Initial implementation of IndexedBinaryHeap sift functions
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846a5424de
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1 changed files with 70 additions and 3 deletions
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@ -1,7 +1,7 @@
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use std::{collections::HashMap, hash::Hash};
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use std::{collections::HashMap, hash::Hash};
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use crate::backing::{
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use crate::backing::{
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containers::{Pair, SiftResult},
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containers::{Pair, SiftError, SiftResult},
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indexed::IndexedBacking,
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indexed::IndexedBacking,
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};
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};
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@ -24,11 +24,78 @@ impl<D: Hash + Eq + Clone + Send + Sync, P: PartialOrd + Clone + Send + Sync>
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}
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}
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fn sift_up(&mut self, i: usize) -> SiftResult {
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fn sift_up(&mut self, i: usize) -> SiftResult {
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todo!()
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print!("{i}");
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if i == 0 {
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// Base case, at root so nothing to do
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Ok(())
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} else if let Some(child) = self.data.get(i).cloned() {
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let parent_index = (i - 1) / 2;
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// Check if the heap property is violated
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if child < self.data[parent_index] {
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(self.data[i], self.data[parent_index]) =
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(self.data[parent_index].clone(), self.data[i].clone());
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self.indices.insert(self.data[i].clone().data(), i).unwrap();
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self.indices
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.insert(self.data[parent_index].clone().data(), parent_index)
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.unwrap();
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self.sift_up(parent_index)
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} else {
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// Sift complete
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Ok(())
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}
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} else {
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// Tried to sift a non-existent index
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Err(SiftError::new(i, self.data.len()))
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}
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}
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}
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fn sift_down(&mut self, i: usize) -> SiftResult {
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fn sift_down(&mut self, i: usize) -> SiftResult {
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todo!()
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print!("{i}");
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if i > self.data.len() {
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// Tried to sift a non-existent index
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Err(SiftError::new(i, self.data.len()))
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} else {
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if let Some(first_child) = self.data.get(i * 2 + 1).cloned() {
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let smaller_child_index;
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let smaller_child;
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// Find the smallest child and its index
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if let Some(second_child) = self.data.get(i * 2 + 2).cloned() {
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// Both children, use the smaller one
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if first_child < second_child {
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smaller_child = first_child;
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smaller_child_index = i * 2 + 1;
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} else {
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smaller_child = second_child;
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smaller_child_index = i * 2 + 2;
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}
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} else {
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// Only one child, no choice
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smaller_child = first_child;
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smaller_child_index = i * 2 + 1;
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}
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if smaller_child < self.data[i] {
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// Swap parent with child
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self.data[smaller_child_index] = self.data[i].clone();
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self.indices.insert(
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self.data[smaller_child_index].clone().data(),
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smaller_child_index,
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);
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self.data[i] = smaller_child.clone();
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self.indices.insert(smaller_child.data(), i);
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// Repeat process with child
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self.sift_down(smaller_child_index)
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} else {
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// Heap property satisfied, we're done
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Ok(())
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}
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} else {
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// Base case, no children so nothing to do
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Ok(())
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}
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}
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}
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}
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fn delete_pair(&mut self, i: usize) -> Option<Pair<D, P>> {
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fn delete_pair(&mut self, i: usize) -> Option<Pair<D, P>> {
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