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rt2x00: Fix MCS register intialization
[mirror_ubuntu-bionic-kernel.git] / drivers / net / wireless / rt2x00 / rt2x00dev.c
CommitLineData
95ea3627 1/*
4e54c711 2 Copyright (C) 2004 - 2009 rt2x00 SourceForge Project
95ea3627
ID
3 <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: rt2x00lib
23 Abstract: rt2x00 generic device routines.
24 */
25
95ea3627
ID
26#include <linux/kernel.h>
27#include <linux/module.h>
28
29#include "rt2x00.h"
30#include "rt2x00lib.h"
31
95ea3627
ID
32/*
33 * Radio control handlers.
34 */
35int rt2x00lib_enable_radio(struct rt2x00_dev *rt2x00dev)
36{
37 int status;
38
39 /*
40 * Don't enable the radio twice.
41 * And check if the hardware button has been disabled.
42 */
4b9631a4 43 if (test_bit(DEVICE_STATE_ENABLED_RADIO, &rt2x00dev->flags))
95ea3627
ID
44 return 0;
45
837e7f24 46 /*
181d6902 47 * Initialize all data queues.
837e7f24 48 */
798b7adb 49 rt2x00queue_init_queues(rt2x00dev);
837e7f24 50
95ea3627
ID
51 /*
52 * Enable radio.
53 */
a2e1d52a
ID
54 status =
55 rt2x00dev->ops->lib->set_device_state(rt2x00dev, STATE_RADIO_ON);
95ea3627
ID
56 if (status)
57 return status;
58
2b08da3f
ID
59 rt2x00dev->ops->lib->set_device_state(rt2x00dev, STATE_RADIO_IRQ_ON);
60
a2e1d52a 61 rt2x00leds_led_radio(rt2x00dev, true);
61c2b682 62 rt2x00led_led_activity(rt2x00dev, true);
a2e1d52a 63
0262ab0d 64 set_bit(DEVICE_STATE_ENABLED_RADIO, &rt2x00dev->flags);
95ea3627
ID
65
66 /*
67 * Enable RX.
68 */
5cbf830e 69 rt2x00lib_toggle_rx(rt2x00dev, STATE_RADIO_RX_ON);
95ea3627
ID
70
71 /*
72 * Start the TX queues.
73 */
36d6825b 74 ieee80211_wake_queues(rt2x00dev->hw);
95ea3627
ID
75
76 return 0;
77}
78
79void rt2x00lib_disable_radio(struct rt2x00_dev *rt2x00dev)
80{
0262ab0d 81 if (!test_and_clear_bit(DEVICE_STATE_ENABLED_RADIO, &rt2x00dev->flags))
95ea3627
ID
82 return;
83
95ea3627 84 /*
a2c9b652 85 * Stop the TX queues in mac80211.
95ea3627
ID
86 */
87 ieee80211_stop_queues(rt2x00dev->hw);
a2c9b652 88 rt2x00queue_stop_queues(rt2x00dev);
95ea3627
ID
89
90 /*
91 * Disable RX.
92 */
5cbf830e 93 rt2x00lib_toggle_rx(rt2x00dev, STATE_RADIO_RX_OFF);
95ea3627
ID
94
95 /*
96 * Disable radio.
97 */
98 rt2x00dev->ops->lib->set_device_state(rt2x00dev, STATE_RADIO_OFF);
2b08da3f 99 rt2x00dev->ops->lib->set_device_state(rt2x00dev, STATE_RADIO_IRQ_OFF);
61c2b682 100 rt2x00led_led_activity(rt2x00dev, false);
a2e1d52a 101 rt2x00leds_led_radio(rt2x00dev, false);
95ea3627
ID
102}
103
5cbf830e 104void rt2x00lib_toggle_rx(struct rt2x00_dev *rt2x00dev, enum dev_state state)
95ea3627 105{
95ea3627
ID
106 /*
107 * When we are disabling the RX, we should also stop the link tuner.
108 */
5cbf830e 109 if (state == STATE_RADIO_RX_OFF)
84e3196f 110 rt2x00link_stop_tuner(rt2x00dev);
95ea3627
ID
111
112 rt2x00dev->ops->lib->set_device_state(rt2x00dev, state);
113
114 /*
115 * When we are enabling the RX, we should also start the link tuner.
116 */
84e3196f
ID
117 if (state == STATE_RADIO_RX_ON)
118 rt2x00link_start_tuner(rt2x00dev);
95ea3627
ID
119}
120
4150c572
JB
121static void rt2x00lib_packetfilter_scheduled(struct work_struct *work)
122{
123 struct rt2x00_dev *rt2x00dev =
124 container_of(work, struct rt2x00_dev, filter_work);
5886d0db 125
133adf08 126 rt2x00dev->ops->lib->config_filter(rt2x00dev, rt2x00dev->packet_filter);
4150c572
JB
127}
128
6bb40dd1
ID
129static void rt2x00lib_intf_scheduled_iter(void *data, u8 *mac,
130 struct ieee80211_vif *vif)
5c58ee51 131{
6bb40dd1
ID
132 struct rt2x00_dev *rt2x00dev = data;
133 struct rt2x00_intf *intf = vif_to_intf(vif);
6bb40dd1
ID
134 struct ieee80211_bss_conf conf;
135 int delayed_flags;
136
137 /*
138 * Copy all data we need during this action under the protection
139 * of a spinlock. Otherwise race conditions might occur which results
140 * into an invalid configuration.
141 */
142 spin_lock(&intf->lock);
143
c3fd7b41 144 memcpy(&conf, &vif->bss_conf, sizeof(conf));
6bb40dd1
ID
145 delayed_flags = intf->delayed_flags;
146 intf->delayed_flags = 0;
147
148 spin_unlock(&intf->lock);
149
980dfcb9
ID
150 /*
151 * It is possible the radio was disabled while the work had been
152 * scheduled. If that happens we should return here immediately,
153 * note that in the spinlock protected area above the delayed_flags
154 * have been cleared correctly.
155 */
0262ab0d 156 if (!test_bit(DEVICE_STATE_ENABLED_RADIO, &rt2x00dev->flags))
980dfcb9
ID
157 return;
158
bd88a781 159 if (delayed_flags & DELAYED_UPDATE_BEACON)
a2c9b652 160 rt2x00queue_update_beacon(rt2x00dev, vif, true);
6bb40dd1 161
72810379 162 if (delayed_flags & DELAYED_CONFIG_ERP)
980dfcb9 163 rt2x00lib_config_erp(rt2x00dev, intf, &conf);
a2e1d52a
ID
164
165 if (delayed_flags & DELAYED_LED_ASSOC)
166 rt2x00leds_led_assoc(rt2x00dev, !!rt2x00dev->intf_associated);
6bb40dd1 167}
5c58ee51 168
6bb40dd1
ID
169static void rt2x00lib_intf_scheduled(struct work_struct *work)
170{
171 struct rt2x00_dev *rt2x00dev =
172 container_of(work, struct rt2x00_dev, intf_work);
471b3efd
JB
173
174 /*
6bb40dd1
ID
175 * Iterate over each interface and perform the
176 * requested configurations.
471b3efd 177 */
6bb40dd1
ID
178 ieee80211_iterate_active_interfaces(rt2x00dev->hw,
179 rt2x00lib_intf_scheduled_iter,
180 rt2x00dev);
5c58ee51
ID
181}
182
95ea3627
ID
183/*
184 * Interrupt context handlers.
185 */
6bb40dd1
ID
186static void rt2x00lib_beacondone_iter(void *data, u8 *mac,
187 struct ieee80211_vif *vif)
95ea3627 188{
6bb40dd1 189 struct rt2x00_intf *intf = vif_to_intf(vif);
95ea3627 190
05c914fe 191 if (vif->type != NL80211_IFTYPE_AP &&
a07dbea2 192 vif->type != NL80211_IFTYPE_ADHOC &&
ce292a64
ID
193 vif->type != NL80211_IFTYPE_MESH_POINT &&
194 vif->type != NL80211_IFTYPE_WDS)
95ea3627
ID
195 return;
196
6bb40dd1
ID
197 spin_lock(&intf->lock);
198 intf->delayed_flags |= DELAYED_UPDATE_BEACON;
199 spin_unlock(&intf->lock);
95ea3627
ID
200}
201
202void rt2x00lib_beacondone(struct rt2x00_dev *rt2x00dev)
203{
0262ab0d 204 if (!test_bit(DEVICE_STATE_ENABLED_RADIO, &rt2x00dev->flags))
95ea3627
ID
205 return;
206
633257d3
ID
207 ieee80211_iterate_active_interfaces_atomic(rt2x00dev->hw,
208 rt2x00lib_beacondone_iter,
209 rt2x00dev);
6bb40dd1 210
42935eca 211 ieee80211_queue_work(rt2x00dev->hw, &rt2x00dev->intf_work);
95ea3627
ID
212}
213EXPORT_SYMBOL_GPL(rt2x00lib_beacondone);
214
181d6902
ID
215void rt2x00lib_txdone(struct queue_entry *entry,
216 struct txdone_entry_desc *txdesc)
95ea3627 217{
181d6902 218 struct rt2x00_dev *rt2x00dev = entry->queue->rt2x00dev;
e039fa4a 219 struct ieee80211_tx_info *tx_info = IEEE80211_SKB_CB(entry->skb);
e6a9854b 220 struct skb_frame_desc *skbdesc = get_skb_frame_desc(entry->skb);
d74f5ba4 221 enum data_queue_qid qid = skb_get_queue_mapping(entry->skb);
9f166171 222 unsigned int header_length = ieee80211_get_hdrlen_from_skb(entry->skb);
e6a9854b 223 u8 rate_idx, rate_flags;
d74f5ba4
ID
224
225 /*
226 * Unmap the skb.
227 */
228 rt2x00queue_unmap_skb(rt2x00dev, entry->skb);
e039fa4a 229
9f166171
ID
230 /*
231 * Remove L2 padding which was added during
232 */
233 if (test_bit(DRIVER_REQUIRE_L2PAD, &rt2x00dev->flags))
234 rt2x00queue_payload_align(entry->skb, true, header_length);
235
2bb057d0
ID
236 /*
237 * If the IV/EIV data was stripped from the frame before it was
238 * passed to the hardware, we should now reinsert it again because
239 * mac80211 will expect the the same data to be present it the
240 * frame as it was passed to us.
241 */
242 if (test_bit(CONFIG_SUPPORT_HW_CRYPTO, &rt2x00dev->flags))
9f166171 243 rt2x00crypto_tx_insert_iv(entry->skb, header_length);
2bb057d0 244
e039fa4a
JB
245 /*
246 * Send frame to debugfs immediately, after this call is completed
247 * we are going to overwrite the skb->cb array.
248 */
249 rt2x00debug_dump_frame(rt2x00dev, DUMP_FRAME_TXDONE, entry->skb);
95ea3627
ID
250
251 /*
252 * Update TX statistics.
253 */
fb55f4d1 254 rt2x00dev->link.qual.tx_success +=
ce4c45e0
AB
255 test_bit(TXDONE_SUCCESS, &txdesc->flags) ||
256 test_bit(TXDONE_UNKNOWN, &txdesc->flags);
fb55f4d1 257 rt2x00dev->link.qual.tx_failed +=
cb14cb79 258 test_bit(TXDONE_FAILURE, &txdesc->flags);
95ea3627 259
e6a9854b
JB
260 rate_idx = skbdesc->tx_rate_idx;
261 rate_flags = skbdesc->tx_rate_flags;
262
181d6902
ID
263 /*
264 * Initialize TX status
265 */
e039fa4a
JB
266 memset(&tx_info->status, 0, sizeof(tx_info->status));
267 tx_info->status.ack_signal = 0;
e6a9854b
JB
268 tx_info->status.rates[0].idx = rate_idx;
269 tx_info->status.rates[0].flags = rate_flags;
270 tx_info->status.rates[0].count = txdesc->retry + 1;
271 tx_info->status.rates[1].idx = -1; /* terminate */
181d6902 272
e039fa4a 273 if (!(tx_info->flags & IEEE80211_TX_CTL_NO_ACK)) {
ce4c45e0
AB
274 if (test_bit(TXDONE_SUCCESS, &txdesc->flags) ||
275 test_bit(TXDONE_UNKNOWN, &txdesc->flags))
e039fa4a 276 tx_info->flags |= IEEE80211_TX_STAT_ACK;
fb55f4d1 277 else if (test_bit(TXDONE_FAILURE, &txdesc->flags))
181d6902 278 rt2x00dev->low_level_stats.dot11ACKFailureCount++;
95ea3627
ID
279 }
280
e6a9854b 281 if (rate_flags & IEEE80211_TX_RC_USE_RTS_CTS) {
ce4c45e0
AB
282 if (test_bit(TXDONE_SUCCESS, &txdesc->flags) ||
283 test_bit(TXDONE_UNKNOWN, &txdesc->flags))
181d6902 284 rt2x00dev->low_level_stats.dot11RTSSuccessCount++;
fb55f4d1 285 else if (test_bit(TXDONE_FAILURE, &txdesc->flags))
181d6902 286 rt2x00dev->low_level_stats.dot11RTSFailureCount++;
95ea3627
ID
287 }
288
289 /*
e039fa4a
JB
290 * Only send the status report to mac80211 when TX status was
291 * requested by it. If this was a extra frame coming through
292 * a mac80211 library call (RTS/CTS) then we should not send the
293 * status report back.
95ea3627 294 */
e039fa4a
JB
295 if (tx_info->flags & IEEE80211_TX_CTL_REQ_TX_STATUS)
296 ieee80211_tx_status_irqsafe(rt2x00dev->hw, entry->skb);
baf26a7e 297 else
fb55f4d1 298 dev_kfree_skb_irq(entry->skb);
d74f5ba4
ID
299
300 /*
301 * Make this entry available for reuse.
302 */
95ea3627 303 entry->skb = NULL;
d74f5ba4
ID
304 entry->flags = 0;
305
798b7adb 306 rt2x00dev->ops->lib->clear_entry(entry);
d74f5ba4 307
0262ab0d 308 clear_bit(ENTRY_OWNER_DEVICE_DATA, &entry->flags);
d74f5ba4
ID
309 rt2x00queue_index_inc(entry->queue, Q_INDEX_DONE);
310
311 /*
312 * If the data queue was below the threshold before the txdone
313 * handler we must make sure the packet queue in the mac80211 stack
314 * is reenabled when the txdone handler has finished.
315 */
316 if (!rt2x00queue_threshold(entry->queue))
317 ieee80211_wake_queue(rt2x00dev->hw, qid);
95ea3627
ID
318}
319EXPORT_SYMBOL_GPL(rt2x00lib_txdone);
320
35f00cfc
ID
321static int rt2x00lib_rxdone_read_signal(struct rt2x00_dev *rt2x00dev,
322 struct rxdone_entry_desc *rxdesc)
323{
324 struct ieee80211_supported_band *sband;
325 const struct rt2x00_rate *rate;
326 unsigned int i;
327 int signal;
328 int type;
329
330 /*
331 * For non-HT rates the MCS value needs to contain the
332 * actually used rate modulation (CCK or OFDM).
333 */
334 if (rxdesc->dev_flags & RXDONE_SIGNAL_MCS)
335 signal = RATE_MCS(rxdesc->rate_mode, rxdesc->signal);
336 else
337 signal = rxdesc->signal;
338
339 type = (rxdesc->dev_flags & RXDONE_SIGNAL_MASK);
340
341 sband = &rt2x00dev->bands[rt2x00dev->curr_band];
342 for (i = 0; i < sband->n_bitrates; i++) {
343 rate = rt2x00_get_rate(sband->bitrates[i].hw_value);
344
345 if (((type == RXDONE_SIGNAL_PLCP) &&
346 (rate->plcp == signal)) ||
347 ((type == RXDONE_SIGNAL_BITRATE) &&
348 (rate->bitrate == signal)) ||
349 ((type == RXDONE_SIGNAL_MCS) &&
350 (rate->mcs == signal))) {
351 return i;
352 }
353 }
354
355 WARNING(rt2x00dev, "Frame received with unrecognized signal, "
356 "signal=0x%.4x, type=%d.\n", signal, type);
357 return 0;
358}
359
c4da0048
GW
360void rt2x00lib_rxdone(struct rt2x00_dev *rt2x00dev,
361 struct queue_entry *entry)
95ea3627 362{
c4da0048
GW
363 struct rxdone_entry_desc rxdesc;
364 struct sk_buff *skb;
95ea3627 365 struct ieee80211_rx_status *rx_status = &rt2x00dev->rx_status;
2bb057d0 366 unsigned int header_length;
9f166171 367 bool l2pad;
35f00cfc 368 int rate_idx;
c4da0048
GW
369 /*
370 * Allocate a new sk_buffer. If no new buffer available, drop the
371 * received frame and reuse the existing buffer.
372 */
373 skb = rt2x00queue_alloc_rxskb(rt2x00dev, entry);
374 if (!skb)
375 return;
376
377 /*
378 * Unmap the skb.
379 */
380 rt2x00queue_unmap_skb(rt2x00dev, entry->skb);
381
382 /*
383 * Extract the RXD details.
384 */
385 memset(&rxdesc, 0, sizeof(rxdesc));
386 rt2x00dev->ops->lib->fill_rxdone(entry, &rxdesc);
95ea3627 387
9f166171
ID
388 /* Trim buffer to correct size */
389 skb_trim(entry->skb, rxdesc.size);
390
239c249d
GW
391 /*
392 * The data behind the ieee80211 header must be
a9f853dd 393 * aligned on a 4 byte boundary.
239c249d 394 */
2bb057d0 395 header_length = ieee80211_get_hdrlen_from_skb(entry->skb);
9f166171 396 l2pad = !!(rxdesc.dev_flags & RXDONE_L2PAD);
239c249d 397
2bb057d0
ID
398 /*
399 * Hardware might have stripped the IV/EIV/ICV data,
400 * in that case it is possible that the data was
401 * provided seperately (through hardware descriptor)
402 * in which case we should reinsert the data into the frame.
403 */
74415edb 404 if ((rxdesc.dev_flags & RXDONE_CRYPTO_IV) &&
9f166171
ID
405 (rxdesc.flags & RX_FLAG_IV_STRIPPED))
406 rt2x00crypto_rx_insert_iv(entry->skb, l2pad, header_length,
407 &rxdesc);
408 else
409 rt2x00queue_payload_align(entry->skb, l2pad, header_length);
239c249d 410
95ea3627 411 /*
35f00cfc
ID
412 * Check if the frame was received using HT. In that case,
413 * the rate is the MCS index and should be passed to mac80211
414 * directly. Otherwise we need to translate the signal to
415 * the correct bitrate index.
95ea3627 416 */
35f00cfc
ID
417 if (rxdesc.rate_mode == RATE_MODE_CCK ||
418 rxdesc.rate_mode == RATE_MODE_OFDM) {
419 rate_idx = rt2x00lib_rxdone_read_signal(rt2x00dev, &rxdesc);
420 } else {
421 rxdesc.flags |= RX_FLAG_HT;
422 rate_idx = rxdesc.signal;
866a0503
ID
423 }
424
61af43c5 425 /*
84e3196f 426 * Update extra components
61af43c5 427 */
84e3196f
ID
428 rt2x00link_update_stats(rt2x00dev, entry->skb, &rxdesc);
429 rt2x00debug_update_crypto(rt2x00dev, &rxdesc);
69f81a2c 430
ae73e58e 431 rx_status->mactime = rxdesc.timestamp;
35f00cfc 432 rx_status->rate_idx = rate_idx;
84e3196f 433 rx_status->qual = rt2x00link_calculate_signal(rt2x00dev, rxdesc.rssi);
c4da0048 434 rx_status->signal = rxdesc.rssi;
2bdb35c7 435 rx_status->noise = rxdesc.noise;
c4da0048 436 rx_status->flag = rxdesc.flags;
69f81a2c 437 rx_status->antenna = rt2x00dev->link.ant.active.rx;
95ea3627
ID
438
439 /*
181d6902
ID
440 * Send frame to mac80211 & debugfs.
441 * mac80211 will clean up the skb structure.
95ea3627 442 */
5a6e5999 443 rt2x00debug_dump_frame(rt2x00dev, DUMP_FRAME_RXDONE, entry->skb);
f1d58c25
JB
444 memcpy(IEEE80211_SKB_RXCB(entry->skb), rx_status, sizeof(*rx_status));
445 ieee80211_rx_irqsafe(rt2x00dev->hw, entry->skb);
c4da0048
GW
446
447 /*
448 * Replace the skb with the freshly allocated one.
449 */
450 entry->skb = skb;
d74f5ba4
ID
451 entry->flags = 0;
452
798b7adb 453 rt2x00dev->ops->lib->clear_entry(entry);
d74f5ba4
ID
454
455 rt2x00queue_index_inc(entry->queue, Q_INDEX);
95ea3627
ID
456}
457EXPORT_SYMBOL_GPL(rt2x00lib_rxdone);
458
95ea3627
ID
459/*
460 * Driver initialization handlers.
461 */
70e2fed4
ID
462const struct rt2x00_rate rt2x00_supported_rates[12] = {
463 {
3d8606a6 464 .flags = DEV_RATE_CCK,
70e2fed4 465 .bitrate = 10,
aa776721 466 .ratemask = BIT(0),
70e2fed4 467 .plcp = 0x00,
35f00cfc 468 .mcs = RATE_MCS(RATE_MODE_CCK, 0),
70e2fed4
ID
469 },
470 {
3d8606a6 471 .flags = DEV_RATE_CCK | DEV_RATE_SHORT_PREAMBLE,
70e2fed4 472 .bitrate = 20,
aa776721 473 .ratemask = BIT(1),
70e2fed4 474 .plcp = 0x01,
35f00cfc 475 .mcs = RATE_MCS(RATE_MODE_CCK, 1),
70e2fed4
ID
476 },
477 {
3d8606a6 478 .flags = DEV_RATE_CCK | DEV_RATE_SHORT_PREAMBLE,
70e2fed4 479 .bitrate = 55,
aa776721 480 .ratemask = BIT(2),
70e2fed4 481 .plcp = 0x02,
35f00cfc 482 .mcs = RATE_MCS(RATE_MODE_CCK, 2),
70e2fed4
ID
483 },
484 {
3d8606a6 485 .flags = DEV_RATE_CCK | DEV_RATE_SHORT_PREAMBLE,
70e2fed4 486 .bitrate = 110,
aa776721 487 .ratemask = BIT(3),
70e2fed4 488 .plcp = 0x03,
35f00cfc 489 .mcs = RATE_MCS(RATE_MODE_CCK, 3),
70e2fed4
ID
490 },
491 {
3d8606a6 492 .flags = DEV_RATE_OFDM,
70e2fed4 493 .bitrate = 60,
aa776721 494 .ratemask = BIT(4),
70e2fed4 495 .plcp = 0x0b,
35f00cfc 496 .mcs = RATE_MCS(RATE_MODE_OFDM, 0),
70e2fed4
ID
497 },
498 {
499 .flags = DEV_RATE_OFDM,
500 .bitrate = 90,
aa776721 501 .ratemask = BIT(5),
70e2fed4 502 .plcp = 0x0f,
35f00cfc 503 .mcs = RATE_MCS(RATE_MODE_OFDM, 1),
70e2fed4
ID
504 },
505 {
3d8606a6 506 .flags = DEV_RATE_OFDM,
70e2fed4 507 .bitrate = 120,
aa776721 508 .ratemask = BIT(6),
70e2fed4 509 .plcp = 0x0a,
35f00cfc 510 .mcs = RATE_MCS(RATE_MODE_OFDM, 2),
70e2fed4
ID
511 },
512 {
513 .flags = DEV_RATE_OFDM,
514 .bitrate = 180,
aa776721 515 .ratemask = BIT(7),
70e2fed4 516 .plcp = 0x0e,
35f00cfc 517 .mcs = RATE_MCS(RATE_MODE_OFDM, 3),
70e2fed4
ID
518 },
519 {
3d8606a6 520 .flags = DEV_RATE_OFDM,
70e2fed4 521 .bitrate = 240,
aa776721 522 .ratemask = BIT(8),
70e2fed4 523 .plcp = 0x09,
35f00cfc 524 .mcs = RATE_MCS(RATE_MODE_OFDM, 4),
70e2fed4
ID
525 },
526 {
527 .flags = DEV_RATE_OFDM,
528 .bitrate = 360,
aa776721 529 .ratemask = BIT(9),
70e2fed4 530 .plcp = 0x0d,
35f00cfc 531 .mcs = RATE_MCS(RATE_MODE_OFDM, 5),
70e2fed4
ID
532 },
533 {
534 .flags = DEV_RATE_OFDM,
535 .bitrate = 480,
aa776721 536 .ratemask = BIT(10),
70e2fed4 537 .plcp = 0x08,
35f00cfc 538 .mcs = RATE_MCS(RATE_MODE_OFDM, 6),
70e2fed4
ID
539 },
540 {
541 .flags = DEV_RATE_OFDM,
542 .bitrate = 540,
aa776721 543 .ratemask = BIT(11),
70e2fed4 544 .plcp = 0x0c,
35f00cfc 545 .mcs = RATE_MCS(RATE_MODE_OFDM, 7),
70e2fed4
ID
546 },
547};
548
95ea3627
ID
549static void rt2x00lib_channel(struct ieee80211_channel *entry,
550 const int channel, const int tx_power,
551 const int value)
552{
f2a3c7f5 553 entry->center_freq = ieee80211_channel_to_frequency(channel);
8318d78a
JB
554 entry->hw_value = value;
555 entry->max_power = tx_power;
556 entry->max_antenna_gain = 0xff;
95ea3627
ID
557}
558
559static void rt2x00lib_rate(struct ieee80211_rate *entry,
70e2fed4 560 const u16 index, const struct rt2x00_rate *rate)
95ea3627 561{
70e2fed4
ID
562 entry->flags = 0;
563 entry->bitrate = rate->bitrate;
3ea96463
ID
564 entry->hw_value =index;
565 entry->hw_value_short = index;
70e2fed4 566
3ea96463 567 if (rate->flags & DEV_RATE_SHORT_PREAMBLE)
70e2fed4 568 entry->flags |= IEEE80211_RATE_SHORT_PREAMBLE;
95ea3627
ID
569}
570
571static int rt2x00lib_probe_hw_modes(struct rt2x00_dev *rt2x00dev,
572 struct hw_mode_spec *spec)
573{
574 struct ieee80211_hw *hw = rt2x00dev->hw;
95ea3627
ID
575 struct ieee80211_channel *channels;
576 struct ieee80211_rate *rates;
31562e80 577 unsigned int num_rates;
95ea3627 578 unsigned int i;
95ea3627 579
31562e80
ID
580 num_rates = 0;
581 if (spec->supported_rates & SUPPORT_RATE_CCK)
582 num_rates += 4;
583 if (spec->supported_rates & SUPPORT_RATE_OFDM)
584 num_rates += 8;
95ea3627
ID
585
586 channels = kzalloc(sizeof(*channels) * spec->num_channels, GFP_KERNEL);
587 if (!channels)
8318d78a 588 return -ENOMEM;
95ea3627 589
31562e80 590 rates = kzalloc(sizeof(*rates) * num_rates, GFP_KERNEL);
95ea3627
ID
591 if (!rates)
592 goto exit_free_channels;
593
594 /*
595 * Initialize Rate list.
596 */
31562e80 597 for (i = 0; i < num_rates; i++)
8f5fa7f0 598 rt2x00lib_rate(&rates[i], i, rt2x00_get_rate(i));
95ea3627
ID
599
600 /*
601 * Initialize Channel list.
602 */
603 for (i = 0; i < spec->num_channels; i++) {
95ea3627 604 rt2x00lib_channel(&channels[i],
8c5e7a5f
ID
605 spec->channels[i].channel,
606 spec->channels_info[i].tx_power1, i);
95ea3627
ID
607 }
608
609 /*
31562e80 610 * Intitialize 802.11b, 802.11g
95ea3627 611 * Rates: CCK, OFDM.
8318d78a 612 * Channels: 2.4 GHz
95ea3627 613 */
47ac2683 614 if (spec->supported_bands & SUPPORT_BAND_2GHZ) {
31562e80
ID
615 rt2x00dev->bands[IEEE80211_BAND_2GHZ].n_channels = 14;
616 rt2x00dev->bands[IEEE80211_BAND_2GHZ].n_bitrates = num_rates;
617 rt2x00dev->bands[IEEE80211_BAND_2GHZ].channels = channels;
618 rt2x00dev->bands[IEEE80211_BAND_2GHZ].bitrates = rates;
619 hw->wiphy->bands[IEEE80211_BAND_2GHZ] =
620 &rt2x00dev->bands[IEEE80211_BAND_2GHZ];
35f00cfc
ID
621 memcpy(&rt2x00dev->bands[IEEE80211_BAND_2GHZ].ht_cap,
622 &spec->ht, sizeof(spec->ht));
95ea3627
ID
623 }
624
625 /*
626 * Intitialize 802.11a
627 * Rates: OFDM.
628 * Channels: OFDM, UNII, HiperLAN2.
629 */
47ac2683 630 if (spec->supported_bands & SUPPORT_BAND_5GHZ) {
31562e80
ID
631 rt2x00dev->bands[IEEE80211_BAND_5GHZ].n_channels =
632 spec->num_channels - 14;
633 rt2x00dev->bands[IEEE80211_BAND_5GHZ].n_bitrates =
634 num_rates - 4;
635 rt2x00dev->bands[IEEE80211_BAND_5GHZ].channels = &channels[14];
636 rt2x00dev->bands[IEEE80211_BAND_5GHZ].bitrates = &rates[4];
637 hw->wiphy->bands[IEEE80211_BAND_5GHZ] =
638 &rt2x00dev->bands[IEEE80211_BAND_5GHZ];
35f00cfc
ID
639 memcpy(&rt2x00dev->bands[IEEE80211_BAND_5GHZ].ht_cap,
640 &spec->ht, sizeof(spec->ht));
95ea3627
ID
641 }
642
95ea3627
ID
643 return 0;
644
8318d78a 645 exit_free_channels:
95ea3627 646 kfree(channels);
95ea3627
ID
647 ERROR(rt2x00dev, "Allocation ieee80211 modes failed.\n");
648 return -ENOMEM;
649}
650
651static void rt2x00lib_remove_hw(struct rt2x00_dev *rt2x00dev)
652{
0262ab0d 653 if (test_bit(DEVICE_STATE_REGISTERED_HW, &rt2x00dev->flags))
95ea3627
ID
654 ieee80211_unregister_hw(rt2x00dev->hw);
655
8318d78a
JB
656 if (likely(rt2x00dev->hw->wiphy->bands[IEEE80211_BAND_2GHZ])) {
657 kfree(rt2x00dev->hw->wiphy->bands[IEEE80211_BAND_2GHZ]->channels);
658 kfree(rt2x00dev->hw->wiphy->bands[IEEE80211_BAND_2GHZ]->bitrates);
659 rt2x00dev->hw->wiphy->bands[IEEE80211_BAND_2GHZ] = NULL;
660 rt2x00dev->hw->wiphy->bands[IEEE80211_BAND_5GHZ] = NULL;
95ea3627 661 }
8c5e7a5f
ID
662
663 kfree(rt2x00dev->spec.channels_info);
95ea3627
ID
664}
665
666static int rt2x00lib_probe_hw(struct rt2x00_dev *rt2x00dev)
667{
668 struct hw_mode_spec *spec = &rt2x00dev->spec;
669 int status;
670
0262ab0d
ID
671 if (test_bit(DEVICE_STATE_REGISTERED_HW, &rt2x00dev->flags))
672 return 0;
673
95ea3627
ID
674 /*
675 * Initialize HW modes.
676 */
677 status = rt2x00lib_probe_hw_modes(rt2x00dev, spec);
678 if (status)
679 return status;
680
61448f88
GW
681 /*
682 * Initialize HW fields.
683 */
684 rt2x00dev->hw->queues = rt2x00dev->ops->tx_queues;
685
95ea3627
ID
686 /*
687 * Register HW.
688 */
689 status = ieee80211_register_hw(rt2x00dev->hw);
f05faa31 690 if (status)
95ea3627 691 return status;
95ea3627 692
0262ab0d 693 set_bit(DEVICE_STATE_REGISTERED_HW, &rt2x00dev->flags);
95ea3627
ID
694
695 return 0;
696}
697
698/*
699 * Initialization/uninitialization handlers.
700 */
e37ea213 701static void rt2x00lib_uninitialize(struct rt2x00_dev *rt2x00dev)
95ea3627 702{
0262ab0d 703 if (!test_and_clear_bit(DEVICE_STATE_INITIALIZED, &rt2x00dev->flags))
95ea3627
ID
704 return;
705
706 /*
1682fe6d 707 * Unregister extra components.
95ea3627
ID
708 */
709 rt2x00rfkill_unregister(rt2x00dev);
710
711 /*
712 * Allow the HW to uninitialize.
713 */
714 rt2x00dev->ops->lib->uninitialize(rt2x00dev);
715
716 /*
181d6902 717 * Free allocated queue entries.
95ea3627 718 */
181d6902 719 rt2x00queue_uninitialize(rt2x00dev);
95ea3627
ID
720}
721
e37ea213 722static int rt2x00lib_initialize(struct rt2x00_dev *rt2x00dev)
95ea3627
ID
723{
724 int status;
725
0262ab0d 726 if (test_bit(DEVICE_STATE_INITIALIZED, &rt2x00dev->flags))
95ea3627
ID
727 return 0;
728
729 /*
181d6902 730 * Allocate all queue entries.
95ea3627 731 */
181d6902
ID
732 status = rt2x00queue_initialize(rt2x00dev);
733 if (status)
95ea3627 734 return status;
95ea3627
ID
735
736 /*
737 * Initialize the device.
738 */
739 status = rt2x00dev->ops->lib->initialize(rt2x00dev);
ed499983
ID
740 if (status) {
741 rt2x00queue_uninitialize(rt2x00dev);
742 return status;
743 }
95ea3627 744
0262ab0d 745 set_bit(DEVICE_STATE_INITIALIZED, &rt2x00dev->flags);
95ea3627
ID
746
747 /*
1682fe6d 748 * Register the extra components.
95ea3627 749 */
1682fe6d 750 rt2x00rfkill_register(rt2x00dev);
95ea3627
ID
751
752 return 0;
95ea3627
ID
753}
754
e37ea213
ID
755int rt2x00lib_start(struct rt2x00_dev *rt2x00dev)
756{
757 int retval;
758
0262ab0d 759 if (test_bit(DEVICE_STATE_STARTED, &rt2x00dev->flags))
e37ea213
ID
760 return 0;
761
762 /*
763 * If this is the first interface which is added,
764 * we should load the firmware now.
765 */
9404ef34
ID
766 retval = rt2x00lib_load_firmware(rt2x00dev);
767 if (retval)
768 return retval;
e37ea213
ID
769
770 /*
771 * Initialize the device.
772 */
773 retval = rt2x00lib_initialize(rt2x00dev);
774 if (retval)
775 return retval;
776
6bb40dd1
ID
777 rt2x00dev->intf_ap_count = 0;
778 rt2x00dev->intf_sta_count = 0;
779 rt2x00dev->intf_associated = 0;
780
bdfa500b
ID
781 /* Enable the radio */
782 retval = rt2x00lib_enable_radio(rt2x00dev);
783 if (retval) {
784 rt2x00queue_uninitialize(rt2x00dev);
785 return retval;
786 }
787
0262ab0d 788 set_bit(DEVICE_STATE_STARTED, &rt2x00dev->flags);
e37ea213
ID
789
790 return 0;
791}
792
793void rt2x00lib_stop(struct rt2x00_dev *rt2x00dev)
794{
0262ab0d 795 if (!test_and_clear_bit(DEVICE_STATE_STARTED, &rt2x00dev->flags))
e37ea213
ID
796 return;
797
798 /*
799 * Perhaps we can add something smarter here,
800 * but for now just disabling the radio should do.
801 */
802 rt2x00lib_disable_radio(rt2x00dev);
803
6bb40dd1
ID
804 rt2x00dev->intf_ap_count = 0;
805 rt2x00dev->intf_sta_count = 0;
806 rt2x00dev->intf_associated = 0;
e37ea213
ID
807}
808
95ea3627
ID
809/*
810 * driver allocation handlers.
811 */
95ea3627
ID
812int rt2x00lib_probe_dev(struct rt2x00_dev *rt2x00dev)
813{
814 int retval = -ENOMEM;
815
8ff48a8b
ID
816 mutex_init(&rt2x00dev->csr_mutex);
817
6bb40dd1
ID
818 /*
819 * Make room for rt2x00_intf inside the per-interface
820 * structure ieee80211_vif.
821 */
822 rt2x00dev->hw->vif_data_size = sizeof(struct rt2x00_intf);
823
3514a441
ID
824 /*
825 * Determine which operating modes are supported, all modes
826 * which require beaconing, depend on the availability of
827 * beacon entries.
828 */
829 rt2x00dev->hw->wiphy->interface_modes = BIT(NL80211_IFTYPE_STATION);
830 if (rt2x00dev->ops->bcn->entry_num > 0)
831 rt2x00dev->hw->wiphy->interface_modes |=
832 BIT(NL80211_IFTYPE_ADHOC) |
a07dbea2 833 BIT(NL80211_IFTYPE_AP) |
ce292a64
ID
834 BIT(NL80211_IFTYPE_MESH_POINT) |
835 BIT(NL80211_IFTYPE_WDS);
f59ac048 836
95ea3627
ID
837 /*
838 * Let the driver probe the device to detect the capabilities.
839 */
840 retval = rt2x00dev->ops->lib->probe_hw(rt2x00dev);
841 if (retval) {
842 ERROR(rt2x00dev, "Failed to allocate device.\n");
843 goto exit;
844 }
845
846 /*
847 * Initialize configuration work.
848 */
6bb40dd1 849 INIT_WORK(&rt2x00dev->intf_work, rt2x00lib_intf_scheduled);
4150c572 850 INIT_WORK(&rt2x00dev->filter_work, rt2x00lib_packetfilter_scheduled);
95ea3627 851
95ea3627 852 /*
181d6902 853 * Allocate queue array.
95ea3627 854 */
181d6902 855 retval = rt2x00queue_allocate(rt2x00dev);
95ea3627
ID
856 if (retval)
857 goto exit;
858
859 /*
860 * Initialize ieee80211 structure.
861 */
862 retval = rt2x00lib_probe_hw(rt2x00dev);
863 if (retval) {
864 ERROR(rt2x00dev, "Failed to initialize hw.\n");
865 goto exit;
866 }
867
a9450b70 868 /*
1682fe6d 869 * Register extra components.
a9450b70 870 */
84e3196f 871 rt2x00link_register(rt2x00dev);
a9450b70 872 rt2x00leds_register(rt2x00dev);
95ea3627
ID
873 rt2x00debug_register(rt2x00dev);
874
0262ab0d 875 set_bit(DEVICE_STATE_PRESENT, &rt2x00dev->flags);
066cb637 876
95ea3627
ID
877 return 0;
878
879exit:
880 rt2x00lib_remove_dev(rt2x00dev);
881
882 return retval;
883}
884EXPORT_SYMBOL_GPL(rt2x00lib_probe_dev);
885
886void rt2x00lib_remove_dev(struct rt2x00_dev *rt2x00dev)
887{
0262ab0d 888 clear_bit(DEVICE_STATE_PRESENT, &rt2x00dev->flags);
066cb637 889
95ea3627
ID
890 /*
891 * Disable radio.
892 */
893 rt2x00lib_disable_radio(rt2x00dev);
894
d8cc8926
PR
895 /*
896 * Stop all work.
897 */
898 cancel_work_sync(&rt2x00dev->filter_work);
899 cancel_work_sync(&rt2x00dev->intf_work);
900
95ea3627
ID
901 /*
902 * Uninitialize device.
903 */
904 rt2x00lib_uninitialize(rt2x00dev);
905
906 /*
1682fe6d 907 * Free extra components
95ea3627
ID
908 */
909 rt2x00debug_deregister(rt2x00dev);
a9450b70
ID
910 rt2x00leds_unregister(rt2x00dev);
911
95ea3627
ID
912 /*
913 * Free ieee80211_hw memory.
914 */
915 rt2x00lib_remove_hw(rt2x00dev);
916
917 /*
918 * Free firmware image.
919 */
920 rt2x00lib_free_firmware(rt2x00dev);
921
922 /*
181d6902 923 * Free queue structures.
95ea3627 924 */
181d6902 925 rt2x00queue_free(rt2x00dev);
95ea3627
ID
926}
927EXPORT_SYMBOL_GPL(rt2x00lib_remove_dev);
928
929/*
930 * Device state handlers
931 */
932#ifdef CONFIG_PM
933int rt2x00lib_suspend(struct rt2x00_dev *rt2x00dev, pm_message_t state)
934{
95ea3627 935 NOTICE(rt2x00dev, "Going to sleep.\n");
066cb637
ID
936
937 /*
07126127 938 * Prevent mac80211 from accessing driver while suspended.
066cb637 939 */
07126127
ID
940 if (!test_and_clear_bit(DEVICE_STATE_PRESENT, &rt2x00dev->flags))
941 return 0;
95ea3627
ID
942
943 /*
07126127 944 * Cleanup as much as possible.
95ea3627 945 */
95ea3627 946 rt2x00lib_uninitialize(rt2x00dev);
1682fe6d
ID
947
948 /*
949 * Suspend/disable extra components.
950 */
a9450b70 951 rt2x00leds_suspend(rt2x00dev);
95ea3627
ID
952 rt2x00debug_deregister(rt2x00dev);
953
954 /*
9896322a
ID
955 * Set device mode to sleep for power management,
956 * on some hardware this call seems to consistently fail.
957 * From the specifications it is hard to tell why it fails,
958 * and if this is a "bad thing".
959 * Overall it is safe to just ignore the failure and
960 * continue suspending. The only downside is that the
961 * device will not be in optimal power save mode, but with
962 * the radio and the other components already disabled the
963 * device is as good as disabled.
95ea3627 964 */
07126127 965 if (rt2x00dev->ops->lib->set_device_state(rt2x00dev, STATE_SLEEP))
9896322a
ID
966 WARNING(rt2x00dev, "Device failed to enter sleep state, "
967 "continue suspending.\n");
95ea3627
ID
968
969 return 0;
970}
971EXPORT_SYMBOL_GPL(rt2x00lib_suspend);
972
973int rt2x00lib_resume(struct rt2x00_dev *rt2x00dev)
974{
95ea3627 975 NOTICE(rt2x00dev, "Waking up.\n");
95ea3627
ID
976
977 /*
1682fe6d 978 * Restore/enable extra components.
95ea3627
ID
979 */
980 rt2x00debug_register(rt2x00dev);
a9450b70 981 rt2x00leds_resume(rt2x00dev);
95ea3627 982
e37ea213
ID
983 /*
984 * We are ready again to receive requests from mac80211.
985 */
0262ab0d 986 set_bit(DEVICE_STATE_PRESENT, &rt2x00dev->flags);
e37ea213 987
95ea3627 988 return 0;
95ea3627
ID
989}
990EXPORT_SYMBOL_GPL(rt2x00lib_resume);
991#endif /* CONFIG_PM */
992
993/*
994 * rt2x00lib module information.
995 */
996MODULE_AUTHOR(DRV_PROJECT);
997MODULE_VERSION(DRV_VERSION);
998MODULE_DESCRIPTION("rt2x00 library");
999MODULE_LICENSE("GPL");