lora: Improve TX/RX parameters
Match the settings used in the C driver
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parent
84240d49ea
commit
60ca5e8479
1 changed files with 40 additions and 42 deletions
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@ -69,8 +69,7 @@ impl<'d, RS: RadioSwitch> SubGhzRadio<'d, RS> {
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/// Perform a transmission with the given parameters and payload. Returns any time adjustements needed form
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/// the upcoming RX window start.
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async fn do_tx(&mut self, config: TxConfig, buf: &[u8]) -> Result<u32, RadioError> {
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trace!("TX Request: {}", config);
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//trace!("TX START");
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trace!("TX request: {}", config);
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self.switch.set_tx();
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self.radio
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@ -87,33 +86,26 @@ impl<'d, RS: RadioSwitch> SubGhzRadio<'d, RS> {
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self.radio.set_lora_packet_params(&packet_params)?;
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let irq_cfg = CfgIrq::new()
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.irq_enable_all(Irq::TxDone)
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.irq_enable_all(Irq::RxDone)
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.irq_enable_all(Irq::Timeout);
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let irq_cfg = CfgIrq::new().irq_enable_all(Irq::TxDone).irq_enable_all(Irq::Timeout);
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self.radio.set_irq_cfg(&irq_cfg)?;
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self.radio.set_buffer_base_address(0, 0)?;
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self.radio.write_buffer(0, buf)?;
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self.radio.set_tx(Timeout::DISABLED)?;
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// The maximum airtime for any LoRaWAN package is 2793.5ms.
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// The value of 4000ms is copied from C driver and gives us a good safety margin.
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self.radio.set_tx(Timeout::from_millis_sat(4000))?;
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trace!("TX started");
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loop {
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let (_status, irq_status) = self.irq_wait().await;
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if irq_status & Irq::TxDone.mask() != 0 {
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let stats = self.radio.lora_stats()?;
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let (status, error_mask) = self.radio.op_error()?;
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trace!(
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"TX done. Stats: {:?}. OP error: {:?}, mask {:?}",
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stats,
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status,
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error_mask
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);
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trace!("TX done");
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return Ok(0);
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} else if irq_status & Irq::Timeout.mask() != 0 {
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trace!("TX timeout");
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}
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if irq_status & Irq::Timeout.mask() != 0 {
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return Err(RadioError);
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}
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}
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@ -121,10 +113,15 @@ impl<'d, RS: RadioSwitch> SubGhzRadio<'d, RS> {
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fn set_lora_mod_params(&mut self, config: RfConfig) -> Result<(), Error> {
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let mod_params = LoRaModParams::new()
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.set_sf(convert_spreading_factor(config.spreading_factor))
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.set_bw(convert_bandwidth(config.bandwidth))
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.set_sf(convert_spreading_factor(&config.spreading_factor))
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.set_bw(convert_bandwidth(&config.bandwidth))
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.set_cr(CodingRate::Cr45)
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.set_ldro_en(true);
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.set_ldro_en(matches!(
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(config.spreading_factor, config.bandwidth),
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(SpreadingFactor::_12, Bandwidth::_125KHz)
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| (SpreadingFactor::_12, Bandwidth::_250KHz)
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| (SpreadingFactor::_11, Bandwidth::_125KHz)
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));
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self.radio.set_lora_mod_params(&mod_params)
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}
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@ -132,8 +129,7 @@ impl<'d, RS: RadioSwitch> SubGhzRadio<'d, RS> {
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/// be able to hold a single LoRaWAN packet.
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async fn do_rx(&mut self, config: RfConfig, buf: &mut [u8]) -> Result<(usize, RxQuality), RadioError> {
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assert!(buf.len() >= 255);
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trace!("RX START");
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// trace!("Starting RX: {}", config);
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trace!("RX request: {}", config);
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self.switch.set_rx();
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self.radio.set_rf_frequency(&RfFreq::from_frequency(config.frequency))?;
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@ -144,41 +140,41 @@ impl<'d, RS: RadioSwitch> SubGhzRadio<'d, RS> {
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.set_preamble_len(8)
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.set_header_type(HeaderType::Variable)
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.set_payload_len(0xFF)
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.set_crc_en(true)
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.set_crc_en(false)
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.set_invert_iq(true);
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self.radio.set_lora_packet_params(&packet_params)?;
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let irq_cfg = CfgIrq::new()
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.irq_enable_all(Irq::RxDone)
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//.irq_enable_all(Irq::PreambleDetected)
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.irq_enable_all(Irq::PreambleDetected)
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.irq_enable_all(Irq::HeaderValid)
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.irq_enable_all(Irq::HeaderErr)
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.irq_enable_all(Irq::Timeout)
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.irq_enable_all(Irq::Err);
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.irq_enable_all(Irq::Err)
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.irq_enable_all(Irq::Timeout);
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self.radio.set_irq_cfg(&irq_cfg)?;
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self.radio.set_rx(Timeout::DISABLED)?;
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self.radio.set_buffer_base_address(0, 0)?;
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self.radio
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.set_rx(Timeout::from_millis_sat(self.get_rx_window_duration_ms()))?;
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trace!("RX started");
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loop {
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let (status, irq_status) = self.irq_wait().await;
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let (_status, irq_status) = self.irq_wait().await;
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trace!("RX IRQ {:?}, {:?}", status, irq_status);
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if irq_status & Irq::RxDone.mask() != 0 {
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let (status, len, ptr) = self.radio.rx_buffer_status()?;
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let (_status, len, ptr) = self.radio.rx_buffer_status()?;
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let packet_status = self.radio.lora_packet_status()?;
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let rssi = packet_status.rssi_pkt().to_integer();
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let snr = packet_status.snr_pkt().to_integer();
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trace!(
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"RX done. Received {} bytes. RX status: {:?}. Pkt status: {:?}",
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len,
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status.cmd(),
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packet_status,
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);
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self.radio.read_buffer(ptr, &mut buf[..len as usize])?;
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self.radio.set_standby(StandbyClk::Rc)?;
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trace!("RX done: {=[u8]:#02X}", &mut buf[..len as usize]);
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return Ok((len as usize, RxQuality::new(rssi, snr as i8)));
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} else if irq_status & (Irq::Timeout.mask() | Irq::TxDone.mask()) != 0 {
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}
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if irq_status & Irq::Timeout.mask() != 0 {
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return Err(RadioError);
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}
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}
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@ -194,7 +190,9 @@ impl<'d, RS: RadioSwitch> SubGhzRadio<'d, RS> {
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self.radio
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.clear_irq_status(irq_status)
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.expect("error clearing irq status");
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trace!("IRQ status: {=u16:b}", irq_status);
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trace!("SUGHZ IRQ 0b{=u16:b}, {:?}", irq_status, status);
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if irq_status == 0 {
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Poll::Pending
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} else {
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@ -268,7 +266,7 @@ pub trait RadioSwitch {
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fn set_tx(&mut self);
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}
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fn convert_spreading_factor(sf: SpreadingFactor) -> SF {
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fn convert_spreading_factor(sf: &SpreadingFactor) -> SF {
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match sf {
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SpreadingFactor::_7 => SF::Sf7,
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SpreadingFactor::_8 => SF::Sf8,
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@ -279,7 +277,7 @@ fn convert_spreading_factor(sf: SpreadingFactor) -> SF {
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}
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}
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fn convert_bandwidth(bw: Bandwidth) -> LoRaBandwidth {
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fn convert_bandwidth(bw: &Bandwidth) -> LoRaBandwidth {
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match bw {
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Bandwidth::_125KHz => LoRaBandwidth::Bw125,
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Bandwidth::_250KHz => LoRaBandwidth::Bw250,
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