1 /* mac8390.c: New driver for 8390-based Nubus (or Nubus-alike)
2 Ethernet cards on Linux */
3 /* Based on the former daynaport.c driver, by Alan Cox. Some code
4 taken from or inspired by skeleton.c by Donald Becker, acenic.c by
5 Jes Sorensen, and ne2k-pci.c by Donald Becker and Paul Gortmaker.
7 This software may be used and distributed according to the terms of
8 the GNU Public License, incorporated herein by reference. */
10 /* 2000-02-28: support added for Dayna and Kinetics cards by
11 A.G.deWijn@phys.uu.nl */
12 /* 2000-04-04: support added for Dayna2 by bart@etpmod.phys.tue.nl */
13 /* 2001-04-18: support for DaynaPort E/LC-M by rayk@knightsmanor.org */
14 /* 2001-05-15: support for Cabletron ported from old daynaport driver
15 * and fixed access to Sonic Sys card which masquerades as a Farallon
16 * by rayk@knightsmanor.org */
17 /* 2002-12-30: Try to support more cards, some clues from NetBSD driver */
18 /* 2003-12-26: Make sure Asante cards always work. */
20 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
22 #include <linux/module.h>
23 #include <linux/kernel.h>
24 #include <linux/types.h>
25 #include <linux/fcntl.h>
26 #include <linux/interrupt.h>
27 #include <linux/ptrace.h>
28 #include <linux/ioport.h>
29 #include <linux/nubus.h>
31 #include <linux/string.h>
32 #include <linux/errno.h>
33 #include <linux/init.h>
34 #include <linux/netdevice.h>
35 #include <linux/etherdevice.h>
36 #include <linux/skbuff.h>
37 #include <linux/bitops.h>
41 #include <asm/hwtest.h>
42 #include <asm/macints.h>
44 static char version
[] =
45 "v0.4 2001-05-15 David Huggins-Daines <dhd@debian.org> and others\n";
47 #define EI_SHIFT(x) (ei_local->reg_offset[x])
48 #define ei_inb(port) in_8(port)
49 #define ei_outb(val, port) out_8(port, val)
50 #define ei_inb_p(port) in_8(port)
51 #define ei_outb_p(val, port) out_8(port, val)
55 #define WD_START_PG 0x00 /* First page of TX buffer */
56 #define CABLETRON_RX_START_PG 0x00 /* First page of RX buffer */
57 #define CABLETRON_RX_STOP_PG 0x30 /* Last page +1 of RX ring */
58 #define CABLETRON_TX_START_PG CABLETRON_RX_STOP_PG
59 /* First page of TX buffer */
62 * Unfortunately it seems we have to hardcode these for the moment
63 * Shouldn't the card know about this?
64 * Does anyone know where to read it off the card?
65 * Do we trust the data provided by the card?
68 #define DAYNA_8390_BASE 0x80000
69 #define DAYNA_8390_MEM 0x00000
71 #define CABLETRON_8390_BASE 0x90000
72 #define CABLETRON_8390_MEM 0x00000
74 #define INTERLAN_8390_BASE 0xE0000
75 #define INTERLAN_8390_MEM 0xD0000
88 static const char *cardname
[] = {
98 static const int word16
[] = {
108 /* on which cards do we use NuBus resources? */
109 static const int useresources
[] = {
119 enum mac8390_access
{
125 extern int mac8390_memtest(struct net_device
*dev
);
126 static int mac8390_initdev(struct net_device
*dev
, struct nubus_board
*board
,
127 enum mac8390_type type
);
129 static int mac8390_open(struct net_device
*dev
);
130 static int mac8390_close(struct net_device
*dev
);
131 static void mac8390_no_reset(struct net_device
*dev
);
132 static void interlan_reset(struct net_device
*dev
);
134 /* Sane (32-bit chunk memory read/write) - Some Farallon and Apple do this*/
135 static void sane_get_8390_hdr(struct net_device
*dev
,
136 struct e8390_pkt_hdr
*hdr
, int ring_page
);
137 static void sane_block_input(struct net_device
*dev
, int count
,
138 struct sk_buff
*skb
, int ring_offset
);
139 static void sane_block_output(struct net_device
*dev
, int count
,
140 const unsigned char *buf
, const int start_page
);
142 /* dayna_memcpy to and from card */
143 static void dayna_memcpy_fromcard(struct net_device
*dev
, void *to
,
144 int from
, int count
);
145 static void dayna_memcpy_tocard(struct net_device
*dev
, int to
,
146 const void *from
, int count
);
148 /* Dayna - Dayna/Kinetics use this */
149 static void dayna_get_8390_hdr(struct net_device
*dev
,
150 struct e8390_pkt_hdr
*hdr
, int ring_page
);
151 static void dayna_block_input(struct net_device
*dev
, int count
,
152 struct sk_buff
*skb
, int ring_offset
);
153 static void dayna_block_output(struct net_device
*dev
, int count
,
154 const unsigned char *buf
, int start_page
);
156 #define memcmp_withio(a, b, c) memcmp((a), (void *)(b), (c))
158 /* Slow Sane (16-bit chunk memory read/write) Cabletron uses this */
159 static void slow_sane_get_8390_hdr(struct net_device
*dev
,
160 struct e8390_pkt_hdr
*hdr
, int ring_page
);
161 static void slow_sane_block_input(struct net_device
*dev
, int count
,
162 struct sk_buff
*skb
, int ring_offset
);
163 static void slow_sane_block_output(struct net_device
*dev
, int count
,
164 const unsigned char *buf
, int start_page
);
165 static void word_memcpy_tocard(unsigned long tp
, const void *fp
, int count
);
166 static void word_memcpy_fromcard(void *tp
, unsigned long fp
, int count
);
168 static enum mac8390_type
mac8390_ident(struct nubus_rsrc
*fres
)
170 switch (fres
->dr_sw
) {
171 case NUBUS_DRSW_3COM
:
172 switch (fres
->dr_hw
) {
173 case NUBUS_DRHW_APPLE_SONIC_NB
:
174 case NUBUS_DRHW_APPLE_SONIC_LC
:
175 case NUBUS_DRHW_SONNET
:
178 return MAC8390_APPLE
;
182 case NUBUS_DRSW_APPLE
:
183 switch (fres
->dr_hw
) {
184 case NUBUS_DRHW_ASANTE_LC
:
186 case NUBUS_DRHW_CABLETRON
:
187 return MAC8390_CABLETRON
;
189 return MAC8390_APPLE
;
193 case NUBUS_DRSW_ASANTE
:
194 return MAC8390_ASANTE
;
197 case NUBUS_DRSW_TECHWORKS
:
198 case NUBUS_DRSW_DAYNA2
:
199 case NUBUS_DRSW_DAYNA_LC
:
200 if (fres
->dr_hw
== NUBUS_DRHW_CABLETRON
)
201 return MAC8390_CABLETRON
;
203 return MAC8390_APPLE
;
206 case NUBUS_DRSW_FARALLON
:
207 return MAC8390_FARALLON
;
210 case NUBUS_DRSW_KINETICS
:
211 switch (fres
->dr_hw
) {
212 case NUBUS_DRHW_INTERLAN
:
213 return MAC8390_INTERLAN
;
215 return MAC8390_KINETICS
;
219 case NUBUS_DRSW_DAYNA
:
221 * These correspond to Dayna Sonic cards
222 * which use the macsonic driver
224 if (fres
->dr_hw
== NUBUS_DRHW_SMC9194
||
225 fres
->dr_hw
== NUBUS_DRHW_INTERLAN
)
228 return MAC8390_DAYNA
;
234 static enum mac8390_access
mac8390_testio(unsigned long membase
)
236 unsigned long outdata
= 0xA5A0B5B0;
237 unsigned long indata
= 0x00000000;
238 /* Try writing 32 bits */
239 memcpy_toio((void __iomem
*)membase
, &outdata
, 4);
240 /* Now compare them */
241 if (memcmp_withio(&outdata
, membase
, 4) == 0)
243 /* Write 16 bit output */
244 word_memcpy_tocard(membase
, &outdata
, 4);
245 /* Now read it back */
246 word_memcpy_fromcard(&indata
, membase
, 4);
247 if (outdata
== indata
)
249 return ACCESS_UNKNOWN
;
252 static int mac8390_memsize(unsigned long membase
)
257 local_irq_save(flags
);
258 /* Check up to 32K in 4K increments */
259 for (i
= 0; i
< 8; i
++) {
260 volatile unsigned short *m
= (unsigned short *)(membase
+ (i
* 0x1000));
262 /* Unwriteable - we have a fully decoded card and the
264 if (hwreg_present(m
) == 0)
267 /* write a distinctive byte */
269 /* check that we read back what we wrote */
270 if (*m
!= (0xA5A0 | i
))
273 /* check for partial decode and wrap */
274 for (j
= 0; j
< i
; j
++) {
275 volatile unsigned short *p
= (unsigned short *)(membase
+ (j
* 0x1000));
276 if (*p
!= (0xA5A0 | j
))
280 local_irq_restore(flags
);
282 * in any case, we stopped once we tried one block too many,
283 * or once we reached 32K
288 static bool mac8390_rsrc_init(struct net_device
*dev
,
289 struct nubus_rsrc
*fres
,
290 enum mac8390_type cardtype
)
292 struct nubus_board
*board
= fres
->board
;
293 struct nubus_dir dir
;
294 struct nubus_dirent ent
;
296 volatile unsigned short *i
;
298 dev
->irq
= SLOT2IRQ(board
->slot
);
299 /* This is getting to be a habit */
300 dev
->base_addr
= board
->slot_addr
| ((board
->slot
& 0xf) << 20);
303 * Get some Nubus info - we will trust the card's idea
304 * of where its memory and registers are.
307 if (nubus_get_func_dir(fres
, &dir
) == -1) {
309 "Unable to get Nubus functional directory\n");
313 /* Get the MAC address */
314 if (nubus_find_rsrc(&dir
, NUBUS_RESID_MAC_ADDRESS
, &ent
) == -1) {
315 dev_info(&board
->dev
, "MAC address resource not found\n");
319 nubus_get_rsrc_mem(dev
->dev_addr
, &ent
, 6);
321 if (useresources
[cardtype
] == 1) {
322 nubus_rewinddir(&dir
);
323 if (nubus_find_rsrc(&dir
, NUBUS_RESID_MINOR_BASEOS
,
326 "Memory offset resource not found\n");
329 nubus_get_rsrc_mem(&offset
, &ent
, 4);
330 dev
->mem_start
= dev
->base_addr
+ offset
;
331 /* yes, this is how the Apple driver does it */
332 dev
->base_addr
= dev
->mem_start
+ 0x10000;
333 nubus_rewinddir(&dir
);
334 if (nubus_find_rsrc(&dir
, NUBUS_RESID_MINOR_LENGTH
,
336 dev_info(&board
->dev
,
337 "Memory length resource not found, probing\n");
338 offset
= mac8390_memsize(dev
->mem_start
);
340 nubus_get_rsrc_mem(&offset
, &ent
, 4);
342 dev
->mem_end
= dev
->mem_start
+ offset
;
345 case MAC8390_KINETICS
:
346 case MAC8390_DAYNA
: /* it's the same */
347 dev
->base_addr
= (int)(board
->slot_addr
+
349 dev
->mem_start
= (int)(board
->slot_addr
+
351 dev
->mem_end
= dev
->mem_start
+
352 mac8390_memsize(dev
->mem_start
);
354 case MAC8390_INTERLAN
:
355 dev
->base_addr
= (int)(board
->slot_addr
+
357 dev
->mem_start
= (int)(board
->slot_addr
+
359 dev
->mem_end
= dev
->mem_start
+
360 mac8390_memsize(dev
->mem_start
);
362 case MAC8390_CABLETRON
:
363 dev
->base_addr
= (int)(board
->slot_addr
+
364 CABLETRON_8390_BASE
);
365 dev
->mem_start
= (int)(board
->slot_addr
+
367 /* The base address is unreadable if 0x00
368 * has been written to the command register
369 * Reset the chip by writing E8390_NODMA +
370 * E8390_PAGE0 + E8390_STOP just to be
373 i
= (void *)dev
->base_addr
;
375 dev
->mem_end
= dev
->mem_start
+
376 mac8390_memsize(dev
->mem_start
);
381 "No known base address for card type\n");
389 static int mac8390_device_probe(struct nubus_board
*board
)
391 struct net_device
*dev
;
393 struct nubus_rsrc
*fres
;
394 enum mac8390_type cardtype
= MAC8390_NONE
;
396 dev
= ____alloc_ei_netdev(0);
400 SET_NETDEV_DEV(dev
, &board
->dev
);
402 for_each_board_func_rsrc(board
, fres
) {
403 if (fres
->category
!= NUBUS_CAT_NETWORK
||
404 fres
->type
!= NUBUS_TYPE_ETHERNET
)
407 cardtype
= mac8390_ident(fres
);
408 if (cardtype
== MAC8390_NONE
)
411 if (mac8390_rsrc_init(dev
, fres
, cardtype
))
417 err
= mac8390_initdev(dev
, board
, cardtype
);
421 err
= register_netdev(dev
);
425 nubus_set_drvdata(board
, dev
);
433 static int mac8390_device_remove(struct nubus_board
*board
)
435 struct net_device
*dev
= nubus_get_drvdata(board
);
437 unregister_netdev(dev
);
442 static struct nubus_driver mac8390_driver
= {
443 .probe
= mac8390_device_probe
,
444 .remove
= mac8390_device_remove
,
446 .name
= KBUILD_MODNAME
,
447 .owner
= THIS_MODULE
,
451 MODULE_AUTHOR("David Huggins-Daines <dhd@debian.org> and others");
452 MODULE_DESCRIPTION("Macintosh NS8390-based Nubus Ethernet driver");
453 MODULE_LICENSE("GPL");
455 static int __init
mac8390_init(void)
457 return nubus_driver_register(&mac8390_driver
);
459 module_init(mac8390_init
);
461 static void __exit
mac8390_exit(void)
463 nubus_driver_unregister(&mac8390_driver
);
465 module_exit(mac8390_exit
);
467 static const struct net_device_ops mac8390_netdev_ops
= {
468 .ndo_open
= mac8390_open
,
469 .ndo_stop
= mac8390_close
,
470 .ndo_start_xmit
= __ei_start_xmit
,
471 .ndo_tx_timeout
= __ei_tx_timeout
,
472 .ndo_get_stats
= __ei_get_stats
,
473 .ndo_set_rx_mode
= __ei_set_multicast_list
,
474 .ndo_validate_addr
= eth_validate_addr
,
475 .ndo_set_mac_address
= eth_mac_addr
,
476 #ifdef CONFIG_NET_POLL_CONTROLLER
477 .ndo_poll_controller
= __ei_poll
,
481 static int mac8390_initdev(struct net_device
*dev
, struct nubus_board
*board
,
482 enum mac8390_type type
)
484 static u32 fwrd4_offsets
[16] = {
490 static u32 back4_offsets
[16] = {
496 static u32 fwrd2_offsets
[16] = {
503 int access_bitmode
= 0;
505 /* Now fill in our stuff */
506 dev
->netdev_ops
= &mac8390_netdev_ops
;
508 /* GAR, ei_status is actually a macro even though it looks global */
509 ei_status
.name
= cardname
[type
];
510 ei_status
.word16
= word16
[type
];
512 /* Cabletron's TX/RX buffers are backwards */
513 if (type
== MAC8390_CABLETRON
) {
514 ei_status
.tx_start_page
= CABLETRON_TX_START_PG
;
515 ei_status
.rx_start_page
= CABLETRON_RX_START_PG
;
516 ei_status
.stop_page
= CABLETRON_RX_STOP_PG
;
517 ei_status
.rmem_start
= dev
->mem_start
;
518 ei_status
.rmem_end
= dev
->mem_start
+ CABLETRON_RX_STOP_PG
*256;
520 ei_status
.tx_start_page
= WD_START_PG
;
521 ei_status
.rx_start_page
= WD_START_PG
+ TX_PAGES
;
522 ei_status
.stop_page
= (dev
->mem_end
- dev
->mem_start
)/256;
523 ei_status
.rmem_start
= dev
->mem_start
+ TX_PAGES
*256;
524 ei_status
.rmem_end
= dev
->mem_end
;
527 /* Fill in model-specific information and functions */
529 case MAC8390_FARALLON
:
531 switch (mac8390_testio(dev
->mem_start
)) {
534 "Don't know how to access card memory\n");
538 /* 16 bit card, register map is reversed */
539 ei_status
.reset_8390
= mac8390_no_reset
;
540 ei_status
.block_input
= slow_sane_block_input
;
541 ei_status
.block_output
= slow_sane_block_output
;
542 ei_status
.get_8390_hdr
= slow_sane_get_8390_hdr
;
543 ei_status
.reg_offset
= back4_offsets
;
547 /* 32 bit card, register map is reversed */
548 ei_status
.reset_8390
= mac8390_no_reset
;
549 ei_status
.block_input
= sane_block_input
;
550 ei_status
.block_output
= sane_block_output
;
551 ei_status
.get_8390_hdr
= sane_get_8390_hdr
;
552 ei_status
.reg_offset
= back4_offsets
;
559 /* Some Asante cards pass the 32 bit test
560 * but overwrite system memory when run at 32 bit.
561 * so we run them all at 16 bit.
563 ei_status
.reset_8390
= mac8390_no_reset
;
564 ei_status
.block_input
= slow_sane_block_input
;
565 ei_status
.block_output
= slow_sane_block_output
;
566 ei_status
.get_8390_hdr
= slow_sane_get_8390_hdr
;
567 ei_status
.reg_offset
= back4_offsets
;
570 case MAC8390_CABLETRON
:
571 /* 16 bit card, register map is short forward */
572 ei_status
.reset_8390
= mac8390_no_reset
;
573 ei_status
.block_input
= slow_sane_block_input
;
574 ei_status
.block_output
= slow_sane_block_output
;
575 ei_status
.get_8390_hdr
= slow_sane_get_8390_hdr
;
576 ei_status
.reg_offset
= fwrd2_offsets
;
580 case MAC8390_KINETICS
:
581 /* 16 bit memory, register map is forward */
582 /* dayna and similar */
583 ei_status
.reset_8390
= mac8390_no_reset
;
584 ei_status
.block_input
= dayna_block_input
;
585 ei_status
.block_output
= dayna_block_output
;
586 ei_status
.get_8390_hdr
= dayna_get_8390_hdr
;
587 ei_status
.reg_offset
= fwrd4_offsets
;
590 case MAC8390_INTERLAN
:
591 /* 16 bit memory, register map is forward */
592 ei_status
.reset_8390
= interlan_reset
;
593 ei_status
.block_input
= slow_sane_block_input
;
594 ei_status
.block_output
= slow_sane_block_output
;
595 ei_status
.get_8390_hdr
= slow_sane_get_8390_hdr
;
596 ei_status
.reg_offset
= fwrd4_offsets
;
600 dev_err(&board
->dev
, "Unsupported card type\n");
604 __NS8390_init(dev
, 0);
606 /* Good, done, now spit out some messages */
607 dev_info(&board
->dev
, "%s (type %s)\n", board
->name
, cardname
[type
]);
608 dev_info(&board
->dev
, "MAC %pM, IRQ %d, %d KB shared memory at %#lx, %d-bit access.\n",
609 dev
->dev_addr
, dev
->irq
,
610 (unsigned int)(dev
->mem_end
- dev
->mem_start
) >> 10,
611 dev
->mem_start
, access_bitmode
? 32 : 16);
615 static int mac8390_open(struct net_device
*dev
)
620 err
= request_irq(dev
->irq
, __ei_interrupt
, 0, "8390 Ethernet", dev
);
622 pr_err("%s: unable to get IRQ %d\n", dev
->name
, dev
->irq
);
626 static int mac8390_close(struct net_device
*dev
)
628 free_irq(dev
->irq
, dev
);
633 static void mac8390_no_reset(struct net_device
*dev
)
635 struct ei_device
*ei_local
= netdev_priv(dev
);
638 netif_info(ei_local
, hw
, dev
, "reset not supported\n");
641 static void interlan_reset(struct net_device
*dev
)
643 unsigned char *target
= nubus_slot_addr(IRQ2SLOT(dev
->irq
));
644 struct ei_device
*ei_local
= netdev_priv(dev
);
646 netif_info(ei_local
, hw
, dev
, "Need to reset the NS8390 t=%lu...",
650 if (netif_msg_hw(ei_local
))
651 pr_cont("reset complete\n");
654 /* dayna_memcpy_fromio/dayna_memcpy_toio */
655 /* directly from daynaport.c by Alan Cox */
656 static void dayna_memcpy_fromcard(struct net_device
*dev
, void *to
, int from
,
659 volatile unsigned char *ptr
;
660 unsigned char *target
= to
;
661 from
<<= 1; /* word, skip overhead */
662 ptr
= (unsigned char *)(dev
->mem_start
+from
);
670 *(unsigned short *)target
= *(unsigned short volatile *)ptr
;
671 ptr
+= 4; /* skip cruft */
680 static void dayna_memcpy_tocard(struct net_device
*dev
, int to
,
681 const void *from
, int count
)
683 volatile unsigned short *ptr
;
684 const unsigned char *src
= from
;
685 to
<<= 1; /* word, skip overhead */
686 ptr
= (unsigned short *)(dev
->mem_start
+to
);
688 if (to
& 2) { /* avoid a byte write (stomps on other data) */
689 ptr
[-1] = (ptr
[-1]&0xFF00)|*src
++;
694 *ptr
++ = *(unsigned short *)src
; /* Copy and */
695 ptr
++; /* skip cruft */
701 /* card doesn't like byte writes */
702 *ptr
= (*ptr
& 0x00FF) | (*src
<< 8);
706 /* sane block input/output */
707 static void sane_get_8390_hdr(struct net_device
*dev
,
708 struct e8390_pkt_hdr
*hdr
, int ring_page
)
710 unsigned long hdr_start
= (ring_page
- WD_START_PG
)<<8;
711 memcpy_fromio(hdr
, (void __iomem
*)dev
->mem_start
+ hdr_start
, 4);
713 hdr
->count
= swab16(hdr
->count
);
716 static void sane_block_input(struct net_device
*dev
, int count
,
717 struct sk_buff
*skb
, int ring_offset
)
719 unsigned long xfer_base
= ring_offset
- (WD_START_PG
<<8);
720 unsigned long xfer_start
= xfer_base
+ dev
->mem_start
;
722 if (xfer_start
+ count
> ei_status
.rmem_end
) {
723 /* We must wrap the input move. */
724 int semi_count
= ei_status
.rmem_end
- xfer_start
;
725 memcpy_fromio(skb
->data
,
726 (void __iomem
*)dev
->mem_start
+ xfer_base
,
729 memcpy_fromio(skb
->data
+ semi_count
,
730 (void __iomem
*)ei_status
.rmem_start
, count
);
732 memcpy_fromio(skb
->data
,
733 (void __iomem
*)dev
->mem_start
+ xfer_base
,
738 static void sane_block_output(struct net_device
*dev
, int count
,
739 const unsigned char *buf
, int start_page
)
741 long shmem
= (start_page
- WD_START_PG
)<<8;
743 memcpy_toio((void __iomem
*)dev
->mem_start
+ shmem
, buf
, count
);
746 /* dayna block input/output */
747 static void dayna_get_8390_hdr(struct net_device
*dev
,
748 struct e8390_pkt_hdr
*hdr
, int ring_page
)
750 unsigned long hdr_start
= (ring_page
- WD_START_PG
)<<8;
752 dayna_memcpy_fromcard(dev
, hdr
, hdr_start
, 4);
754 hdr
->count
= (hdr
->count
& 0xFF) << 8 | (hdr
->count
>> 8);
757 static void dayna_block_input(struct net_device
*dev
, int count
,
758 struct sk_buff
*skb
, int ring_offset
)
760 unsigned long xfer_base
= ring_offset
- (WD_START_PG
<<8);
761 unsigned long xfer_start
= xfer_base
+dev
->mem_start
;
763 /* Note the offset math is done in card memory space which is word
764 per long onto our space. */
766 if (xfer_start
+ count
> ei_status
.rmem_end
) {
767 /* We must wrap the input move. */
768 int semi_count
= ei_status
.rmem_end
- xfer_start
;
769 dayna_memcpy_fromcard(dev
, skb
->data
, xfer_base
, semi_count
);
771 dayna_memcpy_fromcard(dev
, skb
->data
+ semi_count
,
772 ei_status
.rmem_start
- dev
->mem_start
,
775 dayna_memcpy_fromcard(dev
, skb
->data
, xfer_base
, count
);
779 static void dayna_block_output(struct net_device
*dev
, int count
,
780 const unsigned char *buf
,
783 long shmem
= (start_page
- WD_START_PG
)<<8;
785 dayna_memcpy_tocard(dev
, shmem
, buf
, count
);
788 /* Cabletron block I/O */
789 static void slow_sane_get_8390_hdr(struct net_device
*dev
,
790 struct e8390_pkt_hdr
*hdr
,
793 unsigned long hdr_start
= (ring_page
- WD_START_PG
)<<8;
794 word_memcpy_fromcard(hdr
, dev
->mem_start
+ hdr_start
, 4);
795 /* Register endianism - fix here rather than 8390.c */
796 hdr
->count
= (hdr
->count
&0xFF)<<8|(hdr
->count
>>8);
799 static void slow_sane_block_input(struct net_device
*dev
, int count
,
800 struct sk_buff
*skb
, int ring_offset
)
802 unsigned long xfer_base
= ring_offset
- (WD_START_PG
<<8);
803 unsigned long xfer_start
= xfer_base
+dev
->mem_start
;
805 if (xfer_start
+ count
> ei_status
.rmem_end
) {
806 /* We must wrap the input move. */
807 int semi_count
= ei_status
.rmem_end
- xfer_start
;
808 word_memcpy_fromcard(skb
->data
, dev
->mem_start
+ xfer_base
,
811 word_memcpy_fromcard(skb
->data
+ semi_count
,
812 ei_status
.rmem_start
, count
);
814 word_memcpy_fromcard(skb
->data
, dev
->mem_start
+ xfer_base
,
819 static void slow_sane_block_output(struct net_device
*dev
, int count
,
820 const unsigned char *buf
, int start_page
)
822 long shmem
= (start_page
- WD_START_PG
)<<8;
824 word_memcpy_tocard(dev
->mem_start
+ shmem
, buf
, count
);
827 static void word_memcpy_tocard(unsigned long tp
, const void *fp
, int count
)
829 volatile unsigned short *to
= (void *)tp
;
830 const unsigned short *from
= fp
;
839 static void word_memcpy_fromcard(void *tp
, unsigned long fp
, int count
)
841 unsigned short *to
= tp
;
842 const volatile unsigned short *from
= (const void *)fp
;