xref: /btstack/src/l2cap.c (revision e7d0c9aab834c5a14330aa3fd0c5828b790415cf)
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 /*
39  *  l2cap.c
40  *
41  *  Logical Link Control and Adaption Protocl (L2CAP)
42  *
43  *  Created by Matthias Ringwald on 5/16/09.
44  */
45 
46 #include "l2cap.h"
47 #include "hci.h"
48 #include "hci_dump.h"
49 #include "btstack_debug.h"
50 #include "btstack_event.h"
51 #include "btstack_memory.h"
52 
53 #include <stdarg.h>
54 #include <string.h>
55 
56 #include <stdio.h>
57 
58 // nr of buffered acl packets in outgoing queue to get max performance
59 #define NR_BUFFERED_ACL_PACKETS 3
60 
61 // used to cache l2cap rejects, echo, and informational requests
62 #define NR_PENDING_SIGNALING_RESPONSES 3
63 
64 // offsets for L2CAP SIGNALING COMMANDS
65 #define L2CAP_SIGNALING_COMMAND_CODE_OFFSET   0
66 #define L2CAP_SIGNALING_COMMAND_SIGID_OFFSET  1
67 #define L2CAP_SIGNALING_COMMAND_LENGTH_OFFSET 2
68 #define L2CAP_SIGNALING_COMMAND_DATA_OFFSET   4
69 
70 // internal table
71 #define L2CAP_FIXED_CHANNEL_TABLE_INDEX_ATTRIBUTE_PROTOCOL 0
72 #define L2CAP_FIXED_CHANNEL_TABLE_INDEX_SECURITY_MANAGER_PROTOCOL  1
73 #define L2CAP_FIXED_CHANNEL_TABLE_INDEX_CONNECTIONLESS_CHANNEL 2
74 #define L2CAP_FIXED_CHANNEL_TABLE_SIZE (L2CAP_FIXED_CHANNEL_TABLE_INDEX_CONNECTIONLESS_CHANNEL+1)
75 
76 // prototypes
77 static void l2cap_finialize_channel_close(l2cap_channel_t *channel);
78 static inline l2cap_service_t * l2cap_get_service(uint16_t psm);
79 static void l2cap_emit_channel_opened(l2cap_channel_t *channel, uint8_t status);
80 static void l2cap_emit_can_send_now(btstack_packet_handler_t packet_handler, uint16_t channel);
81 static void l2cap_emit_channel_closed(l2cap_channel_t *channel);
82 static void l2cap_emit_connection_request(l2cap_channel_t *channel);
83 static int  l2cap_channel_ready_for_open(l2cap_channel_t *channel);
84 static void l2cap_hci_event_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size);
85 static void l2cap_acl_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size );
86 static void l2cap_notify_channel_can_send(void);
87 #ifdef ENABLE_BLE
88 static inline l2cap_service_t * l2cap_le_get_service(uint16_t psm);
89 #endif
90 
91 typedef struct l2cap_fixed_channel {
92     btstack_packet_handler_t callback;
93     uint8_t waiting_for_can_send_now;
94 } l2cap_fixed_channel_t;
95 
96 static btstack_linked_list_t l2cap_channels;
97 static btstack_linked_list_t l2cap_services;
98 static btstack_linked_list_t l2cap_le_channels;
99 static btstack_linked_list_t l2cap_le_services;
100 
101 // used to cache l2cap rejects, echo, and informational requests
102 static l2cap_signaling_response_t signaling_responses[NR_PENDING_SIGNALING_RESPONSES];
103 static int signaling_responses_pending;
104 
105 static uint8_t require_security_level2_for_outgoing_sdp;
106 
107 static btstack_packet_callback_registration_t hci_event_callback_registration;
108 
109 static btstack_packet_handler_t l2cap_event_packet_handler;
110 static l2cap_fixed_channel_t fixed_channels[L2CAP_FIXED_CHANNEL_TABLE_SIZE];
111 
112 static uint16_t l2cap_fixed_channel_table_channel_id_for_index(int index){
113     switch (index){
114         case L2CAP_FIXED_CHANNEL_TABLE_INDEX_ATTRIBUTE_PROTOCOL:
115             return L2CAP_CID_ATTRIBUTE_PROTOCOL;
116         case L2CAP_FIXED_CHANNEL_TABLE_INDEX_SECURITY_MANAGER_PROTOCOL:
117             return L2CAP_CID_SECURITY_MANAGER_PROTOCOL;
118         case L2CAP_FIXED_CHANNEL_TABLE_INDEX_CONNECTIONLESS_CHANNEL:
119             return L2CAP_CID_CONNECTIONLESS_CHANNEL;
120         default:
121             return 0;
122     }
123 }
124 static int l2cap_fixed_channel_table_index_for_channel_id(uint16_t channel_id){
125     switch (channel_id){
126         case L2CAP_CID_ATTRIBUTE_PROTOCOL:
127             return L2CAP_FIXED_CHANNEL_TABLE_INDEX_ATTRIBUTE_PROTOCOL;
128         case L2CAP_CID_SECURITY_MANAGER_PROTOCOL:
129             return  L2CAP_FIXED_CHANNEL_TABLE_INDEX_SECURITY_MANAGER_PROTOCOL;
130         case L2CAP_CID_CONNECTIONLESS_CHANNEL:
131             return  L2CAP_FIXED_CHANNEL_TABLE_INDEX_CONNECTIONLESS_CHANNEL;
132         default:
133             return -1;
134         }
135 }
136 
137 static int l2cap_fixed_channel_table_index_is_le(int index){
138     if (index == L2CAP_CID_CONNECTIONLESS_CHANNEL) return 0;
139     return 1;
140 }
141 
142 void l2cap_init(void){
143     signaling_responses_pending = 0;
144 
145     l2cap_channels = NULL;
146     l2cap_services = NULL;
147     l2cap_le_services = NULL;
148     l2cap_le_channels = NULL;
149 
150     l2cap_event_packet_handler = NULL;
151     memset(fixed_channels, 0, sizeof(fixed_channels));
152 
153     require_security_level2_for_outgoing_sdp = 0;
154 
155     //
156     // register callback with HCI
157     //
158     hci_event_callback_registration.callback = &l2cap_hci_event_handler;
159     hci_add_event_handler(&hci_event_callback_registration);
160 
161     hci_register_acl_packet_handler(&l2cap_acl_handler);
162 
163     gap_connectable_control(0); // no services yet
164 }
165 
166 void l2cap_register_packet_handler(void (*handler)(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size)){
167     l2cap_event_packet_handler = handler;
168 }
169 
170 static void l2cap_dispatch_to_channel(l2cap_channel_t *channel, uint8_t type, uint8_t * data, uint16_t size){
171     (* (channel->packet_handler))(type, channel->local_cid, data, size);
172 }
173 
174 void l2cap_emit_channel_opened(l2cap_channel_t *channel, uint8_t status) {
175     log_info("L2CAP_EVENT_CHANNEL_OPENED status 0x%x addr %s handle 0x%x psm 0x%x local_cid 0x%x remote_cid 0x%x local_mtu %u, remote_mtu %u, flush_timeout %u",
176              status, bd_addr_to_str(channel->address), channel->con_handle, channel->psm,
177              channel->local_cid, channel->remote_cid, channel->local_mtu, channel->remote_mtu, channel->flush_timeout);
178     uint8_t event[23];
179     event[0] = L2CAP_EVENT_CHANNEL_OPENED;
180     event[1] = sizeof(event) - 2;
181     event[2] = status;
182     reverse_bd_addr(channel->address, &event[3]);
183     little_endian_store_16(event,  9, channel->con_handle);
184     little_endian_store_16(event, 11, channel->psm);
185     little_endian_store_16(event, 13, channel->local_cid);
186     little_endian_store_16(event, 15, channel->remote_cid);
187     little_endian_store_16(event, 17, channel->local_mtu);
188     little_endian_store_16(event, 19, channel->remote_mtu);
189     little_endian_store_16(event, 21, channel->flush_timeout);
190     hci_dump_packet( HCI_EVENT_PACKET, 0, event, sizeof(event));
191     l2cap_dispatch_to_channel(channel, HCI_EVENT_PACKET, event, sizeof(event));
192 }
193 
194 void l2cap_emit_channel_closed(l2cap_channel_t *channel) {
195     log_info("L2CAP_EVENT_CHANNEL_CLOSED local_cid 0x%x", channel->local_cid);
196     uint8_t event[4];
197     event[0] = L2CAP_EVENT_CHANNEL_CLOSED;
198     event[1] = sizeof(event) - 2;
199     little_endian_store_16(event, 2, channel->local_cid);
200     hci_dump_packet( HCI_EVENT_PACKET, 0, event, sizeof(event));
201     l2cap_dispatch_to_channel(channel, HCI_EVENT_PACKET, event, sizeof(event));
202 }
203 
204 void l2cap_emit_connection_request(l2cap_channel_t *channel) {
205     log_info("L2CAP_EVENT_INCOMING_CONNECTION addr %s handle 0x%x psm 0x%x local_cid 0x%x remote_cid 0x%x",
206              bd_addr_to_str(channel->address), channel->con_handle,  channel->psm, channel->local_cid, channel->remote_cid);
207     uint8_t event[16];
208     event[0] = L2CAP_EVENT_INCOMING_CONNECTION;
209     event[1] = sizeof(event) - 2;
210     reverse_bd_addr(channel->address, &event[2]);
211     little_endian_store_16(event,  8, channel->con_handle);
212     little_endian_store_16(event, 10, channel->psm);
213     little_endian_store_16(event, 12, channel->local_cid);
214     little_endian_store_16(event, 14, channel->remote_cid);
215     hci_dump_packet( HCI_EVENT_PACKET, 0, event, sizeof(event));
216     l2cap_dispatch_to_channel(channel, HCI_EVENT_PACKET, event, sizeof(event));
217 }
218 
219 static void l2cap_emit_can_send_now(btstack_packet_handler_t packet_handler, uint16_t channel) {
220     log_info("L2CAP_EVENT_CHANNEL_CAN_SEND_NOW local_cid 0x%x", channel);
221     uint8_t event[4];
222     event[0] = L2CAP_EVENT_CAN_SEND_NOW;
223     event[1] = sizeof(event) - 2;
224     little_endian_store_16(event, 2, channel);
225     hci_dump_packet( HCI_EVENT_PACKET, 0, event, sizeof(event));
226     packet_handler(HCI_EVENT_PACKET, channel, event, sizeof(event));
227 }
228 
229 static void l2cap_emit_connection_parameter_update_response(hci_con_handle_t con_handle, uint16_t result){
230     uint8_t event[6];
231     event[0] = L2CAP_EVENT_CONNECTION_PARAMETER_UPDATE_RESPONSE;
232     event[1] = 4;
233     little_endian_store_16(event, 2, con_handle);
234     little_endian_store_16(event, 4, result);
235     hci_dump_packet( HCI_EVENT_PACKET, 0, event, sizeof(event));
236     if (!l2cap_event_packet_handler) return;
237     (*l2cap_event_packet_handler)(HCI_EVENT_PACKET, 0, event, sizeof(event));
238 }
239 
240 static l2cap_channel_t * l2cap_get_channel_for_local_cid(uint16_t local_cid){
241     btstack_linked_list_iterator_t it;
242     btstack_linked_list_iterator_init(&it, &l2cap_channels);
243     while (btstack_linked_list_iterator_has_next(&it)){
244         l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
245         if ( channel->local_cid == local_cid) {
246             return channel;
247         }
248     }
249     return NULL;
250 }
251 
252 #ifdef ENABLE_BLE
253 static l2cap_channel_t * l2cap_le_get_channel_for_local_cid(uint16_t local_cid){
254     btstack_linked_list_iterator_t it;
255     btstack_linked_list_iterator_init(&it, &l2cap_le_channels);
256     while (btstack_linked_list_iterator_has_next(&it)){
257         l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
258         if ( channel->local_cid == local_cid) {
259             return channel;
260         }
261     }
262     return NULL;
263 }
264 #endif
265 
266 static l2cap_channel_t * l2cap_get_le_channel_for_address_and_addr_type(bd_addr_t address, bd_addr_type_t address_type){
267     btstack_linked_list_iterator_t it;
268     btstack_linked_list_iterator_init(&it, &l2cap_le_channels);
269     while (btstack_linked_list_iterator_has_next(&it)){
270         l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
271         if (channel->address_type != address_type)  continue;
272         if (bd_addr_cmp(channel->address, address)) continue;
273         return channel;
274     }
275     return NULL;
276 }
277 
278 ///
279 
280 void l2cap_request_can_send_now_event(uint16_t local_cid){
281     l2cap_channel_t *channel = l2cap_get_channel_for_local_cid(local_cid);
282     if (!channel) return;
283     channel->waiting_for_can_send_now = 1;
284     l2cap_notify_channel_can_send();
285 }
286 
287 void l2cap_request_can_send_fix_channel_now_event(hci_con_handle_t con_handle, uint16_t channel_id){
288     int index = l2cap_fixed_channel_table_index_for_channel_id(channel_id);
289     if (index < 0) return;
290     fixed_channels[index].waiting_for_can_send_now = 1;
291     l2cap_notify_channel_can_send();
292 }
293 
294 ///
295 
296 int  l2cap_can_send_packet_now(uint16_t local_cid){
297     l2cap_channel_t *channel = l2cap_get_channel_for_local_cid(local_cid);
298     if (!channel) return 0;
299     return hci_can_send_acl_packet_now(channel->con_handle);
300 }
301 
302 int  l2cap_can_send_prepared_packet_now(uint16_t local_cid){
303     l2cap_channel_t *channel = l2cap_get_channel_for_local_cid(local_cid);
304     if (!channel) return 0;
305     return hci_can_send_prepared_acl_packet_now(channel->con_handle);
306 }
307 
308 int  l2cap_can_send_fixed_channel_packet_now(hci_con_handle_t con_handle, uint16_t channel_id){
309     return hci_can_send_acl_packet_now(con_handle);
310 }
311 
312 ///
313 
314 uint16_t l2cap_get_remote_mtu_for_local_cid(uint16_t local_cid){
315     l2cap_channel_t * channel = l2cap_get_channel_for_local_cid(local_cid);
316     if (channel) {
317         return channel->remote_mtu;
318     }
319     return 0;
320 }
321 
322 static l2cap_channel_t * l2cap_channel_for_rtx_timer(btstack_timer_source_t * ts){
323     btstack_linked_list_iterator_t it;
324     btstack_linked_list_iterator_init(&it, &l2cap_channels);
325     while (btstack_linked_list_iterator_has_next(&it)){
326         l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
327         if ( &channel->rtx == ts) {
328             return channel;
329         }
330     }
331     return NULL;
332 }
333 
334 static void l2cap_rtx_timeout(btstack_timer_source_t * ts){
335     l2cap_channel_t * channel = l2cap_channel_for_rtx_timer(ts);
336     if (!channel) return;
337 
338     log_info("l2cap_rtx_timeout for local cid 0x%02x", channel->local_cid);
339 
340     // "When terminating the channel, it is not necessary to send a L2CAP_DisconnectReq
341     //  and enter WAIT_DISCONNECT state. Channels can be transitioned directly to the CLOSED state."
342     // notify client
343     l2cap_emit_channel_opened(channel, L2CAP_CONNECTION_RESPONSE_RESULT_RTX_TIMEOUT);
344 
345     // discard channel
346     // no need to stop timer here, it is removed from list during timer callback
347     btstack_linked_list_remove(&l2cap_channels, (btstack_linked_item_t *) channel);
348     btstack_memory_l2cap_channel_free(channel);
349 }
350 
351 static void l2cap_stop_rtx(l2cap_channel_t * channel){
352     log_info("l2cap_stop_rtx for local cid 0x%02x", channel->local_cid);
353     btstack_run_loop_remove_timer(&channel->rtx);
354 }
355 
356 static void l2cap_start_rtx(l2cap_channel_t * channel){
357     l2cap_stop_rtx(channel);
358     log_info("l2cap_start_rtx for local cid 0x%02x", channel->local_cid);
359     btstack_run_loop_set_timer_handler(&channel->rtx, l2cap_rtx_timeout);
360     btstack_run_loop_set_timer(&channel->rtx, L2CAP_RTX_TIMEOUT_MS);
361     btstack_run_loop_add_timer(&channel->rtx);
362 }
363 
364 static void l2cap_start_ertx(l2cap_channel_t * channel){
365     log_info("l2cap_start_ertx for local cid 0x%02x", channel->local_cid);
366     l2cap_stop_rtx(channel);
367     btstack_run_loop_set_timer_handler(&channel->rtx, l2cap_rtx_timeout);
368     btstack_run_loop_set_timer(&channel->rtx, L2CAP_ERTX_TIMEOUT_MS);
369     btstack_run_loop_add_timer(&channel->rtx);
370 }
371 
372 void l2cap_require_security_level_2_for_outgoing_sdp(void){
373     require_security_level2_for_outgoing_sdp = 1;
374 }
375 
376 static int l2cap_security_level_0_allowed_for_PSM(uint16_t psm){
377     return (psm == PSM_SDP) && (!require_security_level2_for_outgoing_sdp);
378 }
379 
380 static int l2cap_send_signaling_packet(hci_con_handle_t handle, L2CAP_SIGNALING_COMMANDS cmd, uint8_t identifier, ...){
381 
382     if (!hci_can_send_acl_packet_now(handle)){
383         log_info("l2cap_send_signaling_packet, cannot send");
384         return BTSTACK_ACL_BUFFERS_FULL;
385     }
386 
387     // log_info("l2cap_send_signaling_packet type %u", cmd);
388     hci_reserve_packet_buffer();
389     uint8_t *acl_buffer = hci_get_outgoing_packet_buffer();
390     va_list argptr;
391     va_start(argptr, identifier);
392     uint16_t len = l2cap_create_signaling_classic(acl_buffer, handle, cmd, identifier, argptr);
393     va_end(argptr);
394     // log_info("l2cap_send_signaling_packet con %u!", handle);
395     return hci_send_acl_packet_buffer(len);
396 }
397 
398 #ifdef ENABLE_BLE
399 static int l2cap_send_le_signaling_packet(hci_con_handle_t handle, L2CAP_SIGNALING_COMMANDS cmd, uint8_t identifier, ...){
400 
401     if (!hci_can_send_acl_packet_now(handle)){
402         log_info("l2cap_send_signaling_packet, cannot send");
403         return BTSTACK_ACL_BUFFERS_FULL;
404     }
405 
406     // log_info("l2cap_send_signaling_packet type %u", cmd);
407     hci_reserve_packet_buffer();
408     uint8_t *acl_buffer = hci_get_outgoing_packet_buffer();
409     va_list argptr;
410     va_start(argptr, identifier);
411     uint16_t len = l2cap_create_signaling_le(acl_buffer, handle, cmd, identifier, argptr);
412     va_end(argptr);
413     // log_info("l2cap_send_signaling_packet con %u!", handle);
414     return hci_send_acl_packet_buffer(len);
415 }
416 #endif
417 
418 uint8_t *l2cap_get_outgoing_buffer(void){
419     return hci_get_outgoing_packet_buffer() + COMPLETE_L2CAP_HEADER; // 8 bytes
420 }
421 
422 int l2cap_reserve_packet_buffer(void){
423     return hci_reserve_packet_buffer();
424 }
425 
426 void l2cap_release_packet_buffer(void){
427     hci_release_packet_buffer();
428 }
429 
430 
431 int l2cap_send_prepared(uint16_t local_cid, uint16_t len){
432 
433     if (!hci_is_packet_buffer_reserved()){
434         log_error("l2cap_send_prepared called without reserving packet first");
435         return BTSTACK_ACL_BUFFERS_FULL;
436     }
437 
438     l2cap_channel_t * channel = l2cap_get_channel_for_local_cid(local_cid);
439     if (!channel) {
440         log_error("l2cap_send_prepared no channel for cid 0x%02x", local_cid);
441         return -1;   // TODO: define error
442     }
443 
444     if (!hci_can_send_prepared_acl_packet_now(channel->con_handle)){
445         log_info("l2cap_send_prepared cid 0x%02x, cannot send", local_cid);
446         return BTSTACK_ACL_BUFFERS_FULL;
447     }
448 
449     log_debug("l2cap_send_prepared cid 0x%02x, handle %u, 1 credit used", local_cid, channel->con_handle);
450 
451     uint8_t *acl_buffer = hci_get_outgoing_packet_buffer();
452 
453     int pb = hci_non_flushable_packet_boundary_flag_supported() ? 0x00 : 0x02;
454 
455     // 0 - Connection handle : PB=pb : BC=00
456     little_endian_store_16(acl_buffer, 0, channel->con_handle | (pb << 12) | (0 << 14));
457     // 2 - ACL length
458     little_endian_store_16(acl_buffer, 2,  len + 4);
459     // 4 - L2CAP packet length
460     little_endian_store_16(acl_buffer, 4,  len + 0);
461     // 6 - L2CAP channel DEST
462     little_endian_store_16(acl_buffer, 6, channel->remote_cid);
463     // send
464     int err = hci_send_acl_packet_buffer(len+8);
465 
466     return err;
467 }
468 
469 int l2cap_send_prepared_connectionless(hci_con_handle_t con_handle, uint16_t cid, uint16_t len){
470 
471     if (!hci_is_packet_buffer_reserved()){
472         log_error("l2cap_send_prepared_connectionless called without reserving packet first");
473         return BTSTACK_ACL_BUFFERS_FULL;
474     }
475 
476     if (!hci_can_send_prepared_acl_packet_now(con_handle)){
477         log_info("l2cap_send_prepared_connectionless handle 0x%02x, cid 0x%02x, cannot send", con_handle, cid);
478         return BTSTACK_ACL_BUFFERS_FULL;
479     }
480 
481     log_debug("l2cap_send_prepared_connectionless handle %u, cid 0x%02x", con_handle, cid);
482 
483     uint8_t *acl_buffer = hci_get_outgoing_packet_buffer();
484 
485     int pb = hci_non_flushable_packet_boundary_flag_supported() ? 0x00 : 0x02;
486 
487     // 0 - Connection handle : PB=pb : BC=00
488     little_endian_store_16(acl_buffer, 0, con_handle | (pb << 12) | (0 << 14));
489     // 2 - ACL length
490     little_endian_store_16(acl_buffer, 2,  len + 4);
491     // 4 - L2CAP packet length
492     little_endian_store_16(acl_buffer, 4,  len + 0);
493     // 6 - L2CAP channel DEST
494     little_endian_store_16(acl_buffer, 6, cid);
495     // send
496     int err = hci_send_acl_packet_buffer(len+8);
497 
498     return err;
499 }
500 
501 int l2cap_send(uint16_t local_cid, uint8_t *data, uint16_t len){
502 
503     l2cap_channel_t * channel = l2cap_get_channel_for_local_cid(local_cid);
504     if (!channel) {
505         log_error("l2cap_send no channel for cid 0x%02x", local_cid);
506         return -1;   // TODO: define error
507     }
508 
509     if (len > channel->remote_mtu){
510         log_error("l2cap_send cid 0x%02x, data length exceeds remote MTU.", local_cid);
511         return L2CAP_DATA_LEN_EXCEEDS_REMOTE_MTU;
512     }
513 
514     if (!hci_can_send_acl_packet_now(channel->con_handle)){
515         log_info("l2cap_send cid 0x%02x, cannot send", local_cid);
516         return BTSTACK_ACL_BUFFERS_FULL;
517     }
518 
519     hci_reserve_packet_buffer();
520     uint8_t *acl_buffer = hci_get_outgoing_packet_buffer();
521 
522     memcpy(&acl_buffer[8], data, len);
523 
524     return l2cap_send_prepared(local_cid, len);
525 }
526 
527 int l2cap_send_connectionless(hci_con_handle_t con_handle, uint16_t cid, uint8_t *data, uint16_t len){
528 
529     if (!hci_can_send_acl_packet_now(con_handle)){
530         log_info("l2cap_send cid 0x%02x, cannot send", cid);
531         return BTSTACK_ACL_BUFFERS_FULL;
532     }
533 
534     hci_reserve_packet_buffer();
535     uint8_t *acl_buffer = hci_get_outgoing_packet_buffer();
536 
537     memcpy(&acl_buffer[8], data, len);
538 
539     return l2cap_send_prepared_connectionless(con_handle, cid, len);
540 }
541 
542 int l2cap_send_echo_request(hci_con_handle_t con_handle, uint8_t *data, uint16_t len){
543     return l2cap_send_signaling_packet(con_handle, ECHO_REQUEST, 0x77, len, data);
544 }
545 
546 static inline void channelStateVarSetFlag(l2cap_channel_t *channel, L2CAP_CHANNEL_STATE_VAR flag){
547     channel->state_var = (L2CAP_CHANNEL_STATE_VAR) (channel->state_var | flag);
548 }
549 
550 static inline void channelStateVarClearFlag(l2cap_channel_t *channel, L2CAP_CHANNEL_STATE_VAR flag){
551     channel->state_var = (L2CAP_CHANNEL_STATE_VAR) (channel->state_var & ~flag);
552 }
553 
554 
555 
556 // MARK: L2CAP_RUN
557 // process outstanding signaling tasks
558 static void l2cap_run(void){
559 
560     // log_info("l2cap_run: entered");
561 
562     // check pending signaling responses
563     while (signaling_responses_pending){
564 
565         hci_con_handle_t handle = signaling_responses[0].handle;
566 
567         if (!hci_can_send_acl_packet_now(handle)) break;
568 
569         uint8_t  sig_id = signaling_responses[0].sig_id;
570         uint16_t infoType = signaling_responses[0].data;    // INFORMATION_REQUEST
571         uint16_t result   = signaling_responses[0].data;    // CONNECTION_REQUEST, COMMAND_REJECT
572         uint8_t  response_code = signaling_responses[0].code;
573 
574         // remove first item before sending (to avoid sending response mutliple times)
575         signaling_responses_pending--;
576         int i;
577         for (i=0; i < signaling_responses_pending; i++){
578             memcpy(&signaling_responses[i], &signaling_responses[i+1], sizeof(l2cap_signaling_response_t));
579         }
580 
581         switch (response_code){
582             case CONNECTION_REQUEST:
583                 l2cap_send_signaling_packet(handle, CONNECTION_RESPONSE, sig_id, 0, 0, result, 0);
584                 // also disconnect if result is 0x0003 - security blocked
585                 if (result == 0x0003){
586                     hci_disconnect_security_block(handle);
587                 }
588                 break;
589             case ECHO_REQUEST:
590                 l2cap_send_signaling_packet(handle, ECHO_RESPONSE, sig_id, 0, NULL);
591                 break;
592             case INFORMATION_REQUEST:
593                 switch (infoType){
594                     case 1: { // Connectionless MTU
595                         uint16_t connectionless_mtu = hci_max_acl_data_packet_length();
596                         l2cap_send_signaling_packet(handle, INFORMATION_RESPONSE, sig_id, infoType, 0, sizeof(connectionless_mtu), &connectionless_mtu);
597                         break;
598                     }
599                     case 2: { // Extended Features Supported
600                         // extended features request supported, features: fixed channels, unicast connectionless data reception
601                         uint32_t features = 0x280;
602                         l2cap_send_signaling_packet(handle, INFORMATION_RESPONSE, sig_id, infoType, 0, sizeof(features), &features);
603                         break;
604                     }
605                     case 3: { // Fixed Channels Supported
606                         uint8_t map[8];
607                         memset(map, 0, 8);
608                         map[0] = 0x06;  // L2CAP Signaling Channel (0x02) + Connectionless reception (0x04)
609                         l2cap_send_signaling_packet(handle, INFORMATION_RESPONSE, sig_id, infoType, 0, sizeof(map), &map);
610                         break;
611                     }
612                     default:
613                         // all other types are not supported
614                         l2cap_send_signaling_packet(handle, INFORMATION_RESPONSE, sig_id, infoType, 1, 0, NULL);
615                         break;
616                 }
617                 break;
618             case COMMAND_REJECT:
619                 l2cap_send_signaling_packet(handle, COMMAND_REJECT, sig_id, result, 0, NULL);
620 #ifdef ENABLE_BLE
621             case COMMAND_REJECT_LE:
622                 l2cap_send_le_signaling_packet(handle, COMMAND_REJECT, sig_id, result, 0, NULL);
623                 break;
624 #endif
625             default:
626                 // should not happen
627                 break;
628         }
629     }
630 
631     uint8_t  config_options[4];
632     btstack_linked_list_iterator_t it;
633     btstack_linked_list_iterator_init(&it, &l2cap_channels);
634     while (btstack_linked_list_iterator_has_next(&it)){
635 
636         l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
637         // log_info("l2cap_run: channel %p, state %u, var 0x%02x", channel, channel->state, channel->state_var);
638         switch (channel->state){
639 
640             case L2CAP_STATE_WAIT_INCOMING_SECURITY_LEVEL_UPDATE:
641             case L2CAP_STATE_WAIT_CLIENT_ACCEPT_OR_REJECT:
642                 if (!hci_can_send_acl_packet_now(channel->con_handle)) break;
643                 if (channel->state_var & L2CAP_CHANNEL_STATE_VAR_SEND_CONN_RESP_PEND) {
644                     channelStateVarClearFlag(channel, L2CAP_CHANNEL_STATE_VAR_SEND_CONN_RESP_PEND);
645                     l2cap_send_signaling_packet(channel->con_handle, CONNECTION_RESPONSE, channel->remote_sig_id, channel->local_cid, channel->remote_cid, 1, 0);
646                 }
647                 break;
648 
649             case L2CAP_STATE_WILL_SEND_CREATE_CONNECTION:
650                 if (!hci_can_send_command_packet_now()) break;
651                 // send connection request - set state first
652                 channel->state = L2CAP_STATE_WAIT_CONNECTION_COMPLETE;
653                 // BD_ADDR, Packet_Type, Page_Scan_Repetition_Mode, Reserved, Clock_Offset, Allow_Role_Switch
654                 hci_send_cmd(&hci_create_connection, channel->address, hci_usable_acl_packet_types(), 0, 0, 0, 1);
655                 break;
656 
657             case L2CAP_STATE_WILL_SEND_CONNECTION_RESPONSE_DECLINE:
658                 if (!hci_can_send_acl_packet_now(channel->con_handle)) break;
659                 channel->state = L2CAP_STATE_INVALID;
660                 l2cap_send_signaling_packet(channel->con_handle, CONNECTION_RESPONSE, channel->remote_sig_id, channel->local_cid, channel->remote_cid, channel->reason, 0);
661                 // discard channel - l2cap_finialize_channel_close without sending l2cap close event
662                 l2cap_stop_rtx(channel);
663                 btstack_linked_list_iterator_remove(&it);
664                 btstack_memory_l2cap_channel_free(channel);
665                 break;
666 
667             case L2CAP_STATE_WILL_SEND_CONNECTION_RESPONSE_ACCEPT:
668                 if (!hci_can_send_acl_packet_now(channel->con_handle)) break;
669                 channel->state = L2CAP_STATE_CONFIG;
670                 channelStateVarSetFlag(channel, L2CAP_CHANNEL_STATE_VAR_SEND_CONF_REQ);
671                 l2cap_send_signaling_packet(channel->con_handle, CONNECTION_RESPONSE, channel->remote_sig_id, channel->local_cid, channel->remote_cid, 0, 0);
672                 break;
673 
674             case L2CAP_STATE_WILL_SEND_CONNECTION_REQUEST:
675                 if (!hci_can_send_acl_packet_now(channel->con_handle)) break;
676                 // success, start l2cap handshake
677                 channel->local_sig_id = l2cap_next_sig_id();
678                 channel->state = L2CAP_STATE_WAIT_CONNECT_RSP;
679                 l2cap_send_signaling_packet( channel->con_handle, CONNECTION_REQUEST, channel->local_sig_id, channel->psm, channel->local_cid);
680                 l2cap_start_rtx(channel);
681                 break;
682 
683             case L2CAP_STATE_CONFIG:
684                 if (!hci_can_send_acl_packet_now(channel->con_handle)) break;
685                 if (channel->state_var & L2CAP_CHANNEL_STATE_VAR_SEND_CONF_RSP){
686                     uint16_t flags = 0;
687                     channelStateVarClearFlag(channel, L2CAP_CHANNEL_STATE_VAR_SEND_CONF_RSP);
688                     if (channel->state_var & L2CAP_CHANNEL_STATE_VAR_SEND_CONF_RSP_CONT) {
689                         flags = 1;
690                     } else {
691                         channelStateVarSetFlag(channel, L2CAP_CHANNEL_STATE_VAR_SENT_CONF_RSP);
692                     }
693                     if (channel->state_var & L2CAP_CHANNEL_STATE_VAR_SEND_CONF_RSP_INVALID){
694                         l2cap_send_signaling_packet(channel->con_handle, CONFIGURE_RESPONSE, channel->remote_sig_id, channel->remote_cid, flags, L2CAP_CONF_RESULT_UNKNOWN_OPTIONS, 0, NULL);
695                     } else if (channel->state_var & L2CAP_CHANNEL_STATE_VAR_SEND_CONF_RSP_MTU){
696                         config_options[0] = 1; // MTU
697                         config_options[1] = 2; // len param
698                         little_endian_store_16( (uint8_t*)&config_options, 2, channel->remote_mtu);
699                         l2cap_send_signaling_packet(channel->con_handle, CONFIGURE_RESPONSE, channel->remote_sig_id, channel->remote_cid, flags, 0, 4, &config_options);
700                         channelStateVarClearFlag(channel,L2CAP_CHANNEL_STATE_VAR_SEND_CONF_RSP_MTU);
701                     } else {
702                         l2cap_send_signaling_packet(channel->con_handle, CONFIGURE_RESPONSE, channel->remote_sig_id, channel->remote_cid, flags, 0, 0, NULL);
703                     }
704                     channelStateVarClearFlag(channel, L2CAP_CHANNEL_STATE_VAR_SEND_CONF_RSP_CONT);
705                 }
706                 else if (channel->state_var & L2CAP_CHANNEL_STATE_VAR_SEND_CONF_REQ){
707                     channelStateVarClearFlag(channel, L2CAP_CHANNEL_STATE_VAR_SEND_CONF_REQ);
708                     channelStateVarSetFlag(channel, L2CAP_CHANNEL_STATE_VAR_SENT_CONF_REQ);
709                     channel->local_sig_id = l2cap_next_sig_id();
710                     config_options[0] = 1; // MTU
711                     config_options[1] = 2; // len param
712                     little_endian_store_16( (uint8_t*)&config_options, 2, channel->local_mtu);
713                     l2cap_send_signaling_packet(channel->con_handle, CONFIGURE_REQUEST, channel->local_sig_id, channel->remote_cid, 0, 4, &config_options);
714                     l2cap_start_rtx(channel);
715                 }
716                 if (l2cap_channel_ready_for_open(channel)){
717                     channel->state = L2CAP_STATE_OPEN;
718                     l2cap_emit_channel_opened(channel, 0);  // success
719                 }
720                 break;
721 
722             case L2CAP_STATE_WILL_SEND_DISCONNECT_RESPONSE:
723                 if (!hci_can_send_acl_packet_now(channel->con_handle)) break;
724                 channel->state = L2CAP_STATE_INVALID;
725                 l2cap_send_signaling_packet( channel->con_handle, DISCONNECTION_RESPONSE, channel->remote_sig_id, channel->local_cid, channel->remote_cid);
726                 // we don't start an RTX timer for a disconnect - there's no point in closing the channel if the other side doesn't respond :)
727                 l2cap_finialize_channel_close(channel);  // -- remove from list
728                 break;
729 
730             case L2CAP_STATE_WILL_SEND_DISCONNECT_REQUEST:
731                 if (!hci_can_send_acl_packet_now(channel->con_handle)) break;
732                 channel->local_sig_id = l2cap_next_sig_id();
733                 channel->state = L2CAP_STATE_WAIT_DISCONNECT;
734                 l2cap_send_signaling_packet( channel->con_handle, DISCONNECTION_REQUEST, channel->local_sig_id, channel->remote_cid, channel->local_cid);
735                 break;
736             default:
737                 break;
738         }
739     }
740 
741 #ifdef ENABLE_BLE
742     btstack_linked_list_iterator_init(&it, &l2cap_le_channels);
743     while (btstack_linked_list_iterator_has_next(&it)){
744         l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
745         // log_info("l2cap_run: channel %p, state %u, var 0x%02x", channel, channel->state, channel->state_var);
746         switch (channel->state){
747             case L2CAP_STATE_WILL_SEND_LE_CONNECTION_REQUEST:
748                 if (!hci_can_send_acl_packet_now(channel->con_handle)) break;
749                 channel->state = L2CAP_STATE_WAIT_LE_CONNECTION_RESPONSE;
750                 // le psm, source cid, mtu, mps, initial credits
751                 l2cap_send_le_signaling_packet( channel->con_handle, LE_CREDIT_BASED_CONNECTION_REQUEST, channel->local_sig_id, channel->psm, channel->local_cid, 23, 23, 1);
752                 break;
753             case L2CAP_STATE_WILL_SEND_LE_CONNECTION_RESPONSE_DECLINE:
754                 if (!hci_can_send_acl_packet_now(channel->con_handle)) break;
755                 channel->state = L2CAP_STATE_INVALID;
756                 l2cap_send_le_signaling_packet(channel->con_handle, LE_CREDIT_BASED_CONNECTION_RESPONSE, channel->remote_sig_id, channel->remote_cid, 0, 0, 0, channel->reason);
757                 // discard channel - l2cap_finialize_channel_close without sending l2cap close event
758                 l2cap_stop_rtx(channel);
759                 btstack_linked_list_iterator_remove(&it);
760                 btstack_memory_l2cap_channel_free(channel);
761                 break;
762             default:
763                 break;
764         }
765     }
766 
767     // send l2cap con paramter update if necessary
768     hci_connections_get_iterator(&it);
769     while(btstack_linked_list_iterator_has_next(&it)){
770         hci_connection_t * connection = (hci_connection_t *) btstack_linked_list_iterator_next(&it);
771         if (connection->address_type != BD_ADDR_TYPE_LE_PUBLIC && connection->address_type != BD_ADDR_TYPE_LE_RANDOM) continue;
772         if (!hci_can_send_acl_packet_now(connection->con_handle)) continue;
773         switch (connection->le_con_parameter_update_state){
774             case CON_PARAMETER_UPDATE_SEND_REQUEST:
775                 connection->le_con_parameter_update_state = CON_PARAMETER_UPDATE_NONE;
776                 l2cap_send_le_signaling_packet(connection->con_handle, CONNECTION_PARAMETER_UPDATE_REQUEST, connection->le_con_param_update_identifier,
777                                                connection->le_conn_interval_min, connection->le_conn_interval_max, connection->le_conn_latency, connection->le_supervision_timeout);
778                 break;
779             case CON_PARAMETER_UPDATE_SEND_RESPONSE:
780                 connection->le_con_parameter_update_state = CON_PARAMETER_UPDATE_CHANGE_HCI_CON_PARAMETERS;
781                 l2cap_send_le_signaling_packet(connection->con_handle, CONNECTION_PARAMETER_UPDATE_RESPONSE, connection->le_con_param_update_identifier, 0);
782                 break;
783             case CON_PARAMETER_UPDATE_DENY:
784                 connection->le_con_parameter_update_state = CON_PARAMETER_UPDATE_NONE;
785                 l2cap_send_le_signaling_packet(connection->con_handle, CONNECTION_PARAMETER_UPDATE_RESPONSE, connection->le_con_param_update_identifier, 1);
786                 break;
787             default:
788                 break;
789         }
790 #if 0
791 void l2cap_le_run(void){
792     for all channels
793         switch(state):
794 
795     if outgoing transfer active
796         send next chunk
797         if done, notify app
798 }
799 #endif
800     }
801 #endif
802 
803     // log_info("l2cap_run: exit");
804 }
805 
806 uint16_t l2cap_max_mtu(void){
807     return HCI_ACL_PAYLOAD_SIZE - L2CAP_HEADER_SIZE;
808 }
809 
810 uint16_t l2cap_max_le_mtu(void){
811     return l2cap_max_mtu();
812 }
813 
814 static void l2cap_handle_connection_complete(hci_con_handle_t con_handle, l2cap_channel_t * channel){
815     if (channel->state == L2CAP_STATE_WAIT_CONNECTION_COMPLETE || channel->state == L2CAP_STATE_WILL_SEND_CREATE_CONNECTION) {
816         log_info("l2cap_handle_connection_complete expected state");
817         // success, start l2cap handshake
818         channel->con_handle = con_handle;
819         // check remote SSP feature first
820         channel->state = L2CAP_STATE_WAIT_REMOTE_SUPPORTED_FEATURES;
821     }
822 }
823 
824 #ifdef ENABLE_BLE
825 static void l2cap_handle_le_connection_complete(l2cap_channel_t * channel, uint8_t status, hci_con_handle_t con_handle){
826     if (channel->state == L2CAP_STATE_WAIT_CONNECTION_COMPLETE || channel->state == L2CAP_STATE_WILL_SEND_CREATE_CONNECTION) {
827         log_info("l2cap_le_handle_connection_complete expected state");
828         // TODO: bail if status != 0
829 
830         // success, start l2cap handshake
831         channel->con_handle = con_handle;
832         channel->state = L2CAP_STATE_WILL_SEND_LE_CONNECTION_REQUEST;
833     }
834 }
835 #endif
836 
837 
838 static void l2cap_handle_remote_supported_features_received(l2cap_channel_t * channel){
839     if (channel->state != L2CAP_STATE_WAIT_REMOTE_SUPPORTED_FEATURES) return;
840 
841     // we have been waiting for remote supported features, if both support SSP,
842     log_info("l2cap received remote supported features, sec_level_0_allowed for psm %u = %u", channel->psm, l2cap_security_level_0_allowed_for_PSM(channel->psm));
843     if (gap_ssp_supported_on_both_sides(channel->con_handle) && !l2cap_security_level_0_allowed_for_PSM(channel->psm)){
844         // request security level 2
845         channel->state = L2CAP_STATE_WAIT_OUTGOING_SECURITY_LEVEL_UPDATE;
846         gap_request_security_level(channel->con_handle, LEVEL_2);
847         return;
848     }
849     // fine, go ahead
850     channel->state = L2CAP_STATE_WILL_SEND_CONNECTION_REQUEST;
851 }
852 
853 static l2cap_channel_t * l2cap_create_channel_entry(btstack_packet_handler_t packet_handler, bd_addr_t address, bd_addr_type_t address_type,
854     uint16_t psm, uint16_t local_mtu, gap_security_level_t security_level){
855 
856     l2cap_channel_t * channel = btstack_memory_l2cap_channel_get();
857     if (!channel) {
858         return NULL;
859     }
860 
861      // Init memory (make valgrind happy)
862     memset(channel, 0, sizeof(l2cap_channel_t));
863 
864     // fill in
865     channel->packet_handler = packet_handler;
866     bd_addr_copy(channel->address, address);
867     channel->address_type = address_type;
868     channel->psm = psm;
869     channel->local_mtu  = local_mtu;
870     channel->remote_mtu = L2CAP_MINIMAL_MTU;
871     channel->required_security_level = security_level;
872 
873     //
874     channel->local_cid = l2cap_next_local_cid();
875     channel->con_handle = 0;
876 
877     // set initial state
878     channel->state = L2CAP_STATE_WILL_SEND_CREATE_CONNECTION;
879     channel->state_var = L2CAP_CHANNEL_STATE_VAR_NONE;
880     channel->remote_sig_id = L2CAP_SIG_ID_INVALID;
881     channel->local_sig_id = L2CAP_SIG_ID_INVALID;
882     return channel;
883 }
884 
885 /**
886  * @brief Creates L2CAP channel to the PSM of a remote device with baseband address. A new baseband connection will be initiated if necessary.
887  * @param packet_handler
888  * @param address
889  * @param psm
890  * @param mtu
891  * @param local_cid
892  */
893 
894 uint8_t l2cap_create_channel(btstack_packet_handler_t channel_packet_handler, bd_addr_t address, uint16_t psm, uint16_t local_mtu, uint16_t * out_local_cid){
895     log_info("L2CAP_CREATE_CHANNEL addr %s psm 0x%x mtu %u", bd_addr_to_str(address), psm, local_mtu);
896 
897     if (local_mtu > l2cap_max_mtu()) {
898         local_mtu = l2cap_max_mtu();
899     }
900 
901     l2cap_channel_t * channel = l2cap_create_channel_entry(channel_packet_handler, address, BD_ADDR_TYPE_CLASSIC, psm, local_mtu, LEVEL_0);
902     if (!channel) {
903         return BTSTACK_MEMORY_ALLOC_FAILED;
904     }
905 
906     // add to connections list
907     btstack_linked_list_add(&l2cap_channels, (btstack_linked_item_t *) channel);
908 
909     // store local_cid
910     if (out_local_cid){
911        *out_local_cid = channel->local_cid;
912     }
913 
914     // check if hci connection is already usable
915     hci_connection_t * conn = hci_connection_for_bd_addr_and_type(address, BD_ADDR_TYPE_CLASSIC);
916     if (conn){
917         log_info("l2cap_create_channel, hci connection already exists");
918         l2cap_handle_connection_complete(conn->con_handle, channel);
919         // check if remote supported fearures are already received
920         if (conn->bonding_flags & BONDING_RECEIVED_REMOTE_FEATURES) {
921             l2cap_handle_remote_supported_features_received(channel);
922         }
923     }
924 
925     l2cap_run();
926 
927     return 0;
928 }
929 
930 void
931 l2cap_disconnect(uint16_t local_cid, uint8_t reason){
932     log_info("L2CAP_DISCONNECT local_cid 0x%x reason 0x%x", local_cid, reason);
933     // find channel for local_cid
934     l2cap_channel_t * channel = l2cap_get_channel_for_local_cid(local_cid);
935     if (channel) {
936         channel->state = L2CAP_STATE_WILL_SEND_DISCONNECT_REQUEST;
937     }
938     // process
939     l2cap_run();
940 }
941 
942 static void l2cap_handle_connection_failed_for_addr(bd_addr_t address, uint8_t status){
943     btstack_linked_list_iterator_t it;
944     btstack_linked_list_iterator_init(&it, &l2cap_channels);
945     while (btstack_linked_list_iterator_has_next(&it)){
946         l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
947         if ( bd_addr_cmp( channel->address, address) != 0) continue;
948         // channel for this address found
949         switch (channel->state){
950             case L2CAP_STATE_WAIT_CONNECTION_COMPLETE:
951             case L2CAP_STATE_WILL_SEND_CREATE_CONNECTION:
952                 // failure, forward error code
953                 l2cap_emit_channel_opened(channel, status);
954                 // discard channel
955                 l2cap_stop_rtx(channel);
956                 btstack_linked_list_iterator_remove(&it);
957                 btstack_memory_l2cap_channel_free(channel);
958                 break;
959             default:
960                 break;
961         }
962     }
963 }
964 
965 static void l2cap_handle_connection_success_for_addr(bd_addr_t address, hci_con_handle_t handle){
966     btstack_linked_list_iterator_t it;
967     btstack_linked_list_iterator_init(&it, &l2cap_channels);
968     while (btstack_linked_list_iterator_has_next(&it)){
969         l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
970         if ( ! bd_addr_cmp( channel->address, address) ){
971             l2cap_handle_connection_complete(handle, channel);
972         }
973     }
974     // process
975     l2cap_run();
976 }
977 
978 static void l2cap_notify_channel_can_send(void){
979     btstack_linked_list_iterator_t it;
980     btstack_linked_list_iterator_init(&it, &l2cap_channels);
981     while (btstack_linked_list_iterator_has_next(&it)){
982         l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
983         if (!channel->waiting_for_can_send_now) continue;
984         if (!hci_can_send_acl_packet_now(channel->con_handle)) continue;
985         channel->waiting_for_can_send_now = 0;
986         l2cap_emit_can_send_now(channel->packet_handler, channel->local_cid);
987     }
988 
989     int i;
990     for (i=0;i<L2CAP_FIXED_CHANNEL_TABLE_SIZE;i++){
991         if (!fixed_channels[i].callback) continue;
992         if (!fixed_channels[i].waiting_for_can_send_now) continue;
993         int can_send;
994         if (l2cap_fixed_channel_table_index_is_le(i)){
995             can_send = hci_can_send_acl_le_packet_now();
996         } else {
997             can_send = hci_can_send_acl_classic_packet_now();
998         }
999         if (!can_send) continue;
1000         fixed_channels[i].waiting_for_can_send_now = 0;
1001         l2cap_emit_can_send_now(fixed_channels[i].callback, l2cap_fixed_channel_table_channel_id_for_index(i));
1002     }
1003 }
1004 
1005 static void l2cap_hci_event_handler(uint8_t packet_type, uint16_t cid, uint8_t *packet, uint16_t size){
1006 
1007     bd_addr_t address;
1008     hci_con_handle_t handle;
1009     btstack_linked_list_iterator_t it;
1010     int hci_con_used;
1011 
1012     switch(hci_event_packet_get_type(packet)){
1013 
1014         // handle connection complete events
1015         case HCI_EVENT_CONNECTION_COMPLETE:
1016             reverse_bd_addr(&packet[5], address);
1017             if (packet[2] == 0){
1018                 handle = little_endian_read_16(packet, 3);
1019                 l2cap_handle_connection_success_for_addr(address, handle);
1020             } else {
1021                 l2cap_handle_connection_failed_for_addr(address, packet[2]);
1022             }
1023             break;
1024 
1025         // handle successful create connection cancel command
1026         case HCI_EVENT_COMMAND_COMPLETE:
1027             if (HCI_EVENT_IS_COMMAND_COMPLETE(packet, hci_create_connection_cancel)) {
1028                 if (packet[5] == 0){
1029                     reverse_bd_addr(&packet[6], address);
1030                     // CONNECTION TERMINATED BY LOCAL HOST (0X16)
1031                     l2cap_handle_connection_failed_for_addr(address, 0x16);
1032                 }
1033             }
1034             l2cap_run();    // try sending signaling packets first
1035             break;
1036 
1037         case HCI_EVENT_COMMAND_STATUS:
1038             l2cap_run();    // try sending signaling packets first
1039             break;
1040 
1041         // handle disconnection complete events
1042         case HCI_EVENT_DISCONNECTION_COMPLETE:
1043             // send l2cap disconnect events for all channels on this handle and free them
1044             handle = little_endian_read_16(packet, 3);
1045             btstack_linked_list_iterator_init(&it, &l2cap_channels);
1046             while (btstack_linked_list_iterator_has_next(&it)){
1047                 l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
1048                 if (channel->con_handle != handle) continue;
1049                 l2cap_emit_channel_closed(channel);
1050                 l2cap_stop_rtx(channel);
1051                 btstack_linked_list_iterator_remove(&it);
1052                 btstack_memory_l2cap_channel_free(channel);
1053             }
1054             break;
1055 
1056         // Notify channel packet handler if they can send now
1057         case HCI_EVENT_TRANSPORT_PACKET_SENT:
1058         case HCI_EVENT_NUMBER_OF_COMPLETED_PACKETS:
1059             l2cap_run();    // try sending signaling packets first
1060             l2cap_notify_channel_can_send();
1061             break;
1062 
1063         // HCI Connection Timeouts
1064         case L2CAP_EVENT_TIMEOUT_CHECK:
1065             handle = little_endian_read_16(packet, 2);
1066             if (gap_get_connection_type(handle) != GAP_CONNECTION_ACL) break;
1067             if (hci_authentication_active_for_handle(handle)) break;
1068             hci_con_used = 0;
1069             btstack_linked_list_iterator_init(&it, &l2cap_channels);
1070             while (btstack_linked_list_iterator_has_next(&it)){
1071                 l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
1072                 if (channel->con_handle != handle) continue;
1073                 hci_con_used = 1;
1074                 break;
1075             }
1076             if (hci_con_used) break;
1077             if (!hci_can_send_command_packet_now()) break;
1078             hci_send_cmd(&hci_disconnect, handle, 0x13); // remote closed connection
1079             break;
1080 
1081         case HCI_EVENT_READ_REMOTE_SUPPORTED_FEATURES_COMPLETE:
1082             handle = little_endian_read_16(packet, 3);
1083             btstack_linked_list_iterator_init(&it, &l2cap_channels);
1084             while (btstack_linked_list_iterator_has_next(&it)){
1085                 l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
1086                 if (channel->con_handle != handle) continue;
1087                 l2cap_handle_remote_supported_features_received(channel);
1088                 break;
1089             }
1090             break;
1091 
1092 #ifdef ENABLE_BLE
1093         case HCI_EVENT_LE_META:
1094             switch (packet[2]){
1095                 int addr_type;
1096                 l2cap_channel_t * channel;
1097                 case HCI_SUBEVENT_LE_CONNECTION_COMPLETE:
1098                     // Connection management
1099                     reverse_bd_addr(&packet[8], address);
1100                     addr_type = (bd_addr_type_t)packet[7];
1101                     log_info("L2CAP - LE Connection_complete (status=%u) type %u, %s", packet[3], addr_type, bd_addr_to_str(address));
1102                     // get l2cap_channel
1103                     // also pass in status
1104                     channel = l2cap_get_le_channel_for_address_and_addr_type(address, addr_type);
1105                     if (!channel) break;
1106                     l2cap_handle_le_connection_complete(channel, packet[3], little_endian_read_16(packet, 4));
1107                     break;
1108                 default:
1109                     break;
1110             }
1111             break;
1112 #endif
1113 
1114         case GAP_EVENT_SECURITY_LEVEL:
1115             handle = little_endian_read_16(packet, 2);
1116             log_info("l2cap - security level update");
1117             btstack_linked_list_iterator_init(&it, &l2cap_channels);
1118             while (btstack_linked_list_iterator_has_next(&it)){
1119                 l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
1120                 if (channel->con_handle != handle) continue;
1121 
1122                 log_info("l2cap - state %u", channel->state);
1123 
1124                 gap_security_level_t actual_level = (gap_security_level_t) packet[4];
1125                 gap_security_level_t required_level = channel->required_security_level;
1126 
1127                 switch (channel->state){
1128                     case L2CAP_STATE_WAIT_INCOMING_SECURITY_LEVEL_UPDATE:
1129                         if (actual_level >= required_level){
1130                             channel->state = L2CAP_STATE_WAIT_CLIENT_ACCEPT_OR_REJECT;
1131                             l2cap_emit_connection_request(channel);
1132                         } else {
1133                             channel->reason = 0x0003; // security block
1134                             channel->state = L2CAP_STATE_WILL_SEND_CONNECTION_RESPONSE_DECLINE;
1135                         }
1136                         break;
1137 
1138                     case L2CAP_STATE_WAIT_OUTGOING_SECURITY_LEVEL_UPDATE:
1139                         if (actual_level >= required_level){
1140                             channel->state = L2CAP_STATE_WILL_SEND_CONNECTION_REQUEST;
1141                         } else {
1142                             // disconnnect, authentication not good enough
1143                             hci_disconnect_security_block(handle);
1144                         }
1145                         break;
1146 
1147                     default:
1148                         break;
1149                 }
1150             }
1151             break;
1152 
1153         default:
1154             break;
1155     }
1156 
1157     l2cap_run();
1158 }
1159 
1160 static void l2cap_handle_disconnect_request(l2cap_channel_t *channel, uint16_t identifier){
1161     channel->remote_sig_id = identifier;
1162     channel->state = L2CAP_STATE_WILL_SEND_DISCONNECT_RESPONSE;
1163     l2cap_run();
1164 }
1165 
1166 static void l2cap_register_signaling_response(hci_con_handle_t handle, uint8_t code, uint8_t sig_id, uint16_t data){
1167     // Vol 3, Part A, 4.3: "The DCID and SCID fields shall be ignored when the result field indi- cates the connection was refused."
1168     if (signaling_responses_pending < NR_PENDING_SIGNALING_RESPONSES) {
1169         signaling_responses[signaling_responses_pending].handle = handle;
1170         signaling_responses[signaling_responses_pending].code = code;
1171         signaling_responses[signaling_responses_pending].sig_id = sig_id;
1172         signaling_responses[signaling_responses_pending].data = data;
1173         signaling_responses_pending++;
1174         l2cap_run();
1175     }
1176 }
1177 
1178 static void l2cap_handle_connection_request(hci_con_handle_t handle, uint8_t sig_id, uint16_t psm, uint16_t source_cid){
1179 
1180     // log_info("l2cap_handle_connection_request for handle %u, psm %u cid 0x%02x", handle, psm, source_cid);
1181     l2cap_service_t *service = l2cap_get_service(psm);
1182     if (!service) {
1183         // 0x0002 PSM not supported
1184         l2cap_register_signaling_response(handle, CONNECTION_REQUEST, sig_id, 0x0002);
1185         return;
1186     }
1187 
1188     hci_connection_t * hci_connection = hci_connection_for_handle( handle );
1189     if (!hci_connection) {
1190         //
1191         log_error("no hci_connection for handle %u", handle);
1192         return;
1193     }
1194 
1195     // alloc structure
1196     // log_info("l2cap_handle_connection_request register channel");
1197     l2cap_channel_t * channel = l2cap_create_channel_entry(service->packet_handler, hci_connection->address, BD_ADDR_TYPE_CLASSIC,
1198     psm, service->mtu, service->required_security_level);
1199     if (!channel){
1200         // 0x0004 No resources available
1201         l2cap_register_signaling_response(handle, CONNECTION_REQUEST, sig_id, 0x0004);
1202         return;
1203     }
1204 
1205     channel->con_handle = handle;
1206     channel->remote_cid = source_cid;
1207     channel->remote_sig_id = sig_id;
1208 
1209     // limit local mtu to max acl packet length - l2cap header
1210     if (channel->local_mtu > l2cap_max_mtu()) {
1211         channel->local_mtu = l2cap_max_mtu();
1212     }
1213 
1214     // set initial state
1215     channel->state =     L2CAP_STATE_WAIT_INCOMING_SECURITY_LEVEL_UPDATE;
1216     channel->state_var = L2CAP_CHANNEL_STATE_VAR_SEND_CONN_RESP_PEND;
1217 
1218     // add to connections list
1219     btstack_linked_list_add(&l2cap_channels, (btstack_linked_item_t *) channel);
1220 
1221     // assert security requirements
1222     gap_request_security_level(handle, channel->required_security_level);
1223 }
1224 
1225 void l2cap_accept_connection(uint16_t local_cid){
1226     log_info("L2CAP_ACCEPT_CONNECTION local_cid 0x%x", local_cid);
1227     l2cap_channel_t * channel = l2cap_get_channel_for_local_cid(local_cid);
1228     if (!channel) {
1229         log_error("l2cap_accept_connection called but local_cid 0x%x not found", local_cid);
1230         return;
1231     }
1232 
1233     channel->state = L2CAP_STATE_WILL_SEND_CONNECTION_RESPONSE_ACCEPT;
1234 
1235     // process
1236     l2cap_run();
1237 }
1238 
1239 void l2cap_decline_connection(uint16_t local_cid){
1240     log_info("L2CAP_DECLINE_CONNECTION local_cid 0x%x", local_cid);
1241     l2cap_channel_t * channel = l2cap_get_channel_for_local_cid( local_cid);
1242     if (!channel) {
1243         log_error( "l2cap_decline_connection called but local_cid 0x%x not found", local_cid);
1244         return;
1245     }
1246     channel->state  = L2CAP_STATE_WILL_SEND_CONNECTION_RESPONSE_DECLINE;
1247     channel->reason = 0x04; // no resources available
1248     l2cap_run();
1249 }
1250 
1251 static void l2cap_signaling_handle_configure_request(l2cap_channel_t *channel, uint8_t *command){
1252 
1253     channel->remote_sig_id = command[L2CAP_SIGNALING_COMMAND_SIGID_OFFSET];
1254 
1255     uint16_t flags = little_endian_read_16(command, 6);
1256     if (flags & 1) {
1257         channelStateVarSetFlag(channel, L2CAP_CHANNEL_STATE_VAR_SEND_CONF_RSP_CONT);
1258     }
1259 
1260     // accept the other's configuration options
1261     uint16_t end_pos = 4 + little_endian_read_16(command, L2CAP_SIGNALING_COMMAND_LENGTH_OFFSET);
1262     uint16_t pos     = 8;
1263     while (pos < end_pos){
1264         uint8_t option_hint = command[pos] >> 7;
1265         uint8_t option_type = command[pos] & 0x7f;
1266         log_info("l2cap cid %u, hint %u, type %u", channel->local_cid, option_hint, option_type);
1267         pos++;
1268         uint8_t length = command[pos++];
1269         // MTU { type(8): 1, len(8):2, MTU(16) }
1270         if (option_type == 1 && length == 2){
1271             channel->remote_mtu = little_endian_read_16(command, pos);
1272             // log_info("l2cap cid 0x%02x, remote mtu %u", channel->local_cid, channel->remote_mtu);
1273             channelStateVarSetFlag(channel, L2CAP_CHANNEL_STATE_VAR_SEND_CONF_RSP_MTU);
1274         }
1275         // Flush timeout { type(8):2, len(8): 2, Flush Timeout(16)}
1276         if (option_type == 2 && length == 2){
1277             channel->flush_timeout = little_endian_read_16(command, pos);
1278         }
1279         // check for unknown options
1280         if (option_hint == 0 && (option_type == 0 || option_type >= 0x07)){
1281             log_info("l2cap cid %u, unknown options", channel->local_cid);
1282             channelStateVarSetFlag(channel, L2CAP_CHANNEL_STATE_VAR_SEND_CONF_RSP_INVALID);
1283         }
1284         pos += length;
1285     }
1286 }
1287 
1288 static int l2cap_channel_ready_for_open(l2cap_channel_t *channel){
1289     // log_info("l2cap_channel_ready_for_open 0x%02x", channel->state_var);
1290     if ((channel->state_var & L2CAP_CHANNEL_STATE_VAR_RCVD_CONF_RSP) == 0) return 0;
1291     if ((channel->state_var & L2CAP_CHANNEL_STATE_VAR_SENT_CONF_RSP) == 0) return 0;
1292     // addition check that fixes re-entrance issue causing l2cap event channel opened twice
1293     if (channel->state == L2CAP_STATE_OPEN) return 0;
1294     return 1;
1295 }
1296 
1297 
1298 static void l2cap_signaling_handler_channel(l2cap_channel_t *channel, uint8_t *command){
1299 
1300     uint8_t  code       = command[L2CAP_SIGNALING_COMMAND_CODE_OFFSET];
1301     uint8_t  identifier = command[L2CAP_SIGNALING_COMMAND_SIGID_OFFSET];
1302     uint16_t result = 0;
1303 
1304     log_info("L2CAP signaling handler code %u, state %u", code, channel->state);
1305 
1306     // handle DISCONNECT REQUESTS seperately
1307     if (code == DISCONNECTION_REQUEST){
1308         switch (channel->state){
1309             case L2CAP_STATE_CONFIG:
1310             case L2CAP_STATE_OPEN:
1311             case L2CAP_STATE_WILL_SEND_DISCONNECT_REQUEST:
1312             case L2CAP_STATE_WAIT_DISCONNECT:
1313                 l2cap_handle_disconnect_request(channel, identifier);
1314                 break;
1315 
1316             default:
1317                 // ignore in other states
1318                 break;
1319         }
1320         return;
1321     }
1322 
1323     // @STATEMACHINE(l2cap)
1324     switch (channel->state) {
1325 
1326         case L2CAP_STATE_WAIT_CONNECT_RSP:
1327             switch (code){
1328                 case CONNECTION_RESPONSE:
1329                     l2cap_stop_rtx(channel);
1330                     result = little_endian_read_16 (command, L2CAP_SIGNALING_COMMAND_DATA_OFFSET+4);
1331                     switch (result) {
1332                         case 0:
1333                             // successful connection
1334                             channel->remote_cid = little_endian_read_16(command, L2CAP_SIGNALING_COMMAND_DATA_OFFSET);
1335                             channel->state = L2CAP_STATE_CONFIG;
1336                             channelStateVarSetFlag(channel, L2CAP_CHANNEL_STATE_VAR_SEND_CONF_REQ);
1337                             break;
1338                         case 1:
1339                             // connection pending. get some coffee, but start the ERTX
1340                             l2cap_start_ertx(channel);
1341                             break;
1342                         default:
1343                             // channel closed
1344                             channel->state = L2CAP_STATE_CLOSED;
1345                             // map l2cap connection response result to BTstack status enumeration
1346                             l2cap_emit_channel_opened(channel, L2CAP_CONNECTION_RESPONSE_RESULT_SUCCESSFUL + result);
1347 
1348                             // drop link key if security block
1349                             if (L2CAP_CONNECTION_RESPONSE_RESULT_SUCCESSFUL + result == L2CAP_CONNECTION_RESPONSE_RESULT_REFUSED_SECURITY){
1350                                 gap_drop_link_key_for_bd_addr(channel->address);
1351                             }
1352 
1353                             // discard channel
1354                             btstack_linked_list_remove(&l2cap_channels, (btstack_linked_item_t *) channel);
1355                             btstack_memory_l2cap_channel_free(channel);
1356                             break;
1357                     }
1358                     break;
1359 
1360                 default:
1361                     //@TODO: implement other signaling packets
1362                     break;
1363             }
1364             break;
1365 
1366         case L2CAP_STATE_CONFIG:
1367             result = little_endian_read_16 (command, L2CAP_SIGNALING_COMMAND_DATA_OFFSET+4);
1368             switch (code) {
1369                 case CONFIGURE_REQUEST:
1370                     channelStateVarSetFlag(channel, L2CAP_CHANNEL_STATE_VAR_SEND_CONF_RSP);
1371                     l2cap_signaling_handle_configure_request(channel, command);
1372                     if (!(channel->state_var & L2CAP_CHANNEL_STATE_VAR_SEND_CONF_RSP_CONT)){
1373                         // only done if continuation not set
1374                         channelStateVarSetFlag(channel, L2CAP_CHANNEL_STATE_VAR_RCVD_CONF_REQ);
1375                     }
1376                     break;
1377                 case CONFIGURE_RESPONSE:
1378                     l2cap_stop_rtx(channel);
1379                     switch (result){
1380                         case 0: // success
1381                             channelStateVarSetFlag(channel, L2CAP_CHANNEL_STATE_VAR_RCVD_CONF_RSP);
1382                             break;
1383                         case 4: // pending
1384                             l2cap_start_ertx(channel);
1385                             break;
1386                         default:
1387                             // retry on negative result
1388                             channelStateVarSetFlag(channel, L2CAP_CHANNEL_STATE_VAR_SEND_CONF_REQ);
1389                             break;
1390                     }
1391                     break;
1392                 default:
1393                     break;
1394             }
1395             if (l2cap_channel_ready_for_open(channel)){
1396                 // for open:
1397                 channel->state = L2CAP_STATE_OPEN;
1398                 l2cap_emit_channel_opened(channel, 0);
1399             }
1400             break;
1401 
1402         case L2CAP_STATE_WAIT_DISCONNECT:
1403             switch (code) {
1404                 case DISCONNECTION_RESPONSE:
1405                     l2cap_finialize_channel_close(channel);
1406                     break;
1407                 default:
1408                     //@TODO: implement other signaling packets
1409                     break;
1410             }
1411             break;
1412 
1413         case L2CAP_STATE_CLOSED:
1414             // @TODO handle incoming requests
1415             break;
1416 
1417         case L2CAP_STATE_OPEN:
1418             //@TODO: implement other signaling packets, e.g. re-configure
1419             break;
1420         default:
1421             break;
1422     }
1423     // log_info("new state %u", channel->state);
1424 }
1425 
1426 
1427 static void l2cap_signaling_handler_dispatch( hci_con_handle_t handle, uint8_t * command){
1428 
1429     // get code, signalind identifier and command len
1430     uint8_t code   = command[L2CAP_SIGNALING_COMMAND_CODE_OFFSET];
1431     uint8_t sig_id = command[L2CAP_SIGNALING_COMMAND_SIGID_OFFSET];
1432 
1433     // not for a particular channel, and not CONNECTION_REQUEST, ECHO_[REQUEST|RESPONSE], INFORMATION_REQUEST
1434     if (code < 1 || code == ECHO_RESPONSE || code > INFORMATION_REQUEST){
1435         l2cap_register_signaling_response(handle, COMMAND_REJECT, sig_id, L2CAP_REJ_CMD_UNKNOWN);
1436         return;
1437     }
1438 
1439     // general commands without an assigned channel
1440     switch(code) {
1441 
1442         case CONNECTION_REQUEST: {
1443             uint16_t psm =        little_endian_read_16(command, L2CAP_SIGNALING_COMMAND_DATA_OFFSET);
1444             uint16_t source_cid = little_endian_read_16(command, L2CAP_SIGNALING_COMMAND_DATA_OFFSET+2);
1445             l2cap_handle_connection_request(handle, sig_id, psm, source_cid);
1446             return;
1447         }
1448 
1449         case ECHO_REQUEST:
1450             l2cap_register_signaling_response(handle, code, sig_id, 0);
1451             return;
1452 
1453         case INFORMATION_REQUEST: {
1454             uint16_t infoType = little_endian_read_16(command, L2CAP_SIGNALING_COMMAND_DATA_OFFSET);
1455             l2cap_register_signaling_response(handle, code, sig_id, infoType);
1456             return;
1457         }
1458 
1459         default:
1460             break;
1461     }
1462 
1463 
1464     // Get potential destination CID
1465     uint16_t dest_cid = little_endian_read_16(command, L2CAP_SIGNALING_COMMAND_DATA_OFFSET);
1466 
1467     // Find channel for this sig_id and connection handle
1468     btstack_linked_list_iterator_t it;
1469     btstack_linked_list_iterator_init(&it, &l2cap_channels);
1470     while (btstack_linked_list_iterator_has_next(&it)){
1471         l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
1472         if (channel->con_handle != handle) continue;
1473         if (code & 1) {
1474             // match odd commands (responses) by previous signaling identifier
1475             if (channel->local_sig_id == sig_id) {
1476                 l2cap_signaling_handler_channel(channel, command);
1477                 break;
1478             }
1479         } else {
1480             // match even commands (requests) by local channel id
1481             if (channel->local_cid == dest_cid) {
1482                 l2cap_signaling_handler_channel(channel, command);
1483                 break;
1484             }
1485         }
1486     }
1487 }
1488 
1489 #ifdef ENABLE_BLE
1490 // @returns valid
1491 static int l2cap_le_signaling_handler_dispatch(hci_con_handle_t handle, uint8_t * command, uint8_t sig_id){
1492     hci_connection_t * connection;
1493     uint16_t result;
1494     uint8_t  event[10];
1495     uint16_t le_psm;
1496     l2cap_service_t * service;
1497 
1498     switch (command[0]){
1499 
1500         case CONNECTION_PARAMETER_UPDATE_RESPONSE:
1501             result = little_endian_read_16(command, 4);
1502             l2cap_emit_connection_parameter_update_response(handle, result);
1503             break;
1504 
1505         case CONNECTION_PARAMETER_UPDATE_REQUEST:
1506             connection = hci_connection_for_handle(handle);
1507             if (connection){
1508                 if (connection->role != HCI_ROLE_MASTER){
1509                     // reject command without notifying upper layer when not in master role
1510                     return 0;
1511                 }
1512                 int update_parameter = 1;
1513                 le_connection_parameter_range_t existing_range;
1514                 gap_get_connection_parameter_range(&existing_range);
1515                 uint16_t le_conn_interval_min = little_endian_read_16(command,8);
1516                 uint16_t le_conn_interval_max = little_endian_read_16(command,10);
1517                 uint16_t le_conn_latency = little_endian_read_16(command,12);
1518                 uint16_t le_supervision_timeout = little_endian_read_16(command,14);
1519 
1520                 if (le_conn_interval_min < existing_range.le_conn_interval_min) update_parameter = 0;
1521                 if (le_conn_interval_max > existing_range.le_conn_interval_max) update_parameter = 0;
1522 
1523                 if (le_conn_latency < existing_range.le_conn_latency_min) update_parameter = 0;
1524                 if (le_conn_latency > existing_range.le_conn_latency_max) update_parameter = 0;
1525 
1526                 if (le_supervision_timeout < existing_range.le_supervision_timeout_min) update_parameter = 0;
1527                 if (le_supervision_timeout > existing_range.le_supervision_timeout_max) update_parameter = 0;
1528 
1529                 if (update_parameter){
1530                     connection->le_con_parameter_update_state = CON_PARAMETER_UPDATE_SEND_RESPONSE;
1531                     connection->le_conn_interval_min = le_conn_interval_min;
1532                     connection->le_conn_interval_max = le_conn_interval_max;
1533                     connection->le_conn_latency = le_conn_latency;
1534                     connection->le_supervision_timeout = le_supervision_timeout;
1535                 } else {
1536                     connection->le_con_parameter_update_state = CON_PARAMETER_UPDATE_DENY;
1537                 }
1538                 connection->le_con_param_update_identifier = sig_id;
1539             }
1540 
1541             if (!l2cap_event_packet_handler) break;
1542 
1543             event[0] = L2CAP_EVENT_CONNECTION_PARAMETER_UPDATE_REQUEST;
1544             event[1] = 8;
1545             memcpy(&event[2], &command[4], 8);
1546             hci_dump_packet( HCI_EVENT_PACKET, 0, event, sizeof(event));
1547             (*l2cap_event_packet_handler)( HCI_EVENT_PACKET, 0, event, sizeof(event));
1548             break;
1549 
1550         case LE_CREDIT_BASED_CONNECTION_REQUEST:
1551 
1552             // get hci connection, bail if not found (must not happen)
1553             connection = hci_connection_for_handle(handle);
1554             if (!connection) return 0;
1555 
1556             // check if service registered
1557             le_psm  = little_endian_read_16(command, 4);
1558             service = l2cap_le_get_service(le_psm);
1559 
1560             if (service){
1561 
1562                 uint16_t source_cid = little_endian_read_16(command, 6);
1563                 if (source_cid < 0x40){
1564                     // 0x0009 Connection refused - Invalid Source CID
1565                     l2cap_register_signaling_response(handle, LE_CREDIT_BASED_CONNECTION_REQUEST, sig_id, 0x0009);
1566                     return 1;
1567                 }
1568 
1569                 // go through list of channels for this ACL connection and check if we get a match
1570                 btstack_linked_list_iterator_t it;
1571                 btstack_linked_list_iterator_init(&it, &l2cap_le_channels);
1572                 while (btstack_linked_list_iterator_has_next(&it)){
1573                     l2cap_channel_t * channel = (l2cap_channel_t *) btstack_linked_list_iterator_next(&it);
1574                     if (channel->con_handle != handle) continue;
1575                     if (channel->remote_cid != source_cid) continue;
1576                     // 0x000a Connection refused - Source CID already allocated
1577                     l2cap_register_signaling_response(handle, LE_CREDIT_BASED_CONNECTION_REQUEST, sig_id, 0x000a);
1578                     return 1;
1579                 }
1580 
1581                 // TODO: deal with authentication requirements, errors 0x005 - 000x8
1582 
1583                 // allocate channel
1584                 l2cap_channel_t * channel = l2cap_create_channel_entry(service->packet_handler, connection->address,
1585                     BD_ADDR_TYPE_LE_RANDOM, le_psm, service->mtu, service->required_security_level);
1586                 if (!channel){
1587                     // 0x0004 Connection refused – no resources available
1588                     l2cap_register_signaling_response(handle, LE_CREDIT_BASED_CONNECTION_REQUEST, sig_id, 0x0004);
1589                     return 1;
1590                 }
1591 
1592                 channel->con_handle = handle;
1593                 channel->remote_cid = source_cid;
1594                 channel->remote_sig_id = sig_id;
1595 
1596                 // limit local mtu to max acl packet length - l2cap header
1597                 if (channel->local_mtu > l2cap_max_le_mtu()) {
1598                     channel->local_mtu = l2cap_max_le_mtu();
1599                 }
1600 
1601                 // set initial state
1602                 channel->state = L2CAP_STATE_WAIT_CLIENT_ACCEPT_OR_REJECT;
1603 
1604                 // add to connections list
1605                 btstack_linked_list_add(&l2cap_le_channels, (btstack_linked_item_t *) channel);
1606 
1607                 // post connection request event
1608                 l2cap_emit_connection_request(channel);
1609 
1610             } else {
1611 
1612                 // Connection refused – LE_PSM not supported
1613                 l2cap_register_signaling_response(handle, LE_CREDIT_BASED_CONNECTION_REQUEST, sig_id, 0x0002);
1614             }
1615             break;
1616         default:
1617             // command unknown -> reject command
1618             return 0;
1619     }
1620     return 1;
1621 }
1622 #endif
1623 
1624 static void l2cap_acl_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size ){
1625 
1626     // Get Channel ID
1627     uint16_t channel_id = READ_L2CAP_CHANNEL_ID(packet);
1628     hci_con_handle_t handle = READ_ACL_CONNECTION_HANDLE(packet);
1629 
1630     switch (channel_id) {
1631 
1632         case L2CAP_CID_SIGNALING: {
1633             uint16_t command_offset = 8;
1634             while (command_offset < size) {
1635                 // handle signaling commands
1636                 l2cap_signaling_handler_dispatch(handle, &packet[command_offset]);
1637 
1638                 // increment command_offset
1639                 command_offset += L2CAP_SIGNALING_COMMAND_DATA_OFFSET + little_endian_read_16(packet, command_offset + L2CAP_SIGNALING_COMMAND_LENGTH_OFFSET);
1640             }
1641             break;
1642         }
1643 
1644 #ifdef ENABLE_BLE
1645         case L2CAP_CID_SIGNALING_LE: {
1646             uint16_t sig_id = packet[COMPLETE_L2CAP_HEADER + 1];
1647             int      valid  = l2cap_le_signaling_handler_dispatch(handle, &packet[COMPLETE_L2CAP_HEADER], sig_id);
1648             if (!valid){
1649                 l2cap_register_signaling_response(handle, COMMAND_REJECT_LE, sig_id, L2CAP_REJ_CMD_UNKNOWN);
1650             }
1651             break;
1652         }
1653 #endif
1654 
1655         case L2CAP_CID_ATTRIBUTE_PROTOCOL:
1656             if (fixed_channels[L2CAP_FIXED_CHANNEL_TABLE_INDEX_ATTRIBUTE_PROTOCOL].callback) {
1657                 (*fixed_channels[L2CAP_FIXED_CHANNEL_TABLE_INDEX_ATTRIBUTE_PROTOCOL].callback)(ATT_DATA_PACKET, handle, &packet[COMPLETE_L2CAP_HEADER], size-COMPLETE_L2CAP_HEADER);
1658             }
1659             break;
1660 
1661         case L2CAP_CID_SECURITY_MANAGER_PROTOCOL:
1662             if (fixed_channels[L2CAP_FIXED_CHANNEL_TABLE_INDEX_SECURITY_MANAGER_PROTOCOL].callback) {
1663                 (*fixed_channels[L2CAP_FIXED_CHANNEL_TABLE_INDEX_SECURITY_MANAGER_PROTOCOL].callback)(SM_DATA_PACKET, handle, &packet[COMPLETE_L2CAP_HEADER], size-COMPLETE_L2CAP_HEADER);
1664             }
1665             break;
1666 
1667         case L2CAP_CID_CONNECTIONLESS_CHANNEL:
1668             if (fixed_channels[L2CAP_FIXED_CHANNEL_TABLE_INDEX_CONNECTIONLESS_CHANNEL].callback) {
1669                 (*fixed_channels[L2CAP_FIXED_CHANNEL_TABLE_INDEX_CONNECTIONLESS_CHANNEL].callback)(UCD_DATA_PACKET, handle, &packet[COMPLETE_L2CAP_HEADER], size-COMPLETE_L2CAP_HEADER);
1670             }
1671             break;
1672 
1673         default: {
1674             // Find channel for this channel_id and connection handle
1675             l2cap_channel_t * l2cap_channel = l2cap_get_channel_for_local_cid(channel_id);
1676             if (l2cap_channel) {
1677                 l2cap_dispatch_to_channel(l2cap_channel, L2CAP_DATA_PACKET, &packet[COMPLETE_L2CAP_HEADER], size-COMPLETE_L2CAP_HEADER);
1678             }
1679             break;
1680         }
1681     }
1682 
1683     l2cap_run();
1684 }
1685 
1686 // finalize closed channel - l2cap_handle_disconnect_request & DISCONNECTION_RESPONSE
1687 void l2cap_finialize_channel_close(l2cap_channel_t * channel){
1688     channel->state = L2CAP_STATE_CLOSED;
1689     l2cap_emit_channel_closed(channel);
1690     // discard channel
1691     l2cap_stop_rtx(channel);
1692     btstack_linked_list_remove(&l2cap_channels, (btstack_linked_item_t *) channel);
1693     btstack_memory_l2cap_channel_free(channel);
1694 }
1695 
1696 static l2cap_service_t * l2cap_get_service_internal(btstack_linked_list_t * services, uint16_t psm){
1697     btstack_linked_list_iterator_t it;
1698     btstack_linked_list_iterator_init(&it, services);
1699     while (btstack_linked_list_iterator_has_next(&it)){
1700         l2cap_service_t * service = (l2cap_service_t *) btstack_linked_list_iterator_next(&it);
1701         if ( service->psm == psm){
1702             return service;
1703         };
1704     }
1705     return NULL;
1706 }
1707 
1708 static inline l2cap_service_t * l2cap_get_service(uint16_t psm){
1709     return l2cap_get_service_internal(&l2cap_services, psm);
1710 }
1711 
1712 
1713 uint8_t l2cap_register_service(btstack_packet_handler_t service_packet_handler, uint16_t psm, uint16_t mtu, gap_security_level_t security_level){
1714 
1715     log_info("L2CAP_REGISTER_SERVICE psm 0x%x mtu %u", psm, mtu);
1716 
1717     // check for alread registered psm
1718     l2cap_service_t *service = l2cap_get_service(psm);
1719     if (service) {
1720         log_error("l2cap_register_service: PSM %u already registered", psm);
1721         return L2CAP_SERVICE_ALREADY_REGISTERED;
1722     }
1723 
1724     // alloc structure
1725     service = btstack_memory_l2cap_service_get();
1726     if (!service) {
1727         log_error("l2cap_register_service: no memory for l2cap_service_t");
1728         return BTSTACK_MEMORY_ALLOC_FAILED;
1729     }
1730 
1731     // fill in
1732     service->psm = psm;
1733     service->mtu = mtu;
1734     service->packet_handler = service_packet_handler;
1735     service->required_security_level = security_level;
1736 
1737     // add to services list
1738     btstack_linked_list_add(&l2cap_services, (btstack_linked_item_t *) service);
1739 
1740     // enable page scan
1741     gap_connectable_control(1);
1742 
1743     return 0;
1744 }
1745 
1746 uint8_t l2cap_unregister_service(uint16_t psm){
1747 
1748     log_info("L2CAP_UNREGISTER_SERVICE psm 0x%x", psm);
1749 
1750     l2cap_service_t *service = l2cap_get_service(psm);
1751     if (!service) return L2CAP_SERVICE_DOES_NOT_EXIST;
1752     btstack_linked_list_remove(&l2cap_services, (btstack_linked_item_t *) service);
1753     btstack_memory_l2cap_service_free(service);
1754 
1755     // disable page scan when no services registered
1756     if (btstack_linked_list_empty(&l2cap_services)) {
1757         gap_connectable_control(0);
1758     }
1759     return 0;
1760 }
1761 
1762 // Bluetooth 4.0 - allows to register handler for Attribute Protocol and Security Manager Protocol
1763 void l2cap_register_fixed_channel(btstack_packet_handler_t the_packet_handler, uint16_t channel_id) {
1764     int index = l2cap_fixed_channel_table_index_for_channel_id(channel_id);
1765     if (index < 0) return;
1766     fixed_channels[index].callback = the_packet_handler;
1767 }
1768 
1769 #ifdef ENABLE_BLE
1770 
1771 static inline l2cap_service_t * l2cap_le_get_service(uint16_t le_psm){
1772     return l2cap_get_service_internal(&l2cap_le_services, le_psm);
1773 }
1774 
1775 uint8_t l2cap_le_register_service(btstack_packet_handler_t packet_handler, uint16_t psm, gap_security_level_t security_level){
1776 
1777     log_info("L2CAP_LE_REGISTER_SERVICE psm 0x%x", psm);
1778 
1779     // check for alread registered psm
1780     l2cap_service_t *service = l2cap_le_get_service(psm);
1781     if (service) {
1782         return L2CAP_SERVICE_ALREADY_REGISTERED;
1783     }
1784 
1785     // alloc structure
1786     service = btstack_memory_l2cap_service_get();
1787     if (!service) {
1788         log_error("l2cap_register_service_internal: no memory for l2cap_service_t");
1789         return BTSTACK_MEMORY_ALLOC_FAILED;
1790     }
1791 
1792     // fill in
1793     service->psm = psm;
1794     service->mtu = 0;
1795     service->packet_handler = packet_handler;
1796     service->required_security_level = security_level;
1797 
1798     // add to services list
1799     btstack_linked_list_add(&l2cap_le_services, (btstack_linked_item_t *) service);
1800 
1801     // done
1802     return 0;
1803 }
1804 
1805 uint8_t l2cap_le_unregister_service(uint16_t psm) {
1806     log_info("L2CAP_LE_UNREGISTER_SERVICE psm 0x%x", psm);
1807     l2cap_service_t *service = l2cap_le_get_service(psm);
1808     if (!service) return L2CAP_SERVICE_DOES_NOT_EXIST;
1809 
1810     btstack_linked_list_remove(&l2cap_le_services, (btstack_linked_item_t *) service);
1811     btstack_memory_l2cap_service_free(service);
1812     return 0;
1813 }
1814 
1815 uint8_t l2cap_le_accept_connection(uint16_t local_cid, uint8_t * receive_sdu_buffer, uint16_t mtu, uint16_t initial_credits){
1816     // get channel
1817     l2cap_channel_t * channel = l2cap_le_get_channel_for_local_cid(local_cid);
1818     if (!channel) return L2CAP_LOCAL_CID_DOES_NOT_EXIST;
1819 
1820     // validate state
1821     if (channel->state != L2CAP_STATE_WAIT_CLIENT_ACCEPT_OR_REJECT){
1822         return ERROR_CODE_COMMAND_DISALLOWED;
1823     }
1824 
1825     // TODO: set mtu and receive buffer
1826 
1827     // set state accept connection
1828     channel->state = L2CAP_STATE_WILL_SEND_CONNECTION_RESPONSE_ACCEPT;
1829 
1830     // go
1831     l2cap_run();
1832     return 0;
1833 }
1834 
1835 /**
1836  * @brief Deny incoming LE Data Channel connection due to resource constraints
1837  * @param local_cid             L2CAP LE Data Channel Identifier
1838  */
1839 
1840 uint8_t l2cap_le_decline_connection(uint16_t local_cid){
1841     // get channel
1842     l2cap_channel_t * channel = l2cap_le_get_channel_for_local_cid(local_cid);
1843     if (!channel) return L2CAP_LOCAL_CID_DOES_NOT_EXIST;
1844 
1845     // validate state
1846     if (channel->state != L2CAP_STATE_WAIT_CLIENT_ACCEPT_OR_REJECT){
1847         return ERROR_CODE_COMMAND_DISALLOWED;
1848     }
1849 
1850     // set state decline connection
1851     channel->state  = L2CAP_STATE_WILL_SEND_LE_CONNECTION_RESPONSE_DECLINE;
1852     channel->reason = 0x04; // no resources available
1853     l2cap_run();
1854     return 0;
1855 }
1856 
1857 uint8_t l2cap_le_create_channel(btstack_packet_handler_t packet_handler, bd_addr_t address, bd_addr_type_t address_type,
1858     uint16_t psm, uint8_t * receive_sdu_buffer, uint16_t mtu, uint16_t initial_credits, gap_security_level_t security_level,
1859     uint16_t * out_local_cid) {
1860 
1861     log_info("L2CAP_LE_CREATE_CHANNEL addr %s psm 0x%x mtu %u", bd_addr_to_str(address), psm, mtu);
1862 
1863     l2cap_channel_t * channel = l2cap_create_channel_entry(packet_handler, address, address_type, psm, mtu, LEVEL_0);
1864     if (!channel) {
1865         return BTSTACK_MEMORY_ALLOC_FAILED;
1866     }
1867     log_info("l2cap_le_create_channel %p", channel);
1868 
1869     // store local_cid
1870     if (out_local_cid){
1871        *out_local_cid = channel->local_cid;
1872     }
1873 
1874     channel->state = L2CAP_STATE_WAIT_CONNECTION_COMPLETE;
1875 
1876     // add to connections list
1877     btstack_linked_list_add(&l2cap_le_channels, (btstack_linked_item_t *) channel);
1878 
1879     // check if hci connection is already usable
1880     hci_connection_t * conn = hci_connection_for_bd_addr_and_type(address, address_type);
1881 
1882     if (conn){
1883         log_info("l2cap_le_create_channel, hci connection already exists");
1884         l2cap_handle_le_connection_complete(channel, 0, conn->con_handle);
1885     } else {
1886 
1887         //
1888         // TODO: start timer
1889         // ..
1890 
1891         // start connection
1892         uint8_t res = gap_auto_connection_start(address_type, address);
1893         if (res){
1894             // discard channel object
1895             log_info("gap_auto_connection_start failed! 0x%02x", res);
1896             btstack_linked_list_remove(&l2cap_le_channels, (btstack_linked_item_t *) channel);
1897             btstack_memory_l2cap_channel_free(channel);
1898             return res;
1899         }
1900     }
1901     return 0;
1902 }
1903 
1904 /**
1905  * @brief Provide credtis for LE Data Channel
1906  * @param local_cid             L2CAP LE Data Channel Identifier
1907  * @param credits               Number additional credits for peer
1908  */
1909 uint8_t l2cap_le_provide_credits(uint16_t cid, uint16_t credits){
1910     // get channel
1911     // bail if missing
1912     // check state
1913     // check incoming credits + credits <= 0xffff
1914     // set credits_granted
1915     // l2cap_le_run()
1916     return 0;
1917 }
1918 
1919 /**
1920  * @brief Check if outgoing buffer is available and that there's space on the Bluetooth module
1921  * @param local_cid             L2CAP LE Data Channel Identifier
1922  */
1923 int l2cap_le_can_send_now(uint16_t cid){
1924     // check if data can be sent via le at all
1925     return 0;
1926 }
1927 
1928 /**
1929  * @brief Request emission of L2CAP_EVENT_CAN_SEND_NOW as soon as possible
1930  * @note L2CAP_EVENT_CAN_SEND_NOW might be emitted during call to this function
1931  *       so packet handler should be ready to handle it
1932  * @param local_cid             L2CAP LE Data Channel Identifier
1933  */
1934 uint8_t l2cap_le_request_can_send_now_event(uint16_t cid){
1935     // same as for non-le
1936     return 0;
1937 }
1938 
1939 /**
1940  * @brief Send data via LE Data Channel
1941  * @note Since data larger then the maximum PDU needs to be segmented into multiple PDUs, data needs to stay valid until ... event
1942  * @param local_cid             L2CAP LE Data Channel Identifier
1943  * @param data                  data to send
1944  * @param size                  data size
1945  */
1946 uint8_t l2cap_le_send_data(uint16_t cid, uint8_t * data, uint16_t size){
1947     // check if no outgoing data is pending
1948     // store info
1949     // l2cap_le_run()
1950     return 0;
1951 }
1952 
1953 /**
1954  * @brief Disconnect from LE Data Channel
1955  * @param local_cid             L2CAP LE Data Channel Identifier
1956  */
1957 uint8_t l2cap_le_disconnect(uint16_t cid)
1958 {
1959     // find channel
1960     // check state
1961     // set state SEND_DISCONNECT
1962     return 0;
1963 }
1964 
1965 #endif
1966