917 lines
31 KiB
Rust
917 lines
31 KiB
Rust
use prolog_parser::ast::*;
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use crate::prolog::allocator::*;
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use crate::prolog::arithmetic::*;
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use crate::prolog::clause_types::*;
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use crate::prolog::fixtures::*;
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use crate::prolog::forms::*;
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use crate::prolog::indexing::*;
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use crate::prolog::instructions::*;
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use crate::prolog::iterators::*;
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use crate::prolog::machine::machine_indices::*;
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use crate::prolog::targets::*;
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use indexmap::{IndexMap, IndexSet};
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use std::cell::Cell;
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use std::rc::Rc;
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use std::vec::Vec;
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pub struct CodeGenerator<TermMarker> {
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marker: TermMarker,
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pub var_count: IndexMap<Rc<Var>, usize>,
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non_counted_bt: bool,
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}
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pub struct ConjunctInfo<'a> {
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pub perm_vs: VariableFixtures<'a>,
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pub num_of_chunks: usize,
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pub has_deep_cut: bool,
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}
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impl<'a> ConjunctInfo<'a> {
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fn new(perm_vs: VariableFixtures<'a>, num_of_chunks: usize, has_deep_cut: bool) -> Self {
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ConjunctInfo {
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perm_vs,
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num_of_chunks,
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has_deep_cut,
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}
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}
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fn allocates(&self) -> bool {
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self.perm_vs.size() > 0 || self.num_of_chunks > 1 || self.has_deep_cut
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}
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fn perm_vars(&self) -> usize {
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self.perm_vs.size() + self.perm_var_offset()
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}
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fn perm_var_offset(&self) -> usize {
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self.has_deep_cut as usize
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}
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fn mark_unsafe_vars(
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&self,
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mut unsafe_var_marker: UnsafeVarMarker,
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code: &mut Code,
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) {
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if code.is_empty() {
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return;
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}
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let mut code_index = 0;
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for phase in 0 .. {
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while let Line::Query(ref query_instr) = &code[code_index] {
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if !unsafe_var_marker.mark_safe_vars(query_instr) {
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unsafe_var_marker.mark_phase(query_instr, phase);
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}
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code_index += 1;
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}
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if code_index + 1 < code.len() {
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code_index += 1;
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} else {
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break;
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}
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}
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code_index = 0;
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for phase in 0 .. {
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while let Line::Query(ref mut query_instr) = &mut code[code_index] {
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unsafe_var_marker.mark_unsafe_vars(query_instr, phase);
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code_index += 1;
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}
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if code_index + 1 < code.len() {
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code_index += 1;
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} else {
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break;
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}
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}
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}
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}
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impl<'a, TermMarker: Allocator<'a>> CodeGenerator<TermMarker> {
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pub fn new(non_counted_bt: bool) -> Self {
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CodeGenerator {
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marker: Allocator::new(),
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var_count: IndexMap::new(),
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non_counted_bt,
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}
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}
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pub fn take_vars(self) -> AllocVarDict {
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self.marker.take_bindings()
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}
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fn update_var_count<Iter: Iterator<Item = TermRef<'a>>>(&mut self, iter: Iter) {
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for term in iter {
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if let TermRef::Var(_, _, var) = term {
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let entry = self.var_count.entry(var).or_insert(0);
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*entry += 1;
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}
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}
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}
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fn get_var_count(&self, var: &'a Var) -> usize {
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*self.var_count.get(var).unwrap()
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}
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fn mark_non_callable(
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&mut self,
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name: Rc<Var>,
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arity: usize,
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term_loc: GenContext,
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vr: &'a Cell<VarReg>,
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code: &mut Code,
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) -> RegType {
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match self.marker.bindings().get(&name) {
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Some(&VarData::Temp(_, t, _)) if t != 0 => RegType::Temp(t),
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Some(&VarData::Perm(p)) if p != 0 => RegType::Perm(p),
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_ => {
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let mut target = Vec::new();
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self.marker.reset_arg(arity);
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self.marker
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.mark_var(name, Level::Shallow, vr, term_loc, &mut target);
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if !target.is_empty() {
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for query_instr in target {
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code.push(Line::Query(query_instr));
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}
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}
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vr.get().norm()
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}
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}
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}
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fn add_or_increment_void_instr<Target>(target: &mut Vec<Target>)
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where
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Target: CompilationTarget<'a>,
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{
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if let Some(ref mut instr) = target.last_mut() {
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if Target::is_void_instr(&*instr) {
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Target::incr_void_instr(instr);
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return;
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}
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}
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target.push(Target::to_void(1));
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}
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fn deep_var_instr<Target: CompilationTarget<'a>>(
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&mut self,
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cell: &'a Cell<VarReg>,
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var: &'a Rc<Var>,
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term_loc: GenContext,
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is_exposed: bool,
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target: &mut Vec<Target>,
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) {
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if is_exposed || self.get_var_count(var.as_ref()) > 1 {
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self.marker.mark_var(var.clone(), Level::Deep, cell, term_loc, target);
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} else {
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Self::add_or_increment_void_instr(target);
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}
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}
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fn subterm_to_instr<Target: CompilationTarget<'a>>(
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&mut self,
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subterm: &'a Term,
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term_loc: GenContext,
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is_exposed: bool,
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target: &mut Vec<Target>,
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) {
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match subterm {
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&Term::AnonVar if is_exposed => {
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self.marker.mark_anon_var(Level::Deep, term_loc, target);
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}
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&Term::AnonVar => {
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Self::add_or_increment_void_instr(target);
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}
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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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&Term::Constant(_, ref constant) => {
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target.push(Target::constant_subterm(constant.clone()));
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}
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&Term::Var(ref cell, ref var) => {
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self.deep_var_instr(cell, var, term_loc, is_exposed, target);
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}
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};
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}
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fn compile_target<Target, Iter>(
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&mut self,
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iter: Iter,
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term_loc: GenContext,
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is_exposed: bool,
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) -> Vec<Target>
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where
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Target: CompilationTarget<'a>,
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Iter: Iterator<Item = TermRef<'a>>,
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{
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let mut target = Vec::new();
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for term in iter {
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match term {
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TermRef::AnonVar(lvl @ Level::Shallow) => {
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if let GenContext::Head = term_loc {
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self.marker.advance_arg();
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} else {
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self.marker.mark_anon_var(lvl, term_loc, &mut target);
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}
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}
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TermRef::Clause(lvl, cell, ct, terms) => {
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self.marker.mark_non_var(lvl, term_loc, cell, &mut target);
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target.push(Target::to_structure(ct, terms.len(), cell.get()));
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for subterm in terms {
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self.subterm_to_instr(subterm.as_ref(), term_loc, is_exposed, &mut target);
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}
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}
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TermRef::Cons(lvl, cell, head, tail) => {
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self.marker.mark_non_var(lvl, term_loc, cell, &mut target);
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target.push(Target::to_list(lvl, cell.get()));
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self.subterm_to_instr(head, term_loc, is_exposed, &mut target);
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self.subterm_to_instr(tail, term_loc, is_exposed, &mut target);
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}
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TermRef::Constant(lvl @ Level::Shallow, cell, Constant::String(ref string)) => {
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self.marker.mark_non_var(lvl, term_loc, cell, &mut target);
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target.push(Target::to_pstr(lvl, string.to_string(), cell.get(), false));
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}
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TermRef::Constant(lvl @ Level::Shallow, cell, constant) => {
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self.marker.mark_non_var(lvl, term_loc, cell, &mut target);
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target.push(Target::to_constant(lvl, constant.clone(), cell.get()));
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}
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TermRef::PartialString(lvl, cell, string, tail) => {
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self.marker.mark_non_var(lvl, term_loc, cell, &mut target);
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if let Some(tail) = tail {
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target.push(Target::to_pstr(lvl, string, cell.get(), true));
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self.subterm_to_instr(tail, term_loc, is_exposed, &mut target);
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} else {
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target.push(Target::to_pstr(lvl, string, cell.get(), false));
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}
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}
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TermRef::Var(lvl @ Level::Shallow, cell, ref var) if var.as_str() == "!" => {
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if self.marker.is_unbound(var.clone()) {
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if term_loc != GenContext::Head {
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self.marker.mark_reserved_var(
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var.clone(),
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lvl,
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cell,
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term_loc,
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&mut target,
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perm_v!(1),
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false,
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);
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continue;
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}
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}
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self.marker.mark_var(var.clone(), lvl, cell, term_loc, &mut target);
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}
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TermRef::Var(lvl @ Level::Shallow, cell, var) => {
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self.marker.mark_var(var.clone(), lvl, cell, term_loc, &mut target);
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}
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_ => {
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}
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};
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}
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target
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}
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fn collect_var_data(&mut self, mut iter: ChunkedIterator<'a>) -> ConjunctInfo<'a> {
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let mut vs = VariableFixtures::new();
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while let Some((chunk_num, lt_arity, chunked_terms)) = iter.next() {
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for (i, chunked_term) in chunked_terms.iter().enumerate() {
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let term_loc = match chunked_term {
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&ChunkedTerm::HeadClause(..) =>
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GenContext::Head,
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&ChunkedTerm::BodyTerm(_) => {
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if i < chunked_terms.len() - 1 {
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GenContext::Mid(chunk_num)
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} else {
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GenContext::Last(chunk_num)
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}
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}
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};
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self.update_var_count(chunked_term.post_order_iter());
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vs.mark_vars_in_chunk(chunked_term.post_order_iter(), lt_arity, term_loc);
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}
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}
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let num_of_chunks = iter.chunk_num;
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let has_deep_cut = iter.encountered_deep_cut();
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vs.populate_restricting_sets();
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vs.set_perm_vals(has_deep_cut);
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let vs = self.marker.drain_var_data(vs, num_of_chunks);
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ConjunctInfo::new(vs, num_of_chunks, has_deep_cut)
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}
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fn add_conditional_call(code: &mut Code, qt: &QueryTerm, pvs: usize) {
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match qt {
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&QueryTerm::Jump(ref vars) => code.push(jmp_call!(vars.len(), 0, pvs)),
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&QueryTerm::Clause(_, ref ct, ref terms, true) => {
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code.push(call_clause_by_default!(ct.clone(), terms.len(), pvs))
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}
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&QueryTerm::Clause(_, ref ct, ref terms, false) => {
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code.push(call_clause!(ct.clone(), terms.len(), pvs))
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}
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_ => {}
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}
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}
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fn lco(code: &mut Code) -> usize {
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let mut dealloc_index = code.len() - 1;
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match code.last_mut() {
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Some(&mut Line::Control(ref mut ctrl)) => match ctrl {
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&mut ControlInstruction::CallClause(_, _, _, ref mut last_call, _) => {
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*last_call = true
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}
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&mut ControlInstruction::JmpBy(_, _, _, ref mut last_call) => *last_call = true,
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&mut ControlInstruction::Proceed => {}
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_ => dealloc_index += 1,
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},
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Some(&mut Line::Cut(CutInstruction::Cut(_))) => dealloc_index += 1,
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_ => {}
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};
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dealloc_index
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}
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fn compile_inlined(
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&mut self,
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ct: &InlinedClauseType,
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terms: &'a Vec<Box<Term>>,
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term_loc: GenContext,
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code: &mut Code,
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) -> Result<(), ParserError> {
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match ct {
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&InlinedClauseType::CompareNumber(cmp, ..) => {
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if let &Term::Var(ref vr, ref name) = terms[0].as_ref() {
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self.mark_non_callable(name.clone(), 2, term_loc, vr, code);
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}
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if let &Term::Var(ref vr, ref name) = terms[1].as_ref() {
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self.mark_non_callable(name.clone(), 2, term_loc, vr, code);
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}
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let (mut lcode, at_1) = self.call_arith_eval(terms[0].as_ref(), 1)?;
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let (mut rcode, at_2) = self.call_arith_eval(terms[1].as_ref(), 2)?;
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code.append(&mut lcode);
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code.append(&mut rcode);
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code.push(compare_number_instr!(
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cmp,
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at_1.unwrap_or(interm!(1)),
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at_2.unwrap_or(interm!(2))
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));
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}
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&InlinedClauseType::IsAtom(..) => match terms[0].as_ref() {
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&Term::Constant(_, Constant::Char(_))
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| &Term::Constant(_, Constant::EmptyList)
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| &Term::Constant(_, Constant::Atom(..)) => {
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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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let r = self.mark_non_callable(name.clone(), 1, term_loc, vr, code);
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code.push(is_atom!(r));
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}
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_ => {
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code.push(fail!());
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}
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},
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&InlinedClauseType::IsAtomic(..) => match terms[0].as_ref() {
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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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code.push(succeed!());
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}
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&Term::Var(ref vr, ref name) => {
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let r = self.mark_non_callable(name.clone(), 1, term_loc, vr, code);
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code.push(is_atomic!(r));
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}
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},
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&InlinedClauseType::IsCompound(..) => match terms[0].as_ref() {
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&Term::Clause(..) | &Term::Cons(..) => {
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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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let r = self.mark_non_callable(name.clone(), 1, term_loc, vr, code);
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code.push(is_compound!(r));
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}
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_ => {
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code.push(fail!());
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}
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},
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&InlinedClauseType::IsRational(..) => match terms[0].as_ref() {
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&Term::Constant(_, Constant::Rational(_)) => {
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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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let r = self.mark_non_callable(name.clone(), 1, term_loc, vr, code);
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code.push(is_rational!(r));
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}
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_ => {
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code.push(fail!());
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}
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},
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&InlinedClauseType::IsFloat(..) => match terms[0].as_ref() {
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&Term::Constant(_, Constant::Float(_)) => {
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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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let r = self.mark_non_callable(name.clone(), 1, term_loc, vr, code);
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code.push(is_float!(r));
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}
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_ => {
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code.push(fail!());
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}
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},
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&InlinedClauseType::IsNonVar(..) => match terms[0].as_ref() {
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&Term::AnonVar => {
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code.push(fail!());
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}
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&Term::Var(ref vr, ref name) => {
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let r = self.mark_non_callable(name.clone(), 1, term_loc, vr, code);
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code.push(is_nonvar!(r));
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}
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_ => {
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code.push(succeed!());
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}
|
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},
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&InlinedClauseType::IsInteger(..) => match terms[0].as_ref() {
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&Term::Constant(_, Constant::Integer(_)) |
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&Term::Constant(_, Constant::Fixnum(_)) => {
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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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let r = self.mark_non_callable(name.clone(), 1, term_loc, vr, code);
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code.push(is_integer!(r));
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}
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_ => {
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code.push(fail!());
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}
|
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},
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&InlinedClauseType::IsVar(..) => match terms[0].as_ref() {
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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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code.push(succeed!());
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}
|
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&Term::Var(ref vr, ref name) => {
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let r = self.mark_non_callable(name.clone(), 1, term_loc, vr, code);
|
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code.push(is_var!(r));
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}
|
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},
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}
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|
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Ok(())
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}
|
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|
|
fn call_arith_eval(
|
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&self,
|
|
term: &'a Term,
|
|
target_int: usize,
|
|
) -> Result<ArithCont, ArithmeticError> {
|
|
let mut evaluator = ArithmeticEvaluator::new(self.marker.bindings(), target_int);
|
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evaluator.eval(term)
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}
|
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|
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fn compile_is_call(
|
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&mut self,
|
|
terms: &'a Vec<Box<Term>>,
|
|
code: &mut Code,
|
|
term_loc: GenContext,
|
|
use_default_call_policy: bool,
|
|
) -> Result<(), ParserError> {
|
|
let (mut acode, at) = self.call_arith_eval(terms[1].as_ref(), 1)?;
|
|
code.append(&mut acode);
|
|
|
|
Ok(match terms[0].as_ref() {
|
|
&Term::Var(ref vr, ref name) => {
|
|
let mut target = vec![];
|
|
|
|
self.marker.reset_arg(2);
|
|
self.marker
|
|
.mark_var(name.clone(), Level::Shallow, vr, term_loc, &mut target);
|
|
|
|
if !target.is_empty() {
|
|
code.extend(target.into_iter().map(Line::Query));
|
|
}
|
|
|
|
if use_default_call_policy {
|
|
code.push(is_call_by_default!(temp_v!(1), at.unwrap_or(interm!(1))))
|
|
} else {
|
|
code.push(is_call!(temp_v!(1), at.unwrap_or(interm!(1))))
|
|
}
|
|
}
|
|
&Term::Constant(_, ref c @ Constant::Integer(_)) |
|
|
&Term::Constant(_, ref c @ Constant::Fixnum(_)) => {
|
|
code.push(Line::Query(put_constant!(
|
|
Level::Shallow,
|
|
c.clone(),
|
|
temp_v!(1)
|
|
)));
|
|
|
|
if use_default_call_policy {
|
|
code.push(is_call_by_default!(temp_v!(1), at.unwrap_or(interm!(1))))
|
|
} else {
|
|
code.push(is_call!(temp_v!(1), at.unwrap_or(interm!(1))))
|
|
}
|
|
}
|
|
&Term::Constant(_, ref c @ Constant::Float(_)) => {
|
|
code.push(Line::Query(put_constant!(
|
|
Level::Shallow,
|
|
c.clone(),
|
|
temp_v!(1)
|
|
)));
|
|
|
|
if use_default_call_policy {
|
|
code.push(is_call_by_default!(temp_v!(1), at.unwrap_or(interm!(1))))
|
|
} else {
|
|
code.push(is_call!(temp_v!(1), at.unwrap_or(interm!(1))))
|
|
}
|
|
}
|
|
&Term::Constant(_, ref c @ Constant::Rational(_)) => {
|
|
code.push(Line::Query(put_constant!(
|
|
Level::Shallow,
|
|
c.clone(),
|
|
temp_v!(1)
|
|
)));
|
|
|
|
if use_default_call_policy {
|
|
code.push(is_call_by_default!(temp_v!(1), at.unwrap_or(interm!(1))))
|
|
} else {
|
|
code.push(is_call!(temp_v!(1), at.unwrap_or(interm!(1))))
|
|
}
|
|
}
|
|
_ => code.push(fail!()),
|
|
})
|
|
}
|
|
|
|
#[inline]
|
|
fn compile_unblocked_cut(&mut self, code: &mut Code, cell: &'a Cell<VarReg>) {
|
|
let r = self.marker.get(Rc::new(String::from("!")));
|
|
cell.set(VarReg::Norm(r));
|
|
code.push(set_cp!(cell.get().norm()));
|
|
}
|
|
|
|
fn compile_get_level_and_unify(
|
|
&mut self,
|
|
code: &mut Code,
|
|
cell: &'a Cell<VarReg>,
|
|
var: Rc<Var>,
|
|
term_loc: GenContext,
|
|
) {
|
|
let mut target = Vec::new();
|
|
|
|
self.marker.reset_arg(1);
|
|
self.marker
|
|
.mark_var(var, Level::Shallow, cell, term_loc, &mut target);
|
|
|
|
if !target.is_empty() {
|
|
code.extend(
|
|
target
|
|
.into_iter()
|
|
.map(|query_instr| Line::Query(query_instr)),
|
|
);
|
|
}
|
|
|
|
code.push(get_level_and_unify!(cell.get().norm()));
|
|
}
|
|
|
|
fn compile_seq(
|
|
&mut self,
|
|
iter: ChunkedIterator<'a>,
|
|
conjunct_info: &ConjunctInfo<'a>,
|
|
code: &mut Code,
|
|
is_exposed: bool,
|
|
) -> Result<(), ParserError> {
|
|
for (chunk_num, _, terms) in iter.rule_body_iter() {
|
|
for (i, term) in terms.iter().enumerate() {
|
|
let term_loc = if i + 1 < terms.len() {
|
|
GenContext::Mid(chunk_num)
|
|
} else {
|
|
GenContext::Last(chunk_num)
|
|
};
|
|
|
|
match *term {
|
|
&QueryTerm::GetLevelAndUnify(ref cell, ref var) => {
|
|
self.compile_get_level_and_unify(code, cell, var.clone(), term_loc)
|
|
}
|
|
&QueryTerm::UnblockedCut(ref cell) => self.compile_unblocked_cut(code, cell),
|
|
&QueryTerm::BlockedCut => code.push(if chunk_num == 0 {
|
|
Line::Cut(CutInstruction::NeckCut)
|
|
} else {
|
|
Line::Cut(CutInstruction::Cut(perm_v!(1)))
|
|
}),
|
|
&QueryTerm::Clause(
|
|
_,
|
|
ClauseType::BuiltIn(BuiltInClauseType::Is(..)),
|
|
ref terms,
|
|
use_default_call_policy,
|
|
) => self.compile_is_call(terms, code, term_loc, use_default_call_policy)?,
|
|
&QueryTerm::Clause(_, ClauseType::Inlined(ref ct), ref terms, _) => {
|
|
self.compile_inlined(ct, terms, term_loc, code)?
|
|
}
|
|
_ => {
|
|
let num_perm_vars = if chunk_num == 0 {
|
|
conjunct_info.perm_vars()
|
|
} else {
|
|
conjunct_info.perm_vs.vars_above_threshold(i + 1)
|
|
};
|
|
|
|
self.compile_query_line(term, term_loc, code, num_perm_vars, is_exposed);
|
|
}
|
|
}
|
|
}
|
|
|
|
self.marker.reset_contents();
|
|
}
|
|
|
|
Ok(())
|
|
}
|
|
|
|
fn compile_seq_prelude(&mut self, conjunct_info: &ConjunctInfo, body: &mut Code) {
|
|
if conjunct_info.allocates() {
|
|
let perm_vars = conjunct_info.perm_vars();
|
|
|
|
body.push(Line::Control(ControlInstruction::Allocate(perm_vars)));
|
|
|
|
if conjunct_info.has_deep_cut {
|
|
body.push(Line::Cut(CutInstruction::GetLevel(perm_v!(1))));
|
|
}
|
|
}
|
|
}
|
|
|
|
fn compile_cleanup(code: &mut Code, conjunct_info: &ConjunctInfo, toc: &'a QueryTerm) {
|
|
// add a proceed to bookend any trailing cuts.
|
|
match toc {
|
|
&QueryTerm::BlockedCut | &QueryTerm::UnblockedCut(..) => code.push(proceed!()),
|
|
&QueryTerm::Clause(_, ClauseType::Inlined(..), ..) => code.push(proceed!()),
|
|
_ => {}
|
|
};
|
|
|
|
// perform lco.
|
|
let dealloc_index = Self::lco(code);
|
|
|
|
if conjunct_info.allocates() {
|
|
code.insert(dealloc_index, Line::Control(ControlInstruction::Deallocate));
|
|
}
|
|
}
|
|
|
|
pub fn compile_rule<'b: 'a>(&mut self, rule: &'b Rule) -> Result<Code, ParserError> {
|
|
let iter = ChunkedIterator::from_rule(rule);
|
|
let conjunct_info = self.collect_var_data(iter);
|
|
|
|
let &Rule {
|
|
head: (_, ref args, ref p1),
|
|
ref clauses,
|
|
} = rule;
|
|
|
|
let mut code = Vec::new();
|
|
|
|
self.marker.reset_at_head(args);
|
|
self.compile_seq_prelude(&conjunct_info, &mut code);
|
|
|
|
let iter = FactIterator::from_rule_head_clause(args);
|
|
let mut fact = self.compile_target(iter, GenContext::Head, false);
|
|
|
|
let mut unsafe_var_marker = UnsafeVarMarker::new();
|
|
|
|
if !fact.is_empty() {
|
|
unsafe_var_marker = self.mark_unsafe_fact_vars(&mut fact);
|
|
|
|
for fact_instr in fact {
|
|
code.push(Line::Fact(fact_instr));
|
|
}
|
|
}
|
|
|
|
let iter = ChunkedIterator::from_rule_body(p1, clauses);
|
|
self.compile_seq(iter, &conjunct_info, &mut code, false)?;
|
|
|
|
conjunct_info.mark_unsafe_vars(unsafe_var_marker, &mut code);
|
|
|
|
Self::compile_cleanup(&mut code, &conjunct_info, clauses.last().unwrap_or(p1));
|
|
Ok(code)
|
|
}
|
|
|
|
fn mark_unsafe_fact_vars(&self, fact: &mut CompiledFact) -> UnsafeVarMarker {
|
|
let mut safe_vars = IndexSet::new();
|
|
|
|
for fact_instr in fact.iter_mut() {
|
|
match fact_instr {
|
|
&mut FactInstruction::UnifyValue(r) => {
|
|
if !safe_vars.contains(&r) {
|
|
*fact_instr = FactInstruction::UnifyLocalValue(r);
|
|
safe_vars.insert(r);
|
|
}
|
|
}
|
|
&mut FactInstruction::UnifyVariable(r) => {
|
|
safe_vars.insert(r);
|
|
}
|
|
_ => {}
|
|
}
|
|
}
|
|
|
|
UnsafeVarMarker::from_safe_vars(safe_vars)
|
|
}
|
|
|
|
pub fn compile_fact<'b: 'a>(&mut self, term: &'b Term) -> Code {
|
|
self.update_var_count(post_order_iter(term));
|
|
|
|
let mut vs = VariableFixtures::new();
|
|
vs.mark_vars_in_chunk(post_order_iter(term), term.arity(), GenContext::Head);
|
|
|
|
vs.populate_restricting_sets();
|
|
self.marker.drain_var_data(vs, 1);
|
|
|
|
let mut code = Vec::new();
|
|
|
|
if let &Term::Clause(_, _, ref args, _) = term {
|
|
self.marker.reset_at_head(args);
|
|
|
|
let iter = FactInstruction::iter(term);
|
|
let mut compiled_fact = self.compile_target(iter, GenContext::Head, false);
|
|
|
|
self.mark_unsafe_fact_vars(&mut compiled_fact);
|
|
|
|
if !compiled_fact.is_empty() {
|
|
for fact_instr in compiled_fact {
|
|
code.push(Line::Fact(fact_instr));
|
|
}
|
|
}
|
|
}
|
|
|
|
code.push(proceed!());
|
|
code
|
|
}
|
|
|
|
fn compile_query_line(
|
|
&mut self,
|
|
term: &'a QueryTerm,
|
|
term_loc: GenContext,
|
|
code: &mut Code,
|
|
num_perm_vars_left: usize,
|
|
is_exposed: bool,
|
|
) {
|
|
self.marker.reset_arg(term.arity());
|
|
|
|
let iter = query_term_post_order_iter(term);
|
|
let query = self.compile_target(iter, term_loc, is_exposed);
|
|
|
|
if !query.is_empty() {
|
|
for query_instr in query {
|
|
code.push(Line::Query(query_instr));
|
|
}
|
|
}
|
|
|
|
Self::add_conditional_call(code, term, num_perm_vars_left);
|
|
}
|
|
|
|
pub fn compile_query(&mut self, query: &'a Vec<QueryTerm>) -> Result<Code, ParserError> {
|
|
let iter = ChunkedIterator::from_term_sequence(query);
|
|
let conjunct_info = self.collect_var_data(iter);
|
|
|
|
let mut code = Vec::new();
|
|
self.compile_seq_prelude(&conjunct_info, &mut code);
|
|
|
|
let iter = ChunkedIterator::from_term_sequence(query);
|
|
self.compile_seq(iter, &conjunct_info, &mut code, true)?;
|
|
|
|
conjunct_info.mark_unsafe_vars(UnsafeVarMarker::new(), &mut code);
|
|
|
|
if let Some(query_term) = query.last() {
|
|
Self::compile_cleanup(&mut code, &conjunct_info, query_term);
|
|
}
|
|
|
|
Ok(code)
|
|
}
|
|
|
|
fn split_predicate(clauses: &Vec<PredicateClause>) -> Vec<(usize, usize)> {
|
|
let mut subseqs = Vec::new();
|
|
let mut left_index = 0;
|
|
|
|
for (right_index, clause) in clauses.iter().enumerate() {
|
|
match clause.first_arg() {
|
|
Some(&Term::Var(_, _)) | Some(&Term::AnonVar) => {
|
|
if left_index < right_index {
|
|
subseqs.push((left_index, right_index));
|
|
}
|
|
|
|
subseqs.push((right_index, right_index + 1));
|
|
left_index = right_index + 1;
|
|
}
|
|
_ => {}
|
|
}
|
|
}
|
|
|
|
if left_index < clauses.len() {
|
|
subseqs.push((left_index, clauses.len()));
|
|
}
|
|
|
|
subseqs
|
|
}
|
|
|
|
fn trust_me(&self) -> ChoiceInstruction {
|
|
if self.non_counted_bt {
|
|
ChoiceInstruction::DefaultTrustMe
|
|
} else {
|
|
ChoiceInstruction::TrustMe
|
|
}
|
|
}
|
|
|
|
fn retry_me_else(&self, offset: usize) -> ChoiceInstruction {
|
|
if self.non_counted_bt {
|
|
ChoiceInstruction::DefaultRetryMeElse(offset)
|
|
} else {
|
|
ChoiceInstruction::RetryMeElse(offset)
|
|
}
|
|
}
|
|
|
|
fn compile_pred_subseq<'b: 'a>(
|
|
&mut self,
|
|
clauses: &'b [PredicateClause],
|
|
) -> Result<Code, ParserError> {
|
|
let mut code_body = Vec::new();
|
|
let mut code_offsets = CodeOffsets::new();
|
|
|
|
let num_clauses = clauses.len();
|
|
|
|
for (i, clause) in clauses.iter().enumerate() {
|
|
self.marker.reset();
|
|
|
|
let mut clause_code = match clause {
|
|
&PredicateClause::Fact(ref fact, ..) => self.compile_fact(fact),
|
|
&PredicateClause::Rule(ref rule, ..) => self.compile_rule(rule)?,
|
|
};
|
|
|
|
if num_clauses > 1 {
|
|
let choice = match i {
|
|
0 => ChoiceInstruction::TryMeElse(clause_code.len() + 1),
|
|
_ if i == num_clauses - 1 => self.trust_me(),
|
|
_ => self.retry_me_else(clause_code.len() + 1),
|
|
};
|
|
|
|
code_body.push(Line::Choice(choice));
|
|
}
|
|
|
|
clause.first_arg().map(|arg| {
|
|
let index = code_body.len();
|
|
code_offsets.index_term(arg, index);
|
|
});
|
|
|
|
code_body.append(&mut clause_code);
|
|
}
|
|
|
|
let mut code = Vec::new();
|
|
|
|
code_offsets.add_indices(&mut code, code_body);
|
|
Ok(code)
|
|
}
|
|
|
|
pub fn compile_predicate<'b: 'a>(
|
|
&mut self,
|
|
clauses: &'b Vec<PredicateClause>,
|
|
) -> Result<Code, ParserError> {
|
|
let mut code = Vec::new();
|
|
let split_pred = Self::split_predicate(&clauses);
|
|
let multi_seq = split_pred.len() > 1;
|
|
|
|
for (l, r) in split_pred {
|
|
let mut code_segment = self.compile_pred_subseq(&clauses[l..r])?;
|
|
|
|
if multi_seq {
|
|
let choice = match l {
|
|
0 => ChoiceInstruction::TryMeElse(code_segment.len() + 1),
|
|
_ if r == clauses.len() => self.trust_me(),
|
|
_ => self.retry_me_else(code_segment.len() + 1),
|
|
};
|
|
|
|
code.push(Line::Choice(choice));
|
|
}
|
|
|
|
code.append(&mut code_segment);
|
|
}
|
|
|
|
Ok(code)
|
|
}
|
|
}
|