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1af8eab8c2
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| 1af8eab8c2 | |||
| 68d161f2f7 | |||
| 5dc51a050f |
@ -75,8 +75,6 @@
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//!
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//!
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//! What is the encryption weakness in your XMAS-encrypted list of numbers?
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//! What is the encryption weakness in your XMAS-encrypted list of numbers?
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use std::collections::HashSet;
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use aoc_runner_derive::{aoc, aoc_generator};
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use aoc_runner_derive::{aoc, aoc_generator};
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#[aoc_generator(day9)]
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#[aoc_generator(day9)]
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@ -89,7 +87,6 @@ fn parse(input: &str) -> Vec<usize> {
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fn solution1_impl(nums: &[usize], win_size: usize) -> usize {
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fn solution1_impl(nums: &[usize], win_size: usize) -> usize {
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nums.windows(win_size + 1)
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nums.windows(win_size + 1)
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// TODO(wathiede): try soring and/or hashmap for speed.
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.skip_while(|chunk| {
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.skip_while(|chunk| {
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let past = &chunk[..win_size];
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let past = &chunk[..win_size];
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let cur = chunk[win_size];
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let cur = chunk[win_size];
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@ -102,9 +99,26 @@ fn solution1_impl(nums: &[usize], win_size: usize) -> usize {
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false
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false
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})
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})
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// TODO(wathiede): try find_map()
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.find_map(|chunk| Some(chunk[win_size]))
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.map(|chunk| chunk[win_size])
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.unwrap()
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.nth(0)
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}
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fn solution1_impl_sorted(nums: &[usize], win_size: usize) -> usize {
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nums.windows(win_size + 1)
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.skip_while(|chunk| {
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let mut past = (&chunk[..win_size]).clone().to_owned();
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past.sort_unstable();
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let cur = chunk[win_size];
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for p in &past {
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let diff = if cur > *p { cur - p } else { p - cur };
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if past.binary_search(&diff).is_ok() {
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return true;
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}
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}
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false
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})
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.find_map(|chunk| Some(chunk[win_size]))
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.unwrap()
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.unwrap()
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}
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}
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@ -113,9 +127,18 @@ fn solution1(nums: &[usize]) -> usize {
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solution1_impl(nums, 25)
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solution1_impl(nums, 25)
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}
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}
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#[aoc(day9, part1, sorted)]
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fn solution1_sorted(nums: &[usize]) -> usize {
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solution1_impl_sorted(nums, 25)
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}
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fn sum_min_max(low: usize, hi: usize, nums: &[usize]) -> usize {
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fn sum_min_max(low: usize, hi: usize, nums: &[usize]) -> usize {
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// TODO(wathiede): rewrite with fold to do it in one pass.
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let (min, max) = nums[low..hi]
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nums[low..hi].iter().min().unwrap() + nums[low..hi].iter().max().unwrap()
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.iter()
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.fold((usize::MAX, 0), |(min, max), &n| {
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(std::cmp::min(min, n), std::cmp::max(max, n))
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});
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min + max
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}
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}
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// If contiguous numbers adding up to `sum` are found, the hi index (inclusive) is returned.
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// If contiguous numbers adding up to `sum` are found, the hi index (inclusive) is returned.
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@ -136,7 +159,6 @@ fn find_sum_at(low: usize, nums: &[usize], sum: usize) -> Option<usize> {
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fn solution2_impl(nums: &[usize], win_size: usize) -> usize {
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fn solution2_impl(nums: &[usize], win_size: usize) -> usize {
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let sum = solution1_impl(nums, win_size);
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let sum = solution1_impl(nums, win_size);
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dbg!(sum);
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for low in 0..nums.len() - 1 {
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for low in 0..nums.len() - 1 {
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if let Some(hi) = find_sum_at(low, nums, sum) {
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if let Some(hi) = find_sum_at(low, nums, sum) {
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return sum_min_max(low, hi, nums);
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return sum_min_max(low, hi, nums);
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