mirror of
https://github.com/rust-lang/rustlings.git
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day2
This commit is contained in:
parent
613cea62b7
commit
460340955e
@ -1,12 +1,11 @@
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// move_semantics1.rs
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// move_semantics1.rs
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// Execute `rustlings hint move_semantics1` or use the `hint` watch subcommand for a hint.
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// Execute `rustlings hint move_semantics1` or use the `hint` watch subcommand for a hint.
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// I AM NOT DONE
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fn main() {
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fn main() {
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let vec0 = Vec::new();
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let vec0 = Vec::new();
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let vec1 = fill_vec(vec0);
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//可变变量不能转移给不可变变量
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let mut vec1 = fill_vec(vec0);
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println!("{} has length {} content `{:?}`", "vec1", vec1.len(), vec1);
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println!("{} has length {} content `{:?}`", "vec1", vec1.len(), vec1);
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@ -2,27 +2,28 @@
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// Make me compile without changing line 13 or moving line 10!
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// Make me compile without changing line 13 or moving line 10!
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// Execute `rustlings hint move_semantics2` or use the `hint` watch subcommand for a hint.
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// Execute `rustlings hint move_semantics2` or use the `hint` watch subcommand for a hint.
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// I AM NOT DONE
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fn main() {
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fn main() {
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let vec0 = Vec::new();
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let mut vec0 = Vec::new();
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let mut vec1 = fill_vec(vec0);
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let mut vec1 = fill_vec(&mut vec0);
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// Do not change the following line!
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// Do not change the following line!
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println!("{} has length {} content `{:?}`", "vec0", vec0.len(), vec0);
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println!("{} has length {} content `{:?}`", "vec0", vec0.len(), vec0);
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vec1.push(88);
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vec1.push(88);
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println!("{} has length {} content `{:?}`", "vec0", vec0.len(), vec0);
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println!("{} has length {} content `{:?}`", "vec1", vec1.len(), vec1);
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println!("{} has length {} content `{:?}`", "vec1", vec1.len(), vec1);
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}
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}
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fn fill_vec(vec: Vec<i32>) -> Vec<i32> {
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//错误1:只传引用,绑定的新 vec为引用,导致值并不可变,所以 push 会出错
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fn fill_vec(vec: &mut Vec<i32>) -> Vec<i32> {
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let mut vec = vec;
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let mut vec = vec;
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vec.push(22);
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vec.push(22);
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vec.push(44);
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vec.push(44);
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vec.push(66);
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vec.push(66);
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vec.iter().map(|x| x * 1).collect()
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vec
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// *vec1.iter().map(|x| x * 1).collect::<Vec<i32>>().to_vec()
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}
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}
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@ -3,8 +3,6 @@
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// (no lines with multiple semicolons necessary!)
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// (no lines with multiple semicolons necessary!)
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// Execute `rustlings hint move_semantics3` or use the `hint` watch subcommand for a hint.
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// Execute `rustlings hint move_semantics3` or use the `hint` watch subcommand for a hint.
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// I AM NOT DONE
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fn main() {
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fn main() {
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let vec0 = Vec::new();
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let vec0 = Vec::new();
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@ -18,6 +16,11 @@ fn main() {
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}
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}
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fn fill_vec(vec: Vec<i32>) -> Vec<i32> {
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fn fill_vec(vec: Vec<i32>) -> Vec<i32> {
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//不可变可以绑定给可变
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//可变也可以绑定不可变
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//不可变引用借用给mutable变量,但是值仍然不可变
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//mutable 引用可以借用给不可变,同样值不变
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let mut vec = vec;
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vec.push(22);
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vec.push(22);
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vec.push(44);
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vec.push(44);
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vec.push(66);
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vec.push(66);
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@ -4,12 +4,10 @@
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// function.
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// function.
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// Execute `rustlings hint move_semantics4` or use the `hint` watch subcommand for a hint.
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// Execute `rustlings hint move_semantics4` or use the `hint` watch subcommand for a hint.
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// I AM NOT DONE
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fn main() {
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fn main() {
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let vec0 = Vec::new();
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// let vec0 = Vec::new();
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let mut vec1 = fill_vec(vec0);
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let mut vec1 = fill_vec();
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println!("{} has length {} content `{:?}`", "vec1", vec1.len(), vec1);
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println!("{} has length {} content `{:?}`", "vec1", vec1.len(), vec1);
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@ -20,7 +18,7 @@ fn main() {
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// `fill_vec()` no longer takes `vec: Vec<i32>` as argument
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// `fill_vec()` no longer takes `vec: Vec<i32>` as argument
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fn fill_vec() -> Vec<i32> {
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fn fill_vec() -> Vec<i32> {
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let mut vec = vec;
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let mut vec = Vec::new();
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vec.push(22);
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vec.push(22);
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vec.push(44);
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vec.push(44);
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// adding, changing or removing any of them.
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// adding, changing or removing any of them.
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// Execute `rustlings hint move_semantics5` or use the `hint` watch subcommand for a hint.
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// Execute `rustlings hint move_semantics5` or use the `hint` watch subcommand for a hint.
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// I AM NOT DONE
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fn main() {
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fn main() {
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let mut x = 100;
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let mut x = 100;
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let y = &mut x;
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let y = &mut x;
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let z = &mut x;
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*y += 100;
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*y += 100;
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//不能同时使用多个可变引用
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let z = &mut x;
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*z += 1000;
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*z += 1000;
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assert_eq!(x, 1200);
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assert_eq!(x, 1200);
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}
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}
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// Execute `rustlings hint move_semantics6` or use the `hint` watch subcommand for a hint.
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// Execute `rustlings hint move_semantics6` or use the `hint` watch subcommand for a hint.
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// You can't change anything except adding or removing references.
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// You can't change anything except adding or removing references.
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// I AM NOT DONE
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fn main() {
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fn main() {
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let data = "Rust is great!".to_string();
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let data = "Rust is great!".to_string();
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get_char(data);
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// get_char(&data);
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println!("{:?}", get_char(&data));
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string_uppercase(&data);
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string_uppercase(data);
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}
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}
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// Should not take ownership
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// Should not take ownership
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fn get_char(data: String) -> char {
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fn get_char(data: &String) -> char {
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data.chars().last().unwrap()
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data.chars().last().unwrap()
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}
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}
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// Should take ownership
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// Should take ownership
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fn string_uppercase(mut data: &String) {
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// fn string_uppercase(data: &mut String) {
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data = &data.to_uppercase();
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fn string_uppercase(mut data: String) {
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data = data.to_uppercase();
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println!("{}", data);
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println!("{}", data);
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}
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}
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// Get a slice out of Array a where the ??? is so that the test passes.
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// Get a slice out of Array a where the ??? is so that the test passes.
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// Execute `rustlings hint primitive_types4` or use the `hint` watch subcommand for a hint.
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// Execute `rustlings hint primitive_types4` or use the `hint` watch subcommand for a hint.
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// I AM NOT DONE
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#[test]
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#[test]
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fn slice_out_of_array() {
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fn slice_out_of_array() {
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let a = [1, 2, 3, 4, 5];
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let a = [1, 2, 3, 4, 5];
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let nice_slice = &a[1..=5];
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let nice_slice = &a[1..4];
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assert_eq!([2, 3, 4], nice_slice)
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assert_eq!([2, 3, 4], nice_slice)
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}
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}
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// Destructure the `cat` tuple so that the println will work.
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// Destructure the `cat` tuple so that the println will work.
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// Execute `rustlings hint primitive_types5` or use the `hint` watch subcommand for a hint.
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// Execute `rustlings hint primitive_types5` or use the `hint` watch subcommand for a hint.
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// I AM NOT DONE
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fn main() {
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fn main() {
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let cat = ("Furry McFurson", 3.5);
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let cat = ("Furry McFurson", 3.5);
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let /* your pattern here */ = cat;
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let (name, age) = cat;
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println!("{} is {} years old.", name, age);
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println!("{} is {} years old.", name, age);
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}
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}
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// You can put the expression for the second element where ??? is so that the test passes.
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// You can put the expression for the second element where ??? is so that the test passes.
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// Execute `rustlings hint primitive_types6` or use the `hint` watch subcommand for a hint.
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// Execute `rustlings hint primitive_types6` or use the `hint` watch subcommand for a hint.
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// I AM NOT DONE
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#[test]
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#[test]
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fn indexing_tuple() {
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fn indexing_tuple() {
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let numbers = (1, 2, 3);
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let numbers = (1, 2, 3);
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// Replace below ??? with the tuple indexing syntax.
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// Replace below ??? with the tuple indexing syntax.
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let second = ???;
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let second = numbers.1;
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assert_eq!(2, second,
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assert_eq!(2, second, "This is not the 2nd number in the tuple!")
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"This is not the 2nd number in the tuple!")
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}
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}
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struct ColorClassicStruct {
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struct ColorClassicStruct {
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// TODO: Something goes here
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// TODO: Something goes here
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red: i32,
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green: i32,
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blue: i32,
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}
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}
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struct ColorTupleStruct(/* TODO: Something goes here */);
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struct ColorTupleStruct(/* TODO: Something goes here */ i32, i32, i32);
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#[derive(Debug)]
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#[derive(Debug)]
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struct UnitLikeStruct;
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struct UnitLikeStruct;
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#[test]
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#[test]
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fn classic_c_structs() {
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fn classic_c_structs() {
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// TODO: Instantiate a classic c struct!
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// TODO: Instantiate a classic c struct!
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// let green =
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// let green ={}
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let green = ColorClassicStruct {
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red: 0,
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green: 255,
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blue: 0,
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};
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assert_eq!(green.red, 0);
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assert_eq!(green.red, 0);
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assert_eq!(green.green, 255);
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assert_eq!(green.green, 255);
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#[test]
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#[test]
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fn tuple_structs() {
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fn tuple_structs() {
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// TODO: Instantiate a tuple struct!
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// TODO: Instantiate a tuple struct!
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// let green =
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let green = ColorTupleStruct(0, 255, 0);
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assert_eq!(green.0, 0);
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assert_eq!(green.0, 0);
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assert_eq!(green.1, 255);
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assert_eq!(green.1, 255);
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assert_eq!(green.2, 0);
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assert_eq!(green.2, 0);
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#[test]
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#[test]
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fn unit_structs() {
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fn unit_structs() {
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// TODO: Instantiate a unit-like struct!
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// TODO: Instantiate a unit-like struct!
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// let unit_like_struct =
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let unit_like_struct = UnitLikeStruct {};
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let message = format!("{:?}s are fun!", unit_like_struct);
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let message = format!("{:?}s are fun!", unit_like_struct);
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assert_eq!(message, "UnitLikeStructs are fun!");
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assert_eq!(message, "UnitLikeStructs are fun!");
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// Make me compile and pass the test!
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// Make me compile and pass the test!
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// Execute `rustlings hint vecs1` or use the `hint` watch subcommand for a hint.
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// Execute `rustlings hint vecs1` or use the `hint` watch subcommand for a hint.
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// I AM NOT DONE
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fn array_and_vec() -> ([i32; 4], Vec<i32>) {
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fn array_and_vec() -> ([i32; 4], Vec<i32>) {
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let a = [10, 20, 30, 40]; // a plain array
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let a = [10, 20, 30, 40]; // a plain array
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let v = // TODO: declare your vector here with the macro for vectors
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let v: Vec<i32> = vec![10, 20, 30, 40]; // TODO: declare your vector here with the macro for vectors
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(a, v)
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(a, v)
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}
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}
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//
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//
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// Execute `rustlings hint vecs2` or use the `hint` watch subcommand for a hint.
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// Execute `rustlings hint vecs2` or use the `hint` watch subcommand for a hint.
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// I AM NOT DONE
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fn vec_loop(mut v: Vec<i32>) -> Vec<i32> {
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fn vec_loop(mut v: Vec<i32>) -> Vec<i32> {
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for i in v.iter_mut() {
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for i in v.iter_mut() {
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// TODO: Fill this up so that each element in the Vec `v` is
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// TODO: Fill this up so that each element in the Vec `v` is
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// multiplied by 2.
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// multiplied by 2.
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???
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*i = *i * 2;
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}
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}
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// At this point, `v` should be equal to [4, 8, 12, 16, 20].
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// At this point, `v` should be equal to [4, 8, 12, 16, 20].
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}
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}
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fn vec_map(v: &Vec<i32>) -> Vec<i32> {
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fn vec_map(v: &Vec<i32>) -> Vec<i32> {
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v.iter().map(|num| {
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v.iter()
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// TODO: Do the same thing as above - but instead of mutating the
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.map(|num| {
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// Vec, you can just return the new number!
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// TODO: Do the same thing as above - but instead of mutating the
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???
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// Vec, you can just return the new number!
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}).collect()
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num * 2
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})
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.collect()
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}
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}
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#[cfg(test)]
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#[cfg(test)]
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Loading…
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Block a user