1 /*
2 * Copyright (c) 2020-2021 Nordic Semiconductor ASA
3 *
4 * SPDX-License-Identifier: Apache-2.0
5 */
6
7 #include <zephyr.h>
8 #include <soc.h>
9 #include <sys/byteorder.h>
10 #include <bluetooth/hci.h>
11
12 #include "util/util.h"
13 #include "util/mem.h"
14 #include "util/memq.h"
15 #include "util/mayfly.h"
16
17 #include "hal/cpu.h"
18 #include "hal/ccm.h"
19 #include "hal/radio.h"
20 #include "hal/ticker.h"
21
22 #include "ticker/ticker.h"
23
24 #include "pdu.h"
25
26 #include "lll.h"
27 #include "lll_clock.h"
28 #include "lll/lll_vendor.h"
29 #include "lll_chan.h"
30 #include "lll_scan.h"
31 #include "lll/lll_df_types.h"
32 #include "lll_sync.h"
33 #include "lll_sync_iso.h"
34
35 #include "ull_scan_types.h"
36 #include "ull_sync_types.h"
37
38 #include "ull_internal.h"
39 #include "ull_scan_internal.h"
40 #include "ull_sync_internal.h"
41 #include "ull_df_types.h"
42 #include "ull_df_internal.h"
43
44 #include "ll.h"
45
46 #define BT_DBG_ENABLED IS_ENABLED(CONFIG_BT_DEBUG_HCI_DRIVER)
47 #define LOG_MODULE_NAME bt_ctlr_ull_sync
48 #include "common/log.h"
49 #include <soc.h>
50 #include "hal/debug.h"
51
52 static int init_reset(void);
53 static inline struct ll_sync_set *sync_acquire(void);
54 static void sync_ticker_cleanup(struct ll_sync_set *sync, ticker_op_func stop_of_cb);
55 static void ticker_cb(uint32_t ticks_at_expire, uint32_t ticks_drift,
56 uint32_t remainder, uint16_t lazy, uint8_t force,
57 void *param);
58 static void ticker_op_cb(uint32_t status, void *param);
59 static void ticker_update_sync_op_cb(uint32_t status, void *param);
60 static void ticker_stop_op_cb(uint32_t status, void *param);
61 static void sync_lost(void *param);
62 #if defined(CONFIG_BT_CTLR_SYNC_PERIODIC_CTE_TYPE_FILTERING) && \
63 !defined(CONFIG_BT_CTLR_CTEINLINE_SUPPORT)
64 static struct pdu_cte_info *pdu_cte_info_get(struct pdu_adv *pdu);
65 #endif /* CONFIG_BT_CTLR_SYNC_PERIODIC_CTE_TYPE_FILTERING && !CONFIG_BT_CTLR_CTEINLINE_SUPPORT */
66
67 #if defined(CONFIG_BT_CTLR_DF_SCAN_CTE_RX)
68 static void ticker_update_op_status_give(uint32_t status, void *param);
69 #endif /* CONFIG_BT_CTLR_DF_SCAN_CTE_RX */
70
71 static struct ll_sync_set ll_sync_pool[CONFIG_BT_PER_ADV_SYNC_MAX];
72 static void *sync_free;
73
74 #if defined(CONFIG_BT_CTLR_DF_SCAN_CTE_RX)
75 /* Semaphore to wakeup thread on ticker API callback */
76 static struct k_sem sem_ticker_cb;
77 #endif /* CONFIG_BT_CTLR_DF_SCAN_CTE_RX */
78
79 static memq_link_t link_lll_prepare;
80 static struct mayfly mfy_lll_prepare = { 0, 0, &link_lll_prepare, NULL, lll_sync_prepare };
81
ll_sync_create(uint8_t options,uint8_t sid,uint8_t adv_addr_type,uint8_t * adv_addr,uint16_t skip,uint16_t sync_timeout,uint8_t sync_cte_type)82 uint8_t ll_sync_create(uint8_t options, uint8_t sid, uint8_t adv_addr_type,
83 uint8_t *adv_addr, uint16_t skip,
84 uint16_t sync_timeout, uint8_t sync_cte_type)
85 {
86 struct ll_scan_set *scan_coded;
87 memq_link_t *link_sync_estab;
88 memq_link_t *link_sync_lost;
89 struct node_rx_hdr *node_rx;
90 struct lll_sync *lll_sync;
91 struct ll_scan_set *scan;
92 struct ll_sync_set *sync;
93
94 scan = ull_scan_set_get(SCAN_HANDLE_1M);
95 if (!scan || scan->per_scan.sync) {
96 return BT_HCI_ERR_CMD_DISALLOWED;
97 }
98
99 if (IS_ENABLED(CONFIG_BT_CTLR_PHY_CODED)) {
100 scan_coded = ull_scan_set_get(SCAN_HANDLE_PHY_CODED);
101 if (!scan_coded || scan_coded->per_scan.sync) {
102 return BT_HCI_ERR_CMD_DISALLOWED;
103 }
104 }
105
106 link_sync_estab = ll_rx_link_alloc();
107 if (!link_sync_estab) {
108 return BT_HCI_ERR_MEM_CAPACITY_EXCEEDED;
109 }
110
111 link_sync_lost = ll_rx_link_alloc();
112 if (!link_sync_lost) {
113 ll_rx_link_release(link_sync_estab);
114
115 return BT_HCI_ERR_MEM_CAPACITY_EXCEEDED;
116 }
117
118 node_rx = ll_rx_alloc();
119 if (!node_rx) {
120 ll_rx_link_release(link_sync_lost);
121 ll_rx_link_release(link_sync_estab);
122
123 return BT_HCI_ERR_MEM_CAPACITY_EXCEEDED;
124 }
125
126 sync = sync_acquire();
127 if (!sync) {
128 ll_rx_release(node_rx);
129 ll_rx_link_release(link_sync_lost);
130 ll_rx_link_release(link_sync_estab);
131
132 return BT_HCI_ERR_MEM_CAPACITY_EXCEEDED;
133 }
134
135 scan->per_scan.state = LL_SYNC_STATE_IDLE;
136 scan->per_scan.filter_policy = options & BIT(0);
137 if (IS_ENABLED(CONFIG_BT_CTLR_PHY_CODED)) {
138 scan_coded->per_scan.state = LL_SYNC_STATE_IDLE;
139 scan_coded->per_scan.filter_policy =
140 scan->per_scan.filter_policy;
141 }
142
143 if (!scan->per_scan.filter_policy) {
144 scan->per_scan.sid = sid;
145 scan->per_scan.adv_addr_type = adv_addr_type;
146 memcpy(scan->per_scan.adv_addr, adv_addr, BDADDR_SIZE);
147
148 if (IS_ENABLED(CONFIG_BT_CTLR_PHY_CODED)) {
149 scan_coded->per_scan.sid = scan->per_scan.sid;
150 scan_coded->per_scan.adv_addr_type =
151 scan->per_scan.adv_addr_type;
152 memcpy(scan_coded->per_scan.adv_addr,
153 scan->per_scan.adv_addr, BDADDR_SIZE);
154 }
155 }
156
157 sync->skip = skip;
158 sync->timeout = sync_timeout;
159
160 /* Initialize sync context */
161 node_rx->link = link_sync_estab;
162 sync->node_rx_sync_estab = node_rx;
163 sync->timeout_reload = 0U;
164 sync->timeout_expire = 0U;
165
166 #if defined(CONFIG_BT_CTLR_SYNC_ISO)
167 /* Reset Broadcast Isochronous Group Sync Establishment */
168 sync->iso.sync_iso = NULL;
169 #endif /* CONFIG_BT_CTLR_SYNC_ISO */
170
171 /* Initialize sync LLL context */
172 lll_sync = &sync->lll;
173 lll_sync->skip_prepare = 0U;
174 lll_sync->skip_event = 0U;
175 lll_sync->window_widening_prepare_us = 0U;
176 lll_sync->window_widening_event_us = 0U;
177 #if defined(CONFIG_BT_CTLR_SYNC_PERIODIC_CTE_TYPE_FILTERING)
178 lll_sync->cte_type = sync_cte_type;
179 lll_sync->filter_policy = scan->per_scan.filter_policy;
180 #endif /* CONFIG_BT_CTLR_SYNC_PERIODIC_CTE_TYPE_FILTERING */
181
182 /* Reporting initially enabled/disabled */
183 lll_sync->is_rx_enabled = options & BIT(1);
184
185 #if defined(CONFIG_BT_CTLR_DF_SCAN_CTE_RX)
186 ull_df_sync_cfg_init(&lll_sync->df_cfg);
187 #endif /* CONFIG_BT_CTLR_DF_SCAN_CTE_RX */
188
189 /* sync_lost node_rx */
190 sync->node_rx_lost.hdr.link = link_sync_lost;
191
192 /* Initialise ULL and LLL headers */
193 ull_hdr_init(&sync->ull);
194 lll_hdr_init(lll_sync, sync);
195
196 /* Enable scanner to create sync */
197 scan->per_scan.sync = sync;
198 if (IS_ENABLED(CONFIG_BT_CTLR_PHY_CODED)) {
199 scan_coded->per_scan.sync = sync;
200 }
201
202 return 0;
203 }
204
ll_sync_create_cancel(void ** rx)205 uint8_t ll_sync_create_cancel(void **rx)
206 {
207 struct ll_scan_set *scan_coded;
208 memq_link_t *link_sync_estab;
209 memq_link_t *link_sync_lost;
210 struct node_rx_pdu *node_rx;
211 struct ll_scan_set *scan;
212 struct ll_sync_set *sync;
213 struct node_rx_sync *se;
214
215 scan = ull_scan_set_get(SCAN_HANDLE_1M);
216 if (!scan || !scan->per_scan.sync) {
217 return BT_HCI_ERR_CMD_DISALLOWED;
218 }
219
220 if (IS_ENABLED(CONFIG_BT_CTLR_PHY_CODED)) {
221 scan_coded = ull_scan_set_get(SCAN_HANDLE_PHY_CODED);
222 if (!scan_coded || !scan_coded->per_scan.sync) {
223 return BT_HCI_ERR_CMD_DISALLOWED;
224 }
225 }
226
227 /* Check for race condition where in sync is established when sync
228 * context was set to NULL.
229 *
230 * Setting `scan->per_scan.sync` to NULL represents cancellation
231 * requested in the thread context. Checking `sync->timeout_reload`
232 * confirms if synchronization was established before
233 * `scan->per_scan.sync` was set to NULL.
234 */
235 sync = scan->per_scan.sync;
236 scan->per_scan.sync = NULL;
237 if (IS_ENABLED(CONFIG_BT_CTLR_PHY_CODED)) {
238 scan_coded->per_scan.sync = NULL;
239 }
240 cpu_dmb();
241 if (!sync || sync->timeout_reload) {
242 return BT_HCI_ERR_CMD_DISALLOWED;
243 }
244
245 node_rx = (void *)sync->node_rx_sync_estab;
246 link_sync_estab = node_rx->hdr.link;
247 link_sync_lost = sync->node_rx_lost.hdr.link;
248
249 ll_rx_link_release(link_sync_lost);
250 ll_rx_link_release(link_sync_estab);
251 ll_rx_release(node_rx);
252
253 node_rx = (void *)&sync->node_rx_lost;
254 node_rx->hdr.type = NODE_RX_TYPE_SYNC;
255 node_rx->hdr.handle = 0xffff;
256
257 /* NOTE: struct node_rx_lost has uint8_t member following the
258 * struct node_rx_hdr to store the reason.
259 */
260 se = (void *)node_rx->pdu;
261 se->status = BT_HCI_ERR_OP_CANCELLED_BY_HOST;
262
263 /* NOTE: Since NODE_RX_TYPE_SYNC is only generated from ULL context,
264 * pass ULL context as parameter.
265 */
266 node_rx->hdr.rx_ftr.param = sync;
267
268 *rx = node_rx;
269
270 return 0;
271 }
272
ll_sync_terminate(uint16_t handle)273 uint8_t ll_sync_terminate(uint16_t handle)
274 {
275 memq_link_t *link_sync_lost;
276 struct ll_sync_set *sync;
277 int err;
278
279 sync = ull_sync_is_enabled_get(handle);
280 if (!sync) {
281 return BT_HCI_ERR_UNKNOWN_ADV_IDENTIFIER;
282 }
283
284 err = ull_ticker_stop_with_mark(TICKER_ID_SCAN_SYNC_BASE + handle,
285 sync, &sync->lll);
286 LL_ASSERT(err == 0 || err == -EALREADY);
287 if (err) {
288 return BT_HCI_ERR_CMD_DISALLOWED;
289 }
290
291 link_sync_lost = sync->node_rx_lost.hdr.link;
292 ll_rx_link_release(link_sync_lost);
293
294 ull_sync_release(sync);
295
296 return 0;
297 }
298
ll_sync_recv_enable(uint16_t handle,uint8_t enable)299 uint8_t ll_sync_recv_enable(uint16_t handle, uint8_t enable)
300 {
301 /* TODO: */
302 return BT_HCI_ERR_CMD_DISALLOWED;
303 }
304
ull_sync_init(void)305 int ull_sync_init(void)
306 {
307 int err;
308
309 err = init_reset();
310 if (err) {
311 return err;
312 }
313
314 return 0;
315 }
316
ull_sync_reset(void)317 int ull_sync_reset(void)
318 {
319 uint16_t handle;
320 void *rx;
321 int err;
322
323 (void)ll_sync_create_cancel(&rx);
324
325 for (handle = 0U; handle < CONFIG_BT_PER_ADV_SYNC_MAX; handle++) {
326 (void)ll_sync_terminate(handle);
327 }
328
329 err = init_reset();
330 if (err) {
331 return err;
332 }
333
334 return 0;
335 }
336
ull_sync_set_get(uint16_t handle)337 struct ll_sync_set *ull_sync_set_get(uint16_t handle)
338 {
339 if (handle >= CONFIG_BT_PER_ADV_SYNC_MAX) {
340 return NULL;
341 }
342
343 return &ll_sync_pool[handle];
344 }
345
ull_sync_is_enabled_get(uint16_t handle)346 struct ll_sync_set *ull_sync_is_enabled_get(uint16_t handle)
347 {
348 struct ll_sync_set *sync;
349
350 sync = ull_sync_set_get(handle);
351 if (!sync || !sync->timeout_reload) {
352 return NULL;
353 }
354
355 return sync;
356 }
357
ull_sync_is_valid_get(struct ll_sync_set * sync)358 struct ll_sync_set *ull_sync_is_valid_get(struct ll_sync_set *sync)
359 {
360 if (((uint8_t *)sync < (uint8_t *)ll_sync_pool) ||
361 ((uint8_t *)sync > ((uint8_t *)ll_sync_pool +
362 (sizeof(struct ll_sync_set) * (CONFIG_BT_PER_ADV_SYNC_MAX - 1))))) {
363 return NULL;
364 }
365
366 return sync;
367 }
368
ull_sync_handle_get(struct ll_sync_set * sync)369 uint16_t ull_sync_handle_get(struct ll_sync_set *sync)
370 {
371 return mem_index_get(sync, ll_sync_pool, sizeof(struct ll_sync_set));
372 }
373
ull_sync_lll_handle_get(struct lll_sync * lll)374 uint16_t ull_sync_lll_handle_get(struct lll_sync *lll)
375 {
376 return ull_sync_handle_get(HDR_LLL2ULL(lll));
377 }
378
ull_sync_release(struct ll_sync_set * sync)379 void ull_sync_release(struct ll_sync_set *sync)
380 {
381 mem_release(sync, &sync_free);
382 }
383
ull_sync_setup(struct ll_scan_set * scan,struct ll_scan_aux_set * aux,struct node_rx_hdr * node_rx,struct pdu_adv_sync_info * si)384 void ull_sync_setup(struct ll_scan_set *scan, struct ll_scan_aux_set *aux,
385 struct node_rx_hdr *node_rx, struct pdu_adv_sync_info *si)
386 {
387 uint32_t ticks_slot_overhead;
388 uint32_t ticks_slot_offset;
389 struct ll_sync_set *sync;
390 struct node_rx_sync *se;
391 struct node_rx_ftr *ftr;
392 uint32_t sync_offset_us;
393 uint32_t ready_delay_us;
394 struct node_rx_pdu *rx;
395 uint8_t *data_chan_map;
396 struct lll_sync *lll;
397 uint16_t sync_handle;
398 uint32_t interval_us;
399 struct pdu_adv *pdu;
400 uint16_t interval;
401 uint8_t chm_last;
402 uint32_t ret;
403 uint8_t sca;
404
405 /* Populate the LLL context */
406 sync = scan->per_scan.sync;
407 lll = &sync->lll;
408
409 /* Copy channel map from sca_chm field in sync_info structure, and
410 * clear the SCA bits.
411 */
412 chm_last = lll->chm_first;
413 lll->chm_last = chm_last;
414 data_chan_map = lll->chm[chm_last].data_chan_map;
415 (void)memcpy(data_chan_map, si->sca_chm,
416 sizeof(lll->chm[chm_last].data_chan_map));
417 data_chan_map[PDU_SYNC_INFO_SCA_CHM_SCA_BYTE_OFFSET] &=
418 ~PDU_SYNC_INFO_SCA_CHM_SCA_BIT_MASK;
419 lll->chm[chm_last].data_chan_count =
420 util_ones_count_get(data_chan_map,
421 sizeof(lll->chm[chm_last].data_chan_map));
422 if (lll->chm[chm_last].data_chan_count < 2) {
423 /* Ignore sync setup, invalid available channel count */
424 return;
425 }
426
427 memcpy(lll->access_addr, &si->aa, sizeof(lll->access_addr));
428 lll->data_chan_id = lll_chan_id(lll->access_addr);
429 memcpy(lll->crc_init, si->crc_init, sizeof(lll->crc_init));
430 lll->event_counter = si->evt_cntr;
431 lll->phy = aux->lll.phy;
432
433 /* Extract the SCA value from the sca_chm field of the sync_info
434 * structure.
435 */
436 sca = (si->sca_chm[PDU_SYNC_INFO_SCA_CHM_SCA_BYTE_OFFSET] &
437 PDU_SYNC_INFO_SCA_CHM_SCA_BIT_MASK) >>
438 PDU_SYNC_INFO_SCA_CHM_SCA_BIT_POS;
439
440 interval = sys_le16_to_cpu(si->interval);
441 interval_us = interval * CONN_INT_UNIT_US;
442
443 sync->timeout_reload = RADIO_SYNC_EVENTS((sync->timeout * 10U * 1000U),
444 interval_us);
445
446 lll->window_widening_periodic_us =
447 (((lll_clock_ppm_local_get() + lll_clock_ppm_get(sca)) *
448 interval_us) + (1000000 - 1)) / 1000000U;
449 lll->window_widening_max_us = (interval_us >> 1) - EVENT_IFS_US;
450 if (si->offs_units) {
451 lll->window_size_event_us = OFFS_UNIT_300_US;
452 } else {
453 lll->window_size_event_us = OFFS_UNIT_30_US;
454 }
455
456 /* Reset the sync context allocated to scan contexts */
457 scan->per_scan.sync = NULL;
458 if (IS_ENABLED(CONFIG_BT_CTLR_PHY_CODED)) {
459 struct ll_scan_set *scan_1m;
460
461 scan_1m = ull_scan_set_get(SCAN_HANDLE_1M);
462 if (scan == scan_1m) {
463 struct ll_scan_set *scan_coded;
464
465 scan_coded = ull_scan_set_get(SCAN_HANDLE_PHY_CODED);
466 scan_coded->per_scan.sync = NULL;
467 } else {
468 scan_1m->per_scan.sync = NULL;
469 }
470 }
471
472 sync_handle = ull_sync_handle_get(sync);
473
474 /* Prepare and dispatch sync notification */
475 rx = (void *)sync->node_rx_sync_estab;
476 rx->hdr.type = NODE_RX_TYPE_SYNC;
477 rx->hdr.handle = sync_handle;
478 rx->hdr.rx_ftr.param = scan;
479 se = (void *)rx->pdu;
480 se->interval = interval;
481 se->phy = lll->phy;
482 se->sca = sca;
483
484 /* Calculate offset and schedule sync radio events */
485 ftr = &node_rx->rx_ftr;
486 pdu = (void *)((struct node_rx_pdu *)node_rx)->pdu;
487
488 ready_delay_us = lll_radio_rx_ready_delay_get(lll->phy, 1);
489
490 sync_offset_us = ftr->radio_end_us;
491 sync_offset_us += (uint32_t)si->offs * lll->window_size_event_us;
492 /* offs_adjust may be 1 only if sync setup by LL_PERIODIC_SYNC_IND */
493 sync_offset_us += (si->offs_adjust ? OFFS_ADJUST_US : 0U);
494 sync_offset_us -= PDU_AC_US(pdu->len, lll->phy, ftr->phy_flags);
495 sync_offset_us -= EVENT_TICKER_RES_MARGIN_US;
496 sync_offset_us -= EVENT_JITTER_US;
497 sync_offset_us -= ready_delay_us;
498
499 interval_us -= lll->window_widening_periodic_us;
500
501 /* TODO: active_to_start feature port */
502 sync->ull.ticks_active_to_start = 0U;
503 sync->ull.ticks_prepare_to_start =
504 HAL_TICKER_US_TO_TICKS(EVENT_OVERHEAD_XTAL_US);
505 sync->ull.ticks_preempt_to_start =
506 HAL_TICKER_US_TO_TICKS(EVENT_OVERHEAD_PREEMPT_MIN_US);
507 sync->ull.ticks_slot = HAL_TICKER_US_TO_TICKS(
508 EVENT_OVERHEAD_START_US + ready_delay_us +
509 PDU_AC_MAX_US(PDU_AC_EXT_PAYLOAD_SIZE_MAX, lll->phy) +
510 EVENT_OVERHEAD_END_US);
511
512 ticks_slot_offset = MAX(sync->ull.ticks_active_to_start,
513 sync->ull.ticks_prepare_to_start);
514 if (IS_ENABLED(CONFIG_BT_CTLR_LOW_LAT)) {
515 ticks_slot_overhead = ticks_slot_offset;
516 } else {
517 ticks_slot_overhead = 0U;
518 }
519 ticks_slot_offset += HAL_TICKER_US_TO_TICKS(EVENT_OVERHEAD_START_US);
520
521 mfy_lll_prepare.fp = lll_sync_create_prepare;
522
523 ret = ticker_start(TICKER_INSTANCE_ID_CTLR, TICKER_USER_ID_ULL_HIGH,
524 (TICKER_ID_SCAN_SYNC_BASE + sync_handle),
525 ftr->ticks_anchor - ticks_slot_offset,
526 HAL_TICKER_US_TO_TICKS(sync_offset_us),
527 HAL_TICKER_US_TO_TICKS(interval_us),
528 HAL_TICKER_REMAINDER(interval_us),
529 TICKER_NULL_LAZY,
530 (sync->ull.ticks_slot + ticks_slot_overhead),
531 ticker_cb, sync, ticker_op_cb, (void *)__LINE__);
532 LL_ASSERT((ret == TICKER_STATUS_SUCCESS) ||
533 (ret == TICKER_STATUS_BUSY));
534 }
535
ull_sync_established_report(memq_link_t * link,struct node_rx_hdr * rx)536 void ull_sync_established_report(memq_link_t *link, struct node_rx_hdr *rx)
537 {
538 struct node_rx_pdu *rx_establ;
539 struct ll_sync_set *ull_sync;
540 struct node_rx_ftr *ftr;
541 struct node_rx_sync *se;
542 struct lll_sync *lll;
543
544 ftr = &rx->rx_ftr;
545
546 #if defined(CONFIG_BT_CTLR_SYNC_PERIODIC_CTE_TYPE_FILTERING)
547 enum sync_status sync_status;
548
549 #if defined(CONFIG_BT_CTLR_CTEINLINE_SUPPORT)
550 sync_status = ftr->sync_status;
551 #else
552 struct pdu_cte_info *rx_cte_info;
553
554 lll = ftr->param;
555
556 rx_cte_info = pdu_cte_info_get((struct pdu_adv *)((struct node_rx_pdu *)rx)->pdu);
557 if (rx_cte_info != NULL) {
558 sync_status = lll_sync_cte_is_allowed(lll->cte_type, lll->filter_policy,
559 rx_cte_info->time, rx_cte_info->type);
560 } else {
561 sync_status = lll_sync_cte_is_allowed(lll->cte_type, lll->filter_policy, 0,
562 BT_HCI_LE_NO_CTE);
563 }
564 #endif /* CONFIG_BT_CTLR_CTEINLINE_SUPPORT */
565
566 /* Send periodic advertisement sync established report when sync has correct CTE type
567 * or the CTE type is incorrect and filter policy doesn't allow to continue scanning.
568 */
569 if (sync_status != SYNC_STAT_READY_OR_CONT_SCAN) {
570 #else
571 if (1) {
572 #endif /* CONFIG_BT_CTLR_SYNC_PERIODIC_CTE_TYPE_FILTERING */
573
574 /* Set the sync handle corresponding to the LLL context passed in the node rx
575 * footer field.
576 */
577 lll = ftr->param;
578 ull_sync = HDR_LLL2ULL(lll);
579
580 /* Prepare and dispatch sync notification */
581 rx_establ = (void *)ull_sync->node_rx_sync_estab;
582 rx_establ->hdr.type = NODE_RX_TYPE_SYNC;
583 se = (void *)rx_establ->pdu;
584
585 #if defined(CONFIG_BT_CTLR_SYNC_PERIODIC_CTE_TYPE_FILTERING)
586 se->status = (ftr->sync_status == SYNC_STAT_TERM) ?
587 BT_HCI_ERR_UNSUPP_REMOTE_FEATURE :
588 BT_HCI_ERR_SUCCESS;
589
590 #if !defined(CONFIG_BT_CTLR_CTEINLINE_SUPPORT)
591 /* Notify done event handler to terminate sync scan if required. */
592 ull_sync->sync_term = sync_status == SYNC_STAT_TERM;
593 #endif /* !CONFIG_BT_CTLR_CTEINLINE_SUPPORT */
594 #else
595 se->status = BT_HCI_ERR_SUCCESS;
596 #endif /* CONFIG_BT_CTLR_SYNC_PERIODIC_CTE_TYPE_FILTERING */
597 ll_rx_put(rx_establ->hdr.link, rx_establ);
598 ll_rx_sched();
599 }
600
601 #if defined(CONFIG_BT_CTLR_SYNC_PERIODIC_CTE_TYPE_FILTERING)
602 /* Handle periodic advertising PDU and send periodic advertising scan report when
603 * the sync was found or was established in the past. The report is not send if
604 * scanning is terminated due to wrong CTE type.
605 */
606 if (sync_status != SYNC_STAT_TERM) {
607 #else
608 if (1) {
609 #endif /* CONFIG_BT_CTLR_SYNC_PERIODIC_CTE_TYPE_FILTERING */
610 /* Switch sync event prepare function to one reposnsible for regular PDUs receive */
611 mfy_lll_prepare.fp = lll_sync_prepare;
612
613 /* Change node type to appropriately handle periodic advertising PDU report */
614 rx->type = NODE_RX_TYPE_SYNC_REPORT;
615 ull_scan_aux_setup(link, rx);
616 }
617 }
618
619 void ull_sync_done(struct node_rx_event_done *done)
620 {
621 uint32_t ticks_drift_minus;
622 uint32_t ticks_drift_plus;
623 struct ll_sync_set *sync;
624 uint16_t elapsed_event;
625 struct lll_sync *lll;
626 uint16_t skip_event;
627 uint16_t lazy;
628 uint8_t force;
629
630 /* Get reference to ULL context */
631 sync = CONTAINER_OF(done->param, struct ll_sync_set, ull);
632 lll = &sync->lll;
633
634 #if defined(CONFIG_BT_CTLR_SYNC_PERIODIC_CTE_TYPE_FILTERING)
635 #if defined(CONFIG_BT_CTLR_CTEINLINE_SUPPORT)
636 if (done->extra.sync_term) {
637 #else
638 if (sync->sync_term) {
639 #endif /* CONFIG_BT_CTLR_CTEINLINE_SUPPORT */
640 /* Stop periodic advertising scan ticker */
641 sync_ticker_cleanup(sync, NULL);
642 } else
643 #endif /* CONFIG_BT_CTLR_SYNC_PERIODIC_CTE_TYPE_FILTERING */
644 {
645 /* Events elapsed used in timeout checks below */
646 skip_event = lll->skip_event;
647 elapsed_event = skip_event + 1;
648
649 /* Sync drift compensation and new skip calculation */
650 ticks_drift_plus = 0U;
651 ticks_drift_minus = 0U;
652 if (done->extra.trx_cnt) {
653 /* Calculate drift in ticks unit */
654 ull_drift_ticks_get(done, &ticks_drift_plus, &ticks_drift_minus);
655
656 /* Enforce skip */
657 lll->skip_event = sync->skip;
658 }
659
660 /* Reset supervision countdown */
661 if (done->extra.crc_valid) {
662 sync->timeout_expire = 0U;
663 }
664 /* If anchor point not sync-ed, start timeout countdown, and break skip if any */
665 else if (!sync->timeout_expire) {
666 sync->timeout_expire = sync->timeout_reload;
667 }
668
669 /* check timeout */
670 force = 0U;
671 if (sync->timeout_expire) {
672 if (sync->timeout_expire > elapsed_event) {
673 sync->timeout_expire -= elapsed_event;
674
675 /* break skip */
676 lll->skip_event = 0U;
677
678 if (skip_event) {
679 force = 1U;
680 }
681 } else {
682 sync_ticker_cleanup(sync, ticker_stop_op_cb);
683
684 return;
685 }
686 }
687
688 /* Check if skip needs update */
689 lazy = 0U;
690 if ((force) || (skip_event != lll->skip_event)) {
691 lazy = lll->skip_event + 1U;
692 }
693
694 /* Update Sync ticker instance */
695 if (ticks_drift_plus || ticks_drift_minus || lazy || force) {
696 uint16_t sync_handle = ull_sync_handle_get(sync);
697 uint32_t ticker_status;
698
699 /* Call to ticker_update can fail under the race
700 * condition where in the periodic sync role is being stopped
701 * but at the same time it is preempted by periodic sync event
702 * that gets into close state. Accept failure when periodic sync
703 * role is being stopped.
704 */
705 ticker_status =
706 ticker_update(TICKER_INSTANCE_ID_CTLR, TICKER_USER_ID_ULL_HIGH,
707 (TICKER_ID_SCAN_SYNC_BASE + sync_handle),
708 ticks_drift_plus, ticks_drift_minus, 0, 0, lazy,
709 force, ticker_update_sync_op_cb, sync);
710 LL_ASSERT((ticker_status == TICKER_STATUS_SUCCESS) ||
711 (ticker_status == TICKER_STATUS_BUSY) ||
712 ((void *)sync == ull_disable_mark_get()));
713 }
714 }
715 }
716
717 void ull_sync_chm_update(uint8_t sync_handle, uint8_t *acad, uint8_t acad_len)
718 {
719 struct pdu_adv_sync_chm_upd_ind *chm_upd_ind;
720 struct ll_sync_set *sync;
721 struct lll_sync *lll;
722 uint8_t chm_last;
723 uint16_t ad_len;
724
725 /* Get reference to LLL context */
726 sync = ull_sync_set_get(sync_handle);
727 LL_ASSERT(sync);
728 lll = &sync->lll;
729
730 /* Ignore if already in progress */
731 if (lll->chm_last != lll->chm_first) {
732 return;
733 }
734
735 /* Find the Channel Map Update Indication */
736 do {
737 /* Pick the length and find the Channel Map Update Indication */
738 ad_len = acad[0];
739 if (ad_len && (acad[1] == BT_DATA_CHANNEL_MAP_UPDATE_IND)) {
740 break;
741 }
742
743 /* Add length field size */
744 ad_len += 1U;
745 if (ad_len < acad_len) {
746 acad_len -= ad_len;
747 } else {
748 return;
749 }
750
751 /* Move to next AD data */
752 acad += ad_len;
753 } while (acad_len);
754
755 /* Validate the size of the Channel Map Update Indication */
756 if (ad_len != (sizeof(*chm_upd_ind) + 1U)) {
757 return;
758 }
759
760 /* Pick the parameters into the procedure context */
761 chm_last = lll->chm_last + 1U;
762 if (chm_last == DOUBLE_BUFFER_SIZE) {
763 chm_last = 0U;
764 }
765
766 chm_upd_ind = (void *)&acad[2];
767 (void)memcpy(lll->chm[chm_last].data_chan_map, chm_upd_ind->chm,
768 sizeof(lll->chm[chm_last].data_chan_map));
769 lll->chm[chm_last].data_chan_count =
770 util_ones_count_get(lll->chm[chm_last].data_chan_map,
771 sizeof(lll->chm[chm_last].data_chan_map));
772 if (lll->chm[chm_last].data_chan_count < 2) {
773 /* Ignore channel map, invalid available channel count */
774 return;
775 }
776
777 lll->chm_instant = sys_le16_to_cpu(chm_upd_ind->instant);
778
779 /* Set Channel Map Update Procedure in progress */
780 lll->chm_last = chm_last;
781 }
782
783 #if defined(CONFIG_BT_CTLR_DF_SCAN_CTE_RX)
784 /* @brief Function updates periodic sync slot duration.
785 *
786 * @param[in] sync Pointer to sync instance
787 * @param[in] slot_plus_us Number of microsecond to add to ticker slot
788 * @param[in] slot_minus_us Number of microsecond to subtracks from ticker slot
789 *
790 * @retval 0 Successful ticker slot update.
791 * @retval -ENOENT Ticker node related with provided sync is already stopped.
792 * @retval -ENOMEM Couldn't enqueue update ticker job.
793 * @retval -EFAULT Somethin else went wrong.
794 */
795 int ull_sync_slot_update(struct ll_sync_set *sync, uint32_t slot_plus_us,
796 uint32_t slot_minus_us)
797 {
798 uint32_t ret;
799 uint32_t ret_cb;
800
801 ret_cb = TICKER_STATUS_BUSY;
802 ret = ticker_update(TICKER_INSTANCE_ID_CTLR,
803 TICKER_USER_ID_THREAD,
804 (TICKER_ID_SCAN_SYNC_BASE +
805 ull_sync_handle_get(sync)),
806 0, 0,
807 slot_plus_us,
808 slot_minus_us,
809 0, 0,
810 ticker_update_op_status_give,
811 (void *)&ret_cb);
812 if (ret == TICKER_STATUS_BUSY || ret == TICKER_STATUS_SUCCESS) {
813 /* Wait for callback or clear semaphore is callback was already
814 * executed.
815 */
816 k_sem_take(&sem_ticker_cb, K_FOREVER);
817
818 if (ret_cb == TICKER_STATUS_FAILURE) {
819 return -EFAULT; /* Something went wrong */
820 } else {
821 return 0;
822 }
823 } else {
824 if (ret_cb != TICKER_STATUS_BUSY) {
825 /* Ticker callback was executed and job enqueue was successful.
826 * Call k_sem_take to clear ticker callback semaphore.
827 */
828 k_sem_take(&sem_ticker_cb, K_FOREVER);
829 }
830 /* Ticker was already stopped or job was not enqueued. */
831 return (ret_cb == TICKER_STATUS_FAILURE) ? -ENOENT : -ENOMEM;
832 }
833 }
834 #endif /* CONFIG_BT_CTLR_DF_SCAN_CTE_RX */
835
836 static int init_reset(void)
837 {
838 /* Initialize sync pool. */
839 mem_init(ll_sync_pool, sizeof(struct ll_sync_set),
840 sizeof(ll_sync_pool) / sizeof(struct ll_sync_set),
841 &sync_free);
842
843 #if defined(CONFIG_BT_CTLR_DF_SCAN_CTE_RX)
844 k_sem_init(&sem_ticker_cb, 0, 1);
845 #endif /* CONFIG_BT_CTLR_DF_SCAN_CTE_RX */
846
847 return 0;
848 }
849
850 static inline struct ll_sync_set *sync_acquire(void)
851 {
852 return mem_acquire(&sync_free);
853 }
854
855 static void sync_ticker_cleanup(struct ll_sync_set *sync, ticker_op_func stop_of_cb)
856 {
857 uint16_t sync_handle = ull_sync_handle_get(sync);
858 uint32_t ret;
859
860 /* Stop Periodic Sync Ticker */
861 ret = ticker_stop(TICKER_INSTANCE_ID_CTLR, TICKER_USER_ID_ULL_HIGH,
862 TICKER_ID_SCAN_SYNC_BASE + sync_handle, stop_of_cb, (void *)sync);
863 LL_ASSERT((ret == TICKER_STATUS_SUCCESS) ||
864 (ret == TICKER_STATUS_BUSY));
865 }
866
867 static void ticker_cb(uint32_t ticks_at_expire, uint32_t ticks_drift,
868 uint32_t remainder, uint16_t lazy, uint8_t force,
869 void *param)
870 {
871 static struct lll_prepare_param p;
872 struct ll_sync_set *sync = param;
873 struct lll_sync *lll;
874 uint32_t ret;
875 uint8_t ref;
876
877 DEBUG_RADIO_PREPARE_O(1);
878
879 lll = &sync->lll;
880
881 /* Increment prepare reference count */
882 ref = ull_ref_inc(&sync->ull);
883 LL_ASSERT(ref);
884
885 /* Append timing parameters */
886 p.ticks_at_expire = ticks_at_expire;
887 p.remainder = remainder;
888 p.lazy = lazy;
889 p.force = force;
890 p.param = lll;
891 mfy_lll_prepare.param = &p;
892
893 /* Kick LLL prepare */
894 ret = mayfly_enqueue(TICKER_USER_ID_ULL_HIGH, TICKER_USER_ID_LLL, 0, &mfy_lll_prepare);
895 LL_ASSERT(!ret);
896
897 DEBUG_RADIO_PREPARE_O(1);
898 }
899
900 static void ticker_op_cb(uint32_t status, void *param)
901 {
902 ARG_UNUSED(param);
903 LL_ASSERT(status == TICKER_STATUS_SUCCESS);
904 }
905
906 static void ticker_update_sync_op_cb(uint32_t status, void *param)
907 {
908 LL_ASSERT(status == TICKER_STATUS_SUCCESS ||
909 param == ull_disable_mark_get());
910 }
911
912 static void ticker_stop_op_cb(uint32_t status, void *param)
913 {
914 uint32_t retval;
915 static memq_link_t link;
916 static struct mayfly mfy = {0, 0, &link, NULL, sync_lost};
917
918 LL_ASSERT(status == TICKER_STATUS_SUCCESS);
919
920 mfy.param = param;
921
922 retval = mayfly_enqueue(TICKER_USER_ID_ULL_LOW, TICKER_USER_ID_ULL_HIGH,
923 0, &mfy);
924 LL_ASSERT(!retval);
925 }
926
927 static void sync_lost(void *param)
928 {
929 struct ll_sync_set *sync = param;
930 struct node_rx_pdu *rx;
931
932 /* Generate Periodic advertising sync lost */
933 rx = (void *)&sync->node_rx_lost;
934 rx->hdr.handle = ull_sync_handle_get(sync);
935 rx->hdr.type = NODE_RX_TYPE_SYNC_LOST;
936 rx->hdr.rx_ftr.param = sync;
937
938 /* Enqueue the sync lost towards ULL context */
939 ll_rx_put(rx->hdr.link, rx);
940 ll_rx_sched();
941 }
942
943 #if defined(CONFIG_BT_CTLR_DF_SCAN_CTE_RX)
944 static void ticker_update_op_status_give(uint32_t status, void *param)
945 {
946 *((uint32_t volatile *)param) = status;
947
948 k_sem_give(&sem_ticker_cb);
949 }
950 #endif /* CONFIG_BT_CTLR_DF_SCAN_CTE_RX */
951
952 #if defined(CONFIG_BT_CTLR_SYNC_PERIODIC_CTE_TYPE_FILTERING) && \
953 !defined(CONFIG_BT_CTLR_CTEINLINE_SUPPORT)
954 static struct pdu_cte_info *pdu_cte_info_get(struct pdu_adv *pdu)
955 {
956 struct pdu_adv_com_ext_adv *com_hdr;
957 struct pdu_adv_ext_hdr *hdr;
958 uint8_t *dptr;
959
960 com_hdr = &pdu->adv_ext_ind;
961 hdr = &com_hdr->ext_hdr;
962
963 if (!com_hdr->ext_hdr_len || (com_hdr->ext_hdr_len != 0 && !hdr->cte_info)) {
964 return NULL;
965 }
966
967 /* Skip flags in extended advertising header */
968 dptr = hdr->data;
969
970 /* Make sure there are no fields that are not allowd for AUX_SYNC_IND and AUX_CHAIN_IND */
971 LL_ASSERT(!hdr->adv_addr);
972 LL_ASSERT(!hdr->tgt_addr);
973
974 return (struct pdu_cte_info *)hdr->data;
975 }
976 #endif /* CONFIG_BT_CTLR_SYNC_PERIODIC_CTE_TYPE_FILTERING && !CONFIG_BT_CTLR_CTEINLINE_SUPPORT */
977