pid::Parameters, CenterPoint: demote f32 fields to save config space
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c5c0ce5625
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58e648b5e0
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@ -103,7 +103,7 @@ impl Channels {
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CenterPoint::Vref =>
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CenterPoint::Vref =>
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state.vref,
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state.vref,
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CenterPoint::Override(center_point) =>
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CenterPoint::Override(center_point) =>
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ElectricPotential::new::<volt>(center_point),
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ElectricPotential::new::<volt>(center_point.into()),
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};
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};
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let r_sense = ElectricalResistance::new::<ohm>(R_SENSE);
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let r_sense = ElectricalResistance::new::<ohm>(R_SENSE);
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let (voltage, max) = self.get_dac(channel);
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let (voltage, max) = self.get_dac(channel);
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@ -137,7 +137,7 @@ impl Channels {
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CenterPoint::Vref =>
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CenterPoint::Vref =>
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state.vref,
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state.vref,
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CenterPoint::Override(center_point) =>
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CenterPoint::Override(center_point) =>
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ElectricPotential::new::<volt>(center_point),
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ElectricPotential::new::<volt>(center_point.into()),
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};
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};
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let r_sense = ElectricalResistance::new::<ohm>(R_SENSE);
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let r_sense = ElectricalResistance::new::<ohm>(R_SENSE);
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let voltage = i_tec * 10.0 * r_sense + center_point;
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let voltage = i_tec * 10.0 * r_sense + center_point;
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@ -126,7 +126,7 @@ pub enum PwmPin {
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#[derive(Debug, Clone, PartialEq, Serialize, Deserialize)]
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#[derive(Debug, Clone, PartialEq, Serialize, Deserialize)]
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pub enum CenterPoint {
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pub enum CenterPoint {
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Vref,
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Vref,
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Override(f64),
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Override(f32),
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}
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}
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#[derive(Debug, Clone, PartialEq)]
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#[derive(Debug, Clone, PartialEq)]
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@ -312,7 +312,7 @@ fn center_point(input: &[u8]) -> IResult<&[u8], Result<Command, Error>> {
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value(Ok(CenterPoint::Vref), tag("vref")),
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value(Ok(CenterPoint::Vref), tag("vref")),
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|input| {
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|input| {
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let (input, value) = float(input)?;
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let (input, value) = float(input)?;
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Ok((input, value.map(CenterPoint::Override)))
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Ok((input, value.map(|value| CenterPoint::Override(value as f32))))
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}
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}
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))(input)?;
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))(input)?;
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end(input)?;
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end(input)?;
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@ -37,7 +37,7 @@ impl Config {
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pub struct ChannelConfig {
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pub struct ChannelConfig {
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center: CenterPoint,
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center: CenterPoint,
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pid: pid::Parameters,
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pid: pid::Parameters,
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pid_target: f64,
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pid_target: f32,
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sh: steinhart_hart::Parameters,
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sh: steinhart_hart::Parameters,
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// TODO: pwm limits
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// TODO: pwm limits
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}
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}
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@ -47,7 +47,7 @@ impl ChannelConfig {
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ChannelConfig {
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ChannelConfig {
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center: state.center.clone(),
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center: state.center.clone(),
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pid: state.pid.parameters.clone(),
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pid: state.pid.parameters.clone(),
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pid_target: state.pid.target,
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pid_target: state.pid.target as f32,
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sh: state.sh.clone(),
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sh: state.sh.clone(),
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}
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}
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}
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}
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14
src/main.rs
14
src/main.rs
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@ -388,19 +388,19 @@ fn main() -> ! {
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pid.reset();
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pid.reset();
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}
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}
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KP =>
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KP =>
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pid.parameters.kp = value,
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pid.parameters.kp = value as f32,
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KI =>
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KI =>
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pid.parameters.ki = value,
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pid.parameters.ki = value as f32,
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KD =>
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KD =>
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pid.parameters.kd = value,
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pid.parameters.kd = value as f32,
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OutputMin =>
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OutputMin =>
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pid.parameters.output_min = value,
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pid.parameters.output_min = value as f32,
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OutputMax =>
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OutputMax =>
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pid.parameters.output_max = value,
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pid.parameters.output_max = value as f32,
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IntegralMin =>
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IntegralMin =>
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pid.parameters.integral_min = value,
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pid.parameters.integral_min = value as f32,
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IntegralMax =>
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IntegralMax =>
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pid.parameters.integral_max = value,
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pid.parameters.integral_max = value as f32,
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}
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}
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let _ = writeln!(socket, "PID parameter updated");
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let _ = writeln!(socket, "PID parameter updated");
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}
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}
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36
src/pid.rs
36
src/pid.rs
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@ -2,13 +2,13 @@ use serde::{Serialize, Deserialize};
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#[derive(Clone, Serialize, Deserialize)]
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#[derive(Clone, Serialize, Deserialize)]
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pub struct Parameters {
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pub struct Parameters {
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pub kp: f64,
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pub kp: f32,
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pub ki: f64,
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pub ki: f32,
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pub kd: f64,
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pub kd: f32,
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pub output_min: f64,
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pub output_min: f32,
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pub output_max: f64,
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pub output_max: f32,
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pub integral_min: f64,
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pub integral_min: f32,
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pub integral_max: f64
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pub integral_max: f32
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}
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}
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impl Default for Parameters {
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impl Default for Parameters {
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@ -50,32 +50,32 @@ impl Controller {
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let error = self.target - input;
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let error = self.target - input;
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// partial
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// partial
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let p = self.parameters.kp * error;
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let p = f64::from(self.parameters.kp) * error;
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//integral
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//integral
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self.integral += error;
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self.integral += error;
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if self.integral < self.parameters.integral_min {
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if self.integral < self.parameters.integral_min.into() {
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self.integral = self.parameters.integral_min;
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self.integral = self.parameters.integral_min.into();
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}
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}
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if self.integral > self.parameters.integral_max {
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if self.integral > self.parameters.integral_max.into() {
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self.integral = self.parameters.integral_max;
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self.integral = self.parameters.integral_max.into();
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}
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}
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let i = self.parameters.ki * self.integral;
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let i = f64::from(self.parameters.ki) * f64::from(self.integral);
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// derivative
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// derivative
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let d = match self.last_input {
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let d = match self.last_input {
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None => 0.0,
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None => 0.0,
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Some(last_input) => self.parameters.kd * (last_input - input)
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Some(last_input) => f64::from(self.parameters.kd) * (last_input - input)
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};
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};
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self.last_input = Some(input);
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self.last_input = Some(input);
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// output
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// output
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let mut output = p + i + d;
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let mut output = p + i + d;
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if output < self.parameters.output_min {
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if output < self.parameters.output_min.into() {
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output = self.parameters.output_min;
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output = self.parameters.output_min.into();
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}
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}
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if output > self.parameters.output_max {
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if output > self.parameters.output_max.into() {
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output = self.parameters.output_max;
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output = self.parameters.output_max.into();
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}
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}
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self.last_output = Some(output);
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self.last_output = Some(output);
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output
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output
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