litex-lang 0.9.70-beta

A simple formal proof language and verifier, learnable in 2 hours
Documentation
use crate::prelude::*;
use std::fmt;
#[derive(Clone)]
pub enum Fact {
    AtomicFact(AtomicFact),
    ExistFact(ExistFactEnum),
    OrFact(OrFact),
    AndFact(AndFact),
    ChainFact(ChainFact),
    ForallFact(ForallFact),
    ForallFactWithIff(ForallFactWithIff),
}

impl fmt::Debug for Fact {
    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
        write!(f, "{}", self)
    }
}

impl Fact {
    pub fn fact_type_string(&self) -> String {
        match self {
            Fact::AtomicFact(_) => "AtomicFact".to_string(),
            Fact::ExistFact(_) => "ExistFact".to_string(),
            Fact::OrFact(_) => "OrFact".to_string(),
            Fact::AndFact(_) => "AndFact".to_string(),
            Fact::ChainFact(_) => "ChainFact".to_string(),
            Fact::ForallFact(_) => "ForallFact".to_string(),
            Fact::ForallFactWithIff(_) => "ForallFactWithIff".to_string(),
        }
    }
}

impl fmt::Display for Fact {
    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
        match self {
            Fact::AtomicFact(atomic_fact) => write!(f, "{}", atomic_fact),
            Fact::ExistFact(exist_fact) => write!(f, "{}", exist_fact),
            Fact::OrFact(or_fact) => write!(f, "{}", or_fact),
            Fact::AndFact(and_fact) => write!(f, "{}", and_fact),
            Fact::ChainFact(chain_fact) => write!(f, "{}", chain_fact),
            Fact::ForallFact(forall_fact) => write!(f, "{}", forall_fact),
            Fact::ForallFactWithIff(forall_fact_with_iff) => write!(f, "{}", forall_fact_with_iff),
        }
    }
}

impl Fact {
    pub fn line_file(&self) -> LineFile {
        match self {
            Fact::AtomicFact(a) => a.line_file(),
            Fact::ExistFact(e) => e.line_file(),
            Fact::OrFact(o) => o.line_file.clone(),
            Fact::AndFact(a) => a.line_file(),
            Fact::ChainFact(c) => c.line_file(),
            Fact::ForallFact(f) => f.line_file.clone(),
            Fact::ForallFactWithIff(f) => f.line_file.clone(),
        }
    }

    pub fn into_stmt(self) -> Stmt {
        self.into()
    }
}

impl From<AtomicFact> for Fact {
    fn from(atomic_fact: AtomicFact) -> Self {
        Fact::AtomicFact(atomic_fact)
    }
}

impl From<OrFact> for Fact {
    fn from(or_fact: OrFact) -> Self {
        Fact::OrFact(or_fact)
    }
}

impl From<ForallFact> for Fact {
    fn from(forall_fact: ForallFact) -> Self {
        Fact::ForallFact(forall_fact)
    }
}

impl From<ExistFactEnum> for Fact {
    fn from(exist_fact: ExistFactEnum) -> Self {
        Fact::ExistFact(exist_fact)
    }
}

impl From<AndFact> for Fact {
    fn from(and_fact: AndFact) -> Self {
        Fact::AndFact(and_fact)
    }
}

impl From<ChainFact> for Fact {
    fn from(chain_fact: ChainFact) -> Self {
        Fact::ChainFact(chain_fact)
    }
}

impl From<AndChainAtomicFact> for Fact {
    fn from(f: AndChainAtomicFact) -> Self {
        match f {
            AndChainAtomicFact::AtomicFact(a) => a.into(),
            AndChainAtomicFact::AndFact(a) => a.into(),
            AndChainAtomicFact::ChainFact(c) => c.into(),
        }
    }
}

impl From<OrAndChainAtomicFact> for Fact {
    fn from(f: OrAndChainAtomicFact) -> Self {
        match f {
            OrAndChainAtomicFact::AtomicFact(a) => a.into(),
            OrAndChainAtomicFact::AndFact(a) => a.into(),
            OrAndChainAtomicFact::ChainFact(c) => c.into(),
            OrAndChainAtomicFact::OrFact(o) => o.into(),
        }
    }
}

impl From<ForallFactWithIff> for Fact {
    fn from(forall_fact_with_iff: ForallFactWithIff) -> Self {
        Fact::ForallFactWithIff(forall_fact_with_iff)
    }
}