Do not panic on invalid dice/sides amount for keep/drop.
continuous-integration/drone/push Build is passing
Details
continuous-integration/drone/push Build is passing
Details
Insted of unwrap(), map error to a nom parser error. Not the best-est solution, but it is functional. The TooLarge value seems appropriate.
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@ -4,6 +4,8 @@
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* project.
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*/
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use nom::bytes::complete::take_while;
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use nom::error::ErrorKind as NomErrorKind;
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use nom::Err as NomErr;
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use nom::{
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alt, bytes::complete::tag, character::complete::digit1, complete, many0, named,
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sequence::tuple, tag, IResult,
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@ -31,6 +33,12 @@ enum Sign {
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Minus,
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}
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macro_rules! too_big {
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($input: expr) => {
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NomErr::Error(($input, NomErrorKind::TooLarge))
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};
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}
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/// Parse a dice expression. Does not eat whitespace
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fn parse_dice(input: &str) -> IResult<&str, Dice> {
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// parse main dice expression
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@ -41,7 +49,7 @@ fn parse_dice(input: &str) -> IResult<&str, Dice> {
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// if ok, keep expression is present
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Ok((rest, (_, keep_amount))) => (keep_amount, rest),
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// otherwise absent and keep all dice
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Err(_) => ("", input)
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Err(_) => ("", input),
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};
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// check for drop expression to drop highest dice (2d20dh1)
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@ -49,10 +57,10 @@ fn parse_dice(input: &str) -> IResult<&str, Dice> {
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// if ok, keep expression is present
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Ok((rest, (_, drop_amount))) => (drop_amount, rest),
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// otherwise absent and keep all dice
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Err(_) => ("", input)
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Err(_) => ("", input),
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};
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let count: u32 = count.parse().unwrap();
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let count: u32 = count.parse().map_err(|_| too_big!(count))?;
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// don't allow keep greater than number of dice, and don't allow keep zero
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let keep_drop = match keep.parse::<u32>() {
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@ -72,13 +80,11 @@ fn parse_dice(input: &str) -> IResult<&str, Dice> {
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// Err, there's neither keep nor drop
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Err(_) => KeepOrDrop::None,
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}
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},
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}
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};
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Ok((
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input,
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Dice::new(count, sides.parse().unwrap(), keep_drop),
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))
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let sides = sides.parse().map_err(|_| too_big!(sides))?;
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Ok((input, Dice::new(count, sides, keep_drop)))
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}
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// Parse a single digit expression. Does not eat whitespace
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@ -149,18 +155,80 @@ mod tests {
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use super::*;
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#[test]
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fn dice_test() {
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assert_eq!(parse_dice("2d4"), Ok(("", Dice::new(2, 4, KeepOrDrop::None))));
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assert_eq!(parse_dice("20d40"), Ok(("", Dice::new(20, 40, KeepOrDrop::None))));
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assert_eq!(parse_dice("8d7"), Ok(("", Dice::new(8, 7, KeepOrDrop::None))));
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assert_eq!(parse_dice("2d20k1"), Ok(("", Dice::new(2, 20, KeepOrDrop::Keep(1)))));
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assert_eq!(parse_dice("100d10k90"), Ok(("", Dice::new(100, 10, KeepOrDrop::Keep(90)))));
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assert_eq!(parse_dice("11d10k10"), Ok(("", Dice::new(11, 10, KeepOrDrop::Keep(10)))));
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assert_eq!(parse_dice("12d10k11"), Ok(("", Dice::new(12, 10, KeepOrDrop::Keep(11)))));
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assert_eq!(parse_dice("12d10k13"), Ok(("", Dice::new(12, 10, KeepOrDrop::None))));
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assert_eq!(parse_dice("12d10k0"), Ok(("", Dice::new(12, 10, KeepOrDrop::None))));
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assert_eq!(parse_dice("20d40dh5"), Ok(("", Dice::new(20, 40, KeepOrDrop::Drop(5)))));
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assert_eq!(parse_dice("8d7dh9"), Ok(("", Dice::new(8, 7, KeepOrDrop::None))));
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assert_eq!(parse_dice("8d7dh8"), Ok(("", Dice::new(8, 7, KeepOrDrop::None))));
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assert_eq!(
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parse_dice("2d4"),
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Ok(("", Dice::new(2, 4, KeepOrDrop::None)))
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);
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assert_eq!(
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parse_dice("20d40"),
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Ok(("", Dice::new(20, 40, KeepOrDrop::None)))
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);
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assert_eq!(
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parse_dice("8d7"),
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Ok(("", Dice::new(8, 7, KeepOrDrop::None)))
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);
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assert_eq!(
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parse_dice("2d20k1"),
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Ok(("", Dice::new(2, 20, KeepOrDrop::Keep(1))))
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);
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assert_eq!(
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parse_dice("100d10k90"),
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Ok(("", Dice::new(100, 10, KeepOrDrop::Keep(90))))
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);
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assert_eq!(
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parse_dice("11d10k10"),
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Ok(("", Dice::new(11, 10, KeepOrDrop::Keep(10))))
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);
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assert_eq!(
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parse_dice("12d10k11"),
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Ok(("", Dice::new(12, 10, KeepOrDrop::Keep(11))))
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);
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assert_eq!(
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parse_dice("12d10k13"),
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Ok(("", Dice::new(12, 10, KeepOrDrop::None)))
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);
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assert_eq!(
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parse_dice("12d10k0"),
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Ok(("", Dice::new(12, 10, KeepOrDrop::None)))
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);
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assert_eq!(
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parse_dice("20d40dh5"),
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Ok(("", Dice::new(20, 40, KeepOrDrop::Drop(5))))
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);
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assert_eq!(
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parse_dice("8d7dh9"),
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Ok(("", Dice::new(8, 7, KeepOrDrop::None)))
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);
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assert_eq!(
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parse_dice("8d7dh8"),
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Ok(("", Dice::new(8, 7, KeepOrDrop::None)))
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);
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}
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#[test]
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fn big_number_of_dice_doesnt_crash_test() {
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let res = parse_dice("64378631476346123874527551481376547657868536d4");
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assert!(res.is_err());
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match res {
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Err(NomErr::Error((input, kind))) => {
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assert_eq!(kind, NomErrorKind::TooLarge);
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assert_eq!(input, "64378631476346123874527551481376547657868536");
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}
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_ => panic!("Got success, expected error"),
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}
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}
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#[test]
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fn big_number_of_sides_doesnt_crash_test() {
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let res = parse_dice("1d423562312587425472658956278456298376234876");
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assert!(res.is_err());
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match res {
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Err(NomErr::Error((input, kind))) => {
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assert_eq!(kind, NomErrorKind::TooLarge);
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assert_eq!(input, "423562312587425472658956278456298376234876");
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}
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_ => panic!("Got success, expected error"),
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}
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}
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#[test]
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@ -219,7 +287,9 @@ mod tests {
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Ok((
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"",
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ElementExpression(vec![SignedElement::Positive(Element::Dice(Dice::new(
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8, 4, KeepOrDrop::None
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8,
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4,
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KeepOrDrop::None
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)))])
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))
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);
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@ -238,7 +308,9 @@ mod tests {
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Ok((
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" \n ",
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ElementExpression(vec![SignedElement::Negative(Element::Dice(Dice::new(
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8, 4, KeepOrDrop::None
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8,
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4,
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KeepOrDrop::None
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)))])
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))
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);
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