blob: f4251d35599d54f288e18abf4e5d1e0cf5b2c61e [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * 3c359.c (c) 2000 Mike Phillips (mikep@linuxtr.net) All Rights Reserved
3 *
4 * Linux driver for 3Com 3c359 Tokenlink Velocity XL PCI NIC
5 *
6 * Base Driver Olympic:
7 * Written 1999 Peter De Schrijver & Mike Phillips
8 *
9 * This software may be used and distributed according to the terms
10 * of the GNU General Public License, incorporated herein by reference.
11 *
12 * 7/17/00 - Clean up, version number 0.9.0. Ready to release to the world.
13 *
14 * 2/16/01 - Port up to kernel 2.4.2 ready for submission into the kernel.
15 * 3/05/01 - Last clean up stuff before submission.
16 * 2/15/01 - Finally, update to new pci api.
17 *
18 * To Do:
19 */
20
21/*
22 * Technical Card Details
23 *
24 * All access to data is done with 16/8 bit transfers. The transfer
25 * method really sucks. You can only read or write one location at a time.
26 *
27 * Also, the microcode for the card must be uploaded if the card does not have
28 * the flashrom on board. This is a 28K bloat in the driver when compiled
29 * as a module.
30 *
31 * Rx is very simple, status into a ring of descriptors, dma data transfer,
32 * interrupts to tell us when a packet is received.
33 *
34 * Tx is a little more interesting. Similar scenario, descriptor and dma data
35 * transfers, but we don't have to interrupt the card to tell it another packet
36 * is ready for transmission, we are just doing simple memory writes, not io or mmio
37 * writes. The card can be set up to simply poll on the next
38 * descriptor pointer and when this value is non-zero will automatically download
39 * the next packet. The card then interrupts us when the packet is done.
40 *
41 */
42
43#define XL_DEBUG 0
44
Linus Torvalds1da177e2005-04-16 15:20:36 -070045#include <linux/module.h>
46#include <linux/kernel.h>
47#include <linux/errno.h>
48#include <linux/timer.h>
49#include <linux/in.h>
50#include <linux/ioport.h>
51#include <linux/string.h>
52#include <linux/proc_fs.h>
53#include <linux/ptrace.h>
54#include <linux/skbuff.h>
55#include <linux/interrupt.h>
56#include <linux/delay.h>
57#include <linux/netdevice.h>
58#include <linux/trdevice.h>
59#include <linux/stddef.h>
60#include <linux/init.h>
61#include <linux/pci.h>
62#include <linux/spinlock.h>
63#include <linux/bitops.h>
64
65#include <net/checksum.h>
66
67#include <asm/io.h>
68#include <asm/system.h>
69
70#include "3c359.h"
71
72static char version[] __devinitdata =
73"3c359.c v1.2.0 2/17/01 - Mike Phillips (mikep@linuxtr.net)" ;
74
75MODULE_AUTHOR("Mike Phillips <mikep@linuxtr.net>") ;
76MODULE_DESCRIPTION("3Com 3C359 Velocity XL Token Ring Adapter Driver \n") ;
77
78/* Module paramters */
79
80/* Ring Speed 0,4,16
81 * 0 = Autosense
82 * 4,16 = Selected speed only, no autosense
83 * This allows the card to be the first on the ring
84 * and become the active monitor.
85 *
86 * WARNING: Some hubs will allow you to insert
87 * at the wrong speed.
88 *
89 * The adapter will _not_ fail to open if there are no
90 * active monitors on the ring, it will simply open up in
91 * its last known ringspeed if no ringspeed is specified.
92 */
93
94static int ringspeed[XL_MAX_ADAPTERS] = {0,} ;
95
96module_param_array(ringspeed, int, NULL, 0);
97MODULE_PARM_DESC(ringspeed,"3c359: Ringspeed selection - 4,16 or 0") ;
98
99/* Packet buffer size */
100
101static int pkt_buf_sz[XL_MAX_ADAPTERS] = {0,} ;
102
103module_param_array(pkt_buf_sz, int, NULL, 0) ;
104MODULE_PARM_DESC(pkt_buf_sz,"3c359: Initial buffer size") ;
105/* Message Level */
106
107static int message_level[XL_MAX_ADAPTERS] = {0,} ;
108
109module_param_array(message_level, int, NULL, 0) ;
110MODULE_PARM_DESC(message_level, "3c359: Level of reported messages \n") ;
111/*
112 * This is a real nasty way of doing this, but otherwise you
113 * will be stuck with 1555 lines of hex #'s in the code.
114 */
115
116#include "3c359_microcode.h"
117
118static struct pci_device_id xl_pci_tbl[] =
119{
120 {PCI_VENDOR_ID_3COM,PCI_DEVICE_ID_3COM_3C359, PCI_ANY_ID, PCI_ANY_ID, },
121 { } /* terminate list */
122};
123MODULE_DEVICE_TABLE(pci,xl_pci_tbl) ;
124
125static int xl_init(struct net_device *dev);
126static int xl_open(struct net_device *dev);
127static int xl_open_hw(struct net_device *dev) ;
128static int xl_hw_reset(struct net_device *dev);
129static int xl_xmit(struct sk_buff *skb, struct net_device *dev);
130static void xl_dn_comp(struct net_device *dev);
131static int xl_close(struct net_device *dev);
132static void xl_set_rx_mode(struct net_device *dev);
David Howells7d12e782006-10-05 14:55:46 +0100133static irqreturn_t xl_interrupt(int irq, void *dev_id);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700134static struct net_device_stats * xl_get_stats(struct net_device *dev);
135static int xl_set_mac_address(struct net_device *dev, void *addr) ;
136static void xl_arb_cmd(struct net_device *dev);
137static void xl_asb_cmd(struct net_device *dev) ;
138static void xl_srb_cmd(struct net_device *dev, int srb_cmd) ;
139static void xl_wait_misr_flags(struct net_device *dev) ;
140static int xl_change_mtu(struct net_device *dev, int mtu);
141static void xl_srb_bh(struct net_device *dev) ;
142static void xl_asb_bh(struct net_device *dev) ;
143static void xl_reset(struct net_device *dev) ;
144static void xl_freemem(struct net_device *dev) ;
145
146
147/* EEProm Access Functions */
148static u16 xl_ee_read(struct net_device *dev, int ee_addr) ;
149static void xl_ee_write(struct net_device *dev, int ee_addr, u16 ee_value) ;
150
151/* Debugging functions */
152#if XL_DEBUG
153static void print_tx_state(struct net_device *dev) ;
154static void print_rx_state(struct net_device *dev) ;
155
156static void print_tx_state(struct net_device *dev)
157{
158
Yoann Padioleaueda10532007-07-23 15:18:21 +0200159 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700160 struct xl_tx_desc *txd ;
161 u8 __iomem *xl_mmio = xl_priv->xl_mmio ;
162 int i ;
163
164 printk("tx_ring_head: %d, tx_ring_tail: %d, free_ent: %d \n",xl_priv->tx_ring_head,
165 xl_priv->tx_ring_tail, xl_priv->free_ring_entries) ;
166 printk("Ring , Address , FSH , DnNextPtr, Buffer, Buffer_Len \n");
167 for (i = 0; i < 16; i++) {
168 txd = &(xl_priv->xl_tx_ring[i]) ;
169 printk("%d, %08lx, %08x, %08x, %08x, %08x \n", i, virt_to_bus(txd),
170 txd->framestartheader, txd->dnnextptr, txd->buffer, txd->buffer_length ) ;
171 }
172
173 printk("DNLISTPTR = %04x \n", readl(xl_mmio + MMIO_DNLISTPTR) );
174
175 printk("DmaCtl = %04x \n", readl(xl_mmio + MMIO_DMA_CTRL) );
176 printk("Queue status = %0x \n",netif_running(dev) ) ;
177}
178
179static void print_rx_state(struct net_device *dev)
180{
181
Yoann Padioleaueda10532007-07-23 15:18:21 +0200182 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700183 struct xl_rx_desc *rxd ;
184 u8 __iomem *xl_mmio = xl_priv->xl_mmio ;
185 int i ;
186
187 printk("rx_ring_tail: %d \n", xl_priv->rx_ring_tail) ;
188 printk("Ring , Address , FrameState , UPNextPtr, FragAddr, Frag_Len \n");
189 for (i = 0; i < 16; i++) {
190 /* rxd = (struct xl_rx_desc *)xl_priv->rx_ring_dma_addr + (i * sizeof(struct xl_rx_desc)) ; */
191 rxd = &(xl_priv->xl_rx_ring[i]) ;
192 printk("%d, %08lx, %08x, %08x, %08x, %08x \n", i, virt_to_bus(rxd),
193 rxd->framestatus, rxd->upnextptr, rxd->upfragaddr, rxd->upfraglen ) ;
194 }
195
196 printk("UPLISTPTR = %04x \n", readl(xl_mmio + MMIO_UPLISTPTR) );
197
198 printk("DmaCtl = %04x \n", readl(xl_mmio + MMIO_DMA_CTRL) );
199 printk("Queue status = %0x \n",netif_running(dev) ) ;
200}
201#endif
202
203/*
204 * Read values from the on-board EEProm. This looks very strange
205 * but you have to wait for the EEProm to get/set the value before
206 * passing/getting the next value from the nic. As with all requests
207 * on this nic it has to be done in two stages, a) tell the nic which
208 * memory address you want to access and b) pass/get the value from the nic.
209 * With the EEProm, you have to wait before and inbetween access a) and b).
210 * As this is only read at initialization time and the wait period is very
211 * small we shouldn't have to worry about scheduling issues.
212 */
213
214static u16 xl_ee_read(struct net_device *dev, int ee_addr)
215{
Yoann Padioleaueda10532007-07-23 15:18:21 +0200216 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700217 u8 __iomem *xl_mmio = xl_priv->xl_mmio ;
218
219 /* Wait for EEProm to not be busy */
220 writel(IO_WORD_READ | EECONTROL, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
221 while ( readw(xl_mmio + MMIO_MACDATA) & EEBUSY ) ;
222
223 /* Tell EEProm what we want to do and where */
224 writel(IO_WORD_WRITE | EECONTROL, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
225 writew(EEREAD + ee_addr, xl_mmio + MMIO_MACDATA) ;
226
227 /* Wait for EEProm to not be busy */
228 writel(IO_WORD_READ | EECONTROL, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
229 while ( readw(xl_mmio + MMIO_MACDATA) & EEBUSY ) ;
230
231 /* Tell EEProm what we want to do and where */
232 writel(IO_WORD_WRITE | EECONTROL , xl_mmio + MMIO_MAC_ACCESS_CMD) ;
233 writew(EEREAD + ee_addr, xl_mmio + MMIO_MACDATA) ;
234
235 /* Finally read the value from the EEProm */
236 writel(IO_WORD_READ | EEDATA , xl_mmio + MMIO_MAC_ACCESS_CMD) ;
237 return readw(xl_mmio + MMIO_MACDATA) ;
238}
239
240/*
241 * Write values to the onboard eeprom. As with eeprom read you need to
242 * set which location to write, wait, value to write, wait, with the
243 * added twist of having to enable eeprom writes as well.
244 */
245
246static void xl_ee_write(struct net_device *dev, int ee_addr, u16 ee_value)
247{
Yoann Padioleaueda10532007-07-23 15:18:21 +0200248 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700249 u8 __iomem *xl_mmio = xl_priv->xl_mmio ;
250
251 /* Wait for EEProm to not be busy */
252 writel(IO_WORD_READ | EECONTROL, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
253 while ( readw(xl_mmio + MMIO_MACDATA) & EEBUSY ) ;
254
255 /* Enable write/erase */
256 writel(IO_WORD_WRITE | EECONTROL, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
257 writew(EE_ENABLE_WRITE, xl_mmio + MMIO_MACDATA) ;
258
259 /* Wait for EEProm to not be busy */
260 writel(IO_WORD_READ | EECONTROL, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
261 while ( readw(xl_mmio + MMIO_MACDATA) & EEBUSY ) ;
262
263 /* Put the value we want to write into EEDATA */
264 writel(IO_WORD_WRITE | EEDATA, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
265 writew(ee_value, xl_mmio + MMIO_MACDATA) ;
266
267 /* Tell EEProm to write eevalue into ee_addr */
268 writel(IO_WORD_WRITE | EECONTROL, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
269 writew(EEWRITE + ee_addr, xl_mmio + MMIO_MACDATA) ;
270
271 /* Wait for EEProm to not be busy, to ensure write gets done */
272 writel(IO_WORD_READ | EECONTROL, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
273 while ( readw(xl_mmio + MMIO_MACDATA) & EEBUSY ) ;
274
275 return ;
276}
277
Adrian Bunkde70b4c2005-05-02 03:46:43 +0200278static int __devinit xl_probe(struct pci_dev *pdev,
279 const struct pci_device_id *ent)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700280{
281 struct net_device *dev ;
282 struct xl_private *xl_priv ;
283 static int card_no = -1 ;
284 int i ;
285
286 card_no++ ;
287
288 if (pci_enable_device(pdev)) {
289 return -ENODEV ;
290 }
291
292 pci_set_master(pdev);
293
294 if ((i = pci_request_regions(pdev,"3c359"))) {
295 return i ;
296 } ;
297
298 /*
299 * Allowing init_trdev to allocate the dev->priv structure will align xl_private
300 * on a 32 bytes boundary which we need for the rx/tx descriptors
301 */
302
303 dev = alloc_trdev(sizeof(struct xl_private)) ;
304 if (!dev) {
305 pci_release_regions(pdev) ;
306 return -ENOMEM ;
307 }
Yoann Padioleaueda10532007-07-23 15:18:21 +0200308 xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700309
310#if XL_DEBUG
311 printk("pci_device: %p, dev:%p, dev->priv: %p, ba[0]: %10x, ba[1]:%10x\n",
Yoann Padioleaueda10532007-07-23 15:18:21 +0200312 pdev, dev, netdev_priv(dev), (unsigned int)pdev->resource[0].start, (unsigned int)pdev->resource[1].start);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700313#endif
314
315 dev->irq=pdev->irq;
316 dev->base_addr=pci_resource_start(pdev,0) ;
317 xl_priv->xl_card_name = pci_name(pdev);
318 xl_priv->xl_mmio=ioremap(pci_resource_start(pdev,1), XL_IO_SPACE);
319 xl_priv->pdev = pdev ;
320
321 if ((pkt_buf_sz[card_no] < 100) || (pkt_buf_sz[card_no] > 18000) )
322 xl_priv->pkt_buf_sz = PKT_BUF_SZ ;
323 else
324 xl_priv->pkt_buf_sz = pkt_buf_sz[card_no] ;
325
326 dev->mtu = xl_priv->pkt_buf_sz - TR_HLEN ;
327 xl_priv->xl_ring_speed = ringspeed[card_no] ;
328 xl_priv->xl_message_level = message_level[card_no] ;
329 xl_priv->xl_functional_addr[0] = xl_priv->xl_functional_addr[1] = xl_priv->xl_functional_addr[2] = xl_priv->xl_functional_addr[3] = 0 ;
330 xl_priv->xl_copy_all_options = 0 ;
331
332 if((i = xl_init(dev))) {
333 iounmap(xl_priv->xl_mmio) ;
334 free_netdev(dev) ;
335 pci_release_regions(pdev) ;
336 return i ;
337 }
338
339 dev->open=&xl_open;
340 dev->hard_start_xmit=&xl_xmit;
341 dev->change_mtu=&xl_change_mtu;
342 dev->stop=&xl_close;
343 dev->do_ioctl=NULL;
344 dev->set_multicast_list=&xl_set_rx_mode;
345 dev->get_stats=&xl_get_stats ;
346 dev->set_mac_address=&xl_set_mac_address ;
347 SET_MODULE_OWNER(dev);
348 SET_NETDEV_DEV(dev, &pdev->dev);
349
350 pci_set_drvdata(pdev,dev) ;
351 if ((i = register_netdev(dev))) {
352 printk(KERN_ERR "3C359, register netdev failed\n") ;
353 pci_set_drvdata(pdev,NULL) ;
354 iounmap(xl_priv->xl_mmio) ;
355 free_netdev(dev) ;
356 pci_release_regions(pdev) ;
357 return i ;
358 }
359
360 printk(KERN_INFO "3C359: %s registered as: %s\n",xl_priv->xl_card_name,dev->name) ;
361
362 return 0;
363}
364
365
Adrian Bunk9b5587c2007-07-10 14:44:37 +0200366static int __devinit xl_init(struct net_device *dev)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700367{
Yoann Padioleaueda10532007-07-23 15:18:21 +0200368 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700369
370 printk(KERN_INFO "%s \n", version);
371 printk(KERN_INFO "%s: I/O at %hx, MMIO at %p, using irq %d\n",
372 xl_priv->xl_card_name, (unsigned int)dev->base_addr ,xl_priv->xl_mmio, dev->irq);
373
374 spin_lock_init(&xl_priv->xl_lock) ;
375
376 return xl_hw_reset(dev) ;
377
378}
379
380
381/*
382 * Hardware reset. This needs to be a separate entity as we need to reset the card
383 * when we change the EEProm settings.
384 */
385
386static int xl_hw_reset(struct net_device *dev)
387{
Yoann Padioleaueda10532007-07-23 15:18:21 +0200388 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700389 u8 __iomem *xl_mmio = xl_priv->xl_mmio ;
390 unsigned long t ;
391 u16 i ;
392 u16 result_16 ;
393 u8 result_8 ;
394 u16 start ;
395 int j ;
396
397 /*
398 * Reset the card. If the card has got the microcode on board, we have
399 * missed the initialization interrupt, so we must always do this.
400 */
401
402 writew( GLOBAL_RESET, xl_mmio + MMIO_COMMAND ) ;
403
404 /*
405 * Must wait for cmdInProgress bit (12) to clear before continuing with
406 * card configuration.
407 */
408
409 t=jiffies;
410 while (readw(xl_mmio + MMIO_INTSTATUS) & INTSTAT_CMD_IN_PROGRESS) {
411 schedule();
412 if(jiffies-t > 40*HZ) {
413 printk(KERN_ERR "%s: 3COM 3C359 Velocity XL card not responding to global reset.\n", dev->name);
414 return -ENODEV;
415 }
416 }
417
418 /*
419 * Enable pmbar by setting bit in CPAttention
420 */
421
422 writel( (IO_BYTE_READ | CPATTENTION), xl_mmio + MMIO_MAC_ACCESS_CMD) ;
423 result_8 = readb(xl_mmio + MMIO_MACDATA) ;
424 result_8 = result_8 | CPA_PMBARVIS ;
425 writel( (IO_BYTE_WRITE | CPATTENTION), xl_mmio + MMIO_MAC_ACCESS_CMD) ;
426 writeb(result_8, xl_mmio + MMIO_MACDATA) ;
427
428 /*
429 * Read cpHold bit in pmbar, if cleared we have got Flashrom on board.
430 * If not, we need to upload the microcode to the card
431 */
432
433 writel( (IO_WORD_READ | PMBAR),xl_mmio + MMIO_MAC_ACCESS_CMD);
434
435#if XL_DEBUG
436 printk(KERN_INFO "Read from PMBAR = %04x \n", readw(xl_mmio + MMIO_MACDATA)) ;
437#endif
438
439 if ( readw( (xl_mmio + MMIO_MACDATA)) & PMB_CPHOLD ) {
440
441 /* Set PmBar, privateMemoryBase bits (8:2) to 0 */
442
443 writel( (IO_WORD_READ | PMBAR),xl_mmio + MMIO_MAC_ACCESS_CMD);
444 result_16 = readw(xl_mmio + MMIO_MACDATA) ;
445 result_16 = result_16 & ~((0x7F) << 2) ;
446 writel( (IO_WORD_WRITE | PMBAR), xl_mmio + MMIO_MAC_ACCESS_CMD) ;
447 writew(result_16,xl_mmio + MMIO_MACDATA) ;
448
449 /* Set CPAttention, memWrEn bit */
450
451 writel( (IO_BYTE_READ | CPATTENTION), xl_mmio + MMIO_MAC_ACCESS_CMD) ;
452 result_8 = readb(xl_mmio + MMIO_MACDATA) ;
453 result_8 = result_8 | CPA_MEMWREN ;
454 writel( (IO_BYTE_WRITE | CPATTENTION), xl_mmio + MMIO_MAC_ACCESS_CMD) ;
455 writeb(result_8, xl_mmio + MMIO_MACDATA) ;
456
457 /*
458 * Now to write the microcode into the shared ram
459 * The microcode must finish at position 0xFFFF, so we must subtract
460 * to get the start position for the code
461 */
462
463 start = (0xFFFF - (mc_size) + 1 ) ; /* Looks strange but ensures compiler only uses 16 bit unsigned int for this */
464
465 printk(KERN_INFO "3C359: Uploading Microcode: ");
466
467 for (i = start, j = 0; j < mc_size; i++, j++) {
468 writel(MEM_BYTE_WRITE | 0XD0000 | i, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
469 writeb(microcode[j],xl_mmio + MMIO_MACDATA) ;
470 if (j % 1024 == 0)
471 printk(".");
472 }
473 printk("\n") ;
474
475 for (i=0;i < 16; i++) {
476 writel( (MEM_BYTE_WRITE | 0xDFFF0) + i, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
477 writeb(microcode[mc_size - 16 + i], xl_mmio + MMIO_MACDATA) ;
478 }
479
480 /*
481 * Have to write the start address of the upload to FFF4, but
482 * the address must be >> 4. You do not want to know how long
483 * it took me to discover this.
484 */
485
486 writel(MEM_WORD_WRITE | 0xDFFF4, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
487 writew(start >> 4, xl_mmio + MMIO_MACDATA);
488
489 /* Clear the CPAttention, memWrEn Bit */
490
491 writel( (IO_BYTE_READ | CPATTENTION), xl_mmio + MMIO_MAC_ACCESS_CMD) ;
492 result_8 = readb(xl_mmio + MMIO_MACDATA) ;
493 result_8 = result_8 & ~CPA_MEMWREN ;
494 writel( (IO_BYTE_WRITE | CPATTENTION), xl_mmio + MMIO_MAC_ACCESS_CMD) ;
495 writeb(result_8, xl_mmio + MMIO_MACDATA) ;
496
497 /* Clear the cpHold bit in pmbar */
498
499 writel( (IO_WORD_READ | PMBAR),xl_mmio + MMIO_MAC_ACCESS_CMD);
500 result_16 = readw(xl_mmio + MMIO_MACDATA) ;
501 result_16 = result_16 & ~PMB_CPHOLD ;
502 writel( (IO_WORD_WRITE | PMBAR), xl_mmio + MMIO_MAC_ACCESS_CMD) ;
503 writew(result_16,xl_mmio + MMIO_MACDATA) ;
504
505
506 } /* If microcode upload required */
507
508 /*
509 * The card should now go though a self test procedure and get itself ready
510 * to be opened, we must wait for an srb response with the initialization
511 * information.
512 */
513
514#if XL_DEBUG
515 printk(KERN_INFO "%s: Microcode uploaded, must wait for the self test to complete\n", dev->name);
516#endif
517
518 writew(SETINDENABLE | 0xFFF, xl_mmio + MMIO_COMMAND) ;
519
520 t=jiffies;
521 while ( !(readw(xl_mmio + MMIO_INTSTATUS_AUTO) & INTSTAT_SRB) ) {
522 schedule();
523 if(jiffies-t > 15*HZ) {
524 printk(KERN_ERR "3COM 3C359 Velocity XL card not responding.\n");
525 return -ENODEV;
526 }
527 }
528
529 /*
530 * Write the RxBufArea with D000, RxEarlyThresh, TxStartThresh,
531 * DnPriReqThresh, read the tech docs if you want to know what
532 * values they need to be.
533 */
534
535 writel(MMIO_WORD_WRITE | RXBUFAREA, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
536 writew(0xD000, xl_mmio + MMIO_MACDATA) ;
537
538 writel(MMIO_WORD_WRITE | RXEARLYTHRESH, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
539 writew(0X0020, xl_mmio + MMIO_MACDATA) ;
540
541 writew( SETTXSTARTTHRESH | 0x40 , xl_mmio + MMIO_COMMAND) ;
542
543 writeb(0x04, xl_mmio + MMIO_DNBURSTTHRESH) ;
544 writeb(0x04, xl_mmio + DNPRIREQTHRESH) ;
545
546 /*
547 * Read WRBR to provide the location of the srb block, have to use byte reads not word reads.
548 * Tech docs have this wrong !!!!
549 */
550
551 writel(MMIO_BYTE_READ | WRBR, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
552 xl_priv->srb = readb(xl_mmio + MMIO_MACDATA) << 8 ;
553 writel( (MMIO_BYTE_READ | WRBR) + 1, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
554 xl_priv->srb = xl_priv->srb | readb(xl_mmio + MMIO_MACDATA) ;
555
556#if XL_DEBUG
557 writel(IO_WORD_READ | SWITCHSETTINGS, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
558 if ( readw(xl_mmio + MMIO_MACDATA) & 2) {
559 printk(KERN_INFO "Default ring speed 4 mbps \n") ;
560 } else {
561 printk(KERN_INFO "Default ring speed 16 mbps \n") ;
562 }
563 printk(KERN_INFO "%s: xl_priv->srb = %04x\n",xl_priv->xl_card_name, xl_priv->srb);
564#endif
565
566 return 0;
567}
568
569static int xl_open(struct net_device *dev)
570{
Yoann Padioleaueda10532007-07-23 15:18:21 +0200571 struct xl_private *xl_priv=netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700572 u8 __iomem *xl_mmio = xl_priv->xl_mmio ;
573 u8 i ;
574 u16 hwaddr[3] ; /* Should be u8[6] but we get word return values */
575 int open_err ;
576
577 u16 switchsettings, switchsettings_eeprom ;
578
Thomas Gleixner1fb9df52006-07-01 19:29:39 -0700579 if(request_irq(dev->irq, &xl_interrupt, IRQF_SHARED , "3c359", dev)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700580 return -EAGAIN;
581 }
582
583 /*
584 * Read the information from the EEPROM that we need. I know we
585 * should use ntohs, but the word gets stored reversed in the 16
586 * bit field anyway and it all works its self out when we memcpy
587 * it into dev->dev_addr.
588 */
589
590 hwaddr[0] = xl_ee_read(dev,0x10) ;
591 hwaddr[1] = xl_ee_read(dev,0x11) ;
592 hwaddr[2] = xl_ee_read(dev,0x12) ;
593
594 /* Ring speed */
595
596 switchsettings_eeprom = xl_ee_read(dev,0x08) ;
597 switchsettings = switchsettings_eeprom ;
598
599 if (xl_priv->xl_ring_speed != 0) {
600 if (xl_priv->xl_ring_speed == 4)
601 switchsettings = switchsettings | 0x02 ;
602 else
603 switchsettings = switchsettings & ~0x02 ;
604 }
605
606 /* Only write EEProm if there has been a change */
607 if (switchsettings != switchsettings_eeprom) {
608 xl_ee_write(dev,0x08,switchsettings) ;
609 /* Hardware reset after changing EEProm */
610 xl_hw_reset(dev) ;
611 }
612
613 memcpy(dev->dev_addr,hwaddr,dev->addr_len) ;
614
615 open_err = xl_open_hw(dev) ;
616
617 /*
618 * This really needs to be cleaned up with better error reporting.
619 */
620
621 if (open_err != 0) { /* Something went wrong with the open command */
622 if (open_err & 0x07) { /* Wrong speed, retry at different speed */
623 printk(KERN_WARNING "%s: Open Error, retrying at different ringspeed \n", dev->name) ;
624 switchsettings = switchsettings ^ 2 ;
625 xl_ee_write(dev,0x08,switchsettings) ;
626 xl_hw_reset(dev) ;
627 open_err = xl_open_hw(dev) ;
628 if (open_err != 0) {
629 printk(KERN_WARNING "%s: Open error returned a second time, we're bombing out now\n", dev->name);
630 free_irq(dev->irq,dev) ;
631 return -ENODEV ;
632 }
633 } else {
634 printk(KERN_WARNING "%s: Open Error = %04x\n", dev->name, open_err) ;
635 free_irq(dev->irq,dev) ;
636 return -ENODEV ;
637 }
638 }
639
640 /*
641 * Now to set up the Rx and Tx buffer structures
642 */
643 /* These MUST be on 8 byte boundaries */
Surya Prabhakar Nc821d552007-08-13 15:43:30 +0530644 xl_priv->xl_tx_ring = kzalloc((sizeof(struct xl_tx_desc) * XL_TX_RING_SIZE) + 7, GFP_DMA | GFP_KERNEL);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700645 if (xl_priv->xl_tx_ring == NULL) {
646 printk(KERN_WARNING "%s: Not enough memory to allocate rx buffers.\n",
647 dev->name);
648 free_irq(dev->irq,dev);
649 return -ENOMEM;
650 }
Surya Prabhakar Nc821d552007-08-13 15:43:30 +0530651 xl_priv->xl_rx_ring = kzalloc((sizeof(struct xl_rx_desc) * XL_RX_RING_SIZE) +7, GFP_DMA | GFP_KERNEL);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700652 if (xl_priv->xl_tx_ring == NULL) {
653 printk(KERN_WARNING "%s: Not enough memory to allocate rx buffers.\n",
654 dev->name);
655 free_irq(dev->irq,dev);
656 kfree(xl_priv->xl_tx_ring);
657 return -ENOMEM;
658 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700659
660 /* Setup Rx Ring */
661 for (i=0 ; i < XL_RX_RING_SIZE ; i++) {
662 struct sk_buff *skb ;
663
664 skb = dev_alloc_skb(xl_priv->pkt_buf_sz) ;
665 if (skb==NULL)
666 break ;
667
668 skb->dev = dev ;
669 xl_priv->xl_rx_ring[i].upfragaddr = pci_map_single(xl_priv->pdev, skb->data,xl_priv->pkt_buf_sz, PCI_DMA_FROMDEVICE) ;
670 xl_priv->xl_rx_ring[i].upfraglen = xl_priv->pkt_buf_sz | RXUPLASTFRAG;
671 xl_priv->rx_ring_skb[i] = skb ;
672 }
673
674 if (i==0) {
675 printk(KERN_WARNING "%s: Not enough memory to allocate rx buffers. Adapter disabled \n",dev->name) ;
676 free_irq(dev->irq,dev) ;
677 return -EIO ;
678 }
679
680 xl_priv->rx_ring_no = i ;
681 xl_priv->rx_ring_tail = 0 ;
682 xl_priv->rx_ring_dma_addr = pci_map_single(xl_priv->pdev,xl_priv->xl_rx_ring, sizeof(struct xl_rx_desc) * XL_RX_RING_SIZE, PCI_DMA_TODEVICE) ;
683 for (i=0;i<(xl_priv->rx_ring_no-1);i++) {
684 xl_priv->xl_rx_ring[i].upnextptr = xl_priv->rx_ring_dma_addr + (sizeof (struct xl_rx_desc) * (i+1)) ;
685 }
686 xl_priv->xl_rx_ring[i].upnextptr = 0 ;
687
688 writel(xl_priv->rx_ring_dma_addr, xl_mmio + MMIO_UPLISTPTR) ;
689
690 /* Setup Tx Ring */
691
692 xl_priv->tx_ring_dma_addr = pci_map_single(xl_priv->pdev,xl_priv->xl_tx_ring, sizeof(struct xl_tx_desc) * XL_TX_RING_SIZE,PCI_DMA_TODEVICE) ;
693
694 xl_priv->tx_ring_head = 1 ;
695 xl_priv->tx_ring_tail = 255 ; /* Special marker for first packet */
696 xl_priv->free_ring_entries = XL_TX_RING_SIZE ;
697
698 /*
699 * Setup the first dummy DPD entry for polling to start working.
700 */
701
702 xl_priv->xl_tx_ring[0].framestartheader = TXDPDEMPTY ;
703 xl_priv->xl_tx_ring[0].buffer = 0 ;
704 xl_priv->xl_tx_ring[0].buffer_length = 0 ;
705 xl_priv->xl_tx_ring[0].dnnextptr = 0 ;
706
707 writel(xl_priv->tx_ring_dma_addr, xl_mmio + MMIO_DNLISTPTR) ;
708 writel(DNUNSTALL, xl_mmio + MMIO_COMMAND) ;
709 writel(UPUNSTALL, xl_mmio + MMIO_COMMAND) ;
710 writel(DNENABLE, xl_mmio + MMIO_COMMAND) ;
711 writeb(0x40, xl_mmio + MMIO_DNPOLL) ;
712
713 /*
714 * Enable interrupts on the card
715 */
716
717 writel(SETINTENABLE | INT_MASK, xl_mmio + MMIO_COMMAND) ;
718 writel(SETINDENABLE | INT_MASK, xl_mmio + MMIO_COMMAND) ;
719
720 netif_start_queue(dev) ;
721 return 0;
722
723}
724
725static int xl_open_hw(struct net_device *dev)
726{
Yoann Padioleaueda10532007-07-23 15:18:21 +0200727 struct xl_private *xl_priv=netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700728 u8 __iomem *xl_mmio = xl_priv->xl_mmio ;
729 u16 vsoff ;
730 char ver_str[33];
731 int open_err ;
732 int i ;
733 unsigned long t ;
734
735 /*
736 * Okay, let's build up the Open.NIC srb command
737 *
738 */
739
740 writel( (MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb), xl_mmio + MMIO_MAC_ACCESS_CMD) ;
741 writeb(OPEN_NIC, xl_mmio + MMIO_MACDATA) ;
742
743 /*
744 * Use this as a test byte, if it comes back with the same value, the command didn't work
745 */
746
747 writel( (MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb)+ 2, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
748 writeb(0xff,xl_mmio + MMIO_MACDATA) ;
749
750 /* Open options */
751 writel( (MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb) + 8, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
752 writeb(0x00, xl_mmio + MMIO_MACDATA) ;
753 writel( (MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb) + 9, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
754 writeb(0x00, xl_mmio + MMIO_MACDATA) ;
755
756 /*
757 * Node address, be careful here, the docs say you can just put zeros here and it will use
758 * the hardware address, it doesn't, you must include the node address in the open command.
759 */
760
761 if (xl_priv->xl_laa[0]) { /* If using a LAA address */
762 for (i=10;i<16;i++) {
763 writel( (MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb) + i, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
764 writeb(xl_priv->xl_laa[i],xl_mmio + MMIO_MACDATA) ;
765 }
766 memcpy(dev->dev_addr,xl_priv->xl_laa,dev->addr_len) ;
767 } else { /* Regular hardware address */
768 for (i=10;i<16;i++) {
769 writel( (MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb) + i, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
770 writeb(dev->dev_addr[i-10], xl_mmio + MMIO_MACDATA) ;
771 }
772 }
773
774 /* Default everything else to 0 */
775 for (i = 16; i < 34; i++) {
776 writel( (MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb) + i, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
777 writeb(0x00,xl_mmio + MMIO_MACDATA) ;
778 }
779
780 /*
781 * Set the csrb bit in the MISR register
782 */
783
784 xl_wait_misr_flags(dev) ;
785 writel(MEM_BYTE_WRITE | MF_CSRB, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
786 writeb(0xFF, xl_mmio + MMIO_MACDATA) ;
787 writel(MMIO_BYTE_WRITE | MISR_SET, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
788 writeb(MISR_CSRB , xl_mmio + MMIO_MACDATA) ;
789
790 /*
791 * Now wait for the command to run
792 */
793
794 t=jiffies;
795 while (! (readw(xl_mmio + MMIO_INTSTATUS) & INTSTAT_SRB)) {
796 schedule();
797 if(jiffies-t > 40*HZ) {
798 printk(KERN_ERR "3COM 3C359 Velocity XL card not responding.\n");
799 break ;
800 }
801 }
802
803 /*
804 * Let's interpret the open response
805 */
806
807 writel( (MEM_BYTE_READ | 0xD0000 | xl_priv->srb)+2, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
808 if (readb(xl_mmio + MMIO_MACDATA)!=0) {
809 open_err = readb(xl_mmio + MMIO_MACDATA) << 8 ;
810 writel( (MEM_BYTE_READ | 0xD0000 | xl_priv->srb) + 7, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
811 open_err |= readb(xl_mmio + MMIO_MACDATA) ;
812 return open_err ;
813 } else {
814 writel( (MEM_WORD_READ | 0xD0000 | xl_priv->srb) + 8, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
815 xl_priv->asb = ntohs(readw(xl_mmio + MMIO_MACDATA)) ;
816 printk(KERN_INFO "%s: Adapter Opened Details: ",dev->name) ;
817 printk("ASB: %04x",xl_priv->asb ) ;
818 writel( (MEM_WORD_READ | 0xD0000 | xl_priv->srb) + 10, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
819 printk(", SRB: %04x",ntohs(readw(xl_mmio + MMIO_MACDATA)) ) ;
820
821 writel( (MEM_WORD_READ | 0xD0000 | xl_priv->srb) + 12, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
822 xl_priv->arb = ntohs(readw(xl_mmio + MMIO_MACDATA)) ;
823 printk(", ARB: %04x \n",xl_priv->arb ) ;
824 writel( (MEM_WORD_READ | 0xD0000 | xl_priv->srb) + 14, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
825 vsoff = ntohs(readw(xl_mmio + MMIO_MACDATA)) ;
826
827 /*
828 * Interesting, sending the individual characters directly to printk was causing klogd to use
829 * use 100% of processor time, so we build up the string and print that instead.
830 */
831
832 for (i=0;i<0x20;i++) {
833 writel( (MEM_BYTE_READ | 0xD0000 | vsoff) + i, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
834 ver_str[i] = readb(xl_mmio + MMIO_MACDATA) ;
835 }
836 ver_str[i] = '\0' ;
837 printk(KERN_INFO "%s: Microcode version String: %s \n",dev->name,ver_str);
838 }
839
840 /*
841 * Issue the AckInterrupt
842 */
843 writew(ACK_INTERRUPT | SRBRACK | LATCH_ACK, xl_mmio + MMIO_COMMAND) ;
844
845 return 0 ;
846}
847
848/*
849 * There are two ways of implementing rx on the 359 NIC, either
850 * interrupt driven or polling. We are going to uses interrupts,
851 * it is the easier way of doing things.
852 *
853 * The Rx works with a ring of Rx descriptors. At initialise time the ring
854 * entries point to the next entry except for the last entry in the ring
855 * which points to 0. The card is programmed with the location of the first
856 * available descriptor and keeps reading the next_ptr until next_ptr is set
857 * to 0. Hopefully with a ring size of 16 the card will never get to read a next_ptr
858 * of 0. As the Rx interrupt is received we copy the frame up to the protocol layers
859 * and then point the end of the ring to our current position and point our current
860 * position to 0, therefore making the current position the last position on the ring.
861 * The last position on the ring therefore loops continually loops around the rx ring.
862 *
863 * rx_ring_tail is the position on the ring to process next. (Think of a snake, the head
864 * expands as the card adds new packets and we go around eating the tail processing the
865 * packets.)
866 *
867 * Undoubtably it could be streamlined and improved upon, but at the moment it works
868 * and the fast path through the routine is fine.
869 *
870 * adv_rx_ring could be inlined to increase performance, but its called a *lot* of times
871 * in xl_rx so would increase the size of the function significantly.
872 */
873
874static void adv_rx_ring(struct net_device *dev) /* Advance rx_ring, cut down on bloat in xl_rx */
875{
Yoann Padioleaueda10532007-07-23 15:18:21 +0200876 struct xl_private *xl_priv=netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700877 int prev_ring_loc ;
878
879 prev_ring_loc = (xl_priv->rx_ring_tail + XL_RX_RING_SIZE - 1) & (XL_RX_RING_SIZE - 1);
880 xl_priv->xl_rx_ring[prev_ring_loc].upnextptr = xl_priv->rx_ring_dma_addr + (sizeof (struct xl_rx_desc) * xl_priv->rx_ring_tail) ;
881 xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].framestatus = 0 ;
882 xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].upnextptr = 0 ;
883 xl_priv->rx_ring_tail++ ;
884 xl_priv->rx_ring_tail &= (XL_RX_RING_SIZE-1) ;
885
886 return ;
887}
888
889static void xl_rx(struct net_device *dev)
890{
Yoann Padioleaueda10532007-07-23 15:18:21 +0200891 struct xl_private *xl_priv=netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700892 u8 __iomem * xl_mmio = xl_priv->xl_mmio ;
893 struct sk_buff *skb, *skb2 ;
894 int frame_length = 0, copy_len = 0 ;
895 int temp_ring_loc ;
896
897 /*
898 * Receive the next frame, loop around the ring until all frames
899 * have been received.
900 */
901
902 while (xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].framestatus & (RXUPDCOMPLETE | RXUPDFULL) ) { /* Descriptor to process */
903
904 if (xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].framestatus & RXUPDFULL ) { /* UpdFull, Multiple Descriptors used for the frame */
905
906 /*
907 * This is a pain, you need to go through all the descriptors until the last one
908 * for this frame to find the framelength
909 */
910
911 temp_ring_loc = xl_priv->rx_ring_tail ;
912
913 while (xl_priv->xl_rx_ring[temp_ring_loc].framestatus & RXUPDFULL ) {
914 temp_ring_loc++ ;
915 temp_ring_loc &= (XL_RX_RING_SIZE-1) ;
916 }
917
918 frame_length = xl_priv->xl_rx_ring[temp_ring_loc].framestatus & 0x7FFF ;
919
920 skb = dev_alloc_skb(frame_length) ;
921
922 if (skb==NULL) { /* No memory for frame, still need to roll forward the rx ring */
923 printk(KERN_WARNING "%s: dev_alloc_skb failed - multi buffer !\n", dev->name) ;
924 while (xl_priv->rx_ring_tail != temp_ring_loc)
925 adv_rx_ring(dev) ;
926
927 adv_rx_ring(dev) ; /* One more time just for luck :) */
928 xl_priv->xl_stats.rx_dropped++ ;
929
930 writel(ACK_INTERRUPT | UPCOMPACK | LATCH_ACK , xl_mmio + MMIO_COMMAND) ;
931 return ;
932 }
933
Linus Torvalds1da177e2005-04-16 15:20:36 -0700934 while (xl_priv->rx_ring_tail != temp_ring_loc) {
935 copy_len = xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].upfraglen & 0x7FFF ;
936 frame_length -= copy_len ;
937 pci_dma_sync_single_for_cpu(xl_priv->pdev,xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].upfragaddr,xl_priv->pkt_buf_sz,PCI_DMA_FROMDEVICE) ;
Arnaldo Carvalho de Melod626f622007-03-27 18:55:52 -0300938 skb_copy_from_linear_data(xl_priv->rx_ring_skb[xl_priv->rx_ring_tail],
939 skb_put(skb, copy_len),
940 copy_len);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700941 pci_dma_sync_single_for_device(xl_priv->pdev,xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].upfragaddr,xl_priv->pkt_buf_sz,PCI_DMA_FROMDEVICE) ;
942 adv_rx_ring(dev) ;
943 }
944
945 /* Now we have found the last fragment */
946 pci_dma_sync_single_for_cpu(xl_priv->pdev,xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].upfragaddr,xl_priv->pkt_buf_sz,PCI_DMA_FROMDEVICE) ;
Arnaldo Carvalho de Melod626f622007-03-27 18:55:52 -0300947 skb_copy_from_linear_data(xl_priv->rx_ring_skb[xl_priv->rx_ring_tail],
948 skb_put(skb,copy_len), frame_length);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700949/* memcpy(skb_put(skb,frame_length), bus_to_virt(xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].upfragaddr), frame_length) ; */
950 pci_dma_sync_single_for_device(xl_priv->pdev,xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].upfragaddr,xl_priv->pkt_buf_sz,PCI_DMA_FROMDEVICE) ;
951 adv_rx_ring(dev) ;
952 skb->protocol = tr_type_trans(skb,dev) ;
953 netif_rx(skb) ;
954
955 } else { /* Single Descriptor Used, simply swap buffers over, fast path */
956
957 frame_length = xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].framestatus & 0x7FFF ;
958
959 skb = dev_alloc_skb(xl_priv->pkt_buf_sz) ;
960
961 if (skb==NULL) { /* Still need to fix the rx ring */
962 printk(KERN_WARNING "%s: dev_alloc_skb failed in rx, single buffer \n",dev->name) ;
963 adv_rx_ring(dev) ;
964 xl_priv->xl_stats.rx_dropped++ ;
965 writel(ACK_INTERRUPT | UPCOMPACK | LATCH_ACK , xl_mmio + MMIO_COMMAND) ;
966 return ;
967 }
968
Linus Torvalds1da177e2005-04-16 15:20:36 -0700969 skb2 = xl_priv->rx_ring_skb[xl_priv->rx_ring_tail] ;
970 pci_unmap_single(xl_priv->pdev, xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].upfragaddr, xl_priv->pkt_buf_sz,PCI_DMA_FROMDEVICE) ;
971 skb_put(skb2, frame_length) ;
972 skb2->protocol = tr_type_trans(skb2,dev) ;
973
974 xl_priv->rx_ring_skb[xl_priv->rx_ring_tail] = skb ;
975 xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].upfragaddr = pci_map_single(xl_priv->pdev,skb->data,xl_priv->pkt_buf_sz, PCI_DMA_FROMDEVICE) ;
976 xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].upfraglen = xl_priv->pkt_buf_sz | RXUPLASTFRAG ;
977 adv_rx_ring(dev) ;
978 xl_priv->xl_stats.rx_packets++ ;
979 xl_priv->xl_stats.rx_bytes += frame_length ;
980
981 netif_rx(skb2) ;
982 } /* if multiple buffers */
983 dev->last_rx = jiffies ;
984 } /* while packet to do */
985
986 /* Clear the updComplete interrupt */
987 writel(ACK_INTERRUPT | UPCOMPACK | LATCH_ACK , xl_mmio + MMIO_COMMAND) ;
988 return ;
989}
990
991/*
992 * This is ruthless, it doesn't care what state the card is in it will
993 * completely reset the adapter.
994 */
995
996static void xl_reset(struct net_device *dev)
997{
Yoann Padioleaueda10532007-07-23 15:18:21 +0200998 struct xl_private *xl_priv=netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700999 u8 __iomem * xl_mmio = xl_priv->xl_mmio ;
1000 unsigned long t;
1001
1002 writew( GLOBAL_RESET, xl_mmio + MMIO_COMMAND ) ;
1003
1004 /*
1005 * Must wait for cmdInProgress bit (12) to clear before continuing with
1006 * card configuration.
1007 */
1008
1009 t=jiffies;
1010 while (readw(xl_mmio + MMIO_INTSTATUS) & INTSTAT_CMD_IN_PROGRESS) {
1011 if(jiffies-t > 40*HZ) {
1012 printk(KERN_ERR "3COM 3C359 Velocity XL card not responding.\n");
1013 break ;
1014 }
1015 }
1016
1017}
1018
1019static void xl_freemem(struct net_device *dev)
1020{
Yoann Padioleaueda10532007-07-23 15:18:21 +02001021 struct xl_private *xl_priv=netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001022 int i ;
1023
1024 for (i=0;i<XL_RX_RING_SIZE;i++) {
1025 dev_kfree_skb_irq(xl_priv->rx_ring_skb[xl_priv->rx_ring_tail]) ;
1026 pci_unmap_single(xl_priv->pdev,xl_priv->xl_rx_ring[xl_priv->rx_ring_tail].upfragaddr,xl_priv->pkt_buf_sz, PCI_DMA_FROMDEVICE) ;
1027 xl_priv->rx_ring_tail++ ;
1028 xl_priv->rx_ring_tail &= XL_RX_RING_SIZE-1;
1029 }
1030
1031 /* unmap ring */
1032 pci_unmap_single(xl_priv->pdev,xl_priv->rx_ring_dma_addr, sizeof(struct xl_rx_desc) * XL_RX_RING_SIZE, PCI_DMA_FROMDEVICE) ;
1033
1034 pci_unmap_single(xl_priv->pdev,xl_priv->tx_ring_dma_addr, sizeof(struct xl_tx_desc) * XL_TX_RING_SIZE, PCI_DMA_TODEVICE) ;
1035
1036 kfree(xl_priv->xl_rx_ring) ;
1037 kfree(xl_priv->xl_tx_ring) ;
1038
1039 return ;
1040}
1041
David Howells7d12e782006-10-05 14:55:46 +01001042static irqreturn_t xl_interrupt(int irq, void *dev_id)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001043{
1044 struct net_device *dev = (struct net_device *)dev_id;
Yoann Padioleaueda10532007-07-23 15:18:21 +02001045 struct xl_private *xl_priv =netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001046 u8 __iomem * xl_mmio = xl_priv->xl_mmio ;
1047 u16 intstatus, macstatus ;
1048
1049 if (!dev) {
1050 printk(KERN_WARNING "Device structure dead, aaahhhh !\n") ;
1051 return IRQ_NONE;
1052 }
1053
1054 intstatus = readw(xl_mmio + MMIO_INTSTATUS) ;
1055
1056 if (!(intstatus & 1)) /* We didn't generate the interrupt */
1057 return IRQ_NONE;
1058
1059 spin_lock(&xl_priv->xl_lock) ;
1060
1061 /*
1062 * Process the interrupt
1063 */
1064 /*
1065 * Something fishy going on here, we shouldn't get 0001 ints, not fatal though.
1066 */
1067 if (intstatus == 0x0001) {
1068 writel(ACK_INTERRUPT | LATCH_ACK, xl_mmio + MMIO_COMMAND) ;
1069 printk(KERN_INFO "%s: 00001 int received \n",dev->name) ;
1070 } else {
1071 if (intstatus & (HOSTERRINT | SRBRINT | ARBCINT | UPCOMPINT | DNCOMPINT | HARDERRINT | (1<<8) | TXUNDERRUN | ASBFINT)) {
1072
1073 /*
1074 * Host Error.
1075 * It may be possible to recover from this, but usually it means something
1076 * is seriously fubar, so we just close the adapter.
1077 */
1078
1079 if (intstatus & HOSTERRINT) {
1080 printk(KERN_WARNING "%s: Host Error, performing global reset, intstatus = %04x \n",dev->name,intstatus) ;
1081 writew( GLOBAL_RESET, xl_mmio + MMIO_COMMAND ) ;
1082 printk(KERN_WARNING "%s: Resetting hardware: \n", dev->name);
1083 netif_stop_queue(dev) ;
1084 xl_freemem(dev) ;
1085 free_irq(dev->irq,dev);
1086 xl_reset(dev) ;
1087 writel(ACK_INTERRUPT | LATCH_ACK, xl_mmio + MMIO_COMMAND) ;
1088 spin_unlock(&xl_priv->xl_lock) ;
1089 return IRQ_HANDLED;
1090 } /* Host Error */
1091
1092 if (intstatus & SRBRINT ) { /* Srbc interrupt */
1093 writel(ACK_INTERRUPT | SRBRACK | LATCH_ACK, xl_mmio + MMIO_COMMAND) ;
1094 if (xl_priv->srb_queued)
1095 xl_srb_bh(dev) ;
1096 } /* SRBR Interrupt */
1097
1098 if (intstatus & TXUNDERRUN) { /* Issue DnReset command */
1099 writel(DNRESET, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1100 while (readw(xl_mmio + MMIO_INTSTATUS) & INTSTAT_CMD_IN_PROGRESS) { /* Wait for command to run */
1101 /* !!! FIX-ME !!!!
1102 Must put a timeout check here ! */
1103 /* Empty Loop */
1104 }
1105 printk(KERN_WARNING "%s: TX Underrun received \n",dev->name) ;
1106 writel(ACK_INTERRUPT | LATCH_ACK, xl_mmio + MMIO_COMMAND) ;
1107 } /* TxUnderRun */
1108
1109 if (intstatus & ARBCINT ) { /* Arbc interrupt */
1110 xl_arb_cmd(dev) ;
1111 } /* Arbc */
1112
1113 if (intstatus & ASBFINT) {
1114 if (xl_priv->asb_queued == 1) {
1115 xl_asb_cmd(dev) ;
1116 } else if (xl_priv->asb_queued == 2) {
1117 xl_asb_bh(dev) ;
1118 } else {
1119 writel(ACK_INTERRUPT | LATCH_ACK | ASBFACK, xl_mmio + MMIO_COMMAND) ;
1120 }
1121 } /* Asbf */
1122
1123 if (intstatus & UPCOMPINT ) /* UpComplete */
1124 xl_rx(dev) ;
1125
1126 if (intstatus & DNCOMPINT ) /* DnComplete */
1127 xl_dn_comp(dev) ;
1128
1129 if (intstatus & HARDERRINT ) { /* Hardware error */
1130 writel(MMIO_WORD_READ | MACSTATUS, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1131 macstatus = readw(xl_mmio + MMIO_MACDATA) ;
1132 printk(KERN_WARNING "%s: MacStatusError, details: ", dev->name);
1133 if (macstatus & (1<<14))
1134 printk(KERN_WARNING "tchk error: Unrecoverable error \n") ;
1135 if (macstatus & (1<<3))
1136 printk(KERN_WARNING "eint error: Internal watchdog timer expired \n") ;
1137 if (macstatus & (1<<2))
1138 printk(KERN_WARNING "aint error: Host tried to perform invalid operation \n") ;
1139 printk(KERN_WARNING "Instatus = %02x, macstatus = %02x\n",intstatus,macstatus) ;
1140 printk(KERN_WARNING "%s: Resetting hardware: \n", dev->name);
1141 netif_stop_queue(dev) ;
1142 xl_freemem(dev) ;
1143 free_irq(dev->irq,dev);
1144 unregister_netdev(dev) ;
1145 free_netdev(dev) ;
1146 xl_reset(dev) ;
1147 writel(ACK_INTERRUPT | LATCH_ACK, xl_mmio + MMIO_COMMAND) ;
1148 spin_unlock(&xl_priv->xl_lock) ;
1149 return IRQ_HANDLED;
1150 }
1151 } else {
1152 printk(KERN_WARNING "%s: Received Unknown interrupt : %04x \n", dev->name, intstatus) ;
1153 writel(ACK_INTERRUPT | LATCH_ACK, xl_mmio + MMIO_COMMAND) ;
1154 }
1155 }
1156
1157 /* Turn interrupts back on */
1158
1159 writel( SETINDENABLE | INT_MASK, xl_mmio + MMIO_COMMAND) ;
1160 writel( SETINTENABLE | INT_MASK, xl_mmio + MMIO_COMMAND) ;
1161
1162 spin_unlock(&xl_priv->xl_lock) ;
1163 return IRQ_HANDLED;
1164}
1165
1166/*
1167 * Tx - Polling configuration
1168 */
1169
1170static int xl_xmit(struct sk_buff *skb, struct net_device *dev)
1171{
Yoann Padioleaueda10532007-07-23 15:18:21 +02001172 struct xl_private *xl_priv=netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001173 struct xl_tx_desc *txd ;
1174 int tx_head, tx_tail, tx_prev ;
1175 unsigned long flags ;
1176
1177 spin_lock_irqsave(&xl_priv->xl_lock,flags) ;
1178
1179 netif_stop_queue(dev) ;
1180
1181 if (xl_priv->free_ring_entries > 1 ) {
1182 /*
1183 * Set up the descriptor for the packet
1184 */
1185 tx_head = xl_priv->tx_ring_head ;
1186 tx_tail = xl_priv->tx_ring_tail ;
1187
1188 txd = &(xl_priv->xl_tx_ring[tx_head]) ;
1189 txd->dnnextptr = 0 ;
1190 txd->framestartheader = skb->len | TXDNINDICATE ;
1191 txd->buffer = pci_map_single(xl_priv->pdev, skb->data, skb->len, PCI_DMA_TODEVICE) ;
1192 txd->buffer_length = skb->len | TXDNFRAGLAST ;
1193 xl_priv->tx_ring_skb[tx_head] = skb ;
1194 xl_priv->xl_stats.tx_packets++ ;
1195 xl_priv->xl_stats.tx_bytes += skb->len ;
1196
1197 /*
1198 * Set the nextptr of the previous descriptor equal to this descriptor, add XL_TX_RING_SIZE -1
1199 * to ensure no negative numbers in unsigned locations.
1200 */
1201
1202 tx_prev = (xl_priv->tx_ring_head + XL_TX_RING_SIZE - 1) & (XL_TX_RING_SIZE - 1) ;
1203
1204 xl_priv->tx_ring_head++ ;
1205 xl_priv->tx_ring_head &= (XL_TX_RING_SIZE - 1) ;
1206 xl_priv->free_ring_entries-- ;
1207
1208 xl_priv->xl_tx_ring[tx_prev].dnnextptr = xl_priv->tx_ring_dma_addr + (sizeof (struct xl_tx_desc) * tx_head) ;
1209
1210 /* Sneaky, by doing a read on DnListPtr we can force the card to poll on the DnNextPtr */
1211 /* readl(xl_mmio + MMIO_DNLISTPTR) ; */
1212
1213 netif_wake_queue(dev) ;
1214
1215 spin_unlock_irqrestore(&xl_priv->xl_lock,flags) ;
1216
1217 return 0;
1218 } else {
1219 spin_unlock_irqrestore(&xl_priv->xl_lock,flags) ;
1220 return 1;
1221 }
1222
1223}
1224
1225/*
1226 * The NIC has told us that a packet has been downloaded onto the card, we must
1227 * find out which packet it has done, clear the skb and information for the packet
1228 * then advance around the ring for all tranmitted packets
1229 */
1230
1231static void xl_dn_comp(struct net_device *dev)
1232{
Yoann Padioleaueda10532007-07-23 15:18:21 +02001233 struct xl_private *xl_priv=netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001234 u8 __iomem * xl_mmio = xl_priv->xl_mmio ;
1235 struct xl_tx_desc *txd ;
1236
1237
1238 if (xl_priv->tx_ring_tail == 255) {/* First time */
1239 xl_priv->xl_tx_ring[0].framestartheader = 0 ;
1240 xl_priv->xl_tx_ring[0].dnnextptr = 0 ;
1241 xl_priv->tx_ring_tail = 1 ;
1242 }
1243
1244 while (xl_priv->xl_tx_ring[xl_priv->tx_ring_tail].framestartheader & TXDNCOMPLETE ) {
1245 txd = &(xl_priv->xl_tx_ring[xl_priv->tx_ring_tail]) ;
1246 pci_unmap_single(xl_priv->pdev,txd->buffer, xl_priv->tx_ring_skb[xl_priv->tx_ring_tail]->len, PCI_DMA_TODEVICE) ;
1247 txd->framestartheader = 0 ;
1248 txd->buffer = 0xdeadbeef ;
1249 txd->buffer_length = 0 ;
1250 dev_kfree_skb_irq(xl_priv->tx_ring_skb[xl_priv->tx_ring_tail]) ;
1251 xl_priv->tx_ring_tail++ ;
1252 xl_priv->tx_ring_tail &= (XL_TX_RING_SIZE - 1) ;
1253 xl_priv->free_ring_entries++ ;
1254 }
1255
1256 netif_wake_queue(dev) ;
1257
1258 writel(ACK_INTERRUPT | DNCOMPACK | LATCH_ACK , xl_mmio + MMIO_COMMAND) ;
1259}
1260
1261/*
1262 * Close the adapter properly.
1263 * This srb reply cannot be handled from interrupt context as we have
1264 * to free the interrupt from the driver.
1265 */
1266
1267static int xl_close(struct net_device *dev)
1268{
Yoann Padioleaueda10532007-07-23 15:18:21 +02001269 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001270 u8 __iomem * xl_mmio = xl_priv->xl_mmio ;
1271 unsigned long t ;
1272
1273 netif_stop_queue(dev) ;
1274
1275 /*
1276 * Close the adapter, need to stall the rx and tx queues.
1277 */
1278
1279 writew(DNSTALL, xl_mmio + MMIO_COMMAND) ;
1280 t=jiffies;
1281 while (readw(xl_mmio + MMIO_INTSTATUS) & INTSTAT_CMD_IN_PROGRESS) {
1282 schedule();
1283 if(jiffies-t > 10*HZ) {
1284 printk(KERN_ERR "%s: 3COM 3C359 Velocity XL-DNSTALL not responding.\n", dev->name);
1285 break ;
1286 }
1287 }
1288 writew(DNDISABLE, xl_mmio + MMIO_COMMAND) ;
1289 t=jiffies;
1290 while (readw(xl_mmio + MMIO_INTSTATUS) & INTSTAT_CMD_IN_PROGRESS) {
1291 schedule();
1292 if(jiffies-t > 10*HZ) {
1293 printk(KERN_ERR "%s: 3COM 3C359 Velocity XL-DNDISABLE not responding.\n", dev->name);
1294 break ;
1295 }
1296 }
1297 writew(UPSTALL, xl_mmio + MMIO_COMMAND) ;
1298 t=jiffies;
1299 while (readw(xl_mmio + MMIO_INTSTATUS) & INTSTAT_CMD_IN_PROGRESS) {
1300 schedule();
1301 if(jiffies-t > 10*HZ) {
1302 printk(KERN_ERR "%s: 3COM 3C359 Velocity XL-UPSTALL not responding.\n", dev->name);
1303 break ;
1304 }
1305 }
1306
1307 /* Turn off interrupts, we will still get the indication though
1308 * so we can trap it
1309 */
1310
1311 writel(SETINTENABLE, xl_mmio + MMIO_COMMAND) ;
1312
1313 xl_srb_cmd(dev,CLOSE_NIC) ;
1314
1315 t=jiffies;
1316 while (!(readw(xl_mmio + MMIO_INTSTATUS) & INTSTAT_SRB)) {
1317 schedule();
1318 if(jiffies-t > 10*HZ) {
1319 printk(KERN_ERR "%s: 3COM 3C359 Velocity XL-CLOSENIC not responding.\n", dev->name);
1320 break ;
1321 }
1322 }
1323 /* Read the srb response from the adapter */
1324
1325 writel(MEM_BYTE_READ | 0xd0000 | xl_priv->srb, xl_mmio + MMIO_MAC_ACCESS_CMD);
1326 if (readb(xl_mmio + MMIO_MACDATA) != CLOSE_NIC) {
1327 printk(KERN_INFO "%s: CLOSE_NIC did not get a CLOSE_NIC response \n",dev->name) ;
1328 } else {
1329 writel((MEM_BYTE_READ | 0xd0000 | xl_priv->srb) +2, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1330 if (readb(xl_mmio + MMIO_MACDATA)==0) {
1331 printk(KERN_INFO "%s: Adapter has been closed \n",dev->name) ;
1332 writew(ACK_INTERRUPT | SRBRACK | LATCH_ACK, xl_mmio + MMIO_COMMAND) ;
1333
1334 xl_freemem(dev) ;
1335 free_irq(dev->irq,dev) ;
1336 } else {
1337 printk(KERN_INFO "%s: Close nic command returned error code %02x\n",dev->name, readb(xl_mmio + MMIO_MACDATA)) ;
1338 }
1339 }
1340
1341 /* Reset the upload and download logic */
1342
1343 writew(UPRESET, xl_mmio + MMIO_COMMAND) ;
1344 t=jiffies;
1345 while (readw(xl_mmio + MMIO_INTSTATUS) & INTSTAT_CMD_IN_PROGRESS) {
1346 schedule();
1347 if(jiffies-t > 10*HZ) {
1348 printk(KERN_ERR "%s: 3COM 3C359 Velocity XL-UPRESET not responding.\n", dev->name);
1349 break ;
1350 }
1351 }
1352 writew(DNRESET, xl_mmio + MMIO_COMMAND) ;
1353 t=jiffies;
1354 while (readw(xl_mmio + MMIO_INTSTATUS) & INTSTAT_CMD_IN_PROGRESS) {
1355 schedule();
1356 if(jiffies-t > 10*HZ) {
1357 printk(KERN_ERR "%s: 3COM 3C359 Velocity XL-DNRESET not responding.\n", dev->name);
1358 break ;
1359 }
1360 }
1361 xl_hw_reset(dev) ;
1362 return 0 ;
1363}
1364
1365static void xl_set_rx_mode(struct net_device *dev)
1366{
Yoann Padioleaueda10532007-07-23 15:18:21 +02001367 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001368 struct dev_mc_list *dmi ;
1369 unsigned char dev_mc_address[4] ;
1370 u16 options ;
1371 int i ;
1372
1373 if (dev->flags & IFF_PROMISC)
1374 options = 0x0004 ;
1375 else
1376 options = 0x0000 ;
1377
1378 if (options ^ xl_priv->xl_copy_all_options) { /* Changed, must send command */
1379 xl_priv->xl_copy_all_options = options ;
1380 xl_srb_cmd(dev, SET_RECEIVE_MODE) ;
1381 return ;
1382 }
1383
1384 dev_mc_address[0] = dev_mc_address[1] = dev_mc_address[2] = dev_mc_address[3] = 0 ;
1385
1386 for (i=0,dmi=dev->mc_list;i < dev->mc_count; i++,dmi = dmi->next) {
1387 dev_mc_address[0] |= dmi->dmi_addr[2] ;
1388 dev_mc_address[1] |= dmi->dmi_addr[3] ;
1389 dev_mc_address[2] |= dmi->dmi_addr[4] ;
1390 dev_mc_address[3] |= dmi->dmi_addr[5] ;
1391 }
1392
1393 if (memcmp(xl_priv->xl_functional_addr,dev_mc_address,4) != 0) { /* Options have changed, run the command */
1394 memcpy(xl_priv->xl_functional_addr, dev_mc_address,4) ;
1395 xl_srb_cmd(dev, SET_FUNC_ADDRESS) ;
1396 }
1397 return ;
1398}
1399
1400
1401/*
1402 * We issued an srb command and now we must read
1403 * the response from the completed command.
1404 */
1405
1406static void xl_srb_bh(struct net_device *dev)
1407{
Yoann Padioleaueda10532007-07-23 15:18:21 +02001408 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001409 u8 __iomem * xl_mmio = xl_priv->xl_mmio ;
1410 u8 srb_cmd, ret_code ;
1411 int i ;
1412
1413 writel(MEM_BYTE_READ | 0xd0000 | xl_priv->srb, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1414 srb_cmd = readb(xl_mmio + MMIO_MACDATA) ;
1415 writel((MEM_BYTE_READ | 0xd0000 | xl_priv->srb) +2, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1416 ret_code = readb(xl_mmio + MMIO_MACDATA) ;
1417
1418 /* Ret_code is standard across all commands */
1419
1420 switch (ret_code) {
1421 case 1:
1422 printk(KERN_INFO "%s: Command: %d - Invalid Command code\n",dev->name,srb_cmd) ;
1423 break ;
1424 case 4:
1425 printk(KERN_INFO "%s: Command: %d - Adapter is closed, must be open for this command \n",dev->name,srb_cmd) ;
1426 break ;
1427
1428 case 6:
1429 printk(KERN_INFO "%s: Command: %d - Options Invalid for command \n",dev->name,srb_cmd) ;
1430 break ;
1431
1432 case 0: /* Successful command execution */
1433 switch (srb_cmd) {
1434 case READ_LOG: /* Returns 14 bytes of data from the NIC */
1435 if(xl_priv->xl_message_level)
1436 printk(KERN_INFO "%s: READ.LOG 14 bytes of data ",dev->name) ;
1437 /*
1438 * We still have to read the log even if message_level = 0 and we don't want
1439 * to see it
1440 */
1441 for (i=0;i<14;i++) {
1442 writel(MEM_BYTE_READ | 0xd0000 | xl_priv->srb | i, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1443 if(xl_priv->xl_message_level)
1444 printk("%02x:",readb(xl_mmio + MMIO_MACDATA)) ;
1445 }
1446 printk("\n") ;
1447 break ;
1448 case SET_FUNC_ADDRESS:
1449 if(xl_priv->xl_message_level)
1450 printk(KERN_INFO "%s: Functional Address Set \n",dev->name) ;
1451 break ;
1452 case CLOSE_NIC:
1453 if(xl_priv->xl_message_level)
1454 printk(KERN_INFO "%s: Received CLOSE_NIC interrupt in interrupt handler \n",dev->name) ;
1455 break ;
1456 case SET_MULTICAST_MODE:
1457 if(xl_priv->xl_message_level)
1458 printk(KERN_INFO "%s: Multicast options successfully changed\n",dev->name) ;
1459 break ;
1460 case SET_RECEIVE_MODE:
1461 if(xl_priv->xl_message_level) {
1462 if (xl_priv->xl_copy_all_options == 0x0004)
1463 printk(KERN_INFO "%s: Entering promiscuous mode \n", dev->name) ;
1464 else
1465 printk(KERN_INFO "%s: Entering normal receive mode \n",dev->name) ;
1466 }
1467 break ;
1468
1469 } /* switch */
1470 break ;
1471 } /* switch */
1472 return ;
1473}
1474
1475static struct net_device_stats * xl_get_stats(struct net_device *dev)
1476{
Yoann Padioleaueda10532007-07-23 15:18:21 +02001477 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001478 return (struct net_device_stats *) &xl_priv->xl_stats;
1479}
1480
1481static int xl_set_mac_address (struct net_device *dev, void *addr)
1482{
1483 struct sockaddr *saddr = addr ;
Yoann Padioleaueda10532007-07-23 15:18:21 +02001484 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001485
1486 if (netif_running(dev)) {
1487 printk(KERN_WARNING "%s: Cannot set mac/laa address while card is open\n", dev->name) ;
1488 return -EIO ;
1489 }
1490
1491 memcpy(xl_priv->xl_laa, saddr->sa_data,dev->addr_len) ;
1492
1493 if (xl_priv->xl_message_level) {
1494 printk(KERN_INFO "%s: MAC/LAA Set to = %x.%x.%x.%x.%x.%x\n",dev->name, xl_priv->xl_laa[0],
1495 xl_priv->xl_laa[1], xl_priv->xl_laa[2],
1496 xl_priv->xl_laa[3], xl_priv->xl_laa[4],
1497 xl_priv->xl_laa[5]);
1498 }
1499
1500 return 0 ;
1501}
1502
1503static void xl_arb_cmd(struct net_device *dev)
1504{
Yoann Padioleaueda10532007-07-23 15:18:21 +02001505 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001506 u8 __iomem * xl_mmio = xl_priv->xl_mmio ;
1507 u8 arb_cmd ;
1508 u16 lan_status, lan_status_diff ;
1509
1510 writel( ( MEM_BYTE_READ | 0xD0000 | xl_priv->arb), xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1511 arb_cmd = readb(xl_mmio + MMIO_MACDATA) ;
1512
1513 if (arb_cmd == RING_STATUS_CHANGE) { /* Ring.Status.Change */
1514 writel( ( (MEM_WORD_READ | 0xD0000 | xl_priv->arb) + 6), xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1515
1516 printk(KERN_INFO "%s: Ring Status Change: New Status = %04x\n", dev->name, ntohs(readw(xl_mmio + MMIO_MACDATA) )) ;
1517
1518 lan_status = ntohs(readw(xl_mmio + MMIO_MACDATA));
1519
1520 /* Acknowledge interrupt, this tells nic we are done with the arb */
1521 writel(ACK_INTERRUPT | ARBCACK | LATCH_ACK, xl_mmio + MMIO_COMMAND) ;
1522
1523 lan_status_diff = xl_priv->xl_lan_status ^ lan_status ;
1524
1525 if (lan_status_diff & (LSC_LWF | LSC_ARW | LSC_FPE | LSC_RR) ) {
1526 if (lan_status_diff & LSC_LWF)
1527 printk(KERN_WARNING "%s: Short circuit detected on the lobe\n",dev->name);
1528 if (lan_status_diff & LSC_ARW)
1529 printk(KERN_WARNING "%s: Auto removal error\n",dev->name);
1530 if (lan_status_diff & LSC_FPE)
1531 printk(KERN_WARNING "%s: FDX Protocol Error\n",dev->name);
1532 if (lan_status_diff & LSC_RR)
1533 printk(KERN_WARNING "%s: Force remove MAC frame received\n",dev->name);
1534
1535 /* Adapter has been closed by the hardware */
1536
1537 netif_stop_queue(dev);
1538 xl_freemem(dev) ;
1539 free_irq(dev->irq,dev);
1540
1541 printk(KERN_WARNING "%s: Adapter has been closed \n", dev->name) ;
1542 } /* If serious error */
1543
1544 if (xl_priv->xl_message_level) {
1545 if (lan_status_diff & LSC_SIG_LOSS)
1546 printk(KERN_WARNING "%s: No receive signal detected \n", dev->name) ;
1547 if (lan_status_diff & LSC_HARD_ERR)
1548 printk(KERN_INFO "%s: Beaconing \n",dev->name);
1549 if (lan_status_diff & LSC_SOFT_ERR)
1550 printk(KERN_WARNING "%s: Adapter transmitted Soft Error Report Mac Frame \n",dev->name);
1551 if (lan_status_diff & LSC_TRAN_BCN)
1552 printk(KERN_INFO "%s: We are tranmitting the beacon, aaah\n",dev->name);
1553 if (lan_status_diff & LSC_SS)
1554 printk(KERN_INFO "%s: Single Station on the ring \n", dev->name);
1555 if (lan_status_diff & LSC_RING_REC)
1556 printk(KERN_INFO "%s: Ring recovery ongoing\n",dev->name);
1557 if (lan_status_diff & LSC_FDX_MODE)
1558 printk(KERN_INFO "%s: Operating in FDX mode\n",dev->name);
1559 }
1560
1561 if (lan_status_diff & LSC_CO) {
1562 if (xl_priv->xl_message_level)
1563 printk(KERN_INFO "%s: Counter Overflow \n", dev->name);
1564 /* Issue READ.LOG command */
1565 xl_srb_cmd(dev, READ_LOG) ;
1566 }
1567
1568 /* There is no command in the tech docs to issue the read_sr_counters */
1569 if (lan_status_diff & LSC_SR_CO) {
1570 if (xl_priv->xl_message_level)
1571 printk(KERN_INFO "%s: Source routing counters overflow\n", dev->name);
1572 }
1573
1574 xl_priv->xl_lan_status = lan_status ;
1575
1576 } /* Lan.change.status */
1577 else if ( arb_cmd == RECEIVE_DATA) { /* Received.Data */
1578#if XL_DEBUG
1579 printk(KERN_INFO "Received.Data \n") ;
1580#endif
1581 writel( ((MEM_WORD_READ | 0xD0000 | xl_priv->arb) + 6), xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1582 xl_priv->mac_buffer = ntohs(readw(xl_mmio + MMIO_MACDATA)) ;
1583
1584 /* Now we are going to be really basic here and not do anything
1585 * with the data at all. The tech docs do not give me enough
1586 * information to calculate the buffers properly so we're
1587 * just going to tell the nic that we've dealt with the frame
1588 * anyway.
1589 */
1590
1591 dev->last_rx = jiffies ;
1592 /* Acknowledge interrupt, this tells nic we are done with the arb */
1593 writel(ACK_INTERRUPT | ARBCACK | LATCH_ACK, xl_mmio + MMIO_COMMAND) ;
1594
1595 /* Is the ASB free ? */
1596
1597 xl_priv->asb_queued = 0 ;
1598 writel( ((MEM_BYTE_READ | 0xD0000 | xl_priv->asb) + 2), xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1599 if (readb(xl_mmio + MMIO_MACDATA) != 0xff) {
1600 xl_priv->asb_queued = 1 ;
1601
1602 xl_wait_misr_flags(dev) ;
1603
1604 writel(MEM_BYTE_WRITE | MF_ASBFR, xl_mmio + MMIO_MAC_ACCESS_CMD);
1605 writeb(0xff, xl_mmio + MMIO_MACDATA) ;
1606 writel(MMIO_BYTE_WRITE | MISR_SET, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1607 writeb(MISR_ASBFR, xl_mmio + MMIO_MACDATA) ;
1608 return ;
1609 /* Drop out and wait for the bottom half to be run */
1610 }
1611
1612 xl_asb_cmd(dev) ;
1613
1614 } else {
1615 printk(KERN_WARNING "%s: Received unknown arb (xl_priv) command: %02x \n",dev->name,arb_cmd) ;
1616 }
1617
1618 /* Acknowledge the arb interrupt */
1619
1620 writel(ACK_INTERRUPT | ARBCACK | LATCH_ACK , xl_mmio + MMIO_COMMAND) ;
1621
1622 return ;
1623}
1624
1625
1626/*
1627 * There is only one asb command, but we can get called from different
1628 * places.
1629 */
1630
1631static void xl_asb_cmd(struct net_device *dev)
1632{
Yoann Padioleaueda10532007-07-23 15:18:21 +02001633 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001634 u8 __iomem * xl_mmio = xl_priv->xl_mmio ;
1635
1636 if (xl_priv->asb_queued == 1)
1637 writel(ACK_INTERRUPT | LATCH_ACK | ASBFACK, xl_mmio + MMIO_COMMAND) ;
1638
1639 writel(MEM_BYTE_WRITE | 0xd0000 | xl_priv->asb, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1640 writeb(0x81, xl_mmio + MMIO_MACDATA) ;
1641
1642 writel(MEM_WORD_WRITE | 0xd0000 | xl_priv->asb | 6, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1643 writew(ntohs(xl_priv->mac_buffer), xl_mmio + MMIO_MACDATA) ;
1644
1645 xl_wait_misr_flags(dev) ;
1646
1647 writel(MEM_BYTE_WRITE | MF_RASB, xl_mmio + MMIO_MAC_ACCESS_CMD);
1648 writeb(0xff, xl_mmio + MMIO_MACDATA) ;
1649
1650 writel(MMIO_BYTE_WRITE | MISR_SET, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1651 writeb(MISR_RASB, xl_mmio + MMIO_MACDATA) ;
1652
1653 xl_priv->asb_queued = 2 ;
1654
1655 return ;
1656}
1657
1658/*
1659 * This will only get called if there was an error
1660 * from the asb cmd.
1661 */
1662static void xl_asb_bh(struct net_device *dev)
1663{
Yoann Padioleaueda10532007-07-23 15:18:21 +02001664 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001665 u8 __iomem * xl_mmio = xl_priv->xl_mmio ;
1666 u8 ret_code ;
1667
1668 writel(MMIO_BYTE_READ | 0xd0000 | xl_priv->asb | 2, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1669 ret_code = readb(xl_mmio + MMIO_MACDATA) ;
1670 switch (ret_code) {
1671 case 0x01:
1672 printk(KERN_INFO "%s: ASB Command, unrecognized command code \n",dev->name) ;
1673 break ;
1674 case 0x26:
1675 printk(KERN_INFO "%s: ASB Command, unexpected receive buffer \n", dev->name) ;
1676 break ;
1677 case 0x40:
1678 printk(KERN_INFO "%s: ASB Command, Invalid Station ID \n", dev->name) ;
1679 break ;
1680 }
1681 xl_priv->asb_queued = 0 ;
1682 writel(ACK_INTERRUPT | LATCH_ACK | ASBFACK, xl_mmio + MMIO_COMMAND) ;
1683 return ;
1684}
1685
1686/*
1687 * Issue srb commands to the nic
1688 */
1689
1690static void xl_srb_cmd(struct net_device *dev, int srb_cmd)
1691{
Yoann Padioleaueda10532007-07-23 15:18:21 +02001692 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001693 u8 __iomem * xl_mmio = xl_priv->xl_mmio ;
1694
1695 switch (srb_cmd) {
1696 case READ_LOG:
1697 writel(MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1698 writeb(READ_LOG, xl_mmio + MMIO_MACDATA) ;
1699 break;
1700
1701 case CLOSE_NIC:
1702 writel(MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1703 writeb(CLOSE_NIC, xl_mmio + MMIO_MACDATA) ;
1704 break ;
1705
1706 case SET_RECEIVE_MODE:
1707 writel(MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1708 writeb(SET_RECEIVE_MODE, xl_mmio + MMIO_MACDATA) ;
1709 writel(MEM_WORD_WRITE | 0xD0000 | xl_priv->srb | 4, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1710 writew(xl_priv->xl_copy_all_options, xl_mmio + MMIO_MACDATA) ;
1711 break ;
1712
1713 case SET_FUNC_ADDRESS:
1714 writel(MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1715 writeb(SET_FUNC_ADDRESS, xl_mmio + MMIO_MACDATA) ;
1716 writel(MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb | 6 , xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1717 writeb(xl_priv->xl_functional_addr[0], xl_mmio + MMIO_MACDATA) ;
1718 writel(MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb | 7 , xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1719 writeb(xl_priv->xl_functional_addr[1], xl_mmio + MMIO_MACDATA) ;
1720 writel(MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb | 8 , xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1721 writeb(xl_priv->xl_functional_addr[2], xl_mmio + MMIO_MACDATA) ;
1722 writel(MEM_BYTE_WRITE | 0xD0000 | xl_priv->srb | 9 , xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1723 writeb(xl_priv->xl_functional_addr[3], xl_mmio + MMIO_MACDATA) ;
1724 break ;
1725 } /* switch */
1726
1727
1728 xl_wait_misr_flags(dev) ;
1729
1730 /* Write 0xff to the CSRB flag */
1731 writel(MEM_BYTE_WRITE | MF_CSRB , xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1732 writeb(0xFF, xl_mmio + MMIO_MACDATA) ;
1733 /* Set csrb bit in MISR register to process command */
1734 writel(MMIO_BYTE_WRITE | MISR_SET, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1735 writeb(MISR_CSRB, xl_mmio + MMIO_MACDATA) ;
1736 xl_priv->srb_queued = 1 ;
1737
1738 return ;
1739}
1740
1741/*
1742 * This is nasty, to use the MISR command you have to wait for 6 memory locations
1743 * to be zero. This is the way the driver does on other OS'es so we should be ok with
1744 * the empty loop.
1745 */
1746
1747static void xl_wait_misr_flags(struct net_device *dev)
1748{
Yoann Padioleaueda10532007-07-23 15:18:21 +02001749 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001750 u8 __iomem * xl_mmio = xl_priv->xl_mmio ;
1751
1752 int i ;
1753
1754 writel(MMIO_BYTE_READ | MISR_RW, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1755 if (readb(xl_mmio + MMIO_MACDATA) != 0) { /* Misr not clear */
1756 for (i=0; i<6; i++) {
1757 writel(MEM_BYTE_READ | 0xDFFE0 | i, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1758 while (readb(xl_mmio + MMIO_MACDATA) != 0 ) {} ; /* Empty Loop */
1759 }
1760 }
1761
1762 writel(MMIO_BYTE_WRITE | MISR_AND, xl_mmio + MMIO_MAC_ACCESS_CMD) ;
1763 writeb(0x80, xl_mmio + MMIO_MACDATA) ;
1764
1765 return ;
1766}
1767
1768/*
1769 * Change mtu size, this should work the same as olympic
1770 */
1771
1772static int xl_change_mtu(struct net_device *dev, int mtu)
1773{
Yoann Padioleaueda10532007-07-23 15:18:21 +02001774 struct xl_private *xl_priv = netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001775 u16 max_mtu ;
1776
1777 if (xl_priv->xl_ring_speed == 4)
1778 max_mtu = 4500 ;
1779 else
1780 max_mtu = 18000 ;
1781
1782 if (mtu > max_mtu)
1783 return -EINVAL ;
1784 if (mtu < 100)
1785 return -EINVAL ;
1786
1787 dev->mtu = mtu ;
1788 xl_priv->pkt_buf_sz = mtu + TR_HLEN ;
1789
1790 return 0 ;
1791}
1792
1793static void __devexit xl_remove_one (struct pci_dev *pdev)
1794{
1795 struct net_device *dev = pci_get_drvdata(pdev);
Yoann Padioleaueda10532007-07-23 15:18:21 +02001796 struct xl_private *xl_priv=netdev_priv(dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001797
1798 unregister_netdev(dev);
1799 iounmap(xl_priv->xl_mmio) ;
1800 pci_release_regions(pdev) ;
1801 pci_set_drvdata(pdev,NULL) ;
1802 free_netdev(dev);
1803 return ;
1804}
1805
1806static struct pci_driver xl_3c359_driver = {
1807 .name = "3c359",
1808 .id_table = xl_pci_tbl,
1809 .probe = xl_probe,
1810 .remove = __devexit_p(xl_remove_one),
1811};
1812
1813static int __init xl_pci_init (void)
1814{
Jeff Garzik29917622006-08-19 17:48:59 -04001815 return pci_register_driver(&xl_3c359_driver);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001816}
1817
1818
1819static void __exit xl_pci_cleanup (void)
1820{
1821 pci_unregister_driver (&xl_3c359_driver);
1822}
1823
1824module_init(xl_pci_init);
1825module_exit(xl_pci_cleanup);
1826
1827MODULE_LICENSE("GPL") ;