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[/] [or1k/] [trunk/] [rc203soc/] [sw/] [uClinux/] [drivers/] [net/] [hp100.c] - Blame information for rev 1765

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Line No. Rev Author Line
1 1626 jcastillo
/*
2
** hp100.c
3
** HP CASCADE Architecture Driver for 100VG-AnyLan Network Adapters
4
**
5
** $Id: hp100.c,v 1.1 2005-12-20 10:17:14 jcastillo Exp $
6
**
7
** Based on the HP100 driver written by Jaroslav Kysela <perex@jcu.cz>
8
** Extended for new busmaster capable chipsets by
9
** Siegfried "Frieder" Loeffler (dg1sek) <floeff@mathematik.uni-stuttgart.de>
10
**
11
** Maintained by: Jaroslav Kysela <perex@jcu.cz>
12
**
13
** This driver has only been tested with
14
** -- HP J2585B 10/100 Mbit/s PCI Busmaster
15
** -- HP J2585A 10/100 Mbit/s PCI
16
** -- HP J2970  10 Mbit/s PCI Combo 10base-T/BNC
17
** -- HP J2973  10 Mbit/s PCI 10base-T
18
** -- HP J2573  10/100 ISA
19
** -- Compex ReadyLink ENET100-VG4  10/100 Mbit/s PCI / EISA
20
** -- Compex FreedomLine 100/VG  10/100 Mbit/s ISA / EISA / PCI
21
**
22
** but it should also work with the other CASCADE based adapters.
23
**
24
** TODO:
25
**       -  J2573 seems to hang sometimes when in shared memory mode.
26
**       -  Mode for Priority TX
27
**       -  Check PCI registers, performance might be improved?
28
**       -  To reduce interrupt load in busmaster, one could switch off
29
**          the interrupts that are used to refill the queues whenever the
30
**          queues are filled up to more than a certain threshold.
31
**       -  some updates for EISA version of card
32
**
33
**
34
** This source/code is public free; you can distribute it and/or modify
35
** it under terms of the GNU General Public License (published by the
36
** Free Software Foundation) either version two of this License, or any
37
** later version.
38
**
39
** 1.55 -> 1.56
40
**   - removed printk in misc. interrupt and update statistics to allow
41
**     monitoring of card status
42
**   - timing changes in xmit routines, relogin to 100VG hub added when
43
**     driver does reset
44
**   - included fix for Compex FreedomLine PCI adapter
45
**
46
** 1.54 -> 1.55
47
**   - fixed bad initialization in init_module
48
**   - added Compex FreedomLine adapter
49
**   - some fixes in card initialization
50
**
51
** 1.53 -> 1.54
52
**   - added hardware multicast filter support (doesn't work)
53
**   - little changes in hp100_sense_lan routine
54
**     - added support for Coax and AUI (J2970)
55
**   - fix for multiple cards and hp100_mode parameter (insmod)
56
**   - fix for shared IRQ
57
**
58
** 1.52 -> 1.53
59
**   - fixed bug in multicast support
60
**
61
*/
62
 
63
#define HP100_DEFAULT_PRIORITY_TX 0 
64
 
65
#undef HP100_DEBUG
66
#undef HP100_DEBUG_B           /* Trace  */
67
#undef HP100_DEBUG_BM          /* Debug busmaster code (PDL stuff) */
68
 
69
#undef HP100_DEBUG_TRAINING    /* Debug login-to-hub procedure */
70
#undef HP100_DEBUG_TX   
71
#undef HP100_DEBUG_IRQ 
72
#undef HP100_DEBUG_RX 
73
 
74
#undef HP100_MULTICAST_FILTER  /* Need to be debugged... */
75
 
76
#include <linux/version.h>
77
#include <linux/module.h>
78
#include <linux/kernel.h>
79
#include <linux/sched.h>
80
#include <linux/string.h>
81
#include <linux/errno.h>
82
#include <linux/ioport.h>
83
#include <linux/malloc.h>
84
#include <linux/interrupt.h>
85
#include <linux/pci.h>
86
#include <linux/bios32.h>
87
#include <asm/bitops.h>
88
#include <asm/io.h>
89
 
90
#include <linux/netdevice.h>
91
#include <linux/etherdevice.h>
92
#include <linux/skbuff.h>
93
 
94
#include <linux/types.h>
95
#include <linux/config.h>  /* for CONFIG_PCI */
96
#include <linux/delay.h>
97
 
98
#if LINUX_VERSION_CODE < 0x020100
99
#define ioremap vremap
100
#define iounmap vfree
101
typedef struct enet_statistics hp100_stats_t;
102
#else
103
#define LINUX_2_1
104
typedef struct net_device_stats hp100_stats_t;
105
#endif
106
 
107
#ifndef __initfunc
108
#define __initfunc(__initarg) __initarg
109
#else
110
#include <linux/init.h>
111
#endif
112
 
113
#include "hp100.h"
114
 
115
/*
116
 *  defines
117
 */
118
 
119
#define HP100_BUS_ISA     0
120
#define HP100_BUS_EISA    1
121
#define HP100_BUS_PCI     2
122
 
123
#ifndef PCI_DEVICE_ID_HP_J2585B
124
#define PCI_DEVICE_ID_HP_J2585B 0x1031
125
#endif
126
#ifndef PCI_VENDOR_ID_COMPEX
127
#define PCI_VENDOR_ID_COMPEX 0x11f6
128
#endif
129
#ifndef PCI_DEVICE_ID_COMPEX_ENET100VG4
130
#define PCI_DEVICE_ID_COMPEX_ENET100VG4 0x0112
131
#endif
132
#ifndef PCI_VENDOR_ID_COMPEX2
133
#define PCI_VENDOR_ID_COMPEX2 0x101a
134
#endif
135
#ifndef PCI_DEVICE_ID_COMPEX2_100VG
136
#define PCI_DEVICE_ID_COMPEX2_100VG 0x0005
137
#endif
138
 
139
#define HP100_REGION_SIZE  0x20 /* for ioports */
140
 
141
#define HP100_MAX_PACKET_SIZE  (1536+4)
142
#define HP100_MIN_PACKET_SIZE  60
143
 
144
#ifndef HP100_DEFAULT_RX_RATIO
145
/* default - 75% onboard memory on the card are used for RX packets */
146
#define HP100_DEFAULT_RX_RATIO  75
147
#endif
148
 
149
#ifndef HP100_DEFAULT_PRIORITY_TX
150
/* default - don't enable transmit outgoing packets as priority */
151
#define HP100_DEFAULT_PRIORITY_TX 0
152
#endif
153
 
154
/*
155
 *  structures
156
 */
157
 
158
struct hp100_eisa_id {
159
  u_int id;
160
  const char *name;
161
  u_char bus;
162
};
163
 
164
struct hp100_pci_id {
165
  u_short vendor;
166
  u_short device;
167
};
168
 
169
struct hp100_private {
170
  struct hp100_eisa_id *id;
171
  u_short chip;
172
  u_short soft_model;
173
  u_int memory_size;
174
  u_int virt_memory_size;
175
  u_short rx_ratio;       /* 1 - 99 */
176
  u_short priority_tx;    /* != 0 - priority tx */
177
  u_short mode;           /* PIO, Shared Mem or Busmaster */
178
  u_char bus;
179
  u_char pci_bus;
180
  u_char pci_device_fn;
181
  short mem_mapped;       /* memory mapped access */
182
  u_int *mem_ptr_virt;    /* virtual memory mapped area, maybe NULL */
183
  u_int *mem_ptr_phys;    /* physical memory mapped area */
184
  short lan_type;         /* 10Mb/s, 100Mb/s or -1 (error) */
185
  int hub_status;         /* was login to hub successful? */
186
  u_char mac1_mode;
187
  u_char mac2_mode;
188
  u_char hash_bytes[ 8 ];
189
  hp100_stats_t stats;
190
 
191
  /* Rings for busmaster mode: */
192
  hp100_ring_t *rxrhead;  /* Head (oldest) index into rxring */
193
  hp100_ring_t *rxrtail;  /* Tail (newest) index into rxring */
194
  hp100_ring_t *txrhead;  /* Head (oldest) index into txring */
195
  hp100_ring_t *txrtail;  /* Tail (newest) index into txring */
196
 
197
  hp100_ring_t rxring[ MAX_RX_PDL ];
198
  hp100_ring_t txring[ MAX_TX_PDL ];
199
 
200
  u_int *page_vaddr;      /* Virtual address of allocated page */
201
  u_int *page_vaddr_algn; /* Aligned virtual address of allocated page */
202
  int rxrcommit;          /* # Rx PDLs commited to adapter */
203
  int txrcommit;          /* # Tx PDLs commited to adapter */
204
};
205
 
206
/*
207
 *  variables
208
 */
209
 
210
static struct hp100_eisa_id hp100_eisa_ids[] = {
211
 
212
  /* 10/100 EISA card with revision A Cascade chip */
213
  { 0x80F1F022, "HP J2577 rev A", HP100_BUS_EISA },
214
 
215
  /* 10/100 ISA card with revision A Cascade chip */
216
  { 0x50F1F022, "HP J2573 rev A", HP100_BUS_ISA },
217
 
218
  /* 10 only EISA card with Cascade chip */
219
  { 0x2019F022, "HP 27248B",      HP100_BUS_EISA },
220
 
221
  /* 10/100 EISA card with Cascade chip */
222
  { 0x4019F022, "HP J2577",       HP100_BUS_EISA },
223
 
224
  /* 10/100 ISA card with Cascade chip */
225
  { 0x5019F022, "HP J2573",       HP100_BUS_ISA },
226
 
227
  /* 10/100 PCI card - old J2585A */
228
  { 0x1030103c, "HP J2585A",        HP100_BUS_PCI },
229
 
230
  /* 10/100 PCI card - new J2585B - master capable */
231
  { 0x1041103c, "HP J2585B",      HP100_BUS_PCI },
232
 
233
  /* 10 Mbit Combo Adapter */
234
  { 0x1042103c, "HP J2970",       HP100_BUS_PCI },
235
 
236
  /* 10 Mbit 10baseT Adapter */
237
  { 0x1040103c, "HP J2973",       HP100_BUS_PCI },
238
 
239
  /* 10/100 EISA card from Compex */
240
  { 0x0103180e, "ReadyLink ENET100-VG4", HP100_BUS_EISA },
241
 
242
  /* 10/100 EISA card from Compex - FreedomLine (sq5bpf) */
243
  /* Note: plhbrod@mbox.vol.cz reported that same ID have ISA */
244
  /*       version of adapter, too... */
245
  { 0x0104180e, "FreedomLine 100/VG", HP100_BUS_EISA },
246
 
247
  /* 10/100 PCI card from Compex - FreedomLine
248
   *
249
   * I think this card doesn't like aic7178 scsi controller, but
250
   * I haven't tested this much. It works fine on diskless machines.
251
   *                            Jacek Lipkowski <sq5bpf@acid.ch.pw.edu.pl>
252
   */
253
  { 0x021211f6, "FreedomLine 100/VG", HP100_BUS_PCI },
254
 
255
  /* 10/100 PCI card from Compex (J2585A compatible) */
256
  { 0x011211f6, "ReadyLink ENET100-VG4", HP100_BUS_PCI }
257
 
258
};
259
 
260
#define HP100_EISA_IDS_SIZE     (sizeof(hp100_eisa_ids)/sizeof(struct hp100_eisa_id))
261
 
262
static struct hp100_pci_id hp100_pci_ids[] = {
263
  { PCI_VENDOR_ID_HP,           PCI_DEVICE_ID_HP_J2585A },
264
  { PCI_VENDOR_ID_HP,           PCI_DEVICE_ID_HP_J2585B },
265
  { PCI_VENDOR_ID_COMPEX,       PCI_DEVICE_ID_COMPEX_ENET100VG4 },
266
  { PCI_VENDOR_ID_COMPEX2,      PCI_DEVICE_ID_COMPEX2_100VG }
267
};
268
 
269
#define HP100_PCI_IDS_SIZE      (sizeof(hp100_pci_ids)/sizeof(struct hp100_pci_id))
270
 
271
static int hp100_rx_ratio = HP100_DEFAULT_RX_RATIO;
272
static int hp100_priority_tx = HP100_DEFAULT_PRIORITY_TX;
273
static int hp100_mode = 1;
274
 
275
#ifdef LINUX_2_1
276
MODULE_PARM( hp100_rx_ratio, "1i" );
277
MODULE_PARM( hp100_priority_tx, "1i" );
278
MODULE_PARM( hp100_mode, "1i" );
279
#endif
280
 
281
/*
282
 *  prototypes
283
 */
284
 
285
static int  hp100_probe1( struct device *dev, int ioaddr, u_char bus, u_char pci_bus, u_char pci_device_fn  );
286
static int  hp100_open( struct device *dev );
287
static int  hp100_close( struct device *dev );
288
static int  hp100_start_xmit( struct sk_buff *skb, struct device *dev );
289
static int  hp100_start_xmit_bm (struct sk_buff *skb, struct device *dev );
290
static void hp100_rx( struct device *dev );
291
static hp100_stats_t *hp100_get_stats( struct device *dev );
292
static void hp100_misc_interrupt( struct device *dev );
293
static void hp100_update_stats( struct device *dev );
294
static void hp100_clear_stats( int ioaddr );
295
static void hp100_set_multicast_list( struct device *dev);
296
static void hp100_interrupt( int irq, void *dev_id, struct pt_regs *regs );
297
static void hp100_start_interface( struct device *dev );
298
static void hp100_stop_interface( struct device *dev );
299
static void hp100_load_eeprom( struct device *dev, u_short ioaddr );
300
static int  hp100_sense_lan( struct device *dev );
301
static int  hp100_login_to_vg_hub( struct device *dev, u_short force_relogin );
302
static int  hp100_down_vg_link( struct device *dev );
303
static void hp100_cascade_reset( struct device *dev, u_short enable );
304
static void hp100_BM_shutdown( struct device *dev );
305
static void hp100_mmuinit( struct device *dev );
306
static void hp100_init_pdls( struct device *dev );
307
static int  hp100_init_rxpdl( struct device *dev, register hp100_ring_t *ringptr, register u_int *pdlptr);
308
static int  hp100_init_txpdl( struct device *dev, register hp100_ring_t *ringptr, register u_int *pdlptr);
309
static void hp100_rxfill( struct device *dev );
310
static void hp100_hwinit( struct device *dev );
311
static void hp100_clean_txring( struct device *dev );
312
#ifdef HP100_DEBUG
313
static void hp100_RegisterDump( struct device *dev );
314
#endif
315
 
316
/* TODO: This function should not really be needed in a good design... */
317
static void wait( void )
318
{
319
  udelay( 1000 );
320
}
321
 
322
/*
323
 *  probe functions
324
 *  These functions should - if possible - avoid doing write operations
325
 *  since this could cause problems when the card is not installed.
326
 */
327
 
328
__initfunc(int hp100_probe( struct device *dev ))
329
{
330
  int base_addr = dev ? dev -> base_addr : 0;
331
  int ioaddr = 0;
332
#ifdef CONFIG_PCI
333
  int pci_start_index = 0;
334
#endif
335
 
336
#ifdef HP100_DEBUG_B
337
  hp100_outw( 0x4200, TRACE );
338
  printk( "hp100: %s: probe\n", dev->name );
339
#endif
340
 
341
  if ( base_addr > 0xff )       /* Check a single specified location. */
342
    {
343
      if ( check_region( base_addr, HP100_REGION_SIZE ) ) return -EINVAL;
344
      if ( base_addr < 0x400 )
345
        return hp100_probe1( dev, base_addr, HP100_BUS_ISA, 0, 0 );
346
      if ( EISA_bus && base_addr >= 0x1c38 && ( (base_addr - 0x1c38) & 0x3ff ) == 0 )
347
        return hp100_probe1( dev, base_addr, HP100_BUS_EISA, 0, 0 );
348
#ifdef CONFIG_PCI
349
      printk( "hp100: %s: You may specify card # in i/o address parameter for PCI bus...", dev->name );
350
      return hp100_probe1( dev, base_addr, HP100_BUS_PCI, 0, 0 );
351
#else
352
      return -ENODEV;
353
#endif
354
    }
355
  else
356
#ifdef CONFIG_PCI
357
    if ( base_addr > 0 && base_addr < 8 + 1 )
358
      pci_start_index = 0x100 | ( base_addr - 1 );
359
    else
360
#endif
361
      if ( base_addr != 0 ) return -ENXIO;
362
 
363
  /* at first - scan PCI bus(es) */
364
 
365
#ifdef CONFIG_PCI
366
  if ( pcibios_present() )
367
    {
368
      int pci_index;
369
 
370
#ifdef HP100_DEBUG_PCI
371
      printk( "hp100: %s: PCI BIOS is present, checking for devices..\n", dev->name );
372
#endif
373
      for ( pci_index = pci_start_index & 7; pci_index < 8; pci_index++ )
374
        {
375
          u_char pci_bus, pci_device_fn;
376
          u_short pci_command;
377
          int pci_id_index;
378
 
379
          for ( pci_id_index = 0; pci_id_index < HP100_PCI_IDS_SIZE; pci_id_index++ )
380
            if ( pcibios_find_device( hp100_pci_ids[ pci_id_index ].vendor,
381
                                      hp100_pci_ids[ pci_id_index ].device,
382
                                      pci_index, &pci_bus,
383
                                      &pci_device_fn ) == 0 ) goto __pci_found;
384
          break;
385
 
386
          __pci_found:
387
          pcibios_read_config_dword( pci_bus, pci_device_fn,
388
                                     PCI_BASE_ADDRESS_0, &ioaddr );
389
 
390
          ioaddr &= ~3;    /* remove I/O space marker in bit 0. */
391
 
392
          if ( check_region( ioaddr, HP100_REGION_SIZE ) ) continue;
393
 
394
          pcibios_read_config_word( pci_bus, pci_device_fn,
395
                                    PCI_COMMAND, &pci_command );
396
          if ( !( pci_command & PCI_COMMAND_IO ) )
397
            {
398
#ifdef HP100_DEBUG
399
              printk( "hp100: %s: PCI I/O Bit has not been set. Setting...\n", dev->name );
400
#endif
401
              pci_command |= PCI_COMMAND_IO;
402
              pcibios_write_config_word( pci_bus, pci_device_fn,
403
                                         PCI_COMMAND, pci_command );
404
            }
405
          if ( !( pci_command & PCI_COMMAND_MASTER ) )
406
            {
407
#ifdef HP100_DEBUG
408
              printk( "hp100: %s: PCI Master Bit has not been set. Setting...\n", dev->name );
409
#endif
410
              pci_command |= PCI_COMMAND_MASTER;
411
              pcibios_write_config_word( pci_bus, pci_device_fn,
412
                                         PCI_COMMAND, pci_command );
413
            }
414
#ifdef HP100_DEBUG
415
          printk( "hp100: %s: PCI adapter found at 0x%x\n", dev->name, ioaddr );
416
#endif
417
          if ( hp100_probe1( dev, ioaddr, HP100_BUS_PCI, pci_bus, pci_device_fn ) == 0 )
418
            return 0;
419
        }
420
    }
421
  if ( pci_start_index > 0 ) return -ENODEV;
422
#endif /* CONFIG_PCI */
423
 
424
  /* Second: Probe all EISA possible port regions (if EISA bus present) */
425
  for ( ioaddr = 0x1c38; EISA_bus && ioaddr < 0x10000; ioaddr += 0x400 )
426
    {
427
      if ( check_region( ioaddr, HP100_REGION_SIZE ) ) continue;
428
      if ( hp100_probe1( dev, ioaddr, HP100_BUS_EISA, 0, 0 ) == 0 ) return 0;
429
    }
430
 
431
  /* Third Probe all ISA possible port regions */
432
  for ( ioaddr = 0x100; ioaddr < 0x400; ioaddr += 0x20 )
433
    {
434
      if ( check_region( ioaddr, HP100_REGION_SIZE ) ) continue;
435
      if ( hp100_probe1( dev, ioaddr, HP100_BUS_ISA, 0, 0 ) == 0 ) return 0;
436
    }
437
 
438
  return -ENODEV;
439
}
440
 
441
 
442
__initfunc(static int hp100_probe1( struct device *dev, int ioaddr, u_char bus, u_char pci_bus, u_char pci_device_fn ))
443
{
444
  int i;
445
 
446
  u_char uc, uc_1;
447
  u_int eisa_id;
448
  u_int chip;
449
  u_int memory_size = 0, virt_memory_size = 0;
450
  u_short local_mode, lsw;
451
  short mem_mapped;
452
  u_int *mem_ptr_phys, *mem_ptr_virt;
453
  struct hp100_private *lp;
454
  struct hp100_eisa_id *eid;
455
 
456
#ifdef HP100_DEBUG_B
457
  hp100_outw( 0x4201, TRACE );
458
  printk("hp100: %s: probe1\n",dev->name);
459
#endif
460
 
461
  if ( dev == NULL )
462
    {
463
#ifdef HP100_DEBUG
464
      printk( "hp100_probe1: %s: dev == NULL ?\n", dev->name );
465
#endif
466
      return EIO;
467
    }
468
 
469
  if ( hp100_inw( HW_ID ) != HP100_HW_ID_CASCADE )
470
    {
471
      return -ENODEV;
472
    }
473
  else
474
    {
475
      chip = hp100_inw( PAGING ) & HP100_CHIPID_MASK;
476
#ifdef HP100_DEBUG
477
      if ( chip == HP100_CHIPID_SHASTA )
478
        printk("hp100: %s: Shasta Chip detected. (This is a pre 802.12 chip)\n", dev->name);
479
      else if ( chip == HP100_CHIPID_RAINIER )
480
        printk("hp100: %s: Rainier Chip detected. (This is a pre 802.12 chip)\n", dev->name);
481
      else if ( chip == HP100_CHIPID_LASSEN )
482
        printk("hp100: %s: Lassen Chip detected.\n", dev->name);
483
      else
484
        printk("hp100: %s: Warning: Unknown CASCADE chip (id=0x%.4x).\n",dev->name,chip);
485
#endif 
486
    }
487
 
488
  dev->base_addr = ioaddr;
489
 
490
  hp100_page( ID_MAC_ADDR );
491
  for ( i = uc = eisa_id = 0; i < 4; i++ )
492
    {
493
      eisa_id >>= 8;
494
      uc_1 = hp100_inb( BOARD_ID + i );
495
      eisa_id |= uc_1 << 24;
496
      uc += uc_1;
497
    }
498
  uc += hp100_inb( BOARD_ID + 4 );
499
 
500
  if ( uc != 0xff )    /* bad checksum? */
501
    {
502
      printk("hp100_probe: %s: bad EISA ID checksum at base port 0x%x\n", dev->name, ioaddr );
503
      return -ENODEV;
504
    }
505
 
506
  for ( i=0; i < HP100_EISA_IDS_SIZE; i++)
507
    if ( hp100_eisa_ids[ i ].id == eisa_id )
508
      break;
509
  if ( i >= HP100_EISA_IDS_SIZE ) {
510
    for ( i = 0; i < HP100_EISA_IDS_SIZE; i++)
511
      if ( ( hp100_eisa_ids[ i ].id & 0xf0ffffff ) == ( eisa_id & 0xf0ffffff ) )
512
        break;
513
    if ( i >= HP100_EISA_IDS_SIZE ) {
514
      printk( "hp100_probe: %s: card at port 0x%x isn't known (id = 0x%x)\n", dev -> name, ioaddr, eisa_id );
515
        return -ENODEV;
516
    }
517
  }
518
  eid = &hp100_eisa_ids[ i ];
519
  if ( ( eid->id & 0x0f000000 ) < ( eisa_id & 0x0f000000 ) )
520
    {
521
      printk( "hp100_probe: %s: newer version of card %s at port 0x%x - unsupported\n",
522
              dev->name, eid->name, ioaddr );
523
      return -ENODEV;
524
    }
525
 
526
  for ( i = uc = 0; i < 7; i++ )
527
    uc += hp100_inb( LAN_ADDR + i );
528
  if ( uc != 0xff )
529
    {
530
      printk("hp100_probe: %s: bad lan address checksum (card %s at port 0x%x)\n",
531
             dev->name, eid->name, ioaddr );
532
      return -EIO;
533
    }
534
 
535
  /* Make sure, that all registers are correctly updated... */
536
 
537
  hp100_load_eeprom( dev, ioaddr );
538
  wait();
539
 
540
  /*
541
   * Determine driver operation mode
542
   *
543
   * Use the variable "hp100_mode" upon insmod or as kernel parameter to
544
   * force driver modes:
545
   * hp100_mode=1 -> default, use busmaster mode if configured.
546
   * hp100_mode=2 -> enable shared memory mode
547
   * hp100_mode=3 -> force use of i/o mapped mode.
548
   * hp100_mode=4 -> same as 1, but re-set the enable bit on the card.
549
   */
550
 
551
  /*
552
   * LSW values:
553
   *   0x2278 -> J2585B, PnP shared memory mode
554
   *   0x2270 -> J2585B, shared memory mode, 0xdc000
555
   *   0xa23c -> J2585B, I/O mapped mode
556
   *   0x2240 -> EISA COMPEX, BusMaster (Shasta Chip)
557
   *   0x2220 -> EISA HP, I/O (Shasta Chip)
558
   *   0x2260 -> EISA HP, BusMaster (Shasta Chip)
559
   */
560
 
561
#if 0
562
  local_mode = 0x2270;
563
  hp100_outw(0xfefe,OPTION_LSW);
564
  hp100_outw(local_mode|HP100_SET_LB|HP100_SET_HB,OPTION_LSW);
565
#endif
566
 
567
  /* hp100_mode value maybe used in future by another card */
568
  local_mode=hp100_mode;
569
  if ( local_mode < 1 || local_mode > 4 )
570
    local_mode = 1;             /* default */
571
#ifdef HP100_DEBUG
572
  printk( "hp100: %s: original LSW = 0x%x\n", dev->name, hp100_inw(OPTION_LSW) );
573
#endif
574
 
575
  if(local_mode==3)
576
    {
577
      hp100_outw(HP100_MEM_EN|HP100_RESET_LB, OPTION_LSW);
578
      hp100_outw(HP100_IO_EN|HP100_SET_LB, OPTION_LSW);
579
      hp100_outw(HP100_BM_WRITE|HP100_BM_READ|HP100_RESET_HB, OPTION_LSW);
580
      printk("hp100: %s: IO mapped mode forced.\n", dev->name);
581
    }
582
  else if(local_mode==2)
583
    {
584
      hp100_outw(HP100_MEM_EN|HP100_SET_LB, OPTION_LSW);
585
      hp100_outw(HP100_IO_EN |HP100_SET_LB, OPTION_LSW);
586
      hp100_outw(HP100_BM_WRITE|HP100_BM_READ|HP100_RESET_HB, OPTION_LSW);
587
      printk("hp100: %s: Shared memory mode requested.\n", dev->name);
588
    }
589
  else if(local_mode==4)
590
    {
591
      if(chip==HP100_CHIPID_LASSEN)
592
        {
593
          hp100_outw(HP100_BM_WRITE|
594
                     HP100_BM_READ | HP100_SET_HB, OPTION_LSW);
595
          hp100_outw(HP100_IO_EN   |
596
                     HP100_MEM_EN  | HP100_RESET_LB, OPTION_LSW);
597
          printk("hp100: %s: Busmaster mode requested.\n",dev->name);
598
        }
599
      local_mode=1;
600
    }
601
 
602
  if(local_mode==1) /* default behaviour */
603
    {
604
      lsw = hp100_inw(OPTION_LSW);
605
 
606
      if ( (lsw & HP100_IO_EN) &&
607
           (~lsw & HP100_MEM_EN) &&
608
           (~lsw & (HP100_BM_WRITE|HP100_BM_READ)) )
609
        {
610
#ifdef HP100_DEBUG
611
          printk("hp100: %s: IO_EN bit is set on card.\n",dev->name);
612
#endif
613
          local_mode=3;
614
        }
615
      else if ( chip == HP100_CHIPID_LASSEN &&
616
                ( lsw & (HP100_BM_WRITE|HP100_BM_READ) ) ==
617
                        (HP100_BM_WRITE|HP100_BM_READ) )
618
        {
619
          printk("hp100: %s: Busmaster mode enabled.\n",dev->name);
620
          hp100_outw(HP100_MEM_EN|HP100_IO_EN|HP100_RESET_LB, OPTION_LSW);
621
        }
622
      else
623
        {
624
#ifdef HP100_DEBUG
625
          printk("hp100: %s: Card not configured for BM or BM not supported with this card.\n", dev->name );
626
          printk("hp100: %s: Trying shared memory mode.\n", dev->name);
627
#endif
628
          /* In this case, try shared memory mode */
629
          local_mode=2;
630
          hp100_outw(HP100_MEM_EN|HP100_SET_LB, OPTION_LSW);
631
          /* hp100_outw(HP100_IO_EN|HP100_RESET_LB, OPTION_LSW); */
632
        }
633
    }
634
 
635
#ifdef HP100_DEBUG
636
  printk( "hp100: %s: new LSW = 0x%x\n", dev->name, hp100_inw(OPTION_LSW) );
637
#endif
638
 
639
  /* Check for shared memory on the card, eventually remap it */
640
  hp100_page( HW_MAP );
641
  mem_mapped = (( hp100_inw( OPTION_LSW ) & ( HP100_MEM_EN ) ) != 0);
642
  mem_ptr_phys = mem_ptr_virt = NULL;
643
  memory_size = (8192<<( (hp100_inb(SRAM)>>5)&0x07));
644
  virt_memory_size = 0;
645
 
646
  /* For memory mapped or busmaster mode, we want the memory address */
647
  if ( mem_mapped || (local_mode==1))
648
    {
649
      mem_ptr_phys = (u_int *)( hp100_inw( MEM_MAP_LSW ) |
650
                                ( hp100_inw( MEM_MAP_MSW ) << 16 ) );
651
      (u_int)mem_ptr_phys &= ~0x1fff;  /* 8k alignment */
652
 
653
      if ( bus == HP100_BUS_ISA && ( (u_long)mem_ptr_phys & ~0xfffff ) != 0 )
654
        {
655
          printk("hp100: %s: Can only use programmed i/o mode.\n", dev->name);
656
          mem_ptr_phys = NULL;
657
          mem_mapped = 0;
658
          local_mode=3; /* Use programmed i/o */
659
        }
660
 
661
      /* We do not need access to shared memory in busmaster mode */
662
      /* However in slave mode we need to remap high (>1GB) card memory  */
663
      if(local_mode!=1) /* = not busmaster */
664
        {
665
          if ( bus == HP100_BUS_PCI && mem_ptr_phys >= (u_int *)0x100000 )
666
            {
667
              /* We try with smaller memory sizes, if ioremap fails */
668
              for(virt_memory_size = memory_size; virt_memory_size>16383; virt_memory_size>>=1)
669
                {
670
                  if((mem_ptr_virt=ioremap((u_long)mem_ptr_phys,virt_memory_size))==NULL)
671
                    {
672
#ifdef HP100_DEBUG
673
                      printk( "hp100: %s: ioremap for 0x%x bytes high PCI memory at 0x%lx failed\n", dev->name, virt_memory_size, (u_long)mem_ptr_phys );
674
#endif
675
                    }
676
                  else
677
                    {
678
#ifdef HP100_DEBUG
679
                      printk( "hp100: %s: remapped 0x%x bytes high PCI memory at 0x%lx to 0x%lx.\n", dev->name, virt_memory_size, (u_long)mem_ptr_phys, (u_long)mem_ptr_virt);
680
#endif
681
                      break;
682
                    }
683
                }
684
 
685
              if(mem_ptr_virt==NULL) /* all ioremap tries failed */
686
                {
687
                  printk("hp100: %s: Failed to ioremap the PCI card memory. Will have to use i/o mapped mode.\n", dev->name);
688
                  local_mode=3;
689
                  virt_memory_size = 0;
690
                }
691
            }
692
        }
693
 
694
    }
695
 
696
  if(local_mode==3) /* io mapped forced */
697
    {
698
      mem_mapped = 0;
699
      mem_ptr_phys = mem_ptr_virt = NULL;
700
      printk("hp100: %s: Using (slow) programmed i/o mode.\n", dev->name);
701
    }
702
 
703
  /* Initialise the "private" data structure for this card. */
704
  if ( (dev->priv=kmalloc(sizeof(struct hp100_private), GFP_KERNEL)) == NULL)
705
    return -ENOMEM;
706
  memset( dev->priv, 0, sizeof(struct hp100_private) );
707
 
708
  lp = (struct hp100_private *)dev->priv;
709
  lp->id = eid;
710
  lp->chip = chip;
711
  lp->mode = local_mode;
712
  lp->pci_bus = pci_bus;
713
  lp->bus = bus;
714
  lp->pci_device_fn = pci_device_fn;
715
  lp->priority_tx = hp100_priority_tx;
716
  lp->rx_ratio = hp100_rx_ratio;
717
  lp->mem_ptr_phys = mem_ptr_phys;
718
  lp->mem_ptr_virt = mem_ptr_virt;
719
  hp100_page( ID_MAC_ADDR );
720
  lp->soft_model = hp100_inb( SOFT_MODEL );
721
  lp->mac1_mode = HP100_MAC1MODE3;
722
  lp->mac2_mode = HP100_MAC2MODE3;
723
  memset( &lp->hash_bytes, 0x00, 8 );
724
 
725
  dev->base_addr = ioaddr;
726
 
727
  lp->memory_size = memory_size;
728
  lp->virt_memory_size = virt_memory_size;
729
  lp->rx_ratio = hp100_rx_ratio; /* can be conf'd with insmod */
730
 
731
  /* memory region for programmed i/o */
732
  request_region( dev->base_addr, HP100_REGION_SIZE, eid->name );
733
 
734
  dev->open = hp100_open;
735
  dev->stop = hp100_close;
736
 
737
  if (lp->mode==1) /* busmaster */
738
    dev->hard_start_xmit = hp100_start_xmit_bm;
739
  else
740
    dev->hard_start_xmit = hp100_start_xmit;
741
 
742
  dev->get_stats = hp100_get_stats;
743
  dev->set_multicast_list = &hp100_set_multicast_list;
744
 
745
  /* Ask the card for which IRQ line it is configured */
746
  hp100_page( HW_MAP );
747
  dev->irq = hp100_inb( IRQ_CHANNEL ) & HP100_IRQMASK;
748
  if ( dev->irq == 2 )
749
    dev->irq = 9;
750
 
751
  if(lp->mode==1) /* busmaster */
752
    dev->dma=4;
753
 
754
  /* Ask the card for its MAC address and store it for later use. */
755
  hp100_page( ID_MAC_ADDR );
756
  for ( i = uc = 0; i < 6; i++ )
757
    dev->dev_addr[ i ] = hp100_inb( LAN_ADDR + i );
758
 
759
  /* Reset statistics (counters) */
760
  hp100_clear_stats( ioaddr );
761
 
762
  ether_setup( dev );
763
 
764
  /* If busmaster mode is wanted, a dma-capable memory area is needed for
765
   * the rx and tx PDLs
766
   * PCI cards can access the whole PC memory. Therefore GFP_DMA is not
767
   * needed for the allocation of the memory area.
768
   */
769
 
770
  /* TODO: We do not need this with old cards, where PDLs are stored
771
   * in the cards shared memory area. But currently, busmaster has been
772
   * implemented/tested only with the lassen chip anyway... */
773
  if(lp->mode==1) /* busmaster */
774
    {
775
      /* Get physically continous memory for TX & RX PDLs    */
776
      if ( (lp->page_vaddr=kmalloc(MAX_RINGSIZE+0x0f,GFP_KERNEL) ) == NULL)
777
        return -ENOMEM;
778
      lp->page_vaddr_algn=((u_int *) ( ((u_int)(lp->page_vaddr)+0x0f) &~0x0f));
779
      memset(lp->page_vaddr, 0, MAX_RINGSIZE+0x0f);
780
 
781
#ifdef HP100_DEBUG_BM
782
      printk("hp100: %s: Reserved DMA memory from 0x%x to 0x%x\n",
783
             dev->name,
784
             (u_int)lp->page_vaddr_algn,
785
             (u_int)lp->page_vaddr_algn+MAX_RINGSIZE);
786
#endif
787
      lp->rxrcommit  = lp->txrcommit = 0;
788
      lp->rxrhead    = lp->rxrtail   = &(lp->rxring[0]);
789
      lp->txrhead    = lp->txrtail   = &(lp->txring[0]);
790
    }
791
 
792
  /* Initialise the card. */
793
  /* (I'm not really sure if it's a good idea to do this during probing, but
794
   * like this it's assured that the lan connection type can be sensed
795
   * correctly)
796
   */
797
  hp100_hwinit( dev );
798
 
799
  /* Try to find out which kind of LAN the card is connected to. */
800
  lp->lan_type = hp100_sense_lan( dev );
801
 
802
  /* Print out a message what about what we think we have probed. */
803
  printk( "hp100: %s: %s at 0x%x, IRQ %d, ",
804
          dev->name, lp->id->name, ioaddr, dev->irq );
805
  switch ( bus ) {
806
  case HP100_BUS_EISA: printk( "EISA" ); break;
807
  case HP100_BUS_PCI:  printk( "PCI" );  break;
808
  default:     printk( "ISA" );  break;
809
  }
810
  printk( " bus, %dk SRAM (rx/tx %d%%).\n",
811
          lp->memory_size >> 10, lp->rx_ratio );
812
 
813
  if ( lp->mode==2 ) /* memory mapped */
814
    {
815
      printk( "hp100: %s: Memory area at 0x%lx-0x%lx",
816
              dev->name,(u_long)mem_ptr_phys,
817
              ((u_long)mem_ptr_phys+(mem_ptr_phys>(u_int *)0x100000?(u_long)lp->memory_size:16*1024))-1 );
818
      if ( mem_ptr_virt )
819
        printk( " (virtual base 0x%lx)", (u_long)mem_ptr_virt );
820
      printk( ".\n" );
821
 
822
      /* Set for info when doing ifconfig */
823
      dev->mem_start = (u_long)mem_ptr_phys;
824
      dev->mem_end = (u_long)mem_ptr_phys+(u_long)lp->memory_size;
825
    }
826
  printk( "hp100: %s: ", dev->name );
827
  if ( lp->lan_type != HP100_LAN_ERR )
828
    printk( "Adapter is attached to " );
829
  switch ( lp->lan_type ) {
830
  case HP100_LAN_100:
831
    printk( "100Mb/s Voice Grade AnyLAN network.\n" );
832
    break;
833
  case HP100_LAN_10:
834
    printk( "10Mb/s network.\n" );
835
    break;
836
  default:
837
    printk( "Warning! Link down.\n" );
838
  }
839
 
840
  return 0;
841
}
842
 
843
 
844
/* This procedure puts the card into a stable init state */
845
static void hp100_hwinit( struct device *dev )
846
{
847
  int ioaddr = dev->base_addr;
848
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
849
 
850
#ifdef HP100_DEBUG_B
851
  hp100_outw( 0x4202, TRACE );
852
  printk("hp100: %s: hwinit\n", dev->name);
853
#endif
854
 
855
  /* Initialise the card. -------------------------------------------- */
856
 
857
  /* Clear all pending Ints and disable Ints */
858
  hp100_page( PERFORMANCE );
859
  hp100_outw( 0xfefe, IRQ_MASK );    /* mask off all ints */
860
  hp100_outw( 0xffff, IRQ_STATUS );  /* clear all pending ints */
861
 
862
  hp100_outw( HP100_INT_EN | HP100_RESET_LB, OPTION_LSW );
863
  hp100_outw( HP100_TRI_INT | HP100_SET_HB, OPTION_LSW );
864
 
865
  if(lp->mode==1)
866
    {
867
      hp100_BM_shutdown( dev ); /* disables BM, puts cascade in reset */
868
      wait();
869
    }
870
  else
871
    {
872
      hp100_outw( HP100_INT_EN | HP100_RESET_LB, OPTION_LSW );
873
      hp100_cascade_reset( dev, TRUE );
874
      hp100_page( MAC_CTRL );
875
      hp100_andb( ~(HP100_RX_EN|HP100_TX_EN), MAC_CFG_1);
876
    }
877
 
878
  /* Initiate EEPROM reload */
879
  hp100_load_eeprom( dev, 0 );
880
 
881
  wait();
882
 
883
  /* Go into reset again. */
884
  hp100_cascade_reset( dev, TRUE );
885
 
886
  /* Set Option Registers to a safe state  */
887
  hp100_outw( HP100_DEBUG_EN |
888
              HP100_RX_HDR   |
889
              HP100_EE_EN    |
890
              HP100_BM_WRITE |
891
              HP100_BM_READ  | HP100_RESET_HB |
892
              HP100_FAKE_INT |
893
              HP100_INT_EN   |
894
              HP100_MEM_EN   |
895
              HP100_IO_EN    | HP100_RESET_LB, OPTION_LSW);
896
 
897
  hp100_outw( HP100_TRI_INT  |
898
              HP100_MMAP_DIS | HP100_SET_HB, OPTION_LSW );
899
 
900
  hp100_outb( HP100_PRIORITY_TX |
901
              HP100_ADV_NXT_PKT |
902
              HP100_TX_CMD      | HP100_RESET_LB, OPTION_MSW );
903
 
904
  /* TODO: Configure MMU for Ram Test. */
905
  /* TODO: Ram Test. */
906
 
907
  /* Re-check if adapter is still at same i/o location      */
908
  /* (If the base i/o in eeprom has been changed but the    */
909
  /* registers had not been changed, a reload of the eeprom */
910
  /* would move the adapter to the address stored in eeprom */
911
 
912
  /* TODO: Code to implement. */
913
 
914
  /* Until here it was code from HWdiscover procedure. */
915
  /* Next comes code from mmuinit procedure of SCO BM driver which is
916
   * called from HWconfigure in the SCO driver.  */
917
 
918
  /* Initialise MMU, eventually switch on Busmaster Mode, initialise
919
   * multicast filter...
920
   */
921
  hp100_mmuinit( dev );
922
 
923
  /* We don't turn the interrupts on here - this is done by start_interface. */
924
  wait(); /* TODO: Do we really need this? */
925
 
926
  /* Enable Hardware (e.g. unreset) */
927
  hp100_cascade_reset( dev, FALSE );
928
 
929
  /* ------- initialisation complete ----------- */
930
 
931
  /* Finally try to log in the Hub if there may be a VG connection. */
932
  if( lp->lan_type != HP100_LAN_10 )
933
    hp100_login_to_vg_hub( dev, FALSE ); /* relogin */
934
}
935
 
936
 
937
/*
938
 * mmuinit - Reinitialise Cascade MMU and MAC settings.
939
 * Note: Must already be in reset and leaves card in reset.
940
 */
941
static void hp100_mmuinit( struct device *dev )
942
{
943
  int ioaddr = dev->base_addr;
944
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
945
  int i;
946
 
947
#ifdef HP100_DEBUG_B
948
  hp100_outw( 0x4203, TRACE );
949
  printk("hp100: %s: mmuinit\n",dev->name);
950
#endif
951
 
952
#ifdef HP100_DEBUG
953
  if( 0!=(hp100_inw(OPTION_LSW)&HP100_HW_RST) )
954
    {
955
      printk("hp100: %s: Not in reset when entering mmuinit. Fix me.\n",dev->name);
956
      return;
957
    }
958
#endif
959
 
960
  /* Make sure IRQs are masked off and ack'ed. */
961
  hp100_page( PERFORMANCE );
962
  hp100_outw( 0xfefe, IRQ_MASK );  /* mask off all ints */
963
  hp100_outw( 0xffff, IRQ_STATUS );  /* ack IRQ */
964
 
965
  /*
966
   * Enable Hardware
967
   * - Clear Debug En, Rx Hdr Pipe, EE En, I/O En, Fake Int and Intr En
968
   * - Set Tri-State Int, Bus Master Rd/Wr, and Mem Map Disable
969
   * - Clear Priority, Advance Pkt and Xmit Cmd
970
   */
971
 
972
  hp100_outw( HP100_DEBUG_EN |
973
              HP100_RX_HDR   |
974
              HP100_EE_EN    | HP100_RESET_HB |
975
              HP100_IO_EN    |
976
              HP100_FAKE_INT |
977
              HP100_INT_EN   | HP100_RESET_LB, OPTION_LSW );
978
 
979
  hp100_outw( HP100_TRI_INT | HP100_SET_HB, OPTION_LSW);
980
 
981
  if(lp->mode==1) /* busmaster */
982
    {
983
      hp100_outw( HP100_BM_WRITE |
984
                  HP100_BM_READ  |
985
                  HP100_MMAP_DIS | HP100_SET_HB, OPTION_LSW );
986
    }
987
  else if(lp->mode==2) /* memory mapped */
988
    {
989
      hp100_outw( HP100_BM_WRITE |
990
                  HP100_BM_READ  | HP100_RESET_HB, OPTION_LSW );
991
      hp100_outw( HP100_MMAP_DIS | HP100_RESET_HB, OPTION_LSW );
992
      hp100_outw( HP100_MEM_EN | HP100_SET_LB, OPTION_LSW );
993
      hp100_outw( HP100_IO_EN | HP100_SET_LB, OPTION_LSW );
994
    }
995
  else if( lp->mode==3 ) /* i/o mapped mode */
996
    {
997
      hp100_outw( HP100_MMAP_DIS | HP100_SET_HB |
998
                  HP100_IO_EN    | HP100_SET_LB, OPTION_LSW );
999
    }
1000
 
1001
  hp100_page( HW_MAP );
1002
  hp100_outb( 0, EARLYRXCFG );
1003
  hp100_outw( 0, EARLYTXCFG );
1004
 
1005
  /*
1006
   * Enable Bus Master mode
1007
   */
1008
  if(lp->mode==1) /* busmaster */
1009
    {
1010
      /* Experimental: Set some PCI configuration bits */
1011
      hp100_page( HW_MAP );
1012
      hp100_andb( ~HP100_PDL_USE3, MODECTRL1 ); /* BM engine read maximum */
1013
      hp100_andb( ~HP100_TX_DUALQ, MODECTRL1 ); /* No Queue for Priority TX */
1014
 
1015
      /* PCI Bus failures should result in a Misc. Interrupt */
1016
      hp100_orb( HP100_EN_BUS_FAIL, MODECTRL2);
1017
 
1018
      hp100_outw( HP100_BM_READ | HP100_BM_WRITE | HP100_SET_HB, OPTION_LSW );
1019
      hp100_page( HW_MAP );
1020
      /* Use Burst Mode and switch on PAGE_CK */
1021
      hp100_orb( HP100_BM_BURST_RD |
1022
                 HP100_BM_BURST_WR, BM);
1023
      if((lp->chip==HP100_CHIPID_RAINIER)||(lp->chip==HP100_CHIPID_SHASTA))
1024
        hp100_orb( HP100_BM_PAGE_CK, BM );
1025
      hp100_orb( HP100_BM_MASTER, BM );
1026
    }
1027
  else /* not busmaster */
1028
    {
1029
      hp100_page(HW_MAP);
1030
      hp100_andb(~HP100_BM_MASTER, BM );
1031
    }
1032
 
1033
  /*
1034
   * Divide card memory into regions for Rx, Tx and, if non-ETR chip, PDLs
1035
   */
1036
  hp100_page( MMU_CFG );
1037
  if(lp->mode==1) /* only needed for Busmaster */
1038
    {
1039
      int xmit_stop, recv_stop;
1040
 
1041
      if((lp->chip==HP100_CHIPID_RAINIER)||(lp->chip==HP100_CHIPID_SHASTA))
1042
        {
1043
          int pdl_stop;
1044
 
1045
          /*
1046
           * Each pdl is 508 bytes long. (63 frags * 4 bytes for address and
1047
           * 4 bytes for header). We will leave NUM_RXPDLS * 508 (rounded
1048
           * to the next higher 1k boundary) bytes for the rx-pdl's
1049
           * Note: For non-etr chips the transmit stop register must be
1050
           * programmed on a 1k boundary, i.e. bits 9:0 must be zero.
1051
           */
1052
          pdl_stop  = lp->memory_size;
1053
          xmit_stop = ( pdl_stop-508*(MAX_RX_PDL)-16 )& ~(0x03ff);
1054
          recv_stop = ( xmit_stop * (lp->rx_ratio)/100 ) &~(0x03ff);
1055
          hp100_outw( (pdl_stop>>4)-1, PDL_MEM_STOP );
1056
#ifdef HP100_DEBUG_BM
1057
          printk("hp100: %s: PDL_STOP = 0x%x\n", dev->name, pdl_stop);
1058
#endif
1059
        }
1060
      else /* ETR chip (Lassen) in busmaster mode */
1061
        {
1062
          xmit_stop = ( lp->memory_size ) - 1;
1063
          recv_stop = ( ( lp->memory_size * lp->rx_ratio ) / 100 ) & ~(0x03ff);
1064
        }
1065
 
1066
      hp100_outw( xmit_stop>>4 , TX_MEM_STOP );
1067
      hp100_outw( recv_stop>>4 , RX_MEM_STOP );
1068
#ifdef HP100_DEBUG_BM
1069
      printk("hp100: %s: TX_STOP  = 0x%x\n",dev->name,xmit_stop>>4);
1070
      printk("hp100: %s: RX_STOP  = 0x%x\n",dev->name,recv_stop>>4);
1071
#endif
1072
    }
1073
  else /* Slave modes (memory mapped and programmed io)  */
1074
    {
1075
      hp100_outw( (((lp->memory_size*lp->rx_ratio)/100)>>4), RX_MEM_STOP );
1076
      hp100_outw( ((lp->memory_size - 1 )>>4), TX_MEM_STOP );
1077
#ifdef HP100_DEBUG
1078
      printk("hp100: %s: TX_MEM_STOP: 0x%x\n", dev->name,hp100_inw(TX_MEM_STOP));
1079
      printk("hp100: %s: RX_MEM_STOP: 0x%x\n", dev->name,hp100_inw(RX_MEM_STOP));
1080
#endif
1081
    }
1082
 
1083
  /* Write MAC address into page 1 */
1084
  hp100_page( MAC_ADDRESS );
1085
  for ( i = 0; i < 6; i++ )
1086
    hp100_outb( dev->dev_addr[ i ], MAC_ADDR + i );
1087
 
1088
  /* Zero the multicast hash registers */
1089
  for ( i = 0; i < 8; i++ )
1090
    hp100_outb( 0x0, HASH_BYTE0 + i );
1091
 
1092
  /* Set up MAC defaults */
1093
  hp100_page( MAC_CTRL );
1094
 
1095
  /* Go to LAN Page and zero all filter bits */
1096
  /* Zero accept error, accept multicast, accept broadcast and accept */
1097
  /* all directed packet bits */
1098
  hp100_andb( ~(HP100_RX_EN|
1099
                HP100_TX_EN|
1100
                HP100_ACC_ERRORED|
1101
                HP100_ACC_MC|
1102
                HP100_ACC_BC|
1103
                HP100_ACC_PHY),   MAC_CFG_1 );
1104
 
1105
  hp100_outb( 0x00, MAC_CFG_2 );
1106
 
1107
  /* Zero the frame format bit. This works around a training bug in the */
1108
  /* new hubs. */
1109
  hp100_outb( 0x00, VG_LAN_CFG_2); /* (use 802.3) */
1110
 
1111
  if(lp->priority_tx)
1112
    hp100_outb( HP100_PRIORITY_TX | HP100_SET_LB, OPTION_MSW );
1113
  else
1114
    hp100_outb( HP100_PRIORITY_TX | HP100_RESET_LB, OPTION_MSW );
1115
 
1116
  hp100_outb( HP100_ADV_NXT_PKT |
1117
              HP100_TX_CMD      | HP100_RESET_LB, OPTION_MSW );
1118
 
1119
  /* If busmaster, initialize the PDLs */
1120
  if(lp->mode==1)
1121
    hp100_init_pdls( dev );
1122
 
1123
  /* Go to performance page and initalize isr and imr registers */
1124
  hp100_page( PERFORMANCE );
1125
  hp100_outw( 0xfefe, IRQ_MASK );  /* mask off all ints */
1126
  hp100_outw( 0xffff, IRQ_STATUS );  /* ack IRQ */
1127
}
1128
 
1129
 
1130
/*
1131
 *  open/close functions
1132
 */
1133
 
1134
static int hp100_open( struct device *dev )
1135
{
1136
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
1137
#ifdef HP100_DEBUG_B
1138
  int ioaddr=dev->base_addr;
1139
#endif
1140
 
1141
#ifdef HP100_DEBUG_B
1142
  hp100_outw( 0x4204, TRACE );
1143
  printk("hp100: %s: open\n",dev->name);
1144
#endif
1145
 
1146
  /* New: if bus is PCI or EISA, interrupts might be shared interrupts */
1147
  if ( request_irq(dev->irq, hp100_interrupt,
1148
                   lp->bus==HP100_BUS_PCI||lp->bus==HP100_BUS_EISA?SA_SHIRQ:SA_INTERRUPT,
1149
                   lp->id->name, dev))
1150
    {
1151
      printk( "hp100: %s: unable to get IRQ %d\n", dev->name, dev->irq );
1152
      return -EAGAIN;
1153
    }
1154
 
1155
  MOD_INC_USE_COUNT;
1156
 
1157
  dev->tbusy = 0;
1158
  dev->trans_start = jiffies;
1159
  dev->interrupt = 0;
1160
  dev->start = 1;
1161
 
1162
  lp->lan_type = hp100_sense_lan( dev );
1163
  lp->mac1_mode = HP100_MAC1MODE3;
1164
  lp->mac2_mode = HP100_MAC2MODE3;
1165
  memset( &lp->hash_bytes, 0x00, 8 );
1166
 
1167
  hp100_stop_interface( dev );
1168
 
1169
  hp100_hwinit( dev );
1170
 
1171
  hp100_start_interface( dev ); /* sets mac modes, enables interrupts */
1172
 
1173
  return 0;
1174
}
1175
 
1176
 
1177
/* The close function is called when the interface is to be brought down */
1178
static int hp100_close( struct device *dev )
1179
{
1180
  int ioaddr = dev->base_addr;
1181
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
1182
 
1183
#ifdef HP100_DEBUG_B
1184
  hp100_outw( 0x4205, TRACE );
1185
  printk("hp100: %s: close\n", dev->name);
1186
#endif
1187
 
1188
  hp100_page( PERFORMANCE );
1189
  hp100_outw( 0xfefe, IRQ_MASK );    /* mask off all IRQs */
1190
 
1191
  hp100_stop_interface( dev );
1192
 
1193
  if ( lp->lan_type == HP100_LAN_100 )
1194
    lp->hub_status=hp100_login_to_vg_hub( dev, FALSE );
1195
 
1196
  dev->tbusy = 1;
1197
  dev->start = 0;
1198
 
1199
  free_irq( dev->irq, dev );
1200
 
1201
#ifdef HP100_DEBUG
1202
  printk( "hp100: %s: close LSW = 0x%x\n", dev->name, hp100_inw(OPTION_LSW) );
1203
#endif
1204
 
1205
  MOD_DEC_USE_COUNT;
1206
  return 0;
1207
}
1208
 
1209
 
1210
/*
1211
 * Configure the PDL Rx rings and LAN
1212
 */
1213
static void hp100_init_pdls( struct device *dev )
1214
{
1215
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
1216
  hp100_ring_t         *ringptr;
1217
  u_int                *pageptr;
1218
  int                  i;
1219
 
1220
#ifdef HP100_DEBUG_B
1221
  int ioaddr = dev->base_addr;
1222
#endif
1223
 
1224
#ifdef HP100_DEBUG_B
1225
  hp100_outw( 0x4206, TRACE );
1226
  printk("hp100: %s: init pdls\n", dev->name);
1227
#endif
1228
 
1229
  if(0==lp->page_vaddr_algn)
1230
    printk("hp100: %s: Warning: lp->page_vaddr_algn not initialised!\n",dev->name);
1231
  else
1232
    {
1233
      /* pageptr shall point into the DMA accessible memory region  */
1234
      /* we use this pointer to status the upper limit of allocated */
1235
      /* memory in the allocated page. */
1236
      /* note: align the pointers to the pci cache line size */
1237
      memset(lp->page_vaddr_algn, 0, MAX_RINGSIZE); /* Zero  Rx/Tx ring page */
1238
      pageptr=lp->page_vaddr_algn;
1239
 
1240
      lp->rxrcommit =0;
1241
      ringptr = lp->rxrhead = lp-> rxrtail = &(lp->rxring[0]);
1242
 
1243
      /* Initialise Rx Ring */
1244
      for (i=MAX_RX_PDL-1; i>=0; i--)
1245
        {
1246
          lp->rxring[i].next = ringptr;
1247
          ringptr=&(lp->rxring[i]);
1248
          pageptr+=hp100_init_rxpdl(dev, ringptr, pageptr);
1249
        }
1250
 
1251
      /* Initialise Tx Ring */
1252
      lp->txrcommit = 0;
1253
      ringptr = lp->txrhead = lp->txrtail = &(lp->txring[0]);
1254
      for (i=MAX_TX_PDL-1; i>=0; i--)
1255
        {
1256
          lp->txring[i].next = ringptr;
1257
          ringptr=&(lp->txring[i]);
1258
          pageptr+=hp100_init_txpdl(dev, ringptr, pageptr);
1259
        }
1260
    }
1261
}
1262
 
1263
 
1264
/* These functions "format" the entries in the pdl structure   */
1265
/* They return how much memory the fragments need.            */
1266
static int hp100_init_rxpdl( struct device *dev, register hp100_ring_t *ringptr, register u32 *pdlptr )
1267
{
1268
  /* pdlptr is starting adress for this pdl */
1269
 
1270
  if( 0!=( ((unsigned)pdlptr) & 0xf) )
1271
    printk("hp100: %s: Init rxpdl: Unaligned pdlptr 0x%x.\n",dev->name,(unsigned)pdlptr);
1272
 
1273
  ringptr->pdl       = pdlptr+1;
1274
  ringptr->pdl_paddr = virt_to_bus(pdlptr+1);
1275
  ringptr->skb       = (void *) NULL;
1276
 
1277
  /*
1278
   * Write address and length of first PDL Fragment (which is used for
1279
   * storing the RX-Header
1280
   * We use the 4 bytes _before_ the PDH in the pdl memory area to
1281
   * store this information. (PDH is at offset 0x04)
1282
   */
1283
  /* Note that pdlptr+1 and not pdlptr is the pointer to the PDH */
1284
 
1285
  *(pdlptr+2) =(u_int) virt_to_bus(pdlptr);  /* Address Frag 1 */
1286
  *(pdlptr+3) = 4;                           /* Length  Frag 1 */
1287
 
1288
  return( ( ((MAX_RX_FRAG*2+2)+3) /4)*4 );
1289
}
1290
 
1291
 
1292
static int hp100_init_txpdl( struct device *dev, register hp100_ring_t *ringptr, register u32 *pdlptr )
1293
{
1294
  if( 0!=( ((unsigned)pdlptr) & 0xf) )
1295
    printk("hp100: %s: Init txpdl: Unaligned pdlptr 0x%x.\n",dev->name,(unsigned) pdlptr);
1296
 
1297
  ringptr->pdl       = pdlptr; /* +1; */
1298
  ringptr->pdl_paddr = virt_to_bus(pdlptr); /* +1 */
1299
  ringptr->skb = (void *) NULL;
1300
 
1301
  return((((MAX_TX_FRAG*2+2)+3)/4)*4);
1302
}
1303
 
1304
 
1305
/*
1306
 * hp100_build_rx_pdl allocates an skb_buff of maximum size plus two bytes
1307
 * for possible odd word alignment rounding up to next dword and set PDL
1308
 * address for fragment#2
1309
 * Returns: 0 if unable to allocate skb_buff
1310
 *          1 if successful
1311
 */
1312
int hp100_build_rx_pdl( hp100_ring_t *ringptr, struct device *dev )
1313
{
1314
#ifdef HP100_DEBUG_B
1315
  int ioaddr = dev->base_addr;
1316
#endif
1317
#ifdef HP100_DEBUG_BM
1318
  u_int *p;
1319
#endif
1320
 
1321
#ifdef HP100_DEBUG_B
1322
  hp100_outw( 0x4207, TRACE );
1323
  printk("hp100: %s: build rx pdl\n", dev->name);
1324
#endif
1325
 
1326
  /* Allocate skb buffer of maximum size */
1327
  /* Note: This depends on the alloc_skb functions allocating more
1328
   * space than requested, i.e. aligning to 16bytes */
1329
 
1330
  ringptr->skb = dev_alloc_skb( ((MAX_ETHER_SIZE+2+3)/4)*4 );
1331
 
1332
  if(NULL!=ringptr->skb)
1333
    {
1334
      /*
1335
       * Reserve 2 bytes at the head of the buffer to land the IP header
1336
       * on a long word boundary (According to the Network Driver section
1337
       * in the Linux KHG, this should help to increase performance.)
1338
       */
1339
      skb_reserve(ringptr->skb, 2);
1340
 
1341
      ringptr->skb->dev=dev;
1342
      ringptr->skb->data=(u_char *)skb_put(ringptr->skb, MAX_ETHER_SIZE );
1343
 
1344
      /* ringptr->pdl points to the beginning of the PDL, i.e. the PDH */
1345
      /* Note: 1st Fragment is used for the 4 byte packet status
1346
       * (receive header). Its PDL entries are set up by init_rxpdl. So
1347
       * here we only have to set up the PDL fragment entries for the data
1348
       * part. Those 4 bytes will be stored in the DMA memory region
1349
       * directly before the PDL.
1350
       */
1351
#ifdef HP100_DEBUG_BM
1352
      printk("hp100: %s: build_rx_pdl: PDH@0x%x, skb->data (len %d) at 0x%x\n",
1353
             dev->name,
1354
             (u_int) ringptr->pdl,
1355
             ((MAX_ETHER_SIZE+2+3)/4)*4,
1356
             (unsigned int) ringptr->skb->data);
1357
#endif
1358
 
1359
      ringptr->pdl[0] = 0x00020000;                          /* Write PDH */
1360
      ringptr->pdl[3] = ((u_int)virt_to_bus(ringptr->skb->data));
1361
      ringptr->pdl[4] = MAX_ETHER_SIZE;                 /* Length of Data */
1362
 
1363
#ifdef HP100_DEBUG_BM
1364
      for(p=(ringptr->pdl); p<(ringptr->pdl+5); p++)
1365
        printk("hp100: %s: Adr 0x%.8x = 0x%.8x\n",dev->name,(u_int) p,(u_int) *p );
1366
#endif
1367
      return(1);
1368
    }
1369
  /* else: */
1370
  /* alloc_skb failed (no memory) -> still can receive the header
1371
   * fragment into PDL memory. make PDL safe by clearing msgptr and
1372
   * making the PDL only 1 fragment (i.e. the 4 byte packet status)
1373
   */
1374
#ifdef HP100_DEBUG_BM
1375
  printk("hp100: %s: build_rx_pdl: PDH@0x%x, No space for skb.\n",
1376
         dev->name,
1377
         (u_int) ringptr->pdl);
1378
#endif
1379
 
1380
  ringptr->pdl[0]=0x00010000;   /* PDH: Count=1 Fragment */
1381
 
1382
  return(0);
1383
}
1384
 
1385
 
1386
/*
1387
 *  hp100_rxfill - attempt to fill the Rx Ring will empty skb's
1388
 *
1389
 * Makes assumption that skb's are always contiguous memory areas and
1390
 * therefore PDLs contain only 2 physical fragments.
1391
 * -  While the number of Rx PDLs with buffers is less than maximum
1392
 *      a.  Get a maximum packet size skb
1393
 *      b.  Put the physical address of the buffer into the PDL.
1394
 *      c.  Output physical address of PDL to adapter.
1395
 */
1396
static void hp100_rxfill( struct device *dev )
1397
{
1398
  int ioaddr=dev->base_addr;
1399
 
1400
  struct hp100_private  *lp      = (struct hp100_private *)dev->priv;
1401
  hp100_ring_t    *ringptr;
1402
 
1403
#ifdef HP100_DEBUG_B
1404
  hp100_outw( 0x4208, TRACE );
1405
  printk("hp100: %s: rxfill\n",dev->name);
1406
#endif
1407
 
1408
  hp100_page( PERFORMANCE );
1409
 
1410
  while (lp->rxrcommit < MAX_RX_PDL)
1411
    {
1412
      /*
1413
      ** Attempt to get a buffer and build a Rx PDL.
1414
      */
1415
      ringptr = lp->rxrtail;
1416
      if (0 == hp100_build_rx_pdl( ringptr, dev ))
1417
        {
1418
          return;      /* None available, return */
1419
        }
1420
 
1421
      /* Hand this PDL over to the card */
1422
      /* Note: This needs performance page selected! */
1423
#ifdef HP100_DEBUG_BM
1424
      printk("hp100: %s: rxfill: Hand to card: pdl #%d @0x%x phys:0x%x, buffer: 0x%x\n",
1425
             dev->name,
1426
             lp->rxrcommit,
1427
             (u_int)ringptr->pdl,
1428
             (u_int)ringptr->pdl_paddr,
1429
             (u_int)ringptr->pdl[3]);
1430
#endif
1431
 
1432
      hp100_outl( (u32)ringptr->pdl_paddr, RX_PDA);
1433
 
1434
      lp->rxrcommit += 1;
1435
      lp->rxrtail = ringptr->next;
1436
    }
1437
}
1438
 
1439
 
1440
/*
1441
 * BM_shutdown - shutdown bus mastering and leave chip in reset state
1442
 */
1443
 
1444
static void hp100_BM_shutdown( struct device *dev )
1445
{
1446
  int ioaddr = dev->base_addr;
1447
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
1448
  unsigned long time;
1449
 
1450
#ifdef HP100_DEBUG_B
1451
  hp100_outw( 0x4209, TRACE );
1452
  printk("hp100: %s: bm shutdown\n",dev->name);
1453
#endif
1454
 
1455
  hp100_page( PERFORMANCE );
1456
  hp100_outw( 0xfefe, IRQ_MASK ); /* mask off all ints */
1457
  hp100_outw( 0xffff, IRQ_STATUS ); /* Ack all ints */
1458
 
1459
  /* Ensure Interrupts are off */
1460
  hp100_outw( HP100_INT_EN | HP100_RESET_LB , OPTION_LSW );
1461
 
1462
  /* Disable all MAC activity */
1463
  hp100_page( MAC_CTRL );
1464
  hp100_andb( ~(HP100_RX_EN | HP100_TX_EN), MAC_CFG_1 );  /* stop rx/tx */
1465
 
1466
  /* If cascade MMU is not already in reset */
1467
  if (0 != (hp100_inw(OPTION_LSW)&HP100_HW_RST) )
1468
    {
1469
      /* Wait 1.3ms (10Mb max packet time) to ensure MAC is idle so
1470
       * MMU pointers will not be reset out from underneath
1471
       */
1472
      hp100_page( MAC_CTRL );
1473
      for(time=0; time<5000; time++)
1474
        {
1475
          if( (hp100_inb(MAC_CFG_1)&(HP100_TX_IDLE|HP100_RX_IDLE))==
1476
              (HP100_TX_IDLE|HP100_RX_IDLE) ) break;
1477
        }
1478
 
1479
      /* Shutdown algorithm depends on the generation of Cascade */
1480
      if( lp->chip==HP100_CHIPID_LASSEN )
1481
        { /* ETR shutdown/reset */
1482
          /* Disable Busmaster mode and wait for bit to go to zero. */
1483
          hp100_page(HW_MAP);
1484
          hp100_andb( ~HP100_BM_MASTER, BM );
1485
          /* 100 ms timeout */
1486
          for(time=0; time<32000; time++)
1487
            {
1488
              if ( 0 == (hp100_inb( BM ) & HP100_BM_MASTER) ) break;
1489
            }
1490
        }
1491
      else
1492
        { /* Shasta or Rainier Shutdown/Reset */
1493
          /* To ensure all bus master inloading activity has ceased,
1494
           * wait for no Rx PDAs or no Rx packets on card.
1495
           */
1496
          hp100_page( PERFORMANCE );
1497
          /* 100 ms timeout */
1498
          for(time=0; time<10000; time++)
1499
            {
1500
              /* RX_PDL: PDLs not executed. */
1501
              /* RX_PKT_CNT: RX'd packets on card. */
1502
              if ( (hp100_inb( RX_PDL ) == 0) &&
1503
                   (hp100_inb( RX_PKT_CNT ) == 0) ) break;
1504
            }
1505
 
1506
          if(time>=10000)
1507
            printk("hp100: %s: BM shutdown error.\n", dev->name);
1508
 
1509
          /* To ensure all bus master outloading activity has ceased,
1510
           * wait until the Tx PDA count goes to zero or no more Tx space
1511
           * available in the Tx region of the card.
1512
           */
1513
          /* 100 ms timeout */
1514
          for(time=0; time<10000; time++) {
1515
            if ( (0 == hp100_inb( TX_PKT_CNT )) &&
1516
                 (0 != (hp100_inb( TX_MEM_FREE )&HP100_AUTO_COMPARE))) break;
1517
          }
1518
 
1519
          /* Disable Busmaster mode */
1520
          hp100_page(HW_MAP);
1521
          hp100_andb( ~HP100_BM_MASTER, BM );
1522
        } /* end of shutdown procedure for non-etr parts */
1523
 
1524
      hp100_cascade_reset( dev, TRUE );
1525
    }
1526
  hp100_page( PERFORMANCE );
1527
  /* hp100_outw( HP100_BM_READ | HP100_BM_WRITE | HP100_RESET_HB, OPTION_LSW ); */
1528
  /* Busmaster mode should be shut down now. */
1529
}
1530
 
1531
 
1532
 
1533
/*
1534
 *  transmit functions
1535
 */
1536
 
1537
/* tx function for busmaster mode */
1538
static int hp100_start_xmit_bm( struct sk_buff *skb, struct device *dev )
1539
{
1540
  unsigned long flags;
1541
  int i, ok_flag;
1542
  int ioaddr = dev->base_addr;
1543
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
1544
  hp100_ring_t *ringptr;
1545
 
1546
#ifdef HP100_DEBUG_B
1547
  hp100_outw( 0x4210, TRACE );
1548
  printk("hp100: %s: start_xmit_bm\n",dev->name);
1549
#endif
1550
 
1551
  if ( skb==NULL )
1552
    {
1553
#ifndef LINUX_2_1
1554
      dev_tint( dev );
1555
#endif
1556
      return 0;
1557
    }
1558
 
1559
  if ( skb->len <= 0 ) return 0;
1560
 
1561
  /* Get Tx ring tail pointer */
1562
  if( lp->txrtail->next==lp->txrhead )
1563
    {
1564
      /* No memory. */
1565
#ifdef HP100_DEBUG
1566
      printk("hp100: %s: start_xmit_bm: No TX PDL available.\n", dev->name);
1567
#endif
1568
      /* not waited long enough since last tx? */
1569
      if ( jiffies - dev->trans_start < HZ ) return -EAGAIN;
1570
 
1571
      if ( lp->lan_type < 0 ) /* no LAN type detected yet? */
1572
        {
1573
          hp100_stop_interface( dev );
1574
          if ( ( lp->lan_type = hp100_sense_lan( dev ) ) < 0 )
1575
            {
1576
              printk( "hp100: %s: no connection found - check wire\n", dev->name );
1577
              hp100_start_interface( dev );  /* 10Mb/s RX pkts maybe handled */
1578
              return -EIO;
1579
            }
1580
          if ( lp->lan_type == HP100_LAN_100 )
1581
            lp->hub_status = hp100_login_to_vg_hub( dev, FALSE ); /* relogin */
1582
          hp100_start_interface( dev );
1583
        }
1584
 
1585
      if ( lp->lan_type == HP100_LAN_100 && lp->hub_status < 0 )
1586
        /* we have a 100Mb/s adapter but it isn't connected to hub */
1587
        {
1588
          printk( "hp100: %s: login to 100Mb/s hub retry\n", dev->name );
1589
          hp100_stop_interface( dev );
1590
          lp->hub_status = hp100_login_to_vg_hub( dev, FALSE );
1591
          hp100_start_interface( dev );
1592
        }
1593
      else
1594
        {
1595
          hp100_ints_off();
1596
          i = hp100_sense_lan( dev );
1597
          hp100_ints_on();
1598
          if ( i == HP100_LAN_ERR )
1599
            printk( "hp100: %s: link down detected\n", dev->name );
1600
          else
1601
            if ( lp->lan_type != i ) /* cable change! */
1602
              {
1603
                /* it's very hard - all network setting must be changed!!! */
1604
                printk( "hp100: %s: cable change 10Mb/s <-> 100Mb/s detected\n", dev->name );
1605
                lp->lan_type = i;
1606
                hp100_stop_interface( dev );
1607
                if ( lp->lan_type == HP100_LAN_100 )
1608
                  lp->hub_status = hp100_login_to_vg_hub( dev, FALSE );
1609
                hp100_start_interface( dev );
1610
              }
1611
            else
1612
              {
1613
                printk( "hp100: %s: interface reset\n", dev->name );
1614
                hp100_stop_interface( dev );
1615
                if ( lp->lan_type == HP100_LAN_100 )
1616
                  lp->hub_status = hp100_login_to_vg_hub( dev, FALSE );
1617
                hp100_start_interface( dev );
1618
              }
1619
        }
1620
 
1621
      dev->trans_start = jiffies;
1622
      return -EAGAIN;
1623
    }
1624
 
1625
  /*
1626
   * we have to turn int's off before modifying this, otherwise
1627
   * a tx_pdl_cleanup could occur at the same time
1628
   */
1629
  save_flags( flags );
1630
  cli();
1631
  ringptr=lp->txrtail;
1632
  lp->txrtail=ringptr->next;
1633
 
1634
  /* Check whether packet has minimal packet size */
1635
  ok_flag = skb->len >= HP100_MIN_PACKET_SIZE;
1636
  i = ok_flag ? skb->len : HP100_MIN_PACKET_SIZE;
1637
 
1638
  ringptr->skb=skb;
1639
  ringptr->pdl[0]=((1<<16) | i);                /* PDH: 1 Fragment & length */
1640
  ringptr->pdl[1]=(u32)virt_to_bus(skb->data);  /* 1st Frag: Adr. of data */
1641
  if(lp->chip==HP100_CHIPID_SHASTA)
1642
    {
1643
      /* TODO:Could someone who has the EISA card please check if this works? */
1644
      ringptr->pdl[2]=i;
1645
    }
1646
  else /* Lassen */
1647
    {
1648
      /* In the PDL, don't use the padded size but the real packet size: */
1649
      ringptr->pdl[2]=skb->len;              /* 1st Frag: Length of frag */
1650
    }
1651
 
1652
  /* Hand this PDL to the card. */
1653
  hp100_outl( ringptr->pdl_paddr, TX_PDA_L ); /* Low Prio. Queue */
1654
 
1655
  lp->txrcommit++;
1656
  restore_flags( flags );
1657
 
1658
  /* Update statistics */
1659
  lp->stats.tx_packets++;
1660
#ifdef LINUX_2_1
1661
  lp->stats.tx_bytes += skb->len;
1662
#endif
1663
  dev->trans_start = jiffies;
1664
 
1665
  return 0;
1666
}
1667
 
1668
 
1669
/* clean_txring checks if packets have been sent by the card by reading
1670
 * the TX_PDL register from the performance page and comparing it to the
1671
 * number of commited packets. It then frees the skb's of the packets that
1672
 * obviously have been sent to the network.
1673
 *
1674
 * Needs the PERFORMANCE page selected.
1675
 */
1676
static void hp100_clean_txring( struct device *dev )
1677
{
1678
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
1679
  int    ioaddr = dev->base_addr;
1680
  int    donecount;
1681
 
1682
#ifdef HP100_DEBUG_B
1683
  hp100_outw( 0x4211, TRACE );
1684
  printk("hp100: %s: clean txring\n", dev->name);
1685
#endif
1686
 
1687
  /* How many PDLs have been transmitted? */
1688
  donecount=(lp->txrcommit)-hp100_inb(TX_PDL);
1689
 
1690
#ifdef HP100_DEBUG
1691
  if(donecount>MAX_TX_PDL)
1692
    printk("hp100: %s: Warning: More PDLs transmitted than commited to card???\n",dev->name);
1693
#endif
1694
 
1695
  for( ; 0!=donecount; donecount-- )
1696
    {
1697
#ifdef HP100_DEBUG_BM
1698
      printk("hp100: %s: Free skb: data @0x%.8x txrcommit=0x%x TXPDL=0x%x, done=0x%x\n",
1699
             dev->name,
1700
             (u_int) lp->txrhead->skb->data,
1701
             lp->txrcommit,
1702
             hp100_inb(TX_PDL),
1703
             donecount);
1704
#endif
1705
#ifdef LINUX_2_1
1706
      dev_kfree_skb( lp->txrhead->skb );
1707
#else
1708
      dev_kfree_skb( lp->txrhead->skb, FREE_WRITE );
1709
#endif
1710
      lp->txrhead->skb=(void *)NULL;
1711
      lp->txrhead=lp->txrhead->next;
1712
      lp->txrcommit--;
1713
    }
1714
}
1715
 
1716
 
1717
/* tx function for slave modes */
1718
static int hp100_start_xmit( struct sk_buff *skb, struct device *dev )
1719
{
1720
  int i, ok_flag;
1721
  int ioaddr = dev->base_addr;
1722
  u_short val;
1723
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
1724
 
1725
#ifdef HP100_DEBUG_B
1726
  hp100_outw( 0x4212, TRACE );
1727
  printk("hp100: %s: start_xmit\n", dev->name);
1728
#endif
1729
 
1730
  if ( skb==NULL )
1731
    {
1732
#ifndef LINUX_2_1
1733
      dev_tint( dev );
1734
#endif
1735
      return 0;
1736
    }
1737
 
1738
  if ( skb->len <= 0 ) return 0;
1739
 
1740
  if ( lp->lan_type < 0 ) /* no LAN type detected yet? */
1741
    {
1742
      hp100_stop_interface( dev );
1743
      if ( ( lp->lan_type = hp100_sense_lan( dev ) ) < 0 )
1744
        {
1745
          printk( "hp100: %s: no connection found - check wire\n", dev->name );
1746
          hp100_start_interface( dev );  /* 10Mb/s RX packets maybe handled */
1747
          return -EIO;
1748
        }
1749
      if ( lp->lan_type == HP100_LAN_100 )
1750
        lp->hub_status = hp100_login_to_vg_hub( dev, FALSE ); /* relogin */
1751
      hp100_start_interface( dev );
1752
    }
1753
 
1754
  /* If there is not enough free memory on the card... */
1755
  i=hp100_inl(TX_MEM_FREE)&0x7fffffff;
1756
  if ( !(((i/2)-539)>(skb->len+16) && (hp100_inb(TX_PKT_CNT)<255)) )
1757
    {
1758
#ifdef HP100_DEBUG
1759
      printk( "hp100: %s: start_xmit: tx free mem = 0x%x\n", dev->name, i );
1760
#endif
1761
      /* not waited long enough since last failed tx try? */
1762
      if ( jiffies - dev->trans_start < HZ )
1763
        {
1764
#ifdef HP100_DEBUG
1765
          printk("hp100: %s: trans_start timing problem\n", dev->name);
1766
#endif
1767
          return -EAGAIN;
1768
        }
1769
      if ( lp->lan_type == HP100_LAN_100 && lp->hub_status < 0 )
1770
        /* we have a 100Mb/s adapter but it isn't connected to hub */
1771
        {
1772
          printk( "hp100: %s: login to 100Mb/s hub retry\n", dev->name );
1773
          hp100_stop_interface( dev );
1774
          lp->hub_status = hp100_login_to_vg_hub( dev, FALSE );
1775
          hp100_start_interface( dev );
1776
        }
1777
      else
1778
        {
1779
          hp100_ints_off();
1780
          i = hp100_sense_lan( dev );
1781
          hp100_ints_on();
1782
          if ( i == HP100_LAN_ERR )
1783
            printk( "hp100: %s: link down detected\n", dev->name );
1784
          else
1785
            if ( lp->lan_type != i ) /* cable change! */
1786
              {
1787
                /* it's very hard - all network setting must be changed!!! */
1788
                printk( "hp100: %s: cable change 10Mb/s <-> 100Mb/s detected\n", dev->name );
1789
                lp->lan_type = i;
1790
                hp100_stop_interface( dev );
1791
                if ( lp->lan_type == HP100_LAN_100 )
1792
                  lp->hub_status = hp100_login_to_vg_hub( dev, FALSE );
1793
                hp100_start_interface( dev );
1794
              }
1795
            else
1796
              {
1797
                printk( "hp100: %s: interface reset\n", dev->name );
1798
                hp100_stop_interface( dev );
1799
                if ( lp->lan_type == HP100_LAN_100 )
1800
                  lp->hub_status = hp100_login_to_vg_hub( dev, FALSE );
1801
                hp100_start_interface( dev );
1802
                udelay(1000);
1803
              }
1804
        }
1805
      dev->trans_start = jiffies;
1806
      return -EAGAIN;
1807
    }
1808
 
1809
  for ( i=0; i<6000 && ( hp100_inb( OPTION_MSW ) & HP100_TX_CMD ); i++ )
1810
    {
1811
#ifdef HP100_DEBUG_TX
1812
      printk( "hp100: %s: start_xmit: busy\n", dev->name );
1813
#endif
1814
    }
1815
 
1816
  hp100_ints_off();
1817
  val = hp100_inw( IRQ_STATUS );
1818
  /* Ack / clear the interrupt TX_COMPLETE interrupt - this interrupt is set
1819
   * when the current packet being transmitted on the wire is completed. */
1820
  hp100_outw( HP100_TX_COMPLETE, IRQ_STATUS );
1821
#ifdef HP100_DEBUG_TX
1822
  printk("hp100: %s: start_xmit: irq_status=0x%.4x, irqmask=0x%.4x, len=%d\n",dev->name,val,hp100_inw(IRQ_MASK),(int)skb->len );
1823
#endif
1824
 
1825
  ok_flag = skb->len >= HP100_MIN_PACKET_SIZE;
1826
  i = ok_flag ? skb->len : HP100_MIN_PACKET_SIZE;
1827
 
1828
  hp100_outw( i, DATA32 );       /* tell card the total packet length */
1829
  hp100_outw( i, FRAGMENT_LEN ); /* and first/only fragment length    */
1830
 
1831
  if ( lp->mode==2 ) /* memory mapped */
1832
    {
1833
      if ( lp->mem_ptr_virt ) /* high pci memory was remapped */
1834
        {
1835
          /* Note: The J2585B needs alignment to 32bits here!  */
1836
          memcpy( lp->mem_ptr_virt, skb->data, ( skb->len + 3 ) & ~3 );
1837
          if ( !ok_flag )
1838
            memset( lp->mem_ptr_virt, 0, HP100_MIN_PACKET_SIZE - skb->len );
1839
        }
1840
      else
1841
        {
1842
          /* Note: The J2585B needs alignment to 32bits here!  */
1843
          memcpy_toio( lp->mem_ptr_phys, skb->data, (skb->len + 3) & ~3 );
1844
          if ( !ok_flag )
1845
            memset_io( lp->mem_ptr_phys, 0, HP100_MIN_PACKET_SIZE - skb->len );
1846
        }
1847
    }
1848
  else /* programmed i/o */
1849
    {
1850
      outsl( ioaddr + HP100_REG_DATA32, skb->data, ( skb->len + 3 ) >> 2 );
1851
      if ( !ok_flag )
1852
        for ( i = ( skb->len + 3 ) & ~3; i < HP100_MIN_PACKET_SIZE; i += 4 )
1853
          hp100_outl( 0, DATA32 );
1854
    }
1855
 
1856
  hp100_outb( HP100_TX_CMD | HP100_SET_LB, OPTION_MSW ); /* send packet */
1857
 
1858
  lp->stats.tx_packets++;
1859
#ifdef LINUX_2_1
1860
  lp->stats.tx_bytes += skb->len;
1861
#endif
1862
  dev->trans_start=jiffies;
1863
  hp100_ints_on();
1864
 
1865
#ifdef LINUX_2_1
1866
  dev_kfree_skb( skb );
1867
#else
1868
  dev_kfree_skb( skb, FREE_WRITE );
1869
#endif
1870
 
1871
#ifdef HP100_DEBUG_TX
1872
  printk( "hp100: %s: start_xmit: end\n", dev->name );
1873
#endif
1874
 
1875
  return 0;
1876
}
1877
 
1878
 
1879
/*
1880
 * Receive Function (Non-Busmaster mode)
1881
 * Called when an "Receive Packet" interrupt occurs, i.e. the receive
1882
 * packet counter is non-zero.
1883
 * For non-busmaster, this function does the whole work of transfering
1884
 * the packet to the host memory and then up to higher layers via skb
1885
 * and netif_rx.
1886
 */
1887
 
1888
static void hp100_rx( struct device *dev )
1889
{
1890
  int packets, pkt_len;
1891
  int ioaddr = dev->base_addr;
1892
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
1893
  u_int header;
1894
  struct sk_buff *skb;
1895
 
1896
#ifdef DEBUG_B
1897
  hp100_outw( 0x4213, TRACE );
1898
  printk("hp100: %s: rx\n", dev->name);
1899
#endif
1900
 
1901
  /* First get indication of received lan packet */
1902
  /* RX_PKT_CND indicates the number of packets which have been fully */
1903
  /* received onto the card but have not been fully transfered of the card */
1904
  packets = hp100_inb( RX_PKT_CNT );
1905
#ifdef HP100_DEBUG_RX
1906
  if ( packets > 1 )
1907
    printk( "hp100: %s: rx: waiting packets = %d\n", dev->name,packets );
1908
#endif
1909
 
1910
  while ( packets-- > 0 )
1911
    {
1912
      /* If ADV_NXT_PKT is still set, we have to wait until the card has */
1913
      /* really advanced to the next packet. */
1914
      for (pkt_len=0; pkt_len<6000 &&(hp100_inb(OPTION_MSW)&HP100_ADV_NXT_PKT);
1915
           pkt_len++ )
1916
        {
1917
#ifdef HP100_DEBUG_RX
1918
          printk( "hp100: %s: rx: busy, remaining packets = %d\n", dev->name, packets );
1919
#endif    
1920
        }
1921
 
1922
      /* First we get the header, which contains information about the */
1923
      /* actual length of the received packet. */
1924
      if( lp->mode==2 ) /* memory mapped mode */
1925
        {
1926
          if ( lp->mem_ptr_virt )    /* if memory was remapped */
1927
            header = *(__u32 *)lp->mem_ptr_virt;
1928
          else
1929
            header = readl( lp->mem_ptr_phys );
1930
        }
1931
      else /* programmed i/o */
1932
        header = hp100_inl( DATA32 );
1933
 
1934
      pkt_len = ((header & HP100_PKT_LEN_MASK) + 3) & ~3;
1935
 
1936
#ifdef HP100_DEBUG_RX
1937
      printk( "hp100: %s: rx: new packet - length=%d, errors=0x%x, dest=0x%x\n",
1938
              dev->name,
1939
              header & HP100_PKT_LEN_MASK, (header>>16)&0xfff8,
1940
              (header>>16)&7);
1941
#endif
1942
 
1943
      /* Now we allocate the skb and transfer the data into it. */
1944
      skb = dev_alloc_skb( pkt_len );
1945
      if ( skb == NULL ) /* Not enough memory->drop packet */
1946
        {
1947
#ifdef HP100_DEBUG
1948
          printk( "hp100: %s: rx: couldn't allocate a sk_buff of size %d\n", dev->name, pkt_len );
1949
#endif
1950
          lp->stats.rx_dropped++;
1951
        }
1952
      else /* skb successfully allocated */
1953
        {
1954
          u_char *ptr;
1955
 
1956
          skb->dev = dev;
1957
 
1958
          /* ptr to start of the sk_buff data area */
1959
          ptr = (u_char *)skb_put( skb, pkt_len );
1960
 
1961
          /* Now transfer the data from the card into that area */
1962
          if ( lp->mode==2 )
1963
            {
1964
              if ( lp->mem_ptr_virt )
1965
                memcpy( ptr, lp->mem_ptr_virt, pkt_len );
1966
              /* Note alignment to 32bit transfers */
1967
              else
1968
                memcpy_fromio( ptr, lp->mem_ptr_phys, pkt_len );
1969
            }
1970
          else /* io mapped */
1971
            insl( ioaddr + HP100_REG_DATA32, ptr, pkt_len >> 2 );
1972
 
1973
          skb->protocol = eth_type_trans( skb, dev );
1974
 
1975
          netif_rx( skb );
1976
          lp->stats.rx_packets++;
1977
#ifdef LINUX_2_1
1978
          lp->stats.rx_bytes += skb->len;
1979
#endif
1980
 
1981
#ifdef HP100_DEBUG_RX
1982
          printk( "hp100: %s: rx: %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x\n",
1983
                  dev->name,
1984
                  ptr[ 0 ], ptr[ 1 ], ptr[ 2 ], ptr[ 3 ], ptr[ 4 ], ptr[ 5 ],
1985
                  ptr[ 6 ], ptr[ 7 ], ptr[ 8 ], ptr[ 9 ], ptr[ 10 ], ptr[ 11 ] );
1986
#endif
1987
        }
1988
 
1989
      /* Indicate the card that we have got the packet */
1990
      hp100_outb( HP100_ADV_NXT_PKT | HP100_SET_LB, OPTION_MSW );
1991
 
1992
      switch ( header & 0x00070000 ) {
1993
      case (HP100_MULTI_ADDR_HASH<<16):
1994
      case (HP100_MULTI_ADDR_NO_HASH<<16):
1995
        lp->stats.multicast++; break;
1996
      }
1997
    } /* end of while(there are packets) loop */
1998
#ifdef HP100_DEBUG_RX
1999
  printk( "hp100_rx: %s: end\n", dev->name );
2000
#endif
2001
}
2002
 
2003
 
2004
/*
2005
 * Receive Function for Busmaster Mode
2006
 */
2007
static void hp100_rx_bm( struct device *dev )
2008
{
2009
  int ioaddr = dev->base_addr;
2010
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
2011
  hp100_ring_t *ptr;
2012
  u_int header;
2013
  int pkt_len;
2014
 
2015
#ifdef HP100_DEBUG_B
2016
  hp100_outw( 0x4214, TRACE );
2017
  printk("hp100: %s: rx_bm\n", dev->name);
2018
#endif
2019
 
2020
#ifdef HP100_DEBUG
2021
  if(0==lp->rxrcommit)
2022
    {
2023
      printk("hp100: %s: rx_bm called although no PDLs were committed to adapter?\n", dev->name);
2024
      return;
2025
    }
2026
  else
2027
 
2028
    /* RX_PKT_CNT states how many PDLs are currently formatted and available to
2029
     * the cards BM engine */
2030
    if( (hp100_inw(RX_PKT_CNT)&0x00ff) >= lp->rxrcommit)
2031
      {
2032
        printk("hp100: %s: More packets received than commited? RX_PKT_CNT=0x%x, commit=0x%x\n", dev->name, hp100_inw(RX_PKT_CNT)&0x00ff, lp->rxrcommit);
2033
        return;
2034
      }
2035
#endif
2036
 
2037
  while( (lp->rxrcommit > hp100_inb(RX_PDL)) )
2038
    {
2039
      /*
2040
       * The packet was received into the pdl pointed to by lp->rxrhead (
2041
       * the oldest pdl in the ring
2042
       */
2043
 
2044
      /* First we get the header, which contains information about the */
2045
      /* actual length of the received packet. */
2046
 
2047
      ptr=lp->rxrhead;
2048
 
2049
      header = *(ptr->pdl-1);
2050
      pkt_len = (header & HP100_PKT_LEN_MASK);
2051
 
2052
#ifdef HP100_DEBUG_BM
2053
      printk( "hp100: %s: rx_bm: header@0x%x=0x%x length=%d, errors=0x%x, dest=0x%x\n",
2054
              dev->name,
2055
              (u_int) (ptr->pdl-1),(u_int) header,
2056
              pkt_len,
2057
              (header>>16)&0xfff8,
2058
              (header>>16)&7);
2059
      printk( "hp100: %s: RX_PDL_COUNT:0x%x TX_PDL_COUNT:0x%x, RX_PKT_CNT=0x%x PDH=0x%x, Data@0x%x len=0x%x\n",
2060
              dev->name,
2061
              hp100_inb( RX_PDL ),
2062
              hp100_inb( TX_PDL ),
2063
              hp100_inb( RX_PKT_CNT ),
2064
              (u_int) *(ptr->pdl),
2065
              (u_int) *(ptr->pdl+3),
2066
              (u_int) *(ptr->pdl+4));
2067
#endif
2068
 
2069
      if( (pkt_len>=MIN_ETHER_SIZE) &&
2070
          (pkt_len<=MAX_ETHER_SIZE) )
2071
        {
2072
          if(ptr->skb==NULL)
2073
            {
2074
              printk("hp100: %s: rx_bm: skb null\n", dev->name);
2075
              /* can happen if we only allocated room for the pdh due to memory shortage. */
2076
              lp->stats.rx_dropped++;
2077
            }
2078
          else
2079
            {
2080
              skb_trim( ptr->skb, pkt_len );     /* Shorten it */
2081
              ptr->skb->protocol = eth_type_trans( ptr->skb, dev );
2082
 
2083
              netif_rx( ptr->skb );              /* Up and away... */
2084
 
2085
              lp->stats.rx_packets++;
2086
#ifdef LINUX_2_1
2087
              lp->stats.rx_bytes += ptr->skb->len;
2088
#endif
2089
            }
2090
 
2091
          switch ( header & 0x00070000 ) {
2092
          case (HP100_MULTI_ADDR_HASH<<16):
2093
          case (HP100_MULTI_ADDR_NO_HASH<<16):
2094
            lp->stats.multicast++; break;
2095
          }
2096
        }
2097
      else
2098
        {
2099
#ifdef HP100_DEBUG
2100
          printk("hp100: %s: rx_bm: Received bad packet (length=%d)\n",dev->name,pkt_len);
2101
#endif
2102
          if(ptr->skb!=NULL)
2103
#ifdef LINUX_2_1
2104
            dev_kfree_skb( ptr->skb );
2105
#else
2106
            dev_kfree_skb( ptr->skb, FREE_READ );
2107
#endif
2108
          lp->stats.rx_errors++;
2109
        }
2110
 
2111
      lp->rxrhead=lp->rxrhead->next;
2112
 
2113
      /* Allocate a new rx PDL (so lp->rxrcommit stays the same) */
2114
      if (0 == hp100_build_rx_pdl( lp->rxrtail, dev ))
2115
        {
2116
          /* No space for skb, header can still be received. */
2117
#ifdef HP100_DEBUG
2118
          printk("hp100: %s: rx_bm: No space for new PDL.\n", dev->name);
2119
#endif
2120
          return;
2121
        }
2122
      else
2123
        { /* successfully allocated new PDL - put it in ringlist at tail. */
2124
          hp100_outl((u32)lp->rxrtail->pdl_paddr, RX_PDA);
2125
          lp->rxrtail=lp->rxrtail->next;
2126
        }
2127
 
2128
    }
2129
}
2130
 
2131
 
2132
 
2133
/*
2134
 *  statistics
2135
 */
2136
static hp100_stats_t *hp100_get_stats( struct device *dev )
2137
{
2138
  int ioaddr = dev->base_addr;
2139
 
2140
#ifdef HP100_DEBUG_B
2141
  hp100_outw( 0x4215, TRACE );
2142
#endif
2143
 
2144
  hp100_ints_off();
2145
  hp100_update_stats( dev );
2146
  hp100_ints_on();
2147
  return &((struct hp100_private *)dev->priv)->stats;
2148
}
2149
 
2150
static void hp100_update_stats( struct device *dev )
2151
{
2152
  int ioaddr = dev->base_addr;
2153
  u_short val;
2154
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
2155
 
2156
#ifdef HP100_DEBUG_B
2157
  hp100_outw( 0x4216, TRACE );
2158
  printk("hp100: %s: update-stats\n", dev->name);
2159
#endif
2160
 
2161
  /* Note: Statistics counters clear when read. */
2162
  hp100_page( MAC_CTRL );
2163
  val = hp100_inw( DROPPED ) & 0x0fff;
2164
  lp->stats.rx_errors += val;
2165
  lp->stats.rx_over_errors += val;
2166
  val = hp100_inb( CRC );
2167
  lp->stats.rx_errors += val;
2168
  lp->stats.rx_crc_errors += val;
2169
  val = hp100_inb( ABORT );
2170
  lp->stats.tx_errors += val;
2171
  lp->stats.tx_aborted_errors += val;
2172
  hp100_page( PERFORMANCE );
2173
}
2174
 
2175
static void hp100_misc_interrupt( struct device *dev )
2176
{
2177
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
2178
 
2179
#ifdef HP100_DEBUG_B
2180
  hp100_outw( 0x4216, TRACE );
2181
  printk("hp100: %s: misc_interrupt\n", dev->name);
2182
#endif
2183
 
2184
  /* Note: Statistics counters clear when read. */
2185
  lp->stats.rx_errors++;
2186
  lp->stats.tx_errors++;
2187
}
2188
 
2189
static void hp100_clear_stats( int ioaddr )
2190
{
2191
  unsigned long flags;
2192
 
2193
#ifdef HP100_DEBUG_B
2194
  hp100_outw( 0x4217, TRACE );
2195
  printk("hp100: %s: clear_stats\n", dev->name);
2196
#endif
2197
 
2198
  save_flags( flags );
2199
  cli();
2200
  hp100_page( MAC_CTRL );    /* get all statistics bytes */
2201
  hp100_inw( DROPPED );
2202
  hp100_inb( CRC );
2203
  hp100_inb( ABORT );
2204
  hp100_page( PERFORMANCE );
2205
  restore_flags( flags );
2206
}
2207
 
2208
 
2209
/*
2210
 *  multicast setup
2211
 */
2212
 
2213
/*
2214
 *  Set or clear the multicast filter for this adapter.
2215
 */
2216
 
2217
static void hp100_set_multicast_list( struct device *dev )
2218
{
2219
  unsigned long flags;
2220
  int ioaddr = dev->base_addr;
2221
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
2222
 
2223
#ifdef HP100_DEBUG_B
2224
  hp100_outw( 0x4218, TRACE );
2225
  printk("hp100: %s: set_mc_list\n", dev->name);
2226
#endif
2227
 
2228
  save_flags( flags );
2229
  cli();
2230
  hp100_ints_off();
2231
  hp100_page( MAC_CTRL );
2232
  hp100_andb( ~(HP100_RX_EN | HP100_TX_EN), MAC_CFG_1 );  /* stop rx/tx */
2233
 
2234
  if ( dev->flags & IFF_PROMISC )
2235
    {
2236
      lp->mac2_mode = HP100_MAC2MODE6;  /* promiscuous mode = get all good */
2237
      lp->mac1_mode = HP100_MAC1MODE6;  /* packets on the net */
2238
      memset( &lp->hash_bytes, 0xff, 8 );
2239
    }
2240
  else if ( dev->mc_count || (dev->flags&IFF_ALLMULTI) )
2241
    {
2242
      lp->mac2_mode = HP100_MAC2MODE5;  /* multicast mode = get packets for */
2243
      lp->mac1_mode = HP100_MAC1MODE5;  /* me, broadcasts and all multicasts */
2244
#ifdef HP100_MULTICAST_FILTER           /* doesn't work!!! */
2245
      if ( dev -> flags & IFF_ALLMULTI )
2246
        {
2247
          /* set hash filter to receive all multicast packets */
2248
          memset( &lp->hash_bytes, 0xff, 8 );
2249
        }
2250
       else
2251
        {
2252
          int i, j, idx;
2253
          u_char *addrs;
2254
          struct dev_mc_list *dmi;
2255
 
2256
          memset( &lp->hash_bytes, 0x00, 8 );
2257
#ifdef HP100_DEBUG
2258
          printk("hp100: %s: computing hash filter - mc_count = %i\n", dev -> name, dev -> mc_count );
2259
#endif 
2260
          for ( i = 0, dmi = dev -> mc_list; i < dev -> mc_count; i++, dmi = dmi -> next )
2261
            {
2262
              addrs = dmi -> dmi_addr;
2263
              if ( ( *addrs & 0x01 ) == 0x01 )  /* multicast address? */
2264
                {
2265
#ifdef HP100_DEBUG
2266
                  printk("hp100: %s: multicast = %02x:%02x:%02x:%02x:%02x:%02x, ",
2267
                        dev -> name,
2268
                        addrs[ 0 ], addrs[ 1 ], addrs[ 2 ],
2269
                        addrs[ 3 ], addrs[ 4 ], addrs[ 5 ] );
2270
#endif 
2271
                  for ( j = idx = 0; j < 6; j++ )
2272
                    {
2273
                      idx ^= *addrs++ & 0x3f;
2274
                      printk( ":%02x:", idx );
2275
                    }
2276
#ifdef HP100_DEBUG
2277
                  printk("idx = %i\n", idx );
2278
#endif
2279
                  lp->hash_bytes[ idx >> 3 ] |= ( 1 << ( idx & 7 ) );
2280
                }
2281
            }
2282
        }
2283
#else
2284
      memset( &lp->hash_bytes, 0xff, 8 );
2285
#endif
2286
    }
2287
  else
2288
    {
2289
      lp->mac2_mode = HP100_MAC2MODE3;  /* normal mode = get packets for me */
2290
      lp->mac1_mode = HP100_MAC1MODE3;  /* and broadcasts */
2291
      memset( &lp->hash_bytes, 0x00, 8 );
2292
    }
2293
 
2294
  if ( ( (hp100_inb(MAC_CFG_1) & 0x0f)!=lp->mac1_mode ) ||
2295
        ( hp100_inb(MAC_CFG_2)!=lp->mac2_mode ) )
2296
    {
2297
      int i;
2298
 
2299
      hp100_outb( lp->mac2_mode, MAC_CFG_2 );
2300
      hp100_andb( HP100_MAC1MODEMASK, MAC_CFG_1 ); /* clear mac1 mode bits */
2301
      hp100_orb( lp->mac1_mode, MAC_CFG_1 );       /* and set the new mode */
2302
 
2303
      hp100_page( MAC_ADDRESS );
2304
      for ( i = 0; i < 8; i++ )
2305
        hp100_outb( lp->hash_bytes[ i ], HASH_BYTE0 + i );
2306
#ifdef HP100_DEBUG
2307
      printk("hp100: %s: mac1 = 0x%x, mac2 = 0x%x, multicast hash = %02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x\n",
2308
                dev->name, lp->mac1_mode, lp->mac2_mode,
2309
                lp->hash_bytes[ 0 ], lp->hash_bytes[ 1 ],
2310
                lp->hash_bytes[ 2 ], lp->hash_bytes[ 3 ],
2311
                lp->hash_bytes[ 4 ], lp->hash_bytes[ 5 ],
2312
                lp->hash_bytes[ 6 ], lp->hash_bytes[ 7 ]
2313
                );
2314
#endif 
2315
 
2316
      if(lp->lan_type==HP100_LAN_100)
2317
        {
2318
#ifdef HP100_DEBUG
2319
          printk("hp100: %s: 100VG MAC settings have changed - relogin.\n", dev->name);
2320
#endif 
2321
          lp->hub_status=hp100_login_to_vg_hub( dev, TRUE );  /* force a relogin to the hub */
2322
        }
2323
    }
2324
   else
2325
    {
2326
      int i;
2327
      u_char old_hash_bytes[ 8 ];
2328
 
2329
      hp100_page( MAC_ADDRESS );
2330
      for ( i = 0; i < 8; i++ )
2331
        old_hash_bytes[ i ] = hp100_inb( HASH_BYTE0 + i );
2332
      if ( memcmp( old_hash_bytes, &lp->hash_bytes, 8 ) )
2333
        {
2334
          for ( i = 0; i < 8; i++ )
2335
            hp100_outb( lp->hash_bytes[ i ], HASH_BYTE0 + i );
2336
#ifdef HP100_DEBUG
2337
          printk("hp100: %s: multicast hash = %02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x\n",
2338
                dev->name,
2339
                lp->hash_bytes[ 0 ], lp->hash_bytes[ 1 ],
2340
                lp->hash_bytes[ 2 ], lp->hash_bytes[ 3 ],
2341
                lp->hash_bytes[ 4 ], lp->hash_bytes[ 5 ],
2342
                lp->hash_bytes[ 6 ], lp->hash_bytes[ 7 ]
2343
                );
2344
#endif 
2345
 
2346
          if(lp->lan_type==HP100_LAN_100)
2347
            {
2348
#ifdef HP100_DEBUG
2349
              printk("hp100: %s: 100VG MAC settings have changed - relogin.\n", dev->name);
2350
#endif 
2351
              lp->hub_status=hp100_login_to_vg_hub( dev, TRUE );  /* force a relogin to the hub */
2352
            }
2353
        }
2354
    }
2355
 
2356
  hp100_page( MAC_CTRL );
2357
  hp100_orb( HP100_RX_EN | HP100_RX_IDLE |              /* enable rx */
2358
             HP100_TX_EN | HP100_TX_IDLE, MAC_CFG_1 );  /* enable tx */
2359
 
2360
  hp100_page( PERFORMANCE );
2361
  hp100_ints_on();
2362
  restore_flags( flags );
2363
}
2364
 
2365
 
2366
/*
2367
 *  hardware interrupt handling
2368
 */
2369
 
2370
static void hp100_interrupt( int irq, void *dev_id, struct pt_regs *regs )
2371
{
2372
  struct device *dev = (struct device *)dev_id;
2373
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
2374
 
2375
  int ioaddr;
2376
  u_int val;
2377
 
2378
  if ( dev == NULL ) return;
2379
  ioaddr = dev->base_addr;
2380
 
2381
  if ( dev->interrupt )
2382
    printk( "hp100: %s: re-entering the interrupt handler\n", dev->name );
2383
  hp100_ints_off();
2384
  dev->interrupt = 1;          /* mark that we are inside the handler */
2385
 
2386
#ifdef HP100_DEBUG_B
2387
  hp100_outw( 0x4219, TRACE );
2388
#endif
2389
 
2390
  /*  hp100_page( PERFORMANCE ); */
2391
  val = hp100_inw( IRQ_STATUS );
2392
#ifdef HP100_DEBUG_IRQ
2393
  printk( "hp100: %s: mode=%x,IRQ_STAT=0x%.4x,RXPKTCNT=0x%.2x RXPDL=0x%.2x TXPKTCNT=0x%.2x TXPDL=0x%.2x\n",
2394
          dev->name,
2395
          lp->mode,
2396
          (u_int)val,
2397
          hp100_inb( RX_PKT_CNT ),
2398
          hp100_inb( RX_PDL ),
2399
          hp100_inb( TX_PKT_CNT ),
2400
          hp100_inb( TX_PDL )
2401
          );
2402
#endif
2403
 
2404
  if(val==0) /* might be a shared interrupt */
2405
    {
2406
      dev->interrupt=0;
2407
      hp100_ints_on();
2408
      return;
2409
    }
2410
  /* We're only interested in those interrupts we really enabled. */
2411
  /* val &= hp100_inw( IRQ_MASK ); */
2412
 
2413
  /*
2414
   * RX_PDL_FILL_COMPL is set whenever a RX_PDL has been executed. A RX_PDL
2415
   * is considered executed whenever the RX_PDL data structure is no longer
2416
   * needed.
2417
   */
2418
  if ( val & HP100_RX_PDL_FILL_COMPL )
2419
    {
2420
      if(lp->mode==1)
2421
        hp100_rx_bm( dev );
2422
      else
2423
        {
2424
          printk("hp100: %s: rx_pdl_fill_compl interrupt although not busmaster?\n", dev->name);
2425
        }
2426
    }
2427
 
2428
  /*
2429
   * The RX_PACKET interrupt is set, when the receive packet counter is
2430
   * non zero. We use this interrupt for receiving in slave mode. In
2431
   * busmaster mode, we use it to make sure we did not miss any rx_pdl_fill
2432
   * interrupts. If rx_pdl_fill_compl is not set and rx_packet is set, then
2433
   * we somehow have missed a rx_pdl_fill_compl interrupt.
2434
   */
2435
 
2436
  if ( val & HP100_RX_PACKET  ) /* Receive Packet Counter is non zero */
2437
    {
2438
      if(lp->mode!=1) /* non busmaster */
2439
        hp100_rx( dev );
2440
      else if ( !(val & HP100_RX_PDL_FILL_COMPL ))
2441
        {
2442
          /* Shouldnt happen - maybe we missed a RX_PDL_FILL Interrupt?  */
2443
          hp100_rx_bm( dev );
2444
        }
2445
    }
2446
 
2447
  /*
2448
   * Ack. that we have noticed the interrupt and thereby allow next one.
2449
   * Note that this is now done after the slave rx function, since first
2450
   * acknowledging and then setting ADV_NXT_PKT caused an extra interrupt
2451
   * on the J2573.
2452
   */
2453
  hp100_outw( val, IRQ_STATUS );
2454
 
2455
  /*
2456
   * RX_ERROR is set when a packet is dropped due to no memory resources on
2457
   * the card or when a RCV_ERR occurs.
2458
   * TX_ERROR is set when a TX_ABORT condition occurs in the MAC->exists
2459
   * only in the 802.3 MAC and happens when 16 collisions occur during a TX
2460
   */
2461
  if ( val & ( HP100_TX_ERROR | HP100_RX_ERROR ) )
2462
    {
2463
#ifdef HP100_DEBUG_IRQ
2464
      printk("hp100: %s: TX/RX Error IRQ\n", dev->name);
2465
#endif
2466
      hp100_update_stats( dev );
2467
      if(lp->mode==1)
2468
        {
2469
          hp100_rxfill( dev );
2470
          hp100_clean_txring( dev );
2471
        }
2472
    }
2473
 
2474
  /*
2475
   * RX_PDA_ZERO is set when the PDA count goes from non-zero to zero.
2476
   */
2477
  if ( (lp->mode==1)&&(val &(HP100_RX_PDA_ZERO)) )
2478
    hp100_rxfill( dev );
2479
 
2480
  /*
2481
   * HP100_TX_COMPLETE interrupt occurs when packet transmitted on wire
2482
   * is completed
2483
   */
2484
  if ( (lp->mode==1) && ( val & ( HP100_TX_COMPLETE )) )
2485
    hp100_clean_txring( dev );
2486
 
2487
  /*
2488
   * MISC_ERROR is set when either the LAN link goes down or a detected
2489
   * bus error occurs.
2490
   */
2491
  if ( val & HP100_MISC_ERROR ) /* New for J2585B */
2492
    {
2493
#ifdef HP100_DEBUG_IRQ
2494
      printk("hp100: %s: Misc. Error Interrupt - Check cabling.\n", dev->name);
2495
#endif
2496
      if(lp->mode==1)
2497
        {
2498
          hp100_clean_txring( dev );
2499
          hp100_rxfill( dev );
2500
        }
2501
      hp100_misc_interrupt( dev );
2502
    }
2503
 
2504
  dev->interrupt = 0;
2505
  hp100_ints_on();
2506
}
2507
 
2508
 
2509
/*
2510
 *  some misc functions
2511
 */
2512
 
2513
static void hp100_start_interface( struct device *dev )
2514
{
2515
  unsigned long flags;
2516
  int ioaddr = dev->base_addr;
2517
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
2518
 
2519
#ifdef HP100_DEBUG_B
2520
  hp100_outw( 0x4220, TRACE );
2521
  printk("hp100: %s: hp100_start_interface\n",dev->name);
2522
#endif
2523
 
2524
  save_flags( flags );
2525
  cli();
2526
 
2527
  /* Ensure the adapter does not want to request an interrupt when */
2528
  /* enabling the IRQ line to be active on the bus (i.e. not tri-stated) */
2529
  hp100_page( PERFORMANCE );
2530
  hp100_outw( 0xfefe, IRQ_MASK );  /* mask off all ints */
2531
  hp100_outw( 0xffff, IRQ_STATUS );  /* ack all IRQs */
2532
  hp100_outw( HP100_FAKE_INT|HP100_INT_EN|HP100_RESET_LB, OPTION_LSW);
2533
  /* Un Tri-state int. TODO: Check if shared interrupts can be realised? */
2534
  hp100_outw( HP100_TRI_INT | HP100_RESET_HB, OPTION_LSW );
2535
 
2536
  if(lp->mode==1)
2537
    {
2538
      /* Make sure BM bit is set... */
2539
      hp100_page(HW_MAP);
2540
      hp100_orb( HP100_BM_MASTER, BM );
2541
      hp100_rxfill( dev );
2542
    }
2543
  else if(lp->mode==2)
2544
    {
2545
      /* Enable memory mapping. Note: Don't do this when busmaster. */
2546
      hp100_outw( HP100_MMAP_DIS | HP100_RESET_HB, OPTION_LSW );
2547
    }
2548
 
2549
  hp100_page(PERFORMANCE);
2550
  hp100_outw( 0xfefe, IRQ_MASK );  /* mask off all ints */
2551
  hp100_outw( 0xffff, IRQ_STATUS );  /* ack IRQ */
2552
 
2553
  /* enable a few interrupts: */
2554
  if(lp->mode==1) /* busmaster mode */
2555
    {
2556
      hp100_outw( HP100_RX_PDL_FILL_COMPL |
2557
                  HP100_RX_PDA_ZERO  |
2558
                  HP100_RX_ERROR     |
2559
                  /* HP100_RX_PACKET    | */
2560
                  /* HP100_RX_EARLY_INT |  */     HP100_SET_HB  |
2561
                  /* HP100_TX_PDA_ZERO  |  */
2562
                  HP100_TX_COMPLETE  |
2563
                  /* HP100_MISC_ERROR   |  */
2564
                  HP100_TX_ERROR     | HP100_SET_LB, IRQ_MASK );
2565
    }
2566
  else
2567
    {
2568
      hp100_outw( HP100_RX_PACKET  |
2569
                  HP100_RX_ERROR   | HP100_SET_HB |
2570
                  HP100_TX_ERROR   | HP100_SET_LB , IRQ_MASK );
2571
    }
2572
 
2573
  /* Enable MAC Tx and RX, set MAC modes, ... */
2574
  hp100_set_multicast_list( dev );
2575
 
2576
  restore_flags( flags );
2577
}
2578
 
2579
 
2580
static void hp100_stop_interface( struct device *dev )
2581
{
2582
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
2583
  int ioaddr = dev->base_addr;
2584
  u_int val;
2585
 
2586
#ifdef HP100_DEBUG_B
2587
  printk("hp100: %s: hp100_stop_interface\n",dev->name);
2588
  hp100_outw( 0x4221, TRACE );
2589
#endif
2590
 
2591
  if (lp->mode==1)
2592
    hp100_BM_shutdown( dev );
2593
  else
2594
    {
2595
      /* Note: MMAP_DIS will be reenabled by start_interface */
2596
      hp100_outw( HP100_INT_EN | HP100_RESET_LB |
2597
                  HP100_TRI_INT | HP100_MMAP_DIS | HP100_SET_HB, OPTION_LSW );
2598
      val = hp100_inw( OPTION_LSW );
2599
 
2600
      hp100_page( MAC_CTRL );
2601
      hp100_andb( ~(HP100_RX_EN | HP100_TX_EN), MAC_CFG_1 );
2602
 
2603
      if ( !(val & HP100_HW_RST) ) return; /* If reset, imm. return ... */
2604
      /* ... else: busy wait until idle */
2605
      for ( val = 0; val < 6000; val++ )
2606
        if ( ( hp100_inb( MAC_CFG_1 ) & (HP100_TX_IDLE | HP100_RX_IDLE) ) ==
2607
             (HP100_TX_IDLE | HP100_RX_IDLE) )
2608
          {
2609
            hp100_page(PERFORMANCE);
2610
            return;
2611
          }
2612
      printk( "hp100: %s: hp100_stop_interface - timeout\n", dev->name );
2613
      hp100_page(PERFORMANCE);
2614
    }
2615
}
2616
 
2617
 
2618
static void hp100_load_eeprom( struct device *dev, u_short probe_ioaddr )
2619
{
2620
  int i;
2621
  int ioaddr = probe_ioaddr > 0 ? probe_ioaddr : dev->base_addr;
2622
 
2623
#ifdef HP100_DEBUG_B
2624
  hp100_outw( 0x4222, TRACE );
2625
#endif
2626
 
2627
  hp100_page( EEPROM_CTRL );
2628
  hp100_andw( ~HP100_EEPROM_LOAD, EEPROM_CTRL );
2629
  hp100_orw( HP100_EEPROM_LOAD, EEPROM_CTRL );
2630
  for ( i = 0; i < 10000; i++ )
2631
    if ( !( hp100_inb( OPTION_MSW ) & HP100_EE_LOAD ) ) return;
2632
  printk( "hp100: %s: hp100_load_eeprom - timeout\n", dev->name );
2633
}
2634
 
2635
 
2636
/*  Sense connection status.
2637
 *  return values: LAN_10  - Connected to 10Mbit/s network
2638
 *                 LAN_100 - Connected to 100Mbit/s network
2639
 *                 LAN_ERR - not connected or 100Mbit/s Hub down
2640
 */
2641
static int hp100_sense_lan( struct device *dev )
2642
{
2643
  int ioaddr = dev->base_addr;
2644
  u_short val_VG, val_10;
2645
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
2646
 
2647
#ifdef HP100_DEBUG_B
2648
  hp100_outw( 0x4223, TRACE );
2649
#endif
2650
 
2651
  hp100_page( MAC_CTRL );
2652
  val_10 = hp100_inb( 10_LAN_CFG_1 );
2653
  val_VG = hp100_inb( VG_LAN_CFG_1 );
2654
  hp100_page( PERFORMANCE );
2655
#ifdef HP100_DEBUG
2656
  printk( "hp100: %s: sense_lan: val_VG = 0x%04x, val_10 = 0x%04x\n", dev->name, val_VG, val_10 );
2657
#endif
2658
 
2659
  if ( val_10 & HP100_LINK_BEAT_ST )    /* 10Mb connection is active */
2660
    return HP100_LAN_10;
2661
 
2662
  if ( val_10 & HP100_AUI_ST )          /* have we BNC or AUI onboard? */
2663
    {
2664
      val_10 |= HP100_AUI_SEL | HP100_LOW_TH;
2665
      hp100_page( MAC_CTRL );
2666
      hp100_outb( val_10, 10_LAN_CFG_1 );
2667
      hp100_page( PERFORMANCE );
2668
      return HP100_LAN_10;
2669
    }
2670
 
2671
  if ( (lp->id->id == 0x02019F022) ||
2672
       (lp->id->id == 0x01042103c) ||
2673
       (lp->id->id == 0x01040103c) )
2674
    return HP100_LAN_ERR; /* Those cards don't have a 100 Mbit connector */
2675
 
2676
  if ( val_VG & HP100_LINK_CABLE_ST ) /* Can hear the HUBs tone. */
2677
    return HP100_LAN_100;
2678
  return HP100_LAN_ERR;
2679
}
2680
 
2681
 
2682
 
2683
static int hp100_down_vg_link( struct device *dev )
2684
{
2685
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
2686
  int ioaddr = dev->base_addr;
2687
  unsigned long time;
2688
  long savelan, newlan;
2689
 
2690
#ifdef HP100_DEBUG_B
2691
  hp100_outw( 0x4224, TRACE );
2692
  printk("hp100: %s: down_vg_link\n", dev->name);
2693
#endif
2694
 
2695
  hp100_page( MAC_CTRL );
2696
  time=jiffies+(HZ/4);
2697
  do{
2698
    if ( hp100_inb( VG_LAN_CFG_1 ) & HP100_LINK_CABLE_ST ) break;
2699
  } while (time>jiffies);
2700
 
2701
  if ( jiffies >= time )       /* no signal->no logout */
2702
    return 0;
2703
 
2704
  /* Drop the VG Link by clearing the link up cmd and load addr.*/
2705
 
2706
  hp100_andb( ~( HP100_LOAD_ADDR| HP100_LINK_CMD), VG_LAN_CFG_1);
2707
  hp100_orb( HP100_VG_SEL, VG_LAN_CFG_1);
2708
 
2709
  /* Conditionally stall for >250ms on Link-Up Status (to go down) */
2710
  time=jiffies+(HZ/2);
2711
  do{
2712
    if ( !(hp100_inb( VG_LAN_CFG_1) & HP100_LINK_UP_ST) ) break;
2713
  } while(time>jiffies);
2714
 
2715
#ifdef HP100_DEBUG
2716
  if (jiffies>=time)
2717
    printk("hp100: %s: down_vg_link: Link does not go down?\n", dev->name);
2718
#endif
2719
 
2720
  /* To prevent condition where Rev 1 VG MAC and old hubs do not complete */
2721
  /* logout under traffic (even though all the status bits are cleared),  */
2722
  /* do this workaround to get the Rev 1 MAC in its idle state */
2723
  if ( lp->chip==HP100_CHIPID_LASSEN )
2724
    {
2725
      /* Reset VG MAC to insure it leaves the logoff state even if */
2726
      /* the Hub is still emitting tones */
2727
      hp100_andb(~HP100_VG_RESET, VG_LAN_CFG_1);
2728
      udelay(1500); /* wait for >1ms */
2729
      hp100_orb(HP100_VG_RESET, VG_LAN_CFG_1); /* Release Reset */
2730
      udelay(1500);
2731
    }
2732
 
2733
  /* New: For lassen, switch to 10 Mbps mac briefly to clear training ACK */
2734
  /* to get the VG mac to full reset. This is not req.d with later chips */
2735
  /* Note: It will take the between 1 and 2 seconds for the VG mac to be */
2736
  /* selected again! This will be left to the connect hub function to */
2737
  /* perform if desired.  */
2738
  if (lp->chip==HP100_CHIPID_LASSEN)
2739
    {
2740
      /* Have to write to 10 and 100VG control registers simultaneously */
2741
      savelan=newlan=hp100_inl(10_LAN_CFG_1); /* read 10+100 LAN_CFG regs */
2742
      newlan &= ~(HP100_VG_SEL<<16);
2743
      newlan |= (HP100_DOT3_MAC)<<8;
2744
      hp100_andb( ~HP100_AUTO_MODE, MAC_CFG_3); /* Autosel off */
2745
      hp100_outl(newlan, 10_LAN_CFG_1);
2746
 
2747
      /* Conditionally stall for 5sec on VG selected. */
2748
      time=jiffies+(HZ*5);
2749
      do{
2750
        if( !(hp100_inb(MAC_CFG_4) & HP100_MAC_SEL_ST) ) break;
2751
      } while(time>jiffies);
2752
 
2753
      hp100_orb( HP100_AUTO_MODE, MAC_CFG_3); /* Autosel back on */
2754
      hp100_outl(savelan, 10_LAN_CFG_1);
2755
    }
2756
 
2757
  time=jiffies+(3*HZ); /* Timeout 3s */
2758
  do {
2759
    if ( (hp100_inb( VG_LAN_CFG_1 )&HP100_LINK_CABLE_ST) == 0) break;
2760
  } while (time>jiffies);
2761
 
2762
  if(time<=jiffies)
2763
    {
2764
#ifdef HP100_DEBUG
2765
      printk( "hp100: %s: down_vg_link: timeout\n", dev->name );
2766
#endif
2767
      return -EIO;
2768
    }
2769
 
2770
  time=jiffies+(2*HZ); /* This seems to take a while.... */
2771
  do {} while (time>jiffies);
2772
 
2773
  return 0;
2774
}
2775
 
2776
 
2777
static int hp100_login_to_vg_hub( struct device *dev, u_short force_relogin )
2778
{
2779
  int ioaddr = dev->base_addr;
2780
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
2781
  u_short val=0;
2782
  unsigned long time;
2783
  int startst;
2784
 
2785
#ifdef HP100_DEBUG_B
2786
  hp100_outw( 0x4225, TRACE );
2787
  printk("hp100: %s: login_to_vg_hub\n", dev->name);
2788
#endif
2789
 
2790
  /* Initiate a login sequence iff VG MAC is enabled and either Load Address
2791
   * bit is zero or the force relogin flag is set (e.g. due to MAC address or
2792
   * promiscuous mode change)
2793
   */
2794
  hp100_page( MAC_CTRL );
2795
  startst=hp100_inb( VG_LAN_CFG_1 );
2796
  if((force_relogin==TRUE)||(hp100_inb( MAC_CFG_4 )&HP100_MAC_SEL_ST))
2797
    {
2798
#ifdef HP100_DEBUG_TRAINING
2799
      printk("hp100: %s: Start training\n", dev->name);
2800
#endif
2801
 
2802
      /* Ensure VG Reset bit is 1 (i.e., do not reset)*/
2803
      hp100_orb( HP100_VG_RESET , VG_LAN_CFG_1 );
2804
 
2805
      /* If Lassen AND auto-select-mode AND VG tones were sensed on */
2806
      /* entry then temporarily put them into force 100Mbit mode */
2807
      if((lp->chip==HP100_CHIPID_LASSEN)&&( startst & HP100_LINK_CABLE_ST ) )
2808
        hp100_andb( ~HP100_DOT3_MAC, 10_LAN_CFG_2 );
2809
 
2810
      /* Drop the VG link by zeroing Link Up Command and Load Address  */
2811
      hp100_andb( ~(HP100_LINK_CMD/* |HP100_LOAD_ADDR */), VG_LAN_CFG_1);
2812
 
2813
#ifdef HP100_DEBUG_TRAINING
2814
      printk("hp100: %s: Bring down the link\n", dev->name);
2815
#endif
2816
 
2817
      /* Wait for link to drop */
2818
      time = jiffies + (HZ/10);
2819
      do {
2820
        if (~(hp100_inb( VG_LAN_CFG_1 )& HP100_LINK_UP_ST) ) break;
2821
      } while (time>jiffies);
2822
 
2823
      /* Start an addressed training and optionally request promiscuous port */
2824
      if ( (dev->flags) & IFF_PROMISC )
2825
        {
2826
          hp100_orb( HP100_PROM_MODE, VG_LAN_CFG_2);
2827
          if(lp->chip==HP100_CHIPID_LASSEN)
2828
            hp100_orw( HP100_MACRQ_PROMSC, TRAIN_REQUEST );
2829
        }
2830
      else
2831
        {
2832
          hp100_andb( ~HP100_PROM_MODE, VG_LAN_CFG_2);
2833
          /* For ETR parts we need to reset the prom. bit in the training
2834
           * register, otherwise promiscious mode won't be disabled.
2835
           */
2836
          if(lp->chip==HP100_CHIPID_LASSEN)
2837
            {
2838
              hp100_andw( ~HP100_MACRQ_PROMSC, TRAIN_REQUEST );
2839
            }
2840
        }
2841
 
2842
      /* With ETR parts, frame format request bits can be set. */
2843
      if(lp->chip==HP100_CHIPID_LASSEN)
2844
        hp100_orb( HP100_MACRQ_FRAMEFMT_EITHER, TRAIN_REQUEST);
2845
 
2846
      hp100_orb( HP100_LINK_CMD|HP100_LOAD_ADDR|HP100_VG_RESET, VG_LAN_CFG_1);
2847
 
2848
      /* Note: Next wait could be omitted for Hood and earlier chips under */
2849
      /* certain circumstances */
2850
      /* TODO: check if hood/earlier and skip wait. */
2851
 
2852
      /* Wait for either short timeout for VG tones or long for login    */
2853
      /* Wait for the card hardware to signalise link cable status ok... */
2854
      hp100_page( MAC_CTRL );
2855
      time = jiffies + ( 1*HZ ); /* 1 sec timeout for cable st */
2856
      do {
2857
        if ( hp100_inb( VG_LAN_CFG_1 ) & HP100_LINK_CABLE_ST ) break;
2858
      } while ( jiffies < time );
2859
 
2860
      if ( jiffies >= time )
2861
        {
2862
#ifdef HP100_DEBUG_TRAINING
2863
          printk( "hp100: %s: Link cable status not ok? Training aborted.\n", dev->name );
2864
#endif  
2865
        }
2866
      else
2867
        {
2868
#ifdef HP100_DEBUG_TRAINING
2869
          printk( "hp100: %s: HUB tones detected. Trying to train.\n", dev->name);
2870
#endif
2871
 
2872
          time = jiffies + ( 2*HZ ); /* again a timeout */
2873
          do {
2874
            val = hp100_inb( VG_LAN_CFG_1 );
2875
            if ( (val & ( HP100_LINK_UP_ST )) )
2876
              {
2877
#ifdef HP100_DEBUG_TRAINING
2878
                printk( "hp100: %s: Passed training.\n", dev->name);
2879
#endif
2880
                break;
2881
              }
2882
          } while ( time > jiffies );
2883
        }
2884
 
2885
      /* If LINK_UP_ST is set, then we are logged into the hub. */
2886
      if ( (jiffies<=time) && (val & HP100_LINK_UP_ST) )
2887
        {
2888
#ifdef HP100_DEBUG_TRAINING
2889
          printk( "hp100: %s: Successfully logged into the HUB.\n", dev->name);
2890
          if(lp->chip==HP100_CHIPID_LASSEN)
2891
            {
2892
              val = hp100_inw(TRAIN_ALLOW);
2893
              printk( "hp100: %s: Card supports 100VG MAC Version \"%s\" ",
2894
                      dev->name,(hp100_inw(TRAIN_REQUEST)&HP100_CARD_MACVER) ? "802.12" : "Pre");
2895
              printk( "Driver will use MAC Version \"%s\"\n",
2896
                      ( val & HP100_HUB_MACVER) ? "802.12" : "Pre" );
2897
              printk( "hp100: %s: Frame format is %s.\n",dev->name,(val&HP100_MALLOW_FRAMEFMT)?"802.5":"802.3");
2898
            }
2899
#endif
2900
        }
2901
      else
2902
        {
2903
          /* If LINK_UP_ST is not set, login was not successful */
2904
          printk("hp100: %s: Problem logging into the HUB.\n",dev->name);
2905
          if(lp->chip==HP100_CHIPID_LASSEN)
2906
            {
2907
              /* Check allowed Register to find out why there is a problem. */
2908
              val = hp100_inw( TRAIN_ALLOW ); /* wont work on non-ETR card */
2909
#ifdef HP100_DEBUG_TRAINING
2910
              printk("hp100: %s: MAC Configuration requested: 0x%04x, HUB allowed: 0x%04x\n", dev->name, hp100_inw(TRAIN_REQUEST), val);
2911
#endif
2912
              if ( val & HP100_MALLOW_ACCDENIED )
2913
                printk("hp100: %s: HUB access denied.\n", dev->name);
2914
              if ( val & HP100_MALLOW_CONFIGURE )
2915
                printk("hp100: %s: MAC Configuration is incompatible with the Network.\n", dev->name);
2916
              if ( val & HP100_MALLOW_DUPADDR )
2917
                printk("hp100: %s: Duplicate MAC Address on the Network.\n", dev->name);
2918
            }
2919
        }
2920
 
2921
      /* If we have put the chip into forced 100 Mbit mode earlier, go back */
2922
      /* to auto-select mode */
2923
 
2924
      if( (lp->chip==HP100_CHIPID_LASSEN)&&(startst & HP100_LINK_CABLE_ST) )
2925
        {
2926
          hp100_page( MAC_CTRL );
2927
          hp100_orb( HP100_DOT3_MAC, 10_LAN_CFG_2 );
2928
        }
2929
 
2930
      val=hp100_inb(VG_LAN_CFG_1);
2931
 
2932
      /* Clear the MISC_ERROR Interrupt, which might be generated when doing the relogin */
2933
      hp100_page(PERFORMANCE);
2934
      hp100_outw( HP100_MISC_ERROR, IRQ_STATUS);
2935
 
2936
      if (val&HP100_LINK_UP_ST)
2937
        return(0); /* login was ok */
2938
      else
2939
        {
2940
          printk("hp100: %s: Training failed.\n", dev->name);
2941
          hp100_down_vg_link( dev );
2942
          return -EIO;
2943
        }
2944
    }
2945
  /* no forced relogin & already link there->no training. */
2946
  return -EIO;
2947
}
2948
 
2949
 
2950
static void hp100_cascade_reset( struct device *dev, u_short enable )
2951
{
2952
  int ioaddr = dev->base_addr;
2953
  struct hp100_private *lp = (struct hp100_private *)dev->priv;
2954
  int i;
2955
 
2956
#ifdef HP100_DEBUG_B
2957
  hp100_outw( 0x4226, TRACE );
2958
  printk("hp100: %s: cascade_reset\n", dev->name);
2959
#endif
2960
 
2961
  if (enable==TRUE)
2962
    {
2963
      hp100_outw( HP100_HW_RST | HP100_RESET_LB, OPTION_LSW );
2964
      if(lp->chip==HP100_CHIPID_LASSEN)
2965
        {
2966
          /* Lassen requires a PCI transmit fifo reset */
2967
          hp100_page( HW_MAP );
2968
          hp100_andb( ~HP100_PCI_RESET, PCICTRL2 );
2969
          hp100_orb( HP100_PCI_RESET, PCICTRL2 );
2970
          /* Wait for min. 300 ns */
2971
          /* we cant use jiffies here, because it may be */
2972
          /* that we have disabled the timer... */
2973
          for (i=0; i<0xffff; i++);
2974
          hp100_andb( ~HP100_PCI_RESET, PCICTRL2 );
2975
          hp100_page( PERFORMANCE );
2976
        }
2977
    }
2978
  else
2979
    { /* bring out of reset */
2980
      hp100_outw(HP100_HW_RST|HP100_SET_LB, OPTION_LSW);
2981
      for (i=0; i<0xffff; i++ );
2982
      hp100_page(PERFORMANCE);
2983
    }
2984
}
2985
 
2986
#ifdef HP100_DEBUG              
2987
void hp100_RegisterDump( struct device *dev )
2988
{
2989
  int ioaddr=dev->base_addr;
2990
  int Page;
2991
  int Register;
2992
 
2993
  /* Dump common registers */
2994
  printk("hp100: %s: Cascade Register Dump\n", dev->name);
2995
  printk("hardware id #1: 0x%.2x\n",hp100_inb(HW_ID));
2996
  printk("hardware id #2/paging: 0x%.2x\n",hp100_inb(PAGING));
2997
  printk("option #1: 0x%.4x\n",hp100_inw(OPTION_LSW));
2998
  printk("option #2: 0x%.4x\n",hp100_inw(OPTION_MSW));
2999
 
3000
  /* Dump paged registers */
3001
  for (Page = 0; Page < 8; Page++)
3002
    {
3003
      /* Dump registers */
3004
      printk("page: 0x%.2x\n",Page);
3005
      outw( Page, ioaddr+0x02);
3006
      for (Register = 0x8; Register < 0x22; Register += 2)
3007
        {
3008
          /* Display Register contents except data port */
3009
          if (((Register != 0x10) && (Register != 0x12)) || (Page > 0))
3010
            {
3011
              printk("0x%.2x = 0x%.4x\n",Register,inw(ioaddr+Register));
3012
            }
3013
        }
3014
    }
3015
  hp100_page(PERFORMANCE);
3016
}
3017
#endif
3018
 
3019
 
3020
 
3021
/*
3022
 *  module section
3023
 */
3024
 
3025
#ifdef MODULE
3026
 
3027
/* Parameters set by insmod */
3028
int hp100_port[5] = { 0, -1, -1, -1, -1 };
3029
#ifdef LINUX_2_1
3030
MODULE_PARM(hp100_port, "1-5i");
3031
#endif
3032
 
3033
#ifdef LINUX_2_1
3034
char hp100_name[5][IFNAMSIZ] = { "", "", "", "", "" };
3035
MODULE_PARM(hp100_name, "1-5c" __MODULE_STRING(IFNAMSIZ));
3036
#else
3037
static char devname[5][IFNAMSIZ] = { "", "", "", "", "" };
3038
static char *hp100_name[5] = { devname[0], devname[1],
3039
                               devname[2], devname[3],
3040
                               devname[4] };
3041
#endif
3042
 
3043
/* List of devices */
3044
static struct device *hp100_devlist[5] = { NULL, NULL, NULL, NULL, NULL };
3045
 
3046
/*
3047
 * Note: if you have more than five 100vg cards in your pc, feel free to
3048
 * increase this value
3049
 */
3050
 
3051
/*
3052
 * Note: to register three eisa or pci devices, use:
3053
 * option hp100 hp100_port=0,0,0
3054
 *        to register one card at io 0x280 as eth239, use:
3055
 * option hp100 hp100_port=0x280 hp100_name=eth239
3056
 */
3057
 
3058
int init_module( void )
3059
{
3060
  int   i, cards;
3061
 
3062
  if (hp100_port == 0 && !EISA_bus && !pcibios_present())
3063
    printk("hp100: You should not use auto-probing with insmod!\n");
3064
 
3065
  /* Loop on all possible base addresses */
3066
  i = -1; cards = 0;
3067
  while((hp100_port[++i] != -1) && (i < 5))
3068
    {
3069
      /* Create device and set basics args */
3070
      hp100_devlist[i] = kmalloc(sizeof(struct device), GFP_KERNEL);
3071
      memset(hp100_devlist[i], 0x00, sizeof(struct device));
3072
      hp100_devlist[i]->name = hp100_name[i];
3073
      hp100_devlist[i]->base_addr = hp100_port[i];
3074
      hp100_devlist[i]->init = &hp100_probe;
3075
 
3076
      /* Try to create the device */
3077
      if(register_netdev(hp100_devlist[i]) != 0)
3078
        {
3079
          /* DeAllocate everything */
3080
          /* Note: if dev->priv is mallocated, there is no way to fail */
3081
          kfree_s(hp100_devlist[i], sizeof(struct device));
3082
          hp100_devlist[i] = (struct device *) NULL;
3083
        }
3084
       else
3085
        cards++;
3086
    }                   /* Loop over all devices */
3087
 
3088
  return cards > 0 ? 0 : -ENODEV;
3089
}
3090
 
3091
void cleanup_module( void )
3092
{
3093
  int           i;
3094
 
3095
  /* TODO: Check if all skb's are released/freed. */
3096
  for(i = 0; i < 5; i++)
3097
    if(hp100_devlist[i] != (struct device *) NULL)
3098
      {
3099
        unregister_netdev( hp100_devlist[i] );
3100
        release_region( hp100_devlist[i]->base_addr, HP100_REGION_SIZE );
3101
        if( ((struct hp100_private *)hp100_devlist[i]->priv)->mode==1 ) /* busmaster */
3102
          kfree_s( ((struct hp100_private *)hp100_devlist[i]->priv)->page_vaddr, MAX_RINGSIZE+0x0f);
3103
        if ( ((struct hp100_private *)hp100_devlist[i]->priv) -> mem_ptr_virt )
3104
          iounmap( ((struct hp100_private *)hp100_devlist[i]->priv) -> mem_ptr_virt );
3105
        kfree_s( hp100_devlist[i]->priv, sizeof( struct hp100_private ) );
3106
        hp100_devlist[i]->priv = NULL;
3107
        kfree_s(hp100_devlist[i], sizeof(struct device));
3108
        hp100_devlist[i] = (struct device *) NULL;
3109
      }
3110
}
3111
 
3112
#endif          /* MODULE */
3113
 
3114
 
3115
 
3116
/*
3117
 * Local variables:
3118
 *  compile-command: "gcc -D__KERNEL__ -I/usr/src/linux/net/inet -Wall -Wstrict-prototypes -O6 -m486 -c hp100.c"
3119
 *  c-indent-level: 2
3120
 *  tab-width: 8
3121
 * End:
3122
 */

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