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add check_invariants
method
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parent
8db6d4bae2
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@ -11,6 +11,10 @@ use smallvec::SmallVec;
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mod tests;
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/// Stores a set of intervals on the indices.
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///
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/// The elements in `map` are sorted and non-adjacent, which means
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/// the second value of the previous element is *greater* than the
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/// first value of the following element.
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#[derive(Debug, Clone)]
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pub struct IntervalSet<I> {
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// Start, end
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@ -84,7 +88,7 @@ impl<I: Idx> IntervalSet<I> {
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// continue to the next range. We're looking here for the first
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// range which starts *non-adjacently* to our end.
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let next = self.map.partition_point(|r| r.0 <= end + 1);
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if let Some(right) = next.checked_sub(1) {
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let result = if let Some(right) = next.checked_sub(1) {
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let (prev_start, prev_end) = self.map[right];
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if prev_end + 1 >= start {
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// If the start for the inserted range is adjacent to the
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@ -99,7 +103,7 @@ impl<I: Idx> IntervalSet<I> {
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if left != right {
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self.map.drain(left..right);
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}
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return true;
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true
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} else {
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// We overlap with the previous range, increase it to
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// include us.
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@ -107,17 +111,17 @@ impl<I: Idx> IntervalSet<I> {
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// Make sure we're actually going to *increase* it though --
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// it may be that end is just inside the previously existing
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// set.
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return if end > prev_end {
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if end > prev_end {
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self.map[right].1 = end;
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true
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} else {
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false
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};
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}
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}
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} else {
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// Otherwise, we don't overlap, so just insert
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self.map.insert(right + 1, (start, end));
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return true;
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true
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}
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} else {
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if self.map.is_empty() {
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@ -127,8 +131,16 @@ impl<I: Idx> IntervalSet<I> {
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} else {
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self.map.insert(next, (start, end));
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}
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return true;
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}
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true
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};
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debug_assert!(
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self.check_invariants(),
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"wrong intervals after insert {:?}..={:?} to {:?}",
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start,
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end,
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self
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);
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result
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}
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pub fn contains(&self, needle: I) -> bool {
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@ -192,6 +204,7 @@ impl<I: Idx> IntervalSet<I> {
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pub fn insert_all(&mut self) {
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self.clear();
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self.map.push((0, self.domain.try_into().unwrap()));
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debug_assert!(self.check_invariants());
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}
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pub fn union(&mut self, other: &IntervalSet<I>) -> bool
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@ -203,8 +216,21 @@ impl<I: Idx> IntervalSet<I> {
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for range in other.iter_intervals() {
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did_insert |= self.insert_range(range);
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}
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debug_assert!(self.check_invariants());
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did_insert
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}
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// Check the intervals are valid, sorted and non-adjacent
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fn check_invariants(&self) -> bool {
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let mut current: Option<u32> = None;
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for (start, end) in &self.map {
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if start > end || current.map_or(false, |x| x + 1 >= *start) {
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return false;
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}
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current = Some(*end);
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}
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current.map_or(true, |x| x < self.domain as u32)
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}
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}
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/// This data structure optimizes for cases where the stored bits in each row
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