1 /* 3c509.c: A 3c509 EtherLink3 ethernet driver for linux. */ 2 /* 3 Written 1993-2000 by Donald Becker. 4 5 Copyright 1994-2000 by Donald Becker. 6 Copyright 1993 United States Government as represented by the 7 Director, National Security Agency. This software may be used and 8 distributed according to the terms of the GNU General Public License, 9 incorporated herein by reference. 10 11 This driver is for the 3Com EtherLinkIII series. 12 13 The author may be reached as becker@scyld.com, or C/O 14 Scyld Computing Corporation 15 410 Severn Ave., Suite 210 16 Annapolis MD 21403 17 18 Known limitations: 19 Because of the way 3c509 ISA detection works it's difficult to predict 20 a priori which of several ISA-mode cards will be detected first. 21 22 This driver does not use predictive interrupt mode, resulting in higher 23 packet latency but lower overhead. If interrupts are disabled for an 24 unusually long time it could also result in missed packets, but in 25 practice this rarely happens. 26 27 28 FIXES: 29 Alan Cox: Removed the 'Unexpected interrupt' bug. 30 Michael Meskes: Upgraded to Donald Becker's version 1.07. 31 Alan Cox: Increased the eeprom delay. Regardless of 32 what the docs say some people definitely 33 get problems with lower (but in card spec) 34 delays 35 v1.10 4/21/97 Fixed module code so that multiple cards may be detected, 36 other cleanups. -djb 37 Andrea Arcangeli: Upgraded to Donald Becker's version 1.12. 38 Rick Payne: Fixed SMP race condition 39 v1.13 9/8/97 Made 'max_interrupt_work' an insmod-settable variable -djb 40 v1.14 10/15/97 Avoided waiting..discard message for fast machines -djb 41 v1.15 1/31/98 Faster recovery for Tx errors. -djb 42 v1.16 2/3/98 Different ID port handling to avoid sound cards. -djb 43 v1.18 12Mar2001 Andrew Morton 44 - Avoid bogus detect of 3c590's (Andrzej Krzysztofowicz) 45 - Reviewed against 1.18 from scyld.com 46 v1.18a 17Nov2001 Jeff Garzik <jgarzik@pobox.com> 47 - ethtool support 48 v1.18b 1Mar2002 Zwane Mwaikambo <zwane@commfireservices.com> 49 - Power Management support 50 v1.18c 1Mar2002 David Ruggiero <jdr@farfalle.com> 51 - Full duplex support 52 v1.19 16Oct2002 Zwane Mwaikambo <zwane@linuxpower.ca> 53 - Additional ethtool features 54 v1.19a 28Oct2002 Davud Ruggiero <jdr@farfalle.com> 55 - Increase *read_eeprom udelay to workaround oops with 2 cards. 56 v1.19b 08Nov2002 Marc Zyngier <maz@wild-wind.fr.eu.org> 57 - Introduce driver model for EISA cards. 58 v1.20 04Feb2008 Ondrej Zary <linux@rainbow-software.org> 59 - convert to isa_driver and pnp_driver and some cleanups 60 */ 61 62 #define DRV_NAME "3c509" 63 #define DRV_VERSION "1.20" 64 #define DRV_RELDATE "04Feb2008" 65 66 /* A few values that may be tweaked. */ 67 68 /* Time in jiffies before concluding the transmitter is hung. */ 69 #define TX_TIMEOUT (400*HZ/1000) 70 71 #include <linux/module.h> 72 #include <linux/isa.h> 73 #include <linux/pnp.h> 74 #include <linux/string.h> 75 #include <linux/interrupt.h> 76 #include <linux/errno.h> 77 #include <linux/in.h> 78 #include <linux/ioport.h> 79 #include <linux/init.h> 80 #include <linux/netdevice.h> 81 #include <linux/etherdevice.h> 82 #include <linux/pm.h> 83 #include <linux/skbuff.h> 84 #include <linux/delay.h> /* for udelay() */ 85 #include <linux/spinlock.h> 86 #include <linux/ethtool.h> 87 #include <linux/device.h> 88 #include <linux/eisa.h> 89 #include <linux/bitops.h> 90 91 #include <asm/uaccess.h> 92 #include <asm/io.h> 93 #include <asm/irq.h> 94 95 static char version[] = DRV_NAME ".c:" DRV_VERSION " " DRV_RELDATE " becker@scyld.com\n"; 96 97 #ifdef EL3_DEBUG 98 static int el3_debug = EL3_DEBUG; 99 #else 100 static int el3_debug = 2; 101 #endif 102 103 /* Used to do a global count of all the cards in the system. Must be 104 * a global variable so that the eisa probe routines can increment 105 * it */ 106 static int el3_cards = 0; 107 #define EL3_MAX_CARDS 8 108 109 /* To minimize the size of the driver source I only define operating 110 constants if they are used several times. You'll need the manual 111 anyway if you want to understand driver details. */ 112 /* Offsets from base I/O address. */ 113 #define EL3_DATA 0x00 114 #define EL3_CMD 0x0e 115 #define EL3_STATUS 0x0e 116 #define EEPROM_READ 0x80 117 118 #define EL3_IO_EXTENT 16 119 120 #define EL3WINDOW(win_num) outw(SelectWindow + (win_num), ioaddr + EL3_CMD) 121 122 123 /* The top five bits written to EL3_CMD are a command, the lower 124 11 bits are the parameter, if applicable. */ 125 enum c509cmd { 126 TotalReset = 0<<11, SelectWindow = 1<<11, StartCoax = 2<<11, 127 RxDisable = 3<<11, RxEnable = 4<<11, RxReset = 5<<11, RxDiscard = 8<<11, 128 TxEnable = 9<<11, TxDisable = 10<<11, TxReset = 11<<11, 129 FakeIntr = 12<<11, AckIntr = 13<<11, SetIntrEnb = 14<<11, 130 SetStatusEnb = 15<<11, SetRxFilter = 16<<11, SetRxThreshold = 17<<11, 131 SetTxThreshold = 18<<11, SetTxStart = 19<<11, StatsEnable = 21<<11, 132 StatsDisable = 22<<11, StopCoax = 23<<11, PowerUp = 27<<11, 133 PowerDown = 28<<11, PowerAuto = 29<<11}; 134 135 enum c509status { 136 IntLatch = 0x0001, AdapterFailure = 0x0002, TxComplete = 0x0004, 137 TxAvailable = 0x0008, RxComplete = 0x0010, RxEarly = 0x0020, 138 IntReq = 0x0040, StatsFull = 0x0080, CmdBusy = 0x1000, }; 139 140 /* The SetRxFilter command accepts the following classes: */ 141 enum RxFilter { 142 RxStation = 1, RxMulticast = 2, RxBroadcast = 4, RxProm = 8 }; 143 144 /* Register window 1 offsets, the window used in normal operation. */ 145 #define TX_FIFO 0x00 146 #define RX_FIFO 0x00 147 #define RX_STATUS 0x08 148 #define TX_STATUS 0x0B 149 #define TX_FREE 0x0C /* Remaining free bytes in Tx buffer. */ 150 151 #define WN0_CONF_CTRL 0x04 /* Window 0: Configuration control register */ 152 #define WN0_ADDR_CONF 0x06 /* Window 0: Address configuration register */ 153 #define WN0_IRQ 0x08 /* Window 0: Set IRQ line in bits 12-15. */ 154 #define WN4_MEDIA 0x0A /* Window 4: Various transcvr/media bits. */ 155 #define MEDIA_TP 0x00C0 /* Enable link beat and jabber for 10baseT. */ 156 #define WN4_NETDIAG 0x06 /* Window 4: Net diagnostic */ 157 #define FD_ENABLE 0x8000 /* Enable full-duplex ("external loopback") */ 158 159 /* 160 * Must be a power of two (we use a binary and in the 161 * circular queue) 162 */ 163 #define SKB_QUEUE_SIZE 64 164 165 enum el3_cardtype { EL3_ISA, EL3_PNP, EL3_EISA }; 166 167 struct el3_private { 168 spinlock_t lock; 169 /* skb send-queue */ 170 int head, size; 171 struct sk_buff *queue[SKB_QUEUE_SIZE]; 172 enum el3_cardtype type; 173 }; 174 static int id_port; 175 static int current_tag; 176 static struct net_device *el3_devs[EL3_MAX_CARDS]; 177 178 /* Parameters that may be passed into the module. */ 179 static int debug = -1; 180 static int irq[] = {-1, -1, -1, -1, -1, -1, -1, -1}; 181 /* Maximum events (Rx packets, etc.) to handle at each interrupt. */ 182 static int max_interrupt_work = 10; 183 #ifdef CONFIG_PNP 184 static int nopnp; 185 #endif 186 187 static int el3_common_init(struct net_device *dev); 188 static void el3_common_remove(struct net_device *dev); 189 static ushort id_read_eeprom(int index); 190 static ushort read_eeprom(int ioaddr, int index); 191 static int el3_open(struct net_device *dev); 192 static netdev_tx_t el3_start_xmit(struct sk_buff *skb, struct net_device *dev); 193 static irqreturn_t el3_interrupt(int irq, void *dev_id); 194 static void update_stats(struct net_device *dev); 195 static struct net_device_stats *el3_get_stats(struct net_device *dev); 196 static int el3_rx(struct net_device *dev); 197 static int el3_close(struct net_device *dev); 198 static void set_multicast_list(struct net_device *dev); 199 static void el3_tx_timeout (struct net_device *dev); 200 static void el3_down(struct net_device *dev); 201 static void el3_up(struct net_device *dev); 202 static const struct ethtool_ops ethtool_ops; 203 #ifdef CONFIG_PM 204 static int el3_suspend(struct device *, pm_message_t); 205 static int el3_resume(struct device *); 206 #else 207 #define el3_suspend NULL 208 #define el3_resume NULL 209 #endif 210 211 212 /* generic device remove for all device types */ 213 static int el3_device_remove (struct device *device); 214 #ifdef CONFIG_NET_POLL_CONTROLLER 215 static void el3_poll_controller(struct net_device *dev); 216 #endif 217 218 /* Return 0 on success, 1 on error, 2 when found already detected PnP card */ 219 static int el3_isa_id_sequence(__be16 *phys_addr) 220 { 221 short lrs_state = 0xff; 222 int i; 223 224 /* ISA boards are detected by sending the ID sequence to the 225 ID_PORT. We find cards past the first by setting the 'current_tag' 226 on cards as they are found. Cards with their tag set will not 227 respond to subsequent ID sequences. */ 228 229 outb(0x00, id_port); 230 outb(0x00, id_port); 231 for (i = 0; i < 255; i++) { 232 outb(lrs_state, id_port); 233 lrs_state <<= 1; 234 lrs_state = lrs_state & 0x100 ? lrs_state ^ 0xcf : lrs_state; 235 } 236 /* For the first probe, clear all board's tag registers. */ 237 if (current_tag == 0) 238 outb(0xd0, id_port); 239 else /* Otherwise kill off already-found boards. */ 240 outb(0xd8, id_port); 241 if (id_read_eeprom(7) != 0x6d50) 242 return 1; 243 /* Read in EEPROM data, which does contention-select. 244 Only the lowest address board will stay "on-line". 245 3Com got the byte order backwards. */ 246 for (i = 0; i < 3; i++) 247 phys_addr[i] = htons(id_read_eeprom(i)); 248 #ifdef CONFIG_PNP 249 if (!nopnp) { 250 /* The ISA PnP 3c509 cards respond to the ID sequence too. 251 This check is needed in order not to register them twice. */ 252 for (i = 0; i < el3_cards; i++) { 253 struct el3_private *lp = netdev_priv(el3_devs[i]); 254 if (lp->type == EL3_PNP && 255 !memcmp(phys_addr, el3_devs[i]->dev_addr, 256 ETH_ALEN)) { 257 if (el3_debug > 3) 258 pr_debug("3c509 with address %02x %02x %02x %02x %02x %02x was found by ISAPnP\n", 259 phys_addr[0] & 0xff, phys_addr[0] >> 8, 260 phys_addr[1] & 0xff, phys_addr[1] >> 8, 261 phys_addr[2] & 0xff, phys_addr[2] >> 8); 262 /* Set the adaptor tag so that the next card can be found. */ 263 outb(0xd0 + ++current_tag, id_port); 264 return 2; 265 } 266 } 267 } 268 #endif /* CONFIG_PNP */ 269 return 0; 270 271 } 272 273 static void el3_dev_fill(struct net_device *dev, __be16 *phys_addr, int ioaddr, 274 int irq, int if_port, enum el3_cardtype type) 275 { 276 struct el3_private *lp = netdev_priv(dev); 277 278 memcpy(dev->dev_addr, phys_addr, ETH_ALEN); 279 dev->base_addr = ioaddr; 280 dev->irq = irq; 281 dev->if_port = if_port; 282 lp->type = type; 283 } 284 285 static int el3_isa_match(struct device *pdev, unsigned int ndev) 286 { 287 struct net_device *dev; 288 int ioaddr, isa_irq, if_port, err; 289 unsigned int iobase; 290 __be16 phys_addr[3]; 291 292 while ((err = el3_isa_id_sequence(phys_addr)) == 2) 293 ; /* Skip to next card when PnP card found */ 294 if (err == 1) 295 return 0; 296 297 iobase = id_read_eeprom(8); 298 if_port = iobase >> 14; 299 ioaddr = 0x200 + ((iobase & 0x1f) << 4); 300 if (irq[el3_cards] > 1 && irq[el3_cards] < 16) 301 isa_irq = irq[el3_cards]; 302 else 303 isa_irq = id_read_eeprom(9) >> 12; 304 305 dev = alloc_etherdev(sizeof(struct el3_private)); 306 if (!dev) 307 return -ENOMEM; 308 309 SET_NETDEV_DEV(dev, pdev); 310 netdev_boot_setup_check(dev); 311 312 if (!request_region(ioaddr, EL3_IO_EXTENT, "3c509-isa")) { 313 free_netdev(dev); 314 return 0; 315 } 316 317 /* Set the adaptor tag so that the next card can be found. */ 318 outb(0xd0 + ++current_tag, id_port); 319 320 /* Activate the adaptor at the EEPROM location. */ 321 outb((ioaddr >> 4) | 0xe0, id_port); 322 323 EL3WINDOW(0); 324 if (inw(ioaddr) != 0x6d50) { 325 free_netdev(dev); 326 return 0; 327 } 328 329 /* Free the interrupt so that some other card can use it. */ 330 outw(0x0f00, ioaddr + WN0_IRQ); 331 332 el3_dev_fill(dev, phys_addr, ioaddr, isa_irq, if_port, EL3_ISA); 333 dev_set_drvdata(pdev, dev); 334 if (el3_common_init(dev)) { 335 free_netdev(dev); 336 return 0; 337 } 338 339 el3_devs[el3_cards++] = dev; 340 return 1; 341 } 342 343 static int el3_isa_remove(struct device *pdev, 344 unsigned int ndev) 345 { 346 el3_device_remove(pdev); 347 dev_set_drvdata(pdev, NULL); 348 return 0; 349 } 350 351 #ifdef CONFIG_PM 352 static int el3_isa_suspend(struct device *dev, unsigned int n, 353 pm_message_t state) 354 { 355 current_tag = 0; 356 return el3_suspend(dev, state); 357 } 358 359 static int el3_isa_resume(struct device *dev, unsigned int n) 360 { 361 struct net_device *ndev = dev_get_drvdata(dev); 362 int ioaddr = ndev->base_addr, err; 363 __be16 phys_addr[3]; 364 365 while ((err = el3_isa_id_sequence(phys_addr)) == 2) 366 ; /* Skip to next card when PnP card found */ 367 if (err == 1) 368 return 0; 369 /* Set the adaptor tag so that the next card can be found. */ 370 outb(0xd0 + ++current_tag, id_port); 371 /* Enable the card */ 372 outb((ioaddr >> 4) | 0xe0, id_port); 373 EL3WINDOW(0); 374 if (inw(ioaddr) != 0x6d50) 375 return 1; 376 /* Free the interrupt so that some other card can use it. */ 377 outw(0x0f00, ioaddr + WN0_IRQ); 378 return el3_resume(dev); 379 } 380 #endif 381 382 static struct isa_driver el3_isa_driver = { 383 .match = el3_isa_match, 384 .remove = el3_isa_remove, 385 #ifdef CONFIG_PM 386 .suspend = el3_isa_suspend, 387 .resume = el3_isa_resume, 388 #endif 389 .driver = { 390 .name = "3c509" 391 }, 392 }; 393 static int isa_registered; 394 395 #ifdef CONFIG_PNP 396 static struct pnp_device_id el3_pnp_ids[] = { 397 { .id = "TCM5090" }, /* 3Com Etherlink III (TP) */ 398 { .id = "TCM5091" }, /* 3Com Etherlink III */ 399 { .id = "TCM5094" }, /* 3Com Etherlink III (combo) */ 400 { .id = "TCM5095" }, /* 3Com Etherlink III (TPO) */ 401 { .id = "TCM5098" }, /* 3Com Etherlink III (TPC) */ 402 { .id = "PNP80f7" }, /* 3Com Etherlink III compatible */ 403 { .id = "PNP80f8" }, /* 3Com Etherlink III compatible */ 404 { .id = "" } 405 }; 406 MODULE_DEVICE_TABLE(pnp, el3_pnp_ids); 407 408 static int el3_pnp_probe(struct pnp_dev *pdev, const struct pnp_device_id *id) 409 { 410 short i; 411 int ioaddr, irq, if_port; 412 __be16 phys_addr[3]; 413 struct net_device *dev = NULL; 414 int err; 415 416 ioaddr = pnp_port_start(pdev, 0); 417 if (!request_region(ioaddr, EL3_IO_EXTENT, "3c509-pnp")) 418 return -EBUSY; 419 irq = pnp_irq(pdev, 0); 420 EL3WINDOW(0); 421 for (i = 0; i < 3; i++) 422 phys_addr[i] = htons(read_eeprom(ioaddr, i)); 423 if_port = read_eeprom(ioaddr, 8) >> 14; 424 dev = alloc_etherdev(sizeof(struct el3_private)); 425 if (!dev) { 426 release_region(ioaddr, EL3_IO_EXTENT); 427 return -ENOMEM; 428 } 429 SET_NETDEV_DEV(dev, &pdev->dev); 430 netdev_boot_setup_check(dev); 431 432 el3_dev_fill(dev, phys_addr, ioaddr, irq, if_port, EL3_PNP); 433 pnp_set_drvdata(pdev, dev); 434 err = el3_common_init(dev); 435 436 if (err) { 437 pnp_set_drvdata(pdev, NULL); 438 free_netdev(dev); 439 return err; 440 } 441 442 el3_devs[el3_cards++] = dev; 443 return 0; 444 } 445 446 static void el3_pnp_remove(struct pnp_dev *pdev) 447 { 448 el3_common_remove(pnp_get_drvdata(pdev)); 449 pnp_set_drvdata(pdev, NULL); 450 } 451 452 #ifdef CONFIG_PM 453 static int el3_pnp_suspend(struct pnp_dev *pdev, pm_message_t state) 454 { 455 return el3_suspend(&pdev->dev, state); 456 } 457 458 static int el3_pnp_resume(struct pnp_dev *pdev) 459 { 460 return el3_resume(&pdev->dev); 461 } 462 #endif 463 464 static struct pnp_driver el3_pnp_driver = { 465 .name = "3c509", 466 .id_table = el3_pnp_ids, 467 .probe = el3_pnp_probe, 468 .remove = el3_pnp_remove, 469 #ifdef CONFIG_PM 470 .suspend = el3_pnp_suspend, 471 .resume = el3_pnp_resume, 472 #endif 473 }; 474 static int pnp_registered; 475 #endif /* CONFIG_PNP */ 476 477 #ifdef CONFIG_EISA 478 static struct eisa_device_id el3_eisa_ids[] = { 479 { "TCM5090" }, 480 { "TCM5091" }, 481 { "TCM5092" }, 482 { "TCM5093" }, 483 { "TCM5094" }, 484 { "TCM5095" }, 485 { "TCM5098" }, 486 { "" } 487 }; 488 MODULE_DEVICE_TABLE(eisa, el3_eisa_ids); 489 490 static int el3_eisa_probe (struct device *device); 491 492 static struct eisa_driver el3_eisa_driver = { 493 .id_table = el3_eisa_ids, 494 .driver = { 495 .name = "3c579", 496 .probe = el3_eisa_probe, 497 .remove = el3_device_remove, 498 .suspend = el3_suspend, 499 .resume = el3_resume, 500 } 501 }; 502 static int eisa_registered; 503 #endif 504 505 static const struct net_device_ops netdev_ops = { 506 .ndo_open = el3_open, 507 .ndo_stop = el3_close, 508 .ndo_start_xmit = el3_start_xmit, 509 .ndo_get_stats = el3_get_stats, 510 .ndo_set_rx_mode = set_multicast_list, 511 .ndo_tx_timeout = el3_tx_timeout, 512 .ndo_change_mtu = eth_change_mtu, 513 .ndo_set_mac_address = eth_mac_addr, 514 .ndo_validate_addr = eth_validate_addr, 515 #ifdef CONFIG_NET_POLL_CONTROLLER 516 .ndo_poll_controller = el3_poll_controller, 517 #endif 518 }; 519 520 static int el3_common_init(struct net_device *dev) 521 { 522 struct el3_private *lp = netdev_priv(dev); 523 int err; 524 const char *if_names[] = {"10baseT", "AUI", "undefined", "BNC"}; 525 526 spin_lock_init(&lp->lock); 527 528 if (dev->mem_start & 0x05) { /* xcvr codes 1/3/4/12 */ 529 dev->if_port = (dev->mem_start & 0x0f); 530 } else { /* xcvr codes 0/8 */ 531 /* use eeprom value, but save user's full-duplex selection */ 532 dev->if_port |= (dev->mem_start & 0x08); 533 } 534 535 /* The EL3-specific entries in the device structure. */ 536 dev->netdev_ops = &netdev_ops; 537 dev->watchdog_timeo = TX_TIMEOUT; 538 SET_ETHTOOL_OPS(dev, ðtool_ops); 539 540 err = register_netdev(dev); 541 if (err) { 542 pr_err("Failed to register 3c5x9 at %#3.3lx, IRQ %d.\n", 543 dev->base_addr, dev->irq); 544 release_region(dev->base_addr, EL3_IO_EXTENT); 545 return err; 546 } 547 548 pr_info("%s: 3c5x9 found at %#3.3lx, %s port, address %pM, IRQ %d.\n", 549 dev->name, dev->base_addr, if_names[(dev->if_port & 0x03)], 550 dev->dev_addr, dev->irq); 551 552 if (el3_debug > 0) 553 pr_info("%s", version); 554 return 0; 555 556 } 557 558 static void el3_common_remove (struct net_device *dev) 559 { 560 unregister_netdev (dev); 561 release_region(dev->base_addr, EL3_IO_EXTENT); 562 free_netdev (dev); 563 } 564 565 #ifdef CONFIG_EISA 566 static int __init el3_eisa_probe (struct device *device) 567 { 568 short i; 569 int ioaddr, irq, if_port; 570 __be16 phys_addr[3]; 571 struct net_device *dev = NULL; 572 struct eisa_device *edev; 573 int err; 574 575 /* Yeepee, The driver framework is calling us ! */ 576 edev = to_eisa_device (device); 577 ioaddr = edev->base_addr; 578 579 if (!request_region(ioaddr, EL3_IO_EXTENT, "3c579-eisa")) 580 return -EBUSY; 581 582 /* Change the register set to the configuration window 0. */ 583 outw(SelectWindow | 0, ioaddr + 0xC80 + EL3_CMD); 584 585 irq = inw(ioaddr + WN0_IRQ) >> 12; 586 if_port = inw(ioaddr + 6)>>14; 587 for (i = 0; i < 3; i++) 588 phys_addr[i] = htons(read_eeprom(ioaddr, i)); 589 590 /* Restore the "Product ID" to the EEPROM read register. */ 591 read_eeprom(ioaddr, 3); 592 593 dev = alloc_etherdev(sizeof (struct el3_private)); 594 if (dev == NULL) { 595 release_region(ioaddr, EL3_IO_EXTENT); 596 return -ENOMEM; 597 } 598 599 SET_NETDEV_DEV(dev, device); 600 netdev_boot_setup_check(dev); 601 602 el3_dev_fill(dev, phys_addr, ioaddr, irq, if_port, EL3_EISA); 603 eisa_set_drvdata (edev, dev); 604 err = el3_common_init(dev); 605 606 if (err) { 607 eisa_set_drvdata (edev, NULL); 608 free_netdev(dev); 609 return err; 610 } 611 612 el3_devs[el3_cards++] = dev; 613 return 0; 614 } 615 #endif 616 617 /* This remove works for all device types. 618 * 619 * The net dev must be stored in the driver data field */ 620 static int el3_device_remove(struct device *device) 621 { 622 struct net_device *dev; 623 624 dev = dev_get_drvdata(device); 625 626 el3_common_remove (dev); 627 return 0; 628 } 629 630 /* Read a word from the EEPROM using the regular EEPROM access register. 631 Assume that we are in register window zero. 632 */ 633 static ushort read_eeprom(int ioaddr, int index) 634 { 635 outw(EEPROM_READ + index, ioaddr + 10); 636 /* Pause for at least 162 us. for the read to take place. 637 Some chips seem to require much longer */ 638 mdelay(2); 639 return inw(ioaddr + 12); 640 } 641 642 /* Read a word from the EEPROM when in the ISA ID probe state. */ 643 static ushort id_read_eeprom(int index) 644 { 645 int bit, word = 0; 646 647 /* Issue read command, and pause for at least 162 us. for it to complete. 648 Assume extra-fast 16Mhz bus. */ 649 outb(EEPROM_READ + index, id_port); 650 651 /* Pause for at least 162 us. for the read to take place. */ 652 /* Some chips seem to require much longer */ 653 mdelay(4); 654 655 for (bit = 15; bit >= 0; bit--) 656 word = (word << 1) + (inb(id_port) & 0x01); 657 658 if (el3_debug > 3) 659 pr_debug(" 3c509 EEPROM word %d %#4.4x.\n", index, word); 660 661 return word; 662 } 663 664 665 static int 666 el3_open(struct net_device *dev) 667 { 668 int ioaddr = dev->base_addr; 669 int i; 670 671 outw(TxReset, ioaddr + EL3_CMD); 672 outw(RxReset, ioaddr + EL3_CMD); 673 outw(SetStatusEnb | 0x00, ioaddr + EL3_CMD); 674 675 i = request_irq(dev->irq, el3_interrupt, 0, dev->name, dev); 676 if (i) 677 return i; 678 679 EL3WINDOW(0); 680 if (el3_debug > 3) 681 pr_debug("%s: Opening, IRQ %d status@%x %4.4x.\n", dev->name, 682 dev->irq, ioaddr + EL3_STATUS, inw(ioaddr + EL3_STATUS)); 683 684 el3_up(dev); 685 686 if (el3_debug > 3) 687 pr_debug("%s: Opened 3c509 IRQ %d status %4.4x.\n", 688 dev->name, dev->irq, inw(ioaddr + EL3_STATUS)); 689 690 return 0; 691 } 692 693 static void 694 el3_tx_timeout (struct net_device *dev) 695 { 696 int ioaddr = dev->base_addr; 697 698 /* Transmitter timeout, serious problems. */ 699 pr_warning("%s: transmit timed out, Tx_status %2.2x status %4.4x Tx FIFO room %d.\n", 700 dev->name, inb(ioaddr + TX_STATUS), inw(ioaddr + EL3_STATUS), 701 inw(ioaddr + TX_FREE)); 702 dev->stats.tx_errors++; 703 dev->trans_start = jiffies; /* prevent tx timeout */ 704 /* Issue TX_RESET and TX_START commands. */ 705 outw(TxReset, ioaddr + EL3_CMD); 706 outw(TxEnable, ioaddr + EL3_CMD); 707 netif_wake_queue(dev); 708 } 709 710 711 static netdev_tx_t 712 el3_start_xmit(struct sk_buff *skb, struct net_device *dev) 713 { 714 struct el3_private *lp = netdev_priv(dev); 715 int ioaddr = dev->base_addr; 716 unsigned long flags; 717 718 netif_stop_queue (dev); 719 720 dev->stats.tx_bytes += skb->len; 721 722 if (el3_debug > 4) { 723 pr_debug("%s: el3_start_xmit(length = %u) called, status %4.4x.\n", 724 dev->name, skb->len, inw(ioaddr + EL3_STATUS)); 725 } 726 /* 727 * We lock the driver against other processors. Note 728 * we don't need to lock versus the IRQ as we suspended 729 * that. This means that we lose the ability to take 730 * an RX during a TX upload. That sucks a bit with SMP 731 * on an original 3c509 (2K buffer) 732 * 733 * Using disable_irq stops us crapping on other 734 * time sensitive devices. 735 */ 736 737 spin_lock_irqsave(&lp->lock, flags); 738 739 /* Put out the doubleword header... */ 740 outw(skb->len, ioaddr + TX_FIFO); 741 outw(0x00, ioaddr + TX_FIFO); 742 /* ... and the packet rounded to a doubleword. */ 743 outsl(ioaddr + TX_FIFO, skb->data, (skb->len + 3) >> 2); 744 745 if (inw(ioaddr + TX_FREE) > 1536) 746 netif_start_queue(dev); 747 else 748 /* Interrupt us when the FIFO has room for max-sized packet. */ 749 outw(SetTxThreshold + 1536, ioaddr + EL3_CMD); 750 751 spin_unlock_irqrestore(&lp->lock, flags); 752 753 dev_kfree_skb (skb); 754 755 /* Clear the Tx status stack. */ 756 { 757 short tx_status; 758 int i = 4; 759 760 while (--i > 0 && (tx_status = inb(ioaddr + TX_STATUS)) > 0) { 761 if (tx_status & 0x38) dev->stats.tx_aborted_errors++; 762 if (tx_status & 0x30) outw(TxReset, ioaddr + EL3_CMD); 763 if (tx_status & 0x3C) outw(TxEnable, ioaddr + EL3_CMD); 764 outb(0x00, ioaddr + TX_STATUS); /* Pop the status stack. */ 765 } 766 } 767 return NETDEV_TX_OK; 768 } 769 770 /* The EL3 interrupt handler. */ 771 static irqreturn_t 772 el3_interrupt(int irq, void *dev_id) 773 { 774 struct net_device *dev = dev_id; 775 struct el3_private *lp; 776 int ioaddr, status; 777 int i = max_interrupt_work; 778 779 lp = netdev_priv(dev); 780 spin_lock(&lp->lock); 781 782 ioaddr = dev->base_addr; 783 784 if (el3_debug > 4) { 785 status = inw(ioaddr + EL3_STATUS); 786 pr_debug("%s: interrupt, status %4.4x.\n", dev->name, status); 787 } 788 789 while ((status = inw(ioaddr + EL3_STATUS)) & 790 (IntLatch | RxComplete | StatsFull)) { 791 792 if (status & RxComplete) 793 el3_rx(dev); 794 795 if (status & TxAvailable) { 796 if (el3_debug > 5) 797 pr_debug(" TX room bit was handled.\n"); 798 /* There's room in the FIFO for a full-sized packet. */ 799 outw(AckIntr | TxAvailable, ioaddr + EL3_CMD); 800 netif_wake_queue (dev); 801 } 802 if (status & (AdapterFailure | RxEarly | StatsFull | TxComplete)) { 803 /* Handle all uncommon interrupts. */ 804 if (status & StatsFull) /* Empty statistics. */ 805 update_stats(dev); 806 if (status & RxEarly) { /* Rx early is unused. */ 807 el3_rx(dev); 808 outw(AckIntr | RxEarly, ioaddr + EL3_CMD); 809 } 810 if (status & TxComplete) { /* Really Tx error. */ 811 short tx_status; 812 int i = 4; 813 814 while (--i>0 && (tx_status = inb(ioaddr + TX_STATUS)) > 0) { 815 if (tx_status & 0x38) dev->stats.tx_aborted_errors++; 816 if (tx_status & 0x30) outw(TxReset, ioaddr + EL3_CMD); 817 if (tx_status & 0x3C) outw(TxEnable, ioaddr + EL3_CMD); 818 outb(0x00, ioaddr + TX_STATUS); /* Pop the status stack. */ 819 } 820 } 821 if (status & AdapterFailure) { 822 /* Adapter failure requires Rx reset and reinit. */ 823 outw(RxReset, ioaddr + EL3_CMD); 824 /* Set the Rx filter to the current state. */ 825 outw(SetRxFilter | RxStation | RxBroadcast 826 | (dev->flags & IFF_ALLMULTI ? RxMulticast : 0) 827 | (dev->flags & IFF_PROMISC ? RxProm : 0), 828 ioaddr + EL3_CMD); 829 outw(RxEnable, ioaddr + EL3_CMD); /* Re-enable the receiver. */ 830 outw(AckIntr | AdapterFailure, ioaddr + EL3_CMD); 831 } 832 } 833 834 if (--i < 0) { 835 pr_err("%s: Infinite loop in interrupt, status %4.4x.\n", 836 dev->name, status); 837 /* Clear all interrupts. */ 838 outw(AckIntr | 0xFF, ioaddr + EL3_CMD); 839 break; 840 } 841 /* Acknowledge the IRQ. */ 842 outw(AckIntr | IntReq | IntLatch, ioaddr + EL3_CMD); /* Ack IRQ */ 843 } 844 845 if (el3_debug > 4) { 846 pr_debug("%s: exiting interrupt, status %4.4x.\n", dev->name, 847 inw(ioaddr + EL3_STATUS)); 848 } 849 spin_unlock(&lp->lock); 850 return IRQ_HANDLED; 851 } 852 853 854 #ifdef CONFIG_NET_POLL_CONTROLLER 855 /* 856 * Polling receive - used by netconsole and other diagnostic tools 857 * to allow network i/o with interrupts disabled. 858 */ 859 static void el3_poll_controller(struct net_device *dev) 860 { 861 disable_irq(dev->irq); 862 el3_interrupt(dev->irq, dev); 863 enable_irq(dev->irq); 864 } 865 #endif 866 867 static struct net_device_stats * 868 el3_get_stats(struct net_device *dev) 869 { 870 struct el3_private *lp = netdev_priv(dev); 871 unsigned long flags; 872 873 /* 874 * This is fast enough not to bother with disable IRQ 875 * stuff. 876 */ 877 878 spin_lock_irqsave(&lp->lock, flags); 879 update_stats(dev); 880 spin_unlock_irqrestore(&lp->lock, flags); 881 return &dev->stats; 882 } 883 884 /* Update statistics. We change to register window 6, so this should be run 885 single-threaded if the device is active. This is expected to be a rare 886 operation, and it's simpler for the rest of the driver to assume that 887 window 1 is always valid rather than use a special window-state variable. 888 */ 889 static void update_stats(struct net_device *dev) 890 { 891 int ioaddr = dev->base_addr; 892 893 if (el3_debug > 5) 894 pr_debug(" Updating the statistics.\n"); 895 /* Turn off statistics updates while reading. */ 896 outw(StatsDisable, ioaddr + EL3_CMD); 897 /* Switch to the stats window, and read everything. */ 898 EL3WINDOW(6); 899 dev->stats.tx_carrier_errors += inb(ioaddr + 0); 900 dev->stats.tx_heartbeat_errors += inb(ioaddr + 1); 901 /* Multiple collisions. */ inb(ioaddr + 2); 902 dev->stats.collisions += inb(ioaddr + 3); 903 dev->stats.tx_window_errors += inb(ioaddr + 4); 904 dev->stats.rx_fifo_errors += inb(ioaddr + 5); 905 dev->stats.tx_packets += inb(ioaddr + 6); 906 /* Rx packets */ inb(ioaddr + 7); 907 /* Tx deferrals */ inb(ioaddr + 8); 908 inw(ioaddr + 10); /* Total Rx and Tx octets. */ 909 inw(ioaddr + 12); 910 911 /* Back to window 1, and turn statistics back on. */ 912 EL3WINDOW(1); 913 outw(StatsEnable, ioaddr + EL3_CMD); 914 } 915 916 static int 917 el3_rx(struct net_device *dev) 918 { 919 int ioaddr = dev->base_addr; 920 short rx_status; 921 922 if (el3_debug > 5) 923 pr_debug(" In rx_packet(), status %4.4x, rx_status %4.4x.\n", 924 inw(ioaddr+EL3_STATUS), inw(ioaddr+RX_STATUS)); 925 while ((rx_status = inw(ioaddr + RX_STATUS)) > 0) { 926 if (rx_status & 0x4000) { /* Error, update stats. */ 927 short error = rx_status & 0x3800; 928 929 outw(RxDiscard, ioaddr + EL3_CMD); 930 dev->stats.rx_errors++; 931 switch (error) { 932 case 0x0000: dev->stats.rx_over_errors++; break; 933 case 0x0800: dev->stats.rx_length_errors++; break; 934 case 0x1000: dev->stats.rx_frame_errors++; break; 935 case 0x1800: dev->stats.rx_length_errors++; break; 936 case 0x2000: dev->stats.rx_frame_errors++; break; 937 case 0x2800: dev->stats.rx_crc_errors++; break; 938 } 939 } else { 940 short pkt_len = rx_status & 0x7ff; 941 struct sk_buff *skb; 942 943 skb = netdev_alloc_skb(dev, pkt_len + 5); 944 if (el3_debug > 4) 945 pr_debug("Receiving packet size %d status %4.4x.\n", 946 pkt_len, rx_status); 947 if (skb != NULL) { 948 skb_reserve(skb, 2); /* Align IP on 16 byte */ 949 950 /* 'skb->data' points to the start of sk_buff data area. */ 951 insl(ioaddr + RX_FIFO, skb_put(skb,pkt_len), 952 (pkt_len + 3) >> 2); 953 954 outw(RxDiscard, ioaddr + EL3_CMD); /* Pop top Rx packet. */ 955 skb->protocol = eth_type_trans(skb,dev); 956 netif_rx(skb); 957 dev->stats.rx_bytes += pkt_len; 958 dev->stats.rx_packets++; 959 continue; 960 } 961 outw(RxDiscard, ioaddr + EL3_CMD); 962 dev->stats.rx_dropped++; 963 if (el3_debug) 964 pr_debug("%s: Couldn't allocate a sk_buff of size %d.\n", 965 dev->name, pkt_len); 966 } 967 inw(ioaddr + EL3_STATUS); /* Delay. */ 968 while (inw(ioaddr + EL3_STATUS) & 0x1000) 969 pr_debug(" Waiting for 3c509 to discard packet, status %x.\n", 970 inw(ioaddr + EL3_STATUS) ); 971 } 972 973 return 0; 974 } 975 976 /* 977 * Set or clear the multicast filter for this adaptor. 978 */ 979 static void 980 set_multicast_list(struct net_device *dev) 981 { 982 unsigned long flags; 983 struct el3_private *lp = netdev_priv(dev); 984 int ioaddr = dev->base_addr; 985 int mc_count = netdev_mc_count(dev); 986 987 if (el3_debug > 1) { 988 static int old; 989 if (old != mc_count) { 990 old = mc_count; 991 pr_debug("%s: Setting Rx mode to %d addresses.\n", 992 dev->name, mc_count); 993 } 994 } 995 spin_lock_irqsave(&lp->lock, flags); 996 if (dev->flags&IFF_PROMISC) { 997 outw(SetRxFilter | RxStation | RxMulticast | RxBroadcast | RxProm, 998 ioaddr + EL3_CMD); 999 } 1000 else if (mc_count || (dev->flags&IFF_ALLMULTI)) { 1001 outw(SetRxFilter | RxStation | RxMulticast | RxBroadcast, ioaddr + EL3_CMD); 1002 } 1003 else 1004 outw(SetRxFilter | RxStation | RxBroadcast, ioaddr + EL3_CMD); 1005 spin_unlock_irqrestore(&lp->lock, flags); 1006 } 1007 1008 static int 1009 el3_close(struct net_device *dev) 1010 { 1011 int ioaddr = dev->base_addr; 1012 struct el3_private *lp = netdev_priv(dev); 1013 1014 if (el3_debug > 2) 1015 pr_debug("%s: Shutting down ethercard.\n", dev->name); 1016 1017 el3_down(dev); 1018 1019 free_irq(dev->irq, dev); 1020 /* Switching back to window 0 disables the IRQ. */ 1021 EL3WINDOW(0); 1022 if (lp->type != EL3_EISA) { 1023 /* But we explicitly zero the IRQ line select anyway. Don't do 1024 * it on EISA cards, it prevents the module from getting an 1025 * IRQ after unload+reload... */ 1026 outw(0x0f00, ioaddr + WN0_IRQ); 1027 } 1028 1029 return 0; 1030 } 1031 1032 static int 1033 el3_link_ok(struct net_device *dev) 1034 { 1035 int ioaddr = dev->base_addr; 1036 u16 tmp; 1037 1038 EL3WINDOW(4); 1039 tmp = inw(ioaddr + WN4_MEDIA); 1040 EL3WINDOW(1); 1041 return tmp & (1<<11); 1042 } 1043 1044 static int 1045 el3_netdev_get_ecmd(struct net_device *dev, struct ethtool_cmd *ecmd) 1046 { 1047 u16 tmp; 1048 int ioaddr = dev->base_addr; 1049 1050 EL3WINDOW(0); 1051 /* obtain current transceiver via WN4_MEDIA? */ 1052 tmp = inw(ioaddr + WN0_ADDR_CONF); 1053 ecmd->transceiver = XCVR_INTERNAL; 1054 switch (tmp >> 14) { 1055 case 0: 1056 ecmd->port = PORT_TP; 1057 break; 1058 case 1: 1059 ecmd->port = PORT_AUI; 1060 ecmd->transceiver = XCVR_EXTERNAL; 1061 break; 1062 case 3: 1063 ecmd->port = PORT_BNC; 1064 default: 1065 break; 1066 } 1067 1068 ecmd->duplex = DUPLEX_HALF; 1069 ecmd->supported = 0; 1070 tmp = inw(ioaddr + WN0_CONF_CTRL); 1071 if (tmp & (1<<13)) 1072 ecmd->supported |= SUPPORTED_AUI; 1073 if (tmp & (1<<12)) 1074 ecmd->supported |= SUPPORTED_BNC; 1075 if (tmp & (1<<9)) { 1076 ecmd->supported |= SUPPORTED_TP | SUPPORTED_10baseT_Half | 1077 SUPPORTED_10baseT_Full; /* hmm... */ 1078 EL3WINDOW(4); 1079 tmp = inw(ioaddr + WN4_NETDIAG); 1080 if (tmp & FD_ENABLE) 1081 ecmd->duplex = DUPLEX_FULL; 1082 } 1083 1084 ethtool_cmd_speed_set(ecmd, SPEED_10); 1085 EL3WINDOW(1); 1086 return 0; 1087 } 1088 1089 static int 1090 el3_netdev_set_ecmd(struct net_device *dev, struct ethtool_cmd *ecmd) 1091 { 1092 u16 tmp; 1093 int ioaddr = dev->base_addr; 1094 1095 if (ecmd->speed != SPEED_10) 1096 return -EINVAL; 1097 if ((ecmd->duplex != DUPLEX_HALF) && (ecmd->duplex != DUPLEX_FULL)) 1098 return -EINVAL; 1099 if ((ecmd->transceiver != XCVR_INTERNAL) && (ecmd->transceiver != XCVR_EXTERNAL)) 1100 return -EINVAL; 1101 1102 /* change XCVR type */ 1103 EL3WINDOW(0); 1104 tmp = inw(ioaddr + WN0_ADDR_CONF); 1105 switch (ecmd->port) { 1106 case PORT_TP: 1107 tmp &= ~(3<<14); 1108 dev->if_port = 0; 1109 break; 1110 case PORT_AUI: 1111 tmp |= (1<<14); 1112 dev->if_port = 1; 1113 break; 1114 case PORT_BNC: 1115 tmp |= (3<<14); 1116 dev->if_port = 3; 1117 break; 1118 default: 1119 return -EINVAL; 1120 } 1121 1122 outw(tmp, ioaddr + WN0_ADDR_CONF); 1123 if (dev->if_port == 3) { 1124 /* fire up the DC-DC convertor if BNC gets enabled */ 1125 tmp = inw(ioaddr + WN0_ADDR_CONF); 1126 if (tmp & (3 << 14)) { 1127 outw(StartCoax, ioaddr + EL3_CMD); 1128 udelay(800); 1129 } else 1130 return -EIO; 1131 } 1132 1133 EL3WINDOW(4); 1134 tmp = inw(ioaddr + WN4_NETDIAG); 1135 if (ecmd->duplex == DUPLEX_FULL) 1136 tmp |= FD_ENABLE; 1137 else 1138 tmp &= ~FD_ENABLE; 1139 outw(tmp, ioaddr + WN4_NETDIAG); 1140 EL3WINDOW(1); 1141 1142 return 0; 1143 } 1144 1145 static void el3_get_drvinfo(struct net_device *dev, struct ethtool_drvinfo *info) 1146 { 1147 strlcpy(info->driver, DRV_NAME, sizeof(info->driver)); 1148 strlcpy(info->version, DRV_VERSION, sizeof(info->version)); 1149 } 1150 1151 static int el3_get_settings(struct net_device *dev, struct ethtool_cmd *ecmd) 1152 { 1153 struct el3_private *lp = netdev_priv(dev); 1154 int ret; 1155 1156 spin_lock_irq(&lp->lock); 1157 ret = el3_netdev_get_ecmd(dev, ecmd); 1158 spin_unlock_irq(&lp->lock); 1159 return ret; 1160 } 1161 1162 static int el3_set_settings(struct net_device *dev, struct ethtool_cmd *ecmd) 1163 { 1164 struct el3_private *lp = netdev_priv(dev); 1165 int ret; 1166 1167 spin_lock_irq(&lp->lock); 1168 ret = el3_netdev_set_ecmd(dev, ecmd); 1169 spin_unlock_irq(&lp->lock); 1170 return ret; 1171 } 1172 1173 static u32 el3_get_link(struct net_device *dev) 1174 { 1175 struct el3_private *lp = netdev_priv(dev); 1176 u32 ret; 1177 1178 spin_lock_irq(&lp->lock); 1179 ret = el3_link_ok(dev); 1180 spin_unlock_irq(&lp->lock); 1181 return ret; 1182 } 1183 1184 static u32 el3_get_msglevel(struct net_device *dev) 1185 { 1186 return el3_debug; 1187 } 1188 1189 static void el3_set_msglevel(struct net_device *dev, u32 v) 1190 { 1191 el3_debug = v; 1192 } 1193 1194 static const struct ethtool_ops ethtool_ops = { 1195 .get_drvinfo = el3_get_drvinfo, 1196 .get_settings = el3_get_settings, 1197 .set_settings = el3_set_settings, 1198 .get_link = el3_get_link, 1199 .get_msglevel = el3_get_msglevel, 1200 .set_msglevel = el3_set_msglevel, 1201 }; 1202 1203 static void 1204 el3_down(struct net_device *dev) 1205 { 1206 int ioaddr = dev->base_addr; 1207 1208 netif_stop_queue(dev); 1209 1210 /* Turn off statistics ASAP. We update lp->stats below. */ 1211 outw(StatsDisable, ioaddr + EL3_CMD); 1212 1213 /* Disable the receiver and transmitter. */ 1214 outw(RxDisable, ioaddr + EL3_CMD); 1215 outw(TxDisable, ioaddr + EL3_CMD); 1216 1217 if (dev->if_port == 3) 1218 /* Turn off thinnet power. Green! */ 1219 outw(StopCoax, ioaddr + EL3_CMD); 1220 else if (dev->if_port == 0) { 1221 /* Disable link beat and jabber, if_port may change here next open(). */ 1222 EL3WINDOW(4); 1223 outw(inw(ioaddr + WN4_MEDIA) & ~MEDIA_TP, ioaddr + WN4_MEDIA); 1224 } 1225 1226 outw(SetIntrEnb | 0x0000, ioaddr + EL3_CMD); 1227 1228 update_stats(dev); 1229 } 1230 1231 static void 1232 el3_up(struct net_device *dev) 1233 { 1234 int i, sw_info, net_diag; 1235 int ioaddr = dev->base_addr; 1236 1237 /* Activating the board required and does no harm otherwise */ 1238 outw(0x0001, ioaddr + 4); 1239 1240 /* Set the IRQ line. */ 1241 outw((dev->irq << 12) | 0x0f00, ioaddr + WN0_IRQ); 1242 1243 /* Set the station address in window 2 each time opened. */ 1244 EL3WINDOW(2); 1245 1246 for (i = 0; i < 6; i++) 1247 outb(dev->dev_addr[i], ioaddr + i); 1248 1249 if ((dev->if_port & 0x03) == 3) /* BNC interface */ 1250 /* Start the thinnet transceiver. We should really wait 50ms...*/ 1251 outw(StartCoax, ioaddr + EL3_CMD); 1252 else if ((dev->if_port & 0x03) == 0) { /* 10baseT interface */ 1253 /* Combine secondary sw_info word (the adapter level) and primary 1254 sw_info word (duplex setting plus other useless bits) */ 1255 EL3WINDOW(0); 1256 sw_info = (read_eeprom(ioaddr, 0x14) & 0x400f) | 1257 (read_eeprom(ioaddr, 0x0d) & 0xBff0); 1258 1259 EL3WINDOW(4); 1260 net_diag = inw(ioaddr + WN4_NETDIAG); 1261 net_diag = (net_diag | FD_ENABLE); /* temporarily assume full-duplex will be set */ 1262 pr_info("%s: ", dev->name); 1263 switch (dev->if_port & 0x0c) { 1264 case 12: 1265 /* force full-duplex mode if 3c5x9b */ 1266 if (sw_info & 0x000f) { 1267 pr_cont("Forcing 3c5x9b full-duplex mode"); 1268 break; 1269 } 1270 case 8: 1271 /* set full-duplex mode based on eeprom config setting */ 1272 if ((sw_info & 0x000f) && (sw_info & 0x8000)) { 1273 pr_cont("Setting 3c5x9b full-duplex mode (from EEPROM configuration bit)"); 1274 break; 1275 } 1276 default: 1277 /* xcvr=(0 || 4) OR user has an old 3c5x9 non "B" model */ 1278 pr_cont("Setting 3c5x9/3c5x9B half-duplex mode"); 1279 net_diag = (net_diag & ~FD_ENABLE); /* disable full duplex */ 1280 } 1281 1282 outw(net_diag, ioaddr + WN4_NETDIAG); 1283 pr_cont(" if_port: %d, sw_info: %4.4x\n", dev->if_port, sw_info); 1284 if (el3_debug > 3) 1285 pr_debug("%s: 3c5x9 net diag word is now: %4.4x.\n", dev->name, net_diag); 1286 /* Enable link beat and jabber check. */ 1287 outw(inw(ioaddr + WN4_MEDIA) | MEDIA_TP, ioaddr + WN4_MEDIA); 1288 } 1289 1290 /* Switch to the stats window, and clear all stats by reading. */ 1291 outw(StatsDisable, ioaddr + EL3_CMD); 1292 EL3WINDOW(6); 1293 for (i = 0; i < 9; i++) 1294 inb(ioaddr + i); 1295 inw(ioaddr + 10); 1296 inw(ioaddr + 12); 1297 1298 /* Switch to register set 1 for normal use. */ 1299 EL3WINDOW(1); 1300 1301 /* Accept b-case and phys addr only. */ 1302 outw(SetRxFilter | RxStation | RxBroadcast, ioaddr + EL3_CMD); 1303 outw(StatsEnable, ioaddr + EL3_CMD); /* Turn on statistics. */ 1304 1305 outw(RxEnable, ioaddr + EL3_CMD); /* Enable the receiver. */ 1306 outw(TxEnable, ioaddr + EL3_CMD); /* Enable transmitter. */ 1307 /* Allow status bits to be seen. */ 1308 outw(SetStatusEnb | 0xff, ioaddr + EL3_CMD); 1309 /* Ack all pending events, and set active indicator mask. */ 1310 outw(AckIntr | IntLatch | TxAvailable | RxEarly | IntReq, 1311 ioaddr + EL3_CMD); 1312 outw(SetIntrEnb | IntLatch|TxAvailable|TxComplete|RxComplete|StatsFull, 1313 ioaddr + EL3_CMD); 1314 1315 netif_start_queue(dev); 1316 } 1317 1318 /* Power Management support functions */ 1319 #ifdef CONFIG_PM 1320 1321 static int 1322 el3_suspend(struct device *pdev, pm_message_t state) 1323 { 1324 unsigned long flags; 1325 struct net_device *dev; 1326 struct el3_private *lp; 1327 int ioaddr; 1328 1329 dev = dev_get_drvdata(pdev); 1330 lp = netdev_priv(dev); 1331 ioaddr = dev->base_addr; 1332 1333 spin_lock_irqsave(&lp->lock, flags); 1334 1335 if (netif_running(dev)) 1336 netif_device_detach(dev); 1337 1338 el3_down(dev); 1339 outw(PowerDown, ioaddr + EL3_CMD); 1340 1341 spin_unlock_irqrestore(&lp->lock, flags); 1342 return 0; 1343 } 1344 1345 static int 1346 el3_resume(struct device *pdev) 1347 { 1348 unsigned long flags; 1349 struct net_device *dev; 1350 struct el3_private *lp; 1351 int ioaddr; 1352 1353 dev = dev_get_drvdata(pdev); 1354 lp = netdev_priv(dev); 1355 ioaddr = dev->base_addr; 1356 1357 spin_lock_irqsave(&lp->lock, flags); 1358 1359 outw(PowerUp, ioaddr + EL3_CMD); 1360 EL3WINDOW(0); 1361 el3_up(dev); 1362 1363 if (netif_running(dev)) 1364 netif_device_attach(dev); 1365 1366 spin_unlock_irqrestore(&lp->lock, flags); 1367 return 0; 1368 } 1369 1370 #endif /* CONFIG_PM */ 1371 1372 module_param(debug,int, 0); 1373 module_param_array(irq, int, NULL, 0); 1374 module_param(max_interrupt_work, int, 0); 1375 MODULE_PARM_DESC(debug, "debug level (0-6)"); 1376 MODULE_PARM_DESC(irq, "IRQ number(s) (assigned)"); 1377 MODULE_PARM_DESC(max_interrupt_work, "maximum events handled per interrupt"); 1378 #ifdef CONFIG_PNP 1379 module_param(nopnp, int, 0); 1380 MODULE_PARM_DESC(nopnp, "disable ISA PnP support (0-1)"); 1381 #endif /* CONFIG_PNP */ 1382 MODULE_DESCRIPTION("3Com Etherlink III (3c509, 3c509B, 3c529, 3c579) ethernet driver"); 1383 MODULE_LICENSE("GPL"); 1384 1385 static int __init el3_init_module(void) 1386 { 1387 int ret = 0; 1388 1389 if (debug >= 0) 1390 el3_debug = debug; 1391 1392 #ifdef CONFIG_PNP 1393 if (!nopnp) { 1394 ret = pnp_register_driver(&el3_pnp_driver); 1395 if (!ret) 1396 pnp_registered = 1; 1397 } 1398 #endif 1399 /* Select an open I/O location at 0x1*0 to do ISA contention select. */ 1400 /* Start with 0x110 to avoid some sound cards.*/ 1401 for (id_port = 0x110 ; id_port < 0x200; id_port += 0x10) { 1402 if (!request_region(id_port, 1, "3c509-control")) 1403 continue; 1404 outb(0x00, id_port); 1405 outb(0xff, id_port); 1406 if (inb(id_port) & 0x01) 1407 break; 1408 else 1409 release_region(id_port, 1); 1410 } 1411 if (id_port >= 0x200) { 1412 id_port = 0; 1413 pr_err("No I/O port available for 3c509 activation.\n"); 1414 } else { 1415 ret = isa_register_driver(&el3_isa_driver, EL3_MAX_CARDS); 1416 if (!ret) 1417 isa_registered = 1; 1418 } 1419 #ifdef CONFIG_EISA 1420 ret = eisa_driver_register(&el3_eisa_driver); 1421 if (!ret) 1422 eisa_registered = 1; 1423 #endif 1424 1425 #ifdef CONFIG_PNP 1426 if (pnp_registered) 1427 ret = 0; 1428 #endif 1429 if (isa_registered) 1430 ret = 0; 1431 #ifdef CONFIG_EISA 1432 if (eisa_registered) 1433 ret = 0; 1434 #endif 1435 return ret; 1436 } 1437 1438 static void __exit el3_cleanup_module(void) 1439 { 1440 #ifdef CONFIG_PNP 1441 if (pnp_registered) 1442 pnp_unregister_driver(&el3_pnp_driver); 1443 #endif 1444 if (isa_registered) 1445 isa_unregister_driver(&el3_isa_driver); 1446 if (id_port) 1447 release_region(id_port, 1); 1448 #ifdef CONFIG_EISA 1449 if (eisa_registered) 1450 eisa_driver_unregister(&el3_eisa_driver); 1451 #endif 1452 } 1453 1454 module_init (el3_init_module); 1455 module_exit (el3_cleanup_module); 1456