1 /******************************************************************************
2  *
3  *  Copyright 2000-2012 Broadcom Corporation
4  *
5  *  Licensed under the Apache License, Version 2.0 (the "License");
6  *  you may not use this file except in compliance with the License.
7  *  You may obtain a copy of the License at:
8  *
9  *  http://www.apache.org/licenses/LICENSE-2.0
10  *
11  *  Unless required by applicable law or agreed to in writing, software
12  *  distributed under the License is distributed on an "AS IS" BASIS,
13  *  WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14  *  See the License for the specific language governing permissions and
15  *  limitations under the License.
16  *
17  ******************************************************************************/
18 
19 /*****************************************************************************
20  *
21  *  This file contains functions that manages ACL link modes.
22  *  This includes operations such as active, hold,
23  *  park and sniff modes.
24  *
25  *  This module contains both internal and external (API)
26  *  functions. External (API) functions are distinguishable
27  *  by their names beginning with uppercase BTM.
28  *
29  *****************************************************************************/
30 
31 #define LOG_TAG "bt_btm_pm"
32 
33 #include <stddef.h>
34 #include <stdio.h>
35 #include <stdlib.h>
36 #include <string.h>
37 
38 #include "bt_common.h"
39 #include "bt_types.h"
40 #include "bt_utils.h"
41 #include "btm_api.h"
42 #include "btm_int.h"
43 #include "btm_int_types.h"
44 #include "btu.h"
45 #include "device/include/controller.h"
46 #include "hcidefs.h"
47 #include "hcimsgs.h"
48 #include "l2c_int.h"
49 #include "osi/include/log.h"
50 #include "osi/include/osi.h"
51 
52 /*****************************************************************************/
53 /*      to handle different modes                                            */
54 /*****************************************************************************/
55 #define BTM_PM_STORED_MASK 0x80 /* set this mask if the command is stored */
56 #define BTM_PM_NUM_SET_MODES 3  /* only hold, sniff & park */
57 
58 #define BTM_PM_GET_MD1 1
59 #define BTM_PM_GET_MD2 2
60 #define BTM_PM_GET_COMP 3
61 
62 const uint8_t
63     btm_pm_md_comp_matrix[BTM_PM_NUM_SET_MODES * BTM_PM_NUM_SET_MODES] = {
64         BTM_PM_GET_COMP, BTM_PM_GET_MD2,  BTM_PM_GET_MD2,
65 
66         BTM_PM_GET_MD1,  BTM_PM_GET_COMP, BTM_PM_GET_MD1,
67 
68         BTM_PM_GET_MD1,  BTM_PM_GET_MD2,  BTM_PM_GET_COMP};
69 
70 /* function prototype */
71 static int btm_pm_find_acl_ind(const RawAddress& remote_bda);
72 static tBTM_STATUS btm_pm_snd_md_req(uint8_t pm_id, int link_ind,
73                                      const tBTM_PM_PWR_MD* p_mode);
74 static const char* mode_to_string(const tBTM_PM_MODE mode);
75 
76 #if (BTM_PM_DEBUG == TRUE)
77 const char* btm_pm_state_str[] = {"pm_active_state", "pm_hold_state",
78                                   "pm_sniff_state", "pm_park_state",
79                                   "pm_pend_state"};
80 
81 const char* btm_pm_event_str[] = {"pm_set_mode_event", "pm_hci_sts_event",
82                                   "pm_mod_chg_event", "pm_update_event"};
83 
84 const char* btm_pm_action_str[] = {"pm_set_mode_action", "pm_update_db_action",
85                                    "pm_mod_chg_action", "pm_hci_sts_action",
86                                    "pm_update_action"};
87 #endif  // BTM_PM_DEBUG
88 
89 /*****************************************************************************/
90 /*                     P U B L I C  F U N C T I O N S                        */
91 /*****************************************************************************/
92 /*******************************************************************************
93  *
94  * Function         BTM_PmRegister
95  *
96  * Description      register or deregister with power manager
97  *
98  * Returns          BTM_SUCCESS if successful,
99  *                  BTM_NO_RESOURCES if no room to hold registration
100  *                  BTM_ILLEGAL_VALUE
101  *
102  ******************************************************************************/
BTM_PmRegister(uint8_t mask,uint8_t * p_pm_id,tBTM_PM_STATUS_CBACK * p_cb)103 tBTM_STATUS BTM_PmRegister(uint8_t mask, uint8_t* p_pm_id,
104                            tBTM_PM_STATUS_CBACK* p_cb) {
105   int xx;
106 
107   /* de-register */
108   if (mask & BTM_PM_DEREG) {
109     if (*p_pm_id >= BTM_MAX_PM_RECORDS) return BTM_ILLEGAL_VALUE;
110     btm_cb.pm_reg_db[*p_pm_id].mask = BTM_PM_REC_NOT_USED;
111     return BTM_SUCCESS;
112   }
113 
114   for (xx = 0; xx < BTM_MAX_PM_RECORDS; xx++) {
115     /* find an unused entry */
116     if (btm_cb.pm_reg_db[xx].mask == BTM_PM_REC_NOT_USED) {
117       /* if register for notification, should provide callback routine */
118       if (mask & BTM_PM_REG_NOTIF) {
119         if (p_cb == NULL) return BTM_ILLEGAL_VALUE;
120         btm_cb.pm_reg_db[xx].cback = p_cb;
121       }
122       btm_cb.pm_reg_db[xx].mask = mask;
123       *p_pm_id = xx;
124       return BTM_SUCCESS;
125     }
126   }
127 
128   return BTM_NO_RESOURCES;
129 }
130 
131 /*******************************************************************************
132  *
133  * Function         BTM_SetPowerMode
134  *
135  * Description      store the mode in control block or
136  *                  alter ACL connection behavior.
137  *
138  * Returns          BTM_SUCCESS if successful,
139  *                  BTM_UNKNOWN_ADDR if bd addr is not active or bad
140  *
141  ******************************************************************************/
BTM_SetPowerMode(uint8_t pm_id,const RawAddress & remote_bda,const tBTM_PM_PWR_MD * p_mode)142 tBTM_STATUS BTM_SetPowerMode(uint8_t pm_id, const RawAddress& remote_bda,
143                              const tBTM_PM_PWR_MD* p_mode) {
144   int acl_ind;
145   tBTM_PM_MCB* p_cb = nullptr; /* per ACL link */
146   tBTM_PM_MODE mode;
147   int temp_pm_id;
148 
149   if (pm_id >= BTM_MAX_PM_RECORDS) {
150     pm_id = BTM_PM_SET_ONLY_ID;
151   }
152 
153   if (!p_mode) {
154     LOG(ERROR) << __func__ << ": pm_id " << unsigned(pm_id)
155                << " p_mode is null for " << remote_bda;
156     return BTM_ILLEGAL_VALUE;
157   }
158 
159   VLOG(2) << __func__ << " pm_id " << pm_id << " BDA: " << remote_bda
160           << " mode:" << std::to_string(p_mode->mode);
161 
162   /* take out the force bit */
163   mode = p_mode->mode & ~BTM_PM_MD_FORCE;
164 
165   acl_ind = btm_pm_find_acl_ind(remote_bda);
166   if (acl_ind == MAX_L2CAP_LINKS) return (BTM_UNKNOWN_ADDR);
167 
168   p_cb = &(btm_cb.pm_mode_db[acl_ind]);
169 
170   if (mode != BTM_PM_MD_ACTIVE) {
171     const controller_t* controller = controller_get_interface();
172     if ((mode == BTM_PM_MD_HOLD && !controller->supports_hold_mode()) ||
173         (mode == BTM_PM_MD_SNIFF && !controller->supports_sniff_mode()) ||
174         (mode == BTM_PM_MD_PARK && !controller->supports_park_mode())) {
175       LOG(ERROR) << __func__ << ": pm_id " << unsigned(pm_id) << " mode "
176                  << unsigned(mode) << " is not supported for " << remote_bda;
177       return BTM_MODE_UNSUPPORTED;
178     }
179   }
180 
181   if (mode == p_cb->state) {
182     /* already in the requested mode and the current interval has less latency
183      * than the max */
184     if ((mode == BTM_PM_MD_ACTIVE) ||
185         ((p_mode->mode & BTM_PM_MD_FORCE) && (p_mode->max >= p_cb->interval) &&
186          (p_mode->min <= p_cb->interval)) ||
187         ((p_mode->mode & BTM_PM_MD_FORCE) == 0 &&
188          (p_mode->max >= p_cb->interval))) {
189       VLOG(1) << __func__ << " already in requested mode "
190               << std::to_string(p_mode->mode) << ", interval " << p_cb->interval
191               << " max " << p_mode->max << " min " << p_mode->min;
192       return BTM_SUCCESS;
193     }
194   }
195 
196   temp_pm_id = pm_id;
197   if (pm_id == BTM_PM_SET_ONLY_ID) {
198     temp_pm_id = BTM_MAX_PM_RECORDS;
199   }
200 
201   /* update mode database */
202   if (((pm_id != BTM_PM_SET_ONLY_ID) &&
203        (btm_cb.pm_reg_db[pm_id].mask & BTM_PM_REG_SET)) ||
204       ((pm_id == BTM_PM_SET_ONLY_ID) &&
205        (btm_cb.pm_pend_link != MAX_L2CAP_LINKS))) {
206 #if (BTM_PM_DEBUG == TRUE)
207     BTM_TRACE_DEBUG("BTM_SetPowerMode: Saving cmd acl_ind %d temp_pm_id %d",
208                     acl_ind, temp_pm_id);
209 #endif  // BTM_PM_DEBUG
210     /* Make sure mask is set to BTM_PM_REG_SET */
211     btm_cb.pm_reg_db[temp_pm_id].mask |= BTM_PM_REG_SET;
212     *(&p_cb->req_mode[temp_pm_id]) = *p_mode;
213     p_cb->chg_ind = true;
214   }
215 
216 #if (BTM_PM_DEBUG == TRUE)
217   BTM_TRACE_DEBUG("btm_pm state:0x%x, pm_pend_link: %d", p_cb->state,
218                   btm_cb.pm_pend_link);
219 #endif  // BTM_PM_DEBUG
220   /* if mode == hold or pending, return */
221   if ((p_cb->state == BTM_PM_STS_HOLD) || (p_cb->state == BTM_PM_STS_PENDING) ||
222       (btm_cb.pm_pend_link != MAX_L2CAP_LINKS)) {
223     /* command pending */
224     if (acl_ind != btm_cb.pm_pend_link) {
225       /* set the stored mask */
226       p_cb->state |= BTM_PM_STORED_MASK;
227       BTM_TRACE_DEBUG("%s: btm_pm state stored:%d", __func__, acl_ind);
228     }
229     return BTM_CMD_STORED;
230   }
231 
232   return btm_pm_snd_md_req(pm_id, acl_ind, p_mode);
233 }
234 
235 /*******************************************************************************
236  *
237  * Function         BTM_ReadPowerMode
238  *
239  * Description      This returns the current mode for a specific
240  *                  ACL connection.
241  *
242  * Input Param      remote_bda - device address of desired ACL connection
243  *
244  * Output Param     p_mode - address where the current mode is copied into.
245  *                          BTM_ACL_MODE_NORMAL
246  *                          BTM_ACL_MODE_HOLD
247  *                          BTM_ACL_MODE_SNIFF
248  *                          BTM_ACL_MODE_PARK
249  *                          (valid only if return code is BTM_SUCCESS)
250  *
251  * Returns          BTM_SUCCESS if successful,
252  *                  BTM_UNKNOWN_ADDR if bd addr is not active or bad
253  *
254  ******************************************************************************/
BTM_ReadPowerMode(const RawAddress & remote_bda,tBTM_PM_MODE * p_mode)255 tBTM_STATUS BTM_ReadPowerMode(const RawAddress& remote_bda,
256                               tBTM_PM_MODE* p_mode) {
257   int acl_ind;
258 
259   acl_ind = btm_pm_find_acl_ind(remote_bda);
260   if (acl_ind == MAX_L2CAP_LINKS) return (BTM_UNKNOWN_ADDR);
261 
262   *p_mode = btm_cb.pm_mode_db[acl_ind].state;
263   return BTM_SUCCESS;
264 }
265 
266 /*******************************************************************************
267  *
268  * Function         btm_read_power_mode_state
269  *
270  * Description      This returns the current pm state for a specific
271  *                  ACL connection.
272  *
273  * Input Param      remote_bda - device address of desired ACL connection
274  *
275  * Output Param     pmState - address where the current pm state is copied.
276  *                          BTM_PM_ST_ACTIVE
277  *                          BTM_PM_ST_HOLD
278  *                          BTM_PM_ST_SNIFF
279  *                          BTM_PM_ST_PARK
280  *                          BTM_PM_ST_PENDING
281  *                          (valid only if return code is BTM_SUCCESS)
282  *
283  * Returns          BTM_SUCCESS if successful,
284  *                  BTM_UNKNOWN_ADDR if bd addr is not active or bad
285  *
286  ******************************************************************************/
btm_read_power_mode_state(const RawAddress & remote_bda,tBTM_PM_STATE * pmState)287 tBTM_STATUS btm_read_power_mode_state(const RawAddress& remote_bda,
288                                       tBTM_PM_STATE* pmState) {
289   int acl_ind = btm_pm_find_acl_ind(remote_bda);
290 
291   if (acl_ind == MAX_L2CAP_LINKS) return (BTM_UNKNOWN_ADDR);
292 
293   *pmState = btm_cb.pm_mode_db[acl_ind].state;
294   return BTM_SUCCESS;
295 }
296 
297 /*******************************************************************************
298  *
299  * Function         BTM_SetSsrParams
300  *
301  * Description      This sends the given SSR parameters for the given ACL
302  *                  connection if it is in ACTIVE mode.
303  *
304  * Input Param      remote_bda - device address of desired ACL connection
305  *                  max_lat    - maximum latency (in 0.625ms)(0-0xFFFE)
306  *                  min_rmt_to - minimum remote timeout
307  *                  min_loc_to - minimum local timeout
308  *
309  *
310  * Returns          BTM_SUCCESS if the HCI command is issued successful,
311  *                  BTM_UNKNOWN_ADDR if bd addr is not active or bad
312  *                  BTM_CMD_STORED if the command is stored
313  *
314  ******************************************************************************/
BTM_SetSsrParams(const RawAddress & remote_bda,uint16_t max_lat,uint16_t min_rmt_to,uint16_t min_loc_to)315 tBTM_STATUS BTM_SetSsrParams(const RawAddress& remote_bda, uint16_t max_lat,
316                              uint16_t min_rmt_to, uint16_t min_loc_to) {
317 #if (BTM_SSR_INCLUDED == TRUE)
318   int acl_ind;
319   tBTM_PM_MCB* p_cb;
320 
321   acl_ind = btm_pm_find_acl_ind(remote_bda);
322   if (acl_ind == MAX_L2CAP_LINKS) return (BTM_UNKNOWN_ADDR);
323 
324   if (BTM_PM_STS_ACTIVE == btm_cb.pm_mode_db[acl_ind].state ||
325       BTM_PM_STS_SNIFF == btm_cb.pm_mode_db[acl_ind].state) {
326     btsnd_hcic_sniff_sub_rate(btm_cb.acl_db[acl_ind].hci_handle, max_lat,
327                               min_rmt_to, min_loc_to);
328     return BTM_SUCCESS;
329   }
330   p_cb = &btm_cb.pm_mode_db[acl_ind];
331   p_cb->max_lat = max_lat;
332   p_cb->min_rmt_to = min_rmt_to;
333   p_cb->min_loc_to = min_loc_to;
334   return BTM_CMD_STORED;
335 #else
336   return BTM_ILLEGAL_ACTION;
337 #endif  // BTM_SSR_INCLUDED
338 }
339 
340 /*******************************************************************************
341  *
342  * Function         btm_pm_reset
343  *
344  * Description      as a part of the BTM reset process.
345  *
346  * Returns          void
347  *
348  ******************************************************************************/
btm_pm_reset(void)349 void btm_pm_reset(void) {
350   int xx;
351   tBTM_PM_STATUS_CBACK* cb = NULL;
352 
353   /* clear the pending request for application */
354   if ((btm_cb.pm_pend_id != BTM_PM_SET_ONLY_ID) &&
355       (btm_cb.pm_reg_db[btm_cb.pm_pend_id].mask & BTM_PM_REG_NOTIF)) {
356     cb = btm_cb.pm_reg_db[btm_cb.pm_pend_id].cback;
357   }
358 
359   /* clear the register record */
360   for (xx = 0; xx < BTM_MAX_PM_RECORDS; xx++) {
361     btm_cb.pm_reg_db[xx].mask = BTM_PM_REC_NOT_USED;
362   }
363 
364   if (cb != NULL && btm_cb.pm_pend_link < MAX_L2CAP_LINKS)
365     (*cb)(btm_cb.acl_db[btm_cb.pm_pend_link].remote_addr, BTM_PM_STS_ERROR,
366           BTM_DEV_RESET, 0);
367 
368   /* no command pending */
369   btm_cb.pm_pend_link = MAX_L2CAP_LINKS;
370 }
371 
372 /*******************************************************************************
373  *
374  * Function         btm_pm_sm_alloc
375  *
376  * Description      This function initializes the control block of an ACL link.
377  *                  It is called when an ACL connection is created.
378  *
379  * Returns          void
380  *
381  ******************************************************************************/
btm_pm_sm_alloc(uint8_t ind)382 void btm_pm_sm_alloc(uint8_t ind) {
383   tBTM_PM_MCB* p_db = &btm_cb.pm_mode_db[ind]; /* per ACL link */
384   memset(p_db, 0, sizeof(tBTM_PM_MCB));
385   p_db->state = BTM_PM_ST_ACTIVE;
386 #if (BTM_PM_DEBUG == TRUE)
387   BTM_TRACE_DEBUG("btm_pm_sm_alloc ind:%d st:%d", ind, p_db->state);
388 #endif  // BTM_PM_DEBUG
389 }
390 
391 /*******************************************************************************
392  *
393  * Function         btm_pm_find_acl_ind
394  *
395  * Description      This function initializes the control block of an ACL link.
396  *                  It is called when an ACL connection is created.
397  *
398  * Returns          void
399  *
400  ******************************************************************************/
btm_pm_find_acl_ind(const RawAddress & remote_bda)401 static int btm_pm_find_acl_ind(const RawAddress& remote_bda) {
402   tACL_CONN* p = &btm_cb.acl_db[0];
403   uint8_t xx;
404 
405   for (xx = 0; xx < MAX_L2CAP_LINKS; xx++, p++) {
406     if (p->in_use && p->remote_addr == remote_bda &&
407         p->transport == BT_TRANSPORT_BR_EDR) {
408 #if (BTM_PM_DEBUG == TRUE)
409       BTM_TRACE_DEBUG("btm_pm_find_acl_ind ind:%d, st:%d", xx,
410                       btm_cb.pm_mode_db[xx].state);
411 #endif  // BTM_PM_DEBUG
412       break;
413     }
414   }
415   return xx;
416 }
417 
418 /*******************************************************************************
419  *
420  * Function     btm_pm_compare_modes
421  * Description  get the "more active" mode of the 2
422  * Returns      void
423  *
424  ******************************************************************************/
btm_pm_compare_modes(const tBTM_PM_PWR_MD * p_md1,const tBTM_PM_PWR_MD * p_md2,tBTM_PM_PWR_MD * p_res)425 static tBTM_PM_PWR_MD* btm_pm_compare_modes(const tBTM_PM_PWR_MD* p_md1,
426                                             const tBTM_PM_PWR_MD* p_md2,
427                                             tBTM_PM_PWR_MD* p_res) {
428   uint8_t res;
429 
430   if (p_md1 == NULL) {
431     *p_res = *p_md2;
432     p_res->mode &= ~BTM_PM_MD_FORCE;
433 
434     return p_res;
435   }
436 
437   if (p_md2->mode == BTM_PM_MD_ACTIVE || p_md1->mode == BTM_PM_MD_ACTIVE) {
438     return NULL;
439   }
440 
441   /* check if force bit is involved */
442   if (p_md1->mode & BTM_PM_MD_FORCE) {
443     *p_res = *p_md1;
444     p_res->mode &= ~BTM_PM_MD_FORCE;
445     return p_res;
446   }
447 
448   if (p_md2->mode & BTM_PM_MD_FORCE) {
449     *p_res = *p_md2;
450     p_res->mode &= ~BTM_PM_MD_FORCE;
451     return p_res;
452   }
453 
454   res = (p_md1->mode - 1) * BTM_PM_NUM_SET_MODES + (p_md2->mode - 1);
455   res = btm_pm_md_comp_matrix[res];
456   switch (res) {
457     case BTM_PM_GET_MD1:
458       *p_res = *p_md1;
459       return p_res;
460 
461     case BTM_PM_GET_MD2:
462       *p_res = *p_md2;
463       return p_res;
464 
465     case BTM_PM_GET_COMP:
466       p_res->mode = p_md1->mode;
467       /* min of the two */
468       p_res->max = (p_md1->max < p_md2->max) ? (p_md1->max) : (p_md2->max);
469       /* max of the two */
470       p_res->min = (p_md1->min > p_md2->min) ? (p_md1->min) : (p_md2->min);
471 
472       /* the intersection is NULL */
473       if (p_res->max < p_res->min) return NULL;
474 
475       if (p_res->mode == BTM_PM_MD_SNIFF) {
476         /* max of the two */
477         p_res->attempt = (p_md1->attempt > p_md2->attempt) ? (p_md1->attempt)
478                                                            : (p_md2->attempt);
479         p_res->timeout = (p_md1->timeout > p_md2->timeout) ? (p_md1->timeout)
480                                                            : (p_md2->timeout);
481       }
482       return p_res;
483   }
484   return NULL;
485 }
486 
487 /*******************************************************************************
488  *
489  * Function     btm_pm_get_set_mode
490  * Description  get the resulting mode from the registered parties, then compare
491  *              it with the requested mode, if the command is from an
492  *              unregistered party.
493  *
494  * Returns      void
495  *
496  ******************************************************************************/
btm_pm_get_set_mode(uint8_t pm_id,tBTM_PM_MCB * p_cb,const tBTM_PM_PWR_MD * p_mode,tBTM_PM_PWR_MD * p_res)497 static tBTM_PM_MODE btm_pm_get_set_mode(uint8_t pm_id, tBTM_PM_MCB* p_cb,
498                                         const tBTM_PM_PWR_MD* p_mode,
499                                         tBTM_PM_PWR_MD* p_res) {
500   int xx, loop_max;
501   tBTM_PM_PWR_MD* p_md = NULL;
502 
503   if (p_mode != NULL && p_mode->mode & BTM_PM_MD_FORCE) {
504     *p_res = *p_mode;
505     p_res->mode &= ~BTM_PM_MD_FORCE;
506     return p_res->mode;
507   }
508 
509   if (!p_mode)
510     loop_max = BTM_MAX_PM_RECORDS + 1;
511   else
512     loop_max = BTM_MAX_PM_RECORDS;
513 
514   for (xx = 0; xx < loop_max; xx++) {
515     /* g through all the registered "set" parties */
516     if (btm_cb.pm_reg_db[xx].mask & BTM_PM_REG_SET) {
517       if (p_cb->req_mode[xx].mode == BTM_PM_MD_ACTIVE) {
518         /* if at least one registered (SET) party says ACTIVE, stay active */
519         return BTM_PM_MD_ACTIVE;
520       } else {
521         /* if registered parties give conflicting information, stay active */
522         if ((btm_pm_compare_modes(p_md, &p_cb->req_mode[xx], p_res)) == NULL)
523           return BTM_PM_MD_ACTIVE;
524         p_md = p_res;
525       }
526     }
527   }
528 
529   /* if the resulting mode is NULL(nobody registers SET), use the requested mode
530    */
531   if (p_md == NULL) {
532     if (p_mode)
533       *p_res = *((tBTM_PM_PWR_MD*)p_mode);
534     else /* p_mode is NULL when btm_pm_snd_md_req is called from
535             btm_pm_proc_mode_change */
536       return BTM_PM_MD_ACTIVE;
537   } else {
538     /* if the command is from unregistered party,
539        compare the resulting mode from registered party*/
540     if ((pm_id == BTM_PM_SET_ONLY_ID) &&
541         ((btm_pm_compare_modes(p_mode, p_md, p_res)) == NULL))
542       return BTM_PM_MD_ACTIVE;
543   }
544 
545   return p_res->mode;
546 }
547 
548 /*******************************************************************************
549  *
550  * Function     btm_pm_snd_md_req
551  * Description  get the resulting mode and send the resuest to host controller
552  * Returns      tBTM_STATUS
553  *, bool    *p_chg_ind
554  ******************************************************************************/
btm_pm_snd_md_req(uint8_t pm_id,int link_ind,const tBTM_PM_PWR_MD * p_mode)555 static tBTM_STATUS btm_pm_snd_md_req(uint8_t pm_id, int link_ind,
556                                      const tBTM_PM_PWR_MD* p_mode) {
557   tBTM_PM_PWR_MD md_res;
558   tBTM_PM_MODE mode;
559   tBTM_PM_MCB* p_cb = &btm_cb.pm_mode_db[link_ind];
560   bool chg_ind = false;
561 
562   mode = btm_pm_get_set_mode(pm_id, p_cb, p_mode, &md_res);
563   md_res.mode = mode;
564 
565 #if (BTM_PM_DEBUG == TRUE)
566   BTM_TRACE_DEBUG("btm_pm_snd_md_req link_ind:%d, mode: %d", link_ind, mode);
567 #endif  // BTM_PM_DEBUG
568 
569   if (p_cb->state == mode) {
570     /* already in the resulting mode */
571     if ((mode == BTM_PM_MD_ACTIVE) ||
572         ((md_res.max >= p_cb->interval) && (md_res.min <= p_cb->interval)))
573       return BTM_CMD_STORED;
574     /* Otherwise, needs to wake, then sleep */
575     chg_ind = true;
576   }
577   p_cb->chg_ind = chg_ind;
578 
579   /* cannot go directly from current mode to resulting mode. */
580   if (mode != BTM_PM_MD_ACTIVE && p_cb->state != BTM_PM_MD_ACTIVE)
581     p_cb->chg_ind = true; /* needs to wake, then sleep */
582 
583   if (p_cb->chg_ind) /* needs to wake first */
584     md_res.mode = BTM_PM_MD_ACTIVE;
585 #if (BTM_SSR_INCLUDED == TRUE)
586   else if (BTM_PM_MD_SNIFF == md_res.mode && p_cb->max_lat) {
587     btsnd_hcic_sniff_sub_rate(btm_cb.acl_db[link_ind].hci_handle, p_cb->max_lat,
588                               p_cb->min_rmt_to, p_cb->min_loc_to);
589     p_cb->max_lat = 0;
590   }
591 #endif  // BTM_SSR_INCLUDED
592   /* Default is failure */
593   btm_cb.pm_pend_link = MAX_L2CAP_LINKS;
594 
595   /* send the appropriate HCI command */
596   btm_cb.pm_pend_id = pm_id;
597 
598 #if (BTM_PM_DEBUG == TRUE)
599   BTM_TRACE_DEBUG("btm_pm_snd_md_req state:0x%x, link_ind: %d", p_cb->state,
600                   link_ind);
601 #endif  // BTM_PM_DEBUG
602 
603   BTM_TRACE_DEBUG("%s switching from %s to %s.", __func__,
604                   mode_to_string(p_cb->state), mode_to_string(md_res.mode));
605   switch (md_res.mode) {
606     case BTM_PM_MD_ACTIVE:
607       switch (p_cb->state) {
608         case BTM_PM_MD_SNIFF:
609           btsnd_hcic_exit_sniff_mode(btm_cb.acl_db[link_ind].hci_handle);
610           btm_cb.pm_pend_link = link_ind;
611           break;
612         case BTM_PM_MD_PARK:
613           btsnd_hcic_exit_park_mode(btm_cb.acl_db[link_ind].hci_handle);
614           btm_cb.pm_pend_link = link_ind;
615           break;
616         default:
617           /* Failure btm_cb.pm_pend_link = MAX_L2CAP_LINKS */
618           break;
619       }
620       break;
621 
622     case BTM_PM_MD_HOLD:
623       btsnd_hcic_hold_mode(btm_cb.acl_db[link_ind].hci_handle, md_res.max,
624                            md_res.min);
625       btm_cb.pm_pend_link = link_ind;
626       break;
627 
628     case BTM_PM_MD_SNIFF:
629       btsnd_hcic_sniff_mode(btm_cb.acl_db[link_ind].hci_handle, md_res.max,
630                             md_res.min, md_res.attempt, md_res.timeout);
631       btm_cb.pm_pend_link = link_ind;
632       break;
633 
634     case BTM_PM_MD_PARK:
635       btsnd_hcic_park_mode(btm_cb.acl_db[link_ind].hci_handle, md_res.max,
636                            md_res.min);
637       btm_cb.pm_pend_link = link_ind;
638       break;
639     default:
640       /* Failure btm_cb.pm_pend_link = MAX_L2CAP_LINKS */
641       break;
642   }
643 
644   if (btm_cb.pm_pend_link == MAX_L2CAP_LINKS) {
645 /* the command was not sent */
646 #if (BTM_PM_DEBUG == TRUE)
647     BTM_TRACE_DEBUG("pm_pend_link: %d", btm_cb.pm_pend_link);
648 #endif  // BTM_PM_DEBUG
649     return (BTM_NO_RESOURCES);
650   }
651 
652   return BTM_CMD_STARTED;
653 }
654 
655 /*******************************************************************************
656  *
657  * Function         btm_pm_check_stored
658  *
659  * Description      This function is called when an HCI command status event
660  *                  occurs to check if there's any PM command issued while
661  *                  waiting for HCI command status.
662  *
663  * Returns          none.
664  *
665  ******************************************************************************/
btm_pm_check_stored(void)666 static void btm_pm_check_stored(void) {
667   int xx;
668   for (xx = 0; xx < MAX_L2CAP_LINKS; xx++) {
669     if (btm_cb.pm_mode_db[xx].state & BTM_PM_STORED_MASK) {
670       btm_cb.pm_mode_db[xx].state &= ~BTM_PM_STORED_MASK;
671       BTM_TRACE_DEBUG("btm_pm_check_stored :%d", xx);
672       btm_pm_snd_md_req(BTM_PM_SET_ONLY_ID, xx, NULL);
673       break;
674     }
675   }
676 }
677 
678 /*******************************************************************************
679  *
680  * Function         btm_pm_proc_cmd_status
681  *
682  * Description      This function is called when an HCI command status event
683  *                  occurs for power manager related commands.
684  *
685  * Input Parms      status - status of the event (HCI_SUCCESS if no errors)
686  *
687  * Returns          none.
688  *
689  ******************************************************************************/
btm_pm_proc_cmd_status(uint8_t status)690 void btm_pm_proc_cmd_status(uint8_t status) {
691   tBTM_PM_MCB* p_cb;
692   tBTM_PM_STATUS pm_status;
693 
694   if (btm_cb.pm_pend_link >= MAX_L2CAP_LINKS) return;
695 
696   p_cb = &btm_cb.pm_mode_db[btm_cb.pm_pend_link];
697 
698   if (status == HCI_SUCCESS) {
699     p_cb->state = BTM_PM_ST_PENDING;
700     pm_status = BTM_PM_STS_PENDING;
701 #if (BTM_PM_DEBUG == TRUE)
702     BTM_TRACE_DEBUG("btm_pm_proc_cmd_status new state:0x%x", p_cb->state);
703 #endif   // BTM_PM_DEBUG
704   } else /* the command was not successfull. Stay in the same state */
705   {
706     pm_status = BTM_PM_STS_ERROR;
707   }
708 
709   /* notify the caller is appropriate */
710   if ((btm_cb.pm_pend_id != BTM_PM_SET_ONLY_ID) &&
711       (btm_cb.pm_reg_db[btm_cb.pm_pend_id].mask & BTM_PM_REG_NOTIF)) {
712     (*btm_cb.pm_reg_db[btm_cb.pm_pend_id].cback)(
713         btm_cb.acl_db[btm_cb.pm_pend_link].remote_addr, pm_status, 0, status);
714   }
715 
716 /* no pending cmd now */
717 #if (BTM_PM_DEBUG == TRUE)
718   BTM_TRACE_DEBUG(
719       "btm_pm_proc_cmd_status state:0x%x, pm_pend_link: %d(new: %d)",
720       p_cb->state, btm_cb.pm_pend_link, MAX_L2CAP_LINKS);
721 #endif  // BTM_PM_DEBUG
722   btm_cb.pm_pend_link = MAX_L2CAP_LINKS;
723 
724   btm_pm_check_stored();
725 }
726 
727 /*******************************************************************************
728  *
729  * Function         btm_process_mode_change
730  *
731  * Description      This function is called when an HCI mode change event
732  *                  occurs.
733  *
734  * Input Parms      hci_status - status of the event (HCI_SUCCESS if no errors)
735  *                  hci_handle - connection handle associated with the change
736  *                  mode - HCI_MODE_ACTIVE, HCI_MODE_HOLD, HCI_MODE_SNIFF, or
737  *                         HCI_MODE_PARK
738  *                  interval - number of baseband slots (meaning depends on
739  *                                                       mode)
740  *
741  * Returns          none.
742  *
743  ******************************************************************************/
btm_pm_proc_mode_change(uint8_t hci_status,uint16_t hci_handle,uint8_t mode,uint16_t interval)744 void btm_pm_proc_mode_change(uint8_t hci_status, uint16_t hci_handle,
745                              uint8_t mode, uint16_t interval) {
746   tACL_CONN* p;
747   tBTM_PM_MCB* p_cb = NULL;
748   int xx, yy, zz;
749   tBTM_PM_STATE old_state;
750   tL2C_LCB* p_lcb;
751 
752   /* get the index to acl_db */
753   xx = btm_handle_to_acl_index(hci_handle);
754   if (xx >= MAX_L2CAP_LINKS) return;
755 
756   p = &btm_cb.acl_db[xx];
757 
758   /* update control block */
759   p_cb = &(btm_cb.pm_mode_db[xx]);
760   old_state = p_cb->state;
761   p_cb->state = mode;
762   p_cb->interval = interval;
763 
764   BTM_TRACE_DEBUG("%s switched from %s to %s.", __func__,
765                   mode_to_string(old_state), mode_to_string(p_cb->state));
766 
767   p_lcb = l2cu_find_lcb_by_bd_addr(p->remote_addr, BT_TRANSPORT_BR_EDR);
768   if (p_lcb != NULL) {
769     if ((p_cb->state == BTM_PM_ST_ACTIVE) || (p_cb->state == BTM_PM_ST_SNIFF)) {
770       /* There might be any pending packets due to SNIFF or PENDING state */
771       /* Trigger L2C to start transmission of the pending packets. */
772       BTM_TRACE_DEBUG(
773           "btm mode change to active; check l2c_link for outgoing packets");
774       l2c_link_check_send_pkts(p_lcb, NULL, NULL);
775     }
776   }
777 
778   /* notify registered parties */
779   for (yy = 0; yy <= BTM_MAX_PM_RECORDS; yy++) {
780     /* set req_mode  HOLD mode->ACTIVE */
781     if ((mode == BTM_PM_MD_ACTIVE) &&
782         (p_cb->req_mode[yy].mode == BTM_PM_MD_HOLD))
783       p_cb->req_mode[yy].mode = BTM_PM_MD_ACTIVE;
784   }
785 
786   /* new request has been made. - post a message to BTU task */
787   if (old_state & BTM_PM_STORED_MASK) {
788 #if (BTM_PM_DEBUG == TRUE)
789     BTM_TRACE_DEBUG("btm_pm_proc_mode_change: Sending stored req:%d", xx);
790 #endif  // BTM_PM_DEBUG
791     btm_pm_snd_md_req(BTM_PM_SET_ONLY_ID, xx, NULL);
792   } else {
793     for (zz = 0; zz < MAX_L2CAP_LINKS; zz++) {
794       if (btm_cb.pm_mode_db[zz].chg_ind) {
795 #if (BTM_PM_DEBUG == TRUE)
796         BTM_TRACE_DEBUG("btm_pm_proc_mode_change: Sending PM req :%d", zz);
797 #endif  // BTM_PM_DEBUG
798         btm_pm_snd_md_req(BTM_PM_SET_ONLY_ID, zz, NULL);
799         break;
800       }
801     }
802   }
803 
804   /* notify registered parties */
805   for (yy = 0; yy < BTM_MAX_PM_RECORDS; yy++) {
806     if (btm_cb.pm_reg_db[yy].mask & BTM_PM_REG_NOTIF) {
807       (*btm_cb.pm_reg_db[yy].cback)(p->remote_addr, mode, interval, hci_status);
808     }
809   }
810   /*check if sco disconnect  is waiting for the mode change */
811   btm_sco_disc_chk_pend_for_modechange(hci_handle);
812 
813   /* If mode change was because of an active role switch or change link key */
814   btm_cont_rswitch(p, btm_find_dev(p->remote_addr), hci_status);
815 }
816 
817 /*******************************************************************************
818  *
819  * Function         btm_pm_proc_ssr_evt
820  *
821  * Description      This function is called when an HCI sniff subrating event
822  *                  occurs.
823  *
824  * Returns          none.
825  *
826  ******************************************************************************/
827 #if (BTM_SSR_INCLUDED == TRUE)
btm_pm_proc_ssr_evt(uint8_t * p,UNUSED_ATTR uint16_t evt_len)828 void btm_pm_proc_ssr_evt(uint8_t* p, UNUSED_ATTR uint16_t evt_len) {
829   uint8_t status;
830   uint16_t handle;
831   uint16_t max_rx_lat;
832   int xx, yy;
833   tBTM_PM_MCB* p_cb;
834   tACL_CONN* p_acl = NULL;
835   uint16_t use_ssr = true;
836 
837   STREAM_TO_UINT8(status, p);
838 
839   STREAM_TO_UINT16(handle, p);
840   /* get the index to acl_db */
841   xx = btm_handle_to_acl_index(handle);
842   if (xx >= MAX_L2CAP_LINKS) return;
843 
844   p += 2;
845   STREAM_TO_UINT16(max_rx_lat, p);
846   p_cb = &(btm_cb.pm_mode_db[xx]);
847 
848   p_acl = &btm_cb.acl_db[xx];
849   if (p_cb->interval == max_rx_lat) {
850     /* using legacy sniff */
851     use_ssr = false;
852   }
853 
854   /* notify registered parties */
855   for (yy = 0; yy < BTM_MAX_PM_RECORDS; yy++) {
856     if (btm_cb.pm_reg_db[yy].mask & BTM_PM_REG_NOTIF) {
857       if (p_acl) {
858         (*btm_cb.pm_reg_db[yy].cback)(p_acl->remote_addr, BTM_PM_STS_SSR,
859                                       use_ssr, status);
860       }
861     }
862   }
863 }
864 #endif  // BTM_SSR_INCLUDED
865 
866 /*******************************************************************************
867  *
868  * Function         btm_pm_device_in_active_or_sniff_mode
869  *
870  * Description      This function is called to check if in active or sniff mode
871  *
872  * Returns          true, if in active or sniff mode
873  *
874  ******************************************************************************/
btm_pm_device_in_active_or_sniff_mode(void)875 bool btm_pm_device_in_active_or_sniff_mode(void) {
876   /* The active state is the highest state-includes connected device and sniff
877    * mode*/
878 
879   /* Covers active and sniff modes */
880   if (BTM_GetNumAclLinks() > 0) {
881     BTM_TRACE_DEBUG("%s - ACL links: %d", __func__, BTM_GetNumAclLinks());
882     return true;
883   }
884 
885   /* Check BLE states */
886   if (btm_ble_get_conn_st() != BLE_CONN_IDLE) {
887     BTM_TRACE_DEBUG("%s - BLE state: %x", __func__, btm_ble_get_conn_st());
888     return true;
889   }
890 
891   return false;
892 }
893 
894 /*******************************************************************************
895  *
896  * Function         btm_pm_device_in_scan_state
897  *
898  * Description      This function is called to check if in paging, inquiry or
899  *                  connecting mode
900  *
901  * Returns          true, if in paging, inquiry or connecting mode
902  *
903  ******************************************************************************/
btm_pm_device_in_scan_state(void)904 bool btm_pm_device_in_scan_state(void) {
905   /* Scan state-paging, inquiry, and trying to connect */
906 
907   /* Check for paging */
908   if (btm_cb.is_paging || (!fixed_queue_is_empty(btm_cb.page_queue)) ||
909       BTM_BL_PAGING_STARTED == btm_cb.busy_level) {
910     BTM_TRACE_DEBUG("btm_pm_device_in_scan_state- paging");
911     return true;
912   }
913 
914   /* Check for inquiry */
915   if ((btm_cb.btm_inq_vars.inq_active &
916        (BTM_BR_INQ_ACTIVE_MASK | BTM_BLE_INQ_ACTIVE_MASK)) != 0) {
917     BTM_TRACE_DEBUG("btm_pm_device_in_scan_state- Inq active");
918     return true;
919   }
920 
921   return false;
922 }
923 
924 /*******************************************************************************
925  *
926  * Function         BTM_PM_ReadControllerState
927  *
928  * Description      This function is called to obtain the controller state
929  *
930  * Returns          Controller State-BTM_CONTRL_ACTIVE, BTM_CONTRL_SCAN, and
931  *                  BTM_CONTRL_IDLE
932  *
933  ******************************************************************************/
BTM_PM_ReadControllerState(void)934 tBTM_CONTRL_STATE BTM_PM_ReadControllerState(void) {
935   if (btm_pm_device_in_active_or_sniff_mode())
936     return BTM_CONTRL_ACTIVE;
937   else if (btm_pm_device_in_scan_state())
938     return BTM_CONTRL_SCAN;
939   else
940     return BTM_CONTRL_IDLE;
941 }
942 
mode_to_string(const tBTM_PM_MODE mode)943 static const char* mode_to_string(const tBTM_PM_MODE mode) {
944   switch (mode) {
945     case BTM_PM_MD_ACTIVE:
946       return "ACTIVE";
947     case BTM_PM_MD_SNIFF:
948       return "SNIFF";
949     case BTM_PM_MD_PARK:
950       return "PARK";
951     case BTM_PM_MD_HOLD:
952       return "HOLD";
953     default:
954       return "UNKNOWN";
955   }
956 }
957