adapt code generation
This commit is contained in:
@@ -60,6 +60,9 @@ pub(crate) trait Allocator {
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fn take_bindings(self) -> AllocVarDict;
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fn max_reg_allocated(&self) -> usize;
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// TODO: wha.. why?? grrr. it drains the VarStatus data from vs (which it owns!)
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// into self.bindings and perm_vs after all is computed (i.e. vs.populate_restricting_sets()
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// and vs.set_perm_vals(has_deep_cut) have both been called).
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fn drain_var_data<'a>(
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&mut self,
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vs: VariableFixtures<'a>,
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@@ -84,7 +84,7 @@ type VariableFixture<'a> = (VarStatus, Vec<&'a Cell<VarReg>>);
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#[derive(Debug)]
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pub(crate) struct VariableFixtures<'a> {
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perm_vars: IndexMap<Var, VariableFixture<'a>>,
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last_chunk_temp_vars: IndexSet<Var>,
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last_chunk_temp_vars: IndexSet<Var>, // TODO: has no use at all!
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}
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impl<'a> VariableFixtures<'a> {
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23
src/forms.rs
23
src/forms.rs
@@ -1,6 +1,7 @@
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use crate::arena::*;
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use crate::atom_table::*;
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use crate::instructions::*;
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use crate::machine::disjuncts::VarRecord;
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use crate::machine::heap::*;
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use crate::machine::loader::PredicateQueue;
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use crate::machine::machine_errors::*;
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@@ -34,7 +35,7 @@ pub type JumpStub = Vec<Term>;
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#[derive(Debug, Clone)]
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pub enum TopLevel {
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Fact(Term), // Term, line_num, col_num
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Fact(Fact), // Term, line_num, col_num
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Predicate(Predicate),
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Query(Vec<QueryTerm>),
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Rule(Rule), // Rule, line_num, col_num
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@@ -82,10 +83,11 @@ pub enum CallPolicy {
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pub enum QueryTerm {
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// register, clause type, subterms, clause call policy.
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Clause(Cell<RegType>, ClauseType, Vec<Term>, CallPolicy),
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BlockedCut, // a cut which is 'blocked by letters', like the P term in P -> Q.
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UnblockedCut(Cell<VarReg>),
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Cut,
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Not(Vec<QueryTerm>),
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IfThen(Vec<QueryTerm>, Vec<QueryTerm>),
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Branch(Vec<Vec<QueryTerm>>),
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GetLevelAndUnify(Cell<VarReg>, Var),
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Jump(JumpStub), // SOON: Branch(Vec<QueryTerm>),
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}
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impl QueryTerm {
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@@ -99,17 +101,24 @@ impl QueryTerm {
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pub(crate) fn arity(&self) -> usize {
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match self {
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&QueryTerm::Clause(_, _, ref subterms, ..) => subterms.len(),
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&QueryTerm::BlockedCut | &QueryTerm::UnblockedCut(..) => 0,
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&QueryTerm::Jump(ref vars) => vars.len(),
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&QueryTerm::GetLevelAndUnify(..) => 1,
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&QueryTerm::Cut | &QueryTerm::Branch(_) => 0,
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&QueryTerm::IfThen(..) => 2,
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&QueryTerm::Not(_) | &QueryTerm::GetLevelAndUnify(..) => 1,
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}
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}
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}
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#[derive(Debug, Clone)]
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pub struct Fact {
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pub(crate) head: Term,
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pub(crate) var_records: Vec<VarRecord>,
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}
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#[derive(Debug, Clone)]
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pub struct Rule {
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pub(crate) head: (Atom, Vec<Term>, QueryTerm),
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pub(crate) clauses: Vec<QueryTerm>,
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pub(crate) var_records: Vec<VarRecord>,
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}
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#[derive(Clone, Debug, Hash)]
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@@ -27,7 +27,6 @@ pub mod instructions {
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include!(concat!(env!("OUT_DIR"), "/instructions.rs"));
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}
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mod iterators;
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mod disjuncts;
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pub mod machine;
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mod raw_block;
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pub mod read;
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640
src/machine/disjuncts.rs
Normal file
640
src/machine/disjuncts.rs
Normal file
@@ -0,0 +1,640 @@
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/*
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================================================================================
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This is a disjunction compilation experiment attempting to adapt the
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paper "Compiling Large Disjunctions" to Scryer Prolog.
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================================================================================
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*/
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use crate::atom_table::*;
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use crate::forms::*;
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use crate::instructions::*;
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use crate::iterators::*;
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use crate::machine::loader::*;
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use crate::machine::machine_errors::CompilationError;
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use crate::machine::preprocessor::*;
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use crate::parser::ast::*;
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use crate::parser::rug::Rational;
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use indexmap::{IndexMap, IndexSet};
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use std::cell::Cell;
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use std::cmp::Ordering;
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use std::hash::{Hash, Hasher};
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use std::ops::{Deref, DerefMut};
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#[derive(Debug, Clone)]
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struct BranchNumber {
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branch_num: Rational,
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delta: Rational,
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}
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impl Default for BranchNumber {
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fn default() -> Self {
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Self {
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branch_num: Rational::from(1 << 10),
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delta: Rational::from(1),
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}
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}
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}
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impl PartialEq<BranchNumber> for BranchNumber {
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#[inline]
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fn eq(&self, rhs: &BranchNumber) -> bool {
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self.branch_num == rhs.branch_num
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}
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}
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impl Eq for BranchNumber {}
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impl Hash for BranchNumber {
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#[inline(always)]
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fn hash<H: Hasher>(&self, hasher: &mut H) {
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self.branch_num.hash(hasher)
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}
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}
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impl PartialOrd<BranchNumber> for BranchNumber {
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#[inline]
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fn partial_cmp(&self, rhs: &BranchNumber) -> Option<Ordering> {
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self.branch_num.partial_cmp(&rhs.branch_num)
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}
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}
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impl BranchNumber {
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fn split(&self) -> BranchNumber {
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BranchNumber {
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branch_num: self.branch_num.clone() + &self.delta / Rational::from(2),
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delta: &self.delta / Rational::from(4),
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}
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}
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fn incr_by_delta(&self) -> BranchNumber {
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BranchNumber {
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branch_num: self.branch_num.clone() + &self.delta,
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delta: self.delta.clone(),
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}
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}
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fn halve_delta(&self) -> BranchNumber {
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BranchNumber {
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branch_num: self.branch_num.clone(),
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delta : &self.delta / Rational::from(2),
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}
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}
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}
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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pub struct ChunkInfo {
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chunk_num: usize,
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vars: Vec<VarPtr>, // pointer to incidence
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}
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impl ChunkInfo {
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fn new(chunk_num: usize) -> Self {
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ChunkInfo { chunk_num, vars: vec![] }
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}
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}
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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pub struct BranchInfo {
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branch_num: BranchNumber,
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chunks: Vec<ChunkInfo>,
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}
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impl BranchInfo {
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fn new(branch_num: BranchNumber) -> Self {
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Self { branch_num, chunks: vec![] }
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}
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}
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type BranchMapInt = IndexMap<Var, Vec<BranchInfo>>;
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#[derive(Debug, Clone)]
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pub struct BranchMap(BranchMapInt);
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impl Deref for BranchMap {
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type Target = BranchMapInt;
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#[inline(always)]
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fn deref(&self) -> &BranchMapInt {
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&self.0
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}
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}
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impl DerefMut for BranchMap {
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#[inline(always)]
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fn deref_mut(&mut self) -> &mut BranchMapInt {
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&mut self.0
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}
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}
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type RootSet = IndexSet<BranchNumber>;
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enum TraversalState {
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BuildDisjunct(usize), // construct a QueryTerm::Branch with number of disjuncts.
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BuildIf(usize, Term), // build the P term of P -> Q
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BuildThen(usize, Vec<QueryTerm>), // build the Q term of P -> Q
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BuildNot(usize), // build the P term of \+ P
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ResetCallPolicy(CallPolicy),
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Term(Term),
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AddBranchNum(BranchNumber), // set current_branch_number, add it to the root set
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RemoveBranchNum, // remove latest branch number from the root set
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RepBranchNum(BranchNumber), // replace current_branch_number and the latest in the root set
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IncrChunkNum, // increment self.current_chunk_number
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}
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impl Term {
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#[inline]
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fn is_var(&self) -> bool {
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if let Term::Var(..) = self {
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true
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} else {
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false
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}
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}
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#[inline]
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fn is_compound(&self) -> bool {
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match self {
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Term::Clause(..) | Term::Cons(..) => true,
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_ => false,
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}
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}
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}
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pub struct VariableClassifier {
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call_policy: CallPolicy,
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current_branch_num: BranchNumber,
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current_chunk_num: usize,
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branch_map: BranchMap,
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root_set: RootSet,
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}
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#[derive(Debug)]
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pub enum VarClassification {
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Void,
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Temp,
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Perm,
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}
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pub struct VarRecord {
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pub classification: VarClassification,
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pub chunk_occurrences: Vec<usize>,
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pub num_occurrences: usize,
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}
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pub type ClassifyFactResult = (Term, Vec<VarRecord>);
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pub type ClassifyRuleResult = (Term, Vec<QueryTerm>, Vec<VarRecord>);
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fn merge_branch_seq<Iter: Iterator<Item = BranchInfo>>(branches: Iter) -> BranchInfo {
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let mut branch_info = BranchInfo::new(BranchNumber::default());
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for mut branch in branches {
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branch_info.branch_num = branch.branch_num;
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if let Some(last_chunk) = branch_info.chunks.last_mut() {
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if let Some(first_moved_chunk) = branch.chunks.first_mut() {
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if last_chunk.chunk_num == first_moved_chunk.chunk_num {
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last_chunk.vars.extend(first_moved_chunk.vars.drain(..));
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branch_info.chunks.extend(branch.chunks.drain(1 ..));
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continue;
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}
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}
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}
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branch_info.chunks.extend(branch.chunks.drain(..));
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}
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branch_info.branch_num.delta *= 2;
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branch_info.branch_num.branch_num -= &branch_info.branch_num.delta;
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branch_info
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}
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impl VariableClassifier {
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pub fn new(call_policy: CallPolicy) -> Self {
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Self {
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call_policy,
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current_branch_num: BranchNumber::default(),
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current_chunk_num: 0,
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branch_map: BranchMap(BranchMapInt::new()),
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root_set: RootSet::new(),
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}
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}
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pub fn classify_fact(mut self, term: Term) -> Result<ClassifyFactResult, CompilationError> {
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self.classify_head_variables(&term)?;
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Ok((term, self.branch_map.separate_and_classify_variables()))
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}
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pub fn classify_rule<'a, LS: LoadState<'a>>(
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mut self,
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loader: &mut Loader<'a, LS>,
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head: Term,
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body: Term,
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) -> Result<ClassifyRuleResult, CompilationError> {
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self.classify_head_variables(&head)?;
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let query_terms = self.classify_body_variables(loader, body)?;
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Ok((head, query_terms, self.branch_map.separate_and_classify_variables()))
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}
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/*
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pub fn to_branch_map(mut self, term: Term) -> Result<ClassifierResult, CompilationError> {
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self.root_set.insert(BranchNumber::default());
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let (head_term, query_terms) = match term {
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Term::Clause(_, atom!(":-"), terms) if terms.len() == 2 => {
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let head_term = terms[0];
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self.classify_head_variables(&head_term)?;
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(head_term, self.classify_body_variables(terms[1])?)
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}
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_ => {
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self.classify_head_variables(&term)?;
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(term, vec![])
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}
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};
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self.merge_branches();
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Ok((head_term, query_terms, self.branch_map))
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}
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*/
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fn merge_branches(&mut self) {
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for branches in self.branch_map.values_mut() {
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let mut old_branches = std::mem::replace(branches, vec![]);
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while let Some(last_branch_num) = old_branches.last().map(|bi| &bi.branch_num) {
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let mut old_branches_len = old_branches.len();
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for (rev_idx, bi) in old_branches.iter().rev().enumerate() {
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if &bi.branch_num > last_branch_num {
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old_branches_len = old_branches.len() - rev_idx;
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}
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}
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let iter = old_branches.drain(old_branches_len - 1 ..);
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branches.push(merge_branch_seq(iter));
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}
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branches.reverse();
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}
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}
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fn probe_body_term(&mut self, term: &Term) {
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// true to iterate the root, which may be a variable!
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for term_ref in breadth_first_iter(term, true) {
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if let TermRef::Var(_, _, var_name) = term_ref {
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self.probe_body_var(Var::from(var_name));
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}
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}
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}
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fn probe_body_var(&mut self, var_name: Var) {
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let branch_info_v = self.branch_map.entry(var_name)
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.or_insert_with(|| vec![]);
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let needs_new_branch = if let Some(last_bi) = branch_info_v.last() {
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!self.root_set.contains(&last_bi.branch_num)
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} else {
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true
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};
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if needs_new_branch {
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branch_info_v.push(BranchInfo::new(self.current_branch_num.clone()));
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}
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let branch_info = branch_info_v.last_mut().unwrap();
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let needs_new_chunk = if let Some(last_ci) = branch_info.chunks.last() {
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last_ci.chunk_num != self.current_chunk_num
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} else {
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true
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};
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if needs_new_chunk {
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branch_info.chunks.push(ChunkInfo::new(self.current_chunk_num));
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}
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let chunk_info = branch_info.chunks.last_mut().unwrap();
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chunk_info.vars.push(VarPtr::from(&var_name));
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}
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fn classify_head_variables(&mut self, term: &Term) -> Result<(), CompilationError> {
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match term {
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Term::Clause(..) | Term::Literal(_, Literal::Atom(_)) => {
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}
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_ => return Err(CompilationError::InvalidRuleHead),
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}
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// false argument to breadth_first_iter because the root is not iterable.
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for term_ref in breadth_first_iter(term, false) {
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if let TermRef::Var(_, _, var_name) = term_ref {
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// the body of the if let here is an inlined
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// "probe_head_var". note the difference between it
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// and "probe_body_var".
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let branch_info_v = self.branch_map.entry(Var::from(var_name))
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.or_insert_with(|| vec![]);
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let needs_new_branch = branch_info_v.is_empty();
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if needs_new_branch {
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branch_info_v.push(BranchInfo::new(self.current_branch_num.clone()));
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}
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let branch_info = branch_info_v.last_mut().unwrap();
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let needs_new_chunk = branch_info.chunks.is_empty();
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if needs_new_chunk {
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branch_info.chunks.push(ChunkInfo::new(self.current_chunk_num));
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}
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let chunk_info = branch_info.chunks.last_mut().unwrap();
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chunk_info.vars.push(VarPtr::from(&var_name));
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}
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}
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Ok(())
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}
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fn classify_body_variables<'a, LS: LoadState<'a>>(
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&mut self,
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loader: &mut Loader<'a, LS>,
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term: Term,
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) -> Result<Vec<QueryTerm>, CompilationError> {
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let mut state_stack = vec![TraversalState::Term(term)];
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let mut build_stack = vec![];
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while let Some(traversal_st) = state_stack.pop() {
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match traversal_st {
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TraversalState::AddBranchNum(branch_num) => {
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self.root_set.insert(branch_num.clone());
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self.current_branch_num = branch_num;
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}
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TraversalState::RemoveBranchNum => {
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self.root_set.pop();
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}
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TraversalState::RepBranchNum(branch_num) => {
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self.root_set.pop();
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self.root_set.insert(branch_num.clone());
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self.current_branch_num = branch_num;
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}
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TraversalState::IncrChunkNum => {
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self.current_chunk_num += 1;
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}
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TraversalState::BuildDisjunct(preceding_len) => {
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let iter = build_stack.drain(preceding_len ..);
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if let QueryTerm::Branch(ref mut disjuncts) = &mut build_stack[preceding_len] {
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disjuncts.push(iter.collect());
|
||||
}
|
||||
}
|
||||
TraversalState::BuildIf(preceding_len, then_term) => {
|
||||
let iter = build_stack.drain(preceding_len ..);
|
||||
let build_stack_len = build_stack.len();
|
||||
|
||||
state_stack.push(TraversalState::BuildThen(build_stack_len, iter.collect()));
|
||||
}
|
||||
TraversalState::BuildThen(preceding_len, if_terms) => {
|
||||
let iter = build_stack.drain(preceding_len ..);
|
||||
build_stack.push(QueryTerm::IfThen(if_terms, iter.collect()));
|
||||
}
|
||||
TraversalState::BuildNot(preceding_len) => {
|
||||
let iter = build_stack.drain(preceding_len ..);
|
||||
build_stack.push(QueryTerm::Not(iter.collect()));
|
||||
}
|
||||
TraversalState::ResetCallPolicy(call_policy) => {
|
||||
self.call_policy = call_policy;
|
||||
}
|
||||
TraversalState::Term(term) => {
|
||||
match term {
|
||||
Term::Clause(_, atom!(","), terms) if terms.len() == 2 => {
|
||||
state_stack.extend(
|
||||
unfold_by_str(terms[1], atom!(","))
|
||||
.into_iter()
|
||||
.rev()
|
||||
.map(TraversalState::Term),
|
||||
);
|
||||
|
||||
state_stack.push(TraversalState::Term(terms[0]));
|
||||
}
|
||||
Term::Clause(_, atom!(";"), terms) if terms.len() == 2 => {
|
||||
let first_branch_num = self.current_branch_num.split();
|
||||
let branches: Vec<_> = std::iter::once(terms[0])
|
||||
.chain(unfold_by_str(terms[1], atom!(";")).into_iter())
|
||||
.collect();
|
||||
|
||||
let mut branch_numbers = vec![first_branch_num];
|
||||
|
||||
for idx in 1 .. branches.len() {
|
||||
let succ_branch_number = branch_numbers[idx - 1].incr_by_delta();
|
||||
|
||||
branch_numbers.push(if idx + 1 < branches.len() {
|
||||
succ_branch_number.split()
|
||||
} else {
|
||||
succ_branch_number
|
||||
});
|
||||
}
|
||||
|
||||
let build_stack_len = build_stack.len();
|
||||
|
||||
build_stack.push(QueryTerm::Branch(vec![]));
|
||||
state_stack.push(TraversalState::BuildDisjunct(build_stack_len));
|
||||
|
||||
state_stack.push(TraversalState::RepBranchNum(
|
||||
self.current_branch_num.halve_delta(),
|
||||
));
|
||||
|
||||
let iter = branches.into_iter().zip(branch_numbers.into_iter());
|
||||
|
||||
for (term, branch_num) in iter.rev() {
|
||||
state_stack.push(TraversalState::BuildDisjunct(build_stack_len));
|
||||
|
||||
state_stack.push(TraversalState::RemoveBranchNum);
|
||||
state_stack.push(TraversalState::Term(term));
|
||||
state_stack.push(TraversalState::AddBranchNum(branch_num));
|
||||
}
|
||||
}
|
||||
Term::Clause(_, atom!("->"), mut terms) if terms.len() == 2 => {
|
||||
let then_term = terms.pop().unwrap();
|
||||
let if_term = terms.pop().unwrap();
|
||||
let build_stack_len = build_stack.len();
|
||||
|
||||
state_stack.push(TraversalState::BuildIf(build_stack_len, then_term));
|
||||
state_stack.push(TraversalState::Term(if_term));
|
||||
}
|
||||
Term::Clause(_, atom!("\\+"), terms) if terms.len() == 1 => {
|
||||
let build_stack_len = build_stack.len();
|
||||
|
||||
state_stack.push(TraversalState::BuildNot(build_stack_len));
|
||||
state_stack.push(TraversalState::Term(terms[0]));
|
||||
}
|
||||
Term::Clause(_, atom!("$get_level"), terms) if terms.len() == 1 => {
|
||||
state_stack.push(TraversalState::IncrChunkNum);
|
||||
|
||||
if let Term::Var(_, ref var) = &terms[0] {
|
||||
build_stack.push(QueryTerm::GetLevelAndUnify(Cell::default(), var.clone()));
|
||||
} else {
|
||||
return Err(CompilationError::InadmissibleQueryTerm);
|
||||
}
|
||||
}
|
||||
Term::Clause(_, atom!(":"), mut terms) if terms.len() == 2 => {
|
||||
let predicate_name = terms.pop().unwrap();
|
||||
let module_name = terms.pop().unwrap();
|
||||
|
||||
match (module_name, predicate_name) {
|
||||
(
|
||||
Term::Literal(_, Literal::Atom(module_name)),
|
||||
Term::Literal(_, Literal::Atom(predicate_name)),
|
||||
) => {
|
||||
if !ClauseType::is_inbuilt(name, 0) {
|
||||
state_stack.push(TraversalState::IncrChunkNum);
|
||||
}
|
||||
|
||||
build_stack.push(
|
||||
qualified_clause_to_query_term(
|
||||
loader,
|
||||
module_name,
|
||||
predicate_name,
|
||||
vec![],
|
||||
self.call_policy,
|
||||
),
|
||||
);
|
||||
}
|
||||
(
|
||||
Term::Literal(_, Literal::Atom(module_name)),
|
||||
Term::Clause(_, name, terms),
|
||||
) => {
|
||||
if !ClauseType::is_inbuilt(name, terms.len()) {
|
||||
state_stack.push(TraversalState::IncrChunkNum);
|
||||
}
|
||||
|
||||
build_stack.push(
|
||||
qualified_clause_to_query_term(
|
||||
loader,
|
||||
module_name,
|
||||
name,
|
||||
terms,
|
||||
self.call_policy,
|
||||
),
|
||||
);
|
||||
}
|
||||
(module_name, predicate_name) => {
|
||||
state_stack.push(TraversalState::IncrChunkNum);
|
||||
|
||||
terms.push(module_name);
|
||||
terms.push(predicate_name);
|
||||
|
||||
build_stack.push(
|
||||
clause_to_query_term(
|
||||
loader,
|
||||
atom!("call"),
|
||||
vec![Term::Clause(Cell::default(), atom!(":"), terms)],
|
||||
self.call_policy,
|
||||
),
|
||||
);
|
||||
}
|
||||
}
|
||||
}
|
||||
Term::Clause(cell, atom!("$call_with_inference_counting"), terms) if terms.len() == 2 => {
|
||||
state_stack.push(TraversalState::ResetCallPolicy(self.call_policy));
|
||||
state_stack.push(TraversalState::Term(terms[0]));
|
||||
|
||||
self.call_policy = CallPolicy::Counted;
|
||||
}
|
||||
Term::Clause(cell, name, terms) => {
|
||||
if !ClauseType::is_inbuilt(name, terms.len()) {
|
||||
state_stack.push(TraversalState::IncrChunkNum);
|
||||
}
|
||||
|
||||
for term in terms.iter() {
|
||||
self.probe_body_term(term);
|
||||
}
|
||||
|
||||
build_stack.push(
|
||||
clause_to_query_term(
|
||||
loader,
|
||||
name,
|
||||
terms,
|
||||
self.call_policy,
|
||||
),
|
||||
);
|
||||
}
|
||||
Term::Literal(_, Literal::Atom(atom!("!"))) |
|
||||
Term::Literal(_, Literal::Char('!')) => {
|
||||
build_stack.push(QueryTerm::Cut);
|
||||
}
|
||||
Term::Literal(cell, Literal::Atom(name)) => {
|
||||
if !ClauseType::is_inbuilt(name, 0) {
|
||||
state_stack.push(TraversalState::IncrChunkNum);
|
||||
}
|
||||
|
||||
build_stack.push(
|
||||
clause_to_query_term(
|
||||
loader,
|
||||
name,
|
||||
vec![],
|
||||
self.call_policy,
|
||||
),
|
||||
);
|
||||
}
|
||||
_ => {
|
||||
return Err(CompilationError::InadmissibleQueryTerm);
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
Ok(build_stack)
|
||||
}
|
||||
}
|
||||
|
||||
impl BranchMap {
|
||||
pub fn separate_and_classify_variables(&mut self) -> Vec<VarRecord> {
|
||||
let mut var_num = 0usize;
|
||||
let mut records = vec![];
|
||||
|
||||
for branches in self.values_mut() {
|
||||
for branch in branches.iter_mut() {
|
||||
let mut num_occurrences = 0;
|
||||
let mut chunk_occurrences = vec![];
|
||||
|
||||
for chunk in branch.chunks.iter_mut() {
|
||||
num_occurrences += chunk.vars.len();
|
||||
|
||||
for var in chunk.vars.iter_mut() {
|
||||
var.set(Var::Generated(var_num));
|
||||
}
|
||||
|
||||
chunk_occurrences.push(chunk.chunk_num);
|
||||
}
|
||||
|
||||
let classification = if branch.chunks.len() > 1 {
|
||||
VarClassification::Perm
|
||||
} else {
|
||||
branch.chunks
|
||||
.first()
|
||||
.map(|chunk| if chunk.vars.len() > 1 {
|
||||
VarClassification::Temp
|
||||
} else {
|
||||
VarClassification::Void
|
||||
})
|
||||
.unwrap_or(VarClassification::Void)
|
||||
};
|
||||
|
||||
records.push(VarRecord { classification, chunk_occurrences, num_occurrences });
|
||||
var_num += 1;
|
||||
}
|
||||
}
|
||||
|
||||
debug_assert_eq!(records.len(), var_num);
|
||||
|
||||
records
|
||||
}
|
||||
}
|
||||
@@ -441,7 +441,7 @@ impl<'a, LS: LoadState<'a>> Loader<'a, LS> {
|
||||
term: Term,
|
||||
preprocessor: &mut Preprocessor,
|
||||
) -> Result<PredicateClause, SessionError> {
|
||||
let tl = preprocessor.try_term_to_tl(self, term, CutContext::BlocksCuts)?;
|
||||
let tl = preprocessor.try_term_to_tl(self, term)?;
|
||||
|
||||
Ok(match tl {
|
||||
TopLevel::Fact(fact) => PredicateClause::Fact(fact),
|
||||
|
||||
@@ -16,6 +16,7 @@ pub mod machine_state;
|
||||
pub mod machine_state_impl;
|
||||
pub mod mock_wam;
|
||||
pub mod partial_string;
|
||||
pub mod disjuncts;
|
||||
pub mod preprocessor;
|
||||
pub mod stack;
|
||||
pub mod streams;
|
||||
|
||||
@@ -2,7 +2,7 @@ use crate::atom_table::*;
|
||||
use crate::codegen::CodeGenSettings;
|
||||
use crate::forms::*;
|
||||
use crate::instructions::*;
|
||||
use crate::iterators::*;
|
||||
use crate::machine::disjuncts::*;
|
||||
use crate::machine::loader::*;
|
||||
use crate::machine::machine_errors::*;
|
||||
use crate::parser::ast::*;
|
||||
@@ -13,21 +13,6 @@ use std::cell::Cell;
|
||||
use std::collections::VecDeque;
|
||||
use std::convert::TryFrom;
|
||||
|
||||
/*
|
||||
* The preprocessor fabricates if-then-else ( .. -> ... ; ...)
|
||||
* clauses into nameless standalone predicates, which it queues for
|
||||
* later preprocessing and compilation. Fabricated predicates inherit
|
||||
* explicit "cut variables" from the handwritten predicate
|
||||
* surrounding their source if-then-else. They must be specially
|
||||
* handled.
|
||||
*/
|
||||
|
||||
#[derive(Clone, Copy, Debug)]
|
||||
pub(crate) enum CutContext {
|
||||
BlocksCuts,
|
||||
HasCutVariable,
|
||||
}
|
||||
|
||||
pub(crate) fn fold_by_str<I>(terms: I, mut term: Term, sym: Atom) -> Term
|
||||
where
|
||||
I: DoubleEndedIterator<Item = Term>,
|
||||
@@ -131,6 +116,13 @@ fn setup_module_export(
|
||||
})
|
||||
}
|
||||
|
||||
pub(crate) fn build_rule_body(vars: &[Term], body_term: Term) -> Term {
|
||||
let head_term = Term::Clause(Cell::default(), atom!(""), vars.iter().cloned().collect());
|
||||
let rule = vec![head_term, body_term];
|
||||
|
||||
Term::Clause(Cell::default(), atom!(":-"), rule)
|
||||
}
|
||||
|
||||
pub(super) fn setup_module_export_list(
|
||||
mut export_list: Term,
|
||||
atom_tbl: &mut AtomTable,
|
||||
@@ -324,110 +316,6 @@ fn setup_meta_predicate<'a, LS: LoadState<'a>>(
|
||||
}
|
||||
}
|
||||
|
||||
fn merge_clauses(tls: &mut VecDeque<TopLevel>) -> Result<TopLevel, CompilationError> {
|
||||
let mut clauses = vec![];
|
||||
|
||||
while let Some(tl) = tls.pop_front() {
|
||||
match tl {
|
||||
TopLevel::Query(_) if clauses.is_empty() && tls.is_empty() => {
|
||||
return Ok(tl);
|
||||
}
|
||||
TopLevel::Query(_) => {
|
||||
return Err(CompilationError::InconsistentEntry);
|
||||
}
|
||||
TopLevel::Fact(fact) => {
|
||||
let clause = PredicateClause::Fact(fact);
|
||||
clauses.push(clause);
|
||||
}
|
||||
TopLevel::Rule(rule) => {
|
||||
let clause = PredicateClause::Rule(rule);
|
||||
clauses.push(clause);
|
||||
}
|
||||
TopLevel::Predicate(predicate) => clauses.extend(predicate.into_iter()),
|
||||
}
|
||||
}
|
||||
|
||||
if clauses.is_empty() {
|
||||
Err(CompilationError::InconsistentEntry)
|
||||
} else {
|
||||
Ok(TopLevel::Predicate(clauses))
|
||||
}
|
||||
}
|
||||
|
||||
fn mark_cut_variables_as(terms: &mut Vec<Term>, name: Atom) {
|
||||
for term in terms.iter_mut() {
|
||||
match term {
|
||||
&mut Term::Literal(_, Literal::Atom(ref mut var)) if *var == atom!("!") => {
|
||||
*var = name;
|
||||
}
|
||||
_ => {}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
fn mark_cut_variable(term: &mut Term) -> bool {
|
||||
let cut_var_found = match term {
|
||||
&mut Term::Literal(_, Literal::Atom(ref var)) if *var == atom!("!") => true,
|
||||
_ => false,
|
||||
};
|
||||
|
||||
if cut_var_found {
|
||||
*term = Term::Var(Cell::default(), Var::from("!"));
|
||||
true
|
||||
} else {
|
||||
false
|
||||
}
|
||||
}
|
||||
|
||||
fn mark_cut_variables(terms: &mut Vec<Term>) -> bool {
|
||||
let mut found_cut_var = false;
|
||||
|
||||
for item in terms.iter_mut() {
|
||||
found_cut_var = mark_cut_variable(item) || found_cut_var;
|
||||
}
|
||||
|
||||
found_cut_var
|
||||
}
|
||||
|
||||
// terms is a list of goals composing one clause in a (;) functor. it
|
||||
// checks that the first (and only) of these clauses is a ->. if so,
|
||||
// it expands its terms using a blocked_!.
|
||||
fn check_for_internal_if_then(terms: &mut Vec<Term>) {
|
||||
if terms.len() != 1 {
|
||||
return;
|
||||
}
|
||||
|
||||
if let Some(Term::Clause(_, name, ref subterms)) = terms.last() {
|
||||
if *name != atom!("->") || source_arity(subterms) != 2 {
|
||||
return;
|
||||
}
|
||||
} else {
|
||||
return;
|
||||
}
|
||||
|
||||
if let Some(Term::Clause(_, _, mut subterms)) = terms.pop() {
|
||||
let mut conq_terms = VecDeque::from(unfold_by_str(subterms.pop().unwrap(), atom!(",")));
|
||||
let mut pre_cut_terms = VecDeque::from(unfold_by_str(subterms.pop().unwrap(), atom!(",")));
|
||||
|
||||
conq_terms.push_front(Term::Literal(
|
||||
Cell::default(),
|
||||
Literal::Atom(atom!("blocked_!")),
|
||||
));
|
||||
|
||||
while let Some(term) = pre_cut_terms.pop_back() {
|
||||
conq_terms.push_front(term);
|
||||
}
|
||||
|
||||
let tail_term = conq_terms.pop_back().unwrap();
|
||||
|
||||
terms.push(fold_by_str(
|
||||
conq_terms.into_iter(),
|
||||
tail_term,
|
||||
atom!(","),
|
||||
));
|
||||
}
|
||||
}
|
||||
|
||||
pub(super) fn setup_declaration<'a, LS: LoadState<'a>>(
|
||||
loader: &mut Loader<'a, LS>,
|
||||
mut terms: Vec<Term>,
|
||||
@@ -569,7 +457,7 @@ fn build_meta_predicate_clause<'a, LS: LoadState<'a>>(
|
||||
}
|
||||
|
||||
#[inline]
|
||||
fn clause_to_query_term<'a, LS: LoadState<'a>>(
|
||||
pub(super) fn clause_to_query_term<'a, LS: LoadState<'a>>(
|
||||
loader: &mut Loader<'a, LS>,
|
||||
name: Atom,
|
||||
mut terms: Vec<Term>,
|
||||
@@ -608,7 +496,7 @@ fn clause_to_query_term<'a, LS: LoadState<'a>>(
|
||||
}
|
||||
|
||||
#[inline]
|
||||
fn qualified_clause_to_query_term<'a, LS: LoadState<'a>>(
|
||||
pub(super) fn qualified_clause_to_query_term<'a, LS: LoadState<'a>>(
|
||||
loader: &mut Loader<'a, LS>,
|
||||
module_name: Atom,
|
||||
name: Atom,
|
||||
@@ -646,308 +534,65 @@ fn qualified_clause_to_query_term<'a, LS: LoadState<'a>>(
|
||||
QueryTerm::Clause(Cell::default(), ct, terms, call_policy)
|
||||
}
|
||||
|
||||
fn compute_head(term: &Term) -> Vec<Term> {
|
||||
let mut vars = IndexSet::new();
|
||||
|
||||
for term in post_order_iter(term) {
|
||||
if let TermRef::Var(_, _, v) = term {
|
||||
vars.insert(v.clone());
|
||||
}
|
||||
}
|
||||
|
||||
vars.insert(Var::from("!"));
|
||||
vars.into_iter()
|
||||
.map(|v| Term::Var(Cell::default(), v))
|
||||
.collect()
|
||||
}
|
||||
|
||||
pub(crate) fn build_rule_body(vars: &[Term], body_term: Term) -> Term {
|
||||
let head_term = Term::Clause(Cell::default(), atom!(""), vars.iter().cloned().collect());
|
||||
let rule = vec![head_term, body_term];
|
||||
|
||||
Term::Clause(Cell::default(), atom!(":-"), rule)
|
||||
}
|
||||
|
||||
// the terms form the body of the rule. We create a head, by
|
||||
// gathering variables from the body of terms and recording them
|
||||
// in the head clause.
|
||||
fn build_rule(body_term: Term) -> (JumpStub, VecDeque<Term>) {
|
||||
// collect the vars of body_term into a head, return the num_vars
|
||||
// (the arity) as well.
|
||||
let vars = compute_head(&body_term);
|
||||
let rule = build_rule_body(&vars, body_term);
|
||||
|
||||
(vars, VecDeque::from(vec![rule]))
|
||||
}
|
||||
|
||||
fn build_disjunct(body_term: Term) -> (JumpStub, VecDeque<Term>) {
|
||||
let vars = compute_head(&body_term);
|
||||
let results = unfold_by_str(body_term, atom!(";"))
|
||||
.into_iter()
|
||||
.map(|term| {
|
||||
let mut subterms = unfold_by_str(term, atom!(","));
|
||||
mark_cut_variables(&mut subterms);
|
||||
|
||||
check_for_internal_if_then(&mut subterms);
|
||||
|
||||
let term = subterms.pop().unwrap();
|
||||
let clause = fold_by_str(subterms.into_iter(), term, atom!(","));
|
||||
|
||||
build_rule_body(&vars, clause)
|
||||
})
|
||||
.collect();
|
||||
|
||||
(vars, results)
|
||||
}
|
||||
|
||||
fn build_if_then(prec: Term, conq: Term) -> (JumpStub, VecDeque<Term>) {
|
||||
let mut prec_seq = unfold_by_str(prec, atom!(","));
|
||||
let comma_sym = atom!(",");
|
||||
let cut_sym = Literal::Atom(atom!("!"));
|
||||
|
||||
prec_seq.push(Term::Literal(Cell::default(), cut_sym));
|
||||
|
||||
mark_cut_variables_as(&mut prec_seq, atom!("blocked_!"));
|
||||
|
||||
let mut conq_seq = unfold_by_str(conq, atom!(","));
|
||||
|
||||
mark_cut_variables(&mut conq_seq);
|
||||
prec_seq.extend(conq_seq.into_iter());
|
||||
|
||||
let back_term = prec_seq.pop().unwrap();
|
||||
let front_term = prec_seq.pop().unwrap();
|
||||
|
||||
let body_term = Term::Clause(
|
||||
Cell::default(),
|
||||
comma_sym,
|
||||
vec![front_term, back_term],
|
||||
);
|
||||
|
||||
build_rule(fold_by_str(prec_seq.into_iter(), body_term, comma_sym))
|
||||
}
|
||||
|
||||
#[derive(Debug)]
|
||||
pub(crate) struct Preprocessor {
|
||||
queue: VecDeque<VecDeque<Term>>,
|
||||
settings: CodeGenSettings,
|
||||
}
|
||||
|
||||
impl Preprocessor {
|
||||
pub(super) fn new(settings: CodeGenSettings) -> Self {
|
||||
Preprocessor {
|
||||
queue: VecDeque::new(),
|
||||
settings,
|
||||
}
|
||||
}
|
||||
|
||||
fn setup_fact(&mut self, term: Term) -> Result<Term, CompilationError> {
|
||||
fn setup_fact(&mut self, term: Term) -> Result<Fact, CompilationError> {
|
||||
match term {
|
||||
Term::Clause(..) | Term::Literal(_, Literal::Atom(..)) => Ok(term),
|
||||
Term::Clause(..) | Term::Literal(_, Literal::Atom(..)) => {
|
||||
let mut classifier = VariableClassifier::new(
|
||||
self.settings.default_call_policy(),
|
||||
);
|
||||
|
||||
let (head, var_records) = classifier.classify_fact(term)?;
|
||||
|
||||
Ok(Fact { head, var_records })
|
||||
}
|
||||
_ => Err(CompilationError::InadmissibleFact),
|
||||
}
|
||||
}
|
||||
|
||||
fn to_query_term<'a, LS: LoadState<'a>>(
|
||||
&mut self,
|
||||
loader: &mut Loader<'a, LS>,
|
||||
term: Term,
|
||||
) -> Result<QueryTerm, CompilationError> {
|
||||
match term {
|
||||
Term::Literal(_, Literal::Atom(name)) => {
|
||||
if name == atom!("!") || name == atom!("blocked_!") {
|
||||
Ok(QueryTerm::BlockedCut)
|
||||
} else {
|
||||
Ok(clause_to_query_term(
|
||||
loader,
|
||||
name,
|
||||
vec![],
|
||||
self.settings.default_call_policy(),
|
||||
))
|
||||
}
|
||||
}
|
||||
Term::Literal(_, Literal::Char('!')) => Ok(QueryTerm::BlockedCut),
|
||||
Term::Var(_, ref v) if v.as_str() == Some("!") => {
|
||||
Ok(QueryTerm::UnblockedCut(Cell::default()))
|
||||
}
|
||||
Term::Clause(r, name, mut terms) => match (name, source_arity(&terms)) {
|
||||
(atom!(";"), 2) => {
|
||||
let term = Term::Clause(r, name, terms);
|
||||
|
||||
let (stub, clauses) = build_disjunct(term);
|
||||
self.queue.push_back(clauses);
|
||||
|
||||
Ok(QueryTerm::Jump(stub))
|
||||
}
|
||||
(atom!("->"), 2) => {
|
||||
let conq = terms.pop().unwrap();
|
||||
let prec = terms.pop().unwrap();
|
||||
|
||||
let (stub, clauses) = build_if_then(prec, conq);
|
||||
self.queue.push_back(clauses);
|
||||
|
||||
Ok(QueryTerm::Jump(stub))
|
||||
}
|
||||
(atom!("\\+"), 1) => {
|
||||
terms.push(Term::Literal(
|
||||
Cell::default(),
|
||||
Literal::Atom(atom!("$fail")),
|
||||
));
|
||||
|
||||
let conq = Term::Literal(Cell::default(), Literal::Atom(atom!("true")));
|
||||
|
||||
let prec = Term::Clause(Cell::default(), atom!("->"), terms);
|
||||
let terms = vec![prec, conq];
|
||||
|
||||
let term = Term::Clause(Cell::default(), atom!(";"), terms);
|
||||
let (stub, clauses) = build_disjunct(term);
|
||||
|
||||
debug_assert!(clauses.len() > 0);
|
||||
self.queue.push_back(clauses);
|
||||
|
||||
Ok(QueryTerm::Jump(stub))
|
||||
}
|
||||
(atom!("$get_level"), 1) => {
|
||||
if let Term::Var(_, ref var) = &terms[0] {
|
||||
Ok(QueryTerm::GetLevelAndUnify(Cell::default(), var.clone()))
|
||||
} else {
|
||||
Err(CompilationError::InadmissibleQueryTerm)
|
||||
}
|
||||
}
|
||||
(atom!(":"), 2) => {
|
||||
let predicate_name = terms.pop().unwrap();
|
||||
let module_name = terms.pop().unwrap();
|
||||
|
||||
match (module_name, predicate_name) {
|
||||
(
|
||||
Term::Literal(_, Literal::Atom(module_name)),
|
||||
Term::Literal(_, Literal::Atom(predicate_name)),
|
||||
) => Ok(qualified_clause_to_query_term(
|
||||
loader,
|
||||
module_name,
|
||||
predicate_name,
|
||||
vec![],
|
||||
self.settings.default_call_policy(),
|
||||
)),
|
||||
(
|
||||
Term::Literal(_, Literal::Atom(module_name)),
|
||||
Term::Clause(_, name, terms),
|
||||
) => Ok(qualified_clause_to_query_term(
|
||||
loader,
|
||||
module_name,
|
||||
name,
|
||||
terms,
|
||||
self.settings.default_call_policy()
|
||||
)),
|
||||
(module_name, predicate_name) => {
|
||||
terms.push(module_name);
|
||||
terms.push(predicate_name);
|
||||
|
||||
Ok(clause_to_query_term(
|
||||
loader,
|
||||
atom!("call"),
|
||||
vec![Term::Clause(r, name, terms)],
|
||||
self.settings.default_call_policy(),
|
||||
))
|
||||
}
|
||||
}
|
||||
}
|
||||
_ => Ok(clause_to_query_term(loader, name, terms,
|
||||
self.settings.default_call_policy())),
|
||||
},
|
||||
Term::Var(..) => Ok(QueryTerm::Clause(
|
||||
Cell::default(),
|
||||
ClauseType::CallN(1),
|
||||
vec![term],
|
||||
self.settings.default_call_policy(),
|
||||
)),
|
||||
_ => Err(CompilationError::InadmissibleQueryTerm),
|
||||
}
|
||||
}
|
||||
|
||||
fn pre_query_term<'a, LS: LoadState<'a>>(
|
||||
&mut self,
|
||||
loader: &mut Loader<'a, LS>,
|
||||
term: Term,
|
||||
) -> Result<QueryTerm, CompilationError> {
|
||||
match term {
|
||||
Term::Clause(r, name, mut subterms) => {
|
||||
if subterms.len() == 1 && name == atom!("$call_with_inference_counting") {
|
||||
self.to_query_term(loader, subterms.pop().unwrap())
|
||||
.map(|mut query_term| {
|
||||
query_term.set_call_policy(CallPolicy::Counted);
|
||||
query_term
|
||||
})
|
||||
} else {
|
||||
let clause = Term::Clause(r, name, subterms);
|
||||
self.to_query_term(loader, clause)
|
||||
}
|
||||
}
|
||||
_ => self.to_query_term(loader, term),
|
||||
}
|
||||
}
|
||||
|
||||
fn setup_query<'a, LS: LoadState<'a>>(
|
||||
&mut self,
|
||||
loader: &mut Loader<'a, LS>,
|
||||
terms: Vec<Term>,
|
||||
cut_context: CutContext,
|
||||
) -> Result<Vec<QueryTerm>, CompilationError> {
|
||||
let mut query_terms = vec![];
|
||||
let mut work_queue = VecDeque::from(terms);
|
||||
|
||||
while let Some(term) = work_queue.pop_front() {
|
||||
let mut term = term;
|
||||
|
||||
if let Term::Clause(cell, name, terms) = term {
|
||||
if name == atom!(",") && source_arity(&terms) == 2 {
|
||||
let term = Term::Clause(cell, name, terms);
|
||||
let mut subterms = unfold_by_str(term, atom!(","));
|
||||
|
||||
while let Some(subterm) = subterms.pop() {
|
||||
work_queue.push_front(subterm);
|
||||
}
|
||||
|
||||
continue;
|
||||
} else {
|
||||
term = Term::Clause(cell, name, terms);
|
||||
}
|
||||
}
|
||||
|
||||
if let CutContext::HasCutVariable = cut_context {
|
||||
mark_cut_variable(&mut term);
|
||||
}
|
||||
|
||||
query_terms.push(self.pre_query_term(loader, term)?);
|
||||
}
|
||||
|
||||
Ok(query_terms)
|
||||
}
|
||||
|
||||
fn setup_rule<'a, LS: LoadState<'a>>(
|
||||
&mut self,
|
||||
loader: &mut Loader<'a, LS>,
|
||||
mut terms: Vec<Term>,
|
||||
cut_context: CutContext,
|
||||
head: Term,
|
||||
body: Term,
|
||||
) -> Result<Rule, CompilationError> {
|
||||
let post_head_terms: Vec<_> = terms.drain(1..).collect();
|
||||
let mut query_terms = self.setup_query(loader, post_head_terms, cut_context)?;
|
||||
let mut classifier = VariableClassifier::new(
|
||||
self.settings.default_call_policy(),
|
||||
);
|
||||
|
||||
let (head, mut query_terms, var_records) =
|
||||
classifier.classify_rule(loader, head, body)?;
|
||||
|
||||
let clauses = query_terms.drain(1..).collect();
|
||||
let qt = query_terms.pop().unwrap();
|
||||
|
||||
match terms.pop().unwrap() {
|
||||
match head {
|
||||
Term::Clause(_, name, terms) => Ok(Rule {
|
||||
head: (name, terms, qt),
|
||||
clauses,
|
||||
var_records,
|
||||
}),
|
||||
Term::Literal(_, Literal::Atom(name)) => Ok(Rule {
|
||||
head: (name, vec![], qt),
|
||||
clauses,
|
||||
var_records,
|
||||
}),
|
||||
_ => Err(CompilationError::InvalidRuleHead),
|
||||
}
|
||||
}
|
||||
|
||||
/*
|
||||
fn try_term_to_query<'a, LS: LoadState<'a>>(
|
||||
&mut self,
|
||||
loader: &mut Loader<'a, LS>,
|
||||
@@ -960,23 +605,19 @@ impl Preprocessor {
|
||||
cut_context,
|
||||
)?))
|
||||
}
|
||||
*/
|
||||
|
||||
pub(super) fn try_term_to_tl<'a, LS: LoadState<'a>>(
|
||||
&mut self,
|
||||
loader: &mut Loader<'a, LS>,
|
||||
term: Term,
|
||||
cut_context: CutContext,
|
||||
) -> Result<TopLevel, CompilationError> {
|
||||
match term {
|
||||
Term::Clause(r, name, terms) => {
|
||||
if name == atom!("?-") {
|
||||
self.try_term_to_query(loader, terms, cut_context)
|
||||
} else if name == atom!(":-") && terms.len() == 2 {
|
||||
Ok(TopLevel::Rule(self.setup_rule(
|
||||
loader,
|
||||
terms,
|
||||
cut_context,
|
||||
)?))
|
||||
let is_rule = name == atom!(":-") && terms.len() == 2;
|
||||
|
||||
if is_rule {
|
||||
Ok(TopLevel::Rule(self.setup_rule(loader, terms[0], terms[1])?))
|
||||
} else {
|
||||
let term = Term::Clause(r, name, terms);
|
||||
Ok(TopLevel::Fact(self.setup_fact(term)?))
|
||||
@@ -990,33 +631,13 @@ impl Preprocessor {
|
||||
&mut self,
|
||||
loader: &mut Loader<'a, LS>,
|
||||
terms: I,
|
||||
cut_context: CutContext,
|
||||
) -> Result<VecDeque<TopLevel>, CompilationError> {
|
||||
let mut results = VecDeque::new();
|
||||
|
||||
for term in terms.into_iter() {
|
||||
results.push_back(self.try_term_to_tl(loader, term, cut_context)?);
|
||||
results.push_back(self.try_term_to_tl(loader, term)?);
|
||||
}
|
||||
|
||||
Ok(results)
|
||||
}
|
||||
|
||||
pub(super) fn parse_queue<'a, LS: LoadState<'a>>(
|
||||
&mut self,
|
||||
loader: &mut Loader<'a, LS>,
|
||||
) -> Result<VecDeque<TopLevel>, CompilationError> {
|
||||
let mut queue = VecDeque::new();
|
||||
|
||||
while let Some(terms) = self.queue.pop_front() {
|
||||
let clauses = merge_clauses(&mut self.try_terms_to_tls(
|
||||
loader,
|
||||
terms,
|
||||
CutContext::HasCutVariable,
|
||||
)?)?;
|
||||
|
||||
queue.push_back(clauses);
|
||||
}
|
||||
|
||||
Ok(queue)
|
||||
}
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user