2025-05-21 00:03:36 +02:00
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use std::rc::Rc;
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2025-05-14 11:42:19 +02:00
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use std::str::FromStr;
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use lalrpop_util::ParseError;
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2025-05-19 00:10:23 +02:00
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use crate::rsprocess::structure::{RSset, RSprocess, RSenvironment, RSassert, RSassertOp, RSBHML};
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2025-06-16 14:46:04 +02:00
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use crate::rsprocess::translator::{Translator, IdType};
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grammar(translator: &mut Translator);
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// matches words (letter followed by numbers, letters or _)
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Literal = { r"[[:alpha:]][[:word:]]*" };
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// all numbers are i64
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Num: i64 = {
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r"[0-9]+" =>? i64::from_str(<>)
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.map_err(|_| ParseError::User { error: "Number is too big" })
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};
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// macro for matching sequence of patterns with C as separator
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Separeted<T, C>: Vec<T> = {
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<mut v:(<T> C)+> <e:T?> => match e {
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None => v,
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Some(e) => {
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v.push(e);
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v
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}
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}
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};
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// ----- SetParser -----
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pub Set: RSset = {
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<s: Set_of_entities> => s
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};
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Set_of_entities: RSset = {
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"{" "}" => RSset::from(vec![]),
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"{" <t: Literal> "}" => RSset::from(vec![translator.convert(t)]),
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"{" <t: Separeted<Literal, ",">> "}" =>
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RSset::from(t.into_iter().map(|t| translator.convert(t)).collect::<Vec<_>>())
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};
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// ----- ContextParser -----
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pub Context: Box<RSprocess> = {
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// "[" "]" => Box::new(RSprocess::Nill),
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// "[" <t: CTX_process> "]" => Box::new(t),
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// "[" <t: Separeted<Boxed_CTX_process, ",">> "]" =>
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// Box::new(RSprocess::NondeterministicChoice{ children: t })
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"[" "]" => Box::new(RSprocess::NondeterministicChoice{ children: vec![] }),
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"[" <t: CTX_process> "]" =>
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Box::new(RSprocess::NondeterministicChoice{children: vec![Rc::new(t)]}),
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"[" <t: Separeted<Boxed_CTX_process, ",">> "]" =>
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Box::new(RSprocess::NondeterministicChoice{ children: t })
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};
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Boxed_CTX_process: Rc<RSprocess> = {
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<t: CTX_process> => Rc::new(t)
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}
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CTX_process: RSprocess = {
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<c: Set_of_entities> "." <k: CTX_process> =>
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RSprocess::EntitySet{ entities: c, next_process: Rc::new(k) },
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"(" <k: CTX_process> ")" => k,
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"(" <k: Separeted<CTX_process, "+">> ")" =>
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RSprocess::Summation{ children: k.into_iter().map(|k| Rc::new(k)).collect::<Vec<_>>() },
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"<" <n: Num> <k1: CTX_process> ">" "." <k: CTX_process> =>
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RSprocess::WaitEntity{ repeat: n,
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repeated_process: Rc::new(k1),
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next_process: Rc::new(k)},
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"nil" => RSprocess::Nill,
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<identifier: Literal> =>
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RSprocess::RecursiveIdentifier{ identifier: translator.convert(identifier) }
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};
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// ----- EnvironmentParser -----
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pub Environment: Box<RSenvironment> = {
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"[" "]" => Box::new(RSenvironment::new()),
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"[" <t: Separeted<Env_term, ",">> "]" => Box::new(RSenvironment::from(t))
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};
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Env_term: (IdType, RSprocess) = {
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<identifier: Literal> "=" <k: CTX_process> =>
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(translator.convert(identifier), k)
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};
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// ----- AssertParser -----
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pub Assert: Box<RSassert> = {
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<f: Formula_Assert> => Box::new(f)
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};
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Formula_Assert: RSassert = {
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"-" <f: Formula_Assert> => RSassert::Not(Box::new(f)),
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"(" <f1: Formula_Assert> "^" <f2: Formula_Assert> ")" =>
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RSassert::Xor(Box::new(f1), Box::new(f2)),
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"(" <f: Separeted<Formula_Assert, "\\/">> ")" => RSassert::Or(f),
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"(" <f: Separeted<Formula_Assert, "/\\">> ")" => RSassert::And(f),
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<c: Set_of_entities> "inW" => RSassert::Sub(c, RSassertOp::InW),
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<c: Set_of_entities> "inR" => RSassert::Sub(c, RSassertOp::InR),
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<c: Set_of_entities> "inI" => RSassert::Sub(c, RSassertOp::InI),
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<c: Set_of_entities> "inP" => RSassert::Sub(c, RSassertOp::InP),
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"?" "inW" => RSassert::NonEmpty(RSassertOp::InW),
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"?" "inR" => RSassert::NonEmpty(RSassertOp::InR),
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"?" "inI" => RSassert::NonEmpty(RSassertOp::InI),
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"?" "inP" => RSassert::NonEmpty(RSassertOp::InP),
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};
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// ----- BHMLParser -----
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pub BHML: Box<RSBHML> = {
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<g: Formula_BHML> => Box::new(g)
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};
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Formula_BHML: RSBHML = {
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"true" => RSBHML::True,
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"false" => RSBHML::False,
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"(" <g: Separeted<Formula_BHML, "\\/">> ")" => RSBHML::Or(g),
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"(" <g: Separeted<Formula_BHML, "/\\">> ")" => RSBHML::And(g),
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"<" <f: Formula_Assert> ">" <g: Formula_BHML> =>
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RSBHML::Diamond(Box::new(f), Box::new(g)),
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"[" <f: Formula_Assert> "]" <g: Formula_BHML> =>
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RSBHML::Box(Box::new(f), Box::new(g)),
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};
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