Fanspeeds as floats, 0 is lowest speed, bugfixes
1. The fanspeeds can now be specified as floats for better granularity 2. Removed 4 as the lowest possible speed. Lowest possible value is now 0.0 3. min and max values are now correctly read for pwm1 and not the rpm values of fan1 anymore 4. Percentage speed now gets correctly converted to the pwm values (usually between 0 and 255) 5. Before the update of the pwm-value was skipped when the current speed was below minimum or above maximum. This got removed. Why was that there in the first place? 6. Simpler algorithm for speed_for_temp 7. in monitor the min value is now actually below MIN and the max value below MAX. Before it was swapped 8. Fixed grammar error "can's" instead of "can't"
This commit is contained in:
parent
0794605006
commit
90e212a158
2
Cargo.lock
generated
2
Cargo.lock
generated
@ -1,7 +1,5 @@
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# This file is automatically @generated by Cargo.
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# It is not intended for manual editing.
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version = 3
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[[package]]
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name = "aho-corasick"
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version = "0.7.18"
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16
README.md
16
README.md
@ -35,35 +35,35 @@ cards = ["card0"]
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[[speed_matrix]]
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temp = 4.0
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speed = 4
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speed = 4.0
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[[speed_matrix]]
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temp = 30.0
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speed = 33
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speed = 33.0
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[[speed_matrix]]
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temp = 45.0
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speed = 50
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speed = 50.0
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[[speed_matrix]]
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temp = 60.0
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speed = 66
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speed = 66.0
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[[speed_matrix]]
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temp = 65.0
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speed = 69
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speed = 69.0
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[[speed_matrix]]
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temp = 70.0
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speed = 75
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speed = 75.0
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[[speed_matrix]]
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temp = 75.0
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speed = 89
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speed = 89.0
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[[speed_matrix]]
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temp = 80.0
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speed = 100
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speed = 100.0
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```
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## :bookmark: License
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102
src/config.rs
102
src/config.rs
@ -87,7 +87,7 @@ impl Serialize for Card {
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#[derive(Serialize, Deserialize, Debug, Clone)]
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pub struct MatrixPoint {
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pub temp: f64,
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pub speed: u32,
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pub speed: f64,
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}
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#[derive(Serialize, Deserialize, Debug, Copy, Clone)]
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@ -119,6 +119,12 @@ impl From<LogLevel> for LevelFilter {
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}
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}
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// linear mapping between two points
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fn linear_map(x: f64, x1: f64, y1: f64, x2: f64, y2: f64) -> f64 {
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let m = (y2 - y1) / (x2 - x1);
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m * (x - x1) + y1
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}
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#[derive(Serialize, Deserialize, Debug)]
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pub struct Config {
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log_level: LogLevel,
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@ -131,54 +137,29 @@ impl Config {
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&self.cards
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}
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pub fn speed_for_temp(&self, temp: f64) -> u32 {
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pub fn speed_for_temp(&self, temp: f64) -> f64 {
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let idx = match self.speed_matrix.iter().rposition(|p| p.temp <= temp) {
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Some(idx) => idx,
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_ => return 4,
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_ => return self.min_speed(),
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};
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match (idx, self.speed_matrix.len() - 1) {
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(0, _) => self.min_speed(),
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(current, max) if current == max => self.max_speed(),
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_ => {
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if self.is_exact_point(idx, temp) {
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return self.speed_matrix.get(idx).map(|p| p.speed).unwrap_or(4);
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}
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let max = match self.speed_matrix.get(idx + 1) {
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Some(p) => p,
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_ => return 4,
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};
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let min = match self.speed_matrix.get(idx) {
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Some(p) => p,
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_ => return 4,
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};
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let speed_diff = max.speed as f64 - min.speed as f64;
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let temp_diff = max.temp as f64 - min.temp as f64;
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let increase_by =
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(((temp as f64 - min.temp as f64) / temp_diff) * speed_diff).round();
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min.speed + increase_by as u32
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}
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if idx == self.speed_matrix.len() - 1 {
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return self.max_speed();
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}
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linear_map(temp, self.speed_matrix[idx].temp, self.speed_matrix[idx].speed, self.speed_matrix[idx+1].temp, self.speed_matrix[idx+1].speed)
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}
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pub fn log_level(&self) -> LogLevel {
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self.log_level
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}
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fn min_speed(&self) -> u32 {
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self.speed_matrix.first().map(|p| p.speed).unwrap_or(4)
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fn min_speed(&self) -> f64 {
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self.speed_matrix.first().map(|p| p.speed).unwrap_or(0f64)
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}
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fn max_speed(&self) -> u32 {
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self.speed_matrix.last().map(|p| p.speed).unwrap_or(100)
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}
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fn is_exact_point(&self, idx: usize, temp: f64) -> bool {
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static DELTA: f64 = 0.001f64;
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self.speed_matrix
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.get(idx)
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.map(|p| p.temp - DELTA < temp && p.temp + DELTA > temp)
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.unwrap_or(false)
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fn max_speed(&self) -> f64 {
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self.speed_matrix.last().map(|p| p.speed).unwrap_or(100f64)
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}
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}
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@ -190,35 +171,35 @@ impl Default for Config {
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speed_matrix: vec![
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MatrixPoint {
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temp: 4f64,
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speed: 4,
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speed: 4f64,
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},
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MatrixPoint {
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temp: 30f64,
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speed: 33,
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speed: 33f64,
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},
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MatrixPoint {
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temp: 45f64,
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speed: 50,
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speed: 50f64,
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},
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MatrixPoint {
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temp: 60f64,
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speed: 66,
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speed: 66f64,
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},
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MatrixPoint {
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temp: 65f64,
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speed: 69,
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speed: 69f64,
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},
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MatrixPoint {
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temp: 70f64,
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speed: 75,
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speed: 75f64,
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},
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MatrixPoint {
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temp: 75f64,
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speed: 89,
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speed: 89f64,
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},
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MatrixPoint {
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temp: 80f64,
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speed: 100,
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speed: 100f64,
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},
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],
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}
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@ -239,24 +220,15 @@ pub fn load_config() -> std::io::Result<Config> {
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}
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};
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if config.speed_matrix.iter().fold(
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1000,
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|n, point| if point.speed < n { point.speed } else { n },
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) < 4
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{
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log::error!("Due to driver bug lowest fan speed must be greater or equal 4");
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return Err(std::io::Error::from(ErrorKind::InvalidData));
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}
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let mut last_point: Option<&MatrixPoint> = None;
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for matrix_point in config.speed_matrix.iter() {
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if matrix_point.speed <= 0 {
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log::error!("Fan speed can's be below 0 found {}", matrix_point.speed);
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if matrix_point.speed < 0f64 {
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log::error!("Fan speed can't be below 0.0 found {}", matrix_point.speed);
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return Err(std::io::Error::from(ErrorKind::InvalidData));
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}
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if matrix_point.speed > 100 {
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log::error!("Fan speed can's be above 100 found {}", matrix_point.speed);
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if matrix_point.speed > 100f64 {
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log::error!("Fan speed can't be above 100.0 found {}", matrix_point.speed);
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return Err(std::io::Error::from(ErrorKind::InvalidData));
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}
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if let Some(last_point) = last_point {
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@ -317,13 +289,13 @@ mod speed_for_temp {
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#[test]
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fn below_minimal() {
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let config = Config::default();
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assert_eq!(config.speed_for_temp(1f64), 4);
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assert_eq!(config.speed_for_temp(1f64), 4f64);
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}
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#[test]
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fn minimal() {
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let config = Config::default();
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assert_eq!(config.speed_for_temp(4f64), 4);
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assert_eq!(config.speed_for_temp(4f64), 4f64);
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}
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#[test]
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@ -331,7 +303,7 @@ mod speed_for_temp {
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let config = Config::default();
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// 45 -> 50
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// 60 -> 66
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assert_eq!(config.speed_for_temp(46f64), 51);
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assert_eq!(config.speed_for_temp(46f64).round(), 51f64);
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}
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#[test]
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@ -339,7 +311,7 @@ mod speed_for_temp {
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let config = Config::default();
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// 45 -> 50
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// 60 -> 66
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assert_eq!(config.speed_for_temp(58f64), 64);
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assert_eq!(config.speed_for_temp(58f64).round(), 64f64);
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}
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#[test]
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@ -347,24 +319,24 @@ mod speed_for_temp {
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let config = Config::default();
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// 45 -> 50
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// 60 -> 66
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assert_eq!(config.speed_for_temp(59f64), 65);
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assert_eq!(config.speed_for_temp(59f64).round(), 65f64);
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}
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#[test]
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fn average() {
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let config = Config::default();
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assert_eq!(config.speed_for_temp(60f64), 66);
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assert_eq!(config.speed_for_temp(60f64), 66f64);
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}
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#[test]
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fn max() {
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let config = Config::default();
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assert_eq!(config.speed_for_temp(80f64), 100);
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assert_eq!(config.speed_for_temp(80f64), 100f64);
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}
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#[test]
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fn above_max() {
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let config = Config::default();
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assert_eq!(config.speed_for_temp(160f64), 100);
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assert_eq!(config.speed_for_temp(160f64), 100f64);
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}
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}
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62
src/main.rs
62
src/main.rs
@ -3,6 +3,7 @@ mod config;
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extern crate log;
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use std::io::ErrorKind;
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use std::cmp::{min, max};
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use crate::config::{load_config, Card, Config};
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use gumdrop::Options;
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@ -25,8 +26,8 @@ pub enum AmdFanError {
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pub struct HwMon {
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card: Card,
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name: String,
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fan_min: Option<u32>,
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fan_max: Option<u32>,
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pwm_min: Option<u32>,
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pwm_max: Option<u32>,
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}
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impl HwMon {
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@ -34,8 +35,8 @@ impl HwMon {
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Self {
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card: card.clone(),
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name: String::from(name),
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fan_min: None,
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fan_max: None,
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pwm_min: None,
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pwm_max: None,
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}
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}
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@ -51,33 +52,33 @@ impl HwMon {
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self.read("name")
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}
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pub fn fan_min(&mut self) -> u32 {
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if self.fan_min.is_none() {
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self.fan_min = Some(
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self.read("fan1_min")
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pub fn pwm_min(&mut self) -> u32 {
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if self.pwm_min.is_none() {
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self.pwm_min = Some(
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self.read("pwm1_min")
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.unwrap_or_default()
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.parse()
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.unwrap_or(0),
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)
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};
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self.fan_min.unwrap_or(0)
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self.pwm_min.unwrap_or(0)
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}
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pub fn fan_max(&mut self) -> u32 {
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if self.fan_max.is_none() {
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self.fan_max = Some(
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self.read("fan1_max")
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pub fn pwm_max(&mut self) -> u32 {
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if self.pwm_max.is_none() {
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self.pwm_max = Some(
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self.read("pwm1_max")
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.unwrap_or_default()
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.parse()
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.unwrap_or(255),
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)
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};
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self.fan_max.unwrap_or(255)
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self.pwm_max.unwrap_or(255)
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}
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pub fn fan_speed(&self) -> std::io::Result<u64> {
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self.read("fan1_input")?.parse().map_err(|_e| {
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log::warn!("Read from gpu monitor failed. Invalid fan speed");
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pub fn pwm(&self) -> std::io::Result<u32> {
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self.read("pwm1")?.parse().map_err(|_e| {
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log::warn!("Read from gpu monitor failed. Invalid pwm value");
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std::io::Error::from(ErrorKind::InvalidInput)
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})
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}
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@ -115,11 +116,19 @@ impl HwMon {
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self.write("pwm1_enable", 2)
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}
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pub fn set_speed(&self, speed: u64) -> std::io::Result<()> {
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pub fn set_pwm(&self, value: u32) -> std::io::Result<()> {
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if self.is_fan_automatic() {
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self.set_manual()?;
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}
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self.write("pwm1", speed)
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self.write("pwm1", value as u64)
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}
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pub fn set_speed(&mut self, speed: f64) -> std::io::Result<()> {
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let mut pwm = (speed / 100f64 * 255f64).round() as u32;
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// stay in the range
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pwm = max(pwm, self.pwm_min());
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pwm = min(pwm, self.pwm_max());
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self.set_pwm(pwm)
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}
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fn read(&self, name: &str) -> std::io::Result<String> {
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@ -289,11 +298,8 @@ fn service(config: Config) -> std::io::Result<()> {
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let gpu_temp = controller.hw_mon.gpu_temp().unwrap_or_default();
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let speed = config.speed_for_temp(gpu_temp);
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if controller.hw_mon.fan_min() > speed || controller.hw_mon.fan_max() < speed {
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continue;
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}
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if let Err(e) = controller.hw_mon.set_speed(speed as u64) {
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if let Err(e) = controller.hw_mon.set_speed(speed) {
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log::error!("Failed to change speed to {}. {:?}", speed, e);
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}
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controller.last_temp = gpu_temp;
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@ -342,15 +348,15 @@ fn monitor_cards(config: Config) -> std::io::Result<()> {
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print!("{esc}[2J{esc}[1;1H", esc = 27 as char);
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for card in controllers.iter_mut() {
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println!(
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"Card {:3} | Temp | fan speed | MAX | MIN ",
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"Card {:3} | Temp | current PWM | MIN | MAX ",
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card.hw_mon.card.0
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);
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println!(
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" | {:>5.2} | {:>9} | {:>4} | {:>4}",
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" | {:>5.2} | {:>11} | {:>4} | {:>4}",
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card.hw_mon.gpu_temp().unwrap_or_default(),
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card.hw_mon.fan_speed().unwrap_or_default(),
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card.hw_mon.fan_min(),
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card.hw_mon.fan_max(),
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card.hw_mon.pwm().unwrap_or_default(),
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card.hw_mon.pwm_min(),
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card.hw_mon.pwm_max(),
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);
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}
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std::thread::sleep(std::time::Duration::from_secs(4));
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Block a user