1ce4946daSBill Paul /* 2ce4946daSBill Paul * Copyright (c) 2001 Wind River Systems 3ce4946daSBill Paul * Copyright (c) 1997, 1998, 1999, 2000, 2001 4ce4946daSBill Paul * Bill Paul <wpaul@bsdi.com>. All rights reserved. 5ce4946daSBill Paul * 6ce4946daSBill Paul * Redistribution and use in source and binary forms, with or without 7ce4946daSBill Paul * modification, are permitted provided that the following conditions 8ce4946daSBill Paul * are met: 9ce4946daSBill Paul * 1. Redistributions of source code must retain the above copyright 10ce4946daSBill Paul * notice, this list of conditions and the following disclaimer. 11ce4946daSBill Paul * 2. Redistributions in binary form must reproduce the above copyright 12ce4946daSBill Paul * notice, this list of conditions and the following disclaimer in the 13ce4946daSBill Paul * documentation and/or other materials provided with the distribution. 14ce4946daSBill Paul * 3. All advertising materials mentioning features or use of this software 15ce4946daSBill Paul * must display the following acknowledgement: 16ce4946daSBill Paul * This product includes software developed by Bill Paul. 17ce4946daSBill Paul * 4. Neither the name of the author nor the names of any co-contributors 18ce4946daSBill Paul * may be used to endorse or promote products derived from this software 19ce4946daSBill Paul * without specific prior written permission. 20ce4946daSBill Paul * 21ce4946daSBill Paul * THIS SOFTWARE IS PROVIDED BY Bill Paul AND CONTRIBUTORS ``AS IS'' AND 22ce4946daSBill Paul * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 23ce4946daSBill Paul * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 24ce4946daSBill Paul * ARE DISCLAIMED. IN NO EVENT SHALL Bill Paul OR THE VOICES IN HIS HEAD 25ce4946daSBill Paul * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 26ce4946daSBill Paul * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 27ce4946daSBill Paul * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 28ce4946daSBill Paul * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 29ce4946daSBill Paul * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 30ce4946daSBill Paul * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF 31ce4946daSBill Paul * THE POSSIBILITY OF SUCH DAMAGE. 32ce4946daSBill Paul * 33ce4946daSBill Paul * $FreeBSD$ 34ce4946daSBill Paul */ 35ce4946daSBill Paul 36ce4946daSBill Paul /* 37ce4946daSBill Paul * National Semiconductor DP83820/DP83821 gigabit ethernet driver 38ce4946daSBill Paul * for FreeBSD. Datasheets are available from: 39ce4946daSBill Paul * 40ce4946daSBill Paul * http://www.national.com/ds/DP/DP83820.pdf 41ce4946daSBill Paul * http://www.national.com/ds/DP/DP83821.pdf 42ce4946daSBill Paul * 43ce4946daSBill Paul * These chips are used on several low cost gigabit ethernet NICs 44ce4946daSBill Paul * sold by D-Link, Addtron, SMC and Asante. Both parts are 45ce4946daSBill Paul * virtually the same, except the 83820 is a 64-bit/32-bit part, 46ce4946daSBill Paul * while the 83821 is 32-bit only. 47ce4946daSBill Paul * 48ce4946daSBill Paul * Many cards also use National gigE transceivers, such as the 49ce4946daSBill Paul * DP83891, DP83861 and DP83862 gigPHYTER parts. The DP83861 datasheet 50ce4946daSBill Paul * contains a full register description that applies to all of these 51ce4946daSBill Paul * components: 52ce4946daSBill Paul * 53ce4946daSBill Paul * http://www.national.com/ds/DP/DP83861.pdf 54ce4946daSBill Paul * 55ce4946daSBill Paul * Written by Bill Paul <wpaul@bsdi.com> 56ce4946daSBill Paul * BSDi Open Source Solutions 57ce4946daSBill Paul */ 58ce4946daSBill Paul 59ce4946daSBill Paul /* 60ce4946daSBill Paul * The NatSemi DP83820 and 83821 controllers are enhanced versions 61ce4946daSBill Paul * of the NatSemi MacPHYTER 10/100 devices. They support 10, 100 62ce4946daSBill Paul * and 1000Mbps speeds with 1000baseX (ten bit interface), MII and GMII 63ce4946daSBill Paul * ports. Other features include 8K TX FIFO and 32K RX FIFO, TCP/IP 64ce4946daSBill Paul * hardware checksum offload (IPv4 only), VLAN tagging and filtering, 65ce4946daSBill Paul * priority TX and RX queues, a 2048 bit multicast hash filter, 4 RX pattern 66ce4946daSBill Paul * matching buffers, one perfect address filter buffer and interrupt 67ce4946daSBill Paul * moderation. The 83820 supports both 64-bit and 32-bit addressing 68ce4946daSBill Paul * and data transfers: the 64-bit support can be toggled on or off 69ce4946daSBill Paul * via software. This affects the size of certain fields in the DMA 70ce4946daSBill Paul * descriptors. 71ce4946daSBill Paul * 72cb2f755cSBill Paul * There are two bugs/misfeatures in the 83820/83821 that I have 73cb2f755cSBill Paul * discovered so far: 74cb2f755cSBill Paul * 75cb2f755cSBill Paul * - Receive buffers must be aligned on 64-bit boundaries, which means 76cb2f755cSBill Paul * you must resort to copying data in order to fix up the payload 77cb2f755cSBill Paul * alignment. 78cb2f755cSBill Paul * 79cb2f755cSBill Paul * - In order to transmit jumbo frames larger than 8170 bytes, you have 80cb2f755cSBill Paul * to turn off transmit checksum offloading, because the chip can't 81cb2f755cSBill Paul * compute the checksum on an outgoing frame unless it fits entirely 82cb2f755cSBill Paul * within the TX FIFO, which is only 8192 bytes in size. If you have 83cb2f755cSBill Paul * TX checksum offload enabled and you transmit attempt to transmit a 84cb2f755cSBill Paul * frame larger than 8170 bytes, the transmitter will wedge. 85cb2f755cSBill Paul * 86cb2f755cSBill Paul * To work around the latter problem, TX checksum offload is disabled 87cb2f755cSBill Paul * if the user selects an MTU larger than 8152 (8170 - 18). 88ce4946daSBill Paul */ 89ce4946daSBill Paul 90ce4946daSBill Paul #include <sys/param.h> 91ce4946daSBill Paul #include <sys/systm.h> 92ce4946daSBill Paul #include <sys/sockio.h> 93ce4946daSBill Paul #include <sys/mbuf.h> 94ce4946daSBill Paul #include <sys/malloc.h> 95ce4946daSBill Paul #include <sys/kernel.h> 96ce4946daSBill Paul #include <sys/socket.h> 97ce4946daSBill Paul 98ce4946daSBill Paul #include <net/if.h> 99ce4946daSBill Paul #include <net/if_arp.h> 100ce4946daSBill Paul #include <net/ethernet.h> 101ce4946daSBill Paul #include <net/if_dl.h> 102ce4946daSBill Paul #include <net/if_media.h> 103ce4946daSBill Paul #include <net/if_types.h> 104ce4946daSBill Paul #include <net/if_vlan_var.h> 105ce4946daSBill Paul 106ce4946daSBill Paul #include <net/bpf.h> 107ce4946daSBill Paul 108ce4946daSBill Paul #include <vm/vm.h> /* for vtophys */ 109ce4946daSBill Paul #include <vm/pmap.h> /* for vtophys */ 110ce4946daSBill Paul #include <machine/clock.h> /* for DELAY */ 111ce4946daSBill Paul #include <machine/bus_pio.h> 112ce4946daSBill Paul #include <machine/bus_memio.h> 113ce4946daSBill Paul #include <machine/bus.h> 114ce4946daSBill Paul #include <machine/resource.h> 115ce4946daSBill Paul #include <sys/bus.h> 116ce4946daSBill Paul #include <sys/rman.h> 117ce4946daSBill Paul 118ce4946daSBill Paul #include <dev/mii/mii.h> 119ce4946daSBill Paul #include <dev/mii/miivar.h> 120ce4946daSBill Paul 121ce4946daSBill Paul #include <pci/pcireg.h> 122ce4946daSBill Paul #include <pci/pcivar.h> 123ce4946daSBill Paul 124ce4946daSBill Paul #define NGE_USEIOSPACE 125ce4946daSBill Paul 1265da751e4SBill Paul #include <dev/nge/if_ngereg.h> 127ce4946daSBill Paul 128ce4946daSBill Paul MODULE_DEPEND(nge, miibus, 1, 1, 1); 129ce4946daSBill Paul 130ce4946daSBill Paul /* "controller miibus0" required. See GENERIC if you get errors here. */ 131ce4946daSBill Paul #include "miibus_if.h" 132ce4946daSBill Paul 133ce4946daSBill Paul #ifndef lint 134ce4946daSBill Paul static const char rcsid[] = 135ce4946daSBill Paul "$FreeBSD$"; 136ce4946daSBill Paul #endif 137ce4946daSBill Paul 138ce4946daSBill Paul #define NGE_CSUM_FEATURES (CSUM_IP | CSUM_TCP | CSUM_UDP) 139ce4946daSBill Paul 140ce4946daSBill Paul /* 141ce4946daSBill Paul * Various supported device vendors/types and their names. 142ce4946daSBill Paul */ 143ce4946daSBill Paul static struct nge_type nge_devs[] = { 144ce4946daSBill Paul { NGE_VENDORID, NGE_DEVICEID, 145ce4946daSBill Paul "National Semiconductor Gigabit Ethernet" }, 146ce4946daSBill Paul { 0, 0, NULL } 147ce4946daSBill Paul }; 148ce4946daSBill Paul 149e51a25f8SAlfred Perlstein static int nge_probe (device_t); 150e51a25f8SAlfred Perlstein static int nge_attach (device_t); 151e51a25f8SAlfred Perlstein static int nge_detach (device_t); 152ce4946daSBill Paul 153e51a25f8SAlfred Perlstein static int nge_alloc_jumbo_mem (struct nge_softc *); 154e51a25f8SAlfred Perlstein static void nge_free_jumbo_mem (struct nge_softc *); 155e51a25f8SAlfred Perlstein static void *nge_jalloc (struct nge_softc *); 156e51a25f8SAlfred Perlstein static void nge_jfree (caddr_t, void *); 157ce4946daSBill Paul 158e51a25f8SAlfred Perlstein static int nge_newbuf (struct nge_softc *, 159e51a25f8SAlfred Perlstein struct nge_desc *, struct mbuf *); 160e51a25f8SAlfred Perlstein static int nge_encap (struct nge_softc *, 161e51a25f8SAlfred Perlstein struct mbuf *, u_int32_t *); 162e51a25f8SAlfred Perlstein static void nge_rxeof (struct nge_softc *); 1633ffc8ab1SJulian Elischer #ifdef notdef 164e51a25f8SAlfred Perlstein static void nge_rxeoc (struct nge_softc *); 1653ffc8ab1SJulian Elischer #endif 166e51a25f8SAlfred Perlstein static void nge_txeof (struct nge_softc *); 167e51a25f8SAlfred Perlstein static void nge_intr (void *); 168e51a25f8SAlfred Perlstein static void nge_tick (void *); 169e51a25f8SAlfred Perlstein static void nge_start (struct ifnet *); 170e51a25f8SAlfred Perlstein static int nge_ioctl (struct ifnet *, u_long, caddr_t); 171e51a25f8SAlfred Perlstein static void nge_init (void *); 172e51a25f8SAlfred Perlstein static void nge_stop (struct nge_softc *); 173e51a25f8SAlfred Perlstein static void nge_watchdog (struct ifnet *); 174e51a25f8SAlfred Perlstein static void nge_shutdown (device_t); 175e51a25f8SAlfred Perlstein static int nge_ifmedia_upd (struct ifnet *); 176e51a25f8SAlfred Perlstein static void nge_ifmedia_sts (struct ifnet *, struct ifmediareq *); 177ce4946daSBill Paul 178e51a25f8SAlfred Perlstein static void nge_delay (struct nge_softc *); 179e51a25f8SAlfred Perlstein static void nge_eeprom_idle (struct nge_softc *); 180e51a25f8SAlfred Perlstein static void nge_eeprom_putbyte (struct nge_softc *, int); 181e51a25f8SAlfred Perlstein static void nge_eeprom_getword (struct nge_softc *, int, u_int16_t *); 182e51a25f8SAlfred Perlstein static void nge_read_eeprom (struct nge_softc *, caddr_t, int, int, int); 183ce4946daSBill Paul 184e51a25f8SAlfred Perlstein static void nge_mii_sync (struct nge_softc *); 185e51a25f8SAlfred Perlstein static void nge_mii_send (struct nge_softc *, u_int32_t, int); 186e51a25f8SAlfred Perlstein static int nge_mii_readreg (struct nge_softc *, struct nge_mii_frame *); 187e51a25f8SAlfred Perlstein static int nge_mii_writereg (struct nge_softc *, struct nge_mii_frame *); 188ce4946daSBill Paul 189e51a25f8SAlfred Perlstein static int nge_miibus_readreg (device_t, int, int); 190e51a25f8SAlfred Perlstein static int nge_miibus_writereg (device_t, int, int, int); 191e51a25f8SAlfred Perlstein static void nge_miibus_statchg (device_t); 192ce4946daSBill Paul 193e51a25f8SAlfred Perlstein static void nge_setmulti (struct nge_softc *); 194e51a25f8SAlfred Perlstein static u_int32_t nge_crc (struct nge_softc *, caddr_t); 195e51a25f8SAlfred Perlstein static void nge_reset (struct nge_softc *); 196e51a25f8SAlfred Perlstein static int nge_list_rx_init (struct nge_softc *); 197e51a25f8SAlfred Perlstein static int nge_list_tx_init (struct nge_softc *); 198ce4946daSBill Paul 199ce4946daSBill Paul #ifdef NGE_USEIOSPACE 200ce4946daSBill Paul #define NGE_RES SYS_RES_IOPORT 201ce4946daSBill Paul #define NGE_RID NGE_PCI_LOIO 202ce4946daSBill Paul #else 203ce4946daSBill Paul #define NGE_RES SYS_RES_MEMORY 204ce4946daSBill Paul #define NGE_RID NGE_PCI_LOMEM 205ce4946daSBill Paul #endif 206ce4946daSBill Paul 207ce4946daSBill Paul static device_method_t nge_methods[] = { 208ce4946daSBill Paul /* Device interface */ 209ce4946daSBill Paul DEVMETHOD(device_probe, nge_probe), 210ce4946daSBill Paul DEVMETHOD(device_attach, nge_attach), 211ce4946daSBill Paul DEVMETHOD(device_detach, nge_detach), 212ce4946daSBill Paul DEVMETHOD(device_shutdown, nge_shutdown), 213ce4946daSBill Paul 214ce4946daSBill Paul /* bus interface */ 215ce4946daSBill Paul DEVMETHOD(bus_print_child, bus_generic_print_child), 216ce4946daSBill Paul DEVMETHOD(bus_driver_added, bus_generic_driver_added), 217ce4946daSBill Paul 218ce4946daSBill Paul /* MII interface */ 219ce4946daSBill Paul DEVMETHOD(miibus_readreg, nge_miibus_readreg), 220ce4946daSBill Paul DEVMETHOD(miibus_writereg, nge_miibus_writereg), 221ce4946daSBill Paul DEVMETHOD(miibus_statchg, nge_miibus_statchg), 222ce4946daSBill Paul 223ce4946daSBill Paul { 0, 0 } 224ce4946daSBill Paul }; 225ce4946daSBill Paul 226ce4946daSBill Paul static driver_t nge_driver = { 227ce4946daSBill Paul "nge", 228ce4946daSBill Paul nge_methods, 229ce4946daSBill Paul sizeof(struct nge_softc) 230ce4946daSBill Paul }; 231ce4946daSBill Paul 232ce4946daSBill Paul static devclass_t nge_devclass; 233ce4946daSBill Paul 234ce4946daSBill Paul DRIVER_MODULE(if_nge, pci, nge_driver, nge_devclass, 0, 0); 235ce4946daSBill Paul DRIVER_MODULE(miibus, nge, miibus_driver, miibus_devclass, 0, 0); 236ce4946daSBill Paul 237ce4946daSBill Paul #define NGE_SETBIT(sc, reg, x) \ 238ce4946daSBill Paul CSR_WRITE_4(sc, reg, \ 239ce4946daSBill Paul CSR_READ_4(sc, reg) | (x)) 240ce4946daSBill Paul 241ce4946daSBill Paul #define NGE_CLRBIT(sc, reg, x) \ 242ce4946daSBill Paul CSR_WRITE_4(sc, reg, \ 243ce4946daSBill Paul CSR_READ_4(sc, reg) & ~(x)) 244ce4946daSBill Paul 245ce4946daSBill Paul #define SIO_SET(x) \ 246ce4946daSBill Paul CSR_WRITE_4(sc, NGE_MEAR, CSR_READ_4(sc, NGE_MEAR) | x) 247ce4946daSBill Paul 248ce4946daSBill Paul #define SIO_CLR(x) \ 249ce4946daSBill Paul CSR_WRITE_4(sc, NGE_MEAR, CSR_READ_4(sc, NGE_MEAR) & ~x) 250ce4946daSBill Paul 251ce4946daSBill Paul static void nge_delay(sc) 252ce4946daSBill Paul struct nge_softc *sc; 253ce4946daSBill Paul { 254ce4946daSBill Paul int idx; 255ce4946daSBill Paul 256ce4946daSBill Paul for (idx = (300 / 33) + 1; idx > 0; idx--) 257ce4946daSBill Paul CSR_READ_4(sc, NGE_CSR); 258ce4946daSBill Paul 259ce4946daSBill Paul return; 260ce4946daSBill Paul } 261ce4946daSBill Paul 262ce4946daSBill Paul static void nge_eeprom_idle(sc) 263ce4946daSBill Paul struct nge_softc *sc; 264ce4946daSBill Paul { 265ce4946daSBill Paul register int i; 266ce4946daSBill Paul 267ce4946daSBill Paul SIO_SET(NGE_MEAR_EE_CSEL); 268ce4946daSBill Paul nge_delay(sc); 269ce4946daSBill Paul SIO_SET(NGE_MEAR_EE_CLK); 270ce4946daSBill Paul nge_delay(sc); 271ce4946daSBill Paul 272ce4946daSBill Paul for (i = 0; i < 25; i++) { 273ce4946daSBill Paul SIO_CLR(NGE_MEAR_EE_CLK); 274ce4946daSBill Paul nge_delay(sc); 275ce4946daSBill Paul SIO_SET(NGE_MEAR_EE_CLK); 276ce4946daSBill Paul nge_delay(sc); 277ce4946daSBill Paul } 278ce4946daSBill Paul 279ce4946daSBill Paul SIO_CLR(NGE_MEAR_EE_CLK); 280ce4946daSBill Paul nge_delay(sc); 281ce4946daSBill Paul SIO_CLR(NGE_MEAR_EE_CSEL); 282ce4946daSBill Paul nge_delay(sc); 283ce4946daSBill Paul CSR_WRITE_4(sc, NGE_MEAR, 0x00000000); 284ce4946daSBill Paul 285ce4946daSBill Paul return; 286ce4946daSBill Paul } 287ce4946daSBill Paul 288ce4946daSBill Paul /* 289ce4946daSBill Paul * Send a read command and address to the EEPROM, check for ACK. 290ce4946daSBill Paul */ 291ce4946daSBill Paul static void nge_eeprom_putbyte(sc, addr) 292ce4946daSBill Paul struct nge_softc *sc; 293ce4946daSBill Paul int addr; 294ce4946daSBill Paul { 295ce4946daSBill Paul register int d, i; 296ce4946daSBill Paul 297ce4946daSBill Paul d = addr | NGE_EECMD_READ; 298ce4946daSBill Paul 299ce4946daSBill Paul /* 300ce4946daSBill Paul * Feed in each bit and stobe the clock. 301ce4946daSBill Paul */ 302ce4946daSBill Paul for (i = 0x400; i; i >>= 1) { 303ce4946daSBill Paul if (d & i) { 304ce4946daSBill Paul SIO_SET(NGE_MEAR_EE_DIN); 305ce4946daSBill Paul } else { 306ce4946daSBill Paul SIO_CLR(NGE_MEAR_EE_DIN); 307ce4946daSBill Paul } 308ce4946daSBill Paul nge_delay(sc); 309ce4946daSBill Paul SIO_SET(NGE_MEAR_EE_CLK); 310ce4946daSBill Paul nge_delay(sc); 311ce4946daSBill Paul SIO_CLR(NGE_MEAR_EE_CLK); 312ce4946daSBill Paul nge_delay(sc); 313ce4946daSBill Paul } 314ce4946daSBill Paul 315ce4946daSBill Paul return; 316ce4946daSBill Paul } 317ce4946daSBill Paul 318ce4946daSBill Paul /* 319ce4946daSBill Paul * Read a word of data stored in the EEPROM at address 'addr.' 320ce4946daSBill Paul */ 321ce4946daSBill Paul static void nge_eeprom_getword(sc, addr, dest) 322ce4946daSBill Paul struct nge_softc *sc; 323ce4946daSBill Paul int addr; 324ce4946daSBill Paul u_int16_t *dest; 325ce4946daSBill Paul { 326ce4946daSBill Paul register int i; 327ce4946daSBill Paul u_int16_t word = 0; 328ce4946daSBill Paul 329ce4946daSBill Paul /* Force EEPROM to idle state. */ 330ce4946daSBill Paul nge_eeprom_idle(sc); 331ce4946daSBill Paul 332ce4946daSBill Paul /* Enter EEPROM access mode. */ 333ce4946daSBill Paul nge_delay(sc); 334ce4946daSBill Paul SIO_CLR(NGE_MEAR_EE_CLK); 335ce4946daSBill Paul nge_delay(sc); 336ce4946daSBill Paul SIO_SET(NGE_MEAR_EE_CSEL); 337ce4946daSBill Paul nge_delay(sc); 338ce4946daSBill Paul 339ce4946daSBill Paul /* 340ce4946daSBill Paul * Send address of word we want to read. 341ce4946daSBill Paul */ 342ce4946daSBill Paul nge_eeprom_putbyte(sc, addr); 343ce4946daSBill Paul 344ce4946daSBill Paul /* 345ce4946daSBill Paul * Start reading bits from EEPROM. 346ce4946daSBill Paul */ 347ce4946daSBill Paul for (i = 0x8000; i; i >>= 1) { 348ce4946daSBill Paul SIO_SET(NGE_MEAR_EE_CLK); 349ce4946daSBill Paul nge_delay(sc); 350ce4946daSBill Paul if (CSR_READ_4(sc, NGE_MEAR) & NGE_MEAR_EE_DOUT) 351ce4946daSBill Paul word |= i; 352ce4946daSBill Paul nge_delay(sc); 353ce4946daSBill Paul SIO_CLR(NGE_MEAR_EE_CLK); 354ce4946daSBill Paul nge_delay(sc); 355ce4946daSBill Paul } 356ce4946daSBill Paul 357ce4946daSBill Paul /* Turn off EEPROM access mode. */ 358ce4946daSBill Paul nge_eeprom_idle(sc); 359ce4946daSBill Paul 360ce4946daSBill Paul *dest = word; 361ce4946daSBill Paul 362ce4946daSBill Paul return; 363ce4946daSBill Paul } 364ce4946daSBill Paul 365ce4946daSBill Paul /* 366ce4946daSBill Paul * Read a sequence of words from the EEPROM. 367ce4946daSBill Paul */ 368ce4946daSBill Paul static void nge_read_eeprom(sc, dest, off, cnt, swap) 369ce4946daSBill Paul struct nge_softc *sc; 370ce4946daSBill Paul caddr_t dest; 371ce4946daSBill Paul int off; 372ce4946daSBill Paul int cnt; 373ce4946daSBill Paul int swap; 374ce4946daSBill Paul { 375ce4946daSBill Paul int i; 376ce4946daSBill Paul u_int16_t word = 0, *ptr; 377ce4946daSBill Paul 378ce4946daSBill Paul for (i = 0; i < cnt; i++) { 379ce4946daSBill Paul nge_eeprom_getword(sc, off + i, &word); 380ce4946daSBill Paul ptr = (u_int16_t *)(dest + (i * 2)); 381ce4946daSBill Paul if (swap) 382ce4946daSBill Paul *ptr = ntohs(word); 383ce4946daSBill Paul else 384ce4946daSBill Paul *ptr = word; 385ce4946daSBill Paul } 386ce4946daSBill Paul 387ce4946daSBill Paul return; 388ce4946daSBill Paul } 389ce4946daSBill Paul 390ce4946daSBill Paul /* 391ce4946daSBill Paul * Sync the PHYs by setting data bit and strobing the clock 32 times. 392ce4946daSBill Paul */ 393ce4946daSBill Paul static void nge_mii_sync(sc) 394ce4946daSBill Paul struct nge_softc *sc; 395ce4946daSBill Paul { 396ce4946daSBill Paul register int i; 397ce4946daSBill Paul 398ce4946daSBill Paul SIO_SET(NGE_MEAR_MII_DIR|NGE_MEAR_MII_DATA); 399ce4946daSBill Paul 400ce4946daSBill Paul for (i = 0; i < 32; i++) { 401ce4946daSBill Paul SIO_SET(NGE_MEAR_MII_CLK); 402ce4946daSBill Paul DELAY(1); 403ce4946daSBill Paul SIO_CLR(NGE_MEAR_MII_CLK); 404ce4946daSBill Paul DELAY(1); 405ce4946daSBill Paul } 406ce4946daSBill Paul 407ce4946daSBill Paul return; 408ce4946daSBill Paul } 409ce4946daSBill Paul 410ce4946daSBill Paul /* 411ce4946daSBill Paul * Clock a series of bits through the MII. 412ce4946daSBill Paul */ 413ce4946daSBill Paul static void nge_mii_send(sc, bits, cnt) 414ce4946daSBill Paul struct nge_softc *sc; 415ce4946daSBill Paul u_int32_t bits; 416ce4946daSBill Paul int cnt; 417ce4946daSBill Paul { 418ce4946daSBill Paul int i; 419ce4946daSBill Paul 420ce4946daSBill Paul SIO_CLR(NGE_MEAR_MII_CLK); 421ce4946daSBill Paul 422ce4946daSBill Paul for (i = (0x1 << (cnt - 1)); i; i >>= 1) { 423ce4946daSBill Paul if (bits & i) { 424ce4946daSBill Paul SIO_SET(NGE_MEAR_MII_DATA); 425ce4946daSBill Paul } else { 426ce4946daSBill Paul SIO_CLR(NGE_MEAR_MII_DATA); 427ce4946daSBill Paul } 428ce4946daSBill Paul DELAY(1); 429ce4946daSBill Paul SIO_CLR(NGE_MEAR_MII_CLK); 430ce4946daSBill Paul DELAY(1); 431ce4946daSBill Paul SIO_SET(NGE_MEAR_MII_CLK); 432ce4946daSBill Paul } 433ce4946daSBill Paul } 434ce4946daSBill Paul 435ce4946daSBill Paul /* 436ce4946daSBill Paul * Read an PHY register through the MII. 437ce4946daSBill Paul */ 438ce4946daSBill Paul static int nge_mii_readreg(sc, frame) 439ce4946daSBill Paul struct nge_softc *sc; 440ce4946daSBill Paul struct nge_mii_frame *frame; 441ce4946daSBill Paul 442ce4946daSBill Paul { 443ce4946daSBill Paul int i, ack, s; 444ce4946daSBill Paul 445ce4946daSBill Paul s = splimp(); 446ce4946daSBill Paul 447ce4946daSBill Paul /* 448ce4946daSBill Paul * Set up frame for RX. 449ce4946daSBill Paul */ 450ce4946daSBill Paul frame->mii_stdelim = NGE_MII_STARTDELIM; 451ce4946daSBill Paul frame->mii_opcode = NGE_MII_READOP; 452ce4946daSBill Paul frame->mii_turnaround = 0; 453ce4946daSBill Paul frame->mii_data = 0; 454ce4946daSBill Paul 455ce4946daSBill Paul CSR_WRITE_4(sc, NGE_MEAR, 0); 456ce4946daSBill Paul 457ce4946daSBill Paul /* 458ce4946daSBill Paul * Turn on data xmit. 459ce4946daSBill Paul */ 460ce4946daSBill Paul SIO_SET(NGE_MEAR_MII_DIR); 461ce4946daSBill Paul 462ce4946daSBill Paul nge_mii_sync(sc); 463ce4946daSBill Paul 464ce4946daSBill Paul /* 465ce4946daSBill Paul * Send command/address info. 466ce4946daSBill Paul */ 467ce4946daSBill Paul nge_mii_send(sc, frame->mii_stdelim, 2); 468ce4946daSBill Paul nge_mii_send(sc, frame->mii_opcode, 2); 469ce4946daSBill Paul nge_mii_send(sc, frame->mii_phyaddr, 5); 470ce4946daSBill Paul nge_mii_send(sc, frame->mii_regaddr, 5); 471ce4946daSBill Paul 472ce4946daSBill Paul /* Idle bit */ 473ce4946daSBill Paul SIO_CLR((NGE_MEAR_MII_CLK|NGE_MEAR_MII_DATA)); 474ce4946daSBill Paul DELAY(1); 475ce4946daSBill Paul SIO_SET(NGE_MEAR_MII_CLK); 476ce4946daSBill Paul DELAY(1); 477ce4946daSBill Paul 478ce4946daSBill Paul /* Turn off xmit. */ 479ce4946daSBill Paul SIO_CLR(NGE_MEAR_MII_DIR); 480ce4946daSBill Paul /* Check for ack */ 481ce4946daSBill Paul SIO_CLR(NGE_MEAR_MII_CLK); 482ce4946daSBill Paul DELAY(1); 483ce4946daSBill Paul SIO_SET(NGE_MEAR_MII_CLK); 484ce4946daSBill Paul DELAY(1); 485ce4946daSBill Paul ack = CSR_READ_4(sc, NGE_MEAR) & NGE_MEAR_MII_DATA; 486ce4946daSBill Paul 487ce4946daSBill Paul /* 488ce4946daSBill Paul * Now try reading data bits. If the ack failed, we still 489ce4946daSBill Paul * need to clock through 16 cycles to keep the PHY(s) in sync. 490ce4946daSBill Paul */ 491ce4946daSBill Paul if (ack) { 492ce4946daSBill Paul for(i = 0; i < 16; i++) { 493ce4946daSBill Paul SIO_CLR(NGE_MEAR_MII_CLK); 494ce4946daSBill Paul DELAY(1); 495ce4946daSBill Paul SIO_SET(NGE_MEAR_MII_CLK); 496ce4946daSBill Paul DELAY(1); 497ce4946daSBill Paul } 498ce4946daSBill Paul goto fail; 499ce4946daSBill Paul } 500ce4946daSBill Paul 501ce4946daSBill Paul for (i = 0x8000; i; i >>= 1) { 502ce4946daSBill Paul SIO_CLR(NGE_MEAR_MII_CLK); 503ce4946daSBill Paul DELAY(1); 504ce4946daSBill Paul if (!ack) { 505ce4946daSBill Paul if (CSR_READ_4(sc, NGE_MEAR) & NGE_MEAR_MII_DATA) 506ce4946daSBill Paul frame->mii_data |= i; 507ce4946daSBill Paul DELAY(1); 508ce4946daSBill Paul } 509ce4946daSBill Paul SIO_SET(NGE_MEAR_MII_CLK); 510ce4946daSBill Paul DELAY(1); 511ce4946daSBill Paul } 512ce4946daSBill Paul 513ce4946daSBill Paul fail: 514ce4946daSBill Paul 515ce4946daSBill Paul SIO_CLR(NGE_MEAR_MII_CLK); 516ce4946daSBill Paul DELAY(1); 517ce4946daSBill Paul SIO_SET(NGE_MEAR_MII_CLK); 518ce4946daSBill Paul DELAY(1); 519ce4946daSBill Paul 520ce4946daSBill Paul splx(s); 521ce4946daSBill Paul 522ce4946daSBill Paul if (ack) 523ce4946daSBill Paul return(1); 524ce4946daSBill Paul return(0); 525ce4946daSBill Paul } 526ce4946daSBill Paul 527ce4946daSBill Paul /* 528ce4946daSBill Paul * Write to a PHY register through the MII. 529ce4946daSBill Paul */ 530ce4946daSBill Paul static int nge_mii_writereg(sc, frame) 531ce4946daSBill Paul struct nge_softc *sc; 532ce4946daSBill Paul struct nge_mii_frame *frame; 533ce4946daSBill Paul 534ce4946daSBill Paul { 535ce4946daSBill Paul int s; 536ce4946daSBill Paul 537ce4946daSBill Paul s = splimp(); 538ce4946daSBill Paul /* 539ce4946daSBill Paul * Set up frame for TX. 540ce4946daSBill Paul */ 541ce4946daSBill Paul 542ce4946daSBill Paul frame->mii_stdelim = NGE_MII_STARTDELIM; 543ce4946daSBill Paul frame->mii_opcode = NGE_MII_WRITEOP; 544ce4946daSBill Paul frame->mii_turnaround = NGE_MII_TURNAROUND; 545ce4946daSBill Paul 546ce4946daSBill Paul /* 547ce4946daSBill Paul * Turn on data output. 548ce4946daSBill Paul */ 549ce4946daSBill Paul SIO_SET(NGE_MEAR_MII_DIR); 550ce4946daSBill Paul 551ce4946daSBill Paul nge_mii_sync(sc); 552ce4946daSBill Paul 553ce4946daSBill Paul nge_mii_send(sc, frame->mii_stdelim, 2); 554ce4946daSBill Paul nge_mii_send(sc, frame->mii_opcode, 2); 555ce4946daSBill Paul nge_mii_send(sc, frame->mii_phyaddr, 5); 556ce4946daSBill Paul nge_mii_send(sc, frame->mii_regaddr, 5); 557ce4946daSBill Paul nge_mii_send(sc, frame->mii_turnaround, 2); 558ce4946daSBill Paul nge_mii_send(sc, frame->mii_data, 16); 559ce4946daSBill Paul 560ce4946daSBill Paul /* Idle bit. */ 561ce4946daSBill Paul SIO_SET(NGE_MEAR_MII_CLK); 562ce4946daSBill Paul DELAY(1); 563ce4946daSBill Paul SIO_CLR(NGE_MEAR_MII_CLK); 564ce4946daSBill Paul DELAY(1); 565ce4946daSBill Paul 566ce4946daSBill Paul /* 567ce4946daSBill Paul * Turn off xmit. 568ce4946daSBill Paul */ 569ce4946daSBill Paul SIO_CLR(NGE_MEAR_MII_DIR); 570ce4946daSBill Paul 571ce4946daSBill Paul splx(s); 572ce4946daSBill Paul 573ce4946daSBill Paul return(0); 574ce4946daSBill Paul } 575ce4946daSBill Paul 576ce4946daSBill Paul static int nge_miibus_readreg(dev, phy, reg) 577ce4946daSBill Paul device_t dev; 578ce4946daSBill Paul int phy, reg; 579ce4946daSBill Paul { 580ce4946daSBill Paul struct nge_softc *sc; 581ce4946daSBill Paul struct nge_mii_frame frame; 582ce4946daSBill Paul 583ce4946daSBill Paul sc = device_get_softc(dev); 584ce4946daSBill Paul 585ce4946daSBill Paul bzero((char *)&frame, sizeof(frame)); 586ce4946daSBill Paul 587ce4946daSBill Paul frame.mii_phyaddr = phy; 588ce4946daSBill Paul frame.mii_regaddr = reg; 589ce4946daSBill Paul nge_mii_readreg(sc, &frame); 590ce4946daSBill Paul 591ce4946daSBill Paul return(frame.mii_data); 592ce4946daSBill Paul } 593ce4946daSBill Paul 594ce4946daSBill Paul static int nge_miibus_writereg(dev, phy, reg, data) 595ce4946daSBill Paul device_t dev; 596ce4946daSBill Paul int phy, reg, data; 597ce4946daSBill Paul { 598ce4946daSBill Paul struct nge_softc *sc; 599ce4946daSBill Paul struct nge_mii_frame frame; 600ce4946daSBill Paul 601ce4946daSBill Paul sc = device_get_softc(dev); 602ce4946daSBill Paul 603ce4946daSBill Paul bzero((char *)&frame, sizeof(frame)); 604ce4946daSBill Paul 605ce4946daSBill Paul frame.mii_phyaddr = phy; 606ce4946daSBill Paul frame.mii_regaddr = reg; 607ce4946daSBill Paul frame.mii_data = data; 608ce4946daSBill Paul nge_mii_writereg(sc, &frame); 609ce4946daSBill Paul 610ce4946daSBill Paul return(0); 611ce4946daSBill Paul } 612ce4946daSBill Paul 613ce4946daSBill Paul static void nge_miibus_statchg(dev) 614ce4946daSBill Paul device_t dev; 615ce4946daSBill Paul { 616ce4946daSBill Paul struct nge_softc *sc; 617ce4946daSBill Paul struct mii_data *mii; 618ce4946daSBill Paul 619ce4946daSBill Paul sc = device_get_softc(dev); 620ce4946daSBill Paul mii = device_get_softc(sc->nge_miibus); 621ce4946daSBill Paul 622ce4946daSBill Paul if ((mii->mii_media_active & IFM_GMASK) == IFM_FDX) { 623ce4946daSBill Paul NGE_SETBIT(sc, NGE_TX_CFG, 624ce4946daSBill Paul (NGE_TXCFG_IGN_HBEAT|NGE_TXCFG_IGN_CARR)); 625ce4946daSBill Paul NGE_SETBIT(sc, NGE_RX_CFG, NGE_RXCFG_RX_FDX); 626ce4946daSBill Paul } else { 627ce4946daSBill Paul NGE_CLRBIT(sc, NGE_TX_CFG, 628ce4946daSBill Paul (NGE_TXCFG_IGN_HBEAT|NGE_TXCFG_IGN_CARR)); 629ce4946daSBill Paul NGE_CLRBIT(sc, NGE_RX_CFG, NGE_RXCFG_RX_FDX); 630ce4946daSBill Paul } 631ce4946daSBill Paul 6322ce0498bSBill Paul /* If we have a 1000Mbps link, set the mode_1000 bit. */ 6332ce0498bSBill Paul if (IFM_SUBTYPE(mii->mii_media_active) == IFM_1000_TX || 6342ce0498bSBill Paul IFM_SUBTYPE(mii->mii_media_active) == IFM_1000_SX) { 6352ce0498bSBill Paul NGE_SETBIT(sc, NGE_CFG, NGE_CFG_MODE_1000); 6362ce0498bSBill Paul } else { 6372ce0498bSBill Paul NGE_CLRBIT(sc, NGE_CFG, NGE_CFG_MODE_1000); 6382ce0498bSBill Paul } 6392ce0498bSBill Paul 640ce4946daSBill Paul return; 641ce4946daSBill Paul } 642ce4946daSBill Paul 643ce4946daSBill Paul static u_int32_t nge_crc(sc, addr) 644ce4946daSBill Paul struct nge_softc *sc; 645ce4946daSBill Paul caddr_t addr; 646ce4946daSBill Paul { 647ce4946daSBill Paul u_int32_t crc, carry; 648ce4946daSBill Paul int i, j; 649ce4946daSBill Paul u_int8_t c; 650ce4946daSBill Paul 651ce4946daSBill Paul /* Compute CRC for the address value. */ 652ce4946daSBill Paul crc = 0xFFFFFFFF; /* initial value */ 653ce4946daSBill Paul 654ce4946daSBill Paul for (i = 0; i < 6; i++) { 655ce4946daSBill Paul c = *(addr + i); 656ce4946daSBill Paul for (j = 0; j < 8; j++) { 657ce4946daSBill Paul carry = ((crc & 0x80000000) ? 1 : 0) ^ (c & 0x01); 658ce4946daSBill Paul crc <<= 1; 659ce4946daSBill Paul c >>= 1; 660ce4946daSBill Paul if (carry) 661ce4946daSBill Paul crc = (crc ^ 0x04c11db6) | carry; 662ce4946daSBill Paul } 663ce4946daSBill Paul } 664ce4946daSBill Paul 665ce4946daSBill Paul /* 666ce4946daSBill Paul * return the filter bit position 667ce4946daSBill Paul */ 668ce4946daSBill Paul 669ce4946daSBill Paul return((crc >> 21) & 0x00000FFF); 670ce4946daSBill Paul } 671ce4946daSBill Paul 672ce4946daSBill Paul static void nge_setmulti(sc) 673ce4946daSBill Paul struct nge_softc *sc; 674ce4946daSBill Paul { 675ce4946daSBill Paul struct ifnet *ifp; 676ce4946daSBill Paul struct ifmultiaddr *ifma; 677ce4946daSBill Paul u_int32_t h = 0, i, filtsave; 678ce4946daSBill Paul int bit, index; 679ce4946daSBill Paul 680ce4946daSBill Paul ifp = &sc->arpcom.ac_if; 681ce4946daSBill Paul 682ce4946daSBill Paul if (ifp->if_flags & IFF_ALLMULTI || ifp->if_flags & IFF_PROMISC) { 683ce4946daSBill Paul NGE_CLRBIT(sc, NGE_RXFILT_CTL, 684ce4946daSBill Paul NGE_RXFILTCTL_MCHASH|NGE_RXFILTCTL_UCHASH); 685ce4946daSBill Paul NGE_SETBIT(sc, NGE_RXFILT_CTL, NGE_RXFILTCTL_ALLMULTI); 686ce4946daSBill Paul return; 687ce4946daSBill Paul } 688ce4946daSBill Paul 689ce4946daSBill Paul /* 690ce4946daSBill Paul * We have to explicitly enable the multicast hash table 691ce4946daSBill Paul * on the NatSemi chip if we want to use it, which we do. 692ce4946daSBill Paul * We also have to tell it that we don't want to use the 693ce4946daSBill Paul * hash table for matching unicast addresses. 694ce4946daSBill Paul */ 695ce4946daSBill Paul NGE_SETBIT(sc, NGE_RXFILT_CTL, NGE_RXFILTCTL_MCHASH); 696ce4946daSBill Paul NGE_CLRBIT(sc, NGE_RXFILT_CTL, 697ce4946daSBill Paul NGE_RXFILTCTL_ALLMULTI|NGE_RXFILTCTL_UCHASH); 698ce4946daSBill Paul 699ce4946daSBill Paul filtsave = CSR_READ_4(sc, NGE_RXFILT_CTL); 700ce4946daSBill Paul 701ce4946daSBill Paul /* first, zot all the existing hash bits */ 702ce4946daSBill Paul for (i = 0; i < NGE_MCAST_FILTER_LEN; i += 2) { 703ce4946daSBill Paul CSR_WRITE_4(sc, NGE_RXFILT_CTL, NGE_FILTADDR_MCAST_LO + i); 704ce4946daSBill Paul CSR_WRITE_4(sc, NGE_RXFILT_DATA, 0); 705ce4946daSBill Paul } 706ce4946daSBill Paul 707ce4946daSBill Paul /* 708ce4946daSBill Paul * From the 11 bits returned by the crc routine, the top 7 709ce4946daSBill Paul * bits represent the 16-bit word in the mcast hash table 710ce4946daSBill Paul * that needs to be updated, and the lower 4 bits represent 711ce4946daSBill Paul * which bit within that byte needs to be set. 712ce4946daSBill Paul */ 713ce4946daSBill Paul TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) { 714ce4946daSBill Paul if (ifma->ifma_addr->sa_family != AF_LINK) 715ce4946daSBill Paul continue; 716ce4946daSBill Paul h = nge_crc(sc, LLADDR((struct sockaddr_dl *)ifma->ifma_addr)); 717ce4946daSBill Paul index = (h >> 4) & 0x7F; 718ce4946daSBill Paul bit = h & 0xF; 719ce4946daSBill Paul CSR_WRITE_4(sc, NGE_RXFILT_CTL, 720ce4946daSBill Paul NGE_FILTADDR_MCAST_LO + (index * 2)); 721ce4946daSBill Paul NGE_SETBIT(sc, NGE_RXFILT_DATA, (1 << bit)); 722ce4946daSBill Paul } 723ce4946daSBill Paul 724ce4946daSBill Paul CSR_WRITE_4(sc, NGE_RXFILT_CTL, filtsave); 725ce4946daSBill Paul 726ce4946daSBill Paul return; 727ce4946daSBill Paul } 728ce4946daSBill Paul 729ce4946daSBill Paul static void nge_reset(sc) 730ce4946daSBill Paul struct nge_softc *sc; 731ce4946daSBill Paul { 732ce4946daSBill Paul register int i; 733ce4946daSBill Paul 734ce4946daSBill Paul NGE_SETBIT(sc, NGE_CSR, NGE_CSR_RESET); 735ce4946daSBill Paul 736ce4946daSBill Paul for (i = 0; i < NGE_TIMEOUT; i++) { 737ce4946daSBill Paul if (!(CSR_READ_4(sc, NGE_CSR) & NGE_CSR_RESET)) 738ce4946daSBill Paul break; 739ce4946daSBill Paul } 740ce4946daSBill Paul 741ce4946daSBill Paul if (i == NGE_TIMEOUT) 742ce4946daSBill Paul printf("nge%d: reset never completed\n", sc->nge_unit); 743ce4946daSBill Paul 744ce4946daSBill Paul /* Wait a little while for the chip to get its brains in order. */ 745ce4946daSBill Paul DELAY(1000); 746ce4946daSBill Paul 747ce4946daSBill Paul /* 748ce4946daSBill Paul * If this is a NetSemi chip, make sure to clear 749ce4946daSBill Paul * PME mode. 750ce4946daSBill Paul */ 751ce4946daSBill Paul CSR_WRITE_4(sc, NGE_CLKRUN, NGE_CLKRUN_PMESTS); 752ce4946daSBill Paul CSR_WRITE_4(sc, NGE_CLKRUN, 0); 753ce4946daSBill Paul 754ce4946daSBill Paul return; 755ce4946daSBill Paul } 756ce4946daSBill Paul 757ce4946daSBill Paul /* 758ce4946daSBill Paul * Probe for an NatSemi chip. Check the PCI vendor and device 759ce4946daSBill Paul * IDs against our list and return a device name if we find a match. 760ce4946daSBill Paul */ 761ce4946daSBill Paul static int nge_probe(dev) 762ce4946daSBill Paul device_t dev; 763ce4946daSBill Paul { 764ce4946daSBill Paul struct nge_type *t; 765ce4946daSBill Paul 766ce4946daSBill Paul t = nge_devs; 767ce4946daSBill Paul 768ce4946daSBill Paul while(t->nge_name != NULL) { 769ce4946daSBill Paul if ((pci_get_vendor(dev) == t->nge_vid) && 770ce4946daSBill Paul (pci_get_device(dev) == t->nge_did)) { 771ce4946daSBill Paul device_set_desc(dev, t->nge_name); 772ce4946daSBill Paul return(0); 773ce4946daSBill Paul } 774ce4946daSBill Paul t++; 775ce4946daSBill Paul } 776ce4946daSBill Paul 777ce4946daSBill Paul return(ENXIO); 778ce4946daSBill Paul } 779ce4946daSBill Paul 780ce4946daSBill Paul /* 781ce4946daSBill Paul * Attach the interface. Allocate softc structures, do ifmedia 782ce4946daSBill Paul * setup and ethernet/BPF attach. 783ce4946daSBill Paul */ 784ce4946daSBill Paul static int nge_attach(dev) 785ce4946daSBill Paul device_t dev; 786ce4946daSBill Paul { 787ce4946daSBill Paul int s; 788ce4946daSBill Paul u_char eaddr[ETHER_ADDR_LEN]; 789ce4946daSBill Paul u_int32_t command; 790ce4946daSBill Paul struct nge_softc *sc; 791ce4946daSBill Paul struct ifnet *ifp; 792ce4946daSBill Paul int unit, error = 0, rid; 793ce4946daSBill Paul 794ce4946daSBill Paul s = splimp(); 795ce4946daSBill Paul 796ce4946daSBill Paul sc = device_get_softc(dev); 797ce4946daSBill Paul unit = device_get_unit(dev); 798ce4946daSBill Paul bzero(sc, sizeof(struct nge_softc)); 799ce4946daSBill Paul 800ce4946daSBill Paul mtx_init(&sc->nge_mtx, device_get_nameunit(dev), MTX_DEF|MTX_RECURSE); 801ce4946daSBill Paul 802ce4946daSBill Paul /* 803ce4946daSBill Paul * Handle power management nonsense. 804ce4946daSBill Paul */ 805ce4946daSBill Paul if (pci_get_powerstate(dev) != PCI_POWERSTATE_D0) { 806ce4946daSBill Paul u_int32_t iobase, membase, irq; 807ce4946daSBill Paul 808ce4946daSBill Paul /* Save important PCI config data. */ 809ce4946daSBill Paul iobase = pci_read_config(dev, NGE_PCI_LOIO, 4); 810ce4946daSBill Paul membase = pci_read_config(dev, NGE_PCI_LOMEM, 4); 811ce4946daSBill Paul irq = pci_read_config(dev, NGE_PCI_INTLINE, 4); 812ce4946daSBill Paul 813ce4946daSBill Paul /* Reset the power state. */ 814ce4946daSBill Paul printf("nge%d: chip is in D%d power mode " 815ce4946daSBill Paul "-- setting to D0\n", unit, 816ce4946daSBill Paul pci_get_powerstate(dev)); 817ce4946daSBill Paul pci_set_powerstate(dev, PCI_POWERSTATE_D0); 818ce4946daSBill Paul 819ce4946daSBill Paul /* Restore PCI config data. */ 820ce4946daSBill Paul pci_write_config(dev, NGE_PCI_LOIO, iobase, 4); 821ce4946daSBill Paul pci_write_config(dev, NGE_PCI_LOMEM, membase, 4); 822ce4946daSBill Paul pci_write_config(dev, NGE_PCI_INTLINE, irq, 4); 823ce4946daSBill Paul } 824ce4946daSBill Paul 825ce4946daSBill Paul /* 826ce4946daSBill Paul * Map control/status registers. 827ce4946daSBill Paul */ 828ce4946daSBill Paul pci_enable_busmaster(dev); 82975ff968cSBill Paul pci_enable_io(dev, SYS_RES_IOPORT); 83075ff968cSBill Paul pci_enable_io(dev, SYS_RES_MEMORY); 831ce4946daSBill Paul command = pci_read_config(dev, PCIR_COMMAND, 4); 832ce4946daSBill Paul 833ce4946daSBill Paul #ifdef NGE_USEIOSPACE 834ce4946daSBill Paul if (!(command & PCIM_CMD_PORTEN)) { 835ce4946daSBill Paul printf("nge%d: failed to enable I/O ports!\n", unit); 836ce4946daSBill Paul error = ENXIO;; 837ce4946daSBill Paul goto fail; 838ce4946daSBill Paul } 839ce4946daSBill Paul #else 840ce4946daSBill Paul if (!(command & PCIM_CMD_MEMEN)) { 841ce4946daSBill Paul printf("nge%d: failed to enable memory mapping!\n", unit); 842ce4946daSBill Paul error = ENXIO;; 843ce4946daSBill Paul goto fail; 844ce4946daSBill Paul } 845ce4946daSBill Paul #endif 846ce4946daSBill Paul 847ce4946daSBill Paul rid = NGE_RID; 848ce4946daSBill Paul sc->nge_res = bus_alloc_resource(dev, NGE_RES, &rid, 849ce4946daSBill Paul 0, ~0, 1, RF_ACTIVE); 850ce4946daSBill Paul 851ce4946daSBill Paul if (sc->nge_res == NULL) { 852ce4946daSBill Paul printf("nge%d: couldn't map ports/memory\n", unit); 853ce4946daSBill Paul error = ENXIO; 854ce4946daSBill Paul goto fail; 855ce4946daSBill Paul } 856ce4946daSBill Paul 857ce4946daSBill Paul sc->nge_btag = rman_get_bustag(sc->nge_res); 858ce4946daSBill Paul sc->nge_bhandle = rman_get_bushandle(sc->nge_res); 859ce4946daSBill Paul 860ce4946daSBill Paul /* Allocate interrupt */ 861ce4946daSBill Paul rid = 0; 862ce4946daSBill Paul sc->nge_irq = bus_alloc_resource(dev, SYS_RES_IRQ, &rid, 0, ~0, 1, 863ce4946daSBill Paul RF_SHAREABLE | RF_ACTIVE); 864ce4946daSBill Paul 865ce4946daSBill Paul if (sc->nge_irq == NULL) { 866ce4946daSBill Paul printf("nge%d: couldn't map interrupt\n", unit); 867ce4946daSBill Paul bus_release_resource(dev, NGE_RES, NGE_RID, sc->nge_res); 868ce4946daSBill Paul error = ENXIO; 869ce4946daSBill Paul goto fail; 870ce4946daSBill Paul } 871ce4946daSBill Paul 872ce4946daSBill Paul error = bus_setup_intr(dev, sc->nge_irq, INTR_TYPE_NET, 873ce4946daSBill Paul nge_intr, sc, &sc->nge_intrhand); 874ce4946daSBill Paul 875ce4946daSBill Paul if (error) { 876ce4946daSBill Paul bus_release_resource(dev, SYS_RES_IRQ, 0, sc->nge_irq); 877ce4946daSBill Paul bus_release_resource(dev, NGE_RES, NGE_RID, sc->nge_res); 878ce4946daSBill Paul printf("nge%d: couldn't set up irq\n", unit); 879ce4946daSBill Paul goto fail; 880ce4946daSBill Paul } 881ce4946daSBill Paul 882ce4946daSBill Paul /* Reset the adapter. */ 883ce4946daSBill Paul nge_reset(sc); 884ce4946daSBill Paul 885ce4946daSBill Paul /* 886ce4946daSBill Paul * Get station address from the EEPROM. 887ce4946daSBill Paul */ 888ce4946daSBill Paul nge_read_eeprom(sc, (caddr_t)&eaddr[4], NGE_EE_NODEADDR, 1, 0); 889ce4946daSBill Paul nge_read_eeprom(sc, (caddr_t)&eaddr[2], NGE_EE_NODEADDR + 1, 1, 0); 890ce4946daSBill Paul nge_read_eeprom(sc, (caddr_t)&eaddr[0], NGE_EE_NODEADDR + 2, 1, 0); 891ce4946daSBill Paul 892ce4946daSBill Paul /* 893ce4946daSBill Paul * A NatSemi chip was detected. Inform the world. 894ce4946daSBill Paul */ 895ce4946daSBill Paul printf("nge%d: Ethernet address: %6D\n", unit, eaddr, ":"); 896ce4946daSBill Paul 897ce4946daSBill Paul sc->nge_unit = unit; 898ce4946daSBill Paul bcopy(eaddr, (char *)&sc->arpcom.ac_enaddr, ETHER_ADDR_LEN); 899ce4946daSBill Paul 900ce4946daSBill Paul sc->nge_ldata = contigmalloc(sizeof(struct nge_list_data), M_DEVBUF, 901ce4946daSBill Paul M_NOWAIT, 0, 0xffffffff, PAGE_SIZE, 0); 902ce4946daSBill Paul 903ce4946daSBill Paul if (sc->nge_ldata == NULL) { 904ce4946daSBill Paul printf("nge%d: no memory for list buffers!\n", unit); 905ce4946daSBill Paul bus_teardown_intr(dev, sc->nge_irq, sc->nge_intrhand); 906ce4946daSBill Paul bus_release_resource(dev, SYS_RES_IRQ, 0, sc->nge_irq); 907ce4946daSBill Paul bus_release_resource(dev, NGE_RES, NGE_RID, sc->nge_res); 908ce4946daSBill Paul error = ENXIO; 909ce4946daSBill Paul goto fail; 910ce4946daSBill Paul } 911ce4946daSBill Paul bzero(sc->nge_ldata, sizeof(struct nge_list_data)); 912ce4946daSBill Paul 913ce4946daSBill Paul /* Try to allocate memory for jumbo buffers. */ 914ce4946daSBill Paul if (nge_alloc_jumbo_mem(sc)) { 915ce4946daSBill Paul printf("nge%d: jumbo buffer allocation failed\n", 916ce4946daSBill Paul sc->nge_unit); 917ce4946daSBill Paul contigfree(sc->nge_ldata, 918ce4946daSBill Paul sizeof(struct nge_list_data), M_DEVBUF); 919ce4946daSBill Paul bus_teardown_intr(dev, sc->nge_irq, sc->nge_intrhand); 920ce4946daSBill Paul bus_release_resource(dev, SYS_RES_IRQ, 0, sc->nge_irq); 921ce4946daSBill Paul bus_release_resource(dev, NGE_RES, NGE_RID, sc->nge_res); 922ce4946daSBill Paul error = ENXIO; 923ce4946daSBill Paul goto fail; 924ce4946daSBill Paul } 925ce4946daSBill Paul 926ce4946daSBill Paul ifp = &sc->arpcom.ac_if; 927ce4946daSBill Paul ifp->if_softc = sc; 928ce4946daSBill Paul ifp->if_unit = unit; 929ce4946daSBill Paul ifp->if_name = "nge"; 930ce4946daSBill Paul ifp->if_mtu = ETHERMTU; 931ce4946daSBill Paul ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST; 932ce4946daSBill Paul ifp->if_ioctl = nge_ioctl; 933ce4946daSBill Paul ifp->if_output = ether_output; 934ce4946daSBill Paul ifp->if_start = nge_start; 935ce4946daSBill Paul ifp->if_watchdog = nge_watchdog; 936ce4946daSBill Paul ifp->if_init = nge_init; 937ce4946daSBill Paul ifp->if_baudrate = 1000000000; 938ce4946daSBill Paul ifp->if_snd.ifq_maxlen = NGE_TX_LIST_CNT - 1; 939ce4946daSBill Paul ifp->if_hwassist = NGE_CSUM_FEATURES; 94084e4de28SJonathan Lemon ifp->if_capabilities = IFCAP_HWCSUM; 94184e4de28SJonathan Lemon ifp->if_capenable = ifp->if_capabilities; 942ce4946daSBill Paul 943ce4946daSBill Paul /* 944ce4946daSBill Paul * Do MII setup. 945ce4946daSBill Paul */ 946ce4946daSBill Paul if (mii_phy_probe(dev, &sc->nge_miibus, 947ce4946daSBill Paul nge_ifmedia_upd, nge_ifmedia_sts)) { 948ce4946daSBill Paul printf("nge%d: MII without any PHY!\n", sc->nge_unit); 949ce4946daSBill Paul nge_free_jumbo_mem(sc); 950ce4946daSBill Paul bus_teardown_intr(dev, sc->nge_irq, sc->nge_intrhand); 951ce4946daSBill Paul bus_release_resource(dev, SYS_RES_IRQ, 0, sc->nge_irq); 952ce4946daSBill Paul bus_release_resource(dev, NGE_RES, NGE_RID, sc->nge_res); 953ce4946daSBill Paul error = ENXIO; 954ce4946daSBill Paul goto fail; 955ce4946daSBill Paul } 956ce4946daSBill Paul 957ce4946daSBill Paul /* 958ce4946daSBill Paul * Call MI attach routine. 959ce4946daSBill Paul */ 960ce4946daSBill Paul ether_ifattach(ifp, ETHER_BPF_SUPPORTED); 961ce4946daSBill Paul callout_handle_init(&sc->nge_stat_ch); 962ce4946daSBill Paul 963ce4946daSBill Paul fail: 964ce4946daSBill Paul splx(s); 965ce4946daSBill Paul mtx_destroy(&sc->nge_mtx); 966ce4946daSBill Paul return(error); 967ce4946daSBill Paul } 968ce4946daSBill Paul 969ce4946daSBill Paul static int nge_detach(dev) 970ce4946daSBill Paul device_t dev; 971ce4946daSBill Paul { 972ce4946daSBill Paul struct nge_softc *sc; 973ce4946daSBill Paul struct ifnet *ifp; 974ce4946daSBill Paul int s; 975ce4946daSBill Paul 976ce4946daSBill Paul s = splimp(); 977ce4946daSBill Paul 978ce4946daSBill Paul sc = device_get_softc(dev); 979ce4946daSBill Paul ifp = &sc->arpcom.ac_if; 980ce4946daSBill Paul 981ce4946daSBill Paul nge_reset(sc); 982ce4946daSBill Paul nge_stop(sc); 983ce4946daSBill Paul ether_ifdetach(ifp, ETHER_BPF_SUPPORTED); 984ce4946daSBill Paul 985ce4946daSBill Paul bus_generic_detach(dev); 986ce4946daSBill Paul device_delete_child(dev, sc->nge_miibus); 987ce4946daSBill Paul 988ce4946daSBill Paul bus_teardown_intr(dev, sc->nge_irq, sc->nge_intrhand); 989ce4946daSBill Paul bus_release_resource(dev, SYS_RES_IRQ, 0, sc->nge_irq); 990ce4946daSBill Paul bus_release_resource(dev, NGE_RES, NGE_RID, sc->nge_res); 991ce4946daSBill Paul 992ce4946daSBill Paul contigfree(sc->nge_ldata, sizeof(struct nge_list_data), M_DEVBUF); 993ce4946daSBill Paul nge_free_jumbo_mem(sc); 994ce4946daSBill Paul 995ce4946daSBill Paul splx(s); 996ce4946daSBill Paul mtx_destroy(&sc->nge_mtx); 997ce4946daSBill Paul 998ce4946daSBill Paul return(0); 999ce4946daSBill Paul } 1000ce4946daSBill Paul 1001ce4946daSBill Paul /* 1002ce4946daSBill Paul * Initialize the transmit descriptors. 1003ce4946daSBill Paul */ 1004ce4946daSBill Paul static int nge_list_tx_init(sc) 1005ce4946daSBill Paul struct nge_softc *sc; 1006ce4946daSBill Paul { 1007ce4946daSBill Paul struct nge_list_data *ld; 1008ce4946daSBill Paul struct nge_ring_data *cd; 1009ce4946daSBill Paul int i; 1010ce4946daSBill Paul 1011ce4946daSBill Paul cd = &sc->nge_cdata; 1012ce4946daSBill Paul ld = sc->nge_ldata; 1013ce4946daSBill Paul 1014ce4946daSBill Paul for (i = 0; i < NGE_TX_LIST_CNT; i++) { 1015ce4946daSBill Paul if (i == (NGE_TX_LIST_CNT - 1)) { 1016ce4946daSBill Paul ld->nge_tx_list[i].nge_nextdesc = 1017ce4946daSBill Paul &ld->nge_tx_list[0]; 1018ce4946daSBill Paul ld->nge_tx_list[i].nge_next = 1019ce4946daSBill Paul vtophys(&ld->nge_tx_list[0]); 1020ce4946daSBill Paul } else { 1021ce4946daSBill Paul ld->nge_tx_list[i].nge_nextdesc = 1022ce4946daSBill Paul &ld->nge_tx_list[i + 1]; 1023ce4946daSBill Paul ld->nge_tx_list[i].nge_next = 1024ce4946daSBill Paul vtophys(&ld->nge_tx_list[i + 1]); 1025ce4946daSBill Paul } 1026ce4946daSBill Paul ld->nge_tx_list[i].nge_mbuf = NULL; 1027ce4946daSBill Paul ld->nge_tx_list[i].nge_ptr = 0; 1028ce4946daSBill Paul ld->nge_tx_list[i].nge_ctl = 0; 1029ce4946daSBill Paul } 1030ce4946daSBill Paul 1031ce4946daSBill Paul cd->nge_tx_prod = cd->nge_tx_cons = cd->nge_tx_cnt = 0; 1032ce4946daSBill Paul 1033ce4946daSBill Paul return(0); 1034ce4946daSBill Paul } 1035ce4946daSBill Paul 1036ce4946daSBill Paul 1037ce4946daSBill Paul /* 1038ce4946daSBill Paul * Initialize the RX descriptors and allocate mbufs for them. Note that 1039ce4946daSBill Paul * we arrange the descriptors in a closed ring, so that the last descriptor 1040ce4946daSBill Paul * points back to the first. 1041ce4946daSBill Paul */ 1042ce4946daSBill Paul static int nge_list_rx_init(sc) 1043ce4946daSBill Paul struct nge_softc *sc; 1044ce4946daSBill Paul { 1045ce4946daSBill Paul struct nge_list_data *ld; 1046ce4946daSBill Paul struct nge_ring_data *cd; 1047ce4946daSBill Paul int i; 1048ce4946daSBill Paul 1049ce4946daSBill Paul ld = sc->nge_ldata; 1050ce4946daSBill Paul cd = &sc->nge_cdata; 1051ce4946daSBill Paul 1052ce4946daSBill Paul for (i = 0; i < NGE_RX_LIST_CNT; i++) { 1053ce4946daSBill Paul if (nge_newbuf(sc, &ld->nge_rx_list[i], NULL) == ENOBUFS) 1054ce4946daSBill Paul return(ENOBUFS); 1055ce4946daSBill Paul if (i == (NGE_RX_LIST_CNT - 1)) { 1056ce4946daSBill Paul ld->nge_rx_list[i].nge_nextdesc = 1057ce4946daSBill Paul &ld->nge_rx_list[0]; 1058ce4946daSBill Paul ld->nge_rx_list[i].nge_next = 1059ce4946daSBill Paul vtophys(&ld->nge_rx_list[0]); 1060ce4946daSBill Paul } else { 1061ce4946daSBill Paul ld->nge_rx_list[i].nge_nextdesc = 1062ce4946daSBill Paul &ld->nge_rx_list[i + 1]; 1063ce4946daSBill Paul ld->nge_rx_list[i].nge_next = 1064ce4946daSBill Paul vtophys(&ld->nge_rx_list[i + 1]); 1065ce4946daSBill Paul } 1066ce4946daSBill Paul } 1067ce4946daSBill Paul 1068ce4946daSBill Paul cd->nge_rx_prod = 0; 1069ce4946daSBill Paul 1070ce4946daSBill Paul return(0); 1071ce4946daSBill Paul } 1072ce4946daSBill Paul 1073ce4946daSBill Paul /* 1074ce4946daSBill Paul * Initialize an RX descriptor and attach an MBUF cluster. 1075ce4946daSBill Paul */ 1076ce4946daSBill Paul static int nge_newbuf(sc, c, m) 1077ce4946daSBill Paul struct nge_softc *sc; 1078ce4946daSBill Paul struct nge_desc *c; 1079ce4946daSBill Paul struct mbuf *m; 1080ce4946daSBill Paul { 1081ce4946daSBill Paul struct mbuf *m_new = NULL; 1082ce4946daSBill Paul caddr_t *buf = NULL; 1083ce4946daSBill Paul 1084ce4946daSBill Paul if (m == NULL) { 1085ce4946daSBill Paul MGETHDR(m_new, M_DONTWAIT, MT_DATA); 1086ce4946daSBill Paul if (m_new == NULL) { 1087ce4946daSBill Paul printf("nge%d: no memory for rx list " 1088ce4946daSBill Paul "-- packet dropped!\n", sc->nge_unit); 1089ce4946daSBill Paul return(ENOBUFS); 1090ce4946daSBill Paul } 1091ce4946daSBill Paul 1092ce4946daSBill Paul /* Allocate the jumbo buffer */ 1093ce4946daSBill Paul buf = nge_jalloc(sc); 1094ce4946daSBill Paul if (buf == NULL) { 1095ce4946daSBill Paul #ifdef NGE_VERBOSE 1096ce4946daSBill Paul printf("nge%d: jumbo allocation failed " 1097ce4946daSBill Paul "-- packet dropped!\n", sc->nge_unit); 1098ce4946daSBill Paul #endif 1099ce4946daSBill Paul m_freem(m_new); 1100ce4946daSBill Paul return(ENOBUFS); 1101ce4946daSBill Paul } 1102ce4946daSBill Paul /* Attach the buffer to the mbuf */ 1103ce4946daSBill Paul m_new->m_data = (void *)buf; 11047437599fSBill Paul m_new->m_len = m_new->m_pkthdr.len = NGE_JUMBO_FRAMELEN; 11057437599fSBill Paul MEXTADD(m_new, buf, NGE_JUMBO_FRAMELEN, nge_jfree, 1106065a7922SBill Paul (struct nge_softc *)sc, 0, EXT_NET_DRV); 1107ce4946daSBill Paul } else { 1108ce4946daSBill Paul m_new = m; 11097437599fSBill Paul m_new->m_len = m_new->m_pkthdr.len = NGE_JUMBO_FRAMELEN; 1110ce4946daSBill Paul m_new->m_data = m_new->m_ext.ext_buf; 1111ce4946daSBill Paul } 1112ce4946daSBill Paul 1113ce4946daSBill Paul m_adj(m_new, sizeof(u_int64_t)); 1114ce4946daSBill Paul 1115ce4946daSBill Paul c->nge_mbuf = m_new; 1116ce4946daSBill Paul c->nge_ptr = vtophys(mtod(m_new, caddr_t)); 1117ce4946daSBill Paul c->nge_ctl = m_new->m_len; 1118ce4946daSBill Paul c->nge_extsts = 0; 1119ce4946daSBill Paul 1120ce4946daSBill Paul return(0); 1121ce4946daSBill Paul } 1122ce4946daSBill Paul 1123ce4946daSBill Paul static int nge_alloc_jumbo_mem(sc) 1124ce4946daSBill Paul struct nge_softc *sc; 1125ce4946daSBill Paul { 1126ce4946daSBill Paul caddr_t ptr; 1127ce4946daSBill Paul register int i; 1128ce4946daSBill Paul struct nge_jpool_entry *entry; 1129ce4946daSBill Paul 1130ce4946daSBill Paul /* Grab a big chunk o' storage. */ 1131ce4946daSBill Paul sc->nge_cdata.nge_jumbo_buf = contigmalloc(NGE_JMEM, M_DEVBUF, 1132ce4946daSBill Paul M_NOWAIT, 0, 0xffffffff, PAGE_SIZE, 0); 1133ce4946daSBill Paul 1134ce4946daSBill Paul if (sc->nge_cdata.nge_jumbo_buf == NULL) { 1135ce4946daSBill Paul printf("nge%d: no memory for jumbo buffers!\n", sc->nge_unit); 1136ce4946daSBill Paul return(ENOBUFS); 1137ce4946daSBill Paul } 1138ce4946daSBill Paul 1139ce4946daSBill Paul SLIST_INIT(&sc->nge_jfree_listhead); 1140ce4946daSBill Paul SLIST_INIT(&sc->nge_jinuse_listhead); 1141ce4946daSBill Paul 1142ce4946daSBill Paul /* 1143ce4946daSBill Paul * Now divide it up into 9K pieces and save the addresses 1144ce4946daSBill Paul * in an array. 1145ce4946daSBill Paul */ 1146ce4946daSBill Paul ptr = sc->nge_cdata.nge_jumbo_buf; 1147ce4946daSBill Paul for (i = 0; i < NGE_JSLOTS; i++) { 1148ce4946daSBill Paul sc->nge_cdata.nge_jslots[i] = ptr; 11497437599fSBill Paul ptr += NGE_JLEN; 1150ce4946daSBill Paul entry = malloc(sizeof(struct nge_jpool_entry), 1151ce4946daSBill Paul M_DEVBUF, M_NOWAIT); 1152ce4946daSBill Paul if (entry == NULL) { 1153ce4946daSBill Paul printf("nge%d: no memory for jumbo " 1154ce4946daSBill Paul "buffer queue!\n", sc->nge_unit); 1155ce4946daSBill Paul return(ENOBUFS); 1156ce4946daSBill Paul } 1157ce4946daSBill Paul entry->slot = i; 1158ce4946daSBill Paul SLIST_INSERT_HEAD(&sc->nge_jfree_listhead, 1159ce4946daSBill Paul entry, jpool_entries); 1160ce4946daSBill Paul } 1161ce4946daSBill Paul 1162ce4946daSBill Paul return(0); 1163ce4946daSBill Paul } 1164ce4946daSBill Paul 1165ce4946daSBill Paul static void nge_free_jumbo_mem(sc) 1166ce4946daSBill Paul struct nge_softc *sc; 1167ce4946daSBill Paul { 1168ce4946daSBill Paul register int i; 1169ce4946daSBill Paul struct nge_jpool_entry *entry; 1170ce4946daSBill Paul 1171ce4946daSBill Paul for (i = 0; i < NGE_JSLOTS; i++) { 1172ce4946daSBill Paul entry = SLIST_FIRST(&sc->nge_jfree_listhead); 1173ce4946daSBill Paul SLIST_REMOVE_HEAD(&sc->nge_jfree_listhead, jpool_entries); 11747437599fSBill Paul free(entry, M_DEVBUF); 1175ce4946daSBill Paul } 1176ce4946daSBill Paul 1177ce4946daSBill Paul contigfree(sc->nge_cdata.nge_jumbo_buf, NGE_JMEM, M_DEVBUF); 1178ce4946daSBill Paul 1179ce4946daSBill Paul return; 1180ce4946daSBill Paul } 1181ce4946daSBill Paul 1182ce4946daSBill Paul /* 1183ce4946daSBill Paul * Allocate a jumbo buffer. 1184ce4946daSBill Paul */ 1185ce4946daSBill Paul static void *nge_jalloc(sc) 1186ce4946daSBill Paul struct nge_softc *sc; 1187ce4946daSBill Paul { 1188ce4946daSBill Paul struct nge_jpool_entry *entry; 1189ce4946daSBill Paul 1190ce4946daSBill Paul entry = SLIST_FIRST(&sc->nge_jfree_listhead); 1191ce4946daSBill Paul 1192ce4946daSBill Paul if (entry == NULL) { 1193ce4946daSBill Paul #ifdef NGE_VERBOSE 1194ce4946daSBill Paul printf("nge%d: no free jumbo buffers\n", sc->nge_unit); 1195ce4946daSBill Paul #endif 1196ce4946daSBill Paul return(NULL); 1197ce4946daSBill Paul } 1198ce4946daSBill Paul 1199ce4946daSBill Paul SLIST_REMOVE_HEAD(&sc->nge_jfree_listhead, jpool_entries); 1200ce4946daSBill Paul SLIST_INSERT_HEAD(&sc->nge_jinuse_listhead, entry, jpool_entries); 1201ce4946daSBill Paul return(sc->nge_cdata.nge_jslots[entry->slot]); 1202ce4946daSBill Paul } 1203ce4946daSBill Paul 1204ce4946daSBill Paul /* 1205ce4946daSBill Paul * Release a jumbo buffer. 1206ce4946daSBill Paul */ 1207ce4946daSBill Paul static void nge_jfree(buf, args) 1208ce4946daSBill Paul caddr_t buf; 1209ce4946daSBill Paul void *args; 1210ce4946daSBill Paul { 1211ce4946daSBill Paul struct nge_softc *sc; 1212ce4946daSBill Paul int i; 1213ce4946daSBill Paul struct nge_jpool_entry *entry; 1214ce4946daSBill Paul 1215ce4946daSBill Paul /* Extract the softc struct pointer. */ 1216ce4946daSBill Paul sc = args; 1217ce4946daSBill Paul 1218ce4946daSBill Paul if (sc == NULL) 1219ce4946daSBill Paul panic("nge_jfree: can't find softc pointer!"); 1220ce4946daSBill Paul 1221ce4946daSBill Paul /* calculate the slot this buffer belongs to */ 1222ce4946daSBill Paul i = ((vm_offset_t)buf 1223ce4946daSBill Paul - (vm_offset_t)sc->nge_cdata.nge_jumbo_buf) / NGE_JLEN; 1224ce4946daSBill Paul 1225ce4946daSBill Paul if ((i < 0) || (i >= NGE_JSLOTS)) 1226ce4946daSBill Paul panic("nge_jfree: asked to free buffer that we don't manage!"); 1227ce4946daSBill Paul 1228ce4946daSBill Paul entry = SLIST_FIRST(&sc->nge_jinuse_listhead); 1229ce4946daSBill Paul if (entry == NULL) 1230ce4946daSBill Paul panic("nge_jfree: buffer not in use!"); 1231ce4946daSBill Paul entry->slot = i; 1232ce4946daSBill Paul SLIST_REMOVE_HEAD(&sc->nge_jinuse_listhead, jpool_entries); 1233ce4946daSBill Paul SLIST_INSERT_HEAD(&sc->nge_jfree_listhead, entry, jpool_entries); 1234ce4946daSBill Paul 1235ce4946daSBill Paul return; 1236ce4946daSBill Paul } 1237ce4946daSBill Paul /* 1238ce4946daSBill Paul * A frame has been uploaded: pass the resulting mbuf chain up to 1239ce4946daSBill Paul * the higher level protocols. 1240ce4946daSBill Paul */ 1241ce4946daSBill Paul static void nge_rxeof(sc) 1242ce4946daSBill Paul struct nge_softc *sc; 1243ce4946daSBill Paul { 1244ce4946daSBill Paul struct ether_header *eh; 1245ce4946daSBill Paul struct mbuf *m; 1246ce4946daSBill Paul struct ifnet *ifp; 1247ce4946daSBill Paul struct nge_desc *cur_rx; 1248ce4946daSBill Paul int i, total_len = 0; 1249ce4946daSBill Paul u_int32_t rxstat; 1250ce4946daSBill Paul 1251ce4946daSBill Paul ifp = &sc->arpcom.ac_if; 1252ce4946daSBill Paul i = sc->nge_cdata.nge_rx_prod; 1253ce4946daSBill Paul 1254ce4946daSBill Paul while(NGE_OWNDESC(&sc->nge_ldata->nge_rx_list[i])) { 1255ce4946daSBill Paul struct mbuf *m0 = NULL; 1256ce4946daSBill Paul u_int32_t extsts; 1257ce4946daSBill Paul 1258ce4946daSBill Paul cur_rx = &sc->nge_ldata->nge_rx_list[i]; 1259ce4946daSBill Paul rxstat = cur_rx->nge_rxstat; 1260ce4946daSBill Paul extsts = cur_rx->nge_extsts; 1261ce4946daSBill Paul m = cur_rx->nge_mbuf; 1262ce4946daSBill Paul cur_rx->nge_mbuf = NULL; 1263ce4946daSBill Paul total_len = NGE_RXBYTES(cur_rx); 1264ce4946daSBill Paul NGE_INC(i, NGE_RX_LIST_CNT); 1265ce4946daSBill Paul 1266ce4946daSBill Paul /* 1267ce4946daSBill Paul * If an error occurs, update stats, clear the 1268ce4946daSBill Paul * status word and leave the mbuf cluster in place: 1269ce4946daSBill Paul * it should simply get re-used next time this descriptor 1270ce4946daSBill Paul * comes up in the ring. 1271ce4946daSBill Paul */ 1272ce4946daSBill Paul if (!(rxstat & NGE_CMDSTS_PKT_OK)) { 1273ce4946daSBill Paul ifp->if_ierrors++; 1274ce4946daSBill Paul nge_newbuf(sc, cur_rx, m); 1275ce4946daSBill Paul continue; 1276ce4946daSBill Paul } 1277ce4946daSBill Paul 1278ce4946daSBill Paul 1279ce4946daSBill Paul /* 1280ce4946daSBill Paul * Ok. NatSemi really screwed up here. This is the 1281ce4946daSBill Paul * only gigE chip I know of with alignment constraints 1282ce4946daSBill Paul * on receive buffers. RX buffers must be 64-bit aligned. 1283ce4946daSBill Paul */ 1284962315f6SBill Paul #ifdef __i386__ 1285962315f6SBill Paul /* 1286962315f6SBill Paul * By popular demand, ignore the alignment problems 1287962315f6SBill Paul * on the Intel x86 platform. The performance hit 1288962315f6SBill Paul * incurred due to unaligned accesses is much smaller 1289962315f6SBill Paul * than the hit produced by forcing buffer copies all 1290962315f6SBill Paul * the time, especially with jumbo frames. We still 1291962315f6SBill Paul * need to fix up the alignment everywhere else though. 1292962315f6SBill Paul */ 1293962315f6SBill Paul if (nge_newbuf(sc, cur_rx, NULL) == ENOBUFS) { 1294962315f6SBill Paul #endif 1295962315f6SBill Paul m0 = m_devget(mtod(m, char *), total_len, 1296962315f6SBill Paul ETHER_ALIGN, ifp, NULL); 1297ce4946daSBill Paul nge_newbuf(sc, cur_rx, m); 1298ce4946daSBill Paul if (m0 == NULL) { 1299ce4946daSBill Paul printf("nge%d: no receive buffers " 1300ce4946daSBill Paul "available -- packet dropped!\n", 1301ce4946daSBill Paul sc->nge_unit); 1302ce4946daSBill Paul ifp->if_ierrors++; 1303ce4946daSBill Paul continue; 1304ce4946daSBill Paul } 1305ce4946daSBill Paul m = m0; 1306962315f6SBill Paul #ifdef __i386__ 1307962315f6SBill Paul } else { 1308962315f6SBill Paul m->m_pkthdr.rcvif = ifp; 1309962315f6SBill Paul m->m_pkthdr.len = m->m_len = total_len; 1310962315f6SBill Paul } 1311962315f6SBill Paul #endif 1312ce4946daSBill Paul 1313ce4946daSBill Paul ifp->if_ipackets++; 1314ce4946daSBill Paul eh = mtod(m, struct ether_header *); 1315ce4946daSBill Paul 1316ce4946daSBill Paul /* Remove header from mbuf and pass it on. */ 1317ce4946daSBill Paul m_adj(m, sizeof(struct ether_header)); 1318ce4946daSBill Paul 1319ce4946daSBill Paul /* Do IP checksum checking. */ 1320ce4946daSBill Paul if (extsts & NGE_RXEXTSTS_IPPKT) 1321ce4946daSBill Paul m->m_pkthdr.csum_flags |= CSUM_IP_CHECKED; 1322ce4946daSBill Paul if (!(extsts & NGE_RXEXTSTS_IPCSUMERR)) 132301702579SBill Paul m->m_pkthdr.csum_flags |= CSUM_IP_VALID; 13242195de46SBill Paul if ((extsts & NGE_RXEXTSTS_TCPPKT && 13252195de46SBill Paul !(extsts & NGE_RXEXTSTS_TCPCSUMERR)) || 13262195de46SBill Paul (extsts & NGE_RXEXTSTS_UDPPKT && 13272195de46SBill Paul !(extsts & NGE_RXEXTSTS_UDPCSUMERR))) { 13282195de46SBill Paul m->m_pkthdr.csum_flags |= 13292195de46SBill Paul CSUM_DATA_VALID|CSUM_PSEUDO_HDR; 1330c9215605SBill Paul m->m_pkthdr.csum_data = 0xffff; 13312195de46SBill Paul } 1332ce4946daSBill Paul 1333ce4946daSBill Paul /* 1334ce4946daSBill Paul * If we received a packet with a vlan tag, pass it 1335ce4946daSBill Paul * to vlan_input() instead of ether_input(). 1336ce4946daSBill Paul */ 1337ce4946daSBill Paul if (extsts & NGE_RXEXTSTS_VLANPKT) { 1338437e48e9SBrooks Davis VLAN_INPUT_TAG(eh, m, extsts & NGE_RXEXTSTS_VTCI); 1339ce4946daSBill Paul continue; 1340ce4946daSBill Paul } 1341ce4946daSBill Paul 1342ce4946daSBill Paul ether_input(ifp, eh, m); 1343ce4946daSBill Paul } 1344ce4946daSBill Paul 1345ce4946daSBill Paul sc->nge_cdata.nge_rx_prod = i; 1346ce4946daSBill Paul 1347ce4946daSBill Paul return; 1348ce4946daSBill Paul } 1349ce4946daSBill Paul 13503ffc8ab1SJulian Elischer #ifdef notdef 1351ce4946daSBill Paul void nge_rxeoc(sc) 1352ce4946daSBill Paul struct nge_softc *sc; 1353ce4946daSBill Paul { 1354ce4946daSBill Paul struct ifnet *ifp; 1355ce4946daSBill Paul 1356ce4946daSBill Paul ifp = &sc->arpcom.ac_if; 1357ce4946daSBill Paul nge_rxeof(sc); 1358ce4946daSBill Paul ifp->if_flags &= ~IFF_RUNNING; 1359ce4946daSBill Paul nge_init(sc); 1360ce4946daSBill Paul return; 1361ce4946daSBill Paul } 13623ffc8ab1SJulian Elischer #endif 1363ce4946daSBill Paul 1364ce4946daSBill Paul /* 1365ce4946daSBill Paul * A frame was downloaded to the chip. It's safe for us to clean up 1366ce4946daSBill Paul * the list buffers. 1367ce4946daSBill Paul */ 1368ce4946daSBill Paul 1369ce4946daSBill Paul static void nge_txeof(sc) 1370ce4946daSBill Paul struct nge_softc *sc; 1371ce4946daSBill Paul { 1372ce4946daSBill Paul struct nge_desc *cur_tx = NULL; 1373ce4946daSBill Paul struct ifnet *ifp; 1374ce4946daSBill Paul u_int32_t idx; 1375ce4946daSBill Paul 1376ce4946daSBill Paul ifp = &sc->arpcom.ac_if; 1377ce4946daSBill Paul 1378ce4946daSBill Paul /* Clear the timeout timer. */ 1379ce4946daSBill Paul ifp->if_timer = 0; 1380ce4946daSBill Paul 1381ce4946daSBill Paul /* 1382ce4946daSBill Paul * Go through our tx list and free mbufs for those 1383ce4946daSBill Paul * frames that have been transmitted. 1384ce4946daSBill Paul */ 1385ce4946daSBill Paul idx = sc->nge_cdata.nge_tx_cons; 1386ce4946daSBill Paul while (idx != sc->nge_cdata.nge_tx_prod) { 1387ce4946daSBill Paul cur_tx = &sc->nge_ldata->nge_tx_list[idx]; 1388ce4946daSBill Paul 1389ce4946daSBill Paul if (NGE_OWNDESC(cur_tx)) 1390ce4946daSBill Paul break; 1391ce4946daSBill Paul 1392ce4946daSBill Paul if (cur_tx->nge_ctl & NGE_CMDSTS_MORE) { 1393ce4946daSBill Paul sc->nge_cdata.nge_tx_cnt--; 1394ce4946daSBill Paul NGE_INC(idx, NGE_TX_LIST_CNT); 1395ce4946daSBill Paul continue; 1396ce4946daSBill Paul } 1397ce4946daSBill Paul 1398ce4946daSBill Paul if (!(cur_tx->nge_ctl & NGE_CMDSTS_PKT_OK)) { 1399ce4946daSBill Paul ifp->if_oerrors++; 1400ce4946daSBill Paul if (cur_tx->nge_txstat & NGE_TXSTAT_EXCESSCOLLS) 1401ce4946daSBill Paul ifp->if_collisions++; 1402ce4946daSBill Paul if (cur_tx->nge_txstat & NGE_TXSTAT_OUTOFWINCOLL) 1403ce4946daSBill Paul ifp->if_collisions++; 1404ce4946daSBill Paul } 1405ce4946daSBill Paul 1406ce4946daSBill Paul ifp->if_collisions += 1407ce4946daSBill Paul (cur_tx->nge_txstat & NGE_TXSTAT_COLLCNT) >> 16; 1408ce4946daSBill Paul 1409ce4946daSBill Paul ifp->if_opackets++; 1410ce4946daSBill Paul if (cur_tx->nge_mbuf != NULL) { 1411ce4946daSBill Paul m_freem(cur_tx->nge_mbuf); 1412ce4946daSBill Paul cur_tx->nge_mbuf = NULL; 1413ce4946daSBill Paul } 1414ce4946daSBill Paul 1415ce4946daSBill Paul sc->nge_cdata.nge_tx_cnt--; 1416ce4946daSBill Paul NGE_INC(idx, NGE_TX_LIST_CNT); 1417ce4946daSBill Paul ifp->if_timer = 0; 1418ce4946daSBill Paul } 1419ce4946daSBill Paul 1420ce4946daSBill Paul sc->nge_cdata.nge_tx_cons = idx; 1421ce4946daSBill Paul 1422ce4946daSBill Paul if (cur_tx != NULL) 1423ce4946daSBill Paul ifp->if_flags &= ~IFF_OACTIVE; 1424ce4946daSBill Paul 1425ce4946daSBill Paul return; 1426ce4946daSBill Paul } 1427ce4946daSBill Paul 1428ce4946daSBill Paul static void nge_tick(xsc) 1429ce4946daSBill Paul void *xsc; 1430ce4946daSBill Paul { 1431ce4946daSBill Paul struct nge_softc *sc; 1432ce4946daSBill Paul struct mii_data *mii; 1433ce4946daSBill Paul struct ifnet *ifp; 1434ce4946daSBill Paul int s; 1435ce4946daSBill Paul 1436ce4946daSBill Paul s = splimp(); 1437ce4946daSBill Paul 1438ce4946daSBill Paul sc = xsc; 1439ce4946daSBill Paul ifp = &sc->arpcom.ac_if; 1440ce4946daSBill Paul 1441ce4946daSBill Paul mii = device_get_softc(sc->nge_miibus); 1442ce4946daSBill Paul mii_tick(mii); 1443ce4946daSBill Paul 1444ce4946daSBill Paul if (!sc->nge_link) { 1445ce4946daSBill Paul if (mii->mii_media_status & IFM_ACTIVE && 1446ce4946daSBill Paul IFM_SUBTYPE(mii->mii_media_active) != IFM_NONE) { 1447ce4946daSBill Paul sc->nge_link++; 1448ce4946daSBill Paul if (IFM_SUBTYPE(mii->mii_media_active) == IFM_1000_TX) 1449ce4946daSBill Paul printf("nge%d: gigabit link up\n", 1450ce4946daSBill Paul sc->nge_unit); 1451ce4946daSBill Paul if (ifp->if_snd.ifq_head != NULL) 1452ce4946daSBill Paul nge_start(ifp); 1453ce4946daSBill Paul } else 1454ce4946daSBill Paul sc->nge_stat_ch = timeout(nge_tick, sc, hz); 1455ce4946daSBill Paul } 1456ce4946daSBill Paul 1457ce4946daSBill Paul 1458ce4946daSBill Paul splx(s); 1459ce4946daSBill Paul 1460ce4946daSBill Paul return; 1461ce4946daSBill Paul } 1462ce4946daSBill Paul 1463ce4946daSBill Paul static void nge_intr(arg) 1464ce4946daSBill Paul void *arg; 1465ce4946daSBill Paul { 1466ce4946daSBill Paul struct nge_softc *sc; 1467ce4946daSBill Paul struct ifnet *ifp; 1468ce4946daSBill Paul u_int32_t status; 1469ce4946daSBill Paul 1470ce4946daSBill Paul sc = arg; 1471ce4946daSBill Paul ifp = &sc->arpcom.ac_if; 1472ce4946daSBill Paul 1473ce4946daSBill Paul /* Supress unwanted interrupts */ 1474ce4946daSBill Paul if (!(ifp->if_flags & IFF_UP)) { 1475ce4946daSBill Paul nge_stop(sc); 1476ce4946daSBill Paul return; 1477ce4946daSBill Paul } 1478ce4946daSBill Paul 1479ce4946daSBill Paul /* Disable interrupts. */ 1480ce4946daSBill Paul CSR_WRITE_4(sc, NGE_IER, 0); 1481ce4946daSBill Paul 1482ce4946daSBill Paul for (;;) { 1483ce4946daSBill Paul /* Reading the ISR register clears all interrupts. */ 1484ce4946daSBill Paul status = CSR_READ_4(sc, NGE_ISR); 1485ce4946daSBill Paul 1486ce4946daSBill Paul if ((status & NGE_INTRS) == 0) 1487ce4946daSBill Paul break; 1488ce4946daSBill Paul 1489ce4946daSBill Paul if ((status & NGE_ISR_TX_DESC_OK) || 1490ce4946daSBill Paul (status & NGE_ISR_TX_ERR) || 1491ce4946daSBill Paul (status & NGE_ISR_TX_OK) || 1492ce4946daSBill Paul (status & NGE_ISR_TX_IDLE)) 1493ce4946daSBill Paul nge_txeof(sc); 1494ce4946daSBill Paul 1495ce4946daSBill Paul if ((status & NGE_ISR_RX_DESC_OK) || 1496248fa967SBill Paul (status & NGE_ISR_RX_ERR) || 14978ce3678aSBill Paul (status & NGE_ISR_RX_OFLOW) || 1498ce4946daSBill Paul (status & NGE_ISR_RX_OK)) 1499ce4946daSBill Paul nge_rxeof(sc); 15008ce3678aSBill Paul #ifdef notdef 1501248fa967SBill Paul if ((status & NGE_ISR_RX_OFLOW)) 1502ce4946daSBill Paul nge_rxeoc(sc); 15038ce3678aSBill Paul #endif 1504ce4946daSBill Paul if (status & NGE_ISR_SYSERR) { 1505ce4946daSBill Paul nge_reset(sc); 1506ce4946daSBill Paul ifp->if_flags &= ~IFF_RUNNING; 1507ce4946daSBill Paul nge_init(sc); 1508ce4946daSBill Paul } 1509ce4946daSBill Paul 1510ce4946daSBill Paul if (status & NGE_IMR_PHY_INTR) { 1511ce4946daSBill Paul sc->nge_link = 0; 1512ce4946daSBill Paul nge_tick(sc); 1513ce4946daSBill Paul } 1514ce4946daSBill Paul } 1515ce4946daSBill Paul 1516ce4946daSBill Paul /* Re-enable interrupts. */ 1517ce4946daSBill Paul CSR_WRITE_4(sc, NGE_IER, 1); 1518ce4946daSBill Paul 1519ce4946daSBill Paul if (ifp->if_snd.ifq_head != NULL) 1520ce4946daSBill Paul nge_start(ifp); 1521ce4946daSBill Paul 1522ce4946daSBill Paul return; 1523ce4946daSBill Paul } 1524ce4946daSBill Paul 1525ce4946daSBill Paul /* 1526ce4946daSBill Paul * Encapsulate an mbuf chain in a descriptor by coupling the mbuf data 1527ce4946daSBill Paul * pointers to the fragment pointers. 1528ce4946daSBill Paul */ 1529ce4946daSBill Paul static int nge_encap(sc, m_head, txidx) 1530ce4946daSBill Paul struct nge_softc *sc; 1531ce4946daSBill Paul struct mbuf *m_head; 1532ce4946daSBill Paul u_int32_t *txidx; 1533ce4946daSBill Paul { 1534ce4946daSBill Paul struct nge_desc *f = NULL; 1535ce4946daSBill Paul struct mbuf *m; 1536ce4946daSBill Paul int frag, cur, cnt = 0; 1537ce4946daSBill Paul struct ifvlan *ifv = NULL; 1538ce4946daSBill Paul 1539ce4946daSBill Paul if ((m_head->m_flags & (M_PROTO1|M_PKTHDR)) == (M_PROTO1|M_PKTHDR) && 1540ce4946daSBill Paul m_head->m_pkthdr.rcvif != NULL && 1541bbce7ebaSBrooks Davis m_head->m_pkthdr.rcvif->if_type == IFT_L2VLAN) 1542ce4946daSBill Paul ifv = m_head->m_pkthdr.rcvif->if_softc; 1543ce4946daSBill Paul 1544ce4946daSBill Paul /* 1545ce4946daSBill Paul * Start packing the mbufs in this chain into 1546ce4946daSBill Paul * the fragment pointers. Stop when we run out 1547ce4946daSBill Paul * of fragments or hit the end of the mbuf chain. 1548ce4946daSBill Paul */ 1549ce4946daSBill Paul m = m_head; 1550ce4946daSBill Paul cur = frag = *txidx; 1551ce4946daSBill Paul 1552ce4946daSBill Paul for (m = m_head; m != NULL; m = m->m_next) { 1553ce4946daSBill Paul if (m->m_len != 0) { 1554ce4946daSBill Paul if ((NGE_TX_LIST_CNT - 1555ce4946daSBill Paul (sc->nge_cdata.nge_tx_cnt + cnt)) < 2) 1556ce4946daSBill Paul return(ENOBUFS); 1557ce4946daSBill Paul f = &sc->nge_ldata->nge_tx_list[frag]; 1558ce4946daSBill Paul f->nge_ctl = NGE_CMDSTS_MORE | m->m_len; 1559ce4946daSBill Paul f->nge_ptr = vtophys(mtod(m, vm_offset_t)); 1560ce4946daSBill Paul if (cnt != 0) 1561ce4946daSBill Paul f->nge_ctl |= NGE_CMDSTS_OWN; 1562ce4946daSBill Paul cur = frag; 1563ce4946daSBill Paul NGE_INC(frag, NGE_TX_LIST_CNT); 1564ce4946daSBill Paul cnt++; 1565ce4946daSBill Paul } 1566ce4946daSBill Paul } 1567ce4946daSBill Paul 1568ce4946daSBill Paul if (m != NULL) 1569ce4946daSBill Paul return(ENOBUFS); 1570ce4946daSBill Paul 15711bacd83aSBill Paul sc->nge_ldata->nge_tx_list[*txidx].nge_extsts = 0; 1572ce4946daSBill Paul if (m_head->m_pkthdr.csum_flags) { 1573ce4946daSBill Paul if (m_head->m_pkthdr.csum_flags & CSUM_IP) 15741bacd83aSBill Paul sc->nge_ldata->nge_tx_list[*txidx].nge_extsts |= 1575ce4946daSBill Paul NGE_TXEXTSTS_IPCSUM; 1576ce4946daSBill Paul if (m_head->m_pkthdr.csum_flags & CSUM_TCP) 15771bacd83aSBill Paul sc->nge_ldata->nge_tx_list[*txidx].nge_extsts |= 1578ce4946daSBill Paul NGE_TXEXTSTS_TCPCSUM; 1579ce4946daSBill Paul if (m_head->m_pkthdr.csum_flags & CSUM_UDP) 15801bacd83aSBill Paul sc->nge_ldata->nge_tx_list[*txidx].nge_extsts |= 1581ce4946daSBill Paul NGE_TXEXTSTS_UDPCSUM; 1582ce4946daSBill Paul } 1583ce4946daSBill Paul 1584ce4946daSBill Paul if (ifv != NULL) { 1585ce4946daSBill Paul sc->nge_ldata->nge_tx_list[cur].nge_extsts |= 1586ce4946daSBill Paul (NGE_TXEXTSTS_VLANPKT|ifv->ifv_tag); 1587ce4946daSBill Paul } 1588ce4946daSBill Paul 1589ce4946daSBill Paul sc->nge_ldata->nge_tx_list[cur].nge_mbuf = m_head; 1590ce4946daSBill Paul sc->nge_ldata->nge_tx_list[cur].nge_ctl &= ~NGE_CMDSTS_MORE; 1591ce4946daSBill Paul sc->nge_ldata->nge_tx_list[*txidx].nge_ctl |= NGE_CMDSTS_OWN; 1592ce4946daSBill Paul sc->nge_cdata.nge_tx_cnt += cnt; 1593ce4946daSBill Paul *txidx = frag; 1594ce4946daSBill Paul 1595ce4946daSBill Paul return(0); 1596ce4946daSBill Paul } 1597ce4946daSBill Paul 1598ce4946daSBill Paul /* 1599ce4946daSBill Paul * Main transmit routine. To avoid having to do mbuf copies, we put pointers 1600ce4946daSBill Paul * to the mbuf data regions directly in the transmit lists. We also save a 1601ce4946daSBill Paul * copy of the pointers since the transmit list fragment pointers are 1602ce4946daSBill Paul * physical addresses. 1603ce4946daSBill Paul */ 1604ce4946daSBill Paul 1605ce4946daSBill Paul static void nge_start(ifp) 1606ce4946daSBill Paul struct ifnet *ifp; 1607ce4946daSBill Paul { 1608ce4946daSBill Paul struct nge_softc *sc; 1609ce4946daSBill Paul struct mbuf *m_head = NULL; 1610ce4946daSBill Paul u_int32_t idx; 1611ce4946daSBill Paul 1612ce4946daSBill Paul sc = ifp->if_softc; 1613ce4946daSBill Paul 1614ce4946daSBill Paul if (!sc->nge_link) 1615ce4946daSBill Paul return; 1616ce4946daSBill Paul 1617ce4946daSBill Paul idx = sc->nge_cdata.nge_tx_prod; 1618ce4946daSBill Paul 1619ce4946daSBill Paul if (ifp->if_flags & IFF_OACTIVE) 1620ce4946daSBill Paul return; 1621ce4946daSBill Paul 1622ce4946daSBill Paul while(sc->nge_ldata->nge_tx_list[idx].nge_mbuf == NULL) { 1623ce4946daSBill Paul IF_DEQUEUE(&ifp->if_snd, m_head); 1624ce4946daSBill Paul if (m_head == NULL) 1625ce4946daSBill Paul break; 1626ce4946daSBill Paul 1627ce4946daSBill Paul if (nge_encap(sc, m_head, &idx)) { 1628ce4946daSBill Paul IF_PREPEND(&ifp->if_snd, m_head); 1629ce4946daSBill Paul ifp->if_flags |= IFF_OACTIVE; 1630ce4946daSBill Paul break; 1631ce4946daSBill Paul } 1632ce4946daSBill Paul 1633ce4946daSBill Paul /* 1634ce4946daSBill Paul * If there's a BPF listener, bounce a copy of this frame 1635ce4946daSBill Paul * to him. 1636ce4946daSBill Paul */ 1637ce4946daSBill Paul if (ifp->if_bpf) 1638ce4946daSBill Paul bpf_mtap(ifp, m_head); 1639ce4946daSBill Paul 1640ce4946daSBill Paul } 1641ce4946daSBill Paul 1642ce4946daSBill Paul /* Transmit */ 1643ce4946daSBill Paul sc->nge_cdata.nge_tx_prod = idx; 1644ce4946daSBill Paul NGE_SETBIT(sc, NGE_CSR, NGE_CSR_TX_ENABLE); 1645ce4946daSBill Paul 1646ce4946daSBill Paul /* 1647ce4946daSBill Paul * Set a timeout in case the chip goes out to lunch. 1648ce4946daSBill Paul */ 1649ce4946daSBill Paul ifp->if_timer = 5; 1650ce4946daSBill Paul 1651ce4946daSBill Paul return; 1652ce4946daSBill Paul } 1653ce4946daSBill Paul 1654ce4946daSBill Paul static void nge_init(xsc) 1655ce4946daSBill Paul void *xsc; 1656ce4946daSBill Paul { 1657ce4946daSBill Paul struct nge_softc *sc = xsc; 1658ce4946daSBill Paul struct ifnet *ifp = &sc->arpcom.ac_if; 1659ce4946daSBill Paul struct mii_data *mii; 1660ce4946daSBill Paul int s; 1661ce4946daSBill Paul 1662ce4946daSBill Paul if (ifp->if_flags & IFF_RUNNING) 1663ce4946daSBill Paul return; 1664ce4946daSBill Paul 1665ce4946daSBill Paul s = splimp(); 1666ce4946daSBill Paul 1667ce4946daSBill Paul /* 1668ce4946daSBill Paul * Cancel pending I/O and free all RX/TX buffers. 1669ce4946daSBill Paul */ 1670ce4946daSBill Paul nge_stop(sc); 1671ce4946daSBill Paul 1672ce4946daSBill Paul mii = device_get_softc(sc->nge_miibus); 1673ce4946daSBill Paul 1674ce4946daSBill Paul /* Set MAC address */ 1675ce4946daSBill Paul CSR_WRITE_4(sc, NGE_RXFILT_CTL, NGE_FILTADDR_PAR0); 1676ce4946daSBill Paul CSR_WRITE_4(sc, NGE_RXFILT_DATA, 1677ce4946daSBill Paul ((u_int16_t *)sc->arpcom.ac_enaddr)[0]); 1678ce4946daSBill Paul CSR_WRITE_4(sc, NGE_RXFILT_CTL, NGE_FILTADDR_PAR1); 1679ce4946daSBill Paul CSR_WRITE_4(sc, NGE_RXFILT_DATA, 1680ce4946daSBill Paul ((u_int16_t *)sc->arpcom.ac_enaddr)[1]); 1681ce4946daSBill Paul CSR_WRITE_4(sc, NGE_RXFILT_CTL, NGE_FILTADDR_PAR2); 1682ce4946daSBill Paul CSR_WRITE_4(sc, NGE_RXFILT_DATA, 1683ce4946daSBill Paul ((u_int16_t *)sc->arpcom.ac_enaddr)[2]); 1684ce4946daSBill Paul 1685ce4946daSBill Paul /* Init circular RX list. */ 1686ce4946daSBill Paul if (nge_list_rx_init(sc) == ENOBUFS) { 1687ce4946daSBill Paul printf("nge%d: initialization failed: no " 1688ce4946daSBill Paul "memory for rx buffers\n", sc->nge_unit); 1689ce4946daSBill Paul nge_stop(sc); 1690ce4946daSBill Paul (void)splx(s); 1691ce4946daSBill Paul return; 1692ce4946daSBill Paul } 1693ce4946daSBill Paul 1694ce4946daSBill Paul /* 1695ce4946daSBill Paul * Init tx descriptors. 1696ce4946daSBill Paul */ 1697ce4946daSBill Paul nge_list_tx_init(sc); 1698ce4946daSBill Paul 1699ce4946daSBill Paul /* 1700ce4946daSBill Paul * For the NatSemi chip, we have to explicitly enable the 1701ce4946daSBill Paul * reception of ARP frames, as well as turn on the 'perfect 1702ce4946daSBill Paul * match' filter where we store the station address, otherwise 1703ce4946daSBill Paul * we won't receive unicasts meant for this host. 1704ce4946daSBill Paul */ 1705ce4946daSBill Paul NGE_SETBIT(sc, NGE_RXFILT_CTL, NGE_RXFILTCTL_ARP); 1706ce4946daSBill Paul NGE_SETBIT(sc, NGE_RXFILT_CTL, NGE_RXFILTCTL_PERFECT); 1707ce4946daSBill Paul 1708ce4946daSBill Paul /* If we want promiscuous mode, set the allframes bit. */ 1709ce4946daSBill Paul if (ifp->if_flags & IFF_PROMISC) { 1710ce4946daSBill Paul NGE_SETBIT(sc, NGE_RXFILT_CTL, NGE_RXFILTCTL_ALLPHYS); 1711ce4946daSBill Paul } else { 1712ce4946daSBill Paul NGE_CLRBIT(sc, NGE_RXFILT_CTL, NGE_RXFILTCTL_ALLPHYS); 1713ce4946daSBill Paul } 1714ce4946daSBill Paul 1715ce4946daSBill Paul /* 1716ce4946daSBill Paul * Set the capture broadcast bit to capture broadcast frames. 1717ce4946daSBill Paul */ 1718ce4946daSBill Paul if (ifp->if_flags & IFF_BROADCAST) { 1719ce4946daSBill Paul NGE_SETBIT(sc, NGE_RXFILT_CTL, NGE_RXFILTCTL_BROAD); 1720ce4946daSBill Paul } else { 1721ce4946daSBill Paul NGE_CLRBIT(sc, NGE_RXFILT_CTL, NGE_RXFILTCTL_BROAD); 1722ce4946daSBill Paul } 1723ce4946daSBill Paul 1724ce4946daSBill Paul /* 1725ce4946daSBill Paul * Load the multicast filter. 1726ce4946daSBill Paul */ 1727ce4946daSBill Paul nge_setmulti(sc); 1728ce4946daSBill Paul 1729ce4946daSBill Paul /* Turn the receive filter on */ 1730ce4946daSBill Paul NGE_SETBIT(sc, NGE_RXFILT_CTL, NGE_RXFILTCTL_ENABLE); 1731ce4946daSBill Paul 1732ce4946daSBill Paul /* 1733ce4946daSBill Paul * Load the address of the RX and TX lists. 1734ce4946daSBill Paul */ 1735ce4946daSBill Paul CSR_WRITE_4(sc, NGE_RX_LISTPTR, 1736ce4946daSBill Paul vtophys(&sc->nge_ldata->nge_rx_list[0])); 1737ce4946daSBill Paul CSR_WRITE_4(sc, NGE_TX_LISTPTR, 1738ce4946daSBill Paul vtophys(&sc->nge_ldata->nge_tx_list[0])); 1739ce4946daSBill Paul 1740ce4946daSBill Paul /* Set RX configuration */ 1741ce4946daSBill Paul CSR_WRITE_4(sc, NGE_RX_CFG, NGE_RXCFG); 1742ce4946daSBill Paul /* 1743ce4946daSBill Paul * Enable hardware checksum validation for all IPv4 1744ce4946daSBill Paul * packets, do not reject packets with bad checksums. 1745ce4946daSBill Paul */ 1746ce4946daSBill Paul CSR_WRITE_4(sc, NGE_VLAN_IP_RXCTL, NGE_VIPRXCTL_IPCSUM_ENB); 1747ce4946daSBill Paul 1748ce4946daSBill Paul /* 17499d4fe4b2SBrooks Davis * Tell the chip to detect and strip VLAN tag info from 17509d4fe4b2SBrooks Davis * received frames. The tag will be provided in the extsts 17519d4fe4b2SBrooks Davis * field in the RX descriptors. 1752ce4946daSBill Paul */ 1753ce4946daSBill Paul NGE_SETBIT(sc, NGE_VLAN_IP_RXCTL, 1754ce4946daSBill Paul NGE_VIPRXCTL_TAG_DETECT_ENB|NGE_VIPRXCTL_TAG_STRIP_ENB); 1755ce4946daSBill Paul 1756ce4946daSBill Paul /* Set TX configuration */ 1757ce4946daSBill Paul CSR_WRITE_4(sc, NGE_TX_CFG, NGE_TXCFG); 1758ce4946daSBill Paul 1759ce4946daSBill Paul /* 1760ce4946daSBill Paul * Enable TX IPv4 checksumming on a per-packet basis. 1761ce4946daSBill Paul */ 1762ce4946daSBill Paul CSR_WRITE_4(sc, NGE_VLAN_IP_TXCTL, NGE_VIPTXCTL_CSUM_PER_PKT); 1763ce4946daSBill Paul 1764ce4946daSBill Paul /* 17659d4fe4b2SBrooks Davis * Tell the chip to insert VLAN tags on a per-packet basis as 17669d4fe4b2SBrooks Davis * dictated by the code in the frame encapsulation routine. 1767ce4946daSBill Paul */ 1768ce4946daSBill Paul NGE_SETBIT(sc, NGE_VLAN_IP_TXCTL, NGE_VIPTXCTL_TAG_PER_PKT); 1769ce4946daSBill Paul 1770ce4946daSBill Paul /* Set full/half duplex mode. */ 1771ce4946daSBill Paul if ((mii->mii_media_active & IFM_GMASK) == IFM_FDX) { 1772ce4946daSBill Paul NGE_SETBIT(sc, NGE_TX_CFG, 1773ce4946daSBill Paul (NGE_TXCFG_IGN_HBEAT|NGE_TXCFG_IGN_CARR)); 1774ce4946daSBill Paul NGE_SETBIT(sc, NGE_RX_CFG, NGE_RXCFG_RX_FDX); 1775ce4946daSBill Paul } else { 1776ce4946daSBill Paul NGE_CLRBIT(sc, NGE_TX_CFG, 1777ce4946daSBill Paul (NGE_TXCFG_IGN_HBEAT|NGE_TXCFG_IGN_CARR)); 1778ce4946daSBill Paul NGE_CLRBIT(sc, NGE_RX_CFG, NGE_RXCFG_RX_FDX); 1779ce4946daSBill Paul } 1780ce4946daSBill Paul 1781ce4946daSBill Paul /* 1782ce4946daSBill Paul * Enable the delivery of PHY interrupts based on 178323d3a203SBill Paul * link/speed/duplex status changes. Also enable the 178423d3a203SBill Paul * extsts field in the DMA descriptors (needed for 178523d3a203SBill Paul * TCP/IP checksum offload on transmit). 1786ce4946daSBill Paul */ 17872ce0498bSBill Paul NGE_SETBIT(sc, NGE_CFG, NGE_CFG_PHYINTR_SPD| 178823d3a203SBill Paul NGE_CFG_PHYINTR_LNK|NGE_CFG_PHYINTR_DUP|NGE_CFG_EXTSTS_ENB); 1789ce4946daSBill Paul 1790ce4946daSBill Paul /* 1791962315f6SBill Paul * Configure interrupt holdoff (moderation). We can 1792962315f6SBill Paul * have the chip delay interrupt delivery for a certain 1793962315f6SBill Paul * period. Units are in 100us, and the max setting 1794962315f6SBill Paul * is 25500us (0xFF x 100us). Default is a 100us holdoff. 1795962315f6SBill Paul */ 1796962315f6SBill Paul CSR_WRITE_4(sc, NGE_IHR, 0x01); 1797962315f6SBill Paul 1798962315f6SBill Paul /* 1799ce4946daSBill Paul * Enable interrupts. 1800ce4946daSBill Paul */ 1801ce4946daSBill Paul CSR_WRITE_4(sc, NGE_IMR, NGE_INTRS); 1802ce4946daSBill Paul CSR_WRITE_4(sc, NGE_IER, 1); 1803ce4946daSBill Paul 1804ce4946daSBill Paul /* Enable receiver and transmitter. */ 1805ce4946daSBill Paul NGE_CLRBIT(sc, NGE_CSR, NGE_CSR_TX_DISABLE|NGE_CSR_RX_DISABLE); 1806ce4946daSBill Paul NGE_SETBIT(sc, NGE_CSR, NGE_CSR_RX_ENABLE); 1807ce4946daSBill Paul 1808ce4946daSBill Paul nge_ifmedia_upd(ifp); 1809ce4946daSBill Paul 1810ce4946daSBill Paul ifp->if_flags |= IFF_RUNNING; 1811ce4946daSBill Paul ifp->if_flags &= ~IFF_OACTIVE; 1812ce4946daSBill Paul 1813ce4946daSBill Paul (void)splx(s); 1814ce4946daSBill Paul 1815ce4946daSBill Paul return; 1816ce4946daSBill Paul } 1817ce4946daSBill Paul 1818ce4946daSBill Paul /* 1819ce4946daSBill Paul * Set media options. 1820ce4946daSBill Paul */ 1821ce4946daSBill Paul static int nge_ifmedia_upd(ifp) 1822ce4946daSBill Paul struct ifnet *ifp; 1823ce4946daSBill Paul { 1824ce4946daSBill Paul struct nge_softc *sc; 1825ce4946daSBill Paul struct mii_data *mii; 1826ce4946daSBill Paul 1827ce4946daSBill Paul sc = ifp->if_softc; 1828ce4946daSBill Paul 1829ce4946daSBill Paul mii = device_get_softc(sc->nge_miibus); 1830ce4946daSBill Paul sc->nge_link = 0; 1831ce4946daSBill Paul if (mii->mii_instance) { 1832ce4946daSBill Paul struct mii_softc *miisc; 1833ce4946daSBill Paul for (miisc = LIST_FIRST(&mii->mii_phys); miisc != NULL; 1834ce4946daSBill Paul miisc = LIST_NEXT(miisc, mii_list)) 1835ce4946daSBill Paul mii_phy_reset(miisc); 1836ce4946daSBill Paul } 1837ce4946daSBill Paul mii_mediachg(mii); 1838ce4946daSBill Paul 1839ce4946daSBill Paul return(0); 1840ce4946daSBill Paul } 1841ce4946daSBill Paul 1842ce4946daSBill Paul /* 1843ce4946daSBill Paul * Report current media status. 1844ce4946daSBill Paul */ 1845ce4946daSBill Paul static void nge_ifmedia_sts(ifp, ifmr) 1846ce4946daSBill Paul struct ifnet *ifp; 1847ce4946daSBill Paul struct ifmediareq *ifmr; 1848ce4946daSBill Paul { 1849ce4946daSBill Paul struct nge_softc *sc; 1850ce4946daSBill Paul struct mii_data *mii; 1851ce4946daSBill Paul 1852ce4946daSBill Paul sc = ifp->if_softc; 1853ce4946daSBill Paul 1854ce4946daSBill Paul mii = device_get_softc(sc->nge_miibus); 1855ce4946daSBill Paul mii_pollstat(mii); 1856ce4946daSBill Paul ifmr->ifm_active = mii->mii_media_active; 1857ce4946daSBill Paul ifmr->ifm_status = mii->mii_media_status; 1858ce4946daSBill Paul 1859ce4946daSBill Paul return; 1860ce4946daSBill Paul } 1861ce4946daSBill Paul 1862ce4946daSBill Paul static int nge_ioctl(ifp, command, data) 1863ce4946daSBill Paul struct ifnet *ifp; 1864ce4946daSBill Paul u_long command; 1865ce4946daSBill Paul caddr_t data; 1866ce4946daSBill Paul { 1867ce4946daSBill Paul struct nge_softc *sc = ifp->if_softc; 1868ce4946daSBill Paul struct ifreq *ifr = (struct ifreq *) data; 1869ce4946daSBill Paul struct mii_data *mii; 1870ce4946daSBill Paul int s, error = 0; 1871ce4946daSBill Paul 1872ce4946daSBill Paul s = splimp(); 1873ce4946daSBill Paul 1874ce4946daSBill Paul switch(command) { 1875ce4946daSBill Paul case SIOCSIFADDR: 1876ce4946daSBill Paul case SIOCGIFADDR: 1877ce4946daSBill Paul error = ether_ioctl(ifp, command, data); 1878ce4946daSBill Paul break; 1879ce4946daSBill Paul case SIOCSIFMTU: 1880ce4946daSBill Paul if (ifr->ifr_mtu > NGE_JUMBO_MTU) 1881ce4946daSBill Paul error = EINVAL; 1882cb2f755cSBill Paul else { 1883ce4946daSBill Paul ifp->if_mtu = ifr->ifr_mtu; 1884cb2f755cSBill Paul /* 1885cb2f755cSBill Paul * Workaround: if the MTU is larger than 1886cb2f755cSBill Paul * 8152 (TX FIFO size minus 64 minus 18), turn off 1887cb2f755cSBill Paul * TX checksum offloading. 1888cb2f755cSBill Paul */ 188980782fbfSBill Paul if (ifr->ifr_mtu >= 8152) 1890cb2f755cSBill Paul ifp->if_hwassist = 0; 1891cb2f755cSBill Paul else 1892cb2f755cSBill Paul ifp->if_hwassist = NGE_CSUM_FEATURES; 1893cb2f755cSBill Paul } 1894ce4946daSBill Paul break; 1895ce4946daSBill Paul case SIOCSIFFLAGS: 1896ce4946daSBill Paul if (ifp->if_flags & IFF_UP) { 1897ce4946daSBill Paul if (ifp->if_flags & IFF_RUNNING && 1898ce4946daSBill Paul ifp->if_flags & IFF_PROMISC && 1899ce4946daSBill Paul !(sc->nge_if_flags & IFF_PROMISC)) { 1900ce4946daSBill Paul NGE_SETBIT(sc, NGE_RXFILT_CTL, 1901ce4946daSBill Paul NGE_RXFILTCTL_ALLPHYS| 1902ce4946daSBill Paul NGE_RXFILTCTL_ALLMULTI); 1903ce4946daSBill Paul } else if (ifp->if_flags & IFF_RUNNING && 1904ce4946daSBill Paul !(ifp->if_flags & IFF_PROMISC) && 1905ce4946daSBill Paul sc->nge_if_flags & IFF_PROMISC) { 1906ce4946daSBill Paul NGE_CLRBIT(sc, NGE_RXFILT_CTL, 1907ce4946daSBill Paul NGE_RXFILTCTL_ALLPHYS); 1908ce4946daSBill Paul if (!(ifp->if_flags & IFF_ALLMULTI)) 1909ce4946daSBill Paul NGE_CLRBIT(sc, NGE_RXFILT_CTL, 1910ce4946daSBill Paul NGE_RXFILTCTL_ALLMULTI); 1911ce4946daSBill Paul } else { 1912ce4946daSBill Paul ifp->if_flags &= ~IFF_RUNNING; 1913ce4946daSBill Paul nge_init(sc); 1914ce4946daSBill Paul } 1915ce4946daSBill Paul } else { 1916ce4946daSBill Paul if (ifp->if_flags & IFF_RUNNING) 1917ce4946daSBill Paul nge_stop(sc); 1918ce4946daSBill Paul } 1919ce4946daSBill Paul sc->nge_if_flags = ifp->if_flags; 1920ce4946daSBill Paul error = 0; 1921ce4946daSBill Paul break; 1922ce4946daSBill Paul case SIOCADDMULTI: 1923ce4946daSBill Paul case SIOCDELMULTI: 1924ce4946daSBill Paul nge_setmulti(sc); 1925ce4946daSBill Paul error = 0; 1926ce4946daSBill Paul break; 1927ce4946daSBill Paul case SIOCGIFMEDIA: 1928ce4946daSBill Paul case SIOCSIFMEDIA: 1929ce4946daSBill Paul mii = device_get_softc(sc->nge_miibus); 1930ce4946daSBill Paul error = ifmedia_ioctl(ifp, ifr, &mii->mii_media, command); 1931ce4946daSBill Paul break; 1932ce4946daSBill Paul default: 1933ce4946daSBill Paul error = EINVAL; 1934ce4946daSBill Paul break; 1935ce4946daSBill Paul } 1936ce4946daSBill Paul 1937ce4946daSBill Paul (void)splx(s); 1938ce4946daSBill Paul 1939ce4946daSBill Paul return(error); 1940ce4946daSBill Paul } 1941ce4946daSBill Paul 1942ce4946daSBill Paul static void nge_watchdog(ifp) 1943ce4946daSBill Paul struct ifnet *ifp; 1944ce4946daSBill Paul { 1945ce4946daSBill Paul struct nge_softc *sc; 1946ce4946daSBill Paul 1947ce4946daSBill Paul sc = ifp->if_softc; 1948ce4946daSBill Paul 1949ce4946daSBill Paul ifp->if_oerrors++; 1950ce4946daSBill Paul printf("nge%d: watchdog timeout\n", sc->nge_unit); 1951ce4946daSBill Paul 1952ce4946daSBill Paul nge_stop(sc); 1953ce4946daSBill Paul nge_reset(sc); 1954ce4946daSBill Paul ifp->if_flags &= ~IFF_RUNNING; 1955ce4946daSBill Paul nge_init(sc); 1956ce4946daSBill Paul 1957ce4946daSBill Paul if (ifp->if_snd.ifq_head != NULL) 1958ce4946daSBill Paul nge_start(ifp); 1959ce4946daSBill Paul 1960ce4946daSBill Paul return; 1961ce4946daSBill Paul } 1962ce4946daSBill Paul 1963ce4946daSBill Paul /* 1964ce4946daSBill Paul * Stop the adapter and free any mbufs allocated to the 1965ce4946daSBill Paul * RX and TX lists. 1966ce4946daSBill Paul */ 1967ce4946daSBill Paul static void nge_stop(sc) 1968ce4946daSBill Paul struct nge_softc *sc; 1969ce4946daSBill Paul { 1970ce4946daSBill Paul register int i; 1971ce4946daSBill Paul struct ifnet *ifp; 1972ce4946daSBill Paul struct ifmedia_entry *ifm; 1973ce4946daSBill Paul struct mii_data *mii; 1974ce4946daSBill Paul int mtmp, itmp; 1975ce4946daSBill Paul 1976ce4946daSBill Paul ifp = &sc->arpcom.ac_if; 1977ce4946daSBill Paul ifp->if_timer = 0; 1978ce4946daSBill Paul mii = device_get_softc(sc->nge_miibus); 1979ce4946daSBill Paul 1980ce4946daSBill Paul untimeout(nge_tick, sc, sc->nge_stat_ch); 1981ce4946daSBill Paul CSR_WRITE_4(sc, NGE_IER, 0); 1982ce4946daSBill Paul CSR_WRITE_4(sc, NGE_IMR, 0); 1983ce4946daSBill Paul NGE_SETBIT(sc, NGE_CSR, NGE_CSR_TX_DISABLE|NGE_CSR_RX_DISABLE); 1984ce4946daSBill Paul DELAY(1000); 1985ce4946daSBill Paul CSR_WRITE_4(sc, NGE_TX_LISTPTR, 0); 1986ce4946daSBill Paul CSR_WRITE_4(sc, NGE_RX_LISTPTR, 0); 1987ce4946daSBill Paul 1988ce4946daSBill Paul /* 1989ce4946daSBill Paul * Isolate/power down the PHY, but leave the media selection 1990ce4946daSBill Paul * unchanged so that things will be put back to normal when 1991ce4946daSBill Paul * we bring the interface back up. 1992ce4946daSBill Paul */ 1993ce4946daSBill Paul itmp = ifp->if_flags; 1994ce4946daSBill Paul ifp->if_flags |= IFF_UP; 1995ce4946daSBill Paul ifm = mii->mii_media.ifm_cur; 1996ce4946daSBill Paul mtmp = ifm->ifm_media; 1997ce4946daSBill Paul ifm->ifm_media = IFM_ETHER|IFM_NONE; 1998ce4946daSBill Paul mii_mediachg(mii); 1999ce4946daSBill Paul ifm->ifm_media = mtmp; 2000ce4946daSBill Paul ifp->if_flags = itmp; 2001ce4946daSBill Paul 2002ce4946daSBill Paul sc->nge_link = 0; 2003ce4946daSBill Paul 2004ce4946daSBill Paul /* 2005ce4946daSBill Paul * Free data in the RX lists. 2006ce4946daSBill Paul */ 2007ce4946daSBill Paul for (i = 0; i < NGE_RX_LIST_CNT; i++) { 2008ce4946daSBill Paul if (sc->nge_ldata->nge_rx_list[i].nge_mbuf != NULL) { 2009ce4946daSBill Paul m_freem(sc->nge_ldata->nge_rx_list[i].nge_mbuf); 2010ce4946daSBill Paul sc->nge_ldata->nge_rx_list[i].nge_mbuf = NULL; 2011ce4946daSBill Paul } 2012ce4946daSBill Paul } 2013ce4946daSBill Paul bzero((char *)&sc->nge_ldata->nge_rx_list, 2014ce4946daSBill Paul sizeof(sc->nge_ldata->nge_rx_list)); 2015ce4946daSBill Paul 2016ce4946daSBill Paul /* 2017ce4946daSBill Paul * Free the TX list buffers. 2018ce4946daSBill Paul */ 2019ce4946daSBill Paul for (i = 0; i < NGE_TX_LIST_CNT; i++) { 2020ce4946daSBill Paul if (sc->nge_ldata->nge_tx_list[i].nge_mbuf != NULL) { 2021ce4946daSBill Paul m_freem(sc->nge_ldata->nge_tx_list[i].nge_mbuf); 2022ce4946daSBill Paul sc->nge_ldata->nge_tx_list[i].nge_mbuf = NULL; 2023ce4946daSBill Paul } 2024ce4946daSBill Paul } 2025ce4946daSBill Paul 2026ce4946daSBill Paul bzero((char *)&sc->nge_ldata->nge_tx_list, 2027ce4946daSBill Paul sizeof(sc->nge_ldata->nge_tx_list)); 2028ce4946daSBill Paul 2029ce4946daSBill Paul ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE); 2030ce4946daSBill Paul 2031ce4946daSBill Paul return; 2032ce4946daSBill Paul } 2033ce4946daSBill Paul 2034ce4946daSBill Paul /* 2035ce4946daSBill Paul * Stop all chip I/O so that the kernel's probe routines don't 2036ce4946daSBill Paul * get confused by errant DMAs when rebooting. 2037ce4946daSBill Paul */ 2038ce4946daSBill Paul static void nge_shutdown(dev) 2039ce4946daSBill Paul device_t dev; 2040ce4946daSBill Paul { 2041ce4946daSBill Paul struct nge_softc *sc; 2042ce4946daSBill Paul 2043ce4946daSBill Paul sc = device_get_softc(dev); 2044ce4946daSBill Paul 2045ce4946daSBill Paul nge_reset(sc); 2046ce4946daSBill Paul nge_stop(sc); 2047ce4946daSBill Paul 2048ce4946daSBill Paul return; 2049ce4946daSBill Paul } 2050