forked from M-Labs/thermostat
add Channels::calibrate_dac_value()
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70127491f6
commit
e6e150dac3
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@ -6,7 +6,6 @@ use stm32f4xx_hal::{
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time::MegaHertz,
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spi,
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};
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use crate::units::Volts;
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/// SPI Mode 1
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pub const SPI_MODE: spi::Mode = spi::Mode {
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@ -45,9 +44,7 @@ impl<SPI: Transfer<u8>, S: OutputPin> Dac<SPI, S> {
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Ok(())
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}
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pub fn set(&mut self, voltage: Volts) -> Result<(), SPI::Error> {
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let value = ((voltage.0 * (MAX_VALUE as f64) / 5.0) as u32)
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.min(MAX_VALUE);
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pub fn set(&mut self, value: u32) -> Result<(), SPI::Error> {
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let buf = [
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(value >> 14) as u8,
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(value >> 6) as u8,
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@ -2,7 +2,6 @@ use crate::{
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ad5680,
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channel_state::ChannelState,
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pins::{ChannelPins, ChannelPinSet},
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units::Volts,
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};
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/// Marker type for the first channel
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@ -16,6 +15,8 @@ pub struct Channel<C: ChannelPins> {
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pub state: ChannelState,
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/// for `i_set`
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pub dac: ad5680::Dac<C::DacSpi, C::DacSync>,
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/// 1 / Volts
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pub dac_factor: f64,
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pub shdn: C::Shdn,
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/// stm32f4 integrated adc
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pub adc: C::Adc,
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@ -30,11 +31,13 @@ impl<C: ChannelPins> Channel<C> {
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pub fn new(pins: ChannelPinSet<C>) -> Self {
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let state = ChannelState::default();
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let mut dac = ad5680::Dac::new(pins.dac_spi, pins.dac_sync);
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let _ = dac.set(Volts(0.0));
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let _ = dac.set(0);
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// sensible dummy preset. calibrate_i_set() must be used.
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let dac_factor = ad5680::MAX_VALUE as f64 / 5.0;
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Channel {
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state,
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dac,
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dac, dac_factor,
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shdn: pins.shdn,
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adc: pins.adc,
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vref_pin: pins.vref_pin,
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@ -1,6 +1,8 @@
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use stm32f4xx_hal::hal::digital::v2::OutputPin;
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use smoltcp::time::Instant;
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use log::info;
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use crate::{
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ad5680,
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ad7172,
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channel::{Channel, Channel0, Channel1},
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channel_state::ChannelState,
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@ -83,14 +85,21 @@ impl Channels {
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/// i_set DAC
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pub fn set_dac(&mut self, channel: usize, voltage: Volts) {
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let dac_factor = match channel.into() {
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0 => self.channel0.dac_factor,
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1 => self.channel1.dac_factor,
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_ => unreachable!(),
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};
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let value = (voltage.0 * dac_factor) as u32;
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info!("set_dac {} {}", voltage, value);
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match channel {
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0 => {
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self.channel0.dac.set(voltage).unwrap();
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self.channel0.dac.set(value).unwrap();
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self.channel0.state.dac_value = voltage;
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self.channel0.shdn.set_high().unwrap();
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}
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1 => {
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self.channel1.dac.set(voltage).unwrap();
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self.channel1.dac.set(value).unwrap();
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self.channel1.state.dac_value = voltage;
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self.channel1.shdn.set_high().unwrap();
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}
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@ -142,6 +151,7 @@ impl Channels {
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}
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}
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/// should be 1.5V
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pub fn read_vref(&mut self, channel: usize) -> Volts {
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match channel {
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0 => {
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@ -185,4 +195,44 @@ impl Channels {
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_ => unreachable!(),
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}
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}
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/// for i_set
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pub fn calibrate_dac_value(&mut self, channel: usize) {
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let vref = self.read_vref(channel);
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let mut best_value = 0;
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let mut best_error = Volts(100.0);
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for value in 1..=ad5680::MAX_VALUE {
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match channel {
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0 => {
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self.channel0.dac.set(value).unwrap();
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self.channel0.shdn.set_high().unwrap();
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}
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1 => {
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self.channel1.dac.set(value).unwrap();
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self.channel1.shdn.set_high().unwrap();
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}
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_ => unreachable!(),
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}
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let dac_feedback = self.read_dac_feedback(channel);
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let error = vref - dac_feedback;
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if error < Volts(0.0) {
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info!("calibration done at {} > {}", dac_feedback, vref);
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break;
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} else if error < best_error {
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best_value = value;
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best_error = error;
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}
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}
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self.set_dac(channel, Volts(0.0));
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info!("best dac value for {}: {}, itec={}", vref, best_value, self.read_itec(channel));
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let dac_factor = best_value as f64 / vref.0;
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match channel {
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0 => self.channel0.dac_factor = dac_factor,
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1 => self.channel1.dac_factor = dac_factor,
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_ => unreachable!(),
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}
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}
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}
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@ -96,6 +96,8 @@ fn main() -> ! {
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dp.ADC1, dp.ADC2, dp.ADC3,
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);
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let mut channels = Channels::new(pins);
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channels.calibrate_dac_value(0);
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timer::setup(cp.SYST, clocks);
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#[cfg(not(feature = "generate-hwaddr"))]
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