1 /* $NetBSD: if_aue.c,v 1.80 2002/07/25 06:45:38 matt Exp $ */ 2 /* 3 * Copyright (c) 1997, 1998, 1999, 2000 4 * Bill Paul <wpaul@ee.columbia.edu>. All rights reserved. 5 * 6 * Redistribution and use in source and binary forms, with or without 7 * modification, are permitted provided that the following conditions 8 * are met: 9 * 1. Redistributions of source code must retain the above copyright 10 * notice, this list of conditions and the following disclaimer. 11 * 2. Redistributions in binary form must reproduce the above copyright 12 * notice, this list of conditions and the following disclaimer in the 13 * documentation and/or other materials provided with the distribution. 14 * 3. All advertising materials mentioning features or use of this software 15 * must display the following acknowledgement: 16 * This product includes software developed by Bill Paul. 17 * 4. Neither the name of the author nor the names of any co-contributors 18 * may be used to endorse or promote products derived from this software 19 * without specific prior written permission. 20 * 21 * THIS SOFTWARE IS PROVIDED BY Bill Paul AND CONTRIBUTORS ``AS IS'' AND 22 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 23 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 24 * ARE DISCLAIMED. IN NO EVENT SHALL Bill Paul OR THE VOICES IN HIS HEAD 25 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 26 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 27 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 28 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 29 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 30 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF 31 * THE POSSIBILITY OF SUCH DAMAGE. 32 * 33 * $FreeBSD: src/sys/dev/usb/if_aue.c,v 1.11 2000/01/14 01:36:14 wpaul Exp $ 34 */ 35 36 /* 37 * ADMtek AN986 Pegasus and AN8511 Pegasus II USB to ethernet driver. 38 * Datasheet is available from http://www.admtek.com.tw. 39 * 40 * Written by Bill Paul <wpaul@ee.columbia.edu> 41 * Electrical Engineering Department 42 * Columbia University, New York City 43 */ 44 45 /* 46 * The Pegasus chip uses four USB "endpoints" to provide 10/100 ethernet 47 * support: the control endpoint for reading/writing registers, burst 48 * read endpoint for packet reception, burst write for packet transmission 49 * and one for "interrupts." The chip uses the same RX filter scheme 50 * as the other ADMtek ethernet parts: one perfect filter entry for the 51 * the station address and a 64-bit multicast hash table. The chip supports 52 * both MII and HomePNA attachments. 53 * 54 * Since the maximum data transfer speed of USB is supposed to be 12Mbps, 55 * you're never really going to get 100Mbps speeds from this device. I 56 * think the idea is to allow the device to connect to 10 or 100Mbps 57 * networks, not necessarily to provide 100Mbps performance. Also, since 58 * the controller uses an external PHY chip, it's possible that board 59 * designers might simply choose a 10Mbps PHY. 60 * 61 * Registers are accessed using usbd_do_request(). Packet transfers are 62 * done using usbd_transfer() and friends. 63 */ 64 65 /* 66 * Ported to NetBSD and somewhat rewritten by Lennart Augustsson. 67 */ 68 69 /* 70 * TODO: 71 * better error messages from rxstat 72 * split out if_auevar.h 73 * add thread to avoid register reads from interrupt context 74 * more error checks 75 * investigate short rx problem 76 * proper cleanup on errors 77 */ 78 79 #include <sys/cdefs.h> 80 __KERNEL_RCSID(0, "$NetBSD: if_aue.c,v 1.80 2002/07/25 06:45:38 matt Exp $"); 81 82 #if defined(__NetBSD__) 83 #include "opt_inet.h" 84 #include "opt_ns.h" 85 #include "bpfilter.h" 86 #include "rnd.h" 87 #elif defined(__OpenBSD__) 88 #include "bpfilter.h" 89 #endif /* defined(__OpenBSD__) */ 90 91 #include <sys/param.h> 92 #include <sys/systm.h> 93 #include <sys/sockio.h> 94 #include <sys/lock.h> 95 #include <sys/mbuf.h> 96 #include <sys/malloc.h> 97 #include <sys/kernel.h> 98 #include <sys/socket.h> 99 100 #include <sys/device.h> 101 #if NRND > 0 102 #include <sys/rnd.h> 103 #endif 104 105 #include <net/if.h> 106 #if defined(__NetBSD__) 107 #include <net/if_arp.h> 108 #endif 109 #include <net/if_dl.h> 110 #include <net/if_media.h> 111 112 #define BPF_MTAP(ifp, m) bpf_mtap((ifp)->if_bpf, (m)) 113 114 #if NBPFILTER > 0 115 #include <net/bpf.h> 116 #endif 117 118 #if defined(__NetBSD__) 119 #include <net/if_ether.h> 120 #ifdef INET 121 #include <netinet/in.h> 122 #include <netinet/if_inarp.h> 123 #endif 124 #endif /* defined(__NetBSD__) */ 125 126 #if defined(__OpenBSD__) 127 #ifdef INET 128 #include <netinet/in.h> 129 #include <netinet/in_systm.h> 130 #include <netinet/in_var.h> 131 #include <netinet/ip.h> 132 #include <netinet/if_ether.h> 133 #endif 134 #endif /* defined(__OpenBSD__) */ 135 136 #ifdef NS 137 #include <netns/ns.h> 138 #include <netns/ns_if.h> 139 #endif 140 141 #include <dev/mii/mii.h> 142 #include <dev/mii/miivar.h> 143 144 #include <dev/usb/usb.h> 145 #include <dev/usb/usbdi.h> 146 #include <dev/usb/usbdi_util.h> 147 #include <dev/usb/usbdevs.h> 148 149 #include <dev/usb/if_auereg.h> 150 151 #ifdef AUE_DEBUG 152 #define DPRINTF(x) if (auedebug) logprintf x 153 #define DPRINTFN(n,x) if (auedebug >= (n)) logprintf x 154 int auedebug = 0; 155 #else 156 #define DPRINTF(x) 157 #define DPRINTFN(n,x) 158 #endif 159 160 /* 161 * Various supported device vendors/products. 162 */ 163 struct aue_type { 164 struct usb_devno aue_dev; 165 u_int16_t aue_flags; 166 #define LSYS 0x0001 /* use Linksys reset */ 167 #define PNA 0x0002 /* has Home PNA */ 168 #define PII 0x0004 /* Pegasus II chip */ 169 }; 170 171 Static const struct aue_type aue_devs[] = { 172 {{ USB_VENDOR_3COM, USB_PRODUCT_3COM_3C460B}, PII }, 173 {{ USB_VENDOR_ABOCOM, USB_PRODUCT_ABOCOM_XX1}, PNA|PII }, 174 {{ USB_VENDOR_ABOCOM, USB_PRODUCT_ABOCOM_XX2}, PII }, 175 {{ USB_VENDOR_ABOCOM, USB_PRODUCT_ABOCOM_UFE1000}, LSYS }, 176 {{ USB_VENDOR_ABOCOM, USB_PRODUCT_ABOCOM_XX4}, PNA }, 177 {{ USB_VENDOR_ABOCOM, USB_PRODUCT_ABOCOM_XX5}, PNA }, 178 {{ USB_VENDOR_ABOCOM, USB_PRODUCT_ABOCOM_XX6}, PII }, 179 {{ USB_VENDOR_ABOCOM, USB_PRODUCT_ABOCOM_XX7}, PII }, 180 {{ USB_VENDOR_ABOCOM, USB_PRODUCT_ABOCOM_XX8}, PII }, 181 {{ USB_VENDOR_ABOCOM, USB_PRODUCT_ABOCOM_XX9}, PNA }, 182 {{ USB_VENDOR_ABOCOM, USB_PRODUCT_ABOCOM_XX10}, 0 }, 183 {{ USB_VENDOR_ABOCOM, USB_PRODUCT_ABOCOM_DSB650TX_PNA}, 0 }, 184 {{ USB_VENDOR_ACCTON, USB_PRODUCT_ACCTON_USB320_EC}, 0 }, 185 {{ USB_VENDOR_ACCTON, USB_PRODUCT_ACCTON_SS1001}, PII }, 186 {{ USB_VENDOR_ADMTEK, USB_PRODUCT_ADMTEK_PEGASUS}, PNA }, 187 {{ USB_VENDOR_ADMTEK, USB_PRODUCT_ADMTEK_PEGASUSII}, PII }, 188 {{ USB_VENDOR_BELKIN, USB_PRODUCT_BELKIN_USB2LAN}, PII }, 189 {{ USB_VENDOR_BILLIONTON, USB_PRODUCT_BILLIONTON_USB100}, 0 }, 190 {{ USB_VENDOR_BILLIONTON, USB_PRODUCT_BILLIONTON_USBLP100}, PNA }, 191 {{ USB_VENDOR_BILLIONTON, USB_PRODUCT_BILLIONTON_USBEL100}, 0 }, 192 {{ USB_VENDOR_BILLIONTON, USB_PRODUCT_BILLIONTON_USBE100}, PII }, 193 {{ USB_VENDOR_COREGA, USB_PRODUCT_COREGA_FETHER_USB_TX}, 0 }, 194 {{ USB_VENDOR_COREGA, USB_PRODUCT_COREGA_FETHER_USB_TXS},PII }, 195 {{ USB_VENDOR_DLINK, USB_PRODUCT_DLINK_DSB650TX4}, LSYS|PII }, 196 {{ USB_VENDOR_DLINK, USB_PRODUCT_DLINK_DSB650TX1}, LSYS }, 197 {{ USB_VENDOR_DLINK, USB_PRODUCT_DLINK_DSB650TX}, LSYS }, 198 {{ USB_VENDOR_DLINK, USB_PRODUCT_DLINK_DSB650TX_PNA}, PNA }, 199 {{ USB_VENDOR_DLINK, USB_PRODUCT_DLINK_DSB650TX3}, LSYS|PII }, 200 {{ USB_VENDOR_DLINK, USB_PRODUCT_DLINK_DSB650TX2}, LSYS|PII }, 201 {{ USB_VENDOR_DLINK, USB_PRODUCT_DLINK_DSB650}, 0 }, 202 {{ USB_VENDOR_ELECOM, USB_PRODUCT_ELECOM_LDUSBTX0}, 0 }, 203 {{ USB_VENDOR_ELECOM, USB_PRODUCT_ELECOM_LDUSBTX1}, 0 }, 204 {{ USB_VENDOR_ELECOM, USB_PRODUCT_ELECOM_LDUSBTX2}, 0 }, 205 {{ USB_VENDOR_ELECOM, USB_PRODUCT_ELECOM_LDUSBTX3}, PII }, 206 {{ USB_VENDOR_ELECOM, USB_PRODUCT_ELECOM_LDUSBLTX}, PII }, 207 {{ USB_VENDOR_ELSA, USB_PRODUCT_ELSA_USB2ETHERNET}, 0 }, 208 {{ USB_VENDOR_IODATA, USB_PRODUCT_IODATA_USBETTX}, 0 }, 209 {{ USB_VENDOR_IODATA, USB_PRODUCT_IODATA_USBETTXS}, PII }, 210 {{ USB_VENDOR_KINGSTON, USB_PRODUCT_KINGSTON_KNU101TX}, 0 }, 211 {{ USB_VENDOR_LINKSYS, USB_PRODUCT_LINKSYS_USB10TX1}, LSYS|PII }, 212 {{ USB_VENDOR_LINKSYS, USB_PRODUCT_LINKSYS_USB10T}, LSYS }, 213 {{ USB_VENDOR_LINKSYS, USB_PRODUCT_LINKSYS_USB100TX}, LSYS }, 214 {{ USB_VENDOR_LINKSYS, USB_PRODUCT_LINKSYS_USB100H1}, LSYS|PNA }, 215 {{ USB_VENDOR_LINKSYS, USB_PRODUCT_LINKSYS_USB10TA}, LSYS }, 216 {{ USB_VENDOR_LINKSYS, USB_PRODUCT_LINKSYS_USB10TX2}, LSYS|PII }, 217 {{ USB_VENDOR_MELCO, USB_PRODUCT_MELCO_LUATX1}, 0 }, 218 {{ USB_VENDOR_MELCO, USB_PRODUCT_MELCO_LUATX5}, 0 }, 219 {{ USB_VENDOR_MELCO, USB_PRODUCT_MELCO_LUA2TX5}, PII }, 220 {{ USB_VENDOR_SIEMENS, USB_PRODUCT_SIEMENS_SPEEDSTREAM}, PII }, 221 {{ USB_VENDOR_SMARTBRIDGES, USB_PRODUCT_SMARTBRIDGES_SMARTNIC},PII }, 222 {{ USB_VENDOR_SMC, USB_PRODUCT_SMC_2202USB}, 0 }, 223 {{ USB_VENDOR_SMC, USB_PRODUCT_SMC_2206USB}, PII }, 224 {{ USB_VENDOR_SOHOWARE, USB_PRODUCT_SOHOWARE_NUB100}, 0 }, 225 }; 226 #define aue_lookup(v, p) ((struct aue_type *)usb_lookup(aue_devs, v, p)) 227 228 USB_DECLARE_DRIVER(aue); 229 230 Static void aue_reset_pegasus_II(struct aue_softc *sc); 231 Static int aue_tx_list_init(struct aue_softc *); 232 Static int aue_rx_list_init(struct aue_softc *); 233 Static int aue_newbuf(struct aue_softc *, struct aue_chain *, struct mbuf *); 234 Static int aue_send(struct aue_softc *, struct mbuf *, int); 235 Static void aue_intr(usbd_xfer_handle, usbd_private_handle, usbd_status); 236 Static void aue_rxeof(usbd_xfer_handle, usbd_private_handle, usbd_status); 237 Static void aue_txeof(usbd_xfer_handle, usbd_private_handle, usbd_status); 238 Static void aue_tick(void *); 239 Static void aue_tick_task(void *); 240 Static void aue_start(struct ifnet *); 241 Static int aue_ioctl(struct ifnet *, u_long, caddr_t); 242 Static void aue_init(void *); 243 Static void aue_stop(struct aue_softc *); 244 Static void aue_watchdog(struct ifnet *); 245 Static int aue_openpipes(struct aue_softc *); 246 Static int aue_ifmedia_upd(struct ifnet *); 247 Static void aue_ifmedia_sts(struct ifnet *, struct ifmediareq *); 248 249 Static int aue_eeprom_getword(struct aue_softc *, int); 250 Static void aue_read_mac(struct aue_softc *, u_char *); 251 Static int aue_miibus_readreg(device_ptr_t, int, int); 252 Static void aue_miibus_writereg(device_ptr_t, int, int, int); 253 Static void aue_miibus_statchg(device_ptr_t); 254 255 Static void aue_lock_mii(struct aue_softc *); 256 Static void aue_unlock_mii(struct aue_softc *); 257 258 Static void aue_setmulti(struct aue_softc *); 259 Static u_int32_t aue_crc(caddr_t); 260 Static void aue_reset(struct aue_softc *); 261 262 Static int aue_csr_read_1(struct aue_softc *, int); 263 Static int aue_csr_write_1(struct aue_softc *, int, int); 264 Static int aue_csr_read_2(struct aue_softc *, int); 265 Static int aue_csr_write_2(struct aue_softc *, int, int); 266 267 #define AUE_SETBIT(sc, reg, x) \ 268 aue_csr_write_1(sc, reg, aue_csr_read_1(sc, reg) | (x)) 269 270 #define AUE_CLRBIT(sc, reg, x) \ 271 aue_csr_write_1(sc, reg, aue_csr_read_1(sc, reg) & ~(x)) 272 273 Static int 274 aue_csr_read_1(struct aue_softc *sc, int reg) 275 { 276 usb_device_request_t req; 277 usbd_status err; 278 uByte val = 0; 279 280 if (sc->aue_dying) 281 return (0); 282 283 req.bmRequestType = UT_READ_VENDOR_DEVICE; 284 req.bRequest = AUE_UR_READREG; 285 USETW(req.wValue, 0); 286 USETW(req.wIndex, reg); 287 USETW(req.wLength, 1); 288 289 err = usbd_do_request(sc->aue_udev, &req, &val); 290 291 if (err) { 292 DPRINTF(("%s: aue_csr_read_1: reg=0x%x err=%s\n", 293 USBDEVNAME(sc->aue_dev), reg, usbd_errstr(err))); 294 return (0); 295 } 296 297 return (val); 298 } 299 300 Static int 301 aue_csr_read_2(struct aue_softc *sc, int reg) 302 { 303 usb_device_request_t req; 304 usbd_status err; 305 uWord val; 306 307 if (sc->aue_dying) 308 return (0); 309 310 req.bmRequestType = UT_READ_VENDOR_DEVICE; 311 req.bRequest = AUE_UR_READREG; 312 USETW(req.wValue, 0); 313 USETW(req.wIndex, reg); 314 USETW(req.wLength, 2); 315 316 err = usbd_do_request(sc->aue_udev, &req, &val); 317 318 if (err) { 319 DPRINTF(("%s: aue_csr_read_2: reg=0x%x err=%s\n", 320 USBDEVNAME(sc->aue_dev), reg, usbd_errstr(err))); 321 return (0); 322 } 323 324 return (UGETW(val)); 325 } 326 327 Static int 328 aue_csr_write_1(struct aue_softc *sc, int reg, int aval) 329 { 330 usb_device_request_t req; 331 usbd_status err; 332 uByte val; 333 334 if (sc->aue_dying) 335 return (0); 336 337 val = aval; 338 req.bmRequestType = UT_WRITE_VENDOR_DEVICE; 339 req.bRequest = AUE_UR_WRITEREG; 340 USETW(req.wValue, val); 341 USETW(req.wIndex, reg); 342 USETW(req.wLength, 1); 343 344 err = usbd_do_request(sc->aue_udev, &req, &val); 345 346 if (err) { 347 DPRINTF(("%s: aue_csr_write_1: reg=0x%x err=%s\n", 348 USBDEVNAME(sc->aue_dev), reg, usbd_errstr(err))); 349 return (-1); 350 } 351 352 return (0); 353 } 354 355 Static int 356 aue_csr_write_2(struct aue_softc *sc, int reg, int aval) 357 { 358 usb_device_request_t req; 359 usbd_status err; 360 uWord val; 361 362 if (sc->aue_dying) 363 return (0); 364 365 USETW(val, aval); 366 req.bmRequestType = UT_WRITE_VENDOR_DEVICE; 367 req.bRequest = AUE_UR_WRITEREG; 368 USETW(req.wValue, aval); 369 USETW(req.wIndex, reg); 370 USETW(req.wLength, 2); 371 372 err = usbd_do_request(sc->aue_udev, &req, &val); 373 374 if (err) { 375 DPRINTF(("%s: aue_csr_write_2: reg=0x%x err=%s\n", 376 USBDEVNAME(sc->aue_dev), reg, usbd_errstr(err))); 377 return (-1); 378 } 379 380 return (0); 381 } 382 383 /* 384 * Read a word of data stored in the EEPROM at address 'addr.' 385 */ 386 Static int 387 aue_eeprom_getword(struct aue_softc *sc, int addr) 388 { 389 int i; 390 391 aue_csr_write_1(sc, AUE_EE_REG, addr); 392 aue_csr_write_1(sc, AUE_EE_CTL, AUE_EECTL_READ); 393 394 for (i = 0; i < AUE_TIMEOUT; i++) { 395 if (aue_csr_read_1(sc, AUE_EE_CTL) & AUE_EECTL_DONE) 396 break; 397 } 398 399 if (i == AUE_TIMEOUT) { 400 printf("%s: EEPROM read timed out\n", 401 USBDEVNAME(sc->aue_dev)); 402 } 403 404 return (aue_csr_read_2(sc, AUE_EE_DATA)); 405 } 406 407 /* 408 * Read the MAC from the EEPROM. It's at offset 0. 409 */ 410 Static void 411 aue_read_mac(struct aue_softc *sc, u_char *dest) 412 { 413 int i; 414 int off = 0; 415 int word; 416 417 DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__)); 418 419 for (i = 0; i < 3; i++) { 420 word = aue_eeprom_getword(sc, off + i); 421 dest[2 * i] = (u_char)word; 422 dest[2 * i + 1] = (u_char)(word >> 8); 423 } 424 } 425 426 /* Get exclusive access to the MII registers */ 427 Static void 428 aue_lock_mii(struct aue_softc *sc) 429 { 430 sc->aue_refcnt++; 431 lockmgr(&sc->aue_mii_lock, LK_EXCLUSIVE, NULL); 432 } 433 434 Static void 435 aue_unlock_mii(struct aue_softc *sc) 436 { 437 lockmgr(&sc->aue_mii_lock, LK_RELEASE, NULL); 438 if (--sc->aue_refcnt < 0) 439 usb_detach_wakeup(USBDEV(sc->aue_dev)); 440 } 441 442 Static int 443 aue_miibus_readreg(device_ptr_t dev, int phy, int reg) 444 { 445 struct aue_softc *sc = USBGETSOFTC(dev); 446 int i; 447 u_int16_t val; 448 449 if (sc->aue_dying) { 450 #ifdef DIAGNOSTIC 451 printf("%s: dying\n", USBDEVNAME(sc->aue_dev)); 452 #endif 453 return 0; 454 } 455 456 #if 0 457 /* 458 * The Am79C901 HomePNA PHY actually contains 459 * two transceivers: a 1Mbps HomePNA PHY and a 460 * 10Mbps full/half duplex ethernet PHY with 461 * NWAY autoneg. However in the ADMtek adapter, 462 * only the 1Mbps PHY is actually connected to 463 * anything, so we ignore the 10Mbps one. It 464 * happens to be configured for MII address 3, 465 * so we filter that out. 466 */ 467 if (sc->aue_vendor == USB_VENDOR_ADMTEK && 468 sc->aue_product == USB_PRODUCT_ADMTEK_PEGASUS) { 469 if (phy == 3) 470 return (0); 471 } 472 #endif 473 474 aue_lock_mii(sc); 475 aue_csr_write_1(sc, AUE_PHY_ADDR, phy); 476 aue_csr_write_1(sc, AUE_PHY_CTL, reg | AUE_PHYCTL_READ); 477 478 for (i = 0; i < AUE_TIMEOUT; i++) { 479 if (aue_csr_read_1(sc, AUE_PHY_CTL) & AUE_PHYCTL_DONE) 480 break; 481 } 482 483 if (i == AUE_TIMEOUT) { 484 printf("%s: MII read timed out\n", USBDEVNAME(sc->aue_dev)); 485 } 486 487 val = aue_csr_read_2(sc, AUE_PHY_DATA); 488 489 DPRINTFN(11,("%s: %s: phy=%d reg=%d => 0x%04x\n", 490 USBDEVNAME(sc->aue_dev), __func__, phy, reg, val)); 491 492 aue_unlock_mii(sc); 493 return (val); 494 } 495 496 Static void 497 aue_miibus_writereg(device_ptr_t dev, int phy, int reg, int data) 498 { 499 struct aue_softc *sc = USBGETSOFTC(dev); 500 int i; 501 502 #if 0 503 if (sc->aue_vendor == USB_VENDOR_ADMTEK && 504 sc->aue_product == USB_PRODUCT_ADMTEK_PEGASUS) { 505 if (phy == 3) 506 return; 507 } 508 #endif 509 510 DPRINTFN(11,("%s: %s: phy=%d reg=%d data=0x%04x\n", 511 USBDEVNAME(sc->aue_dev), __func__, phy, reg, data)); 512 513 aue_lock_mii(sc); 514 aue_csr_write_2(sc, AUE_PHY_DATA, data); 515 aue_csr_write_1(sc, AUE_PHY_ADDR, phy); 516 aue_csr_write_1(sc, AUE_PHY_CTL, reg | AUE_PHYCTL_WRITE); 517 518 for (i = 0; i < AUE_TIMEOUT; i++) { 519 if (aue_csr_read_1(sc, AUE_PHY_CTL) & AUE_PHYCTL_DONE) 520 break; 521 } 522 523 if (i == AUE_TIMEOUT) { 524 printf("%s: MII read timed out\n", 525 USBDEVNAME(sc->aue_dev)); 526 } 527 aue_unlock_mii(sc); 528 } 529 530 Static void 531 aue_miibus_statchg(device_ptr_t dev) 532 { 533 struct aue_softc *sc = USBGETSOFTC(dev); 534 struct mii_data *mii = GET_MII(sc); 535 536 DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__)); 537 538 aue_lock_mii(sc); 539 AUE_CLRBIT(sc, AUE_CTL0, AUE_CTL0_RX_ENB | AUE_CTL0_TX_ENB); 540 541 if (IFM_SUBTYPE(mii->mii_media_active) == IFM_100_TX) { 542 AUE_SETBIT(sc, AUE_CTL1, AUE_CTL1_SPEEDSEL); 543 } else { 544 AUE_CLRBIT(sc, AUE_CTL1, AUE_CTL1_SPEEDSEL); 545 } 546 547 if ((mii->mii_media_active & IFM_GMASK) == IFM_FDX) 548 AUE_SETBIT(sc, AUE_CTL1, AUE_CTL1_DUPLEX); 549 else 550 AUE_CLRBIT(sc, AUE_CTL1, AUE_CTL1_DUPLEX); 551 552 AUE_SETBIT(sc, AUE_CTL0, AUE_CTL0_RX_ENB | AUE_CTL0_TX_ENB); 553 aue_unlock_mii(sc); 554 555 /* 556 * Set the LED modes on the LinkSys adapter. 557 * This turns on the 'dual link LED' bin in the auxmode 558 * register of the Broadcom PHY. 559 */ 560 if (!sc->aue_dying && (sc->aue_flags & LSYS)) { 561 u_int16_t auxmode; 562 auxmode = aue_miibus_readreg(dev, 0, 0x1b); 563 aue_miibus_writereg(dev, 0, 0x1b, auxmode | 0x04); 564 } 565 DPRINTFN(5,("%s: %s: exit\n", USBDEVNAME(sc->aue_dev), __func__)); 566 } 567 568 #define AUE_POLY 0xEDB88320 569 #define AUE_BITS 6 570 571 Static u_int32_t 572 aue_crc(caddr_t addr) 573 { 574 u_int32_t idx, bit, data, crc; 575 576 /* Compute CRC for the address value. */ 577 crc = 0xFFFFFFFF; /* initial value */ 578 579 for (idx = 0; idx < 6; idx++) { 580 for (data = *addr++, bit = 0; bit < 8; bit++, data >>= 1) 581 crc = (crc >> 1) ^ (((crc ^ data) & 1) ? AUE_POLY : 0); 582 } 583 584 return (crc & ((1 << AUE_BITS) - 1)); 585 } 586 587 Static void 588 aue_setmulti(struct aue_softc *sc) 589 { 590 struct ifnet *ifp; 591 struct ether_multi *enm; 592 struct ether_multistep step; 593 u_int32_t h = 0, i; 594 595 DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__)); 596 597 ifp = GET_IFP(sc); 598 599 if (ifp->if_flags & IFF_PROMISC) { 600 allmulti: 601 ifp->if_flags |= IFF_ALLMULTI; 602 AUE_SETBIT(sc, AUE_CTL0, AUE_CTL0_ALLMULTI); 603 return; 604 } 605 606 AUE_CLRBIT(sc, AUE_CTL0, AUE_CTL0_ALLMULTI); 607 608 /* first, zot all the existing hash bits */ 609 for (i = 0; i < 8; i++) 610 aue_csr_write_1(sc, AUE_MAR0 + i, 0); 611 612 /* now program new ones */ 613 #if defined(__NetBSD__) 614 ETHER_FIRST_MULTI(step, &sc->aue_ec, enm); 615 #else 616 ETHER_FIRST_MULTI(step, &sc->arpcom, enm); 617 #endif 618 while (enm != NULL) { 619 if (memcmp(enm->enm_addrlo, 620 enm->enm_addrhi, ETHER_ADDR_LEN) != 0) 621 goto allmulti; 622 623 h = aue_crc(enm->enm_addrlo); 624 AUE_SETBIT(sc, AUE_MAR + (h >> 3), 1 << (h & 0x7)); 625 ETHER_NEXT_MULTI(step, enm); 626 } 627 628 ifp->if_flags &= ~IFF_ALLMULTI; 629 } 630 631 Static void 632 aue_reset_pegasus_II(struct aue_softc *sc) 633 { 634 /* Magic constants taken from Linux driver. */ 635 aue_csr_write_1(sc, AUE_REG_1D, 0); 636 aue_csr_write_1(sc, AUE_REG_7B, 2); 637 #if 0 638 if ((sc->aue_flags & HAS_HOME_PNA) && mii_mode) 639 aue_csr_write_1(sc, AUE_REG_81, 6); 640 else 641 #endif 642 aue_csr_write_1(sc, AUE_REG_81, 2); 643 } 644 645 Static void 646 aue_reset(struct aue_softc *sc) 647 { 648 int i; 649 650 DPRINTFN(2,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__)); 651 652 AUE_SETBIT(sc, AUE_CTL1, AUE_CTL1_RESETMAC); 653 654 for (i = 0; i < AUE_TIMEOUT; i++) { 655 if (!(aue_csr_read_1(sc, AUE_CTL1) & AUE_CTL1_RESETMAC)) 656 break; 657 } 658 659 if (i == AUE_TIMEOUT) 660 printf("%s: reset failed\n", USBDEVNAME(sc->aue_dev)); 661 662 #if 0 663 /* XXX what is mii_mode supposed to be */ 664 if (sc->aue_mii_mode && (sc->aue_flags & PNA)) 665 aue_csr_write_1(sc, AUE_GPIO1, 0x34); 666 else 667 aue_csr_write_1(sc, AUE_GPIO1, 0x26); 668 #endif 669 670 /* 671 * The PHY(s) attached to the Pegasus chip may be held 672 * in reset until we flip on the GPIO outputs. Make sure 673 * to set the GPIO pins high so that the PHY(s) will 674 * be enabled. 675 * 676 * Note: We force all of the GPIO pins low first, *then* 677 * enable the ones we want. 678 */ 679 if (sc->aue_flags & LSYS) { 680 /* Grrr. LinkSys has to be different from everyone else. */ 681 aue_csr_write_1(sc, AUE_GPIO0, 682 AUE_GPIO_SEL0 | AUE_GPIO_SEL1); 683 } else { 684 aue_csr_write_1(sc, AUE_GPIO0, 685 AUE_GPIO_OUT0 | AUE_GPIO_SEL0); 686 } 687 aue_csr_write_1(sc, AUE_GPIO0, 688 AUE_GPIO_OUT0 | AUE_GPIO_SEL0 | AUE_GPIO_SEL1); 689 690 if (sc->aue_flags & PII) 691 aue_reset_pegasus_II(sc); 692 693 /* Wait a little while for the chip to get its brains in order. */ 694 delay(10000); /* XXX */ 695 } 696 697 /* 698 * Probe for a Pegasus chip. 699 */ 700 USB_MATCH(aue) 701 { 702 USB_MATCH_START(aue, uaa); 703 704 if (uaa->iface != NULL) 705 return (UMATCH_NONE); 706 707 return (aue_lookup(uaa->vendor, uaa->product) != NULL ? 708 UMATCH_VENDOR_PRODUCT : UMATCH_NONE); 709 } 710 711 /* 712 * Attach the interface. Allocate softc structures, do ifmedia 713 * setup and ethernet/BPF attach. 714 */ 715 USB_ATTACH(aue) 716 { 717 USB_ATTACH_START(aue, sc, uaa); 718 char devinfo[1024]; 719 int s; 720 u_char eaddr[ETHER_ADDR_LEN]; 721 struct ifnet *ifp; 722 struct mii_data *mii; 723 usbd_device_handle dev = uaa->device; 724 usbd_interface_handle iface; 725 usbd_status err; 726 usb_interface_descriptor_t *id; 727 usb_endpoint_descriptor_t *ed; 728 int i; 729 730 DPRINTFN(5,(" : aue_attach: sc=%p", sc)); 731 732 usbd_devinfo(dev, 0, devinfo); 733 USB_ATTACH_SETUP; 734 printf("%s: %s\n", USBDEVNAME(sc->aue_dev), devinfo); 735 736 err = usbd_set_config_no(dev, AUE_CONFIG_NO, 1); 737 if (err) { 738 printf("%s: setting config no failed\n", 739 USBDEVNAME(sc->aue_dev)); 740 USB_ATTACH_ERROR_RETURN; 741 } 742 743 usb_init_task(&sc->aue_tick_task, aue_tick_task, sc); 744 usb_init_task(&sc->aue_stop_task, (void (*)(void *))aue_stop, sc); 745 lockinit(&sc->aue_mii_lock, PZERO, "auemii", 0, 0); 746 747 err = usbd_device2interface_handle(dev, AUE_IFACE_IDX, &iface); 748 if (err) { 749 printf("%s: getting interface handle failed\n", 750 USBDEVNAME(sc->aue_dev)); 751 USB_ATTACH_ERROR_RETURN; 752 } 753 754 sc->aue_flags = aue_lookup(uaa->vendor, uaa->product)->aue_flags; 755 756 sc->aue_udev = dev; 757 sc->aue_iface = iface; 758 sc->aue_product = uaa->product; 759 sc->aue_vendor = uaa->vendor; 760 761 id = usbd_get_interface_descriptor(iface); 762 763 /* Find endpoints. */ 764 for (i = 0; i < id->bNumEndpoints; i++) { 765 ed = usbd_interface2endpoint_descriptor(iface, i); 766 if (ed == NULL) { 767 printf("%s: couldn't get endpoint descriptor %d\n", 768 USBDEVNAME(sc->aue_dev), i); 769 USB_ATTACH_ERROR_RETURN; 770 } 771 if (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_IN && 772 UE_GET_XFERTYPE(ed->bmAttributes) == UE_BULK) { 773 sc->aue_ed[AUE_ENDPT_RX] = ed->bEndpointAddress; 774 } else if (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_OUT && 775 UE_GET_XFERTYPE(ed->bmAttributes) == UE_BULK) { 776 sc->aue_ed[AUE_ENDPT_TX] = ed->bEndpointAddress; 777 } else if (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_IN && 778 UE_GET_XFERTYPE(ed->bmAttributes) == UE_INTERRUPT) { 779 sc->aue_ed[AUE_ENDPT_INTR] = ed->bEndpointAddress; 780 } 781 } 782 783 if (sc->aue_ed[AUE_ENDPT_RX] == 0 || sc->aue_ed[AUE_ENDPT_TX] == 0 || 784 sc->aue_ed[AUE_ENDPT_INTR] == 0) { 785 printf("%s: missing endpoint\n", USBDEVNAME(sc->aue_dev)); 786 USB_ATTACH_ERROR_RETURN; 787 } 788 789 790 s = splnet(); 791 792 /* Reset the adapter. */ 793 aue_reset(sc); 794 795 /* 796 * Get station address from the EEPROM. 797 */ 798 aue_read_mac(sc, eaddr); 799 800 /* 801 * A Pegasus chip was detected. Inform the world. 802 */ 803 ifp = GET_IFP(sc); 804 printf("%s: Ethernet address %s\n", USBDEVNAME(sc->aue_dev), 805 ether_sprintf(eaddr)); 806 807 /* Initialize interface info.*/ 808 ifp->if_softc = sc; 809 ifp->if_mtu = ETHERMTU; 810 ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST; 811 ifp->if_ioctl = aue_ioctl; 812 ifp->if_start = aue_start; 813 ifp->if_watchdog = aue_watchdog; 814 #if defined(__OpenBSD__) 815 ifp->if_snd.ifq_maxlen = IFQ_MAXLEN; 816 #endif 817 strncpy(ifp->if_xname, USBDEVNAME(sc->aue_dev), IFNAMSIZ); 818 819 IFQ_SET_READY(&ifp->if_snd); 820 821 /* Initialize MII/media info. */ 822 mii = &sc->aue_mii; 823 mii->mii_ifp = ifp; 824 mii->mii_readreg = aue_miibus_readreg; 825 mii->mii_writereg = aue_miibus_writereg; 826 mii->mii_statchg = aue_miibus_statchg; 827 mii->mii_flags = MIIF_AUTOTSLEEP; 828 ifmedia_init(&mii->mii_media, 0, aue_ifmedia_upd, aue_ifmedia_sts); 829 mii_attach(self, mii, 0xffffffff, MII_PHY_ANY, MII_OFFSET_ANY, 0); 830 if (LIST_FIRST(&mii->mii_phys) == NULL) { 831 ifmedia_add(&mii->mii_media, IFM_ETHER | IFM_NONE, 0, NULL); 832 ifmedia_set(&mii->mii_media, IFM_ETHER | IFM_NONE); 833 } else 834 ifmedia_set(&mii->mii_media, IFM_ETHER | IFM_AUTO); 835 836 /* Attach the interface. */ 837 if_attach(ifp); 838 Ether_ifattach(ifp, eaddr); 839 #if NRND > 0 840 rnd_attach_source(&sc->rnd_source, USBDEVNAME(sc->aue_dev), 841 RND_TYPE_NET, 0); 842 #endif 843 844 usb_callout_init(sc->aue_stat_ch); 845 846 sc->aue_attached = 1; 847 splx(s); 848 849 usbd_add_drv_event(USB_EVENT_DRIVER_ATTACH, sc->aue_udev, 850 USBDEV(sc->aue_dev)); 851 852 USB_ATTACH_SUCCESS_RETURN; 853 } 854 855 USB_DETACH(aue) 856 { 857 USB_DETACH_START(aue, sc); 858 struct ifnet *ifp = GET_IFP(sc); 859 int s; 860 861 DPRINTFN(2,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__)); 862 863 if (!sc->aue_attached) { 864 /* Detached before attached finished, so just bail out. */ 865 return (0); 866 } 867 868 usb_uncallout(sc->aue_stat_ch, aue_tick, sc); 869 /* 870 * Remove any pending tasks. They cannot be executing because they run 871 * in the same thread as detach. 872 */ 873 usb_rem_task(sc->aue_udev, &sc->aue_tick_task); 874 usb_rem_task(sc->aue_udev, &sc->aue_stop_task); 875 876 s = splusb(); 877 878 if (ifp->if_flags & IFF_RUNNING) 879 aue_stop(sc); 880 881 #if defined(__NetBSD__) 882 #if NRND > 0 883 rnd_detach_source(&sc->rnd_source); 884 #endif 885 mii_detach(&sc->aue_mii, MII_PHY_ANY, MII_OFFSET_ANY); 886 ifmedia_delete_instance(&sc->aue_mii.mii_media, IFM_INST_ANY); 887 ether_ifdetach(ifp); 888 #endif /* __NetBSD__ */ 889 890 if_detach(ifp); 891 892 #ifdef DIAGNOSTIC 893 if (sc->aue_ep[AUE_ENDPT_TX] != NULL || 894 sc->aue_ep[AUE_ENDPT_RX] != NULL || 895 sc->aue_ep[AUE_ENDPT_INTR] != NULL) 896 printf("%s: detach has active endpoints\n", 897 USBDEVNAME(sc->aue_dev)); 898 #endif 899 900 sc->aue_attached = 0; 901 902 if (--sc->aue_refcnt >= 0) { 903 /* Wait for processes to go away. */ 904 usb_detach_wait(USBDEV(sc->aue_dev)); 905 } 906 splx(s); 907 908 usbd_add_drv_event(USB_EVENT_DRIVER_DETACH, sc->aue_udev, 909 USBDEV(sc->aue_dev)); 910 911 return (0); 912 } 913 914 int 915 aue_activate(device_ptr_t self, enum devact act) 916 { 917 struct aue_softc *sc = (struct aue_softc *)self; 918 919 DPRINTFN(2,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__)); 920 921 switch (act) { 922 case DVACT_ACTIVATE: 923 return (EOPNOTSUPP); 924 break; 925 926 case DVACT_DEACTIVATE: 927 if_deactivate(&sc->aue_ec.ec_if); 928 sc->aue_dying = 1; 929 break; 930 } 931 return (0); 932 } 933 934 /* 935 * Initialize an RX descriptor and attach an MBUF cluster. 936 */ 937 Static int 938 aue_newbuf(struct aue_softc *sc, struct aue_chain *c, struct mbuf *m) 939 { 940 struct mbuf *m_new = NULL; 941 942 DPRINTFN(10,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev),__func__)); 943 944 if (m == NULL) { 945 MGETHDR(m_new, M_DONTWAIT, MT_DATA); 946 if (m_new == NULL) { 947 printf("%s: no memory for rx list " 948 "-- packet dropped!\n", USBDEVNAME(sc->aue_dev)); 949 return (ENOBUFS); 950 } 951 952 MCLGET(m_new, M_DONTWAIT); 953 if (!(m_new->m_flags & M_EXT)) { 954 printf("%s: no memory for rx list " 955 "-- packet dropped!\n", USBDEVNAME(sc->aue_dev)); 956 m_freem(m_new); 957 return (ENOBUFS); 958 } 959 m_new->m_len = m_new->m_pkthdr.len = MCLBYTES; 960 } else { 961 m_new = m; 962 m_new->m_len = m_new->m_pkthdr.len = MCLBYTES; 963 m_new->m_data = m_new->m_ext.ext_buf; 964 } 965 966 m_adj(m_new, ETHER_ALIGN); 967 c->aue_mbuf = m_new; 968 969 return (0); 970 } 971 972 Static int 973 aue_rx_list_init(struct aue_softc *sc) 974 { 975 struct aue_cdata *cd; 976 struct aue_chain *c; 977 int i; 978 979 DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__)); 980 981 cd = &sc->aue_cdata; 982 for (i = 0; i < AUE_RX_LIST_CNT; i++) { 983 c = &cd->aue_rx_chain[i]; 984 c->aue_sc = sc; 985 c->aue_idx = i; 986 if (aue_newbuf(sc, c, NULL) == ENOBUFS) 987 return (ENOBUFS); 988 if (c->aue_xfer == NULL) { 989 c->aue_xfer = usbd_alloc_xfer(sc->aue_udev); 990 if (c->aue_xfer == NULL) 991 return (ENOBUFS); 992 c->aue_buf = usbd_alloc_buffer(c->aue_xfer, AUE_BUFSZ); 993 if (c->aue_buf == NULL) 994 return (ENOBUFS); /* XXX free xfer */ 995 } 996 } 997 998 return (0); 999 } 1000 1001 Static int 1002 aue_tx_list_init(struct aue_softc *sc) 1003 { 1004 struct aue_cdata *cd; 1005 struct aue_chain *c; 1006 int i; 1007 1008 DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__)); 1009 1010 cd = &sc->aue_cdata; 1011 for (i = 0; i < AUE_TX_LIST_CNT; i++) { 1012 c = &cd->aue_tx_chain[i]; 1013 c->aue_sc = sc; 1014 c->aue_idx = i; 1015 c->aue_mbuf = NULL; 1016 if (c->aue_xfer == NULL) { 1017 c->aue_xfer = usbd_alloc_xfer(sc->aue_udev); 1018 if (c->aue_xfer == NULL) 1019 return (ENOBUFS); 1020 c->aue_buf = usbd_alloc_buffer(c->aue_xfer, AUE_BUFSZ); 1021 if (c->aue_buf == NULL) 1022 return (ENOBUFS); 1023 } 1024 } 1025 1026 return (0); 1027 } 1028 1029 Static void 1030 aue_intr(usbd_xfer_handle xfer, usbd_private_handle priv, usbd_status status) 1031 { 1032 struct aue_softc *sc = priv; 1033 struct ifnet *ifp = GET_IFP(sc); 1034 struct aue_intrpkt *p = &sc->aue_cdata.aue_ibuf; 1035 1036 DPRINTFN(15,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev),__func__)); 1037 1038 if (sc->aue_dying) 1039 return; 1040 1041 if (!(ifp->if_flags & IFF_RUNNING)) 1042 return; 1043 1044 if (status != USBD_NORMAL_COMPLETION) { 1045 if (status == USBD_NOT_STARTED || status == USBD_CANCELLED) { 1046 return; 1047 } 1048 sc->aue_intr_errs++; 1049 if (usbd_ratecheck(&sc->aue_rx_notice)) { 1050 printf("%s: %u usb errors on intr: %s\n", 1051 USBDEVNAME(sc->aue_dev), sc->aue_intr_errs, 1052 usbd_errstr(status)); 1053 sc->aue_intr_errs = 0; 1054 } 1055 if (status == USBD_STALLED) 1056 usbd_clear_endpoint_stall(sc->aue_ep[AUE_ENDPT_RX]); 1057 return; 1058 } 1059 1060 if (p->aue_txstat0) 1061 ifp->if_oerrors++; 1062 1063 if (p->aue_txstat0 & (AUE_TXSTAT0_LATECOLL | AUE_TXSTAT0_EXCESSCOLL)) 1064 ifp->if_collisions++; 1065 } 1066 1067 /* 1068 * A frame has been uploaded: pass the resulting mbuf chain up to 1069 * the higher level protocols. 1070 */ 1071 Static void 1072 aue_rxeof(usbd_xfer_handle xfer, usbd_private_handle priv, usbd_status status) 1073 { 1074 struct aue_chain *c = priv; 1075 struct aue_softc *sc = c->aue_sc; 1076 struct ifnet *ifp = GET_IFP(sc); 1077 struct mbuf *m; 1078 u_int32_t total_len; 1079 struct aue_rxpkt r; 1080 int s; 1081 1082 DPRINTFN(10,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev),__func__)); 1083 1084 if (sc->aue_dying) 1085 return; 1086 1087 if (!(ifp->if_flags & IFF_RUNNING)) 1088 return; 1089 1090 if (status != USBD_NORMAL_COMPLETION) { 1091 if (status == USBD_NOT_STARTED || status == USBD_CANCELLED) 1092 return; 1093 sc->aue_rx_errs++; 1094 if (usbd_ratecheck(&sc->aue_rx_notice)) { 1095 printf("%s: %u usb errors on rx: %s\n", 1096 USBDEVNAME(sc->aue_dev), sc->aue_rx_errs, 1097 usbd_errstr(status)); 1098 sc->aue_rx_errs = 0; 1099 } 1100 if (status == USBD_STALLED) 1101 usbd_clear_endpoint_stall(sc->aue_ep[AUE_ENDPT_RX]); 1102 goto done; 1103 } 1104 1105 usbd_get_xfer_status(xfer, NULL, NULL, &total_len, NULL); 1106 1107 memcpy(mtod(c->aue_mbuf, char *), c->aue_buf, total_len); 1108 1109 if (total_len <= 4 + ETHER_CRC_LEN) { 1110 ifp->if_ierrors++; 1111 goto done; 1112 } 1113 1114 memcpy(&r, c->aue_buf + total_len - 4, sizeof(r)); 1115 1116 /* Turn off all the non-error bits in the rx status word. */ 1117 r.aue_rxstat &= AUE_RXSTAT_MASK; 1118 if (r.aue_rxstat) { 1119 ifp->if_ierrors++; 1120 goto done; 1121 } 1122 1123 /* No errors; receive the packet. */ 1124 m = c->aue_mbuf; 1125 total_len -= ETHER_CRC_LEN + 4; 1126 m->m_pkthdr.len = m->m_len = total_len; 1127 ifp->if_ipackets++; 1128 1129 m->m_pkthdr.rcvif = ifp; 1130 1131 s = splnet(); 1132 1133 /* XXX ugly */ 1134 if (aue_newbuf(sc, c, NULL) == ENOBUFS) { 1135 ifp->if_ierrors++; 1136 goto done1; 1137 } 1138 1139 #if NBPFILTER > 0 1140 /* 1141 * Handle BPF listeners. Let the BPF user see the packet, but 1142 * don't pass it up to the ether_input() layer unless it's 1143 * a broadcast packet, multicast packet, matches our ethernet 1144 * address or the interface is in promiscuous mode. 1145 */ 1146 if (ifp->if_bpf) 1147 BPF_MTAP(ifp, m); 1148 #endif 1149 1150 DPRINTFN(10,("%s: %s: deliver %d\n", USBDEVNAME(sc->aue_dev), 1151 __func__, m->m_len)); 1152 IF_INPUT(ifp, m); 1153 done1: 1154 splx(s); 1155 1156 done: 1157 1158 /* Setup new transfer. */ 1159 usbd_setup_xfer(xfer, sc->aue_ep[AUE_ENDPT_RX], 1160 c, c->aue_buf, AUE_BUFSZ, 1161 USBD_SHORT_XFER_OK | USBD_NO_COPY, 1162 USBD_NO_TIMEOUT, aue_rxeof); 1163 usbd_transfer(xfer); 1164 1165 DPRINTFN(10,("%s: %s: start rx\n", USBDEVNAME(sc->aue_dev), 1166 __func__)); 1167 } 1168 1169 /* 1170 * A frame was downloaded to the chip. It's safe for us to clean up 1171 * the list buffers. 1172 */ 1173 1174 Static void 1175 aue_txeof(usbd_xfer_handle xfer, usbd_private_handle priv, usbd_status status) 1176 { 1177 struct aue_chain *c = priv; 1178 struct aue_softc *sc = c->aue_sc; 1179 struct ifnet *ifp = GET_IFP(sc); 1180 int s; 1181 1182 if (sc->aue_dying) 1183 return; 1184 1185 s = splnet(); 1186 1187 DPRINTFN(10,("%s: %s: enter status=%d\n", USBDEVNAME(sc->aue_dev), 1188 __func__, status)); 1189 1190 ifp->if_timer = 0; 1191 ifp->if_flags &= ~IFF_OACTIVE; 1192 1193 if (status != USBD_NORMAL_COMPLETION) { 1194 if (status == USBD_NOT_STARTED || status == USBD_CANCELLED) { 1195 splx(s); 1196 return; 1197 } 1198 ifp->if_oerrors++; 1199 printf("%s: usb error on tx: %s\n", USBDEVNAME(sc->aue_dev), 1200 usbd_errstr(status)); 1201 if (status == USBD_STALLED) 1202 usbd_clear_endpoint_stall(sc->aue_ep[AUE_ENDPT_TX]); 1203 splx(s); 1204 return; 1205 } 1206 1207 ifp->if_opackets++; 1208 1209 m_freem(c->aue_mbuf); 1210 c->aue_mbuf = NULL; 1211 1212 if (IFQ_IS_EMPTY(&ifp->if_snd) == 0) 1213 aue_start(ifp); 1214 1215 splx(s); 1216 } 1217 1218 Static void 1219 aue_tick(void *xsc) 1220 { 1221 struct aue_softc *sc = xsc; 1222 1223 DPRINTFN(15,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev),__func__)); 1224 1225 if (sc == NULL) 1226 return; 1227 1228 if (sc->aue_dying) 1229 return; 1230 1231 /* Perform periodic stuff in process context. */ 1232 usb_add_task(sc->aue_udev, &sc->aue_tick_task); 1233 } 1234 1235 Static void 1236 aue_tick_task(void *xsc) 1237 { 1238 struct aue_softc *sc = xsc; 1239 struct ifnet *ifp; 1240 struct mii_data *mii; 1241 int s; 1242 1243 DPRINTFN(15,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev),__func__)); 1244 1245 if (sc->aue_dying) 1246 return; 1247 1248 ifp = GET_IFP(sc); 1249 mii = GET_MII(sc); 1250 if (mii == NULL) 1251 return; 1252 1253 s = splnet(); 1254 1255 mii_tick(mii); 1256 if (!sc->aue_link) { 1257 mii_pollstat(mii); /* XXX FreeBSD has removed this call */ 1258 if (mii->mii_media_status & IFM_ACTIVE && 1259 IFM_SUBTYPE(mii->mii_media_active) != IFM_NONE) { 1260 DPRINTFN(2,("%s: %s: got link\n", 1261 USBDEVNAME(sc->aue_dev),__func__)); 1262 sc->aue_link++; 1263 if (IFQ_IS_EMPTY(&ifp->if_snd) == 0) 1264 aue_start(ifp); 1265 } 1266 } 1267 1268 usb_callout(sc->aue_stat_ch, hz, aue_tick, sc); 1269 1270 splx(s); 1271 } 1272 1273 Static int 1274 aue_send(struct aue_softc *sc, struct mbuf *m, int idx) 1275 { 1276 int total_len; 1277 struct aue_chain *c; 1278 usbd_status err; 1279 1280 DPRINTFN(10,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev),__func__)); 1281 1282 c = &sc->aue_cdata.aue_tx_chain[idx]; 1283 1284 /* 1285 * Copy the mbuf data into a contiguous buffer, leaving two 1286 * bytes at the beginning to hold the frame length. 1287 */ 1288 m_copydata(m, 0, m->m_pkthdr.len, c->aue_buf + 2); 1289 c->aue_mbuf = m; 1290 1291 /* 1292 * The ADMtek documentation says that the packet length is 1293 * supposed to be specified in the first two bytes of the 1294 * transfer, however it actually seems to ignore this info 1295 * and base the frame size on the bulk transfer length. 1296 */ 1297 c->aue_buf[0] = (u_int8_t)m->m_pkthdr.len; 1298 c->aue_buf[1] = (u_int8_t)(m->m_pkthdr.len >> 8); 1299 total_len = m->m_pkthdr.len + 2; 1300 1301 usbd_setup_xfer(c->aue_xfer, sc->aue_ep[AUE_ENDPT_TX], 1302 c, c->aue_buf, total_len, USBD_FORCE_SHORT_XFER | USBD_NO_COPY, 1303 AUE_TX_TIMEOUT, aue_txeof); 1304 1305 /* Transmit */ 1306 err = usbd_transfer(c->aue_xfer); 1307 if (err != USBD_IN_PROGRESS) { 1308 printf("%s: aue_send error=%s\n", USBDEVNAME(sc->aue_dev), 1309 usbd_errstr(err)); 1310 /* Stop the interface from process context. */ 1311 usb_add_task(sc->aue_udev, &sc->aue_stop_task); 1312 return (EIO); 1313 } 1314 DPRINTFN(5,("%s: %s: send %d bytes\n", USBDEVNAME(sc->aue_dev), 1315 __func__, total_len)); 1316 1317 sc->aue_cdata.aue_tx_cnt++; 1318 1319 return (0); 1320 } 1321 1322 Static void 1323 aue_start(struct ifnet *ifp) 1324 { 1325 struct aue_softc *sc = ifp->if_softc; 1326 struct mbuf *m_head = NULL; 1327 1328 DPRINTFN(5,("%s: %s: enter, link=%d\n", USBDEVNAME(sc->aue_dev), 1329 __func__, sc->aue_link)); 1330 1331 if (sc->aue_dying) 1332 return; 1333 1334 if (!sc->aue_link) 1335 return; 1336 1337 if (ifp->if_flags & IFF_OACTIVE) 1338 return; 1339 1340 IFQ_POLL(&ifp->if_snd, m_head); 1341 if (m_head == NULL) 1342 return; 1343 1344 if (aue_send(sc, m_head, 0)) { 1345 ifp->if_flags |= IFF_OACTIVE; 1346 return; 1347 } 1348 1349 IFQ_DEQUEUE(&ifp->if_snd, m_head); 1350 1351 #if NBPFILTER > 0 1352 /* 1353 * If there's a BPF listener, bounce a copy of this frame 1354 * to him. 1355 */ 1356 if (ifp->if_bpf) 1357 BPF_MTAP(ifp, m_head); 1358 #endif 1359 1360 ifp->if_flags |= IFF_OACTIVE; 1361 1362 /* 1363 * Set a timeout in case the chip goes out to lunch. 1364 */ 1365 ifp->if_timer = 5; 1366 } 1367 1368 Static void 1369 aue_init(void *xsc) 1370 { 1371 struct aue_softc *sc = xsc; 1372 struct ifnet *ifp = GET_IFP(sc); 1373 struct mii_data *mii = GET_MII(sc); 1374 int i, s; 1375 u_char *eaddr; 1376 1377 DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__)); 1378 1379 if (sc->aue_dying) 1380 return; 1381 1382 if (ifp->if_flags & IFF_RUNNING) 1383 return; 1384 1385 s = splnet(); 1386 1387 /* 1388 * Cancel pending I/O and free all RX/TX buffers. 1389 */ 1390 aue_reset(sc); 1391 1392 #if defined(__OpenBSD__) 1393 eaddr = sc->arpcom.ac_enaddr; 1394 #elif defined(__NetBSD__) 1395 eaddr = LLADDR(ifp->if_sadl); 1396 #endif /* defined(__NetBSD__) */ 1397 for (i = 0; i < ETHER_ADDR_LEN; i++) 1398 aue_csr_write_1(sc, AUE_PAR0 + i, eaddr[i]); 1399 1400 /* If we want promiscuous mode, set the allframes bit. */ 1401 if (ifp->if_flags & IFF_PROMISC) 1402 AUE_SETBIT(sc, AUE_CTL2, AUE_CTL2_RX_PROMISC); 1403 else 1404 AUE_CLRBIT(sc, AUE_CTL2, AUE_CTL2_RX_PROMISC); 1405 1406 /* Init TX ring. */ 1407 if (aue_tx_list_init(sc) == ENOBUFS) { 1408 printf("%s: tx list init failed\n", USBDEVNAME(sc->aue_dev)); 1409 splx(s); 1410 return; 1411 } 1412 1413 /* Init RX ring. */ 1414 if (aue_rx_list_init(sc) == ENOBUFS) { 1415 printf("%s: rx list init failed\n", USBDEVNAME(sc->aue_dev)); 1416 splx(s); 1417 return; 1418 } 1419 1420 /* Load the multicast filter. */ 1421 aue_setmulti(sc); 1422 1423 /* Enable RX and TX */ 1424 aue_csr_write_1(sc, AUE_CTL0, AUE_CTL0_RXSTAT_APPEND | AUE_CTL0_RX_ENB); 1425 AUE_SETBIT(sc, AUE_CTL0, AUE_CTL0_TX_ENB); 1426 AUE_SETBIT(sc, AUE_CTL2, AUE_CTL2_EP3_CLR); 1427 1428 mii_mediachg(mii); 1429 1430 if (sc->aue_ep[AUE_ENDPT_RX] == NULL) { 1431 if (aue_openpipes(sc)) { 1432 splx(s); 1433 return; 1434 } 1435 } 1436 1437 ifp->if_flags |= IFF_RUNNING; 1438 ifp->if_flags &= ~IFF_OACTIVE; 1439 1440 splx(s); 1441 1442 usb_callout(sc->aue_stat_ch, hz, aue_tick, sc); 1443 } 1444 1445 Static int 1446 aue_openpipes(struct aue_softc *sc) 1447 { 1448 struct aue_chain *c; 1449 usbd_status err; 1450 int i; 1451 1452 /* Open RX and TX pipes. */ 1453 err = usbd_open_pipe(sc->aue_iface, sc->aue_ed[AUE_ENDPT_RX], 1454 USBD_EXCLUSIVE_USE, &sc->aue_ep[AUE_ENDPT_RX]); 1455 if (err) { 1456 printf("%s: open rx pipe failed: %s\n", 1457 USBDEVNAME(sc->aue_dev), usbd_errstr(err)); 1458 return (EIO); 1459 } 1460 err = usbd_open_pipe(sc->aue_iface, sc->aue_ed[AUE_ENDPT_TX], 1461 USBD_EXCLUSIVE_USE, &sc->aue_ep[AUE_ENDPT_TX]); 1462 if (err) { 1463 printf("%s: open tx pipe failed: %s\n", 1464 USBDEVNAME(sc->aue_dev), usbd_errstr(err)); 1465 return (EIO); 1466 } 1467 err = usbd_open_pipe_intr(sc->aue_iface, sc->aue_ed[AUE_ENDPT_INTR], 1468 USBD_EXCLUSIVE_USE, &sc->aue_ep[AUE_ENDPT_INTR], sc, 1469 &sc->aue_cdata.aue_ibuf, AUE_INTR_PKTLEN, aue_intr, 1470 AUE_INTR_INTERVAL); 1471 if (err) { 1472 printf("%s: open intr pipe failed: %s\n", 1473 USBDEVNAME(sc->aue_dev), usbd_errstr(err)); 1474 return (EIO); 1475 } 1476 1477 /* Start up the receive pipe. */ 1478 for (i = 0; i < AUE_RX_LIST_CNT; i++) { 1479 c = &sc->aue_cdata.aue_rx_chain[i]; 1480 usbd_setup_xfer(c->aue_xfer, sc->aue_ep[AUE_ENDPT_RX], 1481 c, c->aue_buf, AUE_BUFSZ, 1482 USBD_SHORT_XFER_OK | USBD_NO_COPY, USBD_NO_TIMEOUT, 1483 aue_rxeof); 1484 (void)usbd_transfer(c->aue_xfer); /* XXX */ 1485 DPRINTFN(5,("%s: %s: start read\n", USBDEVNAME(sc->aue_dev), 1486 __func__)); 1487 1488 } 1489 return (0); 1490 } 1491 1492 /* 1493 * Set media options. 1494 */ 1495 Static int 1496 aue_ifmedia_upd(struct ifnet *ifp) 1497 { 1498 struct aue_softc *sc = ifp->if_softc; 1499 struct mii_data *mii = GET_MII(sc); 1500 1501 DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__)); 1502 1503 if (sc->aue_dying) 1504 return (0); 1505 1506 sc->aue_link = 0; 1507 if (mii->mii_instance) { 1508 struct mii_softc *miisc; 1509 for (miisc = LIST_FIRST(&mii->mii_phys); miisc != NULL; 1510 miisc = LIST_NEXT(miisc, mii_list)) 1511 mii_phy_reset(miisc); 1512 } 1513 mii_mediachg(mii); 1514 1515 return (0); 1516 } 1517 1518 /* 1519 * Report current media status. 1520 */ 1521 Static void 1522 aue_ifmedia_sts(struct ifnet *ifp, struct ifmediareq *ifmr) 1523 { 1524 struct aue_softc *sc = ifp->if_softc; 1525 struct mii_data *mii = GET_MII(sc); 1526 1527 DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__)); 1528 1529 mii_pollstat(mii); 1530 ifmr->ifm_active = mii->mii_media_active; 1531 ifmr->ifm_status = mii->mii_media_status; 1532 } 1533 1534 Static int 1535 aue_ioctl(struct ifnet *ifp, u_long command, caddr_t data) 1536 { 1537 struct aue_softc *sc = ifp->if_softc; 1538 struct ifaddr *ifa = (struct ifaddr *)data; 1539 struct ifreq *ifr = (struct ifreq *)data; 1540 struct mii_data *mii; 1541 int s, error = 0; 1542 1543 if (sc->aue_dying) 1544 return (EIO); 1545 1546 s = splnet(); 1547 1548 switch(command) { 1549 case SIOCSIFADDR: 1550 ifp->if_flags |= IFF_UP; 1551 aue_init(sc); 1552 1553 switch (ifa->ifa_addr->sa_family) { 1554 #ifdef INET 1555 case AF_INET: 1556 #if defined(__NetBSD__) 1557 arp_ifinit(ifp, ifa); 1558 #else 1559 arp_ifinit(&sc->arpcom, ifa); 1560 #endif 1561 break; 1562 #endif /* INET */ 1563 #ifdef NS 1564 case AF_NS: 1565 { 1566 struct ns_addr *ina = &IA_SNS(ifa)->sns_addr; 1567 1568 if (ns_nullhost(*ina)) 1569 ina->x_host = *(union ns_host *) 1570 LLADDR(ifp->if_sadl); 1571 else 1572 memcpy(LLADDR(ifp->if_sadl), 1573 ina->x_host.c_host, 1574 ifp->if_addrlen); 1575 break; 1576 } 1577 #endif /* NS */ 1578 } 1579 break; 1580 1581 case SIOCSIFMTU: 1582 if (ifr->ifr_mtu > ETHERMTU) 1583 error = EINVAL; 1584 else 1585 ifp->if_mtu = ifr->ifr_mtu; 1586 break; 1587 1588 case SIOCSIFFLAGS: 1589 if (ifp->if_flags & IFF_UP) { 1590 if (ifp->if_flags & IFF_RUNNING && 1591 ifp->if_flags & IFF_PROMISC && 1592 !(sc->aue_if_flags & IFF_PROMISC)) { 1593 AUE_SETBIT(sc, AUE_CTL2, AUE_CTL2_RX_PROMISC); 1594 } else if (ifp->if_flags & IFF_RUNNING && 1595 !(ifp->if_flags & IFF_PROMISC) && 1596 sc->aue_if_flags & IFF_PROMISC) { 1597 AUE_CLRBIT(sc, AUE_CTL2, AUE_CTL2_RX_PROMISC); 1598 } else if (!(ifp->if_flags & IFF_RUNNING)) 1599 aue_init(sc); 1600 } else { 1601 if (ifp->if_flags & IFF_RUNNING) 1602 aue_stop(sc); 1603 } 1604 sc->aue_if_flags = ifp->if_flags; 1605 error = 0; 1606 break; 1607 case SIOCADDMULTI: 1608 case SIOCDELMULTI: 1609 error = (command == SIOCADDMULTI) ? 1610 ether_addmulti(ifr, &sc->aue_ec) : 1611 ether_delmulti(ifr, &sc->aue_ec); 1612 if (error == ENETRESET) { 1613 aue_init(sc); 1614 } 1615 aue_setmulti(sc); 1616 error = 0; 1617 break; 1618 case SIOCGIFMEDIA: 1619 case SIOCSIFMEDIA: 1620 mii = GET_MII(sc); 1621 error = ifmedia_ioctl(ifp, ifr, &mii->mii_media, command); 1622 break; 1623 default: 1624 error = EINVAL; 1625 break; 1626 } 1627 1628 splx(s); 1629 1630 return (error); 1631 } 1632 1633 Static void 1634 aue_watchdog(struct ifnet *ifp) 1635 { 1636 struct aue_softc *sc = ifp->if_softc; 1637 struct aue_chain *c; 1638 usbd_status stat; 1639 int s; 1640 1641 DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__)); 1642 1643 ifp->if_oerrors++; 1644 printf("%s: watchdog timeout\n", USBDEVNAME(sc->aue_dev)); 1645 1646 s = splusb(); 1647 c = &sc->aue_cdata.aue_tx_chain[0]; 1648 usbd_get_xfer_status(c->aue_xfer, NULL, NULL, NULL, &stat); 1649 aue_txeof(c->aue_xfer, c, stat); 1650 1651 if (IFQ_IS_EMPTY(&ifp->if_snd) == 0) 1652 aue_start(ifp); 1653 splx(s); 1654 } 1655 1656 /* 1657 * Stop the adapter and free any mbufs allocated to the 1658 * RX and TX lists. 1659 */ 1660 Static void 1661 aue_stop(struct aue_softc *sc) 1662 { 1663 usbd_status err; 1664 struct ifnet *ifp; 1665 int i; 1666 1667 DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__)); 1668 1669 ifp = GET_IFP(sc); 1670 ifp->if_timer = 0; 1671 1672 aue_csr_write_1(sc, AUE_CTL0, 0); 1673 aue_csr_write_1(sc, AUE_CTL1, 0); 1674 aue_reset(sc); 1675 usb_uncallout(sc->aue_stat_ch, aue_tick, sc); 1676 1677 /* Stop transfers. */ 1678 if (sc->aue_ep[AUE_ENDPT_RX] != NULL) { 1679 err = usbd_abort_pipe(sc->aue_ep[AUE_ENDPT_RX]); 1680 if (err) { 1681 printf("%s: abort rx pipe failed: %s\n", 1682 USBDEVNAME(sc->aue_dev), usbd_errstr(err)); 1683 } 1684 err = usbd_close_pipe(sc->aue_ep[AUE_ENDPT_RX]); 1685 if (err) { 1686 printf("%s: close rx pipe failed: %s\n", 1687 USBDEVNAME(sc->aue_dev), usbd_errstr(err)); 1688 } 1689 sc->aue_ep[AUE_ENDPT_RX] = NULL; 1690 } 1691 1692 if (sc->aue_ep[AUE_ENDPT_TX] != NULL) { 1693 err = usbd_abort_pipe(sc->aue_ep[AUE_ENDPT_TX]); 1694 if (err) { 1695 printf("%s: abort tx pipe failed: %s\n", 1696 USBDEVNAME(sc->aue_dev), usbd_errstr(err)); 1697 } 1698 err = usbd_close_pipe(sc->aue_ep[AUE_ENDPT_TX]); 1699 if (err) { 1700 printf("%s: close tx pipe failed: %s\n", 1701 USBDEVNAME(sc->aue_dev), usbd_errstr(err)); 1702 } 1703 sc->aue_ep[AUE_ENDPT_TX] = NULL; 1704 } 1705 1706 if (sc->aue_ep[AUE_ENDPT_INTR] != NULL) { 1707 err = usbd_abort_pipe(sc->aue_ep[AUE_ENDPT_INTR]); 1708 if (err) { 1709 printf("%s: abort intr pipe failed: %s\n", 1710 USBDEVNAME(sc->aue_dev), usbd_errstr(err)); 1711 } 1712 err = usbd_close_pipe(sc->aue_ep[AUE_ENDPT_INTR]); 1713 if (err) { 1714 printf("%s: close intr pipe failed: %s\n", 1715 USBDEVNAME(sc->aue_dev), usbd_errstr(err)); 1716 } 1717 sc->aue_ep[AUE_ENDPT_INTR] = NULL; 1718 } 1719 1720 /* Free RX resources. */ 1721 for (i = 0; i < AUE_RX_LIST_CNT; i++) { 1722 if (sc->aue_cdata.aue_rx_chain[i].aue_mbuf != NULL) { 1723 m_freem(sc->aue_cdata.aue_rx_chain[i].aue_mbuf); 1724 sc->aue_cdata.aue_rx_chain[i].aue_mbuf = NULL; 1725 } 1726 if (sc->aue_cdata.aue_rx_chain[i].aue_xfer != NULL) { 1727 usbd_free_xfer(sc->aue_cdata.aue_rx_chain[i].aue_xfer); 1728 sc->aue_cdata.aue_rx_chain[i].aue_xfer = NULL; 1729 } 1730 } 1731 1732 /* Free TX resources. */ 1733 for (i = 0; i < AUE_TX_LIST_CNT; i++) { 1734 if (sc->aue_cdata.aue_tx_chain[i].aue_mbuf != NULL) { 1735 m_freem(sc->aue_cdata.aue_tx_chain[i].aue_mbuf); 1736 sc->aue_cdata.aue_tx_chain[i].aue_mbuf = NULL; 1737 } 1738 if (sc->aue_cdata.aue_tx_chain[i].aue_xfer != NULL) { 1739 usbd_free_xfer(sc->aue_cdata.aue_tx_chain[i].aue_xfer); 1740 sc->aue_cdata.aue_tx_chain[i].aue_xfer = NULL; 1741 } 1742 } 1743 1744 sc->aue_link = 0; 1745 1746 ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE); 1747 } 1748