iwlagn: check for SMPS mode
[linux-2.6/linux-acpi-2.6/ibm-acpi-2.6.git] / drivers / net / wireless / iwlwifi / iwl-agn-lib.c
blob6465983fef34e6537ba8675fc5d936650ea406c2
1 /******************************************************************************
3 * GPL LICENSE SUMMARY
5 * Copyright(c) 2008 - 2011 Intel Corporation. All rights reserved.
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of version 2 of the GNU General Public License as
9 * published by the Free Software Foundation.
11 * This program is distributed in the hope that it will be useful, but
12 * WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * General Public License for more details.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110,
19 * USA
21 * The full GNU General Public License is included in this distribution
22 * in the file called LICENSE.GPL.
24 * Contact Information:
25 * Intel Linux Wireless <ilw@linux.intel.com>
26 * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
28 *****************************************************************************/
29 #include <linux/etherdevice.h>
30 #include <linux/kernel.h>
31 #include <linux/module.h>
32 #include <linux/init.h>
33 #include <linux/sched.h>
35 #include "iwl-dev.h"
36 #include "iwl-core.h"
37 #include "iwl-io.h"
38 #include "iwl-agn-hw.h"
39 #include "iwl-agn.h"
40 #include "iwl-trans.h"
41 #include "iwl-shared.h"
43 int iwlagn_hw_valid_rtc_data_addr(u32 addr)
45 return (addr >= IWLAGN_RTC_DATA_LOWER_BOUND) &&
46 (addr < IWLAGN_RTC_DATA_UPPER_BOUND);
49 int iwlagn_send_tx_power(struct iwl_priv *priv)
51 struct iwlagn_tx_power_dbm_cmd tx_power_cmd;
52 u8 tx_ant_cfg_cmd;
54 if (WARN_ONCE(test_bit(STATUS_SCAN_HW, &priv->shrd->status),
55 "TX Power requested while scanning!\n"))
56 return -EAGAIN;
58 /* half dBm need to multiply */
59 tx_power_cmd.global_lmt = (s8)(2 * priv->tx_power_user_lmt);
61 if (priv->tx_power_lmt_in_half_dbm &&
62 priv->tx_power_lmt_in_half_dbm < tx_power_cmd.global_lmt) {
64 * For the newer devices which using enhanced/extend tx power
65 * table in EEPROM, the format is in half dBm. driver need to
66 * convert to dBm format before report to mac80211.
67 * By doing so, there is a possibility of 1/2 dBm resolution
68 * lost. driver will perform "round-up" operation before
69 * reporting, but it will cause 1/2 dBm tx power over the
70 * regulatory limit. Perform the checking here, if the
71 * "tx_power_user_lmt" is higher than EEPROM value (in
72 * half-dBm format), lower the tx power based on EEPROM
74 tx_power_cmd.global_lmt = priv->tx_power_lmt_in_half_dbm;
76 tx_power_cmd.flags = IWLAGN_TX_POWER_NO_CLOSED;
77 tx_power_cmd.srv_chan_lmt = IWLAGN_TX_POWER_AUTO;
79 if (IWL_UCODE_API(priv->ucode_ver) == 1)
80 tx_ant_cfg_cmd = REPLY_TX_POWER_DBM_CMD_V1;
81 else
82 tx_ant_cfg_cmd = REPLY_TX_POWER_DBM_CMD;
84 return iwl_trans_send_cmd_pdu(trans(priv), tx_ant_cfg_cmd, CMD_SYNC,
85 sizeof(tx_power_cmd), &tx_power_cmd);
88 void iwlagn_temperature(struct iwl_priv *priv)
90 /* store temperature from correct statistics (in Celsius) */
91 priv->temperature = le32_to_cpu(priv->statistics.common.temperature);
92 iwl_tt_handler(priv);
95 u16 iwlagn_eeprom_calib_version(struct iwl_priv *priv)
97 struct iwl_eeprom_calib_hdr *hdr;
99 hdr = (struct iwl_eeprom_calib_hdr *)iwl_eeprom_query_addr(priv,
100 EEPROM_CALIB_ALL);
101 return hdr->version;
106 * EEPROM
108 static u32 eeprom_indirect_address(const struct iwl_priv *priv, u32 address)
110 u16 offset = 0;
112 if ((address & INDIRECT_ADDRESS) == 0)
113 return address;
115 switch (address & INDIRECT_TYPE_MSK) {
116 case INDIRECT_HOST:
117 offset = iwl_eeprom_query16(priv, EEPROM_LINK_HOST);
118 break;
119 case INDIRECT_GENERAL:
120 offset = iwl_eeprom_query16(priv, EEPROM_LINK_GENERAL);
121 break;
122 case INDIRECT_REGULATORY:
123 offset = iwl_eeprom_query16(priv, EEPROM_LINK_REGULATORY);
124 break;
125 case INDIRECT_TXP_LIMIT:
126 offset = iwl_eeprom_query16(priv, EEPROM_LINK_TXP_LIMIT);
127 break;
128 case INDIRECT_TXP_LIMIT_SIZE:
129 offset = iwl_eeprom_query16(priv, EEPROM_LINK_TXP_LIMIT_SIZE);
130 break;
131 case INDIRECT_CALIBRATION:
132 offset = iwl_eeprom_query16(priv, EEPROM_LINK_CALIBRATION);
133 break;
134 case INDIRECT_PROCESS_ADJST:
135 offset = iwl_eeprom_query16(priv, EEPROM_LINK_PROCESS_ADJST);
136 break;
137 case INDIRECT_OTHERS:
138 offset = iwl_eeprom_query16(priv, EEPROM_LINK_OTHERS);
139 break;
140 default:
141 IWL_ERR(priv, "illegal indirect type: 0x%X\n",
142 address & INDIRECT_TYPE_MSK);
143 break;
146 /* translate the offset from words to byte */
147 return (address & ADDRESS_MSK) + (offset << 1);
150 const u8 *iwl_eeprom_query_addr(const struct iwl_priv *priv, size_t offset)
152 u32 address = eeprom_indirect_address(priv, offset);
153 BUG_ON(address >= priv->cfg->base_params->eeprom_size);
154 return &priv->eeprom[address];
157 struct iwl_mod_params iwlagn_mod_params = {
158 .amsdu_size_8K = 1,
159 .restart_fw = 1,
160 .plcp_check = true,
161 .bt_coex_active = true,
162 .no_sleep_autoadjust = true,
163 .power_level = IWL_POWER_INDEX_1,
164 .bt_ch_announce = true,
165 .wanted_ucode_alternative = 1,
166 .auto_agg = true,
167 /* the rest are 0 by default */
170 int iwlagn_hwrate_to_mac80211_idx(u32 rate_n_flags, enum ieee80211_band band)
172 int idx = 0;
173 int band_offset = 0;
175 /* HT rate format: mac80211 wants an MCS number, which is just LSB */
176 if (rate_n_flags & RATE_MCS_HT_MSK) {
177 idx = (rate_n_flags & 0xff);
178 return idx;
179 /* Legacy rate format, search for match in table */
180 } else {
181 if (band == IEEE80211_BAND_5GHZ)
182 band_offset = IWL_FIRST_OFDM_RATE;
183 for (idx = band_offset; idx < IWL_RATE_COUNT_LEGACY; idx++)
184 if (iwl_rates[idx].plcp == (rate_n_flags & 0xFF))
185 return idx - band_offset;
188 return -1;
191 int iwlagn_manage_ibss_station(struct iwl_priv *priv,
192 struct ieee80211_vif *vif, bool add)
194 struct iwl_vif_priv *vif_priv = (void *)vif->drv_priv;
196 if (add)
197 return iwlagn_add_bssid_station(priv, vif_priv->ctx,
198 vif->bss_conf.bssid,
199 &vif_priv->ibss_bssid_sta_id);
200 return iwl_remove_station(priv, vif_priv->ibss_bssid_sta_id,
201 vif->bss_conf.bssid);
205 * iwlagn_txfifo_flush: send REPLY_TXFIFO_FLUSH command to uCode
207 * pre-requirements:
208 * 1. acquire mutex before calling
209 * 2. make sure rf is on and not in exit state
211 int iwlagn_txfifo_flush(struct iwl_priv *priv, u16 flush_control)
213 struct iwl_txfifo_flush_cmd flush_cmd;
214 struct iwl_host_cmd cmd = {
215 .id = REPLY_TXFIFO_FLUSH,
216 .len = { sizeof(struct iwl_txfifo_flush_cmd), },
217 .flags = CMD_SYNC,
218 .data = { &flush_cmd, },
221 might_sleep();
223 memset(&flush_cmd, 0, sizeof(flush_cmd));
224 if (flush_control & BIT(IWL_RXON_CTX_BSS))
225 flush_cmd.fifo_control = IWL_SCD_VO_MSK | IWL_SCD_VI_MSK |
226 IWL_SCD_BE_MSK | IWL_SCD_BK_MSK |
227 IWL_SCD_MGMT_MSK;
228 if ((flush_control & BIT(IWL_RXON_CTX_PAN)) &&
229 (priv->shrd->valid_contexts != BIT(IWL_RXON_CTX_BSS)))
230 flush_cmd.fifo_control |= IWL_PAN_SCD_VO_MSK |
231 IWL_PAN_SCD_VI_MSK | IWL_PAN_SCD_BE_MSK |
232 IWL_PAN_SCD_BK_MSK | IWL_PAN_SCD_MGMT_MSK |
233 IWL_PAN_SCD_MULTICAST_MSK;
235 if (priv->cfg->sku & EEPROM_SKU_CAP_11N_ENABLE)
236 flush_cmd.fifo_control |= IWL_AGG_TX_QUEUE_MSK;
238 IWL_DEBUG_INFO(priv, "fifo queue control: 0X%x\n",
239 flush_cmd.fifo_control);
240 flush_cmd.flush_control = cpu_to_le16(flush_control);
242 return iwl_trans_send_cmd(trans(priv), &cmd);
245 void iwlagn_dev_txfifo_flush(struct iwl_priv *priv, u16 flush_control)
247 mutex_lock(&priv->shrd->mutex);
248 ieee80211_stop_queues(priv->hw);
249 if (iwlagn_txfifo_flush(priv, IWL_DROP_ALL)) {
250 IWL_ERR(priv, "flush request fail\n");
251 goto done;
253 IWL_DEBUG_INFO(priv, "wait transmit/flush all frames\n");
254 iwl_trans_wait_tx_queue_empty(trans(priv));
255 done:
256 ieee80211_wake_queues(priv->hw);
257 mutex_unlock(&priv->shrd->mutex);
261 * BT coex
264 * Macros to access the lookup table.
266 * The lookup table has 7 inputs: bt3_prio, bt3_txrx, bt_rf_act, wifi_req,
267 * wifi_prio, wifi_txrx and wifi_sh_ant_req.
269 * It has three outputs: WLAN_ACTIVE, WLAN_KILL and ANT_SWITCH
271 * The format is that "registers" 8 through 11 contain the WLAN_ACTIVE bits
272 * one after another in 32-bit registers, and "registers" 0 through 7 contain
273 * the WLAN_KILL and ANT_SWITCH bits interleaved (in that order).
275 * These macros encode that format.
277 #define LUT_VALUE(bt3_prio, bt3_txrx, bt_rf_act, wifi_req, wifi_prio, \
278 wifi_txrx, wifi_sh_ant_req) \
279 (bt3_prio | (bt3_txrx << 1) | (bt_rf_act << 2) | (wifi_req << 3) | \
280 (wifi_prio << 4) | (wifi_txrx << 5) | (wifi_sh_ant_req << 6))
282 #define LUT_PTA_WLAN_ACTIVE_OP(lut, op, val) \
283 lut[8 + ((val) >> 5)] op (cpu_to_le32(BIT((val) & 0x1f)))
284 #define LUT_TEST_PTA_WLAN_ACTIVE(lut, bt3_prio, bt3_txrx, bt_rf_act, wifi_req, \
285 wifi_prio, wifi_txrx, wifi_sh_ant_req) \
286 (!!(LUT_PTA_WLAN_ACTIVE_OP(lut, &, LUT_VALUE(bt3_prio, bt3_txrx, \
287 bt_rf_act, wifi_req, wifi_prio, wifi_txrx, \
288 wifi_sh_ant_req))))
289 #define LUT_SET_PTA_WLAN_ACTIVE(lut, bt3_prio, bt3_txrx, bt_rf_act, wifi_req, \
290 wifi_prio, wifi_txrx, wifi_sh_ant_req) \
291 LUT_PTA_WLAN_ACTIVE_OP(lut, |=, LUT_VALUE(bt3_prio, bt3_txrx, \
292 bt_rf_act, wifi_req, wifi_prio, wifi_txrx, \
293 wifi_sh_ant_req))
294 #define LUT_CLEAR_PTA_WLAN_ACTIVE(lut, bt3_prio, bt3_txrx, bt_rf_act, \
295 wifi_req, wifi_prio, wifi_txrx, \
296 wifi_sh_ant_req) \
297 LUT_PTA_WLAN_ACTIVE_OP(lut, &= ~, LUT_VALUE(bt3_prio, bt3_txrx, \
298 bt_rf_act, wifi_req, wifi_prio, wifi_txrx, \
299 wifi_sh_ant_req))
301 #define LUT_WLAN_KILL_OP(lut, op, val) \
302 lut[(val) >> 4] op (cpu_to_le32(BIT(((val) << 1) & 0x1e)))
303 #define LUT_TEST_WLAN_KILL(lut, bt3_prio, bt3_txrx, bt_rf_act, wifi_req, \
304 wifi_prio, wifi_txrx, wifi_sh_ant_req) \
305 (!!(LUT_WLAN_KILL_OP(lut, &, LUT_VALUE(bt3_prio, bt3_txrx, bt_rf_act, \
306 wifi_req, wifi_prio, wifi_txrx, wifi_sh_ant_req))))
307 #define LUT_SET_WLAN_KILL(lut, bt3_prio, bt3_txrx, bt_rf_act, wifi_req, \
308 wifi_prio, wifi_txrx, wifi_sh_ant_req) \
309 LUT_WLAN_KILL_OP(lut, |=, LUT_VALUE(bt3_prio, bt3_txrx, bt_rf_act, \
310 wifi_req, wifi_prio, wifi_txrx, wifi_sh_ant_req))
311 #define LUT_CLEAR_WLAN_KILL(lut, bt3_prio, bt3_txrx, bt_rf_act, wifi_req, \
312 wifi_prio, wifi_txrx, wifi_sh_ant_req) \
313 LUT_WLAN_KILL_OP(lut, &= ~, LUT_VALUE(bt3_prio, bt3_txrx, bt_rf_act, \
314 wifi_req, wifi_prio, wifi_txrx, wifi_sh_ant_req))
316 #define LUT_ANT_SWITCH_OP(lut, op, val) \
317 lut[(val) >> 4] op (cpu_to_le32(BIT((((val) << 1) & 0x1e) + 1)))
318 #define LUT_TEST_ANT_SWITCH(lut, bt3_prio, bt3_txrx, bt_rf_act, wifi_req, \
319 wifi_prio, wifi_txrx, wifi_sh_ant_req) \
320 (!!(LUT_ANT_SWITCH_OP(lut, &, LUT_VALUE(bt3_prio, bt3_txrx, bt_rf_act, \
321 wifi_req, wifi_prio, wifi_txrx, \
322 wifi_sh_ant_req))))
323 #define LUT_SET_ANT_SWITCH(lut, bt3_prio, bt3_txrx, bt_rf_act, wifi_req, \
324 wifi_prio, wifi_txrx, wifi_sh_ant_req) \
325 LUT_ANT_SWITCH_OP(lut, |=, LUT_VALUE(bt3_prio, bt3_txrx, bt_rf_act, \
326 wifi_req, wifi_prio, wifi_txrx, wifi_sh_ant_req))
327 #define LUT_CLEAR_ANT_SWITCH(lut, bt3_prio, bt3_txrx, bt_rf_act, wifi_req, \
328 wifi_prio, wifi_txrx, wifi_sh_ant_req) \
329 LUT_ANT_SWITCH_OP(lut, &= ~, LUT_VALUE(bt3_prio, bt3_txrx, bt_rf_act, \
330 wifi_req, wifi_prio, wifi_txrx, wifi_sh_ant_req))
332 static const __le32 iwlagn_def_3w_lookup[12] = {
333 cpu_to_le32(0xaaaaaaaa),
334 cpu_to_le32(0xaaaaaaaa),
335 cpu_to_le32(0xaeaaaaaa),
336 cpu_to_le32(0xaaaaaaaa),
337 cpu_to_le32(0xcc00ff28),
338 cpu_to_le32(0x0000aaaa),
339 cpu_to_le32(0xcc00aaaa),
340 cpu_to_le32(0x0000aaaa),
341 cpu_to_le32(0xc0004000),
342 cpu_to_le32(0x00004000),
343 cpu_to_le32(0xf0005000),
344 cpu_to_le32(0xf0005000),
347 static const __le32 iwlagn_concurrent_lookup[12] = {
348 cpu_to_le32(0xaaaaaaaa),
349 cpu_to_le32(0xaaaaaaaa),
350 cpu_to_le32(0xaaaaaaaa),
351 cpu_to_le32(0xaaaaaaaa),
352 cpu_to_le32(0xaaaaaaaa),
353 cpu_to_le32(0xaaaaaaaa),
354 cpu_to_le32(0xaaaaaaaa),
355 cpu_to_le32(0xaaaaaaaa),
356 cpu_to_le32(0x00000000),
357 cpu_to_le32(0x00000000),
358 cpu_to_le32(0x00000000),
359 cpu_to_le32(0x00000000),
362 void iwlagn_send_advance_bt_config(struct iwl_priv *priv)
364 struct iwl_basic_bt_cmd basic = {
365 .max_kill = IWLAGN_BT_MAX_KILL_DEFAULT,
366 .bt3_timer_t7_value = IWLAGN_BT3_T7_DEFAULT,
367 .bt3_prio_sample_time = IWLAGN_BT3_PRIO_SAMPLE_DEFAULT,
368 .bt3_timer_t2_value = IWLAGN_BT3_T2_DEFAULT,
370 struct iwl6000_bt_cmd bt_cmd_6000;
371 struct iwl2000_bt_cmd bt_cmd_2000;
372 int ret;
374 BUILD_BUG_ON(sizeof(iwlagn_def_3w_lookup) !=
375 sizeof(basic.bt3_lookup_table));
377 if (priv->cfg->bt_params) {
378 if (priv->cfg->bt_params->bt_session_2) {
379 bt_cmd_2000.prio_boost = cpu_to_le32(
380 priv->cfg->bt_params->bt_prio_boost);
381 bt_cmd_2000.tx_prio_boost = 0;
382 bt_cmd_2000.rx_prio_boost = 0;
383 } else {
384 bt_cmd_6000.prio_boost =
385 priv->cfg->bt_params->bt_prio_boost;
386 bt_cmd_6000.tx_prio_boost = 0;
387 bt_cmd_6000.rx_prio_boost = 0;
389 } else {
390 IWL_ERR(priv, "failed to construct BT Coex Config\n");
391 return;
394 basic.kill_ack_mask = priv->kill_ack_mask;
395 basic.kill_cts_mask = priv->kill_cts_mask;
396 basic.valid = priv->bt_valid;
399 * Configure BT coex mode to "no coexistence" when the
400 * user disabled BT coexistence, we have no interface
401 * (might be in monitor mode), or the interface is in
402 * IBSS mode (no proper uCode support for coex then).
404 if (!iwlagn_mod_params.bt_coex_active ||
405 priv->iw_mode == NL80211_IFTYPE_ADHOC) {
406 basic.flags = IWLAGN_BT_FLAG_COEX_MODE_DISABLED;
407 } else {
408 basic.flags = IWLAGN_BT_FLAG_COEX_MODE_3W <<
409 IWLAGN_BT_FLAG_COEX_MODE_SHIFT;
411 if (!priv->bt_enable_pspoll)
412 basic.flags |= IWLAGN_BT_FLAG_SYNC_2_BT_DISABLE;
413 else
414 basic.flags &= ~IWLAGN_BT_FLAG_SYNC_2_BT_DISABLE;
416 if (priv->bt_ch_announce)
417 basic.flags |= IWLAGN_BT_FLAG_CHANNEL_INHIBITION;
418 IWL_DEBUG_COEX(priv, "BT coex flag: 0X%x\n", basic.flags);
420 priv->bt_enable_flag = basic.flags;
421 if (priv->bt_full_concurrent)
422 memcpy(basic.bt3_lookup_table, iwlagn_concurrent_lookup,
423 sizeof(iwlagn_concurrent_lookup));
424 else
425 memcpy(basic.bt3_lookup_table, iwlagn_def_3w_lookup,
426 sizeof(iwlagn_def_3w_lookup));
428 IWL_DEBUG_COEX(priv, "BT coex %s in %s mode\n",
429 basic.flags ? "active" : "disabled",
430 priv->bt_full_concurrent ?
431 "full concurrency" : "3-wire");
433 if (priv->cfg->bt_params->bt_session_2) {
434 memcpy(&bt_cmd_2000.basic, &basic,
435 sizeof(basic));
436 ret = iwl_trans_send_cmd_pdu(trans(priv), REPLY_BT_CONFIG,
437 CMD_SYNC, sizeof(bt_cmd_2000), &bt_cmd_2000);
438 } else {
439 memcpy(&bt_cmd_6000.basic, &basic,
440 sizeof(basic));
441 ret = iwl_trans_send_cmd_pdu(trans(priv), REPLY_BT_CONFIG,
442 CMD_SYNC, sizeof(bt_cmd_6000), &bt_cmd_6000);
444 if (ret)
445 IWL_ERR(priv, "failed to send BT Coex Config\n");
449 void iwlagn_bt_adjust_rssi_monitor(struct iwl_priv *priv, bool rssi_ena)
451 struct iwl_rxon_context *ctx, *found_ctx = NULL;
452 bool found_ap = false;
454 lockdep_assert_held(&priv->shrd->mutex);
456 /* Check whether AP or GO mode is active. */
457 if (rssi_ena) {
458 for_each_context(priv, ctx) {
459 if (ctx->vif && ctx->vif->type == NL80211_IFTYPE_AP &&
460 iwl_is_associated_ctx(ctx)) {
461 found_ap = true;
462 break;
468 * If disable was received or If GO/AP mode, disable RSSI
469 * measurements.
471 if (!rssi_ena || found_ap) {
472 if (priv->cur_rssi_ctx) {
473 ctx = priv->cur_rssi_ctx;
474 ieee80211_disable_rssi_reports(ctx->vif);
475 priv->cur_rssi_ctx = NULL;
477 return;
481 * If rssi measurements need to be enabled, consider all cases now.
482 * Figure out how many contexts are active.
484 for_each_context(priv, ctx) {
485 if (ctx->vif && ctx->vif->type == NL80211_IFTYPE_STATION &&
486 iwl_is_associated_ctx(ctx)) {
487 found_ctx = ctx;
488 break;
493 * rssi monitor already enabled for the correct interface...nothing
494 * to do.
496 if (found_ctx == priv->cur_rssi_ctx)
497 return;
500 * Figure out if rssi monitor is currently enabled, and needs
501 * to be changed. If rssi monitor is already enabled, disable
502 * it first else just enable rssi measurements on the
503 * interface found above.
505 if (priv->cur_rssi_ctx) {
506 ctx = priv->cur_rssi_ctx;
507 if (ctx->vif)
508 ieee80211_disable_rssi_reports(ctx->vif);
511 priv->cur_rssi_ctx = found_ctx;
513 if (!found_ctx)
514 return;
516 ieee80211_enable_rssi_reports(found_ctx->vif,
517 IWLAGN_BT_PSP_MIN_RSSI_THRESHOLD,
518 IWLAGN_BT_PSP_MAX_RSSI_THRESHOLD);
521 static bool iwlagn_bt_traffic_is_sco(struct iwl_bt_uart_msg *uart_msg)
523 return BT_UART_MSG_FRAME3SCOESCO_MSK & uart_msg->frame3 >>
524 BT_UART_MSG_FRAME3SCOESCO_POS;
527 static void iwlagn_bt_traffic_change_work(struct work_struct *work)
529 struct iwl_priv *priv =
530 container_of(work, struct iwl_priv, bt_traffic_change_work);
531 struct iwl_rxon_context *ctx;
532 int smps_request = -1;
534 if (priv->bt_enable_flag == IWLAGN_BT_FLAG_COEX_MODE_DISABLED) {
535 /* bt coex disabled */
536 return;
540 * Note: bt_traffic_load can be overridden by scan complete and
541 * coex profile notifications. Ignore that since only bad consequence
542 * can be not matching debug print with actual state.
544 IWL_DEBUG_COEX(priv, "BT traffic load changes: %d\n",
545 priv->bt_traffic_load);
547 switch (priv->bt_traffic_load) {
548 case IWL_BT_COEX_TRAFFIC_LOAD_NONE:
549 if (priv->bt_status)
550 smps_request = IEEE80211_SMPS_DYNAMIC;
551 else
552 smps_request = IEEE80211_SMPS_AUTOMATIC;
553 break;
554 case IWL_BT_COEX_TRAFFIC_LOAD_LOW:
555 smps_request = IEEE80211_SMPS_DYNAMIC;
556 break;
557 case IWL_BT_COEX_TRAFFIC_LOAD_HIGH:
558 case IWL_BT_COEX_TRAFFIC_LOAD_CONTINUOUS:
559 smps_request = IEEE80211_SMPS_STATIC;
560 break;
561 default:
562 IWL_ERR(priv, "Invalid BT traffic load: %d\n",
563 priv->bt_traffic_load);
564 break;
567 mutex_lock(&priv->shrd->mutex);
570 * We can not send command to firmware while scanning. When the scan
571 * complete we will schedule this work again. We do check with mutex
572 * locked to prevent new scan request to arrive. We do not check
573 * STATUS_SCANNING to avoid race when queue_work two times from
574 * different notifications, but quit and not perform any work at all.
576 if (test_bit(STATUS_SCAN_HW, &priv->shrd->status))
577 goto out;
579 iwl_update_chain_flags(priv);
581 if (smps_request != -1) {
582 priv->current_ht_config.smps = smps_request;
583 for_each_context(priv, ctx) {
584 if (ctx->vif && ctx->vif->type == NL80211_IFTYPE_STATION)
585 ieee80211_request_smps(ctx->vif, smps_request);
590 * Dynamic PS poll related functionality. Adjust RSSI measurements if
591 * necessary.
593 iwlagn_bt_coex_rssi_monitor(priv);
594 out:
595 mutex_unlock(&priv->shrd->mutex);
599 * If BT sco traffic, and RSSI monitor is enabled, move measurements to the
600 * correct interface or disable it if this is the last interface to be
601 * removed.
603 void iwlagn_bt_coex_rssi_monitor(struct iwl_priv *priv)
605 if (priv->bt_is_sco &&
606 priv->bt_traffic_load == IWL_BT_COEX_TRAFFIC_LOAD_CONTINUOUS)
607 iwlagn_bt_adjust_rssi_monitor(priv, true);
608 else
609 iwlagn_bt_adjust_rssi_monitor(priv, false);
612 static void iwlagn_print_uartmsg(struct iwl_priv *priv,
613 struct iwl_bt_uart_msg *uart_msg)
615 IWL_DEBUG_COEX(priv, "Message Type = 0x%X, SSN = 0x%X, "
616 "Update Req = 0x%X",
617 (BT_UART_MSG_FRAME1MSGTYPE_MSK & uart_msg->frame1) >>
618 BT_UART_MSG_FRAME1MSGTYPE_POS,
619 (BT_UART_MSG_FRAME1SSN_MSK & uart_msg->frame1) >>
620 BT_UART_MSG_FRAME1SSN_POS,
621 (BT_UART_MSG_FRAME1UPDATEREQ_MSK & uart_msg->frame1) >>
622 BT_UART_MSG_FRAME1UPDATEREQ_POS);
624 IWL_DEBUG_COEX(priv, "Open connections = 0x%X, Traffic load = 0x%X, "
625 "Chl_SeqN = 0x%X, In band = 0x%X",
626 (BT_UART_MSG_FRAME2OPENCONNECTIONS_MSK & uart_msg->frame2) >>
627 BT_UART_MSG_FRAME2OPENCONNECTIONS_POS,
628 (BT_UART_MSG_FRAME2TRAFFICLOAD_MSK & uart_msg->frame2) >>
629 BT_UART_MSG_FRAME2TRAFFICLOAD_POS,
630 (BT_UART_MSG_FRAME2CHLSEQN_MSK & uart_msg->frame2) >>
631 BT_UART_MSG_FRAME2CHLSEQN_POS,
632 (BT_UART_MSG_FRAME2INBAND_MSK & uart_msg->frame2) >>
633 BT_UART_MSG_FRAME2INBAND_POS);
635 IWL_DEBUG_COEX(priv, "SCO/eSCO = 0x%X, Sniff = 0x%X, A2DP = 0x%X, "
636 "ACL = 0x%X, Master = 0x%X, OBEX = 0x%X",
637 (BT_UART_MSG_FRAME3SCOESCO_MSK & uart_msg->frame3) >>
638 BT_UART_MSG_FRAME3SCOESCO_POS,
639 (BT_UART_MSG_FRAME3SNIFF_MSK & uart_msg->frame3) >>
640 BT_UART_MSG_FRAME3SNIFF_POS,
641 (BT_UART_MSG_FRAME3A2DP_MSK & uart_msg->frame3) >>
642 BT_UART_MSG_FRAME3A2DP_POS,
643 (BT_UART_MSG_FRAME3ACL_MSK & uart_msg->frame3) >>
644 BT_UART_MSG_FRAME3ACL_POS,
645 (BT_UART_MSG_FRAME3MASTER_MSK & uart_msg->frame3) >>
646 BT_UART_MSG_FRAME3MASTER_POS,
647 (BT_UART_MSG_FRAME3OBEX_MSK & uart_msg->frame3) >>
648 BT_UART_MSG_FRAME3OBEX_POS);
650 IWL_DEBUG_COEX(priv, "Idle duration = 0x%X",
651 (BT_UART_MSG_FRAME4IDLEDURATION_MSK & uart_msg->frame4) >>
652 BT_UART_MSG_FRAME4IDLEDURATION_POS);
654 IWL_DEBUG_COEX(priv, "Tx Activity = 0x%X, Rx Activity = 0x%X, "
655 "eSCO Retransmissions = 0x%X",
656 (BT_UART_MSG_FRAME5TXACTIVITY_MSK & uart_msg->frame5) >>
657 BT_UART_MSG_FRAME5TXACTIVITY_POS,
658 (BT_UART_MSG_FRAME5RXACTIVITY_MSK & uart_msg->frame5) >>
659 BT_UART_MSG_FRAME5RXACTIVITY_POS,
660 (BT_UART_MSG_FRAME5ESCORETRANSMIT_MSK & uart_msg->frame5) >>
661 BT_UART_MSG_FRAME5ESCORETRANSMIT_POS);
663 IWL_DEBUG_COEX(priv, "Sniff Interval = 0x%X, Discoverable = 0x%X",
664 (BT_UART_MSG_FRAME6SNIFFINTERVAL_MSK & uart_msg->frame6) >>
665 BT_UART_MSG_FRAME6SNIFFINTERVAL_POS,
666 (BT_UART_MSG_FRAME6DISCOVERABLE_MSK & uart_msg->frame6) >>
667 BT_UART_MSG_FRAME6DISCOVERABLE_POS);
669 IWL_DEBUG_COEX(priv, "Sniff Activity = 0x%X, Page = "
670 "0x%X, Inquiry = 0x%X, Connectable = 0x%X",
671 (BT_UART_MSG_FRAME7SNIFFACTIVITY_MSK & uart_msg->frame7) >>
672 BT_UART_MSG_FRAME7SNIFFACTIVITY_POS,
673 (BT_UART_MSG_FRAME7PAGE_MSK & uart_msg->frame7) >>
674 BT_UART_MSG_FRAME7PAGE_POS,
675 (BT_UART_MSG_FRAME7INQUIRY_MSK & uart_msg->frame7) >>
676 BT_UART_MSG_FRAME7INQUIRY_POS,
677 (BT_UART_MSG_FRAME7CONNECTABLE_MSK & uart_msg->frame7) >>
678 BT_UART_MSG_FRAME7CONNECTABLE_POS);
681 static void iwlagn_set_kill_msk(struct iwl_priv *priv,
682 struct iwl_bt_uart_msg *uart_msg)
684 u8 kill_msk;
685 static const __le32 bt_kill_ack_msg[2] = {
686 IWLAGN_BT_KILL_ACK_MASK_DEFAULT,
687 IWLAGN_BT_KILL_ACK_CTS_MASK_SCO };
688 static const __le32 bt_kill_cts_msg[2] = {
689 IWLAGN_BT_KILL_CTS_MASK_DEFAULT,
690 IWLAGN_BT_KILL_ACK_CTS_MASK_SCO };
692 kill_msk = (BT_UART_MSG_FRAME3SCOESCO_MSK & uart_msg->frame3)
693 ? 1 : 0;
694 if (priv->kill_ack_mask != bt_kill_ack_msg[kill_msk] ||
695 priv->kill_cts_mask != bt_kill_cts_msg[kill_msk]) {
696 priv->bt_valid |= IWLAGN_BT_VALID_KILL_ACK_MASK;
697 priv->kill_ack_mask = bt_kill_ack_msg[kill_msk];
698 priv->bt_valid |= IWLAGN_BT_VALID_KILL_CTS_MASK;
699 priv->kill_cts_mask = bt_kill_cts_msg[kill_msk];
701 /* schedule to send runtime bt_config */
702 queue_work(priv->shrd->workqueue, &priv->bt_runtime_config);
706 int iwlagn_bt_coex_profile_notif(struct iwl_priv *priv,
707 struct iwl_rx_mem_buffer *rxb,
708 struct iwl_device_cmd *cmd)
710 unsigned long flags;
711 struct iwl_rx_packet *pkt = rxb_addr(rxb);
712 struct iwl_bt_coex_profile_notif *coex = &pkt->u.bt_coex_profile_notif;
713 struct iwl_bt_uart_msg *uart_msg = &coex->last_bt_uart_msg;
715 if (priv->bt_enable_flag == IWLAGN_BT_FLAG_COEX_MODE_DISABLED) {
716 /* bt coex disabled */
717 return 0;
720 IWL_DEBUG_COEX(priv, "BT Coex notification:\n");
721 IWL_DEBUG_COEX(priv, " status: %d\n", coex->bt_status);
722 IWL_DEBUG_COEX(priv, " traffic load: %d\n", coex->bt_traffic_load);
723 IWL_DEBUG_COEX(priv, " CI compliance: %d\n",
724 coex->bt_ci_compliance);
725 iwlagn_print_uartmsg(priv, uart_msg);
727 priv->last_bt_traffic_load = priv->bt_traffic_load;
728 priv->bt_is_sco = iwlagn_bt_traffic_is_sco(uart_msg);
730 if (priv->iw_mode != NL80211_IFTYPE_ADHOC) {
731 if (priv->bt_status != coex->bt_status ||
732 priv->last_bt_traffic_load != coex->bt_traffic_load) {
733 if (coex->bt_status) {
734 /* BT on */
735 if (!priv->bt_ch_announce)
736 priv->bt_traffic_load =
737 IWL_BT_COEX_TRAFFIC_LOAD_HIGH;
738 else
739 priv->bt_traffic_load =
740 coex->bt_traffic_load;
741 } else {
742 /* BT off */
743 priv->bt_traffic_load =
744 IWL_BT_COEX_TRAFFIC_LOAD_NONE;
746 priv->bt_status = coex->bt_status;
747 queue_work(priv->shrd->workqueue,
748 &priv->bt_traffic_change_work);
752 iwlagn_set_kill_msk(priv, uart_msg);
754 /* FIXME: based on notification, adjust the prio_boost */
756 spin_lock_irqsave(&priv->shrd->lock, flags);
757 priv->bt_ci_compliance = coex->bt_ci_compliance;
758 spin_unlock_irqrestore(&priv->shrd->lock, flags);
759 return 0;
762 void iwlagn_bt_rx_handler_setup(struct iwl_priv *priv)
764 priv->rx_handlers[REPLY_BT_COEX_PROFILE_NOTIF] =
765 iwlagn_bt_coex_profile_notif;
768 void iwlagn_bt_setup_deferred_work(struct iwl_priv *priv)
770 INIT_WORK(&priv->bt_traffic_change_work,
771 iwlagn_bt_traffic_change_work);
774 void iwlagn_bt_cancel_deferred_work(struct iwl_priv *priv)
776 cancel_work_sync(&priv->bt_traffic_change_work);
779 static bool is_single_rx_stream(struct iwl_priv *priv)
781 return priv->current_ht_config.smps == IEEE80211_SMPS_STATIC ||
782 priv->current_ht_config.single_chain_sufficient;
785 #define IWL_NUM_RX_CHAINS_MULTIPLE 3
786 #define IWL_NUM_RX_CHAINS_SINGLE 2
787 #define IWL_NUM_IDLE_CHAINS_DUAL 2
788 #define IWL_NUM_IDLE_CHAINS_SINGLE 1
791 * Determine how many receiver/antenna chains to use.
793 * More provides better reception via diversity. Fewer saves power
794 * at the expense of throughput, but only when not in powersave to
795 * start with.
797 * MIMO (dual stream) requires at least 2, but works better with 3.
798 * This does not determine *which* chains to use, just how many.
800 static int iwl_get_active_rx_chain_count(struct iwl_priv *priv)
802 if (priv->cfg->bt_params &&
803 priv->cfg->bt_params->advanced_bt_coexist &&
804 (priv->bt_full_concurrent ||
805 priv->bt_traffic_load >= IWL_BT_COEX_TRAFFIC_LOAD_HIGH)) {
807 * only use chain 'A' in bt high traffic load or
808 * full concurrency mode
810 return IWL_NUM_RX_CHAINS_SINGLE;
812 /* # of Rx chains to use when expecting MIMO. */
813 if (is_single_rx_stream(priv))
814 return IWL_NUM_RX_CHAINS_SINGLE;
815 else
816 return IWL_NUM_RX_CHAINS_MULTIPLE;
820 * When we are in power saving mode, unless device support spatial
821 * multiplexing power save, use the active count for rx chain count.
823 static int iwl_get_idle_rx_chain_count(struct iwl_priv *priv, int active_cnt)
825 /* # Rx chains when idling, depending on SMPS mode */
826 switch (priv->current_ht_config.smps) {
827 case IEEE80211_SMPS_STATIC:
828 case IEEE80211_SMPS_DYNAMIC:
829 return IWL_NUM_IDLE_CHAINS_SINGLE;
830 case IEEE80211_SMPS_AUTOMATIC:
831 case IEEE80211_SMPS_OFF:
832 return active_cnt;
833 default:
834 WARN(1, "invalid SMPS mode %d",
835 priv->current_ht_config.smps);
836 return active_cnt;
840 /* up to 4 chains */
841 static u8 iwl_count_chain_bitmap(u32 chain_bitmap)
843 u8 res;
844 res = (chain_bitmap & BIT(0)) >> 0;
845 res += (chain_bitmap & BIT(1)) >> 1;
846 res += (chain_bitmap & BIT(2)) >> 2;
847 res += (chain_bitmap & BIT(3)) >> 3;
848 return res;
852 * iwlagn_set_rxon_chain - Set up Rx chain usage in "staging" RXON image
854 * Selects how many and which Rx receivers/antennas/chains to use.
855 * This should not be used for scan command ... it puts data in wrong place.
857 void iwlagn_set_rxon_chain(struct iwl_priv *priv, struct iwl_rxon_context *ctx)
859 bool is_single = is_single_rx_stream(priv);
860 bool is_cam = !test_bit(STATUS_POWER_PMI, &priv->shrd->status);
861 u8 idle_rx_cnt, active_rx_cnt, valid_rx_cnt;
862 u32 active_chains;
863 u16 rx_chain;
865 /* Tell uCode which antennas are actually connected.
866 * Before first association, we assume all antennas are connected.
867 * Just after first association, iwl_chain_noise_calibration()
868 * checks which antennas actually *are* connected. */
869 if (priv->chain_noise_data.active_chains)
870 active_chains = priv->chain_noise_data.active_chains;
871 else
872 active_chains = hw_params(priv).valid_rx_ant;
874 if (priv->cfg->bt_params &&
875 priv->cfg->bt_params->advanced_bt_coexist &&
876 (priv->bt_full_concurrent ||
877 priv->bt_traffic_load >= IWL_BT_COEX_TRAFFIC_LOAD_HIGH)) {
879 * only use chain 'A' in bt high traffic load or
880 * full concurrency mode
882 active_chains = first_antenna(active_chains);
885 rx_chain = active_chains << RXON_RX_CHAIN_VALID_POS;
887 /* How many receivers should we use? */
888 active_rx_cnt = iwl_get_active_rx_chain_count(priv);
889 idle_rx_cnt = iwl_get_idle_rx_chain_count(priv, active_rx_cnt);
892 /* correct rx chain count according hw settings
893 * and chain noise calibration
895 valid_rx_cnt = iwl_count_chain_bitmap(active_chains);
896 if (valid_rx_cnt < active_rx_cnt)
897 active_rx_cnt = valid_rx_cnt;
899 if (valid_rx_cnt < idle_rx_cnt)
900 idle_rx_cnt = valid_rx_cnt;
902 rx_chain |= active_rx_cnt << RXON_RX_CHAIN_MIMO_CNT_POS;
903 rx_chain |= idle_rx_cnt << RXON_RX_CHAIN_CNT_POS;
905 ctx->staging.rx_chain = cpu_to_le16(rx_chain);
907 if (!is_single && (active_rx_cnt >= IWL_NUM_RX_CHAINS_SINGLE) && is_cam)
908 ctx->staging.rx_chain |= RXON_RX_CHAIN_MIMO_FORCE_MSK;
909 else
910 ctx->staging.rx_chain &= ~RXON_RX_CHAIN_MIMO_FORCE_MSK;
912 IWL_DEBUG_ASSOC(priv, "rx_chain=0x%X active=%d idle=%d\n",
913 ctx->staging.rx_chain,
914 active_rx_cnt, idle_rx_cnt);
916 WARN_ON(active_rx_cnt == 0 || idle_rx_cnt == 0 ||
917 active_rx_cnt < idle_rx_cnt);
920 u8 iwl_toggle_tx_ant(struct iwl_priv *priv, u8 ant, u8 valid)
922 int i;
923 u8 ind = ant;
925 if (priv->band == IEEE80211_BAND_2GHZ &&
926 priv->bt_traffic_load >= IWL_BT_COEX_TRAFFIC_LOAD_HIGH)
927 return 0;
929 for (i = 0; i < RATE_ANT_NUM - 1; i++) {
930 ind = (ind + 1) < RATE_ANT_NUM ? ind + 1 : 0;
931 if (valid & BIT(ind))
932 return ind;
934 return ant;
937 /* notification wait support */
938 void iwlagn_init_notification_wait(struct iwl_priv *priv,
939 struct iwl_notification_wait *wait_entry,
940 u8 cmd,
941 void (*fn)(struct iwl_priv *priv,
942 struct iwl_rx_packet *pkt,
943 void *data),
944 void *fn_data)
946 wait_entry->fn = fn;
947 wait_entry->fn_data = fn_data;
948 wait_entry->cmd = cmd;
949 wait_entry->triggered = false;
950 wait_entry->aborted = false;
952 spin_lock_bh(&priv->notif_wait_lock);
953 list_add(&wait_entry->list, &priv->notif_waits);
954 spin_unlock_bh(&priv->notif_wait_lock);
957 int iwlagn_wait_notification(struct iwl_priv *priv,
958 struct iwl_notification_wait *wait_entry,
959 unsigned long timeout)
961 int ret;
963 ret = wait_event_timeout(priv->notif_waitq,
964 wait_entry->triggered || wait_entry->aborted,
965 timeout);
967 spin_lock_bh(&priv->notif_wait_lock);
968 list_del(&wait_entry->list);
969 spin_unlock_bh(&priv->notif_wait_lock);
971 if (wait_entry->aborted)
972 return -EIO;
974 /* return value is always >= 0 */
975 if (ret <= 0)
976 return -ETIMEDOUT;
977 return 0;
980 void iwlagn_remove_notification(struct iwl_priv *priv,
981 struct iwl_notification_wait *wait_entry)
983 spin_lock_bh(&priv->notif_wait_lock);
984 list_del(&wait_entry->list);
985 spin_unlock_bh(&priv->notif_wait_lock);