lh | b07f4e1 | 2022-02-17 22:08:54 -0800 | [diff] [blame] | 1 | // SPDX-License-Identifier: MediaTekProprietary |
| 2 | /* |
lh | 7b0674a | 2022-01-10 00:34:35 -0800 | [diff] [blame] | 3 | * 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" |
lh | b07f4e1 | 2022-02-17 22:08:54 -0800 | [diff] [blame] | 40 | |
lh | 7b0674a | 2022-01-10 00:34:35 -0800 | [diff] [blame] | 41 | static pthread_mutex_t s_DataMutex = PTHREAD_MUTEX_INITIALIZER; |
| 42 | static pthread_cond_t s_DataCond = PTHREAD_COND_INITIALIZER; |
| 43 | |
| 44 | #undef LOG_TAG |
| 45 | #define LOG_TAG "DEMO_COMMON" |
| 46 | |
| 47 | typedef enum { |
| 48 | STATE_IN_SERVICE =0, |
| 49 | STATE_OUT_OF_SERVICE =1, |
| 50 | STATE_EMERGENCY_ONLY =2, |
| 51 | STATE_POWER_OFF =3 |
| 52 | } Service_State; |
| 53 | |
| 54 | RfDesenseTxTest* m_RfDesense; |
| 55 | static RIL_CardStatus_v6* cur_CardS_Status[2] = {NULL, NULL}; |
| 56 | static RIL_RadioCapability radio_capability[2]; |
| 57 | |
| 58 | static int cur_voice_radio_tech[2] = {RADIO_TECH_UNKNOWN, RADIO_TECH_UNKNOWN}; |
| 59 | |
| 60 | static int reg_voice_service_state[2] = {0, 0}; |
| 61 | static int reg_data_service_state[2] = {0, 0}; |
| 62 | static int reg_data_radio_tech[2] = {RADIO_TECH_UNKNOWN, RADIO_TECH_UNKNOWN}; |
| 63 | static int reg_voice_radio_tech[2] = {RADIO_TECH_UNKNOWN, RADIO_TECH_UNKNOWN}; |
| 64 | static int preferred_network_type[2] = {Phone_utils::PREFERRED_NETWORK_MODE, Phone_utils::PREFERRED_NETWORK_MODE}; |
| 65 | static int radio_status[2] = {RADIO_STATE_UNAVAILABLE, RADIO_STATE_UNAVAILABLE}; |
| 66 | static std::vector<int> call_state[2]; |
| 67 | |
| 68 | static int default_sim_all = RIL_SOCKET_1; |
| 69 | static int default_sim_all_except_data = RIL_SOCKET_1; |
| 70 | static int default_sim_voice = RIL_SOCKET_1; |
| 71 | static int default_sim_data = RIL_SOCKET_1; |
| 72 | static int default_sim_sms = RIL_SOCKET_1; |
| 73 | static bool isNeedReconnect = false; |
| 74 | |
| 75 | static std::int32_t token = 0; |
| 76 | static std::mutex g_mutex; |
| 77 | |
| 78 | static int regCodeToRadioTechnology(int request, int code, int slot); |
| 79 | |
| 80 | void update_call_state(void *response, size_t responselen, int slot) { |
| 81 | int num = responselen / sizeof(RIL_Call *); |
| 82 | if(num == 0) { |
| 83 | call_state[slot].clear(); |
| 84 | RLOGD("[SIM%d]clear call state", slot); |
| 85 | } else { |
| 86 | call_state[slot].clear(); |
| 87 | for (int i = 0 ; i < num ; i++) { |
| 88 | RIL_Call *p_cur = ((RIL_Call **) response)[i]; |
| 89 | /* each call info */ |
| 90 | call_state[slot].push_back(p_cur->state); |
| 91 | RLOGD("[SIM%d][id:%d]update_call_state: %d", slot,p_cur->index, p_cur->state); |
| 92 | if(p_cur->isMT) { |
| 93 | resetMute(); |
| 94 | } |
| 95 | } |
| 96 | } |
| 97 | } |
| 98 | |
| 99 | int is_call_state_idle(int slot) { |
| 100 | bool is_idle = true; |
| 101 | if(!call_state[slot].empty()) { |
| 102 | is_idle = false; |
| 103 | } |
| 104 | RLOGD("[SIM%d]is_call_state_idle: %d", slot, is_idle); |
| 105 | return is_idle; |
| 106 | } |
| 107 | |
| 108 | void update_preferred_network_type(int type, int slot) { |
| 109 | RLOGD("[SIM%d]update_preferred_network_type: %d", slot, type); |
| 110 | preferred_network_type[slot] = type; |
| 111 | } |
| 112 | |
| 113 | int get_preferred_network_type(int slot) { |
| 114 | return preferred_network_type[slot]; |
| 115 | } |
| 116 | |
| 117 | static int needBlockReq(int request) |
| 118 | { |
| 119 | #ifdef ENABLE_BLOCK_FEATURE |
| 120 | return 1; |
| 121 | #endif |
| 122 | |
| 123 | switch (request){ |
| 124 | case RIL_REQUEST_RADIO_POWER: return 1; |
| 125 | case RIL_REQUEST_SET_IMS_ENABLE: return 1; |
| 126 | //case RIL_REQUEST_DATA_REGISTRATION_STATE: return 1; |
| 127 | default: return 0; |
| 128 | } |
| 129 | return 0; |
| 130 | } |
| 131 | |
| 132 | static int setupToken(int token, int mode, int block) |
| 133 | { |
| 134 | switch (mode){ |
| 135 | case INIT: |
| 136 | token |= INIT_TOKEN_MARK; |
| 137 | break; |
| 138 | case UDP: |
| 139 | token |= RIL_TOKEN_MARK; |
| 140 | break; |
| 141 | case ATCI: |
| 142 | token |= ATCI_TOKEN_MARK; |
| 143 | break; |
| 144 | case RSPD: |
| 145 | token |= RSP_DISP_TOKEN_MARK; |
| 146 | break; |
| 147 | case OTHER: |
| 148 | token |= OTHER_TOKEN_MARK; |
| 149 | break; |
| 150 | default: |
| 151 | break; |
| 152 | } |
| 153 | |
| 154 | if(block) |
| 155 | token |= BLOCK_MARK; |
| 156 | |
| 157 | return token; |
| 158 | } |
| 159 | |
| 160 | bool isDataConnectEnable(int slot) { |
| 161 | char value[PROPERTY_VALUE_MAX] = {0}; |
| 162 | utils::getMSimProperty(slot,PROP_DEFAULT_DATA_SIM_STATUS, value); |
| 163 | if(atoi(value) == 1) { |
| 164 | return true; |
| 165 | } |
| 166 | return false; |
| 167 | } |
| 168 | |
| 169 | void updataDataConnectState(int slot, bool state) { |
| 170 | utils::setMSimProperty(slot,PROP_DEFAULT_DATA_SIM_STATUS, const_cast<char*>(state ? "1":"0")); |
| 171 | } |
| 172 | |
| 173 | std::int32_t GenerateToken(int mode, int request) { |
| 174 | g_mutex.lock(); |
| 175 | if (token +1 == TOKEN_MODE) { |
| 176 | token = 1; |
| 177 | } else { |
| 178 | token++; |
| 179 | } |
| 180 | std::int32_t t= 0; |
| 181 | t = setupToken(token,mode,needBlockReq(request)); |
| 182 | g_mutex.unlock(); |
| 183 | return t; |
| 184 | } |
| 185 | |
| 186 | RequestInfo* creatRILInfoAndInit(int request, int mode, RIL_SOCKET_ID soc_id) |
| 187 | { |
| 188 | RequestInfo *pRI = (RequestInfo *)calloc(1, sizeof(RequestInfo)); |
| 189 | if(pRI ==NULL){ |
| 190 | RLOGE("%s,memory alloc error!",__func__); |
| 191 | return NULL; |
| 192 | } |
| 193 | android::initRequestInfo(pRI,request,mode, soc_id); |
| 194 | return pRI; |
| 195 | } |
| 196 | |
| 197 | void set_default_sim_all_except_data(int slot_id) { |
| 198 | RLOGD("set_default_sim_all excpet data: %d", slot_id); |
| 199 | default_sim_all_except_data = slot_id; |
| 200 | set_default_sim_voice(slot_id); |
| 201 | set_default_sim_sms(slot_id); |
| 202 | } |
| 203 | |
| 204 | int get_default_sim_all_except_data() { |
| 205 | return default_sim_all_except_data; |
| 206 | } |
| 207 | |
| 208 | void set_default_sim_all(int slot_id){ |
| 209 | RLOGD("set_default_sim_all: %d", slot_id); |
| 210 | default_sim_all = slot_id; |
| 211 | set_default_sim_all_except_data(slot_id); |
| 212 | set_default_sim_data(slot_id); |
| 213 | } |
| 214 | |
| 215 | int get_default_sim_all(){ |
| 216 | return default_sim_all; |
| 217 | } |
| 218 | |
| 219 | void set_default_sim_voice(int slot_id){ |
| 220 | RLOGD("set_default_sim_voice: %d", slot_id); |
| 221 | default_sim_voice = slot_id; |
| 222 | } |
| 223 | |
| 224 | int get_default_sim_voice(){ |
| 225 | return default_sim_voice; |
| 226 | } |
| 227 | |
| 228 | void set_default_sim_data(int slot) { |
| 229 | RLOGD("set_default_sim_data: %d", slot); |
| 230 | pthread_mutex_lock(&s_DataMutex); |
| 231 | if(get_default_sim_data() != slot) { |
| 232 | if(isDataConnectEnable(get_default_sim_data())) { |
| 233 | isNeedReconnect = true; |
| 234 | deactivateDataCall(0,NULL,(RIL_SOCKET_ID)0,NULL); |
| 235 | RLOGD("set_default_sim_data, wait deactive data call done"); |
| 236 | pthread_cond_wait(&s_DataCond, &s_DataMutex); |
| 237 | RLOGD("set_default_sim_data, deactive data call done"); |
| 238 | } |
| 239 | RLOGD("set_default_sim_data, set prop"); |
| 240 | default_sim_data = slot; |
| 241 | utils::mtk_property_set(PROP_DEFAULT_DATA_SIM, std::to_string(default_sim_data + 1).c_str()); |
| 242 | while(!isRadioAvailable(RIL_SOCKET_ID(slot))) { |
| 243 | sleep(1); |
| 244 | RLOGD("[SIM%d]set_default_sim_data(RIL_REQUEST_SET_RADIO_CAPABILITY): wait radio available", slot); |
| 245 | } |
| 246 | syncDataSettings(RIL_SOCKET_ID(slot)); |
| 247 | if(utils::is_support_dsds()) { |
| 248 | Radio_capability_switch_util::sendRadioCapabilityRequest(slot); |
| 249 | } |
| 250 | } |
| 251 | pthread_mutex_unlock(&s_DataMutex); |
| 252 | } |
| 253 | |
| 254 | bool isNeedConnect() { |
| 255 | return isNeedReconnect; |
| 256 | } |
| 257 | |
| 258 | void resetConnect() { |
| 259 | isNeedReconnect = false; |
| 260 | } |
| 261 | int get_default_sim_data_for_switch() { |
| 262 | return default_sim_data; |
| 263 | } |
| 264 | |
| 265 | int get_default_sim_data(){ |
| 266 | default_sim_data = utils::mtk_property_get_int32(PROP_DEFAULT_DATA_SIM, 1) -1; |
| 267 | return default_sim_data; |
| 268 | } |
| 269 | |
| 270 | void set_default_sim_sms(int slot_id){ |
| 271 | RLOGD("set_default_sim_sms: %d", slot_id); |
| 272 | default_sim_sms = slot_id; |
| 273 | } |
| 274 | |
| 275 | int get_default_sim_sms() { |
| 276 | return default_sim_sms; |
| 277 | } |
| 278 | |
| 279 | static int regCodeToServiceState(int request,int code, int slot); |
| 280 | |
| 281 | const char * radioStateToString(RIL_RadioState s) { |
| 282 | switch (s) { |
| 283 | case RADIO_STATE_OFF: |
| 284 | return "RADIO_OFF"; |
| 285 | case RADIO_STATE_UNAVAILABLE: |
| 286 | return "RADIO_UNAVAILABLE"; |
| 287 | case RADIO_STATE_SIM_NOT_READY: |
| 288 | return "RADIO_SIM_NOT_READY"; |
| 289 | case RADIO_STATE_SIM_LOCKED_OR_ABSENT: |
| 290 | return "RADIO_SIM_LOCKED_OR_ABSENT"; |
| 291 | case RADIO_STATE_SIM_READY: |
| 292 | return "RADIO_SIM_READY"; |
| 293 | case RADIO_STATE_RUIM_NOT_READY: |
| 294 | return "RADIO_RUIM_NOT_READY"; |
| 295 | case RADIO_STATE_RUIM_READY: |
| 296 | return "RADIO_RUIM_READY"; |
| 297 | case RADIO_STATE_RUIM_LOCKED_OR_ABSENT: |
| 298 | return "RADIO_RUIM_LOCKED_OR_ABSENT"; |
| 299 | case RADIO_STATE_NV_NOT_READY: |
| 300 | return "RADIO_NV_NOT_READY"; |
| 301 | case RADIO_STATE_NV_READY: |
| 302 | return "RADIO_NV_READY"; |
| 303 | case RADIO_STATE_ON: |
| 304 | return "RADIO_ON"; |
| 305 | default: |
| 306 | return "<unknown state>"; |
| 307 | } |
| 308 | } |
| 309 | |
| 310 | const char *rilSocketIdToString(RIL_SOCKET_ID socket_id) { |
| 311 | switch (socket_id) { |
| 312 | case RIL_SOCKET_1: |
| 313 | return "RIL_SOCKET_1"; |
| 314 | #if (SIM_COUNT >= 2) |
| 315 | case RIL_SOCKET_2: |
| 316 | return "RIL_SOCKET_2"; |
| 317 | #endif |
| 318 | #if (SIM_COUNT >= 3) |
| 319 | case RIL_SOCKET_3: |
| 320 | return "RIL_SOCKET_3"; |
| 321 | #endif |
| 322 | #if (SIM_COUNT >= 4) |
| 323 | case RIL_SOCKET_4: |
| 324 | return "RIL_SOCKET_4"; |
| 325 | #endif |
| 326 | default: |
| 327 | return "not a valid RIL"; |
| 328 | } |
| 329 | } |
| 330 | |
| 331 | void update_radio_capa(RIL_RadioCapability* cap, int slot) { |
| 332 | memset(&radio_capability[slot], 0, sizeof(RIL_RadioCapability)); |
| 333 | if(cap != NULL) { |
| 334 | strcpy(radio_capability[slot].logicalModemUuid,cap->logicalModemUuid); |
| 335 | radio_capability[slot].phase = cap->phase; |
| 336 | radio_capability[slot].rat = cap->rat; |
| 337 | radio_capability[slot].session = cap->session; |
| 338 | radio_capability[slot].status = cap->status; |
| 339 | radio_capability[slot].version = cap->version; |
| 340 | } |
| 341 | } |
| 342 | |
| 343 | RIL_RadioCapability get_radio_capa(int slot) { |
| 344 | return radio_capability[slot]; |
| 345 | } |
| 346 | |
| 347 | void update_voice_radio_tech(int code, int slot) { |
| 348 | cur_voice_radio_tech[slot] = code; |
| 349 | } |
| 350 | |
| 351 | int get_voice_radio_tech(int slot){ |
| 352 | return cur_voice_radio_tech[slot]; |
| 353 | } |
| 354 | |
| 355 | void updateCardStatusV6(RIL_CardStatus_v6 *card_status,int slot) |
| 356 | { |
| 357 | if(cur_CardS_Status[slot] != NULL) { |
| 358 | RLOGD("[slot%d]updateCardStatusV6", slot); |
| 359 | for(int i = 0; i < cur_CardS_Status[slot]->num_applications; i++) { |
| 360 | free(cur_CardS_Status[slot]->applications[i].aid_ptr); |
| 361 | cur_CardS_Status[slot]->applications[i].aid_ptr = NULL; |
| 362 | free(cur_CardS_Status[slot]->applications[i].app_label_ptr); |
| 363 | cur_CardS_Status[slot]->applications[i].app_label_ptr = NULL; |
| 364 | } |
| 365 | free(cur_CardS_Status[slot]); |
| 366 | cur_CardS_Status[slot] = NULL; |
| 367 | } |
| 368 | cur_CardS_Status[slot] = (RIL_CardStatus_v6 *)calloc(1, sizeof(RIL_CardStatus_v6)); |
| 369 | memset(cur_CardS_Status[slot], 0, sizeof(RIL_CardStatus_v6)); |
| 370 | cur_CardS_Status[slot]->card_state = card_status->card_state; |
| 371 | cur_CardS_Status[slot]->cdma_subscription_app_index = card_status->cdma_subscription_app_index; |
| 372 | cur_CardS_Status[slot]->gsm_umts_subscription_app_index = card_status->gsm_umts_subscription_app_index; |
| 373 | cur_CardS_Status[slot]->ims_subscription_app_index = card_status->ims_subscription_app_index; |
| 374 | cur_CardS_Status[slot]->num_applications = card_status->num_applications; |
| 375 | cur_CardS_Status[slot]->universal_pin_state = card_status->universal_pin_state; |
| 376 | RLOGD("[slot%d]updateCardStatusV6 card_state: %d, cdma_index: %d, gsm_index: %d, " |
| 377 | "ims_index: %d, num_applications: %d, universal_pin_state: %d", |
| 378 | slot, |
| 379 | cur_CardS_Status[slot]->card_state, |
| 380 | cur_CardS_Status[slot]->cdma_subscription_app_index, |
| 381 | cur_CardS_Status[slot]->gsm_umts_subscription_app_index, |
| 382 | cur_CardS_Status[slot]->ims_subscription_app_index, |
| 383 | cur_CardS_Status[slot]->num_applications, |
| 384 | cur_CardS_Status[slot]->universal_pin_state); |
| 385 | if(card_status) |
| 386 | { |
| 387 | for(int i = 0; i < card_status->num_applications; i++) { |
| 388 | cur_CardS_Status[slot]->applications[i].app_state = card_status->applications[i].app_state; |
| 389 | cur_CardS_Status[slot]->applications[i].app_type = card_status->applications[i].app_type; |
| 390 | cur_CardS_Status[slot]->applications[i].perso_substate = card_status->applications[i].perso_substate; |
| 391 | cur_CardS_Status[slot]->applications[i].pin1 = card_status->applications[i].pin1; |
| 392 | cur_CardS_Status[slot]->applications[i].pin1_replaced = card_status->applications[i].pin1_replaced; |
| 393 | cur_CardS_Status[slot]->applications[i].pin2 = card_status->applications[i].pin2; |
| 394 | cur_CardS_Status[slot]->applications[i].aid_ptr = strdup(card_status->applications[i].aid_ptr); |
| 395 | cur_CardS_Status[slot]->applications[i].app_label_ptr = strdup(card_status->applications[i].app_label_ptr); |
| 396 | } |
| 397 | } else { |
| 398 | RLOGD("[slot%d]updateCardStatusV6: sim card message is null", slot); |
| 399 | } |
| 400 | } |
| 401 | |
| 402 | char* getAid(int slot) |
| 403 | { |
| 404 | char* aid = ""; |
| 405 | int index = -1; |
| 406 | if(cur_CardS_Status[slot] != NULL){ |
| 407 | if(Phone_utils::get_phone_type(slot) == Phone_utils::PHONE_TYPE_CDMA) { |
| 408 | index = cur_CardS_Status[slot]->cdma_subscription_app_index; |
| 409 | } else { |
| 410 | index = cur_CardS_Status[slot]->gsm_umts_subscription_app_index; |
| 411 | } |
| 412 | if(index >= 0 && index < cur_CardS_Status[slot]->num_applications) { |
| 413 | aid = cur_CardS_Status[slot]->applications[index].aid_ptr; |
| 414 | } |
| 415 | } |
| 416 | RLOGD("[slot%d] index: %d, getAid: %s", slot, index, aid); |
| 417 | return aid; |
| 418 | } |
| 419 | |
| 420 | void update_reg_voice_service_state(int request, char *code, int slot, int32_t token) |
| 421 | { |
| 422 | if((reg_voice_service_state[slot] != atoi(code)) || ((token&RIL_TOKEN_MARK) == RIL_TOKEN_MARK)) { |
| 423 | reg_voice_service_state[slot] = atoi(code); |
| 424 | regCodeToServiceState(request, atoi(code), slot); |
| 425 | } |
| 426 | } |
| 427 | |
| 428 | void update_reg_voice_radio_tech(int request, int code, int slot, int32_t token) { |
| 429 | if((reg_voice_radio_tech[slot] != code) || ((token&RIL_TOKEN_MARK) == RIL_TOKEN_MARK)){ |
| 430 | reg_voice_radio_tech[slot] = code; |
| 431 | regCodeToRadioTechnology(request, code, slot); |
| 432 | } |
| 433 | } |
| 434 | |
| 435 | void update_reg_data_service_state(int request, char *code,int slot, int32_t token) |
| 436 | { |
| 437 | if((reg_data_service_state[slot] != atoi(code)) || ((token&RIL_TOKEN_MARK) == RIL_TOKEN_MARK)) { |
| 438 | reg_data_service_state[slot] = atoi(code); |
| 439 | regCodeToServiceState(request, atoi(code), slot); |
| 440 | } |
| 441 | } |
| 442 | |
| 443 | void update_reg_data_radio_tech(int request, int code, int slot, int32_t token){ |
| 444 | if((reg_data_radio_tech[slot] != code) || ((token&RIL_TOKEN_MARK) == RIL_TOKEN_MARK)) { |
| 445 | reg_data_radio_tech[slot] = code; |
| 446 | regCodeToRadioTechnology(request, code, slot); |
| 447 | } |
| 448 | } |
| 449 | |
| 450 | void registerRadioOn(RfDesenseTxTest* rf){ |
| 451 | if(!m_RfDesense) { |
| 452 | m_RfDesense = rf; |
| 453 | } |
| 454 | } |
| 455 | |
| 456 | void unregisterRadioOn() { |
| 457 | if(m_RfDesense) { |
| 458 | m_RfDesense == NULL; |
| 459 | } |
| 460 | } |
| 461 | |
| 462 | void registerRadioOffOrNotAvailable(RfDesenseTxTest* rf){ |
| 463 | if(!m_RfDesense) { |
| 464 | m_RfDesense = rf; |
| 465 | } |
| 466 | } |
| 467 | |
| 468 | void unregisterRadioOffOrNotAvailable() { |
| 469 | if(m_RfDesense) { |
| 470 | m_RfDesense == NULL; |
| 471 | } |
| 472 | } |
| 473 | |
| 474 | void registerOnUnsolOemHookRaw(RfDesenseTxTest* rf){ |
| 475 | if(!m_RfDesense) { |
| 476 | m_RfDesense = rf; |
| 477 | } |
| 478 | } |
| 479 | |
| 480 | void unregisterOnUnsolOemHookRaw(){ |
| 481 | if(m_RfDesense) { |
| 482 | m_RfDesense == NULL; |
| 483 | } |
| 484 | } |
| 485 | |
| 486 | void register_response_oem_hook_raw(RfDesenseTxTest* rf){ |
| 487 | if(!m_RfDesense) { |
| 488 | m_RfDesense = rf; |
| 489 | } |
| 490 | } |
| 491 | |
| 492 | void unregister_response_oem_hook_raw(){ |
| 493 | if(m_RfDesense) { |
| 494 | m_RfDesense == NULL; |
| 495 | } |
| 496 | } |
| 497 | |
| 498 | void updateRadioStatus(int newValue ,RIL_SOCKET_ID soc_id) |
| 499 | { |
| 500 | RLOGD("updateRadioStatus oldState: %d, newState: %d", radio_status[soc_id], newValue); |
| 501 | bool newOn = (newValue == RADIO_STATE_ON); |
| 502 | bool oldOn = (radio_status[soc_id] == RADIO_STATE_ON); |
| 503 | bool newAvaiable = (newValue != RADIO_STATE_UNAVAILABLE); |
| 504 | bool oldAvaiable = (radio_status[soc_id] != RADIO_STATE_UNAVAILABLE); |
| 505 | if (newOn && !oldOn) { |
| 506 | RLOGD("RadioStateOn"); |
| 507 | //printf("[SIM%d] radio on\n",soc_id +1); |
| 508 | if(m_RfDesense){ |
| 509 | m_RfDesense->emRadioStateOn(); |
| 510 | } |
| 511 | } |
| 512 | |
| 513 | if ((!newOn || !newAvaiable) && !((!oldOn || !oldAvaiable))) { |
| 514 | RLOGD("RadioStateOfforNotAvailable"); |
| 515 | //printf("[SIM%d] radio off or not available\n",soc_id +1); |
| 516 | if(m_RfDesense){ |
| 517 | m_RfDesense->emRadioStateOfforNotAvailable(); |
| 518 | } |
| 519 | } |
| 520 | if(newValue != radio_status[soc_id]) { |
| 521 | radio_status[soc_id] = newValue; |
| 522 | } |
| 523 | } |
| 524 | |
| 525 | bool isRadioOn(RIL_SOCKET_ID soc_id) |
| 526 | { |
| 527 | return radio_status[soc_id] == RADIO_STATE_ON; |
| 528 | } |
| 529 | |
| 530 | bool isRadioAvailable(RIL_SOCKET_ID soc_id) |
| 531 | { |
| 532 | return radio_status[soc_id] != RADIO_STATE_UNAVAILABLE; |
| 533 | } |
| 534 | |
| 535 | static int regCodeToServiceState(int request,int code, int slot) |
| 536 | { |
| 537 | RLOGD("[slot%d]regCodeToServiceState %d, request: %s",slot, code, android::requestToString(request)); |
| 538 | switch (code) |
| 539 | { |
| 540 | case 0: |
| 541 | case 2: // 2 is "searching" |
| 542 | case 3: // 3 is "registration denied" |
| 543 | case 4: // 4 is "unknown" no vaild in current baseband |
| 544 | case 10:// same as 0, but indicates that emergency call is possible. |
| 545 | case 12:// same as 2, but indicates that emergency call is possible. |
| 546 | case 13:// same as 3, but indicates that emergency call is possible. |
| 547 | case 14:// same as 4, but indicates that emergency call is possible. |
| 548 | { |
| 549 | if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) { |
| 550 | printf("[QUERY][VOICE REG_STATUS][SIM%d] The current service state is OUT OF SERVICE\n", slot); |
| 551 | } else { |
| 552 | printf("[QUERY][DATA REG_STATUS][SIM%d] The current service state is OUT OF SERVICE\n", slot); |
| 553 | } |
| 554 | return STATE_OUT_OF_SERVICE; |
| 555 | } |
| 556 | |
| 557 | case 1: |
| 558 | case 5: |
| 559 | { |
| 560 | if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) { |
| 561 | printf("[QUERY][VOICE REG_STATUS][SIM%d] The current service state is IN SERVICE\n", slot); |
| 562 | } else { |
| 563 | printf("[QUERY][DATA REG_STATUS][SIM%d] The current service state is IN SERVICE\n", slot); |
| 564 | } |
| 565 | return STATE_IN_SERVICE; |
| 566 | } |
| 567 | |
| 568 | default: |
| 569 | { |
| 570 | if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) { |
| 571 | printf("[QUERY][VOICE REG_STATUS][SIM%d] Unexpected service state %d\n", slot, code); |
| 572 | } else { |
| 573 | printf("[QUERY][DATA REG_STATUS][SIM%d] Unexpected service state %d\n", slot, code); |
| 574 | } |
| 575 | RLOGW("[SIM%d]regCodeToServiceState: unexpected service state %d", slot, code); |
| 576 | return STATE_OUT_OF_SERVICE; |
| 577 | } |
| 578 | } |
| 579 | } |
| 580 | |
| 581 | static int regCodeToRadioTechnology(int request, int code, int slot) { |
| 582 | RLOGD("[slot%d]regCodeToRadioTechnology %d, request: %s",slot, code, android::requestToString(request)); |
| 583 | switch(code) { |
| 584 | case RADIO_TECH_LTE: |
| 585 | { |
| 586 | if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) { |
| 587 | printf("[QUERY][VOICE REG_STATUS][SIM%d] The registered radio technology is 4G\n", slot); |
| 588 | } else { |
| 589 | printf("[QUERY][DATA REG_STATUS][SIM%d] The registered radio technology is 4G\n", slot); |
| 590 | } |
| 591 | break; |
| 592 | } |
| 593 | case RADIO_TECH_GSM: |
| 594 | case RADIO_TECH_GPRS: |
| 595 | case RADIO_TECH_EDGE: |
| 596 | case RADIO_TECH_IS95A: |
| 597 | case RADIO_TECH_IS95B: |
| 598 | case RADIO_TECH_1xRTT: |
| 599 | { |
| 600 | if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) { |
| 601 | printf("[QUERY][VOICE REG_STATUS][SIM%d] The registered radio technology is 2G\n", slot); |
| 602 | } else { |
| 603 | printf("[QUERY][DATA REG_STATUS][SIM%d] The registered radio technology is 2G\n", slot); |
| 604 | } |
| 605 | break; |
| 606 | } |
| 607 | case RADIO_TECH_UMTS: |
| 608 | case RADIO_TECH_HSDPA: |
| 609 | case RADIO_TECH_HSUPA: |
| 610 | case RADIO_TECH_HSPA: |
| 611 | case RADIO_TECH_EHRPD: |
| 612 | case RADIO_TECH_HSPAP: |
| 613 | case RADIO_TECH_TD_SCDMA: |
| 614 | case RADIO_TECH_EVDO_0: |
| 615 | case RADIO_TECH_EVDO_A: |
| 616 | case RADIO_TECH_EVDO_B: |
| 617 | { |
| 618 | if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) { |
| 619 | printf("[QUERY][VOICE REG_STATUS][SIM%d] The registered radio technology is 3G\n", slot); |
| 620 | } else { |
| 621 | printf("[QUERY][DATA REG_STATUS][SIM%d] The registered radio technology is 3G\n", slot); |
| 622 | } |
| 623 | break; |
| 624 | } |
| 625 | #ifdef TELEMATIC_5G_SUPPORT |
| 626 | case RADIO_TECH_NR://5G |
| 627 | { |
| 628 | if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) { |
| 629 | printf("[QUERY][VOICE REG_STATUS][SIM%d] The registered radio technology is 5G\n", slot); |
| 630 | } else { |
| 631 | printf("[QUERY][DATA REG_STATUS][SIM%d] The registered radio technology is 5G\n", slot); |
| 632 | } |
| 633 | break; |
| 634 | } |
| 635 | #endif |
| 636 | case RADIO_TECH_UNKNOWN: |
| 637 | { |
| 638 | if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) { |
| 639 | printf("[QUERY][VOICE REG_STATUS][SIM%d] The registered radio technology is unknown\n", slot); |
| 640 | } else { |
| 641 | printf("[QUERY][DATA REG_STATUS][SIM%d] The registered radio technology is unknown\n", slot); |
| 642 | } |
| 643 | break; |
| 644 | } |
| 645 | default: |
| 646 | { |
| 647 | if(request == RIL_REQUEST_VOICE_REGISTRATION_STATE) { |
| 648 | printf("[QUERY][VOICE REG_STATUS][SIM%d] %d is unexpected value\n",slot, code); |
| 649 | } else { |
| 650 | printf("[QUERY][DATA REG_STATUS][SIM%d] %d is unexpected value\n",slot, code); |
| 651 | } |
| 652 | } |
| 653 | } |
| 654 | return 0; |
| 655 | } |
| 656 | |
| 657 | int get_reg_data_radio_tech(int slot) { |
| 658 | return reg_data_radio_tech[slot]; |
| 659 | } |
| 660 | |
| 661 | int get_reg_voice_radio_tech(int slot) { |
| 662 | return reg_voice_radio_tech[slot]; |
| 663 | } |
| 664 | |
| 665 | #ifdef ECALL_SUPPORT |
| 666 | void ConvertMsd(const char *msdChar, unsigned char *msd) { |
| 667 | unsigned int n, x; |
| 668 | |
| 669 | for (n = 0; n < MSD_MAX_LENGTH; n++) { |
| 670 | if (sscanf(&msdChar[n<<1], "%2x", &x) == 1) { |
| 671 | msd[n] = x; |
| 672 | } else { |
| 673 | RLOGE("invalid MSD characters"); |
| 674 | break; |
| 675 | } |
| 676 | } |
| 677 | } |
| 678 | #endif /*ECALL_SUPPORT*/ |
| 679 | |
| 680 | bool isFinalResponseErrorEx(char* str) { |
| 681 | AtLine atline(str, NULL); |
| 682 | return (atline.isFinalResponseErrorEx(0) == 1 ? true : false); |
| 683 | } |
| 684 | |
| 685 | int get_atci_sim(){ |
| 686 | return utils::mtk_property_get_int32(ATCI_SIM, 0); |
| 687 | } |
| 688 | |
| 689 | static char *findNextChar(char *p, char c, int length) |
| 690 | { |
| 691 | char *ptr = p; |
| 692 | int i = 0; |
| 693 | while (i++ < length) |
| 694 | { |
| 695 | if (*ptr++ == c) |
| 696 | return ptr; |
| 697 | } |
| 698 | return NULL; |
| 699 | } |
| 700 | |
| 701 | static int getGMTval(char *pdata) |
| 702 | { |
| 703 | char *ptr; |
| 704 | ptr = findNextChar(pdata, '+', strlen(pdata)); |
| 705 | if (ptr == NULL) |
| 706 | { |
| 707 | ptr = findNextChar(pdata, '-', strlen(pdata)); |
| 708 | if (ptr == NULL) |
| 709 | { |
| 710 | return 0; |
| 711 | } |
| 712 | } |
| 713 | return atoi(ptr); |
| 714 | } |
| 715 | |
| 716 | static void adjustGMT2LocalTime(struct tm *src, int dGMTval) |
| 717 | { |
| 718 | time_t t1, t2; |
| 719 | struct tm * ptm; |
| 720 | char buf[255]; |
| 721 | int dShiftSec; |
| 722 | |
| 723 | dShiftSec = dGMTval * 15 * 60; |
| 724 | t1 = mktime(src); |
| 725 | t2 = (time_t)(t1 + dShiftSec); |
| 726 | ptm = gmtime(&t2); |
| 727 | |
| 728 | memcpy(src, ptm, sizeof(struct tm)); |
| 729 | } |
| 730 | |
| 731 | void updateSystemTime(const void *data, int datalen) |
| 732 | { |
| 733 | char strTime[32]; |
| 734 | struct tm tm; |
| 735 | time_t t; |
| 736 | int dGMTval; |
| 737 | |
| 738 | if (data == NULL || datalen <= 0) |
| 739 | return; |
| 740 | |
| 741 | memset(strTime, 0, sizeof(strTime)); |
| 742 | strcat(strTime, "20"); |
| 743 | strcat(strTime, (const char *)data); |
| 744 | |
| 745 | dGMTval = getGMTval(strTime); |
| 746 | memset(&tm, 0, sizeof(struct tm)); |
| 747 | strptime(strTime, "%Y/%m/%d,%H:%M:%S", &tm); |
| 748 | |
| 749 | adjustGMT2LocalTime(&tm, dGMTval); |
| 750 | |
| 751 | t = mktime(&tm); |
| 752 | stime(&t); |
| 753 | |
| 754 | return; |
| 755 | } |
| 756 | void notifyDataSignal() { |
| 757 | RLOGE("notifyDataSignal()"); |
| 758 | pthread_mutex_lock(&s_DataMutex); |
| 759 | pthread_cond_broadcast(&s_DataCond); |
| 760 | pthread_mutex_unlock(&s_DataMutex); |
| 761 | } |
| 762 | |
| 763 | bool mtkItTest(const char* data) { |
| 764 | std::string str(""); |
| 765 | str.append(data); |
| 766 | RLOGD("%s, data: %s", __FUNCTION__, str.c_str()); |
| 767 | std::vector<std::string> all; |
| 768 | RequestInfo* pRI = NULL; |
| 769 | utils::tokenize(str, ',', all); |
| 770 | if(all[0] != std::string("TEST")) { |
| 771 | return false; |
| 772 | } |
| 773 | android::Parcel p; |
| 774 | size_t pos = p.dataPosition(); |
| 775 | for(int i = 1 ; i < all.size(); i++) { |
| 776 | std::string str = all[i]; |
| 777 | RLOGD("%s, all[%d]: %s", __FUNCTION__, i, str.c_str()); |
| 778 | std::vector<std::string> items; |
| 779 | utils::tokenize(str, '=', items); |
| 780 | if(items.size() == 2) { |
| 781 | if(items[0] == std::string("INT")) { |
| 782 | int para = std::stoi(items[1]); |
| 783 | p.writeInt32(para); |
| 784 | } else if(items[0] == std::string("STR")) { |
| 785 | writeStringToParcel(p, items[1].c_str()); |
| 786 | } else if(items[0] == std::string("REQ")) { |
| 787 | int request = std::stoi(items[1]); |
lh | b07f4e1 | 2022-02-17 22:08:54 -0800 | [diff] [blame] | 788 | |
| 789 | // For loop, free before reassign to avoid memory leak |
| 790 | if (pRI != NULL) { |
| 791 | free(pRI); |
| 792 | } |
lh | 7b0674a | 2022-01-10 00:34:35 -0800 | [diff] [blame] | 793 | pRI = creatRILInfoAndInit(request, UDP, (RIL_SOCKET_ID) ((0))); |
| 794 | } |
| 795 | } else { |
| 796 | RLOGD("%s, too many \"=\""); |
| 797 | } |
| 798 | } |
lh | b07f4e1 | 2022-02-17 22:08:54 -0800 | [diff] [blame] | 799 | |
lh | 7b0674a | 2022-01-10 00:34:35 -0800 | [diff] [blame] | 800 | if(pRI && pRI->pCI) { |
| 801 | p.setDataPosition(pos); |
| 802 | pRI->pCI->dispatchFunction(p, pRI); |
lh | 7b0674a | 2022-01-10 00:34:35 -0800 | [diff] [blame] | 803 | } |
lh | b07f4e1 | 2022-02-17 22:08:54 -0800 | [diff] [blame] | 804 | |
| 805 | // Free to avoid memory leak |
| 806 | if(pRI != NULL) { |
| 807 | free(pRI); |
| 808 | pRI = NULL; |
| 809 | } |
| 810 | |
lh | 7b0674a | 2022-01-10 00:34:35 -0800 | [diff] [blame] | 811 | return true; |
| 812 | } |
| 813 | int lynqSocketSendto(int fd,struct sockaddr *dest_addr,int addr_len,char msg[]) |
| 814 | { |
| 815 | int ret = 0; |
| 816 | ret = sendto(fd,msg,strlen(msg),0,dest_addr,addr_len); |
| 817 | if(ret>0) |
| 818 | { |
| 819 | RLOGD("[lynqSocketSendto] send msg success!!!"); |
| 820 | return 0; |
| 821 | } |
| 822 | else |
| 823 | { |
| 824 | RLOGD("[lynqSocketSendto] send msg fail!!!"); |
| 825 | return -1; |
| 826 | } |
| 827 | } |