1 /*
2 * Copyright (c) 2012-2014 Qualcomm Atheros, Inc.
3 *
4 * Permission to use, copy, modify, and/or distribute this software for any
5 * purpose with or without fee is hereby granted, provided that the above
6 * copyright notice and this permission notice appear in all copies.
7 *
8 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
9 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
10 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
11 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
12 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
13 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
14 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
15 */
16
17 #include <linux/moduleparam.h>
18 #include <linux/if_arp.h>
19 #include <linux/etherdevice.h>
20
21 #include "wil6210.h"
22 #include "txrx.h"
23 #include "wmi.h"
24
25 #define WAIT_FOR_DISCONNECT_TIMEOUT_MS 2000
26 #define WAIT_FOR_DISCONNECT_INTERVAL_MS 10
27
28 bool no_fw_recovery;
29 module_param(no_fw_recovery, bool, S_IRUGO | S_IWUSR);
30 MODULE_PARM_DESC(no_fw_recovery, " disable automatic FW error recovery");
31
32 static bool no_fw_load = true;
33 module_param(no_fw_load, bool, S_IRUGO | S_IWUSR);
34 MODULE_PARM_DESC(no_fw_load, " do not download FW, use one in on-card flash.");
35
36 static unsigned int itr_trsh = WIL6210_ITR_TRSH_DEFAULT;
37
38 module_param(itr_trsh, uint, S_IRUGO);
39 MODULE_PARM_DESC(itr_trsh, " Interrupt moderation threshold, usecs.");
40
41 #define RST_DELAY (20) /* msec, for loop in @wil_target_reset */
42 #define RST_COUNT (1 + 1000/RST_DELAY) /* round up to be above 1 sec total */
43
44 /*
45 * Due to a hardware issue,
46 * one has to read/write to/from NIC in 32-bit chunks;
47 * regular memcpy_fromio and siblings will
48 * not work on 64-bit platform - it uses 64-bit transactions
49 *
50 * Force 32-bit transactions to enable NIC on 64-bit platforms
51 *
52 * To avoid byte swap on big endian host, __raw_{read|write}l
53 * should be used - {read|write}l would swap bytes to provide
54 * little endian on PCI value in host endianness.
55 */
wil_memcpy_fromio_32(void * dst,const volatile void __iomem * src,size_t count)56 void wil_memcpy_fromio_32(void *dst, const volatile void __iomem *src,
57 size_t count)
58 {
59 u32 *d = dst;
60 const volatile u32 __iomem *s = src;
61
62 /* size_t is unsigned, if (count%4 != 0) it will wrap */
63 for (count += 4; count > 4; count -= 4)
64 *d++ = __raw_readl(s++);
65 }
66
wil_memcpy_toio_32(volatile void __iomem * dst,const void * src,size_t count)67 void wil_memcpy_toio_32(volatile void __iomem *dst, const void *src,
68 size_t count)
69 {
70 volatile u32 __iomem *d = dst;
71 const u32 *s = src;
72
73 for (count += 4; count > 4; count -= 4)
74 __raw_writel(*s++, d++);
75 }
76
wil_disconnect_cid(struct wil6210_priv * wil,int cid)77 static void wil_disconnect_cid(struct wil6210_priv *wil, int cid)
78 {
79 uint i;
80 struct net_device *ndev = wil_to_ndev(wil);
81 struct wireless_dev *wdev = wil->wdev;
82 struct wil_sta_info *sta = &wil->sta[cid];
83
84 wil_dbg_misc(wil, "%s(CID %d, status %d)\n", __func__, cid,
85 sta->status);
86
87 sta->data_port_open = false;
88 if (sta->status != wil_sta_unused) {
89 wmi_disconnect_sta(wil, sta->addr, WLAN_REASON_DEAUTH_LEAVING);
90 switch (wdev->iftype) {
91 case NL80211_IFTYPE_AP:
92 case NL80211_IFTYPE_P2P_GO:
93 /* AP-like interface */
94 cfg80211_del_sta(ndev, sta->addr, GFP_KERNEL);
95 break;
96 default:
97 break;
98 }
99 sta->status = wil_sta_unused;
100 }
101
102 for (i = 0; i < WIL_STA_TID_NUM; i++) {
103 struct wil_tid_ampdu_rx *r;
104 unsigned long flags;
105
106 spin_lock_irqsave(&sta->tid_rx_lock, flags);
107
108 r = sta->tid_rx[i];
109 sta->tid_rx[i] = NULL;
110 wil_tid_ampdu_rx_free(wil, r);
111
112 spin_unlock_irqrestore(&sta->tid_rx_lock, flags);
113 }
114 for (i = 0; i < ARRAY_SIZE(wil->vring_tx); i++) {
115 if (wil->vring2cid_tid[i][0] == cid)
116 wil_vring_fini_tx(wil, i);
117 }
118 memset(&sta->stats, 0, sizeof(sta->stats));
119 }
120
_wil6210_disconnect(struct wil6210_priv * wil,const u8 * bssid)121 static void _wil6210_disconnect(struct wil6210_priv *wil, const u8 *bssid)
122 {
123 int cid = -ENOENT;
124 struct net_device *ndev = wil_to_ndev(wil);
125 struct wireless_dev *wdev = wil->wdev;
126
127 might_sleep();
128 if (bssid) {
129 cid = wil_find_cid(wil, bssid);
130 wil_dbg_misc(wil, "%s(%pM, CID %d)\n", __func__, bssid, cid);
131 } else {
132 wil_dbg_misc(wil, "%s(all)\n", __func__);
133 }
134
135 if (cid >= 0) /* disconnect 1 peer */
136 wil_disconnect_cid(wil, cid);
137 else /* disconnect all */
138 for (cid = 0; cid < WIL6210_MAX_CID; cid++)
139 wil_disconnect_cid(wil, cid);
140
141 /* link state */
142 switch (wdev->iftype) {
143 case NL80211_IFTYPE_STATION:
144 case NL80211_IFTYPE_P2P_CLIENT:
145 wil_link_off(wil);
146 if (test_bit(wil_status_fwconnected, &wil->status)) {
147 clear_bit(wil_status_fwconnected, &wil->status);
148 cfg80211_disconnected(ndev,
149 WLAN_STATUS_UNSPECIFIED_FAILURE,
150 NULL, 0, GFP_KERNEL);
151 } else if (test_bit(wil_status_fwconnecting, &wil->status)) {
152 cfg80211_connect_result(ndev, bssid, NULL, 0, NULL, 0,
153 WLAN_STATUS_UNSPECIFIED_FAILURE,
154 GFP_KERNEL);
155 }
156 clear_bit(wil_status_fwconnecting, &wil->status);
157 break;
158 default:
159 break;
160 }
161 }
162
wil_disconnect_worker(struct work_struct * work)163 static void wil_disconnect_worker(struct work_struct *work)
164 {
165 struct wil6210_priv *wil = container_of(work,
166 struct wil6210_priv, disconnect_worker);
167
168 mutex_lock(&wil->mutex);
169 _wil6210_disconnect(wil, NULL);
170 mutex_unlock(&wil->mutex);
171 }
172
wil_connect_timer_fn(ulong x)173 static void wil_connect_timer_fn(ulong x)
174 {
175 struct wil6210_priv *wil = (void *)x;
176
177 wil_dbg_misc(wil, "Connect timeout\n");
178
179 /* reschedule to thread context - disconnect won't
180 * run from atomic context
181 */
182 schedule_work(&wil->disconnect_worker);
183 }
184
wil_scan_timer_fn(ulong x)185 static void wil_scan_timer_fn(ulong x)
186 {
187 struct wil6210_priv *wil = (void *)x;
188
189 clear_bit(wil_status_fwready, &wil->status);
190 wil_err(wil, "Scan timeout detected, start fw error recovery\n");
191 schedule_work(&wil->fw_error_worker);
192 }
193
wil_wait_for_recovery(struct wil6210_priv * wil)194 static int wil_wait_for_recovery(struct wil6210_priv *wil)
195 {
196 if (wait_event_interruptible(wil->wq, wil->recovery_state !=
197 fw_recovery_pending)) {
198 wil_err(wil, "Interrupt, canceling recovery\n");
199 return -ERESTARTSYS;
200 }
201 if (wil->recovery_state != fw_recovery_running) {
202 wil_info(wil, "Recovery cancelled\n");
203 return -EINTR;
204 }
205 wil_info(wil, "Proceed with recovery\n");
206 return 0;
207 }
208
wil_set_recovery_state(struct wil6210_priv * wil,int state)209 void wil_set_recovery_state(struct wil6210_priv *wil, int state)
210 {
211 wil_dbg_misc(wil, "%s(%d -> %d)\n", __func__,
212 wil->recovery_state, state);
213
214 wil->recovery_state = state;
215 wake_up_interruptible(&wil->wq);
216 }
217
wil_fw_error_worker(struct work_struct * work)218 static void wil_fw_error_worker(struct work_struct *work)
219 {
220 struct wil6210_priv *wil = container_of(work, struct wil6210_priv,
221 fw_error_worker);
222 struct wireless_dev *wdev = wil->wdev;
223
224 wil_dbg_misc(wil, "fw error worker\n");
225
226 /* increment @recovery_count if less then WIL6210_FW_RECOVERY_TO
227 * passed since last recovery attempt
228 */
229 if (time_is_after_jiffies(wil->last_fw_recovery +
230 WIL6210_FW_RECOVERY_TO))
231 wil->recovery_count++;
232 else
233 wil->recovery_count = 1; /* fw was alive for a long time */
234
235 if (wil->recovery_count > WIL6210_FW_RECOVERY_RETRIES) {
236 wil_err(wil, "too many recovery attempts (%d), giving up\n",
237 wil->recovery_count);
238 return;
239 }
240
241 wil->last_fw_recovery = jiffies;
242
243 wil_info(wil, "fw error recovery requested (try %d)...\n",
244 wil->recovery_count);
245 if (!no_fw_recovery)
246 wil->recovery_state = fw_recovery_running;
247 if (wil_wait_for_recovery(wil) != 0)
248 return;
249
250 mutex_lock(&wil->mutex);
251 switch (wdev->iftype) {
252 case NL80211_IFTYPE_STATION:
253 case NL80211_IFTYPE_P2P_CLIENT:
254 case NL80211_IFTYPE_MONITOR:
255 /* silent recovery, upper layers will see disconnect */
256 __wil_down(wil);
257 __wil_up(wil);
258 break;
259 case NL80211_IFTYPE_AP:
260 case NL80211_IFTYPE_P2P_GO:
261 /* recovery in these modes is done by upper layers */
262 break;
263 default:
264 break;
265 }
266 mutex_unlock(&wil->mutex);
267 }
268
wil_find_free_vring(struct wil6210_priv * wil)269 static int wil_find_free_vring(struct wil6210_priv *wil)
270 {
271 int i;
272
273 for (i = 0; i < WIL6210_MAX_TX_RINGS; i++) {
274 if (!wil->vring_tx[i].va)
275 return i;
276 }
277 return -EINVAL;
278 }
279
wil_connect_worker(struct work_struct * work)280 static void wil_connect_worker(struct work_struct *work)
281 {
282 int rc;
283 struct wil6210_priv *wil = container_of(work, struct wil6210_priv,
284 connect_worker);
285 int cid = wil->pending_connect_cid;
286 int ringid = wil_find_free_vring(wil);
287
288 if (cid < 0) {
289 wil_err(wil, "No connection pending\n");
290 return;
291 }
292
293 wil_dbg_wmi(wil, "Configure for connection CID %d\n", cid);
294
295 rc = wil_vring_init_tx(wil, ringid, WIL6210_TX_RING_SIZE, cid, 0);
296 wil->pending_connect_cid = -1;
297 if (rc == 0) {
298 wil->sta[cid].status = wil_sta_connected;
299 wil_link_on(wil);
300 } else {
301 wil->sta[cid].status = wil_sta_unused;
302 }
303 }
304
wil_priv_init(struct wil6210_priv * wil)305 int wil_priv_init(struct wil6210_priv *wil)
306 {
307 uint i;
308
309 wil_dbg_misc(wil, "%s()\n", __func__);
310
311 memset(wil->sta, 0, sizeof(wil->sta));
312 for (i = 0; i < WIL6210_MAX_CID; i++)
313 spin_lock_init(&wil->sta[i].tid_rx_lock);
314
315 mutex_init(&wil->mutex);
316 mutex_init(&wil->wmi_mutex);
317
318 init_completion(&wil->wmi_ready);
319 init_completion(&wil->wmi_call);
320
321 wil->pending_connect_cid = -1;
322 setup_timer(&wil->connect_timer, wil_connect_timer_fn, (ulong)wil);
323 setup_timer(&wil->scan_timer, wil_scan_timer_fn, (ulong)wil);
324
325 INIT_WORK(&wil->connect_worker, wil_connect_worker);
326 INIT_WORK(&wil->disconnect_worker, wil_disconnect_worker);
327 INIT_WORK(&wil->wmi_event_worker, wmi_event_worker);
328 INIT_WORK(&wil->fw_error_worker, wil_fw_error_worker);
329
330 INIT_LIST_HEAD(&wil->pending_wmi_ev);
331 spin_lock_init(&wil->wmi_ev_lock);
332 init_waitqueue_head(&wil->wq);
333
334 wil->wmi_wq = create_singlethread_workqueue(WIL_NAME"_wmi");
335 if (!wil->wmi_wq)
336 return -EAGAIN;
337
338 wil->wmi_wq_conn = create_singlethread_workqueue(WIL_NAME"_connect");
339 if (!wil->wmi_wq_conn) {
340 destroy_workqueue(wil->wmi_wq);
341 return -EAGAIN;
342 }
343
344 wil->last_fw_recovery = jiffies;
345 wil->itr_trsh = itr_trsh;
346
347 return 0;
348 }
349
wil6210_disconnect(struct wil6210_priv * wil,const u8 * bssid)350 void wil6210_disconnect(struct wil6210_priv *wil, const u8 *bssid)
351 {
352 wil_dbg_misc(wil, "%s()\n", __func__);
353
354 del_timer_sync(&wil->connect_timer);
355 _wil6210_disconnect(wil, bssid);
356 }
357
wil_priv_deinit(struct wil6210_priv * wil)358 void wil_priv_deinit(struct wil6210_priv *wil)
359 {
360 wil_dbg_misc(wil, "%s()\n", __func__);
361
362 wil_set_recovery_state(wil, fw_recovery_idle);
363 del_timer_sync(&wil->scan_timer);
364 cancel_work_sync(&wil->disconnect_worker);
365 cancel_work_sync(&wil->fw_error_worker);
366 mutex_lock(&wil->mutex);
367 wil6210_disconnect(wil, NULL);
368 mutex_unlock(&wil->mutex);
369 wmi_event_flush(wil);
370 destroy_workqueue(wil->wmi_wq_conn);
371 destroy_workqueue(wil->wmi_wq);
372 }
373
374 /* target operations */
375 /* register read */
376 #define R(a) ioread32(wil->csr + HOSTADDR(a))
377 /* register write. wmb() to make sure it is completed */
378 #define W(a, v) do { iowrite32(v, wil->csr + HOSTADDR(a)); wmb(); } while (0)
379 /* register set = read, OR, write */
380 #define S(a, v) W(a, R(a) | v)
381 /* register clear = read, AND with inverted, write */
382 #define C(a, v) W(a, R(a) & ~v)
383
wil_halt_cpu(struct wil6210_priv * wil)384 static inline void wil_halt_cpu(struct wil6210_priv *wil)
385 {
386 W(RGF_USER_USER_CPU_0, BIT_USER_USER_CPU_MAN_RST);
387 W(RGF_USER_MAC_CPU_0, BIT_USER_MAC_CPU_MAN_RST);
388 }
389
wil_release_cpu(struct wil6210_priv * wil)390 static inline void wil_release_cpu(struct wil6210_priv *wil)
391 {
392 /* Start CPU */
393 W(RGF_USER_USER_CPU_0, 1);
394 }
395
wil_target_reset(struct wil6210_priv * wil)396 static int wil_target_reset(struct wil6210_priv *wil)
397 {
398 int delay = 0;
399 u32 hw_state;
400 u32 rev_id;
401 bool is_sparrow = (wil->board->board == WIL_BOARD_SPARROW);
402
403 wil_dbg_misc(wil, "Resetting \"%s\"...\n", wil->board->name);
404
405 wil->hw_version = R(RGF_USER_FW_REV_ID);
406 rev_id = wil->hw_version & 0xff;
407
408 /* Clear MAC link up */
409 S(RGF_HP_CTRL, BIT(15));
410 S(RGF_USER_CLKS_CTL_SW_RST_MASK_0, BIT_HPAL_PERST_FROM_PAD);
411 S(RGF_USER_CLKS_CTL_SW_RST_MASK_0, BIT_CAR_PERST_RST);
412
413 wil_halt_cpu(wil);
414 C(RGF_USER_CLKS_CTL_0, BIT_USER_CLKS_CAR_AHB_SW_SEL); /* 40 MHz */
415
416 if (is_sparrow) {
417 W(RGF_USER_CLKS_CTL_EXT_SW_RST_VEC_0, 0x3ff81f);
418 W(RGF_USER_CLKS_CTL_EXT_SW_RST_VEC_1, 0xf);
419 }
420
421 W(RGF_USER_CLKS_CTL_SW_RST_VEC_2, 0xFE000000);
422 W(RGF_USER_CLKS_CTL_SW_RST_VEC_1, 0x0000003F);
423 W(RGF_USER_CLKS_CTL_SW_RST_VEC_3, is_sparrow ? 0x000000f0 : 0x00000170);
424 W(RGF_USER_CLKS_CTL_SW_RST_VEC_0, 0xFFE7FE00);
425
426 if (is_sparrow) {
427 W(RGF_USER_CLKS_CTL_EXT_SW_RST_VEC_0, 0x0);
428 W(RGF_USER_CLKS_CTL_EXT_SW_RST_VEC_1, 0x0);
429 }
430
431 W(RGF_USER_CLKS_CTL_SW_RST_VEC_3, 0);
432 W(RGF_USER_CLKS_CTL_SW_RST_VEC_2, 0);
433 W(RGF_USER_CLKS_CTL_SW_RST_VEC_1, 0);
434 W(RGF_USER_CLKS_CTL_SW_RST_VEC_0, 0);
435
436 if (is_sparrow) {
437 W(RGF_USER_CLKS_CTL_SW_RST_VEC_3, 0x00000003);
438 /* reset A2 PCIE AHB */
439 W(RGF_USER_CLKS_CTL_SW_RST_VEC_2, 0x00008000);
440 } else {
441 W(RGF_USER_CLKS_CTL_SW_RST_VEC_3, 0x00000001);
442 if (rev_id == 1) {
443 /* reset A1 BOTH PCIE AHB & PCIE RGF */
444 W(RGF_USER_CLKS_CTL_SW_RST_VEC_2, 0x00000080);
445 } else {
446 W(RGF_PCIE_LOS_COUNTER_CTL, BIT(6) | BIT(8));
447 W(RGF_USER_CLKS_CTL_SW_RST_VEC_2, 0x00008000);
448 }
449 }
450
451 /* TODO: check order here!!! Erez code is different */
452 W(RGF_USER_CLKS_CTL_SW_RST_VEC_0, 0);
453
454 /* wait until device ready. typical time is 200..250 msec */
455 do {
456 msleep(RST_DELAY);
457 hw_state = R(RGF_USER_HW_MACHINE_STATE);
458 if (delay++ > RST_COUNT) {
459 wil_err(wil, "Reset not completed, hw_state 0x%08x\n",
460 hw_state);
461 return -ETIME;
462 }
463 } while (hw_state != HW_MACHINE_BOOT_DONE);
464
465 /* TODO: Erez check rev_id != 1 */
466 if (!is_sparrow && (rev_id != 1))
467 W(RGF_PCIE_LOS_COUNTER_CTL, BIT(8));
468
469 C(RGF_USER_CLKS_CTL_0, BIT_USER_CLKS_RST_PWGD);
470
471 wil_dbg_misc(wil, "Reset completed in %d ms\n", delay * RST_DELAY);
472 return 0;
473 }
474
475 /**
476 * wil_set_itr_trsh: - apply interrupt coalescing params
477 */
wil_set_itr_trsh(struct wil6210_priv * wil)478 void wil_set_itr_trsh(struct wil6210_priv *wil)
479 {
480 /* disable, use usec resolution */
481 W(RGF_DMA_ITR_CNT_CRL, BIT_DMA_ITR_CNT_CRL_EXT_TICK);
482
483 /* disable interrupt moderation for monitor
484 * to get better timestamp precision
485 */
486 if (wil->wdev->iftype == NL80211_IFTYPE_MONITOR)
487 return;
488
489 wil_info(wil, "set ITR_TRSH = %d usec\n", wil->itr_trsh);
490 W(RGF_DMA_ITR_CNT_TRSH, wil->itr_trsh);
491 W(RGF_DMA_ITR_CNT_CRL, BIT_DMA_ITR_CNT_CRL_EN |
492 BIT_DMA_ITR_CNT_CRL_EXT_TICK); /* start it */
493 }
494
495 #undef R
496 #undef W
497 #undef S
498 #undef C
499
wil_mbox_ring_le2cpus(struct wil6210_mbox_ring * r)500 void wil_mbox_ring_le2cpus(struct wil6210_mbox_ring *r)
501 {
502 le32_to_cpus(&r->base);
503 le16_to_cpus(&r->entry_size);
504 le16_to_cpus(&r->size);
505 le32_to_cpus(&r->tail);
506 le32_to_cpus(&r->head);
507 }
508
wil_wait_for_fw_ready(struct wil6210_priv * wil)509 static int wil_wait_for_fw_ready(struct wil6210_priv *wil)
510 {
511 ulong to = msecs_to_jiffies(1000);
512 ulong left = wait_for_completion_timeout(&wil->wmi_ready, to);
513
514 if (0 == left) {
515 wil_err(wil, "Firmware not ready\n");
516 return -ETIME;
517 } else {
518 wil_info(wil, "FW ready after %d ms. HW version 0x%08x\n",
519 jiffies_to_msecs(to-left), wil->hw_version);
520 }
521 return 0;
522 }
523
524 /*
525 * We reset all the structures, and we reset the UMAC.
526 * After calling this routine, you're expected to reload
527 * the firmware.
528 */
wil_reset(struct wil6210_priv * wil)529 int wil_reset(struct wil6210_priv *wil)
530 {
531 int rc;
532
533 wil_dbg_misc(wil, "%s()\n", __func__);
534
535 WARN_ON(!mutex_is_locked(&wil->mutex));
536 WARN_ON(test_bit(wil_status_napi_en, &wil->status));
537
538 cancel_work_sync(&wil->disconnect_worker);
539 wil6210_disconnect(wil, NULL);
540
541 wil->status = 0; /* prevent NAPI from being scheduled */
542
543 if (wil->scan_request) {
544 wil_dbg_misc(wil, "Abort scan_request 0x%p\n",
545 wil->scan_request);
546 del_timer_sync(&wil->scan_timer);
547 cfg80211_scan_done(wil->scan_request, true);
548 wil->scan_request = NULL;
549 }
550
551 wil_mask_irq(wil);
552
553 wmi_event_flush(wil);
554
555 flush_workqueue(wil->wmi_wq_conn);
556 flush_workqueue(wil->wmi_wq);
557
558 rc = wil_target_reset(wil);
559 wil_rx_fini(wil);
560 if (rc)
561 return rc;
562
563 if (!no_fw_load) {
564 wil_info(wil, "Use firmware <%s>\n", WIL_FW_NAME);
565 wil_halt_cpu(wil);
566 /* Loading f/w from the file */
567 rc = wil_request_firmware(wil, WIL_FW_NAME);
568 if (rc)
569 return rc;
570
571 /* clear any interrupts which on-card-firmware may have set */
572 wil6210_clear_irq(wil);
573 { /* CAF_ICR - clear and mask */
574 u32 a = HOSTADDR(RGF_CAF_ICR) +
575 offsetof(struct RGF_ICR, ICR);
576 u32 m = HOSTADDR(RGF_CAF_ICR) +
577 offsetof(struct RGF_ICR, IMV);
578 u32 icr = ioread32(wil->csr + a);
579
580 iowrite32(icr, wil->csr + a); /* W1C */
581 iowrite32(~0, wil->csr + m);
582 wmb(); /* wait for completion */
583 }
584 wil_release_cpu(wil);
585 } else {
586 wil_info(wil, "Use firmware from on-card flash\n");
587 }
588
589 /* init after reset */
590 wil->pending_connect_cid = -1;
591 reinit_completion(&wil->wmi_ready);
592 reinit_completion(&wil->wmi_call);
593
594 wil_unmask_irq(wil);
595
596 /* we just started MAC, wait for FW ready */
597 rc = wil_wait_for_fw_ready(wil);
598
599 return rc;
600 }
601
wil_fw_error_recovery(struct wil6210_priv * wil)602 void wil_fw_error_recovery(struct wil6210_priv *wil)
603 {
604 wil_dbg_misc(wil, "starting fw error recovery\n");
605 wil->recovery_state = fw_recovery_pending;
606 schedule_work(&wil->fw_error_worker);
607 }
608
wil_link_on(struct wil6210_priv * wil)609 void wil_link_on(struct wil6210_priv *wil)
610 {
611 struct net_device *ndev = wil_to_ndev(wil);
612
613 wil_dbg_misc(wil, "%s()\n", __func__);
614
615 netif_carrier_on(ndev);
616 wil_dbg_misc(wil, "netif_tx_wake : link on\n");
617 netif_tx_wake_all_queues(ndev);
618 }
619
wil_link_off(struct wil6210_priv * wil)620 void wil_link_off(struct wil6210_priv *wil)
621 {
622 struct net_device *ndev = wil_to_ndev(wil);
623
624 wil_dbg_misc(wil, "%s()\n", __func__);
625
626 netif_tx_stop_all_queues(ndev);
627 wil_dbg_misc(wil, "netif_tx_stop : link off\n");
628 netif_carrier_off(ndev);
629 }
630
__wil_up(struct wil6210_priv * wil)631 int __wil_up(struct wil6210_priv *wil)
632 {
633 struct net_device *ndev = wil_to_ndev(wil);
634 struct wireless_dev *wdev = wil->wdev;
635 int rc;
636
637 WARN_ON(!mutex_is_locked(&wil->mutex));
638
639 rc = wil_reset(wil);
640 if (rc)
641 return rc;
642
643 /* Rx VRING. After MAC and beacon */
644 rc = wil_rx_init(wil);
645 if (rc)
646 return rc;
647
648 switch (wdev->iftype) {
649 case NL80211_IFTYPE_STATION:
650 wil_dbg_misc(wil, "type: STATION\n");
651 ndev->type = ARPHRD_ETHER;
652 break;
653 case NL80211_IFTYPE_AP:
654 wil_dbg_misc(wil, "type: AP\n");
655 ndev->type = ARPHRD_ETHER;
656 break;
657 case NL80211_IFTYPE_P2P_CLIENT:
658 wil_dbg_misc(wil, "type: P2P_CLIENT\n");
659 ndev->type = ARPHRD_ETHER;
660 break;
661 case NL80211_IFTYPE_P2P_GO:
662 wil_dbg_misc(wil, "type: P2P_GO\n");
663 ndev->type = ARPHRD_ETHER;
664 break;
665 case NL80211_IFTYPE_MONITOR:
666 wil_dbg_misc(wil, "type: Monitor\n");
667 ndev->type = ARPHRD_IEEE80211_RADIOTAP;
668 /* ARPHRD_IEEE80211 or ARPHRD_IEEE80211_RADIOTAP ? */
669 break;
670 default:
671 return -EOPNOTSUPP;
672 }
673
674 /* MAC address - pre-requisite for other commands */
675 wmi_set_mac_address(wil, ndev->dev_addr);
676
677 wil_dbg_misc(wil, "NAPI enable\n");
678 napi_enable(&wil->napi_rx);
679 napi_enable(&wil->napi_tx);
680 set_bit(wil_status_napi_en, &wil->status);
681
682 if (wil->platform_ops.bus_request)
683 wil->platform_ops.bus_request(wil->platform_handle,
684 WIL_MAX_BUS_REQUEST_KBPS);
685
686 return 0;
687 }
688
wil_up(struct wil6210_priv * wil)689 int wil_up(struct wil6210_priv *wil)
690 {
691 int rc;
692
693 wil_dbg_misc(wil, "%s()\n", __func__);
694
695 mutex_lock(&wil->mutex);
696 rc = __wil_up(wil);
697 mutex_unlock(&wil->mutex);
698
699 return rc;
700 }
701
__wil_down(struct wil6210_priv * wil)702 int __wil_down(struct wil6210_priv *wil)
703 {
704 int iter = WAIT_FOR_DISCONNECT_TIMEOUT_MS /
705 WAIT_FOR_DISCONNECT_INTERVAL_MS;
706
707 WARN_ON(!mutex_is_locked(&wil->mutex));
708
709 if (wil->platform_ops.bus_request)
710 wil->platform_ops.bus_request(wil->platform_handle, 0);
711
712 wil_disable_irq(wil);
713 if (test_and_clear_bit(wil_status_napi_en, &wil->status)) {
714 napi_disable(&wil->napi_rx);
715 napi_disable(&wil->napi_tx);
716 wil_dbg_misc(wil, "NAPI disable\n");
717 }
718 wil_enable_irq(wil);
719
720 if (wil->scan_request) {
721 wil_dbg_misc(wil, "Abort scan_request 0x%p\n",
722 wil->scan_request);
723 del_timer_sync(&wil->scan_timer);
724 cfg80211_scan_done(wil->scan_request, true);
725 wil->scan_request = NULL;
726 }
727
728 if (test_bit(wil_status_fwconnected, &wil->status) ||
729 test_bit(wil_status_fwconnecting, &wil->status))
730 wmi_send(wil, WMI_DISCONNECT_CMDID, NULL, 0);
731
732 /* make sure wil is idle (not connected) */
733 mutex_unlock(&wil->mutex);
734 while (iter--) {
735 int idle = !test_bit(wil_status_fwconnected, &wil->status) &&
736 !test_bit(wil_status_fwconnecting, &wil->status);
737 if (idle)
738 break;
739 msleep(WAIT_FOR_DISCONNECT_INTERVAL_MS);
740 }
741 mutex_lock(&wil->mutex);
742
743 if (!iter)
744 wil_err(wil, "timeout waiting for idle FW/HW\n");
745
746 wil_rx_fini(wil);
747
748 return 0;
749 }
750
wil_down(struct wil6210_priv * wil)751 int wil_down(struct wil6210_priv *wil)
752 {
753 int rc;
754
755 wil_dbg_misc(wil, "%s()\n", __func__);
756
757 wil_set_recovery_state(wil, fw_recovery_idle);
758 mutex_lock(&wil->mutex);
759 rc = __wil_down(wil);
760 mutex_unlock(&wil->mutex);
761
762 return rc;
763 }
764
wil_find_cid(struct wil6210_priv * wil,const u8 * mac)765 int wil_find_cid(struct wil6210_priv *wil, const u8 *mac)
766 {
767 int i;
768 int rc = -ENOENT;
769
770 for (i = 0; i < ARRAY_SIZE(wil->sta); i++) {
771 if ((wil->sta[i].status != wil_sta_unused) &&
772 ether_addr_equal(wil->sta[i].addr, mac)) {
773 rc = i;
774 break;
775 }
776 }
777
778 return rc;
779 }
780