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2022/4-ran
| Author | SHA1 | Date | |
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| f904d050cc |
@@ -1,3 +1,5 @@
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use std::ops::RangeInclusive;
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use anyhow::Result;
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use nom::bytes::complete::tag;
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use nom::character::complete::newline;
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@@ -7,40 +9,18 @@ use nom::sequence::separated_pair;
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use nom::sequence::terminated;
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use nom::IResult;
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use crate::common::minmax;
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use crate::common::parse_input;
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#[derive(Copy, Clone, PartialOrd, PartialEq)]
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struct Assignment(u32, u32);
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type Assignment = RangeInclusive<u32>;
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impl Assignment {
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fn one_contains(self, other: Self) -> bool {
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let (first, second) = minmax(self, other);
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if second.0 == first.0 {
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first.1 <= second.1
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} else {
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second.0 <= first.1 && second.1 <= first.1
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}
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}
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fn one_overlaps(self, other: Self) -> bool {
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let (first, second) = minmax(self, other);
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if second.0 == first.0 {
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first.1 <= second.1
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} else {
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second.0 <= first.1
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}
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}
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}
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fn parse_assignments(input: &[u8]) -> IResult<&[u8], Vec<(Assignment, Assignment)>> {
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fn parse_assignments(
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input: &[u8],
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) -> IResult<&[u8], Vec<(RangeInclusive<u32>, RangeInclusive<u32>)>> {
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use nom::character::complete::u32;
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fn parse_single(input: &[u8]) -> IResult<&[u8], Assignment> {
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map(separated_pair(u32, tag("-"), u32), |(start, end)| {
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Assignment(start, end)
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start..=end
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})(input)
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}
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@@ -49,23 +29,32 @@ fn parse_assignments(input: &[u8]) -> IResult<&[u8], Vec<(Assignment, Assignment
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many0(terminated(parse_line, newline))(input)
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}
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fn parts_common(input: &[u8], filter: impl Fn(Assignment, Assignment) -> bool) -> Result<String> {
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fn is_contained(a: &Assignment, b: &Assignment) -> bool {
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if a.size_hint().0 > b.size_hint().0 {
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a.contains(b.start()) && a.contains(b.end())
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} else {
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b.contains(a.start()) && b.contains(a.end())
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}
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}
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fn is_overlapping(a: &Assignment, b: &Assignment) -> bool {
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b.end() >= a.start() && b.start() <= a.end() || a.end() >= b.start() && a.start() <= b.end()
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}
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fn parts_common(input: &[u8], filter: impl Fn(&Assignment, &Assignment) -> bool) -> Result<String> {
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let assigments = parse_input(input, parse_assignments)?;
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let overlapping = assigments
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.into_iter()
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.filter(|&(a, b)| filter(a, b))
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.count();
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let overlapping = assigments.into_iter().filter(|(a, b)| filter(a, b)).count();
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Ok(overlapping.to_string())
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}
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pub fn part1(input: &[u8]) -> Result<String> {
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parts_common(input, Assignment::one_contains)
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parts_common(input, is_contained)
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}
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pub fn part2(input: &[u8]) -> Result<String> {
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parts_common(input, Assignment::one_overlaps)
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parts_common(input, is_overlapping)
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}
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#[cfg(test)]
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