1 /* Intel Professional Workstation/panther ethernet driver */
2 /* lp486e.c: A panther 82596 ethernet driver for linux. */
3 /*
4     History and copyrights:
5 
6     Driver skeleton
7         Written 1993 by Donald Becker.
8         Copyright 1993 United States Government as represented by the Director,
9         National Security Agency.  This software may only be used and
10 	distributed according to the terms of the GNU General Public License
11 	as modified by SRC, incorporated herein by reference.
12 
13         The author may be reached as becker@scyld.com, or C/O
14 	Scyld Computing Corporation
15 	410 Severn Ave., Suite 210
16 	Annapolis MD 21403
17 
18     Apricot
19         Written 1994 by Mark Evans.
20         This driver is for the Apricot 82596 bus-master interface
21 
22         Modularised 12/94 Mark Evans
23 
24     Professional Workstation
25 	Derived from apricot.c by Ard van Breemen
26 	<ard@murphy.nl>|<ard@cstmel.hobby.nl>|<ard@cstmel.nl.eu.org>
27 
28 	Credits:
29 	Thanks to Murphy Software BV for letting me write this in their time.
30 	Well, actually, I get paid doing this...
31 	(Also: see http://www.murphy.nl for murphy, and my homepage ~ard for
32 	more information on the Professional Workstation)
33 
34     Present version
35 	aeb@cwi.nl
36 */
37 /*
38     There are currently two motherboards that I know of in the
39     professional workstation. The only one that I know is the
40     intel panther motherboard. -- ard
41 */
42 /*
43 The pws is equipped with an intel 82596. This is a very intelligent controller
44 which runs its own micro-code. Communication with the hostprocessor is done
45 through linked lists of commands and buffers in the hostprocessors memory.
46 A complete description of the 82596 is available from intel. Search for
47 a file called "29021806.pdf". It is a complete description of the chip itself.
48 To use it for the pws some additions are needed regarding generation of
49 the PORT and CA signal, and the interrupt glue needed for a pc.
50 I/O map:
51 PORT  SIZE ACTION MEANING
52 0xCB0    2 WRITE  Lower 16 bits for PORT command
53 0xCB2    2 WRITE  Upper 16 bits for PORT command, and issue of PORT command
54 0xCB4    1 WRITE  Generation of CA signal
55 0xCB8    1 WRITE  Clear interrupt glue
56 All other communication is through memory!
57 */
58 
59 #include <linux/module.h>
60 #include <linux/init.h>
61 #include <linux/delay.h>
62 #include <linux/kernel.h>
63 #include <linux/string.h>
64 #include <linux/errno.h>
65 #include <linux/ioport.h>
66 #include <linux/slab.h>
67 #include <linux/interrupt.h>
68 #include <linux/netdevice.h>
69 #include <linux/etherdevice.h>
70 #include <linux/skbuff.h>
71 #include <linux/bitops.h>
72 
73 #include <asm/io.h>
74 #include <asm/dma.h>
75 
76 #define DRV_NAME "lp486e"
77 
78 /* debug print flags */
79 #define LOG_SRCDST    0x80000000
80 #define LOG_STATINT   0x40000000
81 #define LOG_STARTINT  0x20000000
82 
83 #define i596_debug debug
84 
85 static int i596_debug = 0;
86 
87 static const char * const medianame[] = {
88 	"10baseT", "AUI",
89 	"10baseT-FD", "AUI-FD",
90 };
91 
92 #define LP486E_TOTAL_SIZE 16
93 
94 #define I596_NULL (0xffffffff)
95 
96 #define CMD_EOL		0x8000	/* The last command of the list, stop. */
97 #define CMD_SUSP	0x4000	/* Suspend after doing cmd. */
98 #define CMD_INTR	0x2000	/* Interrupt after doing cmd. */
99 
100 #define CMD_FLEX	0x0008	/* Enable flexible memory model */
101 
102 enum commands {
103 	CmdNOP = 0,
104 	CmdIASetup = 1,
105 	CmdConfigure = 2,
106 	CmdMulticastList = 3,
107 	CmdTx = 4,
108 	CmdTDR = 5,
109 	CmdDump = 6,
110 	CmdDiagnose = 7
111 };
112 
113 #if 0
114 static const char *CUcmdnames[8] = { "NOP", "IASetup", "Configure", "MulticastList",
115 				     "Tx", "TDR", "Dump", "Diagnose" };
116 #endif
117 
118 /* Status word bits */
119 #define	STAT_CX		0x8000	/* The CU finished executing a command
120 				   with the Interrupt bit set */
121 #define	STAT_FR		0x4000	/* The RU finished receiving a frame */
122 #define	STAT_CNA	0x2000	/* The CU left the active state */
123 #define	STAT_RNR	0x1000	/* The RU left the active state */
124 #define STAT_ACK	(STAT_CX | STAT_FR | STAT_CNA | STAT_RNR)
125 #define	STAT_CUS	0x0700	/* Status of CU: 0: idle, 1: suspended,
126 				   2: active, 3-7: unused */
127 #define STAT_RUS	0x00f0	/* Status of RU: 0: idle, 1: suspended,
128 				   2: no resources, 4: ready,
129 				   10: no resources due to no more RBDs,
130 				   12: no more RBDs, other: unused */
131 #define	STAT_T		0x0008	/* Bus throttle timers loaded */
132 #define	STAT_ZERO	0x0807	/* Always zero */
133 
134 #if 0
135 static char *CUstates[8] = {
136 	"idle", "suspended", "active", 0, 0, 0, 0, 0
137 };
138 static char *RUstates[16] = {
139 	"idle", "suspended", "no resources", 0, "ready", 0, 0, 0,
140 	0, 0, "no RBDs", 0, "out of RBDs", 0, 0, 0
141 };
142 
143 static void
144 i596_out_status(int status) {
145 	int bad = 0;
146 	char *s;
147 
148 	printk("status %4.4x:", status);
149 	if (status == 0xffff)
150 		printk(" strange..\n");
151 	else {
152 		if (status & STAT_CX)
153 			printk("  CU done");
154 		if (status & STAT_CNA)
155 			printk("  CU stopped");
156 		if (status & STAT_FR)
157 			printk("  got a frame");
158 		if (status & STAT_RNR)
159 			printk("  RU stopped");
160 		if (status & STAT_T)
161 			printk("  throttled");
162 		if (status & STAT_ZERO)
163 			bad = 1;
164 		s = CUstates[(status & STAT_CUS) >> 8];
165 		if (!s)
166 			bad = 1;
167 		else
168 			printk("  CU(%s)", s);
169 		s = RUstates[(status & STAT_RUS) >> 4];
170 		if (!s)
171 			bad = 1;
172 		else
173 			printk("  RU(%s)", s);
174 		if (bad)
175 			printk("  bad status");
176 		printk("\n");
177 	}
178 }
179 #endif
180 
181 /* Command word bits */
182 #define ACK_CX		0x8000
183 #define ACK_FR		0x4000
184 #define ACK_CNA		0x2000
185 #define ACK_RNR		0x1000
186 
187 #define CUC_START	0x0100
188 #define CUC_RESUME	0x0200
189 #define CUC_SUSPEND	0x0300
190 #define CUC_ABORT	0x0400
191 
192 #define RX_START	0x0010
193 #define RX_RESUME	0x0020
194 #define RX_SUSPEND	0x0030
195 #define RX_ABORT	0x0040
196 
197 typedef u32 phys_addr;
198 
199 static inline phys_addr
va_to_pa(void * x)200 va_to_pa(void *x) {
201 	return x ? virt_to_bus(x) : I596_NULL;
202 }
203 
204 static inline void *
pa_to_va(phys_addr x)205 pa_to_va(phys_addr x) {
206 	return (x == I596_NULL) ? NULL : bus_to_virt(x);
207 }
208 
209 /* status bits for cmd */
210 #define CMD_STAT_C	0x8000	/* CU command complete */
211 #define CMD_STAT_B	0x4000	/* CU command in progress */
212 #define CMD_STAT_OK	0x2000	/* CU command completed without errors */
213 #define CMD_STAT_A	0x1000	/* CU command abnormally terminated */
214 
215 struct i596_cmd {		/* 8 bytes */
216 	unsigned short status;
217 	unsigned short command;
218 	phys_addr pa_next;	/* va_to_pa(struct i596_cmd *next) */
219 };
220 
221 #define EOF		0x8000
222 #define SIZE_MASK	0x3fff
223 
224 struct i596_tbd {
225 	unsigned short size;
226 	unsigned short pad;
227 	phys_addr pa_next;	/* va_to_pa(struct i596_tbd *next) */
228 	phys_addr pa_data;	/* va_to_pa(char *data) */
229 	struct sk_buff *skb;
230 };
231 
232 struct tx_cmd {
233 	struct i596_cmd cmd;
234 	phys_addr pa_tbd;	/* va_to_pa(struct i596_tbd *tbd) */
235 	unsigned short size;
236 	unsigned short pad;
237 };
238 
239 /* status bits for rfd */
240 #define RFD_STAT_C	0x8000	/* Frame reception complete */
241 #define RFD_STAT_B	0x4000	/* Frame reception in progress */
242 #define RFD_STAT_OK	0x2000	/* Frame received without errors */
243 #define RFD_STATUS	0x1fff
244 #define RFD_LENGTH_ERR	0x1000
245 #define RFD_CRC_ERR	0x0800
246 #define RFD_ALIGN_ERR	0x0400
247 #define RFD_NOBUFS_ERR	0x0200
248 #define RFD_DMA_ERR	0x0100	/* DMA overrun failure to acquire system bus */
249 #define RFD_SHORT_FRAME_ERR	0x0080
250 #define RFD_NOEOP_ERR	0x0040
251 #define RFD_TRUNC_ERR	0x0020
252 #define RFD_MULTICAST  0x0002	/* 0: destination had our address
253 				   1: destination was broadcast/multicast */
254 #define RFD_COLLISION  0x0001
255 
256 /* receive frame descriptor */
257 struct i596_rfd {
258 	unsigned short stat;
259 	unsigned short cmd;
260 	phys_addr pa_next;	/* va_to_pa(struct i596_rfd *next) */
261 	phys_addr pa_rbd;	/* va_to_pa(struct i596_rbd *rbd) */
262 	unsigned short count;
263 	unsigned short size;
264 	char data[1532];
265 };
266 
267 #define RBD_EL		0x8000
268 #define RBD_P		0x4000
269 #define RBD_SIZEMASK	0x3fff
270 #define RBD_EOF		0x8000
271 #define RBD_F		0x4000
272 
273 /* receive buffer descriptor */
274 struct i596_rbd {
275 	unsigned short size;
276 	unsigned short pad;
277 	phys_addr pa_next;	/* va_to_pa(struct i596_tbd *next) */
278 	phys_addr pa_data;	/* va_to_pa(char *data) */
279 	phys_addr pa_prev;	/* va_to_pa(struct i596_tbd *prev) */
280 
281 	/* Driver private part */
282 	struct sk_buff *skb;
283 };
284 
285 #define RX_RING_SIZE 64
286 #define RX_SKBSIZE (ETH_FRAME_LEN+10)
287 #define RX_RBD_SIZE 32
288 
289 /* System Control Block - 40 bytes */
290 struct i596_scb {
291 	u16 status;		/* 0 */
292 	u16 command;		/* 2 */
293 	phys_addr pa_cmd;	/* 4 - va_to_pa(struct i596_cmd *cmd) */
294 	phys_addr pa_rfd;	/* 8 - va_to_pa(struct i596_rfd *rfd) */
295 	u32 crc_err;		/* 12 */
296 	u32 align_err;		/* 16 */
297 	u32 resource_err;	/* 20 */
298 	u32 over_err;		/* 24 */
299 	u32 rcvdt_err;		/* 28 */
300 	u32 short_err;		/* 32 */
301 	u16 t_on;		/* 36 */
302 	u16 t_off;		/* 38 */
303 };
304 
305 /* Intermediate System Configuration Pointer - 8 bytes */
306 struct i596_iscp {
307 	u32 busy;		/* 0 */
308 	phys_addr pa_scb;	/* 4 - va_to_pa(struct i596_scb *scb) */
309 };
310 
311 /* System Configuration Pointer - 12 bytes */
312 struct i596_scp {
313 	u32 sysbus;		/* 0 */
314 	u32 pad;		/* 4 */
315 	phys_addr pa_iscp;	/* 8 - va_to_pa(struct i596_iscp *iscp) */
316 };
317 
318 /* Selftest and dump results - needs 16-byte alignment */
319 /*
320  * The size of the dump area is 304 bytes. When the dump is executed
321  * by the Port command an extra word will be appended to the dump area.
322  * The extra word is a copy of the Dump status word (containing the
323  * C, B, OK bits). [I find 0xa006, with a0 for C+OK and 6 for dump]
324  */
325 struct i596_dump {
326 	u16 dump[153];		/* (304 = 130h) + 2 bytes */
327 };
328 
329 struct i596_private {		/* aligned to a 16-byte boundary */
330 	struct i596_scp scp;	/* 0 - needs 16-byte alignment */
331 	struct i596_iscp iscp;	/* 12 */
332 	struct i596_scb scb;	/* 20 */
333 	u32 dummy;		/* 60 */
334 	struct i596_dump dump;	/* 64 - needs 16-byte alignment */
335 
336 	struct i596_cmd set_add;
337 	char eth_addr[8];	/* directly follows set_add */
338 
339 	struct i596_cmd set_conf;
340 	char i596_config[16];	/* directly follows set_conf */
341 
342 	struct i596_cmd tdr;
343 	unsigned long tdr_stat;	/* directly follows tdr */
344 
345 	int last_restart;
346 	struct i596_rbd *rbd_list;
347 	struct i596_rbd *rbd_tail;
348 	struct i596_rfd *rx_tail;
349 	struct i596_cmd *cmd_tail;
350 	struct i596_cmd *cmd_head;
351 	int cmd_backlog;
352 	unsigned long last_cmd;
353 	spinlock_t cmd_lock;
354 };
355 
356 static char init_setup[14] = {
357 	0x8E,	/* length 14 bytes, prefetch on */
358 	0xC8,	/* default: fifo to 8, monitor off */
359 	0x40,	/* default: don't save bad frames (apricot.c had 0x80) */
360 	0x2E,	/* (default is 0x26)
361 		   No source address insertion, 8 byte preamble */
362 	0x00,	/* default priority and backoff */
363 	0x60,	/* default interframe spacing */
364 	0x00,	/* default slot time LSB */
365 	0xf2,	/* default slot time and nr of retries */
366 	0x00,	/* default various bits
367 		   (0: promiscuous mode, 1: broadcast disable,
368 		    2: encoding mode, 3: transmit on no CRS,
369 		    4: no CRC insertion, 5: CRC type,
370 		    6: bit stuffing, 7: padding) */
371 	0x00,	/* default carrier sense and collision detect */
372 	0x40,	/* default minimum frame length */
373 	0xff,	/* (default is 0xff, and that is what apricot.c has;
374 		   elp486.c has 0xfb: Enable crc append in memory.) */
375 	0x00,	/* default: not full duplex */
376 	0x7f	/* (default is 0x3f) multi IA */
377 };
378 
379 static int i596_open(struct net_device *dev);
380 static netdev_tx_t i596_start_xmit(struct sk_buff *skb, struct net_device *dev);
381 static irqreturn_t i596_interrupt(int irq, void *dev_id);
382 static int i596_close(struct net_device *dev);
383 static void i596_add_cmd(struct net_device *dev, struct i596_cmd *cmd);
384 static void print_eth(char *);
385 static void set_multicast_list(struct net_device *dev);
386 static void i596_tx_timeout(struct net_device *dev);
387 
388 static int
i596_timeout(struct net_device * dev,char * msg,int ct)389 i596_timeout(struct net_device *dev, char *msg, int ct) {
390 	struct i596_private *lp;
391 	int boguscnt = ct;
392 
393 	lp = netdev_priv(dev);
394 	while (lp->scb.command) {
395 		if (--boguscnt == 0) {
396 			printk("%s: %s timed out - stat %4.4x, cmd %4.4x\n",
397 			       dev->name, msg,
398 			       lp->scb.status, lp->scb.command);
399 			return 1;
400 		}
401 		udelay(5);
402 		barrier();
403 	}
404 	return 0;
405 }
406 
407 static inline int
init_rx_bufs(struct net_device * dev,int num)408 init_rx_bufs(struct net_device *dev, int num) {
409 	struct i596_private *lp;
410 	struct i596_rfd *rfd;
411 	int i;
412 	// struct i596_rbd *rbd;
413 
414 	lp = netdev_priv(dev);
415 	lp->scb.pa_rfd = I596_NULL;
416 
417 	for (i = 0; i < num; i++) {
418 		rfd = kmalloc(sizeof(struct i596_rfd), GFP_KERNEL);
419 		if (rfd == NULL)
420 			break;
421 
422 		rfd->stat = 0;
423 		rfd->pa_rbd = I596_NULL;
424 		rfd->count = 0;
425 		rfd->size = 1532;
426 		if (i == 0) {
427 			rfd->cmd = CMD_EOL;
428 			lp->rx_tail = rfd;
429 		} else {
430 			rfd->cmd = 0;
431 		}
432 		rfd->pa_next = lp->scb.pa_rfd;
433 		lp->scb.pa_rfd = va_to_pa(rfd);
434 		lp->rx_tail->pa_next = lp->scb.pa_rfd;
435 	}
436 
437 #if 0
438 	for (i = 0; i<RX_RBD_SIZE; i++) {
439 		rbd = kmalloc(sizeof(struct i596_rbd), GFP_KERNEL);
440 		if (rbd) {
441 			rbd->pad = 0;
442 			rbd->count = 0;
443 			rbd->skb = dev_alloc_skb(RX_SKBSIZE);
444 			if (!rbd->skb) {
445 				printk("dev_alloc_skb failed");
446 			}
447 			rbd->next = rfd->rbd;
448 			if (i) {
449 				rfd->rbd->prev = rbd;
450 				rbd->size = RX_SKBSIZE;
451 			} else {
452 				rbd->size = (RX_SKBSIZE | RBD_EL);
453 				lp->rbd_tail = rbd;
454 			}
455 
456 			rfd->rbd = rbd;
457 		} else {
458 			printk("Could not kmalloc rbd\n");
459 		}
460 	}
461 	lp->rbd_tail->next = rfd->rbd;
462 #endif
463 	return i;
464 }
465 
466 static inline void
remove_rx_bufs(struct net_device * dev)467 remove_rx_bufs(struct net_device *dev) {
468 	struct i596_private *lp;
469 	struct i596_rfd *rfd;
470 
471 	lp = netdev_priv(dev);
472 	lp->rx_tail->pa_next = I596_NULL;
473 
474 	do {
475 		rfd = pa_to_va(lp->scb.pa_rfd);
476 		lp->scb.pa_rfd = rfd->pa_next;
477 		kfree(rfd);
478 	} while (rfd != lp->rx_tail);
479 
480 	lp->rx_tail = NULL;
481 
482 #if 0
483 	for (lp->rbd_list) {
484 	}
485 #endif
486 }
487 
488 #define PORT_RESET              0x00    /* reset 82596 */
489 #define PORT_SELFTEST           0x01    /* selftest */
490 #define PORT_ALTSCP             0x02    /* alternate SCB address */
491 #define PORT_DUMP               0x03    /* dump */
492 
493 #define IOADDR	0xcb0		/* real constant */
494 #define IRQ	10		/* default IRQ - can be changed by ECU */
495 
496 /* The 82596 requires two 16-bit write cycles for a port command */
497 static inline void
PORT(phys_addr a,unsigned int cmd)498 PORT(phys_addr a, unsigned int cmd) {
499 	if (a & 0xf)
500 		printk("lp486e.c: PORT: address not aligned\n");
501 	outw(((a & 0xffff) | cmd), IOADDR);
502 	outw(((a>>16) & 0xffff), IOADDR+2);
503 }
504 
505 static inline void
CA(void)506 CA(void) {
507 	outb(0, IOADDR+4);
508 	udelay(8);
509 }
510 
511 static inline void
CLEAR_INT(void)512 CLEAR_INT(void) {
513 	outb(0, IOADDR+8);
514 }
515 
516 #if 0
517 /* selftest or dump */
518 static void
519 i596_port_do(struct net_device *dev, int portcmd, char *cmdname) {
520 	struct i596_private *lp = netdev_priv(dev);
521 	u16 *outp;
522 	int i, m;
523 
524 	memset((void *)&(lp->dump), 0, sizeof(struct i596_dump));
525 	outp = &(lp->dump.dump[0]);
526 
527 	PORT(va_to_pa(outp), portcmd);
528 	mdelay(30);             /* random, unmotivated */
529 
530 	printk("lp486e i82596 %s result:\n", cmdname);
531 	for (m = ARRAY_SIZE(lp->dump.dump); m && lp->dump.dump[m-1] == 0; m--)
532 		;
533 	for (i = 0; i < m; i++) {
534 		printk(" %04x", lp->dump.dump[i]);
535 		if (i%8 == 7)
536 			printk("\n");
537 	}
538 	printk("\n");
539 }
540 #endif
541 
542 static int
i596_scp_setup(struct net_device * dev)543 i596_scp_setup(struct net_device *dev) {
544 	struct i596_private *lp = netdev_priv(dev);
545 	int boguscnt;
546 
547 	/* Setup SCP, ISCP, SCB */
548 	/*
549 	 * sysbus bits:
550 	 *  only a single byte is significant - here 0x44
551 	 *  0x80: big endian mode (details depend on stepping)
552 	 *  0x40: 1
553 	 *  0x20: interrupt pin is active low
554 	 *  0x10: lock function disabled
555 	 *  0x08: external triggering of bus throttle timers
556 	 *  0x06: 00: 82586 compat mode, 01: segmented mode, 10: linear mode
557 	 *  0x01: unused
558 	 */
559 	lp->scp.sysbus = 0x00440000; 		/* linear mode */
560 	lp->scp.pad = 0;			/* must be zero */
561 	lp->scp.pa_iscp = va_to_pa(&(lp->iscp));
562 
563 	/*
564 	 * The CPU sets the ISCP to 1 before it gives the first CA()
565 	 */
566 	lp->iscp.busy = 0x0001;
567 	lp->iscp.pa_scb = va_to_pa(&(lp->scb));
568 
569 	lp->scb.command = 0;
570 	lp->scb.status = 0;
571 	lp->scb.pa_cmd = I596_NULL;
572 	/* lp->scb.pa_rfd has been initialised already */
573 
574 	lp->last_cmd = jiffies;
575 	lp->cmd_backlog = 0;
576 	lp->cmd_head = NULL;
577 
578 	/*
579 	 * Reset the 82596.
580 	 * We need to wait 10 systemclock cycles, and
581 	 * 5 serial clock cycles.
582 	 */
583 	PORT(0, PORT_RESET);	/* address part ignored */
584 	udelay(100);
585 
586 	/*
587 	 * Before the CA signal is asserted, the default SCP address
588 	 * (0x00fffff4) can be changed to a 16-byte aligned value
589 	 */
590 	PORT(va_to_pa(&lp->scp), PORT_ALTSCP);	/* change the scp address */
591 
592 	/*
593 	 * The initialization procedure begins when a
594 	 * Channel Attention signal is asserted after a reset.
595 	 */
596 
597 	CA();
598 
599 	/*
600 	 * The ISCP busy is cleared by the 82596 after the SCB address is read.
601 	 */
602 	boguscnt = 100;
603 	while (lp->iscp.busy) {
604 		if (--boguscnt == 0) {
605 			/* No i82596 present? */
606 			printk("%s: i82596 initialization timed out\n",
607 			       dev->name);
608 			return 1;
609 		}
610 		udelay(5);
611 		barrier();
612 	}
613 	/* I find here boguscnt==100, so no delay was required. */
614 
615 	return 0;
616 }
617 
618 static int
init_i596(struct net_device * dev)619 init_i596(struct net_device *dev) {
620 	struct i596_private *lp;
621 
622 	if (i596_scp_setup(dev))
623 		return 1;
624 
625 	lp = netdev_priv(dev);
626 	lp->scb.command = 0;
627 
628 	memcpy ((void *)lp->i596_config, init_setup, 14);
629 	lp->set_conf.command = CmdConfigure;
630 	i596_add_cmd(dev, (void *)&lp->set_conf);
631 
632 	memcpy ((void *)lp->eth_addr, dev->dev_addr, 6);
633 	lp->set_add.command = CmdIASetup;
634 	i596_add_cmd(dev, (struct i596_cmd *)&lp->set_add);
635 
636 	lp->tdr.command = CmdTDR;
637 	i596_add_cmd(dev, (struct i596_cmd *)&lp->tdr);
638 
639 	if (lp->scb.command && i596_timeout(dev, "i82596 init", 200))
640 		return 1;
641 
642 	lp->scb.command = RX_START;
643 	CA();
644 
645 	barrier();
646 
647 	if (lp->scb.command && i596_timeout(dev, "Receive Unit start", 100))
648 		return 1;
649 
650 	return 0;
651 }
652 
653 /* Receive a single frame */
654 static inline int
i596_rx_one(struct net_device * dev,struct i596_private * lp,struct i596_rfd * rfd,int * frames)655 i596_rx_one(struct net_device *dev, struct i596_private *lp,
656 	    struct i596_rfd *rfd, int *frames) {
657 
658 	if (rfd->stat & RFD_STAT_OK) {
659 		/* a good frame */
660 		int pkt_len = (rfd->count & 0x3fff);
661 		struct sk_buff *skb = dev_alloc_skb(pkt_len);
662 
663 		(*frames)++;
664 
665 		if (rfd->cmd & CMD_EOL)
666 			printk("Received on EOL\n");
667 
668 		if (skb == NULL) {
669 			printk ("%s: i596_rx Memory squeeze, "
670 				"dropping packet.\n", dev->name);
671 			dev->stats.rx_dropped++;
672 			return 1;
673 		}
674 
675 		memcpy(skb_put(skb,pkt_len), rfd->data, pkt_len);
676 
677 		skb->protocol = eth_type_trans(skb,dev);
678 		netif_rx(skb);
679 		dev->stats.rx_packets++;
680 	} else {
681 #if 0
682 		printk("Frame reception error status %04x\n",
683 		       rfd->stat);
684 #endif
685 		dev->stats.rx_errors++;
686 		if (rfd->stat & RFD_COLLISION)
687 			dev->stats.collisions++;
688 		if (rfd->stat & RFD_SHORT_FRAME_ERR)
689 			dev->stats.rx_length_errors++;
690 		if (rfd->stat & RFD_DMA_ERR)
691 			dev->stats.rx_over_errors++;
692 		if (rfd->stat & RFD_NOBUFS_ERR)
693 			dev->stats.rx_fifo_errors++;
694 		if (rfd->stat & RFD_ALIGN_ERR)
695 			dev->stats.rx_frame_errors++;
696 		if (rfd->stat & RFD_CRC_ERR)
697 			dev->stats.rx_crc_errors++;
698 		if (rfd->stat & RFD_LENGTH_ERR)
699 			dev->stats.rx_length_errors++;
700 	}
701 	rfd->stat = rfd->count = 0;
702 	return 0;
703 }
704 
705 static int
i596_rx(struct net_device * dev)706 i596_rx(struct net_device *dev) {
707 	struct i596_private *lp = netdev_priv(dev);
708 	struct i596_rfd *rfd;
709 	int frames = 0;
710 
711 	while (1) {
712 		rfd = pa_to_va(lp->scb.pa_rfd);
713 		if (!rfd) {
714 			printk(KERN_ERR "i596_rx: NULL rfd?\n");
715 			return 0;
716 		}
717 #if 1
718 		if (rfd->stat && !(rfd->stat & (RFD_STAT_C | RFD_STAT_B)))
719 			printk("SF:%p-%04x\n", rfd, rfd->stat);
720 #endif
721 		if (!(rfd->stat & RFD_STAT_C))
722 			break;		/* next one not ready */
723 		if (i596_rx_one(dev, lp, rfd, &frames))
724 			break;		/* out of memory */
725 		rfd->cmd = CMD_EOL;
726 		lp->rx_tail->cmd = 0;
727 		lp->rx_tail = rfd;
728 		lp->scb.pa_rfd = rfd->pa_next;
729 		barrier();
730 	}
731 
732 	return frames;
733 }
734 
735 static void
i596_cleanup_cmd(struct net_device * dev)736 i596_cleanup_cmd(struct net_device *dev) {
737 	struct i596_private *lp;
738 	struct i596_cmd *cmd;
739 
740 	lp = netdev_priv(dev);
741 	while (lp->cmd_head) {
742 		cmd = (struct i596_cmd *)lp->cmd_head;
743 
744 		lp->cmd_head = pa_to_va(lp->cmd_head->pa_next);
745 		lp->cmd_backlog--;
746 
747 		switch ((cmd->command) & 0x7) {
748 			case CmdTx: {
749 				struct tx_cmd *tx_cmd = (struct tx_cmd *) cmd;
750 				struct i596_tbd * tx_cmd_tbd;
751 				tx_cmd_tbd = pa_to_va(tx_cmd->pa_tbd);
752 
753 				dev_kfree_skb_any(tx_cmd_tbd->skb);
754 
755 				dev->stats.tx_errors++;
756 				dev->stats.tx_aborted_errors++;
757 
758 				cmd->pa_next = I596_NULL;
759 				kfree((unsigned char *)tx_cmd);
760 				netif_wake_queue(dev);
761 				break;
762 			}
763 			case CmdMulticastList: {
764 				// unsigned short count = *((unsigned short *) (ptr + 1));
765 
766 				cmd->pa_next = I596_NULL;
767 				kfree((unsigned char *)cmd);
768 				break;
769 			}
770 			default: {
771 				cmd->pa_next = I596_NULL;
772 				break;
773 			}
774 		}
775 		barrier();
776 	}
777 
778 	if (lp->scb.command && i596_timeout(dev, "i596_cleanup_cmd", 100))
779 		;
780 
781 	lp->scb.pa_cmd = va_to_pa(lp->cmd_head);
782 }
783 
i596_reset(struct net_device * dev,struct i596_private * lp,int ioaddr)784 static void i596_reset(struct net_device *dev, struct i596_private *lp, int ioaddr) {
785 
786 	if (lp->scb.command && i596_timeout(dev, "i596_reset", 100))
787 		;
788 
789 	netif_stop_queue(dev);
790 
791 	lp->scb.command = CUC_ABORT | RX_ABORT;
792 	CA();
793 	barrier();
794 
795 	/* wait for shutdown */
796 	if (lp->scb.command && i596_timeout(dev, "i596_reset(2)", 400))
797 		;
798 
799 	i596_cleanup_cmd(dev);
800 	i596_rx(dev);
801 
802 	netif_start_queue(dev);
803 	/*dev_kfree_skb(skb, FREE_WRITE);*/
804 	init_i596(dev);
805 }
806 
i596_add_cmd(struct net_device * dev,struct i596_cmd * cmd)807 static void i596_add_cmd(struct net_device *dev, struct i596_cmd *cmd) {
808 	struct i596_private *lp = netdev_priv(dev);
809 	int ioaddr = dev->base_addr;
810 	unsigned long flags;
811 
812 	cmd->status = 0;
813 	cmd->command |= (CMD_EOL | CMD_INTR);
814 	cmd->pa_next = I596_NULL;
815 
816 	spin_lock_irqsave(&lp->cmd_lock, flags);
817 
818 	if (lp->cmd_head) {
819 		lp->cmd_tail->pa_next = va_to_pa(cmd);
820 	} else {
821 		lp->cmd_head = cmd;
822 		if (lp->scb.command && i596_timeout(dev, "i596_add_cmd", 100))
823 			;
824 		lp->scb.pa_cmd = va_to_pa(cmd);
825 		lp->scb.command = CUC_START;
826 		CA();
827 	}
828 	lp->cmd_tail = cmd;
829 	lp->cmd_backlog++;
830 
831 	lp->cmd_head = pa_to_va(lp->scb.pa_cmd);
832 	spin_unlock_irqrestore(&lp->cmd_lock, flags);
833 
834 	if (lp->cmd_backlog > 16) {
835 		int tickssofar = jiffies - lp->last_cmd;
836 		if (tickssofar < HZ/4)
837 			return;
838 
839 		printk(KERN_WARNING "%s: command unit timed out, status resetting.\n", dev->name);
840 		i596_reset(dev, lp, ioaddr);
841 	}
842 }
843 
i596_open(struct net_device * dev)844 static int i596_open(struct net_device *dev)
845 {
846 	int i;
847 
848 	i = request_irq(dev->irq, i596_interrupt, IRQF_SHARED, dev->name, dev);
849 	if (i) {
850 		printk(KERN_ERR "%s: IRQ %d not free\n", dev->name, dev->irq);
851 		return i;
852 	}
853 
854 	if ((i = init_rx_bufs(dev, RX_RING_SIZE)) < RX_RING_SIZE)
855 		printk(KERN_ERR "%s: only able to allocate %d receive buffers\n", dev->name, i);
856 
857 	if (i < 4) {
858 		free_irq(dev->irq, dev);
859 		return -EAGAIN;
860 	}
861 	netif_start_queue(dev);
862 	init_i596(dev);
863 	return 0;			/* Always succeed */
864 }
865 
i596_start_xmit(struct sk_buff * skb,struct net_device * dev)866 static netdev_tx_t i596_start_xmit (struct sk_buff *skb, struct net_device *dev) {
867 	struct tx_cmd *tx_cmd;
868 	short length;
869 
870 	length = skb->len;
871 
872 	if (length < ETH_ZLEN) {
873 		if (skb_padto(skb, ETH_ZLEN))
874 			return NETDEV_TX_OK;
875 		length = ETH_ZLEN;
876 	}
877 
878 	tx_cmd = kmalloc((sizeof (struct tx_cmd) + sizeof (struct i596_tbd)), GFP_ATOMIC);
879 	if (tx_cmd == NULL) {
880 		printk(KERN_WARNING "%s: i596_xmit Memory squeeze, dropping packet.\n", dev->name);
881 		dev->stats.tx_dropped++;
882 		dev_kfree_skb (skb);
883 	} else {
884 		struct i596_tbd *tx_cmd_tbd;
885 		tx_cmd_tbd = (struct i596_tbd *) (tx_cmd + 1);
886 		tx_cmd->pa_tbd = va_to_pa (tx_cmd_tbd);
887 		tx_cmd_tbd->pa_next = I596_NULL;
888 
889 		tx_cmd->cmd.command = (CMD_FLEX | CmdTx);
890 
891 		tx_cmd->pad = 0;
892 		tx_cmd->size = 0;
893 		tx_cmd_tbd->pad = 0;
894 		tx_cmd_tbd->size = (EOF | length);
895 
896 		tx_cmd_tbd->pa_data = va_to_pa (skb->data);
897 		tx_cmd_tbd->skb = skb;
898 
899 		if (i596_debug & LOG_SRCDST)
900 			print_eth (skb->data);
901 
902 		i596_add_cmd (dev, (struct i596_cmd *) tx_cmd);
903 
904 		dev->stats.tx_packets++;
905 	}
906 
907 	return NETDEV_TX_OK;
908 }
909 
910 static void
i596_tx_timeout(struct net_device * dev)911 i596_tx_timeout (struct net_device *dev) {
912 	struct i596_private *lp = netdev_priv(dev);
913 	int ioaddr = dev->base_addr;
914 
915 	/* Transmitter timeout, serious problems. */
916 	printk(KERN_WARNING "%s: transmit timed out, status resetting.\n", dev->name);
917 	dev->stats.tx_errors++;
918 
919 	/* Try to restart the adaptor */
920 	if (lp->last_restart == dev->stats.tx_packets) {
921 		printk ("Resetting board.\n");
922 
923 		/* Shutdown and restart */
924 		i596_reset (dev, lp, ioaddr);
925 	} else {
926 		/* Issue a channel attention signal */
927 		printk ("Kicking board.\n");
928 		lp->scb.command = (CUC_START | RX_START);
929 		CA();
930 		lp->last_restart = dev->stats.tx_packets;
931 	}
932 	netif_wake_queue(dev);
933 }
934 
print_eth(char * add)935 static void print_eth(char *add)
936 {
937 	int i;
938 
939 	printk ("Dest  ");
940 	for (i = 0; i < 6; i++)
941 		printk(" %2.2X", (unsigned char) add[i]);
942 	printk ("\n");
943 
944 	printk ("Source");
945 	for (i = 0; i < 6; i++)
946 		printk(" %2.2X", (unsigned char) add[i+6]);
947 	printk ("\n");
948 
949 	printk ("type %2.2X%2.2X\n",
950 		(unsigned char) add[12], (unsigned char) add[13]);
951 }
952 
953 static const struct net_device_ops i596_netdev_ops = {
954 	.ndo_open		= i596_open,
955 	.ndo_stop		= i596_close,
956 	.ndo_start_xmit		= i596_start_xmit,
957 	.ndo_set_rx_mode	= set_multicast_list,
958 	.ndo_tx_timeout		= i596_tx_timeout,
959 	.ndo_change_mtu		= eth_change_mtu,
960 	.ndo_set_mac_address 	= eth_mac_addr,
961 	.ndo_validate_addr	= eth_validate_addr,
962 };
963 
lp486e_probe(struct net_device * dev)964 static int __init lp486e_probe(struct net_device *dev) {
965 	struct i596_private *lp;
966 	unsigned char eth_addr[6] = { 0, 0xaa, 0, 0, 0, 0 };
967 	unsigned char *bios;
968 	int i, j;
969 	int ret = -ENOMEM;
970 	static int probed;
971 
972 	if (probed)
973 		return -ENODEV;
974 	probed++;
975 
976 	if (!request_region(IOADDR, LP486E_TOTAL_SIZE, DRV_NAME)) {
977 		printk(KERN_ERR "lp486e: IO address 0x%x in use\n", IOADDR);
978 		return -EBUSY;
979 	}
980 
981 	lp = netdev_priv(dev);
982 	spin_lock_init(&lp->cmd_lock);
983 
984 	/*
985 	 * Do we really have this thing?
986 	 */
987 	if (i596_scp_setup(dev)) {
988 		ret = -ENODEV;
989 		goto err_out_kfree;
990 	}
991 
992 	dev->base_addr = IOADDR;
993 	dev->irq = IRQ;
994 
995 
996 	/*
997 	 * How do we find the ethernet address? I don't know.
998 	 * One possibility is to look at the EISA configuration area
999 	 * [0xe8000-0xe9fff]. This contains the ethernet address
1000 	 * but not at a fixed address - things depend on setup options.
1001 	 *
1002 	 * If we find no address, or the wrong address, use
1003 	 *   ifconfig eth0 hw ether a1:a2:a3:a4:a5:a6
1004 	 * with the value found in the BIOS setup.
1005 	 */
1006 	bios = bus_to_virt(0xe8000);
1007 	for (j = 0; j < 0x2000; j++) {
1008 		if (bios[j] == 0 && bios[j+1] == 0xaa && bios[j+2] == 0) {
1009 			printk("%s: maybe address at BIOS 0x%x:",
1010 			       dev->name, 0xe8000+j);
1011 			for (i = 0; i < 6; i++) {
1012 				eth_addr[i] = bios[i+j];
1013 				printk(" %2.2X", eth_addr[i]);
1014 			}
1015 			printk("\n");
1016 		}
1017 	}
1018 
1019 	printk("%s: lp486e 82596 at %#3lx, IRQ %d,",
1020 	       dev->name, dev->base_addr, dev->irq);
1021 	for (i = 0; i < 6; i++)
1022 		printk(" %2.2X", dev->dev_addr[i] = eth_addr[i]);
1023 	printk("\n");
1024 
1025 	/* The LP486E-specific entries in the device structure. */
1026 	dev->netdev_ops = &i596_netdev_ops;
1027 	dev->watchdog_timeo = 5*HZ;
1028 
1029 #if 0
1030 	/* selftest reports 0x320925ae - don't know what that means */
1031 	i596_port_do(dev, PORT_SELFTEST, "selftest");
1032 	i596_port_do(dev, PORT_DUMP, "dump");
1033 #endif
1034 	return 0;
1035 
1036 err_out_kfree:
1037 	release_region(IOADDR, LP486E_TOTAL_SIZE);
1038 	return ret;
1039 }
1040 
1041 static inline void
i596_handle_CU_completion(struct net_device * dev,struct i596_private * lp,unsigned short status,unsigned short * ack_cmdp)1042 i596_handle_CU_completion(struct net_device *dev,
1043 			  struct i596_private *lp,
1044 			  unsigned short status,
1045 			  unsigned short *ack_cmdp) {
1046 	struct i596_cmd *cmd;
1047 	int frames_out = 0;
1048 	int commands_done = 0;
1049 	int cmd_val;
1050 	unsigned long flags;
1051 
1052 	spin_lock_irqsave(&lp->cmd_lock, flags);
1053 	cmd = lp->cmd_head;
1054 
1055 	while (lp->cmd_head && (lp->cmd_head->status & CMD_STAT_C)) {
1056 		cmd = lp->cmd_head;
1057 
1058 		lp->cmd_head = pa_to_va(lp->cmd_head->pa_next);
1059 		lp->cmd_backlog--;
1060 
1061 		commands_done++;
1062 		cmd_val = cmd->command & 0x7;
1063 #if 0
1064 		printk("finished CU %s command (%d)\n",
1065 		       CUcmdnames[cmd_val], cmd_val);
1066 #endif
1067 		switch (cmd_val) {
1068 		case CmdTx:
1069 		{
1070 			struct tx_cmd *tx_cmd;
1071 			struct i596_tbd *tx_cmd_tbd;
1072 
1073 			tx_cmd = (struct tx_cmd *) cmd;
1074 			tx_cmd_tbd = pa_to_va(tx_cmd->pa_tbd);
1075 
1076 			frames_out++;
1077 			if (cmd->status & CMD_STAT_OK) {
1078 				if (i596_debug)
1079 					print_eth(pa_to_va(tx_cmd_tbd->pa_data));
1080 			} else {
1081 				dev->stats.tx_errors++;
1082 				if (i596_debug)
1083 					printk("transmission failure:%04x\n",
1084 					       cmd->status);
1085 				if (cmd->status & 0x0020)
1086 					dev->stats.collisions++;
1087 				if (!(cmd->status & 0x0040))
1088 					dev->stats.tx_heartbeat_errors++;
1089 				if (cmd->status & 0x0400)
1090 					dev->stats.tx_carrier_errors++;
1091 				if (cmd->status & 0x0800)
1092 					dev->stats.collisions++;
1093 				if (cmd->status & 0x1000)
1094 					dev->stats.tx_aborted_errors++;
1095 			}
1096 			dev_kfree_skb_irq(tx_cmd_tbd->skb);
1097 
1098 			cmd->pa_next = I596_NULL;
1099 			kfree((unsigned char *)tx_cmd);
1100 			netif_wake_queue(dev);
1101 			break;
1102 		}
1103 
1104 		case CmdMulticastList:
1105 			cmd->pa_next = I596_NULL;
1106 			kfree((unsigned char *)cmd);
1107 			break;
1108 
1109 		case CmdTDR:
1110 		{
1111 			unsigned long status = *((unsigned long *) (cmd + 1));
1112 			if (status & 0x8000) {
1113 				if (i596_debug)
1114 					printk("%s: link ok.\n", dev->name);
1115 			} else {
1116 				if (status & 0x4000)
1117 					printk("%s: Transceiver problem.\n",
1118 					       dev->name);
1119 				if (status & 0x2000)
1120 					printk("%s: Termination problem.\n",
1121 					       dev->name);
1122 				if (status & 0x1000)
1123 					printk("%s: Short circuit.\n",
1124 					       dev->name);
1125 				printk("%s: Time %ld.\n",
1126 				       dev->name, status & 0x07ff);
1127 			}
1128 		}
1129 		default:
1130 			cmd->pa_next = I596_NULL;
1131 			lp->last_cmd = jiffies;
1132 
1133 		}
1134 		barrier();
1135 	}
1136 
1137 	cmd = lp->cmd_head;
1138 	while (cmd && (cmd != lp->cmd_tail)) {
1139 		cmd->command &= 0x1fff;
1140 		cmd = pa_to_va(cmd->pa_next);
1141 		barrier();
1142 	}
1143 
1144 	if (lp->cmd_head)
1145 		*ack_cmdp |= CUC_START;
1146 	lp->scb.pa_cmd = va_to_pa(lp->cmd_head);
1147 	spin_unlock_irqrestore(&lp->cmd_lock, flags);
1148 }
1149 
1150 static irqreturn_t
i596_interrupt(int irq,void * dev_instance)1151 i596_interrupt(int irq, void *dev_instance)
1152 {
1153 	struct net_device *dev = dev_instance;
1154 	struct i596_private *lp = netdev_priv(dev);
1155 	unsigned short status, ack_cmd = 0;
1156 	int frames_in = 0;
1157 
1158 	/*
1159 	 * The 82596 examines the command, performs the required action,
1160 	 * and then clears the SCB command word.
1161 	 */
1162 	if (lp->scb.command && i596_timeout(dev, "interrupt", 40))
1163 		;
1164 
1165 	/*
1166 	 * The status word indicates the status of the 82596.
1167 	 * It is modified only by the 82596.
1168 	 *
1169 	 * [So, we must not clear it. I find often status 0xffff,
1170 	 *  which is not one of the values allowed by the docs.]
1171 	 */
1172 	status = lp->scb.status;
1173 #if 0
1174 	if (i596_debug) {
1175 		printk("%s: i596 interrupt, ", dev->name);
1176 		i596_out_status(status);
1177 	}
1178 #endif
1179 	/* Impossible, but it happens - perhaps when we get
1180 	   a receive interrupt but scb.pa_rfd is I596_NULL. */
1181 	if (status == 0xffff) {
1182 		printk("%s: i596_interrupt: got status 0xffff\n", dev->name);
1183 		goto out;
1184 	}
1185 
1186 	ack_cmd = (status & STAT_ACK);
1187 
1188 	if (status & (STAT_CX | STAT_CNA))
1189 		i596_handle_CU_completion(dev, lp, status, &ack_cmd);
1190 
1191 	if (status & (STAT_FR | STAT_RNR)) {
1192 		/* Restart the receive unit when it got inactive somehow */
1193 		if ((status & STAT_RNR) && netif_running(dev))
1194 			ack_cmd |= RX_START;
1195 
1196 		if (status & STAT_FR) {
1197 			frames_in = i596_rx(dev);
1198 			if (!frames_in)
1199 				printk("receive frame reported, but no frames\n");
1200 		}
1201 	}
1202 
1203 	/* acknowledge the interrupt */
1204 	/*
1205 	if ((lp->scb.pa_cmd != I596_NULL) && netif_running(dev))
1206 		ack_cmd |= CUC_START;
1207 	*/
1208 
1209 	if (lp->scb.command && i596_timeout(dev, "i596 interrupt", 100))
1210 		;
1211 
1212 	lp->scb.command = ack_cmd;
1213 
1214 	CLEAR_INT();
1215 	CA();
1216 
1217  out:
1218 	return IRQ_HANDLED;
1219 }
1220 
i596_close(struct net_device * dev)1221 static int i596_close(struct net_device *dev) {
1222 	struct i596_private *lp = netdev_priv(dev);
1223 
1224 	netif_stop_queue(dev);
1225 
1226 	if (i596_debug)
1227 		printk("%s: Shutting down ethercard, status was %4.4x.\n",
1228 		       dev->name, lp->scb.status);
1229 
1230 	lp->scb.command = (CUC_ABORT | RX_ABORT);
1231 	CA();
1232 
1233 	i596_cleanup_cmd(dev);
1234 
1235 	if (lp->scb.command && i596_timeout(dev, "i596_close", 200))
1236 		;
1237 
1238 	free_irq(dev->irq, dev);
1239 	remove_rx_bufs(dev);
1240 
1241 	return 0;
1242 }
1243 
1244 /*
1245 *	Set or clear the multicast filter for this adaptor.
1246 */
1247 
set_multicast_list(struct net_device * dev)1248 static void set_multicast_list(struct net_device *dev) {
1249 	struct i596_private *lp = netdev_priv(dev);
1250 	struct i596_cmd *cmd;
1251 
1252 	if (i596_debug > 1)
1253 		printk ("%s: set multicast list %d\n",
1254 			dev->name, netdev_mc_count(dev));
1255 
1256 	if (!netdev_mc_empty(dev)) {
1257 		struct netdev_hw_addr *ha;
1258 		char *cp;
1259 		cmd = kmalloc(sizeof(struct i596_cmd) + 2 +
1260 			      netdev_mc_count(dev) * 6, GFP_ATOMIC);
1261 		if (cmd == NULL) {
1262 			printk (KERN_ERR "%s: set_multicast Memory squeeze.\n", dev->name);
1263 			return;
1264 		}
1265 		cmd->command = CmdMulticastList;
1266 		*((unsigned short *) (cmd + 1)) = netdev_mc_count(dev) * 6;
1267 		cp = ((char *)(cmd + 1))+2;
1268 		netdev_for_each_mc_addr(ha, dev) {
1269 			memcpy(cp, ha->addr, 6);
1270 			cp += 6;
1271 		}
1272 		if (i596_debug & LOG_SRCDST)
1273 			print_eth (((char *)(cmd + 1)) + 2);
1274 		i596_add_cmd(dev, cmd);
1275 	} else {
1276 		if (lp->set_conf.pa_next != I596_NULL) {
1277 			return;
1278 		}
1279 		if (netdev_mc_empty(dev) &&
1280 		    !(dev->flags & (IFF_PROMISC | IFF_ALLMULTI))) {
1281 			lp->i596_config[8] &= ~0x01;
1282 		} else {
1283 			lp->i596_config[8] |= 0x01;
1284 		}
1285 
1286 		i596_add_cmd(dev, (struct i596_cmd *) &lp->set_conf);
1287 	}
1288 }
1289 
1290 MODULE_AUTHOR("Ard van Breemen <ard@cstmel.nl.eu.org>");
1291 MODULE_DESCRIPTION("Intel Panther onboard i82596 driver");
1292 MODULE_LICENSE("GPL");
1293 
1294 static struct net_device *dev_lp486e;
1295 static int full_duplex;
1296 static int options;
1297 static int io = IOADDR;
1298 static int irq = IRQ;
1299 
1300 module_param(debug, int, 0);
1301 //module_param(max_interrupt_work, int, 0);
1302 //module_param(reverse_probe, int, 0);
1303 //module_param(rx_copybreak, int, 0);
1304 module_param(options, int, 0);
1305 module_param(full_duplex, int, 0);
1306 
lp486e_init_module(void)1307 static int __init lp486e_init_module(void) {
1308 	int err;
1309 	struct net_device *dev = alloc_etherdev(sizeof(struct i596_private));
1310 	if (!dev)
1311 		return -ENOMEM;
1312 
1313 	dev->irq = irq;
1314 	dev->base_addr = io;
1315 	err = lp486e_probe(dev);
1316 	if (err) {
1317 		free_netdev(dev);
1318 		return err;
1319 	}
1320 	err = register_netdev(dev);
1321 	if (err) {
1322 		release_region(dev->base_addr, LP486E_TOTAL_SIZE);
1323 		free_netdev(dev);
1324 		return err;
1325 	}
1326 	dev_lp486e = dev;
1327 	full_duplex = 0;
1328 	options = 0;
1329 	return 0;
1330 }
1331 
lp486e_cleanup_module(void)1332 static void __exit lp486e_cleanup_module(void) {
1333 	unregister_netdev(dev_lp486e);
1334 	release_region(dev_lp486e->base_addr, LP486E_TOTAL_SIZE);
1335 	free_netdev(dev_lp486e);
1336 }
1337 
1338 module_init(lp486e_init_module);
1339 module_exit(lp486e_cleanup_module);
1340