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-rw-r--r--exercises/standard_library_types/iterators5.rs51
1 files changed, 31 insertions, 20 deletions
diff --git a/exercises/standard_library_types/iterators5.rs b/exercises/standard_library_types/iterators5.rs
index 65c50e6..2d97bd4 100644
--- a/exercises/standard_library_types/iterators5.rs
+++ b/exercises/standard_library_types/iterators5.rs
@@ -1,11 +1,14 @@
// iterators5.rs
-// Rustling progress is modelled using a hash map. The name of the exercise is
-// the key and the progress is the value. Two counting functions were created
-// to count the number of exercises with a given progress. These counting
-// functions use imperative style for loops. Recreate this counting
-// functionality using iterators.
-// Execute `rustlings hint iterators5` for hints.
+// Let's define a simple model to track Rustlings exercise progress. Progress
+// will be modelled using a hash map. The name of the exercise is the key and
+// the progress is the value. Two counting functions were created to count the
+// number of exercises with a given progress. These counting functions use
+// imperative style for loops. Recreate this counting functionality using
+// iterators. Only the two iterator methods (count_iterator and
+// count_collection_iterator) need to be modified.
+// Execute `rustlings hint
+// iterators5` for hints.
//
// Make the code compile and the tests pass.
@@ -30,12 +33,14 @@ fn count_for(map: &HashMap<String, Progress>, value: Progress) -> usize {
count
}
-fn count(map: &HashMap<String, Progress>, value: Progress) -> usize {
+fn count_iterator(map: &HashMap<String, Progress>, value: Progress) -> usize {
+ // map is a hashmap with String keys and Progress values.
+ // map = { "variables1": Complete, "from_str": None, ... }
}
-fn count_stack_for(stack: &[HashMap<String, Progress>], value: Progress) -> usize {
+fn count_collection_for(collection: &[HashMap<String, Progress>], value: Progress) -> usize {
let mut count = 0;
- for map in stack {
+ for map in collection {
for val in map.values() {
if val == &value {
count += 1;
@@ -45,7 +50,10 @@ fn count_stack_for(stack: &[HashMap<String, Progress>], value: Progress) -> usiz
count
}
-fn count_stack(stack: &[HashMap<String, Progress>], value: Progress) -> usize {
+fn count_collection_iterator(collection: &[HashMap<String, Progress>], value: Progress) -> usize {
+ // collection is a slice of hashmaps.
+ // collection = [{ "variables1": Complete, "from_str": None, ... },
+ // { "variables2": Complete, ... }, ... ]
}
#[cfg(test)]
@@ -55,7 +63,7 @@ mod tests {
#[test]
fn count_complete() {
let map = get_map();
- assert_eq!(3, count(&map, Progress::Complete));
+ assert_eq!(3, count_iterator(&map, Progress::Complete));
}
#[test]
@@ -63,22 +71,25 @@ mod tests {
let map = get_map();
assert_eq!(
count_for(&map, Progress::Complete),
- count(&map, Progress::Complete)
+ count_iterator(&map, Progress::Complete)
);
}
#[test]
- fn count_stack_complete() {
- let stack = get_map_stack();
- assert_eq!(6, count_stack(&stack, Progress::Complete));
+ fn count_collection_complete() {
+ let collection = get_vec_map();
+ assert_eq!(
+ 6,
+ count_collection_iterator(&collection, Progress::Complete)
+ );
}
#[test]
- fn count_stack_equals_for() {
- let stack = get_map_stack();
+ fn count_collection_equals_for() {
+ let collection = get_vec_map();
assert_eq!(
- count_stack_for(&stack, Progress::Complete),
- count_stack(&stack, Progress::Complete)
+ count_collection_for(&collection, Progress::Complete),
+ count_collection_iterator(&collection, Progress::Complete)
);
}
@@ -96,7 +107,7 @@ mod tests {
map
}
- fn get_map_stack() -> Vec<HashMap<String, Progress>> {
+ fn get_vec_map() -> Vec<HashMap<String, Progress>> {
use Progress::*;
let map = get_map();