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main
| Author | SHA1 | Date | |
|---|---|---|---|
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ad542a4892 | ||
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8b15f8d511 | ||
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2844976587 | ||
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f0f6a72101 | ||
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3caf0b31ec | ||
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ab5b9bff14 |
@@ -17,6 +17,7 @@ fn main() {
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// Try a letter, try a digit (in single quotes), try a special character, try a character
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// from a different language than your own, try an emoji 😉
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// let your_character = '';
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let your_character = '僕';
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if your_character.is_alphabetic() {
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println!("Alphabetical!");
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@@ -2,6 +2,14 @@ fn main() {
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// TODO: Create an array called `a` with at least 100 elements in it.
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// let a = ???
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let a = [
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1, 2, 3, 4, 5, 6, 7, 1, 231, 234, 11, 4512, 51, 5, 12, 51, 25, 12, 45, 134, 12, 412, 45,
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12, 512, 512, 5, 12, 512, 4, 124, 12, 5, 125, 123, 3412, 45, 123, 5123, 5, 12345, 123, 412,
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56, 1236, 234, 6345, 6534, 6, 547, 456, 754, 6, 345, 34, 534, 6, 235, 123, 4523, 4523, 5,
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235, 235, 2, 532, 523, 23, 124, 21, 2, 3, 51235, 664, 3466, 345,312,312,421,412,45,1245,123,423,523,56,234,5234,5234,5,346,345,6745,7456,7456,7,456,7456,7,4, 2, 6, 23, 12, 4512, 512,
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5, 512, 5, 125, 125, 125, 12, 56, 75, 7456, 87,
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];
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if a.len() >= 100 {
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println!("Wow, that's a big array!");
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} else {
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@@ -11,6 +11,7 @@ mod tests {
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// TODO: Get a slice called `nice_slice` out of the array `a` so that the test passes.
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// let nice_slice = ???
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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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}
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}
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@@ -4,5 +4,7 @@ fn main() {
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// TODO: Destructure the `cat` tuple in one statement so that the println works.
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// let /* your pattern here */ = cat;
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let (name, age) = cat;
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println!("{name} is {age} years old");
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}
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@@ -4,6 +4,7 @@ fn main() {
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#[cfg(test)]
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mod tests {
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#[test]
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fn indexing_tuple() {
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let numbers = (1, 2, 3);
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@@ -11,6 +12,7 @@ mod tests {
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// TODO: Use a tuple index to access the second element of `numbers`
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// and assign it to a variable called `second`.
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// let second = ???;
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let second = numbers.1;
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assert_eq!(second, 2, "This is not the 2nd number in the tuple!");
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}
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@@ -1,6 +1,8 @@
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fn elems_to_vec(a: i32, b: i32, c: i32) -> Vec<i32> {
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// TODO: Return a vector containing the elements a, b and c (in this order).
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// Use the "vec!" macro.
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let vector: Vec<i32> = vec![a, b, c];
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vector
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}
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fn main() {
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@@ -4,6 +4,8 @@ fn vec_loop(input: &[i32]) -> Vec<i32> {
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for element in input {
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// TODO: Multiply each element in the `input` slice by 2 and push it to
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// the `output` vector.
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output.push(element * 2);
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}
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output
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@@ -1,6 +1,6 @@
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// TODO: Fix the compiler error in this function.
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fn fill_vec(vec: Vec<i32>) -> Vec<i32> {
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let vec = vec;
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let mut vec = vec;
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vec.push(88);
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@@ -20,7 +20,7 @@ mod tests {
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fn move_semantics2() {
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let vec0 = vec![22, 44, 66];
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let vec1 = fill_vec(vec0);
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let vec1 = fill_vec(vec0.clone());
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assert_eq!(vec0, [22, 44, 66]);
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assert_eq!(vec1, [22, 44, 66, 88]);
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@@ -1,5 +1,5 @@
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// TODO: Fix the compiler error in the function without adding any new line.
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fn fill_vec(vec: Vec<i32>) -> Vec<i32> {
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fn fill_vec(mut vec: Vec<i32>) -> Vec<i32> {
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vec.push(88);
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vec
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@@ -10,8 +10,8 @@ mod tests {
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fn move_semantics4() {
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let mut x = Vec::new();
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let y = &mut x;
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let z = &mut x;
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y.push(42);
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let z = &mut x;
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z.push(13);
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assert_eq!(x, [42, 13]);
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}
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@@ -4,12 +4,12 @@
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// removing references (the character `&`).
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// Shouldn't 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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}
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// Should take ownership
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fn string_uppercase(mut data: &String) {
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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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@@ -18,7 +18,7 @@ fn string_uppercase(mut data: &String) {
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fn main() {
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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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string_uppercase(&data);
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string_uppercase(data);
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}
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@@ -1,9 +1,12 @@
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struct ColorRegularStruct {
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// TODO: Add the fields that the test `regular_structs` expects.
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// What types should the fields have? What are the minimum and maximum values for RGB colors?
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red: u8,
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green: u8,
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blue: u8,
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}
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struct ColorTupleStruct(/* TODO: Add the fields that the test `tuple_structs` expects */);
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struct ColorTupleStruct(u8, u8, u8);
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#[derive(Debug)]
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struct UnitStruct;
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@@ -20,7 +23,11 @@ mod tests {
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fn regular_structs() {
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// TODO: Instantiate a regular struct.
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// let green =
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let green = ColorRegularStruct {
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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.green, 255);
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assert_eq!(green.blue, 0);
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@@ -30,7 +37,7 @@ mod tests {
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fn tuple_structs() {
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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.1, 255);
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assert_eq!(green.2, 0);
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@@ -39,7 +46,7 @@ mod tests {
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#[test]
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fn unit_structs() {
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// TODO: Instantiate a unit struct.
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// let unit_struct =
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let unit_struct = UnitStruct;
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let message = format!("{unit_struct:?}s are fun!");
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assert_eq!(message, "UnitStructs are fun!");
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@@ -36,6 +36,12 @@ mod tests {
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// TODO: Create your own order using the update syntax and template above!
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// let your_order =
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let your_order = Order {
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name: "Hacker in Rust".to_string(),
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count: 1,
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..order_template
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};
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assert_eq!(your_order.name, "Hacker in Rust");
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assert_eq!(your_order.year, order_template.year);
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assert_eq!(your_order.made_by_phone, order_template.made_by_phone);
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@@ -10,19 +10,18 @@ struct Fireworks {
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rockets: usize,
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}
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// TODO: Turn this function into an associated function on `Fireworks`.
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fn new_fireworks() -> Fireworks {
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Fireworks { rockets: 0 }
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}
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impl Fireworks {
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fn new() -> Self {
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Self { rockets: 0 }
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}
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// TODO: Turn this function into a method on `Fireworks`.
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fn add_rockets(fireworks: &mut Fireworks, rockets: usize) {
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fireworks.rockets += rockets
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}
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fn add_rockets(&mut self, rockets: usize) {
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self.rockets += rockets
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}
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// TODO: Turn this function into a method on `Fireworks`.
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fn start(fireworks: Fireworks) -> String {
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"🚀".repeat(fireworks.rockets)
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fn start(self) -> String {
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"🚀".repeat(self.rockets)
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}
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}
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fn main() {
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@@ -1,6 +1,11 @@
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#[derive(Debug)]
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enum Message {
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// TODO: Define a few types of messages as used below.
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Resize,
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Move,
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Echo,
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ChangeColor,
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Quit,
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}
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fn main() {
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@@ -7,6 +7,11 @@ struct Point {
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#[derive(Debug)]
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enum Message {
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// TODO: Define the different variants used below.
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Resize { width: u64, height: u64 },
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Move(Point),
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Echo(String),
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ChangeColor(u64, u64, u64),
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Quit,
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}
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impl Message {
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@@ -46,6 +46,13 @@ impl State {
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fn process(&mut self, message: Message) {
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// TODO: Create a match expression to process the different message
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// variants using the methods defined above.
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match message {
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Message::Resize { width, height } => self.resize(width, height),
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Message::Move(point) => self.move_position(point),
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Message::Echo(s) => self.echo(s),
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Message::ChangeColor(red, green, blue) => self.change_color(red, green, blue),
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Message::Quit => self.quit(),
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}
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}
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}
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|
||||
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@@ -1,6 +1,6 @@
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// TODO: Fix the compiler error without changing the function signature.
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fn current_favorite_color() -> String {
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"blue"
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"blue".to_string()
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}
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fn main() {
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|
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@@ -6,7 +6,7 @@ fn is_a_color_word(attempt: &str) -> bool {
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fn main() {
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let word = String::from("green"); // Don't change this line.
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||||
|
||||
if is_a_color_word(word) {
|
||||
if is_a_color_word(&word) {
|
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println!("That is a color word I know!");
|
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} else {
|
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println!("That is not a color word I know.");
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|
||||
@@ -1,13 +1,18 @@
|
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fn trim_me(input: &str) -> &str {
|
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// TODO: Remove whitespace from both ends of a string.
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input.trim()
|
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}
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|
||||
fn compose_me(input: &str) -> String {
|
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// TODO: Add " world!" to the string! There are multiple ways to do this.
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let world = " world!";
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let s: String = input.to_owned() + world;
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s
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}
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|
||||
fn replace_me(input: &str) -> String {
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// TODO: Replace "cars" in the string with "balloons".
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input.replace("cars", "balloons")
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}
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|
||||
fn main() {
|
||||
|
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@@ -13,23 +13,23 @@ fn string(arg: String) {
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// Your task is to replace `placeholder(…)` with either `string_slice(…)`
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// or `string(…)` depending on what you think each value is.
|
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fn main() {
|
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placeholder("blue");
|
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string_slice("blue");
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|
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placeholder("red".to_string());
|
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string("red".to_string());
|
||||
|
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placeholder(String::from("hi"));
|
||||
string(String::from("hi"));
|
||||
|
||||
placeholder("rust is fun!".to_owned());
|
||||
string("rust is fun!".to_owned());
|
||||
|
||||
placeholder(format!("Interpolation {}", "Station"));
|
||||
string(format!("Interpolation {}", "Station"));
|
||||
|
||||
// WARNING: This is byte indexing, not character indexing.
|
||||
// Character indexing can be done using `s.chars().nth(INDEX)`.
|
||||
placeholder(&String::from("abc")[0..1]);
|
||||
string_slice(&String::from("abc")[0..1]);
|
||||
|
||||
placeholder(" hello there ".trim());
|
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string_slice(" hello there ".trim());
|
||||
|
||||
placeholder("Happy Monday!".replace("Mon", "Tues"));
|
||||
string("Happy Monday!".replace("Mon", "Tues"));
|
||||
|
||||
placeholder("mY sHiFt KeY iS sTiCkY".to_lowercase());
|
||||
string("mY sHiFt KeY iS sTiCkY".to_lowercase());
|
||||
}
|
||||
|
||||
@@ -5,7 +5,7 @@ mod sausage_factory {
|
||||
String::from("Ginger")
|
||||
}
|
||||
|
||||
fn make_sausage() {
|
||||
pub fn make_sausage() {
|
||||
get_secret_recipe();
|
||||
println!("sausage!");
|
||||
}
|
||||
|
||||
@@ -5,6 +5,9 @@ mod delicious_snacks {
|
||||
// TODO: Add the following two `use` statements after fixing them.
|
||||
// use self::fruits::PEAR as ???;
|
||||
// use self::veggies::CUCUMBER as ???;
|
||||
|
||||
pub use self::fruits::PEAR as fruit;
|
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pub use self::veggies::CUCUMBER as veggie;
|
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|
||||
mod fruits {
|
||||
pub const PEAR: &str = "Pear";
|
||||
|
||||
@@ -4,6 +4,8 @@
|
||||
// TODO: Bring `SystemTime` and `UNIX_EPOCH` from the `std::time` module into
|
||||
// your scope. Bonus style points if you can do it with one line!
|
||||
// use ???;
|
||||
use std::time::SystemTime;
|
||||
use std::time::UNIX_EPOCH;
|
||||
|
||||
fn main() {
|
||||
match SystemTime::now().duration_since(UNIX_EPOCH) {
|
||||
|
||||
@@ -9,10 +9,11 @@ use std::collections::HashMap;
|
||||
fn fruit_basket() -> HashMap<String, u32> {
|
||||
// TODO: Declare the hash map.
|
||||
// let mut basket =
|
||||
|
||||
let mut basket = HashMap::new();
|
||||
// Two bananas are already given for you :)
|
||||
basket.insert(String::from("banana"), 2);
|
||||
|
||||
basket.insert(String::from("apple"), 2);
|
||||
basket.insert(String::from("mango"), 1);
|
||||
// TODO: Put more fruits in your basket.
|
||||
|
||||
basket
|
||||
|
||||
@@ -28,10 +28,12 @@ fn fruit_basket(basket: &mut HashMap<Fruit, u32>) {
|
||||
Fruit::Pineapple,
|
||||
];
|
||||
|
||||
for fruit in fruit_kinds {
|
||||
for _fruit in fruit_kinds {
|
||||
// TODO: Insert new fruits if they are not already present in the
|
||||
// basket. Note that you are not allowed to put any type of fruit that's
|
||||
// already present!
|
||||
basket.insert(Fruit::Banana, 4);
|
||||
basket.insert(Fruit::Pineapple, 3);
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
@@ -27,6 +27,11 @@ fn build_scores_table(results: &str) -> HashMap<&str, TeamScores> {
|
||||
let team_1_score: u8 = split_iterator.next().unwrap().parse().unwrap();
|
||||
let team_2_score: u8 = split_iterator.next().unwrap().parse().unwrap();
|
||||
|
||||
scores.entry(team_1_name).or_default().goals_scored += team_1_score;
|
||||
scores.entry(team_2_name).or_default().goals_scored += team_2_score;
|
||||
|
||||
scores.entry(team_1_name).or_default().goals_conceded += team_2_score;
|
||||
scores.entry(team_2_name).or_default().goals_conceded += team_1_score;
|
||||
// TODO: Populate the scores table with the extracted details.
|
||||
// Keep in mind that goals scored by team 1 will be the number of goals
|
||||
// conceded by team 2. Similarly, goals scored by team 2 will be the
|
||||
|
||||
@@ -4,6 +4,14 @@
|
||||
// `hour_of_day` is higher than 23.
|
||||
fn maybe_ice_cream(hour_of_day: u16) -> Option<u16> {
|
||||
// TODO: Complete the function body.
|
||||
|
||||
if hour_of_day < 22 {
|
||||
Some(5)
|
||||
} else if hour_of_day <= 23 {
|
||||
Some(0)
|
||||
} else {
|
||||
None
|
||||
}
|
||||
}
|
||||
|
||||
fn main() {
|
||||
@@ -18,7 +26,7 @@ mod tests {
|
||||
fn raw_value() {
|
||||
// TODO: Fix this test. How do you get the value contained in the
|
||||
// Option?
|
||||
let ice_creams = maybe_ice_cream(12);
|
||||
let ice_creams = maybe_ice_cream(12).unwrap();
|
||||
|
||||
assert_eq!(ice_creams, 5); // Don't change this line.
|
||||
}
|
||||
|
||||
@@ -10,8 +10,12 @@ mod tests {
|
||||
let optional_target = Some(target);
|
||||
|
||||
// TODO: Make this an if-let statement whose value is `Some`.
|
||||
word = optional_target {
|
||||
assert_eq!(word, target);
|
||||
//
|
||||
// word = optional_target {
|
||||
// assert_eq!(word, target);
|
||||
// }
|
||||
if let Some(word) = optional_target {
|
||||
assert_eq!(word, target)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -29,7 +33,13 @@ mod tests {
|
||||
// TODO: Make this a while-let statement. Remember that `Vec::pop()`
|
||||
// adds another layer of `Option`. You can do nested pattern matching
|
||||
// in if-let and while-let statements.
|
||||
integer = optional_integers.pop() {
|
||||
//
|
||||
// integer = optional_integers.pop() {
|
||||
// assert_eq!(integer, cursor);
|
||||
// cursor -= 1;
|
||||
// }
|
||||
|
||||
while let Some(Some(integer)) = optional_integers.pop() {
|
||||
assert_eq!(integer, cursor);
|
||||
cursor -= 1;
|
||||
}
|
||||
|
||||
@@ -9,7 +9,9 @@ fn main() {
|
||||
|
||||
// TODO: Fix the compiler error by adding something to this match statement.
|
||||
match optional_point {
|
||||
Some(p) => println!("Coordinates are {},{}", p.x, p.y),
|
||||
Some(ref p) => {
|
||||
println!("Coordinates are {},{}", p.x, p.y)
|
||||
}
|
||||
_ => panic!("No match!"),
|
||||
}
|
||||
|
||||
|
||||
@@ -28,6 +28,25 @@ mod my_module {
|
||||
|
||||
// TODO: Complete the function as described above.
|
||||
// pub fn transformer(input: ???) -> ??? { ??? }
|
||||
|
||||
pub fn transformer(input: Vec<(String, Command)>) -> Vec<String> {
|
||||
let mut output = Vec::new();
|
||||
for (s, cmd) in input {
|
||||
let transformed = match cmd {
|
||||
Command::Uppercase => s.to_uppercase(),
|
||||
Command::Trim => s.trim().to_owned(),
|
||||
Command::Append(n) => {
|
||||
let mut out = s;
|
||||
for _ in 0..n {
|
||||
out.push_str("bar");
|
||||
}
|
||||
out
|
||||
}
|
||||
};
|
||||
output.push(transformed)
|
||||
}
|
||||
output
|
||||
}
|
||||
}
|
||||
|
||||
fn main() {
|
||||
@@ -39,6 +58,7 @@ mod tests {
|
||||
// TODO: What do we need to import to have `transformer` in scope?
|
||||
// use ???;
|
||||
use super::Command;
|
||||
use crate::my_module::transformer;
|
||||
|
||||
#[test]
|
||||
fn it_works() {
|
||||
|
||||
Reference in New Issue
Block a user