Linux Audio

Check our new training course

Embedded Linux Audio

Check our new training course
with Creative Commons CC-BY-SA
lecture materials

Bootlin logo

Elixir Cross Referencer

Loading...
   1
   2
   3
   4
   5
   6
   7
   8
   9
  10
  11
  12
  13
  14
  15
  16
  17
  18
  19
  20
  21
  22
  23
  24
  25
  26
  27
  28
  29
  30
  31
  32
  33
  34
  35
  36
  37
  38
  39
  40
  41
  42
  43
  44
  45
  46
  47
  48
  49
  50
  51
  52
  53
  54
  55
  56
  57
  58
  59
  60
  61
  62
  63
  64
  65
  66
  67
  68
  69
  70
  71
  72
  73
  74
  75
  76
  77
  78
  79
  80
  81
  82
  83
  84
  85
  86
  87
  88
  89
  90
  91
  92
  93
  94
  95
  96
  97
  98
  99
 100
 101
 102
 103
 104
 105
 106
 107
 108
 109
 110
 111
 112
 113
 114
 115
 116
 117
 118
 119
 120
 121
 122
 123
 124
 125
 126
 127
 128
 129
 130
 131
 132
 133
 134
 135
 136
 137
 138
 139
 140
 141
 142
 143
 144
 145
 146
 147
 148
 149
 150
 151
 152
 153
 154
 155
 156
 157
 158
 159
 160
 161
 162
 163
 164
 165
 166
 167
 168
 169
 170
 171
 172
 173
 174
 175
 176
 177
 178
 179
 180
 181
 182
 183
 184
 185
 186
 187
 188
 189
 190
 191
 192
 193
 194
 195
 196
 197
 198
 199
 200
 201
 202
 203
 204
 205
 206
 207
 208
 209
 210
 211
 212
 213
 214
 215
 216
 217
 218
 219
 220
 221
 222
 223
 224
 225
 226
 227
 228
 229
 230
 231
 232
 233
 234
 235
 236
 237
 238
 239
 240
 241
 242
 243
 244
 245
 246
 247
 248
 249
 250
 251
 252
 253
 254
 255
 256
 257
 258
 259
 260
 261
 262
 263
 264
 265
 266
 267
 268
 269
 270
 271
 272
 273
 274
 275
 276
 277
 278
 279
 280
 281
 282
 283
 284
 285
 286
 287
 288
 289
 290
 291
 292
 293
 294
 295
 296
 297
 298
 299
 300
 301
 302
 303
 304
 305
 306
 307
 308
 309
 310
 311
 312
 313
 314
 315
 316
 317
 318
 319
 320
 321
 322
 323
 324
 325
 326
 327
 328
 329
 330
 331
 332
 333
 334
 335
 336
 337
 338
 339
 340
 341
 342
 343
 344
 345
 346
 347
 348
 349
 350
 351
 352
 353
 354
 355
 356
 357
 358
 359
 360
 361
 362
 363
 364
 365
 366
 367
 368
 369
 370
 371
 372
 373
 374
 375
 376
 377
 378
 379
 380
 381
 382
 383
 384
 385
 386
 387
 388
 389
 390
 391
 392
 393
 394
 395
 396
 397
 398
 399
 400
 401
 402
 403
 404
 405
 406
 407
 408
 409
 410
 411
 412
 413
 414
 415
 416
 417
 418
 419
 420
 421
 422
 423
 424
 425
 426
 427
 428
 429
 430
 431
 432
 433
 434
 435
 436
 437
 438
 439
 440
 441
 442
 443
 444
 445
 446
 447
 448
 449
 450
 451
 452
 453
 454
 455
 456
 457
 458
 459
 460
 461
 462
 463
 464
 465
 466
 467
 468
 469
 470
 471
 472
 473
 474
 475
 476
 477
 478
 479
 480
 481
 482
 483
 484
 485
 486
 487
 488
 489
 490
 491
 492
 493
 494
 495
 496
 497
 498
 499
 500
 501
 502
 503
 504
 505
 506
 507
 508
 509
 510
 511
 512
 513
 514
 515
 516
 517
 518
 519
 520
 521
 522
 523
 524
 525
 526
 527
 528
 529
 530
 531
 532
 533
 534
 535
 536
 537
 538
 539
 540
 541
 542
 543
 544
 545
 546
 547
 548
 549
 550
 551
 552
 553
 554
 555
 556
 557
 558
 559
 560
 561
 562
 563
 564
 565
 566
 567
 568
 569
 570
 571
 572
 573
 574
 575
 576
 577
 578
 579
 580
 581
 582
 583
 584
 585
 586
 587
 588
 589
 590
 591
 592
 593
 594
 595
 596
 597
 598
 599
 600
 601
 602
 603
 604
 605
 606
 607
 608
 609
 610
 611
 612
 613
 614
 615
 616
 617
 618
 619
 620
 621
 622
 623
 624
 625
 626
 627
 628
 629
 630
 631
 632
 633
 634
 635
 636
 637
 638
 639
 640
 641
 642
 643
 644
 645
 646
 647
 648
 649
 650
 651
 652
 653
 654
 655
 656
 657
 658
 659
 660
 661
 662
 663
 664
 665
 666
 667
 668
 669
 670
 671
 672
 673
 674
 675
 676
 677
 678
 679
 680
 681
 682
 683
 684
 685
 686
 687
 688
 689
 690
 691
 692
 693
 694
 695
 696
 697
 698
 699
 700
 701
 702
 703
 704
 705
 706
 707
 708
 709
 710
 711
 712
 713
 714
 715
 716
 717
 718
 719
 720
 721
 722
 723
 724
 725
 726
 727
 728
 729
 730
 731
 732
 733
 734
 735
 736
 737
 738
 739
 740
 741
 742
 743
 744
 745
 746
 747
 748
 749
 750
 751
 752
 753
 754
 755
 756
 757
 758
 759
 760
 761
 762
 763
 764
 765
 766
 767
 768
 769
 770
 771
 772
 773
 774
 775
 776
 777
 778
 779
 780
 781
 782
 783
 784
 785
 786
 787
 788
 789
 790
 791
 792
 793
 794
 795
 796
 797
 798
 799
 800
 801
 802
 803
 804
 805
 806
 807
 808
 809
 810
 811
 812
 813
 814
 815
 816
 817
 818
 819
 820
 821
 822
 823
 824
 825
 826
 827
 828
 829
 830
 831
 832
 833
 834
 835
 836
 837
 838
 839
 840
 841
 842
 843
 844
 845
 846
 847
 848
 849
 850
 851
 852
 853
 854
 855
 856
 857
 858
 859
 860
 861
 862
 863
 864
 865
 866
 867
 868
 869
 870
 871
 872
 873
 874
 875
 876
 877
 878
 879
 880
 881
 882
 883
 884
 885
 886
 887
 888
 889
 890
 891
 892
 893
 894
 895
 896
 897
 898
 899
 900
 901
 902
 903
 904
 905
 906
 907
 908
 909
 910
 911
 912
 913
 914
 915
 916
 917
 918
 919
 920
 921
 922
 923
 924
 925
 926
 927
 928
 929
 930
 931
 932
 933
 934
 935
 936
 937
 938
 939
 940
 941
 942
 943
 944
 945
 946
 947
 948
 949
 950
 951
 952
 953
 954
 955
 956
 957
 958
 959
 960
 961
 962
 963
 964
 965
 966
 967
 968
 969
 970
 971
 972
 973
 974
 975
 976
 977
 978
 979
 980
 981
 982
 983
 984
 985
 986
 987
 988
 989
 990
 991
 992
 993
 994
 995
 996
 997
 998
 999
1000
1001
1002
1003
1004
1005
1006
1007
1008
1009
1010
1011
1012
1013
1014
1015
1016
1017
1018
1019
1020
1021
1022
1023
1024
1025
1026
1027
1028
1029
1030
1031
1032
1033
1034
1035
1036
1037
1038
1039
1040
1041
1042
1043
1044
1045
1046
1047
1048
1049
1050
1051
1052
1053
1054
1055
1056
1057
1058
1059
1060
1061
1062
1063
1064
1065
1066
1067
1068
1069
1070
1071
1072
1073
1074
1075
1076
1077
1078
1079
1080
1081
1082
1083
1084
1085
1086
1087
1088
1089
1090
1091
1092
1093
1094
1095
1096
1097
1098
1099
1100
1101
1102
1103
1104
1105
1106
1107
1108
1109
1110
1111
1112
1113
1114
1115
1116
1117
1118
1119
1120
1121
1122
1123
1124
1125
1126
1127
1128
1129
1130
1131
1132
1133
1134
1135
1136
1137
1138
1139
1140
1141
1142
1143
1144
1145
1146
1147
1148
1149
1150
1151
1152
1153
1154
1155
1156
1157
1158
1159
1160
1161
1162
1163
1164
1165
1166
1167
1168
1169
1170
1171
1172
1173
1174
1175
1176
1177
1178
1179
1180
1181
1182
1183
1184
1185
1186
1187
1188
1189
1190
1191
1192
1193
1194
1195
1196
1197
1198
1199
1200
1201
1202
1203
1204
1205
1206
1207
1208
1209
1210
1211
1212
1213
1214
1215
1216
1217
1218
1219
1220
1221
1222
1223
1224
1225
1226
1227
1228
1229
1230
1231
1232
1233
1234
1235
1236
1237
1238
1239
1240
1241
1242
1243
1244
1245
1246
1247
1248
1249
1250
1251
1252
1253
1254
1255
1256
1257
1258
1259
1260
1261
1262
1263
1264
1265
1266
1267
1268
1269
1270
1271
1272
1273
1274
1275
1276
1277
1278
1279
1280
1281
1282
1283
1284
1285
1286
1287
1288
1289
1290
1291
1292
1293
1294
1295
1296
1297
1298
1299
1300
1301
1302
1303
1304
1305
1306
1307
1308
1309
1310
1311
1312
1313
1314
1315
1316
1317
1318
1319
1320
1321
1322
1323
1324
1325
1326
1327
1328
1329
1330
1331
1332
1333
1334
1335
1336
1337
1338
1339
1340
1341
1342
1343
1344
1345
1346
1347
1348
1349
1350
1351
1352
1353
1354
1355
1356
1357
1358
1359
1360
1361
1362
1363
1364
1365
1366
1367
1368
1369
1370
1371
1372
1373
1374
1375
1376
1377
1378
1379
1380
1381
1382
1383
1384
1385
1386
1387
1388
1389
1390
1391
1392
1393
1394
1395
1396
1397
1398
1399
1400
1401
1402
1403
1404
1405
1406
1407
1408
1409
1410
1411
1412
1413
1414
1415
1416
1417
1418
1419
1420
1421
1422
1423
1424
1425
1426
1427
1428
1429
1430
1431
1432
1433
1434
1435
1436
1437
1438
1439
1440
1441
1442
1443
1444
1445
1446
/* 
**
**  RCpci45.c  
**
**
**
**  ---------------------------------------------------------------------
**  ---     Copyright (c) 1998, 1999, RedCreek Communications Inc.    ---
**  ---                   All rights reserved.                        ---
**  ---------------------------------------------------------------------
**
** Written by Pete Popov and Brian Moyle.
**
** Known Problems
** 
** None known at this time.
**
**  TODO:
**      -Get rid of the wait loops in the API and replace them
**       with system independent delays ...something like
**       "delayms(2)".  However, under normal circumstances, the 
**       delays are very short so they're not a problem.
**
**  This program is free software; you can redistribute it and/or modify
**  it under the terms of the GNU General Public License as published by
**  the Free Software Foundation; either version 2 of the License, or
**  (at your option) any later version.

**  This program is distributed in the hope that it will be useful,
**  but WITHOUT ANY WARRANTY; without even the implied warranty of
**  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
**  GNU General Public License for more details.

**  You should have received a copy of the GNU General Public License
**  along with this program; if not, write to the Free Software
**  Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
**
**   
**  Pete Popov, January 11,99: Fixed a couple of 2.1.x problems 
**  (virt_to_bus() not called), tested it under 2.2pre5 (as a module), and 
**  added a #define(s) to enable the use of the same file for both, the 2.0.x 
**  kernels as well as the 2.1.x.
**
**  Ported to 2.1.x by Alan Cox 1998/12/9. 
**
**  Sometime in mid 1998, written by Pete Popov and Brian Moyle.
**
***************************************************************************/

static char *version =
"RedCreek Communications PCI linux driver version 2.02\n";


#include <linux/module.h>
#include <linux/version.h>
#include <linux/kernel.h>
#include <linux/sched.h>
#include <linux/string.h>
#include <linux/ptrace.h>
#include <linux/errno.h>
#include <linux/in.h>
#include <linux/ioport.h>
#include <linux/malloc.h>
#include <linux/interrupt.h>
#include <linux/pci.h>
#include <linux/bios32.h>
#include <linux/timer.h>
#include <asm/irq.h>            /* For NR_IRQS only. */
#include <asm/bitops.h>
#include <asm/io.h>

#if LINUX_VERSION_CODE >= 0x020100
#define LINUX_2_1
#endif

#ifdef LINUX_2_1
#include <asm/uaccess.h>
#endif

#include <linux/if_ether.h>
#include <linux/netdevice.h>
#include <linux/etherdevice.h>
#include <linux/skbuff.h>


#define RC_LINUX_MODULE
#include "rclanmtl.h"
#include "rcif.h"

#define RUN_AT(x) (jiffies + (x))

#define NEW_MULTICAST
#include <linux/delay.h>

#ifndef LINUX_2_1
#define ioremap vremap
#define iounmap vfree
#endif

/* PCI/45 Configuration space values */
#define RC_PCI45_VENDOR_ID  0x4916
#define RC_PCI45_DEVICE_ID  0x1960

#define MAX_ETHER_SIZE        1520  
#define MAX_NMBR_RCV_BUFFERS    96
#define RC_POSTED_BUFFERS_LOW_MARK MAX_NMBR_RCV_BUFFERS-16
#define BD_SIZE 3           /* Bucket Descriptor size */
#define BD_LEN_OFFSET 2     /* Bucket Descriptor offset to length field */


/* RedCreek LAN device Target ID */
#define RC_LAN_TARGET_ID  0x10 
/* RedCreek's OSM default LAN receive Initiator */
#define DEFAULT_RECV_INIT_CONTEXT  0xA17  


static u32 DriverControlWord =  0;

static void rc_timer(unsigned long);

/*
 * Driver Private Area, DPA.
 */
typedef struct
{

    /* 
     *    pointer to the device structure which is part
     * of the interface to the Linux kernel.
     */
    struct device *dev;            
     
    char devname[8];                /* "ethN" string */
    u8     id;                        /* the AdapterID */
    u32    pci_addr;               /* the pci address of the adapter */
    u32    bus;
    u32    function;
    struct timer_list timer;        /*  timer */
    struct enet_statistics  stats; /* the statistics structure */
    struct device *next;            /* points to the next RC adapter */
    unsigned long numOutRcvBuffers;/* number of outstanding receive buffers*/
    unsigned char shutdown;
    unsigned char reboot;
    unsigned char nexus;
    u8 *    PLanApiPA;             /* Pointer to Lan Api Private Area */

}
DPA, *PDPA;

#define MAX_ADAPTERS 32

static PDPA  PCIAdapters[MAX_ADAPTERS] = 
{
    NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
    NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
    NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
    NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL
};


static int RCinit(struct device *dev);
static int RCscan(struct device *dev);
static int RCfound_device(struct device *, int, int, int, int, int, int);

static int RCopen(struct device *);
static int RC_xmit_packet(struct sk_buff *, struct device *);
static void RCinterrupt(int, void *, struct pt_regs *);
static int RCclose(struct device *dev);
static struct enet_statistics *RCget_stats(struct device *);
static int RCioctl(struct device *, struct ifreq *, int);
static int RCconfig(struct device *, struct ifmap *);
static void RCxmit_callback(u32, u16, u32 *, u16);
static void RCrecv_callback(u32, u8, u32, u32 *, u16);
static void RCreset_callback(u32, u32, u32, u16);
static void RCreboot_callback(u32, u32, u32, u16);
static int RC_allocate_and_post_buffers(struct device *, int);


/* A list of all installed RC devices, for removing the driver module. */
static struct device *root_RCdev = NULL;

#ifdef MODULE
int init_module(void)
#else
int rcpci_probe(struct device *dev)
#endif
{
    int cards_found;

#ifdef MODULE
    cards_found = RCscan(NULL);
#else
    cards_found = RCscan(dev);
#endif
    if (cards_found)
        printk(version);
    return cards_found ? 0 : -ENODEV;
}

static int RCscan(struct device *dev)
{
    int cards_found = 0;
    static int pci_index = 0;

    if (!pcibios_present()) 
        return cards_found;

    for (;pci_index < 0x8; pci_index++) 
    {
        unsigned char pci_bus, pci_device_fn;
        int scan_status;
        int board_index = 0;
        unsigned char pci_irq_line;
        unsigned short pci_command, vendor, device, class;
        unsigned int pci_ioaddr;


        scan_status =  
            (pcibios_find_device (RC_PCI45_VENDOR_ID, 
                                  RC_PCI45_DEVICE_ID, 
                                  pci_index, 
                                  &pci_bus, 
                                  &pci_device_fn));
#ifdef RCDEBUG
        printk("rc scan_status = 0x%X\n", scan_status);
#endif
        if (scan_status != PCIBIOS_SUCCESSFUL)
            break;
        pcibios_read_config_word(pci_bus, 
                                 pci_device_fn, 
                                 PCI_VENDOR_ID, &vendor);
        pcibios_read_config_word(pci_bus, 
                                 pci_device_fn,
                                 PCI_DEVICE_ID, &device);
        pcibios_read_config_byte(pci_bus, 
                                 pci_device_fn,
                                 PCI_INTERRUPT_LINE, &pci_irq_line);
        pcibios_read_config_dword(pci_bus, 
                                  pci_device_fn,
                                  PCI_BASE_ADDRESS_0, &pci_ioaddr);
        pcibios_read_config_word(pci_bus, 
                                 pci_device_fn,
                                 PCI_CLASS_DEVICE, &class);

        pci_ioaddr &= ~0xf;

#ifdef RCDEBUG
        printk("rc: Found RedCreek PCI adapter\n");
        printk("rc: pci class = 0x%x  0x%x \n", class, class>>8);
        printk("rc: pci_bus = %d,  pci_device_fn = %d\n", pci_bus, pci_device_fn);
        printk("rc: pci_irq_line = 0x%x \n", pci_irq_line);
        printk("rc: pci_ioaddr = 0x%x\n", pci_ioaddr);
#endif

        if (check_region(pci_ioaddr, 2*32768))
        {
            printk("rc: check_region failed\n");
            continue;
        }
#ifdef RCDEBUG
        else
        {
            printk("rc: check_region passed\n");
        }
#endif
           
        /*
         * Get and check the bus-master and latency values.
         * Some PCI BIOSes fail to set the master-enable bit.
         */

        pcibios_read_config_word(pci_bus, 
                                 pci_device_fn,
                                 PCI_COMMAND, 
                                 &pci_command);
        if ( ! (pci_command & PCI_COMMAND_MASTER)) {
            printk("rc: PCI Master Bit has not been set!\n");
                        
            pci_command |= PCI_COMMAND_MASTER;
            pcibios_write_config_word(pci_bus, 
                                      pci_device_fn,
                                      PCI_COMMAND, 
                                      pci_command);
        }
        if ( ! (pci_command & PCI_COMMAND_MEMORY)) {
            /*
             * If the BIOS did not set the memory enable bit, what else
             * did it not initialize?  Skip this adapter.
             */
            printk("rc: Adapter %d, PCI Memory Bit has not been set!\n",
                   cards_found);
            printk("rc: Bios problem? \n");
            continue;
        }
                
        if (!RCfound_device(dev, pci_ioaddr, pci_irq_line,
                          pci_bus, pci_device_fn,
                          board_index++, cards_found))
        {
            dev = 0;
            cards_found++;
        }
    }
#ifdef RCDEBUG
    printk("rc: found %d cards \n", cards_found);
#endif
    return cards_found;
}

static int RCinit(struct device *dev)
{
    dev->open = &RCopen;
    dev->hard_start_xmit = &RC_xmit_packet;
    dev->stop = &RCclose;
    dev->get_stats = &RCget_stats;
    dev->do_ioctl = &RCioctl;
    dev->set_config = &RCconfig;
    return 0;
}

static int
RCfound_device(struct device *dev, int memaddr, int irq, 
               int bus, int function, int product_index, int card_idx)
{
    int dev_size = 32768;        
    unsigned long *vaddr=0;
    PDPA pDpa;
    int init_status;

    /* 
     * Allocate and fill new device structure. 
     * We need enough for struct device plus DPA plus the LAN API private
     * area, which requires a minimum of 16KB.  The top of the allocated
     * area will be assigned to struct device; the next chunk will be
     * assigned to DPA; and finally, the rest will be assigned to the
     * the LAN API layer.
     */

#ifdef MODULE
    dev = (struct device *) kmalloc(dev_size, GFP_DMA | GFP_KERNEL |GFP_ATOMIC);
    if (!dev)
    {
        printk("rc: unable to kmalloc dev\n");
        return 1;   
    }
    memset(dev, 0, dev_size);
    /*
     * dev->priv will point to the start of DPA.
     */
    dev->priv = (void *)(((long)dev + sizeof(struct device) + 15) & ~15);
#else
    dev->priv = 0;
    dev->priv = (struct device *) kmalloc(dev_size, GFP_DMA | GFP_KERNEL |GFP_ATOMIC);
    if (!dev->priv)
    {
        printk("rc: unable to kmalloc private area\n");
        return 1;  
    }
    memset(dev->priv, 0, dev_size);
#endif

#ifdef RCDEBUG
    printk("rc: dev = 0x%x, dev->priv = 0x%x\n", (uint)dev, (uint)dev->priv);
#endif

    pDpa = dev->priv;
    if (!dev->name)
        dev->name = pDpa->devname;

    pDpa->dev = dev;            /* this is just for easy reference */
    pDpa->function = function;
    pDpa->bus = bus;
    pDpa->id = card_idx;        /* the device number */
    pDpa->pci_addr = memaddr;
    PCIAdapters[card_idx] = pDpa;
#ifdef RCDEBUG
    printk("rc: pDpa = 0x%x, id = %d \n", (uint)pDpa, (uint)pDpa->id);
#endif

    /*
     * Save the starting address of the LAN API private area.  We'll
     * pass that to RCInitI2OMsgLayer().
     */
    pDpa->PLanApiPA = (void *)(((long)pDpa + sizeof(DPA) + 0xff) & ~0xff);
#ifdef RCDEBUG
    printk("rc: pDpa->PLanApiPA = 0x%x\n", (uint)pDpa->PLanApiPA);
#endif
    
    /* The adapter is accessable through memory-access read/write, not
     * I/O read/write.  Thus, we need to map it to some virtual address
     * area in order to access the registers are normal memory.
     */
    vaddr = (ulong *) ioremap (memaddr, 2*32768);
#ifdef RCDEBUG
    printk("rc: RCfound_device: 0x%x, priv = 0x%x, vaddr = 0x%x\n", 
           (uint)dev, (uint)dev->priv, (uint)vaddr);
#endif
    dev->base_addr = (unsigned long)vaddr;
    dev->irq = irq;
    dev->interrupt = 0;

    /*
     * Request a shared interrupt line.
     */
    if ( request_irq(dev->irq, (void *)RCinterrupt,
                     SA_INTERRUPT|SA_SHIRQ, "RedCreek VPN Adapter", dev) )
    {
        printk( "RC PCI 45: %s: unable to get IRQ %d\n", (u8 *)dev->name, (uint)dev->irq );
        iounmap(vaddr);
        kfree(dev);
        return 1;
    }

    init_status = RCInitI2OMsgLayer(pDpa->id, dev->base_addr, 
                  pDpa->PLanApiPA, (u8 *)virt_to_bus((void *)pDpa->PLanApiPA),
                  (PFNTXCALLBACK)RCxmit_callback,
                  (PFNRXCALLBACK)RCrecv_callback,
                  (PFNCALLBACK)RCreboot_callback);
    if (init_status)
    {
        printk("rc: Unable to initialize msg layer\n");
        free_irq(dev->irq, dev);
        iounmap(vaddr);
        kfree(dev);
        return 1;
    }
    if (RCGetMAC(pDpa->id, dev->dev_addr, NULL))
    {
        printk("rc: Unable to get adapter MAC\n");
        free_irq(dev->irq, dev);
        iounmap(vaddr);
        kfree(dev);
        return 1;
    }

    DriverControlWord |= WARM_REBOOT_CAPABLE;
    RCReportDriverCapability(pDpa->id, DriverControlWord);

    dev->init = &RCinit;
    ether_setup(dev);            /* linux kernel interface */

    pDpa->next = root_RCdev;
    root_RCdev = dev;

#ifdef MODULE
    if (register_netdev(dev) != 0) /* linux kernel interface */
    {
        printk("rc: unable to register device \n");
        free_irq(dev->irq, dev);
        iounmap(vaddr);
        kfree(dev);
        return 1;
    }
#else
    RCinit(dev);
#endif
    printk("%s: RedCreek Communications IPSEC VPN adapter\n",
        dev->name);

    return 0; /* success */
}

static int
RCopen(struct device *dev)
{
    int post_buffers = MAX_NMBR_RCV_BUFFERS;
    PDPA pDpa = (PDPA) dev->priv;
    int count = 0;
    int requested = 0;

#ifdef RCDEBUG
    printk("rc: RCopen\n");
#endif
    RCEnableI2OInterrupts(pDpa->id);

    if (pDpa->nexus)
    {
        /* This is not the first time RCopen is called.  Thus,
         * the interface was previously opened and later closed
         * by RCclose().  RCclose() does a Shutdown; to wake up
         * the adapter, a reset is mandatory before we can post
         * receive buffers.  However, if the adapter initiated 
         * a reboot while the interface was closed -- and interrupts
         * were turned off -- we need will need to reinitialize
         * the adapter, rather than simply waking it up.  
         */
        printk("rc: Waking up adapter...\n");
        RCResetLANCard(pDpa->id,0,0,0);
    }
    else
    {
        pDpa->nexus = 1;
    }

    while(post_buffers)
    {
        if (post_buffers > MAX_NMBR_POST_BUFFERS_PER_MSG)
            requested = MAX_NMBR_POST_BUFFERS_PER_MSG;
        else
            requested = post_buffers;
        count = RC_allocate_and_post_buffers(dev, requested);

        if ( count < requested )
        {
            /*
             * Check to see if we were able to post any buffers at all.
             */
            if (post_buffers == MAX_NMBR_RCV_BUFFERS)
            {
                printk("rc: Error RCopen: not able to allocate any buffers\r\n");
                return(-ENOMEM);                    
            }
            printk("rc: Warning RCopen: not able to allocate all requested buffers\r\n");
            break;            /* we'll try to post more buffers later */
        }
        else
            post_buffers -= count;
    }
    pDpa->numOutRcvBuffers = MAX_NMBR_RCV_BUFFERS - post_buffers;
    pDpa->shutdown = 0;        /* just in case */
#ifdef RCDEBUG
    printk("rc: RCopen: posted %d buffers\n", (uint)pDpa->numOutRcvBuffers);
#endif
    MOD_INC_USE_COUNT;
    return 0;
}

static int
RC_xmit_packet(struct sk_buff *skb, struct device *dev)
{

    PDPA pDpa = (PDPA) dev->priv;
    singleTCB tcb;
    psingleTCB ptcb = &tcb;
    RC_RETURN status = 0;
    
        if (dev->tbusy || pDpa->shutdown || pDpa->reboot)
        {
#ifdef RCDEBUG
            printk("rc: RC_xmit_packet: tbusy!\n");
#endif
            dev->tbusy = 1;
            return 1;
        }
      
    if ( skb->len <= 0 ) 
    {
        printk("RC_xmit_packet: skb->len less than 0!\n");
        return 0;
    }

    /*
     * The user is free to reuse the TCB after RCI2OSendPacket() returns, since
     * the function copies the necessary info into its own private space.  Thus,
     * our TCB can be a local structure.  The skb, on the other hand, will be
     * freed up in our interrupt handler.
     */
    ptcb->bcount = 1;
    /* 
     * we'll get the context when the adapter interrupts us to tell us that
     * the transmision is done. At that time, we can free skb.
     */
    ptcb->b.context = (u32)skb;    
    ptcb->b.scount = 1;
    ptcb->b.size = skb->len;
    ptcb->b.addr = virt_to_bus((void *)skb->data);

#ifdef RCDEBUG
    printk("rc: RC xmit: skb = 0x%x, pDpa = 0x%x, id = %d, ptcb = 0x%x\n", 
           (uint)skb, (uint)pDpa, (uint)pDpa->id, (uint)ptcb);
#endif
    if ( (status = RCI2OSendPacket(pDpa->id, (u32)NULL, (PRCTCB)ptcb))
         != RC_RTN_NO_ERROR)
    {
#ifdef RCDEBUG
        printk("rc: RC send error 0x%x\n", (uint)status);
#endif
        dev->tbusy = 1;
        return 1;
    }
    else
    {
        dev->trans_start = jiffies;
        //       dev->tbusy = 0;
    }
    /*
     * That's it!
     */
    return 0;
}

/*
 * RCxmit_callback()
 *
 * The transmit callback routine. It's called by RCProcI2OMsgQ()
 * because the adapter is done with one or more transmit buffers and
 * it's returning them to us, or we asked the adapter to return the
 * outstanding transmit buffers by calling RCResetLANCard() with 
 * RC_RESOURCE_RETURN_PEND_TX_BUFFERS flag. 
 * All we need to do is free the buffers.
 */
static void 
RCxmit_callback(u32 Status, 
                u16 PcktCount, 
                u32 * BufferContext, 
                u16 AdapterID)
{
    struct sk_buff *skb;
    PDPA pDpa;
    struct device *dev;

        pDpa = PCIAdapters[AdapterID];
        if (!pDpa)
        {
            printk("rc: Fatal error: xmit callback, !pDpa\n");
            return;
        }
        dev = pDpa->dev;

        // printk("xmit_callback: Status = 0x%x\n", (uint)Status);
        if (Status != I2O_REPLY_STATUS_SUCCESS)
        {
            printk("rc: xmit_callback: Status = 0x%x\n", (uint)Status);
        }
#ifdef RCDEBUG
        if (pDpa->shutdown || pDpa->reboot)
            printk("rc: xmit callback: shutdown||reboot\n");
#endif

#ifdef RCDEBUG     
        printk("rc: xmit_callback: PcktCount = %d, BC = 0x%x\n", 
               (uint)PcktCount, (uint)BufferContext);
#endif
        while (PcktCount--)
        {
            skb = (struct sk_buff *)(BufferContext[0]);
#ifdef RCDEBUG
            printk("rc: skb = 0x%x\n", (uint)skb);
#endif
            BufferContext++;
#ifdef LINUX_2_1
            dev_kfree_skb (skb);
#else
            dev_kfree_skb (skb, FREE_WRITE);
#endif
        }
        dev->tbusy = 0;

}

static void
RCreset_callback(u32 Status, u32 p1, u32 p2, u16 AdapterID)
{
    PDPA pDpa;
    struct device *dev;
     
    pDpa = PCIAdapters[AdapterID];
    dev = pDpa->dev;
#ifdef RCDEBUG
    printk("rc: RCreset_callback Status 0x%x\n", (uint)Status);
#endif
    /*
     * Check to see why we were called.
     */
    if (pDpa->shutdown)
    {
        printk("rc: Shutting down interface\n");
        pDpa->shutdown = 0;
        pDpa->reboot = 0;
        MOD_DEC_USE_COUNT; 
    }
    else if (pDpa->reboot)
    {
        printk("rc: reboot, shutdown adapter\n");
        /*
         * We don't set any of the flags in RCShutdownLANCard()
         * and we don't pass a callback routine to it.
         * The adapter will have already initiated the reboot by
         * the time the function returns.
         */
        RCDisableI2OInterrupts(pDpa->id);
        RCShutdownLANCard(pDpa->id,0,0,0);
        printk("rc: scheduling timer...\n");
        init_timer(&pDpa->timer);
        pDpa->timer.expires = RUN_AT((40*HZ)/10); /* 4 sec. */
        pDpa->timer.data = (unsigned long)dev;
        pDpa->timer.function = &rc_timer;    /* timer handler */
        add_timer(&pDpa->timer);
    }



}

static void
RCreboot_callback(u32 Status, u32 p1, u32 p2, u16 AdapterID)
{
    PDPA pDpa;
    
    pDpa = PCIAdapters[AdapterID];
#ifdef RCDEBUG
    printk("rc: RCreboot: rcv buffers outstanding = %d\n", 
           (uint)pDpa->numOutRcvBuffers);
#endif
    if (pDpa->shutdown)
    {
        printk("rc: skipping reboot sequence -- shutdown already initiated\n");
        return;
    }
    pDpa->reboot = 1;
    /*
     * OK, we reset the adapter and ask it to return all
     * outstanding transmit buffers as well as the posted
     * receive buffers.  When the adapter is done returning
     * those buffers, it will call our RCreset_callback() 
     * routine.  In that routine, we'll call RCShutdownLANCard()
     * to tell the adapter that it's OK to start the reboot and
     * schedule a timer callback routine to execute 3 seconds 
     * later; this routine will reinitialize the adapter at that time.
     */
    RCResetLANCard(pDpa->id, 
                   RC_RESOURCE_RETURN_POSTED_RX_BUCKETS | 
                   RC_RESOURCE_RETURN_PEND_TX_BUFFERS,0,
                   (PFNCALLBACK)RCreset_callback);
}


int broadcast_packet(unsigned char * address)
{
    int i;
    for (i=0; i<6; i++)
        if (address[i] != 0xff) return 0;

    return 1;
}

/*
 * RCrecv_callback()
 * 
 * The receive packet callback routine.  This is called by
 * RCProcI2OMsgQ() after the adapter posts buffers which have been
 * filled (one ethernet packet per buffer).
 */
static void
RCrecv_callback(u32  Status, 
                u8   PktCount, 
                u32  BucketsRemain, 
                u32 * PacketDescBlock, 
                u16  AdapterID)
{

    u32 len, count;
    PDPA pDpa;
    struct sk_buff *skb;
    struct device *dev;
    singleTCB tcb;
    psingleTCB ptcb = &tcb;


        pDpa = PCIAdapters[AdapterID];
        dev = pDpa->dev;

        ptcb->bcount = 1;

#ifdef RCDEBUG
        printk("rc: RCrecv_callback: 0x%x, 0x%x, 0x%x\n",
               (uint)PktCount, (uint)BucketsRemain, (uint)PacketDescBlock);
#endif
        
#ifdef RCDEBUG
        if ((pDpa->shutdown || pDpa->reboot) && !Status)
            printk("shutdown||reboot && !Status: PktCount = %d\n",PktCount);
#endif

        if ( (Status != I2O_REPLY_STATUS_SUCCESS) || pDpa->shutdown)
        {
            /*
             * Free whatever buffers the adapter returned, but don't
             * pass them to the kernel.
             */
        
                if (!pDpa->shutdown && !pDpa->reboot)
                    printk("rc: RCrecv error: status = 0x%x\n", (uint)Status);
#ifdef RCDEBUG
                else
                    printk("rc: Returning %d buffers, status = 0x%x\n", 
                           PktCount, (uint)Status);
#endif
            /*
             * TO DO: check the nature of the failure and put the adapter in
             * failed mode if it's a hard failure.  Send a reset to the adapter
             * and free all outstanding memory.
             */
            if (Status == I2O_REPLY_STATUS_ABORT_NO_DATA_TRANSFER)
            {
#ifdef RCDEBUG
                printk("RCrecv status ABORT NO DATA TRANSFER\n");
#endif
            }
            /* check for reset status: I2O_REPLY_STATUS_ABORT_NO_DATA_TRANSFER */ 
            if (PacketDescBlock)
            {
                while(PktCount--)
                {
                    skb = (struct sk_buff *)PacketDescBlock[0];
#ifndef LINUX_2_1
                    skb->free = 1;
                    skb->lock = 0;    
#endif
#ifdef RCDEBUG
                    printk("free skb 0x%p\n", skb);
#endif
#ifdef LINUX_2_1
                    dev_kfree_skb (skb);
#else
                    dev_kfree_skb(skb, FREE_READ);
#endif
                    pDpa->numOutRcvBuffers--;
                    PacketDescBlock += BD_SIZE; /* point to next context field */
                }
            }
            return;
        }
        else
        {
            while(PktCount--)
            {
                skb = (struct sk_buff *)PacketDescBlock[0];
#ifdef RCDEBUG
                if (pDpa->shutdown)
                    printk("shutdown: skb=0x%x\n", (uint)skb);

                printk("skb = 0x%x: 0x%x 0x%x 0x%x 0x%x 0x%x 0x%x\n", (uint)skb,
                       (uint)skb->data[0], (uint)skb->data[1], (uint)skb->data[2],
                       (uint)skb->data[3], (uint)skb->data[4], (uint)skb->data[5]);
#endif

#ifdef PROMISCUOUS_BY_DEFAULT   /* early 2.x firmware */
                if ( (memcmp(dev->dev_addr, skb->data, 6)) &&
                     (!broadcast_packet(skb->data)))
                {
                    /*
                     * Re-post the buffer to the adapter.  Since the adapter usually
                     * return 1 to 2 receive buffers at a time, it's not too inefficient
                     * post one buffer at a time but ... may be that should be 
                     * optimized at some point.
                     */
                    ptcb->b.context = (u32)skb;    
                    ptcb->b.scount = 1;
                    ptcb->b.size = MAX_ETHER_SIZE;
                    ptcb->b.addr = virt_to_bus((void *)skb->data);

                    if ( RCPostRecvBuffers(pDpa->id, (PRCTCB)ptcb ) != RC_RTN_NO_ERROR)
                    {
                        printk("rc: RCrecv_callback: post buffer failed!\n");
#ifdef LINUX_2_1
                        dev_kfree_skb (skb);
#else
                        skb->free = 1;
                        dev_kfree_skb(skb, FREE_READ);
#endif
                    }
                    else
                    {
                        pDpa->numOutRcvBuffers++;
                    }
                }
                else
#endif /* PROMISCUOUS_BY_DEFAULT */
                {
                    len = PacketDescBlock[2];
                    skb->dev = dev;
                    skb_put( skb, len ); /* adjust length and tail */
                    skb->protocol = eth_type_trans(skb, dev);
                    netif_rx(skb);    /* send the packet to the kernel */
                    dev->last_rx = jiffies;
                }
                pDpa->numOutRcvBuffers--;
                PacketDescBlock += BD_SIZE; /* point to next context field */
            }
        } 
    
        /*
         * Replenish the posted receive buffers. 
         * DO NOT replenish buffers if the driver has already
         * initiated a reboot or shutdown!
         */

        if (!pDpa->shutdown && !pDpa->reboot)
        {
            count = RC_allocate_and_post_buffers(dev, 
                                                 MAX_NMBR_RCV_BUFFERS-pDpa->numOutRcvBuffers);
            pDpa->numOutRcvBuffers += count;
        }

}

/*
 * RCinterrupt()
 * 
 * Interrupt handler. 
 * This routine sets up a couple of pointers and calls
 * RCProcI2OMsgQ(), which in turn process the message and
 * calls one of our callback functions.
 */
static void 
RCinterrupt(int irq, void *dev_id, struct pt_regs *regs)
{

    PDPA pDpa;
    struct device *dev = (struct device *)(dev_id);

    pDpa = (PDPA) (dev->priv);
     
#ifdef RCDEBUG
    if (pDpa->shutdown)
        printk("rc: shutdown: service irq\n");

    printk("RC irq: pDpa = 0x%x, dev = 0x%x, id = %d\n", 
           (uint)pDpa, (uint)dev, (uint)pDpa->id);
    printk("dev = 0x%x\n", (uint)dev);
#endif
    if (dev->interrupt)
        printk("%s: Re-entering the interrupt handler.\n", dev->name);
    dev->interrupt = 1;

    RCProcI2OMsgQ(pDpa->id);
    dev->interrupt = 0;

    return;
}


#define REBOOT_REINIT_RETRY_LIMIT 4
static void rc_timer(unsigned long data)
{
    struct device *dev = (struct device *)data;
    PDPA pDpa = (PDPA) (dev->priv);
    int init_status;
    static int retry = 0;
    int post_buffers = MAX_NMBR_RCV_BUFFERS;
    int count = 0;
    int requested = 0;

    if (pDpa->reboot)
    {
        init_status = RCInitI2OMsgLayer(pDpa->id, dev->base_addr, 
                                    pDpa->PLanApiPA, 
                                    (u8 *)virt_to_bus((void *)pDpa->PLanApiPA),
                                    (PFNTXCALLBACK)RCxmit_callback,
                                    (PFNRXCALLBACK)RCrecv_callback,
                                    (PFNCALLBACK)RCreboot_callback);

        switch(init_status)
        {
        case RC_RTN_NO_ERROR:
 
            pDpa->reboot = 0;
            pDpa->shutdown = 0;        /* just in case */
            RCReportDriverCapability(pDpa->id, DriverControlWord);
            RCEnableI2OInterrupts(pDpa->id);

            if (dev->flags & IFF_UP)
            {
                while(post_buffers)
                {
                    if (post_buffers > MAX_NMBR_POST_BUFFERS_PER_MSG)
                        requested = MAX_NMBR_POST_BUFFERS_PER_MSG;
                    else
                        requested = post_buffers;
                    count = RC_allocate_and_post_buffers(dev, requested);
                    post_buffers -= count;
                    if ( count < requested )
                        break;
                }
                pDpa->numOutRcvBuffers = 
                    MAX_NMBR_RCV_BUFFERS - post_buffers;
                printk("rc: posted %d buffers \r\n", 
                       (uint)pDpa->numOutRcvBuffers);
            }
            printk("rc: Initialization done.\n");
            dev->tbusy=0;
            retry=0;
            return;
        case RC_RTN_FREE_Q_EMPTY:
            retry++;
            printk("rc: inbound free q empty\n");
            break;
        default:
            retry++;
            printk("rc: bad status after reboot: %d\n", init_status);    
            break;
        }

        if (retry > REBOOT_REINIT_RETRY_LIMIT)
        {
            printk("rc: unable to reinitialize adapter after reboot\n");
            printk("rc: decrementing driver and closing interface\n");
            RCDisableI2OInterrupts(pDpa->id);
            dev->flags &= ~IFF_UP;
            MOD_DEC_USE_COUNT; 
        }
        else
        {
            printk("rc: rescheduling timer...\n");
            init_timer(&pDpa->timer);
            pDpa->timer.expires = RUN_AT((40*HZ)/10); /* 3 sec. */
            pDpa->timer.data = (unsigned long)dev;
            pDpa->timer.function = &rc_timer;    /* timer handler */
            add_timer(&pDpa->timer);
        }
    }
    else
    {
        printk("rc: timer??\n");
    }
}

static int
RCclose(struct device *dev)
{

    PDPA pDpa = (PDPA) dev->priv;

#ifdef RCDEBUG
    printk("rc: RCclose\r\n");
#endif
    if (pDpa->reboot)
    {
        printk("rc: skipping reset -- adapter already in reboot mode\n");
        dev->flags &= ~IFF_UP;
        pDpa->shutdown = 1;
        return 0;
    }
#ifdef RCDEBUG
    printk("rc: receive buffers outstanding: %d\n", 
           (uint)pDpa->numOutRcvBuffers);
#endif

    pDpa->shutdown = 1;

    /*
     * We can't allow the driver to be unloaded until the adapter returns
     * all posted receive buffers.  It doesn't hurt to tell the adapter
     * to return all posted receive buffers and outstanding xmit buffers,
     * even if there are none.
     */

    RCShutdownLANCard(pDpa->id, 
                      RC_RESOURCE_RETURN_POSTED_RX_BUCKETS | 
                      RC_RESOURCE_RETURN_PEND_TX_BUFFERS,0,
                      (PFNCALLBACK)RCreset_callback);

        dev->flags &= ~IFF_UP;
    return 0;
}

static struct enet_statistics *
RCget_stats(struct device *dev)
{
    RCLINKSTATS    RCstats;
   
    PDPA pDpa = dev->priv;

    if (!pDpa)
    {
        printk("rc: RCget_stats: !pDpa\n");
        return 0;
    }
    else if (!(dev->flags & IFF_UP))    
    {
#ifdef RCDEBUG
        printk("rc: RCget_stats: device down\n");
#endif
        return 0;
    }

    memset(&RCstats, 0, sizeof(RCLINKSTATS));
    if ( (RCGetLinkStatistics(pDpa->id, &RCstats, (void *)0)) == RC_RTN_NO_ERROR )
    {
#ifdef RCDEBUG
        printk("rc: TX_good 0x%x\n", (uint)RCstats.TX_good);
        printk("rc: TX_maxcol 0x%x\n", (uint)RCstats.TX_maxcol);
        printk("rc: TX_latecol 0x%x\n", (uint)RCstats.TX_latecol);
        printk("rc: TX_urun 0x%x\n", (uint)RCstats.TX_urun);
        printk("rc: TX_crs 0x%x\n", (uint)RCstats.TX_crs);
        printk("rc: TX_def 0x%x\n", (uint)RCstats.TX_def);
        printk("rc: TX_singlecol 0x%x\n", (uint)RCstats.TX_singlecol);
        printk("rc: TX_multcol 0x%x\n", (uint)RCstats.TX_multcol);
        printk("rc: TX_totcol 0x%x\n", (uint)RCstats.TX_totcol);

        printk("rc: Rcv_good 0x%x\n", (uint)RCstats.Rcv_good);
        printk("rc: Rcv_CRCerr 0x%x\n", (uint)RCstats.Rcv_CRCerr);
        printk("rc: Rcv_alignerr 0x%x\n", (uint)RCstats.Rcv_alignerr);
        printk("rc: Rcv_reserr 0x%x\n", (uint)RCstats.Rcv_reserr);
        printk("rc: Rcv_orun 0x%x\n", (uint)RCstats.Rcv_orun);
        printk("rc: Rcv_cdt 0x%x\n", (uint)RCstats.Rcv_cdt);
        printk("rc: Rcv_runt 0x%x\n", (uint)RCstats.Rcv_runt);
#endif

        pDpa->stats.rx_packets = RCstats.Rcv_good; /* total packets received    */
        pDpa->stats.tx_packets = RCstats.TX_good; /* total packets transmitted    */

        pDpa->stats.rx_errors = 
            RCstats.Rcv_CRCerr +
            RCstats.Rcv_alignerr + 
            RCstats.Rcv_reserr + 
            RCstats.Rcv_orun + 
            RCstats.Rcv_cdt + 
            RCstats.Rcv_runt; /* bad packets received        */

        pDpa->stats.tx_errors = 
            RCstats.TX_urun + 
            RCstats.TX_crs + 
            RCstats.TX_def + 
            RCstats.TX_totcol; /* packet transmit problems    */

        /*
         * This needs improvement.
         */
        pDpa->stats.rx_dropped = 0;        /* no space in linux buffers    */
        pDpa->stats.tx_dropped = 0;        /* no space available in linux    */
        pDpa->stats.multicast = 0;        /* multicast packets received    */
        pDpa->stats.collisions = RCstats.TX_totcol;

        /* detailed rx_errors: */
        pDpa->stats.rx_length_errors = 0;
        pDpa->stats.rx_over_errors = RCstats.Rcv_orun; /* receiver ring buff overflow    */
        pDpa->stats.rx_crc_errors = RCstats.Rcv_CRCerr;    /* recved pkt with crc error    */
        pDpa->stats.rx_frame_errors = 0; /* recv'd frame alignment error */
        pDpa->stats.rx_fifo_errors = 0; /* recv'r fifo overrun        */
        pDpa->stats.rx_missed_errors = 0; /* receiver missed packet    */

        /* detailed tx_errors */
        pDpa->stats.tx_aborted_errors = 0;
        pDpa->stats.tx_carrier_errors = 0;
        pDpa->stats.tx_fifo_errors = 0;
        pDpa->stats.tx_heartbeat_errors = 0;
        pDpa->stats.tx_window_errors = 0;

        return ((struct enet_statistics *)&(pDpa->stats));
    }
    return 0;
}

static int RCioctl(struct device *dev, struct ifreq *rq, int cmd)
{
    RCuser_struct RCuser;
    PDPA pDpa = dev->priv;

#if RCDEBUG
    printk("RCioctl: cmd = 0x%x\n", cmd);
#endif
 
    if(!capable(CAP_NET_ADMIN))
    	return -EPERM;
    	
    switch (cmd)  {
 
    case RCU_PROTOCOL_REV:
        /*
         * Assign user protocol revision, to tell user-level
         * controller program whether or not it's in sync.
         */
        rq->ifr_ifru.ifru_data = (caddr_t) USER_PROTOCOL_REV;
        break;
  

    case RCU_COMMAND:
    {
        if(copy_from_user(&RCuser, rq->ifr_data, sizeof(RCuser)))
             return -EFAULT;
        
#ifdef RCDEBUG
        printk("RCioctl: RCuser_cmd = 0x%x\n", RCuser.cmd);
#endif
  
        switch(RCuser.cmd)
        {
        case RCUC_GETFWVER:
            printk("RC GETFWVER\n");
            RCUD_GETFWVER = &RCuser.RCUS_GETFWVER;
            RCGetFirmwareVer(pDpa->id, (u8 *) &RCUD_GETFWVER->FirmString, NULL);
            break;
        case RCUC_GETINFO:
            printk("RC GETINFO\n");
            RCUD_GETINFO = &RCuser.RCUS_GETINFO;
            RCUD_GETINFO -> mem_start = dev->base_addr;
            RCUD_GETINFO -> mem_end = dev->base_addr + 2*32768;
            RCUD_GETINFO -> base_addr = pDpa->pci_addr;
            RCUD_GETINFO -> irq = dev->irq;
            break;
        case RCUC_GETIPANDMASK:
            printk("RC GETIPANDMASK\n");
            RCUD_GETIPANDMASK = &RCuser.RCUS_GETIPANDMASK;
            RCGetRavlinIPandMask(pDpa->id, (u32 *) &RCUD_GETIPANDMASK->IpAddr,
                                 (u32 *) &RCUD_GETIPANDMASK->NetMask, NULL);
            break;
        case RCUC_GETLINKSTATISTICS:
            printk("RC GETLINKSTATISTICS\n");
            RCUD_GETLINKSTATISTICS = &RCuser.RCUS_GETLINKSTATISTICS;
            RCGetLinkStatistics(pDpa->id, (P_RCLINKSTATS) &RCUD_GETLINKSTATISTICS->StatsReturn, NULL);
            break;
        case RCUC_GETLINKSTATUS:
            printk("RC GETLINKSTATUS\n");
            RCUD_GETLINKSTATUS = &RCuser.RCUS_GETLINKSTATUS;
            RCGetLinkStatus(pDpa->id, (u32 *) &RCUD_GETLINKSTATUS->ReturnStatus, NULL);
            break;
        case RCUC_GETMAC:
            printk("RC GETMAC\n");
            RCUD_GETMAC = &RCuser.RCUS_GETMAC;
            RCGetMAC(pDpa->id, (u8 *) &RCUD_GETMAC->mac, NULL);
            break;
        case RCUC_GETPROM:
            printk("RC GETPROM\n");
            RCUD_GETPROM = &RCuser.RCUS_GETPROM;
            RCGetPromiscuousMode(pDpa->id, (u32 *) &RCUD_GETPROM->PromMode, NULL);
            break;
        case RCUC_GETBROADCAST:
            printk("RC GETBROADCAST\n");
            RCUD_GETBROADCAST = &RCuser.RCUS_GETBROADCAST;
            RCGetBroadcastMode(pDpa->id, (u32 *) &RCUD_GETBROADCAST->BroadcastMode, NULL);
            break;
        case RCUC_GETSPEED:
            printk("RC GETSPEED\n");
            if (!(dev->flags & IFF_UP))    
            {
                printk("RCioctl, GETSPEED error: interface down\n");
                return -ENODATA;
            }
            RCUD_GETSPEED = &RCuser.RCUS_GETSPEED;
            RCGetLinkSpeed(pDpa->id, (u32 *) &RCUD_GETSPEED->LinkSpeedCode, NULL);
            printk("RC speed = 0x%d\n", RCUD_GETSPEED->LinkSpeedCode);
            break;
        case RCUC_SETIPANDMASK:
            printk("RC SETIPANDMASK\n");
            RCUD_SETIPANDMASK = &RCuser.RCUS_SETIPANDMASK;
            printk ("RC New IP Addr = %d.%d.%d.%d, ", (u8) ((RCUD_SETIPANDMASK->IpAddr) & 0xff),
                    (u8) ((RCUD_SETIPANDMASK->IpAddr >>  8) & 0xff),
                    (u8) ((RCUD_SETIPANDMASK->IpAddr >> 16) & 0xff),
                    (u8) ((RCUD_SETIPANDMASK->IpAddr >> 24) & 0xff));
            printk ("RC New Mask = %d.%d.%d.%d\n", (u8) ((RCUD_SETIPANDMASK->NetMask) & 0xff),
                    (u8) ((RCUD_SETIPANDMASK->NetMask >>  8) & 0xff),
                    (u8) ((RCUD_SETIPANDMASK->NetMask >> 16) & 0xff),
                    (u8) ((RCUD_SETIPANDMASK->NetMask >> 24) & 0xff));
            RCSetRavlinIPandMask(pDpa->id, (u32) RCUD_SETIPANDMASK->IpAddr,
                                 (u32) RCUD_SETIPANDMASK->NetMask);
            break;
        case RCUC_SETMAC:
            printk("RC SETMAC\n");
            RCUD_SETMAC = &RCuser.RCUS_SETMAC;
            printk ("RC New MAC addr = %02X:%02X:%02X:%02X:%02X:%02X\n",
                    (u8) (RCUD_SETMAC->mac[0]), (u8) (RCUD_SETMAC->mac[1]), (u8) (RCUD_SETMAC->mac[2]),
                    (u8) (RCUD_SETMAC->mac[3]), (u8) (RCUD_SETMAC->mac[4]), (u8) (RCUD_SETMAC->mac[5]));
            RCSetMAC(pDpa->id, (u8 *) &RCUD_SETMAC->mac);
            break;
        case RCUC_SETSPEED:
            printk("RC SETSPEED\n");
            RCUD_SETSPEED = &RCuser.RCUS_SETSPEED;
            RCSetLinkSpeed(pDpa->id, (u16) RCUD_SETSPEED->LinkSpeedCode);
            printk("RC New speed = 0x%d\n", RCUD_SETSPEED->LinkSpeedCode);
            break;
        case RCUC_SETPROM:
            printk("RC SETPROM\n");
            RCUD_SETPROM = &RCuser.RCUS_SETPROM;
            RCSetPromiscuousMode(pDpa->id,(u16)RCUD_SETPROM->PromMode);
            printk("RC New prom mode = 0x%d\n", RCUD_SETPROM->PromMode);
            break;
        case RCUC_SETBROADCAST:
            printk("RC SETBROADCAST\n");
            RCUD_SETBROADCAST = &RCuser.RCUS_SETBROADCAST;
            RCSetBroadcastMode(pDpa->id,(u16)RCUD_SETBROADCAST->BroadcastMode);
            printk("RC New broadcast mode = 0x%d\n", RCUD_SETBROADCAST->BroadcastMode);
            break;
        default:
            printk("RC command default\n");
            RCUD_DEFAULT = &RCuser.RCUS_DEFAULT;
            RCUD_DEFAULT -> rc = 0x11223344;
            break;
        }
        if(copy_to_user(rq->ifr_data, &RCuser, sizeof(RCuser)))
        	return -EFAULT;
        break;
    }   /* RCU_COMMAND */ 

    default:
        printk("RC default\n");
        rq->ifr_ifru.ifru_data = (caddr_t) 0x12345678;
        break;
    }
    return 0;
}

static int RCconfig(struct device *dev, struct ifmap *map)
{
    /*
     * To be completed ...
      */
    printk("rc: RCconfig\n");
    return 0;
    if (dev->flags & IFF_UP)    /* can't act on a running interface */
        return -EBUSY;

     /* Don't allow changing the I/O address */
    if (map->base_addr != dev->base_addr) {
        printk(KERN_WARNING "RC pci45: Change I/O address not implemented\n");
        return -EOPNOTSUPP;
    }
    return 0;
}


#ifdef MODULE
void
cleanup_module(void)
{
    PDPA pDpa;
    struct device *next;


#ifdef RCDEBUG
    printk("rc: RC cleanup_module\n");
    printk("rc: root_RCdev = 0x%x\n", (uint)root_RCdev);
#endif


    while (root_RCdev)
    {
        pDpa = (PDPA) root_RCdev->priv;
#ifdef RCDEBUG
        printk("rc: cleanup 0x%08X\n", (uint)root_RCdev);
#endif
        printk("IOP reset: 0x%x\n", RCResetIOP(pDpa->id));
        unregister_netdev(root_RCdev);
        next = pDpa->next;

        iounmap((unsigned long *)root_RCdev->base_addr); 
        free_irq( root_RCdev->irq, root_RCdev );
        kfree(root_RCdev);
        root_RCdev = next;
    }
}
#endif


static int
RC_allocate_and_post_buffers(struct device *dev, int numBuffers)
{

    int i;
    PDPA pDpa = (PDPA)dev->priv;
    u32 * p;
    psingleB pB;
    struct sk_buff *skb;
    RC_RETURN status;

    if (!numBuffers)
        return 0;
    else if (numBuffers > MAX_NMBR_POST_BUFFERS_PER_MSG)
    {
#ifdef RCDEBUG
        printk("rc: Too many buffers requested!\n");
        printk("rc: attempting to allocate only 32 buffers\n");
#endif
        numBuffers = 32;
    }
    
    p = (u32 *) kmalloc(sizeof(u32) + numBuffers*sizeof(singleB), GFP_ATOMIC);

#ifdef RCDEBUG
    printk("rc: TCB = 0x%x\n", (uint)p);
#endif

    if (!p)
    {
        printk("rc: RCopen: unable to allocate TCB\n");
        return 0;
    }

    p[0] = 0;                              /* Buffer Count */
    pB = (psingleB)((u32)p + sizeof(u32)); /* point to the first buffer */

#ifdef RCDEBUG
    printk("rc: p[0] = 0x%x, p = 0x%x, pB = 0x%x\n", (uint)p[0], (uint)p, (uint)pB);
    printk("rc: pB = 0x%x\n", (uint)pB);
#endif

    for (i=0; i<numBuffers; i++)
    {
        skb = dev_alloc_skb(MAX_ETHER_SIZE+2);
        if (!skb)
        {
            printk("rc: Doh! RCopen: unable to allocate enough skbs!\n");
            if (*p != 0)        /* did we allocate any buffers at all? */
            {
#ifdef RCDEBUG
                printk("rc: will post only %d buffers \n", (uint)(*p));
#endif
                break;
            }
            else 
            {
                kfree(p);    /* Free the TCB */
                return 0;
            }
        }
#ifdef RCDEBUG
        printk("post 0x%x\n", (uint)skb);
#endif
        skb_reserve(skb, 2);    /* Align IP on 16 byte boundaries */
        pB->context = (u32)skb;
        pB->scount = 1;        /* segment count */
        pB->size = MAX_ETHER_SIZE;
        pB->addr = virt_to_bus((void *)skb->data);
        p[0]++;
        pB++;
    }

    if ( (status = RCPostRecvBuffers(pDpa->id, (PRCTCB)p )) != RC_RTN_NO_ERROR)
    {
        printk("rc: Post buffer failed with error code 0x%x!\n", status);
        pB = (psingleB)((u32)p + sizeof(u32)); /* point to the first buffer */
        while(p[0])
        {
            skb = (struct sk_buff *)pB->context;
#ifndef LINUX_2_1
            skb->free = 1;    
#endif
#ifdef RCDEBUG
            printk("rc: freeing 0x%x\n", (uint)skb);
#endif
#ifdef LINUX_2_1
            dev_kfree_skb (skb);
#else
            dev_kfree_skb(skb, FREE_READ);
#endif
            p[0]--;
            pB++;
        }
#ifdef RCDEBUG
        printk("rc: freed all buffers, p[0] = %ld\n", p[0]);
#endif
    }
    kfree(p);
    return(p[0]);                /* return the number of posted buffers */
}