1098ca2bdSWarner Losh /*- 2a94100faSBill Paul * Copyright (c) 1997, 1998-2003 3a94100faSBill Paul * Bill Paul <wpaul@windriver.com>. All rights reserved. 4a94100faSBill Paul * 5a94100faSBill Paul * Redistribution and use in source and binary forms, with or without 6a94100faSBill Paul * modification, are permitted provided that the following conditions 7a94100faSBill Paul * are met: 8a94100faSBill Paul * 1. Redistributions of source code must retain the above copyright 9a94100faSBill Paul * notice, this list of conditions and the following disclaimer. 10a94100faSBill Paul * 2. Redistributions in binary form must reproduce the above copyright 11a94100faSBill Paul * notice, this list of conditions and the following disclaimer in the 12a94100faSBill Paul * documentation and/or other materials provided with the distribution. 13a94100faSBill Paul * 3. All advertising materials mentioning features or use of this software 14a94100faSBill Paul * must display the following acknowledgement: 15a94100faSBill Paul * This product includes software developed by Bill Paul. 16a94100faSBill Paul * 4. Neither the name of the author nor the names of any co-contributors 17a94100faSBill Paul * may be used to endorse or promote products derived from this software 18a94100faSBill Paul * without specific prior written permission. 19a94100faSBill Paul * 20a94100faSBill Paul * THIS SOFTWARE IS PROVIDED BY Bill Paul AND CONTRIBUTORS ``AS IS'' AND 21a94100faSBill Paul * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 22a94100faSBill Paul * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 23a94100faSBill Paul * ARE DISCLAIMED. IN NO EVENT SHALL Bill Paul OR THE VOICES IN HIS HEAD 24a94100faSBill Paul * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 25a94100faSBill Paul * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 26a94100faSBill Paul * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 27a94100faSBill Paul * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 28a94100faSBill Paul * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 29a94100faSBill Paul * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF 30a94100faSBill Paul * THE POSSIBILITY OF SUCH DAMAGE. 31a94100faSBill Paul */ 32a94100faSBill Paul 334dc52c32SDavid E. O'Brien #include <sys/cdefs.h> 344dc52c32SDavid E. O'Brien __FBSDID("$FreeBSD$"); 354dc52c32SDavid E. O'Brien 36a94100faSBill Paul /* 37ed510fb0SBill Paul * RealTek 8139C+/8169/8169S/8110S/8168/8111/8101E PCI NIC driver 38a94100faSBill Paul * 39a94100faSBill Paul * Written by Bill Paul <wpaul@windriver.com> 40a94100faSBill Paul * Senior Networking Software Engineer 41a94100faSBill Paul * Wind River Systems 42a94100faSBill Paul */ 43a94100faSBill Paul 44a94100faSBill Paul /* 45a94100faSBill Paul * This driver is designed to support RealTek's next generation of 46a94100faSBill Paul * 10/100 and 10/100/1000 PCI ethernet controllers. There are currently 47ed510fb0SBill Paul * seven devices in this family: the RTL8139C+, the RTL8169, the RTL8169S, 48ed510fb0SBill Paul * RTL8110S, the RTL8168, the RTL8111 and the RTL8101E. 49a94100faSBill Paul * 50a94100faSBill Paul * The 8139C+ is a 10/100 ethernet chip. It is backwards compatible 51a94100faSBill Paul * with the older 8139 family, however it also supports a special 52a94100faSBill Paul * C+ mode of operation that provides several new performance enhancing 53a94100faSBill Paul * features. These include: 54a94100faSBill Paul * 55a94100faSBill Paul * o Descriptor based DMA mechanism. Each descriptor represents 56a94100faSBill Paul * a single packet fragment. Data buffers may be aligned on 57a94100faSBill Paul * any byte boundary. 58a94100faSBill Paul * 59a94100faSBill Paul * o 64-bit DMA 60a94100faSBill Paul * 61a94100faSBill Paul * o TCP/IP checksum offload for both RX and TX 62a94100faSBill Paul * 63a94100faSBill Paul * o High and normal priority transmit DMA rings 64a94100faSBill Paul * 65a94100faSBill Paul * o VLAN tag insertion and extraction 66a94100faSBill Paul * 67a94100faSBill Paul * o TCP large send (segmentation offload) 68a94100faSBill Paul * 69a94100faSBill Paul * Like the 8139, the 8139C+ also has a built-in 10/100 PHY. The C+ 70a94100faSBill Paul * programming API is fairly straightforward. The RX filtering, EEPROM 71a94100faSBill Paul * access and PHY access is the same as it is on the older 8139 series 72a94100faSBill Paul * chips. 73a94100faSBill Paul * 74a94100faSBill Paul * The 8169 is a 64-bit 10/100/1000 gigabit ethernet MAC. It has almost the 75a94100faSBill Paul * same programming API and feature set as the 8139C+ with the following 76a94100faSBill Paul * differences and additions: 77a94100faSBill Paul * 78a94100faSBill Paul * o 1000Mbps mode 79a94100faSBill Paul * 80a94100faSBill Paul * o Jumbo frames 81a94100faSBill Paul * 82a94100faSBill Paul * o GMII and TBI ports/registers for interfacing with copper 83a94100faSBill Paul * or fiber PHYs 84a94100faSBill Paul * 85a94100faSBill Paul * o RX and TX DMA rings can have up to 1024 descriptors 86a94100faSBill Paul * (the 8139C+ allows a maximum of 64) 87a94100faSBill Paul * 88a94100faSBill Paul * o Slight differences in register layout from the 8139C+ 89a94100faSBill Paul * 90a94100faSBill Paul * The TX start and timer interrupt registers are at different locations 91a94100faSBill Paul * on the 8169 than they are on the 8139C+. Also, the status word in the 92a94100faSBill Paul * RX descriptor has a slightly different bit layout. The 8169 does not 93a94100faSBill Paul * have a built-in PHY. Most reference boards use a Marvell 88E1000 'Alaska' 94a94100faSBill Paul * copper gigE PHY. 95a94100faSBill Paul * 96a94100faSBill Paul * The 8169S/8110S 10/100/1000 devices have built-in copper gigE PHYs 97a94100faSBill Paul * (the 'S' stands for 'single-chip'). These devices have the same 98a94100faSBill Paul * programming API as the older 8169, but also have some vendor-specific 99a94100faSBill Paul * registers for the on-board PHY. The 8110S is a LAN-on-motherboard 100a94100faSBill Paul * part designed to be pin-compatible with the RealTek 8100 10/100 chip. 101a94100faSBill Paul * 102a94100faSBill Paul * This driver takes advantage of the RX and TX checksum offload and 103a94100faSBill Paul * VLAN tag insertion/extraction features. It also implements TX 104a94100faSBill Paul * interrupt moderation using the timer interrupt registers, which 105a94100faSBill Paul * significantly reduces TX interrupt load. There is also support 106a94100faSBill Paul * for jumbo frames, however the 8169/8169S/8110S can not transmit 10722a11c96SJohn-Mark Gurney * jumbo frames larger than 7440, so the max MTU possible with this 10822a11c96SJohn-Mark Gurney * driver is 7422 bytes. 109a94100faSBill Paul */ 110a94100faSBill Paul 111f0796cd2SGleb Smirnoff #ifdef HAVE_KERNEL_OPTION_HEADERS 112f0796cd2SGleb Smirnoff #include "opt_device_polling.h" 113f0796cd2SGleb Smirnoff #endif 114f0796cd2SGleb Smirnoff 115a94100faSBill Paul #include <sys/param.h> 116a94100faSBill Paul #include <sys/endian.h> 117a94100faSBill Paul #include <sys/systm.h> 118a94100faSBill Paul #include <sys/sockio.h> 119a94100faSBill Paul #include <sys/mbuf.h> 120a94100faSBill Paul #include <sys/malloc.h> 121fe12f24bSPoul-Henning Kamp #include <sys/module.h> 122a94100faSBill Paul #include <sys/kernel.h> 123a94100faSBill Paul #include <sys/socket.h> 124ed510fb0SBill Paul #include <sys/lock.h> 125ed510fb0SBill Paul #include <sys/mutex.h> 126ed510fb0SBill Paul #include <sys/taskqueue.h> 127a94100faSBill Paul 128a94100faSBill Paul #include <net/if.h> 129a94100faSBill Paul #include <net/if_arp.h> 130a94100faSBill Paul #include <net/ethernet.h> 131a94100faSBill Paul #include <net/if_dl.h> 132a94100faSBill Paul #include <net/if_media.h> 133fc74a9f9SBrooks Davis #include <net/if_types.h> 134a94100faSBill Paul #include <net/if_vlan_var.h> 135a94100faSBill Paul 136a94100faSBill Paul #include <net/bpf.h> 137a94100faSBill Paul 138a94100faSBill Paul #include <machine/bus.h> 139a94100faSBill Paul #include <machine/resource.h> 140a94100faSBill Paul #include <sys/bus.h> 141a94100faSBill Paul #include <sys/rman.h> 142a94100faSBill Paul 143a94100faSBill Paul #include <dev/mii/mii.h> 144a94100faSBill Paul #include <dev/mii/miivar.h> 145a94100faSBill Paul 146a94100faSBill Paul #include <dev/pci/pcireg.h> 147a94100faSBill Paul #include <dev/pci/pcivar.h> 148a94100faSBill Paul 149d65abd66SPyun YongHyeon #include <pci/if_rlreg.h> 150d65abd66SPyun YongHyeon 151a94100faSBill Paul MODULE_DEPEND(re, pci, 1, 1, 1); 152a94100faSBill Paul MODULE_DEPEND(re, ether, 1, 1, 1); 153a94100faSBill Paul MODULE_DEPEND(re, miibus, 1, 1, 1); 154a94100faSBill Paul 155298bfdf3SWarner Losh /* "device miibus" required. See GENERIC if you get errors here. */ 156a94100faSBill Paul #include "miibus_if.h" 157a94100faSBill Paul 1585774c5ffSPyun YongHyeon /* Tunables. */ 1592000cf6cSPyun YongHyeon static int msi_disable = 1; 1605774c5ffSPyun YongHyeon TUNABLE_INT("hw.re.msi_disable", &msi_disable); 1615774c5ffSPyun YongHyeon 162a94100faSBill Paul #define RE_CSUM_FEATURES (CSUM_IP | CSUM_TCP | CSUM_UDP) 163a94100faSBill Paul 164a94100faSBill Paul /* 165a94100faSBill Paul * Various supported device vendors/types and their names. 166a94100faSBill Paul */ 167a94100faSBill Paul static struct rl_type re_devs[] = { 1689dfcacbeSPyun YongHyeon { DLINK_VENDORID, DLINK_DEVICEID_528T, 0, 16932aa5f0eSAnton Berezin "D-Link DGE-528(T) Gigabit Ethernet Adapter" }, 1709dfcacbeSPyun YongHyeon { RT_VENDORID, RT_DEVICEID_8139, 0, 171a94100faSBill Paul "RealTek 8139C+ 10/100BaseTX" }, 1729dfcacbeSPyun YongHyeon { RT_VENDORID, RT_DEVICEID_8101E, 0, 173b1d62f0fSPyun YongHyeon "RealTek 8101E/8102E/8102EL PCIe 10/100baseTX" }, 1749dfcacbeSPyun YongHyeon { RT_VENDORID, RT_DEVICEID_8168, 0, 17559ef640dSPyun YongHyeon "RealTek 8168/8168B/8168C/8168CP/8168D/8111B/8111C/8111CP PCIe " 176deb5c680SPyun YongHyeon "Gigabit Ethernet" }, 1779dfcacbeSPyun YongHyeon { RT_VENDORID, RT_DEVICEID_8169, 0, 178715922d7SPyun YongHyeon "RealTek 8169/8169S/8169SB(L)/8110S/8110SB(L) Gigabit Ethernet" }, 1799dfcacbeSPyun YongHyeon { RT_VENDORID, RT_DEVICEID_8169SC, 0, 1802ee2c3b4SRemko Lodder "RealTek 8169SC/8110SC Single-chip Gigabit Ethernet" }, 1819dfcacbeSPyun YongHyeon { COREGA_VENDORID, COREGA_DEVICEID_CGLAPCIGT, 0, 182ea263191SMIHIRA Sanpei Yoshiro "Corega CG-LAPCIGT (RTL8169S) Gigabit Ethernet" }, 1839dfcacbeSPyun YongHyeon { LINKSYS_VENDORID, LINKSYS_DEVICEID_EG1032, 0, 18426390635SJohn Baldwin "Linksys EG1032 (RTL8169S) Gigabit Ethernet" }, 1859dfcacbeSPyun YongHyeon { USR_VENDORID, USR_DEVICEID_997902, 0, 186dfdb409eSPyun YongHyeon "US Robotics 997902 (RTL8169S) Gigabit Ethernet" } 187a94100faSBill Paul }; 188a94100faSBill Paul 189a94100faSBill Paul static struct rl_hwrev re_hwrevs[] = { 190a94100faSBill Paul { RL_HWREV_8139, RL_8139, "" }, 191a94100faSBill Paul { RL_HWREV_8139A, RL_8139, "A" }, 192a94100faSBill Paul { RL_HWREV_8139AG, RL_8139, "A-G" }, 193a94100faSBill Paul { RL_HWREV_8139B, RL_8139, "B" }, 194a94100faSBill Paul { RL_HWREV_8130, RL_8139, "8130" }, 195a94100faSBill Paul { RL_HWREV_8139C, RL_8139, "C" }, 196a94100faSBill Paul { RL_HWREV_8139D, RL_8139, "8139D/8100B/8100C" }, 197a94100faSBill Paul { RL_HWREV_8139CPLUS, RL_8139CPLUS, "C+"}, 198498bd0d3SBill Paul { RL_HWREV_8168_SPIN1, RL_8169, "8168"}, 199a94100faSBill Paul { RL_HWREV_8169, RL_8169, "8169"}, 20069a6b7fbSBill Paul { RL_HWREV_8169S, RL_8169, "8169S"}, 20169a6b7fbSBill Paul { RL_HWREV_8110S, RL_8169, "8110S"}, 202ed510fb0SBill Paul { RL_HWREV_8169_8110SB, RL_8169, "8169SB"}, 203ed510fb0SBill Paul { RL_HWREV_8169_8110SC, RL_8169, "8169SC"}, 204715922d7SPyun YongHyeon { RL_HWREV_8169_8110SBL, RL_8169, "8169SBL"}, 205a94100faSBill Paul { RL_HWREV_8100, RL_8139, "8100"}, 206a94100faSBill Paul { RL_HWREV_8101, RL_8139, "8101"}, 207ed510fb0SBill Paul { RL_HWREV_8100E, RL_8169, "8100E"}, 208ed510fb0SBill Paul { RL_HWREV_8101E, RL_8169, "8101E"}, 209b1d62f0fSPyun YongHyeon { RL_HWREV_8102E, RL_8169, "8102E"}, 210b1d62f0fSPyun YongHyeon { RL_HWREV_8102EL, RL_8169, "8102EL"}, 211498bd0d3SBill Paul { RL_HWREV_8168_SPIN2, RL_8169, "8168"}, 2121acbb78aSPyun YongHyeon { RL_HWREV_8168_SPIN3, RL_8169, "8168"}, 213deb5c680SPyun YongHyeon { RL_HWREV_8168C, RL_8169, "8168C/8111C"}, 214deb5c680SPyun YongHyeon { RL_HWREV_8168C_SPIN2, RL_8169, "8168C/8111C"}, 215deb5c680SPyun YongHyeon { RL_HWREV_8168CP, RL_8169, "8168CP/8111CP"}, 21659ef640dSPyun YongHyeon { RL_HWREV_8168D, RL_8169, "8168D"}, 217a94100faSBill Paul { 0, 0, NULL } 218a94100faSBill Paul }; 219a94100faSBill Paul 220a94100faSBill Paul static int re_probe (device_t); 221a94100faSBill Paul static int re_attach (device_t); 222a94100faSBill Paul static int re_detach (device_t); 223a94100faSBill Paul 224d65abd66SPyun YongHyeon static int re_encap (struct rl_softc *, struct mbuf **); 225a94100faSBill Paul 226a94100faSBill Paul static void re_dma_map_addr (void *, bus_dma_segment_t *, int, int); 227a94100faSBill Paul static int re_allocmem (device_t, struct rl_softc *); 228d65abd66SPyun YongHyeon static __inline void re_discard_rxbuf 229d65abd66SPyun YongHyeon (struct rl_softc *, int); 230d65abd66SPyun YongHyeon static int re_newbuf (struct rl_softc *, int); 231a94100faSBill Paul static int re_rx_list_init (struct rl_softc *); 232a94100faSBill Paul static int re_tx_list_init (struct rl_softc *); 23322a11c96SJohn-Mark Gurney #ifdef RE_FIXUP_RX 23422a11c96SJohn-Mark Gurney static __inline void re_fixup_rx 23522a11c96SJohn-Mark Gurney (struct mbuf *); 23622a11c96SJohn-Mark Gurney #endif 237ed510fb0SBill Paul static int re_rxeof (struct rl_softc *); 238a94100faSBill Paul static void re_txeof (struct rl_softc *); 23997b9d4baSJohn-Mark Gurney #ifdef DEVICE_POLLING 2400187838bSRuslan Ermilov static void re_poll (struct ifnet *, enum poll_cmd, int); 2410187838bSRuslan Ermilov static void re_poll_locked (struct ifnet *, enum poll_cmd, int); 24297b9d4baSJohn-Mark Gurney #endif 243ef544f63SPaolo Pisati static int re_intr (void *); 244a94100faSBill Paul static void re_tick (void *); 245ed510fb0SBill Paul static void re_tx_task (void *, int); 246ed510fb0SBill Paul static void re_int_task (void *, int); 247a94100faSBill Paul static void re_start (struct ifnet *); 248a94100faSBill Paul static int re_ioctl (struct ifnet *, u_long, caddr_t); 249a94100faSBill Paul static void re_init (void *); 25097b9d4baSJohn-Mark Gurney static void re_init_locked (struct rl_softc *); 251a94100faSBill Paul static void re_stop (struct rl_softc *); 2521d545c7aSMarius Strobl static void re_watchdog (struct rl_softc *); 253a94100faSBill Paul static int re_suspend (device_t); 254a94100faSBill Paul static int re_resume (device_t); 2556a087a87SPyun YongHyeon static int re_shutdown (device_t); 256a94100faSBill Paul static int re_ifmedia_upd (struct ifnet *); 257a94100faSBill Paul static void re_ifmedia_sts (struct ifnet *, struct ifmediareq *); 258a94100faSBill Paul 259a94100faSBill Paul static void re_eeprom_putbyte (struct rl_softc *, int); 260a94100faSBill Paul static void re_eeprom_getword (struct rl_softc *, int, u_int16_t *); 261ed510fb0SBill Paul static void re_read_eeprom (struct rl_softc *, caddr_t, int, int); 262a94100faSBill Paul static int re_gmii_readreg (device_t, int, int); 263a94100faSBill Paul static int re_gmii_writereg (device_t, int, int, int); 264a94100faSBill Paul 265a94100faSBill Paul static int re_miibus_readreg (device_t, int, int); 266a94100faSBill Paul static int re_miibus_writereg (device_t, int, int, int); 267a94100faSBill Paul static void re_miibus_statchg (device_t); 268a94100faSBill Paul 269a94100faSBill Paul static void re_setmulti (struct rl_softc *); 270a94100faSBill Paul static void re_reset (struct rl_softc *); 2717467bd53SPyun YongHyeon static void re_setwol (struct rl_softc *); 2727467bd53SPyun YongHyeon static void re_clrwol (struct rl_softc *); 273a94100faSBill Paul 274ed510fb0SBill Paul #ifdef RE_DIAG 275a94100faSBill Paul static int re_diag (struct rl_softc *); 276ed510fb0SBill Paul #endif 277a94100faSBill Paul 278a94100faSBill Paul static device_method_t re_methods[] = { 279a94100faSBill Paul /* Device interface */ 280a94100faSBill Paul DEVMETHOD(device_probe, re_probe), 281a94100faSBill Paul DEVMETHOD(device_attach, re_attach), 282a94100faSBill Paul DEVMETHOD(device_detach, re_detach), 283a94100faSBill Paul DEVMETHOD(device_suspend, re_suspend), 284a94100faSBill Paul DEVMETHOD(device_resume, re_resume), 285a94100faSBill Paul DEVMETHOD(device_shutdown, re_shutdown), 286a94100faSBill Paul 287a94100faSBill Paul /* bus interface */ 288a94100faSBill Paul DEVMETHOD(bus_print_child, bus_generic_print_child), 289a94100faSBill Paul DEVMETHOD(bus_driver_added, bus_generic_driver_added), 290a94100faSBill Paul 291a94100faSBill Paul /* MII interface */ 292a94100faSBill Paul DEVMETHOD(miibus_readreg, re_miibus_readreg), 293a94100faSBill Paul DEVMETHOD(miibus_writereg, re_miibus_writereg), 294a94100faSBill Paul DEVMETHOD(miibus_statchg, re_miibus_statchg), 295a94100faSBill Paul 296a94100faSBill Paul { 0, 0 } 297a94100faSBill Paul }; 298a94100faSBill Paul 299a94100faSBill Paul static driver_t re_driver = { 300a94100faSBill Paul "re", 301a94100faSBill Paul re_methods, 302a94100faSBill Paul sizeof(struct rl_softc) 303a94100faSBill Paul }; 304a94100faSBill Paul 305a94100faSBill Paul static devclass_t re_devclass; 306a94100faSBill Paul 307a94100faSBill Paul DRIVER_MODULE(re, pci, re_driver, re_devclass, 0, 0); 308347934faSWarner Losh DRIVER_MODULE(re, cardbus, re_driver, re_devclass, 0, 0); 309a94100faSBill Paul DRIVER_MODULE(miibus, re, miibus_driver, miibus_devclass, 0, 0); 310a94100faSBill Paul 311a94100faSBill Paul #define EE_SET(x) \ 312a94100faSBill Paul CSR_WRITE_1(sc, RL_EECMD, \ 313a94100faSBill Paul CSR_READ_1(sc, RL_EECMD) | x) 314a94100faSBill Paul 315a94100faSBill Paul #define EE_CLR(x) \ 316a94100faSBill Paul CSR_WRITE_1(sc, RL_EECMD, \ 317a94100faSBill Paul CSR_READ_1(sc, RL_EECMD) & ~x) 318a94100faSBill Paul 319a94100faSBill Paul /* 320a94100faSBill Paul * Send a read command and address to the EEPROM, check for ACK. 321a94100faSBill Paul */ 322a94100faSBill Paul static void 3237b5ffebfSPyun YongHyeon re_eeprom_putbyte(struct rl_softc *sc, int addr) 324a94100faSBill Paul { 3250ce0868aSPyun YongHyeon int d, i; 326a94100faSBill Paul 327ed510fb0SBill Paul d = addr | (RL_9346_READ << sc->rl_eewidth); 328a94100faSBill Paul 329a94100faSBill Paul /* 330a94100faSBill Paul * Feed in each bit and strobe the clock. 331a94100faSBill Paul */ 332ed510fb0SBill Paul 333ed510fb0SBill Paul for (i = 1 << (sc->rl_eewidth + 3); i; i >>= 1) { 334a94100faSBill Paul if (d & i) { 335a94100faSBill Paul EE_SET(RL_EE_DATAIN); 336a94100faSBill Paul } else { 337a94100faSBill Paul EE_CLR(RL_EE_DATAIN); 338a94100faSBill Paul } 339a94100faSBill Paul DELAY(100); 340a94100faSBill Paul EE_SET(RL_EE_CLK); 341a94100faSBill Paul DELAY(150); 342a94100faSBill Paul EE_CLR(RL_EE_CLK); 343a94100faSBill Paul DELAY(100); 344a94100faSBill Paul } 345a94100faSBill Paul } 346a94100faSBill Paul 347a94100faSBill Paul /* 348a94100faSBill Paul * Read a word of data stored in the EEPROM at address 'addr.' 349a94100faSBill Paul */ 350a94100faSBill Paul static void 3517b5ffebfSPyun YongHyeon re_eeprom_getword(struct rl_softc *sc, int addr, u_int16_t *dest) 352a94100faSBill Paul { 3530ce0868aSPyun YongHyeon int i; 354a94100faSBill Paul u_int16_t word = 0; 355a94100faSBill Paul 356a94100faSBill Paul /* 357a94100faSBill Paul * Send address of word we want to read. 358a94100faSBill Paul */ 359a94100faSBill Paul re_eeprom_putbyte(sc, addr); 360a94100faSBill Paul 361a94100faSBill Paul /* 362a94100faSBill Paul * Start reading bits from EEPROM. 363a94100faSBill Paul */ 364a94100faSBill Paul for (i = 0x8000; i; i >>= 1) { 365a94100faSBill Paul EE_SET(RL_EE_CLK); 366a94100faSBill Paul DELAY(100); 367a94100faSBill Paul if (CSR_READ_1(sc, RL_EECMD) & RL_EE_DATAOUT) 368a94100faSBill Paul word |= i; 369a94100faSBill Paul EE_CLR(RL_EE_CLK); 370a94100faSBill Paul DELAY(100); 371a94100faSBill Paul } 372a94100faSBill Paul 373a94100faSBill Paul *dest = word; 374a94100faSBill Paul } 375a94100faSBill Paul 376a94100faSBill Paul /* 377a94100faSBill Paul * Read a sequence of words from the EEPROM. 378a94100faSBill Paul */ 379a94100faSBill Paul static void 3807b5ffebfSPyun YongHyeon re_read_eeprom(struct rl_softc *sc, caddr_t dest, int off, int cnt) 381a94100faSBill Paul { 382a94100faSBill Paul int i; 383a94100faSBill Paul u_int16_t word = 0, *ptr; 384a94100faSBill Paul 385ed510fb0SBill Paul CSR_SETBIT_1(sc, RL_EECMD, RL_EEMODE_PROGRAM); 386ed510fb0SBill Paul 387ed510fb0SBill Paul DELAY(100); 388ed510fb0SBill Paul 389a94100faSBill Paul for (i = 0; i < cnt; i++) { 390ed510fb0SBill Paul CSR_SETBIT_1(sc, RL_EECMD, RL_EE_SEL); 391a94100faSBill Paul re_eeprom_getword(sc, off + i, &word); 392ed510fb0SBill Paul CSR_CLRBIT_1(sc, RL_EECMD, RL_EE_SEL); 393a94100faSBill Paul ptr = (u_int16_t *)(dest + (i * 2)); 394be099007SPyun YongHyeon *ptr = word; 395a94100faSBill Paul } 396ed510fb0SBill Paul 397ed510fb0SBill Paul CSR_CLRBIT_1(sc, RL_EECMD, RL_EEMODE_PROGRAM); 398a94100faSBill Paul } 399a94100faSBill Paul 400a94100faSBill Paul static int 4017b5ffebfSPyun YongHyeon re_gmii_readreg(device_t dev, int phy, int reg) 402a94100faSBill Paul { 403a94100faSBill Paul struct rl_softc *sc; 404a94100faSBill Paul u_int32_t rval; 405a94100faSBill Paul int i; 406a94100faSBill Paul 407a94100faSBill Paul if (phy != 1) 408a94100faSBill Paul return (0); 409a94100faSBill Paul 410a94100faSBill Paul sc = device_get_softc(dev); 411a94100faSBill Paul 4129bac70b8SBill Paul /* Let the rgephy driver read the GMEDIASTAT register */ 4139bac70b8SBill Paul 4149bac70b8SBill Paul if (reg == RL_GMEDIASTAT) { 4159bac70b8SBill Paul rval = CSR_READ_1(sc, RL_GMEDIASTAT); 4169bac70b8SBill Paul return (rval); 4179bac70b8SBill Paul } 4189bac70b8SBill Paul 419a94100faSBill Paul CSR_WRITE_4(sc, RL_PHYAR, reg << 16); 420a94100faSBill Paul 421a94100faSBill Paul for (i = 0; i < RL_TIMEOUT; i++) { 422a94100faSBill Paul rval = CSR_READ_4(sc, RL_PHYAR); 423a94100faSBill Paul if (rval & RL_PHYAR_BUSY) 424a94100faSBill Paul break; 425f68bc089SPyun YongHyeon DELAY(100); 426a94100faSBill Paul } 427a94100faSBill Paul 428a94100faSBill Paul if (i == RL_TIMEOUT) { 4296b9f5c94SGleb Smirnoff device_printf(sc->rl_dev, "PHY read failed\n"); 430a94100faSBill Paul return (0); 431a94100faSBill Paul } 432a94100faSBill Paul 433a94100faSBill Paul return (rval & RL_PHYAR_PHYDATA); 434a94100faSBill Paul } 435a94100faSBill Paul 436a94100faSBill Paul static int 4377b5ffebfSPyun YongHyeon re_gmii_writereg(device_t dev, int phy, int reg, int data) 438a94100faSBill Paul { 439a94100faSBill Paul struct rl_softc *sc; 440a94100faSBill Paul u_int32_t rval; 441a94100faSBill Paul int i; 442a94100faSBill Paul 443a94100faSBill Paul sc = device_get_softc(dev); 444a94100faSBill Paul 445a94100faSBill Paul CSR_WRITE_4(sc, RL_PHYAR, (reg << 16) | 4469bac70b8SBill Paul (data & RL_PHYAR_PHYDATA) | RL_PHYAR_BUSY); 447a94100faSBill Paul 448a94100faSBill Paul for (i = 0; i < RL_TIMEOUT; i++) { 449a94100faSBill Paul rval = CSR_READ_4(sc, RL_PHYAR); 450a94100faSBill Paul if (!(rval & RL_PHYAR_BUSY)) 451a94100faSBill Paul break; 452f68bc089SPyun YongHyeon DELAY(100); 453a94100faSBill Paul } 454a94100faSBill Paul 455a94100faSBill Paul if (i == RL_TIMEOUT) { 4566b9f5c94SGleb Smirnoff device_printf(sc->rl_dev, "PHY write failed\n"); 457a94100faSBill Paul return (0); 458a94100faSBill Paul } 459a94100faSBill Paul 460a94100faSBill Paul return (0); 461a94100faSBill Paul } 462a94100faSBill Paul 463a94100faSBill Paul static int 4647b5ffebfSPyun YongHyeon re_miibus_readreg(device_t dev, int phy, int reg) 465a94100faSBill Paul { 466a94100faSBill Paul struct rl_softc *sc; 467a94100faSBill Paul u_int16_t rval = 0; 468a94100faSBill Paul u_int16_t re8139_reg = 0; 469a94100faSBill Paul 470a94100faSBill Paul sc = device_get_softc(dev); 471a94100faSBill Paul 472a94100faSBill Paul if (sc->rl_type == RL_8169) { 473a94100faSBill Paul rval = re_gmii_readreg(dev, phy, reg); 474a94100faSBill Paul return (rval); 475a94100faSBill Paul } 476a94100faSBill Paul 477a94100faSBill Paul /* Pretend the internal PHY is only at address 0 */ 478a94100faSBill Paul if (phy) { 479a94100faSBill Paul return (0); 480a94100faSBill Paul } 481a94100faSBill Paul switch (reg) { 482a94100faSBill Paul case MII_BMCR: 483a94100faSBill Paul re8139_reg = RL_BMCR; 484a94100faSBill Paul break; 485a94100faSBill Paul case MII_BMSR: 486a94100faSBill Paul re8139_reg = RL_BMSR; 487a94100faSBill Paul break; 488a94100faSBill Paul case MII_ANAR: 489a94100faSBill Paul re8139_reg = RL_ANAR; 490a94100faSBill Paul break; 491a94100faSBill Paul case MII_ANER: 492a94100faSBill Paul re8139_reg = RL_ANER; 493a94100faSBill Paul break; 494a94100faSBill Paul case MII_ANLPAR: 495a94100faSBill Paul re8139_reg = RL_LPAR; 496a94100faSBill Paul break; 497a94100faSBill Paul case MII_PHYIDR1: 498a94100faSBill Paul case MII_PHYIDR2: 499a94100faSBill Paul return (0); 500a94100faSBill Paul /* 501a94100faSBill Paul * Allow the rlphy driver to read the media status 502a94100faSBill Paul * register. If we have a link partner which does not 503a94100faSBill Paul * support NWAY, this is the register which will tell 504a94100faSBill Paul * us the results of parallel detection. 505a94100faSBill Paul */ 506a94100faSBill Paul case RL_MEDIASTAT: 507a94100faSBill Paul rval = CSR_READ_1(sc, RL_MEDIASTAT); 508a94100faSBill Paul return (rval); 509a94100faSBill Paul default: 5106b9f5c94SGleb Smirnoff device_printf(sc->rl_dev, "bad phy register\n"); 511a94100faSBill Paul return (0); 512a94100faSBill Paul } 513a94100faSBill Paul rval = CSR_READ_2(sc, re8139_reg); 514baa12772SPyun YongHyeon if (sc->rl_type == RL_8139CPLUS && re8139_reg == RL_BMCR) { 515baa12772SPyun YongHyeon /* 8139C+ has different bit layout. */ 516baa12772SPyun YongHyeon rval &= ~(BMCR_LOOP | BMCR_ISO); 517baa12772SPyun YongHyeon } 518a94100faSBill Paul return (rval); 519a94100faSBill Paul } 520a94100faSBill Paul 521a94100faSBill Paul static int 5227b5ffebfSPyun YongHyeon re_miibus_writereg(device_t dev, int phy, int reg, int data) 523a94100faSBill Paul { 524a94100faSBill Paul struct rl_softc *sc; 525a94100faSBill Paul u_int16_t re8139_reg = 0; 526a94100faSBill Paul int rval = 0; 527a94100faSBill Paul 528a94100faSBill Paul sc = device_get_softc(dev); 529a94100faSBill Paul 530a94100faSBill Paul if (sc->rl_type == RL_8169) { 531a94100faSBill Paul rval = re_gmii_writereg(dev, phy, reg, data); 532a94100faSBill Paul return (rval); 533a94100faSBill Paul } 534a94100faSBill Paul 535a94100faSBill Paul /* Pretend the internal PHY is only at address 0 */ 53697b9d4baSJohn-Mark Gurney if (phy) 537a94100faSBill Paul return (0); 53897b9d4baSJohn-Mark Gurney 539a94100faSBill Paul switch (reg) { 540a94100faSBill Paul case MII_BMCR: 541a94100faSBill Paul re8139_reg = RL_BMCR; 542baa12772SPyun YongHyeon if (sc->rl_type == RL_8139CPLUS) { 543baa12772SPyun YongHyeon /* 8139C+ has different bit layout. */ 544baa12772SPyun YongHyeon data &= ~(BMCR_LOOP | BMCR_ISO); 545baa12772SPyun YongHyeon } 546a94100faSBill Paul break; 547a94100faSBill Paul case MII_BMSR: 548a94100faSBill Paul re8139_reg = RL_BMSR; 549a94100faSBill Paul break; 550a94100faSBill Paul case MII_ANAR: 551a94100faSBill Paul re8139_reg = RL_ANAR; 552a94100faSBill Paul break; 553a94100faSBill Paul case MII_ANER: 554a94100faSBill Paul re8139_reg = RL_ANER; 555a94100faSBill Paul break; 556a94100faSBill Paul case MII_ANLPAR: 557a94100faSBill Paul re8139_reg = RL_LPAR; 558a94100faSBill Paul break; 559a94100faSBill Paul case MII_PHYIDR1: 560a94100faSBill Paul case MII_PHYIDR2: 561a94100faSBill Paul return (0); 562a94100faSBill Paul break; 563a94100faSBill Paul default: 5646b9f5c94SGleb Smirnoff device_printf(sc->rl_dev, "bad phy register\n"); 565a94100faSBill Paul return (0); 566a94100faSBill Paul } 567a94100faSBill Paul CSR_WRITE_2(sc, re8139_reg, data); 568a94100faSBill Paul return (0); 569a94100faSBill Paul } 570a94100faSBill Paul 571a94100faSBill Paul static void 5727b5ffebfSPyun YongHyeon re_miibus_statchg(device_t dev) 573a94100faSBill Paul { 574130b6dfbSPyun YongHyeon struct rl_softc *sc; 575130b6dfbSPyun YongHyeon struct ifnet *ifp; 576130b6dfbSPyun YongHyeon struct mii_data *mii; 577a11e2f18SBruce M Simpson 578130b6dfbSPyun YongHyeon sc = device_get_softc(dev); 579130b6dfbSPyun YongHyeon mii = device_get_softc(sc->rl_miibus); 580130b6dfbSPyun YongHyeon ifp = sc->rl_ifp; 581130b6dfbSPyun YongHyeon if (mii == NULL || ifp == NULL || 582130b6dfbSPyun YongHyeon (ifp->if_drv_flags & IFF_DRV_RUNNING) == 0) 583130b6dfbSPyun YongHyeon return; 584130b6dfbSPyun YongHyeon 585130b6dfbSPyun YongHyeon sc->rl_flags &= ~RL_FLAG_LINK; 586130b6dfbSPyun YongHyeon if ((mii->mii_media_status & (IFM_ACTIVE | IFM_AVALID)) == 587130b6dfbSPyun YongHyeon (IFM_ACTIVE | IFM_AVALID)) { 588130b6dfbSPyun YongHyeon switch (IFM_SUBTYPE(mii->mii_media_active)) { 589130b6dfbSPyun YongHyeon case IFM_10_T: 590130b6dfbSPyun YongHyeon case IFM_100_TX: 591130b6dfbSPyun YongHyeon sc->rl_flags |= RL_FLAG_LINK; 592130b6dfbSPyun YongHyeon break; 593130b6dfbSPyun YongHyeon case IFM_1000_T: 594130b6dfbSPyun YongHyeon if ((sc->rl_flags & RL_FLAG_FASTETHER) != 0) 595130b6dfbSPyun YongHyeon break; 596130b6dfbSPyun YongHyeon sc->rl_flags |= RL_FLAG_LINK; 597130b6dfbSPyun YongHyeon break; 598130b6dfbSPyun YongHyeon default: 599130b6dfbSPyun YongHyeon break; 600130b6dfbSPyun YongHyeon } 601130b6dfbSPyun YongHyeon } 602130b6dfbSPyun YongHyeon /* 603130b6dfbSPyun YongHyeon * RealTek controllers does not provide any interface to 604130b6dfbSPyun YongHyeon * Tx/Rx MACs for resolved speed, duplex and flow-control 605130b6dfbSPyun YongHyeon * parameters. 606130b6dfbSPyun YongHyeon */ 607a94100faSBill Paul } 608a94100faSBill Paul 609a94100faSBill Paul /* 610a94100faSBill Paul * Program the 64-bit multicast hash filter. 611a94100faSBill Paul */ 612a94100faSBill Paul static void 6137b5ffebfSPyun YongHyeon re_setmulti(struct rl_softc *sc) 614a94100faSBill Paul { 615a94100faSBill Paul struct ifnet *ifp; 616a94100faSBill Paul int h = 0; 617a94100faSBill Paul u_int32_t hashes[2] = { 0, 0 }; 618a94100faSBill Paul struct ifmultiaddr *ifma; 619a94100faSBill Paul u_int32_t rxfilt; 620a94100faSBill Paul int mcnt = 0; 621a94100faSBill Paul 62297b9d4baSJohn-Mark Gurney RL_LOCK_ASSERT(sc); 62397b9d4baSJohn-Mark Gurney 624fc74a9f9SBrooks Davis ifp = sc->rl_ifp; 625a94100faSBill Paul 626a94100faSBill Paul 6277c103000SPyun YongHyeon rxfilt = CSR_READ_4(sc, RL_RXCFG); 6287c103000SPyun YongHyeon rxfilt &= ~(RL_RXCFG_RX_ALLPHYS | RL_RXCFG_RX_MULTI); 629a94100faSBill Paul if (ifp->if_flags & IFF_ALLMULTI || ifp->if_flags & IFF_PROMISC) { 6307c103000SPyun YongHyeon if (ifp->if_flags & IFF_PROMISC) 6317c103000SPyun YongHyeon rxfilt |= RL_RXCFG_RX_ALLPHYS; 632a0637caaSPyun YongHyeon /* 633a0637caaSPyun YongHyeon * Unlike other hardwares, we have to explicitly set 634a0637caaSPyun YongHyeon * RL_RXCFG_RX_MULTI to receive multicast frames in 635a0637caaSPyun YongHyeon * promiscuous mode. 636a0637caaSPyun YongHyeon */ 637a94100faSBill Paul rxfilt |= RL_RXCFG_RX_MULTI; 638a94100faSBill Paul CSR_WRITE_4(sc, RL_RXCFG, rxfilt); 639a94100faSBill Paul CSR_WRITE_4(sc, RL_MAR0, 0xFFFFFFFF); 640a94100faSBill Paul CSR_WRITE_4(sc, RL_MAR4, 0xFFFFFFFF); 641a94100faSBill Paul return; 642a94100faSBill Paul } 643a94100faSBill Paul 644a94100faSBill Paul /* first, zot all the existing hash bits */ 645a94100faSBill Paul CSR_WRITE_4(sc, RL_MAR0, 0); 646a94100faSBill Paul CSR_WRITE_4(sc, RL_MAR4, 0); 647a94100faSBill Paul 648a94100faSBill Paul /* now program new ones */ 64913b203d0SRobert Watson IF_ADDR_LOCK(ifp); 650a94100faSBill Paul TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) { 651a94100faSBill Paul if (ifma->ifma_addr->sa_family != AF_LINK) 652a94100faSBill Paul continue; 6530e939c0cSChristian Weisgerber h = ether_crc32_be(LLADDR((struct sockaddr_dl *) 6540e939c0cSChristian Weisgerber ifma->ifma_addr), ETHER_ADDR_LEN) >> 26; 655a94100faSBill Paul if (h < 32) 656a94100faSBill Paul hashes[0] |= (1 << h); 657a94100faSBill Paul else 658a94100faSBill Paul hashes[1] |= (1 << (h - 32)); 659a94100faSBill Paul mcnt++; 660a94100faSBill Paul } 66113b203d0SRobert Watson IF_ADDR_UNLOCK(ifp); 662a94100faSBill Paul 663a94100faSBill Paul if (mcnt) 664a94100faSBill Paul rxfilt |= RL_RXCFG_RX_MULTI; 665a94100faSBill Paul else 666a94100faSBill Paul rxfilt &= ~RL_RXCFG_RX_MULTI; 667a94100faSBill Paul 668a94100faSBill Paul CSR_WRITE_4(sc, RL_RXCFG, rxfilt); 669bb7dfefbSBill Paul 670bb7dfefbSBill Paul /* 671bb7dfefbSBill Paul * For some unfathomable reason, RealTek decided to reverse 672bb7dfefbSBill Paul * the order of the multicast hash registers in the PCI Express 673bb7dfefbSBill Paul * parts. This means we have to write the hash pattern in reverse 674bb7dfefbSBill Paul * order for those devices. 675bb7dfefbSBill Paul */ 676bb7dfefbSBill Paul 677351a76f9SPyun YongHyeon if ((sc->rl_flags & RL_FLAG_INVMAR) != 0) { 678bb7dfefbSBill Paul CSR_WRITE_4(sc, RL_MAR0, bswap32(hashes[1])); 679bb7dfefbSBill Paul CSR_WRITE_4(sc, RL_MAR4, bswap32(hashes[0])); 680351a76f9SPyun YongHyeon } else { 681a94100faSBill Paul CSR_WRITE_4(sc, RL_MAR0, hashes[0]); 682a94100faSBill Paul CSR_WRITE_4(sc, RL_MAR4, hashes[1]); 683a94100faSBill Paul } 684bb7dfefbSBill Paul } 685a94100faSBill Paul 686a94100faSBill Paul static void 6877b5ffebfSPyun YongHyeon re_reset(struct rl_softc *sc) 688a94100faSBill Paul { 6890ce0868aSPyun YongHyeon int i; 690a94100faSBill Paul 69197b9d4baSJohn-Mark Gurney RL_LOCK_ASSERT(sc); 69297b9d4baSJohn-Mark Gurney 693a94100faSBill Paul CSR_WRITE_1(sc, RL_COMMAND, RL_CMD_RESET); 694a94100faSBill Paul 695a94100faSBill Paul for (i = 0; i < RL_TIMEOUT; i++) { 696a94100faSBill Paul DELAY(10); 697a94100faSBill Paul if (!(CSR_READ_1(sc, RL_COMMAND) & RL_CMD_RESET)) 698a94100faSBill Paul break; 699a94100faSBill Paul } 700a94100faSBill Paul if (i == RL_TIMEOUT) 7016b9f5c94SGleb Smirnoff device_printf(sc->rl_dev, "reset never completed!\n"); 702a94100faSBill Paul 703a94100faSBill Paul CSR_WRITE_1(sc, 0x82, 1); 704a94100faSBill Paul } 705a94100faSBill Paul 706ed510fb0SBill Paul #ifdef RE_DIAG 707ed510fb0SBill Paul 708a94100faSBill Paul /* 709a94100faSBill Paul * The following routine is designed to test for a defect on some 710a94100faSBill Paul * 32-bit 8169 cards. Some of these NICs have the REQ64# and ACK64# 711a94100faSBill Paul * lines connected to the bus, however for a 32-bit only card, they 712a94100faSBill Paul * should be pulled high. The result of this defect is that the 713a94100faSBill Paul * NIC will not work right if you plug it into a 64-bit slot: DMA 714a94100faSBill Paul * operations will be done with 64-bit transfers, which will fail 715a94100faSBill Paul * because the 64-bit data lines aren't connected. 716a94100faSBill Paul * 717a94100faSBill Paul * There's no way to work around this (short of talking a soldering 718a94100faSBill Paul * iron to the board), however we can detect it. The method we use 719a94100faSBill Paul * here is to put the NIC into digital loopback mode, set the receiver 720a94100faSBill Paul * to promiscuous mode, and then try to send a frame. We then compare 721a94100faSBill Paul * the frame data we sent to what was received. If the data matches, 722a94100faSBill Paul * then the NIC is working correctly, otherwise we know the user has 723a94100faSBill Paul * a defective NIC which has been mistakenly plugged into a 64-bit PCI 724a94100faSBill Paul * slot. In the latter case, there's no way the NIC can work correctly, 725a94100faSBill Paul * so we print out a message on the console and abort the device attach. 726a94100faSBill Paul */ 727a94100faSBill Paul 728a94100faSBill Paul static int 7297b5ffebfSPyun YongHyeon re_diag(struct rl_softc *sc) 730a94100faSBill Paul { 731fc74a9f9SBrooks Davis struct ifnet *ifp = sc->rl_ifp; 732a94100faSBill Paul struct mbuf *m0; 733a94100faSBill Paul struct ether_header *eh; 734a94100faSBill Paul struct rl_desc *cur_rx; 735a94100faSBill Paul u_int16_t status; 736a94100faSBill Paul u_int32_t rxstat; 737ed510fb0SBill Paul int total_len, i, error = 0, phyaddr; 738a94100faSBill Paul u_int8_t dst[] = { 0x00, 'h', 'e', 'l', 'l', 'o' }; 739a94100faSBill Paul u_int8_t src[] = { 0x00, 'w', 'o', 'r', 'l', 'd' }; 740a94100faSBill Paul 741a94100faSBill Paul /* Allocate a single mbuf */ 742a94100faSBill Paul MGETHDR(m0, M_DONTWAIT, MT_DATA); 743a94100faSBill Paul if (m0 == NULL) 744a94100faSBill Paul return (ENOBUFS); 745a94100faSBill Paul 74697b9d4baSJohn-Mark Gurney RL_LOCK(sc); 74797b9d4baSJohn-Mark Gurney 748a94100faSBill Paul /* 749a94100faSBill Paul * Initialize the NIC in test mode. This sets the chip up 750a94100faSBill Paul * so that it can send and receive frames, but performs the 751a94100faSBill Paul * following special functions: 752a94100faSBill Paul * - Puts receiver in promiscuous mode 753a94100faSBill Paul * - Enables digital loopback mode 754a94100faSBill Paul * - Leaves interrupts turned off 755a94100faSBill Paul */ 756a94100faSBill Paul 757a94100faSBill Paul ifp->if_flags |= IFF_PROMISC; 758a94100faSBill Paul sc->rl_testmode = 1; 75997b9d4baSJohn-Mark Gurney re_init_locked(sc); 760351a76f9SPyun YongHyeon sc->rl_flags |= RL_FLAG_LINK; 761ed510fb0SBill Paul if (sc->rl_type == RL_8169) 762ed510fb0SBill Paul phyaddr = 1; 763ed510fb0SBill Paul else 764ed510fb0SBill Paul phyaddr = 0; 765ed510fb0SBill Paul 766ed510fb0SBill Paul re_miibus_writereg(sc->rl_dev, phyaddr, MII_BMCR, BMCR_RESET); 767ed510fb0SBill Paul for (i = 0; i < RL_TIMEOUT; i++) { 768ed510fb0SBill Paul status = re_miibus_readreg(sc->rl_dev, phyaddr, MII_BMCR); 769ed510fb0SBill Paul if (!(status & BMCR_RESET)) 770ed510fb0SBill Paul break; 771ed510fb0SBill Paul } 772ed510fb0SBill Paul 773ed510fb0SBill Paul re_miibus_writereg(sc->rl_dev, phyaddr, MII_BMCR, BMCR_LOOP); 774ed510fb0SBill Paul CSR_WRITE_2(sc, RL_ISR, RL_INTRS); 775ed510fb0SBill Paul 776804af9a1SBill Paul DELAY(100000); 777a94100faSBill Paul 778a94100faSBill Paul /* Put some data in the mbuf */ 779a94100faSBill Paul 780a94100faSBill Paul eh = mtod(m0, struct ether_header *); 781a94100faSBill Paul bcopy ((char *)&dst, eh->ether_dhost, ETHER_ADDR_LEN); 782a94100faSBill Paul bcopy ((char *)&src, eh->ether_shost, ETHER_ADDR_LEN); 783a94100faSBill Paul eh->ether_type = htons(ETHERTYPE_IP); 784a94100faSBill Paul m0->m_pkthdr.len = m0->m_len = ETHER_MIN_LEN - ETHER_CRC_LEN; 785a94100faSBill Paul 7867cae6651SBill Paul /* 7877cae6651SBill Paul * Queue the packet, start transmission. 7887cae6651SBill Paul * Note: IF_HANDOFF() ultimately calls re_start() for us. 7897cae6651SBill Paul */ 790a94100faSBill Paul 791abc8ff44SBill Paul CSR_WRITE_2(sc, RL_ISR, 0xFFFF); 79297b9d4baSJohn-Mark Gurney RL_UNLOCK(sc); 79352732175SMax Laier /* XXX: re_diag must not be called when in ALTQ mode */ 7947cae6651SBill Paul IF_HANDOFF(&ifp->if_snd, m0, ifp); 79597b9d4baSJohn-Mark Gurney RL_LOCK(sc); 796a94100faSBill Paul m0 = NULL; 797a94100faSBill Paul 798a94100faSBill Paul /* Wait for it to propagate through the chip */ 799a94100faSBill Paul 800abc8ff44SBill Paul DELAY(100000); 801a94100faSBill Paul for (i = 0; i < RL_TIMEOUT; i++) { 802a94100faSBill Paul status = CSR_READ_2(sc, RL_ISR); 803ed510fb0SBill Paul CSR_WRITE_2(sc, RL_ISR, status); 804abc8ff44SBill Paul if ((status & (RL_ISR_TIMEOUT_EXPIRED|RL_ISR_RX_OK)) == 805abc8ff44SBill Paul (RL_ISR_TIMEOUT_EXPIRED|RL_ISR_RX_OK)) 806a94100faSBill Paul break; 807a94100faSBill Paul DELAY(10); 808a94100faSBill Paul } 809a94100faSBill Paul 810a94100faSBill Paul if (i == RL_TIMEOUT) { 8116b9f5c94SGleb Smirnoff device_printf(sc->rl_dev, 8126b9f5c94SGleb Smirnoff "diagnostic failed, failed to receive packet in" 8136b9f5c94SGleb Smirnoff " loopback mode\n"); 814a94100faSBill Paul error = EIO; 815a94100faSBill Paul goto done; 816a94100faSBill Paul } 817a94100faSBill Paul 818a94100faSBill Paul /* 819a94100faSBill Paul * The packet should have been dumped into the first 820a94100faSBill Paul * entry in the RX DMA ring. Grab it from there. 821a94100faSBill Paul */ 822a94100faSBill Paul 823a94100faSBill Paul bus_dmamap_sync(sc->rl_ldata.rl_rx_list_tag, 824a94100faSBill Paul sc->rl_ldata.rl_rx_list_map, 825a94100faSBill Paul BUS_DMASYNC_POSTREAD); 826d65abd66SPyun YongHyeon bus_dmamap_sync(sc->rl_ldata.rl_rx_mtag, 827d65abd66SPyun YongHyeon sc->rl_ldata.rl_rx_desc[0].rx_dmamap, 828d65abd66SPyun YongHyeon BUS_DMASYNC_POSTREAD); 829d65abd66SPyun YongHyeon bus_dmamap_unload(sc->rl_ldata.rl_rx_mtag, 830d65abd66SPyun YongHyeon sc->rl_ldata.rl_rx_desc[0].rx_dmamap); 831a94100faSBill Paul 832d65abd66SPyun YongHyeon m0 = sc->rl_ldata.rl_rx_desc[0].rx_m; 833d65abd66SPyun YongHyeon sc->rl_ldata.rl_rx_desc[0].rx_m = NULL; 834a94100faSBill Paul eh = mtod(m0, struct ether_header *); 835a94100faSBill Paul 836a94100faSBill Paul cur_rx = &sc->rl_ldata.rl_rx_list[0]; 837a94100faSBill Paul total_len = RL_RXBYTES(cur_rx); 838a94100faSBill Paul rxstat = le32toh(cur_rx->rl_cmdstat); 839a94100faSBill Paul 840a94100faSBill Paul if (total_len != ETHER_MIN_LEN) { 8416b9f5c94SGleb Smirnoff device_printf(sc->rl_dev, 8426b9f5c94SGleb Smirnoff "diagnostic failed, received short packet\n"); 843a94100faSBill Paul error = EIO; 844a94100faSBill Paul goto done; 845a94100faSBill Paul } 846a94100faSBill Paul 847a94100faSBill Paul /* Test that the received packet data matches what we sent. */ 848a94100faSBill Paul 849a94100faSBill Paul if (bcmp((char *)&eh->ether_dhost, (char *)&dst, ETHER_ADDR_LEN) || 850a94100faSBill Paul bcmp((char *)&eh->ether_shost, (char *)&src, ETHER_ADDR_LEN) || 851a94100faSBill Paul ntohs(eh->ether_type) != ETHERTYPE_IP) { 8526b9f5c94SGleb Smirnoff device_printf(sc->rl_dev, "WARNING, DMA FAILURE!\n"); 8536b9f5c94SGleb Smirnoff device_printf(sc->rl_dev, "expected TX data: %6D/%6D/0x%x\n", 854a94100faSBill Paul dst, ":", src, ":", ETHERTYPE_IP); 8556b9f5c94SGleb Smirnoff device_printf(sc->rl_dev, "received RX data: %6D/%6D/0x%x\n", 856a94100faSBill Paul eh->ether_dhost, ":", eh->ether_shost, ":", 857a94100faSBill Paul ntohs(eh->ether_type)); 8586b9f5c94SGleb Smirnoff device_printf(sc->rl_dev, "You may have a defective 32-bit " 8596b9f5c94SGleb Smirnoff "NIC plugged into a 64-bit PCI slot.\n"); 8606b9f5c94SGleb Smirnoff device_printf(sc->rl_dev, "Please re-install the NIC in a " 8616b9f5c94SGleb Smirnoff "32-bit slot for proper operation.\n"); 8626b9f5c94SGleb Smirnoff device_printf(sc->rl_dev, "Read the re(4) man page for more " 8636b9f5c94SGleb Smirnoff "details.\n"); 864a94100faSBill Paul error = EIO; 865a94100faSBill Paul } 866a94100faSBill Paul 867a94100faSBill Paul done: 868a94100faSBill Paul /* Turn interface off, release resources */ 869a94100faSBill Paul 870a94100faSBill Paul sc->rl_testmode = 0; 871351a76f9SPyun YongHyeon sc->rl_flags &= ~RL_FLAG_LINK; 872a94100faSBill Paul ifp->if_flags &= ~IFF_PROMISC; 873a94100faSBill Paul re_stop(sc); 874a94100faSBill Paul if (m0 != NULL) 875a94100faSBill Paul m_freem(m0); 876a94100faSBill Paul 87797b9d4baSJohn-Mark Gurney RL_UNLOCK(sc); 87897b9d4baSJohn-Mark Gurney 879a94100faSBill Paul return (error); 880a94100faSBill Paul } 881a94100faSBill Paul 882ed510fb0SBill Paul #endif 883ed510fb0SBill Paul 884a94100faSBill Paul /* 885a94100faSBill Paul * Probe for a RealTek 8139C+/8169/8110 chip. Check the PCI vendor and device 886a94100faSBill Paul * IDs against our list and return a device name if we find a match. 887a94100faSBill Paul */ 888a94100faSBill Paul static int 8897b5ffebfSPyun YongHyeon re_probe(device_t dev) 890a94100faSBill Paul { 891a94100faSBill Paul struct rl_type *t; 892dfdb409eSPyun YongHyeon uint16_t devid, vendor; 893dfdb409eSPyun YongHyeon uint16_t revid, sdevid; 894dfdb409eSPyun YongHyeon int i; 895a94100faSBill Paul 896dfdb409eSPyun YongHyeon vendor = pci_get_vendor(dev); 897dfdb409eSPyun YongHyeon devid = pci_get_device(dev); 898dfdb409eSPyun YongHyeon revid = pci_get_revid(dev); 899dfdb409eSPyun YongHyeon sdevid = pci_get_subdevice(dev); 900a94100faSBill Paul 901dfdb409eSPyun YongHyeon if (vendor == LINKSYS_VENDORID && devid == LINKSYS_DEVICEID_EG1032) { 902dfdb409eSPyun YongHyeon if (sdevid != LINKSYS_SUBDEVICE_EG1032_REV3) { 90326390635SJohn Baldwin /* 90426390635SJohn Baldwin * Only attach to rev. 3 of the Linksys EG1032 adapter. 905dfdb409eSPyun YongHyeon * Rev. 2 is supported by sk(4). 90626390635SJohn Baldwin */ 907a94100faSBill Paul return (ENXIO); 908a94100faSBill Paul } 909dfdb409eSPyun YongHyeon } 910dfdb409eSPyun YongHyeon 911dfdb409eSPyun YongHyeon if (vendor == RT_VENDORID && devid == RT_DEVICEID_8139) { 912dfdb409eSPyun YongHyeon if (revid != 0x20) { 913dfdb409eSPyun YongHyeon /* 8139, let rl(4) take care of this device. */ 914dfdb409eSPyun YongHyeon return (ENXIO); 915dfdb409eSPyun YongHyeon } 916dfdb409eSPyun YongHyeon } 917dfdb409eSPyun YongHyeon 918dfdb409eSPyun YongHyeon t = re_devs; 919dfdb409eSPyun YongHyeon for (i = 0; i < sizeof(re_devs) / sizeof(re_devs[0]); i++, t++) { 920dfdb409eSPyun YongHyeon if (vendor == t->rl_vid && devid == t->rl_did) { 921a94100faSBill Paul device_set_desc(dev, t->rl_name); 922d2b677bbSWarner Losh return (BUS_PROBE_DEFAULT); 923a94100faSBill Paul } 924a94100faSBill Paul } 925a94100faSBill Paul 926a94100faSBill Paul return (ENXIO); 927a94100faSBill Paul } 928a94100faSBill Paul 929a94100faSBill Paul /* 930a94100faSBill Paul * Map a single buffer address. 931a94100faSBill Paul */ 932a94100faSBill Paul 933a94100faSBill Paul static void 9347b5ffebfSPyun YongHyeon re_dma_map_addr(void *arg, bus_dma_segment_t *segs, int nseg, int error) 935a94100faSBill Paul { 9368fd99e38SPyun YongHyeon bus_addr_t *addr; 937a94100faSBill Paul 938a94100faSBill Paul if (error) 939a94100faSBill Paul return; 940a94100faSBill Paul 941a94100faSBill Paul KASSERT(nseg == 1, ("too many DMA segments, %d should be 1", nseg)); 942a94100faSBill Paul addr = arg; 943a94100faSBill Paul *addr = segs->ds_addr; 944a94100faSBill Paul } 945a94100faSBill Paul 946a94100faSBill Paul static int 9477b5ffebfSPyun YongHyeon re_allocmem(device_t dev, struct rl_softc *sc) 948a94100faSBill Paul { 949d65abd66SPyun YongHyeon bus_size_t rx_list_size, tx_list_size; 950a94100faSBill Paul int error; 951a94100faSBill Paul int i; 952a94100faSBill Paul 953d65abd66SPyun YongHyeon rx_list_size = sc->rl_ldata.rl_rx_desc_cnt * sizeof(struct rl_desc); 954d65abd66SPyun YongHyeon tx_list_size = sc->rl_ldata.rl_tx_desc_cnt * sizeof(struct rl_desc); 955d65abd66SPyun YongHyeon 956d65abd66SPyun YongHyeon /* 957d65abd66SPyun YongHyeon * Allocate the parent bus DMA tag appropriate for PCI. 958ce628393SPyun YongHyeon * In order to use DAC, RL_CPLUSCMD_PCI_DAC bit of RL_CPLUS_CMD 959ce628393SPyun YongHyeon * register should be set. However some RealTek chips are known 960ce628393SPyun YongHyeon * to be buggy on DAC handling, therefore disable DAC by limiting 961ce628393SPyun YongHyeon * DMA address space to 32bit. PCIe variants of RealTek chips 962ce628393SPyun YongHyeon * may not have the limitation but I took safer path. 963d65abd66SPyun YongHyeon */ 964d65abd66SPyun YongHyeon error = bus_dma_tag_create(bus_get_dma_tag(dev), 1, 0, 965ce628393SPyun YongHyeon BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, NULL, NULL, 966d65abd66SPyun YongHyeon BUS_SPACE_MAXSIZE_32BIT, 0, BUS_SPACE_MAXSIZE_32BIT, 0, 967d65abd66SPyun YongHyeon NULL, NULL, &sc->rl_parent_tag); 968d65abd66SPyun YongHyeon if (error) { 969d65abd66SPyun YongHyeon device_printf(dev, "could not allocate parent DMA tag\n"); 970d65abd66SPyun YongHyeon return (error); 971d65abd66SPyun YongHyeon } 972d65abd66SPyun YongHyeon 973d65abd66SPyun YongHyeon /* 974d65abd66SPyun YongHyeon * Allocate map for TX mbufs. 975d65abd66SPyun YongHyeon */ 976d65abd66SPyun YongHyeon error = bus_dma_tag_create(sc->rl_parent_tag, 1, 0, 977d65abd66SPyun YongHyeon BUS_SPACE_MAXADDR, BUS_SPACE_MAXADDR, NULL, 978d65abd66SPyun YongHyeon NULL, MCLBYTES * RL_NTXSEGS, RL_NTXSEGS, 4096, 0, 979d65abd66SPyun YongHyeon NULL, NULL, &sc->rl_ldata.rl_tx_mtag); 980d65abd66SPyun YongHyeon if (error) { 981d65abd66SPyun YongHyeon device_printf(dev, "could not allocate TX DMA tag\n"); 982d65abd66SPyun YongHyeon return (error); 983d65abd66SPyun YongHyeon } 984d65abd66SPyun YongHyeon 985a94100faSBill Paul /* 986a94100faSBill Paul * Allocate map for RX mbufs. 987a94100faSBill Paul */ 988d65abd66SPyun YongHyeon 989d65abd66SPyun YongHyeon error = bus_dma_tag_create(sc->rl_parent_tag, sizeof(uint64_t), 0, 990d65abd66SPyun YongHyeon BUS_SPACE_MAXADDR, BUS_SPACE_MAXADDR, NULL, NULL, 991d65abd66SPyun YongHyeon MCLBYTES, 1, MCLBYTES, 0, NULL, NULL, &sc->rl_ldata.rl_rx_mtag); 992a94100faSBill Paul if (error) { 993d65abd66SPyun YongHyeon device_printf(dev, "could not allocate RX DMA tag\n"); 994d65abd66SPyun YongHyeon return (error); 995a94100faSBill Paul } 996a94100faSBill Paul 997a94100faSBill Paul /* 998a94100faSBill Paul * Allocate map for TX descriptor list. 999a94100faSBill Paul */ 1000a94100faSBill Paul error = bus_dma_tag_create(sc->rl_parent_tag, RL_RING_ALIGN, 1001a94100faSBill Paul 0, BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, NULL, 1002d65abd66SPyun YongHyeon NULL, tx_list_size, 1, tx_list_size, 0, 1003a94100faSBill Paul NULL, NULL, &sc->rl_ldata.rl_tx_list_tag); 1004a94100faSBill Paul if (error) { 1005d65abd66SPyun YongHyeon device_printf(dev, "could not allocate TX DMA ring tag\n"); 1006d65abd66SPyun YongHyeon return (error); 1007a94100faSBill Paul } 1008a94100faSBill Paul 1009a94100faSBill Paul /* Allocate DMA'able memory for the TX ring */ 1010a94100faSBill Paul 1011a94100faSBill Paul error = bus_dmamem_alloc(sc->rl_ldata.rl_tx_list_tag, 1012d65abd66SPyun YongHyeon (void **)&sc->rl_ldata.rl_tx_list, 1013d65abd66SPyun YongHyeon BUS_DMA_WAITOK | BUS_DMA_COHERENT | BUS_DMA_ZERO, 1014a94100faSBill Paul &sc->rl_ldata.rl_tx_list_map); 1015d65abd66SPyun YongHyeon if (error) { 1016d65abd66SPyun YongHyeon device_printf(dev, "could not allocate TX DMA ring\n"); 1017d65abd66SPyun YongHyeon return (error); 1018d65abd66SPyun YongHyeon } 1019a94100faSBill Paul 1020a94100faSBill Paul /* Load the map for the TX ring. */ 1021a94100faSBill Paul 1022d65abd66SPyun YongHyeon sc->rl_ldata.rl_tx_list_addr = 0; 1023a94100faSBill Paul error = bus_dmamap_load(sc->rl_ldata.rl_tx_list_tag, 1024a94100faSBill Paul sc->rl_ldata.rl_tx_list_map, sc->rl_ldata.rl_tx_list, 1025d65abd66SPyun YongHyeon tx_list_size, re_dma_map_addr, 1026a94100faSBill Paul &sc->rl_ldata.rl_tx_list_addr, BUS_DMA_NOWAIT); 1027d65abd66SPyun YongHyeon if (error != 0 || sc->rl_ldata.rl_tx_list_addr == 0) { 1028d65abd66SPyun YongHyeon device_printf(dev, "could not load TX DMA ring\n"); 1029d65abd66SPyun YongHyeon return (ENOMEM); 1030d65abd66SPyun YongHyeon } 1031a94100faSBill Paul 1032a94100faSBill Paul /* Create DMA maps for TX buffers */ 1033a94100faSBill Paul 1034d65abd66SPyun YongHyeon for (i = 0; i < sc->rl_ldata.rl_tx_desc_cnt; i++) { 1035d65abd66SPyun YongHyeon error = bus_dmamap_create(sc->rl_ldata.rl_tx_mtag, 0, 1036d65abd66SPyun YongHyeon &sc->rl_ldata.rl_tx_desc[i].tx_dmamap); 1037a94100faSBill Paul if (error) { 1038d65abd66SPyun YongHyeon device_printf(dev, "could not create DMA map for TX\n"); 1039d65abd66SPyun YongHyeon return (error); 1040a94100faSBill Paul } 1041a94100faSBill Paul } 1042a94100faSBill Paul 1043a94100faSBill Paul /* 1044a94100faSBill Paul * Allocate map for RX descriptor list. 1045a94100faSBill Paul */ 1046a94100faSBill Paul error = bus_dma_tag_create(sc->rl_parent_tag, RL_RING_ALIGN, 1047a94100faSBill Paul 0, BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, NULL, 1048d65abd66SPyun YongHyeon NULL, rx_list_size, 1, rx_list_size, 0, 1049a94100faSBill Paul NULL, NULL, &sc->rl_ldata.rl_rx_list_tag); 1050a94100faSBill Paul if (error) { 1051d65abd66SPyun YongHyeon device_printf(dev, "could not create RX DMA ring tag\n"); 1052d65abd66SPyun YongHyeon return (error); 1053a94100faSBill Paul } 1054a94100faSBill Paul 1055a94100faSBill Paul /* Allocate DMA'able memory for the RX ring */ 1056a94100faSBill Paul 1057a94100faSBill Paul error = bus_dmamem_alloc(sc->rl_ldata.rl_rx_list_tag, 1058d65abd66SPyun YongHyeon (void **)&sc->rl_ldata.rl_rx_list, 1059d65abd66SPyun YongHyeon BUS_DMA_WAITOK | BUS_DMA_COHERENT | BUS_DMA_ZERO, 1060a94100faSBill Paul &sc->rl_ldata.rl_rx_list_map); 1061d65abd66SPyun YongHyeon if (error) { 1062d65abd66SPyun YongHyeon device_printf(dev, "could not allocate RX DMA ring\n"); 1063d65abd66SPyun YongHyeon return (error); 1064d65abd66SPyun YongHyeon } 1065a94100faSBill Paul 1066a94100faSBill Paul /* Load the map for the RX ring. */ 1067a94100faSBill Paul 1068d65abd66SPyun YongHyeon sc->rl_ldata.rl_rx_list_addr = 0; 1069a94100faSBill Paul error = bus_dmamap_load(sc->rl_ldata.rl_rx_list_tag, 1070a94100faSBill Paul sc->rl_ldata.rl_rx_list_map, sc->rl_ldata.rl_rx_list, 1071d65abd66SPyun YongHyeon rx_list_size, re_dma_map_addr, 1072a94100faSBill Paul &sc->rl_ldata.rl_rx_list_addr, BUS_DMA_NOWAIT); 1073d65abd66SPyun YongHyeon if (error != 0 || sc->rl_ldata.rl_rx_list_addr == 0) { 1074d65abd66SPyun YongHyeon device_printf(dev, "could not load RX DMA ring\n"); 1075d65abd66SPyun YongHyeon return (ENOMEM); 1076d65abd66SPyun YongHyeon } 1077a94100faSBill Paul 1078a94100faSBill Paul /* Create DMA maps for RX buffers */ 1079a94100faSBill Paul 1080d65abd66SPyun YongHyeon error = bus_dmamap_create(sc->rl_ldata.rl_rx_mtag, 0, 1081d65abd66SPyun YongHyeon &sc->rl_ldata.rl_rx_sparemap); 1082a94100faSBill Paul if (error) { 1083d65abd66SPyun YongHyeon device_printf(dev, "could not create spare DMA map for RX\n"); 1084d65abd66SPyun YongHyeon return (error); 1085d65abd66SPyun YongHyeon } 1086d65abd66SPyun YongHyeon for (i = 0; i < sc->rl_ldata.rl_rx_desc_cnt; i++) { 1087d65abd66SPyun YongHyeon error = bus_dmamap_create(sc->rl_ldata.rl_rx_mtag, 0, 1088d65abd66SPyun YongHyeon &sc->rl_ldata.rl_rx_desc[i].rx_dmamap); 1089d65abd66SPyun YongHyeon if (error) { 1090d65abd66SPyun YongHyeon device_printf(dev, "could not create DMA map for RX\n"); 1091d65abd66SPyun YongHyeon return (error); 1092a94100faSBill Paul } 1093a94100faSBill Paul } 1094a94100faSBill Paul 1095a94100faSBill Paul return (0); 1096a94100faSBill Paul } 1097a94100faSBill Paul 1098a94100faSBill Paul /* 1099a94100faSBill Paul * Attach the interface. Allocate softc structures, do ifmedia 1100a94100faSBill Paul * setup and ethernet/BPF attach. 1101a94100faSBill Paul */ 1102a94100faSBill Paul static int 11037b5ffebfSPyun YongHyeon re_attach(device_t dev) 1104a94100faSBill Paul { 1105a94100faSBill Paul u_char eaddr[ETHER_ADDR_LEN]; 1106be099007SPyun YongHyeon u_int16_t as[ETHER_ADDR_LEN / 2]; 1107a94100faSBill Paul struct rl_softc *sc; 1108a94100faSBill Paul struct ifnet *ifp; 1109a94100faSBill Paul struct rl_hwrev *hw_rev; 1110a94100faSBill Paul int hwrev; 1111ace7ed5dSPyun YongHyeon u_int16_t devid, re_did = 0; 1112d1754a9bSJohn Baldwin int error = 0, rid, i; 11135774c5ffSPyun YongHyeon int msic, reg; 111403ca7ae8SPyun YongHyeon uint8_t cfg; 1115a94100faSBill Paul 1116a94100faSBill Paul sc = device_get_softc(dev); 1117ed510fb0SBill Paul sc->rl_dev = dev; 1118a94100faSBill Paul 1119a94100faSBill Paul mtx_init(&sc->rl_mtx, device_get_nameunit(dev), MTX_NETWORK_LOCK, 112097b9d4baSJohn-Mark Gurney MTX_DEF); 1121d1754a9bSJohn Baldwin callout_init_mtx(&sc->rl_stat_callout, &sc->rl_mtx, 0); 1122d1754a9bSJohn Baldwin 1123a94100faSBill Paul /* 1124a94100faSBill Paul * Map control/status registers. 1125a94100faSBill Paul */ 1126a94100faSBill Paul pci_enable_busmaster(dev); 1127a94100faSBill Paul 1128ace7ed5dSPyun YongHyeon devid = pci_get_device(dev); 1129ace7ed5dSPyun YongHyeon /* Prefer memory space register mapping over IO space. */ 1130ace7ed5dSPyun YongHyeon sc->rl_res_id = PCIR_BAR(1); 1131ace7ed5dSPyun YongHyeon sc->rl_res_type = SYS_RES_MEMORY; 1132ace7ed5dSPyun YongHyeon /* RTL8168/8101E seems to use different BARs. */ 1133ace7ed5dSPyun YongHyeon if (devid == RT_DEVICEID_8168 || devid == RT_DEVICEID_8101E) 1134ace7ed5dSPyun YongHyeon sc->rl_res_id = PCIR_BAR(2); 1135ace7ed5dSPyun YongHyeon sc->rl_res = bus_alloc_resource_any(dev, sc->rl_res_type, 1136ace7ed5dSPyun YongHyeon &sc->rl_res_id, RF_ACTIVE); 1137a94100faSBill Paul 1138a94100faSBill Paul if (sc->rl_res == NULL) { 1139ace7ed5dSPyun YongHyeon sc->rl_res_id = PCIR_BAR(0); 1140ace7ed5dSPyun YongHyeon sc->rl_res_type = SYS_RES_IOPORT; 1141ace7ed5dSPyun YongHyeon sc->rl_res = bus_alloc_resource_any(dev, sc->rl_res_type, 1142ace7ed5dSPyun YongHyeon &sc->rl_res_id, RF_ACTIVE); 1143ace7ed5dSPyun YongHyeon if (sc->rl_res == NULL) { 1144d1754a9bSJohn Baldwin device_printf(dev, "couldn't map ports/memory\n"); 1145a94100faSBill Paul error = ENXIO; 1146a94100faSBill Paul goto fail; 1147a94100faSBill Paul } 1148ace7ed5dSPyun YongHyeon } 1149a94100faSBill Paul 1150a94100faSBill Paul sc->rl_btag = rman_get_bustag(sc->rl_res); 1151a94100faSBill Paul sc->rl_bhandle = rman_get_bushandle(sc->rl_res); 1152a94100faSBill Paul 11535774c5ffSPyun YongHyeon msic = 0; 11545774c5ffSPyun YongHyeon if (pci_find_extcap(dev, PCIY_EXPRESS, ®) == 0) { 11555774c5ffSPyun YongHyeon msic = pci_msi_count(dev); 11565774c5ffSPyun YongHyeon if (bootverbose) 11575774c5ffSPyun YongHyeon device_printf(dev, "MSI count : %d\n", msic); 11585774c5ffSPyun YongHyeon } 11595774c5ffSPyun YongHyeon if (msic == RL_MSI_MESSAGES && msi_disable == 0) { 11605774c5ffSPyun YongHyeon if (pci_alloc_msi(dev, &msic) == 0) { 11615774c5ffSPyun YongHyeon if (msic == RL_MSI_MESSAGES) { 11625774c5ffSPyun YongHyeon device_printf(dev, "Using %d MSI messages\n", 11635774c5ffSPyun YongHyeon msic); 1164351a76f9SPyun YongHyeon sc->rl_flags |= RL_FLAG_MSI; 1165339a44fbSPyun YongHyeon /* Explicitly set MSI enable bit. */ 1166339a44fbSPyun YongHyeon CSR_WRITE_1(sc, RL_EECMD, RL_EE_MODE); 1167339a44fbSPyun YongHyeon cfg = CSR_READ_1(sc, RL_CFG2); 1168339a44fbSPyun YongHyeon cfg |= RL_CFG2_MSI; 1169339a44fbSPyun YongHyeon CSR_WRITE_1(sc, RL_CFG2, cfg); 1170f98dd8cfSPyun YongHyeon CSR_WRITE_1(sc, RL_EECMD, RL_EEMODE_OFF); 11715774c5ffSPyun YongHyeon } else 11725774c5ffSPyun YongHyeon pci_release_msi(dev); 11735774c5ffSPyun YongHyeon } 11745774c5ffSPyun YongHyeon } 1175a94100faSBill Paul 11765774c5ffSPyun YongHyeon /* Allocate interrupt */ 1177351a76f9SPyun YongHyeon if ((sc->rl_flags & RL_FLAG_MSI) == 0) { 11785774c5ffSPyun YongHyeon rid = 0; 11795774c5ffSPyun YongHyeon sc->rl_irq[0] = bus_alloc_resource_any(dev, SYS_RES_IRQ, &rid, 11805774c5ffSPyun YongHyeon RF_SHAREABLE | RF_ACTIVE); 11815774c5ffSPyun YongHyeon if (sc->rl_irq[0] == NULL) { 11825774c5ffSPyun YongHyeon device_printf(dev, "couldn't allocate IRQ resources\n"); 1183a94100faSBill Paul error = ENXIO; 1184a94100faSBill Paul goto fail; 1185a94100faSBill Paul } 11865774c5ffSPyun YongHyeon } else { 11875774c5ffSPyun YongHyeon for (i = 0, rid = 1; i < RL_MSI_MESSAGES; i++, rid++) { 11885774c5ffSPyun YongHyeon sc->rl_irq[i] = bus_alloc_resource_any(dev, 11895774c5ffSPyun YongHyeon SYS_RES_IRQ, &rid, RF_ACTIVE); 11905774c5ffSPyun YongHyeon if (sc->rl_irq[i] == NULL) { 11915774c5ffSPyun YongHyeon device_printf(dev, 11925774c5ffSPyun YongHyeon "couldn't llocate IRQ resources for " 11935774c5ffSPyun YongHyeon "message %d\n", rid); 11945774c5ffSPyun YongHyeon error = ENXIO; 11955774c5ffSPyun YongHyeon goto fail; 11965774c5ffSPyun YongHyeon } 11975774c5ffSPyun YongHyeon } 11985774c5ffSPyun YongHyeon } 1199a94100faSBill Paul 12004d2bf239SPyun YongHyeon if ((sc->rl_flags & RL_FLAG_MSI) == 0) { 12014d2bf239SPyun YongHyeon CSR_WRITE_1(sc, RL_EECMD, RL_EE_MODE); 12024d2bf239SPyun YongHyeon cfg = CSR_READ_1(sc, RL_CFG2); 12034d2bf239SPyun YongHyeon if ((cfg & RL_CFG2_MSI) != 0) { 12044d2bf239SPyun YongHyeon device_printf(dev, "turning off MSI enable bit.\n"); 12054d2bf239SPyun YongHyeon cfg &= ~RL_CFG2_MSI; 12064d2bf239SPyun YongHyeon CSR_WRITE_1(sc, RL_CFG2, cfg); 12074d2bf239SPyun YongHyeon } 12084d2bf239SPyun YongHyeon CSR_WRITE_1(sc, RL_EECMD, RL_EEMODE_OFF); 12094d2bf239SPyun YongHyeon } 12104d2bf239SPyun YongHyeon 1211a94100faSBill Paul /* Reset the adapter. */ 121297b9d4baSJohn-Mark Gurney RL_LOCK(sc); 1213a94100faSBill Paul re_reset(sc); 121497b9d4baSJohn-Mark Gurney RL_UNLOCK(sc); 1215abc8ff44SBill Paul 1216abc8ff44SBill Paul hw_rev = re_hwrevs; 1217a810fc83SPyun YongHyeon hwrev = CSR_READ_4(sc, RL_TXCFG); 1218a810fc83SPyun YongHyeon device_printf(dev, "Chip rev. 0x%08x\n", hwrev & 0x7c800000); 1219a810fc83SPyun YongHyeon device_printf(dev, "MAC rev. 0x%08x\n", hwrev & 0x00700000); 1220a810fc83SPyun YongHyeon hwrev &= RL_TXCFG_HWREV; 1221abc8ff44SBill Paul while (hw_rev->rl_desc != NULL) { 1222abc8ff44SBill Paul if (hw_rev->rl_rev == hwrev) { 1223abc8ff44SBill Paul sc->rl_type = hw_rev->rl_type; 1224abc8ff44SBill Paul break; 1225abc8ff44SBill Paul } 1226abc8ff44SBill Paul hw_rev++; 1227abc8ff44SBill Paul } 1228d65abd66SPyun YongHyeon if (hw_rev->rl_desc == NULL) { 1229a810fc83SPyun YongHyeon device_printf(dev, "Unknown H/W revision: 0x%08x\n", hwrev); 1230d65abd66SPyun YongHyeon error = ENXIO; 1231d65abd66SPyun YongHyeon goto fail; 1232d65abd66SPyun YongHyeon } 1233abc8ff44SBill Paul 1234351a76f9SPyun YongHyeon switch (hw_rev->rl_rev) { 1235351a76f9SPyun YongHyeon case RL_HWREV_8139CPLUS: 1236130b6dfbSPyun YongHyeon sc->rl_flags |= RL_FLAG_NOJUMBO | RL_FLAG_FASTETHER; 1237351a76f9SPyun YongHyeon break; 1238351a76f9SPyun YongHyeon case RL_HWREV_8100E: 1239351a76f9SPyun YongHyeon case RL_HWREV_8101E: 124047fac8e5SPyun YongHyeon sc->rl_flags |= RL_FLAG_NOJUMBO | RL_FLAG_INVMAR | 1241130b6dfbSPyun YongHyeon RL_FLAG_PHYWAKE | RL_FLAG_FASTETHER; 1242351a76f9SPyun YongHyeon break; 1243b1d62f0fSPyun YongHyeon case RL_HWREV_8102E: 1244b1d62f0fSPyun YongHyeon case RL_HWREV_8102EL: 1245b1d62f0fSPyun YongHyeon sc->rl_flags |= RL_FLAG_NOJUMBO | RL_FLAG_INVMAR | 124697cf11ecSPyun YongHyeon RL_FLAG_PHYWAKE | RL_FLAG_PAR | RL_FLAG_DESCV2 | 1247130b6dfbSPyun YongHyeon RL_FLAG_MACSTAT | RL_FLAG_FASTETHER; 1248b1d62f0fSPyun YongHyeon break; 1249351a76f9SPyun YongHyeon case RL_HWREV_8168_SPIN1: 1250351a76f9SPyun YongHyeon case RL_HWREV_8168_SPIN2: 1251351a76f9SPyun YongHyeon case RL_HWREV_8168_SPIN3: 1252deb5c680SPyun YongHyeon sc->rl_flags |= RL_FLAG_INVMAR | RL_FLAG_PHYWAKE | 1253deb5c680SPyun YongHyeon RL_FLAG_MACSTAT; 1254deb5c680SPyun YongHyeon break; 1255deb5c680SPyun YongHyeon case RL_HWREV_8168C: 1256deb5c680SPyun YongHyeon case RL_HWREV_8168C_SPIN2: 1257deb5c680SPyun YongHyeon case RL_HWREV_8168CP: 125859ef640dSPyun YongHyeon case RL_HWREV_8168D: 1259deb5c680SPyun YongHyeon sc->rl_flags |= RL_FLAG_INVMAR | RL_FLAG_PHYWAKE | 1260deb5c680SPyun YongHyeon RL_FLAG_PAR | RL_FLAG_DESCV2 | RL_FLAG_MACSTAT; 1261deb5c680SPyun YongHyeon /* 1262deb5c680SPyun YongHyeon * These controllers support jumbo frame but it seems 1263deb5c680SPyun YongHyeon * that enabling it requires touching additional magic 1264deb5c680SPyun YongHyeon * registers. Depending on MAC revisions some 1265deb5c680SPyun YongHyeon * controllers need to disable checksum offload. So 1266deb5c680SPyun YongHyeon * disable jumbo frame until I have better idea what 1267deb5c680SPyun YongHyeon * it really requires to make it support. 1268deb5c680SPyun YongHyeon * RTL8168C/CP : supports up to 6KB jumbo frame. 1269deb5c680SPyun YongHyeon * RTL8111C/CP : supports up to 9KB jumbo frame. 1270deb5c680SPyun YongHyeon */ 1271deb5c680SPyun YongHyeon sc->rl_flags |= RL_FLAG_NOJUMBO; 1272351a76f9SPyun YongHyeon break; 1273351a76f9SPyun YongHyeon case RL_HWREV_8169_8110SB: 1274351a76f9SPyun YongHyeon case RL_HWREV_8169_8110SC: 1275715922d7SPyun YongHyeon case RL_HWREV_8169_8110SBL: 1276351a76f9SPyun YongHyeon sc->rl_flags |= RL_FLAG_PHYWAKE; 1277351a76f9SPyun YongHyeon break; 1278351a76f9SPyun YongHyeon default: 1279351a76f9SPyun YongHyeon break; 1280351a76f9SPyun YongHyeon } 1281351a76f9SPyun YongHyeon 1282deb5c680SPyun YongHyeon /* Enable PME. */ 1283deb5c680SPyun YongHyeon CSR_WRITE_1(sc, RL_EECMD, RL_EE_MODE); 1284deb5c680SPyun YongHyeon cfg = CSR_READ_1(sc, RL_CFG1); 1285deb5c680SPyun YongHyeon cfg |= RL_CFG1_PME; 1286deb5c680SPyun YongHyeon CSR_WRITE_1(sc, RL_CFG1, cfg); 1287deb5c680SPyun YongHyeon cfg = CSR_READ_1(sc, RL_CFG5); 1288deb5c680SPyun YongHyeon cfg &= RL_CFG5_PME_STS; 1289deb5c680SPyun YongHyeon CSR_WRITE_1(sc, RL_CFG5, cfg); 1290deb5c680SPyun YongHyeon CSR_WRITE_1(sc, RL_EECMD, RL_EEMODE_OFF); 1291deb5c680SPyun YongHyeon 1292deb5c680SPyun YongHyeon if ((sc->rl_flags & RL_FLAG_PAR) != 0) { 1293deb5c680SPyun YongHyeon /* 1294deb5c680SPyun YongHyeon * XXX Should have a better way to extract station 1295deb5c680SPyun YongHyeon * address from EEPROM. 1296deb5c680SPyun YongHyeon */ 1297deb5c680SPyun YongHyeon for (i = 0; i < ETHER_ADDR_LEN; i++) 1298deb5c680SPyun YongHyeon eaddr[i] = CSR_READ_1(sc, RL_IDR0 + i); 1299deb5c680SPyun YongHyeon } else { 1300141f92e7SPyun YongHyeon sc->rl_eewidth = RL_9356_ADDR_LEN; 1301ed510fb0SBill Paul re_read_eeprom(sc, (caddr_t)&re_did, 0, 1); 1302a94100faSBill Paul if (re_did != 0x8129) 1303141f92e7SPyun YongHyeon sc->rl_eewidth = RL_9346_ADDR_LEN; 1304a94100faSBill Paul 1305a94100faSBill Paul /* 1306a94100faSBill Paul * Get station address from the EEPROM. 1307a94100faSBill Paul */ 1308ed510fb0SBill Paul re_read_eeprom(sc, (caddr_t)as, RL_EE_EADDR, 3); 1309be099007SPyun YongHyeon for (i = 0; i < ETHER_ADDR_LEN / 2; i++) 1310be099007SPyun YongHyeon as[i] = le16toh(as[i]); 1311be099007SPyun YongHyeon bcopy(as, eaddr, sizeof(eaddr)); 1312deb5c680SPyun YongHyeon } 1313ed510fb0SBill Paul 1314ed510fb0SBill Paul if (sc->rl_type == RL_8169) { 1315d65abd66SPyun YongHyeon /* Set RX length mask and number of descriptors. */ 1316ed510fb0SBill Paul sc->rl_rxlenmask = RL_RDESC_STAT_GFRAGLEN; 1317ed510fb0SBill Paul sc->rl_txstart = RL_GTXSTART; 1318d65abd66SPyun YongHyeon sc->rl_ldata.rl_tx_desc_cnt = RL_8169_TX_DESC_CNT; 1319d65abd66SPyun YongHyeon sc->rl_ldata.rl_rx_desc_cnt = RL_8169_RX_DESC_CNT; 1320ed510fb0SBill Paul } else { 1321d65abd66SPyun YongHyeon /* Set RX length mask and number of descriptors. */ 1322ed510fb0SBill Paul sc->rl_rxlenmask = RL_RDESC_STAT_FRAGLEN; 1323ed510fb0SBill Paul sc->rl_txstart = RL_TXSTART; 1324d65abd66SPyun YongHyeon sc->rl_ldata.rl_tx_desc_cnt = RL_8139_TX_DESC_CNT; 1325d65abd66SPyun YongHyeon sc->rl_ldata.rl_rx_desc_cnt = RL_8139_RX_DESC_CNT; 1326abc8ff44SBill Paul } 13279bac70b8SBill Paul 1328a94100faSBill Paul error = re_allocmem(dev, sc); 1329a94100faSBill Paul if (error) 1330a94100faSBill Paul goto fail; 1331a94100faSBill Paul 1332cd036ec1SBrooks Davis ifp = sc->rl_ifp = if_alloc(IFT_ETHER); 1333cd036ec1SBrooks Davis if (ifp == NULL) { 1334d1754a9bSJohn Baldwin device_printf(dev, "can not if_alloc()\n"); 1335cd036ec1SBrooks Davis error = ENOSPC; 1336cd036ec1SBrooks Davis goto fail; 1337cd036ec1SBrooks Davis } 1338cd036ec1SBrooks Davis 1339351a76f9SPyun YongHyeon /* Take PHY out of power down mode. */ 1340351a76f9SPyun YongHyeon if ((sc->rl_flags & RL_FLAG_PHYWAKE) != 0) { 1341351a76f9SPyun YongHyeon re_gmii_writereg(dev, 1, 0x1f, 0); 1342351a76f9SPyun YongHyeon re_gmii_writereg(dev, 1, 0x0e, 0); 1343351a76f9SPyun YongHyeon } 1344351a76f9SPyun YongHyeon 1345a94100faSBill Paul /* Do MII setup */ 1346a94100faSBill Paul if (mii_phy_probe(dev, &sc->rl_miibus, 1347a94100faSBill Paul re_ifmedia_upd, re_ifmedia_sts)) { 1348d1754a9bSJohn Baldwin device_printf(dev, "MII without any phy!\n"); 1349a94100faSBill Paul error = ENXIO; 1350a94100faSBill Paul goto fail; 1351a94100faSBill Paul } 1352a94100faSBill Paul 1353a94100faSBill Paul ifp->if_softc = sc; 13549bf40edeSBrooks Davis if_initname(ifp, device_get_name(dev), device_get_unit(dev)); 1355a94100faSBill Paul ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST; 1356a94100faSBill Paul ifp->if_ioctl = re_ioctl; 1357a94100faSBill Paul ifp->if_start = re_start; 1358deb5c680SPyun YongHyeon ifp->if_hwassist = RE_CSUM_FEATURES; 1359deb5c680SPyun YongHyeon ifp->if_capabilities = IFCAP_HWCSUM; 1360498bd0d3SBill Paul ifp->if_capenable = ifp->if_capabilities; 1361a94100faSBill Paul ifp->if_init = re_init; 136252732175SMax Laier IFQ_SET_MAXLEN(&ifp->if_snd, RL_IFQ_MAXLEN); 136352732175SMax Laier ifp->if_snd.ifq_drv_maxlen = RL_IFQ_MAXLEN; 136452732175SMax Laier IFQ_SET_READY(&ifp->if_snd); 1365a94100faSBill Paul 1366ed510fb0SBill Paul TASK_INIT(&sc->rl_txtask, 1, re_tx_task, ifp); 1367ed510fb0SBill Paul TASK_INIT(&sc->rl_inttask, 0, re_int_task, sc); 1368ed510fb0SBill Paul 1369a94100faSBill Paul /* 1370deb5c680SPyun YongHyeon * XXX 1371deb5c680SPyun YongHyeon * Still have no idea how to make TSO work on 8168C, 8168CP, 1372deb5c680SPyun YongHyeon * 8111C and 8111CP. 1373deb5c680SPyun YongHyeon */ 1374deb5c680SPyun YongHyeon if ((sc->rl_flags & RL_FLAG_DESCV2) == 0) { 1375deb5c680SPyun YongHyeon ifp->if_hwassist |= CSUM_TSO; 1376deb5c680SPyun YongHyeon ifp->if_capabilities |= IFCAP_TSO4; 1377deb5c680SPyun YongHyeon } 1378deb5c680SPyun YongHyeon 1379deb5c680SPyun YongHyeon /* 1380a94100faSBill Paul * Call MI attach routine. 1381a94100faSBill Paul */ 1382a94100faSBill Paul ether_ifattach(ifp, eaddr); 1383a94100faSBill Paul 1384960fd5b3SPyun YongHyeon /* VLAN capability setup */ 1385960fd5b3SPyun YongHyeon ifp->if_capabilities |= IFCAP_VLAN_MTU | IFCAP_VLAN_HWTAGGING; 1386960fd5b3SPyun YongHyeon if (ifp->if_capabilities & IFCAP_HWCSUM) 1387960fd5b3SPyun YongHyeon ifp->if_capabilities |= IFCAP_VLAN_HWCSUM; 13887467bd53SPyun YongHyeon /* Enable WOL if PM is supported. */ 13897467bd53SPyun YongHyeon if (pci_find_extcap(sc->rl_dev, PCIY_PMG, ®) == 0) 13907467bd53SPyun YongHyeon ifp->if_capabilities |= IFCAP_WOL; 1391960fd5b3SPyun YongHyeon ifp->if_capenable = ifp->if_capabilities; 1392a2a8420cSPyun YongHyeon /* 1393a2a8420cSPyun YongHyeon * Don't enable TSO by default. Under certain 1394a2a8420cSPyun YongHyeon * circumtances the controller generated corrupted 1395a2a8420cSPyun YongHyeon * packets in TSO size. 1396a2a8420cSPyun YongHyeon */ 1397a2a8420cSPyun YongHyeon ifp->if_hwassist &= ~CSUM_TSO; 1398a2a8420cSPyun YongHyeon ifp->if_capenable &= ~IFCAP_TSO4; 1399960fd5b3SPyun YongHyeon #ifdef DEVICE_POLLING 1400960fd5b3SPyun YongHyeon ifp->if_capabilities |= IFCAP_POLLING; 1401960fd5b3SPyun YongHyeon #endif 1402960fd5b3SPyun YongHyeon /* 1403960fd5b3SPyun YongHyeon * Tell the upper layer(s) we support long frames. 1404960fd5b3SPyun YongHyeon * Must appear after the call to ether_ifattach() because 1405960fd5b3SPyun YongHyeon * ether_ifattach() sets ifi_hdrlen to the default value. 1406960fd5b3SPyun YongHyeon */ 1407960fd5b3SPyun YongHyeon ifp->if_data.ifi_hdrlen = sizeof(struct ether_vlan_header); 1408960fd5b3SPyun YongHyeon 1409ed510fb0SBill Paul #ifdef RE_DIAG 1410ed510fb0SBill Paul /* 1411ed510fb0SBill Paul * Perform hardware diagnostic on the original RTL8169. 1412ed510fb0SBill Paul * Some 32-bit cards were incorrectly wired and would 1413ed510fb0SBill Paul * malfunction if plugged into a 64-bit slot. 1414ed510fb0SBill Paul */ 1415a94100faSBill Paul 1416ed510fb0SBill Paul if (hwrev == RL_HWREV_8169) { 1417ed510fb0SBill Paul error = re_diag(sc); 1418a94100faSBill Paul if (error) { 1419ed510fb0SBill Paul device_printf(dev, 1420ed510fb0SBill Paul "attach aborted due to hardware diag failure\n"); 1421a94100faSBill Paul ether_ifdetach(ifp); 1422a94100faSBill Paul goto fail; 1423a94100faSBill Paul } 1424ed510fb0SBill Paul } 1425ed510fb0SBill Paul #endif 1426a94100faSBill Paul 1427a94100faSBill Paul /* Hook interrupt last to avoid having to lock softc */ 1428351a76f9SPyun YongHyeon if ((sc->rl_flags & RL_FLAG_MSI) == 0) 14295774c5ffSPyun YongHyeon error = bus_setup_intr(dev, sc->rl_irq[0], 14305774c5ffSPyun YongHyeon INTR_TYPE_NET | INTR_MPSAFE, re_intr, NULL, sc, 14315774c5ffSPyun YongHyeon &sc->rl_intrhand[0]); 14325774c5ffSPyun YongHyeon else { 14335774c5ffSPyun YongHyeon for (i = 0; i < RL_MSI_MESSAGES; i++) { 14345774c5ffSPyun YongHyeon error = bus_setup_intr(dev, sc->rl_irq[i], 14355774c5ffSPyun YongHyeon INTR_TYPE_NET | INTR_MPSAFE, re_intr, NULL, sc, 14365774c5ffSPyun YongHyeon &sc->rl_intrhand[i]); 14375774c5ffSPyun YongHyeon if (error != 0) 14385774c5ffSPyun YongHyeon break; 14395774c5ffSPyun YongHyeon } 14405774c5ffSPyun YongHyeon } 1441a94100faSBill Paul if (error) { 1442d1754a9bSJohn Baldwin device_printf(dev, "couldn't set up irq\n"); 1443a94100faSBill Paul ether_ifdetach(ifp); 1444a94100faSBill Paul } 1445a94100faSBill Paul 1446a94100faSBill Paul fail: 1447ed510fb0SBill Paul 1448a94100faSBill Paul if (error) 1449a94100faSBill Paul re_detach(dev); 1450a94100faSBill Paul 1451a94100faSBill Paul return (error); 1452a94100faSBill Paul } 1453a94100faSBill Paul 1454a94100faSBill Paul /* 1455a94100faSBill Paul * Shutdown hardware and free up resources. This can be called any 1456a94100faSBill Paul * time after the mutex has been initialized. It is called in both 1457a94100faSBill Paul * the error case in attach and the normal detach case so it needs 1458a94100faSBill Paul * to be careful about only freeing resources that have actually been 1459a94100faSBill Paul * allocated. 1460a94100faSBill Paul */ 1461a94100faSBill Paul static int 14627b5ffebfSPyun YongHyeon re_detach(device_t dev) 1463a94100faSBill Paul { 1464a94100faSBill Paul struct rl_softc *sc; 1465a94100faSBill Paul struct ifnet *ifp; 14665774c5ffSPyun YongHyeon int i, rid; 1467a94100faSBill Paul 1468a94100faSBill Paul sc = device_get_softc(dev); 1469fc74a9f9SBrooks Davis ifp = sc->rl_ifp; 1470aedd16d9SJohn-Mark Gurney KASSERT(mtx_initialized(&sc->rl_mtx), ("re mutex not initialized")); 147197b9d4baSJohn-Mark Gurney 147281cf2eb6SPyun YongHyeon /* These should only be active if attach succeeded */ 147381cf2eb6SPyun YongHyeon if (device_is_attached(dev)) { 147440929967SGleb Smirnoff #ifdef DEVICE_POLLING 147540929967SGleb Smirnoff if (ifp->if_capenable & IFCAP_POLLING) 147640929967SGleb Smirnoff ether_poll_deregister(ifp); 147740929967SGleb Smirnoff #endif 147897b9d4baSJohn-Mark Gurney RL_LOCK(sc); 147997b9d4baSJohn-Mark Gurney #if 0 148097b9d4baSJohn-Mark Gurney sc->suspended = 1; 148197b9d4baSJohn-Mark Gurney #endif 1482a94100faSBill Paul re_stop(sc); 1483525e6a87SRuslan Ermilov RL_UNLOCK(sc); 1484d1754a9bSJohn Baldwin callout_drain(&sc->rl_stat_callout); 14853d4c1b57SJohn Baldwin taskqueue_drain(taskqueue_fast, &sc->rl_inttask); 14863d4c1b57SJohn Baldwin taskqueue_drain(taskqueue_fast, &sc->rl_txtask); 1487a94100faSBill Paul /* 1488a94100faSBill Paul * Force off the IFF_UP flag here, in case someone 1489a94100faSBill Paul * still had a BPF descriptor attached to this 149097b9d4baSJohn-Mark Gurney * interface. If they do, ether_ifdetach() will cause 1491a94100faSBill Paul * the BPF code to try and clear the promisc mode 1492a94100faSBill Paul * flag, which will bubble down to re_ioctl(), 1493a94100faSBill Paul * which will try to call re_init() again. This will 1494a94100faSBill Paul * turn the NIC back on and restart the MII ticker, 1495a94100faSBill Paul * which will panic the system when the kernel tries 1496a94100faSBill Paul * to invoke the re_tick() function that isn't there 1497a94100faSBill Paul * anymore. 1498a94100faSBill Paul */ 1499a94100faSBill Paul ifp->if_flags &= ~IFF_UP; 1500525e6a87SRuslan Ermilov ether_ifdetach(ifp); 1501a94100faSBill Paul } 1502a94100faSBill Paul if (sc->rl_miibus) 1503a94100faSBill Paul device_delete_child(dev, sc->rl_miibus); 1504a94100faSBill Paul bus_generic_detach(dev); 1505a94100faSBill Paul 150697b9d4baSJohn-Mark Gurney /* 150797b9d4baSJohn-Mark Gurney * The rest is resource deallocation, so we should already be 150897b9d4baSJohn-Mark Gurney * stopped here. 150997b9d4baSJohn-Mark Gurney */ 151097b9d4baSJohn-Mark Gurney 15115774c5ffSPyun YongHyeon for (i = 0; i < RL_MSI_MESSAGES; i++) { 15125774c5ffSPyun YongHyeon if (sc->rl_intrhand[i] != NULL) { 15135774c5ffSPyun YongHyeon bus_teardown_intr(dev, sc->rl_irq[i], 15145774c5ffSPyun YongHyeon sc->rl_intrhand[i]); 15155774c5ffSPyun YongHyeon sc->rl_intrhand[i] = NULL; 15165774c5ffSPyun YongHyeon } 15175774c5ffSPyun YongHyeon } 1518ad4f426eSWarner Losh if (ifp != NULL) 1519ad4f426eSWarner Losh if_free(ifp); 1520351a76f9SPyun YongHyeon if ((sc->rl_flags & RL_FLAG_MSI) == 0) { 15215774c5ffSPyun YongHyeon if (sc->rl_irq[0] != NULL) { 15225774c5ffSPyun YongHyeon bus_release_resource(dev, SYS_RES_IRQ, 0, 15235774c5ffSPyun YongHyeon sc->rl_irq[0]); 15245774c5ffSPyun YongHyeon sc->rl_irq[0] = NULL; 15255774c5ffSPyun YongHyeon } 15265774c5ffSPyun YongHyeon } else { 15275774c5ffSPyun YongHyeon for (i = 0, rid = 1; i < RL_MSI_MESSAGES; i++, rid++) { 15285774c5ffSPyun YongHyeon if (sc->rl_irq[i] != NULL) { 15295774c5ffSPyun YongHyeon bus_release_resource(dev, SYS_RES_IRQ, rid, 15305774c5ffSPyun YongHyeon sc->rl_irq[i]); 15315774c5ffSPyun YongHyeon sc->rl_irq[i] = NULL; 15325774c5ffSPyun YongHyeon } 15335774c5ffSPyun YongHyeon } 15345774c5ffSPyun YongHyeon pci_release_msi(dev); 15355774c5ffSPyun YongHyeon } 1536a94100faSBill Paul if (sc->rl_res) 1537ace7ed5dSPyun YongHyeon bus_release_resource(dev, sc->rl_res_type, sc->rl_res_id, 1538ace7ed5dSPyun YongHyeon sc->rl_res); 1539a94100faSBill Paul 1540a94100faSBill Paul /* Unload and free the RX DMA ring memory and map */ 1541a94100faSBill Paul 1542a94100faSBill Paul if (sc->rl_ldata.rl_rx_list_tag) { 1543a94100faSBill Paul bus_dmamap_unload(sc->rl_ldata.rl_rx_list_tag, 1544a94100faSBill Paul sc->rl_ldata.rl_rx_list_map); 1545a94100faSBill Paul bus_dmamem_free(sc->rl_ldata.rl_rx_list_tag, 1546a94100faSBill Paul sc->rl_ldata.rl_rx_list, 1547a94100faSBill Paul sc->rl_ldata.rl_rx_list_map); 1548a94100faSBill Paul bus_dma_tag_destroy(sc->rl_ldata.rl_rx_list_tag); 1549a94100faSBill Paul } 1550a94100faSBill Paul 1551a94100faSBill Paul /* Unload and free the TX DMA ring memory and map */ 1552a94100faSBill Paul 1553a94100faSBill Paul if (sc->rl_ldata.rl_tx_list_tag) { 1554a94100faSBill Paul bus_dmamap_unload(sc->rl_ldata.rl_tx_list_tag, 1555a94100faSBill Paul sc->rl_ldata.rl_tx_list_map); 1556a94100faSBill Paul bus_dmamem_free(sc->rl_ldata.rl_tx_list_tag, 1557a94100faSBill Paul sc->rl_ldata.rl_tx_list, 1558a94100faSBill Paul sc->rl_ldata.rl_tx_list_map); 1559a94100faSBill Paul bus_dma_tag_destroy(sc->rl_ldata.rl_tx_list_tag); 1560a94100faSBill Paul } 1561a94100faSBill Paul 1562a94100faSBill Paul /* Destroy all the RX and TX buffer maps */ 1563a94100faSBill Paul 1564d65abd66SPyun YongHyeon if (sc->rl_ldata.rl_tx_mtag) { 1565d65abd66SPyun YongHyeon for (i = 0; i < sc->rl_ldata.rl_tx_desc_cnt; i++) 1566d65abd66SPyun YongHyeon bus_dmamap_destroy(sc->rl_ldata.rl_tx_mtag, 1567d65abd66SPyun YongHyeon sc->rl_ldata.rl_tx_desc[i].tx_dmamap); 1568d65abd66SPyun YongHyeon bus_dma_tag_destroy(sc->rl_ldata.rl_tx_mtag); 1569d65abd66SPyun YongHyeon } 1570d65abd66SPyun YongHyeon if (sc->rl_ldata.rl_rx_mtag) { 1571d65abd66SPyun YongHyeon for (i = 0; i < sc->rl_ldata.rl_rx_desc_cnt; i++) 1572d65abd66SPyun YongHyeon bus_dmamap_destroy(sc->rl_ldata.rl_rx_mtag, 1573d65abd66SPyun YongHyeon sc->rl_ldata.rl_rx_desc[i].rx_dmamap); 1574d65abd66SPyun YongHyeon if (sc->rl_ldata.rl_rx_sparemap) 1575d65abd66SPyun YongHyeon bus_dmamap_destroy(sc->rl_ldata.rl_rx_mtag, 1576d65abd66SPyun YongHyeon sc->rl_ldata.rl_rx_sparemap); 1577d65abd66SPyun YongHyeon bus_dma_tag_destroy(sc->rl_ldata.rl_rx_mtag); 1578a94100faSBill Paul } 1579a94100faSBill Paul 1580a94100faSBill Paul /* Unload and free the stats buffer and map */ 1581a94100faSBill Paul 1582a94100faSBill Paul if (sc->rl_ldata.rl_stag) { 1583a94100faSBill Paul bus_dmamap_unload(sc->rl_ldata.rl_stag, 1584a94100faSBill Paul sc->rl_ldata.rl_rx_list_map); 1585a94100faSBill Paul bus_dmamem_free(sc->rl_ldata.rl_stag, 1586a94100faSBill Paul sc->rl_ldata.rl_stats, 1587a94100faSBill Paul sc->rl_ldata.rl_smap); 1588a94100faSBill Paul bus_dma_tag_destroy(sc->rl_ldata.rl_stag); 1589a94100faSBill Paul } 1590a94100faSBill Paul 1591a94100faSBill Paul if (sc->rl_parent_tag) 1592a94100faSBill Paul bus_dma_tag_destroy(sc->rl_parent_tag); 1593a94100faSBill Paul 1594a94100faSBill Paul mtx_destroy(&sc->rl_mtx); 1595a94100faSBill Paul 1596a94100faSBill Paul return (0); 1597a94100faSBill Paul } 1598a94100faSBill Paul 1599d65abd66SPyun YongHyeon static __inline void 16007b5ffebfSPyun YongHyeon re_discard_rxbuf(struct rl_softc *sc, int idx) 1601a94100faSBill Paul { 1602d65abd66SPyun YongHyeon struct rl_desc *desc; 1603d65abd66SPyun YongHyeon struct rl_rxdesc *rxd; 1604d65abd66SPyun YongHyeon uint32_t cmdstat; 1605a94100faSBill Paul 1606d65abd66SPyun YongHyeon rxd = &sc->rl_ldata.rl_rx_desc[idx]; 1607d65abd66SPyun YongHyeon desc = &sc->rl_ldata.rl_rx_list[idx]; 1608d65abd66SPyun YongHyeon desc->rl_vlanctl = 0; 1609d65abd66SPyun YongHyeon cmdstat = rxd->rx_size; 1610d65abd66SPyun YongHyeon if (idx == sc->rl_ldata.rl_rx_desc_cnt - 1) 1611d65abd66SPyun YongHyeon cmdstat |= RL_RDESC_CMD_EOR; 1612d65abd66SPyun YongHyeon desc->rl_cmdstat = htole32(cmdstat | RL_RDESC_CMD_OWN); 1613d65abd66SPyun YongHyeon } 1614d65abd66SPyun YongHyeon 1615d65abd66SPyun YongHyeon static int 16167b5ffebfSPyun YongHyeon re_newbuf(struct rl_softc *sc, int idx) 1617d65abd66SPyun YongHyeon { 1618d65abd66SPyun YongHyeon struct mbuf *m; 1619d65abd66SPyun YongHyeon struct rl_rxdesc *rxd; 1620d65abd66SPyun YongHyeon bus_dma_segment_t segs[1]; 1621d65abd66SPyun YongHyeon bus_dmamap_t map; 1622d65abd66SPyun YongHyeon struct rl_desc *desc; 1623d65abd66SPyun YongHyeon uint32_t cmdstat; 1624d65abd66SPyun YongHyeon int error, nsegs; 1625d65abd66SPyun YongHyeon 1626d65abd66SPyun YongHyeon m = m_getcl(M_DONTWAIT, MT_DATA, M_PKTHDR); 1627d65abd66SPyun YongHyeon if (m == NULL) 1628a94100faSBill Paul return (ENOBUFS); 1629a94100faSBill Paul 1630a94100faSBill Paul m->m_len = m->m_pkthdr.len = MCLBYTES; 163122a11c96SJohn-Mark Gurney #ifdef RE_FIXUP_RX 163222a11c96SJohn-Mark Gurney /* 163322a11c96SJohn-Mark Gurney * This is part of an evil trick to deal with non-x86 platforms. 163422a11c96SJohn-Mark Gurney * The RealTek chip requires RX buffers to be aligned on 64-bit 163522a11c96SJohn-Mark Gurney * boundaries, but that will hose non-x86 machines. To get around 163622a11c96SJohn-Mark Gurney * this, we leave some empty space at the start of each buffer 163722a11c96SJohn-Mark Gurney * and for non-x86 hosts, we copy the buffer back six bytes 163822a11c96SJohn-Mark Gurney * to achieve word alignment. This is slightly more efficient 163922a11c96SJohn-Mark Gurney * than allocating a new buffer, copying the contents, and 164022a11c96SJohn-Mark Gurney * discarding the old buffer. 164122a11c96SJohn-Mark Gurney */ 164222a11c96SJohn-Mark Gurney m_adj(m, RE_ETHER_ALIGN); 164322a11c96SJohn-Mark Gurney #endif 1644d65abd66SPyun YongHyeon error = bus_dmamap_load_mbuf_sg(sc->rl_ldata.rl_rx_mtag, 1645d65abd66SPyun YongHyeon sc->rl_ldata.rl_rx_sparemap, m, segs, &nsegs, BUS_DMA_NOWAIT); 1646d65abd66SPyun YongHyeon if (error != 0) { 1647d65abd66SPyun YongHyeon m_freem(m); 1648d65abd66SPyun YongHyeon return (ENOBUFS); 1649d65abd66SPyun YongHyeon } 1650d65abd66SPyun YongHyeon KASSERT(nsegs == 1, ("%s: %d segment returned!", __func__, nsegs)); 1651a94100faSBill Paul 1652d65abd66SPyun YongHyeon rxd = &sc->rl_ldata.rl_rx_desc[idx]; 1653d65abd66SPyun YongHyeon if (rxd->rx_m != NULL) { 1654d65abd66SPyun YongHyeon bus_dmamap_sync(sc->rl_ldata.rl_rx_mtag, rxd->rx_dmamap, 1655d65abd66SPyun YongHyeon BUS_DMASYNC_POSTREAD); 1656d65abd66SPyun YongHyeon bus_dmamap_unload(sc->rl_ldata.rl_rx_mtag, rxd->rx_dmamap); 1657a94100faSBill Paul } 1658a94100faSBill Paul 1659d65abd66SPyun YongHyeon rxd->rx_m = m; 1660d65abd66SPyun YongHyeon map = rxd->rx_dmamap; 1661d65abd66SPyun YongHyeon rxd->rx_dmamap = sc->rl_ldata.rl_rx_sparemap; 1662d65abd66SPyun YongHyeon rxd->rx_size = segs[0].ds_len; 1663d65abd66SPyun YongHyeon sc->rl_ldata.rl_rx_sparemap = map; 1664d65abd66SPyun YongHyeon bus_dmamap_sync(sc->rl_ldata.rl_rx_mtag, rxd->rx_dmamap, 1665a94100faSBill Paul BUS_DMASYNC_PREREAD); 1666a94100faSBill Paul 1667d65abd66SPyun YongHyeon desc = &sc->rl_ldata.rl_rx_list[idx]; 1668d65abd66SPyun YongHyeon desc->rl_vlanctl = 0; 1669d65abd66SPyun YongHyeon desc->rl_bufaddr_lo = htole32(RL_ADDR_LO(segs[0].ds_addr)); 1670d65abd66SPyun YongHyeon desc->rl_bufaddr_hi = htole32(RL_ADDR_HI(segs[0].ds_addr)); 1671d65abd66SPyun YongHyeon cmdstat = segs[0].ds_len; 1672d65abd66SPyun YongHyeon if (idx == sc->rl_ldata.rl_rx_desc_cnt - 1) 1673d65abd66SPyun YongHyeon cmdstat |= RL_RDESC_CMD_EOR; 1674d65abd66SPyun YongHyeon desc->rl_cmdstat = htole32(cmdstat | RL_RDESC_CMD_OWN); 1675d65abd66SPyun YongHyeon 1676a94100faSBill Paul return (0); 1677a94100faSBill Paul } 1678a94100faSBill Paul 167922a11c96SJohn-Mark Gurney #ifdef RE_FIXUP_RX 168022a11c96SJohn-Mark Gurney static __inline void 16817b5ffebfSPyun YongHyeon re_fixup_rx(struct mbuf *m) 168222a11c96SJohn-Mark Gurney { 168322a11c96SJohn-Mark Gurney int i; 168422a11c96SJohn-Mark Gurney uint16_t *src, *dst; 168522a11c96SJohn-Mark Gurney 168622a11c96SJohn-Mark Gurney src = mtod(m, uint16_t *); 168722a11c96SJohn-Mark Gurney dst = src - (RE_ETHER_ALIGN - ETHER_ALIGN) / sizeof *src; 168822a11c96SJohn-Mark Gurney 168922a11c96SJohn-Mark Gurney for (i = 0; i < (m->m_len / sizeof(uint16_t) + 1); i++) 169022a11c96SJohn-Mark Gurney *dst++ = *src++; 169122a11c96SJohn-Mark Gurney 169222a11c96SJohn-Mark Gurney m->m_data -= RE_ETHER_ALIGN - ETHER_ALIGN; 169322a11c96SJohn-Mark Gurney } 169422a11c96SJohn-Mark Gurney #endif 169522a11c96SJohn-Mark Gurney 1696a94100faSBill Paul static int 16977b5ffebfSPyun YongHyeon re_tx_list_init(struct rl_softc *sc) 1698a94100faSBill Paul { 1699d65abd66SPyun YongHyeon struct rl_desc *desc; 1700d65abd66SPyun YongHyeon int i; 170197b9d4baSJohn-Mark Gurney 170297b9d4baSJohn-Mark Gurney RL_LOCK_ASSERT(sc); 170397b9d4baSJohn-Mark Gurney 1704d65abd66SPyun YongHyeon bzero(sc->rl_ldata.rl_tx_list, 1705d65abd66SPyun YongHyeon sc->rl_ldata.rl_tx_desc_cnt * sizeof(struct rl_desc)); 1706d65abd66SPyun YongHyeon for (i = 0; i < sc->rl_ldata.rl_tx_desc_cnt; i++) 1707d65abd66SPyun YongHyeon sc->rl_ldata.rl_tx_desc[i].tx_m = NULL; 1708d65abd66SPyun YongHyeon /* Set EOR. */ 1709d65abd66SPyun YongHyeon desc = &sc->rl_ldata.rl_tx_list[sc->rl_ldata.rl_tx_desc_cnt - 1]; 1710d65abd66SPyun YongHyeon desc->rl_cmdstat |= htole32(RL_TDESC_CMD_EOR); 1711a94100faSBill Paul 1712a94100faSBill Paul bus_dmamap_sync(sc->rl_ldata.rl_tx_list_tag, 1713d65abd66SPyun YongHyeon sc->rl_ldata.rl_tx_list_map, 1714d65abd66SPyun YongHyeon BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 1715d65abd66SPyun YongHyeon 1716a94100faSBill Paul sc->rl_ldata.rl_tx_prodidx = 0; 1717a94100faSBill Paul sc->rl_ldata.rl_tx_considx = 0; 1718d65abd66SPyun YongHyeon sc->rl_ldata.rl_tx_free = sc->rl_ldata.rl_tx_desc_cnt; 1719a94100faSBill Paul 1720a94100faSBill Paul return (0); 1721a94100faSBill Paul } 1722a94100faSBill Paul 1723a94100faSBill Paul static int 17247b5ffebfSPyun YongHyeon re_rx_list_init(struct rl_softc *sc) 1725a94100faSBill Paul { 1726d65abd66SPyun YongHyeon int error, i; 1727a94100faSBill Paul 1728d65abd66SPyun YongHyeon bzero(sc->rl_ldata.rl_rx_list, 1729d65abd66SPyun YongHyeon sc->rl_ldata.rl_rx_desc_cnt * sizeof(struct rl_desc)); 1730d65abd66SPyun YongHyeon for (i = 0; i < sc->rl_ldata.rl_rx_desc_cnt; i++) { 1731d65abd66SPyun YongHyeon sc->rl_ldata.rl_rx_desc[i].rx_m = NULL; 1732d65abd66SPyun YongHyeon if ((error = re_newbuf(sc, i)) != 0) 1733d65abd66SPyun YongHyeon return (error); 1734a94100faSBill Paul } 1735a94100faSBill Paul 1736a94100faSBill Paul /* Flush the RX descriptors */ 1737a94100faSBill Paul 1738a94100faSBill Paul bus_dmamap_sync(sc->rl_ldata.rl_rx_list_tag, 1739a94100faSBill Paul sc->rl_ldata.rl_rx_list_map, 1740a94100faSBill Paul BUS_DMASYNC_PREWRITE|BUS_DMASYNC_PREREAD); 1741a94100faSBill Paul 1742a94100faSBill Paul sc->rl_ldata.rl_rx_prodidx = 0; 1743a94100faSBill Paul sc->rl_head = sc->rl_tail = NULL; 1744a94100faSBill Paul 1745a94100faSBill Paul return (0); 1746a94100faSBill Paul } 1747a94100faSBill Paul 1748a94100faSBill Paul /* 1749a94100faSBill Paul * RX handler for C+ and 8169. For the gigE chips, we support 1750a94100faSBill Paul * the reception of jumbo frames that have been fragmented 1751a94100faSBill Paul * across multiple 2K mbuf cluster buffers. 1752a94100faSBill Paul */ 1753ed510fb0SBill Paul static int 17547b5ffebfSPyun YongHyeon re_rxeof(struct rl_softc *sc) 1755a94100faSBill Paul { 1756a94100faSBill Paul struct mbuf *m; 1757a94100faSBill Paul struct ifnet *ifp; 1758a94100faSBill Paul int i, total_len; 1759a94100faSBill Paul struct rl_desc *cur_rx; 1760a94100faSBill Paul u_int32_t rxstat, rxvlan; 1761ed510fb0SBill Paul int maxpkt = 16; 1762a94100faSBill Paul 17635120abbfSSam Leffler RL_LOCK_ASSERT(sc); 17645120abbfSSam Leffler 1765fc74a9f9SBrooks Davis ifp = sc->rl_ifp; 1766a94100faSBill Paul 1767a94100faSBill Paul /* Invalidate the descriptor memory */ 1768a94100faSBill Paul 1769a94100faSBill Paul bus_dmamap_sync(sc->rl_ldata.rl_rx_list_tag, 1770a94100faSBill Paul sc->rl_ldata.rl_rx_list_map, 1771d65abd66SPyun YongHyeon BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE); 1772a94100faSBill Paul 1773d65abd66SPyun YongHyeon for (i = sc->rl_ldata.rl_rx_prodidx; maxpkt > 0; 1774d65abd66SPyun YongHyeon i = RL_RX_DESC_NXT(sc, i)) { 1775a94100faSBill Paul cur_rx = &sc->rl_ldata.rl_rx_list[i]; 1776a94100faSBill Paul rxstat = le32toh(cur_rx->rl_cmdstat); 1777d65abd66SPyun YongHyeon if ((rxstat & RL_RDESC_STAT_OWN) != 0) 1778d65abd66SPyun YongHyeon break; 1779d65abd66SPyun YongHyeon total_len = rxstat & sc->rl_rxlenmask; 1780a94100faSBill Paul rxvlan = le32toh(cur_rx->rl_vlanctl); 1781d65abd66SPyun YongHyeon m = sc->rl_ldata.rl_rx_desc[i].rx_m; 1782a94100faSBill Paul 1783a94100faSBill Paul if (!(rxstat & RL_RDESC_STAT_EOF)) { 1784d65abd66SPyun YongHyeon if (re_newbuf(sc, i) != 0) { 1785d65abd66SPyun YongHyeon /* 1786d65abd66SPyun YongHyeon * If this is part of a multi-fragment packet, 1787d65abd66SPyun YongHyeon * discard all the pieces. 1788d65abd66SPyun YongHyeon */ 1789d65abd66SPyun YongHyeon if (sc->rl_head != NULL) { 1790d65abd66SPyun YongHyeon m_freem(sc->rl_head); 1791d65abd66SPyun YongHyeon sc->rl_head = sc->rl_tail = NULL; 1792d65abd66SPyun YongHyeon } 1793d65abd66SPyun YongHyeon re_discard_rxbuf(sc, i); 1794d65abd66SPyun YongHyeon continue; 1795d65abd66SPyun YongHyeon } 179622a11c96SJohn-Mark Gurney m->m_len = RE_RX_DESC_BUFLEN; 1797a94100faSBill Paul if (sc->rl_head == NULL) 1798a94100faSBill Paul sc->rl_head = sc->rl_tail = m; 1799a94100faSBill Paul else { 1800a94100faSBill Paul m->m_flags &= ~M_PKTHDR; 1801a94100faSBill Paul sc->rl_tail->m_next = m; 1802a94100faSBill Paul sc->rl_tail = m; 1803a94100faSBill Paul } 1804a94100faSBill Paul continue; 1805a94100faSBill Paul } 1806a94100faSBill Paul 1807a94100faSBill Paul /* 1808a94100faSBill Paul * NOTE: for the 8139C+, the frame length field 1809a94100faSBill Paul * is always 12 bits in size, but for the gigE chips, 1810a94100faSBill Paul * it is 13 bits (since the max RX frame length is 16K). 1811a94100faSBill Paul * Unfortunately, all 32 bits in the status word 1812a94100faSBill Paul * were already used, so to make room for the extra 1813a94100faSBill Paul * length bit, RealTek took out the 'frame alignment 1814a94100faSBill Paul * error' bit and shifted the other status bits 1815a94100faSBill Paul * over one slot. The OWN, EOR, FS and LS bits are 1816a94100faSBill Paul * still in the same places. We have already extracted 1817a94100faSBill Paul * the frame length and checked the OWN bit, so rather 1818a94100faSBill Paul * than using an alternate bit mapping, we shift the 1819a94100faSBill Paul * status bits one space to the right so we can evaluate 1820a94100faSBill Paul * them using the 8169 status as though it was in the 1821a94100faSBill Paul * same format as that of the 8139C+. 1822a94100faSBill Paul */ 1823a94100faSBill Paul if (sc->rl_type == RL_8169) 1824a94100faSBill Paul rxstat >>= 1; 1825a94100faSBill Paul 182622a11c96SJohn-Mark Gurney /* 182722a11c96SJohn-Mark Gurney * if total_len > 2^13-1, both _RXERRSUM and _GIANT will be 182822a11c96SJohn-Mark Gurney * set, but if CRC is clear, it will still be a valid frame. 182922a11c96SJohn-Mark Gurney */ 183022a11c96SJohn-Mark Gurney if (rxstat & RL_RDESC_STAT_RXERRSUM && !(total_len > 8191 && 183122a11c96SJohn-Mark Gurney (rxstat & RL_RDESC_STAT_ERRS) == RL_RDESC_STAT_GIANT)) { 1832a94100faSBill Paul ifp->if_ierrors++; 1833a94100faSBill Paul /* 1834a94100faSBill Paul * If this is part of a multi-fragment packet, 1835a94100faSBill Paul * discard all the pieces. 1836a94100faSBill Paul */ 1837a94100faSBill Paul if (sc->rl_head != NULL) { 1838a94100faSBill Paul m_freem(sc->rl_head); 1839a94100faSBill Paul sc->rl_head = sc->rl_tail = NULL; 1840a94100faSBill Paul } 1841d65abd66SPyun YongHyeon re_discard_rxbuf(sc, i); 1842a94100faSBill Paul continue; 1843a94100faSBill Paul } 1844a94100faSBill Paul 1845a94100faSBill Paul /* 1846a94100faSBill Paul * If allocating a replacement mbuf fails, 1847a94100faSBill Paul * reload the current one. 1848a94100faSBill Paul */ 1849a94100faSBill Paul 1850d65abd66SPyun YongHyeon if (re_newbuf(sc, i) != 0) { 1851d65abd66SPyun YongHyeon ifp->if_iqdrops++; 1852a94100faSBill Paul if (sc->rl_head != NULL) { 1853a94100faSBill Paul m_freem(sc->rl_head); 1854a94100faSBill Paul sc->rl_head = sc->rl_tail = NULL; 1855a94100faSBill Paul } 1856d65abd66SPyun YongHyeon re_discard_rxbuf(sc, i); 1857a94100faSBill Paul continue; 1858a94100faSBill Paul } 1859a94100faSBill Paul 1860a94100faSBill Paul if (sc->rl_head != NULL) { 186122a11c96SJohn-Mark Gurney m->m_len = total_len % RE_RX_DESC_BUFLEN; 186222a11c96SJohn-Mark Gurney if (m->m_len == 0) 186322a11c96SJohn-Mark Gurney m->m_len = RE_RX_DESC_BUFLEN; 1864a94100faSBill Paul /* 1865a94100faSBill Paul * Special case: if there's 4 bytes or less 1866a94100faSBill Paul * in this buffer, the mbuf can be discarded: 1867a94100faSBill Paul * the last 4 bytes is the CRC, which we don't 1868a94100faSBill Paul * care about anyway. 1869a94100faSBill Paul */ 1870a94100faSBill Paul if (m->m_len <= ETHER_CRC_LEN) { 1871a94100faSBill Paul sc->rl_tail->m_len -= 1872a94100faSBill Paul (ETHER_CRC_LEN - m->m_len); 1873a94100faSBill Paul m_freem(m); 1874a94100faSBill Paul } else { 1875a94100faSBill Paul m->m_len -= ETHER_CRC_LEN; 1876a94100faSBill Paul m->m_flags &= ~M_PKTHDR; 1877a94100faSBill Paul sc->rl_tail->m_next = m; 1878a94100faSBill Paul } 1879a94100faSBill Paul m = sc->rl_head; 1880a94100faSBill Paul sc->rl_head = sc->rl_tail = NULL; 1881a94100faSBill Paul m->m_pkthdr.len = total_len - ETHER_CRC_LEN; 1882a94100faSBill Paul } else 1883a94100faSBill Paul m->m_pkthdr.len = m->m_len = 1884a94100faSBill Paul (total_len - ETHER_CRC_LEN); 1885a94100faSBill Paul 188622a11c96SJohn-Mark Gurney #ifdef RE_FIXUP_RX 188722a11c96SJohn-Mark Gurney re_fixup_rx(m); 188822a11c96SJohn-Mark Gurney #endif 1889a94100faSBill Paul ifp->if_ipackets++; 1890a94100faSBill Paul m->m_pkthdr.rcvif = ifp; 1891a94100faSBill Paul 1892a94100faSBill Paul /* Do RX checksumming if enabled */ 1893a94100faSBill Paul 1894a94100faSBill Paul if (ifp->if_capenable & IFCAP_RXCSUM) { 1895deb5c680SPyun YongHyeon if ((sc->rl_flags & RL_FLAG_DESCV2) == 0) { 1896a94100faSBill Paul /* Check IP header checksum */ 1897a94100faSBill Paul if (rxstat & RL_RDESC_STAT_PROTOID) 1898deb5c680SPyun YongHyeon m->m_pkthdr.csum_flags |= 1899deb5c680SPyun YongHyeon CSUM_IP_CHECKED; 1900a94100faSBill Paul if (!(rxstat & RL_RDESC_STAT_IPSUMBAD)) 1901deb5c680SPyun YongHyeon m->m_pkthdr.csum_flags |= 1902deb5c680SPyun YongHyeon CSUM_IP_VALID; 1903a94100faSBill Paul 1904a94100faSBill Paul /* Check TCP/UDP checksum */ 1905a94100faSBill Paul if ((RL_TCPPKT(rxstat) && 1906a94100faSBill Paul !(rxstat & RL_RDESC_STAT_TCPSUMBAD)) || 1907a94100faSBill Paul (RL_UDPPKT(rxstat) && 1908a94100faSBill Paul !(rxstat & RL_RDESC_STAT_UDPSUMBAD))) { 1909a94100faSBill Paul m->m_pkthdr.csum_flags |= 1910a94100faSBill Paul CSUM_DATA_VALID|CSUM_PSEUDO_HDR; 1911a94100faSBill Paul m->m_pkthdr.csum_data = 0xffff; 1912a94100faSBill Paul } 1913deb5c680SPyun YongHyeon } else { 1914deb5c680SPyun YongHyeon /* 1915deb5c680SPyun YongHyeon * RTL8168C/RTL816CP/RTL8111C/RTL8111CP 1916deb5c680SPyun YongHyeon */ 1917deb5c680SPyun YongHyeon if ((rxstat & RL_RDESC_STAT_PROTOID) && 1918deb5c680SPyun YongHyeon (rxvlan & RL_RDESC_IPV4)) 1919deb5c680SPyun YongHyeon m->m_pkthdr.csum_flags |= 1920deb5c680SPyun YongHyeon CSUM_IP_CHECKED; 1921deb5c680SPyun YongHyeon if (!(rxstat & RL_RDESC_STAT_IPSUMBAD) && 1922deb5c680SPyun YongHyeon (rxvlan & RL_RDESC_IPV4)) 1923deb5c680SPyun YongHyeon m->m_pkthdr.csum_flags |= 1924deb5c680SPyun YongHyeon CSUM_IP_VALID; 1925deb5c680SPyun YongHyeon if (((rxstat & RL_RDESC_STAT_TCP) && 1926deb5c680SPyun YongHyeon !(rxstat & RL_RDESC_STAT_TCPSUMBAD)) || 1927deb5c680SPyun YongHyeon ((rxstat & RL_RDESC_STAT_UDP) && 1928deb5c680SPyun YongHyeon !(rxstat & RL_RDESC_STAT_UDPSUMBAD))) { 1929deb5c680SPyun YongHyeon m->m_pkthdr.csum_flags |= 1930deb5c680SPyun YongHyeon CSUM_DATA_VALID|CSUM_PSEUDO_HDR; 1931deb5c680SPyun YongHyeon m->m_pkthdr.csum_data = 0xffff; 1932deb5c680SPyun YongHyeon } 1933deb5c680SPyun YongHyeon } 1934a94100faSBill Paul } 1935ed510fb0SBill Paul maxpkt--; 1936d147662cSGleb Smirnoff if (rxvlan & RL_RDESC_VLANCTL_TAG) { 193778ba57b9SAndre Oppermann m->m_pkthdr.ether_vtag = 1938bddff934SPyun YongHyeon bswap16((rxvlan & RL_RDESC_VLANCTL_DATA)); 193978ba57b9SAndre Oppermann m->m_flags |= M_VLANTAG; 1940d147662cSGleb Smirnoff } 19415120abbfSSam Leffler RL_UNLOCK(sc); 1942a94100faSBill Paul (*ifp->if_input)(ifp, m); 19435120abbfSSam Leffler RL_LOCK(sc); 1944a94100faSBill Paul } 1945a94100faSBill Paul 1946a94100faSBill Paul /* Flush the RX DMA ring */ 1947a94100faSBill Paul 1948a94100faSBill Paul bus_dmamap_sync(sc->rl_ldata.rl_rx_list_tag, 1949a94100faSBill Paul sc->rl_ldata.rl_rx_list_map, 1950a94100faSBill Paul BUS_DMASYNC_PREWRITE|BUS_DMASYNC_PREREAD); 1951a94100faSBill Paul 1952a94100faSBill Paul sc->rl_ldata.rl_rx_prodidx = i; 1953ed510fb0SBill Paul 1954ed510fb0SBill Paul if (maxpkt) 1955ed510fb0SBill Paul return(EAGAIN); 1956ed510fb0SBill Paul 1957ed510fb0SBill Paul return(0); 1958a94100faSBill Paul } 1959a94100faSBill Paul 1960a94100faSBill Paul static void 19617b5ffebfSPyun YongHyeon re_txeof(struct rl_softc *sc) 1962a94100faSBill Paul { 1963a94100faSBill Paul struct ifnet *ifp; 1964d65abd66SPyun YongHyeon struct rl_txdesc *txd; 1965a94100faSBill Paul u_int32_t txstat; 1966d65abd66SPyun YongHyeon int cons; 1967d65abd66SPyun YongHyeon 1968d65abd66SPyun YongHyeon cons = sc->rl_ldata.rl_tx_considx; 1969d65abd66SPyun YongHyeon if (cons == sc->rl_ldata.rl_tx_prodidx) 1970d65abd66SPyun YongHyeon return; 1971a94100faSBill Paul 1972fc74a9f9SBrooks Davis ifp = sc->rl_ifp; 1973a94100faSBill Paul /* Invalidate the TX descriptor list */ 1974a94100faSBill Paul bus_dmamap_sync(sc->rl_ldata.rl_tx_list_tag, 1975a94100faSBill Paul sc->rl_ldata.rl_tx_list_map, 1976d65abd66SPyun YongHyeon BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE); 1977a94100faSBill Paul 1978d65abd66SPyun YongHyeon for (; cons != sc->rl_ldata.rl_tx_prodidx; 1979d65abd66SPyun YongHyeon cons = RL_TX_DESC_NXT(sc, cons)) { 1980d65abd66SPyun YongHyeon txstat = le32toh(sc->rl_ldata.rl_tx_list[cons].rl_cmdstat); 1981d65abd66SPyun YongHyeon if (txstat & RL_TDESC_STAT_OWN) 1982a94100faSBill Paul break; 1983a94100faSBill Paul /* 1984a94100faSBill Paul * We only stash mbufs in the last descriptor 1985a94100faSBill Paul * in a fragment chain, which also happens to 1986a94100faSBill Paul * be the only place where the TX status bits 1987a94100faSBill Paul * are valid. 1988a94100faSBill Paul */ 1989a94100faSBill Paul if (txstat & RL_TDESC_CMD_EOF) { 1990d65abd66SPyun YongHyeon txd = &sc->rl_ldata.rl_tx_desc[cons]; 1991d65abd66SPyun YongHyeon bus_dmamap_sync(sc->rl_ldata.rl_tx_mtag, 1992d65abd66SPyun YongHyeon txd->tx_dmamap, BUS_DMASYNC_POSTWRITE); 1993d65abd66SPyun YongHyeon bus_dmamap_unload(sc->rl_ldata.rl_tx_mtag, 1994d65abd66SPyun YongHyeon txd->tx_dmamap); 1995d65abd66SPyun YongHyeon KASSERT(txd->tx_m != NULL, 1996d65abd66SPyun YongHyeon ("%s: freeing NULL mbufs!", __func__)); 1997d65abd66SPyun YongHyeon m_freem(txd->tx_m); 1998d65abd66SPyun YongHyeon txd->tx_m = NULL; 1999a94100faSBill Paul if (txstat & (RL_TDESC_STAT_EXCESSCOL| 2000a94100faSBill Paul RL_TDESC_STAT_COLCNT)) 2001a94100faSBill Paul ifp->if_collisions++; 2002a94100faSBill Paul if (txstat & RL_TDESC_STAT_TXERRSUM) 2003a94100faSBill Paul ifp->if_oerrors++; 2004a94100faSBill Paul else 2005a94100faSBill Paul ifp->if_opackets++; 2006a94100faSBill Paul } 2007a94100faSBill Paul sc->rl_ldata.rl_tx_free++; 2008d65abd66SPyun YongHyeon ifp->if_drv_flags &= ~IFF_DRV_OACTIVE; 2009a94100faSBill Paul } 2010d65abd66SPyun YongHyeon sc->rl_ldata.rl_tx_considx = cons; 2011a94100faSBill Paul 2012a94100faSBill Paul /* No changes made to the TX ring, so no flush needed */ 2013a94100faSBill Paul 2014d65abd66SPyun YongHyeon if (sc->rl_ldata.rl_tx_free != sc->rl_ldata.rl_tx_desc_cnt) { 20150fc4974fSBill Paul /* 2016b4b95879SMarius Strobl * Some chips will ignore a second TX request issued 2017b4b95879SMarius Strobl * while an existing transmission is in progress. If 2018b4b95879SMarius Strobl * the transmitter goes idle but there are still 2019b4b95879SMarius Strobl * packets waiting to be sent, we need to restart the 2020b4b95879SMarius Strobl * channel here to flush them out. This only seems to 2021b4b95879SMarius Strobl * be required with the PCIe devices. 20220fc4974fSBill Paul */ 20230fc4974fSBill Paul CSR_WRITE_1(sc, sc->rl_txstart, RL_TXSTART_START); 20240fc4974fSBill Paul 2025ed510fb0SBill Paul #ifdef RE_TX_MODERATION 2026a94100faSBill Paul /* 2027b4b95879SMarius Strobl * If not all descriptors have been reaped yet, reload 2028b4b95879SMarius Strobl * the timer so that we will eventually get another 2029a94100faSBill Paul * interrupt that will cause us to re-enter this routine. 2030a94100faSBill Paul * This is done in case the transmitter has gone idle. 2031a94100faSBill Paul */ 2032a94100faSBill Paul CSR_WRITE_4(sc, RL_TIMERCNT, 1); 2033ed510fb0SBill Paul #endif 2034b4b95879SMarius Strobl } else 2035b4b95879SMarius Strobl sc->rl_watchdog_timer = 0; 2036a94100faSBill Paul } 2037a94100faSBill Paul 2038a94100faSBill Paul static void 20397b5ffebfSPyun YongHyeon re_tick(void *xsc) 2040a94100faSBill Paul { 2041a94100faSBill Paul struct rl_softc *sc; 2042d1754a9bSJohn Baldwin struct mii_data *mii; 2043a94100faSBill Paul 2044a94100faSBill Paul sc = xsc; 204597b9d4baSJohn-Mark Gurney 204697b9d4baSJohn-Mark Gurney RL_LOCK_ASSERT(sc); 204797b9d4baSJohn-Mark Gurney 20481d545c7aSMarius Strobl mii = device_get_softc(sc->rl_miibus); 2049a94100faSBill Paul mii_tick(mii); 2050130b6dfbSPyun YongHyeon re_watchdog(sc); 2051d1754a9bSJohn Baldwin callout_reset(&sc->rl_stat_callout, hz, re_tick, sc); 2052a94100faSBill Paul } 2053a94100faSBill Paul 2054a94100faSBill Paul #ifdef DEVICE_POLLING 2055a94100faSBill Paul static void 2056a94100faSBill Paul re_poll(struct ifnet *ifp, enum poll_cmd cmd, int count) 2057a94100faSBill Paul { 2058a94100faSBill Paul struct rl_softc *sc = ifp->if_softc; 2059a94100faSBill Paul 2060a94100faSBill Paul RL_LOCK(sc); 206140929967SGleb Smirnoff if (ifp->if_drv_flags & IFF_DRV_RUNNING) 206297b9d4baSJohn-Mark Gurney re_poll_locked(ifp, cmd, count); 206397b9d4baSJohn-Mark Gurney RL_UNLOCK(sc); 206497b9d4baSJohn-Mark Gurney } 206597b9d4baSJohn-Mark Gurney 206697b9d4baSJohn-Mark Gurney static void 206797b9d4baSJohn-Mark Gurney re_poll_locked(struct ifnet *ifp, enum poll_cmd cmd, int count) 206897b9d4baSJohn-Mark Gurney { 206997b9d4baSJohn-Mark Gurney struct rl_softc *sc = ifp->if_softc; 207097b9d4baSJohn-Mark Gurney 207197b9d4baSJohn-Mark Gurney RL_LOCK_ASSERT(sc); 207297b9d4baSJohn-Mark Gurney 2073a94100faSBill Paul sc->rxcycles = count; 2074a94100faSBill Paul re_rxeof(sc); 2075a94100faSBill Paul re_txeof(sc); 2076a94100faSBill Paul 207737652939SMax Laier if (!IFQ_DRV_IS_EMPTY(&ifp->if_snd)) 2078ed510fb0SBill Paul taskqueue_enqueue_fast(taskqueue_fast, &sc->rl_txtask); 2079a94100faSBill Paul 2080a94100faSBill Paul if (cmd == POLL_AND_CHECK_STATUS) { /* also check status register */ 2081a94100faSBill Paul u_int16_t status; 2082a94100faSBill Paul 2083a94100faSBill Paul status = CSR_READ_2(sc, RL_ISR); 2084a94100faSBill Paul if (status == 0xffff) 208597b9d4baSJohn-Mark Gurney return; 2086a94100faSBill Paul if (status) 2087a94100faSBill Paul CSR_WRITE_2(sc, RL_ISR, status); 2088a94100faSBill Paul 2089a94100faSBill Paul /* 2090a94100faSBill Paul * XXX check behaviour on receiver stalls. 2091a94100faSBill Paul */ 2092a94100faSBill Paul 2093b659f1f0SPyun YongHyeon if (status & RL_ISR_SYSTEM_ERR) 209497b9d4baSJohn-Mark Gurney re_init_locked(sc); 2095a94100faSBill Paul } 2096a94100faSBill Paul } 2097a94100faSBill Paul #endif /* DEVICE_POLLING */ 2098a94100faSBill Paul 2099ef544f63SPaolo Pisati static int 21007b5ffebfSPyun YongHyeon re_intr(void *arg) 2101a94100faSBill Paul { 2102a94100faSBill Paul struct rl_softc *sc; 2103ed510fb0SBill Paul uint16_t status; 2104a94100faSBill Paul 2105a94100faSBill Paul sc = arg; 2106ed510fb0SBill Paul 2107ed510fb0SBill Paul status = CSR_READ_2(sc, RL_ISR); 2108498bd0d3SBill Paul if (status == 0xFFFF || (status & RL_INTRS_CPLUS) == 0) 2109ef544f63SPaolo Pisati return (FILTER_STRAY); 2110ed510fb0SBill Paul CSR_WRITE_2(sc, RL_IMR, 0); 2111ed510fb0SBill Paul 2112ed510fb0SBill Paul taskqueue_enqueue_fast(taskqueue_fast, &sc->rl_inttask); 2113ed510fb0SBill Paul 2114ef544f63SPaolo Pisati return (FILTER_HANDLED); 2115ed510fb0SBill Paul } 2116ed510fb0SBill Paul 2117ed510fb0SBill Paul static void 21187b5ffebfSPyun YongHyeon re_int_task(void *arg, int npending) 2119ed510fb0SBill Paul { 2120ed510fb0SBill Paul struct rl_softc *sc; 2121ed510fb0SBill Paul struct ifnet *ifp; 2122ed510fb0SBill Paul u_int16_t status; 2123ed510fb0SBill Paul int rval = 0; 2124ed510fb0SBill Paul 2125ed510fb0SBill Paul sc = arg; 2126ed510fb0SBill Paul ifp = sc->rl_ifp; 2127a94100faSBill Paul 2128a94100faSBill Paul RL_LOCK(sc); 212997b9d4baSJohn-Mark Gurney 2130a94100faSBill Paul status = CSR_READ_2(sc, RL_ISR); 2131a94100faSBill Paul CSR_WRITE_2(sc, RL_ISR, status); 2132a94100faSBill Paul 2133d65abd66SPyun YongHyeon if (sc->suspended || 2134d65abd66SPyun YongHyeon (ifp->if_drv_flags & IFF_DRV_RUNNING) == 0) { 2135ed510fb0SBill Paul RL_UNLOCK(sc); 2136ed510fb0SBill Paul return; 2137ed510fb0SBill Paul } 2138a94100faSBill Paul 2139ed510fb0SBill Paul #ifdef DEVICE_POLLING 2140ed510fb0SBill Paul if (ifp->if_capenable & IFCAP_POLLING) { 2141ed510fb0SBill Paul RL_UNLOCK(sc); 2142ed510fb0SBill Paul return; 2143ed510fb0SBill Paul } 2144ed510fb0SBill Paul #endif 2145a94100faSBill Paul 2146ed510fb0SBill Paul if (status & (RL_ISR_RX_OK|RL_ISR_RX_ERR|RL_ISR_FIFO_OFLOW)) 2147ed510fb0SBill Paul rval = re_rxeof(sc); 2148ed510fb0SBill Paul 21493d85c23dSPyun YongHyeon if (status & ( 2150ed510fb0SBill Paul #ifdef RE_TX_MODERATION 21513d85c23dSPyun YongHyeon RL_ISR_TIMEOUT_EXPIRED| 2152ed510fb0SBill Paul #else 21533d85c23dSPyun YongHyeon RL_ISR_TX_OK| 2154ed510fb0SBill Paul #endif 2155ed510fb0SBill Paul RL_ISR_TX_ERR|RL_ISR_TX_DESC_UNAVAIL)) 2156a94100faSBill Paul re_txeof(sc); 2157a94100faSBill Paul 2158b659f1f0SPyun YongHyeon if (status & RL_ISR_SYSTEM_ERR) 215997b9d4baSJohn-Mark Gurney re_init_locked(sc); 2160a94100faSBill Paul 216152732175SMax Laier if (!IFQ_DRV_IS_EMPTY(&ifp->if_snd)) 2162ed510fb0SBill Paul taskqueue_enqueue_fast(taskqueue_fast, &sc->rl_txtask); 2163a94100faSBill Paul 2164a94100faSBill Paul RL_UNLOCK(sc); 2165ed510fb0SBill Paul 2166ed510fb0SBill Paul if ((CSR_READ_2(sc, RL_ISR) & RL_INTRS_CPLUS) || rval) { 2167ed510fb0SBill Paul taskqueue_enqueue_fast(taskqueue_fast, &sc->rl_inttask); 2168ed510fb0SBill Paul return; 2169ed510fb0SBill Paul } 2170ed510fb0SBill Paul 2171ed510fb0SBill Paul CSR_WRITE_2(sc, RL_IMR, RL_INTRS_CPLUS); 2172a94100faSBill Paul } 2173a94100faSBill Paul 2174d65abd66SPyun YongHyeon static int 21757b5ffebfSPyun YongHyeon re_encap(struct rl_softc *sc, struct mbuf **m_head) 2176d65abd66SPyun YongHyeon { 2177d65abd66SPyun YongHyeon struct rl_txdesc *txd, *txd_last; 2178d65abd66SPyun YongHyeon bus_dma_segment_t segs[RL_NTXSEGS]; 2179d65abd66SPyun YongHyeon bus_dmamap_t map; 2180d65abd66SPyun YongHyeon struct mbuf *m_new; 2181d65abd66SPyun YongHyeon struct rl_desc *desc; 2182d65abd66SPyun YongHyeon int nsegs, prod; 2183d65abd66SPyun YongHyeon int i, error, ei, si; 2184d65abd66SPyun YongHyeon int padlen; 2185ccf34c81SPyun YongHyeon uint32_t cmdstat, csum_flags, vlanctl; 2186a94100faSBill Paul 2187d65abd66SPyun YongHyeon RL_LOCK_ASSERT(sc); 2188738489d1SPyun YongHyeon M_ASSERTPKTHDR((*m_head)); 21890fc4974fSBill Paul 21900fc4974fSBill Paul /* 21910fc4974fSBill Paul * With some of the RealTek chips, using the checksum offload 21920fc4974fSBill Paul * support in conjunction with the autopadding feature results 21930fc4974fSBill Paul * in the transmission of corrupt frames. For example, if we 21940fc4974fSBill Paul * need to send a really small IP fragment that's less than 60 21950fc4974fSBill Paul * bytes in size, and IP header checksumming is enabled, the 21960fc4974fSBill Paul * resulting ethernet frame that appears on the wire will 219799c8ae87SPyun YongHyeon * have garbled payload. To work around this, if TX IP checksum 21980fc4974fSBill Paul * offload is enabled, we always manually pad short frames out 2199d65abd66SPyun YongHyeon * to the minimum ethernet frame size. 22000fc4974fSBill Paul */ 2201deb5c680SPyun YongHyeon if ((sc->rl_flags & RL_FLAG_DESCV2) == 0 && 2202deb5c680SPyun YongHyeon (*m_head)->m_pkthdr.len < RL_IP4CSUMTX_PADLEN && 220399c8ae87SPyun YongHyeon ((*m_head)->m_pkthdr.csum_flags & CSUM_IP) != 0) { 2204d65abd66SPyun YongHyeon padlen = RL_MIN_FRAMELEN - (*m_head)->m_pkthdr.len; 2205d65abd66SPyun YongHyeon if (M_WRITABLE(*m_head) == 0) { 2206d65abd66SPyun YongHyeon /* Get a writable copy. */ 2207d65abd66SPyun YongHyeon m_new = m_dup(*m_head, M_DONTWAIT); 2208d65abd66SPyun YongHyeon m_freem(*m_head); 2209d65abd66SPyun YongHyeon if (m_new == NULL) { 2210d65abd66SPyun YongHyeon *m_head = NULL; 2211a94100faSBill Paul return (ENOBUFS); 2212a94100faSBill Paul } 2213d65abd66SPyun YongHyeon *m_head = m_new; 2214d65abd66SPyun YongHyeon } 2215d65abd66SPyun YongHyeon if ((*m_head)->m_next != NULL || 2216d65abd66SPyun YongHyeon M_TRAILINGSPACE(*m_head) < padlen) { 221780a2a305SJohn-Mark Gurney m_new = m_defrag(*m_head, M_DONTWAIT); 2218b4b95879SMarius Strobl if (m_new == NULL) { 2219b4b95879SMarius Strobl m_freem(*m_head); 2220b4b95879SMarius Strobl *m_head = NULL; 222180a2a305SJohn-Mark Gurney return (ENOBUFS); 2222b4b95879SMarius Strobl } 2223d65abd66SPyun YongHyeon } else 2224d65abd66SPyun YongHyeon m_new = *m_head; 2225a94100faSBill Paul 22260fc4974fSBill Paul /* 22270fc4974fSBill Paul * Manually pad short frames, and zero the pad space 22280fc4974fSBill Paul * to avoid leaking data. 22290fc4974fSBill Paul */ 2230d65abd66SPyun YongHyeon bzero(mtod(m_new, char *) + m_new->m_pkthdr.len, padlen); 2231d65abd66SPyun YongHyeon m_new->m_pkthdr.len += padlen; 22320fc4974fSBill Paul m_new->m_len = m_new->m_pkthdr.len; 2233d65abd66SPyun YongHyeon *m_head = m_new; 22340fc4974fSBill Paul } 22350fc4974fSBill Paul 2236d65abd66SPyun YongHyeon prod = sc->rl_ldata.rl_tx_prodidx; 2237d65abd66SPyun YongHyeon txd = &sc->rl_ldata.rl_tx_desc[prod]; 2238d65abd66SPyun YongHyeon error = bus_dmamap_load_mbuf_sg(sc->rl_ldata.rl_tx_mtag, txd->tx_dmamap, 2239d65abd66SPyun YongHyeon *m_head, segs, &nsegs, BUS_DMA_NOWAIT); 2240d65abd66SPyun YongHyeon if (error == EFBIG) { 2241304a4c6fSJohn Baldwin m_new = m_collapse(*m_head, M_DONTWAIT, RL_NTXSEGS); 2242d65abd66SPyun YongHyeon if (m_new == NULL) { 2243d65abd66SPyun YongHyeon m_freem(*m_head); 2244b4b95879SMarius Strobl *m_head = NULL; 2245d65abd66SPyun YongHyeon return (ENOBUFS); 2246a94100faSBill Paul } 2247d65abd66SPyun YongHyeon *m_head = m_new; 2248d65abd66SPyun YongHyeon error = bus_dmamap_load_mbuf_sg(sc->rl_ldata.rl_tx_mtag, 2249d65abd66SPyun YongHyeon txd->tx_dmamap, *m_head, segs, &nsegs, BUS_DMA_NOWAIT); 2250d65abd66SPyun YongHyeon if (error != 0) { 2251d65abd66SPyun YongHyeon m_freem(*m_head); 2252d65abd66SPyun YongHyeon *m_head = NULL; 2253d65abd66SPyun YongHyeon return (error); 2254a94100faSBill Paul } 2255d65abd66SPyun YongHyeon } else if (error != 0) 2256d65abd66SPyun YongHyeon return (error); 2257d65abd66SPyun YongHyeon if (nsegs == 0) { 2258d65abd66SPyun YongHyeon m_freem(*m_head); 2259d65abd66SPyun YongHyeon *m_head = NULL; 2260d65abd66SPyun YongHyeon return (EIO); 2261d65abd66SPyun YongHyeon } 2262d65abd66SPyun YongHyeon 2263d65abd66SPyun YongHyeon /* Check for number of available descriptors. */ 2264d65abd66SPyun YongHyeon if (sc->rl_ldata.rl_tx_free - nsegs <= 1) { 2265d65abd66SPyun YongHyeon bus_dmamap_unload(sc->rl_ldata.rl_tx_mtag, txd->tx_dmamap); 2266d65abd66SPyun YongHyeon return (ENOBUFS); 2267d65abd66SPyun YongHyeon } 2268d65abd66SPyun YongHyeon 2269d65abd66SPyun YongHyeon bus_dmamap_sync(sc->rl_ldata.rl_tx_mtag, txd->tx_dmamap, 2270d65abd66SPyun YongHyeon BUS_DMASYNC_PREWRITE); 2271a94100faSBill Paul 2272a94100faSBill Paul /* 2273d65abd66SPyun YongHyeon * Set up checksum offload. Note: checksum offload bits must 2274d65abd66SPyun YongHyeon * appear in all descriptors of a multi-descriptor transmit 2275d65abd66SPyun YongHyeon * attempt. This is according to testing done with an 8169 2276d65abd66SPyun YongHyeon * chip. This is a requirement. 2277a94100faSBill Paul */ 2278deb5c680SPyun YongHyeon vlanctl = 0; 2279d65abd66SPyun YongHyeon csum_flags = 0; 2280d65abd66SPyun YongHyeon if (((*m_head)->m_pkthdr.csum_flags & CSUM_TSO) != 0) 2281d65abd66SPyun YongHyeon csum_flags = RL_TDESC_CMD_LGSEND | 2282d65abd66SPyun YongHyeon ((uint32_t)(*m_head)->m_pkthdr.tso_segsz << 2283d65abd66SPyun YongHyeon RL_TDESC_CMD_MSSVAL_SHIFT); 2284d65abd66SPyun YongHyeon else { 228599c8ae87SPyun YongHyeon /* 228699c8ae87SPyun YongHyeon * Unconditionally enable IP checksum if TCP or UDP 228799c8ae87SPyun YongHyeon * checksum is required. Otherwise, TCP/UDP checksum 228899c8ae87SPyun YongHyeon * does't make effects. 228999c8ae87SPyun YongHyeon */ 229099c8ae87SPyun YongHyeon if (((*m_head)->m_pkthdr.csum_flags & RE_CSUM_FEATURES) != 0) { 2291deb5c680SPyun YongHyeon if ((sc->rl_flags & RL_FLAG_DESCV2) == 0) { 2292d65abd66SPyun YongHyeon csum_flags |= RL_TDESC_CMD_IPCSUM; 2293deb5c680SPyun YongHyeon if (((*m_head)->m_pkthdr.csum_flags & 2294deb5c680SPyun YongHyeon CSUM_TCP) != 0) 2295d65abd66SPyun YongHyeon csum_flags |= RL_TDESC_CMD_TCPCSUM; 2296deb5c680SPyun YongHyeon if (((*m_head)->m_pkthdr.csum_flags & 2297deb5c680SPyun YongHyeon CSUM_UDP) != 0) 2298d65abd66SPyun YongHyeon csum_flags |= RL_TDESC_CMD_UDPCSUM; 2299deb5c680SPyun YongHyeon } else { 2300deb5c680SPyun YongHyeon vlanctl |= RL_TDESC_CMD_IPCSUMV2; 2301deb5c680SPyun YongHyeon if (((*m_head)->m_pkthdr.csum_flags & 2302deb5c680SPyun YongHyeon CSUM_TCP) != 0) 2303deb5c680SPyun YongHyeon vlanctl |= RL_TDESC_CMD_TCPCSUMV2; 2304deb5c680SPyun YongHyeon if (((*m_head)->m_pkthdr.csum_flags & 2305deb5c680SPyun YongHyeon CSUM_UDP) != 0) 2306deb5c680SPyun YongHyeon vlanctl |= RL_TDESC_CMD_UDPCSUMV2; 2307deb5c680SPyun YongHyeon } 2308d65abd66SPyun YongHyeon } 230999c8ae87SPyun YongHyeon } 2310a94100faSBill Paul 2311ccf34c81SPyun YongHyeon /* 2312ccf34c81SPyun YongHyeon * Set up hardware VLAN tagging. Note: vlan tag info must 2313ccf34c81SPyun YongHyeon * appear in all descriptors of a multi-descriptor 2314ccf34c81SPyun YongHyeon * transmission attempt. 2315ccf34c81SPyun YongHyeon */ 2316ccf34c81SPyun YongHyeon if ((*m_head)->m_flags & M_VLANTAG) 2317bddff934SPyun YongHyeon vlanctl |= bswap16((*m_head)->m_pkthdr.ether_vtag) | 2318deb5c680SPyun YongHyeon RL_TDESC_VLANCTL_TAG; 2319ccf34c81SPyun YongHyeon 2320d65abd66SPyun YongHyeon si = prod; 2321d65abd66SPyun YongHyeon for (i = 0; i < nsegs; i++, prod = RL_TX_DESC_NXT(sc, prod)) { 2322d65abd66SPyun YongHyeon desc = &sc->rl_ldata.rl_tx_list[prod]; 2323deb5c680SPyun YongHyeon desc->rl_vlanctl = htole32(vlanctl); 2324d65abd66SPyun YongHyeon desc->rl_bufaddr_lo = htole32(RL_ADDR_LO(segs[i].ds_addr)); 2325d65abd66SPyun YongHyeon desc->rl_bufaddr_hi = htole32(RL_ADDR_HI(segs[i].ds_addr)); 2326d65abd66SPyun YongHyeon cmdstat = segs[i].ds_len; 2327d65abd66SPyun YongHyeon if (i != 0) 2328d65abd66SPyun YongHyeon cmdstat |= RL_TDESC_CMD_OWN; 2329d65abd66SPyun YongHyeon if (prod == sc->rl_ldata.rl_tx_desc_cnt - 1) 2330d65abd66SPyun YongHyeon cmdstat |= RL_TDESC_CMD_EOR; 2331d65abd66SPyun YongHyeon desc->rl_cmdstat = htole32(cmdstat | csum_flags); 2332d65abd66SPyun YongHyeon sc->rl_ldata.rl_tx_free--; 2333d65abd66SPyun YongHyeon } 2334d65abd66SPyun YongHyeon /* Update producer index. */ 2335d65abd66SPyun YongHyeon sc->rl_ldata.rl_tx_prodidx = prod; 2336a94100faSBill Paul 2337d65abd66SPyun YongHyeon /* Set EOF on the last descriptor. */ 2338d65abd66SPyun YongHyeon ei = RL_TX_DESC_PRV(sc, prod); 2339d65abd66SPyun YongHyeon desc = &sc->rl_ldata.rl_tx_list[ei]; 2340d65abd66SPyun YongHyeon desc->rl_cmdstat |= htole32(RL_TDESC_CMD_EOF); 2341d65abd66SPyun YongHyeon 2342d65abd66SPyun YongHyeon desc = &sc->rl_ldata.rl_tx_list[si]; 2343d65abd66SPyun YongHyeon /* Set SOF and transfer ownership of packet to the chip. */ 2344d65abd66SPyun YongHyeon desc->rl_cmdstat |= htole32(RL_TDESC_CMD_OWN | RL_TDESC_CMD_SOF); 2345a94100faSBill Paul 2346d65abd66SPyun YongHyeon /* 2347d65abd66SPyun YongHyeon * Insure that the map for this transmission 2348d65abd66SPyun YongHyeon * is placed at the array index of the last descriptor 2349d65abd66SPyun YongHyeon * in this chain. (Swap last and first dmamaps.) 2350d65abd66SPyun YongHyeon */ 2351d65abd66SPyun YongHyeon txd_last = &sc->rl_ldata.rl_tx_desc[ei]; 2352d65abd66SPyun YongHyeon map = txd->tx_dmamap; 2353d65abd66SPyun YongHyeon txd->tx_dmamap = txd_last->tx_dmamap; 2354d65abd66SPyun YongHyeon txd_last->tx_dmamap = map; 2355d65abd66SPyun YongHyeon txd_last->tx_m = *m_head; 2356a94100faSBill Paul 2357a94100faSBill Paul return (0); 2358a94100faSBill Paul } 2359a94100faSBill Paul 236097b9d4baSJohn-Mark Gurney static void 23617b5ffebfSPyun YongHyeon re_tx_task(void *arg, int npending) 236297b9d4baSJohn-Mark Gurney { 2363ed510fb0SBill Paul struct ifnet *ifp; 236497b9d4baSJohn-Mark Gurney 2365ed510fb0SBill Paul ifp = arg; 2366ed510fb0SBill Paul re_start(ifp); 236797b9d4baSJohn-Mark Gurney } 236897b9d4baSJohn-Mark Gurney 2369a94100faSBill Paul /* 2370a94100faSBill Paul * Main transmit routine for C+ and gigE NICs. 2371a94100faSBill Paul */ 2372a94100faSBill Paul static void 23737b5ffebfSPyun YongHyeon re_start(struct ifnet *ifp) 2374a94100faSBill Paul { 2375a94100faSBill Paul struct rl_softc *sc; 2376d65abd66SPyun YongHyeon struct mbuf *m_head; 2377d65abd66SPyun YongHyeon int queued; 2378a94100faSBill Paul 2379a94100faSBill Paul sc = ifp->if_softc; 238097b9d4baSJohn-Mark Gurney 2381ed510fb0SBill Paul RL_LOCK(sc); 2382ed510fb0SBill Paul 2383d65abd66SPyun YongHyeon if ((ifp->if_drv_flags & (IFF_DRV_RUNNING | IFF_DRV_OACTIVE)) != 2384351a76f9SPyun YongHyeon IFF_DRV_RUNNING || (sc->rl_flags & RL_FLAG_LINK) == 0) { 2385ed510fb0SBill Paul RL_UNLOCK(sc); 2386ed510fb0SBill Paul return; 2387ed510fb0SBill Paul } 2388a94100faSBill Paul 2389d65abd66SPyun YongHyeon for (queued = 0; !IFQ_DRV_IS_EMPTY(&ifp->if_snd) && 2390d65abd66SPyun YongHyeon sc->rl_ldata.rl_tx_free > 1;) { 239152732175SMax Laier IFQ_DRV_DEQUEUE(&ifp->if_snd, m_head); 2392a94100faSBill Paul if (m_head == NULL) 2393a94100faSBill Paul break; 2394a94100faSBill Paul 2395d65abd66SPyun YongHyeon if (re_encap(sc, &m_head) != 0) { 2396b4b95879SMarius Strobl if (m_head == NULL) 2397b4b95879SMarius Strobl break; 239852732175SMax Laier IFQ_DRV_PREPEND(&ifp->if_snd, m_head); 239913f4c340SRobert Watson ifp->if_drv_flags |= IFF_DRV_OACTIVE; 2400a94100faSBill Paul break; 2401a94100faSBill Paul } 2402a94100faSBill Paul 2403a94100faSBill Paul /* 2404a94100faSBill Paul * If there's a BPF listener, bounce a copy of this frame 2405a94100faSBill Paul * to him. 2406a94100faSBill Paul */ 240759a0d28bSChristian S.J. Peron ETHER_BPF_MTAP(ifp, m_head); 240852732175SMax Laier 240952732175SMax Laier queued++; 2410a94100faSBill Paul } 2411a94100faSBill Paul 2412ed510fb0SBill Paul if (queued == 0) { 2413ed510fb0SBill Paul #ifdef RE_TX_MODERATION 2414d65abd66SPyun YongHyeon if (sc->rl_ldata.rl_tx_free != sc->rl_ldata.rl_tx_desc_cnt) 2415ed510fb0SBill Paul CSR_WRITE_4(sc, RL_TIMERCNT, 1); 2416ed510fb0SBill Paul #endif 2417ed510fb0SBill Paul RL_UNLOCK(sc); 241852732175SMax Laier return; 2419ed510fb0SBill Paul } 242052732175SMax Laier 2421a94100faSBill Paul /* Flush the TX descriptors */ 2422a94100faSBill Paul 2423a94100faSBill Paul bus_dmamap_sync(sc->rl_ldata.rl_tx_list_tag, 2424a94100faSBill Paul sc->rl_ldata.rl_tx_list_map, 2425a94100faSBill Paul BUS_DMASYNC_PREWRITE|BUS_DMASYNC_PREREAD); 2426a94100faSBill Paul 24270fc4974fSBill Paul CSR_WRITE_1(sc, sc->rl_txstart, RL_TXSTART_START); 2428a94100faSBill Paul 2429ed510fb0SBill Paul #ifdef RE_TX_MODERATION 2430a94100faSBill Paul /* 2431a94100faSBill Paul * Use the countdown timer for interrupt moderation. 2432a94100faSBill Paul * 'TX done' interrupts are disabled. Instead, we reset the 2433a94100faSBill Paul * countdown timer, which will begin counting until it hits 2434a94100faSBill Paul * the value in the TIMERINT register, and then trigger an 2435a94100faSBill Paul * interrupt. Each time we write to the TIMERCNT register, 2436a94100faSBill Paul * the timer count is reset to 0. 2437a94100faSBill Paul */ 2438a94100faSBill Paul CSR_WRITE_4(sc, RL_TIMERCNT, 1); 2439ed510fb0SBill Paul #endif 2440a94100faSBill Paul 2441a94100faSBill Paul /* 2442a94100faSBill Paul * Set a timeout in case the chip goes out to lunch. 2443a94100faSBill Paul */ 24441d545c7aSMarius Strobl sc->rl_watchdog_timer = 5; 2445ed510fb0SBill Paul 2446ed510fb0SBill Paul RL_UNLOCK(sc); 2447a94100faSBill Paul } 2448a94100faSBill Paul 2449a94100faSBill Paul static void 24507b5ffebfSPyun YongHyeon re_init(void *xsc) 2451a94100faSBill Paul { 2452a94100faSBill Paul struct rl_softc *sc = xsc; 245397b9d4baSJohn-Mark Gurney 245497b9d4baSJohn-Mark Gurney RL_LOCK(sc); 245597b9d4baSJohn-Mark Gurney re_init_locked(sc); 245697b9d4baSJohn-Mark Gurney RL_UNLOCK(sc); 245797b9d4baSJohn-Mark Gurney } 245897b9d4baSJohn-Mark Gurney 245997b9d4baSJohn-Mark Gurney static void 24607b5ffebfSPyun YongHyeon re_init_locked(struct rl_softc *sc) 246197b9d4baSJohn-Mark Gurney { 2462fc74a9f9SBrooks Davis struct ifnet *ifp = sc->rl_ifp; 2463a94100faSBill Paul struct mii_data *mii; 2464a94100faSBill Paul u_int32_t rxcfg = 0; 246570acaecfSPyun YongHyeon uint16_t cfg; 24664d3d7085SBernd Walter union { 24674d3d7085SBernd Walter uint32_t align_dummy; 24684d3d7085SBernd Walter u_char eaddr[ETHER_ADDR_LEN]; 24694d3d7085SBernd Walter } eaddr; 2470a94100faSBill Paul 247197b9d4baSJohn-Mark Gurney RL_LOCK_ASSERT(sc); 247297b9d4baSJohn-Mark Gurney 2473a94100faSBill Paul mii = device_get_softc(sc->rl_miibus); 2474a94100faSBill Paul 2475a94100faSBill Paul /* 2476a94100faSBill Paul * Cancel pending I/O and free all RX/TX buffers. 2477a94100faSBill Paul */ 2478a94100faSBill Paul re_stop(sc); 2479a94100faSBill Paul 2480b659f1f0SPyun YongHyeon /* Put controller into known state. */ 2481b659f1f0SPyun YongHyeon re_reset(sc); 2482b659f1f0SPyun YongHyeon 2483a94100faSBill Paul /* 2484c2c6548bSBill Paul * Enable C+ RX and TX mode, as well as VLAN stripping and 2485edd03374SBill Paul * RX checksum offload. We must configure the C+ register 2486c2c6548bSBill Paul * before all others. 2487c2c6548bSBill Paul */ 248870acaecfSPyun YongHyeon cfg = RL_CPLUSCMD_PCI_MRW; 248970acaecfSPyun YongHyeon if ((ifp->if_capenable & IFCAP_RXCSUM) != 0) 249070acaecfSPyun YongHyeon cfg |= RL_CPLUSCMD_RXCSUM_ENB; 249170acaecfSPyun YongHyeon if ((ifp->if_capenable & IFCAP_VLAN_HWTAGGING) != 0) 249270acaecfSPyun YongHyeon cfg |= RL_CPLUSCMD_VLANSTRIP; 2493deb5c680SPyun YongHyeon if ((sc->rl_flags & RL_FLAG_MACSTAT) != 0) { 2494deb5c680SPyun YongHyeon cfg |= RL_CPLUSCMD_MACSTAT_DIS; 2495deb5c680SPyun YongHyeon /* XXX magic. */ 2496deb5c680SPyun YongHyeon cfg |= 0x0001; 2497deb5c680SPyun YongHyeon } else 2498deb5c680SPyun YongHyeon cfg |= RL_CPLUSCMD_RXENB | RL_CPLUSCMD_TXENB; 2499deb5c680SPyun YongHyeon CSR_WRITE_2(sc, RL_CPLUS_CMD, cfg); 2500ae644087SPyun YongHyeon /* 2501ae644087SPyun YongHyeon * Disable TSO if interface MTU size is greater than MSS 2502ae644087SPyun YongHyeon * allowed in controller. 2503ae644087SPyun YongHyeon */ 2504ae644087SPyun YongHyeon if (ifp->if_mtu > RL_TSO_MTU && (ifp->if_capenable & IFCAP_TSO4) != 0) { 2505ae644087SPyun YongHyeon ifp->if_capenable &= ~IFCAP_TSO4; 2506ae644087SPyun YongHyeon ifp->if_hwassist &= ~CSUM_TSO; 2507ae644087SPyun YongHyeon } 2508c2c6548bSBill Paul 2509c2c6548bSBill Paul /* 2510a94100faSBill Paul * Init our MAC address. Even though the chipset 2511a94100faSBill Paul * documentation doesn't mention it, we need to enter "Config 2512a94100faSBill Paul * register write enable" mode to modify the ID registers. 2513a94100faSBill Paul */ 25144d3d7085SBernd Walter /* Copy MAC address on stack to align. */ 25154d3d7085SBernd Walter bcopy(IF_LLADDR(ifp), eaddr.eaddr, ETHER_ADDR_LEN); 2516a94100faSBill Paul CSR_WRITE_1(sc, RL_EECMD, RL_EEMODE_WRITECFG); 2517ed510fb0SBill Paul CSR_WRITE_4(sc, RL_IDR0, 2518ed510fb0SBill Paul htole32(*(u_int32_t *)(&eaddr.eaddr[0]))); 2519ed510fb0SBill Paul CSR_WRITE_4(sc, RL_IDR4, 2520ed510fb0SBill Paul htole32(*(u_int32_t *)(&eaddr.eaddr[4]))); 2521a94100faSBill Paul CSR_WRITE_1(sc, RL_EECMD, RL_EEMODE_OFF); 2522a94100faSBill Paul 2523a94100faSBill Paul /* 2524a94100faSBill Paul * For C+ mode, initialize the RX descriptors and mbufs. 2525a94100faSBill Paul */ 2526a94100faSBill Paul re_rx_list_init(sc); 2527a94100faSBill Paul re_tx_list_init(sc); 2528a94100faSBill Paul 2529a94100faSBill Paul /* 2530d01fac16SPyun YongHyeon * Load the addresses of the RX and TX lists into the chip. 2531d01fac16SPyun YongHyeon */ 2532d01fac16SPyun YongHyeon 2533d01fac16SPyun YongHyeon CSR_WRITE_4(sc, RL_RXLIST_ADDR_HI, 2534d01fac16SPyun YongHyeon RL_ADDR_HI(sc->rl_ldata.rl_rx_list_addr)); 2535d01fac16SPyun YongHyeon CSR_WRITE_4(sc, RL_RXLIST_ADDR_LO, 2536d01fac16SPyun YongHyeon RL_ADDR_LO(sc->rl_ldata.rl_rx_list_addr)); 2537d01fac16SPyun YongHyeon 2538d01fac16SPyun YongHyeon CSR_WRITE_4(sc, RL_TXLIST_ADDR_HI, 2539d01fac16SPyun YongHyeon RL_ADDR_HI(sc->rl_ldata.rl_tx_list_addr)); 2540d01fac16SPyun YongHyeon CSR_WRITE_4(sc, RL_TXLIST_ADDR_LO, 2541d01fac16SPyun YongHyeon RL_ADDR_LO(sc->rl_ldata.rl_tx_list_addr)); 2542d01fac16SPyun YongHyeon 2543d01fac16SPyun YongHyeon /* 2544a94100faSBill Paul * Enable transmit and receive. 2545a94100faSBill Paul */ 2546a94100faSBill Paul CSR_WRITE_1(sc, RL_COMMAND, RL_CMD_TX_ENB|RL_CMD_RX_ENB); 2547a94100faSBill Paul 2548a94100faSBill Paul /* 2549a94100faSBill Paul * Set the initial TX and RX configuration. 2550a94100faSBill Paul */ 2551abc8ff44SBill Paul if (sc->rl_testmode) { 2552abc8ff44SBill Paul if (sc->rl_type == RL_8169) 2553abc8ff44SBill Paul CSR_WRITE_4(sc, RL_TXCFG, 2554abc8ff44SBill Paul RL_TXCFG_CONFIG|RL_LOOPTEST_ON); 2555a94100faSBill Paul else 2556abc8ff44SBill Paul CSR_WRITE_4(sc, RL_TXCFG, 2557abc8ff44SBill Paul RL_TXCFG_CONFIG|RL_LOOPTEST_ON_CPLUS); 2558abc8ff44SBill Paul } else 2559a94100faSBill Paul CSR_WRITE_4(sc, RL_TXCFG, RL_TXCFG_CONFIG); 2560d01fac16SPyun YongHyeon 2561d01fac16SPyun YongHyeon CSR_WRITE_1(sc, RL_EARLY_TX_THRESH, 16); 2562d01fac16SPyun YongHyeon 2563a94100faSBill Paul CSR_WRITE_4(sc, RL_RXCFG, RL_RXCFG_CONFIG); 2564a94100faSBill Paul 2565a94100faSBill Paul /* Set the individual bit to receive frames for this host only. */ 2566a94100faSBill Paul rxcfg = CSR_READ_4(sc, RL_RXCFG); 2567a94100faSBill Paul rxcfg |= RL_RXCFG_RX_INDIV; 2568a94100faSBill Paul 2569a94100faSBill Paul /* If we want promiscuous mode, set the allframes bit. */ 257061021536SJohn-Mark Gurney if (ifp->if_flags & IFF_PROMISC) 2571a94100faSBill Paul rxcfg |= RL_RXCFG_RX_ALLPHYS; 257261021536SJohn-Mark Gurney else 2573a94100faSBill Paul rxcfg &= ~RL_RXCFG_RX_ALLPHYS; 2574a94100faSBill Paul CSR_WRITE_4(sc, RL_RXCFG, rxcfg); 2575a94100faSBill Paul 2576a94100faSBill Paul /* 2577a94100faSBill Paul * Set capture broadcast bit to capture broadcast frames. 2578a94100faSBill Paul */ 257961021536SJohn-Mark Gurney if (ifp->if_flags & IFF_BROADCAST) 2580a94100faSBill Paul rxcfg |= RL_RXCFG_RX_BROAD; 258161021536SJohn-Mark Gurney else 2582a94100faSBill Paul rxcfg &= ~RL_RXCFG_RX_BROAD; 2583a94100faSBill Paul CSR_WRITE_4(sc, RL_RXCFG, rxcfg); 2584a94100faSBill Paul 2585a94100faSBill Paul /* 2586a94100faSBill Paul * Program the multicast filter, if necessary. 2587a94100faSBill Paul */ 2588a94100faSBill Paul re_setmulti(sc); 2589a94100faSBill Paul 2590a94100faSBill Paul #ifdef DEVICE_POLLING 2591a94100faSBill Paul /* 2592a94100faSBill Paul * Disable interrupts if we are polling. 2593a94100faSBill Paul */ 259440929967SGleb Smirnoff if (ifp->if_capenable & IFCAP_POLLING) 2595a94100faSBill Paul CSR_WRITE_2(sc, RL_IMR, 0); 2596a94100faSBill Paul else /* otherwise ... */ 259740929967SGleb Smirnoff #endif 2598ed510fb0SBill Paul 2599a94100faSBill Paul /* 2600a94100faSBill Paul * Enable interrupts. 2601a94100faSBill Paul */ 2602a94100faSBill Paul if (sc->rl_testmode) 2603a94100faSBill Paul CSR_WRITE_2(sc, RL_IMR, 0); 2604a94100faSBill Paul else 2605a94100faSBill Paul CSR_WRITE_2(sc, RL_IMR, RL_INTRS_CPLUS); 2606ed510fb0SBill Paul CSR_WRITE_2(sc, RL_ISR, RL_INTRS_CPLUS); 2607a94100faSBill Paul 2608a94100faSBill Paul /* Set initial TX threshold */ 2609a94100faSBill Paul sc->rl_txthresh = RL_TX_THRESH_INIT; 2610a94100faSBill Paul 2611a94100faSBill Paul /* Start RX/TX process. */ 2612a94100faSBill Paul CSR_WRITE_4(sc, RL_MISSEDPKT, 0); 2613a94100faSBill Paul #ifdef notdef 2614a94100faSBill Paul /* Enable receiver and transmitter. */ 2615a94100faSBill Paul CSR_WRITE_1(sc, RL_COMMAND, RL_CMD_TX_ENB|RL_CMD_RX_ENB); 2616a94100faSBill Paul #endif 2617a94100faSBill Paul 2618ed510fb0SBill Paul #ifdef RE_TX_MODERATION 2619a94100faSBill Paul /* 2620a94100faSBill Paul * Initialize the timer interrupt register so that 2621a94100faSBill Paul * a timer interrupt will be generated once the timer 2622a94100faSBill Paul * reaches a certain number of ticks. The timer is 2623a94100faSBill Paul * reloaded on each transmit. This gives us TX interrupt 2624a94100faSBill Paul * moderation, which dramatically improves TX frame rate. 2625a94100faSBill Paul */ 2626a94100faSBill Paul if (sc->rl_type == RL_8169) 2627a94100faSBill Paul CSR_WRITE_4(sc, RL_TIMERINT_8169, 0x800); 2628a94100faSBill Paul else 2629a94100faSBill Paul CSR_WRITE_4(sc, RL_TIMERINT, 0x400); 2630ed510fb0SBill Paul #endif 2631a94100faSBill Paul 2632a94100faSBill Paul /* 2633a94100faSBill Paul * For 8169 gigE NICs, set the max allowed RX packet 2634a94100faSBill Paul * size so we can receive jumbo frames. 2635a94100faSBill Paul */ 2636a94100faSBill Paul if (sc->rl_type == RL_8169) 2637a94100faSBill Paul CSR_WRITE_2(sc, RL_MAXRXPKTLEN, 16383); 2638a94100faSBill Paul 263997b9d4baSJohn-Mark Gurney if (sc->rl_testmode) 2640a94100faSBill Paul return; 2641a94100faSBill Paul 2642a94100faSBill Paul mii_mediachg(mii); 2643a94100faSBill Paul 264419ecd231SPyun YongHyeon CSR_WRITE_1(sc, RL_CFG1, CSR_READ_1(sc, RL_CFG1) | RL_CFG1_DRVLOAD); 2645a94100faSBill Paul 264613f4c340SRobert Watson ifp->if_drv_flags |= IFF_DRV_RUNNING; 264713f4c340SRobert Watson ifp->if_drv_flags &= ~IFF_DRV_OACTIVE; 2648a94100faSBill Paul 2649351a76f9SPyun YongHyeon sc->rl_flags &= ~RL_FLAG_LINK; 26501d545c7aSMarius Strobl sc->rl_watchdog_timer = 0; 2651d1754a9bSJohn Baldwin callout_reset(&sc->rl_stat_callout, hz, re_tick, sc); 2652a94100faSBill Paul } 2653a94100faSBill Paul 2654a94100faSBill Paul /* 2655a94100faSBill Paul * Set media options. 2656a94100faSBill Paul */ 2657a94100faSBill Paul static int 26587b5ffebfSPyun YongHyeon re_ifmedia_upd(struct ifnet *ifp) 2659a94100faSBill Paul { 2660a94100faSBill Paul struct rl_softc *sc; 2661a94100faSBill Paul struct mii_data *mii; 26626f0f9b12SPyun YongHyeon int error; 2663a94100faSBill Paul 2664a94100faSBill Paul sc = ifp->if_softc; 2665a94100faSBill Paul mii = device_get_softc(sc->rl_miibus); 2666d1754a9bSJohn Baldwin RL_LOCK(sc); 26676f0f9b12SPyun YongHyeon error = mii_mediachg(mii); 2668d1754a9bSJohn Baldwin RL_UNLOCK(sc); 2669a94100faSBill Paul 26706f0f9b12SPyun YongHyeon return (error); 2671a94100faSBill Paul } 2672a94100faSBill Paul 2673a94100faSBill Paul /* 2674a94100faSBill Paul * Report current media status. 2675a94100faSBill Paul */ 2676a94100faSBill Paul static void 26777b5ffebfSPyun YongHyeon re_ifmedia_sts(struct ifnet *ifp, struct ifmediareq *ifmr) 2678a94100faSBill Paul { 2679a94100faSBill Paul struct rl_softc *sc; 2680a94100faSBill Paul struct mii_data *mii; 2681a94100faSBill Paul 2682a94100faSBill Paul sc = ifp->if_softc; 2683a94100faSBill Paul mii = device_get_softc(sc->rl_miibus); 2684a94100faSBill Paul 2685d1754a9bSJohn Baldwin RL_LOCK(sc); 2686a94100faSBill Paul mii_pollstat(mii); 2687d1754a9bSJohn Baldwin RL_UNLOCK(sc); 2688a94100faSBill Paul ifmr->ifm_active = mii->mii_media_active; 2689a94100faSBill Paul ifmr->ifm_status = mii->mii_media_status; 2690a94100faSBill Paul } 2691a94100faSBill Paul 2692a94100faSBill Paul static int 26937b5ffebfSPyun YongHyeon re_ioctl(struct ifnet *ifp, u_long command, caddr_t data) 2694a94100faSBill Paul { 2695a94100faSBill Paul struct rl_softc *sc = ifp->if_softc; 2696a94100faSBill Paul struct ifreq *ifr = (struct ifreq *) data; 2697a94100faSBill Paul struct mii_data *mii; 269840929967SGleb Smirnoff int error = 0; 2699a94100faSBill Paul 2700a94100faSBill Paul switch (command) { 2701a94100faSBill Paul case SIOCSIFMTU: 2702c1d0b573SPyun YongHyeon if (ifr->ifr_mtu < ETHERMIN || ifr->ifr_mtu > RL_JUMBO_MTU) { 2703a94100faSBill Paul error = EINVAL; 2704c1d0b573SPyun YongHyeon break; 2705c1d0b573SPyun YongHyeon } 2706351a76f9SPyun YongHyeon if ((sc->rl_flags & RL_FLAG_NOJUMBO) != 0 && 2707c1d0b573SPyun YongHyeon ifr->ifr_mtu > RL_MAX_FRAMELEN) { 2708c1d0b573SPyun YongHyeon error = EINVAL; 2709c1d0b573SPyun YongHyeon break; 2710c1d0b573SPyun YongHyeon } 2711c1d0b573SPyun YongHyeon RL_LOCK(sc); 2712c1d0b573SPyun YongHyeon if (ifp->if_mtu != ifr->ifr_mtu) 2713a94100faSBill Paul ifp->if_mtu = ifr->ifr_mtu; 2714ae644087SPyun YongHyeon if (ifp->if_mtu > RL_TSO_MTU && 2715ae644087SPyun YongHyeon (ifp->if_capenable & IFCAP_TSO4) != 0) { 2716ae644087SPyun YongHyeon ifp->if_capenable &= ~IFCAP_TSO4; 2717ae644087SPyun YongHyeon ifp->if_hwassist &= ~CSUM_TSO; 2718ae644087SPyun YongHyeon } 2719d1754a9bSJohn Baldwin RL_UNLOCK(sc); 2720a94100faSBill Paul break; 2721a94100faSBill Paul case SIOCSIFFLAGS: 272297b9d4baSJohn-Mark Gurney RL_LOCK(sc); 2723eed497bbSPyun YongHyeon if ((ifp->if_flags & IFF_UP) != 0) { 2724eed497bbSPyun YongHyeon if ((ifp->if_drv_flags & IFF_DRV_RUNNING) != 0) { 2725eed497bbSPyun YongHyeon if (((ifp->if_flags ^ sc->rl_if_flags) 27263021aef8SPyun YongHyeon & (IFF_PROMISC | IFF_ALLMULTI)) != 0) 2727eed497bbSPyun YongHyeon re_setmulti(sc); 2728eed497bbSPyun YongHyeon } else 272997b9d4baSJohn-Mark Gurney re_init_locked(sc); 2730eed497bbSPyun YongHyeon } else { 2731eed497bbSPyun YongHyeon if ((ifp->if_drv_flags & IFF_DRV_RUNNING) != 0) 2732a94100faSBill Paul re_stop(sc); 2733eed497bbSPyun YongHyeon } 2734eed497bbSPyun YongHyeon sc->rl_if_flags = ifp->if_flags; 273597b9d4baSJohn-Mark Gurney RL_UNLOCK(sc); 2736a94100faSBill Paul break; 2737a94100faSBill Paul case SIOCADDMULTI: 2738a94100faSBill Paul case SIOCDELMULTI: 273997b9d4baSJohn-Mark Gurney RL_LOCK(sc); 2740a94100faSBill Paul re_setmulti(sc); 274197b9d4baSJohn-Mark Gurney RL_UNLOCK(sc); 2742a94100faSBill Paul break; 2743a94100faSBill Paul case SIOCGIFMEDIA: 2744a94100faSBill Paul case SIOCSIFMEDIA: 2745a94100faSBill Paul mii = device_get_softc(sc->rl_miibus); 2746a94100faSBill Paul error = ifmedia_ioctl(ifp, ifr, &mii->mii_media, command); 2747a94100faSBill Paul break; 2748a94100faSBill Paul case SIOCSIFCAP: 274940929967SGleb Smirnoff { 2750f051cb85SGleb Smirnoff int mask, reinit; 2751f051cb85SGleb Smirnoff 2752f051cb85SGleb Smirnoff mask = ifr->ifr_reqcap ^ ifp->if_capenable; 2753f051cb85SGleb Smirnoff reinit = 0; 275440929967SGleb Smirnoff #ifdef DEVICE_POLLING 275540929967SGleb Smirnoff if (mask & IFCAP_POLLING) { 275640929967SGleb Smirnoff if (ifr->ifr_reqcap & IFCAP_POLLING) { 275740929967SGleb Smirnoff error = ether_poll_register(re_poll, ifp); 275840929967SGleb Smirnoff if (error) 275940929967SGleb Smirnoff return(error); 2760d1754a9bSJohn Baldwin RL_LOCK(sc); 276140929967SGleb Smirnoff /* Disable interrupts */ 276240929967SGleb Smirnoff CSR_WRITE_2(sc, RL_IMR, 0x0000); 276340929967SGleb Smirnoff ifp->if_capenable |= IFCAP_POLLING; 276440929967SGleb Smirnoff RL_UNLOCK(sc); 276540929967SGleb Smirnoff } else { 276640929967SGleb Smirnoff error = ether_poll_deregister(ifp); 276740929967SGleb Smirnoff /* Enable interrupts. */ 276840929967SGleb Smirnoff RL_LOCK(sc); 276940929967SGleb Smirnoff CSR_WRITE_2(sc, RL_IMR, RL_INTRS_CPLUS); 277040929967SGleb Smirnoff ifp->if_capenable &= ~IFCAP_POLLING; 277140929967SGleb Smirnoff RL_UNLOCK(sc); 277240929967SGleb Smirnoff } 277340929967SGleb Smirnoff } 277440929967SGleb Smirnoff #endif /* DEVICE_POLLING */ 277540929967SGleb Smirnoff if (mask & IFCAP_HWCSUM) { 2776f051cb85SGleb Smirnoff ifp->if_capenable ^= IFCAP_HWCSUM; 2777a94100faSBill Paul if (ifp->if_capenable & IFCAP_TXCSUM) 2778dc74159dSPyun YongHyeon ifp->if_hwassist |= RE_CSUM_FEATURES; 2779a94100faSBill Paul else 2780b61178a9SPyun YongHyeon ifp->if_hwassist &= ~RE_CSUM_FEATURES; 2781f051cb85SGleb Smirnoff reinit = 1; 278240929967SGleb Smirnoff } 2783f051cb85SGleb Smirnoff if (mask & IFCAP_VLAN_HWTAGGING) { 2784f051cb85SGleb Smirnoff ifp->if_capenable ^= IFCAP_VLAN_HWTAGGING; 2785f051cb85SGleb Smirnoff reinit = 1; 2786f051cb85SGleb Smirnoff } 2787dc74159dSPyun YongHyeon if (mask & IFCAP_TSO4) { 2788dc74159dSPyun YongHyeon ifp->if_capenable ^= IFCAP_TSO4; 2789dc74159dSPyun YongHyeon if ((IFCAP_TSO4 & ifp->if_capenable) && 2790dc74159dSPyun YongHyeon (IFCAP_TSO4 & ifp->if_capabilities)) 2791dc74159dSPyun YongHyeon ifp->if_hwassist |= CSUM_TSO; 2792dc74159dSPyun YongHyeon else 2793dc74159dSPyun YongHyeon ifp->if_hwassist &= ~CSUM_TSO; 2794ae644087SPyun YongHyeon if (ifp->if_mtu > RL_TSO_MTU && 2795ae644087SPyun YongHyeon (ifp->if_capenable & IFCAP_TSO4) != 0) { 2796ae644087SPyun YongHyeon ifp->if_capenable &= ~IFCAP_TSO4; 2797ae644087SPyun YongHyeon ifp->if_hwassist &= ~CSUM_TSO; 2798ae644087SPyun YongHyeon } 2799dc74159dSPyun YongHyeon } 28007467bd53SPyun YongHyeon if ((mask & IFCAP_WOL) != 0 && 28017467bd53SPyun YongHyeon (ifp->if_capabilities & IFCAP_WOL) != 0) { 28027467bd53SPyun YongHyeon if ((mask & IFCAP_WOL_UCAST) != 0) 28037467bd53SPyun YongHyeon ifp->if_capenable ^= IFCAP_WOL_UCAST; 28047467bd53SPyun YongHyeon if ((mask & IFCAP_WOL_MCAST) != 0) 28057467bd53SPyun YongHyeon ifp->if_capenable ^= IFCAP_WOL_MCAST; 28067467bd53SPyun YongHyeon if ((mask & IFCAP_WOL_MAGIC) != 0) 28077467bd53SPyun YongHyeon ifp->if_capenable ^= IFCAP_WOL_MAGIC; 28087467bd53SPyun YongHyeon } 2809f051cb85SGleb Smirnoff if (reinit && ifp->if_drv_flags & IFF_DRV_RUNNING) 2810f051cb85SGleb Smirnoff re_init(sc); 2811960fd5b3SPyun YongHyeon VLAN_CAPABILITIES(ifp); 281240929967SGleb Smirnoff } 2813a94100faSBill Paul break; 2814a94100faSBill Paul default: 2815a94100faSBill Paul error = ether_ioctl(ifp, command, data); 2816a94100faSBill Paul break; 2817a94100faSBill Paul } 2818a94100faSBill Paul 2819a94100faSBill Paul return (error); 2820a94100faSBill Paul } 2821a94100faSBill Paul 2822a94100faSBill Paul static void 28237b5ffebfSPyun YongHyeon re_watchdog(struct rl_softc *sc) 28241d545c7aSMarius Strobl { 2825130b6dfbSPyun YongHyeon struct ifnet *ifp; 2826a94100faSBill Paul 28271d545c7aSMarius Strobl RL_LOCK_ASSERT(sc); 28281d545c7aSMarius Strobl 28291d545c7aSMarius Strobl if (sc->rl_watchdog_timer == 0 || --sc->rl_watchdog_timer != 0) 28301d545c7aSMarius Strobl return; 28311d545c7aSMarius Strobl 2832130b6dfbSPyun YongHyeon ifp = sc->rl_ifp; 2833a94100faSBill Paul re_txeof(sc); 2834130b6dfbSPyun YongHyeon if (sc->rl_ldata.rl_tx_free == sc->rl_ldata.rl_tx_desc_cnt) { 2835130b6dfbSPyun YongHyeon if_printf(ifp, "watchdog timeout (missed Tx interrupts) " 2836130b6dfbSPyun YongHyeon "-- recovering\n"); 2837130b6dfbSPyun YongHyeon if (!IFQ_DRV_IS_EMPTY(&ifp->if_snd)) 2838130b6dfbSPyun YongHyeon taskqueue_enqueue_fast(taskqueue_fast, &sc->rl_txtask); 2839130b6dfbSPyun YongHyeon return; 2840130b6dfbSPyun YongHyeon } 2841130b6dfbSPyun YongHyeon 2842130b6dfbSPyun YongHyeon if_printf(ifp, "watchdog timeout\n"); 2843130b6dfbSPyun YongHyeon ifp->if_oerrors++; 2844130b6dfbSPyun YongHyeon 2845a94100faSBill Paul re_rxeof(sc); 284697b9d4baSJohn-Mark Gurney re_init_locked(sc); 2847130b6dfbSPyun YongHyeon if (!IFQ_DRV_IS_EMPTY(&ifp->if_snd)) 2848130b6dfbSPyun YongHyeon taskqueue_enqueue_fast(taskqueue_fast, &sc->rl_txtask); 2849a94100faSBill Paul } 2850a94100faSBill Paul 2851a94100faSBill Paul /* 2852a94100faSBill Paul * Stop the adapter and free any mbufs allocated to the 2853a94100faSBill Paul * RX and TX lists. 2854a94100faSBill Paul */ 2855a94100faSBill Paul static void 28567b5ffebfSPyun YongHyeon re_stop(struct rl_softc *sc) 2857a94100faSBill Paul { 28580ce0868aSPyun YongHyeon int i; 2859a94100faSBill Paul struct ifnet *ifp; 2860d65abd66SPyun YongHyeon struct rl_txdesc *txd; 2861d65abd66SPyun YongHyeon struct rl_rxdesc *rxd; 2862a94100faSBill Paul 286397b9d4baSJohn-Mark Gurney RL_LOCK_ASSERT(sc); 286497b9d4baSJohn-Mark Gurney 2865fc74a9f9SBrooks Davis ifp = sc->rl_ifp; 2866a94100faSBill Paul 28671d545c7aSMarius Strobl sc->rl_watchdog_timer = 0; 2868d1754a9bSJohn Baldwin callout_stop(&sc->rl_stat_callout); 286913f4c340SRobert Watson ifp->if_drv_flags &= ~(IFF_DRV_RUNNING | IFF_DRV_OACTIVE); 2870a94100faSBill Paul 2871a94100faSBill Paul CSR_WRITE_1(sc, RL_COMMAND, 0x00); 2872a94100faSBill Paul CSR_WRITE_2(sc, RL_IMR, 0x0000); 2873ed510fb0SBill Paul CSR_WRITE_2(sc, RL_ISR, 0xFFFF); 2874a94100faSBill Paul 2875a94100faSBill Paul if (sc->rl_head != NULL) { 2876a94100faSBill Paul m_freem(sc->rl_head); 2877a94100faSBill Paul sc->rl_head = sc->rl_tail = NULL; 2878a94100faSBill Paul } 2879a94100faSBill Paul 2880a94100faSBill Paul /* Free the TX list buffers. */ 2881a94100faSBill Paul 2882d65abd66SPyun YongHyeon for (i = 0; i < sc->rl_ldata.rl_tx_desc_cnt; i++) { 2883d65abd66SPyun YongHyeon txd = &sc->rl_ldata.rl_tx_desc[i]; 2884d65abd66SPyun YongHyeon if (txd->tx_m != NULL) { 2885d65abd66SPyun YongHyeon bus_dmamap_sync(sc->rl_ldata.rl_tx_mtag, 2886d65abd66SPyun YongHyeon txd->tx_dmamap, BUS_DMASYNC_POSTWRITE); 2887d65abd66SPyun YongHyeon bus_dmamap_unload(sc->rl_ldata.rl_tx_mtag, 2888d65abd66SPyun YongHyeon txd->tx_dmamap); 2889d65abd66SPyun YongHyeon m_freem(txd->tx_m); 2890d65abd66SPyun YongHyeon txd->tx_m = NULL; 2891a94100faSBill Paul } 2892a94100faSBill Paul } 2893a94100faSBill Paul 2894a94100faSBill Paul /* Free the RX list buffers. */ 2895a94100faSBill Paul 2896d65abd66SPyun YongHyeon for (i = 0; i < sc->rl_ldata.rl_rx_desc_cnt; i++) { 2897d65abd66SPyun YongHyeon rxd = &sc->rl_ldata.rl_rx_desc[i]; 2898d65abd66SPyun YongHyeon if (rxd->rx_m != NULL) { 2899d65abd66SPyun YongHyeon bus_dmamap_sync(sc->rl_ldata.rl_tx_mtag, 2900d65abd66SPyun YongHyeon rxd->rx_dmamap, BUS_DMASYNC_POSTREAD); 2901d65abd66SPyun YongHyeon bus_dmamap_unload(sc->rl_ldata.rl_rx_mtag, 2902d65abd66SPyun YongHyeon rxd->rx_dmamap); 2903d65abd66SPyun YongHyeon m_freem(rxd->rx_m); 2904d65abd66SPyun YongHyeon rxd->rx_m = NULL; 2905a94100faSBill Paul } 2906a94100faSBill Paul } 2907a94100faSBill Paul } 2908a94100faSBill Paul 2909a94100faSBill Paul /* 2910a94100faSBill Paul * Device suspend routine. Stop the interface and save some PCI 2911a94100faSBill Paul * settings in case the BIOS doesn't restore them properly on 2912a94100faSBill Paul * resume. 2913a94100faSBill Paul */ 2914a94100faSBill Paul static int 29157b5ffebfSPyun YongHyeon re_suspend(device_t dev) 2916a94100faSBill Paul { 2917a94100faSBill Paul struct rl_softc *sc; 2918a94100faSBill Paul 2919a94100faSBill Paul sc = device_get_softc(dev); 2920a94100faSBill Paul 292197b9d4baSJohn-Mark Gurney RL_LOCK(sc); 2922a94100faSBill Paul re_stop(sc); 29237467bd53SPyun YongHyeon re_setwol(sc); 2924a94100faSBill Paul sc->suspended = 1; 292597b9d4baSJohn-Mark Gurney RL_UNLOCK(sc); 2926a94100faSBill Paul 2927a94100faSBill Paul return (0); 2928a94100faSBill Paul } 2929a94100faSBill Paul 2930a94100faSBill Paul /* 2931a94100faSBill Paul * Device resume routine. Restore some PCI settings in case the BIOS 2932a94100faSBill Paul * doesn't, re-enable busmastering, and restart the interface if 2933a94100faSBill Paul * appropriate. 2934a94100faSBill Paul */ 2935a94100faSBill Paul static int 29367b5ffebfSPyun YongHyeon re_resume(device_t dev) 2937a94100faSBill Paul { 2938a94100faSBill Paul struct rl_softc *sc; 2939a94100faSBill Paul struct ifnet *ifp; 2940a94100faSBill Paul 2941a94100faSBill Paul sc = device_get_softc(dev); 294297b9d4baSJohn-Mark Gurney 294397b9d4baSJohn-Mark Gurney RL_LOCK(sc); 294497b9d4baSJohn-Mark Gurney 2945fc74a9f9SBrooks Davis ifp = sc->rl_ifp; 2946a94100faSBill Paul 2947a94100faSBill Paul /* reinitialize interface if necessary */ 2948a94100faSBill Paul if (ifp->if_flags & IFF_UP) 294997b9d4baSJohn-Mark Gurney re_init_locked(sc); 2950a94100faSBill Paul 29517467bd53SPyun YongHyeon /* 29527467bd53SPyun YongHyeon * Clear WOL matching such that normal Rx filtering 29537467bd53SPyun YongHyeon * wouldn't interfere with WOL patterns. 29547467bd53SPyun YongHyeon */ 29557467bd53SPyun YongHyeon re_clrwol(sc); 2956a94100faSBill Paul sc->suspended = 0; 295797b9d4baSJohn-Mark Gurney RL_UNLOCK(sc); 2958a94100faSBill Paul 2959a94100faSBill Paul return (0); 2960a94100faSBill Paul } 2961a94100faSBill Paul 2962a94100faSBill Paul /* 2963a94100faSBill Paul * Stop all chip I/O so that the kernel's probe routines don't 2964a94100faSBill Paul * get confused by errant DMAs when rebooting. 2965a94100faSBill Paul */ 29666a087a87SPyun YongHyeon static int 29677b5ffebfSPyun YongHyeon re_shutdown(device_t dev) 2968a94100faSBill Paul { 2969a94100faSBill Paul struct rl_softc *sc; 2970a94100faSBill Paul 2971a94100faSBill Paul sc = device_get_softc(dev); 2972a94100faSBill Paul 297397b9d4baSJohn-Mark Gurney RL_LOCK(sc); 2974a94100faSBill Paul re_stop(sc); 2975536fde34SMaxim Sobolev /* 2976536fde34SMaxim Sobolev * Mark interface as down since otherwise we will panic if 2977536fde34SMaxim Sobolev * interrupt comes in later on, which can happen in some 297872293673SRuslan Ermilov * cases. 2979536fde34SMaxim Sobolev */ 2980536fde34SMaxim Sobolev sc->rl_ifp->if_flags &= ~IFF_UP; 29817467bd53SPyun YongHyeon re_setwol(sc); 298297b9d4baSJohn-Mark Gurney RL_UNLOCK(sc); 29836a087a87SPyun YongHyeon 29846a087a87SPyun YongHyeon return (0); 2985a94100faSBill Paul } 29867467bd53SPyun YongHyeon 29877467bd53SPyun YongHyeon static void 29887b5ffebfSPyun YongHyeon re_setwol(struct rl_softc *sc) 29897467bd53SPyun YongHyeon { 29907467bd53SPyun YongHyeon struct ifnet *ifp; 29917467bd53SPyun YongHyeon int pmc; 29927467bd53SPyun YongHyeon uint16_t pmstat; 29937467bd53SPyun YongHyeon uint8_t v; 29947467bd53SPyun YongHyeon 29957467bd53SPyun YongHyeon RL_LOCK_ASSERT(sc); 29967467bd53SPyun YongHyeon 29977467bd53SPyun YongHyeon if (pci_find_extcap(sc->rl_dev, PCIY_PMG, &pmc) != 0) 29987467bd53SPyun YongHyeon return; 29997467bd53SPyun YongHyeon 30007467bd53SPyun YongHyeon ifp = sc->rl_ifp; 30017467bd53SPyun YongHyeon /* Enable config register write. */ 30027467bd53SPyun YongHyeon CSR_WRITE_1(sc, RL_EECMD, RL_EE_MODE); 30037467bd53SPyun YongHyeon 30047467bd53SPyun YongHyeon /* Enable PME. */ 30057467bd53SPyun YongHyeon v = CSR_READ_1(sc, RL_CFG1); 30067467bd53SPyun YongHyeon v &= ~RL_CFG1_PME; 30077467bd53SPyun YongHyeon if ((ifp->if_capenable & IFCAP_WOL) != 0) 30087467bd53SPyun YongHyeon v |= RL_CFG1_PME; 30097467bd53SPyun YongHyeon CSR_WRITE_1(sc, RL_CFG1, v); 30107467bd53SPyun YongHyeon 30117467bd53SPyun YongHyeon v = CSR_READ_1(sc, RL_CFG3); 30127467bd53SPyun YongHyeon v &= ~(RL_CFG3_WOL_LINK | RL_CFG3_WOL_MAGIC); 30137467bd53SPyun YongHyeon if ((ifp->if_capenable & IFCAP_WOL_MAGIC) != 0) 30147467bd53SPyun YongHyeon v |= RL_CFG3_WOL_MAGIC; 30157467bd53SPyun YongHyeon CSR_WRITE_1(sc, RL_CFG3, v); 30167467bd53SPyun YongHyeon 30177467bd53SPyun YongHyeon /* Config register write done. */ 3018f98dd8cfSPyun YongHyeon CSR_WRITE_1(sc, RL_EECMD, RL_EEMODE_OFF); 30197467bd53SPyun YongHyeon 30207467bd53SPyun YongHyeon v = CSR_READ_1(sc, RL_CFG5); 30217467bd53SPyun YongHyeon v &= ~(RL_CFG5_WOL_BCAST | RL_CFG5_WOL_MCAST | RL_CFG5_WOL_UCAST); 30227467bd53SPyun YongHyeon v &= ~RL_CFG5_WOL_LANWAKE; 30237467bd53SPyun YongHyeon if ((ifp->if_capenable & IFCAP_WOL_UCAST) != 0) 30247467bd53SPyun YongHyeon v |= RL_CFG5_WOL_UCAST; 30257467bd53SPyun YongHyeon if ((ifp->if_capenable & IFCAP_WOL_MCAST) != 0) 30267467bd53SPyun YongHyeon v |= RL_CFG5_WOL_MCAST | RL_CFG5_WOL_BCAST; 30277467bd53SPyun YongHyeon if ((ifp->if_capenable & IFCAP_WOL) != 0) 30287467bd53SPyun YongHyeon v |= RL_CFG5_WOL_LANWAKE; 30297467bd53SPyun YongHyeon CSR_WRITE_1(sc, RL_CFG5, v); 30307467bd53SPyun YongHyeon 30317467bd53SPyun YongHyeon /* 30327467bd53SPyun YongHyeon * It seems that hardware resets its link speed to 100Mbps in 30337467bd53SPyun YongHyeon * power down mode so switching to 100Mbps in driver is not 30347467bd53SPyun YongHyeon * needed. 30357467bd53SPyun YongHyeon */ 30367467bd53SPyun YongHyeon 30377467bd53SPyun YongHyeon /* Request PME if WOL is requested. */ 30387467bd53SPyun YongHyeon pmstat = pci_read_config(sc->rl_dev, pmc + PCIR_POWER_STATUS, 2); 30397467bd53SPyun YongHyeon pmstat &= ~(PCIM_PSTAT_PME | PCIM_PSTAT_PMEENABLE); 30407467bd53SPyun YongHyeon if ((ifp->if_capenable & IFCAP_WOL) != 0) 30417467bd53SPyun YongHyeon pmstat |= PCIM_PSTAT_PME | PCIM_PSTAT_PMEENABLE; 30427467bd53SPyun YongHyeon pci_write_config(sc->rl_dev, pmc + PCIR_POWER_STATUS, pmstat, 2); 30437467bd53SPyun YongHyeon } 30447467bd53SPyun YongHyeon 30457467bd53SPyun YongHyeon static void 30467b5ffebfSPyun YongHyeon re_clrwol(struct rl_softc *sc) 30477467bd53SPyun YongHyeon { 30487467bd53SPyun YongHyeon int pmc; 30497467bd53SPyun YongHyeon uint8_t v; 30507467bd53SPyun YongHyeon 30517467bd53SPyun YongHyeon RL_LOCK_ASSERT(sc); 30527467bd53SPyun YongHyeon 30537467bd53SPyun YongHyeon if (pci_find_extcap(sc->rl_dev, PCIY_PMG, &pmc) != 0) 30547467bd53SPyun YongHyeon return; 30557467bd53SPyun YongHyeon 30567467bd53SPyun YongHyeon /* Enable config register write. */ 30577467bd53SPyun YongHyeon CSR_WRITE_1(sc, RL_EECMD, RL_EE_MODE); 30587467bd53SPyun YongHyeon 30597467bd53SPyun YongHyeon v = CSR_READ_1(sc, RL_CFG3); 30607467bd53SPyun YongHyeon v &= ~(RL_CFG3_WOL_LINK | RL_CFG3_WOL_MAGIC); 30617467bd53SPyun YongHyeon CSR_WRITE_1(sc, RL_CFG3, v); 30627467bd53SPyun YongHyeon 30637467bd53SPyun YongHyeon /* Config register write done. */ 3064f98dd8cfSPyun YongHyeon CSR_WRITE_1(sc, RL_EECMD, RL_EEMODE_OFF); 30657467bd53SPyun YongHyeon 30667467bd53SPyun YongHyeon v = CSR_READ_1(sc, RL_CFG5); 30677467bd53SPyun YongHyeon v &= ~(RL_CFG5_WOL_BCAST | RL_CFG5_WOL_MCAST | RL_CFG5_WOL_UCAST); 30687467bd53SPyun YongHyeon v &= ~RL_CFG5_WOL_LANWAKE; 30697467bd53SPyun YongHyeon CSR_WRITE_1(sc, RL_CFG5, v); 30707467bd53SPyun YongHyeon } 3071