1 /*** -*- linux-c -*- **********************************************************
2
3 Driver for Atmel at76c502 at76c504 and at76c506 wireless cards.
4
5 Copyright 2000-2001 ATMEL Corporation.
6 Copyright 2003-2004 Simon Kelley.
7
8 This code was developed from version 2.1.1 of the Atmel drivers,
9 released by Atmel corp. under the GPL in December 2002. It also
10 includes code from the Linux aironet drivers (C) Benjamin Reed,
11 and the Linux PCMCIA package, (C) David Hinds and the Linux wireless
12 extensions, (C) Jean Tourrilhes.
13
14 The firmware module for reading the MAC address of the card comes from
15 net.russotto.AtmelMACFW, written by Matthew T. Russotto and copyright
16 by him. net.russotto.AtmelMACFW is used under the GPL license version 2.
17 This file contains the module in binary form and, under the terms
18 of the GPL, in source form. The source is located at the end of the file.
19
20 This program is free software; you can redistribute it and/or modify
21 it under the terms of the GNU General Public License as published by
22 the Free Software Foundation; either version 2 of the License, or
23 (at your option) any later version.
24
25 This software is distributed in the hope that it will be useful,
26 but WITHOUT ANY WARRANTY; without even the implied warranty of
27 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
28 GNU General Public License for more details.
29
30 You should have received a copy of the GNU General Public License
31 along with Atmel wireless lan drivers; if not, see
32 <http://www.gnu.org/licenses/>.
33
34 For all queries about this code, please contact the current author,
35 Simon Kelley <simon@thekelleys.org.uk> and not Atmel Corporation.
36
37 Credit is due to HP UK and Cambridge Online Systems Ltd for supplying
38 hardware used during development of this driver.
39
40 ******************************************************************************/
41
42 #include <linux/interrupt.h>
43
44 #include <linux/kernel.h>
45 #include <linux/ptrace.h>
46 #include <linux/slab.h>
47 #include <linux/string.h>
48 #include <linux/timer.h>
49 #include <asm/byteorder.h>
50 #include <asm/io.h>
51 #include <linux/uaccess.h>
52 #include <linux/module.h>
53 #include <linux/netdevice.h>
54 #include <linux/etherdevice.h>
55 #include <linux/skbuff.h>
56 #include <linux/if_arp.h>
57 #include <linux/ioport.h>
58 #include <linux/fcntl.h>
59 #include <linux/delay.h>
60 #include <linux/wireless.h>
61 #include <net/iw_handler.h>
62 #include <linux/crc32.h>
63 #include <linux/proc_fs.h>
64 #include <linux/seq_file.h>
65 #include <linux/device.h>
66 #include <linux/moduleparam.h>
67 #include <linux/firmware.h>
68 #include <linux/jiffies.h>
69 #include <net/cfg80211.h>
70 #include "atmel.h"
71
72 #define DRIVER_MAJOR 0
73 #define DRIVER_MINOR 98
74
75 MODULE_AUTHOR("Simon Kelley");
76 MODULE_DESCRIPTION("Support for Atmel at76c50x 802.11 wireless ethernet cards.");
77 MODULE_LICENSE("GPL");
78 MODULE_SUPPORTED_DEVICE("Atmel at76c50x wireless cards");
79
80 /* The name of the firmware file to be loaded
81 over-rides any automatic selection */
82 static char *firmware = NULL;
83 module_param(firmware, charp, 0);
84
85 /* table of firmware file names */
86 static struct {
87 AtmelFWType fw_type;
88 const char *fw_file;
89 const char *fw_file_ext;
90 } fw_table[] = {
91 { ATMEL_FW_TYPE_502, "atmel_at76c502", "bin" },
92 { ATMEL_FW_TYPE_502D, "atmel_at76c502d", "bin" },
93 { ATMEL_FW_TYPE_502E, "atmel_at76c502e", "bin" },
94 { ATMEL_FW_TYPE_502_3COM, "atmel_at76c502_3com", "bin" },
95 { ATMEL_FW_TYPE_504, "atmel_at76c504", "bin" },
96 { ATMEL_FW_TYPE_504_2958, "atmel_at76c504_2958", "bin" },
97 { ATMEL_FW_TYPE_504A_2958, "atmel_at76c504a_2958", "bin" },
98 { ATMEL_FW_TYPE_506, "atmel_at76c506", "bin" },
99 { ATMEL_FW_TYPE_NONE, NULL, NULL }
100 };
101 MODULE_FIRMWARE("atmel_at76c502-wpa.bin");
102 MODULE_FIRMWARE("atmel_at76c502.bin");
103 MODULE_FIRMWARE("atmel_at76c502d-wpa.bin");
104 MODULE_FIRMWARE("atmel_at76c502d.bin");
105 MODULE_FIRMWARE("atmel_at76c502e-wpa.bin");
106 MODULE_FIRMWARE("atmel_at76c502e.bin");
107 MODULE_FIRMWARE("atmel_at76c502_3com-wpa.bin");
108 MODULE_FIRMWARE("atmel_at76c502_3com.bin");
109 MODULE_FIRMWARE("atmel_at76c504-wpa.bin");
110 MODULE_FIRMWARE("atmel_at76c504.bin");
111 MODULE_FIRMWARE("atmel_at76c504_2958-wpa.bin");
112 MODULE_FIRMWARE("atmel_at76c504_2958.bin");
113 MODULE_FIRMWARE("atmel_at76c504a_2958-wpa.bin");
114 MODULE_FIRMWARE("atmel_at76c504a_2958.bin");
115 MODULE_FIRMWARE("atmel_at76c506-wpa.bin");
116 MODULE_FIRMWARE("atmel_at76c506.bin");
117
118 #define MAX_SSID_LENGTH 32
119 #define MGMT_JIFFIES (256 * HZ / 100)
120
121 #define MAX_BSS_ENTRIES 64
122
123 /* registers */
124 #define GCR 0x00 /* (SIR0) General Configuration Register */
125 #define BSR 0x02 /* (SIR1) Bank Switching Select Register */
126 #define AR 0x04
127 #define DR 0x08
128 #define MR1 0x12 /* Mirror Register 1 */
129 #define MR2 0x14 /* Mirror Register 2 */
130 #define MR3 0x16 /* Mirror Register 3 */
131 #define MR4 0x18 /* Mirror Register 4 */
132
133 #define GPR1 0x0c
134 #define GPR2 0x0e
135 #define GPR3 0x10
136 /*
137 * Constants for the GCR register.
138 */
139 #define GCR_REMAP 0x0400 /* Remap internal SRAM to 0 */
140 #define GCR_SWRES 0x0080 /* BIU reset (ARM and PAI are NOT reset) */
141 #define GCR_CORES 0x0060 /* Core Reset (ARM and PAI are reset) */
142 #define GCR_ENINT 0x0002 /* Enable Interrupts */
143 #define GCR_ACKINT 0x0008 /* Acknowledge Interrupts */
144
145 #define BSS_SRAM 0x0200 /* AMBA module selection --> SRAM */
146 #define BSS_IRAM 0x0100 /* AMBA module selection --> IRAM */
147 /*
148 *Constants for the MR registers.
149 */
150 #define MAC_INIT_COMPLETE 0x0001 /* MAC init has been completed */
151 #define MAC_BOOT_COMPLETE 0x0010 /* MAC boot has been completed */
152 #define MAC_INIT_OK 0x0002 /* MAC boot has been completed */
153
154 #define MIB_MAX_DATA_BYTES 212
155 #define MIB_HEADER_SIZE 4 /* first four fields */
156
157 struct get_set_mib {
158 u8 type;
159 u8 size;
160 u8 index;
161 u8 reserved;
162 u8 data[MIB_MAX_DATA_BYTES];
163 };
164
165 struct rx_desc {
166 u32 Next;
167 u16 MsduPos;
168 u16 MsduSize;
169
170 u8 State;
171 u8 Status;
172 u8 Rate;
173 u8 Rssi;
174 u8 LinkQuality;
175 u8 PreambleType;
176 u16 Duration;
177 u32 RxTime;
178 };
179
180 #define RX_DESC_FLAG_VALID 0x80
181 #define RX_DESC_FLAG_CONSUMED 0x40
182 #define RX_DESC_FLAG_IDLE 0x00
183
184 #define RX_STATUS_SUCCESS 0x00
185
186 #define RX_DESC_MSDU_POS_OFFSET 4
187 #define RX_DESC_MSDU_SIZE_OFFSET 6
188 #define RX_DESC_FLAGS_OFFSET 8
189 #define RX_DESC_STATUS_OFFSET 9
190 #define RX_DESC_RSSI_OFFSET 11
191 #define RX_DESC_LINK_QUALITY_OFFSET 12
192 #define RX_DESC_PREAMBLE_TYPE_OFFSET 13
193 #define RX_DESC_DURATION_OFFSET 14
194 #define RX_DESC_RX_TIME_OFFSET 16
195
196 struct tx_desc {
197 u32 NextDescriptor;
198 u16 TxStartOfFrame;
199 u16 TxLength;
200
201 u8 TxState;
202 u8 TxStatus;
203 u8 RetryCount;
204
205 u8 TxRate;
206
207 u8 KeyIndex;
208 u8 ChiperType;
209 u8 ChipreLength;
210 u8 Reserved1;
211
212 u8 Reserved;
213 u8 PacketType;
214 u16 HostTxLength;
215 };
216
217 #define TX_DESC_NEXT_OFFSET 0
218 #define TX_DESC_POS_OFFSET 4
219 #define TX_DESC_SIZE_OFFSET 6
220 #define TX_DESC_FLAGS_OFFSET 8
221 #define TX_DESC_STATUS_OFFSET 9
222 #define TX_DESC_RETRY_OFFSET 10
223 #define TX_DESC_RATE_OFFSET 11
224 #define TX_DESC_KEY_INDEX_OFFSET 12
225 #define TX_DESC_CIPHER_TYPE_OFFSET 13
226 #define TX_DESC_CIPHER_LENGTH_OFFSET 14
227 #define TX_DESC_PACKET_TYPE_OFFSET 17
228 #define TX_DESC_HOST_LENGTH_OFFSET 18
229
230 /*
231 * Host-MAC interface
232 */
233
234 #define TX_STATUS_SUCCESS 0x00
235
236 #define TX_FIRM_OWN 0x80
237 #define TX_DONE 0x40
238
239 #define TX_ERROR 0x01
240
241 #define TX_PACKET_TYPE_DATA 0x01
242 #define TX_PACKET_TYPE_MGMT 0x02
243
244 #define ISR_EMPTY 0x00 /* no bits set in ISR */
245 #define ISR_TxCOMPLETE 0x01 /* packet transmitted */
246 #define ISR_RxCOMPLETE 0x02 /* packet received */
247 #define ISR_RxFRAMELOST 0x04 /* Rx Frame lost */
248 #define ISR_FATAL_ERROR 0x08 /* Fatal error */
249 #define ISR_COMMAND_COMPLETE 0x10 /* command completed */
250 #define ISR_OUT_OF_RANGE 0x20 /* command completed */
251 #define ISR_IBSS_MERGE 0x40 /* (4.1.2.30): IBSS merge */
252 #define ISR_GENERIC_IRQ 0x80
253
254 #define Local_Mib_Type 0x01
255 #define Mac_Address_Mib_Type 0x02
256 #define Mac_Mib_Type 0x03
257 #define Statistics_Mib_Type 0x04
258 #define Mac_Mgmt_Mib_Type 0x05
259 #define Mac_Wep_Mib_Type 0x06
260 #define Phy_Mib_Type 0x07
261 #define Multi_Domain_MIB 0x08
262
263 #define MAC_MGMT_MIB_CUR_BSSID_POS 14
264 #define MAC_MIB_FRAG_THRESHOLD_POS 8
265 #define MAC_MIB_RTS_THRESHOLD_POS 10
266 #define MAC_MIB_SHORT_RETRY_POS 16
267 #define MAC_MIB_LONG_RETRY_POS 17
268 #define MAC_MIB_SHORT_RETRY_LIMIT_POS 16
269 #define MAC_MGMT_MIB_BEACON_PER_POS 0
270 #define MAC_MGMT_MIB_STATION_ID_POS 6
271 #define MAC_MGMT_MIB_CUR_PRIVACY_POS 11
272 #define MAC_MGMT_MIB_CUR_BSSID_POS 14
273 #define MAC_MGMT_MIB_PS_MODE_POS 53
274 #define MAC_MGMT_MIB_LISTEN_INTERVAL_POS 54
275 #define MAC_MGMT_MIB_MULTI_DOMAIN_IMPLEMENTED 56
276 #define MAC_MGMT_MIB_MULTI_DOMAIN_ENABLED 57
277 #define PHY_MIB_CHANNEL_POS 14
278 #define PHY_MIB_RATE_SET_POS 20
279 #define PHY_MIB_REG_DOMAIN_POS 26
280 #define LOCAL_MIB_AUTO_TX_RATE_POS 3
281 #define LOCAL_MIB_SSID_SIZE 5
282 #define LOCAL_MIB_TX_PROMISCUOUS_POS 6
283 #define LOCAL_MIB_TX_MGMT_RATE_POS 7
284 #define LOCAL_MIB_TX_CONTROL_RATE_POS 8
285 #define LOCAL_MIB_PREAMBLE_TYPE 9
286 #define MAC_ADDR_MIB_MAC_ADDR_POS 0
287
288 #define CMD_Set_MIB_Vars 0x01
289 #define CMD_Get_MIB_Vars 0x02
290 #define CMD_Scan 0x03
291 #define CMD_Join 0x04
292 #define CMD_Start 0x05
293 #define CMD_EnableRadio 0x06
294 #define CMD_DisableRadio 0x07
295 #define CMD_SiteSurvey 0x0B
296
297 #define CMD_STATUS_IDLE 0x00
298 #define CMD_STATUS_COMPLETE 0x01
299 #define CMD_STATUS_UNKNOWN 0x02
300 #define CMD_STATUS_INVALID_PARAMETER 0x03
301 #define CMD_STATUS_FUNCTION_NOT_SUPPORTED 0x04
302 #define CMD_STATUS_TIME_OUT 0x07
303 #define CMD_STATUS_IN_PROGRESS 0x08
304 #define CMD_STATUS_REJECTED_RADIO_OFF 0x09
305 #define CMD_STATUS_HOST_ERROR 0xFF
306 #define CMD_STATUS_BUSY 0xFE
307
308 #define CMD_BLOCK_COMMAND_OFFSET 0
309 #define CMD_BLOCK_STATUS_OFFSET 1
310 #define CMD_BLOCK_PARAMETERS_OFFSET 4
311
312 #define SCAN_OPTIONS_SITE_SURVEY 0x80
313
314 #define MGMT_FRAME_BODY_OFFSET 24
315 #define MAX_AUTHENTICATION_RETRIES 3
316 #define MAX_ASSOCIATION_RETRIES 3
317
318 #define AUTHENTICATION_RESPONSE_TIME_OUT 1000
319
320 #define MAX_WIRELESS_BODY 2316 /* mtu is 2312, CRC is 4 */
321 #define LOOP_RETRY_LIMIT 500000
322
323 #define ACTIVE_MODE 1
324 #define PS_MODE 2
325
326 #define MAX_ENCRYPTION_KEYS 4
327 #define MAX_ENCRYPTION_KEY_SIZE 40
328
329 /*
330 * 802.11 related definitions
331 */
332
333 /*
334 * Regulatory Domains
335 */
336
337 #define REG_DOMAIN_FCC 0x10 /* Channels 1-11 USA */
338 #define REG_DOMAIN_DOC 0x20 /* Channel 1-11 Canada */
339 #define REG_DOMAIN_ETSI 0x30 /* Channel 1-13 Europe (ex Spain/France) */
340 #define REG_DOMAIN_SPAIN 0x31 /* Channel 10-11 Spain */
341 #define REG_DOMAIN_FRANCE 0x32 /* Channel 10-13 France */
342 #define REG_DOMAIN_MKK 0x40 /* Channel 14 Japan */
343 #define REG_DOMAIN_MKK1 0x41 /* Channel 1-14 Japan(MKK1) */
344 #define REG_DOMAIN_ISRAEL 0x50 /* Channel 3-9 ISRAEL */
345
346 #define BSS_TYPE_AD_HOC 1
347 #define BSS_TYPE_INFRASTRUCTURE 2
348
349 #define SCAN_TYPE_ACTIVE 0
350 #define SCAN_TYPE_PASSIVE 1
351
352 #define LONG_PREAMBLE 0
353 #define SHORT_PREAMBLE 1
354 #define AUTO_PREAMBLE 2
355
356 #define DATA_FRAME_WS_HEADER_SIZE 30
357
358 /* promiscuous mode control */
359 #define PROM_MODE_OFF 0x0
360 #define PROM_MODE_UNKNOWN 0x1
361 #define PROM_MODE_CRC_FAILED 0x2
362 #define PROM_MODE_DUPLICATED 0x4
363 #define PROM_MODE_MGMT 0x8
364 #define PROM_MODE_CTRL 0x10
365 #define PROM_MODE_BAD_PROTOCOL 0x20
366
367 #define IFACE_INT_STATUS_OFFSET 0
368 #define IFACE_INT_MASK_OFFSET 1
369 #define IFACE_LOCKOUT_HOST_OFFSET 2
370 #define IFACE_LOCKOUT_MAC_OFFSET 3
371 #define IFACE_FUNC_CTRL_OFFSET 28
372 #define IFACE_MAC_STAT_OFFSET 30
373 #define IFACE_GENERIC_INT_TYPE_OFFSET 32
374
375 #define CIPHER_SUITE_NONE 0
376 #define CIPHER_SUITE_WEP_64 1
377 #define CIPHER_SUITE_TKIP 2
378 #define CIPHER_SUITE_AES 3
379 #define CIPHER_SUITE_CCX 4
380 #define CIPHER_SUITE_WEP_128 5
381
382 /*
383 * IFACE MACROS & definitions
384 */
385
386 /*
387 * FuncCtrl field:
388 */
389 #define FUNC_CTRL_TxENABLE 0x10
390 #define FUNC_CTRL_RxENABLE 0x20
391 #define FUNC_CTRL_INIT_COMPLETE 0x01
392
393 /* A stub firmware image which reads the MAC address from NVRAM on the card.
394 For copyright information and source see the end of this file. */
395 static u8 mac_reader[] = {
396 0x06, 0x00, 0x00, 0xea, 0x04, 0x00, 0x00, 0xea, 0x03, 0x00, 0x00, 0xea, 0x02, 0x00, 0x00, 0xea,
397 0x01, 0x00, 0x00, 0xea, 0x00, 0x00, 0x00, 0xea, 0xff, 0xff, 0xff, 0xea, 0xfe, 0xff, 0xff, 0xea,
398 0xd3, 0x00, 0xa0, 0xe3, 0x00, 0xf0, 0x21, 0xe1, 0x0e, 0x04, 0xa0, 0xe3, 0x00, 0x10, 0xa0, 0xe3,
399 0x81, 0x11, 0xa0, 0xe1, 0x00, 0x10, 0x81, 0xe3, 0x00, 0x10, 0x80, 0xe5, 0x1c, 0x10, 0x90, 0xe5,
400 0x10, 0x10, 0xc1, 0xe3, 0x1c, 0x10, 0x80, 0xe5, 0x01, 0x10, 0xa0, 0xe3, 0x08, 0x10, 0x80, 0xe5,
401 0x02, 0x03, 0xa0, 0xe3, 0x00, 0x10, 0xa0, 0xe3, 0xb0, 0x10, 0xc0, 0xe1, 0xb4, 0x10, 0xc0, 0xe1,
402 0xb8, 0x10, 0xc0, 0xe1, 0xbc, 0x10, 0xc0, 0xe1, 0x56, 0xdc, 0xa0, 0xe3, 0x21, 0x00, 0x00, 0xeb,
403 0x0a, 0x00, 0xa0, 0xe3, 0x1a, 0x00, 0x00, 0xeb, 0x10, 0x00, 0x00, 0xeb, 0x07, 0x00, 0x00, 0xeb,
404 0x02, 0x03, 0xa0, 0xe3, 0x02, 0x14, 0xa0, 0xe3, 0xb4, 0x10, 0xc0, 0xe1, 0x4c, 0x10, 0x9f, 0xe5,
405 0xbc, 0x10, 0xc0, 0xe1, 0x10, 0x10, 0xa0, 0xe3, 0xb8, 0x10, 0xc0, 0xe1, 0xfe, 0xff, 0xff, 0xea,
406 0x00, 0x40, 0x2d, 0xe9, 0x00, 0x20, 0xa0, 0xe3, 0x02, 0x3c, 0xa0, 0xe3, 0x00, 0x10, 0xa0, 0xe3,
407 0x28, 0x00, 0x9f, 0xe5, 0x37, 0x00, 0x00, 0xeb, 0x00, 0x40, 0xbd, 0xe8, 0x1e, 0xff, 0x2f, 0xe1,
408 0x00, 0x40, 0x2d, 0xe9, 0x12, 0x2e, 0xa0, 0xe3, 0x06, 0x30, 0xa0, 0xe3, 0x00, 0x10, 0xa0, 0xe3,
409 0x02, 0x04, 0xa0, 0xe3, 0x2f, 0x00, 0x00, 0xeb, 0x00, 0x40, 0xbd, 0xe8, 0x1e, 0xff, 0x2f, 0xe1,
410 0x00, 0x02, 0x00, 0x02, 0x80, 0x01, 0x90, 0xe0, 0x01, 0x00, 0x00, 0x0a, 0x01, 0x00, 0x50, 0xe2,
411 0xfc, 0xff, 0xff, 0xea, 0x1e, 0xff, 0x2f, 0xe1, 0x80, 0x10, 0xa0, 0xe3, 0xf3, 0x06, 0xa0, 0xe3,
412 0x00, 0x10, 0x80, 0xe5, 0x00, 0x10, 0xa0, 0xe3, 0x00, 0x10, 0x80, 0xe5, 0x01, 0x10, 0xa0, 0xe3,
413 0x04, 0x10, 0x80, 0xe5, 0x00, 0x10, 0x80, 0xe5, 0x0e, 0x34, 0xa0, 0xe3, 0x1c, 0x10, 0x93, 0xe5,
414 0x02, 0x1a, 0x81, 0xe3, 0x1c, 0x10, 0x83, 0xe5, 0x58, 0x11, 0x9f, 0xe5, 0x30, 0x10, 0x80, 0xe5,
415 0x54, 0x11, 0x9f, 0xe5, 0x34, 0x10, 0x80, 0xe5, 0x38, 0x10, 0x80, 0xe5, 0x3c, 0x10, 0x80, 0xe5,
416 0x10, 0x10, 0x90, 0xe5, 0x08, 0x00, 0x90, 0xe5, 0x1e, 0xff, 0x2f, 0xe1, 0xf3, 0x16, 0xa0, 0xe3,
417 0x08, 0x00, 0x91, 0xe5, 0x05, 0x00, 0xa0, 0xe3, 0x0c, 0x00, 0x81, 0xe5, 0x10, 0x00, 0x91, 0xe5,
418 0x02, 0x00, 0x10, 0xe3, 0xfc, 0xff, 0xff, 0x0a, 0xff, 0x00, 0xa0, 0xe3, 0x0c, 0x00, 0x81, 0xe5,
419 0x10, 0x00, 0x91, 0xe5, 0x02, 0x00, 0x10, 0xe3, 0xfc, 0xff, 0xff, 0x0a, 0x08, 0x00, 0x91, 0xe5,
420 0x10, 0x00, 0x91, 0xe5, 0x01, 0x00, 0x10, 0xe3, 0xfc, 0xff, 0xff, 0x0a, 0x08, 0x00, 0x91, 0xe5,
421 0xff, 0x00, 0x00, 0xe2, 0x1e, 0xff, 0x2f, 0xe1, 0x30, 0x40, 0x2d, 0xe9, 0x00, 0x50, 0xa0, 0xe1,
422 0x03, 0x40, 0xa0, 0xe1, 0xa2, 0x02, 0xa0, 0xe1, 0x08, 0x00, 0x00, 0xe2, 0x03, 0x00, 0x80, 0xe2,
423 0xd8, 0x10, 0x9f, 0xe5, 0x00, 0x00, 0xc1, 0xe5, 0x01, 0x20, 0xc1, 0xe5, 0xe2, 0xff, 0xff, 0xeb,
424 0x01, 0x00, 0x10, 0xe3, 0xfc, 0xff, 0xff, 0x1a, 0x14, 0x00, 0xa0, 0xe3, 0xc4, 0xff, 0xff, 0xeb,
425 0x04, 0x20, 0xa0, 0xe1, 0x05, 0x10, 0xa0, 0xe1, 0x02, 0x00, 0xa0, 0xe3, 0x01, 0x00, 0x00, 0xeb,
426 0x30, 0x40, 0xbd, 0xe8, 0x1e, 0xff, 0x2f, 0xe1, 0x70, 0x40, 0x2d, 0xe9, 0xf3, 0x46, 0xa0, 0xe3,
427 0x00, 0x30, 0xa0, 0xe3, 0x00, 0x00, 0x50, 0xe3, 0x08, 0x00, 0x00, 0x9a, 0x8c, 0x50, 0x9f, 0xe5,
428 0x03, 0x60, 0xd5, 0xe7, 0x0c, 0x60, 0x84, 0xe5, 0x10, 0x60, 0x94, 0xe5, 0x02, 0x00, 0x16, 0xe3,
429 0xfc, 0xff, 0xff, 0x0a, 0x01, 0x30, 0x83, 0xe2, 0x00, 0x00, 0x53, 0xe1, 0xf7, 0xff, 0xff, 0x3a,
430 0xff, 0x30, 0xa0, 0xe3, 0x0c, 0x30, 0x84, 0xe5, 0x08, 0x00, 0x94, 0xe5, 0x10, 0x00, 0x94, 0xe5,
431 0x01, 0x00, 0x10, 0xe3, 0xfc, 0xff, 0xff, 0x0a, 0x08, 0x00, 0x94, 0xe5, 0x00, 0x00, 0xa0, 0xe3,
432 0x00, 0x00, 0x52, 0xe3, 0x0b, 0x00, 0x00, 0x9a, 0x10, 0x50, 0x94, 0xe5, 0x02, 0x00, 0x15, 0xe3,
433 0xfc, 0xff, 0xff, 0x0a, 0x0c, 0x30, 0x84, 0xe5, 0x10, 0x50, 0x94, 0xe5, 0x01, 0x00, 0x15, 0xe3,
434 0xfc, 0xff, 0xff, 0x0a, 0x08, 0x50, 0x94, 0xe5, 0x01, 0x50, 0xc1, 0xe4, 0x01, 0x00, 0x80, 0xe2,
435 0x02, 0x00, 0x50, 0xe1, 0xf3, 0xff, 0xff, 0x3a, 0xc8, 0x00, 0xa0, 0xe3, 0x98, 0xff, 0xff, 0xeb,
436 0x70, 0x40, 0xbd, 0xe8, 0x1e, 0xff, 0x2f, 0xe1, 0x01, 0x0c, 0x00, 0x02, 0x01, 0x02, 0x00, 0x02,
437 0x00, 0x01, 0x00, 0x02
438 };
439
440 struct atmel_private {
441 void *card; /* Bus dependent structure varies for PCcard */
442 int (*present_callback)(void *); /* And callback which uses it */
443 char firmware_id[32];
444 AtmelFWType firmware_type;
445 u8 *firmware;
446 int firmware_length;
447 struct timer_list management_timer;
448 struct net_device *dev;
449 struct device *sys_dev;
450 struct iw_statistics wstats;
451 spinlock_t irqlock, timerlock; /* spinlocks */
452 enum { BUS_TYPE_PCCARD, BUS_TYPE_PCI } bus_type;
453 enum {
454 CARD_TYPE_PARALLEL_FLASH,
455 CARD_TYPE_SPI_FLASH,
456 CARD_TYPE_EEPROM
457 } card_type;
458 int do_rx_crc; /* If we need to CRC incoming packets */
459 int probe_crc; /* set if we don't yet know */
460 int crc_ok_cnt, crc_ko_cnt; /* counters for probing */
461 u16 rx_desc_head;
462 u16 tx_desc_free, tx_desc_head, tx_desc_tail, tx_desc_previous;
463 u16 tx_free_mem, tx_buff_head, tx_buff_tail;
464
465 u16 frag_seq, frag_len, frag_no;
466 u8 frag_source[6];
467
468 u8 wep_is_on, default_key, exclude_unencrypted, encryption_level;
469 u8 group_cipher_suite, pairwise_cipher_suite;
470 u8 wep_keys[MAX_ENCRYPTION_KEYS][MAX_ENCRYPTION_KEY_SIZE];
471 int wep_key_len[MAX_ENCRYPTION_KEYS];
472 int use_wpa, radio_on_broken; /* firmware dependent stuff. */
473
474 u16 host_info_base;
475 struct host_info_struct {
476 /* NB this is matched to the hardware, don't change. */
477 u8 volatile int_status;
478 u8 volatile int_mask;
479 u8 volatile lockout_host;
480 u8 volatile lockout_mac;
481
482 u16 tx_buff_pos;
483 u16 tx_buff_size;
484 u16 tx_desc_pos;
485 u16 tx_desc_count;
486
487 u16 rx_buff_pos;
488 u16 rx_buff_size;
489 u16 rx_desc_pos;
490 u16 rx_desc_count;
491
492 u16 build_version;
493 u16 command_pos;
494
495 u16 major_version;
496 u16 minor_version;
497
498 u16 func_ctrl;
499 u16 mac_status;
500 u16 generic_IRQ_type;
501 u8 reserved[2];
502 } host_info;
503
504 enum {
505 STATION_STATE_SCANNING,
506 STATION_STATE_JOINNING,
507 STATION_STATE_AUTHENTICATING,
508 STATION_STATE_ASSOCIATING,
509 STATION_STATE_READY,
510 STATION_STATE_REASSOCIATING,
511 STATION_STATE_DOWN,
512 STATION_STATE_MGMT_ERROR
513 } station_state;
514
515 int operating_mode, power_mode;
516 unsigned long last_qual;
517 int beacons_this_sec;
518 int channel;
519 int reg_domain, config_reg_domain;
520 int tx_rate;
521 int auto_tx_rate;
522 int rts_threshold;
523 int frag_threshold;
524 int long_retry, short_retry;
525 int preamble;
526 int default_beacon_period, beacon_period, listen_interval;
527 int CurrentAuthentTransactionSeqNum, ExpectedAuthentTransactionSeqNum;
528 int AuthenticationRequestRetryCnt, AssociationRequestRetryCnt, ReAssociationRequestRetryCnt;
529 enum {
530 SITE_SURVEY_IDLE,
531 SITE_SURVEY_IN_PROGRESS,
532 SITE_SURVEY_COMPLETED
533 } site_survey_state;
534 unsigned long last_survey;
535
536 int station_was_associated, station_is_associated;
537 int fast_scan;
538
539 struct bss_info {
540 int channel;
541 int SSIDsize;
542 int RSSI;
543 int UsingWEP;
544 int preamble;
545 int beacon_period;
546 int BSStype;
547 u8 BSSID[6];
548 u8 SSID[MAX_SSID_LENGTH];
549 } BSSinfo[MAX_BSS_ENTRIES];
550 int BSS_list_entries, current_BSS;
551 int connect_to_any_BSS;
552 int SSID_size, new_SSID_size;
553 u8 CurrentBSSID[6], BSSID[6];
554 u8 SSID[MAX_SSID_LENGTH], new_SSID[MAX_SSID_LENGTH];
555 u64 last_beacon_timestamp;
556 u8 rx_buf[MAX_WIRELESS_BODY];
557 };
558
559 static u8 atmel_basic_rates[4] = {0x82, 0x84, 0x0b, 0x16};
560
561 static const struct {
562 int reg_domain;
563 int min, max;
564 char *name;
565 } channel_table[] = { { REG_DOMAIN_FCC, 1, 11, "USA" },
566 { REG_DOMAIN_DOC, 1, 11, "Canada" },
567 { REG_DOMAIN_ETSI, 1, 13, "Europe" },
568 { REG_DOMAIN_SPAIN, 10, 11, "Spain" },
569 { REG_DOMAIN_FRANCE, 10, 13, "France" },
570 { REG_DOMAIN_MKK, 14, 14, "MKK" },
571 { REG_DOMAIN_MKK1, 1, 14, "MKK1" },
572 { REG_DOMAIN_ISRAEL, 3, 9, "Israel"} };
573
574 static void build_wpa_mib(struct atmel_private *priv);
575 static int atmel_ioctl(struct net_device *dev, struct ifreq *rq, int cmd);
576 static void atmel_copy_to_card(struct net_device *dev, u16 dest,
577 const unsigned char *src, u16 len);
578 static void atmel_copy_to_host(struct net_device *dev, unsigned char *dest,
579 u16 src, u16 len);
580 static void atmel_set_gcr(struct net_device *dev, u16 mask);
581 static void atmel_clear_gcr(struct net_device *dev, u16 mask);
582 static int atmel_lock_mac(struct atmel_private *priv);
583 static void atmel_wmem32(struct atmel_private *priv, u16 pos, u32 data);
584 static void atmel_command_irq(struct atmel_private *priv);
585 static int atmel_validate_channel(struct atmel_private *priv, int channel);
586 static void atmel_management_frame(struct atmel_private *priv,
587 struct ieee80211_hdr *header,
588 u16 frame_len, u8 rssi);
589 static void atmel_management_timer(u_long a);
590 static void atmel_send_command(struct atmel_private *priv, int command,
591 void *cmd, int cmd_size);
592 static int atmel_send_command_wait(struct atmel_private *priv, int command,
593 void *cmd, int cmd_size);
594 static void atmel_transmit_management_frame(struct atmel_private *priv,
595 struct ieee80211_hdr *header,
596 u8 *body, int body_len);
597
598 static u8 atmel_get_mib8(struct atmel_private *priv, u8 type, u8 index);
599 static void atmel_set_mib8(struct atmel_private *priv, u8 type, u8 index,
600 u8 data);
601 static void atmel_set_mib16(struct atmel_private *priv, u8 type, u8 index,
602 u16 data);
603 static void atmel_set_mib(struct atmel_private *priv, u8 type, u8 index,
604 u8 *data, int data_len);
605 static void atmel_get_mib(struct atmel_private *priv, u8 type, u8 index,
606 u8 *data, int data_len);
607 static void atmel_scan(struct atmel_private *priv, int specific_ssid);
608 static void atmel_join_bss(struct atmel_private *priv, int bss_index);
609 static void atmel_smooth_qual(struct atmel_private *priv);
610 static void atmel_writeAR(struct net_device *dev, u16 data);
611 static int probe_atmel_card(struct net_device *dev);
612 static int reset_atmel_card(struct net_device *dev);
613 static void atmel_enter_state(struct atmel_private *priv, int new_state);
614 int atmel_open (struct net_device *dev);
615
atmel_hi(struct atmel_private * priv,u16 offset)616 static inline u16 atmel_hi(struct atmel_private *priv, u16 offset)
617 {
618 return priv->host_info_base + offset;
619 }
620
atmel_co(struct atmel_private * priv,u16 offset)621 static inline u16 atmel_co(struct atmel_private *priv, u16 offset)
622 {
623 return priv->host_info.command_pos + offset;
624 }
625
atmel_rx(struct atmel_private * priv,u16 offset,u16 desc)626 static inline u16 atmel_rx(struct atmel_private *priv, u16 offset, u16 desc)
627 {
628 return priv->host_info.rx_desc_pos + (sizeof(struct rx_desc) * desc) + offset;
629 }
630
atmel_tx(struct atmel_private * priv,u16 offset,u16 desc)631 static inline u16 atmel_tx(struct atmel_private *priv, u16 offset, u16 desc)
632 {
633 return priv->host_info.tx_desc_pos + (sizeof(struct tx_desc) * desc) + offset;
634 }
635
atmel_read8(struct net_device * dev,u16 offset)636 static inline u8 atmel_read8(struct net_device *dev, u16 offset)
637 {
638 return inb(dev->base_addr + offset);
639 }
640
atmel_write8(struct net_device * dev,u16 offset,u8 data)641 static inline void atmel_write8(struct net_device *dev, u16 offset, u8 data)
642 {
643 outb(data, dev->base_addr + offset);
644 }
645
atmel_read16(struct net_device * dev,u16 offset)646 static inline u16 atmel_read16(struct net_device *dev, u16 offset)
647 {
648 return inw(dev->base_addr + offset);
649 }
650
atmel_write16(struct net_device * dev,u16 offset,u16 data)651 static inline void atmel_write16(struct net_device *dev, u16 offset, u16 data)
652 {
653 outw(data, dev->base_addr + offset);
654 }
655
atmel_rmem8(struct atmel_private * priv,u16 pos)656 static inline u8 atmel_rmem8(struct atmel_private *priv, u16 pos)
657 {
658 atmel_writeAR(priv->dev, pos);
659 return atmel_read8(priv->dev, DR);
660 }
661
atmel_wmem8(struct atmel_private * priv,u16 pos,u16 data)662 static inline void atmel_wmem8(struct atmel_private *priv, u16 pos, u16 data)
663 {
664 atmel_writeAR(priv->dev, pos);
665 atmel_write8(priv->dev, DR, data);
666 }
667
atmel_rmem16(struct atmel_private * priv,u16 pos)668 static inline u16 atmel_rmem16(struct atmel_private *priv, u16 pos)
669 {
670 atmel_writeAR(priv->dev, pos);
671 return atmel_read16(priv->dev, DR);
672 }
673
atmel_wmem16(struct atmel_private * priv,u16 pos,u16 data)674 static inline void atmel_wmem16(struct atmel_private *priv, u16 pos, u16 data)
675 {
676 atmel_writeAR(priv->dev, pos);
677 atmel_write16(priv->dev, DR, data);
678 }
679
680 static const struct iw_handler_def atmel_handler_def;
681
tx_done_irq(struct atmel_private * priv)682 static void tx_done_irq(struct atmel_private *priv)
683 {
684 int i;
685
686 for (i = 0;
687 atmel_rmem8(priv, atmel_tx(priv, TX_DESC_FLAGS_OFFSET, priv->tx_desc_head)) == TX_DONE &&
688 i < priv->host_info.tx_desc_count;
689 i++) {
690 u8 status = atmel_rmem8(priv, atmel_tx(priv, TX_DESC_STATUS_OFFSET, priv->tx_desc_head));
691 u16 msdu_size = atmel_rmem16(priv, atmel_tx(priv, TX_DESC_SIZE_OFFSET, priv->tx_desc_head));
692 u8 type = atmel_rmem8(priv, atmel_tx(priv, TX_DESC_PACKET_TYPE_OFFSET, priv->tx_desc_head));
693
694 atmel_wmem8(priv, atmel_tx(priv, TX_DESC_FLAGS_OFFSET, priv->tx_desc_head), 0);
695
696 priv->tx_free_mem += msdu_size;
697 priv->tx_desc_free++;
698
699 if (priv->tx_buff_head + msdu_size > (priv->host_info.tx_buff_pos + priv->host_info.tx_buff_size))
700 priv->tx_buff_head = 0;
701 else
702 priv->tx_buff_head += msdu_size;
703
704 if (priv->tx_desc_head < (priv->host_info.tx_desc_count - 1))
705 priv->tx_desc_head++ ;
706 else
707 priv->tx_desc_head = 0;
708
709 if (type == TX_PACKET_TYPE_DATA) {
710 if (status == TX_STATUS_SUCCESS)
711 priv->dev->stats.tx_packets++;
712 else
713 priv->dev->stats.tx_errors++;
714 netif_wake_queue(priv->dev);
715 }
716 }
717 }
718
find_tx_buff(struct atmel_private * priv,u16 len)719 static u16 find_tx_buff(struct atmel_private *priv, u16 len)
720 {
721 u16 bottom_free = priv->host_info.tx_buff_size - priv->tx_buff_tail;
722
723 if (priv->tx_desc_free == 3 || priv->tx_free_mem < len)
724 return 0;
725
726 if (bottom_free >= len)
727 return priv->host_info.tx_buff_pos + priv->tx_buff_tail;
728
729 if (priv->tx_free_mem - bottom_free >= len) {
730 priv->tx_buff_tail = 0;
731 return priv->host_info.tx_buff_pos;
732 }
733
734 return 0;
735 }
736
tx_update_descriptor(struct atmel_private * priv,int is_bcast,u16 len,u16 buff,u8 type)737 static void tx_update_descriptor(struct atmel_private *priv, int is_bcast,
738 u16 len, u16 buff, u8 type)
739 {
740 atmel_wmem16(priv, atmel_tx(priv, TX_DESC_POS_OFFSET, priv->tx_desc_tail), buff);
741 atmel_wmem16(priv, atmel_tx(priv, TX_DESC_SIZE_OFFSET, priv->tx_desc_tail), len);
742 if (!priv->use_wpa)
743 atmel_wmem16(priv, atmel_tx(priv, TX_DESC_HOST_LENGTH_OFFSET, priv->tx_desc_tail), len);
744 atmel_wmem8(priv, atmel_tx(priv, TX_DESC_PACKET_TYPE_OFFSET, priv->tx_desc_tail), type);
745 atmel_wmem8(priv, atmel_tx(priv, TX_DESC_RATE_OFFSET, priv->tx_desc_tail), priv->tx_rate);
746 atmel_wmem8(priv, atmel_tx(priv, TX_DESC_RETRY_OFFSET, priv->tx_desc_tail), 0);
747 if (priv->use_wpa) {
748 int cipher_type, cipher_length;
749 if (is_bcast) {
750 cipher_type = priv->group_cipher_suite;
751 if (cipher_type == CIPHER_SUITE_WEP_64 ||
752 cipher_type == CIPHER_SUITE_WEP_128)
753 cipher_length = 8;
754 else if (cipher_type == CIPHER_SUITE_TKIP)
755 cipher_length = 12;
756 else if (priv->pairwise_cipher_suite == CIPHER_SUITE_WEP_64 ||
757 priv->pairwise_cipher_suite == CIPHER_SUITE_WEP_128) {
758 cipher_type = priv->pairwise_cipher_suite;
759 cipher_length = 8;
760 } else {
761 cipher_type = CIPHER_SUITE_NONE;
762 cipher_length = 0;
763 }
764 } else {
765 cipher_type = priv->pairwise_cipher_suite;
766 if (cipher_type == CIPHER_SUITE_WEP_64 ||
767 cipher_type == CIPHER_SUITE_WEP_128)
768 cipher_length = 8;
769 else if (cipher_type == CIPHER_SUITE_TKIP)
770 cipher_length = 12;
771 else if (priv->group_cipher_suite == CIPHER_SUITE_WEP_64 ||
772 priv->group_cipher_suite == CIPHER_SUITE_WEP_128) {
773 cipher_type = priv->group_cipher_suite;
774 cipher_length = 8;
775 } else {
776 cipher_type = CIPHER_SUITE_NONE;
777 cipher_length = 0;
778 }
779 }
780
781 atmel_wmem8(priv, atmel_tx(priv, TX_DESC_CIPHER_TYPE_OFFSET, priv->tx_desc_tail),
782 cipher_type);
783 atmel_wmem8(priv, atmel_tx(priv, TX_DESC_CIPHER_LENGTH_OFFSET, priv->tx_desc_tail),
784 cipher_length);
785 }
786 atmel_wmem32(priv, atmel_tx(priv, TX_DESC_NEXT_OFFSET, priv->tx_desc_tail), 0x80000000L);
787 atmel_wmem8(priv, atmel_tx(priv, TX_DESC_FLAGS_OFFSET, priv->tx_desc_tail), TX_FIRM_OWN);
788 if (priv->tx_desc_previous != priv->tx_desc_tail)
789 atmel_wmem32(priv, atmel_tx(priv, TX_DESC_NEXT_OFFSET, priv->tx_desc_previous), 0);
790 priv->tx_desc_previous = priv->tx_desc_tail;
791 if (priv->tx_desc_tail < (priv->host_info.tx_desc_count - 1))
792 priv->tx_desc_tail++;
793 else
794 priv->tx_desc_tail = 0;
795 priv->tx_desc_free--;
796 priv->tx_free_mem -= len;
797 }
798
start_tx(struct sk_buff * skb,struct net_device * dev)799 static netdev_tx_t start_tx(struct sk_buff *skb, struct net_device *dev)
800 {
801 static const u8 SNAP_RFC1024[6] = { 0xaa, 0xaa, 0x03, 0x00, 0x00, 0x00 };
802 struct atmel_private *priv = netdev_priv(dev);
803 struct ieee80211_hdr header;
804 unsigned long flags;
805 u16 buff, frame_ctl, len = (ETH_ZLEN < skb->len) ? skb->len : ETH_ZLEN;
806
807 if (priv->card && priv->present_callback &&
808 !(*priv->present_callback)(priv->card)) {
809 dev->stats.tx_errors++;
810 dev_kfree_skb(skb);
811 return NETDEV_TX_OK;
812 }
813
814 if (priv->station_state != STATION_STATE_READY) {
815 dev->stats.tx_errors++;
816 dev_kfree_skb(skb);
817 return NETDEV_TX_OK;
818 }
819
820 /* first ensure the timer func cannot run */
821 spin_lock_bh(&priv->timerlock);
822 /* then stop the hardware ISR */
823 spin_lock_irqsave(&priv->irqlock, flags);
824 /* nb doing the above in the opposite order will deadlock */
825
826 /* The Wireless Header is 30 bytes. In the Ethernet packet we "cut" the
827 12 first bytes (containing DA/SA) and put them in the appropriate
828 fields of the Wireless Header. Thus the packet length is then the
829 initial + 18 (+30-12) */
830
831 if (!(buff = find_tx_buff(priv, len + 18))) {
832 dev->stats.tx_dropped++;
833 spin_unlock_irqrestore(&priv->irqlock, flags);
834 spin_unlock_bh(&priv->timerlock);
835 netif_stop_queue(dev);
836 return NETDEV_TX_BUSY;
837 }
838
839 frame_ctl = IEEE80211_FTYPE_DATA;
840 header.duration_id = 0;
841 header.seq_ctrl = 0;
842 if (priv->wep_is_on)
843 frame_ctl |= IEEE80211_FCTL_PROTECTED;
844 if (priv->operating_mode == IW_MODE_ADHOC) {
845 skb_copy_from_linear_data(skb, &header.addr1, ETH_ALEN);
846 memcpy(&header.addr2, dev->dev_addr, ETH_ALEN);
847 memcpy(&header.addr3, priv->BSSID, ETH_ALEN);
848 } else {
849 frame_ctl |= IEEE80211_FCTL_TODS;
850 memcpy(&header.addr1, priv->CurrentBSSID, ETH_ALEN);
851 memcpy(&header.addr2, dev->dev_addr, ETH_ALEN);
852 skb_copy_from_linear_data(skb, &header.addr3, ETH_ALEN);
853 }
854
855 if (priv->use_wpa)
856 memcpy(&header.addr4, SNAP_RFC1024, ETH_ALEN);
857
858 header.frame_control = cpu_to_le16(frame_ctl);
859 /* Copy the wireless header into the card */
860 atmel_copy_to_card(dev, buff, (unsigned char *)&header, DATA_FRAME_WS_HEADER_SIZE);
861 /* Copy the packet sans its 802.3 header addresses which have been replaced */
862 atmel_copy_to_card(dev, buff + DATA_FRAME_WS_HEADER_SIZE, skb->data + 12, len - 12);
863 priv->tx_buff_tail += len - 12 + DATA_FRAME_WS_HEADER_SIZE;
864
865 /* low bit of first byte of destination tells us if broadcast */
866 tx_update_descriptor(priv, *(skb->data) & 0x01, len + 18, buff, TX_PACKET_TYPE_DATA);
867 dev->stats.tx_bytes += len;
868
869 spin_unlock_irqrestore(&priv->irqlock, flags);
870 spin_unlock_bh(&priv->timerlock);
871 dev_kfree_skb(skb);
872
873 return NETDEV_TX_OK;
874 }
875
atmel_transmit_management_frame(struct atmel_private * priv,struct ieee80211_hdr * header,u8 * body,int body_len)876 static void atmel_transmit_management_frame(struct atmel_private *priv,
877 struct ieee80211_hdr *header,
878 u8 *body, int body_len)
879 {
880 u16 buff;
881 int len = MGMT_FRAME_BODY_OFFSET + body_len;
882
883 if (!(buff = find_tx_buff(priv, len)))
884 return;
885
886 atmel_copy_to_card(priv->dev, buff, (u8 *)header, MGMT_FRAME_BODY_OFFSET);
887 atmel_copy_to_card(priv->dev, buff + MGMT_FRAME_BODY_OFFSET, body, body_len);
888 priv->tx_buff_tail += len;
889 tx_update_descriptor(priv, header->addr1[0] & 0x01, len, buff, TX_PACKET_TYPE_MGMT);
890 }
891
fast_rx_path(struct atmel_private * priv,struct ieee80211_hdr * header,u16 msdu_size,u16 rx_packet_loc,u32 crc)892 static void fast_rx_path(struct atmel_private *priv,
893 struct ieee80211_hdr *header,
894 u16 msdu_size, u16 rx_packet_loc, u32 crc)
895 {
896 /* fast path: unfragmented packet copy directly into skbuf */
897 u8 mac4[6];
898 struct sk_buff *skb;
899 unsigned char *skbp;
900
901 /* get the final, mac 4 header field, this tells us encapsulation */
902 atmel_copy_to_host(priv->dev, mac4, rx_packet_loc + 24, 6);
903 msdu_size -= 6;
904
905 if (priv->do_rx_crc) {
906 crc = crc32_le(crc, mac4, 6);
907 msdu_size -= 4;
908 }
909
910 if (!(skb = dev_alloc_skb(msdu_size + 14))) {
911 priv->dev->stats.rx_dropped++;
912 return;
913 }
914
915 skb_reserve(skb, 2);
916 skbp = skb_put(skb, msdu_size + 12);
917 atmel_copy_to_host(priv->dev, skbp + 12, rx_packet_loc + 30, msdu_size);
918
919 if (priv->do_rx_crc) {
920 u32 netcrc;
921 crc = crc32_le(crc, skbp + 12, msdu_size);
922 atmel_copy_to_host(priv->dev, (void *)&netcrc, rx_packet_loc + 30 + msdu_size, 4);
923 if ((crc ^ 0xffffffff) != netcrc) {
924 priv->dev->stats.rx_crc_errors++;
925 dev_kfree_skb(skb);
926 return;
927 }
928 }
929
930 memcpy(skbp, header->addr1, ETH_ALEN); /* destination address */
931 if (le16_to_cpu(header->frame_control) & IEEE80211_FCTL_FROMDS)
932 memcpy(&skbp[ETH_ALEN], header->addr3, ETH_ALEN);
933 else
934 memcpy(&skbp[ETH_ALEN], header->addr2, ETH_ALEN); /* source address */
935
936 skb->protocol = eth_type_trans(skb, priv->dev);
937 skb->ip_summed = CHECKSUM_NONE;
938 netif_rx(skb);
939 priv->dev->stats.rx_bytes += 12 + msdu_size;
940 priv->dev->stats.rx_packets++;
941 }
942
943 /* Test to see if the packet in card memory at packet_loc has a valid CRC
944 It doesn't matter that this is slow: it is only used to proble the first few
945 packets. */
probe_crc(struct atmel_private * priv,u16 packet_loc,u16 msdu_size)946 static int probe_crc(struct atmel_private *priv, u16 packet_loc, u16 msdu_size)
947 {
948 int i = msdu_size - 4;
949 u32 netcrc, crc = 0xffffffff;
950
951 if (msdu_size < 4)
952 return 0;
953
954 atmel_copy_to_host(priv->dev, (void *)&netcrc, packet_loc + i, 4);
955
956 atmel_writeAR(priv->dev, packet_loc);
957 while (i--) {
958 u8 octet = atmel_read8(priv->dev, DR);
959 crc = crc32_le(crc, &octet, 1);
960 }
961
962 return (crc ^ 0xffffffff) == netcrc;
963 }
964
frag_rx_path(struct atmel_private * priv,struct ieee80211_hdr * header,u16 msdu_size,u16 rx_packet_loc,u32 crc,u16 seq_no,u8 frag_no,int more_frags)965 static void frag_rx_path(struct atmel_private *priv,
966 struct ieee80211_hdr *header,
967 u16 msdu_size, u16 rx_packet_loc, u32 crc, u16 seq_no,
968 u8 frag_no, int more_frags)
969 {
970 u8 mac4[ETH_ALEN];
971 u8 source[ETH_ALEN];
972 struct sk_buff *skb;
973
974 if (le16_to_cpu(header->frame_control) & IEEE80211_FCTL_FROMDS)
975 memcpy(source, header->addr3, ETH_ALEN);
976 else
977 memcpy(source, header->addr2, ETH_ALEN);
978
979 rx_packet_loc += 24; /* skip header */
980
981 if (priv->do_rx_crc)
982 msdu_size -= 4;
983
984 if (frag_no == 0) { /* first fragment */
985 atmel_copy_to_host(priv->dev, mac4, rx_packet_loc, ETH_ALEN);
986 msdu_size -= ETH_ALEN;
987 rx_packet_loc += ETH_ALEN;
988
989 if (priv->do_rx_crc)
990 crc = crc32_le(crc, mac4, 6);
991
992 priv->frag_seq = seq_no;
993 priv->frag_no = 1;
994 priv->frag_len = msdu_size;
995 memcpy(priv->frag_source, source, ETH_ALEN);
996 memcpy(&priv->rx_buf[ETH_ALEN], source, ETH_ALEN);
997 memcpy(priv->rx_buf, header->addr1, ETH_ALEN);
998
999 atmel_copy_to_host(priv->dev, &priv->rx_buf[12], rx_packet_loc, msdu_size);
1000
1001 if (priv->do_rx_crc) {
1002 u32 netcrc;
1003 crc = crc32_le(crc, &priv->rx_buf[12], msdu_size);
1004 atmel_copy_to_host(priv->dev, (void *)&netcrc, rx_packet_loc + msdu_size, 4);
1005 if ((crc ^ 0xffffffff) != netcrc) {
1006 priv->dev->stats.rx_crc_errors++;
1007 eth_broadcast_addr(priv->frag_source);
1008 }
1009 }
1010
1011 } else if (priv->frag_no == frag_no &&
1012 priv->frag_seq == seq_no &&
1013 memcmp(priv->frag_source, source, ETH_ALEN) == 0) {
1014
1015 atmel_copy_to_host(priv->dev, &priv->rx_buf[12 + priv->frag_len],
1016 rx_packet_loc, msdu_size);
1017 if (priv->do_rx_crc) {
1018 u32 netcrc;
1019 crc = crc32_le(crc,
1020 &priv->rx_buf[12 + priv->frag_len],
1021 msdu_size);
1022 atmel_copy_to_host(priv->dev, (void *)&netcrc, rx_packet_loc + msdu_size, 4);
1023 if ((crc ^ 0xffffffff) != netcrc) {
1024 priv->dev->stats.rx_crc_errors++;
1025 eth_broadcast_addr(priv->frag_source);
1026 more_frags = 1; /* don't send broken assembly */
1027 }
1028 }
1029
1030 priv->frag_len += msdu_size;
1031 priv->frag_no++;
1032
1033 if (!more_frags) { /* last one */
1034 eth_broadcast_addr(priv->frag_source);
1035 if (!(skb = dev_alloc_skb(priv->frag_len + 14))) {
1036 priv->dev->stats.rx_dropped++;
1037 } else {
1038 skb_reserve(skb, 2);
1039 skb_put_data(skb, priv->rx_buf,
1040 priv->frag_len + 12);
1041 skb->protocol = eth_type_trans(skb, priv->dev);
1042 skb->ip_summed = CHECKSUM_NONE;
1043 netif_rx(skb);
1044 priv->dev->stats.rx_bytes += priv->frag_len + 12;
1045 priv->dev->stats.rx_packets++;
1046 }
1047 }
1048 } else
1049 priv->wstats.discard.fragment++;
1050 }
1051
rx_done_irq(struct atmel_private * priv)1052 static void rx_done_irq(struct atmel_private *priv)
1053 {
1054 int i;
1055 struct ieee80211_hdr header;
1056
1057 for (i = 0;
1058 atmel_rmem8(priv, atmel_rx(priv, RX_DESC_FLAGS_OFFSET, priv->rx_desc_head)) == RX_DESC_FLAG_VALID &&
1059 i < priv->host_info.rx_desc_count;
1060 i++) {
1061
1062 u16 msdu_size, rx_packet_loc, frame_ctl, seq_control;
1063 u8 status = atmel_rmem8(priv, atmel_rx(priv, RX_DESC_STATUS_OFFSET, priv->rx_desc_head));
1064 u32 crc = 0xffffffff;
1065
1066 if (status != RX_STATUS_SUCCESS) {
1067 if (status == 0xc1) /* determined by experiment */
1068 priv->wstats.discard.nwid++;
1069 else
1070 priv->dev->stats.rx_errors++;
1071 goto next;
1072 }
1073
1074 msdu_size = atmel_rmem16(priv, atmel_rx(priv, RX_DESC_MSDU_SIZE_OFFSET, priv->rx_desc_head));
1075 rx_packet_loc = atmel_rmem16(priv, atmel_rx(priv, RX_DESC_MSDU_POS_OFFSET, priv->rx_desc_head));
1076
1077 if (msdu_size < 30) {
1078 priv->dev->stats.rx_errors++;
1079 goto next;
1080 }
1081
1082 /* Get header as far as end of seq_ctrl */
1083 atmel_copy_to_host(priv->dev, (char *)&header, rx_packet_loc, 24);
1084 frame_ctl = le16_to_cpu(header.frame_control);
1085 seq_control = le16_to_cpu(header.seq_ctrl);
1086
1087 /* probe for CRC use here if needed once five packets have
1088 arrived with the same crc status, we assume we know what's
1089 happening and stop probing */
1090 if (priv->probe_crc) {
1091 if (!priv->wep_is_on || !(frame_ctl & IEEE80211_FCTL_PROTECTED)) {
1092 priv->do_rx_crc = probe_crc(priv, rx_packet_loc, msdu_size);
1093 } else {
1094 priv->do_rx_crc = probe_crc(priv, rx_packet_loc + 24, msdu_size - 24);
1095 }
1096 if (priv->do_rx_crc) {
1097 if (priv->crc_ok_cnt++ > 5)
1098 priv->probe_crc = 0;
1099 } else {
1100 if (priv->crc_ko_cnt++ > 5)
1101 priv->probe_crc = 0;
1102 }
1103 }
1104
1105 /* don't CRC header when WEP in use */
1106 if (priv->do_rx_crc && (!priv->wep_is_on || !(frame_ctl & IEEE80211_FCTL_PROTECTED))) {
1107 crc = crc32_le(0xffffffff, (unsigned char *)&header, 24);
1108 }
1109 msdu_size -= 24; /* header */
1110
1111 if ((frame_ctl & IEEE80211_FCTL_FTYPE) == IEEE80211_FTYPE_DATA) {
1112 int more_fragments = frame_ctl & IEEE80211_FCTL_MOREFRAGS;
1113 u8 packet_fragment_no = seq_control & IEEE80211_SCTL_FRAG;
1114 u16 packet_sequence_no = (seq_control & IEEE80211_SCTL_SEQ) >> 4;
1115
1116 if (!more_fragments && packet_fragment_no == 0) {
1117 fast_rx_path(priv, &header, msdu_size, rx_packet_loc, crc);
1118 } else {
1119 frag_rx_path(priv, &header, msdu_size, rx_packet_loc, crc,
1120 packet_sequence_no, packet_fragment_no, more_fragments);
1121 }
1122 }
1123
1124 if ((frame_ctl & IEEE80211_FCTL_FTYPE) == IEEE80211_FTYPE_MGMT) {
1125 /* copy rest of packet into buffer */
1126 atmel_copy_to_host(priv->dev, (unsigned char *)&priv->rx_buf, rx_packet_loc + 24, msdu_size);
1127
1128 /* we use the same buffer for frag reassembly and control packets */
1129 eth_broadcast_addr(priv->frag_source);
1130
1131 if (priv->do_rx_crc) {
1132 /* last 4 octets is crc */
1133 msdu_size -= 4;
1134 crc = crc32_le(crc, (unsigned char *)&priv->rx_buf, msdu_size);
1135 if ((crc ^ 0xffffffff) != (*((u32 *)&priv->rx_buf[msdu_size]))) {
1136 priv->dev->stats.rx_crc_errors++;
1137 goto next;
1138 }
1139 }
1140
1141 atmel_management_frame(priv, &header, msdu_size,
1142 atmel_rmem8(priv, atmel_rx(priv, RX_DESC_RSSI_OFFSET, priv->rx_desc_head)));
1143 }
1144
1145 next:
1146 /* release descriptor */
1147 atmel_wmem8(priv, atmel_rx(priv, RX_DESC_FLAGS_OFFSET, priv->rx_desc_head), RX_DESC_FLAG_CONSUMED);
1148
1149 if (priv->rx_desc_head < (priv->host_info.rx_desc_count - 1))
1150 priv->rx_desc_head++;
1151 else
1152 priv->rx_desc_head = 0;
1153 }
1154 }
1155
service_interrupt(int irq,void * dev_id)1156 static irqreturn_t service_interrupt(int irq, void *dev_id)
1157 {
1158 struct net_device *dev = (struct net_device *) dev_id;
1159 struct atmel_private *priv = netdev_priv(dev);
1160 u8 isr;
1161 int i = -1;
1162 static const u8 irq_order[] = {
1163 ISR_OUT_OF_RANGE,
1164 ISR_RxCOMPLETE,
1165 ISR_TxCOMPLETE,
1166 ISR_RxFRAMELOST,
1167 ISR_FATAL_ERROR,
1168 ISR_COMMAND_COMPLETE,
1169 ISR_IBSS_MERGE,
1170 ISR_GENERIC_IRQ
1171 };
1172
1173 if (priv->card && priv->present_callback &&
1174 !(*priv->present_callback)(priv->card))
1175 return IRQ_HANDLED;
1176
1177 /* In this state upper-level code assumes it can mess with
1178 the card unhampered by interrupts which may change register state.
1179 Note that even though the card shouldn't generate interrupts
1180 the inturrupt line may be shared. This allows card setup
1181 to go on without disabling interrupts for a long time. */
1182 if (priv->station_state == STATION_STATE_DOWN)
1183 return IRQ_NONE;
1184
1185 atmel_clear_gcr(dev, GCR_ENINT); /* disable interrupts */
1186
1187 while (1) {
1188 if (!atmel_lock_mac(priv)) {
1189 /* failed to contact card */
1190 printk(KERN_ALERT "%s: failed to contact MAC.\n", dev->name);
1191 return IRQ_HANDLED;
1192 }
1193
1194 isr = atmel_rmem8(priv, atmel_hi(priv, IFACE_INT_STATUS_OFFSET));
1195 atmel_wmem8(priv, atmel_hi(priv, IFACE_LOCKOUT_MAC_OFFSET), 0);
1196
1197 if (!isr) {
1198 atmel_set_gcr(dev, GCR_ENINT); /* enable interrupts */
1199 return i == -1 ? IRQ_NONE : IRQ_HANDLED;
1200 }
1201
1202 atmel_set_gcr(dev, GCR_ACKINT); /* acknowledge interrupt */
1203
1204 for (i = 0; i < ARRAY_SIZE(irq_order); i++)
1205 if (isr & irq_order[i])
1206 break;
1207
1208 if (!atmel_lock_mac(priv)) {
1209 /* failed to contact card */
1210 printk(KERN_ALERT "%s: failed to contact MAC.\n", dev->name);
1211 return IRQ_HANDLED;
1212 }
1213
1214 isr = atmel_rmem8(priv, atmel_hi(priv, IFACE_INT_STATUS_OFFSET));
1215 isr ^= irq_order[i];
1216 atmel_wmem8(priv, atmel_hi(priv, IFACE_INT_STATUS_OFFSET), isr);
1217 atmel_wmem8(priv, atmel_hi(priv, IFACE_LOCKOUT_MAC_OFFSET), 0);
1218
1219 switch (irq_order[i]) {
1220
1221 case ISR_OUT_OF_RANGE:
1222 if (priv->operating_mode == IW_MODE_INFRA &&
1223 priv->station_state == STATION_STATE_READY) {
1224 priv->station_is_associated = 0;
1225 atmel_scan(priv, 1);
1226 }
1227 break;
1228
1229 case ISR_RxFRAMELOST:
1230 priv->wstats.discard.misc++;
1231 /* fall through */
1232 case ISR_RxCOMPLETE:
1233 rx_done_irq(priv);
1234 break;
1235
1236 case ISR_TxCOMPLETE:
1237 tx_done_irq(priv);
1238 break;
1239
1240 case ISR_FATAL_ERROR:
1241 printk(KERN_ALERT "%s: *** FATAL error interrupt ***\n", dev->name);
1242 atmel_enter_state(priv, STATION_STATE_MGMT_ERROR);
1243 break;
1244
1245 case ISR_COMMAND_COMPLETE:
1246 atmel_command_irq(priv);
1247 break;
1248
1249 case ISR_IBSS_MERGE:
1250 atmel_get_mib(priv, Mac_Mgmt_Mib_Type, MAC_MGMT_MIB_CUR_BSSID_POS,
1251 priv->CurrentBSSID, 6);
1252 /* The WPA stuff cares about the current AP address */
1253 if (priv->use_wpa)
1254 build_wpa_mib(priv);
1255 break;
1256 case ISR_GENERIC_IRQ:
1257 printk(KERN_INFO "%s: Generic_irq received.\n", dev->name);
1258 break;
1259 }
1260 }
1261 }
1262
atmel_get_wireless_stats(struct net_device * dev)1263 static struct iw_statistics *atmel_get_wireless_stats(struct net_device *dev)
1264 {
1265 struct atmel_private *priv = netdev_priv(dev);
1266
1267 /* update the link quality here in case we are seeing no beacons
1268 at all to drive the process */
1269 atmel_smooth_qual(priv);
1270
1271 priv->wstats.status = priv->station_state;
1272
1273 if (priv->operating_mode == IW_MODE_INFRA) {
1274 if (priv->station_state != STATION_STATE_READY) {
1275 priv->wstats.qual.qual = 0;
1276 priv->wstats.qual.level = 0;
1277 priv->wstats.qual.updated = (IW_QUAL_QUAL_INVALID
1278 | IW_QUAL_LEVEL_INVALID);
1279 }
1280 priv->wstats.qual.noise = 0;
1281 priv->wstats.qual.updated |= IW_QUAL_NOISE_INVALID;
1282 } else {
1283 /* Quality levels cannot be determined in ad-hoc mode,
1284 because we can 'hear' more that one remote station. */
1285 priv->wstats.qual.qual = 0;
1286 priv->wstats.qual.level = 0;
1287 priv->wstats.qual.noise = 0;
1288 priv->wstats.qual.updated = IW_QUAL_QUAL_INVALID
1289 | IW_QUAL_LEVEL_INVALID
1290 | IW_QUAL_NOISE_INVALID;
1291 priv->wstats.miss.beacon = 0;
1292 }
1293
1294 return &priv->wstats;
1295 }
1296
atmel_set_mac_address(struct net_device * dev,void * p)1297 static int atmel_set_mac_address(struct net_device *dev, void *p)
1298 {
1299 struct sockaddr *addr = p;
1300
1301 memcpy (dev->dev_addr, addr->sa_data, dev->addr_len);
1302 return atmel_open(dev);
1303 }
1304
1305 EXPORT_SYMBOL(atmel_open);
1306
atmel_open(struct net_device * dev)1307 int atmel_open(struct net_device *dev)
1308 {
1309 struct atmel_private *priv = netdev_priv(dev);
1310 int i, channel, err;
1311
1312 /* any scheduled timer is no longer needed and might screw things up.. */
1313 del_timer_sync(&priv->management_timer);
1314
1315 /* Interrupts will not touch the card once in this state... */
1316 priv->station_state = STATION_STATE_DOWN;
1317
1318 if (priv->new_SSID_size) {
1319 memcpy(priv->SSID, priv->new_SSID, priv->new_SSID_size);
1320 priv->SSID_size = priv->new_SSID_size;
1321 priv->new_SSID_size = 0;
1322 }
1323 priv->BSS_list_entries = 0;
1324
1325 priv->AuthenticationRequestRetryCnt = 0;
1326 priv->AssociationRequestRetryCnt = 0;
1327 priv->ReAssociationRequestRetryCnt = 0;
1328 priv->CurrentAuthentTransactionSeqNum = 0x0001;
1329 priv->ExpectedAuthentTransactionSeqNum = 0x0002;
1330
1331 priv->site_survey_state = SITE_SURVEY_IDLE;
1332 priv->station_is_associated = 0;
1333
1334 err = reset_atmel_card(dev);
1335 if (err)
1336 return err;
1337
1338 if (priv->config_reg_domain) {
1339 priv->reg_domain = priv->config_reg_domain;
1340 atmel_set_mib8(priv, Phy_Mib_Type, PHY_MIB_REG_DOMAIN_POS, priv->reg_domain);
1341 } else {
1342 priv->reg_domain = atmel_get_mib8(priv, Phy_Mib_Type, PHY_MIB_REG_DOMAIN_POS);
1343 for (i = 0; i < ARRAY_SIZE(channel_table); i++)
1344 if (priv->reg_domain == channel_table[i].reg_domain)
1345 break;
1346 if (i == ARRAY_SIZE(channel_table)) {
1347 priv->reg_domain = REG_DOMAIN_MKK1;
1348 printk(KERN_ALERT "%s: failed to get regulatory domain: assuming MKK1.\n", dev->name);
1349 }
1350 }
1351
1352 if ((channel = atmel_validate_channel(priv, priv->channel)))
1353 priv->channel = channel;
1354
1355 /* this moves station_state on.... */
1356 atmel_scan(priv, 1);
1357
1358 atmel_set_gcr(priv->dev, GCR_ENINT); /* enable interrupts */
1359 return 0;
1360 }
1361
atmel_close(struct net_device * dev)1362 static int atmel_close(struct net_device *dev)
1363 {
1364 struct atmel_private *priv = netdev_priv(dev);
1365
1366 /* Send event to userspace that we are disassociating */
1367 if (priv->station_state == STATION_STATE_READY) {
1368 union iwreq_data wrqu;
1369
1370 wrqu.data.length = 0;
1371 wrqu.data.flags = 0;
1372 wrqu.ap_addr.sa_family = ARPHRD_ETHER;
1373 eth_zero_addr(wrqu.ap_addr.sa_data);
1374 wireless_send_event(priv->dev, SIOCGIWAP, &wrqu, NULL);
1375 }
1376
1377 atmel_enter_state(priv, STATION_STATE_DOWN);
1378
1379 if (priv->bus_type == BUS_TYPE_PCCARD)
1380 atmel_write16(dev, GCR, 0x0060);
1381 atmel_write16(dev, GCR, 0x0040);
1382 return 0;
1383 }
1384
atmel_validate_channel(struct atmel_private * priv,int channel)1385 static int atmel_validate_channel(struct atmel_private *priv, int channel)
1386 {
1387 /* check that channel is OK, if so return zero,
1388 else return suitable default channel */
1389 int i;
1390
1391 for (i = 0; i < ARRAY_SIZE(channel_table); i++)
1392 if (priv->reg_domain == channel_table[i].reg_domain) {
1393 if (channel >= channel_table[i].min &&
1394 channel <= channel_table[i].max)
1395 return 0;
1396 else
1397 return channel_table[i].min;
1398 }
1399 return 0;
1400 }
1401
atmel_proc_show(struct seq_file * m,void * v)1402 static int atmel_proc_show(struct seq_file *m, void *v)
1403 {
1404 struct atmel_private *priv = m->private;
1405 int i;
1406 char *s, *r, *c;
1407
1408 seq_printf(m, "Driver version:\t\t%d.%d\n", DRIVER_MAJOR, DRIVER_MINOR);
1409
1410 if (priv->station_state != STATION_STATE_DOWN) {
1411 seq_printf(m,
1412 "Firmware version:\t%d.%d build %d\n"
1413 "Firmware location:\t",
1414 priv->host_info.major_version,
1415 priv->host_info.minor_version,
1416 priv->host_info.build_version);
1417
1418 if (priv->card_type != CARD_TYPE_EEPROM)
1419 seq_puts(m, "on card\n");
1420 else if (priv->firmware)
1421 seq_printf(m, "%s loaded by host\n", priv->firmware_id);
1422 else
1423 seq_printf(m, "%s loaded by hotplug\n", priv->firmware_id);
1424
1425 switch (priv->card_type) {
1426 case CARD_TYPE_PARALLEL_FLASH:
1427 c = "Parallel flash";
1428 break;
1429 case CARD_TYPE_SPI_FLASH:
1430 c = "SPI flash\n";
1431 break;
1432 case CARD_TYPE_EEPROM:
1433 c = "EEPROM";
1434 break;
1435 default:
1436 c = "<unknown>";
1437 }
1438
1439 r = "<unknown>";
1440 for (i = 0; i < ARRAY_SIZE(channel_table); i++)
1441 if (priv->reg_domain == channel_table[i].reg_domain)
1442 r = channel_table[i].name;
1443
1444 seq_printf(m, "MAC memory type:\t%s\n", c);
1445 seq_printf(m, "Regulatory domain:\t%s\n", r);
1446 seq_printf(m, "Host CRC checking:\t%s\n",
1447 priv->do_rx_crc ? "On" : "Off");
1448 seq_printf(m, "WPA-capable firmware:\t%s\n",
1449 priv->use_wpa ? "Yes" : "No");
1450 }
1451
1452 switch (priv->station_state) {
1453 case STATION_STATE_SCANNING:
1454 s = "Scanning";
1455 break;
1456 case STATION_STATE_JOINNING:
1457 s = "Joining";
1458 break;
1459 case STATION_STATE_AUTHENTICATING:
1460 s = "Authenticating";
1461 break;
1462 case STATION_STATE_ASSOCIATING:
1463 s = "Associating";
1464 break;
1465 case STATION_STATE_READY:
1466 s = "Ready";
1467 break;
1468 case STATION_STATE_REASSOCIATING:
1469 s = "Reassociating";
1470 break;
1471 case STATION_STATE_MGMT_ERROR:
1472 s = "Management error";
1473 break;
1474 case STATION_STATE_DOWN:
1475 s = "Down";
1476 break;
1477 default:
1478 s = "<unknown>";
1479 }
1480
1481 seq_printf(m, "Current state:\t\t%s\n", s);
1482 return 0;
1483 }
1484
atmel_proc_open(struct inode * inode,struct file * file)1485 static int atmel_proc_open(struct inode *inode, struct file *file)
1486 {
1487 return single_open(file, atmel_proc_show, PDE_DATA(inode));
1488 }
1489
1490 static const struct file_operations atmel_proc_fops = {
1491 .open = atmel_proc_open,
1492 .read = seq_read,
1493 .llseek = seq_lseek,
1494 .release = single_release,
1495 };
1496
1497 static const struct net_device_ops atmel_netdev_ops = {
1498 .ndo_open = atmel_open,
1499 .ndo_stop = atmel_close,
1500 .ndo_set_mac_address = atmel_set_mac_address,
1501 .ndo_start_xmit = start_tx,
1502 .ndo_do_ioctl = atmel_ioctl,
1503 .ndo_validate_addr = eth_validate_addr,
1504 };
1505
init_atmel_card(unsigned short irq,unsigned long port,const AtmelFWType fw_type,struct device * sys_dev,int (* card_present)(void *),void * card)1506 struct net_device *init_atmel_card(unsigned short irq, unsigned long port,
1507 const AtmelFWType fw_type,
1508 struct device *sys_dev,
1509 int (*card_present)(void *), void *card)
1510 {
1511 struct net_device *dev;
1512 struct atmel_private *priv;
1513 int rc;
1514
1515 /* Create the network device object. */
1516 dev = alloc_etherdev(sizeof(*priv));
1517 if (!dev)
1518 return NULL;
1519
1520 if (dev_alloc_name(dev, dev->name) < 0) {
1521 printk(KERN_ERR "atmel: Couldn't get name!\n");
1522 goto err_out_free;
1523 }
1524
1525 priv = netdev_priv(dev);
1526 priv->dev = dev;
1527 priv->sys_dev = sys_dev;
1528 priv->present_callback = card_present;
1529 priv->card = card;
1530 priv->firmware = NULL;
1531 priv->firmware_id[0] = '\0';
1532 priv->firmware_type = fw_type;
1533 if (firmware) /* module parameter */
1534 strcpy(priv->firmware_id, firmware);
1535 priv->bus_type = card_present ? BUS_TYPE_PCCARD : BUS_TYPE_PCI;
1536 priv->station_state = STATION_STATE_DOWN;
1537 priv->do_rx_crc = 0;
1538 /* For PCMCIA cards, some chips need CRC, some don't
1539 so we have to probe. */
1540 if (priv->bus_type == BUS_TYPE_PCCARD) {
1541 priv->probe_crc = 1;
1542 priv->crc_ok_cnt = priv->crc_ko_cnt = 0;
1543 } else
1544 priv->probe_crc = 0;
1545 priv->last_qual = jiffies;
1546 priv->last_beacon_timestamp = 0;
1547 memset(priv->frag_source, 0xff, sizeof(priv->frag_source));
1548 eth_zero_addr(priv->BSSID);
1549 priv->CurrentBSSID[0] = 0xFF; /* Initialize to something invalid.... */
1550 priv->station_was_associated = 0;
1551
1552 priv->last_survey = jiffies;
1553 priv->preamble = LONG_PREAMBLE;
1554 priv->operating_mode = IW_MODE_INFRA;
1555 priv->connect_to_any_BSS = 0;
1556 priv->config_reg_domain = 0;
1557 priv->reg_domain = 0;
1558 priv->tx_rate = 3;
1559 priv->auto_tx_rate = 1;
1560 priv->channel = 4;
1561 priv->power_mode = 0;
1562 priv->SSID[0] = '\0';
1563 priv->SSID_size = 0;
1564 priv->new_SSID_size = 0;
1565 priv->frag_threshold = 2346;
1566 priv->rts_threshold = 2347;
1567 priv->short_retry = 7;
1568 priv->long_retry = 4;
1569
1570 priv->wep_is_on = 0;
1571 priv->default_key = 0;
1572 priv->encryption_level = 0;
1573 priv->exclude_unencrypted = 0;
1574 priv->group_cipher_suite = priv->pairwise_cipher_suite = CIPHER_SUITE_NONE;
1575 priv->use_wpa = 0;
1576 memset(priv->wep_keys, 0, sizeof(priv->wep_keys));
1577 memset(priv->wep_key_len, 0, sizeof(priv->wep_key_len));
1578
1579 priv->default_beacon_period = priv->beacon_period = 100;
1580 priv->listen_interval = 1;
1581
1582 init_timer(&priv->management_timer);
1583 spin_lock_init(&priv->irqlock);
1584 spin_lock_init(&priv->timerlock);
1585 priv->management_timer.function = atmel_management_timer;
1586 priv->management_timer.data = (unsigned long) dev;
1587
1588 dev->netdev_ops = &atmel_netdev_ops;
1589 dev->wireless_handlers = &atmel_handler_def;
1590 dev->irq = irq;
1591 dev->base_addr = port;
1592
1593 /* MTU range: 68 - 2312 */
1594 dev->min_mtu = 68;
1595 dev->max_mtu = MAX_WIRELESS_BODY - ETH_FCS_LEN;
1596
1597 SET_NETDEV_DEV(dev, sys_dev);
1598
1599 if ((rc = request_irq(dev->irq, service_interrupt, IRQF_SHARED, dev->name, dev))) {
1600 printk(KERN_ERR "%s: register interrupt %d failed, rc %d\n", dev->name, irq, rc);
1601 goto err_out_free;
1602 }
1603
1604 if (!request_region(dev->base_addr, 32,
1605 priv->bus_type == BUS_TYPE_PCCARD ? "atmel_cs" : "atmel_pci")) {
1606 goto err_out_irq;
1607 }
1608
1609 if (register_netdev(dev))
1610 goto err_out_res;
1611
1612 if (!probe_atmel_card(dev)) {
1613 unregister_netdev(dev);
1614 goto err_out_res;
1615 }
1616
1617 netif_carrier_off(dev);
1618
1619 if (!proc_create_data("driver/atmel", 0, NULL, &atmel_proc_fops, priv))
1620 printk(KERN_WARNING "atmel: unable to create /proc entry.\n");
1621
1622 printk(KERN_INFO "%s: Atmel at76c50x. Version %d.%d. MAC %pM\n",
1623 dev->name, DRIVER_MAJOR, DRIVER_MINOR, dev->dev_addr);
1624
1625 return dev;
1626
1627 err_out_res:
1628 release_region(dev->base_addr, 32);
1629 err_out_irq:
1630 free_irq(dev->irq, dev);
1631 err_out_free:
1632 free_netdev(dev);
1633 return NULL;
1634 }
1635
1636 EXPORT_SYMBOL(init_atmel_card);
1637
stop_atmel_card(struct net_device * dev)1638 void stop_atmel_card(struct net_device *dev)
1639 {
1640 struct atmel_private *priv = netdev_priv(dev);
1641
1642 /* put a brick on it... */
1643 if (priv->bus_type == BUS_TYPE_PCCARD)
1644 atmel_write16(dev, GCR, 0x0060);
1645 atmel_write16(dev, GCR, 0x0040);
1646
1647 del_timer_sync(&priv->management_timer);
1648 unregister_netdev(dev);
1649 remove_proc_entry("driver/atmel", NULL);
1650 free_irq(dev->irq, dev);
1651 kfree(priv->firmware);
1652 release_region(dev->base_addr, 32);
1653 free_netdev(dev);
1654 }
1655
1656 EXPORT_SYMBOL(stop_atmel_card);
1657
atmel_set_essid(struct net_device * dev,struct iw_request_info * info,struct iw_point * dwrq,char * extra)1658 static int atmel_set_essid(struct net_device *dev,
1659 struct iw_request_info *info,
1660 struct iw_point *dwrq,
1661 char *extra)
1662 {
1663 struct atmel_private *priv = netdev_priv(dev);
1664
1665 /* Check if we asked for `any' */
1666 if (dwrq->flags == 0) {
1667 priv->connect_to_any_BSS = 1;
1668 } else {
1669 int index = (dwrq->flags & IW_ENCODE_INDEX) - 1;
1670
1671 priv->connect_to_any_BSS = 0;
1672
1673 /* Check the size of the string */
1674 if (dwrq->length > MAX_SSID_LENGTH)
1675 return -E2BIG;
1676 if (index != 0)
1677 return -EINVAL;
1678
1679 memcpy(priv->new_SSID, extra, dwrq->length);
1680 priv->new_SSID_size = dwrq->length;
1681 }
1682
1683 return -EINPROGRESS;
1684 }
1685
atmel_get_essid(struct net_device * dev,struct iw_request_info * info,struct iw_point * dwrq,char * extra)1686 static int atmel_get_essid(struct net_device *dev,
1687 struct iw_request_info *info,
1688 struct iw_point *dwrq,
1689 char *extra)
1690 {
1691 struct atmel_private *priv = netdev_priv(dev);
1692
1693 /* Get the current SSID */
1694 if (priv->new_SSID_size != 0) {
1695 memcpy(extra, priv->new_SSID, priv->new_SSID_size);
1696 dwrq->length = priv->new_SSID_size;
1697 } else {
1698 memcpy(extra, priv->SSID, priv->SSID_size);
1699 dwrq->length = priv->SSID_size;
1700 }
1701
1702 dwrq->flags = !priv->connect_to_any_BSS; /* active */
1703
1704 return 0;
1705 }
1706
atmel_get_wap(struct net_device * dev,struct iw_request_info * info,struct sockaddr * awrq,char * extra)1707 static int atmel_get_wap(struct net_device *dev,
1708 struct iw_request_info *info,
1709 struct sockaddr *awrq,
1710 char *extra)
1711 {
1712 struct atmel_private *priv = netdev_priv(dev);
1713 memcpy(awrq->sa_data, priv->CurrentBSSID, ETH_ALEN);
1714 awrq->sa_family = ARPHRD_ETHER;
1715
1716 return 0;
1717 }
1718
atmel_set_encode(struct net_device * dev,struct iw_request_info * info,struct iw_point * dwrq,char * extra)1719 static int atmel_set_encode(struct net_device *dev,
1720 struct iw_request_info *info,
1721 struct iw_point *dwrq,
1722 char *extra)
1723 {
1724 struct atmel_private *priv = netdev_priv(dev);
1725
1726 /* Basic checking: do we have a key to set ?
1727 * Note : with the new API, it's impossible to get a NULL pointer.
1728 * Therefore, we need to check a key size == 0 instead.
1729 * New version of iwconfig properly set the IW_ENCODE_NOKEY flag
1730 * when no key is present (only change flags), but older versions
1731 * don't do it. - Jean II */
1732 if (dwrq->length > 0) {
1733 int index = (dwrq->flags & IW_ENCODE_INDEX) - 1;
1734 int current_index = priv->default_key;
1735 /* Check the size of the key */
1736 if (dwrq->length > 13) {
1737 return -EINVAL;
1738 }
1739 /* Check the index (none -> use current) */
1740 if (index < 0 || index >= 4)
1741 index = current_index;
1742 else
1743 priv->default_key = index;
1744 /* Set the length */
1745 if (dwrq->length > 5)
1746 priv->wep_key_len[index] = 13;
1747 else
1748 if (dwrq->length > 0)
1749 priv->wep_key_len[index] = 5;
1750 else
1751 /* Disable the key */
1752 priv->wep_key_len[index] = 0;
1753 /* Check if the key is not marked as invalid */
1754 if (!(dwrq->flags & IW_ENCODE_NOKEY)) {
1755 /* Cleanup */
1756 memset(priv->wep_keys[index], 0, 13);
1757 /* Copy the key in the driver */
1758 memcpy(priv->wep_keys[index], extra, dwrq->length);
1759 }
1760 /* WE specify that if a valid key is set, encryption
1761 * should be enabled (user may turn it off later)
1762 * This is also how "iwconfig ethX key on" works */
1763 if (index == current_index &&
1764 priv->wep_key_len[index] > 0) {
1765 priv->wep_is_on = 1;
1766 priv->exclude_unencrypted = 1;
1767 if (priv->wep_key_len[index] > 5) {
1768 priv->pairwise_cipher_suite = CIPHER_SUITE_WEP_128;
1769 priv->encryption_level = 2;
1770 } else {
1771 priv->pairwise_cipher_suite = CIPHER_SUITE_WEP_64;
1772 priv->encryption_level = 1;
1773 }
1774 }
1775 } else {
1776 /* Do we want to just set the transmit key index ? */
1777 int index = (dwrq->flags & IW_ENCODE_INDEX) - 1;
1778 if (index >= 0 && index < 4) {
1779 priv->default_key = index;
1780 } else
1781 /* Don't complain if only change the mode */
1782 if (!(dwrq->flags & IW_ENCODE_MODE))
1783 return -EINVAL;
1784 }
1785 /* Read the flags */
1786 if (dwrq->flags & IW_ENCODE_DISABLED) {
1787 priv->wep_is_on = 0;
1788 priv->encryption_level = 0;
1789 priv->pairwise_cipher_suite = CIPHER_SUITE_NONE;
1790 } else {
1791 priv->wep_is_on = 1;
1792 if (priv->wep_key_len[priv->default_key] > 5) {
1793 priv->pairwise_cipher_suite = CIPHER_SUITE_WEP_128;
1794 priv->encryption_level = 2;
1795 } else {
1796 priv->pairwise_cipher_suite = CIPHER_SUITE_WEP_64;
1797 priv->encryption_level = 1;
1798 }
1799 }
1800 if (dwrq->flags & IW_ENCODE_RESTRICTED)
1801 priv->exclude_unencrypted = 1;
1802 if (dwrq->flags & IW_ENCODE_OPEN)
1803 priv->exclude_unencrypted = 0;
1804
1805 return -EINPROGRESS; /* Call commit handler */
1806 }
1807
atmel_get_encode(struct net_device * dev,struct iw_request_info * info,struct iw_point * dwrq,char * extra)1808 static int atmel_get_encode(struct net_device *dev,
1809 struct iw_request_info *info,
1810 struct iw_point *dwrq,
1811 char *extra)
1812 {
1813 struct atmel_private *priv = netdev_priv(dev);
1814 int index = (dwrq->flags & IW_ENCODE_INDEX) - 1;
1815
1816 if (!priv->wep_is_on)
1817 dwrq->flags = IW_ENCODE_DISABLED;
1818 else {
1819 if (priv->exclude_unencrypted)
1820 dwrq->flags = IW_ENCODE_RESTRICTED;
1821 else
1822 dwrq->flags = IW_ENCODE_OPEN;
1823 }
1824 /* Which key do we want ? -1 -> tx index */
1825 if (index < 0 || index >= 4)
1826 index = priv->default_key;
1827 dwrq->flags |= index + 1;
1828 /* Copy the key to the user buffer */
1829 dwrq->length = priv->wep_key_len[index];
1830 if (dwrq->length > 16) {
1831 dwrq->length = 0;
1832 } else {
1833 memset(extra, 0, 16);
1834 memcpy(extra, priv->wep_keys[index], dwrq->length);
1835 }
1836
1837 return 0;
1838 }
1839
atmel_set_encodeext(struct net_device * dev,struct iw_request_info * info,union iwreq_data * wrqu,char * extra)1840 static int atmel_set_encodeext(struct net_device *dev,
1841 struct iw_request_info *info,
1842 union iwreq_data *wrqu,
1843 char *extra)
1844 {
1845 struct atmel_private *priv = netdev_priv(dev);
1846 struct iw_point *encoding = &wrqu->encoding;
1847 struct iw_encode_ext *ext = (struct iw_encode_ext *)extra;
1848 int idx, key_len, alg = ext->alg, set_key = 1;
1849
1850 /* Determine and validate the key index */
1851 idx = encoding->flags & IW_ENCODE_INDEX;
1852 if (idx) {
1853 if (idx < 1 || idx > 4)
1854 return -EINVAL;
1855 idx--;
1856 } else
1857 idx = priv->default_key;
1858
1859 if (encoding->flags & IW_ENCODE_DISABLED)
1860 alg = IW_ENCODE_ALG_NONE;
1861
1862 if (ext->ext_flags & IW_ENCODE_EXT_SET_TX_KEY) {
1863 priv->default_key = idx;
1864 set_key = ext->key_len > 0 ? 1 : 0;
1865 }
1866
1867 if (set_key) {
1868 /* Set the requested key first */
1869 switch (alg) {
1870 case IW_ENCODE_ALG_NONE:
1871 priv->wep_is_on = 0;
1872 priv->encryption_level = 0;
1873 priv->pairwise_cipher_suite = CIPHER_SUITE_NONE;
1874 break;
1875 case IW_ENCODE_ALG_WEP:
1876 if (ext->key_len > 5) {
1877 priv->wep_key_len[idx] = 13;
1878 priv->pairwise_cipher_suite = CIPHER_SUITE_WEP_128;
1879 priv->encryption_level = 2;
1880 } else if (ext->key_len > 0) {
1881 priv->wep_key_len[idx] = 5;
1882 priv->pairwise_cipher_suite = CIPHER_SUITE_WEP_64;
1883 priv->encryption_level = 1;
1884 } else {
1885 return -EINVAL;
1886 }
1887 priv->wep_is_on = 1;
1888 memset(priv->wep_keys[idx], 0, 13);
1889 key_len = min ((int)ext->key_len, priv->wep_key_len[idx]);
1890 memcpy(priv->wep_keys[idx], ext->key, key_len);
1891 break;
1892 default:
1893 return -EINVAL;
1894 }
1895 }
1896
1897 return -EINPROGRESS;
1898 }
1899
atmel_get_encodeext(struct net_device * dev,struct iw_request_info * info,union iwreq_data * wrqu,char * extra)1900 static int atmel_get_encodeext(struct net_device *dev,
1901 struct iw_request_info *info,
1902 union iwreq_data *wrqu,
1903 char *extra)
1904 {
1905 struct atmel_private *priv = netdev_priv(dev);
1906 struct iw_point *encoding = &wrqu->encoding;
1907 struct iw_encode_ext *ext = (struct iw_encode_ext *)extra;
1908 int idx, max_key_len;
1909
1910 max_key_len = encoding->length - sizeof(*ext);
1911 if (max_key_len < 0)
1912 return -EINVAL;
1913
1914 idx = encoding->flags & IW_ENCODE_INDEX;
1915 if (idx) {
1916 if (idx < 1 || idx > 4)
1917 return -EINVAL;
1918 idx--;
1919 } else
1920 idx = priv->default_key;
1921
1922 encoding->flags = idx + 1;
1923 memset(ext, 0, sizeof(*ext));
1924
1925 if (!priv->wep_is_on) {
1926 ext->alg = IW_ENCODE_ALG_NONE;
1927 ext->key_len = 0;
1928 encoding->flags |= IW_ENCODE_DISABLED;
1929 } else {
1930 if (priv->encryption_level > 0)
1931 ext->alg = IW_ENCODE_ALG_WEP;
1932 else
1933 return -EINVAL;
1934
1935 ext->key_len = priv->wep_key_len[idx];
1936 memcpy(ext->key, priv->wep_keys[idx], ext->key_len);
1937 encoding->flags |= IW_ENCODE_ENABLED;
1938 }
1939
1940 return 0;
1941 }
1942
atmel_set_auth(struct net_device * dev,struct iw_request_info * info,union iwreq_data * wrqu,char * extra)1943 static int atmel_set_auth(struct net_device *dev,
1944 struct iw_request_info *info,
1945 union iwreq_data *wrqu, char *extra)
1946 {
1947 struct atmel_private *priv = netdev_priv(dev);
1948 struct iw_param *param = &wrqu->param;
1949
1950 switch (param->flags & IW_AUTH_INDEX) {
1951 case IW_AUTH_WPA_VERSION:
1952 case IW_AUTH_CIPHER_PAIRWISE:
1953 case IW_AUTH_CIPHER_GROUP:
1954 case IW_AUTH_KEY_MGMT:
1955 case IW_AUTH_RX_UNENCRYPTED_EAPOL:
1956 case IW_AUTH_PRIVACY_INVOKED:
1957 /*
1958 * atmel does not use these parameters
1959 */
1960 break;
1961
1962 case IW_AUTH_DROP_UNENCRYPTED:
1963 priv->exclude_unencrypted = param->value ? 1 : 0;
1964 break;
1965
1966 case IW_AUTH_80211_AUTH_ALG: {
1967 if (param->value & IW_AUTH_ALG_SHARED_KEY) {
1968 priv->exclude_unencrypted = 1;
1969 } else if (param->value & IW_AUTH_ALG_OPEN_SYSTEM) {
1970 priv->exclude_unencrypted = 0;
1971 } else
1972 return -EINVAL;
1973 break;
1974 }
1975
1976 case IW_AUTH_WPA_ENABLED:
1977 /* Silently accept disable of WPA */
1978 if (param->value > 0)
1979 return -EOPNOTSUPP;
1980 break;
1981
1982 default:
1983 return -EOPNOTSUPP;
1984 }
1985 return -EINPROGRESS;
1986 }
1987
atmel_get_auth(struct net_device * dev,struct iw_request_info * info,union iwreq_data * wrqu,char * extra)1988 static int atmel_get_auth(struct net_device *dev,
1989 struct iw_request_info *info,
1990 union iwreq_data *wrqu, char *extra)
1991 {
1992 struct atmel_private *priv = netdev_priv(dev);
1993 struct iw_param *param = &wrqu->param;
1994
1995 switch (param->flags & IW_AUTH_INDEX) {
1996 case IW_AUTH_DROP_UNENCRYPTED:
1997 param->value = priv->exclude_unencrypted;
1998 break;
1999
2000 case IW_AUTH_80211_AUTH_ALG:
2001 if (priv->exclude_unencrypted == 1)
2002 param->value = IW_AUTH_ALG_SHARED_KEY;
2003 else
2004 param->value = IW_AUTH_ALG_OPEN_SYSTEM;
2005 break;
2006
2007 case IW_AUTH_WPA_ENABLED:
2008 param->value = 0;
2009 break;
2010
2011 default:
2012 return -EOPNOTSUPP;
2013 }
2014 return 0;
2015 }
2016
2017
atmel_get_name(struct net_device * dev,struct iw_request_info * info,char * cwrq,char * extra)2018 static int atmel_get_name(struct net_device *dev,
2019 struct iw_request_info *info,
2020 char *cwrq,
2021 char *extra)
2022 {
2023 strcpy(cwrq, "IEEE 802.11-DS");
2024 return 0;
2025 }
2026
atmel_set_rate(struct net_device * dev,struct iw_request_info * info,struct iw_param * vwrq,char * extra)2027 static int atmel_set_rate(struct net_device *dev,
2028 struct iw_request_info *info,
2029 struct iw_param *vwrq,
2030 char *extra)
2031 {
2032 struct atmel_private *priv = netdev_priv(dev);
2033
2034 if (vwrq->fixed == 0) {
2035 priv->tx_rate = 3;
2036 priv->auto_tx_rate = 1;
2037 } else {
2038 priv->auto_tx_rate = 0;
2039
2040 /* Which type of value ? */
2041 if ((vwrq->value < 4) && (vwrq->value >= 0)) {
2042 /* Setting by rate index */
2043 priv->tx_rate = vwrq->value;
2044 } else {
2045 /* Setting by frequency value */
2046 switch (vwrq->value) {
2047 case 1000000:
2048 priv->tx_rate = 0;
2049 break;
2050 case 2000000:
2051 priv->tx_rate = 1;
2052 break;
2053 case 5500000:
2054 priv->tx_rate = 2;
2055 break;
2056 case 11000000:
2057 priv->tx_rate = 3;
2058 break;
2059 default:
2060 return -EINVAL;
2061 }
2062 }
2063 }
2064
2065 return -EINPROGRESS;
2066 }
2067
atmel_set_mode(struct net_device * dev,struct iw_request_info * info,__u32 * uwrq,char * extra)2068 static int atmel_set_mode(struct net_device *dev,
2069 struct iw_request_info *info,
2070 __u32 *uwrq,
2071 char *extra)
2072 {
2073 struct atmel_private *priv = netdev_priv(dev);
2074
2075 if (*uwrq != IW_MODE_ADHOC && *uwrq != IW_MODE_INFRA)
2076 return -EINVAL;
2077
2078 priv->operating_mode = *uwrq;
2079 return -EINPROGRESS;
2080 }
2081
atmel_get_mode(struct net_device * dev,struct iw_request_info * info,__u32 * uwrq,char * extra)2082 static int atmel_get_mode(struct net_device *dev,
2083 struct iw_request_info *info,
2084 __u32 *uwrq,
2085 char *extra)
2086 {
2087 struct atmel_private *priv = netdev_priv(dev);
2088
2089 *uwrq = priv->operating_mode;
2090 return 0;
2091 }
2092
atmel_get_rate(struct net_device * dev,struct iw_request_info * info,struct iw_param * vwrq,char * extra)2093 static int atmel_get_rate(struct net_device *dev,
2094 struct iw_request_info *info,
2095 struct iw_param *vwrq,
2096 char *extra)
2097 {
2098 struct atmel_private *priv = netdev_priv(dev);
2099
2100 if (priv->auto_tx_rate) {
2101 vwrq->fixed = 0;
2102 vwrq->value = 11000000;
2103 } else {
2104 vwrq->fixed = 1;
2105 switch (priv->tx_rate) {
2106 case 0:
2107 vwrq->value = 1000000;
2108 break;
2109 case 1:
2110 vwrq->value = 2000000;
2111 break;
2112 case 2:
2113 vwrq->value = 5500000;
2114 break;
2115 case 3:
2116 vwrq->value = 11000000;
2117 break;
2118 }
2119 }
2120 return 0;
2121 }
2122
atmel_set_power(struct net_device * dev,struct iw_request_info * info,struct iw_param * vwrq,char * extra)2123 static int atmel_set_power(struct net_device *dev,
2124 struct iw_request_info *info,
2125 struct iw_param *vwrq,
2126 char *extra)
2127 {
2128 struct atmel_private *priv = netdev_priv(dev);
2129 priv->power_mode = vwrq->disabled ? 0 : 1;
2130 return -EINPROGRESS;
2131 }
2132
atmel_get_power(struct net_device * dev,struct iw_request_info * info,struct iw_param * vwrq,char * extra)2133 static int atmel_get_power(struct net_device *dev,
2134 struct iw_request_info *info,
2135 struct iw_param *vwrq,
2136 char *extra)
2137 {
2138 struct atmel_private *priv = netdev_priv(dev);
2139 vwrq->disabled = priv->power_mode ? 0 : 1;
2140 vwrq->flags = IW_POWER_ON;
2141 return 0;
2142 }
2143
atmel_set_retry(struct net_device * dev,struct iw_request_info * info,struct iw_param * vwrq,char * extra)2144 static int atmel_set_retry(struct net_device *dev,
2145 struct iw_request_info *info,
2146 struct iw_param *vwrq,
2147 char *extra)
2148 {
2149 struct atmel_private *priv = netdev_priv(dev);
2150
2151 if (!vwrq->disabled && (vwrq->flags & IW_RETRY_LIMIT)) {
2152 if (vwrq->flags & IW_RETRY_LONG)
2153 priv->long_retry = vwrq->value;
2154 else if (vwrq->flags & IW_RETRY_SHORT)
2155 priv->short_retry = vwrq->value;
2156 else {
2157 /* No modifier : set both */
2158 priv->long_retry = vwrq->value;
2159 priv->short_retry = vwrq->value;
2160 }
2161 return -EINPROGRESS;
2162 }
2163
2164 return -EINVAL;
2165 }
2166
atmel_get_retry(struct net_device * dev,struct iw_request_info * info,struct iw_param * vwrq,char * extra)2167 static int atmel_get_retry(struct net_device *dev,
2168 struct iw_request_info *info,
2169 struct iw_param *vwrq,
2170 char *extra)
2171 {
2172 struct atmel_private *priv = netdev_priv(dev);
2173
2174 vwrq->disabled = 0; /* Can't be disabled */
2175
2176 /* Note : by default, display the short retry number */
2177 if (vwrq->flags & IW_RETRY_LONG) {
2178 vwrq->flags = IW_RETRY_LIMIT | IW_RETRY_LONG;
2179 vwrq->value = priv->long_retry;
2180 } else {
2181 vwrq->flags = IW_RETRY_LIMIT;
2182 vwrq->value = priv->short_retry;
2183 if (priv->long_retry != priv->short_retry)
2184 vwrq->flags |= IW_RETRY_SHORT;
2185 }
2186
2187 return 0;
2188 }
2189
atmel_set_rts(struct net_device * dev,struct iw_request_info * info,struct iw_param * vwrq,char * extra)2190 static int atmel_set_rts(struct net_device *dev,
2191 struct iw_request_info *info,
2192 struct iw_param *vwrq,
2193 char *extra)
2194 {
2195 struct atmel_private *priv = netdev_priv(dev);
2196 int rthr = vwrq->value;
2197
2198 if (vwrq->disabled)
2199 rthr = 2347;
2200 if ((rthr < 0) || (rthr > 2347)) {
2201 return -EINVAL;
2202 }
2203 priv->rts_threshold = rthr;
2204
2205 return -EINPROGRESS; /* Call commit handler */
2206 }
2207
atmel_get_rts(struct net_device * dev,struct iw_request_info * info,struct iw_param * vwrq,char * extra)2208 static int atmel_get_rts(struct net_device *dev,
2209 struct iw_request_info *info,
2210 struct iw_param *vwrq,
2211 char *extra)
2212 {
2213 struct atmel_private *priv = netdev_priv(dev);
2214
2215 vwrq->value = priv->rts_threshold;
2216 vwrq->disabled = (vwrq->value >= 2347);
2217 vwrq->fixed = 1;
2218
2219 return 0;
2220 }
2221
atmel_set_frag(struct net_device * dev,struct iw_request_info * info,struct iw_param * vwrq,char * extra)2222 static int atmel_set_frag(struct net_device *dev,
2223 struct iw_request_info *info,
2224 struct iw_param *vwrq,
2225 char *extra)
2226 {
2227 struct atmel_private *priv = netdev_priv(dev);
2228 int fthr = vwrq->value;
2229
2230 if (vwrq->disabled)
2231 fthr = 2346;
2232 if ((fthr < 256) || (fthr > 2346)) {
2233 return -EINVAL;
2234 }
2235 fthr &= ~0x1; /* Get an even value - is it really needed ??? */
2236 priv->frag_threshold = fthr;
2237
2238 return -EINPROGRESS; /* Call commit handler */
2239 }
2240
atmel_get_frag(struct net_device * dev,struct iw_request_info * info,struct iw_param * vwrq,char * extra)2241 static int atmel_get_frag(struct net_device *dev,
2242 struct iw_request_info *info,
2243 struct iw_param *vwrq,
2244 char *extra)
2245 {
2246 struct atmel_private *priv = netdev_priv(dev);
2247
2248 vwrq->value = priv->frag_threshold;
2249 vwrq->disabled = (vwrq->value >= 2346);
2250 vwrq->fixed = 1;
2251
2252 return 0;
2253 }
2254
atmel_set_freq(struct net_device * dev,struct iw_request_info * info,struct iw_freq * fwrq,char * extra)2255 static int atmel_set_freq(struct net_device *dev,
2256 struct iw_request_info *info,
2257 struct iw_freq *fwrq,
2258 char *extra)
2259 {
2260 struct atmel_private *priv = netdev_priv(dev);
2261 int rc = -EINPROGRESS; /* Call commit handler */
2262
2263 /* If setting by frequency, convert to a channel */
2264 if (fwrq->e == 1) {
2265 int f = fwrq->m / 100000;
2266
2267 /* Hack to fall through... */
2268 fwrq->e = 0;
2269 fwrq->m = ieee80211_frequency_to_channel(f);
2270 }
2271 /* Setting by channel number */
2272 if (fwrq->m < 0 || fwrq->m > 1000 || fwrq->e > 0)
2273 rc = -EOPNOTSUPP;
2274 else {
2275 int channel = fwrq->m;
2276 if (atmel_validate_channel(priv, channel) == 0) {
2277 priv->channel = channel;
2278 } else {
2279 rc = -EINVAL;
2280 }
2281 }
2282 return rc;
2283 }
2284
atmel_get_freq(struct net_device * dev,struct iw_request_info * info,struct iw_freq * fwrq,char * extra)2285 static int atmel_get_freq(struct net_device *dev,
2286 struct iw_request_info *info,
2287 struct iw_freq *fwrq,
2288 char *extra)
2289 {
2290 struct atmel_private *priv = netdev_priv(dev);
2291
2292 fwrq->m = priv->channel;
2293 fwrq->e = 0;
2294 return 0;
2295 }
2296
atmel_set_scan(struct net_device * dev,struct iw_request_info * info,struct iw_point * dwrq,char * extra)2297 static int atmel_set_scan(struct net_device *dev,
2298 struct iw_request_info *info,
2299 struct iw_point *dwrq,
2300 char *extra)
2301 {
2302 struct atmel_private *priv = netdev_priv(dev);
2303 unsigned long flags;
2304
2305 /* Note : you may have realised that, as this is a SET operation,
2306 * this is privileged and therefore a normal user can't
2307 * perform scanning.
2308 * This is not an error, while the device perform scanning,
2309 * traffic doesn't flow, so it's a perfect DoS...
2310 * Jean II */
2311
2312 if (priv->station_state == STATION_STATE_DOWN)
2313 return -EAGAIN;
2314
2315 /* Timeout old surveys. */
2316 if (time_after(jiffies, priv->last_survey + 20 * HZ))
2317 priv->site_survey_state = SITE_SURVEY_IDLE;
2318 priv->last_survey = jiffies;
2319
2320 /* Initiate a scan command */
2321 if (priv->site_survey_state == SITE_SURVEY_IN_PROGRESS)
2322 return -EBUSY;
2323
2324 del_timer_sync(&priv->management_timer);
2325 spin_lock_irqsave(&priv->irqlock, flags);
2326
2327 priv->site_survey_state = SITE_SURVEY_IN_PROGRESS;
2328 priv->fast_scan = 0;
2329 atmel_scan(priv, 0);
2330 spin_unlock_irqrestore(&priv->irqlock, flags);
2331
2332 return 0;
2333 }
2334
atmel_get_scan(struct net_device * dev,struct iw_request_info * info,struct iw_point * dwrq,char * extra)2335 static int atmel_get_scan(struct net_device *dev,
2336 struct iw_request_info *info,
2337 struct iw_point *dwrq,
2338 char *extra)
2339 {
2340 struct atmel_private *priv = netdev_priv(dev);
2341 int i;
2342 char *current_ev = extra;
2343 struct iw_event iwe;
2344
2345 if (priv->site_survey_state != SITE_SURVEY_COMPLETED)
2346 return -EAGAIN;
2347
2348 for (i = 0; i < priv->BSS_list_entries; i++) {
2349 iwe.cmd = SIOCGIWAP;
2350 iwe.u.ap_addr.sa_family = ARPHRD_ETHER;
2351 memcpy(iwe.u.ap_addr.sa_data, priv->BSSinfo[i].BSSID, ETH_ALEN);
2352 current_ev = iwe_stream_add_event(info, current_ev,
2353 extra + IW_SCAN_MAX_DATA,
2354 &iwe, IW_EV_ADDR_LEN);
2355
2356 iwe.u.data.length = priv->BSSinfo[i].SSIDsize;
2357 if (iwe.u.data.length > 32)
2358 iwe.u.data.length = 32;
2359 iwe.cmd = SIOCGIWESSID;
2360 iwe.u.data.flags = 1;
2361 current_ev = iwe_stream_add_point(info, current_ev,
2362 extra + IW_SCAN_MAX_DATA,
2363 &iwe, priv->BSSinfo[i].SSID);
2364
2365 iwe.cmd = SIOCGIWMODE;
2366 iwe.u.mode = priv->BSSinfo[i].BSStype;
2367 current_ev = iwe_stream_add_event(info, current_ev,
2368 extra + IW_SCAN_MAX_DATA,
2369 &iwe, IW_EV_UINT_LEN);
2370
2371 iwe.cmd = SIOCGIWFREQ;
2372 iwe.u.freq.m = priv->BSSinfo[i].channel;
2373 iwe.u.freq.e = 0;
2374 current_ev = iwe_stream_add_event(info, current_ev,
2375 extra + IW_SCAN_MAX_DATA,
2376 &iwe, IW_EV_FREQ_LEN);
2377
2378 /* Add quality statistics */
2379 iwe.cmd = IWEVQUAL;
2380 iwe.u.qual.level = priv->BSSinfo[i].RSSI;
2381 iwe.u.qual.qual = iwe.u.qual.level;
2382 /* iwe.u.qual.noise = SOMETHING */
2383 current_ev = iwe_stream_add_event(info, current_ev,
2384 extra + IW_SCAN_MAX_DATA,
2385 &iwe, IW_EV_QUAL_LEN);
2386
2387
2388 iwe.cmd = SIOCGIWENCODE;
2389 if (priv->BSSinfo[i].UsingWEP)
2390 iwe.u.data.flags = IW_ENCODE_ENABLED | IW_ENCODE_NOKEY;
2391 else
2392 iwe.u.data.flags = IW_ENCODE_DISABLED;
2393 iwe.u.data.length = 0;
2394 current_ev = iwe_stream_add_point(info, current_ev,
2395 extra + IW_SCAN_MAX_DATA,
2396 &iwe, NULL);
2397 }
2398
2399 /* Length of data */
2400 dwrq->length = (current_ev - extra);
2401 dwrq->flags = 0;
2402
2403 return 0;
2404 }
2405
atmel_get_range(struct net_device * dev,struct iw_request_info * info,struct iw_point * dwrq,char * extra)2406 static int atmel_get_range(struct net_device *dev,
2407 struct iw_request_info *info,
2408 struct iw_point *dwrq,
2409 char *extra)
2410 {
2411 struct atmel_private *priv = netdev_priv(dev);
2412 struct iw_range *range = (struct iw_range *) extra;
2413 int k, i, j;
2414
2415 dwrq->length = sizeof(struct iw_range);
2416 memset(range, 0, sizeof(struct iw_range));
2417 range->min_nwid = 0x0000;
2418 range->max_nwid = 0x0000;
2419 range->num_channels = 0;
2420 for (j = 0; j < ARRAY_SIZE(channel_table); j++)
2421 if (priv->reg_domain == channel_table[j].reg_domain) {
2422 range->num_channels = channel_table[j].max - channel_table[j].min + 1;
2423 break;
2424 }
2425 if (range->num_channels != 0) {
2426 for (k = 0, i = channel_table[j].min; i <= channel_table[j].max; i++) {
2427 range->freq[k].i = i; /* List index */
2428
2429 /* Values in MHz -> * 10^5 * 10 */
2430 range->freq[k].m = 100000 *
2431 ieee80211_channel_to_frequency(i, NL80211_BAND_2GHZ);
2432 range->freq[k++].e = 1;
2433 }
2434 range->num_frequency = k;
2435 }
2436
2437 range->max_qual.qual = 100;
2438 range->max_qual.level = 100;
2439 range->max_qual.noise = 0;
2440 range->max_qual.updated = IW_QUAL_NOISE_INVALID;
2441
2442 range->avg_qual.qual = 50;
2443 range->avg_qual.level = 50;
2444 range->avg_qual.noise = 0;
2445 range->avg_qual.updated = IW_QUAL_NOISE_INVALID;
2446
2447 range->sensitivity = 0;
2448
2449 range->bitrate[0] = 1000000;
2450 range->bitrate[1] = 2000000;
2451 range->bitrate[2] = 5500000;
2452 range->bitrate[3] = 11000000;
2453 range->num_bitrates = 4;
2454
2455 range->min_rts = 0;
2456 range->max_rts = 2347;
2457 range->min_frag = 256;
2458 range->max_frag = 2346;
2459
2460 range->encoding_size[0] = 5;
2461 range->encoding_size[1] = 13;
2462 range->num_encoding_sizes = 2;
2463 range->max_encoding_tokens = 4;
2464
2465 range->pmp_flags = IW_POWER_ON;
2466 range->pmt_flags = IW_POWER_ON;
2467 range->pm_capa = 0;
2468
2469 range->we_version_source = WIRELESS_EXT;
2470 range->we_version_compiled = WIRELESS_EXT;
2471 range->retry_capa = IW_RETRY_LIMIT ;
2472 range->retry_flags = IW_RETRY_LIMIT;
2473 range->r_time_flags = 0;
2474 range->min_retry = 1;
2475 range->max_retry = 65535;
2476
2477 return 0;
2478 }
2479
atmel_set_wap(struct net_device * dev,struct iw_request_info * info,struct sockaddr * awrq,char * extra)2480 static int atmel_set_wap(struct net_device *dev,
2481 struct iw_request_info *info,
2482 struct sockaddr *awrq,
2483 char *extra)
2484 {
2485 struct atmel_private *priv = netdev_priv(dev);
2486 int i;
2487 static const u8 any[] = { 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF };
2488 static const u8 off[] = { 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 };
2489 unsigned long flags;
2490
2491 if (awrq->sa_family != ARPHRD_ETHER)
2492 return -EINVAL;
2493
2494 if (!memcmp(any, awrq->sa_data, 6) ||
2495 !memcmp(off, awrq->sa_data, 6)) {
2496 del_timer_sync(&priv->management_timer);
2497 spin_lock_irqsave(&priv->irqlock, flags);
2498 atmel_scan(priv, 1);
2499 spin_unlock_irqrestore(&priv->irqlock, flags);
2500 return 0;
2501 }
2502
2503 for (i = 0; i < priv->BSS_list_entries; i++) {
2504 if (memcmp(priv->BSSinfo[i].BSSID, awrq->sa_data, 6) == 0) {
2505 if (!priv->wep_is_on && priv->BSSinfo[i].UsingWEP) {
2506 return -EINVAL;
2507 } else if (priv->wep_is_on && !priv->BSSinfo[i].UsingWEP) {
2508 return -EINVAL;
2509 } else {
2510 del_timer_sync(&priv->management_timer);
2511 spin_lock_irqsave(&priv->irqlock, flags);
2512 atmel_join_bss(priv, i);
2513 spin_unlock_irqrestore(&priv->irqlock, flags);
2514 return 0;
2515 }
2516 }
2517 }
2518
2519 return -EINVAL;
2520 }
2521
atmel_config_commit(struct net_device * dev,struct iw_request_info * info,void * zwrq,char * extra)2522 static int atmel_config_commit(struct net_device *dev,
2523 struct iw_request_info *info, /* NULL */
2524 void *zwrq, /* NULL */
2525 char *extra) /* NULL */
2526 {
2527 return atmel_open(dev);
2528 }
2529
2530 static const iw_handler atmel_handler[] =
2531 {
2532 (iw_handler) atmel_config_commit, /* SIOCSIWCOMMIT */
2533 (iw_handler) atmel_get_name, /* SIOCGIWNAME */
2534 (iw_handler) NULL, /* SIOCSIWNWID */
2535 (iw_handler) NULL, /* SIOCGIWNWID */
2536 (iw_handler) atmel_set_freq, /* SIOCSIWFREQ */
2537 (iw_handler) atmel_get_freq, /* SIOCGIWFREQ */
2538 (iw_handler) atmel_set_mode, /* SIOCSIWMODE */
2539 (iw_handler) atmel_get_mode, /* SIOCGIWMODE */
2540 (iw_handler) NULL, /* SIOCSIWSENS */
2541 (iw_handler) NULL, /* SIOCGIWSENS */
2542 (iw_handler) NULL, /* SIOCSIWRANGE */
2543 (iw_handler) atmel_get_range, /* SIOCGIWRANGE */
2544 (iw_handler) NULL, /* SIOCSIWPRIV */
2545 (iw_handler) NULL, /* SIOCGIWPRIV */
2546 (iw_handler) NULL, /* SIOCSIWSTATS */
2547 (iw_handler) NULL, /* SIOCGIWSTATS */
2548 (iw_handler) NULL, /* SIOCSIWSPY */
2549 (iw_handler) NULL, /* SIOCGIWSPY */
2550 (iw_handler) NULL, /* -- hole -- */
2551 (iw_handler) NULL, /* -- hole -- */
2552 (iw_handler) atmel_set_wap, /* SIOCSIWAP */
2553 (iw_handler) atmel_get_wap, /* SIOCGIWAP */
2554 (iw_handler) NULL, /* -- hole -- */
2555 (iw_handler) NULL, /* SIOCGIWAPLIST */
2556 (iw_handler) atmel_set_scan, /* SIOCSIWSCAN */
2557 (iw_handler) atmel_get_scan, /* SIOCGIWSCAN */
2558 (iw_handler) atmel_set_essid, /* SIOCSIWESSID */
2559 (iw_handler) atmel_get_essid, /* SIOCGIWESSID */
2560 (iw_handler) NULL, /* SIOCSIWNICKN */
2561 (iw_handler) NULL, /* SIOCGIWNICKN */
2562 (iw_handler) NULL, /* -- hole -- */
2563 (iw_handler) NULL, /* -- hole -- */
2564 (iw_handler) atmel_set_rate, /* SIOCSIWRATE */
2565 (iw_handler) atmel_get_rate, /* SIOCGIWRATE */
2566 (iw_handler) atmel_set_rts, /* SIOCSIWRTS */
2567 (iw_handler) atmel_get_rts, /* SIOCGIWRTS */
2568 (iw_handler) atmel_set_frag, /* SIOCSIWFRAG */
2569 (iw_handler) atmel_get_frag, /* SIOCGIWFRAG */
2570 (iw_handler) NULL, /* SIOCSIWTXPOW */
2571 (iw_handler) NULL, /* SIOCGIWTXPOW */
2572 (iw_handler) atmel_set_retry, /* SIOCSIWRETRY */
2573 (iw_handler) atmel_get_retry, /* SIOCGIWRETRY */
2574 (iw_handler) atmel_set_encode, /* SIOCSIWENCODE */
2575 (iw_handler) atmel_get_encode, /* SIOCGIWENCODE */
2576 (iw_handler) atmel_set_power, /* SIOCSIWPOWER */
2577 (iw_handler) atmel_get_power, /* SIOCGIWPOWER */
2578 (iw_handler) NULL, /* -- hole -- */
2579 (iw_handler) NULL, /* -- hole -- */
2580 (iw_handler) NULL, /* SIOCSIWGENIE */
2581 (iw_handler) NULL, /* SIOCGIWGENIE */
2582 (iw_handler) atmel_set_auth, /* SIOCSIWAUTH */
2583 (iw_handler) atmel_get_auth, /* SIOCGIWAUTH */
2584 (iw_handler) atmel_set_encodeext, /* SIOCSIWENCODEEXT */
2585 (iw_handler) atmel_get_encodeext, /* SIOCGIWENCODEEXT */
2586 (iw_handler) NULL, /* SIOCSIWPMKSA */
2587 };
2588
2589 static const iw_handler atmel_private_handler[] =
2590 {
2591 NULL, /* SIOCIWFIRSTPRIV */
2592 };
2593
2594 struct atmel_priv_ioctl {
2595 char id[32];
2596 unsigned char __user *data;
2597 unsigned short len;
2598 };
2599
2600 #define ATMELFWL SIOCIWFIRSTPRIV
2601 #define ATMELIDIFC ATMELFWL + 1
2602 #define ATMELRD ATMELFWL + 2
2603 #define ATMELMAGIC 0x51807
2604 #define REGDOMAINSZ 20
2605
2606 static const struct iw_priv_args atmel_private_args[] = {
2607 {
2608 .cmd = ATMELFWL,
2609 .set_args = IW_PRIV_TYPE_BYTE
2610 | IW_PRIV_SIZE_FIXED
2611 | sizeof(struct atmel_priv_ioctl),
2612 .get_args = IW_PRIV_TYPE_NONE,
2613 .name = "atmelfwl"
2614 }, {
2615 .cmd = ATMELIDIFC,
2616 .set_args = IW_PRIV_TYPE_NONE,
2617 .get_args = IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1,
2618 .name = "atmelidifc"
2619 }, {
2620 .cmd = ATMELRD,
2621 .set_args = IW_PRIV_TYPE_CHAR | REGDOMAINSZ,
2622 .get_args = IW_PRIV_TYPE_NONE,
2623 .name = "regdomain"
2624 },
2625 };
2626
2627 static const struct iw_handler_def atmel_handler_def = {
2628 .num_standard = ARRAY_SIZE(atmel_handler),
2629 .num_private = ARRAY_SIZE(atmel_private_handler),
2630 .num_private_args = ARRAY_SIZE(atmel_private_args),
2631 .standard = (iw_handler *) atmel_handler,
2632 .private = (iw_handler *) atmel_private_handler,
2633 .private_args = (struct iw_priv_args *) atmel_private_args,
2634 .get_wireless_stats = atmel_get_wireless_stats
2635 };
2636
atmel_ioctl(struct net_device * dev,struct ifreq * rq,int cmd)2637 static int atmel_ioctl(struct net_device *dev, struct ifreq *rq, int cmd)
2638 {
2639 int i, rc = 0;
2640 struct atmel_private *priv = netdev_priv(dev);
2641 struct atmel_priv_ioctl com;
2642 struct iwreq *wrq = (struct iwreq *) rq;
2643 unsigned char *new_firmware;
2644 char domain[REGDOMAINSZ + 1];
2645
2646 switch (cmd) {
2647 case ATMELIDIFC:
2648 wrq->u.param.value = ATMELMAGIC;
2649 break;
2650
2651 case ATMELFWL:
2652 if (copy_from_user(&com, rq->ifr_data, sizeof(com))) {
2653 rc = -EFAULT;
2654 break;
2655 }
2656
2657 if (!capable(CAP_NET_ADMIN)) {
2658 rc = -EPERM;
2659 break;
2660 }
2661
2662 if (!(new_firmware = kmalloc(com.len, GFP_KERNEL))) {
2663 rc = -ENOMEM;
2664 break;
2665 }
2666
2667 if (copy_from_user(new_firmware, com.data, com.len)) {
2668 kfree(new_firmware);
2669 rc = -EFAULT;
2670 break;
2671 }
2672
2673 kfree(priv->firmware);
2674
2675 priv->firmware = new_firmware;
2676 priv->firmware_length = com.len;
2677 strncpy(priv->firmware_id, com.id, 31);
2678 priv->firmware_id[31] = '\0';
2679 break;
2680
2681 case ATMELRD:
2682 if (copy_from_user(domain, rq->ifr_data, REGDOMAINSZ)) {
2683 rc = -EFAULT;
2684 break;
2685 }
2686
2687 if (!capable(CAP_NET_ADMIN)) {
2688 rc = -EPERM;
2689 break;
2690 }
2691
2692 domain[REGDOMAINSZ] = 0;
2693 rc = -EINVAL;
2694 for (i = 0; i < ARRAY_SIZE(channel_table); i++) {
2695 if (!strcasecmp(channel_table[i].name, domain)) {
2696 priv->config_reg_domain = channel_table[i].reg_domain;
2697 rc = 0;
2698 }
2699 }
2700
2701 if (rc == 0 && priv->station_state != STATION_STATE_DOWN)
2702 rc = atmel_open(dev);
2703 break;
2704
2705 default:
2706 rc = -EOPNOTSUPP;
2707 }
2708
2709 return rc;
2710 }
2711
2712 struct auth_body {
2713 __le16 alg;
2714 __le16 trans_seq;
2715 __le16 status;
2716 u8 el_id;
2717 u8 chall_text_len;
2718 u8 chall_text[253];
2719 };
2720
atmel_enter_state(struct atmel_private * priv,int new_state)2721 static void atmel_enter_state(struct atmel_private *priv, int new_state)
2722 {
2723 int old_state = priv->station_state;
2724
2725 if (new_state == old_state)
2726 return;
2727
2728 priv->station_state = new_state;
2729
2730 if (new_state == STATION_STATE_READY) {
2731 netif_start_queue(priv->dev);
2732 netif_carrier_on(priv->dev);
2733 }
2734
2735 if (old_state == STATION_STATE_READY) {
2736 netif_carrier_off(priv->dev);
2737 if (netif_running(priv->dev))
2738 netif_stop_queue(priv->dev);
2739 priv->last_beacon_timestamp = 0;
2740 }
2741 }
2742
atmel_scan(struct atmel_private * priv,int specific_ssid)2743 static void atmel_scan(struct atmel_private *priv, int specific_ssid)
2744 {
2745 struct {
2746 u8 BSSID[ETH_ALEN];
2747 u8 SSID[MAX_SSID_LENGTH];
2748 u8 scan_type;
2749 u8 channel;
2750 __le16 BSS_type;
2751 __le16 min_channel_time;
2752 __le16 max_channel_time;
2753 u8 options;
2754 u8 SSID_size;
2755 } cmd;
2756
2757 eth_broadcast_addr(cmd.BSSID);
2758
2759 if (priv->fast_scan) {
2760 cmd.SSID_size = priv->SSID_size;
2761 memcpy(cmd.SSID, priv->SSID, priv->SSID_size);
2762 cmd.min_channel_time = cpu_to_le16(10);
2763 cmd.max_channel_time = cpu_to_le16(50);
2764 } else {
2765 priv->BSS_list_entries = 0;
2766 cmd.SSID_size = 0;
2767 cmd.min_channel_time = cpu_to_le16(10);
2768 cmd.max_channel_time = cpu_to_le16(120);
2769 }
2770
2771 cmd.options = 0;
2772
2773 if (!specific_ssid)
2774 cmd.options |= SCAN_OPTIONS_SITE_SURVEY;
2775
2776 cmd.channel = (priv->channel & 0x7f);
2777 cmd.scan_type = SCAN_TYPE_ACTIVE;
2778 cmd.BSS_type = cpu_to_le16(priv->operating_mode == IW_MODE_ADHOC ?
2779 BSS_TYPE_AD_HOC : BSS_TYPE_INFRASTRUCTURE);
2780
2781 atmel_send_command(priv, CMD_Scan, &cmd, sizeof(cmd));
2782
2783 /* This must come after all hardware access to avoid being messed up
2784 by stuff happening in interrupt context after we leave STATE_DOWN */
2785 atmel_enter_state(priv, STATION_STATE_SCANNING);
2786 }
2787
join(struct atmel_private * priv,int type)2788 static void join(struct atmel_private *priv, int type)
2789 {
2790 struct {
2791 u8 BSSID[6];
2792 u8 SSID[MAX_SSID_LENGTH];
2793 u8 BSS_type; /* this is a short in a scan command - weird */
2794 u8 channel;
2795 __le16 timeout;
2796 u8 SSID_size;
2797 u8 reserved;
2798 } cmd;
2799
2800 cmd.SSID_size = priv->SSID_size;
2801 memcpy(cmd.SSID, priv->SSID, priv->SSID_size);
2802 memcpy(cmd.BSSID, priv->CurrentBSSID, ETH_ALEN);
2803 cmd.channel = (priv->channel & 0x7f);
2804 cmd.BSS_type = type;
2805 cmd.timeout = cpu_to_le16(2000);
2806
2807 atmel_send_command(priv, CMD_Join, &cmd, sizeof(cmd));
2808 }
2809
start(struct atmel_private * priv,int type)2810 static void start(struct atmel_private *priv, int type)
2811 {
2812 struct {
2813 u8 BSSID[6];
2814 u8 SSID[MAX_SSID_LENGTH];
2815 u8 BSS_type;
2816 u8 channel;
2817 u8 SSID_size;
2818 u8 reserved[3];
2819 } cmd;
2820
2821 cmd.SSID_size = priv->SSID_size;
2822 memcpy(cmd.SSID, priv->SSID, priv->SSID_size);
2823 memcpy(cmd.BSSID, priv->BSSID, ETH_ALEN);
2824 cmd.BSS_type = type;
2825 cmd.channel = (priv->channel & 0x7f);
2826
2827 atmel_send_command(priv, CMD_Start, &cmd, sizeof(cmd));
2828 }
2829
handle_beacon_probe(struct atmel_private * priv,u16 capability,u8 channel)2830 static void handle_beacon_probe(struct atmel_private *priv, u16 capability,
2831 u8 channel)
2832 {
2833 int rejoin = 0;
2834 int new = capability & WLAN_CAPABILITY_SHORT_PREAMBLE ?
2835 SHORT_PREAMBLE : LONG_PREAMBLE;
2836
2837 if (priv->preamble != new) {
2838 priv->preamble = new;
2839 rejoin = 1;
2840 atmel_set_mib8(priv, Local_Mib_Type, LOCAL_MIB_PREAMBLE_TYPE, new);
2841 }
2842
2843 if (priv->channel != channel) {
2844 priv->channel = channel;
2845 rejoin = 1;
2846 atmel_set_mib8(priv, Phy_Mib_Type, PHY_MIB_CHANNEL_POS, channel);
2847 }
2848
2849 if (rejoin) {
2850 priv->station_is_associated = 0;
2851 atmel_enter_state(priv, STATION_STATE_JOINNING);
2852
2853 if (priv->operating_mode == IW_MODE_INFRA)
2854 join(priv, BSS_TYPE_INFRASTRUCTURE);
2855 else
2856 join(priv, BSS_TYPE_AD_HOC);
2857 }
2858 }
2859
send_authentication_request(struct atmel_private * priv,u16 system,u8 * challenge,int challenge_len)2860 static void send_authentication_request(struct atmel_private *priv, u16 system,
2861 u8 *challenge, int challenge_len)
2862 {
2863 struct ieee80211_hdr header;
2864 struct auth_body auth;
2865
2866 header.frame_control = cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_AUTH);
2867 header.duration_id = cpu_to_le16(0x8000);
2868 header.seq_ctrl = 0;
2869 memcpy(header.addr1, priv->CurrentBSSID, ETH_ALEN);
2870 memcpy(header.addr2, priv->dev->dev_addr, ETH_ALEN);
2871 memcpy(header.addr3, priv->CurrentBSSID, ETH_ALEN);
2872
2873 if (priv->wep_is_on && priv->CurrentAuthentTransactionSeqNum != 1)
2874 /* no WEP for authentication frames with TrSeqNo 1 */
2875 header.frame_control |= cpu_to_le16(IEEE80211_FCTL_PROTECTED);
2876
2877 auth.alg = cpu_to_le16(system);
2878
2879 auth.status = 0;
2880 auth.trans_seq = cpu_to_le16(priv->CurrentAuthentTransactionSeqNum);
2881 priv->ExpectedAuthentTransactionSeqNum = priv->CurrentAuthentTransactionSeqNum+1;
2882 priv->CurrentAuthentTransactionSeqNum += 2;
2883
2884 if (challenge_len != 0) {
2885 auth.el_id = 16; /* challenge_text */
2886 auth.chall_text_len = challenge_len;
2887 memcpy(auth.chall_text, challenge, challenge_len);
2888 atmel_transmit_management_frame(priv, &header, (u8 *)&auth, 8 + challenge_len);
2889 } else {
2890 atmel_transmit_management_frame(priv, &header, (u8 *)&auth, 6);
2891 }
2892 }
2893
send_association_request(struct atmel_private * priv,int is_reassoc)2894 static void send_association_request(struct atmel_private *priv, int is_reassoc)
2895 {
2896 u8 *ssid_el_p;
2897 int bodysize;
2898 struct ieee80211_hdr header;
2899 struct ass_req_format {
2900 __le16 capability;
2901 __le16 listen_interval;
2902 u8 ap[ETH_ALEN]; /* nothing after here directly accessible */
2903 u8 ssid_el_id;
2904 u8 ssid_len;
2905 u8 ssid[MAX_SSID_LENGTH];
2906 u8 sup_rates_el_id;
2907 u8 sup_rates_len;
2908 u8 rates[4];
2909 } body;
2910
2911 header.frame_control = cpu_to_le16(IEEE80211_FTYPE_MGMT |
2912 (is_reassoc ? IEEE80211_STYPE_REASSOC_REQ : IEEE80211_STYPE_ASSOC_REQ));
2913 header.duration_id = cpu_to_le16(0x8000);
2914 header.seq_ctrl = 0;
2915
2916 memcpy(header.addr1, priv->CurrentBSSID, ETH_ALEN);
2917 memcpy(header.addr2, priv->dev->dev_addr, ETH_ALEN);
2918 memcpy(header.addr3, priv->CurrentBSSID, ETH_ALEN);
2919
2920 body.capability = cpu_to_le16(WLAN_CAPABILITY_ESS);
2921 if (priv->wep_is_on)
2922 body.capability |= cpu_to_le16(WLAN_CAPABILITY_PRIVACY);
2923 if (priv->preamble == SHORT_PREAMBLE)
2924 body.capability |= cpu_to_le16(WLAN_CAPABILITY_SHORT_PREAMBLE);
2925
2926 body.listen_interval = cpu_to_le16(priv->listen_interval * priv->beacon_period);
2927
2928 /* current AP address - only in reassoc frame */
2929 if (is_reassoc) {
2930 memcpy(body.ap, priv->CurrentBSSID, ETH_ALEN);
2931 ssid_el_p = &body.ssid_el_id;
2932 bodysize = 18 + priv->SSID_size;
2933 } else {
2934 ssid_el_p = &body.ap[0];
2935 bodysize = 12 + priv->SSID_size;
2936 }
2937
2938 ssid_el_p[0] = WLAN_EID_SSID;
2939 ssid_el_p[1] = priv->SSID_size;
2940 memcpy(ssid_el_p + 2, priv->SSID, priv->SSID_size);
2941 ssid_el_p[2 + priv->SSID_size] = WLAN_EID_SUPP_RATES;
2942 ssid_el_p[3 + priv->SSID_size] = 4; /* len of supported rates */
2943 memcpy(ssid_el_p + 4 + priv->SSID_size, atmel_basic_rates, 4);
2944
2945 atmel_transmit_management_frame(priv, &header, (void *)&body, bodysize);
2946 }
2947
is_frame_from_current_bss(struct atmel_private * priv,struct ieee80211_hdr * header)2948 static int is_frame_from_current_bss(struct atmel_private *priv,
2949 struct ieee80211_hdr *header)
2950 {
2951 if (le16_to_cpu(header->frame_control) & IEEE80211_FCTL_FROMDS)
2952 return memcmp(header->addr3, priv->CurrentBSSID, 6) == 0;
2953 else
2954 return memcmp(header->addr2, priv->CurrentBSSID, 6) == 0;
2955 }
2956
retrieve_bss(struct atmel_private * priv)2957 static int retrieve_bss(struct atmel_private *priv)
2958 {
2959 int i;
2960 int max_rssi = -128;
2961 int max_index = -1;
2962
2963 if (priv->BSS_list_entries == 0)
2964 return -1;
2965
2966 if (priv->connect_to_any_BSS) {
2967 /* Select a BSS with the max-RSSI but of the same type and of
2968 the same WEP mode and that it is not marked as 'bad' (i.e.
2969 we had previously failed to connect to this BSS with the
2970 settings that we currently use) */
2971 priv->current_BSS = 0;
2972 for (i = 0; i < priv->BSS_list_entries; i++) {
2973 if (priv->operating_mode == priv->BSSinfo[i].BSStype &&
2974 ((!priv->wep_is_on && !priv->BSSinfo[i].UsingWEP) ||
2975 (priv->wep_is_on && priv->BSSinfo[i].UsingWEP)) &&
2976 !(priv->BSSinfo[i].channel & 0x80)) {
2977 max_rssi = priv->BSSinfo[i].RSSI;
2978 priv->current_BSS = max_index = i;
2979 }
2980 }
2981 return max_index;
2982 }
2983
2984 for (i = 0; i < priv->BSS_list_entries; i++) {
2985 if (priv->SSID_size == priv->BSSinfo[i].SSIDsize &&
2986 memcmp(priv->SSID, priv->BSSinfo[i].SSID, priv->SSID_size) == 0 &&
2987 priv->operating_mode == priv->BSSinfo[i].BSStype &&
2988 atmel_validate_channel(priv, priv->BSSinfo[i].channel) == 0) {
2989 if (priv->BSSinfo[i].RSSI >= max_rssi) {
2990 max_rssi = priv->BSSinfo[i].RSSI;
2991 max_index = i;
2992 }
2993 }
2994 }
2995 return max_index;
2996 }
2997
store_bss_info(struct atmel_private * priv,struct ieee80211_hdr * header,u16 capability,u16 beacon_period,u8 channel,u8 rssi,u8 ssid_len,u8 * ssid,int is_beacon)2998 static void store_bss_info(struct atmel_private *priv,
2999 struct ieee80211_hdr *header, u16 capability,
3000 u16 beacon_period, u8 channel, u8 rssi, u8 ssid_len,
3001 u8 *ssid, int is_beacon)
3002 {
3003 u8 *bss = capability & WLAN_CAPABILITY_ESS ? header->addr2 : header->addr3;
3004 int i, index;
3005
3006 for (index = -1, i = 0; i < priv->BSS_list_entries; i++)
3007 if (memcmp(bss, priv->BSSinfo[i].BSSID, ETH_ALEN) == 0)
3008 index = i;
3009
3010 /* If we process a probe and an entry from this BSS exists
3011 we will update the BSS entry with the info from this BSS.
3012 If we process a beacon we will only update RSSI */
3013
3014 if (index == -1) {
3015 if (priv->BSS_list_entries == MAX_BSS_ENTRIES)
3016 return;
3017 index = priv->BSS_list_entries++;
3018 memcpy(priv->BSSinfo[index].BSSID, bss, ETH_ALEN);
3019 priv->BSSinfo[index].RSSI = rssi;
3020 } else {
3021 if (rssi > priv->BSSinfo[index].RSSI)
3022 priv->BSSinfo[index].RSSI = rssi;
3023 if (is_beacon)
3024 return;
3025 }
3026
3027 priv->BSSinfo[index].channel = channel;
3028 priv->BSSinfo[index].beacon_period = beacon_period;
3029 priv->BSSinfo[index].UsingWEP = capability & WLAN_CAPABILITY_PRIVACY;
3030 memcpy(priv->BSSinfo[index].SSID, ssid, ssid_len);
3031 priv->BSSinfo[index].SSIDsize = ssid_len;
3032
3033 if (capability & WLAN_CAPABILITY_IBSS)
3034 priv->BSSinfo[index].BSStype = IW_MODE_ADHOC;
3035 else if (capability & WLAN_CAPABILITY_ESS)
3036 priv->BSSinfo[index].BSStype = IW_MODE_INFRA;
3037
3038 priv->BSSinfo[index].preamble = capability & WLAN_CAPABILITY_SHORT_PREAMBLE ?
3039 SHORT_PREAMBLE : LONG_PREAMBLE;
3040 }
3041
authenticate(struct atmel_private * priv,u16 frame_len)3042 static void authenticate(struct atmel_private *priv, u16 frame_len)
3043 {
3044 struct auth_body *auth = (struct auth_body *)priv->rx_buf;
3045 u16 status = le16_to_cpu(auth->status);
3046 u16 trans_seq_no = le16_to_cpu(auth->trans_seq);
3047 u16 system = le16_to_cpu(auth->alg);
3048
3049 if (status == WLAN_STATUS_SUCCESS && !priv->wep_is_on) {
3050 /* no WEP */
3051 if (priv->station_was_associated) {
3052 atmel_enter_state(priv, STATION_STATE_REASSOCIATING);
3053 send_association_request(priv, 1);
3054 return;
3055 } else {
3056 atmel_enter_state(priv, STATION_STATE_ASSOCIATING);
3057 send_association_request(priv, 0);
3058 return;
3059 }
3060 }
3061
3062 if (status == WLAN_STATUS_SUCCESS && priv->wep_is_on) {
3063 int should_associate = 0;
3064 /* WEP */
3065 if (trans_seq_no != priv->ExpectedAuthentTransactionSeqNum)
3066 return;
3067
3068 if (system == WLAN_AUTH_OPEN) {
3069 if (trans_seq_no == 0x0002) {
3070 should_associate = 1;
3071 }
3072 } else if (system == WLAN_AUTH_SHARED_KEY) {
3073 if (trans_seq_no == 0x0002 &&
3074 auth->el_id == WLAN_EID_CHALLENGE) {
3075 send_authentication_request(priv, system, auth->chall_text, auth->chall_text_len);
3076 return;
3077 } else if (trans_seq_no == 0x0004) {
3078 should_associate = 1;
3079 }
3080 }
3081
3082 if (should_associate) {
3083 if (priv->station_was_associated) {
3084 atmel_enter_state(priv, STATION_STATE_REASSOCIATING);
3085 send_association_request(priv, 1);
3086 return;
3087 } else {
3088 atmel_enter_state(priv, STATION_STATE_ASSOCIATING);
3089 send_association_request(priv, 0);
3090 return;
3091 }
3092 }
3093 }
3094
3095 if (status == WLAN_STATUS_NOT_SUPPORTED_AUTH_ALG) {
3096 /* Flip back and forth between WEP auth modes until the max
3097 * authentication tries has been exceeded.
3098 */
3099 if (system == WLAN_AUTH_OPEN) {
3100 priv->CurrentAuthentTransactionSeqNum = 0x001;
3101 priv->exclude_unencrypted = 1;
3102 send_authentication_request(priv, WLAN_AUTH_SHARED_KEY, NULL, 0);
3103 return;
3104 } else if (system == WLAN_AUTH_SHARED_KEY
3105 && priv->wep_is_on) {
3106 priv->CurrentAuthentTransactionSeqNum = 0x001;
3107 priv->exclude_unencrypted = 0;
3108 send_authentication_request(priv, WLAN_AUTH_OPEN, NULL, 0);
3109 return;
3110 } else if (priv->connect_to_any_BSS) {
3111 int bss_index;
3112
3113 priv->BSSinfo[(int)(priv->current_BSS)].channel |= 0x80;
3114
3115 if ((bss_index = retrieve_bss(priv)) != -1) {
3116 atmel_join_bss(priv, bss_index);
3117 return;
3118 }
3119 }
3120 }
3121
3122 priv->AuthenticationRequestRetryCnt = 0;
3123 atmel_enter_state(priv, STATION_STATE_MGMT_ERROR);
3124 priv->station_is_associated = 0;
3125 }
3126
associate(struct atmel_private * priv,u16 frame_len,u16 subtype)3127 static void associate(struct atmel_private *priv, u16 frame_len, u16 subtype)
3128 {
3129 struct ass_resp_format {
3130 __le16 capability;
3131 __le16 status;
3132 __le16 ass_id;
3133 u8 el_id;
3134 u8 length;
3135 u8 rates[4];
3136 } *ass_resp = (struct ass_resp_format *)priv->rx_buf;
3137
3138 u16 status = le16_to_cpu(ass_resp->status);
3139 u16 ass_id = le16_to_cpu(ass_resp->ass_id);
3140 u16 rates_len = ass_resp->length > 4 ? 4 : ass_resp->length;
3141
3142 union iwreq_data wrqu;
3143
3144 if (frame_len < 8 + rates_len)
3145 return;
3146
3147 if (status == WLAN_STATUS_SUCCESS) {
3148 if (subtype == IEEE80211_STYPE_ASSOC_RESP)
3149 priv->AssociationRequestRetryCnt = 0;
3150 else
3151 priv->ReAssociationRequestRetryCnt = 0;
3152
3153 atmel_set_mib16(priv, Mac_Mgmt_Mib_Type,
3154 MAC_MGMT_MIB_STATION_ID_POS, ass_id & 0x3fff);
3155 atmel_set_mib(priv, Phy_Mib_Type,
3156 PHY_MIB_RATE_SET_POS, ass_resp->rates, rates_len);
3157 if (priv->power_mode == 0) {
3158 priv->listen_interval = 1;
3159 atmel_set_mib8(priv, Mac_Mgmt_Mib_Type,
3160 MAC_MGMT_MIB_PS_MODE_POS, ACTIVE_MODE);
3161 atmel_set_mib16(priv, Mac_Mgmt_Mib_Type,
3162 MAC_MGMT_MIB_LISTEN_INTERVAL_POS, 1);
3163 } else {
3164 priv->listen_interval = 2;
3165 atmel_set_mib8(priv, Mac_Mgmt_Mib_Type,
3166 MAC_MGMT_MIB_PS_MODE_POS, PS_MODE);
3167 atmel_set_mib16(priv, Mac_Mgmt_Mib_Type,
3168 MAC_MGMT_MIB_LISTEN_INTERVAL_POS, 2);
3169 }
3170
3171 priv->station_is_associated = 1;
3172 priv->station_was_associated = 1;
3173 atmel_enter_state(priv, STATION_STATE_READY);
3174
3175 /* Send association event to userspace */
3176 wrqu.data.length = 0;
3177 wrqu.data.flags = 0;
3178 memcpy(wrqu.ap_addr.sa_data, priv->CurrentBSSID, ETH_ALEN);
3179 wrqu.ap_addr.sa_family = ARPHRD_ETHER;
3180 wireless_send_event(priv->dev, SIOCGIWAP, &wrqu, NULL);
3181
3182 return;
3183 }
3184
3185 if (subtype == IEEE80211_STYPE_ASSOC_RESP &&
3186 status != WLAN_STATUS_ASSOC_DENIED_RATES &&
3187 status != WLAN_STATUS_CAPS_UNSUPPORTED &&
3188 priv->AssociationRequestRetryCnt < MAX_ASSOCIATION_RETRIES) {
3189 mod_timer(&priv->management_timer, jiffies + MGMT_JIFFIES);
3190 priv->AssociationRequestRetryCnt++;
3191 send_association_request(priv, 0);
3192 return;
3193 }
3194
3195 if (subtype == IEEE80211_STYPE_REASSOC_RESP &&
3196 status != WLAN_STATUS_ASSOC_DENIED_RATES &&
3197 status != WLAN_STATUS_CAPS_UNSUPPORTED &&
3198 priv->ReAssociationRequestRetryCnt < MAX_ASSOCIATION_RETRIES) {
3199 mod_timer(&priv->management_timer, jiffies + MGMT_JIFFIES);
3200 priv->ReAssociationRequestRetryCnt++;
3201 send_association_request(priv, 1);
3202 return;
3203 }
3204
3205 atmel_enter_state(priv, STATION_STATE_MGMT_ERROR);
3206 priv->station_is_associated = 0;
3207
3208 if (priv->connect_to_any_BSS) {
3209 int bss_index;
3210 priv->BSSinfo[(int)(priv->current_BSS)].channel |= 0x80;
3211
3212 if ((bss_index = retrieve_bss(priv)) != -1)
3213 atmel_join_bss(priv, bss_index);
3214 }
3215 }
3216
atmel_join_bss(struct atmel_private * priv,int bss_index)3217 static void atmel_join_bss(struct atmel_private *priv, int bss_index)
3218 {
3219 struct bss_info *bss = &priv->BSSinfo[bss_index];
3220
3221 memcpy(priv->CurrentBSSID, bss->BSSID, ETH_ALEN);
3222 memcpy(priv->SSID, bss->SSID, priv->SSID_size = bss->SSIDsize);
3223
3224 /* The WPA stuff cares about the current AP address */
3225 if (priv->use_wpa)
3226 build_wpa_mib(priv);
3227
3228 /* When switching to AdHoc turn OFF Power Save if needed */
3229
3230 if (bss->BSStype == IW_MODE_ADHOC &&
3231 priv->operating_mode != IW_MODE_ADHOC &&
3232 priv->power_mode) {
3233 priv->power_mode = 0;
3234 priv->listen_interval = 1;
3235 atmel_set_mib8(priv, Mac_Mgmt_Mib_Type,
3236 MAC_MGMT_MIB_PS_MODE_POS, ACTIVE_MODE);
3237 atmel_set_mib16(priv, Mac_Mgmt_Mib_Type,
3238 MAC_MGMT_MIB_LISTEN_INTERVAL_POS, 1);
3239 }
3240
3241 priv->operating_mode = bss->BSStype;
3242 priv->channel = bss->channel & 0x7f;
3243 priv->beacon_period = bss->beacon_period;
3244
3245 if (priv->preamble != bss->preamble) {
3246 priv->preamble = bss->preamble;
3247 atmel_set_mib8(priv, Local_Mib_Type,
3248 LOCAL_MIB_PREAMBLE_TYPE, bss->preamble);
3249 }
3250
3251 if (!priv->wep_is_on && bss->UsingWEP) {
3252 atmel_enter_state(priv, STATION_STATE_MGMT_ERROR);
3253 priv->station_is_associated = 0;
3254 return;
3255 }
3256
3257 if (priv->wep_is_on && !bss->UsingWEP) {
3258 atmel_enter_state(priv, STATION_STATE_MGMT_ERROR);
3259 priv->station_is_associated = 0;
3260 return;
3261 }
3262
3263 atmel_enter_state(priv, STATION_STATE_JOINNING);
3264
3265 if (priv->operating_mode == IW_MODE_INFRA)
3266 join(priv, BSS_TYPE_INFRASTRUCTURE);
3267 else
3268 join(priv, BSS_TYPE_AD_HOC);
3269 }
3270
restart_search(struct atmel_private * priv)3271 static void restart_search(struct atmel_private *priv)
3272 {
3273 int bss_index;
3274
3275 if (!priv->connect_to_any_BSS) {
3276 atmel_scan(priv, 1);
3277 } else {
3278 priv->BSSinfo[(int)(priv->current_BSS)].channel |= 0x80;
3279
3280 if ((bss_index = retrieve_bss(priv)) != -1)
3281 atmel_join_bss(priv, bss_index);
3282 else
3283 atmel_scan(priv, 0);
3284 }
3285 }
3286
smooth_rssi(struct atmel_private * priv,u8 rssi)3287 static void smooth_rssi(struct atmel_private *priv, u8 rssi)
3288 {
3289 u8 old = priv->wstats.qual.level;
3290 u8 max_rssi = 42; /* 502-rmfd-revd max by experiment, default for now */
3291
3292 switch (priv->firmware_type) {
3293 case ATMEL_FW_TYPE_502E:
3294 max_rssi = 63; /* 502-rmfd-reve max by experiment */
3295 break;
3296 default:
3297 break;
3298 }
3299
3300 rssi = rssi * 100 / max_rssi;
3301 if ((rssi + old) % 2)
3302 priv->wstats.qual.level = (rssi + old) / 2 + 1;
3303 else
3304 priv->wstats.qual.level = (rssi + old) / 2;
3305 priv->wstats.qual.updated |= IW_QUAL_LEVEL_UPDATED;
3306 priv->wstats.qual.updated &= ~IW_QUAL_LEVEL_INVALID;
3307 }
3308
atmel_smooth_qual(struct atmel_private * priv)3309 static void atmel_smooth_qual(struct atmel_private *priv)
3310 {
3311 unsigned long time_diff = (jiffies - priv->last_qual) / HZ;
3312 while (time_diff--) {
3313 priv->last_qual += HZ;
3314 priv->wstats.qual.qual = priv->wstats.qual.qual / 2;
3315 priv->wstats.qual.qual +=
3316 priv->beacons_this_sec * priv->beacon_period * (priv->wstats.qual.level + 100) / 4000;
3317 priv->beacons_this_sec = 0;
3318 }
3319 priv->wstats.qual.updated |= IW_QUAL_QUAL_UPDATED;
3320 priv->wstats.qual.updated &= ~IW_QUAL_QUAL_INVALID;
3321 }
3322
3323 /* deals with incoming management frames. */
atmel_management_frame(struct atmel_private * priv,struct ieee80211_hdr * header,u16 frame_len,u8 rssi)3324 static void atmel_management_frame(struct atmel_private *priv,
3325 struct ieee80211_hdr *header,
3326 u16 frame_len, u8 rssi)
3327 {
3328 u16 subtype;
3329
3330 subtype = le16_to_cpu(header->frame_control) & IEEE80211_FCTL_STYPE;
3331 switch (subtype) {
3332 case IEEE80211_STYPE_BEACON:
3333 case IEEE80211_STYPE_PROBE_RESP:
3334
3335 /* beacon frame has multiple variable-length fields -
3336 never let an engineer loose with a data structure design. */
3337 {
3338 struct beacon_format {
3339 __le64 timestamp;
3340 __le16 interval;
3341 __le16 capability;
3342 u8 ssid_el_id;
3343 u8 ssid_length;
3344 /* ssid here */
3345 u8 rates_el_id;
3346 u8 rates_length;
3347 /* rates here */
3348 u8 ds_el_id;
3349 u8 ds_length;
3350 /* ds here */
3351 } *beacon = (struct beacon_format *)priv->rx_buf;
3352
3353 u8 channel, rates_length, ssid_length;
3354 u64 timestamp = le64_to_cpu(beacon->timestamp);
3355 u16 beacon_interval = le16_to_cpu(beacon->interval);
3356 u16 capability = le16_to_cpu(beacon->capability);
3357 u8 *beaconp = priv->rx_buf;
3358 ssid_length = beacon->ssid_length;
3359 /* this blows chunks. */
3360 if (frame_len < 14 || frame_len < ssid_length + 15)
3361 return;
3362 rates_length = beaconp[beacon->ssid_length + 15];
3363 if (frame_len < ssid_length + rates_length + 18)
3364 return;
3365 if (ssid_length > MAX_SSID_LENGTH)
3366 return;
3367 channel = beaconp[ssid_length + rates_length + 18];
3368
3369 if (priv->station_state == STATION_STATE_READY) {
3370 smooth_rssi(priv, rssi);
3371 if (is_frame_from_current_bss(priv, header)) {
3372 priv->beacons_this_sec++;
3373 atmel_smooth_qual(priv);
3374 if (priv->last_beacon_timestamp) {
3375 /* Note truncate this to 32 bits - kernel can't divide a long long */
3376 u32 beacon_delay = timestamp - priv->last_beacon_timestamp;
3377 int beacons = beacon_delay / (beacon_interval * 1000);
3378 if (beacons > 1)
3379 priv->wstats.miss.beacon += beacons - 1;
3380 }
3381 priv->last_beacon_timestamp = timestamp;
3382 handle_beacon_probe(priv, capability, channel);
3383 }
3384 }
3385
3386 if (priv->station_state == STATION_STATE_SCANNING)
3387 store_bss_info(priv, header, capability,
3388 beacon_interval, channel, rssi,
3389 ssid_length,
3390 &beacon->rates_el_id,
3391 subtype == IEEE80211_STYPE_BEACON);
3392 }
3393 break;
3394
3395 case IEEE80211_STYPE_AUTH:
3396
3397 if (priv->station_state == STATION_STATE_AUTHENTICATING)
3398 authenticate(priv, frame_len);
3399
3400 break;
3401
3402 case IEEE80211_STYPE_ASSOC_RESP:
3403 case IEEE80211_STYPE_REASSOC_RESP:
3404
3405 if (priv->station_state == STATION_STATE_ASSOCIATING ||
3406 priv->station_state == STATION_STATE_REASSOCIATING)
3407 associate(priv, frame_len, subtype);
3408
3409 break;
3410
3411 case IEEE80211_STYPE_DISASSOC:
3412 if (priv->station_is_associated &&
3413 priv->operating_mode == IW_MODE_INFRA &&
3414 is_frame_from_current_bss(priv, header)) {
3415 priv->station_was_associated = 0;
3416 priv->station_is_associated = 0;
3417
3418 atmel_enter_state(priv, STATION_STATE_JOINNING);
3419 join(priv, BSS_TYPE_INFRASTRUCTURE);
3420 }
3421
3422 break;
3423
3424 case IEEE80211_STYPE_DEAUTH:
3425 if (priv->operating_mode == IW_MODE_INFRA &&
3426 is_frame_from_current_bss(priv, header)) {
3427 priv->station_was_associated = 0;
3428
3429 atmel_enter_state(priv, STATION_STATE_JOINNING);
3430 join(priv, BSS_TYPE_INFRASTRUCTURE);
3431 }
3432
3433 break;
3434 }
3435 }
3436
3437 /* run when timer expires */
atmel_management_timer(u_long a)3438 static void atmel_management_timer(u_long a)
3439 {
3440 struct net_device *dev = (struct net_device *) a;
3441 struct atmel_private *priv = netdev_priv(dev);
3442 unsigned long flags;
3443
3444 /* Check if the card has been yanked. */
3445 if (priv->card && priv->present_callback &&
3446 !(*priv->present_callback)(priv->card))
3447 return;
3448
3449 spin_lock_irqsave(&priv->irqlock, flags);
3450
3451 switch (priv->station_state) {
3452
3453 case STATION_STATE_AUTHENTICATING:
3454 if (priv->AuthenticationRequestRetryCnt >= MAX_AUTHENTICATION_RETRIES) {
3455 atmel_enter_state(priv, STATION_STATE_MGMT_ERROR);
3456 priv->station_is_associated = 0;
3457 priv->AuthenticationRequestRetryCnt = 0;
3458 restart_search(priv);
3459 } else {
3460 int auth = WLAN_AUTH_OPEN;
3461 priv->AuthenticationRequestRetryCnt++;
3462 priv->CurrentAuthentTransactionSeqNum = 0x0001;
3463 mod_timer(&priv->management_timer, jiffies + MGMT_JIFFIES);
3464 if (priv->wep_is_on && priv->exclude_unencrypted)
3465 auth = WLAN_AUTH_SHARED_KEY;
3466 send_authentication_request(priv, auth, NULL, 0);
3467 }
3468 break;
3469
3470 case STATION_STATE_ASSOCIATING:
3471 if (priv->AssociationRequestRetryCnt == MAX_ASSOCIATION_RETRIES) {
3472 atmel_enter_state(priv, STATION_STATE_MGMT_ERROR);
3473 priv->station_is_associated = 0;
3474 priv->AssociationRequestRetryCnt = 0;
3475 restart_search(priv);
3476 } else {
3477 priv->AssociationRequestRetryCnt++;
3478 mod_timer(&priv->management_timer, jiffies + MGMT_JIFFIES);
3479 send_association_request(priv, 0);
3480 }
3481 break;
3482
3483 case STATION_STATE_REASSOCIATING:
3484 if (priv->ReAssociationRequestRetryCnt == MAX_ASSOCIATION_RETRIES) {
3485 atmel_enter_state(priv, STATION_STATE_MGMT_ERROR);
3486 priv->station_is_associated = 0;
3487 priv->ReAssociationRequestRetryCnt = 0;
3488 restart_search(priv);
3489 } else {
3490 priv->ReAssociationRequestRetryCnt++;
3491 mod_timer(&priv->management_timer, jiffies + MGMT_JIFFIES);
3492 send_association_request(priv, 1);
3493 }
3494 break;
3495
3496 default:
3497 break;
3498 }
3499
3500 spin_unlock_irqrestore(&priv->irqlock, flags);
3501 }
3502
atmel_command_irq(struct atmel_private * priv)3503 static void atmel_command_irq(struct atmel_private *priv)
3504 {
3505 u8 status = atmel_rmem8(priv, atmel_co(priv, CMD_BLOCK_STATUS_OFFSET));
3506 u8 command = atmel_rmem8(priv, atmel_co(priv, CMD_BLOCK_COMMAND_OFFSET));
3507 int fast_scan;
3508 union iwreq_data wrqu;
3509
3510 if (status == CMD_STATUS_IDLE ||
3511 status == CMD_STATUS_IN_PROGRESS)
3512 return;
3513
3514 switch (command) {
3515 case CMD_Start:
3516 if (status == CMD_STATUS_COMPLETE) {
3517 priv->station_was_associated = priv->station_is_associated;
3518 atmel_get_mib(priv, Mac_Mgmt_Mib_Type, MAC_MGMT_MIB_CUR_BSSID_POS,
3519 (u8 *)priv->CurrentBSSID, 6);
3520 atmel_enter_state(priv, STATION_STATE_READY);
3521 }
3522 break;
3523
3524 case CMD_Scan:
3525 fast_scan = priv->fast_scan;
3526 priv->fast_scan = 0;
3527
3528 if (status != CMD_STATUS_COMPLETE) {
3529 atmel_scan(priv, 1);
3530 } else {
3531 int bss_index = retrieve_bss(priv);
3532 int notify_scan_complete = 1;
3533 if (bss_index != -1) {
3534 atmel_join_bss(priv, bss_index);
3535 } else if (priv->operating_mode == IW_MODE_ADHOC &&
3536 priv->SSID_size != 0) {
3537 start(priv, BSS_TYPE_AD_HOC);
3538 } else {
3539 priv->fast_scan = !fast_scan;
3540 atmel_scan(priv, 1);
3541 notify_scan_complete = 0;
3542 }
3543 priv->site_survey_state = SITE_SURVEY_COMPLETED;
3544 if (notify_scan_complete) {
3545 wrqu.data.length = 0;
3546 wrqu.data.flags = 0;
3547 wireless_send_event(priv->dev, SIOCGIWSCAN, &wrqu, NULL);
3548 }
3549 }
3550 break;
3551
3552 case CMD_SiteSurvey:
3553 priv->fast_scan = 0;
3554
3555 if (status != CMD_STATUS_COMPLETE)
3556 return;
3557
3558 priv->site_survey_state = SITE_SURVEY_COMPLETED;
3559 if (priv->station_is_associated) {
3560 atmel_enter_state(priv, STATION_STATE_READY);
3561 wrqu.data.length = 0;
3562 wrqu.data.flags = 0;
3563 wireless_send_event(priv->dev, SIOCGIWSCAN, &wrqu, NULL);
3564 } else {
3565 atmel_scan(priv, 1);
3566 }
3567 break;
3568
3569 case CMD_Join:
3570 if (status == CMD_STATUS_COMPLETE) {
3571 if (priv->operating_mode == IW_MODE_ADHOC) {
3572 priv->station_was_associated = priv->station_is_associated;
3573 atmel_enter_state(priv, STATION_STATE_READY);
3574 } else {
3575 int auth = WLAN_AUTH_OPEN;
3576 priv->AuthenticationRequestRetryCnt = 0;
3577 atmel_enter_state(priv, STATION_STATE_AUTHENTICATING);
3578
3579 mod_timer(&priv->management_timer, jiffies + MGMT_JIFFIES);
3580 priv->CurrentAuthentTransactionSeqNum = 0x0001;
3581 if (priv->wep_is_on && priv->exclude_unencrypted)
3582 auth = WLAN_AUTH_SHARED_KEY;
3583 send_authentication_request(priv, auth, NULL, 0);
3584 }
3585 return;
3586 }
3587
3588 atmel_scan(priv, 1);
3589 }
3590 }
3591
atmel_wakeup_firmware(struct atmel_private * priv)3592 static int atmel_wakeup_firmware(struct atmel_private *priv)
3593 {
3594 struct host_info_struct *iface = &priv->host_info;
3595 u16 mr1, mr3;
3596 int i;
3597
3598 if (priv->card_type == CARD_TYPE_SPI_FLASH)
3599 atmel_set_gcr(priv->dev, GCR_REMAP);
3600
3601 /* wake up on-board processor */
3602 atmel_clear_gcr(priv->dev, 0x0040);
3603 atmel_write16(priv->dev, BSR, BSS_SRAM);
3604
3605 if (priv->card_type == CARD_TYPE_SPI_FLASH)
3606 mdelay(100);
3607
3608 /* and wait for it */
3609 for (i = LOOP_RETRY_LIMIT; i; i--) {
3610 mr1 = atmel_read16(priv->dev, MR1);
3611 mr3 = atmel_read16(priv->dev, MR3);
3612
3613 if (mr3 & MAC_BOOT_COMPLETE)
3614 break;
3615 if (mr1 & MAC_BOOT_COMPLETE &&
3616 priv->bus_type == BUS_TYPE_PCCARD)
3617 break;
3618 }
3619
3620 if (i == 0) {
3621 printk(KERN_ALERT "%s: MAC failed to boot.\n", priv->dev->name);
3622 return -EIO;
3623 }
3624
3625 if ((priv->host_info_base = atmel_read16(priv->dev, MR2)) == 0xffff) {
3626 printk(KERN_ALERT "%s: card missing.\n", priv->dev->name);
3627 return -ENODEV;
3628 }
3629
3630 /* now check for completion of MAC initialization through
3631 the FunCtrl field of the IFACE, poll MR1 to detect completion of
3632 MAC initialization, check completion status, set interrupt mask,
3633 enables interrupts and calls Tx and Rx initialization functions */
3634
3635 atmel_wmem8(priv, atmel_hi(priv, IFACE_FUNC_CTRL_OFFSET), FUNC_CTRL_INIT_COMPLETE);
3636
3637 for (i = LOOP_RETRY_LIMIT; i; i--) {
3638 mr1 = atmel_read16(priv->dev, MR1);
3639 mr3 = atmel_read16(priv->dev, MR3);
3640
3641 if (mr3 & MAC_INIT_COMPLETE)
3642 break;
3643 if (mr1 & MAC_INIT_COMPLETE &&
3644 priv->bus_type == BUS_TYPE_PCCARD)
3645 break;
3646 }
3647
3648 if (i == 0) {
3649 printk(KERN_ALERT "%s: MAC failed to initialise.\n",
3650 priv->dev->name);
3651 return -EIO;
3652 }
3653
3654 /* Check for MAC_INIT_OK only on the register that the MAC_INIT_OK was set */
3655 if ((mr3 & MAC_INIT_COMPLETE) &&
3656 !(atmel_read16(priv->dev, MR3) & MAC_INIT_OK)) {
3657 printk(KERN_ALERT "%s: MAC failed MR3 self-test.\n", priv->dev->name);
3658 return -EIO;
3659 }
3660 if ((mr1 & MAC_INIT_COMPLETE) &&
3661 !(atmel_read16(priv->dev, MR1) & MAC_INIT_OK)) {
3662 printk(KERN_ALERT "%s: MAC failed MR1 self-test.\n", priv->dev->name);
3663 return -EIO;
3664 }
3665
3666 atmel_copy_to_host(priv->dev, (unsigned char *)iface,
3667 priv->host_info_base, sizeof(*iface));
3668
3669 iface->tx_buff_pos = le16_to_cpu(iface->tx_buff_pos);
3670 iface->tx_buff_size = le16_to_cpu(iface->tx_buff_size);
3671 iface->tx_desc_pos = le16_to_cpu(iface->tx_desc_pos);
3672 iface->tx_desc_count = le16_to_cpu(iface->tx_desc_count);
3673 iface->rx_buff_pos = le16_to_cpu(iface->rx_buff_pos);
3674 iface->rx_buff_size = le16_to_cpu(iface->rx_buff_size);
3675 iface->rx_desc_pos = le16_to_cpu(iface->rx_desc_pos);
3676 iface->rx_desc_count = le16_to_cpu(iface->rx_desc_count);
3677 iface->build_version = le16_to_cpu(iface->build_version);
3678 iface->command_pos = le16_to_cpu(iface->command_pos);
3679 iface->major_version = le16_to_cpu(iface->major_version);
3680 iface->minor_version = le16_to_cpu(iface->minor_version);
3681 iface->func_ctrl = le16_to_cpu(iface->func_ctrl);
3682 iface->mac_status = le16_to_cpu(iface->mac_status);
3683
3684 return 0;
3685 }
3686
3687 /* determine type of memory and MAC address */
probe_atmel_card(struct net_device * dev)3688 static int probe_atmel_card(struct net_device *dev)
3689 {
3690 int rc = 0;
3691 struct atmel_private *priv = netdev_priv(dev);
3692
3693 /* reset pccard */
3694 if (priv->bus_type == BUS_TYPE_PCCARD)
3695 atmel_write16(dev, GCR, 0x0060);
3696
3697 atmel_write16(dev, GCR, 0x0040);
3698 mdelay(500);
3699
3700 if (atmel_read16(dev, MR2) == 0) {
3701 /* No stored firmware so load a small stub which just
3702 tells us the MAC address */
3703 int i;
3704 priv->card_type = CARD_TYPE_EEPROM;
3705 atmel_write16(dev, BSR, BSS_IRAM);
3706 atmel_copy_to_card(dev, 0, mac_reader, sizeof(mac_reader));
3707 atmel_set_gcr(dev, GCR_REMAP);
3708 atmel_clear_gcr(priv->dev, 0x0040);
3709 atmel_write16(dev, BSR, BSS_SRAM);
3710 for (i = LOOP_RETRY_LIMIT; i; i--)
3711 if (atmel_read16(dev, MR3) & MAC_BOOT_COMPLETE)
3712 break;
3713 if (i == 0) {
3714 printk(KERN_ALERT "%s: MAC failed to boot MAC address reader.\n", dev->name);
3715 } else {
3716 atmel_copy_to_host(dev, dev->dev_addr, atmel_read16(dev, MR2), 6);
3717 /* got address, now squash it again until the network
3718 interface is opened */
3719 if (priv->bus_type == BUS_TYPE_PCCARD)
3720 atmel_write16(dev, GCR, 0x0060);
3721 atmel_write16(dev, GCR, 0x0040);
3722 rc = 1;
3723 }
3724 } else if (atmel_read16(dev, MR4) == 0) {
3725 /* Mac address easy in this case. */
3726 priv->card_type = CARD_TYPE_PARALLEL_FLASH;
3727 atmel_write16(dev, BSR, 1);
3728 atmel_copy_to_host(dev, dev->dev_addr, 0xc000, 6);
3729 atmel_write16(dev, BSR, 0x200);
3730 rc = 1;
3731 } else {
3732 /* Standard firmware in flash, boot it up and ask
3733 for the Mac Address */
3734 priv->card_type = CARD_TYPE_SPI_FLASH;
3735 if (atmel_wakeup_firmware(priv) == 0) {
3736 atmel_get_mib(priv, Mac_Address_Mib_Type, 0, dev->dev_addr, 6);
3737
3738 /* got address, now squash it again until the network
3739 interface is opened */
3740 if (priv->bus_type == BUS_TYPE_PCCARD)
3741 atmel_write16(dev, GCR, 0x0060);
3742 atmel_write16(dev, GCR, 0x0040);
3743 rc = 1;
3744 }
3745 }
3746
3747 if (rc) {
3748 if (dev->dev_addr[0] == 0xFF) {
3749 static const u8 default_mac[] = {
3750 0x00, 0x04, 0x25, 0x00, 0x00, 0x00
3751 };
3752 printk(KERN_ALERT "%s: *** Invalid MAC address. UPGRADE Firmware ****\n", dev->name);
3753 memcpy(dev->dev_addr, default_mac, ETH_ALEN);
3754 }
3755 }
3756
3757 return rc;
3758 }
3759
3760 /* Move the encyption information on the MIB structure.
3761 This routine is for the pre-WPA firmware: later firmware has
3762 a different format MIB and a different routine. */
build_wep_mib(struct atmel_private * priv)3763 static void build_wep_mib(struct atmel_private *priv)
3764 {
3765 struct { /* NB this is matched to the hardware, don't change. */
3766 u8 wep_is_on;
3767 u8 default_key; /* 0..3 */
3768 u8 reserved;
3769 u8 exclude_unencrypted;
3770
3771 u32 WEPICV_error_count;
3772 u32 WEP_excluded_count;
3773
3774 u8 wep_keys[MAX_ENCRYPTION_KEYS][13];
3775 u8 encryption_level; /* 0, 1, 2 */
3776 u8 reserved2[3];
3777 } mib;
3778 int i;
3779
3780 mib.wep_is_on = priv->wep_is_on;
3781 if (priv->wep_is_on) {
3782 if (priv->wep_key_len[priv->default_key] > 5)
3783 mib.encryption_level = 2;
3784 else
3785 mib.encryption_level = 1;
3786 } else {
3787 mib.encryption_level = 0;
3788 }
3789
3790 mib.default_key = priv->default_key;
3791 mib.exclude_unencrypted = priv->exclude_unencrypted;
3792
3793 for (i = 0; i < MAX_ENCRYPTION_KEYS; i++)
3794 memcpy(mib.wep_keys[i], priv->wep_keys[i], 13);
3795
3796 atmel_set_mib(priv, Mac_Wep_Mib_Type, 0, (u8 *)&mib, sizeof(mib));
3797 }
3798
build_wpa_mib(struct atmel_private * priv)3799 static void build_wpa_mib(struct atmel_private *priv)
3800 {
3801 /* This is for the later (WPA enabled) firmware. */
3802
3803 struct { /* NB this is matched to the hardware, don't change. */
3804 u8 cipher_default_key_value[MAX_ENCRYPTION_KEYS][MAX_ENCRYPTION_KEY_SIZE];
3805 u8 receiver_address[ETH_ALEN];
3806 u8 wep_is_on;
3807 u8 default_key; /* 0..3 */
3808 u8 group_key;
3809 u8 exclude_unencrypted;
3810 u8 encryption_type;
3811 u8 reserved;
3812
3813 u32 WEPICV_error_count;
3814 u32 WEP_excluded_count;
3815
3816 u8 key_RSC[4][8];
3817 } mib;
3818
3819 int i;
3820
3821 mib.wep_is_on = priv->wep_is_on;
3822 mib.exclude_unencrypted = priv->exclude_unencrypted;
3823 memcpy(mib.receiver_address, priv->CurrentBSSID, ETH_ALEN);
3824
3825 /* zero all the keys before adding in valid ones. */
3826 memset(mib.cipher_default_key_value, 0, sizeof(mib.cipher_default_key_value));
3827
3828 if (priv->wep_is_on) {
3829 /* There's a comment in the Atmel code to the effect that this
3830 is only valid when still using WEP, it may need to be set to
3831 something to use WPA */
3832 memset(mib.key_RSC, 0, sizeof(mib.key_RSC));
3833
3834 mib.default_key = mib.group_key = 255;
3835 for (i = 0; i < MAX_ENCRYPTION_KEYS; i++) {
3836 if (priv->wep_key_len[i] > 0) {
3837 memcpy(mib.cipher_default_key_value[i], priv->wep_keys[i], MAX_ENCRYPTION_KEY_SIZE);
3838 if (i == priv->default_key) {
3839 mib.default_key = i;
3840 mib.cipher_default_key_value[i][MAX_ENCRYPTION_KEY_SIZE-1] = 7;
3841 mib.cipher_default_key_value[i][MAX_ENCRYPTION_KEY_SIZE-2] = priv->pairwise_cipher_suite;
3842 } else {
3843 mib.group_key = i;
3844 priv->group_cipher_suite = priv->pairwise_cipher_suite;
3845 mib.cipher_default_key_value[i][MAX_ENCRYPTION_KEY_SIZE-1] = 1;
3846 mib.cipher_default_key_value[i][MAX_ENCRYPTION_KEY_SIZE-2] = priv->group_cipher_suite;
3847 }
3848 }
3849 }
3850 if (mib.default_key == 255)
3851 mib.default_key = mib.group_key != 255 ? mib.group_key : 0;
3852 if (mib.group_key == 255)
3853 mib.group_key = mib.default_key;
3854
3855 }
3856
3857 atmel_set_mib(priv, Mac_Wep_Mib_Type, 0, (u8 *)&mib, sizeof(mib));
3858 }
3859
reset_atmel_card(struct net_device * dev)3860 static int reset_atmel_card(struct net_device *dev)
3861 {
3862 /* do everything necessary to wake up the hardware, including
3863 waiting for the lightning strike and throwing the knife switch....
3864
3865 set all the Mib values which matter in the card to match
3866 their settings in the atmel_private structure. Some of these
3867 can be altered on the fly, but many (WEP, infrastucture or ad-hoc)
3868 can only be changed by tearing down the world and coming back through
3869 here.
3870
3871 This routine is also responsible for initialising some
3872 hardware-specific fields in the atmel_private structure,
3873 including a copy of the firmware's hostinfo structure
3874 which is the route into the rest of the firmware datastructures. */
3875
3876 struct atmel_private *priv = netdev_priv(dev);
3877 u8 configuration;
3878 int old_state = priv->station_state;
3879 int err = 0;
3880
3881 /* data to add to the firmware names, in priority order
3882 this implemenents firmware versioning */
3883
3884 static char *firmware_modifier[] = {
3885 "-wpa",
3886 "",
3887 NULL
3888 };
3889
3890 /* reset pccard */
3891 if (priv->bus_type == BUS_TYPE_PCCARD)
3892 atmel_write16(priv->dev, GCR, 0x0060);
3893
3894 /* stop card , disable interrupts */
3895 atmel_write16(priv->dev, GCR, 0x0040);
3896
3897 if (priv->card_type == CARD_TYPE_EEPROM) {
3898 /* copy in firmware if needed */
3899 const struct firmware *fw_entry = NULL;
3900 const unsigned char *fw;
3901 int len = priv->firmware_length;
3902 if (!(fw = priv->firmware)) {
3903 if (priv->firmware_type == ATMEL_FW_TYPE_NONE) {
3904 if (strlen(priv->firmware_id) == 0) {
3905 printk(KERN_INFO
3906 "%s: card type is unknown: assuming at76c502 firmware is OK.\n",
3907 dev->name);
3908 printk(KERN_INFO
3909 "%s: if not, use the firmware= module parameter.\n",
3910 dev->name);
3911 strcpy(priv->firmware_id, "atmel_at76c502.bin");
3912 }
3913 err = request_firmware(&fw_entry, priv->firmware_id, priv->sys_dev);
3914 if (err != 0) {
3915 printk(KERN_ALERT
3916 "%s: firmware %s is missing, cannot continue.\n",
3917 dev->name, priv->firmware_id);
3918 return err;
3919 }
3920 } else {
3921 int fw_index = 0;
3922 int success = 0;
3923
3924 /* get firmware filename entry based on firmware type ID */
3925 while (fw_table[fw_index].fw_type != priv->firmware_type
3926 && fw_table[fw_index].fw_type != ATMEL_FW_TYPE_NONE)
3927 fw_index++;
3928
3929 /* construct the actual firmware file name */
3930 if (fw_table[fw_index].fw_type != ATMEL_FW_TYPE_NONE) {
3931 int i;
3932 for (i = 0; firmware_modifier[i]; i++) {
3933 snprintf(priv->firmware_id, 32, "%s%s.%s", fw_table[fw_index].fw_file,
3934 firmware_modifier[i], fw_table[fw_index].fw_file_ext);
3935 priv->firmware_id[31] = '\0';
3936 if (request_firmware(&fw_entry, priv->firmware_id, priv->sys_dev) == 0) {
3937 success = 1;
3938 break;
3939 }
3940 }
3941 }
3942 if (!success) {
3943 printk(KERN_ALERT
3944 "%s: firmware %s is missing, cannot start.\n",
3945 dev->name, priv->firmware_id);
3946 priv->firmware_id[0] = '\0';
3947 return -ENOENT;
3948 }
3949 }
3950
3951 fw = fw_entry->data;
3952 len = fw_entry->size;
3953 }
3954
3955 if (len <= 0x6000) {
3956 atmel_write16(priv->dev, BSR, BSS_IRAM);
3957 atmel_copy_to_card(priv->dev, 0, fw, len);
3958 atmel_set_gcr(priv->dev, GCR_REMAP);
3959 } else {
3960 /* Remap */
3961 atmel_set_gcr(priv->dev, GCR_REMAP);
3962 atmel_write16(priv->dev, BSR, BSS_IRAM);
3963 atmel_copy_to_card(priv->dev, 0, fw, 0x6000);
3964 atmel_write16(priv->dev, BSR, 0x2ff);
3965 atmel_copy_to_card(priv->dev, 0x8000, &fw[0x6000], len - 0x6000);
3966 }
3967
3968 release_firmware(fw_entry);
3969 }
3970
3971 err = atmel_wakeup_firmware(priv);
3972 if (err != 0)
3973 return err;
3974
3975 /* Check the version and set the correct flag for wpa stuff,
3976 old and new firmware is incompatible.
3977 The pre-wpa 3com firmware reports major version 5,
3978 the wpa 3com firmware is major version 4 and doesn't need
3979 the 3com broken-ness filter. */
3980 priv->use_wpa = (priv->host_info.major_version == 4);
3981 priv->radio_on_broken = (priv->host_info.major_version == 5);
3982
3983 /* unmask all irq sources */
3984 atmel_wmem8(priv, atmel_hi(priv, IFACE_INT_MASK_OFFSET), 0xff);
3985
3986 /* int Tx system and enable Tx */
3987 atmel_wmem8(priv, atmel_tx(priv, TX_DESC_FLAGS_OFFSET, 0), 0);
3988 atmel_wmem32(priv, atmel_tx(priv, TX_DESC_NEXT_OFFSET, 0), 0x80000000L);
3989 atmel_wmem16(priv, atmel_tx(priv, TX_DESC_POS_OFFSET, 0), 0);
3990 atmel_wmem16(priv, atmel_tx(priv, TX_DESC_SIZE_OFFSET, 0), 0);
3991
3992 priv->tx_desc_free = priv->host_info.tx_desc_count;
3993 priv->tx_desc_head = 0;
3994 priv->tx_desc_tail = 0;
3995 priv->tx_desc_previous = 0;
3996 priv->tx_free_mem = priv->host_info.tx_buff_size;
3997 priv->tx_buff_head = 0;
3998 priv->tx_buff_tail = 0;
3999
4000 configuration = atmel_rmem8(priv, atmel_hi(priv, IFACE_FUNC_CTRL_OFFSET));
4001 atmel_wmem8(priv, atmel_hi(priv, IFACE_FUNC_CTRL_OFFSET),
4002 configuration | FUNC_CTRL_TxENABLE);
4003
4004 /* init Rx system and enable */
4005 priv->rx_desc_head = 0;
4006
4007 configuration = atmel_rmem8(priv, atmel_hi(priv, IFACE_FUNC_CTRL_OFFSET));
4008 atmel_wmem8(priv, atmel_hi(priv, IFACE_FUNC_CTRL_OFFSET),
4009 configuration | FUNC_CTRL_RxENABLE);
4010
4011 if (!priv->radio_on_broken) {
4012 if (atmel_send_command_wait(priv, CMD_EnableRadio, NULL, 0) ==
4013 CMD_STATUS_REJECTED_RADIO_OFF) {
4014 printk(KERN_INFO "%s: cannot turn the radio on.\n",
4015 dev->name);
4016 return -EIO;
4017 }
4018 }
4019
4020 /* set up enough MIB values to run. */
4021 atmel_set_mib8(priv, Local_Mib_Type, LOCAL_MIB_AUTO_TX_RATE_POS, priv->auto_tx_rate);
4022 atmel_set_mib8(priv, Local_Mib_Type, LOCAL_MIB_TX_PROMISCUOUS_POS, PROM_MODE_OFF);
4023 atmel_set_mib16(priv, Mac_Mib_Type, MAC_MIB_RTS_THRESHOLD_POS, priv->rts_threshold);
4024 atmel_set_mib16(priv, Mac_Mib_Type, MAC_MIB_FRAG_THRESHOLD_POS, priv->frag_threshold);
4025 atmel_set_mib8(priv, Mac_Mib_Type, MAC_MIB_SHORT_RETRY_POS, priv->short_retry);
4026 atmel_set_mib8(priv, Mac_Mib_Type, MAC_MIB_LONG_RETRY_POS, priv->long_retry);
4027 atmel_set_mib8(priv, Local_Mib_Type, LOCAL_MIB_PREAMBLE_TYPE, priv->preamble);
4028 atmel_set_mib(priv, Mac_Address_Mib_Type, MAC_ADDR_MIB_MAC_ADDR_POS,
4029 priv->dev->dev_addr, 6);
4030 atmel_set_mib8(priv, Mac_Mgmt_Mib_Type, MAC_MGMT_MIB_PS_MODE_POS, ACTIVE_MODE);
4031 atmel_set_mib16(priv, Mac_Mgmt_Mib_Type, MAC_MGMT_MIB_LISTEN_INTERVAL_POS, 1);
4032 atmel_set_mib16(priv, Mac_Mgmt_Mib_Type, MAC_MGMT_MIB_BEACON_PER_POS, priv->default_beacon_period);
4033 atmel_set_mib(priv, Phy_Mib_Type, PHY_MIB_RATE_SET_POS, atmel_basic_rates, 4);
4034 atmel_set_mib8(priv, Mac_Mgmt_Mib_Type, MAC_MGMT_MIB_CUR_PRIVACY_POS, priv->wep_is_on);
4035 if (priv->use_wpa)
4036 build_wpa_mib(priv);
4037 else
4038 build_wep_mib(priv);
4039
4040 if (old_state == STATION_STATE_READY) {
4041 union iwreq_data wrqu;
4042
4043 wrqu.data.length = 0;
4044 wrqu.data.flags = 0;
4045 wrqu.ap_addr.sa_family = ARPHRD_ETHER;
4046 eth_zero_addr(wrqu.ap_addr.sa_data);
4047 wireless_send_event(priv->dev, SIOCGIWAP, &wrqu, NULL);
4048 }
4049
4050 return 0;
4051 }
4052
atmel_send_command(struct atmel_private * priv,int command,void * cmd,int cmd_size)4053 static void atmel_send_command(struct atmel_private *priv, int command,
4054 void *cmd, int cmd_size)
4055 {
4056 if (cmd)
4057 atmel_copy_to_card(priv->dev, atmel_co(priv, CMD_BLOCK_PARAMETERS_OFFSET),
4058 cmd, cmd_size);
4059
4060 atmel_wmem8(priv, atmel_co(priv, CMD_BLOCK_COMMAND_OFFSET), command);
4061 atmel_wmem8(priv, atmel_co(priv, CMD_BLOCK_STATUS_OFFSET), 0);
4062 }
4063
atmel_send_command_wait(struct atmel_private * priv,int command,void * cmd,int cmd_size)4064 static int atmel_send_command_wait(struct atmel_private *priv, int command,
4065 void *cmd, int cmd_size)
4066 {
4067 int i, status;
4068
4069 atmel_send_command(priv, command, cmd, cmd_size);
4070
4071 for (i = 5000; i; i--) {
4072 status = atmel_rmem8(priv, atmel_co(priv, CMD_BLOCK_STATUS_OFFSET));
4073 if (status != CMD_STATUS_IDLE &&
4074 status != CMD_STATUS_IN_PROGRESS)
4075 break;
4076 udelay(20);
4077 }
4078
4079 if (i == 0) {
4080 printk(KERN_ALERT "%s: failed to contact MAC.\n", priv->dev->name);
4081 status = CMD_STATUS_HOST_ERROR;
4082 } else {
4083 if (command != CMD_EnableRadio)
4084 status = CMD_STATUS_COMPLETE;
4085 }
4086
4087 return status;
4088 }
4089
atmel_get_mib8(struct atmel_private * priv,u8 type,u8 index)4090 static u8 atmel_get_mib8(struct atmel_private *priv, u8 type, u8 index)
4091 {
4092 struct get_set_mib m;
4093 m.type = type;
4094 m.size = 1;
4095 m.index = index;
4096
4097 atmel_send_command_wait(priv, CMD_Get_MIB_Vars, &m, MIB_HEADER_SIZE + 1);
4098 return atmel_rmem8(priv, atmel_co(priv, CMD_BLOCK_PARAMETERS_OFFSET + MIB_HEADER_SIZE));
4099 }
4100
atmel_set_mib8(struct atmel_private * priv,u8 type,u8 index,u8 data)4101 static void atmel_set_mib8(struct atmel_private *priv, u8 type, u8 index, u8 data)
4102 {
4103 struct get_set_mib m;
4104 m.type = type;
4105 m.size = 1;
4106 m.index = index;
4107 m.data[0] = data;
4108
4109 atmel_send_command_wait(priv, CMD_Set_MIB_Vars, &m, MIB_HEADER_SIZE + 1);
4110 }
4111
atmel_set_mib16(struct atmel_private * priv,u8 type,u8 index,u16 data)4112 static void atmel_set_mib16(struct atmel_private *priv, u8 type, u8 index,
4113 u16 data)
4114 {
4115 struct get_set_mib m;
4116 m.type = type;
4117 m.size = 2;
4118 m.index = index;
4119 m.data[0] = data;
4120 m.data[1] = data >> 8;
4121
4122 atmel_send_command_wait(priv, CMD_Set_MIB_Vars, &m, MIB_HEADER_SIZE + 2);
4123 }
4124
atmel_set_mib(struct atmel_private * priv,u8 type,u8 index,u8 * data,int data_len)4125 static void atmel_set_mib(struct atmel_private *priv, u8 type, u8 index,
4126 u8 *data, int data_len)
4127 {
4128 struct get_set_mib m;
4129 m.type = type;
4130 m.size = data_len;
4131 m.index = index;
4132
4133 if (data_len > MIB_MAX_DATA_BYTES)
4134 printk(KERN_ALERT "%s: MIB buffer too small.\n", priv->dev->name);
4135
4136 memcpy(m.data, data, data_len);
4137 atmel_send_command_wait(priv, CMD_Set_MIB_Vars, &m, MIB_HEADER_SIZE + data_len);
4138 }
4139
atmel_get_mib(struct atmel_private * priv,u8 type,u8 index,u8 * data,int data_len)4140 static void atmel_get_mib(struct atmel_private *priv, u8 type, u8 index,
4141 u8 *data, int data_len)
4142 {
4143 struct get_set_mib m;
4144 m.type = type;
4145 m.size = data_len;
4146 m.index = index;
4147
4148 if (data_len > MIB_MAX_DATA_BYTES)
4149 printk(KERN_ALERT "%s: MIB buffer too small.\n", priv->dev->name);
4150
4151 atmel_send_command_wait(priv, CMD_Get_MIB_Vars, &m, MIB_HEADER_SIZE + data_len);
4152 atmel_copy_to_host(priv->dev, data,
4153 atmel_co(priv, CMD_BLOCK_PARAMETERS_OFFSET + MIB_HEADER_SIZE), data_len);
4154 }
4155
atmel_writeAR(struct net_device * dev,u16 data)4156 static void atmel_writeAR(struct net_device *dev, u16 data)
4157 {
4158 int i;
4159 outw(data, dev->base_addr + AR);
4160 /* Address register appears to need some convincing..... */
4161 for (i = 0; data != inw(dev->base_addr + AR) && i < 10; i++)
4162 outw(data, dev->base_addr + AR);
4163 }
4164
atmel_copy_to_card(struct net_device * dev,u16 dest,const unsigned char * src,u16 len)4165 static void atmel_copy_to_card(struct net_device *dev, u16 dest,
4166 const unsigned char *src, u16 len)
4167 {
4168 int i;
4169 atmel_writeAR(dev, dest);
4170 if (dest % 2) {
4171 atmel_write8(dev, DR, *src);
4172 src++; len--;
4173 }
4174 for (i = len; i > 1 ; i -= 2) {
4175 u8 lb = *src++;
4176 u8 hb = *src++;
4177 atmel_write16(dev, DR, lb | (hb << 8));
4178 }
4179 if (i)
4180 atmel_write8(dev, DR, *src);
4181 }
4182
atmel_copy_to_host(struct net_device * dev,unsigned char * dest,u16 src,u16 len)4183 static void atmel_copy_to_host(struct net_device *dev, unsigned char *dest,
4184 u16 src, u16 len)
4185 {
4186 int i;
4187 atmel_writeAR(dev, src);
4188 if (src % 2) {
4189 *dest = atmel_read8(dev, DR);
4190 dest++; len--;
4191 }
4192 for (i = len; i > 1 ; i -= 2) {
4193 u16 hw = atmel_read16(dev, DR);
4194 *dest++ = hw;
4195 *dest++ = hw >> 8;
4196 }
4197 if (i)
4198 *dest = atmel_read8(dev, DR);
4199 }
4200
atmel_set_gcr(struct net_device * dev,u16 mask)4201 static void atmel_set_gcr(struct net_device *dev, u16 mask)
4202 {
4203 outw(inw(dev->base_addr + GCR) | mask, dev->base_addr + GCR);
4204 }
4205
atmel_clear_gcr(struct net_device * dev,u16 mask)4206 static void atmel_clear_gcr(struct net_device *dev, u16 mask)
4207 {
4208 outw(inw(dev->base_addr + GCR) & ~mask, dev->base_addr + GCR);
4209 }
4210
atmel_lock_mac(struct atmel_private * priv)4211 static int atmel_lock_mac(struct atmel_private *priv)
4212 {
4213 int i, j = 20;
4214 retry:
4215 for (i = 5000; i; i--) {
4216 if (!atmel_rmem8(priv, atmel_hi(priv, IFACE_LOCKOUT_HOST_OFFSET)))
4217 break;
4218 udelay(20);
4219 }
4220
4221 if (!i)
4222 return 0; /* timed out */
4223
4224 atmel_wmem8(priv, atmel_hi(priv, IFACE_LOCKOUT_MAC_OFFSET), 1);
4225 if (atmel_rmem8(priv, atmel_hi(priv, IFACE_LOCKOUT_HOST_OFFSET))) {
4226 atmel_wmem8(priv, atmel_hi(priv, IFACE_LOCKOUT_MAC_OFFSET), 0);
4227 if (!j--)
4228 return 0; /* timed out */
4229 goto retry;
4230 }
4231
4232 return 1;
4233 }
4234
atmel_wmem32(struct atmel_private * priv,u16 pos,u32 data)4235 static void atmel_wmem32(struct atmel_private *priv, u16 pos, u32 data)
4236 {
4237 atmel_writeAR(priv->dev, pos);
4238 atmel_write16(priv->dev, DR, data); /* card is little-endian */
4239 atmel_write16(priv->dev, DR, data >> 16);
4240 }
4241
4242 /***************************************************************************/
4243 /* There follows the source form of the MAC address reading firmware */
4244 /***************************************************************************/
4245 #if 0
4246
4247 /* Copyright 2003 Matthew T. Russotto */
4248 /* But derived from the Atmel 76C502 firmware written by Atmel and */
4249 /* included in "atmel wireless lan drivers" package */
4250 /**
4251 This file is part of net.russotto.AtmelMACFW, hereto referred to
4252 as AtmelMACFW
4253
4254 AtmelMACFW is free software; you can redistribute it and/or modify
4255 it under the terms of the GNU General Public License version 2
4256 as published by the Free Software Foundation.
4257
4258 AtmelMACFW is distributed in the hope that it will be useful,
4259 but WITHOUT ANY WARRANTY; without even the implied warranty of
4260 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
4261 GNU General Public License for more details.
4262
4263 You should have received a copy of the GNU General Public License
4264 along with AtmelMACFW; if not, see <http://www.gnu.org/licenses/>.
4265
4266 ****************************************************************************/
4267 /* This firmware should work on the 76C502 RFMD, RFMD_D, and RFMD_E */
4268 /* It will probably work on the 76C504 and 76C502 RFMD_3COM */
4269 /* It only works on SPI EEPROM versions of the card. */
4270
4271 /* This firmware initializes the SPI controller and clock, reads the MAC */
4272 /* address from the EEPROM into SRAM, and puts the SRAM offset of the MAC */
4273 /* address in MR2, and sets MR3 to 0x10 to indicate it is done */
4274 /* It also puts a complete copy of the EEPROM in SRAM with the offset in */
4275 /* MR4, for investigational purposes (maybe we can determine chip type */
4276 /* from that?) */
4277
4278 .org 0
4279 .set MRBASE, 0x8000000
4280 .set CPSR_INITIAL, 0xD3 /* IRQ/FIQ disabled, ARM mode, Supervisor state */
4281 .set CPSR_USER, 0xD1 /* IRQ/FIQ disabled, ARM mode, USER state */
4282 .set SRAM_BASE, 0x02000000
4283 .set SP_BASE, 0x0F300000
4284 .set UNK_BASE, 0x0F000000 /* Some internal device, but which one? */
4285 .set SPI_CGEN_BASE, 0x0E000000 /* Some internal device, but which one? */
4286 .set UNK3_BASE, 0x02014000 /* Some internal device, but which one? */
4287 .set STACK_BASE, 0x5600
4288 .set SP_SR, 0x10
4289 .set SP_TDRE, 2 /* status register bit -- TDR empty */
4290 .set SP_RDRF, 1 /* status register bit -- RDR full */
4291 .set SP_SWRST, 0x80
4292 .set SP_SPIEN, 0x1
4293 .set SP_CR, 0 /* control register */
4294 .set SP_MR, 4 /* mode register */
4295 .set SP_RDR, 0x08 /* Read Data Register */
4296 .set SP_TDR, 0x0C /* Transmit Data Register */
4297 .set SP_CSR0, 0x30 /* chip select registers */
4298 .set SP_CSR1, 0x34
4299 .set SP_CSR2, 0x38
4300 .set SP_CSR3, 0x3C
4301 .set NVRAM_CMD_RDSR, 5 /* read status register */
4302 .set NVRAM_CMD_READ, 3 /* read data */
4303 .set NVRAM_SR_RDY, 1 /* RDY bit. This bit is inverted */
4304 .set SPI_8CLOCKS, 0xFF /* Writing this to the TDR doesn't do anything to the
4305 serial output, since SO is normally high. But it
4306 does cause 8 clock cycles and thus 8 bits to be
4307 clocked in to the chip. See Atmel's SPI
4308 controller (e.g. AT91M55800) timing and 4K
4309 SPI EEPROM manuals */
4310
4311 .set NVRAM_SCRATCH, 0x02000100 /* arbitrary area for scratchpad memory */
4312 .set NVRAM_IMAGE, 0x02000200
4313 .set NVRAM_LENGTH, 0x0200
4314 .set MAC_ADDRESS_MIB, SRAM_BASE
4315 .set MAC_ADDRESS_LENGTH, 6
4316 .set MAC_BOOT_FLAG, 0x10
4317 .set MR1, 0
4318 .set MR2, 4
4319 .set MR3, 8
4320 .set MR4, 0xC
4321 RESET_VECTOR:
4322 b RESET_HANDLER
4323 UNDEF_VECTOR:
4324 b HALT1
4325 SWI_VECTOR:
4326 b HALT1
4327 IABORT_VECTOR:
4328 b HALT1
4329 DABORT_VECTOR:
4330 RESERVED_VECTOR:
4331 b HALT1
4332 IRQ_VECTOR:
4333 b HALT1
4334 FIQ_VECTOR:
4335 b HALT1
4336 HALT1: b HALT1
4337 RESET_HANDLER:
4338 mov r0, #CPSR_INITIAL
4339 msr CPSR_c, r0 /* This is probably unnecessary */
4340
4341 /* I'm guessing this is initializing clock generator electronics for SPI */
4342 ldr r0, =SPI_CGEN_BASE
4343 mov r1, #0
4344 mov r1, r1, lsl #3
4345 orr r1, r1, #0
4346 str r1, [r0]
4347 ldr r1, [r0, #28]
4348 bic r1, r1, #16
4349 str r1, [r0, #28]
4350 mov r1, #1
4351 str r1, [r0, #8]
4352
4353 ldr r0, =MRBASE
4354 mov r1, #0
4355 strh r1, [r0, #MR1]
4356 strh r1, [r0, #MR2]
4357 strh r1, [r0, #MR3]
4358 strh r1, [r0, #MR4]
4359
4360 mov sp, #STACK_BASE
4361 bl SP_INIT
4362 mov r0, #10
4363 bl DELAY9
4364 bl GET_MAC_ADDR
4365 bl GET_WHOLE_NVRAM
4366 ldr r0, =MRBASE
4367 ldr r1, =MAC_ADDRESS_MIB
4368 strh r1, [r0, #MR2]
4369 ldr r1, =NVRAM_IMAGE
4370 strh r1, [r0, #MR4]
4371 mov r1, #MAC_BOOT_FLAG
4372 strh r1, [r0, #MR3]
4373 HALT2: b HALT2
4374 .func Get_Whole_NVRAM, GET_WHOLE_NVRAM
4375 GET_WHOLE_NVRAM:
4376 stmdb sp!, {lr}
4377 mov r2, #0 /* 0th bytes of NVRAM */
4378 mov r3, #NVRAM_LENGTH
4379 mov r1, #0 /* not used in routine */
4380 ldr r0, =NVRAM_IMAGE
4381 bl NVRAM_XFER
4382 ldmia sp!, {lr}
4383 bx lr
4384 .endfunc
4385
4386 .func Get_MAC_Addr, GET_MAC_ADDR
4387 GET_MAC_ADDR:
4388 stmdb sp!, {lr}
4389 mov r2, #0x120 /* address of MAC Address within NVRAM */
4390 mov r3, #MAC_ADDRESS_LENGTH
4391 mov r1, #0 /* not used in routine */
4392 ldr r0, =MAC_ADDRESS_MIB
4393 bl NVRAM_XFER
4394 ldmia sp!, {lr}
4395 bx lr
4396 .endfunc
4397 .ltorg
4398 .func Delay9, DELAY9
4399 DELAY9:
4400 adds r0, r0, r0, LSL #3 /* r0 = r0 * 9 */
4401 DELAYLOOP:
4402 beq DELAY9_done
4403 subs r0, r0, #1
4404 b DELAYLOOP
4405 DELAY9_done:
4406 bx lr
4407 .endfunc
4408
4409 .func SP_Init, SP_INIT
4410 SP_INIT:
4411 mov r1, #SP_SWRST
4412 ldr r0, =SP_BASE
4413 str r1, [r0, #SP_CR] /* reset the SPI */
4414 mov r1, #0
4415 str r1, [r0, #SP_CR] /* release SPI from reset state */
4416 mov r1, #SP_SPIEN
4417 str r1, [r0, #SP_MR] /* set the SPI to MASTER mode*/
4418 str r1, [r0, #SP_CR] /* enable the SPI */
4419
4420 /* My guess would be this turns on the SPI clock */
4421 ldr r3, =SPI_CGEN_BASE
4422 ldr r1, [r3, #28]
4423 orr r1, r1, #0x2000
4424 str r1, [r3, #28]
4425
4426 ldr r1, =0x2000c01
4427 str r1, [r0, #SP_CSR0]
4428 ldr r1, =0x2000201
4429 str r1, [r0, #SP_CSR1]
4430 str r1, [r0, #SP_CSR2]
4431 str r1, [r0, #SP_CSR3]
4432 ldr r1, [r0, #SP_SR]
4433 ldr r0, [r0, #SP_RDR]
4434 bx lr
4435 .endfunc
4436 .func NVRAM_Init, NVRAM_INIT
4437 NVRAM_INIT:
4438 ldr r1, =SP_BASE
4439 ldr r0, [r1, #SP_RDR]
4440 mov r0, #NVRAM_CMD_RDSR
4441 str r0, [r1, #SP_TDR]
4442 SP_loop1:
4443 ldr r0, [r1, #SP_SR]
4444 tst r0, #SP_TDRE
4445 beq SP_loop1
4446
4447 mov r0, #SPI_8CLOCKS
4448 str r0, [r1, #SP_TDR]
4449 SP_loop2:
4450 ldr r0, [r1, #SP_SR]
4451 tst r0, #SP_TDRE
4452 beq SP_loop2
4453
4454 ldr r0, [r1, #SP_RDR]
4455 SP_loop3:
4456 ldr r0, [r1, #SP_SR]
4457 tst r0, #SP_RDRF
4458 beq SP_loop3
4459
4460 ldr r0, [r1, #SP_RDR]
4461 and r0, r0, #255
4462 bx lr
4463 .endfunc
4464
4465 .func NVRAM_Xfer, NVRAM_XFER
4466 /* r0 = dest address */
4467 /* r1 = not used */
4468 /* r2 = src address within NVRAM */
4469 /* r3 = length */
4470 NVRAM_XFER:
4471 stmdb sp!, {r4, r5, lr}
4472 mov r5, r0 /* save r0 (dest address) */
4473 mov r4, r3 /* save r3 (length) */
4474 mov r0, r2, LSR #5 /* SPI memories put A8 in the command field */
4475 and r0, r0, #8
4476 add r0, r0, #NVRAM_CMD_READ
4477 ldr r1, =NVRAM_SCRATCH
4478 strb r0, [r1, #0] /* save command in NVRAM_SCRATCH[0] */
4479 strb r2, [r1, #1] /* save low byte of source address in NVRAM_SCRATCH[1] */
4480 _local1:
4481 bl NVRAM_INIT
4482 tst r0, #NVRAM_SR_RDY
4483 bne _local1
4484 mov r0, #20
4485 bl DELAY9
4486 mov r2, r4 /* length */
4487 mov r1, r5 /* dest address */
4488 mov r0, #2 /* bytes to transfer in command */
4489 bl NVRAM_XFER2
4490 ldmia sp!, {r4, r5, lr}
4491 bx lr
4492 .endfunc
4493
4494 .func NVRAM_Xfer2, NVRAM_XFER2
4495 NVRAM_XFER2:
4496 stmdb sp!, {r4, r5, r6, lr}
4497 ldr r4, =SP_BASE
4498 mov r3, #0
4499 cmp r0, #0
4500 bls _local2
4501 ldr r5, =NVRAM_SCRATCH
4502 _local4:
4503 ldrb r6, [r5, r3]
4504 str r6, [r4, #SP_TDR]
4505 _local3:
4506 ldr r6, [r4, #SP_SR]
4507 tst r6, #SP_TDRE
4508 beq _local3
4509 add r3, r3, #1
4510 cmp r3, r0 /* r0 is # of bytes to send out (command+addr) */
4511 blo _local4
4512 _local2:
4513 mov r3, #SPI_8CLOCKS
4514 str r3, [r4, #SP_TDR]
4515 ldr r0, [r4, #SP_RDR]
4516 _local5:
4517 ldr r0, [r4, #SP_SR]
4518 tst r0, #SP_RDRF
4519 beq _local5
4520 ldr r0, [r4, #SP_RDR] /* what's this byte? It's the byte read while writing the TDR -- nonsense, because the NVRAM doesn't read and write at the same time */
4521 mov r0, #0
4522 cmp r2, #0 /* r2 is # of bytes to copy in */
4523 bls _local6
4524 _local7:
4525 ldr r5, [r4, #SP_SR]
4526 tst r5, #SP_TDRE
4527 beq _local7
4528 str r3, [r4, #SP_TDR] /* r3 has SPI_8CLOCKS */
4529 _local8:
4530 ldr r5, [r4, #SP_SR]
4531 tst r5, #SP_RDRF
4532 beq _local8
4533 ldr r5, [r4, #SP_RDR] /* but didn't we read this byte above? */
4534 strb r5, [r1], #1 /* postindexed */
4535 add r0, r0, #1
4536 cmp r0, r2
4537 blo _local7 /* since we don't send another address, the NVRAM must be capable of sequential reads */
4538 _local6:
4539 mov r0, #200
4540 bl DELAY9
4541 ldmia sp!, {r4, r5, r6, lr}
4542 bx lr
4543 #endif
4544