codegen fixes
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@@ -24,7 +24,7 @@ impl fmt::Display for MachineInstruction {
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}
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enum IntTerm<'a> {
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FinishedClause(usize, &'a Atom, &'a Vec<Box<Term>>),
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FinishedClause(usize, usize, &'a Atom, &'a Vec<Box<Term>>),
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UnfinishedClause(usize, &'a Atom, &'a Vec<Box<Term>>),
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FinishedAtom(usize, &'a Atom)
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}
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@@ -38,7 +38,7 @@ pub fn compile_query<'a>(t: &'a Term) -> Program
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match t {
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&Term::Clause(ref atom, ref terms) => {
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stack.push(IntTerm::UnfinishedClause(1, atom, terms));
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variable_allocs.insert(atom, (1, true));
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variable_allocs.insert(atom, (1, true));
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},
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&Term::Atom(ref atom) => {
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query.push(MachineInstruction::PutStructure(atom.clone(), 0, 1));
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@@ -50,48 +50,51 @@ pub fn compile_query<'a>(t: &'a Term) -> Program
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},
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};
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let mut max_reg_used : usize = 1;
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while let Some(int_term) = stack.pop() {
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match int_term {
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IntTerm::UnfinishedClause(r, atom, terms) => {
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stack.push(IntTerm::FinishedClause(r, atom, terms));
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stack.push(IntTerm::FinishedClause(r, max_reg_used, atom, terms));
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let mut counter : usize = r + 1;
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for t in terms {
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let mut counter : usize = max_reg_used; // r + 1;
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for t in terms {
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if t.is_variable() && !variable_allocs.contains_key(t.name()) {
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variable_allocs.insert(t.name(), (counter, false));
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counter += 1;
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variable_allocs.insert(t.name(), (counter, false));
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} else if !t.is_variable() {
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counter += 1;
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}
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counter += 1;
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}
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counter = r + terms.len();
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max_reg_used = counter;
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for t in terms.iter().rev() {
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let r = if t.is_variable() {
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variable_allocs.get(t.name()).unwrap().0
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} else {
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counter
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};
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match t.as_ref() {
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&Term::Atom(ref atom) =>
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stack.push(IntTerm::FinishedAtom(r, atom)),
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&Term::Clause(ref atom, ref terms) =>
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stack.push(IntTerm::UnfinishedClause(r, atom, terms)),
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_ => {}
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let oc = counter;
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counter -= 1;
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oc
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};
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counter -= 1;
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match t.as_ref() {
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&Term::Atom(ref atom) =>
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stack.push(IntTerm::FinishedAtom(r, atom)),
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&Term::Clause(ref atom, ref terms) =>
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stack.push(IntTerm::UnfinishedClause(r, atom, terms)),
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_ => {}
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};
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}
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},
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IntTerm::FinishedAtom(r, atom) =>
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query.push(MachineInstruction::PutStructure(atom.clone(), 0, r)),
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IntTerm::FinishedClause(r, atom, terms) => {
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query.push(MachineInstruction::PutStructure(atom.clone(), 0, r)),
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IntTerm::FinishedClause(r, mr, atom, terms) => {
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query.push(MachineInstruction::PutStructure(atom.clone(), terms.len(), r));
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let mut counter : usize = r + 1;
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let mut counter : usize = mr + 1;
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for t in terms {
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if let &Term::Var(ref var) = t.as_ref() {
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let &mut (reg, ref mut seen) = variable_allocs.get_mut(var).unwrap();
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@@ -102,12 +105,17 @@ pub fn compile_query<'a>(t: &'a Term) -> Program
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} else {
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query.push(MachineInstruction::SetValue(reg));
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}
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if reg == counter {
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counter += 1;
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}
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} else {
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query.push(MachineInstruction::SetValue(counter));
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}
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counter += 1;
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counter += 1;
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}
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}
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max_reg_used = counter - 1;
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}
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};
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}
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@@ -121,15 +129,15 @@ pub fn compile_fact<'a>(t: &'a Term) -> Program {
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let mut variable_allocs : HashMap<&Var, usize> = HashMap::new();
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let mut fact : Program = Vec::new();
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queue.push_back((1, t));
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queue.push_back((1, t));
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while let Some(t) = queue.pop_front() {
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while let Some(t) = queue.pop_front() {
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match t {
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(r, &Term::Clause(ref atom, ref terms)) => {
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fact.push(MachineInstruction::GetStructure(atom.clone(), terms.len(), r));
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let mut counter : usize = reg;
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for t in terms {
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if t.is_variable() && !variable_allocs.contains_key(t.name()) {
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variable_allocs.insert(t.name(), counter);
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@@ -142,7 +150,7 @@ pub fn compile_fact<'a>(t: &'a Term) -> Program {
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fact.push(MachineInstruction::UnifyVariable(counter));
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queue.push_back((counter, t));
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counter += 1;
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}
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}
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}
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reg = counter;
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@@ -163,37 +163,27 @@ impl MachineState {
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self.h += 1;
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},
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MachineInstruction::UnifyVariable(reg) => {
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if self.s < self.h {
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match self.mode {
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MachineMode::Read => self.registers[reg] = self.heap[self.s].clone(),
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MachineMode::Write => {
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self.heap.push(HeapCell::Ref(self.h));
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self.registers[reg] = self.heap[self.h].clone();
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self.h += 1;
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}
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};
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self.s += 1;
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} else {
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self.fail = true;
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}
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match self.mode {
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MachineMode::Read => self.registers[reg] = self.heap[self.s].clone(),
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MachineMode::Write => {
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self.heap.push(HeapCell::Ref(self.h));
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self.registers[reg] = self.heap[self.h].clone();
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self.h += 1;
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}
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};
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},
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MachineInstruction::UnifyValue(reg) => {
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if self.s < self.h {
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let s = self.s;
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let s = self.s;
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match self.mode {
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MachineMode::Read => self.unify(Addr::RegNum(reg), Addr::HeapCell(s)),
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MachineMode::Write => {
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self.heap.push(self.registers[reg].clone());
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self.h += 1;
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}
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};
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self.s += 1;
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} else {
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self.fail = true;
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}
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match self.mode {
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MachineMode::Read => self.unify(Addr::RegNum(reg), Addr::HeapCell(s)),
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MachineMode::Write => {
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self.heap.push(self.registers[reg].clone());
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self.h += 1;
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}
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};
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self.s += 1;
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}
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}
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}
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@@ -6,7 +6,7 @@ use l0::machine::{MachineState};
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use std::io::{self, Write};
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fn print_instructions(program : Program) {
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fn print_instructions(program : &Program) {
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for instruction in program {
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println!("{:}", instruction);
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}
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@@ -42,7 +42,7 @@ fn l0_repl<'a>() {
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Ok(TopLevel::Query(query)) => {
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if let Some(program) = ms.program.clone().take() {
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let query = compile_query(&query);
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for instruction in query {
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ms.execute(instruction);
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}
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