smirnoff /* Set a timeout in case the chip goes out to lunch. */ 1660b2d3d26fSGleb Smirnoff sc->rl_watchdog_timer = 5; 1661b2d3d26fSGleb Smirnoff } 1662b2d3d26fSGleb Smirnoff 1663b2d3d26fSGleb Smirnoff /* 1664b2d3d26fSGleb Smirnoff * We broke out of the loop because all our TX slots are 1665b2d3d26fSGleb Smirnoff * full. Mark the NIC as busy until it drains some of the 1666b2d3d26fSGleb Smirnoff * packets from the queue. 1667b2d3d26fSGleb Smirnoff */ 1668b2d3d26fSGleb Smirnoff if (RL_CUR_TXMBUF(sc) != NULL) 1669b2d3d26fSGleb Smirnoff ifp->if_drv_flags |= IFF_DRV_OACTIVE; 1670b2d3d26fSGleb Smirnoff } 1671b2d3d26fSGleb Smirnoff 1672b2d3d26fSGleb Smirnoff static void 1673b2d3d26fSGleb Smirnoff rl_init(void *xsc) 1674b2d3d26fSGleb Smirnoff { 1675b2d3d26fSGleb Smirnoff struct rl_softc *sc = xsc; 1676b2d3d26fSGleb Smirnoff 1677b2d3d26fSGleb Smirnoff RL_LOCK(sc); 1678b2d3d26fSGleb Smirnoff rl_init_locked(sc); 1679b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 1680b2d3d26fSGleb Smirnoff } 1681b2d3d26fSGleb Smirnoff 1682b2d3d26fSGleb Smirnoff static void 1683b2d3d26fSGleb Smirnoff rl_init_locked(struct rl_softc *sc) 1684b2d3d26fSGleb Smirnoff { 1685b2d3d26fSGleb Smirnoff struct ifnet *ifp = sc->rl_ifp; 1686b2d3d26fSGleb Smirnoff struct mii_data *mii; 1687b2d3d26fSGleb Smirnoff uint32_t eaddr[2]; 1688b2d3d26fSGleb Smirnoff 1689b2d3d26fSGleb Smirnoff RL_LOCK_ASSERT(sc); 1690b2d3d26fSGleb Smirnoff 1691b2d3d26fSGleb Smirnoff mii = device_get_softc(sc->rl_miibus); 1692b2d3d26fSGleb Smirnoff 1693b2d3d26fSGleb Smirnoff if ((ifp->if_drv_flags & IFF_DRV_RUNNING) != 0) 1694b2d3d26fSGleb Smirnoff return; 1695b2d3d26fSGleb Smirnoff 1696b2d3d26fSGleb Smirnoff /* 1697b2d3d26fSGleb Smirnoff * Cancel pending I/O and free all RX/TX buffers. 1698b2d3d26fSGleb Smirnoff */ 1699b2d3d26fSGleb Smirnoff rl_stop(sc); 1700b2d3d26fSGleb Smirnoff 1701b2d3d26fSGleb Smirnoff rl_reset(sc); 1702b2d3d26fSGleb Smirnoff if (sc->rl_twister_enable) { 1703b2d3d26fSGleb Smirnoff /* 1704b2d3d26fSGleb Smirnoff * Reset twister register tuning state. The twister 1705b2d3d26fSGleb Smirnoff * registers and their tuning are undocumented, but 1706b2d3d26fSGleb Smirnoff * are necessary to cope with bad links. rl_twister = 1707b2d3d26fSGleb Smirnoff * DONE here will disable this entirely. 1708b2d3d26fSGleb Smirnoff */ 1709b2d3d26fSGleb Smirnoff sc->rl_twister = CHK_LINK; 1710b2d3d26fSGleb Smirnoff } 1711b2d3d26fSGleb Smirnoff 1712b2d3d26fSGleb Smirnoff /* 1713b2d3d26fSGleb Smirnoff * Init our MAC address. Even though the chipset 1714b2d3d26fSGleb Smirnoff * documentation doesn't mention it, we need to enter "Config 1715b2d3d26fSGleb Smirnoff * register write enable" mode to modify the ID registers. 1716b2d3d26fSGleb Smirnoff */ 1717b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_EECMD, RL_EEMODE_WRITECFG); 1718b2d3d26fSGleb Smirnoff bzero(eaddr, sizeof(eaddr)); 1719b2d3d26fSGleb Smirnoff bcopy(IF_LLADDR(sc->rl_ifp), eaddr, ETHER_ADDR_LEN); 1720b2d3d26fSGleb Smirnoff CSR_WRITE_STREAM_4(sc, RL_IDR0, eaddr[0]); 1721b2d3d26fSGleb Smirnoff CSR_WRITE_STREAM_4(sc, RL_IDR4, eaddr[1]); 1722b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_EECMD, RL_EEMODE_OFF); 1723b2d3d26fSGleb Smirnoff 1724b2d3d26fSGleb Smirnoff /* Init the RX memory block pointer register. */ 1725b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_RXADDR, sc->rl_cdata.rl_rx_buf_paddr + 1726b2d3d26fSGleb Smirnoff RL_RX_8139_BUF_RESERVE); 1727b2d3d26fSGleb Smirnoff /* Init TX descriptors. */ 1728b2d3d26fSGleb Smirnoff rl_list_tx_init(sc); 1729b2d3d26fSGleb Smirnoff /* Init Rx memory block. */ 1730b2d3d26fSGleb Smirnoff rl_list_rx_init(sc); 1731b2d3d26fSGleb Smirnoff 1732b2d3d26fSGleb Smirnoff /* 1733b2d3d26fSGleb Smirnoff * Enable transmit and receive. 1734b2d3d26fSGleb Smirnoff */ 1735b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_COMMAND, RL_CMD_TX_ENB|RL_CMD_RX_ENB); 1736b2d3d26fSGleb Smirnoff 1737b2d3d26fSGleb Smirnoff /* 1738b2d3d26fSGleb Smirnoff * Set the initial TX and RX configuration. 1739b2d3d26fSGleb Smirnoff */ 1740b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_TXCFG, RL_TXCFG_CONFIG); 1741b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_RXCFG, RL_RXCFG_CONFIG); 1742b2d3d26fSGleb Smirnoff 1743b2d3d26fSGleb Smirnoff /* Set RX filter. */ 1744b2d3d26fSGleb Smirnoff rl_rxfilter(sc); 1745b2d3d26fSGleb Smirnoff 1746b2d3d26fSGleb Smirnoff #ifdef DEVICE_POLLING 1747b2d3d26fSGleb Smirnoff /* Disable interrupts if we are polling. */ 1748b2d3d26fSGleb Smirnoff if (ifp->if_capenable & IFCAP_POLLING) 1749b2d3d26fSGleb Smirnoff CSR_WRITE_2(sc, RL_IMR, 0); 1750b2d3d26fSGleb Smirnoff else 1751b2d3d26fSGleb Smirnoff #endif 1752b2d3d26fSGleb Smirnoff /* Enable interrupts. */ 1753b2d3d26fSGleb Smirnoff CSR_WRITE_2(sc, RL_IMR, RL_INTRS); 1754b2d3d26fSGleb Smirnoff 1755b2d3d26fSGleb Smirnoff /* Set initial TX threshold */ 1756b2d3d26fSGleb Smirnoff sc->rl_txthresh = RL_TX_THRESH_INIT; 1757b2d3d26fSGleb Smirnoff 1758b2d3d26fSGleb Smirnoff /* Start RX/TX process. */ 1759b2d3d26fSGleb Smirnoff CSR_WRITE_4(sc, RL_MISSEDPKT, 0); 1760b2d3d26fSGleb Smirnoff 1761b2d3d26fSGleb Smirnoff /* Enable receiver and transmitter. */ 1762b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_COMMAND, RL_CMD_TX_ENB|RL_CMD_RX_ENB); 1763b2d3d26fSGleb Smirnoff 1764b2d3d26fSGleb Smirnoff sc->rl_flags &= ~RL_FLAG_LINK; 1765b2d3d26fSGleb Smirnoff mii_mediachg(mii); 1766b2d3d26fSGleb Smirnoff 1767b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, sc->rl_cfg1, RL_CFG1_DRVLOAD|RL_CFG1_FULLDUPLEX); 1768b2d3d26fSGleb Smirnoff 1769b2d3d26fSGleb Smirnoff ifp->if_drv_flags |= IFF_DRV_RUNNING; 1770b2d3d26fSGleb Smirnoff ifp->if_drv_flags &= ~IFF_DRV_OACTIVE; 1771b2d3d26fSGleb Smirnoff 1772b2d3d26fSGleb Smirnoff callout_reset(&sc->rl_stat_callout, hz, rl_tick, sc); 1773b2d3d26fSGleb Smirnoff } 1774b2d3d26fSGleb Smirnoff 1775b2d3d26fSGleb Smirnoff /* 1776b2d3d26fSGleb Smirnoff * Set media options. 1777b2d3d26fSGleb Smirnoff */ 1778b2d3d26fSGleb Smirnoff static int 1779b2d3d26fSGleb Smirnoff rl_ifmedia_upd(struct ifnet *ifp) 1780b2d3d26fSGleb Smirnoff { 1781b2d3d26fSGleb Smirnoff struct rl_softc *sc = ifp->if_softc; 1782b2d3d26fSGleb Smirnoff struct mii_data *mii; 1783b2d3d26fSGleb Smirnoff 1784b2d3d26fSGleb Smirnoff mii = device_get_softc(sc->rl_miibus); 1785b2d3d26fSGleb Smirnoff 1786b2d3d26fSGleb Smirnoff RL_LOCK(sc); 1787b2d3d26fSGleb Smirnoff mii_mediachg(mii); 1788b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 1789b2d3d26fSGleb Smirnoff 1790b2d3d26fSGleb Smirnoff return (0); 1791b2d3d26fSGleb Smirnoff } 1792b2d3d26fSGleb Smirnoff 1793b2d3d26fSGleb Smirnoff /* 1794b2d3d26fSGleb Smirnoff * Report current media status. 1795b2d3d26fSGleb Smirnoff */ 1796b2d3d26fSGleb Smirnoff static void 1797b2d3d26fSGleb Smirnoff rl_ifmedia_sts(struct ifnet *ifp, struct ifmediareq *ifmr) 1798b2d3d26fSGleb Smirnoff { 1799b2d3d26fSGleb Smirnoff struct rl_softc *sc = ifp->if_softc; 1800b2d3d26fSGleb Smirnoff struct mii_data *mii; 1801b2d3d26fSGleb Smirnoff 1802b2d3d26fSGleb Smirnoff mii = device_get_softc(sc->rl_miibus); 1803b2d3d26fSGleb Smirnoff 1804b2d3d26fSGleb Smirnoff RL_LOCK(sc); 1805b2d3d26fSGleb Smirnoff mii_pollstat(mii); 1806b2d3d26fSGleb Smirnoff ifmr->ifm_active = mii->mii_media_active; 1807b2d3d26fSGleb Smirnoff ifmr->ifm_status = mii->mii_media_status; 1808b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 1809b2d3d26fSGleb Smirnoff } 1810b2d3d26fSGleb Smirnoff 1811b2d3d26fSGleb Smirnoff static int 1812b2d3d26fSGleb Smirnoff rl_ioctl(struct ifnet *ifp, u_long command, caddr_t data) 1813b2d3d26fSGleb Smirnoff { 1814b2d3d26fSGleb Smirnoff struct ifreq *ifr = (struct ifreq *)data; 1815b2d3d26fSGleb Smirnoff struct mii_data *mii; 1816b2d3d26fSGleb Smirnoff struct rl_softc *sc = ifp->if_softc; 1817b2d3d26fSGleb Smirnoff int error = 0, mask; 1818b2d3d26fSGleb Smirnoff 1819b2d3d26fSGleb Smirnoff switch (command) { 1820b2d3d26fSGleb Smirnoff case SIOCSIFFLAGS: 1821b2d3d26fSGleb Smirnoff RL_LOCK(sc); 1822b2d3d26fSGleb Smirnoff if (ifp->if_flags & IFF_UP) { 1823b2d3d26fSGleb Smirnoff if (ifp->if_drv_flags & IFF_DRV_RUNNING && 1824b2d3d26fSGleb Smirnoff ((ifp->if_flags ^ sc->rl_if_flags) & 1825b2d3d26fSGleb Smirnoff (IFF_PROMISC | IFF_ALLMULTI))) 1826b2d3d26fSGleb Smirnoff rl_rxfilter(sc); 1827b2d3d26fSGleb Smirnoff else 1828b2d3d26fSGleb Smirnoff rl_init_locked(sc); 1829b2d3d26fSGleb Smirnoff } else if (ifp->if_drv_flags & IFF_DRV_RUNNING) 1830b2d3d26fSGleb Smirnoff rl_stop(sc); 1831b2d3d26fSGleb Smirnoff sc->rl_if_flags = ifp->if_flags; 1832b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 1833b2d3d26fSGleb Smirnoff break; 1834b2d3d26fSGleb Smirnoff case SIOCADDMULTI: 1835b2d3d26fSGleb Smirnoff case SIOCDELMULTI: 1836b2d3d26fSGleb Smirnoff RL_LOCK(sc); 1837b2d3d26fSGleb Smirnoff rl_rxfilter(sc); 1838b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 1839b2d3d26fSGleb Smirnoff break; 1840b2d3d26fSGleb Smirnoff case SIOCGIFMEDIA: 1841b2d3d26fSGleb Smirnoff case SIOCSIFMEDIA: 1842b2d3d26fSGleb Smirnoff mii = device_get_softc(sc->rl_miibus); 1843b2d3d26fSGleb Smirnoff error = ifmedia_ioctl(ifp, ifr, &mii->mii_media, command); 1844b2d3d26fSGleb Smirnoff break; 1845b2d3d26fSGleb Smirnoff case SIOCSIFCAP: 1846b2d3d26fSGleb Smirnoff mask = ifr->ifr_reqcap ^ ifp->if_capenable; 1847b2d3d26fSGleb Smirnoff #ifdef DEVICE_POLLING 1848b2d3d26fSGleb Smirnoff if (ifr->ifr_reqcap & IFCAP_POLLING && 1849b2d3d26fSGleb Smirnoff !(ifp->if_capenable & IFCAP_POLLING)) { 1850b2d3d26fSGleb Smirnoff error = ether_poll_register(rl_poll, ifp); 1851b2d3d26fSGleb Smirnoff if (error) 1852b2d3d26fSGleb Smirnoff return(error); 1853b2d3d26fSGleb Smirnoff RL_LOCK(sc); 1854b2d3d26fSGleb Smirnoff /* Disable interrupts */ 1855b2d3d26fSGleb Smirnoff CSR_WRITE_2(sc, RL_IMR, 0x0000); 1856b2d3d26fSGleb Smirnoff ifp->if_capenable |= IFCAP_POLLING; 1857b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 1858b2d3d26fSGleb Smirnoff return (error); 1859b2d3d26fSGleb Smirnoff 1860b2d3d26fSGleb Smirnoff } 1861b2d3d26fSGleb Smirnoff if (!(ifr->ifr_reqcap & IFCAP_POLLING) && 1862b2d3d26fSGleb Smirnoff ifp->if_capenable & IFCAP_POLLING) { 1863b2d3d26fSGleb Smirnoff error = ether_poll_deregister(ifp); 1864b2d3d26fSGleb Smirnoff /* Enable interrupts. */ 1865b2d3d26fSGleb Smirnoff RL_LOCK(sc); 1866b2d3d26fSGleb Smirnoff CSR_WRITE_2(sc, RL_IMR, RL_INTRS); 1867b2d3d26fSGleb Smirnoff ifp->if_capenable &= ~IFCAP_POLLING; 1868b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 1869b2d3d26fSGleb Smirnoff return (error); 1870b2d3d26fSGleb Smirnoff } 1871b2d3d26fSGleb Smirnoff #endif /* DEVICE_POLLING */ 1872b2d3d26fSGleb Smirnoff if ((mask & IFCAP_WOL) != 0 && 1873b2d3d26fSGleb Smirnoff (ifp->if_capabilities & IFCAP_WOL) != 0) { 1874b2d3d26fSGleb Smirnoff if ((mask & IFCAP_WOL_UCAST) != 0) 1875b2d3d26fSGleb Smirnoff ifp->if_capenable ^= IFCAP_WOL_UCAST; 1876b2d3d26fSGleb Smirnoff if ((mask & IFCAP_WOL_MCAST) != 0) 1877b2d3d26fSGleb Smirnoff ifp->if_capenable ^= IFCAP_WOL_MCAST; 1878b2d3d26fSGleb Smirnoff if ((mask & IFCAP_WOL_MAGIC) != 0) 1879b2d3d26fSGleb Smirnoff ifp->if_capenable ^= IFCAP_WOL_MAGIC; 1880b2d3d26fSGleb Smirnoff } 1881b2d3d26fSGleb Smirnoff break; 1882b2d3d26fSGleb Smirnoff default: 1883b2d3d26fSGleb Smirnoff error = ether_ioctl(ifp, command, data); 1884b2d3d26fSGleb Smirnoff break; 1885b2d3d26fSGleb Smirnoff } 1886b2d3d26fSGleb Smirnoff 1887b2d3d26fSGleb Smirnoff return (error); 1888b2d3d26fSGleb Smirnoff } 1889b2d3d26fSGleb Smirnoff 1890b2d3d26fSGleb Smirnoff static void 1891b2d3d26fSGleb Smirnoff rl_watchdog(struct rl_softc *sc) 1892b2d3d26fSGleb Smirnoff { 1893b2d3d26fSGleb Smirnoff 1894b2d3d26fSGleb Smirnoff RL_LOCK_ASSERT(sc); 1895b2d3d26fSGleb Smirnoff 1896b2d3d26fSGleb Smirnoff if (sc->rl_watchdog_timer == 0 || --sc->rl_watchdog_timer >0) 1897b2d3d26fSGleb Smirnoff return; 1898b2d3d26fSGleb Smirnoff 1899b2d3d26fSGleb Smirnoff device_printf(sc->rl_dev, "watchdog timeout\n"); 1900e3393dafSGleb Smirnoff if_inc_counter(sc->rl_ifp, IFCOUNTER_OERRORS, 1); 1901b2d3d26fSGleb Smirnoff 1902b2d3d26fSGleb Smirnoff rl_txeof(sc); 1903b2d3d26fSGleb Smirnoff rl_rxeof(sc); 1904b2d3d26fSGleb Smirnoff sc->rl_ifp->if_drv_flags &= ~IFF_DRV_RUNNING; 1905b2d3d26fSGleb Smirnoff rl_init_locked(sc); 1906b2d3d26fSGleb Smirnoff } 1907b2d3d26fSGleb Smirnoff 1908b2d3d26fSGleb Smirnoff /* 1909b2d3d26fSGleb Smirnoff * Stop the adapter and free any mbufs allocated to the 1910b2d3d26fSGleb Smirnoff * RX and TX lists. 1911b2d3d26fSGleb Smirnoff */ 1912b2d3d26fSGleb Smirnoff static void 1913b2d3d26fSGleb Smirnoff rl_stop(struct rl_softc *sc) 1914b2d3d26fSGleb Smirnoff { 1915b2d3d26fSGleb Smirnoff register int i; 1916b2d3d26fSGleb Smirnoff struct ifnet *ifp = sc->rl_ifp; 1917b2d3d26fSGleb Smirnoff 1918b2d3d26fSGleb Smirnoff RL_LOCK_ASSERT(sc); 1919b2d3d26fSGleb Smirnoff 1920b2d3d26fSGleb Smirnoff sc->rl_watchdog_timer = 0; 1921b2d3d26fSGleb Smirnoff callout_stop(&sc->rl_stat_callout); 1922b2d3d26fSGleb Smirnoff ifp->if_drv_flags &= ~(IFF_DRV_RUNNING | IFF_DRV_OACTIVE); 1923b2d3d26fSGleb Smirnoff sc->rl_flags &= ~RL_FLAG_LINK; 1924b2d3d26fSGleb Smirnoff 1925b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_COMMAND, 0x00); 1926b2d3d26fSGleb Smirnoff CSR_WRITE_2(sc, RL_IMR, 0x0000); 1927b2d3d26fSGleb Smirnoff for (i = 0; i < RL_TIMEOUT; i++) { 1928b2d3d26fSGleb Smirnoff DELAY(10); 1929b2d3d26fSGleb Smirnoff if ((CSR_READ_1(sc, RL_COMMAND) & 1930b2d3d26fSGleb Smirnoff (RL_CMD_RX_ENB | RL_CMD_TX_ENB)) == 0) 1931b2d3d26fSGleb Smirnoff break; 1932b2d3d26fSGleb Smirnoff } 1933b2d3d26fSGleb Smirnoff if (i == RL_TIMEOUT) 1934b2d3d26fSGleb Smirnoff device_printf(sc->rl_dev, "Unable to stop Tx/Rx MAC\n"); 1935b2d3d26fSGleb Smirnoff 1936b2d3d26fSGleb Smirnoff /* 1937b2d3d26fSGleb Smirnoff * Free the TX list buffers. 1938b2d3d26fSGleb Smirnoff */ 1939b2d3d26fSGleb Smirnoff for (i = 0; i < RL_TX_LIST_CNT; i++) { 1940b2d3d26fSGleb Smirnoff if (sc->rl_cdata.rl_tx_chain[i] != NULL) { 1941b2d3d26fSGleb Smirnoff bus_dmamap_sync(sc->rl_cdata.rl_tx_tag, 1942b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_tx_dmamap[i], 1943b2d3d26fSGleb Smirnoff BUS_DMASYNC_POSTWRITE); 1944b2d3d26fSGleb Smirnoff bus_dmamap_unload(sc->rl_cdata.rl_tx_tag, 1945b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_tx_dmamap[i]); 1946b2d3d26fSGleb Smirnoff m_freem(sc->rl_cdata.rl_tx_chain[i]); 1947b2d3d26fSGleb Smirnoff sc->rl_cdata.rl_tx_chain[i] = NULL; 19484a1ff07bSPyun YongHyeon CSR_WRITE_4(sc, RL_TXADDR0 + (i * sizeof(uint32_t)), 19494a1ff07bSPyun YongHyeon 0x0000000); 1950b2d3d26fSGleb Smirnoff } 1951b2d3d26fSGleb Smirnoff } 1952b2d3d26fSGleb Smirnoff } 1953b2d3d26fSGleb Smirnoff 1954b2d3d26fSGleb Smirnoff /* 1955b2d3d26fSGleb Smirnoff * Device suspend routine. Stop the interface and save some PCI 1956b2d3d26fSGleb Smirnoff * settings in case the BIOS doesn't restore them properly on 1957b2d3d26fSGleb Smirnoff * resume. 1958b2d3d26fSGleb Smirnoff */ 1959b2d3d26fSGleb Smirnoff static int 1960b2d3d26fSGleb Smirnoff rl_suspend(device_t dev) 1961b2d3d26fSGleb Smirnoff { 1962b2d3d26fSGleb Smirnoff struct rl_softc *sc; 1963b2d3d26fSGleb Smirnoff 1964b2d3d26fSGleb Smirnoff sc = device_get_softc(dev); 1965b2d3d26fSGleb Smirnoff 1966b2d3d26fSGleb Smirnoff RL_LOCK(sc); 1967b2d3d26fSGleb Smirnoff rl_stop(sc); 1968b2d3d26fSGleb Smirnoff rl_setwol(sc); 1969b2d3d26fSGleb Smirnoff sc->suspended = 1; 1970b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 1971b2d3d26fSGleb Smirnoff 1972b2d3d26fSGleb Smirnoff return (0); 1973b2d3d26fSGleb Smirnoff } 1974b2d3d26fSGleb Smirnoff 1975b2d3d26fSGleb Smirnoff /* 1976b2d3d26fSGleb Smirnoff * Device resume routine. Restore some PCI settings in case the BIOS 1977b2d3d26fSGleb Smirnoff * doesn't, re-enable busmastering, and restart the interface if 1978b2d3d26fSGleb Smirnoff * appropriate. 1979b2d3d26fSGleb Smirnoff */ 1980b2d3d26fSGleb Smirnoff static int 1981b2d3d26fSGleb Smirnoff rl_resume(device_t dev) 1982b2d3d26fSGleb Smirnoff { 1983b2d3d26fSGleb Smirnoff struct rl_softc *sc; 1984b2d3d26fSGleb Smirnoff struct ifnet *ifp; 1985b2d3d26fSGleb Smirnoff int pmc; 1986b2d3d26fSGleb Smirnoff uint16_t pmstat; 1987b2d3d26fSGleb Smirnoff 1988b2d3d26fSGleb Smirnoff sc = device_get_softc(dev); 1989b2d3d26fSGleb Smirnoff ifp = sc->rl_ifp; 1990b2d3d26fSGleb Smirnoff 1991b2d3d26fSGleb Smirnoff RL_LOCK(sc); 1992b2d3d26fSGleb Smirnoff 1993b2d3d26fSGleb Smirnoff if ((ifp->if_capabilities & IFCAP_WOL) != 0 && 1994b2d3d26fSGleb Smirnoff pci_find_cap(sc->rl_dev, PCIY_PMG, &pmc) == 0) { 1995b2d3d26fSGleb Smirnoff /* Disable PME and clear PME status. */ 1996b2d3d26fSGleb Smirnoff pmstat = pci_read_config(sc->rl_dev, 1997b2d3d26fSGleb Smirnoff pmc + PCIR_POWER_STATUS, 2); 1998b2d3d26fSGleb Smirnoff if ((pmstat & PCIM_PSTAT_PMEENABLE) != 0) { 1999b2d3d26fSGleb Smirnoff pmstat &= ~PCIM_PSTAT_PMEENABLE; 2000b2d3d26fSGleb Smirnoff pci_write_config(sc->rl_dev, 2001b2d3d26fSGleb Smirnoff pmc + PCIR_POWER_STATUS, pmstat, 2); 2002b2d3d26fSGleb Smirnoff } 2003b2d3d26fSGleb Smirnoff /* 2004b2d3d26fSGleb Smirnoff * Clear WOL matching such that normal Rx filtering 2005b2d3d26fSGleb Smirnoff * wouldn't interfere with WOL patterns. 2006b2d3d26fSGleb Smirnoff */ 2007b2d3d26fSGleb Smirnoff rl_clrwol(sc); 2008b2d3d26fSGleb Smirnoff } 2009b2d3d26fSGleb Smirnoff 2010b2d3d26fSGleb Smirnoff /* reinitialize interface if necessary */ 2011b2d3d26fSGleb Smirnoff if (ifp->if_flags & IFF_UP) 2012b2d3d26fSGleb Smirnoff rl_init_locked(sc); 2013b2d3d26fSGleb Smirnoff 2014b2d3d26fSGleb Smirnoff sc->suspended = 0; 2015b2d3d26fSGleb Smirnoff 2016b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 2017b2d3d26fSGleb Smirnoff 2018b2d3d26fSGleb Smirnoff return (0); 2019b2d3d26fSGleb Smirnoff } 2020b2d3d26fSGleb Smirnoff 2021b2d3d26fSGleb Smirnoff /* 2022b2d3d26fSGleb Smirnoff * Stop all chip I/O so that the kernel's probe routines don't 2023b2d3d26fSGleb Smirnoff * get confused by errant DMAs when rebooting. 2024b2d3d26fSGleb Smirnoff */ 2025b2d3d26fSGleb Smirnoff static int 2026b2d3d26fSGleb Smirnoff rl_shutdown(device_t dev) 2027b2d3d26fSGleb Smirnoff { 2028b2d3d26fSGleb Smirnoff struct rl_softc *sc; 2029b2d3d26fSGleb Smirnoff 2030b2d3d26fSGleb Smirnoff sc = device_get_softc(dev); 2031b2d3d26fSGleb Smirnoff 2032b2d3d26fSGleb Smirnoff RL_LOCK(sc); 2033b2d3d26fSGleb Smirnoff rl_stop(sc); 2034b2d3d26fSGleb Smirnoff /* 2035b2d3d26fSGleb Smirnoff * Mark interface as down since otherwise we will panic if 2036b2d3d26fSGleb Smirnoff * interrupt comes in later on, which can happen in some 2037b2d3d26fSGleb Smirnoff * cases. 2038b2d3d26fSGleb Smirnoff */ 2039b2d3d26fSGleb Smirnoff sc->rl_ifp->if_flags &= ~IFF_UP; 2040b2d3d26fSGleb Smirnoff rl_setwol(sc); 2041b2d3d26fSGleb Smirnoff RL_UNLOCK(sc); 2042b2d3d26fSGleb Smirnoff 2043b2d3d26fSGleb Smirnoff return (0); 2044b2d3d26fSGleb Smirnoff } 2045b2d3d26fSGleb Smirnoff 2046b2d3d26fSGleb Smirnoff static void 2047b2d3d26fSGleb Smirnoff rl_setwol(struct rl_softc *sc) 2048b2d3d26fSGleb Smirnoff { 2049b2d3d26fSGleb Smirnoff struct ifnet *ifp; 2050b2d3d26fSGleb Smirnoff int pmc; 2051b2d3d26fSGleb Smirnoff uint16_t pmstat; 2052b2d3d26fSGleb Smirnoff uint8_t v; 2053b2d3d26fSGleb Smirnoff 2054b2d3d26fSGleb Smirnoff RL_LOCK_ASSERT(sc); 2055b2d3d26fSGleb Smirnoff 2056b2d3d26fSGleb Smirnoff ifp = sc->rl_ifp; 2057b2d3d26fSGleb Smirnoff if ((ifp->if_capabilities & IFCAP_WOL) == 0) 2058b2d3d26fSGleb Smirnoff return; 2059b2d3d26fSGleb Smirnoff if (pci_find_cap(sc->rl_dev, PCIY_PMG, &pmc) != 0) 2060b2d3d26fSGleb Smirnoff return; 2061b2d3d26fSGleb Smirnoff 2062b2d3d26fSGleb Smirnoff /* Enable config register write. */ 2063b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_EECMD, RL_EE_MODE); 2064b2d3d26fSGleb Smirnoff 2065b2d3d26fSGleb Smirnoff /* Enable PME. */ 2066b2d3d26fSGleb Smirnoff v = CSR_READ_1(sc, sc->rl_cfg1); 2067b2d3d26fSGleb Smirnoff v &= ~RL_CFG1_PME; 2068b2d3d26fSGleb Smirnoff if ((ifp->if_capenable & IFCAP_WOL) != 0) 2069b2d3d26fSGleb Smirnoff v |= RL_CFG1_PME; 2070b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, sc->rl_cfg1, v); 2071b2d3d26fSGleb Smirnoff 2072b2d3d26fSGleb Smirnoff v = CSR_READ_1(sc, sc->rl_cfg3); 2073b2d3d26fSGleb Smirnoff v &= ~(RL_CFG3_WOL_LINK | RL_CFG3_WOL_MAGIC); 2074b2d3d26fSGleb Smirnoff if ((ifp->if_capenable & IFCAP_WOL_MAGIC) != 0) 2075b2d3d26fSGleb Smirnoff v |= RL_CFG3_WOL_MAGIC; 2076b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, sc->rl_cfg3, v); 2077b2d3d26fSGleb Smirnoff 2078b2d3d26fSGleb Smirnoff v = CSR_READ_1(sc, sc->rl_cfg5); 2079b2d3d26fSGleb Smirnoff v &= ~(RL_CFG5_WOL_BCAST | RL_CFG5_WOL_MCAST | RL_CFG5_WOL_UCAST); 2080b2d3d26fSGleb Smirnoff v &= ~RL_CFG5_WOL_LANWAKE; 2081b2d3d26fSGleb Smirnoff if ((ifp->if_capenable & IFCAP_WOL_UCAST) != 0) 2082b2d3d26fSGleb Smirnoff v |= RL_CFG5_WOL_UCAST; 2083b2d3d26fSGleb Smirnoff if ((ifp->if_capenable & IFCAP_WOL_MCAST) != 0) 2084b2d3d26fSGleb Smirnoff v |= RL_CFG5_WOL_MCAST | RL_CFG5_WOL_BCAST; 2085b2d3d26fSGleb Smirnoff if ((ifp->if_capenable & IFCAP_WOL) != 0) 2086b2d3d26fSGleb Smirnoff v |= RL_CFG5_WOL_LANWAKE; 2087b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, sc->rl_cfg5, v); 2088b2d3d26fSGleb Smirnoff 2089b2d3d26fSGleb Smirnoff /* Config register write done. */ 2090b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_EECMD, RL_EEMODE_OFF); 2091b2d3d26fSGleb Smirnoff 2092b2d3d26fSGleb Smirnoff /* Request PME if WOL is requested. */ 2093b2d3d26fSGleb Smirnoff pmstat = pci_read_config(sc->rl_dev, pmc + PCIR_POWER_STATUS, 2); 2094b2d3d26fSGleb Smirnoff pmstat &= ~(PCIM_PSTAT_PME | PCIM_PSTAT_PMEENABLE); 2095b2d3d26fSGleb Smirnoff if ((ifp->if_capenable & IFCAP_WOL) != 0) 2096b2d3d26fSGleb Smirnoff pmstat |= PCIM_PSTAT_PME | PCIM_PSTAT_PMEENABLE; 2097b2d3d26fSGleb Smirnoff pci_write_config(sc->rl_dev, pmc + PCIR_POWER_STATUS, pmstat, 2); 2098b2d3d26fSGleb Smirnoff } 2099b2d3d26fSGleb Smirnoff 2100b2d3d26fSGleb Smirnoff static void 2101b2d3d26fSGleb Smirnoff rl_clrwol(struct rl_softc *sc) 2102b2d3d26fSGleb Smirnoff { 2103b2d3d26fSGleb Smirnoff struct ifnet *ifp; 2104b2d3d26fSGleb Smirnoff uint8_t v; 2105b2d3d26fSGleb Smirnoff 2106b2d3d26fSGleb Smirnoff ifp = sc->rl_ifp; 2107b2d3d26fSGleb Smirnoff if ((ifp->if_capabilities & IFCAP_WOL) == 0) 2108b2d3d26fSGleb Smirnoff return; 2109b2d3d26fSGleb Smirnoff 2110b2d3d26fSGleb Smirnoff /* Enable config register write. */ 2111b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_EECMD, RL_EE_MODE); 2112b2d3d26fSGleb Smirnoff 2113b2d3d26fSGleb Smirnoff v = CSR_READ_1(sc, sc->rl_cfg3); 2114b2d3d26fSGleb Smirnoff v &= ~(RL_CFG3_WOL_LINK | RL_CFG3_WOL_MAGIC); 2115b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, sc->rl_cfg3, v); 2116b2d3d26fSGleb Smirnoff 2117b2d3d26fSGleb Smirnoff /* Config register write done. */ 2118b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, RL_EECMD, RL_EEMODE_OFF); 2119b2d3d26fSGleb Smirnoff 2120b2d3d26fSGleb Smirnoff v = CSR_READ_1(sc, sc->rl_cfg5); 2121b2d3d26fSGleb Smirnoff v &= ~(RL_CFG5_WOL_BCAST | RL_CFG5_WOL_MCAST | RL_CFG5_WOL_UCAST); 2122b2d3d26fSGleb Smirnoff v &= ~RL_CFG5_WOL_LANWAKE; 2123b2d3d26fSGleb Smirnoff CSR_WRITE_1(sc, sc->rl_cfg5, v); 2124b2d3d26fSGleb Smirnoff } 2125