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cleanup
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parent
25ec057b2b
commit
44c2297d08
2 changed files with 3 additions and 201 deletions
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@ -21,8 +21,7 @@ use crate::llvm::convert::{
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get_fn_type, get_ptr_type, ptr_int,
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};
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use crate::llvm::refcounting::{
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decrement_refcount_layout, increment_refcount_layout, refcount_is_one_comparison,
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PointerToRefcount,
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decrement_refcount_layout, increment_refcount_layout, PointerToRefcount,
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};
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use bumpalo::collections::Vec;
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use bumpalo::Bump;
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@ -4579,45 +4578,6 @@ fn build_foreign_symbol<'a, 'ctx, 'env>(
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}
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}
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fn maybe_inplace_list<'a, 'ctx, 'env, InPlace, CloneFirst, Empty>(
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env: &Env<'a, 'ctx, 'env>,
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parent: FunctionValue<'ctx>,
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list_layout: &Layout<'a>,
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original_wrapper: StructValue<'ctx>,
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mut in_place: InPlace,
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clone: CloneFirst,
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mut empty: Empty,
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) -> BasicValueEnum<'ctx>
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where
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InPlace: FnMut() -> BasicValueEnum<'ctx>,
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CloneFirst: FnMut() -> BasicValueEnum<'ctx>,
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Empty: FnMut() -> BasicValueEnum<'ctx>,
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{
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match list_layout {
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Layout::Builtin(Builtin::List(MemoryMode::Unique, _)) => {
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// the layout tells us this List.set can be done in-place
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in_place()
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}
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Layout::Builtin(Builtin::List(MemoryMode::Refcounted, _)) => {
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// no static guarantees, but all is not lost: we can check the refcount
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// if it is one, we hold the final reference, and can mutate it in-place!
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let ret_type = basic_type_from_layout(env, list_layout);
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let refcount_ptr = PointerToRefcount::from_list_wrapper(env, original_wrapper);
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let refcount = refcount_ptr.get_refcount(env);
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let comparison = refcount_is_one_comparison(env, refcount);
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crate::llvm::build_list::build_basic_phi2(
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env, parent, comparison, in_place, clone, ret_type,
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)
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}
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Layout::Builtin(Builtin::EmptyList) => empty(),
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other => unreachable!("Attempting list operation on invalid layout {:?}", other),
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}
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}
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fn build_int_binop<'a, 'ctx, 'env>(
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env: &Env<'a, 'ctx, 'env>,
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parent: FunctionValue<'ctx>,
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@ -7,9 +7,7 @@ use crate::llvm::build::{
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allocate_with_refcount_help, cast_basic_basic, complex_bitcast, Env, InPlace,
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};
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use crate::llvm::convert::{basic_type_from_layout, get_ptr_type};
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use crate::llvm::refcounting::{
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increment_refcount_layout, refcount_is_one_comparison, PointerToRefcount,
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};
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use crate::llvm::refcounting::increment_refcount_layout;
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use inkwell::builder::Builder;
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use inkwell::context::Context;
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use inkwell::types::{BasicTypeEnum, PointerType};
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@ -322,6 +320,7 @@ pub fn list_append<'a, 'ctx, 'env>(
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)
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}
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/// List.set : List elem, Int, elem -> List elem
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pub fn list_set<'a, 'ctx, 'env>(
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env: &Env<'a, 'ctx, 'env>,
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layout_ids: &mut LayoutIds<'a>,
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@ -346,98 +345,6 @@ pub fn list_set<'a, 'ctx, 'env>(
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)
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}
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/// List.set : List elem, Int, elem -> List elem
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pub fn list_set_old<'a, 'ctx, 'env>(
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parent: FunctionValue<'ctx>,
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args: &[(BasicValueEnum<'ctx>, &'a Layout<'a>)],
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env: &Env<'a, 'ctx, 'env>,
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input_inplace: InPlace,
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output_inplace: InPlace,
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) -> BasicValueEnum<'ctx> {
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let builder = env.builder;
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debug_assert_eq!(args.len(), 3);
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let original_wrapper = args[0].0.into_struct_value();
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let elem_index = args[1].0.into_int_value();
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// Load the usize length from the wrapper. We need it for bounds checking.
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let list_len = list_len(builder, original_wrapper);
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// Bounds check: only proceed if index < length.
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// Otherwise, return the list unaltered.
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let comparison = bounds_check_comparison(builder, elem_index, list_len);
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// If the index is in bounds, clone and mutate in place.
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let build_then = || {
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let (elem, elem_layout) = args[2];
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let ctx = env.context;
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let elem_type = basic_type_from_layout(env, elem_layout);
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let ptr_type = get_ptr_type(&elem_type, AddressSpace::Generic);
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let (new_wrapper, array_data_ptr) = match input_inplace {
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InPlace::InPlace => (
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original_wrapper,
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load_list_ptr(builder, original_wrapper, ptr_type),
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),
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InPlace::Clone => {
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let list_ptr = load_list_ptr(builder, original_wrapper, ptr_type);
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let refcount_ptr = PointerToRefcount::from_ptr_to_data(env, list_ptr);
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let refcount = refcount_ptr.get_refcount(env);
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let rc_is_one = refcount_is_one_comparison(env, refcount);
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let source_block = env.builder.get_insert_block().unwrap();
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let clone_block = ctx.append_basic_block(parent, "clone");
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let done_block = ctx.append_basic_block(parent, "done");
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env.builder
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.build_conditional_branch(rc_is_one, done_block, clone_block);
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env.builder.position_at_end(clone_block);
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let cloned =
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clone_nonempty_list(env, output_inplace, list_len, list_ptr, elem_layout).0;
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env.builder.build_unconditional_branch(done_block);
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env.builder.position_at_end(done_block);
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let list_type = original_wrapper.get_type();
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let merged = env.builder.build_phi(list_type, "writable_list");
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merged.add_incoming(&[(&original_wrapper, source_block), (&cloned, clone_block)]);
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let result = merged.as_basic_value().into_struct_value();
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(result, load_list_ptr(builder, result, ptr_type))
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}
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};
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// If we got here, we passed the bounds check, so this is an in-bounds GEP
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let elem_ptr =
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unsafe { builder.build_in_bounds_gep(array_data_ptr, &[elem_index], "load_index") };
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// Mutate the new array in-place to change the element.
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builder.build_store(elem_ptr, elem);
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BasicValueEnum::StructValue(new_wrapper)
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};
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// If the index was out of bounds, return the original list unaltered.
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let build_else = || BasicValueEnum::StructValue(original_wrapper);
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let ret_type = original_wrapper.get_type();
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build_basic_phi2(
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env,
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parent,
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comparison,
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build_then,
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build_else,
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ret_type.into(),
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)
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}
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fn bounds_check_comparison<'ctx>(
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builder: &Builder<'ctx>,
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elem_index: IntValue<'ctx>,
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@ -1316,71 +1223,6 @@ pub fn load_list_ptr<'ctx>(
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cast_basic_basic(builder, generic_ptr.into(), ptr_type.into()).into_pointer_value()
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}
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fn clone_nonempty_list<'a, 'ctx, 'env>(
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env: &Env<'a, 'ctx, 'env>,
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inplace: InPlace,
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list_len: IntValue<'ctx>,
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elems_ptr: PointerValue<'ctx>,
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elem_layout: &Layout<'_>,
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) -> (StructValue<'ctx>, PointerValue<'ctx>) {
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let builder = env.builder;
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let ptr_bytes = env.ptr_bytes;
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// Calculate the number of bytes we'll need to allocate.
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let elem_bytes = env
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.ptr_int()
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.const_int(elem_layout.stack_size(env.ptr_bytes) as u64, false);
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let size = env
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.builder
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.build_int_mul(elem_bytes, list_len, "clone_mul_len_by_elem_bytes");
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// Allocate space for the new array that we'll copy into.
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let clone_ptr = allocate_list(env, inplace, elem_layout, list_len);
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// TODO check if malloc returned null; if so, runtime error for OOM!
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// Either memcpy or deep clone the array elements
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if elem_layout.safe_to_memcpy() {
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// Copy the bytes from the original array into the new
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// one we just malloc'd.
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//
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// TODO how do we decide when to do the small memcpy vs the normal one?
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builder
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.build_memcpy(clone_ptr, ptr_bytes, elems_ptr, ptr_bytes, size)
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.unwrap();
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} else {
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panic!("TODO Cranelift currently only knows how to clone list elements that are Copy.");
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}
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let struct_type = super::convert::zig_list_type(env);
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let mut struct_val;
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// Store the pointer
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struct_val = builder
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.build_insert_value(
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struct_type.get_undef(),
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pass_as_opaque(env, clone_ptr),
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Builtin::WRAPPER_PTR,
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"insert_ptr_clone_nonempty_list",
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)
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.unwrap();
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// Store the length
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struct_val = builder
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.build_insert_value(struct_val, list_len, Builtin::WRAPPER_LEN, "insert_len")
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.unwrap();
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let answer = builder
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.build_bitcast(
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struct_val.into_struct_value(),
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super::convert::zig_list_type(env),
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"cast_collection",
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)
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.into_struct_value();
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(answer, clone_ptr)
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}
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pub fn allocate_list<'a, 'ctx, 'env>(
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env: &Env<'a, 'ctx, 'env>,
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inplace: InPlace,
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