xref: /OK3568_Linux_fs/external/rkwifibt/drivers/bcmdhd/dhd_debug_linux.c (revision 4882a59341e53eb6f0b4789bf948001014eff981)
1 /*
2  * DHD debugability Linux os layer
3  *
4  * Copyright (C) 2020, Broadcom.
5  *
6  *      Unless you and Broadcom execute a separate written software license
7  * agreement governing use of this software, this software is licensed to you
8  * under the terms of the GNU General Public License version 2 (the "GPL"),
9  * available at http://www.broadcom.com/licenses/GPLv2.php, with the
10  * following added to such license:
11  *
12  *      As a special exception, the copyright holders of this software give you
13  * permission to link this software with independent modules, and to copy and
14  * distribute the resulting executable under terms of your choice, provided that
15  * you also meet, for each linked independent module, the terms and conditions of
16  * the license of that module.  An independent module is a module which is not
17  * derived from this software.  The special exception does not apply to any
18  * modifications of the software.
19  *
20  *
21  * <<Broadcom-WL-IPTag/Open:>>
22  *
23  * $Id$
24  */
25 
26 #include <typedefs.h>
27 #include <osl.h>
28 #include <bcmutils.h>
29 #include <bcmendian.h>
30 #include <dngl_stats.h>
31 #include <dhd.h>
32 #include <dhd_dbg.h>
33 #include <dhd_debug.h>
34 
35 #include <net/cfg80211.h>
36 #include <wl_cfgvendor.h>
37 #include <dhd_config.h>
38 
39 typedef void (*dbg_ring_send_sub_t)(void *ctx, const int ring_id, const void *data,
40 	const uint32 len, const dhd_dbg_ring_status_t ring_status);
41 typedef void (*dbg_urgent_noti_sub_t)(void *ctx, const void *data,
42 	const uint32 len, const uint32 fw_len);
43 
44 static dbg_ring_send_sub_t ring_send_sub_cb[DEBUG_RING_ID_MAX];
45 static dbg_urgent_noti_sub_t urgent_noti_sub_cb;
46 typedef struct dhd_dbg_os_ring_info {
47 	dhd_pub_t *dhdp;
48 	int ring_id;
49 	int log_level;
50 	unsigned long interval;
51 	struct delayed_work work;
52 	uint64 tsoffset;
53 } linux_dbgring_info_t;
54 
55 struct log_level_table dhd_event_map[] = {
56 	{1, WIFI_EVENT_DRIVER_EAPOL_FRAME_TRANSMIT_REQUESTED, "DRIVER EAPOL TX REQ"},
57 	{1, WIFI_EVENT_DRIVER_EAPOL_FRAME_RECEIVED, "DRIVER EAPOL RX"},
58 	{2, WIFI_EVENT_DRIVER_SCAN_REQUESTED, "SCAN_REQUESTED"},
59 	{2, WIFI_EVENT_DRIVER_SCAN_COMPLETE, "SCAN COMPELETE"},
60 	{3, WIFI_EVENT_DRIVER_SCAN_RESULT_FOUND, "SCAN RESULT FOUND"},
61 	{2, WIFI_EVENT_DRIVER_PNO_ADD, "PNO ADD"},
62 	{2, WIFI_EVENT_DRIVER_PNO_REMOVE, "PNO REMOVE"},
63 	{2, WIFI_EVENT_DRIVER_PNO_NETWORK_FOUND, "PNO NETWORK FOUND"},
64 	{2, WIFI_EVENT_DRIVER_PNO_SCAN_REQUESTED, "PNO SCAN_REQUESTED"},
65 	{1, WIFI_EVENT_DRIVER_PNO_SCAN_RESULT_FOUND, "PNO SCAN RESULT FOUND"},
66 	{1, WIFI_EVENT_DRIVER_PNO_SCAN_COMPLETE, "PNO SCAN COMPELETE"}
67 };
68 
69 static void
debug_data_send(dhd_pub_t * dhdp,int ring_id,const void * data,const uint32 len,const dhd_dbg_ring_status_t ring_status)70 debug_data_send(dhd_pub_t *dhdp, int ring_id, const void *data, const uint32 len,
71 	const dhd_dbg_ring_status_t ring_status)
72 {
73 	struct net_device *ndev;
74 	dbg_ring_send_sub_t ring_sub_send;
75 	ndev = dhd_linux_get_primary_netdev(dhdp);
76 	if (!ndev)
77 		return;
78 	if (!VALID_RING(ring_id))
79 		return;
80 	if (ring_send_sub_cb[ring_id]) {
81 		ring_sub_send = ring_send_sub_cb[ring_id];
82 		ring_sub_send(ndev, ring_id, data, len, ring_status);
83 	}
84 }
85 
86 static void
dhd_os_dbg_urgent_notifier(dhd_pub_t * dhdp,const void * data,const uint32 len)87 dhd_os_dbg_urgent_notifier(dhd_pub_t *dhdp, const void *data, const uint32 len)
88 {
89 	struct net_device *ndev;
90 	ndev = dhd_linux_get_primary_netdev(dhdp);
91 	if (!ndev)
92 		return;
93 	if (urgent_noti_sub_cb) {
94 		urgent_noti_sub_cb(ndev, data, len, dhdp->soc_ram_length);
95 	}
96 }
97 
98 static void
dbg_ring_poll_worker(struct work_struct * work)99 dbg_ring_poll_worker(struct work_struct *work)
100 {
101 	struct delayed_work *d_work = to_delayed_work(work);
102 	bool sched = TRUE;
103 	dhd_dbg_ring_t *ring;
104 	linux_dbgring_info_t *ring_info;
105 	dhd_pub_t *dhdp;
106 	int ringid;
107 	dhd_dbg_ring_status_t ring_status;
108 	void *buf;
109 	dhd_dbg_ring_entry_t *hdr;
110 	uint32 buflen, rlen;
111 	unsigned long flags;
112 
113 	GCC_DIAGNOSTIC_PUSH_SUPPRESS_CAST();
114 	ring_info = container_of(d_work, linux_dbgring_info_t, work);
115 	GCC_DIAGNOSTIC_POP();
116 
117 	dhdp = ring_info->dhdp;
118 	ringid = ring_info->ring_id;
119 
120 	ring = &dhdp->dbg->dbg_rings[ringid];
121 	DHD_DBG_RING_LOCK(ring->lock, flags);
122 	dhd_dbg_get_ring_status(dhdp, ringid, &ring_status);
123 
124 	if (ring->wp > ring->rp) {
125 		buflen = ring->wp - ring->rp;
126 	} else if (ring->wp < ring->rp) {
127 		buflen = ring->ring_size - ring->rp + ring->wp;
128 	} else {
129 		goto exit;
130 	}
131 
132 	if (buflen > ring->ring_size) {
133 		goto exit;
134 	}
135 
136 	buf = MALLOCZ(dhdp->osh, buflen);
137 	if (!buf) {
138 		DHD_ERROR(("%s failed to allocate read buf\n", __FUNCTION__));
139 		sched = FALSE;
140 		goto exit;
141 	}
142 
143 	DHD_DBG_RING_UNLOCK(ring->lock, flags);
144 	rlen = dhd_dbg_pull_from_ring(dhdp, ringid, buf, buflen);
145 	DHD_DBG_RING_LOCK(ring->lock, flags);
146 
147 	if (!ring->sched_pull) {
148 		ring->sched_pull = TRUE;
149 	}
150 
151 	hdr = (dhd_dbg_ring_entry_t *)buf;
152 	while (rlen > 0) {
153 		ring_status.read_bytes += ENTRY_LENGTH(hdr);
154 		/* offset fw ts to host ts */
155 		hdr->timestamp += ring_info->tsoffset;
156 		debug_data_send(dhdp, ringid, hdr, ENTRY_LENGTH(hdr),
157 			ring_status);
158 		rlen -= ENTRY_LENGTH(hdr);
159 		hdr = (dhd_dbg_ring_entry_t *)((char *)hdr + ENTRY_LENGTH(hdr));
160 	}
161 	MFREE(dhdp->osh, buf, buflen);
162 
163 exit:
164 	if (sched) {
165 		/* retrigger the work at same interval */
166 		if ((ring_status.written_bytes == ring_status.read_bytes) &&
167 				(ring_info->interval)) {
168 			schedule_delayed_work(d_work, ring_info->interval);
169 		}
170 	}
171 	DHD_DBG_RING_UNLOCK(ring->lock, flags);
172 
173 	return;
174 }
175 
176 int
dhd_os_dbg_register_callback(int ring_id,dbg_ring_send_sub_t callback)177 dhd_os_dbg_register_callback(int ring_id, dbg_ring_send_sub_t callback)
178 {
179 	if (!VALID_RING(ring_id))
180 		return BCME_RANGE;
181 
182 	ring_send_sub_cb[ring_id] = callback;
183 	return BCME_OK;
184 }
185 
186 int
dhd_os_dbg_register_urgent_notifier(dhd_pub_t * dhdp,dbg_urgent_noti_sub_t urgent_noti_sub)187 dhd_os_dbg_register_urgent_notifier(dhd_pub_t *dhdp, dbg_urgent_noti_sub_t urgent_noti_sub)
188 {
189 	if (!dhdp || !urgent_noti_sub)
190 		return BCME_BADARG;
191 	urgent_noti_sub_cb = urgent_noti_sub;
192 
193 	return BCME_OK;
194 }
195 
196 int
dhd_os_start_logging(dhd_pub_t * dhdp,char * ring_name,int log_level,int flags,int time_intval,int threshold)197 dhd_os_start_logging(dhd_pub_t *dhdp, char *ring_name, int log_level,
198 	int flags, int time_intval, int threshold)
199 {
200 	int ret = BCME_OK;
201 	int ring_id;
202 	linux_dbgring_info_t *os_priv, *ring_info;
203 
204 	ring_id = dhd_dbg_find_ring_id(dhdp, ring_name);
205 	if (!VALID_RING(ring_id))
206 		return BCME_UNSUPPORTED;
207 
208 	DHD_INFO(("%s , log_level : %d, time_intval : %d, threshod %d Bytes\n",
209 		__FUNCTION__, log_level, time_intval, threshold));
210 
211 	/* change the configuration */
212 	ret = dhd_dbg_set_configuration(dhdp, ring_id, log_level, flags, threshold);
213 	if (ret) {
214 		DHD_ERROR(("dhd_set_configuration is failed : %d\n", ret));
215 		return ret;
216 	}
217 
218 	os_priv = dhd_dbg_get_priv(dhdp);
219 	if (!os_priv)
220 		return BCME_ERROR;
221 	ring_info = &os_priv[ring_id];
222 	ring_info->log_level = log_level;
223 	if (time_intval == 0 || log_level == 0) {
224 		ring_info->interval = 0;
225 		cancel_delayed_work_sync(&ring_info->work);
226 	} else {
227 		ring_info->interval = msecs_to_jiffies(time_intval * MSEC_PER_SEC);
228 		cancel_delayed_work_sync(&ring_info->work);
229 		schedule_delayed_work(&ring_info->work, ring_info->interval);
230 	}
231 
232 	return ret;
233 }
234 
235 int
dhd_os_reset_logging(dhd_pub_t * dhdp)236 dhd_os_reset_logging(dhd_pub_t *dhdp)
237 {
238 	int ret = BCME_OK;
239 	int ring_id;
240 	linux_dbgring_info_t *os_priv, *ring_info;
241 
242 	os_priv = dhd_dbg_get_priv(dhdp);
243 	if (!os_priv)
244 		return BCME_ERROR;
245 
246 	/* Stop all rings */
247 	for (ring_id = DEBUG_RING_ID_INVALID + 1; ring_id < DEBUG_RING_ID_MAX; ring_id++) {
248 		DHD_INFO(("%s: Stop ring buffer %d\n", __FUNCTION__, ring_id));
249 
250 		ring_info = &os_priv[ring_id];
251 		/* cancel any pending work */
252 		cancel_delayed_work_sync(&ring_info->work);
253 		/* log level zero makes stop logging on that ring */
254 		ring_info->log_level = 0;
255 		ring_info->interval = 0;
256 		/* change the configuration */
257 		ret = dhd_dbg_set_configuration(dhdp, ring_id, 0, 0, 0);
258 		if (ret) {
259 			DHD_ERROR(("dhd_set_configuration is failed : %d\n", ret));
260 			return ret;
261 		}
262 	}
263 	return ret;
264 }
265 
266 #define SUPPRESS_LOG_LEVEL 1
267 int
dhd_os_suppress_logging(dhd_pub_t * dhdp,bool suppress)268 dhd_os_suppress_logging(dhd_pub_t *dhdp, bool suppress)
269 {
270 	int ret = BCME_OK;
271 	int max_log_level;
272 	int enable = (suppress) ? 0 : 1;
273 	linux_dbgring_info_t *os_priv;
274 
275 	os_priv = dhd_dbg_get_priv(dhdp);
276 	if (!os_priv)
277 		return BCME_ERROR;
278 
279 	max_log_level = os_priv[FW_VERBOSE_RING_ID].log_level;
280 
281 	if (max_log_level == SUPPRESS_LOG_LEVEL) {
282 		/* suppress the logging in FW not to wake up host while device in suspend mode */
283 		ret = dhd_iovar(dhdp, 0, "logtrace", (char *)&enable, sizeof(enable), NULL, 0,
284 				TRUE);
285 		if (ret < 0 && (ret != BCME_UNSUPPORTED)) {
286 			DHD_ERROR(("logtrace is failed : %d\n", ret));
287 		}
288 	}
289 
290 	return ret;
291 }
292 
293 int
dhd_os_get_ring_status(dhd_pub_t * dhdp,int ring_id,dhd_dbg_ring_status_t * dbg_ring_status)294 dhd_os_get_ring_status(dhd_pub_t *dhdp, int ring_id, dhd_dbg_ring_status_t *dbg_ring_status)
295 {
296 	return dhd_dbg_get_ring_status(dhdp, ring_id, dbg_ring_status);
297 }
298 
299 int
dhd_os_trigger_get_ring_data(dhd_pub_t * dhdp,char * ring_name)300 dhd_os_trigger_get_ring_data(dhd_pub_t *dhdp, char *ring_name)
301 {
302 	int ret = BCME_OK;
303 	int ring_id;
304 	linux_dbgring_info_t *os_priv, *ring_info;
305 	ring_id = dhd_dbg_find_ring_id(dhdp, ring_name);
306 	if (!VALID_RING(ring_id))
307 		return BCME_UNSUPPORTED;
308 	os_priv = dhd_dbg_get_priv(dhdp);
309 	if (os_priv) {
310 		ring_info = &os_priv[ring_id];
311 		if (ring_info->interval) {
312 			cancel_delayed_work_sync(&ring_info->work);
313 		}
314 		schedule_delayed_work(&ring_info->work, 0);
315 	} else {
316 		DHD_ERROR(("%s : os_priv is NULL\n", __FUNCTION__));
317 		ret = BCME_ERROR;
318 	}
319 	return ret;
320 }
321 
322 int
dhd_os_push_push_ring_data(dhd_pub_t * dhdp,int ring_id,void * data,int32 data_len)323 dhd_os_push_push_ring_data(dhd_pub_t *dhdp, int ring_id, void *data, int32 data_len)
324 {
325 	int ret = BCME_OK, i;
326 	dhd_dbg_ring_entry_t msg_hdr;
327 	log_conn_event_t *event_data = (log_conn_event_t *)data;
328 	linux_dbgring_info_t *os_priv, *ring_info = NULL;
329 
330 	if (!VALID_RING(ring_id))
331 		return BCME_UNSUPPORTED;
332 	os_priv = dhd_dbg_get_priv(dhdp);
333 
334 	if (os_priv) {
335 		ring_info = &os_priv[ring_id];
336 	} else
337 		return BCME_NORESOURCE;
338 
339 	memset(&msg_hdr, 0, sizeof(dhd_dbg_ring_entry_t));
340 
341 	if (ring_id == DHD_EVENT_RING_ID) {
342 		msg_hdr.type = DBG_RING_ENTRY_EVENT_TYPE;
343 		msg_hdr.flags |= DBG_RING_ENTRY_FLAGS_HAS_TIMESTAMP;
344 		msg_hdr.flags |= DBG_RING_ENTRY_FLAGS_HAS_BINARY;
345 		msg_hdr.timestamp = osl_localtime_ns();
346 		/* convert to ms */
347 		msg_hdr.timestamp = DIV_U64_BY_U32(msg_hdr.timestamp, NSEC_PER_MSEC);
348 		msg_hdr.len = data_len;
349 		/* filter the event for higher log level with current log level */
350 		for (i = 0; i < ARRAYSIZE(dhd_event_map); i++) {
351 			if ((dhd_event_map[i].tag == event_data->event) &&
352 				dhd_event_map[i].log_level > ring_info->log_level) {
353 				return ret;
354 			}
355 		}
356 	}
357 #ifdef DHD_DEBUGABILITY_LOG_DUMP_RING
358 	else if (ring_id == FW_VERBOSE_RING_ID || ring_id == DRIVER_LOG_RING_ID ||
359 			ring_id == ROAM_STATS_RING_ID) {
360 		msg_hdr.type = DBG_RING_ENTRY_DATA_TYPE;
361 		msg_hdr.flags |= DBG_RING_ENTRY_FLAGS_HAS_TIMESTAMP;
362 		msg_hdr.timestamp = osl_localtime_ns();
363 		msg_hdr.timestamp = DIV_U64_BY_U32(msg_hdr.timestamp, NSEC_PER_MSEC);
364 		msg_hdr.len = strlen(data);
365 	}
366 #endif /* DHD_DEBUGABILITY_LOG_DUMP_RING */
367 	ret = dhd_dbg_push_to_ring(dhdp, ring_id, &msg_hdr, event_data);
368 	if (ret) {
369 		DHD_ERROR(("%s : failed to push data into the ring (%d) with ret(%d)\n",
370 			__FUNCTION__, ring_id, ret));
371 	}
372 
373 	return ret;
374 }
375 
376 #ifdef DBG_PKT_MON
377 int
dhd_os_dbg_attach_pkt_monitor(dhd_pub_t * dhdp)378 dhd_os_dbg_attach_pkt_monitor(dhd_pub_t *dhdp)
379 {
380 	return dhd_dbg_attach_pkt_monitor(dhdp, dhd_os_dbg_monitor_tx_pkts,
381 		dhd_os_dbg_monitor_tx_status, dhd_os_dbg_monitor_rx_pkts);
382 }
383 
384 int
dhd_os_dbg_start_pkt_monitor(dhd_pub_t * dhdp)385 dhd_os_dbg_start_pkt_monitor(dhd_pub_t *dhdp)
386 {
387 	return dhd_dbg_start_pkt_monitor(dhdp);
388 }
389 
390 int
dhd_os_dbg_monitor_tx_pkts(dhd_pub_t * dhdp,void * pkt,uint32 pktid)391 dhd_os_dbg_monitor_tx_pkts(dhd_pub_t *dhdp, void *pkt, uint32 pktid)
392 {
393 	return dhd_dbg_monitor_tx_pkts(dhdp, pkt, pktid);
394 }
395 
396 int
dhd_os_dbg_monitor_tx_status(dhd_pub_t * dhdp,void * pkt,uint32 pktid,uint16 status)397 dhd_os_dbg_monitor_tx_status(dhd_pub_t *dhdp, void *pkt, uint32 pktid,
398 	uint16 status)
399 {
400 	return dhd_dbg_monitor_tx_status(dhdp, pkt, pktid, status);
401 }
402 
403 int
dhd_os_dbg_monitor_rx_pkts(dhd_pub_t * dhdp,void * pkt)404 dhd_os_dbg_monitor_rx_pkts(dhd_pub_t *dhdp, void *pkt)
405 {
406 	return dhd_dbg_monitor_rx_pkts(dhdp, pkt);
407 }
408 
409 int
dhd_os_dbg_stop_pkt_monitor(dhd_pub_t * dhdp)410 dhd_os_dbg_stop_pkt_monitor(dhd_pub_t *dhdp)
411 {
412 	return dhd_dbg_stop_pkt_monitor(dhdp);
413 }
414 
415 int
dhd_os_dbg_monitor_get_tx_pkts(dhd_pub_t * dhdp,void __user * user_buf,uint16 req_count,uint16 * resp_count)416 dhd_os_dbg_monitor_get_tx_pkts(dhd_pub_t *dhdp, void __user *user_buf,
417 	uint16 req_count, uint16 *resp_count)
418 {
419 	return dhd_dbg_monitor_get_tx_pkts(dhdp, user_buf, req_count, resp_count);
420 }
421 
422 int
dhd_os_dbg_monitor_get_rx_pkts(dhd_pub_t * dhdp,void __user * user_buf,uint16 req_count,uint16 * resp_count)423 dhd_os_dbg_monitor_get_rx_pkts(dhd_pub_t *dhdp, void __user *user_buf,
424 	uint16 req_count, uint16 *resp_count)
425 {
426 	return dhd_dbg_monitor_get_rx_pkts(dhdp, user_buf, req_count, resp_count);
427 }
428 
429 int
dhd_os_dbg_detach_pkt_monitor(dhd_pub_t * dhdp)430 dhd_os_dbg_detach_pkt_monitor(dhd_pub_t *dhdp)
431 {
432 	return dhd_dbg_detach_pkt_monitor(dhdp);
433 }
434 #endif /* DBG_PKT_MON */
435 
436 int
dhd_os_dbg_get_feature(dhd_pub_t * dhdp,int32 * features)437 dhd_os_dbg_get_feature(dhd_pub_t *dhdp, int32 *features)
438 {
439 	int ret = BCME_OK;
440 #ifdef DEBUGABILITY
441 #ifndef DEBUGABILITY_DISABLE_MEMDUMP
442 	struct dhd_conf *conf = dhdp->conf;
443 #endif /* !DEBUGABILITY_DISABLE_MEMDUMP */
444 #endif
445 
446 	/* XXX : we need to find a way to get the features for dbg */
447 	*features = 0;
448 #ifdef DEBUGABILITY
449 #ifndef DEBUGABILITY_DISABLE_MEMDUMP
450 	// fix for RequestFirmwareDebugDump issue of VTS
451 	if ((conf->chip != BCM4359_CHIP_ID) && (conf->chip != BCM43751_CHIP_ID) &&
452 			(conf->chip != BCM43752_CHIP_ID) && (conf->chip != BCM4375_CHIP_ID))
453 		*features |= DBG_MEMORY_DUMP_SUPPORTED;
454 #endif /* !DEBUGABILITY_DISABLE_MEMDUMP */
455 	if (FW_SUPPORTED(dhdp, logtrace)) {
456 		*features |= DBG_CONNECT_EVENT_SUPPORTED;
457 		*features |= DBG_VERBOSE_LOG_SUPPORTED;
458 	}
459 	if (FW_SUPPORTED(dhdp, hchk)) {
460 		*features |= DBG_HEALTH_CHECK_SUPPORTED;
461 	}
462 #ifdef DBG_PKT_MON
463 	if (FW_SUPPORTED(dhdp, d11status)) {
464 		*features |= DBG_PACKET_FATE_SUPPORTED;
465 	}
466 #endif /* DBG_PKT_MON */
467 #endif /* DEBUGABILITY */
468 	return ret;
469 }
470 
471 static void
dhd_os_dbg_pullreq(void * os_priv,int ring_id)472 dhd_os_dbg_pullreq(void *os_priv, int ring_id)
473 {
474 	linux_dbgring_info_t *ring_info;
475 
476 	ring_info = &((linux_dbgring_info_t *)os_priv)[ring_id];
477 	cancel_delayed_work(&ring_info->work);
478 	schedule_delayed_work(&ring_info->work, 0);
479 }
480 
481 int
dhd_os_dbg_attach(dhd_pub_t * dhdp)482 dhd_os_dbg_attach(dhd_pub_t *dhdp)
483 {
484 	int ret = BCME_OK;
485 	linux_dbgring_info_t *os_priv, *ring_info;
486 	int ring_id;
487 
488 	/* os_dbg data */
489 	os_priv = MALLOCZ(dhdp->osh, sizeof(*os_priv) * DEBUG_RING_ID_MAX);
490 	if (!os_priv)
491 		return BCME_NOMEM;
492 
493 	for (ring_id = DEBUG_RING_ID_INVALID + 1; ring_id < DEBUG_RING_ID_MAX;
494 	     ring_id++) {
495 		ring_info = &os_priv[ring_id];
496 		INIT_DELAYED_WORK(&ring_info->work, dbg_ring_poll_worker);
497 		ring_info->dhdp = dhdp;
498 		ring_info->ring_id = ring_id;
499 	}
500 
501 	ret = dhd_dbg_attach(dhdp, dhd_os_dbg_pullreq, dhd_os_dbg_urgent_notifier, os_priv);
502 	if (ret)
503 		MFREE(dhdp->osh, os_priv, sizeof(*os_priv) * DEBUG_RING_ID_MAX);
504 
505 	return ret;
506 }
507 
508 void
dhd_os_dbg_detach(dhd_pub_t * dhdp)509 dhd_os_dbg_detach(dhd_pub_t *dhdp)
510 {
511 	linux_dbgring_info_t *os_priv, *ring_info;
512 	int ring_id;
513 	/* free os_dbg data */
514 	os_priv = dhd_dbg_get_priv(dhdp);
515 	if (!os_priv)
516 		return;
517 	/* abort pending any job */
518 	for (ring_id = DEBUG_RING_ID_INVALID + 1; ring_id < DEBUG_RING_ID_MAX; ring_id++) {
519 		ring_info = &os_priv[ring_id];
520 		if (ring_info->interval) {
521 			ring_info->interval = 0;
522 			cancel_delayed_work_sync(&ring_info->work);
523 		}
524 	}
525 	MFREE(dhdp->osh, os_priv, sizeof(*os_priv) * DEBUG_RING_ID_MAX);
526 
527 	return dhd_dbg_detach(dhdp);
528 }
529