Add solution for "Day 1: Secret Entrance", part 2
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# AdventOfCode2025
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Solver for Advent of Code 2025 puzzles. https://adventofcode.com/2025/
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Solver for Advent of Code 2025 puzzles. <https://adventofcode.com/2025/>
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This is a single command line application for the puzzles written in [Rust](https://rust-lang.org/).
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@@ -10,6 +10,12 @@ This project does not contain the puzzle or example inputs as per the [copyright
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## Solutions
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### Day 1: Secret Entrance
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:mag_right: Puzzle: <https://adventofcode.com/2025/day/1>, :white_check_mark: Solver: [`SecretEntrance`](src/solvers/secret_entrance.rs)
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For this one, we are moving around a dial with some not too complicated modulo calculations.
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### Day 4: Printing Department
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:mag_right: Puzzle: <https://adventofcode.com/2025/day/4>, :white_check_mark: Solver: [`PrintingDepartment`](src/solvers/printing_department.rs)
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@@ -36,10 +42,10 @@ The package contains unit tests for each solver to help troubleshoot issues and
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## License
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Copyright (C) 2025 Stefan Müller
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Copyright (C) 2025-2026 Stefan Müller
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This program is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details.
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You should have received a copy of the GNU General Public License along with this program. If not, see <http://www.gnu.org/licenses/>.
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You should have received a copy of the GNU General Public License along with this program. If not, see <http://www.gnu.org/licenses/>.
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@@ -6,9 +6,30 @@ pub struct SecretEntrance {}
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impl SecretEntrance {
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const START_POSITION: i32 = 50;
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const DIAL_SIZE: i32 = 100;
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const COUNT_POSITION: i32 = 0;
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const ZERO_POSITION: i32 = 0;
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const POSITIVE_SIGN_CHAR: char = 'R';
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const NEGATIVE_SIGN_CHAR: char = 'L';
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fn update_position(
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position: i32,
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distance: i32,
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mut zero_hits: u64,
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mut zero_passes: u64,
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) -> (i32, u64, u64) {
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let mut new_position = position + distance;
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let rounds = new_position.div_euclid(Self::DIAL_SIZE);
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zero_passes += u64::try_from(rounds.abs()).unwrap();
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new_position -= Self::DIAL_SIZE * rounds;
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if new_position == Self::ZERO_POSITION {
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zero_hits += 1;
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if position != Self::ZERO_POSITION && distance < 0 {
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zero_passes += 1;
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}
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} else if position == Self::ZERO_POSITION && distance < 0 {
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zero_passes -= 1;
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}
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(new_position, zero_hits, zero_passes)
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}
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}
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impl Solver for SecretEntrance {
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@@ -17,26 +38,26 @@ impl Solver for SecretEntrance {
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fn process_data<R: BufRead>(&self, reader: R) -> (u64, u64) {
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let mut position = Self::START_POSITION;
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let mut count = 0;
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let format = format!(
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let mut zero_hits = 0;
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let mut zero_passes = 0;
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let format: String = format!(
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"{{[{}{}]}}{{d}}",
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Self::POSITIVE_SIGN_CHAR,
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Self::NEGATIVE_SIGN_CHAR
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);
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for line in reader.lines().map_while(Result::ok) {
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if let Ok((sign, distance)) = scan_fmt!(&line, &format, char, i32) {
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position = (position
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+ if sign == Self::POSITIVE_SIGN_CHAR {
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distance
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} else {
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-distance
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})
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.rem_euclid(Self::DIAL_SIZE);
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}
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if position == Self::COUNT_POSITION {
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count = count + 1;
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}
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let (sign, distance) = scan_fmt!(&line, &format, char, i32).unwrap();
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(position, zero_hits, zero_passes) = Self::update_position(
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position,
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if sign == Self::POSITIVE_SIGN_CHAR {
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distance
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} else {
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-distance
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},
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zero_hits,
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zero_passes,
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);
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}
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(count, 0)
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(zero_hits, zero_passes)
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}
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}
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+1
-1
@@ -11,7 +11,7 @@ const EXAMPLE_PATHS: &'static [&'static str] = &[
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#[test]
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fn secret_entrance() {
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assert_eq!(
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Ok((3, 0)),
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Ok((3, 6)),
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solvers::run_solver(solvers::secret_entrance::SecretEntrance {}, &EXAMPLE_PATHS)
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);
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}
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+1
-1
@@ -3,7 +3,7 @@ use advent_of_code_2025::*;
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#[test]
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fn secret_entrance() {
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assert_eq!(
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Ok((1086, 0)),
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Ok((1086, 6268)),
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solvers::run_solver(
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solvers::secret_entrance::SecretEntrance {},
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&solvers::DATA_PATHS
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