/**
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* @file TinyGsmClientSIM7600.h
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* @author Volodymyr Shymanskyy
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* @license LGPL-3.0
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* @copyright Copyright (c) 2016 Volodymyr Shymanskyy
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* @date Nov 2016
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*/
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#ifndef SRC_TINYGSMCLIENTSIM7600_H_
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#define SRC_TINYGSMCLIENTSIM7600_H_
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// #define TINY_GSM_DEBUG Serial
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// #define TINY_GSM_USE_HEX
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#define TINY_GSM_MUX_COUNT 10
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#define TINY_GSM_BUFFER_READ_AND_CHECK_SIZE
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#include "TinyGsmBattery.tpp"
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#include "TinyGsmGPRS.tpp"
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#include "TinyGsmGPS.tpp"
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#include "TinyGsmGSMLocation.tpp"
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#include "TinyGsmModem.tpp"
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#include "TinyGsmSMS.tpp"
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#include "TinyGsmTCP.tpp"
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#include "TinyGsmTemperature.tpp"
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#include "TinyGsmTime.tpp"
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#define GSM_NL "\r\n"
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static const char GSM_OK[] TINY_GSM_PROGMEM = "OK" GSM_NL;
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static const char GSM_ERROR[] TINY_GSM_PROGMEM = "ERROR" GSM_NL;
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#if defined TINY_GSM_DEBUG
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static const char GSM_CME_ERROR[] TINY_GSM_PROGMEM = GSM_NL "+CME ERROR:";
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#endif
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enum RegStatus {
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REG_NO_RESULT = -1,
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REG_UNREGISTERED = 0,
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REG_SEARCHING = 2,
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REG_DENIED = 3,
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REG_OK_HOME = 1,
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REG_OK_ROAMING = 5,
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REG_UNKNOWN = 4,
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};
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class TinyGsmSim7600 : public TinyGsmModem<TinyGsmSim7600>,
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public TinyGsmGPRS<TinyGsmSim7600>,
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public TinyGsmTCP<TinyGsmSim7600, TINY_GSM_MUX_COUNT>,
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public TinyGsmSMS<TinyGsmSim7600>,
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public TinyGsmGSMLocation<TinyGsmSim7600>,
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public TinyGsmGPS<TinyGsmSim7600>,
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public TinyGsmTime<TinyGsmSim7600>,
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public TinyGsmBattery<TinyGsmSim7600>,
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public TinyGsmTemperature<TinyGsmSim7600> {
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friend class TinyGsmModem<TinyGsmSim7600>;
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friend class TinyGsmGPRS<TinyGsmSim7600>;
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friend class TinyGsmTCP<TinyGsmSim7600, TINY_GSM_MUX_COUNT>;
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friend class TinyGsmSMS<TinyGsmSim7600>;
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friend class TinyGsmGPS<TinyGsmSim7600>;
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friend class TinyGsmGSMLocation<TinyGsmSim7600>;
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friend class TinyGsmTime<TinyGsmSim7600>;
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friend class TinyGsmBattery<TinyGsmSim7600>;
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friend class TinyGsmTemperature<TinyGsmSim7600>;
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/*
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* Inner Client
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*/
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public:
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class GsmClientSim7600 : public GsmClient {
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friend class TinyGsmSim7600;
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public:
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GsmClientSim7600() {}
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explicit GsmClientSim7600(TinyGsmSim7600& modem, uint8_t mux = 0) {
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init(&modem, mux);
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}
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bool init(TinyGsmSim7600* modem, uint8_t mux = 0) {
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this->at = modem;
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this->mux = mux;
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sock_available = 0;
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prev_check = 0;
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sock_connected = false;
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got_data = false;
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at->sockets[mux] = this;
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return true;
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}
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public:
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virtual int connect(const char* host, uint16_t port, int timeout_s) {
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stop();
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TINY_GSM_YIELD();
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rx.clear();
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sock_connected = at->modemConnect(host, port, mux, false, timeout_s);
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return sock_connected;
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}
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TINY_GSM_CLIENT_CONNECT_OVERRIDES
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void stop(uint32_t maxWaitMs) {
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dumpModemBuffer(maxWaitMs);
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at->sendAT(GF("+CIPCLOSE="), mux);
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sock_connected = false;
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at->waitResponse();
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}
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void stop() override {
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stop(15000L);
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}
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/*
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* Extended API
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*/
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String remoteIP() TINY_GSM_ATTR_NOT_IMPLEMENTED;
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};
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/*
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* Inner Secure Client
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*/
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/*TODO(?))
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class GsmClientSecureSIM7000 : public GsmClientSim7000
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{
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public:
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GsmClientSecure() {}
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GsmClientSecure(TinyGsmSim7000& modem, uint8_t mux = 1)
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: public GsmClient(modem, mux)
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{}
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public:
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int connect(const char* host, uint16_t port, int timeout_s) override {
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stop();
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TINY_GSM_YIELD();
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rx.clear();
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sock_connected = at->modemConnect(host, port, mux, true, timeout_s);
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return sock_connected;
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}
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TINY_GSM_CLIENT_CONNECT_OVERRIDES
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};
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*/
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/*
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* Constructor
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*/
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public:
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explicit TinyGsmSim7600(Stream& stream) : stream(stream) {
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memset(sockets, 0, sizeof(sockets));
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}
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/*
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* Basic functions
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*/
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protected:
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bool initImpl(const char* pin = NULL) {
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DBG(GF("### TinyGSM Version:"), TINYGSM_VERSION);
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if (!testAT()) { return false; }
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sendAT(GF("E0")); // Echo Off
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if (waitResponse() != 1) { return false; }
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#ifdef TINY_GSM_DEBUG
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sendAT(GF("+CMEE=2")); // turn on verbose error codes
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#else
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sendAT(GF("+CMEE=0")); // turn off error codes
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#endif
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waitResponse();
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DBG(GF("### Modem:"), getModemName());
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// Disable time and time zone URC's
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sendAT(GF("+CTZR=0"));
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if (waitResponse(10000L) != 1) { return false; }
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// Enable automatic time zome update
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sendAT(GF("+CTZU=1"));
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if (waitResponse(10000L) != 1) { return false; }
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SimStatus ret = getSimStatus();
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// if the sim isn't ready and a pin has been provided, try to unlock the sim
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if (ret != SIM_READY && pin != NULL && strlen(pin) > 0) {
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simUnlock(pin);
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return (getSimStatus() == SIM_READY);
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} else {
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// if the sim is ready, or it's locked but no pin has been provided,
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// return true
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return (ret == SIM_READY || ret == SIM_LOCKED);
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}
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}
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String getModemNameImpl() {
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String name = "SIMCom SIM7600";
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sendAT(GF("+CGMM"));
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String res2;
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if (waitResponse(1000L, res2) != 1) { return name; }
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res2.replace(GSM_NL "OK" GSM_NL, "");
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res2.replace("_", " ");
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res2.trim();
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name = res2;
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DBG("### Modem:", name);
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return name;
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}
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bool factoryDefaultImpl() { // these commands aren't supported
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return false;
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}
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/*
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* Power functions
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*/
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protected:
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bool restartImpl() {
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if (!testAT()) { return false; }
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sendAT(GF("+CRESET"));
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if (waitResponse(10000L) != 1) { return false; }
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delay(5000L); // TODO(?): Test this delay!
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return init();
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}
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bool powerOffImpl() {
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sendAT(GF("+CPOF"));
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return waitResponse() == 1;
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}
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bool radioOffImpl() {
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sendAT(GF("+CFUN=4"));
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if (waitResponse(10000L) != 1) { return false; }
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delay(3000);
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return true;
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}
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bool sleepEnableImpl(bool enable = true) {
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sendAT(GF("+CSCLK="), enable);
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return waitResponse() == 1;
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}
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/*
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* Generic network functions
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*/
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public:
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RegStatus getRegistrationStatus() {
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return (RegStatus)getRegistrationStatusXREG("CGREG");
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}
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protected:
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bool isNetworkConnectedImpl() {
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RegStatus s = getRegistrationStatus();
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return (s == REG_OK_HOME || s == REG_OK_ROAMING);
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}
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public:
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String getNetworkModes() {
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sendAT(GF("+CNMP=?"));
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if (waitResponse(GF(GSM_NL "+CNMP:")) != 1) { return ""; }
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String res = stream.readStringUntil('\n');
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waitResponse();
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return res;
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}
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String setNetworkMode(uint8_t mode) {
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sendAT(GF("+CNMP="), mode);
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if (waitResponse(GF(GSM_NL "+CNMP:")) != 1) { return "OK"; }
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String res = stream.readStringUntil('\n');
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waitResponse();
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return res;
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}
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String getLocalIPImpl() {
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sendAT(GF("+IPADDR")); // Inquire Socket PDP address
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// sendAT(GF("+CGPADDR=1")); // Show PDP address
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String res;
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if (waitResponse(10000L, res) != 1) { return ""; }
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res.replace(GSM_NL "OK" GSM_NL, "");
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res.replace(GSM_NL, "");
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res.trim();
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return res;
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}
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/*
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* GPRS functions
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*/
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protected:
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bool gprsConnectImpl(const char* apn, const char* user = NULL,
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const char* pwd = NULL) {
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gprsDisconnect(); // Make sure we're not connected first
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// Define the PDP context
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// The CGDCONT commands set up the "external" PDP context
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// Set the external authentication
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if (user && strlen(user) > 0) {
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sendAT(GF("+CGAUTH=1,0,\""), user, GF("\",\""), pwd, '"');
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waitResponse();
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}
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// Define external PDP context 1
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sendAT(GF("+CGDCONT=1,\"IP\",\""), apn, '"', ",\"0.0.0.0\",0,0");
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waitResponse();
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// Configure TCP parameters
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// Select TCP/IP application mode (command mode)
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sendAT(GF("+CIPMODE=0"));
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waitResponse();
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// Set Sending Mode - send without waiting for peer TCP ACK
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sendAT(GF("+CIPSENDMODE=0"));
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waitResponse();
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// Configure socket parameters
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// AT+CIPCCFG= <NmRetry>, <DelayTm>, <Ack>, <errMode>, <HeaderType>,
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// <AsyncMode>, <TimeoutVal>
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// NmRetry = number of retransmission to be made for an IP packet
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// = 10 (default)
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// DelayTm = number of milliseconds to delay before outputting received data
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// = 0 (default)
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// Ack = sets whether reporting a string "Send ok" = 0 (don't report)
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// errMode = mode of reporting error result code = 0 (numberic values)
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// HeaderType = which data header of receiving data in multi-client mode
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// = 1 (+RECEIVE,<link num>,<data length>)
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// AsyncMode = sets mode of executing commands
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// = 0 (synchronous command executing)
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// TimeoutVal = minimum retransmission timeout in milliseconds = 75000
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sendAT(GF("+CIPCCFG=10,0,0,0,1,0,75000"));
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if (waitResponse() != 1) { return false; }
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// Configure timeouts for opening and closing sockets
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// AT+CIPTIMEOUT=<netopen_timeout> <cipopen_timeout>, <cipsend_timeout>
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sendAT(GF("+CIPTIMEOUT="), 75000, ',', 15000, ',', 15000);
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waitResponse();
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// Start the socket service
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// This activates and attaches to the external PDP context that is tied
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// to the embedded context for TCP/IP (ie AT+CGACT=1,1 and AT+CGATT=1)
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// Response may be an immediate "OK" followed later by "+NETOPEN: 0".
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// We to ignore any immediate response and wait for the
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// URC to show it's really connected.
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sendAT(GF("+NETOPEN"));
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if (waitResponse(75000L, GF(GSM_NL "+NETOPEN: 0")) != 1) { return false; }
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return true;
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}
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bool gprsDisconnectImpl() {
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// Close all sockets and stop the socket service
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// Note: On the LTE models, this single command closes all sockets and the
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// service
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sendAT(GF("+NETCLOSE"));
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if (waitResponse(60000L, GF(GSM_NL "+NETCLOSE: 0")) != 1) { return false; }
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return true;
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}
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bool isGprsConnectedImpl() {
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sendAT(GF("+NETOPEN?"));
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// May return +NETOPEN: 1, 0. We just confirm that the first number is 1
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if (waitResponse(GF(GSM_NL "+NETOPEN: 1")) != 1) { return false; }
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waitResponse();
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sendAT(GF("+IPADDR")); // Inquire Socket PDP address
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// sendAT(GF("+CGPADDR=1")); // Show PDP address
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if (waitResponse() != 1) { return false; }
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return true;
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}
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/*
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* SIM card functions
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*/
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protected:
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// Gets the CCID of a sim card via AT+CCID
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String getSimCCIDImpl() {
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sendAT(GF("+CICCID"));
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if (waitResponse(GF(GSM_NL "+ICCID:")) != 1) { return ""; }
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String res = stream.readStringUntil('\n');
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waitResponse();
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res.trim();
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return res;
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}
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/*
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* Phone Call functions
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*/
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protected:
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bool callAnswerImpl() TINY_GSM_ATTR_NOT_IMPLEMENTED;
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bool callNumberImpl(const String& number) TINY_GSM_ATTR_NOT_IMPLEMENTED;
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bool callHangupImpl() TINY_GSM_ATTR_NOT_IMPLEMENTED;
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bool dtmfSendImpl(char cmd,
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int duration_ms = 100) TINY_GSM_ATTR_NOT_IMPLEMENTED;
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/*
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* Messaging functions
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*/
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protected:
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// Follows all messaging functions per template
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/*
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* GSM Location functions
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*/
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protected:
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// Can return a GSM-based location from CLBS as per the template
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/*
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* GPS/GNSS/GLONASS location functions
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*/
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protected:
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// enable GPS
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bool enableGPSImpl() {
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sendAT(GF("+CGPS=1"));
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if (waitResponse() != 1) { return false; }
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return true;
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}
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bool disableGPSImpl() {
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sendAT(GF("+CGPS=0"));
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if (waitResponse() != 1) { return false; }
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return true;
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}
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// get the RAW GPS output
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String getGPSrawImpl() {
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sendAT(GF("+CGNSSINFO=32"));
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if (waitResponse(GF(GSM_NL "+CGNSSINFO:")) != 1) { return ""; }
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String res = stream.readStringUntil('\n');
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waitResponse();
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res.trim();
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return res;
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}
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// get GPS informations
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bool getGPSImpl(float* lat, float* lon, float* speed = 0, int* alt = 0,
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int* vsat = 0, int* usat = 0, float* accuracy = 0,
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int* year = 0, int* month = 0, int* day = 0, int* hour = 0,
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int* minute = 0, int* second = 0) {
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sendAT(GF("+CGNSSINFO"));
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if (waitResponse(GF(GSM_NL "+CGNSSINFO:")) != 1) { return false; }
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uint8_t fixMode = streamGetIntBefore(','); // mode 2=2D Fix or 3=3DFix
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// TODO(?) Can 1 be returned
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if (fixMode == 1 || fixMode == 2 || fixMode == 3) {
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// init variables
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float ilat = 0;
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float ilon = 0;
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float ispeed = 0;
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float ialt = 0;
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int ivsat = 0;
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int iusat = 0;
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float iaccuracy = 0;
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int iyear = 0;
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int imonth = 0;
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int iday = 0;
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int ihour = 0;
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int imin = 0;
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float secondWithSS = 0;
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streamSkipUntil(','); // GPS satellite valid numbers
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streamSkipUntil(','); // GLONASS satellite valid numbers
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streamSkipUntil(','); // BEIDOU satellite valid numbers
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ilat = streamGetFloatBefore(','); // Latitude
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streamSkipUntil(','); // N/S Indicator, N=north or S=south
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ilon = streamGetFloatBefore(','); // Longitude
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streamSkipUntil(','); // E/W Indicator, E=east or W=west
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// Date. Output format is ddmmyy
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iday = streamGetIntLength(2); // Two digit day
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imonth = streamGetIntLength(2); // Two digit month
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iyear = streamGetIntBefore(','); // Two digit year
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// UTC Time. Output format is hhmmss.s
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ihour = streamGetIntLength(2); // Two digit hour
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imin = streamGetIntLength(2); // Two digit minute
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secondWithSS =
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streamGetFloatBefore(','); // 4 digit second with subseconds
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ialt = streamGetFloatBefore(','); // MSL Altitude. Unit is meters
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ispeed = streamGetFloatBefore(','); // Speed Over Ground. Unit is knots.
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streamSkipUntil(','); // Course Over Ground. Degrees.
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streamSkipUntil(','); // After set, will report GPS every x seconds
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iaccuracy = streamGetFloatBefore(','); // Position Dilution Of Precision
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streamSkipUntil(','); // Horizontal Dilution Of Precision
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streamSkipUntil(','); // Vertical Dilution Of Precision
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streamSkipUntil('\n'); // TODO(?) is one more field reported??
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// Set pointers
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if (lat != NULL) *lat = ilat;
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if (lon != NULL) *lon = ilon;
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if (speed != NULL) *speed = ispeed;
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if (alt != NULL) *alt = static_cast<int>(ialt);
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if (vsat != NULL) *vsat = ivsat;
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if (usat != NULL) *usat = iusat;
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if (accuracy != NULL) *accuracy = iaccuracy;
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if (iyear < 2000) iyear += 2000;
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if (year != NULL) *year = iyear;
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if (month != NULL) *month = imonth;
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if (day != NULL) *day = iday;
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if (hour != NULL) *hour = ihour;
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if (minute != NULL) *minute = imin;
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if (second != NULL) *second = static_cast<int>(secondWithSS);
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|
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waitResponse();
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return true;
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}
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|
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waitResponse();
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return false;
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}
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|
|
|
/*
|
|
* Time functions
|
|
*/
|
|
protected:
|
|
// Can follow the standard CCLK function in the template
|
|
|
|
/*
|
|
* Battery functions
|
|
*/
|
|
protected:
|
|
// returns volts, multiply by 1000 to get mV
|
|
uint16_t getBattVoltageImpl() {
|
|
sendAT(GF("+CBC"));
|
|
if (waitResponse(GF(GSM_NL "+CBC:")) != 1) { return 0; }
|
|
|
|
// get voltage in VOLTS
|
|
float voltage = streamGetFloatBefore('\n');
|
|
// Wait for final OK
|
|
waitResponse();
|
|
// Return millivolts
|
|
uint16_t res = voltage * 1000;
|
|
return res;
|
|
}
|
|
|
|
int8_t getBattPercentImpl() TINY_GSM_ATTR_NOT_AVAILABLE;
|
|
|
|
uint8_t getBattChargeStateImpl() TINY_GSM_ATTR_NOT_AVAILABLE;
|
|
|
|
bool getBattStatsImpl(uint8_t& chargeState, int8_t& percent,
|
|
uint16_t& milliVolts) {
|
|
chargeState = 0;
|
|
percent = 0;
|
|
milliVolts = getBattVoltage();
|
|
return true;
|
|
}
|
|
|
|
/*
|
|
* Temperature functions
|
|
*/
|
|
|
|
// get temperature in degree celsius
|
|
uint16_t getTemperatureImpl() {
|
|
sendAT(GF("+CPMUTEMP"));
|
|
if (waitResponse(GF(GSM_NL "+CPMUTEMP:")) != 1) { return 0; }
|
|
// return temperature in C
|
|
uint16_t res = streamGetIntBefore('\n');
|
|
// Wait for final OK
|
|
waitResponse();
|
|
return res;
|
|
}
|
|
|
|
/*
|
|
* Client related functions
|
|
*/
|
|
protected:
|
|
bool modemConnect(const char* host, uint16_t port, uint8_t mux,
|
|
bool ssl = false, int timeout_s = 15) {
|
|
if (ssl) { DBG("SSL not yet supported on this module!"); }
|
|
// Make sure we'll be getting data manually on this connection
|
|
sendAT(GF("+CIPRXGET=1"));
|
|
if (waitResponse() != 1) { return false; }
|
|
|
|
// Establish a connection in multi-socket mode
|
|
uint32_t timeout_ms = ((uint32_t)timeout_s) * 1000;
|
|
sendAT(GF("+CIPOPEN="), mux, ',', GF("\"TCP"), GF("\",\""), host, GF("\","),
|
|
port);
|
|
// The reply is +CIPOPEN: ## of socket created
|
|
if (waitResponse(timeout_ms, GF(GSM_NL "+CIPOPEN:")) != 1) { return false; }
|
|
return true;
|
|
}
|
|
|
|
int16_t modemSend(const void* buff, size_t len, uint8_t mux) {
|
|
sendAT(GF("+CIPSEND="), mux, ',', (uint16_t)len);
|
|
if (waitResponse(GF(">")) != 1) { return 0; }
|
|
stream.write(reinterpret_cast<const uint8_t*>(buff), len);
|
|
stream.flush();
|
|
if (waitResponse(GF(GSM_NL "+CIPSEND:")) != 1) { return 0; }
|
|
streamSkipUntil(','); // Skip mux
|
|
streamSkipUntil(','); // Skip requested bytes to send
|
|
// TODO(?): make sure requested and confirmed bytes match
|
|
return streamGetIntBefore('\n');
|
|
}
|
|
|
|
size_t modemRead(size_t size, uint8_t mux) {
|
|
#ifdef TINY_GSM_USE_HEX
|
|
sendAT(GF("+CIPRXGET=3,"), mux, ',', (uint16_t)size);
|
|
if (waitResponse(GF("+CIPRXGET:")) != 1) { return 0; }
|
|
#else
|
|
sendAT(GF("+CIPRXGET=2,"), mux, ',', (uint16_t)size);
|
|
if (waitResponse(GF("+CIPRXGET:")) != 1) { return 0; }
|
|
#endif
|
|
streamSkipUntil(','); // Skip Rx mode 2/normal or 3/HEX
|
|
streamSkipUntil(','); // Skip mux/cid (connecion id)
|
|
int16_t len_requested = streamGetIntBefore(',');
|
|
// ^^ Requested number of data bytes (1-1460 bytes)to be read
|
|
int16_t len_confirmed = streamGetIntBefore('\n');
|
|
// ^^ The data length which not read in the buffer
|
|
for (int i = 0; i < len_requested; i++) {
|
|
uint32_t startMillis = millis();
|
|
#ifdef TINY_GSM_USE_HEX
|
|
while (stream.available() < 2 &&
|
|
(millis() - startMillis < sockets[mux]->_timeout)) {
|
|
TINY_GSM_YIELD();
|
|
}
|
|
char buf[4] = {
|
|
0,
|
|
};
|
|
buf[0] = stream.read();
|
|
buf[1] = stream.read();
|
|
char c = strtol(buf, NULL, 16);
|
|
#else
|
|
while (!stream.available() &&
|
|
(millis() - startMillis < sockets[mux]->_timeout)) {
|
|
TINY_GSM_YIELD();
|
|
}
|
|
char c = stream.read();
|
|
#endif
|
|
sockets[mux]->rx.put(c);
|
|
}
|
|
// DBG("### READ:", len_requested, "from", mux);
|
|
// sockets[mux]->sock_available = modemGetAvailable(mux);
|
|
sockets[mux]->sock_available = len_confirmed;
|
|
waitResponse();
|
|
return len_requested;
|
|
}
|
|
|
|
size_t modemGetAvailable(uint8_t mux) {
|
|
sendAT(GF("+CIPRXGET=4,"), mux);
|
|
size_t result = 0;
|
|
if (waitResponse(GF("+CIPRXGET:")) == 1) {
|
|
streamSkipUntil(','); // Skip mode 4
|
|
streamSkipUntil(','); // Skip mux
|
|
result = streamGetIntBefore('\n');
|
|
waitResponse();
|
|
}
|
|
// DBG("### Available:", result, "on", mux);
|
|
if (!result) { sockets[mux]->sock_connected = modemGetConnected(mux); }
|
|
return result;
|
|
}
|
|
|
|
bool modemGetConnected(uint8_t mux) {
|
|
// Read the status of all sockets at once
|
|
sendAT(GF("+CIPCLOSE?"));
|
|
if (waitResponse(GF("+CIPCLOSE:")) != 1) {
|
|
// return false; // TODO: Why does this not read correctly?
|
|
}
|
|
for (int muxNo = 0; muxNo < TINY_GSM_MUX_COUNT; muxNo++) {
|
|
// +CIPCLOSE:<link0_state>,<link1_state>,...,<link9_state>
|
|
sockets[muxNo]->sock_connected = stream.parseInt();
|
|
}
|
|
waitResponse(); // Should be an OK at the end
|
|
return sockets[mux]->sock_connected;
|
|
}
|
|
|
|
/*
|
|
* Utilities
|
|
*/
|
|
public:
|
|
// TODO(vshymanskyy): Optimize this!
|
|
int8_t waitResponse(uint32_t timeout_ms, String& data,
|
|
GsmConstStr r1 = GFP(GSM_OK),
|
|
GsmConstStr r2 = GFP(GSM_ERROR),
|
|
#if defined TINY_GSM_DEBUG
|
|
GsmConstStr r3 = GFP(GSM_CME_ERROR),
|
|
#else
|
|
GsmConstStr r3 = NULL,
|
|
#endif
|
|
GsmConstStr r4 = NULL, GsmConstStr r5 = NULL) {
|
|
/*String r1s(r1); r1s.trim();
|
|
String r2s(r2); r2s.trim();
|
|
String r3s(r3); r3s.trim();
|
|
String r4s(r4); r4s.trim();
|
|
String r5s(r5); r5s.trim();
|
|
DBG("### ..:", r1s, ",", r2s, ",", r3s, ",", r4s, ",", r5s);*/
|
|
data.reserve(64);
|
|
uint8_t index = 0;
|
|
uint32_t startMillis = millis();
|
|
do {
|
|
TINY_GSM_YIELD();
|
|
while (stream.available() > 0) {
|
|
TINY_GSM_YIELD();
|
|
int8_t a = stream.read();
|
|
if (a <= 0) continue; // Skip 0x00 bytes, just in case
|
|
data += static_cast<char>(a);
|
|
if (r1 && data.endsWith(r1)) {
|
|
index = 1;
|
|
goto finish;
|
|
} else if (r2 && data.endsWith(r2)) {
|
|
index = 2;
|
|
goto finish;
|
|
} else if (r3 && data.endsWith(r3)) {
|
|
#if defined TINY_GSM_DEBUG
|
|
if (r3 == GFP(GSM_CME_ERROR)) {
|
|
streamSkipUntil('\n'); // Read out the error
|
|
}
|
|
#endif
|
|
index = 3;
|
|
goto finish;
|
|
} else if (r4 && data.endsWith(r4)) {
|
|
index = 4;
|
|
goto finish;
|
|
} else if (r5 && data.endsWith(r5)) {
|
|
index = 5;
|
|
goto finish;
|
|
} else if (data.endsWith(GF(GSM_NL "+CIPRXGET:"))) {
|
|
int8_t mode = streamGetIntBefore(',');
|
|
if (mode == 1) {
|
|
int8_t mux = streamGetIntBefore('\n');
|
|
if (mux >= 0 && mux < TINY_GSM_MUX_COUNT && sockets[mux]) {
|
|
sockets[mux]->got_data = true;
|
|
}
|
|
data = "";
|
|
// DBG("### Got Data:", mux);
|
|
} else {
|
|
data += mode;
|
|
}
|
|
} else if (data.endsWith(GF(GSM_NL "+RECEIVE:"))) {
|
|
int8_t mux = streamGetIntBefore(',');
|
|
int16_t len = streamGetIntBefore('\n');
|
|
if (mux >= 0 && mux < TINY_GSM_MUX_COUNT && sockets[mux]) {
|
|
sockets[mux]->got_data = true;
|
|
sockets[mux]->sock_available = len;
|
|
}
|
|
data = "";
|
|
// DBG("### Got Data:", len, "on", mux);
|
|
} else if (data.endsWith(GF("+IPCLOSE:"))) {
|
|
int8_t mux = streamGetIntBefore(',');
|
|
streamSkipUntil('\n'); // Skip the reason code
|
|
if (mux >= 0 && mux < TINY_GSM_MUX_COUNT && sockets[mux]) {
|
|
sockets[mux]->sock_connected = false;
|
|
}
|
|
data = "";
|
|
DBG("### Closed: ", mux);
|
|
} else if (data.endsWith(GF("+CIPEVENT:"))) {
|
|
// Need to close all open sockets and release the network library.
|
|
// User will then need to reconnect.
|
|
DBG("### Network error!");
|
|
if (!isGprsConnected()) { gprsDisconnect(); }
|
|
data = "";
|
|
}
|
|
}
|
|
} while (millis() - startMillis < timeout_ms);
|
|
finish:
|
|
if (!index) {
|
|
data.trim();
|
|
if (data.length()) { DBG("### Unhandled:", data); }
|
|
data = "";
|
|
}
|
|
// data.replace(GSM_NL, "/");
|
|
// DBG('<', index, '>', data);
|
|
return index;
|
|
}
|
|
|
|
int8_t waitResponse(uint32_t timeout_ms, GsmConstStr r1 = GFP(GSM_OK),
|
|
GsmConstStr r2 = GFP(GSM_ERROR),
|
|
#if defined TINY_GSM_DEBUG
|
|
GsmConstStr r3 = GFP(GSM_CME_ERROR),
|
|
#else
|
|
GsmConstStr r3 = NULL,
|
|
#endif
|
|
GsmConstStr r4 = NULL, GsmConstStr r5 = NULL) {
|
|
String data;
|
|
return waitResponse(timeout_ms, data, r1, r2, r3, r4, r5);
|
|
}
|
|
|
|
int8_t waitResponse(GsmConstStr r1 = GFP(GSM_OK),
|
|
GsmConstStr r2 = GFP(GSM_ERROR),
|
|
#if defined TINY_GSM_DEBUG
|
|
GsmConstStr r3 = GFP(GSM_CME_ERROR),
|
|
#else
|
|
GsmConstStr r3 = NULL,
|
|
#endif
|
|
GsmConstStr r4 = NULL, GsmConstStr r5 = NULL) {
|
|
return waitResponse(1000, r1, r2, r3, r4, r5);
|
|
}
|
|
|
|
protected:
|
|
Stream& stream;
|
|
GsmClientSim7600* sockets[TINY_GSM_MUX_COUNT];
|
|
const char* gsmNL = GSM_NL;
|
|
};
|
|
|
|
#endif // SRC_TINYGSMCLIENTSIM7600_H_
|