Keep/Drop Function #92
12
README.md
12
README.md
|
@ -118,8 +118,16 @@ expressions.
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!r 3d12 - 5d2 + 3 - 7d3 + 20d20
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```
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This system does not yet have the capability to handle things like D&D
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5e advantage or disadvantage.
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#### Keep/Drop Dice
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The bot supports either keeping the highest dice in a roll, or
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dropping the highest dice in a roll. This allows the bot to handle
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things like D&D 5e advantage or disadvantage.
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```
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!roll 2d20k1
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!r 2d20dh1 + 5
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!r 10d10k5 + 10d10dh5 - 2
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```
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### Storytelling System
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@ -12,17 +12,29 @@ use std::ops::{Deref, DerefMut};
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pub struct Dice {
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pub(crate) count: u32,
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pub(crate) sides: u32,
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pub(crate) keep_drop: KeepOrDrop,
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}
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impl fmt::Display for Dice {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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write!(f, "{}d{}", self.count, self.sides)
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match self.keep_drop {
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KeepOrDrop::Keep(keep) => write!(f, "{}d{}k{}", self.count, self.sides, keep),
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KeepOrDrop::Drop(drop) => write!(f, "{}d{}dh{}", self.count, self.sides, drop),
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KeepOrDrop::None => write!(f, "{}d{}", self.count, self.sides),
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}
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}
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}
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#[derive(Debug, PartialEq, Eq, Clone, Copy)]
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pub enum KeepOrDrop {
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Keep (u32),
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Drop (u32),
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None,
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}
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impl Dice {
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pub fn new(count: u32, sides: u32) -> Dice {
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Dice { count, sides }
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pub fn new(count: u32, sides: u32, keep_drop: KeepOrDrop) -> Dice {
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Dice { count, sides, keep_drop }
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}
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}
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@ -31,12 +31,53 @@ enum Sign {
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Minus,
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}
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// Parse a dice expression. Does not eat whitespace
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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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let (input, (count, _, sides)) = tuple((digit1, tag("d"), digit1))(input)?;
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// check for keep expression to keep highest dice (2d20k1)
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let (keep, input) = match tuple::<&str, _, (_, _), _>((tag("k"), digit1))(input) {
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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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};
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// check for drop expression to drop highest dice (2d20dh1)
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let (drop, input) = match tuple::<&str, _, (_, _), _>((tag("dh"), digit1))(input) {
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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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};
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let count: u32 = count.parse().unwrap();
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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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// Ok, there's a keep value, check and create Keep
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Ok(i) => match i {
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_i if _i > count || _i == 0 => KeepOrDrop::None,
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i => KeepOrDrop::Keep(i),
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},
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// Err, check if drop works
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Err(_) => {
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match drop.parse::<u32>() {
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// Ok, there's a drop value, check and create Drop
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Ok(i) => match i {
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_i if i >= count => KeepOrDrop::None,
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i => KeepOrDrop::Drop(i),
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},
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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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Ok((
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input,
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Dice::new(count.parse().unwrap(), sides.parse().unwrap()),
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Dice::new(count, sides.parse().unwrap(), keep_drop),
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))
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}
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@ -108,16 +149,29 @@ 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))));
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assert_eq!(parse_dice("20d40"), Ok(("", Dice::new(20, 40))));
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assert_eq!(parse_dice("8d7"), Ok(("", Dice::new(8, 7))));
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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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}
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#[test]
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fn element_test() {
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assert_eq!(
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parse_element(" \t\n\r\n 8d7 \n"),
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Ok((" \n", Element::Dice(Dice::new(8, 7))))
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Ok((" \n", Element::Dice(Dice::new(8, 7, KeepOrDrop::None))))
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);
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assert_eq!(
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parse_element(" \t\n\r\n 3d20k2 \n"),
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Ok((" \n", Element::Dice(Dice::new(3, 20, KeepOrDrop::Keep(2)))))
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);
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assert_eq!(
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parse_element(" \t\n\r\n 8 \n"),
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@ -139,14 +193,21 @@ mod tests {
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parse_signed_element(" \t\n\r\n- 8d4 \n"),
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Ok((
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" \n",
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SignedElement::Negative(Element::Dice(Dice::new(8, 4)))
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SignedElement::Negative(Element::Dice(Dice::new(8, 4, KeepOrDrop::None)))
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))
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);
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assert_eq!(
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parse_signed_element(" \t\n\r\n- 8d4k4 \n"),
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Ok((
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" \n",
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SignedElement::Negative(Element::Dice(Dice::new(8, 4, KeepOrDrop::Keep(4))))
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))
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);
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assert_eq!(
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parse_signed_element(" \t\n\r\n+ 8d4 \n"),
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Ok((
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" \n",
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SignedElement::Positive(Element::Dice(Dice::new(8, 4)))
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SignedElement::Positive(Element::Dice(Dice::new(8, 4, KeepOrDrop::None)))
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))
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);
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}
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@ -158,29 +219,39 @@ 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
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8, 4, KeepOrDrop::None
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)))])
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))
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);
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assert_eq!(
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parse_element_expression("\t2d20k1 + 5"),
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Ok((
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"",
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ElementExpression(vec![
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SignedElement::Positive(Element::Dice(Dice::new(2, 20, KeepOrDrop::Keep(1)))),
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SignedElement::Positive(Element::Bonus(5)),
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])
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))
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);
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assert_eq!(
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parse_element_expression(" - 8d4 \n "),
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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
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8, 4, KeepOrDrop::None
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)))])
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))
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);
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assert_eq!(
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parse_element_expression("\t3d4 + 7 - 5 - 6d12 + 1d1 + 53 1d5 "),
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parse_element_expression("\t3d4k2 + 7 - 5 - 6d12dh3 + 1d1 + 53 1d5 "),
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Ok((
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" 1d5 ",
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ElementExpression(vec![
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SignedElement::Positive(Element::Dice(Dice::new(3, 4))),
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SignedElement::Positive(Element::Dice(Dice::new(3, 4, KeepOrDrop::Keep(2)))),
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SignedElement::Positive(Element::Bonus(7)),
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SignedElement::Negative(Element::Bonus(5)),
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SignedElement::Negative(Element::Dice(Dice::new(6, 12))),
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SignedElement::Positive(Element::Dice(Dice::new(1, 1))),
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SignedElement::Negative(Element::Dice(Dice::new(6, 12, KeepOrDrop::Drop(3)))),
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SignedElement::Positive(Element::Dice(Dice::new(1, 1, KeepOrDrop::None))),
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SignedElement::Positive(Element::Bonus(53)),
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])
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))
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@ -4,6 +4,7 @@
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* project.
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*/
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use crate::basic::dice;
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use crate::basic::dice::KeepOrDrop;
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use rand::prelude::*;
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use std::fmt;
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use std::ops::{Deref, DerefMut};
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@ -19,15 +20,27 @@ pub trait Rolled {
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}
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#[derive(Debug, PartialEq, Eq, Clone)]
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pub struct DiceRoll(pub Vec<u32>);
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/// array of rolls in order, how many dice to keep, and how many to drop
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/// keep indicates how many of the highest dice to keep
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/// drop indicates how many of the highest dice to drop
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pub struct DiceRoll (pub Vec<u32>, usize, usize);
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impl DiceRoll {
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pub fn rolls(&self) -> &[u32] {
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&self.0
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}
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pub fn keep(&self) -> usize {
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self.1
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}
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pub fn drop(&self) -> usize {
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self.2
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}
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// only count kept dice in total
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pub fn total(&self) -> u32 {
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self.0.iter().sum()
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self.0[self.2..self.1].iter().sum()
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}
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}
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|
@ -41,11 +54,21 @@ impl fmt::Display for DiceRoll {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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write!(f, "{}", self.rolled_value())?;
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let rolls = self.rolls();
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let mut iter = rolls.iter();
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let keep = self.keep();
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let drop = self.drop();
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let mut iter = rolls.iter().enumerate();
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if let Some(first) = iter.next() {
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write!(f, " ({}", first)?;
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if drop != 0 {
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write!(f, " ([{}]", first.1)?;
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} else {
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write!(f, " ({}", first.1)?;
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}
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for roll in iter {
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write!(f, " + {}", roll)?;
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if roll.0 >= keep || roll.0 < drop {
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write!(f, " + [{}]", roll.1)?;
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} else {
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write!(f, " + {}", roll.1)?;
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}
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}
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write!(f, ")")?;
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}
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|
@ -58,11 +81,17 @@ impl Roll for dice::Dice {
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fn roll(&self) -> DiceRoll {
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let mut rng = rand::thread_rng();
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let rolls: Vec<_> = (0..self.count)
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let mut rolls: Vec<_> = (0..self.count)
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.map(|_| rng.gen_range(1..=self.sides))
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.collect();
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// sort rolls in descending order
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rolls.sort_by(|a, b| b.cmp(a));
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|
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DiceRoll(rolls)
|
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match self.keep_drop {
|
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KeepOrDrop::Keep(k) => DiceRoll(rolls,k as usize, 0),
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KeepOrDrop::Drop(dh) => DiceRoll(rolls,self.count as usize, dh as usize),
|
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KeepOrDrop::None => DiceRoll(rolls,self.count as usize, 0),
|
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}
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}
|
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}
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|
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|
@ -198,18 +227,26 @@ mod tests {
|
|||
use super::*;
|
||||
#[test]
|
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fn dice_roll_display_test() {
|
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assert_eq!(DiceRoll(vec![1, 3, 4]).to_string(), "8 (1 + 3 + 4)");
|
||||
assert_eq!(DiceRoll(vec![]).to_string(), "0");
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||||
assert_eq!(DiceRoll(vec![1, 3, 4], 3, 0).to_string(), "8 (1 + 3 + 4)");
|
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assert_eq!(DiceRoll(vec![], 0, 0).to_string(), "0");
|
||||
assert_eq!(
|
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DiceRoll(vec![4, 7, 2, 10]).to_string(),
|
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DiceRoll(vec![4, 7, 2, 10], 4, 0).to_string(),
|
||||
"23 (4 + 7 + 2 + 10)"
|
||||
);
|
||||
assert_eq!(
|
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DiceRoll(vec![20, 13, 11, 10], 3, 0).to_string(),
|
||||
"44 (20 + 13 + 11 + [10])"
|
||||
);
|
||||
assert_eq!(
|
||||
DiceRoll(vec![20, 13, 11, 10], 4, 1).to_string(),
|
||||
"34 ([20] + 13 + 11 + 10)"
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn element_roll_display_test() {
|
||||
assert_eq!(
|
||||
ElementRoll::Dice(DiceRoll(vec![1, 3, 4])).to_string(),
|
||||
ElementRoll::Dice(DiceRoll(vec![1, 3, 4], 3, 0)).to_string(),
|
||||
"8 (1 + 3 + 4)"
|
||||
);
|
||||
assert_eq!(ElementRoll::Bonus(7).to_string(), "7");
|
||||
|
@ -218,11 +255,11 @@ mod tests {
|
|||
#[test]
|
||||
fn signed_element_roll_display_test() {
|
||||
assert_eq!(
|
||||
SignedElementRoll::Positive(ElementRoll::Dice(DiceRoll(vec![1, 3, 4]))).to_string(),
|
||||
SignedElementRoll::Positive(ElementRoll::Dice(DiceRoll(vec![1, 3, 4], 3, 0))).to_string(),
|
||||
"8 (1 + 3 + 4)"
|
||||
);
|
||||
assert_eq!(
|
||||
SignedElementRoll::Negative(ElementRoll::Dice(DiceRoll(vec![1, 3, 4]))).to_string(),
|
||||
SignedElementRoll::Negative(ElementRoll::Dice(DiceRoll(vec![1, 3, 4], 3, 0))).to_string(),
|
||||
"-8 (1 + 3 + 4)"
|
||||
);
|
||||
assert_eq!(
|
||||
|
@ -239,14 +276,14 @@ mod tests {
|
|||
fn element_expression_roll_display_test() {
|
||||
assert_eq!(
|
||||
ElementExpressionRoll(vec![SignedElementRoll::Positive(ElementRoll::Dice(
|
||||
DiceRoll(vec![1, 3, 4])
|
||||
DiceRoll(vec![1, 3, 4], 3, 0)
|
||||
)),])
|
||||
.to_string(),
|
||||
"8 (1 + 3 + 4)"
|
||||
);
|
||||
assert_eq!(
|
||||
ElementExpressionRoll(vec![SignedElementRoll::Negative(ElementRoll::Dice(
|
||||
DiceRoll(vec![1, 3, 4])
|
||||
DiceRoll(vec![1, 3, 4], 3, 0)
|
||||
)),])
|
||||
.to_string(),
|
||||
"-8 (1 + 3 + 4)"
|
||||
|
@ -263,8 +300,8 @@ mod tests {
|
|||
);
|
||||
assert_eq!(
|
||||
ElementExpressionRoll(vec![
|
||||
SignedElementRoll::Positive(ElementRoll::Dice(DiceRoll(vec![1, 3, 4]))),
|
||||
SignedElementRoll::Negative(ElementRoll::Dice(DiceRoll(vec![1, 2]))),
|
||||
SignedElementRoll::Positive(ElementRoll::Dice(DiceRoll(vec![1, 3, 4], 3, 0))),
|
||||
SignedElementRoll::Negative(ElementRoll::Dice(DiceRoll(vec![1, 2], 2, 0))),
|
||||
SignedElementRoll::Positive(ElementRoll::Bonus(4)),
|
||||
SignedElementRoll::Negative(ElementRoll::Bonus(7)),
|
||||
])
|
||||
|
@ -273,13 +310,33 @@ mod tests {
|
|||
);
|
||||
assert_eq!(
|
||||
ElementExpressionRoll(vec![
|
||||
SignedElementRoll::Negative(ElementRoll::Dice(DiceRoll(vec![1, 3, 4]))),
|
||||
SignedElementRoll::Positive(ElementRoll::Dice(DiceRoll(vec![1, 2]))),
|
||||
SignedElementRoll::Negative(ElementRoll::Dice(DiceRoll(vec![1, 3, 4], 3, 0))),
|
||||
SignedElementRoll::Positive(ElementRoll::Dice(DiceRoll(vec![1, 2], 2, 0))),
|
||||
SignedElementRoll::Negative(ElementRoll::Bonus(4)),
|
||||
SignedElementRoll::Positive(ElementRoll::Bonus(7)),
|
||||
])
|
||||
.to_string(),
|
||||
"-2 (-8 (1 + 3 + 4) + 3 (1 + 2) - 4 + 7)"
|
||||
);
|
||||
assert_eq!(
|
||||
ElementExpressionRoll(vec![
|
||||
SignedElementRoll::Negative(ElementRoll::Dice(DiceRoll(vec![4, 3, 1], 3, 0))),
|
||||
SignedElementRoll::Positive(ElementRoll::Dice(DiceRoll(vec![12, 2], 1, 0))),
|
||||
SignedElementRoll::Negative(ElementRoll::Bonus(4)),
|
||||
SignedElementRoll::Positive(ElementRoll::Bonus(7)),
|
||||
])
|
||||
.to_string(),
|
||||
"7 (-8 (4 + 3 + 1) + 12 (12 + [2]) - 4 + 7)"
|
||||
);
|
||||
assert_eq!(
|
||||
ElementExpressionRoll(vec![
|
||||
SignedElementRoll::Negative(ElementRoll::Dice(DiceRoll(vec![4, 3, 1], 3, 1))),
|
||||
SignedElementRoll::Positive(ElementRoll::Dice(DiceRoll(vec![12, 2], 2, 0))),
|
||||
SignedElementRoll::Negative(ElementRoll::Bonus(4)),
|
||||
SignedElementRoll::Positive(ElementRoll::Bonus(7)),
|
||||
])
|
||||
.to_string(),
|
||||
"13 (-4 ([4] + 3 + 1) + 14 (12 + 2) - 4 + 7)"
|
||||
);
|
||||
}
|
||||
}
|
||||
|
|
Loading…
Reference in New Issue