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errors6 solution
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@ -1,52 +1,51 @@
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// Using catch-all error types like `Box<dyn error::Error>` isn't recommended
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// for library code, where callers might want to make decisions based on the
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// error content, instead of printing it out or propagating it further. Here, we
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// define a custom error type to make it possible for callers to decide what to
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// do next when our function returns an error.
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// Using catch-all error types like `Box<dyn Error>` isn't recommended for
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// library code where callers might want to make decisions based on the error
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// content instead of printing it out or propagating it further. Here, we define
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// a custom error type to make it possible for callers to decide what to do next
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// when our function returns an error.
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use std::num::ParseIntError;
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// This is a custom error type that we will be using in `parse_pos_nonzero()`.
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#[derive(PartialEq, Debug)]
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enum ParsePosNonzeroError {
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Creation(CreationError),
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ParseInt(ParseIntError),
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}
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impl ParsePosNonzeroError {
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fn from_creation(err: CreationError) -> ParsePosNonzeroError {
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ParsePosNonzeroError::Creation(err)
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}
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// TODO: add another error conversion function here.
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// fn from_parseint...
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}
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fn parse_pos_nonzero(s: &str) -> Result<PositiveNonzeroInteger, ParsePosNonzeroError> {
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// TODO: change this to return an appropriate error instead of panicking
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// when `parse()` returns an error.
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let x: i64 = s.parse().unwrap();
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PositiveNonzeroInteger::new(x).map_err(ParsePosNonzeroError::from_creation)
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}
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// Don't change anything below this line.
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#[derive(PartialEq, Debug)]
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struct PositiveNonzeroInteger(u64);
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#[derive(PartialEq, Debug)]
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enum CreationError {
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Negative,
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Zero,
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}
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// A custom error type that we will be using in `PositiveNonzeroInteger::parse`.
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#[derive(PartialEq, Debug)]
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enum ParsePosNonzeroError {
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Creation(CreationError),
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ParseInt(ParseIntError),
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}
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impl ParsePosNonzeroError {
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fn from_creation(err: CreationError) -> Self {
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Self::Creation(err)
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}
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// TODO: Add another error conversion function here.
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// fn from_parseint(???) -> Self { ??? }
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}
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#[derive(PartialEq, Debug)]
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struct PositiveNonzeroInteger(u64);
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impl PositiveNonzeroInteger {
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fn new(value: i64) -> Result<PositiveNonzeroInteger, CreationError> {
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fn new(value: i64) -> Result<Self, CreationError> {
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match value {
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x if x < 0 => Err(CreationError::Negative),
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x if x == 0 => Err(CreationError::Zero),
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x => Ok(PositiveNonzeroInteger(x as u64)),
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x => Ok(Self(x as u64)),
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}
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}
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fn parse(s: &str) -> Result<Self, ParsePosNonzeroError> {
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// TODO: change this to return an appropriate error instead of panicking
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// when `parse()` returns an error.
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let x: i64 = s.parse().unwrap();
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Self::new(x).map_err(ParsePosNonzeroError::from_creation)
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}
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}
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fn main() {
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@ -56,36 +55,36 @@ fn main() {
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#[cfg(test)]
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mod test {
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use super::*;
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use std::num::IntErrorKind;
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#[test]
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fn test_parse_error() {
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// We can't construct a ParseIntError, so we have to pattern match.
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assert!(matches!(
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parse_pos_nonzero("not a number"),
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Err(ParsePosNonzeroError::ParseInt(_))
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PositiveNonzeroInteger::parse("not a number"),
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Err(ParsePosNonzeroError::ParseInt(_)),
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));
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}
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#[test]
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fn test_negative() {
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assert_eq!(
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parse_pos_nonzero("-555"),
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Err(ParsePosNonzeroError::Creation(CreationError::Negative))
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PositiveNonzeroInteger::parse("-555"),
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Err(ParsePosNonzeroError::Creation(CreationError::Negative)),
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);
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}
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#[test]
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fn test_zero() {
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assert_eq!(
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parse_pos_nonzero("0"),
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Err(ParsePosNonzeroError::Creation(CreationError::Zero))
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PositiveNonzeroInteger::parse("0"),
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Err(ParsePosNonzeroError::Creation(CreationError::Zero)),
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);
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}
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#[test]
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fn test_positive() {
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let x = PositiveNonzeroInteger::new(42);
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assert!(x.is_ok());
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assert_eq!(parse_pos_nonzero("42"), Ok(x.unwrap()));
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let x = PositiveNonzeroInteger::new(42).unwrap();
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assert_eq!(x.0, 42);
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assert_eq!(PositiveNonzeroInteger::parse("42"), Ok(x));
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}
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}
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@ -714,17 +714,13 @@ https://doc.rust-lang.org/stable/rust-by-example/error/multiple_error_types/reen
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name = "errors6"
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dir = "13_error_handling"
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hint = """
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This exercise uses a completed version of `PositiveNonzeroInteger` from
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errors4.
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This exercise uses a completed version of `PositiveNonzeroInteger` from the
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previous exercises.
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Below the line that `TODO` asks you to change, there is an example of using
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the `map_err()` method on a `Result` to transform one type of error into
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another. Try using something similar on the `Result` from `parse()`. You
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might use the `?` operator to return early from the function, or you might
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use a `match` expression, or maybe there's another way!
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You can create another function inside `impl ParsePosNonzeroError` to use
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with `map_err()`.
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can then use the `?` operator to return early.
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Read more about `map_err()` in the `std::result` documentation:
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https://doc.rust-lang.org/std/result/enum.Result.html#method.map_err"""
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@ -1 +1,92 @@
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// Solutions will be available before the stable release. Thank you for testing the beta version 🥰
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// Using catch-all error types like `Box<dyn Error>` isn't recommended for
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// library code where callers might want to make decisions based on the error
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// content instead of printing it out or propagating it further. Here, we define
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// a custom error type to make it possible for callers to decide what to do next
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// when our function returns an error.
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use std::num::ParseIntError;
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#[derive(PartialEq, Debug)]
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enum CreationError {
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Negative,
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Zero,
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}
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// A custom error type that we will be using in `PositiveNonzeroInteger::parse`.
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#[derive(PartialEq, Debug)]
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enum ParsePosNonzeroError {
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Creation(CreationError),
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ParseInt(ParseIntError),
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}
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impl ParsePosNonzeroError {
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fn from_creation(err: CreationError) -> Self {
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Self::Creation(err)
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}
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fn from_parseint(err: ParseIntError) -> Self {
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Self::ParseInt(err)
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}
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}
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#[derive(PartialEq, Debug)]
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struct PositiveNonzeroInteger(u64);
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impl PositiveNonzeroInteger {
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fn new(value: i64) -> Result<Self, CreationError> {
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match value {
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x if x < 0 => Err(CreationError::Negative),
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x if x == 0 => Err(CreationError::Zero),
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x => Ok(Self(x as u64)),
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}
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}
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fn parse(s: &str) -> Result<Self, ParsePosNonzeroError> {
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// Return an appropriate error instead of panicking when `parse()`
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// returns an error.
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let x: i64 = s.parse().map_err(ParsePosNonzeroError::from_parseint)?;
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// ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
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Self::new(x).map_err(ParsePosNonzeroError::from_creation)
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}
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}
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fn main() {
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// You can optionally experiment here.
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}
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#[cfg(test)]
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mod test {
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use super::*;
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use std::num::IntErrorKind;
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#[test]
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fn test_parse_error() {
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assert!(matches!(
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PositiveNonzeroInteger::parse("not a number"),
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Err(ParsePosNonzeroError::ParseInt(_)),
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));
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}
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#[test]
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fn test_negative() {
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assert_eq!(
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PositiveNonzeroInteger::parse("-555"),
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Err(ParsePosNonzeroError::Creation(CreationError::Negative)),
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);
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}
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#[test]
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fn test_zero() {
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assert_eq!(
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PositiveNonzeroInteger::parse("0"),
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Err(ParsePosNonzeroError::Creation(CreationError::Zero)),
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);
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}
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#[test]
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fn test_positive() {
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let x = PositiveNonzeroInteger::new(42).unwrap();
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assert_eq!(x.0, 42);
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assert_eq!(PositiveNonzeroInteger::parse("42"), Ok(x));
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}
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}
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