MultiTech / Mbed OS mDot_LoRa_Connect_Example_CUSTOM_AS923

Dependencies:   libmDot-Custom

Fork of mDot_LoRa_Connect_Example by MultiTech

The project is a starting point for the AS923 channel plan.

Default frequencies are 923.2 and 923.4 Join Datarate is set to DR2:SF10BW125 Additional channels can be added in JoinAccept message or through new channel mac commands

New MAC commands in LoRaWAN 1.02 have NOT been included to set the DwellTime and MaxEIRP Overriding this function is available to someone who would like to do this. virtual uint8_t HandleMacCommands(uint8_t* payload, uint8_t index, uint8_t end_index);

main.cpp

Committer:
mfiore
Date:
2015-08-25
Revision:
2:6e2c378339d9
Parent:
0:09250cd371d2
Child:
4:36e214ebfa56

File content as of revision 2:6e2c378339d9:

#include "mbed.h"
#include "mDot.h"
#include <string>
#include <vector>
#include "MTSLog.h"

// these options must match the settings on your Conduit
// uncomment the following lines and edit their values to match your configuration
//static std::string config_network_name = "<lora network id>";
//static std::string config_network_pass = "<lora network key>";
//static uint8_t config_frequency_sub_band = 1;

int main() {
    int32_t ret;
    mDot* dot;
    std::vector<uint8_t> data;
    std::string data_str = "hello world!";
    
    // get a mDot handle
    dot = mDot::getInstance();
    
    // print library version information
    logInfo("version: %s", dot->getId().c_str());

    //*******************************************
    // configuration
    //*******************************************
    // reset to default config so we know what state we're in
    dot->resetConfig();
    
    dot->setLogLevel(mts::MTSLog::TRACE_LEVEL);

    // set up the mDot with our network information: frequency sub band, network name, and network password
    // these can all be saved in NVM so they don't need to be set every time - see mDot::saveConfig()
    logInfo("setting frequency sub band");
    if ((ret = dot->setFrequencySubBand(config_frequency_sub_band)) != mDot::MDOT_OK) {
        logError("failed to set frequency sub band %d:%s", ret, mDot::getReturnCodeString(ret).c_str());
    }
    logInfo("setting network name");
    if ((ret = dot->setNetworkName(config_network_name)) != mDot::MDOT_OK) {
        logError("failed to set network name %d:%s", ret, mDot::getReturnCodeString(ret).c_str());
    }
    logInfo("setting network password");
    if ((ret = dot->setNetworkPassphrase(config_network_pass)) != mDot::MDOT_OK) {
        logError("failed to set network password %d:%s", ret, mDot::getReturnCodeString(ret).c_str());
    }
    logInfo("saving config");
    if (! dot->saveConfig()) {
        logError("failed to save configuration");
    }
    //*******************************************
    // end of configuration
    //*******************************************

    // attempt to join the network
    logInfo("joining network");
    while ((ret = dot->joinNetwork()) != mDot::MDOT_OK) {
        logError("failed to join network %d:%s", ret, mDot::getReturnCodeString(ret).c_str());
        wait(2);
    }

    // format data for sending to the gateway
    for (std::string::iterator it = data_str.begin(); it != data_str.end(); it++)
        data.push_back((uint8_t) *it);

    while (true) {
        // send the data
        // ACKs are enabled by default, so we're expecting to get one back
        if ((ret = dot->send(data)) != mDot::MDOT_OK) {
            logError("failed to send", ret, mDot::getReturnCodeString(ret).c_str());
        } else {
            logInfo("successfully sent data to gateway");
        }

        wait(5);
    }

    return 0;
}