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1 // SPDX-License-Identifier: BSD-3-Clause-Clear
2 /*
3  * Copyright (c) 2018-2021 The Linux Foundation. All rights reserved.
4  * Copyright (c) 2021-2024 Qualcomm Innovation Center, Inc. All rights reserved.
5  */
6 
7 #include <linux/module.h>
8 #include <linux/slab.h>
9 #include <linux/remoteproc.h>
10 #include <linux/firmware.h>
11 #include <linux/of.h>
12 #include "core.h"
13 #include "dp_tx.h"
14 #include "dp_rx.h"
15 #include "debug.h"
16 #include "hif.h"
17 #include "fw.h"
18 #include "debugfs.h"
19 #include "wow.h"
20 
21 unsigned int ath12k_debug_mask;
22 module_param_named(debug_mask, ath12k_debug_mask, uint, 0644);
23 MODULE_PARM_DESC(debug_mask, "Debugging mask");
24 
ath12k_core_rfkill_config(struct ath12k_base * ab)25 static int ath12k_core_rfkill_config(struct ath12k_base *ab)
26 {
27 	struct ath12k *ar;
28 	int ret = 0, i;
29 
30 	if (!(ab->target_caps.sys_cap_info & WMI_SYS_CAP_INFO_RFKILL))
31 		return 0;
32 
33 	for (i = 0; i < ab->num_radios; i++) {
34 		ar = ab->pdevs[i].ar;
35 
36 		ret = ath12k_mac_rfkill_config(ar);
37 		if (ret && ret != -EOPNOTSUPP) {
38 			ath12k_warn(ab, "failed to configure rfkill: %d", ret);
39 			return ret;
40 		}
41 	}
42 
43 	return ret;
44 }
45 
46 /* Check if we need to continue with suspend/resume operation.
47  * Return:
48  *	a negative value: error happens and don't continue.
49  *	0:  no error but don't continue.
50  *	positive value: no error and do continue.
51  */
ath12k_core_continue_suspend_resume(struct ath12k_base * ab)52 static int ath12k_core_continue_suspend_resume(struct ath12k_base *ab)
53 {
54 	struct ath12k *ar;
55 
56 	if (!ab->hw_params->supports_suspend)
57 		return -EOPNOTSUPP;
58 
59 	/* so far single_pdev_only chips have supports_suspend as true
60 	 * so pass 0 as a dummy pdev_id here.
61 	 */
62 	ar = ab->pdevs[0].ar;
63 	if (!ar || !ar->ah || ar->ah->state != ATH12K_HW_STATE_OFF)
64 		return 0;
65 
66 	return 1;
67 }
68 
ath12k_core_suspend(struct ath12k_base * ab)69 int ath12k_core_suspend(struct ath12k_base *ab)
70 {
71 	struct ath12k *ar;
72 	int ret, i;
73 
74 	ret = ath12k_core_continue_suspend_resume(ab);
75 	if (ret <= 0)
76 		return ret;
77 
78 	for (i = 0; i < ab->num_radios; i++) {
79 		ar = ab->pdevs[i].ar;
80 		if (!ar)
81 			continue;
82 		ret = ath12k_mac_wait_tx_complete(ar);
83 		if (ret) {
84 			ath12k_warn(ab, "failed to wait tx complete: %d\n", ret);
85 			return ret;
86 		}
87 	}
88 
89 	/* PM framework skips suspend_late/resume_early callbacks
90 	 * if other devices report errors in their suspend callbacks.
91 	 * However ath12k_core_resume() would still be called because
92 	 * here we return success thus kernel put us on dpm_suspended_list.
93 	 * Since we won't go through a power down/up cycle, there is
94 	 * no chance to call complete(&ab->restart_completed) in
95 	 * ath12k_core_restart(), making ath12k_core_resume() timeout.
96 	 * So call it here to avoid this issue. This also works in case
97 	 * no error happens thus suspend_late/resume_early get called,
98 	 * because it will be reinitialized in ath12k_core_resume_early().
99 	 */
100 	complete(&ab->restart_completed);
101 
102 	return 0;
103 }
104 EXPORT_SYMBOL(ath12k_core_suspend);
105 
ath12k_core_suspend_late(struct ath12k_base * ab)106 int ath12k_core_suspend_late(struct ath12k_base *ab)
107 {
108 	int ret;
109 
110 	ret = ath12k_core_continue_suspend_resume(ab);
111 	if (ret <= 0)
112 		return ret;
113 
114 	ath12k_acpi_stop(ab);
115 
116 	ath12k_hif_irq_disable(ab);
117 	ath12k_hif_ce_irq_disable(ab);
118 
119 	ath12k_hif_power_down(ab, true);
120 
121 	return 0;
122 }
123 EXPORT_SYMBOL(ath12k_core_suspend_late);
124 
ath12k_core_resume_early(struct ath12k_base * ab)125 int ath12k_core_resume_early(struct ath12k_base *ab)
126 {
127 	int ret;
128 
129 	ret = ath12k_core_continue_suspend_resume(ab);
130 	if (ret <= 0)
131 		return ret;
132 
133 	reinit_completion(&ab->restart_completed);
134 	ret = ath12k_hif_power_up(ab);
135 	if (ret)
136 		ath12k_warn(ab, "failed to power up hif during resume: %d\n", ret);
137 
138 	return ret;
139 }
140 EXPORT_SYMBOL(ath12k_core_resume_early);
141 
ath12k_core_resume(struct ath12k_base * ab)142 int ath12k_core_resume(struct ath12k_base *ab)
143 {
144 	long time_left;
145 	int ret;
146 
147 	ret = ath12k_core_continue_suspend_resume(ab);
148 	if (ret <= 0)
149 		return ret;
150 
151 	time_left = wait_for_completion_timeout(&ab->restart_completed,
152 						ATH12K_RESET_TIMEOUT_HZ);
153 	if (time_left == 0) {
154 		ath12k_warn(ab, "timeout while waiting for restart complete");
155 		return -ETIMEDOUT;
156 	}
157 
158 	return 0;
159 }
160 EXPORT_SYMBOL(ath12k_core_resume);
161 
__ath12k_core_create_board_name(struct ath12k_base * ab,char * name,size_t name_len,bool with_variant,bool bus_type_mode,bool with_default)162 static int __ath12k_core_create_board_name(struct ath12k_base *ab, char *name,
163 					   size_t name_len, bool with_variant,
164 					   bool bus_type_mode, bool with_default)
165 {
166 	/* strlen(',variant=') + strlen(ab->qmi.target.bdf_ext) */
167 	char variant[9 + ATH12K_QMI_BDF_EXT_STR_LENGTH] = { 0 };
168 
169 	if (with_variant && ab->qmi.target.bdf_ext[0] != '\0')
170 		scnprintf(variant, sizeof(variant), ",variant=%s",
171 			  ab->qmi.target.bdf_ext);
172 
173 	switch (ab->id.bdf_search) {
174 	case ATH12K_BDF_SEARCH_BUS_AND_BOARD:
175 		if (bus_type_mode)
176 			scnprintf(name, name_len,
177 				  "bus=%s",
178 				  ath12k_bus_str(ab->hif.bus));
179 		else
180 			scnprintf(name, name_len,
181 				  "bus=%s,vendor=%04x,device=%04x,subsystem-vendor=%04x,subsystem-device=%04x,qmi-chip-id=%d,qmi-board-id=%d%s",
182 				  ath12k_bus_str(ab->hif.bus),
183 				  ab->id.vendor, ab->id.device,
184 				  ab->id.subsystem_vendor,
185 				  ab->id.subsystem_device,
186 				  ab->qmi.target.chip_id,
187 				  ab->qmi.target.board_id,
188 				  variant);
189 		break;
190 	default:
191 		scnprintf(name, name_len,
192 			  "bus=%s,qmi-chip-id=%d,qmi-board-id=%d%s",
193 			  ath12k_bus_str(ab->hif.bus),
194 			  ab->qmi.target.chip_id,
195 			  with_default ?
196 			  ATH12K_BOARD_ID_DEFAULT : ab->qmi.target.board_id,
197 			  variant);
198 		break;
199 	}
200 
201 	ath12k_dbg(ab, ATH12K_DBG_BOOT, "boot using board name '%s'\n", name);
202 
203 	return 0;
204 }
205 
ath12k_core_create_board_name(struct ath12k_base * ab,char * name,size_t name_len)206 static int ath12k_core_create_board_name(struct ath12k_base *ab, char *name,
207 					 size_t name_len)
208 {
209 	return __ath12k_core_create_board_name(ab, name, name_len, true, false, false);
210 }
211 
ath12k_core_create_fallback_board_name(struct ath12k_base * ab,char * name,size_t name_len)212 static int ath12k_core_create_fallback_board_name(struct ath12k_base *ab, char *name,
213 						  size_t name_len)
214 {
215 	return __ath12k_core_create_board_name(ab, name, name_len, false, false, true);
216 }
217 
ath12k_core_create_bus_type_board_name(struct ath12k_base * ab,char * name,size_t name_len)218 static int ath12k_core_create_bus_type_board_name(struct ath12k_base *ab, char *name,
219 						  size_t name_len)
220 {
221 	return __ath12k_core_create_board_name(ab, name, name_len, false, true, true);
222 }
223 
ath12k_core_firmware_request(struct ath12k_base * ab,const char * file)224 const struct firmware *ath12k_core_firmware_request(struct ath12k_base *ab,
225 						    const char *file)
226 {
227 	const struct firmware *fw;
228 	char path[100];
229 	int ret;
230 
231 	if (!file)
232 		return ERR_PTR(-ENOENT);
233 
234 	ath12k_core_create_firmware_path(ab, file, path, sizeof(path));
235 
236 	ret = firmware_request_nowarn(&fw, path, ab->dev);
237 	if (ret)
238 		return ERR_PTR(ret);
239 
240 	ath12k_dbg(ab, ATH12K_DBG_BOOT, "boot firmware request %s size %zu\n",
241 		   path, fw->size);
242 
243 	return fw;
244 }
245 
ath12k_core_free_bdf(struct ath12k_base * ab,struct ath12k_board_data * bd)246 void ath12k_core_free_bdf(struct ath12k_base *ab, struct ath12k_board_data *bd)
247 {
248 	if (!IS_ERR(bd->fw))
249 		release_firmware(bd->fw);
250 
251 	memset(bd, 0, sizeof(*bd));
252 }
253 
ath12k_core_parse_bd_ie_board(struct ath12k_base * ab,struct ath12k_board_data * bd,const void * buf,size_t buf_len,const char * boardname,int ie_id,int name_id,int data_id)254 static int ath12k_core_parse_bd_ie_board(struct ath12k_base *ab,
255 					 struct ath12k_board_data *bd,
256 					 const void *buf, size_t buf_len,
257 					 const char *boardname,
258 					 int ie_id,
259 					 int name_id,
260 					 int data_id)
261 {
262 	const struct ath12k_fw_ie *hdr;
263 	bool name_match_found;
264 	int ret, board_ie_id;
265 	size_t board_ie_len;
266 	const void *board_ie_data;
267 
268 	name_match_found = false;
269 
270 	/* go through ATH12K_BD_IE_BOARD_/ATH12K_BD_IE_REGDB_ elements */
271 	while (buf_len > sizeof(struct ath12k_fw_ie)) {
272 		hdr = buf;
273 		board_ie_id = le32_to_cpu(hdr->id);
274 		board_ie_len = le32_to_cpu(hdr->len);
275 		board_ie_data = hdr->data;
276 
277 		buf_len -= sizeof(*hdr);
278 		buf += sizeof(*hdr);
279 
280 		if (buf_len < ALIGN(board_ie_len, 4)) {
281 			ath12k_err(ab, "invalid %s length: %zu < %zu\n",
282 				   ath12k_bd_ie_type_str(ie_id),
283 				   buf_len, ALIGN(board_ie_len, 4));
284 			ret = -EINVAL;
285 			goto out;
286 		}
287 
288 		if (board_ie_id == name_id) {
289 			ath12k_dbg_dump(ab, ATH12K_DBG_BOOT, "board name", "",
290 					board_ie_data, board_ie_len);
291 
292 			if (board_ie_len != strlen(boardname))
293 				goto next;
294 
295 			ret = memcmp(board_ie_data, boardname, strlen(boardname));
296 			if (ret)
297 				goto next;
298 
299 			name_match_found = true;
300 			ath12k_dbg(ab, ATH12K_DBG_BOOT,
301 				   "boot found match %s for name '%s'",
302 				   ath12k_bd_ie_type_str(ie_id),
303 				   boardname);
304 		} else if (board_ie_id == data_id) {
305 			if (!name_match_found)
306 				/* no match found */
307 				goto next;
308 
309 			ath12k_dbg(ab, ATH12K_DBG_BOOT,
310 				   "boot found %s for '%s'",
311 				   ath12k_bd_ie_type_str(ie_id),
312 				   boardname);
313 
314 			bd->data = board_ie_data;
315 			bd->len = board_ie_len;
316 
317 			ret = 0;
318 			goto out;
319 		} else {
320 			ath12k_warn(ab, "unknown %s id found: %d\n",
321 				    ath12k_bd_ie_type_str(ie_id),
322 				    board_ie_id);
323 		}
324 next:
325 		/* jump over the padding */
326 		board_ie_len = ALIGN(board_ie_len, 4);
327 
328 		buf_len -= board_ie_len;
329 		buf += board_ie_len;
330 	}
331 
332 	/* no match found */
333 	ret = -ENOENT;
334 
335 out:
336 	return ret;
337 }
338 
ath12k_core_fetch_board_data_api_n(struct ath12k_base * ab,struct ath12k_board_data * bd,const char * boardname,int ie_id_match,int name_id,int data_id)339 static int ath12k_core_fetch_board_data_api_n(struct ath12k_base *ab,
340 					      struct ath12k_board_data *bd,
341 					      const char *boardname,
342 					      int ie_id_match,
343 					      int name_id,
344 					      int data_id)
345 {
346 	size_t len, magic_len;
347 	const u8 *data;
348 	char *filename, filepath[100];
349 	size_t ie_len;
350 	struct ath12k_fw_ie *hdr;
351 	int ret, ie_id;
352 
353 	filename = ATH12K_BOARD_API2_FILE;
354 
355 	if (!bd->fw)
356 		bd->fw = ath12k_core_firmware_request(ab, filename);
357 
358 	if (IS_ERR(bd->fw))
359 		return PTR_ERR(bd->fw);
360 
361 	data = bd->fw->data;
362 	len = bd->fw->size;
363 
364 	ath12k_core_create_firmware_path(ab, filename,
365 					 filepath, sizeof(filepath));
366 
367 	/* magic has extra null byte padded */
368 	magic_len = strlen(ATH12K_BOARD_MAGIC) + 1;
369 	if (len < magic_len) {
370 		ath12k_err(ab, "failed to find magic value in %s, file too short: %zu\n",
371 			   filepath, len);
372 		ret = -EINVAL;
373 		goto err;
374 	}
375 
376 	if (memcmp(data, ATH12K_BOARD_MAGIC, magic_len)) {
377 		ath12k_err(ab, "found invalid board magic\n");
378 		ret = -EINVAL;
379 		goto err;
380 	}
381 
382 	/* magic is padded to 4 bytes */
383 	magic_len = ALIGN(magic_len, 4);
384 	if (len < magic_len) {
385 		ath12k_err(ab, "failed: %s too small to contain board data, len: %zu\n",
386 			   filepath, len);
387 		ret = -EINVAL;
388 		goto err;
389 	}
390 
391 	data += magic_len;
392 	len -= magic_len;
393 
394 	while (len > sizeof(struct ath12k_fw_ie)) {
395 		hdr = (struct ath12k_fw_ie *)data;
396 		ie_id = le32_to_cpu(hdr->id);
397 		ie_len = le32_to_cpu(hdr->len);
398 
399 		len -= sizeof(*hdr);
400 		data = hdr->data;
401 
402 		if (len < ALIGN(ie_len, 4)) {
403 			ath12k_err(ab, "invalid length for board ie_id %d ie_len %zu len %zu\n",
404 				   ie_id, ie_len, len);
405 			ret = -EINVAL;
406 			goto err;
407 		}
408 
409 		if (ie_id == ie_id_match) {
410 			ret = ath12k_core_parse_bd_ie_board(ab, bd, data,
411 							    ie_len,
412 							    boardname,
413 							    ie_id_match,
414 							    name_id,
415 							    data_id);
416 			if (ret == -ENOENT)
417 				/* no match found, continue */
418 				goto next;
419 			else if (ret)
420 				/* there was an error, bail out */
421 				goto err;
422 			/* either found or error, so stop searching */
423 			goto out;
424 		}
425 next:
426 		/* jump over the padding */
427 		ie_len = ALIGN(ie_len, 4);
428 
429 		len -= ie_len;
430 		data += ie_len;
431 	}
432 
433 out:
434 	if (!bd->data || !bd->len) {
435 		ath12k_dbg(ab, ATH12K_DBG_BOOT,
436 			   "failed to fetch %s for %s from %s\n",
437 			   ath12k_bd_ie_type_str(ie_id_match),
438 			   boardname, filepath);
439 		ret = -ENODATA;
440 		goto err;
441 	}
442 
443 	return 0;
444 
445 err:
446 	ath12k_core_free_bdf(ab, bd);
447 	return ret;
448 }
449 
ath12k_core_fetch_board_data_api_1(struct ath12k_base * ab,struct ath12k_board_data * bd,char * filename)450 int ath12k_core_fetch_board_data_api_1(struct ath12k_base *ab,
451 				       struct ath12k_board_data *bd,
452 				       char *filename)
453 {
454 	bd->fw = ath12k_core_firmware_request(ab, filename);
455 	if (IS_ERR(bd->fw))
456 		return PTR_ERR(bd->fw);
457 
458 	bd->data = bd->fw->data;
459 	bd->len = bd->fw->size;
460 
461 	return 0;
462 }
463 
464 #define BOARD_NAME_SIZE 200
ath12k_core_fetch_bdf(struct ath12k_base * ab,struct ath12k_board_data * bd)465 int ath12k_core_fetch_bdf(struct ath12k_base *ab, struct ath12k_board_data *bd)
466 {
467 	char boardname[BOARD_NAME_SIZE], fallback_boardname[BOARD_NAME_SIZE];
468 	char *filename, filepath[100];
469 	int bd_api;
470 	int ret;
471 
472 	filename = ATH12K_BOARD_API2_FILE;
473 
474 	ret = ath12k_core_create_board_name(ab, boardname, sizeof(boardname));
475 	if (ret) {
476 		ath12k_err(ab, "failed to create board name: %d", ret);
477 		return ret;
478 	}
479 
480 	bd_api = 2;
481 	ret = ath12k_core_fetch_board_data_api_n(ab, bd, boardname,
482 						 ATH12K_BD_IE_BOARD,
483 						 ATH12K_BD_IE_BOARD_NAME,
484 						 ATH12K_BD_IE_BOARD_DATA);
485 	if (!ret)
486 		goto success;
487 
488 	ret = ath12k_core_create_fallback_board_name(ab, fallback_boardname,
489 						     sizeof(fallback_boardname));
490 	if (ret) {
491 		ath12k_err(ab, "failed to create fallback board name: %d", ret);
492 		return ret;
493 	}
494 
495 	ret = ath12k_core_fetch_board_data_api_n(ab, bd, fallback_boardname,
496 						 ATH12K_BD_IE_BOARD,
497 						 ATH12K_BD_IE_BOARD_NAME,
498 						 ATH12K_BD_IE_BOARD_DATA);
499 	if (!ret)
500 		goto success;
501 
502 	bd_api = 1;
503 	ret = ath12k_core_fetch_board_data_api_1(ab, bd, ATH12K_DEFAULT_BOARD_FILE);
504 	if (ret) {
505 		ath12k_core_create_firmware_path(ab, filename,
506 						 filepath, sizeof(filepath));
507 		ath12k_err(ab, "failed to fetch board data for %s from %s\n",
508 			   boardname, filepath);
509 		if (memcmp(boardname, fallback_boardname, strlen(boardname)))
510 			ath12k_err(ab, "failed to fetch board data for %s from %s\n",
511 				   fallback_boardname, filepath);
512 
513 		ath12k_err(ab, "failed to fetch board.bin from %s\n",
514 			   ab->hw_params->fw.dir);
515 		return ret;
516 	}
517 
518 success:
519 	ath12k_dbg(ab, ATH12K_DBG_BOOT, "using board api %d\n", bd_api);
520 	return 0;
521 }
522 
ath12k_core_fetch_regdb(struct ath12k_base * ab,struct ath12k_board_data * bd)523 int ath12k_core_fetch_regdb(struct ath12k_base *ab, struct ath12k_board_data *bd)
524 {
525 	char boardname[BOARD_NAME_SIZE], default_boardname[BOARD_NAME_SIZE];
526 	int ret;
527 
528 	ret = ath12k_core_create_board_name(ab, boardname, BOARD_NAME_SIZE);
529 	if (ret) {
530 		ath12k_dbg(ab, ATH12K_DBG_BOOT,
531 			   "failed to create board name for regdb: %d", ret);
532 		goto exit;
533 	}
534 
535 	ret = ath12k_core_fetch_board_data_api_n(ab, bd, boardname,
536 						 ATH12K_BD_IE_REGDB,
537 						 ATH12K_BD_IE_REGDB_NAME,
538 						 ATH12K_BD_IE_REGDB_DATA);
539 	if (!ret)
540 		goto exit;
541 
542 	ret = ath12k_core_create_bus_type_board_name(ab, default_boardname,
543 						     BOARD_NAME_SIZE);
544 	if (ret) {
545 		ath12k_dbg(ab, ATH12K_DBG_BOOT,
546 			   "failed to create default board name for regdb: %d", ret);
547 		goto exit;
548 	}
549 
550 	ret = ath12k_core_fetch_board_data_api_n(ab, bd, default_boardname,
551 						 ATH12K_BD_IE_REGDB,
552 						 ATH12K_BD_IE_REGDB_NAME,
553 						 ATH12K_BD_IE_REGDB_DATA);
554 	if (!ret)
555 		goto exit;
556 
557 	ret = ath12k_core_fetch_board_data_api_1(ab, bd, ATH12K_REGDB_FILE_NAME);
558 	if (ret)
559 		ath12k_dbg(ab, ATH12K_DBG_BOOT, "failed to fetch %s from %s\n",
560 			   ATH12K_REGDB_FILE_NAME, ab->hw_params->fw.dir);
561 
562 exit:
563 	if (!ret)
564 		ath12k_dbg(ab, ATH12K_DBG_BOOT, "fetched regdb\n");
565 
566 	return ret;
567 }
568 
ath12k_core_get_max_station_per_radio(struct ath12k_base * ab)569 u32 ath12k_core_get_max_station_per_radio(struct ath12k_base *ab)
570 {
571 	if (ab->num_radios == 2)
572 		return TARGET_NUM_STATIONS_DBS;
573 	else if (ab->num_radios == 3)
574 		return TARGET_NUM_PEERS_PDEV_DBS_SBS;
575 	return TARGET_NUM_STATIONS_SINGLE;
576 }
577 
ath12k_core_get_max_peers_per_radio(struct ath12k_base * ab)578 u32 ath12k_core_get_max_peers_per_radio(struct ath12k_base *ab)
579 {
580 	if (ab->num_radios == 2)
581 		return TARGET_NUM_PEERS_PDEV_DBS;
582 	else if (ab->num_radios == 3)
583 		return TARGET_NUM_PEERS_PDEV_DBS_SBS;
584 	return TARGET_NUM_PEERS_PDEV_SINGLE;
585 }
586 
ath12k_core_get_max_num_tids(struct ath12k_base * ab)587 u32 ath12k_core_get_max_num_tids(struct ath12k_base *ab)
588 {
589 	if (ab->num_radios == 2)
590 		return TARGET_NUM_TIDS(DBS);
591 	else if (ab->num_radios == 3)
592 		return TARGET_NUM_TIDS(DBS_SBS);
593 	return TARGET_NUM_TIDS(SINGLE);
594 }
595 
ath12k_core_stop(struct ath12k_base * ab)596 static void ath12k_core_stop(struct ath12k_base *ab)
597 {
598 	if (!test_bit(ATH12K_FLAG_CRASH_FLUSH, &ab->dev_flags))
599 		ath12k_qmi_firmware_stop(ab);
600 
601 	ath12k_acpi_stop(ab);
602 
603 	ath12k_hif_stop(ab);
604 	ath12k_wmi_detach(ab);
605 	ath12k_dp_rx_pdev_reo_cleanup(ab);
606 
607 	/* De-Init of components as needed */
608 }
609 
ath12k_core_check_bdfext(const struct dmi_header * hdr,void * data)610 static void ath12k_core_check_bdfext(const struct dmi_header *hdr, void *data)
611 {
612 	struct ath12k_base *ab = data;
613 	const char *magic = ATH12K_SMBIOS_BDF_EXT_MAGIC;
614 	struct ath12k_smbios_bdf *smbios = (struct ath12k_smbios_bdf *)hdr;
615 	ssize_t copied;
616 	size_t len;
617 	int i;
618 
619 	if (ab->qmi.target.bdf_ext[0] != '\0')
620 		return;
621 
622 	if (hdr->type != ATH12K_SMBIOS_BDF_EXT_TYPE)
623 		return;
624 
625 	if (hdr->length != ATH12K_SMBIOS_BDF_EXT_LENGTH) {
626 		ath12k_dbg(ab, ATH12K_DBG_BOOT,
627 			   "wrong smbios bdf ext type length (%d).\n",
628 			   hdr->length);
629 		return;
630 	}
631 
632 	if (!smbios->bdf_enabled) {
633 		ath12k_dbg(ab, ATH12K_DBG_BOOT, "bdf variant name not found.\n");
634 		return;
635 	}
636 
637 	/* Only one string exists (per spec) */
638 	if (memcmp(smbios->bdf_ext, magic, strlen(magic)) != 0) {
639 		ath12k_dbg(ab, ATH12K_DBG_BOOT,
640 			   "bdf variant magic does not match.\n");
641 		return;
642 	}
643 
644 	len = min_t(size_t,
645 		    strlen(smbios->bdf_ext), sizeof(ab->qmi.target.bdf_ext));
646 	for (i = 0; i < len; i++) {
647 		if (!isascii(smbios->bdf_ext[i]) || !isprint(smbios->bdf_ext[i])) {
648 			ath12k_dbg(ab, ATH12K_DBG_BOOT,
649 				   "bdf variant name contains non ascii chars.\n");
650 			return;
651 		}
652 	}
653 
654 	/* Copy extension name without magic prefix */
655 	copied = strscpy(ab->qmi.target.bdf_ext, smbios->bdf_ext + strlen(magic),
656 			 sizeof(ab->qmi.target.bdf_ext));
657 	if (copied < 0) {
658 		ath12k_dbg(ab, ATH12K_DBG_BOOT,
659 			   "bdf variant string is longer than the buffer can accommodate\n");
660 		return;
661 	}
662 
663 	ath12k_dbg(ab, ATH12K_DBG_BOOT,
664 		   "found and validated bdf variant smbios_type 0x%x bdf %s\n",
665 		   ATH12K_SMBIOS_BDF_EXT_TYPE, ab->qmi.target.bdf_ext);
666 }
667 
ath12k_core_check_smbios(struct ath12k_base * ab)668 int ath12k_core_check_smbios(struct ath12k_base *ab)
669 {
670 	ab->qmi.target.bdf_ext[0] = '\0';
671 	dmi_walk(ath12k_core_check_bdfext, ab);
672 
673 	if (ab->qmi.target.bdf_ext[0] == '\0')
674 		return -ENODATA;
675 
676 	return 0;
677 }
678 
ath12k_core_soc_create(struct ath12k_base * ab)679 static int ath12k_core_soc_create(struct ath12k_base *ab)
680 {
681 	int ret;
682 
683 	ret = ath12k_qmi_init_service(ab);
684 	if (ret) {
685 		ath12k_err(ab, "failed to initialize qmi :%d\n", ret);
686 		return ret;
687 	}
688 
689 	ath12k_debugfs_soc_create(ab);
690 
691 	ret = ath12k_hif_power_up(ab);
692 	if (ret) {
693 		ath12k_err(ab, "failed to power up :%d\n", ret);
694 		goto err_qmi_deinit;
695 	}
696 
697 	return 0;
698 
699 err_qmi_deinit:
700 	ath12k_debugfs_soc_destroy(ab);
701 	ath12k_qmi_deinit_service(ab);
702 	return ret;
703 }
704 
ath12k_core_soc_destroy(struct ath12k_base * ab)705 static void ath12k_core_soc_destroy(struct ath12k_base *ab)
706 {
707 	ath12k_dp_free(ab);
708 	ath12k_reg_free(ab);
709 	ath12k_debugfs_soc_destroy(ab);
710 	ath12k_qmi_deinit_service(ab);
711 }
712 
ath12k_core_pdev_create(struct ath12k_base * ab)713 static int ath12k_core_pdev_create(struct ath12k_base *ab)
714 {
715 	int ret;
716 
717 	ret = ath12k_mac_register(ab);
718 	if (ret) {
719 		ath12k_err(ab, "failed register the radio with mac80211: %d\n", ret);
720 		return ret;
721 	}
722 
723 	ret = ath12k_dp_pdev_alloc(ab);
724 	if (ret) {
725 		ath12k_err(ab, "failed to attach DP pdev: %d\n", ret);
726 		goto err_mac_unregister;
727 	}
728 
729 	return 0;
730 
731 err_mac_unregister:
732 	ath12k_mac_unregister(ab);
733 
734 	return ret;
735 }
736 
ath12k_core_pdev_destroy(struct ath12k_base * ab)737 static void ath12k_core_pdev_destroy(struct ath12k_base *ab)
738 {
739 	ath12k_mac_unregister(ab);
740 	ath12k_hif_irq_disable(ab);
741 	ath12k_dp_pdev_free(ab);
742 }
743 
ath12k_core_start(struct ath12k_base * ab,enum ath12k_firmware_mode mode)744 static int ath12k_core_start(struct ath12k_base *ab,
745 			     enum ath12k_firmware_mode mode)
746 {
747 	int ret;
748 
749 	ret = ath12k_wmi_attach(ab);
750 	if (ret) {
751 		ath12k_err(ab, "failed to attach wmi: %d\n", ret);
752 		return ret;
753 	}
754 
755 	ret = ath12k_htc_init(ab);
756 	if (ret) {
757 		ath12k_err(ab, "failed to init htc: %d\n", ret);
758 		goto err_wmi_detach;
759 	}
760 
761 	ret = ath12k_hif_start(ab);
762 	if (ret) {
763 		ath12k_err(ab, "failed to start HIF: %d\n", ret);
764 		goto err_wmi_detach;
765 	}
766 
767 	ret = ath12k_htc_wait_target(&ab->htc);
768 	if (ret) {
769 		ath12k_err(ab, "failed to connect to HTC: %d\n", ret);
770 		goto err_hif_stop;
771 	}
772 
773 	ret = ath12k_dp_htt_connect(&ab->dp);
774 	if (ret) {
775 		ath12k_err(ab, "failed to connect to HTT: %d\n", ret);
776 		goto err_hif_stop;
777 	}
778 
779 	ret = ath12k_wmi_connect(ab);
780 	if (ret) {
781 		ath12k_err(ab, "failed to connect wmi: %d\n", ret);
782 		goto err_hif_stop;
783 	}
784 
785 	ret = ath12k_htc_start(&ab->htc);
786 	if (ret) {
787 		ath12k_err(ab, "failed to start HTC: %d\n", ret);
788 		goto err_hif_stop;
789 	}
790 
791 	ret = ath12k_wmi_wait_for_service_ready(ab);
792 	if (ret) {
793 		ath12k_err(ab, "failed to receive wmi service ready event: %d\n",
794 			   ret);
795 		goto err_hif_stop;
796 	}
797 
798 	ret = ath12k_mac_allocate(ab);
799 	if (ret) {
800 		ath12k_err(ab, "failed to create new hw device with mac80211 :%d\n",
801 			   ret);
802 		goto err_hif_stop;
803 	}
804 
805 	ath12k_dp_cc_config(ab);
806 
807 	ret = ath12k_dp_rx_pdev_reo_setup(ab);
808 	if (ret) {
809 		ath12k_err(ab, "failed to initialize reo destination rings: %d\n", ret);
810 		goto err_mac_destroy;
811 	}
812 
813 	ath12k_dp_hal_rx_desc_init(ab);
814 
815 	ret = ath12k_wmi_cmd_init(ab);
816 	if (ret) {
817 		ath12k_err(ab, "failed to send wmi init cmd: %d\n", ret);
818 		goto err_reo_cleanup;
819 	}
820 
821 	ret = ath12k_wmi_wait_for_unified_ready(ab);
822 	if (ret) {
823 		ath12k_err(ab, "failed to receive wmi unified ready event: %d\n",
824 			   ret);
825 		goto err_reo_cleanup;
826 	}
827 
828 	/* put hardware to DBS mode */
829 	if (ab->hw_params->single_pdev_only) {
830 		ret = ath12k_wmi_set_hw_mode(ab, WMI_HOST_HW_MODE_DBS);
831 		if (ret) {
832 			ath12k_err(ab, "failed to send dbs mode: %d\n", ret);
833 			goto err_reo_cleanup;
834 		}
835 	}
836 
837 	ret = ath12k_dp_tx_htt_h2t_ver_req_msg(ab);
838 	if (ret) {
839 		ath12k_err(ab, "failed to send htt version request message: %d\n",
840 			   ret);
841 		goto err_reo_cleanup;
842 	}
843 
844 	ret = ath12k_acpi_start(ab);
845 	if (ret)
846 		/* ACPI is optional so continue in case of an error */
847 		ath12k_dbg(ab, ATH12K_DBG_BOOT, "acpi failed: %d\n", ret);
848 
849 	return 0;
850 
851 err_reo_cleanup:
852 	ath12k_dp_rx_pdev_reo_cleanup(ab);
853 err_mac_destroy:
854 	ath12k_mac_destroy(ab);
855 err_hif_stop:
856 	ath12k_hif_stop(ab);
857 err_wmi_detach:
858 	ath12k_wmi_detach(ab);
859 	return ret;
860 }
861 
ath12k_core_start_firmware(struct ath12k_base * ab,enum ath12k_firmware_mode mode)862 static int ath12k_core_start_firmware(struct ath12k_base *ab,
863 				      enum ath12k_firmware_mode mode)
864 {
865 	int ret;
866 
867 	ath12k_ce_get_shadow_config(ab, &ab->qmi.ce_cfg.shadow_reg_v3,
868 				    &ab->qmi.ce_cfg.shadow_reg_v3_len);
869 
870 	ret = ath12k_qmi_firmware_start(ab, mode);
871 	if (ret) {
872 		ath12k_err(ab, "failed to send firmware start: %d\n", ret);
873 		return ret;
874 	}
875 
876 	return ret;
877 }
878 
ath12k_core_qmi_firmware_ready(struct ath12k_base * ab)879 int ath12k_core_qmi_firmware_ready(struct ath12k_base *ab)
880 {
881 	int ret;
882 
883 	ret = ath12k_core_start_firmware(ab, ATH12K_FIRMWARE_MODE_NORMAL);
884 	if (ret) {
885 		ath12k_err(ab, "failed to start firmware: %d\n", ret);
886 		return ret;
887 	}
888 
889 	ret = ath12k_ce_init_pipes(ab);
890 	if (ret) {
891 		ath12k_err(ab, "failed to initialize CE: %d\n", ret);
892 		goto err_firmware_stop;
893 	}
894 
895 	ret = ath12k_dp_alloc(ab);
896 	if (ret) {
897 		ath12k_err(ab, "failed to init DP: %d\n", ret);
898 		goto err_firmware_stop;
899 	}
900 
901 	mutex_lock(&ab->core_lock);
902 	ret = ath12k_core_start(ab, ATH12K_FIRMWARE_MODE_NORMAL);
903 	if (ret) {
904 		ath12k_err(ab, "failed to start core: %d\n", ret);
905 		goto err_dp_free;
906 	}
907 
908 	ret = ath12k_core_pdev_create(ab);
909 	if (ret) {
910 		ath12k_err(ab, "failed to create pdev core: %d\n", ret);
911 		goto err_core_stop;
912 	}
913 	ath12k_hif_irq_enable(ab);
914 
915 	ret = ath12k_core_rfkill_config(ab);
916 	if (ret && ret != -EOPNOTSUPP) {
917 		ath12k_err(ab, "failed to config rfkill: %d\n", ret);
918 		goto err_core_pdev_destroy;
919 	}
920 
921 	mutex_unlock(&ab->core_lock);
922 
923 	return 0;
924 
925 err_core_pdev_destroy:
926 	ath12k_core_pdev_destroy(ab);
927 err_core_stop:
928 	ath12k_core_stop(ab);
929 	ath12k_mac_destroy(ab);
930 err_dp_free:
931 	ath12k_dp_free(ab);
932 	mutex_unlock(&ab->core_lock);
933 err_firmware_stop:
934 	ath12k_qmi_firmware_stop(ab);
935 
936 	return ret;
937 }
938 
ath12k_core_reconfigure_on_crash(struct ath12k_base * ab)939 static int ath12k_core_reconfigure_on_crash(struct ath12k_base *ab)
940 {
941 	int ret;
942 
943 	mutex_lock(&ab->core_lock);
944 	ath12k_dp_pdev_free(ab);
945 	ath12k_ce_cleanup_pipes(ab);
946 	ath12k_wmi_detach(ab);
947 	ath12k_dp_rx_pdev_reo_cleanup(ab);
948 	mutex_unlock(&ab->core_lock);
949 
950 	ath12k_dp_free(ab);
951 	ath12k_hal_srng_deinit(ab);
952 
953 	ab->free_vdev_map = (1LL << (ab->num_radios * TARGET_NUM_VDEVS)) - 1;
954 
955 	ret = ath12k_hal_srng_init(ab);
956 	if (ret)
957 		return ret;
958 
959 	clear_bit(ATH12K_FLAG_CRASH_FLUSH, &ab->dev_flags);
960 
961 	ret = ath12k_core_qmi_firmware_ready(ab);
962 	if (ret)
963 		goto err_hal_srng_deinit;
964 
965 	clear_bit(ATH12K_FLAG_RECOVERY, &ab->dev_flags);
966 
967 	return 0;
968 
969 err_hal_srng_deinit:
970 	ath12k_hal_srng_deinit(ab);
971 	return ret;
972 }
973 
ath12k_rfkill_work(struct work_struct * work)974 static void ath12k_rfkill_work(struct work_struct *work)
975 {
976 	struct ath12k_base *ab = container_of(work, struct ath12k_base, rfkill_work);
977 	struct ath12k *ar;
978 	struct ath12k_hw *ah;
979 	struct ieee80211_hw *hw;
980 	bool rfkill_radio_on;
981 	int i, j;
982 
983 	spin_lock_bh(&ab->base_lock);
984 	rfkill_radio_on = ab->rfkill_radio_on;
985 	spin_unlock_bh(&ab->base_lock);
986 
987 	for (i = 0; i < ab->num_hw; i++) {
988 		ah = ab->ah[i];
989 		if (!ah)
990 			continue;
991 
992 		for (j = 0; j < ah->num_radio; j++) {
993 			ar = &ah->radio[j];
994 			if (!ar)
995 				continue;
996 
997 			ath12k_mac_rfkill_enable_radio(ar, rfkill_radio_on);
998 		}
999 
1000 		hw = ah->hw;
1001 		wiphy_rfkill_set_hw_state(hw->wiphy, !rfkill_radio_on);
1002 	}
1003 }
1004 
ath12k_core_halt(struct ath12k * ar)1005 void ath12k_core_halt(struct ath12k *ar)
1006 {
1007 	struct list_head *pos, *n;
1008 	struct ath12k_base *ab = ar->ab;
1009 
1010 	lockdep_assert_held(&ar->conf_mutex);
1011 
1012 	ar->num_created_vdevs = 0;
1013 	ar->allocated_vdev_map = 0;
1014 
1015 	ath12k_mac_scan_finish(ar);
1016 	ath12k_mac_peer_cleanup_all(ar);
1017 	cancel_delayed_work_sync(&ar->scan.timeout);
1018 	cancel_work_sync(&ar->regd_update_work);
1019 	cancel_work_sync(&ab->rfkill_work);
1020 
1021 	rcu_assign_pointer(ab->pdevs_active[ar->pdev_idx], NULL);
1022 	synchronize_rcu();
1023 
1024 	spin_lock_bh(&ar->data_lock);
1025 	list_for_each_safe(pos, n, &ar->arvifs)
1026 		list_del_init(pos);
1027 	spin_unlock_bh(&ar->data_lock);
1028 
1029 	idr_init(&ar->txmgmt_idr);
1030 }
1031 
ath12k_core_pre_reconfigure_recovery(struct ath12k_base * ab)1032 static void ath12k_core_pre_reconfigure_recovery(struct ath12k_base *ab)
1033 {
1034 	struct ath12k *ar;
1035 	struct ath12k_hw *ah;
1036 	int i, j;
1037 
1038 	spin_lock_bh(&ab->base_lock);
1039 	ab->stats.fw_crash_counter++;
1040 	spin_unlock_bh(&ab->base_lock);
1041 
1042 	if (ab->is_reset)
1043 		set_bit(ATH12K_FLAG_CRASH_FLUSH, &ab->dev_flags);
1044 
1045 	for (i = 0; i < ab->num_hw; i++) {
1046 		ah = ab->ah[i];
1047 		if (!ah || ah->state == ATH12K_HW_STATE_OFF)
1048 			continue;
1049 
1050 		ieee80211_stop_queues(ah->hw);
1051 
1052 		for (j = 0; j < ah->num_radio; j++) {
1053 			ar = &ah->radio[j];
1054 
1055 			ath12k_mac_drain_tx(ar);
1056 			complete(&ar->scan.started);
1057 			complete(&ar->scan.completed);
1058 			complete(&ar->scan.on_channel);
1059 			complete(&ar->peer_assoc_done);
1060 			complete(&ar->peer_delete_done);
1061 			complete(&ar->install_key_done);
1062 			complete(&ar->vdev_setup_done);
1063 			complete(&ar->vdev_delete_done);
1064 			complete(&ar->bss_survey_done);
1065 
1066 			wake_up(&ar->dp.tx_empty_waitq);
1067 			idr_for_each(&ar->txmgmt_idr,
1068 				     ath12k_mac_tx_mgmt_pending_free, ar);
1069 			idr_destroy(&ar->txmgmt_idr);
1070 			wake_up(&ar->txmgmt_empty_waitq);
1071 		}
1072 	}
1073 
1074 	wake_up(&ab->wmi_ab.tx_credits_wq);
1075 	wake_up(&ab->peer_mapping_wq);
1076 }
1077 
ath12k_core_post_reconfigure_recovery(struct ath12k_base * ab)1078 static void ath12k_core_post_reconfigure_recovery(struct ath12k_base *ab)
1079 {
1080 	struct ath12k_hw *ah;
1081 	struct ath12k *ar;
1082 	int i, j;
1083 
1084 	for (i = 0; i < ab->num_hw; i++) {
1085 		ah = ab->ah[i];
1086 		if (!ah || ah->state == ATH12K_HW_STATE_OFF)
1087 			continue;
1088 
1089 		mutex_lock(&ah->hw_mutex);
1090 
1091 		switch (ah->state) {
1092 		case ATH12K_HW_STATE_ON:
1093 			ah->state = ATH12K_HW_STATE_RESTARTING;
1094 
1095 			for (j = 0; j < ah->num_radio; j++) {
1096 				ar = &ah->radio[j];
1097 
1098 				mutex_lock(&ar->conf_mutex);
1099 				ath12k_core_halt(ar);
1100 				mutex_unlock(&ar->conf_mutex);
1101 			}
1102 
1103 			break;
1104 		case ATH12K_HW_STATE_OFF:
1105 			ath12k_warn(ab,
1106 				    "cannot restart hw %d that hasn't been started\n",
1107 				    i);
1108 			break;
1109 		case ATH12K_HW_STATE_RESTARTING:
1110 			break;
1111 		case ATH12K_HW_STATE_RESTARTED:
1112 			ah->state = ATH12K_HW_STATE_WEDGED;
1113 			fallthrough;
1114 		case ATH12K_HW_STATE_WEDGED:
1115 			ath12k_warn(ab,
1116 				    "device is wedged, will not restart hw %d\n", i);
1117 			break;
1118 		}
1119 
1120 		mutex_unlock(&ah->hw_mutex);
1121 	}
1122 
1123 	complete(&ab->driver_recovery);
1124 }
1125 
ath12k_core_restart(struct work_struct * work)1126 static void ath12k_core_restart(struct work_struct *work)
1127 {
1128 	struct ath12k_base *ab = container_of(work, struct ath12k_base, restart_work);
1129 	struct ath12k_hw *ah;
1130 	int ret, i;
1131 
1132 	ret = ath12k_core_reconfigure_on_crash(ab);
1133 	if (ret) {
1134 		ath12k_err(ab, "failed to reconfigure driver on crash recovery\n");
1135 		return;
1136 	}
1137 
1138 	if (ab->is_reset) {
1139 		for (i = 0; i < ab->num_hw; i++) {
1140 			ah = ab->ah[i];
1141 			ieee80211_restart_hw(ah->hw);
1142 		}
1143 	}
1144 
1145 	complete(&ab->restart_completed);
1146 }
1147 
ath12k_core_reset(struct work_struct * work)1148 static void ath12k_core_reset(struct work_struct *work)
1149 {
1150 	struct ath12k_base *ab = container_of(work, struct ath12k_base, reset_work);
1151 	int reset_count, fail_cont_count;
1152 	long time_left;
1153 
1154 	if (!(test_bit(ATH12K_FLAG_REGISTERED, &ab->dev_flags))) {
1155 		ath12k_warn(ab, "ignore reset dev flags 0x%lx\n", ab->dev_flags);
1156 		return;
1157 	}
1158 
1159 	/* Sometimes the recovery will fail and then the next all recovery fail,
1160 	 * this is to avoid infinite recovery since it can not recovery success
1161 	 */
1162 	fail_cont_count = atomic_read(&ab->fail_cont_count);
1163 
1164 	if (fail_cont_count >= ATH12K_RESET_MAX_FAIL_COUNT_FINAL)
1165 		return;
1166 
1167 	if (fail_cont_count >= ATH12K_RESET_MAX_FAIL_COUNT_FIRST &&
1168 	    time_before(jiffies, ab->reset_fail_timeout))
1169 		return;
1170 
1171 	reset_count = atomic_inc_return(&ab->reset_count);
1172 
1173 	if (reset_count > 1) {
1174 		/* Sometimes it happened another reset worker before the previous one
1175 		 * completed, then the second reset worker will destroy the previous one,
1176 		 * thus below is to avoid that.
1177 		 */
1178 		ath12k_warn(ab, "already resetting count %d\n", reset_count);
1179 
1180 		reinit_completion(&ab->reset_complete);
1181 		time_left = wait_for_completion_timeout(&ab->reset_complete,
1182 							ATH12K_RESET_TIMEOUT_HZ);
1183 		if (time_left) {
1184 			ath12k_dbg(ab, ATH12K_DBG_BOOT, "to skip reset\n");
1185 			atomic_dec(&ab->reset_count);
1186 			return;
1187 		}
1188 
1189 		ab->reset_fail_timeout = jiffies + ATH12K_RESET_FAIL_TIMEOUT_HZ;
1190 		/* Record the continuous recovery fail count when recovery failed*/
1191 		fail_cont_count = atomic_inc_return(&ab->fail_cont_count);
1192 	}
1193 
1194 	ath12k_dbg(ab, ATH12K_DBG_BOOT, "reset starting\n");
1195 
1196 	ab->is_reset = true;
1197 	atomic_set(&ab->recovery_count, 0);
1198 
1199 	ath12k_core_pre_reconfigure_recovery(ab);
1200 
1201 	ath12k_core_post_reconfigure_recovery(ab);
1202 
1203 	ath12k_dbg(ab, ATH12K_DBG_BOOT, "waiting recovery start...\n");
1204 
1205 	ath12k_hif_irq_disable(ab);
1206 	ath12k_hif_ce_irq_disable(ab);
1207 
1208 	ath12k_hif_power_down(ab, false);
1209 	ath12k_hif_power_up(ab);
1210 
1211 	ath12k_dbg(ab, ATH12K_DBG_BOOT, "reset started\n");
1212 }
1213 
ath12k_core_pre_init(struct ath12k_base * ab)1214 int ath12k_core_pre_init(struct ath12k_base *ab)
1215 {
1216 	int ret;
1217 
1218 	ret = ath12k_hw_init(ab);
1219 	if (ret) {
1220 		ath12k_err(ab, "failed to init hw params: %d\n", ret);
1221 		return ret;
1222 	}
1223 
1224 	ath12k_fw_map(ab);
1225 
1226 	return 0;
1227 }
1228 
ath12k_core_panic_handler(struct notifier_block * nb,unsigned long action,void * data)1229 static int ath12k_core_panic_handler(struct notifier_block *nb,
1230 				     unsigned long action, void *data)
1231 {
1232 	struct ath12k_base *ab = container_of(nb, struct ath12k_base,
1233 					      panic_nb);
1234 
1235 	return ath12k_hif_panic_handler(ab);
1236 }
1237 
ath12k_core_panic_notifier_register(struct ath12k_base * ab)1238 static int ath12k_core_panic_notifier_register(struct ath12k_base *ab)
1239 {
1240 	ab->panic_nb.notifier_call = ath12k_core_panic_handler;
1241 
1242 	return atomic_notifier_chain_register(&panic_notifier_list,
1243 					      &ab->panic_nb);
1244 }
1245 
ath12k_core_panic_notifier_unregister(struct ath12k_base * ab)1246 static void ath12k_core_panic_notifier_unregister(struct ath12k_base *ab)
1247 {
1248 	atomic_notifier_chain_unregister(&panic_notifier_list,
1249 					 &ab->panic_nb);
1250 }
1251 
ath12k_core_init(struct ath12k_base * ab)1252 int ath12k_core_init(struct ath12k_base *ab)
1253 {
1254 	int ret;
1255 
1256 	ret = ath12k_core_soc_create(ab);
1257 	if (ret) {
1258 		ath12k_err(ab, "failed to create soc core: %d\n", ret);
1259 		return ret;
1260 	}
1261 
1262 	ret = ath12k_core_panic_notifier_register(ab);
1263 	if (ret)
1264 		ath12k_warn(ab, "failed to register panic handler: %d\n", ret);
1265 
1266 	return 0;
1267 }
1268 
ath12k_core_deinit(struct ath12k_base * ab)1269 void ath12k_core_deinit(struct ath12k_base *ab)
1270 {
1271 	ath12k_core_panic_notifier_unregister(ab);
1272 
1273 	mutex_lock(&ab->core_lock);
1274 
1275 	ath12k_core_pdev_destroy(ab);
1276 	ath12k_core_stop(ab);
1277 
1278 	mutex_unlock(&ab->core_lock);
1279 
1280 	ath12k_hif_power_down(ab, false);
1281 	ath12k_mac_destroy(ab);
1282 	ath12k_core_soc_destroy(ab);
1283 	ath12k_fw_unmap(ab);
1284 }
1285 
ath12k_core_free(struct ath12k_base * ab)1286 void ath12k_core_free(struct ath12k_base *ab)
1287 {
1288 	timer_delete_sync(&ab->rx_replenish_retry);
1289 	destroy_workqueue(ab->workqueue_aux);
1290 	destroy_workqueue(ab->workqueue);
1291 	kfree(ab);
1292 }
1293 
ath12k_core_alloc(struct device * dev,size_t priv_size,enum ath12k_bus bus)1294 struct ath12k_base *ath12k_core_alloc(struct device *dev, size_t priv_size,
1295 				      enum ath12k_bus bus)
1296 {
1297 	struct ath12k_base *ab;
1298 
1299 	ab = kzalloc(sizeof(*ab) + priv_size, GFP_KERNEL);
1300 	if (!ab)
1301 		return NULL;
1302 
1303 	init_completion(&ab->driver_recovery);
1304 
1305 	ab->workqueue = create_singlethread_workqueue("ath12k_wq");
1306 	if (!ab->workqueue)
1307 		goto err_sc_free;
1308 
1309 	ab->workqueue_aux = create_singlethread_workqueue("ath12k_aux_wq");
1310 	if (!ab->workqueue_aux)
1311 		goto err_free_wq;
1312 
1313 	mutex_init(&ab->core_lock);
1314 	spin_lock_init(&ab->base_lock);
1315 	init_completion(&ab->reset_complete);
1316 
1317 	INIT_LIST_HEAD(&ab->peers);
1318 	init_waitqueue_head(&ab->peer_mapping_wq);
1319 	init_waitqueue_head(&ab->wmi_ab.tx_credits_wq);
1320 	INIT_WORK(&ab->restart_work, ath12k_core_restart);
1321 	INIT_WORK(&ab->reset_work, ath12k_core_reset);
1322 	INIT_WORK(&ab->rfkill_work, ath12k_rfkill_work);
1323 
1324 	timer_setup(&ab->rx_replenish_retry, ath12k_ce_rx_replenish_retry, 0);
1325 	init_completion(&ab->htc_suspend);
1326 	init_completion(&ab->restart_completed);
1327 	init_completion(&ab->wow.wakeup_completed);
1328 
1329 	ab->dev = dev;
1330 	ab->hif.bus = bus;
1331 	ab->qmi.num_radios = U8_MAX;
1332 	ab->mlo_capable_flags = ATH12K_INTRA_DEVICE_MLO_SUPPORT;
1333 
1334 	/* Device index used to identify the devices in a group.
1335 	 *
1336 	 * In Intra-device MLO, only one device present in a group,
1337 	 * so it is always zero.
1338 	 *
1339 	 * In Inter-device MLO, Multiple device present in a group,
1340 	 * expect non-zero value.
1341 	 */
1342 	ab->device_id = 0;
1343 
1344 	return ab;
1345 
1346 err_free_wq:
1347 	destroy_workqueue(ab->workqueue);
1348 err_sc_free:
1349 	kfree(ab);
1350 	return NULL;
1351 }
1352 
1353 MODULE_DESCRIPTION("Core module for Qualcomm Atheros 802.11be wireless LAN cards.");
1354 MODULE_LICENSE("Dual BSD/GPL");
1355