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/* Copyright Statement:
*
* This software/firmware and related documentation ("MediaTek Software") are
* protected under relevant copyright laws. The information contained herein
* is confidential and proprietary to MediaTek Inc. and/or its licensors.
* Without the prior written permission of MediaTek inc. and/or its licensors,
* any reproduction, modification, use or disclosure of MediaTek Software,
* and information contained herein, in whole or in part, shall be strictly prohibited.
*/
/* MediaTek Inc. (C) 2010. All rights reserved.
*
* BY OPENING THIS FILE, RECEIVER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES
* THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE")
* RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO RECEIVER ON
* AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES,
* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF
* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NONINFRINGEMENT.
* NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH RESPECT TO THE
* SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY, INCORPORATED IN, OR
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* CONTAINED IN MEDIATEK SOFTWARE. MEDIATEK SHALL ALSO NOT BE RESPONSIBLE FOR ANY MEDIATEK
* SOFTWARE RELEASES MADE TO RECEIVER'S SPECIFICATION OR TO CONFORM TO A PARTICULAR
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* AT MEDIATEK'S OPTION, TO REVISE OR REPLACE THE MEDIATEK SOFTWARE AT ISSUE,
* OR REFUND ANY SOFTWARE LICENSE FEES OR SERVICE CHARGE PAID BY RECEIVER TO
* MEDIATEK FOR SUCH MEDIATEK SOFTWARE AT ISSUE.
*
* The following software/firmware and/or related documentation ("MediaTek Software")
* have been modified by MediaTek Inc. All revisions are subject to any receiver's
* applicable license agreements with MediaTek Inc.
*/
#include <vendor-ril/telephony/ril.h>
#include <stdlib.h>
#include <stdio.h>
#include <cutils/jstring.h>
#include <log/log.h>
#include <unistd.h>
#include <math.h>
#include <string>
#include <vector>
#include "Phone_utils.h"
#include "common.h"
#include "em/em.h"
#include "Radio_capability_switch_util.h"
#if EM_MODE_SUPPORT
#undef LOG_TAG
#define LOG_TAG "EM_MODEMTEST"
int mCurrentEmmodemtestFlag = -1; // at cmd handle flag
const int MODEM_NONE = 0;
const int MODEM_CTA = 1;
const int MODEM_FTA = 2;
const int MODEM_IOT = 3;
const int MODEM_QUERY = 4;
const int MODEM_OPERATOR = 5;
const int MODEM_FACTORY = 6;
const int MODEM_QUERY_CDMA = 7;
const int MODEM_CDMA = 8;
const int MODEM_QUERY_CLSC = 9;
const int MODEM_CLSC = 10;
int mCtaOption = 0;
int mIotOption = 0;
int mFtaOption = 0;
int mOperatorOption = 0;
int mFactoryOption = 0;
int mCdmaOption = 0;
int modem_id = -1;
int modem_option_cnt = -1;
int modem_option[8] = {0};
static const int EVENT_QUERY_PREFERRED_TYPE_DONE = 1000;
static const int EVENT_SET_PREFERRED_TYPE_DONE = 1001;
static const int REBOOT_DIALOG = 2000;
static const int NETWORK_TYPE = 3; //type 3 means GSM/WCDMA (auto mode) 0 means GSM/WCDMA (WCDMA preferred)
static const int CMD_LENGTH = 6;
static const int MODE_LENGTH = 3;
//static const String PREFERENCE_GPRS = "com.mtk.GPRS";
//static const String PREF_ATTACH_MODE = "ATTACH_MODE";
//static const String PREF_ATTACH_MODE_SIM = "ATTACH_MODE_SIM";
static const int ATTACH_MODE_ALWAYS = 1;
static const int ATTACH_MODE_NOT_SPECIFY = -1;
static const int DOCOMO_OPTION = 1 << 7;
static const int SOFTBANK_OPTION = 1 << 8;
//static const String PROP_TEST_CARD = "persist.sys.forcttestcard";
//static const String PROP_TDD_TEST = "persist.sys.forcttddtest";
static const int IPO_ENABLE = 1;
static const int IPO_DISABLE = 0;
static const int PCH_DATA_PREFER = 0;
static const int PCH_CALL_PREFER = 1;
static const int INDEX_SPIRENT = 1;
static const int FLAG_UNLOCK = 0x200000;
static const int FLAG_NOT_DETECT_CDMA_CARD = 0x100000;
bool mModemFlag = false;
int mCurrentMode = 0;
int mCurrentCmdFlag = 0;
void setCurrentTestFlag(int msg){
mCurrentEmmodemtestFlag = msg;
return ;
}
void sendATCommand_modemtest(const char *cmd,int msg)
{
setCurrentTestFlag(msg);
emSendATCommand(cmd, Radio_capability_switch_util::get_main_capability_phone_id());
return ;
}
static void sendATCommandCdma(std::string str, int message) {
std::vector<std::string> cmdOri(3);
cmdOri[0] = "AT+ECTM=" + str;
cmdOri[1] = "";
cmdOri[2] = "DESTRILD:C2K";
std::vector<std::string> cmds = getCdmaCmdArr(cmdOri);
std::string cmd;
for (auto s : cmds) {
cmd += s;
}
sendATCommand_modemtest(cmd.c_str(), message);
sendATCommand_modemtest("AT+RFSSYNC", -1);
}
void setCdmaOption() {
if (modem_option[0] == INDEX_SPIRENT) {
sendATCommandCdma("\"SPIRENT\"", MODEM_CDMA);
} else {
sendATCommandCdma("\"NONE\"", MODEM_CDMA);
}
}
void sendATCommand_modemtest(const char *str,int flag,int msg)
{
char cmd[32] = {0};
mCurrentCmdFlag = (mCurrentCmdFlag & 0xFF0000) | flag;
sprintf(cmd,"AT+EPCT=%s,%d",str,mCurrentCmdFlag);
setCurrentTestFlag(msg);
emSendATCommand(cmd,Radio_capability_switch_util::get_main_capability_phone_id());
return ;
}
int setPreferredNetworkType_modemtest(int type)
{
RequestInfo *pRI_preferredNetType = creatRILInfoAndInit(RIL_REQUEST_SET_PREFERRED_NETWORK_TYPE, OTHER,
(RIL_SOCKET_ID)Radio_capability_switch_util::get_main_capability_phone_id());
android::Parcel p;
size_t pos = p.dataPosition();
p.writeInt32(1);
p.writeInt32(type);
p.setDataPosition(pos);
pRI_preferredNetType->pCI->dispatchFunction(p, pRI_preferredNetType);
return 1;
}
void checkNetworkType() {
RLOGD("TcheckNetworkType");
RequestInfo *pRI_preferredNetType = creatRILInfoAndInit(RIL_REQUEST_GET_PREFERRED_NETWORK_TYPE, OTHER,
(RIL_SOCKET_ID)Radio_capability_switch_util::get_main_capability_phone_id());
android::Parcel p;
pRI_preferredNetType->pCI->dispatchFunction(p, pRI_preferredNetType);
}
void handleQuery(char* data)
{
if(strstr(data,"+EPCT:") != NULL){
char *p = strstr(data,",");
if(p != NULL){
char mode[3] = {0};
char flag[12] = {0};
strncpy(mode,p-1,1);
char *end = strstr(data,"OK");
if(end != NULL){
RLOGD("end %s ", end);
RLOGD("end len %d ", end - p -1);
strncpy(flag,p+1,end - p -1);
mCurrentCmdFlag = atoi(flag);
}
mCurrentMode = atoi(mode);
RLOGD("mCurrentMode %d mCurrentCmdFlag %d",mCurrentMode,mCurrentCmdFlag);
}
}
return;
}
const char *modem_test_cta_options[] = {
"Integrity Check",
"RLC TL1",
"K1297",
"SN Conflict",
"CF query",
"DLMN lock",
"Measurement open",
"Disable DPA",
"Intra CMR",
};
const char *modem_test_fta_options[] = {
"ANITE",
"CRTUG",
"CRTUW",
"ANRITSU",
"CMW500"
};
void setGprsTransferType(int type) {
int property = (type == PCH_DATA_PREFER ? 1 : 0);
RLOGD("Change persist.radio.gprs.prefer to %d" ,property);
//SystemProperties.set("persist.radio.gprs.prefer", property);
char cmd[32];
sprintf(cmd,"AT+EGTP=%d",type);
sendATCommand_modemtest(cmd,-1);
sprintf(cmd,"AT+EMPPCH=%d",type);
sendATCommand_modemtest(cmd,-1);
//sendATCMD
}
void attachOrDetachGprs() {
if ((mOperatorOption & DOCOMO_OPTION) != 0 || (mOperatorOption & SOFTBANK_OPTION) != 0) {
RLOGD("Attach GPRS for DoCoMo/Softband");
//SystemProperties.set("persist.radio.gprs.attach.type", "1");
char cmdStr[] = {"AT+EGTYPE=1,1"};
sendATCommand_modemtest(cmdStr,-1);
} else {
RLOGD("Dettach GPRS for DoCoMo/Softband");
//SystemProperties.set("persist.radio.gprs.attach.type", "0");
char cmdStr[] = {"AT+EGTYPE=0,1"};
sendATCommand_modemtest(cmdStr,-1);
}
}
void turnoffWCMAPreferred(){
if(mModemFlag){
setCurrentTestFlag(EVENT_SET_PREFERRED_TYPE_DONE);
setPreferredNetworkType_modemtest(NETWORK_TYPE);
}
}
int modemTestProcess(int id,int *whichButton, int ButtonCount)//from onCreate & onCreateDialog
{
switch(id){
case REBOOT_DIALOG:
{
//hint do reboot
return 0;
}
case MODEM_NONE:
{
sendATCommand_modemtest("0", 0, MODEM_NONE);
if (mCurrentMode == MODEM_FTA) {
setGprsTransferType(PCH_CALL_PREFER);
}
break;
}
case MODEM_CTA:
{
mCtaOption = 0;
for(int i = 0; i < ButtonCount; i++){
mCtaOption += (1 << whichButton[i]);
}
turnoffWCMAPreferred();
sendATCommand_modemtest("1", mCtaOption, MODEM_CTA);
if (mCurrentMode == MODEM_FTA) {
setGprsTransferType(PCH_CALL_PREFER);
}
break;
}
case MODEM_FTA:
{
mFtaOption = 0;
for(int i = 0; i < ButtonCount; i++){
RLOGD("which button %d",whichButton[i]);
mFtaOption += (1 << whichButton[i]);
}
RLOGD("mFtaOption %x", mFtaOption);
turnoffWCMAPreferred();
sendATCommand_modemtest("2", mFtaOption, MODEM_FTA);
//enableIPO(false);
setGprsTransferType(PCH_DATA_PREFER);
break;
}
case MODEM_IOT:
{
mIotOption = 0;
for(int i = 0; i < ButtonCount; i++){
mIotOption += (1 << whichButton[i]);
}
sendATCommand_modemtest("3", mIotOption, MODEM_IOT);
if (mCurrentMode == MODEM_FTA) {
setGprsTransferType(PCH_CALL_PREFER);
}
break;
}
case MODEM_OPERATOR:
{
mOperatorOption = 0;
for(int i = 0; i < ButtonCount; i++){
mOperatorOption += (1 << whichButton[i]);
}
turnoffWCMAPreferred();
attachOrDetachGprs();
sendATCommand_modemtest("4", mOperatorOption, MODEM_OPERATOR);
if (mCurrentMode == MODEM_FTA) {
setGprsTransferType(PCH_CALL_PREFER);
}
break;
}
case MODEM_CDMA:
setCdmaOption();
break;
case MODEM_FACTORY:
{
turnoffWCMAPreferred();
sendATCommand_modemtest("5", 0, MODEM_FACTORY);
if (mCurrentMode == MODEM_FTA) {
setGprsTransferType(PCH_CALL_PREFER);
}
break;
}
}
}
const char * getToastString(int what) {
switch (what) {
case MODEM_NONE:
return "MODEM_NONE";
case MODEM_CTA:
return "MODEM_CTA";
case MODEM_FTA:
return "MODEM_FTA";
case MODEM_IOT:
return "MODEM_IOT";
case MODEM_OPERATOR:
return "MODEM_OPERATOR";
case MODEM_FACTORY:
return "MODEM_FACTORY";
case MODEM_CDMA:
return "MODEM_CDMA";
default:
return "";
}
}
void emModemtestAtCmdHandle(char*response, int responselen) {
switch (mCurrentEmmodemtestFlag) {
case MODEM_NONE:
case MODEM_CTA:
case MODEM_FTA:
case MODEM_IOT:
case MODEM_OPERATOR:
case MODEM_FACTORY:
case MODEM_CDMA:
{
if ((responselen > 0) && (response != NULL)) {
RLOGD("%s AT cmd success. %s\n",getToastString(mCurrentEmmodemtestFlag),response);
}
else {
RLOGD("%s AT cmd failed.\n",getToastString(mCurrentEmmodemtestFlag));
}
break;
}
case MODEM_QUERY:
{
if ((responselen > 0) && (response != NULL)) {
RLOGD("Query success. %s\n",response);
handleQuery(response);
}
else {
RLOGD("Query fail. ");
}
break;
}
case EVENT_QUERY_PREFERRED_TYPE_DONE:
{
if ((responselen > 0) && (response != NULL)) {
int type = -1;
//parse currect preferred type
type = atoi(response);
RLOGD("Get Preferred Type: %d ",type);
if (type == 0) {
mModemFlag = true;
} else {
mModemFlag = false;
}
}
else {
RLOGD("Query preferred type fail ");
}
break;
}
case EVENT_SET_PREFERRED_TYPE_DONE:
{
if ((responselen > 0) && (response != NULL)) {
RLOGD("Turn off WCDMA Preferred success\n");
}
else {
RLOGD("Turn off WCDMA Preferred Fail");
}
break;
}
default:
break;
}
}
void * emModemtestThread(void* arg)
{
RLOGD("Modem Test: %s ",getToastString(modem_id));
modemTestProcess(modem_id,modem_option,modem_option_cnt);
android::unregisterNetwork();
android::emResultNotify(RET_STRING_MODEMTEST_SUCCESS);
pthread_exit(0);
}
int emModemtestStart(int argc, int multicnt,int *item)
{
//item[0]: fta/cta/... item[1] count item[2]..item[count+1] which part
RLOGD("emModemtestStart called");
if(argc < 1)
{
RLOGD("emModemtestStart: please select id to test: \
");
android::emResultNotify(RET_STRING_MODEMTEST_FAIL);
return -1;
}
int idmapping[7] = {MODEM_NONE,MODEM_CTA,MODEM_FTA,MODEM_IOT,MODEM_FACTORY,MODEM_FACTORY, MODEM_CDMA};
modem_id = idmapping[item[0]];
modem_option_cnt = multicnt;
modem_option[0] = item[1];
for(int i = 0; i < modem_option_cnt ; i++){
modem_option[i+1] = item[2+i];
}
modem_option_cnt+=1;
RLOGD("emModemtestStart modem_option_cnt %d",modem_option_cnt);
mCtaOption = 0;
mIotOption = 0;
mFtaOption = 0;
mOperatorOption = 0;
mFactoryOption = 0;
mCdmaOption = 0;
mCurrentEmmodemtestFlag = 0;
android::registerForATcmdResponse(emModemtestAtCmdHandle);
if(modem_id != MODEM_CDMA) {
setCurrentTestFlag(EVENT_QUERY_PREFERRED_TYPE_DONE);
checkNetworkType();
sendATCommand_modemtest("AT+EPCT?",MODEM_QUERY);
}
pthread_t emmodemtest_thread;
pthread_create(&emmodemtest_thread,NULL, emModemtestThread, NULL);
return (0);
}
#endif