1 /******************************************************************************
2  *
3  *  Copyright 1999-2012 Broadcom Corporation
4  *
5  *  Licensed under the Apache License, Version 2.0 (the "License");
6  *  you may not use this file except in compliance with the License.
7  *  You may obtain a copy of the License at:
8  *
9  *  http://www.apache.org/licenses/LICENSE-2.0
10  *
11  *  Unless required by applicable law or agreed to in writing, software
12  *  distributed under the License is distributed on an "AS IS" BASIS,
13  *  WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14  *  See the License for the specific language governing permissions and
15  *  limitations under the License.
16  *
17  ******************************************************************************/
18 
19 /*****************************************************************************
20  *
21  *  This file contains definitions internal to the RFC unit
22  *
23  *****************************************************************************/
24 
25 #ifndef RFC_INT_H
26 #define RFC_INT_H
27 
28 #include "l2c_api.h"
29 #include "port_int.h"
30 
31 /*
32  * Define RFCOMM result codes
33 */
34 #define RFCOMM_SUCCESS 0
35 #define RFCOMM_ERROR 1
36 #define RFCOMM_LOW_RESOURCES 2
37 #define RFCOMM_TRY_LATER 3
38 
39 #define RFCOMM_USER_ERR 111
40 #define RFCOMM_SECURITY_ERR 112
41 
42 /*
43  * Define max and min RFCOMM MTU (N1)
44 */
45 #define RFCOMM_MIN_MTU 23
46 #define RFCOMM_MAX_MTU 32767
47 
48 extern void RFCOMM_StartReq(tRFC_MCB* p_mcb);
49 extern void RFCOMM_StartRsp(tRFC_MCB* p_mcb, uint16_t result);
50 
51 extern void RFCOMM_DlcEstablishReq(tRFC_MCB* p_mcb, uint8_t dlci, uint16_t mtu);
52 extern void RFCOMM_DlcEstablishRsp(tRFC_MCB* p_mcb, uint8_t dlci, uint16_t mtu,
53                                    uint16_t result);
54 
55 extern void RFCOMM_DataReq(tRFC_MCB* p_mcb, uint8_t dlci, BT_HDR* p_buf);
56 
57 extern void RFCOMM_DlcReleaseReq(tRFC_MCB* p_mcb, uint8_t dlci);
58 
59 extern void RFCOMM_ParNegReq(tRFC_MCB* p_mcb, uint8_t dlci, uint16_t mtu);
60 extern void RFCOMM_ParNegRsp(tRFC_MCB* p_mcb, uint8_t dlci, uint16_t mtu,
61                              uint8_t cl, uint8_t k);
62 
63 extern void RFCOMM_TestReq(uint8_t* p_data, uint16_t len);
64 
65 extern void RFCOMM_FlowReq(tRFC_MCB* p_mcb, uint8_t dlci, bool state);
66 
67 extern void RFCOMM_PortNegReq(tRFC_MCB* p_mcb, uint8_t dlci,
68                               tPORT_STATE* p_pars);
69 extern void RFCOMM_PortNegRsp(tRFC_MCB* p_mcb, uint8_t dlci,
70                               tPORT_STATE* p_pars, uint16_t param_mask);
71 
72 extern void RFCOMM_ControlReq(tRFC_MCB* p_mcb, uint8_t dlci,
73                               tPORT_CTRL* p_pars);
74 extern void RFCOMM_ControlRsp(tRFC_MCB* p_mcb, uint8_t dlci,
75                               tPORT_CTRL* p_pars);
76 
77 extern void RFCOMM_LineStatusReq(tRFC_MCB* p_mcb, uint8_t dlci,
78                                  uint8_t line_status);
79 /*
80  * Define logical struct used for sending and decoding MX frames
81 */
82 typedef struct {
83   uint8_t dlci;
84   uint8_t type;
85   uint8_t cr;
86   uint8_t ea;
87   uint8_t pf;
88   uint8_t credit;
89 
90   union {
91     struct {
92       uint8_t dlci;
93       uint8_t frame_type;
94       uint8_t conv_layer;
95       uint8_t priority;
96       uint8_t t1;
97       uint16_t mtu;
98       uint8_t n2;
99       uint8_t k;
100     } pn;
101     struct {
102       uint8_t* p_data;
103       uint16_t data_len;
104     } test;
105     struct {
106       uint8_t dlci;
107       uint8_t signals;
108       uint8_t break_present;
109       uint8_t break_duration;
110     } msc;
111     struct {
112       uint8_t ea;
113       uint8_t cr;
114       uint8_t type;
115     } nsc;
116     struct {
117       uint8_t dlci;
118       uint8_t is_request;
119       uint8_t baud_rate;
120       uint8_t byte_size;
121       uint8_t stop_bits;
122       uint8_t parity;
123       uint8_t parity_type;
124       uint8_t fc_type;
125       uint8_t xon_char;
126       uint8_t xoff_char;
127       uint16_t param_mask;
128     } rpn;
129     struct {
130       uint8_t dlci;
131       uint8_t line_status;
132     } rls;
133   } u;
134 } MX_FRAME;
135 
136 #define LINE_STATUS_NO_ERROR 0x00
137 #define LINE_STATUS_OVERRUN 0x02  /* Receive Overrun Error   */
138 #define LINE_STATUS_RXPARITY 0x04 /* Receive Parity Error    */
139 #define LINE_STATUS_FRAME 0x08    /* Receive Framing error   */
140 #define LINE_STATUS_FAILED 0x10   /* Connection Failed       */
141 
142 /*
143  * Define states and events for the RFC multiplexer state machine
144 */
145 #define RFC_MX_STATE_IDLE 0
146 #define RFC_MX_STATE_WAIT_CONN_CNF 1
147 #define RFC_MX_STATE_CONFIGURE 2
148 #define RFC_MX_STATE_SABME_WAIT_UA 3
149 #define RFC_MX_STATE_WAIT_SABME 4
150 #define RFC_MX_STATE_CONNECTED 5
151 #define RFC_MX_STATE_DISC_WAIT_UA 6
152 
153 /*
154  * Define port states
155 */
156 #define RFC_STATE_CLOSED 0
157 #define RFC_STATE_SABME_WAIT_UA 1
158 #define RFC_STATE_ORIG_WAIT_SEC_CHECK 2
159 #define RFC_STATE_TERM_WAIT_SEC_CHECK 3
160 #define RFC_STATE_OPENED 4
161 #define RFC_STATE_DISC_WAIT_UA 5
162 
163 /*
164  * Events that can be received by multiplexer as well as port state machines
165 */
166 #define RFC_EVENT_SABME 0
167 #define RFC_EVENT_UA 1
168 #define RFC_EVENT_DM 2
169 #define RFC_EVENT_DISC 3
170 #define RFC_EVENT_UIH 4
171 #define RFC_EVENT_TIMEOUT 5
172 #define RFC_EVENT_BAD_FRAME 50
173 /*
174  * Multiplexer events
175 */
176 #define RFC_MX_EVENT_START_REQ 6
177 #define RFC_MX_EVENT_START_RSP 7
178 #define RFC_MX_EVENT_CLOSE_REQ 8
179 #define RFC_MX_EVENT_CONN_CNF 9
180 #define RFC_MX_EVENT_CONN_IND 10
181 #define RFC_MX_EVENT_CONF_CNF 11
182 #define RFC_MX_EVENT_CONF_IND 12
183 #define RFC_MX_EVENT_QOS_VIOLATION_IND 13
184 #define RFC_MX_EVENT_DISC_IND 14
185 #define RFC_MX_EVENT_TEST_CMD 15
186 #define RFC_MX_EVENT_TEST_RSP 16
187 #define RFC_MX_EVENT_FCON_CMD 17
188 #define RFC_MX_EVENT_FCOFF_CMD 18
189 #define RFC_MX_EVENT_NSC 19
190 #define RFC_MX_EVENT_NSC_RSP 20
191 
192 /*
193  * Port events
194 */
195 #define RFC_EVENT_OPEN 9
196 #define RFC_EVENT_ESTABLISH_RSP 11
197 #define RFC_EVENT_CLOSE 12
198 #define RFC_EVENT_CLEAR 13
199 #define RFC_EVENT_DATA 14
200 #define RFC_EVENT_SEC_COMPLETE 15
201 
202 /* seconds to wait for reply with Poll bit */
203 #define RFC_T1_TIMEOUT 20
204 /* seconds to wait for reply with Poll bit other than MX */
205 #define RFC_PORT_T1_TIMEOUT 60
206 /* timeout to wait for Mx UIH */
207 #define RFC_T2_TIMEOUT 20
208 /* If something goes wrong and we send DISC we should not wait for min */
209 #define RFC_DISC_TIMEOUT 3
210 #define RFC_CLOSE_TIMEOUT 10
211 /* first connection to be established on Mx */
212 #define RFCOMM_CONN_TIMEOUT 120
213 
214 /* Define RFComm control block
215 */
216 typedef struct {
217   MX_FRAME rx_frame;
218   tL2CAP_APPL_INFO reg_info; /* L2CAP Registration info */
219 
220   /* MCB based on the L2CAP's lcid */
221   tRFC_MCB* p_rfc_lcid_mcb[MAX_L2CAP_CHANNELS];
222   bool peer_rx_disabled; /* If true peer sent FCOFF */
223   uint8_t last_mux;      /* Last mux allocated */
224   uint8_t last_port;     /* Last port allocated */
225 } tRFCOMM_CB;
226 
227 /* Main Control Block for the RFCOMM Layer (PORT and RFC) */
228 typedef struct {
229   tRFCOMM_CB rfc;
230   tPORT_CB port;
231   uint8_t trace_level;
232 } tRFC_CB;
233 
234 extern tRFC_CB rfc_cb;
235 
236 /* Timer running on the multiplexor channel while no DLCI connection is open */
237 #define RFC_MCB_INIT_INACT_TIMER 60 /* in seconds */
238 
239 /* Timer running on the multiplexor channel after last DLCI is released */
240 #define RFC_MCB_RELEASE_INACT_TIMER 2 /* in seconds */
241 
242 /*
243  * Define RFCOMM frame processing errors
244 */
245 #define RFCOMM_ERR_BAD_SABME 1
246 #define RFCOMM_ERR_BAD_UA 2
247 #define RFCOMM_ERR_BAD_DM 3
248 #define RFCOMM_ERR_BAD_DISC 4
249 #define RFCOMM_ERR_BAD_UIH 5
250 
251 #ifdef RFCOMM_PRECALC_FCS
252 
253 #define RFCOMM_SABME_FCS(p_data, cr, dlci) rfc_sabme_fcs[cr][dlci]
254 #define RFCOMM_UA_FCS(p_data, cr, dlci) rfc_ua_fcs[cr][dlci]
255 #define RFCOMM_DM_FCS(p_data, cr, dlci) rfc_dm_fcs[cr][dlci]
256 #define RFCOMM_DISC_FCS(p_data, cr, dlci) rfc_disc_fcs[cr][dlci]
257 #define RFCOMM_UIH_FCS(p_data, dlci) rfc_uih_fcs[dlci]
258 
259 #else
260 
261 extern uint8_t rfc_calc_fcs(uint16_t len, uint8_t* p);
262 
263 #define RFCOMM_SABME_FCS(p_data, cr, dlci) rfc_calc_fcs(3, p_data)
264 #define RFCOMM_UA_FCS(p_data, cr, dlci) rfc_calc_fcs(3, p_data)
265 #define RFCOMM_DM_FCS(p_data, cr, dlci) rfc_calc_fcs(3, p_data)
266 #define RFCOMM_DISC_FCS(p_data, cr, dlci) rfc_calc_fcs(3, p_data)
267 #define RFCOMM_UIH_FCS(p_data, dlci) rfc_calc_fcs(2, p_data)
268 
269 #endif
270 
271 extern void rfc_mx_sm_execute(tRFC_MCB* p_mcb, uint16_t event, void* p_data);
272 
273 /*
274  * Functions provided by the rfc_port_fsm.cc
275 */
276 extern void rfc_port_sm_execute(tPORT* p_port, uint16_t event, void* p_data);
277 
278 extern void rfc_process_pn(tRFC_MCB* p_rfc_mcb, bool is_command,
279                            MX_FRAME* p_frame);
280 extern void rfc_process_msc(tRFC_MCB* p_rfc_mcb, bool is_command,
281                             MX_FRAME* p_frame);
282 extern void rfc_process_rpn(tRFC_MCB* p_rfc_mcb, bool is_command,
283                             bool is_request, MX_FRAME* p_frame);
284 extern void rfc_process_rls(tRFC_MCB* p_rfc_mcb, bool is_command,
285                             MX_FRAME* p_frame);
286 extern void rfc_process_nsc(tRFC_MCB* p_rfc_mcb, MX_FRAME* p_frame);
287 extern void rfc_process_test_rsp(tRFC_MCB* p_rfc_mcb, BT_HDR* p_buf);
288 extern void rfc_process_fcon(tRFC_MCB* p_rfc_mcb, bool is_command);
289 extern void rfc_process_fcoff(tRFC_MCB* p_rfc_mcb, bool is_command);
290 extern void rfc_process_l2cap_congestion(tRFC_MCB* p_mcb, bool is_congested);
291 
292 /*
293  * Functions provided by the rfc_utils.cc
294 */
295 tRFC_MCB* rfc_alloc_multiplexer_channel(const RawAddress& bd_addr,
296                                         bool is_initiator);
297 extern void rfc_release_multiplexer_channel(tRFC_MCB* p_rfc_mcb);
298 extern void rfc_timer_start(tRFC_MCB* p_rfc_mcb, uint16_t timeout);
299 extern void rfc_timer_stop(tRFC_MCB* p_rfc_mcb);
300 extern void rfc_port_timer_start(tPORT* p_port, uint16_t tout);
301 extern void rfc_port_timer_stop(tPORT* p_port);
302 
303 bool rfc_check_uih_fcs(uint8_t dlci, uint8_t received_fcs);
304 bool rfc_check_fcs(uint16_t len, uint8_t* p, uint8_t received_fcs);
305 tRFC_MCB* rfc_find_lcid_mcb(uint16_t lcid);
306 extern void rfc_save_lcid_mcb(tRFC_MCB* p_rfc_mcb, uint16_t lcid);
307 extern void rfc_check_mcb_active(tRFC_MCB* p_mcb);
308 extern void rfc_port_closed(tPORT* p_port);
309 extern void rfc_sec_check_complete(const RawAddress* bd_addr,
310                                    tBT_TRANSPORT transport, void* p_ref_data,
311                                    uint8_t res);
312 extern void rfc_inc_credit(tPORT* p_port, uint8_t credit);
313 extern void rfc_dec_credit(tPORT* p_port);
314 extern void rfc_check_send_cmd(tRFC_MCB* p_mcb, BT_HDR* p_buf);
315 
316 /*
317  * Functions provided by the rfc_ts_frames.cc
318 */
319 extern void rfc_send_sabme(tRFC_MCB* p_rfc_mcb, uint8_t dlci);
320 extern void rfc_send_ua(tRFC_MCB* p_rfc_mcb, uint8_t dlci);
321 extern void rfc_send_dm(tRFC_MCB* p_rfc_mcb, uint8_t dlci, bool pf);
322 extern void rfc_send_disc(tRFC_MCB* p_rfc_mcb, uint8_t dlci);
323 extern void rfc_send_pn(tRFC_MCB* p_mcb, uint8_t dlci, bool is_command,
324                         uint16_t mtu, uint8_t cl, uint8_t k);
325 extern void rfc_send_test(tRFC_MCB* p_rfc_mcb, bool is_command, BT_HDR* p_buf);
326 extern void rfc_send_msc(tRFC_MCB* p_mcb, uint8_t dlci, bool is_command,
327                          tPORT_CTRL* p_pars);
328 extern void rfc_send_rls(tRFC_MCB* p_mcb, uint8_t dlci, bool is_command,
329                          uint8_t status);
330 extern void rfc_send_rpn(tRFC_MCB* p_mcb, uint8_t dlci, bool is_command,
331                          tPORT_STATE* p_pars, uint16_t mask);
332 extern void rfc_send_fcon(tRFC_MCB* p_mcb, bool is_command);
333 extern void rfc_send_fcoff(tRFC_MCB* p_mcb, bool is_command);
334 extern void rfc_send_buf_uih(tRFC_MCB* p_rfc_mcb, uint8_t dlci, BT_HDR* p_buf);
335 extern void rfc_send_credit(tRFC_MCB* p_mcb, uint8_t dlci, uint8_t credit);
336 extern void rfc_process_mx_message(tRFC_MCB* p_rfc_mcb, BT_HDR* p_buf);
337 extern uint8_t rfc_parse_data(tRFC_MCB* p_rfc_mcb, MX_FRAME* p_frame,
338                               BT_HDR* p_buf);
339 
340 /* Call back functions from RFCOMM */
341 extern void rfcomm_l2cap_if_init(void);
342 
343 extern void PORT_StartInd(tRFC_MCB* p_mcb);
344 extern void PORT_StartCnf(tRFC_MCB* p_mcb, uint16_t result);
345 
346 extern void PORT_CloseInd(tRFC_MCB* p_mcb);
347 extern void Port_TimeOutCloseMux(tRFC_MCB* p_mcb);
348 
349 extern void PORT_DlcEstablishInd(tRFC_MCB* p_mcb, uint8_t dlci, uint16_t mtu);
350 extern void PORT_DlcEstablishCnf(tRFC_MCB* p_mcb, uint8_t dlci, uint16_t mtu,
351                                  uint16_t result);
352 
353 extern void PORT_DataInd(tRFC_MCB* p_mcb, uint8_t dlci, BT_HDR* p_buf);
354 
355 extern void PORT_DlcReleaseInd(tRFC_MCB* p_mcb, uint8_t dlci);
356 
357 extern void PORT_ParNegInd(tRFC_MCB* p_mcb, uint8_t dlci, uint16_t mtu,
358                            uint8_t cl, uint8_t k);
359 extern void PORT_ParNegCnf(tRFC_MCB* p_mcb, uint8_t dlci, uint16_t mtu,
360                            uint8_t cl, uint8_t k);
361 
362 extern void PORT_TestCnf(tRFC_MCB* p_mcb, uint8_t* p_data, uint16_t len);
363 
364 extern void PORT_FlowInd(tRFC_MCB* p_mcb, uint8_t dlci, bool fc);
365 
366 extern void PORT_PortNegInd(tRFC_MCB* p_mcb, uint8_t dlci, tPORT_STATE* p_pars,
367                             uint16_t param_mask);
368 extern void PORT_PortNegCnf(tRFC_MCB* p_mcb, uint8_t dlci, tPORT_STATE* p_pars,
369                             uint16_t result);
370 
371 extern void PORT_ControlInd(tRFC_MCB* p_mcb, uint8_t dlci, tPORT_CTRL* p_pars);
372 extern void PORT_ControlCnf(tRFC_MCB* p_mcb, uint8_t dlci, tPORT_CTRL* p_pars);
373 
374 extern void PORT_LineStatusInd(tRFC_MCB* p_mcb, uint8_t dlci,
375                                uint8_t line_status);
376 
377 #endif
378