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1 /******************************************************************************
2  *
3  *  Copyright (C) 2010-2014 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 is the public interface file for NFA, Broadcom's NFC application
22  *  layer for mobile phones.
23  *
24  ******************************************************************************/
25 #ifndef NFA_API_H
26 #define NFA_API_H
27 
28 #include "gki.h"
29 #include "nci_defs.h"
30 #include "nfc_api.h"
31 #include "nfc_hal_api.h"
32 #include "nfc_target.h"
33 #include "rw_api.h"
34 #include "tags_defs.h"
35 
36 /*****************************************************************************
37 **  Constants and data types
38 *****************************************************************************/
39 
40 /* Max length of Appliction ID in 7816-4 */
41 #define NFA_MAX_AID_LEN NFC_MAX_AID_LEN
42 #define NFA_MIN_AID_LEN 5 /* per NCI specification */
43 
44 /* Command succeeded    */
45 #define NFA_STATUS_OK NCI_STATUS_OK
46 /* Command is rejected. */
47 #define NFA_STATUS_REJECTED NCI_STATUS_REJECTED
48 /* buffer full          */
49 #define NFA_STATUS_BUFFER_FULL NCI_STATUS_BUFFER_FULL
50 /* failed               */
51 #define NFA_STATUS_FAILED NCI_STATUS_FAILED
52 /* Optional feature of NCI Spec not supported */
53 #define NFA_STATUS_NOT_SUPPORTED NCI_STATUS_NOT_SUPPORTED
54 /* Semantic error       */
55 #define NFA_STATUS_SEMANTIC_ERROR NCI_STATUS_SEMANTIC_ERROR
56 /* Unknown NCI Group ID */
57 #define NFA_STATUS_UNKNOWN_GID NCI_STATUS_UNKNOWN_GID
58 /* Invalid Parameter    */
59 #define NFA_STATUS_INVALID_PARAM NCI_STATUS_INVALID_PARAM
60 /* Already started      */
61 #define NFA_STATUS_ALREADY_STARTED NCI_STATUS_ALREADY_STARTED
62 #define NFA_STATUS_RF_UNEXPECTED_DATA NCI_STATUS_RF_UNEXPECTED_DATA
63 /* RF frame error       */
64 #define NFA_STATUS_RF_FRAME_CORRUPTED NCI_STATUS_RF_FRAME_CORRUPTED
65 /* RF protocol error    */
66 #define NFA_STATUS_RF_PROTOCOL_ERR NCI_STATUS_RF_PROTOCOL_ERR
67 /* RF Timeout           */
68 #define NFA_STATUS_TIMEOUT NCI_STATUS_TIMEOUT
69 
70 #define NFA_STATUS_CONTINUE NFC_STATUS_CONTINUE
71 /* Out of GKI buffers */
72 #define NFA_STATUS_NO_BUFFERS NFC_STATUS_NO_BUFFERS
73 /* Protocol mismatch between API and activated one */
74 #define NFA_STATUS_WRONG_PROTOCOL NFC_STATUS_WRONG_PROTOCOL
75 /* Another Tag command is already in progress */
76 #define NFA_STATUS_BUSY NFC_STATUS_BUSY
77 
78 /* data len exceeds MIU                             */
79 #define NFA_STATUS_BAD_LENGTH NFC_STATUS_BAD_LENGTH
80 /* invalid handle                                   */
81 #define NFA_STATUS_BAD_HANDLE NFC_STATUS_BAD_HANDLE
82 /* congested                                        */
83 #define NFA_STATUS_CONGESTED NFC_STATUS_CONGESTED
84 typedef uint8_t tNFA_STATUS;
85 
86 /* Handle for NFA registrations and connections */
87 typedef uint16_t tNFA_HANDLE;
88 #define NFA_HANDLE_INVALID (0xFFFF)
89 /* NFA Handle definitions */
90 
91 /* The upper byte of NFA_HANDLE signifies the handle group */
92 /* NDEF Type Handler handles    */
93 #define NFA_HANDLE_GROUP_NDEF_HANDLER 0x0200
94 /* DH Card Emulation handles    */
95 #define NFA_HANDLE_GROUP_CE 0x0300
96 /* Handles to identify NFCEE    */
97 #define NFA_HANDLE_GROUP_EE 0x0400
98 /* HCI handles                  */
99 #define NFA_HANDLE_GROUP_HCI 0x0800
100 /* Local NDEF message handle    */
101 #define NFA_HANDLE_GROUP_MASK 0xFF00
102 #define NFA_HANDLE_MASK 0x00FF
103 
104 /* NCI Parameter IDs */
105 typedef uint8_t tNFA_PMID;
106 
107 /* Definitions for tNFA_TECHNOLOGY_MASK */
108 #define NFA_TECHNOLOGY_MASK_A 0x01        /* NFC Technology A             */
109 #define NFA_TECHNOLOGY_MASK_B 0x02        /* NFC Technology B             */
110 #define NFA_TECHNOLOGY_MASK_F 0x04        /* NFC Technology F             */
111 /* TECHNOLOGY_MASK_V in NCI2.0 and TECHNOLOGY_MASK_15693 proprietary in NCI1.0*/
112 #define NFA_TECHNOLOGY_MASK_V 0x08
113 #define NFA_TECHNOLOGY_MASK_B_PRIME 0x10  /* Proprietary Technology       */
114 #define NFA_TECHNOLOGY_MASK_KOVIO 0x20    /* Proprietary Technology       */
115 /* NFC technology NFC-DEP protocol active mode */
116 #define NFA_TECHNOLOGY_MASK_ACTIVE 0x40
117 /* NFC Technology A active mode */
118 #define NFA_TECHNOLOGY_MASK_A_ACTIVE 0x40
119 /* NFC Technology F active mode */
120 #define NFA_TECHNOLOGY_MASK_F_ACTIVE 0x80
121 /* All supported technologies   */
122 typedef uint8_t tNFA_TECHNOLOGY_MASK;
123 
124 /* Definitions for NFC protocol for RW, CE and P2P APIs */
125 /* Type1Tag - NFC-A */
126 #define NFA_PROTOCOL_T1T NFC_PROTOCOL_T1T
127 /* MIFARE/Type2Tag - NFC-A */
128 #define NFA_PROTOCOL_T2T NFC_PROTOCOL_T2T
129 /* Felica/Type3Tag - NFC-F */
130 #define NFA_PROTOCOL_T3T NFC_PROTOCOL_T3T
131 /* Type 4A,4B - NFC-A or NFC-B */
132 #define NFA_PROTOCOL_ISO_DEP NFC_PROTOCOL_ISO_DEP
133 /* NFCDEP/LLCP - NFC-A or NFC-F */
134 #define NFA_PROTOCOL_NFC_DEP NFC_PROTOCOL_NFC_DEP
135 /* NFC_PROTOCOL_T5T in NCI2.0 and NFC_PROTOCOL_ISO15693 proprietary in NCI1.0*/
136 #define NFA_PROTOCOL_T5T NFC_PROTOCOL_T5T
137 #define NFA_PROTOCOL_INVALID 0xFF
138 typedef uint8_t tNFA_NFC_PROTOCOL;
139 
140 /* Definitions for tNFA_PROTOCOL_MASK */
141 #define NFA_PROTOCOL_MASK_T1T 0x01     /* Type 1 tag          */
142 #define NFA_PROTOCOL_MASK_T2T 0x02     /* MIFARE / Type 2 tag */
143 #define NFA_PROTOCOL_MASK_T3T 0x04     /* FeliCa / Type 3 tag */
144 #define NFA_PROTOCOL_MASK_ISO_DEP 0x08 /* ISODEP/4A,4B        */
145 #define NFA_PROTOCOL_MASK_NFC_DEP 0x10 /* NFCDEP/LLCP         */
146 typedef uint8_t tNFA_PROTOCOL_MASK;
147 
148 /* NFA_DM callback events */
149 /* Result of NFA_Enable             */
150 #define NFA_DM_ENABLE_EVT 0
151 /* Result of NFA_Disable            */
152 #define NFA_DM_DISABLE_EVT 1
153 /* Result of NFA_SetConfig          */
154 #define NFA_DM_SET_CONFIG_EVT 2
155 /* Result of NFA_GetConfig          */
156 #define NFA_DM_GET_CONFIG_EVT 3
157 /* Result of NFA_PowerOffSleepMode  */
158 #define NFA_DM_PWR_MODE_CHANGE_EVT 4
159 #define NFA_DM_RF_FIELD_EVT 5 /* Status of RF Field               */
160 /* NFCC is not responding           */
161 #define NFA_DM_NFCC_TIMEOUT_EVT 6
162 /* NCI Tranport error               */
163 #define NFA_DM_NFCC_TRANSPORT_ERR_EVT 7
164 /* Result of NFA_SetPowerSubStateForScreenState */
165 #define NFA_DM_SET_POWER_SUB_STATE_EVT 11
166 /* T1T HR length            */
167 #define NFA_T1T_HR_LEN T1T_HR_LEN
168 /* Max UID length of T1/T2  */
169 #define NFA_MAX_UID_LEN TAG_MAX_UID_LEN
170 /* UID len for T1T cmds     */
171 #define NFA_T1T_CMD_UID_LEN T1T_CMD_UID_LEN
172 /* T2T UID length           */
173 
174 /* Tag formated for NDEF */
175 #define NFA_RW_NDEF_FL_FORMATED RW_NDEF_FL_FORMATED
176 /* NDEF supported by the tag */
177 #define NFA_RW_NDEF_FL_SUPPORTED RW_NDEF_FL_SUPPORTED
178 /* Unable to find if tag is ndef capable/formated/read only */
179 #define NFA_RW_NDEF_FL_UNKNOWN RW_NDEF_FL_UNKNOWN
180 /* Tag supports format operation */
181 #define NFA_RW_NDEF_FL_FORMATABLE RW_NDEF_FL_FORMATABLE
182 
183 typedef uint8_t tNFA_RW_NDEF_FLAG;
184 
185 /* Data for NFA_DM_SET_CONFIG_EVT */
186 typedef struct {
187   tNFA_STATUS status;                   /* NFA_STATUS_OK if successful  */
188   uint8_t num_param_id;                 /* Number of rejected Param ID  */
189   tNFA_PMID param_ids[NFC_MAX_NUM_IDS]; /* Rejected Param ID            */
190 } tNFA_SET_CONFIG;
191 
192 /* Data for NFA_DM_GET_CONFIG_EVT */
193 typedef struct {
194   tNFA_STATUS status;    /* NFA_STATUS_OK if successful              */
195   uint16_t tlv_size;     /* The length of TLV                        */
196   uint8_t* param_tlvs;   /* TLV (Parameter ID-Len-Value byte stream) */
197 } tNFA_GET_CONFIG;
198 
199 /* Structure to store screen state */
200 typedef enum screen_state {
201   NFA_SCREEN_STATE_UNKNOWN = 0x00,
202   NFA_SCREEN_STATE_OFF_UNLOCKED = 0x01,
203   NFA_SCREEN_STATE_OFF_LOCKED = 0x02,
204   NFA_SCREEN_STATE_ON_LOCKED = 0x04,
205   NFA_SCREEN_STATE_ON_UNLOCKED = 0x08
206 } eScreenState_t;
207 
208 typedef enum power_substate {
209   SCREEN_STATE_ON_UNLOCKED = 0x00,
210   SCREEN_STATE_OFF_UNLOCKED,
211   SCREEN_STATE_ON_LOCKED,
212   SCREEN_STATE_OFF_LOCKED,
213   SCREEN_STATE_INVALID = 0xFF
214 } epower_substate_t;
215 
216 #define NFA_SCREEN_STATE_MASK 0x0F
217 
218 /* CONN_DISCOVER_PARAM */
219 #define NFA_DM_PWR_MODE_FULL 0x04
220 #define NFA_DM_PWR_MODE_OFF_SLEEP 0x00
221 
222 typedef uint8_t tNFA_DM_PWR_MODE;
223 
224 /* Data for NFA_DM_PWR_MODE_CHANGE_EVT */
225 typedef struct {
226   tNFA_STATUS status; /* NFA_STATUS_OK if successful */
227   /* NFA_DM_PWR_MODE_FULL or NFA_DM_PWR_MODE_OFF_SLEEP */
228   tNFA_DM_PWR_MODE power_mode;
229 } tNFA_DM_PWR_MODE_CHANGE;
230 
231 /* Data for NFA_DM_RF_FIELD_EVT */
232 #define NFA_DM_RF_FIELD_OFF 0x00
233 #define NFA_DM_RF_FIELD_ON 0x01
234 
235 typedef struct {
236   tNFA_STATUS status; /* NFA_STATUS_OK if successful  */
237   /* NFA_DM_RF_FIELD_ON if operating field generated by remote */
238   uint8_t rf_field_status;
239 } tNFA_DM_RF_FIELD;
240 
241 typedef struct {
242   tNFA_STATUS status;  /* NFA_STATUS_OK if successful  */
243   uint8_t power_state; /* current screen/power state */
244 } tNFA_DM_POWER_STATE;
245 
246 /* Union of all DM callback structures */
247 typedef union {
248   tNFA_STATUS status;                 /* NFA_DM_ENABLE_EVT        */
249   tNFA_SET_CONFIG set_config;         /* NFA_DM_SET_CONFIG_EVT    */
250   tNFA_GET_CONFIG get_config;         /* NFA_DM_GET_CONFIG_EVT    */
251   tNFA_DM_PWR_MODE_CHANGE power_mode; /* NFA_DM_PWR_MODE_CHANGE_EVT   */
252   tNFA_DM_RF_FIELD rf_field;          /* NFA_DM_RF_FIELD_EVT      */
253   void* p_vs_evt_data;                /* Vendor-specific evt data */
254   tNFA_DM_POWER_STATE power_sub_state; /* power sub state */
255 } tNFA_DM_CBACK_DATA;
256 
257 /* NFA_DM callback */
258 typedef void(tNFA_DM_CBACK)(uint8_t event, tNFA_DM_CBACK_DATA* p_data);
259 
260 /* NFA Enable DTA Type Mode */
261 typedef enum {
262   NFA_DTA_DEFAULT_MODE = 0x00000001,
263   NFA_DTA_LLCP_MODE = 0x00000002,
264   NFA_DTA_HCEF_MODE = 0x00000004,
265   NFA_DTA_CR8 = 0x00000080,
266 } tNFA_eDtaModes;
267 
268 /* NFA Connection Callback Events */
269 #define NFA_POLL_ENABLED_EVT 0  /* Polling enabled event */
270 #define NFA_POLL_DISABLED_EVT 1 /* Polling disabled event */
271 /* NFC link/protocol discovery notificaiton */
272 #define NFA_DISC_RESULT_EVT 2
273 /* NFC link/protocol discovery select response */
274 #define NFA_SELECT_RESULT_EVT 3
275 #define NFA_DEACTIVATE_FAIL_EVT 4 /* NFA_Deactivate failure */
276 /* NFC link/protocol activated */
277 #define NFA_ACTIVATED_EVT 5
278 /* NFC link/protocol deactivated */
279 #define NFA_DEACTIVATED_EVT 6
280 #define NFA_TLV_DETECT_EVT 7 /* TLV Detection complete */
281 /* NDEF Detection complete */
282 #define NFA_NDEF_DETECT_EVT 8
283 #define NFA_DATA_EVT 9            /* Data message received */
284 #define NFA_SELECT_CPLT_EVT 10    /* Select completed */
285 #define NFA_READ_CPLT_EVT 11      /* Read completed */
286 #define NFA_WRITE_CPLT_EVT 12     /* Write completed */
287 /* Response to NFA_RwPresenceCheck */
288 #define NFA_PRESENCE_CHECK_EVT 15
289 /* Tag Formating completed */
290 #define NFA_FORMAT_CPLT_EVT 16
291 /* ISO 15693 command completed */
292 #define NFA_I93_CMD_CPLT_EVT 17
293 #define NFA_SET_TAG_RO_EVT 18 /* Tag set as Read only */
294 /* Result for NFA_RequestExclusiveRfControl */
295 #define NFA_EXCLUSIVE_RF_CONTROL_STARTED_EVT 19
296 /* Result for NFA_ReleaseExclusiveRfControl */
297 #define NFA_EXCLUSIVE_RF_CONTROL_STOPPED_EVT 20
298 /* DH Card emulation: AID or System code reg'd  */
299 #define NFA_CE_REGISTERED_EVT 21
300 /* DH Card emulation: AID or System code dereg'd */
301 #define NFA_CE_DEREGISTERED_EVT 22
302 /* DH Card emulation: data received event */
303 #define NFA_CE_DATA_EVT 23
304 /* DH Card emulation: activation event */
305 #define NFA_CE_ACTIVATED_EVT 24
306 /* DH Card emulation: deactivation event */
307 #define NFA_CE_DEACTIVATED_EVT 25
308 /* DH Card emulation: local NDEF configured */
309 #define NFA_CE_LOCAL_TAG_CONFIGURED_EVT 26
310 /* DH Card emulation: NDEF write started */
311 #define NFA_CE_NDEF_WRITE_START_EVT 27
312 /* DH Card emulation: NDEF write completed */
313 #define NFA_CE_NDEF_WRITE_CPLT_EVT 28
314 #define NFA_CE_UICC_LISTEN_CONFIGURED_EVT 29 /* UICC Listen configured */
315 /* RF Discovery started event */
316 #define NFA_RF_DISCOVERY_STARTED_EVT 30
317 /* RF Discovery stopped event */
318 #define NFA_RF_DISCOVERY_STOPPED_EVT 31
319 /* status of updating RF communication paramters */
320 #define NFA_UPDATE_RF_PARAM_RESULT_EVT 32
321 /* RF Interface error event */
322 #define NFA_RW_INTF_ERROR_EVT 34
323 /* Listening enabled event */
324 #define NFA_LISTEN_ENABLED_EVT 36
325 /* Listening disabled event */
326 #define NFA_LISTEN_DISABLED_EVT 37
327 /* T2T command completed */
328 #define NFA_T2T_CMD_CPLT_EVT 40
329 
330 /* NFC deactivation type */
331 #define NFA_DEACTIVATE_TYPE_IDLE NFC_DEACTIVATE_TYPE_IDLE
332 #define NFA_DEACTIVATE_TYPE_SLEEP NFC_DEACTIVATE_TYPE_SLEEP
333 #define NFA_DEACTIVATE_TYPE_DISCOVERY NFC_DEACTIVATE_TYPE_DISCOVERY
334 
335 typedef uint8_t tNFA_DEACTIVATE_TYPE;
336 
337 /* Data for NFA_DISC_RESULT_EVT */
338 typedef struct {
339   tNFA_STATUS status;             /* NFA_STATUS_OK if successful       */
340   tNFC_RESULT_DEVT discovery_ntf; /* RF discovery notification details */
341 } tNFA_DISC_RESULT;
342 
343 /* Data for NFA_ACTIVATED_EVT */
344 typedef struct {
345   uint8_t hr[NFA_T1T_HR_LEN];       /* HR of Type 1 tag         */
346   uint8_t uid[NFA_T1T_CMD_UID_LEN]; /* UID used in T1T Commands */
347 } tNFA_T1T_PARAMS;
348 
349 typedef struct {
350   uint8_t uid[NFA_MAX_UID_LEN]; /* UID of T2T tag           */
351 } tNFA_T2T_PARAMS;
352 
353 typedef struct {
354   uint8_t num_system_codes; /* Number of system codes supporte by tag   */
355   uint16_t* p_system_codes; /* Pointer to list of system codes          */
356 } tNFA_T3T_PARAMS;
357 
358 typedef struct {
359   uint8_t uid[I93_UID_BYTE_LEN]; /* UID[0]:MSB, ... UID[7]:LSB */
360   uint8_t info_flags;   /* information flags                            */
361   uint8_t dsfid;        /* DSFID if I93_INFO_FLAG_DSFID                 */
362   uint8_t afi;          /* AFI if I93_INFO_FLAG_AFI                     */
363   uint16_t num_block;   /* number of blocks if I93_INFO_FLAG_MEM_SIZE   */
364   uint8_t block_size;   /* block size in byte if I93_INFO_FLAG_MEM_SIZE */
365   uint8_t IC_reference; /* IC Reference if I93_INFO_FLAG_IC_REF         */
366 } tNFA_I93_PARAMS;
367 
368 typedef union {
369   tNFA_T1T_PARAMS t1t; /* HR and UID of T1T                */
370   tNFA_T2T_PARAMS t2t; /* UID of T2T                       */
371   tNFA_T3T_PARAMS t3t; /* System codes                     */
372   tNFA_I93_PARAMS i93; /* System Information of ISO 15693  */
373 } tNFA_TAG_PARAMS;
374 
375 typedef struct {
376   tNFC_ACTIVATE_DEVT activate_ntf; /* RF discovery activation details */
377   tNFA_TAG_PARAMS params;          /* additional informaiton of tag   */
378 } tNFA_ACTIVATED;
379 
380 /* Data for NFA_DEACTIVATED_EVT */
381 typedef struct {
382   /* NFA_DEACTIVATE_TYPE_IDLE or NFA_DEACTIVATE_TYPE_SLEEP */
383   tNFA_DEACTIVATE_TYPE type;
384 } tNFA_DEACTIVATED;
385 
386 /* Structure for NFA_NDEF_DETECT_EVT event data */
387 typedef struct {
388   tNFA_STATUS status;         /* Status of the ndef detecton */
389   tNFA_NFC_PROTOCOL protocol; /* protocol used to detect NDEF */
390   uint32_t max_size;          /* max number of bytes available for NDEF data */
391   uint32_t cur_size;          /* current size of stored NDEF data (in bytes) */
392   /* Flags to indicate NDEF capability, is formated, soft/hard lockable,
393    * formatable, otp and read only */
394   tNFA_RW_NDEF_FLAG flags;
395 } tNFA_NDEF_DETECT;
396 
397 /* Structure for NFA_TLV_DETECT_EVT event data */
398 typedef struct {
399   tNFA_STATUS status;         /* Status of the tlv detecton        */
400   tNFA_NFC_PROTOCOL protocol; /* protocol used to detect TLV       */
401   uint8_t num_tlvs;           /* number of tlvs present in the tag */
402   uint8_t num_bytes;          /* number of lock/reserved bytes     */
403 } tNFA_TLV_DETECT;
404 
405 /* Structure for NFA_DATA_EVT data */
406 typedef struct {
407   tNFA_STATUS status; /* Status of Data received          */
408   uint8_t* p_data;    /* Data buffer                      */
409   uint16_t len;       /* Length of data                   */
410 } tNFA_RX_DATA;
411 
412 /* Structure for NFA_CE_NDEF_WRITE_CPLT_EVT data */
413 typedef struct {
414   tNFA_STATUS status; /* Status of the ndef write op      */
415   uint32_t len;       /* Update length of NDEF data       */
416   uint8_t* p_data;    /* data buffer                      */
417 } tNFA_CE_NDEF_WRITE_CPLT;
418 
419 /* Data for NFA_I93_CMD_CPLT_EVT */
420 typedef struct {
421   uint8_t dsfid;                 /* DSFID                       */
422   uint8_t uid[I93_UID_BYTE_LEN]; /* UID[0]:MSB, ... UID[7]:LSB  */
423 } tNFA_I93_INVENTORY;
424 
425 typedef struct /* RW_I93_SYS_INFO_EVT                          */
426 {
427   uint8_t info_flags; /* information flags                            */
428   uint8_t uid[I93_UID_BYTE_LEN]; /* UID */
429   uint8_t dsfid;        /* DSFID if I93_INFO_FLAG_DSFID                 */
430   uint8_t afi;          /* AFI if I93_INFO_FLAG_AFI                     */
431   uint16_t num_block;   /* number of blocks if I93_INFO_FLAG_MEM_SIZE   */
432   uint8_t block_size;   /* block size in byte if I93_INFO_FLAG_MEM_SIZE */
433   uint8_t IC_reference; /* IC Reference if I93_INFO_FLAG_IC_REF         */
434 } tNFA_I93_SYS_INFO;
435 
436 typedef struct {
437   tNFA_STATUS status;   /* Status of sending command       */
438   uint8_t sent_command; /* sent command to tag             */
439   union {
440     uint8_t error_code;           /* error code defined in ISO 15693 */
441     tNFA_I93_INVENTORY inventory; /* inventory response              */
442     tNFA_I93_SYS_INFO sys_info;   /* system information              */
443   } params;
444 } tNFA_I93_CMD_CPLT;
445 
446 /* Data for NFA_CE_REGISTERED_EVT */
447 typedef struct {
448   tNFA_STATUS status; /* NFA_STATUS_OK if successful                      */
449   tNFA_HANDLE handle; /* handle for NFA_CeRegisterFelicaSystemCodeOnDH () */
450                       /*            NFA_CeRegisterT4tAidOnDH ()           */
451 } tNFA_CE_REGISTERED;
452 
453 /* Data for NFA_CE_DEREGISTERED_EVT */
454 typedef struct {
455   tNFA_HANDLE handle; /* handle from NFA_CE_REGISTERED_EVT   */
456 } tNFA_CE_DEREGISTERED;
457 
458 /* Data for NFA_CE_ACTIVATED_EVT */
459 typedef struct {
460   tNFA_STATUS status; /* NFA_STATUS_OK if successful              */
461   tNFA_HANDLE handle; /* handle from NFA_CE_REGISTERED_EVT        */
462   tNFC_ACTIVATE_DEVT activate_ntf; /* RF discovery activation details */
463 } tNFA_CE_ACTIVATED;
464 
465 /* Data for NFA_CE_DEACTIVATED_EVT */
466 typedef struct {
467   tNFA_HANDLE handle; /* handle from NFA_CE_REGISTERED_EVT   */
468   /* NFA_DEACTIVATE_TYPE_IDLE or NFA_DEACTIVATE_TYPE_SLEEP */
469   tNFA_DEACTIVATE_TYPE type;
470 } tNFA_CE_DEACTIVATED;
471 
472 /* Structure for NFA_CE_DATA_EVT data */
473 typedef struct {
474   tNFA_STATUS status; /* NFA_STATUS_OK if complete packet     */
475   tNFA_HANDLE handle; /* handle from NFA_CE_REGISTERED_EVT    */
476   uint8_t* p_data;    /* Data buffer                          */
477   uint16_t len;       /* Length of data                       */
478 } tNFA_CE_DATA;
479 
480 /* Union of all connection callback structures */
481 typedef union {
482   tNFA_STATUS status;           /* NFA_POLL_ENABLED_EVT                 */
483   tNFA_DISC_RESULT disc_result; /* NFA_DISC_RESULT_EVT                  */
484   tNFA_ACTIVATED activated;     /* NFA_ACTIVATED_EVT                    */
485   tNFA_DEACTIVATED deactivated; /* NFA_DEACTIVATED_EVT                  */
486   tNFA_NDEF_DETECT ndef_detect; /* NFA_NDEF_DETECT_EVT                  */
487   tNFA_TLV_DETECT tlv_detect;   /* NFA_TLV_DETECT_EVT                   */
488   tNFA_RX_DATA data;            /* NFA_DATA_EVT                         */
489   tNFA_CE_NDEF_WRITE_CPLT ndef_write_cplt; /* NFA_CE_NDEF_WRITE_CPLT_EVT */
490   tNFA_I93_CMD_CPLT i93_cmd_cplt;   /* NFA_I93_CMD_CPLT_EVT                 */
491   tNFA_CE_REGISTERED ce_registered; /* NFA_CE_REGISTERED_EVT                */
492   tNFA_CE_DEREGISTERED ce_deregistered; /* NFA_CE_DEREGISTERED_EVT */
493   tNFA_CE_ACTIVATED ce_activated;     /* NFA_CE_ACTIVATED_EVT                 */
494   tNFA_CE_DEACTIVATED ce_deactivated; /* NFA_CE_DEACTIVATED_EVT               */
495   tNFA_CE_DATA ce_data;               /* NFA_CE_DATA_EVT                      */
496 
497 } tNFA_CONN_EVT_DATA;
498 
499 /* NFA Connection Callback */
500 typedef void(tNFA_CONN_CBACK)(uint8_t event, tNFA_CONN_EVT_DATA* p_data);
501 
502 #ifndef NFA_DM_NUM_INTERFACE_MAP
503 #define NFA_DM_NUM_INTERFACE_MAP 3
504 #endif
505 
506 /* compile-time configuration structure for the RF Discovery Frequency for each
507  * technology */
508 typedef struct {
509   uint8_t pa;   /* Frequency for NFC Technology A               */
510   uint8_t pb;   /* Frequency for NFC Technology B               */
511   uint8_t pf;   /* Frequency for NFC Technology F               */
512   uint8_t pi93; /* Frequency for Proprietary Technology/15693   */
513   uint8_t pbp;  /* Frequency for Proprietary Technology/B-Prime */
514   uint8_t pk;   /* Frequency for Proprietary Technology/Kovio   */
515   uint8_t paa;  /* Frequency for NFC Technology A active mode   */
516   uint8_t pfa;  /* Frequency for NFC Technology F active mode   */
517   uint8_t pacm; /* Frequency for NFC Technology active mode     */
518 } tNFA_DM_DISC_FREQ_CFG;
519 
520 /* definitions for tNFA_DM_CFG.presence_check_option */
521 /* if NDEF is not supported by the tag, use sleep/wake(last interface) */
522 #define NFA_DM_PCO_ISO_SLEEP_WAKE 0x01
523 /* NFA_SendRawFrame() has been used, use empty I block for presence check
524  * if this bit is not set, use read-binary on channel 3 for presence check */
525 #define NFA_DM_PCO_EMPTY_I_BLOCK 0x02
526 
527 /* compile-time configuration structure */
528 typedef struct {
529   /* Automatic NDEF detection (when not in exclusive RF mode) */
530   bool auto_detect_ndef;
531   /* Automatic NDEF read (when not in exclusive RF mode)      */
532   bool auto_read_ndef;
533   /* Automatic presence check                                 */
534   bool auto_presence_check;
535   /* Use sleep/wake(last interface) for ISODEP presence check */
536   uint8_t presence_check_option;
537   /* Maximum time to wait for presence check response         */
538   uint16_t presence_check_timeout;
539 } tNFA_DM_CFG;
540 
541 /* compile-time configuration structure for HCI */
542 typedef struct {
543   /* Maximum idle(no HCP Pkt) time to wait for EE DISC REQ Ntf(s) */
544   uint16_t hci_netwk_enable_timeout;
545   /* Maximum time to wait for EE DISC REQ NTF(s) after HOT PLUG EVT(s) */
546   uint16_t hcp_response_timeout;
547   /* Number of host in the allowlist of Terminal host */
548   uint8_t num_allowlist_host;
549   /* Allowlist of Terminal Host */
550   uint8_t* p_allowlist;
551 } tNFA_HCI_CFG;
552 
553 /*
554 ** Exclusive RF mode listen configuration
555 */
556 
557 #define NFA_LB_MAX_NFCID0_LEN 4
558 #define NFA_LF_MAX_SC_NFCID2 1
559 #define NFA_LA_MAX_HIST_BYTES 15
560 #define NFA_LB_MAX_H_INFO_LEN 15
561 
562 typedef struct {
563   /*
564   ** Discovery Configuration Parameters for Listen A
565   */
566   bool la_enable;             /* TRUE if listening A                      */
567   uint8_t la_bit_frame_sdd;   /* Bit Frame SDD in Byte 1 of SENS_RES      */
568   uint8_t la_platform_config; /* Platform Config in Byte 2 of SENS_RES    */
569   uint8_t la_sel_info;        /* Byte of SEL_RES                          */
570   uint8_t la_nfcid1_len;      /* NFCID1 (0, 4, 7 or 10 bytes)             */
571   uint8_t la_nfcid1[NCI_NFCID1_MAX_LEN]; /*        if empty, NFCC will decide */
572 
573   /*
574   ** Discovery Configuration Parameters for Listen B
575   */
576   bool lb_enable;        /* TRUE if listening B                      */
577   uint8_t lb_sensb_info; /* Byte 2 of Protocol Info within SENSB_RES */
578   uint8_t lb_nfcid0_len; /* NFCID0 (0, 1 or 4 bytes)                 */
579   uint8_t
580       lb_nfcid0[NFA_LB_MAX_NFCID0_LEN]; /*         if empty, NFCC will decide */
581   uint8_t lb_app_data[NCI_PARAM_LEN_LB_APPDATA]; /* Bytes 6 - 9 in SENSB_RES */
582   uint8_t lb_sfgi;   /* Start-Up Frame Guard Time                */
583   uint8_t lb_adc_fo; /* Byte 12 in SENSB_RES                     */
584 
585   /*
586   ** Discovery Configuration Parameters for Listen F
587   */
588   bool lf_enable;           /* TRUE if listening F          */
589   uint8_t lf_con_bitr_f;    /* bit rate to listen           */
590   uint8_t lf_protocol_type; /* Supported Protocols          */
591   /* bit field indicating which lf_t3t_identifier are enabled */
592   uint16_t lf_t3t_flags;
593   uint8_t lf_t3t_identifier[NFA_LF_MAX_SC_NFCID2]
594                            [NCI_SYSTEMCODE_LEN + NCI_NFCID2_LEN];
595   /* System Code and NFCID2       */
596   uint8_t lf_t3t_pmm[NCI_T3T_PMM_LEN]; /* Bytes 10 - 17 in SENSF_RES   */
597 
598   /*
599   ** Discovery Configuration Parameters for Listen ISO-DEP
600   */
601   bool li_enable;            /* TRUE if listening ISO-DEP            */
602   uint8_t li_fwi;            /* Frame Waiting Time Integer           */
603   uint8_t la_hist_bytes_len; /* historical bytes for Listen-A        */
604   uint8_t la_hist_bytes[NFA_LA_MAX_HIST_BYTES];
605   uint8_t lb_h_info_resp_len; /* higher layer response for Listen-B   */
606   uint8_t lb_h_info_resp[NFA_LB_MAX_H_INFO_LEN];
607 
608   /*
609   ** Discovery Configuration Parameters for Listen NFC-DEP
610   */
611   bool ln_enable;                   /* TRUE if listening NFC-DEP            */
612   uint8_t ln_wt;                    /* Waiting Time Integer                 */
613   uint8_t ln_atr_res_gen_bytes_len; /* General bytes in ATR_RES             */
614   uint8_t ln_atr_res_gen_bytes[NCI_MAX_GEN_BYTES_LEN];
615   uint8_t ln_atr_res_config; /* Optional parameters (PPt) in ATR_RES */
616 } tNFA_LISTEN_CFG;
617 
618 /* Data for NFA_UpdateRFCommParams () */
619 typedef tNFC_RF_COMM_PARAMS tNFA_RF_COMM_PARAMS;
620 
621 /* RF Interface type */
622 #define NFA_INTERFACE_FRAME NFC_INTERFACE_FRAME
623 #define NFA_INTERFACE_ISO_DEP NFC_INTERFACE_ISO_DEP
624 #define NFA_INTERFACE_NFC_DEP NFC_INTERFACE_NFC_DEP
625 #define NFA_INTERFACE_MIFARE NFC_INTERFACE_MIFARE
626 typedef tNFC_INTF_TYPE tNFA_INTF_TYPE;
627 
628 /*******************************************************************************
629 ** NDEF Definitions
630 *******************************************************************************/
631 
632 /* Definitions for tNFA_TNF (NDEF type name format ID) */
633 /* Empty or no type specified                       */
634 #define NFA_TNF_EMPTY NDEF_TNF_EMPTY
635 /* NFC Forum well-known type [NFC RTD]              */
636 #define NFA_TNF_WKT NDEF_TNF_WKT
637 /* Media-type as defined in RFC 2046 [RFC 2046]     */
638 #define NFA_TNF_RFC2046_MEDIA NDEF_TNF_MEDIA
639 /* Absolute URI as defined in RFC 3986 [RFC 3986]   */
640 #define NFA_TNF_RFC3986_URI NDEF_TNF_URI
641 /* NFC Forum external type [NFC RTD]                */
642 #define NFA_TNF_EXTERNAL NDEF_TNF_EXT
643 /* Unknown                                          */
644 #define NFA_TNF_UNKNOWN NDEF_TNF_UNKNOWN
645 /* Unchanged                                        */
646 #define NFA_TNF_UNCHANGED NDEF_TNF_UNCHANGED
647 /* Reserved                                         */
648 #define NFA_TNF_RESERVED NDEF_TNF_RESERVED
649 /* Used to register default NDEF type handler       */
650 #define NFA_TNF_DEFAULT 0xFF
651 typedef uint8_t tNFA_TNF;
652 
653 /* Definitions for tNFA_NDEF_URI_ID (Frequently used prefixes. For additional
654  * values, see [NFC RTD URI] */
655 #define NFA_NDEF_URI_ID_ABSOLUTE 0x00 /* Unabridged URI.  */
656 #define NFA_NDEF_URI_ID_HTTP 0x03     /* http://          */
657 #define NFA_NDEF_URI_ID_HTTPS 0x04    /* https://         */
658 #define NFA_NDEF_URI_ID_TEL 0x05      /* tel:             */
659 #define NFA_NDEF_URI_ID_MAILTO 0x06   /* mailto:          */
660 #define NFA_NDEF_URI_ID_FTP 0x0D      /* ftp://           */
661 #define NFA_NDEF_URI_ID_FILE 0x1D     /* file://          */
662 
663 typedef uint8_t tNFA_NDEF_URI_ID;
664 
665 /* Events for tNFA_NDEF_CBACK */
666 /* NDEF record type registered. (In response to NFA_RegisterNDefTypeHandler) */
667 #define NFA_NDEF_REGISTER_EVT 0
668 /* Received an NDEF message with the registered type. See [tNFA_NDEF_DATA] */
669 #define NFA_NDEF_DATA_EVT 1
670 typedef uint8_t tNFA_NDEF_EVT;
671 
672 /* Structure for NFA_NDEF_REGISTER_EVT event data */
673 typedef struct {
674   tNFA_STATUS status;           /* Status of the registration               */
675   tNFA_HANDLE ndef_type_handle; /* Handle for this NDEF type registration.  */
676 } tNFA_NDEF_REGISTER;
677 
678 /* Structure for NFA_NDEF_DATA_EVT event data */
679 typedef struct {
680   tNFA_HANDLE ndef_type_handle; /* Handle for NDEF type registration.   */
681   uint8_t* p_data;              /* Data buffer                          */
682   uint32_t len;                 /* Length of data                       */
683 } tNFA_NDEF_DATA;
684 
685 /* Union of all NDEF callback structures */
686 typedef union {
687   /* Structure for NFA_NDEF_REGISTER_EVT event data */
688   tNFA_NDEF_REGISTER ndef_reg;
689   /* Structure for NFA_NDEF_DATA_EVT event data */
690   tNFA_NDEF_DATA ndef_data;
691 } tNFA_NDEF_EVT_DATA;
692 
693 /* NFA_NDEF callback */
694 typedef void(tNFA_NDEF_CBACK)(tNFA_NDEF_EVT event, tNFA_NDEF_EVT_DATA* p_data);
695 
696 /* NFA VSC Callback */
697 typedef void(tNFA_VSC_CBACK)(uint8_t event, uint16_t param_len,
698                              uint8_t* p_param);
699 
700 /*****************************************************************************
701 **  External Function Declarations
702 *****************************************************************************/
703 
704 /*******************************************************************************
705 **
706 ** Function         NFA_Init
707 **
708 ** Description      This function initializes control blocks for NFA
709 **
710 **                  p_hal_entry_tbl points to a table of HAL entry points
711 **
712 **                  NOTE: the buffer that p_hal_entry_tbl points must be
713 **                  persistent until NFA is disabled.
714 **
715 **
716 ** Returns          none
717 **
718 *******************************************************************************/
719 extern void NFA_Init(tHAL_NFC_ENTRY* p_hal_entry_tbl);
720 
721 /*******************************************************************************
722 **
723 ** Function         NFA_Enable
724 **
725 ** Description      This function enables NFC. Prior to calling NFA_Enable,
726 **                  the NFCC must be powered up, and ready to receive commands.
727 **                  This function enables the tasks needed by NFC, opens the NCI
728 **                  transport, resets the NFC controller, downloads patches to
729 **                  the NFCC (if necessary), and initializes the NFC subsystems.
730 **
731 **                  This function should only be called once - typically when
732 **                  NFC is enabled during boot-up, or when NFC is enabled from a
733 **                  settings UI. Subsequent calls to NFA_Enable while NFA is
734 **                  enabling or enabled will be ignored. When the NFC startup
735 **                  procedure is completed, an NFA_DM_ENABLE_EVT is returned to
736 **                  the application using the tNFA_DM_CBACK.
737 **
738 **                  The tNFA_CONN_CBACK parameter is used to register a callback
739 **                  for polling and card emulation events.
740 **
741 **
742 ** Returns          NFA_STATUS_OK if successfully initiated
743 **                  NFA_STATUS_FAILED otherwise
744 **
745 *******************************************************************************/
746 extern tNFA_STATUS NFA_Enable(tNFA_DM_CBACK* p_dm_cback,
747                               tNFA_CONN_CBACK* p_conn_cback);
748 
749 /*******************************************************************************
750 **
751 ** Function         NFA_Disable
752 **
753 ** Description      This function is called to shutdown NFC. The tasks for NFC
754 **                  are terminated, and clean up routines are performed. This
755 **                  function is typically called during platform shut-down, or
756 **                  when NFC is disabled from a settings UI. When the NFC
757 **                  shutdown procedure is completed, an NFA_DM_DISABLE_EVT is
758 **                  returned to the application using the tNFA_DM_CBACK.
759 **
760 **                  The platform should wait until the NFC_DISABLE_REVT is
761 **                  received before powering down the NFC chip and NCI
762 **                  transport. This is required to so that NFA can gracefully
763 **                  shut down any open connections.
764 **
765 ** Returns          NFA_STATUS_OK if successfully initiated
766 **                  NFA_STATUS_FAILED otherwise
767 **
768 *******************************************************************************/
769 extern tNFA_STATUS NFA_Disable(bool graceful);
770 
771 /*******************************************************************************
772 **
773 ** Function         NFA_SetConfig
774 **
775 ** Description      Set the configuration parameters to NFCC. The result is
776 **                  reported with an NFA_DM_SET_CONFIG_EVT in the tNFA_DM_CBACK
777 **                  callback.
778 **
779 ** Note:            If RF discovery is started,
780 **                  NFA_StopRfDiscovery()/NFA_RF_DISCOVERY_STOPPED_EVT should
781 **                  happen before calling this function. Most Configuration
782 **                  parameters are related to RF discovery.
783 **
784 ** Returns          NFA_STATUS_OK if successfully initiated
785 **                  NFA_STATUS_BUSY if previous setting is on-going
786 **                  NFA_STATUS_FAILED otherwise
787 **
788 *******************************************************************************/
789 extern tNFA_STATUS NFA_SetConfig(tNFA_PMID param_id, uint8_t length,
790                                  uint8_t* p_data);
791 
792 /*******************************************************************************
793 **
794 ** Function         NFA_GetConfig
795 **
796 ** Description      Get the configuration parameters from NFCC. The result is
797 **                  reported with an NFA_DM_GET_CONFIG_EVT in the tNFA_DM_CBACK
798 **                  callback.
799 **
800 ** Returns          NFA_STATUS_OK if successfully initiated
801 **                  NFA_STATUS_FAILED otherwise
802 **
803 *******************************************************************************/
804 extern tNFA_STATUS NFA_GetConfig(uint8_t num_ids, tNFA_PMID* p_param_ids);
805 
806 /*******************************************************************************
807 **
808 ** Function         NFA_RequestExclusiveRfControl
809 **
810 ** Description      Request exclusive control of NFC.
811 **                  - Previous behavior (polling/tag reading, DH card emulation)
812 **                    will be suspended .
813 **                  - Polling and listening will be done based on the specified
814 **                    params
815 **
816 **                  The NFA_EXCLUSIVE_RF_CONTROL_STARTED_EVT event of
817 **                  tNFA_CONN_CBACK indicates the status of the operation.
818 **
819 **                  NFA_ACTIVATED_EVT and NFA_DEACTIVATED_EVT indicates link
820 **                  activation/deactivation.
821 **
822 **                  NFA_SendRawFrame is used to send data to the peer.
823 **                  NFA_DATA_EVT indicates data from the peer.
824 **
825 **                  If a tag is activated, then the NFA_RW APIs may be used to
826 **                  send commands to the tag. Incoming NDEF messages are sent to
827 **                  the NDEF callback.
828 **
829 **                  Once exclusive RF control has started, NFA will not activate
830 **                  LLCP internally. The application has exclusive control of
831 **                  the link.
832 **
833 ** Note:            If RF discovery is started,
834 **                  NFA_StopRfDiscovery()/NFA_RF_DISCOVERY_STOPPED_EVT should
835 **                  happen before calling this function
836 **
837 ** Returns          NFA_STATUS_OK if successfully initiated
838 **                  NFA_STATUS_FAILED otherwise
839 **
840 *******************************************************************************/
841 extern tNFA_STATUS NFA_RequestExclusiveRfControl(tNFA_TECHNOLOGY_MASK poll_mask,
842                                                  tNFA_LISTEN_CFG* p_listen_cfg,
843                                                  tNFA_CONN_CBACK* p_conn_cback,
844                                                  tNFA_NDEF_CBACK* p_ndef_cback);
845 
846 /*******************************************************************************
847 **
848 ** Function         NFA_ReleaseExclusiveRfControl
849 **
850 ** Description      Release exclusive control of NFC. Once released, behavior
851 **                  prior to obtaining exclusive RF control will resume.
852 **
853 Note??
854 ** Returns          NFA_STATUS_OK if successfully initiated
855 **                  NFA_STATUS_FAILED otherwise
856 **
857 *******************************************************************************/
858 extern tNFA_STATUS NFA_ReleaseExclusiveRfControl(void);
859 
860 /*******************************************************************************
861 **
862 ** Function         NFA_EnablePolling
863 **
864 ** Description      Enable polling for technologies specified by poll_mask.
865 **
866 **                  The following events (notified using the connection
867 **                  callback registered with NFA_Enable) are generated during
868 **                  polling:
869 **
870 **                  - NFA_POLL_ENABLED_EVT indicates whether or not polling
871 **                    successfully enabled.
872 **                  - NFA_DISC_RESULT_EVT indicates there are more than one
873 **                    devices, so application must select one of tags by calling
874 **                    NFA_Select().
875 **                  - NFA_SELECT_RESULT_EVT indicates whether previous selection
876 **                    was successful or not. If it was failed then application
877 **                    must select again or deactivate by calling
878 **                    NFA_Deactivate().
879 **                  - NFA_ACTIVATED_EVT is generated when an NFC link is
880 **                    activated.
881 **                  - NFA_NDEF_DETECT_EVT is generated if tag is activated
882 **                  - NFA_DEACTIVATED_EVT will be returned after deactivating
883 **                    NFC link.
884 **
885 ** Note:            If RF discovery is started,
886 **                  NFA_StopRfDiscovery()/NFA_RF_DISCOVERY_STOPPED_EVT should
887 **                  happen before calling this function
888 **
889 ** Returns          NFA_STATUS_OK if successfully initiated
890 **                  NFA_STATUS_FAILED otherwise
891 **
892 *******************************************************************************/
893 extern tNFA_STATUS NFA_EnablePolling(tNFA_TECHNOLOGY_MASK poll_mask);
894 
895 /*******************************************************************************
896 **
897 ** Function         NFA_DisablePolling
898 **
899 ** Description      Disable polling
900 **                  NFA_POLL_DISABLED_EVT will be returned after stopping
901 **                  polling.
902 **
903 ** Note:            If RF discovery is started,
904 **                  NFA_StopRfDiscovery()/NFA_RF_DISCOVERY_STOPPED_EVT should
905 **                  happen before calling this function
906 **
907 ** Returns          NFA_STATUS_OK if successfully initiated
908 **                  NFA_STATUS_FAILED otherwise
909 **
910 *******************************************************************************/
911 extern tNFA_STATUS NFA_DisablePolling(void);
912 
913 /*******************************************************************************
914 **
915 ** Function         NFA_EnableListening
916 **
917 ** Description      Enable listening.
918 **                  NFA_LISTEN_ENABLED_EVT will be returned after listening is
919 **                  allowed.
920 **
921 **                  The actual listening technologies are specified by other NFA
922 **                  API functions. Such functions include (but not limited to)
923 **                  NFA_CeConfigureUiccListenTech.
924 **                  If NFA_DisableListening () is called to ignore the listening
925 **                  technologies, NFA_EnableListening () is called to restore
926 **                  the listening technologies set by these functions.
927 **
928 ** Note:            If RF discovery is started,
929 **                  NFA_StopRfDiscovery()/NFA_RF_DISCOVERY_STOPPED_EVT should
930 **                  happen before calling this function
931 **
932 ** Returns          NFA_STATUS_OK if successfully initiated
933 **                  NFA_STATUS_FAILED otherwise
934 **
935 *******************************************************************************/
936 extern tNFA_STATUS NFA_EnableListening(void);
937 
938 /*******************************************************************************
939 **
940 ** Function         NFA_DisableListening
941 **
942 ** Description      Disable listening
943 **                  NFA_LISTEN_DISABLED_EVT will be returned after stopping
944 **                  listening. This function is called to exclude listen at RF
945 **                  discovery.
946 **
947 ** Note:            If RF discovery is started,
948 **                  NFA_StopRfDiscovery()/NFA_RF_DISCOVERY_STOPPED_EVT should
949 **                  happen before calling this function
950 **
951 ** Returns          NFA_STATUS_OK if successfully initiated
952 **                  NFA_STATUS_FAILED otherwise
953 **
954 *******************************************************************************/
955 extern tNFA_STATUS NFA_DisableListening(void);
956 
957 /*******************************************************************************
958 **
959 ** Function         NFA_StartRfDiscovery
960 **
961 ** Description      Start RF discovery
962 **                  RF discovery parameters shall be set by other APIs.
963 **
964 **                  An NFA_RF_DISCOVERY_STARTED_EVT indicates whether starting
965 **                  was successful or not.
966 **
967 ** Returns          NFA_STATUS_OK if successfully initiated
968 **                  NFA_STATUS_FAILED otherwise
969 **
970 *******************************************************************************/
971 extern tNFA_STATUS NFA_StartRfDiscovery(void);
972 
973 /*******************************************************************************
974 **
975 ** Function         NFA_StopRfDiscovery
976 **
977 ** Description      Stop RF discovery
978 **
979 **                  An NFA_RF_DISCOVERY_STOPPED_EVT indicates whether stopping
980 **                  was successful or not.
981 **
982 ** Returns          NFA_STATUS_OK if successfully initiated
983 **                  NFA_STATUS_FAILED otherwise
984 **
985 *******************************************************************************/
986 extern tNFA_STATUS NFA_StopRfDiscovery(void);
987 
988 /*******************************************************************************
989 **
990 ** Function         NFA_SetRfDiscoveryDuration
991 **
992 ** Description      Set the duration of the single discovery period in [ms].
993 **                  Allowable range: 0 ms to 0xFFFF ms.
994 **
995 ** Note:            If discovery is already started, the application should
996 **                  call NFA_StopRfDiscovery prior to calling
997 **                  NFA_SetRfDiscoveryDuration, and then call
998 **                  NFA_StartRfDiscovery afterwards to restart discovery using
999 **                  the new duration.
1000 **
1001 ** Returns:
1002 **                  NFA_STATUS_OK, if command accepted
1003 **                  NFA_STATUS_FAILED: otherwise
1004 **
1005 *******************************************************************************/
1006 extern tNFA_STATUS NFA_SetRfDiscoveryDuration(uint16_t discovery_period_ms);
1007 
1008 /*******************************************************************************
1009 **
1010 ** Function         NFA_Select
1011 **
1012 ** Description      Select one from detected devices by NFA_DISC_RESULT_EVT
1013 **                  after the last discovery result is received.
1014 **                  An NFA_SELECT_RESULT_EVT indicates whether selection was
1015 **                  successful or not. If failed then application must select
1016 **                  again or deactivate by NFA_Deactivate ().
1017 **
1018 ** Returns          NFA_STATUS_OK if successfully initiated
1019 **                  NFA_STATUS_INVALID_PARAM if RF interface is not matched
1020 **                  protocol
1021 **                  NFA_STATUS_FAILED otherwise
1022 **
1023 *******************************************************************************/
1024 extern tNFA_STATUS NFA_Select(uint8_t rf_disc_id, tNFA_NFC_PROTOCOL protocol,
1025                               tNFA_INTF_TYPE rf_interface);
1026 
1027 /*******************************************************************************
1028 **
1029 ** Function         NFA_UpdateRFCommParams
1030 **
1031 ** Description      This function is called to update RF Communication
1032 **                  parameters once the Frame RF Interface has been activated.
1033 **
1034 **                  An NFA_UPDATE_RF_PARAM_RESULT_EVT indicates whether updating
1035 **                  was successful or not.
1036 **
1037 ** Returns          NFA_STATUS_OK if successfully initiated
1038 **                  NFA_STATUS_FAILED otherwise
1039 **
1040 *******************************************************************************/
1041 extern tNFA_STATUS NFA_UpdateRFCommParams(tNFA_RF_COMM_PARAMS* p_params);
1042 
1043 /*******************************************************************************
1044 **
1045 ** Function         NFA_Deactivate
1046 **
1047 ** Description
1048 **                  If sleep_mode=TRUE:
1049 **                      Deselect the activated device by deactivating into sleep
1050 **                      mode.
1051 **
1052 **                      An NFA_DEACTIVATE_FAIL_EVT indicates that selection was
1053 **                      not successful. Application can select another
1054 **                      discovered device or deactivate by NFA_Deactivate ()
1055 **                      after receiving NFA_DEACTIVATED_EVT.
1056 **
1057 **                      Deactivating to sleep mode is not allowed when NFCC is
1058 **                      in wait-for-host-select mode, or in listen-sleep states;
1059 **                      NFA will deactivate to idle or discovery state for these
1060 **                      cases respectively.
1061 **
1062 **
1063 **                  If sleep_mode=FALSE:
1064 **                      Deactivate the connection (e.g. as a result of presence
1065 **                      check failure) NFA_DEACTIVATED_EVT will indicate that
1066 **                      link is deactivated. Polling/listening will resume
1067 **                      (unless the nfcc is in wait_for-all-discoveries state)
1068 **
1069 **
1070 ** Returns          NFA_STATUS_OK if successfully initiated
1071 **                  NFA_STATUS_FAILED otherwise
1072 **
1073 *******************************************************************************/
1074 extern tNFA_STATUS NFA_Deactivate(bool sleep_mode);
1075 
1076 /*******************************************************************************
1077 **
1078 ** Function         NFA_SendRawFrame
1079 **
1080 ** Description      Send a raw frame over the activated interface with the NFCC.
1081 **                  This function can only be called after NFC link is
1082 **                  activated.
1083 **
1084 **                  If the activated interface is a tag and auto-presence check
1085 **                  is enabled then presence_check_start_delay can be used to
1086 **                  indicate the delay in msec after which the next auto
1087 **                  presence check command can be sent.
1088 **                  NFA_DM_DEFAULT_PRESENCE_CHECK_START_DELAY can be used as the
1089 **                  default value for the delay.
1090 **
1091 ** Returns          NFA_STATUS_OK if successfully initiated
1092 **                  NFA_STATUS_FAILED otherwise
1093 **
1094 *******************************************************************************/
1095 extern tNFA_STATUS NFA_SendRawFrame(uint8_t* p_raw_data, uint16_t data_len,
1096                                     uint16_t presence_check_start_delay);
1097 
1098 /*******************************************************************************
1099 ** NDEF APIs
1100 *******************************************************************************/
1101 
1102 /*******************************************************************************
1103 **
1104 ** Function         NFA_RegisterNDefTypeHandler
1105 **
1106 ** Description      This function allows the applications to register for
1107 **                  specific types of NDEF records. When NDEF records are
1108 **                  received, NFA will parse the record-type field, and pass
1109 **                  the record to the registered tNFA_NDEF_CBACK.
1110 **
1111 **                  For records types which were not registered, the record will
1112 **                  be sent to the default handler. A default type-handler may
1113 **                  be registered by calling this NFA_RegisterNDefTypeHandler
1114 **                  with tnf=NFA_TNF_DEFAULT. In this case, all un-registered
1115 **                  record types will be sent to the callback. Only one default
1116 **                  handler may be registered at a time.
1117 **
1118 **                  An NFA_NDEF_REGISTER_EVT will be sent to the tNFA_NDEF_CBACK
1119 **                  to indicate that registration was successful, and provide a
1120 **                  handle for this record type.
1121 **
1122 **
1123 ** Returns          NFA_STATUS_OK if successfully initiated
1124 **                  NFA_STATUS_FAILED otherwise
1125 **
1126 *******************************************************************************/
1127 extern tNFA_STATUS NFA_RegisterNDefTypeHandler(bool handle_whole_message,
1128                                                tNFA_TNF tnf,
1129                                                uint8_t* p_type_name,
1130                                                uint8_t type_name_len,
1131                                                tNFA_NDEF_CBACK* p_ndef_cback);
1132 
1133 /*******************************************************************************
1134 **
1135 ** Function         NFA_RegisterNDefUriHandler
1136 **
1137 ** Description      This API is a special-case of NFA_RegisterNDefTypeHandler
1138 **                  with TNF=NFA_TNF_WKT, and type_name='U' (URI record); and
1139 **                  allows registering for specific URI types (e.g. 'tel:' or
1140 **                  'mailto:').
1141 **
1142 **                  An NFA_NDEF_REGISTER_EVT will be sent to the tNFA_NDEF_CBACK
1143 **                  to indicate that registration was successful, and provide a
1144 **                  handle for this registration.
1145 **
1146 **                  If uri_id=NFA_NDEF_URI_ID_ABSOLUTE, then p_abs_uri contains
1147 **                  the unabridged URI. For all other uri_id values, the
1148 **                  p_abs_uri parameter is ignored (i.e the URI prefix is
1149 **                  implied by uri_id).
1150 **
1151 **                  See [NFC RTD URI] for more information.
1152 **
1153 ** Returns          NFA_STATUS_OK if successfully initiated
1154 **                  NFA_STATUS_FAILED otherwise
1155 **
1156 *******************************************************************************/
1157 extern tNFA_STATUS NFA_RegisterNDefUriHandler(bool handle_whole_message,
1158                                               tNFA_NDEF_URI_ID uri_id,
1159                                               uint8_t* p_abs_uri,
1160                                               uint8_t uri_id_len,
1161                                               tNFA_NDEF_CBACK* p_ndef_cback);
1162 
1163 /*******************************************************************************
1164 **
1165 ** Function         NFA_DeregisterNDefTypeHandler
1166 **
1167 ** Description      Deregister NDEF record type handler.
1168 **
1169 ** Returns          NFA_STATUS_OK if successfully initiated
1170 **                  NFA_STATUS_FAILED otherwise
1171 **
1172 *******************************************************************************/
1173 extern tNFA_STATUS NFA_DeregisterNDefTypeHandler(tNFA_HANDLE ndef_type_handle);
1174 
1175 /*******************************************************************************
1176 **
1177 ** Function         NFA_PowerOffSleepMode
1178 **
1179 ** Description      This function is called to enter or leave NFCC Power Off
1180 **                  Sleep mode
1181 **                  NFA_DM_PWR_MODE_CHANGE_EVT will be sent to indicate status.
1182 **
1183 **                  start_stop : TRUE if entering Power Off Sleep mode
1184 **                               FALSE if leaving Power Off Sleep mode
1185 **
1186 Note??
1187 ** Returns          NFA_STATUS_OK if successfully initiated
1188 **                  NFA_STATUS_FAILED otherwise
1189 **
1190 *******************************************************************************/
1191 extern tNFA_STATUS NFA_PowerOffSleepMode(bool start_stop);
1192 
1193 /*******************************************************************************
1194 **
1195 ** Function         NFA_RegVSCback
1196 **
1197 ** Description      This function is called to register or de-register a
1198 **                  callback function to receive Proprietary NCI response and
1199 **                  notification events.
1200 **                  The maximum number of callback functions allowed is
1201 **                  NFC_NUM_VS_CBACKS
1202 **
1203 ** Returns          tNFC_STATUS
1204 **
1205 *******************************************************************************/
1206 extern tNFC_STATUS NFA_RegVSCback(bool is_register, tNFA_VSC_CBACK* p_cback);
1207 
1208 /*******************************************************************************
1209 **
1210 ** Function         NFA_SendVsCommand
1211 **
1212 ** Description      This function is called to send an NCI Vendor Specific
1213 **                  command to NFCC.
1214 **
1215 **                  oid             - The opcode of the VS command.
1216 **                  cmd_params_len  - The command parameter len
1217 **                  p_cmd_params    - The command parameter
1218 **                  p_cback         - The callback function to receive the
1219 **                                    command status
1220 **
1221 ** Returns          NFA_STATUS_OK if successfully initiated
1222 **                  NFA_STATUS_FAILED otherwise
1223 **
1224 *******************************************************************************/
1225 extern tNFA_STATUS NFA_SendVsCommand(uint8_t oid, uint8_t cmd_params_len,
1226                                      uint8_t* p_cmd_params,
1227                                      tNFA_VSC_CBACK* p_cback);
1228 
1229 /*******************************************************************************
1230 **
1231 ** Function         NFA_SendRawVsCommand
1232 **
1233 ** Description      This function is called to send raw vendor specific
1234 **                  command to NFCC.
1235 **
1236 **                  cmd_params_len  - The command parameter len
1237 **                  p_cmd_params    - The command parameter
1238 **                  p_cback         - The callback function to receive the
1239 **                                    command
1240 **
1241 ** Returns          NFA_STATUS_OK if successfully initiated
1242 **                  NFA_STATUS_FAILED otherwise
1243 **
1244 *******************************************************************************/
1245 
1246 extern tNFA_STATUS NFA_SendRawVsCommand(uint8_t cmd_params_len,
1247                                         uint8_t* p_cmd_params,
1248                                         tNFA_VSC_CBACK* p_cback);
1249 
1250 /*******************************************************************************
1251 ** Function:        NFA_EnableDTA_TypeMode
1252 **
1253 ** Description:     Initialize and get global DTA type mode from .conf
1254 **
1255 ** Returns:         none:
1256 **
1257 *******************************************************************************/
1258 extern void NFA_EnableDtamode(tNFA_eDtaModes eDtaMode);
1259 
1260 /*******************************************************************************
1261 ** Function         NFA_GetNCIVersion
1262 **
1263 ** Description      Called by higher layer to get the current nci
1264 **                  version of nfc.
1265 **
1266 ** Returns          NCI version NCI2.0 / NCI1.0
1267 **
1268 *******************************************************************************/
1269 extern uint8_t NFA_GetNCIVersion();
1270 
1271 /*******************************************************************************
1272 ** Function:        NFA_SetPowerSubStateForScreenState
1273 **
1274 ** Description:     This function send the current screen state
1275 **
1276 ** Returns:        NFA_STATUS_OK if successfully initiated
1277 **                  NFA_STATUS_FAILED otherwise
1278 *******************************************************************************/
1279 extern tNFA_STATUS NFA_SetPowerSubStateForScreenState(uint8_t ScreenState);
1280 
1281 /*******************************************************************************
1282 **
1283 ** Function         NFA_ChangeDiscoveryTech
1284 **
1285 ** Description      Change RF discoverying technologies specified by
1286 **                  pollTech and listenTech.
1287 **
1288 **                  NFA_DM_API_CHANGE_DISCOVERY_TECH_EVT will be returned.
1289 **
1290 **                  If pollTech/listenTech are set to 0xFF, it revert to
1291 **                  the polling/listening technologies
1292 **                  before NFA_ChangeDiscoveryTech() was called.
1293 **
1294 **                  is_revert_poll : TRUE if reverting RF polling tech
1295 **                               before calling NFA_StopRfDiscovery
1296 **                               FALSE if changing RF polling tech according
1297 **                               to pollTech
1298 **                  is_revert_listen : TRUE if reverting RF listening tech
1299 **                               before calling NFA_StopRfDiscovery
1300 **                               FALSE if changing RF listening tech according
1301 **                               to listenTech
1302 **                  change_default_tech : TRUE if the default technolofy mask
1303 **                               has to be changed according to listenTech
1304 **                               and pollTech settings
1305 **
1306 ** Note:            If RF discovery is started,
1307 **                  NFA_StopRfDiscovery()/NFA_RF_DISCOVERY_STOPPED_EVT
1308 **                  should happen before calling this function
1309 **
1310 ** Returns          NFA_STATUS_OK if successfully initiated
1311 **                  NFA_STATUS_FAILED otherwise
1312 **
1313 *******************************************************************************/
1314 tNFA_STATUS NFA_ChangeDiscoveryTech(tNFA_TECHNOLOGY_MASK pollTech,
1315                                     tNFA_TECHNOLOGY_MASK listenTech,
1316                                     bool is_revert_poll, bool is_revert_listen,
1317                                     bool change_default_tech = false);
1318 
1319 #endif /* NFA_API_H */
1320