Finish first version of interactive prover
This commit is contained in:
parent
228b2032f7
commit
52d8c84bc0
@ -10,3 +10,4 @@ edition = "2018"
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clap = "2.33"
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foliage = {path = "foliage"}
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nom = "5.0"
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regex = "1.3"
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101
src/error.rs
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101
src/error.rs
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@ -0,0 +1,101 @@
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pub type Source = Box<dyn std::error::Error>;
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pub enum Kind
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{
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ParseProject,
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NotAFile(std::path::PathBuf),
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WriteFile(std::path::PathBuf),
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RunVampire,
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InterpretVampireOutput(String, String),
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}
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pub struct Error
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{
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pub kind: Kind,
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pub source: Option<Source>,
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}
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impl Error
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{
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pub fn new(kind: Kind) -> Self
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{
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Self
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{
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kind,
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source: None,
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}
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}
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pub fn with<S: Into<Source>>(mut self, source: S) -> Self
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{
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self.source = Some(source.into());
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self
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}
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pub fn new_parse_project<S: Into<Source>>(source: S) -> Self
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{
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Self::new(Kind::ParseProject).with(source)
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}
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pub fn new_not_a_file(path: std::path::PathBuf) -> Self
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{
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Self::new(Kind::NotAFile(path))
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}
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pub fn new_write_file<S: Into<Source>>(path: std::path::PathBuf, source: S) -> Self
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{
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Self::new(Kind::WriteFile(path)).with(source)
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}
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pub fn new_run_vampire<S: Into<Source>>(source: S) -> Self
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{
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Self::new(Kind::RunVampire).with(source)
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}
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pub fn new_interpret_vampire_output(stdout: String, stderr: String) -> Self
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{
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Self::new(Kind::InterpretVampireOutput(stdout, stderr))
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}
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}
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impl std::fmt::Debug for Error
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{
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fn fmt(&self, formatter: &mut std::fmt::Formatter) -> std::fmt::Result
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{
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match self.kind
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{
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Kind::ParseProject => write!(formatter, "could not parse project file")?,
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Kind::NotAFile(ref file_path) => write!(formatter, "specified path is not a file ({})", file_path.display())?,
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Kind::WriteFile(ref file_path) => write!(formatter, "could not write file ({})", file_path.display())?,
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Kind::RunVampire => write!(formatter, "could not run Vampire")?,
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Kind::InterpretVampireOutput(ref stdout, ref stderr) => write!(formatter, "could not interpret Vampire output\n\n======== stdout =========\n{}\n\n======== stderr =========\n{}", stdout, stderr)?,
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}
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if let Some(source) = &self.source
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{
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write!(formatter, "\nerror source: {}", source)?;
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}
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Ok(())
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}
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}
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impl std::fmt::Display for Error
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{
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fn fmt(&self, formatter: &mut std::fmt::Formatter) -> std::fmt::Result
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{
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write!(formatter, "{:?}", self)
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}
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}
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impl std::error::Error for Error
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{
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fn source(&self) -> Option<&(dyn std::error::Error + 'static)>
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{
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match &self.source
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{
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Some(source) => Some(source.as_ref()),
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None => None,
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}
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}
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}
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@ -209,7 +209,11 @@ struct PredicateDeclarationDisplay<'a>(&'a foliage::PredicateDeclaration);
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struct TermDisplay<'a>(&'a foliage::Term);
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struct FormulaDisplay<'a>(&'a foliage::Formula);
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struct StatementKindDisplay<'a>(&'a crate::project::StatementKind);
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pub struct ProjectDisplay<'a>(&'a crate::project::Project);
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pub struct ProjectDisplay<'a>
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{
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project: &'a crate::project::Project,
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conjecture: (crate::project::StatementKind, &'a foliage::Formula),
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}
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impl<'a> DisplayTPTP<'a, VariableDeclarationDisplay<'a>> for foliage::VariableDeclaration
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{
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@ -251,11 +255,13 @@ impl<'a> DisplayTPTP<'a, StatementKindDisplay<'a>> for crate::project::Statement
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}
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}
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impl<'a> DisplayTPTP<'a, ProjectDisplay<'a>> for crate::project::Project
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pub fn display_project_with_conjecture_tptp<'a>(project: &'a crate::Project,
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conjecture: (crate::project::StatementKind, &'a foliage::Formula)) -> ProjectDisplay<'a>
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{
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fn display_tptp(&'a self) -> ProjectDisplay<'a>
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ProjectDisplay
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{
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ProjectDisplay(self)
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project,
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conjecture,
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}
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}
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@ -569,8 +575,8 @@ impl<'a> std::fmt::Debug for ProjectDisplay<'a>
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let tptp_preamble_anthem_axioms = include_str!("tptp_preamble_anthem_axioms.tptp").trim_end();
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write!(format, "\n{}", tptp_preamble_anthem_axioms)?;
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let predicate_declarations = collect_predicate_declarations_in_project(self.0);
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let symbolic_constants = collect_symbolic_constants_in_project(self.0);
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let predicate_declarations = collect_predicate_declarations_in_project(self.project);
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let symbolic_constants = collect_symbolic_constants_in_project(self.project);
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if !predicate_declarations.is_empty() || !symbolic_constants.is_empty()
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{
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@ -587,7 +593,7 @@ impl<'a> std::fmt::Debug for ProjectDisplay<'a>
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}
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}
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if let Some(axioms) = self.0.statements.get(&crate::project::StatementKind::Axiom)
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if let Some(axioms) = self.project.statements.get(&crate::project::StatementKind::Axiom)
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{
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write_title(format, "\n\n", "axioms")?;
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@ -597,27 +603,26 @@ impl<'a> std::fmt::Debug for ProjectDisplay<'a>
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}
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}
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if let Some(lemmas) = self.0.statements.get(&crate::project::StatementKind::Lemma)
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match self.conjecture
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{
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write_title(format, "\n\n", "lemmas")?;
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for lemma in lemmas
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(crate::project::StatementKind::Lemma, ref lemma) =>
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{
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write_title(format, "\n\n", "lemma")?;
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write!(format, "\ntff({:?}, {:?}).", crate::project::StatementKind::Lemma.display_tptp(), lemma.display_tptp())?;
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}
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}
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if let Some(conjectures) = self.0.statements.get(&crate::project::StatementKind::Conjecture)
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{
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write_title(format, "\n\n", "conjectures")?;
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for conjecture in conjectures
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Ok(())
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},
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(crate::project::StatementKind::Conjecture, ref conjecture) =>
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{
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write!(format, "\ntff({:?}, {:?}).", crate::project::StatementKind::Conjecture.display_tptp(), conjecture.display_tptp())?;
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}
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}
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write_title(format, "\n\n", "conjecture")?;
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Ok(())
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write!(format, "\ntff({:?}, {:?}).", crate::project::StatementKind::Conjecture.display_tptp(), conjecture.display_tptp())?;
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Ok(())
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},
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(crate::project::StatementKind::Axiom, _) => panic!("unexpected axiom"),
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}
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}
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}
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@ -1,6 +1,8 @@
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mod error;
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pub mod format;
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pub mod format_tptp;
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pub mod parse;
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mod project;
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pub mod project;
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pub use error::Error;
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pub use project::Project;
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164
src/main.rs
164
src/main.rs
@ -1,22 +1,172 @@
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use ask_dracula::format_tptp::DisplayTPTP;
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fn backup_file_path(file_path: &std::path::Path) -> Result<std::path::PathBuf, ask_dracula::Error>
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{
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let file_name = file_path.file_name()
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.ok_or(ask_dracula::Error::new_not_a_file(file_path.to_owned()))?;
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let mut i = 0;
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loop
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{
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i += 1;
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let backup_file_name = format!("{}.{}~", file_name.to_string_lossy(), i);
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let backup_file_path = file_path.with_file_name(backup_file_name);
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if !backup_file_path.exists()
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{
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return Ok(backup_file_path);
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}
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}
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}
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fn find_conjecture<'a>(project: &'a ask_dracula::Project) -> Option<(ask_dracula::project::StatementKind, &'a foliage::Formula)>
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{
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if let Some(lemmas) = project.statements.get(&ask_dracula::project::StatementKind::Lemma)
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{
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if let Some(lemma) = lemmas.first()
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{
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return Some((ask_dracula::project::StatementKind::Lemma, lemma));
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}
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}
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if let Some(conjectures) = project.statements.get(&ask_dracula::project::StatementKind::Conjecture)
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{
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if let Some(conjecture) = conjectures.first()
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{
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return Some((ask_dracula::project::StatementKind::Conjecture, conjecture));
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}
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}
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None
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}
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enum VampireResult
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{
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ProofNotFound,
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Refutation,
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Satisfiable,
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}
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fn run_vampire<I, S>(input: &str, arguments: Option<I>)
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-> Result<VampireResult, ask_dracula::Error>
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where I: IntoIterator<Item = S>, S: AsRef<std::ffi::OsStr>
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{
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let mut vampire = std::process::Command::new("vampire");
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let vampire = match arguments
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{
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Some(arguments) => vampire.args(arguments),
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None => &mut vampire,
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};
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let mut vampire = vampire
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.stdin(std::process::Stdio::piped())
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.stdout(std::process::Stdio::piped())
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.stderr(std::process::Stdio::piped())
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.spawn()
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.map_err(|error| ask_dracula::Error::new_run_vampire(error))?;
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{
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use std::io::Write;
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let vampire_stdin = vampire.stdin.as_mut().unwrap();
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vampire_stdin.write_all(input.as_bytes())
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.map_err(|error| ask_dracula::Error::new_run_vampire(error))?;
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}
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let output = vampire.wait_with_output()
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.map_err(|error| ask_dracula::Error::new_run_vampire(error))?;
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let stdout = std::str::from_utf8(&output.stdout)
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.map_err(|error| ask_dracula::Error::new_run_vampire(error))?;
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let stderr = std::str::from_utf8(&output.stderr)
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.map_err(|error| ask_dracula::Error::new_run_vampire(error))?;
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if !output.status.success()
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{
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let proof_not_found_regex = regex::Regex::new(r"% \(\d+\)Proof not found in time").unwrap();
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if proof_not_found_regex.is_match(stdout)
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{
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return Ok(VampireResult::ProofNotFound);
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}
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return Err(ask_dracula::Error::new_run_vampire(
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format!("Vampire returned unsuccessful exit code ({})\n\n======== stderr ========\n{}", output.status, std::str::from_utf8(&output.stdout).unwrap_or("(not valid UTF-8)").trim())));
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}
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let refutation_regex = regex::Regex::new(r"% \(\d+\)Termination reason: Refutation").unwrap();
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if refutation_regex.is_match(stdout)
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{
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return Ok(VampireResult::Refutation);
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}
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Err(ask_dracula::Error::new_interpret_vampire_output(stdout.to_string(), stderr.to_string()))
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}
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fn main() -> Result<(), Box<dyn std::error::Error>>
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{
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let matches = clap::App::new("Ask Dracula: Using Vampire as an interactive theorem prover")
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.arg(clap::Arg::with_name("file").long("file").short("f").takes_value(true).required(true))
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.after_help("example: ask_dracula -f program")
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.arg(clap::Arg::with_name("file").takes_value(true).required(true))
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.arg(clap::Arg::with_name("vampire_arguments").multiple(true))
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.after_help("example: ask_dracula <project file> -- --mode casc --cores 8")
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.get_matches();
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let file = matches.value_of("file").unwrap().to_string();
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let file_path = std::path::Path::new(&file);
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let file_content = std::fs::read_to_string(&file_path)?;
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let (_, project) = ask_dracula::parse::project(&file_content)
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let (_, mut project) = ask_dracula::parse::project(&file_content)
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.map_err(|_| "couldn’t parse input file")?;
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eprintln!("{}", project);
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match find_conjecture(&project)
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{
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None =>
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{
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eprintln!("no lemma or conjecture found, nothing to do");
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Ok(())
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},
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Some((ref statement_kind, ref conjecture)) =>
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{
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eprintln!("verifying conjecture: {}", conjecture);
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println!("{}", project.display_tptp());
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let tptp_content = format!("{}", ask_dracula::format_tptp::display_project_with_conjecture_tptp(&project, (statement_kind.clone(), conjecture)));
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Ok(())
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match run_vampire(&tptp_content, matches.values_of("vampire_arguments").map(|value| value))?
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{
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VampireResult::ProofNotFound =>
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{
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println!("proof not found");
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Ok(())
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},
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VampireResult::Refutation =>
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{
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println!("conjecture proven");
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let axiom = project.statements.get_mut(statement_kind).unwrap().remove(0);
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project.statements.entry(ask_dracula::project::StatementKind::Axiom).or_insert_with(Vec::new).push(axiom);
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let backup_file_path = backup_file_path(file_path)?;
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// Make backup of old file
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std::fs::rename(file_path, backup_file_path)
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.map_err(|error| ask_dracula::Error::new_write_file(file_path.to_owned(), error))?;
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// Write updated version of the file
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let file_content = format!("{}", project);
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std::fs::write(file_path, &file_content)
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.map_err(|error| ask_dracula::Error::new_write_file(file_path.to_owned(), error))?;
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Ok(())
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},
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VampireResult::Satisfiable =>
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{
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println!("conjecture disproven");
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Ok(())
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},
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}
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},
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}
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}
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@ -8,5 +8,5 @@ pub enum StatementKind
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pub struct Project
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{
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pub(crate) statements: std::collections::HashMap<StatementKind, Vec<foliage::Formula>>,
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pub statements: std::collections::HashMap<StatementKind, Vec<foliage::Formula>>,
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}
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