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