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51#include <linux/crc32.h>
52#include <linux/delay.h>
53#include <linux/errno.h>
54#include <linux/if_ether.h>
55#include <linux/init.h>
56#include <linux/kernel.h>
57#include <linux/module.h>
58#include <linux/netdevice.h>
59#include <linux/etherdevice.h>
60#include <linux/spinlock.h>
61#include <linux/stddef.h>
62#include <linux/string.h>
63#include <linux/tc.h>
64#include <linux/types.h>
65
66#include <asm/addrspace.h>
67
68#include <asm/dec/interrupts.h>
69#include <asm/dec/ioasic.h>
70#include <asm/dec/ioasic_addrs.h>
71#include <asm/dec/kn01.h>
72#include <asm/dec/machtype.h>
73#include <asm/dec/system.h>
74
75static const char version[] =
76"declance.c: v0.011 by Linux MIPS DECstation task force\n";
77
78MODULE_AUTHOR("Linux MIPS DECstation task force");
79MODULE_DESCRIPTION("DEC LANCE (DECstation onboard, PMAD-xx) driver");
80MODULE_LICENSE("GPL");
81
82#define __unused __attribute__ ((unused))
83
84
85
86
87#define ASIC_LANCE 1
88#define PMAD_LANCE 2
89#define PMAX_LANCE 3
90
91
92#define LE_CSR0 0
93#define LE_CSR1 1
94#define LE_CSR2 2
95#define LE_CSR3 3
96
97#define LE_MO_PROM 0x8000
98
99#define LE_C0_ERR 0x8000
100#define LE_C0_BABL 0x4000
101#define LE_C0_CERR 0x2000
102#define LE_C0_MISS 0x1000
103#define LE_C0_MERR 0x0800
104#define LE_C0_RINT 0x0400
105#define LE_C0_TINT 0x0200
106#define LE_C0_IDON 0x0100
107#define LE_C0_INTR 0x0080
108#define LE_C0_INEA 0x0040
109#define LE_C0_RXON 0x0020
110#define LE_C0_TXON 0x0010
111#define LE_C0_TDMD 0x0008
112#define LE_C0_STOP 0x0004
113#define LE_C0_STRT 0x0002
114#define LE_C0_INIT 0x0001
115
116#define LE_C3_BSWP 0x4
117#define LE_C3_ACON 0x2
118#define LE_C3_BCON 0x1
119
120
121#define LE_R1_OWN 0x8000
122#define LE_R1_ERR 0x4000
123#define LE_R1_FRA 0x2000
124#define LE_R1_OFL 0x1000
125#define LE_R1_CRC 0x0800
126#define LE_R1_BUF 0x0400
127#define LE_R1_SOP 0x0200
128#define LE_R1_EOP 0x0100
129#define LE_R1_POK 0x0300
130
131
132#define LE_T1_OWN 0x8000
133#define LE_T1_ERR 0x4000
134#define LE_T1_EMORE 0x1000
135#define LE_T1_EONE 0x0800
136#define LE_T1_EDEF 0x0400
137#define LE_T1_SOP 0x0200
138#define LE_T1_EOP 0x0100
139#define LE_T1_POK 0x0300
140
141#define LE_T3_BUF 0x8000
142#define LE_T3_UFL 0x4000
143#define LE_T3_LCOL 0x1000
144#define LE_T3_CLOS 0x0800
145#define LE_T3_RTY 0x0400
146#define LE_T3_TDR 0x03ff
147
148
149
150#ifndef LANCE_LOG_TX_BUFFERS
151#define LANCE_LOG_TX_BUFFERS 4
152#define LANCE_LOG_RX_BUFFERS 4
153#endif
154
155#define TX_RING_SIZE (1 << (LANCE_LOG_TX_BUFFERS))
156#define TX_RING_MOD_MASK (TX_RING_SIZE - 1)
157
158#define RX_RING_SIZE (1 << (LANCE_LOG_RX_BUFFERS))
159#define RX_RING_MOD_MASK (RX_RING_SIZE - 1)
160
161#define PKT_BUF_SZ 1536
162#define RX_BUFF_SIZE PKT_BUF_SZ
163#define TX_BUFF_SIZE PKT_BUF_SZ
164
165#undef TEST_HITS
166#define ZERO 0
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186struct lance_rx_desc {
187 unsigned short rmd0;
188 unsigned short rmd1;
189
190 short length;
191
192 unsigned short mblength;
193};
194
195struct lance_tx_desc {
196 unsigned short tmd0;
197 unsigned short tmd1;
198
199 short length;
200
201 unsigned short misc;
202};
203
204
205
206struct lance_init_block {
207 unsigned short mode;
208
209 unsigned short phys_addr[3];
210 unsigned short filter[4];
211
212
213 unsigned short rx_ptr;
214 unsigned short rx_len;
215 unsigned short tx_ptr;
216 unsigned short tx_len;
217
218 short gap[4];
219
220
221 struct lance_rx_desc brx_ring[RX_RING_SIZE];
222 struct lance_tx_desc btx_ring[TX_RING_SIZE];
223};
224
225#define BUF_OFFSET_CPU sizeof(struct lance_init_block)
226#define BUF_OFFSET_LNC sizeof(struct lance_init_block)
227
228#define shift_off(off, type) \
229 (type == ASIC_LANCE || type == PMAX_LANCE ? off << 1 : off)
230
231#define lib_off(rt, type) \
232 shift_off(offsetof(struct lance_init_block, rt), type)
233
234#define lib_ptr(ib, rt, type) \
235 ((volatile u16 *)((u8 *)(ib) + lib_off(rt, type)))
236
237#define rds_off(rt, type) \
238 shift_off(offsetof(struct lance_rx_desc, rt), type)
239
240#define rds_ptr(rd, rt, type) \
241 ((volatile u16 *)((u8 *)(rd) + rds_off(rt, type)))
242
243#define tds_off(rt, type) \
244 shift_off(offsetof(struct lance_tx_desc, rt), type)
245
246#define tds_ptr(td, rt, type) \
247 ((volatile u16 *)((u8 *)(td) + tds_off(rt, type)))
248
249struct lance_private {
250 struct net_device *next;
251 int type;
252 int dma_irq;
253 volatile struct lance_regs *ll;
254
255 spinlock_t lock;
256
257 int rx_new, tx_new;
258 int rx_old, tx_old;
259
260 unsigned short busmaster_regval;
261
262 struct timer_list multicast_timer;
263 struct net_device *dev;
264
265
266 char *rx_buf_ptr_cpu[RX_RING_SIZE];
267 char *tx_buf_ptr_cpu[TX_RING_SIZE];
268
269
270 uint rx_buf_ptr_lnc[RX_RING_SIZE];
271 uint tx_buf_ptr_lnc[TX_RING_SIZE];
272};
273
274#define TX_BUFFS_AVAIL ((lp->tx_old<=lp->tx_new)?\
275 lp->tx_old+TX_RING_MOD_MASK-lp->tx_new:\
276 lp->tx_old - lp->tx_new-1)
277
278
279
280
281
282
283
284struct lance_regs {
285 volatile unsigned short rdp;
286 unsigned short pad;
287 volatile unsigned short rap;
288};
289
290int dec_lance_debug = 2;
291
292static struct tc_driver dec_lance_tc_driver;
293static struct net_device *root_lance_dev;
294
295static inline void writereg(volatile unsigned short *regptr, short value)
296{
297 *regptr = value;
298 iob();
299}
300
301
302static void load_csrs(struct lance_private *lp)
303{
304 volatile struct lance_regs *ll = lp->ll;
305 uint leptr;
306
307
308
309
310 leptr = 0;
311
312 writereg(&ll->rap, LE_CSR1);
313 writereg(&ll->rdp, (leptr & 0xFFFF));
314 writereg(&ll->rap, LE_CSR2);
315 writereg(&ll->rdp, leptr >> 16);
316 writereg(&ll->rap, LE_CSR3);
317 writereg(&ll->rdp, lp->busmaster_regval);
318
319
320 writereg(&ll->rap, LE_CSR0);
321}
322
323
324
325
326
327static void cp_to_buf(const int type, void *to, const void *from, int len)
328{
329 unsigned short *tp;
330 const unsigned short *fp;
331 unsigned short clen;
332 unsigned char *rtp;
333 const unsigned char *rfp;
334
335 if (type == PMAD_LANCE) {
336 memcpy(to, from, len);
337 } else if (type == PMAX_LANCE) {
338 clen = len >> 1;
339 tp = to;
340 fp = from;
341
342 while (clen--) {
343 *tp++ = *fp++;
344 tp++;
345 }
346
347 clen = len & 1;
348 rtp = (unsigned char *)tp;
349 rfp = (const unsigned char *)fp;
350 while (clen--) {
351 *rtp++ = *rfp++;
352 }
353 } else {
354
355
356
357 clen = len >> 4;
358 tp = to;
359 fp = from;
360 while (clen--) {
361 *tp++ = *fp++;
362 *tp++ = *fp++;
363 *tp++ = *fp++;
364 *tp++ = *fp++;
365 *tp++ = *fp++;
366 *tp++ = *fp++;
367 *tp++ = *fp++;
368 *tp++ = *fp++;
369 tp += 8;
370 }
371
372
373
374
375 clen = len & 15;
376 rtp = (unsigned char *)tp;
377 rfp = (const unsigned char *)fp;
378 while (clen--) {
379 *rtp++ = *rfp++;
380 }
381 }
382
383 iob();
384}
385
386static void cp_from_buf(const int type, void *to, const void *from, int len)
387{
388 unsigned short *tp;
389 const unsigned short *fp;
390 unsigned short clen;
391 unsigned char *rtp;
392 const unsigned char *rfp;
393
394 if (type == PMAD_LANCE) {
395 memcpy(to, from, len);
396 } else if (type == PMAX_LANCE) {
397 clen = len >> 1;
398 tp = to;
399 fp = from;
400 while (clen--) {
401 *tp++ = *fp++;
402 fp++;
403 }
404
405 clen = len & 1;
406
407 rtp = (unsigned char *)tp;
408 rfp = (const unsigned char *)fp;
409
410 while (clen--) {
411 *rtp++ = *rfp++;
412 }
413 } else {
414
415
416
417
418 clen = len >> 4;
419 tp = to;
420 fp = from;
421 while (clen--) {
422 *tp++ = *fp++;
423 *tp++ = *fp++;
424 *tp++ = *fp++;
425 *tp++ = *fp++;
426 *tp++ = *fp++;
427 *tp++ = *fp++;
428 *tp++ = *fp++;
429 *tp++ = *fp++;
430 fp += 8;
431 }
432
433
434
435
436 clen = len & 15;
437 rtp = (unsigned char *)tp;
438 rfp = (const unsigned char *)fp;
439 while (clen--) {
440 *rtp++ = *rfp++;
441 }
442
443
444 }
445
446}
447
448
449static void lance_init_ring(struct net_device *dev)
450{
451 struct lance_private *lp = netdev_priv(dev);
452 volatile u16 *ib = (volatile u16 *)dev->mem_start;
453 uint leptr;
454 int i;
455
456
457 netif_stop_queue(dev);
458 lp->rx_new = lp->tx_new = 0;
459 lp->rx_old = lp->tx_old = 0;
460
461
462
463
464 *lib_ptr(ib, phys_addr[0], lp->type) = (dev->dev_addr[1] << 8) |
465 dev->dev_addr[0];
466 *lib_ptr(ib, phys_addr[1], lp->type) = (dev->dev_addr[3] << 8) |
467 dev->dev_addr[2];
468 *lib_ptr(ib, phys_addr[2], lp->type) = (dev->dev_addr[5] << 8) |
469 dev->dev_addr[4];
470
471
472
473 leptr = offsetof(struct lance_init_block, brx_ring);
474 *lib_ptr(ib, rx_len, lp->type) = (LANCE_LOG_RX_BUFFERS << 13) |
475 (leptr >> 16);
476 *lib_ptr(ib, rx_ptr, lp->type) = leptr;
477 if (ZERO)
478 printk("RX ptr: %8.8x(%8.8x)\n",
479 leptr, (uint)lib_off(brx_ring, lp->type));
480
481
482 leptr = offsetof(struct lance_init_block, btx_ring);
483 *lib_ptr(ib, tx_len, lp->type) = (LANCE_LOG_TX_BUFFERS << 13) |
484 (leptr >> 16);
485 *lib_ptr(ib, tx_ptr, lp->type) = leptr;
486 if (ZERO)
487 printk("TX ptr: %8.8x(%8.8x)\n",
488 leptr, (uint)lib_off(btx_ring, lp->type));
489
490 if (ZERO)
491 printk("TX rings:\n");
492
493
494 for (i = 0; i < TX_RING_SIZE; i++) {
495 leptr = lp->tx_buf_ptr_lnc[i];
496 *lib_ptr(ib, btx_ring[i].tmd0, lp->type) = leptr;
497 *lib_ptr(ib, btx_ring[i].tmd1, lp->type) = (leptr >> 16) &
498 0xff;
499 *lib_ptr(ib, btx_ring[i].length, lp->type) = 0xf000;
500
501 *lib_ptr(ib, btx_ring[i].misc, lp->type) = 0;
502 if (i < 3 && ZERO)
503 printk("%d: %8.8x(%p)\n",
504 i, leptr, lp->tx_buf_ptr_cpu[i]);
505 }
506
507
508 if (ZERO)
509 printk("RX rings:\n");
510 for (i = 0; i < RX_RING_SIZE; i++) {
511 leptr = lp->rx_buf_ptr_lnc[i];
512 *lib_ptr(ib, brx_ring[i].rmd0, lp->type) = leptr;
513 *lib_ptr(ib, brx_ring[i].rmd1, lp->type) = ((leptr >> 16) &
514 0xff) |
515 LE_R1_OWN;
516 *lib_ptr(ib, brx_ring[i].length, lp->type) = -RX_BUFF_SIZE |
517 0xf000;
518 *lib_ptr(ib, brx_ring[i].mblength, lp->type) = 0;
519 if (i < 3 && ZERO)
520 printk("%d: %8.8x(%p)\n",
521 i, leptr, lp->rx_buf_ptr_cpu[i]);
522 }
523 iob();
524}
525
526static int init_restart_lance(struct lance_private *lp)
527{
528 volatile struct lance_regs *ll = lp->ll;
529 int i;
530
531 writereg(&ll->rap, LE_CSR0);
532 writereg(&ll->rdp, LE_C0_INIT);
533
534
535 for (i = 0; (i < 100) && !(ll->rdp & LE_C0_IDON); i++) {
536 udelay(10);
537 }
538 if ((i == 100) || (ll->rdp & LE_C0_ERR)) {
539 printk("LANCE unopened after %d ticks, csr0=%4.4x.\n",
540 i, ll->rdp);
541 return -1;
542 }
543 if ((ll->rdp & LE_C0_ERR)) {
544 printk("LANCE unopened after %d ticks, csr0=%4.4x.\n",
545 i, ll->rdp);
546 return -1;
547 }
548 writereg(&ll->rdp, LE_C0_IDON);
549 writereg(&ll->rdp, LE_C0_STRT);
550 writereg(&ll->rdp, LE_C0_INEA);
551
552 return 0;
553}
554
555static int lance_rx(struct net_device *dev)
556{
557 struct lance_private *lp = netdev_priv(dev);
558 volatile u16 *ib = (volatile u16 *)dev->mem_start;
559 volatile u16 *rd;
560 unsigned short bits;
561 int entry, len;
562 struct sk_buff *skb;
563
564#ifdef TEST_HITS
565 {
566 int i;
567
568 printk("[");
569 for (i = 0; i < RX_RING_SIZE; i++) {
570 if (i == lp->rx_new)
571 printk("%s", *lib_ptr(ib, brx_ring[i].rmd1,
572 lp->type) &
573 LE_R1_OWN ? "_" : "X");
574 else
575 printk("%s", *lib_ptr(ib, brx_ring[i].rmd1,
576 lp->type) &
577 LE_R1_OWN ? "." : "1");
578 }
579 printk("]");
580 }
581#endif
582
583 for (rd = lib_ptr(ib, brx_ring[lp->rx_new], lp->type);
584 !((bits = *rds_ptr(rd, rmd1, lp->type)) & LE_R1_OWN);
585 rd = lib_ptr(ib, brx_ring[lp->rx_new], lp->type)) {
586 entry = lp->rx_new;
587
588
589 if ((bits & LE_R1_POK) != LE_R1_POK) {
590 dev->stats.rx_over_errors++;
591 dev->stats.rx_errors++;
592 } else if (bits & LE_R1_ERR) {
593
594
595
596 if (bits & LE_R1_BUF)
597 dev->stats.rx_fifo_errors++;
598 if (bits & LE_R1_CRC)
599 dev->stats.rx_crc_errors++;
600 if (bits & LE_R1_OFL)
601 dev->stats.rx_over_errors++;
602 if (bits & LE_R1_FRA)
603 dev->stats.rx_frame_errors++;
604 if (bits & LE_R1_EOP)
605 dev->stats.rx_errors++;
606 } else {
607 len = (*rds_ptr(rd, mblength, lp->type) & 0xfff) - 4;
608 skb = netdev_alloc_skb(dev, len + 2);
609
610 if (skb == 0) {
611 dev->stats.rx_dropped++;
612 *rds_ptr(rd, mblength, lp->type) = 0;
613 *rds_ptr(rd, rmd1, lp->type) =
614 ((lp->rx_buf_ptr_lnc[entry] >> 16) &
615 0xff) | LE_R1_OWN;
616 lp->rx_new = (entry + 1) & RX_RING_MOD_MASK;
617 return 0;
618 }
619 dev->stats.rx_bytes += len;
620
621 skb_reserve(skb, 2);
622 skb_put(skb, len);
623
624 cp_from_buf(lp->type, skb->data,
625 lp->rx_buf_ptr_cpu[entry], len);
626
627 skb->protocol = eth_type_trans(skb, dev);
628 netif_rx(skb);
629 dev->stats.rx_packets++;
630 }
631
632
633 *rds_ptr(rd, mblength, lp->type) = 0;
634 *rds_ptr(rd, length, lp->type) = -RX_BUFF_SIZE | 0xf000;
635 *rds_ptr(rd, rmd1, lp->type) =
636 ((lp->rx_buf_ptr_lnc[entry] >> 16) & 0xff) | LE_R1_OWN;
637 lp->rx_new = (entry + 1) & RX_RING_MOD_MASK;
638 }
639 return 0;
640}
641
642static void lance_tx(struct net_device *dev)
643{
644 struct lance_private *lp = netdev_priv(dev);
645 volatile u16 *ib = (volatile u16 *)dev->mem_start;
646 volatile struct lance_regs *ll = lp->ll;
647 volatile u16 *td;
648 int i, j;
649 int status;
650
651 j = lp->tx_old;
652
653 spin_lock(&lp->lock);
654
655 for (i = j; i != lp->tx_new; i = j) {
656 td = lib_ptr(ib, btx_ring[i], lp->type);
657
658 if (*tds_ptr(td, tmd1, lp->type) & LE_T1_OWN)
659 break;
660
661 if (*tds_ptr(td, tmd1, lp->type) & LE_T1_ERR) {
662 status = *tds_ptr(td, misc, lp->type);
663
664 dev->stats.tx_errors++;
665 if (status & LE_T3_RTY)
666 dev->stats.tx_aborted_errors++;
667 if (status & LE_T3_LCOL)
668 dev->stats.tx_window_errors++;
669
670 if (status & LE_T3_CLOS) {
671 dev->stats.tx_carrier_errors++;
672 printk("%s: Carrier Lost\n", dev->name);
673
674 writereg(&ll->rap, LE_CSR0);
675 writereg(&ll->rdp, LE_C0_STOP);
676 lance_init_ring(dev);
677 load_csrs(lp);
678 init_restart_lance(lp);
679 goto out;
680 }
681
682
683
684 if (status & (LE_T3_BUF | LE_T3_UFL)) {
685 dev->stats.tx_fifo_errors++;
686
687 printk("%s: Tx: ERR_BUF|ERR_UFL, restarting\n",
688 dev->name);
689
690 writereg(&ll->rap, LE_CSR0);
691 writereg(&ll->rdp, LE_C0_STOP);
692 lance_init_ring(dev);
693 load_csrs(lp);
694 init_restart_lance(lp);
695 goto out;
696 }
697 } else if ((*tds_ptr(td, tmd1, lp->type) & LE_T1_POK) ==
698 LE_T1_POK) {
699
700
701
702 *tds_ptr(td, tmd1, lp->type) &= ~(LE_T1_POK);
703
704
705 if (*tds_ptr(td, tmd1, lp->type) & LE_T1_EONE)
706 dev->stats.collisions++;
707
708
709 if (*tds_ptr(td, tmd1, lp->type) & LE_T1_EMORE)
710 dev->stats.collisions += 2;
711
712 dev->stats.tx_packets++;
713 }
714 j = (j + 1) & TX_RING_MOD_MASK;
715 }
716 lp->tx_old = j;
717out:
718 if (netif_queue_stopped(dev) &&
719 TX_BUFFS_AVAIL > 0)
720 netif_wake_queue(dev);
721
722 spin_unlock(&lp->lock);
723}
724
725static irqreturn_t lance_dma_merr_int(int irq, void *dev_id)
726{
727 struct net_device *dev = dev_id;
728
729 printk(KERN_ERR "%s: DMA error\n", dev->name);
730 return IRQ_HANDLED;
731}
732
733static irqreturn_t lance_interrupt(int irq, void *dev_id)
734{
735 struct net_device *dev = dev_id;
736 struct lance_private *lp = netdev_priv(dev);
737 volatile struct lance_regs *ll = lp->ll;
738 int csr0;
739
740 writereg(&ll->rap, LE_CSR0);
741 csr0 = ll->rdp;
742
743
744 writereg(&ll->rdp, csr0 & (LE_C0_INTR | LE_C0_TINT | LE_C0_RINT));
745
746 if ((csr0 & LE_C0_ERR)) {
747
748 writereg(&ll->rdp, LE_C0_BABL | LE_C0_ERR | LE_C0_MISS |
749 LE_C0_CERR | LE_C0_MERR);
750 }
751 if (csr0 & LE_C0_RINT)
752 lance_rx(dev);
753
754 if (csr0 & LE_C0_TINT)
755 lance_tx(dev);
756
757 if (csr0 & LE_C0_BABL)
758 dev->stats.tx_errors++;
759
760 if (csr0 & LE_C0_MISS)
761 dev->stats.rx_errors++;
762
763 if (csr0 & LE_C0_MERR) {
764 printk("%s: Memory error, status %04x\n", dev->name, csr0);
765
766 writereg(&ll->rdp, LE_C0_STOP);
767
768 lance_init_ring(dev);
769 load_csrs(lp);
770 init_restart_lance(lp);
771 netif_wake_queue(dev);
772 }
773
774 writereg(&ll->rdp, LE_C0_INEA);
775 writereg(&ll->rdp, LE_C0_INEA);
776 return IRQ_HANDLED;
777}
778
779static int lance_open(struct net_device *dev)
780{
781 volatile u16 *ib = (volatile u16 *)dev->mem_start;
782 struct lance_private *lp = netdev_priv(dev);
783 volatile struct lance_regs *ll = lp->ll;
784 int status = 0;
785
786
787 writereg(&ll->rap, LE_CSR0);
788 writereg(&ll->rdp, LE_C0_STOP);
789
790
791
792
793
794
795
796 *lib_ptr(ib, mode, lp->type) = 0;
797 *lib_ptr(ib, filter[0], lp->type) = 0;
798 *lib_ptr(ib, filter[1], lp->type) = 0;
799 *lib_ptr(ib, filter[2], lp->type) = 0;
800 *lib_ptr(ib, filter[3], lp->type) = 0;
801
802 lance_init_ring(dev);
803 load_csrs(lp);
804
805 netif_start_queue(dev);
806
807
808 if (request_irq(dev->irq, lance_interrupt, 0, "lance", dev)) {
809 printk("%s: Can't get IRQ %d\n", dev->name, dev->irq);
810 return -EAGAIN;
811 }
812 if (lp->dma_irq >= 0) {
813 unsigned long flags;
814
815 if (request_irq(lp->dma_irq, lance_dma_merr_int, IRQF_ONESHOT,
816 "lance error", dev)) {
817 free_irq(dev->irq, dev);
818 printk("%s: Can't get DMA IRQ %d\n", dev->name,
819 lp->dma_irq);
820 return -EAGAIN;
821 }
822
823 spin_lock_irqsave(&ioasic_ssr_lock, flags);
824
825 fast_mb();
826
827 ioasic_write(IO_REG_SSR,
828 ioasic_read(IO_REG_SSR) | IO_SSR_LANCE_DMA_EN);
829
830 fast_mb();
831 spin_unlock_irqrestore(&ioasic_ssr_lock, flags);
832 }
833
834 status = init_restart_lance(lp);
835 return status;
836}
837
838static int lance_close(struct net_device *dev)
839{
840 struct lance_private *lp = netdev_priv(dev);
841 volatile struct lance_regs *ll = lp->ll;
842
843 netif_stop_queue(dev);
844 del_timer_sync(&lp->multicast_timer);
845
846
847 writereg(&ll->rap, LE_CSR0);
848 writereg(&ll->rdp, LE_C0_STOP);
849
850 if (lp->dma_irq >= 0) {
851 unsigned long flags;
852
853 spin_lock_irqsave(&ioasic_ssr_lock, flags);
854
855 fast_mb();
856
857 ioasic_write(IO_REG_SSR,
858 ioasic_read(IO_REG_SSR) & ~IO_SSR_LANCE_DMA_EN);
859
860 fast_iob();
861 spin_unlock_irqrestore(&ioasic_ssr_lock, flags);
862
863 free_irq(lp->dma_irq, dev);
864 }
865 free_irq(dev->irq, dev);
866 return 0;
867}
868
869static inline int lance_reset(struct net_device *dev)
870{
871 struct lance_private *lp = netdev_priv(dev);
872 volatile struct lance_regs *ll = lp->ll;
873 int status;
874
875
876 writereg(&ll->rap, LE_CSR0);
877 writereg(&ll->rdp, LE_C0_STOP);
878
879 lance_init_ring(dev);
880 load_csrs(lp);
881 netif_trans_update(dev);
882 status = init_restart_lance(lp);
883 return status;
884}
885
886static void lance_tx_timeout(struct net_device *dev, unsigned int txqueue)
887{
888 struct lance_private *lp = netdev_priv(dev);
889 volatile struct lance_regs *ll = lp->ll;
890
891 printk(KERN_ERR "%s: transmit timed out, status %04x, reset\n",
892 dev->name, ll->rdp);
893 lance_reset(dev);
894 netif_wake_queue(dev);
895}
896
897static int lance_start_xmit(struct sk_buff *skb, struct net_device *dev)
898{
899 struct lance_private *lp = netdev_priv(dev);
900 volatile struct lance_regs *ll = lp->ll;
901 volatile u16 *ib = (volatile u16 *)dev->mem_start;
902 unsigned long flags;
903 int entry, len;
904
905 len = skb->len;
906
907 if (len < ETH_ZLEN) {
908 if (skb_padto(skb, ETH_ZLEN))
909 return NETDEV_TX_OK;
910 len = ETH_ZLEN;
911 }
912
913 dev->stats.tx_bytes += len;
914
915 spin_lock_irqsave(&lp->lock, flags);
916
917 entry = lp->tx_new;
918 *lib_ptr(ib, btx_ring[entry].length, lp->type) = (-len);
919 *lib_ptr(ib, btx_ring[entry].misc, lp->type) = 0;
920
921 cp_to_buf(lp->type, lp->tx_buf_ptr_cpu[entry], skb->data, len);
922
923
924 *lib_ptr(ib, btx_ring[entry].tmd1, lp->type) =
925 ((lp->tx_buf_ptr_lnc[entry] >> 16) & 0xff) |
926 (LE_T1_POK | LE_T1_OWN);
927 lp->tx_new = (entry + 1) & TX_RING_MOD_MASK;
928
929 if (TX_BUFFS_AVAIL <= 0)
930 netif_stop_queue(dev);
931
932
933 writereg(&ll->rdp, LE_C0_INEA | LE_C0_TDMD);
934
935 spin_unlock_irqrestore(&lp->lock, flags);
936
937 dev_kfree_skb(skb);
938
939 return NETDEV_TX_OK;
940}
941
942static void lance_load_multicast(struct net_device *dev)
943{
944 struct lance_private *lp = netdev_priv(dev);
945 volatile u16 *ib = (volatile u16 *)dev->mem_start;
946 struct netdev_hw_addr *ha;
947 u32 crc;
948
949
950 if (dev->flags & IFF_ALLMULTI) {
951 *lib_ptr(ib, filter[0], lp->type) = 0xffff;
952 *lib_ptr(ib, filter[1], lp->type) = 0xffff;
953 *lib_ptr(ib, filter[2], lp->type) = 0xffff;
954 *lib_ptr(ib, filter[3], lp->type) = 0xffff;
955 return;
956 }
957
958 *lib_ptr(ib, filter[0], lp->type) = 0;
959 *lib_ptr(ib, filter[1], lp->type) = 0;
960 *lib_ptr(ib, filter[2], lp->type) = 0;
961 *lib_ptr(ib, filter[3], lp->type) = 0;
962
963
964 netdev_for_each_mc_addr(ha, dev) {
965 crc = ether_crc_le(ETH_ALEN, ha->addr);
966 crc = crc >> 26;
967 *lib_ptr(ib, filter[crc >> 4], lp->type) |= 1 << (crc & 0xf);
968 }
969}
970
971static void lance_set_multicast(struct net_device *dev)
972{
973 struct lance_private *lp = netdev_priv(dev);
974 volatile u16 *ib = (volatile u16 *)dev->mem_start;
975 volatile struct lance_regs *ll = lp->ll;
976
977 if (!netif_running(dev))
978 return;
979
980 if (lp->tx_old != lp->tx_new) {
981 mod_timer(&lp->multicast_timer, jiffies + 4 * HZ/100);
982 netif_wake_queue(dev);
983 return;
984 }
985
986 netif_stop_queue(dev);
987
988 writereg(&ll->rap, LE_CSR0);
989 writereg(&ll->rdp, LE_C0_STOP);
990
991 lance_init_ring(dev);
992
993 if (dev->flags & IFF_PROMISC) {
994 *lib_ptr(ib, mode, lp->type) |= LE_MO_PROM;
995 } else {
996 *lib_ptr(ib, mode, lp->type) &= ~LE_MO_PROM;
997 lance_load_multicast(dev);
998 }
999 load_csrs(lp);
1000 init_restart_lance(lp);
1001 netif_wake_queue(dev);
1002}
1003
1004static void lance_set_multicast_retry(struct timer_list *t)
1005{
1006 struct lance_private *lp = from_timer(lp, t, multicast_timer);
1007 struct net_device *dev = lp->dev;
1008
1009 lance_set_multicast(dev);
1010}
1011
1012static const struct net_device_ops lance_netdev_ops = {
1013 .ndo_open = lance_open,
1014 .ndo_stop = lance_close,
1015 .ndo_start_xmit = lance_start_xmit,
1016 .ndo_tx_timeout = lance_tx_timeout,
1017 .ndo_set_rx_mode = lance_set_multicast,
1018 .ndo_validate_addr = eth_validate_addr,
1019 .ndo_set_mac_address = eth_mac_addr,
1020};
1021
1022static int dec_lance_probe(struct device *bdev, const int type)
1023{
1024 static unsigned version_printed;
1025 static const char fmt[] = "declance%d";
1026 char name[10];
1027 struct net_device *dev;
1028 struct lance_private *lp;
1029 volatile struct lance_regs *ll;
1030 resource_size_t start = 0, len = 0;
1031 int i, ret;
1032 unsigned long esar_base;
1033 unsigned char *esar;
1034
1035 if (dec_lance_debug && version_printed++ == 0)
1036 printk(version);
1037
1038 if (bdev)
1039 snprintf(name, sizeof(name), "%s", dev_name(bdev));
1040 else {
1041 i = 0;
1042 dev = root_lance_dev;
1043 while (dev) {
1044 i++;
1045 lp = netdev_priv(dev);
1046 dev = lp->next;
1047 }
1048 snprintf(name, sizeof(name), fmt, i);
1049 }
1050
1051 dev = alloc_etherdev(sizeof(struct lance_private));
1052 if (!dev) {
1053 ret = -ENOMEM;
1054 goto err_out;
1055 }
1056
1057
1058
1059
1060
1061 lp = netdev_priv(dev);
1062 spin_lock_init(&lp->lock);
1063
1064 lp->type = type;
1065 switch (type) {
1066 case ASIC_LANCE:
1067 dev->base_addr = CKSEG1ADDR(dec_kn_slot_base + IOASIC_LANCE);
1068
1069
1070
1071
1072
1073 dev->mem_start = CKSEG1ADDR(0x00020000);
1074 dev->mem_end = dev->mem_start + 0x00020000;
1075 dev->irq = dec_interrupt[DEC_IRQ_LANCE];
1076 esar_base = CKSEG1ADDR(dec_kn_slot_base + IOASIC_ESAR);
1077
1078
1079 memset((void *)dev->mem_start, 0,
1080 dev->mem_end - dev->mem_start);
1081
1082
1083
1084
1085 for (i = 0; i < RX_RING_SIZE; i++) {
1086 lp->rx_buf_ptr_cpu[i] =
1087 (char *)(dev->mem_start + 2 * BUF_OFFSET_CPU +
1088 2 * i * RX_BUFF_SIZE);
1089 lp->rx_buf_ptr_lnc[i] =
1090 (BUF_OFFSET_LNC + i * RX_BUFF_SIZE);
1091 }
1092 for (i = 0; i < TX_RING_SIZE; i++) {
1093 lp->tx_buf_ptr_cpu[i] =
1094 (char *)(dev->mem_start + 2 * BUF_OFFSET_CPU +
1095 2 * RX_RING_SIZE * RX_BUFF_SIZE +
1096 2 * i * TX_BUFF_SIZE);
1097 lp->tx_buf_ptr_lnc[i] =
1098 (BUF_OFFSET_LNC +
1099 RX_RING_SIZE * RX_BUFF_SIZE +
1100 i * TX_BUFF_SIZE);
1101 }
1102
1103
1104 lp->dma_irq = dec_interrupt[DEC_IRQ_LANCE_MERR];
1105 ioasic_write(IO_REG_LANCE_DMA_P,
1106 CPHYSADDR(dev->mem_start) << 3);
1107
1108 break;
1109#ifdef CONFIG_TC
1110 case PMAD_LANCE:
1111 dev_set_drvdata(bdev, dev);
1112
1113 start = to_tc_dev(bdev)->resource.start;
1114 len = to_tc_dev(bdev)->resource.end - start + 1;
1115 if (!request_mem_region(start, len, dev_name(bdev))) {
1116 printk(KERN_ERR
1117 "%s: Unable to reserve MMIO resource\n",
1118 dev_name(bdev));
1119 ret = -EBUSY;
1120 goto err_out_dev;
1121 }
1122
1123 dev->mem_start = CKSEG1ADDR(start);
1124 dev->mem_end = dev->mem_start + 0x100000;
1125 dev->base_addr = dev->mem_start + 0x100000;
1126 dev->irq = to_tc_dev(bdev)->interrupt;
1127 esar_base = dev->mem_start + 0x1c0002;
1128 lp->dma_irq = -1;
1129
1130 for (i = 0; i < RX_RING_SIZE; i++) {
1131 lp->rx_buf_ptr_cpu[i] =
1132 (char *)(dev->mem_start + BUF_OFFSET_CPU +
1133 i * RX_BUFF_SIZE);
1134 lp->rx_buf_ptr_lnc[i] =
1135 (BUF_OFFSET_LNC + i * RX_BUFF_SIZE);
1136 }
1137 for (i = 0; i < TX_RING_SIZE; i++) {
1138 lp->tx_buf_ptr_cpu[i] =
1139 (char *)(dev->mem_start + BUF_OFFSET_CPU +
1140 RX_RING_SIZE * RX_BUFF_SIZE +
1141 i * TX_BUFF_SIZE);
1142 lp->tx_buf_ptr_lnc[i] =
1143 (BUF_OFFSET_LNC +
1144 RX_RING_SIZE * RX_BUFF_SIZE +
1145 i * TX_BUFF_SIZE);
1146 }
1147
1148 break;
1149#endif
1150 case PMAX_LANCE:
1151 dev->irq = dec_interrupt[DEC_IRQ_LANCE];
1152 dev->base_addr = CKSEG1ADDR(KN01_SLOT_BASE + KN01_LANCE);
1153 dev->mem_start = CKSEG1ADDR(KN01_SLOT_BASE + KN01_LANCE_MEM);
1154 dev->mem_end = dev->mem_start + KN01_SLOT_SIZE;
1155 esar_base = CKSEG1ADDR(KN01_SLOT_BASE + KN01_ESAR + 1);
1156 lp->dma_irq = -1;
1157
1158
1159
1160
1161 for (i = 0; i < RX_RING_SIZE; i++) {
1162 lp->rx_buf_ptr_cpu[i] =
1163 (char *)(dev->mem_start + 2 * BUF_OFFSET_CPU +
1164 2 * i * RX_BUFF_SIZE);
1165 lp->rx_buf_ptr_lnc[i] =
1166 (BUF_OFFSET_LNC + i * RX_BUFF_SIZE);
1167 }
1168 for (i = 0; i < TX_RING_SIZE; i++) {
1169 lp->tx_buf_ptr_cpu[i] =
1170 (char *)(dev->mem_start + 2 * BUF_OFFSET_CPU +
1171 2 * RX_RING_SIZE * RX_BUFF_SIZE +
1172 2 * i * TX_BUFF_SIZE);
1173 lp->tx_buf_ptr_lnc[i] =
1174 (BUF_OFFSET_LNC +
1175 RX_RING_SIZE * RX_BUFF_SIZE +
1176 i * TX_BUFF_SIZE);
1177 }
1178
1179 break;
1180
1181 default:
1182 printk(KERN_ERR "%s: declance_init called with unknown type\n",
1183 name);
1184 ret = -ENODEV;
1185 goto err_out_dev;
1186 }
1187
1188 ll = (struct lance_regs *) dev->base_addr;
1189 esar = (unsigned char *) esar_base;
1190
1191
1192
1193 if (esar[0x60] != 0xff && esar[0x64] != 0x00 &&
1194 esar[0x68] != 0x55 && esar[0x6c] != 0xaa) {
1195 printk(KERN_ERR
1196 "%s: Ethernet station address prom not found!\n",
1197 name);
1198 ret = -ENODEV;
1199 goto err_out_resource;
1200 }
1201
1202 for (i = 0; i < 8; i++) {
1203 if (esar[i * 4] != esar[0x3c - i * 4] &&
1204 esar[i * 4] != esar[0x40 + i * 4] &&
1205 esar[0x3c - i * 4] != esar[0x40 + i * 4]) {
1206 printk(KERN_ERR "%s: Something is wrong with the "
1207 "ethernet station address prom!\n", name);
1208 ret = -ENODEV;
1209 goto err_out_resource;
1210 }
1211 }
1212
1213
1214
1215
1216
1217 switch (type) {
1218 case ASIC_LANCE:
1219 printk("%s: IOASIC onboard LANCE", name);
1220 break;
1221 case PMAD_LANCE:
1222 printk("%s: PMAD-AA", name);
1223 break;
1224 case PMAX_LANCE:
1225 printk("%s: PMAX onboard LANCE", name);
1226 break;
1227 }
1228 for (i = 0; i < 6; i++)
1229 dev->dev_addr[i] = esar[i * 4];
1230
1231 printk(", addr = %pM, irq = %d\n", dev->dev_addr, dev->irq);
1232
1233 dev->netdev_ops = &lance_netdev_ops;
1234 dev->watchdog_timeo = 5*HZ;
1235
1236
1237 lp->ll = ll;
1238
1239
1240
1241
1242 lp->busmaster_regval = 0;
1243
1244 dev->dma = 0;
1245
1246
1247
1248
1249
1250
1251 lp->dev = dev;
1252 timer_setup(&lp->multicast_timer, lance_set_multicast_retry, 0);
1253
1254
1255 ret = register_netdev(dev);
1256 if (ret) {
1257 printk(KERN_ERR
1258 "%s: Unable to register netdev, aborting.\n", name);
1259 goto err_out_resource;
1260 }
1261
1262 if (!bdev) {
1263 lp->next = root_lance_dev;
1264 root_lance_dev = dev;
1265 }
1266
1267 printk("%s: registered as %s.\n", name, dev->name);
1268 return 0;
1269
1270err_out_resource:
1271 if (bdev)
1272 release_mem_region(start, len);
1273
1274err_out_dev:
1275 free_netdev(dev);
1276
1277err_out:
1278 return ret;
1279}
1280
1281
1282static int __init dec_lance_platform_probe(void)
1283{
1284 int count = 0;
1285
1286 if (dec_interrupt[DEC_IRQ_LANCE] >= 0) {
1287 if (dec_interrupt[DEC_IRQ_LANCE_MERR] >= 0) {
1288 if (dec_lance_probe(NULL, ASIC_LANCE) >= 0)
1289 count++;
1290 } else if (!TURBOCHANNEL) {
1291 if (dec_lance_probe(NULL, PMAX_LANCE) >= 0)
1292 count++;
1293 }
1294 }
1295
1296 return (count > 0) ? 0 : -ENODEV;
1297}
1298
1299static void __exit dec_lance_platform_remove(void)
1300{
1301 while (root_lance_dev) {
1302 struct net_device *dev = root_lance_dev;
1303 struct lance_private *lp = netdev_priv(dev);
1304
1305 unregister_netdev(dev);
1306 root_lance_dev = lp->next;
1307 free_netdev(dev);
1308 }
1309}
1310
1311#ifdef CONFIG_TC
1312static int dec_lance_tc_probe(struct device *dev);
1313static int dec_lance_tc_remove(struct device *dev);
1314
1315static const struct tc_device_id dec_lance_tc_table[] = {
1316 { "DEC ", "PMAD-AA " },
1317 { }
1318};
1319MODULE_DEVICE_TABLE(tc, dec_lance_tc_table);
1320
1321static struct tc_driver dec_lance_tc_driver = {
1322 .id_table = dec_lance_tc_table,
1323 .driver = {
1324 .name = "declance",
1325 .bus = &tc_bus_type,
1326 .probe = dec_lance_tc_probe,
1327 .remove = dec_lance_tc_remove,
1328 },
1329};
1330
1331static int dec_lance_tc_probe(struct device *dev)
1332{
1333 int status = dec_lance_probe(dev, PMAD_LANCE);
1334 if (!status)
1335 get_device(dev);
1336 return status;
1337}
1338
1339static void dec_lance_remove(struct device *bdev)
1340{
1341 struct net_device *dev = dev_get_drvdata(bdev);
1342 resource_size_t start, len;
1343
1344 unregister_netdev(dev);
1345 start = to_tc_dev(bdev)->resource.start;
1346 len = to_tc_dev(bdev)->resource.end - start + 1;
1347 release_mem_region(start, len);
1348 free_netdev(dev);
1349}
1350
1351static int dec_lance_tc_remove(struct device *dev)
1352{
1353 put_device(dev);
1354 dec_lance_remove(dev);
1355 return 0;
1356}
1357#endif
1358
1359static int __init dec_lance_init(void)
1360{
1361 int status;
1362
1363 status = tc_register_driver(&dec_lance_tc_driver);
1364 if (!status)
1365 dec_lance_platform_probe();
1366 return status;
1367}
1368
1369static void __exit dec_lance_exit(void)
1370{
1371 dec_lance_platform_remove();
1372 tc_unregister_driver(&dec_lance_tc_driver);
1373}
1374
1375
1376module_init(dec_lance_init);
1377module_exit(dec_lance_exit);
1378