Files
tinygo-projects/lilygo-t3s3-sx128x/main.go
T
Joel Wetzell f0f9262ba5 update example
2026-05-09 08:58:02 -05:00

251 lines
6.9 KiB
Go

package main
import (
"errors"
"machine"
"sync/atomic"
"time"
"github.com/jwetzell/osc-go"
"tinygo.org/x/drivers/sx128x"
)
type LoRaConfig struct {
Frequency uint32
Power int8
RadioRamp sx128x.RadioRampTime
RegulatorMode sx128x.RegulatorMode
SpreadingFactor sx128x.LoRaSpreadingFactor
Bandwidth sx128x.LoRaBandwidth
CodingRate sx128x.LoRaCodingRate
PreambleLength uint32
HeaderType sx128x.LoRaHeaderType
CrcType sx128x.LoRaCrcType
IqType sx128x.LoRaIqType
SyncWord uint16
}
func main() {
time.Sleep(3 * time.Second)
led := machine.GPIO37
led.Configure(machine.PinConfig{Mode: machine.PinOutput})
spi := machine.SPI0
spi.Configure(machine.SPIConfig{
Mode: 0,
Frequency: 8 * 1e6,
SDO: machine.GPIO6,
SDI: machine.GPIO3,
SCK: machine.GPIO5,
})
nssPin := machine.GPIO7
nssPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
nssPin.Set(true)
resetPin := machine.GPIO8
resetPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
resetPin.Set(true)
busyPin := machine.GPIO36
busyPin.Configure(machine.PinConfig{Mode: machine.PinInput})
button := machine.GPIO0
button.Configure(machine.PinConfig{Mode: machine.PinInput})
buttonPressed := atomic.Bool{}
buttonPressed.Store(false)
button.SetInterrupt(machine.PinFalling, func(machine.Pin) {
println("button interrupt")
buttonPressed.Store(true)
})
println("initializing radio...")
radio := sx128x.New(
spi,
nssPin,
resetPin,
busyPin,
)
dio1Pin := machine.GPIO9
dio1Pin.Configure(machine.PinConfig{Mode: machine.PinInput})
txDone := atomic.Bool{}
txDone.Store(true)
rxDone := atomic.Bool{}
rxDone.Store(true)
timeout := atomic.Bool{}
timeout.Store(true)
dio1Interrupt := atomic.Bool{}
dio1Interrupt.Store(false)
dio1Pin.SetInterrupt(machine.PinRising, func(machine.Pin) {
dio1Interrupt.Store(true)
})
loraConfig := LoRaConfig{
Frequency: 2400000000, // 2.4Ghz
Power: 13, // dBm
RadioRamp: sx128x.RADIO_RAMP_02_US, // 2 microsecond ramp time
RegulatorMode: sx128x.REGULATOR_DC_DC,
SpreadingFactor: sx128x.LORA_SF_9,
Bandwidth: sx128x.LORA_BW_1600,
CodingRate: sx128x.LORA_CR_4_7,
PreambleLength: 12,
HeaderType: sx128x.LORA_HEADER_EXPLICIT,
CrcType: sx128x.LORA_CRC_DISABLE,
IqType: sx128x.LORA_IQ_STD,
SyncWord: 0x1424, // the default private sync word
}
radio.WaitWhileBusy(time.Second)
SetupLora(radio, loraConfig)
oscMessage := osc.OSCMessage{
Address: "/cue/1/go",
Args: []osc.OSCArg{},
}
for {
if dio1Interrupt.Load() {
irqStatus, _ := radio.GetIrqStatus()
if irqStatus&sx128x.IRQ_TX_DONE_MASK != 0 {
txDone.Store(true)
timeout.Store(false)
led.Set(false)
println("tx done")
}
if irqStatus&sx128x.IRQ_RX_DONE_MASK != 0 {
rxDone.Store(true)
timeout.Store(false)
led.Set(true)
}
if irqStatus&sx128x.IRQ_RX_TX_TIMEOUT_MASK != 0 {
timeout.Store(true)
txDone.Store(true)
rxDone.Store(true)
}
dio1Interrupt.Store(false)
}
if txDone.Load() && buttonPressed.Load() {
txDone.Store(false)
buttonPressed.Store(false)
radio.ClearIrqStatus(sx128x.IRQ_ALL_MASK)
radio.SetStandby(sx128x.STANDBY_RC)
led.Set(true)
bytes, err := oscMessage.ToBytes()
if err != nil {
println("failed to serialize OSC message:", err)
continue
}
if len(bytes) > 255 {
println("OSC message exceeds maximum length of 255 bytes")
continue
}
err = Tx(radio, loraConfig, bytes)
if err != nil {
println("failed to enter transmit:", err)
}
println("transmit started")
}
// if rxDone.Load() {
// rxDone.Store(false)
// if !timeout.Load() {
// rxLength, rxPointer := radio.GetRxBufferStatus()
// rxData := radio.ReadBuffer(rxPointer, rxLength)
// oscMessage, err := osc.MessageFromBytes(rxData)
// if err != nil {
// println("failed to parse OSC message:", err)
// } else {
// println("received OSC message with address:", oscMessage.Address)
// for i, arg := range oscMessage.Args {
// println("arg", i, "type:", arg.Type, "value:", arg.Value)
// }
// }
// led.Set(false)
// }
// Rx(radio, loraConfig)
// }
}
}
func SetupLora(radio *sx128x.Device, config LoRaConfig) {
// Switch to standby prior to configuration changes
circuitMode, _, _ := radio.GetStatus()
if circuitMode != sx128x.CIRCUIT_MODE_STDBY_RC {
radio.SetStandby(sx128x.STANDBY_RC)
}
// Clear errors, disable radio interrupts for the moment
radio.SetPacketType(sx128x.PACKET_TYPE_LORA)
radio.SetCadParams(uint8(sx128x.LORA_CAD_08_SYMBOLS))
radio.SetRegulatorMode(sx128x.REGULATOR_DC_DC)
radio.SetRfFrequency(config.Frequency)
radio.SetModulationParamsLoRa(config.SpreadingFactor, config.Bandwidth, config.CodingRate)
data := [1]uint8{}
if config.SpreadingFactor == sx128x.LORA_SF_5 || config.SpreadingFactor == sx128x.LORA_SF_6 {
data[0] = 0x1E
} else if config.SpreadingFactor == sx128x.LORA_SF_7 || config.SpreadingFactor == sx128x.LORA_SF_8 {
data[0] = 0x37
} else {
data[0] = 0x32
}
radio.WriteRegister(0x925, data[:])
existing, _ := radio.ReadRegister(0x93C)
data[0] = existing | 0x01
radio.WriteRegister(0x93C, data[:])
radio.SetTxParams(config.Power, sx128x.RADIO_RAMP_02_US)
radio.SetPacketParamsLoRa(config.PreambleLength, config.HeaderType, 0xFF, config.CrcType, config.IqType)
var syncWord [2]uint8
syncWord[0] = uint8(config.SyncWord >> 8)
syncWord[1] = uint8(config.SyncWord & 0x00FF)
radio.WriteRegister(sx128x.REG_LORA_SYNC_WORD_MSB, syncWord[:])
}
func checkStatus(radio *sx128x.Device, operation string) {
circuitMode, commandStatus, _ := radio.GetStatus()
if commandStatus != sx128x.COMMAND_STATUS_SUCCESS {
println(operation, "-> failed with status:", commandStatus)
}
if circuitMode != sx128x.CIRCUIT_MODE_STDBY_RC {
println(operation, "-> entered circuit mode:", circuitMode)
}
}
func Tx(radio *sx128x.Device, loraConfig LoRaConfig, data []byte) error {
if len(data) > 255 {
return errors.New("data length exceeds maximum of 255 bytes")
}
radio.SetStandby(sx128x.STANDBY_RC)
radio.SetPacketParamsLoRa(loraConfig.PreambleLength, loraConfig.HeaderType, uint8(len(data)&0xFF), loraConfig.CrcType, loraConfig.IqType)
radio.SetBufferBaseAddress(0, 0)
radio.WriteBuffer(0, data)
radio.SetDioIrqParams(sx128x.IRQ_TX_DONE_MASK|sx128x.IRQ_RX_TX_TIMEOUT_MASK, sx128x.IRQ_TX_DONE_MASK|sx128x.IRQ_RX_TX_TIMEOUT_MASK, 0x00, 0x00)
radio.ClearIrqStatus(sx128x.IRQ_ALL_MASK)
radio.SetTx(sx128x.PERIOD_BASE_4_MS, 250)
return nil
}
func Rx(radio *sx128x.Device, loraConfig LoRaConfig) {
radio.SetStandby(sx128x.STANDBY_RC)
radio.SetDioIrqParams(sx128x.IRQ_RX_DONE_MASK|sx128x.IRQ_RX_TX_TIMEOUT_MASK, sx128x.IRQ_RX_DONE_MASK|sx128x.IRQ_RX_TX_TIMEOUT_MASK, 0x00, 0x00)
radio.SetBufferBaseAddress(0, 0)
radio.ClearIrqStatus(sx128x.IRQ_ALL_MASK)
radio.SetRfFrequency(loraConfig.Frequency)
radio.SetRx(sx128x.PERIOD_BASE_4_MS, 250)
}