670 lines
23 KiB
Rust
670 lines
23 KiB
Rust
use prolog_parser::ast::*;
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use prolog::clause_types::*;
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use prolog::forms::*;
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use prolog::machine::machine_errors::MachineStub;
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use prolog::machine::machine_indices::*;
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use prolog::rug::Integer;
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use indexmap::IndexMap;
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use std::collections::VecDeque;
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fn reg_type_into_functor(r: RegType) -> MachineStub {
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match r {
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RegType::Temp(r) => functor!("x", 1, [heap_integer!(Integer::from(r))]),
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RegType::Perm(r) => functor!("y", 1, [heap_integer!(Integer::from(r))]),
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}
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}
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impl Level {
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fn into_functor(self) -> MachineStub {
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match self {
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Level::Root => functor!("level", 1, [heap_atom!("root")]),
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Level::Shallow => functor!("level", 1, [heap_atom!("shallow")]),
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Level::Deep => functor!("level", 1, [heap_atom!("deep")]),
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}
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}
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}
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impl ArithmeticTerm {
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fn into_functor(&self) -> MachineStub {
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match self {
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&ArithmeticTerm::Reg(r) => reg_type_into_functor(r),
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&ArithmeticTerm::Interm(i) => {
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functor!("intermediate", 1, [heap_integer!(Integer::from(i))])
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}
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&ArithmeticTerm::Number(ref n) => vec![heap_con!(n.clone().to_constant())],
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}
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}
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}
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pub enum ChoiceInstruction {
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DefaultRetryMeElse(usize),
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DefaultTrustMe,
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RetryMeElse(usize),
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TrustMe,
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TryMeElse(usize),
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}
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impl ChoiceInstruction {
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pub fn to_functor(&self) -> MachineStub {
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match self {
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&ChoiceInstruction::TryMeElse(offset) => {
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functor!("try_me_else", 1, [heap_integer!(Integer::from(offset))])
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}
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&ChoiceInstruction::RetryMeElse(offset) => {
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functor!("retry_me_else", 1, [heap_integer!(Integer::from(offset))])
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}
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&ChoiceInstruction::TrustMe => vec![heap_atom!("trust_me")],
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&ChoiceInstruction::DefaultRetryMeElse(offset) => functor!(
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"default_retry_me_else",
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1,
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[heap_integer!(Integer::from(offset))]
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),
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&ChoiceInstruction::DefaultTrustMe => vec![heap_atom!("default_trust_me")],
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}
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}
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}
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pub enum CutInstruction {
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Cut(RegType),
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GetLevel(RegType),
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GetLevelAndUnify(RegType),
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NeckCut,
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}
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impl CutInstruction {
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pub fn to_functor(&self, h: usize) -> MachineStub {
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match self {
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&CutInstruction::Cut(r) => {
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let mut stub = functor!("cut", 1, [heap_str!(h + 2)]);
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stub.append(&mut reg_type_into_functor(r));
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stub
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}
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&CutInstruction::GetLevel(r) => {
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let mut stub = functor!("get_level", 1, [heap_str!(h + 2)]);
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stub.append(&mut reg_type_into_functor(r));
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stub
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}
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&CutInstruction::GetLevelAndUnify(r) => {
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let mut stub = functor!("get_level_and_unify", 1, [heap_str!(h + 2)]);
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stub.append(&mut reg_type_into_functor(r));
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stub
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}
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&CutInstruction::NeckCut => vec![heap_atom!("neck_cut")],
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}
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}
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}
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pub enum IndexedChoiceInstruction {
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Retry(usize),
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Trust(usize),
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Try(usize),
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}
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impl From<IndexedChoiceInstruction> for Line {
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fn from(i: IndexedChoiceInstruction) -> Self {
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Line::IndexedChoice(i)
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}
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}
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impl IndexedChoiceInstruction {
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pub fn offset(&self) -> usize {
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match self {
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&IndexedChoiceInstruction::Retry(offset) => offset,
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&IndexedChoiceInstruction::Trust(offset) => offset,
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&IndexedChoiceInstruction::Try(offset) => offset,
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}
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}
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pub fn to_functor(&self) -> MachineStub {
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match self {
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&IndexedChoiceInstruction::Try(offset) => {
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functor!("try", 1, [heap_integer!(Integer::from(offset))])
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}
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&IndexedChoiceInstruction::Trust(offset) => {
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functor!("trust", 1, [heap_integer!(Integer::from(offset))])
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}
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&IndexedChoiceInstruction::Retry(offset) => {
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functor!("retry", 1, [heap_integer!(Integer::from(offset))])
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}
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}
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}
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}
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pub enum Line {
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Arithmetic(ArithmeticInstruction),
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Choice(ChoiceInstruction),
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Control(ControlInstruction),
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Cut(CutInstruction),
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Fact(FactInstruction),
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Indexing(IndexingInstruction),
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IndexedChoice(IndexedChoiceInstruction),
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Query(QueryInstruction),
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}
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impl Line {
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pub fn is_head_instr(&self) -> bool {
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match self {
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&Line::Cut(_) => true,
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&Line::Fact(_) => true,
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&Line::Query(_) => true,
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_ => false,
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}
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}
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pub fn to_functor(&self, h: usize) -> MachineStub {
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match self {
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&Line::Arithmetic(ref arith_instr) => arith_instr.to_functor(h),
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&Line::Choice(ref choice_instr) => choice_instr.to_functor(),
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&Line::Control(ref control_instr) => control_instr.to_functor(),
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&Line::Cut(ref cut_instr) => cut_instr.to_functor(h),
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&Line::Fact(ref fact_instr) => fact_instr.to_functor(h),
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&Line::Indexing(ref indexing_instr) => indexing_instr.to_functor(),
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&Line::IndexedChoice(ref indexed_choice_instr) => indexed_choice_instr.to_functor(),
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&Line::Query(ref query_instr) => query_instr.to_functor(h),
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}
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}
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}
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#[derive(Clone)]
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pub enum ArithmeticInstruction {
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Add(ArithmeticTerm, ArithmeticTerm, usize),
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Sub(ArithmeticTerm, ArithmeticTerm, usize),
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Mul(ArithmeticTerm, ArithmeticTerm, usize),
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Pow(ArithmeticTerm, ArithmeticTerm, usize),
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IntPow(ArithmeticTerm, ArithmeticTerm, usize),
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IDiv(ArithmeticTerm, ArithmeticTerm, usize),
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Max(ArithmeticTerm, ArithmeticTerm, usize),
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Min(ArithmeticTerm, ArithmeticTerm, usize),
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IntFloorDiv(ArithmeticTerm, ArithmeticTerm, usize),
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RDiv(ArithmeticTerm, ArithmeticTerm, usize),
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Div(ArithmeticTerm, ArithmeticTerm, usize),
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Shl(ArithmeticTerm, ArithmeticTerm, usize),
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Shr(ArithmeticTerm, ArithmeticTerm, usize),
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Xor(ArithmeticTerm, ArithmeticTerm, usize),
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And(ArithmeticTerm, ArithmeticTerm, usize),
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Or(ArithmeticTerm, ArithmeticTerm, usize),
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Mod(ArithmeticTerm, ArithmeticTerm, usize),
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Rem(ArithmeticTerm, ArithmeticTerm, usize),
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Cos(ArithmeticTerm, usize),
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Sin(ArithmeticTerm, usize),
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Tan(ArithmeticTerm, usize),
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Log(ArithmeticTerm, usize),
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Exp(ArithmeticTerm, usize),
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ACos(ArithmeticTerm, usize),
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ASin(ArithmeticTerm, usize),
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ATan(ArithmeticTerm, usize),
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ATan2(ArithmeticTerm, ArithmeticTerm, usize),
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Sqrt(ArithmeticTerm, usize),
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Abs(ArithmeticTerm, usize),
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Float(ArithmeticTerm, usize),
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Truncate(ArithmeticTerm, usize),
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Round(ArithmeticTerm, usize),
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Ceiling(ArithmeticTerm, usize),
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Floor(ArithmeticTerm, usize),
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Neg(ArithmeticTerm, usize),
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Plus(ArithmeticTerm, usize),
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BitwiseComplement(ArithmeticTerm, usize),
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}
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fn arith_instr_unary_functor(
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h: usize,
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name: &'static str,
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at: &ArithmeticTerm,
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t: usize,
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) -> MachineStub {
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let at_stub = at.into_functor();
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let mut stub = functor!(
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name,
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2,
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[heap_cell!(h + 4), heap_integer!(Integer::from(t))]
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);
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stub.extend(at_stub.into_iter());
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stub
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}
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fn arith_instr_bin_functor(
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h: usize,
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name: &'static str,
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at_1: &ArithmeticTerm,
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at_2: &ArithmeticTerm,
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t: usize,
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) -> MachineStub {
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let at_1_stub = at_1.into_functor();
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let at_2_stub = at_2.into_functor();
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let mut stub = functor!(
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name,
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3,
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[
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heap_cell!(h + 4),
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heap_cell!(h + 4 + at_1_stub.len()),
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heap_integer!(Integer::from(t))
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]
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);
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stub.extend(at_1_stub.into_iter());
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stub.extend(at_2_stub.into_iter());
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stub
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}
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impl ArithmeticInstruction {
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pub fn to_functor(&self, h: usize) -> MachineStub {
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match self {
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&ArithmeticInstruction::Add(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "add", at_1, at_2, t)
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}
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&ArithmeticInstruction::Sub(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "sub", at_1, at_2, t)
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}
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&ArithmeticInstruction::Mul(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "mul", at_1, at_2, t)
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}
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&ArithmeticInstruction::IntPow(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "int_pow", at_1, at_2, t)
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}
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&ArithmeticInstruction::Pow(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "pow", at_1, at_2, t)
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}
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&ArithmeticInstruction::IDiv(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "idiv", at_1, at_2, t)
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}
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&ArithmeticInstruction::Max(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "max", at_1, at_2, t)
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}
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&ArithmeticInstruction::Min(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "min", at_1, at_2, t)
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}
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&ArithmeticInstruction::IntFloorDiv(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "int_floor_div", at_1, at_2, t)
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}
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&ArithmeticInstruction::RDiv(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "rdiv", at_1, at_2, t)
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}
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&ArithmeticInstruction::Div(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "div", at_1, at_2, t)
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}
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&ArithmeticInstruction::Shl(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "shl", at_1, at_2, t)
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}
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&ArithmeticInstruction::Shr(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "shr", at_1, at_2, t)
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}
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&ArithmeticInstruction::Xor(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "xor", at_1, at_2, t)
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}
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&ArithmeticInstruction::And(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "and", at_1, at_2, t)
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}
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&ArithmeticInstruction::Or(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "or", at_1, at_2, t)
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}
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&ArithmeticInstruction::Mod(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "mod", at_1, at_2, t)
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}
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&ArithmeticInstruction::Rem(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "rem", at_1, at_2, t)
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}
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&ArithmeticInstruction::ATan2(ref at_1, ref at_2, t) => {
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arith_instr_bin_functor(h, "rem", at_1, at_2, t)
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}
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&ArithmeticInstruction::Cos(ref at, t) => arith_instr_unary_functor(h, "cos", at, t),
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&ArithmeticInstruction::Sin(ref at, t) => arith_instr_unary_functor(h, "sin", at, t),
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&ArithmeticInstruction::Tan(ref at, t) => arith_instr_unary_functor(h, "tan", at, t),
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&ArithmeticInstruction::Log(ref at, t) => arith_instr_unary_functor(h, "log", at, t),
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&ArithmeticInstruction::Exp(ref at, t) => arith_instr_unary_functor(h, "exp", at, t),
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&ArithmeticInstruction::ACos(ref at, t) => arith_instr_unary_functor(h, "acos", at, t),
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&ArithmeticInstruction::ASin(ref at, t) => arith_instr_unary_functor(h, "asin", at, t),
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&ArithmeticInstruction::ATan(ref at, t) => arith_instr_unary_functor(h, "atan", at, t),
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&ArithmeticInstruction::Sqrt(ref at, t) => arith_instr_unary_functor(h, "sqrt", at, t),
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&ArithmeticInstruction::Abs(ref at, t) => arith_instr_unary_functor(h, "abs", at, t),
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&ArithmeticInstruction::Float(ref at, t) => {
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arith_instr_unary_functor(h, "float", at, t)
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}
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&ArithmeticInstruction::Truncate(ref at, t) => {
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arith_instr_unary_functor(h, "truncate", at, t)
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}
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&ArithmeticInstruction::Round(ref at, t) => {
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arith_instr_unary_functor(h, "round", at, t)
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}
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&ArithmeticInstruction::Ceiling(ref at, t) => {
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arith_instr_unary_functor(h, "ceiling", at, t)
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}
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&ArithmeticInstruction::Floor(ref at, t) => {
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arith_instr_unary_functor(h, "floor", at, t)
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}
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&ArithmeticInstruction::Neg(ref at, t) => arith_instr_unary_functor(h, "-", at, t),
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&ArithmeticInstruction::Plus(ref at, t) => arith_instr_unary_functor(h, "+", at, t),
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&ArithmeticInstruction::BitwiseComplement(ref at, t) => {
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arith_instr_unary_functor(h, "\\", at, t)
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}
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}
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}
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}
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pub enum ControlInstruction {
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Allocate(usize), // num_frames.
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// name, arity, perm_vars after threshold, last call, use default call policy.
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CallClause(ClauseType, usize, usize, bool, bool),
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Deallocate,
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JmpBy(usize, usize, usize, bool), // arity, global_offset, perm_vars after threshold, last call.
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Proceed,
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}
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impl ControlInstruction {
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pub fn is_jump_instr(&self) -> bool {
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match self {
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&ControlInstruction::CallClause(..) => true,
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&ControlInstruction::JmpBy(..) => true,
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_ => false,
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}
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}
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pub fn to_functor(&self) -> MachineStub {
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match self {
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&ControlInstruction::Allocate(num_frames) => {
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functor!("allocate", 1, [heap_integer!(Integer::from(num_frames))])
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}
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&ControlInstruction::CallClause(ref ct, arity, _, false, _) => functor!(
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"call",
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2,
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[
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heap_con!(Constant::Atom(ct.name(), None)),
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heap_integer!(Integer::from(arity))
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]
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),
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&ControlInstruction::CallClause(ref ct, arity, _, true, _) => functor!(
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"execute",
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2,
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[
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heap_con!(Constant::Atom(ct.name(), None)),
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heap_integer!(Integer::from(arity))
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]
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),
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&ControlInstruction::Deallocate => vec![heap_atom!("deallocate")],
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&ControlInstruction::JmpBy(_, offset, ..) => {
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functor!("jmp_by", 1, [heap_integer!(Integer::from(offset))])
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}
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&ControlInstruction::Proceed => vec![heap_atom!("proceed")],
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}
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}
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}
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pub enum IndexingInstruction {
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SwitchOnTerm(usize, usize, usize, usize),
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SwitchOnConstant(usize, IndexMap<Constant, usize>),
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SwitchOnStructure(usize, IndexMap<(ClauseName, usize), usize>),
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}
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impl From<IndexingInstruction> for Line {
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fn from(i: IndexingInstruction) -> Self {
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Line::Indexing(i)
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}
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}
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impl IndexingInstruction {
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pub fn to_functor(&self) -> MachineStub {
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match self {
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&IndexingInstruction::SwitchOnTerm(vars, constants, lists, structures) => functor!(
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"switch_on_term",
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4,
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[
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heap_integer!(Integer::from(vars)),
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heap_integer!(Integer::from(constants)),
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heap_integer!(Integer::from(lists)),
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heap_integer!(Integer::from(structures))
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]
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),
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&IndexingInstruction::SwitchOnConstant(constants, _) => functor!(
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"switch_on_constant",
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1,
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[heap_integer!(Integer::from(constants))]
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),
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&IndexingInstruction::SwitchOnStructure(structures, _) => functor!(
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"switch_on_structure",
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1,
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[heap_integer!(Integer::from(structures))]
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),
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}
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}
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}
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#[derive(Clone)]
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pub enum FactInstruction {
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GetConstant(Level, Constant, RegType),
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GetList(Level, RegType),
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GetStructure(ClauseType, usize, RegType),
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GetValue(RegType, usize),
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GetVariable(RegType, usize),
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UnifyConstant(Constant),
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UnifyLocalValue(RegType),
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UnifyVariable(RegType),
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UnifyValue(RegType),
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UnifyVoid(usize),
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}
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impl FactInstruction {
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pub fn to_functor(&self, h: usize) -> MachineStub {
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match self {
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&FactInstruction::GetConstant(lvl, ref constant, r) => {
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let mut stub = functor!(
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"get_constant",
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3,
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[
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heap_str!(h + 4),
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|
heap_con!(constant.clone()),
|
|
heap_str!(h + 6)
|
|
]
|
|
);
|
|
|
|
stub.append(&mut lvl.into_functor());
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
|
|
stub
|
|
}
|
|
&FactInstruction::GetList(lvl, r) => {
|
|
let mut stub = functor!("get_list", 2, [heap_str!(h + 3), heap_str!(h + 5)]);
|
|
stub.append(&mut lvl.into_functor());
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
|
|
stub
|
|
}
|
|
&FactInstruction::GetStructure(ref ct, arity, r) => {
|
|
let mut stub = functor!(
|
|
"get_structure",
|
|
3,
|
|
[
|
|
heap_con!(Constant::Atom(ct.name(), None)),
|
|
heap_integer!(Integer::from(arity)),
|
|
heap_str!(h + 4)
|
|
]
|
|
);
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
|
|
stub
|
|
}
|
|
&FactInstruction::GetValue(r, arg) => {
|
|
let mut stub = functor!(
|
|
"get_value",
|
|
2,
|
|
[heap_str!(h + 3), heap_integer!(Integer::from(arg))]
|
|
);
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
|
|
stub
|
|
}
|
|
&FactInstruction::GetVariable(r, arg) => {
|
|
let mut stub = functor!(
|
|
"get_variable",
|
|
2,
|
|
[heap_str!(h + 3), heap_integer!(Integer::from(arg))]
|
|
);
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
|
|
stub
|
|
}
|
|
&FactInstruction::UnifyConstant(ref constant) => {
|
|
functor!("unify_constant", 1, [heap_con!(constant.clone())])
|
|
}
|
|
&FactInstruction::UnifyLocalValue(r) => {
|
|
let mut stub = functor!("unify_local_value", 1, [heap_str!(h + 2)]);
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
|
|
stub
|
|
}
|
|
&FactInstruction::UnifyVariable(r) => {
|
|
let mut stub = functor!("unify_variable", 1, [heap_str!(h + 2)]);
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
|
|
stub
|
|
}
|
|
&FactInstruction::UnifyValue(r) => {
|
|
let mut stub = functor!("unify_value", 1, [heap_str!(h + 2)]);
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
|
|
stub
|
|
}
|
|
&FactInstruction::UnifyVoid(vars) => {
|
|
functor!("unify_void", 1, [heap_integer!(Integer::from(vars))])
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
#[derive(Clone)]
|
|
pub enum QueryInstruction {
|
|
GetVariable(RegType, usize),
|
|
PutConstant(Level, Constant, RegType),
|
|
PutList(Level, RegType),
|
|
PutStructure(ClauseType, usize, RegType),
|
|
PutUnsafeValue(usize, usize),
|
|
PutValue(RegType, usize),
|
|
PutVariable(RegType, usize),
|
|
SetConstant(Constant),
|
|
SetLocalValue(RegType),
|
|
SetVariable(RegType),
|
|
SetValue(RegType),
|
|
SetVoid(usize),
|
|
}
|
|
|
|
impl QueryInstruction {
|
|
pub fn to_functor(&self, h: usize) -> MachineStub {
|
|
match self {
|
|
&QueryInstruction::PutUnsafeValue(norm, arg) => functor!(
|
|
"put_unsafe_value",
|
|
2,
|
|
[
|
|
heap_integer!(Integer::from(norm)),
|
|
heap_integer!(Integer::from(arg))
|
|
]
|
|
),
|
|
&QueryInstruction::PutConstant(lvl, ref constant, r) => {
|
|
let mut stub = functor!(
|
|
"put_constant",
|
|
3,
|
|
[
|
|
heap_str!(h + 4),
|
|
heap_con!(constant.clone()),
|
|
heap_str!(h + 6)
|
|
]
|
|
);
|
|
|
|
stub.append(&mut lvl.into_functor());
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
|
|
stub
|
|
}
|
|
&QueryInstruction::PutList(lvl, r) => {
|
|
let mut stub = functor!("put_list", 2, [heap_str!(h + 3), heap_str!(h + 5)]);
|
|
|
|
stub.append(&mut lvl.into_functor());
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
|
|
stub
|
|
}
|
|
&QueryInstruction::PutStructure(ref ct, arity, r) => {
|
|
let mut stub = functor!(
|
|
"put_structure",
|
|
3,
|
|
[
|
|
heap_con!(Constant::Atom(ct.name(), None)),
|
|
heap_integer!(Integer::from(arity)),
|
|
heap_str!(h + 4)
|
|
]
|
|
);
|
|
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
stub
|
|
}
|
|
&QueryInstruction::PutValue(r, arg) => {
|
|
let mut stub = functor!(
|
|
"put_value",
|
|
2,
|
|
[heap_str!(h + 3), heap_integer!(Integer::from(arg))]
|
|
);
|
|
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
stub
|
|
}
|
|
&QueryInstruction::GetVariable(r, arg) => {
|
|
let mut stub = functor!(
|
|
"get_variable",
|
|
2,
|
|
[heap_str!(h + 3), heap_integer!(Integer::from(arg))]
|
|
);
|
|
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
stub
|
|
}
|
|
&QueryInstruction::PutVariable(r, arg) => {
|
|
let mut stub = functor!(
|
|
"put_variable",
|
|
2,
|
|
[heap_str!(h + 3), heap_integer!(Integer::from(arg))]
|
|
);
|
|
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
stub
|
|
}
|
|
&QueryInstruction::SetConstant(ref constant) => {
|
|
functor!("set_constant", 1, [heap_con!(constant.clone())])
|
|
}
|
|
&QueryInstruction::SetLocalValue(r) => {
|
|
let mut stub = functor!("set_local_value", 1, [heap_str!(h + 2)]);
|
|
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
stub
|
|
}
|
|
&QueryInstruction::SetVariable(r) => {
|
|
let mut stub = functor!("set_variable", 1, [heap_str!(h + 2)]);
|
|
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
stub
|
|
}
|
|
&QueryInstruction::SetValue(r) => {
|
|
let mut stub = functor!("set_value", 1, [heap_str!(h + 2)]);
|
|
|
|
stub.append(&mut reg_type_into_functor(r));
|
|
stub
|
|
}
|
|
&QueryInstruction::SetVoid(vars) => {
|
|
functor!("set_void", 1, [heap_integer!(Integer::from(vars))])
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
pub type CompiledFact = Vec<FactInstruction>;
|
|
|
|
pub type ThirdLevelIndex = Vec<IndexedChoiceInstruction>;
|
|
|
|
pub type Code = Vec<Line>;
|
|
|
|
pub type CodeDeque = VecDeque<Line>;
|