forked from M-Labs/nac3
[core] codegen/classes: Remove Underlying type
This is confusing and we want a better abstraction than this.
This commit is contained in:
parent
2822074b2d
commit
26a1b85206
@ -14,10 +14,7 @@ use pyo3::{
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};
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use nac3core::{
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codegen::{
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classes::{NDArrayType, ProxyType},
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CodeGenContext, CodeGenerator,
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},
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codegen::{classes::NDArrayType, CodeGenContext, CodeGenerator},
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inkwell::{
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module::Linkage,
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types::{BasicType, BasicTypeEnum},
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@ -1096,7 +1093,7 @@ impl InnerResolver {
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if self.global_value_ids.read().contains_key(&id) {
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let global = ctx.module.get_global(&id_str).unwrap_or_else(|| {
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ctx.module.add_global(
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ndarray_llvm_ty.as_underlying_type(),
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ndarray_llvm_ty.element_type().into_struct_type(),
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Some(AddressSpace::default()),
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&id_str,
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)
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@ -1190,7 +1187,7 @@ impl InnerResolver {
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data_global.set_initializer(&data);
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// create a global for the ndarray object and initialize it
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let value = ndarray_llvm_ty.as_underlying_type().const_named_struct(&[
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let value = ndarray_llvm_ty.element_type().into_struct_type().const_named_struct(&[
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llvm_usize.const_int(ndarray_ndims, false).into(),
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shape_global
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.as_pointer_value()
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@ -1203,7 +1200,7 @@ impl InnerResolver {
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]);
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let ndarray = ctx.module.add_global(
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ndarray_llvm_ty.as_underlying_type(),
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ndarray_llvm_ty.element_type().into_struct_type(),
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Some(AddressSpace::default()),
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&id_str,
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);
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@ -1,7 +1,7 @@
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use inkwell::{
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context::Context,
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types::{AnyTypeEnum, ArrayType, BasicType, BasicTypeEnum, IntType, PointerType, StructType},
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values::{ArrayValue, BasicValue, BasicValueEnum, IntValue, PointerValue, StructValue},
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types::{AnyTypeEnum, BasicType, BasicTypeEnum, IntType, PointerType},
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values::{BasicValue, BasicValueEnum, IntValue, PointerValue},
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AddressSpace, IntPredicate,
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};
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@ -18,10 +18,6 @@ pub trait ProxyType<'ctx>: Into<Self::Base> {
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/// [LLVM pointer type][PointerType].
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type Base: BasicType<'ctx>;
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/// The underlying LLVM type used to represent values. This is usually the element type of
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/// [`Base`] if it is a pointer, otherwise this is the same type as `Base`.
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type Underlying: BasicType<'ctx>;
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/// The type of values represented by this type.
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type Value: ProxyValue<'ctx>;
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@ -40,11 +36,7 @@ pub trait ProxyType<'ctx>: Into<Self::Base> {
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ctx: &mut CodeGenContext<'ctx, '_>,
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size: IntValue<'ctx>,
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name: Option<&'ctx str>,
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) -> ArraySliceValue<'ctx> {
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generator
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.gen_array_var_alloc(ctx, self.as_underlying_type().as_basic_type_enum(), size, name)
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.unwrap()
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}
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) -> ArraySliceValue<'ctx>;
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/// Creates a [`value`][ProxyValue] with this as its type.
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fn create_value(
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@ -55,9 +47,6 @@ pub trait ProxyType<'ctx>: Into<Self::Base> {
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/// Returns the [base type][Self::Base] of this proxy.
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fn as_base_type(&self) -> Self::Base;
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/// Returns the [underlying type][Self::Underlying] of this proxy.
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fn as_underlying_type(&self) -> Self::Underlying;
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}
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/// A LLVM type that is used to represent a non-primitive value in NAC3.
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@ -66,10 +55,6 @@ pub trait ProxyValue<'ctx>: Into<Self::Base> {
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/// [LLVM pointer type][PointerValue].
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type Base: BasicValue<'ctx>;
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/// The underlying type of LLVM values represented by this instance. This is usually the element
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/// type of [`Base`] if it is a pointer, otherwise this is the same type as `Base`.
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type Underlying: BasicValue<'ctx>;
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/// The type of this value.
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type Type: ProxyType<'ctx>;
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@ -79,13 +64,13 @@ pub trait ProxyValue<'ctx>: Into<Self::Base> {
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/// Returns the [base value][Self::Base] of this proxy.
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fn as_base_value(&self) -> Self::Base;
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/// Loads this value into its [underlying representation][Self::Underlying]. Usually involves a
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/// `getelementptr` if [`Self::Base`] is a [pointer value][PointerValue].
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fn as_underlying_value(
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&self,
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ctx: &mut CodeGenContext<'ctx, '_>,
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name: Option<&'ctx str>,
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) -> Self::Underlying;
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// /// Loads this value into its [underlying representation][Self::Underlying]. Usually involves a
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// /// `getelementptr` if [`Self::Base`] is a [pointer value][PointerValue].
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// fn as_underlying_value(
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// &self,
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// ctx: &mut CodeGenContext<'ctx, '_>,
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// name: Option<&'ctx str>,
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// ) -> Self::Underlying;
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}
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/// An LLVM value that is array-like, i.e. it contains a contiguous, sequenced collection of
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@ -600,7 +585,6 @@ impl<'ctx> ListType<'ctx> {
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impl<'ctx> ProxyType<'ctx> for ListType<'ctx> {
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type Base = PointerType<'ctx>;
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type Underlying = StructType<'ctx>;
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type Value = ListValue<'ctx>;
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fn new_value<G: CodeGenerator + ?Sized>(
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@ -610,9 +594,32 @@ impl<'ctx> ProxyType<'ctx> for ListType<'ctx> {
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name: Option<&'ctx str>,
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) -> Self::Value {
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self.create_value(
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generator.gen_var_alloc(ctx, self.as_underlying_type().into(), name).unwrap(),
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generator
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.gen_var_alloc(
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ctx,
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self.as_base_type().get_element_type().into_struct_type().into(),
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name,
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)
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.unwrap(),
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name,
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)
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}
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fn new_array_value<G: CodeGenerator + ?Sized>(
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&self,
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generator: &mut G,
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ctx: &mut CodeGenContext<'ctx, '_>,
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size: IntValue<'ctx>,
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name: Option<&'ctx str>,
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) -> ArraySliceValue<'ctx> {
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generator
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.gen_array_var_alloc(
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ctx,
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self.as_base_type().get_element_type().into_struct_type().into(),
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size,
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name,
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)
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.unwrap()
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}
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fn create_value(
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@ -628,10 +635,6 @@ impl<'ctx> ProxyType<'ctx> for ListType<'ctx> {
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fn as_base_type(&self) -> Self::Base {
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self.ty
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}
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fn as_underlying_type(&self) -> Self::Underlying {
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self.as_base_type().get_element_type().into_struct_type()
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}
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}
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impl<'ctx> From<ListType<'ctx>> for PointerType<'ctx> {
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@ -770,7 +773,6 @@ impl<'ctx> ListValue<'ctx> {
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impl<'ctx> ProxyValue<'ctx> for ListValue<'ctx> {
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type Base = PointerValue<'ctx>;
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type Underlying = StructValue<'ctx>;
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type Type = ListType<'ctx>;
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fn get_type(&self) -> Self::Type {
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@ -780,17 +782,6 @@ impl<'ctx> ProxyValue<'ctx> for ListValue<'ctx> {
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fn as_base_value(&self) -> Self::Base {
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self.value
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}
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fn as_underlying_value(
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&self,
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ctx: &mut CodeGenContext<'ctx, '_>,
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name: Option<&'ctx str>,
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) -> Self::Underlying {
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ctx.builder
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.build_load(self.as_base_value(), name.unwrap_or_default())
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.map(BasicValueEnum::into_struct_value)
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.unwrap()
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}
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}
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impl<'ctx> From<ListValue<'ctx>> for PointerValue<'ctx> {
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@ -940,7 +931,6 @@ impl<'ctx> RangeType<'ctx> {
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impl<'ctx> ProxyType<'ctx> for RangeType<'ctx> {
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type Base = PointerType<'ctx>;
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type Underlying = ArrayType<'ctx>;
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type Value = RangeValue<'ctx>;
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fn new_value<G: CodeGenerator + ?Sized>(
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@ -950,7 +940,13 @@ impl<'ctx> ProxyType<'ctx> for RangeType<'ctx> {
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name: Option<&'ctx str>,
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) -> Self::Value {
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self.create_value(
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generator.gen_var_alloc(ctx, self.as_underlying_type().into(), name).unwrap(),
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generator
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.gen_var_alloc(
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ctx,
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self.as_base_type().get_element_type().into_struct_type().into(),
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name,
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)
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.unwrap(),
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name,
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)
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}
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@ -965,12 +961,25 @@ impl<'ctx> ProxyType<'ctx> for RangeType<'ctx> {
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RangeValue { value, name }
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}
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fn as_base_type(&self) -> Self::Base {
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self.ty
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fn new_array_value<G: CodeGenerator + ?Sized>(
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&self,
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generator: &mut G,
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ctx: &mut CodeGenContext<'ctx, '_>,
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size: IntValue<'ctx>,
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name: Option<&'ctx str>,
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) -> ArraySliceValue<'ctx> {
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generator
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.gen_array_var_alloc(
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ctx,
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self.as_base_type().get_element_type().into_struct_type().into(),
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size,
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name,
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)
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.unwrap()
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}
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fn as_underlying_type(&self) -> Self::Underlying {
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self.as_base_type().get_element_type().into_array_type()
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fn as_base_type(&self) -> Self::Base {
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self.ty
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}
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}
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@ -1112,7 +1121,6 @@ impl<'ctx> RangeValue<'ctx> {
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impl<'ctx> ProxyValue<'ctx> for RangeValue<'ctx> {
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type Base = PointerValue<'ctx>;
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type Underlying = ArrayValue<'ctx>;
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type Type = RangeType<'ctx>;
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fn get_type(&self) -> Self::Type {
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@ -1122,17 +1130,6 @@ impl<'ctx> ProxyValue<'ctx> for RangeValue<'ctx> {
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fn as_base_value(&self) -> Self::Base {
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self.value
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}
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fn as_underlying_value(
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&self,
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ctx: &mut CodeGenContext<'ctx, '_>,
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name: Option<&'ctx str>,
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) -> Self::Underlying {
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ctx.builder
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.build_load(self.as_base_value(), name.unwrap_or_default())
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.map(BasicValueEnum::into_array_value)
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.unwrap()
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}
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}
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impl<'ctx> From<RangeValue<'ctx>> for PointerValue<'ctx> {
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@ -1262,7 +1259,6 @@ impl<'ctx> NDArrayType<'ctx> {
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impl<'ctx> ProxyType<'ctx> for NDArrayType<'ctx> {
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type Base = PointerType<'ctx>;
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type Underlying = StructType<'ctx>;
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type Value = NDArrayValue<'ctx>;
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fn new_value<G: CodeGenerator + ?Sized>(
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@ -1272,9 +1268,32 @@ impl<'ctx> ProxyType<'ctx> for NDArrayType<'ctx> {
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name: Option<&'ctx str>,
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) -> Self::Value {
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self.create_value(
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generator.gen_var_alloc(ctx, self.as_underlying_type().into(), name).unwrap(),
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generator
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.gen_var_alloc(
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ctx,
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self.as_base_type().get_element_type().into_struct_type().into(),
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name,
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)
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.unwrap(),
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name,
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)
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}
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fn new_array_value<G: CodeGenerator + ?Sized>(
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&self,
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generator: &mut G,
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ctx: &mut CodeGenContext<'ctx, '_>,
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size: IntValue<'ctx>,
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name: Option<&'ctx str>,
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) -> ArraySliceValue<'ctx> {
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generator
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.gen_array_var_alloc(
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ctx,
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self.as_base_type().get_element_type().into_struct_type().into(),
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size,
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name,
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)
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.unwrap()
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}
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fn create_value(
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@ -1290,10 +1309,6 @@ impl<'ctx> ProxyType<'ctx> for NDArrayType<'ctx> {
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fn as_base_type(&self) -> Self::Base {
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self.ty
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}
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fn as_underlying_type(&self) -> Self::Underlying {
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self.as_base_type().get_element_type().into_struct_type()
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}
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}
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impl<'ctx> From<NDArrayType<'ctx>> for PointerType<'ctx> {
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@ -1445,7 +1460,6 @@ impl<'ctx> NDArrayValue<'ctx> {
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impl<'ctx> ProxyValue<'ctx> for NDArrayValue<'ctx> {
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type Base = PointerValue<'ctx>;
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type Underlying = StructValue<'ctx>;
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type Type = NDArrayType<'ctx>;
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fn get_type(&self) -> Self::Type {
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@ -1455,17 +1469,6 @@ impl<'ctx> ProxyValue<'ctx> for NDArrayValue<'ctx> {
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fn as_base_value(&self) -> Self::Base {
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self.value
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}
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fn as_underlying_value(
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&self,
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ctx: &mut CodeGenContext<'ctx, '_>,
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name: Option<&'ctx str>,
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) -> Self::Underlying {
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ctx.builder
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.build_load(self.as_base_value(), name.unwrap_or_default())
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.map(BasicValueEnum::into_struct_value)
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.unwrap()
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}
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}
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impl<'ctx> From<NDArrayValue<'ctx>> for PointerValue<'ctx> {
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