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Ivo van Doorn95ea3622007-09-25 17:57:13 -07001/*
Gertjan van Wingerde9c9a0d12009-11-08 16:39:55 +01002 Copyright (C) 2004 - 2009 Ivo van Doorn <IvDoorn@gmail.com>
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: rt2500pci
23 Abstract: rt2500pci device specific routines.
24 Supported chipsets: RT2560.
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/pci.h>
33#include <linux/eeprom_93cx6.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090034#include <linux/slab.h>
Ivo van Doorn95ea3622007-09-25 17:57:13 -070035
36#include "rt2x00.h"
37#include "rt2x00pci.h"
38#include "rt2500pci.h"
39
40/*
41 * Register access.
42 * All access to the CSR registers will go through the methods
43 * rt2x00pci_register_read and rt2x00pci_register_write.
44 * BBP and RF register require indirect register access,
45 * and use the CSR registers BBPCSR and RFCSR to achieve this.
46 * These indirect registers work with busy bits,
47 * and we will try maximal REGISTER_BUSY_COUNT times to access
48 * the register while taking a REGISTER_BUSY_DELAY us delay
49 * between each attampt. When the busy bit is still set at that time,
50 * the access attempt is considered to have failed,
51 * and we will print an error.
52 */
Ivo van Doornc9c3b1a2008-11-10 19:41:40 +010053#define WAIT_FOR_BBP(__dev, __reg) \
54 rt2x00pci_regbusy_read((__dev), BBPCSR, BBPCSR_BUSY, (__reg))
55#define WAIT_FOR_RF(__dev, __reg) \
56 rt2x00pci_regbusy_read((__dev), RFCSR, RFCSR_BUSY, (__reg))
Ivo van Doorn95ea3622007-09-25 17:57:13 -070057
Adam Baker0e14f6d2007-10-27 13:41:25 +020058static void rt2500pci_bbp_write(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn95ea3622007-09-25 17:57:13 -070059 const unsigned int word, const u8 value)
60{
61 u32 reg;
62
Ivo van Doorn8ff48a82008-11-09 23:40:46 +010063 mutex_lock(&rt2x00dev->csr_mutex);
64
Ivo van Doorn95ea3622007-09-25 17:57:13 -070065 /*
Ivo van Doornc9c3b1a2008-11-10 19:41:40 +010066 * Wait until the BBP becomes available, afterwards we
67 * can safely write the new data into the register.
Ivo van Doorn95ea3622007-09-25 17:57:13 -070068 */
Ivo van Doornc9c3b1a2008-11-10 19:41:40 +010069 if (WAIT_FOR_BBP(rt2x00dev, &reg)) {
70 reg = 0;
71 rt2x00_set_field32(&reg, BBPCSR_VALUE, value);
72 rt2x00_set_field32(&reg, BBPCSR_REGNUM, word);
73 rt2x00_set_field32(&reg, BBPCSR_BUSY, 1);
74 rt2x00_set_field32(&reg, BBPCSR_WRITE_CONTROL, 1);
Ivo van Doorn95ea3622007-09-25 17:57:13 -070075
Ivo van Doornc9c3b1a2008-11-10 19:41:40 +010076 rt2x00pci_register_write(rt2x00dev, BBPCSR, reg);
77 }
Ivo van Doorn8ff48a82008-11-09 23:40:46 +010078
79 mutex_unlock(&rt2x00dev->csr_mutex);
Ivo van Doorn95ea3622007-09-25 17:57:13 -070080}
81
Adam Baker0e14f6d2007-10-27 13:41:25 +020082static void rt2500pci_bbp_read(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn95ea3622007-09-25 17:57:13 -070083 const unsigned int word, u8 *value)
84{
85 u32 reg;
86
Ivo van Doorn8ff48a82008-11-09 23:40:46 +010087 mutex_lock(&rt2x00dev->csr_mutex);
88
Ivo van Doorn95ea3622007-09-25 17:57:13 -070089 /*
Ivo van Doornc9c3b1a2008-11-10 19:41:40 +010090 * Wait until the BBP becomes available, afterwards we
91 * can safely write the read request into the register.
92 * After the data has been written, we wait until hardware
93 * returns the correct value, if at any time the register
94 * doesn't become available in time, reg will be 0xffffffff
95 * which means we return 0xff to the caller.
Ivo van Doorn95ea3622007-09-25 17:57:13 -070096 */
Ivo van Doornc9c3b1a2008-11-10 19:41:40 +010097 if (WAIT_FOR_BBP(rt2x00dev, &reg)) {
98 reg = 0;
99 rt2x00_set_field32(&reg, BBPCSR_REGNUM, word);
100 rt2x00_set_field32(&reg, BBPCSR_BUSY, 1);
101 rt2x00_set_field32(&reg, BBPCSR_WRITE_CONTROL, 0);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700102
Ivo van Doornc9c3b1a2008-11-10 19:41:40 +0100103 rt2x00pci_register_write(rt2x00dev, BBPCSR, reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700104
Ivo van Doornc9c3b1a2008-11-10 19:41:40 +0100105 WAIT_FOR_BBP(rt2x00dev, &reg);
106 }
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700107
108 *value = rt2x00_get_field32(reg, BBPCSR_VALUE);
Ivo van Doorn8ff48a82008-11-09 23:40:46 +0100109
110 mutex_unlock(&rt2x00dev->csr_mutex);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700111}
112
Adam Baker0e14f6d2007-10-27 13:41:25 +0200113static void rt2500pci_rf_write(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700114 const unsigned int word, const u32 value)
115{
116 u32 reg;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700117
Ivo van Doorn8ff48a82008-11-09 23:40:46 +0100118 mutex_lock(&rt2x00dev->csr_mutex);
119
Ivo van Doornc9c3b1a2008-11-10 19:41:40 +0100120 /*
121 * Wait until the RF becomes available, afterwards we
122 * can safely write the new data into the register.
123 */
124 if (WAIT_FOR_RF(rt2x00dev, &reg)) {
125 reg = 0;
126 rt2x00_set_field32(&reg, RFCSR_VALUE, value);
127 rt2x00_set_field32(&reg, RFCSR_NUMBER_OF_BITS, 20);
128 rt2x00_set_field32(&reg, RFCSR_IF_SELECT, 0);
129 rt2x00_set_field32(&reg, RFCSR_BUSY, 1);
130
131 rt2x00pci_register_write(rt2x00dev, RFCSR, reg);
132 rt2x00_rf_write(rt2x00dev, word, value);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700133 }
134
Ivo van Doorn8ff48a82008-11-09 23:40:46 +0100135 mutex_unlock(&rt2x00dev->csr_mutex);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700136}
137
138static void rt2500pci_eepromregister_read(struct eeprom_93cx6 *eeprom)
139{
140 struct rt2x00_dev *rt2x00dev = eeprom->data;
141 u32 reg;
142
143 rt2x00pci_register_read(rt2x00dev, CSR21, &reg);
144
145 eeprom->reg_data_in = !!rt2x00_get_field32(reg, CSR21_EEPROM_DATA_IN);
146 eeprom->reg_data_out = !!rt2x00_get_field32(reg, CSR21_EEPROM_DATA_OUT);
147 eeprom->reg_data_clock =
148 !!rt2x00_get_field32(reg, CSR21_EEPROM_DATA_CLOCK);
149 eeprom->reg_chip_select =
150 !!rt2x00_get_field32(reg, CSR21_EEPROM_CHIP_SELECT);
151}
152
153static void rt2500pci_eepromregister_write(struct eeprom_93cx6 *eeprom)
154{
155 struct rt2x00_dev *rt2x00dev = eeprom->data;
156 u32 reg = 0;
157
158 rt2x00_set_field32(&reg, CSR21_EEPROM_DATA_IN, !!eeprom->reg_data_in);
159 rt2x00_set_field32(&reg, CSR21_EEPROM_DATA_OUT, !!eeprom->reg_data_out);
160 rt2x00_set_field32(&reg, CSR21_EEPROM_DATA_CLOCK,
161 !!eeprom->reg_data_clock);
162 rt2x00_set_field32(&reg, CSR21_EEPROM_CHIP_SELECT,
163 !!eeprom->reg_chip_select);
164
165 rt2x00pci_register_write(rt2x00dev, CSR21, reg);
166}
167
168#ifdef CONFIG_RT2X00_LIB_DEBUGFS
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700169static const struct rt2x00debug rt2500pci_rt2x00debug = {
170 .owner = THIS_MODULE,
171 .csr = {
Ivo van Doorn743b97c2008-10-29 19:41:03 +0100172 .read = rt2x00pci_register_read,
173 .write = rt2x00pci_register_write,
174 .flags = RT2X00DEBUGFS_OFFSET,
175 .word_base = CSR_REG_BASE,
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700176 .word_size = sizeof(u32),
177 .word_count = CSR_REG_SIZE / sizeof(u32),
178 },
179 .eeprom = {
180 .read = rt2x00_eeprom_read,
181 .write = rt2x00_eeprom_write,
Ivo van Doorn743b97c2008-10-29 19:41:03 +0100182 .word_base = EEPROM_BASE,
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700183 .word_size = sizeof(u16),
184 .word_count = EEPROM_SIZE / sizeof(u16),
185 },
186 .bbp = {
187 .read = rt2500pci_bbp_read,
188 .write = rt2500pci_bbp_write,
Ivo van Doorn743b97c2008-10-29 19:41:03 +0100189 .word_base = BBP_BASE,
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700190 .word_size = sizeof(u8),
191 .word_count = BBP_SIZE / sizeof(u8),
192 },
193 .rf = {
194 .read = rt2x00_rf_read,
195 .write = rt2500pci_rf_write,
Ivo van Doorn743b97c2008-10-29 19:41:03 +0100196 .word_base = RF_BASE,
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700197 .word_size = sizeof(u32),
198 .word_count = RF_SIZE / sizeof(u32),
199 },
200};
201#endif /* CONFIG_RT2X00_LIB_DEBUGFS */
202
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700203static int rt2500pci_rfkill_poll(struct rt2x00_dev *rt2x00dev)
204{
205 u32 reg;
206
207 rt2x00pci_register_read(rt2x00dev, GPIOCSR, &reg);
Gertjan van Wingerde99bdf512012-08-31 19:22:13 +0200208 return rt2x00_get_field32(reg, GPIOCSR_VAL0);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700209}
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700210
Ivo van Doorn771fd562008-09-08 19:07:15 +0200211#ifdef CONFIG_RT2X00_LIB_LEDS
Ivo van Doorna2e1d522008-03-31 15:53:44 +0200212static void rt2500pci_brightness_set(struct led_classdev *led_cdev,
Ivo van Doorna9450b72008-02-03 15:53:40 +0100213 enum led_brightness brightness)
214{
215 struct rt2x00_led *led =
216 container_of(led_cdev, struct rt2x00_led, led_dev);
217 unsigned int enabled = brightness != LED_OFF;
Ivo van Doorna9450b72008-02-03 15:53:40 +0100218 u32 reg;
219
220 rt2x00pci_register_read(led->rt2x00dev, LEDCSR, &reg);
221
Ivo van Doorna2e1d522008-03-31 15:53:44 +0200222 if (led->type == LED_TYPE_RADIO || led->type == LED_TYPE_ASSOC)
Ivo van Doorna9450b72008-02-03 15:53:40 +0100223 rt2x00_set_field32(&reg, LEDCSR_LINK, enabled);
Ivo van Doorna2e1d522008-03-31 15:53:44 +0200224 else if (led->type == LED_TYPE_ACTIVITY)
225 rt2x00_set_field32(&reg, LEDCSR_ACTIVITY, enabled);
Ivo van Doorna9450b72008-02-03 15:53:40 +0100226
227 rt2x00pci_register_write(led->rt2x00dev, LEDCSR, reg);
228}
Ivo van Doorna2e1d522008-03-31 15:53:44 +0200229
230static int rt2500pci_blink_set(struct led_classdev *led_cdev,
231 unsigned long *delay_on,
232 unsigned long *delay_off)
233{
234 struct rt2x00_led *led =
235 container_of(led_cdev, struct rt2x00_led, led_dev);
236 u32 reg;
237
238 rt2x00pci_register_read(led->rt2x00dev, LEDCSR, &reg);
239 rt2x00_set_field32(&reg, LEDCSR_ON_PERIOD, *delay_on);
240 rt2x00_set_field32(&reg, LEDCSR_OFF_PERIOD, *delay_off);
241 rt2x00pci_register_write(led->rt2x00dev, LEDCSR, reg);
242
243 return 0;
244}
Ivo van Doorn475433b2008-06-03 20:30:01 +0200245
246static void rt2500pci_init_led(struct rt2x00_dev *rt2x00dev,
247 struct rt2x00_led *led,
248 enum led_type type)
249{
250 led->rt2x00dev = rt2x00dev;
251 led->type = type;
252 led->led_dev.brightness_set = rt2500pci_brightness_set;
253 led->led_dev.blink_set = rt2500pci_blink_set;
254 led->flags = LED_INITIALIZED;
255}
Ivo van Doorn771fd562008-09-08 19:07:15 +0200256#endif /* CONFIG_RT2X00_LIB_LEDS */
Ivo van Doorna9450b72008-02-03 15:53:40 +0100257
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700258/*
259 * Configuration handlers.
260 */
Ivo van Doorn3a643d22008-03-25 14:13:18 +0100261static void rt2500pci_config_filter(struct rt2x00_dev *rt2x00dev,
262 const unsigned int filter_flags)
263{
264 u32 reg;
265
266 /*
267 * Start configuration steps.
268 * Note that the version error will always be dropped
269 * and broadcast frames will always be accepted since
270 * there is no filter for it at this time.
271 */
272 rt2x00pci_register_read(rt2x00dev, RXCSR0, &reg);
273 rt2x00_set_field32(&reg, RXCSR0_DROP_CRC,
274 !(filter_flags & FIF_FCSFAIL));
275 rt2x00_set_field32(&reg, RXCSR0_DROP_PHYSICAL,
276 !(filter_flags & FIF_PLCPFAIL));
277 rt2x00_set_field32(&reg, RXCSR0_DROP_CONTROL,
278 !(filter_flags & FIF_CONTROL));
279 rt2x00_set_field32(&reg, RXCSR0_DROP_NOT_TO_ME,
280 !(filter_flags & FIF_PROMISC_IN_BSS));
281 rt2x00_set_field32(&reg, RXCSR0_DROP_TODS,
Ivo van Doorne0b005f2008-03-31 15:24:53 +0200282 !(filter_flags & FIF_PROMISC_IN_BSS) &&
283 !rt2x00dev->intf_ap_count);
Ivo van Doorn3a643d22008-03-25 14:13:18 +0100284 rt2x00_set_field32(&reg, RXCSR0_DROP_VERSION_ERROR, 1);
285 rt2x00_set_field32(&reg, RXCSR0_DROP_MCAST,
286 !(filter_flags & FIF_ALLMULTI));
287 rt2x00_set_field32(&reg, RXCSR0_DROP_BCAST, 0);
288 rt2x00pci_register_write(rt2x00dev, RXCSR0, reg);
289}
290
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100291static void rt2500pci_config_intf(struct rt2x00_dev *rt2x00dev,
292 struct rt2x00_intf *intf,
293 struct rt2x00intf_conf *conf,
294 const unsigned int flags)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700295{
Gertjan van Wingerdea2440832011-03-03 19:46:55 +0100296 struct data_queue *queue = rt2x00dev->bcn;
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100297 unsigned int bcn_preload;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700298 u32 reg;
299
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100300 if (flags & CONFIG_UPDATE_TYPE) {
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100301 /*
302 * Enable beacon config
303 */
Ivo van Doornbad13632008-11-09 20:47:00 +0100304 bcn_preload = PREAMBLE + GET_DURATION(IEEE80211_HEADER, 20);
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100305 rt2x00pci_register_read(rt2x00dev, BCNCSR1, &reg);
306 rt2x00_set_field32(&reg, BCNCSR1_PRELOAD, bcn_preload);
307 rt2x00_set_field32(&reg, BCNCSR1_BEACON_CWMIN, queue->cw_min);
308 rt2x00pci_register_write(rt2x00dev, BCNCSR1, reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700309
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100310 /*
311 * Enable synchronisation.
312 */
313 rt2x00pci_register_read(rt2x00dev, CSR14, &reg);
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100314 rt2x00_set_field32(&reg, CSR14_TSF_SYNC, conf->sync);
315 rt2x00pci_register_write(rt2x00dev, CSR14, reg);
316 }
317
318 if (flags & CONFIG_UPDATE_MAC)
319 rt2x00pci_register_multiwrite(rt2x00dev, CSR3,
320 conf->mac, sizeof(conf->mac));
321
322 if (flags & CONFIG_UPDATE_BSSID)
323 rt2x00pci_register_multiwrite(rt2x00dev, CSR5,
324 conf->bssid, sizeof(conf->bssid));
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700325}
326
Ivo van Doorn3a643d22008-03-25 14:13:18 +0100327static void rt2500pci_config_erp(struct rt2x00_dev *rt2x00dev,
Helmut Schaa02044642010-09-08 20:56:32 +0200328 struct rt2x00lib_erp *erp,
329 u32 changed)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700330{
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200331 int preamble_mask;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700332 u32 reg;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700333
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200334 /*
335 * When short preamble is enabled, we should set bit 0x08
336 */
Helmut Schaa02044642010-09-08 20:56:32 +0200337 if (changed & BSS_CHANGED_ERP_PREAMBLE) {
338 preamble_mask = erp->short_preamble << 3;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700339
Helmut Schaa02044642010-09-08 20:56:32 +0200340 rt2x00pci_register_read(rt2x00dev, TXCSR1, &reg);
341 rt2x00_set_field32(&reg, TXCSR1_ACK_TIMEOUT, 0x162);
342 rt2x00_set_field32(&reg, TXCSR1_ACK_CONSUME_TIME, 0xa2);
343 rt2x00_set_field32(&reg, TXCSR1_TSF_OFFSET, IEEE80211_HEADER);
344 rt2x00_set_field32(&reg, TXCSR1_AUTORESPONDER, 1);
345 rt2x00pci_register_write(rt2x00dev, TXCSR1, reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700346
Helmut Schaa02044642010-09-08 20:56:32 +0200347 rt2x00pci_register_read(rt2x00dev, ARCSR2, &reg);
348 rt2x00_set_field32(&reg, ARCSR2_SIGNAL, 0x00);
349 rt2x00_set_field32(&reg, ARCSR2_SERVICE, 0x04);
350 rt2x00_set_field32(&reg, ARCSR2_LENGTH,
351 GET_DURATION(ACK_SIZE, 10));
352 rt2x00pci_register_write(rt2x00dev, ARCSR2, reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700353
Helmut Schaa02044642010-09-08 20:56:32 +0200354 rt2x00pci_register_read(rt2x00dev, ARCSR3, &reg);
355 rt2x00_set_field32(&reg, ARCSR3_SIGNAL, 0x01 | preamble_mask);
356 rt2x00_set_field32(&reg, ARCSR3_SERVICE, 0x04);
357 rt2x00_set_field32(&reg, ARCSR2_LENGTH,
358 GET_DURATION(ACK_SIZE, 20));
359 rt2x00pci_register_write(rt2x00dev, ARCSR3, reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700360
Helmut Schaa02044642010-09-08 20:56:32 +0200361 rt2x00pci_register_read(rt2x00dev, ARCSR4, &reg);
362 rt2x00_set_field32(&reg, ARCSR4_SIGNAL, 0x02 | preamble_mask);
363 rt2x00_set_field32(&reg, ARCSR4_SERVICE, 0x04);
364 rt2x00_set_field32(&reg, ARCSR2_LENGTH,
365 GET_DURATION(ACK_SIZE, 55));
366 rt2x00pci_register_write(rt2x00dev, ARCSR4, reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700367
Helmut Schaa02044642010-09-08 20:56:32 +0200368 rt2x00pci_register_read(rt2x00dev, ARCSR5, &reg);
369 rt2x00_set_field32(&reg, ARCSR5_SIGNAL, 0x03 | preamble_mask);
370 rt2x00_set_field32(&reg, ARCSR5_SERVICE, 0x84);
371 rt2x00_set_field32(&reg, ARCSR2_LENGTH,
372 GET_DURATION(ACK_SIZE, 110));
373 rt2x00pci_register_write(rt2x00dev, ARCSR5, reg);
374 }
Ivo van Doorne4ea1c42008-10-29 17:17:57 +0100375
Helmut Schaa02044642010-09-08 20:56:32 +0200376 if (changed & BSS_CHANGED_BASIC_RATES)
377 rt2x00pci_register_write(rt2x00dev, ARCSR1, erp->basic_rates);
Ivo van Doorne4ea1c42008-10-29 17:17:57 +0100378
Helmut Schaa02044642010-09-08 20:56:32 +0200379 if (changed & BSS_CHANGED_ERP_SLOT) {
380 rt2x00pci_register_read(rt2x00dev, CSR11, &reg);
381 rt2x00_set_field32(&reg, CSR11_SLOT_TIME, erp->slot_time);
382 rt2x00pci_register_write(rt2x00dev, CSR11, reg);
Ivo van Doorne4ea1c42008-10-29 17:17:57 +0100383
Helmut Schaa02044642010-09-08 20:56:32 +0200384 rt2x00pci_register_read(rt2x00dev, CSR18, &reg);
385 rt2x00_set_field32(&reg, CSR18_SIFS, erp->sifs);
386 rt2x00_set_field32(&reg, CSR18_PIFS, erp->pifs);
387 rt2x00pci_register_write(rt2x00dev, CSR18, reg);
Ivo van Doorn8a566af2009-05-21 19:16:46 +0200388
Helmut Schaa02044642010-09-08 20:56:32 +0200389 rt2x00pci_register_read(rt2x00dev, CSR19, &reg);
390 rt2x00_set_field32(&reg, CSR19_DIFS, erp->difs);
391 rt2x00_set_field32(&reg, CSR19_EIFS, erp->eifs);
392 rt2x00pci_register_write(rt2x00dev, CSR19, reg);
393 }
Ivo van Doorne4ea1c42008-10-29 17:17:57 +0100394
Helmut Schaa02044642010-09-08 20:56:32 +0200395 if (changed & BSS_CHANGED_BEACON_INT) {
396 rt2x00pci_register_read(rt2x00dev, CSR12, &reg);
397 rt2x00_set_field32(&reg, CSR12_BEACON_INTERVAL,
398 erp->beacon_int * 16);
399 rt2x00_set_field32(&reg, CSR12_CFP_MAX_DURATION,
400 erp->beacon_int * 16);
401 rt2x00pci_register_write(rt2x00dev, CSR12, reg);
402 }
403
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700404}
405
Ivo van Doorne4ea1c42008-10-29 17:17:57 +0100406static void rt2500pci_config_ant(struct rt2x00_dev *rt2x00dev,
407 struct antenna_setup *ant)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700408{
Ivo van Doorne4ea1c42008-10-29 17:17:57 +0100409 u32 reg;
410 u8 r14;
411 u8 r2;
412
413 /*
414 * We should never come here because rt2x00lib is supposed
415 * to catch this and send us the correct antenna explicitely.
416 */
417 BUG_ON(ant->rx == ANTENNA_SW_DIVERSITY ||
418 ant->tx == ANTENNA_SW_DIVERSITY);
419
420 rt2x00pci_register_read(rt2x00dev, BBPCSR1, &reg);
421 rt2500pci_bbp_read(rt2x00dev, 14, &r14);
422 rt2500pci_bbp_read(rt2x00dev, 2, &r2);
423
424 /*
425 * Configure the TX antenna.
426 */
427 switch (ant->tx) {
428 case ANTENNA_A:
429 rt2x00_set_field8(&r2, BBP_R2_TX_ANTENNA, 0);
430 rt2x00_set_field32(&reg, BBPCSR1_CCK, 0);
431 rt2x00_set_field32(&reg, BBPCSR1_OFDM, 0);
432 break;
433 case ANTENNA_B:
434 default:
435 rt2x00_set_field8(&r2, BBP_R2_TX_ANTENNA, 2);
436 rt2x00_set_field32(&reg, BBPCSR1_CCK, 2);
437 rt2x00_set_field32(&reg, BBPCSR1_OFDM, 2);
438 break;
439 }
440
441 /*
442 * Configure the RX antenna.
443 */
444 switch (ant->rx) {
445 case ANTENNA_A:
446 rt2x00_set_field8(&r14, BBP_R14_RX_ANTENNA, 0);
447 break;
448 case ANTENNA_B:
449 default:
450 rt2x00_set_field8(&r14, BBP_R14_RX_ANTENNA, 2);
451 break;
452 }
453
454 /*
455 * RT2525E and RT5222 need to flip TX I/Q
456 */
Gertjan van Wingerde5122d892009-12-23 00:03:25 +0100457 if (rt2x00_rf(rt2x00dev, RF2525E) || rt2x00_rf(rt2x00dev, RF5222)) {
Ivo van Doorne4ea1c42008-10-29 17:17:57 +0100458 rt2x00_set_field8(&r2, BBP_R2_TX_IQ_FLIP, 1);
459 rt2x00_set_field32(&reg, BBPCSR1_CCK_FLIP, 1);
460 rt2x00_set_field32(&reg, BBPCSR1_OFDM_FLIP, 1);
461
462 /*
463 * RT2525E does not need RX I/Q Flip.
464 */
Gertjan van Wingerde5122d892009-12-23 00:03:25 +0100465 if (rt2x00_rf(rt2x00dev, RF2525E))
Ivo van Doorne4ea1c42008-10-29 17:17:57 +0100466 rt2x00_set_field8(&r14, BBP_R14_RX_IQ_FLIP, 0);
467 } else {
468 rt2x00_set_field32(&reg, BBPCSR1_CCK_FLIP, 0);
469 rt2x00_set_field32(&reg, BBPCSR1_OFDM_FLIP, 0);
470 }
471
472 rt2x00pci_register_write(rt2x00dev, BBPCSR1, reg);
473 rt2500pci_bbp_write(rt2x00dev, 14, r14);
474 rt2500pci_bbp_write(rt2x00dev, 2, r2);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700475}
476
477static void rt2500pci_config_channel(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200478 struct rf_channel *rf, const int txpower)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700479{
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700480 u8 r70;
481
482 /*
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700483 * Set TXpower.
484 */
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200485 rt2x00_set_field32(&rf->rf3, RF3_TXPOWER, TXPOWER_TO_DEV(txpower));
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700486
487 /*
488 * Switch on tuning bits.
489 * For RT2523 devices we do not need to update the R1 register.
490 */
Gertjan van Wingerde5122d892009-12-23 00:03:25 +0100491 if (!rt2x00_rf(rt2x00dev, RF2523))
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200492 rt2x00_set_field32(&rf->rf1, RF1_TUNER, 1);
493 rt2x00_set_field32(&rf->rf3, RF3_TUNER, 1);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700494
495 /*
496 * For RT2525 we should first set the channel to half band higher.
497 */
Gertjan van Wingerde5122d892009-12-23 00:03:25 +0100498 if (rt2x00_rf(rt2x00dev, RF2525)) {
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700499 static const u32 vals[] = {
500 0x00080cbe, 0x00080d02, 0x00080d06, 0x00080d0a,
501 0x00080d0e, 0x00080d12, 0x00080d16, 0x00080d1a,
502 0x00080d1e, 0x00080d22, 0x00080d26, 0x00080d2a,
503 0x00080d2e, 0x00080d3a
504 };
505
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200506 rt2500pci_rf_write(rt2x00dev, 1, rf->rf1);
507 rt2500pci_rf_write(rt2x00dev, 2, vals[rf->channel - 1]);
508 rt2500pci_rf_write(rt2x00dev, 3, rf->rf3);
509 if (rf->rf4)
510 rt2500pci_rf_write(rt2x00dev, 4, rf->rf4);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700511 }
512
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200513 rt2500pci_rf_write(rt2x00dev, 1, rf->rf1);
514 rt2500pci_rf_write(rt2x00dev, 2, rf->rf2);
515 rt2500pci_rf_write(rt2x00dev, 3, rf->rf3);
516 if (rf->rf4)
517 rt2500pci_rf_write(rt2x00dev, 4, rf->rf4);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700518
519 /*
520 * Channel 14 requires the Japan filter bit to be set.
521 */
522 r70 = 0x46;
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200523 rt2x00_set_field8(&r70, BBP_R70_JAPAN_FILTER, rf->channel == 14);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700524 rt2500pci_bbp_write(rt2x00dev, 70, r70);
525
526 msleep(1);
527
528 /*
529 * Switch off tuning bits.
530 * For RT2523 devices we do not need to update the R1 register.
531 */
Gertjan van Wingerde5122d892009-12-23 00:03:25 +0100532 if (!rt2x00_rf(rt2x00dev, RF2523)) {
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200533 rt2x00_set_field32(&rf->rf1, RF1_TUNER, 0);
534 rt2500pci_rf_write(rt2x00dev, 1, rf->rf1);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700535 }
536
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200537 rt2x00_set_field32(&rf->rf3, RF3_TUNER, 0);
538 rt2500pci_rf_write(rt2x00dev, 3, rf->rf3);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700539
540 /*
541 * Clear false CRC during channel switch.
542 */
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200543 rt2x00pci_register_read(rt2x00dev, CNT0, &rf->rf1);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700544}
545
546static void rt2500pci_config_txpower(struct rt2x00_dev *rt2x00dev,
547 const int txpower)
548{
549 u32 rf3;
550
551 rt2x00_rf_read(rt2x00dev, 3, &rf3);
552 rt2x00_set_field32(&rf3, RF3_TXPOWER, TXPOWER_TO_DEV(txpower));
553 rt2500pci_rf_write(rt2x00dev, 3, rf3);
554}
555
Ivo van Doorne4ea1c42008-10-29 17:17:57 +0100556static void rt2500pci_config_retry_limit(struct rt2x00_dev *rt2x00dev,
557 struct rt2x00lib_conf *libconf)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700558{
559 u32 reg;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700560
Ivo van Doorne4ea1c42008-10-29 17:17:57 +0100561 rt2x00pci_register_read(rt2x00dev, CSR11, &reg);
562 rt2x00_set_field32(&reg, CSR11_LONG_RETRY,
563 libconf->conf->long_frame_max_tx_count);
564 rt2x00_set_field32(&reg, CSR11_SHORT_RETRY,
565 libconf->conf->short_frame_max_tx_count);
566 rt2x00pci_register_write(rt2x00dev, CSR11, reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700567}
568
Ivo van Doorn7d7f19c2008-12-20 10:52:42 +0100569static void rt2500pci_config_ps(struct rt2x00_dev *rt2x00dev,
570 struct rt2x00lib_conf *libconf)
571{
572 enum dev_state state =
573 (libconf->conf->flags & IEEE80211_CONF_PS) ?
574 STATE_SLEEP : STATE_AWAKE;
575 u32 reg;
576
577 if (state == STATE_SLEEP) {
578 rt2x00pci_register_read(rt2x00dev, CSR20, &reg);
579 rt2x00_set_field32(&reg, CSR20_DELAY_AFTER_TBCN,
Ivo van Doorn6b347bf2009-05-23 21:09:28 +0200580 (rt2x00dev->beacon_int - 20) * 16);
Ivo van Doorn7d7f19c2008-12-20 10:52:42 +0100581 rt2x00_set_field32(&reg, CSR20_TBCN_BEFORE_WAKEUP,
582 libconf->conf->listen_interval - 1);
583
584 /* We must first disable autowake before it can be enabled */
585 rt2x00_set_field32(&reg, CSR20_AUTOWAKE, 0);
586 rt2x00pci_register_write(rt2x00dev, CSR20, reg);
587
588 rt2x00_set_field32(&reg, CSR20_AUTOWAKE, 1);
589 rt2x00pci_register_write(rt2x00dev, CSR20, reg);
Gertjan van Wingerde57318582010-03-30 23:50:23 +0200590 } else {
591 rt2x00pci_register_read(rt2x00dev, CSR20, &reg);
592 rt2x00_set_field32(&reg, CSR20_AUTOWAKE, 0);
593 rt2x00pci_register_write(rt2x00dev, CSR20, reg);
Ivo van Doorn7d7f19c2008-12-20 10:52:42 +0100594 }
595
596 rt2x00dev->ops->lib->set_device_state(rt2x00dev, state);
597}
598
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700599static void rt2500pci_config(struct rt2x00_dev *rt2x00dev,
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100600 struct rt2x00lib_conf *libconf,
601 const unsigned int flags)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700602{
Ivo van Doorne4ea1c42008-10-29 17:17:57 +0100603 if (flags & IEEE80211_CONF_CHANGE_CHANNEL)
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200604 rt2500pci_config_channel(rt2x00dev, &libconf->rf,
605 libconf->conf->power_level);
Ivo van Doorne4ea1c42008-10-29 17:17:57 +0100606 if ((flags & IEEE80211_CONF_CHANGE_POWER) &&
607 !(flags & IEEE80211_CONF_CHANGE_CHANNEL))
Ivo van Doorn5c58ee52007-10-06 13:34:52 +0200608 rt2500pci_config_txpower(rt2x00dev,
609 libconf->conf->power_level);
Ivo van Doorne4ea1c42008-10-29 17:17:57 +0100610 if (flags & IEEE80211_CONF_CHANGE_RETRY_LIMITS)
611 rt2500pci_config_retry_limit(rt2x00dev, libconf);
Ivo van Doorn7d7f19c2008-12-20 10:52:42 +0100612 if (flags & IEEE80211_CONF_CHANGE_PS)
613 rt2500pci_config_ps(rt2x00dev, libconf);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700614}
615
616/*
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700617 * Link tuning
618 */
Ivo van Doornebcf26da2007-10-13 16:26:12 +0200619static void rt2500pci_link_stats(struct rt2x00_dev *rt2x00dev,
620 struct link_qual *qual)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700621{
622 u32 reg;
623
624 /*
625 * Update FCS error count from register.
626 */
627 rt2x00pci_register_read(rt2x00dev, CNT0, &reg);
Ivo van Doornebcf26da2007-10-13 16:26:12 +0200628 qual->rx_failed = rt2x00_get_field32(reg, CNT0_FCS_ERROR);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700629
630 /*
631 * Update False CCA count from register.
632 */
633 rt2x00pci_register_read(rt2x00dev, CNT3, &reg);
Ivo van Doornebcf26da2007-10-13 16:26:12 +0200634 qual->false_cca = rt2x00_get_field32(reg, CNT3_FALSE_CCA);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700635}
636
Ivo van Doorn5352ff62008-12-20 10:54:54 +0100637static inline void rt2500pci_set_vgc(struct rt2x00_dev *rt2x00dev,
638 struct link_qual *qual, u8 vgc_level)
Ivo van Doorneb20b4e2008-12-20 10:54:22 +0100639{
Ivo van Doorn5352ff62008-12-20 10:54:54 +0100640 if (qual->vgc_level_reg != vgc_level) {
Ivo van Doorneb20b4e2008-12-20 10:54:22 +0100641 rt2500pci_bbp_write(rt2x00dev, 17, vgc_level);
Ivo van Doorn223dcc22010-07-11 12:25:17 +0200642 qual->vgc_level = vgc_level;
Ivo van Doorn5352ff62008-12-20 10:54:54 +0100643 qual->vgc_level_reg = vgc_level;
Ivo van Doorneb20b4e2008-12-20 10:54:22 +0100644 }
645}
646
Ivo van Doorn5352ff62008-12-20 10:54:54 +0100647static void rt2500pci_reset_tuner(struct rt2x00_dev *rt2x00dev,
648 struct link_qual *qual)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700649{
Ivo van Doorn5352ff62008-12-20 10:54:54 +0100650 rt2500pci_set_vgc(rt2x00dev, qual, 0x48);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700651}
652
Ivo van Doorn5352ff62008-12-20 10:54:54 +0100653static void rt2500pci_link_tuner(struct rt2x00_dev *rt2x00dev,
654 struct link_qual *qual, const u32 count)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700655{
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700656 /*
657 * To prevent collisions with MAC ASIC on chipsets
658 * up to version C the link tuning should halt after 20
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100659 * seconds while being associated.
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700660 */
Gertjan van Wingerde5122d892009-12-23 00:03:25 +0100661 if (rt2x00_rev(rt2x00dev) < RT2560_VERSION_D &&
Ivo van Doorn5352ff62008-12-20 10:54:54 +0100662 rt2x00dev->intf_associated && count > 20)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700663 return;
664
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700665 /*
666 * Chipset versions C and lower should directly continue
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100667 * to the dynamic CCA tuning. Chipset version D and higher
668 * should go straight to dynamic CCA tuning when they
669 * are not associated.
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700670 */
Gertjan van Wingerde5122d892009-12-23 00:03:25 +0100671 if (rt2x00_rev(rt2x00dev) < RT2560_VERSION_D ||
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +0100672 !rt2x00dev->intf_associated)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700673 goto dynamic_cca_tune;
674
675 /*
676 * A too low RSSI will cause too much false CCA which will
677 * then corrupt the R17 tuning. To remidy this the tuning should
678 * be stopped (While making sure the R17 value will not exceed limits)
679 */
Ivo van Doorn5352ff62008-12-20 10:54:54 +0100680 if (qual->rssi < -80 && count > 20) {
681 if (qual->vgc_level_reg >= 0x41)
682 rt2500pci_set_vgc(rt2x00dev, qual, qual->vgc_level);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700683 return;
684 }
685
686 /*
687 * Special big-R17 for short distance
688 */
Ivo van Doorn5352ff62008-12-20 10:54:54 +0100689 if (qual->rssi >= -58) {
690 rt2500pci_set_vgc(rt2x00dev, qual, 0x50);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700691 return;
692 }
693
694 /*
695 * Special mid-R17 for middle distance
696 */
Ivo van Doorn5352ff62008-12-20 10:54:54 +0100697 if (qual->rssi >= -74) {
698 rt2500pci_set_vgc(rt2x00dev, qual, 0x41);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700699 return;
700 }
701
702 /*
703 * Leave short or middle distance condition, restore r17
704 * to the dynamic tuning range.
705 */
Ivo van Doorn5352ff62008-12-20 10:54:54 +0100706 if (qual->vgc_level_reg >= 0x41) {
707 rt2500pci_set_vgc(rt2x00dev, qual, qual->vgc_level);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700708 return;
709 }
710
711dynamic_cca_tune:
712
713 /*
714 * R17 is inside the dynamic tuning range,
715 * start tuning the link based on the false cca counter.
716 */
Ivo van Doorn223dcc22010-07-11 12:25:17 +0200717 if (qual->false_cca > 512 && qual->vgc_level_reg < 0x40)
Ivo van Doorn5352ff62008-12-20 10:54:54 +0100718 rt2500pci_set_vgc(rt2x00dev, qual, ++qual->vgc_level_reg);
Ivo van Doorn223dcc22010-07-11 12:25:17 +0200719 else if (qual->false_cca < 100 && qual->vgc_level_reg > 0x32)
Ivo van Doorn5352ff62008-12-20 10:54:54 +0100720 rt2500pci_set_vgc(rt2x00dev, qual, --qual->vgc_level_reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700721}
722
723/*
Ivo van Doorn5450b7e2010-12-13 12:34:22 +0100724 * Queue handlers.
725 */
726static void rt2500pci_start_queue(struct data_queue *queue)
727{
728 struct rt2x00_dev *rt2x00dev = queue->rt2x00dev;
729 u32 reg;
730
731 switch (queue->qid) {
732 case QID_RX:
733 rt2x00pci_register_read(rt2x00dev, RXCSR0, &reg);
734 rt2x00_set_field32(&reg, RXCSR0_DISABLE_RX, 0);
735 rt2x00pci_register_write(rt2x00dev, RXCSR0, reg);
736 break;
737 case QID_BEACON:
738 rt2x00pci_register_read(rt2x00dev, CSR14, &reg);
739 rt2x00_set_field32(&reg, CSR14_TSF_COUNT, 1);
740 rt2x00_set_field32(&reg, CSR14_TBCN, 1);
741 rt2x00_set_field32(&reg, CSR14_BEACON_GEN, 1);
742 rt2x00pci_register_write(rt2x00dev, CSR14, reg);
743 break;
744 default:
745 break;
746 }
747}
748
749static void rt2500pci_kick_queue(struct data_queue *queue)
750{
751 struct rt2x00_dev *rt2x00dev = queue->rt2x00dev;
752 u32 reg;
753
754 switch (queue->qid) {
Ivo van Doornf615e9a2010-12-13 12:36:38 +0100755 case QID_AC_VO:
Ivo van Doorn5450b7e2010-12-13 12:34:22 +0100756 rt2x00pci_register_read(rt2x00dev, TXCSR0, &reg);
757 rt2x00_set_field32(&reg, TXCSR0_KICK_PRIO, 1);
758 rt2x00pci_register_write(rt2x00dev, TXCSR0, reg);
759 break;
Ivo van Doornf615e9a2010-12-13 12:36:38 +0100760 case QID_AC_VI:
Ivo van Doorn5450b7e2010-12-13 12:34:22 +0100761 rt2x00pci_register_read(rt2x00dev, TXCSR0, &reg);
762 rt2x00_set_field32(&reg, TXCSR0_KICK_TX, 1);
763 rt2x00pci_register_write(rt2x00dev, TXCSR0, reg);
764 break;
765 case QID_ATIM:
766 rt2x00pci_register_read(rt2x00dev, TXCSR0, &reg);
767 rt2x00_set_field32(&reg, TXCSR0_KICK_ATIM, 1);
768 rt2x00pci_register_write(rt2x00dev, TXCSR0, reg);
769 break;
770 default:
771 break;
772 }
773}
774
775static void rt2500pci_stop_queue(struct data_queue *queue)
776{
777 struct rt2x00_dev *rt2x00dev = queue->rt2x00dev;
778 u32 reg;
779
780 switch (queue->qid) {
Ivo van Doornf615e9a2010-12-13 12:36:38 +0100781 case QID_AC_VO:
782 case QID_AC_VI:
Ivo van Doorn5450b7e2010-12-13 12:34:22 +0100783 case QID_ATIM:
784 rt2x00pci_register_read(rt2x00dev, TXCSR0, &reg);
785 rt2x00_set_field32(&reg, TXCSR0_ABORT, 1);
786 rt2x00pci_register_write(rt2x00dev, TXCSR0, reg);
787 break;
788 case QID_RX:
789 rt2x00pci_register_read(rt2x00dev, RXCSR0, &reg);
790 rt2x00_set_field32(&reg, RXCSR0_DISABLE_RX, 1);
791 rt2x00pci_register_write(rt2x00dev, RXCSR0, reg);
792 break;
793 case QID_BEACON:
794 rt2x00pci_register_read(rt2x00dev, CSR14, &reg);
795 rt2x00_set_field32(&reg, CSR14_TSF_COUNT, 0);
796 rt2x00_set_field32(&reg, CSR14_TBCN, 0);
797 rt2x00_set_field32(&reg, CSR14_BEACON_GEN, 0);
798 rt2x00pci_register_write(rt2x00dev, CSR14, reg);
Helmut Schaa16222a02011-01-30 13:19:37 +0100799
800 /*
801 * Wait for possibly running tbtt tasklets.
802 */
Helmut Schaaabc11992011-08-06 13:13:48 +0200803 tasklet_kill(&rt2x00dev->tbtt_tasklet);
Ivo van Doorn5450b7e2010-12-13 12:34:22 +0100804 break;
805 default:
806 break;
807 }
808}
809
810/*
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700811 * Initialization functions.
812 */
Ivo van Doorn798b7ad2008-11-08 15:25:33 +0100813static bool rt2500pci_get_entry_state(struct queue_entry *entry)
814{
815 struct queue_entry_priv_pci *entry_priv = entry->priv_data;
816 u32 word;
817
818 if (entry->queue->qid == QID_RX) {
819 rt2x00_desc_read(entry_priv->desc, 0, &word);
820
821 return rt2x00_get_field32(word, RXD_W0_OWNER_NIC);
822 } else {
823 rt2x00_desc_read(entry_priv->desc, 0, &word);
824
825 return (rt2x00_get_field32(word, TXD_W0_OWNER_NIC) ||
826 rt2x00_get_field32(word, TXD_W0_VALID));
827 }
828}
829
830static void rt2500pci_clear_entry(struct queue_entry *entry)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700831{
Ivo van Doornb8be63f2008-05-10 13:46:03 +0200832 struct queue_entry_priv_pci *entry_priv = entry->priv_data;
Gertjan van Wingerdec4da0042008-06-16 19:56:31 +0200833 struct skb_frame_desc *skbdesc = get_skb_frame_desc(entry->skb);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700834 u32 word;
835
Ivo van Doorn798b7ad2008-11-08 15:25:33 +0100836 if (entry->queue->qid == QID_RX) {
837 rt2x00_desc_read(entry_priv->desc, 1, &word);
838 rt2x00_set_field32(&word, RXD_W1_BUFFER_ADDRESS, skbdesc->skb_dma);
839 rt2x00_desc_write(entry_priv->desc, 1, word);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700840
Ivo van Doorn798b7ad2008-11-08 15:25:33 +0100841 rt2x00_desc_read(entry_priv->desc, 0, &word);
842 rt2x00_set_field32(&word, RXD_W0_OWNER_NIC, 1);
843 rt2x00_desc_write(entry_priv->desc, 0, word);
844 } else {
845 rt2x00_desc_read(entry_priv->desc, 0, &word);
846 rt2x00_set_field32(&word, TXD_W0_VALID, 0);
847 rt2x00_set_field32(&word, TXD_W0_OWNER_NIC, 0);
848 rt2x00_desc_write(entry_priv->desc, 0, word);
849 }
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700850}
851
Ivo van Doorn181d6902008-02-05 16:42:23 -0500852static int rt2500pci_init_queues(struct rt2x00_dev *rt2x00dev)
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700853{
Ivo van Doornb8be63f2008-05-10 13:46:03 +0200854 struct queue_entry_priv_pci *entry_priv;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700855 u32 reg;
856
857 /*
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700858 * Initialize registers.
859 */
860 rt2x00pci_register_read(rt2x00dev, TXCSR2, &reg);
Ivo van Doorn181d6902008-02-05 16:42:23 -0500861 rt2x00_set_field32(&reg, TXCSR2_TXD_SIZE, rt2x00dev->tx[0].desc_size);
862 rt2x00_set_field32(&reg, TXCSR2_NUM_TXD, rt2x00dev->tx[1].limit);
Gertjan van Wingerdee74df4a2011-03-03 19:46:09 +0100863 rt2x00_set_field32(&reg, TXCSR2_NUM_ATIM, rt2x00dev->atim->limit);
Ivo van Doorn181d6902008-02-05 16:42:23 -0500864 rt2x00_set_field32(&reg, TXCSR2_NUM_PRIO, rt2x00dev->tx[0].limit);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700865 rt2x00pci_register_write(rt2x00dev, TXCSR2, reg);
866
Ivo van Doornb8be63f2008-05-10 13:46:03 +0200867 entry_priv = rt2x00dev->tx[1].entries[0].priv_data;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700868 rt2x00pci_register_read(rt2x00dev, TXCSR3, &reg);
Ivo van Doorn30b3a232008-02-17 17:33:24 +0100869 rt2x00_set_field32(&reg, TXCSR3_TX_RING_REGISTER,
Ivo van Doornb8be63f2008-05-10 13:46:03 +0200870 entry_priv->desc_dma);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700871 rt2x00pci_register_write(rt2x00dev, TXCSR3, reg);
872
Ivo van Doornb8be63f2008-05-10 13:46:03 +0200873 entry_priv = rt2x00dev->tx[0].entries[0].priv_data;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700874 rt2x00pci_register_read(rt2x00dev, TXCSR5, &reg);
Ivo van Doorn30b3a232008-02-17 17:33:24 +0100875 rt2x00_set_field32(&reg, TXCSR5_PRIO_RING_REGISTER,
Ivo van Doornb8be63f2008-05-10 13:46:03 +0200876 entry_priv->desc_dma);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700877 rt2x00pci_register_write(rt2x00dev, TXCSR5, reg);
878
Gertjan van Wingerdee74df4a2011-03-03 19:46:09 +0100879 entry_priv = rt2x00dev->atim->entries[0].priv_data;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700880 rt2x00pci_register_read(rt2x00dev, TXCSR4, &reg);
Ivo van Doorn30b3a232008-02-17 17:33:24 +0100881 rt2x00_set_field32(&reg, TXCSR4_ATIM_RING_REGISTER,
Ivo van Doornb8be63f2008-05-10 13:46:03 +0200882 entry_priv->desc_dma);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700883 rt2x00pci_register_write(rt2x00dev, TXCSR4, reg);
884
Gertjan van Wingerdee74df4a2011-03-03 19:46:09 +0100885 entry_priv = rt2x00dev->bcn->entries[0].priv_data;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700886 rt2x00pci_register_read(rt2x00dev, TXCSR6, &reg);
Ivo van Doorn30b3a232008-02-17 17:33:24 +0100887 rt2x00_set_field32(&reg, TXCSR6_BEACON_RING_REGISTER,
Ivo van Doornb8be63f2008-05-10 13:46:03 +0200888 entry_priv->desc_dma);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700889 rt2x00pci_register_write(rt2x00dev, TXCSR6, reg);
890
891 rt2x00pci_register_read(rt2x00dev, RXCSR1, &reg);
892 rt2x00_set_field32(&reg, RXCSR1_RXD_SIZE, rt2x00dev->rx->desc_size);
Ivo van Doorn181d6902008-02-05 16:42:23 -0500893 rt2x00_set_field32(&reg, RXCSR1_NUM_RXD, rt2x00dev->rx->limit);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700894 rt2x00pci_register_write(rt2x00dev, RXCSR1, reg);
895
Ivo van Doornb8be63f2008-05-10 13:46:03 +0200896 entry_priv = rt2x00dev->rx->entries[0].priv_data;
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700897 rt2x00pci_register_read(rt2x00dev, RXCSR2, &reg);
Ivo van Doornb8be63f2008-05-10 13:46:03 +0200898 rt2x00_set_field32(&reg, RXCSR2_RX_RING_REGISTER,
899 entry_priv->desc_dma);
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700900 rt2x00pci_register_write(rt2x00dev, RXCSR2, reg);
901
902 return 0;
903}
904
905static int rt2500pci_init_registers(struct rt2x00_dev *rt2x00dev)
906{
907 u32 reg;
908
909 rt2x00pci_register_write(rt2x00dev, PSCSR0, 0x00020002);
910 rt2x00pci_register_write(rt2x00dev, PSCSR1, 0x00000002);
911 rt2x00pci_register_write(rt2x00dev, PSCSR2, 0x00020002);
912 rt2x00pci_register_write(rt2x00dev, PSCSR3, 0x00000002);
913
914 rt2x00pci_register_read(rt2x00dev, TIMECSR, &reg);
915 rt2x00_set_field32(&reg, TIMECSR_US_COUNT, 33);
916 rt2x00_set_field32(&reg, TIMECSR_US_64_COUNT, 63);
917 rt2x00_set_field32(&reg, TIMECSR_BEACON_EXPECT, 0);
918 rt2x00pci_register_write(rt2x00dev, TIMECSR, reg);
919
920 rt2x00pci_register_read(rt2x00dev, CSR9, &reg);
921 rt2x00_set_field32(&reg, CSR9_MAX_FRAME_UNIT,
922 rt2x00dev->rx->data_size / 128);
923 rt2x00pci_register_write(rt2x00dev, CSR9, reg);
924
925 /*
926 * Always use CWmin and CWmax set in descriptor.
927 */
928 rt2x00pci_register_read(rt2x00dev, CSR11, &reg);
929 rt2x00_set_field32(&reg, CSR11_CW_SELECT, 0);
930 rt2x00pci_register_write(rt2x00dev, CSR11, reg);
931
Ivo van Doorn1f909162008-07-08 13:45:20 +0200932 rt2x00pci_register_read(rt2x00dev, CSR14, &reg);
933 rt2x00_set_field32(&reg, CSR14_TSF_COUNT, 0);
934 rt2x00_set_field32(&reg, CSR14_TSF_SYNC, 0);
935 rt2x00_set_field32(&reg, CSR14_TBCN, 0);
936 rt2x00_set_field32(&reg, CSR14_TCFP, 0);
937 rt2x00_set_field32(&reg, CSR14_TATIMW, 0);
938 rt2x00_set_field32(&reg, CSR14_BEACON_GEN, 0);
939 rt2x00_set_field32(&reg, CSR14_CFP_COUNT_PRELOAD, 0);
940 rt2x00_set_field32(&reg, CSR14_TBCM_PRELOAD, 0);
941 rt2x00pci_register_write(rt2x00dev, CSR14, reg);
942
Ivo van Doorn95ea3622007-09-25 17:57:13 -0700943 rt2x00pci_register_write(rt2x00dev, CNT3, 0);
944
945 rt2x00pci_register_read(rt2x00dev, TXCSR8, &reg);
946 rt2x00_set_field32(&reg, TXCSR8_BBP_ID0, 10);
947 rt2x00_set_field32(&reg, TXCSR8_BBP_ID0_VALID, 1);
948 rt2x00_set_field32(&reg, TXCSR8_BBP_ID1, 11);
949 rt2x00_set_field32(&reg, TXCSR8_BBP_ID1_VALID, 1);
950 rt2x00_set_field32(&reg, TXCSR8_BBP_ID2, 13);
951 rt2x00_set_field32(&reg, TXCSR8_BBP_ID2_VALID, 1);
952 rt2x00_set_field32(&reg, TXCSR8_BBP_ID3, 12);
953 rt2x00_set_field32(&reg, TXCSR8_BBP_ID3_VALID, 1);
954 rt2x00pci_register_write(rt2x00dev, TXCSR8, reg);
955
956 rt2x00pci_register_read(rt2x00dev, ARTCSR0, &reg);
957 rt2x00_set_field32(&reg, ARTCSR0_ACK_CTS_1MBS, 112);
958 rt2x00_set_field32(&reg, ARTCSR0_ACK_CTS_2MBS, 56);
959 rt2x00_set_field32(&reg, ARTCSR0_ACK_CTS_5_5MBS, 20);
960 rt2x00_set_field32(&reg, ARTCSR0_ACK_CTS_11MBS, 10);
961 rt2x00pci_register_write(rt2x00dev, ARTCSR0, reg);
962
963 rt2x00pci_register_read(rt2x00dev, ARTCSR1, &reg);
964 rt2x00_set_field32(&reg, ARTCSR1_ACK_CTS_6MBS, 45);
965 rt2x00_set_field32(&reg, ARTCSR1_ACK_CTS_9MBS, 37);
966 rt2x00_set_field32(&reg, ARTCSR1_ACK_CTS_12MBS, 33);
967 rt2x00_set_field32(&reg, ARTCSR1_ACK_CTS_18MBS, 29);
968 rt2x00pci_register_write(rt2x00dev, ARTCSR1, reg);
969
970 rt2x00pci_register_read(rt2x00dev, ARTCSR2, &reg);
971 rt2x00_set_field32(&reg, ARTCSR2_ACK_CTS_24MBS, 29);
972 rt2x00_set_field32(&reg, ARTCSR2_ACK_CTS_36MBS, 25);
973 rt2x00_set_field32(&reg, ARTCSR2_ACK_CTS_48MBS, 25);
974 rt2x00_set_field32(&reg, ARTCSR2_ACK_CTS_54MBS, 25);
975 rt2x00pci_register_write(rt2x00dev, ARTCSR2, reg);
976
977 rt2x00pci_register_read(rt2x00dev, RXCSR3, &reg);
978 rt2x00_set_field32(&reg, RXCSR3_BBP_ID0, 47); /* CCK Signal */
979 rt2x00_set_field32(&reg, RXCSR3_BBP_ID0_VALID, 1);
980 rt2x00_set_field32(&reg, RXCSR3_BBP_ID1, 51); /* Rssi */
981 rt2x00_set_field32(&reg, RXCSR3_BBP_ID1_VALID, 1);
982 rt2x00_set_field32(&reg, RXCSR3_BBP_ID2, 42); /* OFDM Rate */
983 rt2x00_set_field32(&reg, RXCSR3_BBP_ID2_VALID, 1);
984 rt2x00_set_field32(&reg, RXCSR3_BBP_ID3, 51); /* RSSI */
985 rt2x00_set_field32(&reg, RXCSR3_BBP_ID3_VALID, 1);
986 rt2x00pci_register_write(rt2x00dev, RXCSR3, reg);
987
988 rt2x00pci_register_read(rt2x00dev, PCICSR, &reg);
989 rt2x00_set_field32(&reg, PCICSR_BIG_ENDIAN, 0);
990 rt2x00_set_field32(&reg, PCICSR_RX_TRESHOLD, 0);
991 rt2x00_set_field32(&reg, PCICSR_TX_TRESHOLD, 3);
992 rt2x00_set_field32(&reg, PCICSR_BURST_LENTH, 1);
993 rt2x00_set_field32(&reg, PCICSR_ENABLE_CLK, 1);
994 rt2x00_set_field32(&reg, PCICSR_READ_MULTIPLE, 1);
995 rt2x00_set_field32(&reg, PCICSR_WRITE_INVALID, 1);
996 rt2x00pci_register_write(rt2x00dev, PCICSR, reg);
997
998 rt2x00pci_register_write(rt2x00dev, PWRCSR0, 0x3f3b3100);
999
1000 rt2x00pci_register_write(rt2x00dev, GPIOCSR, 0x0000ff00);
1001 rt2x00pci_register_write(rt2x00dev, TESTCSR, 0x000000f0);
1002
1003 if (rt2x00dev->ops->lib->set_device_state(rt2x00dev, STATE_AWAKE))
1004 return -EBUSY;
1005
1006 rt2x00pci_register_write(rt2x00dev, MACCSR0, 0x00213223);
1007 rt2x00pci_register_write(rt2x00dev, MACCSR1, 0x00235518);
1008
1009 rt2x00pci_register_read(rt2x00dev, MACCSR2, &reg);
1010 rt2x00_set_field32(&reg, MACCSR2_DELAY, 64);
1011 rt2x00pci_register_write(rt2x00dev, MACCSR2, reg);
1012
1013 rt2x00pci_register_read(rt2x00dev, RALINKCSR, &reg);
1014 rt2x00_set_field32(&reg, RALINKCSR_AR_BBP_DATA0, 17);
1015 rt2x00_set_field32(&reg, RALINKCSR_AR_BBP_ID0, 26);
1016 rt2x00_set_field32(&reg, RALINKCSR_AR_BBP_VALID0, 1);
1017 rt2x00_set_field32(&reg, RALINKCSR_AR_BBP_DATA1, 0);
1018 rt2x00_set_field32(&reg, RALINKCSR_AR_BBP_ID1, 26);
1019 rt2x00_set_field32(&reg, RALINKCSR_AR_BBP_VALID1, 1);
1020 rt2x00pci_register_write(rt2x00dev, RALINKCSR, reg);
1021
1022 rt2x00pci_register_write(rt2x00dev, BBPCSR1, 0x82188200);
1023
1024 rt2x00pci_register_write(rt2x00dev, TXACKCSR0, 0x00000020);
1025
1026 rt2x00pci_register_read(rt2x00dev, CSR1, &reg);
1027 rt2x00_set_field32(&reg, CSR1_SOFT_RESET, 1);
1028 rt2x00_set_field32(&reg, CSR1_BBP_RESET, 0);
1029 rt2x00_set_field32(&reg, CSR1_HOST_READY, 0);
1030 rt2x00pci_register_write(rt2x00dev, CSR1, reg);
1031
1032 rt2x00pci_register_read(rt2x00dev, CSR1, &reg);
1033 rt2x00_set_field32(&reg, CSR1_SOFT_RESET, 0);
1034 rt2x00_set_field32(&reg, CSR1_HOST_READY, 1);
1035 rt2x00pci_register_write(rt2x00dev, CSR1, reg);
1036
1037 /*
1038 * We must clear the FCS and FIFO error count.
1039 * These registers are cleared on read,
1040 * so we may pass a useless variable to store the value.
1041 */
1042 rt2x00pci_register_read(rt2x00dev, CNT0, &reg);
1043 rt2x00pci_register_read(rt2x00dev, CNT4, &reg);
1044
1045 return 0;
1046}
1047
Ivo van Doorn2b08da32008-06-03 18:58:56 +02001048static int rt2500pci_wait_bbp_ready(struct rt2x00_dev *rt2x00dev)
1049{
1050 unsigned int i;
1051 u8 value;
1052
1053 for (i = 0; i < REGISTER_BUSY_COUNT; i++) {
1054 rt2500pci_bbp_read(rt2x00dev, 0, &value);
1055 if ((value != 0xff) && (value != 0x00))
1056 return 0;
1057 udelay(REGISTER_BUSY_DELAY);
1058 }
1059
1060 ERROR(rt2x00dev, "BBP register access failed, aborting.\n");
1061 return -EACCES;
1062}
1063
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001064static int rt2500pci_init_bbp(struct rt2x00_dev *rt2x00dev)
1065{
1066 unsigned int i;
1067 u16 eeprom;
1068 u8 reg_id;
1069 u8 value;
1070
Ivo van Doorn2b08da32008-06-03 18:58:56 +02001071 if (unlikely(rt2500pci_wait_bbp_ready(rt2x00dev)))
1072 return -EACCES;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001073
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001074 rt2500pci_bbp_write(rt2x00dev, 3, 0x02);
1075 rt2500pci_bbp_write(rt2x00dev, 4, 0x19);
1076 rt2500pci_bbp_write(rt2x00dev, 14, 0x1c);
1077 rt2500pci_bbp_write(rt2x00dev, 15, 0x30);
1078 rt2500pci_bbp_write(rt2x00dev, 16, 0xac);
1079 rt2500pci_bbp_write(rt2x00dev, 18, 0x18);
1080 rt2500pci_bbp_write(rt2x00dev, 19, 0xff);
1081 rt2500pci_bbp_write(rt2x00dev, 20, 0x1e);
1082 rt2500pci_bbp_write(rt2x00dev, 21, 0x08);
1083 rt2500pci_bbp_write(rt2x00dev, 22, 0x08);
1084 rt2500pci_bbp_write(rt2x00dev, 23, 0x08);
1085 rt2500pci_bbp_write(rt2x00dev, 24, 0x70);
1086 rt2500pci_bbp_write(rt2x00dev, 25, 0x40);
1087 rt2500pci_bbp_write(rt2x00dev, 26, 0x08);
1088 rt2500pci_bbp_write(rt2x00dev, 27, 0x23);
1089 rt2500pci_bbp_write(rt2x00dev, 30, 0x10);
1090 rt2500pci_bbp_write(rt2x00dev, 31, 0x2b);
1091 rt2500pci_bbp_write(rt2x00dev, 32, 0xb9);
1092 rt2500pci_bbp_write(rt2x00dev, 34, 0x12);
1093 rt2500pci_bbp_write(rt2x00dev, 35, 0x50);
1094 rt2500pci_bbp_write(rt2x00dev, 39, 0xc4);
1095 rt2500pci_bbp_write(rt2x00dev, 40, 0x02);
1096 rt2500pci_bbp_write(rt2x00dev, 41, 0x60);
1097 rt2500pci_bbp_write(rt2x00dev, 53, 0x10);
1098 rt2500pci_bbp_write(rt2x00dev, 54, 0x18);
1099 rt2500pci_bbp_write(rt2x00dev, 56, 0x08);
1100 rt2500pci_bbp_write(rt2x00dev, 57, 0x10);
1101 rt2500pci_bbp_write(rt2x00dev, 58, 0x08);
1102 rt2500pci_bbp_write(rt2x00dev, 61, 0x6d);
1103 rt2500pci_bbp_write(rt2x00dev, 62, 0x10);
1104
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001105 for (i = 0; i < EEPROM_BBP_SIZE; i++) {
1106 rt2x00_eeprom_read(rt2x00dev, EEPROM_BBP_START + i, &eeprom);
1107
1108 if (eeprom != 0xffff && eeprom != 0x0000) {
1109 reg_id = rt2x00_get_field16(eeprom, EEPROM_BBP_REG_ID);
1110 value = rt2x00_get_field16(eeprom, EEPROM_BBP_VALUE);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001111 rt2500pci_bbp_write(rt2x00dev, reg_id, value);
1112 }
1113 }
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001114
1115 return 0;
1116}
1117
1118/*
1119 * Device state switch handlers.
1120 */
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001121static void rt2500pci_toggle_irq(struct rt2x00_dev *rt2x00dev,
1122 enum dev_state state)
1123{
Helmut Schaab5509112011-01-30 13:20:52 +01001124 int mask = (state == STATE_RADIO_IRQ_OFF);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001125 u32 reg;
Helmut Schaa16222a02011-01-30 13:19:37 +01001126 unsigned long flags;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001127
1128 /*
1129 * When interrupts are being enabled, the interrupt registers
1130 * should clear the register to assure a clean state.
1131 */
1132 if (state == STATE_RADIO_IRQ_ON) {
1133 rt2x00pci_register_read(rt2x00dev, CSR7, &reg);
1134 rt2x00pci_register_write(rt2x00dev, CSR7, reg);
1135 }
1136
1137 /*
1138 * Only toggle the interrupts bits we are going to use.
1139 * Non-checked interrupt bits are disabled by default.
1140 */
Helmut Schaa16222a02011-01-30 13:19:37 +01001141 spin_lock_irqsave(&rt2x00dev->irqmask_lock, flags);
1142
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001143 rt2x00pci_register_read(rt2x00dev, CSR8, &reg);
1144 rt2x00_set_field32(&reg, CSR8_TBCN_EXPIRE, mask);
1145 rt2x00_set_field32(&reg, CSR8_TXDONE_TXRING, mask);
1146 rt2x00_set_field32(&reg, CSR8_TXDONE_ATIMRING, mask);
1147 rt2x00_set_field32(&reg, CSR8_TXDONE_PRIORING, mask);
1148 rt2x00_set_field32(&reg, CSR8_RXDONE, mask);
1149 rt2x00pci_register_write(rt2x00dev, CSR8, reg);
Helmut Schaa16222a02011-01-30 13:19:37 +01001150
1151 spin_unlock_irqrestore(&rt2x00dev->irqmask_lock, flags);
1152
1153 if (state == STATE_RADIO_IRQ_OFF) {
1154 /*
1155 * Ensure that all tasklets are finished.
1156 */
Helmut Schaaabc11992011-08-06 13:13:48 +02001157 tasklet_kill(&rt2x00dev->txstatus_tasklet);
1158 tasklet_kill(&rt2x00dev->rxdone_tasklet);
1159 tasklet_kill(&rt2x00dev->tbtt_tasklet);
Helmut Schaa16222a02011-01-30 13:19:37 +01001160 }
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001161}
1162
1163static int rt2500pci_enable_radio(struct rt2x00_dev *rt2x00dev)
1164{
1165 /*
1166 * Initialize all registers.
1167 */
Ivo van Doorn2b08da32008-06-03 18:58:56 +02001168 if (unlikely(rt2500pci_init_queues(rt2x00dev) ||
1169 rt2500pci_init_registers(rt2x00dev) ||
1170 rt2500pci_init_bbp(rt2x00dev)))
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001171 return -EIO;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001172
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001173 return 0;
1174}
1175
1176static void rt2500pci_disable_radio(struct rt2x00_dev *rt2x00dev)
1177{
Ivo van Doorna2c9b652009-01-28 00:32:33 +01001178 /*
1179 * Disable power
1180 */
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001181 rt2x00pci_register_write(rt2x00dev, PWRCSR0, 0);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001182}
1183
1184static int rt2500pci_set_state(struct rt2x00_dev *rt2x00dev,
1185 enum dev_state state)
1186{
Gertjan van Wingerde9655a6e2010-05-13 21:16:03 +02001187 u32 reg, reg2;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001188 unsigned int i;
1189 char put_to_sleep;
1190 char bbp_state;
1191 char rf_state;
1192
1193 put_to_sleep = (state != STATE_AWAKE);
1194
1195 rt2x00pci_register_read(rt2x00dev, PWRCSR1, &reg);
1196 rt2x00_set_field32(&reg, PWRCSR1_SET_STATE, 1);
1197 rt2x00_set_field32(&reg, PWRCSR1_BBP_DESIRE_STATE, state);
1198 rt2x00_set_field32(&reg, PWRCSR1_RF_DESIRE_STATE, state);
1199 rt2x00_set_field32(&reg, PWRCSR1_PUT_TO_SLEEP, put_to_sleep);
1200 rt2x00pci_register_write(rt2x00dev, PWRCSR1, reg);
1201
1202 /*
1203 * Device is not guaranteed to be in the requested state yet.
1204 * We must wait until the register indicates that the
1205 * device has entered the correct state.
1206 */
1207 for (i = 0; i < REGISTER_BUSY_COUNT; i++) {
Gertjan van Wingerde9655a6e2010-05-13 21:16:03 +02001208 rt2x00pci_register_read(rt2x00dev, PWRCSR1, &reg2);
1209 bbp_state = rt2x00_get_field32(reg2, PWRCSR1_BBP_CURR_STATE);
1210 rf_state = rt2x00_get_field32(reg2, PWRCSR1_RF_CURR_STATE);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001211 if (bbp_state == state && rf_state == state)
1212 return 0;
Gertjan van Wingerde9655a6e2010-05-13 21:16:03 +02001213 rt2x00pci_register_write(rt2x00dev, PWRCSR1, reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001214 msleep(10);
1215 }
1216
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001217 return -EBUSY;
1218}
1219
1220static int rt2500pci_set_device_state(struct rt2x00_dev *rt2x00dev,
1221 enum dev_state state)
1222{
1223 int retval = 0;
1224
1225 switch (state) {
1226 case STATE_RADIO_ON:
1227 retval = rt2500pci_enable_radio(rt2x00dev);
1228 break;
1229 case STATE_RADIO_OFF:
1230 rt2500pci_disable_radio(rt2x00dev);
1231 break;
Ivo van Doorn2b08da32008-06-03 18:58:56 +02001232 case STATE_RADIO_IRQ_ON:
1233 case STATE_RADIO_IRQ_OFF:
1234 rt2500pci_toggle_irq(rt2x00dev, state);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001235 break;
1236 case STATE_DEEP_SLEEP:
1237 case STATE_SLEEP:
1238 case STATE_STANDBY:
1239 case STATE_AWAKE:
1240 retval = rt2500pci_set_state(rt2x00dev, state);
1241 break;
1242 default:
1243 retval = -ENOTSUPP;
1244 break;
1245 }
1246
Ivo van Doorn2b08da32008-06-03 18:58:56 +02001247 if (unlikely(retval))
1248 ERROR(rt2x00dev, "Device failed to enter state %d (%d).\n",
1249 state, retval);
1250
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001251 return retval;
1252}
1253
1254/*
1255 * TX descriptor initialization
1256 */
Ivo van Doorn93331452010-08-23 19:53:39 +02001257static void rt2500pci_write_tx_desc(struct queue_entry *entry,
Ivo van Doorn61486e02008-05-10 13:42:31 +02001258 struct txentry_desc *txdesc)
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001259{
Ivo van Doorn93331452010-08-23 19:53:39 +02001260 struct skb_frame_desc *skbdesc = get_skb_frame_desc(entry->skb);
1261 struct queue_entry_priv_pci *entry_priv = entry->priv_data;
Gertjan van Wingerde85b7a8b2010-05-11 23:51:40 +02001262 __le32 *txd = entry_priv->desc;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001263 u32 word;
1264
1265 /*
1266 * Start writing the descriptor words.
1267 */
Gertjan van Wingerde85b7a8b2010-05-11 23:51:40 +02001268 rt2x00_desc_read(txd, 1, &word);
Gertjan van Wingerdec4da0042008-06-16 19:56:31 +02001269 rt2x00_set_field32(&word, TXD_W1_BUFFER_ADDRESS, skbdesc->skb_dma);
Gertjan van Wingerde85b7a8b2010-05-11 23:51:40 +02001270 rt2x00_desc_write(txd, 1, word);
Gertjan van Wingerde4de36fe2008-05-10 13:44:14 +02001271
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001272 rt2x00_desc_read(txd, 2, &word);
1273 rt2x00_set_field32(&word, TXD_W2_IV_OFFSET, IEEE80211_HEADER);
Helmut Schaa2b23cda2010-11-04 20:38:15 +01001274 rt2x00_set_field32(&word, TXD_W2_AIFS, entry->queue->aifs);
1275 rt2x00_set_field32(&word, TXD_W2_CWMIN, entry->queue->cw_min);
1276 rt2x00_set_field32(&word, TXD_W2_CWMAX, entry->queue->cw_max);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001277 rt2x00_desc_write(txd, 2, word);
1278
1279 rt2x00_desc_read(txd, 3, &word);
Helmut Schaa26a1d072011-03-03 19:42:35 +01001280 rt2x00_set_field32(&word, TXD_W3_PLCP_SIGNAL, txdesc->u.plcp.signal);
1281 rt2x00_set_field32(&word, TXD_W3_PLCP_SERVICE, txdesc->u.plcp.service);
1282 rt2x00_set_field32(&word, TXD_W3_PLCP_LENGTH_LOW,
1283 txdesc->u.plcp.length_low);
1284 rt2x00_set_field32(&word, TXD_W3_PLCP_LENGTH_HIGH,
1285 txdesc->u.plcp.length_high);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001286 rt2x00_desc_write(txd, 3, word);
1287
1288 rt2x00_desc_read(txd, 10, &word);
1289 rt2x00_set_field32(&word, TXD_W10_RTS,
Ivo van Doorn181d6902008-02-05 16:42:23 -05001290 test_bit(ENTRY_TXD_RTS_FRAME, &txdesc->flags));
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001291 rt2x00_desc_write(txd, 10, word);
1292
Gertjan van Wingerdee01f1ec2010-05-11 23:51:39 +02001293 /*
1294 * Writing TXD word 0 must the last to prevent a race condition with
1295 * the device, whereby the device may take hold of the TXD before we
1296 * finished updating it.
1297 */
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001298 rt2x00_desc_read(txd, 0, &word);
1299 rt2x00_set_field32(&word, TXD_W0_OWNER_NIC, 1);
1300 rt2x00_set_field32(&word, TXD_W0_VALID, 1);
1301 rt2x00_set_field32(&word, TXD_W0_MORE_FRAG,
Ivo van Doorn181d6902008-02-05 16:42:23 -05001302 test_bit(ENTRY_TXD_MORE_FRAG, &txdesc->flags));
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001303 rt2x00_set_field32(&word, TXD_W0_ACK,
Ivo van Doorn181d6902008-02-05 16:42:23 -05001304 test_bit(ENTRY_TXD_ACK, &txdesc->flags));
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001305 rt2x00_set_field32(&word, TXD_W0_TIMESTAMP,
Ivo van Doorn181d6902008-02-05 16:42:23 -05001306 test_bit(ENTRY_TXD_REQ_TIMESTAMP, &txdesc->flags));
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001307 rt2x00_set_field32(&word, TXD_W0_OFDM,
Ivo van Doorn076f9582008-12-20 10:59:02 +01001308 (txdesc->rate_mode == RATE_MODE_OFDM));
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001309 rt2x00_set_field32(&word, TXD_W0_CIPHER_OWNER, 1);
Helmut Schaa25177942011-03-03 19:43:25 +01001310 rt2x00_set_field32(&word, TXD_W0_IFS, txdesc->u.plcp.ifs);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001311 rt2x00_set_field32(&word, TXD_W0_RETRY_MODE,
Ivo van Doorn61486e02008-05-10 13:42:31 +02001312 test_bit(ENTRY_TXD_RETRY_MODE, &txdesc->flags));
Gertjan van Wingerdedf624ca2010-05-03 22:43:05 +02001313 rt2x00_set_field32(&word, TXD_W0_DATABYTE_COUNT, txdesc->length);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001314 rt2x00_set_field32(&word, TXD_W0_CIPHER_ALG, CIPHER_NONE);
1315 rt2x00_desc_write(txd, 0, word);
Gertjan van Wingerde85b7a8b2010-05-11 23:51:40 +02001316
1317 /*
1318 * Register descriptor details in skb frame descriptor.
1319 */
1320 skbdesc->desc = txd;
1321 skbdesc->desc_len = TXD_DESC_SIZE;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001322}
1323
1324/*
1325 * TX data initialization
1326 */
Gertjan van Wingerdef224f4e2010-05-08 23:40:25 +02001327static void rt2500pci_write_beacon(struct queue_entry *entry,
1328 struct txentry_desc *txdesc)
Ivo van Doornbd88a782008-07-09 15:12:44 +02001329{
1330 struct rt2x00_dev *rt2x00dev = entry->queue->rt2x00dev;
Ivo van Doornbd88a782008-07-09 15:12:44 +02001331 u32 reg;
1332
1333 /*
1334 * Disable beaconing while we are reloading the beacon data,
1335 * otherwise we might be sending out invalid data.
1336 */
1337 rt2x00pci_register_read(rt2x00dev, CSR14, &reg);
Ivo van Doornbd88a782008-07-09 15:12:44 +02001338 rt2x00_set_field32(&reg, CSR14_BEACON_GEN, 0);
1339 rt2x00pci_register_write(rt2x00dev, CSR14, reg);
1340
Ivo van Doornfa695602010-10-11 15:37:25 +02001341 rt2x00queue_map_txskb(entry);
Ivo van Doornbd88a782008-07-09 15:12:44 +02001342
Gertjan van Wingerde5c3b6852010-06-03 10:51:41 +02001343 /*
1344 * Write the TX descriptor for the beacon.
1345 */
Ivo van Doorn93331452010-08-23 19:53:39 +02001346 rt2500pci_write_tx_desc(entry, txdesc);
Gertjan van Wingerde5c3b6852010-06-03 10:51:41 +02001347
1348 /*
1349 * Dump beacon to userspace through debugfs.
1350 */
1351 rt2x00debug_dump_frame(rt2x00dev, DUMP_FRAME_BEACON, entry->skb);
Gertjan van Wingerded61cb262010-05-08 23:40:24 +02001352
1353 /*
1354 * Enable beaconing again.
1355 */
Gertjan van Wingerded61cb262010-05-08 23:40:24 +02001356 rt2x00_set_field32(&reg, CSR14_BEACON_GEN, 1);
1357 rt2x00pci_register_write(rt2x00dev, CSR14, reg);
Ivo van Doornbd88a782008-07-09 15:12:44 +02001358}
1359
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001360/*
1361 * RX control handlers
1362 */
Ivo van Doorn181d6902008-02-05 16:42:23 -05001363static void rt2500pci_fill_rxdone(struct queue_entry *entry,
1364 struct rxdone_entry_desc *rxdesc)
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001365{
Ivo van Doornb8be63f2008-05-10 13:46:03 +02001366 struct queue_entry_priv_pci *entry_priv = entry->priv_data;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001367 u32 word0;
1368 u32 word2;
1369
Ivo van Doornb8be63f2008-05-10 13:46:03 +02001370 rt2x00_desc_read(entry_priv->desc, 0, &word0);
1371 rt2x00_desc_read(entry_priv->desc, 2, &word2);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001372
Johannes Berg4150c572007-09-17 01:29:23 -04001373 if (rt2x00_get_field32(word0, RXD_W0_CRC_ERROR))
Ivo van Doorn181d6902008-02-05 16:42:23 -05001374 rxdesc->flags |= RX_FLAG_FAILED_FCS_CRC;
Johannes Berg4150c572007-09-17 01:29:23 -04001375 if (rt2x00_get_field32(word0, RXD_W0_PHYSICAL_ERROR))
Ivo van Doorn181d6902008-02-05 16:42:23 -05001376 rxdesc->flags |= RX_FLAG_FAILED_PLCP_CRC;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001377
Ivo van Doorn89993892008-03-09 22:49:04 +01001378 /*
1379 * Obtain the status about this packet.
1380 * When frame was received with an OFDM bitrate,
1381 * the signal is the PLCP value. If it was received with
1382 * a CCK bitrate the signal is the rate in 100kbit/s.
1383 */
Ivo van Doorn181d6902008-02-05 16:42:23 -05001384 rxdesc->signal = rt2x00_get_field32(word2, RXD_W2_SIGNAL);
1385 rxdesc->rssi = rt2x00_get_field32(word2, RXD_W2_RSSI) -
1386 entry->queue->rt2x00dev->rssi_offset;
Ivo van Doorn181d6902008-02-05 16:42:23 -05001387 rxdesc->size = rt2x00_get_field32(word0, RXD_W0_DATABYTE_COUNT);
Ivo van Doorn19d30e02008-03-15 21:38:07 +01001388
Ivo van Doorn19d30e02008-03-15 21:38:07 +01001389 if (rt2x00_get_field32(word0, RXD_W0_OFDM))
1390 rxdesc->dev_flags |= RXDONE_SIGNAL_PLCP;
Ivo van Doorn6c6aa3c2008-08-29 21:07:16 +02001391 else
1392 rxdesc->dev_flags |= RXDONE_SIGNAL_BITRATE;
Ivo van Doorn19d30e02008-03-15 21:38:07 +01001393 if (rt2x00_get_field32(word0, RXD_W0_MY_BSS))
1394 rxdesc->dev_flags |= RXDONE_MY_BSS;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001395}
1396
1397/*
1398 * Interrupt functions.
1399 */
Ivo van Doorn181d6902008-02-05 16:42:23 -05001400static void rt2500pci_txdone(struct rt2x00_dev *rt2x00dev,
Ivo van Doorne58c6ac2008-04-21 19:00:47 +02001401 const enum data_queue_qid queue_idx)
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001402{
Gertjan van Wingerde61c6e482011-03-03 19:46:29 +01001403 struct data_queue *queue = rt2x00queue_get_tx_queue(rt2x00dev, queue_idx);
Ivo van Doornb8be63f2008-05-10 13:46:03 +02001404 struct queue_entry_priv_pci *entry_priv;
Ivo van Doorn181d6902008-02-05 16:42:23 -05001405 struct queue_entry *entry;
1406 struct txdone_entry_desc txdesc;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001407 u32 word;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001408
Ivo van Doorn181d6902008-02-05 16:42:23 -05001409 while (!rt2x00queue_empty(queue)) {
1410 entry = rt2x00queue_get_entry(queue, Q_INDEX_DONE);
Ivo van Doornb8be63f2008-05-10 13:46:03 +02001411 entry_priv = entry->priv_data;
1412 rt2x00_desc_read(entry_priv->desc, 0, &word);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001413
1414 if (rt2x00_get_field32(word, TXD_W0_OWNER_NIC) ||
1415 !rt2x00_get_field32(word, TXD_W0_VALID))
1416 break;
1417
1418 /*
1419 * Obtain the status about this packet.
1420 */
Ivo van Doornfb55f4d12008-05-10 13:42:06 +02001421 txdesc.flags = 0;
1422 switch (rt2x00_get_field32(word, TXD_W0_RESULT)) {
1423 case 0: /* Success */
1424 case 1: /* Success with retry */
1425 __set_bit(TXDONE_SUCCESS, &txdesc.flags);
1426 break;
1427 case 2: /* Failure, excessive retries */
1428 __set_bit(TXDONE_EXCESSIVE_RETRY, &txdesc.flags);
1429 /* Don't break, this is a failed frame! */
1430 default: /* Failure */
1431 __set_bit(TXDONE_FAILURE, &txdesc.flags);
1432 }
Ivo van Doorn181d6902008-02-05 16:42:23 -05001433 txdesc.retry = rt2x00_get_field32(word, TXD_W0_RETRY_COUNT);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001434
Gertjan van Wingerdee513a0b2010-06-29 21:41:40 +02001435 rt2x00lib_txdone(entry, &txdesc);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001436 }
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001437}
1438
Helmut Schaa7a5a6812011-04-18 15:31:31 +02001439static inline void rt2500pci_enable_interrupt(struct rt2x00_dev *rt2x00dev,
1440 struct rt2x00_field32 irq_field)
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001441{
Helmut Schaa16222a02011-01-30 13:19:37 +01001442 u32 reg;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001443
1444 /*
Helmut Schaa16222a02011-01-30 13:19:37 +01001445 * Enable a single interrupt. The interrupt mask register
1446 * access needs locking.
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001447 */
Helmut Schaa0aa13b22011-03-03 19:45:16 +01001448 spin_lock_irq(&rt2x00dev->irqmask_lock);
Helmut Schaa16222a02011-01-30 13:19:37 +01001449
1450 rt2x00pci_register_read(rt2x00dev, CSR8, &reg);
1451 rt2x00_set_field32(&reg, irq_field, 0);
1452 rt2x00pci_register_write(rt2x00dev, CSR8, reg);
1453
Helmut Schaa0aa13b22011-03-03 19:45:16 +01001454 spin_unlock_irq(&rt2x00dev->irqmask_lock);
Helmut Schaa16222a02011-01-30 13:19:37 +01001455}
1456
1457static void rt2500pci_txstatus_tasklet(unsigned long data)
1458{
1459 struct rt2x00_dev *rt2x00dev = (struct rt2x00_dev *)data;
1460 u32 reg;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001461
1462 /*
Helmut Schaa16222a02011-01-30 13:19:37 +01001463 * Handle all tx queues.
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001464 */
Helmut Schaa16222a02011-01-30 13:19:37 +01001465 rt2500pci_txdone(rt2x00dev, QID_ATIM);
1466 rt2500pci_txdone(rt2x00dev, QID_AC_VO);
1467 rt2500pci_txdone(rt2x00dev, QID_AC_VI);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001468
1469 /*
Helmut Schaa16222a02011-01-30 13:19:37 +01001470 * Enable all TXDONE interrupts again.
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001471 */
Helmut Schaaabc11992011-08-06 13:13:48 +02001472 if (test_bit(DEVICE_STATE_ENABLED_RADIO, &rt2x00dev->flags)) {
1473 spin_lock_irq(&rt2x00dev->irqmask_lock);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001474
Helmut Schaaabc11992011-08-06 13:13:48 +02001475 rt2x00pci_register_read(rt2x00dev, CSR8, &reg);
1476 rt2x00_set_field32(&reg, CSR8_TXDONE_TXRING, 0);
1477 rt2x00_set_field32(&reg, CSR8_TXDONE_ATIMRING, 0);
1478 rt2x00_set_field32(&reg, CSR8_TXDONE_PRIORING, 0);
1479 rt2x00pci_register_write(rt2x00dev, CSR8, reg);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001480
Helmut Schaaabc11992011-08-06 13:13:48 +02001481 spin_unlock_irq(&rt2x00dev->irqmask_lock);
1482 }
Helmut Schaa16222a02011-01-30 13:19:37 +01001483}
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001484
Helmut Schaa16222a02011-01-30 13:19:37 +01001485static void rt2500pci_tbtt_tasklet(unsigned long data)
1486{
1487 struct rt2x00_dev *rt2x00dev = (struct rt2x00_dev *)data;
1488 rt2x00lib_beacondone(rt2x00dev);
Helmut Schaaabc11992011-08-06 13:13:48 +02001489 if (test_bit(DEVICE_STATE_ENABLED_RADIO, &rt2x00dev->flags))
1490 rt2500pci_enable_interrupt(rt2x00dev, CSR8_TBCN_EXPIRE);
Helmut Schaa16222a02011-01-30 13:19:37 +01001491}
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001492
Helmut Schaa16222a02011-01-30 13:19:37 +01001493static void rt2500pci_rxdone_tasklet(unsigned long data)
1494{
1495 struct rt2x00_dev *rt2x00dev = (struct rt2x00_dev *)data;
Helmut Schaa16638932011-03-28 13:29:44 +02001496 if (rt2x00pci_rxdone(rt2x00dev))
1497 tasklet_schedule(&rt2x00dev->rxdone_tasklet);
Helmut Schaaabc11992011-08-06 13:13:48 +02001498 else if (test_bit(DEVICE_STATE_ENABLED_RADIO, &rt2x00dev->flags))
Helmut Schaa16638932011-03-28 13:29:44 +02001499 rt2500pci_enable_interrupt(rt2x00dev, CSR8_RXDONE);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001500}
1501
Helmut Schaa78e256c2010-07-11 12:26:48 +02001502static irqreturn_t rt2500pci_interrupt(int irq, void *dev_instance)
1503{
1504 struct rt2x00_dev *rt2x00dev = dev_instance;
Helmut Schaa16222a02011-01-30 13:19:37 +01001505 u32 reg, mask;
Helmut Schaa78e256c2010-07-11 12:26:48 +02001506
1507 /*
1508 * Get the interrupt sources & saved to local variable.
1509 * Write register value back to clear pending interrupts.
1510 */
1511 rt2x00pci_register_read(rt2x00dev, CSR7, &reg);
1512 rt2x00pci_register_write(rt2x00dev, CSR7, reg);
1513
1514 if (!reg)
1515 return IRQ_NONE;
1516
1517 if (!test_bit(DEVICE_STATE_ENABLED_RADIO, &rt2x00dev->flags))
1518 return IRQ_HANDLED;
1519
Helmut Schaa16222a02011-01-30 13:19:37 +01001520 mask = reg;
Helmut Schaa78e256c2010-07-11 12:26:48 +02001521
Helmut Schaa16222a02011-01-30 13:19:37 +01001522 /*
1523 * Schedule tasklets for interrupt handling.
1524 */
1525 if (rt2x00_get_field32(reg, CSR7_TBCN_EXPIRE))
1526 tasklet_hi_schedule(&rt2x00dev->tbtt_tasklet);
Helmut Schaa78e256c2010-07-11 12:26:48 +02001527
Helmut Schaa16222a02011-01-30 13:19:37 +01001528 if (rt2x00_get_field32(reg, CSR7_RXDONE))
1529 tasklet_schedule(&rt2x00dev->rxdone_tasklet);
1530
1531 if (rt2x00_get_field32(reg, CSR7_TXDONE_ATIMRING) ||
1532 rt2x00_get_field32(reg, CSR7_TXDONE_PRIORING) ||
1533 rt2x00_get_field32(reg, CSR7_TXDONE_TXRING)) {
1534 tasklet_schedule(&rt2x00dev->txstatus_tasklet);
1535 /*
1536 * Mask out all txdone interrupts.
1537 */
1538 rt2x00_set_field32(&mask, CSR8_TXDONE_TXRING, 1);
1539 rt2x00_set_field32(&mask, CSR8_TXDONE_ATIMRING, 1);
1540 rt2x00_set_field32(&mask, CSR8_TXDONE_PRIORING, 1);
1541 }
1542
1543 /*
1544 * Disable all interrupts for which a tasklet was scheduled right now,
1545 * the tasklet will reenable the appropriate interrupts.
1546 */
Helmut Schaa0aa13b22011-03-03 19:45:16 +01001547 spin_lock(&rt2x00dev->irqmask_lock);
Helmut Schaa16222a02011-01-30 13:19:37 +01001548
1549 rt2x00pci_register_read(rt2x00dev, CSR8, &reg);
1550 reg |= mask;
1551 rt2x00pci_register_write(rt2x00dev, CSR8, reg);
1552
Helmut Schaa0aa13b22011-03-03 19:45:16 +01001553 spin_unlock(&rt2x00dev->irqmask_lock);
Helmut Schaa16222a02011-01-30 13:19:37 +01001554
1555 return IRQ_HANDLED;
Helmut Schaa78e256c2010-07-11 12:26:48 +02001556}
1557
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001558/*
1559 * Device probe functions.
1560 */
1561static int rt2500pci_validate_eeprom(struct rt2x00_dev *rt2x00dev)
1562{
1563 struct eeprom_93cx6 eeprom;
1564 u32 reg;
1565 u16 word;
1566 u8 *mac;
1567
1568 rt2x00pci_register_read(rt2x00dev, CSR21, &reg);
1569
1570 eeprom.data = rt2x00dev;
1571 eeprom.register_read = rt2500pci_eepromregister_read;
1572 eeprom.register_write = rt2500pci_eepromregister_write;
1573 eeprom.width = rt2x00_get_field32(reg, CSR21_TYPE_93C46) ?
1574 PCI_EEPROM_WIDTH_93C46 : PCI_EEPROM_WIDTH_93C66;
1575 eeprom.reg_data_in = 0;
1576 eeprom.reg_data_out = 0;
1577 eeprom.reg_data_clock = 0;
1578 eeprom.reg_chip_select = 0;
1579
1580 eeprom_93cx6_multiread(&eeprom, EEPROM_BASE, rt2x00dev->eeprom,
1581 EEPROM_SIZE / sizeof(u16));
1582
1583 /*
1584 * Start validation of the data that has been read.
1585 */
1586 mac = rt2x00_eeprom_addr(rt2x00dev, EEPROM_MAC_ADDR_0);
1587 if (!is_valid_ether_addr(mac)) {
Joe Perchesf4f7f4142012-07-12 19:33:08 +00001588 eth_random_addr(mac);
Johannes Berge1749612008-10-27 15:59:26 -07001589 EEPROM(rt2x00dev, "MAC: %pM\n", mac);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001590 }
1591
1592 rt2x00_eeprom_read(rt2x00dev, EEPROM_ANTENNA, &word);
1593 if (word == 0xffff) {
1594 rt2x00_set_field16(&word, EEPROM_ANTENNA_NUM, 2);
Ivo van Doorn362f3b62007-10-13 16:26:18 +02001595 rt2x00_set_field16(&word, EEPROM_ANTENNA_TX_DEFAULT,
1596 ANTENNA_SW_DIVERSITY);
1597 rt2x00_set_field16(&word, EEPROM_ANTENNA_RX_DEFAULT,
1598 ANTENNA_SW_DIVERSITY);
1599 rt2x00_set_field16(&word, EEPROM_ANTENNA_LED_MODE,
1600 LED_MODE_DEFAULT);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001601 rt2x00_set_field16(&word, EEPROM_ANTENNA_DYN_TXAGC, 0);
1602 rt2x00_set_field16(&word, EEPROM_ANTENNA_HARDWARE_RADIO, 0);
1603 rt2x00_set_field16(&word, EEPROM_ANTENNA_RF_TYPE, RF2522);
1604 rt2x00_eeprom_write(rt2x00dev, EEPROM_ANTENNA, word);
1605 EEPROM(rt2x00dev, "Antenna: 0x%04x\n", word);
1606 }
1607
1608 rt2x00_eeprom_read(rt2x00dev, EEPROM_NIC, &word);
1609 if (word == 0xffff) {
1610 rt2x00_set_field16(&word, EEPROM_NIC_CARDBUS_ACCEL, 0);
1611 rt2x00_set_field16(&word, EEPROM_NIC_DYN_BBP_TUNE, 0);
1612 rt2x00_set_field16(&word, EEPROM_NIC_CCK_TX_POWER, 0);
1613 rt2x00_eeprom_write(rt2x00dev, EEPROM_NIC, word);
1614 EEPROM(rt2x00dev, "NIC: 0x%04x\n", word);
1615 }
1616
1617 rt2x00_eeprom_read(rt2x00dev, EEPROM_CALIBRATE_OFFSET, &word);
1618 if (word == 0xffff) {
1619 rt2x00_set_field16(&word, EEPROM_CALIBRATE_OFFSET_RSSI,
1620 DEFAULT_RSSI_OFFSET);
1621 rt2x00_eeprom_write(rt2x00dev, EEPROM_CALIBRATE_OFFSET, word);
1622 EEPROM(rt2x00dev, "Calibrate offset: 0x%04x\n", word);
1623 }
1624
1625 return 0;
1626}
1627
1628static int rt2500pci_init_eeprom(struct rt2x00_dev *rt2x00dev)
1629{
1630 u32 reg;
1631 u16 value;
1632 u16 eeprom;
1633
1634 /*
1635 * Read EEPROM word for configuration.
1636 */
1637 rt2x00_eeprom_read(rt2x00dev, EEPROM_ANTENNA, &eeprom);
1638
1639 /*
1640 * Identify RF chipset.
1641 */
1642 value = rt2x00_get_field16(eeprom, EEPROM_ANTENNA_RF_TYPE);
1643 rt2x00pci_register_read(rt2x00dev, CSR0, &reg);
Gertjan van Wingerde49e721e2010-02-13 20:55:49 +01001644 rt2x00_set_chip(rt2x00dev, RT2560, value,
1645 rt2x00_get_field32(reg, CSR0_REVISION));
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001646
Gertjan van Wingerde5122d892009-12-23 00:03:25 +01001647 if (!rt2x00_rf(rt2x00dev, RF2522) &&
1648 !rt2x00_rf(rt2x00dev, RF2523) &&
1649 !rt2x00_rf(rt2x00dev, RF2524) &&
1650 !rt2x00_rf(rt2x00dev, RF2525) &&
1651 !rt2x00_rf(rt2x00dev, RF2525E) &&
1652 !rt2x00_rf(rt2x00dev, RF5222)) {
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001653 ERROR(rt2x00dev, "Invalid RF chipset detected.\n");
1654 return -ENODEV;
1655 }
1656
1657 /*
1658 * Identify default antenna configuration.
1659 */
Ivo van Doornaddc81bd2007-10-13 16:26:23 +02001660 rt2x00dev->default_ant.tx =
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001661 rt2x00_get_field16(eeprom, EEPROM_ANTENNA_TX_DEFAULT);
Ivo van Doornaddc81bd2007-10-13 16:26:23 +02001662 rt2x00dev->default_ant.rx =
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001663 rt2x00_get_field16(eeprom, EEPROM_ANTENNA_RX_DEFAULT);
1664
1665 /*
1666 * Store led mode, for correct led behaviour.
1667 */
Ivo van Doorn771fd562008-09-08 19:07:15 +02001668#ifdef CONFIG_RT2X00_LIB_LEDS
Ivo van Doorna9450b72008-02-03 15:53:40 +01001669 value = rt2x00_get_field16(eeprom, EEPROM_ANTENNA_LED_MODE);
1670
Ivo van Doorn475433b2008-06-03 20:30:01 +02001671 rt2500pci_init_led(rt2x00dev, &rt2x00dev->led_radio, LED_TYPE_RADIO);
Ivo van Doorn3d3e4512009-01-17 20:44:08 +01001672 if (value == LED_MODE_TXRX_ACTIVITY ||
1673 value == LED_MODE_DEFAULT ||
1674 value == LED_MODE_ASUS)
Ivo van Doorn475433b2008-06-03 20:30:01 +02001675 rt2500pci_init_led(rt2x00dev, &rt2x00dev->led_qual,
1676 LED_TYPE_ACTIVITY);
Ivo van Doorn771fd562008-09-08 19:07:15 +02001677#endif /* CONFIG_RT2X00_LIB_LEDS */
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001678
1679 /*
1680 * Detect if this device has an hardware controlled radio.
1681 */
1682 if (rt2x00_get_field16(eeprom, EEPROM_ANTENNA_HARDWARE_RADIO))
Ivo van Doorn7dab73b2011-04-18 15:27:06 +02001683 __set_bit(CAPABILITY_HW_BUTTON, &rt2x00dev->cap_flags);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001684
1685 /*
1686 * Check if the BBP tuning should be enabled.
1687 */
1688 rt2x00_eeprom_read(rt2x00dev, EEPROM_NIC, &eeprom);
Ivo van Doorn27df2a92010-07-11 12:24:22 +02001689 if (!rt2x00_get_field16(eeprom, EEPROM_NIC_DYN_BBP_TUNE))
Ivo van Doorn7dab73b2011-04-18 15:27:06 +02001690 __set_bit(CAPABILITY_LINK_TUNING, &rt2x00dev->cap_flags);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001691
1692 /*
1693 * Read the RSSI <-> dBm offset information.
1694 */
1695 rt2x00_eeprom_read(rt2x00dev, EEPROM_CALIBRATE_OFFSET, &eeprom);
1696 rt2x00dev->rssi_offset =
1697 rt2x00_get_field16(eeprom, EEPROM_CALIBRATE_OFFSET_RSSI);
1698
1699 return 0;
1700}
1701
1702/*
1703 * RF value list for RF2522
1704 * Supports: 2.4 GHz
1705 */
1706static const struct rf_channel rf_vals_bg_2522[] = {
1707 { 1, 0x00002050, 0x000c1fda, 0x00000101, 0 },
1708 { 2, 0x00002050, 0x000c1fee, 0x00000101, 0 },
1709 { 3, 0x00002050, 0x000c2002, 0x00000101, 0 },
1710 { 4, 0x00002050, 0x000c2016, 0x00000101, 0 },
1711 { 5, 0x00002050, 0x000c202a, 0x00000101, 0 },
1712 { 6, 0x00002050, 0x000c203e, 0x00000101, 0 },
1713 { 7, 0x00002050, 0x000c2052, 0x00000101, 0 },
1714 { 8, 0x00002050, 0x000c2066, 0x00000101, 0 },
1715 { 9, 0x00002050, 0x000c207a, 0x00000101, 0 },
1716 { 10, 0x00002050, 0x000c208e, 0x00000101, 0 },
1717 { 11, 0x00002050, 0x000c20a2, 0x00000101, 0 },
1718 { 12, 0x00002050, 0x000c20b6, 0x00000101, 0 },
1719 { 13, 0x00002050, 0x000c20ca, 0x00000101, 0 },
1720 { 14, 0x00002050, 0x000c20fa, 0x00000101, 0 },
1721};
1722
1723/*
1724 * RF value list for RF2523
1725 * Supports: 2.4 GHz
1726 */
1727static const struct rf_channel rf_vals_bg_2523[] = {
1728 { 1, 0x00022010, 0x00000c9e, 0x000e0111, 0x00000a1b },
1729 { 2, 0x00022010, 0x00000ca2, 0x000e0111, 0x00000a1b },
1730 { 3, 0x00022010, 0x00000ca6, 0x000e0111, 0x00000a1b },
1731 { 4, 0x00022010, 0x00000caa, 0x000e0111, 0x00000a1b },
1732 { 5, 0x00022010, 0x00000cae, 0x000e0111, 0x00000a1b },
1733 { 6, 0x00022010, 0x00000cb2, 0x000e0111, 0x00000a1b },
1734 { 7, 0x00022010, 0x00000cb6, 0x000e0111, 0x00000a1b },
1735 { 8, 0x00022010, 0x00000cba, 0x000e0111, 0x00000a1b },
1736 { 9, 0x00022010, 0x00000cbe, 0x000e0111, 0x00000a1b },
1737 { 10, 0x00022010, 0x00000d02, 0x000e0111, 0x00000a1b },
1738 { 11, 0x00022010, 0x00000d06, 0x000e0111, 0x00000a1b },
1739 { 12, 0x00022010, 0x00000d0a, 0x000e0111, 0x00000a1b },
1740 { 13, 0x00022010, 0x00000d0e, 0x000e0111, 0x00000a1b },
1741 { 14, 0x00022010, 0x00000d1a, 0x000e0111, 0x00000a03 },
1742};
1743
1744/*
1745 * RF value list for RF2524
1746 * Supports: 2.4 GHz
1747 */
1748static const struct rf_channel rf_vals_bg_2524[] = {
1749 { 1, 0x00032020, 0x00000c9e, 0x00000101, 0x00000a1b },
1750 { 2, 0x00032020, 0x00000ca2, 0x00000101, 0x00000a1b },
1751 { 3, 0x00032020, 0x00000ca6, 0x00000101, 0x00000a1b },
1752 { 4, 0x00032020, 0x00000caa, 0x00000101, 0x00000a1b },
1753 { 5, 0x00032020, 0x00000cae, 0x00000101, 0x00000a1b },
1754 { 6, 0x00032020, 0x00000cb2, 0x00000101, 0x00000a1b },
1755 { 7, 0x00032020, 0x00000cb6, 0x00000101, 0x00000a1b },
1756 { 8, 0x00032020, 0x00000cba, 0x00000101, 0x00000a1b },
1757 { 9, 0x00032020, 0x00000cbe, 0x00000101, 0x00000a1b },
1758 { 10, 0x00032020, 0x00000d02, 0x00000101, 0x00000a1b },
1759 { 11, 0x00032020, 0x00000d06, 0x00000101, 0x00000a1b },
1760 { 12, 0x00032020, 0x00000d0a, 0x00000101, 0x00000a1b },
1761 { 13, 0x00032020, 0x00000d0e, 0x00000101, 0x00000a1b },
1762 { 14, 0x00032020, 0x00000d1a, 0x00000101, 0x00000a03 },
1763};
1764
1765/*
1766 * RF value list for RF2525
1767 * Supports: 2.4 GHz
1768 */
1769static const struct rf_channel rf_vals_bg_2525[] = {
1770 { 1, 0x00022020, 0x00080c9e, 0x00060111, 0x00000a1b },
1771 { 2, 0x00022020, 0x00080ca2, 0x00060111, 0x00000a1b },
1772 { 3, 0x00022020, 0x00080ca6, 0x00060111, 0x00000a1b },
1773 { 4, 0x00022020, 0x00080caa, 0x00060111, 0x00000a1b },
1774 { 5, 0x00022020, 0x00080cae, 0x00060111, 0x00000a1b },
1775 { 6, 0x00022020, 0x00080cb2, 0x00060111, 0x00000a1b },
1776 { 7, 0x00022020, 0x00080cb6, 0x00060111, 0x00000a1b },
1777 { 8, 0x00022020, 0x00080cba, 0x00060111, 0x00000a1b },
1778 { 9, 0x00022020, 0x00080cbe, 0x00060111, 0x00000a1b },
1779 { 10, 0x00022020, 0x00080d02, 0x00060111, 0x00000a1b },
1780 { 11, 0x00022020, 0x00080d06, 0x00060111, 0x00000a1b },
1781 { 12, 0x00022020, 0x00080d0a, 0x00060111, 0x00000a1b },
1782 { 13, 0x00022020, 0x00080d0e, 0x00060111, 0x00000a1b },
1783 { 14, 0x00022020, 0x00080d1a, 0x00060111, 0x00000a03 },
1784};
1785
1786/*
1787 * RF value list for RF2525e
1788 * Supports: 2.4 GHz
1789 */
1790static const struct rf_channel rf_vals_bg_2525e[] = {
1791 { 1, 0x00022020, 0x00081136, 0x00060111, 0x00000a0b },
1792 { 2, 0x00022020, 0x0008113a, 0x00060111, 0x00000a0b },
1793 { 3, 0x00022020, 0x0008113e, 0x00060111, 0x00000a0b },
1794 { 4, 0x00022020, 0x00081182, 0x00060111, 0x00000a0b },
1795 { 5, 0x00022020, 0x00081186, 0x00060111, 0x00000a0b },
1796 { 6, 0x00022020, 0x0008118a, 0x00060111, 0x00000a0b },
1797 { 7, 0x00022020, 0x0008118e, 0x00060111, 0x00000a0b },
1798 { 8, 0x00022020, 0x00081192, 0x00060111, 0x00000a0b },
1799 { 9, 0x00022020, 0x00081196, 0x00060111, 0x00000a0b },
1800 { 10, 0x00022020, 0x0008119a, 0x00060111, 0x00000a0b },
1801 { 11, 0x00022020, 0x0008119e, 0x00060111, 0x00000a0b },
1802 { 12, 0x00022020, 0x000811a2, 0x00060111, 0x00000a0b },
1803 { 13, 0x00022020, 0x000811a6, 0x00060111, 0x00000a0b },
1804 { 14, 0x00022020, 0x000811ae, 0x00060111, 0x00000a1b },
1805};
1806
1807/*
1808 * RF value list for RF5222
1809 * Supports: 2.4 GHz & 5.2 GHz
1810 */
1811static const struct rf_channel rf_vals_5222[] = {
1812 { 1, 0x00022020, 0x00001136, 0x00000101, 0x00000a0b },
1813 { 2, 0x00022020, 0x0000113a, 0x00000101, 0x00000a0b },
1814 { 3, 0x00022020, 0x0000113e, 0x00000101, 0x00000a0b },
1815 { 4, 0x00022020, 0x00001182, 0x00000101, 0x00000a0b },
1816 { 5, 0x00022020, 0x00001186, 0x00000101, 0x00000a0b },
1817 { 6, 0x00022020, 0x0000118a, 0x00000101, 0x00000a0b },
1818 { 7, 0x00022020, 0x0000118e, 0x00000101, 0x00000a0b },
1819 { 8, 0x00022020, 0x00001192, 0x00000101, 0x00000a0b },
1820 { 9, 0x00022020, 0x00001196, 0x00000101, 0x00000a0b },
1821 { 10, 0x00022020, 0x0000119a, 0x00000101, 0x00000a0b },
1822 { 11, 0x00022020, 0x0000119e, 0x00000101, 0x00000a0b },
1823 { 12, 0x00022020, 0x000011a2, 0x00000101, 0x00000a0b },
1824 { 13, 0x00022020, 0x000011a6, 0x00000101, 0x00000a0b },
1825 { 14, 0x00022020, 0x000011ae, 0x00000101, 0x00000a1b },
1826
1827 /* 802.11 UNI / HyperLan 2 */
1828 { 36, 0x00022010, 0x00018896, 0x00000101, 0x00000a1f },
1829 { 40, 0x00022010, 0x0001889a, 0x00000101, 0x00000a1f },
1830 { 44, 0x00022010, 0x0001889e, 0x00000101, 0x00000a1f },
1831 { 48, 0x00022010, 0x000188a2, 0x00000101, 0x00000a1f },
1832 { 52, 0x00022010, 0x000188a6, 0x00000101, 0x00000a1f },
1833 { 66, 0x00022010, 0x000188aa, 0x00000101, 0x00000a1f },
1834 { 60, 0x00022010, 0x000188ae, 0x00000101, 0x00000a1f },
1835 { 64, 0x00022010, 0x000188b2, 0x00000101, 0x00000a1f },
1836
1837 /* 802.11 HyperLan 2 */
1838 { 100, 0x00022010, 0x00008802, 0x00000101, 0x00000a0f },
1839 { 104, 0x00022010, 0x00008806, 0x00000101, 0x00000a0f },
1840 { 108, 0x00022010, 0x0000880a, 0x00000101, 0x00000a0f },
1841 { 112, 0x00022010, 0x0000880e, 0x00000101, 0x00000a0f },
1842 { 116, 0x00022010, 0x00008812, 0x00000101, 0x00000a0f },
1843 { 120, 0x00022010, 0x00008816, 0x00000101, 0x00000a0f },
1844 { 124, 0x00022010, 0x0000881a, 0x00000101, 0x00000a0f },
1845 { 128, 0x00022010, 0x0000881e, 0x00000101, 0x00000a0f },
1846 { 132, 0x00022010, 0x00008822, 0x00000101, 0x00000a0f },
1847 { 136, 0x00022010, 0x00008826, 0x00000101, 0x00000a0f },
1848
1849 /* 802.11 UNII */
1850 { 140, 0x00022010, 0x0000882a, 0x00000101, 0x00000a0f },
1851 { 149, 0x00022020, 0x000090a6, 0x00000101, 0x00000a07 },
1852 { 153, 0x00022020, 0x000090ae, 0x00000101, 0x00000a07 },
1853 { 157, 0x00022020, 0x000090b6, 0x00000101, 0x00000a07 },
1854 { 161, 0x00022020, 0x000090be, 0x00000101, 0x00000a07 },
1855};
1856
Ivo van Doorn8c5e7a52008-08-04 16:38:47 +02001857static int rt2500pci_probe_hw_mode(struct rt2x00_dev *rt2x00dev)
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001858{
1859 struct hw_mode_spec *spec = &rt2x00dev->spec;
Ivo van Doorn8c5e7a52008-08-04 16:38:47 +02001860 struct channel_info *info;
1861 char *tx_power;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001862 unsigned int i;
1863
1864 /*
1865 * Initialize all hw fields.
1866 */
Bruno Randolf566bfe52008-05-08 19:15:40 +02001867 rt2x00dev->hw->flags = IEEE80211_HW_HOST_BROADCAST_PS_BUFFERING |
Johannes Berg4be8c382009-01-07 18:28:20 +01001868 IEEE80211_HW_SIGNAL_DBM |
1869 IEEE80211_HW_SUPPORTS_PS |
1870 IEEE80211_HW_PS_NULLFUNC_STACK;
Bruno Randolf566bfe52008-05-08 19:15:40 +02001871
Gertjan van Wingerde14a3bf82008-06-16 19:55:43 +02001872 SET_IEEE80211_DEV(rt2x00dev->hw, rt2x00dev->dev);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001873 SET_IEEE80211_PERM_ADDR(rt2x00dev->hw,
1874 rt2x00_eeprom_addr(rt2x00dev,
1875 EEPROM_MAC_ADDR_0));
1876
1877 /*
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001878 * Initialize hw_mode information.
1879 */
Ivo van Doorn31562e82008-02-17 17:35:05 +01001880 spec->supported_bands = SUPPORT_BAND_2GHZ;
1881 spec->supported_rates = SUPPORT_RATE_CCK | SUPPORT_RATE_OFDM;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001882
Gertjan van Wingerde5122d892009-12-23 00:03:25 +01001883 if (rt2x00_rf(rt2x00dev, RF2522)) {
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001884 spec->num_channels = ARRAY_SIZE(rf_vals_bg_2522);
1885 spec->channels = rf_vals_bg_2522;
Gertjan van Wingerde5122d892009-12-23 00:03:25 +01001886 } else if (rt2x00_rf(rt2x00dev, RF2523)) {
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001887 spec->num_channels = ARRAY_SIZE(rf_vals_bg_2523);
1888 spec->channels = rf_vals_bg_2523;
Gertjan van Wingerde5122d892009-12-23 00:03:25 +01001889 } else if (rt2x00_rf(rt2x00dev, RF2524)) {
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001890 spec->num_channels = ARRAY_SIZE(rf_vals_bg_2524);
1891 spec->channels = rf_vals_bg_2524;
Gertjan van Wingerde5122d892009-12-23 00:03:25 +01001892 } else if (rt2x00_rf(rt2x00dev, RF2525)) {
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001893 spec->num_channels = ARRAY_SIZE(rf_vals_bg_2525);
1894 spec->channels = rf_vals_bg_2525;
Gertjan van Wingerde5122d892009-12-23 00:03:25 +01001895 } else if (rt2x00_rf(rt2x00dev, RF2525E)) {
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001896 spec->num_channels = ARRAY_SIZE(rf_vals_bg_2525e);
1897 spec->channels = rf_vals_bg_2525e;
Gertjan van Wingerde5122d892009-12-23 00:03:25 +01001898 } else if (rt2x00_rf(rt2x00dev, RF5222)) {
Ivo van Doorn31562e82008-02-17 17:35:05 +01001899 spec->supported_bands |= SUPPORT_BAND_5GHZ;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001900 spec->num_channels = ARRAY_SIZE(rf_vals_5222);
1901 spec->channels = rf_vals_5222;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001902 }
Ivo van Doorn8c5e7a52008-08-04 16:38:47 +02001903
1904 /*
1905 * Create channel information array
1906 */
Joe Perchesbaeb2ff2010-08-11 07:02:48 +00001907 info = kcalloc(spec->num_channels, sizeof(*info), GFP_KERNEL);
Ivo van Doorn8c5e7a52008-08-04 16:38:47 +02001908 if (!info)
1909 return -ENOMEM;
1910
1911 spec->channels_info = info;
1912
1913 tx_power = rt2x00_eeprom_addr(rt2x00dev, EEPROM_TXPOWER_START);
Ivo van Doorn8d1331b2010-08-23 19:56:07 +02001914 for (i = 0; i < 14; i++) {
1915 info[i].max_power = MAX_TXPOWER;
1916 info[i].default_power1 = TXPOWER_FROM_DEV(tx_power[i]);
1917 }
Ivo van Doorn8c5e7a52008-08-04 16:38:47 +02001918
1919 if (spec->num_channels > 14) {
Ivo van Doorn8d1331b2010-08-23 19:56:07 +02001920 for (i = 14; i < spec->num_channels; i++) {
1921 info[i].max_power = MAX_TXPOWER;
1922 info[i].default_power1 = DEFAULT_TXPOWER;
1923 }
Ivo van Doorn8c5e7a52008-08-04 16:38:47 +02001924 }
1925
1926 return 0;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001927}
1928
1929static int rt2500pci_probe_hw(struct rt2x00_dev *rt2x00dev)
1930{
1931 int retval;
Gertjan van Wingerdea396e102012-08-31 19:22:11 +02001932 u32 reg;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001933
1934 /*
1935 * Allocate eeprom data.
1936 */
1937 retval = rt2500pci_validate_eeprom(rt2x00dev);
1938 if (retval)
1939 return retval;
1940
1941 retval = rt2500pci_init_eeprom(rt2x00dev);
1942 if (retval)
1943 return retval;
1944
1945 /*
Gertjan van Wingerdea396e102012-08-31 19:22:11 +02001946 * Enable rfkill polling by setting GPIO direction of the
1947 * rfkill switch GPIO pin correctly.
1948 */
1949 rt2x00pci_register_read(rt2x00dev, GPIOCSR, &reg);
1950 rt2x00_set_field32(&reg, GPIOCSR_DIR0, 1);
1951 rt2x00pci_register_write(rt2x00dev, GPIOCSR, reg);
1952
1953 /*
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001954 * Initialize hw specifications.
1955 */
Ivo van Doorn8c5e7a52008-08-04 16:38:47 +02001956 retval = rt2500pci_probe_hw_mode(rt2x00dev);
1957 if (retval)
1958 return retval;
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001959
1960 /*
Gertjan van Wingerdec4da0042008-06-16 19:56:31 +02001961 * This device requires the atim queue and DMA-mapped skbs.
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001962 */
Ivo van Doorn7dab73b2011-04-18 15:27:06 +02001963 __set_bit(REQUIRE_ATIM_QUEUE, &rt2x00dev->cap_flags);
1964 __set_bit(REQUIRE_DMA, &rt2x00dev->cap_flags);
1965 __set_bit(REQUIRE_SW_SEQNO, &rt2x00dev->cap_flags);
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001966
1967 /*
1968 * Set the rssi offset.
1969 */
1970 rt2x00dev->rssi_offset = DEFAULT_RSSI_OFFSET;
1971
1972 return 0;
1973}
1974
1975/*
1976 * IEEE80211 stack callback functions.
1977 */
Eliad Peller37a41b42011-09-21 14:06:11 +03001978static u64 rt2500pci_get_tsf(struct ieee80211_hw *hw,
1979 struct ieee80211_vif *vif)
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001980{
1981 struct rt2x00_dev *rt2x00dev = hw->priv;
1982 u64 tsf;
1983 u32 reg;
1984
1985 rt2x00pci_register_read(rt2x00dev, CSR17, &reg);
1986 tsf = (u64) rt2x00_get_field32(reg, CSR17_HIGH_TSFTIMER) << 32;
1987 rt2x00pci_register_read(rt2x00dev, CSR16, &reg);
1988 tsf |= rt2x00_get_field32(reg, CSR16_LOW_TSFTIMER);
1989
1990 return tsf;
1991}
1992
Ivo van Doorn95ea3622007-09-25 17:57:13 -07001993static int rt2500pci_tx_last_beacon(struct ieee80211_hw *hw)
1994{
1995 struct rt2x00_dev *rt2x00dev = hw->priv;
1996 u32 reg;
1997
1998 rt2x00pci_register_read(rt2x00dev, CSR15, &reg);
1999 return rt2x00_get_field32(reg, CSR15_BEACON_SENT);
2000}
2001
2002static const struct ieee80211_ops rt2500pci_mac80211_ops = {
2003 .tx = rt2x00mac_tx,
Johannes Berg4150c572007-09-17 01:29:23 -04002004 .start = rt2x00mac_start,
2005 .stop = rt2x00mac_stop,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002006 .add_interface = rt2x00mac_add_interface,
2007 .remove_interface = rt2x00mac_remove_interface,
2008 .config = rt2x00mac_config,
Ivo van Doorn3a643d22008-03-25 14:13:18 +01002009 .configure_filter = rt2x00mac_configure_filter,
Ivo van Doornd8147f92010-07-11 12:24:47 +02002010 .sw_scan_start = rt2x00mac_sw_scan_start,
2011 .sw_scan_complete = rt2x00mac_sw_scan_complete,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002012 .get_stats = rt2x00mac_get_stats,
Johannes Berg471b3ef2007-12-28 14:32:58 +01002013 .bss_info_changed = rt2x00mac_bss_info_changed,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002014 .conf_tx = rt2x00mac_conf_tx,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002015 .get_tsf = rt2500pci_get_tsf,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002016 .tx_last_beacon = rt2500pci_tx_last_beacon,
Ivo van Doorne47a5cd2009-07-01 15:17:35 +02002017 .rfkill_poll = rt2x00mac_rfkill_poll,
Ivo van Doornf44df182010-11-04 20:40:11 +01002018 .flush = rt2x00mac_flush,
Ivo van Doorn0ed7b3c2011-04-18 15:35:12 +02002019 .set_antenna = rt2x00mac_set_antenna,
2020 .get_antenna = rt2x00mac_get_antenna,
Ivo van Doorne7dee442011-04-18 15:34:41 +02002021 .get_ringparam = rt2x00mac_get_ringparam,
Gertjan van Wingerde5f0dd292011-07-06 23:00:21 +02002022 .tx_frames_pending = rt2x00mac_tx_frames_pending,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002023};
2024
2025static const struct rt2x00lib_ops rt2500pci_rt2x00_ops = {
2026 .irq_handler = rt2500pci_interrupt,
Helmut Schaa16222a02011-01-30 13:19:37 +01002027 .txstatus_tasklet = rt2500pci_txstatus_tasklet,
2028 .tbtt_tasklet = rt2500pci_tbtt_tasklet,
2029 .rxdone_tasklet = rt2500pci_rxdone_tasklet,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002030 .probe_hw = rt2500pci_probe_hw,
2031 .initialize = rt2x00pci_initialize,
2032 .uninitialize = rt2x00pci_uninitialize,
Ivo van Doorn798b7ad2008-11-08 15:25:33 +01002033 .get_entry_state = rt2500pci_get_entry_state,
2034 .clear_entry = rt2500pci_clear_entry,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002035 .set_device_state = rt2500pci_set_device_state,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002036 .rfkill_poll = rt2500pci_rfkill_poll,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002037 .link_stats = rt2500pci_link_stats,
2038 .reset_tuner = rt2500pci_reset_tuner,
2039 .link_tuner = rt2500pci_link_tuner,
Ivo van Doorndbba3062010-12-13 12:34:54 +01002040 .start_queue = rt2500pci_start_queue,
2041 .kick_queue = rt2500pci_kick_queue,
2042 .stop_queue = rt2500pci_stop_queue,
Ivo van Doorn152a5992011-04-18 15:31:02 +02002043 .flush_queue = rt2x00pci_flush_queue,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002044 .write_tx_desc = rt2500pci_write_tx_desc,
Ivo van Doornbd88a782008-07-09 15:12:44 +02002045 .write_beacon = rt2500pci_write_beacon,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002046 .fill_rxdone = rt2500pci_fill_rxdone,
Ivo van Doorn3a643d22008-03-25 14:13:18 +01002047 .config_filter = rt2500pci_config_filter,
Ivo van Doorn6bb40dd2008-02-03 15:49:59 +01002048 .config_intf = rt2500pci_config_intf,
Ivo van Doorn72810372008-03-09 22:46:18 +01002049 .config_erp = rt2500pci_config_erp,
Ivo van Doorne4ea1c42008-10-29 17:17:57 +01002050 .config_ant = rt2500pci_config_ant,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002051 .config = rt2500pci_config,
2052};
2053
Ivo van Doorn181d6902008-02-05 16:42:23 -05002054static const struct data_queue_desc rt2500pci_queue_rx = {
Helmut Schaaefd2f272010-11-04 20:37:22 +01002055 .entry_num = 32,
Ivo van Doorn181d6902008-02-05 16:42:23 -05002056 .data_size = DATA_FRAME_SIZE,
2057 .desc_size = RXD_DESC_SIZE,
Ivo van Doornb8be63f2008-05-10 13:46:03 +02002058 .priv_size = sizeof(struct queue_entry_priv_pci),
Ivo van Doorn181d6902008-02-05 16:42:23 -05002059};
2060
2061static const struct data_queue_desc rt2500pci_queue_tx = {
Helmut Schaaefd2f272010-11-04 20:37:22 +01002062 .entry_num = 32,
Ivo van Doorn181d6902008-02-05 16:42:23 -05002063 .data_size = DATA_FRAME_SIZE,
2064 .desc_size = TXD_DESC_SIZE,
Ivo van Doornb8be63f2008-05-10 13:46:03 +02002065 .priv_size = sizeof(struct queue_entry_priv_pci),
Ivo van Doorn181d6902008-02-05 16:42:23 -05002066};
2067
2068static const struct data_queue_desc rt2500pci_queue_bcn = {
Helmut Schaaefd2f272010-11-04 20:37:22 +01002069 .entry_num = 1,
Ivo van Doorn181d6902008-02-05 16:42:23 -05002070 .data_size = MGMT_FRAME_SIZE,
2071 .desc_size = TXD_DESC_SIZE,
Ivo van Doornb8be63f2008-05-10 13:46:03 +02002072 .priv_size = sizeof(struct queue_entry_priv_pci),
Ivo van Doorn181d6902008-02-05 16:42:23 -05002073};
2074
2075static const struct data_queue_desc rt2500pci_queue_atim = {
Helmut Schaaefd2f272010-11-04 20:37:22 +01002076 .entry_num = 8,
Ivo van Doorn181d6902008-02-05 16:42:23 -05002077 .data_size = DATA_FRAME_SIZE,
2078 .desc_size = TXD_DESC_SIZE,
Ivo van Doornb8be63f2008-05-10 13:46:03 +02002079 .priv_size = sizeof(struct queue_entry_priv_pci),
Ivo van Doorn181d6902008-02-05 16:42:23 -05002080};
2081
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002082static const struct rt2x00_ops rt2500pci_ops = {
Gertjan van Wingerde04d03622009-11-23 22:44:51 +01002083 .name = KBUILD_MODNAME,
Gertjan van Wingerde04d03622009-11-23 22:44:51 +01002084 .max_ap_intf = 1,
2085 .eeprom_size = EEPROM_SIZE,
2086 .rf_size = RF_SIZE,
2087 .tx_queues = NUM_TX_QUEUES,
Gertjan van Wingerdee6218cc2009-11-23 22:44:52 +01002088 .extra_tx_headroom = 0,
Gertjan van Wingerde04d03622009-11-23 22:44:51 +01002089 .rx = &rt2500pci_queue_rx,
2090 .tx = &rt2500pci_queue_tx,
2091 .bcn = &rt2500pci_queue_bcn,
2092 .atim = &rt2500pci_queue_atim,
2093 .lib = &rt2500pci_rt2x00_ops,
2094 .hw = &rt2500pci_mac80211_ops,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002095#ifdef CONFIG_RT2X00_LIB_DEBUGFS
Gertjan van Wingerde04d03622009-11-23 22:44:51 +01002096 .debugfs = &rt2500pci_rt2x00debug,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002097#endif /* CONFIG_RT2X00_LIB_DEBUGFS */
2098};
2099
2100/*
2101 * RT2500pci module information.
2102 */
Alexey Dobriyana3aa1882010-01-07 11:58:11 +00002103static DEFINE_PCI_DEVICE_TABLE(rt2500pci_device_table) = {
Gertjan van Wingerdee01ae272011-04-18 15:32:13 +02002104 { PCI_DEVICE(0x1814, 0x0201) },
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002105 { 0, }
2106};
2107
2108MODULE_AUTHOR(DRV_PROJECT);
2109MODULE_VERSION(DRV_VERSION);
2110MODULE_DESCRIPTION("Ralink RT2500 PCI & PCMCIA Wireless LAN driver.");
2111MODULE_SUPPORTED_DEVICE("Ralink RT2560 PCI & PCMCIA chipset based cards");
2112MODULE_DEVICE_TABLE(pci, rt2500pci_device_table);
2113MODULE_LICENSE("GPL");
2114
Gertjan van Wingerdee01ae272011-04-18 15:32:13 +02002115static int rt2500pci_probe(struct pci_dev *pci_dev,
2116 const struct pci_device_id *id)
2117{
2118 return rt2x00pci_probe(pci_dev, &rt2500pci_ops);
2119}
2120
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002121static struct pci_driver rt2500pci_driver = {
Ivo van Doorn23601572007-11-27 21:47:34 +01002122 .name = KBUILD_MODNAME,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002123 .id_table = rt2500pci_device_table,
Gertjan van Wingerdee01ae272011-04-18 15:32:13 +02002124 .probe = rt2500pci_probe,
Bill Pemberton69202352012-12-03 09:56:39 -05002125 .remove = rt2x00pci_remove,
Ivo van Doorn95ea3622007-09-25 17:57:13 -07002126 .suspend = rt2x00pci_suspend,
2127 .resume = rt2x00pci_resume,
2128};
2129
Axel Lin5b0a3b72012-04-14 10:38:36 +08002130module_pci_driver(rt2500pci_driver);