// AT command set console running on the device UART to communicate with // an attached LoRa device. // // Computer <-> UART <-> MCU <-> SPI <-> SX126x/SX127x // // Connect using default baudrate for this hardware, 8-N-1 with your terminal program. // For details on the AT command set, see: // https://files.seeedstudio.com/products/317990687/res/LoRa-E5%20AT%20Command%20Specification_V1.0%20.pdf package main import ( "machine" "time" "tinygo.org/x/drivers/examples/lora/lorawan/common" "tinygo.org/x/drivers/lora" "tinygo.org/x/drivers/lora/lorawan" "tinygo.org/x/drivers/lora/lorawan/region" ) // change these to test a different UART or pins if available var ( uart = machine.Serial tx = machine.UART_TX_PIN rx = machine.UART_RX_PIN input = make([]byte, 0, 64) radio lora.Radio session *lorawan.Session otaa *lorawan.Otaa defaultTimeout uint32 = 1000 ) var reg string func main() { uart.Configure(machine.UARTConfig{TX: tx, RX: rx}) var err error radio, err = common.SetupLora() if err != nil { fail(err.Error()) } session = &lorawan.Session{} otaa = &lorawan.Otaa{} lorawan.UseRadio(radio) switch reg { case "AU915": lorawan.UseRegionSettings(region.AU915()) case "EU868": lorawan.UseRegionSettings(region.EU868()) case "US915": lorawan.UseRegionSettings(region.US915()) default: lorawan.UseRegionSettings(region.EU868()) } for { if uart.Buffered() > 0 { data, _ := uart.ReadByte() switch data { case 13: // return key if err := parse(input); err != nil { uart.Write([]byte("ERROR: ")) uart.Write([]byte(err.Error())) crlf() } input = input[:0] default: // just capture the character input = append(input, data) } } time.Sleep(10 * time.Millisecond) } } func fail(msg string) { for { uart.Write([]byte(msg)) crlf() time.Sleep(time.Minute) } }