GNU Linux-libre 4.4.284-gnu1
[releases.git] / drivers / net / ethernet / ti / tlan.c
1 /*******************************************************************************
2  *
3  *  Linux ThunderLAN Driver
4  *
5  *  tlan.c
6  *  by James Banks
7  *
8  *  (C) 1997-1998 Caldera, Inc.
9  *  (C) 1998 James Banks
10  *  (C) 1999-2001 Torben Mathiasen
11  *  (C) 2002 Samuel Chessman
12  *
13  *  This software may be used and distributed according to the terms
14  *  of the GNU General Public License, incorporated herein by reference.
15  *
16  ** Useful (if not required) reading:
17  *
18  *              Texas Instruments, ThunderLAN Programmer's Guide,
19  *                      TI Literature Number SPWU013A
20  *                      available in PDF format from www.ti.com
21  *              Level One, LXT901 and LXT970 Data Sheets
22  *                      available in PDF format from www.level1.com
23  *              National Semiconductor, DP83840A Data Sheet
24  *                      available in PDF format from www.national.com
25  *              Microchip Technology, 24C01A/02A/04A Data Sheet
26  *                      available in PDF format from www.microchip.com
27  *
28  ******************************************************************************/
29
30 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
31
32 #include <linux/hardirq.h>
33 #include <linux/module.h>
34 #include <linux/init.h>
35 #include <linux/interrupt.h>
36 #include <linux/ioport.h>
37 #include <linux/eisa.h>
38 #include <linux/pci.h>
39 #include <linux/dma-mapping.h>
40 #include <linux/netdevice.h>
41 #include <linux/etherdevice.h>
42 #include <linux/delay.h>
43 #include <linux/spinlock.h>
44 #include <linux/workqueue.h>
45 #include <linux/mii.h>
46
47 #include "tlan.h"
48
49
50 /* For removing EISA devices */
51 static  struct net_device       *tlan_eisa_devices;
52
53 static  int             tlan_devices_installed;
54
55 /* Set speed, duplex and aui settings */
56 static  int aui[MAX_TLAN_BOARDS];
57 static  int duplex[MAX_TLAN_BOARDS];
58 static  int speed[MAX_TLAN_BOARDS];
59 static  int boards_found;
60 module_param_array(aui, int, NULL, 0);
61 module_param_array(duplex, int, NULL, 0);
62 module_param_array(speed, int, NULL, 0);
63 MODULE_PARM_DESC(aui, "ThunderLAN use AUI port(s) (0-1)");
64 MODULE_PARM_DESC(duplex,
65                  "ThunderLAN duplex setting(s) (0-default, 1-half, 2-full)");
66 MODULE_PARM_DESC(speed, "ThunderLAN port speed setting(s) (0,10,100)");
67
68 MODULE_AUTHOR("Maintainer: Samuel Chessman <chessman@tux.org>");
69 MODULE_DESCRIPTION("Driver for TI ThunderLAN based ethernet PCI adapters");
70 MODULE_LICENSE("GPL");
71
72 /* Turn on debugging. See Documentation/networking/tlan.txt for details */
73 static  int             debug;
74 module_param(debug, int, 0);
75 MODULE_PARM_DESC(debug, "ThunderLAN debug mask");
76
77 static  const char tlan_signature[] = "TLAN";
78 static  const char tlan_banner[] = "ThunderLAN driver v1.17\n";
79 static  int tlan_have_pci;
80 static  int tlan_have_eisa;
81
82 static const char * const media[] = {
83         "10BaseT-HD", "10BaseT-FD", "100baseTx-HD",
84         "100BaseTx-FD", "100BaseT4", NULL
85 };
86
87 static struct board {
88         const char      *device_label;
89         u32             flags;
90         u16             addr_ofs;
91 } board_info[] = {
92         { "Compaq Netelligent 10 T PCI UTP", TLAN_ADAPTER_ACTIVITY_LED, 0x83 },
93         { "Compaq Netelligent 10/100 TX PCI UTP",
94           TLAN_ADAPTER_ACTIVITY_LED, 0x83 },
95         { "Compaq Integrated NetFlex-3/P", TLAN_ADAPTER_NONE, 0x83 },
96         { "Compaq NetFlex-3/P",
97           TLAN_ADAPTER_UNMANAGED_PHY | TLAN_ADAPTER_BIT_RATE_PHY, 0x83 },
98         { "Compaq NetFlex-3/P", TLAN_ADAPTER_NONE, 0x83 },
99         { "Compaq Netelligent Integrated 10/100 TX UTP",
100           TLAN_ADAPTER_ACTIVITY_LED, 0x83 },
101         { "Compaq Netelligent Dual 10/100 TX PCI UTP",
102           TLAN_ADAPTER_NONE, 0x83 },
103         { "Compaq Netelligent 10/100 TX Embedded UTP",
104           TLAN_ADAPTER_NONE, 0x83 },
105         { "Olicom OC-2183/2185", TLAN_ADAPTER_USE_INTERN_10, 0x83 },
106         { "Olicom OC-2325", TLAN_ADAPTER_ACTIVITY_LED |
107           TLAN_ADAPTER_UNMANAGED_PHY, 0xf8 },
108         { "Olicom OC-2326", TLAN_ADAPTER_ACTIVITY_LED |
109           TLAN_ADAPTER_USE_INTERN_10, 0xf8 },
110         { "Compaq Netelligent 10/100 TX UTP", TLAN_ADAPTER_ACTIVITY_LED, 0x83 },
111         { "Compaq Netelligent 10 T/2 PCI UTP/coax", TLAN_ADAPTER_NONE, 0x83 },
112         { "Compaq NetFlex-3/E",
113           TLAN_ADAPTER_ACTIVITY_LED |   /* EISA card */
114           TLAN_ADAPTER_UNMANAGED_PHY | TLAN_ADAPTER_BIT_RATE_PHY, 0x83 },
115         { "Compaq NetFlex-3/E",
116           TLAN_ADAPTER_ACTIVITY_LED, 0x83 }, /* EISA card */
117 };
118
119 static const struct pci_device_id tlan_pci_tbl[] = {
120         { PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_NETEL10,
121           PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0 },
122         { PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_NETEL100,
123           PCI_ANY_ID, PCI_ANY_ID, 0, 0, 1 },
124         { PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_NETFLEX3I,
125           PCI_ANY_ID, PCI_ANY_ID, 0, 0, 2 },
126         { PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_THUNDER,
127           PCI_ANY_ID, PCI_ANY_ID, 0, 0, 3 },
128         { PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_NETFLEX3B,
129           PCI_ANY_ID, PCI_ANY_ID, 0, 0, 4 },
130         { PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_NETEL100PI,
131           PCI_ANY_ID, PCI_ANY_ID, 0, 0, 5 },
132         { PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_NETEL100D,
133           PCI_ANY_ID, PCI_ANY_ID, 0, 0, 6 },
134         { PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_NETEL100I,
135           PCI_ANY_ID, PCI_ANY_ID, 0, 0, 7 },
136         { PCI_VENDOR_ID_OLICOM, PCI_DEVICE_ID_OLICOM_OC2183,
137           PCI_ANY_ID, PCI_ANY_ID, 0, 0, 8 },
138         { PCI_VENDOR_ID_OLICOM, PCI_DEVICE_ID_OLICOM_OC2325,
139           PCI_ANY_ID, PCI_ANY_ID, 0, 0, 9 },
140         { PCI_VENDOR_ID_OLICOM, PCI_DEVICE_ID_OLICOM_OC2326,
141           PCI_ANY_ID, PCI_ANY_ID, 0, 0, 10 },
142         { PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_NETELLIGENT_10_100_WS_5100,
143           PCI_ANY_ID, PCI_ANY_ID, 0, 0, 11 },
144         { PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_NETELLIGENT_10_T2,
145           PCI_ANY_ID, PCI_ANY_ID, 0, 0, 12 },
146         { 0,}
147 };
148 MODULE_DEVICE_TABLE(pci, tlan_pci_tbl);
149
150 static void     tlan_eisa_probe(void);
151 static void     tlan_eisa_cleanup(void);
152 static int      tlan_init(struct net_device *);
153 static int      tlan_open(struct net_device *dev);
154 static netdev_tx_t tlan_start_tx(struct sk_buff *, struct net_device *);
155 static irqreturn_t tlan_handle_interrupt(int, void *);
156 static int      tlan_close(struct net_device *);
157 static struct   net_device_stats *tlan_get_stats(struct net_device *);
158 static void     tlan_set_multicast_list(struct net_device *);
159 static int      tlan_ioctl(struct net_device *dev, struct ifreq *rq, int cmd);
160 static int      tlan_probe1(struct pci_dev *pdev, long ioaddr,
161                             int irq, int rev, const struct pci_device_id *ent);
162 static void     tlan_tx_timeout(struct net_device *dev);
163 static void     tlan_tx_timeout_work(struct work_struct *work);
164 static int      tlan_init_one(struct pci_dev *pdev,
165                               const struct pci_device_id *ent);
166
167 static u32      tlan_handle_tx_eof(struct net_device *, u16);
168 static u32      tlan_handle_stat_overflow(struct net_device *, u16);
169 static u32      tlan_handle_rx_eof(struct net_device *, u16);
170 static u32      tlan_handle_dummy(struct net_device *, u16);
171 static u32      tlan_handle_tx_eoc(struct net_device *, u16);
172 static u32      tlan_handle_status_check(struct net_device *, u16);
173 static u32      tlan_handle_rx_eoc(struct net_device *, u16);
174
175 static void     tlan_timer(unsigned long);
176
177 static void     tlan_reset_lists(struct net_device *);
178 static void     tlan_free_lists(struct net_device *);
179 static void     tlan_print_dio(u16);
180 static void     tlan_print_list(struct tlan_list *, char *, int);
181 static void     tlan_read_and_clear_stats(struct net_device *, int);
182 static void     tlan_reset_adapter(struct net_device *);
183 static void     tlan_finish_reset(struct net_device *);
184 static void     tlan_set_mac(struct net_device *, int areg, char *mac);
185
186 static void     tlan_phy_print(struct net_device *);
187 static void     tlan_phy_detect(struct net_device *);
188 static void     tlan_phy_power_down(struct net_device *);
189 static void     tlan_phy_power_up(struct net_device *);
190 static void     tlan_phy_reset(struct net_device *);
191 static void     tlan_phy_start_link(struct net_device *);
192 static void     tlan_phy_finish_auto_neg(struct net_device *);
193 static void     tlan_phy_monitor(unsigned long);
194
195 /*
196   static int    tlan_phy_nop(struct net_device *);
197   static int    tlan_phy_internal_check(struct net_device *);
198   static int    tlan_phy_internal_service(struct net_device *);
199   static int    tlan_phy_dp83840a_check(struct net_device *);
200 */
201
202 static bool     tlan_mii_read_reg(struct net_device *, u16, u16, u16 *);
203 static void     tlan_mii_send_data(u16, u32, unsigned);
204 static void     tlan_mii_sync(u16);
205 static void     tlan_mii_write_reg(struct net_device *, u16, u16, u16);
206
207 static void     tlan_ee_send_start(u16);
208 static int      tlan_ee_send_byte(u16, u8, int);
209 static void     tlan_ee_receive_byte(u16, u8 *, int);
210 static int      tlan_ee_read_byte(struct net_device *, u8, u8 *);
211
212
213 static inline void
214 tlan_store_skb(struct tlan_list *tag, struct sk_buff *skb)
215 {
216         unsigned long addr = (unsigned long)skb;
217         tag->buffer[9].address = addr;
218         tag->buffer[8].address = upper_32_bits(addr);
219 }
220
221 static inline struct sk_buff *
222 tlan_get_skb(const struct tlan_list *tag)
223 {
224         unsigned long addr;
225
226         addr = tag->buffer[9].address;
227         addr |= ((unsigned long) tag->buffer[8].address << 16) << 16;
228         return (struct sk_buff *) addr;
229 }
230
231 static u32
232 (*tlan_int_vector[TLAN_INT_NUMBER_OF_INTS])(struct net_device *, u16) = {
233         NULL,
234         tlan_handle_tx_eof,
235         tlan_handle_stat_overflow,
236         tlan_handle_rx_eof,
237         tlan_handle_dummy,
238         tlan_handle_tx_eoc,
239         tlan_handle_status_check,
240         tlan_handle_rx_eoc
241 };
242
243 static inline void
244 tlan_set_timer(struct net_device *dev, u32 ticks, u32 type)
245 {
246         struct tlan_priv *priv = netdev_priv(dev);
247         unsigned long flags = 0;
248
249         if (!in_irq())
250                 spin_lock_irqsave(&priv->lock, flags);
251         if (priv->timer.function != NULL &&
252             priv->timer_type != TLAN_TIMER_ACTIVITY) {
253                 if (!in_irq())
254                         spin_unlock_irqrestore(&priv->lock, flags);
255                 return;
256         }
257         priv->timer.function = tlan_timer;
258         if (!in_irq())
259                 spin_unlock_irqrestore(&priv->lock, flags);
260
261         priv->timer.data = (unsigned long) dev;
262         priv->timer_set_at = jiffies;
263         priv->timer_type = type;
264         mod_timer(&priv->timer, jiffies + ticks);
265
266 }
267
268
269 /*****************************************************************************
270 ******************************************************************************
271
272 ThunderLAN driver primary functions
273
274 these functions are more or less common to all linux network drivers.
275
276 ******************************************************************************
277 *****************************************************************************/
278
279
280
281
282
283 /***************************************************************
284  *      tlan_remove_one
285  *
286  *      Returns:
287  *              Nothing
288  *      Parms:
289  *              None
290  *
291  *      Goes through the TLanDevices list and frees the device
292  *      structs and memory associated with each device (lists
293  *      and buffers).  It also ureserves the IO port regions
294  *      associated with this device.
295  *
296  **************************************************************/
297
298
299 static void tlan_remove_one(struct pci_dev *pdev)
300 {
301         struct net_device *dev = pci_get_drvdata(pdev);
302         struct tlan_priv        *priv = netdev_priv(dev);
303
304         unregister_netdev(dev);
305
306         if (priv->dma_storage) {
307                 pci_free_consistent(priv->pci_dev,
308                                     priv->dma_size, priv->dma_storage,
309                                     priv->dma_storage_dma);
310         }
311
312 #ifdef CONFIG_PCI
313         pci_release_regions(pdev);
314 #endif
315
316         cancel_work_sync(&priv->tlan_tqueue);
317         free_netdev(dev);
318 }
319
320 static void tlan_start(struct net_device *dev)
321 {
322         tlan_reset_lists(dev);
323         /* NOTE: It might not be necessary to read the stats before a
324            reset if you don't care what the values are.
325         */
326         tlan_read_and_clear_stats(dev, TLAN_IGNORE);
327         tlan_reset_adapter(dev);
328         netif_wake_queue(dev);
329 }
330
331 static void tlan_stop(struct net_device *dev)
332 {
333         struct tlan_priv *priv = netdev_priv(dev);
334
335         del_timer_sync(&priv->media_timer);
336         tlan_read_and_clear_stats(dev, TLAN_RECORD);
337         outl(TLAN_HC_AD_RST, dev->base_addr + TLAN_HOST_CMD);
338         /* Reset and power down phy */
339         tlan_reset_adapter(dev);
340         if (priv->timer.function != NULL) {
341                 del_timer_sync(&priv->timer);
342                 priv->timer.function = NULL;
343         }
344 }
345
346 #ifdef CONFIG_PM
347
348 static int tlan_suspend(struct pci_dev *pdev, pm_message_t state)
349 {
350         struct net_device *dev = pci_get_drvdata(pdev);
351
352         if (netif_running(dev))
353                 tlan_stop(dev);
354
355         netif_device_detach(dev);
356         pci_save_state(pdev);
357         pci_disable_device(pdev);
358         pci_wake_from_d3(pdev, false);
359         pci_set_power_state(pdev, PCI_D3hot);
360
361         return 0;
362 }
363
364 static int tlan_resume(struct pci_dev *pdev)
365 {
366         struct net_device *dev = pci_get_drvdata(pdev);
367         int rc = pci_enable_device(pdev);
368
369         if (rc)
370                 return rc;
371         pci_restore_state(pdev);
372         pci_enable_wake(pdev, PCI_D0, 0);
373         netif_device_attach(dev);
374
375         if (netif_running(dev))
376                 tlan_start(dev);
377
378         return 0;
379 }
380
381 #else /* CONFIG_PM */
382
383 #define tlan_suspend   NULL
384 #define tlan_resume    NULL
385
386 #endif /* CONFIG_PM */
387
388
389 static struct pci_driver tlan_driver = {
390         .name           = "tlan",
391         .id_table       = tlan_pci_tbl,
392         .probe          = tlan_init_one,
393         .remove         = tlan_remove_one,
394         .suspend        = tlan_suspend,
395         .resume         = tlan_resume,
396 };
397
398 static int __init tlan_probe(void)
399 {
400         int rc = -ENODEV;
401
402         pr_info("%s", tlan_banner);
403
404         TLAN_DBG(TLAN_DEBUG_PROBE, "Starting PCI Probe....\n");
405
406         /* Use new style PCI probing. Now the kernel will
407            do most of this for us */
408         rc = pci_register_driver(&tlan_driver);
409
410         if (rc != 0) {
411                 pr_err("Could not register pci driver\n");
412                 goto err_out_pci_free;
413         }
414
415         TLAN_DBG(TLAN_DEBUG_PROBE, "Starting EISA Probe....\n");
416         tlan_eisa_probe();
417
418         pr_info("%d device%s installed, PCI: %d  EISA: %d\n",
419                 tlan_devices_installed, tlan_devices_installed == 1 ? "" : "s",
420                 tlan_have_pci, tlan_have_eisa);
421
422         if (tlan_devices_installed == 0) {
423                 rc = -ENODEV;
424                 goto  err_out_pci_unreg;
425         }
426         return 0;
427
428 err_out_pci_unreg:
429         pci_unregister_driver(&tlan_driver);
430 err_out_pci_free:
431         return rc;
432 }
433
434
435 static int tlan_init_one(struct pci_dev *pdev,
436                                    const struct pci_device_id *ent)
437 {
438         return tlan_probe1(pdev, -1, -1, 0, ent);
439 }
440
441
442 /*
443 ***************************************************************
444 *       tlan_probe1
445 *
446 *       Returns:
447 *               0 on success, error code on error
448 *       Parms:
449 *               none
450 *
451 *       The name is lower case to fit in with all the rest of
452 *       the netcard_probe names.  This function looks for
453 *       another TLan based adapter, setting it up with the
454 *       allocated device struct if one is found.
455 *       tlan_probe has been ported to the new net API and
456 *       now allocates its own device structure. This function
457 *       is also used by modules.
458 *
459 **************************************************************/
460
461 static int tlan_probe1(struct pci_dev *pdev, long ioaddr, int irq, int rev,
462                        const struct pci_device_id *ent)
463 {
464
465         struct net_device  *dev;
466         struct tlan_priv  *priv;
467         u16                device_id;
468         int                reg, rc = -ENODEV;
469
470 #ifdef CONFIG_PCI
471         if (pdev) {
472                 rc = pci_enable_device(pdev);
473                 if (rc)
474                         return rc;
475
476                 rc = pci_request_regions(pdev, tlan_signature);
477                 if (rc) {
478                         pr_err("Could not reserve IO regions\n");
479                         goto err_out;
480                 }
481         }
482 #endif  /*  CONFIG_PCI  */
483
484         dev = alloc_etherdev(sizeof(struct tlan_priv));
485         if (dev == NULL) {
486                 rc = -ENOMEM;
487                 goto err_out_regions;
488         }
489         SET_NETDEV_DEV(dev, &pdev->dev);
490
491         priv = netdev_priv(dev);
492
493         priv->pci_dev = pdev;
494         priv->dev = dev;
495
496         /* Is this a PCI device? */
497         if (pdev) {
498                 u32                pci_io_base = 0;
499
500                 priv->adapter = &board_info[ent->driver_data];
501
502                 rc = pci_set_dma_mask(pdev, DMA_BIT_MASK(32));
503                 if (rc) {
504                         pr_err("No suitable PCI mapping available\n");
505                         goto err_out_free_dev;
506                 }
507
508                 for (reg = 0; reg <= 5; reg++) {
509                         if (pci_resource_flags(pdev, reg) & IORESOURCE_IO) {
510                                 pci_io_base = pci_resource_start(pdev, reg);
511                                 TLAN_DBG(TLAN_DEBUG_GNRL,
512                                          "IO mapping is available at %x.\n",
513                                          pci_io_base);
514                                 break;
515                         }
516                 }
517                 if (!pci_io_base) {
518                         pr_err("No IO mappings available\n");
519                         rc = -EIO;
520                         goto err_out_free_dev;
521                 }
522
523                 dev->base_addr = pci_io_base;
524                 dev->irq = pdev->irq;
525                 priv->adapter_rev = pdev->revision;
526                 pci_set_master(pdev);
527                 pci_set_drvdata(pdev, dev);
528
529         } else  {     /* EISA card */
530                 /* This is a hack. We need to know which board structure
531                  * is suited for this adapter */
532                 device_id = inw(ioaddr + EISA_ID2);
533                 if (device_id == 0x20F1) {
534                         priv->adapter = &board_info[13]; /* NetFlex-3/E */
535                         priv->adapter_rev = 23;         /* TLAN 2.3 */
536                 } else {
537                         priv->adapter = &board_info[14];
538                         priv->adapter_rev = 10;         /* TLAN 1.0 */
539                 }
540                 dev->base_addr = ioaddr;
541                 dev->irq = irq;
542         }
543
544         /* Kernel parameters */
545         if (dev->mem_start) {
546                 priv->aui    = dev->mem_start & 0x01;
547                 priv->duplex = ((dev->mem_start & 0x06) == 0x06) ? 0
548                         : (dev->mem_start & 0x06) >> 1;
549                 priv->speed  = ((dev->mem_start & 0x18) == 0x18) ? 0
550                         : (dev->mem_start & 0x18) >> 3;
551
552                 if (priv->speed == 0x1)
553                         priv->speed = TLAN_SPEED_10;
554                 else if (priv->speed == 0x2)
555                         priv->speed = TLAN_SPEED_100;
556
557                 debug = priv->debug = dev->mem_end;
558         } else {
559                 priv->aui    = aui[boards_found];
560                 priv->speed  = speed[boards_found];
561                 priv->duplex = duplex[boards_found];
562                 priv->debug = debug;
563         }
564
565         /* This will be used when we get an adapter error from
566          * within our irq handler */
567         INIT_WORK(&priv->tlan_tqueue, tlan_tx_timeout_work);
568
569         spin_lock_init(&priv->lock);
570
571         rc = tlan_init(dev);
572         if (rc) {
573                 pr_err("Could not set up device\n");
574                 goto err_out_free_dev;
575         }
576
577         rc = register_netdev(dev);
578         if (rc) {
579                 pr_err("Could not register device\n");
580                 goto err_out_uninit;
581         }
582
583
584         tlan_devices_installed++;
585         boards_found++;
586
587         /* pdev is NULL if this is an EISA device */
588         if (pdev)
589                 tlan_have_pci++;
590         else {
591                 priv->next_device = tlan_eisa_devices;
592                 tlan_eisa_devices = dev;
593                 tlan_have_eisa++;
594         }
595
596         netdev_info(dev, "irq=%2d, io=%04x, %s, Rev. %d\n",
597                     (int)dev->irq,
598                     (int)dev->base_addr,
599                     priv->adapter->device_label,
600                     priv->adapter_rev);
601         return 0;
602
603 err_out_uninit:
604         pci_free_consistent(priv->pci_dev, priv->dma_size, priv->dma_storage,
605                             priv->dma_storage_dma);
606 err_out_free_dev:
607         free_netdev(dev);
608 err_out_regions:
609 #ifdef CONFIG_PCI
610         if (pdev)
611                 pci_release_regions(pdev);
612 err_out:
613 #endif
614         if (pdev)
615                 pci_disable_device(pdev);
616         return rc;
617 }
618
619
620 static void tlan_eisa_cleanup(void)
621 {
622         struct net_device *dev;
623         struct tlan_priv *priv;
624
625         while (tlan_have_eisa) {
626                 dev = tlan_eisa_devices;
627                 priv = netdev_priv(dev);
628                 if (priv->dma_storage) {
629                         pci_free_consistent(priv->pci_dev, priv->dma_size,
630                                             priv->dma_storage,
631                                             priv->dma_storage_dma);
632                 }
633                 release_region(dev->base_addr, 0x10);
634                 unregister_netdev(dev);
635                 tlan_eisa_devices = priv->next_device;
636                 free_netdev(dev);
637                 tlan_have_eisa--;
638         }
639 }
640
641
642 static void __exit tlan_exit(void)
643 {
644         pci_unregister_driver(&tlan_driver);
645
646         if (tlan_have_eisa)
647                 tlan_eisa_cleanup();
648
649 }
650
651
652 /* Module loading/unloading */
653 module_init(tlan_probe);
654 module_exit(tlan_exit);
655
656
657
658 /**************************************************************
659  *      tlan_eisa_probe
660  *
661  *      Returns: 0 on success, 1 otherwise
662  *
663  *      Parms:   None
664  *
665  *
666  *      This functions probes for EISA devices and calls
667  *      TLan_probe1 when one is found.
668  *
669  *************************************************************/
670
671 static void  __init tlan_eisa_probe(void)
672 {
673         long    ioaddr;
674         int     rc = -ENODEV;
675         int     irq;
676         u16     device_id;
677
678         if (!EISA_bus) {
679                 TLAN_DBG(TLAN_DEBUG_PROBE, "No EISA bus present\n");
680                 return;
681         }
682
683         /* Loop through all slots of the EISA bus */
684         for (ioaddr = 0x1000; ioaddr < 0x9000; ioaddr += 0x1000) {
685
686                 TLAN_DBG(TLAN_DEBUG_PROBE, "EISA_ID 0x%4x: 0x%4x\n",
687                          (int) ioaddr + 0xc80, inw(ioaddr + EISA_ID));
688                 TLAN_DBG(TLAN_DEBUG_PROBE, "EISA_ID 0x%4x: 0x%4x\n",
689                          (int) ioaddr + 0xc82, inw(ioaddr + EISA_ID2));
690
691
692                 TLAN_DBG(TLAN_DEBUG_PROBE,
693                          "Probing for EISA adapter at IO: 0x%4x : ",
694                          (int) ioaddr);
695                 if (request_region(ioaddr, 0x10, tlan_signature) == NULL)
696                         goto out;
697
698                 if (inw(ioaddr + EISA_ID) != 0x110E) {
699                         release_region(ioaddr, 0x10);
700                         goto out;
701                 }
702
703                 device_id = inw(ioaddr + EISA_ID2);
704                 if (device_id !=  0x20F1 && device_id != 0x40F1) {
705                         release_region(ioaddr, 0x10);
706                         goto out;
707                 }
708
709                 /* check if adapter is enabled */
710                 if (inb(ioaddr + EISA_CR) != 0x1) {
711                         release_region(ioaddr, 0x10);
712                         goto out2;
713                 }
714
715                 if (debug == 0x10)
716                         pr_info("Found one\n");
717
718
719                 /* Get irq from board */
720                 switch (inb(ioaddr + 0xcc0)) {
721                 case(0x10):
722                         irq = 5;
723                         break;
724                 case(0x20):
725                         irq = 9;
726                         break;
727                 case(0x40):
728                         irq = 10;
729                         break;
730                 case(0x80):
731                         irq = 11;
732                         break;
733                 default:
734                         goto out;
735                 }
736
737
738                 /* Setup the newly found eisa adapter */
739                 rc = tlan_probe1(NULL, ioaddr, irq,
740                                  12, NULL);
741                 continue;
742
743 out:
744                 if (debug == 0x10)
745                         pr_info("None found\n");
746                 continue;
747
748 out2:
749                 if (debug == 0x10)
750                         pr_info("Card found but it is not enabled, skipping\n");
751                 continue;
752
753         }
754
755 }
756
757 #ifdef CONFIG_NET_POLL_CONTROLLER
758 static void tlan_poll(struct net_device *dev)
759 {
760         disable_irq(dev->irq);
761         tlan_handle_interrupt(dev->irq, dev);
762         enable_irq(dev->irq);
763 }
764 #endif
765
766 static const struct net_device_ops tlan_netdev_ops = {
767         .ndo_open               = tlan_open,
768         .ndo_stop               = tlan_close,
769         .ndo_start_xmit         = tlan_start_tx,
770         .ndo_tx_timeout         = tlan_tx_timeout,
771         .ndo_get_stats          = tlan_get_stats,
772         .ndo_set_rx_mode        = tlan_set_multicast_list,
773         .ndo_do_ioctl           = tlan_ioctl,
774         .ndo_change_mtu         = eth_change_mtu,
775         .ndo_set_mac_address    = eth_mac_addr,
776         .ndo_validate_addr      = eth_validate_addr,
777 #ifdef CONFIG_NET_POLL_CONTROLLER
778         .ndo_poll_controller     = tlan_poll,
779 #endif
780 };
781
782 static void tlan_get_drvinfo(struct net_device *dev,
783                              struct ethtool_drvinfo *info)
784 {
785         struct tlan_priv *priv = netdev_priv(dev);
786
787         strlcpy(info->driver, KBUILD_MODNAME, sizeof(info->driver));
788         if (priv->pci_dev)
789                 strlcpy(info->bus_info, pci_name(priv->pci_dev),
790                         sizeof(info->bus_info));
791         else
792                 strlcpy(info->bus_info, "EISA", sizeof(info->bus_info));
793 }
794
795 static int tlan_get_eeprom_len(struct net_device *dev)
796 {
797         return TLAN_EEPROM_SIZE;
798 }
799
800 static int tlan_get_eeprom(struct net_device *dev,
801                            struct ethtool_eeprom *eeprom, u8 *data)
802 {
803         int i;
804
805         for (i = 0; i < TLAN_EEPROM_SIZE; i++)
806                 if (tlan_ee_read_byte(dev, i, &data[i]))
807                         return -EIO;
808
809         return 0;
810 }
811
812 static const struct ethtool_ops tlan_ethtool_ops = {
813         .get_drvinfo    = tlan_get_drvinfo,
814         .get_link       = ethtool_op_get_link,
815         .get_eeprom_len = tlan_get_eeprom_len,
816         .get_eeprom     = tlan_get_eeprom,
817 };
818
819 /***************************************************************
820  *      tlan_init
821  *
822  *      Returns:
823  *              0 on success, error code otherwise.
824  *      Parms:
825  *              dev     The structure of the device to be
826  *                      init'ed.
827  *
828  *      This function completes the initialization of the
829  *      device structure and driver.  It reserves the IO
830  *      addresses, allocates memory for the lists and bounce
831  *      buffers, retrieves the MAC address from the eeprom
832  *      and assignes the device's methods.
833  *
834  **************************************************************/
835
836 static int tlan_init(struct net_device *dev)
837 {
838         int             dma_size;
839         int             err;
840         int             i;
841         struct tlan_priv        *priv;
842
843         priv = netdev_priv(dev);
844
845         dma_size = (TLAN_NUM_RX_LISTS + TLAN_NUM_TX_LISTS)
846                 * (sizeof(struct tlan_list));
847         priv->dma_storage = pci_alloc_consistent(priv->pci_dev,
848                                                  dma_size,
849                                                  &priv->dma_storage_dma);
850         priv->dma_size = dma_size;
851
852         if (priv->dma_storage == NULL) {
853                 pr_err("Could not allocate lists and buffers for %s\n",
854                        dev->name);
855                 return -ENOMEM;
856         }
857         memset(priv->dma_storage, 0, dma_size);
858         priv->rx_list = (struct tlan_list *)
859                 ALIGN((unsigned long)priv->dma_storage, 8);
860         priv->rx_list_dma = ALIGN(priv->dma_storage_dma, 8);
861         priv->tx_list = priv->rx_list + TLAN_NUM_RX_LISTS;
862         priv->tx_list_dma =
863                 priv->rx_list_dma + sizeof(struct tlan_list)*TLAN_NUM_RX_LISTS;
864
865         err = 0;
866         for (i = 0; i < ETH_ALEN; i++)
867                 err |= tlan_ee_read_byte(dev,
868                                          (u8) priv->adapter->addr_ofs + i,
869                                          (u8 *) &dev->dev_addr[i]);
870         if (err) {
871                 pr_err("%s: Error reading MAC from eeprom: %d\n",
872                        dev->name, err);
873         }
874         /* Olicom OC-2325/OC-2326 have the address byte-swapped */
875         if (priv->adapter->addr_ofs == 0xf8) {
876                 for (i = 0; i < ETH_ALEN; i += 2) {
877                         char tmp = dev->dev_addr[i];
878                         dev->dev_addr[i] = dev->dev_addr[i + 1];
879                         dev->dev_addr[i + 1] = tmp;
880                 }
881         }
882
883         netif_carrier_off(dev);
884
885         /* Device methods */
886         dev->netdev_ops = &tlan_netdev_ops;
887         dev->ethtool_ops = &tlan_ethtool_ops;
888         dev->watchdog_timeo = TX_TIMEOUT;
889
890         return 0;
891
892 }
893
894
895
896
897 /***************************************************************
898  *      tlan_open
899  *
900  *      Returns:
901  *              0 on success, error code otherwise.
902  *      Parms:
903  *              dev     Structure of device to be opened.
904  *
905  *      This routine puts the driver and TLAN adapter in a
906  *      state where it is ready to send and receive packets.
907  *      It allocates the IRQ, resets and brings the adapter
908  *      out of reset, and allows interrupts.  It also delays
909  *      the startup for autonegotiation or sends a Rx GO
910  *      command to the adapter, as appropriate.
911  *
912  **************************************************************/
913
914 static int tlan_open(struct net_device *dev)
915 {
916         struct tlan_priv        *priv = netdev_priv(dev);
917         int             err;
918
919         priv->tlan_rev = tlan_dio_read8(dev->base_addr, TLAN_DEF_REVISION);
920         err = request_irq(dev->irq, tlan_handle_interrupt, IRQF_SHARED,
921                           dev->name, dev);
922
923         if (err) {
924                 netdev_err(dev, "Cannot open because IRQ %d is already in use\n",
925                            dev->irq);
926                 return err;
927         }
928
929         init_timer(&priv->timer);
930         init_timer(&priv->media_timer);
931
932         tlan_start(dev);
933
934         TLAN_DBG(TLAN_DEBUG_GNRL, "%s: Opened.  TLAN Chip Rev: %x\n",
935                  dev->name, priv->tlan_rev);
936
937         return 0;
938
939 }
940
941
942
943 /**************************************************************
944  *      tlan_ioctl
945  *
946  *      Returns:
947  *              0 on success, error code otherwise
948  *      Params:
949  *              dev     structure of device to receive ioctl.
950  *
951  *              rq      ifreq structure to hold userspace data.
952  *
953  *              cmd     ioctl command.
954  *
955  *
956  *************************************************************/
957
958 static int tlan_ioctl(struct net_device *dev, struct ifreq *rq, int cmd)
959 {
960         struct tlan_priv *priv = netdev_priv(dev);
961         struct mii_ioctl_data *data = if_mii(rq);
962         u32 phy   = priv->phy[priv->phy_num];
963
964         if (!priv->phy_online)
965                 return -EAGAIN;
966
967         switch (cmd) {
968         case SIOCGMIIPHY:               /* get address of MII PHY in use. */
969                 data->phy_id = phy;
970
971
972         case SIOCGMIIREG:               /* read MII PHY register. */
973                 tlan_mii_read_reg(dev, data->phy_id & 0x1f,
974                                   data->reg_num & 0x1f, &data->val_out);
975                 return 0;
976
977
978         case SIOCSMIIREG:               /* write MII PHY register. */
979                 tlan_mii_write_reg(dev, data->phy_id & 0x1f,
980                                    data->reg_num & 0x1f, data->val_in);
981                 return 0;
982         default:
983                 return -EOPNOTSUPP;
984         }
985 }
986
987
988 /***************************************************************
989  *      tlan_tx_timeout
990  *
991  *      Returns: nothing
992  *
993  *      Params:
994  *              dev     structure of device which timed out
995  *                      during transmit.
996  *
997  **************************************************************/
998
999 static void tlan_tx_timeout(struct net_device *dev)
1000 {
1001
1002         TLAN_DBG(TLAN_DEBUG_GNRL, "%s: Transmit timed out.\n", dev->name);
1003
1004         /* Ok so we timed out, lets see what we can do about it...*/
1005         tlan_free_lists(dev);
1006         tlan_reset_lists(dev);
1007         tlan_read_and_clear_stats(dev, TLAN_IGNORE);
1008         tlan_reset_adapter(dev);
1009         dev->trans_start = jiffies; /* prevent tx timeout */
1010         netif_wake_queue(dev);
1011
1012 }
1013
1014
1015 /***************************************************************
1016  *      tlan_tx_timeout_work
1017  *
1018  *      Returns: nothing
1019  *
1020  *      Params:
1021  *              work    work item of device which timed out
1022  *
1023  **************************************************************/
1024
1025 static void tlan_tx_timeout_work(struct work_struct *work)
1026 {
1027         struct tlan_priv        *priv =
1028                 container_of(work, struct tlan_priv, tlan_tqueue);
1029
1030         tlan_tx_timeout(priv->dev);
1031 }
1032
1033
1034
1035 /***************************************************************
1036  *      tlan_start_tx
1037  *
1038  *      Returns:
1039  *              0 on success, non-zero on failure.
1040  *      Parms:
1041  *              skb     A pointer to the sk_buff containing the
1042  *                      frame to be sent.
1043  *              dev     The device to send the data on.
1044  *
1045  *      This function adds a frame to the Tx list to be sent
1046  *      ASAP.  First it verifies that the adapter is ready and
1047  *      there is room in the queue.  Then it sets up the next
1048  *      available list, copies the frame to the corresponding
1049  *      buffer.  If the adapter Tx channel is idle, it gives
1050  *      the adapter a Tx Go command on the list, otherwise it
1051  *      sets the forward address of the previous list to point
1052  *      to this one.  Then it frees the sk_buff.
1053  *
1054  **************************************************************/
1055
1056 static netdev_tx_t tlan_start_tx(struct sk_buff *skb, struct net_device *dev)
1057 {
1058         struct tlan_priv *priv = netdev_priv(dev);
1059         dma_addr_t      tail_list_phys;
1060         struct tlan_list        *tail_list;
1061         unsigned long   flags;
1062         unsigned int    txlen;
1063
1064         if (!priv->phy_online) {
1065                 TLAN_DBG(TLAN_DEBUG_TX, "TRANSMIT:  %s PHY is not ready\n",
1066                          dev->name);
1067                 dev_kfree_skb_any(skb);
1068                 return NETDEV_TX_OK;
1069         }
1070
1071         if (skb_padto(skb, TLAN_MIN_FRAME_SIZE))
1072                 return NETDEV_TX_OK;
1073         txlen = max(skb->len, (unsigned int)TLAN_MIN_FRAME_SIZE);
1074
1075         tail_list = priv->tx_list + priv->tx_tail;
1076         tail_list_phys =
1077                 priv->tx_list_dma + sizeof(struct tlan_list)*priv->tx_tail;
1078
1079         if (tail_list->c_stat != TLAN_CSTAT_UNUSED) {
1080                 TLAN_DBG(TLAN_DEBUG_TX,
1081                          "TRANSMIT:  %s is busy (Head=%d Tail=%d)\n",
1082                          dev->name, priv->tx_head, priv->tx_tail);
1083                 netif_stop_queue(dev);
1084                 priv->tx_busy_count++;
1085                 return NETDEV_TX_BUSY;
1086         }
1087
1088         tail_list->forward = 0;
1089
1090         tail_list->buffer[0].address = pci_map_single(priv->pci_dev,
1091                                                       skb->data, txlen,
1092                                                       PCI_DMA_TODEVICE);
1093         tlan_store_skb(tail_list, skb);
1094
1095         tail_list->frame_size = (u16) txlen;
1096         tail_list->buffer[0].count = TLAN_LAST_BUFFER | (u32) txlen;
1097         tail_list->buffer[1].count = 0;
1098         tail_list->buffer[1].address = 0;
1099
1100         spin_lock_irqsave(&priv->lock, flags);
1101         tail_list->c_stat = TLAN_CSTAT_READY;
1102         if (!priv->tx_in_progress) {
1103                 priv->tx_in_progress = 1;
1104                 TLAN_DBG(TLAN_DEBUG_TX,
1105                          "TRANSMIT:  Starting TX on buffer %d\n",
1106                          priv->tx_tail);
1107                 outl(tail_list_phys, dev->base_addr + TLAN_CH_PARM);
1108                 outl(TLAN_HC_GO, dev->base_addr + TLAN_HOST_CMD);
1109         } else {
1110                 TLAN_DBG(TLAN_DEBUG_TX,
1111                          "TRANSMIT:  Adding buffer %d to TX channel\n",
1112                          priv->tx_tail);
1113                 if (priv->tx_tail == 0) {
1114                         (priv->tx_list + (TLAN_NUM_TX_LISTS - 1))->forward
1115                                 = tail_list_phys;
1116                 } else {
1117                         (priv->tx_list + (priv->tx_tail - 1))->forward
1118                                 = tail_list_phys;
1119                 }
1120         }
1121         spin_unlock_irqrestore(&priv->lock, flags);
1122
1123         CIRC_INC(priv->tx_tail, TLAN_NUM_TX_LISTS);
1124
1125         return NETDEV_TX_OK;
1126
1127 }
1128
1129
1130
1131
1132 /***************************************************************
1133  *      tlan_handle_interrupt
1134  *
1135  *      Returns:
1136  *              Nothing
1137  *      Parms:
1138  *              irq     The line on which the interrupt
1139  *                      occurred.
1140  *              dev_id  A pointer to the device assigned to
1141  *                      this irq line.
1142  *
1143  *      This function handles an interrupt generated by its
1144  *      assigned TLAN adapter.  The function deactivates
1145  *      interrupts on its adapter, records the type of
1146  *      interrupt, executes the appropriate subhandler, and
1147  *      acknowdges the interrupt to the adapter (thus
1148  *      re-enabling adapter interrupts.
1149  *
1150  **************************************************************/
1151
1152 static irqreturn_t tlan_handle_interrupt(int irq, void *dev_id)
1153 {
1154         struct net_device       *dev = dev_id;
1155         struct tlan_priv *priv = netdev_priv(dev);
1156         u16             host_int;
1157         u16             type;
1158
1159         spin_lock(&priv->lock);
1160
1161         host_int = inw(dev->base_addr + TLAN_HOST_INT);
1162         type = (host_int & TLAN_HI_IT_MASK) >> 2;
1163         if (type) {
1164                 u32     ack;
1165                 u32     host_cmd;
1166
1167                 outw(host_int, dev->base_addr + TLAN_HOST_INT);
1168                 ack = tlan_int_vector[type](dev, host_int);
1169
1170                 if (ack) {
1171                         host_cmd = TLAN_HC_ACK | ack | (type << 18);
1172                         outl(host_cmd, dev->base_addr + TLAN_HOST_CMD);
1173                 }
1174         }
1175
1176         spin_unlock(&priv->lock);
1177
1178         return IRQ_RETVAL(type);
1179 }
1180
1181
1182
1183
1184 /***************************************************************
1185  *      tlan_close
1186  *
1187  *      Returns:
1188  *              An error code.
1189  *      Parms:
1190  *              dev     The device structure of the device to
1191  *                      close.
1192  *
1193  *      This function shuts down the adapter.  It records any
1194  *      stats, puts the adapter into reset state, deactivates
1195  *      its time as needed, and frees the irq it is using.
1196  *
1197  **************************************************************/
1198
1199 static int tlan_close(struct net_device *dev)
1200 {
1201         tlan_stop(dev);
1202
1203         free_irq(dev->irq, dev);
1204         tlan_free_lists(dev);
1205         TLAN_DBG(TLAN_DEBUG_GNRL, "Device %s closed.\n", dev->name);
1206
1207         return 0;
1208
1209 }
1210
1211
1212
1213
1214 /***************************************************************
1215  *      tlan_get_stats
1216  *
1217  *      Returns:
1218  *              A pointer to the device's statistics structure.
1219  *      Parms:
1220  *              dev     The device structure to return the
1221  *                      stats for.
1222  *
1223  *      This function updates the devices statistics by reading
1224  *      the TLAN chip's onboard registers.  Then it returns the
1225  *      address of the statistics structure.
1226  *
1227  **************************************************************/
1228
1229 static struct net_device_stats *tlan_get_stats(struct net_device *dev)
1230 {
1231         struct tlan_priv        *priv = netdev_priv(dev);
1232         int i;
1233
1234         /* Should only read stats if open ? */
1235         tlan_read_and_clear_stats(dev, TLAN_RECORD);
1236
1237         TLAN_DBG(TLAN_DEBUG_RX, "RECEIVE:  %s EOC count = %d\n", dev->name,
1238                  priv->rx_eoc_count);
1239         TLAN_DBG(TLAN_DEBUG_TX, "TRANSMIT:  %s Busy count = %d\n", dev->name,
1240                  priv->tx_busy_count);
1241         if (debug & TLAN_DEBUG_GNRL) {
1242                 tlan_print_dio(dev->base_addr);
1243                 tlan_phy_print(dev);
1244         }
1245         if (debug & TLAN_DEBUG_LIST) {
1246                 for (i = 0; i < TLAN_NUM_RX_LISTS; i++)
1247                         tlan_print_list(priv->rx_list + i, "RX", i);
1248                 for (i = 0; i < TLAN_NUM_TX_LISTS; i++)
1249                         tlan_print_list(priv->tx_list + i, "TX", i);
1250         }
1251
1252         return &dev->stats;
1253
1254 }
1255
1256
1257
1258
1259 /***************************************************************
1260  *      tlan_set_multicast_list
1261  *
1262  *      Returns:
1263  *              Nothing
1264  *      Parms:
1265  *              dev     The device structure to set the
1266  *                      multicast list for.
1267  *
1268  *      This function sets the TLAN adaptor to various receive
1269  *      modes.  If the IFF_PROMISC flag is set, promiscuous
1270  *      mode is acitviated.  Otherwise, promiscuous mode is
1271  *      turned off.  If the IFF_ALLMULTI flag is set, then
1272  *      the hash table is set to receive all group addresses.
1273  *      Otherwise, the first three multicast addresses are
1274  *      stored in AREG_1-3, and the rest are selected via the
1275  *      hash table, as necessary.
1276  *
1277  **************************************************************/
1278
1279 static void tlan_set_multicast_list(struct net_device *dev)
1280 {
1281         struct netdev_hw_addr *ha;
1282         u32                     hash1 = 0;
1283         u32                     hash2 = 0;
1284         int                     i;
1285         u32                     offset;
1286         u8                      tmp;
1287
1288         if (dev->flags & IFF_PROMISC) {
1289                 tmp = tlan_dio_read8(dev->base_addr, TLAN_NET_CMD);
1290                 tlan_dio_write8(dev->base_addr,
1291                                 TLAN_NET_CMD, tmp | TLAN_NET_CMD_CAF);
1292         } else {
1293                 tmp = tlan_dio_read8(dev->base_addr, TLAN_NET_CMD);
1294                 tlan_dio_write8(dev->base_addr,
1295                                 TLAN_NET_CMD, tmp & ~TLAN_NET_CMD_CAF);
1296                 if (dev->flags & IFF_ALLMULTI) {
1297                         for (i = 0; i < 3; i++)
1298                                 tlan_set_mac(dev, i + 1, NULL);
1299                         tlan_dio_write32(dev->base_addr, TLAN_HASH_1,
1300                                          0xffffffff);
1301                         tlan_dio_write32(dev->base_addr, TLAN_HASH_2,
1302                                          0xffffffff);
1303                 } else {
1304                         i = 0;
1305                         netdev_for_each_mc_addr(ha, dev) {
1306                                 if (i < 3) {
1307                                         tlan_set_mac(dev, i + 1,
1308                                                      (char *) &ha->addr);
1309                                 } else {
1310                                         offset =
1311                                                 tlan_hash_func((u8 *)&ha->addr);
1312                                         if (offset < 32)
1313                                                 hash1 |= (1 << offset);
1314                                         else
1315                                                 hash2 |= (1 << (offset - 32));
1316                                 }
1317                                 i++;
1318                         }
1319                         for ( ; i < 3; i++)
1320                                 tlan_set_mac(dev, i + 1, NULL);
1321                         tlan_dio_write32(dev->base_addr, TLAN_HASH_1, hash1);
1322                         tlan_dio_write32(dev->base_addr, TLAN_HASH_2, hash2);
1323                 }
1324         }
1325
1326 }
1327
1328
1329
1330 /*****************************************************************************
1331 ******************************************************************************
1332
1333 ThunderLAN driver interrupt vectors and table
1334
1335 please see chap. 4, "Interrupt Handling" of the "ThunderLAN
1336 Programmer's Guide" for more informations on handling interrupts
1337 generated by TLAN based adapters.
1338
1339 ******************************************************************************
1340 *****************************************************************************/
1341
1342
1343
1344
1345 /***************************************************************
1346  *      tlan_handle_tx_eof
1347  *
1348  *      Returns:
1349  *              1
1350  *      Parms:
1351  *              dev             Device assigned the IRQ that was
1352  *                              raised.
1353  *              host_int        The contents of the HOST_INT
1354  *                              port.
1355  *
1356  *      This function handles Tx EOF interrupts which are raised
1357  *      by the adapter when it has completed sending the
1358  *      contents of a buffer.  If detemines which list/buffer
1359  *      was completed and resets it.  If the buffer was the last
1360  *      in the channel (EOC), then the function checks to see if
1361  *      another buffer is ready to send, and if so, sends a Tx
1362  *      Go command.  Finally, the driver activates/continues the
1363  *      activity LED.
1364  *
1365  **************************************************************/
1366
1367 static u32 tlan_handle_tx_eof(struct net_device *dev, u16 host_int)
1368 {
1369         struct tlan_priv        *priv = netdev_priv(dev);
1370         int             eoc = 0;
1371         struct tlan_list        *head_list;
1372         dma_addr_t      head_list_phys;
1373         u32             ack = 0;
1374         u16             tmp_c_stat;
1375
1376         TLAN_DBG(TLAN_DEBUG_TX,
1377                  "TRANSMIT:  Handling TX EOF (Head=%d Tail=%d)\n",
1378                  priv->tx_head, priv->tx_tail);
1379         head_list = priv->tx_list + priv->tx_head;
1380
1381         while (((tmp_c_stat = head_list->c_stat) & TLAN_CSTAT_FRM_CMP)
1382                && (ack < 255)) {
1383                 struct sk_buff *skb = tlan_get_skb(head_list);
1384
1385                 ack++;
1386                 pci_unmap_single(priv->pci_dev, head_list->buffer[0].address,
1387                                  max(skb->len,
1388                                      (unsigned int)TLAN_MIN_FRAME_SIZE),
1389                                  PCI_DMA_TODEVICE);
1390                 dev_kfree_skb_any(skb);
1391                 head_list->buffer[8].address = 0;
1392                 head_list->buffer[9].address = 0;
1393
1394                 if (tmp_c_stat & TLAN_CSTAT_EOC)
1395                         eoc = 1;
1396
1397                 dev->stats.tx_bytes += head_list->frame_size;
1398
1399                 head_list->c_stat = TLAN_CSTAT_UNUSED;
1400                 netif_start_queue(dev);
1401                 CIRC_INC(priv->tx_head, TLAN_NUM_TX_LISTS);
1402                 head_list = priv->tx_list + priv->tx_head;
1403         }
1404
1405         if (!ack)
1406                 netdev_info(dev,
1407                             "Received interrupt for uncompleted TX frame\n");
1408
1409         if (eoc) {
1410                 TLAN_DBG(TLAN_DEBUG_TX,
1411                          "TRANSMIT:  handling TX EOC (Head=%d Tail=%d)\n",
1412                          priv->tx_head, priv->tx_tail);
1413                 head_list = priv->tx_list + priv->tx_head;
1414                 head_list_phys = priv->tx_list_dma
1415                         + sizeof(struct tlan_list)*priv->tx_head;
1416                 if ((head_list->c_stat & TLAN_CSTAT_READY)
1417                     == TLAN_CSTAT_READY) {
1418                         outl(head_list_phys, dev->base_addr + TLAN_CH_PARM);
1419                         ack |= TLAN_HC_GO;
1420                 } else {
1421                         priv->tx_in_progress = 0;
1422                 }
1423         }
1424
1425         if (priv->adapter->flags & TLAN_ADAPTER_ACTIVITY_LED) {
1426                 tlan_dio_write8(dev->base_addr,
1427                                 TLAN_LED_REG, TLAN_LED_LINK | TLAN_LED_ACT);
1428                 if (priv->timer.function == NULL) {
1429                         priv->timer.function = tlan_timer;
1430                         priv->timer.data = (unsigned long) dev;
1431                         priv->timer.expires = jiffies + TLAN_TIMER_ACT_DELAY;
1432                         priv->timer_set_at = jiffies;
1433                         priv->timer_type = TLAN_TIMER_ACTIVITY;
1434                         add_timer(&priv->timer);
1435                 } else if (priv->timer_type == TLAN_TIMER_ACTIVITY) {
1436                         priv->timer_set_at = jiffies;
1437                 }
1438         }
1439
1440         return ack;
1441
1442 }
1443
1444
1445
1446
1447 /***************************************************************
1448  *      TLan_HandleStatOverflow
1449  *
1450  *      Returns:
1451  *              1
1452  *      Parms:
1453  *              dev             Device assigned the IRQ that was
1454  *                              raised.
1455  *              host_int        The contents of the HOST_INT
1456  *                              port.
1457  *
1458  *      This function handles the Statistics Overflow interrupt
1459  *      which means that one or more of the TLAN statistics
1460  *      registers has reached 1/2 capacity and needs to be read.
1461  *
1462  **************************************************************/
1463
1464 static u32 tlan_handle_stat_overflow(struct net_device *dev, u16 host_int)
1465 {
1466         tlan_read_and_clear_stats(dev, TLAN_RECORD);
1467
1468         return 1;
1469
1470 }
1471
1472
1473
1474
1475 /***************************************************************
1476  *      TLan_HandleRxEOF
1477  *
1478  *      Returns:
1479  *              1
1480  *      Parms:
1481  *              dev             Device assigned the IRQ that was
1482  *                              raised.
1483  *              host_int        The contents of the HOST_INT
1484  *                              port.
1485  *
1486  *      This function handles the Rx EOF interrupt which
1487  *      indicates a frame has been received by the adapter from
1488  *      the net and the frame has been transferred to memory.
1489  *      The function determines the bounce buffer the frame has
1490  *      been loaded into, creates a new sk_buff big enough to
1491  *      hold the frame, and sends it to protocol stack.  It
1492  *      then resets the used buffer and appends it to the end
1493  *      of the list.  If the frame was the last in the Rx
1494  *      channel (EOC), the function restarts the receive channel
1495  *      by sending an Rx Go command to the adapter.  Then it
1496  *      activates/continues the activity LED.
1497  *
1498  **************************************************************/
1499
1500 static u32 tlan_handle_rx_eof(struct net_device *dev, u16 host_int)
1501 {
1502         struct tlan_priv        *priv = netdev_priv(dev);
1503         u32             ack = 0;
1504         int             eoc = 0;
1505         struct tlan_list        *head_list;
1506         struct sk_buff  *skb;
1507         struct tlan_list        *tail_list;
1508         u16             tmp_c_stat;
1509         dma_addr_t      head_list_phys;
1510
1511         TLAN_DBG(TLAN_DEBUG_RX, "RECEIVE:  handling RX EOF (Head=%d Tail=%d)\n",
1512                  priv->rx_head, priv->rx_tail);
1513         head_list = priv->rx_list + priv->rx_head;
1514         head_list_phys =
1515                 priv->rx_list_dma + sizeof(struct tlan_list)*priv->rx_head;
1516
1517         while (((tmp_c_stat = head_list->c_stat) & TLAN_CSTAT_FRM_CMP)
1518                && (ack < 255)) {
1519                 dma_addr_t frame_dma = head_list->buffer[0].address;
1520                 u32 frame_size = head_list->frame_size;
1521                 struct sk_buff *new_skb;
1522
1523                 ack++;
1524                 if (tmp_c_stat & TLAN_CSTAT_EOC)
1525                         eoc = 1;
1526
1527                 new_skb = netdev_alloc_skb_ip_align(dev,
1528                                                     TLAN_MAX_FRAME_SIZE + 5);
1529                 if (!new_skb)
1530                         goto drop_and_reuse;
1531
1532                 skb = tlan_get_skb(head_list);
1533                 pci_unmap_single(priv->pci_dev, frame_dma,
1534                                  TLAN_MAX_FRAME_SIZE, PCI_DMA_FROMDEVICE);
1535                 skb_put(skb, frame_size);
1536
1537                 dev->stats.rx_bytes += frame_size;
1538
1539                 skb->protocol = eth_type_trans(skb, dev);
1540                 netif_rx(skb);
1541
1542                 head_list->buffer[0].address =
1543                         pci_map_single(priv->pci_dev, new_skb->data,
1544                                        TLAN_MAX_FRAME_SIZE, PCI_DMA_FROMDEVICE);
1545
1546                 tlan_store_skb(head_list, new_skb);
1547 drop_and_reuse:
1548                 head_list->forward = 0;
1549                 head_list->c_stat = 0;
1550                 tail_list = priv->rx_list + priv->rx_tail;
1551                 tail_list->forward = head_list_phys;
1552
1553                 CIRC_INC(priv->rx_head, TLAN_NUM_RX_LISTS);
1554                 CIRC_INC(priv->rx_tail, TLAN_NUM_RX_LISTS);
1555                 head_list = priv->rx_list + priv->rx_head;
1556                 head_list_phys = priv->rx_list_dma
1557                         + sizeof(struct tlan_list)*priv->rx_head;
1558         }
1559
1560         if (!ack)
1561                 netdev_info(dev,
1562                             "Received interrupt for uncompleted RX frame\n");
1563
1564
1565         if (eoc) {
1566                 TLAN_DBG(TLAN_DEBUG_RX,
1567                          "RECEIVE:  handling RX EOC (Head=%d Tail=%d)\n",
1568                          priv->rx_head, priv->rx_tail);
1569                 head_list = priv->rx_list + priv->rx_head;
1570                 head_list_phys = priv->rx_list_dma
1571                         + sizeof(struct tlan_list)*priv->rx_head;
1572                 outl(head_list_phys, dev->base_addr + TLAN_CH_PARM);
1573                 ack |= TLAN_HC_GO | TLAN_HC_RT;
1574                 priv->rx_eoc_count++;
1575         }
1576
1577         if (priv->adapter->flags & TLAN_ADAPTER_ACTIVITY_LED) {
1578                 tlan_dio_write8(dev->base_addr,
1579                                 TLAN_LED_REG, TLAN_LED_LINK | TLAN_LED_ACT);
1580                 if (priv->timer.function == NULL)  {
1581                         priv->timer.function = tlan_timer;
1582                         priv->timer.data = (unsigned long) dev;
1583                         priv->timer.expires = jiffies + TLAN_TIMER_ACT_DELAY;
1584                         priv->timer_set_at = jiffies;
1585                         priv->timer_type = TLAN_TIMER_ACTIVITY;
1586                         add_timer(&priv->timer);
1587                 } else if (priv->timer_type == TLAN_TIMER_ACTIVITY) {
1588                         priv->timer_set_at = jiffies;
1589                 }
1590         }
1591
1592         return ack;
1593
1594 }
1595
1596
1597
1598
1599 /***************************************************************
1600  *      tlan_handle_dummy
1601  *
1602  *      Returns:
1603  *              1
1604  *      Parms:
1605  *              dev             Device assigned the IRQ that was
1606  *                              raised.
1607  *              host_int        The contents of the HOST_INT
1608  *                              port.
1609  *
1610  *      This function handles the Dummy interrupt, which is
1611  *      raised whenever a test interrupt is generated by setting
1612  *      the Req_Int bit of HOST_CMD to 1.
1613  *
1614  **************************************************************/
1615
1616 static u32 tlan_handle_dummy(struct net_device *dev, u16 host_int)
1617 {
1618         netdev_info(dev, "Test interrupt\n");
1619         return 1;
1620
1621 }
1622
1623
1624
1625
1626 /***************************************************************
1627  *      tlan_handle_tx_eoc
1628  *
1629  *      Returns:
1630  *              1
1631  *      Parms:
1632  *              dev             Device assigned the IRQ that was
1633  *                              raised.
1634  *              host_int        The contents of the HOST_INT
1635  *                              port.
1636  *
1637  *      This driver is structured to determine EOC occurrences by
1638  *      reading the CSTAT member of the list structure.  Tx EOC
1639  *      interrupts are disabled via the DIO INTDIS register.
1640  *      However, TLAN chips before revision 3.0 didn't have this
1641  *      functionality, so process EOC events if this is the
1642  *      case.
1643  *
1644  **************************************************************/
1645
1646 static u32 tlan_handle_tx_eoc(struct net_device *dev, u16 host_int)
1647 {
1648         struct tlan_priv        *priv = netdev_priv(dev);
1649         struct tlan_list                *head_list;
1650         dma_addr_t              head_list_phys;
1651         u32                     ack = 1;
1652
1653         host_int = 0;
1654         if (priv->tlan_rev < 0x30) {
1655                 TLAN_DBG(TLAN_DEBUG_TX,
1656                          "TRANSMIT:  handling TX EOC (Head=%d Tail=%d) -- IRQ\n",
1657                          priv->tx_head, priv->tx_tail);
1658                 head_list = priv->tx_list + priv->tx_head;
1659                 head_list_phys = priv->tx_list_dma
1660                         + sizeof(struct tlan_list)*priv->tx_head;
1661                 if ((head_list->c_stat & TLAN_CSTAT_READY)
1662                     == TLAN_CSTAT_READY) {
1663                         netif_stop_queue(dev);
1664                         outl(head_list_phys, dev->base_addr + TLAN_CH_PARM);
1665                         ack |= TLAN_HC_GO;
1666                 } else {
1667                         priv->tx_in_progress = 0;
1668                 }
1669         }
1670
1671         return ack;
1672
1673 }
1674
1675
1676
1677
1678 /***************************************************************
1679  *      tlan_handle_status_check
1680  *
1681  *      Returns:
1682  *              0 if Adapter check, 1 if Network Status check.
1683  *      Parms:
1684  *              dev             Device assigned the IRQ that was
1685  *                              raised.
1686  *              host_int        The contents of the HOST_INT
1687  *                              port.
1688  *
1689  *      This function handles Adapter Check/Network Status
1690  *      interrupts generated by the adapter.  It checks the
1691  *      vector in the HOST_INT register to determine if it is
1692  *      an Adapter Check interrupt.  If so, it resets the
1693  *      adapter.  Otherwise it clears the status registers
1694  *      and services the PHY.
1695  *
1696  **************************************************************/
1697
1698 static u32 tlan_handle_status_check(struct net_device *dev, u16 host_int)
1699 {
1700         struct tlan_priv        *priv = netdev_priv(dev);
1701         u32             ack;
1702         u32             error;
1703         u8              net_sts;
1704         u32             phy;
1705         u16             tlphy_ctl;
1706         u16             tlphy_sts;
1707
1708         ack = 1;
1709         if (host_int & TLAN_HI_IV_MASK) {
1710                 netif_stop_queue(dev);
1711                 error = inl(dev->base_addr + TLAN_CH_PARM);
1712                 netdev_info(dev, "Adaptor Error = 0x%x\n", error);
1713                 tlan_read_and_clear_stats(dev, TLAN_RECORD);
1714                 outl(TLAN_HC_AD_RST, dev->base_addr + TLAN_HOST_CMD);
1715
1716                 schedule_work(&priv->tlan_tqueue);
1717
1718                 netif_wake_queue(dev);
1719                 ack = 0;
1720         } else {
1721                 TLAN_DBG(TLAN_DEBUG_GNRL, "%s: Status Check\n", dev->name);
1722                 phy = priv->phy[priv->phy_num];
1723
1724                 net_sts = tlan_dio_read8(dev->base_addr, TLAN_NET_STS);
1725                 if (net_sts) {
1726                         tlan_dio_write8(dev->base_addr, TLAN_NET_STS, net_sts);
1727                         TLAN_DBG(TLAN_DEBUG_GNRL, "%s:    Net_Sts = %x\n",
1728                                  dev->name, (unsigned) net_sts);
1729                 }
1730                 if ((net_sts & TLAN_NET_STS_MIRQ) &&  (priv->phy_num == 0)) {
1731                         tlan_mii_read_reg(dev, phy, TLAN_TLPHY_STS, &tlphy_sts);
1732                         tlan_mii_read_reg(dev, phy, TLAN_TLPHY_CTL, &tlphy_ctl);
1733                         if (!(tlphy_sts & TLAN_TS_POLOK) &&
1734                             !(tlphy_ctl & TLAN_TC_SWAPOL)) {
1735                                 tlphy_ctl |= TLAN_TC_SWAPOL;
1736                                 tlan_mii_write_reg(dev, phy, TLAN_TLPHY_CTL,
1737                                                    tlphy_ctl);
1738                         } else if ((tlphy_sts & TLAN_TS_POLOK) &&
1739                                    (tlphy_ctl & TLAN_TC_SWAPOL)) {
1740                                 tlphy_ctl &= ~TLAN_TC_SWAPOL;
1741                                 tlan_mii_write_reg(dev, phy, TLAN_TLPHY_CTL,
1742                                                    tlphy_ctl);
1743                         }
1744
1745                         if (debug)
1746                                 tlan_phy_print(dev);
1747                 }
1748         }
1749
1750         return ack;
1751
1752 }
1753
1754
1755
1756
1757 /***************************************************************
1758  *      tlan_handle_rx_eoc
1759  *
1760  *      Returns:
1761  *              1
1762  *      Parms:
1763  *              dev             Device assigned the IRQ that was
1764  *                              raised.
1765  *              host_int        The contents of the HOST_INT
1766  *                              port.
1767  *
1768  *      This driver is structured to determine EOC occurrences by
1769  *      reading the CSTAT member of the list structure.  Rx EOC
1770  *      interrupts are disabled via the DIO INTDIS register.
1771  *      However, TLAN chips before revision 3.0 didn't have this
1772  *      CSTAT member or a INTDIS register, so if this chip is
1773  *      pre-3.0, process EOC interrupts normally.
1774  *
1775  **************************************************************/
1776
1777 static u32 tlan_handle_rx_eoc(struct net_device *dev, u16 host_int)
1778 {
1779         struct tlan_priv        *priv = netdev_priv(dev);
1780         dma_addr_t      head_list_phys;
1781         u32             ack = 1;
1782
1783         if (priv->tlan_rev < 0x30) {
1784                 TLAN_DBG(TLAN_DEBUG_RX,
1785                          "RECEIVE:  Handling RX EOC (head=%d tail=%d) -- IRQ\n",
1786                          priv->rx_head, priv->rx_tail);
1787                 head_list_phys = priv->rx_list_dma
1788                         + sizeof(struct tlan_list)*priv->rx_head;
1789                 outl(head_list_phys, dev->base_addr + TLAN_CH_PARM);
1790                 ack |= TLAN_HC_GO | TLAN_HC_RT;
1791                 priv->rx_eoc_count++;
1792         }
1793
1794         return ack;
1795
1796 }
1797
1798
1799
1800
1801 /*****************************************************************************
1802 ******************************************************************************
1803
1804 ThunderLAN driver timer function
1805
1806 ******************************************************************************
1807 *****************************************************************************/
1808
1809
1810 /***************************************************************
1811  *      tlan_timer
1812  *
1813  *      Returns:
1814  *              Nothing
1815  *      Parms:
1816  *              data    A value given to add timer when
1817  *                      add_timer was called.
1818  *
1819  *      This function handles timed functionality for the
1820  *      TLAN driver.  The two current timer uses are for
1821  *      delaying for autonegotionation and driving the ACT LED.
1822  *      -       Autonegotiation requires being allowed about
1823  *              2 1/2 seconds before attempting to transmit a
1824  *              packet.  It would be a very bad thing to hang
1825  *              the kernel this long, so the driver doesn't
1826  *              allow transmission 'til after this time, for
1827  *              certain PHYs.  It would be much nicer if all
1828  *              PHYs were interrupt-capable like the internal
1829  *              PHY.
1830  *      -       The ACT LED, which shows adapter activity, is
1831  *              driven by the driver, and so must be left on
1832  *              for a short period to power up the LED so it
1833  *              can be seen.  This delay can be changed by
1834  *              changing the TLAN_TIMER_ACT_DELAY in tlan.h,
1835  *              if desired.  100 ms  produces a slightly
1836  *              sluggish response.
1837  *
1838  **************************************************************/
1839
1840 static void tlan_timer(unsigned long data)
1841 {
1842         struct net_device       *dev = (struct net_device *) data;
1843         struct tlan_priv        *priv = netdev_priv(dev);
1844         u32             elapsed;
1845         unsigned long   flags = 0;
1846
1847         priv->timer.function = NULL;
1848
1849         switch (priv->timer_type) {
1850         case TLAN_TIMER_PHY_PDOWN:
1851                 tlan_phy_power_down(dev);
1852                 break;
1853         case TLAN_TIMER_PHY_PUP:
1854                 tlan_phy_power_up(dev);
1855                 break;
1856         case TLAN_TIMER_PHY_RESET:
1857                 tlan_phy_reset(dev);
1858                 break;
1859         case TLAN_TIMER_PHY_START_LINK:
1860                 tlan_phy_start_link(dev);
1861                 break;
1862         case TLAN_TIMER_PHY_FINISH_AN:
1863                 tlan_phy_finish_auto_neg(dev);
1864                 break;
1865         case TLAN_TIMER_FINISH_RESET:
1866                 tlan_finish_reset(dev);
1867                 break;
1868         case TLAN_TIMER_ACTIVITY:
1869                 spin_lock_irqsave(&priv->lock, flags);
1870                 if (priv->timer.function == NULL) {
1871                         elapsed = jiffies - priv->timer_set_at;
1872                         if (elapsed >= TLAN_TIMER_ACT_DELAY) {
1873                                 tlan_dio_write8(dev->base_addr,
1874                                                 TLAN_LED_REG, TLAN_LED_LINK);
1875                         } else  {
1876                                 priv->timer.function = tlan_timer;
1877                                 priv->timer.expires = priv->timer_set_at
1878                                         + TLAN_TIMER_ACT_DELAY;
1879                                 spin_unlock_irqrestore(&priv->lock, flags);
1880                                 add_timer(&priv->timer);
1881                                 break;
1882                         }
1883                 }
1884                 spin_unlock_irqrestore(&priv->lock, flags);
1885                 break;
1886         default:
1887                 break;
1888         }
1889
1890 }
1891
1892
1893 /*****************************************************************************
1894 ******************************************************************************
1895
1896 ThunderLAN driver adapter related routines
1897
1898 ******************************************************************************
1899 *****************************************************************************/
1900
1901
1902 /***************************************************************
1903  *      tlan_reset_lists
1904  *
1905  *      Returns:
1906  *              Nothing
1907  *      Parms:
1908  *              dev     The device structure with the list
1909  *                      stuctures to be reset.
1910  *
1911  *      This routine sets the variables associated with managing
1912  *      the TLAN lists to their initial values.
1913  *
1914  **************************************************************/
1915
1916 static void tlan_reset_lists(struct net_device *dev)
1917 {
1918         struct tlan_priv *priv = netdev_priv(dev);
1919         int             i;
1920         struct tlan_list        *list;
1921         dma_addr_t      list_phys;
1922         struct sk_buff  *skb;
1923
1924         priv->tx_head = 0;
1925         priv->tx_tail = 0;
1926         for (i = 0; i < TLAN_NUM_TX_LISTS; i++) {
1927                 list = priv->tx_list + i;
1928                 list->c_stat = TLAN_CSTAT_UNUSED;
1929                 list->buffer[0].address = 0;
1930                 list->buffer[2].count = 0;
1931                 list->buffer[2].address = 0;
1932                 list->buffer[8].address = 0;
1933                 list->buffer[9].address = 0;
1934         }
1935
1936         priv->rx_head = 0;
1937         priv->rx_tail = TLAN_NUM_RX_LISTS - 1;
1938         for (i = 0; i < TLAN_NUM_RX_LISTS; i++) {
1939                 list = priv->rx_list + i;
1940                 list_phys = priv->rx_list_dma + sizeof(struct tlan_list)*i;
1941                 list->c_stat = TLAN_CSTAT_READY;
1942                 list->frame_size = TLAN_MAX_FRAME_SIZE;
1943                 list->buffer[0].count = TLAN_MAX_FRAME_SIZE | TLAN_LAST_BUFFER;
1944                 skb = netdev_alloc_skb_ip_align(dev, TLAN_MAX_FRAME_SIZE + 5);
1945                 if (!skb)
1946                         break;
1947
1948                 list->buffer[0].address = pci_map_single(priv->pci_dev,
1949                                                          skb->data,
1950                                                          TLAN_MAX_FRAME_SIZE,
1951                                                          PCI_DMA_FROMDEVICE);
1952                 tlan_store_skb(list, skb);
1953                 list->buffer[1].count = 0;
1954                 list->buffer[1].address = 0;
1955                 list->forward = list_phys + sizeof(struct tlan_list);
1956         }
1957
1958         /* in case ran out of memory early, clear bits */
1959         while (i < TLAN_NUM_RX_LISTS) {
1960                 tlan_store_skb(priv->rx_list + i, NULL);
1961                 ++i;
1962         }
1963         list->forward = 0;
1964
1965 }
1966
1967
1968 static void tlan_free_lists(struct net_device *dev)
1969 {
1970         struct tlan_priv *priv = netdev_priv(dev);
1971         int             i;
1972         struct tlan_list        *list;
1973         struct sk_buff  *skb;
1974
1975         for (i = 0; i < TLAN_NUM_TX_LISTS; i++) {
1976                 list = priv->tx_list + i;
1977                 skb = tlan_get_skb(list);
1978                 if (skb) {
1979                         pci_unmap_single(
1980                                 priv->pci_dev,
1981                                 list->buffer[0].address,
1982                                 max(skb->len,
1983                                     (unsigned int)TLAN_MIN_FRAME_SIZE),
1984                                 PCI_DMA_TODEVICE);
1985                         dev_kfree_skb_any(skb);
1986                         list->buffer[8].address = 0;
1987                         list->buffer[9].address = 0;
1988                 }
1989         }
1990
1991         for (i = 0; i < TLAN_NUM_RX_LISTS; i++) {
1992                 list = priv->rx_list + i;
1993                 skb = tlan_get_skb(list);
1994                 if (skb) {
1995                         pci_unmap_single(priv->pci_dev,
1996                                          list->buffer[0].address,
1997                                          TLAN_MAX_FRAME_SIZE,
1998                                          PCI_DMA_FROMDEVICE);
1999                         dev_kfree_skb_any(skb);
2000                         list->buffer[8].address = 0;
2001                         list->buffer[9].address = 0;
2002                 }
2003         }
2004 }
2005
2006
2007
2008
2009 /***************************************************************
2010  *      tlan_print_dio
2011  *
2012  *      Returns:
2013  *              Nothing
2014  *      Parms:
2015  *              io_base         Base IO port of the device of
2016  *                              which to print DIO registers.
2017  *
2018  *      This function prints out all the internal (DIO)
2019  *      registers of a TLAN chip.
2020  *
2021  **************************************************************/
2022
2023 static void tlan_print_dio(u16 io_base)
2024 {
2025         u32 data0, data1;
2026         int     i;
2027
2028         pr_info("Contents of internal registers for io base 0x%04hx\n",
2029                 io_base);
2030         pr_info("Off.  +0        +4\n");
2031         for (i = 0; i < 0x4C; i += 8) {
2032                 data0 = tlan_dio_read32(io_base, i);
2033                 data1 = tlan_dio_read32(io_base, i + 0x4);
2034                 pr_info("0x%02x  0x%08x 0x%08x\n", i, data0, data1);
2035         }
2036
2037 }
2038
2039
2040
2041
2042 /***************************************************************
2043  *      TLan_PrintList
2044  *
2045  *      Returns:
2046  *              Nothing
2047  *      Parms:
2048  *              list    A pointer to the struct tlan_list structure to
2049  *                      be printed.
2050  *              type    A string to designate type of list,
2051  *                      "Rx" or "Tx".
2052  *              num     The index of the list.
2053  *
2054  *      This function prints out the contents of the list
2055  *      pointed to by the list parameter.
2056  *
2057  **************************************************************/
2058
2059 static void tlan_print_list(struct tlan_list *list, char *type, int num)
2060 {
2061         int i;
2062
2063         pr_info("%s List %d at %p\n", type, num, list);
2064         pr_info("   Forward    = 0x%08x\n",  list->forward);
2065         pr_info("   CSTAT      = 0x%04hx\n", list->c_stat);
2066         pr_info("   Frame Size = 0x%04hx\n", list->frame_size);
2067         /* for (i = 0; i < 10; i++) { */
2068         for (i = 0; i < 2; i++) {
2069                 pr_info("   Buffer[%d].count, addr = 0x%08x, 0x%08x\n",
2070                         i, list->buffer[i].count, list->buffer[i].address);
2071         }
2072
2073 }
2074
2075
2076
2077
2078 /***************************************************************
2079  *      tlan_read_and_clear_stats
2080  *
2081  *      Returns:
2082  *              Nothing
2083  *      Parms:
2084  *              dev     Pointer to device structure of adapter
2085  *                      to which to read stats.
2086  *              record  Flag indicating whether to add
2087  *
2088  *      This functions reads all the internal status registers
2089  *      of the TLAN chip, which clears them as a side effect.
2090  *      It then either adds the values to the device's status
2091  *      struct, or discards them, depending on whether record
2092  *      is TLAN_RECORD (!=0)  or TLAN_IGNORE (==0).
2093  *
2094  **************************************************************/
2095
2096 static void tlan_read_and_clear_stats(struct net_device *dev, int record)
2097 {
2098         u32             tx_good, tx_under;
2099         u32             rx_good, rx_over;
2100         u32             def_tx, crc, code;
2101         u32             multi_col, single_col;
2102         u32             excess_col, late_col, loss;
2103
2104         outw(TLAN_GOOD_TX_FRMS, dev->base_addr + TLAN_DIO_ADR);
2105         tx_good  = inb(dev->base_addr + TLAN_DIO_DATA);
2106         tx_good += inb(dev->base_addr + TLAN_DIO_DATA + 1) << 8;
2107         tx_good += inb(dev->base_addr + TLAN_DIO_DATA + 2) << 16;
2108         tx_under = inb(dev->base_addr + TLAN_DIO_DATA + 3);
2109
2110         outw(TLAN_GOOD_RX_FRMS, dev->base_addr + TLAN_DIO_ADR);
2111         rx_good  = inb(dev->base_addr + TLAN_DIO_DATA);
2112         rx_good += inb(dev->base_addr + TLAN_DIO_DATA + 1) << 8;
2113         rx_good += inb(dev->base_addr + TLAN_DIO_DATA + 2) << 16;
2114         rx_over  = inb(dev->base_addr + TLAN_DIO_DATA + 3);
2115
2116         outw(TLAN_DEFERRED_TX, dev->base_addr + TLAN_DIO_ADR);
2117         def_tx  = inb(dev->base_addr + TLAN_DIO_DATA);
2118         def_tx += inb(dev->base_addr + TLAN_DIO_DATA + 1) << 8;
2119         crc     = inb(dev->base_addr + TLAN_DIO_DATA + 2);
2120         code    = inb(dev->base_addr + TLAN_DIO_DATA + 3);
2121
2122         outw(TLAN_MULTICOL_FRMS, dev->base_addr + TLAN_DIO_ADR);
2123         multi_col   = inb(dev->base_addr + TLAN_DIO_DATA);
2124         multi_col  += inb(dev->base_addr + TLAN_DIO_DATA + 1) << 8;
2125         single_col  = inb(dev->base_addr + TLAN_DIO_DATA + 2);
2126         single_col += inb(dev->base_addr + TLAN_DIO_DATA + 3) << 8;
2127
2128         outw(TLAN_EXCESSCOL_FRMS, dev->base_addr + TLAN_DIO_ADR);
2129         excess_col = inb(dev->base_addr + TLAN_DIO_DATA);
2130         late_col   = inb(dev->base_addr + TLAN_DIO_DATA + 1);
2131         loss       = inb(dev->base_addr + TLAN_DIO_DATA + 2);
2132
2133         if (record) {
2134                 dev->stats.rx_packets += rx_good;
2135                 dev->stats.rx_errors  += rx_over + crc + code;
2136                 dev->stats.tx_packets += tx_good;
2137                 dev->stats.tx_errors  += tx_under + loss;
2138                 dev->stats.collisions += multi_col
2139                         + single_col + excess_col + late_col;
2140
2141                 dev->stats.rx_over_errors    += rx_over;
2142                 dev->stats.rx_crc_errors     += crc;
2143                 dev->stats.rx_frame_errors   += code;
2144
2145                 dev->stats.tx_aborted_errors += tx_under;
2146                 dev->stats.tx_carrier_errors += loss;
2147         }
2148
2149 }
2150
2151
2152
2153
2154 /***************************************************************
2155  *      TLan_Reset
2156  *
2157  *      Returns:
2158  *              0
2159  *      Parms:
2160  *              dev     Pointer to device structure of adapter
2161  *                      to be reset.
2162  *
2163  *      This function resets the adapter and it's physical
2164  *      device.  See Chap. 3, pp. 9-10 of the "ThunderLAN
2165  *      Programmer's Guide" for details.  The routine tries to
2166  *      implement what is detailed there, though adjustments
2167  *      have been made.
2168  *
2169  **************************************************************/
2170
2171 static void
2172 tlan_reset_adapter(struct net_device *dev)
2173 {
2174         struct tlan_priv        *priv = netdev_priv(dev);
2175         int             i;
2176         u32             addr;
2177         u32             data;
2178         u8              data8;
2179
2180         priv->tlan_full_duplex = false;
2181         priv->phy_online = 0;
2182         netif_carrier_off(dev);
2183
2184 /*  1.  Assert reset bit. */
2185
2186         data = inl(dev->base_addr + TLAN_HOST_CMD);
2187         data |= TLAN_HC_AD_RST;
2188         outl(data, dev->base_addr + TLAN_HOST_CMD);
2189
2190         udelay(1000);
2191
2192 /*  2.  Turn off interrupts. (Probably isn't necessary) */
2193
2194         data = inl(dev->base_addr + TLAN_HOST_CMD);
2195         data |= TLAN_HC_INT_OFF;
2196         outl(data, dev->base_addr + TLAN_HOST_CMD);
2197
2198 /*  3.  Clear AREGs and HASHs. */
2199
2200         for (i = TLAN_AREG_0; i <= TLAN_HASH_2; i += 4)
2201                 tlan_dio_write32(dev->base_addr, (u16) i, 0);
2202
2203 /*  4.  Setup NetConfig register. */
2204
2205         data = TLAN_NET_CFG_1FRAG | TLAN_NET_CFG_1CHAN | TLAN_NET_CFG_PHY_EN;
2206         tlan_dio_write16(dev->base_addr, TLAN_NET_CONFIG, (u16) data);
2207
2208 /*  5.  Load Ld_Tmr and Ld_Thr in HOST_CMD. */
2209
2210         outl(TLAN_HC_LD_TMR | 0x3f, dev->base_addr + TLAN_HOST_CMD);
2211         outl(TLAN_HC_LD_THR | 0x9, dev->base_addr + TLAN_HOST_CMD);
2212
2213 /*  6.  Unreset the MII by setting NMRST (in NetSio) to 1. */
2214
2215         outw(TLAN_NET_SIO, dev->base_addr + TLAN_DIO_ADR);
2216         addr = dev->base_addr + TLAN_DIO_DATA + TLAN_NET_SIO;
2217         tlan_set_bit(TLAN_NET_SIO_NMRST, addr);
2218
2219 /*  7.  Setup the remaining registers. */
2220
2221         if (priv->tlan_rev >= 0x30) {
2222                 data8 = TLAN_ID_TX_EOC | TLAN_ID_RX_EOC;
2223                 tlan_dio_write8(dev->base_addr, TLAN_INT_DIS, data8);
2224         }
2225         tlan_phy_detect(dev);
2226         data = TLAN_NET_CFG_1FRAG | TLAN_NET_CFG_1CHAN;
2227
2228         if (priv->adapter->flags & TLAN_ADAPTER_BIT_RATE_PHY) {
2229                 data |= TLAN_NET_CFG_BIT;
2230                 if (priv->aui == 1) {
2231                         tlan_dio_write8(dev->base_addr, TLAN_ACOMMIT, 0x0a);
2232                 } else if (priv->duplex == TLAN_DUPLEX_FULL) {
2233                         tlan_dio_write8(dev->base_addr, TLAN_ACOMMIT, 0x00);
2234                         priv->tlan_full_duplex = true;
2235                 } else {
2236                         tlan_dio_write8(dev->base_addr, TLAN_ACOMMIT, 0x08);
2237                 }
2238         }
2239
2240         /* don't power down internal PHY if we're going to use it */
2241         if (priv->phy_num == 0 ||
2242            (priv->adapter->flags & TLAN_ADAPTER_USE_INTERN_10))
2243                 data |= TLAN_NET_CFG_PHY_EN;
2244         tlan_dio_write16(dev->base_addr, TLAN_NET_CONFIG, (u16) data);
2245
2246         if (priv->adapter->flags & TLAN_ADAPTER_UNMANAGED_PHY)
2247                 tlan_finish_reset(dev);
2248         else
2249                 tlan_phy_power_down(dev);
2250
2251 }
2252
2253
2254
2255
2256 static void
2257 tlan_finish_reset(struct net_device *dev)
2258 {
2259         struct tlan_priv        *priv = netdev_priv(dev);
2260         u8              data;
2261         u32             phy;
2262         u8              sio;
2263         u16             status;
2264         u16             partner;
2265         u16             tlphy_ctl;
2266         u16             tlphy_par;
2267         u16             tlphy_id1, tlphy_id2;
2268         int             i;
2269
2270         phy = priv->phy[priv->phy_num];
2271
2272         data = TLAN_NET_CMD_NRESET | TLAN_NET_CMD_NWRAP;
2273         if (priv->tlan_full_duplex)
2274                 data |= TLAN_NET_CMD_DUPLEX;
2275         tlan_dio_write8(dev->base_addr, TLAN_NET_CMD, data);
2276         data = TLAN_NET_MASK_MASK4 | TLAN_NET_MASK_MASK5;
2277         if (priv->phy_num == 0)
2278                 data |= TLAN_NET_MASK_MASK7;
2279         tlan_dio_write8(dev->base_addr, TLAN_NET_MASK, data);
2280         tlan_dio_write16(dev->base_addr, TLAN_MAX_RX, ((1536)+7)&~7);
2281         tlan_mii_read_reg(dev, phy, MII_GEN_ID_HI, &tlphy_id1);
2282         tlan_mii_read_reg(dev, phy, MII_GEN_ID_LO, &tlphy_id2);
2283
2284         if ((priv->adapter->flags & TLAN_ADAPTER_UNMANAGED_PHY) ||
2285             (priv->aui)) {
2286                 status = MII_GS_LINK;
2287                 netdev_info(dev, "Link forced\n");
2288         } else {
2289                 tlan_mii_read_reg(dev, phy, MII_GEN_STS, &status);
2290                 udelay(1000);
2291                 tlan_mii_read_reg(dev, phy, MII_GEN_STS, &status);
2292                 if (status & MII_GS_LINK) {
2293                         /* We only support link info on Nat.Sem. PHY's */
2294                         if ((tlphy_id1 == NAT_SEM_ID1) &&
2295                             (tlphy_id2 == NAT_SEM_ID2)) {
2296                                 tlan_mii_read_reg(dev, phy, MII_AN_LPA,
2297                                         &partner);
2298                                 tlan_mii_read_reg(dev, phy, TLAN_TLPHY_PAR,
2299                                         &tlphy_par);
2300
2301                                 netdev_info(dev,
2302                                         "Link active, %s %uMbps %s-Duplex\n",
2303                                         !(tlphy_par & TLAN_PHY_AN_EN_STAT)
2304                                         ? "forced" : "Autonegotiation enabled,",
2305                                         tlphy_par & TLAN_PHY_SPEED_100
2306                                         ? 100 : 10,
2307                                         tlphy_par & TLAN_PHY_DUPLEX_FULL
2308                                         ? "Full" : "Half");
2309
2310                                 if (tlphy_par & TLAN_PHY_AN_EN_STAT) {
2311                                         netdev_info(dev, "Partner capability:");
2312                                         for (i = 5; i < 10; i++)
2313                                                 if (partner & (1 << i))
2314                                                         pr_cont(" %s",
2315                                                                 media[i-5]);
2316                                         pr_cont("\n");
2317                                 }
2318                         } else
2319                                 netdev_info(dev, "Link active\n");
2320                         /* Enabling link beat monitoring */
2321                         priv->media_timer.function = tlan_phy_monitor;
2322                         priv->media_timer.data = (unsigned long) dev;
2323                         priv->media_timer.expires = jiffies + HZ;
2324                         add_timer(&priv->media_timer);
2325                 }
2326         }
2327
2328         if (priv->phy_num == 0) {
2329                 tlan_mii_read_reg(dev, phy, TLAN_TLPHY_CTL, &tlphy_ctl);
2330                 tlphy_ctl |= TLAN_TC_INTEN;
2331                 tlan_mii_write_reg(dev, phy, TLAN_TLPHY_CTL, tlphy_ctl);
2332                 sio = tlan_dio_read8(dev->base_addr, TLAN_NET_SIO);
2333                 sio |= TLAN_NET_SIO_MINTEN;
2334                 tlan_dio_write8(dev->base_addr, TLAN_NET_SIO, sio);
2335         }
2336
2337         if (status & MII_GS_LINK) {
2338                 tlan_set_mac(dev, 0, dev->dev_addr);
2339                 priv->phy_online = 1;
2340                 outb((TLAN_HC_INT_ON >> 8), dev->base_addr + TLAN_HOST_CMD + 1);
2341                 if (debug >= 1 && debug != TLAN_DEBUG_PROBE)
2342                         outb((TLAN_HC_REQ_INT >> 8),
2343                              dev->base_addr + TLAN_HOST_CMD + 1);
2344                 outl(priv->rx_list_dma, dev->base_addr + TLAN_CH_PARM);
2345                 outl(TLAN_HC_GO | TLAN_HC_RT, dev->base_addr + TLAN_HOST_CMD);
2346                 tlan_dio_write8(dev->base_addr, TLAN_LED_REG, TLAN_LED_LINK);
2347                 netif_carrier_on(dev);
2348         } else {
2349                 netdev_info(dev, "Link inactive, will retry in 10 secs...\n");
2350                 tlan_set_timer(dev, (10*HZ), TLAN_TIMER_FINISH_RESET);
2351                 return;
2352         }
2353         tlan_set_multicast_list(dev);
2354
2355 }
2356
2357
2358
2359
2360 /***************************************************************
2361  *      tlan_set_mac
2362  *
2363  *      Returns:
2364  *              Nothing
2365  *      Parms:
2366  *              dev     Pointer to device structure of adapter
2367  *                      on which to change the AREG.
2368  *              areg    The AREG to set the address in (0 - 3).
2369  *              mac     A pointer to an array of chars.  Each
2370  *                      element stores one byte of the address.
2371  *                      IE, it isn't in ascii.
2372  *
2373  *      This function transfers a MAC address to one of the
2374  *      TLAN AREGs (address registers).  The TLAN chip locks
2375  *      the register on writing to offset 0 and unlocks the
2376  *      register after writing to offset 5.  If NULL is passed
2377  *      in mac, then the AREG is filled with 0's.
2378  *
2379  **************************************************************/
2380
2381 static void tlan_set_mac(struct net_device *dev, int areg, char *mac)
2382 {
2383         int i;
2384
2385         areg *= 6;
2386
2387         if (mac != NULL) {
2388                 for (i = 0; i < 6; i++)
2389                         tlan_dio_write8(dev->base_addr,
2390                                         TLAN_AREG_0 + areg + i, mac[i]);
2391         } else {
2392                 for (i = 0; i < 6; i++)
2393                         tlan_dio_write8(dev->base_addr,
2394                                         TLAN_AREG_0 + areg + i, 0);
2395         }
2396
2397 }
2398
2399
2400
2401
2402 /*****************************************************************************
2403 ******************************************************************************
2404
2405 ThunderLAN driver PHY layer routines
2406
2407 ******************************************************************************
2408 *****************************************************************************/
2409
2410
2411
2412 /*********************************************************************
2413  *      tlan_phy_print
2414  *
2415  *      Returns:
2416  *              Nothing
2417  *      Parms:
2418  *              dev     A pointer to the device structure of the
2419  *                      TLAN device having the PHYs to be detailed.
2420  *
2421  *      This function prints the registers a PHY (aka transceiver).
2422  *
2423  ********************************************************************/
2424
2425 static void tlan_phy_print(struct net_device *dev)
2426 {
2427         struct tlan_priv *priv = netdev_priv(dev);
2428         u16 i, data0, data1, data2, data3, phy;
2429
2430         phy = priv->phy[priv->phy_num];
2431
2432         if (priv->adapter->flags & TLAN_ADAPTER_UNMANAGED_PHY) {
2433                 netdev_info(dev, "Unmanaged PHY\n");
2434         } else if (phy <= TLAN_PHY_MAX_ADDR) {
2435                 netdev_info(dev, "PHY 0x%02x\n", phy);
2436                 pr_info("   Off.  +0     +1     +2     +3\n");
2437                 for (i = 0; i < 0x20; i += 4) {
2438                         tlan_mii_read_reg(dev, phy, i, &data0);
2439                         tlan_mii_read_reg(dev, phy, i + 1, &data1);
2440                         tlan_mii_read_reg(dev, phy, i + 2, &data2);
2441                         tlan_mii_read_reg(dev, phy, i + 3, &data3);
2442                         pr_info("   0x%02x 0x%04hx 0x%04hx 0x%04hx 0x%04hx\n",
2443                                 i, data0, data1, data2, data3);
2444                 }
2445         } else {
2446                 netdev_info(dev, "Invalid PHY\n");
2447         }
2448
2449 }
2450
2451
2452
2453
2454 /*********************************************************************
2455  *      tlan_phy_detect
2456  *
2457  *      Returns:
2458  *              Nothing
2459  *      Parms:
2460  *              dev     A pointer to the device structure of the adapter
2461  *                      for which the PHY needs determined.
2462  *
2463  *      So far I've found that adapters which have external PHYs
2464  *      may also use the internal PHY for part of the functionality.
2465  *      (eg, AUI/Thinnet).  This function finds out if this TLAN
2466  *      chip has an internal PHY, and then finds the first external
2467  *      PHY (starting from address 0) if it exists).
2468  *
2469  ********************************************************************/
2470
2471 static void tlan_phy_detect(struct net_device *dev)
2472 {
2473         struct tlan_priv *priv = netdev_priv(dev);
2474         u16             control;
2475         u16             hi;
2476         u16             lo;
2477         u32             phy;
2478
2479         if (priv->adapter->flags & TLAN_ADAPTER_UNMANAGED_PHY) {
2480                 priv->phy_num = 0xffff;
2481                 return;
2482         }
2483
2484         tlan_mii_read_reg(dev, TLAN_PHY_MAX_ADDR, MII_GEN_ID_HI, &hi);
2485
2486         if (hi != 0xffff)
2487                 priv->phy[0] = TLAN_PHY_MAX_ADDR;
2488         else
2489                 priv->phy[0] = TLAN_PHY_NONE;
2490
2491         priv->phy[1] = TLAN_PHY_NONE;
2492         for (phy = 0; phy <= TLAN_PHY_MAX_ADDR; phy++) {
2493                 tlan_mii_read_reg(dev, phy, MII_GEN_CTL, &control);
2494                 tlan_mii_read_reg(dev, phy, MII_GEN_ID_HI, &hi);
2495                 tlan_mii_read_reg(dev, phy, MII_GEN_ID_LO, &lo);
2496                 if ((control != 0xffff) ||
2497                     (hi != 0xffff) || (lo != 0xffff)) {
2498                         TLAN_DBG(TLAN_DEBUG_GNRL,
2499                                  "PHY found at %02x %04x %04x %04x\n",
2500                                  phy, control, hi, lo);
2501                         if ((priv->phy[1] == TLAN_PHY_NONE) &&
2502                             (phy != TLAN_PHY_MAX_ADDR)) {
2503                                 priv->phy[1] = phy;
2504                         }
2505                 }
2506         }
2507
2508         if (priv->phy[1] != TLAN_PHY_NONE)
2509                 priv->phy_num = 1;
2510         else if (priv->phy[0] != TLAN_PHY_NONE)
2511                 priv->phy_num = 0;
2512         else
2513                 netdev_info(dev, "Cannot initialize device, no PHY was found!\n");
2514
2515 }
2516
2517
2518
2519
2520 static void tlan_phy_power_down(struct net_device *dev)
2521 {
2522         struct tlan_priv        *priv = netdev_priv(dev);
2523         u16             value;
2524
2525         TLAN_DBG(TLAN_DEBUG_GNRL, "%s: Powering down PHY(s).\n", dev->name);
2526         value = MII_GC_PDOWN | MII_GC_LOOPBK | MII_GC_ISOLATE;
2527         tlan_mii_sync(dev->base_addr);
2528         tlan_mii_write_reg(dev, priv->phy[priv->phy_num], MII_GEN_CTL, value);
2529         if ((priv->phy_num == 0) && (priv->phy[1] != TLAN_PHY_NONE)) {
2530                 /* if using internal PHY, the external PHY must be powered on */
2531                 if (priv->adapter->flags & TLAN_ADAPTER_USE_INTERN_10)
2532                         value = MII_GC_ISOLATE; /* just isolate it from MII */
2533                 tlan_mii_sync(dev->base_addr);
2534                 tlan_mii_write_reg(dev, priv->phy[1], MII_GEN_CTL, value);
2535         }
2536
2537         /* Wait for 50 ms and powerup
2538          * This is abitrary.  It is intended to make sure the
2539          * transceiver settles.
2540          */
2541         tlan_set_timer(dev, msecs_to_jiffies(50), TLAN_TIMER_PHY_PUP);
2542
2543 }
2544
2545
2546
2547
2548 static void tlan_phy_power_up(struct net_device *dev)
2549 {
2550         struct tlan_priv        *priv = netdev_priv(dev);
2551         u16             value;
2552
2553         TLAN_DBG(TLAN_DEBUG_GNRL, "%s: Powering up PHY.\n", dev->name);
2554         tlan_mii_sync(dev->base_addr);
2555         value = MII_GC_LOOPBK;
2556         tlan_mii_write_reg(dev, priv->phy[priv->phy_num], MII_GEN_CTL, value);
2557         tlan_mii_sync(dev->base_addr);
2558         /* Wait for 500 ms and reset the
2559          * transceiver.  The TLAN docs say both 50 ms and
2560          * 500 ms, so do the longer, just in case.
2561          */
2562         tlan_set_timer(dev, msecs_to_jiffies(500), TLAN_TIMER_PHY_RESET);
2563
2564 }
2565
2566
2567
2568
2569 static void tlan_phy_reset(struct net_device *dev)
2570 {
2571         struct tlan_priv        *priv = netdev_priv(dev);
2572         u16             phy;
2573         u16             value;
2574         unsigned long timeout = jiffies + HZ;
2575
2576         phy = priv->phy[priv->phy_num];
2577
2578         TLAN_DBG(TLAN_DEBUG_GNRL, "%s: Resetting PHY.\n", dev->name);
2579         tlan_mii_sync(dev->base_addr);
2580         value = MII_GC_LOOPBK | MII_GC_RESET;
2581         tlan_mii_write_reg(dev, phy, MII_GEN_CTL, value);
2582         do {
2583                 tlan_mii_read_reg(dev, phy, MII_GEN_CTL, &value);
2584                 if (time_after(jiffies, timeout)) {
2585                         netdev_err(dev, "PHY reset timeout\n");
2586                         return;
2587                 }
2588         } while (value & MII_GC_RESET);
2589
2590         /* Wait for 500 ms and initialize.
2591          * I don't remember why I wait this long.
2592          * I've changed this to 50ms, as it seems long enough.
2593          */
2594         tlan_set_timer(dev, msecs_to_jiffies(50), TLAN_TIMER_PHY_START_LINK);
2595
2596 }
2597
2598
2599
2600
2601 static void tlan_phy_start_link(struct net_device *dev)
2602 {
2603         struct tlan_priv        *priv = netdev_priv(dev);
2604         u16             ability;
2605         u16             control;
2606         u16             data;
2607         u16             phy;
2608         u16             status;
2609         u16             tctl;
2610
2611         phy = priv->phy[priv->phy_num];
2612         TLAN_DBG(TLAN_DEBUG_GNRL, "%s: Trying to activate link.\n", dev->name);
2613         tlan_mii_read_reg(dev, phy, MII_GEN_STS, &status);
2614         tlan_mii_read_reg(dev, phy, MII_GEN_STS, &ability);
2615
2616         if ((status & MII_GS_AUTONEG) &&
2617             (!priv->aui)) {
2618                 ability = status >> 11;
2619                 if (priv->speed  == TLAN_SPEED_10 &&
2620                     priv->duplex == TLAN_DUPLEX_HALF) {
2621                         tlan_mii_write_reg(dev, phy, MII_GEN_CTL, 0x0000);
2622                 } else if (priv->speed == TLAN_SPEED_10 &&
2623                            priv->duplex == TLAN_DUPLEX_FULL) {
2624                         priv->tlan_full_duplex = true;
2625                         tlan_mii_write_reg(dev, phy, MII_GEN_CTL, 0x0100);
2626                 } else if (priv->speed == TLAN_SPEED_100 &&
2627                            priv->duplex == TLAN_DUPLEX_HALF) {
2628                         tlan_mii_write_reg(dev, phy, MII_GEN_CTL, 0x2000);
2629                 } else if (priv->speed == TLAN_SPEED_100 &&
2630                            priv->duplex == TLAN_DUPLEX_FULL) {
2631                         priv->tlan_full_duplex = true;
2632                         tlan_mii_write_reg(dev, phy, MII_GEN_CTL, 0x2100);
2633                 } else {
2634
2635                         /* Set Auto-Neg advertisement */
2636                         tlan_mii_write_reg(dev, phy, MII_AN_ADV,
2637                                            (ability << 5) | 1);
2638                         /* Enablee Auto-Neg */
2639                         tlan_mii_write_reg(dev, phy, MII_GEN_CTL, 0x1000);
2640                         /* Restart Auto-Neg */
2641                         tlan_mii_write_reg(dev, phy, MII_GEN_CTL, 0x1200);
2642                         /* Wait for 4 sec for autonegotiation
2643                          * to complete.  The max spec time is less than this
2644                          * but the card need additional time to start AN.
2645                          * .5 sec should be plenty extra.
2646                          */
2647                         netdev_info(dev, "Starting autonegotiation\n");
2648                         tlan_set_timer(dev, (2*HZ), TLAN_TIMER_PHY_FINISH_AN);
2649                         return;
2650                 }
2651
2652         }
2653
2654         if ((priv->aui) && (priv->phy_num != 0)) {
2655                 priv->phy_num = 0;
2656                 data = TLAN_NET_CFG_1FRAG | TLAN_NET_CFG_1CHAN
2657                         | TLAN_NET_CFG_PHY_EN;
2658                 tlan_dio_write16(dev->base_addr, TLAN_NET_CONFIG, data);
2659                 tlan_set_timer(dev, msecs_to_jiffies(40), TLAN_TIMER_PHY_PDOWN);
2660                 return;
2661         } else if (priv->phy_num == 0) {
2662                 control = 0;
2663                 tlan_mii_read_reg(dev, phy, TLAN_TLPHY_CTL, &tctl);
2664                 if (priv->aui) {
2665                         tctl |= TLAN_TC_AUISEL;
2666                 } else {
2667                         tctl &= ~TLAN_TC_AUISEL;
2668                         if (priv->duplex == TLAN_DUPLEX_FULL) {
2669                                 control |= MII_GC_DUPLEX;
2670                                 priv->tlan_full_duplex = true;
2671                         }
2672                         if (priv->speed == TLAN_SPEED_100)
2673                                 control |= MII_GC_SPEEDSEL;
2674                 }
2675                 tlan_mii_write_reg(dev, phy, MII_GEN_CTL, control);
2676                 tlan_mii_write_reg(dev, phy, TLAN_TLPHY_CTL, tctl);
2677         }
2678
2679         /* Wait for 2 sec to give the transceiver time
2680          * to establish link.
2681          */
2682         tlan_set_timer(dev, (4*HZ), TLAN_TIMER_FINISH_RESET);
2683
2684 }
2685
2686
2687
2688
2689 static void tlan_phy_finish_auto_neg(struct net_device *dev)
2690 {
2691         struct tlan_priv        *priv = netdev_priv(dev);
2692         u16             an_adv;
2693         u16             an_lpa;
2694         u16             mode;
2695         u16             phy;
2696         u16             status;
2697
2698         phy = priv->phy[priv->phy_num];
2699
2700         tlan_mii_read_reg(dev, phy, MII_GEN_STS, &status);
2701         udelay(1000);
2702         tlan_mii_read_reg(dev, phy, MII_GEN_STS, &status);
2703
2704         if (!(status & MII_GS_AUTOCMPLT)) {
2705                 /* Wait for 8 sec to give the process
2706                  * more time.  Perhaps we should fail after a while.
2707                  */
2708                 tlan_set_timer(dev, 2 * HZ, TLAN_TIMER_PHY_FINISH_AN);
2709                 return;
2710         }
2711
2712         netdev_info(dev, "Autonegotiation complete\n");
2713         tlan_mii_read_reg(dev, phy, MII_AN_ADV, &an_adv);
2714         tlan_mii_read_reg(dev, phy, MII_AN_LPA, &an_lpa);
2715         mode = an_adv & an_lpa & 0x03E0;
2716         if (mode & 0x0100)
2717                 priv->tlan_full_duplex = true;
2718         else if (!(mode & 0x0080) && (mode & 0x0040))
2719                 priv->tlan_full_duplex = true;
2720
2721         /* switch to internal PHY for 10 Mbps */
2722         if ((!(mode & 0x0180)) &&
2723             (priv->adapter->flags & TLAN_ADAPTER_USE_INTERN_10) &&
2724             (priv->phy_num != 0)) {
2725                 priv->phy_num = 0;
2726                 tlan_set_timer(dev, msecs_to_jiffies(400), TLAN_TIMER_PHY_PDOWN);
2727                 return;
2728         }
2729
2730         if (priv->phy_num == 0) {
2731                 if ((priv->duplex == TLAN_DUPLEX_FULL) ||
2732                     (an_adv & an_lpa & 0x0040)) {
2733                         tlan_mii_write_reg(dev, phy, MII_GEN_CTL,
2734                                            MII_GC_AUTOENB | MII_GC_DUPLEX);
2735                         netdev_info(dev, "Starting internal PHY with FULL-DUPLEX\n");
2736                 } else {
2737                         tlan_mii_write_reg(dev, phy, MII_GEN_CTL,
2738                                            MII_GC_AUTOENB);
2739                         netdev_info(dev, "Starting internal PHY with HALF-DUPLEX\n");
2740                 }
2741         }
2742
2743         /* Wait for 100 ms.  No reason in partiticular.
2744          */
2745         tlan_set_timer(dev, msecs_to_jiffies(100), TLAN_TIMER_FINISH_RESET);
2746
2747 }
2748
2749
2750 /*********************************************************************
2751  *
2752  *     tlan_phy_monitor
2753  *
2754  *     Returns:
2755  *            None
2756  *
2757  *     Params:
2758  *            data           The device structure of this device.
2759  *
2760  *
2761  *     This function monitors PHY condition by reading the status
2762  *     register via the MII bus, controls LINK LED and notifies the
2763  *     kernel about link state.
2764  *
2765  *******************************************************************/
2766
2767 static void tlan_phy_monitor(unsigned long data)
2768 {
2769         struct net_device *dev = (struct net_device *) data;
2770         struct tlan_priv *priv = netdev_priv(dev);
2771         u16     phy;
2772         u16     phy_status;
2773
2774         phy = priv->phy[priv->phy_num];
2775
2776         /* Get PHY status register */
2777         tlan_mii_read_reg(dev, phy, MII_GEN_STS, &phy_status);
2778
2779         /* Check if link has been lost */
2780         if (!(phy_status & MII_GS_LINK)) {
2781                 if (netif_carrier_ok(dev)) {
2782                         printk(KERN_DEBUG "TLAN: %s has lost link\n",
2783                                dev->name);
2784                         tlan_dio_write8(dev->base_addr, TLAN_LED_REG, 0);
2785                         netif_carrier_off(dev);
2786                         if (priv->adapter->flags & TLAN_ADAPTER_USE_INTERN_10) {
2787                                 /* power down internal PHY */
2788                                 u16 data = MII_GC_PDOWN | MII_GC_LOOPBK |
2789                                            MII_GC_ISOLATE;
2790
2791                                 tlan_mii_sync(dev->base_addr);
2792                                 tlan_mii_write_reg(dev, priv->phy[0],
2793                                                    MII_GEN_CTL, data);
2794                                 /* set to external PHY */
2795                                 priv->phy_num = 1;
2796                                 /* restart autonegotiation */
2797                                 tlan_set_timer(dev, msecs_to_jiffies(400),
2798                                                TLAN_TIMER_PHY_PDOWN);
2799                                 return;
2800                         }
2801                 }
2802         }
2803
2804         /* Link restablished? */
2805         if ((phy_status & MII_GS_LINK) && !netif_carrier_ok(dev)) {
2806                 tlan_dio_write8(dev->base_addr, TLAN_LED_REG, TLAN_LED_LINK);
2807                 printk(KERN_DEBUG "TLAN: %s has reestablished link\n",
2808                        dev->name);
2809                 netif_carrier_on(dev);
2810         }
2811         priv->media_timer.expires = jiffies + HZ;
2812         add_timer(&priv->media_timer);
2813 }
2814
2815
2816 /*****************************************************************************
2817 ******************************************************************************
2818
2819 ThunderLAN driver MII routines
2820
2821 these routines are based on the information in chap. 2 of the
2822 "ThunderLAN Programmer's Guide", pp. 15-24.
2823
2824 ******************************************************************************
2825 *****************************************************************************/
2826
2827
2828 /***************************************************************
2829  *      tlan_mii_read_reg
2830  *
2831  *      Returns:
2832  *              false   if ack received ok
2833  *              true    if no ack received or other error
2834  *
2835  *      Parms:
2836  *              dev             The device structure containing
2837  *                              The io address and interrupt count
2838  *                              for this device.
2839  *              phy             The address of the PHY to be queried.
2840  *              reg             The register whose contents are to be
2841  *                              retrieved.
2842  *              val             A pointer to a variable to store the
2843  *                              retrieved value.
2844  *
2845  *      This function uses the TLAN's MII bus to retrieve the contents
2846  *      of a given register on a PHY.  It sends the appropriate info
2847  *      and then reads the 16-bit register value from the MII bus via
2848  *      the TLAN SIO register.
2849  *
2850  **************************************************************/
2851
2852 static bool
2853 tlan_mii_read_reg(struct net_device *dev, u16 phy, u16 reg, u16 *val)
2854 {
2855         u8      nack;
2856         u16     sio, tmp;
2857         u32     i;
2858         bool    err;
2859         int     minten;
2860         struct tlan_priv *priv = netdev_priv(dev);
2861         unsigned long flags = 0;
2862
2863         err = false;
2864         outw(TLAN_NET_SIO, dev->base_addr + TLAN_DIO_ADR);
2865         sio = dev->base_addr + TLAN_DIO_DATA + TLAN_NET_SIO;
2866
2867         if (!in_irq())
2868                 spin_lock_irqsave(&priv->lock, flags);
2869
2870         tlan_mii_sync(dev->base_addr);
2871
2872         minten = tlan_get_bit(TLAN_NET_SIO_MINTEN, sio);
2873         if (minten)
2874                 tlan_clear_bit(TLAN_NET_SIO_MINTEN, sio);
2875
2876         tlan_mii_send_data(dev->base_addr, 0x1, 2);     /* start (01b) */
2877         tlan_mii_send_data(dev->base_addr, 0x2, 2);     /* read  (10b) */
2878         tlan_mii_send_data(dev->base_addr, phy, 5);     /* device #      */
2879         tlan_mii_send_data(dev->base_addr, reg, 5);     /* register #    */
2880
2881
2882         tlan_clear_bit(TLAN_NET_SIO_MTXEN, sio);        /* change direction */
2883
2884         tlan_clear_bit(TLAN_NET_SIO_MCLK, sio);         /* clock idle bit */
2885         tlan_set_bit(TLAN_NET_SIO_MCLK, sio);
2886         tlan_clear_bit(TLAN_NET_SIO_MCLK, sio);         /* wait 300ns */
2887
2888         nack = tlan_get_bit(TLAN_NET_SIO_MDATA, sio);   /* check for ACK */
2889         tlan_set_bit(TLAN_NET_SIO_MCLK, sio);           /* finish ACK */
2890         if (nack) {                                     /* no ACK, so fake it */
2891                 for (i = 0; i < 16; i++) {
2892                         tlan_clear_bit(TLAN_NET_SIO_MCLK, sio);
2893                         tlan_set_bit(TLAN_NET_SIO_MCLK, sio);
2894                 }
2895                 tmp = 0xffff;
2896                 err = true;
2897         } else {                                        /* ACK, so read data */
2898                 for (tmp = 0, i = 0x8000; i; i >>= 1) {
2899                         tlan_clear_bit(TLAN_NET_SIO_MCLK, sio);
2900                         if (tlan_get_bit(TLAN_NET_SIO_MDATA, sio))
2901                                 tmp |= i;
2902                         tlan_set_bit(TLAN_NET_SIO_MCLK, sio);
2903                 }
2904         }
2905
2906
2907         tlan_clear_bit(TLAN_NET_SIO_MCLK, sio);         /* idle cycle */
2908         tlan_set_bit(TLAN_NET_SIO_MCLK, sio);
2909
2910         if (minten)
2911                 tlan_set_bit(TLAN_NET_SIO_MINTEN, sio);
2912
2913         *val = tmp;
2914
2915         if (!in_irq())
2916                 spin_unlock_irqrestore(&priv->lock, flags);
2917
2918         return err;
2919
2920 }
2921
2922
2923
2924
2925 /***************************************************************
2926  *      tlan_mii_send_data
2927  *
2928  *      Returns:
2929  *              Nothing
2930  *      Parms:
2931  *              base_port       The base IO port of the adapter in
2932  *                              question.
2933  *              dev             The address of the PHY to be queried.
2934  *              data            The value to be placed on the MII bus.
2935  *              num_bits        The number of bits in data that are to
2936  *                              be placed on the MII bus.
2937  *
2938  *      This function sends on sequence of bits on the MII
2939  *      configuration bus.
2940  *
2941  **************************************************************/
2942
2943 static void tlan_mii_send_data(u16 base_port, u32 data, unsigned num_bits)
2944 {
2945         u16 sio;
2946         u32 i;
2947
2948         if (num_bits == 0)
2949                 return;
2950
2951         outw(TLAN_NET_SIO, base_port + TLAN_DIO_ADR);
2952         sio = base_port + TLAN_DIO_DATA + TLAN_NET_SIO;
2953         tlan_set_bit(TLAN_NET_SIO_MTXEN, sio);
2954
2955         for (i = (0x1 << (num_bits - 1)); i; i >>= 1) {
2956                 tlan_clear_bit(TLAN_NET_SIO_MCLK, sio);
2957                 (void) tlan_get_bit(TLAN_NET_SIO_MCLK, sio);
2958                 if (data & i)
2959                         tlan_set_bit(TLAN_NET_SIO_MDATA, sio);
2960                 else
2961                         tlan_clear_bit(TLAN_NET_SIO_MDATA, sio);
2962                 tlan_set_bit(TLAN_NET_SIO_MCLK, sio);
2963                 (void) tlan_get_bit(TLAN_NET_SIO_MCLK, sio);
2964         }
2965
2966 }
2967
2968
2969
2970
2971 /***************************************************************
2972  *      TLan_MiiSync
2973  *
2974  *      Returns:
2975  *              Nothing
2976  *      Parms:
2977  *              base_port       The base IO port of the adapter in
2978  *                              question.
2979  *
2980  *      This functions syncs all PHYs in terms of the MII configuration
2981  *      bus.
2982  *
2983  **************************************************************/
2984
2985 static void tlan_mii_sync(u16 base_port)
2986 {
2987         int i;
2988         u16 sio;
2989
2990         outw(TLAN_NET_SIO, base_port + TLAN_DIO_ADR);
2991         sio = base_port + TLAN_DIO_DATA + TLAN_NET_SIO;
2992
2993         tlan_clear_bit(TLAN_NET_SIO_MTXEN, sio);
2994         for (i = 0; i < 32; i++) {
2995                 tlan_clear_bit(TLAN_NET_SIO_MCLK, sio);
2996                 tlan_set_bit(TLAN_NET_SIO_MCLK, sio);
2997         }
2998
2999 }
3000
3001
3002
3003
3004 /***************************************************************
3005  *      tlan_mii_write_reg
3006  *
3007  *      Returns:
3008  *              Nothing
3009  *      Parms:
3010  *              dev             The device structure for the device
3011  *                              to write to.
3012  *              phy             The address of the PHY to be written to.
3013  *              reg             The register whose contents are to be
3014  *                              written.
3015  *              val             The value to be written to the register.
3016  *
3017  *      This function uses the TLAN's MII bus to write the contents of a
3018  *      given register on a PHY.  It sends the appropriate info and then
3019  *      writes the 16-bit register value from the MII configuration bus
3020  *      via the TLAN SIO register.
3021  *
3022  **************************************************************/
3023
3024 static void
3025 tlan_mii_write_reg(struct net_device *dev, u16 phy, u16 reg, u16 val)
3026 {
3027         u16     sio;
3028         int     minten;
3029         unsigned long flags = 0;
3030         struct tlan_priv *priv = netdev_priv(dev);
3031
3032         outw(TLAN_NET_SIO, dev->base_addr + TLAN_DIO_ADR);
3033         sio = dev->base_addr + TLAN_DIO_DATA + TLAN_NET_SIO;
3034
3035         if (!in_irq())
3036                 spin_lock_irqsave(&priv->lock, flags);
3037
3038         tlan_mii_sync(dev->base_addr);
3039
3040         minten = tlan_get_bit(TLAN_NET_SIO_MINTEN, sio);
3041         if (minten)
3042                 tlan_clear_bit(TLAN_NET_SIO_MINTEN, sio);
3043
3044         tlan_mii_send_data(dev->base_addr, 0x1, 2);     /* start (01b) */
3045         tlan_mii_send_data(dev->base_addr, 0x1, 2);     /* write (01b) */
3046         tlan_mii_send_data(dev->base_addr, phy, 5);     /* device #      */
3047         tlan_mii_send_data(dev->base_addr, reg, 5);     /* register #    */
3048
3049         tlan_mii_send_data(dev->base_addr, 0x2, 2);     /* send ACK */
3050         tlan_mii_send_data(dev->base_addr, val, 16);    /* send data */
3051
3052         tlan_clear_bit(TLAN_NET_SIO_MCLK, sio); /* idle cycle */
3053         tlan_set_bit(TLAN_NET_SIO_MCLK, sio);
3054
3055         if (minten)
3056                 tlan_set_bit(TLAN_NET_SIO_MINTEN, sio);
3057
3058         if (!in_irq())
3059                 spin_unlock_irqrestore(&priv->lock, flags);
3060
3061 }
3062
3063
3064
3065
3066 /*****************************************************************************
3067 ******************************************************************************
3068
3069 ThunderLAN driver eeprom routines
3070
3071 the Compaq netelligent 10 and 10/100 cards use a microchip 24C02A
3072 EEPROM.  these functions are based on information in microchip's
3073 data sheet.  I don't know how well this functions will work with
3074 other Eeproms.
3075
3076 ******************************************************************************
3077 *****************************************************************************/
3078
3079
3080 /***************************************************************
3081  *      tlan_ee_send_start
3082  *
3083  *      Returns:
3084  *              Nothing
3085  *      Parms:
3086  *              io_base         The IO port base address for the
3087  *                              TLAN device with the EEPROM to
3088  *                              use.
3089  *
3090  *      This function sends a start cycle to an EEPROM attached
3091  *      to a TLAN chip.
3092  *
3093  **************************************************************/
3094
3095 static void tlan_ee_send_start(u16 io_base)
3096 {
3097         u16     sio;
3098
3099         outw(TLAN_NET_SIO, io_base + TLAN_DIO_ADR);
3100         sio = io_base + TLAN_DIO_DATA + TLAN_NET_SIO;
3101
3102         tlan_set_bit(TLAN_NET_SIO_ECLOK, sio);
3103         tlan_set_bit(TLAN_NET_SIO_EDATA, sio);
3104         tlan_set_bit(TLAN_NET_SIO_ETXEN, sio);
3105         tlan_clear_bit(TLAN_NET_SIO_EDATA, sio);
3106         tlan_clear_bit(TLAN_NET_SIO_ECLOK, sio);
3107
3108 }
3109
3110
3111
3112
3113 /***************************************************************
3114  *      tlan_ee_send_byte
3115  *
3116  *      Returns:
3117  *              If the correct ack was received, 0, otherwise 1
3118  *      Parms:  io_base         The IO port base address for the
3119  *                              TLAN device with the EEPROM to
3120  *                              use.
3121  *              data            The 8 bits of information to
3122  *                              send to the EEPROM.
3123  *              stop            If TLAN_EEPROM_STOP is passed, a
3124  *                              stop cycle is sent after the
3125  *                              byte is sent after the ack is
3126  *                              read.
3127  *
3128  *      This function sends a byte on the serial EEPROM line,
3129  *      driving the clock to send each bit. The function then
3130  *      reverses transmission direction and reads an acknowledge
3131  *      bit.
3132  *
3133  **************************************************************/
3134
3135 static int tlan_ee_send_byte(u16 io_base, u8 data, int stop)
3136 {
3137         int     err;
3138         u8      place;
3139         u16     sio;
3140
3141         outw(TLAN_NET_SIO, io_base + TLAN_DIO_ADR);
3142         sio = io_base + TLAN_DIO_DATA + TLAN_NET_SIO;
3143
3144         /* Assume clock is low, tx is enabled; */
3145         for (place = 0x80; place != 0; place >>= 1) {
3146                 if (place & data)
3147                         tlan_set_bit(TLAN_NET_SIO_EDATA, sio);
3148                 else
3149                         tlan_clear_bit(TLAN_NET_SIO_EDATA, sio);
3150                 tlan_set_bit(TLAN_NET_SIO_ECLOK, sio);
3151                 tlan_clear_bit(TLAN_NET_SIO_ECLOK, sio);
3152         }
3153         tlan_clear_bit(TLAN_NET_SIO_ETXEN, sio);
3154         tlan_set_bit(TLAN_NET_SIO_ECLOK, sio);
3155         err = tlan_get_bit(TLAN_NET_SIO_EDATA, sio);
3156         tlan_clear_bit(TLAN_NET_SIO_ECLOK, sio);
3157         tlan_set_bit(TLAN_NET_SIO_ETXEN, sio);
3158
3159         if ((!err) && stop) {
3160                 /* STOP, raise data while clock is high */
3161                 tlan_clear_bit(TLAN_NET_SIO_EDATA, sio);
3162                 tlan_set_bit(TLAN_NET_SIO_ECLOK, sio);
3163                 tlan_set_bit(TLAN_NET_SIO_EDATA, sio);
3164         }
3165
3166         return err;
3167
3168 }
3169
3170
3171
3172
3173 /***************************************************************
3174  *      tlan_ee_receive_byte
3175  *
3176  *      Returns:
3177  *              Nothing
3178  *      Parms:
3179  *              io_base         The IO port base address for the
3180  *                              TLAN device with the EEPROM to
3181  *                              use.
3182  *              data            An address to a char to hold the
3183  *                              data sent from the EEPROM.
3184  *              stop            If TLAN_EEPROM_STOP is passed, a
3185  *                              stop cycle is sent after the
3186  *                              byte is received, and no ack is
3187  *                              sent.
3188  *
3189  *      This function receives 8 bits of data from the EEPROM
3190  *      over the serial link.  It then sends and ack bit, or no
3191  *      ack and a stop bit.  This function is used to retrieve
3192  *      data after the address of a byte in the EEPROM has been
3193  *      sent.
3194  *
3195  **************************************************************/
3196
3197 static void tlan_ee_receive_byte(u16 io_base, u8 *data, int stop)
3198 {
3199         u8  place;
3200         u16 sio;
3201
3202         outw(TLAN_NET_SIO, io_base + TLAN_DIO_ADR);
3203         sio = io_base + TLAN_DIO_DATA + TLAN_NET_SIO;
3204         *data = 0;
3205
3206         /* Assume clock is low, tx is enabled; */
3207         tlan_clear_bit(TLAN_NET_SIO_ETXEN, sio);
3208         for (place = 0x80; place; place >>= 1) {
3209                 tlan_set_bit(TLAN_NET_SIO_ECLOK, sio);
3210                 if (tlan_get_bit(TLAN_NET_SIO_EDATA, sio))
3211                         *data |= place;
3212                 tlan_clear_bit(TLAN_NET_SIO_ECLOK, sio);
3213         }
3214
3215         tlan_set_bit(TLAN_NET_SIO_ETXEN, sio);
3216         if (!stop) {
3217                 tlan_clear_bit(TLAN_NET_SIO_EDATA, sio); /* ack = 0 */
3218                 tlan_set_bit(TLAN_NET_SIO_ECLOK, sio);
3219                 tlan_clear_bit(TLAN_NET_SIO_ECLOK, sio);
3220         } else {
3221                 tlan_set_bit(TLAN_NET_SIO_EDATA, sio);  /* no ack = 1 (?) */
3222                 tlan_set_bit(TLAN_NET_SIO_ECLOK, sio);
3223                 tlan_clear_bit(TLAN_NET_SIO_ECLOK, sio);
3224                 /* STOP, raise data while clock is high */
3225                 tlan_clear_bit(TLAN_NET_SIO_EDATA, sio);
3226                 tlan_set_bit(TLAN_NET_SIO_ECLOK, sio);
3227                 tlan_set_bit(TLAN_NET_SIO_EDATA, sio);
3228         }
3229
3230 }
3231
3232
3233
3234
3235 /***************************************************************
3236  *      tlan_ee_read_byte
3237  *
3238  *      Returns:
3239  *              No error = 0, else, the stage at which the error
3240  *              occurred.
3241  *      Parms:
3242  *              io_base         The IO port base address for the
3243  *                              TLAN device with the EEPROM to
3244  *                              use.
3245  *              ee_addr         The address of the byte in the
3246  *                              EEPROM whose contents are to be
3247  *                              retrieved.
3248  *              data            An address to a char to hold the
3249  *                              data obtained from the EEPROM.
3250  *
3251  *      This function reads a byte of information from an byte
3252  *      cell in the EEPROM.
3253  *
3254  **************************************************************/
3255
3256 static int tlan_ee_read_byte(struct net_device *dev, u8 ee_addr, u8 *data)
3257 {
3258         int err;
3259         struct tlan_priv *priv = netdev_priv(dev);
3260         unsigned long flags = 0;
3261         int ret = 0;
3262
3263         spin_lock_irqsave(&priv->lock, flags);
3264
3265         tlan_ee_send_start(dev->base_addr);
3266         err = tlan_ee_send_byte(dev->base_addr, 0xa0, TLAN_EEPROM_ACK);
3267         if (err) {
3268                 ret = 1;
3269                 goto fail;
3270         }
3271         err = tlan_ee_send_byte(dev->base_addr, ee_addr, TLAN_EEPROM_ACK);
3272         if (err) {
3273                 ret = 2;
3274                 goto fail;
3275         }
3276         tlan_ee_send_start(dev->base_addr);
3277         err = tlan_ee_send_byte(dev->base_addr, 0xa1, TLAN_EEPROM_ACK);
3278         if (err) {
3279                 ret = 3;
3280                 goto fail;
3281         }
3282         tlan_ee_receive_byte(dev->base_addr, data, TLAN_EEPROM_STOP);
3283 fail:
3284         spin_unlock_irqrestore(&priv->lock, flags);
3285
3286         return ret;
3287
3288 }
3289
3290
3291