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@@ -8,17 +8,16 @@
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//
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// Execute `rustlings hint iterators1` 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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let my_fav_fruits = vec!["banana", "custard apple", "avocado", "peach", "raspberry"];
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let mut my_iterable_fav_fruits = ???; // TODO: Step 1
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let mut my_iterable_fav_fruits = my_fav_fruits.iter(); // TODO: Step 1
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assert_eq!(my_iterable_fav_fruits.next(), Some(&"banana"));
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assert_eq!(my_iterable_fav_fruits.next(), ???); // TODO: Step 2
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assert_eq!(my_iterable_fav_fruits.next(), Some(&"custard apple")); // TODO: Step 2
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assert_eq!(my_iterable_fav_fruits.next(), Some(&"avocado"));
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assert_eq!(my_iterable_fav_fruits.next(), ???); // TODO: Step 3
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assert_eq!(my_iterable_fav_fruits.next(), Some(&"peach")); // TODO: Step 3
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assert_eq!(my_iterable_fav_fruits.next(), Some(&"raspberry"));
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assert_eq!(my_iterable_fav_fruits.next(), ???); // TODO: Step 4
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assert_eq!(my_iterable_fav_fruits.next(), None); // TODO: Step 4
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}
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@@ -3,7 +3,6 @@
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// can offer. Follow the steps to complete the exercise.
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// Execute `rustlings hint iterators2` or use the `hint` watch subcommand for a hint.
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// I AM NOT DONE
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// Step 1.
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// Complete the `capitalize_first` function.
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@@ -12,7 +11,7 @@ pub fn capitalize_first(input: &str) -> String {
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let mut c = input.chars();
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match c.next() {
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None => String::new(),
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Some(first) => ???,
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Some(first) => first.to_string().to_uppercase() + c.as_str(),
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}
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}
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@@ -21,7 +20,11 @@ pub fn capitalize_first(input: &str) -> String {
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// Return a vector of strings.
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// ["hello", "world"] -> ["Hello", "World"]
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pub fn capitalize_words_vector(words: &[&str]) -> Vec<String> {
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vec![]
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let mut combined = vec![];
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for word in words.iter() {
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combined.push(capitalize_first(word));
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}
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combined
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}
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// Step 3.
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@@ -29,7 +32,7 @@ pub fn capitalize_words_vector(words: &[&str]) -> Vec<String> {
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// Return a single string.
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// ["hello", " ", "world"] -> "Hello World"
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pub fn capitalize_words_string(words: &[&str]) -> String {
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String::new()
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capitalize_words_vector(words).join("")
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}
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#[cfg(test)]
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@@ -6,7 +6,6 @@
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// list_of_results functions.
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// Execute `rustlings hint iterators3` or use the `hint` watch subcommand for a hint.
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// I AM NOT DONE
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#[derive(Debug, PartialEq, Eq)]
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pub enum DivisionError {
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@@ -23,21 +22,25 @@ pub struct NotDivisibleError {
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// Calculate `a` divided by `b` if `a` is evenly divisible by `b`.
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// Otherwise, return a suitable error.
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pub fn divide(a: i32, b: i32) -> Result<i32, DivisionError> {
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todo!();
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if b == 0 { return Err(DivisionError::DivideByZero); }
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if (a%b) != 0 { return Err(DivisionError::NotDivisible(NotDivisibleError{dividend: a, divisor: b})); }
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Ok(a/b)
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}
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// Complete the function and return a value of the correct type so the test passes.
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// Desired output: Ok([1, 11, 1426, 3])
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fn result_with_list() -> () {
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fn result_with_list() -> Result<Vec<i32>, DivisionError>{
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let numbers = vec![27, 297, 38502, 81];
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let division_results = numbers.into_iter().map(|n| divide(n, 27));
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let division_results = numbers.into_iter().map(|n| divide(n, 27)).collect::<Result<Vec<i32>, DivisionError>>();
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Ok(division_results?)
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}
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// Complete the function and return a value of the correct type so the test passes.
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// Desired output: [Ok(1), Ok(11), Ok(1426), Ok(3)]
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fn list_of_results() -> () {
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fn list_of_results() -> Vec<Result<i32, DivisionError>> {
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let numbers = vec![27, 297, 38502, 81];
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let division_results = numbers.into_iter().map(|n| divide(n, 27));
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let division_results = numbers.into_iter().map(|n| divide(n, 27)).collect::<Vec<Result<i32, DivisionError>>>();
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division_results
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}
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#[cfg(test)]
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@@ -13,6 +13,7 @@ pub fn factorial(num: u64) -> u64 {
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// For an extra challenge, don't use:
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// - recursion
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// Execute `rustlings hint iterators4` for hints.
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vec![1..num].iter().rfold(1, |acc, x| acc + x)
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}
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#[cfg(test)]
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