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airo: bug in airo_interrupt() handling on incoming 802.11
[mirror_ubuntu-bionic-kernel.git] / drivers / net / wireless / airo.c
CommitLineData
1da177e4
LT
1/*======================================================================
2
3 Aironet driver for 4500 and 4800 series cards
4
5 This code is released under both the GPL version 2 and BSD licenses.
6 Either license may be used. The respective licenses are found at
7 the end of this file.
8
9 This code was developed by Benjamin Reed <breed@users.sourceforge.net>
10 including portions of which come from the Aironet PC4500
11 Developer's Reference Manual and used with permission. Copyright
12 (C) 1999 Benjamin Reed. All Rights Reserved. Permission to use
13 code in the Developer's manual was granted for this driver by
14 Aironet. Major code contributions were received from Javier Achirica
15 <achirica@users.sourceforge.net> and Jean Tourrilhes <jt@hpl.hp.com>.
16 Code was also integrated from the Cisco Aironet driver for Linux.
17 Support for MPI350 cards was added by Fabrice Bellet
18 <fabrice@bellet.info>.
19
20======================================================================*/
21
f12cc209 22#include <linux/err.h>
1da177e4
LT
23#include <linux/init.h>
24
25#include <linux/kernel.h>
26#include <linux/module.h>
27#include <linux/proc_fs.h>
1da177e4
LT
28
29#include <linux/sched.h>
30#include <linux/ptrace.h>
31#include <linux/slab.h>
32#include <linux/string.h>
33#include <linux/timer.h>
34#include <linux/interrupt.h>
35#include <linux/in.h>
36#include <linux/bitops.h>
378f058c 37#include <linux/scatterlist.h>
a39d3e79 38#include <linux/crypto.h>
1da177e4
LT
39#include <asm/io.h>
40#include <asm/system.h>
41
42#include <linux/netdevice.h>
43#include <linux/etherdevice.h>
44#include <linux/skbuff.h>
45#include <linux/if_arp.h>
46#include <linux/ioport.h>
47#include <linux/pci.h>
48#include <asm/uaccess.h>
3c304956 49#include <net/ieee80211.h>
3b4c7d64 50#include <linux/kthread.h>
7dfb7103 51#include <linux/freezer.h>
1da177e4 52
d3808760
AB
53#include "airo.h"
54
1138c37b
MS
55#define DRV_NAME "airo"
56
1da177e4
LT
57#ifdef CONFIG_PCI
58static struct pci_device_id card_ids[] = {
59 { 0x14b9, 1, PCI_ANY_ID, PCI_ANY_ID, },
60 { 0x14b9, 0x4500, PCI_ANY_ID, PCI_ANY_ID },
61 { 0x14b9, 0x4800, PCI_ANY_ID, PCI_ANY_ID, },
62 { 0x14b9, 0x0340, PCI_ANY_ID, PCI_ANY_ID, },
63 { 0x14b9, 0x0350, PCI_ANY_ID, PCI_ANY_ID, },
64 { 0x14b9, 0x5000, PCI_ANY_ID, PCI_ANY_ID, },
65 { 0x14b9, 0xa504, PCI_ANY_ID, PCI_ANY_ID, },
66 { 0, }
67};
68MODULE_DEVICE_TABLE(pci, card_ids);
69
70static int airo_pci_probe(struct pci_dev *, const struct pci_device_id *);
71static void airo_pci_remove(struct pci_dev *);
05adc3b7 72static int airo_pci_suspend(struct pci_dev *pdev, pm_message_t state);
1da177e4
LT
73static int airo_pci_resume(struct pci_dev *pdev);
74
75static struct pci_driver airo_driver = {
1138c37b 76 .name = DRV_NAME,
1da177e4
LT
77 .id_table = card_ids,
78 .probe = airo_pci_probe,
79 .remove = __devexit_p(airo_pci_remove),
80 .suspend = airo_pci_suspend,
81 .resume = airo_pci_resume,
82};
83#endif /* CONFIG_PCI */
84
85/* Include Wireless Extension definition and check version - Jean II */
86#include <linux/wireless.h>
87#define WIRELESS_SPY // enable iwspy support
88#include <net/iw_handler.h> // New driver API
89
90#define CISCO_EXT // enable Cisco extensions
91#ifdef CISCO_EXT
92#include <linux/delay.h>
93#endif
94
1da177e4
LT
95/* Hack to do some power saving */
96#define POWER_ON_DOWN
97
98/* As you can see this list is HUGH!
99 I really don't know what a lot of these counts are about, but they
100 are all here for completeness. If the IGNLABEL macro is put in
101 infront of the label, that statistic will not be included in the list
102 of statistics in the /proc filesystem */
103
104#define IGNLABEL(comment) NULL
105static char *statsLabels[] = {
106 "RxOverrun",
107 IGNLABEL("RxPlcpCrcErr"),
108 IGNLABEL("RxPlcpFormatErr"),
109 IGNLABEL("RxPlcpLengthErr"),
110 "RxMacCrcErr",
111 "RxMacCrcOk",
112 "RxWepErr",
113 "RxWepOk",
114 "RetryLong",
115 "RetryShort",
116 "MaxRetries",
117 "NoAck",
118 "NoCts",
119 "RxAck",
120 "RxCts",
121 "TxAck",
122 "TxRts",
123 "TxCts",
124 "TxMc",
125 "TxBc",
126 "TxUcFrags",
127 "TxUcPackets",
128 "TxBeacon",
129 "RxBeacon",
130 "TxSinColl",
131 "TxMulColl",
132 "DefersNo",
133 "DefersProt",
134 "DefersEngy",
135 "DupFram",
136 "RxFragDisc",
137 "TxAged",
138 "RxAged",
139 "LostSync-MaxRetry",
140 "LostSync-MissedBeacons",
141 "LostSync-ArlExceeded",
142 "LostSync-Deauth",
143 "LostSync-Disassoced",
144 "LostSync-TsfTiming",
145 "HostTxMc",
146 "HostTxBc",
147 "HostTxUc",
148 "HostTxFail",
149 "HostRxMc",
150 "HostRxBc",
151 "HostRxUc",
152 "HostRxDiscard",
153 IGNLABEL("HmacTxMc"),
154 IGNLABEL("HmacTxBc"),
155 IGNLABEL("HmacTxUc"),
156 IGNLABEL("HmacTxFail"),
157 IGNLABEL("HmacRxMc"),
158 IGNLABEL("HmacRxBc"),
159 IGNLABEL("HmacRxUc"),
160 IGNLABEL("HmacRxDiscard"),
161 IGNLABEL("HmacRxAccepted"),
162 "SsidMismatch",
163 "ApMismatch",
164 "RatesMismatch",
165 "AuthReject",
166 "AuthTimeout",
167 "AssocReject",
168 "AssocTimeout",
169 IGNLABEL("ReasonOutsideTable"),
170 IGNLABEL("ReasonStatus1"),
171 IGNLABEL("ReasonStatus2"),
172 IGNLABEL("ReasonStatus3"),
173 IGNLABEL("ReasonStatus4"),
174 IGNLABEL("ReasonStatus5"),
175 IGNLABEL("ReasonStatus6"),
176 IGNLABEL("ReasonStatus7"),
177 IGNLABEL("ReasonStatus8"),
178 IGNLABEL("ReasonStatus9"),
179 IGNLABEL("ReasonStatus10"),
180 IGNLABEL("ReasonStatus11"),
181 IGNLABEL("ReasonStatus12"),
182 IGNLABEL("ReasonStatus13"),
183 IGNLABEL("ReasonStatus14"),
184 IGNLABEL("ReasonStatus15"),
185 IGNLABEL("ReasonStatus16"),
186 IGNLABEL("ReasonStatus17"),
187 IGNLABEL("ReasonStatus18"),
188 IGNLABEL("ReasonStatus19"),
189 "RxMan",
190 "TxMan",
191 "RxRefresh",
192 "TxRefresh",
193 "RxPoll",
194 "TxPoll",
195 "HostRetries",
196 "LostSync-HostReq",
197 "HostTxBytes",
198 "HostRxBytes",
199 "ElapsedUsec",
200 "ElapsedSec",
201 "LostSyncBetterAP",
202 "PrivacyMismatch",
203 "Jammed",
204 "DiscRxNotWepped",
205 "PhyEleMismatch",
206 (char*)-1 };
207#ifndef RUN_AT
208#define RUN_AT(x) (jiffies+(x))
209#endif
210
211
212/* These variables are for insmod, since it seems that the rates
213 can only be set in setup_card. Rates should be a comma separated
214 (no spaces) list of rates (up to 8). */
215
216static int rates[8];
217static int basic_rate;
218static char *ssids[3];
219
220static int io[4];
221static int irq[4];
222
223static
224int maxencrypt /* = 0 */; /* The highest rate that the card can encrypt at.
225 0 means no limit. For old cards this was 4 */
226
227static int auto_wep /* = 0 */; /* If set, it tries to figure out the wep mode */
228static int aux_bap /* = 0 */; /* Checks to see if the aux ports are needed to read
229 the bap, needed on some older cards and buses. */
230static int adhoc;
231
232static int probe = 1;
233
234static int proc_uid /* = 0 */;
235
236static int proc_gid /* = 0 */;
237
238static int airo_perm = 0555;
239
240static int proc_perm = 0644;
241
242MODULE_AUTHOR("Benjamin Reed");
243MODULE_DESCRIPTION("Support for Cisco/Aironet 802.11 wireless ethernet \
d73ae55a
BN
244cards. Direct support for ISA/PCI/MPI cards and support \
245for PCMCIA when used with airo_cs.");
1da177e4
LT
246MODULE_LICENSE("Dual BSD/GPL");
247MODULE_SUPPORTED_DEVICE("Aironet 4500, 4800 and Cisco 340/350");
248module_param_array(io, int, NULL, 0);
249module_param_array(irq, int, NULL, 0);
250module_param(basic_rate, int, 0);
251module_param_array(rates, int, NULL, 0);
252module_param_array(ssids, charp, NULL, 0);
253module_param(auto_wep, int, 0);
254MODULE_PARM_DESC(auto_wep, "If non-zero, the driver will keep looping through \
255the authentication options until an association is made. The value of \
256auto_wep is number of the wep keys to check. A value of 2 will try using \
257the key at index 0 and index 1.");
258module_param(aux_bap, int, 0);
259MODULE_PARM_DESC(aux_bap, "If non-zero, the driver will switch into a mode \
260than seems to work better for older cards with some older buses. Before \
261switching it checks that the switch is needed.");
262module_param(maxencrypt, int, 0);
263MODULE_PARM_DESC(maxencrypt, "The maximum speed that the card can do \
264encryption. Units are in 512kbs. Zero (default) means there is no limit. \
265Older cards used to be limited to 2mbs (4).");
266module_param(adhoc, int, 0);
267MODULE_PARM_DESC(adhoc, "If non-zero, the card will start in adhoc mode.");
268module_param(probe, int, 0);
269MODULE_PARM_DESC(probe, "If zero, the driver won't start the card.");
270
271module_param(proc_uid, int, 0);
272MODULE_PARM_DESC(proc_uid, "The uid that the /proc files will belong to.");
273module_param(proc_gid, int, 0);
274MODULE_PARM_DESC(proc_gid, "The gid that the /proc files will belong to.");
275module_param(airo_perm, int, 0);
276MODULE_PARM_DESC(airo_perm, "The permission bits of /proc/[driver/]aironet.");
277module_param(proc_perm, int, 0);
278MODULE_PARM_DESC(proc_perm, "The permission bits of the files in /proc");
279
280/* This is a kind of sloppy hack to get this information to OUT4500 and
281 IN4500. I would be extremely interested in the situation where this
282 doesn't work though!!! */
283static int do8bitIO = 0;
284
285/* Return codes */
286#define SUCCESS 0
287#define ERROR -1
288#define NO_PACKET -2
289
290/* Commands */
291#define NOP2 0x0000
292#define MAC_ENABLE 0x0001
293#define MAC_DISABLE 0x0002
294#define CMD_LOSE_SYNC 0x0003 /* Not sure what this does... */
295#define CMD_SOFTRESET 0x0004
296#define HOSTSLEEP 0x0005
297#define CMD_MAGIC_PKT 0x0006
298#define CMD_SETWAKEMASK 0x0007
299#define CMD_READCFG 0x0008
300#define CMD_SETMODE 0x0009
301#define CMD_ALLOCATETX 0x000a
302#define CMD_TRANSMIT 0x000b
303#define CMD_DEALLOCATETX 0x000c
304#define NOP 0x0010
305#define CMD_WORKAROUND 0x0011
306#define CMD_ALLOCATEAUX 0x0020
307#define CMD_ACCESS 0x0021
308#define CMD_PCIBAP 0x0022
309#define CMD_PCIAUX 0x0023
310#define CMD_ALLOCBUF 0x0028
311#define CMD_GETTLV 0x0029
312#define CMD_PUTTLV 0x002a
313#define CMD_DELTLV 0x002b
314#define CMD_FINDNEXTTLV 0x002c
315#define CMD_PSPNODES 0x0030
316#define CMD_SETCW 0x0031
317#define CMD_SETPCF 0x0032
318#define CMD_SETPHYREG 0x003e
319#define CMD_TXTEST 0x003f
320#define MAC_ENABLETX 0x0101
321#define CMD_LISTBSS 0x0103
322#define CMD_SAVECFG 0x0108
323#define CMD_ENABLEAUX 0x0111
324#define CMD_WRITERID 0x0121
325#define CMD_USEPSPNODES 0x0130
326#define MAC_ENABLERX 0x0201
327
328/* Command errors */
329#define ERROR_QUALIF 0x00
330#define ERROR_ILLCMD 0x01
331#define ERROR_ILLFMT 0x02
332#define ERROR_INVFID 0x03
333#define ERROR_INVRID 0x04
334#define ERROR_LARGE 0x05
335#define ERROR_NDISABL 0x06
336#define ERROR_ALLOCBSY 0x07
337#define ERROR_NORD 0x0B
338#define ERROR_NOWR 0x0C
339#define ERROR_INVFIDTX 0x0D
340#define ERROR_TESTACT 0x0E
341#define ERROR_TAGNFND 0x12
342#define ERROR_DECODE 0x20
343#define ERROR_DESCUNAV 0x21
344#define ERROR_BADLEN 0x22
345#define ERROR_MODE 0x80
346#define ERROR_HOP 0x81
347#define ERROR_BINTER 0x82
348#define ERROR_RXMODE 0x83
349#define ERROR_MACADDR 0x84
350#define ERROR_RATES 0x85
351#define ERROR_ORDER 0x86
352#define ERROR_SCAN 0x87
353#define ERROR_AUTH 0x88
354#define ERROR_PSMODE 0x89
355#define ERROR_RTYPE 0x8A
356#define ERROR_DIVER 0x8B
357#define ERROR_SSID 0x8C
358#define ERROR_APLIST 0x8D
359#define ERROR_AUTOWAKE 0x8E
360#define ERROR_LEAP 0x8F
361
362/* Registers */
363#define COMMAND 0x00
364#define PARAM0 0x02
365#define PARAM1 0x04
366#define PARAM2 0x06
367#define STATUS 0x08
368#define RESP0 0x0a
369#define RESP1 0x0c
370#define RESP2 0x0e
371#define LINKSTAT 0x10
372#define SELECT0 0x18
373#define OFFSET0 0x1c
374#define RXFID 0x20
375#define TXALLOCFID 0x22
376#define TXCOMPLFID 0x24
377#define DATA0 0x36
378#define EVSTAT 0x30
379#define EVINTEN 0x32
380#define EVACK 0x34
381#define SWS0 0x28
382#define SWS1 0x2a
383#define SWS2 0x2c
384#define SWS3 0x2e
385#define AUXPAGE 0x3A
386#define AUXOFF 0x3C
387#define AUXDATA 0x3E
388
389#define FID_TX 1
390#define FID_RX 2
391/* Offset into aux memory for descriptors */
392#define AUX_OFFSET 0x800
393/* Size of allocated packets */
394#define PKTSIZE 1840
395#define RIDSIZE 2048
396/* Size of the transmit queue */
397#define MAXTXQ 64
398
399/* BAP selectors */
400#define BAP0 0 // Used for receiving packets
401#define BAP1 2 // Used for xmiting packets and working with RIDS
402
403/* Flags */
404#define COMMAND_BUSY 0x8000
405
406#define BAP_BUSY 0x8000
407#define BAP_ERR 0x4000
408#define BAP_DONE 0x2000
409
410#define PROMISC 0xffff
411#define NOPROMISC 0x0000
412
413#define EV_CMD 0x10
414#define EV_CLEARCOMMANDBUSY 0x4000
415#define EV_RX 0x01
416#define EV_TX 0x02
417#define EV_TXEXC 0x04
418#define EV_ALLOC 0x08
419#define EV_LINK 0x80
420#define EV_AWAKE 0x100
421#define EV_TXCPY 0x400
422#define EV_UNKNOWN 0x800
423#define EV_MIC 0x1000 /* Message Integrity Check Interrupt */
424#define EV_AWAKEN 0x2000
425#define STATUS_INTS (EV_AWAKE|EV_LINK|EV_TXEXC|EV_TX|EV_TXCPY|EV_RX|EV_MIC)
426
427#ifdef CHECK_UNKNOWN_INTS
428#define IGNORE_INTS ( EV_CMD | EV_UNKNOWN)
429#else
430#define IGNORE_INTS (~STATUS_INTS)
431#endif
432
433/* RID TYPES */
434#define RID_RW 0x20
435
436/* The RIDs */
437#define RID_CAPABILITIES 0xFF00
438#define RID_APINFO 0xFF01
439#define RID_RADIOINFO 0xFF02
440#define RID_UNKNOWN3 0xFF03
441#define RID_RSSI 0xFF04
442#define RID_CONFIG 0xFF10
443#define RID_SSID 0xFF11
444#define RID_APLIST 0xFF12
445#define RID_DRVNAME 0xFF13
446#define RID_ETHERENCAP 0xFF14
447#define RID_WEP_TEMP 0xFF15
448#define RID_WEP_PERM 0xFF16
449#define RID_MODULATION 0xFF17
450#define RID_OPTIONS 0xFF18
451#define RID_ACTUALCONFIG 0xFF20 /*readonly*/
452#define RID_FACTORYCONFIG 0xFF21
453#define RID_UNKNOWN22 0xFF22
454#define RID_LEAPUSERNAME 0xFF23
455#define RID_LEAPPASSWORD 0xFF24
456#define RID_STATUS 0xFF50
457#define RID_BEACON_HST 0xFF51
458#define RID_BUSY_HST 0xFF52
459#define RID_RETRIES_HST 0xFF53
460#define RID_UNKNOWN54 0xFF54
461#define RID_UNKNOWN55 0xFF55
462#define RID_UNKNOWN56 0xFF56
463#define RID_MIC 0xFF57
464#define RID_STATS16 0xFF60
465#define RID_STATS16DELTA 0xFF61
466#define RID_STATS16DELTACLEAR 0xFF62
467#define RID_STATS 0xFF68
468#define RID_STATSDELTA 0xFF69
469#define RID_STATSDELTACLEAR 0xFF6A
470#define RID_ECHOTEST_RID 0xFF70
471#define RID_ECHOTEST_RESULTS 0xFF71
472#define RID_BSSLISTFIRST 0xFF72
473#define RID_BSSLISTNEXT 0xFF73
3c304956
DW
474#define RID_WPA_BSSLISTFIRST 0xFF74
475#define RID_WPA_BSSLISTNEXT 0xFF75
1da177e4
LT
476
477typedef struct {
478 u16 cmd;
479 u16 parm0;
480 u16 parm1;
481 u16 parm2;
482} Cmd;
483
484typedef struct {
485 u16 status;
486 u16 rsp0;
487 u16 rsp1;
488 u16 rsp2;
489} Resp;
490
491/*
492 * Rids and endian-ness: The Rids will always be in cpu endian, since
493 * this all the patches from the big-endian guys end up doing that.
494 * so all rid access should use the read/writeXXXRid routines.
495 */
496
497/* This is redundant for x86 archs, but it seems necessary for ARM */
498#pragma pack(1)
499
500/* This structure came from an email sent to me from an engineer at
501 aironet for inclusion into this driver */
502typedef struct {
503 u16 len;
504 u16 kindex;
505 u8 mac[ETH_ALEN];
506 u16 klen;
507 u8 key[16];
508} WepKeyRid;
509
510/* These structures are from the Aironet's PC4500 Developers Manual */
511typedef struct {
512 u16 len;
513 u8 ssid[32];
514} Ssid;
515
516typedef struct {
517 u16 len;
518 Ssid ssids[3];
519} SsidRid;
520
521typedef struct {
522 u16 len;
523 u16 modulation;
524#define MOD_DEFAULT 0
525#define MOD_CCK 1
526#define MOD_MOK 2
527} ModulationRid;
528
529typedef struct {
530 u16 len; /* sizeof(ConfigRid) */
531 u16 opmode; /* operating mode */
532#define MODE_STA_IBSS 0
533#define MODE_STA_ESS 1
534#define MODE_AP 2
535#define MODE_AP_RPTR 3
536#define MODE_ETHERNET_HOST (0<<8) /* rx payloads converted */
537#define MODE_LLC_HOST (1<<8) /* rx payloads left as is */
538#define MODE_AIRONET_EXTEND (1<<9) /* enable Aironet extenstions */
539#define MODE_AP_INTERFACE (1<<10) /* enable ap interface extensions */
540#define MODE_ANTENNA_ALIGN (1<<11) /* enable antenna alignment */
541#define MODE_ETHER_LLC (1<<12) /* enable ethernet LLC */
542#define MODE_LEAF_NODE (1<<13) /* enable leaf node bridge */
543#define MODE_CF_POLLABLE (1<<14) /* enable CF pollable */
544#define MODE_MIC (1<<15) /* enable MIC */
545 u16 rmode; /* receive mode */
546#define RXMODE_BC_MC_ADDR 0
547#define RXMODE_BC_ADDR 1 /* ignore multicasts */
548#define RXMODE_ADDR 2 /* ignore multicast and broadcast */
549#define RXMODE_RFMON 3 /* wireless monitor mode */
550#define RXMODE_RFMON_ANYBSS 4
551#define RXMODE_LANMON 5 /* lan style monitor -- data packets only */
552#define RXMODE_DISABLE_802_3_HEADER (1<<8) /* disables 802.3 header on rx */
553#define RXMODE_NORMALIZED_RSSI (1<<9) /* return normalized RSSI */
554 u16 fragThresh;
555 u16 rtsThres;
556 u8 macAddr[ETH_ALEN];
557 u8 rates[8];
558 u16 shortRetryLimit;
559 u16 longRetryLimit;
560 u16 txLifetime; /* in kusec */
561 u16 rxLifetime; /* in kusec */
562 u16 stationary;
563 u16 ordering;
564 u16 u16deviceType; /* for overriding device type */
565 u16 cfpRate;
566 u16 cfpDuration;
567 u16 _reserved1[3];
568 /*---------- Scanning/Associating ----------*/
569 u16 scanMode;
570#define SCANMODE_ACTIVE 0
571#define SCANMODE_PASSIVE 1
572#define SCANMODE_AIROSCAN 2
573 u16 probeDelay; /* in kusec */
574 u16 probeEnergyTimeout; /* in kusec */
575 u16 probeResponseTimeout;
576 u16 beaconListenTimeout;
577 u16 joinNetTimeout;
578 u16 authTimeout;
579 u16 authType;
580#define AUTH_OPEN 0x1
581#define AUTH_ENCRYPT 0x101
582#define AUTH_SHAREDKEY 0x102
583#define AUTH_ALLOW_UNENCRYPTED 0x200
584 u16 associationTimeout;
585 u16 specifiedApTimeout;
586 u16 offlineScanInterval;
587 u16 offlineScanDuration;
588 u16 linkLossDelay;
589 u16 maxBeaconLostTime;
590 u16 refreshInterval;
591#define DISABLE_REFRESH 0xFFFF
592 u16 _reserved1a[1];
593 /*---------- Power save operation ----------*/
594 u16 powerSaveMode;
595#define POWERSAVE_CAM 0
596#define POWERSAVE_PSP 1
597#define POWERSAVE_PSPCAM 2
598 u16 sleepForDtims;
599 u16 listenInterval;
600 u16 fastListenInterval;
601 u16 listenDecay;
602 u16 fastListenDelay;
603 u16 _reserved2[2];
604 /*---------- Ap/Ibss config items ----------*/
605 u16 beaconPeriod;
606 u16 atimDuration;
607 u16 hopPeriod;
608 u16 channelSet;
609 u16 channel;
610 u16 dtimPeriod;
611 u16 bridgeDistance;
612 u16 radioID;
613 /*---------- Radio configuration ----------*/
614 u16 radioType;
615#define RADIOTYPE_DEFAULT 0
616#define RADIOTYPE_802_11 1
617#define RADIOTYPE_LEGACY 2
618 u8 rxDiversity;
619 u8 txDiversity;
620 u16 txPower;
621#define TXPOWER_DEFAULT 0
622 u16 rssiThreshold;
623#define RSSI_DEFAULT 0
624 u16 modulation;
625#define PREAMBLE_AUTO 0
626#define PREAMBLE_LONG 1
627#define PREAMBLE_SHORT 2
628 u16 preamble;
629 u16 homeProduct;
630 u16 radioSpecific;
631 /*---------- Aironet Extensions ----------*/
632 u8 nodeName[16];
633 u16 arlThreshold;
634 u16 arlDecay;
635 u16 arlDelay;
636 u16 _reserved4[1];
637 /*---------- Aironet Extensions ----------*/
638 u8 magicAction;
639#define MAGIC_ACTION_STSCHG 1
640#define MAGIC_ACTION_RESUME 2
641#define MAGIC_IGNORE_MCAST (1<<8)
642#define MAGIC_IGNORE_BCAST (1<<9)
643#define MAGIC_SWITCH_TO_PSP (0<<10)
644#define MAGIC_STAY_IN_CAM (1<<10)
645 u8 magicControl;
646 u16 autoWake;
647} ConfigRid;
648
649typedef struct {
650 u16 len;
651 u8 mac[ETH_ALEN];
652 u16 mode;
653 u16 errorCode;
654 u16 sigQuality;
655 u16 SSIDlen;
656 char SSID[32];
657 char apName[16];
658 u8 bssid[4][ETH_ALEN];
659 u16 beaconPeriod;
660 u16 dimPeriod;
661 u16 atimDuration;
662 u16 hopPeriod;
663 u16 channelSet;
664 u16 channel;
665 u16 hopsToBackbone;
666 u16 apTotalLoad;
667 u16 generatedLoad;
668 u16 accumulatedArl;
669 u16 signalQuality;
670 u16 currentXmitRate;
671 u16 apDevExtensions;
672 u16 normalizedSignalStrength;
673 u16 shortPreamble;
674 u8 apIP[4];
675 u8 noisePercent; /* Noise percent in last second */
676 u8 noisedBm; /* Noise dBm in last second */
677 u8 noiseAvePercent; /* Noise percent in last minute */
678 u8 noiseAvedBm; /* Noise dBm in last minute */
679 u8 noiseMaxPercent; /* Highest noise percent in last minute */
680 u8 noiseMaxdBm; /* Highest noise dbm in last minute */
681 u16 load;
682 u8 carrier[4];
683 u16 assocStatus;
684#define STAT_NOPACKETS 0
685#define STAT_NOCARRIERSET 10
686#define STAT_GOTCARRIERSET 11
687#define STAT_WRONGSSID 20
688#define STAT_BADCHANNEL 25
689#define STAT_BADBITRATES 30
690#define STAT_BADPRIVACY 35
691#define STAT_APFOUND 40
692#define STAT_APREJECTED 50
693#define STAT_AUTHENTICATING 60
694#define STAT_DEAUTHENTICATED 61
695#define STAT_AUTHTIMEOUT 62
696#define STAT_ASSOCIATING 70
697#define STAT_DEASSOCIATED 71
698#define STAT_ASSOCTIMEOUT 72
699#define STAT_NOTAIROAP 73
700#define STAT_ASSOCIATED 80
701#define STAT_LEAPING 90
702#define STAT_LEAPFAILED 91
703#define STAT_LEAPTIMEDOUT 92
704#define STAT_LEAPCOMPLETE 93
705} StatusRid;
706
707typedef struct {
708 u16 len;
709 u16 spacer;
710 u32 vals[100];
711} StatsRid;
712
713
714typedef struct {
715 u16 len;
716 u8 ap[4][ETH_ALEN];
717} APListRid;
718
719typedef struct {
720 u16 len;
721 char oui[3];
722 char zero;
723 u16 prodNum;
724 char manName[32];
725 char prodName[16];
726 char prodVer[8];
727 char factoryAddr[ETH_ALEN];
728 char aironetAddr[ETH_ALEN];
729 u16 radioType;
730 u16 country;
731 char callid[ETH_ALEN];
732 char supportedRates[8];
733 char rxDiversity;
734 char txDiversity;
735 u16 txPowerLevels[8];
736 u16 hardVer;
737 u16 hardCap;
738 u16 tempRange;
739 u16 softVer;
740 u16 softSubVer;
741 u16 interfaceVer;
742 u16 softCap;
743 u16 bootBlockVer;
744 u16 requiredHard;
745 u16 extSoftCap;
746} CapabilityRid;
747
3c304956
DW
748
749/* Only present on firmware >= 5.30.17 */
750typedef struct {
751 u16 unknown[4];
752 u8 fixed[12]; /* WLAN management frame */
753 u8 iep[624];
754} BSSListRidExtra;
755
1da177e4
LT
756typedef struct {
757 u16 len;
758 u16 index; /* First is 0 and 0xffff means end of list */
759#define RADIO_FH 1 /* Frequency hopping radio type */
760#define RADIO_DS 2 /* Direct sequence radio type */
761#define RADIO_TMA 4 /* Proprietary radio used in old cards (2500) */
762 u16 radioType;
763 u8 bssid[ETH_ALEN]; /* Mac address of the BSS */
764 u8 zero;
765 u8 ssidLen;
766 u8 ssid[32];
41480af2 767 u16 dBm;
1da177e4
LT
768#define CAP_ESS (1<<0)
769#define CAP_IBSS (1<<1)
770#define CAP_PRIVACY (1<<4)
771#define CAP_SHORTHDR (1<<5)
772 u16 cap;
773 u16 beaconInterval;
774 u8 rates[8]; /* Same as rates for config rid */
775 struct { /* For frequency hopping only */
776 u16 dwell;
777 u8 hopSet;
778 u8 hopPattern;
779 u8 hopIndex;
780 u8 fill;
781 } fh;
782 u16 dsChannel;
783 u16 atimWindow;
3c304956
DW
784
785 /* Only present on firmware >= 5.30.17 */
786 BSSListRidExtra extra;
1da177e4
LT
787} BSSListRid;
788
9e75af30
DW
789typedef struct {
790 BSSListRid bss;
791 struct list_head list;
792} BSSListElement;
793
1da177e4
LT
794typedef struct {
795 u8 rssipct;
796 u8 rssidBm;
797} tdsRssiEntry;
798
799typedef struct {
800 u16 len;
801 tdsRssiEntry x[256];
802} tdsRssiRid;
803
804typedef struct {
805 u16 len;
806 u16 state;
807 u16 multicastValid;
808 u8 multicast[16];
809 u16 unicastValid;
810 u8 unicast[16];
811} MICRid;
812
813typedef struct {
814 u16 typelen;
815
816 union {
817 u8 snap[8];
818 struct {
819 u8 dsap;
820 u8 ssap;
821 u8 control;
822 u8 orgcode[3];
823 u8 fieldtype[2];
824 } llc;
825 } u;
826 u32 mic;
827 u32 seq;
828} MICBuffer;
829
830typedef struct {
831 u8 da[ETH_ALEN];
832 u8 sa[ETH_ALEN];
833} etherHead;
834
835#pragma pack()
836
837#define TXCTL_TXOK (1<<1) /* report if tx is ok */
838#define TXCTL_TXEX (1<<2) /* report if tx fails */
839#define TXCTL_802_3 (0<<3) /* 802.3 packet */
840#define TXCTL_802_11 (1<<3) /* 802.11 mac packet */
841#define TXCTL_ETHERNET (0<<4) /* payload has ethertype */
842#define TXCTL_LLC (1<<4) /* payload is llc */
843#define TXCTL_RELEASE (0<<5) /* release after completion */
844#define TXCTL_NORELEASE (1<<5) /* on completion returns to host */
845
846#define BUSY_FID 0x10000
847
848#ifdef CISCO_EXT
849#define AIROMAGIC 0xa55a
850/* Warning : SIOCDEVPRIVATE may disapear during 2.5.X - Jean II */
851#ifdef SIOCIWFIRSTPRIV
852#ifdef SIOCDEVPRIVATE
853#define AIROOLDIOCTL SIOCDEVPRIVATE
854#define AIROOLDIDIFC AIROOLDIOCTL + 1
855#endif /* SIOCDEVPRIVATE */
856#else /* SIOCIWFIRSTPRIV */
857#define SIOCIWFIRSTPRIV SIOCDEVPRIVATE
858#endif /* SIOCIWFIRSTPRIV */
859/* This may be wrong. When using the new SIOCIWFIRSTPRIV range, we probably
860 * should use only "GET" ioctls (last bit set to 1). "SET" ioctls are root
861 * only and don't return the modified struct ifreq to the application which
862 * is usually a problem. - Jean II */
863#define AIROIOCTL SIOCIWFIRSTPRIV
864#define AIROIDIFC AIROIOCTL + 1
865
866/* Ioctl constants to be used in airo_ioctl.command */
867
868#define AIROGCAP 0 // Capability rid
869#define AIROGCFG 1 // USED A LOT
870#define AIROGSLIST 2 // System ID list
871#define AIROGVLIST 3 // List of specified AP's
872#define AIROGDRVNAM 4 // NOTUSED
873#define AIROGEHTENC 5 // NOTUSED
874#define AIROGWEPKTMP 6
875#define AIROGWEPKNV 7
876#define AIROGSTAT 8
877#define AIROGSTATSC32 9
878#define AIROGSTATSD32 10
879#define AIROGMICRID 11
880#define AIROGMICSTATS 12
881#define AIROGFLAGS 13
882#define AIROGID 14
883#define AIRORRID 15
884#define AIRORSWVERSION 17
885
886/* Leave gap of 40 commands after AIROGSTATSD32 for future */
887
888#define AIROPCAP AIROGSTATSD32 + 40
889#define AIROPVLIST AIROPCAP + 1
890#define AIROPSLIST AIROPVLIST + 1
891#define AIROPCFG AIROPSLIST + 1
892#define AIROPSIDS AIROPCFG + 1
893#define AIROPAPLIST AIROPSIDS + 1
894#define AIROPMACON AIROPAPLIST + 1 /* Enable mac */
895#define AIROPMACOFF AIROPMACON + 1 /* Disable mac */
896#define AIROPSTCLR AIROPMACOFF + 1
897#define AIROPWEPKEY AIROPSTCLR + 1
898#define AIROPWEPKEYNV AIROPWEPKEY + 1
899#define AIROPLEAPPWD AIROPWEPKEYNV + 1
900#define AIROPLEAPUSR AIROPLEAPPWD + 1
901
902/* Flash codes */
903
904#define AIROFLSHRST AIROPWEPKEYNV + 40
905#define AIROFLSHGCHR AIROFLSHRST + 1
906#define AIROFLSHSTFL AIROFLSHGCHR + 1
907#define AIROFLSHPCHR AIROFLSHSTFL + 1
908#define AIROFLPUTBUF AIROFLSHPCHR + 1
909#define AIRORESTART AIROFLPUTBUF + 1
910
911#define FLASHSIZE 32768
912#define AUXMEMSIZE (256 * 1024)
913
914typedef struct aironet_ioctl {
915 unsigned short command; // What to do
916 unsigned short len; // Len of data
917 unsigned short ridnum; // rid number
918 unsigned char __user *data; // d-data
919} aironet_ioctl;
920
62595eb9 921static char swversion[] = "2.1";
1da177e4
LT
922#endif /* CISCO_EXT */
923
924#define NUM_MODULES 2
925#define MIC_MSGLEN_MAX 2400
926#define EMMH32_MSGLEN_MAX MIC_MSGLEN_MAX
15db2763 927#define AIRO_DEF_MTU 2312
1da177e4
LT
928
929typedef struct {
930 u32 size; // size
931 u8 enabled; // MIC enabled or not
932 u32 rxSuccess; // successful packets received
933 u32 rxIncorrectMIC; // pkts dropped due to incorrect MIC comparison
934 u32 rxNotMICed; // pkts dropped due to not being MIC'd
935 u32 rxMICPlummed; // pkts dropped due to not having a MIC plummed
936 u32 rxWrongSequence; // pkts dropped due to sequence number violation
937 u32 reserve[32];
938} mic_statistics;
939
940typedef struct {
941 u32 coeff[((EMMH32_MSGLEN_MAX)+3)>>2];
942 u64 accum; // accumulated mic, reduced to u32 in final()
943 int position; // current position (byte offset) in message
944 union {
945 u8 d8[4];
946 u32 d32;
947 } part; // saves partial message word across update() calls
948} emmh32_context;
949
950typedef struct {
951 emmh32_context seed; // Context - the seed
952 u32 rx; // Received sequence number
953 u32 tx; // Tx sequence number
954 u32 window; // Start of window
955 u8 valid; // Flag to say if context is valid or not
956 u8 key[16];
957} miccntx;
958
959typedef struct {
960 miccntx mCtx; // Multicast context
961 miccntx uCtx; // Unicast context
962} mic_module;
963
964typedef struct {
965 unsigned int rid: 16;
966 unsigned int len: 15;
967 unsigned int valid: 1;
968 dma_addr_t host_addr;
969} Rid;
970
971typedef struct {
972 unsigned int offset: 15;
973 unsigned int eoc: 1;
974 unsigned int len: 15;
975 unsigned int valid: 1;
976 dma_addr_t host_addr;
977} TxFid;
978
979typedef struct {
980 unsigned int ctl: 15;
981 unsigned int rdy: 1;
982 unsigned int len: 15;
983 unsigned int valid: 1;
984 dma_addr_t host_addr;
985} RxFid;
986
987/*
988 * Host receive descriptor
989 */
990typedef struct {
991 unsigned char __iomem *card_ram_off; /* offset into card memory of the
992 desc */
993 RxFid rx_desc; /* card receive descriptor */
994 char *virtual_host_addr; /* virtual address of host receive
995 buffer */
996 int pending;
997} HostRxDesc;
998
999/*
1000 * Host transmit descriptor
1001 */
1002typedef struct {
1003 unsigned char __iomem *card_ram_off; /* offset into card memory of the
1004 desc */
1005 TxFid tx_desc; /* card transmit descriptor */
1006 char *virtual_host_addr; /* virtual address of host receive
1007 buffer */
1008 int pending;
1009} HostTxDesc;
1010
1011/*
1012 * Host RID descriptor
1013 */
1014typedef struct {
1015 unsigned char __iomem *card_ram_off; /* offset into card memory of the
1016 descriptor */
1017 Rid rid_desc; /* card RID descriptor */
1018 char *virtual_host_addr; /* virtual address of host receive
1019 buffer */
1020} HostRidDesc;
1021
1022typedef struct {
1023 u16 sw0;
1024 u16 sw1;
1025 u16 status;
1026 u16 len;
1027#define HOST_SET (1 << 0)
1028#define HOST_INT_TX (1 << 1) /* Interrupt on successful TX */
1029#define HOST_INT_TXERR (1 << 2) /* Interrupt on unseccessful TX */
1030#define HOST_LCC_PAYLOAD (1 << 4) /* LLC payload, 0 = Ethertype */
1031#define HOST_DONT_RLSE (1 << 5) /* Don't release buffer when done */
1032#define HOST_DONT_RETRY (1 << 6) /* Don't retry trasmit */
1033#define HOST_CLR_AID (1 << 7) /* clear AID failure */
1034#define HOST_RTS (1 << 9) /* Force RTS use */
1035#define HOST_SHORT (1 << 10) /* Do short preamble */
1036 u16 ctl;
1037 u16 aid;
1038 u16 retries;
1039 u16 fill;
1040} TxCtlHdr;
1041
1042typedef struct {
1043 u16 ctl;
1044 u16 duration;
1045 char addr1[6];
1046 char addr2[6];
1047 char addr3[6];
1048 u16 seq;
1049 char addr4[6];
1050} WifiHdr;
1051
1052
1053typedef struct {
1054 TxCtlHdr ctlhdr;
1055 u16 fill1;
1056 u16 fill2;
1057 WifiHdr wifihdr;
1058 u16 gaplen;
1059 u16 status;
1060} WifiCtlHdr;
1061
ff1d2767 1062static WifiCtlHdr wifictlhdr8023 = {
1da177e4
LT
1063 .ctlhdr = {
1064 .ctl = HOST_DONT_RLSE,
1065 }
1066};
1067
1da177e4
LT
1068// Frequency list (map channels to frequencies)
1069static const long frequency_list[] = { 2412, 2417, 2422, 2427, 2432, 2437, 2442,
1070 2447, 2452, 2457, 2462, 2467, 2472, 2484 };
1071
1072// A few details needed for WEP (Wireless Equivalent Privacy)
1073#define MAX_KEY_SIZE 13 // 128 (?) bits
1074#define MIN_KEY_SIZE 5 // 40 bits RC4 - WEP
1075typedef struct wep_key_t {
1076 u16 len;
1077 u8 key[16]; /* 40-bit and 104-bit keys */
1078} wep_key_t;
1079
1080/* Backward compatibility */
1081#ifndef IW_ENCODE_NOKEY
1082#define IW_ENCODE_NOKEY 0x0800 /* Key is write only, so not present */
1083#define IW_ENCODE_MODE (IW_ENCODE_DISABLED | IW_ENCODE_RESTRICTED | IW_ENCODE_OPEN)
1084#endif /* IW_ENCODE_NOKEY */
1085
1086/* List of Wireless Handlers (new API) */
1087static const struct iw_handler_def airo_handler_def;
1da177e4
LT
1088
1089static const char version[] = "airo.c 0.6 (Ben Reed & Javier Achirica)";
1090
1091struct airo_info;
1092
1093static int get_dec_u16( char *buffer, int *start, int limit );
1094static void OUT4500( struct airo_info *, u16 register, u16 value );
1095static unsigned short IN4500( struct airo_info *, u16 register );
1096static u16 setup_card(struct airo_info*, u8 *mac, int lock);
175ec1a1 1097static int enable_MAC(struct airo_info *ai, int lock);
1da177e4
LT
1098static void disable_MAC(struct airo_info *ai, int lock);
1099static void enable_interrupts(struct airo_info*);
1100static void disable_interrupts(struct airo_info*);
1101static u16 issuecommand(struct airo_info*, Cmd *pCmd, Resp *pRsp);
1102static int bap_setup(struct airo_info*, u16 rid, u16 offset, int whichbap);
1103static int aux_bap_read(struct airo_info*, u16 *pu16Dst, int bytelen,
1104 int whichbap);
1105static int fast_bap_read(struct airo_info*, u16 *pu16Dst, int bytelen,
1106 int whichbap);
1107static int bap_write(struct airo_info*, const u16 *pu16Src, int bytelen,
1108 int whichbap);
1109static int PC4500_accessrid(struct airo_info*, u16 rid, u16 accmd);
1110static int PC4500_readrid(struct airo_info*, u16 rid, void *pBuf, int len, int lock);
1111static int PC4500_writerid(struct airo_info*, u16 rid, const void
1112 *pBuf, int len, int lock);
1113static int do_writerid( struct airo_info*, u16 rid, const void *rid_data,
1114 int len, int dummy );
1115static u16 transmit_allocate(struct airo_info*, int lenPayload, int raw);
1116static int transmit_802_3_packet(struct airo_info*, int len, char *pPacket);
1117static int transmit_802_11_packet(struct airo_info*, int len, char *pPacket);
1118
1119static int mpi_send_packet (struct net_device *dev);
1120static void mpi_unmap_card(struct pci_dev *pci);
1121static void mpi_receive_802_3(struct airo_info *ai);
1122static void mpi_receive_802_11(struct airo_info *ai);
1123static int waitbusy (struct airo_info *ai);
1124
7d12e780 1125static irqreturn_t airo_interrupt( int irq, void* dev_id);
1da177e4
LT
1126static int airo_thread(void *data);
1127static void timer_func( struct net_device *dev );
1128static int airo_ioctl(struct net_device *dev, struct ifreq *rq, int cmd);
ff1d2767 1129static struct iw_statistics *airo_get_wireless_stats (struct net_device *dev);
1da177e4 1130static void airo_read_wireless_stats (struct airo_info *local);
1da177e4
LT
1131#ifdef CISCO_EXT
1132static int readrids(struct net_device *dev, aironet_ioctl *comp);
1133static int writerids(struct net_device *dev, aironet_ioctl *comp);
ff1d2767 1134static int flashcard(struct net_device *dev, aironet_ioctl *comp);
1da177e4 1135#endif /* CISCO_EXT */
1da177e4
LT
1136static void micinit(struct airo_info *ai);
1137static int micsetup(struct airo_info *ai);
1138static int encapsulate(struct airo_info *ai, etherHead *pPacket, MICBuffer *buffer, int len);
1139static int decapsulate(struct airo_info *ai, MICBuffer *mic, etherHead *pPacket, u16 payLen);
1140
41480af2
DW
1141static u8 airo_rssi_to_dbm (tdsRssiEntry *rssi_rid, u8 rssi);
1142static u8 airo_dbm_to_pct (tdsRssiEntry *rssi_rid, u8 dbm);
1143
9e75af30
DW
1144static void airo_networks_free(struct airo_info *ai);
1145
1da177e4
LT
1146struct airo_info {
1147 struct net_device_stats stats;
1148 struct net_device *dev;
af5b5c9a 1149 struct list_head dev_list;
1da177e4
LT
1150 /* Note, we can have MAX_FIDS outstanding. FIDs are 16-bits, so we
1151 use the high bit to mark whether it is in use. */
1152#define MAX_FIDS 6
1153#define MPI_MAX_FIDS 1
1154 int fids[MAX_FIDS];
1155 ConfigRid config;
1156 char keyindex; // Used with auto wep
1157 char defindex; // Used with auto wep
1158 struct proc_dir_entry *proc_entry;
1159 spinlock_t aux_lock;
1da177e4
LT
1160#define FLAG_RADIO_OFF 0 /* User disabling of MAC */
1161#define FLAG_RADIO_DOWN 1 /* ifup/ifdown disabling of MAC */
1162#define FLAG_RADIO_MASK 0x03
1163#define FLAG_ENABLED 2
1164#define FLAG_ADHOC 3 /* Needed by MIC */
1165#define FLAG_MIC_CAPABLE 4
1166#define FLAG_UPDATE_MULTI 5
1167#define FLAG_UPDATE_UNI 6
1168#define FLAG_802_11 7
3c304956 1169#define FLAG_PROMISC 8 /* IFF_PROMISC 0x100 - include/linux/if.h */
1da177e4
LT
1170#define FLAG_PENDING_XMIT 9
1171#define FLAG_PENDING_XMIT11 10
1172#define FLAG_MPI 11
1173#define FLAG_REGISTERED 12
1174#define FLAG_COMMIT 13
1175#define FLAG_RESET 14
1176#define FLAG_FLASHING 15
3c304956
DW
1177#define FLAG_WPA_CAPABLE 16
1178 unsigned long flags;
1179#define JOB_DIE 0
1180#define JOB_XMIT 1
1181#define JOB_XMIT11 2
1182#define JOB_STATS 3
1183#define JOB_PROMISC 4
1184#define JOB_MIC 5
1185#define JOB_EVENT 6
1186#define JOB_AUTOWEP 7
1187#define JOB_WSTATS 8
1188#define JOB_SCAN_RESULTS 9
1189 unsigned long jobs;
1da177e4
LT
1190 int (*bap_read)(struct airo_info*, u16 *pu16Dst, int bytelen,
1191 int whichbap);
1192 unsigned short *flash;
1193 tdsRssiEntry *rssi;
3b4c7d64
SB
1194 struct task_struct *list_bss_task;
1195 struct task_struct *airo_thread_task;
1da177e4 1196 struct semaphore sem;
1da177e4 1197 wait_queue_head_t thr_wait;
1da177e4
LT
1198 unsigned long expires;
1199 struct {
1200 struct sk_buff *skb;
1201 int fid;
1202 } xmit, xmit11;
1203 struct net_device *wifidev;
1da177e4 1204 struct iw_statistics wstats; // wireless stats
9e75af30 1205 unsigned long scan_timeout; /* Time scan should be read */
1da177e4
LT
1206 struct iw_spy_data spy_data;
1207 struct iw_public_data wireless_data;
1da177e4 1208 /* MIC stuff */
f12cc209 1209 struct crypto_cipher *tfm;
1da177e4
LT
1210 mic_module mod[2];
1211 mic_statistics micstats;
1da177e4
LT
1212 HostRxDesc rxfids[MPI_MAX_FIDS]; // rx/tx/config MPI350 descriptors
1213 HostTxDesc txfids[MPI_MAX_FIDS];
1214 HostRidDesc config_desc;
1215 unsigned long ridbus; // phys addr of config_desc
1216 struct sk_buff_head txq;// tx queue used by mpi350 code
1217 struct pci_dev *pci;
1218 unsigned char __iomem *pcimem;
1219 unsigned char __iomem *pciaux;
1220 unsigned char *shared;
1221 dma_addr_t shared_dma;
1cc68ae0 1222 pm_message_t power;
1da177e4
LT
1223 SsidRid *SSID;
1224 APListRid *APList;
1225#define PCI_SHARED_LEN 2*MPI_MAX_FIDS*PKTSIZE+RIDSIZE
1226 char proc_name[IFNAMSIZ];
9e75af30 1227
3c304956
DW
1228 /* WPA-related stuff */
1229 unsigned int bssListFirst;
1230 unsigned int bssListNext;
1231 unsigned int bssListRidLen;
1232
9e75af30
DW
1233 struct list_head network_list;
1234 struct list_head network_free_list;
1235 BSSListElement *networks;
1da177e4
LT
1236};
1237
1238static inline int bap_read(struct airo_info *ai, u16 *pu16Dst, int bytelen,
1239 int whichbap) {
1240 return ai->bap_read(ai, pu16Dst, bytelen, whichbap);
1241}
1242
1243static int setup_proc_entry( struct net_device *dev,
1244 struct airo_info *apriv );
1245static int takedown_proc_entry( struct net_device *dev,
1246 struct airo_info *apriv );
1247
ff1d2767
JM
1248static int cmdreset(struct airo_info *ai);
1249static int setflashmode (struct airo_info *ai);
1250static int flashgchar(struct airo_info *ai,int matchbyte,int dwelltime);
1251static int flashputbuf(struct airo_info *ai);
1252static int flashrestart(struct airo_info *ai,struct net_device *dev);
1253
934d8bf1 1254#define airo_print(type, name, fmt, args...) \
1138c37b 1255 printk(type DRV_NAME "(%s): " fmt "\n", name, ##args)
934d8bf1
DW
1256
1257#define airo_print_info(name, fmt, args...) \
1258 airo_print(KERN_INFO, name, fmt, ##args)
1259
1260#define airo_print_dbg(name, fmt, args...) \
1261 airo_print(KERN_DEBUG, name, fmt, ##args)
1262
1263#define airo_print_warn(name, fmt, args...) \
1264 airo_print(KERN_WARNING, name, fmt, ##args)
1265
1266#define airo_print_err(name, fmt, args...) \
1267 airo_print(KERN_ERR, name, fmt, ##args)
1268
1269
1da177e4
LT
1270/***********************************************************************
1271 * MIC ROUTINES *
1272 ***********************************************************************
1273 */
1274
1275static int RxSeqValid (struct airo_info *ai,miccntx *context,int mcast,u32 micSeq);
1276static void MoveWindow(miccntx *context, u32 micSeq);
f12cc209
HX
1277static void emmh32_setseed(emmh32_context *context, u8 *pkey, int keylen,
1278 struct crypto_cipher *tfm);
ff1d2767
JM
1279static void emmh32_init(emmh32_context *context);
1280static void emmh32_update(emmh32_context *context, u8 *pOctets, int len);
1281static void emmh32_final(emmh32_context *context, u8 digest[4]);
1282static int flashpchar(struct airo_info *ai,int byte,int dwelltime);
1da177e4
LT
1283
1284/* micinit - Initialize mic seed */
1285
1286static void micinit(struct airo_info *ai)
1287{
1288 MICRid mic_rid;
1289
3c304956 1290 clear_bit(JOB_MIC, &ai->jobs);
1da177e4
LT
1291 PC4500_readrid(ai, RID_MIC, &mic_rid, sizeof(mic_rid), 0);
1292 up(&ai->sem);
1293
1294 ai->micstats.enabled = (mic_rid.state & 0x00FF) ? 1 : 0;
1295
1296 if (ai->micstats.enabled) {
1297 /* Key must be valid and different */
1298 if (mic_rid.multicastValid && (!ai->mod[0].mCtx.valid ||
1299 (memcmp (ai->mod[0].mCtx.key, mic_rid.multicast,
1300 sizeof(ai->mod[0].mCtx.key)) != 0))) {
1301 /* Age current mic Context */
1302 memcpy(&ai->mod[1].mCtx,&ai->mod[0].mCtx,sizeof(miccntx));
1303 /* Initialize new context */
1304 memcpy(&ai->mod[0].mCtx.key,mic_rid.multicast,sizeof(mic_rid.multicast));
1305 ai->mod[0].mCtx.window = 33; //Window always points to the middle
1306 ai->mod[0].mCtx.rx = 0; //Rx Sequence numbers
1307 ai->mod[0].mCtx.tx = 0; //Tx sequence numbers
1308 ai->mod[0].mCtx.valid = 1; //Key is now valid
1309
1310 /* Give key to mic seed */
1311 emmh32_setseed(&ai->mod[0].mCtx.seed,mic_rid.multicast,sizeof(mic_rid.multicast), ai->tfm);
1312 }
1313
1314 /* Key must be valid and different */
1315 if (mic_rid.unicastValid && (!ai->mod[0].uCtx.valid ||
1316 (memcmp(ai->mod[0].uCtx.key, mic_rid.unicast,
1317 sizeof(ai->mod[0].uCtx.key)) != 0))) {
1318 /* Age current mic Context */
1319 memcpy(&ai->mod[1].uCtx,&ai->mod[0].uCtx,sizeof(miccntx));
1320 /* Initialize new context */
1321 memcpy(&ai->mod[0].uCtx.key,mic_rid.unicast,sizeof(mic_rid.unicast));
1322
1323 ai->mod[0].uCtx.window = 33; //Window always points to the middle
1324 ai->mod[0].uCtx.rx = 0; //Rx Sequence numbers
1325 ai->mod[0].uCtx.tx = 0; //Tx sequence numbers
1326 ai->mod[0].uCtx.valid = 1; //Key is now valid
1327
1328 //Give key to mic seed
1329 emmh32_setseed(&ai->mod[0].uCtx.seed, mic_rid.unicast, sizeof(mic_rid.unicast), ai->tfm);
1330 }
1331 } else {
1332 /* So next time we have a valid key and mic is enabled, we will update
1333 * the sequence number if the key is the same as before.
1334 */
1335 ai->mod[0].uCtx.valid = 0;
1336 ai->mod[0].mCtx.valid = 0;
1337 }
1338}
1339
1340/* micsetup - Get ready for business */
1341
1342static int micsetup(struct airo_info *ai) {
1343 int i;
1344
1345 if (ai->tfm == NULL)
f12cc209 1346 ai->tfm = crypto_alloc_cipher("aes", 0, CRYPTO_ALG_ASYNC);
1da177e4 1347
f12cc209 1348 if (IS_ERR(ai->tfm)) {
934d8bf1 1349 airo_print_err(ai->dev->name, "failed to load transform for AES");
f12cc209 1350 ai->tfm = NULL;
1da177e4
LT
1351 return ERROR;
1352 }
1353
1354 for (i=0; i < NUM_MODULES; i++) {
1355 memset(&ai->mod[i].mCtx,0,sizeof(miccntx));
1356 memset(&ai->mod[i].uCtx,0,sizeof(miccntx));
1357 }
1358 return SUCCESS;
1359}
1360
ff1d2767 1361static char micsnap[] = {0xAA,0xAA,0x03,0x00,0x40,0x96,0x00,0x02};
1da177e4
LT
1362
1363/*===========================================================================
1364 * Description: Mic a packet
1365 *
1366 * Inputs: etherHead * pointer to an 802.3 frame
1367 *
1368 * Returns: BOOLEAN if successful, otherwise false.
1369 * PacketTxLen will be updated with the mic'd packets size.
1370 *
1371 * Caveats: It is assumed that the frame buffer will already
1372 * be big enough to hold the largets mic message possible.
1373 * (No memory allocation is done here).
1374 *
1375 * Author: sbraneky (10/15/01)
1376 * Merciless hacks by rwilcher (1/14/02)
1377 */
1378
1379static int encapsulate(struct airo_info *ai ,etherHead *frame, MICBuffer *mic, int payLen)
1380{
1381 miccntx *context;
1382
1383 // Determine correct context
1384 // If not adhoc, always use unicast key
1385
1386 if (test_bit(FLAG_ADHOC, &ai->flags) && (frame->da[0] & 0x1))
1387 context = &ai->mod[0].mCtx;
1388 else
1389 context = &ai->mod[0].uCtx;
1390
1391 if (!context->valid)
1392 return ERROR;
1393
1394 mic->typelen = htons(payLen + 16); //Length of Mic'd packet
1395
1396 memcpy(&mic->u.snap, micsnap, sizeof(micsnap)); // Add Snap
1397
1398 // Add Tx sequence
1399 mic->seq = htonl(context->tx);
1400 context->tx += 2;
1401
1402 emmh32_init(&context->seed); // Mic the packet
1403 emmh32_update(&context->seed,frame->da,ETH_ALEN * 2); // DA,SA
1404 emmh32_update(&context->seed,(u8*)&mic->typelen,10); // Type/Length and Snap
1405 emmh32_update(&context->seed,(u8*)&mic->seq,sizeof(mic->seq)); //SEQ
1406 emmh32_update(&context->seed,frame->da + ETH_ALEN * 2,payLen); //payload
1407 emmh32_final(&context->seed, (u8*)&mic->mic);
1408
1409 /* New Type/length ?????????? */
1410 mic->typelen = 0; //Let NIC know it could be an oversized packet
1411 return SUCCESS;
1412}
1413
1414typedef enum {
1415 NONE,
1416 NOMIC,
1417 NOMICPLUMMED,
1418 SEQUENCE,
1419 INCORRECTMIC,
1420} mic_error;
1421
1422/*===========================================================================
1423 * Description: Decapsulates a MIC'd packet and returns the 802.3 packet
1424 * (removes the MIC stuff) if packet is a valid packet.
1425 *
1426 * Inputs: etherHead pointer to the 802.3 packet
1427 *
1428 * Returns: BOOLEAN - TRUE if packet should be dropped otherwise FALSE
1429 *
1430 * Author: sbraneky (10/15/01)
1431 * Merciless hacks by rwilcher (1/14/02)
1432 *---------------------------------------------------------------------------
1433 */
1434
1435static int decapsulate(struct airo_info *ai, MICBuffer *mic, etherHead *eth, u16 payLen)
1436{
1437 int i;
1438 u32 micSEQ;
1439 miccntx *context;
1440 u8 digest[4];
1441 mic_error micError = NONE;
1442
1443 // Check if the packet is a Mic'd packet
1444
1445 if (!ai->micstats.enabled) {
1446 //No Mic set or Mic OFF but we received a MIC'd packet.
1447 if (memcmp ((u8*)eth + 14, micsnap, sizeof(micsnap)) == 0) {
1448 ai->micstats.rxMICPlummed++;
1449 return ERROR;
1450 }
1451 return SUCCESS;
1452 }
1453
1454 if (ntohs(mic->typelen) == 0x888E)
1455 return SUCCESS;
1456
1457 if (memcmp (mic->u.snap, micsnap, sizeof(micsnap)) != 0) {
1458 // Mic enabled but packet isn't Mic'd
1459 ai->micstats.rxMICPlummed++;
1460 return ERROR;
1461 }
1462
1463 micSEQ = ntohl(mic->seq); //store SEQ as CPU order
1464
1465 //At this point we a have a mic'd packet and mic is enabled
1466 //Now do the mic error checking.
1467
1468 //Receive seq must be odd
1469 if ( (micSEQ & 1) == 0 ) {
1470 ai->micstats.rxWrongSequence++;
1471 return ERROR;
1472 }
1473
1474 for (i = 0; i < NUM_MODULES; i++) {
1475 int mcast = eth->da[0] & 1;
1476 //Determine proper context
1477 context = mcast ? &ai->mod[i].mCtx : &ai->mod[i].uCtx;
1478
1479 //Make sure context is valid
1480 if (!context->valid) {
1481 if (i == 0)
1482 micError = NOMICPLUMMED;
1483 continue;
1484 }
1485 //DeMic it
1486
1487 if (!mic->typelen)
1488 mic->typelen = htons(payLen + sizeof(MICBuffer) - 2);
1489
1490 emmh32_init(&context->seed);
1491 emmh32_update(&context->seed, eth->da, ETH_ALEN*2);
1492 emmh32_update(&context->seed, (u8 *)&mic->typelen, sizeof(mic->typelen)+sizeof(mic->u.snap));
1493 emmh32_update(&context->seed, (u8 *)&mic->seq,sizeof(mic->seq));
1494 emmh32_update(&context->seed, eth->da + ETH_ALEN*2,payLen);
1495 //Calculate MIC
1496 emmh32_final(&context->seed, digest);
1497
1498 if (memcmp(digest, &mic->mic, 4)) { //Make sure the mics match
1499 //Invalid Mic
1500 if (i == 0)
1501 micError = INCORRECTMIC;
1502 continue;
1503 }
1504
1505 //Check Sequence number if mics pass
1506 if (RxSeqValid(ai, context, mcast, micSEQ) == SUCCESS) {
1507 ai->micstats.rxSuccess++;
1508 return SUCCESS;
1509 }
1510 if (i == 0)
1511 micError = SEQUENCE;
1512 }
1513
1514 // Update statistics
1515 switch (micError) {
1516 case NOMICPLUMMED: ai->micstats.rxMICPlummed++; break;
1517 case SEQUENCE: ai->micstats.rxWrongSequence++; break;
1518 case INCORRECTMIC: ai->micstats.rxIncorrectMIC++; break;
1519 case NONE: break;
1520 case NOMIC: break;
1521 }
1522 return ERROR;
1523}
1524
1525/*===========================================================================
1526 * Description: Checks the Rx Seq number to make sure it is valid
1527 * and hasn't already been received
1528 *
1529 * Inputs: miccntx - mic context to check seq against
1530 * micSeq - the Mic seq number
1531 *
1532 * Returns: TRUE if valid otherwise FALSE.
1533 *
1534 * Author: sbraneky (10/15/01)
1535 * Merciless hacks by rwilcher (1/14/02)
1536 *---------------------------------------------------------------------------
1537 */
1538
1539static int RxSeqValid (struct airo_info *ai,miccntx *context,int mcast,u32 micSeq)
1540{
1541 u32 seq,index;
1542
1543 //Allow for the ap being rebooted - if it is then use the next
1544 //sequence number of the current sequence number - might go backwards
1545
1546 if (mcast) {
1547 if (test_bit(FLAG_UPDATE_MULTI, &ai->flags)) {
1548 clear_bit (FLAG_UPDATE_MULTI, &ai->flags);
1549 context->window = (micSeq > 33) ? micSeq : 33;
1550 context->rx = 0; // Reset rx
1551 }
1552 } else if (test_bit(FLAG_UPDATE_UNI, &ai->flags)) {
1553 clear_bit (FLAG_UPDATE_UNI, &ai->flags);
1554 context->window = (micSeq > 33) ? micSeq : 33; // Move window
1555 context->rx = 0; // Reset rx
1556 }
1557
1558 //Make sequence number relative to START of window
1559 seq = micSeq - (context->window - 33);
1560
1561 //Too old of a SEQ number to check.
1562 if ((s32)seq < 0)
1563 return ERROR;
1564
1565 if ( seq > 64 ) {
1566 //Window is infinite forward
1567 MoveWindow(context,micSeq);
1568 return SUCCESS;
1569 }
1570
1571 // We are in the window. Now check the context rx bit to see if it was already sent
1572 seq >>= 1; //divide by 2 because we only have odd numbers
1573 index = 1 << seq; //Get an index number
1574
1575 if (!(context->rx & index)) {
1576 //micSEQ falls inside the window.
1577 //Add seqence number to the list of received numbers.
1578 context->rx |= index;
1579
1580 MoveWindow(context,micSeq);
1581
1582 return SUCCESS;
1583 }
1584 return ERROR;
1585}
1586
1587static void MoveWindow(miccntx *context, u32 micSeq)
1588{
1589 u32 shift;
1590
1591 //Move window if seq greater than the middle of the window
1592 if (micSeq > context->window) {
1593 shift = (micSeq - context->window) >> 1;
1594
1595 //Shift out old
1596 if (shift < 32)
1597 context->rx >>= shift;
1598 else
1599 context->rx = 0;
1600
1601 context->window = micSeq; //Move window
1602 }
1603}
1604
1605/*==============================================*/
1606/*========== EMMH ROUTINES ====================*/
1607/*==============================================*/
1608
1609/* mic accumulate */
1610#define MIC_ACCUM(val) \
1611 context->accum += (u64)(val) * context->coeff[coeff_position++];
1612
1613static unsigned char aes_counter[16];
1614
1615/* expand the key to fill the MMH coefficient array */
f12cc209
HX
1616static void emmh32_setseed(emmh32_context *context, u8 *pkey, int keylen,
1617 struct crypto_cipher *tfm)
1da177e4
LT
1618{
1619 /* take the keying material, expand if necessary, truncate at 16-bytes */
1620 /* run through AES counter mode to generate context->coeff[] */
1621
1622 int i,j;
1623 u32 counter;
1624 u8 *cipher, plain[16];
1da177e4
LT
1625
1626 crypto_cipher_setkey(tfm, pkey, 16);
1627 counter = 0;
e7c04fd3 1628 for (i = 0; i < ARRAY_SIZE(context->coeff); ) {
1da177e4
LT
1629 aes_counter[15] = (u8)(counter >> 0);
1630 aes_counter[14] = (u8)(counter >> 8);
1631 aes_counter[13] = (u8)(counter >> 16);
1632 aes_counter[12] = (u8)(counter >> 24);
1633 counter++;
1634 memcpy (plain, aes_counter, 16);
f12cc209
HX
1635 crypto_cipher_encrypt_one(tfm, plain, plain);
1636 cipher = plain;
e7c04fd3 1637 for (j = 0; (j < 16) && (i < ARRAY_SIZE(context->coeff)); ) {
1da177e4
LT
1638 context->coeff[i++] = ntohl(*(u32 *)&cipher[j]);
1639 j += 4;
1640 }
1641 }
1642}
1643
1644/* prepare for calculation of a new mic */
ff1d2767 1645static void emmh32_init(emmh32_context *context)
1da177e4
LT
1646{
1647 /* prepare for new mic calculation */
1648 context->accum = 0;
1649 context->position = 0;
1650}
1651
1652/* add some bytes to the mic calculation */
ff1d2767 1653static void emmh32_update(emmh32_context *context, u8 *pOctets, int len)
1da177e4
LT
1654{
1655 int coeff_position, byte_position;
1656
1657 if (len == 0) return;
1658
1659 coeff_position = context->position >> 2;
1660
1661 /* deal with partial 32-bit word left over from last update */
1662 byte_position = context->position & 3;
1663 if (byte_position) {
1664 /* have a partial word in part to deal with */
1665 do {
1666 if (len == 0) return;
1667 context->part.d8[byte_position++] = *pOctets++;
1668 context->position++;
1669 len--;
1670 } while (byte_position < 4);
1671 MIC_ACCUM(htonl(context->part.d32));
1672 }
1673
1674 /* deal with full 32-bit words */
1675 while (len >= 4) {
1676 MIC_ACCUM(htonl(*(u32 *)pOctets));
1677 context->position += 4;
1678 pOctets += 4;
1679 len -= 4;
1680 }
1681
1682 /* deal with partial 32-bit word that will be left over from this update */
1683 byte_position = 0;
1684 while (len > 0) {
1685 context->part.d8[byte_position++] = *pOctets++;
1686 context->position++;
1687 len--;
1688 }
1689}
1690
1691/* mask used to zero empty bytes for final partial word */
1692static u32 mask32[4] = { 0x00000000L, 0xFF000000L, 0xFFFF0000L, 0xFFFFFF00L };
1693
1694/* calculate the mic */
ff1d2767 1695static void emmh32_final(emmh32_context *context, u8 digest[4])
1da177e4
LT
1696{
1697 int coeff_position, byte_position;
1698 u32 val;
1699
1700 u64 sum, utmp;
1701 s64 stmp;
1702
1703 coeff_position = context->position >> 2;
1704
1705 /* deal with partial 32-bit word left over from last update */
1706 byte_position = context->position & 3;
1707 if (byte_position) {
1708 /* have a partial word in part to deal with */
1709 val = htonl(context->part.d32);
1710 MIC_ACCUM(val & mask32[byte_position]); /* zero empty bytes */
1711 }
1712
1713 /* reduce the accumulated u64 to a 32-bit MIC */
1714 sum = context->accum;
1715 stmp = (sum & 0xffffffffLL) - ((sum >> 32) * 15);
1716 utmp = (stmp & 0xffffffffLL) - ((stmp >> 32) * 15);
1717 sum = utmp & 0xffffffffLL;
1718 if (utmp > 0x10000000fLL)
1719 sum -= 15;
1720
1721 val = (u32)sum;
1722 digest[0] = (val>>24) & 0xFF;
1723 digest[1] = (val>>16) & 0xFF;
1724 digest[2] = (val>>8) & 0xFF;
1725 digest[3] = val & 0xFF;
1726}
1da177e4
LT
1727
1728static int readBSSListRid(struct airo_info *ai, int first,
1729 BSSListRid *list) {
1730 int rc;
3c304956
DW
1731 Cmd cmd;
1732 Resp rsp;
1da177e4
LT
1733
1734 if (first == 1) {
3c304956
DW
1735 if (ai->flags & FLAG_RADIO_MASK) return -ENETDOWN;
1736 memset(&cmd, 0, sizeof(cmd));
1737 cmd.cmd=CMD_LISTBSS;
1738 if (down_interruptible(&ai->sem))
1739 return -ERESTARTSYS;
3b4c7d64 1740 ai->list_bss_task = current;
3c304956
DW
1741 issuecommand(ai, &cmd, &rsp);
1742 up(&ai->sem);
1743 /* Let the command take effect */
3b4c7d64
SB
1744 schedule_timeout_uninterruptible(3 * HZ);
1745 ai->list_bss_task = NULL;
3c304956
DW
1746 }
1747 rc = PC4500_readrid(ai, first ? ai->bssListFirst : ai->bssListNext,
1748 list, ai->bssListRidLen, 1);
1da177e4
LT
1749
1750 list->len = le16_to_cpu(list->len);
1751 list->index = le16_to_cpu(list->index);
1752 list->radioType = le16_to_cpu(list->radioType);
1753 list->cap = le16_to_cpu(list->cap);
1754 list->beaconInterval = le16_to_cpu(list->beaconInterval);
1755 list->fh.dwell = le16_to_cpu(list->fh.dwell);
1756 list->dsChannel = le16_to_cpu(list->dsChannel);
1757 list->atimWindow = le16_to_cpu(list->atimWindow);
41480af2 1758 list->dBm = le16_to_cpu(list->dBm);
1da177e4
LT
1759 return rc;
1760}
1761
1762static int readWepKeyRid(struct airo_info*ai, WepKeyRid *wkr, int temp, int lock) {
1763 int rc = PC4500_readrid(ai, temp ? RID_WEP_TEMP : RID_WEP_PERM,
1764 wkr, sizeof(*wkr), lock);
1765
1766 wkr->len = le16_to_cpu(wkr->len);
1767 wkr->kindex = le16_to_cpu(wkr->kindex);
1768 wkr->klen = le16_to_cpu(wkr->klen);
1769 return rc;
1770}
1771/* In the writeXXXRid routines we copy the rids so that we don't screwup
1772 * the originals when we endian them... */
1773static int writeWepKeyRid(struct airo_info*ai, WepKeyRid *pwkr, int perm, int lock) {
1774 int rc;
1775 WepKeyRid wkr = *pwkr;
1776
1777 wkr.len = cpu_to_le16(wkr.len);
1778 wkr.kindex = cpu_to_le16(wkr.kindex);
1779 wkr.klen = cpu_to_le16(wkr.klen);
1780 rc = PC4500_writerid(ai, RID_WEP_TEMP, &wkr, sizeof(wkr), lock);
934d8bf1 1781 if (rc!=SUCCESS) airo_print_err(ai->dev->name, "WEP_TEMP set %x", rc);
1da177e4
LT
1782 if (perm) {
1783 rc = PC4500_writerid(ai, RID_WEP_PERM, &wkr, sizeof(wkr), lock);
1784 if (rc!=SUCCESS) {
934d8bf1 1785 airo_print_err(ai->dev->name, "WEP_PERM set %x", rc);
1da177e4
LT
1786 }
1787 }
1788 return rc;
1789}
1790
1791static int readSsidRid(struct airo_info*ai, SsidRid *ssidr) {
1792 int i;
1793 int rc = PC4500_readrid(ai, RID_SSID, ssidr, sizeof(*ssidr), 1);
1794
1795 ssidr->len = le16_to_cpu(ssidr->len);
1796 for(i = 0; i < 3; i++) {
1797 ssidr->ssids[i].len = le16_to_cpu(ssidr->ssids[i].len);
1798 }
1799 return rc;
1800}
1801static int writeSsidRid(struct airo_info*ai, SsidRid *pssidr, int lock) {
1802 int rc;
1803 int i;
1804 SsidRid ssidr = *pssidr;
1805
1806 ssidr.len = cpu_to_le16(ssidr.len);
1807 for(i = 0; i < 3; i++) {
1808 ssidr.ssids[i].len = cpu_to_le16(ssidr.ssids[i].len);
1809 }
1810 rc = PC4500_writerid(ai, RID_SSID, &ssidr, sizeof(ssidr), lock);
1811 return rc;
1812}
1813static int readConfigRid(struct airo_info*ai, int lock) {
1814 int rc;
1815 u16 *s;
1816 ConfigRid cfg;
1817
1818 if (ai->config.len)
1819 return SUCCESS;
1820
1821 rc = PC4500_readrid(ai, RID_ACTUALCONFIG, &cfg, sizeof(cfg), lock);
1822 if (rc != SUCCESS)
1823 return rc;
1824
1825 for(s = &cfg.len; s <= &cfg.rtsThres; s++) *s = le16_to_cpu(*s);
1826
1827 for(s = &cfg.shortRetryLimit; s <= &cfg.radioType; s++)
1828 *s = le16_to_cpu(*s);
1829
1830 for(s = &cfg.txPower; s <= &cfg.radioSpecific; s++)
1831 *s = le16_to_cpu(*s);
1832
1833 for(s = &cfg.arlThreshold; s <= &cfg._reserved4[0]; s++)
1834 *s = cpu_to_le16(*s);
1835
1836 for(s = &cfg.autoWake; s <= &cfg.autoWake; s++)
1837 *s = cpu_to_le16(*s);
1838
1839 ai->config = cfg;
1840 return SUCCESS;
1841}
1842static inline void checkThrottle(struct airo_info *ai) {
1843 int i;
1844/* Old hardware had a limit on encryption speed */
1845 if (ai->config.authType != AUTH_OPEN && maxencrypt) {
1846 for(i=0; i<8; i++) {
1847 if (ai->config.rates[i] > maxencrypt) {
1848 ai->config.rates[i] = 0;
1849 }
1850 }
1851 }
1852}
1853static int writeConfigRid(struct airo_info*ai, int lock) {
1854 u16 *s;
1855 ConfigRid cfgr;
1856
1857 if (!test_bit (FLAG_COMMIT, &ai->flags))
1858 return SUCCESS;
1859
1860 clear_bit (FLAG_COMMIT, &ai->flags);
1861 clear_bit (FLAG_RESET, &ai->flags);
1862 checkThrottle(ai);
1863 cfgr = ai->config;
1864
1865 if ((cfgr.opmode & 0xFF) == MODE_STA_IBSS)
1866 set_bit(FLAG_ADHOC, &ai->flags);
1867 else
1868 clear_bit(FLAG_ADHOC, &ai->flags);
1869
1870 for(s = &cfgr.len; s <= &cfgr.rtsThres; s++) *s = cpu_to_le16(*s);
1871
1872 for(s = &cfgr.shortRetryLimit; s <= &cfgr.radioType; s++)
1873 *s = cpu_to_le16(*s);
1874
1875 for(s = &cfgr.txPower; s <= &cfgr.radioSpecific; s++)
1876 *s = cpu_to_le16(*s);
1877
1878 for(s = &cfgr.arlThreshold; s <= &cfgr._reserved4[0]; s++)
1879 *s = cpu_to_le16(*s);
1880
1881 for(s = &cfgr.autoWake; s <= &cfgr.autoWake; s++)
1882 *s = cpu_to_le16(*s);
1883
1884 return PC4500_writerid( ai, RID_CONFIG, &cfgr, sizeof(cfgr), lock);
1885}
1886static int readStatusRid(struct airo_info*ai, StatusRid *statr, int lock) {
1887 int rc = PC4500_readrid(ai, RID_STATUS, statr, sizeof(*statr), lock);
1888 u16 *s;
1889
1890 statr->len = le16_to_cpu(statr->len);
1891 for(s = &statr->mode; s <= &statr->SSIDlen; s++) *s = le16_to_cpu(*s);
1892
1893 for(s = &statr->beaconPeriod; s <= &statr->shortPreamble; s++)
1894 *s = le16_to_cpu(*s);
1895 statr->load = le16_to_cpu(statr->load);
1896 statr->assocStatus = le16_to_cpu(statr->assocStatus);
1897 return rc;
1898}
1899static int readAPListRid(struct airo_info*ai, APListRid *aplr) {
1900 int rc = PC4500_readrid(ai, RID_APLIST, aplr, sizeof(*aplr), 1);
1901 aplr->len = le16_to_cpu(aplr->len);
1902 return rc;
1903}
1904static int writeAPListRid(struct airo_info*ai, APListRid *aplr, int lock) {
1905 int rc;
1906 aplr->len = cpu_to_le16(aplr->len);
1907 rc = PC4500_writerid(ai, RID_APLIST, aplr, sizeof(*aplr), lock);
1908 return rc;
1909}
1910static int readCapabilityRid(struct airo_info*ai, CapabilityRid *capr, int lock) {
1911 int rc = PC4500_readrid(ai, RID_CAPABILITIES, capr, sizeof(*capr), lock);
1912 u16 *s;
1913
1914 capr->len = le16_to_cpu(capr->len);
1915 capr->prodNum = le16_to_cpu(capr->prodNum);
1916 capr->radioType = le16_to_cpu(capr->radioType);
1917 capr->country = le16_to_cpu(capr->country);
1918 for(s = &capr->txPowerLevels[0]; s <= &capr->requiredHard; s++)
1919 *s = le16_to_cpu(*s);
1920 return rc;
1921}
1922static int readStatsRid(struct airo_info*ai, StatsRid *sr, int rid, int lock) {
1923 int rc = PC4500_readrid(ai, rid, sr, sizeof(*sr), lock);
1924 u32 *i;
1925
1926 sr->len = le16_to_cpu(sr->len);
1927 for(i = &sr->vals[0]; i <= &sr->vals[99]; i++) *i = le32_to_cpu(*i);
1928 return rc;
1929}
1930
1c2b7db8
MS
1931static void try_auto_wep(struct airo_info *ai)
1932{
1933 if (auto_wep && !(ai->flags & FLAG_RADIO_DOWN)) {
1934 ai->expires = RUN_AT(3*HZ);
1935 wake_up_interruptible(&ai->thr_wait);
1936 }
1937}
1938
1da177e4 1939static int airo_open(struct net_device *dev) {
1c2b7db8 1940 struct airo_info *ai = dev->priv;
1c2b7db8 1941 int rc = 0;
1da177e4 1942
1c2b7db8 1943 if (test_bit(FLAG_FLASHING, &ai->flags))
1da177e4
LT
1944 return -EIO;
1945
1946 /* Make sure the card is configured.
1947 * Wireless Extensions may postpone config changes until the card
1948 * is open (to pipeline changes and speed-up card setup). If
1949 * those changes are not yet commited, do it now - Jean II */
1c2b7db8
MS
1950 if (test_bit(FLAG_COMMIT, &ai->flags)) {
1951 disable_MAC(ai, 1);
1952 writeConfigRid(ai, 1);
1da177e4
LT
1953 }
1954
1c2b7db8
MS
1955 if (ai->wifidev != dev) {
1956 clear_bit(JOB_DIE, &ai->jobs);
1957 ai->airo_thread_task = kthread_run(airo_thread, dev, dev->name);
1958 if (IS_ERR(ai->airo_thread_task))
1959 return (int)PTR_ERR(ai->airo_thread_task);
1960
1961 rc = request_irq(dev->irq, airo_interrupt, IRQF_SHARED,
1962 dev->name, dev);
1963 if (rc) {
1964 airo_print_err(dev->name,
1965 "register interrupt %d failed, rc %d",
1966 dev->irq, rc);
1967 set_bit(JOB_DIE, &ai->jobs);
1968 kthread_stop(ai->airo_thread_task);
1969 return rc;
1970 }
1971
1da177e4 1972 /* Power on the MAC controller (which may have been disabled) */
1c2b7db8
MS
1973 clear_bit(FLAG_RADIO_DOWN, &ai->flags);
1974 enable_interrupts(ai);
1975
1976 try_auto_wep(ai);
1da177e4 1977 }
175ec1a1 1978 enable_MAC(ai, 1);
1da177e4
LT
1979
1980 netif_start_queue(dev);
1981 return 0;
1982}
1983
1984static int mpi_start_xmit(struct sk_buff *skb, struct net_device *dev) {
1985 int npacks, pending;
1986 unsigned long flags;
1987 struct airo_info *ai = dev->priv;
1988
1989 if (!skb) {
934d8bf1 1990 airo_print_err(dev->name, "%s: skb == NULL!",__FUNCTION__);
1da177e4
LT
1991 return 0;
1992 }
1993 npacks = skb_queue_len (&ai->txq);
1994
1995 if (npacks >= MAXTXQ - 1) {
1996 netif_stop_queue (dev);
1997 if (npacks > MAXTXQ) {
1998 ai->stats.tx_fifo_errors++;
1999 return 1;
2000 }
2001 skb_queue_tail (&ai->txq, skb);
2002 return 0;
2003 }
2004
2005 spin_lock_irqsave(&ai->aux_lock, flags);
2006 skb_queue_tail (&ai->txq, skb);
2007 pending = test_bit(FLAG_PENDING_XMIT, &ai->flags);
2008 spin_unlock_irqrestore(&ai->aux_lock,flags);
2009 netif_wake_queue (dev);
2010
2011 if (pending == 0) {
2012 set_bit(FLAG_PENDING_XMIT, &ai->flags);
2013 mpi_send_packet (dev);
2014 }
2015 return 0;
2016}
2017
2018/*
2019 * @mpi_send_packet
2020 *
2021 * Attempt to transmit a packet. Can be called from interrupt
2022 * or transmit . return number of packets we tried to send
2023 */
2024
2025static int mpi_send_packet (struct net_device *dev)
2026{
2027 struct sk_buff *skb;
2028 unsigned char *buffer;
2029 s16 len, *payloadLen;
2030 struct airo_info *ai = dev->priv;
2031 u8 *sendbuf;
2032
2033 /* get a packet to send */
2034
79ea13ce 2035 if ((skb = skb_dequeue(&ai->txq)) == NULL) {
934d8bf1
DW
2036 airo_print_err(dev->name,
2037 "%s: Dequeue'd zero in send_packet()",
1da177e4
LT
2038 __FUNCTION__);
2039 return 0;
2040 }
2041
2042 /* check min length*/
2043 len = ETH_ZLEN < skb->len ? skb->len : ETH_ZLEN;
2044 buffer = skb->data;
2045
2046 ai->txfids[0].tx_desc.offset = 0;
2047 ai->txfids[0].tx_desc.valid = 1;
2048 ai->txfids[0].tx_desc.eoc = 1;
2049 ai->txfids[0].tx_desc.len =len+sizeof(WifiHdr);
2050
2051/*
2052 * Magic, the cards firmware needs a length count (2 bytes) in the host buffer
2053 * right after TXFID_HDR.The TXFID_HDR contains the status short so payloadlen
2054 * is immediatly after it. ------------------------------------------------
2055 * |TXFIDHDR+STATUS|PAYLOADLEN|802.3HDR|PACKETDATA|
2056 * ------------------------------------------------
2057 */
2058
2059 memcpy((char *)ai->txfids[0].virtual_host_addr,
2060 (char *)&wifictlhdr8023, sizeof(wifictlhdr8023));
2061
2062 payloadLen = (s16 *)(ai->txfids[0].virtual_host_addr +
2063 sizeof(wifictlhdr8023));
2064 sendbuf = ai->txfids[0].virtual_host_addr +
2065 sizeof(wifictlhdr8023) + 2 ;
2066
2067 /*
2068 * Firmware automaticly puts 802 header on so
2069 * we don't need to account for it in the length
2070 */
1da177e4
LT
2071 if (test_bit(FLAG_MIC_CAPABLE, &ai->flags) && ai->micstats.enabled &&
2072 (ntohs(((u16 *)buffer)[6]) != 0x888E)) {
2073 MICBuffer pMic;
2074
2075 if (encapsulate(ai, (etherHead *)buffer, &pMic, len - sizeof(etherHead)) != SUCCESS)
2076 return ERROR;
2077
2078 *payloadLen = cpu_to_le16(len-sizeof(etherHead)+sizeof(pMic));
2079 ai->txfids[0].tx_desc.len += sizeof(pMic);
2080 /* copy data into airo dma buffer */
2081 memcpy (sendbuf, buffer, sizeof(etherHead));
2082 buffer += sizeof(etherHead);
2083 sendbuf += sizeof(etherHead);
2084 memcpy (sendbuf, &pMic, sizeof(pMic));
2085 sendbuf += sizeof(pMic);
2086 memcpy (sendbuf, buffer, len - sizeof(etherHead));
a39d3e79 2087 } else {
1da177e4
LT
2088 *payloadLen = cpu_to_le16(len - sizeof(etherHead));
2089
2090 dev->trans_start = jiffies;
2091
2092 /* copy data into airo dma buffer */
2093 memcpy(sendbuf, buffer, len);
2094 }
2095
2096 memcpy_toio(ai->txfids[0].card_ram_off,
2097 &ai->txfids[0].tx_desc, sizeof(TxFid));
2098
2099 OUT4500(ai, EVACK, 8);
2100
2101 dev_kfree_skb_any(skb);
2102 return 1;
2103}
2104
29b09fcc 2105static void get_tx_error(struct airo_info *ai, s32 fid)
1da177e4
LT
2106{
2107 u16 status;
2108
2109 if (fid < 0)
2110 status = ((WifiCtlHdr *)ai->txfids[0].virtual_host_addr)->ctlhdr.status;
2111 else {
2112 if (bap_setup(ai, ai->fids[fid] & 0xffff, 4, BAP0) != SUCCESS)
2113 return;
2114 bap_read(ai, &status, 2, BAP0);
2115 }
2116 if (le16_to_cpu(status) & 2) /* Too many retries */
2117 ai->stats.tx_aborted_errors++;
2118 if (le16_to_cpu(status) & 4) /* Transmit lifetime exceeded */
2119 ai->stats.tx_heartbeat_errors++;
2120 if (le16_to_cpu(status) & 8) /* Aid fail */
2121 { }
2122 if (le16_to_cpu(status) & 0x10) /* MAC disabled */
2123 ai->stats.tx_carrier_errors++;
2124 if (le16_to_cpu(status) & 0x20) /* Association lost */
2125 { }
2126 /* We produce a TXDROP event only for retry or lifetime
2127 * exceeded, because that's the only status that really mean
2128 * that this particular node went away.
2129 * Other errors means that *we* screwed up. - Jean II */
2130 if ((le16_to_cpu(status) & 2) ||
2131 (le16_to_cpu(status) & 4)) {
2132 union iwreq_data wrqu;
2133 char junk[0x18];
2134
2135 /* Faster to skip over useless data than to do
2136 * another bap_setup(). We are at offset 0x6 and
2137 * need to go to 0x18 and read 6 bytes - Jean II */
2138 bap_read(ai, (u16 *) junk, 0x18, BAP0);
2139
2140 /* Copy 802.11 dest address.
2141 * We use the 802.11 header because the frame may
2142 * not be 802.3 or may be mangled...
2143 * In Ad-Hoc mode, it will be the node address.
2144 * In managed mode, it will be most likely the AP addr
2145 * User space will figure out how to convert it to
2146 * whatever it needs (IP address or else).
2147 * - Jean II */
2148 memcpy(wrqu.addr.sa_data, junk + 0x12, ETH_ALEN);
2149 wrqu.addr.sa_family = ARPHRD_ETHER;
2150
2151 /* Send event to user space */
2152 wireless_send_event(ai->dev, IWEVTXDROP, &wrqu, NULL);
2153 }
2154}
2155
2156static void airo_end_xmit(struct net_device *dev) {
2157 u16 status;
2158 int i;
2159 struct airo_info *priv = dev->priv;
2160 struct sk_buff *skb = priv->xmit.skb;
2161 int fid = priv->xmit.fid;
2162 u32 *fids = priv->fids;
2163
3c304956 2164 clear_bit(JOB_XMIT, &priv->jobs);
1da177e4
LT
2165 clear_bit(FLAG_PENDING_XMIT, &priv->flags);
2166 status = transmit_802_3_packet (priv, fids[fid], skb->data);
2167 up(&priv->sem);
2168
2169 i = 0;
2170 if ( status == SUCCESS ) {
2171 dev->trans_start = jiffies;
2172 for (; i < MAX_FIDS / 2 && (priv->fids[i] & 0xffff0000); i++);
2173 } else {
2174 priv->fids[fid] &= 0xffff;
2175 priv->stats.tx_window_errors++;
2176 }
2177 if (i < MAX_FIDS / 2)
2178 netif_wake_queue(dev);
2179 dev_kfree_skb(skb);
2180}
2181
2182static int airo_start_xmit(struct sk_buff *skb, struct net_device *dev) {
2183 s16 len;
2184 int i, j;
2185 struct airo_info *priv = dev->priv;
2186 u32 *fids = priv->fids;
2187
2188 if ( skb == NULL ) {
934d8bf1 2189 airo_print_err(dev->name, "%s: skb == NULL!", __FUNCTION__);
1da177e4
LT
2190 return 0;
2191 }
2192
2193 /* Find a vacant FID */
2194 for( i = 0; i < MAX_FIDS / 2 && (fids[i] & 0xffff0000); i++ );
2195 for( j = i + 1; j < MAX_FIDS / 2 && (fids[j] & 0xffff0000); j++ );
2196
2197 if ( j >= MAX_FIDS / 2 ) {
2198 netif_stop_queue(dev);
2199
2200 if (i == MAX_FIDS / 2) {
2201 priv->stats.tx_fifo_errors++;
2202 return 1;
2203 }
2204 }
2205 /* check min length*/
2206 len = ETH_ZLEN < skb->len ? skb->len : ETH_ZLEN;
2207 /* Mark fid as used & save length for later */
2208 fids[i] |= (len << 16);
2209 priv->xmit.skb = skb;
2210 priv->xmit.fid = i;
2211 if (down_trylock(&priv->sem) != 0) {
2212 set_bit(FLAG_PENDING_XMIT, &priv->flags);
2213 netif_stop_queue(dev);
3c304956 2214 set_bit(JOB_XMIT, &priv->jobs);
1da177e4
LT
2215 wake_up_interruptible(&priv->thr_wait);
2216 } else
2217 airo_end_xmit(dev);
2218 return 0;
2219}
2220
2221static void airo_end_xmit11(struct net_device *dev) {
2222 u16 status;
2223 int i;
2224 struct airo_info *priv = dev->priv;
2225 struct sk_buff *skb = priv->xmit11.skb;
2226 int fid = priv->xmit11.fid;
2227 u32 *fids = priv->fids;
2228
3c304956 2229 clear_bit(JOB_XMIT11, &priv->jobs);
1da177e4
LT
2230 clear_bit(FLAG_PENDING_XMIT11, &priv->flags);
2231 status = transmit_802_11_packet (priv, fids[fid], skb->data);
2232 up(&priv->sem);
2233
2234 i = MAX_FIDS / 2;
2235 if ( status == SUCCESS ) {
2236 dev->trans_start = jiffies;
2237 for (; i < MAX_FIDS && (priv->fids[i] & 0xffff0000); i++);
2238 } else {
2239 priv->fids[fid] &= 0xffff;
2240 priv->stats.tx_window_errors++;
2241 }
2242 if (i < MAX_FIDS)
2243 netif_wake_queue(dev);
2244 dev_kfree_skb(skb);
2245}
2246
2247static int airo_start_xmit11(struct sk_buff *skb, struct net_device *dev) {
2248 s16 len;
2249 int i, j;
2250 struct airo_info *priv = dev->priv;
2251 u32 *fids = priv->fids;
2252
2253 if (test_bit(FLAG_MPI, &priv->flags)) {
2254 /* Not implemented yet for MPI350 */
2255 netif_stop_queue(dev);
2256 return -ENETDOWN;
2257 }
2258
2259 if ( skb == NULL ) {
934d8bf1 2260 airo_print_err(dev->name, "%s: skb == NULL!", __FUNCTION__);
1da177e4
LT
2261 return 0;
2262 }
2263
2264 /* Find a vacant FID */
2265 for( i = MAX_FIDS / 2; i < MAX_FIDS && (fids[i] & 0xffff0000); i++ );
2266 for( j = i + 1; j < MAX_FIDS && (fids[j] & 0xffff0000); j++ );
2267
2268 if ( j >= MAX_FIDS ) {
2269 netif_stop_queue(dev);
2270
2271 if (i == MAX_FIDS) {
2272 priv->stats.tx_fifo_errors++;
2273 return 1;
2274 }
2275 }
2276 /* check min length*/
2277 len = ETH_ZLEN < skb->len ? skb->len : ETH_ZLEN;
2278 /* Mark fid as used & save length for later */
2279 fids[i] |= (len << 16);
2280 priv->xmit11.skb = skb;
2281 priv->xmit11.fid = i;
2282 if (down_trylock(&priv->sem) != 0) {
2283 set_bit(FLAG_PENDING_XMIT11, &priv->flags);
2284 netif_stop_queue(dev);
3c304956 2285 set_bit(JOB_XMIT11, &priv->jobs);
1da177e4
LT
2286 wake_up_interruptible(&priv->thr_wait);
2287 } else
2288 airo_end_xmit11(dev);
2289 return 0;
2290}
2291
2292static void airo_read_stats(struct airo_info *ai) {
2293 StatsRid stats_rid;
2294 u32 *vals = stats_rid.vals;
2295
3c304956 2296 clear_bit(JOB_STATS, &ai->jobs);
ca078bae 2297 if (ai->power.event) {
1da177e4
LT
2298 up(&ai->sem);
2299 return;
2300 }
2301 readStatsRid(ai, &stats_rid, RID_STATS, 0);
2302 up(&ai->sem);
2303
2304 ai->stats.rx_packets = vals[43] + vals[44] + vals[45];
2305 ai->stats.tx_packets = vals[39] + vals[40] + vals[41];
2306 ai->stats.rx_bytes = vals[92];
2307 ai->stats.tx_bytes = vals[91];
2308 ai->stats.rx_errors = vals[0] + vals[2] + vals[3] + vals[4];
2309 ai->stats.tx_errors = vals[42] + ai->stats.tx_fifo_errors;
2310 ai->stats.multicast = vals[43];
2311 ai->stats.collisions = vals[89];
2312
2313 /* detailed rx_errors: */
2314 ai->stats.rx_length_errors = vals[3];
2315 ai->stats.rx_crc_errors = vals[4];
2316 ai->stats.rx_frame_errors = vals[2];
2317 ai->stats.rx_fifo_errors = vals[0];
2318}
2319
ff1d2767 2320static struct net_device_stats *airo_get_stats(struct net_device *dev)
1da177e4
LT
2321{
2322 struct airo_info *local = dev->priv;
2323
3c304956 2324 if (!test_bit(JOB_STATS, &local->jobs)) {
1da177e4
LT
2325 /* Get stats out of the card if available */
2326 if (down_trylock(&local->sem) != 0) {
3c304956 2327 set_bit(JOB_STATS, &local->jobs);
1da177e4
LT
2328 wake_up_interruptible(&local->thr_wait);
2329 } else
2330 airo_read_stats(local);
2331 }
2332
2333 return &local->stats;
2334}
2335
2336static void airo_set_promisc(struct airo_info *ai) {
2337 Cmd cmd;
2338 Resp rsp;
2339
2340 memset(&cmd, 0, sizeof(cmd));
2341 cmd.cmd=CMD_SETMODE;
3c304956 2342 clear_bit(JOB_PROMISC, &ai->jobs);
1da177e4
LT
2343 cmd.parm0=(ai->flags&IFF_PROMISC) ? PROMISC : NOPROMISC;
2344 issuecommand(ai, &cmd, &rsp);
2345 up(&ai->sem);
2346}
2347
2348static void airo_set_multicast_list(struct net_device *dev) {
2349 struct airo_info *ai = dev->priv;
2350
2351 if ((dev->flags ^ ai->flags) & IFF_PROMISC) {
2352 change_bit(FLAG_PROMISC, &ai->flags);
2353 if (down_trylock(&ai->sem) != 0) {
3c304956 2354 set_bit(JOB_PROMISC, &ai->jobs);
1da177e4
LT
2355 wake_up_interruptible(&ai->thr_wait);
2356 } else
2357 airo_set_promisc(ai);
2358 }
2359
2360 if ((dev->flags&IFF_ALLMULTI)||dev->mc_count>0) {
2361 /* Turn on multicast. (Should be already setup...) */
2362 }
2363}
2364
2365static int airo_set_mac_address(struct net_device *dev, void *p)
2366{
2367 struct airo_info *ai = dev->priv;
2368 struct sockaddr *addr = p;
1da177e4
LT
2369
2370 readConfigRid(ai, 1);
2371 memcpy (ai->config.macAddr, addr->sa_data, dev->addr_len);
2372 set_bit (FLAG_COMMIT, &ai->flags);
2373 disable_MAC(ai, 1);
2374 writeConfigRid (ai, 1);
175ec1a1 2375 enable_MAC(ai, 1);
1da177e4
LT
2376 memcpy (ai->dev->dev_addr, addr->sa_data, dev->addr_len);
2377 if (ai->wifidev)
2378 memcpy (ai->wifidev->dev_addr, addr->sa_data, dev->addr_len);
2379 return 0;
2380}
2381
2382static int airo_change_mtu(struct net_device *dev, int new_mtu)
2383{
2384 if ((new_mtu < 68) || (new_mtu > 2400))
2385 return -EINVAL;
2386 dev->mtu = new_mtu;
2387 return 0;
2388}
2389
af5b5c9a
MS
2390static LIST_HEAD(airo_devices);
2391
2392static void add_airo_dev(struct airo_info *ai)
2393{
2394 /* Upper layers already keep track of PCI devices,
2395 * so we only need to remember our non-PCI cards. */
2396 if (!ai->pci)
2397 list_add_tail(&ai->dev_list, &airo_devices);
2398}
2399
2400static void del_airo_dev(struct airo_info *ai)
2401{
2402 if (!ai->pci)
2403 list_del(&ai->dev_list);
2404}
1da177e4
LT
2405
2406static int airo_close(struct net_device *dev) {
2407 struct airo_info *ai = dev->priv;
2408
2409 netif_stop_queue(dev);
2410
2411 if (ai->wifidev != dev) {
2412#ifdef POWER_ON_DOWN
2413 /* Shut power to the card. The idea is that the user can save
2414 * power when he doesn't need the card with "ifconfig down".
2415 * That's the method that is most friendly towards the network
2416 * stack (i.e. the network stack won't try to broadcast
2417 * anything on the interface and routes are gone. Jean II */
2418 set_bit(FLAG_RADIO_DOWN, &ai->flags);
2419 disable_MAC(ai, 1);
2420#endif
2421 disable_interrupts( ai );
1c2b7db8
MS
2422
2423 free_irq(dev->irq, dev);
2424
2425 set_bit(JOB_DIE, &ai->jobs);
2426 kthread_stop(ai->airo_thread_task);
1da177e4
LT
2427 }
2428 return 0;
2429}
2430
1da177e4
LT
2431void stop_airo_card( struct net_device *dev, int freeres )
2432{
2433 struct airo_info *ai = dev->priv;
2434
2435 set_bit(FLAG_RADIO_DOWN, &ai->flags);
2436 disable_MAC(ai, 1);
2437 disable_interrupts(ai);
1da177e4
LT
2438 takedown_proc_entry( dev, ai );
2439 if (test_bit(FLAG_REGISTERED, &ai->flags)) {
2440 unregister_netdev( dev );
2441 if (ai->wifidev) {
2442 unregister_netdev(ai->wifidev);
2443 free_netdev(ai->wifidev);
2444 ai->wifidev = NULL;
2445 }
2446 clear_bit(FLAG_REGISTERED, &ai->flags);
2447 }
1da177e4
LT
2448 /*
2449 * Clean out tx queue
2450 */
b03efcfb 2451 if (test_bit(FLAG_MPI, &ai->flags) && !skb_queue_empty(&ai->txq)) {
1da177e4
LT
2452 struct sk_buff *skb = NULL;
2453 for (;(skb = skb_dequeue(&ai->txq));)
2454 dev_kfree_skb(skb);
2455 }
2456
9e75af30
DW
2457 airo_networks_free (ai);
2458
b4558ea9
JJ
2459 kfree(ai->flash);
2460 kfree(ai->rssi);
2461 kfree(ai->APList);
2462 kfree(ai->SSID);
1da177e4
LT
2463 if (freeres) {
2464 /* PCMCIA frees this stuff, so only for PCI and ISA */
2465 release_region( dev->base_addr, 64 );
2466 if (test_bit(FLAG_MPI, &ai->flags)) {
2467 if (ai->pci)
2468 mpi_unmap_card(ai->pci);
2469 if (ai->pcimem)
2470 iounmap(ai->pcimem);
2471 if (ai->pciaux)
2472 iounmap(ai->pciaux);
2473 pci_free_consistent(ai->pci, PCI_SHARED_LEN,
2474 ai->shared, ai->shared_dma);
2475 }
2476 }
f12cc209 2477 crypto_free_cipher(ai->tfm);
af5b5c9a 2478 del_airo_dev(ai);
1da177e4
LT
2479 free_netdev( dev );
2480}
2481
2482EXPORT_SYMBOL(stop_airo_card);
2483
b95cce35 2484static int wll_header_parse(const struct sk_buff *skb, unsigned char *haddr)
1da177e4 2485{
98e399f8 2486 memcpy(haddr, skb_mac_header(skb) + 10, ETH_ALEN);
1da177e4
LT
2487 return ETH_ALEN;
2488}
2489
2490static void mpi_unmap_card(struct pci_dev *pci)
2491{
2492 unsigned long mem_start = pci_resource_start(pci, 1);
2493 unsigned long mem_len = pci_resource_len(pci, 1);
2494 unsigned long aux_start = pci_resource_start(pci, 2);
2495 unsigned long aux_len = AUXMEMSIZE;
2496
2497 release_mem_region(aux_start, aux_len);
2498 release_mem_region(mem_start, mem_len);
2499}
2500
2501/*************************************************************
2502 * This routine assumes that descriptors have been setup .
2503 * Run at insmod time or after reset when the decriptors
2504 * have been initialized . Returns 0 if all is well nz
2505 * otherwise . Does not allocate memory but sets up card
2506 * using previously allocated descriptors.
2507 */
2508static int mpi_init_descriptors (struct airo_info *ai)
2509{
2510 Cmd cmd;
2511 Resp rsp;
2512 int i;
2513 int rc = SUCCESS;
2514
2515 /* Alloc card RX descriptors */
2516 netif_stop_queue(ai->dev);
2517
2518 memset(&rsp,0,sizeof(rsp));
2519 memset(&cmd,0,sizeof(cmd));
2520
2521 cmd.cmd = CMD_ALLOCATEAUX;
2522 cmd.parm0 = FID_RX;
2523 cmd.parm1 = (ai->rxfids[0].card_ram_off - ai->pciaux);
2524 cmd.parm2 = MPI_MAX_FIDS;
2525 rc=issuecommand(ai, &cmd, &rsp);
2526 if (rc != SUCCESS) {
934d8bf1 2527 airo_print_err(ai->dev->name, "Couldn't allocate RX FID");
1da177e4
LT
2528 return rc;
2529 }
2530
2531 for (i=0; i<MPI_MAX_FIDS; i++) {
2532 memcpy_toio(ai->rxfids[i].card_ram_off,
2533 &ai->rxfids[i].rx_desc, sizeof(RxFid));
2534 }
2535
2536 /* Alloc card TX descriptors */
2537
2538 memset(&rsp,0,sizeof(rsp));
2539 memset(&cmd,0,sizeof(cmd));
2540
2541 cmd.cmd = CMD_ALLOCATEAUX;
2542 cmd.parm0 = FID_TX;
2543 cmd.parm1 = (ai->txfids[0].card_ram_off - ai->pciaux);
2544 cmd.parm2 = MPI_MAX_FIDS;
2545
2546 for (i=0; i<MPI_MAX_FIDS; i++) {
2547 ai->txfids[i].tx_desc.valid = 1;
2548 memcpy_toio(ai->txfids[i].card_ram_off,
2549 &ai->txfids[i].tx_desc, sizeof(TxFid));
2550 }
2551 ai->txfids[i-1].tx_desc.eoc = 1; /* Last descriptor has EOC set */
2552
2553 rc=issuecommand(ai, &cmd, &rsp);
2554 if (rc != SUCCESS) {
934d8bf1 2555 airo_print_err(ai->dev->name, "Couldn't allocate TX FID");
1da177e4
LT
2556 return rc;
2557 }
2558
2559 /* Alloc card Rid descriptor */
2560 memset(&rsp,0,sizeof(rsp));
2561 memset(&cmd,0,sizeof(cmd));
2562
2563 cmd.cmd = CMD_ALLOCATEAUX;
2564 cmd.parm0 = RID_RW;
2565 cmd.parm1 = (ai->config_desc.card_ram_off - ai->pciaux);
2566 cmd.parm2 = 1; /* Magic number... */
2567 rc=issuecommand(ai, &cmd, &rsp);
2568 if (rc != SUCCESS) {
934d8bf1 2569 airo_print_err(ai->dev->name, "Couldn't allocate RID");
1da177e4
LT
2570 return rc;
2571 }
2572
2573 memcpy_toio(ai->config_desc.card_ram_off,
2574 &ai->config_desc.rid_desc, sizeof(Rid));
2575
2576 return rc;
2577}
2578
2579/*
2580 * We are setting up three things here:
2581 * 1) Map AUX memory for descriptors: Rid, TxFid, or RxFid.
2582 * 2) Map PCI memory for issueing commands.
2583 * 3) Allocate memory (shared) to send and receive ethernet frames.
2584 */
1138c37b 2585static int mpi_map_card(struct airo_info *ai, struct pci_dev *pci)
1da177e4
LT
2586{
2587 unsigned long mem_start, mem_len, aux_start, aux_len;
2588 int rc = -1;
2589 int i;
2759c8d5
JG
2590 dma_addr_t busaddroff;
2591 unsigned char *vpackoff;
1da177e4
LT
2592 unsigned char __iomem *pciaddroff;
2593
2594 mem_start = pci_resource_start(pci, 1);
2595 mem_len = pci_resource_len(pci, 1);
2596 aux_start = pci_resource_start(pci, 2);
2597 aux_len = AUXMEMSIZE;
2598
1138c37b
MS
2599 if (!request_mem_region(mem_start, mem_len, DRV_NAME)) {
2600 airo_print_err("", "Couldn't get region %x[%x]",
2601 (int)mem_start, (int)mem_len);
1da177e4
LT
2602 goto out;
2603 }
1138c37b
MS
2604 if (!request_mem_region(aux_start, aux_len, DRV_NAME)) {
2605 airo_print_err("", "Couldn't get region %x[%x]",
2606 (int)aux_start, (int)aux_len);
1da177e4
LT
2607 goto free_region1;
2608 }
2609
2610 ai->pcimem = ioremap(mem_start, mem_len);
2611 if (!ai->pcimem) {
1138c37b
MS
2612 airo_print_err("", "Couldn't map region %x[%x]",
2613 (int)mem_start, (int)mem_len);
1da177e4
LT
2614 goto free_region2;
2615 }
2616 ai->pciaux = ioremap(aux_start, aux_len);
2617 if (!ai->pciaux) {
1138c37b
MS
2618 airo_print_err("", "Couldn't map region %x[%x]",
2619 (int)aux_start, (int)aux_len);
1da177e4
LT
2620 goto free_memmap;
2621 }
2622
2623 /* Reserve PKTSIZE for each fid and 2K for the Rids */
2624 ai->shared = pci_alloc_consistent(pci, PCI_SHARED_LEN, &ai->shared_dma);
2625 if (!ai->shared) {
1138c37b
MS
2626 airo_print_err("", "Couldn't alloc_consistent %d",
2627 PCI_SHARED_LEN);
1da177e4
LT
2628 goto free_auxmap;
2629 }
2630
2631 /*
2632 * Setup descriptor RX, TX, CONFIG
2633 */
2759c8d5 2634 busaddroff = ai->shared_dma;
1da177e4
LT
2635 pciaddroff = ai->pciaux + AUX_OFFSET;
2636 vpackoff = ai->shared;
2637
2638 /* RX descriptor setup */
2639 for(i = 0; i < MPI_MAX_FIDS; i++) {
2640 ai->rxfids[i].pending = 0;
2641 ai->rxfids[i].card_ram_off = pciaddroff;
2642 ai->rxfids[i].virtual_host_addr = vpackoff;
2759c8d5 2643 ai->rxfids[i].rx_desc.host_addr = busaddroff;
1da177e4
LT
2644 ai->rxfids[i].rx_desc.valid = 1;
2645 ai->rxfids[i].rx_desc.len = PKTSIZE;
2646 ai->rxfids[i].rx_desc.rdy = 0;
2647
2648 pciaddroff += sizeof(RxFid);
2649 busaddroff += PKTSIZE;
2650 vpackoff += PKTSIZE;
2651 }
2652
2653 /* TX descriptor setup */
2654 for(i = 0; i < MPI_MAX_FIDS; i++) {
2655 ai->txfids[i].card_ram_off = pciaddroff;
2656 ai->txfids[i].virtual_host_addr = vpackoff;
2657 ai->txfids[i].tx_desc.valid = 1;
2759c8d5 2658 ai->txfids[i].tx_desc.host_addr = busaddroff;
1da177e4
LT
2659 memcpy(ai->txfids[i].virtual_host_addr,
2660 &wifictlhdr8023, sizeof(wifictlhdr8023));
2661
2662 pciaddroff += sizeof(TxFid);
2663 busaddroff += PKTSIZE;
2664 vpackoff += PKTSIZE;
2665 }
2666 ai->txfids[i-1].tx_desc.eoc = 1; /* Last descriptor has EOC set */
2667
2668 /* Rid descriptor setup */
2669 ai->config_desc.card_ram_off = pciaddroff;
2670 ai->config_desc.virtual_host_addr = vpackoff;
2759c8d5
JG
2671 ai->config_desc.rid_desc.host_addr = busaddroff;
2672 ai->ridbus = busaddroff;
1da177e4
LT
2673 ai->config_desc.rid_desc.rid = 0;
2674 ai->config_desc.rid_desc.len = RIDSIZE;
2675 ai->config_desc.rid_desc.valid = 1;
2676 pciaddroff += sizeof(Rid);
2677 busaddroff += RIDSIZE;
2678 vpackoff += RIDSIZE;
2679
2680 /* Tell card about descriptors */
2681 if (mpi_init_descriptors (ai) != SUCCESS)
2682 goto free_shared;
2683
2684 return 0;
2685 free_shared:
2686 pci_free_consistent(pci, PCI_SHARED_LEN, ai->shared, ai->shared_dma);
2687 free_auxmap:
2688 iounmap(ai->pciaux);
2689 free_memmap:
2690 iounmap(ai->pcimem);
2691 free_region2:
2692 release_mem_region(aux_start, aux_len);
2693 free_region1:
2694 release_mem_region(mem_start, mem_len);
2695 out:
2696 return rc;
2697}
2698
3b04ddde
SH
2699static const struct header_ops airo_header_ops = {
2700 .parse = wll_header_parse,
2701};
2702
1da177e4
LT
2703static void wifi_setup(struct net_device *dev)
2704{
3b04ddde 2705 dev->header_ops = &airo_header_ops;
1da177e4
LT
2706 dev->hard_start_xmit = &airo_start_xmit11;
2707 dev->get_stats = &airo_get_stats;
2708 dev->set_mac_address = &airo_set_mac_address;
2709 dev->do_ioctl = &airo_ioctl;
1da177e4 2710 dev->wireless_handlers = &airo_handler_def;
1da177e4
LT
2711 dev->change_mtu = &airo_change_mtu;
2712 dev->open = &airo_open;
2713 dev->stop = &airo_close;
2714
2715 dev->type = ARPHRD_IEEE80211;
2716 dev->hard_header_len = ETH_HLEN;
15db2763 2717 dev->mtu = AIRO_DEF_MTU;
1da177e4
LT
2718 dev->addr_len = ETH_ALEN;
2719 dev->tx_queue_len = 100;
2720
2721 memset(dev->broadcast,0xFF, ETH_ALEN);
2722
2723 dev->flags = IFF_BROADCAST|IFF_MULTICAST;
2724}
2725
2726static struct net_device *init_wifidev(struct airo_info *ai,
2727 struct net_device *ethdev)
2728{
2729 int err;
2730 struct net_device *dev = alloc_netdev(0, "wifi%d", wifi_setup);
2731 if (!dev)
2732 return NULL;
2733 dev->priv = ethdev->priv;
2734 dev->irq = ethdev->irq;
2735 dev->base_addr = ethdev->base_addr;
1da177e4 2736 dev->wireless_data = ethdev->wireless_data;
1da177e4
LT
2737 memcpy(dev->dev_addr, ethdev->dev_addr, dev->addr_len);
2738 err = register_netdev(dev);
2739 if (err<0) {
2740 free_netdev(dev);
2741 return NULL;
2742 }
2743 return dev;
2744}
2745
ff1d2767 2746static int reset_card( struct net_device *dev , int lock) {
1da177e4
LT
2747 struct airo_info *ai = dev->priv;
2748
2749 if (lock && down_interruptible(&ai->sem))
2750 return -1;
2751 waitbusy (ai);
2752 OUT4500(ai,COMMAND,CMD_SOFTRESET);
2753 msleep(200);
2754 waitbusy (ai);
2755 msleep(200);
2756 if (lock)
2757 up(&ai->sem);
2758 return 0;
2759}
2760
3c304956 2761#define AIRO_MAX_NETWORK_COUNT 64
9e75af30
DW
2762static int airo_networks_allocate(struct airo_info *ai)
2763{
2764 if (ai->networks)
2765 return 0;
2766
2767 ai->networks =
3c304956 2768 kzalloc(AIRO_MAX_NETWORK_COUNT * sizeof(BSSListElement),
9e75af30
DW
2769 GFP_KERNEL);
2770 if (!ai->networks) {
1138c37b 2771 airo_print_warn("", "Out of memory allocating beacons");
9e75af30
DW
2772 return -ENOMEM;
2773 }
2774
2775 return 0;
2776}
2777
2778static void airo_networks_free(struct airo_info *ai)
2779{
9e75af30
DW
2780 kfree(ai->networks);
2781 ai->networks = NULL;
2782}
2783
2784static void airo_networks_initialize(struct airo_info *ai)
2785{
2786 int i;
2787
2788 INIT_LIST_HEAD(&ai->network_free_list);
2789 INIT_LIST_HEAD(&ai->network_list);
3c304956 2790 for (i = 0; i < AIRO_MAX_NETWORK_COUNT; i++)
9e75af30
DW
2791 list_add_tail(&ai->networks[i].list,
2792 &ai->network_free_list);
2793}
2794
3c304956
DW
2795static int airo_test_wpa_capable(struct airo_info *ai)
2796{
2797 int status;
2798 CapabilityRid cap_rid;
3c304956
DW
2799
2800 status = readCapabilityRid(ai, &cap_rid, 1);
2801 if (status != SUCCESS) return 0;
2802
2803 /* Only firmware versions 5.30.17 or better can do WPA */
2804 if ((cap_rid.softVer > 0x530)
0c6157a3 2805 || ((cap_rid.softVer == 0x530) && (cap_rid.softSubVer >= 17))) {
1138c37b 2806 airo_print_info("", "WPA is supported.");
3c304956
DW
2807 return 1;
2808 }
2809
2810 /* No WPA support */
1138c37b 2811 airo_print_info("", "WPA unsupported (only firmware versions 5.30.17"
3c304956
DW
2812 " and greater support WPA. Detected %s)", cap_rid.prodVer);
2813 return 0;
2814}
2815
ff1d2767
JM
2816static struct net_device *_init_airo_card( unsigned short irq, int port,
2817 int is_pcmcia, struct pci_dev *pci,
2818 struct device *dmdev )
1da177e4
LT
2819{
2820 struct net_device *dev;
2821 struct airo_info *ai;
2822 int i, rc;
0795af57 2823 DECLARE_MAC_BUF(mac);
1da177e4
LT
2824
2825 /* Create the network device object. */
1138c37b
MS
2826 dev = alloc_netdev(sizeof(*ai), "", ether_setup);
2827 if (!dev) {
934d8bf1 2828 airo_print_err("", "Couldn't alloc_etherdev");
1da177e4 2829 return NULL;
1da177e4
LT
2830 }
2831
2832 ai = dev->priv;
2833 ai->wifidev = NULL;
fb038c27 2834 ai->flags = 1 << FLAG_RADIO_DOWN;
3c304956 2835 ai->jobs = 0;
934d8bf1 2836 ai->dev = dev;
1da177e4 2837 if (pci && (pci->device == 0x5000 || pci->device == 0xa504)) {
1138c37b 2838 airo_print_dbg("", "Found an MPI350 card");
1da177e4
LT
2839 set_bit(FLAG_MPI, &ai->flags);
2840 }
1da177e4
LT
2841 spin_lock_init(&ai->aux_lock);
2842 sema_init(&ai->sem, 1);
2843 ai->config.len = 0;
2844 ai->pci = pci;
2845 init_waitqueue_head (&ai->thr_wait);
1da177e4 2846 ai->tfm = NULL;
af5b5c9a 2847 add_airo_dev(ai);
1da177e4 2848
9e75af30 2849 if (airo_networks_allocate (ai))
1c2b7db8 2850 goto err_out_free;
9e75af30
DW
2851 airo_networks_initialize (ai);
2852
1da177e4
LT
2853 /* The Airo-specific entries in the device structure. */
2854 if (test_bit(FLAG_MPI,&ai->flags)) {
2855 skb_queue_head_init (&ai->txq);
2856 dev->hard_start_xmit = &mpi_start_xmit;
2857 } else
2858 dev->hard_start_xmit = &airo_start_xmit;
2859 dev->get_stats = &airo_get_stats;
2860 dev->set_multicast_list = &airo_set_multicast_list;
2861 dev->set_mac_address = &airo_set_mac_address;
2862 dev->do_ioctl = &airo_ioctl;
1da177e4
LT
2863 dev->wireless_handlers = &airo_handler_def;
2864 ai->wireless_data.spy_data = &ai->spy_data;
2865 dev->wireless_data = &ai->wireless_data;
1da177e4
LT
2866 dev->change_mtu = &airo_change_mtu;
2867 dev->open = &airo_open;
2868 dev->stop = &airo_close;
2869 dev->irq = irq;
2870 dev->base_addr = port;
2871
2872 SET_NETDEV_DEV(dev, dmdev);
2873
1d97f384
MC
2874 reset_card (dev, 1);
2875 msleep(400);
1da177e4 2876
1da177e4 2877 if (!is_pcmcia) {
1138c37b 2878 if (!request_region(dev->base_addr, 64, DRV_NAME)) {
1da177e4 2879 rc = -EBUSY;
934d8bf1 2880 airo_print_err(dev->name, "Couldn't request region");
1c2b7db8 2881 goto err_out_nets;
1da177e4
LT
2882 }
2883 }
2884
2885 if (test_bit(FLAG_MPI,&ai->flags)) {
1138c37b
MS
2886 if (mpi_map_card(ai, pci)) {
2887 airo_print_err("", "Could not map memory");
1da177e4
LT
2888 goto err_out_res;
2889 }
2890 }
2891
2892 if (probe) {
2893 if ( setup_card( ai, dev->dev_addr, 1 ) != SUCCESS ) {
934d8bf1 2894 airo_print_err(dev->name, "MAC could not be enabled" );
1da177e4
LT
2895 rc = -EIO;
2896 goto err_out_map;
2897 }
2898 } else if (!test_bit(FLAG_MPI,&ai->flags)) {
2899 ai->bap_read = fast_bap_read;
2900 set_bit(FLAG_FLASHING, &ai->flags);
2901 }
2902
3c304956
DW
2903 /* Test for WPA support */
2904 if (airo_test_wpa_capable(ai)) {
2905 set_bit(FLAG_WPA_CAPABLE, &ai->flags);
2906 ai->bssListFirst = RID_WPA_BSSLISTFIRST;
2907 ai->bssListNext = RID_WPA_BSSLISTNEXT;
2908 ai->bssListRidLen = sizeof(BSSListRid);
2909 } else {
2910 ai->bssListFirst = RID_BSSLISTFIRST;
2911 ai->bssListNext = RID_BSSLISTNEXT;
2912 ai->bssListRidLen = sizeof(BSSListRid) - sizeof(BSSListRidExtra);
2913 }
2914
1138c37b 2915 strcpy(dev->name, "eth%d");
1da177e4
LT
2916 rc = register_netdev(dev);
2917 if (rc) {
934d8bf1 2918 airo_print_err(dev->name, "Couldn't register_netdev");
1da177e4
LT
2919 goto err_out_map;
2920 }
2921 ai->wifidev = init_wifidev(ai, dev);
431aca5a
FM
2922 if (!ai->wifidev)
2923 goto err_out_reg;
1da177e4
LT
2924
2925 set_bit(FLAG_REGISTERED,&ai->flags);
0795af57
JP
2926 airo_print_info(dev->name, "MAC enabled %s",
2927 print_mac(mac, dev->dev_addr));
1da177e4
LT
2928
2929 /* Allocate the transmit buffers */
2930 if (probe && !test_bit(FLAG_MPI,&ai->flags))
2931 for( i = 0; i < MAX_FIDS; i++ )
15db2763 2932 ai->fids[i] = transmit_allocate(ai,AIRO_DEF_MTU,i>=MAX_FIDS/2);
1da177e4 2933
431aca5a
FM
2934 if (setup_proc_entry(dev, dev->priv) < 0)
2935 goto err_out_wifi;
2936
1da177e4
LT
2937 return dev;
2938
431aca5a
FM
2939err_out_wifi:
2940 unregister_netdev(ai->wifidev);
2941 free_netdev(ai->wifidev);
2942err_out_reg:
2943 unregister_netdev(dev);
1da177e4
LT
2944err_out_map:
2945 if (test_bit(FLAG_MPI,&ai->flags) && pci) {
2946 pci_free_consistent(pci, PCI_SHARED_LEN, ai->shared, ai->shared_dma);
2947 iounmap(ai->pciaux);
2948 iounmap(ai->pcimem);
2949 mpi_unmap_card(ai->pci);
2950 }
2951err_out_res:
2952 if (!is_pcmcia)
2953 release_region( dev->base_addr, 64 );
4d881901
MS
2954err_out_nets:
2955 airo_networks_free(ai);
af5b5c9a 2956 del_airo_dev(ai);
1da177e4
LT
2957err_out_free:
2958 free_netdev(dev);
2959 return NULL;
2960}
2961
2962struct net_device *init_airo_card( unsigned short irq, int port, int is_pcmcia,
2963 struct device *dmdev)
2964{
2965 return _init_airo_card ( irq, port, is_pcmcia, NULL, dmdev);
2966}
2967
2968EXPORT_SYMBOL(init_airo_card);
2969
2970static int waitbusy (struct airo_info *ai) {
2971 int delay = 0;
2972 while ((IN4500 (ai, COMMAND) & COMMAND_BUSY) & (delay < 10000)) {
2973 udelay (10);
2974 if ((++delay % 20) == 0)
2975 OUT4500(ai, EVACK, EV_CLEARCOMMANDBUSY);
2976 }
2977 return delay < 10000;
2978}
2979
2980int reset_airo_card( struct net_device *dev )
2981{
2982 int i;
2983 struct airo_info *ai = dev->priv;
0795af57 2984 DECLARE_MAC_BUF(mac);
1da177e4
LT
2985
2986 if (reset_card (dev, 1))
2987 return -1;
2988
2989 if ( setup_card(ai, dev->dev_addr, 1 ) != SUCCESS ) {
934d8bf1 2990 airo_print_err(dev->name, "MAC could not be enabled");
1da177e4
LT
2991 return -1;
2992 }
0795af57
JP
2993 airo_print_info(dev->name, "MAC enabled %s",
2994 print_mac(mac, dev->dev_addr));
1da177e4
LT
2995 /* Allocate the transmit buffers if needed */
2996 if (!test_bit(FLAG_MPI,&ai->flags))
2997 for( i = 0; i < MAX_FIDS; i++ )
15db2763 2998 ai->fids[i] = transmit_allocate (ai,AIRO_DEF_MTU,i>=MAX_FIDS/2);
1da177e4
LT
2999
3000 enable_interrupts( ai );
3001 netif_wake_queue(dev);
3002 return 0;
3003}
3004
3005EXPORT_SYMBOL(reset_airo_card);
3006
3007static void airo_send_event(struct net_device *dev) {
3008 struct airo_info *ai = dev->priv;
3009 union iwreq_data wrqu;
3010 StatusRid status_rid;
3011
3c304956 3012 clear_bit(JOB_EVENT, &ai->jobs);
1da177e4
LT
3013 PC4500_readrid(ai, RID_STATUS, &status_rid, sizeof(status_rid), 0);
3014 up(&ai->sem);
3015 wrqu.data.length = 0;
3016 wrqu.data.flags = 0;
3017 memcpy(wrqu.ap_addr.sa_data, status_rid.bssid[0], ETH_ALEN);
3018 wrqu.ap_addr.sa_family = ARPHRD_ETHER;
3019
3020 /* Send event to user space */
3021 wireless_send_event(dev, SIOCGIWAP, &wrqu, NULL);
3022}
3023
9e75af30
DW
3024static void airo_process_scan_results (struct airo_info *ai) {
3025 union iwreq_data wrqu;
3c304956 3026 BSSListRid bss;
9e75af30
DW
3027 int rc;
3028 BSSListElement * loop_net;
3029 BSSListElement * tmp_net;
3030
3031 /* Blow away current list of scan results */
3032 list_for_each_entry_safe (loop_net, tmp_net, &ai->network_list, list) {
3033 list_move_tail (&loop_net->list, &ai->network_free_list);
3034 /* Don't blow away ->list, just BSS data */
3035 memset (loop_net, 0, sizeof (loop_net->bss));
3036 }
3037
3038 /* Try to read the first entry of the scan result */
3c304956
DW
3039 rc = PC4500_readrid(ai, ai->bssListFirst, &bss, ai->bssListRidLen, 0);
3040 if((rc) || (bss.index == 0xffff)) {
9e75af30
DW
3041 /* No scan results */
3042 goto out;
3043 }
3044
3045 /* Read and parse all entries */
3046 tmp_net = NULL;
3c304956 3047 while((!rc) && (bss.index != 0xffff)) {
9e75af30
DW
3048 /* Grab a network off the free list */
3049 if (!list_empty(&ai->network_free_list)) {
3050 tmp_net = list_entry(ai->network_free_list.next,
3051 BSSListElement, list);
3052 list_del(ai->network_free_list.next);
3053 }
3054
3055 if (tmp_net != NULL) {
3c304956 3056 memcpy(tmp_net, &bss, sizeof(tmp_net->bss));
9e75af30
DW
3057 list_add_tail(&tmp_net->list, &ai->network_list);
3058 tmp_net = NULL;
3059 }
3060
3061 /* Read next entry */
3c304956
DW
3062 rc = PC4500_readrid(ai, ai->bssListNext,
3063 &bss, ai->bssListRidLen, 0);
9e75af30
DW
3064 }
3065
3066out:
3067 ai->scan_timeout = 0;
3c304956 3068 clear_bit(JOB_SCAN_RESULTS, &ai->jobs);
9e75af30
DW
3069 up(&ai->sem);
3070
3071 /* Send an empty event to user space.
3072 * We don't send the received data on
3073 * the event because it would require
3074 * us to do complex transcoding, and
3075 * we want to minimise the work done in
3076 * the irq handler. Use a request to
3077 * extract the data - Jean II */
3078 wrqu.data.length = 0;
3079 wrqu.data.flags = 0;
3080 wireless_send_event(ai->dev, SIOCGIWSCAN, &wrqu, NULL);
3081}
3082
1da177e4
LT
3083static int airo_thread(void *data) {
3084 struct net_device *dev = data;
3085 struct airo_info *ai = dev->priv;
3086 int locked;
83144186
RW
3087
3088 set_freezable();
1da177e4 3089 while(1) {
1da177e4 3090 /* make swsusp happy with our thread */
3e1d1d28 3091 try_to_freeze();
1da177e4 3092
3c304956 3093 if (test_bit(JOB_DIE, &ai->jobs))
1da177e4
LT
3094 break;
3095
3c304956 3096 if (ai->jobs) {
1da177e4
LT
3097 locked = down_interruptible(&ai->sem);
3098 } else {
3099 wait_queue_t wait;
3100
3101 init_waitqueue_entry(&wait, current);
3102 add_wait_queue(&ai->thr_wait, &wait);
3103 for (;;) {
3104 set_current_state(TASK_INTERRUPTIBLE);
3c304956 3105 if (ai->jobs)
1da177e4 3106 break;
9e75af30
DW
3107 if (ai->expires || ai->scan_timeout) {
3108 if (ai->scan_timeout &&
3109 time_after_eq(jiffies,ai->scan_timeout)){
3c304956 3110 set_bit(JOB_SCAN_RESULTS, &ai->jobs);
9e75af30
DW
3111 break;
3112 } else if (ai->expires &&
3113 time_after_eq(jiffies,ai->expires)){
3c304956 3114 set_bit(JOB_AUTOWEP, &ai->jobs);
1da177e4
LT
3115 break;
3116 }
5bb85f18
DK
3117 if (!kthread_should_stop() &&
3118 !freezing(current)) {
9e75af30
DW
3119 unsigned long wake_at;
3120 if (!ai->expires || !ai->scan_timeout) {
3121 wake_at = max(ai->expires,
3122 ai->scan_timeout);
3123 } else {
3124 wake_at = min(ai->expires,
3125 ai->scan_timeout);
3126 }
3127 schedule_timeout(wake_at - jiffies);
1da177e4
LT
3128 continue;
3129 }
5bb85f18
DK
3130 } else if (!kthread_should_stop() &&
3131 !freezing(current)) {
1da177e4
LT
3132 schedule();
3133 continue;
3134 }
3135 break;
3136 }
3137 current->state = TASK_RUNNING;
3138 remove_wait_queue(&ai->thr_wait, &wait);
3139 locked = 1;
3140 }
3141
3142 if (locked)
3143 continue;
3144
3c304956 3145 if (test_bit(JOB_DIE, &ai->jobs)) {
1da177e4
LT
3146 up(&ai->sem);
3147 break;
3148 }
3149
ca078bae 3150 if (ai->power.event || test_bit(FLAG_FLASHING, &ai->flags)) {
1da177e4
LT
3151 up(&ai->sem);
3152 continue;
3153 }
3154
3c304956 3155 if (test_bit(JOB_XMIT, &ai->jobs))
1da177e4 3156 airo_end_xmit(dev);
3c304956 3157 else if (test_bit(JOB_XMIT11, &ai->jobs))
1da177e4 3158 airo_end_xmit11(dev);
3c304956 3159 else if (test_bit(JOB_STATS, &ai->jobs))
1da177e4 3160 airo_read_stats(ai);
3c304956 3161 else if (test_bit(JOB_WSTATS, &ai->jobs))
1da177e4 3162 airo_read_wireless_stats(ai);
3c304956 3163 else if (test_bit(JOB_PROMISC, &ai->jobs))
1da177e4 3164 airo_set_promisc(ai);
3c304956 3165 else if (test_bit(JOB_MIC, &ai->jobs))
1da177e4 3166 micinit(ai);
3c304956 3167 else if (test_bit(JOB_EVENT, &ai->jobs))
1da177e4 3168 airo_send_event(dev);
3c304956 3169 else if (test_bit(JOB_AUTOWEP, &ai->jobs))
1da177e4 3170 timer_func(dev);
3c304956 3171 else if (test_bit(JOB_SCAN_RESULTS, &ai->jobs))
9e75af30
DW
3172 airo_process_scan_results(ai);
3173 else /* Shouldn't get here, but we make sure to unlock */
3174 up(&ai->sem);
1da177e4 3175 }
3b4c7d64
SB
3176
3177 return 0;
1da177e4
LT
3178}
3179
0300b332
AV
3180static int header_len(__le16 ctl)
3181{
3182 u16 fc = le16_to_cpu(ctl);
3183 switch (fc & 0xc) {
3184 case 4:
3185 if ((fc & 0xe0) == 0xc0)
3186 return 10; /* one-address control packet */
3187 return 16; /* two-address control packet */
3188 case 8:
3189 if ((fc & 0x300) == 0x300)
3190 return 30; /* WDS packet */
3191 }
3192 return 24;
3193}
3194
28fc1f5a
JG
3195static irqreturn_t airo_interrupt(int irq, void *dev_id)
3196{
3197 struct net_device *dev = dev_id;
1da177e4
LT
3198 u16 status;
3199 u16 fid;
3200 struct airo_info *apriv = dev->priv;
3201 u16 savedInterrupts = 0;
3202 int handled = 0;
3203
3204 if (!netif_device_present(dev))
3205 return IRQ_NONE;
3206
3207 for (;;) {
3208 status = IN4500( apriv, EVSTAT );
3209 if ( !(status & STATUS_INTS) || status == 0xffff ) break;
3210
3211 handled = 1;
3212
3213 if ( status & EV_AWAKE ) {
3214 OUT4500( apriv, EVACK, EV_AWAKE );
3215 OUT4500( apriv, EVACK, EV_AWAKE );
3216 }
3217
3218 if (!savedInterrupts) {
3219 savedInterrupts = IN4500( apriv, EVINTEN );
3220 OUT4500( apriv, EVINTEN, 0 );
3221 }
3222
3223 if ( status & EV_MIC ) {
3224 OUT4500( apriv, EVACK, EV_MIC );
1da177e4 3225 if (test_bit(FLAG_MIC_CAPABLE, &apriv->flags)) {
3c304956 3226 set_bit(JOB_MIC, &apriv->jobs);
1da177e4
LT
3227 wake_up_interruptible(&apriv->thr_wait);
3228 }
1da177e4
LT
3229 }
3230 if ( status & EV_LINK ) {
3231 union iwreq_data wrqu;
6fcdf565 3232 int scan_forceloss = 0;
1da177e4
LT
3233 /* The link status has changed, if you want to put a
3234 monitor hook in, do it here. (Remember that
3235 interrupts are still disabled!)
3236 */
3237 u16 newStatus = IN4500(apriv, LINKSTAT);
3238 OUT4500( apriv, EVACK, EV_LINK);
3239 /* Here is what newStatus means: */
3240#define NOBEACON 0x8000 /* Loss of sync - missed beacons */
3241#define MAXRETRIES 0x8001 /* Loss of sync - max retries */
3242#define MAXARL 0x8002 /* Loss of sync - average retry level exceeded*/
3243#define FORCELOSS 0x8003 /* Loss of sync - host request */
3244#define TSFSYNC 0x8004 /* Loss of sync - TSF synchronization */
3245#define DEAUTH 0x8100 /* Deauthentication (low byte is reason code) */
3246#define DISASS 0x8200 /* Disassociation (low byte is reason code) */
3247#define ASSFAIL 0x8400 /* Association failure (low byte is reason
3248 code) */
3249#define AUTHFAIL 0x0300 /* Authentication failure (low byte is reason
3250 code) */
6fcdf565
DW
3251#define ASSOCIATED 0x0400 /* Associated */
3252#define REASSOCIATED 0x0600 /* Reassociated? Only on firmware >= 5.30.17 */
1da177e4
LT
3253#define RC_RESERVED 0 /* Reserved return code */
3254#define RC_NOREASON 1 /* Unspecified reason */
3255#define RC_AUTHINV 2 /* Previous authentication invalid */
3256#define RC_DEAUTH 3 /* Deauthenticated because sending station is
3257 leaving */
3258#define RC_NOACT 4 /* Disassociated due to inactivity */
3259#define RC_MAXLOAD 5 /* Disassociated because AP is unable to handle
3260 all currently associated stations */
3261#define RC_BADCLASS2 6 /* Class 2 frame received from
3262 non-Authenticated station */
3263#define RC_BADCLASS3 7 /* Class 3 frame received from
3264 non-Associated station */
3265#define RC_STATLEAVE 8 /* Disassociated because sending station is
3266 leaving BSS */
3267#define RC_NOAUTH 9 /* Station requesting (Re)Association is not
3268 Authenticated with the responding station */
6fcdf565
DW
3269 if (newStatus == FORCELOSS && apriv->scan_timeout > 0)
3270 scan_forceloss = 1;
3271 if(newStatus == ASSOCIATED || newStatus == REASSOCIATED) {
1da177e4
LT
3272 if (auto_wep)
3273 apriv->expires = 0;
3b4c7d64
SB
3274 if (apriv->list_bss_task)
3275 wake_up_process(apriv->list_bss_task);
1da177e4
LT
3276 set_bit(FLAG_UPDATE_UNI, &apriv->flags);
3277 set_bit(FLAG_UPDATE_MULTI, &apriv->flags);
6fcdf565 3278
1da177e4 3279 if (down_trylock(&apriv->sem) != 0) {
3c304956 3280 set_bit(JOB_EVENT, &apriv->jobs);
1da177e4
LT
3281 wake_up_interruptible(&apriv->thr_wait);
3282 } else
3283 airo_send_event(dev);
6fcdf565
DW
3284 } else if (!scan_forceloss) {
3285 if (auto_wep && !apriv->expires) {
3286 apriv->expires = RUN_AT(3*HZ);
3287 wake_up_interruptible(&apriv->thr_wait);
3288 }
1da177e4
LT
3289
3290 /* Send event to user space */
6fcdf565
DW
3291 memset(wrqu.ap_addr.sa_data, '\0', ETH_ALEN);
3292 wrqu.ap_addr.sa_family = ARPHRD_ETHER;
1da177e4
LT
3293 wireless_send_event(dev, SIOCGIWAP, &wrqu,NULL);
3294 }
3295 }
3296
3297 /* Check to see if there is something to receive */
3298 if ( status & EV_RX ) {
3299 struct sk_buff *skb = NULL;
3300 u16 fc, len, hdrlen = 0;
3301#pragma pack(1)
3302 struct {
3303 u16 status, len;
3304 u8 rssi[2];
3305 u8 rate;
3306 u8 freq;
3307 u16 tmp[4];
3308 } hdr;
3309#pragma pack()
3310 u16 gap;
3311 u16 tmpbuf[4];
3312 u16 *buffer;
3313
3314 if (test_bit(FLAG_MPI,&apriv->flags)) {
3315 if (test_bit(FLAG_802_11, &apriv->flags))
3316 mpi_receive_802_11(apriv);
3317 else
3318 mpi_receive_802_3(apriv);
3319 OUT4500(apriv, EVACK, EV_RX);
3320 goto exitrx;
3321 }
3322
3323 fid = IN4500( apriv, RXFID );
3324
3325 /* Get the packet length */
3326 if (test_bit(FLAG_802_11, &apriv->flags)) {
3327 bap_setup (apriv, fid, 4, BAP0);
3328 bap_read (apriv, (u16*)&hdr, sizeof(hdr), BAP0);
3329 /* Bad CRC. Ignore packet */
3330 if (le16_to_cpu(hdr.status) & 2)
3331 hdr.len = 0;
3332 if (apriv->wifidev == NULL)
3333 hdr.len = 0;
3334 } else {
3335 bap_setup (apriv, fid, 0x36, BAP0);
3336 bap_read (apriv, (u16*)&hdr.len, 2, BAP0);
3337 }
3338 len = le16_to_cpu(hdr.len);
3339
15db2763 3340 if (len > AIRO_DEF_MTU) {
934d8bf1 3341 airo_print_err(apriv->dev->name, "Bad size %d", len);
1da177e4
LT
3342 goto badrx;
3343 }
3344 if (len == 0)
3345 goto badrx;
3346
3347 if (test_bit(FLAG_802_11, &apriv->flags)) {
0300b332
AV
3348 bap_read (apriv, &fc, sizeof(fc), BAP0);
3349 hdrlen = header_len(fc);
1da177e4
LT
3350 } else
3351 hdrlen = ETH_ALEN * 2;
3352
3353 skb = dev_alloc_skb( len + hdrlen + 2 + 2 );
3354 if ( !skb ) {
3355 apriv->stats.rx_dropped++;
3356 goto badrx;
3357 }
3358 skb_reserve(skb, 2); /* This way the IP header is aligned */
3359 buffer = (u16*)skb_put (skb, len + hdrlen);
3360 if (test_bit(FLAG_802_11, &apriv->flags)) {
3361 buffer[0] = fc;
3362 bap_read (apriv, buffer + 1, hdrlen - 2, BAP0);
3363 if (hdrlen == 24)
3364 bap_read (apriv, tmpbuf, 6, BAP0);
3365
3366 bap_read (apriv, &gap, sizeof(gap), BAP0);
3367 gap = le16_to_cpu(gap);
3368 if (gap) {
934d8bf1 3369 if (gap <= 8) {
1da177e4 3370 bap_read (apriv, tmpbuf, gap, BAP0);
934d8bf1
DW
3371 } else {
3372 airo_print_err(apriv->dev->name, "gaplen too "
3373 "big. Problems will follow...");
3374 }
1da177e4
LT
3375 }
3376 bap_read (apriv, buffer + hdrlen/2, len, BAP0);
3377 } else {
1da177e4 3378 MICBuffer micbuf;
1da177e4 3379 bap_read (apriv, buffer, ETH_ALEN*2, BAP0);
1da177e4
LT
3380 if (apriv->micstats.enabled) {
3381 bap_read (apriv,(u16*)&micbuf,sizeof(micbuf),BAP0);
3382 if (ntohs(micbuf.typelen) > 0x05DC)
3383 bap_setup (apriv, fid, 0x44, BAP0);
3384 else {
3385 if (len <= sizeof(micbuf))
3386 goto badmic;
3387
3388 len -= sizeof(micbuf);
3389 skb_trim (skb, len + hdrlen);
3390 }
3391 }
1da177e4 3392 bap_read(apriv,buffer+ETH_ALEN,len,BAP0);
1da177e4
LT
3393 if (decapsulate(apriv,&micbuf,(etherHead*)buffer,len)) {
3394badmic:
3395 dev_kfree_skb_irq (skb);
1da177e4
LT
3396badrx:
3397 OUT4500( apriv, EVACK, EV_RX);
3398 goto exitrx;
3399 }
3400 }
3401#ifdef WIRELESS_SPY
3402 if (apriv->spy_data.spy_number > 0) {
3403 char *sa;
3404 struct iw_quality wstats;
3405 /* Prepare spy data : addr + qual */
3406 if (!test_bit(FLAG_802_11, &apriv->flags)) {
3407 sa = (char*)buffer + 6;
3408 bap_setup (apriv, fid, 8, BAP0);
3409 bap_read (apriv, (u16*)hdr.rssi, 2, BAP0);
3410 } else
3411 sa = (char*)buffer + 10;
3412 wstats.qual = hdr.rssi[0];
3413 if (apriv->rssi)
3414 wstats.level = 0x100 - apriv->rssi[hdr.rssi[1]].rssidBm;
3415 else
3416 wstats.level = (hdr.rssi[1] + 321) / 2;
41480af2
DW
3417 wstats.noise = apriv->wstats.qual.noise;
3418 wstats.updated = IW_QUAL_LEVEL_UPDATED
3419 | IW_QUAL_QUAL_UPDATED
ce6623c3 3420 | IW_QUAL_DBM;
1da177e4
LT
3421 /* Update spy records */
3422 wireless_spy_update(dev, sa, &wstats);
3423 }
3424#endif /* WIRELESS_SPY */
3425 OUT4500( apriv, EVACK, EV_RX);
3426
3427 if (test_bit(FLAG_802_11, &apriv->flags)) {
459a98ed 3428 skb_reset_mac_header(skb);
1da177e4
LT
3429 skb->pkt_type = PACKET_OTHERHOST;
3430 skb->dev = apriv->wifidev;
3431 skb->protocol = htons(ETH_P_802_2);
4c13eb66 3432 } else
1da177e4 3433 skb->protocol = eth_type_trans(skb,dev);
1da177e4
LT
3434 skb->dev->last_rx = jiffies;
3435 skb->ip_summed = CHECKSUM_NONE;
3436
3437 netif_rx( skb );
3438 }
3439exitrx:
3440
3441 /* Check to see if a packet has been transmitted */
3442 if ( status & ( EV_TX|EV_TXCPY|EV_TXEXC ) ) {
3443 int i;
3444 int len = 0;
3445 int index = -1;
3446
3447 if (test_bit(FLAG_MPI,&apriv->flags)) {
3448 unsigned long flags;
3449
3450 if (status & EV_TXEXC)
3451 get_tx_error(apriv, -1);
3452 spin_lock_irqsave(&apriv->aux_lock, flags);
b03efcfb 3453 if (!skb_queue_empty(&apriv->txq)) {
1da177e4
LT
3454 spin_unlock_irqrestore(&apriv->aux_lock,flags);
3455 mpi_send_packet (dev);
3456 } else {
3457 clear_bit(FLAG_PENDING_XMIT, &apriv->flags);
3458 spin_unlock_irqrestore(&apriv->aux_lock,flags);
3459 netif_wake_queue (dev);
3460 }
3461 OUT4500( apriv, EVACK,
3462 status & (EV_TX|EV_TXCPY|EV_TXEXC));
3463 goto exittx;
3464 }
3465
3466 fid = IN4500(apriv, TXCOMPLFID);
3467
3468 for( i = 0; i < MAX_FIDS; i++ ) {
3469 if ( ( apriv->fids[i] & 0xffff ) == fid ) {
3470 len = apriv->fids[i] >> 16;
3471 index = i;
3472 }
3473 }
3474 if (index != -1) {
3475 if (status & EV_TXEXC)
3476 get_tx_error(apriv, index);
3477 OUT4500( apriv, EVACK, status & (EV_TX | EV_TXEXC));
3478 /* Set up to be used again */
3479 apriv->fids[index] &= 0xffff;
3480 if (index < MAX_FIDS / 2) {
3481 if (!test_bit(FLAG_PENDING_XMIT, &apriv->flags))
3482 netif_wake_queue(dev);
3483 } else {
3484 if (!test_bit(FLAG_PENDING_XMIT11, &apriv->flags))
3485 netif_wake_queue(apriv->wifidev);
3486 }
3487 } else {
3488 OUT4500( apriv, EVACK, status & (EV_TX | EV_TXCPY | EV_TXEXC));
934d8bf1
DW
3489 airo_print_err(apriv->dev->name, "Unallocated FID was "
3490 "used to xmit" );
1da177e4
LT
3491 }
3492 }
3493exittx:
3494 if ( status & ~STATUS_INTS & ~IGNORE_INTS )
934d8bf1 3495 airo_print_warn(apriv->dev->name, "Got weird status %x",
1da177e4
LT
3496 status & ~STATUS_INTS & ~IGNORE_INTS );
3497 }
3498
3499 if (savedInterrupts)
3500 OUT4500( apriv, EVINTEN, savedInterrupts );
3501
3502 /* done.. */
3503 return IRQ_RETVAL(handled);
3504}
3505
3506/*
3507 * Routines to talk to the card
3508 */
3509
3510/*
3511 * This was originally written for the 4500, hence the name
3512 * NOTE: If use with 8bit mode and SMP bad things will happen!
3513 * Why would some one do 8 bit IO in an SMP machine?!?
3514 */
3515static void OUT4500( struct airo_info *ai, u16 reg, u16 val ) {
3516 if (test_bit(FLAG_MPI,&ai->flags))
3517 reg <<= 1;
3518 if ( !do8bitIO )
3519 outw( val, ai->dev->base_addr + reg );
3520 else {
3521 outb( val & 0xff, ai->dev->base_addr + reg );
3522 outb( val >> 8, ai->dev->base_addr + reg + 1 );
3523 }
3524}
3525
3526static u16 IN4500( struct airo_info *ai, u16 reg ) {
3527 unsigned short rc;
3528
3529 if (test_bit(FLAG_MPI,&ai->flags))
3530 reg <<= 1;
3531 if ( !do8bitIO )
3532 rc = inw( ai->dev->base_addr + reg );
3533 else {
3534 rc = inb( ai->dev->base_addr + reg );
3535 rc += ((int)inb( ai->dev->base_addr + reg + 1 )) << 8;
3536 }
3537 return rc;
3538}
3539
175ec1a1
MS
3540static int enable_MAC(struct airo_info *ai, int lock)
3541{
1da177e4 3542 int rc;
175ec1a1
MS
3543 Cmd cmd;
3544 Resp rsp;
1da177e4
LT
3545
3546 /* FLAG_RADIO_OFF : Radio disabled via /proc or Wireless Extensions
3547 * FLAG_RADIO_DOWN : Radio disabled via "ifconfig ethX down"
3548 * Note : we could try to use !netif_running(dev) in enable_MAC()
3549 * instead of this flag, but I don't trust it *within* the
3550 * open/close functions, and testing both flags together is
3551 * "cheaper" - Jean II */
3552 if (ai->flags & FLAG_RADIO_MASK) return SUCCESS;
3553
3554 if (lock && down_interruptible(&ai->sem))
3555 return -ERESTARTSYS;
3556
3557 if (!test_bit(FLAG_ENABLED, &ai->flags)) {
3558 memset(&cmd, 0, sizeof(cmd));
3559 cmd.cmd = MAC_ENABLE;
175ec1a1 3560 rc = issuecommand(ai, &cmd, &rsp);
1da177e4
LT
3561 if (rc == SUCCESS)
3562 set_bit(FLAG_ENABLED, &ai->flags);
3563 } else
3564 rc = SUCCESS;
3565
3566 if (lock)
3567 up(&ai->sem);
3568
3569 if (rc)
175ec1a1
MS
3570 airo_print_err(ai->dev->name, "Cannot enable MAC");
3571 else if ((rsp.status & 0xFF00) != 0) {
3572 airo_print_err(ai->dev->name, "Bad MAC enable reason=%x, "
3573 "rid=%x, offset=%d", rsp.rsp0, rsp.rsp1, rsp.rsp2);
3574 rc = ERROR;
3575 }
1da177e4
LT
3576 return rc;
3577}
3578
3579static void disable_MAC( struct airo_info *ai, int lock ) {
3580 Cmd cmd;
3581 Resp rsp;
3582
3583 if (lock && down_interruptible(&ai->sem))
3584 return;
3585
3586 if (test_bit(FLAG_ENABLED, &ai->flags)) {
3587 memset(&cmd, 0, sizeof(cmd));
3588 cmd.cmd = MAC_DISABLE; // disable in case already enabled
3589 issuecommand(ai, &cmd, &rsp);
3590 clear_bit(FLAG_ENABLED, &ai->flags);
3591 }
3592 if (lock)
3593 up(&ai->sem);
3594}
3595
3596static void enable_interrupts( struct airo_info *ai ) {
3597 /* Enable the interrupts */
3598 OUT4500( ai, EVINTEN, STATUS_INTS );
3599}
3600
3601static void disable_interrupts( struct airo_info *ai ) {
3602 OUT4500( ai, EVINTEN, 0 );
3603}
3604
3605static void mpi_receive_802_3(struct airo_info *ai)
3606{
3607 RxFid rxd;
3608 int len = 0;
3609 struct sk_buff *skb;
3610 char *buffer;
1da177e4
LT
3611 int off = 0;
3612 MICBuffer micbuf;
1da177e4
LT
3613
3614 memcpy_fromio(&rxd, ai->rxfids[0].card_ram_off, sizeof(rxd));
3615 /* Make sure we got something */
3616 if (rxd.rdy && rxd.valid == 0) {
3617 len = rxd.len + 12;
3618 if (len < 12 || len > 2048)
3619 goto badrx;
3620
3621 skb = dev_alloc_skb(len);
3622 if (!skb) {
3623 ai->stats.rx_dropped++;
3624 goto badrx;
3625 }
3626 buffer = skb_put(skb,len);
1da177e4
LT
3627 memcpy(buffer, ai->rxfids[0].virtual_host_addr, ETH_ALEN * 2);
3628 if (ai->micstats.enabled) {
3629 memcpy(&micbuf,
3630 ai->rxfids[0].virtual_host_addr + ETH_ALEN * 2,
3631 sizeof(micbuf));
3632 if (ntohs(micbuf.typelen) <= 0x05DC) {
3633 if (len <= sizeof(micbuf) + ETH_ALEN * 2)
3634 goto badmic;
3635
3636 off = sizeof(micbuf);
3637 skb_trim (skb, len - off);
3638 }
3639 }
3640 memcpy(buffer + ETH_ALEN * 2,
3641 ai->rxfids[0].virtual_host_addr + ETH_ALEN * 2 + off,
3642 len - ETH_ALEN * 2 - off);
3643 if (decapsulate (ai, &micbuf, (etherHead*)buffer, len - off - ETH_ALEN * 2)) {
3644badmic:
3645 dev_kfree_skb_irq (skb);
3646 goto badrx;
3647 }
1da177e4
LT
3648#ifdef WIRELESS_SPY
3649 if (ai->spy_data.spy_number > 0) {
3650 char *sa;
3651 struct iw_quality wstats;
3652 /* Prepare spy data : addr + qual */
3653 sa = buffer + ETH_ALEN;
3654 wstats.qual = 0; /* XXX Where do I get that info from ??? */
3655 wstats.level = 0;
3656 wstats.updated = 0;
3657 /* Update spy records */
3658 wireless_spy_update(ai->dev, sa, &wstats);
3659 }
3660#endif /* WIRELESS_SPY */
3661
1da177e4
LT
3662 skb->ip_summed = CHECKSUM_NONE;
3663 skb->protocol = eth_type_trans(skb, ai->dev);
3664 skb->dev->last_rx = jiffies;
3665 netif_rx(skb);
3666 }
3667badrx:
3668 if (rxd.valid == 0) {
3669 rxd.valid = 1;
3670 rxd.rdy = 0;
3671 rxd.len = PKTSIZE;
3672 memcpy_toio(ai->rxfids[0].card_ram_off, &rxd, sizeof(rxd));
3673 }
3674}
3675
3676void mpi_receive_802_11 (struct airo_info *ai)
3677{
3678 RxFid rxd;
3679 struct sk_buff *skb = NULL;
0300b332
AV
3680 u16 len, hdrlen = 0;
3681 __le16 fc;
1da177e4
LT
3682#pragma pack(1)
3683 struct {
3684 u16 status, len;
3685 u8 rssi[2];
3686 u8 rate;
3687 u8 freq;
3688 u16 tmp[4];
3689 } hdr;
3690#pragma pack()
3691 u16 gap;
3692 u16 *buffer;
3693 char *ptr = ai->rxfids[0].virtual_host_addr+4;
3694
3695 memcpy_fromio(&rxd, ai->rxfids[0].card_ram_off, sizeof(rxd));
3696 memcpy ((char *)&hdr, ptr, sizeof(hdr));
3697 ptr += sizeof(hdr);
3698 /* Bad CRC. Ignore packet */
3699 if (le16_to_cpu(hdr.status) & 2)
3700 hdr.len = 0;
3701 if (ai->wifidev == NULL)
3702 hdr.len = 0;
3703 len = le16_to_cpu(hdr.len);
15db2763 3704 if (len > AIRO_DEF_MTU) {
934d8bf1 3705 airo_print_err(ai->dev->name, "Bad size %d", len);
1da177e4
LT
3706 goto badrx;
3707 }
3708 if (len == 0)
3709 goto badrx;
3710
0300b332
AV
3711 fc = get_unaligned((__le16 *)ptr);
3712 hdrlen = header_len(fc);
1da177e4
LT
3713
3714 skb = dev_alloc_skb( len + hdrlen + 2 );
3715 if ( !skb ) {
3716 ai->stats.rx_dropped++;
3717 goto badrx;
3718 }
3719 buffer = (u16*)skb_put (skb, len + hdrlen);
3720 memcpy ((char *)buffer, ptr, hdrlen);
3721 ptr += hdrlen;
3722 if (hdrlen == 24)
3723 ptr += 6;
3724 memcpy ((char *)&gap, ptr, sizeof(gap));
3725 ptr += sizeof(gap);
3726 gap = le16_to_cpu(gap);
3727 if (gap) {
3728 if (gap <= 8)
3729 ptr += gap;
3730 else
934d8bf1
DW
3731 airo_print_err(ai->dev->name,
3732 "gaplen too big. Problems will follow...");
1da177e4
LT
3733 }
3734 memcpy ((char *)buffer + hdrlen, ptr, len);
3735 ptr += len;
3736#ifdef IW_WIRELESS_SPY /* defined in iw_handler.h */
3737 if (ai->spy_data.spy_number > 0) {
3738 char *sa;
3739 struct iw_quality wstats;
3740 /* Prepare spy data : addr + qual */
3741 sa = (char*)buffer + 10;
3742 wstats.qual = hdr.rssi[0];
3743 if (ai->rssi)
3744 wstats.level = 0x100 - ai->rssi[hdr.rssi[1]].rssidBm;
3745 else
3746 wstats.level = (hdr.rssi[1] + 321) / 2;
41480af2
DW
3747 wstats.noise = ai->wstats.qual.noise;
3748 wstats.updated = IW_QUAL_QUAL_UPDATED
3749 | IW_QUAL_LEVEL_UPDATED
ce6623c3 3750 | IW_QUAL_DBM;
1da177e4
LT
3751 /* Update spy records */
3752 wireless_spy_update(ai->dev, sa, &wstats);
3753 }
3754#endif /* IW_WIRELESS_SPY */
459a98ed 3755 skb_reset_mac_header(skb);
1da177e4
LT
3756 skb->pkt_type = PACKET_OTHERHOST;
3757 skb->dev = ai->wifidev;
3758 skb->protocol = htons(ETH_P_802_2);
3759 skb->dev->last_rx = jiffies;
3760 skb->ip_summed = CHECKSUM_NONE;
3761 netif_rx( skb );
3762badrx:
3763 if (rxd.valid == 0) {
3764 rxd.valid = 1;
3765 rxd.rdy = 0;
3766 rxd.len = PKTSIZE;
3767 memcpy_toio(ai->rxfids[0].card_ram_off, &rxd, sizeof(rxd));
3768 }
3769}
3770
3771static u16 setup_card(struct airo_info *ai, u8 *mac, int lock)
3772{
3773 Cmd cmd;
3774 Resp rsp;
3775 int status;
3776 int i;
3777 SsidRid mySsid;
3778 u16 lastindex;
3779 WepKeyRid wkr;
3780 int rc;
3781
3782 memset( &mySsid, 0, sizeof( mySsid ) );
b4558ea9
JJ
3783 kfree (ai->flash);
3784 ai->flash = NULL;
1da177e4
LT
3785
3786 /* The NOP is the first step in getting the card going */
3787 cmd.cmd = NOP;
3788 cmd.parm0 = cmd.parm1 = cmd.parm2 = 0;
3789 if (lock && down_interruptible(&ai->sem))
3790 return ERROR;
3791 if ( issuecommand( ai, &cmd, &rsp ) != SUCCESS ) {
3792 if (lock)
3793 up(&ai->sem);
3794 return ERROR;
3795 }
3796 disable_MAC( ai, 0);
3797
3798 // Let's figure out if we need to use the AUX port
3799 if (!test_bit(FLAG_MPI,&ai->flags)) {
3800 cmd.cmd = CMD_ENABLEAUX;
3801 if (issuecommand(ai, &cmd, &rsp) != SUCCESS) {
3802 if (lock)
3803 up(&ai->sem);
934d8bf1 3804 airo_print_err(ai->dev->name, "Error checking for AUX port");
1da177e4
LT
3805 return ERROR;
3806 }
3807 if (!aux_bap || rsp.status & 0xff00) {
3808 ai->bap_read = fast_bap_read;
934d8bf1 3809 airo_print_dbg(ai->dev->name, "Doing fast bap_reads");
1da177e4
LT
3810 } else {
3811 ai->bap_read = aux_bap_read;
934d8bf1 3812 airo_print_dbg(ai->dev->name, "Doing AUX bap_reads");
1da177e4
LT
3813 }
3814 }
3815 if (lock)
3816 up(&ai->sem);
3817 if (ai->config.len == 0) {
3818 tdsRssiRid rssi_rid;
3819 CapabilityRid cap_rid;
3820
b4558ea9
JJ
3821 kfree(ai->APList);
3822 ai->APList = NULL;
3823 kfree(ai->SSID);
3824 ai->SSID = NULL;
1da177e4
LT
3825 // general configuration (read/modify/write)
3826 status = readConfigRid(ai, lock);
3827 if ( status != SUCCESS ) return ERROR;
3828
3829 status = readCapabilityRid(ai, &cap_rid, lock);
3830 if ( status != SUCCESS ) return ERROR;
3831
3832 status = PC4500_readrid(ai,RID_RSSI,&rssi_rid,sizeof(rssi_rid),lock);
3833 if ( status == SUCCESS ) {
3834 if (ai->rssi || (ai->rssi = kmalloc(512, GFP_KERNEL)) != NULL)
41480af2 3835 memcpy(ai->rssi, (u8*)&rssi_rid + 2, 512); /* Skip RID length member */
1da177e4
LT
3836 }
3837 else {
b4558ea9
JJ
3838 kfree(ai->rssi);
3839 ai->rssi = NULL;
1da177e4
LT
3840 if (cap_rid.softCap & 8)
3841 ai->config.rmode |= RXMODE_NORMALIZED_RSSI;
3842 else
934d8bf1
DW
3843 airo_print_warn(ai->dev->name, "unknown received signal "
3844 "level scale");
1da177e4
LT
3845 }
3846 ai->config.opmode = adhoc ? MODE_STA_IBSS : MODE_STA_ESS;
3847 ai->config.authType = AUTH_OPEN;
3848 ai->config.modulation = MOD_CCK;
3849
1da177e4
LT
3850 if ((cap_rid.len>=sizeof(cap_rid)) && (cap_rid.extSoftCap&1) &&
3851 (micsetup(ai) == SUCCESS)) {
3852 ai->config.opmode |= MODE_MIC;
3853 set_bit(FLAG_MIC_CAPABLE, &ai->flags);
3854 }
1da177e4
LT
3855
3856 /* Save off the MAC */
3857 for( i = 0; i < ETH_ALEN; i++ ) {
3858 mac[i] = ai->config.macAddr[i];
3859 }
3860
3861 /* Check to see if there are any insmod configured
3862 rates to add */
3863 if ( rates[0] ) {
3864 int i = 0;
3865 memset(ai->config.rates,0,sizeof(ai->config.rates));
3866 for( i = 0; i < 8 && rates[i]; i++ ) {
3867 ai->config.rates[i] = rates[i];
3868 }
3869 }
3870 if ( basic_rate > 0 ) {
3871 int i;
3872 for( i = 0; i < 8; i++ ) {
3873 if ( ai->config.rates[i] == basic_rate ||
3874 !ai->config.rates ) {
3875 ai->config.rates[i] = basic_rate | 0x80;
3876 break;
3877 }
3878 }
3879 }
3880 set_bit (FLAG_COMMIT, &ai->flags);
3881 }
3882
3883 /* Setup the SSIDs if present */
3884 if ( ssids[0] ) {
3885 int i;
3886 for( i = 0; i < 3 && ssids[i]; i++ ) {
3887 mySsid.ssids[i].len = strlen(ssids[i]);
3888 if ( mySsid.ssids[i].len > 32 )
3889 mySsid.ssids[i].len = 32;
3890 memcpy(mySsid.ssids[i].ssid, ssids[i],
3891 mySsid.ssids[i].len);
3892 }
3893 mySsid.len = sizeof(mySsid);
3894 }
3895
3896 status = writeConfigRid(ai, lock);
3897 if ( status != SUCCESS ) return ERROR;
3898
3899 /* Set up the SSID list */
3900 if ( ssids[0] ) {
3901 status = writeSsidRid(ai, &mySsid, lock);
3902 if ( status != SUCCESS ) return ERROR;
3903 }
3904
175ec1a1
MS
3905 status = enable_MAC(ai, lock);
3906 if (status != SUCCESS)
1da177e4 3907 return ERROR;
1da177e4
LT
3908
3909 /* Grab the initial wep key, we gotta save it for auto_wep */
3910 rc = readWepKeyRid(ai, &wkr, 1, lock);
3911 if (rc == SUCCESS) do {
3912 lastindex = wkr.kindex;
3913 if (wkr.kindex == 0xffff) {
3914 ai->defindex = wkr.mac[0];
3915 }
3916 rc = readWepKeyRid(ai, &wkr, 0, lock);
3917 } while(lastindex != wkr.kindex);
3918
1c2b7db8 3919 try_auto_wep(ai);
1da177e4
LT
3920
3921 return SUCCESS;
3922}
3923
3924static u16 issuecommand(struct airo_info *ai, Cmd *pCmd, Resp *pRsp) {
3925 // Im really paranoid about letting it run forever!
3926 int max_tries = 600000;
3927
3928 if (IN4500(ai, EVSTAT) & EV_CMD)
3929 OUT4500(ai, EVACK, EV_CMD);
3930
3931 OUT4500(ai, PARAM0, pCmd->parm0);
3932 OUT4500(ai, PARAM1, pCmd->parm1);
3933 OUT4500(ai, PARAM2, pCmd->parm2);
3934 OUT4500(ai, COMMAND, pCmd->cmd);
3935
3936 while (max_tries-- && (IN4500(ai, EVSTAT) & EV_CMD) == 0) {
3937 if ((IN4500(ai, COMMAND)) == pCmd->cmd)
3938 // PC4500 didn't notice command, try again
3939 OUT4500(ai, COMMAND, pCmd->cmd);
3940 if (!in_atomic() && (max_tries & 255) == 0)
3941 schedule();
3942 }
3943
3944 if ( max_tries == -1 ) {
934d8bf1
DW
3945 airo_print_err(ai->dev->name,
3946 "Max tries exceeded when issueing command");
1da177e4
LT
3947 if (IN4500(ai, COMMAND) & COMMAND_BUSY)
3948 OUT4500(ai, EVACK, EV_CLEARCOMMANDBUSY);
3949 return ERROR;
3950 }
3951
3952 // command completed
3953 pRsp->status = IN4500(ai, STATUS);
3954 pRsp->rsp0 = IN4500(ai, RESP0);
3955 pRsp->rsp1 = IN4500(ai, RESP1);
3956 pRsp->rsp2 = IN4500(ai, RESP2);
13dca9b8
RS
3957 if ((pRsp->status & 0xff00)!=0 && pCmd->cmd != CMD_SOFTRESET)
3958 airo_print_err(ai->dev->name,
3959 "cmd:%x status:%x rsp0:%x rsp1:%x rsp2:%x",
3960 pCmd->cmd, pRsp->status, pRsp->rsp0, pRsp->rsp1,
3961 pRsp->rsp2);
1da177e4
LT
3962
3963 // clear stuck command busy if necessary
3964 if (IN4500(ai, COMMAND) & COMMAND_BUSY) {
3965 OUT4500(ai, EVACK, EV_CLEARCOMMANDBUSY);
3966 }
3967 // acknowledge processing the status/response
3968 OUT4500(ai, EVACK, EV_CMD);
3969
3970 return SUCCESS;
3971}
3972
3973/* Sets up the bap to start exchange data. whichbap should
3974 * be one of the BAP0 or BAP1 defines. Locks should be held before
3975 * calling! */
3976static int bap_setup(struct airo_info *ai, u16 rid, u16 offset, int whichbap )
3977{
3978 int timeout = 50;
3979 int max_tries = 3;
3980
3981 OUT4500(ai, SELECT0+whichbap, rid);
3982 OUT4500(ai, OFFSET0+whichbap, offset);
3983 while (1) {
3984 int status = IN4500(ai, OFFSET0+whichbap);
3985 if (status & BAP_BUSY) {
3986 /* This isn't really a timeout, but its kinda
3987 close */
3988 if (timeout--) {
3989 continue;
3990 }
3991 } else if ( status & BAP_ERR ) {
3992 /* invalid rid or offset */
934d8bf1 3993 airo_print_err(ai->dev->name, "BAP error %x %d",
1da177e4
LT
3994 status, whichbap );
3995 return ERROR;
3996 } else if (status & BAP_DONE) { // success
3997 return SUCCESS;
3998 }
3999 if ( !(max_tries--) ) {
934d8bf1 4000 airo_print_err(ai->dev->name,
1138c37b 4001 "BAP setup error too many retries\n");
1da177e4
LT
4002 return ERROR;
4003 }
4004 // -- PC4500 missed it, try again
4005 OUT4500(ai, SELECT0+whichbap, rid);
4006 OUT4500(ai, OFFSET0+whichbap, offset);
4007 timeout = 50;
4008 }
4009}
4010
4011/* should only be called by aux_bap_read. This aux function and the
4012 following use concepts not documented in the developers guide. I
4013 got them from a patch given to my by Aironet */
4014static u16 aux_setup(struct airo_info *ai, u16 page,
4015 u16 offset, u16 *len)
4016{
4017 u16 next;
4018
4019 OUT4500(ai, AUXPAGE, page);
4020 OUT4500(ai, AUXOFF, 0);
4021 next = IN4500(ai, AUXDATA);
4022 *len = IN4500(ai, AUXDATA)&0xff;
4023 if (offset != 4) OUT4500(ai, AUXOFF, offset);
4024 return next;
4025}
4026
4027/* requires call to bap_setup() first */
4028static int aux_bap_read(struct airo_info *ai, u16 *pu16Dst,
4029 int bytelen, int whichbap)
4030{
4031 u16 len;
4032 u16 page;
4033 u16 offset;
4034 u16 next;
4035 int words;
4036 int i;
4037 unsigned long flags;
4038
4039 spin_lock_irqsave(&ai->aux_lock, flags);
4040 page = IN4500(ai, SWS0+whichbap);
4041 offset = IN4500(ai, SWS2+whichbap);
4042 next = aux_setup(ai, page, offset, &len);
4043 words = (bytelen+1)>>1;
4044
4045 for (i=0; i<words;) {
4046 int count;
4047 count = (len>>1) < (words-i) ? (len>>1) : (words-i);
4048 if ( !do8bitIO )
4049 insw( ai->dev->base_addr+DATA0+whichbap,
4050 pu16Dst+i,count );
4051 else
4052 insb( ai->dev->base_addr+DATA0+whichbap,
4053 pu16Dst+i, count << 1 );
4054 i += count;
4055 if (i<words) {
4056 next = aux_setup(ai, next, 4, &len);
4057 }
4058 }
4059 spin_unlock_irqrestore(&ai->aux_lock, flags);
4060 return SUCCESS;
4061}
4062
4063
4064/* requires call to bap_setup() first */
4065static int fast_bap_read(struct airo_info *ai, u16 *pu16Dst,
4066 int bytelen, int whichbap)
4067{
4068 bytelen = (bytelen + 1) & (~1); // round up to even value
4069 if ( !do8bitIO )
4070 insw( ai->dev->base_addr+DATA0+whichbap, pu16Dst, bytelen>>1 );
4071 else
4072 insb( ai->dev->base_addr+DATA0+whichbap, pu16Dst, bytelen );
4073 return SUCCESS;
4074}
4075
4076/* requires call to bap_setup() first */
4077static int bap_write(struct airo_info *ai, const u16 *pu16Src,
4078 int bytelen, int whichbap)
4079{
4080 bytelen = (bytelen + 1) & (~1); // round up to even value
4081 if ( !do8bitIO )
4082 outsw( ai->dev->base_addr+DATA0+whichbap,
4083 pu16Src, bytelen>>1 );
4084 else
4085 outsb( ai->dev->base_addr+DATA0+whichbap, pu16Src, bytelen );
4086 return SUCCESS;
4087}
4088
4089static int PC4500_accessrid(struct airo_info *ai, u16 rid, u16 accmd)
4090{
4091 Cmd cmd; /* for issuing commands */
4092 Resp rsp; /* response from commands */
4093 u16 status;
4094
4095 memset(&cmd, 0, sizeof(cmd));
4096 cmd.cmd = accmd;
4097 cmd.parm0 = rid;
4098 status = issuecommand(ai, &cmd, &rsp);
4099 if (status != 0) return status;
4100 if ( (rsp.status & 0x7F00) != 0) {
4101 return (accmd << 8) + (rsp.rsp0 & 0xFF);
4102 }
4103 return 0;
4104}
4105
4106/* Note, that we are using BAP1 which is also used by transmit, so
4107 * we must get a lock. */
4108static int PC4500_readrid(struct airo_info *ai, u16 rid, void *pBuf, int len, int lock)
4109{
4110 u16 status;
4111 int rc = SUCCESS;
4112
4113 if (lock) {
4114 if (down_interruptible(&ai->sem))
4115 return ERROR;
4116 }
4117 if (test_bit(FLAG_MPI,&ai->flags)) {
4118 Cmd cmd;
4119 Resp rsp;
4120
4121 memset(&cmd, 0, sizeof(cmd));
4122 memset(&rsp, 0, sizeof(rsp));
4123 ai->config_desc.rid_desc.valid = 1;
4124 ai->config_desc.rid_desc.len = RIDSIZE;
4125 ai->config_desc.rid_desc.rid = 0;
4126 ai->config_desc.rid_desc.host_addr = ai->ridbus;
4127
4128 cmd.cmd = CMD_ACCESS;
4129 cmd.parm0 = rid;
4130
4131 memcpy_toio(ai->config_desc.card_ram_off,
4132 &ai->config_desc.rid_desc, sizeof(Rid));
4133
4134 rc = issuecommand(ai, &cmd, &rsp);
4135
4136 if (rsp.status & 0x7f00)
4137 rc = rsp.rsp0;
4138 if (!rc)
4139 memcpy(pBuf, ai->config_desc.virtual_host_addr, len);
4140 goto done;
4141 } else {
4142 if ((status = PC4500_accessrid(ai, rid, CMD_ACCESS))!=SUCCESS) {
4143 rc = status;
4144 goto done;
4145 }
4146 if (bap_setup(ai, rid, 0, BAP1) != SUCCESS) {
4147 rc = ERROR;
4148 goto done;
4149 }
4150 // read the rid length field
4151 bap_read(ai, pBuf, 2, BAP1);
4152 // length for remaining part of rid
4153 len = min(len, (int)le16_to_cpu(*(u16*)pBuf)) - 2;
4154
4155 if ( len <= 2 ) {
934d8bf1
DW
4156 airo_print_err(ai->dev->name,
4157 "Rid %x has a length of %d which is too short",
1da177e4
LT
4158 (int)rid, (int)len );
4159 rc = ERROR;
4160 goto done;
4161 }
4162 // read remainder of the rid
4163 rc = bap_read(ai, ((u16*)pBuf)+1, len, BAP1);
4164 }
4165done:
4166 if (lock)
4167 up(&ai->sem);
4168 return rc;
4169}
4170
4171/* Note, that we are using BAP1 which is also used by transmit, so
4172 * make sure this isnt called when a transmit is happening */
4173static int PC4500_writerid(struct airo_info *ai, u16 rid,
4174 const void *pBuf, int len, int lock)
4175{
4176 u16 status;
4177 int rc = SUCCESS;
4178
4179 *(u16*)pBuf = cpu_to_le16((u16)len);
4180
4181 if (lock) {
4182 if (down_interruptible(&ai->sem))
4183 return ERROR;
4184 }
4185 if (test_bit(FLAG_MPI,&ai->flags)) {
4186 Cmd cmd;
4187 Resp rsp;
4188
f89b2321 4189 if (test_bit(FLAG_ENABLED, &ai->flags) && (RID_WEP_TEMP != rid))
934d8bf1
DW
4190 airo_print_err(ai->dev->name,
4191 "%s: MAC should be disabled (rid=%04x)",
1da177e4
LT
4192 __FUNCTION__, rid);
4193 memset(&cmd, 0, sizeof(cmd));
4194 memset(&rsp, 0, sizeof(rsp));
4195
4196 ai->config_desc.rid_desc.valid = 1;
4197 ai->config_desc.rid_desc.len = *((u16 *)pBuf);
4198 ai->config_desc.rid_desc.rid = 0;
4199
4200 cmd.cmd = CMD_WRITERID;
4201 cmd.parm0 = rid;
4202
4203 memcpy_toio(ai->config_desc.card_ram_off,
4204 &ai->config_desc.rid_desc, sizeof(Rid));
4205
4206 if (len < 4 || len > 2047) {
934d8bf1 4207 airo_print_err(ai->dev->name, "%s: len=%d", __FUNCTION__, len);
1da177e4
LT
4208 rc = -1;
4209 } else {
4210 memcpy((char *)ai->config_desc.virtual_host_addr,
4211 pBuf, len);
4212
4213 rc = issuecommand(ai, &cmd, &rsp);
4214 if ((rc & 0xff00) != 0) {
934d8bf1
DW
4215 airo_print_err(ai->dev->name, "%s: Write rid Error %d",
4216 __FUNCTION__, rc);
4217 airo_print_err(ai->dev->name, "%s: Cmd=%04x",
4218 __FUNCTION__, cmd.cmd);
1da177e4
LT
4219 }
4220
4221 if ((rsp.status & 0x7f00))
4222 rc = rsp.rsp0;
4223 }
4224 } else {
4225 // --- first access so that we can write the rid data
4226 if ( (status = PC4500_accessrid(ai, rid, CMD_ACCESS)) != 0) {
4227 rc = status;
4228 goto done;
4229 }
4230 // --- now write the rid data
4231 if (bap_setup(ai, rid, 0, BAP1) != SUCCESS) {
4232 rc = ERROR;
4233 goto done;
4234 }
4235 bap_write(ai, pBuf, len, BAP1);
4236 // ---now commit the rid data
4237 rc = PC4500_accessrid(ai, rid, 0x100|CMD_ACCESS);
4238 }
4239done:
4240 if (lock)
4241 up(&ai->sem);
4242 return rc;
4243}
4244
4245/* Allocates a FID to be used for transmitting packets. We only use
4246 one for now. */
4247static u16 transmit_allocate(struct airo_info *ai, int lenPayload, int raw)
4248{
4249 unsigned int loop = 3000;
4250 Cmd cmd;
4251 Resp rsp;
4252 u16 txFid;
4253 u16 txControl;
4254
4255 cmd.cmd = CMD_ALLOCATETX;
4256 cmd.parm0 = lenPayload;
4257 if (down_interruptible(&ai->sem))
4258 return ERROR;
4259 if (issuecommand(ai, &cmd, &rsp) != SUCCESS) {
4260 txFid = ERROR;
4261 goto done;
4262 }
4263 if ( (rsp.status & 0xFF00) != 0) {
4264 txFid = ERROR;
4265 goto done;
4266 }
4267 /* wait for the allocate event/indication
4268 * It makes me kind of nervous that this can just sit here and spin,
4269 * but in practice it only loops like four times. */
4270 while (((IN4500(ai, EVSTAT) & EV_ALLOC) == 0) && --loop);
4271 if (!loop) {
4272 txFid = ERROR;
4273 goto done;
4274 }
4275
4276 // get the allocated fid and acknowledge
4277 txFid = IN4500(ai, TXALLOCFID);
4278 OUT4500(ai, EVACK, EV_ALLOC);
4279
4280 /* The CARD is pretty cool since it converts the ethernet packet
4281 * into 802.11. Also note that we don't release the FID since we
4282 * will be using the same one over and over again. */
4283 /* We only have to setup the control once since we are not
4284 * releasing the fid. */
4285 if (raw)
4286 txControl = cpu_to_le16(TXCTL_TXOK | TXCTL_TXEX | TXCTL_802_11
4287 | TXCTL_ETHERNET | TXCTL_NORELEASE);
4288 else
4289 txControl = cpu_to_le16(TXCTL_TXOK | TXCTL_TXEX | TXCTL_802_3
4290 | TXCTL_ETHERNET | TXCTL_NORELEASE);
4291 if (bap_setup(ai, txFid, 0x0008, BAP1) != SUCCESS)
4292 txFid = ERROR;
4293 else
4294 bap_write(ai, &txControl, sizeof(txControl), BAP1);
4295
4296done:
4297 up(&ai->sem);
4298
4299 return txFid;
4300}
4301
4302/* In general BAP1 is dedicated to transmiting packets. However,
4303 since we need a BAP when accessing RIDs, we also use BAP1 for that.
4304 Make sure the BAP1 spinlock is held when this is called. */
4305static int transmit_802_3_packet(struct airo_info *ai, int len, char *pPacket)
4306{
4307 u16 payloadLen;
4308 Cmd cmd;
4309 Resp rsp;
4310 int miclen = 0;
4311 u16 txFid = len;
4312 MICBuffer pMic;
4313
4314 len >>= 16;
4315
4316 if (len <= ETH_ALEN * 2) {
934d8bf1 4317 airo_print_warn(ai->dev->name, "Short packet %d", len);
1da177e4
LT
4318 return ERROR;
4319 }
4320 len -= ETH_ALEN * 2;
4321
1da177e4
LT
4322 if (test_bit(FLAG_MIC_CAPABLE, &ai->flags) && ai->micstats.enabled &&
4323 (ntohs(((u16 *)pPacket)[6]) != 0x888E)) {
4324 if (encapsulate(ai,(etherHead *)pPacket,&pMic,len) != SUCCESS)
4325 return ERROR;
4326 miclen = sizeof(pMic);
4327 }
1da177e4
LT
4328 // packet is destination[6], source[6], payload[len-12]
4329 // write the payload length and dst/src/payload
4330 if (bap_setup(ai, txFid, 0x0036, BAP1) != SUCCESS) return ERROR;
4331 /* The hardware addresses aren't counted as part of the payload, so
4332 * we have to subtract the 12 bytes for the addresses off */
4333 payloadLen = cpu_to_le16(len + miclen);
4334 bap_write(ai, &payloadLen, sizeof(payloadLen),BAP1);
4335 bap_write(ai, (const u16*)pPacket, sizeof(etherHead), BAP1);
4336 if (miclen)
4337 bap_write(ai, (const u16*)&pMic, miclen, BAP1);
4338 bap_write(ai, (const u16*)(pPacket + sizeof(etherHead)), len, BAP1);
4339 // issue the transmit command
4340 memset( &cmd, 0, sizeof( cmd ) );
4341 cmd.cmd = CMD_TRANSMIT;
4342 cmd.parm0 = txFid;
4343 if (issuecommand(ai, &cmd, &rsp) != SUCCESS) return ERROR;
4344 if ( (rsp.status & 0xFF00) != 0) return ERROR;
4345 return SUCCESS;
4346}
4347
4348static int transmit_802_11_packet(struct airo_info *ai, int len, char *pPacket)
4349{
4350 u16 fc, payloadLen;
4351 Cmd cmd;
4352 Resp rsp;
4353 int hdrlen;
977b143c
AV
4354 static u8 tail[(30-10) + 2 + 6] = {[30-10] = 6};
4355 /* padding of header to full size + le16 gaplen (6) + gaplen bytes */
1da177e4
LT
4356 u16 txFid = len;
4357 len >>= 16;
1da177e4 4358
0300b332
AV
4359 fc = *(__le16*)pPacket;
4360 hdrlen = header_len(fc);
1da177e4
LT
4361
4362 if (len < hdrlen) {
934d8bf1 4363 airo_print_warn(ai->dev->name, "Short packet %d", len);
1da177e4
LT
4364 return ERROR;
4365 }
4366
4367 /* packet is 802.11 header + payload
4368 * write the payload length and dst/src/payload */
4369 if (bap_setup(ai, txFid, 6, BAP1) != SUCCESS) return ERROR;
4370 /* The 802.11 header aren't counted as part of the payload, so
4371 * we have to subtract the header bytes off */
4372 payloadLen = cpu_to_le16(len-hdrlen);
4373 bap_write(ai, &payloadLen, sizeof(payloadLen),BAP1);
4374 if (bap_setup(ai, txFid, 0x0014, BAP1) != SUCCESS) return ERROR;
4375 bap_write(ai, (const u16*)pPacket, hdrlen, BAP1);
977b143c 4376 bap_write(ai, (u16 *)(tail + (hdrlen - 10)), 38 - hdrlen, BAP1);
1da177e4
LT
4377
4378 bap_write(ai, (const u16*)(pPacket + hdrlen), len - hdrlen, BAP1);
4379 // issue the transmit command
4380 memset( &cmd, 0, sizeof( cmd ) );
4381 cmd.cmd = CMD_TRANSMIT;
4382 cmd.parm0 = txFid;
4383 if (issuecommand(ai, &cmd, &rsp) != SUCCESS) return ERROR;
4384 if ( (rsp.status & 0xFF00) != 0) return ERROR;
4385 return SUCCESS;
4386}
4387
4388/*
4389 * This is the proc_fs routines. It is a bit messier than I would
4390 * like! Feel free to clean it up!
4391 */
4392
4393static ssize_t proc_read( struct file *file,
4394 char __user *buffer,
4395 size_t len,
4396 loff_t *offset);
4397
4398static ssize_t proc_write( struct file *file,
4399 const char __user *buffer,
4400 size_t len,
4401 loff_t *offset );
4402static int proc_close( struct inode *inode, struct file *file );
4403
4404static int proc_stats_open( struct inode *inode, struct file *file );
4405static int proc_statsdelta_open( struct inode *inode, struct file *file );
4406static int proc_status_open( struct inode *inode, struct file *file );
4407static int proc_SSID_open( struct inode *inode, struct file *file );
4408static int proc_APList_open( struct inode *inode, struct file *file );
4409static int proc_BSSList_open( struct inode *inode, struct file *file );
4410static int proc_config_open( struct inode *inode, struct file *file );
4411static int proc_wepkey_open( struct inode *inode, struct file *file );
4412
d54b1fdb 4413static const struct file_operations proc_statsdelta_ops = {
1da177e4
LT
4414 .read = proc_read,
4415 .open = proc_statsdelta_open,
4416 .release = proc_close
4417};
4418
d54b1fdb 4419static const struct file_operations proc_stats_ops = {
1da177e4
LT
4420 .read = proc_read,
4421 .open = proc_stats_open,
4422 .release = proc_close
4423};
4424
d54b1fdb 4425static const struct file_operations proc_status_ops = {
1da177e4
LT
4426 .read = proc_read,
4427 .open = proc_status_open,
4428 .release = proc_close
4429};
4430
d54b1fdb 4431static const struct file_operations proc_SSID_ops = {
1da177e4
LT
4432 .read = proc_read,
4433 .write = proc_write,
4434 .open = proc_SSID_open,
4435 .release = proc_close
4436};
4437
d54b1fdb 4438static const struct file_operations proc_BSSList_ops = {
1da177e4
LT
4439 .read = proc_read,
4440 .write = proc_write,
4441 .open = proc_BSSList_open,
4442 .release = proc_close
4443};
4444
d54b1fdb 4445static const struct file_operations proc_APList_ops = {
1da177e4
LT
4446 .read = proc_read,
4447 .write = proc_write,
4448 .open = proc_APList_open,
4449 .release = proc_close
4450};
4451
d54b1fdb 4452static const struct file_operations proc_config_ops = {
1da177e4
LT
4453 .read = proc_read,
4454 .write = proc_write,
4455 .open = proc_config_open,
4456 .release = proc_close
4457};
4458
d54b1fdb 4459static const struct file_operations proc_wepkey_ops = {
1da177e4
LT
4460 .read = proc_read,
4461 .write = proc_write,
4462 .open = proc_wepkey_open,
4463 .release = proc_close
4464};
4465
4466static struct proc_dir_entry *airo_entry;
4467
4468struct proc_data {
4469 int release_buffer;
4470 int readlen;
4471 char *rbuffer;
4472 int writelen;
4473 int maxwritelen;
4474 char *wbuffer;
4475 void (*on_close) (struct inode *, struct file *);
4476};
4477
4478#ifndef SETPROC_OPS
4479#define SETPROC_OPS(entry, ops) (entry)->proc_fops = &(ops)
4480#endif
4481
4482static int setup_proc_entry( struct net_device *dev,
4483 struct airo_info *apriv ) {
4484 struct proc_dir_entry *entry;
4485 /* First setup the device directory */
4486 strcpy(apriv->proc_name,dev->name);
4487 apriv->proc_entry = create_proc_entry(apriv->proc_name,
4488 S_IFDIR|airo_perm,
4489 airo_entry);
431aca5a
FM
4490 if (!apriv->proc_entry)
4491 goto fail;
4492 apriv->proc_entry->uid = proc_uid;
4493 apriv->proc_entry->gid = proc_gid;
4494 apriv->proc_entry->owner = THIS_MODULE;
1da177e4
LT
4495
4496 /* Setup the StatsDelta */
4497 entry = create_proc_entry("StatsDelta",
4498 S_IFREG | (S_IRUGO&proc_perm),
4499 apriv->proc_entry);
431aca5a
FM
4500 if (!entry)
4501 goto fail_stats_delta;
4502 entry->uid = proc_uid;
4503 entry->gid = proc_gid;
1da177e4 4504 entry->data = dev;
431aca5a 4505 entry->owner = THIS_MODULE;
1da177e4
LT
4506 SETPROC_OPS(entry, proc_statsdelta_ops);
4507
4508 /* Setup the Stats */
4509 entry = create_proc_entry("Stats",
4510 S_IFREG | (S_IRUGO&proc_perm),
4511 apriv->proc_entry);
431aca5a
FM
4512 if (!entry)
4513 goto fail_stats;
4514 entry->uid = proc_uid;
4515 entry->gid = proc_gid;
1da177e4 4516 entry->data = dev;
431aca5a 4517 entry->owner = THIS_MODULE;
1da177e4
LT
4518 SETPROC_OPS(entry, proc_stats_ops);
4519
4520 /* Setup the Status */
4521 entry = create_proc_entry("Status",
4522 S_IFREG | (S_IRUGO&proc_perm),
4523 apriv->proc_entry);
431aca5a
FM
4524 if (!entry)
4525 goto fail_status;
4526 entry->uid = proc_uid;
4527 entry->gid = proc_gid;
1da177e4 4528 entry->data = dev;
431aca5a 4529 entry->owner = THIS_MODULE;
1da177e4
LT
4530 SETPROC_OPS(entry, proc_status_ops);
4531
4532 /* Setup the Config */
4533 entry = create_proc_entry("Config",
4534 S_IFREG | proc_perm,
4535 apriv->proc_entry);
431aca5a
FM
4536 if (!entry)
4537 goto fail_config;
4538 entry->uid = proc_uid;
4539 entry->gid = proc_gid;
1da177e4 4540 entry->data = dev;
431aca5a 4541 entry->owner = THIS_MODULE;
1da177e4
LT
4542 SETPROC_OPS(entry, proc_config_ops);
4543
4544 /* Setup the SSID */
4545 entry = create_proc_entry("SSID",
4546 S_IFREG | proc_perm,
4547 apriv->proc_entry);
431aca5a
FM
4548 if (!entry)
4549 goto fail_ssid;
4550 entry->uid = proc_uid;
4551 entry->gid = proc_gid;
1da177e4 4552 entry->data = dev;
431aca5a 4553 entry->owner = THIS_MODULE;
1da177e4
LT
4554 SETPROC_OPS(entry, proc_SSID_ops);
4555
4556 /* Setup the APList */
4557 entry = create_proc_entry("APList",
4558 S_IFREG | proc_perm,
4559 apriv->proc_entry);
431aca5a
FM
4560 if (!entry)
4561 goto fail_aplist;
4562 entry->uid = proc_uid;
4563 entry->gid = proc_gid;
1da177e4 4564 entry->data = dev;
431aca5a 4565 entry->owner = THIS_MODULE;
1da177e4
LT
4566 SETPROC_OPS(entry, proc_APList_ops);
4567
4568 /* Setup the BSSList */
4569 entry = create_proc_entry("BSSList",
4570 S_IFREG | proc_perm,
4571 apriv->proc_entry);
431aca5a
FM
4572 if (!entry)
4573 goto fail_bsslist;
1da177e4
LT
4574 entry->uid = proc_uid;
4575 entry->gid = proc_gid;
4576 entry->data = dev;
431aca5a 4577 entry->owner = THIS_MODULE;
1da177e4
LT
4578 SETPROC_OPS(entry, proc_BSSList_ops);
4579
4580 /* Setup the WepKey */
4581 entry = create_proc_entry("WepKey",
4582 S_IFREG | proc_perm,
4583 apriv->proc_entry);
431aca5a
FM
4584 if (!entry)
4585 goto fail_wepkey;
4586 entry->uid = proc_uid;
4587 entry->gid = proc_gid;
1da177e4 4588 entry->data = dev;
431aca5a 4589 entry->owner = THIS_MODULE;
1da177e4
LT
4590 SETPROC_OPS(entry, proc_wepkey_ops);
4591
4592 return 0;
431aca5a
FM
4593
4594fail_wepkey:
4595 remove_proc_entry("BSSList", apriv->proc_entry);
4596fail_bsslist:
4597 remove_proc_entry("APList", apriv->proc_entry);
4598fail_aplist:
4599 remove_proc_entry("SSID", apriv->proc_entry);
4600fail_ssid:
4601 remove_proc_entry("Config", apriv->proc_entry);
4602fail_config:
4603 remove_proc_entry("Status", apriv->proc_entry);
4604fail_status:
4605 remove_proc_entry("Stats", apriv->proc_entry);
4606fail_stats:
4607 remove_proc_entry("StatsDelta", apriv->proc_entry);
4608fail_stats_delta:
4609 remove_proc_entry(apriv->proc_name, airo_entry);
4610fail:
4611 return -ENOMEM;
1da177e4
LT
4612}
4613
4614static int takedown_proc_entry( struct net_device *dev,
4615 struct airo_info *apriv ) {
4616 if ( !apriv->proc_entry->namelen ) return 0;
4617 remove_proc_entry("Stats",apriv->proc_entry);
4618 remove_proc_entry("StatsDelta",apriv->proc_entry);
4619 remove_proc_entry("Status",apriv->proc_entry);
4620 remove_proc_entry("Config",apriv->proc_entry);
4621 remove_proc_entry("SSID",apriv->proc_entry);
4622 remove_proc_entry("APList",apriv->proc_entry);
4623 remove_proc_entry("BSSList",apriv->proc_entry);
4624 remove_proc_entry("WepKey",apriv->proc_entry);
4625 remove_proc_entry(apriv->proc_name,airo_entry);
4626 return 0;
4627}
4628
4629/*
4630 * What we want from the proc_fs is to be able to efficiently read
4631 * and write the configuration. To do this, we want to read the
4632 * configuration when the file is opened and write it when the file is
4633 * closed. So basically we allocate a read buffer at open and fill it
4634 * with data, and allocate a write buffer and read it at close.
4635 */
4636
4637/*
4638 * The read routine is generic, it relies on the preallocated rbuffer
4639 * to supply the data.
4640 */
4641static ssize_t proc_read( struct file *file,
4642 char __user *buffer,
4643 size_t len,
4644 loff_t *offset )
4645{
4646 loff_t pos = *offset;
4647 struct proc_data *priv = (struct proc_data*)file->private_data;
4648
4649 if (!priv->rbuffer)
4650 return -EINVAL;
4651
4652 if (pos < 0)
4653 return -EINVAL;
4654 if (pos >= priv->readlen)
4655 return 0;
4656 if (len > priv->readlen - pos)
4657 len = priv->readlen - pos;
4658 if (copy_to_user(buffer, priv->rbuffer + pos, len))
4659 return -EFAULT;
4660 *offset = pos + len;
4661 return len;
4662}
4663
4664/*
4665 * The write routine is generic, it fills in a preallocated rbuffer
4666 * to supply the data.
4667 */
4668static ssize_t proc_write( struct file *file,
4669 const char __user *buffer,
4670 size_t len,
4671 loff_t *offset )
4672{
4673 loff_t pos = *offset;
4674 struct proc_data *priv = (struct proc_data*)file->private_data;
4675
4676 if (!priv->wbuffer)
4677 return -EINVAL;
4678
4679 if (pos < 0)
4680 return -EINVAL;
4681 if (pos >= priv->maxwritelen)
4682 return 0;
4683 if (len > priv->maxwritelen - pos)
4684 len = priv->maxwritelen - pos;
4685 if (copy_from_user(priv->wbuffer + pos, buffer, len))
4686 return -EFAULT;
4687 if ( pos + len > priv->writelen )
4688 priv->writelen = len + file->f_pos;
4689 *offset = pos + len;
4690 return len;
4691}
4692
4693static int proc_status_open( struct inode *inode, struct file *file ) {
4694 struct proc_data *data;
4695 struct proc_dir_entry *dp = PDE(inode);
4696 struct net_device *dev = dp->data;
4697 struct airo_info *apriv = dev->priv;
4698 CapabilityRid cap_rid;
4699 StatusRid status_rid;
4700 int i;
4701
b69a3aa8 4702 if ((file->private_data = kzalloc(sizeof(struct proc_data ), GFP_KERNEL)) == NULL)
1da177e4 4703 return -ENOMEM;
1da177e4
LT
4704 data = (struct proc_data *)file->private_data;
4705 if ((data->rbuffer = kmalloc( 2048, GFP_KERNEL )) == NULL) {
4706 kfree (file->private_data);
4707 return -ENOMEM;
4708 }
4709
4710 readStatusRid(apriv, &status_rid, 1);
4711 readCapabilityRid(apriv, &cap_rid, 1);
4712
4713 i = sprintf(data->rbuffer, "Status: %s%s%s%s%s%s%s%s%s\n",
4714 status_rid.mode & 1 ? "CFG ": "",
4715 status_rid.mode & 2 ? "ACT ": "",
4716 status_rid.mode & 0x10 ? "SYN ": "",
4717 status_rid.mode & 0x20 ? "LNK ": "",
4718 status_rid.mode & 0x40 ? "LEAP ": "",
4719 status_rid.mode & 0x80 ? "PRIV ": "",
4720 status_rid.mode & 0x100 ? "KEY ": "",
4721 status_rid.mode & 0x200 ? "WEP ": "",
4722 status_rid.mode & 0x8000 ? "ERR ": "");
4723 sprintf( data->rbuffer+i, "Mode: %x\n"
4724 "Signal Strength: %d\n"
4725 "Signal Quality: %d\n"
4726 "SSID: %-.*s\n"
4727 "AP: %-.16s\n"
4728 "Freq: %d\n"
4729 "BitRate: %dmbs\n"
4730 "Driver Version: %s\n"
4731 "Device: %s\nManufacturer: %s\nFirmware Version: %s\n"
4732 "Radio type: %x\nCountry: %x\nHardware Version: %x\n"
4733 "Software Version: %x\nSoftware Subversion: %x\n"
4734 "Boot block version: %x\n",
4735 (int)status_rid.mode,
4736 (int)status_rid.normalizedSignalStrength,
4737 (int)status_rid.signalQuality,
4738 (int)status_rid.SSIDlen,
4739 status_rid.SSID,
4740 status_rid.apName,
4741 (int)status_rid.channel,
4742 (int)status_rid.currentXmitRate/2,
4743 version,
4744 cap_rid.prodName,
4745 cap_rid.manName,
4746 cap_rid.prodVer,
4747 cap_rid.radioType,
4748 cap_rid.country,
4749 cap_rid.hardVer,
4750 (int)cap_rid.softVer,
4751 (int)cap_rid.softSubVer,
4752 (int)cap_rid.bootBlockVer );
4753 data->readlen = strlen( data->rbuffer );
4754 return 0;
4755}
4756
4757static int proc_stats_rid_open(struct inode*, struct file*, u16);
4758static int proc_statsdelta_open( struct inode *inode,
4759 struct file *file ) {
4760 if (file->f_mode&FMODE_WRITE) {
4761 return proc_stats_rid_open(inode, file, RID_STATSDELTACLEAR);
4762 }
4763 return proc_stats_rid_open(inode, file, RID_STATSDELTA);
4764}
4765
4766static int proc_stats_open( struct inode *inode, struct file *file ) {
4767 return proc_stats_rid_open(inode, file, RID_STATS);
4768}
4769
4770static int proc_stats_rid_open( struct inode *inode,
4771 struct file *file,
4772 u16 rid ) {
4773 struct proc_data *data;
4774 struct proc_dir_entry *dp = PDE(inode);
4775 struct net_device *dev = dp->data;
4776 struct airo_info *apriv = dev->priv;
4777 StatsRid stats;
4778 int i, j;
4779 u32 *vals = stats.vals;
4780
b69a3aa8 4781 if ((file->private_data = kzalloc(sizeof(struct proc_data ), GFP_KERNEL)) == NULL)
1da177e4 4782 return -ENOMEM;
1da177e4
LT
4783 data = (struct proc_data *)file->private_data;
4784 if ((data->rbuffer = kmalloc( 4096, GFP_KERNEL )) == NULL) {
4785 kfree (file->private_data);
4786 return -ENOMEM;
4787 }
4788
4789 readStatsRid(apriv, &stats, rid, 1);
4790
4791 j = 0;
4792 for(i=0; statsLabels[i]!=(char *)-1 &&
4793 i*4<stats.len; i++){
4794 if (!statsLabels[i]) continue;
4795 if (j+strlen(statsLabels[i])+16>4096) {
934d8bf1
DW
4796 airo_print_warn(apriv->dev->name,
4797 "Potentially disasterous buffer overflow averted!");
1da177e4
LT
4798 break;
4799 }
4800 j+=sprintf(data->rbuffer+j, "%s: %u\n", statsLabels[i], vals[i]);
4801 }
4802 if (i*4>=stats.len){
934d8bf1 4803 airo_print_warn(apriv->dev->name, "Got a short rid");
1da177e4
LT
4804 }
4805 data->readlen = j;
4806 return 0;
4807}
4808
4809static int get_dec_u16( char *buffer, int *start, int limit ) {
4810 u16 value;
4811 int valid = 0;
4812 for( value = 0; buffer[*start] >= '0' &&
4813 buffer[*start] <= '9' &&
4814 *start < limit; (*start)++ ) {
4815 valid = 1;
4816 value *= 10;
4817 value += buffer[*start] - '0';
4818 }
4819 if ( !valid ) return -1;
4820 return value;
4821}
4822
4823static int airo_config_commit(struct net_device *dev,
4824 struct iw_request_info *info, void *zwrq,
4825 char *extra);
4826
4827static void proc_config_on_close( struct inode *inode, struct file *file ) {
4828 struct proc_data *data = file->private_data;
4829 struct proc_dir_entry *dp = PDE(inode);
4830 struct net_device *dev = dp->data;
4831 struct airo_info *ai = dev->priv;
4832 char *line;
4833
4834 if ( !data->writelen ) return;
4835
4836 readConfigRid(ai, 1);
4837 set_bit (FLAG_COMMIT, &ai->flags);
4838
4839 line = data->wbuffer;
4840 while( line[0] ) {
4841/*** Mode processing */
4842 if ( !strncmp( line, "Mode: ", 6 ) ) {
4843 line += 6;
4844 if ((ai->config.rmode & 0xff) >= RXMODE_RFMON)
4845 set_bit (FLAG_RESET, &ai->flags);
4846 ai->config.rmode &= 0xfe00;
4847 clear_bit (FLAG_802_11, &ai->flags);
4848 ai->config.opmode &= 0xFF00;
4849 ai->config.scanMode = SCANMODE_ACTIVE;
4850 if ( line[0] == 'a' ) {
4851 ai->config.opmode |= 0;
4852 } else {
4853 ai->config.opmode |= 1;
4854 if ( line[0] == 'r' ) {
4855 ai->config.rmode |= RXMODE_RFMON | RXMODE_DISABLE_802_3_HEADER;
4856 ai->config.scanMode = SCANMODE_PASSIVE;
4857 set_bit (FLAG_802_11, &ai->flags);
4858 } else if ( line[0] == 'y' ) {
4859 ai->config.rmode |= RXMODE_RFMON_ANYBSS | RXMODE_DISABLE_802_3_HEADER;
4860 ai->config.scanMode = SCANMODE_PASSIVE;
4861 set_bit (FLAG_802_11, &ai->flags);
4862 } else if ( line[0] == 'l' )
4863 ai->config.rmode |= RXMODE_LANMON;
4864 }
4865 set_bit (FLAG_COMMIT, &ai->flags);
4866 }
4867
4868/*** Radio status */
4869 else if (!strncmp(line,"Radio: ", 7)) {
4870 line += 7;
4871 if (!strncmp(line,"off",3)) {
4872 set_bit (FLAG_RADIO_OFF, &ai->flags);
4873 } else {
4874 clear_bit (FLAG_RADIO_OFF, &ai->flags);
4875 }
4876 }
4877/*** NodeName processing */
4878 else if ( !strncmp( line, "NodeName: ", 10 ) ) {
4879 int j;
4880
4881 line += 10;
4882 memset( ai->config.nodeName, 0, 16 );
4883/* Do the name, assume a space between the mode and node name */
4884 for( j = 0; j < 16 && line[j] != '\n'; j++ ) {
4885 ai->config.nodeName[j] = line[j];
4886 }
4887 set_bit (FLAG_COMMIT, &ai->flags);
4888 }
4889
4890/*** PowerMode processing */
4891 else if ( !strncmp( line, "PowerMode: ", 11 ) ) {
4892 line += 11;
4893 if ( !strncmp( line, "PSPCAM", 6 ) ) {
4894 ai->config.powerSaveMode = POWERSAVE_PSPCAM;
4895 set_bit (FLAG_COMMIT, &ai->flags);
4896 } else if ( !strncmp( line, "PSP", 3 ) ) {
4897 ai->config.powerSaveMode = POWERSAVE_PSP;
4898 set_bit (FLAG_COMMIT, &ai->flags);
4899 } else {
4900 ai->config.powerSaveMode = POWERSAVE_CAM;
4901 set_bit (FLAG_COMMIT, &ai->flags);
4902 }
4903 } else if ( !strncmp( line, "DataRates: ", 11 ) ) {
4904 int v, i = 0, k = 0; /* i is index into line,
4905 k is index to rates */
4906
4907 line += 11;
4908 while((v = get_dec_u16(line, &i, 3))!=-1) {
4909 ai->config.rates[k++] = (u8)v;
4910 line += i + 1;
4911 i = 0;
4912 }
4913 set_bit (FLAG_COMMIT, &ai->flags);
4914 } else if ( !strncmp( line, "Channel: ", 9 ) ) {
4915 int v, i = 0;
4916 line += 9;
4917 v = get_dec_u16(line, &i, i+3);
4918 if ( v != -1 ) {
4919 ai->config.channelSet = (u16)v;
4920 set_bit (FLAG_COMMIT, &ai->flags);
4921 }
4922 } else if ( !strncmp( line, "XmitPower: ", 11 ) ) {
4923 int v, i = 0;
4924 line += 11;
4925 v = get_dec_u16(line, &i, i+3);
4926 if ( v != -1 ) {
4927 ai->config.txPower = (u16)v;
4928 set_bit (FLAG_COMMIT, &ai->flags);
4929 }
4930 } else if ( !strncmp( line, "WEP: ", 5 ) ) {
4931 line += 5;
4932 switch( line[0] ) {
4933 case 's':
4934 ai->config.authType = (u16)AUTH_SHAREDKEY;
4935 break;
4936 case 'e':
4937 ai->config.authType = (u16)AUTH_ENCRYPT;
4938 break;
4939 default:
4940 ai->config.authType = (u16)AUTH_OPEN;
4941 break;
4942 }
4943 set_bit (FLAG_COMMIT, &ai->flags);
4944 } else if ( !strncmp( line, "LongRetryLimit: ", 16 ) ) {
4945 int v, i = 0;
4946
4947 line += 16;
4948 v = get_dec_u16(line, &i, 3);
4949 v = (v<0) ? 0 : ((v>255) ? 255 : v);
4950 ai->config.longRetryLimit = (u16)v;
4951 set_bit (FLAG_COMMIT, &ai->flags);
4952 } else if ( !strncmp( line, "ShortRetryLimit: ", 17 ) ) {
4953 int v, i = 0;
4954
4955 line += 17;
4956 v = get_dec_u16(line, &i, 3);
4957 v = (v<0) ? 0 : ((v>255) ? 255 : v);
4958 ai->config.shortRetryLimit = (u16)v;
4959 set_bit (FLAG_COMMIT, &ai->flags);
4960 } else if ( !strncmp( line, "RTSThreshold: ", 14 ) ) {
4961 int v, i = 0;
4962
4963 line += 14;
4964 v = get_dec_u16(line, &i, 4);
15db2763 4965 v = (v<0) ? 0 : ((v>AIRO_DEF_MTU) ? AIRO_DEF_MTU : v);
1da177e4
LT
4966 ai->config.rtsThres = (u16)v;
4967 set_bit (FLAG_COMMIT, &ai->flags);
4968 } else if ( !strncmp( line, "TXMSDULifetime: ", 16 ) ) {
4969 int v, i = 0;
4970
4971 line += 16;
4972 v = get_dec_u16(line, &i, 5);
4973 v = (v<0) ? 0 : v;
4974 ai->config.txLifetime = (u16)v;
4975 set_bit (FLAG_COMMIT, &ai->flags);
4976 } else if ( !strncmp( line, "RXMSDULifetime: ", 16 ) ) {
4977 int v, i = 0;
4978
4979 line += 16;
4980 v = get_dec_u16(line, &i, 5);
4981 v = (v<0) ? 0 : v;
4982 ai->config.rxLifetime = (u16)v;
4983 set_bit (FLAG_COMMIT, &ai->flags);
4984 } else if ( !strncmp( line, "TXDiversity: ", 13 ) ) {
4985 ai->config.txDiversity =
4986 (line[13]=='l') ? 1 :
4987 ((line[13]=='r')? 2: 3);
4988 set_bit (FLAG_COMMIT, &ai->flags);
4989 } else if ( !strncmp( line, "RXDiversity: ", 13 ) ) {
4990 ai->config.rxDiversity =
4991 (line[13]=='l') ? 1 :
4992 ((line[13]=='r')? 2: 3);
4993 set_bit (FLAG_COMMIT, &ai->flags);
4994 } else if ( !strncmp( line, "FragThreshold: ", 15 ) ) {
4995 int v, i = 0;
4996
4997 line += 15;
4998 v = get_dec_u16(line, &i, 4);
15db2763 4999 v = (v<256) ? 256 : ((v>AIRO_DEF_MTU) ? AIRO_DEF_MTU : v);
1da177e4
LT
5000 v = v & 0xfffe; /* Make sure its even */
5001 ai->config.fragThresh = (u16)v;
5002 set_bit (FLAG_COMMIT, &ai->flags);
5003 } else if (!strncmp(line, "Modulation: ", 12)) {
5004 line += 12;
5005 switch(*line) {
5006 case 'd': ai->config.modulation=MOD_DEFAULT; set_bit(FLAG_COMMIT, &ai->flags); break;
5007 case 'c': ai->config.modulation=MOD_CCK; set_bit(FLAG_COMMIT, &ai->flags); break;
5008 case 'm': ai->config.modulation=MOD_MOK; set_bit(FLAG_COMMIT, &ai->flags); break;
934d8bf1 5009 default: airo_print_warn(ai->dev->name, "Unknown modulation");
1da177e4
LT
5010 }
5011 } else if (!strncmp(line, "Preamble: ", 10)) {
5012 line += 10;
5013 switch(*line) {
5014 case 'a': ai->config.preamble=PREAMBLE_AUTO; set_bit(FLAG_COMMIT, &ai->flags); break;
5015 case 'l': ai->config.preamble=PREAMBLE_LONG; set_bit(FLAG_COMMIT, &ai->flags); break;
5016 case 's': ai->config.preamble=PREAMBLE_SHORT; set_bit(FLAG_COMMIT, &ai->flags); break;
934d8bf1 5017 default: airo_print_warn(ai->dev->name, "Unknown preamble");
1da177e4
LT
5018 }
5019 } else {
934d8bf1 5020 airo_print_warn(ai->dev->name, "Couldn't figure out %s", line);
1da177e4
LT
5021 }
5022 while( line[0] && line[0] != '\n' ) line++;
5023 if ( line[0] ) line++;
5024 }
5025 airo_config_commit(dev, NULL, NULL, NULL);
5026}
5027
5028static char *get_rmode(u16 mode) {
5029 switch(mode&0xff) {
5030 case RXMODE_RFMON: return "rfmon";
5031 case RXMODE_RFMON_ANYBSS: return "yna (any) bss rfmon";
5032 case RXMODE_LANMON: return "lanmon";
5033 }
5034 return "ESS";
5035}
5036
5037static int proc_config_open( struct inode *inode, struct file *file ) {
5038 struct proc_data *data;
5039 struct proc_dir_entry *dp = PDE(inode);
5040 struct net_device *dev = dp->data;
5041 struct airo_info *ai = dev->priv;
5042 int i;
5043
b69a3aa8 5044 if ((file->private_data = kzalloc(sizeof(struct proc_data ), GFP_KERNEL)) == NULL)
1da177e4 5045 return -ENOMEM;
1da177e4
LT
5046 data = (struct proc_data *)file->private_data;
5047 if ((data->rbuffer = kmalloc( 2048, GFP_KERNEL )) == NULL) {
5048 kfree (file->private_data);
5049 return -ENOMEM;
5050 }
b69a3aa8 5051 if ((data->wbuffer = kzalloc( 2048, GFP_KERNEL )) == NULL) {
1da177e4
LT
5052 kfree (data->rbuffer);
5053 kfree (file->private_data);
5054 return -ENOMEM;
5055 }
1da177e4
LT
5056 data->maxwritelen = 2048;
5057 data->on_close = proc_config_on_close;
5058
5059 readConfigRid(ai, 1);
5060
5061 i = sprintf( data->rbuffer,
5062 "Mode: %s\n"
5063 "Radio: %s\n"
5064 "NodeName: %-16s\n"
5065 "PowerMode: %s\n"
5066 "DataRates: %d %d %d %d %d %d %d %d\n"
5067 "Channel: %d\n"
5068 "XmitPower: %d\n",
5069 (ai->config.opmode & 0xFF) == 0 ? "adhoc" :
5070 (ai->config.opmode & 0xFF) == 1 ? get_rmode(ai->config.rmode):
5071 (ai->config.opmode & 0xFF) == 2 ? "AP" :
5072 (ai->config.opmode & 0xFF) == 3 ? "AP RPTR" : "Error",
5073 test_bit(FLAG_RADIO_OFF, &ai->flags) ? "off" : "on",
5074 ai->config.nodeName,
5075 ai->config.powerSaveMode == 0 ? "CAM" :
5076 ai->config.powerSaveMode == 1 ? "PSP" :
5077 ai->config.powerSaveMode == 2 ? "PSPCAM" : "Error",
5078 (int)ai->config.rates[0],
5079 (int)ai->config.rates[1],
5080 (int)ai->config.rates[2],
5081 (int)ai->config.rates[3],
5082 (int)ai->config.rates[4],
5083 (int)ai->config.rates[5],
5084 (int)ai->config.rates[6],
5085 (int)ai->config.rates[7],
5086 (int)ai->config.channelSet,
5087 (int)ai->config.txPower
5088 );
5089 sprintf( data->rbuffer + i,
5090 "LongRetryLimit: %d\n"
5091 "ShortRetryLimit: %d\n"
5092 "RTSThreshold: %d\n"
5093 "TXMSDULifetime: %d\n"
5094 "RXMSDULifetime: %d\n"
5095 "TXDiversity: %s\n"
5096 "RXDiversity: %s\n"
5097 "FragThreshold: %d\n"
5098 "WEP: %s\n"
5099 "Modulation: %s\n"
5100 "Preamble: %s\n",
5101 (int)ai->config.longRetryLimit,
5102 (int)ai->config.shortRetryLimit,
5103 (int)ai->config.rtsThres,
5104 (int)ai->config.txLifetime,
5105 (int)ai->config.rxLifetime,
5106 ai->config.txDiversity == 1 ? "left" :
5107 ai->config.txDiversity == 2 ? "right" : "both",
5108 ai->config.rxDiversity == 1 ? "left" :
5109 ai->config.rxDiversity == 2 ? "right" : "both",
5110 (int)ai->config.fragThresh,
5111 ai->config.authType == AUTH_ENCRYPT ? "encrypt" :
5112 ai->config.authType == AUTH_SHAREDKEY ? "shared" : "open",
5113 ai->config.modulation == 0 ? "default" :
5114 ai->config.modulation == MOD_CCK ? "cck" :
5115 ai->config.modulation == MOD_MOK ? "mok" : "error",
5116 ai->config.preamble == PREAMBLE_AUTO ? "auto" :
5117 ai->config.preamble == PREAMBLE_LONG ? "long" :
5118 ai->config.preamble == PREAMBLE_SHORT ? "short" : "error"
5119 );
5120 data->readlen = strlen( data->rbuffer );
5121 return 0;
5122}
5123
5124static void proc_SSID_on_close( struct inode *inode, struct file *file ) {
5125 struct proc_data *data = (struct proc_data *)file->private_data;
5126 struct proc_dir_entry *dp = PDE(inode);
5127 struct net_device *dev = dp->data;
5128 struct airo_info *ai = dev->priv;
5129 SsidRid SSID_rid;
1da177e4
LT
5130 int i;
5131 int offset = 0;
5132
5133 if ( !data->writelen ) return;
5134
5135 memset( &SSID_rid, 0, sizeof( SSID_rid ) );
5136
5137 for( i = 0; i < 3; i++ ) {
5138 int j;
5139 for( j = 0; j+offset < data->writelen && j < 32 &&
5140 data->wbuffer[offset+j] != '\n'; j++ ) {
5141 SSID_rid.ssids[i].ssid[j] = data->wbuffer[offset+j];
5142 }
5143 if ( j == 0 ) break;
5144 SSID_rid.ssids[i].len = j;
5145 offset += j;
5146 while( data->wbuffer[offset] != '\n' &&
5147 offset < data->writelen ) offset++;
5148 offset++;
5149 }
5150 if (i)
5151 SSID_rid.len = sizeof(SSID_rid);
5152 disable_MAC(ai, 1);
5153 writeSsidRid(ai, &SSID_rid, 1);
175ec1a1 5154 enable_MAC(ai, 1);
1da177e4
LT
5155}
5156
77933d72 5157static inline u8 hexVal(char c) {
1da177e4
LT
5158 if (c>='0' && c<='9') return c -= '0';
5159 if (c>='a' && c<='f') return c -= 'a'-10;
5160 if (c>='A' && c<='F') return c -= 'A'-10;
5161 return 0;
5162}
5163
5164static void proc_APList_on_close( struct inode *inode, struct file *file ) {
5165 struct proc_data *data = (struct proc_data *)file->private_data;
5166 struct proc_dir_entry *dp = PDE(inode);
5167 struct net_device *dev = dp->data;
5168 struct airo_info *ai = dev->priv;
5169 APListRid APList_rid;
1da177e4
LT
5170 int i;
5171
5172 if ( !data->writelen ) return;
5173
5174 memset( &APList_rid, 0, sizeof(APList_rid) );
5175 APList_rid.len = sizeof(APList_rid);
5176
5177 for( i = 0; i < 4 && data->writelen >= (i+1)*6*3; i++ ) {
5178 int j;
5179 for( j = 0; j < 6*3 && data->wbuffer[j+i*6*3]; j++ ) {
5180 switch(j%3) {
5181 case 0:
5182 APList_rid.ap[i][j/3]=
5183 hexVal(data->wbuffer[j+i*6*3])<<4;
5184 break;
5185 case 1:
5186 APList_rid.ap[i][j/3]|=
5187 hexVal(data->wbuffer[j+i*6*3]);
5188 break;
5189 }
5190 }
5191 }
5192 disable_MAC(ai, 1);
5193 writeAPListRid(ai, &APList_rid, 1);
175ec1a1 5194 enable_MAC(ai, 1);
1da177e4
LT
5195}
5196
5197/* This function wraps PC4500_writerid with a MAC disable */
5198static int do_writerid( struct airo_info *ai, u16 rid, const void *rid_data,
5199 int len, int dummy ) {
5200 int rc;
1da177e4
LT
5201
5202 disable_MAC(ai, 1);
5203 rc = PC4500_writerid(ai, rid, rid_data, len, 1);
175ec1a1 5204 enable_MAC(ai, 1);
1da177e4
LT
5205 return rc;
5206}
5207
5208/* Returns the length of the key at the index. If index == 0xffff
5209 * the index of the transmit key is returned. If the key doesn't exist,
5210 * -1 will be returned.
5211 */
5212static int get_wep_key(struct airo_info *ai, u16 index) {
5213 WepKeyRid wkr;
5214 int rc;
5215 u16 lastindex;
5216
5217 rc = readWepKeyRid(ai, &wkr, 1, 1);
5218 if (rc == SUCCESS) do {
5219 lastindex = wkr.kindex;
5220 if (wkr.kindex == index) {
5221 if (index == 0xffff) {
5222 return wkr.mac[0];
5223 }
5224 return wkr.klen;
5225 }
5226 readWepKeyRid(ai, &wkr, 0, 1);
5227 } while(lastindex != wkr.kindex);
5228 return -1;
5229}
5230
5231static int set_wep_key(struct airo_info *ai, u16 index,
5232 const char *key, u16 keylen, int perm, int lock ) {
5233 static const unsigned char macaddr[ETH_ALEN] = { 0x01, 0, 0, 0, 0, 0 };
5234 WepKeyRid wkr;
1da177e4
LT
5235
5236 memset(&wkr, 0, sizeof(wkr));
5237 if (keylen == 0) {
5238// We are selecting which key to use
5239 wkr.len = sizeof(wkr);
5240 wkr.kindex = 0xffff;
5241 wkr.mac[0] = (char)index;
1da177e4
LT
5242 if (perm) ai->defindex = (char)index;
5243 } else {
5244// We are actually setting the key
5245 wkr.len = sizeof(wkr);
5246 wkr.kindex = index;
5247 wkr.klen = keylen;
5248 memcpy( wkr.key, key, keylen );
5249 memcpy( wkr.mac, macaddr, ETH_ALEN );
1da177e4
LT
5250 }
5251
f89b2321 5252 if (perm) disable_MAC(ai, lock);
1da177e4 5253 writeWepKeyRid(ai, &wkr, perm, lock);
175ec1a1 5254 if (perm) enable_MAC(ai, lock);
1da177e4
LT
5255 return 0;
5256}
5257
5258static void proc_wepkey_on_close( struct inode *inode, struct file *file ) {
5259 struct proc_data *data;
5260 struct proc_dir_entry *dp = PDE(inode);
5261 struct net_device *dev = dp->data;
5262 struct airo_info *ai = dev->priv;
5263 int i;
5264 char key[16];
5265 u16 index = 0;
5266 int j = 0;
5267
5268 memset(key, 0, sizeof(key));
5269
5270 data = (struct proc_data *)file->private_data;
5271 if ( !data->writelen ) return;
5272
5273 if (data->wbuffer[0] >= '0' && data->wbuffer[0] <= '3' &&
5274 (data->wbuffer[1] == ' ' || data->wbuffer[1] == '\n')) {
5275 index = data->wbuffer[0] - '0';
5276 if (data->wbuffer[1] == '\n') {
5277 set_wep_key(ai, index, NULL, 0, 1, 1);
5278 return;
5279 }
5280 j = 2;
5281 } else {
934d8bf1 5282 airo_print_err(ai->dev->name, "WepKey passed invalid key index");
1da177e4
LT
5283 return;
5284 }
5285
5286 for( i = 0; i < 16*3 && data->wbuffer[i+j]; i++ ) {
5287 switch(i%3) {
5288 case 0:
5289 key[i/3] = hexVal(data->wbuffer[i+j])<<4;
5290 break;
5291 case 1:
5292 key[i/3] |= hexVal(data->wbuffer[i+j]);
5293 break;
5294 }
5295 }
5296 set_wep_key(ai, index, key, i/3, 1, 1);
5297}
5298
5299static int proc_wepkey_open( struct inode *inode, struct file *file ) {
5300 struct proc_data *data;
5301 struct proc_dir_entry *dp = PDE(inode);
5302 struct net_device *dev = dp->data;
5303 struct airo_info *ai = dev->priv;
5304 char *ptr;
5305 WepKeyRid wkr;
5306 u16 lastindex;
5307 int j=0;
5308 int rc;
5309
b69a3aa8 5310 if ((file->private_data = kzalloc(sizeof(struct proc_data ), GFP_KERNEL)) == NULL)
1da177e4 5311 return -ENOMEM;
1da177e4
LT
5312 memset(&wkr, 0, sizeof(wkr));
5313 data = (struct proc_data *)file->private_data;
b69a3aa8 5314 if ((data->rbuffer = kzalloc( 180, GFP_KERNEL )) == NULL) {
1da177e4
LT
5315 kfree (file->private_data);
5316 return -ENOMEM;
5317 }
1da177e4
LT
5318 data->writelen = 0;
5319 data->maxwritelen = 80;
b69a3aa8 5320 if ((data->wbuffer = kzalloc( 80, GFP_KERNEL )) == NULL) {
1da177e4
LT
5321 kfree (data->rbuffer);
5322 kfree (file->private_data);
5323 return -ENOMEM;
5324 }
1da177e4
LT
5325 data->on_close = proc_wepkey_on_close;
5326
5327 ptr = data->rbuffer;
5328 strcpy(ptr, "No wep keys\n");
5329 rc = readWepKeyRid(ai, &wkr, 1, 1);
5330 if (rc == SUCCESS) do {
5331 lastindex = wkr.kindex;
5332 if (wkr.kindex == 0xffff) {
5333 j += sprintf(ptr+j, "Tx key = %d\n",
5334 (int)wkr.mac[0]);
5335 } else {
5336 j += sprintf(ptr+j, "Key %d set with length = %d\n",
5337 (int)wkr.kindex, (int)wkr.klen);
5338 }
5339 readWepKeyRid(ai, &wkr, 0, 1);
5340 } while((lastindex != wkr.kindex) && (j < 180-30));
5341
5342 data->readlen = strlen( data->rbuffer );
5343 return 0;
5344}
5345
5346static int proc_SSID_open( struct inode *inode, struct file *file ) {
5347 struct proc_data *data;
5348 struct proc_dir_entry *dp = PDE(inode);
5349 struct net_device *dev = dp->data;
5350 struct airo_info *ai = dev->priv;
5351 int i;
5352 char *ptr;
5353 SsidRid SSID_rid;
5354
b69a3aa8 5355 if ((file->private_data = kzalloc(sizeof(struct proc_data ), GFP_KERNEL)) == NULL)
1da177e4 5356 return -ENOMEM;
1da177e4
LT
5357 data = (struct proc_data *)file->private_data;
5358 if ((data->rbuffer = kmalloc( 104, GFP_KERNEL )) == NULL) {
5359 kfree (file->private_data);
5360 return -ENOMEM;
5361 }
5362 data->writelen = 0;
5363 data->maxwritelen = 33*3;
b69a3aa8 5364 if ((data->wbuffer = kzalloc( 33*3, GFP_KERNEL )) == NULL) {
1da177e4
LT
5365 kfree (data->rbuffer);
5366 kfree (file->private_data);
5367 return -ENOMEM;
5368 }
1da177e4
LT
5369 data->on_close = proc_SSID_on_close;
5370
5371 readSsidRid(ai, &SSID_rid);
5372 ptr = data->rbuffer;
5373 for( i = 0; i < 3; i++ ) {
5374 int j;
5375 if ( !SSID_rid.ssids[i].len ) break;
5376 for( j = 0; j < 32 &&
5377 j < SSID_rid.ssids[i].len &&
5378 SSID_rid.ssids[i].ssid[j]; j++ ) {
5379 *ptr++ = SSID_rid.ssids[i].ssid[j];
5380 }
5381 *ptr++ = '\n';
5382 }
5383 *ptr = '\0';
5384 data->readlen = strlen( data->rbuffer );
5385 return 0;
5386}
5387
5388static int proc_APList_open( struct inode *inode, struct file *file ) {
5389 struct proc_data *data;
5390 struct proc_dir_entry *dp = PDE(inode);
5391 struct net_device *dev = dp->data;
5392 struct airo_info *ai = dev->priv;
5393 int i;
5394 char *ptr;
5395 APListRid APList_rid;
0795af57 5396 DECLARE_MAC_BUF(mac);
1da177e4 5397
b69a3aa8 5398 if ((file->private_data = kzalloc(sizeof(struct proc_data ), GFP_KERNEL)) == NULL)
1da177e4 5399 return -ENOMEM;
1da177e4
LT
5400 data = (struct proc_data *)file->private_data;
5401 if ((data->rbuffer = kmalloc( 104, GFP_KERNEL )) == NULL) {
5402 kfree (file->private_data);
5403 return -ENOMEM;
5404 }
5405 data->writelen = 0;
5406 data->maxwritelen = 4*6*3;
b69a3aa8 5407 if ((data->wbuffer = kzalloc( data->maxwritelen, GFP_KERNEL )) == NULL) {
1da177e4
LT
5408 kfree (data->rbuffer);
5409 kfree (file->private_data);
5410 return -ENOMEM;
5411 }
1da177e4
LT
5412 data->on_close = proc_APList_on_close;
5413
5414 readAPListRid(ai, &APList_rid);
5415 ptr = data->rbuffer;
5416 for( i = 0; i < 4; i++ ) {
5417// We end when we find a zero MAC
5418 if ( !*(int*)APList_rid.ap[i] &&
5419 !*(int*)&APList_rid.ap[i][2]) break;
0795af57
JP
5420 ptr += sprintf(ptr, "%s\n",
5421 print_mac(mac, APList_rid.ap[i]));
1da177e4
LT
5422 }
5423 if (i==0) ptr += sprintf(ptr, "Not using specific APs\n");
5424
5425 *ptr = '\0';
5426 data->readlen = strlen( data->rbuffer );
5427 return 0;
5428}
5429
5430static int proc_BSSList_open( struct inode *inode, struct file *file ) {
5431 struct proc_data *data;
5432 struct proc_dir_entry *dp = PDE(inode);
5433 struct net_device *dev = dp->data;
5434 struct airo_info *ai = dev->priv;
5435 char *ptr;
5436 BSSListRid BSSList_rid;
5437 int rc;
5438 /* If doLoseSync is not 1, we won't do a Lose Sync */
5439 int doLoseSync = -1;
0795af57 5440 DECLARE_MAC_BUF(mac);
1da177e4 5441
b69a3aa8 5442 if ((file->private_data = kzalloc(sizeof(struct proc_data ), GFP_KERNEL)) == NULL)
1da177e4 5443 return -ENOMEM;
1da177e4
LT
5444 data = (struct proc_data *)file->private_data;
5445 if ((data->rbuffer = kmalloc( 1024, GFP_KERNEL )) == NULL) {
5446 kfree (file->private_data);
5447 return -ENOMEM;
5448 }
5449 data->writelen = 0;
5450 data->maxwritelen = 0;
5451 data->wbuffer = NULL;
5452 data->on_close = NULL;
5453
5454 if (file->f_mode & FMODE_WRITE) {
5455 if (!(file->f_mode & FMODE_READ)) {
5456 Cmd cmd;
5457 Resp rsp;
5458
5459 if (ai->flags & FLAG_RADIO_MASK) return -ENETDOWN;
5460 memset(&cmd, 0, sizeof(cmd));
5461 cmd.cmd=CMD_LISTBSS;
5462 if (down_interruptible(&ai->sem))
5463 return -ERESTARTSYS;
5464 issuecommand(ai, &cmd, &rsp);
5465 up(&ai->sem);
5466 data->readlen = 0;
5467 return 0;
5468 }
5469 doLoseSync = 1;
5470 }
5471 ptr = data->rbuffer;
5472 /* There is a race condition here if there are concurrent opens.
5473 Since it is a rare condition, we'll just live with it, otherwise
5474 we have to add a spin lock... */
5475 rc = readBSSListRid(ai, doLoseSync, &BSSList_rid);
5476 while(rc == 0 && BSSList_rid.index != 0xffff) {
0795af57
JP
5477 ptr += sprintf(ptr, "%s %*s rssi = %d",
5478 print_mac(mac, BSSList_rid.bssid),
1da177e4
LT
5479 (int)BSSList_rid.ssidLen,
5480 BSSList_rid.ssid,
41480af2 5481 (int)BSSList_rid.dBm);
1da177e4
LT
5482 ptr += sprintf(ptr, " channel = %d %s %s %s %s\n",
5483 (int)BSSList_rid.dsChannel,
5484 BSSList_rid.cap & CAP_ESS ? "ESS" : "",
5485 BSSList_rid.cap & CAP_IBSS ? "adhoc" : "",
5486 BSSList_rid.cap & CAP_PRIVACY ? "wep" : "",
5487 BSSList_rid.cap & CAP_SHORTHDR ? "shorthdr" : "");
5488 rc = readBSSListRid(ai, 0, &BSSList_rid);
5489 }
5490 *ptr = '\0';
5491 data->readlen = strlen( data->rbuffer );
5492 return 0;
5493}
5494
5495static int proc_close( struct inode *inode, struct file *file )
5496{
b4558ea9
JJ
5497 struct proc_data *data = file->private_data;
5498
5499 if (data->on_close != NULL)
5500 data->on_close(inode, file);
5501 kfree(data->rbuffer);
5502 kfree(data->wbuffer);
5503 kfree(data);
1da177e4
LT
5504 return 0;
5505}
5506
1da177e4
LT
5507/* Since the card doesn't automatically switch to the right WEP mode,
5508 we will make it do it. If the card isn't associated, every secs we
5509 will switch WEP modes to see if that will help. If the card is
5510 associated we will check every minute to see if anything has
5511 changed. */
5512static void timer_func( struct net_device *dev ) {
5513 struct airo_info *apriv = dev->priv;
1da177e4
LT
5514
5515/* We don't have a link so try changing the authtype */
5516 readConfigRid(apriv, 0);
5517 disable_MAC(apriv, 0);
5518 switch(apriv->config.authType) {
5519 case AUTH_ENCRYPT:
5520/* So drop to OPEN */
5521 apriv->config.authType = AUTH_OPEN;
5522 break;
5523 case AUTH_SHAREDKEY:
5524 if (apriv->keyindex < auto_wep) {
5525 set_wep_key(apriv, apriv->keyindex, NULL, 0, 0, 0);
5526 apriv->config.authType = AUTH_SHAREDKEY;
5527 apriv->keyindex++;
5528 } else {
5529 /* Drop to ENCRYPT */
5530 apriv->keyindex = 0;
5531 set_wep_key(apriv, apriv->defindex, NULL, 0, 0, 0);
5532 apriv->config.authType = AUTH_ENCRYPT;
5533 }
5534 break;
5535 default: /* We'll escalate to SHAREDKEY */
5536 apriv->config.authType = AUTH_SHAREDKEY;
5537 }
5538 set_bit (FLAG_COMMIT, &apriv->flags);
5539 writeConfigRid(apriv, 0);
175ec1a1 5540 enable_MAC(apriv, 0);
1da177e4
LT
5541 up(&apriv->sem);
5542
5543/* Schedule check to see if the change worked */
3c304956 5544 clear_bit(JOB_AUTOWEP, &apriv->jobs);
1da177e4
LT
5545 apriv->expires = RUN_AT(HZ*3);
5546}
5547
1da177e4
LT
5548#ifdef CONFIG_PCI
5549static int __devinit airo_pci_probe(struct pci_dev *pdev,
5550 const struct pci_device_id *pent)
5551{
5552 struct net_device *dev;
5553
5554 if (pci_enable_device(pdev))
5555 return -ENODEV;
5556 pci_set_master(pdev);
5557
5558 if (pdev->device == 0x5000 || pdev->device == 0xa504)
5559 dev = _init_airo_card(pdev->irq, pdev->resource[0].start, 0, pdev, &pdev->dev);
5560 else
5561 dev = _init_airo_card(pdev->irq, pdev->resource[2].start, 0, pdev, &pdev->dev);
777ec5e9
MS
5562 if (!dev) {
5563 pci_disable_device(pdev);
1da177e4 5564 return -ENODEV;
777ec5e9 5565 }
1da177e4
LT
5566
5567 pci_set_drvdata(pdev, dev);
5568 return 0;
5569}
5570
5571static void __devexit airo_pci_remove(struct pci_dev *pdev)
5572{
af5b5c9a
MS
5573 struct net_device *dev = pci_get_drvdata(pdev);
5574
5575 airo_print_info(dev->name, "Unregistering...");
5576 stop_airo_card(dev, 1);
777ec5e9
MS
5577 pci_disable_device(pdev);
5578 pci_set_drvdata(pdev, NULL);
1da177e4
LT
5579}
5580
05adc3b7 5581static int airo_pci_suspend(struct pci_dev *pdev, pm_message_t state)
1da177e4
LT
5582{
5583 struct net_device *dev = pci_get_drvdata(pdev);
5584 struct airo_info *ai = dev->priv;
5585 Cmd cmd;
5586 Resp rsp;
5587
5588 if ((ai->APList == NULL) &&
5589 (ai->APList = kmalloc(sizeof(APListRid), GFP_KERNEL)) == NULL)
5590 return -ENOMEM;
5591 if ((ai->SSID == NULL) &&
5592 (ai->SSID = kmalloc(sizeof(SsidRid), GFP_KERNEL)) == NULL)
5593 return -ENOMEM;
5594 readAPListRid(ai, ai->APList);
5595 readSsidRid(ai, ai->SSID);
5596 memset(&cmd, 0, sizeof(cmd));
5597 /* the lock will be released at the end of the resume callback */
5598 if (down_interruptible(&ai->sem))
5599 return -EAGAIN;
5600 disable_MAC(ai, 0);
5601 netif_device_detach(dev);
5602 ai->power = state;
5603 cmd.cmd=HOSTSLEEP;
5604 issuecommand(ai, &cmd, &rsp);
5605
1cc68ae0 5606 pci_enable_wake(pdev, pci_choose_state(pdev, state), 1);
1da177e4 5607 pci_save_state(pdev);
1cc68ae0 5608 return pci_set_power_state(pdev, pci_choose_state(pdev, state));
1da177e4
LT
5609}
5610
5611static int airo_pci_resume(struct pci_dev *pdev)
5612{
5613 struct net_device *dev = pci_get_drvdata(pdev);
5614 struct airo_info *ai = dev->priv;
53232803 5615 pci_power_t prev_state = pdev->current_state;
1da177e4 5616
53232803 5617 pci_set_power_state(pdev, PCI_D0);
1da177e4 5618 pci_restore_state(pdev);
53232803 5619 pci_enable_wake(pdev, PCI_D0, 0);
1da177e4 5620
53232803 5621 if (prev_state != PCI_D1) {
1da177e4
LT
5622 reset_card(dev, 0);
5623 mpi_init_descriptors(ai);
5624 setup_card(ai, dev->dev_addr, 0);
5625 clear_bit(FLAG_RADIO_OFF, &ai->flags);
5626 clear_bit(FLAG_PENDING_XMIT, &ai->flags);
5627 } else {
5628 OUT4500(ai, EVACK, EV_AWAKEN);
5629 OUT4500(ai, EVACK, EV_AWAKEN);
5630 msleep(100);
5631 }
5632
5633 set_bit (FLAG_COMMIT, &ai->flags);
5634 disable_MAC(ai, 0);
5635 msleep(200);
5636 if (ai->SSID) {
5637 writeSsidRid(ai, ai->SSID, 0);
5638 kfree(ai->SSID);
5639 ai->SSID = NULL;
5640 }
5641 if (ai->APList) {
5642 writeAPListRid(ai, ai->APList, 0);
5643 kfree(ai->APList);
5644 ai->APList = NULL;
5645 }
5646 writeConfigRid(ai, 0);
175ec1a1 5647 enable_MAC(ai, 0);
1cc68ae0 5648 ai->power = PMSG_ON;
1da177e4
LT
5649 netif_device_attach(dev);
5650 netif_wake_queue(dev);
5651 enable_interrupts(ai);
5652 up(&ai->sem);
5653 return 0;
5654}
5655#endif
5656
5657static int __init airo_init_module( void )
5658{
de897881
JG
5659 int i;
5660#if 0
5661 int have_isa_dev = 0;
5662#endif
1da177e4
LT
5663
5664 airo_entry = create_proc_entry("aironet",
5665 S_IFDIR | airo_perm,
5666 proc_root_driver);
de897881
JG
5667
5668 if (airo_entry) {
5669 airo_entry->uid = proc_uid;
5670 airo_entry->gid = proc_gid;
5671 }
1da177e4
LT
5672
5673 for( i = 0; i < 4 && io[i] && irq[i]; i++ ) {
934d8bf1
DW
5674 airo_print_info("", "Trying to configure ISA adapter at irq=%d "
5675 "io=0x%x", irq[i], io[i] );
1da177e4 5676 if (init_airo_card( irq[i], io[i], 0, NULL ))
de897881 5677#if 0
1da177e4 5678 have_isa_dev = 1;
de897881
JG
5679#else
5680 /* do nothing */ ;
5681#endif
1da177e4
LT
5682 }
5683
5684#ifdef CONFIG_PCI
934d8bf1 5685 airo_print_info("", "Probing for PCI adapters");
de897881 5686 i = pci_register_driver(&airo_driver);
934d8bf1 5687 airo_print_info("", "Finished probing for PCI adapters");
de897881
JG
5688
5689 if (i) {
5690 remove_proc_entry("aironet", proc_root_driver);
5691 return i;
5692 }
1da177e4
LT
5693#endif
5694
5695 /* Always exit with success, as we are a library module
5696 * as well as a driver module
5697 */
5698 return 0;
5699}
5700
5701static void __exit airo_cleanup_module( void )
5702{
af5b5c9a
MS
5703 struct airo_info *ai;
5704 while(!list_empty(&airo_devices)) {
5705 ai = list_entry(airo_devices.next, struct airo_info, dev_list);
5706 airo_print_info(ai->dev->name, "Unregistering...");
5707 stop_airo_card(ai->dev, 1);
1da177e4
LT
5708 }
5709#ifdef CONFIG_PCI
5710 pci_unregister_driver(&airo_driver);
5711#endif
5712 remove_proc_entry("aironet", proc_root_driver);
5713}
5714
1da177e4
LT
5715/*
5716 * Initial Wireless Extension code for Aironet driver by :
5717 * Jean Tourrilhes <jt@hpl.hp.com> - HPL - 17 November 00
5718 * Conversion to new driver API by :
5719 * Jean Tourrilhes <jt@hpl.hp.com> - HPL - 26 March 02
5720 * Javier also did a good amount of work here, adding some new extensions
5721 * and fixing my code. Let's just say that without him this code just
5722 * would not work at all... - Jean II
5723 */
5724
41480af2
DW
5725static u8 airo_rssi_to_dbm (tdsRssiEntry *rssi_rid, u8 rssi)
5726{
5727 if( !rssi_rid )
5728 return 0;
5729
5730 return (0x100 - rssi_rid[rssi].rssidBm);
5731}
5732
5733static u8 airo_dbm_to_pct (tdsRssiEntry *rssi_rid, u8 dbm)
5734{
5735 int i;
5736
5737 if( !rssi_rid )
5738 return 0;
5739
5740 for( i = 0; i < 256; i++ )
5741 if (rssi_rid[i].rssidBm == dbm)
5742 return rssi_rid[i].rssipct;
5743
5744 return 0;
5745}
5746
5747
1da177e4
LT
5748static int airo_get_quality (StatusRid *status_rid, CapabilityRid *cap_rid)
5749{
5750 int quality = 0;
5751
5752 if ((status_rid->mode & 0x3f) == 0x3f && (cap_rid->hardCap & 8)) {
5753 if (memcmp(cap_rid->prodName, "350", 3))
5754 if (status_rid->signalQuality > 0x20)
5755 quality = 0;
5756 else
5757 quality = 0x20 - status_rid->signalQuality;
5758 else
5759 if (status_rid->signalQuality > 0xb0)
5760 quality = 0;
5761 else if (status_rid->signalQuality < 0x10)
5762 quality = 0xa0;
5763 else
5764 quality = 0xb0 - status_rid->signalQuality;
5765 }
5766 return quality;
5767}
5768
5769#define airo_get_max_quality(cap_rid) (memcmp((cap_rid)->prodName, "350", 3) ? 0x20 : 0xa0)
5770#define airo_get_avg_quality(cap_rid) (memcmp((cap_rid)->prodName, "350", 3) ? 0x10 : 0x50);
5771
5772/*------------------------------------------------------------------*/
5773/*
5774 * Wireless Handler : get protocol name
5775 */
5776static int airo_get_name(struct net_device *dev,
5777 struct iw_request_info *info,
5778 char *cwrq,
5779 char *extra)
5780{
5781 strcpy(cwrq, "IEEE 802.11-DS");
5782 return 0;
5783}
5784
5785/*------------------------------------------------------------------*/
5786/*
5787 * Wireless Handler : set frequency
5788 */
5789static int airo_set_freq(struct net_device *dev,
5790 struct iw_request_info *info,
5791 struct iw_freq *fwrq,
5792 char *extra)
5793{
5794 struct airo_info *local = dev->priv;
5795 int rc = -EINPROGRESS; /* Call commit handler */
5796
5797 /* If setting by frequency, convert to a channel */
5798 if((fwrq->e == 1) &&
5799 (fwrq->m >= (int) 2.412e8) &&
5800 (fwrq->m <= (int) 2.487e8)) {
5801 int f = fwrq->m / 100000;
5802 int c = 0;
5803 while((c < 14) && (f != frequency_list[c]))
5804 c++;
5805 /* Hack to fall through... */
5806 fwrq->e = 0;
5807 fwrq->m = c + 1;
5808 }
5809 /* Setting by channel number */
5810 if((fwrq->m > 1000) || (fwrq->e > 0))
5811 rc = -EOPNOTSUPP;
5812 else {
5813 int channel = fwrq->m;
5814 /* We should do a better check than that,
5815 * based on the card capability !!! */
2610c733 5816 if((channel < 1) || (channel > 14)) {
934d8bf1
DW
5817 airo_print_dbg(dev->name, "New channel value of %d is invalid!",
5818 fwrq->m);
1da177e4
LT
5819 rc = -EINVAL;
5820 } else {
5821 readConfigRid(local, 1);
5822 /* Yes ! We can set it !!! */
2610c733 5823 local->config.channelSet = (u16) channel;
1da177e4
LT
5824 set_bit (FLAG_COMMIT, &local->flags);
5825 }
5826 }
5827 return rc;
5828}
5829
5830/*------------------------------------------------------------------*/
5831/*
5832 * Wireless Handler : get frequency
5833 */
5834static int airo_get_freq(struct net_device *dev,
5835 struct iw_request_info *info,
5836 struct iw_freq *fwrq,
5837 char *extra)
5838{
5839 struct airo_info *local = dev->priv;
5840 StatusRid status_rid; /* Card status info */
2610c733 5841 int ch;
1da177e4
LT
5842
5843 readConfigRid(local, 1);
5844 if ((local->config.opmode & 0xFF) == MODE_STA_ESS)
5845 status_rid.channel = local->config.channelSet;
5846 else
5847 readStatusRid(local, &status_rid, 1);
5848
2610c733
JA
5849 ch = (int)status_rid.channel;
5850 if((ch > 0) && (ch < 15)) {
5851 fwrq->m = frequency_list[ch - 1] * 100000;
1da177e4 5852 fwrq->e = 1;
2610c733
JA
5853 } else {
5854 fwrq->m = ch;
5855 fwrq->e = 0;
1da177e4 5856 }
1da177e4
LT
5857
5858 return 0;
5859}
5860
5861/*------------------------------------------------------------------*/
5862/*
5863 * Wireless Handler : set ESSID
5864 */
5865static int airo_set_essid(struct net_device *dev,
5866 struct iw_request_info *info,
5867 struct iw_point *dwrq,
5868 char *extra)
5869{
5870 struct airo_info *local = dev->priv;
1da177e4
LT
5871 SsidRid SSID_rid; /* SSIDs */
5872
5873 /* Reload the list of current SSID */
5874 readSsidRid(local, &SSID_rid);
5875
5876 /* Check if we asked for `any' */
5877 if(dwrq->flags == 0) {
5878 /* Just send an empty SSID list */
5879 memset(&SSID_rid, 0, sizeof(SSID_rid));
5880 } else {
5881 int index = (dwrq->flags & IW_ENCODE_INDEX) - 1;
5882
5883 /* Check the size of the string */
7f8544cc 5884 if(dwrq->length > IW_ESSID_MAX_SIZE) {
1da177e4
LT
5885 return -E2BIG ;
5886 }
5887 /* Check if index is valid */
5888 if((index < 0) || (index >= 4)) {
5889 return -EINVAL;
5890 }
5891
5892 /* Set the SSID */
5893 memset(SSID_rid.ssids[index].ssid, 0,
5894 sizeof(SSID_rid.ssids[index].ssid));
5895 memcpy(SSID_rid.ssids[index].ssid, extra, dwrq->length);
7f8544cc 5896 SSID_rid.ssids[index].len = dwrq->length;
1da177e4
LT
5897 }
5898 SSID_rid.len = sizeof(SSID_rid);
5899 /* Write it to the card */
5900 disable_MAC(local, 1);
5901 writeSsidRid(local, &SSID_rid, 1);
175ec1a1 5902 enable_MAC(local, 1);
1da177e4
LT
5903
5904 return 0;
5905}
5906
5907/*------------------------------------------------------------------*/
5908/*
5909 * Wireless Handler : get ESSID
5910 */
5911static int airo_get_essid(struct net_device *dev,
5912 struct iw_request_info *info,
5913 struct iw_point *dwrq,
5914 char *extra)
5915{
5916 struct airo_info *local = dev->priv;
5917 StatusRid status_rid; /* Card status info */
5918
5919 readStatusRid(local, &status_rid, 1);
5920
5921 /* Note : if dwrq->flags != 0, we should
5922 * get the relevant SSID from the SSID list... */
5923
5924 /* Get the current SSID */
5925 memcpy(extra, status_rid.SSID, status_rid.SSIDlen);
1da177e4
LT
5926 /* If none, we may want to get the one that was set */
5927
5928 /* Push it out ! */
d6a13a24 5929 dwrq->length = status_rid.SSIDlen;
1da177e4
LT
5930 dwrq->flags = 1; /* active */
5931
5932 return 0;
5933}
5934
5935/*------------------------------------------------------------------*/
5936/*
5937 * Wireless Handler : set AP address
5938 */
5939static int airo_set_wap(struct net_device *dev,
5940 struct iw_request_info *info,
5941 struct sockaddr *awrq,
5942 char *extra)
5943{
5944 struct airo_info *local = dev->priv;
5945 Cmd cmd;
5946 Resp rsp;
5947 APListRid APList_rid;
4be757dd
DW
5948 static const u8 any[ETH_ALEN] = { 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF };
5949 static const u8 off[ETH_ALEN] = { 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 };
1da177e4
LT
5950
5951 if (awrq->sa_family != ARPHRD_ETHER)
5952 return -EINVAL;
4be757dd
DW
5953 else if (!memcmp(any, awrq->sa_data, ETH_ALEN) ||
5954 !memcmp(off, awrq->sa_data, ETH_ALEN)) {
1da177e4
LT
5955 memset(&cmd, 0, sizeof(cmd));
5956 cmd.cmd=CMD_LOSE_SYNC;
5957 if (down_interruptible(&local->sem))
5958 return -ERESTARTSYS;
5959 issuecommand(local, &cmd, &rsp);
5960 up(&local->sem);
5961 } else {
5962 memset(&APList_rid, 0, sizeof(APList_rid));
5963 APList_rid.len = sizeof(APList_rid);
5964 memcpy(APList_rid.ap[0], awrq->sa_data, ETH_ALEN);
5965 disable_MAC(local, 1);
5966 writeAPListRid(local, &APList_rid, 1);
175ec1a1 5967 enable_MAC(local, 1);
1da177e4
LT
5968 }
5969 return 0;
5970}
5971
5972/*------------------------------------------------------------------*/
5973/*
5974 * Wireless Handler : get AP address
5975 */
5976static int airo_get_wap(struct net_device *dev,
5977 struct iw_request_info *info,
5978 struct sockaddr *awrq,
5979 char *extra)
5980{
5981 struct airo_info *local = dev->priv;
5982 StatusRid status_rid; /* Card status info */
5983
5984 readStatusRid(local, &status_rid, 1);
5985
5986 /* Tentative. This seems to work, wow, I'm lucky !!! */
5987 memcpy(awrq->sa_data, status_rid.bssid[0], ETH_ALEN);
5988 awrq->sa_family = ARPHRD_ETHER;
5989
5990 return 0;
5991}
5992
5993/*------------------------------------------------------------------*/
5994/*
5995 * Wireless Handler : set Nickname
5996 */
5997static int airo_set_nick(struct net_device *dev,
5998 struct iw_request_info *info,
5999 struct iw_point *dwrq,
6000 char *extra)
6001{
6002 struct airo_info *local = dev->priv;
6003
6004 /* Check the size of the string */
7f8544cc 6005 if(dwrq->length > 16) {
1da177e4
LT
6006 return -E2BIG;
6007 }
6008 readConfigRid(local, 1);
6009 memset(local->config.nodeName, 0, sizeof(local->config.nodeName));
6010 memcpy(local->config.nodeName, extra, dwrq->length);
6011 set_bit (FLAG_COMMIT, &local->flags);
6012
6013 return -EINPROGRESS; /* Call commit handler */
6014}
6015
6016/*------------------------------------------------------------------*/
6017/*
6018 * Wireless Handler : get Nickname
6019 */
6020static int airo_get_nick(struct net_device *dev,
6021 struct iw_request_info *info,
6022 struct iw_point *dwrq,
6023 char *extra)
6024{
6025 struct airo_info *local = dev->priv;
6026
6027 readConfigRid(local, 1);
6028 strncpy(extra, local->config.nodeName, 16);
6029 extra[16] = '\0';
7f8544cc 6030 dwrq->length = strlen(extra);
1da177e4
LT
6031
6032 return 0;
6033}
6034
6035/*------------------------------------------------------------------*/
6036/*
6037 * Wireless Handler : set Bit-Rate
6038 */
6039static int airo_set_rate(struct net_device *dev,
6040 struct iw_request_info *info,
6041 struct iw_param *vwrq,
6042 char *extra)
6043{
6044 struct airo_info *local = dev->priv;
6045 CapabilityRid cap_rid; /* Card capability info */
6046 u8 brate = 0;
6047 int i;
6048
6049 /* First : get a valid bit rate value */
6050 readCapabilityRid(local, &cap_rid, 1);
6051
6052 /* Which type of value ? */
6053 if((vwrq->value < 8) && (vwrq->value >= 0)) {
6054 /* Setting by rate index */
6055 /* Find value in the magic rate table */
6056 brate = cap_rid.supportedRates[vwrq->value];
6057 } else {
6058 /* Setting by frequency value */
6059 u8 normvalue = (u8) (vwrq->value/500000);
6060
6061 /* Check if rate is valid */
6062 for(i = 0 ; i < 8 ; i++) {
6063 if(normvalue == cap_rid.supportedRates[i]) {
6064 brate = normvalue;
6065 break;
6066 }
6067 }
6068 }
6069 /* -1 designed the max rate (mostly auto mode) */
6070 if(vwrq->value == -1) {
6071 /* Get the highest available rate */
6072 for(i = 0 ; i < 8 ; i++) {
6073 if(cap_rid.supportedRates[i] == 0)
6074 break;
6075 }
6076 if(i != 0)
6077 brate = cap_rid.supportedRates[i - 1];
6078 }
6079 /* Check that it is valid */
6080 if(brate == 0) {
6081 return -EINVAL;
6082 }
6083
6084 readConfigRid(local, 1);
6085 /* Now, check if we want a fixed or auto value */
6086 if(vwrq->fixed == 0) {
6087 /* Fill all the rates up to this max rate */
6088 memset(local->config.rates, 0, 8);
6089 for(i = 0 ; i < 8 ; i++) {
6090 local->config.rates[i] = cap_rid.supportedRates[i];
6091 if(local->config.rates[i] == brate)
6092 break;
6093 }
6094 } else {
6095 /* Fixed mode */
6096 /* One rate, fixed */
6097 memset(local->config.rates, 0, 8);
6098 local->config.rates[0] = brate;
6099 }
6100 set_bit (FLAG_COMMIT, &local->flags);
6101
6102 return -EINPROGRESS; /* Call commit handler */
6103}
6104
6105/*------------------------------------------------------------------*/
6106/*
6107 * Wireless Handler : get Bit-Rate
6108 */
6109static int airo_get_rate(struct net_device *dev,
6110 struct iw_request_info *info,
6111 struct iw_param *vwrq,
6112 char *extra)
6113{
6114 struct airo_info *local = dev->priv;
6115 StatusRid status_rid; /* Card status info */
6116
6117 readStatusRid(local, &status_rid, 1);
6118
6119 vwrq->value = status_rid.currentXmitRate * 500000;
6120 /* If more than one rate, set auto */
6121 readConfigRid(local, 1);
6122 vwrq->fixed = (local->config.rates[1] == 0);
6123
6124 return 0;
6125}
6126
6127/*------------------------------------------------------------------*/
6128/*
6129 * Wireless Handler : set RTS threshold
6130 */
6131static int airo_set_rts(struct net_device *dev,
6132 struct iw_request_info *info,
6133 struct iw_param *vwrq,
6134 char *extra)
6135{
6136 struct airo_info *local = dev->priv;
6137 int rthr = vwrq->value;
6138
6139 if(vwrq->disabled)
15db2763
DW
6140 rthr = AIRO_DEF_MTU;
6141 if((rthr < 0) || (rthr > AIRO_DEF_MTU)) {
1da177e4
LT
6142 return -EINVAL;
6143 }
6144 readConfigRid(local, 1);
6145 local->config.rtsThres = rthr;
6146 set_bit (FLAG_COMMIT, &local->flags);
6147
6148 return -EINPROGRESS; /* Call commit handler */
6149}
6150
6151/*------------------------------------------------------------------*/
6152/*
6153 * Wireless Handler : get RTS threshold
6154 */
6155static int airo_get_rts(struct net_device *dev,
6156 struct iw_request_info *info,
6157 struct iw_param *vwrq,
6158 char *extra)
6159{
6160 struct airo_info *local = dev->priv;
6161
6162 readConfigRid(local, 1);
6163 vwrq->value = local->config.rtsThres;
15db2763 6164 vwrq->disabled = (vwrq->value >= AIRO_DEF_MTU);
1da177e4
LT
6165 vwrq->fixed = 1;
6166
6167 return 0;
6168}
6169
6170/*------------------------------------------------------------------*/
6171/*
6172 * Wireless Handler : set Fragmentation threshold
6173 */
6174static int airo_set_frag(struct net_device *dev,
6175 struct iw_request_info *info,
6176 struct iw_param *vwrq,
6177 char *extra)
6178{
6179 struct airo_info *local = dev->priv;
6180 int fthr = vwrq->value;
6181
6182 if(vwrq->disabled)
15db2763
DW
6183 fthr = AIRO_DEF_MTU;
6184 if((fthr < 256) || (fthr > AIRO_DEF_MTU)) {
1da177e4
LT
6185 return -EINVAL;
6186 }
6187 fthr &= ~0x1; /* Get an even value - is it really needed ??? */
6188 readConfigRid(local, 1);
6189 local->config.fragThresh = (u16)fthr;
6190 set_bit (FLAG_COMMIT, &local->flags);
6191
6192 return -EINPROGRESS; /* Call commit handler */
6193}
6194
6195/*------------------------------------------------------------------*/
6196/*
6197 * Wireless Handler : get Fragmentation threshold
6198 */
6199static int airo_get_frag(struct net_device *dev,
6200 struct iw_request_info *info,
6201 struct iw_param *vwrq,
6202 char *extra)
6203{
6204 struct airo_info *local = dev->priv;
6205
6206 readConfigRid(local, 1);
6207 vwrq->value = local->config.fragThresh;
15db2763 6208 vwrq->disabled = (vwrq->value >= AIRO_DEF_MTU);
1da177e4
LT
6209 vwrq->fixed = 1;
6210
6211 return 0;
6212}
6213
6214/*------------------------------------------------------------------*/
6215/*
6216 * Wireless Handler : set Mode of Operation
6217 */
6218static int airo_set_mode(struct net_device *dev,
6219 struct iw_request_info *info,
6220 __u32 *uwrq,
6221 char *extra)
6222{
6223 struct airo_info *local = dev->priv;
6224 int reset = 0;
6225
6226 readConfigRid(local, 1);
6227 if ((local->config.rmode & 0xff) >= RXMODE_RFMON)
6228 reset = 1;
6229
6230 switch(*uwrq) {
6231 case IW_MODE_ADHOC:
6232 local->config.opmode &= 0xFF00;
6233 local->config.opmode |= MODE_STA_IBSS;
6234 local->config.rmode &= 0xfe00;
6235 local->config.scanMode = SCANMODE_ACTIVE;
6236 clear_bit (FLAG_802_11, &local->flags);
6237 break;
6238 case IW_MODE_INFRA:
6239 local->config.opmode &= 0xFF00;
6240 local->config.opmode |= MODE_STA_ESS;
6241 local->config.rmode &= 0xfe00;
6242 local->config.scanMode = SCANMODE_ACTIVE;
6243 clear_bit (FLAG_802_11, &local->flags);
6244 break;
6245 case IW_MODE_MASTER:
6246 local->config.opmode &= 0xFF00;
6247 local->config.opmode |= MODE_AP;
6248 local->config.rmode &= 0xfe00;
6249 local->config.scanMode = SCANMODE_ACTIVE;
6250 clear_bit (FLAG_802_11, &local->flags);
6251 break;
6252 case IW_MODE_REPEAT:
6253 local->config.opmode &= 0xFF00;
6254 local->config.opmode |= MODE_AP_RPTR;
6255 local->config.rmode &= 0xfe00;
6256 local->config.scanMode = SCANMODE_ACTIVE;
6257 clear_bit (FLAG_802_11, &local->flags);
6258 break;
6259 case IW_MODE_MONITOR:
6260 local->config.opmode &= 0xFF00;
6261 local->config.opmode |= MODE_STA_ESS;
6262 local->config.rmode &= 0xfe00;
6263 local->config.rmode |= RXMODE_RFMON | RXMODE_DISABLE_802_3_HEADER;
6264 local->config.scanMode = SCANMODE_PASSIVE;
6265 set_bit (FLAG_802_11, &local->flags);
6266 break;
6267 default:
6268 return -EINVAL;
6269 }
6270 if (reset)
6271 set_bit (FLAG_RESET, &local->flags);
6272 set_bit (FLAG_COMMIT, &local->flags);
6273
6274 return -EINPROGRESS; /* Call commit handler */
6275}
6276
6277/*------------------------------------------------------------------*/
6278/*
6279 * Wireless Handler : get Mode of Operation
6280 */
6281static int airo_get_mode(struct net_device *dev,
6282 struct iw_request_info *info,
6283 __u32 *uwrq,
6284 char *extra)
6285{
6286 struct airo_info *local = dev->priv;
6287
6288 readConfigRid(local, 1);
6289 /* If not managed, assume it's ad-hoc */
6290 switch (local->config.opmode & 0xFF) {
6291 case MODE_STA_ESS:
6292 *uwrq = IW_MODE_INFRA;
6293 break;
6294 case MODE_AP:
6295 *uwrq = IW_MODE_MASTER;
6296 break;
6297 case MODE_AP_RPTR:
6298 *uwrq = IW_MODE_REPEAT;
6299 break;
6300 default:
6301 *uwrq = IW_MODE_ADHOC;
6302 }
6303
6304 return 0;
6305}
6306
6307/*------------------------------------------------------------------*/
6308/*
6309 * Wireless Handler : set Encryption Key
6310 */
6311static int airo_set_encode(struct net_device *dev,
6312 struct iw_request_info *info,
6313 struct iw_point *dwrq,
6314 char *extra)
6315{
6316 struct airo_info *local = dev->priv;
6317 CapabilityRid cap_rid; /* Card capability info */
f89b2321
DS
6318 int perm = ( dwrq->flags & IW_ENCODE_TEMP ? 0 : 1 );
6319 u16 currentAuthType = local->config.authType;
1da177e4
LT
6320
6321 /* Is WEP supported ? */
6322 readCapabilityRid(local, &cap_rid, 1);
6323 /* Older firmware doesn't support this...
6324 if(!(cap_rid.softCap & 2)) {
6325 return -EOPNOTSUPP;
6326 } */
6327 readConfigRid(local, 1);
6328
6329 /* Basic checking: do we have a key to set ?
6330 * Note : with the new API, it's impossible to get a NULL pointer.
6331 * Therefore, we need to check a key size == 0 instead.
6332 * New version of iwconfig properly set the IW_ENCODE_NOKEY flag
6333 * when no key is present (only change flags), but older versions
6334 * don't do it. - Jean II */
6335 if (dwrq->length > 0) {
6336 wep_key_t key;
6337 int index = (dwrq->flags & IW_ENCODE_INDEX) - 1;
6338 int current_index = get_wep_key(local, 0xffff);
6339 /* Check the size of the key */
6340 if (dwrq->length > MAX_KEY_SIZE) {
6341 return -EINVAL;
6342 }
6343 /* Check the index (none -> use current) */
6344 if ((index < 0) || (index >= ((cap_rid.softCap & 0x80) ? 4:1)))
6345 index = current_index;
6346 /* Set the length */
6347 if (dwrq->length > MIN_KEY_SIZE)
6348 key.len = MAX_KEY_SIZE;
6349 else
6350 if (dwrq->length > 0)
6351 key.len = MIN_KEY_SIZE;
6352 else
6353 /* Disable the key */
6354 key.len = 0;
6355 /* Check if the key is not marked as invalid */
6356 if(!(dwrq->flags & IW_ENCODE_NOKEY)) {
6357 /* Cleanup */
6358 memset(key.key, 0, MAX_KEY_SIZE);
6359 /* Copy the key in the driver */
6360 memcpy(key.key, extra, dwrq->length);
6361 /* Send the key to the card */
f89b2321 6362 set_wep_key(local, index, key.key, key.len, perm, 1);
1da177e4
LT
6363 }
6364 /* WE specify that if a valid key is set, encryption
6365 * should be enabled (user may turn it off later)
6366 * This is also how "iwconfig ethX key on" works */
6367 if((index == current_index) && (key.len > 0) &&
6368 (local->config.authType == AUTH_OPEN)) {
6369 local->config.authType = AUTH_ENCRYPT;
1da177e4
LT
6370 }
6371 } else {
6372 /* Do we want to just set the transmit key index ? */
6373 int index = (dwrq->flags & IW_ENCODE_INDEX) - 1;
6374 if ((index >= 0) && (index < ((cap_rid.softCap & 0x80)?4:1))) {
f89b2321 6375 set_wep_key(local, index, NULL, 0, perm, 1);
1da177e4
LT
6376 } else
6377 /* Don't complain if only change the mode */
93a3b607 6378 if (!(dwrq->flags & IW_ENCODE_MODE))
1da177e4 6379 return -EINVAL;
1da177e4
LT
6380 }
6381 /* Read the flags */
6382 if(dwrq->flags & IW_ENCODE_DISABLED)
6383 local->config.authType = AUTH_OPEN; // disable encryption
6384 if(dwrq->flags & IW_ENCODE_RESTRICTED)
6385 local->config.authType = AUTH_SHAREDKEY; // Only Both
6386 if(dwrq->flags & IW_ENCODE_OPEN)
6387 local->config.authType = AUTH_ENCRYPT; // Only Wep
6388 /* Commit the changes to flags if needed */
f89b2321 6389 if (local->config.authType != currentAuthType)
1da177e4
LT
6390 set_bit (FLAG_COMMIT, &local->flags);
6391 return -EINPROGRESS; /* Call commit handler */
6392}
6393
6394/*------------------------------------------------------------------*/
6395/*
6396 * Wireless Handler : get Encryption Key
6397 */
6398static int airo_get_encode(struct net_device *dev,
6399 struct iw_request_info *info,
6400 struct iw_point *dwrq,
6401 char *extra)
6402{
6403 struct airo_info *local = dev->priv;
6404 int index = (dwrq->flags & IW_ENCODE_INDEX) - 1;
6405 CapabilityRid cap_rid; /* Card capability info */
6406
6407 /* Is it supported ? */
6408 readCapabilityRid(local, &cap_rid, 1);
6409 if(!(cap_rid.softCap & 2)) {
6410 return -EOPNOTSUPP;
6411 }
6412 readConfigRid(local, 1);
6413 /* Check encryption mode */
6414 switch(local->config.authType) {
6415 case AUTH_ENCRYPT:
6416 dwrq->flags = IW_ENCODE_OPEN;
6417 break;
6418 case AUTH_SHAREDKEY:
6419 dwrq->flags = IW_ENCODE_RESTRICTED;
6420 break;
6421 default:
6422 case AUTH_OPEN:
6423 dwrq->flags = IW_ENCODE_DISABLED;
6424 break;
6425 }
6426 /* We can't return the key, so set the proper flag and return zero */
6427 dwrq->flags |= IW_ENCODE_NOKEY;
6428 memset(extra, 0, 16);
6429
6430 /* Which key do we want ? -1 -> tx index */
6431 if ((index < 0) || (index >= ((cap_rid.softCap & 0x80) ? 4 : 1)))
6432 index = get_wep_key(local, 0xffff);
6433 dwrq->flags |= index + 1;
6434 /* Copy the key to the user buffer */
6435 dwrq->length = get_wep_key(local, index);
6436 if (dwrq->length > 16) {
6437 dwrq->length=0;
6438 }
6439 return 0;
6440}
6441
4be757dd
DW
6442/*------------------------------------------------------------------*/
6443/*
6444 * Wireless Handler : set extended Encryption parameters
6445 */
6446static int airo_set_encodeext(struct net_device *dev,
6447 struct iw_request_info *info,
6448 union iwreq_data *wrqu,
6449 char *extra)
6450{
6451 struct airo_info *local = dev->priv;
6452 struct iw_point *encoding = &wrqu->encoding;
6453 struct iw_encode_ext *ext = (struct iw_encode_ext *)extra;
6454 CapabilityRid cap_rid; /* Card capability info */
6455 int perm = ( encoding->flags & IW_ENCODE_TEMP ? 0 : 1 );
6456 u16 currentAuthType = local->config.authType;
22d8846e 6457 int idx, key_len, alg = ext->alg, set_key = 1;
4be757dd
DW
6458 wep_key_t key;
6459
6460 /* Is WEP supported ? */
6461 readCapabilityRid(local, &cap_rid, 1);
6462 /* Older firmware doesn't support this...
6463 if(!(cap_rid.softCap & 2)) {
6464 return -EOPNOTSUPP;
6465 } */
6466 readConfigRid(local, 1);
6467
6468 /* Determine and validate the key index */
6469 idx = encoding->flags & IW_ENCODE_INDEX;
6470 if (idx) {
6471 if (idx < 1 || idx > ((cap_rid.softCap & 0x80) ? 4:1))
6472 return -EINVAL;
6473 idx--;
6474 } else
6475 idx = get_wep_key(local, 0xffff);
6476
6477 if (encoding->flags & IW_ENCODE_DISABLED)
6478 alg = IW_ENCODE_ALG_NONE;
6479
4be757dd 6480 if (ext->ext_flags & IW_ENCODE_EXT_SET_TX_KEY) {
22d8846e
DW
6481 /* Only set transmit key index here, actual
6482 * key is set below if needed.
6483 */
4be757dd 6484 set_wep_key(local, idx, NULL, 0, perm, 1);
22d8846e
DW
6485 set_key = ext->key_len > 0 ? 1 : 0;
6486 }
6487
6488 if (set_key) {
4be757dd
DW
6489 /* Set the requested key first */
6490 memset(key.key, 0, MAX_KEY_SIZE);
6491 switch (alg) {
6492 case IW_ENCODE_ALG_NONE:
6493 key.len = 0;
6494 break;
6495 case IW_ENCODE_ALG_WEP:
6496 if (ext->key_len > MIN_KEY_SIZE) {
6497 key.len = MAX_KEY_SIZE;
6498 } else if (ext->key_len > 0) {
6499 key.len = MIN_KEY_SIZE;
6500 } else {
6501 return -EINVAL;
6502 }
6503 key_len = min (ext->key_len, key.len);
6504 memcpy(key.key, ext->key, key_len);
6505 break;
6506 default:
6507 return -EINVAL;
6508 }
6509 /* Send the key to the card */
6510 set_wep_key(local, idx, key.key, key.len, perm, 1);
6511 }
6512
6513 /* Read the flags */
6514 if(encoding->flags & IW_ENCODE_DISABLED)
6515 local->config.authType = AUTH_OPEN; // disable encryption
6516 if(encoding->flags & IW_ENCODE_RESTRICTED)
6517 local->config.authType = AUTH_SHAREDKEY; // Only Both
6518 if(encoding->flags & IW_ENCODE_OPEN)
6519 local->config.authType = AUTH_ENCRYPT; // Only Wep
6520 /* Commit the changes to flags if needed */
6521 if (local->config.authType != currentAuthType)
6522 set_bit (FLAG_COMMIT, &local->flags);
6523
6524 return -EINPROGRESS;
6525}
6526
6527
6528/*------------------------------------------------------------------*/
6529/*
6530 * Wireless Handler : get extended Encryption parameters
6531 */
6532static int airo_get_encodeext(struct net_device *dev,
6533 struct iw_request_info *info,
6534 union iwreq_data *wrqu,
6535 char *extra)
6536{
6537 struct airo_info *local = dev->priv;
6538 struct iw_point *encoding = &wrqu->encoding;
6539 struct iw_encode_ext *ext = (struct iw_encode_ext *)extra;
6540 CapabilityRid cap_rid; /* Card capability info */
6541 int idx, max_key_len;
6542
6543 /* Is it supported ? */
6544 readCapabilityRid(local, &cap_rid, 1);
6545 if(!(cap_rid.softCap & 2)) {
6546 return -EOPNOTSUPP;
6547 }
6548 readConfigRid(local, 1);
6549
6550 max_key_len = encoding->length - sizeof(*ext);
6551 if (max_key_len < 0)
6552 return -EINVAL;
6553
6554 idx = encoding->flags & IW_ENCODE_INDEX;
6555 if (idx) {
6556 if (idx < 1 || idx > ((cap_rid.softCap & 0x80) ? 4:1))
6557 return -EINVAL;
6558 idx--;
6559 } else
6560 idx = get_wep_key(local, 0xffff);
6561
6562 encoding->flags = idx + 1;
6563 memset(ext, 0, sizeof(*ext));
6564
6565 /* Check encryption mode */
6566 switch(local->config.authType) {
6567 case AUTH_ENCRYPT:
6568 encoding->flags = IW_ENCODE_ALG_WEP | IW_ENCODE_ENABLED;
6569 break;
6570 case AUTH_SHAREDKEY:
6571 encoding->flags = IW_ENCODE_ALG_WEP | IW_ENCODE_ENABLED;
6572 break;
6573 default:
6574 case AUTH_OPEN:
6575 encoding->flags = IW_ENCODE_ALG_NONE | IW_ENCODE_DISABLED;
6576 break;
6577 }
6578 /* We can't return the key, so set the proper flag and return zero */
6579 encoding->flags |= IW_ENCODE_NOKEY;
6580 memset(extra, 0, 16);
6581
6582 /* Copy the key to the user buffer */
6583 ext->key_len = get_wep_key(local, idx);
6584 if (ext->key_len > 16) {
6585 ext->key_len=0;
6586 }
6587
6588 return 0;
6589}
6590
6591
6592/*------------------------------------------------------------------*/
6593/*
6594 * Wireless Handler : set extended authentication parameters
6595 */
6596static int airo_set_auth(struct net_device *dev,
6597 struct iw_request_info *info,
6598 union iwreq_data *wrqu, char *extra)
6599{
6600 struct airo_info *local = dev->priv;
6601 struct iw_param *param = &wrqu->param;
6602 u16 currentAuthType = local->config.authType;
6603
6604 switch (param->flags & IW_AUTH_INDEX) {
6605 case IW_AUTH_WPA_VERSION:
6606 case IW_AUTH_CIPHER_PAIRWISE:
6607 case IW_AUTH_CIPHER_GROUP:
6608 case IW_AUTH_KEY_MGMT:
6609 case IW_AUTH_RX_UNENCRYPTED_EAPOL:
6610 case IW_AUTH_PRIVACY_INVOKED:
6611 /*
6612 * airo does not use these parameters
6613 */
6614 break;
6615
6616 case IW_AUTH_DROP_UNENCRYPTED:
6617 if (param->value) {
6618 /* Only change auth type if unencrypted */
6619 if (currentAuthType == AUTH_OPEN)
6620 local->config.authType = AUTH_ENCRYPT;
6621 } else {
6622 local->config.authType = AUTH_OPEN;
6623 }
6624
6625 /* Commit the changes to flags if needed */
6626 if (local->config.authType != currentAuthType)
6627 set_bit (FLAG_COMMIT, &local->flags);
6628 break;
6629
6630 case IW_AUTH_80211_AUTH_ALG: {
6631 /* FIXME: What about AUTH_OPEN? This API seems to
6632 * disallow setting our auth to AUTH_OPEN.
6633 */
6634 if (param->value & IW_AUTH_ALG_SHARED_KEY) {
6635 local->config.authType = AUTH_SHAREDKEY;
6636 } else if (param->value & IW_AUTH_ALG_OPEN_SYSTEM) {
6637 local->config.authType = AUTH_ENCRYPT;
6638 } else
6639 return -EINVAL;
6640 break;
6641
6642 /* Commit the changes to flags if needed */
6643 if (local->config.authType != currentAuthType)
6644 set_bit (FLAG_COMMIT, &local->flags);
6645 }
6646
6647 case IW_AUTH_WPA_ENABLED:
6648 /* Silently accept disable of WPA */
6649 if (param->value > 0)
6650 return -EOPNOTSUPP;
6651 break;
6652
6653 default:
6654 return -EOPNOTSUPP;
6655 }
6656 return -EINPROGRESS;
6657}
6658
6659
6660/*------------------------------------------------------------------*/
6661/*
6662 * Wireless Handler : get extended authentication parameters
6663 */
6664static int airo_get_auth(struct net_device *dev,
6665 struct iw_request_info *info,
6666 union iwreq_data *wrqu, char *extra)
6667{
6668 struct airo_info *local = dev->priv;
6669 struct iw_param *param = &wrqu->param;
6670 u16 currentAuthType = local->config.authType;
6671
6672 switch (param->flags & IW_AUTH_INDEX) {
6673 case IW_AUTH_DROP_UNENCRYPTED:
6674 switch (currentAuthType) {
6675 case AUTH_SHAREDKEY:
6676 case AUTH_ENCRYPT:
6677 param->value = 1;
6678 break;
6679 default:
6680 param->value = 0;
6681 break;
6682 }
6683 break;
6684
6685 case IW_AUTH_80211_AUTH_ALG:
6686 switch (currentAuthType) {
6687 case AUTH_SHAREDKEY:
6688 param->value = IW_AUTH_ALG_SHARED_KEY;
6689 break;
6690 case AUTH_ENCRYPT:
6691 default:
6692 param->value = IW_AUTH_ALG_OPEN_SYSTEM;
6693 break;
6694 }
6695 break;
6696
6697 case IW_AUTH_WPA_ENABLED:
6698 param->value = 0;
6699 break;
6700
6701 default:
6702 return -EOPNOTSUPP;
6703 }
6704 return 0;
6705}
6706
6707
1da177e4
LT
6708/*------------------------------------------------------------------*/
6709/*
6710 * Wireless Handler : set Tx-Power
6711 */
6712static int airo_set_txpow(struct net_device *dev,
6713 struct iw_request_info *info,
6714 struct iw_param *vwrq,
6715 char *extra)
6716{
6717 struct airo_info *local = dev->priv;
6718 CapabilityRid cap_rid; /* Card capability info */
6719 int i;
6720 int rc = -EINVAL;
6721
6722 readCapabilityRid(local, &cap_rid, 1);
6723
6724 if (vwrq->disabled) {
6725 set_bit (FLAG_RADIO_OFF, &local->flags);
6726 set_bit (FLAG_COMMIT, &local->flags);
6727 return -EINPROGRESS; /* Call commit handler */
6728 }
6729 if (vwrq->flags != IW_TXPOW_MWATT) {
6730 return -EINVAL;
6731 }
6732 clear_bit (FLAG_RADIO_OFF, &local->flags);
6733 for (i = 0; cap_rid.txPowerLevels[i] && (i < 8); i++)
6734 if ((vwrq->value==cap_rid.txPowerLevels[i])) {
6735 readConfigRid(local, 1);
6736 local->config.txPower = vwrq->value;
6737 set_bit (FLAG_COMMIT, &local->flags);
6738 rc = -EINPROGRESS; /* Call commit handler */
6739 break;
6740 }
6741 return rc;
6742}
6743
6744/*------------------------------------------------------------------*/
6745/*
6746 * Wireless Handler : get Tx-Power
6747 */
6748static int airo_get_txpow(struct net_device *dev,
6749 struct iw_request_info *info,
6750 struct iw_param *vwrq,
6751 char *extra)
6752{
6753 struct airo_info *local = dev->priv;
6754
6755 readConfigRid(local, 1);
6756 vwrq->value = local->config.txPower;
6757 vwrq->fixed = 1; /* No power control */
6758 vwrq->disabled = test_bit(FLAG_RADIO_OFF, &local->flags);
6759 vwrq->flags = IW_TXPOW_MWATT;
6760
6761 return 0;
6762}
6763
6764/*------------------------------------------------------------------*/
6765/*
6766 * Wireless Handler : set Retry limits
6767 */
6768static int airo_set_retry(struct net_device *dev,
6769 struct iw_request_info *info,
6770 struct iw_param *vwrq,
6771 char *extra)
6772{
6773 struct airo_info *local = dev->priv;
6774 int rc = -EINVAL;
6775
6776 if(vwrq->disabled) {
6777 return -EINVAL;
6778 }
6779 readConfigRid(local, 1);
6780 if(vwrq->flags & IW_RETRY_LIMIT) {
7f8544cc 6781 if(vwrq->flags & IW_RETRY_LONG)
1da177e4 6782 local->config.longRetryLimit = vwrq->value;
7f8544cc 6783 else if (vwrq->flags & IW_RETRY_SHORT)
1da177e4
LT
6784 local->config.shortRetryLimit = vwrq->value;
6785 else {
6786 /* No modifier : set both */
6787 local->config.longRetryLimit = vwrq->value;
6788 local->config.shortRetryLimit = vwrq->value;
6789 }
6790 set_bit (FLAG_COMMIT, &local->flags);
6791 rc = -EINPROGRESS; /* Call commit handler */
6792 }
6793 if(vwrq->flags & IW_RETRY_LIFETIME) {
6794 local->config.txLifetime = vwrq->value / 1024;
6795 set_bit (FLAG_COMMIT, &local->flags);
6796 rc = -EINPROGRESS; /* Call commit handler */
6797 }
6798 return rc;
6799}
6800
6801/*------------------------------------------------------------------*/
6802/*
6803 * Wireless Handler : get Retry limits
6804 */
6805static int airo_get_retry(struct net_device *dev,
6806 struct iw_request_info *info,
6807 struct iw_param *vwrq,
6808 char *extra)
6809{
6810 struct airo_info *local = dev->priv;
6811
6812 vwrq->disabled = 0; /* Can't be disabled */
6813
6814 readConfigRid(local, 1);
6815 /* Note : by default, display the min retry number */
6816 if((vwrq->flags & IW_RETRY_TYPE) == IW_RETRY_LIFETIME) {
6817 vwrq->flags = IW_RETRY_LIFETIME;
6818 vwrq->value = (int)local->config.txLifetime * 1024;
7f8544cc
JT
6819 } else if((vwrq->flags & IW_RETRY_LONG)) {
6820 vwrq->flags = IW_RETRY_LIMIT | IW_RETRY_LONG;
1da177e4
LT
6821 vwrq->value = (int)local->config.longRetryLimit;
6822 } else {
6823 vwrq->flags = IW_RETRY_LIMIT;
6824 vwrq->value = (int)local->config.shortRetryLimit;
6825 if((int)local->config.shortRetryLimit != (int)local->config.longRetryLimit)
7f8544cc 6826 vwrq->flags |= IW_RETRY_SHORT;
1da177e4
LT
6827 }
6828
6829 return 0;
6830}
6831
6832/*------------------------------------------------------------------*/
6833/*
6834 * Wireless Handler : get range info
6835 */
6836static int airo_get_range(struct net_device *dev,
6837 struct iw_request_info *info,
6838 struct iw_point *dwrq,
6839 char *extra)
6840{
6841 struct airo_info *local = dev->priv;
6842 struct iw_range *range = (struct iw_range *) extra;
6843 CapabilityRid cap_rid; /* Card capability info */
6844 int i;
6845 int k;
6846
6847 readCapabilityRid(local, &cap_rid, 1);
6848
6849 dwrq->length = sizeof(struct iw_range);
6850 memset(range, 0, sizeof(*range));
6851 range->min_nwid = 0x0000;
6852 range->max_nwid = 0x0000;
6853 range->num_channels = 14;
6854 /* Should be based on cap_rid.country to give only
6855 * what the current card support */
6856 k = 0;
6857 for(i = 0; i < 14; i++) {
6858 range->freq[k].i = i + 1; /* List index */
6859 range->freq[k].m = frequency_list[i] * 100000;
6860 range->freq[k++].e = 1; /* Values in table in MHz -> * 10^5 * 10 */
6861 }
6862 range->num_frequency = k;
6863
41480af2
DW
6864 range->sensitivity = 65535;
6865
1da177e4 6866 /* Hum... Should put the right values there */
41480af2
DW
6867 if (local->rssi)
6868 range->max_qual.qual = 100; /* % */
6869 else
6870 range->max_qual.qual = airo_get_max_quality(&cap_rid);
ce6623c3
JT
6871 range->max_qual.level = 0x100 - 120; /* -120 dBm */
6872 range->max_qual.noise = 0x100 - 120; /* -120 dBm */
41480af2
DW
6873
6874 /* Experimental measurements - boundary 11/5.5 Mb/s */
6875 /* Note : with or without the (local->rssi), results
6876 * are somewhat different. - Jean II */
6877 if (local->rssi) {
ce6623c3
JT
6878 range->avg_qual.qual = 50; /* % */
6879 range->avg_qual.level = 0x100 - 70; /* -70 dBm */
41480af2
DW
6880 } else {
6881 range->avg_qual.qual = airo_get_avg_quality(&cap_rid);
ce6623c3 6882 range->avg_qual.level = 0x100 - 80; /* -80 dBm */
41480af2 6883 }
ce6623c3 6884 range->avg_qual.noise = 0x100 - 85; /* -85 dBm */
1da177e4
LT
6885
6886 for(i = 0 ; i < 8 ; i++) {
6887 range->bitrate[i] = cap_rid.supportedRates[i] * 500000;
6888 if(range->bitrate[i] == 0)
6889 break;
6890 }
6891 range->num_bitrates = i;
6892
6893 /* Set an indication of the max TCP throughput
6894 * in bit/s that we can expect using this interface.
6895 * May be use for QoS stuff... Jean II */
6896 if(i > 2)
6897 range->throughput = 5000 * 1000;
6898 else
6899 range->throughput = 1500 * 1000;
6900
6901 range->min_rts = 0;
15db2763 6902 range->max_rts = AIRO_DEF_MTU;
1da177e4 6903 range->min_frag = 256;
15db2763 6904 range->max_frag = AIRO_DEF_MTU;
1da177e4
LT
6905
6906 if(cap_rid.softCap & 2) {
6907 // WEP: RC4 40 bits
6908 range->encoding_size[0] = 5;
6909 // RC4 ~128 bits
6910 if (cap_rid.softCap & 0x100) {
6911 range->encoding_size[1] = 13;
6912 range->num_encoding_sizes = 2;
6913 } else
6914 range->num_encoding_sizes = 1;
6915 range->max_encoding_tokens = (cap_rid.softCap & 0x80) ? 4 : 1;
6916 } else {
6917 range->num_encoding_sizes = 0;
6918 range->max_encoding_tokens = 0;
6919 }
6920 range->min_pmp = 0;
6921 range->max_pmp = 5000000; /* 5 secs */
6922 range->min_pmt = 0;
6923 range->max_pmt = 65535 * 1024; /* ??? */
6924 range->pmp_flags = IW_POWER_PERIOD;
6925 range->pmt_flags = IW_POWER_TIMEOUT;
6926 range->pm_capa = IW_POWER_PERIOD | IW_POWER_TIMEOUT | IW_POWER_ALL_R;
6927
6928 /* Transmit Power - values are in mW */
6929 for(i = 0 ; i < 8 ; i++) {
6930 range->txpower[i] = cap_rid.txPowerLevels[i];
6931 if(range->txpower[i] == 0)
6932 break;
6933 }
6934 range->num_txpower = i;
6935 range->txpower_capa = IW_TXPOW_MWATT;
3c304956 6936 range->we_version_source = 19;
1da177e4
LT
6937 range->we_version_compiled = WIRELESS_EXT;
6938 range->retry_capa = IW_RETRY_LIMIT | IW_RETRY_LIFETIME;
6939 range->retry_flags = IW_RETRY_LIMIT;
6940 range->r_time_flags = IW_RETRY_LIFETIME;
6941 range->min_retry = 1;
6942 range->max_retry = 65535;
6943 range->min_r_time = 1024;
6944 range->max_r_time = 65535 * 1024;
1da177e4
LT
6945
6946 /* Event capability (kernel + driver) */
6947 range->event_capa[0] = (IW_EVENT_CAPA_K_0 |
6948 IW_EVENT_CAPA_MASK(SIOCGIWTHRSPY) |
6949 IW_EVENT_CAPA_MASK(SIOCGIWAP) |
6950 IW_EVENT_CAPA_MASK(SIOCGIWSCAN));
6951 range->event_capa[1] = IW_EVENT_CAPA_K_1;
6952 range->event_capa[4] = IW_EVENT_CAPA_MASK(IWEVTXDROP);
6953 return 0;
6954}
6955
6956/*------------------------------------------------------------------*/
6957/*
6958 * Wireless Handler : set Power Management
6959 */
6960static int airo_set_power(struct net_device *dev,
6961 struct iw_request_info *info,
6962 struct iw_param *vwrq,
6963 char *extra)
6964{
6965 struct airo_info *local = dev->priv;
6966
6967 readConfigRid(local, 1);
6968 if (vwrq->disabled) {
6969 if ((local->config.rmode & 0xFF) >= RXMODE_RFMON) {
6970 return -EINVAL;
6971 }
6972 local->config.powerSaveMode = POWERSAVE_CAM;
6973 local->config.rmode &= 0xFF00;
6974 local->config.rmode |= RXMODE_BC_MC_ADDR;
6975 set_bit (FLAG_COMMIT, &local->flags);
6976 return -EINPROGRESS; /* Call commit handler */
6977 }
6978 if ((vwrq->flags & IW_POWER_TYPE) == IW_POWER_TIMEOUT) {
6979 local->config.fastListenDelay = (vwrq->value + 500) / 1024;
6980 local->config.powerSaveMode = POWERSAVE_PSPCAM;
6981 set_bit (FLAG_COMMIT, &local->flags);
6982 } else if ((vwrq->flags & IW_POWER_TYPE) == IW_POWER_PERIOD) {
6983 local->config.fastListenInterval = local->config.listenInterval = (vwrq->value + 500) / 1024;
6984 local->config.powerSaveMode = POWERSAVE_PSPCAM;
6985 set_bit (FLAG_COMMIT, &local->flags);
6986 }
6987 switch (vwrq->flags & IW_POWER_MODE) {
6988 case IW_POWER_UNICAST_R:
6989 if ((local->config.rmode & 0xFF) >= RXMODE_RFMON) {
6990 return -EINVAL;
6991 }
6992 local->config.rmode &= 0xFF00;
6993 local->config.rmode |= RXMODE_ADDR;
6994 set_bit (FLAG_COMMIT, &local->flags);
6995 break;
6996 case IW_POWER_ALL_R:
6997 if ((local->config.rmode & 0xFF) >= RXMODE_RFMON) {
6998 return -EINVAL;
6999 }
7000 local->config.rmode &= 0xFF00;
7001 local->config.rmode |= RXMODE_BC_MC_ADDR;
7002 set_bit (FLAG_COMMIT, &local->flags);
7003 case IW_POWER_ON:
7f8544cc 7004 /* This is broken, fixme ;-) */
1da177e4
LT
7005 break;
7006 default:
7007 return -EINVAL;
7008 }
7009 // Note : we may want to factor local->need_commit here
7010 // Note2 : may also want to factor RXMODE_RFMON test
7011 return -EINPROGRESS; /* Call commit handler */
7012}
7013
7014/*------------------------------------------------------------------*/
7015/*
7016 * Wireless Handler : get Power Management
7017 */
7018static int airo_get_power(struct net_device *dev,
7019 struct iw_request_info *info,
7020 struct iw_param *vwrq,
7021 char *extra)
7022{
7023 struct airo_info *local = dev->priv;
7024 int mode;
7025
7026 readConfigRid(local, 1);
7027 mode = local->config.powerSaveMode;
7028 if ((vwrq->disabled = (mode == POWERSAVE_CAM)))
7029 return 0;
7030 if ((vwrq->flags & IW_POWER_TYPE) == IW_POWER_TIMEOUT) {
7031 vwrq->value = (int)local->config.fastListenDelay * 1024;
7032 vwrq->flags = IW_POWER_TIMEOUT;
7033 } else {
7034 vwrq->value = (int)local->config.fastListenInterval * 1024;
7035 vwrq->flags = IW_POWER_PERIOD;
7036 }
7037 if ((local->config.rmode & 0xFF) == RXMODE_ADDR)
7038 vwrq->flags |= IW_POWER_UNICAST_R;
7039 else
7040 vwrq->flags |= IW_POWER_ALL_R;
7041
7042 return 0;
7043}
7044
7045/*------------------------------------------------------------------*/
7046/*
7047 * Wireless Handler : set Sensitivity
7048 */
7049static int airo_set_sens(struct net_device *dev,
7050 struct iw_request_info *info,
7051 struct iw_param *vwrq,
7052 char *extra)
7053{
7054 struct airo_info *local = dev->priv;
7055
7056 readConfigRid(local, 1);
7057 local->config.rssiThreshold = vwrq->disabled ? RSSI_DEFAULT : vwrq->value;
7058 set_bit (FLAG_COMMIT, &local->flags);
7059
7060 return -EINPROGRESS; /* Call commit handler */
7061}
7062
7063/*------------------------------------------------------------------*/
7064/*
7065 * Wireless Handler : get Sensitivity
7066 */
7067static int airo_get_sens(struct net_device *dev,
7068 struct iw_request_info *info,
7069 struct iw_param *vwrq,
7070 char *extra)
7071{
7072 struct airo_info *local = dev->priv;
7073
7074 readConfigRid(local, 1);
7075 vwrq->value = local->config.rssiThreshold;
7076 vwrq->disabled = (vwrq->value == 0);
7077 vwrq->fixed = 1;
7078
7079 return 0;
7080}
7081
7082/*------------------------------------------------------------------*/
7083/*
7084 * Wireless Handler : get AP List
7085 * Note : this is deprecated in favor of IWSCAN
7086 */
7087static int airo_get_aplist(struct net_device *dev,
7088 struct iw_request_info *info,
7089 struct iw_point *dwrq,
7090 char *extra)
7091{
7092 struct airo_info *local = dev->priv;
7093 struct sockaddr *address = (struct sockaddr *) extra;
7094 struct iw_quality qual[IW_MAX_AP];
7095 BSSListRid BSSList;
7096 int i;
7097 int loseSync = capable(CAP_NET_ADMIN) ? 1: -1;
7098
7099 for (i = 0; i < IW_MAX_AP; i++) {
7100 if (readBSSListRid(local, loseSync, &BSSList))
7101 break;
7102 loseSync = 0;
7103 memcpy(address[i].sa_data, BSSList.bssid, ETH_ALEN);
7104 address[i].sa_family = ARPHRD_ETHER;
41480af2
DW
7105 if (local->rssi) {
7106 qual[i].level = 0x100 - BSSList.dBm;
7107 qual[i].qual = airo_dbm_to_pct( local->rssi, BSSList.dBm );
ce6623c3
JT
7108 qual[i].updated = IW_QUAL_QUAL_UPDATED
7109 | IW_QUAL_LEVEL_UPDATED
7110 | IW_QUAL_DBM;
41480af2
DW
7111 } else {
7112 qual[i].level = (BSSList.dBm + 321) / 2;
7113 qual[i].qual = 0;
ce6623c3
JT
7114 qual[i].updated = IW_QUAL_QUAL_INVALID
7115 | IW_QUAL_LEVEL_UPDATED
7116 | IW_QUAL_DBM;
41480af2
DW
7117 }
7118 qual[i].noise = local->wstats.qual.noise;
1da177e4
LT
7119 if (BSSList.index == 0xffff)
7120 break;
7121 }
7122 if (!i) {
7123 StatusRid status_rid; /* Card status info */
7124 readStatusRid(local, &status_rid, 1);
7125 for (i = 0;
7126 i < min(IW_MAX_AP, 4) &&
7127 (status_rid.bssid[i][0]
7128 & status_rid.bssid[i][1]
7129 & status_rid.bssid[i][2]
7130 & status_rid.bssid[i][3]
7131 & status_rid.bssid[i][4]
7132 & status_rid.bssid[i][5])!=0xff &&
7133 (status_rid.bssid[i][0]
7134 | status_rid.bssid[i][1]
7135 | status_rid.bssid[i][2]
7136 | status_rid.bssid[i][3]
7137 | status_rid.bssid[i][4]
7138 | status_rid.bssid[i][5]);
7139 i++) {
7140 memcpy(address[i].sa_data,
7141 status_rid.bssid[i], ETH_ALEN);
7142 address[i].sa_family = ARPHRD_ETHER;
7143 }
7144 } else {
7145 dwrq->flags = 1; /* Should be define'd */
7146 memcpy(extra + sizeof(struct sockaddr)*i,
7147 &qual, sizeof(struct iw_quality)*i);
7148 }
7149 dwrq->length = i;
7150
7151 return 0;
7152}
7153
7154/*------------------------------------------------------------------*/
7155/*
7156 * Wireless Handler : Initiate Scan
7157 */
7158static int airo_set_scan(struct net_device *dev,
7159 struct iw_request_info *info,
7160 struct iw_param *vwrq,
7161 char *extra)
7162{
7163 struct airo_info *ai = dev->priv;
7164 Cmd cmd;
7165 Resp rsp;
9e75af30 7166 int wake = 0;
1da177e4
LT
7167
7168 /* Note : you may have realised that, as this is a SET operation,
7169 * this is privileged and therefore a normal user can't
7170 * perform scanning.
7171 * This is not an error, while the device perform scanning,
7172 * traffic doesn't flow, so it's a perfect DoS...
7173 * Jean II */
7174 if (ai->flags & FLAG_RADIO_MASK) return -ENETDOWN;
7175
9e75af30
DW
7176 if (down_interruptible(&ai->sem))
7177 return -ERESTARTSYS;
7178
7179 /* If there's already a scan in progress, don't
7180 * trigger another one. */
7181 if (ai->scan_timeout > 0)
7182 goto out;
7183
1da177e4 7184 /* Initiate a scan command */
6fcdf565 7185 ai->scan_timeout = RUN_AT(3*HZ);
1da177e4
LT
7186 memset(&cmd, 0, sizeof(cmd));
7187 cmd.cmd=CMD_LISTBSS;
1da177e4 7188 issuecommand(ai, &cmd, &rsp);
9e75af30 7189 wake = 1;
1da177e4 7190
9e75af30
DW
7191out:
7192 up(&ai->sem);
7193 if (wake)
7194 wake_up_interruptible(&ai->thr_wait);
1da177e4
LT
7195 return 0;
7196}
7197
7198/*------------------------------------------------------------------*/
7199/*
7200 * Translate scan data returned from the card to a card independent
7201 * format that the Wireless Tools will understand - Jean II
7202 */
7203static inline char *airo_translate_scan(struct net_device *dev,
7204 char *current_ev,
7205 char *end_buf,
41480af2 7206 BSSListRid *bss)
1da177e4
LT
7207{
7208 struct airo_info *ai = dev->priv;
7209 struct iw_event iwe; /* Temporary buffer */
7210 u16 capabilities;
7211 char * current_val; /* For rates */
7212 int i;
3c304956 7213 char * buf;
851b3e5e 7214 u16 dBm;
1da177e4
LT
7215
7216 /* First entry *MUST* be the AP MAC address */
7217 iwe.cmd = SIOCGIWAP;
7218 iwe.u.ap_addr.sa_family = ARPHRD_ETHER;
41480af2 7219 memcpy(iwe.u.ap_addr.sa_data, bss->bssid, ETH_ALEN);
1da177e4
LT
7220 current_ev = iwe_stream_add_event(current_ev, end_buf, &iwe, IW_EV_ADDR_LEN);
7221
7222 /* Other entries will be displayed in the order we give them */
7223
7224 /* Add the ESSID */
41480af2 7225 iwe.u.data.length = bss->ssidLen;
1da177e4
LT
7226 if(iwe.u.data.length > 32)
7227 iwe.u.data.length = 32;
7228 iwe.cmd = SIOCGIWESSID;
7229 iwe.u.data.flags = 1;
41480af2 7230 current_ev = iwe_stream_add_point(current_ev, end_buf, &iwe, bss->ssid);
1da177e4
LT
7231
7232 /* Add mode */
7233 iwe.cmd = SIOCGIWMODE;
41480af2 7234 capabilities = le16_to_cpu(bss->cap);
1da177e4
LT
7235 if(capabilities & (CAP_ESS | CAP_IBSS)) {
7236 if(capabilities & CAP_ESS)
7237 iwe.u.mode = IW_MODE_MASTER;
7238 else
7239 iwe.u.mode = IW_MODE_ADHOC;
7240 current_ev = iwe_stream_add_event(current_ev, end_buf, &iwe, IW_EV_UINT_LEN);
7241 }
7242
7243 /* Add frequency */
7244 iwe.cmd = SIOCGIWFREQ;
41480af2 7245 iwe.u.freq.m = le16_to_cpu(bss->dsChannel);
1141455d
MC
7246 /* iwe.u.freq.m containt the channel (starting 1), our
7247 * frequency_list array start at index 0...
7248 */
7249 iwe.u.freq.m = frequency_list[iwe.u.freq.m - 1] * 100000;
1da177e4
LT
7250 iwe.u.freq.e = 1;
7251 current_ev = iwe_stream_add_event(current_ev, end_buf, &iwe, IW_EV_FREQ_LEN);
7252
851b3e5e
AV
7253 dBm = le16_to_cpu(bss->dBm);
7254
1da177e4
LT
7255 /* Add quality statistics */
7256 iwe.cmd = IWEVQUAL;
41480af2 7257 if (ai->rssi) {
851b3e5e
AV
7258 iwe.u.qual.level = 0x100 - dBm;
7259 iwe.u.qual.qual = airo_dbm_to_pct(ai->rssi, dBm);
ce6623c3
JT
7260 iwe.u.qual.updated = IW_QUAL_QUAL_UPDATED
7261 | IW_QUAL_LEVEL_UPDATED
7262 | IW_QUAL_DBM;
41480af2 7263 } else {
851b3e5e 7264 iwe.u.qual.level = (dBm + 321) / 2;
41480af2 7265 iwe.u.qual.qual = 0;
bbeec90b 7266 iwe.u.qual.updated = IW_QUAL_QUAL_INVALID
ce6623c3
JT
7267 | IW_QUAL_LEVEL_UPDATED
7268 | IW_QUAL_DBM;
41480af2
DW
7269 }
7270 iwe.u.qual.noise = ai->wstats.qual.noise;
1da177e4
LT
7271 current_ev = iwe_stream_add_event(current_ev, end_buf, &iwe, IW_EV_QUAL_LEN);
7272
7273 /* Add encryption capability */
7274 iwe.cmd = SIOCGIWENCODE;
7275 if(capabilities & CAP_PRIVACY)
7276 iwe.u.data.flags = IW_ENCODE_ENABLED | IW_ENCODE_NOKEY;
7277 else
7278 iwe.u.data.flags = IW_ENCODE_DISABLED;
7279 iwe.u.data.length = 0;
41480af2 7280 current_ev = iwe_stream_add_point(current_ev, end_buf, &iwe, bss->ssid);
1da177e4
LT
7281
7282 /* Rate : stuffing multiple values in a single event require a bit
7283 * more of magic - Jean II */
7284 current_val = current_ev + IW_EV_LCP_LEN;
7285
7286 iwe.cmd = SIOCGIWRATE;
7287 /* Those two flags are ignored... */
7288 iwe.u.bitrate.fixed = iwe.u.bitrate.disabled = 0;
7289 /* Max 8 values */
7290 for(i = 0 ; i < 8 ; i++) {
7291 /* NULL terminated */
41480af2 7292 if(bss->rates[i] == 0)
1da177e4
LT
7293 break;
7294 /* Bit rate given in 500 kb/s units (+ 0x80) */
41480af2 7295 iwe.u.bitrate.value = ((bss->rates[i] & 0x7f) * 500000);
1da177e4
LT
7296 /* Add new value to event */
7297 current_val = iwe_stream_add_value(current_ev, current_val, end_buf, &iwe, IW_EV_PARAM_LEN);
7298 }
7299 /* Check if we added any event */
7300 if((current_val - current_ev) > IW_EV_LCP_LEN)
7301 current_ev = current_val;
7302
3c304956
DW
7303 /* Beacon interval */
7304 buf = kmalloc(30, GFP_KERNEL);
7305 if (buf) {
7306 iwe.cmd = IWEVCUSTOM;
7307 sprintf(buf, "bcn_int=%d", bss->beaconInterval);
7308 iwe.u.data.length = strlen(buf);
7309 current_ev = iwe_stream_add_point(current_ev, end_buf, &iwe, buf);
7310 kfree(buf);
7311 }
7312
7313 /* Put WPA/RSN Information Elements into the event stream */
7314 if (test_bit(FLAG_WPA_CAPABLE, &ai->flags)) {
7315 unsigned int num_null_ies = 0;
7316 u16 length = sizeof (bss->extra.iep);
7317 struct ieee80211_info_element *info_element =
7318 (struct ieee80211_info_element *) &bss->extra.iep;
7319
7320 while ((length >= sizeof(*info_element)) && (num_null_ies < 2)) {
7321 if (sizeof(*info_element) + info_element->len > length) {
7322 /* Invalid element, don't continue parsing IE */
7323 break;
7324 }
7325
7326 switch (info_element->id) {
7327 case MFIE_TYPE_SSID:
7328 /* Two zero-length SSID elements
7329 * mean we're done parsing elements */
7330 if (!info_element->len)
7331 num_null_ies++;
7332 break;
7333
7334 case MFIE_TYPE_GENERIC:
7335 if (info_element->len >= 4 &&
7336 info_element->data[0] == 0x00 &&
7337 info_element->data[1] == 0x50 &&
7338 info_element->data[2] == 0xf2 &&
7339 info_element->data[3] == 0x01) {
7340 iwe.cmd = IWEVGENIE;
7341 iwe.u.data.length = min(info_element->len + 2,
7342 MAX_WPA_IE_LEN);
7343 current_ev = iwe_stream_add_point(current_ev, end_buf,
7344 &iwe, (char *) info_element);
7345 }
7346 break;
7347
7348 case MFIE_TYPE_RSN:
7349 iwe.cmd = IWEVGENIE;
7350 iwe.u.data.length = min(info_element->len + 2,
7351 MAX_WPA_IE_LEN);
7352 current_ev = iwe_stream_add_point(current_ev, end_buf,
7353 &iwe, (char *) info_element);
7354 break;
7355
7356 default:
7357 break;
7358 }
7359
7360 length -= sizeof(*info_element) + info_element->len;
7361 info_element =
7362 (struct ieee80211_info_element *)&info_element->
7363 data[info_element->len];
7364 }
7365 }
1da177e4
LT
7366 return current_ev;
7367}
7368
7369/*------------------------------------------------------------------*/
7370/*
7371 * Wireless Handler : Read Scan Results
7372 */
7373static int airo_get_scan(struct net_device *dev,
7374 struct iw_request_info *info,
7375 struct iw_point *dwrq,
7376 char *extra)
7377{
7378 struct airo_info *ai = dev->priv;
9e75af30
DW
7379 BSSListElement *net;
7380 int err = 0;
1da177e4
LT
7381 char *current_ev = extra;
7382
9e75af30
DW
7383 /* If a scan is in-progress, return -EAGAIN */
7384 if (ai->scan_timeout > 0)
1da177e4 7385 return -EAGAIN;
1da177e4 7386
9e75af30
DW
7387 if (down_interruptible(&ai->sem))
7388 return -EAGAIN;
1da177e4 7389
9e75af30 7390 list_for_each_entry (net, &ai->network_list, list) {
1da177e4
LT
7391 /* Translate to WE format this entry */
7392 current_ev = airo_translate_scan(dev, current_ev,
7393 extra + dwrq->length,
9e75af30 7394 &net->bss);
1da177e4
LT
7395
7396 /* Check if there is space for one more entry */
7397 if((extra + dwrq->length - current_ev) <= IW_EV_ADDR_LEN) {
7398 /* Ask user space to try again with a bigger buffer */
9e75af30
DW
7399 err = -E2BIG;
7400 goto out;
1da177e4 7401 }
1da177e4 7402 }
9e75af30 7403
1da177e4
LT
7404 /* Length of data */
7405 dwrq->length = (current_ev - extra);
7406 dwrq->flags = 0; /* todo */
7407
9e75af30
DW
7408out:
7409 up(&ai->sem);
7410 return err;
1da177e4
LT
7411}
7412
7413/*------------------------------------------------------------------*/
7414/*
7415 * Commit handler : called after a bunch of SET operations
7416 */
7417static int airo_config_commit(struct net_device *dev,
7418 struct iw_request_info *info, /* NULL */
7419 void *zwrq, /* NULL */
7420 char *extra) /* NULL */
7421{
7422 struct airo_info *local = dev->priv;
1da177e4
LT
7423
7424 if (!test_bit (FLAG_COMMIT, &local->flags))
7425 return 0;
7426
7427 /* Some of the "SET" function may have modified some of the
7428 * parameters. It's now time to commit them in the card */
7429 disable_MAC(local, 1);
7430 if (test_bit (FLAG_RESET, &local->flags)) {
7431 APListRid APList_rid;
7432 SsidRid SSID_rid;
7433
7434 readAPListRid(local, &APList_rid);
7435 readSsidRid(local, &SSID_rid);
7436 if (test_bit(FLAG_MPI,&local->flags))
7437 setup_card(local, dev->dev_addr, 1 );
7438 else
7439 reset_airo_card(dev);
7440 disable_MAC(local, 1);
7441 writeSsidRid(local, &SSID_rid, 1);
7442 writeAPListRid(local, &APList_rid, 1);
7443 }
7444 if (down_interruptible(&local->sem))
7445 return -ERESTARTSYS;
7446 writeConfigRid(local, 0);
175ec1a1 7447 enable_MAC(local, 0);
1da177e4
LT
7448 if (test_bit (FLAG_RESET, &local->flags))
7449 airo_set_promisc(local);
7450 else
7451 up(&local->sem);
7452
7453 return 0;
7454}
7455
7456/*------------------------------------------------------------------*/
7457/*
7458 * Structures to export the Wireless Handlers
7459 */
7460
7461static const struct iw_priv_args airo_private_args[] = {
7462/*{ cmd, set_args, get_args, name } */
7463 { AIROIOCTL, IW_PRIV_TYPE_BYTE | IW_PRIV_SIZE_FIXED | sizeof (aironet_ioctl),
7464 IW_PRIV_TYPE_BYTE | 2047, "airoioctl" },
7465 { AIROIDIFC, IW_PRIV_TYPE_BYTE | IW_PRIV_SIZE_FIXED | sizeof (aironet_ioctl),
7466 IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1, "airoidifc" },
7467};
7468
7469static const iw_handler airo_handler[] =
7470{
7471 (iw_handler) airo_config_commit, /* SIOCSIWCOMMIT */
7472 (iw_handler) airo_get_name, /* SIOCGIWNAME */
7473 (iw_handler) NULL, /* SIOCSIWNWID */
7474 (iw_handler) NULL, /* SIOCGIWNWID */
7475 (iw_handler) airo_set_freq, /* SIOCSIWFREQ */
7476 (iw_handler) airo_get_freq, /* SIOCGIWFREQ */
7477 (iw_handler) airo_set_mode, /* SIOCSIWMODE */
7478 (iw_handler) airo_get_mode, /* SIOCGIWMODE */
7479 (iw_handler) airo_set_sens, /* SIOCSIWSENS */
7480 (iw_handler) airo_get_sens, /* SIOCGIWSENS */
7481 (iw_handler) NULL, /* SIOCSIWRANGE */
7482 (iw_handler) airo_get_range, /* SIOCGIWRANGE */
7483 (iw_handler) NULL, /* SIOCSIWPRIV */
7484 (iw_handler) NULL, /* SIOCGIWPRIV */
7485 (iw_handler) NULL, /* SIOCSIWSTATS */
7486 (iw_handler) NULL, /* SIOCGIWSTATS */
7487 iw_handler_set_spy, /* SIOCSIWSPY */
7488 iw_handler_get_spy, /* SIOCGIWSPY */
7489 iw_handler_set_thrspy, /* SIOCSIWTHRSPY */
7490 iw_handler_get_thrspy, /* SIOCGIWTHRSPY */
7491 (iw_handler) airo_set_wap, /* SIOCSIWAP */
7492 (iw_handler) airo_get_wap, /* SIOCGIWAP */
7493 (iw_handler) NULL, /* -- hole -- */
7494 (iw_handler) airo_get_aplist, /* SIOCGIWAPLIST */
7495 (iw_handler) airo_set_scan, /* SIOCSIWSCAN */
7496 (iw_handler) airo_get_scan, /* SIOCGIWSCAN */
7497 (iw_handler) airo_set_essid, /* SIOCSIWESSID */
7498 (iw_handler) airo_get_essid, /* SIOCGIWESSID */
7499 (iw_handler) airo_set_nick, /* SIOCSIWNICKN */
7500 (iw_handler) airo_get_nick, /* SIOCGIWNICKN */
7501 (iw_handler) NULL, /* -- hole -- */
7502 (iw_handler) NULL, /* -- hole -- */
7503 (iw_handler) airo_set_rate, /* SIOCSIWRATE */
7504 (iw_handler) airo_get_rate, /* SIOCGIWRATE */
7505 (iw_handler) airo_set_rts, /* SIOCSIWRTS */
7506 (iw_handler) airo_get_rts, /* SIOCGIWRTS */
7507 (iw_handler) airo_set_frag, /* SIOCSIWFRAG */
7508 (iw_handler) airo_get_frag, /* SIOCGIWFRAG */
7509 (iw_handler) airo_set_txpow, /* SIOCSIWTXPOW */
7510 (iw_handler) airo_get_txpow, /* SIOCGIWTXPOW */
7511 (iw_handler) airo_set_retry, /* SIOCSIWRETRY */
7512 (iw_handler) airo_get_retry, /* SIOCGIWRETRY */
7513 (iw_handler) airo_set_encode, /* SIOCSIWENCODE */
7514 (iw_handler) airo_get_encode, /* SIOCGIWENCODE */
7515 (iw_handler) airo_set_power, /* SIOCSIWPOWER */
7516 (iw_handler) airo_get_power, /* SIOCGIWPOWER */
4be757dd
DW
7517 (iw_handler) NULL, /* -- hole -- */
7518 (iw_handler) NULL, /* -- hole -- */
7519 (iw_handler) NULL, /* SIOCSIWGENIE */
7520 (iw_handler) NULL, /* SIOCGIWGENIE */
7521 (iw_handler) airo_set_auth, /* SIOCSIWAUTH */
7522 (iw_handler) airo_get_auth, /* SIOCGIWAUTH */
7523 (iw_handler) airo_set_encodeext, /* SIOCSIWENCODEEXT */
7524 (iw_handler) airo_get_encodeext, /* SIOCGIWENCODEEXT */
7525 (iw_handler) NULL, /* SIOCSIWPMKSA */
1da177e4
LT
7526};
7527
7528/* Note : don't describe AIROIDIFC and AIROOLDIDIFC in here.
7529 * We want to force the use of the ioctl code, because those can't be
7530 * won't work the iw_handler code (because they simultaneously read
7531 * and write data and iw_handler can't do that).
7532 * Note that it's perfectly legal to read/write on a single ioctl command,
7533 * you just can't use iwpriv and need to force it via the ioctl handler.
7534 * Jean II */
7535static const iw_handler airo_private_handler[] =
7536{
7537 NULL, /* SIOCIWFIRSTPRIV */
7538};
7539
7540static const struct iw_handler_def airo_handler_def =
7541{
ff8ac609
DC
7542 .num_standard = ARRAY_SIZE(airo_handler),
7543 .num_private = ARRAY_SIZE(airo_private_handler),
7544 .num_private_args = ARRAY_SIZE(airo_private_args),
1da177e4
LT
7545 .standard = airo_handler,
7546 .private = airo_private_handler,
7547 .private_args = airo_private_args,
7548 .get_wireless_stats = airo_get_wireless_stats,
7549};
7550
1da177e4
LT
7551/*
7552 * This defines the configuration part of the Wireless Extensions
7553 * Note : irq and spinlock protection will occur in the subroutines
7554 *
7555 * TODO :
7556 * o Check input value more carefully and fill correct values in range
7557 * o Test and shakeout the bugs (if any)
7558 *
7559 * Jean II
7560 *
7561 * Javier Achirica did a great job of merging code from the unnamed CISCO
7562 * developer that added support for flashing the card.
7563 */
7564static int airo_ioctl(struct net_device *dev, struct ifreq *rq, int cmd)
7565{
7566 int rc = 0;
7567 struct airo_info *ai = (struct airo_info *)dev->priv;
7568
ca078bae 7569 if (ai->power.event)
1da177e4
LT
7570 return 0;
7571
7572 switch (cmd) {
7573#ifdef CISCO_EXT
7574 case AIROIDIFC:
7575#ifdef AIROOLDIDIFC
7576 case AIROOLDIDIFC:
7577#endif
7578 {
7579 int val = AIROMAGIC;
7580 aironet_ioctl com;
7581 if (copy_from_user(&com,rq->ifr_data,sizeof(com)))
7582 rc = -EFAULT;
7583 else if (copy_to_user(com.data,(char *)&val,sizeof(val)))
7584 rc = -EFAULT;
7585 }
7586 break;
7587
7588 case AIROIOCTL:
7589#ifdef AIROOLDIOCTL
7590 case AIROOLDIOCTL:
7591#endif
7592 /* Get the command struct and hand it off for evaluation by
7593 * the proper subfunction
7594 */
7595 {
7596 aironet_ioctl com;
7597 if (copy_from_user(&com,rq->ifr_data,sizeof(com))) {
7598 rc = -EFAULT;
7599 break;
7600 }
7601
7602 /* Separate R/W functions bracket legality here
7603 */
7604 if ( com.command == AIRORSWVERSION ) {
7605 if (copy_to_user(com.data, swversion, sizeof(swversion)))
7606 rc = -EFAULT;
7607 else
7608 rc = 0;
7609 }
7610 else if ( com.command <= AIRORRID)
7611 rc = readrids(dev,&com);
7612 else if ( com.command >= AIROPCAP && com.command <= (AIROPLEAPUSR+2) )
7613 rc = writerids(dev,&com);
7614 else if ( com.command >= AIROFLSHRST && com.command <= AIRORESTART )
7615 rc = flashcard(dev,&com);
7616 else
7617 rc = -EINVAL; /* Bad command in ioctl */
7618 }
7619 break;
7620#endif /* CISCO_EXT */
7621
7622 // All other calls are currently unsupported
7623 default:
7624 rc = -EOPNOTSUPP;
7625 }
7626 return rc;
7627}
7628
1da177e4
LT
7629/*
7630 * Get the Wireless stats out of the driver
7631 * Note : irq and spinlock protection will occur in the subroutines
7632 *
7633 * TODO :
7634 * o Check if work in Ad-Hoc mode (otherwise, use SPY, as in wvlan_cs)
7635 *
7636 * Jean
7637 */
7638static void airo_read_wireless_stats(struct airo_info *local)
7639{
7640 StatusRid status_rid;
7641 StatsRid stats_rid;
7642 CapabilityRid cap_rid;
7643 u32 *vals = stats_rid.vals;
7644
7645 /* Get stats out of the card */
3c304956 7646 clear_bit(JOB_WSTATS, &local->jobs);
ca078bae 7647 if (local->power.event) {
1da177e4
LT
7648 up(&local->sem);
7649 return;
7650 }
7651 readCapabilityRid(local, &cap_rid, 0);
7652 readStatusRid(local, &status_rid, 0);
7653 readStatsRid(local, &stats_rid, RID_STATS, 0);
7654 up(&local->sem);
7655
7656 /* The status */
7657 local->wstats.status = status_rid.mode;
7658
41480af2
DW
7659 /* Signal quality and co */
7660 if (local->rssi) {
7661 local->wstats.qual.level = airo_rssi_to_dbm( local->rssi, status_rid.sigQuality );
7662 /* normalizedSignalStrength appears to be a percentage */
7663 local->wstats.qual.qual = status_rid.normalizedSignalStrength;
7664 } else {
1da177e4 7665 local->wstats.qual.level = (status_rid.normalizedSignalStrength + 321) / 2;
41480af2
DW
7666 local->wstats.qual.qual = airo_get_quality(&status_rid, &cap_rid);
7667 }
1da177e4 7668 if (status_rid.len >= 124) {
41480af2 7669 local->wstats.qual.noise = 0x100 - status_rid.noisedBm;
ce6623c3 7670 local->wstats.qual.updated = IW_QUAL_ALL_UPDATED | IW_QUAL_DBM;
1da177e4
LT
7671 } else {
7672 local->wstats.qual.noise = 0;
ce6623c3 7673 local->wstats.qual.updated = IW_QUAL_QUAL_UPDATED | IW_QUAL_LEVEL_UPDATED | IW_QUAL_NOISE_INVALID | IW_QUAL_DBM;
1da177e4
LT
7674 }
7675
7676 /* Packets discarded in the wireless adapter due to wireless
7677 * specific problems */
7678 local->wstats.discard.nwid = vals[56] + vals[57] + vals[58];/* SSID Mismatch */
7679 local->wstats.discard.code = vals[6];/* RxWepErr */
7680 local->wstats.discard.fragment = vals[30];
7681 local->wstats.discard.retries = vals[10];
7682 local->wstats.discard.misc = vals[1] + vals[32];
7683 local->wstats.miss.beacon = vals[34];
7684}
7685
ff1d2767 7686static struct iw_statistics *airo_get_wireless_stats(struct net_device *dev)
1da177e4
LT
7687{
7688 struct airo_info *local = dev->priv;
7689
3c304956 7690 if (!test_bit(JOB_WSTATS, &local->jobs)) {
1da177e4
LT
7691 /* Get stats out of the card if available */
7692 if (down_trylock(&local->sem) != 0) {
3c304956 7693 set_bit(JOB_WSTATS, &local->jobs);
1da177e4
LT
7694 wake_up_interruptible(&local->thr_wait);
7695 } else
7696 airo_read_wireless_stats(local);
7697 }
7698
7699 return &local->wstats;
7700}
1da177e4
LT
7701
7702#ifdef CISCO_EXT
7703/*
7704 * This just translates from driver IOCTL codes to the command codes to
7705 * feed to the radio's host interface. Things can be added/deleted
7706 * as needed. This represents the READ side of control I/O to
7707 * the card
7708 */
7709static int readrids(struct net_device *dev, aironet_ioctl *comp) {
7710 unsigned short ridcode;
7711 unsigned char *iobuf;
7712 int len;
7713 struct airo_info *ai = dev->priv;
1da177e4
LT
7714
7715 if (test_bit(FLAG_FLASHING, &ai->flags))
7716 return -EIO;
7717
7718 switch(comp->command)
7719 {
7720 case AIROGCAP: ridcode = RID_CAPABILITIES; break;
7721 case AIROGCFG: ridcode = RID_CONFIG;
7722 if (test_bit(FLAG_COMMIT, &ai->flags)) {
7723 disable_MAC (ai, 1);
7724 writeConfigRid (ai, 1);
175ec1a1 7725 enable_MAC(ai, 1);
1da177e4
LT
7726 }
7727 break;
7728 case AIROGSLIST: ridcode = RID_SSID; break;
7729 case AIROGVLIST: ridcode = RID_APLIST; break;
7730 case AIROGDRVNAM: ridcode = RID_DRVNAME; break;
7731 case AIROGEHTENC: ridcode = RID_ETHERENCAP; break;
7732 case AIROGWEPKTMP: ridcode = RID_WEP_TEMP;
7733 /* Only super-user can read WEP keys */
7734 if (!capable(CAP_NET_ADMIN))
7735 return -EPERM;
7736 break;
7737 case AIROGWEPKNV: ridcode = RID_WEP_PERM;
7738 /* Only super-user can read WEP keys */
7739 if (!capable(CAP_NET_ADMIN))
7740 return -EPERM;
7741 break;
7742 case AIROGSTAT: ridcode = RID_STATUS; break;
7743 case AIROGSTATSD32: ridcode = RID_STATSDELTA; break;
7744 case AIROGSTATSC32: ridcode = RID_STATS; break;
1da177e4
LT
7745 case AIROGMICSTATS:
7746 if (copy_to_user(comp->data, &ai->micstats,
7747 min((int)comp->len,(int)sizeof(ai->micstats))))
7748 return -EFAULT;
7749 return 0;
1da177e4
LT
7750 case AIRORRID: ridcode = comp->ridnum; break;
7751 default:
7752 return -EINVAL;
7753 break;
7754 }
7755
7756 if ((iobuf = kmalloc(RIDSIZE, GFP_KERNEL)) == NULL)
7757 return -ENOMEM;
7758
7759 PC4500_readrid(ai,ridcode,iobuf,RIDSIZE, 1);
7760 /* get the count of bytes in the rid docs say 1st 2 bytes is it.
7761 * then return it to the user
7762 * 9/22/2000 Honor user given length
7763 */
7764 len = comp->len;
7765
7766 if (copy_to_user(comp->data, iobuf, min(len, (int)RIDSIZE))) {
7767 kfree (iobuf);
7768 return -EFAULT;
7769 }
7770 kfree (iobuf);
7771 return 0;
7772}
7773
7774/*
7775 * Danger Will Robinson write the rids here
7776 */
7777
7778static int writerids(struct net_device *dev, aironet_ioctl *comp) {
7779 struct airo_info *ai = dev->priv;
7780 int ridcode;
1da177e4 7781 int enabled;
1da177e4
LT
7782 static int (* writer)(struct airo_info *, u16 rid, const void *, int, int);
7783 unsigned char *iobuf;
7784
7785 /* Only super-user can write RIDs */
7786 if (!capable(CAP_NET_ADMIN))
7787 return -EPERM;
7788
7789 if (test_bit(FLAG_FLASHING, &ai->flags))
7790 return -EIO;
7791
7792 ridcode = 0;
7793 writer = do_writerid;
7794
7795 switch(comp->command)
7796 {
7797 case AIROPSIDS: ridcode = RID_SSID; break;
7798 case AIROPCAP: ridcode = RID_CAPABILITIES; break;
7799 case AIROPAPLIST: ridcode = RID_APLIST; break;
7800 case AIROPCFG: ai->config.len = 0;
7801 clear_bit(FLAG_COMMIT, &ai->flags);
7802 ridcode = RID_CONFIG; break;
7803 case AIROPWEPKEYNV: ridcode = RID_WEP_PERM; break;
7804 case AIROPLEAPUSR: ridcode = RID_LEAPUSERNAME; break;
7805 case AIROPLEAPPWD: ridcode = RID_LEAPPASSWORD; break;
7806 case AIROPWEPKEY: ridcode = RID_WEP_TEMP; writer = PC4500_writerid;
7807 break;
7808 case AIROPLEAPUSR+1: ridcode = 0xFF2A; break;
7809 case AIROPLEAPUSR+2: ridcode = 0xFF2B; break;
7810
7811 /* this is not really a rid but a command given to the card
7812 * same with MAC off
7813 */
7814 case AIROPMACON:
175ec1a1 7815 if (enable_MAC(ai, 1) != 0)
1da177e4
LT
7816 return -EIO;
7817 return 0;
7818
7819 /*
7820 * Evidently this code in the airo driver does not get a symbol
7821 * as disable_MAC. it's probably so short the compiler does not gen one.
7822 */
7823 case AIROPMACOFF:
7824 disable_MAC(ai, 1);
7825 return 0;
7826
7827 /* This command merely clears the counts does not actually store any data
7828 * only reads rid. But as it changes the cards state, I put it in the
7829 * writerid routines.
7830 */
7831 case AIROPSTCLR:
7832 if ((iobuf = kmalloc(RIDSIZE, GFP_KERNEL)) == NULL)
7833 return -ENOMEM;
7834
7835 PC4500_readrid(ai,RID_STATSDELTACLEAR,iobuf,RIDSIZE, 1);
7836
1da177e4
LT
7837 enabled = ai->micstats.enabled;
7838 memset(&ai->micstats,0,sizeof(ai->micstats));
7839 ai->micstats.enabled = enabled;
1da177e4
LT
7840
7841 if (copy_to_user(comp->data, iobuf,
7842 min((int)comp->len, (int)RIDSIZE))) {
7843 kfree (iobuf);
7844 return -EFAULT;
7845 }
7846 kfree (iobuf);
7847 return 0;
7848
7849 default:
7850 return -EOPNOTSUPP; /* Blarg! */
7851 }
7852 if(comp->len > RIDSIZE)
7853 return -EINVAL;
7854
7855 if ((iobuf = kmalloc(RIDSIZE, GFP_KERNEL)) == NULL)
7856 return -ENOMEM;
7857
7858 if (copy_from_user(iobuf,comp->data,comp->len)) {
7859 kfree (iobuf);
7860 return -EFAULT;
7861 }
7862
7863 if (comp->command == AIROPCFG) {
7864 ConfigRid *cfg = (ConfigRid *)iobuf;
7865
7866 if (test_bit(FLAG_MIC_CAPABLE, &ai->flags))
7867 cfg->opmode |= MODE_MIC;
7868
7869 if ((cfg->opmode & 0xFF) == MODE_STA_IBSS)
7870 set_bit (FLAG_ADHOC, &ai->flags);
7871 else
7872 clear_bit (FLAG_ADHOC, &ai->flags);
7873 }
7874
7875 if((*writer)(ai, ridcode, iobuf,comp->len,1)) {
7876 kfree (iobuf);
7877 return -EIO;
7878 }
7879 kfree (iobuf);
7880 return 0;
7881}
7882
7883/*****************************************************************************
7884 * Ancillary flash / mod functions much black magic lurkes here *
7885 *****************************************************************************
7886 */
7887
7888/*
7889 * Flash command switch table
7890 */
7891
ff1d2767 7892static int flashcard(struct net_device *dev, aironet_ioctl *comp) {
1da177e4 7893 int z;
1da177e4
LT
7894
7895 /* Only super-user can modify flash */
7896 if (!capable(CAP_NET_ADMIN))
7897 return -EPERM;
7898
7899 switch(comp->command)
7900 {
7901 case AIROFLSHRST:
7902 return cmdreset((struct airo_info *)dev->priv);
7903
7904 case AIROFLSHSTFL:
7905 if (!((struct airo_info *)dev->priv)->flash &&
7906 (((struct airo_info *)dev->priv)->flash = kmalloc (FLASHSIZE, GFP_KERNEL)) == NULL)
7907 return -ENOMEM;
7908 return setflashmode((struct airo_info *)dev->priv);
7909
7910 case AIROFLSHGCHR: /* Get char from aux */
7911 if(comp->len != sizeof(int))
7912 return -EINVAL;
7913 if (copy_from_user(&z,comp->data,comp->len))
7914 return -EFAULT;
7915 return flashgchar((struct airo_info *)dev->priv,z,8000);
7916
7917 case AIROFLSHPCHR: /* Send char to card. */
7918 if(comp->len != sizeof(int))
7919 return -EINVAL;
7920 if (copy_from_user(&z,comp->data,comp->len))
7921 return -EFAULT;
7922 return flashpchar((struct airo_info *)dev->priv,z,8000);
7923
7924 case AIROFLPUTBUF: /* Send 32k to card */
7925 if (!((struct airo_info *)dev->priv)->flash)
7926 return -ENOMEM;
7927 if(comp->len > FLASHSIZE)
7928 return -EINVAL;
7929 if(copy_from_user(((struct airo_info *)dev->priv)->flash,comp->data,comp->len))
7930 return -EFAULT;
7931
7932 flashputbuf((struct airo_info *)dev->priv);
7933 return 0;
7934
7935 case AIRORESTART:
7936 if(flashrestart((struct airo_info *)dev->priv,dev))
7937 return -EIO;
7938 return 0;
7939 }
7940 return -EINVAL;
7941}
7942
7943#define FLASH_COMMAND 0x7e7e
7944
7945/*
7946 * STEP 1)
7947 * Disable MAC and do soft reset on
7948 * card.
7949 */
7950
ff1d2767 7951static int cmdreset(struct airo_info *ai) {
1da177e4
LT
7952 disable_MAC(ai, 1);
7953
7954 if(!waitbusy (ai)){
934d8bf1 7955 airo_print_info(ai->dev->name, "Waitbusy hang before RESET");
1da177e4
LT
7956 return -EBUSY;
7957 }
7958
7959 OUT4500(ai,COMMAND,CMD_SOFTRESET);
7960
7961 ssleep(1); /* WAS 600 12/7/00 */
7962
7963 if(!waitbusy (ai)){
934d8bf1 7964 airo_print_info(ai->dev->name, "Waitbusy hang AFTER RESET");
1da177e4
LT
7965 return -EBUSY;
7966 }
7967 return 0;
7968}
7969
7970/* STEP 2)
7971 * Put the card in legendary flash
7972 * mode
7973 */
7974
ff1d2767 7975static int setflashmode (struct airo_info *ai) {
1da177e4
LT
7976 set_bit (FLAG_FLASHING, &ai->flags);
7977
7978 OUT4500(ai, SWS0, FLASH_COMMAND);
7979 OUT4500(ai, SWS1, FLASH_COMMAND);
7980 if (probe) {
7981 OUT4500(ai, SWS0, FLASH_COMMAND);
7982 OUT4500(ai, COMMAND,0x10);
7983 } else {
7984 OUT4500(ai, SWS2, FLASH_COMMAND);
7985 OUT4500(ai, SWS3, FLASH_COMMAND);
7986 OUT4500(ai, COMMAND,0);
7987 }
7988 msleep(500); /* 500ms delay */
7989
7990 if(!waitbusy(ai)) {
7991 clear_bit (FLAG_FLASHING, &ai->flags);
934d8bf1 7992 airo_print_info(ai->dev->name, "Waitbusy hang after setflash mode");
1da177e4
LT
7993 return -EIO;
7994 }
7995 return 0;
7996}
7997
7998/* Put character to SWS0 wait for dwelltime
7999 * x 50us for echo .
8000 */
8001
ff1d2767 8002static int flashpchar(struct airo_info *ai,int byte,int dwelltime) {
1da177e4
LT
8003 int echo;
8004 int waittime;
8005
8006 byte |= 0x8000;
8007
8008 if(dwelltime == 0 )
8009 dwelltime = 200;
8010
8011 waittime=dwelltime;
8012
8013 /* Wait for busy bit d15 to go false indicating buffer empty */
8014 while ((IN4500 (ai, SWS0) & 0x8000) && waittime > 0) {
8015 udelay (50);
8016 waittime -= 50;
8017 }
8018
8019 /* timeout for busy clear wait */
8020 if(waittime <= 0 ){
934d8bf1 8021 airo_print_info(ai->dev->name, "flash putchar busywait timeout!");
1da177e4
LT
8022 return -EBUSY;
8023 }
8024
8025 /* Port is clear now write byte and wait for it to echo back */
8026 do {
8027 OUT4500(ai,SWS0,byte);
8028 udelay(50);
8029 dwelltime -= 50;
8030 echo = IN4500(ai,SWS1);
8031 } while (dwelltime >= 0 && echo != byte);
8032
8033 OUT4500(ai,SWS1,0);
8034
8035 return (echo == byte) ? 0 : -EIO;
8036}
8037
8038/*
8039 * Get a character from the card matching matchbyte
8040 * Step 3)
8041 */
ff1d2767 8042static int flashgchar(struct airo_info *ai,int matchbyte,int dwelltime){
1da177e4
LT
8043 int rchar;
8044 unsigned char rbyte=0;
8045
8046 do {
8047 rchar = IN4500(ai,SWS1);
8048
8049 if(dwelltime && !(0x8000 & rchar)){
8050 dwelltime -= 10;
8051 mdelay(10);
8052 continue;
8053 }
8054 rbyte = 0xff & rchar;
8055
8056 if( (rbyte == matchbyte) && (0x8000 & rchar) ){
8057 OUT4500(ai,SWS1,0);
8058 return 0;
8059 }
8060 if( rbyte == 0x81 || rbyte == 0x82 || rbyte == 0x83 || rbyte == 0x1a || 0xffff == rchar)
8061 break;
8062 OUT4500(ai,SWS1,0);
8063
8064 }while(dwelltime > 0);
8065 return -EIO;
8066}
8067
8068/*
8069 * Transfer 32k of firmware data from user buffer to our buffer and
8070 * send to the card
8071 */
8072
ff1d2767 8073static int flashputbuf(struct airo_info *ai){
1da177e4
LT
8074 int nwords;
8075
8076 /* Write stuff */
8077 if (test_bit(FLAG_MPI,&ai->flags))
8078 memcpy_toio(ai->pciaux + 0x8000, ai->flash, FLASHSIZE);
8079 else {
8080 OUT4500(ai,AUXPAGE,0x100);
8081 OUT4500(ai,AUXOFF,0);
8082
8083 for(nwords=0;nwords != FLASHSIZE / 2;nwords++){
8084 OUT4500(ai,AUXDATA,ai->flash[nwords] & 0xffff);
8085 }
8086 }
8087 OUT4500(ai,SWS0,0x8000);
8088
8089 return 0;
8090}
8091
8092/*
8093 *
8094 */
ff1d2767 8095static int flashrestart(struct airo_info *ai,struct net_device *dev){
1da177e4
LT
8096 int i,status;
8097
8098 ssleep(1); /* Added 12/7/00 */
8099 clear_bit (FLAG_FLASHING, &ai->flags);
8100 if (test_bit(FLAG_MPI, &ai->flags)) {
8101 status = mpi_init_descriptors(ai);
8102 if (status != SUCCESS)
8103 return status;
8104 }
8105 status = setup_card(ai, dev->dev_addr, 1);
8106
8107 if (!test_bit(FLAG_MPI,&ai->flags))
8108 for( i = 0; i < MAX_FIDS; i++ ) {
8109 ai->fids[i] = transmit_allocate
15db2763 8110 ( ai, AIRO_DEF_MTU, i >= MAX_FIDS / 2 );
1da177e4
LT
8111 }
8112
8113 ssleep(1); /* Added 12/7/00 */
8114 return status;
8115}
8116#endif /* CISCO_EXT */
8117
8118/*
8119 This program is free software; you can redistribute it and/or
8120 modify it under the terms of the GNU General Public License
8121 as published by the Free Software Foundation; either version 2
8122 of the License, or (at your option) any later version.
8123
8124 This program is distributed in the hope that it will be useful,
8125 but WITHOUT ANY WARRANTY; without even the implied warranty of
8126 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
8127 GNU General Public License for more details.
8128
8129 In addition:
8130
8131 Redistribution and use in source and binary forms, with or without
8132 modification, are permitted provided that the following conditions
8133 are met:
8134
8135 1. Redistributions of source code must retain the above copyright
8136 notice, this list of conditions and the following disclaimer.
8137 2. Redistributions in binary form must reproduce the above copyright
8138 notice, this list of conditions and the following disclaimer in the
8139 documentation and/or other materials provided with the distribution.
8140 3. The name of the author may not be used to endorse or promote
8141 products derived from this software without specific prior written
8142 permission.
8143
8144 THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
8145 IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
8146 WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
8147 ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
8148 INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
8149 (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
8150 SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
8151 HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
8152 STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
8153 IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
8154 POSSIBILITY OF SUCH DAMAGE.
8155*/
8156
8157module_init(airo_init_module);
8158module_exit(airo_cleanup_module);