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34c2da4484
Author | SHA1 | Date |
---|---|---|
Astro | 34c2da4484 | |
Astro | ba860e52ac | |
Astro | 38a220ce4e | |
Astro | fb5c7a84e9 | |
Astro | 7f8dd62a36 | |
Astro | a317eb60fd |
|
@ -6,6 +6,7 @@ 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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@ -44,8 +45,9 @@ impl<SPI: Transfer<u8>, S: OutputPin> Dac<SPI, S> {
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Ok(())
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}
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/// value: `0..0x20_000`
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pub fn set(&mut self, value: u32) -> Result<(), SPI::Error> {
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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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let buf = [
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(value >> 14) as u8,
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(value >> 6) as u8,
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|
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@ -43,7 +43,7 @@ impl<SPI: Transfer<u8, Error = E>, NSS: OutputPin, E: fmt::Debug> Adc<SPI, NSS>
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let mut adc_mode = <regs::AdcMode as Register>::Data::empty();
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adc_mode.set_ref_en(true);
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adc_mode.set_mode(Mode::ContinuousConversion);
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adc_mode.set_mode(Mode::Standby);
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adc.write_reg(®s::AdcMode, &mut adc_mode)?;
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Ok(adc)
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@ -96,16 +96,52 @@ impl<SPI: Transfer<u8, Error = E>, NSS: OutputPin, E: fmt::Debug> Adc<SPI, NSS>
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Ok(())
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}
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pub fn disable_channel(
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&mut self, index: u8
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) -> Result<(), SPI::Error> {
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self.update_reg(®s::Channel { index }, |data| {
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data.set_enabled(false);
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})?;
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Ok(())
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}
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pub fn disable_all_channels(&mut self) -> Result<(), SPI::Error> {
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for index in 0..4 {
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self.update_reg(®s::Channel { index }, |data| {
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data.set_enabled(false);
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})?;
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}
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Ok(())
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}
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/// Calibrates offset registers
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pub fn calibrate_offset(&mut self) -> Result<(), SPI::Error> {
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pub fn calibrate(&mut self) -> Result<(), SPI::Error> {
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// internal offset calibration
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self.update_reg(®s::AdcMode, |adc_mode| {
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adc_mode.set_mode(Mode::InternalOffsetCalibration);
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})?;
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while ! self.read_reg(®s::Status)?.ready() {}
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// system offset calibration
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self.update_reg(®s::AdcMode, |adc_mode| {
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adc_mode.set_mode(Mode::SystemOffsetCalibration);
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})?;
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while ! self.read_reg(®s::Status)?.ready() {}
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// system gain calibration
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self.update_reg(®s::AdcMode, |adc_mode| {
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adc_mode.set_mode(Mode::ContinuousConversion);
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adc_mode.set_mode(Mode::SystemGainCalibration);
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})?;
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while ! self.read_reg(®s::Status)?.ready() {}
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Ok(())
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}
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pub fn start_continuous_conversion(&mut self) -> Result<(), SPI::Error> {
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let mut adc_mode = <regs::AdcMode as Register>::Data::empty();
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adc_mode.set_ref_en(true);
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adc_mode.set_mode(Mode::ContinuousConversion);
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self.write_reg(®s::AdcMode, &mut adc_mode)?;
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Ok(())
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}
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@ -1,6 +1,9 @@
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use crate::pins::{ChannelPins, ChannelPinSet};
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use crate::channel_state::ChannelState;
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use crate::ad5680;
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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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pub struct Channel0;
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@ -11,24 +14,29 @@ pub struct Channel1;
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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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pub shdn: C::Shdn,
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pub ref_adc: C::RefAdc,
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pub ref_pin: C::RefPin,
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/// stm32f4 integrated adc
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pub adc: C::Adc,
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pub itec_pin: C::ItecPin,
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/// feedback from `dac` output
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pub dac_loopback_pin: C::DacLoopbackPin,
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}
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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(0);
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let _ = dac.set(Volts(0.0));
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Channel {
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state,
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dac,
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shdn: pins.shdn,
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ref_adc: pins.ref_adc,
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ref_pin: pins.ref_pin,
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adc: pins.adc,
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itec_pin: pins.itec_pin,
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dac_loopback_pin: pins.dac_loopback_pin,
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}
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}
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}
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@ -1,11 +1,16 @@
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use smoltcp::time::Instant;
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use crate::{ad5680, ad7172, pid, steinhart_hart as sh};
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use crate::{
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ad7172,
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pid,
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steinhart_hart as sh,
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units::Volts,
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};
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pub struct ChannelState {
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pub adc_data: Option<u32>,
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pub adc_time: Instant,
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pub dac_value: u32,
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pub dac_value: Volts,
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pub pid_engaged: bool,
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pub pid: pid::Controller,
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pub sh: sh::Parameters,
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@ -16,7 +21,7 @@ impl Default for ChannelState {
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ChannelState {
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adc_data: None,
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adc_time: Instant::from_secs(0),
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dac_value: 0,
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dac_value: Volts(0.0),
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pid_engaged: false,
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pid: pid::Controller::new(pid::Parameters::default()),
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sh: sh::Parameters::default(),
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@ -26,14 +31,13 @@ impl Default for ChannelState {
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impl ChannelState {
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/// Update PID state on ADC input, calculate new DAC output
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pub fn update_pid(&mut self, now: Instant, adc_data: u32) -> u32 {
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pub fn update_pid(&mut self, now: Instant, adc_data: u32) -> f64 {
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self.adc_data = Some(adc_data);
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self.adc_time = now;
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// Update PID controller
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let input = (adc_data as f64) / (ad7172::MAX_VALUE as f64);
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let temperature = self.sh.get_temperature(input);
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let output = self.pid.update(temperature);
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(output * (ad5680::MAX_VALUE as f64)) as u32
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self.pid.update(temperature)
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}
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}
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@ -5,6 +5,7 @@ use crate::{
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channel::{Channel, Channel0, Channel1},
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channel_state::ChannelState,
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pins,
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units::Volts,
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};
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pub const CHANNELS: usize = 2;
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@ -25,10 +26,22 @@ impl Channels {
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let mut adc = ad7172::Adc::new(pins.adc_spi, pins.adc_nss).unwrap();
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// Feature not used
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adc.set_sync_enable(false).unwrap();
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// Setup channels
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// Calibrate ADC channels individually
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adc.disable_all_channels().unwrap();
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adc.setup_channel(0, ad7172::Input::Ain0, ad7172::Input::Ain1).unwrap();
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adc.calibrate().unwrap();
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adc.disable_channel(0).unwrap();
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adc.setup_channel(1, ad7172::Input::Ain2, ad7172::Input::Ain3).unwrap();
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adc.calibrate().unwrap();
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adc.disable_channel(1).unwrap();
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// Setup channels and start ADC
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adc.setup_channel(0, ad7172::Input::Ain0, ad7172::Input::Ain1).unwrap();
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adc.setup_channel(1, ad7172::Input::Ain2, ad7172::Input::Ain3).unwrap();
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adc.calibrate_offset().unwrap();
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adc.start_continuous_conversion().unwrap();
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Channels { channel0, channel1, adc, pwm }
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}
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@ -58,7 +71,7 @@ impl Channels {
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};
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if let Some(dac_value) = dac_value {
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// Forward PID output to i_set DAC
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self.set_dac(channel.into(), dac_value);
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self.set_dac(channel.into(), Volts(dac_value));
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}
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channel
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@ -66,32 +79,62 @@ impl Channels {
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}
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/// i_set DAC
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pub fn set_dac(&mut self, channel: usize, duty: u32) {
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pub fn set_dac(&mut self, channel: usize, voltage: Volts) {
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match channel {
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0 => {
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self.channel0.dac.set(duty).unwrap();
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self.channel0.state.dac_value = duty;
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self.channel0.dac.set(voltage).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(duty).unwrap();
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self.channel1.state.dac_value = duty;
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self.channel1.dac.set(voltage).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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_ => unreachable!(),
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}
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}
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pub fn read_ref_adc(&mut self, channel: usize) -> u16 {
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pub fn read_dac_loopback(&mut self, channel: usize) -> Volts {
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match channel {
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0 => self.channel0.ref_adc.convert(
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&self.channel0.ref_pin,
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stm32f4xx_hal::adc::config::SampleTime::Cycles_480
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),
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1 => self.channel1.ref_adc.convert(
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&self.channel1.ref_pin,
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stm32f4xx_hal::adc::config::SampleTime::Cycles_480
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),
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0 => {
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let sample = self.channel0.adc.convert(
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&self.channel0.dac_loopback_pin,
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stm32f4xx_hal::adc::config::SampleTime::Cycles_480
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);
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let mv = self.channel0.adc.sample_to_millivolts(sample);
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Volts(mv as f64 / 1000.0)
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}
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1 => {
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let sample = self.channel1.adc.convert(
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&self.channel1.dac_loopback_pin,
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stm32f4xx_hal::adc::config::SampleTime::Cycles_480
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);
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let mv = self.channel1.adc.sample_to_millivolts(sample);
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Volts(mv as f64 / 1000.0)
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}
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_ => unreachable!(),
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}
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}
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pub fn read_itec(&mut self, channel: usize) -> Volts {
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match channel {
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0 => {
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let sample = self.channel0.adc.convert(
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&self.channel0.itec_pin,
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stm32f4xx_hal::adc::config::SampleTime::Cycles_480
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);
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let mv = self.channel0.adc.sample_to_millivolts(sample);
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Volts(mv as f64 / 1000.0)
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}
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1 => {
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let sample = self.channel1.adc.convert(
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&self.channel1.itec_pin,
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stm32f4xx_hal::adc::config::SampleTime::Cycles_480
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);
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let mv = self.channel1.adc.sample_to_millivolts(sample);
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Volts(mv as f64 / 1000.0)
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}
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_ => unreachable!(),
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}
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}
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|
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@ -142,7 +142,7 @@ pub enum Command {
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Pwm {
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channel: usize,
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pin: PwmPin,
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duty: u32,
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duty: f64,
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},
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/// Enable PID control for `i_set`
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PwmPid {
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|
@ -239,9 +239,9 @@ fn report(input: &[u8]) -> IResult<&[u8], Command> {
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)(input)
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}
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fn pwm_setup(input: &[u8]) -> IResult<&[u8], Result<(PwmPin, u32), Error>> {
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fn pwm_setup(input: &[u8]) -> IResult<&[u8], Result<(PwmPin, f64), Error>> {
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let result_with_pin = |pin: PwmPin|
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move |result: Result<u32, Error>|
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move |result: Result<f64, Error>|
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result.map(|duty| (pin, duty));
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alt((
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|
@ -250,7 +250,7 @@ fn pwm_setup(input: &[u8]) -> IResult<&[u8], Result<(PwmPin, u32), Error>> {
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tag("max_i_pos"),
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preceded(
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whitespace,
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unsigned
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float
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)
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),
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result_with_pin(PwmPin::MaxIPos)
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|
@ -260,7 +260,7 @@ fn pwm_setup(input: &[u8]) -> IResult<&[u8], Result<(PwmPin, u32), Error>> {
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tag("max_i_neg"),
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preceded(
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whitespace,
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unsigned
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float
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)
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),
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result_with_pin(PwmPin::MaxINeg)
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|
@ -270,12 +270,12 @@ fn pwm_setup(input: &[u8]) -> IResult<&[u8], Result<(PwmPin, u32), Error>> {
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tag("max_v"),
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preceded(
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whitespace,
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unsigned
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float
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)
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),
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result_with_pin(PwmPin::MaxV)
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),
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map(unsigned, result_with_pin(PwmPin::ISet)
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map(float, result_with_pin(PwmPin::ISet)
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))
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)(input)
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}
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|
|
39
src/main.rs
39
src/main.rs
|
@ -42,6 +42,8 @@ use session::{Session, SessionOutput};
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mod command_parser;
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use command_parser::{Command, ShowCommand, PwmPin};
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mod timer;
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mod units;
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use units::{Amps, Ohms, Volts};
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mod pid;
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mod steinhart_hart;
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mod channels;
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|
@ -141,12 +143,18 @@ fn main() -> ! {
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Command::Show(ShowCommand::Input) => {
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for channel in 0..CHANNELS {
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if let Some(adc_data) = channels.channel_state(channel).adc_data {
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let ref_adc_data = channels.read_ref_adc(channel);
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let dac_loopback = channels.read_dac_loopback(channel);
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let dac_i = dac_loopback / Ohms(5.0);
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let itec = channels.read_itec(channel);
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let tec_i = Amps((itec.0 - 1.5) / 8.0);
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let state = channels.channel_state(channel);
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let _ = writeln!(
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socket, "t={} raw{}=0x{:06X} ref_adc=0x{:X}",
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socket, "t={} raw{}=0x{:06X} dac_loopback={}/{} itec={} tec={}",
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state.adc_time, channel, adc_data,
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ref_adc_data
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dac_loopback, dac_i,
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itec, tec_i,
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);
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}
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}
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|
@ -186,7 +194,7 @@ fn main() -> ! {
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channel,
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if state.pid_engaged { "engaged" } else { "disengaged" }
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);
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let _ = writeln!(socket, "- i_set={}/{}", state.dac_value, ad5680::MAX_VALUE);
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let _ = writeln!(socket, "- i_set={}", state.dac_value);
|
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fn show_pwm_channel<S, P>(mut socket: S, name: &str, pin: &P)
|
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where
|
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S: core::fmt::Write,
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|
@ -250,21 +258,16 @@ fn main() -> ! {
|
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let _ = writeln!(socket, "channel {}: PID enabled to control PWM", channel
|
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);
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}
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Command::Pwm { channel, pin: PwmPin::ISet, duty } if duty <= ad5680::MAX_VALUE => {
|
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Command::Pwm { channel, pin: PwmPin::ISet, duty } => {
|
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channels.channel_state(channel).pid_engaged = false;
|
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channels.set_dac(channel, duty);
|
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let voltage = Volts(duty);
|
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channels.set_dac(channel, voltage);
|
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let _ = writeln!(
|
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socket, "channel {}: PWM duty cycle manually set to {}/{}",
|
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channel, duty, ad5680::MAX_VALUE
|
||||
socket, "channel {}: PWM duty cycle manually set to {}",
|
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channel, voltage
|
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);
|
||||
}
|
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Command::Pwm { pin: PwmPin::ISet, duty, .. } if duty > ad5680::MAX_VALUE => {
|
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let _ = writeln!(
|
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socket, "error: PWM duty range must not exceed {}",
|
||||
ad5680::MAX_VALUE
|
||||
);
|
||||
}
|
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Command::Pwm { channel, pin, duty } if duty <= 0xFFFF => {
|
||||
Command::Pwm { channel, pin, duty } => {
|
||||
let duty = duty as u16;
|
||||
|
||||
fn set_pwm_channel<P: hal::PwmPin<Duty=u16>>(pin: &mut P, duty: u16) -> u16 {
|
||||
|
@ -295,9 +298,6 @@ fn main() -> ! {
|
|||
channel, pin.name(), duty, max
|
||||
);
|
||||
}
|
||||
Command::Pwm { duty, .. } if duty > 0xFFFF => {
|
||||
let _ = writeln!(socket, "error: PWM duty range must fit 16 bits");
|
||||
}
|
||||
Command::Pid { channel, parameter, value } => {
|
||||
let pid = &mut channels.channel_state(channel).pid;
|
||||
use command_parser::PidParameter::*;
|
||||
|
@ -349,9 +349,6 @@ fn main() -> ! {
|
|||
}
|
||||
}
|
||||
}
|
||||
cmd => {
|
||||
let _ = writeln!(socket, "Not yet implemented: {:?}", cmd);
|
||||
}
|
||||
}
|
||||
Ok(SessionOutput::Error(e)) => {
|
||||
let _ = writeln!(socket, "Command error: {:?}", e);
|
||||
|
|
|
@ -16,7 +16,7 @@ impl Default for Parameters {
|
|||
ki: 0.05,
|
||||
kd: 0.45,
|
||||
output_min: 0.0,
|
||||
output_max: 1.0,
|
||||
output_max: 5.0,
|
||||
integral_min: 0.0,
|
||||
integral_max: 1.0,
|
||||
}
|
||||
|
|
44
src/pins.rs
44
src/pins.rs
|
@ -26,24 +26,27 @@ pub trait ChannelPins {
|
|||
type DacSpi: Transfer<u8>;
|
||||
type DacSync: OutputPin;
|
||||
type Shdn: OutputPin;
|
||||
type RefAdc;
|
||||
type RefPin;
|
||||
type Adc;
|
||||
type ItecPin;
|
||||
type DacLoopbackPin;
|
||||
}
|
||||
|
||||
impl ChannelPins for Channel0 {
|
||||
type DacSpi = Dac0Spi;
|
||||
type DacSync = PE4<Output<PushPull>>;
|
||||
type Shdn = PE10<Output<PushPull>>;
|
||||
type RefAdc = Adc<ADC1>;
|
||||
type RefPin = PA4<Analog>;
|
||||
type Adc = Adc<ADC1>;
|
||||
type ItecPin = PA6<Analog>;
|
||||
type DacLoopbackPin = PA4<Analog>;
|
||||
}
|
||||
|
||||
impl ChannelPins for Channel1 {
|
||||
type DacSpi = Dac1Spi;
|
||||
type DacSync = PF6<Output<PushPull>>;
|
||||
type Shdn = PE15<Output<PushPull>>;
|
||||
type RefAdc = Adc<ADC2>;
|
||||
type RefPin = PA5<Analog>;
|
||||
type Adc = Adc<ADC2>;
|
||||
type ItecPin = PB0<Analog>;
|
||||
type DacLoopbackPin = PA5<Analog>;
|
||||
}
|
||||
|
||||
/// SPI peripheral used for communication with the ADC
|
||||
|
@ -57,8 +60,9 @@ pub struct ChannelPinSet<C: ChannelPins> {
|
|||
pub dac_spi: C::DacSpi,
|
||||
pub dac_sync: C::DacSync,
|
||||
pub shdn: C::Shdn,
|
||||
pub ref_adc: C::RefAdc,
|
||||
pub ref_pin: C::RefPin,
|
||||
pub adc: C::Adc,
|
||||
pub itec_pin: C::ItecPin,
|
||||
pub dac_loopback_pin: C::DacLoopbackPin,
|
||||
}
|
||||
|
||||
pub struct Pins {
|
||||
|
@ -106,15 +110,17 @@ impl Pins {
|
|||
);
|
||||
let mut shdn0 = gpioe.pe10.into_push_pull_output();
|
||||
let _ = shdn0.set_low();
|
||||
let mut ref0_adc = Adc::adc1(adc1, true, Default::default());
|
||||
ref0_adc.enable();
|
||||
let ref0_pin = gpioa.pa4.into_analog();
|
||||
let mut adc0 = Adc::adc1(adc1, true, Default::default());
|
||||
adc0.enable();
|
||||
let itec0_pin = gpioa.pa6.into_analog();
|
||||
let dac_loopback0_pin = gpioa.pa4.into_analog();
|
||||
let channel0 = ChannelPinSet {
|
||||
dac_spi: dac0_spi,
|
||||
dac_sync: dac0_sync,
|
||||
shdn: shdn0,
|
||||
ref_adc: ref0_adc,
|
||||
ref_pin: ref0_pin,
|
||||
adc: adc0,
|
||||
itec_pin: itec0_pin,
|
||||
dac_loopback_pin: dac_loopback0_pin,
|
||||
};
|
||||
|
||||
let (dac1_spi, dac1_sync) = Self::setup_dac1(
|
||||
|
@ -123,15 +129,17 @@ impl Pins {
|
|||
);
|
||||
let mut shdn1 = gpioe.pe15.into_push_pull_output();
|
||||
let _ = shdn1.set_low();
|
||||
let mut ref1_adc = Adc::adc2(adc2, true, Default::default());
|
||||
ref1_adc.enable();
|
||||
let ref1_pin = gpioa.pa5.into_analog();
|
||||
let mut adc1 = Adc::adc2(adc2, true, Default::default());
|
||||
adc1.enable();
|
||||
let itec1_pin = gpiob.pb0.into_analog();
|
||||
let dac_loopback1_pin = gpioa.pa5.into_analog();
|
||||
let channel1 = ChannelPinSet {
|
||||
dac_spi: dac1_spi,
|
||||
dac_sync: dac1_sync,
|
||||
shdn: shdn1,
|
||||
ref_adc: ref1_adc,
|
||||
ref_pin: ref1_pin,
|
||||
adc: adc1,
|
||||
itec_pin: itec1_pin,
|
||||
dac_loopback_pin: dac_loopback1_pin,
|
||||
};
|
||||
|
||||
Pins {
|
||||
|
|
|
@ -0,0 +1,37 @@
|
|||
use core::{
|
||||
fmt,
|
||||
ops::Div,
|
||||
};
|
||||
|
||||
#[derive(Debug, Clone, Copy, PartialEq, PartialOrd)]
|
||||
pub struct Volts(pub f64);
|
||||
|
||||
impl fmt::Display for Volts {
|
||||
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
|
||||
write!(f, "{:.3}V", self.0)
|
||||
}
|
||||
}
|
||||
|
||||
impl Div<Ohms> for Volts {
|
||||
type Output = Amps;
|
||||
fn div(self, rhs: Ohms) -> Amps {
|
||||
Amps(self.0 / rhs.0)
|
||||
}
|
||||
}
|
||||
|
||||
#[derive(Debug, Clone, Copy, PartialEq, PartialOrd)]
|
||||
pub struct Amps(pub f64);
|
||||
|
||||
impl fmt::Display for Amps {
|
||||
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
|
||||
write!(f, "{:.3}A", self.0)
|
||||
}
|
||||
}
|
||||
#[derive(Debug, Clone, Copy, PartialEq, PartialOrd)]
|
||||
pub struct Ohms(pub f64);
|
||||
|
||||
impl fmt::Display for Ohms {
|
||||
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
|
||||
write!(f, "{:.3}Ω", self.0)
|
||||
}
|
||||
}
|
Loading…
Reference in New Issue