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214 lines
5.7 KiB
214 lines
5.7 KiB
#include "mbed.h" |
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#include "lorawan/LoRaWANInterface.h" |
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#include "lorawan/system/lorawan_data_structures.h" |
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#include "events/EventQueue.h" |
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#include "lora_radio_helper.h" |
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#include "CayenneLPP.h" |
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#if MBED_CONF_APP_DHT_ENABLED |
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#include "DHT.h" |
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#endif |
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using namespace events; |
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uint8_t rx_buffer[LORAMAC_PHY_MAXPAYLOAD]; |
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/* |
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* Sets up an application dependent transmission timer in ms. Used only when Duty Cycling is off for testing |
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*/ |
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#define TX_TIMER 600000 |
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/** |
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* Maximum number of events for the event queue. |
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* 16 is the safe number for the stack events, however, if application |
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* also uses the queue for whatever purposes, this number should be increased.c |
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*/ |
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#define MAX_NUMBER_OF_EVENTS 16 |
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/** |
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* Maximum number of retries for CONFIRMED messages before giving up |
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*/ |
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#define CONFIRMED_MSG_RETRY_COUNTER 3 |
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static EventQueue ev_queue(MAX_NUMBER_OF_EVENTS * EVENTS_EVENT_SIZE); |
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static void lora_event_handler(lorawan_event_t event); |
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static LoRaWANInterface lorawan(radio); |
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static lorawan_app_callbacks_t callbacks; |
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static CayenneLPP cayenne(51); |
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#if MBED_CONF_APP_BATTERY_ENABLED |
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AnalogIn bat(MBED_CONF_APP_BATTERY_ADC); |
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#endif |
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#if MBED_CONF_APP_DHT_ENABLED |
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DHT dht(MBED_CONF_APP_DHT_DATA, MBED_CONF_APP_DHT_TYPE); |
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#endif |
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DigitalOut led(LED1, 1); |
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int main(void) { |
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lorawan_status_t retcode; |
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// Initialize LoRaWAN stack |
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if (lorawan.initialize(&ev_queue) != LORAWAN_STATUS_OK) { |
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printf("\r\n LoRa initialization failed! \r\n"); |
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return -1; |
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} |
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printf("\r\n Mbed LoRaWANStack initialized \r\n"); |
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callbacks.events = mbed::callback(lora_event_handler); |
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lorawan.add_app_callbacks(&callbacks); |
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// Set number of retries in case of CONFIRMED messages |
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if (lorawan.set_confirmed_msg_retries(CONFIRMED_MSG_RETRY_COUNTER) |
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!= LORAWAN_STATUS_OK) { |
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printf("\r\n set_confirmed_msg_retries failed! \r\n\r\n"); |
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return -1; |
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} |
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printf("\r\n CONFIRMED message retries : %d \r\n", |
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CONFIRMED_MSG_RETRY_COUNTER); |
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// Enable adaptive data rate |
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if (lorawan.enable_adaptive_datarate() != LORAWAN_STATUS_OK) { |
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printf("\r\n enable_adaptive_datarate failed! \r\n"); |
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return -1; |
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} |
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printf("\r\n Adaptive data rate (ADR) - Enabled \r\n"); |
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led = 0; |
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retcode = lorawan.connect(); |
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if (retcode == LORAWAN_STATUS_OK || |
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retcode == LORAWAN_STATUS_CONNECT_IN_PROGRESS) { |
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} else { |
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printf("\r\n Connection error, code = %d \r\n", retcode); |
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return -1; |
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} |
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printf("\r\n Connection - In Progress ...\r\n"); |
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// make your event queue dispatching events forever |
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ev_queue.dispatch_forever(); |
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return 0; |
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} |
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/** |
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* Sends a message to the Network Server |
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*/ |
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static void send_message() |
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{ |
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int16_t retcode; |
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#if MBED_CONF_APP_BATTERY_ENABLED |
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float vbat = bat.read(); |
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vbat = vbat*5/3*3.3f; |
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cayenne.addAnalogInput(1, vbat); |
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#endif |
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#if MBED_CONF_APP_DHT_ENABLED |
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int err = dht.read(); |
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if (err == DHT::SUCCESS) { |
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cayenne.addTemperature(1, dht.getTemperature()); |
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cayenne.addRelativeHumidity(2, dht.getHumidity()); |
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} else { |
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printf("Error code : %d\r\n", err); |
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} |
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#endif |
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// No data to send |
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if (cayenne.getSize() == 0) { |
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return; |
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} |
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retcode = lorawan.send(MBED_CONF_LORA_APP_PORT, cayenne.getBuffer(), cayenne.getSize(), |
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MSG_UNCONFIRMED_FLAG); |
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if (retcode < 0) { |
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retcode == LORAWAN_STATUS_WOULD_BLOCK ? printf("send - WOULD BLOCK\r\n") |
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: printf("\r\n send() - Error code %d \r\n", retcode); |
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return; |
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} |
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printf("\r\n %d bytes scheduled for transmission \r\n", retcode); |
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cayenne.reset(); |
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} |
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/** |
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* Receive a message from the Network Server |
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*/ |
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static void receive_message() |
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{ |
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int16_t retcode; |
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retcode = lorawan.receive(MBED_CONF_LORA_APP_PORT, rx_buffer, |
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LORAMAC_PHY_MAXPAYLOAD, |
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MSG_CONFIRMED_FLAG|MSG_UNCONFIRMED_FLAG); |
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if (retcode < 0) { |
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printf("\r\n receive() - Error code %d \r\n", retcode); |
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return; |
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} |
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printf(" Data:"); |
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for (uint8_t i = 0; i < retcode; i++) { |
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printf("%x", rx_buffer[i]); |
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} |
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printf("\r\n Data Length: %d\r\n", retcode); |
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memset(rx_buffer, 0, LORAMAC_PHY_MAXPAYLOAD); |
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} |
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static void lora_event_handler(lorawan_event_t event) |
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{ |
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switch (event) { |
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case CONNECTED: |
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led = 1; |
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printf("\r\n Connection - Successful \r\n"); |
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if (MBED_CONF_LORA_DUTY_CYCLE_ON) { |
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send_message(); |
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} else { |
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ev_queue.call_every(TX_TIMER, send_message); |
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} |
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break; |
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case DISCONNECTED: |
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ev_queue.break_dispatch(); |
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printf("\r\n Disconnected Successfully \r\n"); |
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break; |
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case TX_DONE: |
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printf("\r\n Message Sent to Network Server \r\n"); |
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if (MBED_CONF_LORA_DUTY_CYCLE_ON) { |
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send_message(); |
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} |
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break; |
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case TX_TIMEOUT: |
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case TX_ERROR: |
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case TX_CRYPTO_ERROR: |
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case TX_SCHEDULING_ERROR: |
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printf("\r\n Transmission Error - EventCode = %d \r\n", event); |
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// try again |
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if (MBED_CONF_LORA_DUTY_CYCLE_ON) { |
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send_message(); |
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} |
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break; |
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case RX_DONE: |
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printf("\r\n Received message from Network Server \r\n"); |
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receive_message(); |
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break; |
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case RX_TIMEOUT: |
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case RX_ERROR: |
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printf("\r\n Error in reception - Code = %d \r\n", event); |
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break; |
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case JOIN_FAILURE: |
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printf("\r\n OTAA Failed - Check Keys \r\n"); |
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break; |
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default: |
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MBED_ASSERT("Unknown Event"); |
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} |
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} |