forked from M-Labs/nac3
nac3core: min builtin function
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@ -5,7 +5,7 @@ use crate::{
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},
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symbol_resolver::SymbolValue,
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};
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use inkwell::{FloatPredicate, IntPredicate};
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use inkwell::{types::BasicType, FloatPredicate, IntPredicate};
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type BuiltinInfo = (Vec<(Arc<RwLock<TopLevelDef>>, Option<Stmt>)>, &'static [&'static str]);
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@ -648,7 +648,7 @@ pub fn get_builtins(primitives: &mut (PrimitiveStore, Unifier)) -> BuiltinInfo {
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signature: primitives.1.add_ty(TypeEnum::TFunc(FunSignature {
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args: vec![FuncArg { name: "n".into(), ty: num_ty.0, default_value: None }],
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ret: primitives.0.bool,
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vars: var_map,
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vars: var_map.clone(),
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})),
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var_id: Default::default(),
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instance_to_symbol: Default::default(),
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@ -916,6 +916,68 @@ pub fn get_builtins(primitives: &mut (PrimitiveStore, Unifier)) -> BuiltinInfo {
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loc: None,
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}
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})),
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Arc::new(RwLock::new(TopLevelDef::Function {
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name: "min".into(),
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simple_name: "min".into(),
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signature: primitives.1.add_ty(TypeEnum::TFunc(FunSignature {
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args: vec![
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FuncArg { name: "m".into(), ty: num_ty.0, default_value: None },
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FuncArg { name: "n".into(), ty: num_ty.0, default_value: None },
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],
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ret: num_ty.0,
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vars: var_map,
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})),
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var_id: Default::default(),
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instance_to_symbol: Default::default(),
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instance_to_stmt: Default::default(),
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resolver: None,
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codegen_callback: Some(Arc::new(GenCall::new(Box::new(
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|ctx, _, fun, args, generator| {
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let boolean = ctx.primitives.bool;
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let int32 = ctx.primitives.int32;
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let int64 = ctx.primitives.int64;
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let uint32 = ctx.primitives.uint32;
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let uint64 = ctx.primitives.uint64;
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let float = ctx.primitives.float;
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let llvm_i1 = ctx.ctx.bool_type().as_basic_type_enum();
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let llvm_i32 = ctx.ctx.i32_type().as_basic_type_enum();
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let llvm_i64 = ctx.ctx.i64_type().as_basic_type_enum();
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let llvm_f64 = ctx.ctx.f64_type().as_basic_type_enum();
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let m_ty = fun.0.args[0].ty;
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let n_ty = fun.0.args[1].ty;
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let m_val = args[0].1.clone().to_basic_value_enum(ctx, generator)?;
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let n_val = args[1].1.clone().to_basic_value_enum(ctx, generator)?;
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let mut is_type = |a: Type, b: Type| ctx.unifier.unioned(a, b);
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let (fun_name, arg_ty) = if is_type(m_ty, n_ty) && is_type(n_ty, boolean) {
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("llvm.umin.i1", llvm_i1)
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} else if is_type(m_ty, n_ty) && is_type(n_ty, int32) {
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("llvm.smin.i32", llvm_i32)
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} else if is_type(m_ty, n_ty) && is_type(n_ty, int64) {
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("llvm.smin.i64", llvm_i64)
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} else if is_type(m_ty, n_ty) && is_type(n_ty, uint32) {
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("llvm.umin.i32", llvm_i32)
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} else if is_type(m_ty, n_ty) && is_type(n_ty, uint64) {
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("llvm.umin.i64", llvm_i64)
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} else if is_type(m_ty, n_ty) && is_type(n_ty, float) {
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("llvm.minnum.f64", llvm_f64)
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} else {
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unreachable!();
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};
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let intrinsic = ctx.module.get_function(fun_name).unwrap_or_else(|| {
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let fn_type = arg_ty.fn_type(&[arg_ty.into(), arg_ty.into()], false);
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ctx.module.add_function(fun_name, fn_type, None)
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});
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let val = ctx
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.builder
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.build_call(intrinsic, &[m_val.into(), n_val.into()], "min")
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.try_as_basic_value()
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.left()
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.unwrap();
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Ok(val.into())
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},
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)))),
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loc: None,
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})),
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];
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let ast_list: Vec<Option<ast::Stmt<()>>> =
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(0..top_level_def_list.len()).map(|_| None).collect();
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@ -939,6 +1001,7 @@ pub fn get_builtins(primitives: &mut (PrimitiveStore, Unifier)) -> BuiltinInfo {
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"ceil",
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"ceil64",
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"len",
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"min",
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],
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)
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}
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