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|
| | use super::Point; |
| |
|
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| | |
| | |
| | pub trait Merge: Send + Sync { |
| | |
| | |
| | |
| | |
| | fn merge(&self, points: &[Point]) -> Point; |
| |
|
| | |
| | fn name(&self) -> &'static str; |
| | } |
| |
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| | |
| | #[derive(Clone, Copy, Debug, Default)] |
| | pub struct Mean; |
| |
|
| | impl Merge for Mean { |
| | fn merge(&self, points: &[Point]) -> Point { |
| | assert!(!points.is_empty(), "Cannot merge empty slice"); |
| |
|
| | let dims = points[0].dimensionality(); |
| | let n = points.len() as f32; |
| |
|
| | let mut result = vec![0.0; dims]; |
| | for p in points { |
| | assert_eq!( |
| | p.dimensionality(), |
| | dims, |
| | "All points must have same dimensionality" |
| | ); |
| | for (r, d) in result.iter_mut().zip(p.dims()) { |
| | *r += d / n; |
| | } |
| | } |
| |
|
| | Point::new(result) |
| | } |
| |
|
| | fn name(&self) -> &'static str { |
| | "mean" |
| | } |
| | } |
| |
|
| | |
| | |
| | |
| | |
| | #[derive(Clone, Debug)] |
| | pub struct WeightedMean { |
| | weights: Vec<f32>, |
| | } |
| |
|
| | impl WeightedMean { |
| | |
| | |
| | |
| | pub fn new(weights: Vec<f32>) -> Self { |
| | Self { weights } |
| | } |
| |
|
| | |
| | pub fn uniform(n: usize) -> Self { |
| | Self { |
| | weights: vec![1.0; n], |
| | } |
| | } |
| |
|
| | |
| | |
| | |
| | |
| | pub fn recency(n: usize, decay: f32) -> Self { |
| | let weights: Vec<f32> = (0..n).map(|i| decay.powi((n - 1 - i) as i32)).collect(); |
| | Self { weights } |
| | } |
| | } |
| |
|
| | impl Merge for WeightedMean { |
| | fn merge(&self, points: &[Point]) -> Point { |
| | assert!(!points.is_empty(), "Cannot merge empty slice"); |
| | assert_eq!( |
| | points.len(), |
| | self.weights.len(), |
| | "Number of points must match number of weights" |
| | ); |
| |
|
| | let dims = points[0].dimensionality(); |
| | let total_weight: f32 = self.weights.iter().sum(); |
| |
|
| | let mut result = vec![0.0; dims]; |
| | for (p, &w) in points.iter().zip(&self.weights) { |
| | assert_eq!( |
| | p.dimensionality(), |
| | dims, |
| | "All points must have same dimensionality" |
| | ); |
| | let normalized_w = w / total_weight; |
| | for (r, d) in result.iter_mut().zip(p.dims()) { |
| | *r += d * normalized_w; |
| | } |
| | } |
| |
|
| | Point::new(result) |
| | } |
| |
|
| | fn name(&self) -> &'static str { |
| | "weighted_mean" |
| | } |
| | } |
| |
|
| | |
| | |
| | |
| | |
| | #[derive(Clone, Copy, Debug, Default)] |
| | pub struct MaxPool; |
| |
|
| | impl Merge for MaxPool { |
| | fn merge(&self, points: &[Point]) -> Point { |
| | assert!(!points.is_empty(), "Cannot merge empty slice"); |
| |
|
| | let dims = points[0].dimensionality(); |
| | let mut result = points[0].dims().to_vec(); |
| |
|
| | for p in &points[1..] { |
| | assert_eq!( |
| | p.dimensionality(), |
| | dims, |
| | "All points must have same dimensionality" |
| | ); |
| | for (r, d) in result.iter_mut().zip(p.dims()) { |
| | *r = r.max(*d); |
| | } |
| | } |
| |
|
| | Point::new(result) |
| | } |
| |
|
| | fn name(&self) -> &'static str { |
| | "max_pool" |
| | } |
| | } |
| |
|
| | |
| | |
| | |
| | #[derive(Clone, Copy, Debug, Default)] |
| | pub struct MinPool; |
| |
|
| | impl Merge for MinPool { |
| | fn merge(&self, points: &[Point]) -> Point { |
| | assert!(!points.is_empty(), "Cannot merge empty slice"); |
| |
|
| | let dims = points[0].dimensionality(); |
| | let mut result = points[0].dims().to_vec(); |
| |
|
| | for p in &points[1..] { |
| | assert_eq!( |
| | p.dimensionality(), |
| | dims, |
| | "All points must have same dimensionality" |
| | ); |
| | for (r, d) in result.iter_mut().zip(p.dims()) { |
| | *r = r.min(*d); |
| | } |
| | } |
| |
|
| | Point::new(result) |
| | } |
| |
|
| | fn name(&self) -> &'static str { |
| | "min_pool" |
| | } |
| | } |
| |
|
| | |
| | |
| | |
| | #[derive(Clone, Copy, Debug, Default)] |
| | pub struct Sum; |
| |
|
| | impl Merge for Sum { |
| | fn merge(&self, points: &[Point]) -> Point { |
| | assert!(!points.is_empty(), "Cannot merge empty slice"); |
| |
|
| | let dims = points[0].dimensionality(); |
| | let mut result = vec![0.0; dims]; |
| |
|
| | for p in points { |
| | assert_eq!( |
| | p.dimensionality(), |
| | dims, |
| | "All points must have same dimensionality" |
| | ); |
| | for (r, d) in result.iter_mut().zip(p.dims()) { |
| | *r += d; |
| | } |
| | } |
| |
|
| | Point::new(result) |
| | } |
| |
|
| | fn name(&self) -> &'static str { |
| | "sum" |
| | } |
| | } |
| |
|
| | #[cfg(test)] |
| | mod tests { |
| | use super::*; |
| |
|
| | #[test] |
| | fn test_mean_single() { |
| | let points = vec![Point::new(vec![1.0, 2.0, 3.0])]; |
| | let merged = Mean.merge(&points); |
| | assert_eq!(merged.dims(), &[1.0, 2.0, 3.0]); |
| | } |
| |
|
| | #[test] |
| | fn test_mean_multiple() { |
| | let points = vec![ |
| | Point::new(vec![1.0, 2.0]), |
| | Point::new(vec![3.0, 4.0]), |
| | ]; |
| | let merged = Mean.merge(&points); |
| | assert_eq!(merged.dims(), &[2.0, 3.0]); |
| | } |
| |
|
| | #[test] |
| | fn test_weighted_mean() { |
| | let points = vec![ |
| | Point::new(vec![0.0, 0.0]), |
| | Point::new(vec![10.0, 10.0]), |
| | ]; |
| | |
| | let merger = WeightedMean::new(vec![1.0, 3.0]); |
| | let merged = merger.merge(&points); |
| | |
| | assert!((merged.dims()[0] - 7.5).abs() < 0.0001); |
| | assert!((merged.dims()[1] - 7.5).abs() < 0.0001); |
| | } |
| |
|
| | #[test] |
| | fn test_weighted_mean_recency() { |
| | let merger = WeightedMean::recency(3, 0.5); |
| | |
| | |
| | assert_eq!(merger.weights.len(), 3); |
| | assert!((merger.weights[0] - 0.25).abs() < 0.0001); |
| | assert!((merger.weights[1] - 0.5).abs() < 0.0001); |
| | assert!((merger.weights[2] - 1.0).abs() < 0.0001); |
| | } |
| |
|
| | #[test] |
| | fn test_max_pool() { |
| | let points = vec![ |
| | Point::new(vec![1.0, 5.0, 2.0]), |
| | Point::new(vec![3.0, 2.0, 4.0]), |
| | Point::new(vec![2.0, 3.0, 1.0]), |
| | ]; |
| | let merged = MaxPool.merge(&points); |
| | assert_eq!(merged.dims(), &[3.0, 5.0, 4.0]); |
| | } |
| |
|
| | #[test] |
| | fn test_min_pool() { |
| | let points = vec![ |
| | Point::new(vec![1.0, 5.0, 2.0]), |
| | Point::new(vec![3.0, 2.0, 4.0]), |
| | Point::new(vec![2.0, 3.0, 1.0]), |
| | ]; |
| | let merged = MinPool.merge(&points); |
| | assert_eq!(merged.dims(), &[1.0, 2.0, 1.0]); |
| | } |
| |
|
| | #[test] |
| | fn test_sum() { |
| | let points = vec![ |
| | Point::new(vec![1.0, 2.0]), |
| | Point::new(vec![3.0, 4.0]), |
| | ]; |
| | let merged = Sum.merge(&points); |
| | assert_eq!(merged.dims(), &[4.0, 6.0]); |
| | } |
| |
|
| | #[test] |
| | fn test_merge_names() { |
| | assert_eq!(Mean.name(), "mean"); |
| | assert_eq!(MaxPool.name(), "max_pool"); |
| | assert_eq!(MinPool.name(), "min_pool"); |
| | assert_eq!(Sum.name(), "sum"); |
| | } |
| |
|
| | #[test] |
| | #[should_panic(expected = "Cannot merge empty")] |
| | fn test_merge_empty_panics() { |
| | let points: Vec<Point> = vec![]; |
| | Mean.merge(&points); |
| | } |
| |
|
| | #[test] |
| | #[should_panic(expected = "same dimensionality")] |
| | fn test_merge_dimension_mismatch_panics() { |
| | let points = vec![ |
| | Point::new(vec![1.0, 2.0]), |
| | Point::new(vec![1.0, 2.0, 3.0]), |
| | ]; |
| | Mean.merge(&points); |
| | } |
| | } |
| |
|