forked from M-Labs/nac3
core: Add name parameter to gen_{var_alloc,store_target}
This allows variables in the IR to be assigned a custom name as opposed to names with a default prefix.
This commit is contained in:
parent
049908044a
commit
ff23968544
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@ -84,7 +84,7 @@ impl<'b> CodeGenerator for ArtiqCodeGenerator<'b> {
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.try_as_basic_value()
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.left()
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.unwrap();
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let end_store = self.gen_store_target(ctx, &end)?;
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let end_store = self.gen_store_target(ctx, &end, None)?;
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ctx.builder.build_store(end_store, max);
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}
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if let Some(start) = self.start.clone() {
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@ -140,7 +140,7 @@ impl<'b> CodeGenerator for ArtiqCodeGenerator<'b> {
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node: ExprKind::Name { id: start, ctx: name_ctx.clone() },
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custom: Some(ctx.primitives.int64),
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};
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let start = self.gen_store_target(ctx, &start_expr)?;
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let start = self.gen_store_target(ctx, &start_expr, None)?;
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ctx.builder.build_store(start, now);
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Ok(Some(start_expr)) as Result<_, String>
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},
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@ -153,7 +153,7 @@ impl<'b> CodeGenerator for ArtiqCodeGenerator<'b> {
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node: ExprKind::Name { id: end, ctx: name_ctx.clone() },
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custom: Some(ctx.primitives.int64),
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};
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let end = self.gen_store_target(ctx, &end_expr)?;
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let end = self.gen_store_target(ctx, &end_expr, None)?;
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ctx.builder.build_store(end, now);
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self.end = Some(end_expr);
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self.name_counter += 1;
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@ -204,7 +204,7 @@ impl<'b> CodeGenerator for ArtiqCodeGenerator<'b> {
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.try_as_basic_value()
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.left()
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.unwrap();
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let outer_end = self.gen_store_target(ctx, old_end)?;
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let outer_end = self.gen_store_target(ctx, old_end, None)?;
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ctx.builder.build_store(outer_end, max);
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}
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self.start = old_start;
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@ -810,7 +810,7 @@ pub fn gen_comprehension<'ctx, 'a, G: CodeGenerator>(
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let zero_size_t = size_t.const_zero();
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let zero_32 = int32.const_zero();
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let index = generator.gen_var_alloc(ctx, size_t.into())?;
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let index = generator.gen_var_alloc(ctx, size_t.into(), None)?;
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ctx.builder.build_store(index, zero_size_t);
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let elem_ty = ctx.get_llvm_type(generator, elt.custom.unwrap());
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@ -853,7 +853,7 @@ pub fn gen_comprehension<'ctx, 'a, G: CodeGenerator>(
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list_content =
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ctx.build_gep_and_load(list, &[zero_size_t, zero_32]).into_pointer_value();
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let i = generator.gen_store_target(ctx, target)?;
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let i = generator.gen_store_target(ctx, target, None)?;
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ctx.builder.build_store(i, ctx.builder.build_int_sub(start, step, "start_init"));
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ctx.builder.build_unconditional_branch(test_bb);
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ctx.builder.position_at_end(test_bb);
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@ -888,7 +888,7 @@ pub fn gen_comprehension<'ctx, 'a, G: CodeGenerator>(
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list = allocate_list(generator, ctx, elem_ty, length);
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list_content =
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ctx.build_gep_and_load(list, &[zero_size_t, zero_32]).into_pointer_value();
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let counter = generator.gen_var_alloc(ctx, size_t.into())?;
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let counter = generator.gen_var_alloc(ctx, size_t.into(), None)?;
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// counter = -1
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ctx.builder.build_store(counter, size_t.const_int(u64::max_value(), true));
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ctx.builder.build_unconditional_branch(test_bb);
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@ -87,8 +87,9 @@ pub trait CodeGenerator {
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&mut self,
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ctx: &mut CodeGenContext<'ctx, 'a>,
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ty: BasicTypeEnum<'ctx>,
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name: Option<&str>,
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) -> Result<PointerValue<'ctx>, String> {
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gen_var(ctx, ty)
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gen_var(ctx, ty, name)
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}
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/// Return a pointer pointing to the target of the expression.
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@ -96,11 +97,12 @@ pub trait CodeGenerator {
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&mut self,
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ctx: &mut CodeGenContext<'ctx, 'a>,
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pattern: &Expr<Option<Type>>,
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name: Option<&str>,
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) -> Result<PointerValue<'ctx>, String>
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where
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Self: Sized,
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{
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gen_store_target(self, ctx, pattern)
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gen_store_target(self, ctx, pattern, name)
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}
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/// Generate code for an assignment expression.
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@ -24,12 +24,13 @@ use std::convert::TryFrom;
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pub fn gen_var<'ctx, 'a>(
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ctx: &mut CodeGenContext<'ctx, 'a>,
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ty: BasicTypeEnum<'ctx>,
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name: Option<&str>,
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) -> Result<PointerValue<'ctx>, String> {
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// put the alloca in init block
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let current = ctx.builder.get_insert_block().unwrap();
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// position before the last branching instruction...
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ctx.builder.position_before(&ctx.init_bb.get_last_instruction().unwrap());
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let ptr = ctx.builder.build_alloca(ty, "tmp");
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let ptr = ctx.builder.build_alloca(ty, name.unwrap_or("tmp"));
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ctx.builder.position_at_end(current);
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Ok(ptr)
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}
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@ -38,6 +39,7 @@ pub fn gen_store_target<'ctx, 'a, G: CodeGenerator>(
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generator: &mut G,
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ctx: &mut CodeGenContext<'ctx, 'a>,
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pattern: &Expr<Option<Type>>,
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name: Option<&str>,
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) -> Result<PointerValue<'ctx>, String> {
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// very similar to gen_expr, but we don't do an extra load at the end
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// and we flatten nested tuples
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@ -45,7 +47,7 @@ pub fn gen_store_target<'ctx, 'a, G: CodeGenerator>(
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ExprKind::Name { id, .. } => match ctx.var_assignment.get(id) {
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None => {
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let ptr_ty = ctx.get_llvm_type(generator, pattern.custom.unwrap());
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let ptr = generator.gen_var_alloc(ctx, ptr_ty)?;
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let ptr = generator.gen_var_alloc(ctx, ptr_ty, name)?;
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ctx.var_assignment.insert(*id, (ptr, None, 0));
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ptr
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}
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@ -74,7 +76,7 @@ pub fn gen_store_target<'ctx, 'a, G: CodeGenerator>(
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ctx.ctx.i32_type().const_zero(),
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ctx.ctx.i32_type().const_int(index as u64, false),
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],
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"attr",
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name.unwrap_or("attr"),
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)
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}
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}
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@ -135,7 +137,7 @@ pub fn gen_store_target<'ctx, 'a, G: CodeGenerator>(
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let arr_ptr = ctx
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.build_gep_and_load(v, &[i32_type.const_zero(), i32_type.const_zero()])
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.into_pointer_value();
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ctx.builder.build_gep(arr_ptr, &[index], "loadarrgep")
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ctx.builder.build_gep(arr_ptr, &[index], name.unwrap_or("loadarrgep"))
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}
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}
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_ => unreachable!(),
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@ -191,7 +193,7 @@ pub fn gen_assign<'ctx, 'a, G: CodeGenerator>(
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}
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}
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_ => {
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let ptr = generator.gen_store_target(ctx, target)?;
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let ptr = generator.gen_store_target(ctx, target, None)?;
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if let ExprKind::Name { id, .. } = &target.node {
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let (_, static_value, counter) = ctx.var_assignment.get_mut(id).unwrap();
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*counter += 1;
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@ -237,8 +239,8 @@ pub fn gen_for<'ctx, 'a, G: CodeGenerator>(
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if ctx.unifier.unioned(iter.custom.unwrap(), ctx.primitives.range) {
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// setup
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let iter_val = iter_val.into_pointer_value();
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let i = generator.gen_var_alloc(ctx, int32.into())?;
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let user_i = generator.gen_store_target(ctx, target)?;
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let i = generator.gen_var_alloc(ctx, int32.into(), None)?;
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let user_i = generator.gen_store_target(ctx, target, None)?;
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let (start, end, step) = destructure_range(ctx, iter_val);
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ctx.builder.build_store(i, ctx.builder.build_int_sub(start, step, "start_init"));
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ctx.builder.build_unconditional_branch(test_bb);
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@ -270,7 +272,7 @@ pub fn gen_for<'ctx, 'a, G: CodeGenerator>(
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);
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ctx.builder.position_at_end(body_bb);
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} else {
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let counter = generator.gen_var_alloc(ctx, size_t.into())?;
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let counter = generator.gen_var_alloc(ctx, size_t.into(), None)?;
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// counter = -1
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ctx.builder.build_store(counter, size_t.const_int(u64::max_value(), true));
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let len = ctx
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@ -655,7 +657,7 @@ pub fn gen_try<'ctx, 'a, G: CodeGenerator>(
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let mut final_data = None;
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let has_cleanup = !finalbody.is_empty();
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if has_cleanup {
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let final_state = generator.gen_var_alloc(ctx, ptr_type.into())?;
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let final_state = generator.gen_var_alloc(ctx, ptr_type.into(), None)?;
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final_data = Some((final_state, Vec::new(), Vec::new()));
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if let Some((continue_target, break_target)) = ctx.loop_target {
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let break_proxy = ctx.ctx.append_basic_block(current_fun, "try.break");
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@ -821,7 +823,7 @@ pub fn gen_try<'ctx, 'a, G: CodeGenerator>(
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ctx.builder.position_at_end(handler_bb);
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if let Some(name) = name {
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let exn_ty = ctx.get_llvm_type(generator, type_.as_ref().unwrap().custom.unwrap());
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let exn_store = generator.gen_var_alloc(ctx, exn_ty)?;
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let exn_store = generator.gen_var_alloc(ctx, exn_ty, None)?;
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ctx.var_assignment.insert(*name, (exn_store, None, 0));
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ctx.builder.build_store(exn_store, exn.as_basic_value());
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}
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