xref: /btstack/src/hci_cmd.c (revision d505770669e8c741e50307c4eeb4e5091ce1cfab)
1 /*
2  * Copyright (C) 2014 BlueKitchen GmbH
3  *
4  * Redistribution and use in source and binary forms, with or without
5  * modification, are permitted provided that the following conditions
6  * are met:
7  *
8  * 1. Redistributions of source code must retain the above copyright
9  *    notice, this list of conditions and the following disclaimer.
10  * 2. Redistributions in binary form must reproduce the above copyright
11  *    notice, this list of conditions and the following disclaimer in the
12  *    documentation and/or other materials provided with the distribution.
13  * 3. Neither the name of the copyright holders nor the names of
14  *    contributors may be used to endorse or promote products derived
15  *    from this software without specific prior written permission.
16  * 4. Any redistribution, use, or modification is done solely for
17  *    personal benefit and not for any commercial purpose or for
18  *    monetary gain.
19  *
20  * THIS SOFTWARE IS PROVIDED BY BLUEKITCHEN GMBH AND CONTRIBUTORS
21  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
22  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
23  * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL MATTHIAS
24  * RINGWALD OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
25  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
26  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
27  * OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
28  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
29  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF
30  * THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
31  * SUCH DAMAGE.
32  *
33  * Please inquire about commercial licensing options at
34  * [email protected]
35  *
36  */
37 
38 #define BTSTACK_FILE__ "hci_cmd.c"
39 
40 /*
41  *  hci_cmd.c
42  *
43  *  Created by Matthias Ringwald on 7/23/09.
44  */
45 
46 #include "btstack_config.h"
47 
48 #include "classic/sdp_util.h"
49 #include "hci.h"
50 #include "hci_cmd.h"
51 #include "btstack_debug.h"
52 
53 #include <string.h>
54 
55 // calculate combined ogf/ocf value
56 #define OPCODE(ogf, ocf) ((ocf) | ((ogf) << 10))
57 
58 /**
59  * construct HCI Command based on template
60  *
61  * Format:
62  *   1,2,3,4: one to four byte value
63  *   H: HCI connection handle
64  *   B: Bluetooth Baseband Address (BD_ADDR)
65  *   D: 8 byte data block
66  *   E: Extended Inquiry Result
67  *   N: Name up to 248 chars, \0 terminated
68  *   P: 16 byte data block. Pairing code, Simple Pairing Hash and Randomizer
69  *   A: 31 bytes advertising data
70  *   S: Service Record (Data Element Sequence)
71  *   Q: 32 byte data block, e.g. for X and Y coordinates of P-256 public key
72  */
73 uint16_t hci_cmd_create_from_template(uint8_t *hci_cmd_buffer, const hci_cmd_t *cmd, va_list argptr){
74 
75     hci_cmd_buffer[0] = cmd->opcode & 0xff;
76     hci_cmd_buffer[1] = cmd->opcode >> 8;
77     int pos = 3;
78 
79     const char *format = cmd->format;
80     uint16_t word;
81     uint32_t longword;
82     uint8_t * ptr;
83     while (*format) {
84         switch(*format) {
85             case '1': //  8 bit value
86             case '2': // 16 bit value
87             case 'H': // hci_handle
88                 word = va_arg(argptr, int);  // minimal va_arg is int: 2 bytes on 8+16 bit CPUs
89                 hci_cmd_buffer[pos++] = word & 0xff;
90                 if (*format == '2') {
91                     hci_cmd_buffer[pos++] = word >> 8;
92                 } else if (*format == 'H') {
93                     // TODO implement opaque client connection handles
94                     //      pass module handle for now
95                     hci_cmd_buffer[pos++] = word >> 8;
96                 }
97                 break;
98             case '3':
99             case '4':
100                 longword = va_arg(argptr, uint32_t);
101                 // longword = va_arg(argptr, int);
102                 hci_cmd_buffer[pos++] = longword;
103                 hci_cmd_buffer[pos++] = longword >> 8;
104                 hci_cmd_buffer[pos++] = longword >> 16;
105                 if (*format == '4'){
106                     hci_cmd_buffer[pos++] = longword >> 24;
107                 }
108                 break;
109             case 'B': // bt-addr
110                 ptr = va_arg(argptr, uint8_t *);
111                 hci_cmd_buffer[pos++] = ptr[5];
112                 hci_cmd_buffer[pos++] = ptr[4];
113                 hci_cmd_buffer[pos++] = ptr[3];
114                 hci_cmd_buffer[pos++] = ptr[2];
115                 hci_cmd_buffer[pos++] = ptr[1];
116                 hci_cmd_buffer[pos++] = ptr[0];
117                 break;
118             case 'D': // 8 byte data block
119                 ptr = va_arg(argptr, uint8_t *);
120                 (void)memcpy(&hci_cmd_buffer[pos], ptr, 8);
121                 pos += 8;
122                 break;
123             case 'E': // Extended Inquiry Information 240 octets
124                 ptr = va_arg(argptr, uint8_t *);
125                 (void)memcpy(&hci_cmd_buffer[pos], ptr, 240);
126                 pos += 240;
127                 break;
128             case 'N': { // UTF-8 string, null terminated
129                 ptr = va_arg(argptr, uint8_t *);
130                 uint16_t len = strlen((const char*) ptr);
131                 if (len > 248) {
132                     len = 248;
133                 }
134                 (void)memcpy(&hci_cmd_buffer[pos], ptr, len);
135                 if (len < 248) {
136                     // fill remaining space with zeroes
137                     memset(&hci_cmd_buffer[pos+len], 0, 248-len);
138                 }
139                 pos += 248;
140                 break;
141             }
142             case 'P': // 16 byte PIN code or link key
143                 ptr = va_arg(argptr, uint8_t *);
144                 (void)memcpy(&hci_cmd_buffer[pos], ptr, 16);
145                 pos += 16;
146                 break;
147 #ifdef ENABLE_BLE
148             case 'A': // 31 bytes advertising data
149                 ptr = va_arg(argptr, uint8_t *);
150                 (void)memcpy(&hci_cmd_buffer[pos], ptr, 31);
151                 pos += 31;
152                 break;
153 #endif
154 #ifdef ENABLE_SDP
155             case 'S': { // Service Record (Data Element Sequence)
156                 ptr = va_arg(argptr, uint8_t *);
157                 uint16_t len = de_get_len(ptr);
158                 (void)memcpy(&hci_cmd_buffer[pos], ptr, len);
159                 pos += len;
160                 break;
161             }
162 #endif
163 #ifdef ENABLE_LE_SECURE_CONNECTIONS
164             case 'Q':
165                 ptr = va_arg(argptr, uint8_t *);
166                 reverse_bytes(ptr, &hci_cmd_buffer[pos], 32);
167                 pos += 32;
168                 break;
169 #endif
170             default:
171                 break;
172         }
173         format++;
174     };
175     hci_cmd_buffer[2] = pos - 3;
176     return pos;
177 }
178 
179 /**
180  *  Link Control Commands
181  */
182 
183 /**
184  * @param lap
185  * @param inquiry_length
186  * @param num_responses
187  */
188 const hci_cmd_t hci_inquiry = {
189 OPCODE(OGF_LINK_CONTROL, 0x01), "311"
190 };
191 
192 /**
193  */
194 const hci_cmd_t hci_inquiry_cancel = {
195 OPCODE(OGF_LINK_CONTROL, 0x02), ""
196 };
197 
198 /**
199  * @param bd_addr
200  * @param packet_type
201  * @param page_scan_repetition_mode
202  * @param reserved
203  * @param clock_offset
204  * @param allow_role_switch
205  */
206 const hci_cmd_t hci_create_connection = {
207 OPCODE(OGF_LINK_CONTROL, 0x05), "B21121"
208 };
209 
210 /**
211  * @param handle
212  * @param reason (0x05, 0x13-0x15, 0x1a, 0x29, see Errors Codes in BT Spec Part D)
213  */
214 const hci_cmd_t hci_disconnect = {
215 OPCODE(OGF_LINK_CONTROL, 0x06), "H1"
216 };
217 
218 /**
219  * @param bd_addr
220  */
221 const hci_cmd_t hci_create_connection_cancel = {
222 OPCODE(OGF_LINK_CONTROL, 0x08), "B"
223 };
224 
225 /**
226  * @param bd_addr
227  * @param role (become master, stay slave)
228  */
229 const hci_cmd_t hci_accept_connection_request = {
230 OPCODE(OGF_LINK_CONTROL, 0x09), "B1"
231 };
232 
233 /**
234  * @param bd_addr
235  * @param reason (e.g. CONNECTION REJECTED DUE TO LIMITED RESOURCES (0x0d))
236  */
237 const hci_cmd_t hci_reject_connection_request = {
238 OPCODE(OGF_LINK_CONTROL, 0x0a), "B1"
239 };
240 
241 /**
242  * @param bd_addr
243  * @param link_key
244  */
245 const hci_cmd_t hci_link_key_request_reply = {
246 OPCODE(OGF_LINK_CONTROL, 0x0b), "BP"
247 };
248 
249 /**
250  * @param bd_addr
251  */
252 const hci_cmd_t hci_link_key_request_negative_reply = {
253 OPCODE(OGF_LINK_CONTROL, 0x0c), "B"
254 };
255 
256 /**
257  * @param bd_addr
258  * @param pin_length
259  * @param pin (c-string)
260  */
261 const hci_cmd_t hci_pin_code_request_reply = {
262 OPCODE(OGF_LINK_CONTROL, 0x0d), "B1P"
263 };
264 
265 /**
266  * @param bd_addr
267  */
268 const hci_cmd_t hci_pin_code_request_negative_reply = {
269 OPCODE(OGF_LINK_CONTROL, 0x0e), "B"
270 };
271 
272 /**
273  * @param handle
274  * @param packet_type
275  */
276 const hci_cmd_t hci_change_connection_packet_type = {
277 OPCODE(OGF_LINK_CONTROL, 0x0f), "H2"
278 };
279 
280 /**
281  * @param handle
282  */
283 const hci_cmd_t hci_authentication_requested = {
284 OPCODE(OGF_LINK_CONTROL, 0x11), "H"
285 };
286 
287 /**
288  * @param handle
289  * @param encryption_enable
290  */
291 const hci_cmd_t hci_set_connection_encryption = {
292 OPCODE(OGF_LINK_CONTROL, 0x13), "H1"
293 };
294 
295 /**
296  * @param handle
297  */
298 const hci_cmd_t hci_change_connection_link_key = {
299 OPCODE(OGF_LINK_CONTROL, 0x15), "H"
300 };
301 
302 /**
303  * @param bd_addr
304  * @param page_scan_repetition_mode
305  * @param reserved
306  * @param clock_offset
307  */
308 const hci_cmd_t hci_remote_name_request = {
309 OPCODE(OGF_LINK_CONTROL, 0x19), "B112"
310 };
311 
312 
313 /**
314  * @param bd_addr
315  */
316 const hci_cmd_t hci_remote_name_request_cancel = {
317 OPCODE(OGF_LINK_CONTROL, 0x1A), "B"
318 };
319 
320  /**
321  * @param handle
322  */
323 const hci_cmd_t hci_read_remote_supported_features_command = {
324 OPCODE(OGF_LINK_CONTROL, 0x1B), "H"
325 };
326 
327 /**
328 * @param handle
329 */
330 const hci_cmd_t hci_read_remote_extended_features_command = {
331         OPCODE(OGF_LINK_CONTROL, 0x1C), "H1"
332 };
333 
334 /**
335  * @param handle
336  */
337 const hci_cmd_t hci_read_remote_version_information = {
338 OPCODE(OGF_LINK_CONTROL, 0x1D), "H"
339 };
340 
341 /**
342  * @param handle
343  * @param transmit_bandwidth 8000(64kbps)
344  * @param receive_bandwidth  8000(64kbps)
345  * @param max_latency        >= 7ms for eSCO, 0xFFFF do not care
346  * @param voice_settings     e.g. CVSD, Input Coding: Linear, Input Data Format: 2’s complement, data 16bit: 00011000000 == 0x60
347  * @param retransmission_effort  e.g. 0xFF do not care
348  * @param packet_type        at least EV3 for eSCO
349  */
350 const hci_cmd_t hci_setup_synchronous_connection = {
351 OPCODE(OGF_LINK_CONTROL, 0x0028), "H442212"
352 };
353 
354 /**
355  * @param bd_addr
356  * @param transmit_bandwidth
357  * @param receive_bandwidth
358  * @param max_latency
359  * @param voice_settings
360  * @param retransmission_effort
361  * @param packet_type
362  */
363 const hci_cmd_t hci_accept_synchronous_connection = {
364 OPCODE(OGF_LINK_CONTROL, 0x0029), "B442212"
365 };
366 
367 /**
368  * @param bd_addr
369  * @param IO_capability
370  * @param OOB_data_present
371  * @param authentication_requirements
372  */
373 const hci_cmd_t hci_io_capability_request_reply = {
374 OPCODE(OGF_LINK_CONTROL, 0x2b), "B111"
375 };
376 
377 /**
378  * @param bd_addr
379  */
380 const hci_cmd_t hci_user_confirmation_request_reply = {
381 OPCODE(OGF_LINK_CONTROL, 0x2c), "B"
382 };
383 
384 /**
385  * @param bd_addr
386  */
387 const hci_cmd_t hci_user_confirmation_request_negative_reply = {
388 OPCODE(OGF_LINK_CONTROL, 0x2d), "B"
389 };
390 
391 /**
392  * @param bd_addr
393  * @param numeric_value
394  */
395 const hci_cmd_t hci_user_passkey_request_reply = {
396 OPCODE(OGF_LINK_CONTROL, 0x2e), "B4"
397 };
398 
399 /**
400  * @param bd_addr
401  */
402 const hci_cmd_t hci_user_passkey_request_negative_reply = {
403 OPCODE(OGF_LINK_CONTROL, 0x2f), "B"
404 };
405 
406 /**
407  * @param bd_addr
408  * @param c Simple Pairing Hash C
409  * @param r Simple Pairing Randomizer R
410  */
411 const hci_cmd_t hci_remote_oob_data_request_reply = {
412 OPCODE(OGF_LINK_CONTROL, 0x30), "BPP"
413 };
414 
415 /**
416  * @param bd_addr
417  */
418 const hci_cmd_t hci_remote_oob_data_request_negative_reply = {
419 OPCODE(OGF_LINK_CONTROL, 0x33), "B"
420 };
421 
422 /**
423  * @param bd_addr
424  * @param reason (Part D, Error codes)
425  */
426 const hci_cmd_t hci_io_capability_request_negative_reply = {
427 OPCODE(OGF_LINK_CONTROL, 0x34), "B1"
428 };
429 
430 /**
431  * @param handle
432  * @param transmit_bandwidth
433  * @param receive_bandwidth
434  * @param transmit_coding_format_type
435  * @param transmit_coding_format_company
436  * @param transmit_coding_format_codec
437  * @param receive_coding_format_type
438  * @param receive_coding_format_company
439  * @param receive_coding_format_codec
440  * @param transmit_coding_frame_size
441  * @param receive_coding_frame_size
442  * @param input_bandwidth
443  * @param output_bandwidth
444  * @param input_coding_format_type
445  * @param input_coding_format_company
446  * @param input_coding_format_codec
447  * @param output_coding_format_type
448  * @param output_coding_format_company
449  * @param output_coding_format_codec
450  * @param input_coded_data_size
451  * @param outupt_coded_data_size
452  * @param input_pcm_data_format
453  * @param output_pcm_data_format
454  * @param input_pcm_sample_payload_msb_position
455  * @param output_pcm_sample_payload_msb_position
456  * @param input_data_path
457  * @param output_data_path
458  * @param input_transport_unit_size
459  * @param output_transport_unit_size
460  * @param max_latency
461  * @param packet_type
462  * @param retransmission_effort
463  */
464 const hci_cmd_t hci_enhanced_setup_synchronous_connection = {
465 OPCODE(OGF_LINK_CONTROL, 0x3d), "H4412212222441221222211111111221"
466 };
467 
468 /**
469  * @param bd_addr
470  * @param transmit_bandwidth
471  * @param receive_bandwidth
472  * @param transmit_coding_format_type
473  * @param transmit_coding_format_company
474  * @param transmit_coding_format_codec
475  * @param receive_coding_format_type
476  * @param receive_coding_format_company
477  * @param receive_coding_format_codec
478  * @param transmit_coding_frame_size
479  * @param receive_coding_frame_size
480  * @param input_bandwidth
481  * @param output_bandwidth
482  * @param input_coding_format_type
483  * @param input_coding_format_company
484  * @param input_coding_format_codec
485  * @param output_coding_format_type
486  * @param output_coding_format_company
487  * @param output_coding_format_codec
488  * @param input_coded_data_size
489  * @param outupt_coded_data_size
490  * @param input_pcm_data_format
491  * @param output_pcm_data_format
492  * @param input_pcm_sample_payload_msb_position
493  * @param output_pcm_sample_payload_msb_position
494  * @param input_data_path
495  * @param output_data_path
496  * @param input_transport_unit_size
497  * @param output_transport_unit_size
498  * @param max_latency
499  * @param packet_type
500  * @param retransmission_effort
501  */
502 const hci_cmd_t hci_enhanced_accept_synchronous_connection = {
503 OPCODE(OGF_LINK_CONTROL, 0x3e), "B4412212222441221222211111111221"
504 };
505 
506 /**
507  *  Link Policy Commands
508  */
509 
510 /**
511  * @param handle
512  * @param sniff_max_interval
513  * @param sniff_min_interval
514  * @param sniff_attempt
515  * @param sniff_timeout
516  */
517 const hci_cmd_t hci_sniff_mode = {
518 OPCODE(OGF_LINK_POLICY, 0x03), "H2222"
519 };
520 
521 /**
522  * @param handle
523  */
524 const hci_cmd_t hci_exit_sniff_mode = {
525 OPCODE(OGF_LINK_POLICY, 0x04), "H"
526 };
527 
528 /**
529  * @param handle
530  * @param flags
531  * @param service_type
532  * @param token_rate (bytes/s)
533  * @param peak_bandwith (bytes/s)
534  * @param latency (us)
535  * @param delay_variation (us)
536  */
537 const hci_cmd_t hci_qos_setup = {
538 OPCODE(OGF_LINK_POLICY, 0x07), "H114444"
539 };
540 
541 /**
542  * @param handle
543  */
544 const hci_cmd_t hci_role_discovery = {
545 OPCODE(OGF_LINK_POLICY, 0x09), "H"
546 };
547 
548 /**
549  * @param bd_addr
550  * @param role (0=master,1=slave)
551  */
552 const hci_cmd_t hci_switch_role_command= {
553 OPCODE(OGF_LINK_POLICY, 0x0b), "B1"
554 };
555 
556 /**
557  * @param handle
558  */
559 const hci_cmd_t hci_read_link_policy_settings = {
560 OPCODE(OGF_LINK_POLICY, 0x0c), "H"
561 };
562 
563 /**
564  * @param handle
565  * @param settings
566  */
567 const hci_cmd_t hci_write_link_policy_settings = {
568 OPCODE(OGF_LINK_POLICY, 0x0d), "H2"
569 };
570 
571 /**
572  * @param policy
573  */
574 const hci_cmd_t hci_write_default_link_policy_setting = {
575     OPCODE(OGF_LINK_POLICY, 0x0F), "2"
576 };
577 
578 
579 /**
580  *  Controller & Baseband Commands
581  */
582 
583 
584 /**
585  * @param event_mask_lover_octets
586  * @param event_mask_higher_octets
587  */
588 const hci_cmd_t hci_set_event_mask = {
589 OPCODE(OGF_CONTROLLER_BASEBAND, 0x01), "44"
590 };
591 
592 /**
593  */
594 const hci_cmd_t hci_reset = {
595 OPCODE(OGF_CONTROLLER_BASEBAND, 0x03), ""
596 };
597 
598 /**
599  * @param handle
600  */
601 const hci_cmd_t hci_flush = {
602 OPCODE(OGF_CONTROLLER_BASEBAND, 0x08), "H"
603 };
604 
605 /**
606  * @param handle
607  */
608 const hci_cmd_t hci_read_pin_type = {
609 OPCODE(OGF_CONTROLLER_BASEBAND, 0x09), ""
610 };
611 
612 /**
613  * @param handle
614  */
615 const hci_cmd_t hci_write_pin_type = {
616 OPCODE(OGF_CONTROLLER_BASEBAND, 0x0A), "1"
617 };
618 
619 /**
620  * @param bd_addr
621  * @param delete_all_flags
622  */
623 const hci_cmd_t hci_delete_stored_link_key = {
624 OPCODE(OGF_CONTROLLER_BASEBAND, 0x12), "B1"
625 };
626 
627 #ifdef ENABLE_CLASSIC
628 /**
629  * @param local_name (UTF-8, Null Terminated, max 248 octets)
630  */
631 const hci_cmd_t hci_write_local_name = {
632 OPCODE(OGF_CONTROLLER_BASEBAND, 0x13), "N"
633 };
634 #endif
635 
636 /**
637  */
638 const hci_cmd_t hci_read_local_name = {
639 OPCODE(OGF_CONTROLLER_BASEBAND, 0x14), ""
640 };
641 
642 /**
643  */
644 const hci_cmd_t hci_read_page_timeout = {
645 OPCODE(OGF_CONTROLLER_BASEBAND, 0x17), ""
646 };
647 
648 /**
649  * @param page_timeout (* 0.625 ms)
650  */
651 const hci_cmd_t hci_write_page_timeout = {
652 OPCODE(OGF_CONTROLLER_BASEBAND, 0x18), "2"
653 };
654 
655 /**
656  * @param scan_enable (no, inq, page, inq+page)
657  */
658 const hci_cmd_t hci_write_scan_enable = {
659 OPCODE(OGF_CONTROLLER_BASEBAND, 0x1A), "1"
660 };
661 
662 /**
663  */
664 const hci_cmd_t hci_read_page_scan_activity = {
665 OPCODE(OGF_CONTROLLER_BASEBAND, 0x1B), ""
666 };
667 
668 /**
669  * @param page_scan_interval (* 0.625 ms)
670  * @param page_scan_window (* 0.625 ms, must be <= page_scan_interval)
671  */
672 const hci_cmd_t hci_write_page_scan_activity = {
673 OPCODE(OGF_CONTROLLER_BASEBAND, 0x1C), "22"
674 };
675 
676 /**
677  */
678 const hci_cmd_t hci_read_inquiry_scan_activity = {
679 OPCODE(OGF_CONTROLLER_BASEBAND, 0x1D), ""
680 };
681 
682 /**
683  * @param inquiry_scan_interval (* 0.625 ms)
684  * @param inquiry_scan_window (* 0.625 ms, must be <= inquiry_scan_interval)
685  */
686 const hci_cmd_t hci_write_inquiry_scan_activity = {
687 OPCODE(OGF_CONTROLLER_BASEBAND, 0x1E), "22"
688 };
689 
690 /**
691  * @param authentication_enable
692  */
693 const hci_cmd_t hci_write_authentication_enable = {
694 OPCODE(OGF_CONTROLLER_BASEBAND, 0x20), "1"
695 };
696 
697 /**
698  * @param class_of_device
699  */
700 const hci_cmd_t hci_write_class_of_device = {
701 OPCODE(OGF_CONTROLLER_BASEBAND, 0x24), "3"
702 };
703 
704 /**
705  */
706 const hci_cmd_t hci_read_num_broadcast_retransmissions = {
707 OPCODE(OGF_CONTROLLER_BASEBAND, 0x29), ""
708 };
709 
710 /**
711  * @param num_broadcast_retransmissions (e.g. 0 for a single broadcast)
712  */
713 const hci_cmd_t hci_write_num_broadcast_retransmissions = {
714 OPCODE(OGF_CONTROLLER_BASEBAND, 0x2a), "1"
715 };
716 
717 /**
718  * @param connection_handle
719  * @param type 0 = current transmit level, 1 = max transmit level
720  */
721 const hci_cmd_t hci_read_transmit_power_level = {
722 OPCODE(OGF_CONTROLLER_BASEBAND, 0x2D), "11"
723 };
724 
725 /**
726  * @param synchronous_flow_control_enable - if yes, num completed packet everts are sent for SCO packets
727  */
728 const hci_cmd_t hci_write_synchronous_flow_control_enable = {
729 OPCODE(OGF_CONTROLLER_BASEBAND, 0x2f), "1"
730 };
731 
732 #ifdef ENABLE_HCI_CONTROLLER_TO_HOST_FLOW_CONTROL
733 
734 /**
735  * @param flow_control_enable - 0: off, 1: ACL only, 2: SCO only, 3: ACL + SCO
736  */
737 const hci_cmd_t hci_set_controller_to_host_flow_control = {
738 OPCODE(OGF_CONTROLLER_BASEBAND, 0x31), "1"
739 };
740 
741 /**
742  * @param host_acl_data_packet_length
743  * @param host_synchronous_data_packet_length
744  * @param host_total_num_acl_data_packets
745  * @param host_total_num_synchronous_data_packets
746  */
747 const hci_cmd_t hci_host_buffer_size = {
748 OPCODE(OGF_CONTROLLER_BASEBAND, 0x33), "2122"
749 };
750 
751 
752 #if 0
753 //
754 // command sent manually sent by hci_host_num_completed_packets
755 //
756 /**
757  * @note only single handle supported by BTstack command generator
758  * @param number_of_handles must be 1
759  * @param connection_handle
760  * @param host_num_of_completed_packets for the given connection handle
761  */
762 const hci_cmd_t hci_host_number_of_completed_packets = {
763 OPCODE(OGF_CONTROLLER_BASEBAND, 0x35), "1H2"
764 };
765 #endif
766 
767 #endif
768 
769 /**
770  * @param handle
771  */
772 const hci_cmd_t hci_read_link_supervision_timeout = {
773 OPCODE(OGF_CONTROLLER_BASEBAND, 0x36), "H"
774 };
775 
776 /**
777  * @param handle
778  * @param timeout (0x0001 - 0xFFFF Time -> Range: 0.625ms - 40.9 sec)
779  */
780 const hci_cmd_t hci_write_link_supervision_timeout = {
781 OPCODE(OGF_CONTROLLER_BASEBAND, 0x37), "H2"
782 };
783 
784 /**
785  * @param num_current_iac must be 2
786  * @param iac_lap1
787  * @param iac_lap2
788  */
789 const hci_cmd_t hci_write_current_iac_lap_two_iacs = {
790 OPCODE(OGF_CONTROLLER_BASEBAND, 0x3A), "133"
791 };
792 
793 /**
794  * @param inquiry_mode (0x00 = standard, 0x01 = with RSSI, 0x02 = extended)
795  */
796 const hci_cmd_t hci_write_inquiry_mode = {
797 OPCODE(OGF_CONTROLLER_BASEBAND, 0x45), "1"
798 };
799 
800 /**
801  * @param fec_required
802  * @param exstended_inquiry_response
803  */
804 const hci_cmd_t hci_write_extended_inquiry_response = {
805 OPCODE(OGF_CONTROLLER_BASEBAND, 0x52), "1E"
806 };
807 
808 /**
809  * @param mode (0 = off, 1 = on)
810  */
811 const hci_cmd_t hci_write_simple_pairing_mode = {
812 OPCODE(OGF_CONTROLLER_BASEBAND, 0x56), "1"
813 };
814 
815 /**
816  */
817 const hci_cmd_t hci_read_local_oob_data = {
818 OPCODE(OGF_CONTROLLER_BASEBAND, 0x57), ""
819 // return status, C, R
820 };
821 
822 /**
823  * @param mode (0 = off, 1 = on)
824  */
825 const hci_cmd_t hci_write_default_erroneous_data_reporting = {
826 OPCODE(OGF_CONTROLLER_BASEBAND, 0x5B), "1"
827 };
828 
829 /**
830  */
831 const hci_cmd_t hci_read_le_host_supported = {
832 OPCODE(OGF_CONTROLLER_BASEBAND, 0x6c), ""
833 // return: status, le supported host, simultaneous le host
834 };
835 
836 /**
837  * @param le_supported_host
838  * @param simultaneous_le_host
839  */
840 const hci_cmd_t hci_write_le_host_supported = {
841 OPCODE(OGF_CONTROLLER_BASEBAND, 0x6d), "11"
842 // return: status
843 };
844 
845 /**
846  */
847 const hci_cmd_t hci_read_local_extended_ob_data = {
848 OPCODE(OGF_CONTROLLER_BASEBAND, 0x7d), ""
849 // return status, C_192, R_192, R_256, C_256
850 };
851 
852 
853 /**
854  * Testing Commands
855  */
856 
857 
858 /**
859  */
860 const hci_cmd_t hci_read_loopback_mode = {
861 OPCODE(OGF_TESTING, 0x01), ""
862 // return: status, loopback mode (0 = off, 1 = local loopback, 2 = remote loopback)
863 };
864 
865 /**
866  * @param loopback_mode
867  */
868 const hci_cmd_t hci_write_loopback_mode = {
869 OPCODE(OGF_TESTING, 0x02), "1"
870 // return: status
871 };
872 
873 /**
874  */
875 const hci_cmd_t hci_enable_device_under_test_mode = {
876 OPCODE(OGF_TESTING, 0x03), ""
877 // return: status
878 };
879 
880 /**
881  * @param simple_pairing_debug_mode
882  */
883 const hci_cmd_t hci_write_simple_pairing_debug_mode = {
884 OPCODE(OGF_TESTING, 0x04), "1"
885 // return: status
886 };
887 
888 /**
889  * @param handle
890  * @param dm1_acl_u_mode
891  * @param esco_loopback_mode
892  */
893 const hci_cmd_t hci_write_secure_connections_test_mode = {
894 OPCODE(OGF_TESTING, 0x0a), "H11"
895 // return: status
896 };
897 
898 
899 /**
900  * Informational Parameters
901  */
902 
903 const hci_cmd_t hci_read_local_version_information = {
904 OPCODE(OGF_INFORMATIONAL_PARAMETERS, 0x01), ""
905 };
906 const hci_cmd_t hci_read_local_supported_commands = {
907 OPCODE(OGF_INFORMATIONAL_PARAMETERS, 0x02), ""
908 };
909 const hci_cmd_t hci_read_local_supported_features = {
910 OPCODE(OGF_INFORMATIONAL_PARAMETERS, 0x03), ""
911 };
912 const hci_cmd_t hci_read_buffer_size = {
913 OPCODE(OGF_INFORMATIONAL_PARAMETERS, 0x05), ""
914 };
915 const hci_cmd_t hci_read_bd_addr = {
916 OPCODE(OGF_INFORMATIONAL_PARAMETERS, 0x09), ""
917 };
918 
919 /**
920  * Status Paramters
921  */
922 
923 /**
924  * @param handle
925  */
926 const hci_cmd_t hci_read_rssi = {
927 OPCODE(OGF_STATUS_PARAMETERS, 0x05), "H"
928 };
929 
930 /**
931  * @param handle
932  */
933 const hci_cmd_t hci_read_encryption_key_size = {
934 OPCODE(OGF_STATUS_PARAMETERS, 0x08), "H"
935 };
936 
937 
938 #ifdef ENABLE_BLE
939 /**
940  * Low Energy Commands
941  */
942 
943 /**
944  * @param event_mask_lower_octets
945  * @param event_mask_higher_octets
946  */
947 const hci_cmd_t hci_le_set_event_mask = {
948 OPCODE(OGF_LE_CONTROLLER, 0x01), "44"
949 // return: status
950 };
951 
952 const hci_cmd_t hci_le_read_buffer_size = {
953 OPCODE(OGF_LE_CONTROLLER, 0x02), ""
954 // return: status, le acl data packet len (16), total num le acl data packets(8)
955 };
956 const hci_cmd_t hci_le_read_supported_features = {
957 OPCODE(OGF_LE_CONTROLLER, 0x03), ""
958 // return: LE_Features See [Vol 6] Part B, Section 4.6
959 };
960 
961 /**
962  * @param random_bd_addr
963  */
964 const hci_cmd_t hci_le_set_random_address = {
965 OPCODE(OGF_LE_CONTROLLER, 0x05), "B"
966 // return: status
967 };
968 
969 /**
970  * @param advertising_interval_min ([0x0020,0x4000], default: 0x0800, unit: 0.625 msec)
971  * @param advertising_interval_max ([0x0020,0x4000], default: 0x0800, unit: 0.625 msec)
972  * @param advertising_type (enum from 0: ADV_IND, ADC_DIRECT_IND, ADV_SCAN_IND, ADV_NONCONN_IND)
973  * @param own_address_type (enum from 0: public device address, random device address)
974  * @param direct_address_type ()
975  * @param direct_address (public or random address of device to be connecteed)
976  * @param advertising_channel_map (flags: chan_37(1), chan_38(2), chan_39(4))
977  * @param advertising_filter_policy (enum from 0: scan any conn any, scan whitelist, con any, scan any conn whitelist, scan whitelist, con whitelist)
978  */
979 const hci_cmd_t hci_le_set_advertising_parameters = {
980 OPCODE(OGF_LE_CONTROLLER, 0x06), "22111B11"
981 // return: status
982 };
983 
984 const hci_cmd_t hci_le_read_advertising_channel_tx_power = {
985 OPCODE(OGF_LE_CONTROLLER, 0x07), ""
986 // return: status, level [-20,10] signed int (8), units dBm
987 };
988 
989 /**
990  * @param advertising_data_length
991  * @param advertising_data (31 bytes)
992  */
993 const hci_cmd_t hci_le_set_advertising_data= {
994 OPCODE(OGF_LE_CONTROLLER, 0x08), "1A"
995 // return: status
996 };
997 
998 /**
999  * @param scan_response_data_length
1000  * @param scan_response_data (31 bytes)
1001  */
1002 const hci_cmd_t hci_le_set_scan_response_data= {
1003 OPCODE(OGF_LE_CONTROLLER, 0x09), "1A"
1004 // return: status
1005 };
1006 
1007 /**
1008  * @param advertise_enable (off: 0, on: 1)
1009  */
1010 const hci_cmd_t hci_le_set_advertise_enable = {
1011 OPCODE(OGF_LE_CONTROLLER, 0x0a), "1"
1012 // return: status
1013 };
1014 
1015 /**
1016  * @param le_scan_type (passive (0), active (1))
1017  * @param le_scan_interval ([0x0004,0x4000], unit: 0.625 msec)
1018  * @param le_scan_window   ([0x0004,0x4000], unit: 0.625 msec)
1019  * @param own_address_type (public (0), random (1))
1020  * @param scanning_filter_policy (any (0), only whitelist (1))
1021  */
1022 const hci_cmd_t hci_le_set_scan_parameters = {
1023 OPCODE(OGF_LE_CONTROLLER, 0x0b), "12211"
1024 // return: status
1025 };
1026 
1027 /**
1028  * @param le_scan_enable  (disabled (0), enabled (1))
1029  * @param filter_duplices (disabled (0), enabled (1))
1030  */
1031 const hci_cmd_t hci_le_set_scan_enable = {
1032 OPCODE(OGF_LE_CONTROLLER, 0x0c), "11"
1033 // return: status
1034 };
1035 
1036 /**
1037  * @param le_scan_interval ([0x0004, 0x4000], unit: 0.625 msec)
1038  * @param le_scan_window ([0x0004, 0x4000], unit: 0.625 msec)
1039  * @param initiator_filter_policy (peer address type + peer address (0), whitelist (1))
1040  * @param peer_address_type (public (0), random (1))
1041  * @param peer_address
1042  * @param own_address_type (public (0), random (1))
1043  * @param conn_interval_min ([0x0006, 0x0c80], unit: 1.25 msec)
1044  * @param conn_interval_max ([0x0006, 0x0c80], unit: 1.25 msec)
1045  * @param conn_latency (number of connection events [0x0000, 0x01f4])
1046  * @param supervision_timeout ([0x000a, 0x0c80], unit: 10 msec)
1047  * @param minimum_CE_length ([0x0000, 0xffff], unit: 0.625 msec)
1048  * @param maximum_CE_length ([0x0000, 0xffff], unit: 0.625 msec)
1049  */
1050 const hci_cmd_t hci_le_create_connection= {
1051 OPCODE(OGF_LE_CONTROLLER, 0x0d), "2211B1222222"
1052 // return: none -> le create connection complete event
1053 };
1054 
1055 const hci_cmd_t hci_le_create_connection_cancel = {
1056 OPCODE(OGF_LE_CONTROLLER, 0x0e), ""
1057 // return: status
1058 };
1059 
1060 const hci_cmd_t hci_le_read_white_list_size = {
1061 OPCODE(OGF_LE_CONTROLLER, 0x0f), ""
1062 // return: status, number of entries in controller whitelist
1063 };
1064 
1065 const hci_cmd_t hci_le_clear_white_list = {
1066 OPCODE(OGF_LE_CONTROLLER, 0x10), ""
1067 // return: status
1068 };
1069 
1070 /**
1071  * @param address_type (public (0), random (1))
1072  * @param bd_addr
1073  */
1074 const hci_cmd_t hci_le_add_device_to_white_list = {
1075 OPCODE(OGF_LE_CONTROLLER, 0x11), "1B"
1076 // return: status
1077 };
1078 
1079 /**
1080  * @param address_type (public (0), random (1))
1081  * @param bd_addr
1082  */
1083 const hci_cmd_t hci_le_remove_device_from_white_list = {
1084 OPCODE(OGF_LE_CONTROLLER, 0x12), "1B"
1085 // return: status
1086 };
1087 
1088 /**
1089  * @param conn_handle
1090  * @param conn_interval_min ([0x0006,0x0c80], unit: 1.25 msec)
1091  * @param conn_interval_max ([0x0006,0x0c80], unit: 1.25 msec)
1092  * @param conn_latency ([0x0000,0x03e8], number of connection events)
1093  * @param supervision_timeout ([0x000a,0x0c80], unit: 10 msec)
1094  * @param minimum_CE_length ([0x0000,0xffff], unit: 0.625 msec)
1095  * @param maximum_CE_length ([0x0000,0xffff], unit: 0.625 msec)
1096  */
1097 const hci_cmd_t hci_le_connection_update = {
1098 OPCODE(OGF_LE_CONTROLLER, 0x13), "H222222"
1099 // return: none -> le connection update complete event
1100 };
1101 
1102 /**
1103  * @param channel_map_lower_32bits
1104  * @param channel_map_higher_5bits
1105  */
1106 const hci_cmd_t hci_le_set_host_channel_classification = {
1107 OPCODE(OGF_LE_CONTROLLER, 0x14), "41"
1108 // return: status
1109 };
1110 
1111 /**
1112  * @param conn_handle
1113  */
1114 const hci_cmd_t hci_le_read_channel_map = {
1115 OPCODE(OGF_LE_CONTROLLER, 0x15), "H"
1116 // return: status, connection handle, channel map (5 bytes, 37 used)
1117 };
1118 
1119 /**
1120  * @param conn_handle
1121  */
1122 const hci_cmd_t hci_le_read_remote_used_features = {
1123 OPCODE(OGF_LE_CONTROLLER, 0x16), "H"
1124 // return: none -> le read remote used features complete event
1125 };
1126 
1127 /**
1128  * @param key ((128) for AES-128)
1129  * @param plain_text (128)
1130  */
1131 const hci_cmd_t hci_le_encrypt = {
1132 OPCODE(OGF_LE_CONTROLLER, 0x17), "PP"
1133 // return: status, encrypted data (128)
1134 };
1135 
1136 const hci_cmd_t hci_le_rand = {
1137 OPCODE(OGF_LE_CONTROLLER, 0x18), ""
1138 // return: status, random number (64)
1139 };
1140 
1141 /**
1142  * @param conn_handle
1143  * @param random_number_lower_32bits
1144  * @param random_number_higher_32bits
1145  * @param encryption_diversifier (16)
1146  * @param long_term_key (128)
1147  */
1148 const hci_cmd_t hci_le_start_encryption = {
1149 OPCODE(OGF_LE_CONTROLLER, 0x19), "H442P"
1150 // return: none -> encryption changed or encryption key refresh complete event
1151 };
1152 
1153 /**
1154  * @param connection_handle
1155  * @param long_term_key (128)
1156  */
1157 const hci_cmd_t hci_le_long_term_key_request_reply = {
1158 OPCODE(OGF_LE_CONTROLLER, 0x1a), "HP"
1159 // return: status, connection handle
1160 };
1161 
1162 /**
1163  * @param conn_handle
1164  */
1165 const hci_cmd_t hci_le_long_term_key_negative_reply = {
1166 OPCODE(OGF_LE_CONTROLLER, 0x1b), "H"
1167 // return: status, connection handle
1168 };
1169 
1170 /**
1171  * @param conn_handle
1172  */
1173 const hci_cmd_t hci_le_read_supported_states = {
1174 OPCODE(OGF_LE_CONTROLLER, 0x1c), "H"
1175 // return: status, LE states (64)
1176 };
1177 
1178 /**
1179  * @param rx_frequency ([0x00 0x27], frequency (MHz): 2420 + N*2)
1180  */
1181 const hci_cmd_t hci_le_receiver_test = {
1182 OPCODE(OGF_LE_CONTROLLER, 0x1d), "1"
1183 // return: status
1184 };
1185 
1186 /**
1187  * @param tx_frequency ([0x00 0x27], frequency (MHz): 2420 + N*2)
1188  * @param test_payload_lengh ([0x00,0x25])
1189  * @param packet_payload ([0,7] different patterns)
1190  */
1191 const hci_cmd_t hci_le_transmitter_test = {
1192 OPCODE(OGF_LE_CONTROLLER, 0x1e), "111"
1193 // return: status
1194 };
1195 
1196 /**
1197  * @param end_test_cmd
1198  */
1199 const hci_cmd_t hci_le_test_end = {
1200 OPCODE(OGF_LE_CONTROLLER, 0x1f), "1"
1201 // return: status, number of packets (8)
1202 };
1203 
1204 /**
1205  * @param conn_handle
1206  * @param conn_interval_min ([0x0006,0x0c80], unit: 1.25 msec)
1207  * @param conn_interval_max ([0x0006,0x0c80], unit: 1.25 msec)
1208  * @param conn_latency ([0x0000,0x03e8], number of connection events)
1209  * @param supervision_timeout ([0x000a,0x0c80], unit: 10 msec)
1210  * @param minimum_CE_length ([0x0000,0xffff], unit: 0.625 msec)
1211  * @param maximum_CE_length ([0x0000,0xffff], unit: 0.625 msec)
1212  */
1213 const hci_cmd_t hci_le_remote_connection_parameter_request_reply = {
1214 OPCODE(OGF_LE_CONTROLLER, 0x20), "H222222"
1215 // return: status, connection handle
1216 };
1217 
1218 /**
1219  * @param con_handle
1220  * @param reason
1221  */
1222 const hci_cmd_t hci_le_remote_connection_parameter_request_negative_reply = {
1223 OPCODE(OGF_LE_CONTROLLER, 0x21), "H1"
1224 // return: status, connection handle
1225 };
1226 
1227 /**
1228  * @param con_handle
1229  * @param tx_octets
1230  * @param tx_time
1231  */
1232 const hci_cmd_t hci_le_set_data_length = {
1233 OPCODE(OGF_LE_CONTROLLER, 0x22), "H22"
1234 // return: status, connection handle
1235 };
1236 
1237 /**
1238  */
1239 const hci_cmd_t hci_le_read_suggested_default_data_length = {
1240 OPCODE(OGF_LE_CONTROLLER, 0x23), ""
1241 // return: status, suggested max tx octets, suggested max tx time
1242 };
1243 
1244 /**
1245  * @param suggested_max_tx_octets
1246  * @param suggested_max_tx_time
1247  */
1248 const hci_cmd_t hci_le_write_suggested_default_data_length = {
1249 OPCODE(OGF_LE_CONTROLLER, 0x24), "22"
1250 // return: status
1251 };
1252 
1253 /**
1254  */
1255 const hci_cmd_t hci_le_read_local_p256_public_key = {
1256 OPCODE(OGF_LE_CONTROLLER, 0x25), ""
1257 //  LE Read Local P-256 Public Key Complete is generated on completion
1258 };
1259 
1260 /**
1261  * @param public key
1262  * @param private key
1263  */
1264 const hci_cmd_t hci_le_generate_dhkey = {
1265 OPCODE(OGF_LE_CONTROLLER, 0x26), "QQ"
1266 // LE Generate DHKey Complete is generated on completion
1267 };
1268 
1269 /**
1270  */
1271 const hci_cmd_t hci_le_read_maximum_data_length = {
1272 OPCODE(OGF_LE_CONTROLLER, 0x2F), ""
1273 // return: status, supported max tx octets, supported max tx time, supported max rx octets, supported max rx time
1274 };
1275 
1276 /**
1277  * @param con_handle
1278  */
1279 const hci_cmd_t hci_le_read_phy = {
1280 OPCODE(OGF_LE_CONTROLLER, 0x30), "H"
1281 // return: status, connection handler, tx phy, rx phy
1282 };
1283 
1284 /**
1285  * @param all_phys
1286  * @param tx_phys
1287  * @param rx_phys
1288  */
1289 const hci_cmd_t hci_le_set_default_phy = {
1290 OPCODE(OGF_LE_CONTROLLER, 0x31), "111"
1291 // return: status
1292 };
1293 
1294 /**
1295  * @param con_handle
1296  * @param all_phys
1297  * @param tx_phys
1298  * @param rx_phys
1299  * @param phy_options
1300  */
1301 const hci_cmd_t hci_le_set_phy = {
1302 OPCODE(OGF_LE_CONTROLLER, 0x32), "H1111"
1303 // LE PHY Update Complete is generated on completion
1304 };
1305 
1306 
1307 #endif
1308 
1309 // Broadcom / Cypress specific HCI commands
1310 
1311 /**
1312  * @brief Configure SCO Routing (BCM)
1313  * @param sco_routing is 0 for PCM, 1 for Transport, 2 for Codec and 3 for I2S
1314  * @param pcm_interface_rate is 0 for 128KBps, 1 for 256 KBps, 2 for 512KBps, 3 for 1024KBps, and 4 for 2048Kbps
1315  * @param frame_type is 0 for short and 1 for long
1316  * @param sync_mode is 0 for slave and 1 for master
1317  * @param clock_mode is 0 for slabe and 1 for master
1318  */
1319 const hci_cmd_t hci_bcm_write_sco_pcm_int = {
1320 OPCODE(0x3f, 0x1c), "11111"
1321 // return: status
1322 };
1323 
1324 /**
1325  * @brief Activates selected Sleep Mode
1326  * @param sleep_mode: 0=no sleep, 1=UART, 2=UART with Messaging, 3=USB, 4=H4IBSS, USB with Host Wake, 6=SDIO, 7=UART CS-N, 8=SPI, 9=H5, 10=H4DS, 12=UART with BREAK
1327  * @param idle_threshold_host (modes 1,2,5,7) time until considered idle, unit roughly 300 ms
1328  * @param idle_threshold_controller (modes 1-7,9) time until considered idle, unit roughly 300 ms
1329  * @param bt_wake_active_mode (modes 1,2,7) 0 = BT_WAKE line is active high, 1 = BT_WAKE is active low
1330  * @param host_wake_active_mode (modes 1,2,5,7) 0 = HOST_WAKE line is active high, 1 = HOST_WAKE is active low
1331  * @param allow_host_sleep_during_sco (modes 1,2,3,5,7)
1332  * @param combine_sleep_mode_and_lpm  (modes 1,2,3,5,7)
1333  * @param enable_tristate_control_of_uart_tx_line (modes 1,2,7)
1334  * @param active_connection_handling_on_suspend (modes 3,5)
1335  * @param resume_timeout (modes 3,5)
1336  * @param enable_break_to_host (mode 12)
1337  * @param pulsed_host_wake (modes 1,12)
1338  */
1339 const hci_cmd_t hci_bcm_set_sleep_mode = {
1340 OPCODE(0x3f, 0x0027), "111111111111"
1341 };
1342 
1343 /**
1344  * @brief Set TX Power Table
1345  * @param is_le 0=classic, 1=LE
1346  * @param chip_max_tx_pwr_db chip level max TX power in dBM
1347  */
1348 const hci_cmd_t hci_bcm_write_tx_power_table = {
1349 OPCODE(0x3f, 0x1C9), "11"
1350 };
1351 
1352 const hci_cmd_t hci_bcm_set_tx_pwr = {
1353 OPCODE(0x3f, 0x1A5), "11H"
1354 };
1355 
1356 /**
1357  *
1358  *
1359  * @brief This command tests the RF transceiver in continuous transmission mode.
1360  *        The transmitter is activated by configuring the transmission parameters such as pattern,
1361  *        modulation, and frequency.
1362  * @see   processors.wiki.ti.com/index.php/CC256x_VS_HCI_Commands#HCI_VS_DRPb_Tester_Con_TX.280xFD84.29
1363  * @param modulation
1364  * @param test_patern
1365  * @param frequency
1366  * @param power_level
1367  * @param reserved1
1368  * @param reserved2
1369  */
1370 const hci_cmd_t hci_ti_drpb_tester_con_tx = {
1371     0xFD84, "111144"
1372 };
1373 
1374 /**
1375  * @brief This command starts sending/receiving packets using packet transmission parameters such as
1376  *        frequency channel, packet type, and packet length. It is used for Packet TX/RX.
1377  * @see   processors.wiki.ti.com/index.php/CC256x_VS_HCI_Commands#HCI_VS_DRPb_Tester_Packet_TX_RX_.280xFD85.29
1378  * @param frequency_mode
1379  * @param tx_single_frequency
1380  * @param rx_single_frequency
1381  * @param acl_packet_type
1382  * @paarm acl_packet_data_pattern
1383  * @param reserved
1384  * @param power_level
1385  * @param disable_whitening
1386  * @param prbs9_initialization_value
1387  */
1388 const hci_cmd_t hci_ti_drpb_tester_packet_tx_rx = {
1389     0xFD85, "1111112112"
1390 };
1391 
1392