use crate::production::ProductionLogger;
use crate::{production::Structural, Cache, Code, FltrPtr, IProduction, TokenStream};
use crate::{ImplementationError, ParsedResult, SuccessData, TokenPtr};
use once_cell::unsync::OnceCell;
use std::{
collections::{HashMap, HashSet},
fmt::Display,
rc::Rc,
};
impl<TProd: IProduction> Structural<TProd> {
pub fn new(symbol: &Rc<TProd>) -> Self {
Self {
production: symbol.clone(),
debugger: OnceCell::new(),
}
}
#[inline]
pub fn get_symbol(&self) -> &TProd {
&self.production
}
}
impl<TP: IProduction> Structural<TP> {
pub fn set_log(&self, debugger: crate::Log<&'static str>) -> Result<(), String> {
self.debugger
.set(debugger)
.map_err(|err| format!("Debugger {} is already set for this production.", err))
}
}
impl<TProd: IProduction> ProductionLogger for Structural<TProd> {
fn get_debugger(&self) -> Option<&crate::Log<&'static str>> {
self.debugger.get()
}
}
impl<TProd: IProduction> Display for Structural<TProd> {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
write!(f, "%{}%", self.get_symbol())
}
}
impl<TProd: IProduction> IProduction for Structural<TProd> {
type Node = TProd::Node;
type Token = TProd::Token;
#[inline]
fn is_nullable(&self) -> bool {
self.get_symbol().is_nullable()
}
fn impl_grammar(
&self,
writer: &mut dyn std::fmt::Write,
visited: &mut HashSet<&'static str>,
) -> Result<(), std::fmt::Error> {
self.production.impl_grammar(writer, visited)
}
fn obtain_nullability<'id>(
&'id self,
visited: HashMap<&'id str, usize>,
) -> Result<bool, ImplementationError> {
self.production.obtain_nullability(visited)
}
fn impl_first_set<'prod>(&'prod self, first_set: &mut HashSet<TProd::Token>) {
self.production.impl_first_set(first_set)
}
fn is_nullable_n_hidden(&self) -> bool {
self.production.is_nullable()
}
#[inline]
fn validate<'id>(
&'id self,
first_sets: HashMap<&'id str, usize>,
visited_prod: &mut HashSet<&'id str>,
) -> Result<(), ImplementationError> {
self.get_symbol().validate(first_sets, visited_prod)
}
fn advance_fltr_ptr(
&self,
code: &Code,
fltr_ptr: FltrPtr,
token_stream: &TokenStream<Self::Token>,
cache: &mut Cache<FltrPtr, Self::Node>,
) -> ParsedResult<FltrPtr, Self::Node> {
let result = self
.get_symbol()
.advance_fltr_ptr(code, fltr_ptr, token_stream, cache);
#[cfg(debug_assertions)]
self.log_filtered_result(code, fltr_ptr, token_stream, &result);
result
}
fn advance_token_ptr(
&self,
code: &Code,
index: TokenPtr,
token_stream: &TokenStream<Self::Token>,
cache: &mut Cache<FltrPtr, Self::Node>,
) -> ParsedResult<TokenPtr, Self::Node> {
#[cfg(debug_assertions)]
self.log_entry();
let next_fltr_ptr = match token_stream.find_filter_ptr(index) {
Ok(fp) => fp + 1,
Err(fp) => fp,
};
let parsed_data =
self.get_symbol()
.advance_fltr_ptr(code, next_fltr_ptr, token_stream, cache)?;
#[cfg(debug_assertions)]
self.log_success(
code,
token_stream[index].start,
token_stream[parsed_data.consumed_index].start,
);
let last_token_ptr = if parsed_data.consumed_index > FltrPtr::default() {
token_stream.get_token_ptr(parsed_data.consumed_index - 1)
} else {
TokenPtr::default()
};
Ok(SuccessData::new(last_token_ptr + 1, parsed_data.children))
}
fn advance_ptr(
&self,
code: &Code,
index: usize,
cache: &mut Cache<usize, Self::Node>,
) -> ParsedResult<usize, Self::Node> {
self.get_symbol().advance_ptr(code, index, cache)
}
}