blob: ecba7048168a550847605cb681687d02225fb3b6 [file] [log] [blame]
wdenk7152b1d2003-09-05 23:19:14 +00001/******************************************************************************
2 *
3 * Name: skproc.c
4 * Project: GEnesis, PCI Gigabit Ethernet Adapter
5 * Version: $Revision: 1.4 $
6 * Date: $Date: 2003/02/25 14:16:37 $
7 * Purpose: Funktions to display statictic data
8 *
9 ******************************************************************************/
10
11/******************************************************************************
12 *
13 * (C)Copyright 1998-2003 SysKonnect GmbH.
14 *
15 * This program is free software; you can redistribute it and/or modify
16 * it under the terms of the GNU General Public License as published by
17 * the Free Software Foundation; either version 2 of the License, or
18 * (at your option) any later version.
19 *
20 * Created 22-Nov-2000
21 * Author: Mirko Lindner (mlindner@syskonnect.de)
22 *
23 * The information in this file is provided "AS IS" without warranty.
24 *
25 ******************************************************************************/
26/******************************************************************************
27 *
28 * History:
29 *
30 * $Log: skproc.c,v $
31 * Revision 1.4 2003/02/25 14:16:37 mlindner
32 * Fix: Copyright statement
33 *
34 * Revision 1.3 2002/10/02 12:59:51 mlindner
35 * Add: Support for Yukon
36 * Add: Speed check and setup
37 * Add: Merge source for kernel 2.2.x and 2.4.x
38 * Add: Read sensor names directly from VPD
39 * Fix: Volt values
40 *
41 * Revision 1.2.2.7 2002/01/14 12:45:15 mlindner
42 * Fix: Editorial changes
43 *
44 * Revision 1.2.2.6 2001/12/06 15:26:07 mlindner
45 * Fix: Return value of proc_read
46 *
47 * Revision 1.2.2.5 2001/12/06 09:57:39 mlindner
48 * New ProcFs entries
49 *
50 * Revision 1.2.2.4 2001/09/05 12:16:02 mlindner
51 * Add: New ProcFs entries
52 * Fix: Counter Errors (Jumbo == to long errors)
53 * Fix: Kernel error compilation
54 * Fix: too short counters
55 *
56 * Revision 1.2.2.3 2001/06/25 07:26:26 mlindner
57 * Add: More error messages
58 *
59 * Revision 1.2.2.2 2001/03/15 12:50:13 mlindner
60 * fix: ProcFS owner protection
61 *
62 * Revision 1.2.2.1 2001/03/12 16:43:48 mlindner
63 * chg: 2.4 requirements for procfs
64 *
65 * Revision 1.1 2001/01/22 14:15:31 mlindner
66 * added ProcFs functionality
67 * Dual Net functionality integrated
68 * Rlmt networks added
69 *
70 *
71 ******************************************************************************/
72
wdenk149dded2003-09-10 18:20:28 +000073#include <config.h>
74
75#ifdef CONFIG_SK98
76
wdenk7152b1d2003-09-05 23:19:14 +000077#include <linux/proc_fs.h>
78
79#include "h/skdrv1st.h"
80#include "h/skdrv2nd.h"
81#define ZEROPAD 1 /* pad with zero */
82#define SIGN 2 /* unsigned/signed long */
83#define PLUS 4 /* show plus */
84#define SPACE 8 /* space if plus */
85#define LEFT 16 /* left justified */
86#define SPECIALX 32 /* 0x */
87#define LARGE 64
88
89extern SK_AC *pACList;
90extern struct net_device *SkGeRootDev;
91
92extern char * SkNumber(
93 char * str,
94 long long num,
95 int base,
96 int size,
97 int precision,
98 int type);
99
100
101/*****************************************************************************
102 *
103 * proc_read - print "summaries" entry
104 *
105 * Description:
106 * This function fills the proc entry with statistic data about
107 * the ethernet device.
108 *
109 *
110 * Returns: buffer with statistic data
111 *
112 */
113int proc_read(char *buffer,
114char **buffer_location,
115off_t offset,
116int buffer_length,
117int *eof,
118void *data)
119{
120 int len = 0;
121 int t;
122 int i;
123 DEV_NET *pNet;
124 SK_AC *pAC;
125 char test_buf[100];
126 char sens_msg[50];
127 unsigned long Flags;
128 unsigned int Size;
129 struct SK_NET_DEVICE *next;
130 struct SK_NET_DEVICE *SkgeProcDev = SkGeRootDev;
131
132 SK_PNMI_STRUCT_DATA *pPnmiStruct;
133 SK_PNMI_STAT *pPnmiStat;
134 struct proc_dir_entry *file = (struct proc_dir_entry*) data;
135
136 while (SkgeProcDev) {
137 pNet = (DEV_NET*) SkgeProcDev->priv;
138 pAC = pNet->pAC;
139 next = pAC->Next;
140 pPnmiStruct = &pAC->PnmiStruct;
141 /* NetIndex in GetStruct is now required, zero is only dummy */
142
143 for (t=pAC->GIni.GIMacsFound; t > 0; t--) {
144 if ((pAC->GIni.GIMacsFound == 2) && pAC->RlmtNets == 1)
145 t--;
146
147 spin_lock_irqsave(&pAC->SlowPathLock, Flags);
148 Size = SK_PNMI_STRUCT_SIZE;
149 SkPnmiGetStruct(pAC, pAC->IoBase,
150 pPnmiStruct, &Size, t-1);
151 spin_unlock_irqrestore(&pAC->SlowPathLock, Flags);
152
153 if (strcmp(pAC->dev[t-1]->name, file->name) == 0) {
154 pPnmiStat = &pPnmiStruct->Stat[0];
155 len = sprintf(buffer,
156 "\nDetailed statistic for device %s\n",
157 pAC->dev[t-1]->name);
158 len += sprintf(buffer + len,
159 "=======================================\n");
160
161 /* Board statistics */
162 len += sprintf(buffer + len,
163 "\nBoard statistics\n\n");
164 len += sprintf(buffer + len,
165 "Active Port %c\n",
166 'A' + pAC->Rlmt.Net[t-1].Port[pAC->Rlmt.
167 Net[t-1].PrefPort]->PortNumber);
168 len += sprintf(buffer + len,
169 "Preferred Port %c\n",
170 'A' + pAC->Rlmt.Net[t-1].Port[pAC->Rlmt.
171 Net[t-1].PrefPort]->PortNumber);
172
173 len += sprintf(buffer + len,
174 "Bus speed (MHz) %d\n",
175 pPnmiStruct->BusSpeed);
176
177 len += sprintf(buffer + len,
178 "Bus width (Bit) %d\n",
179 pPnmiStruct->BusWidth);
180 len += sprintf(buffer + len,
181 "Hardware revision v%d.%d\n",
182 (pAC->GIni.GIPciHwRev >> 4) & 0x0F,
183 pAC->GIni.GIPciHwRev & 0x0F);
184
185 /* Print sensor informations */
186 for (i=0; i < pAC->I2c.MaxSens; i ++) {
187 /* Check type */
188 switch (pAC->I2c.SenTable[i].SenType) {
189 case 1:
190 strcpy(sens_msg, pAC->I2c.SenTable[i].SenDesc);
191 strcat(sens_msg, " (C)");
192 len += sprintf(buffer + len,
193 "%-25s %d.%02d\n",
194 sens_msg,
195 pAC->I2c.SenTable[i].SenValue / 10,
196 pAC->I2c.SenTable[i].SenValue % 10);
197
198 strcpy(sens_msg, pAC->I2c.SenTable[i].SenDesc);
199 strcat(sens_msg, " (F)");
200 len += sprintf(buffer + len,
201 "%-25s %d.%02d\n",
202 sens_msg,
203 ((((pAC->I2c.SenTable[i].SenValue)
204 *10)*9)/5 + 3200)/100,
205 ((((pAC->I2c.SenTable[i].SenValue)
206 *10)*9)/5 + 3200) % 10);
207 break;
208 case 2:
209 strcpy(sens_msg, pAC->I2c.SenTable[i].SenDesc);
210 strcat(sens_msg, " (V)");
211 len += sprintf(buffer + len,
212 "%-25s %d.%03d\n",
213 sens_msg,
214 pAC->I2c.SenTable[i].SenValue / 1000,
215 pAC->I2c.SenTable[i].SenValue % 1000);
216 break;
217 case 3:
218 strcpy(sens_msg, pAC->I2c.SenTable[i].SenDesc);
219 strcat(sens_msg, " (rpm)");
220 len += sprintf(buffer + len,
221 "%-25s %d\n",
222 sens_msg,
223 pAC->I2c.SenTable[i].SenValue);
224 break;
225 default:
226 break;
227 }
228 }
229
230 /*Receive statistics */
231 len += sprintf(buffer + len,
232 "\nReceive statistics\n\n");
233
234 len += sprintf(buffer + len,
235 "Received bytes %s\n",
236 SkNumber(test_buf, pPnmiStat->StatRxOctetsOkCts,
237 10,0,-1,0));
238 len += sprintf(buffer + len,
239 "Received packets %s\n",
240 SkNumber(test_buf, pPnmiStat->StatRxOkCts,
241 10,0,-1,0));
242#if 0
243 if (pAC->GIni.GP[0].PhyType == SK_PHY_XMAC &&
244 pAC->HWRevision < 12) {
245 pPnmiStruct->InErrorsCts = pPnmiStruct->InErrorsCts -
246 pPnmiStat->StatRxShortsCts;
247 pPnmiStat->StatRxShortsCts = 0;
248 }
249#endif
250 if (pNet->Mtu > 1500)
251 pPnmiStruct->InErrorsCts = pPnmiStruct->InErrorsCts -
252 pPnmiStat->StatRxTooLongCts;
253
254 len += sprintf(buffer + len,
255 "Receive errors %s\n",
256 SkNumber(test_buf, pPnmiStruct->InErrorsCts,
257 10,0,-1,0));
258 len += sprintf(buffer + len,
259 "Receive drops %s\n",
260 SkNumber(test_buf, pPnmiStruct->RxNoBufCts,
261 10,0,-1,0));
262 len += sprintf(buffer + len,
263 "Received multicast %s\n",
264 SkNumber(test_buf, pPnmiStat->StatRxMulticastOkCts,
265 10,0,-1,0));
266 len += sprintf(buffer + len,
267 "Receive error types\n");
268 len += sprintf(buffer + len,
269 " length %s\n",
270 SkNumber(test_buf, pPnmiStat->StatRxRuntCts,
271 10, 0, -1, 0));
272 len += sprintf(buffer + len,
273 " buffer overflow %s\n",
274 SkNumber(test_buf, pPnmiStat->StatRxFifoOverflowCts,
275 10, 0, -1, 0));
276 len += sprintf(buffer + len,
277 " bad crc %s\n",
278 SkNumber(test_buf, pPnmiStat->StatRxFcsCts,
279 10, 0, -1, 0));
280 len += sprintf(buffer + len,
281 " framing %s\n",
282 SkNumber(test_buf, pPnmiStat->StatRxFramingCts,
283 10, 0, -1, 0));
284 len += sprintf(buffer + len,
285 " missed frames %s\n",
286 SkNumber(test_buf, pPnmiStat->StatRxMissedCts,
287 10, 0, -1, 0));
288
289 if (pNet->Mtu > 1500)
290 pPnmiStat->StatRxTooLongCts = 0;
291
292 len += sprintf(buffer + len,
293 " too long %s\n",
294 SkNumber(test_buf, pPnmiStat->StatRxTooLongCts,
295 10, 0, -1, 0));
296 len += sprintf(buffer + len,
297 " carrier extension %s\n",
298 SkNumber(test_buf, pPnmiStat->StatRxCextCts,
299 10, 0, -1, 0));
300 len += sprintf(buffer + len,
301 " too short %s\n",
302 SkNumber(test_buf, pPnmiStat->StatRxShortsCts,
303 10, 0, -1, 0));
304 len += sprintf(buffer + len,
305 " symbol %s\n",
306 SkNumber(test_buf, pPnmiStat->StatRxSymbolCts,
307 10, 0, -1, 0));
308 len += sprintf(buffer + len,
309 " LLC MAC size %s\n",
310 SkNumber(test_buf, pPnmiStat->StatRxIRLengthCts,
311 10, 0, -1, 0));
312 len += sprintf(buffer + len,
313 " carrier event %s\n",
314 SkNumber(test_buf, pPnmiStat->StatRxCarrierCts,
315 10, 0, -1, 0));
316 len += sprintf(buffer + len,
317 " jabber %s\n",
318 SkNumber(test_buf, pPnmiStat->StatRxJabberCts,
319 10, 0, -1, 0));
320
321
322 /*Transmit statistics */
323 len += sprintf(buffer + len,
324 "\nTransmit statistics\n\n");
325
326 len += sprintf(buffer + len,
327 "Transmited bytes %s\n",
328 SkNumber(test_buf, pPnmiStat->StatTxOctetsOkCts,
329 10,0,-1,0));
330 len += sprintf(buffer + len,
331 "Transmited packets %s\n",
332 SkNumber(test_buf, pPnmiStat->StatTxOkCts,
333 10,0,-1,0));
334 len += sprintf(buffer + len,
335 "Transmit errors %s\n",
336 SkNumber(test_buf, pPnmiStat->StatTxSingleCollisionCts,
337 10,0,-1,0));
338 len += sprintf(buffer + len,
339 "Transmit dropped %s\n",
340 SkNumber(test_buf, pPnmiStruct->TxNoBufCts,
341 10,0,-1,0));
342 len += sprintf(buffer + len,
343 "Transmit collisions %s\n",
344 SkNumber(test_buf, pPnmiStat->StatTxSingleCollisionCts,
345 10,0,-1,0));
346 len += sprintf(buffer + len,
347 "Transmit errors types\n");
348 len += sprintf(buffer + len,
349 " excessive collision %ld\n",
350 pAC->stats.tx_aborted_errors);
351 len += sprintf(buffer + len,
352 " carrier %s\n",
353 SkNumber(test_buf, pPnmiStat->StatTxCarrierCts,
354 10, 0, -1, 0));
355 len += sprintf(buffer + len,
356 " fifo underrun %s\n",
357 SkNumber(test_buf, pPnmiStat->StatTxFifoUnderrunCts,
358 10, 0, -1, 0));
359 len += sprintf(buffer + len,
360 " heartbeat %s\n",
361 SkNumber(test_buf, pPnmiStat->StatTxCarrierCts,
362 10, 0, -1, 0));
363 len += sprintf(buffer + len,
364 " window %ld\n",
365 pAC->stats.tx_window_errors);
366
367 }
368 }
369 SkgeProcDev = next;
370 }
371 if (offset >= len) {
372 *eof = 1;
373 return 0;
374 }
375
376 *buffer_location = buffer + offset;
377 if (buffer_length >= len - offset) {
378 *eof = 1;
379 }
380 return (min_t(int, buffer_length, len - offset));
381}
382
383
384
385
386
387/*****************************************************************************
388 *
389 * SkDoDiv - convert 64bit number
390 *
391 * Description:
392 * This function "converts" a long long number.
393 *
394 * Returns:
395 * remainder of division
396 */
397static long SkDoDiv (long long Dividend, int Divisor, long long *pErg)
398{
399 long Rest;
400 long long Ergebnis;
401 long Akku;
402
403
404 Akku = Dividend >> 32;
405
406 Ergebnis = ((long long) (Akku / Divisor)) << 32;
407 Rest = Akku % Divisor ;
408
409 Akku = Rest << 16;
410 Akku |= ((Dividend & 0xFFFF0000) >> 16);
411
412
413 Ergebnis += ((long long) (Akku / Divisor)) << 16;
414 Rest = Akku % Divisor ;
415
416 Akku = Rest << 16;
417 Akku |= (Dividend & 0xFFFF);
418
419 Ergebnis += (Akku / Divisor);
420 Rest = Akku % Divisor ;
421
422 *pErg = Ergebnis;
423 return (Rest);
424}
425
426
427#if 0
428#define do_div(n,base) ({ \
429long long __res; \
430__res = ((unsigned long long) n) % (unsigned) base; \
431n = ((unsigned long long) n) / (unsigned) base; \
432__res; })
433
434#endif
435
436
437/*****************************************************************************
438 *
439 * SkNumber - Print results
440 *
441 * Description:
442 * This function converts a long long number into a string.
443 *
444 * Returns:
445 * number as string
446 */
447char * SkNumber(char * str, long long num, int base, int size, int precision
448 ,int type)
449{
450 char c,sign,tmp[66], *strorg = str;
451 const char *digits="0123456789abcdefghijklmnopqrstuvwxyz";
452 int i;
453
454 if (type & LARGE)
455 digits = "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZ";
456 if (type & LEFT)
457 type &= ~ZEROPAD;
458 if (base < 2 || base > 36)
459 return 0;
460 c = (type & ZEROPAD) ? '0' : ' ';
461 sign = 0;
462 if (type & SIGN) {
463 if (num < 0) {
464 sign = '-';
465 num = -num;
466 size--;
467 } else if (type & PLUS) {
468 sign = '+';
469 size--;
470 } else if (type & SPACE) {
471 sign = ' ';
472 size--;
473 }
474 }
475 if (type & SPECIALX) {
476 if (base == 16)
477 size -= 2;
478 else if (base == 8)
479 size--;
480 }
481 i = 0;
482 if (num == 0)
483 tmp[i++]='0';
484 else while (num != 0)
485 tmp[i++] = digits[SkDoDiv(num,base, &num)];
486
487 if (i > precision)
488 precision = i;
489 size -= precision;
490 if (!(type&(ZEROPAD+LEFT)))
491 while(size-->0)
492 *str++ = ' ';
493 if (sign)
494 *str++ = sign;
495 if (type & SPECIALX) {
496 if (base==8)
497 *str++ = '0';
498 else if (base==16) {
499 *str++ = '0';
500 *str++ = digits[33];
501 }
502 }
503 if (!(type & LEFT))
504 while (size-- > 0)
505 *str++ = c;
506 while (i < precision--)
507 *str++ = '0';
508 while (i-- > 0)
509 *str++ = tmp[i];
510 while (size-- > 0)
511 *str++ = ' ';
512
513 str[0] = '\0';
514
515 return strorg;
516}
517
wdenk149dded2003-09-10 18:20:28 +0000518#endif /* CONFIG_SK98 */