PluralKit/crates/command_parser/src/token.rs

174 lines
4.6 KiB
Rust

use std::fmt::{Debug, Display};
use smol_str::SmolStr;
use crate::parameter::{Parameter, ParameterKind, ParameterValue};
#[derive(Debug, Clone, PartialEq, Eq, Hash)]
pub enum Token {
/// A bot-defined command / subcommand (usually) (eg. "member" in `pk;member MyName`)
Value {
name: SmolStr,
aliases: Vec<SmolStr>,
},
/// A parameter that must be provided a value
Parameter(Parameter),
}
#[derive(Debug)]
pub enum TokenMatchResult {
MatchedValue,
MatchedParameter {
name: SmolStr,
value: ParameterValue,
},
ParameterMatchError {
input: SmolStr,
msg: SmolStr,
},
MissingParameter {
name: SmolStr,
},
}
// q: why not have a NoMatch variant in TokenMatchResult?
// a: because we want to differentiate between no match and match failure (it matched with an error)
// "no match" has a different charecteristic because we want to continue matching other tokens...
// ...while "match failure" means we should stop matching and return the error
type TryMatchResult = Option<TokenMatchResult>;
impl Token {
pub(super) fn try_match(&self, input: Option<&str>) -> TryMatchResult {
let input = match input {
Some(input) => input,
None => {
// short circuit on:
return match self {
// missing paramaters
Self::Parameter(param) => Some(TokenMatchResult::MissingParameter {
name: param.name().into(),
}),
// everything else doesnt match if no input anyway
Self::Value { .. } => None,
// don't add a _ match here!
};
}
};
let input = input.trim();
// try actually matching stuff
match self {
Self::Value { name, aliases } => (aliases.iter().chain(std::iter::once(name)))
.any(|v| v.eq(input))
.then(|| TokenMatchResult::MatchedValue),
Self::Parameter(param) => Some(match param.kind().match_value(input) {
Ok(matched) => TokenMatchResult::MatchedParameter {
name: param.name().into(),
value: matched,
},
Err(err) => TokenMatchResult::ParameterMatchError {
input: input.into(),
msg: err,
},
}),
// don't add a _ match here!
}
}
}
impl Display for Token {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
match self {
Self::Value { name, .. } => write!(f, "{name}"),
Self::Parameter(param) => param.kind().format(f, param.name()),
}
}
}
impl<const L: usize> From<(&str, [&str; L])> for Token {
fn from((name, aliases): (&str, [&str; L])) -> Self {
Self::Value {
name: name.into(),
aliases: aliases.into_iter().map(SmolStr::new).collect::<Vec<_>>(),
}
}
}
impl From<&str> for Token {
fn from(value: &str) -> Self {
Self::from((value, []))
}
}
impl From<Parameter> for Token {
fn from(value: Parameter) -> Self {
Self::Parameter(value)
}
}
impl From<ParameterKind> for Token {
fn from(value: ParameterKind) -> Self {
Self::from(Parameter::from(value))
}
}
impl From<(&str, ParameterKind)> for Token {
fn from(value: (&str, ParameterKind)) -> Self {
Self::from(Parameter::from(value))
}
}
#[derive(Debug, Clone)]
pub struct TokensIterator {
inner: Vec<Token>,
}
impl Iterator for TokensIterator {
type Item = Token;
fn next(&mut self) -> Option<Self::Item> {
(self.inner.len() > 0).then(|| self.inner.remove(0))
}
}
impl<T: Into<Token>> From<T> for TokensIterator {
fn from(value: T) -> Self {
Self {
inner: vec![value.into()],
}
}
}
impl<const L: usize> From<[Token; L]> for TokensIterator {
fn from(value: [Token; L]) -> Self {
Self {
inner: value.into_iter().collect(),
}
}
}
impl<const L: usize> From<[Self; L]> for TokensIterator {
fn from(value: [Self; L]) -> Self {
Self {
inner: value
.into_iter()
.map(|t| t.collect::<Vec<_>>())
.flatten()
.collect(),
}
}
}
impl From<Vec<Token>> for TokensIterator {
fn from(value: Vec<Token>) -> Self {
Self { inner: value }
}
}
#[macro_export]
macro_rules! tokens {
($($v:expr),+$(,)*) => {
$crate::token::TokensIterator::from([$($crate::token::TokensIterator::from($v.clone())),+])
};
}