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35c23272cb
Author | SHA1 | Date | |
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35c23272cb | |||
b48c5eb39f | |||
8145a3087c | |||
f69ff1ffd7 | |||
187bf3d466 | |||
0b36da038e | |||
3caa7018f8 | |||
361de986ee | |||
2807b4b478 |
4 changed files with 133 additions and 12 deletions
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@ -33,23 +33,24 @@ fn main() {
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let leny = frfrvec.clone().len();
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for y in 1..leny {
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let widthup = y - 1 > 4;
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let widthdown = (leny - y) > 4;
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let widthup = y >= 4;
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let widthdown = (leny - y) >= 4;
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for x in 1..lenx {
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for x in 1..lenx+1 {
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// check if enough space left and right
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let widthleft = x >= 4;
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let widthright = (lenx - x) >= 3;
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// search algorithm starts here
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// check if the char is X
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if frfrvec[y][x] == 'X' {
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println!("x is {x}");
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println!("y is {y}");
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println!("width up: {}", widthup);
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println!("width down: {}", widthdown);
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let widthleft = x - 1 > 4;
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println!("width left: {}", widthleft);
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let widthright = (lenx - x) > 4;
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println!("width right: {}", widthright);
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// search algorithm starts here
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// check if the char is s
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if frfrvec[y][x] == 'X' {
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// check if going upwards
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if widthup {
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if frfrvec[y - 1][x] == 'M'
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@ -57,6 +58,7 @@ fn main() {
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&& frfrvec[y - 3][x] == 'S'
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{
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pointcounter += 1;
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println!("successful up");
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}
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}
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// check if going diag up left
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@ -66,6 +68,7 @@ fn main() {
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&& frfrvec[y - 3][x - 3] == 'S'
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{
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pointcounter += 1;
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println!("successful up left");
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}
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}
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// check if going left
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@ -75,6 +78,7 @@ fn main() {
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&& frfrvec[y][x - 3] == 'S'
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{
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pointcounter += 1;
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println!("successful left");
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}
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}
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// check if going diag down left
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@ -84,6 +88,7 @@ fn main() {
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&& frfrvec[y + 3][x - 3] == 'S'
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{
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pointcounter += 1;
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println!("successful down left");
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}
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}
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// check if going down
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@ -93,6 +98,7 @@ fn main() {
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&& frfrvec[y + 3][x] == 'S'
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{
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pointcounter += 1;
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println!("successful down");
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}
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}
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// check if going diag down right
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@ -102,6 +108,7 @@ fn main() {
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&& frfrvec[y + 3][x + 3] == 'S'
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{
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pointcounter += 1;
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println!("successful down right");
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}
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}
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// check if going right
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@ -111,6 +118,7 @@ fn main() {
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&& frfrvec[y][x + 3] == 'S'
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{
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pointcounter += 1;
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println!("successful right");
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}
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}
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// check if going diag right up
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@ -120,9 +128,11 @@ fn main() {
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&& frfrvec[y - 3][x + 3] == 'S'
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{
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pointcounter += 1;
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println!("successful up right");
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}
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}
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}
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println!("\n")
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}
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}
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7
2024/day4/part2/Cargo.lock
generated
Normal file
7
2024/day4/part2/Cargo.lock
generated
Normal file
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@ -0,0 +1,7 @@
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# This file is automatically @generated by Cargo.
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# It is not intended for manual editing.
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version = 3
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[[package]]
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name = "part1"
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version = "0.1.0"
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6
2024/day4/part2/Cargo.toml
Normal file
6
2024/day4/part2/Cargo.toml
Normal file
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@ -0,0 +1,6 @@
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[package]
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name = "part1"
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version = "0.1.0"
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edition = "2021"
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[dependencies]
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98
2024/day4/part2/src/main.rs
Normal file
98
2024/day4/part2/src/main.rs
Normal file
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@ -0,0 +1,98 @@
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use std::fs::read_to_string;
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fn main() {
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let mut pointcounter = 0;
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let lines: Vec<String> = read_to_string("input.txt")
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.unwrap()
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.lines()
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.map(String::from)
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.collect();
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let mut frfrvec: Vec<Vec<char>> = Vec::new();
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println!("ye the lines are {:?}", lines);
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// make y coord offset by 1
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let lenxold = lines[1].chars().count();
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let mut lenvec: Vec<char> = Vec::new();
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for i in 0..lenxold {
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lenvec.push('0');
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}
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frfrvec.push(lenvec);
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// main section where you push stuff
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for ministr in lines.clone() {
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let mut pushvec = Vec::new();
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pushvec.push('0'); // make x coord offset by 1
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for minichar in ministr.chars() {
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pushvec.push(minichar);
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}
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frfrvec.push(pushvec);
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}
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println!("{:?}", frfrvec);
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let lenx = lines[1].chars().count();
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let leny = frfrvec.clone().len();
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for y in 1..leny {
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let widthup = y >= 2;
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let widthdown = (leny - y) >= 2;
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for x in 1..lenx+1 {
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// check if enough space left and right
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let widthleft = x >= 2;
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let widthright = (lenx - x) >= 1;
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// search algorithm starts here
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// check if the char is X
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if frfrvec[y][x] == 'A' {
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println!("x is {x}");
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println!("y is {y}");
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println!("width up: {}", widthup);
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println!("width down: {}", widthdown);
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println!("width left: {}", widthleft);
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if widthup && widthleft && widthdown && widthright {
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// check if start from top
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if frfrvec[y - 1][x - 1] == 'M' // up left
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&& frfrvec[y - 1][x + 1] == 'M' // up right
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&& frfrvec[y + 1][x - 1] == 'S' // down left
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&& frfrvec[y + 1][x + 1] == 'S' // down right
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{
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pointcounter += 1;
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println!("successful up");
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}
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// check if start from left
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if frfrvec[y - 1][x - 1] == 'M' // up left
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&& frfrvec[y - 1][x + 1] == 'S' // up right
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&& frfrvec[y + 1][x - 1] == 'M' // down left
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&& frfrvec[y + 1][x + 1] == 'S' // down right
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{
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pointcounter += 1;
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println!("successful left");
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}
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// check if start from bottom
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if frfrvec[y - 1][x - 1] == 'S' // up left
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&& frfrvec[y - 1][x + 1] == 'S' // up right
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&& frfrvec[y + 1][x - 1] == 'M' // down left
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&& frfrvec[y + 1][x + 1] == 'M' // down right
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{
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pointcounter += 1;
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println!("successful down");
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}
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// check if start from right
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if frfrvec[y - 1][x - 1] == 'S' // up left
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&& frfrvec[y - 1][x + 1] == 'M' // up right
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&& frfrvec[y + 1][x - 1] == 'S' // down left
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&& frfrvec[y + 1][x + 1] == 'M' // down right
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{
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pointcounter += 1;
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println!("successful right");
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}
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}
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}
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println!("\n")
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}
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}
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println!("{pointcounter}");
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}
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