forked from M-Labs/nac3
core: Replace rint implementation with LLVM intrinsic
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9d737743c1
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@ -1377,49 +1377,13 @@ pub fn get_builtins(primitives: &mut (PrimitiveStore, Unifier)) -> BuiltinInfo {
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&[(float, "x")],
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"llvm.sqrt.f64",
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),
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create_fn_by_codegen(
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create_fn_by_intrinsic(
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primitives,
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&var_map,
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"rint",
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float,
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&[(float, "x")],
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Box::new(|ctx, _, fun, args, generator| {
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let float = ctx.primitives.float;
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let llvm_f64 = ctx.ctx.f64_type();
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let x_ty = fun.0.args[0].ty;
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let x_val = args[0].1.clone()
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.to_basic_value_enum(ctx, generator, x_ty)?;
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assert!(ctx.unifier.unioned(x_ty, float));
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let intrinsic_fn = ctx.module.get_function("llvm.round.f64").unwrap_or_else(|| {
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let fn_type = llvm_f64.fn_type(&[llvm_f64.into()], false);
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ctx.module.add_function("llvm.round.f64", fn_type, None)
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});
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// rint(x) == round(x * 0.5) * 2.0
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// %0 = fmul f64 %x, 0.5
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let x_half = ctx.builder
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.build_float_mul(x_val.into_float_value(), llvm_f64.const_float(0.5), "");
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// %1 = call f64 @llvm.round.f64(f64 %0)
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let round = ctx.builder
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.build_call(
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intrinsic_fn,
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&vec![x_half.into()],
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"",
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)
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.try_as_basic_value()
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.left()
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.unwrap();
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// %2 = fmul f64 %1, 2.0
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let val = ctx.builder
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.build_float_mul(round.into_float_value(), llvm_f64.const_float(2.0).into(), "rint");
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Ok(Some(val.into()))
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}),
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"llvm.roundeven.f64",
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),
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create_fn_by_extern(
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primitives,
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