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cairo_lang_lowering/lower/
mod.rs

1use cairo_lang_debug::DebugWithDb;
2use cairo_lang_defs as defs;
3use cairo_lang_defs::diagnostic_utils::StableLocation;
4use cairo_lang_diagnostics::{Diagnostics, Maybe};
5use cairo_lang_filesystem::ids::SmolStrId;
6use cairo_lang_semantic as semantic;
7use cairo_lang_semantic::corelib::{
8    CorelibSemantic, ErrorPropagationType, bounded_int_ty, get_enum_concrete_variant,
9    try_get_ty_by_name, unwrap_error_propagation_type,
10};
11use cairo_lang_semantic::expr::compute::unwrap_pattern_type;
12use cairo_lang_semantic::items::constant::ConstValueId;
13use cairo_lang_semantic::items::function_with_body::FunctionWithBodySemantic;
14use cairo_lang_semantic::items::functions::{
15    FunctionsSemantic, GenericFunctionId, ImplGenericFunctionId,
16};
17use cairo_lang_semantic::items::imp::ImplLongId;
18use cairo_lang_semantic::items::structure::StructSemantic;
19use cairo_lang_semantic::items::trt::TraitSemantic;
20use cairo_lang_semantic::usage::MemberPath;
21use cairo_lang_semantic::{
22    ConcreteFunction, ConcreteTraitLongId, ExprVar, LocalVariable, VarId, corelib,
23};
24use cairo_lang_syntax::node::TypedStablePtr;
25use cairo_lang_syntax::node::ids::SyntaxStablePtrId;
26use cairo_lang_utils::ordered_hash_map::OrderedHashMap;
27use cairo_lang_utils::unordered_hash_map::{Entry, UnorderedHashMap};
28use cairo_lang_utils::{Intern, extract_matches};
29use context::handle_lowering_flow_error;
30use defs::ids::TopLevelLanguageElementId;
31use flow_control::create_graph::{
32    create_graph_expr_if, create_graph_expr_match, create_graph_expr_while_let,
33};
34use flow_control::lower_graph::lower_graph;
35use itertools::{Itertools, chain, izip, zip_eq};
36use num_bigint::{BigInt, Sign};
37use num_traits::ToPrimitive;
38use refs::ClosureInfo;
39use salsa::Database;
40use semantic::corelib::{
41    core_submodule, get_core_function_id, get_core_ty_by_name, get_function_id, never_ty, unit_ty,
42};
43use semantic::items::constant::ConstValue;
44use semantic::types::wrap_in_snapshots;
45use semantic::{
46    ExprFunctionCallArg, ExprId, ExprPropagateError, ExprVarMemberPath, GenericArgumentId,
47    MatchArmSelector, SemanticDiagnostic, TypeLongId,
48};
49
50use self::block_builder::{BlockBuilder, SealedBlockBuilder, SealedGotoCallsite};
51use self::context::{
52    EncapsulatingLoweringContext, LoweredExpr, LoweredExprExternEnum, LoweringContext,
53    LoweringFlowError,
54};
55use self::external::{extern_facade_expr, extern_facade_return_tys};
56use self::logical_op::lower_logical_op;
57use crate::blocks::Blocks;
58use crate::diagnostic::LoweringDiagnosticKind::*;
59use crate::diagnostic::LoweringDiagnosticsBuilder;
60use crate::ids::{
61    EnrichedSemanticSignature, FunctionLongId, FunctionWithBodyId, FunctionWithBodyLongId,
62    GeneratedFunction, GeneratedFunctionKey, LocationId, SemanticFunctionIdEx,
63    parameter_as_member_path,
64};
65use crate::lower::context::{LoopContext, LoopEarlyReturnInfo, LoweringResult, RefArg, VarRequest};
66use crate::lower::generators::StructDestructure;
67use crate::{
68    BlockId, Lowered, MatchArm, MatchEnumInfo, MatchExternInfo, MatchInfo, VarUsage, VariableId,
69};
70
71mod block_builder;
72pub mod context;
73mod external;
74mod flow_control;
75pub mod generators;
76mod logical_op;
77mod lower_let_else;
78pub mod refs;
79
80#[cfg(test)]
81mod test_utils;
82
83#[cfg(test)]
84mod block_builder_test;
85
86#[cfg(test)]
87mod generated_test;
88
89#[cfg(test)]
90mod specialized_test;
91
92/// Lowering of a function together with extra generated functions.
93#[derive(Clone, Debug, PartialEq, Eq, salsa::Update)]
94pub struct MultiLowering<'db> {
95    pub main_lowering: Lowered<'db>,
96    pub generated_lowerings: OrderedHashMap<GeneratedFunctionKey<'db>, Lowered<'db>>,
97}
98
99/// Lowers a semantic free function.
100pub fn lower_semantic_function<'db>(
101    db: &'db dyn Database,
102    semantic_function_id: defs::ids::FunctionWithBodyId<'db>,
103) -> Maybe<MultiLowering<'db>> {
104    let declaration_diagnostics = db.function_declaration_diagnostics(semantic_function_id);
105    check_error_free_or_warn(db, declaration_diagnostics, semantic_function_id, "declaration")?;
106    let body_diagnostics = db.function_body_diagnostics(semantic_function_id);
107    check_error_free_or_warn(db, body_diagnostics, semantic_function_id, "body")?;
108
109    let mut encapsulating_ctx = EncapsulatingLoweringContext::new(db, semantic_function_id)?;
110    let function_id = FunctionWithBodyLongId::Semantic(semantic_function_id).intern(db);
111    let signature = db.function_with_body_signature(semantic_function_id)?;
112
113    // TODO(spapini): Build semantic_defs in semantic model.
114    for semantic_var in &signature.params {
115        encapsulating_ctx.semantic_defs.insert(
116            semantic::VarId::Param(semantic_var.id),
117            semantic::Binding::Param(semantic_var.clone()),
118        );
119    }
120
121    let block_expr_id = encapsulating_ctx.function_body.body_expr;
122    let main_lowering = lower_function(
123        &mut encapsulating_ctx,
124        function_id,
125        EnrichedSemanticSignature::from_semantic(db, signature),
126        block_expr_id,
127    )?;
128    Ok(MultiLowering { main_lowering, generated_lowerings: encapsulating_ctx.lowerings })
129}
130
131/// Lowers a function into [Lowered].
132pub fn lower_function<'db>(
133    encapsulating_ctx: &mut EncapsulatingLoweringContext<'db>,
134    function_id: FunctionWithBodyId<'db>,
135    signature: EnrichedSemanticSignature<'db>,
136    block_expr_id: semantic::ExprId,
137) -> Maybe<Lowered<'db>> {
138    log::trace!("Lowering a free function.");
139    let return_type = signature.return_type;
140    let mut ctx = LoweringContext::new(encapsulating_ctx, function_id, signature, return_type)?;
141
142    // Fetch body block expr.
143    let semantic_block =
144        extract_matches!(&ctx.function_body.arenas.exprs[block_expr_id], semantic::Expr::Block)
145            .clone();
146
147    // Initialize builder.
148    let root_block_id = alloc_empty_block(&mut ctx);
149    let mut builder = BlockBuilder::root(root_block_id);
150
151    let parameters = ctx
152        .signature
153        .params
154        .clone()
155        .into_iter()
156        .map(|param| {
157            let location = ctx.get_location(param.stable_ptr().untyped());
158            let var = ctx.new_var(VarRequest { ty: param.ty(), location });
159            // TODO(spapini): Introduce member paths, not just base variables.
160            let param_var = extract_matches!(param, ExprVarMemberPath::Var);
161            builder.put_semantic(param_var.var, var);
162            var
163        })
164        .collect_vec();
165
166    let root_ok = {
167        let maybe_sealed_block = lower_block(&mut ctx, builder, &semantic_block);
168        maybe_sealed_block.and_then(|block_sealed| {
169            wrap_sealed_block_as_function(
170                &mut ctx,
171                block_sealed,
172                semantic_block.stable_ptr.untyped(),
173            )?;
174            Ok(root_block_id)
175        })
176    };
177    let blocks = root_ok
178        .map(|_| ctx.blocks.build().expect("Root block must exist."))
179        .unwrap_or_else(Blocks::new_errored);
180    Ok(Lowered {
181        diagnostics: ctx.diagnostics.build(),
182        variables: ctx.variables.variables,
183        blocks,
184        signature: ctx.signature.into(),
185        parameters,
186    })
187}
188
189/// Lowers an expression of type [semantic::ExprFor].
190pub fn lower_for_loop<'db, 'mt>(
191    ctx: &mut LoweringContext<'db, 'mt>,
192    builder: &mut BlockBuilder<'db>,
193    loop_expr: semantic::ExprFor<'db>,
194    loop_expr_id: semantic::ExprId,
195) -> LoweringResult<'db, LoweredExpr<'db>> {
196    let db = ctx.db;
197    let for_location = ctx.get_location(loop_expr.stable_ptr.untyped());
198    let next_semantic_signature =
199        db.concrete_function_signature(loop_expr.next_function_id).unwrap();
200    let into_iter = builder.get_ref(ctx, &loop_expr.into_iter_member_path).unwrap();
201    let next_call = generators::Call {
202        function: loop_expr.next_function_id.lowered(db),
203        inputs: vec![into_iter],
204        coupon_input: None,
205        extra_ret_tys: vec![next_semantic_signature.params.first().unwrap().ty],
206        ret_tys: vec![next_semantic_signature.return_type],
207        location: for_location,
208    }
209    .add(ctx, &mut builder.statements);
210    let next_iterator = next_call.extra_outputs.first().unwrap();
211    let next_value = next_call.returns.first().unwrap();
212    let ErrorPropagationType::Option { some_variant, none_variant } =
213        unwrap_error_propagation_type(db, ctx.variables[next_value.var_id].ty)
214            .expect("Expected Option type for next function return.")
215    else {
216        unreachable!("Return type for next function must be Option.")
217    };
218    let next_value_type = some_variant.ty;
219    builder.update_ref(ctx, &loop_expr.into_iter_member_path, next_iterator.var_id);
220    let unit_ty = corelib::unit_ty(db);
221    let some_block: cairo_lang_semantic::ExprBlock<'_> =
222        extract_matches!(&ctx.function_body.arenas.exprs[loop_expr.body], semantic::Expr::Block)
223            .clone();
224    let mut some_subscope = create_subscope(ctx, builder);
225    let some_subscope_block_id = some_subscope.block_id;
226    let some_var_id = ctx.new_var(VarRequest {
227        ty: next_value_type,
228        location: ctx.get_location(some_block.stable_ptr.untyped()),
229    });
230    let variant_expr = LoweredExpr::AtVariable(VarUsage {
231        var_id: some_var_id,
232        location: ctx.get_location(some_block.stable_ptr.untyped()),
233    });
234    let lowered_pattern =
235        lower_single_pattern(ctx, &mut some_subscope, loop_expr.pattern, variant_expr);
236    let sealed_some = match lowered_pattern {
237        Ok(_) => {
238            let block_expr = (|| {
239                lower_expr_block(ctx, &mut some_subscope, &some_block)?;
240                recursively_call_loop_func(
241                    ctx,
242                    &mut some_subscope,
243                    loop_expr_id,
244                    loop_expr.stable_ptr.untyped(),
245                )
246            })();
247            lowered_expr_to_block_scope_end(ctx, some_subscope, block_expr)
248        }
249        Err(err) => handle_lowering_flow_error(ctx, some_subscope.clone(), err).map(|_| None),
250    }
251    .map_err(LoweringFlowError::Failed)?;
252
253    let none_subscope = create_subscope(ctx, builder);
254    let none_var_id = ctx.new_var(VarRequest {
255        ty: unit_ty,
256        location: ctx.get_location(some_block.stable_ptr.untyped()),
257    });
258    let none_subscope_block_id = none_subscope.block_id;
259    let sealed_none = return_a_unit(ctx, none_subscope, for_location, false)?;
260
261    let match_info = MatchInfo::Enum(MatchEnumInfo {
262        concrete_enum_id: some_variant.concrete_enum_id,
263        input: *next_value,
264        arms: vec![
265            MatchArm {
266                arm_selector: MatchArmSelector::VariantId(some_variant),
267                block_id: some_subscope_block_id,
268                var_ids: vec![some_var_id],
269            },
270            MatchArm {
271                arm_selector: MatchArmSelector::VariantId(none_variant),
272                block_id: none_subscope_block_id,
273                var_ids: vec![none_var_id],
274            },
275        ],
276        location: for_location,
277    });
278    builder.merge_and_end_with_match(ctx, match_info, vec![sealed_some, sealed_none], for_location)
279}
280
281/// Lowers an expression of type [semantic::ExprWhile].
282pub fn lower_while_loop<'db>(
283    ctx: &mut LoweringContext<'db, '_>,
284    builder: &mut BlockBuilder<'db>,
285    loop_expr: semantic::ExprWhile<'db>,
286    loop_expr_id: semantic::ExprId,
287) -> LoweringResult<'db, LoweredExpr<'db>> {
288    let while_location = ctx.get_location(loop_expr.stable_ptr.untyped());
289    let semantic_condition = match &loop_expr.condition {
290        semantic::Condition::BoolExpr(semantic_condition) => *semantic_condition,
291        semantic::Condition::Let(match_expr, patterns) => {
292            return (|| {
293                let ret_var = lower_expr_while_let(
294                    ctx,
295                    builder,
296                    &loop_expr,
297                    *match_expr,
298                    patterns,
299                    loop_expr_id,
300                    loop_expr.stable_ptr.untyped(),
301                )?
302                .as_var_usage(ctx, builder)?;
303
304                lower_return(ctx, builder, ret_var, while_location, false)
305            })();
306        }
307    };
308    let condition = lower_expr_to_var_usage(ctx, builder, semantic_condition)?;
309    let db = ctx.db;
310    let unit_ty = corelib::unit_ty(db);
311
312    // Main block.
313    let mut subscope_main = create_subscope(ctx, builder);
314    let block_main_id = subscope_main.block_id;
315    let main_block =
316        extract_matches!(&ctx.function_body.arenas.exprs[loop_expr.body], semantic::Expr::Block)
317            .clone();
318    let main_block_var_id = ctx.new_var(VarRequest {
319        ty: unit_ty,
320        location: ctx.get_location(main_block.stable_ptr.untyped()),
321    });
322
323    let block_expr = (|| {
324        lower_expr_block(ctx, &mut subscope_main, &main_block)?;
325        recursively_call_loop_func(
326            ctx,
327            &mut subscope_main,
328            loop_expr_id,
329            loop_expr.stable_ptr.untyped(),
330        )
331    })();
332    let block_main = lowered_expr_to_block_scope_end(ctx, subscope_main, block_expr)
333        .map_err(LoweringFlowError::Failed)?;
334
335    // Empty else block.
336    let subscope_else = create_subscope(ctx, builder);
337    let block_else_id = subscope_else.block_id;
338    let else_block_input_var_id = ctx.new_var(VarRequest { ty: unit_ty, location: while_location });
339    let block_else = return_a_unit(ctx, subscope_else, while_location, false)?;
340
341    let match_info = MatchInfo::Enum(MatchEnumInfo {
342        concrete_enum_id: corelib::core_bool_enum(db),
343        input: condition,
344        arms: vec![
345            MatchArm {
346                arm_selector: MatchArmSelector::VariantId(corelib::false_variant(db)),
347                block_id: block_else_id,
348                var_ids: vec![else_block_input_var_id],
349            },
350            MatchArm {
351                arm_selector: MatchArmSelector::VariantId(corelib::true_variant(db)),
352                block_id: block_main_id,
353                var_ids: vec![main_block_var_id],
354            },
355        ],
356        location: while_location,
357    });
358    builder.merge_and_end_with_match(ctx, match_info, vec![block_main, block_else], while_location)
359}
360
361/// Lowers an expression of type if where the condition is of type [semantic::Condition::Let].
362pub fn lower_expr_while_let<'db>(
363    ctx: &mut LoweringContext<'db, '_>,
364    builder: &mut BlockBuilder<'db>,
365    loop_expr: &semantic::ExprWhile<'db>,
366    matched_expr: semantic::ExprId,
367    patterns: &[semantic::PatternId],
368    loop_expr_id: semantic::ExprId,
369    loop_stable_ptr: SyntaxStablePtrId<'db>,
370) -> LoweringResult<'db, LoweredExpr<'db>> {
371    log::trace!("Lowering a match expression: {:?}", loop_expr.debug(&ctx.expr_formatter));
372    let location = ctx.get_location(loop_expr.stable_ptr.untyped());
373
374    let graph = create_graph_expr_while_let(
375        ctx,
376        patterns,
377        matched_expr,
378        loop_expr.body,
379        loop_expr_id,
380        loop_stable_ptr,
381    );
382    lower_graph(ctx, builder, &graph, location)
383}
384
385/// Lowers a loop inner function into [Lowered].
386/// Similar to `lower_function`, but adds a recursive call.
387// TODO(spapini): Unite with `lower_function`.
388pub fn lower_loop_function<'db>(
389    encapsulating_ctx: &mut EncapsulatingLoweringContext<'db>,
390    function_id: FunctionWithBodyId<'db>,
391    loop_signature: EnrichedSemanticSignature<'db>,
392    loop_ctx: LoopContext<'db>,
393    return_type: semantic::TypeId<'db>,
394) -> Maybe<Lowered<'db>> {
395    let loop_expr_id = loop_ctx.loop_expr_id;
396    let mut ctx =
397        LoweringContext::new(encapsulating_ctx, function_id, loop_signature, return_type)?;
398    let old_loop_ctx = ctx.current_loop_ctx.replace(loop_ctx);
399
400    // Initialize builder.
401    let root_block_id = alloc_empty_block(&mut ctx);
402    let mut builder = BlockBuilder::root(root_block_id);
403
404    let snapped_params = ctx.usages.usages[&loop_expr_id].snap_usage.clone();
405    let parameters = ctx
406        .signature
407        .params
408        .clone()
409        .into_iter()
410        .map(|param| {
411            let location = ctx.get_location(param.stable_ptr().untyped());
412            let var = ctx.new_var(VarRequest { ty: param.ty(), location });
413            if snapped_params.contains_key::<MemberPath<'_>>(&(&param).into()) {
414                ctx.snapped_semantics.insert((&param).into(), var);
415            } else {
416                builder.introduce((&param).into(), var);
417            }
418            var
419        })
420        .collect_vec();
421
422    let root_ok = (|| {
423        let (block_expr, stable_ptr) = match ctx.function_body.arenas.exprs[loop_expr_id].clone() {
424            semantic::Expr::Loop(semantic::ExprLoop { body, stable_ptr, .. }) => {
425                // Fetch body block expr.
426                let semantic_block =
427                    extract_matches!(&ctx.function_body.arenas.exprs[body], semantic::Expr::Block)
428                        .clone();
429
430                let block_expr = (|| {
431                    lower_expr_block(&mut ctx, &mut builder, &semantic_block)?;
432                    recursively_call_loop_func(
433                        &mut ctx,
434                        &mut builder,
435                        loop_expr_id,
436                        stable_ptr.untyped(),
437                    )
438                })();
439                (block_expr, stable_ptr)
440            }
441
442            semantic::Expr::While(while_expr) => {
443                let stable_ptr = while_expr.stable_ptr;
444                let location = ctx.get_location(stable_ptr.untyped());
445                let block_expr = (|| {
446                    let ret_var =
447                        lower_while_loop(&mut ctx, &mut builder, while_expr, loop_expr_id)?
448                            .as_var_usage(&mut ctx, &mut builder)?;
449
450                    lower_return(&mut ctx, &mut builder, ret_var, location, false)
451                })();
452                (block_expr, stable_ptr)
453            }
454
455            semantic::Expr::For(for_expr) => {
456                let stable_ptr: cairo_lang_syntax::node::ast::ExprPtr<'_> = for_expr.stable_ptr;
457                let block_expr: Result<LoweredExpr<'_>, LoweringFlowError<'_>> =
458                    lower_for_loop(&mut ctx, &mut builder, for_expr, loop_expr_id);
459                (block_expr, stable_ptr)
460            }
461            _ => unreachable!("Loop expression must be either loop, while or for."),
462        };
463
464        let ctx_ref = &mut ctx;
465        let block_sealed = lowered_expr_to_block_scope_end(ctx_ref, builder, block_expr)?;
466        wrap_sealed_block_as_function(ctx_ref, block_sealed, stable_ptr.untyped())?;
467
468        Ok(root_block_id)
469    })();
470    ctx.current_loop_ctx = old_loop_ctx;
471
472    let blocks = root_ok
473        .map(|_| ctx.blocks.build().expect("Root block must exist."))
474        .unwrap_or_else(Blocks::new_errored);
475    Ok(Lowered {
476        diagnostics: ctx.diagnostics.build(),
477        variables: ctx.variables.variables,
478        blocks,
479        signature: ctx.signature.into(),
480        parameters,
481    })
482}
483
484/// Wraps `block_sealed` as the root block of a function.
485fn wrap_sealed_block_as_function<'db>(
486    ctx: &mut LoweringContext<'db, '_>,
487    block_sealed: SealedBlockBuilder<'db>,
488    stable_ptr: SyntaxStablePtrId<'db>,
489) -> Maybe<()> {
490    let Some(SealedGotoCallsite { mut builder, expr }) = block_sealed else {
491        return Ok(());
492    };
493    let location = ctx.get_location(stable_ptr);
494    match &expr {
495        Some(expr) if ctx.variables[expr.var_id].ty == never_ty(ctx.db) => {
496            // If the expression is of type never, then the block is unreachable, so add a match on
497            // never to make it a viable block end.
498            let semantic::TypeLongId::Concrete(semantic::ConcreteTypeId::Enum(concrete_enum_id)) =
499                ctx.variables[expr.var_id].ty.long(ctx.db)
500            else {
501                unreachable!("Never type must be a concrete enum.");
502            };
503            builder.unreachable_match(
504                ctx,
505                MatchInfo::Enum(MatchEnumInfo {
506                    concrete_enum_id: *concrete_enum_id,
507                    input: *expr,
508                    arms: vec![],
509                    location,
510                }),
511            );
512            Ok(())
513        }
514        _ => {
515            // Convert to a return.
516            let var_usage = expr.unwrap_or_else(|| {
517                generators::StructConstruct { inputs: vec![], ty: unit_ty(ctx.db), location }
518                    .add(ctx, &mut builder.statements)
519            });
520            builder.ret(ctx, var_usage, location)
521        }
522    }
523}
524
525/// Lowers a semantic block.
526fn lower_block<'db, 'mt>(
527    ctx: &mut LoweringContext<'db, 'mt>,
528    mut builder: BlockBuilder<'db>,
529    semantic_block: &semantic::ExprBlock<'db>,
530) -> Maybe<SealedBlockBuilder<'db>> {
531    let block_expr = lower_expr_block(ctx, &mut builder, semantic_block);
532    lowered_expr_to_block_scope_end(ctx, builder, block_expr)
533}
534
535/// Lowers a semantic block.
536fn lower_expr_block<'db, 'mt>(
537    ctx: &mut LoweringContext<'db, 'mt>,
538    builder: &mut BlockBuilder<'db>,
539    expr_block: &semantic::ExprBlock<'db>,
540) -> LoweringResult<'db, LoweredExpr<'db>> {
541    log::trace!("Lowering a block.");
542    for (i, stmt_id) in expr_block.statements.iter().enumerate() {
543        let stmt = ctx.function_body.arenas.statements[*stmt_id].clone();
544        let Err(err) = lower_statement(ctx, builder, &stmt) else {
545            continue;
546        };
547        if err.is_unreachable() {
548            let stmt_ptr = |id| ctx.function_body.arenas.statements[id].stable_ptr().untyped();
549            let tail_ptr =
550                expr_block.tail.map(|id| ctx.function_body.arenas.exprs[id].stable_ptr().untyped());
551            // If flow is not reachable anymore, no need to continue emitting statements.
552            if let Some(start_ptr) =
553                expr_block.statements.get(i + 1).copied().map(stmt_ptr).or(tail_ptr)
554            {
555                let end_ptr = tail_ptr
556                    .or_else(|| expr_block.statements.last().copied().map(stmt_ptr))
557                    .unwrap();
558                // Emit diagnostic for the rest of the block with unreachable.
559                ctx.diagnostics.report(start_ptr, Unreachable { block_end_ptr: end_ptr });
560            }
561        }
562        return Err(err);
563    }
564    // Determine correct block end.
565    let location = ctx.get_location(expr_block.stable_ptr.untyped());
566    expr_block
567        .tail
568        .map(|expr| lower_expr(ctx, builder, expr))
569        .unwrap_or_else(|| Ok(LoweredExpr::Tuple { exprs: vec![], location }))
570}
571
572/// Lowers an expression that is either a complete block, or the end (tail expression) of a
573/// block.
574pub fn lower_tail_expr<'db>(
575    ctx: &mut LoweringContext<'db, '_>,
576    mut builder: BlockBuilder<'db>,
577    expr: semantic::ExprId,
578) -> Maybe<SealedBlockBuilder<'db>> {
579    log::trace!("Lowering a tail expression.");
580    let lowered_expr = lower_expr(ctx, &mut builder, expr);
581    lowered_expr_to_block_scope_end(ctx, builder, lowered_expr)
582}
583
584/// Converts [`LoweringResult<'db, LoweredExpr<'db>>`] into `BlockScopeEnd`.
585pub fn lowered_expr_to_block_scope_end<'db>(
586    ctx: &mut LoweringContext<'db, '_>,
587    mut builder: BlockBuilder<'db>,
588    lowered_expr: LoweringResult<'db, LoweredExpr<'db>>,
589) -> Maybe<SealedBlockBuilder<'db>> {
590    Ok(match lowered_expr {
591        Ok(LoweredExpr::Tuple { exprs, .. }) if exprs.is_empty() => builder.goto_callsite(None),
592        Ok(lowered_expr) => match lowered_expr.as_var_usage(ctx, &mut builder) {
593            Ok(var) => builder.goto_callsite(Some(var)),
594            Err(err) => handle_lowering_flow_error(ctx, builder, err).map(|_| None)?,
595        },
596        Err(err) => handle_lowering_flow_error(ctx, builder, err).map(|_| None)?,
597    })
598}
599
600/// Generates the lowering for a return `ret_expr`
601/// in the case where we are inside a loop `is_early_return` indicates if this is a normal return
602/// or an early return.
603pub fn lower_return<'db>(
604    ctx: &mut LoweringContext<'db, '_>,
605    builder: &mut BlockBuilder<'db>,
606    mut ret_var: VarUsage<'db>,
607    location: LocationId<'db>,
608    is_early_return: bool,
609) -> LoweringResult<'db, LoweredExpr<'db>> {
610    if let Some(LoopContext {
611        early_return_info: Some(LoopEarlyReturnInfo { normal_return_variant, early_return_variant }),
612        ..
613    }) = &ctx.current_loop_ctx
614    {
615        let variant = if is_early_return { early_return_variant } else { normal_return_variant };
616
617        ret_var = generators::EnumConstruct { input: ret_var, variant: *variant, location }
618            .add(ctx, &mut builder.statements);
619    }
620
621    Err(LoweringFlowError::Return(ret_var, location))
622}
623
624/// Generates lowering to return a unit.
625pub fn return_a_unit<'db>(
626    ctx: &mut LoweringContext<'db, '_>,
627    mut builder: BlockBuilder<'db>,
628    location: LocationId<'db>,
629    is_early_return: bool,
630) -> LoweringResult<'db, SealedBlockBuilder<'db>> {
631    let ret_var = LoweredExpr::Tuple { exprs: vec![], location }.as_var_usage(ctx, &mut builder)?;
632
633    let ret_expr = lower_return(ctx, &mut builder, ret_var, location, is_early_return);
634    lowered_expr_to_block_scope_end(ctx, builder, ret_expr).map_err(LoweringFlowError::Failed)
635}
636
637/// Lowers a semantic statement.
638pub fn lower_statement<'db>(
639    ctx: &mut LoweringContext<'db, '_>,
640    builder: &mut BlockBuilder<'db>,
641    stmt: &semantic::Statement<'db>,
642) -> LoweringResult<'db, ()> {
643    match stmt {
644        semantic::Statement::Expr(semantic::StatementExpr { expr, stable_ptr: _ }) => {
645            log::trace!("Lowering an expression statement.");
646            let lowered_expr = lower_expr(ctx, builder, *expr)?;
647            // The LoweredExpr must be evaluated now to push/bring back variables in case it is
648            // LoweredExpr::ExternEnum.
649            if let LoweredExpr::ExternEnum(x) = lowered_expr {
650                x.as_var_usage(ctx, builder)?;
651            }
652        }
653        semantic::Statement::Let(semantic::StatementLet {
654            pattern,
655            expr,
656            else_clause,
657            stable_ptr,
658        }) => {
659            if let Some(else_clause) = else_clause {
660                log::trace!("Lowering a let-else statement.");
661                lower_let_else::lower_let_else(
662                    ctx,
663                    builder,
664                    *pattern,
665                    *expr,
666                    *else_clause,
667                    stable_ptr,
668                )?;
669            } else {
670                log::trace!("Lowering a let statement.");
671                let lowered_expr = lower_expr(ctx, builder, *expr)?;
672                lower_single_pattern(ctx, builder, *pattern, lowered_expr)?;
673            }
674        }
675        semantic::Statement::Continue(semantic::StatementContinue { stable_ptr }) => {
676            log::trace!("Lowering a continue statement.");
677            recursively_call_loop_func(
678                ctx,
679                builder,
680                ctx.current_loop_ctx.as_ref().unwrap().loop_expr_id,
681                stable_ptr.untyped(),
682            )?;
683            return Ok(());
684        }
685        semantic::Statement::Return(semantic::StatementReturn { expr_option, stable_ptr })
686        | semantic::Statement::Break(semantic::StatementBreak { expr_option, stable_ptr }) => {
687            log::trace!("Lowering a return | break statement.");
688            let location = ctx.get_location(stable_ptr.untyped());
689            let ret_var = match expr_option {
690                None => {
691                    LoweredExpr::Tuple { exprs: vec![], location }.as_var_usage(ctx, builder)?
692                }
693                Some(expr) => lower_expr_to_var_usage(ctx, builder, *expr)?,
694            };
695
696            lower_return(
697                ctx,
698                builder,
699                ret_var,
700                location,
701                matches!(stmt, semantic::Statement::Return(_)),
702            )?;
703        }
704        semantic::Statement::Item(_) => {}
705    }
706    Ok(())
707}
708
709// TODO(spapini): Separate match pattern from non-match (single) patterns in the semantic
710// model.
711/// Lowers a single-pattern (pattern that does not appear in a match. This includes structs,
712/// tuples, variables, etc...
713/// Adds the bound variables to the builder.
714/// Note that single patterns are the only way to bind new local variables in the semantic
715/// model.
716fn lower_single_pattern<'db>(
717    ctx: &mut LoweringContext<'db, '_>,
718    builder: &mut BlockBuilder<'db>,
719    pattern_id: semantic::PatternId,
720    lowered_expr: LoweredExpr<'db>,
721) -> LoweringResult<'db, ()> {
722    log::trace!("Lowering a single pattern.");
723    let pattern = &ctx.function_body.arenas.patterns[pattern_id];
724    match pattern {
725        semantic::Pattern::Literal(_)
726        | semantic::Pattern::StringLiteral(_)
727        | semantic::Pattern::EnumVariant(_) => {
728            return Err(LoweringFlowError::Failed(
729                ctx.diagnostics.report(pattern.stable_ptr(), RefutablePattern),
730            ));
731        }
732        semantic::Pattern::Variable(semantic::PatternVariable {
733            name: _,
734            var: sem_var,
735            stable_ptr,
736        }) => {
737            let sem_var = semantic::Binding::LocalVar(sem_var.clone());
738            let stable_ptr = *stable_ptr;
739            // Deposit the owned variable in the semantic variables store.
740            let var = lowered_expr.as_var_usage(ctx, builder)?.var_id;
741            // Override variable location.
742            ctx.variables.variables[var].location = ctx.get_location(stable_ptr.untyped());
743            builder.put_semantic(sem_var.id(), var);
744            // TODO(spapini): Build semantic_defs in semantic model.
745            ctx.semantic_defs.insert(sem_var.id(), sem_var);
746        }
747        semantic::Pattern::Struct(structure) => {
748            let members = ctx
749                .db
750                .concrete_struct_members(structure.concrete_struct_id)
751                .map_err(LoweringFlowError::Failed)?;
752            let mut required_members = UnorderedHashMap::<_, _>::from_iter(
753                structure.field_patterns.iter().map(|(pattern, member)| (member.id, *pattern)),
754            );
755            let wrapping_info = structure.wrapping_info;
756            let stable_ptr = structure.stable_ptr.untyped();
757            let generator = generators::StructDestructure {
758                input: lowered_expr.as_var_usage(ctx, builder)?,
759                var_reqs: members
760                    .iter()
761                    .map(|(_, member)| VarRequest {
762                        ty: wrapping_info.wrap(ctx.db, member.ty),
763                        location: ctx.get_location(
764                            required_members
765                                .get(&member.id)
766                                .map(|pattern| {
767                                    ctx.function_body.arenas.patterns[*pattern]
768                                        .stable_ptr()
769                                        .untyped()
770                                })
771                                .unwrap_or_else(|| stable_ptr),
772                        ),
773                    })
774                    .collect(),
775            };
776            for (var_id, (_, member)) in
777                izip!(generator.add(ctx, &mut builder.statements), members.iter())
778            {
779                if let Some(member_pattern) = required_members.remove(&member.id) {
780                    let stable_ptr = ctx.function_body.arenas.patterns[member_pattern].stable_ptr();
781                    lower_single_pattern(
782                        ctx,
783                        builder,
784                        member_pattern,
785                        LoweredExpr::AtVariable(VarUsage {
786                            var_id,
787                            location: ctx.get_location(stable_ptr.untyped()),
788                        }),
789                    )?;
790                }
791            }
792        }
793        semantic::Pattern::Tuple(semantic::PatternTuple {
794            field_patterns: patterns, ty, ..
795        })
796        | semantic::Pattern::FixedSizeArray(semantic::PatternFixedSizeArray {
797            elements_patterns: patterns,
798            ty,
799            ..
800        }) => {
801            lower_tuple_like_pattern_helper(
802                ctx,
803                builder,
804                lowered_expr,
805                patterns,
806                *ty,
807                pattern.stable_ptr().untyped(),
808            )?;
809        }
810        semantic::Pattern::Otherwise(pattern) => {
811            let stable_ptr = pattern.stable_ptr.untyped();
812            let var = lowered_expr.as_var_usage(ctx, builder)?.var_id;
813            ctx.variables.variables[var].location = ctx.get_location(stable_ptr);
814        }
815        semantic::Pattern::Missing(_) => unreachable!("Missing pattern in semantic model."),
816    }
817    Ok(())
818}
819
820/// A helper function to handle patterns of tuples or fixed size arrays.
821fn lower_tuple_like_pattern_helper<'db>(
822    ctx: &mut LoweringContext<'db, '_>,
823    builder: &mut BlockBuilder<'db>,
824    lowered_expr: LoweredExpr<'db>,
825    patterns: &[semantic::PatternId],
826    ty: semantic::TypeId<'db>,
827    stable_ptr: SyntaxStablePtrId<'db>,
828) -> LoweringResult<'db, ()> {
829    let outputs = match lowered_expr {
830        LoweredExpr::Tuple { exprs, .. } => exprs,
831        LoweredExpr::FixedSizeArray { exprs, .. } => exprs,
832        _ => {
833            let (long_type_id, wrapping_info) = unwrap_pattern_type(ctx.db, ty);
834            let tys = match long_type_id {
835                TypeLongId::Tuple(tys) => tys,
836                TypeLongId::FixedSizeArray { type_id, size } => {
837                    let size = size
838                        .to_int(ctx.db)
839                        .expect("Expected ConstValue::Int for size")
840                        .to_usize()
841                        .unwrap();
842                    vec![type_id; size]
843                }
844                // `Span<T>` matched against `[..]` is synthesized as a fixed-size array, but
845                // stays refutable.
846                TypeLongId::Concrete(_) => {
847                    return Err(LoweringFlowError::Failed(
848                        ctx.diagnostics.report(stable_ptr, RefutablePattern),
849                    ));
850                }
851                _ => unreachable!("Tuple-like pattern must be a tuple or fixed size array."),
852            };
853            let reqs = patterns
854                .iter()
855                .zip_eq(tys)
856                .map(|(pattern, ty)| VarRequest {
857                    ty: wrapping_info.wrap(ctx.db, ty),
858                    location: ctx.get_location(
859                        ctx.function_body.arenas.patterns[*pattern].stable_ptr().untyped(),
860                    ),
861                })
862                .collect();
863            generators::StructDestructure {
864                input: lowered_expr.as_var_usage(ctx, builder)?,
865                var_reqs: reqs,
866            }
867            .add(ctx, &mut builder.statements)
868            .into_iter()
869            .map(|var_id| {
870                LoweredExpr::AtVariable(VarUsage {
871                    var_id,
872                    location: ctx.variables[var_id].location,
873                })
874            })
875            .collect()
876        }
877    };
878    for (var, pattern) in zip_eq(outputs, patterns) {
879        lower_single_pattern(ctx, builder, *pattern, var)?;
880    }
881    Ok(())
882}
883
884/// Lowers a semantic expression to a VarUsage.
885///
886/// For example, if we have the code:
887/// foo(a + b)
888///
889/// then `a + b` will be assigned variable and a VarUsage object whose origin
890/// is the location of the `a + b` expression.
891fn lower_expr_to_var_usage<'db>(
892    ctx: &mut LoweringContext<'db, '_>,
893    builder: &mut BlockBuilder<'db>,
894    expr_id: semantic::ExprId,
895) -> LoweringResult<'db, VarUsage<'db>> {
896    lower_expr(ctx, builder, expr_id)?.as_var_usage(ctx, builder)
897}
898
899/// Lowers a semantic expression.
900fn lower_expr<'db>(
901    ctx: &mut LoweringContext<'db, '_>,
902    builder: &mut BlockBuilder<'db>,
903    expr_id: semantic::ExprId,
904) -> LoweringResult<'db, LoweredExpr<'db>> {
905    let expr = ctx.function_body.arenas.exprs[expr_id].clone();
906    match expr {
907        semantic::Expr::Constant(expr) => lower_expr_constant(ctx, &expr, builder),
908        semantic::Expr::Tuple(expr) => lower_expr_tuple(ctx, &expr, builder),
909        semantic::Expr::Snapshot(expr) => lower_expr_snapshot(ctx, &expr, builder),
910        semantic::Expr::Desnap(expr) => lower_expr_desnap(ctx, &expr, builder),
911        semantic::Expr::Assignment(expr) => lower_expr_assignment(ctx, &expr, builder),
912        semantic::Expr::LogicalOperator(expr) => lower_logical_op(ctx, builder, &expr),
913        semantic::Expr::Block(expr) => lower_expr_block(ctx, builder, &expr),
914        semantic::Expr::FunctionCall(expr) => lower_expr_function_call(ctx, &expr, builder),
915        semantic::Expr::Match(expr) => lower_expr_match(ctx, &expr, builder),
916        semantic::Expr::If(expr) => lower_expr_if(ctx, builder, &expr),
917        semantic::Expr::Loop(_) | semantic::Expr::While(_) | semantic::Expr::For(_) => {
918            lower_expr_loop(ctx, builder, expr_id)
919        }
920        semantic::Expr::Var(expr) => {
921            let member_path = ExprVarMemberPath::Var(expr.clone());
922            log::trace!("Lowering a variable: {:?}", expr.debug(ctx.db));
923            Ok(LoweredExpr::MemberPath(member_path, ctx.get_location(expr.stable_ptr.untyped())))
924        }
925        semantic::Expr::Literal(expr) => lower_expr_literal(ctx, &expr, builder),
926        semantic::Expr::StringLiteral(expr) => lower_expr_string_literal(ctx, &expr, builder),
927        semantic::Expr::MemberAccess(expr) => lower_expr_member_access(ctx, &expr, builder),
928        semantic::Expr::StructCtor(expr) => lower_expr_struct_ctor(ctx, &expr, builder),
929        semantic::Expr::EnumVariantCtor(expr) => lower_expr_enum_ctor(ctx, &expr, builder),
930        semantic::Expr::FixedSizeArray(expr) => lower_expr_fixed_size_array(ctx, &expr, builder),
931        semantic::Expr::ExprClosure(expr) => lower_expr_closure(ctx, &expr, expr_id, builder),
932        semantic::Expr::PropagateError(expr) => lower_expr_error_propagate(ctx, &expr, builder),
933        semantic::Expr::Missing(semantic::ExprMissing { diag_added, .. }) => {
934            Err(LoweringFlowError::Failed(diag_added))
935        }
936    }
937}
938
939/// Lowers a semantic expression that is a literal, possibly including a negation.
940fn lower_expr_literal<'db>(
941    ctx: &mut LoweringContext<'db, '_>,
942    expr: &semantic::ExprNumericLiteral<'db>,
943    builder: &mut BlockBuilder<'db>,
944) -> LoweringResult<'db, LoweredExpr<'db>> {
945    log::trace!("Lowering a literal: {:?}", expr.debug(&ctx.expr_formatter));
946    Ok(LoweredExpr::AtVariable(lower_expr_literal_to_var_usage(
947        ctx,
948        expr.stable_ptr.untyped(),
949        expr.ty,
950        &expr.value,
951        builder,
952    )))
953}
954
955/// Same as [lower_expr_literal] but returns a [VarUsage] instead of a [LoweredExpr].
956fn lower_expr_literal_to_var_usage<'db>(
957    ctx: &mut LoweringContext<'db, '_>,
958    stable_ptr: SyntaxStablePtrId<'db>,
959    ty: semantic::TypeId<'db>,
960    value: &BigInt,
961    builder: &mut BlockBuilder<'db>,
962) -> VarUsage<'db> {
963    let value = ConstValueId::from_int(ctx.db, ty, value);
964    let location = ctx.get_location(stable_ptr);
965    generators::Const { value, ty, location }.add(ctx, &mut builder.statements)
966}
967
968fn lower_expr_string_literal<'db>(
969    ctx: &mut LoweringContext<'db, '_>,
970    expr: &semantic::ExprStringLiteral<'db>,
971    builder: &mut BlockBuilder<'db>,
972) -> LoweringResult<'db, LoweredExpr<'db>> {
973    log::trace!("Lowering a string literal: {:?}", expr.debug(&ctx.expr_formatter));
974    let db = ctx.db;
975
976    // Get all the relevant types from the corelib.
977    let bytes31_ty = get_core_ty_by_name(db, SmolStrId::from(db, "bytes31"), vec![]);
978    let data_array_ty = get_core_ty_by_name(
979        db,
980        SmolStrId::from(db, "Array"),
981        vec![GenericArgumentId::Type(bytes31_ty)],
982    );
983    let byte_array_ty = get_core_ty_by_name(db, SmolStrId::from(db, "ByteArray"), vec![]);
984
985    let array_submodule = core_submodule(db, SmolStrId::from(db, "array"));
986    let data_array_new_function = FunctionLongId::Semantic(get_function_id(
987        db,
988        array_submodule,
989        SmolStrId::from(db, "array_new"),
990        vec![GenericArgumentId::Type(bytes31_ty)],
991    ))
992    .intern(db);
993    let data_array_append_function = FunctionLongId::Semantic(get_function_id(
994        db,
995        array_submodule,
996        SmolStrId::from(db, "array_append"),
997        vec![GenericArgumentId::Type(bytes31_ty)],
998    ))
999    .intern(db);
1000
1001    // Emit lowering statements to build the ByteArray struct components.
1002    let mut data_array_usage =
1003        build_empty_data_array(ctx, builder, expr, data_array_new_function, data_array_ty);
1004    let remainder = add_chunks_to_data_array(
1005        ctx,
1006        builder,
1007        expr,
1008        bytes31_ty,
1009        &mut data_array_usage,
1010        data_array_append_function,
1011        data_array_ty,
1012    );
1013    let (pending_word_usage, pending_word_len_usage) =
1014        add_pending_word(ctx, builder, expr, remainder);
1015
1016    // Emit the lowering statement for creating the ByteArray struct.
1017    let byte_array_usage = generators::StructConstruct {
1018        inputs: vec![data_array_usage, pending_word_usage, pending_word_len_usage],
1019        ty: byte_array_ty,
1020        location: ctx.get_location(expr.stable_ptr.untyped()),
1021    }
1022    .add(ctx, &mut builder.statements);
1023
1024    Ok(LoweredExpr::AtVariable(byte_array_usage))
1025}
1026
1027/// Emits lowering statements to build an empty data array.
1028fn build_empty_data_array<'db>(
1029    ctx: &mut LoweringContext<'db, '_>,
1030    builder: &mut BlockBuilder<'db>,
1031    expr: &semantic::ExprStringLiteral<'db>,
1032    data_array_new_function: crate::ids::FunctionId<'db>,
1033    data_array_ty: semantic::TypeId<'db>,
1034) -> VarUsage<'db> {
1035    generators::Call {
1036        function: data_array_new_function,
1037        inputs: vec![],
1038        coupon_input: None,
1039        extra_ret_tys: vec![],
1040        ret_tys: vec![data_array_ty],
1041        location: ctx.get_location(expr.stable_ptr.untyped()),
1042    }
1043    .add(ctx, &mut builder.statements)
1044    .returns[0]
1045}
1046
1047/// Emits lowering statements to add 31-byte words to the given data array.
1048fn add_chunks_to_data_array<'db, 'r>(
1049    ctx: &mut LoweringContext<'db, '_>,
1050    builder: &mut BlockBuilder<'db>,
1051    expr: &'r semantic::ExprStringLiteral<'db>,
1052    bytes31_ty: semantic::TypeId<'db>,
1053    data_array_usage: &mut VarUsage<'db>,
1054    data_array_append_function: crate::ids::FunctionId<'db>,
1055    data_array_ty: semantic::TypeId<'db>,
1056) -> &'r [u8] {
1057    let expr_stable_ptr = expr.stable_ptr.untyped();
1058
1059    let chunks = expr.value.as_bytes().chunks_exact(31);
1060    let remainder = chunks.remainder();
1061    for chunk in chunks {
1062        let chunk_usage = generators::Const {
1063            value: ConstValue::Int(BigInt::from_bytes_be(Sign::Plus, chunk), bytes31_ty)
1064                .intern(ctx.db),
1065            ty: bytes31_ty,
1066            location: ctx.get_location(expr_stable_ptr),
1067        }
1068        .add(ctx, &mut builder.statements);
1069
1070        *data_array_usage = generators::Call {
1071            function: data_array_append_function,
1072            inputs: vec![*data_array_usage, chunk_usage],
1073            coupon_input: None,
1074            extra_ret_tys: vec![data_array_ty],
1075            ret_tys: vec![],
1076            location: ctx.get_location(expr_stable_ptr),
1077        }
1078        .add(ctx, &mut builder.statements)
1079        .extra_outputs[0];
1080    }
1081    remainder
1082}
1083
1084/// Emits lowering statements to set variables for the pending word of the
1085/// ByteArray.
1086fn add_pending_word<'db>(
1087    ctx: &mut LoweringContext<'db, '_>,
1088    builder: &mut BlockBuilder<'db>,
1089    expr: &semantic::ExprStringLiteral<'db>,
1090    pending_word_bytes: &[u8],
1091) -> (VarUsage<'db>, VarUsage<'db>) {
1092    let expr_stable_ptr = expr.stable_ptr.untyped();
1093
1094    let pending_word_len_ty = bounded_int_ty(ctx.db, BigInt::ZERO, 30.into());
1095    let felt252_ty = ctx.db.core_info().felt252;
1096
1097    let pending_word_usage = generators::Const {
1098        value: ConstValue::Int(BigInt::from_bytes_be(Sign::Plus, pending_word_bytes), felt252_ty)
1099            .intern(ctx.db),
1100        ty: felt252_ty,
1101        location: ctx.get_location(expr_stable_ptr),
1102    }
1103    .add(ctx, &mut builder.statements);
1104
1105    let pending_word_len = expr.value.len() % 31;
1106    let pending_word_len_usage = generators::Const {
1107        value: ConstValue::Int(pending_word_len.into(), pending_word_len_ty).intern(ctx.db),
1108        ty: pending_word_len_ty,
1109        location: ctx.get_location(expr_stable_ptr),
1110    }
1111    .add(ctx, &mut builder.statements);
1112    (pending_word_usage, pending_word_len_usage)
1113}
1114
1115fn lower_expr_constant<'db>(
1116    ctx: &mut LoweringContext<'db, '_>,
1117    expr: &semantic::ExprConstant<'db>,
1118    builder: &mut BlockBuilder<'db>,
1119) -> LoweringResult<'db, LoweredExpr<'db>> {
1120    log::trace!("Lowering a constant: {:?}", expr.debug(&ctx.expr_formatter));
1121    let location = ctx.get_location(expr.stable_ptr.untyped());
1122    Ok(LoweredExpr::AtVariable(
1123        generators::Const { value: expr.const_value_id, ty: expr.ty, location }
1124            .add(ctx, &mut builder.statements),
1125    ))
1126}
1127
1128/// Lowers an expression of type [semantic::ExprTuple].
1129fn lower_expr_tuple<'db>(
1130    ctx: &mut LoweringContext<'db, '_>,
1131    expr: &semantic::ExprTuple<'db>,
1132    builder: &mut BlockBuilder<'db>,
1133) -> LoweringResult<'db, LoweredExpr<'db>> {
1134    log::trace!("Lowering a tuple: {:?}", expr.debug(&ctx.expr_formatter));
1135    let location = ctx.get_location(expr.stable_ptr.untyped());
1136    let inputs = expr
1137        .items
1138        .iter()
1139        .map(|arg_expr_id| lower_expr(ctx, builder, *arg_expr_id))
1140        .collect::<Result<Vec<_>, _>>()?;
1141    Ok(LoweredExpr::Tuple { exprs: inputs, location })
1142}
1143
1144/// Lowers an expression of type [semantic::ExprFixedSizeArray].
1145fn lower_expr_fixed_size_array<'db>(
1146    ctx: &mut LoweringContext<'db, '_>,
1147    expr: &semantic::ExprFixedSizeArray<'db>,
1148    builder: &mut BlockBuilder<'db>,
1149) -> LoweringResult<'db, LoweredExpr<'db>> {
1150    log::trace!("Lowering a fixed size array: {:?}", expr.debug(&ctx.expr_formatter));
1151    let location = ctx.get_location(expr.stable_ptr.untyped());
1152    let exprs = match &expr.items {
1153        semantic::FixedSizeArrayItems::Items(items) => items
1154            .iter()
1155            .map(|arg_expr_id| lower_expr(ctx, builder, *arg_expr_id))
1156            .collect::<Result<Vec<_>, _>>()?,
1157        semantic::FixedSizeArrayItems::ValueAndSize(value, size) => {
1158            let lowered_value = lower_expr(ctx, builder, *value)?;
1159            let var_usage = lowered_value.as_var_usage(ctx, builder)?;
1160            let size =
1161                size.to_int(ctx.db).expect("Expected ConstValue::Int for size").to_usize().unwrap();
1162            if size == 0 {
1163                return Err(LoweringFlowError::Failed(
1164                    ctx.diagnostics
1165                        .report(expr.stable_ptr.untyped(), EmptyRepeatedElementFixedSizeArray),
1166                ));
1167            }
1168            // If there are multiple elements, the type must be copyable as we copy the var `size`
1169            // times.
1170            if size > 1 && ctx.variables[var_usage.var_id].info.copyable.is_err() {
1171                return Err(LoweringFlowError::Failed(
1172                    ctx.diagnostics.report(expr.stable_ptr.0, FixedSizeArrayNonCopyableType),
1173                ));
1174            }
1175            let expr = LoweredExpr::AtVariable(var_usage);
1176            vec![expr; size]
1177        }
1178    };
1179    Ok(LoweredExpr::FixedSizeArray { exprs, location, ty: expr.ty })
1180}
1181
1182/// Lowers an expression of type [semantic::ExprSnapshot].
1183fn lower_expr_snapshot<'db>(
1184    ctx: &mut LoweringContext<'db, '_>,
1185    expr: &semantic::ExprSnapshot<'db>,
1186    builder: &mut BlockBuilder<'db>,
1187) -> LoweringResult<'db, LoweredExpr<'db>> {
1188    log::trace!("Lowering a snapshot: {:?}", expr.debug(&ctx.expr_formatter));
1189    // Finding the number of snapshots happening directly one after the other.
1190    let mut snap_count = 1;
1191    let mut inner = expr.inner;
1192    while let semantic::Expr::Snapshot(next) = &ctx.function_body.arenas.exprs[inner] {
1193        snap_count += 1;
1194        inner = next.inner;
1195    }
1196    // Now removing desnaps happening immediately after, if can be squashed with the snaps.
1197    while let semantic::Expr::Desnap(next) = &ctx.function_body.arenas.exprs[inner]
1198        && snap_count > 0
1199    {
1200        snap_count -= 1;
1201        inner = next.inner;
1202    }
1203    // Lowering the uncanceled part of the expression.
1204    let mut result = lower_expr(ctx, builder, inner)?;
1205    let mut expr = expr;
1206    // Adding the leftover snapshots.
1207    for _ in 0..snap_count {
1208        let location = ctx.get_location(expr.stable_ptr.untyped());
1209        result = LoweredExpr::Snapshot { expr: result.into(), location };
1210        if let semantic::Expr::Snapshot(next) = &ctx.function_body.arenas.exprs[expr.inner] {
1211            expr = next;
1212        } else {
1213            // When the break occurs we must be in the last iteration of the for (as `snap_count`
1214            // can be at most the number of to snapshot expressions.
1215            break;
1216        };
1217    }
1218    Ok(result)
1219}
1220
1221/// Lowers an expression of type [semantic::ExprDesnap].
1222fn lower_expr_desnap<'db>(
1223    ctx: &mut LoweringContext<'db, '_>,
1224    expr: &semantic::ExprDesnap<'db>,
1225    builder: &mut BlockBuilder<'db>,
1226) -> LoweringResult<'db, LoweredExpr<'db>> {
1227    log::trace!("Lowering a desnap: {:?}", expr.debug(&ctx.expr_formatter));
1228    let location = ctx.get_location(expr.stable_ptr.untyped());
1229    let expr = lower_expr(ctx, builder, expr.inner)?;
1230    if let LoweredExpr::Snapshot { expr, .. } = expr {
1231        return Ok(*expr);
1232    }
1233    let input = expr.as_var_usage(ctx, builder)?;
1234
1235    Ok(LoweredExpr::AtVariable(
1236        generators::Desnap { input, location }.add(ctx, &mut builder.statements),
1237    ))
1238}
1239
1240/// Lowers an expression of type [semantic::ExprIf].
1241fn lower_expr_if<'db>(
1242    ctx: &mut LoweringContext<'db, '_>,
1243    builder: &mut BlockBuilder<'db>,
1244    expr: &semantic::ExprIf<'db>,
1245) -> LoweringResult<'db, LoweredExpr<'db>> {
1246    let graph = create_graph_expr_if(ctx, expr);
1247    lower_graph(ctx, builder, &graph, ctx.get_location(expr.stable_ptr.untyped()))
1248}
1249
1250/// Lowers an expression of type [semantic::ExprMatch].
1251fn lower_expr_match<'db>(
1252    ctx: &mut LoweringContext<'db, '_>,
1253    expr: &semantic::ExprMatch<'db>,
1254    builder: &mut BlockBuilder<'db>,
1255) -> LoweringResult<'db, LoweredExpr<'db>> {
1256    log::trace!("Lowering a match expression: {:?}", expr.debug(&ctx.expr_formatter));
1257    let graph = create_graph_expr_match(ctx, expr);
1258    lower_graph(ctx, builder, &graph, ctx.get_location(expr.stable_ptr.untyped()))
1259}
1260
1261/// Lowers an expression of type [semantic::ExprFunctionCall].
1262fn lower_expr_function_call<'db>(
1263    ctx: &mut LoweringContext<'db, '_>,
1264    expr: &semantic::ExprFunctionCall<'db>,
1265    builder: &mut BlockBuilder<'db>,
1266) -> LoweringResult<'db, LoweredExpr<'db>> {
1267    log::trace!("Lowering a function call expression: {:?}", expr.debug(&ctx.expr_formatter));
1268    let location = ctx.get_location(expr.stable_ptr.untyped());
1269
1270    // TODO(spapini): Use the correct stable pointer.
1271    let arg_inputs = lower_exprs_to_var_usages(ctx, &expr.args, builder)?;
1272    let ref_args = expr
1273        .args
1274        .iter()
1275        .filter_map(|arg| match arg {
1276            ExprFunctionCallArg::Value(_) => None,
1277            ExprFunctionCallArg::Reference(ref_arg) => Some(RefArg::Ref(ref_arg.clone())),
1278            ExprFunctionCallArg::TempReference(expr_id) => {
1279                Some(RefArg::Temp(ctx.function_body.arenas.exprs[*expr_id].ty()))
1280            }
1281        })
1282        .collect_vec();
1283    let extra_ret_tys = ref_args.iter().map(|ref_arg| ref_arg.ty()).collect();
1284
1285    let coupon_input = if let Some(coupon_arg) = expr.coupon_arg {
1286        Some(lower_expr_to_var_usage(ctx, builder, coupon_arg)?)
1287    } else {
1288        None
1289    };
1290
1291    // If the function is panic(), do something special.
1292    if expr.function == get_core_function_id(ctx.db, SmolStrId::from(ctx.db, "panic"), vec![]) {
1293        let [input] = <[_; 1]>::try_from(arg_inputs).ok().unwrap();
1294        return Err(LoweringFlowError::Panic(input, location));
1295    }
1296
1297    // The following is relevant only to extern functions.
1298    if expr.function.try_get_extern_function_id(ctx.db).is_some()
1299        && let semantic::TypeLongId::Concrete(semantic::ConcreteTypeId::Enum(concrete_enum_id)) =
1300            expr.ty.long(ctx.db)
1301    {
1302        let lowered_expr = LoweredExprExternEnum {
1303            function: expr.function,
1304            concrete_enum_id: *concrete_enum_id,
1305            inputs: arg_inputs,
1306            ref_args,
1307            location,
1308        };
1309
1310        // It is still unknown whether we directly match on this enum result, or store it to a
1311        // variable. Thus we can't perform the call. Performing it and pushing/bringing-back
1312        // variables are done on the 2 places where this result is used:
1313        // 1. [lower_optimized_extern_match]
1314        // 2. [context::LoweredExprExternEnum::var]
1315        return Ok(LoweredExpr::ExternEnum(lowered_expr));
1316    }
1317
1318    let (ref_outputs, res) = perform_function_call(
1319        ctx,
1320        builder,
1321        FunctionCallInfo {
1322            function: expr.function,
1323            inputs: arg_inputs,
1324            coupon_input,
1325            extra_ret_tys,
1326            ret_ty: expr.ty,
1327        },
1328        location,
1329    )?;
1330
1331    // Rebind the ref variables (skip TempReference which has None).
1332    for (ref_arg, output_var) in zip_eq(ref_args, ref_outputs) {
1333        if let RefArg::Ref(ref_arg) = ref_arg {
1334            builder.update_ref(ctx, &ref_arg, output_var.var_id);
1335        }
1336    }
1337
1338    Ok(res)
1339}
1340
1341/// Information required for [perform_function_call].
1342struct FunctionCallInfo<'db> {
1343    function: semantic::FunctionId<'db>,
1344    inputs: Vec<VarUsage<'db>>,
1345    coupon_input: Option<VarUsage<'db>>,
1346    extra_ret_tys: Vec<semantic::TypeId<'db>>,
1347    ret_ty: semantic::TypeId<'db>,
1348}
1349
1350/// Creates a LoweredExpr for a function call, taking into consideration external function facades:
1351/// For external functions, sometimes the high level signature doesn't exactly correspond to the
1352/// external function returned variables / branches.
1353fn perform_function_call<'db>(
1354    ctx: &mut LoweringContext<'db, '_>,
1355    builder: &mut BlockBuilder<'db>,
1356    function_call_info: FunctionCallInfo<'db>,
1357    location: LocationId<'db>,
1358) -> LoweringResult<'db, (Vec<VarUsage<'db>>, LoweredExpr<'db>)> {
1359    let FunctionCallInfo { function, inputs, coupon_input, extra_ret_tys, ret_ty } =
1360        function_call_info;
1361
1362    // If the function is not extern, simply call it.
1363    let Some(extern_function_id) = function.try_get_extern_function_id(ctx.db) else {
1364        let call_result = generators::Call {
1365            function: function.lowered(ctx.db),
1366            inputs,
1367            coupon_input,
1368            extra_ret_tys,
1369            ret_tys: vec![ret_ty],
1370            location,
1371        }
1372        .add(ctx, &mut builder.statements);
1373
1374        if ret_ty == never_ty(ctx.db) {
1375            // If the function returns never, the control flow is not allowed to continue.
1376            // This special case is required because without it the following code:
1377            // ```
1378            //    let res: felt252 = match a {
1379            //        true => 1,
1380            //        false => never_returns()
1381            //    };
1382            // ```
1383            // would try to assign never to res, which is not allowed.
1384
1385            return Err(LoweringFlowError::Match(MatchInfo::Enum(MatchEnumInfo {
1386                concrete_enum_id: *extract_matches!(
1387                    extract_matches!(ret_ty.long(ctx.db), semantic::TypeLongId::Concrete),
1388                    semantic::ConcreteTypeId::Enum
1389                ),
1390                input: VarUsage { var_id: call_result.returns[0].var_id, location },
1391                arms: vec![],
1392                location,
1393            })));
1394        }
1395
1396        let res = LoweredExpr::AtVariable(call_result.returns.into_iter().next().unwrap());
1397        return Ok((call_result.extra_outputs, res));
1398    };
1399
1400    // Extern function.
1401    assert!(coupon_input.is_none(), "Extern functions cannot have a __coupon__ argument.");
1402
1403    // Handle boxing - place a placeholder instead of calling the libfunc just yet, for
1404    // later optimization purposes.
1405    let info = ctx.db.core_info();
1406    if extern_function_id == info.into_box {
1407        assert!(extra_ret_tys.is_empty(), "into_box should not have extra return types");
1408        let input = inputs.into_iter().exactly_one().expect("into_box expects exactly one input");
1409        let res = generators::IntoBox { input, location }.add(ctx, &mut builder.statements);
1410        return Ok((vec![], LoweredExpr::AtVariable(res)));
1411    }
1412    if extern_function_id == info.unbox {
1413        assert!(extra_ret_tys.is_empty(), "unbox should not have extra return types");
1414        let input = inputs.into_iter().exactly_one().expect("unbox expects exactly one input");
1415        let res = generators::Unbox { input, location }.add(ctx, &mut builder.statements);
1416        return Ok((vec![], LoweredExpr::AtVariable(res)));
1417    }
1418
1419    let ret_tys = extern_facade_return_tys(ctx.db, &ret_ty).to_vec();
1420    let call_result = generators::Call {
1421        function: function.lowered(ctx.db),
1422        inputs,
1423        coupon_input: None,
1424        extra_ret_tys,
1425        ret_tys,
1426        location,
1427    }
1428    .add(ctx, &mut builder.statements);
1429
1430    Ok((
1431        call_result.extra_outputs,
1432        extern_facade_expr(
1433            ctx,
1434            ret_ty,
1435            call_result.returns.into_iter().map(|var_usage| var_usage.var_id),
1436            location,
1437        ),
1438    ))
1439}
1440
1441/// Lowers an expression of type [semantic::ExprLoop].
1442fn lower_expr_loop<'db>(
1443    ctx: &mut LoweringContext<'db, '_>,
1444    builder: &mut BlockBuilder<'db>,
1445    loop_expr_id: ExprId,
1446) -> LoweringResult<'db, LoweredExpr<'db>> {
1447    let db = ctx.db;
1448    let (stable_ptr, return_type) = match ctx.function_body.arenas.exprs[loop_expr_id].clone() {
1449        semantic::Expr::Loop(semantic::ExprLoop { stable_ptr, ty, .. }) => (stable_ptr, ty),
1450        semantic::Expr::While(semantic::ExprWhile { stable_ptr, ty, .. }) => (stable_ptr, ty),
1451        semantic::Expr::For(semantic::ExprFor {
1452            stable_ptr,
1453            ty,
1454            into_iter,
1455            expr_id,
1456            into_iter_member_path,
1457            ..
1458        }) => {
1459            let var_id = lower_expr(ctx, builder, expr_id)?.as_var_usage(ctx, builder)?;
1460            let into_iter_return_type =
1461                db.concrete_function_signature(into_iter).unwrap().return_type;
1462            let into_iter_call = generators::Call {
1463                function: into_iter.lowered(db),
1464                inputs: vec![var_id],
1465                coupon_input: None,
1466                extra_ret_tys: vec![],
1467                ret_tys: vec![into_iter_return_type],
1468                location: ctx.get_location(stable_ptr.untyped()),
1469            }
1470            .add(ctx, &mut builder.statements);
1471            let into_iter_var = into_iter_call.returns.into_iter().next().unwrap();
1472            let sem_var = LocalVariable {
1473                ty: into_iter_return_type,
1474                is_mut: true,
1475                id: extract_matches!(into_iter_member_path.base_var(), VarId::Local),
1476                allow_unused: true, // Synthetic variables should never generate unused warnings.
1477            };
1478            builder.put_semantic(into_iter_member_path.base_var(), into_iter_var.var_id);
1479
1480            ctx.semantic_defs
1481                .insert(into_iter_member_path.base_var(), semantic::Binding::LocalVar(sem_var));
1482
1483            (stable_ptr, ty)
1484        }
1485        _ => unreachable!("Loop expression must be either loop, while or for."),
1486    };
1487
1488    let usage = &ctx.usages.usages[&loop_expr_id];
1489    let has_normal_return = return_type != never_ty(db);
1490
1491    let (loop_return_ty, early_return_info) = if !has_normal_return {
1492        // If the loop does not have a normal return, `LoopResult` is not used
1493        // but we need to override the return type of the loop to match the function.
1494        (ctx.return_type, None)
1495    } else if !usage.has_early_return {
1496        (return_type, None)
1497    } else {
1498        let generic_args =
1499            vec![GenericArgumentId::Type(return_type), GenericArgumentId::Type(ctx.return_type)];
1500
1501        let internal_module = core_submodule(db, SmolStrId::from(db, "internal"));
1502        let ret_ty = try_get_ty_by_name(
1503            db,
1504            internal_module,
1505            SmolStrId::from(db, "LoopResult"),
1506            generic_args.clone(),
1507        )
1508        .unwrap();
1509        (
1510            ret_ty,
1511            Some(LoopEarlyReturnInfo {
1512                normal_return_variant: get_enum_concrete_variant(
1513                    db,
1514                    internal_module,
1515                    SmolStrId::from(db, "LoopResult"),
1516                    generic_args.clone(),
1517                    SmolStrId::from(db, "Normal"),
1518                ),
1519                early_return_variant: get_enum_concrete_variant(
1520                    db,
1521                    internal_module,
1522                    SmolStrId::from(db, "LoopResult"),
1523                    generic_args,
1524                    SmolStrId::from(db, "EarlyReturn"),
1525                ),
1526            }),
1527        )
1528    };
1529
1530    // Determine signature.
1531    let params = usage
1532        .usage
1533        .iter()
1534        .map(|(_, expr)| expr.clone())
1535        .chain(usage.snap_usage.iter().map(|(_, expr)| match expr {
1536            ExprVarMemberPath::Var(var) => {
1537                ExprVarMemberPath::Var(ExprVar { ty: wrap_in_snapshots(db, var.ty, 1), ..*var })
1538            }
1539            ExprVarMemberPath::Member { parent, member_id, stable_ptr, concrete_struct_id, ty } => {
1540                ExprVarMemberPath::Member {
1541                    parent: parent.clone(),
1542                    member_id: *member_id,
1543                    stable_ptr: *stable_ptr,
1544                    concrete_struct_id: *concrete_struct_id,
1545                    ty: wrap_in_snapshots(db, *ty, 1),
1546                }
1547            }
1548        }))
1549        .collect_vec();
1550    let extra_rets = usage.changes.iter().map(|(_, expr)| expr.clone()).collect_vec();
1551
1552    let loop_location = ctx.get_location(stable_ptr.untyped());
1553    let loop_signature = EnrichedSemanticSignature {
1554        params,
1555        extra_rets,
1556        return_type: loop_return_ty,
1557        implicits: vec![],
1558        panicable: ctx.signature.panicable,
1559        location: loop_location,
1560    };
1561
1562    // Get the function id.
1563    let function = FunctionWithBodyLongId::Generated {
1564        parent: ctx.semantic_function_id,
1565        key: GeneratedFunctionKey::Loop(stable_ptr),
1566    }
1567    .intern(db);
1568
1569    // Generate the function.
1570    let encapsulating_ctx = ctx.encapsulating_ctx.as_mut().unwrap();
1571    let lowered = lower_loop_function(
1572        encapsulating_ctx,
1573        function,
1574        loop_signature.clone(),
1575        LoopContext { loop_expr_id, early_return_info: early_return_info.clone() },
1576        ctx.return_type,
1577    )
1578    .map_err(LoweringFlowError::Failed)?;
1579    encapsulating_ctx.lowerings.insert(GeneratedFunctionKey::Loop(stable_ptr), lowered);
1580    let call_loop_expr = call_loop_func_ex(
1581        ctx,
1582        loop_signature,
1583        builder,
1584        loop_expr_id,
1585        stable_ptr.untyped(),
1586        |ctx, builder, param| {
1587            if let Some(var) = builder.get_snap_ref(ctx, param) {
1588                return Some(var);
1589            };
1590            let input = builder.get_ref(ctx, param)?;
1591            let location = ctx.get_location(param.stable_ptr().untyped());
1592            let (original, snapped) =
1593                generators::Snapshot { input, location }.add(ctx, &mut builder.statements);
1594            builder.update_ref(ctx, param, original);
1595            Some(VarUsage { var_id: snapped, location })
1596        },
1597    )?;
1598
1599    let Some(LoopEarlyReturnInfo { normal_return_variant, early_return_variant }) =
1600        early_return_info
1601    else {
1602        if !has_normal_return {
1603            let ret_var_usage = call_loop_expr.as_var_usage(ctx, builder)?;
1604            return Err(LoweringFlowError::Return(ret_var_usage, loop_location));
1605        }
1606
1607        return Ok(call_loop_expr);
1608    };
1609
1610    let loop_res = call_loop_expr.as_var_usage(ctx, builder)?;
1611
1612    let normal_return_subscope = create_subscope(ctx, builder);
1613    let normal_return_subscope_block_id = normal_return_subscope.block_id;
1614    let normal_return_var_id = ctx.new_var(VarRequest { ty: return_type, location: loop_location });
1615    let sealed_normal_return = lowered_expr_to_block_scope_end(
1616        ctx,
1617        normal_return_subscope,
1618        Ok(LoweredExpr::AtVariable(VarUsage {
1619            var_id: normal_return_var_id,
1620            location: loop_location,
1621        })),
1622    )
1623    .map_err(LoweringFlowError::Failed)?;
1624
1625    let mut early_return_subscope = create_subscope(ctx, builder);
1626    let early_return_var_id =
1627        ctx.new_var(VarRequest { ty: ctx.signature.return_type, location: loop_location });
1628    let early_return_subscope_block_id = early_return_subscope.block_id;
1629    let ret_expr = lower_return(
1630        ctx,
1631        &mut early_return_subscope,
1632        VarUsage { var_id: early_return_var_id, location: loop_location },
1633        loop_location,
1634        true,
1635    );
1636    let sealed_early_return = lowered_expr_to_block_scope_end(ctx, early_return_subscope, ret_expr)
1637        .map_err(LoweringFlowError::Failed)?;
1638
1639    let match_info = MatchInfo::Enum(MatchEnumInfo {
1640        concrete_enum_id: normal_return_variant.concrete_enum_id,
1641        input: loop_res,
1642        arms: vec![
1643            MatchArm {
1644                arm_selector: MatchArmSelector::VariantId(normal_return_variant),
1645                block_id: normal_return_subscope_block_id,
1646                var_ids: vec![normal_return_var_id],
1647            },
1648            MatchArm {
1649                arm_selector: MatchArmSelector::VariantId(early_return_variant),
1650                block_id: early_return_subscope_block_id,
1651                var_ids: vec![early_return_var_id],
1652            },
1653        ],
1654        location: loop_location,
1655    });
1656
1657    builder.merge_and_end_with_match(
1658        ctx,
1659        match_info,
1660        vec![sealed_normal_return, sealed_early_return],
1661        loop_location,
1662    )
1663}
1664
1665/// Adds a call to an inner loop-generated function from the loop function itself.
1666fn recursively_call_loop_func<'db>(
1667    ctx: &mut LoweringContext<'db, '_>,
1668    builder: &mut BlockBuilder<'db>,
1669    loop_expr_id: ExprId,
1670    stable_ptr: SyntaxStablePtrId<'db>,
1671) -> LoweringResult<'db, LoweredExpr<'db>> {
1672    let loop_res = call_loop_func_ex(
1673        ctx,
1674        ctx.signature.clone(),
1675        builder,
1676        loop_expr_id,
1677        stable_ptr,
1678        |ctx, builder, param| builder.get_snap_ref(ctx, param),
1679    )?
1680    .as_var_usage(ctx, builder)?;
1681    Err(LoweringFlowError::Return(loop_res, ctx.get_location(stable_ptr)))
1682}
1683
1684/// Adds a call to an inner loop-generated function.
1685fn call_loop_func_ex<'db>(
1686    ctx: &mut LoweringContext<'db, '_>,
1687    loop_signature: EnrichedSemanticSignature<'db>,
1688    builder: &mut BlockBuilder<'db>,
1689    loop_expr_id: ExprId,
1690    stable_ptr: SyntaxStablePtrId<'db>,
1691    handle_snap: impl Fn(
1692        &mut LoweringContext<'db, '_>,
1693        &mut BlockBuilder<'db>,
1694        &ExprVarMemberPath<'db>,
1695    ) -> Option<VarUsage<'db>>,
1696) -> LoweringResult<'db, LoweredExpr<'db>> {
1697    let location = ctx.get_location(stable_ptr);
1698    let loop_stable_ptr = ctx.function_body.arenas.exprs[loop_expr_id].stable_ptr();
1699    // Call it.
1700    let function = FunctionLongId::Generated(GeneratedFunction {
1701        parent: ctx.concrete_function_id.base_semantic_function(ctx.db),
1702        key: GeneratedFunctionKey::Loop(loop_stable_ptr),
1703    })
1704    .intern(ctx.db);
1705    let inputs = loop_signature
1706        .params
1707        .into_iter()
1708        .map(|param| {
1709            if let Some(var) = builder.get_ref_of_type(ctx, &param, param.ty()) {
1710                return Ok(var);
1711            }
1712
1713            if let Some(var) = handle_snap(ctx, builder, &param)
1714                && ctx.variables[var.var_id].ty == param.ty()
1715            {
1716                return Ok(var);
1717            }
1718
1719            // TODO(TomerStarkware): make sure this is unreachable and remove
1720            // `MemberPathLoop` diagnostic.
1721            Err(LoweringFlowError::Failed(
1722                ctx.diagnostics.report(param.stable_ptr(), MemberPathLoop),
1723            ))
1724        })
1725        .collect::<LoweringResult<'db, Vec<_>>>()?;
1726    let extra_ret_tys = loop_signature.extra_rets.iter().map(|path| path.ty()).collect_vec();
1727    let call_result = generators::Call {
1728        function,
1729        inputs,
1730        coupon_input: None,
1731        extra_ret_tys,
1732        ret_tys: vec![loop_signature.return_type],
1733        location,
1734    }
1735    .add(ctx, &mut builder.statements);
1736
1737    // Rebind the ref variables.
1738    for (ref_arg, output_var) in zip_eq(&loop_signature.extra_rets, call_result.extra_outputs) {
1739        builder.update_ref(ctx, ref_arg, output_var.var_id);
1740    }
1741
1742    Ok(LoweredExpr::AtVariable(call_result.returns.into_iter().next().unwrap()))
1743}
1744
1745/// Lowers a sequence of expressions and return them all. If the flow ended in the middle,
1746/// propagates that flow error without returning any variable.
1747fn lower_exprs_to_var_usages<'db>(
1748    ctx: &mut LoweringContext<'db, '_>,
1749    args: &[semantic::ExprFunctionCallArg<'db>],
1750    builder: &mut BlockBuilder<'db>,
1751) -> LoweringResult<'db, Vec<VarUsage<'db>>> {
1752    // Since value expressions may depends on the same variables as the references, which must be
1753    // variables, all expressions must be evaluated before using the references for binding into the
1754    // call.
1755    // TODO(orizi): Consider changing this to disallow taking a reference and then using the
1756    // variable, while still allowing `arr.append(arr.len())`.
1757    let mut value_iter = args
1758        .iter()
1759        .filter_map(|arg| match arg {
1760            ExprFunctionCallArg::Value(expr_id) | ExprFunctionCallArg::TempReference(expr_id) => {
1761                Some(lower_expr_to_var_usage(ctx, builder, *expr_id))
1762            }
1763            ExprFunctionCallArg::Reference(_) => None,
1764        })
1765        .collect::<Result<Vec<_>, _>>()?
1766        .into_iter();
1767    Ok(args
1768        .iter()
1769        .map(|arg| match arg {
1770            semantic::ExprFunctionCallArg::Reference(arg) => builder.get_ref(ctx, arg).unwrap(),
1771            ExprFunctionCallArg::Value(_) | ExprFunctionCallArg::TempReference(_) => {
1772                value_iter.next().unwrap()
1773            }
1774        })
1775        .collect())
1776}
1777
1778/// Lowers an expression of type [semantic::ExprEnumVariantCtor].
1779fn lower_expr_enum_ctor<'db>(
1780    ctx: &mut LoweringContext<'db, '_>,
1781    expr: &semantic::ExprEnumVariantCtor<'db>,
1782    builder: &mut BlockBuilder<'db>,
1783) -> LoweringResult<'db, LoweredExpr<'db>> {
1784    log::trace!(
1785        "Started lowering of an enum c'tor expression: {:?}",
1786        expr.debug(&ctx.expr_formatter)
1787    );
1788    let location = ctx.get_location(expr.stable_ptr.untyped());
1789    Ok(LoweredExpr::AtVariable(
1790        generators::EnumConstruct {
1791            input: lower_expr_to_var_usage(ctx, builder, expr.value_expr)?,
1792            variant: expr.variant,
1793            location,
1794        }
1795        .add(ctx, &mut builder.statements),
1796    ))
1797}
1798
1799/// Lowers an expression of type [semantic::ExprMemberAccess].
1800fn lower_expr_member_access<'db>(
1801    ctx: &mut LoweringContext<'db, '_>,
1802    expr: &semantic::ExprMemberAccess<'db>,
1803    builder: &mut BlockBuilder<'db>,
1804) -> LoweringResult<'db, LoweredExpr<'db>> {
1805    log::trace!("Lowering a member-access expression: {:?}", expr.debug(&ctx.expr_formatter));
1806    if let Some(member_path) = &expr.member_path {
1807        return Ok(LoweredExpr::MemberPath(
1808            member_path.clone(),
1809            ctx.get_location(expr.stable_ptr.untyped()),
1810        ));
1811    }
1812    let location = ctx.get_location(expr.stable_ptr.untyped());
1813    let members = ctx
1814        .db
1815        .concrete_struct_members(expr.concrete_struct_id)
1816        .map_err(LoweringFlowError::Failed)?;
1817    let member_idx =
1818        members.iter().position(|(_, member)| member.id == expr.member).ok_or_else(|| {
1819            LoweringFlowError::Failed(
1820                ctx.diagnostics.report(expr.stable_ptr.untyped(), UnexpectedError),
1821            )
1822        })?;
1823    Ok(LoweredExpr::AtVariable(
1824        generators::StructMemberAccess {
1825            input: lower_expr_to_var_usage(ctx, builder, expr.expr)?,
1826            member_tys: members
1827                .iter()
1828                .map(|(_, member)| wrap_in_snapshots(ctx.db, member.ty, expr.n_snapshots))
1829                .collect(),
1830            member_idx,
1831            location,
1832        }
1833        .add(ctx, &mut builder.statements),
1834    ))
1835}
1836
1837/// Lowers an expression of type [semantic::ExprStructCtor].
1838fn lower_expr_struct_ctor<'db>(
1839    ctx: &mut LoweringContext<'db, '_>,
1840    expr: &semantic::ExprStructCtor<'db>,
1841    builder: &mut BlockBuilder<'db>,
1842) -> LoweringResult<'db, LoweredExpr<'db>> {
1843    log::trace!("Lowering a struct c'tor expression: {:?}", expr.debug(&ctx.expr_formatter));
1844    let location = ctx.get_location(expr.stable_ptr.untyped());
1845    let members = ctx
1846        .db
1847        .concrete_struct_members(expr.concrete_struct_id)
1848        .map_err(LoweringFlowError::Failed)?;
1849    let mut member_expr_usages =
1850        UnorderedHashMap::<_, _>::from_iter(expr.members.iter().map(|(expr, id)| {
1851            let usage = lower_expr_to_var_usage(ctx, builder, *expr);
1852            (*id, usage)
1853        }));
1854    if members.len() != member_expr_usages.len() {
1855        // Semantic model should have made sure base struct exist if some members are missing.
1856        let base_struct = lower_expr(ctx, builder, expr.base_struct.unwrap())?;
1857        if let LoweredExpr::MemberPath(path, location) = base_struct {
1858            for (_, member) in members.iter() {
1859                let Entry::Vacant(entry) = member_expr_usages.entry(member.id) else {
1860                    continue;
1861                };
1862                let member_path = ExprVarMemberPath::Member {
1863                    parent: Box::new(path.clone()),
1864                    member_id: member.id,
1865                    stable_ptr: path.stable_ptr(),
1866                    concrete_struct_id: expr.concrete_struct_id,
1867                    ty: member.ty,
1868                };
1869                entry
1870                    .insert(Ok(LoweredExpr::MemberPath(member_path, location)
1871                        .as_var_usage(ctx, builder)?));
1872            }
1873        } else {
1874            for (base_member, (_, member)) in izip!(
1875                StructDestructure {
1876                    input: base_struct.as_var_usage(ctx, builder)?,
1877                    var_reqs: members
1878                        .iter()
1879                        .map(|(_, member)| VarRequest { ty: member.ty, location })
1880                        .collect(),
1881                }
1882                .add(ctx, &mut builder.statements),
1883                members.iter()
1884            ) {
1885                match member_expr_usages.entry(member.id) {
1886                    Entry::Occupied(_) => {}
1887                    Entry::Vacant(entry) => {
1888                        entry.insert(Ok(VarUsage { var_id: base_member, location }));
1889                    }
1890                }
1891            }
1892        }
1893    }
1894    Ok(LoweredExpr::AtVariable(
1895        generators::StructConstruct {
1896            inputs: members
1897                .iter()
1898                .map(|(_, member)| member_expr_usages.remove(&member.id).unwrap())
1899                .collect::<Result<Vec<_>, _>>()?,
1900            ty: expr.ty,
1901            location,
1902        }
1903        .add(ctx, &mut builder.statements),
1904    ))
1905}
1906
1907/// Adds the lowering for the destruct or panic_destruct of a capture variable.
1908fn add_capture_destruct_impl<'db>(
1909    ctx: &mut LoweringContext<'db, '_>,
1910    capture_var_usage: VarUsage<'db>,
1911    closure_info: &ClosureInfo<'db>,
1912    location: StableLocation<'db>,
1913) -> Maybe<()> {
1914    let capture_ty_info = &ctx.variables.variables[capture_var_usage.var_id].info;
1915    // Skipping generation for the case of `Drop`.
1916    let Some(Ok(impl_id)) = [&capture_ty_info.destruct_impl, &capture_ty_info.panic_destruct_impl]
1917        .iter()
1918        .find(|infer_result| infer_result.is_ok())
1919    else {
1920        return Ok(());
1921    };
1922
1923    let db = ctx.db;
1924    let concrete_trait = impl_id.concrete_trait(db)?;
1925
1926    let trait_functions = db.trait_functions(concrete_trait.trait_id(db))?;
1927
1928    assert_eq!(trait_functions.len(), 1);
1929    let trait_function = *trait_functions.values().next().unwrap();
1930
1931    let generic_function = GenericFunctionId::Impl(ImplGenericFunctionId {
1932        impl_id: *impl_id,
1933        function: trait_function,
1934    });
1935
1936    let function = semantic::FunctionLongId {
1937        function: ConcreteFunction { generic_function, generic_args: vec![] },
1938    }
1939    .intern(db);
1940
1941    let signature =
1942        EnrichedSemanticSignature::from_semantic(db, db.concrete_function_signature(function)?);
1943
1944    let func_key = GeneratedFunctionKey::TraitFunc(trait_function, location);
1945    let function_id =
1946        FunctionWithBodyLongId::Generated { parent: ctx.semantic_function_id, key: func_key }
1947            .intern(db);
1948
1949    let location_id = LocationId::from_stable_location(db, location);
1950
1951    let encapsulating_ctx = ctx.encapsulating_ctx.as_mut().unwrap();
1952    let return_type = signature.return_type;
1953    let lowered_impl_res = get_destruct_lowering(
1954        LoweringContext::new(encapsulating_ctx, function_id, signature, return_type)?,
1955        location_id,
1956        closure_info,
1957    )?;
1958    ctx.lowerings.insert(func_key, lowered_impl_res);
1959    Ok(())
1960}
1961
1962/// Returns the lowering of the destruct function of a capture variable.
1963fn get_destruct_lowering<'db>(
1964    mut ctx: LoweringContext<'db, '_>,
1965    location_id: LocationId<'db>,
1966    closure_info: &ClosureInfo<'db>,
1967) -> Maybe<Lowered<'db>> {
1968    let root_block_id = alloc_empty_block(&mut ctx);
1969    let mut builder = BlockBuilder::root(root_block_id);
1970
1971    let parameters = ctx
1972        .signature
1973        .params
1974        .clone()
1975        .into_iter()
1976        .map(|param| {
1977            let var = ctx.new_var(VarRequest { ty: param.ty(), location: location_id });
1978            builder.introduce((&param).into(), var);
1979            var
1980        })
1981        .collect_vec();
1982
1983    builder.destructure_closure(&mut ctx, location_id, parameters[0], closure_info);
1984    let var_usage =
1985        generators::StructConstruct { inputs: vec![], ty: unit_ty(ctx.db), location: location_id }
1986            .add(&mut ctx, &mut builder.statements);
1987    builder.ret(&mut ctx, var_usage, location_id)?;
1988    let lowered_impl = Lowered {
1989        diagnostics: ctx.diagnostics.build(),
1990        variables: ctx.variables.variables,
1991        blocks: ctx.blocks.build().unwrap(),
1992        signature: ctx.signature.into(),
1993        parameters,
1994    };
1995    Ok(lowered_impl)
1996}
1997
1998/// Adds the lowering for the closure function.
1999fn add_closure_call_function<'db>(
2000    encapsulated_ctx: &mut LoweringContext<'db, '_>,
2001    expr: &semantic::ExprClosure<'db>,
2002    closure_info: &ClosureInfo<'db>,
2003    trait_id: cairo_lang_defs::ids::TraitId<'db>,
2004) -> Maybe<()> {
2005    let db = encapsulated_ctx.db;
2006    let closure_ty = extract_matches!(expr.ty.long(db), TypeLongId::Closure);
2007    let expr_location = encapsulated_ctx.get_location(expr.stable_ptr.untyped());
2008    let parameters_ty = TypeLongId::Tuple(closure_ty.param_tys.clone()).intern(db);
2009    let concrete_trait = ConcreteTraitLongId {
2010        trait_id,
2011        generic_args: vec![
2012            GenericArgumentId::Type(expr.ty),
2013            GenericArgumentId::Type(parameters_ty),
2014        ],
2015    }
2016    .intern(db);
2017    let Ok(impl_id) = semantic::types::get_impl_at_context(
2018        db,
2019        encapsulated_ctx.variables.lookup_context,
2020        concrete_trait,
2021        None,
2022    ) else {
2023        // If the impl doesn't exist, there won't be a call to the call-function, so we don't need
2024        // to generate it.
2025        return Ok(());
2026    };
2027    if !matches!(impl_id.long(db), ImplLongId::GeneratedImpl(_)) {
2028        // If the impl is not generated, we don't need to generate a lowering for it.
2029        return Ok(());
2030    }
2031
2032    let trait_function: cairo_lang_defs::ids::TraitFunctionId<'_> = db
2033        .trait_function_by_name(trait_id, SmolStrId::from(db, "call"))
2034        .unwrap()
2035        .expect("Call function must exist for an Fn trait.");
2036
2037    let generic_function =
2038        GenericFunctionId::Impl(ImplGenericFunctionId { impl_id, function: trait_function });
2039    let function = semantic::FunctionLongId {
2040        function: ConcreteFunction { generic_function, generic_args: vec![] },
2041    }
2042    .intern(db);
2043    let function_with_body_id = FunctionWithBodyLongId::Generated {
2044        parent: encapsulated_ctx.semantic_function_id,
2045        key: GeneratedFunctionKey::TraitFunc(trait_function, closure_ty.params_location),
2046    }
2047    .intern(db);
2048    let signature =
2049        EnrichedSemanticSignature::from_semantic(db, db.concrete_function_signature(function)?);
2050
2051    let return_type = signature.return_type;
2052    let mut ctx =
2053        LoweringContext::new(encapsulated_ctx, function_with_body_id, signature, return_type)?;
2054
2055    let root_block_id = alloc_empty_block(&mut ctx);
2056    let mut builder = BlockBuilder::root(root_block_id);
2057
2058    let info = db.core_info();
2059    let (closure_param_var_id, closure_var) = if trait_id == info.fn_once_trt {
2060        // If the closure is FnOnce, the closure is passed by value.
2061        let closure_param_var = ctx.new_var(VarRequest { ty: expr.ty, location: expr_location });
2062        let closure_var = VarUsage { var_id: closure_param_var, location: expr_location };
2063        (closure_param_var, closure_var)
2064    } else {
2065        // If the closure is Fn the closure argument will be a snapshot, so we need to desnap it.
2066        let closure_param_var = ctx
2067            .new_var(VarRequest { ty: wrap_in_snapshots(db, expr.ty, 1), location: expr_location });
2068
2069        let closure_var = generators::Desnap {
2070            input: VarUsage { var_id: closure_param_var, location: expr_location },
2071            location: expr_location,
2072        }
2073        .add(&mut ctx, &mut builder.statements);
2074        (closure_param_var, closure_var)
2075    };
2076    let parameters: Vec<VariableId> = [
2077        closure_param_var_id,
2078        ctx.new_var(VarRequest { ty: parameters_ty, location: expr_location }),
2079    ]
2080    .into();
2081    let captured_vars = generators::StructDestructure {
2082        input: closure_var,
2083        var_reqs: chain!(closure_info.members.iter(), closure_info.snapshots.iter())
2084            .map(|(_, ty)| VarRequest { ty: *ty, location: expr_location })
2085            .collect_vec(),
2086    }
2087    .add(&mut ctx, &mut builder.statements);
2088    for (i, (param, _)) in closure_info.members.iter().enumerate() {
2089        builder.introduce(param.clone(), captured_vars[i]);
2090    }
2091    for (i, (param, _)) in closure_info.snapshots.iter().enumerate() {
2092        ctx.snapped_semantics.insert(param.clone(), captured_vars[i + closure_info.members.len()]);
2093    }
2094    let param_vars = generators::StructDestructure {
2095        input: VarUsage { var_id: parameters[1], location: expr_location },
2096        var_reqs: closure_ty
2097            .param_tys
2098            .iter()
2099            .map(|ty| VarRequest { ty: *ty, location: expr_location })
2100            .collect_vec(),
2101    }
2102    .add(&mut ctx, &mut builder.statements);
2103    for (param_var, param) in param_vars.into_iter().zip(expr.params.iter()) {
2104        builder.introduce((&parameter_as_member_path(param.clone())).into(), param_var);
2105        ctx.semantic_defs
2106            .insert(semantic::VarId::Param(param.id), semantic::Binding::Param(param.clone()));
2107    }
2108    let lowered_expr = lower_expr(&mut ctx, &mut builder, expr.body);
2109    let maybe_sealed_block = lowered_expr_to_block_scope_end(&mut ctx, builder, lowered_expr);
2110    let root_ok = maybe_sealed_block.and_then(|block_sealed| {
2111        wrap_sealed_block_as_function(&mut ctx, block_sealed, expr.stable_ptr.untyped())?;
2112        Ok(root_block_id)
2113    });
2114    let blocks = root_ok
2115        .map(|_| ctx.blocks.build().expect("Root block must exist."))
2116        .unwrap_or_else(Blocks::new_errored);
2117
2118    let lowered = Lowered {
2119        diagnostics: ctx.diagnostics.build(),
2120        variables: ctx.variables.variables,
2121        blocks,
2122        signature: ctx.signature.into(),
2123        parameters,
2124    };
2125    encapsulated_ctx.lowerings.insert(
2126        GeneratedFunctionKey::TraitFunc(trait_function, closure_ty.params_location),
2127        lowered,
2128    );
2129    Ok(())
2130}
2131
2132/// Lowers an expression of type [semantic::ExprClosure].
2133fn lower_expr_closure<'db>(
2134    ctx: &mut LoweringContext<'db, '_>,
2135    expr: &semantic::ExprClosure<'db>,
2136    expr_id: semantic::ExprId,
2137    builder: &mut BlockBuilder<'db>,
2138) -> LoweringResult<'db, LoweredExpr<'db>> {
2139    log::trace!("Lowering a closure expression: {:?}", expr.debug(&ctx.expr_formatter));
2140
2141    let usage = ctx.usages.usages[&expr_id].clone();
2142    let (capture_var_usage, closure_info) = builder.capture(ctx, usage, expr);
2143    let closure_variable = LoweredExpr::AtVariable(capture_var_usage);
2144    let closure_ty = extract_matches!(expr.ty.long(ctx.db), TypeLongId::Closure);
2145    add_capture_destruct_impl(ctx, capture_var_usage, &closure_info, closure_ty.params_location)
2146        .map_err(LoweringFlowError::Failed)?;
2147    add_closure_call_function(
2148        ctx,
2149        expr,
2150        &closure_info,
2151        if ctx.variables[capture_var_usage.var_id].info.copyable.is_ok() {
2152            ctx.db.core_info().fn_trt
2153        } else {
2154            ctx.db.core_info().fn_once_trt
2155        },
2156    )
2157    .map_err(LoweringFlowError::Failed)?;
2158
2159    Ok(closure_variable)
2160}
2161
2162/// Lowers an expression of type [semantic::ExprPropagateError].
2163fn lower_expr_error_propagate<'db>(
2164    ctx: &mut LoweringContext<'db, '_>,
2165    expr: &semantic::ExprPropagateError<'db>,
2166    builder: &mut BlockBuilder<'db>,
2167) -> LoweringResult<'db, LoweredExpr<'db>> {
2168    log::trace!(
2169        "Started lowering of an error-propagate expression: {:?}",
2170        expr.debug(&ctx.expr_formatter)
2171    );
2172    let location = ctx.get_location(expr.stable_ptr.untyped());
2173    let lowered_expr = lower_expr(ctx, builder, expr.inner)?;
2174    let ExprPropagateError { ok_variant, err_variant, func_err_variant, .. } = expr;
2175    if let LoweredExpr::ExternEnum(extern_enum) = lowered_expr {
2176        return lower_optimized_extern_error_propagate(
2177            ctx,
2178            builder,
2179            extern_enum,
2180            ok_variant,
2181            err_variant,
2182            func_err_variant,
2183            location,
2184        );
2185    }
2186
2187    let match_input = lowered_expr.as_var_usage(ctx, builder)?;
2188    // Ok arm.
2189    let subscope_ok = create_subscope(ctx, builder);
2190    let block_ok_id = subscope_ok.block_id;
2191    let expr_var = ctx.new_var(VarRequest { ty: ok_variant.ty, location });
2192    let sealed_block_ok = subscope_ok.goto_callsite(Some(VarUsage { var_id: expr_var, location }));
2193
2194    // Err arm.
2195    let mut subscope_err = create_subscope(ctx, builder);
2196    let block_err_id = subscope_err.block_id;
2197    let err_value = ctx.new_var(VarRequest { ty: err_variant.ty, location });
2198    let err_res = generators::EnumConstruct {
2199        input: VarUsage { var_id: err_value, location },
2200        variant: *func_err_variant,
2201        location,
2202    }
2203    .add(ctx, &mut subscope_err.statements);
2204    let ret_expr = lower_return(ctx, &mut subscope_err, err_res, location, true);
2205    let sealed_block_err = lowered_expr_to_block_scope_end(ctx, subscope_err, ret_expr)
2206        .map_err(LoweringFlowError::Failed)?;
2207
2208    // Merge blocks.
2209    let match_info = MatchInfo::Enum(MatchEnumInfo {
2210        concrete_enum_id: ok_variant.concrete_enum_id,
2211        input: match_input,
2212        arms: vec![
2213            MatchArm {
2214                arm_selector: MatchArmSelector::VariantId(*ok_variant),
2215                block_id: block_ok_id,
2216                var_ids: vec![expr_var],
2217            },
2218            MatchArm {
2219                arm_selector: MatchArmSelector::VariantId(*err_variant),
2220                block_id: block_err_id,
2221                var_ids: vec![err_value],
2222            },
2223        ],
2224        location,
2225    });
2226    builder.merge_and_end_with_match(
2227        ctx,
2228        match_info,
2229        vec![sealed_block_ok, sealed_block_err],
2230        location,
2231    )
2232}
2233
2234/// Lowers an error propagation expression on a LoweredExpr::ExternEnum lowered expression.
2235fn lower_optimized_extern_error_propagate<'db>(
2236    ctx: &mut LoweringContext<'db, '_>,
2237    builder: &mut BlockBuilder<'db>,
2238    extern_enum: LoweredExprExternEnum<'db>,
2239    ok_variant: &semantic::ConcreteVariant<'db>,
2240    err_variant: &semantic::ConcreteVariant<'db>,
2241    func_err_variant: &semantic::ConcreteVariant<'db>,
2242    location: LocationId<'db>,
2243) -> LoweringResult<'db, LoweredExpr<'db>> {
2244    log::trace!("Started lowering of an optimized error-propagate expression.");
2245
2246    // Ok arm.
2247    let mut subscope_ok = create_subscope(ctx, builder);
2248    let block_ok_id = subscope_ok.block_id;
2249    let block_ok_input_vars: Vec<VariableId> =
2250        match_extern_variant_arm_input_types(ctx.db, &ok_variant.ty, &extern_enum)
2251            .map(|ty| ctx.new_var(VarRequest { ty, location }))
2252            .collect();
2253    let returns =
2254        match_extern_arm_ref_args_bind(ctx, &block_ok_input_vars, &extern_enum, &mut subscope_ok);
2255    let expr = extern_facade_expr(ctx, ok_variant.ty, returns.iter().copied(), location)
2256        .as_var_usage(ctx, &mut subscope_ok)?;
2257    let sealed_block_ok = subscope_ok.goto_callsite(Some(expr));
2258
2259    // Err arm.
2260    let mut subscope_err = create_subscope(ctx, builder);
2261    let block_err_id = subscope_err.block_id;
2262    let block_err_input_vars: Vec<VariableId> =
2263        match_extern_variant_arm_input_types(ctx.db, &err_variant.ty, &extern_enum)
2264            .map(|ty| ctx.new_var(VarRequest { ty, location }))
2265            .collect();
2266
2267    let returns =
2268        match_extern_arm_ref_args_bind(ctx, &block_err_input_vars, &extern_enum, &mut subscope_err);
2269    let expr = extern_facade_expr(ctx, err_variant.ty, returns.iter().copied(), location);
2270    let input = expr.as_var_usage(ctx, &mut subscope_err)?;
2271    let err_res = generators::EnumConstruct { input, variant: *func_err_variant, location }
2272        .add(ctx, &mut subscope_err.statements);
2273
2274    let ret_expr = lower_return(ctx, &mut subscope_err, err_res, location, true);
2275    let sealed_block_err = lowered_expr_to_block_scope_end(ctx, subscope_err, ret_expr)
2276        .map_err(LoweringFlowError::Failed)?;
2277
2278    // Merge.
2279    let match_info = MatchInfo::Extern(MatchExternInfo {
2280        function: extern_enum.function.lowered(ctx.db),
2281        inputs: extern_enum.inputs,
2282        arms: vec![
2283            MatchArm {
2284                arm_selector: MatchArmSelector::VariantId(*ok_variant),
2285                block_id: block_ok_id,
2286                var_ids: block_ok_input_vars,
2287            },
2288            MatchArm {
2289                arm_selector: MatchArmSelector::VariantId(*err_variant),
2290                block_id: block_err_id,
2291                var_ids: block_err_input_vars,
2292            },
2293        ],
2294        location,
2295    });
2296    builder.merge_and_end_with_match(
2297        ctx,
2298        match_info,
2299        vec![sealed_block_ok, sealed_block_err],
2300        location,
2301    )
2302}
2303
2304/// Returns the input types for an extern match variant arm.
2305fn match_extern_variant_arm_input_types<'db>(
2306    db: &'db dyn salsa::Database,
2307    ty: &semantic::TypeId<'db>,
2308    extern_enum: &LoweredExprExternEnum<'db>,
2309) -> impl Iterator<Item = semantic::TypeId<'db>> {
2310    chain!(
2311        extern_enum.ref_args.iter().map(|ref_arg| ref_arg.ty()),
2312        extern_facade_return_tys(db, ty).iter().copied()
2313    )
2314}
2315
2316/// Binds the input references when matching on extern functions, and returns the remaining arm
2317/// inputs.
2318fn match_extern_arm_ref_args_bind<'db, 'vars>(
2319    ctx: &mut LoweringContext<'db, '_>,
2320    arm_inputs: &'vars [VariableId],
2321    extern_enum: &LoweredExprExternEnum<'db>,
2322    subscope: &mut BlockBuilder<'db>,
2323) -> &'vars [VariableId] {
2324    let (ref_outputs, others) = arm_inputs.split_at(extern_enum.ref_args.len());
2325    // Bind the ref parameters.
2326    for (ref_arg, output_var) in zip_eq(&extern_enum.ref_args, ref_outputs) {
2327        if let RefArg::Ref(ref_arg) = ref_arg {
2328            subscope.update_ref(ctx, ref_arg, *output_var);
2329        }
2330    }
2331    others
2332}
2333
2334/// Lowers an expression of type [semantic::ExprAssignment].
2335fn lower_expr_assignment<'db>(
2336    ctx: &mut LoweringContext<'db, '_>,
2337    expr: &semantic::ExprAssignment<'db>,
2338    builder: &mut BlockBuilder<'db>,
2339) -> LoweringResult<'db, LoweredExpr<'db>> {
2340    log::trace!(
2341        "Started lowering of an assignment expression: {:?}",
2342        expr.debug(&ctx.expr_formatter)
2343    );
2344    let location = ctx.get_location(expr.stable_ptr.untyped());
2345    let var = lower_expr(ctx, builder, expr.rhs)?.as_var_usage(ctx, builder)?.var_id;
2346    builder.update_ref(ctx, &expr.ref_arg, var);
2347    Ok(LoweredExpr::Tuple { exprs: vec![], location })
2348}
2349
2350/// Allocates and empty block in `ctx`.
2351fn alloc_empty_block<'db>(ctx: &mut LoweringContext<'db, '_>) -> BlockId {
2352    ctx.blocks.alloc_empty()
2353}
2354
2355/// Creates a new subscope of the given builder, with an empty block.
2356fn create_subscope<'db>(
2357    ctx: &mut LoweringContext<'db, '_>,
2358    builder: &BlockBuilder<'db>,
2359) -> BlockBuilder<'db> {
2360    builder.child_block_builder(alloc_empty_block(ctx))
2361}
2362
2363/// Calls `.check_error_free()` and warns (in log) if there are errors.
2364fn check_error_free_or_warn<'db>(
2365    db: &dyn Database,
2366    diagnostics: Diagnostics<'db, SemanticDiagnostic<'db>>,
2367    semantic_function_id: defs::ids::FunctionWithBodyId<'db>,
2368    diagnostics_description: &str,
2369) -> Maybe<()> {
2370    let declaration_error_free = diagnostics.check_error_free();
2371    declaration_error_free.inspect_err(|_| {
2372        log::warn!(
2373            "Function `{function_path}` has semantic diagnostics in its \
2374             {diagnostics_description}:\n{diagnostics_format}",
2375            function_path = semantic_function_id.full_path(db),
2376            diagnostics_format = diagnostics.format(db)
2377        );
2378    })
2379}