blob: 2f61845608a498778237f6a9f66371080062bf78 [file] [log] [blame]
lhb07f4e12022-02-17 22:08:54 -08001// SPDX-License-Identifier: MediaTekProprietary
2/*
lh7b0674a2022-01-10 00:34:35 -08003 * Copyright (C) 2006 The Android Open Source Project
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#include <string.h>
18#include <stddef.h>
19#include <stdlib.h>
20#include <stdio.h>
21#include <stdbool.h>
22#include<fcntl.h>
23#include<sys/stat.h>
24#include<sys/types.h>
25#include<unistd.h>
26#include <assert.h>
27#include <log/log.h>
28#include <vendor-ril/telephony/ril.h>
29#include <string>
30#include <mutex>
31#include <vector>
32#include <cutils/properties.h>
33
34#include "Radio_capability_switch_util.h"
35#include "common.h"
36#include "Phone_utils.h"
37#include "utils.h"
38#include "data.h"
39#include "cc.h"
ritafebcbfa2022-04-28 16:30:25 +080040#include "include/lynq_systime.h"
41#include <include/lynq_uci.h>
lhb07f4e12022-02-17 22:08:54 -080042
lh7b0674a2022-01-10 00:34:35 -080043static pthread_mutex_t s_DataMutex = PTHREAD_MUTEX_INITIALIZER;
44static pthread_cond_t s_DataCond = PTHREAD_COND_INITIALIZER;
45
46#undef LOG_TAG
47#define LOG_TAG "DEMO_COMMON"
48
llaaca09b2022-03-14 16:14:28 +080049#define UNKOWN_VALUE (-1)
50
51/*Warren add for FAW 2021/11/1 start*/
52extern int ttyGS3_fd = -1;
53/*Warren add for FAW 2021/11/1 end*/
54
55
lh7b0674a2022-01-10 00:34:35 -080056typedef enum {
57 STATE_IN_SERVICE =0,
58 STATE_OUT_OF_SERVICE =1,
59 STATE_EMERGENCY_ONLY =2,
60 STATE_POWER_OFF =3
61} Service_State;
62
63RfDesenseTxTest* m_RfDesense;
64static RIL_CardStatus_v6* cur_CardS_Status[2] = {NULL, NULL};
65static RIL_RadioCapability radio_capability[2];
66
67static int cur_voice_radio_tech[2] = {RADIO_TECH_UNKNOWN, RADIO_TECH_UNKNOWN};
68
69static int reg_voice_service_state[2] = {0, 0};
70static int reg_data_service_state[2] = {0, 0};
71static int reg_data_radio_tech[2] = {RADIO_TECH_UNKNOWN, RADIO_TECH_UNKNOWN};
72static int reg_voice_radio_tech[2] = {RADIO_TECH_UNKNOWN, RADIO_TECH_UNKNOWN};
73static int preferred_network_type[2] = {Phone_utils::PREFERRED_NETWORK_MODE, Phone_utils::PREFERRED_NETWORK_MODE};
74static int radio_status[2] = {RADIO_STATE_UNAVAILABLE, RADIO_STATE_UNAVAILABLE};
75static std::vector<int> call_state[2];
76
77static int default_sim_all = RIL_SOCKET_1;
78static int default_sim_all_except_data = RIL_SOCKET_1;
79static int default_sim_voice = RIL_SOCKET_1;
80static int default_sim_data = RIL_SOCKET_1;
81static int default_sim_sms = RIL_SOCKET_1;
82static bool isNeedReconnect = false;
83
84static std::int32_t token = 0;
85static std::mutex g_mutex;
llaaca09b2022-03-14 16:14:28 +080086/*Warren add for SZZT 2021/11/14 start*
87** record data registration
88*/
89extern int current_data_reg = -1;
90extern int modemStatus = 0;
91
92/*Warren add for SZZT 2021/11/14 end*/
93
94
95/*hq add for key information output start 2022/03/01*/
96// extern int lynq_output_LINFO_enable =0;
97
98// typedef enum {
99// RADIO_NW_2G = 0,
100// RADIO_NW_3G = 1,
101// RADIO_NW_4G = 2,
102// #ifdef TELEMATIC_5G_SUPPORT
103// RADIO_NW_5G = 3,
104// #endif
105// } RIL_RadioNW;
106
107// const char * cardStateToString(int cardStatus)
108// {
109// switch(cardStatus) {
110// case RIL_CARDSTATE_ABSENT:
111// return "absent";
112// case RIL_CARDSTATE_PRESENT:
113// return "present";
114// case RIL_CARDSTATE_ERROR:
115// return "error";
116// default:
117// return "unknown";
118// }
119// }
120// const char * serviceStateToString(int service_state)
121// {
122// switch(service_state) {
123// case STATE_IN_SERVICE:
124// return "IN SERVICE";
125// case STATE_OUT_OF_SERVICE:
126// return "OUT OF SERVICE";
127// case STATE_POWER_OFF:
128// return "POWER_OFF";
129// case STATE_EMERGENCY_ONLY:
130// return "EMERGENCY_ONLY";
131// case UNKOWN_VALUE:
132// return "unDefined";
133// default:
134// return "unDefined";
135// }
136// }
137// const char * RadioNwToString(int radio_nw)
138// {
139// switch(radio_nw) {
140// case RADIO_NW_2G:
141// return "2G";
142// case RADIO_NW_3G:
143// return "3G";
144// case RADIO_NW_4G:
145// return "4G";
146// #ifdef TELEMATIC_5G_SUPPORT
147// case RADIO_NW_5G:
148// return "5G";
149// #endif
150// case UNKOWN_VALUE:
151// return "unknown";
152// default:
153// return "unknown";
154// }
155// }
156// const char * preferredNetworkTypeToString(int preferred_network_type)
157// {
158// switch(preferred_network_type) {
159// case PREF_NET_TYPE_GSM_WCDMA /*0*/ : return " GSM/WCDMA (WCDMA case PREFerred)";
160// case PREF_NET_TYPE_GSM_ONLY : return " GSM only";
161// case PREF_NET_TYPE_WCDMA : return " WCDMA ";
162// case PREF_NET_TYPE_GSM_WCDMA_AUTO : return " GSM/WCDMA (auto mode, according to PRL)";
163// case PREF_NET_TYPE_CDMA_EVDO_AUTO : return " CDMA and EvDo (auto mode, according to PRL)";
164// case PREF_NET_TYPE_CDMA_ONLY : return " CDMA only";
165// case PREF_NET_TYPE_EVDO_ONLY : return " EvDo only";
166// case PREF_NET_TYPE_GSM_WCDMA_CDMA_EVDO_AUTO : return " GSM/WCDMA, CDMA, and EvDo (auto mode, according to PRL)";
167// case PREF_NET_TYPE_LTE_CDMA_EVDO : return " LTE, CDMA and EvDo";
168// case PREF_NET_TYPE_LTE_GSM_WCDMA : return " LTE, GSM/WCDMA";
169// case PREF_NET_TYPE_LTE_CMDA_EVDO_GSM_WCDMA : return " LTE, CDMA, EvDo, GSM/WCDMA";
170// case PREF_NET_TYPE_LTE_ONLY : return " LTE only";
171// case PREF_NET_TYPE_LTE_WCDMA /*12*/ : return " LTE/WCDMA";
172// case PREF_NET_TYPE_LTE_GSM /*30*/ : return " LTE/GSM";
173// case PREF_NET_TYPE_LTE_TDD_ONLY /*31*/ : return " LTE only";
174// case 13: return "TD-SCDMA only";
175// case 14: return "TD-SCDMA and WCDMA";
176// case 15: return "TD-SCDMA and LTE";
177// case 16: return "TD-SCDMA and GSM";
178// case 17: return "TD-SCDMA,GSM and LTE";
179// case 18: return "TD-SCDMA, GSM/WCDMA";
180// case 19: return "TD-SCDMA, WCDMA and LTE";
181// case 20: return "TD-SCDMA, GSM/WCDMA and LTE";
182// case 21: return "TD-SCDMA,EvDo,CDMA,GSM/WCDMA";
183// case 22: return "TD-SCDMA/LTE/GSM/WCDMA, CDMA, and EvDo";
184// //case 30: return "LTE/GSM";
185// //case 31: return "LTE TDD Only mode";
186// case 32: return "CDMA,GSM(2G Global)";
187// case 33: return "CDMA,EVDO,GSM";
188// case 34: return "LTE,CDMA,EVDO,GSM(4G Global, 4M)";
189// default:
190// return "unDefined";
191// }
192// }
193/*hq add for key information output end*/
lh7b0674a2022-01-10 00:34:35 -0800194
195static int regCodeToRadioTechnology(int request, int code, int slot);
196
197void update_call_state(void *response, size_t responselen, int slot) {
198 int num = responselen / sizeof(RIL_Call *);
199 if(num == 0) {
200 call_state[slot].clear();
201 RLOGD("[SIM%d]clear call state", slot);
202 } else {
203 call_state[slot].clear();
204 for (int i = 0 ; i < num ; i++) {
205 RIL_Call *p_cur = ((RIL_Call **) response)[i];
206 /* each call info */
207 call_state[slot].push_back(p_cur->state);
q.huang1e9cdc92022-05-11 19:01:41 +0800208 RLOGD("[SIM%d][id:%d]update_call_state: %d", slot,p_cur->index, p_cur->state);
lh7b0674a2022-01-10 00:34:35 -0800209 }
210 }
211}
212
213int is_call_state_idle(int slot) {
214 bool is_idle = true;
215 if(!call_state[slot].empty()) {
216 is_idle = false;
217 }
218 RLOGD("[SIM%d]is_call_state_idle: %d", slot, is_idle);
219 return is_idle;
220}
221
222void update_preferred_network_type(int type, int slot) {
223 RLOGD("[SIM%d]update_preferred_network_type: %d", slot, type);
224 preferred_network_type[slot] = type;
225}
226
227int get_preferred_network_type(int slot) {
228 return preferred_network_type[slot];
229}
230
231static int needBlockReq(int request)
232{
233#ifdef ENABLE_BLOCK_FEATURE
234 return 1;
235#endif
236
237 switch (request){
238 case RIL_REQUEST_RADIO_POWER: return 1;
239 case RIL_REQUEST_SET_IMS_ENABLE: return 1;
240 //case RIL_REQUEST_DATA_REGISTRATION_STATE: return 1;
241 default: return 0;
242 }
243 return 0;
244}
245
246static int setupToken(int token, int mode, int block)
247{
248 switch (mode){
249 case INIT:
250 token |= INIT_TOKEN_MARK;
251 break;
252 case UDP:
253 token |= RIL_TOKEN_MARK;
254 break;
255 case ATCI:
256 token |= ATCI_TOKEN_MARK;
257 break;
258 case RSPD:
259 token |= RSP_DISP_TOKEN_MARK;
260 break;
261 case OTHER:
262 token |= OTHER_TOKEN_MARK;
263 break;
264 default:
265 break;
266 }
267
268 if(block)
269 token |= BLOCK_MARK;
270
271 return token;
272}
273
274bool isDataConnectEnable(int slot) {
275 char value[PROPERTY_VALUE_MAX] = {0};
276 utils::getMSimProperty(slot,PROP_DEFAULT_DATA_SIM_STATUS, value);
277 if(atoi(value) == 1) {
278 return true;
279 }
280 return false;
281}
282
283void updataDataConnectState(int slot, bool state) {
284 utils::setMSimProperty(slot,PROP_DEFAULT_DATA_SIM_STATUS, const_cast<char*>(state ? "1":"0"));
285}
286
287std::int32_t GenerateToken(int mode, int request) {
288 g_mutex.lock();
289 if (token +1 == TOKEN_MODE) {
290 token = 1;
291 } else {
292 token++;
293 }
294 std::int32_t t= 0;
295 t = setupToken(token,mode,needBlockReq(request));
296 g_mutex.unlock();
297 return t;
298}
299
300RequestInfo* creatRILInfoAndInit(int request, int mode, RIL_SOCKET_ID soc_id)
301{
302 RequestInfo *pRI = (RequestInfo *)calloc(1, sizeof(RequestInfo));
303 if(pRI ==NULL){
304 RLOGE("%s,memory alloc error!",__func__);
305 return NULL;
306 }
307 android::initRequestInfo(pRI,request,mode, soc_id);
308 return pRI;
309}
310
311void set_default_sim_all_except_data(int slot_id) {
312 RLOGD("set_default_sim_all excpet data: %d", slot_id);
313 default_sim_all_except_data = slot_id;
314 set_default_sim_voice(slot_id);
315 set_default_sim_sms(slot_id);
316}
317
318int get_default_sim_all_except_data() {
319 return default_sim_all_except_data;
320}
321
322void set_default_sim_all(int slot_id){
323 RLOGD("set_default_sim_all: %d", slot_id);
324 default_sim_all = slot_id;
325 set_default_sim_all_except_data(slot_id);
326 set_default_sim_data(slot_id);
327}
328
329int get_default_sim_all(){
330 return default_sim_all;
331}
332
333void set_default_sim_voice(int slot_id){
334 RLOGD("set_default_sim_voice: %d", slot_id);
335 default_sim_voice = slot_id;
336}
337
338int get_default_sim_voice(){
339 return default_sim_voice;
340}
341
342void set_default_sim_data(int slot) {
343 RLOGD("set_default_sim_data: %d", slot);
344 pthread_mutex_lock(&s_DataMutex);
345 if(get_default_sim_data() != slot) {
346 if(isDataConnectEnable(get_default_sim_data())) {
347 isNeedReconnect = true;
348 deactivateDataCall(0,NULL,(RIL_SOCKET_ID)0,NULL);
349 RLOGD("set_default_sim_data, wait deactive data call done");
350 pthread_cond_wait(&s_DataCond, &s_DataMutex);
351 RLOGD("set_default_sim_data, deactive data call done");
352 }
353 RLOGD("set_default_sim_data, set prop");
354 default_sim_data = slot;
355 utils::mtk_property_set(PROP_DEFAULT_DATA_SIM, std::to_string(default_sim_data + 1).c_str());
356 while(!isRadioAvailable(RIL_SOCKET_ID(slot))) {
357 sleep(1);
358 RLOGD("[SIM%d]set_default_sim_data(RIL_REQUEST_SET_RADIO_CAPABILITY): wait radio available", slot);
359 }
360 syncDataSettings(RIL_SOCKET_ID(slot));
361 if(utils::is_support_dsds()) {
362 Radio_capability_switch_util::sendRadioCapabilityRequest(slot);
363 }
364 }
365 pthread_mutex_unlock(&s_DataMutex);
366}
367
368bool isNeedConnect() {
369 return isNeedReconnect;
370}
371
372void resetConnect() {
373 isNeedReconnect = false;
374}
375int get_default_sim_data_for_switch() {
376 return default_sim_data;
377}
378
379int get_default_sim_data(){
380 default_sim_data = utils::mtk_property_get_int32(PROP_DEFAULT_DATA_SIM, 1) -1;
381 return default_sim_data;
382}
383
384void set_default_sim_sms(int slot_id){
385 RLOGD("set_default_sim_sms: %d", slot_id);
386 default_sim_sms = slot_id;
387}
388
389int get_default_sim_sms() {
390 return default_sim_sms;
391}
392
393static int regCodeToServiceState(int request,int code, int slot);
394
395const char * radioStateToString(RIL_RadioState s) {
396 switch (s) {
397 case RADIO_STATE_OFF:
398 return "RADIO_OFF";
399 case RADIO_STATE_UNAVAILABLE:
400 return "RADIO_UNAVAILABLE";
401 case RADIO_STATE_SIM_NOT_READY:
402 return "RADIO_SIM_NOT_READY";
403 case RADIO_STATE_SIM_LOCKED_OR_ABSENT:
404 return "RADIO_SIM_LOCKED_OR_ABSENT";
405 case RADIO_STATE_SIM_READY:
406 return "RADIO_SIM_READY";
407 case RADIO_STATE_RUIM_NOT_READY:
408 return "RADIO_RUIM_NOT_READY";
409 case RADIO_STATE_RUIM_READY:
410 return "RADIO_RUIM_READY";
411 case RADIO_STATE_RUIM_LOCKED_OR_ABSENT:
412 return "RADIO_RUIM_LOCKED_OR_ABSENT";
413 case RADIO_STATE_NV_NOT_READY:
414 return "RADIO_NV_NOT_READY";
415 case RADIO_STATE_NV_READY:
416 return "RADIO_NV_READY";
417 case RADIO_STATE_ON:
418 return "RADIO_ON";
419 default:
420 return "<unknown state>";
421 }
422}
423
424const char *rilSocketIdToString(RIL_SOCKET_ID socket_id) {
425 switch (socket_id) {
426 case RIL_SOCKET_1:
427 return "RIL_SOCKET_1";
428#if (SIM_COUNT >= 2)
429 case RIL_SOCKET_2:
430 return "RIL_SOCKET_2";
431#endif
432#if (SIM_COUNT >= 3)
433 case RIL_SOCKET_3:
434 return "RIL_SOCKET_3";
435#endif
436#if (SIM_COUNT >= 4)
437 case RIL_SOCKET_4:
438 return "RIL_SOCKET_4";
439#endif
440 default:
441 return "not a valid RIL";
442 }
443}
444
445void update_radio_capa(RIL_RadioCapability* cap, int slot) {
446 memset(&radio_capability[slot], 0, sizeof(RIL_RadioCapability));
447 if(cap != NULL) {
448 strcpy(radio_capability[slot].logicalModemUuid,cap->logicalModemUuid);
449 radio_capability[slot].phase = cap->phase;
450 radio_capability[slot].rat = cap->rat;
451 radio_capability[slot].session = cap->session;
452 radio_capability[slot].status = cap->status;
453 radio_capability[slot].version = cap->version;
454 }
455}
456
457RIL_RadioCapability get_radio_capa(int slot) {
458 return radio_capability[slot];
459}
460
461void update_voice_radio_tech(int code, int slot) {
462 cur_voice_radio_tech[slot] = code;
463}
464
465int get_voice_radio_tech(int slot){
466 return cur_voice_radio_tech[slot];
467}
468
469void updateCardStatusV6(RIL_CardStatus_v6 *card_status,int slot)
470{
471 if(cur_CardS_Status[slot] != NULL) {
472 RLOGD("[slot%d]updateCardStatusV6", slot);
473 for(int i = 0; i < cur_CardS_Status[slot]->num_applications; i++) {
474 free(cur_CardS_Status[slot]->applications[i].aid_ptr);
475 cur_CardS_Status[slot]->applications[i].aid_ptr = NULL;
476 free(cur_CardS_Status[slot]->applications[i].app_label_ptr);
477 cur_CardS_Status[slot]->applications[i].app_label_ptr = NULL;
478 }
479 free(cur_CardS_Status[slot]);
480 cur_CardS_Status[slot] = NULL;
481 }
482 cur_CardS_Status[slot] = (RIL_CardStatus_v6 *)calloc(1, sizeof(RIL_CardStatus_v6));
483 memset(cur_CardS_Status[slot], 0, sizeof(RIL_CardStatus_v6));
484 cur_CardS_Status[slot]->card_state = card_status->card_state;
485 cur_CardS_Status[slot]->cdma_subscription_app_index = card_status->cdma_subscription_app_index;
486 cur_CardS_Status[slot]->gsm_umts_subscription_app_index = card_status->gsm_umts_subscription_app_index;
487 cur_CardS_Status[slot]->ims_subscription_app_index = card_status->ims_subscription_app_index;
488 cur_CardS_Status[slot]->num_applications = card_status->num_applications;
489 cur_CardS_Status[slot]->universal_pin_state = card_status->universal_pin_state;
490 RLOGD("[slot%d]updateCardStatusV6 card_state: %d, cdma_index: %d, gsm_index: %d, "
491 "ims_index: %d, num_applications: %d, universal_pin_state: %d",
492 slot,
493 cur_CardS_Status[slot]->card_state,
494 cur_CardS_Status[slot]->cdma_subscription_app_index,
495 cur_CardS_Status[slot]->gsm_umts_subscription_app_index,
496 cur_CardS_Status[slot]->ims_subscription_app_index,
497 cur_CardS_Status[slot]->num_applications,
498 cur_CardS_Status[slot]->universal_pin_state);
499 if(card_status)
500 {
501 for(int i = 0; i < card_status->num_applications; i++) {
502 cur_CardS_Status[slot]->applications[i].app_state = card_status->applications[i].app_state;
503 cur_CardS_Status[slot]->applications[i].app_type = card_status->applications[i].app_type;
504 cur_CardS_Status[slot]->applications[i].perso_substate = card_status->applications[i].perso_substate;
505 cur_CardS_Status[slot]->applications[i].pin1 = card_status->applications[i].pin1;
506 cur_CardS_Status[slot]->applications[i].pin1_replaced = card_status->applications[i].pin1_replaced;
507 cur_CardS_Status[slot]->applications[i].pin2 = card_status->applications[i].pin2;
508 cur_CardS_Status[slot]->applications[i].aid_ptr = strdup(card_status->applications[i].aid_ptr);
509 cur_CardS_Status[slot]->applications[i].app_label_ptr = strdup(card_status->applications[i].app_label_ptr);
510 }
511 } else {
512 RLOGD("[slot%d]updateCardStatusV6: sim card message is null", slot);
513 }
514}
515
516char* getAid(int slot)
517{
518 char* aid = "";
519 int index = -1;
520 if(cur_CardS_Status[slot] != NULL){
521 if(Phone_utils::get_phone_type(slot) == Phone_utils::PHONE_TYPE_CDMA) {
522 index = cur_CardS_Status[slot]->cdma_subscription_app_index;
523 } else {
524 index = cur_CardS_Status[slot]->gsm_umts_subscription_app_index;
525 }
526 if(index >= 0 && index < cur_CardS_Status[slot]->num_applications) {
527 aid = cur_CardS_Status[slot]->applications[index].aid_ptr;
528 }
529 }
530 RLOGD("[slot%d] index: %d, getAid: %s", slot, index, aid);
531 return aid;
532}
533
534void update_reg_voice_service_state(int request, char *code, int slot, int32_t token)
535{
536 if((reg_voice_service_state[slot] != atoi(code)) || ((token&RIL_TOKEN_MARK) == RIL_TOKEN_MARK)) {
537 reg_voice_service_state[slot] = atoi(code);
538 regCodeToServiceState(request, atoi(code), slot);
539 }
540}
541
542void update_reg_voice_radio_tech(int request, int code, int slot, int32_t token) {
543 if((reg_voice_radio_tech[slot] != code) || ((token&RIL_TOKEN_MARK) == RIL_TOKEN_MARK)){
544 reg_voice_radio_tech[slot] = code;
545 regCodeToRadioTechnology(request, code, slot);
546 }
547}
548
549void update_reg_data_service_state(int request, char *code,int slot, int32_t token)
550{
551 if((reg_data_service_state[slot] != atoi(code)) || ((token&RIL_TOKEN_MARK) == RIL_TOKEN_MARK)) {
552 reg_data_service_state[slot] = atoi(code);
553 regCodeToServiceState(request, atoi(code), slot);
llaaca09b2022-03-14 16:14:28 +0800554 /*Warren change for SZZT 2021//11/14 start*/
555 int status = regCodeToServiceState(request, atoi(code), slot);
556 current_data_reg = status;
557 /*Warren change for SZZT 2021//11/14 end*/
lh7b0674a2022-01-10 00:34:35 -0800558 }
559}
560
561void update_reg_data_radio_tech(int request, int code, int slot, int32_t token){
562 if((reg_data_radio_tech[slot] != code) || ((token&RIL_TOKEN_MARK) == RIL_TOKEN_MARK)) {
563 reg_data_radio_tech[slot] = code;
564 regCodeToRadioTechnology(request, code, slot);
565 }
566}
567
568void registerRadioOn(RfDesenseTxTest* rf){
569 if(!m_RfDesense) {
570 m_RfDesense = rf;
571 }
572}
573
574void unregisterRadioOn() {
575 if(m_RfDesense) {
576 m_RfDesense == NULL;
577 }
578}
579
580void registerRadioOffOrNotAvailable(RfDesenseTxTest* rf){
581 if(!m_RfDesense) {
582 m_RfDesense = rf;
583 }
584}
585
586void unregisterRadioOffOrNotAvailable() {
587 if(m_RfDesense) {
588 m_RfDesense == NULL;
589 }
590}
591
592void registerOnUnsolOemHookRaw(RfDesenseTxTest* rf){
593 if(!m_RfDesense) {
594 m_RfDesense = rf;
595 }
596}
597
598void unregisterOnUnsolOemHookRaw(){
599 if(m_RfDesense) {
600 m_RfDesense == NULL;
601 }
602}
603
604void register_response_oem_hook_raw(RfDesenseTxTest* rf){
605 if(!m_RfDesense) {
606 m_RfDesense = rf;
607 }
608}
609
610void unregister_response_oem_hook_raw(){
611 if(m_RfDesense) {
612 m_RfDesense == NULL;
613 }
614}
615
616void updateRadioStatus(int newValue ,RIL_SOCKET_ID soc_id)
617{
618 RLOGD("updateRadioStatus oldState: %d, newState: %d", radio_status[soc_id], newValue);
619 bool newOn = (newValue == RADIO_STATE_ON);
620 bool oldOn = (radio_status[soc_id] == RADIO_STATE_ON);
621 bool newAvaiable = (newValue != RADIO_STATE_UNAVAILABLE);
622 bool oldAvaiable = (radio_status[soc_id] != RADIO_STATE_UNAVAILABLE);
623 if (newOn && !oldOn) {
624 RLOGD("RadioStateOn");
625 //printf("[SIM%d] radio on\n",soc_id +1);
626 if(m_RfDesense){
627 m_RfDesense->emRadioStateOn();
628 }
629 }
630
631 if ((!newOn || !newAvaiable) && !((!oldOn || !oldAvaiable))) {
632 RLOGD("RadioStateOfforNotAvailable");
633 //printf("[SIM%d] radio off or not available\n",soc_id +1);
634 if(m_RfDesense){
635 m_RfDesense->emRadioStateOfforNotAvailable();
636 }
637 }
638 if(newValue != radio_status[soc_id]) {
639 radio_status[soc_id] = newValue;
640 }
641}
642
643bool isRadioOn(RIL_SOCKET_ID soc_id)
644{
645 return radio_status[soc_id] == RADIO_STATE_ON;
646}
647
648bool isRadioAvailable(RIL_SOCKET_ID soc_id)
649{
650 return radio_status[soc_id] != RADIO_STATE_UNAVAILABLE;
651}
652
653static int regCodeToServiceState(int request,int code, int slot)
654{
655 RLOGD("[slot%d]regCodeToServiceState %d, request: %s",slot, code, android::requestToString(request));
656 switch (code)
657 {
658 case 0:
659 case 2: // 2 is "searching"
660 case 3: // 3 is "registration denied"
661 case 4: // 4 is "unknown" no vaild in current baseband
662 case 10:// same as 0, but indicates that emergency call is possible.
663 case 12:// same as 2, but indicates that emergency call is possible.
664 case 13:// same as 3, but indicates that emergency call is possible.
665 case 14:// same as 4, but indicates that emergency call is possible.
666 {
667 if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) {
668 printf("[QUERY][VOICE REG_STATUS][SIM%d] The current service state is OUT OF SERVICE\n", slot);
669 } else {
670 printf("[QUERY][DATA REG_STATUS][SIM%d] The current service state is OUT OF SERVICE\n", slot);
671 }
672 return STATE_OUT_OF_SERVICE;
673 }
674
675 case 1:
676 case 5:
677 {
678 if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) {
679 printf("[QUERY][VOICE REG_STATUS][SIM%d] The current service state is IN SERVICE\n", slot);
680 } else {
681 printf("[QUERY][DATA REG_STATUS][SIM%d] The current service state is IN SERVICE\n", slot);
682 }
683 return STATE_IN_SERVICE;
684 }
685
686 default:
687 {
688 if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) {
689 printf("[QUERY][VOICE REG_STATUS][SIM%d] Unexpected service state %d\n", slot, code);
690 } else {
691 printf("[QUERY][DATA REG_STATUS][SIM%d] Unexpected service state %d\n", slot, code);
692 }
693 RLOGW("[SIM%d]regCodeToServiceState: unexpected service state %d", slot, code);
694 return STATE_OUT_OF_SERVICE;
695 }
696 }
697}
698
699static int regCodeToRadioTechnology(int request, int code, int slot) {
700 RLOGD("[slot%d]regCodeToRadioTechnology %d, request: %s",slot, code, android::requestToString(request));
701 switch(code) {
702 case RADIO_TECH_LTE:
703 {
704 if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) {
705 printf("[QUERY][VOICE REG_STATUS][SIM%d] The registered radio technology is 4G\n", slot);
706 } else {
707 printf("[QUERY][DATA REG_STATUS][SIM%d] The registered radio technology is 4G\n", slot);
708 }
709 break;
710 }
711 case RADIO_TECH_GSM:
712 case RADIO_TECH_GPRS:
713 case RADIO_TECH_EDGE:
714 case RADIO_TECH_IS95A:
715 case RADIO_TECH_IS95B:
716 case RADIO_TECH_1xRTT:
717 {
718 if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) {
719 printf("[QUERY][VOICE REG_STATUS][SIM%d] The registered radio technology is 2G\n", slot);
720 } else {
721 printf("[QUERY][DATA REG_STATUS][SIM%d] The registered radio technology is 2G\n", slot);
722 }
723 break;
724 }
725 case RADIO_TECH_UMTS:
726 case RADIO_TECH_HSDPA:
727 case RADIO_TECH_HSUPA:
728 case RADIO_TECH_HSPA:
729 case RADIO_TECH_EHRPD:
730 case RADIO_TECH_HSPAP:
731 case RADIO_TECH_TD_SCDMA:
732 case RADIO_TECH_EVDO_0:
733 case RADIO_TECH_EVDO_A:
734 case RADIO_TECH_EVDO_B:
735 {
736 if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) {
737 printf("[QUERY][VOICE REG_STATUS][SIM%d] The registered radio technology is 3G\n", slot);
738 } else {
739 printf("[QUERY][DATA REG_STATUS][SIM%d] The registered radio technology is 3G\n", slot);
740 }
741 break;
742 }
743#ifdef TELEMATIC_5G_SUPPORT
744 case RADIO_TECH_NR://5G
745 {
746 if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) {
747 printf("[QUERY][VOICE REG_STATUS][SIM%d] The registered radio technology is 5G\n", slot);
748 } else {
749 printf("[QUERY][DATA REG_STATUS][SIM%d] The registered radio technology is 5G\n", slot);
750 }
751 break;
752 }
753#endif
754 case RADIO_TECH_UNKNOWN:
755 {
756 if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) {
757 printf("[QUERY][VOICE REG_STATUS][SIM%d] The registered radio technology is unknown\n", slot);
758 } else {
759 printf("[QUERY][DATA REG_STATUS][SIM%d] The registered radio technology is unknown\n", slot);
760 }
761 break;
762 }
763 default:
764 {
765 if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) {
766 printf("[QUERY][VOICE REG_STATUS][SIM%d] %d is unexpected value\n",slot, code);
767 } else {
768 printf("[QUERY][DATA REG_STATUS][SIM%d] %d is unexpected value\n",slot, code);
769 }
770 }
771 }
772 return 0;
773}
774
775int get_reg_data_radio_tech(int slot) {
776 return reg_data_radio_tech[slot];
777}
778
779int get_reg_voice_radio_tech(int slot) {
780 return reg_voice_radio_tech[slot];
781}
782
783#ifdef ECALL_SUPPORT
784void ConvertMsd(const char *msdChar, unsigned char *msd) {
785 unsigned int n, x;
786
787 for (n = 0; n < MSD_MAX_LENGTH; n++) {
788 if (sscanf(&msdChar[n<<1], "%2x", &x) == 1) {
789 msd[n] = x;
790 } else {
791 RLOGE("invalid MSD characters");
792 break;
793 }
794 }
795}
796#endif /*ECALL_SUPPORT*/
797
798bool isFinalResponseErrorEx(char* str) {
799 AtLine atline(str, NULL);
800 return (atline.isFinalResponseErrorEx(0) == 1 ? true : false);
801}
802
803int get_atci_sim(){
804 return utils::mtk_property_get_int32(ATCI_SIM, 0);
805}
806
807static char *findNextChar(char *p, char c, int length)
808{
809 char *ptr = p;
810 int i = 0;
811 while (i++ < length)
812 {
813 if (*ptr++ == c)
814 return ptr;
815 }
816 return NULL;
817}
818
819static int getGMTval(char *pdata)
820{
821 char *ptr;
822 ptr = findNextChar(pdata, '+', strlen(pdata));
823 if (ptr == NULL)
824 {
825 ptr = findNextChar(pdata, '-', strlen(pdata));
826 if (ptr == NULL)
827 {
828 return 0;
829 }
830 }
831 return atoi(ptr);
832}
833
834static void adjustGMT2LocalTime(struct tm *src, int dGMTval)
835{
836 time_t t1, t2;
837 struct tm * ptm;
838 char buf[255];
839 int dShiftSec;
840
841 dShiftSec = dGMTval * 15 * 60;
842 t1 = mktime(src);
rita217de532022-05-31 17:15:48 +0800843
lh7b0674a2022-01-10 00:34:35 -0800844 t2 = (time_t)(t1 + dShiftSec);
845 ptm = gmtime(&t2);
846
847 memcpy(src, ptm, sizeof(struct tm));
848}
849
850void updateSystemTime(const void *data, int datalen)
851{
852 char strTime[32];
853 struct tm tm;
854 time_t t;
855 int dGMTval;
ritafebcbfa2022-04-28 16:30:25 +0800856 char modem_sync_enable[24] = "";
lh7b0674a2022-01-10 00:34:35 -0800857
858 if (data == NULL || datalen <= 0)
859 return;
860
861 memset(strTime, 0, sizeof(strTime));
862 strcat(strTime, "20");
863 strcat(strTime, (const char *)data);
864
865 dGMTval = getGMTval(strTime);
866 memset(&tm, 0, sizeof(struct tm));
867 strptime(strTime, "%Y/%m/%d,%H:%M:%S", &tm);
868
rita217de532022-05-31 17:15:48 +0800869 //adjustGMT2LocalTime(&tm, dGMTval);
lh7b0674a2022-01-10 00:34:35 -0800870
871 t = mktime(&tm);
ritafebcbfa2022-04-28 16:30:25 +0800872
873 lynq_get_value("lynq_uci", "lynq_sync_time", "lynq_modem_sync_time_enable" , modem_sync_enable);
874 if(!atoi(modem_sync_enable))
875 return ;
876
lh7b0674a2022-01-10 00:34:35 -0800877 stime(&t);
878
879 return;
880}
881void notifyDataSignal() {
882 RLOGE("notifyDataSignal()");
883 pthread_mutex_lock(&s_DataMutex);
884 pthread_cond_broadcast(&s_DataCond);
885 pthread_mutex_unlock(&s_DataMutex);
886}
887
888bool mtkItTest(const char* data) {
889 std::string str("");
890 str.append(data);
891 RLOGD("%s, data: %s", __FUNCTION__, str.c_str());
892 std::vector<std::string> all;
893 RequestInfo* pRI = NULL;
894 utils::tokenize(str, ',', all);
895 if(all[0] != std::string("TEST")) {
896 return false;
897 }
898 android::Parcel p;
899 size_t pos = p.dataPosition();
900 for(int i = 1 ; i < all.size(); i++) {
901 std::string str = all[i];
902 RLOGD("%s, all[%d]: %s", __FUNCTION__, i, str.c_str());
903 std::vector<std::string> items;
904 utils::tokenize(str, '=', items);
905 if(items.size() == 2) {
906 if(items[0] == std::string("INT")) {
907 int para = std::stoi(items[1]);
908 p.writeInt32(para);
909 } else if(items[0] == std::string("STR")) {
910 writeStringToParcel(p, items[1].c_str());
911 } else if(items[0] == std::string("REQ")) {
912 int request = std::stoi(items[1]);
lhb07f4e12022-02-17 22:08:54 -0800913
914 // For loop, free before reassign to avoid memory leak
915 if (pRI != NULL) {
916 free(pRI);
917 }
lh7b0674a2022-01-10 00:34:35 -0800918 pRI = creatRILInfoAndInit(request, UDP, (RIL_SOCKET_ID) ((0)));
919 }
920 } else {
921 RLOGD("%s, too many \"=\"");
922 }
923 }
lhb07f4e12022-02-17 22:08:54 -0800924
lh7b0674a2022-01-10 00:34:35 -0800925 if(pRI && pRI->pCI) {
926 p.setDataPosition(pos);
927 pRI->pCI->dispatchFunction(p, pRI);
lh7b0674a2022-01-10 00:34:35 -0800928 }
lhb07f4e12022-02-17 22:08:54 -0800929
930 // Free to avoid memory leak
931 if(pRI != NULL) {
932 free(pRI);
933 pRI = NULL;
934 }
935
lh7b0674a2022-01-10 00:34:35 -0800936 return true;
937}
938int lynqSocketSendto(int fd,struct sockaddr *dest_addr,int addr_len,char msg[])
939{
940 int ret = 0;
941 ret = sendto(fd,msg,strlen(msg),0,dest_addr,addr_len);
942 if(ret>0)
943 {
944 RLOGD("[lynqSocketSendto] send msg success!!!");
945 return 0;
946 }
947 else
948 {
949 RLOGD("[lynqSocketSendto] send msg fail!!!");
950 return -1;
951 }
llaaca09b2022-03-14 16:14:28 +0800952}
953/*hq add for key info output 2022/03/01 begin*/
954// void lynq_output_LINFO_all()
955// {
956// int slot,startSlot=0,slotNum=SIM_COUNT;
957
958// if(default_sim_voice==default_sim_data && default_sim_voice==default_sim_sms){
959// startSlot=default_sim_voice;
960// slotNum=1;
961// }
962
963// lynq_output_info("+LINFO: Report switch when key information changed is set: %d\n",lynq_output_LINFO_enable);
964// lynq_output_info("+LINFO: Default voice SIM card is set : [SIM%d]\n", default_sim_voice+1);
965// lynq_output_info("+LINFO: Default data SIM card is set : [SIM%d]\n", default_sim_data+1);
966// lynq_output_info("+LINFO: Default sms SIM card is set : [SIM%d]\n", default_sim_sms+1);
967
968// for(slot=startSlot;slot<startSlot+slotNum;slot++){
969// lynq_output_info("+LINFO: [SIM%d] Card State is %s\n",slot+1,cardStateToString((cur_CardS_Status[slot]!=NULL ? cur_CardS_Status[slot]->card_state:UNKOWN_VALUE)));
970// lynq_output_info("+LINFO: [SIM%d] Preferred network_type: is %s\n", slot+1, preferredNetworkTypeToString(preferred_network_type[slot]));
971// lynq_output_info("+LINFO: [SIM%d] Voice Registration State is %s\n",slot+1,serviceStateToString(regCodeToServiceState(reg_voice_service_state[slot])));
972// lynq_output_info("+LINFO: [SIM%d] Voice Radio Access Network is %s\n",slot+1,RadioNwToString(regCodeToRadioTechnology(reg_voice_radio_tech[slot])));
973// lynq_output_info("+LINFO: [SIM%d] Data Registration State is %s\n",slot+1,serviceStateToString(regCodeToServiceState(reg_data_service_state[slot])));
974// lynq_output_info("+LINFO: [SIM%d] Data Radio Access Network is %s\n",slot+1,RadioNwToString(regCodeToRadioTechnology(reg_data_radio_tech[slot])));
975// }
976// return;
977// }
978// void lynq_output_LINFO(const char* format,...)
979// {
980// char buf[1024] = {0};
981// int n;
982// char ebuf[1024] = {0};
983
984// if(lynq_output_LINFO_enable)
985// {
986// va_list args;
987// va_start(args, format);
988// vsnprintf(buf, sizeof(buf), format, args);
989// va_end(args);
990
991// printf("hq %s",buf);
992// n=snprintf(ebuf,sizeof(ebuf),"+LINFO: %s", buf);
993
994// n=write(ttyGS3_fd, ebuf, strlen(ebuf));
995// if(n < 0)
996// {
997// perror("lynq resp write:");
998// }
999// }
1000// return;
1001// }
1002// void lynq_output_info(const char* format,...)
1003// {
1004// char buf[1024] = {0};
1005// int n;
1006
1007// va_list args;
1008// va_start(args, format);
1009// vsnprintf(buf, sizeof(buf), format, args);
1010// va_end(args);
1011
1012// n=write(ttyGS3_fd, buf, strlen(buf));
1013// if(n < 0)
1014// {
1015// perror("lynq resp write:");
1016// }
1017
1018// return;
1019// }
1020/*hq add for key info output 2022/03/01 end*/