1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /* sb1000.c: A General Instruments SB1000 driver for linux. */
4 Written 1998 by Franco Venturi.
6 Copyright 1998 by Franco Venturi.
7 Copyright 1994,1995 by Donald Becker.
8 Copyright 1993 United States Government as represented by the
9 Director, National Security Agency.
11 This driver is for the General Instruments SB1000 (internal SURFboard)
13 The author may be reached as fventuri@mediaone.net
18 981115 Steven Hirsch <shirsch@adelphia.net>
20 Linus changed the timer interface. Should work on all recent
23 980608 Steven Hirsch <shirsch@adelphia.net>
25 Small changes to make it work with 2.1.x kernels. Hopefully,
26 nothing major will change before official release of Linux 2.2.
28 Merged with 2.2 - Alan Cox
31 static char version
[] = "sb1000.c:v1.1.2 6/01/98 (fventuri@mediaone.net)\n";
33 #include <linux/module.h>
34 #include <linux/kernel.h>
35 #include <linux/sched.h>
36 #include <linux/string.h>
37 #include <linux/interrupt.h>
38 #include <linux/errno.h>
39 #include <linux/if_cablemodem.h> /* for SIOGCM/SIOSCM stuff */
41 #include <linux/ioport.h>
42 #include <linux/netdevice.h>
43 #include <linux/if_arp.h>
44 #include <linux/skbuff.h>
45 #include <linux/delay.h> /* for udelay() */
46 #include <linux/etherdevice.h>
47 #include <linux/pnp.h>
48 #include <linux/init.h>
49 #include <linux/bitops.h>
50 #include <linux/gfp.h>
53 #include <asm/processor.h>
54 #include <linux/uaccess.h>
57 static int sb1000_debug
= SB1000_DEBUG
;
59 static const int sb1000_debug
= 1;
62 static const int SB1000_IO_EXTENT
= 8;
63 /* SB1000 Maximum Receive Unit */
64 static const int SB1000_MRU
= 1500; /* octects */
67 struct sb1000_private
{
68 struct sk_buff
*rx_skb
[NPIDS
];
70 unsigned int rx_frames
;
72 short rx_error_dpc_count
;
73 unsigned char rx_session_id
[NPIDS
];
74 unsigned char rx_frame_id
[NPIDS
];
75 unsigned char rx_pkt_type
[NPIDS
];
78 /* prototypes for Linux interface */
79 extern int sb1000_probe(struct net_device
*dev
);
80 static int sb1000_open(struct net_device
*dev
);
81 static int sb1000_dev_ioctl (struct net_device
*dev
, struct ifreq
*ifr
, int cmd
);
82 static netdev_tx_t
sb1000_start_xmit(struct sk_buff
*skb
,
83 struct net_device
*dev
);
84 static irqreturn_t
sb1000_interrupt(int irq
, void *dev_id
);
85 static int sb1000_close(struct net_device
*dev
);
88 /* SB1000 hardware routines to be used during open/configuration phases */
89 static int card_wait_for_busy_clear(const int ioaddr
[],
91 static int card_wait_for_ready(const int ioaddr
[], const char* name
,
93 static int card_send_command(const int ioaddr
[], const char* name
,
94 const unsigned char out
[], unsigned char in
[]);
96 /* SB1000 hardware routines to be used during frame rx interrupt */
97 static int sb1000_wait_for_ready(const int ioaddr
[], const char* name
);
98 static int sb1000_wait_for_ready_clear(const int ioaddr
[],
100 static void sb1000_send_command(const int ioaddr
[], const char* name
,
101 const unsigned char out
[]);
102 static void sb1000_read_status(const int ioaddr
[], unsigned char in
[]);
103 static void sb1000_issue_read_command(const int ioaddr
[],
106 /* SB1000 commands for open/configuration */
107 static int sb1000_reset(const int ioaddr
[], const char* name
);
108 static int sb1000_check_CRC(const int ioaddr
[], const char* name
);
109 static inline int sb1000_start_get_set_command(const int ioaddr
[],
111 static int sb1000_end_get_set_command(const int ioaddr
[],
113 static int sb1000_activate(const int ioaddr
[], const char* name
);
114 static int sb1000_get_firmware_version(const int ioaddr
[],
115 const char* name
, unsigned char version
[], int do_end
);
116 static int sb1000_get_frequency(const int ioaddr
[], const char* name
,
118 static int sb1000_set_frequency(const int ioaddr
[], const char* name
,
120 static int sb1000_get_PIDs(const int ioaddr
[], const char* name
,
122 static int sb1000_set_PIDs(const int ioaddr
[], const char* name
,
125 /* SB1000 commands for frame rx interrupt */
126 static int sb1000_rx(struct net_device
*dev
);
127 static void sb1000_error_dpc(struct net_device
*dev
);
129 static const struct pnp_device_id sb1000_pnp_ids
[] = {
133 MODULE_DEVICE_TABLE(pnp
, sb1000_pnp_ids
);
135 static const struct net_device_ops sb1000_netdev_ops
= {
136 .ndo_open
= sb1000_open
,
137 .ndo_start_xmit
= sb1000_start_xmit
,
138 .ndo_do_ioctl
= sb1000_dev_ioctl
,
139 .ndo_stop
= sb1000_close
,
140 .ndo_set_mac_address
= eth_mac_addr
,
141 .ndo_validate_addr
= eth_validate_addr
,
145 sb1000_probe_one(struct pnp_dev
*pdev
, const struct pnp_device_id
*id
)
147 struct net_device
*dev
;
148 unsigned short ioaddr
[2], irq
;
149 unsigned int serial_number
;
152 if (pnp_device_attach(pdev
) < 0)
154 if (pnp_activate_dev(pdev
) < 0)
157 if (!pnp_port_valid(pdev
, 0) || !pnp_port_valid(pdev
, 1))
159 if (!pnp_irq_valid(pdev
, 0))
162 serial_number
= pdev
->card
->serial
;
164 ioaddr
[0] = pnp_port_start(pdev
, 0);
165 ioaddr
[1] = pnp_port_start(pdev
, 0);
167 irq
= pnp_irq(pdev
, 0);
169 if (!request_region(ioaddr
[0], 16, "sb1000"))
171 if (!request_region(ioaddr
[1], 16, "sb1000"))
172 goto out_release_region0
;
174 dev
= alloc_etherdev(sizeof(struct sb1000_private
));
177 goto out_release_regions
;
181 dev
->base_addr
= ioaddr
[0];
182 /* mem_start holds the second I/O address */
183 dev
->mem_start
= ioaddr
[1];
186 if (sb1000_debug
> 0)
187 printk(KERN_NOTICE
"%s: sb1000 at (%#3.3lx,%#3.3lx), "
188 "S/N %#8.8x, IRQ %d.\n", dev
->name
, dev
->base_addr
,
189 dev
->mem_start
, serial_number
, dev
->irq
);
192 * The SB1000 is an rx-only cable modem device. The uplink is a modem
193 * and we do not want to arp on it.
195 dev
->flags
= IFF_POINTOPOINT
|IFF_NOARP
;
197 SET_NETDEV_DEV(dev
, &pdev
->dev
);
199 if (sb1000_debug
> 0)
200 printk(KERN_NOTICE
"%s", version
);
202 dev
->netdev_ops
= &sb1000_netdev_ops
;
204 /* hardware address is 0:0:serial_number */
205 dev
->dev_addr
[2] = serial_number
>> 24 & 0xff;
206 dev
->dev_addr
[3] = serial_number
>> 16 & 0xff;
207 dev
->dev_addr
[4] = serial_number
>> 8 & 0xff;
208 dev
->dev_addr
[5] = serial_number
>> 0 & 0xff;
210 pnp_set_drvdata(pdev
, dev
);
212 error
= register_netdev(dev
);
214 goto out_free_netdev
;
220 release_region(ioaddr
[1], 16);
222 release_region(ioaddr
[0], 16);
224 pnp_disable_dev(pdev
);
226 pnp_device_detach(pdev
);
231 sb1000_remove_one(struct pnp_dev
*pdev
)
233 struct net_device
*dev
= pnp_get_drvdata(pdev
);
235 unregister_netdev(dev
);
236 release_region(dev
->base_addr
, 16);
237 release_region(dev
->mem_start
, 16);
241 static struct pnp_driver sb1000_driver
= {
243 .id_table
= sb1000_pnp_ids
,
244 .probe
= sb1000_probe_one
,
245 .remove
= sb1000_remove_one
,
250 * SB1000 hardware routines to be used during open/configuration phases
253 static const int TimeOutJiffies
= (875 * HZ
) / 100;
255 /* Card Wait For Busy Clear (cannot be used during an interrupt) */
257 card_wait_for_busy_clear(const int ioaddr
[], const char* name
)
260 unsigned long timeout
;
262 a
= inb(ioaddr
[0] + 7);
263 timeout
= jiffies
+ TimeOutJiffies
;
264 while (a
& 0x80 || a
& 0x40) {
268 a
= inb(ioaddr
[0] + 7);
269 if (time_after_eq(jiffies
, timeout
)) {
270 printk(KERN_WARNING
"%s: card_wait_for_busy_clear timeout\n",
279 /* Card Wait For Ready (cannot be used during an interrupt) */
281 card_wait_for_ready(const int ioaddr
[], const char* name
, unsigned char in
[])
284 unsigned long timeout
;
286 a
= inb(ioaddr
[1] + 6);
287 timeout
= jiffies
+ TimeOutJiffies
;
288 while (a
& 0x80 || !(a
& 0x40)) {
292 a
= inb(ioaddr
[1] + 6);
293 if (time_after_eq(jiffies
, timeout
)) {
294 printk(KERN_WARNING
"%s: card_wait_for_ready timeout\n",
300 in
[1] = inb(ioaddr
[0] + 1);
301 in
[2] = inb(ioaddr
[0] + 2);
302 in
[3] = inb(ioaddr
[0] + 3);
303 in
[4] = inb(ioaddr
[0] + 4);
304 in
[0] = inb(ioaddr
[0] + 5);
305 in
[6] = inb(ioaddr
[0] + 6);
306 in
[5] = inb(ioaddr
[1] + 6);
310 /* Card Send Command (cannot be used during an interrupt) */
312 card_send_command(const int ioaddr
[], const char* name
,
313 const unsigned char out
[], unsigned char in
[])
317 if ((status
= card_wait_for_busy_clear(ioaddr
, name
)))
319 outb(0xa0, ioaddr
[0] + 6);
320 outb(out
[2], ioaddr
[0] + 1);
321 outb(out
[3], ioaddr
[0] + 2);
322 outb(out
[4], ioaddr
[0] + 3);
323 outb(out
[5], ioaddr
[0] + 4);
324 outb(out
[1], ioaddr
[0] + 5);
325 outb(0xa0, ioaddr
[0] + 6);
326 outb(out
[0], ioaddr
[0] + 7);
327 if (out
[0] != 0x20 && out
[0] != 0x30) {
328 if ((status
= card_wait_for_ready(ioaddr
, name
, in
)))
331 if (sb1000_debug
> 3)
332 printk(KERN_DEBUG
"%s: card_send_command "
333 "out: %02x%02x%02x%02x%02x%02x "
334 "in: %02x%02x%02x%02x%02x%02x%02x\n", name
,
335 out
[0], out
[1], out
[2], out
[3], out
[4], out
[5],
336 in
[0], in
[1], in
[2], in
[3], in
[4], in
[5], in
[6]);
338 if (sb1000_debug
> 3)
339 printk(KERN_DEBUG
"%s: card_send_command "
340 "out: %02x%02x%02x%02x%02x%02x\n", name
,
341 out
[0], out
[1], out
[2], out
[3], out
[4], out
[5]);
344 if (out
[1] != 0x1b) {
345 if (out
[0] >= 0x80 && in
[0] != (out
[1] | 0x80))
353 * SB1000 hardware routines to be used during frame rx interrupt
355 static const int Sb1000TimeOutJiffies
= 7 * HZ
;
357 /* Card Wait For Ready (to be used during frame rx) */
359 sb1000_wait_for_ready(const int ioaddr
[], const char* name
)
361 unsigned long timeout
;
363 timeout
= jiffies
+ Sb1000TimeOutJiffies
;
364 while (inb(ioaddr
[1] + 6) & 0x80) {
365 if (time_after_eq(jiffies
, timeout
)) {
366 printk(KERN_WARNING
"%s: sb1000_wait_for_ready timeout\n",
371 timeout
= jiffies
+ Sb1000TimeOutJiffies
;
372 while (!(inb(ioaddr
[1] + 6) & 0x40)) {
373 if (time_after_eq(jiffies
, timeout
)) {
374 printk(KERN_WARNING
"%s: sb1000_wait_for_ready timeout\n",
383 /* Card Wait For Ready Clear (to be used during frame rx) */
385 sb1000_wait_for_ready_clear(const int ioaddr
[], const char* name
)
387 unsigned long timeout
;
389 timeout
= jiffies
+ Sb1000TimeOutJiffies
;
390 while (inb(ioaddr
[1] + 6) & 0x80) {
391 if (time_after_eq(jiffies
, timeout
)) {
392 printk(KERN_WARNING
"%s: sb1000_wait_for_ready_clear timeout\n",
397 timeout
= jiffies
+ Sb1000TimeOutJiffies
;
398 while (inb(ioaddr
[1] + 6) & 0x40) {
399 if (time_after_eq(jiffies
, timeout
)) {
400 printk(KERN_WARNING
"%s: sb1000_wait_for_ready_clear timeout\n",
408 /* Card Send Command (to be used during frame rx) */
410 sb1000_send_command(const int ioaddr
[], const char* name
,
411 const unsigned char out
[])
413 outb(out
[2], ioaddr
[0] + 1);
414 outb(out
[3], ioaddr
[0] + 2);
415 outb(out
[4], ioaddr
[0] + 3);
416 outb(out
[5], ioaddr
[0] + 4);
417 outb(out
[1], ioaddr
[0] + 5);
418 outb(out
[0], ioaddr
[0] + 7);
419 if (sb1000_debug
> 3)
420 printk(KERN_DEBUG
"%s: sb1000_send_command out: %02x%02x%02x%02x"
421 "%02x%02x\n", name
, out
[0], out
[1], out
[2], out
[3], out
[4], out
[5]);
424 /* Card Read Status (to be used during frame rx) */
426 sb1000_read_status(const int ioaddr
[], unsigned char in
[])
428 in
[1] = inb(ioaddr
[0] + 1);
429 in
[2] = inb(ioaddr
[0] + 2);
430 in
[3] = inb(ioaddr
[0] + 3);
431 in
[4] = inb(ioaddr
[0] + 4);
432 in
[0] = inb(ioaddr
[0] + 5);
435 /* Issue Read Command (to be used during frame rx) */
437 sb1000_issue_read_command(const int ioaddr
[], const char* name
)
439 static const unsigned char Command0
[6] = {0x20, 0x00, 0x00, 0x01, 0x00, 0x00};
441 sb1000_wait_for_ready_clear(ioaddr
, name
);
442 outb(0xa0, ioaddr
[0] + 6);
443 sb1000_send_command(ioaddr
, name
, Command0
);
448 * SB1000 commands for open/configuration
450 /* reset SB1000 card */
452 sb1000_reset(const int ioaddr
[], const char* name
)
454 static const unsigned char Command0
[6] = {0x80, 0x16, 0x00, 0x00, 0x00, 0x00};
459 port
= ioaddr
[1] + 6;
473 if ((status
= card_send_command(ioaddr
, name
, Command0
, st
)))
480 /* check SB1000 firmware CRC */
482 sb1000_check_CRC(const int ioaddr
[], const char* name
)
484 static const unsigned char Command0
[6] = {0x80, 0x1f, 0x00, 0x00, 0x00, 0x00};
490 if ((status
= card_send_command(ioaddr
, name
, Command0
, st
)))
492 if (st
[1] != st
[3] || st
[2] != st
[4])
498 sb1000_start_get_set_command(const int ioaddr
[], const char* name
)
500 static const unsigned char Command0
[6] = {0x80, 0x1b, 0x00, 0x00, 0x00, 0x00};
504 return card_send_command(ioaddr
, name
, Command0
, st
);
508 sb1000_end_get_set_command(const int ioaddr
[], const char* name
)
510 static const unsigned char Command0
[6] = {0x80, 0x1b, 0x02, 0x00, 0x00, 0x00};
511 static const unsigned char Command1
[6] = {0x20, 0x00, 0x00, 0x00, 0x00, 0x00};
516 if ((status
= card_send_command(ioaddr
, name
, Command0
, st
)))
518 return card_send_command(ioaddr
, name
, Command1
, st
);
522 sb1000_activate(const int ioaddr
[], const char* name
)
524 static const unsigned char Command0
[6] = {0x80, 0x11, 0x00, 0x00, 0x00, 0x00};
525 static const unsigned char Command1
[6] = {0x80, 0x16, 0x00, 0x00, 0x00, 0x00};
531 status
= card_send_command(ioaddr
, name
, Command0
, st
);
534 status
= card_send_command(ioaddr
, name
, Command1
, st
);
538 status
= sb1000_start_get_set_command(ioaddr
, name
);
544 return sb1000_start_get_set_command(ioaddr
, name
);
547 /* get SB1000 firmware version */
549 sb1000_get_firmware_version(const int ioaddr
[], const char* name
,
550 unsigned char version
[], int do_end
)
552 static const unsigned char Command0
[6] = {0x80, 0x23, 0x00, 0x00, 0x00, 0x00};
557 if ((status
= sb1000_start_get_set_command(ioaddr
, name
)))
559 if ((status
= card_send_command(ioaddr
, name
, Command0
, st
)))
566 return sb1000_end_get_set_command(ioaddr
, name
);
571 /* get SB1000 frequency */
573 sb1000_get_frequency(const int ioaddr
[], const char* name
, int* frequency
)
575 static const unsigned char Command0
[6] = {0x80, 0x44, 0x00, 0x00, 0x00, 0x00};
581 if ((status
= sb1000_start_get_set_command(ioaddr
, name
)))
583 if ((status
= card_send_command(ioaddr
, name
, Command0
, st
)))
585 *frequency
= ((st
[1] << 8 | st
[2]) << 8 | st
[3]) << 8 | st
[4];
586 return sb1000_end_get_set_command(ioaddr
, name
);
589 /* set SB1000 frequency */
591 sb1000_set_frequency(const int ioaddr
[], const char* name
, int frequency
)
595 unsigned char Command0
[6] = {0x80, 0x29, 0x00, 0x00, 0x00, 0x00};
597 const int FrequencyLowerLimit
= 57000;
598 const int FrequencyUpperLimit
= 804000;
600 if (frequency
< FrequencyLowerLimit
|| frequency
> FrequencyUpperLimit
) {
601 printk(KERN_ERR
"%s: frequency chosen (%d kHz) is not in the range "
602 "[%d,%d] kHz\n", name
, frequency
, FrequencyLowerLimit
,
603 FrequencyUpperLimit
);
607 if ((status
= sb1000_start_get_set_command(ioaddr
, name
)))
609 Command0
[5] = frequency
& 0xff;
611 Command0
[4] = frequency
& 0xff;
613 Command0
[3] = frequency
& 0xff;
615 Command0
[2] = frequency
& 0xff;
616 return card_send_command(ioaddr
, name
, Command0
, st
);
619 /* get SB1000 PIDs */
621 sb1000_get_PIDs(const int ioaddr
[], const char* name
, short PID
[])
623 static const unsigned char Command0
[6] = {0x80, 0x40, 0x00, 0x00, 0x00, 0x00};
624 static const unsigned char Command1
[6] = {0x80, 0x41, 0x00, 0x00, 0x00, 0x00};
625 static const unsigned char Command2
[6] = {0x80, 0x42, 0x00, 0x00, 0x00, 0x00};
626 static const unsigned char Command3
[6] = {0x80, 0x43, 0x00, 0x00, 0x00, 0x00};
632 if ((status
= sb1000_start_get_set_command(ioaddr
, name
)))
635 if ((status
= card_send_command(ioaddr
, name
, Command0
, st
)))
637 PID
[0] = st
[1] << 8 | st
[2];
639 if ((status
= card_send_command(ioaddr
, name
, Command1
, st
)))
641 PID
[1] = st
[1] << 8 | st
[2];
643 if ((status
= card_send_command(ioaddr
, name
, Command2
, st
)))
645 PID
[2] = st
[1] << 8 | st
[2];
647 if ((status
= card_send_command(ioaddr
, name
, Command3
, st
)))
649 PID
[3] = st
[1] << 8 | st
[2];
651 return sb1000_end_get_set_command(ioaddr
, name
);
654 /* set SB1000 PIDs */
656 sb1000_set_PIDs(const int ioaddr
[], const char* name
, const short PID
[])
658 static const unsigned char Command4
[6] = {0x80, 0x2e, 0x00, 0x00, 0x00, 0x00};
663 unsigned char Command0
[6] = {0x80, 0x31, 0x00, 0x00, 0x00, 0x00};
664 unsigned char Command1
[6] = {0x80, 0x32, 0x00, 0x00, 0x00, 0x00};
665 unsigned char Command2
[6] = {0x80, 0x33, 0x00, 0x00, 0x00, 0x00};
666 unsigned char Command3
[6] = {0x80, 0x34, 0x00, 0x00, 0x00, 0x00};
669 if ((status
= sb1000_start_get_set_command(ioaddr
, name
)))
673 Command0
[3] = p
& 0xff;
675 Command0
[2] = p
& 0xff;
676 if ((status
= card_send_command(ioaddr
, name
, Command0
, st
)))
680 Command1
[3] = p
& 0xff;
682 Command1
[2] = p
& 0xff;
683 if ((status
= card_send_command(ioaddr
, name
, Command1
, st
)))
687 Command2
[3] = p
& 0xff;
689 Command2
[2] = p
& 0xff;
690 if ((status
= card_send_command(ioaddr
, name
, Command2
, st
)))
694 Command3
[3] = p
& 0xff;
696 Command3
[2] = p
& 0xff;
697 if ((status
= card_send_command(ioaddr
, name
, Command3
, st
)))
700 if ((status
= card_send_command(ioaddr
, name
, Command4
, st
)))
702 return sb1000_end_get_set_command(ioaddr
, name
);
707 sb1000_print_status_buffer(const char* name
, unsigned char st
[],
708 unsigned char buffer
[], int size
)
712 printk(KERN_DEBUG
"%s: status: %02x %02x\n", name
, st
[0], st
[1]);
713 if (buffer
[24] == 0x08 && buffer
[25] == 0x00 && buffer
[26] == 0x45) {
714 printk(KERN_DEBUG
"%s: length: %d protocol: %d from: %d.%d.%d.%d:%d "
715 "to %d.%d.%d.%d:%d\n", name
, buffer
[28] << 8 | buffer
[29],
716 buffer
[35], buffer
[38], buffer
[39], buffer
[40], buffer
[41],
717 buffer
[46] << 8 | buffer
[47],
718 buffer
[42], buffer
[43], buffer
[44], buffer
[45],
719 buffer
[48] << 8 | buffer
[49]);
721 for (i
= 0, k
= 0; i
< (size
+ 7) / 8; i
++) {
722 printk(KERN_DEBUG
"%s: %s", name
, i
? " " : "buffer:");
723 for (j
= 0; j
< 8 && k
< size
; j
++, k
++)
724 printk(" %02x", buffer
[k
]);
731 * SB1000 commands for frame rx interrupt
733 /* receive a single frame and assemble datagram
734 * (this is the heart of the interrupt routine)
737 sb1000_rx(struct net_device
*dev
)
740 #define FRAMESIZE 184
741 unsigned char st
[2], buffer
[FRAMESIZE
], session_id
, frame_id
;
744 unsigned int skbsize
;
746 struct sb1000_private
*lp
= netdev_priv(dev
);
747 struct net_device_stats
*stats
= &dev
->stats
;
749 /* SB1000 frame constants */
750 const int FrameSize
= FRAMESIZE
;
751 const int NewDatagramHeaderSkip
= 8;
752 const int NewDatagramHeaderSize
= NewDatagramHeaderSkip
+ 18;
753 const int NewDatagramDataSize
= FrameSize
- NewDatagramHeaderSize
;
754 const int ContDatagramHeaderSkip
= 7;
755 const int ContDatagramHeaderSize
= ContDatagramHeaderSkip
+ 1;
756 const int ContDatagramDataSize
= FrameSize
- ContDatagramHeaderSize
;
757 const int TrailerSize
= 4;
759 ioaddr
= dev
->base_addr
;
761 insw(ioaddr
, (unsigned short*) st
, 1);
763 printk("cm0: received: %02x %02x\n", st
[0], st
[1]);
764 #endif /* XXXDEBUG */
767 /* decide if it is a good or bad frame */
768 for (ns
= 0; ns
< NPIDS
; ns
++) {
769 session_id
= lp
->rx_session_id
[ns
];
770 frame_id
= lp
->rx_frame_id
[ns
];
771 if (st
[0] == session_id
) {
772 if (st
[1] == frame_id
|| (!frame_id
&& (st
[1] & 0xf0) == 0x30)) {
774 } else if ((st
[1] & 0xf0) == 0x30 && (st
[0] & 0x40)) {
779 } else if (st
[0] == (session_id
| 0x40)) {
780 if ((st
[1] & 0xf0) == 0x30) {
790 stats
->rx_frame_errors
++;
791 skb
= lp
->rx_skb
[ns
];
792 if (sb1000_debug
> 1)
793 printk(KERN_WARNING
"%s: missing frame(s): got %02x %02x "
794 "expecting %02x %02x\n", dev
->name
, st
[0], st
[1],
795 skb
? session_id
: session_id
| 0x40, frame_id
);
802 lp
->rx_frame_id
[ns
] = 0x30 | ((st
[1] + 1) & 0x0f);
805 /* get data length */
806 insw(ioaddr
, buffer
, NewDatagramHeaderSize
/ 2);
808 printk("cm0: IP identification: %02x%02x fragment offset: %02x%02x\n", buffer
[30], buffer
[31], buffer
[32], buffer
[33]);
809 #endif /* XXXDEBUG */
810 if (buffer
[0] != NewDatagramHeaderSkip
) {
811 if (sb1000_debug
> 1)
812 printk(KERN_WARNING
"%s: new datagram header skip error: "
813 "got %02x expecting %02x\n", dev
->name
, buffer
[0],
814 NewDatagramHeaderSkip
);
815 stats
->rx_length_errors
++;
816 insw(ioaddr
, buffer
, NewDatagramDataSize
/ 2);
819 dlen
= ((buffer
[NewDatagramHeaderSkip
+ 3] & 0x0f) << 8 |
820 buffer
[NewDatagramHeaderSkip
+ 4]) - 17;
821 if (dlen
> SB1000_MRU
) {
822 if (sb1000_debug
> 1)
823 printk(KERN_WARNING
"%s: datagram length (%d) greater "
824 "than MRU (%d)\n", dev
->name
, dlen
, SB1000_MRU
);
825 stats
->rx_length_errors
++;
826 insw(ioaddr
, buffer
, NewDatagramDataSize
/ 2);
829 lp
->rx_dlen
[ns
] = dlen
;
830 /* compute size to allocate for datagram */
831 skbsize
= dlen
+ FrameSize
;
832 if ((skb
= alloc_skb(skbsize
, GFP_ATOMIC
)) == NULL
) {
833 if (sb1000_debug
> 1)
834 printk(KERN_WARNING
"%s: can't allocate %d bytes long "
835 "skbuff\n", dev
->name
, skbsize
);
837 insw(ioaddr
, buffer
, NewDatagramDataSize
/ 2);
841 skb_reset_mac_header(skb
);
842 skb
->protocol
= (unsigned short) buffer
[NewDatagramHeaderSkip
+ 16];
843 insw(ioaddr
, skb_put(skb
, NewDatagramDataSize
),
844 NewDatagramDataSize
/ 2);
845 lp
->rx_skb
[ns
] = skb
;
847 /* continuation of previous datagram */
848 insw(ioaddr
, buffer
, ContDatagramHeaderSize
/ 2);
849 if (buffer
[0] != ContDatagramHeaderSkip
) {
850 if (sb1000_debug
> 1)
851 printk(KERN_WARNING
"%s: cont datagram header skip error: "
852 "got %02x expecting %02x\n", dev
->name
, buffer
[0],
853 ContDatagramHeaderSkip
);
854 stats
->rx_length_errors
++;
855 insw(ioaddr
, buffer
, ContDatagramDataSize
/ 2);
858 skb
= lp
->rx_skb
[ns
];
859 insw(ioaddr
, skb_put(skb
, ContDatagramDataSize
),
860 ContDatagramDataSize
/ 2);
861 dlen
= lp
->rx_dlen
[ns
];
863 if (skb
->len
< dlen
+ TrailerSize
) {
864 lp
->rx_session_id
[ns
] &= ~0x40;
868 /* datagram completed: send to upper level */
871 stats
->rx_bytes
+=dlen
;
873 lp
->rx_skb
[ns
] = NULL
;
874 lp
->rx_session_id
[ns
] |= 0x40;
878 insw(ioaddr
, buffer
, FrameSize
/ 2);
879 if (sb1000_debug
> 1)
880 printk(KERN_WARNING
"%s: frame error: got %02x %02x\n",
881 dev
->name
, st
[0], st
[1]);
882 stats
->rx_frame_errors
++;
884 if (sb1000_debug
> 2)
885 sb1000_print_status_buffer(dev
->name
, st
, buffer
, FrameSize
);
889 if ((skb
= lp
->rx_skb
[ns
])) {
891 lp
->rx_skb
[ns
] = NULL
;
893 lp
->rx_session_id
[ns
] |= 0x40;
899 sb1000_error_dpc(struct net_device
*dev
)
901 static const unsigned char Command0
[6] = {0x80, 0x26, 0x00, 0x00, 0x00, 0x00};
906 struct sb1000_private
*lp
= netdev_priv(dev
);
907 const int ErrorDpcCounterInitialize
= 200;
909 ioaddr
[0] = dev
->base_addr
;
910 /* mem_start holds the second I/O address */
911 ioaddr
[1] = dev
->mem_start
;
914 sb1000_wait_for_ready_clear(ioaddr
, name
);
915 sb1000_send_command(ioaddr
, name
, Command0
);
916 sb1000_wait_for_ready(ioaddr
, name
);
917 sb1000_read_status(ioaddr
, st
);
919 lp
->rx_error_dpc_count
= ErrorDpcCounterInitialize
;
924 * Linux interface functions
927 sb1000_open(struct net_device
*dev
)
930 int ioaddr
[2], status
;
931 struct sb1000_private
*lp
= netdev_priv(dev
);
932 const unsigned short FirmwareVersion
[] = {0x01, 0x01};
934 ioaddr
[0] = dev
->base_addr
;
935 /* mem_start holds the second I/O address */
936 ioaddr
[1] = dev
->mem_start
;
939 /* initialize sb1000 */
940 if ((status
= sb1000_reset(ioaddr
, name
)))
943 if ((status
= sb1000_check_CRC(ioaddr
, name
)))
946 /* initialize private data before board can catch interrupts */
947 lp
->rx_skb
[0] = NULL
;
948 lp
->rx_skb
[1] = NULL
;
949 lp
->rx_skb
[2] = NULL
;
950 lp
->rx_skb
[3] = NULL
;
956 lp
->rx_error_count
= 0;
957 lp
->rx_error_dpc_count
= 0;
958 lp
->rx_session_id
[0] = 0x50;
959 lp
->rx_session_id
[1] = 0x48;
960 lp
->rx_session_id
[2] = 0x44;
961 lp
->rx_session_id
[3] = 0x42;
962 lp
->rx_frame_id
[0] = 0;
963 lp
->rx_frame_id
[1] = 0;
964 lp
->rx_frame_id
[2] = 0;
965 lp
->rx_frame_id
[3] = 0;
966 if (request_irq(dev
->irq
, sb1000_interrupt
, 0, "sb1000", dev
)) {
970 if (sb1000_debug
> 2)
971 printk(KERN_DEBUG
"%s: Opening, IRQ %d\n", name
, dev
->irq
);
973 /* Activate board and check firmware version */
975 if ((status
= sb1000_activate(ioaddr
, name
)))
978 if ((status
= sb1000_get_firmware_version(ioaddr
, name
, version
, 0)))
980 if (version
[0] != FirmwareVersion
[0] || version
[1] != FirmwareVersion
[1])
981 printk(KERN_WARNING
"%s: found firmware version %x.%02x "
982 "(should be %x.%02x)\n", name
, version
[0], version
[1],
983 FirmwareVersion
[0], FirmwareVersion
[1]);
986 netif_start_queue(dev
);
987 return 0; /* Always succeed */
990 static int sb1000_dev_ioctl(struct net_device
*dev
, struct ifreq
*ifr
, int cmd
)
993 unsigned char version
[2];
995 int ioaddr
[2], status
, frequency
;
996 unsigned int stats
[5];
997 struct sb1000_private
*lp
= netdev_priv(dev
);
999 if (!(dev
&& dev
->flags
& IFF_UP
))
1002 ioaddr
[0] = dev
->base_addr
;
1003 /* mem_start holds the second I/O address */
1004 ioaddr
[1] = dev
->mem_start
;
1008 case SIOCGCMSTATS
: /* get statistics */
1009 stats
[0] = dev
->stats
.rx_bytes
;
1010 stats
[1] = lp
->rx_frames
;
1011 stats
[2] = dev
->stats
.rx_packets
;
1012 stats
[3] = dev
->stats
.rx_errors
;
1013 stats
[4] = dev
->stats
.rx_dropped
;
1014 if(copy_to_user(ifr
->ifr_data
, stats
, sizeof(stats
)))
1019 case SIOCGCMFIRMWARE
: /* get firmware version */
1020 if ((status
= sb1000_get_firmware_version(ioaddr
, name
, version
, 1)))
1022 if(copy_to_user(ifr
->ifr_data
, version
, sizeof(version
)))
1026 case SIOCGCMFREQUENCY
: /* get frequency */
1027 if ((status
= sb1000_get_frequency(ioaddr
, name
, &frequency
)))
1029 if(put_user(frequency
, (int __user
*) ifr
->ifr_data
))
1033 case SIOCSCMFREQUENCY
: /* set frequency */
1034 if (!capable(CAP_NET_ADMIN
))
1036 if(get_user(frequency
, (int __user
*) ifr
->ifr_data
))
1038 if ((status
= sb1000_set_frequency(ioaddr
, name
, frequency
)))
1042 case SIOCGCMPIDS
: /* get PIDs */
1043 if ((status
= sb1000_get_PIDs(ioaddr
, name
, PID
)))
1045 if(copy_to_user(ifr
->ifr_data
, PID
, sizeof(PID
)))
1049 case SIOCSCMPIDS
: /* set PIDs */
1050 if (!capable(CAP_NET_ADMIN
))
1052 if(copy_from_user(PID
, ifr
->ifr_data
, sizeof(PID
)))
1054 if ((status
= sb1000_set_PIDs(ioaddr
, name
, PID
)))
1056 /* set session_id, frame_id and pkt_type too */
1057 lp
->rx_session_id
[0] = 0x50 | (PID
[0] & 0x0f);
1058 lp
->rx_session_id
[1] = 0x48;
1059 lp
->rx_session_id
[2] = 0x44;
1060 lp
->rx_session_id
[3] = 0x42;
1061 lp
->rx_frame_id
[0] = 0;
1062 lp
->rx_frame_id
[1] = 0;
1063 lp
->rx_frame_id
[2] = 0;
1064 lp
->rx_frame_id
[3] = 0;
1074 /* transmit function: do nothing since SB1000 can't send anything out */
1076 sb1000_start_xmit(struct sk_buff
*skb
, struct net_device
*dev
)
1078 printk(KERN_WARNING
"%s: trying to transmit!!!\n", dev
->name
);
1079 /* sb1000 can't xmit datagrams */
1081 return NETDEV_TX_OK
;
1084 /* SB1000 interrupt handler. */
1085 static irqreturn_t
sb1000_interrupt(int irq
, void *dev_id
)
1087 static const unsigned char Command0
[6] = {0x80, 0x2c, 0x00, 0x00, 0x00, 0x00};
1088 static const unsigned char Command1
[6] = {0x80, 0x2e, 0x00, 0x00, 0x00, 0x00};
1093 struct net_device
*dev
= dev_id
;
1094 struct sb1000_private
*lp
= netdev_priv(dev
);
1096 const int MaxRxErrorCount
= 6;
1098 ioaddr
[0] = dev
->base_addr
;
1099 /* mem_start holds the second I/O address */
1100 ioaddr
[1] = dev
->mem_start
;
1103 /* is it a good interrupt? */
1104 st
= inb(ioaddr
[1] + 6);
1105 if (!(st
& 0x08 && st
& 0x20)) {
1109 if (sb1000_debug
> 3)
1110 printk(KERN_DEBUG
"%s: entering interrupt\n", dev
->name
);
1112 st
= inb(ioaddr
[0] + 7);
1114 lp
->rx_error_count
++;
1116 udelay(SB1000_DELAY
);
1117 #endif /* SB1000_DELAY */
1118 sb1000_issue_read_command(ioaddr
, name
);
1120 sb1000_error_dpc(dev
);
1121 sb1000_issue_read_command(ioaddr
, name
);
1123 if (lp
->rx_error_dpc_count
&& !(--lp
->rx_error_dpc_count
)) {
1124 sb1000_wait_for_ready_clear(ioaddr
, name
);
1125 sb1000_send_command(ioaddr
, name
, Command0
);
1126 sb1000_wait_for_ready(ioaddr
, name
);
1127 sb1000_issue_read_command(ioaddr
, name
);
1129 if (lp
->rx_error_count
>= MaxRxErrorCount
) {
1130 sb1000_wait_for_ready_clear(ioaddr
, name
);
1131 sb1000_send_command(ioaddr
, name
, Command1
);
1132 sb1000_wait_for_ready(ioaddr
, name
);
1133 sb1000_issue_read_command(ioaddr
, name
);
1134 lp
->rx_error_count
= 0;
1140 static int sb1000_close(struct net_device
*dev
)
1144 struct sb1000_private
*lp
= netdev_priv(dev
);
1146 if (sb1000_debug
> 2)
1147 printk(KERN_DEBUG
"%s: Shutting down sb1000.\n", dev
->name
);
1149 netif_stop_queue(dev
);
1151 ioaddr
[0] = dev
->base_addr
;
1152 /* mem_start holds the second I/O address */
1153 ioaddr
[1] = dev
->mem_start
;
1155 free_irq(dev
->irq
, dev
);
1156 /* If we don't do this, we can't re-insmod it later. */
1157 release_region(ioaddr
[1], SB1000_IO_EXTENT
);
1158 release_region(ioaddr
[0], SB1000_IO_EXTENT
);
1160 /* free rx_skb's if needed */
1161 for (i
=0; i
<4; i
++) {
1162 if (lp
->rx_skb
[i
]) {
1163 dev_kfree_skb(lp
->rx_skb
[i
]);
1169 MODULE_AUTHOR("Franco Venturi <fventuri@mediaone.net>");
1170 MODULE_DESCRIPTION("General Instruments SB1000 driver");
1171 MODULE_LICENSE("GPL");
1173 module_pnp_driver(sb1000_driver
);