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rjw6c1fd8f2022-11-30 14:33:01 +08001/*****************************************************************************
2* Copyright Statement:
3* --------------------
4* This software is protected by Copyright and the information contained
5* herein is confidential. The software may not be copied and the information
6* contained herein may not be used or disclosed except with the written
7* permission of MediaTek Inc. (C) 2005
8*
9* BY OPENING THIS FILE, BUYER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES
10* THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE")
11* RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO BUYER ON
12* AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES,
13* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF
14* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NONINFRINGEMENT.
15* NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH RESPECT TO THE
16* SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY, INCORPORATED IN, OR
17* SUPPLIED WITH THE MEDIATEK SOFTWARE, AND BUYER AGREES TO LOOK ONLY TO SUCH
18* THIRD PARTY FOR ANY WARRANTY CLAIM RELATING THERETO. MEDIATEK SHALL ALSO
19* NOT BE RESPONSIBLE FOR ANY MEDIATEK SOFTWARE RELEASES MADE TO BUYER'S
20* SPECIFICATION OR TO CONFORM TO A PARTICULAR STANDARD OR OPEN FORUM.
21*
22* BUYER'S SOLE AND EXCLUSIVE REMEDY AND MEDIATEK'S ENTIRE AND CUMULATIVE
23* LIABILITY WITH RESPECT TO THE MEDIATEK SOFTWARE RELEASED HEREUNDER WILL BE,
24* AT MEDIATEK'S OPTION, TO REVISE OR REPLACE THE MEDIATEK SOFTWARE AT ISSUE,
25* OR REFUND ANY SOFTWARE LICENSE FEES OR SERVICE CHARGE PAID BY BUYER TO
26* MEDIATEK FOR SUCH MEDIATEK SOFTWARE AT ISSUE.
27*
28* THE TRANSACTION CONTEMPLATED HEREUNDER SHALL BE CONSTRUED IN ACCORDANCE
29* WITH THE LAWS OF THE STATE OF CALIFORNIA, USA, EXCLUDING ITS CONFLICT OF
30* LAWS PRINCIPLES. ANY DISPUTES, CONTROVERSIES OR CLAIMS ARISING THEREOF AND
31* RELATED THERETO SHALL BE SETTLED BY ARBITRATION IN SAN FRANCISCO, CA, UNDER
32* THE RULES OF THE INTERNATIONAL CHAMBER OF COMMERCE (ICC).
33*
34*****************************************************************************/
35
36/*******************************************************************************
37 * Filename:
38 * ---------
39 * rmmi_context.h
40 *
41 * Project:
42 * --------
43 * MT6208
44 *
45 * Description:
46 * ------------
47 * This file is intends for �K.
48 *
49 * Author:
50 * -------
51 * -------
52 *
53 *******************************************************************************/
54
55/********************************************************************************
56* Copyright Statement:
57* --------------------
58*
59* This product has been developed using a protocol stack
60* developed by Sasken Communication Technologies Limited.
61*
62********************************************************************************/
63
64#ifndef _RMMI_CONTEXT_H
65#define _RMMI_CONTEXT_H
66
67#include "l4c_common_enum.h"
68
69
70#include "ps2sat_struct.h"
71#include "ps_public_struct.h"
72#include "l3_inc_enums.h"
73#include "as2l4c_struct.h"
74#include "rmmi_common_enum.h"
75#include "fs_type.h"
76
77#include "kal_general_types.h"
78#include "cmux_vp_num.h"
79#include "ps_public_enum.h"
80#include "kal_public_api.h"
81
82#include "l4c2phb_struct.h"
83#include "l4c_aux_struct.h"
84
85#include "med_struct.h"
86#include "l4crac_enums.h"
87
88#include "sim_public_enum.h"
89#include "rmmi_struct.h"
90#include "smu_common_enums.h"
91#include "kal_public_defs.h"
92#include "c2k_irat_msg_struct.h"
93
94/* CONSTANTS */
95
96#define NULL_TERM '\0' /* string termination */
97#define INVALID_ENUM 255 /* invalid enum value */
98
99#define RMMI_PTR rmmi_ptr_g
100#define RMMI_COMM_PTR rmmi_common_ptr_g
101
102#define rmmi_skip_spaces(source_string_ptr) \
103 while( source_string_ptr->string_ptr[ source_string_ptr->index ] \
104 == RMMI_SPACE ) \
105 { \
106 source_string_ptr->index++; \
107 }
108//030617 mtk00468 add for skip unused character before character a
109#define rmmi_skip_none_a(source_string_ptr, length) \
110 while( (source_string_ptr->index < length) && !((source_string_ptr->string_ptr[ source_string_ptr->index ] == RMMI_CHAR_A) ||\
111 (source_string_ptr->string_ptr[ source_string_ptr->index ] == rmmi_char_a)) ) \
112 { \
113 source_string_ptr->index++; \
114 }
115
116#define RMMI_IS_LOWER( alpha_char ) \
117 ( ( (alpha_char >= rmmi_char_a) && (alpha_char <= rmmi_char_z) ) ? 1 : 0 )
118
119#define RMMI_IS_UPPER( alpha_char ) \
120 ( ( (alpha_char >= RMMI_CHAR_A) && (alpha_char <= RMMI_CHAR_Z) ) ? 1 : 0 )
121
122#define RMMI_IS_HEX_ALPHA( alpha_char ) \
123 ( ( (alpha_char >= RMMI_CHAR_A) && (alpha_char <= RMMI_CHAR_F) ) ? 1 : 0 )
124
125#define RMMI_IS_HEX_ALPHA_CASE_INSENSITIVE( alpha_char ) \
126 ( ( ((alpha_char >= RMMI_CHAR_A) && (alpha_char <= RMMI_CHAR_F)) || ((alpha_char >= rmmi_char_a) && (alpha_char <= rmmi_char_f)) ) ? 1 : 0 )
127
128#define RMMI_IS_NUMBER( alpha_char ) \
129 ( ( (alpha_char >= RMMI_CHAR_0) && (alpha_char <= RMMI_CHAR_9) ) ? 1 : 0 )
130
131#define RMMI_IS_ALPHA( alpha_char ) \
132 ( ( RMMI_IS_UPPER(alpha_char) || RMMI_IS_LOWER(alpha_char) ) ? 1 : 0 )
133
134#define RMMI_IS_SYMBOL( alpha_char ) \
135 ( ( (alpha_char == RMMI_CHAR_PLUS) || (alpha_char == RMMI_CHAR_STAR) || \
136 (alpha_char == RMMI_CHAR_POUND) || (alpha_char == RMMI_COMMA) || \
137 (alpha_char == RMMI_CHAR_DOT) || (alpha_char == RMMI_FORWARD_SLASH) || \
138 (alpha_char == RMMI_COLON) || (alpha_char == RMMI_HAT) || \
139 (alpha_char == RMMI_CHAR_MINUS) || \
140 (alpha_char == RMMI_L_SQ_BRACKET) || \
141 (alpha_char == RMMI_R_SQ_BRACKET) || \
142 (alpha_char == RMMI_L_ANGLE_BRACKET) || \
143 (alpha_char == RMMI_CHAR_ULINE) || \
144 (alpha_char == RMMI_SPACE) || \
145 (alpha_char == RMMI_SEMICOLON) || \
146 (alpha_char == RMMI_R_ANGLE_BRACKET) \
147 ) ? 1 : 0 )
148
149#define RMMI_IS_EXT_CHAR( alpha_char ) \
150 (((alpha_char == RMMI_HAT)||(alpha_char == RMMI_CHAR_TILDE)||(alpha_char == RMMI_EURO)||\
151 (alpha_char == RMMI_L_SQ_BRACKET) || (alpha_char == RMMI_R_SQ_BRACKET) || \
152 (alpha_char == RMMI_L_CURLY_BRACKET) || (alpha_char == RMMI_R_CURLY_BRACKET) || \
153 (alpha_char == RMMI_CHAR_REVERSE_SOLIDUS) ||(alpha_char == RMMI_CHAR_VERTICAL_LINE) \
154 ) ? 1 : 0 )
155
156
157#define RMMI_MAX_BIT_MASK_SIZE (RMMI_MAX_CHANNEL_NUMBER + 7) / 8
158#define RMMI_MAX_BIT_MASK_SIZE_CRLA ((MAX_SOURCE_NUM + 7) / 8) /* refer to l4c total source id */
159
160//#if !defined(__MTK_TARGET__) && defined(__RMMI_UT__)
161//#define RMMI_UART_GetOwnerID(port) rmmi_current_mod_id
162//#endif
163
164
165typedef kal_bool(*UART_TRANS_FUNC_PTR) (kal_uint8);
166
167typedef kal_uint8 RMMI_UART_FLAG[RMMI_MAX_BIT_MASK_SIZE];
168
169
170typedef struct rmmi_single_cmd_struct
171{
172 kal_uint16 cmd_code; /* rmmi_extended_cmd_id_enum */
173 kal_uint8 cmd_mode; /* rmmi_cmd_mode_enum */
174} rmmi_single_cmd_struct;
175
176typedef struct basic_cmd_struct
177{
178 kal_uint8 cmd_code; /* rmmi_basic_cmd_id_enum */
179 kal_uint8 cmd_mode; /* rmmi_cmd_mode_enum */
180
181 kal_bool is_this_node_used;
182 kal_uint8 value;
183
184 struct basic_cmd_struct *next_ptr;
185} rmmi_multiple_basic_cmd_struct;
186
187typedef struct rmmi_cmd_struct
188{
189 kal_uint8 which_present; /* rmmi_cmd_type_enum */
190
191 rmmi_single_cmd_struct single_cmd;
192 rmmi_multiple_basic_cmd_struct multiple_cmd; //not used now
193} rmmi_cmd_struct;
194
195typedef struct
196{
197 kal_uint8 s0; /* auto answer */
198 kal_uint8 s2; /* escape character (+++) */
199 kal_uint8 s3; /* CR 0x0d*/
200 kal_uint8 s4; /* LF 0x0a*/
201 kal_uint8 s5; /* backspace */
202 kal_uint8 s6; /* pause before dialing */
203 kal_uint8 s7; /* connect timeout */
204 kal_uint8 s8; /* , pause time */
205 kal_uint8 s10; /* disconnect timeout */
206 kal_uint8 s32; /* XON character */
207 kal_uint8 s33; /* XOFF character */
208 kal_uint8 s95;
209
210} rmmi_s_register_struct;
211
212typedef struct uart_queue_struct
213{
214 kal_uint16 head;
215 kal_uint16 length;
216 kal_uint8 data[MAX_DATA_QUEUE_LENGTH];
217
218} rmmi_uart_queue_struct;
219
220typedef struct
221{
222 kal_uint16 head;
223 kal_uint16 length;
224 kal_uint8 data[MAX_DATA_QUEUE_LENGTH];
225
226} rmmi_uart_output_queue_struct;
227
228typedef struct
229{
230
231 kal_bool sat_in_menu;
232 kal_bool sat_in_process;
233 kal_bool sat_normal_standby;
234 kal_bool sat_ready;
235 kal_uint8 sat_input_type;
236 kal_uint8 sat_input_reveal;
237 kal_uint8 sat_input_min_len;
238 kal_uint8 sat_input_max_len;
239 kal_bool sat_redial;
240 kal_bool sat_redial_count;
241 kal_uint32 sat_duration;
242
243} rmmi_SAT_info_struct;
244
245typedef struct rmmi_cind_struct
246{
247 kal_uint8 battchg;
248 kal_uint8 signal;
249 kal_uint8 service;
250 kal_uint8 message;
251 kal_uint8 call;
252 kal_uint8 roam;
253 kal_uint8 smsfull;
254 kal_uint8 callsetup;
255 kal_uint8 callheld; //for BT HF 1.5
256} rmmi_cind_struct;
257
258typedef struct rmmi_reg_state_struct
259{
260 kal_uint64 cell_id; // for +CREG and +CGREG and +CEREG, high 16 bits for RNC id, low 16 bits for cell_id
261 kal_uint32 lac_or_tac_value; // for +CREG and +CGREG and +CEREG
262 kal_uint8 rac_value; // for +CGREG
263 kal_uint8 act; //[MAUI_01360129]
264 kal_uint8 state; //for +CREG and +CGREG and +CEREG
265 kal_uint8 cause_type;
266 kal_uint8 cause;
267 data_speed_support_enum cell_data_speed_support;
268
269 kal_uint8 plmn_id[MAX_PLMN_LEN+1];
270 kal_bool is_hplmn;
271
272 kal_bool is_csg_cell;
273 csg_info_struct csg_info;
274 kal_uint8 csg_state; //for +ECSG
275 kal_uint8 scell_number_dl;
276 kal_uint8 scell_number_ul;
277 kal_uint8 vgmm_allowed_nssai_length; /* Number of bytes in allowed NSSAI */
278 kal_uint8 vgmm_allowed_nssai[MAX_LEN_OF_ALL_ALLOWED_NSSAI]; /* Allowed NSSAI */
279} rmmi_reg_state_struct;
280
281#ifdef __TC01__
282typedef struct rmmi_report_reg_state_struct
283{
284 rmmi_reg_state_enum reg_state;
285 kal_uint16 lac_or_tac_value;
286 kal_uint32 cell_id;
287 kal_uint8 act;
288 kal_uint16 cause;
289 kal_uint8 rac;
290} rmmi_report_reg_state_struct;
291
292typedef struct rmmi_report_reg_to_ap_struct
293{
294 rmmi_report_reg_state_struct cs_reg_status;
295 rmmi_report_reg_state_struct ps_reg_status;
296 kal_bool report_creg;
297 kal_bool report_cgreg;
298} rmmi_report_reg_to_ap_struct; /* for reporing CREG/CGREG/CEREG reject cause to AP */
299#endif
300typedef struct rmmi_ims_reg_state_struct
301{
302 kal_uint8 reg_info;
303 kal_uint32 ext_info;
304} rmmi_ims_reg_state_struct;
305
306typedef struct
307{
308 l4c_phb_entry_struct entry;
309 l4c_number_struct num[3];
310 phb_sne_struct sne;
311 phb_email_struct email;
312} rmmi_phb_cpbw_struct;
313
314typedef struct rmmi_clip_info_struct
315{
316 kal_uint8 number[MAX_CC_ADDR_LEN]; //MAX_CC_ADDR_LEN
317 kal_uint8 type;
318 kal_uint8 subaddr[MAX_CC_SUB_ADDR_LEN]; //MAX_CC_SUB_ADDR_LEN
319 kal_uint8 satype;
320 kal_uint8 cli_validity;
321} rmmi_clip_info_struct;
322
323typedef struct rmmi_cnap_info_struct
324{
325 kal_uint8 valid;
326 kal_uint8 len;
327 kal_uint8 dcs;
328 kal_uint8 cni_validity;
329 kal_uint8 str[MAX_CHAR_CNAP * 2+1];
330} rmmi_cnap_info_struct;
331
332typedef struct rmmi_cbst_struct
333{
334 kal_uint8 speed;
335 kal_uint8 name;
336 kal_uint8 ce;
337} rmmi_cbst_struct;
338
339typedef struct rmmi_crlp_strnct
340{
341 kal_uint8 iws;
342 kal_uint8 mws;
343 kal_uint8 T1;
344 kal_uint8 N2;
345} rmmi_crlp_strnct;
346
347typedef struct rmmi_profile_struct
348{
349 rmmi_s_register_struct s_reg;
350 rmmi_cbst_struct rmmi_cbst;
351 rmmi_crlp_strnct rmmi_crlp;
352 kal_uint8 rmmi_ciwf;
353 kal_uint8 rmmi_atv;
354 kal_uint8 rmmi_ate;
355 kal_uint8 rmmi_atq;
356 kal_uint8 rmmi_atx;
357 kal_uint8 rmmi_atw;
358 kal_uint8 rmmi_atampC;
359 kal_uint8 rmmi_atampD;
360 kal_uint8 rmmi_atampK;
361} rmmi_profile_struct;
362
363typedef struct
364{
365 kal_uint8 reason;
366 kal_uint8 mode;
367 kal_uint8 timer;
368 l4c_number_struct dest_buffer;
369 l4c_sub_addr_struct sub_dest_buffer;
370 kal_bool sub_addr_flag;
371} ccfc_req_param_struct; /* for remembering params of AT+CFCC */
372
373typedef struct
374{
375 kal_uint8 mode;
376} ccwa_req_param_struct; /* for remembering params of AT+CCWA */
377
378typedef struct
379{
380 kal_uint8 reason;
381 kal_uint8 mode;
382 kal_uint8 passwd[4];
383} clck_ss_req_param_struct; /* for remembering params of AT+CLCK */
384
385typedef struct rmmi_transfer_struct
386{
387 module_type dest_mod;
388 UART_PORT port;
389} rmmi_transfer_struct;
390
391typedef struct {
392 kal_bool utran_fdd;
393 kal_bool utran_tdd_lcr;
394 kal_bool eutran_fdd;
395 kal_bool eutran_tdd;
396 kal_bool nr_fdd;
397 kal_bool nr_tdd;
398 mode_switch_cause_enum cause;
399} rmmi_ecsra_setting_struct;
400
401#ifdef __TC01__
402typedef struct {
403 kal_bool is_excuted;
404 kal_bool is_abnormal;
405 kal_uint16 usid[10];
406 kal_uint16 pid[10];
407 kal_uint16 mid[10];
408} rmmi_mipi_hw_info_ind_struct;
409#endif
410
411
412typedef struct rmmi_etwmode_setting_struct
413{
414 kal_uint8 lg_wg;
415} rmmi_etwmode_setting_struct;
416
417
418typedef struct rmmi_camped_cell_id_struct
419{
420 rat_enum rat;
421 rat_duplex_type_enum duplex_type;
422 plmn_id_struct plmn_id;
423 kal_uint8 la_code[2];
424 kal_uint8 ta_code[3];
425 kal_uint64 cell_id;
426} rmmi_camped_cell_id_struct;
427
428typedef struct rmmi_eind_invalid_sim_info_struct
429{
430 l4c_rac_response_enum prev_cs_status;
431 l4c_rac_gprs_status_enum prev_ps_status;
432 kal_uint8 prev_cause;
433 kal_uint8 prev_oper[MAX_PLMN_LEN+1];
434}rmmi_eind_invalid_sim_info_struct;
435
436typedef struct rmmi_ims_emergency_support_struct
437{
438 kal_uint8 rat_type;
439 kal_bool ims_emergency_support;
440} rmmi_ims_emergency_support_struct;
441
442typedef struct rmmi_rsp_mode_struct
443{
444 kal_uint8 echo_flag[RMMI_MAX_BIT_MASK_SIZE]; /* rmmi_cmd_echo_enum */
445 kal_uint8 suppress_flag; /* rmmi_result_code_suppress_enum */
446 kal_uint8 format; /* rmmi_result_code_format */
447 kal_uint8 ext_result_code;
448} rmmi_rsp_mode_struct;
449
450/* this structure is used to let custom config the rmmi default setting*/
451typedef struct{
452 rmmi_rsp_mode_struct rsp_mode;
453 kal_uint8 error_report_mode; // /* +CMEE <mode>: rmmi_error_report_mode_enum */
454 kal_uint8 char_set; //+CSCS
455 kal_uint8 plmn_format;
456 kal_uint8 cops_mode;
457 kal_uint8 CPOL_plmn_format;
458 kal_uint8 cmec_keyp;
459 kal_uint8 cmec_disp;
460 kal_uint8 cmec_ind;
461 kal_bool clae_mode; // we save clae mode in rmmi context
462 kal_bool csdh_show; //mtk00714: for +CSDH , hide/show detail Text mode parameters.
463 kal_uint8 cvhu_mode; //MAUI_02862643, mtk02285, support CVHU=1 to ignore ATH
464 rmmi_report_mode_struct report_mode;
465 rmmi_op01_report_mode_struct op01_report_mode;
466#ifdef __PLMN_LIST_WITH_LAC__
467 kal_bool list_plmn_with_lac; //print LAC for +COPS=? response
468#endif
469} rmmi_custom_context_struct;
470
471typedef struct
472{
473 ca_state_enum ca_state;
474 kal_uint8 pcell_bw;
475 kal_uint8 scell_bw[4];
476 kal_uint16 pcell_band;
477 kal_uint16 scell_band[4];
478} rmmi_ca_info_struct;
479#ifdef __RF_SCAN_FOR_DESENSE_TEST__
480typedef struct
481{
482 kal_uint8 src_id;
483 kal_uint8 rat_type;
484 kal_uint8 repeat_times;
485 kal_uint8 num_of_rssi_ind;
486 kal_int64 eRssi[2];
487} rmmi_rfscan_req_struct;
488#endif /*__RF_SCAN_FOR_DESENSE_TEST__*/
489
490typedef struct rmmi_nw_rej_cause_attemp_counter_struct
491{
492 mm_cause_enum mm_lu_rej_cause;
493 mm_cause_enum attach_rej_cause;
494 mm_cause_enum reg_update_rej_cause; // the reject cause of gmm rau, emm tau, vgmm reg update
495 kal_uint8 mm_lu_attempt_counter;
496 kal_uint8 attach_attempt_counter;
497 kal_uint8 reg_update_attempt_counter; // the attempt counter of gmm rau, emm tau, vgmm reg update
498 mm_cause_enum service_rej_cause;
499 kal_uint8 auth_rej_cause;
500 esm_cause_enum esm_rej_cause;
501 rmmi_proc_result_type_enum proc_result;
502 nas_proc_enum nas_proc;
503} rmmi_nw_rej_cause_attemp_counter_struct;
504
505#if defined(__CDMA2000_RAT__)
506
507typedef struct
508{
509 kal_bool is_serving_cell;
510 kal_uint8 num_of_cell; /* 1: serving cell, 0: no serving cell */
511 kal_uint16 nid;
512 kal_uint16 sid;
513 kal_uint16 bs_id;
514 kal_int32 bs_long;
515 kal_int32 bs_lat;
516 kal_int16 rssi_1xRTT;
517 kal_int16 ecio_1xRTT;
518 kal_uint8 rssi_EVDO;
519 kal_int16 ecio_EVDO;
520 kal_uint16 sinr_EVDO;
521} rmmi_c2k_cell_info_struct;
522
523#endif
524
525#ifdef __ARFCN_TO_CAMERA_SUPPORT__
526#ifdef __MTK_TARGET__
527PRAGMA_BEGIN_PACK_STRUCT
528#endif
529typedef struct
530{
531 kal_uint8 simid;
532 kal_uint8 rat;
533 kal_uint8 num_of_arfcn; /* MAX supported is 8*/
534 //kal_uint8 reserved; /* For 4 byte allignment*/
535 kal_uint32 arfcn[L4C_MAX_ARFCN_SUPPORTED];
536 kal_uint16 band[L4C_MAX_ARFCN_SUPPORTED];
537 kal_uint8 is_connected;
538 kal_uint8 is_main_sim;
539} rmmi_camera_arfcn_info_struct;
540#ifdef __MTK_TARGET__
541PRAGMA_END_PACK_STRUCT
542#endif
543#endif
544
545#ifdef __EPSFB_SUPPORT__
546typedef struct
547{
548 call_status_enum call_status;
549 rmmi_epsfb_state_enum state;
550 rmmi_epsfb_type_enum type;
551} rmmi_epsfb_info_struct;
552#endif
553
554typedef struct
555{
556 kal_uint8 mcc[4];
557 kal_uint8 mnc[4];
558 rat_enum rat;
559} rmmi_eopsu_info_struct;
560
561typedef struct
562{
563 l4c_data_speed_support_enum eAct;
564 kal_uint16 rlc_latency_in_ms;
565} rmmi_latency_info_struct;
566
567typedef struct
568{
569 kal_bool display_5guw;
570 kal_bool on_n77_band;
571 kal_bool on_fr2_band;
572 kal_bool is_5guw_allowed;
573} rmmi_e5guw_info_struct;
574
575typedef struct rmmi_common_context_struct
576{
577#if 0 //#ifdef __CMUX_SUPPORT__
578/* under construction !*/
579/* under construction !*/
580#endif /* __CMUX_SUPPORT__ */
581
582#ifdef __BT_SUPPORT__
583 kal_uint8 rmmi_hf_src;
584 kal_bool hf_urc_report_flag;
585#endif
586
587 RMMI_UART_FLAG isAtdAction_flag; /* mtk00714 20040412 : remember ATD this action after setup_cnf */
588 RMMI_UART_FLAG isAtdAbort_flag; /* mtk01616 070323 to know it's a Atd abort by any character */
589
590#if defined(__CMUX_MODEM_STATUS_SUPPORT__)
591 RMMI_UART_FLAG isDSRAbort_flag;
592#endif
593
594#ifdef SYNCML_DM_SUPPORT
595 kal_bool lock_atci;
596#endif
597#if defined(__GEMINI__)
598 rmmi_sim_uart_setting_enum sim_uart_setting;
599 sim_interface_enum rmmi_uart_owner[RMMI_MAX_CHANNEL_NUMBER];
600#endif
601 RMMI_UART_FLAG uart_plugout;
602 RMMI_UART_FLAG uart_stop_send_flag;
603 RMMI_UART_FLAG is_multi_cmd;
604 RMMI_UART_FLAG multi_cmd_error; // this flag using to verify if error occur , we should abort command processor
605 RMMI_UART_FLAG is_sms_cmd; //using to cehck string is sms command and send " > " to DTE
606
607 kal_uint8 source[RMMI_MAX_CHANNEL_NUMBER];
608 kal_uint8 port[RMMI_MAX_CHANNEL_NUMBER];
609 kal_uint8 uart_port_value; /* this value store the default value form NVRAM */
610 rmmi_transfer_struct transfer;
611
612 // TODO: reduce uart input/output queue size, only keeps for agps and SCP port
613 rmmi_uart_queue_struct uart_input_queue[RMMI_CHANEEL_ID_MAX];
614 rmmi_uart_queue_struct uart_output_queue[RMMI_CHANEEL_ID_MAX];
615 kal_uint8 multi_cmd_string[RMMI_MAX_CHANNEL_NUMBER][MAX_MULTIPLE_CMD_INFO_LEN];
616
617#ifdef __TC01__
618 kal_uint8 gkpd_flag;
619 kal_uint8 gkpd_buffer[20];
620 kal_uint16 gkpd_count;
621 kal_uint8 *gkpd_windex;
622 kal_uint8 *gkpd_rindex;
623 kal_uint32 gkpd_current_rindex;
624 kal_uint16 gkpd_rindex_count;
625 kal_uint8 mpt_flag;
626#endif
627
628 kal_uint8 etstlp_port[2]; //for tst_port_ps and tst_port_l1
629
630 kal_uint8 gsm_tx_pwr_reduction_tbl[4][2][4];
631 kal_uint8 umts_tx_pwr_reduction_tbl[20][2];
632
633 kal_uint8 gsm_tx_pwr_reduction_tbl_tas[4][2][4];
634 kal_uint8 umts_tx_pwr_reduction_tbl_tas[20][2];
635
636 kal_uint8 is_rrm_test; // work around for RRM test, EMM need special power off without sending detach
637
638#ifndef __MTK_TARGET__
639 kal_uint8 ut_uart_input[MAX_UT_UART_LENGTH];
640 kal_uint16 ut_uart_input_len;
641#endif
642 kal_uint8 rms_state;
643
644 kal_uint8 is_dongle_mode;
645
646#ifdef __TC10__ // CCLK
647 rmmi_nitz_time_struct nitz_time;
648#endif
649
650} rmmi_common_context_struct;
651
652typedef struct rmmi_context_struct
653{
654/*************************************************************************/
655/* Below context are placed in the front of RMMI context */
656/* to increase immediate offset access , to reduce ROM size */
657/* Please KEEP the position for the following frequent used variables */
658/*************************************************************************/
659 kal_uint8 current_src;
660
661 kal_uint8 char_set; //+CSCS
662 kal_bool is_ucm_action;
663 kal_uint16 cmee_err; // error value for +CME:<err>
664 kal_bool uart_in_data_mode;
665 kal_uint8 online_cmd_state;
666
667 kal_bool ats0_auto_answer; //mtk01616_070707 add this to prevent print OK for auto answer
668#ifdef __UCM_SUPPORT__
669 kal_bool is_ata_action; //mtk01616_070707 add this to handle ATA result code
670 kal_bool is_compound_action; //MAUI_02016224
671#endif
672
673 /* use to check if sim verified */
674 kal_bool command_allow; // using to keep if password required, only some AT command can access when pin puk or ph_sim pending
675 kal_uint16 cmd_error_cause; // SMU saves command not allow cause for +cme error value to TA
676
677 rmmi_s_register_struct s_reg;
678 void *arg_list[RMMI_MAX_ARG_NUM];
679
680 rmmi_rsp_mode_struct rsp_mode;
681 rmmi_cind_struct indicators; // for +CIND and +CMER
682 rmmi_report_mode_struct report_mode;
683 rmmi_reg_state_struct cs_register_status; //registration status for +CREG
684#ifdef __MOD_TCM__
685 rmmi_reg_state_struct ps_register_status; //registration status for +CGREG
686 l4c_data_bearer_capablility_enum psbearer_param2; //the last reported <bearer_capability> in +PSBEARER
687 kal_bool l4c_ps_is_sent_to_current_src ; // If KAL_FALSE, send MSG to URC channel
688 kal_uint8 l4c_ps_embed_msg_src;
689#endif
690
691 rmmi_eopsu_info_struct eopsu_info;
692 rmmi_latency_info_struct latency_info;
693 rmmi_e5guw_info_struct e5guw_info;
694
695#ifdef __L4C_GPRS_UT__
696 ps_cause_enum cause;
697#endif
698
699 rmmi_ecc_number_list_struct ecc_number; /* to store ECC number from network, related to +CEN */
700
701/***********************************************************************/
702/* Above context are placed in the front of L4C context */
703/* to increase immediate offset access , to reduce ROM size */
704/* Please try to KEEP the position for these frequent used variables */
705/***********************************************************************/
706
707//#ifdef __IMS_SUPPORT__
708 rmmi_ims_reg_state_struct ims_register_status;
709 kal_uint8 imsvops_indication; // IMS Voice over PS session indication
710 kal_uint8 emb_Iu_supp; // Emergency bearer services support indicator for Iu mode
711 kal_uint8 emb_S1_supp; // Emergency bearer services support indicator for S1 mode
712//#endif
713
714 /* settings */
715 kal_uint8 em_enable; //mtk00468 add for using to keep the em enable or disable engineer mode information
716 kal_uint8 date_aux_mode; // this variable using for +CSDF to keep in local
717 kal_uint8 cring_type; //mtk00714 add for +CRC (remember cring_type for rmmi_ring_repeat_hdlr)
718 kal_uint8 error_report_mode; // /* +CMEE <mode>: rmmi_error_report_mode_enum */
719 kal_uint8 plmn_format;
720 kal_uint8 last_plmn_format; /* be used to restore format if AT+COPS return error */
721#ifdef __PLMN_LIST_WITH_LAC__
722 kal_bool list_plmn_with_lac; //print LAC for +COPS=? response
723#endif
724 kal_uint8 cops_mode;
725 kal_uint8 cops_rat_mode;
726 endc_search_enum cops_endc_search_mode;
727 kal_uint8 CPOL_plmn_format;
728 kal_uint8 smsal_bfr; /* +CNMI : <bfr> */
729 kal_uint8 CNMI_mode; // +CNMI: <mode>: result code mode
730 //kal_uint16 max_plmn_list_len; //+CPOL ?
731 kal_bool cb_mode;
732 kal_bool csdh_show; //mtk00714: for +CSDH , hide/show detail Text mode parameters.
733 kal_bool clae_mode; // we save clae mode in rmmi context
734 kal_bool cmut_mode; // we save clae mode in rmmi context
735 kal_uint8 preferred_lang;
736 kal_uint8 ring_count; // for ATS0
737 rmmi_clip_info_struct clip_info;
738 rmmi_cnap_info_struct cnap_info;
739 kal_uint8 casp_soundID; //for +CASP proprietary command , timeout hdlr parameter.
740 //kal_bool is_gprs_data_dialing; /* ATH is not allowed to hangup existed voice call after dialup failed */ //mtk02285, 201003, 6251_ram
741#ifdef __MOD_TCM__
742 kal_uint8 cgatt_last_action; /* mtk00714 20040611 add to avoid continuos at+cgatt=0 or at+cgatt=1 */
743#endif //mtk02285, 201003, 6251_ram
744 kal_uint16 cpbr_range[2];
745 kal_uint16 phb_del_index;
746 kal_uint8 phb_del_storage;
747 kal_uint8 cpbr_ln_base_index;
748
749 kal_uint8 ecpbr_num_index;
750 kal_uint8 ecpbr_entry_found;
751 l4_name_struct ecpbr_alphaId;
752
753 kal_uint8 ecpbw_num_index;
754 kal_uint8 ecpbw_email_write;
755 kal_uint16 ecpbw_record_index;
756 kal_uint8 ecpbw_is_delete;
757 rmmi_phb_cpbw_struct *ecpbw_entry_ptr;
758
759 rmmi_op01_report_mode_struct op01_report_mode;
760
761 kal_bool is_cpbw_phb_fdn;
762
763 l4c_source_id_enum online_cmd_state_src_id; //MAUI_01652672, mtk02285, 20090324
764
765#ifdef __IRDA_SUPPORT__
766 //kal_uint8 ppp_nsapi; //mtk02285, 201003, 6251_ram
767#endif
768
769#ifdef __SAT__
770 kal_bool sat_icon_displayed; //mtk00924: display icon for STK SMS, SS, USSD, DTMF
771#endif
772
773 kal_uint8 except_src; //for unsolicited code, but don't send it to this src. ex. MT data call, don't send RING to bt hs
774 kal_uint8 imei_action; //rmmi_imei_action_enum
775 kal_uint8 rmmi_atd_mem; //mtk01616_090116 :rmmi_mem_dial_enum
776 kal_uint16 action_cmd; //rmmi_extended_cmd_id_enum
777#ifdef __BT_SUPPORT__
778 kal_uint8 last_reported_ciev_signal; //hong_rx_level
779 kal_bool send_ciev_callheld; //mtk01616_090923: explictly to send +CIEV:<callheld> even the status is not changed
780#endif
781 kal_uint8 ath_for_dialup; //mtk01616_080923: ATH is for dialup failure, we use this to prevent ATH to disconnect call
782 kal_uint8 last_number_dialed[MAX_CC_ADDR_LEN];//atdL last number dialed
783
784#if 0 //__CTM_SUPPORT__
785/* under construction !*/
786#endif
787
788 kal_uint8 em_volume_level;
789 kal_uint8 em_volume_type;
790 kal_uint8 em_audio_type;
791 kal_uint8 em_audio_gain;
792 kal_uint8 em_audio_mode;
793 kal_uint8 em_eadp_action;
794
795 /* Context for AT+EAPS */
796 kal_uint8 eaps_action;
797 kal_uint8 eaps_para1;
798 kal_uint8 eaps_para2;
799 kal_uint8 eaps_para3;
800 void* eaps_audio_param;
801
802#ifdef __VOIP__
803 kal_bool cm_cmd_approve; //Send Call Management command to MMI to get approval
804 void *string_ptr;
805 void *node_ptr;
806 void *id;
807#endif /* __VOIP__ */
808 kal_uint8 poweroff_src_id;
809 kal_uint8 is_spn_valid;
810 kal_uint8 spn[LEN_OF_SPN];
811
812 kal_uint32 eind_ready_flag;
813 kal_uint8 vgr_gain;
814 kal_uint8 vgt_gain;
815
816 kal_uint16 last_executed_P2_fail; //[MAUI_01292349] mtk02480l 27.007: +CPIN? return PIN2/PUK2 if previous command execured authentication failure, i.e. cmee_err= 17/18
817
818#if defined(__MODEM_EM_MODE__)
819 kal_uint8 em_src_id; // used to remember EM request src_id
820#endif
821
822 #ifdef __GATI_ENABLE__
823 gati_mod_src_struct gati_mod_src_table[GATI_MAX_MODULE_COUNT]; /* The table which record the relation of module to src_id and its control status */
824 kal_uint8 gati_binary_mode_module[MAX_SOURCE_NUM]; /* The module id that active the binary mode for specific source id */
825 kal_uint32 gati_stop_read_data_from_uart; /* The bit map to specify which src_id is now stop receiving data from the UART */
826 kal_uint32 gati_pending_rtr_ind; /* The bit map to specify if there are rtr indication from the UART during the ATCI stop receiving data from the UART */
827 gati_buffer_struct gati_buffer; /* The buffer will be used when the mode is in the binary mode and there is some data from other module which does not active the binary mode. */
828 kal_uint8 gati_buffer_count;
829 /* The following variables are temp ones used to transmit informations between functions */
830 kal_bool gati_write_allow_flag; /* This flag is used to allow the writing action for the owner of the binary mode */
831 kal_uint16 gati_actual_write; /* This variable is used to get the actual write size to the output queue in the rmmi_uart_write_data */
832 kal_uint8 gati_data_type; /* This variable is used to know if the data type is integrity or not */
833 #endif
834
835 kal_uint8 cmec_keyp;
836 kal_uint8 cmec_disp;
837 kal_uint8 cmec_ind;
838
839 l4c_nbr_cell_info_ind_struct nbr_info;
840 l4c_endc_nbr_cell_info_struct endc_nbr_cell_info;
841
842 kal_uint8 is_emgr;
843
844#if !defined(__SLIM_AT__)
845 kal_uint8 ccfc_combi_classx; //original <classx> given by AT+CFCC
846 // each bit is for each classx. (TS or BS)
847 // 1: we need to make req for this bs_code / 0: ignored
848 //use bit operation
849 kal_uint8 ccfc_current_class; //the class of current req
850 ccfc_req_param_struct ccfc_req_param; //stores other req parameter information
851 kal_bool ccfc_result;
852
853 kal_uint8 clck_ss_combi_classx; //original <classx> given by AT+CLCK
854 // each bit is for each classx. (TS or BS)
855 // 1: we need to make req for this bs_code / 0: ignored
856 //use bit operation
857 kal_uint8 clck_ss_current_class; //the class of current req
858 clck_ss_req_param_struct clck_ss_req_param; //stores other req parameter information
859 kal_bool clck_ss_result;
860 smu_security_type_enum clck_sml_type; //for at+clck to query SML status
861#endif
862
863 kal_uint8 ccwa_combi_classx; //original <classx> given by AT+CCWA
864 // each bit is for each classx. (TS or BS)
865 // 1: we need to make req for this bs_code / 0: ignored
866 //use bit operation
867 kal_uint8 ccwa_current_class; //the class of current req
868 ccwa_req_param_struct ccwa_req_param; //stores other req parameter information
869 kal_bool ccwa_result;
870 kal_uint8 cvhu_mode; //MAUI_02862643, mtk02285, support CVHU=1 to ignore ATH
871
872#if !defined(__ULC_AT__)
873 rmmi_profile_struct rmmi_default_profile;
874 rmmi_profile_struct rmmi_user_profile;
875 rmmi_profile_struct rmmi_current_profile;
876#endif
877
878 rmmi_uart_queue_struct CNMI_ResultCodeBuffer; //for +CNMI, SMSAL_ONE_MSG_LEN = 160
879 kal_uint8 cmd_mode;
880 kal_uint8 cpbf_findtext[30];
881
882#ifdef __SAT__
883#ifdef __SATCB__
884 rmmi_uart_queue_struct sat_output_queue; //mtk00714 add for SAT using
885 kal_bool IsSATcommand; //check if SATCommand
886 kal_bool IsSATresponse; //use to check if SAT response
887 void *SAT_rsp_ptr;
888#endif
889#endif /* __SAT__ */
890
891#ifdef __CMUX_SUPPORT__
892 kal_uint8 rmmi_data_channel_src;
893 kal_uint8 rmmi_urc_channel_src;
894 kal_uint8 rmmi_urc_2_channel_src;
895#ifdef __TC01_IMS_SUPPORT__
896 kal_uint8 rmmi_urc_3_channel_src;
897#endif
898#endif
899
900#if defined(__AT_IPR_WRITE_FS_SUPPORT__)
901 kal_uint32 atipr_rate;
902#endif
903
904 kal_uint8 csp_plmn_mode;
905
906#if defined(__MESSAGE_BASED_AT_SUPPORT__)
907 kal_bool msg_based_at_enable;
908#endif
909
910 kal_uint8 ats0_src_id; //MAUI_02743662 for saving ATS0 auto answer source id
911
912 kal_uint8 cpls_selected;
913
914#if 0 //move to ATP
915#if defined(__DUAL_TALK_MODEM_SUPPORT__)
916/* under construction !*/
917#endif
918#endif
919
920#if defined(__SYSSEL_SUPPORT__)
921 kal_uint8 syssel_band;
922#endif
923
924#ifdef __ACMT_SUPPORT__
925 kal_uint8 eacmt_mode;
926#endif
927
928#if defined(__REPORT_AVAILABLE_PLMN__)
929 kal_uint8 ecops_mode;
930#endif
931
932#if defined(__2STAGE_NW_SELECTION__)
933 kal_uint8 emsr_mode;
934#endif
935
936 kal_uint8 is_crla[RMMI_MAX_BIT_MASK_SIZE_CRLA];
937
938#ifndef __UCM_SUPPORT__
939 /* This flag is to indicate ATH is redirected to l4c_cc_exe_chld_req()
940 * The response is printed in l4c_cc_exe_chld_req() or after CRSS_CNF
941 * So rmmi_basic_cmd_processor() shall not print again.
942 * Please refer to ALPS00649564.
943 */
944 kal_uint8 ath_to_chld;
945#endif
946
947//move to ATP_IO module_type tst_inject_mod; // To record which module sent the tst_inject_string
948
949#if 0 //#ifdef __IMS_SUPPORT__
950/* under construction !*/
951#endif
952
953#if defined(__CDMA2000_RAT__)
954
955 kal_uint8 emdstatus_md_config;
956 kal_uint8 emdstatus_sim_config;
957 kal_uint8 emdstatus_fv; // flow version
958 kal_uint8 emdstatus_srcid;
959 rmmi_c2k_cell_info_struct c2k_cell_info;
960 kal_bool enable_c2k_ecell;
961#endif
962#if defined(__REPORT_AVAILABLE_PLMN__)
963 kal_uint8 number_of_available_plmn_id;
964 kal_uint8 available_plmn_id[MAX_PLMN_LIST_LEN][MAX_PLMN_NUMERIC_NAME_LEN];
965#endif
966
967 kal_bool data_enabled_setting; // set to 1 if data is enabled in AP
968 kal_bool data_roaming_setting; // set to 1 if data roaming is enabled in AP
969 /* context used for +ECSRA */
970 rmmi_ecsra_setting_struct last_ecsra;
971
972 /* context used for +CSCON */
973 rmmi_cscon_mode_enum cscon_mode[4];
974 rmmi_cscon_state_enum cscon_state[4];
975 rmmi_cscon_access_enum cscon_access[4];
976 rmmi_cscon_core_network_enum cscon_core_network[4]; // only use array element 2 and 3 for LTE and NR
977 kal_uint8 cscon_latest_rat_index;
978
979
980#ifdef __HIF_CCISM_SCP_SUPPORT__
981 kal_uint32 scp_prev_cell_id;
982 kal_uint16 scp_prev_cell_rssi;
983#endif
984 signal_modulation_enum modulation;
985 rmmi_camped_cell_id_struct camped_cell_id_info; //for +ECMPCID
986
987 /* context for +EUEDRX */
988 kal_uint16 drx_value;
989
990 /* context for +EC2KCELL */
991 irat_ps_type_enum access_type;
992 kal_uint16 sid;
993 kal_uint16 nid;
994 kal_uint8 pzid;
995 kal_uint16 base_id;
996 kal_uint32 sector_id[4];
997 kal_uint8 subnet_length;
998 kal_uint8 carrier_id[7];
999#ifdef __CSG_SUPPORT__
1000 kal_uint8 hnb_name[MAX_HNB_NAME_LEN*2+1];
1001 kal_uint8 hnb_name_length;
1002#endif
1003#ifdef __TC01__
1004 kal_uint8 rssi_ind_src_id;
1005#endif
1006
1007 /* context for +ERAT */
1008 kal_uint8 erat_lock;
1009 kal_uint8 is_no_saved; // while it is ture, the rat mode will no be saved to NVRAM.
1010
1011 kal_bool is_ssac_barring_for_voice;
1012 kal_uint8 evzwapfcia_mode;
1013#if defined(__GEMINI__) || defined(__L4C_GPRS_UT__)
1014 kal_uint8 edallow_mode;
1015#endif
1016 kal_uint8 is_vops_supported; // init value should be 0xff
1017
1018 plmn_id_rat_struct saved_plmn_for_volte_hys;
1019
1020 kal_bool is_registered_on_eHRPD;
1021 rat_enum eimsps_rat;
1022 kal_uint8 eimsps_type;
1023 rmmi_eind_invalid_sim_info_struct eind_invalid_sim_info;
1024
1025 rmmi_etwmode_setting_struct etwmode_setting;
1026
1027 kal_uint8 enwbdinfo_mode;
1028 kal_uint16 lte_bandwidthInfo;
1029
1030 kal_uint8 scell_number_dl;
1031 /* context used for +EAPC */
1032 kal_uint8 current_apc_feature_type;
1033 kal_bool current_report_mode;
1034 kal_uint16 current_report_period;
1035 kal_uint8 new_apc_feature_type;
1036 kal_bool new_report_mode;
1037 kal_uint16 new_report_period;
1038 kal_uint8 scell_number_ul;
1039 kal_uint8 ps_conn_status;
1040 kal_uint16 pcell_band; // for +EPCELLINFO
1041
1042 gprs_traffic_channel_status_enum gprs_traffic_channel_status;
1043
1044#ifdef __IMS_SUPPORT__
1045 rmmi_ims_emergency_support_struct eimsess_info;
1046#endif
1047
1048 rmmi_ca_info_struct ecainfo; // for +ECAINFO URC
1049 kal_uint8 ctmcall_mode;
1050
1051 kal_bool enable_ecell_ext3_ext4;
1052 kal_bool enable_ecell_ssbid_info;
1053
1054 kal_uint8 emro_lte_game_ho;
1055
1056 kal_uint8 is_dsda_allowed;
1057
1058 kal_uint8 cirepi_ind;
1059 kal_uint8 cnems1_ind;
1060 kal_uint8 cnemiu_ind;
1061#ifdef __RF_SCAN_FOR_DESENSE_TEST__
1062 rmmi_rfscan_req_struct rfscan_req; // for +ERFSCAN RSSI URC
1063#endif /*__RF_SCAN_FOR_DESENSE_TEST__*/
1064
1065 kal_int16 sar_scenario_index;
1066 kal_int16 dat_scenario_index;
1067 kal_int16 sar_operator_index;
1068#ifdef __EPSFB_SUPPORT__
1069 rmmi_epsfb_info_struct epsfb_info;
1070#endif
1071#if defined(__TC01__) && defined(__RMMI_EXTEND_CUSTOM_CMD__)
1072 kal_uint8 cust_cmd_src_id;
1073#endif
1074#ifdef __ARFCN_TO_CAMERA_SUPPORT__
1075 rmmi_camera_arfcn_info_struct last_reported_arfcn;
1076#endif
1077
1078#ifdef __TC01__
1079 rmmi_report_reg_to_ap_struct report_reg_state;
1080 kal_uint8 ltecall_flag; /* at%ltecall */
1081#endif
1082
1083#ifdef __TC01_CALIBRATION__
1084 /* MUSE - ALPS01539170 */
1085 /* Check the flag for calibration verification to prevent */
1086 /* frequent access to NVRAM when the user input AT%CALDT */
1087 kal_uint8 caldt_check;
1088#endif
1089
1090#if defined(__TC01__) && defined(__SIM_HOT_SWAP_SUPPORT__)
1091 kal_bool sim_replaced; // to indicate SIM is replaced for hot swap
1092 kal_bool sim_plugout;
1093 kal_bool sim_first_inserted;
1094 kal_bool sim_mapping_happened;
1095#endif
1096
1097#ifdef __TC01__ /* for +ESIMCEP */
1098 kal_uint8 mnc_length;
1099 kal_bool is_valid_gid1;
1100 kal_uint8 number_of_gid1;
1101 kal_uint8 gid1[20];
1102 kal_bool is_valid_gid2;
1103 kal_uint8 number_of_gid2;
1104 kal_uint8 gid2[20];
1105#endif
1106
1107#if defined(__TC01__)
1108 /*ALPS03746765 & ALPS03743116*/
1109 kal_uint8 sim_status_ind;
1110#endif
1111
1112#ifdef __TC01__
1113 rmmi_mipi_hw_info_ind_struct mipi_result;
1114#endif
1115
1116#if defined(__VSIM__) && defined(__TC01__) && defined(__FEATURE_TC01_SIMOFF_EXTENTION__) && defined(__MDVSIM__)
1117 kal_uint8 switch_on;
1118#endif/*#if defined(__VSIM__) && defined(__TC01__) && defined(__FEATURE_TC01_SIMOFF_EXTENTION__) && defined(__MDVSIM__)*/
1119
1120#ifdef __SAR_SENSOR_TX_DETECTION_SUPPORT__
1121 /* TX Power Reduction*/
1122 kal_uint8 sar_tx_power_red_event;
1123 kal_int16 sar_scenario;
1124#endif /* __SAR_SENSOR_TX_DETECTION_SUPPORT__ */
1125 kal_uint8 channel_lock_mode;
1126
1127 rmmi_nw_rej_cause_attemp_counter_struct nw_rej_cause_attemp_counter;
1128
1129 /* network pyhsical configuration info*/
1130 kal_bool dl256qam_configured;
1131 kal_bool mimo_fourlayer_configured;
1132
1133 kal_uint8 *ecpbw_string_ptr;
1134 kal_uint16 ecpbw_string_index;
1135
1136 kal_uint8 csg_list_mode;
1137
1138 kal_uint32 rmmi_current_operator;
1139
1140 kal_bool standard_cscon_support;
1141
1142 kal_uint8 is_acb_skip_for_mmtel_voice;
1143 kal_bool is_acb_skip_for_mmtel_video;
1144
1145} rmmi_context_struct;
1146
1147typedef struct rmmi_string_struct
1148{
1149 kal_uint16 index;
1150 kal_uint8 *string_ptr;
1151 kal_uint8 *ip_string;
1152 l4c_source_id_enum src_id; // DEREK
1153 kal_uint8 cmd_mode;
1154 kal_uint8 cmd_class;
1155 kal_uint16 cmd_index; //rmmi_extended_cmd_id_enum
1156 kal_uint16 cmd_row_index;
1157 rmmi_extend_symbol_hash_enum symbol_hash;
1158} rmmi_string_struct;
1159
1160#ifdef __SAT__
1161
1162typedef enum
1163{
1164 RMMI_TIM_MOD_NONE,
1165 RMMI_TIM_MOD_SAT_DSPL_TEXT,
1166 RMMI_TIM_MOD_SAT_PLAY_TONE,
1167 RMMI_TIM_MOD_SAT_REDIAL,
1168 RMMI_TIM_MOD_SAT_NOTICE,
1169 RMMI_TIM_MOD_SAT_MMI_INFO,
1170 RMMI_NUM_OF_TIMER_MOD
1171}
1172rmmi_timer_mod_enum;
1173
1174typedef struct
1175{
1176 eventid timer_id;
1177 kal_uint8 time;
1178 kal_bool timer_on;
1179} rmmi_sat_timer_struct;
1180
1181/* SAT */
1182#define SAT_SIG_SETUP_MENU_SHOW 70
1183#define SAT_SIG_SELECT_ITEM_SHOW 71
1184#define SAT_SIG_DSPL_TXT_SHOW 72
1185#define SAT_SIG_GET_INKEY_SHOW 73
1186#define SAT_SIG_GET_INPUT_SHOW 74
1187#define SAT_SIG_PLAY_TONE_SHOW 75
1188#define SAT_SIG_SETUP_CALL_SHOW 76
1189//#define SAT_SIG_SETUP_CALL_REQ_SHOW 77
1190//#define SAT_SIG_SETUP_CALL_RES_SHOW 78
1191//#define SAT_SIG_REDIAL_SHOW 79
1192#define SAT_SIG_SEND_SMS_SHOW 80
1193#define SAT_SIG_SEND_SS_SHOW 81
1194#define SAT_SIG_SEND_USSD_SHOW 82
1195#define SAT_SIG_MMI_INFO_SHOW 83
1196//#define SAT_SIG_NOTICE_SHOW 85
1197
1198#define RMMI_SAT_SIG_SETUP_CALL_REQ 16
1199#define RMMI_SAT_SIG_SEND_SS_REQ 17
1200#define RMMI_SAT_SIG_SEND_USSD_REQ 18
1201#define RMMI_SAT_SIG_SEND_SMS_REQ 19
1202#define RMMI_SAT_SIG_PLAY_TONE_RES 32
1203#define RMMI_SAT_SIG_DSPL_TEXT_RES 33
1204#define RMMI_SAT_SIG_GET_INKEY_RES 34
1205#define RMMI_SAT_SIG_GET_INPUT_RES 35
1206#define RMMI_SAT_SIG_SELECT_ITEM_RES 36
1207#define RMMI_SAT_SIG_MENU_SELECT_REQ 37
1208#define RMMI_SAT_SIG_START_SAT 80
1209#define RMMI_SAT_SIG_SETUP_CALL_REDIAL 88
1210
1211typedef struct
1212{
1213 kal_uint8 item_len;
1214 kal_uint8 item_dcs;
1215 kal_uint8 item_id;
1216 kal_uint8 *item_data;
1217}
1218rmmi_sat_menu_item_struct;
1219
1220typedef struct
1221{
1222 kal_uint8 is_help_info_available;
1223 kal_uint8 cmd_detail[5];
1224 kal_uint8 alpha_id_len;
1225 kal_uint8 *alpha_id;
1226 kal_uint8 dcs_of_alpha_id;
1227 kal_uint8 num_of_item;
1228 rmmi_sat_menu_item_struct *menu_items;
1229}
1230rmmi_sat_main_menu_struct;
1231
1232typedef struct
1233{
1234 kal_uint8 cmd_detail[5];
1235 kal_uint8 is_help_info_available;
1236 kal_uint8 is_item_id_available;
1237 kal_uint8 item_id;
1238 kal_uint8 alpha_id_len;
1239 kal_uint8 *alpha_id;
1240 kal_uint8 dcs_of_alpha_id;
1241 kal_uint8 num_of_item;
1242 rmmi_sat_menu_item_struct *menu_items;
1243}
1244rmmi_sat_sub_menu_struct;
1245
1246typedef struct
1247{
1248 kal_uint8 cmd_detail[5];
1249 kal_uint8 priority;
1250 kal_uint8 clear_text_type;
1251 kal_uint8 immediate_res;
1252 kal_uint16 no_text_string;
1253 kal_uint8 *text_string;
1254 kal_uint8 dcs_of_text_string;
1255}
1256rmmi_sat_dspl_text_struct;
1257
1258typedef struct
1259{
1260 kal_uint8 cmd_detail[5];
1261 kal_uint8 is_help_info_available;
1262 kal_uint8 type_of_input;
1263 kal_uint16 no_text_string;
1264 kal_uint8 *text_string;
1265 kal_uint8 dcs_of_text_string;
1266}
1267rmmi_sat_get_inkey_struct;
1268
1269typedef struct
1270{
1271 kal_uint8 cmd_detail[5];
1272 kal_uint8 is_help_info_available;
1273 kal_uint8 type_of_input;
1274 kal_uint8 is_input_revealed_to_user;
1275 kal_uint8 len_of_min_input;
1276 kal_uint8 len_of_max_input;
1277
1278 kal_uint16 no_text_string;
1279 kal_uint8 *text_string;
1280 kal_uint8 dcs_of_text_string;
1281 kal_uint16 no_default_text;
1282 kal_uint8 *default_text;
1283 kal_uint8 dcs_of_default_text;
1284}
1285rmmi_sat_get_input_struct;
1286
1287typedef struct
1288{
1289 kal_uint8 cmd_detail[5];
1290 kal_uint8 tone_id;
1291 kal_uint32 duration;
1292 kal_uint8 no_alpha_id;
1293 kal_uint8 *alpha_id;
1294 kal_uint8 dcs_of_alpha_id;
1295
1296}
1297rmmi_sat_play_tone_struct;
1298
1299typedef struct
1300{
1301 kal_uint8 cmd_detail[5];
1302 kal_uint8 mmi_info_type;
1303 kal_uint8 no_alpha_id;
1304 kal_uint8 *alpha_id;
1305 kal_uint8 dcs_of_alpha_id;
1306}
1307rmmi_sat_mmi_info_struct;
1308
1309typedef struct
1310{
1311 kal_uint8 cmd_detail[5];
1312 kal_uint8 condition;
1313 kal_uint32 duration;
1314
1315 kal_uint8 no_alpha_id1;
1316 kal_uint8 *alpha_id1;
1317 kal_uint8 dcs_of_alpha_id1;
1318 kal_uint8 no_alpha_id2;
1319 kal_uint8 *alpha_id2;
1320 kal_uint8 dcs_of_alpha_id2;
1321
1322 kal_uint8 size_of_ccp;
1323 kal_uint8 ccp[MAX_SAT_SIZE_OF_CCP];
1324 kal_uint8 size_of_subaddr;
1325 kal_uint8 subaddr[MAX_SIM_SUB_ADDR_BCD_LEN];
1326
1327 kal_uint8 no_addr;
1328 kal_uint8 *addr;
1329}
1330rmmi_sat_setup_call_struct;
1331
1332typedef struct
1333{
1334 kal_uint8 cmd_detail[5];
1335 kal_uint8 is_sms_packed_required;
1336 kal_uint8 size_of_addr;
1337 kal_uint8 addr[MAX_SIM_ADDR_LEN]; //mtk02514_081216
1338 kal_uint8 no_alpha_id;
1339 kal_uint8 *alpha_id;
1340 kal_uint8 dcs_of_alpha_id;
1341 kal_uint8 no_sms_tpdu;
1342 kal_uint8 *sms_tpdu;
1343}
1344rmmi_sat_send_sms_struct;
1345
1346typedef struct
1347{
1348 kal_uint8 cmd_detail[5];
1349 kal_uint8 no_alpha_id;
1350 kal_uint8 *alpha_id;
1351 kal_uint8 dcs_of_alpha_id;
1352 kal_uint8 no_ss_string;
1353 kal_uint8 *ss_string;
1354}
1355rmmi_sat_send_ss_struct;
1356
1357typedef struct
1358{
1359 kal_uint8 cmd_detail[5];
1360 kal_uint8 no_alpha_id;
1361 kal_uint8 *alpha_id;
1362 kal_uint8 dcs_of_alpha_id;
1363 kal_uint8 no_ussd_string;
1364 kal_uint8 *ussd_string;
1365 kal_uint8 dcs_of_ussd_string;
1366}
1367rmmi_sat_send_ussd_struct;
1368
1369/* TYPES */
1370
1371typedef enum
1372{
1373 RMMI_VTS_SPEECH_IN = 0,
1374 RMMI_VTS_SPEECH_OUT = 1,
1375 RMMI_VTS_KEY_BEEP = 2,
1376 RMMI_VTS_DTMF_TONE = 3,
1377 RMMI_VTS_RINGER = 4,
1378 RMMI_VTS_MEDIA = 5,
1379 RMMI_NUM_OF_VTS_TYPE
1380}
1381rmmi_vts_type_enum;
1382
1383typedef enum
1384{
1385 RMMI_VTS_PLAY_CRESCENDO = 0, /* Play sound for crescendo. */
1386 RMMI_VTS_PLAY_INFINITE = 1, /* Play sound for infinite. */
1387 RMMI_VTS_PLAY_ONCE = 2, /* Play sound for once. */
1388 RMMI_VTS_PLAY_DESCENDO = 3, /* Play sound for descendo. */
1389 RMMI_VTS_PLAY_OFF = 4, /* stop sound */
1390 RMMI_NUM_OF_VTS_PLAY_MODE
1391}
1392rmmi_vts_play_mode_enum;
1393
1394#endif /* __SAT__ */
1395
1396typedef struct
1397{
1398 kal_uint8 err_string[RMMI_MAX_ERR_STR_LEN];
1399} rmmi_error_msg_struct;
1400
1401//RMMI_UT ---
1402#define ATCI_MAX_UT_IO_LENGTH 1024
1403#define ATCI_MAX_UT_CMD_STRING_LENGTH 100
1404#define ATCI_MAX_UT_AT_PARAMETER_NUMBER 20
1405#define ATCI_MAX_UT_AT_PARAMETER_STRING_LENGTH 100
1406
1407typedef struct
1408{
1409 LOCAL_PARA_HDR
1410 kal_uint8 src_id;
1411 kal_uint8 port;
1412 kal_uint8 string[ATCI_MAX_UT_IO_LENGTH];
1413 kal_bool stuff;
1414} atci_ut_rmmi_input_string_struct; // MSG_ID_ATCI_UT_RMMI_INPUT_STRING
1415
1416typedef struct
1417{
1418 LOCAL_PARA_HDR
1419 kal_uint8 src_id;
1420 kal_uint8 port;
1421 kal_uint8 string[ATCI_MAX_UT_IO_LENGTH];
1422 kal_bool stuff;
1423} atci_ut_rmmi_output_string_struct; // MSG_ID_ATCI_UT_RMMI_OUTPUT_STRING
1424
1425typedef struct
1426{
1427 kal_uint8 para_string[ATCI_MAX_UT_AT_PARAMETER_STRING_LENGTH];
1428} atci_ut_rmmi_input_expanded_at_parameter_struct;
1429
1430typedef struct
1431{
1432 LOCAL_PARA_HDR
1433 kal_uint8 src_id;
1434 kal_uint8 port;
1435 kal_uint8 cmd_string[ATCI_MAX_UT_CMD_STRING_LENGTH];
1436 atci_ut_rmmi_input_expanded_at_parameter_struct para[ATCI_MAX_UT_AT_PARAMETER_NUMBER];
1437} atci_ut_rmmi_input_expanded_at_string_struct; //MSG_ID_ATCI_UT_RMMI_INPUT_EXPANDED_AT_STRING
1438
1439
1440typedef struct
1441{
1442 LOCAL_PARA_HDR
1443 kal_uint8 src_id;
1444 kal_uint8 cid;
1445 l4c_action_enum action;
1446} atci_ut_check_l4c_context_info_struct; // MSG_ID_ATCI_UT_CHECK_L4C_CONTEXT_INFO
1447
1448
1449//--- RMMI_UT
1450
1451typedef void (*RMMI_EXT_CMD_FUNCTION) (rmmi_string_struct *source_string_ptr);
1452
1453typedef kal_bool(*RMMI_BASIC_CMD_FUNCTION)
1454 (rmmi_string_struct *source_string_ptr, rmmi_multiple_basic_cmd_struct *head_node_ptr, rmmi_err_id_enum *err_id);
1455
1456typedef void (*RMMI_IND_FUNCTION) ();
1457
1458
1459extern rmmi_context_struct *rmmi_ptr_g;
1460extern rmmi_common_context_struct *rmmi_common_ptr_g;
1461extern module_type rmmi_current_mod_id;
1462extern rmmi_context_struct rmmi_cntxt_g[RMMI_MAX_SIM_NUM];
1463#if defined(__ATCMD_ONOFF_CHECK__)
1464extern kal_bool rmmi_check_at_enable;
1465#endif
1466
1467#if defined(__DUAL_TALK_MODEM_SUPPORT__)
1468typedef struct
1469{
1470 kal_uint8 speech_mode;
1471 kal_uint8 rat_mode;
1472} rmmi_spc_espeech_param_struct;
1473
1474typedef struct
1475{
1476 kal_uint8 sidetone;
1477} rmmi_spc_esstv_param_struct;
1478
1479typedef struct
1480{
1481 kal_uint8 tone_id;
1482} rmmi_spc_edtp_param_struct;
1483
1484typedef struct
1485{
1486 kal_uint8 esetdev_mode;
1487 kal_uint8 src_dev;
1488} rmmi_spc_esetdev_param_struct;
1489
1490typedef struct
1491{
1492 kal_uint8 volume;
1493 kal_uint8 gain_id;
1494} rmmi_spc_esov_param_struct;
1495
1496typedef struct
1497{
1498 kal_uint8 mic_volume;
1499} rmmi_spc_esmv_param_struct;
1500
1501typedef struct
1502{
1503 kal_uint8 mode;
1504} rmmi_spc_essma_param_struct;
1505
1506typedef union
1507{
1508 rmmi_spc_espeech_param_struct *espeech_param;
1509 rmmi_spc_esstv_param_struct *esstv_param;
1510 rmmi_spc_edtp_param_struct *edtp_param;
1511 rmmi_spc_esetdev_param_struct *esetdev_param;
1512 rmmi_spc_esov_param_struct *esov_param;
1513 rmmi_spc_esmv_param_struct *esmv_param;
1514 rmmi_spc_essma_param_struct *essma_param;
1515} rmmi_spc_param_union;
1516#endif /* __DUAL_TALK_MODEM_SUPPORT__ */
1517
1518typedef struct
1519{
1520 kal_uint8* sensor_name;
1521 kal_uint8* sensor_data;
1522} rmmi_tty_port_read_data_struct;
1523
1524#endif /* _RMMI_CONTEXT_H */
1525