mark structures with their fixity
This commit is contained in:
@@ -19,7 +19,7 @@ impl<'a> ArithExprIterator<'a> {
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let state = match term {
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&Term::AnonVar =>
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return Err(ArithmeticError::InvalidTerm),
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&Term::Clause(_, _, ref terms) =>
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&Term::Clause(_, _, ref terms, _) =>
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TermIterState::Clause(0, ClauseType::Root, terms),
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&Term::Constant(ref cell, ref cons) =>
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TermIterState::Constant(Level::Shallow, cell, cons),
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@@ -199,7 +199,7 @@ impl<'a> ArithmeticEvaluator<'a> {
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self.interm.push(ArithmeticTerm::Reg(r));
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},
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TermRef::Clause(ClauseType::Deep(_, _, name), terms) => {
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TermRef::Clause(ClauseType::Deep(_, _, name, _), terms) => {
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code.push(Line::Arithmetic(self.instr_from_clause(&*name, terms)?));
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},
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TermRef::Clause(ClauseType::Root, terms) => {
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@@ -298,7 +298,7 @@ impl fmt::Display for Constant {
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pub enum Term {
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AnonVar,
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Clause(Cell<RegType>, Rc<Atom>, Vec<Box<Term>>),
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Clause(Cell<RegType>, Rc<Atom>, Vec<Box<Term>>, Option<Fixity>),
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Cons(Cell<RegType>, Box<Term>, Box<Term>),
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Constant(Cell<RegType>, Constant),
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Var(Cell<VarReg>, Rc<Var>)
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@@ -369,7 +369,7 @@ pub struct Rule {
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pub enum ClauseType<'a> {
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CallN,
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Catch,
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Deep(Level, &'a Cell<RegType>, &'a Rc<Atom>),
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Deep(Level, &'a Cell<RegType>, &'a Rc<Atom>, Option<Fixity>),
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Is,
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Root,
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Throw,
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@@ -378,7 +378,7 @@ pub enum ClauseType<'a> {
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impl<'a> ClauseType<'a> {
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pub fn level_of_subterms(self) -> Level {
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match self {
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ClauseType::Deep(_, _, _) => Level::Deep,
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ClauseType::Deep(..) => Level::Deep,
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_ => Level::Shallow
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}
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}
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@@ -397,10 +397,10 @@ impl<'a> TermRef<'a> {
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pub fn level(self) -> Level {
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match self {
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TermRef::AnonVar(lvl)
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| TermRef::Cons(lvl, _, _, _)
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| TermRef::Constant(lvl, _, _)
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| TermRef::Var(lvl, _, _) => lvl,
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TermRef::Clause(ClauseType::Deep(lvl, _, _), _) => lvl,
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| TermRef::Cons(lvl, ..)
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| TermRef::Constant(lvl, ..)
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| TermRef::Var(lvl, ..) => lvl,
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TermRef::Clause(ClauseType::Deep(lvl, ..), ..) => lvl,
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_ => Level::Shallow
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}
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}
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@@ -798,7 +798,7 @@ impl From<IndexingInstruction> for Line {
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pub enum FactInstruction {
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GetConstant(Level, Constant, RegType),
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GetList(Level, RegType),
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GetStructure(Level, Rc<Atom>, usize, RegType),
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GetStructure(Level, Rc<Atom>, usize, RegType, Option<Fixity>),
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GetValue(RegType, usize),
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GetVariable(RegType, usize),
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UnifyConstant(Constant),
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@@ -812,7 +812,7 @@ pub enum QueryInstruction {
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GetVariable(RegType, usize),
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PutConstant(Level, Constant, RegType),
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PutList(Level, RegType),
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PutStructure(Level, Rc<Atom>, usize, RegType),
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PutStructure(Level, Rc<Atom>, usize, RegType, Option<Fixity>),
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PutUnsafeValue(usize, usize),
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PutValue(RegType, usize),
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PutVariable(RegType, usize),
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@@ -896,14 +896,14 @@ pub enum Ref {
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#[derive(Clone, PartialEq)]
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pub enum HeapCellValue {
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Addr(Addr),
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NamedStr(usize, Rc<Atom>), // arity, name.
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NamedStr(usize, Rc<Atom>, Option<Fixity>), // arity, name.
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}
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impl HeapCellValue {
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pub fn as_addr(&self, focus: usize) -> Addr {
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match self {
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&HeapCellValue::Addr(ref a) => a.clone(),
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&HeapCellValue::NamedStr(_, _) => Addr::Str(focus)
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&HeapCellValue::NamedStr(_, _, _) => Addr::Str(focus)
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}
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}
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}
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@@ -1010,7 +1010,7 @@ pub type Registers = Vec<Addr>;
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impl Term {
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pub fn first_arg(&self) -> Option<&Term> {
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match self {
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&Term::Clause(_, _, ref terms) =>
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&Term::Clause(_, _, ref terms, _) =>
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terms.first().map(|bt| bt.as_ref()),
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_ => None
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}
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@@ -1018,7 +1018,7 @@ impl Term {
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pub fn is_callable(&self) -> bool {
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match self {
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&Term::Clause(_, _, _) | &Term::Constant(_, Constant::Atom(_)) =>
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&Term::Clause(..) | &Term::Constant(_, Constant::Atom(_)) =>
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true,
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_ => false
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}
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@@ -1027,14 +1027,14 @@ impl Term {
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pub fn name(&self) -> Option<Rc<Atom>> {
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match self {
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&Term::Constant(_, Constant::Atom(ref atom))
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| &Term::Clause(_, ref atom, _) => Some(atom.clone()),
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| &Term::Clause(_, ref atom, ..) => Some(atom.clone()),
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_ => None
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}
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}
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pub fn arity(&self) -> usize {
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match self {
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&Term::Clause(_, _, ref child_terms) => child_terms.len(),
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&Term::Clause(_, _, ref child_terms, ..) => child_terms.len(),
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_ => 0
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}
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}
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@@ -1054,8 +1054,8 @@ impl<'a> TermIterState<'a> {
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match term {
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&Term::AnonVar =>
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TermIterState::AnonVar(lvl),
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&Term::Clause(ref cell, ref atom, ref child_terms) =>
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TermIterState::Clause(0, ClauseType::Deep(lvl, cell, atom), child_terms),
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&Term::Clause(ref cell, ref atom, ref child_terms, fixity) =>
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TermIterState::Clause(0, ClauseType::Deep(lvl, cell, atom, fixity), child_terms),
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&Term::Cons(ref cell, ref head, ref tail) =>
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TermIterState::InitialCons(lvl, cell, head.as_ref(), tail.as_ref()),
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&Term::Constant(ref cell, ref constant) =>
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@@ -115,7 +115,7 @@ fn get_builtins() -> Code {
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trust!(10),
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try_me_else!(4),
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fact![get_constant!(Constant::from("!"), temp_v!(1)),
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get_structure!(String::from(","), 2, temp_v!(2)),
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get_structure!(String::from(","), 2, temp_v!(2), Some(infix!())),
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unify_variable!(temp_v!(1)),
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unify_variable!(temp_v!(2))],
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set_cp!(temp_v!(3)),
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@@ -132,7 +132,7 @@ fn get_builtins() -> Code {
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execute_n!(1),
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retry_me_else!(8),
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allocate!(3),
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fact![get_structure!(String::from(","), 2, temp_v!(2)),
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fact![get_structure!(String::from(","), 2, temp_v!(2), Some(infix!())),
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unify_variable!(perm_v!(2)),
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unify_variable!(perm_v!(1)),
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get_var_in_fact!(perm_v!(3), 3)],
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@@ -167,12 +167,12 @@ fn get_builtins() -> Code {
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indexed_try!(3),
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trust!(5),
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try_me_else!(3),
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fact![get_structure!(String::from("->"), 2, temp_v!(1)),
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fact![get_structure!(String::from("->"), 2, temp_v!(1), Some(infix!())),
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unify_variable!(temp_v!(1)),
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unify_variable!(temp_v!(2))],
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goto!(139, 3),
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trust_me!(),
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fact![get_structure!(String::from("->"), 2, temp_v!(1)),
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fact![get_structure!(String::from("->"), 2, temp_v!(1), Some(infix!())),
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unify_void!(2)],
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query![put_value!(temp_v!(2), 1)],
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neck_cut!(),
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@@ -234,7 +234,8 @@ fn get_builtins() -> Code {
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put_structure!(Level::Shallow,
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String::from("type_error"),
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1,
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temp_v!(1)),
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temp_v!(1),
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None),
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set_constant!(Constant::Atom(rc_atom!("integer_expected")))],
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goto!(59, 1), // goto throw/1.
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try_me_else!(5), // arg_/3, 173.
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@@ -130,7 +130,7 @@ impl<'a, TermMarker: Allocator<'a>> CodeGenerator<'a, TermMarker>
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self.marker.mark_anon_var(Level::Deep, target),
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&Term::AnonVar =>
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Self::add_or_increment_void_instr(target),
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&Term::Cons(ref cell, _, _) | &Term::Clause(ref cell, _, _) => {
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&Term::Cons(ref cell, _, _) | &Term::Clause(ref cell, _, _, _) => {
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self.marker.mark_non_var(Level::Deep, term_loc, cell, target);
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target.push(Target::clause_arg_to_instr(cell.get()));
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},
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@@ -154,9 +154,10 @@ impl<'a, TermMarker: Allocator<'a>> CodeGenerator<'a, TermMarker>
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where Target: CompilationTarget<'a>
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{
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match ct {
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ClauseType::Deep(lvl, cell, atom) => {
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ClauseType::Deep(lvl, cell, atom, fixity) => {
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self.marker.mark_non_var(lvl, term_loc, cell, target);
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target.push(Target::to_structure(lvl, atom.clone(), terms.len(), cell.get()));
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target.push(Target::to_structure(lvl, atom.clone(), terms.len(),
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cell.get(), fixity));
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for subterm in terms {
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self.subterm_to_instr(subterm.as_ref(), term_loc, is_exposed, target);
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@@ -254,7 +255,7 @@ impl<'a, TermMarker: Allocator<'a>> CodeGenerator<'a, TermMarker>
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let call = ControlInstruction::Call(atom.clone(), 0, pvs);
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code.push(Line::Control(call));
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},
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&QueryTerm::Term(Term::Clause(_, ref atom, ref terms)) => {
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&QueryTerm::Term(Term::Clause(_, ref atom, ref terms, _)) => {
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let call = ControlInstruction::Call(atom.clone(), terms.len(), pvs);
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code.push(Line::Control(call));
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},
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@@ -317,10 +318,10 @@ impl<'a, TermMarker: Allocator<'a>> CodeGenerator<'a, TermMarker>
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},
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&InlinedQueryTerm::IsAtomic(ref inner_term) =>
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match inner_term[0].as_ref() {
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&Term::AnonVar | &Term::Clause(_, _, _) | &Term::Cons(_, _, _) => {
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&Term::AnonVar | &Term::Clause(..) | &Term::Cons(..) => {
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code.push(fail!());
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},
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&Term::Constant(_, _) => {
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&Term::Constant(..) => {
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code.push(succeed!());
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},
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&Term::Var(ref vr, ref name) => {
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@@ -343,7 +344,7 @@ impl<'a, TermMarker: Allocator<'a>> CodeGenerator<'a, TermMarker>
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},
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&InlinedQueryTerm::IsVar(ref inner_term) =>
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match inner_term[0].as_ref() {
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&Term::Constant(_, _) | &Term::Clause(_, _, _) | &Term::Cons(_, _, _) => {
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&Term::Constant(..) | &Term::Clause(..) | &Term::Cons(..) => {
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code.push(fail!());
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},
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&Term::AnonVar => {
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@@ -482,7 +483,7 @@ impl<'a, TermMarker: Allocator<'a>> CodeGenerator<'a, TermMarker>
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self.compile_seq_prelude(&conjunct_info, &mut code);
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if let &QueryTerm::Term(ref term) = p0 {
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if let &Term::Clause(_, _, _) = term {
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if let &Term::Clause(..) = term {
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let iter = FactInstruction::iter(term);
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let fact = self.compile_target(iter, GenContext::Head, false);
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@@ -554,7 +555,7 @@ impl<'a, TermMarker: Allocator<'a>> CodeGenerator<'a, TermMarker>
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let mut code = Vec::new();
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if let &Term::Clause(_, _, _) = term {
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if let &Term::Clause(..) = term {
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let iter = FactInstruction::iter(term);
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let mut compiled_fact = self.compile_target(iter, GenContext::Head, false);
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@@ -25,7 +25,7 @@ pub trait CopierTarget
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while scan < self.threshold() {
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match self[scan].clone() {
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HeapCellValue::NamedStr(_, _) =>
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HeapCellValue::NamedStr(_, _, _) =>
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scan += 1,
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HeapCellValue::Addr(a) =>
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match a.clone() {
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@@ -69,16 +69,16 @@ pub trait CopierTarget
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},
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Addr::Str(s) => {
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match self[s].clone() {
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HeapCellValue::NamedStr(arity, name) => {
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HeapCellValue::NamedStr(arity, name, fixity) => {
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let threshold = self.threshold();
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self[scan] = HeapCellValue::Addr(Addr::Str(threshold));
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self[s] = HeapCellValue::Addr(Addr::Str(threshold));
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trail.push((Ref::HeapCell(s),
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HeapCellValue::NamedStr(arity, name.clone())));
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HeapCellValue::NamedStr(arity, name.clone(), fixity)));
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self.push(HeapCellValue::NamedStr(arity, name));
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self.push(HeapCellValue::NamedStr(arity, name, fixity));
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for i in 0 .. arity {
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let hcv = self[s + 1 + i].clone();
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@@ -34,7 +34,7 @@ impl<'a> HeapCellIterator<'a> {
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fn follow_heap(&mut self, h: usize) -> Addr
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{
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match &self.machine_st.heap[h] {
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&HeapCellValue::NamedStr(arity, _) => {
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&HeapCellValue::NamedStr(arity, _, _) => {
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for idx in (1 .. arity + 1).rev() {
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self.state_stack.push(Ref::HeapCell(h + idx));
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}
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@@ -1,5 +1,4 @@
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use prolog::ast::*;
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use prolog::builtins::*;
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use prolog::heap_iter::*;
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use std::cell::Cell;
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@@ -38,58 +37,46 @@ pub trait HeapCellValueFormatter {
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// this can be overloaded to handle special cases, falling back on the default of
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// format_struct when convenient.
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fn format_clause(&self, arity: usize, name: Rc<Atom>, state_stack: &mut Vec<TokenOrRedirect>);
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fn format_clause(&self, usize, Rc<Atom>, Option<Fixity>, &mut Vec<TokenOrRedirect>);
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}
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// the 'classic' display corresponding to the display predicate.
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pub struct DisplayFormatter {}
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impl HeapCellValueFormatter for DisplayFormatter {
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fn format_clause(&self, arity: usize, name: Rc<Atom>, state_stack: &mut Vec<TokenOrRedirect>)
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fn format_clause(&self, arity: usize, name: Rc<Atom>, _: Option<Fixity>,
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state_stack: &mut Vec<TokenOrRedirect>)
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{
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self.format_struct(arity, name, state_stack);
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}
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}
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pub struct TermFormatter<'a> {
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op_dir: &'a OpDir
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}
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pub struct TermFormatter {}
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impl<'a> TermFormatter<'a> {
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pub fn new(op_dir: &'a OpDir) -> Self {
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TermFormatter { op_dir }
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}
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}
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impl<'a> HeapCellValueFormatter for TermFormatter<'a> {
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fn format_clause(&self, arity: usize, name: Rc<Atom>, state_stack: &mut Vec<TokenOrRedirect>) {
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if arity == 1 {
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match self.op_dir.get(&(name.clone(), Fixity::Post)) {
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Some(_) => {
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impl HeapCellValueFormatter for TermFormatter {
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fn format_clause(&self, arity: usize, name: Rc<Atom>, fixity: Option<Fixity>,
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state_stack: &mut Vec<TokenOrRedirect>)
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{
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if let Some(fixity) = fixity {
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match fixity {
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Fixity::Post => {
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state_stack.push(TokenOrRedirect::Atom(name));
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state_stack.push(TokenOrRedirect::Space);
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state_stack.push(TokenOrRedirect::Redirect);
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},
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None => match self.op_dir.get(&(name.clone(), Fixity::Pre)) {
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Some(_) => {
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state_stack.push(TokenOrRedirect::Redirect);
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state_stack.push(TokenOrRedirect::Space);
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state_stack.push(TokenOrRedirect::Atom(name));
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},
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None => self.format_struct(arity, name, state_stack)
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Fixity::Pre => {
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state_stack.push(TokenOrRedirect::Redirect);
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state_stack.push(TokenOrRedirect::Space);
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state_stack.push(TokenOrRedirect::Atom(name));
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},
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Fixity::In => {
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state_stack.push(TokenOrRedirect::Redirect);
|
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state_stack.push(TokenOrRedirect::Space);
|
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state_stack.push(TokenOrRedirect::Atom(name));
|
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state_stack.push(TokenOrRedirect::Space);
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state_stack.push(TokenOrRedirect::Redirect);
|
||||
}
|
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}
|
||||
} else if arity == 2 {
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match self.op_dir.get(&(name.clone(), Fixity::In)) {
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Some(_) => {
|
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state_stack.push(TokenOrRedirect::Redirect);
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state_stack.push(TokenOrRedirect::Space);
|
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state_stack.push(TokenOrRedirect::Atom(name));
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state_stack.push(TokenOrRedirect::Space);
|
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state_stack.push(TokenOrRedirect::Redirect);
|
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},
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None => self.format_struct(arity, name, state_stack)
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};
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} else {
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self.format_struct(arity, name, state_stack);
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}
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@@ -110,8 +97,8 @@ impl<'a, Formatter: HeapCellValueFormatter> HeapCellPrinter<'a, Formatter>
|
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|
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fn handle_heap_term(&mut self, heap_val: HeapCellValue, result: &mut String) {
|
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match heap_val {
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HeapCellValue::NamedStr(arity, name) =>
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self.formatter.format_clause(arity, name, &mut self.state_stack),
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HeapCellValue::NamedStr(arity, name, fixity) =>
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self.formatter.format_clause(arity, name, fixity, &mut self.state_stack),
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HeapCellValue::Addr(Addr::Con(Constant::EmptyList)) =>
|
||||
if !Self::at_cdr(result, "") {
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*result += "[]";
|
||||
|
||||
@@ -45,14 +45,14 @@ impl CodeOffsets {
|
||||
pub fn index_term(&mut self, first_arg: &Term, index: usize)
|
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{
|
||||
match first_arg {
|
||||
&Term::Clause(_, ref name, ref terms) => {
|
||||
&Term::Clause(_, ref name, ref terms, _) => {
|
||||
let code = self.structures.entry((name.clone(), terms.len()))
|
||||
.or_insert(Vec::new());
|
||||
|
||||
let is_initial_index = code.is_empty();
|
||||
code.push(Self::add_index(is_initial_index, index));
|
||||
},
|
||||
&Term::Cons(_, _, _) => {
|
||||
&Term::Cons(..) => {
|
||||
let is_initial_index = self.lists.is_empty();
|
||||
self.lists.push(Self::add_index(is_initial_index, index));
|
||||
},
|
||||
|
||||
@@ -21,9 +21,9 @@ impl fmt::Display for FactInstruction {
|
||||
write!(f, "get_list A{}", r.reg_num()),
|
||||
&FactInstruction::GetList(Level::Deep, ref r) =>
|
||||
write!(f, "get_list {}", r),
|
||||
&FactInstruction::GetStructure(Level::Deep, ref name, ref arity, ref r) =>
|
||||
&FactInstruction::GetStructure(Level::Deep, ref name, ref arity, ref r, _) =>
|
||||
write!(f, "get_structure {}/{}, {}", name, arity, r),
|
||||
&FactInstruction::GetStructure(Level::Shallow, ref name, ref arity, ref r) =>
|
||||
&FactInstruction::GetStructure(Level::Shallow, ref name, ref arity, ref r, _) =>
|
||||
write!(f, "get_structure {}/{}, A{}", name, arity, r.reg_num()),
|
||||
&FactInstruction::GetValue(ref x, ref a) =>
|
||||
write!(f, "get_value {}, A{}", x, a),
|
||||
@@ -56,9 +56,9 @@ impl fmt::Display for QueryInstruction {
|
||||
write!(f, "put_list A{}", r.reg_num()),
|
||||
&QueryInstruction::PutList(Level::Deep, ref r) =>
|
||||
write!(f, "put_list {}", r),
|
||||
&QueryInstruction::PutStructure(Level::Deep, ref name, ref arity, ref r) =>
|
||||
&QueryInstruction::PutStructure(Level::Deep, ref name, ref arity, ref r, _) =>
|
||||
write!(f, "put_structure {}/{}, {}", name, arity, r),
|
||||
&QueryInstruction::PutStructure(Level::Shallow, ref name, ref arity, ref r) =>
|
||||
&QueryInstruction::PutStructure(Level::Shallow, ref name, ref arity, ref r, _) =>
|
||||
write!(f, "put_structure {}/{}, A{}", name, arity, r.reg_num()),
|
||||
&QueryInstruction::PutUnsafeValue(y, a) =>
|
||||
write!(f, "put_unsafe_value Y{}, A{}", y, a),
|
||||
|
||||
@@ -17,9 +17,9 @@ impl<'a> QueryIterator<'a> {
|
||||
let state = match term {
|
||||
&Term::AnonVar =>
|
||||
return QueryIterator { state_stack: vec![] },
|
||||
&Term::Clause(_, _, ref terms) =>
|
||||
&Term::Clause(.., ref terms, _) =>
|
||||
TermIterState::Clause(0, ClauseType::Root, terms),
|
||||
&Term::Cons(_, _, _) =>
|
||||
&Term::Cons(..) =>
|
||||
return QueryIterator { state_stack: vec![] },
|
||||
&Term::Constant(_, _) =>
|
||||
return QueryIterator { state_stack: vec![] },
|
||||
@@ -84,7 +84,7 @@ impl<'a> Iterator for QueryIterator<'a> {
|
||||
match ct {
|
||||
ClauseType::CallN =>
|
||||
self.push_subterm(Level::Shallow, child_terms[0].as_ref()),
|
||||
ClauseType::Deep(_, _, _) =>
|
||||
ClauseType::Deep(..) =>
|
||||
return Some(TermRef::Clause(ct, child_terms)),
|
||||
_ =>
|
||||
return None
|
||||
@@ -125,7 +125,7 @@ impl<'a> FactIterator<'a> {
|
||||
let states = match term {
|
||||
&Term::AnonVar =>
|
||||
vec![TermIterState::AnonVar(Level::Shallow)],
|
||||
&Term::Clause(_, _, ref terms) =>
|
||||
&Term::Clause(.., ref terms, _) =>
|
||||
vec![TermIterState::Clause(0, ClauseType::Root, terms)],
|
||||
&Term::Cons(ref cell, ref head, ref tail) =>
|
||||
vec![TermIterState::InitialCons(Level::Shallow,
|
||||
@@ -156,7 +156,7 @@ impl<'a> Iterator for FactIterator<'a> {
|
||||
}
|
||||
|
||||
match ct {
|
||||
ClauseType::Deep(_, _, _) =>
|
||||
ClauseType::Deep(..) =>
|
||||
return Some(TermRef::Clause(ct, child_terms)),
|
||||
_ =>
|
||||
continue
|
||||
|
||||
@@ -290,8 +290,8 @@ impl MachineState {
|
||||
let r1 = &self.heap[a1];
|
||||
let r2 = &self.heap[a2];
|
||||
|
||||
if let &HeapCellValue::NamedStr(n1, ref f1) = r1 {
|
||||
if let &HeapCellValue::NamedStr(n2, ref f2) = r2 {
|
||||
if let &HeapCellValue::NamedStr(n1, ref f1, _) = r1 {
|
||||
if let &HeapCellValue::NamedStr(n2, ref f2, _) = r2 {
|
||||
if n1 == n2 && *f1 == *f2 {
|
||||
for i in 1 .. n1 + 1 {
|
||||
pdl.push(Addr::HeapCell(a1 + i));
|
||||
@@ -742,14 +742,14 @@ impl MachineState {
|
||||
_ => self.fail = true
|
||||
};
|
||||
},
|
||||
&FactInstruction::GetStructure(_, ref name, arity, reg) => {
|
||||
&FactInstruction::GetStructure(_, ref name, arity, reg, fixity) => {
|
||||
let addr = self.deref(self[reg].clone());
|
||||
|
||||
match self.store(addr.clone()) {
|
||||
Addr::Str(a) => {
|
||||
let result = &self.heap[a];
|
||||
|
||||
if let &HeapCellValue::NamedStr(narity, ref str) = result {
|
||||
if let &HeapCellValue::NamedStr(narity, ref str, _) = result {
|
||||
if narity == arity && *name == *str {
|
||||
self.s = a + 1;
|
||||
self.mode = MachineMode::Read;
|
||||
@@ -762,7 +762,7 @@ impl MachineState {
|
||||
let h = self.heap.h;
|
||||
|
||||
self.heap.push(HeapCellValue::Addr(Addr::Str(h + 1)));
|
||||
self.heap.push(HeapCellValue::NamedStr(arity, name.clone()));
|
||||
self.heap.push(HeapCellValue::NamedStr(arity, name.clone(), fixity));
|
||||
|
||||
self.bind(addr.as_var().unwrap(), Addr::HeapCell(h));
|
||||
|
||||
@@ -911,7 +911,7 @@ impl MachineState {
|
||||
|
||||
let offset = match addr {
|
||||
Addr::Str(s) => {
|
||||
if let &HeapCellValue::NamedStr(arity, ref name) = &self.heap[s] {
|
||||
if let &HeapCellValue::NamedStr(arity, ref name, _) = &self.heap[s] {
|
||||
match hm.get(&(name.clone(), arity)) {
|
||||
Some(offset) => *offset,
|
||||
_ => 0
|
||||
@@ -939,10 +939,10 @@ impl MachineState {
|
||||
self[reg] = Addr::Con(constant.clone()),
|
||||
&QueryInstruction::PutList(_, reg) =>
|
||||
self[reg] = Addr::Lis(self.heap.h),
|
||||
&QueryInstruction::PutStructure(_, ref name, arity, reg) => {
|
||||
&QueryInstruction::PutStructure(_, ref name, arity, reg, fixity) => {
|
||||
let h = self.heap.h;
|
||||
|
||||
self.heap.push(HeapCellValue::NamedStr(arity, name.clone()));
|
||||
self.heap.push(HeapCellValue::NamedStr(arity, name.clone(), fixity));
|
||||
self[reg] = Addr::Str(h);
|
||||
},
|
||||
&QueryInstruction::PutUnsafeValue(n, arg) => {
|
||||
@@ -1088,7 +1088,7 @@ impl MachineState {
|
||||
Addr::Str(a) => {
|
||||
let result = self.heap[a].clone();
|
||||
|
||||
if let HeapCellValue::NamedStr(narity, name) = result {
|
||||
if let HeapCellValue::NamedStr(narity, name, _) = result {
|
||||
if narity + arity > 63 {
|
||||
self.throw_exception(functor!("representation_error",
|
||||
1,
|
||||
@@ -1154,7 +1154,7 @@ impl MachineState {
|
||||
|
||||
if let Addr::Str(o) = a2 {
|
||||
match self.heap[o].clone() {
|
||||
HeapCellValue::NamedStr(arity, _) =>
|
||||
HeapCellValue::NamedStr(arity, _, _) =>
|
||||
match i.to_usize() {
|
||||
Some(i) if 1 <= i && i <= arity => {
|
||||
let a3 = self[temp_v!(3)].clone();
|
||||
@@ -1372,7 +1372,7 @@ impl MachineState {
|
||||
match a1.clone() {
|
||||
Addr::Str(o) =>
|
||||
match self.heap[o].clone() {
|
||||
HeapCellValue::NamedStr(arity, name) => {
|
||||
HeapCellValue::NamedStr(arity, name, _) => {
|
||||
let name = Addr::Con(Constant::Atom(name)); // A2
|
||||
let arity = Addr::Con(Constant::Number(rc_integer!(arity)));
|
||||
|
||||
@@ -1401,7 +1401,7 @@ impl MachineState {
|
||||
}
|
||||
};
|
||||
|
||||
self.heap.push(HeapCellValue::NamedStr(arity, name));
|
||||
self.heap.push(HeapCellValue::NamedStr(arity, name, None));
|
||||
|
||||
for _ in 0 .. arity {
|
||||
let h = self.heap.h;
|
||||
|
||||
@@ -68,7 +68,7 @@ impl Machine {
|
||||
pub fn add_fact<'a>(&mut self, fact: &Term, mut code: Code) -> EvalSession<'a>
|
||||
{
|
||||
match fact {
|
||||
&Term::Clause(_, ref name, _) | &Term::Constant(_, Constant::Atom(ref name)) => {
|
||||
&Term::Clause(_, ref name, ..) | &Term::Constant(_, Constant::Atom(ref name)) => {
|
||||
let p = self.code.len();
|
||||
let arity = fact.arity();
|
||||
|
||||
@@ -82,7 +82,7 @@ impl Machine {
|
||||
pub fn add_rule<'a>(&mut self, rule: &Rule, mut code: Code) -> EvalSession<'a>
|
||||
{
|
||||
match &rule.head.0 {
|
||||
&QueryTerm::Term(Term::Clause(_, ref name, _))
|
||||
&QueryTerm::Term(Term::Clause(_, ref name, ..))
|
||||
| &QueryTerm::Term(Term::Constant(_, Constant::Atom(ref name))) => {
|
||||
let p = self.code.len();
|
||||
let arity = rule.head.0.arity();
|
||||
@@ -347,7 +347,7 @@ impl Machine {
|
||||
|
||||
fn print_var(&self, r: Ref) -> String
|
||||
{
|
||||
let disp = TermFormatter::new(&self.op_dir);
|
||||
let disp = TermFormatter {};
|
||||
let iter = HeapCellIterator::new(&self.ms, r);
|
||||
|
||||
let mut printer = HeapCellPrinter::new(iter, disp);
|
||||
|
||||
@@ -44,7 +44,7 @@ macro_rules! query {
|
||||
macro_rules! functor {
|
||||
($name:expr, $len:expr, [$($args:expr),*]) => {{
|
||||
if $len > 0 {
|
||||
vec![ HeapCellValue::NamedStr($len, Rc::new(String::from($name))), $($args),* ]
|
||||
vec![ HeapCellValue::NamedStr($len, Rc::new(String::from($name)), None), $($args),* ]
|
||||
} else {
|
||||
vec![ atom!($name) ]
|
||||
}
|
||||
@@ -101,8 +101,8 @@ macro_rules! put_var {
|
||||
}
|
||||
|
||||
macro_rules! put_structure {
|
||||
($lvl:expr, $name:expr, $arity:expr, $r:expr) => (
|
||||
QueryInstruction::PutStructure($lvl, Rc::new($name), $arity, $r)
|
||||
($lvl:expr, $name:expr, $arity:expr, $r:expr, $fix:expr) => (
|
||||
QueryInstruction::PutStructure($lvl, Rc::new($name), $arity, $r, $fix)
|
||||
)
|
||||
}
|
||||
|
||||
@@ -317,8 +317,8 @@ macro_rules! get_constant {
|
||||
}
|
||||
|
||||
macro_rules! get_structure {
|
||||
($atom:expr, $arity:expr, $r:expr) => (
|
||||
FactInstruction::GetStructure(Level::Shallow, Rc::new($atom), $arity, $r)
|
||||
($atom:expr, $arity:expr, $r:expr, $fix:expr) => (
|
||||
FactInstruction::GetStructure(Level::Shallow, Rc::new($atom), $arity, $r, $fix)
|
||||
)
|
||||
}
|
||||
|
||||
@@ -387,3 +387,9 @@ macro_rules! rc_atom {
|
||||
Rc::new(String::from($e))
|
||||
)
|
||||
}
|
||||
|
||||
macro_rules! infix {
|
||||
() => (
|
||||
Fixity::In
|
||||
)
|
||||
}
|
||||
|
||||
Submodule src/prolog/parser updated: 171e1f6d6f...159f82cd83
@@ -1,19 +1,27 @@
|
||||
use std::cell::RefCell;
|
||||
use std::collections::HashSet;
|
||||
use std::hash::Hash;
|
||||
use std::ops::Deref;
|
||||
use std::fmt;
|
||||
use std::hash::{Hash, Hasher};
|
||||
use std::ops::{Deref, DerefMut};
|
||||
use std::rc::Rc;
|
||||
|
||||
pub type TabledData<T> = HashSet<Rc<T>>;
|
||||
|
||||
#[derive(Clone, PartialEq, Eq, Hash)]
|
||||
#[derive(Clone, PartialEq, Eq)]
|
||||
pub struct TabledRc<T: Hash + Eq> {
|
||||
atom: Rc<T>,
|
||||
table: Rc<RefCell<TabledData<T>>>
|
||||
}
|
||||
|
||||
impl<T: Hash + Eq> Hash for TabledRc<T> {
|
||||
fn hash<H: Hasher>(&self, state: &mut H)
|
||||
{
|
||||
self.atom.hash(state)
|
||||
}
|
||||
}
|
||||
|
||||
impl<T: Hash + Eq> TabledRc<T> {
|
||||
pub fn new(atom: T, table: Rc<RefCell<TabledData<T>>>) -> Self {
|
||||
pub fn new(atom: T, table: Rc<RefCell<TabledData<T>>>) -> Self {
|
||||
TabledRc { atom: Rc::new(atom), table }
|
||||
}
|
||||
}
|
||||
@@ -21,8 +29,8 @@ impl<T: Hash + Eq> TabledRc<T> {
|
||||
impl<T: Hash + Eq> Drop for TabledRc<T> {
|
||||
fn drop(&mut self) {
|
||||
if Rc::strong_count(&self.atom) == 2 {
|
||||
let table = *self.table.borrow_mut();
|
||||
table.remove(&self.atom);
|
||||
let mut table = self.table.borrow_mut();
|
||||
table.deref_mut().remove(&self.atom);
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -34,3 +42,9 @@ impl<T: Hash + Eq> Deref for TabledRc<T> {
|
||||
&*self.atom
|
||||
}
|
||||
}
|
||||
|
||||
impl<T: Hash + Eq + fmt::Display> fmt::Display for TabledRc<T> {
|
||||
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
|
||||
write!(f, "{}", &*self.atom)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -10,7 +10,7 @@ pub trait CompilationTarget<'a> {
|
||||
|
||||
fn to_constant(Level, Constant, RegType) -> Self;
|
||||
fn to_list(Level, RegType) -> Self;
|
||||
fn to_structure(Level, Rc<Atom>, usize, RegType) -> Self;
|
||||
fn to_structure(Level, Rc<Atom>, usize, RegType, Option<Fixity>) -> Self;
|
||||
|
||||
fn to_void(usize) -> Self;
|
||||
fn is_void_instr(&self) -> bool;
|
||||
@@ -41,8 +41,10 @@ impl<'a> CompilationTarget<'a> for FactInstruction {
|
||||
FactInstruction::GetConstant(lvl, constant, reg)
|
||||
}
|
||||
|
||||
fn to_structure(lvl: Level, atom: Rc<Atom>, arity: usize, reg: RegType) -> Self {
|
||||
FactInstruction::GetStructure(lvl, atom, arity, reg)
|
||||
fn to_structure(lvl: Level, atom: Rc<Atom>, arity: usize, reg: RegType, fixity: Option<Fixity>)
|
||||
-> Self
|
||||
{
|
||||
FactInstruction::GetStructure(lvl, atom, arity, reg, fixity)
|
||||
}
|
||||
|
||||
fn to_list(lvl: Level, reg: RegType) -> Self {
|
||||
@@ -103,8 +105,10 @@ impl<'a> CompilationTarget<'a> for QueryInstruction {
|
||||
term.post_order_iter()
|
||||
}
|
||||
|
||||
fn to_structure(lvl: Level, atom: Rc<Atom>, arity: usize, reg: RegType) -> Self {
|
||||
QueryInstruction::PutStructure(lvl, atom, arity, reg)
|
||||
fn to_structure(lvl: Level, atom: Rc<Atom>, arity: usize, reg: RegType, fixity: Option<Fixity>)
|
||||
-> Self
|
||||
{
|
||||
QueryInstruction::PutStructure(lvl, atom, arity, reg, fixity)
|
||||
}
|
||||
|
||||
fn to_constant(lvl: Level, constant: Constant, reg: RegType) -> Self {
|
||||
|
||||
Reference in New Issue
Block a user