WIP
This commit is contained in:
parent
ebeb4f6dca
commit
acd976289f
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@ -721,7 +721,9 @@ fn format_rpc_ret<'ctx>(
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);
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}
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ndarray.create_data(generator, ctx, llvm_elem_ty, num_elements);
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unsafe {
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ndarray.create_data(generator, ctx, num_elements);
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}
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let ndarray_data = ndarray.data().base_ptr(ctx, generator);
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let ndarray_data_i8 =
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@ -32,7 +32,7 @@ use super::{
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gen_for_callback_incrementing, gen_if_callback, gen_if_else_expr_callback, gen_raise,
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gen_var,
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},
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types::{ListType, ProxyType},
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types::{ListType, NDArrayType, ProxyType},
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values::{
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ArrayLikeIndexer, ArrayLikeValue, ListValue, NDArrayValue, ProxyValue, RangeValue,
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TypedArrayLikeAccessor, UntypedArrayLikeAccessor,
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@ -43,7 +43,7 @@ use crate::{
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symbol_resolver::{SymbolValue, ValueEnum},
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toplevel::{
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helper::PrimDef,
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numpy::{make_ndarray_ty, unpack_ndarray_var_tys},
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numpy::unpack_ndarray_var_tys,
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DefinitionId, TopLevelDef,
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},
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typecheck::{
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@ -2595,14 +2595,6 @@ fn gen_ndarray_subscript_expr<'ctx, G: CodeGenerator>(
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_ => 1,
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};
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let ndarray_ndims_ty = ctx.unifier.get_fresh_literal(
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ndims.iter().map(|v| SymbolValue::U64(v - subscripted_dims)).collect(),
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None,
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);
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let ndarray_ty =
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make_ndarray_ty(&mut ctx.unifier, &ctx.primitives, Some(ty), Some(ndarray_ndims_ty));
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let llvm_pndarray_t = ctx.get_llvm_type(generator, ndarray_ty).into_pointer_type();
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let llvm_ndarray_t = llvm_pndarray_t.get_element_type().into_struct_type();
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let llvm_ndarray_data_t = ctx.get_llvm_type(generator, ty).as_basic_type_enum();
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let sizeof_elem = llvm_ndarray_data_t.size_of().unwrap();
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@ -2797,26 +2789,15 @@ fn gen_ndarray_subscript_expr<'ctx, G: CodeGenerator>(
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let Some(index_addr) = make_indices_arr(generator, ctx)? else { return Ok(None) };
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let num_dims = v.load_ndims(ctx);
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let num_dims = ctx.builder
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.build_int_sub(num_dims, llvm_usize.const_int(1, false), "")
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.unwrap();
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// Create a new array, remove the top dimension from the dimension-size-list, and copy the
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// elements over
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let subscripted_ndarray =
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generator.gen_var_alloc(ctx, llvm_ndarray_t.into(), None)?;
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let ndarray = NDArrayValue::from_pointer_value(
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subscripted_ndarray,
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llvm_ndarray_data_t,
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None,
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llvm_usize,
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None,
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);
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let num_dims = v.load_ndims(ctx);
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ndarray.store_ndims(
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ctx,
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generator,
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ctx.builder
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.build_int_sub(num_dims, llvm_usize.const_int(1, false), "")
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.unwrap(),
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);
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let ndarray = NDArrayType::new(generator, ctx.ctx, llvm_ndarray_data_t)
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.construct_uninitialized(generator, ctx, num_dims, None);
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let ndarray_num_dims = ndarray.load_ndims(ctx);
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ndarray.create_shape(ctx, llvm_usize, ndarray_num_dims);
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@ -2858,7 +2839,9 @@ fn gen_ndarray_subscript_expr<'ctx, G: CodeGenerator>(
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.builder
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.build_int_z_extend_or_bit_cast(ndarray_num_elems, sizeof_elem.get_type(), "")
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.unwrap();
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ndarray.create_data(generator, ctx, llvm_ndarray_data_t, ndarray_num_elems);
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unsafe {
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ndarray.create_data(generator, ctx, ndarray_num_elems);
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}
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let v_data_src_ptr = v.data().ptr_offset(ctx, generator, &index_addr, None);
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call_memcpy_generic(
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@ -3604,3 +3587,90 @@ pub fn gen_expr<'ctx, G: CodeGenerator>(
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_ => unimplemented!(),
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}))
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}
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/// Creates a function in the current module and inserts a `call` instruction into the LLVM IR.
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pub fn create_fn_and_call<'ctx>(
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ctx: &CodeGenContext<'ctx, '_>,
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fn_name: &str,
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ret_type: Option<BasicTypeEnum<'ctx>>,
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(params, is_var_args): (&[BasicTypeEnum<'ctx>], bool),
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args: &[BasicValueEnum<'ctx>],
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call_value_name: Option<&str>,
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configure: Option<&dyn Fn(&FunctionValue<'ctx>)>,
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) -> Option<BasicValueEnum<'ctx>> {
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let intrinsic_fn = ctx.module.get_function(fn_name).unwrap_or_else(|| {
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let params = params.iter().copied().map(BasicTypeEnum::into).collect_vec();
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let fn_type = if let Some(ret_type) = ret_type {
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ret_type.fn_type(params.as_slice(), is_var_args)
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} else {
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ctx.ctx.void_type().fn_type(params.as_slice(), is_var_args)
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};
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ctx.module.add_function(fn_name, fn_type, None)
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});
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if let Some(configure) = configure {
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configure(&intrinsic_fn);
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}
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let args = args.iter().copied().map(BasicValueEnum::into).collect_vec();
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ctx.builder
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.build_call(intrinsic_fn, args.as_slice(), call_value_name.unwrap_or_default())
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.map(CallSiteValue::try_as_basic_value)
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.map(Either::left)
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.unwrap()
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}
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/// Creates a function in the current module and inserts a `call` instruction into the LLVM IR.
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///
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/// This is a wrapper around [`create_fn_and_call`] for non-vararg function. This function allows
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/// parameters and arguments to be specified as tuples to better indicate the expected type and
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/// actual value of each parameter-argument pair of the call.
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pub fn create_and_call_function<'ctx>(
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ctx: &CodeGenContext<'ctx, '_>,
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fn_name: &str,
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ret_type: Option<BasicTypeEnum<'ctx>>,
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params: &[(BasicTypeEnum<'ctx>, BasicValueEnum<'ctx>)],
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value_name: Option<&str>,
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configure: Option<&dyn Fn(&FunctionValue<'ctx>)>,
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) -> Option<BasicValueEnum<'ctx>> {
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let param_tys = params.iter().map(|(ty, _)| ty).copied().map(BasicTypeEnum::into).collect_vec();
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let arg_values =
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params.iter().map(|(_, value)| value).copied().map(BasicValueEnum::into).collect_vec();
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create_fn_and_call(
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ctx,
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fn_name,
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ret_type,
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(param_tys.as_slice(), false),
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arg_values.as_slice(),
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value_name,
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configure,
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)
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}
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/// Creates a function in the current module and inserts a `call` instruction into the LLVM IR.
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///
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/// This is a wrapper around [`create_fn_and_call`] for non-vararg function. This function allows
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/// only arguments to be specified and performs inference for the parameter types using
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/// [`BasicValueEnum::get_type`].
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pub fn infer_and_call_function<'ctx>(
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ctx: &CodeGenContext<'ctx, '_>,
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fn_name: &str,
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ret_type: Option<BasicTypeEnum<'ctx>>,
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args: &[BasicValueEnum<'ctx>],
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value_name: Option<&str>,
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configure: Option<&dyn Fn(&FunctionValue<'ctx>)>,
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) -> Option<BasicValueEnum<'ctx>> {
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let param_tys = args.iter().map(BasicValueEnum::get_type).collect_vec();
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create_fn_and_call(
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ctx,
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fn_name,
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ret_type,
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(param_tys.as_slice(), false),
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args,
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value_name,
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configure,
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)
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}
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@ -59,6 +59,27 @@ pub fn load_irrt<'ctx>(ctx: &'ctx Context, symbol_resolver: &dyn SymbolResolver)
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irrt_mod
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}
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/// Returns the name of a function which contains variants for 32-bit and 64-bit `size_t`.
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///
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/// - When [`TypeContext::size_type`] is 32-bits, the function name is `fn_name}`.
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/// - When [`TypeContext::size_type`] is 64-bits, the function name is `{fn_name}64`.
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#[must_use]
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pub fn get_usize_dependent_function_name<G: CodeGenerator + ?Sized>(
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generator: &mut G,
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ctx: &CodeGenContext<'_, '_>,
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name: &str,
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) -> String {
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let mut name = name.to_owned();
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match generator.get_size_type(ctx.ctx).get_bit_width() {
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32 => {}
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64 => name.push_str("64"),
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bit_width => {
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panic!("Unsupported int type bit width {bit_width}, must be either 32-bits or 64-bits")
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}
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}
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name
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}
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/// NOTE: the output value of the end index of this function should be compared ***inclusively***,
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/// because python allows `a[2::-1]`, whose semantic is `[a[2], a[1], a[0]]`, which is equivalent to
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/// NO numeric slice in python.
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@ -1,134 +1,258 @@
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use crate::codegen::{CodeGenContext, CodeGenerator};
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use inkwell::{
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values::{BasicValueEnum, IntValue, PointerValue},
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AddressSpace,
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};
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/// Returns the name of a function which contains variants for 32-bit and 64-bit `size_t`.
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///
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/// - When [`TypeContext::size_type`] is 32-bits, the function name is `fn_name}`.
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/// - When [`TypeContext::size_type`] is 64-bits, the function name is `{fn_name}64`.
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#[must_use]
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pub fn get_usize_dependent_function_name<G: CodeGenerator + ?Sized>(
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use crate::codegen::{
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expr::create_and_call_function,
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irrt::get_usize_dependent_function_name,
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types::NDArrayType,
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values::{NDArrayValue, ProxyValue},
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CodeGenContext, CodeGenerator,
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};
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pub fn call_nac3_ndarray_util_assert_shape_no_negative<'ctx, G: CodeGenerator + ?Sized>(
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generator: &mut G,
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ctx: &CodeGenContext<'_, '_>,
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name: &str,
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) -> String {
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let mut name = name.to_owned();
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match generator.get_size_type(ctx.ctx).get_bit_width() {
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32 => {}
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64 => name.push_str("64"),
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bit_width => {
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panic!("Unsupported int type bit width {bit_width}, must be either 32-bits or 64-bits")
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}
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}
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name
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ctx: &mut CodeGenContext<'ctx, '_>,
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ndims: IntValue<'ctx>,
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shape: PointerValue<'ctx>,
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) {
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let llvm_usize = generator.get_size_type(ctx.ctx);
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let llvm_pusize = llvm_usize.ptr_type(AddressSpace::default());
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let name = get_usize_dependent_function_name(
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generator,
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ctx,
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"__nac3_ndarray_util_assert_shape_no_negative",
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);
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create_and_call_function(
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ctx,
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&name,
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Some(llvm_usize.into()),
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&[(llvm_usize.into(), ndims.into()), (llvm_pusize.into(), shape.into())],
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None,
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None,
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);
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}
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// pub fn call_nac3_ndarray_util_assert_shape_no_negative<'ctx, G: CodeGenerator + ?Sized>(
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// generator: &mut G,
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// ctx: &mut CodeGenContext<'ctx, '_>,
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// ndims: Instance<'ctx, Int<SizeT>>,
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// shape: Instance<'ctx, Ptr<Int<SizeT>>>,
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// ) {
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// let name = get_usize_dependent_function_name(
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// generator,
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// ctx,
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// "__nac3_ndarray_util_assert_shape_no_negative",
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// );
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// FnCall::builder(generator, ctx, &name).arg(ndims).arg(shape).returning_void();
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// }
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//
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// pub fn call_nac3_ndarray_util_assert_output_shape_same<'ctx, G: CodeGenerator + ?Sized>(
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// generator: &mut G,
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// ctx: &mut CodeGenContext<'ctx, '_>,
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// ndarray_ndims: Instance<'ctx, Int<SizeT>>,
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// ndarray_shape: Instance<'ctx, Ptr<Int<SizeT>>>,
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// output_ndims: Instance<'ctx, Int<SizeT>>,
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// output_shape: Instance<'ctx, Ptr<Int<SizeT>>>,
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// ) {
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// let name = get_usize_dependent_function_name(
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// generator,
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// ctx,
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// "__nac3_ndarray_util_assert_output_shape_same",
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// );
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// FnCall::builder(generator, ctx, &name)
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// .arg(ndarray_ndims)
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// .arg(ndarray_shape)
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// .arg(output_ndims)
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// .arg(output_shape)
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// .returning_void();
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// }
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//
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// pub fn call_nac3_ndarray_size<'ctx, G: CodeGenerator + ?Sized>(
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// generator: &mut G,
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// ctx: &mut CodeGenContext<'ctx, '_>,
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// ndarray: Instance<'ctx, Ptr<Struct<NDArray>>>,
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// ) -> Instance<'ctx, Int<SizeT>> {
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// let name = get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_size");
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// FnCall::builder(generator, ctx, &name).arg(ndarray).returning_auto("size")
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// }
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//
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// pub fn call_nac3_ndarray_nbytes<'ctx, G: CodeGenerator + ?Sized>(
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// generator: &mut G,
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// ctx: &mut CodeGenContext<'ctx, '_>,
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// ndarray: Instance<'ctx, Ptr<Struct<NDArray>>>,
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// ) -> Instance<'ctx, Int<SizeT>> {
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// let name = get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_nbytes");
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// FnCall::builder(generator, ctx, &name).arg(ndarray).returning_auto("nbytes")
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// }
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//
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// pub fn call_nac3_ndarray_len<'ctx, G: CodeGenerator + ?Sized>(
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// generator: &mut G,
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// ctx: &mut CodeGenContext<'ctx, '_>,
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// ndarray: Instance<'ctx, Ptr<Struct<NDArray>>>,
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// ) -> Instance<'ctx, Int<SizeT>> {
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// let name = get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_len");
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// FnCall::builder(generator, ctx, &name).arg(ndarray).returning_auto("len")
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// }
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//
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// pub fn call_nac3_ndarray_is_c_contiguous<'ctx, G: CodeGenerator + ?Sized>(
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// generator: &mut G,
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// ctx: &mut CodeGenContext<'ctx, '_>,
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// ndarray: Instance<'ctx, Ptr<Struct<NDArray>>>,
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// ) -> Instance<'ctx, Int<Bool>> {
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// let name = get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_is_c_contiguous");
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// FnCall::builder(generator, ctx, &name).arg(ndarray).returning_auto("is_c_contiguous")
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// }
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//
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// pub fn call_nac3_ndarray_get_nth_pelement<'ctx, G: CodeGenerator + ?Sized>(
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// generator: &mut G,
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// ctx: &mut CodeGenContext<'ctx, '_>,
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// ndarray: Instance<'ctx, Ptr<Struct<NDArray>>>,
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// index: Instance<'ctx, Int<SizeT>>,
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// ) -> Instance<'ctx, Ptr<Int<Byte>>> {
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// let name = get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_get_nth_pelement");
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// FnCall::builder(generator, ctx, &name).arg(ndarray).arg(index).returning_auto("pelement")
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// }
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//
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// pub fn call_nac3_ndarray_get_pelement_by_indices<'ctx, G: CodeGenerator + ?Sized>(
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// generator: &mut G,
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// ctx: &mut CodeGenContext<'ctx, '_>,
|
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// ndarray: Instance<'ctx, Ptr<Struct<NDArray>>>,
|
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// indices: Instance<'ctx, Ptr<Int<SizeT>>>,
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// ) -> Instance<'ctx, Ptr<Int<Byte>>> {
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// let name =
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// get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_get_pelement_by_indices");
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// FnCall::builder(generator, ctx, &name).arg(ndarray).arg(indices).returning_auto("pelement")
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// }
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//
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// pub fn call_nac3_ndarray_set_strides_by_shape<'ctx, G: CodeGenerator + ?Sized>(
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// generator: &mut G,
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// ctx: &mut CodeGenContext<'ctx, '_>,
|
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// ndarray: Instance<'ctx, Ptr<Struct<NDArray>>>,
|
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// ) {
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// let name =
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// get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_set_strides_by_shape");
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// FnCall::builder(generator, ctx, &name).arg(ndarray).returning_void();
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// }
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//
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// pub fn call_nac3_ndarray_copy_data<'ctx, G: CodeGenerator + ?Sized>(
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// generator: &mut G,
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// ctx: &mut CodeGenContext<'ctx, '_>,
|
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// src_ndarray: Instance<'ctx, Ptr<Struct<NDArray>>>,
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// dst_ndarray: Instance<'ctx, Ptr<Struct<NDArray>>>,
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// ) {
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// let name = get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_copy_data");
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// FnCall::builder(generator, ctx, &name).arg(src_ndarray).arg(dst_ndarray).returning_void();
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// }
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pub fn call_nac3_ndarray_util_assert_output_shape_same<'ctx, G: CodeGenerator + ?Sized>(
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generator: &mut G,
|
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ctx: &mut CodeGenContext<'ctx, '_>,
|
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ndarray_ndims: IntValue<'ctx>,
|
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ndarray_shape: PointerValue<'ctx>,
|
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output_ndims: IntValue<'ctx>,
|
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output_shape: IntValue<'ctx>,
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) {
|
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let llvm_usize = generator.get_size_type(ctx.ctx);
|
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let llvm_pusize = llvm_usize.ptr_type(AddressSpace::default());
|
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|
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let name = get_usize_dependent_function_name(
|
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generator,
|
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ctx,
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"__nac3_ndarray_util_assert_output_shape_same",
|
||||
);
|
||||
|
||||
create_and_call_function(
|
||||
ctx,
|
||||
&name,
|
||||
Some(llvm_usize.into()),
|
||||
&[
|
||||
(llvm_usize.into(), ndarray_ndims.into()),
|
||||
(llvm_pusize.into(), ndarray_shape.into()),
|
||||
(llvm_usize.into(), output_ndims.into()),
|
||||
(llvm_pusize.into(), output_shape.into()),
|
||||
],
|
||||
None,
|
||||
None,
|
||||
);
|
||||
}
|
||||
|
||||
pub fn call_nac3_ndarray_size<'ctx, G: CodeGenerator + ?Sized>(
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
ndarray: NDArrayValue<'ctx>,
|
||||
) -> IntValue<'ctx> {
|
||||
let llvm_usize = generator.get_size_type(ctx.ctx);
|
||||
let llvm_ndarray = NDArrayType::llvm_type(ctx.ctx, llvm_usize);
|
||||
|
||||
let name = get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_size");
|
||||
|
||||
create_and_call_function(
|
||||
ctx,
|
||||
&name,
|
||||
Some(llvm_usize.into()),
|
||||
&[(llvm_ndarray.into(), ndarray.as_base_value().into())],
|
||||
Some("size"),
|
||||
None,
|
||||
)
|
||||
.map(BasicValueEnum::into_int_value)
|
||||
.unwrap()
|
||||
}
|
||||
|
||||
pub fn call_nac3_ndarray_nbytes<'ctx, G: CodeGenerator + ?Sized>(
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
ndarray: NDArrayValue<'ctx>,
|
||||
) -> IntValue<'ctx> {
|
||||
let llvm_usize = generator.get_size_type(ctx.ctx);
|
||||
let llvm_ndarray = NDArrayType::llvm_type(ctx.ctx, llvm_usize);
|
||||
|
||||
let name = get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_nbytes");
|
||||
|
||||
create_and_call_function(
|
||||
ctx,
|
||||
&name,
|
||||
Some(llvm_usize.into()),
|
||||
&[(llvm_ndarray.into(), ndarray.as_base_value().into())],
|
||||
Some("nbytes"),
|
||||
None,
|
||||
)
|
||||
.map(BasicValueEnum::into_int_value)
|
||||
.unwrap()
|
||||
}
|
||||
|
||||
pub fn call_nac3_ndarray_len<'ctx, G: CodeGenerator + ?Sized>(
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
ndarray: NDArrayValue<'ctx>,
|
||||
) -> IntValue<'ctx> {
|
||||
let llvm_usize = generator.get_size_type(ctx.ctx);
|
||||
let llvm_ndarray = NDArrayType::llvm_type(ctx.ctx, llvm_usize);
|
||||
|
||||
let name = get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_len");
|
||||
|
||||
create_and_call_function(
|
||||
ctx,
|
||||
&name,
|
||||
Some(llvm_usize.into()),
|
||||
&[(llvm_ndarray.into(), ndarray.as_base_value().into())],
|
||||
Some("len"),
|
||||
None,
|
||||
)
|
||||
.map(BasicValueEnum::into_int_value)
|
||||
.unwrap()
|
||||
}
|
||||
|
||||
pub fn call_nac3_ndarray_is_c_contiguous<'ctx, G: CodeGenerator + ?Sized>(
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
ndarray: NDArrayValue<'ctx>,
|
||||
) -> IntValue<'ctx> {
|
||||
let llvm_i1 = ctx.ctx.bool_type();
|
||||
let llvm_usize = generator.get_size_type(ctx.ctx);
|
||||
let llvm_ndarray = NDArrayType::llvm_type(ctx.ctx, llvm_usize);
|
||||
|
||||
let name = get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_is_c_contiguous");
|
||||
|
||||
create_and_call_function(
|
||||
ctx,
|
||||
&name,
|
||||
Some(llvm_i1.into()),
|
||||
&[(llvm_ndarray.into(), ndarray.as_base_value().into())],
|
||||
Some("is_c_contiguous"),
|
||||
None,
|
||||
)
|
||||
.map(BasicValueEnum::into_int_value)
|
||||
.unwrap()
|
||||
}
|
||||
|
||||
pub fn call_nac3_ndarray_get_nth_pelement<'ctx, G: CodeGenerator + ?Sized>(
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
ndarray: NDArrayValue<'ctx>,
|
||||
index: IntValue<'ctx>,
|
||||
) -> PointerValue<'ctx> {
|
||||
let llvm_i8 = ctx.ctx.i8_type();
|
||||
let llvm_pi8 = llvm_i8.ptr_type(AddressSpace::default());
|
||||
let llvm_usize = generator.get_size_type(ctx.ctx);
|
||||
let llvm_ndarray = NDArrayType::llvm_type(ctx.ctx, llvm_usize);
|
||||
|
||||
let name = get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_get_nth_pelement");
|
||||
|
||||
create_and_call_function(
|
||||
ctx,
|
||||
&name,
|
||||
Some(llvm_pi8.into()),
|
||||
&[(llvm_ndarray.into(), ndarray.as_base_value().into()), (llvm_usize.into(), index.into())],
|
||||
Some("pelement"),
|
||||
None,
|
||||
)
|
||||
.map(BasicValueEnum::into_pointer_value)
|
||||
.unwrap()
|
||||
}
|
||||
|
||||
pub fn call_nac3_ndarray_get_pelement_by_indices<'ctx, G: CodeGenerator + ?Sized>(
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
ndarray: NDArrayValue<'ctx>,
|
||||
indices: PointerValue<'ctx>,
|
||||
) -> PointerValue<'ctx> {
|
||||
let llvm_i8 = ctx.ctx.i8_type();
|
||||
let llvm_pi8 = llvm_i8.ptr_type(AddressSpace::default());
|
||||
let llvm_usize = generator.get_size_type(ctx.ctx);
|
||||
let llvm_pusize = llvm_usize.ptr_type(AddressSpace::default());
|
||||
let llvm_ndarray = NDArrayType::llvm_type(ctx.ctx, llvm_usize);
|
||||
|
||||
let name =
|
||||
get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_get_pelement_by_indices");
|
||||
|
||||
create_and_call_function(
|
||||
ctx,
|
||||
&name,
|
||||
Some(llvm_pi8.into()),
|
||||
&[
|
||||
(llvm_ndarray.into(), ndarray.as_base_value().into()),
|
||||
(llvm_pusize.into(), indices.into()),
|
||||
],
|
||||
Some("pelement"),
|
||||
None,
|
||||
)
|
||||
.map(BasicValueEnum::into_pointer_value)
|
||||
.unwrap()
|
||||
}
|
||||
|
||||
pub fn call_nac3_ndarray_set_strides_by_shape<'ctx, G: CodeGenerator + ?Sized>(
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
ndarray: NDArrayValue<'ctx>,
|
||||
) {
|
||||
let llvm_usize = generator.get_size_type(ctx.ctx);
|
||||
let llvm_ndarray = NDArrayType::llvm_type(ctx.ctx, llvm_usize);
|
||||
|
||||
let name =
|
||||
get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_set_strides_by_shape");
|
||||
|
||||
create_and_call_function(
|
||||
ctx,
|
||||
&name,
|
||||
None,
|
||||
&[(llvm_ndarray.into(), ndarray.as_base_value().into())],
|
||||
None,
|
||||
None,
|
||||
);
|
||||
}
|
||||
|
||||
pub fn call_nac3_ndarray_copy_data<'ctx, G: CodeGenerator + ?Sized>(
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
src_ndarray: NDArrayValue<'ctx>,
|
||||
dst_ndarray: NDArrayValue<'ctx>,
|
||||
) {
|
||||
let llvm_usize = generator.get_size_type(ctx.ctx);
|
||||
let llvm_ndarray = NDArrayType::llvm_type(ctx.ctx, llvm_usize);
|
||||
|
||||
let name = get_usize_dependent_function_name(generator, ctx, "__nac3_ndarray_copy_data");
|
||||
|
||||
create_and_call_function(
|
||||
ctx,
|
||||
&name,
|
||||
None,
|
||||
&[
|
||||
(llvm_ndarray.into(), src_ndarray.as_base_value().into()),
|
||||
(llvm_ndarray.into(), dst_ndarray.as_base_value().into()),
|
||||
],
|
||||
None,
|
||||
None,
|
||||
);
|
||||
}
|
||||
|
|
|
@ -201,6 +201,52 @@ pub fn call_memcpy_generic<'ctx>(
|
|||
call_memcpy(ctx, dest, src, len, is_volatile);
|
||||
}
|
||||
|
||||
/// Invokes the `llvm.memcpy` intrinsic.
|
||||
///
|
||||
/// Unlike [`call_memcpy`], this function accepts any type of pointer value. If `dest` or `src` is
|
||||
/// not a pointer to an integer, the pointer(s) will be cast to `i8*` before invoking `memcpy`.
|
||||
/// Moreover, `len` now refers to the number of elements (rather than bytes) to copy.
|
||||
pub fn call_memcpy_generic_array<'ctx>(
|
||||
ctx: &CodeGenContext<'ctx, '_>,
|
||||
dest: PointerValue<'ctx>,
|
||||
src: PointerValue<'ctx>,
|
||||
len: IntValue<'ctx>,
|
||||
is_volatile: IntValue<'ctx>,
|
||||
) {
|
||||
let llvm_i8 = ctx.ctx.i8_type();
|
||||
let llvm_p0i8 = llvm_i8.ptr_type(AddressSpace::default());
|
||||
let llvm_sizeof_expr_t = llvm_i8.size_of().get_type();
|
||||
|
||||
let dest_elem_t = dest.get_type().get_element_type();
|
||||
let src_elem_t = src.get_type().get_element_type();
|
||||
|
||||
let dest = if matches!(dest_elem_t, IntType(t) if t.get_bit_width() == 8) {
|
||||
dest
|
||||
} else {
|
||||
ctx.builder
|
||||
.build_bit_cast(dest, llvm_p0i8, "")
|
||||
.map(BasicValueEnum::into_pointer_value)
|
||||
.unwrap()
|
||||
};
|
||||
let src = if matches!(src_elem_t, IntType(t) if t.get_bit_width() == 8) {
|
||||
src
|
||||
} else {
|
||||
ctx.builder
|
||||
.build_bit_cast(src, llvm_p0i8, "")
|
||||
.map(BasicValueEnum::into_pointer_value)
|
||||
.unwrap()
|
||||
};
|
||||
|
||||
let len = ctx.builder.build_int_cast(len, llvm_sizeof_expr_t, "").unwrap();
|
||||
let len = ctx.builder.build_int_mul(
|
||||
len,
|
||||
src_elem_t.size_of().unwrap(),
|
||||
""
|
||||
).unwrap();
|
||||
|
||||
call_memcpy(ctx, dest, src, len, is_volatile);
|
||||
}
|
||||
|
||||
/// Macro to find and generate build call for llvm intrinsic (body of llvm intrinsic function)
|
||||
///
|
||||
/// Arguments:
|
||||
|
|
|
@ -41,6 +41,7 @@ use crate::{
|
|||
};
|
||||
|
||||
/// Creates an uninitialized `NDArray` instance.
|
||||
#[deprecated = "Use NDArrayType::construct_uninitialized instead."]
|
||||
fn create_ndarray_uninitialized<'ctx, G: CodeGenerator + ?Sized>(
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
|
@ -84,6 +85,7 @@ where
|
|||
) -> Result<IntValue<'ctx>, String>,
|
||||
{
|
||||
let llvm_usize = generator.get_size_type(ctx.ctx);
|
||||
let llvm_elem_ty = ctx.get_llvm_type(generator, elem_ty);
|
||||
|
||||
// Assert that all dimensions are non-negative
|
||||
let shape_len = shape_len_fn(generator, ctx, shape)?;
|
||||
|
@ -123,10 +125,10 @@ where
|
|||
llvm_usize.const_int(1, false),
|
||||
)?;
|
||||
|
||||
let ndarray = create_ndarray_uninitialized(generator, ctx, elem_ty)?;
|
||||
|
||||
let num_dims = shape_len_fn(generator, ctx, shape)?;
|
||||
ndarray.store_ndims(ctx, generator, num_dims);
|
||||
|
||||
let ndarray = NDArrayType::new(generator, ctx.ctx, llvm_elem_ty)
|
||||
.construct_uninitialized(generator, ctx, num_dims, None);
|
||||
|
||||
let ndarray_num_dims = ndarray.load_ndims(ctx);
|
||||
ndarray.create_shape(ctx, llvm_usize, ndarray_num_dims);
|
||||
|
@ -215,7 +217,9 @@ fn ndarray_init_data<'ctx, G: CodeGenerator + ?Sized>(
|
|||
&ndarray.shape().as_slice_value(ctx, generator),
|
||||
(None, None),
|
||||
);
|
||||
ndarray.create_data(generator, ctx, llvm_ndarray_data_t, ndarray_num_elems);
|
||||
unsafe {
|
||||
ndarray.create_data(generator, ctx, ndarray_num_elems);
|
||||
}
|
||||
|
||||
ndarray
|
||||
}
|
||||
|
@ -1262,6 +1266,7 @@ pub fn ndarray_sliced_copy<'ctx, G: CodeGenerator + ?Sized>(
|
|||
) -> Result<NDArrayValue<'ctx>, String> {
|
||||
let llvm_i32 = ctx.ctx.i32_type();
|
||||
let llvm_usize = generator.get_size_type(ctx.ctx);
|
||||
let llvm_elem_ty = ctx.get_llvm_type(generator, elem_ty);
|
||||
|
||||
let ndarray = if slices.is_empty() {
|
||||
create_ndarray_dyn_shape(
|
||||
|
@ -1275,8 +1280,8 @@ pub fn ndarray_sliced_copy<'ctx, G: CodeGenerator + ?Sized>(
|
|||
},
|
||||
)?
|
||||
} else {
|
||||
let ndarray = create_ndarray_uninitialized(generator, ctx, elem_ty)?;
|
||||
ndarray.store_ndims(ctx, generator, this.load_ndims(ctx));
|
||||
let ndarray = NDArrayType::new(generator, ctx.ctx, llvm_elem_ty)
|
||||
.construct_uninitialized(generator, ctx, this.load_ndims(ctx), None);
|
||||
|
||||
let ndims = this.load_ndims(ctx);
|
||||
ndarray.create_shape(ctx, llvm_usize, ndims);
|
||||
|
|
|
@ -82,7 +82,7 @@ impl<'ctx> NDArrayType<'ctx> {
|
|||
Ok(())
|
||||
}
|
||||
|
||||
// TODO: Move this into e.g. StructProxyType
|
||||
// TODO: Move this as a member of this Struct
|
||||
#[must_use]
|
||||
fn fields(
|
||||
ctx: impl AsContextRef<'ctx>,
|
||||
|
@ -103,7 +103,7 @@ impl<'ctx> NDArrayType<'ctx> {
|
|||
|
||||
/// Creates an LLVM type corresponding to the expected structure of an `NDArray`.
|
||||
#[must_use]
|
||||
fn llvm_type(ctx: &'ctx Context, llvm_usize: IntType<'ctx>) -> PointerType<'ctx> {
|
||||
pub fn llvm_type(ctx: &'ctx Context, llvm_usize: IntType<'ctx>) -> PointerType<'ctx> {
|
||||
// struct NDArray { data: i8*, itemsize: size_t, ndims: size_t, shape: size_t*, strides: size_t* }
|
||||
//
|
||||
// * data : Pointer to an array containing the array data
|
||||
|
@ -189,22 +189,20 @@ impl<'ctx> NDArrayType<'ctx> {
|
|||
&self,
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
ndims: u64,
|
||||
// ndims: u64,
|
||||
ndims: IntValue<'ctx>,
|
||||
name: Option<&'ctx str>,
|
||||
) -> <Self as ProxyType<'ctx>>::Value {
|
||||
let ndarray = self.new_value(generator, ctx, name);
|
||||
|
||||
let itemsize = ctx
|
||||
.builder
|
||||
.build_int_z_extend_or_bit_cast(self.dtype.size_of().unwrap(), self.llvm_usize, "")
|
||||
.unwrap();
|
||||
let itemsize =
|
||||
ctx.builder.build_int_cast(self.dtype.size_of().unwrap(), self.llvm_usize, "").unwrap();
|
||||
ndarray.store_itemsize(ctx, generator, itemsize);
|
||||
|
||||
let ndims_val = self.llvm_usize.const_int(ndims, false);
|
||||
ndarray.store_ndims(ctx, generator, ndims_val);
|
||||
ndarray.store_ndims(ctx, generator, ndims);
|
||||
|
||||
ndarray.create_shape(ctx, self.llvm_usize, ndims_val);
|
||||
ndarray.create_strides(ctx, self.llvm_usize, ndims_val);
|
||||
ndarray.create_shape(ctx, self.llvm_usize, ndims);
|
||||
ndarray.create_strides(ctx, self.llvm_usize, ndims);
|
||||
|
||||
ndarray
|
||||
}
|
||||
|
@ -220,7 +218,14 @@ impl<'ctx> NDArrayType<'ctx> {
|
|||
shape: &[u64],
|
||||
name: Option<&'ctx str>,
|
||||
) -> <Self as ProxyType<'ctx>>::Value {
|
||||
let ndarray = self.construct_uninitialized(generator, ctx, shape.len() as u64, name);
|
||||
let llvm_usize = generator.get_size_type(ctx.ctx);
|
||||
|
||||
let ndarray = self.construct_uninitialized(
|
||||
generator,
|
||||
ctx,
|
||||
llvm_usize.const_int(shape.len() as u64, false),
|
||||
name,
|
||||
);
|
||||
|
||||
// Write shape
|
||||
let ndarray_shape = ndarray.shape();
|
||||
|
@ -250,7 +255,14 @@ impl<'ctx> NDArrayType<'ctx> {
|
|||
shape: &[IntValue<'ctx>],
|
||||
name: Option<&'ctx str>,
|
||||
) -> <Self as ProxyType<'ctx>>::Value {
|
||||
let ndarray = self.construct_uninitialized(generator, ctx, shape.len() as u64, name);
|
||||
let llvm_usize = generator.get_size_type(ctx.ctx);
|
||||
|
||||
let ndarray = self.construct_uninitialized(
|
||||
generator,
|
||||
ctx,
|
||||
llvm_usize.const_int(shape.len() as u64, false),
|
||||
name,
|
||||
);
|
||||
|
||||
// Write shape
|
||||
let ndarray_shape = ndarray.shape();
|
||||
|
|
|
@ -145,7 +145,7 @@ where
|
|||
}
|
||||
|
||||
/// Sets the value of this field for a given `obj`.
|
||||
pub fn set_from_value(&self, obj: StructValue<'ctx>, value: Value) {
|
||||
pub fn set_for_value(&self, obj: StructValue<'ctx>, value: Value) {
|
||||
obj.set_field_at_index(self.index, value);
|
||||
}
|
||||
|
||||
|
|
|
@ -10,7 +10,7 @@ use super::{
|
|||
};
|
||||
use crate::codegen::{
|
||||
irrt,
|
||||
llvm_intrinsics::call_int_umin,
|
||||
llvm_intrinsics::{call_int_umin, call_memcpy_generic_array},
|
||||
stmt::gen_for_callback_incrementing,
|
||||
type_aligned_alloca,
|
||||
types::{structure::StructField, NDArrayType},
|
||||
|
@ -79,7 +79,9 @@ impl<'ctx> NDArrayValue<'ctx> {
|
|||
}
|
||||
|
||||
fn itemsize(&self, ctx: &CodeGenContext<'ctx, '_>) -> StructField<'ctx, IntValue<'ctx>> {
|
||||
self.get_type().get_fields(ctx.ctx, self.llvm_usize).itemsize
|
||||
self.get_type()
|
||||
.get_fields(ctx.ctx, self.llvm_usize)
|
||||
.itemsize
|
||||
}
|
||||
|
||||
/// Stores the size of each element `itemsize` into this instance.
|
||||
|
@ -179,19 +181,29 @@ impl<'ctx> NDArrayValue<'ctx> {
|
|||
|
||||
/// Convenience method for creating a new array storing data elements with the given element
|
||||
/// type `elem_ty` and `size`.
|
||||
pub fn create_data<G: CodeGenerator + ?Sized>(
|
||||
///
|
||||
/// The data buffer will be allocated on the stack, and is considered to be owned by this ndarray instance.
|
||||
///
|
||||
/// # Safety
|
||||
///
|
||||
/// `shape` and `itemsize` of the ndarray must be initialized.
|
||||
pub unsafe fn create_data<G: CodeGenerator + ?Sized>(
|
||||
&self,
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
elem_ty: BasicTypeEnum<'ctx>,
|
||||
size: IntValue<'ctx>,
|
||||
) {
|
||||
// let itemsize =
|
||||
// ctx.builder.build_int_cast(self.load_itemsize(ctx), size.get_type(), "").unwrap();
|
||||
let itemsize =
|
||||
ctx.builder.build_int_cast(elem_ty.size_of().unwrap(), size.get_type(), "").unwrap();
|
||||
ctx.builder.build_int_cast(self.dtype.size_of().unwrap(), size.get_type(), "").unwrap();
|
||||
let nbytes = ctx.builder.build_int_mul(size, itemsize, "").unwrap();
|
||||
// let nbytes = self.nbytes(generator, ctx);
|
||||
|
||||
let data = type_aligned_alloca(generator, ctx, elem_ty, nbytes, None);
|
||||
let data = type_aligned_alloca(generator, ctx, self.dtype, nbytes, None);
|
||||
self.store_data(ctx, data);
|
||||
|
||||
// self.set_strides_contiguous(generator, ctx);
|
||||
}
|
||||
|
||||
/// Returns a proxy object to the field storing the data of this `NDArray`.
|
||||
|
@ -199,6 +211,133 @@ impl<'ctx> NDArrayValue<'ctx> {
|
|||
pub fn data(&self) -> NDArrayDataProxy<'ctx, '_> {
|
||||
NDArrayDataProxy(self)
|
||||
}
|
||||
|
||||
/// Copy shape dimensions from an array.
|
||||
pub fn copy_shape_from_array<G: CodeGenerator + ?Sized>(
|
||||
&self,
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
shape: PointerValue<'ctx>,
|
||||
) {
|
||||
let num_items = self.load_ndims(ctx);
|
||||
|
||||
call_memcpy_generic_array(
|
||||
ctx,
|
||||
self.shape().base_ptr(ctx, generator),
|
||||
shape,
|
||||
num_items,
|
||||
ctx.ctx.bool_type().const_zero(),
|
||||
);
|
||||
}
|
||||
|
||||
/// Copy shape dimensions from an ndarray.
|
||||
/// Panics if `ndims` mismatches.
|
||||
pub fn copy_shape_from_ndarray<G: CodeGenerator + ?Sized>(
|
||||
&self,
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
src_ndarray: NDArrayValue<'ctx>,
|
||||
) {
|
||||
assert_eq!(self.ndims, src_ndarray.ndims);
|
||||
let src_shape = src_ndarray.shape().base_ptr(ctx, generator);
|
||||
self.copy_shape_from_array(generator, ctx, src_shape);
|
||||
}
|
||||
|
||||
/// Copy strides dimensions from an array.
|
||||
pub fn copy_strides_from_array<G: CodeGenerator + ?Sized>(
|
||||
&self,
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
strides: PointerValue<'ctx>,
|
||||
) {
|
||||
let num_items = self.load_ndims(ctx);
|
||||
|
||||
call_memcpy_generic_array(
|
||||
ctx,
|
||||
self.strides().base_ptr(ctx, generator),
|
||||
strides,
|
||||
num_items,
|
||||
ctx.ctx.bool_type().const_zero(),
|
||||
);
|
||||
}
|
||||
|
||||
/// Copy strides dimensions from an ndarray.
|
||||
/// Panics if `ndims` mismatches.
|
||||
pub fn copy_strides_from_ndarray<G: CodeGenerator + ?Sized>(
|
||||
&self,
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
src_ndarray: NDArrayValue<'ctx>,
|
||||
) {
|
||||
assert_eq!(self.ndims, src_ndarray.ndims);
|
||||
let src_strides = src_ndarray.strides().base_ptr(ctx, generator);
|
||||
self.copy_strides_from_array(generator, ctx, src_strides);
|
||||
}
|
||||
|
||||
/// Get the `np.size()` of this ndarray.
|
||||
pub fn size<G: CodeGenerator + ?Sized>(
|
||||
&self,
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
) -> IntValue<'ctx> {
|
||||
irrt::ndarray::call_nac3_ndarray_size(generator, ctx, *self)
|
||||
}
|
||||
|
||||
/// Get the `ndarray.nbytes` of this ndarray.
|
||||
pub fn nbytes<G: CodeGenerator + ?Sized>(
|
||||
&self,
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
) -> IntValue<'ctx> {
|
||||
irrt::ndarray::call_nac3_ndarray_nbytes(generator, ctx, *self)
|
||||
}
|
||||
|
||||
/// Get the `len()` of this ndarray.
|
||||
pub fn len<G: CodeGenerator + ?Sized>(
|
||||
&self,
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
) -> IntValue<'ctx> {
|
||||
irrt::ndarray::call_nac3_ndarray_len(generator, ctx, *self)
|
||||
}
|
||||
|
||||
/// Check if this ndarray is C-contiguous.
|
||||
///
|
||||
/// See NumPy's `flags["C_CONTIGUOUS"]`: <https://numpy.org/doc/stable/reference/generated/numpy.ndarray.flags.html#numpy.ndarray.flags>
|
||||
pub fn is_c_contiguous<G: CodeGenerator + ?Sized>(
|
||||
&self,
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
) -> IntValue<'ctx> {
|
||||
irrt::ndarray::call_nac3_ndarray_is_c_contiguous(generator, ctx, *self)
|
||||
}
|
||||
|
||||
/// Call [`call_nac3_ndarray_set_strides_by_shape`] on this ndarray to update `strides`.
|
||||
///
|
||||
/// Update the ndarray's strides to make the ndarray contiguous.
|
||||
pub fn set_strides_contiguous<G: CodeGenerator + ?Sized>(
|
||||
&self,
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
) {
|
||||
irrt::ndarray::call_nac3_ndarray_set_strides_by_shape(generator, ctx, *self);
|
||||
}
|
||||
|
||||
/// Copy data from another ndarray.
|
||||
///
|
||||
/// This ndarray and `src` is that their `np.size()` should be the same. Their shapes
|
||||
/// do not matter. The copying order is determined by how their flattened views look.
|
||||
///
|
||||
/// Panics if the `dtype`s of ndarrays are different.
|
||||
pub fn copy_data_from<G: CodeGenerator + ?Sized>(
|
||||
&self,
|
||||
generator: &mut G,
|
||||
ctx: &mut CodeGenContext<'ctx, '_>,
|
||||
src: NDArrayValue<'ctx>,
|
||||
) {
|
||||
assert_eq!(self.dtype, src.dtype, "self and src dtype should match");
|
||||
irrt::ndarray::call_nac3_ndarray_copy_data(generator, ctx, src, *self);
|
||||
}
|
||||
}
|
||||
|
||||
impl<'ctx> ProxyValue<'ctx> for NDArrayValue<'ctx> {
|
||||
|
|
Loading…
Reference in New Issue