blob: 43da93a22e7798c0866cc3abde79fff3da766510 [file] [log] [blame]
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001/*
Ivo van Doorn811aa9c2008-02-03 15:42:53 +01002 Copyright (C) 2004 - 2008 rt2x00 SourceForge Project
Ivo van Doorn95ea3622007-09-25 17:57:13 -07003 <http://rt2x00.serialmonkey.com>
4
5 This program is free software; you can redistribute it and/or modify
6 it under the terms of the GNU General Public License as published by
7 the Free Software Foundation; either version 2 of the License, or
8 (at your option) any later version.
9
10 This program is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 GNU General Public License for more details.
14
15 You should have received a copy of the GNU General Public License
16 along with this program; if not, write to the
17 Free Software Foundation, Inc.,
18 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
19 */
20
21/*
22 Module: rt2500usb
23 Abstract: rt2500usb device specific routines.
24 Supported chipsets: RT2570.
25 */
26
Ivo van Doorn95ea3622007-09-25 17:57:13 -070027#include <linux/delay.h>
28#include <linux/etherdevice.h>
29#include <linux/init.h>
30#include <linux/kernel.h>
31#include <linux/module.h>
32#include <linux/usb.h>
33
34#include "rt2x00.h"
35#include "rt2x00usb.h"
36#include "rt2500usb.h"
37
38/*
39 * Register access.
40 * All access to the CSR registers will go through the methods
41 * rt2500usb_register_read and rt2500usb_register_write.
42 * BBP and RF register require indirect register access,
43 * and use the CSR registers BBPCSR and RFCSR to achieve this.
44 * These indirect registers work with busy bits,
45 * and we will try maximal REGISTER_BUSY_COUNT times to access
46 * the register while taking a REGISTER_BUSY_DELAY us delay
47 * between each attampt. When the busy bit is still set at that time,
48 * the access attempt is considered to have failed,
49 * and we will print an error.
Adam Baker3d823462007-10-27 13:43:29 +020050 * If the usb_cache_mutex is already held then the _lock variants must
51 * be used instead.
Ivo van Doorn95ea3622007-09-25 17:57:13 -070052 */
Adam Baker0e14f6d2007-10-27 13:41:25 +020053static inline void rt2500usb_register_read(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn95ea3622007-09-25 17:57:13 -070054 const unsigned int offset,
55 u16 *value)
56{
57 __le16 reg;
58 rt2x00usb_vendor_request_buff(rt2x00dev, USB_MULTI_READ,
59 USB_VENDOR_REQUEST_IN, offset,
60 &reg, sizeof(u16), REGISTER_TIMEOUT);
61 *value = le16_to_cpu(reg);
62}
63
Adam Baker3d823462007-10-27 13:43:29 +020064static inline void rt2500usb_register_read_lock(struct rt2x00_dev *rt2x00dev,
65 const unsigned int offset,
66 u16 *value)
67{
68 __le16 reg;
69 rt2x00usb_vendor_req_buff_lock(rt2x00dev, USB_MULTI_READ,
70 USB_VENDOR_REQUEST_IN, offset,
71 &reg, sizeof(u16), REGISTER_TIMEOUT);
72 *value = le16_to_cpu(reg);
73}
74
Adam Baker0e14f6d2007-10-27 13:41:25 +020075static inline void rt2500usb_register_multiread(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn95ea3622007-09-25 17:57:13 -070076 const unsigned int offset,
77 void *value, const u16 length)
78{
79 int timeout = REGISTER_TIMEOUT * (length / sizeof(u16));
80 rt2x00usb_vendor_request_buff(rt2x00dev, USB_MULTI_READ,
81 USB_VENDOR_REQUEST_IN, offset,
82 value, length, timeout);
83}
84
Adam Baker0e14f6d2007-10-27 13:41:25 +020085static inline void rt2500usb_register_write(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn95ea3622007-09-25 17:57:13 -070086 const unsigned int offset,
87 u16 value)
88{
89 __le16 reg = cpu_to_le16(value);
90 rt2x00usb_vendor_request_buff(rt2x00dev, USB_MULTI_WRITE,
91 USB_VENDOR_REQUEST_OUT, offset,
92 &reg, sizeof(u16), REGISTER_TIMEOUT);
93}
94
Adam Baker3d823462007-10-27 13:43:29 +020095static inline void rt2500usb_register_write_lock(struct rt2x00_dev *rt2x00dev,
96 const unsigned int offset,
97 u16 value)
98{
99 __le16 reg = cpu_to_le16(value);
100 rt2x00usb_vendor_req_buff_lock(rt2x00dev, USB_MULTI_WRITE,
101 USB_VENDOR_REQUEST_OUT, offset,
102 &reg, sizeof(u16), REGISTER_TIMEOUT);
103}
104
Adam Baker0e14f6d2007-10-27 13:41:25 +0200105static inline void rt2500usb_register_multiwrite(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700106 const unsigned int offset,
107 void *value, const u16 length)
108{
109 int timeout = REGISTER_TIMEOUT * (length / sizeof(u16));
110 rt2x00usb_vendor_request_buff(rt2x00dev, USB_MULTI_WRITE,
111 USB_VENDOR_REQUEST_OUT, offset,
112 value, length, timeout);
113}
114
Adam Baker0e14f6d2007-10-27 13:41:25 +0200115static u16 rt2500usb_bbp_check(struct rt2x00_dev *rt2x00dev)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700116{
117 u16 reg;
118 unsigned int i;
119
120 for (i = 0; i < REGISTER_BUSY_COUNT; i++) {
Adam Baker3d823462007-10-27 13:43:29 +0200121 rt2500usb_register_read_lock(rt2x00dev, PHY_CSR8, &reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700122 if (!rt2x00_get_field16(reg, PHY_CSR8_BUSY))
123 break;
124 udelay(REGISTER_BUSY_DELAY);
125 }
126
127 return reg;
128}
129
Adam Baker0e14f6d2007-10-27 13:41:25 +0200130static void rt2500usb_bbp_write(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700131 const unsigned int word, const u8 value)
132{
133 u16 reg;
134
Adam Baker3d823462007-10-27 13:43:29 +0200135 mutex_lock(&rt2x00dev->usb_cache_mutex);
136
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700137 /*
138 * Wait until the BBP becomes ready.
139 */
140 reg = rt2500usb_bbp_check(rt2x00dev);
141 if (rt2x00_get_field16(reg, PHY_CSR8_BUSY)) {
142 ERROR(rt2x00dev, "PHY_CSR8 register busy. Write failed.\n");
Adam Baker3d823462007-10-27 13:43:29 +0200143 mutex_unlock(&rt2x00dev->usb_cache_mutex);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700144 return;
145 }
146
147 /*
148 * Write the data into the BBP.
149 */
150 reg = 0;
151 rt2x00_set_field16(&reg, PHY_CSR7_DATA, value);
152 rt2x00_set_field16(&reg, PHY_CSR7_REG_ID, word);
153 rt2x00_set_field16(&reg, PHY_CSR7_READ_CONTROL, 0);
154
Adam Baker3d823462007-10-27 13:43:29 +0200155 rt2500usb_register_write_lock(rt2x00dev, PHY_CSR7, reg);
156
157 mutex_unlock(&rt2x00dev->usb_cache_mutex);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700158}
159
Adam Baker0e14f6d2007-10-27 13:41:25 +0200160static void rt2500usb_bbp_read(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700161 const unsigned int word, u8 *value)
162{
163 u16 reg;
164
Adam Baker3d823462007-10-27 13:43:29 +0200165 mutex_lock(&rt2x00dev->usb_cache_mutex);
166
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700167 /*
168 * Wait until the BBP becomes ready.
169 */
170 reg = rt2500usb_bbp_check(rt2x00dev);
171 if (rt2x00_get_field16(reg, PHY_CSR8_BUSY)) {
172 ERROR(rt2x00dev, "PHY_CSR8 register busy. Read failed.\n");
173 return;
174 }
175
176 /*
177 * Write the request into the BBP.
178 */
179 reg = 0;
180 rt2x00_set_field16(&reg, PHY_CSR7_REG_ID, word);
181 rt2x00_set_field16(&reg, PHY_CSR7_READ_CONTROL, 1);
182
Adam Baker3d823462007-10-27 13:43:29 +0200183 rt2500usb_register_write_lock(rt2x00dev, PHY_CSR7, reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700184
185 /*
186 * Wait until the BBP becomes ready.
187 */
188 reg = rt2500usb_bbp_check(rt2x00dev);
189 if (rt2x00_get_field16(reg, PHY_CSR8_BUSY)) {
190 ERROR(rt2x00dev, "PHY_CSR8 register busy. Read failed.\n");
191 *value = 0xff;
Adam Baker3d823462007-10-27 13:43:29 +0200192 mutex_unlock(&rt2x00dev->usb_cache_mutex);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700193 return;
194 }
195
Adam Baker3d823462007-10-27 13:43:29 +0200196 rt2500usb_register_read_lock(rt2x00dev, PHY_CSR7, &reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700197 *value = rt2x00_get_field16(reg, PHY_CSR7_DATA);
Adam Baker3d823462007-10-27 13:43:29 +0200198
199 mutex_unlock(&rt2x00dev->usb_cache_mutex);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700200}
201
Adam Baker0e14f6d2007-10-27 13:41:25 +0200202static void rt2500usb_rf_write(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700203 const unsigned int word, const u32 value)
204{
205 u16 reg;
206 unsigned int i;
207
208 if (!word)
209 return;
210
Adam Baker3d823462007-10-27 13:43:29 +0200211 mutex_lock(&rt2x00dev->usb_cache_mutex);
212
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700213 for (i = 0; i < REGISTER_BUSY_COUNT; i++) {
Adam Baker3d823462007-10-27 13:43:29 +0200214 rt2500usb_register_read_lock(rt2x00dev, PHY_CSR10, &reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700215 if (!rt2x00_get_field16(reg, PHY_CSR10_RF_BUSY))
216 goto rf_write;
217 udelay(REGISTER_BUSY_DELAY);
218 }
219
Adam Baker3d823462007-10-27 13:43:29 +0200220 mutex_unlock(&rt2x00dev->usb_cache_mutex);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700221 ERROR(rt2x00dev, "PHY_CSR10 register busy. Write failed.\n");
222 return;
223
224rf_write:
225 reg = 0;
226 rt2x00_set_field16(&reg, PHY_CSR9_RF_VALUE, value);
Adam Baker3d823462007-10-27 13:43:29 +0200227 rt2500usb_register_write_lock(rt2x00dev, PHY_CSR9, reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700228
229 reg = 0;
230 rt2x00_set_field16(&reg, PHY_CSR10_RF_VALUE, value >> 16);
231 rt2x00_set_field16(&reg, PHY_CSR10_RF_NUMBER_OF_BITS, 20);
232 rt2x00_set_field16(&reg, PHY_CSR10_RF_IF_SELECT, 0);
233 rt2x00_set_field16(&reg, PHY_CSR10_RF_BUSY, 1);
234
Adam Baker3d823462007-10-27 13:43:29 +0200235 rt2500usb_register_write_lock(rt2x00dev, PHY_CSR10, reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700236 rt2x00_rf_write(rt2x00dev, word, value);
Adam Baker3d823462007-10-27 13:43:29 +0200237
238 mutex_unlock(&rt2x00dev->usb_cache_mutex);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700239}
240
241#ifdef CONFIG_RT2X00_LIB_DEBUGFS
242#define CSR_OFFSET(__word) ( CSR_REG_BASE + ((__word) * sizeof(u16)) )
243
Adam Baker0e14f6d2007-10-27 13:41:25 +0200244static void rt2500usb_read_csr(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700245 const unsigned int word, u32 *data)
246{
247 rt2500usb_register_read(rt2x00dev, CSR_OFFSET(word), (u16 *) data);
248}
249
Adam Baker0e14f6d2007-10-27 13:41:25 +0200250static void rt2500usb_write_csr(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700251 const unsigned int word, u32 data)
252{
253 rt2500usb_register_write(rt2x00dev, CSR_OFFSET(word), data);
254}
255
256static const struct rt2x00debug rt2500usb_rt2x00debug = {
257 .owner = THIS_MODULE,
258 .csr = {
259 .read = rt2500usb_read_csr,
260 .write = rt2500usb_write_csr,
261 .word_size = sizeof(u16),
262 .word_count = CSR_REG_SIZE / sizeof(u16),
263 },
264 .eeprom = {
265 .read = rt2x00_eeprom_read,
266 .write = rt2x00_eeprom_write,
267 .word_size = sizeof(u16),
268 .word_count = EEPROM_SIZE / sizeof(u16),
269 },
270 .bbp = {
271 .read = rt2500usb_bbp_read,
272 .write = rt2500usb_bbp_write,
273 .word_size = sizeof(u8),
274 .word_count = BBP_SIZE / sizeof(u8),
275 },
276 .rf = {
277 .read = rt2x00_rf_read,
278 .write = rt2500usb_rf_write,
279 .word_size = sizeof(u32),
280 .word_count = RF_SIZE / sizeof(u32),
281 },
282};
283#endif /* CONFIG_RT2X00_LIB_DEBUGFS */
284
Ivo van Doorna9450b72008-02-03 15:53:40 +0100285#ifdef CONFIG_RT2500USB_LEDS
286static void rt2500usb_led_brightness(struct led_classdev *led_cdev,
287 enum led_brightness brightness)
288{
289 struct rt2x00_led *led =
290 container_of(led_cdev, struct rt2x00_led, led_dev);
291 unsigned int enabled = brightness != LED_OFF;
292 unsigned int activity =
293 led->rt2x00dev->led_flags & LED_SUPPORT_ACTIVITY;
Ivo van Doorna9450b72008-02-03 15:53:40 +0100294
Ivo van Doorn47b10cd2008-02-17 17:35:28 +0100295 if (in_atomic()) {
296 NOTICE(led->rt2x00dev,
Luis Correia61191fb2008-03-09 22:43:58 +0100297 "Ignoring LED brightness command for led %d\n",
298 led->type);
Ivo van Doorn47b10cd2008-02-17 17:35:28 +0100299 return;
300 }
301
Ivo van Doorna9450b72008-02-03 15:53:40 +0100302 if (led->type == LED_TYPE_RADIO || led->type == LED_TYPE_ASSOC) {
Ivo van Doorn3b640f22008-02-03 15:54:11 +0100303 rt2x00_set_field16(&led->rt2x00dev->led_mcu_reg,
304 MAC_CSR20_LINK, enabled);
305 rt2x00_set_field16(&led->rt2x00dev->led_mcu_reg,
306 MAC_CSR20_ACTIVITY, enabled && activity);
Ivo van Doorna9450b72008-02-03 15:53:40 +0100307 }
308
Ivo van Doorn47b10cd2008-02-17 17:35:28 +0100309 rt2500usb_register_write(led->rt2x00dev, MAC_CSR20,
310 led->rt2x00dev->led_mcu_reg);
Ivo van Doorna9450b72008-02-03 15:53:40 +0100311}
312#else
313#define rt2500usb_led_brightness NULL
314#endif /* CONFIG_RT2500USB_LEDS */
315
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700316/*
317 * Configuration handlers.
318 */
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100319static void rt2500usb_config_intf(struct rt2x00_dev *rt2x00dev,
320 struct rt2x00_intf *intf,
321 struct rt2x00intf_conf *conf,
322 const unsigned int flags)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700323{
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100324 unsigned int bcn_preload;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700325 u16 reg;
326
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100327 if (flags & CONFIG_UPDATE_TYPE) {
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100328 /*
329 * Enable beacon config
330 */
331 bcn_preload = PREAMBLE + get_duration(IEEE80211_HEADER, 20);
332 rt2500usb_register_read(rt2x00dev, TXRX_CSR20, &reg);
333 rt2x00_set_field16(&reg, TXRX_CSR20_OFFSET, bcn_preload >> 6);
334 rt2x00_set_field16(&reg, TXRX_CSR20_BCN_EXPECT_WINDOW,
335 2 * (conf->type != IEEE80211_IF_TYPE_STA));
336 rt2500usb_register_write(rt2x00dev, TXRX_CSR20, reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700337
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100338 /*
339 * Enable synchronisation.
340 */
341 rt2500usb_register_read(rt2x00dev, TXRX_CSR18, &reg);
342 rt2x00_set_field16(&reg, TXRX_CSR18_OFFSET, 0);
343 rt2500usb_register_write(rt2x00dev, TXRX_CSR18, reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700344
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100345 rt2500usb_register_read(rt2x00dev, TXRX_CSR19, &reg);
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100346 rt2x00_set_field16(&reg, TXRX_CSR19_TSF_SYNC, conf->sync);
347 rt2500usb_register_write(rt2x00dev, TXRX_CSR19, reg);
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200348 }
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700349
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100350 if (flags & CONFIG_UPDATE_MAC)
351 rt2500usb_register_multiwrite(rt2x00dev, MAC_CSR2, conf->mac,
352 (3 * sizeof(__le16)));
353
354 if (flags & CONFIG_UPDATE_BSSID)
355 rt2500usb_register_multiwrite(rt2x00dev, MAC_CSR5, conf->bssid,
356 (3 * sizeof(__le16)));
357}
358
Ivo van Doorn72810372008-03-09 22:46:18 +0100359static int rt2500usb_config_erp(struct rt2x00_dev *rt2x00dev,
360 struct rt2x00lib_erp *erp)
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100361{
362 u16 reg;
363
364 /*
365 * When in atomic context, we should let rt2x00lib
366 * try this configuration again later.
367 */
368 if (in_atomic())
369 return -EAGAIN;
370
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700371 rt2500usb_register_read(rt2x00dev, TXRX_CSR1, &reg);
Ivo van Doorn72810372008-03-09 22:46:18 +0100372 rt2x00_set_field16(&reg, TXRX_CSR1_ACK_TIMEOUT, erp->ack_timeout);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700373 rt2500usb_register_write(rt2x00dev, TXRX_CSR1, reg);
374
375 rt2500usb_register_read(rt2x00dev, TXRX_CSR10, &reg);
Ivo van Doorn4f5af6e2007-10-06 14:16:30 +0200376 rt2x00_set_field16(&reg, TXRX_CSR10_AUTORESPOND_PREAMBLE,
Ivo van Doorn72810372008-03-09 22:46:18 +0100377 !!erp->short_preamble);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700378 rt2500usb_register_write(rt2x00dev, TXRX_CSR10, reg);
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100379
380 return 0;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700381}
382
383static void rt2500usb_config_phymode(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200384 const int basic_rate_mask)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700385{
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200386 rt2500usb_register_write(rt2x00dev, TXRX_CSR11, basic_rate_mask);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700387}
388
389static void rt2500usb_config_channel(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200390 struct rf_channel *rf, const int txpower)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700391{
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700392 /*
393 * Set TXpower.
394 */
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200395 rt2x00_set_field32(&rf->rf3, RF3_TXPOWER, TXPOWER_TO_DEV(txpower));
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700396
397 /*
398 * For RT2525E we should first set the channel to half band higher.
399 */
400 if (rt2x00_rf(&rt2x00dev->chip, RF2525E)) {
401 static const u32 vals[] = {
402 0x000008aa, 0x000008ae, 0x000008ae, 0x000008b2,
403 0x000008b2, 0x000008b6, 0x000008b6, 0x000008ba,
404 0x000008ba, 0x000008be, 0x000008b7, 0x00000902,
405 0x00000902, 0x00000906
406 };
407
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200408 rt2500usb_rf_write(rt2x00dev, 2, vals[rf->channel - 1]);
409 if (rf->rf4)
410 rt2500usb_rf_write(rt2x00dev, 4, rf->rf4);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700411 }
412
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200413 rt2500usb_rf_write(rt2x00dev, 1, rf->rf1);
414 rt2500usb_rf_write(rt2x00dev, 2, rf->rf2);
415 rt2500usb_rf_write(rt2x00dev, 3, rf->rf3);
416 if (rf->rf4)
417 rt2500usb_rf_write(rt2x00dev, 4, rf->rf4);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700418}
419
420static void rt2500usb_config_txpower(struct rt2x00_dev *rt2x00dev,
421 const int txpower)
422{
423 u32 rf3;
424
425 rt2x00_rf_read(rt2x00dev, 3, &rf3);
426 rt2x00_set_field32(&rf3, RF3_TXPOWER, TXPOWER_TO_DEV(txpower));
427 rt2500usb_rf_write(rt2x00dev, 3, rf3);
428}
429
430static void rt2500usb_config_antenna(struct rt2x00_dev *rt2x00dev,
Ivo van Doornaddc81b2007-10-13 16:26:23 +0200431 struct antenna_setup *ant)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700432{
433 u8 r2;
434 u8 r14;
435 u16 csr5;
436 u16 csr6;
437
Ivo van Doorna4fe07d2008-03-09 22:45:21 +0100438 /*
439 * We should never come here because rt2x00lib is supposed
440 * to catch this and send us the correct antenna explicitely.
441 */
442 BUG_ON(ant->rx == ANTENNA_SW_DIVERSITY ||
443 ant->tx == ANTENNA_SW_DIVERSITY);
444
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700445 rt2500usb_bbp_read(rt2x00dev, 2, &r2);
446 rt2500usb_bbp_read(rt2x00dev, 14, &r14);
447 rt2500usb_register_read(rt2x00dev, PHY_CSR5, &csr5);
448 rt2500usb_register_read(rt2x00dev, PHY_CSR6, &csr6);
449
450 /*
451 * Configure the TX antenna.
452 */
Ivo van Doornaddc81b2007-10-13 16:26:23 +0200453 switch (ant->tx) {
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700454 case ANTENNA_HW_DIVERSITY:
455 rt2x00_set_field8(&r2, BBP_R2_TX_ANTENNA, 1);
456 rt2x00_set_field16(&csr5, PHY_CSR5_CCK, 1);
457 rt2x00_set_field16(&csr6, PHY_CSR6_OFDM, 1);
458 break;
459 case ANTENNA_A:
460 rt2x00_set_field8(&r2, BBP_R2_TX_ANTENNA, 0);
461 rt2x00_set_field16(&csr5, PHY_CSR5_CCK, 0);
462 rt2x00_set_field16(&csr6, PHY_CSR6_OFDM, 0);
463 break;
464 case ANTENNA_B:
Ivo van Doorna4fe07d2008-03-09 22:45:21 +0100465 default:
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700466 rt2x00_set_field8(&r2, BBP_R2_TX_ANTENNA, 2);
467 rt2x00_set_field16(&csr5, PHY_CSR5_CCK, 2);
468 rt2x00_set_field16(&csr6, PHY_CSR6_OFDM, 2);
469 break;
470 }
471
472 /*
473 * Configure the RX antenna.
474 */
Ivo van Doornaddc81b2007-10-13 16:26:23 +0200475 switch (ant->rx) {
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700476 case ANTENNA_HW_DIVERSITY:
477 rt2x00_set_field8(&r14, BBP_R14_RX_ANTENNA, 1);
478 break;
479 case ANTENNA_A:
480 rt2x00_set_field8(&r14, BBP_R14_RX_ANTENNA, 0);
481 break;
482 case ANTENNA_B:
Ivo van Doorna4fe07d2008-03-09 22:45:21 +0100483 default:
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700484 rt2x00_set_field8(&r14, BBP_R14_RX_ANTENNA, 2);
485 break;
486 }
487
488 /*
489 * RT2525E and RT5222 need to flip TX I/Q
490 */
491 if (rt2x00_rf(&rt2x00dev->chip, RF2525E) ||
492 rt2x00_rf(&rt2x00dev->chip, RF5222)) {
493 rt2x00_set_field8(&r2, BBP_R2_TX_IQ_FLIP, 1);
494 rt2x00_set_field16(&csr5, PHY_CSR5_CCK_FLIP, 1);
495 rt2x00_set_field16(&csr6, PHY_CSR6_OFDM_FLIP, 1);
496
497 /*
498 * RT2525E does not need RX I/Q Flip.
499 */
500 if (rt2x00_rf(&rt2x00dev->chip, RF2525E))
501 rt2x00_set_field8(&r14, BBP_R14_RX_IQ_FLIP, 0);
502 } else {
503 rt2x00_set_field16(&csr5, PHY_CSR5_CCK_FLIP, 0);
504 rt2x00_set_field16(&csr6, PHY_CSR6_OFDM_FLIP, 0);
505 }
506
507 rt2500usb_bbp_write(rt2x00dev, 2, r2);
508 rt2500usb_bbp_write(rt2x00dev, 14, r14);
509 rt2500usb_register_write(rt2x00dev, PHY_CSR5, csr5);
510 rt2500usb_register_write(rt2x00dev, PHY_CSR6, csr6);
511}
512
513static void rt2500usb_config_duration(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200514 struct rt2x00lib_conf *libconf)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700515{
516 u16 reg;
517
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200518 rt2500usb_register_write(rt2x00dev, MAC_CSR10, libconf->slot_time);
Ivo van Doornf5507ce2008-02-03 15:51:13 +0100519 rt2500usb_register_write(rt2x00dev, MAC_CSR11, libconf->sifs);
520 rt2500usb_register_write(rt2x00dev, MAC_CSR12, libconf->eifs);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700521
522 rt2500usb_register_read(rt2x00dev, TXRX_CSR18, &reg);
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200523 rt2x00_set_field16(&reg, TXRX_CSR18_INTERVAL,
524 libconf->conf->beacon_int * 4);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700525 rt2500usb_register_write(rt2x00dev, TXRX_CSR18, reg);
526}
527
528static void rt2500usb_config(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100529 struct rt2x00lib_conf *libconf,
530 const unsigned int flags)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700531{
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700532 if (flags & CONFIG_UPDATE_PHYMODE)
Ivo van Doornf5507ce2008-02-03 15:51:13 +0100533 rt2500usb_config_phymode(rt2x00dev, libconf->basic_rates);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700534 if (flags & CONFIG_UPDATE_CHANNEL)
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200535 rt2500usb_config_channel(rt2x00dev, &libconf->rf,
536 libconf->conf->power_level);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700537 if ((flags & CONFIG_UPDATE_TXPOWER) && !(flags & CONFIG_UPDATE_CHANNEL))
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200538 rt2500usb_config_txpower(rt2x00dev,
539 libconf->conf->power_level);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700540 if (flags & CONFIG_UPDATE_ANTENNA)
Ivo van Doornaddc81b2007-10-13 16:26:23 +0200541 rt2500usb_config_antenna(rt2x00dev, &libconf->ant);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700542 if (flags & (CONFIG_UPDATE_SLOT_TIME | CONFIG_UPDATE_BEACON_INT))
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200543 rt2500usb_config_duration(rt2x00dev, libconf);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700544}
545
546/*
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700547 * Link tuning
548 */
Ivo van Doornebcf26d2007-10-13 16:26:12 +0200549static void rt2500usb_link_stats(struct rt2x00_dev *rt2x00dev,
550 struct link_qual *qual)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700551{
552 u16 reg;
553
554 /*
555 * Update FCS error count from register.
556 */
557 rt2500usb_register_read(rt2x00dev, STA_CSR0, &reg);
Ivo van Doornebcf26d2007-10-13 16:26:12 +0200558 qual->rx_failed = rt2x00_get_field16(reg, STA_CSR0_FCS_ERROR);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700559
560 /*
561 * Update False CCA count from register.
562 */
563 rt2500usb_register_read(rt2x00dev, STA_CSR3, &reg);
Ivo van Doornebcf26d2007-10-13 16:26:12 +0200564 qual->false_cca = rt2x00_get_field16(reg, STA_CSR3_FALSE_CCA_ERROR);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700565}
566
567static void rt2500usb_reset_tuner(struct rt2x00_dev *rt2x00dev)
568{
569 u16 eeprom;
570 u16 value;
571
572 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE_R24, &eeprom);
573 value = rt2x00_get_field16(eeprom, EEPROM_BBPTUNE_R24_LOW);
574 rt2500usb_bbp_write(rt2x00dev, 24, value);
575
576 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE_R25, &eeprom);
577 value = rt2x00_get_field16(eeprom, EEPROM_BBPTUNE_R25_LOW);
578 rt2500usb_bbp_write(rt2x00dev, 25, value);
579
580 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE_R61, &eeprom);
581 value = rt2x00_get_field16(eeprom, EEPROM_BBPTUNE_R61_LOW);
582 rt2500usb_bbp_write(rt2x00dev, 61, value);
583
584 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE_VGC, &eeprom);
585 value = rt2x00_get_field16(eeprom, EEPROM_BBPTUNE_VGCUPPER);
586 rt2500usb_bbp_write(rt2x00dev, 17, value);
587
588 rt2x00dev->link.vgc_level = value;
589}
590
591static void rt2500usb_link_tuner(struct rt2x00_dev *rt2x00dev)
592{
593 int rssi = rt2x00_get_link_rssi(&rt2x00dev->link);
594 u16 bbp_thresh;
595 u16 vgc_bound;
596 u16 sens;
597 u16 r24;
598 u16 r25;
599 u16 r61;
600 u16 r17_sens;
601 u8 r17;
602 u8 up_bound;
603 u8 low_bound;
604
605 /*
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100606 * Read current r17 value, as well as the sensitivity values
607 * for the r17 register.
608 */
609 rt2500usb_bbp_read(rt2x00dev, 17, &r17);
610 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE_R17, &r17_sens);
611
612 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE_VGC, &vgc_bound);
613 up_bound = rt2x00_get_field16(vgc_bound, EEPROM_BBPTUNE_VGCUPPER);
614 low_bound = rt2x00_get_field16(vgc_bound, EEPROM_BBPTUNE_VGCLOWER);
615
616 /*
617 * If we are not associated, we should go straight to the
618 * dynamic CCA tuning.
619 */
620 if (!rt2x00dev->intf_associated)
621 goto dynamic_cca_tune;
622
623 /*
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700624 * Determine the BBP tuning threshold and correctly
625 * set BBP 24, 25 and 61.
626 */
627 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE, &bbp_thresh);
628 bbp_thresh = rt2x00_get_field16(bbp_thresh, EEPROM_BBPTUNE_THRESHOLD);
629
630 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE_R24, &r24);
631 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE_R25, &r25);
632 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE_R61, &r61);
633
634 if ((rssi + bbp_thresh) > 0) {
635 r24 = rt2x00_get_field16(r24, EEPROM_BBPTUNE_R24_HIGH);
636 r25 = rt2x00_get_field16(r25, EEPROM_BBPTUNE_R25_HIGH);
637 r61 = rt2x00_get_field16(r61, EEPROM_BBPTUNE_R61_HIGH);
638 } else {
639 r24 = rt2x00_get_field16(r24, EEPROM_BBPTUNE_R24_LOW);
640 r25 = rt2x00_get_field16(r25, EEPROM_BBPTUNE_R25_LOW);
641 r61 = rt2x00_get_field16(r61, EEPROM_BBPTUNE_R61_LOW);
642 }
643
644 rt2500usb_bbp_write(rt2x00dev, 24, r24);
645 rt2500usb_bbp_write(rt2x00dev, 25, r25);
646 rt2500usb_bbp_write(rt2x00dev, 61, r61);
647
648 /*
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700649 * A too low RSSI will cause too much false CCA which will
650 * then corrupt the R17 tuning. To remidy this the tuning should
651 * be stopped (While making sure the R17 value will not exceed limits)
652 */
653 if (rssi >= -40) {
654 if (r17 != 0x60)
655 rt2500usb_bbp_write(rt2x00dev, 17, 0x60);
656 return;
657 }
658
659 /*
660 * Special big-R17 for short distance
661 */
662 if (rssi >= -58) {
663 sens = rt2x00_get_field16(r17_sens, EEPROM_BBPTUNE_R17_LOW);
664 if (r17 != sens)
665 rt2500usb_bbp_write(rt2x00dev, 17, sens);
666 return;
667 }
668
669 /*
670 * Special mid-R17 for middle distance
671 */
672 if (rssi >= -74) {
673 sens = rt2x00_get_field16(r17_sens, EEPROM_BBPTUNE_R17_HIGH);
674 if (r17 != sens)
675 rt2500usb_bbp_write(rt2x00dev, 17, sens);
676 return;
677 }
678
679 /*
680 * Leave short or middle distance condition, restore r17
681 * to the dynamic tuning range.
682 */
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700683 low_bound = 0x32;
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100684 if (rssi < -77)
685 up_bound -= (-77 - rssi);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700686
687 if (up_bound < low_bound)
688 up_bound = low_bound;
689
690 if (r17 > up_bound) {
691 rt2500usb_bbp_write(rt2x00dev, 17, up_bound);
692 rt2x00dev->link.vgc_level = up_bound;
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100693 return;
694 }
695
696dynamic_cca_tune:
697
698 /*
699 * R17 is inside the dynamic tuning range,
700 * start tuning the link based on the false cca counter.
701 */
702 if (rt2x00dev->link.qual.false_cca > 512 && r17 < up_bound) {
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700703 rt2500usb_bbp_write(rt2x00dev, 17, ++r17);
704 rt2x00dev->link.vgc_level = r17;
Ivo van Doornebcf26d2007-10-13 16:26:12 +0200705 } else if (rt2x00dev->link.qual.false_cca < 100 && r17 > low_bound) {
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700706 rt2500usb_bbp_write(rt2x00dev, 17, --r17);
707 rt2x00dev->link.vgc_level = r17;
708 }
709}
710
711/*
712 * Initialization functions.
713 */
714static int rt2500usb_init_registers(struct rt2x00_dev *rt2x00dev)
715{
716 u16 reg;
717
718 rt2x00usb_vendor_request_sw(rt2x00dev, USB_DEVICE_MODE, 0x0001,
719 USB_MODE_TEST, REGISTER_TIMEOUT);
720 rt2x00usb_vendor_request_sw(rt2x00dev, USB_SINGLE_WRITE, 0x0308,
721 0x00f0, REGISTER_TIMEOUT);
722
723 rt2500usb_register_read(rt2x00dev, TXRX_CSR2, &reg);
724 rt2x00_set_field16(&reg, TXRX_CSR2_DISABLE_RX, 1);
725 rt2500usb_register_write(rt2x00dev, TXRX_CSR2, reg);
726
727 rt2500usb_register_write(rt2x00dev, MAC_CSR13, 0x1111);
728 rt2500usb_register_write(rt2x00dev, MAC_CSR14, 0x1e11);
729
730 rt2500usb_register_read(rt2x00dev, MAC_CSR1, &reg);
731 rt2x00_set_field16(&reg, MAC_CSR1_SOFT_RESET, 1);
732 rt2x00_set_field16(&reg, MAC_CSR1_BBP_RESET, 1);
733 rt2x00_set_field16(&reg, MAC_CSR1_HOST_READY, 0);
734 rt2500usb_register_write(rt2x00dev, MAC_CSR1, reg);
735
736 rt2500usb_register_read(rt2x00dev, MAC_CSR1, &reg);
737 rt2x00_set_field16(&reg, MAC_CSR1_SOFT_RESET, 0);
738 rt2x00_set_field16(&reg, MAC_CSR1_BBP_RESET, 0);
739 rt2x00_set_field16(&reg, MAC_CSR1_HOST_READY, 0);
740 rt2500usb_register_write(rt2x00dev, MAC_CSR1, reg);
741
Ivo van Doorna9450b72008-02-03 15:53:40 +0100742 rt2500usb_register_read(rt2x00dev, MAC_CSR21, &reg);
743 rt2x00_set_field16(&reg, MAC_CSR21_ON_PERIOD, 70);
744 rt2x00_set_field16(&reg, MAC_CSR21_OFF_PERIOD, 30);
745 rt2500usb_register_write(rt2x00dev, MAC_CSR21, reg);
746
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700747 rt2500usb_register_read(rt2x00dev, TXRX_CSR5, &reg);
748 rt2x00_set_field16(&reg, TXRX_CSR5_BBP_ID0, 13);
749 rt2x00_set_field16(&reg, TXRX_CSR5_BBP_ID0_VALID, 1);
750 rt2x00_set_field16(&reg, TXRX_CSR5_BBP_ID1, 12);
751 rt2x00_set_field16(&reg, TXRX_CSR5_BBP_ID1_VALID, 1);
752 rt2500usb_register_write(rt2x00dev, TXRX_CSR5, reg);
753
754 rt2500usb_register_read(rt2x00dev, TXRX_CSR6, &reg);
755 rt2x00_set_field16(&reg, TXRX_CSR6_BBP_ID0, 10);
756 rt2x00_set_field16(&reg, TXRX_CSR6_BBP_ID0_VALID, 1);
757 rt2x00_set_field16(&reg, TXRX_CSR6_BBP_ID1, 11);
758 rt2x00_set_field16(&reg, TXRX_CSR6_BBP_ID1_VALID, 1);
759 rt2500usb_register_write(rt2x00dev, TXRX_CSR6, reg);
760
761 rt2500usb_register_read(rt2x00dev, TXRX_CSR7, &reg);
762 rt2x00_set_field16(&reg, TXRX_CSR7_BBP_ID0, 7);
763 rt2x00_set_field16(&reg, TXRX_CSR7_BBP_ID0_VALID, 1);
764 rt2x00_set_field16(&reg, TXRX_CSR7_BBP_ID1, 6);
765 rt2x00_set_field16(&reg, TXRX_CSR7_BBP_ID1_VALID, 1);
766 rt2500usb_register_write(rt2x00dev, TXRX_CSR7, reg);
767
768 rt2500usb_register_read(rt2x00dev, TXRX_CSR8, &reg);
769 rt2x00_set_field16(&reg, TXRX_CSR8_BBP_ID0, 5);
770 rt2x00_set_field16(&reg, TXRX_CSR8_BBP_ID0_VALID, 1);
771 rt2x00_set_field16(&reg, TXRX_CSR8_BBP_ID1, 0);
772 rt2x00_set_field16(&reg, TXRX_CSR8_BBP_ID1_VALID, 0);
773 rt2500usb_register_write(rt2x00dev, TXRX_CSR8, reg);
774
775 rt2500usb_register_write(rt2x00dev, TXRX_CSR21, 0xe78f);
776 rt2500usb_register_write(rt2x00dev, MAC_CSR9, 0xff1d);
777
778 if (rt2x00dev->ops->lib->set_device_state(rt2x00dev, STATE_AWAKE))
779 return -EBUSY;
780
781 rt2500usb_register_read(rt2x00dev, MAC_CSR1, &reg);
782 rt2x00_set_field16(&reg, MAC_CSR1_SOFT_RESET, 0);
783 rt2x00_set_field16(&reg, MAC_CSR1_BBP_RESET, 0);
784 rt2x00_set_field16(&reg, MAC_CSR1_HOST_READY, 1);
785 rt2500usb_register_write(rt2x00dev, MAC_CSR1, reg);
786
Ivo van Doorn755a9572007-11-12 15:02:22 +0100787 if (rt2x00_rev(&rt2x00dev->chip) >= RT2570_VERSION_C) {
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700788 rt2500usb_register_read(rt2x00dev, PHY_CSR2, &reg);
Ivo van Doornddc827f2007-10-13 16:26:42 +0200789 rt2x00_set_field16(&reg, PHY_CSR2_LNA, 0);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700790 } else {
Ivo van Doornddc827f2007-10-13 16:26:42 +0200791 reg = 0;
792 rt2x00_set_field16(&reg, PHY_CSR2_LNA, 1);
793 rt2x00_set_field16(&reg, PHY_CSR2_LNA_MODE, 3);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700794 }
795 rt2500usb_register_write(rt2x00dev, PHY_CSR2, reg);
796
797 rt2500usb_register_write(rt2x00dev, MAC_CSR11, 0x0002);
798 rt2500usb_register_write(rt2x00dev, MAC_CSR22, 0x0053);
799 rt2500usb_register_write(rt2x00dev, MAC_CSR15, 0x01ee);
800 rt2500usb_register_write(rt2x00dev, MAC_CSR16, 0x0000);
801
802 rt2500usb_register_read(rt2x00dev, MAC_CSR8, &reg);
803 rt2x00_set_field16(&reg, MAC_CSR8_MAX_FRAME_UNIT,
804 rt2x00dev->rx->data_size);
805 rt2500usb_register_write(rt2x00dev, MAC_CSR8, reg);
806
807 rt2500usb_register_read(rt2x00dev, TXRX_CSR0, &reg);
808 rt2x00_set_field16(&reg, TXRX_CSR0_IV_OFFSET, IEEE80211_HEADER);
809 rt2x00_set_field16(&reg, TXRX_CSR0_KEY_ID, 0xff);
810 rt2500usb_register_write(rt2x00dev, TXRX_CSR0, reg);
811
812 rt2500usb_register_read(rt2x00dev, MAC_CSR18, &reg);
813 rt2x00_set_field16(&reg, MAC_CSR18_DELAY_AFTER_BEACON, 90);
814 rt2500usb_register_write(rt2x00dev, MAC_CSR18, reg);
815
816 rt2500usb_register_read(rt2x00dev, PHY_CSR4, &reg);
817 rt2x00_set_field16(&reg, PHY_CSR4_LOW_RF_LE, 1);
818 rt2500usb_register_write(rt2x00dev, PHY_CSR4, reg);
819
820 rt2500usb_register_read(rt2x00dev, TXRX_CSR1, &reg);
821 rt2x00_set_field16(&reg, TXRX_CSR1_AUTO_SEQUENCE, 1);
822 rt2500usb_register_write(rt2x00dev, TXRX_CSR1, reg);
823
824 return 0;
825}
826
827static int rt2500usb_init_bbp(struct rt2x00_dev *rt2x00dev)
828{
829 unsigned int i;
830 u16 eeprom;
831 u8 value;
832 u8 reg_id;
833
834 for (i = 0; i < REGISTER_BUSY_COUNT; i++) {
835 rt2500usb_bbp_read(rt2x00dev, 0, &value);
836 if ((value != 0xff) && (value != 0x00))
837 goto continue_csr_init;
838 NOTICE(rt2x00dev, "Waiting for BBP register.\n");
839 udelay(REGISTER_BUSY_DELAY);
840 }
841
842 ERROR(rt2x00dev, "BBP register access failed, aborting.\n");
843 return -EACCES;
844
845continue_csr_init:
846 rt2500usb_bbp_write(rt2x00dev, 3, 0x02);
847 rt2500usb_bbp_write(rt2x00dev, 4, 0x19);
848 rt2500usb_bbp_write(rt2x00dev, 14, 0x1c);
849 rt2500usb_bbp_write(rt2x00dev, 15, 0x30);
850 rt2500usb_bbp_write(rt2x00dev, 16, 0xac);
851 rt2500usb_bbp_write(rt2x00dev, 18, 0x18);
852 rt2500usb_bbp_write(rt2x00dev, 19, 0xff);
853 rt2500usb_bbp_write(rt2x00dev, 20, 0x1e);
854 rt2500usb_bbp_write(rt2x00dev, 21, 0x08);
855 rt2500usb_bbp_write(rt2x00dev, 22, 0x08);
856 rt2500usb_bbp_write(rt2x00dev, 23, 0x08);
857 rt2500usb_bbp_write(rt2x00dev, 24, 0x80);
858 rt2500usb_bbp_write(rt2x00dev, 25, 0x50);
859 rt2500usb_bbp_write(rt2x00dev, 26, 0x08);
860 rt2500usb_bbp_write(rt2x00dev, 27, 0x23);
861 rt2500usb_bbp_write(rt2x00dev, 30, 0x10);
862 rt2500usb_bbp_write(rt2x00dev, 31, 0x2b);
863 rt2500usb_bbp_write(rt2x00dev, 32, 0xb9);
864 rt2500usb_bbp_write(rt2x00dev, 34, 0x12);
865 rt2500usb_bbp_write(rt2x00dev, 35, 0x50);
866 rt2500usb_bbp_write(rt2x00dev, 39, 0xc4);
867 rt2500usb_bbp_write(rt2x00dev, 40, 0x02);
868 rt2500usb_bbp_write(rt2x00dev, 41, 0x60);
869 rt2500usb_bbp_write(rt2x00dev, 53, 0x10);
870 rt2500usb_bbp_write(rt2x00dev, 54, 0x18);
871 rt2500usb_bbp_write(rt2x00dev, 56, 0x08);
872 rt2500usb_bbp_write(rt2x00dev, 57, 0x10);
873 rt2500usb_bbp_write(rt2x00dev, 58, 0x08);
874 rt2500usb_bbp_write(rt2x00dev, 61, 0x60);
875 rt2500usb_bbp_write(rt2x00dev, 62, 0x10);
876 rt2500usb_bbp_write(rt2x00dev, 75, 0xff);
877
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700878 for (i = 0; i < EEPROM_BBP_SIZE; i++) {
879 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBP_START + i, &eeprom);
880
881 if (eeprom != 0xffff && eeprom != 0x0000) {
882 reg_id = rt2x00_get_field16(eeprom, EEPROM_BBP_REG_ID);
883 value = rt2x00_get_field16(eeprom, EEPROM_BBP_VALUE);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700884 rt2500usb_bbp_write(rt2x00dev, reg_id, value);
885 }
886 }
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700887
888 return 0;
889}
890
891/*
892 * Device state switch handlers.
893 */
894static void rt2500usb_toggle_rx(struct rt2x00_dev *rt2x00dev,
895 enum dev_state state)
896{
897 u16 reg;
898
899 rt2500usb_register_read(rt2x00dev, TXRX_CSR2, &reg);
900 rt2x00_set_field16(&reg, TXRX_CSR2_DISABLE_RX,
901 state == STATE_RADIO_RX_OFF);
902 rt2500usb_register_write(rt2x00dev, TXRX_CSR2, reg);
903}
904
905static int rt2500usb_enable_radio(struct rt2x00_dev *rt2x00dev)
906{
907 /*
908 * Initialize all registers.
909 */
910 if (rt2500usb_init_registers(rt2x00dev) ||
911 rt2500usb_init_bbp(rt2x00dev)) {
912 ERROR(rt2x00dev, "Register initialization failed.\n");
913 return -EIO;
914 }
915
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700916 return 0;
917}
918
919static void rt2500usb_disable_radio(struct rt2x00_dev *rt2x00dev)
920{
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700921 rt2500usb_register_write(rt2x00dev, MAC_CSR13, 0x2121);
922 rt2500usb_register_write(rt2x00dev, MAC_CSR14, 0x2121);
923
924 /*
925 * Disable synchronisation.
926 */
927 rt2500usb_register_write(rt2x00dev, TXRX_CSR19, 0);
928
929 rt2x00usb_disable_radio(rt2x00dev);
930}
931
932static int rt2500usb_set_state(struct rt2x00_dev *rt2x00dev,
933 enum dev_state state)
934{
935 u16 reg;
936 u16 reg2;
937 unsigned int i;
938 char put_to_sleep;
939 char bbp_state;
940 char rf_state;
941
942 put_to_sleep = (state != STATE_AWAKE);
943
944 reg = 0;
945 rt2x00_set_field16(&reg, MAC_CSR17_BBP_DESIRE_STATE, state);
946 rt2x00_set_field16(&reg, MAC_CSR17_RF_DESIRE_STATE, state);
947 rt2x00_set_field16(&reg, MAC_CSR17_PUT_TO_SLEEP, put_to_sleep);
948 rt2500usb_register_write(rt2x00dev, MAC_CSR17, reg);
949 rt2x00_set_field16(&reg, MAC_CSR17_SET_STATE, 1);
950 rt2500usb_register_write(rt2x00dev, MAC_CSR17, reg);
951
952 /*
953 * Device is not guaranteed to be in the requested state yet.
954 * We must wait until the register indicates that the
955 * device has entered the correct state.
956 */
957 for (i = 0; i < REGISTER_BUSY_COUNT; i++) {
958 rt2500usb_register_read(rt2x00dev, MAC_CSR17, &reg2);
959 bbp_state = rt2x00_get_field16(reg2, MAC_CSR17_BBP_CURR_STATE);
960 rf_state = rt2x00_get_field16(reg2, MAC_CSR17_RF_CURR_STATE);
961 if (bbp_state == state && rf_state == state)
962 return 0;
963 rt2500usb_register_write(rt2x00dev, MAC_CSR17, reg);
964 msleep(30);
965 }
966
967 NOTICE(rt2x00dev, "Device failed to enter state %d, "
968 "current device state: bbp %d and rf %d.\n",
969 state, bbp_state, rf_state);
970
971 return -EBUSY;
972}
973
974static int rt2500usb_set_device_state(struct rt2x00_dev *rt2x00dev,
975 enum dev_state state)
976{
977 int retval = 0;
978
979 switch (state) {
980 case STATE_RADIO_ON:
981 retval = rt2500usb_enable_radio(rt2x00dev);
982 break;
983 case STATE_RADIO_OFF:
984 rt2500usb_disable_radio(rt2x00dev);
985 break;
986 case STATE_RADIO_RX_ON:
Ivo van Doorn61667d82008-02-25 23:15:05 +0100987 case STATE_RADIO_RX_ON_LINK:
988 rt2500usb_toggle_rx(rt2x00dev, STATE_RADIO_RX_ON);
989 break;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700990 case STATE_RADIO_RX_OFF:
Ivo van Doorn61667d82008-02-25 23:15:05 +0100991 case STATE_RADIO_RX_OFF_LINK:
992 rt2500usb_toggle_rx(rt2x00dev, STATE_RADIO_RX_OFF);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700993 break;
994 case STATE_DEEP_SLEEP:
995 case STATE_SLEEP:
996 case STATE_STANDBY:
997 case STATE_AWAKE:
998 retval = rt2500usb_set_state(rt2x00dev, state);
999 break;
1000 default:
1001 retval = -ENOTSUPP;
1002 break;
1003 }
1004
1005 return retval;
1006}
1007
1008/*
1009 * TX descriptor initialization
1010 */
1011static void rt2500usb_write_tx_desc(struct rt2x00_dev *rt2x00dev,
Ivo van Doorndd3193e2008-01-06 23:41:10 +01001012 struct sk_buff *skb,
Ivo van Doorn181d6902008-02-05 16:42:23 -05001013 struct txentry_desc *txdesc,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001014 struct ieee80211_tx_control *control)
1015{
Ivo van Doorn181d6902008-02-05 16:42:23 -05001016 struct skb_frame_desc *skbdesc = get_skb_frame_desc(skb);
Ivo van Doorndd3193e2008-01-06 23:41:10 +01001017 __le32 *txd = skbdesc->desc;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001018 u32 word;
1019
1020 /*
1021 * Start writing the descriptor words.
1022 */
1023 rt2x00_desc_read(txd, 1, &word);
1024 rt2x00_set_field32(&word, TXD_W1_IV_OFFSET, IEEE80211_HEADER);
Ivo van Doorn181d6902008-02-05 16:42:23 -05001025 rt2x00_set_field32(&word, TXD_W1_AIFS, txdesc->aifs);
1026 rt2x00_set_field32(&word, TXD_W1_CWMIN, txdesc->cw_min);
1027 rt2x00_set_field32(&word, TXD_W1_CWMAX, txdesc->cw_max);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001028 rt2x00_desc_write(txd, 1, word);
1029
1030 rt2x00_desc_read(txd, 2, &word);
Ivo van Doorn181d6902008-02-05 16:42:23 -05001031 rt2x00_set_field32(&word, TXD_W2_PLCP_SIGNAL, txdesc->signal);
1032 rt2x00_set_field32(&word, TXD_W2_PLCP_SERVICE, txdesc->service);
1033 rt2x00_set_field32(&word, TXD_W2_PLCP_LENGTH_LOW, txdesc->length_low);
1034 rt2x00_set_field32(&word, TXD_W2_PLCP_LENGTH_HIGH, txdesc->length_high);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001035 rt2x00_desc_write(txd, 2, word);
1036
1037 rt2x00_desc_read(txd, 0, &word);
1038 rt2x00_set_field32(&word, TXD_W0_RETRY_LIMIT, control->retry_limit);
1039 rt2x00_set_field32(&word, TXD_W0_MORE_FRAG,
Ivo van Doorn181d6902008-02-05 16:42:23 -05001040 test_bit(ENTRY_TXD_MORE_FRAG, &txdesc->flags));
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001041 rt2x00_set_field32(&word, TXD_W0_ACK,
Ivo van Doorn181d6902008-02-05 16:42:23 -05001042 test_bit(ENTRY_TXD_ACK, &txdesc->flags));
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001043 rt2x00_set_field32(&word, TXD_W0_TIMESTAMP,
Ivo van Doorn181d6902008-02-05 16:42:23 -05001044 test_bit(ENTRY_TXD_REQ_TIMESTAMP, &txdesc->flags));
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001045 rt2x00_set_field32(&word, TXD_W0_OFDM,
Ivo van Doorn181d6902008-02-05 16:42:23 -05001046 test_bit(ENTRY_TXD_OFDM_RATE, &txdesc->flags));
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001047 rt2x00_set_field32(&word, TXD_W0_NEW_SEQ,
1048 !!(control->flags & IEEE80211_TXCTL_FIRST_FRAGMENT));
Ivo van Doorn181d6902008-02-05 16:42:23 -05001049 rt2x00_set_field32(&word, TXD_W0_IFS, txdesc->ifs);
Ivo van Doorndd3193e2008-01-06 23:41:10 +01001050 rt2x00_set_field32(&word, TXD_W0_DATABYTE_COUNT, skbdesc->data_len);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001051 rt2x00_set_field32(&word, TXD_W0_CIPHER, CIPHER_NONE);
1052 rt2x00_desc_write(txd, 0, word);
1053}
1054
Ivo van Doorndd9fa2d2007-10-06 14:15:46 +02001055static int rt2500usb_get_tx_data_len(struct rt2x00_dev *rt2x00dev,
Ivo van Doornb242e892007-11-15 23:41:31 +01001056 struct sk_buff *skb)
Ivo van Doorndd9fa2d2007-10-06 14:15:46 +02001057{
1058 int length;
1059
1060 /*
1061 * The length _must_ be a multiple of 2,
1062 * but it must _not_ be a multiple of the USB packet size.
1063 */
1064 length = roundup(skb->len, 2);
Ivo van Doornb242e892007-11-15 23:41:31 +01001065 length += (2 * !(length % rt2x00dev->usb_maxpacket));
Ivo van Doorndd9fa2d2007-10-06 14:15:46 +02001066
1067 return length;
1068}
1069
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001070/*
1071 * TX data initialization
1072 */
1073static void rt2500usb_kick_tx_queue(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn5957da42008-02-03 15:54:57 +01001074 const unsigned int queue)
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001075{
1076 u16 reg;
1077
Ivo van Doorn5957da42008-02-03 15:54:57 +01001078 if (queue != RT2X00_BCN_QUEUE_BEACON)
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001079 return;
1080
1081 rt2500usb_register_read(rt2x00dev, TXRX_CSR19, &reg);
1082 if (!rt2x00_get_field16(reg, TXRX_CSR19_BEACON_GEN)) {
Ivo van Doorn8af244c2008-03-09 22:42:59 +01001083 rt2x00_set_field16(&reg, TXRX_CSR19_TSF_COUNT, 1);
1084 rt2x00_set_field16(&reg, TXRX_CSR19_TBCN, 1);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001085 rt2x00_set_field16(&reg, TXRX_CSR19_BEACON_GEN, 1);
1086 /*
1087 * Beacon generation will fail initially.
1088 * To prevent this we need to register the TXRX_CSR19
1089 * register several times.
1090 */
1091 rt2500usb_register_write(rt2x00dev, TXRX_CSR19, reg);
1092 rt2500usb_register_write(rt2x00dev, TXRX_CSR19, 0);
1093 rt2500usb_register_write(rt2x00dev, TXRX_CSR19, reg);
1094 rt2500usb_register_write(rt2x00dev, TXRX_CSR19, 0);
1095 rt2500usb_register_write(rt2x00dev, TXRX_CSR19, reg);
1096 }
1097}
1098
1099/*
1100 * RX control handlers
1101 */
Ivo van Doorn181d6902008-02-05 16:42:23 -05001102static void rt2500usb_fill_rxdone(struct queue_entry *entry,
1103 struct rxdone_entry_desc *rxdesc)
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001104{
Ivo van Doorn181d6902008-02-05 16:42:23 -05001105 struct queue_entry_priv_usb_rx *priv_rx = entry->priv_data;
1106 struct skb_frame_desc *skbdesc = get_skb_frame_desc(entry->skb);
1107 __le32 *rxd =
1108 (__le32 *)(entry->skb->data +
1109 (priv_rx->urb->actual_length - entry->queue->desc_size));
Ivo van Doornf855c102008-03-09 22:38:18 +01001110 unsigned int offset = entry->queue->desc_size + 2;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001111 u32 word0;
1112 u32 word1;
1113
Ivo van Doornf855c102008-03-09 22:38:18 +01001114 /*
1115 * Copy descriptor to the available headroom inside the skbuffer.
Ivo van Doornf855c102008-03-09 22:38:18 +01001116 */
1117 skb_push(entry->skb, offset);
1118 memcpy(entry->skb->data, rxd, entry->queue->desc_size);
1119 rxd = (__le32 *)entry->skb->data;
Ivo van Doornf855c102008-03-09 22:38:18 +01001120
1121 /*
1122 * The descriptor is now aligned to 4 bytes and thus it is
1123 * now safe to read it on all architectures.
1124 */
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001125 rt2x00_desc_read(rxd, 0, &word0);
1126 rt2x00_desc_read(rxd, 1, &word1);
1127
Ivo van Doorn181d6902008-02-05 16:42:23 -05001128 rxdesc->flags = 0;
Johannes Berg4150c572007-09-17 01:29:23 -04001129 if (rt2x00_get_field32(word0, RXD_W0_CRC_ERROR))
Ivo van Doorn181d6902008-02-05 16:42:23 -05001130 rxdesc->flags |= RX_FLAG_FAILED_FCS_CRC;
Johannes Berg4150c572007-09-17 01:29:23 -04001131 if (rt2x00_get_field32(word0, RXD_W0_PHYSICAL_ERROR))
Ivo van Doorn181d6902008-02-05 16:42:23 -05001132 rxdesc->flags |= RX_FLAG_FAILED_PLCP_CRC;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001133
1134 /*
1135 * Obtain the status about this packet.
1136 */
Ivo van Doorn181d6902008-02-05 16:42:23 -05001137 rxdesc->signal = rt2x00_get_field32(word1, RXD_W1_SIGNAL);
1138 rxdesc->rssi = rt2x00_get_field32(word1, RXD_W1_RSSI) -
1139 entry->queue->rt2x00dev->rssi_offset;
1140 rxdesc->ofdm = rt2x00_get_field32(word0, RXD_W0_OFDM);
1141 rxdesc->size = rt2x00_get_field32(word0, RXD_W0_DATABYTE_COUNT);
1142 rxdesc->my_bss = !!rt2x00_get_field32(word0, RXD_W0_MY_BSS);
Ivo van Doorn7d1de802008-01-06 23:42:04 +01001143
1144 /*
Mattias Nissler2ae23852008-03-09 22:41:22 +01001145 * Adjust the skb memory window to the frame boundaries.
1146 */
1147 skb_pull(entry->skb, offset);
1148 skb_trim(entry->skb, rxdesc->size);
1149
1150 /*
Ivo van Doornf855c102008-03-09 22:38:18 +01001151 * Set descriptor and data pointer.
Ivo van Doorn181d6902008-02-05 16:42:23 -05001152 */
Ivo van Doorn7d1de802008-01-06 23:42:04 +01001153 skbdesc->data = entry->skb->data;
Ivo van Doorn647d0ca2008-02-10 22:51:21 +01001154 skbdesc->data_len = rxdesc->size;
Mattias Nissler2ae23852008-03-09 22:41:22 +01001155 skbdesc->desc = rxd;
Ivo van Doorn181d6902008-02-05 16:42:23 -05001156 skbdesc->desc_len = entry->queue->desc_size;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001157}
1158
1159/*
1160 * Interrupt functions.
1161 */
1162static void rt2500usb_beacondone(struct urb *urb)
1163{
Ivo van Doorn181d6902008-02-05 16:42:23 -05001164 struct queue_entry *entry = (struct queue_entry *)urb->context;
1165 struct queue_entry_priv_usb_bcn *priv_bcn = entry->priv_data;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001166
Ivo van Doorn181d6902008-02-05 16:42:23 -05001167 if (!test_bit(DEVICE_ENABLED_RADIO, &entry->queue->rt2x00dev->flags))
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001168 return;
1169
1170 /*
1171 * Check if this was the guardian beacon,
1172 * if that was the case we need to send the real beacon now.
1173 * Otherwise we should free the sk_buffer, the device
1174 * should be doing the rest of the work now.
1175 */
Ivo van Doorn181d6902008-02-05 16:42:23 -05001176 if (priv_bcn->guardian_urb == urb) {
1177 usb_submit_urb(priv_bcn->urb, GFP_ATOMIC);
1178 } else if (priv_bcn->urb == urb) {
1179 dev_kfree_skb(entry->skb);
1180 entry->skb = NULL;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001181 }
1182}
1183
1184/*
1185 * Device probe functions.
1186 */
1187static int rt2500usb_validate_eeprom(struct rt2x00_dev *rt2x00dev)
1188{
1189 u16 word;
1190 u8 *mac;
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001191 u8 bbp;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001192
1193 rt2x00usb_eeprom_read(rt2x00dev, rt2x00dev->eeprom, EEPROM_SIZE);
1194
1195 /*
1196 * Start validation of the data that has been read.
1197 */
1198 mac = rt2x00_eeprom_addr(rt2x00dev, EEPROM_MAC_ADDR_0);
1199 if (!is_valid_ether_addr(mac)) {
Joe Perches0795af52007-10-03 17:59:30 -07001200 DECLARE_MAC_BUF(macbuf);
1201
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001202 random_ether_addr(mac);
Joe Perches0795af52007-10-03 17:59:30 -07001203 EEPROM(rt2x00dev, "MAC: %s\n", print_mac(macbuf, mac));
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001204 }
1205
1206 rt2x00_eeprom_read(rt2x00dev, EEPROM_ANTENNA, &word);
1207 if (word == 0xffff) {
1208 rt2x00_set_field16(&word, EEPROM_ANTENNA_NUM, 2);
Ivo van Doorn362f3b62007-10-13 16:26:18 +02001209 rt2x00_set_field16(&word, EEPROM_ANTENNA_TX_DEFAULT,
1210 ANTENNA_SW_DIVERSITY);
1211 rt2x00_set_field16(&word, EEPROM_ANTENNA_RX_DEFAULT,
1212 ANTENNA_SW_DIVERSITY);
1213 rt2x00_set_field16(&word, EEPROM_ANTENNA_LED_MODE,
1214 LED_MODE_DEFAULT);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001215 rt2x00_set_field16(&word, EEPROM_ANTENNA_DYN_TXAGC, 0);
1216 rt2x00_set_field16(&word, EEPROM_ANTENNA_HARDWARE_RADIO, 0);
1217 rt2x00_set_field16(&word, EEPROM_ANTENNA_RF_TYPE, RF2522);
1218 rt2x00_eeprom_write(rt2x00dev, EEPROM_ANTENNA, word);
1219 EEPROM(rt2x00dev, "Antenna: 0x%04x\n", word);
1220 }
1221
1222 rt2x00_eeprom_read(rt2x00dev, EEPROM_NIC, &word);
1223 if (word == 0xffff) {
1224 rt2x00_set_field16(&word, EEPROM_NIC_CARDBUS_ACCEL, 0);
1225 rt2x00_set_field16(&word, EEPROM_NIC_DYN_BBP_TUNE, 0);
1226 rt2x00_set_field16(&word, EEPROM_NIC_CCK_TX_POWER, 0);
1227 rt2x00_eeprom_write(rt2x00dev, EEPROM_NIC, word);
1228 EEPROM(rt2x00dev, "NIC: 0x%04x\n", word);
1229 }
1230
1231 rt2x00_eeprom_read(rt2x00dev, EEPROM_CALIBRATE_OFFSET, &word);
1232 if (word == 0xffff) {
1233 rt2x00_set_field16(&word, EEPROM_CALIBRATE_OFFSET_RSSI,
1234 DEFAULT_RSSI_OFFSET);
1235 rt2x00_eeprom_write(rt2x00dev, EEPROM_CALIBRATE_OFFSET, word);
1236 EEPROM(rt2x00dev, "Calibrate offset: 0x%04x\n", word);
1237 }
1238
1239 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE, &word);
1240 if (word == 0xffff) {
1241 rt2x00_set_field16(&word, EEPROM_BBPTUNE_THRESHOLD, 45);
1242 rt2x00_eeprom_write(rt2x00dev, EEPROM_BBPTUNE, word);
1243 EEPROM(rt2x00dev, "BBPtune: 0x%04x\n", word);
1244 }
1245
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001246 /*
1247 * Switch lower vgc bound to current BBP R17 value,
1248 * lower the value a bit for better quality.
1249 */
1250 rt2500usb_bbp_read(rt2x00dev, 17, &bbp);
1251 bbp -= 6;
1252
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001253 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE_VGC, &word);
1254 if (word == 0xffff) {
1255 rt2x00_set_field16(&word, EEPROM_BBPTUNE_VGCUPPER, 0x40);
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001256 rt2x00_set_field16(&word, EEPROM_BBPTUNE_VGCLOWER, bbp);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001257 rt2x00_eeprom_write(rt2x00dev, EEPROM_BBPTUNE_VGC, word);
1258 EEPROM(rt2x00dev, "BBPtune vgc: 0x%04x\n", word);
1259 }
1260
1261 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE_R17, &word);
1262 if (word == 0xffff) {
1263 rt2x00_set_field16(&word, EEPROM_BBPTUNE_R17_LOW, 0x48);
1264 rt2x00_set_field16(&word, EEPROM_BBPTUNE_R17_HIGH, 0x41);
1265 rt2x00_eeprom_write(rt2x00dev, EEPROM_BBPTUNE_R17, word);
1266 EEPROM(rt2x00dev, "BBPtune r17: 0x%04x\n", word);
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001267 } else {
1268 rt2x00_set_field16(&word, EEPROM_BBPTUNE_VGCLOWER, bbp);
1269 rt2x00_eeprom_write(rt2x00dev, EEPROM_BBPTUNE_VGC, word);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001270 }
1271
1272 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE_R24, &word);
1273 if (word == 0xffff) {
1274 rt2x00_set_field16(&word, EEPROM_BBPTUNE_R24_LOW, 0x40);
1275 rt2x00_set_field16(&word, EEPROM_BBPTUNE_R24_HIGH, 0x80);
1276 rt2x00_eeprom_write(rt2x00dev, EEPROM_BBPTUNE_R24, word);
1277 EEPROM(rt2x00dev, "BBPtune r24: 0x%04x\n", word);
1278 }
1279
1280 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE_R25, &word);
1281 if (word == 0xffff) {
1282 rt2x00_set_field16(&word, EEPROM_BBPTUNE_R25_LOW, 0x40);
1283 rt2x00_set_field16(&word, EEPROM_BBPTUNE_R25_HIGH, 0x50);
1284 rt2x00_eeprom_write(rt2x00dev, EEPROM_BBPTUNE_R25, word);
1285 EEPROM(rt2x00dev, "BBPtune r25: 0x%04x\n", word);
1286 }
1287
1288 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBPTUNE_R61, &word);
1289 if (word == 0xffff) {
1290 rt2x00_set_field16(&word, EEPROM_BBPTUNE_R61_LOW, 0x60);
1291 rt2x00_set_field16(&word, EEPROM_BBPTUNE_R61_HIGH, 0x6d);
1292 rt2x00_eeprom_write(rt2x00dev, EEPROM_BBPTUNE_R61, word);
1293 EEPROM(rt2x00dev, "BBPtune r61: 0x%04x\n", word);
1294 }
1295
1296 return 0;
1297}
1298
1299static int rt2500usb_init_eeprom(struct rt2x00_dev *rt2x00dev)
1300{
1301 u16 reg;
1302 u16 value;
1303 u16 eeprom;
1304
1305 /*
1306 * Read EEPROM word for configuration.
1307 */
1308 rt2x00_eeprom_read(rt2x00dev, EEPROM_ANTENNA, &eeprom);
1309
1310 /*
1311 * Identify RF chipset.
1312 */
1313 value = rt2x00_get_field16(eeprom, EEPROM_ANTENNA_RF_TYPE);
1314 rt2500usb_register_read(rt2x00dev, MAC_CSR0, &reg);
1315 rt2x00_set_chip(rt2x00dev, RT2570, value, reg);
1316
Ivo van Doorn755a9572007-11-12 15:02:22 +01001317 if (!rt2x00_check_rev(&rt2x00dev->chip, 0)) {
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001318 ERROR(rt2x00dev, "Invalid RT chipset detected.\n");
1319 return -ENODEV;
1320 }
1321
1322 if (!rt2x00_rf(&rt2x00dev->chip, RF2522) &&
1323 !rt2x00_rf(&rt2x00dev->chip, RF2523) &&
1324 !rt2x00_rf(&rt2x00dev->chip, RF2524) &&
1325 !rt2x00_rf(&rt2x00dev->chip, RF2525) &&
1326 !rt2x00_rf(&rt2x00dev->chip, RF2525E) &&
1327 !rt2x00_rf(&rt2x00dev->chip, RF5222)) {
1328 ERROR(rt2x00dev, "Invalid RF chipset detected.\n");
1329 return -ENODEV;
1330 }
1331
1332 /*
1333 * Identify default antenna configuration.
1334 */
Ivo van Doornaddc81b2007-10-13 16:26:23 +02001335 rt2x00dev->default_ant.tx =
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001336 rt2x00_get_field16(eeprom, EEPROM_ANTENNA_TX_DEFAULT);
Ivo van Doornaddc81b2007-10-13 16:26:23 +02001337 rt2x00dev->default_ant.rx =
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001338 rt2x00_get_field16(eeprom, EEPROM_ANTENNA_RX_DEFAULT);
1339
1340 /*
Ivo van Doornaddc81b2007-10-13 16:26:23 +02001341 * When the eeprom indicates SW_DIVERSITY use HW_DIVERSITY instead.
1342 * I am not 100% sure about this, but the legacy drivers do not
1343 * indicate antenna swapping in software is required when
1344 * diversity is enabled.
1345 */
1346 if (rt2x00dev->default_ant.tx == ANTENNA_SW_DIVERSITY)
1347 rt2x00dev->default_ant.tx = ANTENNA_HW_DIVERSITY;
1348 if (rt2x00dev->default_ant.rx == ANTENNA_SW_DIVERSITY)
1349 rt2x00dev->default_ant.rx = ANTENNA_HW_DIVERSITY;
1350
1351 /*
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001352 * Store led mode, for correct led behaviour.
1353 */
Ivo van Doorna9450b72008-02-03 15:53:40 +01001354#ifdef CONFIG_RT2500USB_LEDS
1355 value = rt2x00_get_field16(eeprom, EEPROM_ANTENNA_LED_MODE);
1356
1357 switch (value) {
1358 case LED_MODE_ASUS:
1359 case LED_MODE_ALPHA:
1360 case LED_MODE_DEFAULT:
1361 rt2x00dev->led_flags = LED_SUPPORT_RADIO;
1362 break;
1363 case LED_MODE_TXRX_ACTIVITY:
1364 rt2x00dev->led_flags =
1365 LED_SUPPORT_RADIO | LED_SUPPORT_ACTIVITY;
1366 break;
1367 case LED_MODE_SIGNAL_STRENGTH:
1368 rt2x00dev->led_flags = LED_SUPPORT_RADIO;
1369 break;
1370 }
Ivo van Doorn3b640f22008-02-03 15:54:11 +01001371
1372 /*
1373 * Store the current led register value, we need it later
1374 * in set_brightness but that is called in irq context which
1375 * means we can't use rt2500usb_register_read() at that time.
1376 */
1377 rt2500usb_register_read(rt2x00dev, MAC_CSR20, &rt2x00dev->led_mcu_reg);
Ivo van Doorna9450b72008-02-03 15:53:40 +01001378#endif /* CONFIG_RT2500USB_LEDS */
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001379
1380 /*
1381 * Check if the BBP tuning should be disabled.
1382 */
1383 rt2x00_eeprom_read(rt2x00dev, EEPROM_NIC, &eeprom);
1384 if (rt2x00_get_field16(eeprom, EEPROM_NIC_DYN_BBP_TUNE))
1385 __set_bit(CONFIG_DISABLE_LINK_TUNING, &rt2x00dev->flags);
1386
1387 /*
1388 * Read the RSSI <-> dBm offset information.
1389 */
1390 rt2x00_eeprom_read(rt2x00dev, EEPROM_CALIBRATE_OFFSET, &eeprom);
1391 rt2x00dev->rssi_offset =
1392 rt2x00_get_field16(eeprom, EEPROM_CALIBRATE_OFFSET_RSSI);
1393
1394 return 0;
1395}
1396
1397/*
1398 * RF value list for RF2522
1399 * Supports: 2.4 GHz
1400 */
1401static const struct rf_channel rf_vals_bg_2522[] = {
1402 { 1, 0x00002050, 0x000c1fda, 0x00000101, 0 },
1403 { 2, 0x00002050, 0x000c1fee, 0x00000101, 0 },
1404 { 3, 0x00002050, 0x000c2002, 0x00000101, 0 },
1405 { 4, 0x00002050, 0x000c2016, 0x00000101, 0 },
1406 { 5, 0x00002050, 0x000c202a, 0x00000101, 0 },
1407 { 6, 0x00002050, 0x000c203e, 0x00000101, 0 },
1408 { 7, 0x00002050, 0x000c2052, 0x00000101, 0 },
1409 { 8, 0x00002050, 0x000c2066, 0x00000101, 0 },
1410 { 9, 0x00002050, 0x000c207a, 0x00000101, 0 },
1411 { 10, 0x00002050, 0x000c208e, 0x00000101, 0 },
1412 { 11, 0x00002050, 0x000c20a2, 0x00000101, 0 },
1413 { 12, 0x00002050, 0x000c20b6, 0x00000101, 0 },
1414 { 13, 0x00002050, 0x000c20ca, 0x00000101, 0 },
1415 { 14, 0x00002050, 0x000c20fa, 0x00000101, 0 },
1416};
1417
1418/*
1419 * RF value list for RF2523
1420 * Supports: 2.4 GHz
1421 */
1422static const struct rf_channel rf_vals_bg_2523[] = {
1423 { 1, 0x00022010, 0x00000c9e, 0x000e0111, 0x00000a1b },
1424 { 2, 0x00022010, 0x00000ca2, 0x000e0111, 0x00000a1b },
1425 { 3, 0x00022010, 0x00000ca6, 0x000e0111, 0x00000a1b },
1426 { 4, 0x00022010, 0x00000caa, 0x000e0111, 0x00000a1b },
1427 { 5, 0x00022010, 0x00000cae, 0x000e0111, 0x00000a1b },
1428 { 6, 0x00022010, 0x00000cb2, 0x000e0111, 0x00000a1b },
1429 { 7, 0x00022010, 0x00000cb6, 0x000e0111, 0x00000a1b },
1430 { 8, 0x00022010, 0x00000cba, 0x000e0111, 0x00000a1b },
1431 { 9, 0x00022010, 0x00000cbe, 0x000e0111, 0x00000a1b },
1432 { 10, 0x00022010, 0x00000d02, 0x000e0111, 0x00000a1b },
1433 { 11, 0x00022010, 0x00000d06, 0x000e0111, 0x00000a1b },
1434 { 12, 0x00022010, 0x00000d0a, 0x000e0111, 0x00000a1b },
1435 { 13, 0x00022010, 0x00000d0e, 0x000e0111, 0x00000a1b },
1436 { 14, 0x00022010, 0x00000d1a, 0x000e0111, 0x00000a03 },
1437};
1438
1439/*
1440 * RF value list for RF2524
1441 * Supports: 2.4 GHz
1442 */
1443static const struct rf_channel rf_vals_bg_2524[] = {
1444 { 1, 0x00032020, 0x00000c9e, 0x00000101, 0x00000a1b },
1445 { 2, 0x00032020, 0x00000ca2, 0x00000101, 0x00000a1b },
1446 { 3, 0x00032020, 0x00000ca6, 0x00000101, 0x00000a1b },
1447 { 4, 0x00032020, 0x00000caa, 0x00000101, 0x00000a1b },
1448 { 5, 0x00032020, 0x00000cae, 0x00000101, 0x00000a1b },
1449 { 6, 0x00032020, 0x00000cb2, 0x00000101, 0x00000a1b },
1450 { 7, 0x00032020, 0x00000cb6, 0x00000101, 0x00000a1b },
1451 { 8, 0x00032020, 0x00000cba, 0x00000101, 0x00000a1b },
1452 { 9, 0x00032020, 0x00000cbe, 0x00000101, 0x00000a1b },
1453 { 10, 0x00032020, 0x00000d02, 0x00000101, 0x00000a1b },
1454 { 11, 0x00032020, 0x00000d06, 0x00000101, 0x00000a1b },
1455 { 12, 0x00032020, 0x00000d0a, 0x00000101, 0x00000a1b },
1456 { 13, 0x00032020, 0x00000d0e, 0x00000101, 0x00000a1b },
1457 { 14, 0x00032020, 0x00000d1a, 0x00000101, 0x00000a03 },
1458};
1459
1460/*
1461 * RF value list for RF2525
1462 * Supports: 2.4 GHz
1463 */
1464static const struct rf_channel rf_vals_bg_2525[] = {
1465 { 1, 0x00022020, 0x00080c9e, 0x00060111, 0x00000a1b },
1466 { 2, 0x00022020, 0x00080ca2, 0x00060111, 0x00000a1b },
1467 { 3, 0x00022020, 0x00080ca6, 0x00060111, 0x00000a1b },
1468 { 4, 0x00022020, 0x00080caa, 0x00060111, 0x00000a1b },
1469 { 5, 0x00022020, 0x00080cae, 0x00060111, 0x00000a1b },
1470 { 6, 0x00022020, 0x00080cb2, 0x00060111, 0x00000a1b },
1471 { 7, 0x00022020, 0x00080cb6, 0x00060111, 0x00000a1b },
1472 { 8, 0x00022020, 0x00080cba, 0x00060111, 0x00000a1b },
1473 { 9, 0x00022020, 0x00080cbe, 0x00060111, 0x00000a1b },
1474 { 10, 0x00022020, 0x00080d02, 0x00060111, 0x00000a1b },
1475 { 11, 0x00022020, 0x00080d06, 0x00060111, 0x00000a1b },
1476 { 12, 0x00022020, 0x00080d0a, 0x00060111, 0x00000a1b },
1477 { 13, 0x00022020, 0x00080d0e, 0x00060111, 0x00000a1b },
1478 { 14, 0x00022020, 0x00080d1a, 0x00060111, 0x00000a03 },
1479};
1480
1481/*
1482 * RF value list for RF2525e
1483 * Supports: 2.4 GHz
1484 */
1485static const struct rf_channel rf_vals_bg_2525e[] = {
1486 { 1, 0x00022010, 0x0000089a, 0x00060111, 0x00000e1b },
1487 { 2, 0x00022010, 0x0000089e, 0x00060111, 0x00000e07 },
1488 { 3, 0x00022010, 0x0000089e, 0x00060111, 0x00000e1b },
1489 { 4, 0x00022010, 0x000008a2, 0x00060111, 0x00000e07 },
1490 { 5, 0x00022010, 0x000008a2, 0x00060111, 0x00000e1b },
1491 { 6, 0x00022010, 0x000008a6, 0x00060111, 0x00000e07 },
1492 { 7, 0x00022010, 0x000008a6, 0x00060111, 0x00000e1b },
1493 { 8, 0x00022010, 0x000008aa, 0x00060111, 0x00000e07 },
1494 { 9, 0x00022010, 0x000008aa, 0x00060111, 0x00000e1b },
1495 { 10, 0x00022010, 0x000008ae, 0x00060111, 0x00000e07 },
1496 { 11, 0x00022010, 0x000008ae, 0x00060111, 0x00000e1b },
1497 { 12, 0x00022010, 0x000008b2, 0x00060111, 0x00000e07 },
1498 { 13, 0x00022010, 0x000008b2, 0x00060111, 0x00000e1b },
1499 { 14, 0x00022010, 0x000008b6, 0x00060111, 0x00000e23 },
1500};
1501
1502/*
1503 * RF value list for RF5222
1504 * Supports: 2.4 GHz & 5.2 GHz
1505 */
1506static const struct rf_channel rf_vals_5222[] = {
1507 { 1, 0x00022020, 0x00001136, 0x00000101, 0x00000a0b },
1508 { 2, 0x00022020, 0x0000113a, 0x00000101, 0x00000a0b },
1509 { 3, 0x00022020, 0x0000113e, 0x00000101, 0x00000a0b },
1510 { 4, 0x00022020, 0x00001182, 0x00000101, 0x00000a0b },
1511 { 5, 0x00022020, 0x00001186, 0x00000101, 0x00000a0b },
1512 { 6, 0x00022020, 0x0000118a, 0x00000101, 0x00000a0b },
1513 { 7, 0x00022020, 0x0000118e, 0x00000101, 0x00000a0b },
1514 { 8, 0x00022020, 0x00001192, 0x00000101, 0x00000a0b },
1515 { 9, 0x00022020, 0x00001196, 0x00000101, 0x00000a0b },
1516 { 10, 0x00022020, 0x0000119a, 0x00000101, 0x00000a0b },
1517 { 11, 0x00022020, 0x0000119e, 0x00000101, 0x00000a0b },
1518 { 12, 0x00022020, 0x000011a2, 0x00000101, 0x00000a0b },
1519 { 13, 0x00022020, 0x000011a6, 0x00000101, 0x00000a0b },
1520 { 14, 0x00022020, 0x000011ae, 0x00000101, 0x00000a1b },
1521
1522 /* 802.11 UNI / HyperLan 2 */
1523 { 36, 0x00022010, 0x00018896, 0x00000101, 0x00000a1f },
1524 { 40, 0x00022010, 0x0001889a, 0x00000101, 0x00000a1f },
1525 { 44, 0x00022010, 0x0001889e, 0x00000101, 0x00000a1f },
1526 { 48, 0x00022010, 0x000188a2, 0x00000101, 0x00000a1f },
1527 { 52, 0x00022010, 0x000188a6, 0x00000101, 0x00000a1f },
1528 { 66, 0x00022010, 0x000188aa, 0x00000101, 0x00000a1f },
1529 { 60, 0x00022010, 0x000188ae, 0x00000101, 0x00000a1f },
1530 { 64, 0x00022010, 0x000188b2, 0x00000101, 0x00000a1f },
1531
1532 /* 802.11 HyperLan 2 */
1533 { 100, 0x00022010, 0x00008802, 0x00000101, 0x00000a0f },
1534 { 104, 0x00022010, 0x00008806, 0x00000101, 0x00000a0f },
1535 { 108, 0x00022010, 0x0000880a, 0x00000101, 0x00000a0f },
1536 { 112, 0x00022010, 0x0000880e, 0x00000101, 0x00000a0f },
1537 { 116, 0x00022010, 0x00008812, 0x00000101, 0x00000a0f },
1538 { 120, 0x00022010, 0x00008816, 0x00000101, 0x00000a0f },
1539 { 124, 0x00022010, 0x0000881a, 0x00000101, 0x00000a0f },
1540 { 128, 0x00022010, 0x0000881e, 0x00000101, 0x00000a0f },
1541 { 132, 0x00022010, 0x00008822, 0x00000101, 0x00000a0f },
1542 { 136, 0x00022010, 0x00008826, 0x00000101, 0x00000a0f },
1543
1544 /* 802.11 UNII */
1545 { 140, 0x00022010, 0x0000882a, 0x00000101, 0x00000a0f },
1546 { 149, 0x00022020, 0x000090a6, 0x00000101, 0x00000a07 },
1547 { 153, 0x00022020, 0x000090ae, 0x00000101, 0x00000a07 },
1548 { 157, 0x00022020, 0x000090b6, 0x00000101, 0x00000a07 },
1549 { 161, 0x00022020, 0x000090be, 0x00000101, 0x00000a07 },
1550};
1551
1552static void rt2500usb_probe_hw_mode(struct rt2x00_dev *rt2x00dev)
1553{
1554 struct hw_mode_spec *spec = &rt2x00dev->spec;
1555 u8 *txpower;
1556 unsigned int i;
1557
1558 /*
1559 * Initialize all hw fields.
1560 */
1561 rt2x00dev->hw->flags =
1562 IEEE80211_HW_HOST_GEN_BEACON_TEMPLATE |
1563 IEEE80211_HW_RX_INCLUDES_FCS |
Johannes Berg4150c572007-09-17 01:29:23 -04001564 IEEE80211_HW_HOST_BROADCAST_PS_BUFFERING;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001565 rt2x00dev->hw->extra_tx_headroom = TXD_DESC_SIZE;
1566 rt2x00dev->hw->max_signal = MAX_SIGNAL;
1567 rt2x00dev->hw->max_rssi = MAX_RX_SSI;
1568 rt2x00dev->hw->queues = 2;
1569
1570 SET_IEEE80211_DEV(rt2x00dev->hw, &rt2x00dev_usb(rt2x00dev)->dev);
1571 SET_IEEE80211_PERM_ADDR(rt2x00dev->hw,
1572 rt2x00_eeprom_addr(rt2x00dev,
1573 EEPROM_MAC_ADDR_0));
1574
1575 /*
1576 * Convert tx_power array in eeprom.
1577 */
1578 txpower = rt2x00_eeprom_addr(rt2x00dev, EEPROM_TXPOWER_START);
1579 for (i = 0; i < 14; i++)
1580 txpower[i] = TXPOWER_FROM_DEV(txpower[i]);
1581
1582 /*
1583 * Initialize hw_mode information.
1584 */
Ivo van Doorn31562e82008-02-17 17:35:05 +01001585 spec->supported_bands = SUPPORT_BAND_2GHZ;
1586 spec->supported_rates = SUPPORT_RATE_CCK | SUPPORT_RATE_OFDM;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001587 spec->tx_power_a = NULL;
1588 spec->tx_power_bg = txpower;
1589 spec->tx_power_default = DEFAULT_TXPOWER;
1590
1591 if (rt2x00_rf(&rt2x00dev->chip, RF2522)) {
1592 spec->num_channels = ARRAY_SIZE(rf_vals_bg_2522);
1593 spec->channels = rf_vals_bg_2522;
1594 } else if (rt2x00_rf(&rt2x00dev->chip, RF2523)) {
1595 spec->num_channels = ARRAY_SIZE(rf_vals_bg_2523);
1596 spec->channels = rf_vals_bg_2523;
1597 } else if (rt2x00_rf(&rt2x00dev->chip, RF2524)) {
1598 spec->num_channels = ARRAY_SIZE(rf_vals_bg_2524);
1599 spec->channels = rf_vals_bg_2524;
1600 } else if (rt2x00_rf(&rt2x00dev->chip, RF2525)) {
1601 spec->num_channels = ARRAY_SIZE(rf_vals_bg_2525);
1602 spec->channels = rf_vals_bg_2525;
1603 } else if (rt2x00_rf(&rt2x00dev->chip, RF2525E)) {
1604 spec->num_channels = ARRAY_SIZE(rf_vals_bg_2525e);
1605 spec->channels = rf_vals_bg_2525e;
1606 } else if (rt2x00_rf(&rt2x00dev->chip, RF5222)) {
Ivo van Doorn31562e82008-02-17 17:35:05 +01001607 spec->supported_bands |= SUPPORT_BAND_5GHZ;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001608 spec->num_channels = ARRAY_SIZE(rf_vals_5222);
1609 spec->channels = rf_vals_5222;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001610 }
1611}
1612
1613static int rt2500usb_probe_hw(struct rt2x00_dev *rt2x00dev)
1614{
1615 int retval;
1616
1617 /*
1618 * Allocate eeprom data.
1619 */
1620 retval = rt2500usb_validate_eeprom(rt2x00dev);
1621 if (retval)
1622 return retval;
1623
1624 retval = rt2500usb_init_eeprom(rt2x00dev);
1625 if (retval)
1626 return retval;
1627
1628 /*
1629 * Initialize hw specifications.
1630 */
1631 rt2500usb_probe_hw_mode(rt2x00dev);
1632
1633 /*
Ivo van Doorn181d6902008-02-05 16:42:23 -05001634 * This device requires the atim queue
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001635 */
Ivo van Doorn181d6902008-02-05 16:42:23 -05001636 __set_bit(DRIVER_REQUIRE_ATIM_QUEUE, &rt2x00dev->flags);
1637 __set_bit(DRIVER_REQUIRE_BEACON_GUARD, &rt2x00dev->flags);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001638
1639 /*
1640 * Set the rssi offset.
1641 */
1642 rt2x00dev->rssi_offset = DEFAULT_RSSI_OFFSET;
1643
1644 return 0;
1645}
1646
1647/*
1648 * IEEE80211 stack callback functions.
1649 */
Johannes Berg4150c572007-09-17 01:29:23 -04001650static void rt2500usb_configure_filter(struct ieee80211_hw *hw,
1651 unsigned int changed_flags,
1652 unsigned int *total_flags,
1653 int mc_count,
1654 struct dev_addr_list *mc_list)
1655{
1656 struct rt2x00_dev *rt2x00dev = hw->priv;
Johannes Berg4150c572007-09-17 01:29:23 -04001657 u16 reg;
1658
1659 /*
1660 * Mask off any flags we are going to ignore from
1661 * the total_flags field.
1662 */
1663 *total_flags &=
1664 FIF_ALLMULTI |
1665 FIF_FCSFAIL |
1666 FIF_PLCPFAIL |
1667 FIF_CONTROL |
1668 FIF_OTHER_BSS |
1669 FIF_PROMISC_IN_BSS;
1670
1671 /*
1672 * Apply some rules to the filters:
1673 * - Some filters imply different filters to be set.
1674 * - Some things we can't filter out at all.
Johannes Berg4150c572007-09-17 01:29:23 -04001675 */
1676 if (mc_count)
1677 *total_flags |= FIF_ALLMULTI;
Ivo van Doorn5886d0d2007-10-06 14:13:38 +02001678 if (*total_flags & FIF_OTHER_BSS ||
1679 *total_flags & FIF_PROMISC_IN_BSS)
Johannes Berg4150c572007-09-17 01:29:23 -04001680 *total_flags |= FIF_PROMISC_IN_BSS | FIF_OTHER_BSS;
Johannes Berg4150c572007-09-17 01:29:23 -04001681
1682 /*
1683 * Check if there is any work left for us.
1684 */
Ivo van Doorn3c4f2082008-01-06 23:40:49 +01001685 if (rt2x00dev->packet_filter == *total_flags)
Johannes Berg4150c572007-09-17 01:29:23 -04001686 return;
Ivo van Doorn3c4f2082008-01-06 23:40:49 +01001687 rt2x00dev->packet_filter = *total_flags;
Johannes Berg4150c572007-09-17 01:29:23 -04001688
1689 /*
1690 * When in atomic context, reschedule and let rt2x00lib
1691 * call this function again.
1692 */
1693 if (in_atomic()) {
1694 queue_work(rt2x00dev->hw->workqueue, &rt2x00dev->filter_work);
1695 return;
1696 }
1697
1698 /*
1699 * Start configuration steps.
1700 * Note that the version error will always be dropped
1701 * and broadcast frames will always be accepted since
1702 * there is no filter for it at this time.
1703 */
1704 rt2500usb_register_read(rt2x00dev, TXRX_CSR2, &reg);
1705 rt2x00_set_field16(&reg, TXRX_CSR2_DROP_CRC,
1706 !(*total_flags & FIF_FCSFAIL));
1707 rt2x00_set_field16(&reg, TXRX_CSR2_DROP_PHYSICAL,
1708 !(*total_flags & FIF_PLCPFAIL));
1709 rt2x00_set_field16(&reg, TXRX_CSR2_DROP_CONTROL,
1710 !(*total_flags & FIF_CONTROL));
1711 rt2x00_set_field16(&reg, TXRX_CSR2_DROP_NOT_TO_ME,
1712 !(*total_flags & FIF_PROMISC_IN_BSS));
1713 rt2x00_set_field16(&reg, TXRX_CSR2_DROP_TODS,
1714 !(*total_flags & FIF_PROMISC_IN_BSS));
1715 rt2x00_set_field16(&reg, TXRX_CSR2_DROP_VERSION_ERROR, 1);
1716 rt2x00_set_field16(&reg, TXRX_CSR2_DROP_MULTICAST,
1717 !(*total_flags & FIF_ALLMULTI));
1718 rt2x00_set_field16(&reg, TXRX_CSR2_DROP_BROADCAST, 0);
1719 rt2500usb_register_write(rt2x00dev, TXRX_CSR2, reg);
1720}
1721
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001722static int rt2500usb_beacon_update(struct ieee80211_hw *hw,
1723 struct sk_buff *skb,
1724 struct ieee80211_tx_control *control)
1725{
1726 struct rt2x00_dev *rt2x00dev = hw->priv;
Ivo van Doorn181d6902008-02-05 16:42:23 -05001727 struct usb_device *usb_dev = rt2x00dev_usb_dev(rt2x00dev);
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001728 struct rt2x00_intf *intf = vif_to_intf(control->vif);
Ivo van Doorn181d6902008-02-05 16:42:23 -05001729 struct queue_entry_priv_usb_bcn *priv_bcn;
1730 struct skb_frame_desc *skbdesc;
Ivo van Doorndd9fa2d2007-10-06 14:15:46 +02001731 int pipe = usb_sndbulkpipe(usb_dev, 1);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001732 int length;
Ivo van Doorn8af244c2008-03-09 22:42:59 +01001733 u16 reg;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001734
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001735 if (unlikely(!intf->beacon))
1736 return -ENOBUFS;
1737
1738 priv_bcn = intf->beacon->priv_data;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001739
1740 /*
Ivo van Doorn08992f72008-01-24 01:56:25 -08001741 * Add the descriptor in front of the skb.
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001742 */
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001743 skb_push(skb, intf->beacon->queue->desc_size);
1744 memset(skb->data, 0, intf->beacon->queue->desc_size);
Ivo van Doornc22eb872007-10-06 14:18:22 +02001745
Ivo van Doorn08992f72008-01-24 01:56:25 -08001746 /*
1747 * Fill in skb descriptor
1748 */
Ivo van Doorn181d6902008-02-05 16:42:23 -05001749 skbdesc = get_skb_frame_desc(skb);
1750 memset(skbdesc, 0, sizeof(*skbdesc));
Ivo van Doornbaf26a72008-02-17 17:32:08 +01001751 skbdesc->flags |= FRAME_DESC_DRIVER_GENERATED;
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001752 skbdesc->data = skb->data + intf->beacon->queue->desc_size;
1753 skbdesc->data_len = skb->len - intf->beacon->queue->desc_size;
Ivo van Doorn181d6902008-02-05 16:42:23 -05001754 skbdesc->desc = skb->data;
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001755 skbdesc->desc_len = intf->beacon->queue->desc_size;
1756 skbdesc->entry = intf->beacon;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001757
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001758 /*
Ivo van Doorn8af244c2008-03-09 22:42:59 +01001759 * Disable beaconing while we are reloading the beacon data,
1760 * otherwise we might be sending out invalid data.
1761 */
1762 rt2500usb_register_read(rt2x00dev, TXRX_CSR19, &reg);
1763 rt2x00_set_field16(&reg, TXRX_CSR19_TSF_COUNT, 0);
1764 rt2x00_set_field16(&reg, TXRX_CSR19_TBCN, 0);
1765 rt2x00_set_field16(&reg, TXRX_CSR19_BEACON_GEN, 0);
1766 rt2500usb_register_write(rt2x00dev, TXRX_CSR19, reg);
1767
1768 /*
Ivo van Doorn5957da42008-02-03 15:54:57 +01001769 * mac80211 doesn't provide the control->queue variable
1770 * for beacons. Set our own queue identification so
1771 * it can be used during descriptor initialization.
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001772 */
Ivo van Doorn5957da42008-02-03 15:54:57 +01001773 control->queue = RT2X00_BCN_QUEUE_BEACON;
Ivo van Doorn08992f72008-01-24 01:56:25 -08001774 rt2x00lib_write_tx_desc(rt2x00dev, skb, control);
1775
1776 /*
1777 * USB devices cannot blindly pass the skb->len as the
1778 * length of the data to usb_fill_bulk_urb. Pass the skb
1779 * to the driver to determine what the length should be.
1780 */
Ivo van Doornb242e892007-11-15 23:41:31 +01001781 length = rt2500usb_get_tx_data_len(rt2x00dev, skb);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001782
Ivo van Doorn181d6902008-02-05 16:42:23 -05001783 usb_fill_bulk_urb(priv_bcn->urb, usb_dev, pipe,
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001784 skb->data, length, rt2500usb_beacondone,
1785 intf->beacon);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001786
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001787 /*
1788 * Second we need to create the guardian byte.
1789 * We only need a single byte, so lets recycle
1790 * the 'flags' field we are not using for beacons.
1791 */
Ivo van Doorn181d6902008-02-05 16:42:23 -05001792 priv_bcn->guardian_data = 0;
1793 usb_fill_bulk_urb(priv_bcn->guardian_urb, usb_dev, pipe,
1794 &priv_bcn->guardian_data, 1, rt2500usb_beacondone,
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001795 intf->beacon);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001796
1797 /*
1798 * Send out the guardian byte.
1799 */
Ivo van Doorn181d6902008-02-05 16:42:23 -05001800 usb_submit_urb(priv_bcn->guardian_urb, GFP_ATOMIC);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001801
1802 /*
1803 * Enable beacon generation.
1804 */
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001805 rt2500usb_kick_tx_queue(rt2x00dev, control->queue);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001806
1807 return 0;
1808}
1809
1810static const struct ieee80211_ops rt2500usb_mac80211_ops = {
1811 .tx = rt2x00mac_tx,
Johannes Berg4150c572007-09-17 01:29:23 -04001812 .start = rt2x00mac_start,
1813 .stop = rt2x00mac_stop,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001814 .add_interface = rt2x00mac_add_interface,
1815 .remove_interface = rt2x00mac_remove_interface,
1816 .config = rt2x00mac_config,
1817 .config_interface = rt2x00mac_config_interface,
Johannes Berg4150c572007-09-17 01:29:23 -04001818 .configure_filter = rt2500usb_configure_filter,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001819 .get_stats = rt2x00mac_get_stats,
Johannes Berg471b3ef2007-12-28 14:32:58 +01001820 .bss_info_changed = rt2x00mac_bss_info_changed,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001821 .conf_tx = rt2x00mac_conf_tx,
1822 .get_tx_stats = rt2x00mac_get_tx_stats,
1823 .beacon_update = rt2500usb_beacon_update,
1824};
1825
1826static const struct rt2x00lib_ops rt2500usb_rt2x00_ops = {
1827 .probe_hw = rt2500usb_probe_hw,
1828 .initialize = rt2x00usb_initialize,
1829 .uninitialize = rt2x00usb_uninitialize,
Ivo van Doorn837e7f22008-01-06 23:41:45 +01001830 .init_rxentry = rt2x00usb_init_rxentry,
1831 .init_txentry = rt2x00usb_init_txentry,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001832 .set_device_state = rt2500usb_set_device_state,
1833 .link_stats = rt2500usb_link_stats,
1834 .reset_tuner = rt2500usb_reset_tuner,
1835 .link_tuner = rt2500usb_link_tuner,
Ivo van Doorna9450b72008-02-03 15:53:40 +01001836 .led_brightness = rt2500usb_led_brightness,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001837 .write_tx_desc = rt2500usb_write_tx_desc,
1838 .write_tx_data = rt2x00usb_write_tx_data,
Ivo van Doorndd9fa2d2007-10-06 14:15:46 +02001839 .get_tx_data_len = rt2500usb_get_tx_data_len,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001840 .kick_tx_queue = rt2500usb_kick_tx_queue,
1841 .fill_rxdone = rt2500usb_fill_rxdone,
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001842 .config_intf = rt2500usb_config_intf,
Ivo van Doorn72810372008-03-09 22:46:18 +01001843 .config_erp = rt2500usb_config_erp,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001844 .config = rt2500usb_config,
1845};
1846
Ivo van Doorn181d6902008-02-05 16:42:23 -05001847static const struct data_queue_desc rt2500usb_queue_rx = {
1848 .entry_num = RX_ENTRIES,
1849 .data_size = DATA_FRAME_SIZE,
1850 .desc_size = RXD_DESC_SIZE,
1851 .priv_size = sizeof(struct queue_entry_priv_usb_rx),
1852};
1853
1854static const struct data_queue_desc rt2500usb_queue_tx = {
1855 .entry_num = TX_ENTRIES,
1856 .data_size = DATA_FRAME_SIZE,
1857 .desc_size = TXD_DESC_SIZE,
1858 .priv_size = sizeof(struct queue_entry_priv_usb_tx),
1859};
1860
1861static const struct data_queue_desc rt2500usb_queue_bcn = {
1862 .entry_num = BEACON_ENTRIES,
1863 .data_size = MGMT_FRAME_SIZE,
1864 .desc_size = TXD_DESC_SIZE,
1865 .priv_size = sizeof(struct queue_entry_priv_usb_bcn),
1866};
1867
1868static const struct data_queue_desc rt2500usb_queue_atim = {
1869 .entry_num = ATIM_ENTRIES,
1870 .data_size = DATA_FRAME_SIZE,
1871 .desc_size = TXD_DESC_SIZE,
1872 .priv_size = sizeof(struct queue_entry_priv_usb_tx),
1873};
1874
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001875static const struct rt2x00_ops rt2500usb_ops = {
Ivo van Doorn23601572007-11-27 21:47:34 +01001876 .name = KBUILD_MODNAME,
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01001877 .max_sta_intf = 1,
1878 .max_ap_intf = 1,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001879 .eeprom_size = EEPROM_SIZE,
1880 .rf_size = RF_SIZE,
Ivo van Doorn181d6902008-02-05 16:42:23 -05001881 .rx = &rt2500usb_queue_rx,
1882 .tx = &rt2500usb_queue_tx,
1883 .bcn = &rt2500usb_queue_bcn,
1884 .atim = &rt2500usb_queue_atim,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001885 .lib = &rt2500usb_rt2x00_ops,
1886 .hw = &rt2500usb_mac80211_ops,
1887#ifdef CONFIG_RT2X00_LIB_DEBUGFS
1888 .debugfs = &rt2500usb_rt2x00debug,
1889#endif /* CONFIG_RT2X00_LIB_DEBUGFS */
1890};
1891
1892/*
1893 * rt2500usb module information.
1894 */
1895static struct usb_device_id rt2500usb_device_table[] = {
1896 /* ASUS */
1897 { USB_DEVICE(0x0b05, 0x1706), USB_DEVICE_DATA(&rt2500usb_ops) },
1898 { USB_DEVICE(0x0b05, 0x1707), USB_DEVICE_DATA(&rt2500usb_ops) },
1899 /* Belkin */
1900 { USB_DEVICE(0x050d, 0x7050), USB_DEVICE_DATA(&rt2500usb_ops) },
1901 { USB_DEVICE(0x050d, 0x7051), USB_DEVICE_DATA(&rt2500usb_ops) },
1902 { USB_DEVICE(0x050d, 0x705a), USB_DEVICE_DATA(&rt2500usb_ops) },
1903 /* Cisco Systems */
1904 { USB_DEVICE(0x13b1, 0x000d), USB_DEVICE_DATA(&rt2500usb_ops) },
1905 { USB_DEVICE(0x13b1, 0x0011), USB_DEVICE_DATA(&rt2500usb_ops) },
1906 { USB_DEVICE(0x13b1, 0x001a), USB_DEVICE_DATA(&rt2500usb_ops) },
1907 /* Conceptronic */
1908 { USB_DEVICE(0x14b2, 0x3c02), USB_DEVICE_DATA(&rt2500usb_ops) },
1909 /* D-LINK */
1910 { USB_DEVICE(0x2001, 0x3c00), USB_DEVICE_DATA(&rt2500usb_ops) },
1911 /* Gigabyte */
1912 { USB_DEVICE(0x1044, 0x8001), USB_DEVICE_DATA(&rt2500usb_ops) },
1913 { USB_DEVICE(0x1044, 0x8007), USB_DEVICE_DATA(&rt2500usb_ops) },
1914 /* Hercules */
1915 { USB_DEVICE(0x06f8, 0xe000), USB_DEVICE_DATA(&rt2500usb_ops) },
1916 /* Melco */
Ivo van Doorndb433fe2008-02-10 11:21:57 +01001917 { USB_DEVICE(0x0411, 0x005e), USB_DEVICE_DATA(&rt2500usb_ops) },
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001918 { USB_DEVICE(0x0411, 0x0066), USB_DEVICE_DATA(&rt2500usb_ops) },
1919 { USB_DEVICE(0x0411, 0x0067), USB_DEVICE_DATA(&rt2500usb_ops) },
1920 { USB_DEVICE(0x0411, 0x008b), USB_DEVICE_DATA(&rt2500usb_ops) },
1921 { USB_DEVICE(0x0411, 0x0097), USB_DEVICE_DATA(&rt2500usb_ops) },
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001922 /* MSI */
1923 { USB_DEVICE(0x0db0, 0x6861), USB_DEVICE_DATA(&rt2500usb_ops) },
1924 { USB_DEVICE(0x0db0, 0x6865), USB_DEVICE_DATA(&rt2500usb_ops) },
1925 { USB_DEVICE(0x0db0, 0x6869), USB_DEVICE_DATA(&rt2500usb_ops) },
1926 /* Ralink */
1927 { USB_DEVICE(0x148f, 0x1706), USB_DEVICE_DATA(&rt2500usb_ops) },
1928 { USB_DEVICE(0x148f, 0x2570), USB_DEVICE_DATA(&rt2500usb_ops) },
1929 { USB_DEVICE(0x148f, 0x2573), USB_DEVICE_DATA(&rt2500usb_ops) },
1930 { USB_DEVICE(0x148f, 0x9020), USB_DEVICE_DATA(&rt2500usb_ops) },
1931 /* Siemens */
1932 { USB_DEVICE(0x0681, 0x3c06), USB_DEVICE_DATA(&rt2500usb_ops) },
1933 /* SMC */
1934 { USB_DEVICE(0x0707, 0xee13), USB_DEVICE_DATA(&rt2500usb_ops) },
1935 /* Spairon */
1936 { USB_DEVICE(0x114b, 0x0110), USB_DEVICE_DATA(&rt2500usb_ops) },
1937 /* Trust */
1938 { USB_DEVICE(0x0eb0, 0x9020), USB_DEVICE_DATA(&rt2500usb_ops) },
1939 /* Zinwell */
1940 { USB_DEVICE(0x5a57, 0x0260), USB_DEVICE_DATA(&rt2500usb_ops) },
1941 { 0, }
1942};
1943
1944MODULE_AUTHOR(DRV_PROJECT);
1945MODULE_VERSION(DRV_VERSION);
1946MODULE_DESCRIPTION("Ralink RT2500 USB Wireless LAN driver.");
1947MODULE_SUPPORTED_DEVICE("Ralink RT2570 USB chipset based cards");
1948MODULE_DEVICE_TABLE(usb, rt2500usb_device_table);
1949MODULE_LICENSE("GPL");
1950
1951static struct usb_driver rt2500usb_driver = {
Ivo van Doorn23601572007-11-27 21:47:34 +01001952 .name = KBUILD_MODNAME,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001953 .id_table = rt2500usb_device_table,
1954 .probe = rt2x00usb_probe,
1955 .disconnect = rt2x00usb_disconnect,
1956 .suspend = rt2x00usb_suspend,
1957 .resume = rt2x00usb_resume,
1958};
1959
1960static int __init rt2500usb_init(void)
1961{
1962 return usb_register(&rt2500usb_driver);
1963}
1964
1965static void __exit rt2500usb_exit(void)
1966{
1967 usb_deregister(&rt2500usb_driver);
1968}
1969
1970module_init(rt2500usb_init);
1971module_exit(rt2500usb_exit);