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rustc_const_eval/interpret/
call.rs

1//! Manages calling a concrete function (with known MIR body) with argument passing,
2//! and returning the return value to the caller.
3
4use std::assert_matches;
5use std::borrow::Cow;
6
7use either::{Left, Right};
8use rustc_abi::{self as abi, ExternAbi, FieldIdx, Integer, VariantIdx};
9use rustc_hir::def_id::DefId;
10use rustc_hir::find_attr;
11use rustc_middle::ty::layout::{IntegerExt, TyAndLayout};
12use rustc_middle::ty::{self, AdtDef, Instance, Ty, VariantDef};
13use rustc_middle::{bug, mir, span_bug};
14use rustc_target::callconv::{ArgAbi, FnAbi};
15use tracing::field::Empty;
16use tracing::{info, instrument, trace};
17
18use super::{
19    CtfeProvenance, EnteredTraceSpan, FnVal, ImmTy, InterpCx, InterpResult, MPlaceTy, Machine,
20    OpTy, PlaceTy, Projectable, Provenance, RetagMode, ReturnAction, ReturnContinuation, Scalar,
21    interp_ok, throw_ub, throw_ub_format,
22};
23use crate::enter_trace_span;
24
25/// An argument passed to a function.
26#[derive(#[automatically_derived]
impl<'tcx, Prov: ::core::clone::Clone + Provenance> ::core::clone::Clone for
    FnArg<'tcx, Prov> {
    #[inline]
    fn clone(&self) -> FnArg<'tcx, Prov> {
        match self {
            FnArg::Copy(__self_0) =>
                FnArg::Copy(::core::clone::Clone::clone(__self_0)),
            FnArg::InPlace(__self_0) =>
                FnArg::InPlace(::core::clone::Clone::clone(__self_0)),
        }
    }
}Clone, #[automatically_derived]
impl<'tcx, Prov: ::core::fmt::Debug + Provenance> ::core::fmt::Debug for
    FnArg<'tcx, Prov> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            FnArg::Copy(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Copy",
                    &__self_0),
            FnArg::InPlace(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "InPlace", &__self_0),
        }
    }
}Debug)]
27pub enum FnArg<'tcx, Prov: Provenance = CtfeProvenance> {
28    /// Pass a copy of the given operand.
29    Copy(OpTy<'tcx, Prov>),
30    /// Allow for the argument to be passed in-place: destroy the value originally stored at that
31    /// place and make the place inaccessible for the duration of the function call. This *must* be
32    /// an in-memory place so that we can do the proper alias checks.
33    InPlace(MPlaceTy<'tcx, Prov>),
34}
35
36impl<'tcx, Prov: Provenance> FnArg<'tcx, Prov> {
37    pub fn layout(&self) -> &TyAndLayout<'tcx> {
38        match self {
39            FnArg::Copy(op) => &op.layout,
40            FnArg::InPlace(mplace) => &mplace.layout,
41        }
42    }
43
44    /// Make a copy of the given fn_arg. Any `InPlace` are degenerated to copies, no protection of the
45    /// original memory occurs.
46    pub fn copy_fn_arg(&self) -> OpTy<'tcx, Prov> {
47        match self {
48            FnArg::Copy(op) => op.clone(),
49            FnArg::InPlace(mplace) => mplace.clone().into(),
50        }
51    }
52}
53
54impl<'tcx, M: Machine<'tcx>> InterpCx<'tcx, M> {
55    /// Make a copy of the given fn_args. Any `InPlace` are degenerated to copies, no protection of the
56    /// original memory occurs.
57    pub fn copy_fn_args(args: &[FnArg<'tcx, M::Provenance>]) -> Vec<OpTy<'tcx, M::Provenance>> {
58        args.iter().map(|fn_arg| fn_arg.copy_fn_arg()).collect()
59    }
60
61    /// Helper function for argument untupling.
62    fn fn_arg_project_field(
63        &self,
64        arg: &FnArg<'tcx, M::Provenance>,
65        field: FieldIdx,
66    ) -> InterpResult<'tcx, FnArg<'tcx, M::Provenance>> {
67        interp_ok(match arg {
68            FnArg::Copy(op) => FnArg::Copy(self.project_field(op, field)?),
69            FnArg::InPlace(mplace) => FnArg::InPlace(self.project_field(mplace, field)?),
70        })
71    }
72
73    /// Returns whether the given type has trivial ABI.
74    fn has_trivial_abi(&self, layout: TyAndLayout<'tcx>) -> InterpResult<'tcx, bool> {
75        if !layout.is_1zst() {
76            return interp_ok(false);
77        }
78        match *layout.ty.kind() {
79            // Trivially trivial-ABI types (because Rust makes no promises about their ABI).
80            ty::Tuple(..)
81            | ty::Never
82            | ty::FnDef(..)
83            | ty::Closure(..)
84            | ty::Coroutine(..)
85            | ty::CoroutineClosure(..) => interp_ok(true),
86
87            ty::Array(elem, _len) => {
88                // 0-length arrays are in general *not* okay, but arrays of trivial-ABI types are.
89                self.has_trivial_abi(self.layout_of(elem)?)
90            }
91            ty::Adt(adt_def, _args) => {
92                if adt_def.repr().transparent() {
93                    // All fields must have trivial ABI.
94                    (0..layout.fields.count()).try_fold(true, |acc, idx| {
95                        interp_ok(acc && self.has_trivial_abi(layout.field(self, idx))?)
96                    })
97                } else if adt_def.repr().c() {
98                    interp_ok(false)
99                } else {
100                    // Must be repr(Rust).
101                    interp_ok(true)
102                }
103            }
104
105            ty::Alias(..) => { ::core::panicking::panic_fmt(format_args!("non-normalized type")); }panic!("non-normalized type"),
106            _ => interp_ok(false),
107        }
108    }
109
110    /// Find the wrapped inner type of a transparent wrapper by going for the unique
111    /// non-trivial-ABI field.
112    ///
113    /// We work with `TyAndLayout` here since that makes it much easier to iterate over all fields.
114    fn unfold_transparent(
115        &self,
116        layout: TyAndLayout<'tcx>,
117        may_unfold: impl Fn(AdtDef<'tcx>) -> bool,
118    ) -> InterpResult<'tcx, TyAndLayout<'tcx>> {
119        match layout.ty.kind() {
120            ty::Adt(adt_def, _) if adt_def.repr().transparent() && may_unfold(*adt_def) => {
121                {
    match layout.variants {
        rustc_abi::Variants::Single { .. } => {}
        ref left_val => {
            ::core::panicking::assert_matches_failed(left_val,
                "rustc_abi::Variants::Single { .. }",
                ::core::option::Option::None);
        }
    }
};assert_matches!(layout.variants, rustc_abi::Variants::Single { .. });
122                // Look for non-trivial-ABI field(s).
123                let mut found = None;
124                for idx in 0..layout.fields.count() {
125                    let field = layout.field(self, idx);
126                    if self.has_trivial_abi(field)? {
127                        continue;
128                    }
129                    // Found a non-trivial ABI field!
130                    if found.is_some() {
131                        // There is more than one such field.
132                        // FIXME: we should just panic here. But currently such repr(transparent)
133                        // types are still accepted. We just don't treat them as transparent.
134                        return interp_ok(layout);
135                    }
136                    found = Some(field);
137                }
138                let Some(field) = found else {
139                    // All fields have trivial ABI. That means this type is effectively `()`.
140                    return interp_ok(self.layout_of(self.tcx.types.unit)?);
141                };
142                // Recurse.
143                self.unfold_transparent(field, may_unfold)
144            }
145            ty::Pat(base, _) => interp_ok(self.layout_of(*base)?),
146            // Not a transparent type, no further unfolding.
147            _ => interp_ok(layout),
148        }
149    }
150
151    /// Unwrap types that are guaranteed a null-pointer-optimization
152    fn unfold_npo(&self, layout: TyAndLayout<'tcx>) -> InterpResult<'tcx, TyAndLayout<'tcx>> {
153        // Check if this is an option-like type wrapping some type.
154        let ty::Adt(def, args) = layout.ty.kind() else {
155            // Not an ADT, so definitely no NPO.
156            return interp_ok(layout);
157        };
158        if def.variants().len() != 2 {
159            // Not a 2-variant enum, so no NPO.
160            return interp_ok(layout);
161        }
162        if !def.is_enum() {
    ::core::panicking::panic("assertion failed: def.is_enum()")
};assert!(def.is_enum());
163
164        let all_fields_1zst = |variant: &VariantDef| -> InterpResult<'tcx, _> {
165            for field in &variant.fields {
166                let ty = field.ty(*self.tcx, args).skip_norm_wip();
167                let layout = self.layout_of(ty)?;
168                if !layout.is_1zst() {
169                    return interp_ok(false);
170                }
171            }
172            interp_ok(true)
173        };
174
175        // If one variant consists entirely of 1-ZST, then the other variant
176        // is the only "relevant" one for this check.
177        let var0 = VariantIdx::from_u32(0);
178        let var1 = VariantIdx::from_u32(1);
179        let relevant_variant = if all_fields_1zst(def.variant(var0))? {
180            def.variant(var1)
181        } else if all_fields_1zst(def.variant(var1))? {
182            def.variant(var0)
183        } else {
184            // No variant is all-1-ZST, so no NPO.
185            return interp_ok(layout);
186        };
187        // The "relevant" variant must have exactly one field, and its type is the "inner" type.
188        if relevant_variant.fields.len() != 1 {
189            return interp_ok(layout);
190        }
191        let inner =
192            relevant_variant.fields[FieldIdx::from_u32(0)].ty(*self.tcx, args).skip_norm_wip();
193        let inner = self.layout_of(inner)?;
194
195        // Check if the inner type is one of the NPO-guaranteed ones.
196        // For that we first unpeel transparent *structs* (but not unions).
197        let is_npo =
198            |def: AdtDef<'tcx>| {
        {
            'done:
                {
                for i in
                    ::rustc_attr_ir::HasAttrs::get_attrs(def.did(), &self.tcx) {
                    #[allow(unused_imports)]
                    use ::rustc_attr_ir::AttributeKind::*;
                    let i: &::rustc_attr_ir::Attribute = i;
                    match i {
                        ::rustc_attr_ir::Attribute::Parsed(RustcNonnullOptimizationGuaranteed)
                            => {
                            break 'done Some(());
                        }
                        ::rustc_attr_ir::Attribute::Unparsed(..) =>
                            {}
                            #[deny(unreachable_patterns)]
                            _ => {}
                    }
                }
                None
            }
        }
    }.is_some()find_attr!(self.tcx, def.did(), RustcNonnullOptimizationGuaranteed);
199        let inner = self.unfold_transparent(inner, /* may_unfold */ |def| {
200            // Stop at NPO types so that we don't miss that attribute in the check below!
201            def.is_struct() && !is_npo(def)
202        })?;
203        interp_ok(match inner.ty.kind() {
204            ty::Ref(..) | ty::FnPtr(..) => {
205                // Option<&T> behaves like &T, and same for fn()
206                inner
207            }
208            ty::Adt(def, _) if is_npo(*def) => {
209                // Once we found a `nonnull_optimization_guaranteed` type, further strip off
210                // newtype structs from it to find the underlying ABI type.
211                self.unfold_transparent(inner, /* may_unfold */ |def| def.is_struct())?
212            }
213            _ => {
214                // Everything else we do not unfold.
215                layout
216            }
217        })
218    }
219
220    /// Check if these two layouts look like they are fn-ABI-compatible.
221    /// (We also compare the `PassMode`, so this doesn't have to check everything. But it turns out
222    /// that only checking the `PassMode` is insufficient.)
223    fn layout_compat(
224        &self,
225        caller: TyAndLayout<'tcx>,
226        callee: TyAndLayout<'tcx>,
227    ) -> InterpResult<'tcx, bool> {
228        // Fast path: equal types are definitely compatible.
229        if caller.ty == callee.ty {
230            return interp_ok(true);
231        }
232        // Handle trivial-ABI types.
233        if self.has_trivial_abi(caller)? && self.has_trivial_abi(callee)? {
234            return interp_ok(true);
235        }
236        // Unfold newtypes and NPO optimizations.
237        let unfold = |layout: TyAndLayout<'tcx>| {
238            self.unfold_transparent(layout, /* may_unfold */ |_def| true)
239                .and_then(|f| self.unfold_npo(f))
240        };
241        let caller = unfold(caller)?;
242        let callee = unfold(callee)?;
243        // Not-quite-so-fast path: if the types are equal now, they are compatible.
244        if caller.ty == callee.ty {
245            return interp_ok(true);
246        }
247        // Now see if these inner types are compatible.
248
249        // Compatible pointer types. For thin pointers, we have to accept even non-`repr(transparent)`
250        // things as compatible due to `DispatchFromDyn`. For instance, `Rc<i32>` and `*mut i32`
251        // must be compatible. So we just accept everything with Pointer ABI as compatible,
252        // even if this will accept some code that is not stably guaranteed to work.
253        // This also handles function pointers.
254        let thin_pointer = |layout: TyAndLayout<'tcx>| match layout.backend_repr {
255            abi::BackendRepr::Scalar(s) => match s.primitive() {
256                abi::Primitive::Pointer(addr_space) => Some(addr_space),
257                _ => None,
258            },
259            _ => None,
260        };
261        if let (Some(caller), Some(callee)) = (thin_pointer(caller), thin_pointer(callee)) {
262            return interp_ok(caller == callee);
263        }
264        // For wide pointers we have to get the pointee type.
265        let pointee_ty = |ty: Ty<'tcx>| -> InterpResult<'tcx, Option<Ty<'tcx>>> {
266            // We cannot use `builtin_deref` here since we need to reject `Box<T, MyAlloc>`.
267            interp_ok(Some(match ty.kind() {
268                ty::Ref(_, ty, _) => *ty,
269                ty::RawPtr(ty, _) => *ty,
270                // We only accept `Box` with the default allocator.
271                _ if ty.is_box_global(*self.tcx) => ty.expect_boxed_ty(),
272                _ => return interp_ok(None),
273            }))
274        };
275        if let (Some(caller), Some(callee)) = (pointee_ty(caller.ty)?, pointee_ty(callee.ty)?) {
276            // This is okay if they have the same metadata type.
277            let meta_ty = |ty: Ty<'tcx>| {
278                // Even if `ty` is normalized, the search for the unsized tail will project
279                // to fields, which can yield non-normalized types. So we need to provide a
280                // normalization function.
281                let normalize = |ty| self.tcx.normalize_erasing_regions(self.typing_env, ty);
282                ty.ptr_metadata_ty(*self.tcx, normalize)
283            };
284            return interp_ok(meta_ty(caller) == meta_ty(callee));
285        }
286
287        // Compatible integer types (in particular, usize vs ptr-sized-u32/u64).
288        // `char` counts as `u32.`
289        let int_ty = |ty: Ty<'tcx>| {
290            Some(match ty.kind() {
291                ty::Int(ity) => (Integer::from_int_ty(&self.tcx, *ity), /* signed */ true),
292                ty::Uint(uty) => (Integer::from_uint_ty(&self.tcx, *uty), /* signed */ false),
293                ty::Char => (Integer::I32, /* signed */ false),
294                _ => return None,
295            })
296        };
297        if let (Some(caller), Some(callee)) = (int_ty(caller.ty), int_ty(callee.ty)) {
298            // This is okay if they are the same integer type.
299            return interp_ok(caller == callee);
300        }
301
302        // The rest is incompatible.
303        interp_ok(false)
304    }
305
306    /// Returns a `bool` saying whether the two arguments are ABI-compatible.
307    pub fn check_argument_compat(
308        &self,
309        caller_abi: &ArgAbi<'tcx, Ty<'tcx>>,
310        callee_abi: &ArgAbi<'tcx, Ty<'tcx>>,
311    ) -> InterpResult<'tcx, bool> {
312        // We do not want to accept things as ABI-compatible that just "happen to be" compatible on the current target,
313        // so we implement a type-based check that reflects the guaranteed rules for ABI compatibility.
314        if self.layout_compat(caller_abi.layout, callee_abi.layout)? {
315            // Ensure that our checks imply actual ABI compatibility for this concrete call.
316            // (This can fail e.g. if `#[rustc_nonnull_optimization_guaranteed]` is used incorrectly.)
317            if !caller_abi.eq_abi(callee_abi) {
    ::core::panicking::panic("assertion failed: caller_abi.eq_abi(callee_abi)")
};assert!(caller_abi.eq_abi(callee_abi));
318            interp_ok(true)
319        } else {
320            {
    use ::tracing::__macro_support::Callsite as _;
    static __CALLSITE: ::tracing::callsite::DefaultCallsite =
        {
            static META: ::tracing::Metadata<'static> =
                {
                    ::tracing_core::metadata::Metadata::new("event compiler/rustc_const_eval/src/interpret/call.rs:320",
                        "rustc_const_eval::interpret::call",
                        ::tracing::Level::TRACE,
                        ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                        ::tracing_core::__macro_support::Option::Some(320u32),
                        ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                        ::tracing_core::field::FieldSet::new(&["message"],
                            ::tracing_core::callsite::Identifier(&__CALLSITE)),
                        ::tracing::metadata::Kind::EVENT)
                };
            ::tracing::callsite::DefaultCallsite::new(&META)
        };
    let enabled =
        ::tracing::Level::TRACE <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::TRACE <=
                    ::tracing::level_filters::LevelFilter::current() &&
            {
                let interest = __CALLSITE.interest();
                !interest.is_never() &&
                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                        interest)
            };
    if enabled {
        (|value_set: ::tracing::field::ValueSet|
                    {
                        let meta = __CALLSITE.metadata();
                        ::tracing::Event::dispatch(meta, &value_set);
                        ;
                    })({
                #[allow(unused_imports)]
                use ::tracing::field::{debug, display, Value};
                __CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("check_argument_compat: incompatible ABIs:\ncaller: {0:?}\ncallee: {1:?}",
                                                    caller_abi, callee_abi) as &dyn ::tracing::field::Value))])
            });
    } else { ; }
};trace!(
321                "check_argument_compat: incompatible ABIs:\ncaller: {:?}\ncallee: {:?}",
322                caller_abi, callee_abi
323            );
324            interp_ok(false)
325        }
326    }
327
328    /// Initialize a single callee argument, checking the types for compatibility.
329    fn pass_argument<'x, 'y>(
330        &mut self,
331        caller_args: &mut impl Iterator<
332            Item = (&'x FnArg<'tcx, M::Provenance>, &'y ArgAbi<'tcx, Ty<'tcx>>),
333        >,
334        callee_args_abis: &mut impl Iterator<Item = (usize, &'y ArgAbi<'tcx, Ty<'tcx>>)>,
335        callee_arg: &mir::Place<'tcx>,
336        callee_ty: Ty<'tcx>,
337        already_live: bool,
338    ) -> InterpResult<'tcx>
339    where
340        'tcx: 'x,
341        'tcx: 'y,
342    {
343        // Get next callee arg.
344        let (callee_arg_idx, callee_abi) = callee_args_abis.next().unwrap();
345        {
    match (&callee_ty, &callee_abi.layout.ty) {
        (left_val, right_val) => {
            if !(*left_val == *right_val) {
                let kind = ::core::panicking::AssertKind::Eq;
                ::core::panicking::assert_failed(kind, &*left_val,
                    &*right_val, ::core::option::Option::None);
            }
        }
    }
};assert_eq!(callee_ty, callee_abi.layout.ty);
346        // Get next caller arg.
347        let Some((caller_arg, caller_abi)) = caller_args.next() else {
348            do yeet ::rustc_middle::mir::interpret::InterpErrorKind::UndefinedBehavior(::rustc_middle::mir::interpret::UndefinedBehaviorInfo::Ub(::alloc::__export::must_use({
                    ::alloc::fmt::format(format_args!("calling a function with fewer arguments than it requires"))
                })));throw_ub_format!("calling a function with fewer arguments than it requires");
349        };
350        {
    match (&caller_arg.layout().layout, &caller_abi.layout.layout) {
        (left_val, right_val) => {
            if !(*left_val == *right_val) {
                let kind = ::core::panicking::AssertKind::Eq;
                ::core::panicking::assert_failed(kind, &*left_val,
                    &*right_val, ::core::option::Option::None);
            }
        }
    }
};assert_eq!(caller_arg.layout().layout, caller_abi.layout.layout);
351        // Sadly we cannot assert that `caller_arg.layout().ty` and `caller_abi.layout.ty` are
352        // equal; in closures the types sometimes differ. We just hope that `caller_abi` is the
353        // right type to print to the user.
354
355        // Check compatibility
356        if !self.check_argument_compat(caller_abi, callee_abi)? {
357            do yeet ::rustc_middle::mir::interpret::InterpErrorKind::UndefinedBehavior(::rustc_middle::mir::interpret::UndefinedBehaviorInfo::AbiMismatchArgument {
            arg_idx: callee_arg_idx,
            caller_ty: caller_abi.layout.ty,
            callee_ty: callee_abi.layout.ty,
        });throw_ub!(AbiMismatchArgument {
358                arg_idx: callee_arg_idx,
359                caller_ty: caller_abi.layout.ty,
360                callee_ty: callee_abi.layout.ty
361            });
362        }
363        // We work with a copy of the argument for now; if this is in-place argument passing, we
364        // will later protect the source it comes from. This means the callee cannot observe if we
365        // did in-place of by-copy argument passing, except for pointer equality tests.
366        let caller_arg_copy = caller_arg.copy_fn_arg();
367        if !already_live {
368            let local = callee_arg.as_local().unwrap();
369            let meta = caller_arg_copy.meta();
370            // `check_argument_compat` ensures that if metadata is needed, both have the same type,
371            // so we know they will use the metadata the same way.
372            if !(!meta.has_meta() || caller_arg_copy.layout.ty == callee_ty) {
    ::core::panicking::panic("assertion failed: !meta.has_meta() || caller_arg_copy.layout.ty == callee_ty")
};assert!(!meta.has_meta() || caller_arg_copy.layout.ty == callee_ty);
373
374            self.storage_live_dyn(local, meta)?;
375        }
376        // Now we can finally actually evaluate the callee place.
377        let callee_arg =
378            self.eval_place(*callee_arg, /* skip_validity_for_simple_deref */ false)?;
379        // We allow some transmutes here.
380        // FIXME: Depending on the PassMode, this should reset some padding to uninitialized. (This
381        // is true for all `copy_op`, but there are a lot of special cases for argument passing
382        // specifically.)
383        self.copy_op_allow_transmute(&caller_arg_copy, &callee_arg)?;
384        // If this was an in-place pass, protect the place it comes from for the duration of the call.
385        if let FnArg::InPlace(mplace) = caller_arg {
386            M::protect_in_place_function_argument(self, mplace)?;
387        }
388        interp_ok(())
389    }
390
391    /// The main entry point for creating a new stack frame: performs ABI checks and initializes
392    /// arguments.
393    #[allow(clippy :: suspicious_else_formatting)]
{
    let __tracing_attr_span;
    let __tracing_attr_guard;
    if ::tracing::Level::TRACE <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::TRACE <=
                    ::tracing::level_filters::LevelFilter::current() ||
            { false } {
        __tracing_attr_span =
            {
                use ::tracing::__macro_support::Callsite as _;
                static __CALLSITE: ::tracing::callsite::DefaultCallsite =
                    {
                        static META: ::tracing::Metadata<'static> =
                            {
                                ::tracing_core::metadata::Metadata::new("init_stack_frame",
                                    "rustc_const_eval::interpret::call",
                                    ::tracing::Level::TRACE,
                                    ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                                    ::tracing_core::__macro_support::Option::Some(393u32),
                                    ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                                    ::tracing_core::field::FieldSet::new(&[{
                                                        const NAME:
                                                            ::tracing::__macro_support::FieldName<{
                                                                ::tracing::__macro_support::FieldName::len("instance")
                                                            }> =
                                                            ::tracing::__macro_support::FieldName::new("instance");
                                                        NAME.as_str()
                                                    },
                                                    {
                                                        const NAME:
                                                            ::tracing::__macro_support::FieldName<{
                                                                ::tracing::__macro_support::FieldName::len("body")
                                                            }> =
                                                            ::tracing::__macro_support::FieldName::new("body");
                                                        NAME.as_str()
                                                    },
                                                    {
                                                        const NAME:
                                                            ::tracing::__macro_support::FieldName<{
                                                                ::tracing::__macro_support::FieldName::len("caller_fn_abi")
                                                            }> =
                                                            ::tracing::__macro_support::FieldName::new("caller_fn_abi");
                                                        NAME.as_str()
                                                    },
                                                    {
                                                        const NAME:
                                                            ::tracing::__macro_support::FieldName<{
                                                                ::tracing::__macro_support::FieldName::len("args")
                                                            }> =
                                                            ::tracing::__macro_support::FieldName::new("args");
                                                        NAME.as_str()
                                                    },
                                                    {
                                                        const NAME:
                                                            ::tracing::__macro_support::FieldName<{
                                                                ::tracing::__macro_support::FieldName::len("with_caller_location")
                                                            }> =
                                                            ::tracing::__macro_support::FieldName::new("with_caller_location");
                                                        NAME.as_str()
                                                    },
                                                    {
                                                        const NAME:
                                                            ::tracing::__macro_support::FieldName<{
                                                                ::tracing::__macro_support::FieldName::len("destination")
                                                            }> =
                                                            ::tracing::__macro_support::FieldName::new("destination");
                                                        NAME.as_str()
                                                    },
                                                    {
                                                        const NAME:
                                                            ::tracing::__macro_support::FieldName<{
                                                                ::tracing::__macro_support::FieldName::len("cont")
                                                            }> =
                                                            ::tracing::__macro_support::FieldName::new("cont");
                                                        NAME.as_str()
                                                    }], ::tracing_core::callsite::Identifier(&__CALLSITE)),
                                    ::tracing::metadata::Kind::SPAN)
                            };
                        ::tracing::callsite::DefaultCallsite::new(&META)
                    };
                let mut interest = ::tracing::subscriber::Interest::never();
                if ::tracing::Level::TRACE <=
                                    ::tracing::level_filters::STATIC_MAX_LEVEL &&
                                ::tracing::Level::TRACE <=
                                    ::tracing::level_filters::LevelFilter::current() &&
                            { interest = __CALLSITE.interest(); !interest.is_never() }
                        &&
                        ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                            interest) {
                    let meta = __CALLSITE.metadata();
                    ::tracing::Span::new(meta,
                        &{
                                #[allow(unused_imports)]
                                use ::tracing::field::{debug, display, Value};
                                meta.fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&::tracing::field::debug(&instance)
                                                            as &dyn ::tracing::field::Value)),
                                                (::tracing::__macro_support::Option::Some(&::tracing::field::debug(&body)
                                                            as &dyn ::tracing::field::Value)),
                                                (::tracing::__macro_support::Option::Some(&::tracing::field::debug(&caller_fn_abi)
                                                            as &dyn ::tracing::field::Value)),
                                                (::tracing::__macro_support::Option::Some(&::tracing::field::debug(&args)
                                                            as &dyn ::tracing::field::Value)),
                                                (::tracing::__macro_support::Option::Some(&with_caller_location
                                                            as &dyn ::tracing::field::Value)),
                                                (::tracing::__macro_support::Option::Some(&::tracing::field::debug(&destination)
                                                            as &dyn ::tracing::field::Value)),
                                                (::tracing::__macro_support::Option::Some(&::tracing::field::debug(&cont)
                                                            as &dyn ::tracing::field::Value))])
                            })
                } else {
                    let span =
                        ::tracing::__macro_support::__disabled_span(__CALLSITE.metadata());
                    {};
                    span
                }
            };
        __tracing_attr_guard = __tracing_attr_span.enter();
    }

    #[warn(clippy :: suspicious_else_formatting)]
    {

        #[allow(unknown_lints, unreachable_code, clippy ::
        diverging_sub_expression, clippy :: empty_loop, clippy ::
        let_unit_value, clippy :: let_with_type_underscore, clippy ::
        needless_return, clippy :: unreachable)]
        if false {
            let __tracing_attr_fake_return: InterpResult<'tcx> = loop {};
            return __tracing_attr_fake_return;
        }
        {
            let _trace =
                <M as
                        crate::interpret::Machine>::enter_trace_span(||
                        {
                            use ::tracing::__macro_support::Callsite as _;
                            static __CALLSITE: ::tracing::callsite::DefaultCallsite =
                                {
                                    static META: ::tracing::Metadata<'static> =
                                        {
                                            ::tracing_core::metadata::Metadata::new("step",
                                                "rustc_const_eval::interpret::call", ::tracing::Level::INFO,
                                                ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                                                ::tracing_core::__macro_support::Option::Some(404u32),
                                                ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                                                ::tracing_core::field::FieldSet::new(&[{
                                                                    const NAME:
                                                                        ::tracing::__macro_support::FieldName<{
                                                                            ::tracing::__macro_support::FieldName::len("step")
                                                                        }> =
                                                                        ::tracing::__macro_support::FieldName::new("step");
                                                                    NAME.as_str()
                                                                },
                                                                {
                                                                    const NAME:
                                                                        ::tracing::__macro_support::FieldName<{
                                                                            ::tracing::__macro_support::FieldName::len("instance")
                                                                        }> =
                                                                        ::tracing::__macro_support::FieldName::new("instance");
                                                                    NAME.as_str()
                                                                },
                                                                {
                                                                    const NAME:
                                                                        ::tracing::__macro_support::FieldName<{
                                                                            ::tracing::__macro_support::FieldName::len("tracing_separate_thread")
                                                                        }> =
                                                                        ::tracing::__macro_support::FieldName::new("tracing_separate_thread");
                                                                    NAME.as_str()
                                                                }], ::tracing_core::callsite::Identifier(&__CALLSITE)),
                                                ::tracing::metadata::Kind::SPAN)
                                        };
                                    ::tracing::callsite::DefaultCallsite::new(&META)
                                };
                            let mut interest = ::tracing::subscriber::Interest::never();
                            if ::tracing::Level::INFO <=
                                                ::tracing::level_filters::STATIC_MAX_LEVEL &&
                                            ::tracing::Level::INFO <=
                                                ::tracing::level_filters::LevelFilter::current() &&
                                        { interest = __CALLSITE.interest(); !interest.is_never() }
                                    &&
                                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                                        interest) {
                                let meta = __CALLSITE.metadata();
                                ::tracing::Span::new(meta,
                                    &{
                                            #[allow(unused_imports)]
                                            use ::tracing::field::{debug, display, Value};
                                            meta.fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&::tracing::field::display(&"init_stack_frame")
                                                                        as &dyn ::tracing::field::Value)),
                                                            (::tracing::__macro_support::Option::Some(&::tracing::field::display(&instance)
                                                                        as &dyn ::tracing::field::Value)),
                                                            (::tracing::__macro_support::Option::Some(&Empty as
                                                                        &dyn ::tracing::field::Value))])
                                        })
                            } else {
                                let span =
                                    ::tracing::__macro_support::__disabled_span(__CALLSITE.metadata());
                                {};
                                span
                            }
                        });
            let def_id = instance.def_id();
            let extra_tys =
                if caller_fn_abi.c_variadic {
                    let fixed_count =
                        usize::try_from(caller_fn_abi.fixed_count).unwrap();
                    let extra_tys =
                        args[fixed_count..].iter().map(|arg| arg.layout().ty);
                    self.tcx.mk_type_list_from_iter(extra_tys)
                } else { ty::List::empty() };
            let callee_fn_abi =
                self.fn_abi_of_instance_no_deduced_attrs(instance,
                        extra_tys)?;
            if caller_fn_abi.conv != callee_fn_abi.conv {
                do yeet ::rustc_middle::mir::interpret::InterpErrorKind::UndefinedBehavior(::rustc_middle::mir::interpret::UndefinedBehaviorInfo::Ub(::alloc::__export::must_use({
                                    ::alloc::fmt::format(format_args!("calling a function with calling convention \"{0}\" using calling convention \"{1}\"",
                                            callee_fn_abi.conv, caller_fn_abi.conv))
                                })))
            }
            if caller_fn_abi.c_variadic != callee_fn_abi.c_variadic {
                do yeet ::rustc_middle::mir::interpret::InterpErrorKind::UndefinedBehavior(::rustc_middle::mir::interpret::UndefinedBehaviorInfo::CVariadicMismatch {
                            caller_is_c_variadic: caller_fn_abi.c_variadic,
                            callee_is_c_variadic: callee_fn_abi.c_variadic,
                        });
            }
            if caller_fn_abi.c_variadic &&
                    caller_fn_abi.fixed_count != callee_fn_abi.fixed_count {
                do yeet ::rustc_middle::mir::interpret::InterpErrorKind::UndefinedBehavior(::rustc_middle::mir::interpret::UndefinedBehaviorInfo::CVariadicFixedCountMismatch {
                            caller: caller_fn_abi.fixed_count,
                            callee: callee_fn_abi.fixed_count,
                        });
            }
            M::check_fn_target_features(self, instance)?;
            if !callee_fn_abi.can_unwind {
                match &mut cont {
                    ReturnContinuation::Stop { .. } => {}
                    ReturnContinuation::Goto { unwind, .. } => {
                        *unwind = mir::UnwindAction::Unreachable;
                    }
                }
            }
            let destination_mplace =
                self.place_to_op(destination)?.as_mplace_or_imm().left();
            self.push_stack_frame_raw(instance, body, destination, cont)?;
            let preamble_span = self.frame().loc.unwrap_right();
            {
                use ::tracing::__macro_support::Callsite as _;
                static __CALLSITE: ::tracing::callsite::DefaultCallsite =
                    {
                        static META: ::tracing::Metadata<'static> =
                            {
                                ::tracing_core::metadata::Metadata::new("event compiler/rustc_const_eval/src/interpret/call.rs:464",
                                    "rustc_const_eval::interpret::call",
                                    ::tracing::Level::TRACE,
                                    ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                                    ::tracing_core::__macro_support::Option::Some(464u32),
                                    ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                                    ::tracing_core::field::FieldSet::new(&["message"],
                                        ::tracing_core::callsite::Identifier(&__CALLSITE)),
                                    ::tracing::metadata::Kind::EVENT)
                            };
                        ::tracing::callsite::DefaultCallsite::new(&META)
                    };
                let enabled =
                    ::tracing::Level::TRACE <=
                                ::tracing::level_filters::STATIC_MAX_LEVEL &&
                            ::tracing::Level::TRACE <=
                                ::tracing::level_filters::LevelFilter::current() &&
                        {
                            let interest = __CALLSITE.interest();
                            !interest.is_never() &&
                                ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                                    interest)
                        };
                if enabled {
                    (|value_set: ::tracing::field::ValueSet|
                                {
                                    let meta = __CALLSITE.metadata();
                                    ::tracing::Event::dispatch(meta, &value_set);
                                    ;
                                })({
                            #[allow(unused_imports)]
                            use ::tracing::field::{debug, display, Value};
                            __CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("caller ABI: {0:#?}, args: {1:#?}",
                                                                caller_fn_abi,
                                                                args.iter().map(|arg|
                                                                            (arg.layout().ty,
                                                                                match arg {
                                                                                    FnArg::Copy(op) =>
                                                                                        ::alloc::__export::must_use({
                                                                                                ::alloc::fmt::format(format_args!("copy({0:?})", op))
                                                                                            }),
                                                                                    FnArg::InPlace(mplace) =>
                                                                                        ::alloc::__export::must_use({
                                                                                                ::alloc::fmt::format(format_args!("in-place({0:?})",
                                                                                                        mplace))
                                                                                            }),
                                                                                })).collect::<Vec<_>>()) as &dyn ::tracing::field::Value))])
                        });
                } else { ; }
            };
            {
                use ::tracing::__macro_support::Callsite as _;
                static __CALLSITE: ::tracing::callsite::DefaultCallsite =
                    {
                        static META: ::tracing::Metadata<'static> =
                            {
                                ::tracing_core::metadata::Metadata::new("event compiler/rustc_const_eval/src/interpret/call.rs:477",
                                    "rustc_const_eval::interpret::call",
                                    ::tracing::Level::TRACE,
                                    ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                                    ::tracing_core::__macro_support::Option::Some(477u32),
                                    ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                                    ::tracing_core::field::FieldSet::new(&["message"],
                                        ::tracing_core::callsite::Identifier(&__CALLSITE)),
                                    ::tracing::metadata::Kind::EVENT)
                            };
                        ::tracing::callsite::DefaultCallsite::new(&META)
                    };
                let enabled =
                    ::tracing::Level::TRACE <=
                                ::tracing::level_filters::STATIC_MAX_LEVEL &&
                            ::tracing::Level::TRACE <=
                                ::tracing::level_filters::LevelFilter::current() &&
                        {
                            let interest = __CALLSITE.interest();
                            !interest.is_never() &&
                                ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                                    interest)
                        };
                if enabled {
                    (|value_set: ::tracing::field::ValueSet|
                                {
                                    let meta = __CALLSITE.metadata();
                                    ::tracing::Event::dispatch(meta, &value_set);
                                    ;
                                })({
                            #[allow(unused_imports)]
                            use ::tracing::field::{debug, display, Value};
                            __CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("spread_arg: {0:?}, locals: {1:#?}",
                                                                body.spread_arg,
                                                                body.args_iter().map(|local|
                                                                            (local,
                                                                                self.layout_of_local(self.frame(), local,
                                                                                            None).unwrap().ty)).collect::<Vec<_>>()) as
                                                        &dyn ::tracing::field::Value))])
                        });
                } else { ; }
            };
            let va_list_arg =
                callee_fn_abi.c_variadic.then(||
                        mir::Local::from_usize(body.arg_count));
            let is_non_capturing_closure =
                (#[allow(non_exhaustive_omitted_patterns)] match instance.def
                                {
                                ty::InstanceKind::Shim(ty::ShimKind::ClosureOnce { .. }) =>
                                    true,
                                _ => false,
                            } || self.tcx.is_closure_like(def_id)) &&
                    {
                        let arg = &callee_fn_abi.args[0];

                        #[allow(non_exhaustive_omitted_patterns)]
                        match arg.layout.ty.kind() {
                            ty::Closure(_def, closure_args) if
                                { closure_args.as_closure().upvar_tys().is_empty() } =>
                                true,
                            _ => false,
                        }
                    };
            {
                match (&(args.len() +
                                if with_caller_location { 1 } else { 0 }),
                        &caller_fn_abi.args.len()) {
                    (left_val, right_val) => {
                        if !(*left_val == *right_val) {
                            let kind = ::core::panicking::AssertKind::Eq;
                            ::core::panicking::assert_failed(kind, &*left_val,
                                &*right_val,
                                ::core::option::Option::Some(format_args!("mismatch between caller ABI and caller arguments")));
                        }
                    }
                }
            };
            let mut caller_args = args.iter().zip(caller_fn_abi.args.iter());
            let mut callee_args_abis = callee_fn_abi.args.iter().enumerate();
            M::with_retag_mode(self, RetagMode::FnEntry,
                    |ecx|
                        {
                            for local in body.args_iter() {
                                ecx.frame_mut().loc =
                                    Right(body.local_decls[local].source_info.span);
                                let dest = mir::Place::from(local);
                                let ty = ecx.layout_of_local(ecx.frame(), local, None)?.ty;
                                if is_non_capturing_closure && local == mir::Local::arg(0) {
                                    if !va_list_arg.is_none() {
                                        ::core::panicking::panic("assertion failed: va_list_arg.is_none()")
                                    };
                                    if !(Some(local) != body.spread_arg) {
                                        ::core::panicking::panic("assertion failed: Some(local) != body.spread_arg")
                                    };
                                    let (callee_arg_idx, callee_abi) =
                                        callee_args_abis.next().unwrap();
                                    if !(callee_abi.layout.is_1zst() && callee_abi.is_ignore())
                                        {
                                        ::core::panicking::panic("assertion failed: callee_abi.layout.is_1zst() && callee_abi.is_ignore()")
                                    };
                                    ecx.storage_live(local)?;
                                    if caller_fn_abi.args.len() == callee_fn_abi.args.len() {
                                        let (_caller_arg, caller_abi) = caller_args.next().unwrap();
                                        if !caller_abi.layout.is_1zst() {
                                            do yeet ::rustc_middle::mir::interpret::InterpErrorKind::UndefinedBehavior(::rustc_middle::mir::interpret::UndefinedBehaviorInfo::AbiMismatchArgument {
                                                        arg_idx: callee_arg_idx,
                                                        caller_ty: caller_abi.layout.ty,
                                                        callee_ty: callee_abi.layout.ty,
                                                    });
                                        }
                                        if !caller_abi.is_ignore() {
                                            ::core::panicking::panic("assertion failed: caller_abi.is_ignore()")
                                        };
                                    }
                                } else if Some(local) == va_list_arg {
                                    ecx.storage_live(local)?;
                                    let place = ecx.eval_place(dest, false)?;
                                    let mplace = ecx.force_allocation(&place)?;
                                    let varargs =
                                        M::with_retag_mode(ecx, RetagMode::None,
                                                |ecx|
                                                    {
                                                        ecx.allocate_varargs(&mut caller_args,
                                                            &mut callee_args_abis)
                                                    })?;
                                    ecx.frame_mut().va_list = varargs.clone();
                                    let key = ecx.va_list_ptr(varargs.into());
                                    ecx.write_bytes_ptr(mplace.ptr(),
                                            (0..mplace.layout.size.bytes()).map(|_| 0u8))?;
                                    let key_mplace = ecx.va_list_key_field(&mplace)?;
                                    ecx.write_pointer(key, &key_mplace)?;
                                } else if Some(local) == body.spread_arg {
                                    ecx.storage_live(local)?;
                                    let ty::Tuple(fields) =
                                        ty.kind() else {
                                            ::rustc_middle::util::bug::span_bug_fmt(ecx.cur_span(),
                                                format_args!("non-tuple type for `spread_arg`: {0}", ty))
                                        };
                                    for (i, field_ty) in fields.iter().enumerate() {
                                        let dest =
                                            dest.project_deeper(&[mir::ProjectionElem::Field(FieldIdx::from_usize(i),
                                                                field_ty)], *ecx.tcx);
                                        ecx.pass_argument(&mut caller_args, &mut callee_args_abis,
                                                &dest, field_ty, true)?;
                                    }
                                } else {
                                    ecx.pass_argument(&mut caller_args, &mut callee_args_abis,
                                            &dest, ty, false)?;
                                }
                            }
                            interp_ok(())
                        })?;
            self.frame_mut().loc =
                Right(body.local_decls[mir::RETURN_PLACE].source_info.span);
            if !self.check_argument_compat(&caller_fn_abi.ret,
                            &callee_fn_abi.ret)? {
                do yeet ::rustc_middle::mir::interpret::InterpErrorKind::UndefinedBehavior(::rustc_middle::mir::interpret::UndefinedBehaviorInfo::AbiMismatchReturn {
                            caller_ty: caller_fn_abi.ret.layout.ty,
                            callee_ty: callee_fn_abi.ret.layout.ty,
                        });
            }
            if let Some(mplace) = destination_mplace {
                M::protect_in_place_function_argument(self, &mplace)?;
            }
            self.frame_mut().loc = Right(preamble_span);
            if instance.def.requires_caller_location(*self.tcx) {
                callee_args_abis.next().unwrap();
            }
            if !callee_args_abis.next().is_none() {
                {
                    ::core::panicking::panic_fmt(format_args!("mismatch between callee ABI and callee body arguments"));
                }
            };
            if caller_args.next().is_some() {
                do yeet ::rustc_middle::mir::interpret::InterpErrorKind::UndefinedBehavior(::rustc_middle::mir::interpret::UndefinedBehaviorInfo::Ub(::alloc::__export::must_use({
                                    ::alloc::fmt::format(format_args!("calling a function with more arguments than it expected"))
                                })));
            }
            self.push_stack_frame_done()
        }
    }
}#[instrument(skip(self), level = "trace")]
394    pub fn init_stack_frame(
395        &mut self,
396        instance: Instance<'tcx>,
397        body: &'tcx mir::Body<'tcx>,
398        caller_fn_abi: &FnAbi<'tcx, Ty<'tcx>>,
399        args: &[FnArg<'tcx, M::Provenance>],
400        with_caller_location: bool,
401        destination: &PlaceTy<'tcx, M::Provenance>,
402        mut cont: ReturnContinuation,
403    ) -> InterpResult<'tcx> {
404        let _trace = enter_trace_span!(M, step::init_stack_frame, %instance, tracing_separate_thread = Empty);
405        let def_id = instance.def_id();
406
407        // The first order of business is to figure out the callee signature.
408        // However, that requires the list of variadic arguments.
409        // We use the *caller* information to determine where to split the list of arguments,
410        // and then later check that the callee indeed has the same number of fixed arguments.
411        let extra_tys = if caller_fn_abi.c_variadic {
412            let fixed_count = usize::try_from(caller_fn_abi.fixed_count).unwrap();
413            let extra_tys = args[fixed_count..].iter().map(|arg| arg.layout().ty);
414            self.tcx.mk_type_list_from_iter(extra_tys)
415        } else {
416            ty::List::empty()
417        };
418        let callee_fn_abi = self.fn_abi_of_instance_no_deduced_attrs(instance, extra_tys)?;
419
420        if caller_fn_abi.conv != callee_fn_abi.conv {
421            throw_ub_format!(
422                "calling a function with calling convention \"{callee_conv}\" using calling convention \"{caller_conv}\"",
423                callee_conv = callee_fn_abi.conv,
424                caller_conv = caller_fn_abi.conv,
425            )
426        }
427
428        if caller_fn_abi.c_variadic != callee_fn_abi.c_variadic {
429            throw_ub!(CVariadicMismatch {
430                caller_is_c_variadic: caller_fn_abi.c_variadic,
431                callee_is_c_variadic: callee_fn_abi.c_variadic,
432            });
433        }
434        if caller_fn_abi.c_variadic && caller_fn_abi.fixed_count != callee_fn_abi.fixed_count {
435            throw_ub!(CVariadicFixedCountMismatch {
436                caller: caller_fn_abi.fixed_count,
437                callee: callee_fn_abi.fixed_count,
438            });
439        }
440
441        // Check that all target features required by the callee (i.e., from
442        // the attribute `#[target_feature(enable = ...)]`) are enabled at
443        // compile time.
444        M::check_fn_target_features(self, instance)?;
445
446        if !callee_fn_abi.can_unwind {
447            // The callee cannot unwind, so force the `Unreachable` unwind handling.
448            match &mut cont {
449                ReturnContinuation::Stop { .. } => {}
450                ReturnContinuation::Goto { unwind, .. } => {
451                    *unwind = mir::UnwindAction::Unreachable;
452                }
453            }
454        }
455
456        // *Before* pushing the new frame, determine whether the return destination is in memory.
457        // Need to use `place_to_op` to be *sure* we get the mplace if there is one.
458        let destination_mplace = self.place_to_op(destination)?.as_mplace_or_imm().left();
459
460        // Push the "raw" frame -- this leaves locals uninitialized.
461        self.push_stack_frame_raw(instance, body, destination, cont)?;
462        let preamble_span = self.frame().loc.unwrap_right(); // the span used for preamble errors
463
464        trace!(
465            "caller ABI: {:#?}, args: {:#?}",
466            caller_fn_abi,
467            args.iter()
468                .map(|arg| (
469                    arg.layout().ty,
470                    match arg {
471                        FnArg::Copy(op) => format!("copy({op:?})"),
472                        FnArg::InPlace(mplace) => format!("in-place({mplace:?})"),
473                    }
474                ))
475                .collect::<Vec<_>>()
476        );
477        trace!(
478            "spread_arg: {:?}, locals: {:#?}",
479            body.spread_arg,
480            body.args_iter()
481                .map(|local| (local, self.layout_of_local(self.frame(), local, None).unwrap().ty))
482                .collect::<Vec<_>>()
483        );
484
485        // Determine whether there is a special VaList argument. This is always the
486        // last argument, and since arguments start at index 1 that's `arg_count`.
487        let va_list_arg = callee_fn_abi.c_variadic.then(|| mir::Local::from_usize(body.arg_count));
488        // Determine whether this is a non-capturing closure. That's relevant as their first
489        // argument can be skipped (and that's the only kind of argument skipping we allow).
490        let is_non_capturing_closure =
491            (matches!(instance.def, ty::InstanceKind::Shim(ty::ShimKind::ClosureOnce { .. }))
492                || self.tcx.is_closure_like(def_id))
493                && {
494                    let arg = &callee_fn_abi.args[0];
495                    matches!(arg.layout.ty.kind(), ty::Closure (_def, closure_args) if {
496                        closure_args.as_closure().upvar_tys().is_empty()
497                    })
498                };
499
500        // In principle, we have two iterators: Where the arguments come from, and where
501        // they go to.
502
503        // The "where they come from" part is easy, we expect the caller to do any special handling
504        // that might be required here (e.g. for untupling).
505        // If `with_caller_location` is set we pretend there is an extra argument (that
506        // we will not pass; our `caller_location` intrinsic implementation walks the stack instead).
507        assert_eq!(
508            args.len() + if with_caller_location { 1 } else { 0 },
509            caller_fn_abi.args.len(),
510            "mismatch between caller ABI and caller arguments",
511        );
512        let mut caller_args = args.iter().zip(caller_fn_abi.args.iter());
513
514        // Now we have to spread them out across the callee's locals,
515        // taking into account the `spread_arg`. If we could write
516        // this is a single iterator (that handles `spread_arg`), then
517        // `pass_argument` would be the loop body.
518        let mut callee_args_abis = callee_fn_abi.args.iter().enumerate();
519        // During argument passing, we want retagging with protectors.
520        M::with_retag_mode(self, RetagMode::FnEntry, |ecx| {
521            for local in body.args_iter() {
522                // Update the span that we show in case of an error to point to this argument.
523                ecx.frame_mut().loc = Right(body.local_decls[local].source_info.span);
524                // Construct the destination place for this argument. At this point all
525                // locals are still dead, so we cannot construct a `PlaceTy`.
526                let dest = mir::Place::from(local);
527                // `layout_of_local` does more than just the instantiation we need to get the
528                // type, but the result gets cached so this avoids calling the instantiation
529                // query *again* the next time this local is accessed.
530                let ty = ecx.layout_of_local(ecx.frame(), local, None)?.ty;
531
532                // Some arguments are special: the first (`self`) argument of a non-capturing
533                // closure; the va_list argument; and the spread_arg.
534                if is_non_capturing_closure && local == mir::Local::arg(0) {
535                    assert!(va_list_arg.is_none());
536                    assert!(Some(local) != body.spread_arg);
537                    // This argument might be missing on the caller side. So just initialize it in
538                    // the callee.
539                    let (callee_arg_idx, callee_abi) = callee_args_abis.next().unwrap();
540                    assert!(callee_abi.layout.is_1zst() && callee_abi.is_ignore());
541                    ecx.storage_live(local)?;
542                    // And skip it in the caller, if present. We can tell whether it is present by
543                    // comparing the number of arguments on the caller and callee side.
544                    if caller_fn_abi.args.len() == callee_fn_abi.args.len() {
545                        let (_caller_arg, caller_abi) = caller_args.next().unwrap();
546                        if !caller_abi.layout.is_1zst() {
547                            // The caller gave us some other, non-ignorable argument.
548                            throw_ub!(AbiMismatchArgument {
549                                arg_idx: callee_arg_idx,
550                                caller_ty: caller_abi.layout.ty,
551                                callee_ty: callee_abi.layout.ty
552                            });
553                        }
554                        assert!(caller_abi.is_ignore());
555                    }
556                } else if Some(local) == va_list_arg {
557                    // This is the last callee-side argument of a variadic function.
558                    // This argument is a VaList holding the remaining caller-side arguments.
559                    ecx.storage_live(local)?;
560
561                    let place =
562                        ecx.eval_place(dest, /* skip_validity_for_simple_deref */ false)?;
563                    let mplace = ecx.force_allocation(&place)?;
564
565                    // Consume the remaining arguments by putting them into the variable argument
566                    // list. We disable retagging to avoid creating protected tags. Protection should
567                    // only use callee-side information, and the varargs have no static callee-side type.
568                    let varargs = M::with_retag_mode(ecx, RetagMode::None, |ecx| {
569                        ecx.allocate_varargs(&mut caller_args, &mut callee_args_abis)
570                    })?;
571
572                    // When the frame is dropped, these variable arguments are deallocated.
573                    ecx.frame_mut().va_list = varargs.clone();
574                    let key = ecx.va_list_ptr(varargs.into());
575
576                    // Zero the VaList, so it is fully initialized.
577                    ecx.write_bytes_ptr(
578                        mplace.ptr(),
579                        (0..mplace.layout.size.bytes()).map(|_| 0u8),
580                    )?;
581
582                    // Store the "key" pointer in the right field.
583                    let key_mplace = ecx.va_list_key_field(&mplace)?;
584                    ecx.write_pointer(key, &key_mplace)?;
585                } else if Some(local) == body.spread_arg {
586                    // Make the local live once, then fill in the value field by field.
587                    ecx.storage_live(local)?;
588                    // Must be a tuple
589                    let ty::Tuple(fields) = ty.kind() else {
590                        span_bug!(ecx.cur_span(), "non-tuple type for `spread_arg`: {ty}")
591                    };
592                    for (i, field_ty) in fields.iter().enumerate() {
593                        let dest = dest.project_deeper(
594                            &[mir::ProjectionElem::Field(FieldIdx::from_usize(i), field_ty)],
595                            *ecx.tcx,
596                        );
597                        ecx.pass_argument(
598                            &mut caller_args,
599                            &mut callee_args_abis,
600                            &dest,
601                            field_ty,
602                            /* already_live */ true,
603                        )?;
604                    }
605                } else {
606                    // Normal argument. Cannot mark it as live yet, it might be unsized!
607                    ecx.pass_argument(
608                        &mut caller_args,
609                        &mut callee_args_abis,
610                        &dest,
611                        ty,
612                        /* already_live */ false,
613                    )?;
614                }
615            }
616            interp_ok(())
617        })?;
618
619        // Don't forget to check the return type!
620        self.frame_mut().loc = Right(body.local_decls[mir::RETURN_PLACE].source_info.span);
621        if !self.check_argument_compat(&caller_fn_abi.ret, &callee_fn_abi.ret)? {
622            throw_ub!(AbiMismatchReturn {
623                caller_ty: caller_fn_abi.ret.layout.ty,
624                callee_ty: callee_fn_abi.ret.layout.ty
625            });
626        }
627        // Protect return place for in-place return value passing.
628        // We only need to protect anything if this is actually an in-memory place.
629        if let Some(mplace) = destination_mplace {
630            M::protect_in_place_function_argument(self, &mplace)?;
631        }
632
633        // For the final checks, use same span as preamble since it is unclear what else to do.
634        self.frame_mut().loc = Right(preamble_span);
635        // If the callee needs a caller location, pretend we consume one more argument from the ABI.
636        if instance.def.requires_caller_location(*self.tcx) {
637            callee_args_abis.next().unwrap();
638        }
639        // Now we should have no more caller args or callee arg ABIs.
640        assert!(
641            callee_args_abis.next().is_none(),
642            "mismatch between callee ABI and callee body arguments"
643        );
644        if caller_args.next().is_some() {
645            throw_ub_format!("calling a function with more arguments than it expected");
646        }
647
648        // Done!
649        self.push_stack_frame_done()
650    }
651
652    /// Initiate a call to this function -- pushing the stack frame and initializing the arguments.
653    ///
654    /// `caller_fn_abi` is used to determine if all the arguments are passed the proper way.
655    /// However, we also need `caller_abi` to determine if we need to do untupling of arguments.
656    ///
657    /// `with_caller_location` indicates whether the caller passed a caller location. Miri
658    /// implements caller locations without argument passing, but to match `FnAbi` we need to know
659    /// when those arguments are present.
660    pub(super) fn init_fn_call(
661        &mut self,
662        fn_val: FnVal<'tcx, M::ExtraFnVal>,
663        (caller_abi, caller_fn_abi): (ExternAbi, &FnAbi<'tcx, Ty<'tcx>>),
664        args: &[FnArg<'tcx, M::Provenance>],
665        with_caller_location: bool,
666        destination: &PlaceTy<'tcx, M::Provenance>,
667        target: Option<mir::BasicBlock>,
668        unwind: mir::UnwindAction,
669    ) -> InterpResult<'tcx> {
670        let _trace =
671            <M as
        crate::interpret::Machine>::enter_trace_span(||
        {
            use ::tracing::__macro_support::Callsite as _;
            static __CALLSITE: ::tracing::callsite::DefaultCallsite =
                {
                    static META: ::tracing::Metadata<'static> =
                        {
                            ::tracing_core::metadata::Metadata::new("step",
                                "rustc_const_eval::interpret::call", ::tracing::Level::INFO,
                                ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                                ::tracing_core::__macro_support::Option::Some(671u32),
                                ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                                ::tracing_core::field::FieldSet::new(&[{
                                                    const NAME:
                                                        ::tracing::__macro_support::FieldName<{
                                                            ::tracing::__macro_support::FieldName::len("step")
                                                        }> =
                                                        ::tracing::__macro_support::FieldName::new("step");
                                                    NAME.as_str()
                                                },
                                                {
                                                    const NAME:
                                                        ::tracing::__macro_support::FieldName<{
                                                            ::tracing::__macro_support::FieldName::len("tracing_separate_thread")
                                                        }> =
                                                        ::tracing::__macro_support::FieldName::new("tracing_separate_thread");
                                                    NAME.as_str()
                                                },
                                                {
                                                    const NAME:
                                                        ::tracing::__macro_support::FieldName<{
                                                            ::tracing::__macro_support::FieldName::len("fn_val")
                                                        }> =
                                                        ::tracing::__macro_support::FieldName::new("fn_val");
                                                    NAME.as_str()
                                                }], ::tracing_core::callsite::Identifier(&__CALLSITE)),
                                ::tracing::metadata::Kind::SPAN)
                        };
                    ::tracing::callsite::DefaultCallsite::new(&META)
                };
            let mut interest = ::tracing::subscriber::Interest::never();
            if ::tracing::Level::INFO <=
                                ::tracing::level_filters::STATIC_MAX_LEVEL &&
                            ::tracing::Level::INFO <=
                                ::tracing::level_filters::LevelFilter::current() &&
                        { interest = __CALLSITE.interest(); !interest.is_never() }
                    &&
                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                        interest) {
                let meta = __CALLSITE.metadata();
                ::tracing::Span::new(meta,
                    &{
                            #[allow(unused_imports)]
                            use ::tracing::field::{debug, display, Value};
                            meta.fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&::tracing::field::display(&"init_fn_call")
                                                        as &dyn ::tracing::field::Value)),
                                            (::tracing::__macro_support::Option::Some(&Empty as
                                                        &dyn ::tracing::field::Value)),
                                            (::tracing::__macro_support::Option::Some(&::tracing::field::debug(&fn_val)
                                                        as &dyn ::tracing::field::Value))])
                        })
            } else {
                let span =
                    ::tracing::__macro_support::__disabled_span(__CALLSITE.metadata());
                {};
                span
            }
        })enter_trace_span!(M, step::init_fn_call, tracing_separate_thread = Empty, ?fn_val)
672                .or_if_tracing_disabled(|| {
    use ::tracing::__macro_support::Callsite as _;
    static __CALLSITE: ::tracing::callsite::DefaultCallsite =
        {
            static META: ::tracing::Metadata<'static> =
                {
                    ::tracing_core::metadata::Metadata::new("event compiler/rustc_const_eval/src/interpret/call.rs:672",
                        "rustc_const_eval::interpret::call",
                        ::tracing::Level::TRACE,
                        ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                        ::tracing_core::__macro_support::Option::Some(672u32),
                        ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                        ::tracing_core::field::FieldSet::new(&["message"],
                            ::tracing_core::callsite::Identifier(&__CALLSITE)),
                        ::tracing::metadata::Kind::EVENT)
                };
            ::tracing::callsite::DefaultCallsite::new(&META)
        };
    let enabled =
        ::tracing::Level::TRACE <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::TRACE <=
                    ::tracing::level_filters::LevelFilter::current() &&
            {
                let interest = __CALLSITE.interest();
                !interest.is_never() &&
                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                        interest)
            };
    if enabled {
        (|value_set: ::tracing::field::ValueSet|
                    {
                        let meta = __CALLSITE.metadata();
                        ::tracing::Event::dispatch(meta, &value_set);
                        ;
                    })({
                #[allow(unused_imports)]
                use ::tracing::field::{debug, display, Value};
                __CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("init_fn_call: {0:#?}",
                                                    fn_val) as &dyn ::tracing::field::Value))])
            });
    } else { ; }
}trace!("init_fn_call: {:#?}", fn_val));
673
674        let instance = match fn_val {
675            FnVal::Instance(instance) => instance,
676            FnVal::Other(extra) => {
677                return M::call_extra_fn(
678                    self,
679                    extra,
680                    caller_fn_abi,
681                    args,
682                    destination,
683                    target,
684                    unwind,
685                );
686            }
687        };
688
689        match instance.def {
690            ty::InstanceKind::Intrinsic(def_id) => {
691                if !self.tcx.intrinsic(def_id).is_some() {
    ::core::panicking::panic("assertion failed: self.tcx.intrinsic(def_id).is_some()")
};assert!(self.tcx.intrinsic(def_id).is_some());
692                // FIXME: Should `InPlace` arguments be reset to uninit?
693                if let Some(fallback) = M::call_intrinsic(
694                    self,
695                    instance,
696                    &Self::copy_fn_args(args),
697                    destination,
698                    target,
699                    unwind,
700                )? {
701                    if !!self.tcx.intrinsic(fallback.def_id()).unwrap().must_be_overridden {
    ::core::panicking::panic("assertion failed: !self.tcx.intrinsic(fallback.def_id()).unwrap().must_be_overridden")
};assert!(!self.tcx.intrinsic(fallback.def_id()).unwrap().must_be_overridden);
702                    {
    match fallback.def {
        ty::InstanceKind::Item(_) => {}
        ref left_val => {
            ::core::panicking::assert_matches_failed(left_val,
                "ty::InstanceKind::Item(_)", ::core::option::Option::None);
        }
    }
};assert_matches!(fallback.def, ty::InstanceKind::Item(_));
703                    return self.init_fn_call(
704                        FnVal::Instance(fallback),
705                        (caller_abi, caller_fn_abi),
706                        args,
707                        with_caller_location,
708                        destination,
709                        target,
710                        unwind,
711                    );
712                } else {
713                    interp_ok(())
714                }
715            }
716            ty::InstanceKind::LlvmIntrinsic(_) => {
717                // FIXME: Should `InPlace` arguments be reset to uninit?
718                M::call_llvm_intrinsic(
719                    self,
720                    instance,
721                    &Self::copy_fn_args(args),
722                    destination,
723                    target,
724                )
725            }
726            ty::InstanceKind::Shim(ty::ShimKind::VTable(..))
727            | ty::InstanceKind::Shim(ty::ShimKind::Reify(..))
728            | ty::InstanceKind::Shim(ty::ShimKind::ClosureOnce { .. })
729            | ty::InstanceKind::Shim(ty::ShimKind::ConstructCoroutineInClosure { .. })
730            | ty::InstanceKind::Shim(ty::ShimKind::FnPtr(..))
731            | ty::InstanceKind::Shim(ty::ShimKind::DropGlue(..))
732            | ty::InstanceKind::Shim(ty::ShimKind::Clone(..))
733            | ty::InstanceKind::Shim(ty::ShimKind::FnPtrAddr(..))
734            | ty::InstanceKind::Shim(ty::ShimKind::ThreadLocal(..))
735            | ty::InstanceKind::Shim(ty::ShimKind::AsyncDropGlueCtor(..))
736            | ty::InstanceKind::Shim(ty::ShimKind::AsyncDropGlue(..))
737            | ty::InstanceKind::Shim(ty::ShimKind::FutureDropPoll(..))
738            | ty::InstanceKind::Item(_) => {
739                // We need MIR for this fn.
740                // Note that this can be an intrinsic, if we are executing its fallback body.
741                let Some((body, instance)) = M::find_mir_or_eval_fn(
742                    self,
743                    instance,
744                    caller_fn_abi,
745                    args,
746                    destination,
747                    target,
748                    unwind,
749                )?
750                else {
751                    return interp_ok(());
752                };
753
754                // Special handling for the closure ABI: untuple the last argument.
755                // FIXME(splat): un-tuple splatted arguments that were tupled in typecheck
756                let args: Cow<'_, [FnArg<'tcx, M::Provenance>]> =
757                    if caller_abi == ExternAbi::RustCall && !args.is_empty() {
758                        // Untuple
759                        let (untuple_arg, args) = args.split_last().unwrap();
760                        let ty::Tuple(untuple_fields) = untuple_arg.layout().ty.kind() else {
761                            ::rustc_middle::util::bug::span_bug_fmt(self.cur_span(),
    format_args!("untuple argument must be a tuple"))span_bug!(self.cur_span(), "untuple argument must be a tuple")
762                        };
763                        {
    use ::tracing::__macro_support::Callsite as _;
    static __CALLSITE: ::tracing::callsite::DefaultCallsite =
        {
            static META: ::tracing::Metadata<'static> =
                {
                    ::tracing_core::metadata::Metadata::new("event compiler/rustc_const_eval/src/interpret/call.rs:763",
                        "rustc_const_eval::interpret::call",
                        ::tracing::Level::TRACE,
                        ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                        ::tracing_core::__macro_support::Option::Some(763u32),
                        ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                        ::tracing_core::field::FieldSet::new(&["message"],
                            ::tracing_core::callsite::Identifier(&__CALLSITE)),
                        ::tracing::metadata::Kind::EVENT)
                };
            ::tracing::callsite::DefaultCallsite::new(&META)
        };
    let enabled =
        ::tracing::Level::TRACE <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::TRACE <=
                    ::tracing::level_filters::LevelFilter::current() &&
            {
                let interest = __CALLSITE.interest();
                !interest.is_never() &&
                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                        interest)
            };
    if enabled {
        (|value_set: ::tracing::field::ValueSet|
                    {
                        let meta = __CALLSITE.metadata();
                        ::tracing::Event::dispatch(meta, &value_set);
                        ;
                    })({
                #[allow(unused_imports)]
                use ::tracing::field::{debug, display, Value};
                __CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("init_fn_call: Will pass last argument by untupling")
                                            as &dyn ::tracing::field::Value))])
            });
    } else { ; }
};trace!("init_fn_call: Will pass last argument by untupling");
764                        Cow::from(
765                            args.iter()
766                                // The regular arguments.
767                                .map(|a| interp_ok(a.clone()))
768                                // The fields of the untupled argument.
769                                .chain((0..untuple_fields.len()).map(|i| {
770                                    self.fn_arg_project_field(untuple_arg, FieldIdx::from_usize(i))
771                                }))
772                                .collect::<InterpResult<'_, Vec<_>>>()?,
773                        )
774                    } else {
775                        // Plain arg passing
776                        Cow::from(args)
777                    };
778
779                self.init_stack_frame(
780                    instance,
781                    body,
782                    caller_fn_abi,
783                    &args,
784                    with_caller_location,
785                    destination,
786                    ReturnContinuation::Goto { ret: target, unwind },
787                )
788            }
789            // `InstanceKind::Virtual` does not have callable MIR. Calls to `Virtual` instances must be
790            // codegen'd / interpreted as virtual calls through the vtable.
791            ty::InstanceKind::Virtual(def_id, idx) => {
792                let mut args = args.to_vec();
793                // We have to implement all "dyn-compatible receivers". So we have to go search for a
794                // pointer or `dyn Trait` type, but it could be wrapped in newtypes. So recursively
795                // unwrap those newtypes until we are there.
796                // An `InPlace` does nothing here, we keep the original receiver intact. We can't
797                // really pass the argument in-place anyway, and we are constructing a new
798                // `Immediate` receiver.
799                let mut receiver = args[0].copy_fn_arg();
800                let receiver_place = loop {
801                    match receiver.layout.ty.kind() {
802                        ty::Ref(..) | ty::RawPtr(..) => {
803                            // We do *not* use `deref_pointer` here: we don't want to conceptually
804                            // create a place that must be dereferenceable, since the receiver might
805                            // be a raw pointer and (for `*const dyn Trait`) we don't need to
806                            // actually access memory to resolve this method.
807                            // Also see <https://github.com/rust-lang/miri/issues/2786>.
808                            let val = self.read_immediate(&receiver)?;
809                            break self.imm_ptr_to_mplace(&val)?;
810                        }
811                        ty::Dynamic(..) => break receiver.assert_mem_place(), // no immediate unsized values
812                        _ => {
813                            // Not there yet, search for the only non-ZST field.
814                            // (The rules for `DispatchFromDyn` ensure there's exactly one such field.)
815                            let (idx, _) = receiver.layout.non_1zst_field(self).expect(
816                                "not exactly one non-1-ZST field in a `DispatchFromDyn` type",
817                            );
818                            receiver = self.project_field(&receiver, idx)?;
819                        }
820                    }
821                };
822
823                // Obtain the underlying trait we are working on, and the adjusted receiver argument.
824                // Doesn't have to be a `dyn Trait`, but the unsized tail must be `dyn Trait`.
825                // (For that reason we also cannot use `unpack_dyn_trait`.)
826                let receiver_tail =
827                    self.tcx.struct_tail_for_codegen(receiver_place.layout.ty, self.typing_env);
828                let ty::Dynamic(receiver_trait, _) = receiver_tail.kind() else {
829                    ::rustc_middle::util::bug::span_bug_fmt(self.cur_span(),
    format_args!("dynamic call on non-`dyn` type {0}", receiver_tail))span_bug!(self.cur_span(), "dynamic call on non-`dyn` type {}", receiver_tail)
830                };
831                if !receiver_place.layout.is_unsized() {
    ::core::panicking::panic("assertion failed: receiver_place.layout.is_unsized()")
};assert!(receiver_place.layout.is_unsized());
832
833                // Get the required information from the vtable.
834                let vptr = receiver_place.meta().unwrap_meta().to_pointer(self)?;
835                let dyn_ty = self.get_ptr_vtable_ty(vptr, Some(receiver_trait))?;
836                let adjusted_recv = receiver_place.ptr();
837
838                // Now determine the actual method to call. Usually we use the easy way of just
839                // looking up the method at index `idx`.
840                let vtable_entries = self.vtable_entries(receiver_trait.principal(), dyn_ty);
841                let Some(ty::VtblEntry::Method(fn_inst)) = vtable_entries.get(idx).copied() else {
842                    // FIXME(fee1-dead) these could be variants of the UB info enum instead of this
843                    do yeet ::rustc_middle::mir::interpret::InterpErrorKind::UndefinedBehavior(::rustc_middle::mir::interpret::UndefinedBehaviorInfo::Ub(::alloc::__export::must_use({
                    ::alloc::fmt::format(format_args!("`dyn` call trying to call something that is not a method"))
                })));throw_ub_format!("`dyn` call trying to call something that is not a method");
844                };
845                {
    use ::tracing::__macro_support::Callsite as _;
    static __CALLSITE: ::tracing::callsite::DefaultCallsite =
        {
            static META: ::tracing::Metadata<'static> =
                {
                    ::tracing_core::metadata::Metadata::new("event compiler/rustc_const_eval/src/interpret/call.rs:845",
                        "rustc_const_eval::interpret::call",
                        ::tracing::Level::TRACE,
                        ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                        ::tracing_core::__macro_support::Option::Some(845u32),
                        ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                        ::tracing_core::field::FieldSet::new(&["message"],
                            ::tracing_core::callsite::Identifier(&__CALLSITE)),
                        ::tracing::metadata::Kind::EVENT)
                };
            ::tracing::callsite::DefaultCallsite::new(&META)
        };
    let enabled =
        ::tracing::Level::TRACE <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::TRACE <=
                    ::tracing::level_filters::LevelFilter::current() &&
            {
                let interest = __CALLSITE.interest();
                !interest.is_never() &&
                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                        interest)
            };
    if enabled {
        (|value_set: ::tracing::field::ValueSet|
                    {
                        let meta = __CALLSITE.metadata();
                        ::tracing::Event::dispatch(meta, &value_set);
                        ;
                    })({
                #[allow(unused_imports)]
                use ::tracing::field::{debug, display, Value};
                __CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("Virtual call dispatches to {0:#?}",
                                                    fn_inst) as &dyn ::tracing::field::Value))])
            });
    } else { ; }
};trace!("Virtual call dispatches to {fn_inst:#?}");
846                // We can also do the lookup based on `def_id` and `dyn_ty`, and check that that
847                // produces the same result.
848                self.assert_virtual_instance_matches_concrete(dyn_ty, def_id, instance, fn_inst);
849
850                // Adjust receiver argument. Layout can be any (thin) ptr.
851                let receiver_ty = Ty::new_mut_ptr(self.tcx.tcx, dyn_ty);
852                args[0] = FnArg::Copy(
853                    ImmTy::from_immediate(
854                        Scalar::from_maybe_pointer(adjusted_recv, self).into(),
855                        self.layout_of(receiver_ty)?,
856                    )
857                    .into(),
858                );
859                {
    use ::tracing::__macro_support::Callsite as _;
    static __CALLSITE: ::tracing::callsite::DefaultCallsite =
        {
            static META: ::tracing::Metadata<'static> =
                {
                    ::tracing_core::metadata::Metadata::new("event compiler/rustc_const_eval/src/interpret/call.rs:859",
                        "rustc_const_eval::interpret::call",
                        ::tracing::Level::TRACE,
                        ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                        ::tracing_core::__macro_support::Option::Some(859u32),
                        ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                        ::tracing_core::field::FieldSet::new(&["message"],
                            ::tracing_core::callsite::Identifier(&__CALLSITE)),
                        ::tracing::metadata::Kind::EVENT)
                };
            ::tracing::callsite::DefaultCallsite::new(&META)
        };
    let enabled =
        ::tracing::Level::TRACE <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::TRACE <=
                    ::tracing::level_filters::LevelFilter::current() &&
            {
                let interest = __CALLSITE.interest();
                !interest.is_never() &&
                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                        interest)
            };
    if enabled {
        (|value_set: ::tracing::field::ValueSet|
                    {
                        let meta = __CALLSITE.metadata();
                        ::tracing::Event::dispatch(meta, &value_set);
                        ;
                    })({
                #[allow(unused_imports)]
                use ::tracing::field::{debug, display, Value};
                __CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("Patched receiver operand to {0:#?}",
                                                    args[0]) as &dyn ::tracing::field::Value))])
            });
    } else { ; }
};trace!("Patched receiver operand to {:#?}", args[0]);
860                // Need to also adjust the type in the ABI. Strangely, the layout there is actually
861                // already fine! Just the type is bogus. This is due to what `force_thin_self_ptr`
862                // does in `fn_abi_new_uncached`; supposedly, codegen relies on having the bogus
863                // type, so we just patch this up locally.
864                let mut caller_fn_abi = caller_fn_abi.clone();
865                caller_fn_abi.args[0].layout.ty = receiver_ty;
866
867                // recurse with concrete function
868                self.init_fn_call(
869                    FnVal::Instance(fn_inst),
870                    (caller_abi, &caller_fn_abi),
871                    &args,
872                    with_caller_location,
873                    destination,
874                    target,
875                    unwind,
876                )
877            }
878        }
879    }
880
881    fn assert_virtual_instance_matches_concrete(
882        &self,
883        dyn_ty: Ty<'tcx>,
884        def_id: DefId,
885        virtual_instance: ty::Instance<'tcx>,
886        concrete_instance: ty::Instance<'tcx>,
887    ) {
888        let tcx = *self.tcx;
889
890        let trait_def_id = tcx.parent(def_id);
891        let virtual_trait_ref = ty::TraitRef::from_assoc(tcx, trait_def_id, virtual_instance.args);
892        let existential_trait_ref = ty::ExistentialTraitRef::erase_self_ty(tcx, virtual_trait_ref);
893        let concrete_trait_ref = existential_trait_ref.with_self_ty(tcx, dyn_ty);
894
895        let concrete_method = {
896            let _trace = <M as
        crate::interpret::Machine>::enter_trace_span(||
        {
            use ::tracing::__macro_support::Callsite as _;
            static __CALLSITE: ::tracing::callsite::DefaultCallsite =
                {
                    static META: ::tracing::Metadata<'static> =
                        {
                            ::tracing_core::metadata::Metadata::new("resolve",
                                "rustc_const_eval::interpret::call", ::tracing::Level::INFO,
                                ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                                ::tracing_core::__macro_support::Option::Some(896u32),
                                ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                                ::tracing_core::field::FieldSet::new(&[{
                                                    const NAME:
                                                        ::tracing::__macro_support::FieldName<{
                                                            ::tracing::__macro_support::FieldName::len("resolve")
                                                        }> =
                                                        ::tracing::__macro_support::FieldName::new("resolve");
                                                    NAME.as_str()
                                                },
                                                {
                                                    const NAME:
                                                        ::tracing::__macro_support::FieldName<{
                                                            ::tracing::__macro_support::FieldName::len("def_id")
                                                        }> =
                                                        ::tracing::__macro_support::FieldName::new("def_id");
                                                    NAME.as_str()
                                                }], ::tracing_core::callsite::Identifier(&__CALLSITE)),
                                ::tracing::metadata::Kind::SPAN)
                        };
                    ::tracing::callsite::DefaultCallsite::new(&META)
                };
            let mut interest = ::tracing::subscriber::Interest::never();
            if ::tracing::Level::INFO <=
                                ::tracing::level_filters::STATIC_MAX_LEVEL &&
                            ::tracing::Level::INFO <=
                                ::tracing::level_filters::LevelFilter::current() &&
                        { interest = __CALLSITE.interest(); !interest.is_never() }
                    &&
                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                        interest) {
                let meta = __CALLSITE.metadata();
                ::tracing::Span::new(meta,
                    &{
                            #[allow(unused_imports)]
                            use ::tracing::field::{debug, display, Value};
                            meta.fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&::tracing::field::display(&"expect_resolve_for_vtable")
                                                        as &dyn ::tracing::field::Value)),
                                            (::tracing::__macro_support::Option::Some(&::tracing::field::debug(&def_id)
                                                        as &dyn ::tracing::field::Value))])
                        })
            } else {
                let span =
                    ::tracing::__macro_support::__disabled_span(__CALLSITE.metadata());
                {};
                span
            }
        })enter_trace_span!(M, resolve::expect_resolve_for_vtable, ?def_id);
897            Instance::expect_resolve_for_vtable(
898                tcx,
899                self.typing_env,
900                def_id,
901                virtual_instance.args.rebase_onto(tcx, trait_def_id, concrete_trait_ref.args),
902                self.cur_span(),
903            )
904        };
905        {
    match (&concrete_instance, &concrete_method) {
        (left_val, right_val) => {
            if !(*left_val == *right_val) {
                let kind = ::core::panicking::AssertKind::Eq;
                ::core::panicking::assert_failed(kind, &*left_val,
                    &*right_val, ::core::option::Option::None);
            }
        }
    }
};assert_eq!(concrete_instance, concrete_method);
906    }
907
908    /// Initiate a tail call to this function -- popping the current stack frame, pushing the new
909    /// stack frame and initializing the arguments.
910    pub(super) fn init_fn_tail_call(
911        &mut self,
912        fn_val: FnVal<'tcx, M::ExtraFnVal>,
913        (caller_abi, caller_fn_abi): (ExternAbi, &FnAbi<'tcx, Ty<'tcx>>),
914        args: &[FnArg<'tcx, M::Provenance>],
915        with_caller_location: bool,
916    ) -> InterpResult<'tcx> {
917        {
    use ::tracing::__macro_support::Callsite as _;
    static __CALLSITE: ::tracing::callsite::DefaultCallsite =
        {
            static META: ::tracing::Metadata<'static> =
                {
                    ::tracing_core::metadata::Metadata::new("event compiler/rustc_const_eval/src/interpret/call.rs:917",
                        "rustc_const_eval::interpret::call",
                        ::tracing::Level::TRACE,
                        ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                        ::tracing_core::__macro_support::Option::Some(917u32),
                        ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                        ::tracing_core::field::FieldSet::new(&["message"],
                            ::tracing_core::callsite::Identifier(&__CALLSITE)),
                        ::tracing::metadata::Kind::EVENT)
                };
            ::tracing::callsite::DefaultCallsite::new(&META)
        };
    let enabled =
        ::tracing::Level::TRACE <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::TRACE <=
                    ::tracing::level_filters::LevelFilter::current() &&
            {
                let interest = __CALLSITE.interest();
                !interest.is_never() &&
                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                        interest)
            };
    if enabled {
        (|value_set: ::tracing::field::ValueSet|
                    {
                        let meta = __CALLSITE.metadata();
                        ::tracing::Event::dispatch(meta, &value_set);
                        ;
                    })({
                #[allow(unused_imports)]
                use ::tracing::field::{debug, display, Value};
                __CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("init_fn_tail_call: {0:#?}",
                                                    fn_val) as &dyn ::tracing::field::Value))])
            });
    } else { ; }
};trace!("init_fn_tail_call: {:#?}", fn_val);
918        // This is the "canonical" implementation of tails calls,
919        // a pop of the current stack frame, followed by a normal call
920        // which pushes a new stack frame, with the return address from
921        // the popped stack frame.
922        //
923        // Note that we cannot use `return_from_current_stack_frame`,
924        // as that "executes" the goto to the return block, but we don't want to,
925        // only the tail called function should return to the current return block.
926
927        // The arguments need to all be copied since the current stack frame will be removed
928        // before the callee even starts executing.
929        // FIXME(explicit_tail_calls,#144855): does this match what codegen does?
930        let args = args.iter().map(|fn_arg| FnArg::Copy(fn_arg.copy_fn_arg())).collect::<Vec<_>>();
931        // Remove the frame from the stack.
932        let frame = self.pop_stack_frame_raw()?;
933        // Remember where this frame would have returned to.
934        let ReturnContinuation::Goto { ret, unwind } = frame.return_cont() else {
935            ::rustc_middle::util::bug::bug_fmt(format_args!("can\'t tailcall as root of the stack"));bug!("can't tailcall as root of the stack");
936        };
937        // There's no return value to deal with! Instead, we forward the old return place
938        // to the new function.
939        // FIXME(explicit_tail_calls):
940        //   we should check if both caller&callee can/n't unwind,
941        //   see <https://github.com/rust-lang/rust/pull/113128#issuecomment-1614979803>
942
943        // Now push the new stack frame.
944        self.init_fn_call(
945            fn_val,
946            (caller_abi, caller_fn_abi),
947            &*args,
948            with_caller_location,
949            frame.return_place(),
950            ret,
951            unwind,
952        )?;
953
954        // Finally, clear the local variables. Has to be done after pushing to support
955        // non-scalar arguments.
956        // FIXME(explicit_tail_calls,#144855): revisit this once codegen supports indirect
957        // arguments, to ensure the semantics are compatible.
958        let return_action = self.cleanup_stack_frame(/* unwinding */ false, frame)?;
959        {
    match (&return_action, &ReturnAction::Normal) {
        (left_val, right_val) => {
            if !(*left_val == *right_val) {
                let kind = ::core::panicking::AssertKind::Eq;
                ::core::panicking::assert_failed(kind, &*left_val,
                    &*right_val, ::core::option::Option::None);
            }
        }
    }
};assert_eq!(return_action, ReturnAction::Normal);
960
961        interp_ok(())
962    }
963
964    pub(super) fn init_drop_in_place_call(
965        &mut self,
966        place: &PlaceTy<'tcx, M::Provenance>,
967        instance: ty::Instance<'tcx>,
968        target: mir::BasicBlock,
969        unwind: mir::UnwindAction,
970    ) -> InterpResult<'tcx> {
971        {
    use ::tracing::__macro_support::Callsite as _;
    static __CALLSITE: ::tracing::callsite::DefaultCallsite =
        {
            static META: ::tracing::Metadata<'static> =
                {
                    ::tracing_core::metadata::Metadata::new("event compiler/rustc_const_eval/src/interpret/call.rs:971",
                        "rustc_const_eval::interpret::call",
                        ::tracing::Level::TRACE,
                        ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                        ::tracing_core::__macro_support::Option::Some(971u32),
                        ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                        ::tracing_core::field::FieldSet::new(&["message"],
                            ::tracing_core::callsite::Identifier(&__CALLSITE)),
                        ::tracing::metadata::Kind::EVENT)
                };
            ::tracing::callsite::DefaultCallsite::new(&META)
        };
    let enabled =
        ::tracing::Level::TRACE <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::TRACE <=
                    ::tracing::level_filters::LevelFilter::current() &&
            {
                let interest = __CALLSITE.interest();
                !interest.is_never() &&
                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                        interest)
            };
    if enabled {
        (|value_set: ::tracing::field::ValueSet|
                    {
                        let meta = __CALLSITE.metadata();
                        ::tracing::Event::dispatch(meta, &value_set);
                        ;
                    })({
                #[allow(unused_imports)]
                use ::tracing::field::{debug, display, Value};
                __CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("init_drop_in_place_call: {0:?},\n  instance={1:?}",
                                                    place, instance) as &dyn ::tracing::field::Value))])
            });
    } else { ; }
};trace!("init_drop_in_place_call: {:?},\n  instance={:?}", place, instance);
972        // We take the address of the object. This may well be unaligned, which is fine
973        // for us here. However, unaligned accesses will probably make the actual drop
974        // implementation fail -- a problem shared by rustc.
975        let place = self.force_allocation(place)?;
976
977        // We behave a bit different from codegen here.
978        // Codegen creates an `InstanceKind::Virtual` with index 0 (the slot of the drop method) and
979        // then dispatches that to the normal call machinery. However, our call machinery currently
980        // only supports calling `VtblEntry::Method`; it would choke on a `MetadataDropInPlace`. So
981        // instead we do the virtual call stuff ourselves. It's easier here than in `eval_fn_call`
982        // since we can just get a place of the underlying type and use `mplace_to_imm_ptr`.
983        let place = match place.layout.ty.kind() {
984            ty::Dynamic(data, _) => {
985                // Dropping a trait object. Need to find actual drop fn.
986                self.unpack_dyn_trait(&place, data)?
987            }
988            _ => {
989                if true {
    {
        match (&instance,
                &ty::Instance::resolve_drop_glue(*self.tcx, place.layout.ty))
            {
            (left_val, right_val) => {
                if !(*left_val == *right_val) {
                    let kind = ::core::panicking::AssertKind::Eq;
                    ::core::panicking::assert_failed(kind, &*left_val,
                        &*right_val, ::core::option::Option::None);
                }
            }
        }
    };
};debug_assert_eq!(
990                    instance,
991                    ty::Instance::resolve_drop_glue(*self.tcx, place.layout.ty)
992                );
993                place
994            }
995        };
996
997        let instance = {
998            let _trace = <M as
        crate::interpret::Machine>::enter_trace_span(||
        {
            use ::tracing::__macro_support::Callsite as _;
            static __CALLSITE: ::tracing::callsite::DefaultCallsite =
                {
                    static META: ::tracing::Metadata<'static> =
                        {
                            ::tracing_core::metadata::Metadata::new("resolve",
                                "rustc_const_eval::interpret::call", ::tracing::Level::INFO,
                                ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                                ::tracing_core::__macro_support::Option::Some(998u32),
                                ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                                ::tracing_core::field::FieldSet::new(&[{
                                                    const NAME:
                                                        ::tracing::__macro_support::FieldName<{
                                                            ::tracing::__macro_support::FieldName::len("resolve")
                                                        }> =
                                                        ::tracing::__macro_support::FieldName::new("resolve");
                                                    NAME.as_str()
                                                },
                                                {
                                                    const NAME:
                                                        ::tracing::__macro_support::FieldName<{
                                                            ::tracing::__macro_support::FieldName::len("ty")
                                                        }> =
                                                        ::tracing::__macro_support::FieldName::new("ty");
                                                    NAME.as_str()
                                                }], ::tracing_core::callsite::Identifier(&__CALLSITE)),
                                ::tracing::metadata::Kind::SPAN)
                        };
                    ::tracing::callsite::DefaultCallsite::new(&META)
                };
            let mut interest = ::tracing::subscriber::Interest::never();
            if ::tracing::Level::INFO <=
                                ::tracing::level_filters::STATIC_MAX_LEVEL &&
                            ::tracing::Level::INFO <=
                                ::tracing::level_filters::LevelFilter::current() &&
                        { interest = __CALLSITE.interest(); !interest.is_never() }
                    &&
                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                        interest) {
                let meta = __CALLSITE.metadata();
                ::tracing::Span::new(meta,
                    &{
                            #[allow(unused_imports)]
                            use ::tracing::field::{debug, display, Value};
                            meta.fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&::tracing::field::display(&"resolve_drop_glue")
                                                        as &dyn ::tracing::field::Value)),
                                            (::tracing::__macro_support::Option::Some(&::tracing::field::debug(&place.layout.ty)
                                                        as &dyn ::tracing::field::Value))])
                        })
            } else {
                let span =
                    ::tracing::__macro_support::__disabled_span(__CALLSITE.metadata());
                {};
                span
            }
        })enter_trace_span!(M, resolve::resolve_drop_glue, ty = ?place.layout.ty);
999            ty::Instance::resolve_drop_glue(*self.tcx, place.layout.ty)
1000        };
1001        let fn_abi = self.fn_abi_of_instance_no_deduced_attrs(instance, ty::List::empty())?;
1002
1003        let ref_ty = Ty::new_mut_ref(self.tcx.tcx, self.tcx.lifetimes.re_erased, place.layout.ty);
1004        let arg = self.mplace_to_imm_ptr(&place, Some(ref_ty))?;
1005
1006        let ret = MPlaceTy::fake_alloc_zst(self.layout_of(self.tcx.types.unit)?);
1007
1008        self.init_fn_call(
1009            FnVal::Instance(instance),
1010            (ExternAbi::Rust, fn_abi),
1011            &[FnArg::Copy(arg.into())],
1012            false,
1013            &ret.into(),
1014            Some(target),
1015            unwind,
1016        )
1017    }
1018
1019    /// Pops the current frame from the stack, copies the return value to the caller, deallocates
1020    /// the memory for allocated locals, and jumps to an appropriate place.
1021    ///
1022    /// If `unwinding` is `false`, then we are performing a normal return
1023    /// from a function. In this case, we jump back into the frame of the caller,
1024    /// and continue execution as normal.
1025    ///
1026    /// If `unwinding` is `true`, then we are in the middle of a panic,
1027    /// and need to unwind this frame. In this case, we jump to the
1028    /// `cleanup` block for the function, which is responsible for running
1029    /// `Drop` impls for any locals that have been initialized at this point.
1030    /// The cleanup block ends with a special `Resume` terminator, which will
1031    /// cause us to continue unwinding.
1032    #[allow(clippy :: suspicious_else_formatting)]
{
    let __tracing_attr_span;
    let __tracing_attr_guard;
    if ::tracing::Level::TRACE <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::TRACE <=
                    ::tracing::level_filters::LevelFilter::current() ||
            { false } {
        __tracing_attr_span =
            {
                use ::tracing::__macro_support::Callsite as _;
                static __CALLSITE: ::tracing::callsite::DefaultCallsite =
                    {
                        static META: ::tracing::Metadata<'static> =
                            {
                                ::tracing_core::metadata::Metadata::new("return_from_current_stack_frame",
                                    "rustc_const_eval::interpret::call",
                                    ::tracing::Level::TRACE,
                                    ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                                    ::tracing_core::__macro_support::Option::Some(1032u32),
                                    ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                                    ::tracing_core::field::FieldSet::new(&[{
                                                        const NAME:
                                                            ::tracing::__macro_support::FieldName<{
                                                                ::tracing::__macro_support::FieldName::len("unwinding")
                                                            }> =
                                                            ::tracing::__macro_support::FieldName::new("unwinding");
                                                        NAME.as_str()
                                                    }], ::tracing_core::callsite::Identifier(&__CALLSITE)),
                                    ::tracing::metadata::Kind::SPAN)
                            };
                        ::tracing::callsite::DefaultCallsite::new(&META)
                    };
                let mut interest = ::tracing::subscriber::Interest::never();
                if ::tracing::Level::TRACE <=
                                    ::tracing::level_filters::STATIC_MAX_LEVEL &&
                                ::tracing::Level::TRACE <=
                                    ::tracing::level_filters::LevelFilter::current() &&
                            { interest = __CALLSITE.interest(); !interest.is_never() }
                        &&
                        ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                            interest) {
                    let meta = __CALLSITE.metadata();
                    ::tracing::Span::new(meta,
                        &{
                                #[allow(unused_imports)]
                                use ::tracing::field::{debug, display, Value};
                                meta.fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&unwinding
                                                            as &dyn ::tracing::field::Value))])
                            })
                } else {
                    let span =
                        ::tracing::__macro_support::__disabled_span(__CALLSITE.metadata());
                    {};
                    span
                }
            };
        __tracing_attr_guard = __tracing_attr_span.enter();
    }

    #[warn(clippy :: suspicious_else_formatting)]
    {

        #[allow(unknown_lints, unreachable_code, clippy ::
        diverging_sub_expression, clippy :: empty_loop, clippy ::
        let_unit_value, clippy :: let_with_type_underscore, clippy ::
        needless_return, clippy :: unreachable)]
        if false {
            let __tracing_attr_fake_return: InterpResult<'tcx> = loop {};
            return __tracing_attr_fake_return;
        }
        {
            {
                use ::tracing::__macro_support::Callsite as _;
                static __CALLSITE: ::tracing::callsite::DefaultCallsite =
                    {
                        static META: ::tracing::Metadata<'static> =
                            {
                                ::tracing_core::metadata::Metadata::new("event compiler/rustc_const_eval/src/interpret/call.rs:1037",
                                    "rustc_const_eval::interpret::call", ::tracing::Level::INFO,
                                    ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                                    ::tracing_core::__macro_support::Option::Some(1037u32),
                                    ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                                    ::tracing_core::field::FieldSet::new(&["message"],
                                        ::tracing_core::callsite::Identifier(&__CALLSITE)),
                                    ::tracing::metadata::Kind::EVENT)
                            };
                        ::tracing::callsite::DefaultCallsite::new(&META)
                    };
                let enabled =
                    ::tracing::Level::INFO <=
                                ::tracing::level_filters::STATIC_MAX_LEVEL &&
                            ::tracing::Level::INFO <=
                                ::tracing::level_filters::LevelFilter::current() &&
                        {
                            let interest = __CALLSITE.interest();
                            !interest.is_never() &&
                                ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                                    interest)
                        };
                if enabled {
                    (|value_set: ::tracing::field::ValueSet|
                                {
                                    let meta = __CALLSITE.metadata();
                                    ::tracing::Event::dispatch(meta, &value_set);
                                    ;
                                })({
                            #[allow(unused_imports)]
                            use ::tracing::field::{debug, display, Value};
                            __CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("popping stack frame ({0})",
                                                                if unwinding {
                                                                    "during unwinding"
                                                                } else { "returning from function" }) as
                                                        &dyn ::tracing::field::Value))])
                        });
                } else { ; }
            };
            {
                match (&unwinding,
                        &match self.frame().loc {
                                Left(loc) => self.body().basic_blocks[loc.block].is_cleanup,
                                Right(_) => true,
                            }) {
                    (left_val, right_val) => {
                        if !(*left_val == *right_val) {
                            let kind = ::core::panicking::AssertKind::Eq;
                            ::core::panicking::assert_failed(kind, &*left_val,
                                &*right_val, ::core::option::Option::None);
                        }
                    }
                }
            };
            if unwinding && self.frame_idx() == 0 {
                do yeet ::rustc_middle::mir::interpret::InterpErrorKind::UndefinedBehavior(::rustc_middle::mir::interpret::UndefinedBehaviorInfo::Ub(::alloc::__export::must_use({
                                    ::alloc::fmt::format(format_args!("unwinding past the topmost frame of the stack"))
                                })));
            }
            let return_op =
                self.local_to_op(mir::RETURN_PLACE,
                        None).expect("return place should always be live");
            let frame = self.pop_stack_frame_raw()?;
            if !unwinding {
                self.copy_op_allow_transmute(&return_op,
                        frame.return_place())?;
                {
                    use ::tracing::__macro_support::Callsite as _;
                    static __CALLSITE: ::tracing::callsite::DefaultCallsite =
                        {
                            static META: ::tracing::Metadata<'static> =
                                {
                                    ::tracing_core::metadata::Metadata::new("event compiler/rustc_const_eval/src/interpret/call.rs:1063",
                                        "rustc_const_eval::interpret::call",
                                        ::tracing::Level::TRACE,
                                        ::tracing_core::__macro_support::Option::Some("compiler/rustc_const_eval/src/interpret/call.rs"),
                                        ::tracing_core::__macro_support::Option::Some(1063u32),
                                        ::tracing_core::__macro_support::Option::Some("rustc_const_eval::interpret::call"),
                                        ::tracing_core::field::FieldSet::new(&["message"],
                                            ::tracing_core::callsite::Identifier(&__CALLSITE)),
                                        ::tracing::metadata::Kind::EVENT)
                                };
                            ::tracing::callsite::DefaultCallsite::new(&META)
                        };
                    let enabled =
                        ::tracing::Level::TRACE <=
                                    ::tracing::level_filters::STATIC_MAX_LEVEL &&
                                ::tracing::Level::TRACE <=
                                    ::tracing::level_filters::LevelFilter::current() &&
                            {
                                let interest = __CALLSITE.interest();
                                !interest.is_never() &&
                                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                                        interest)
                            };
                    if enabled {
                        (|value_set: ::tracing::field::ValueSet|
                                    {
                                        let meta = __CALLSITE.metadata();
                                        ::tracing::Event::dispatch(meta, &value_set);
                                        ;
                                    })({
                                #[allow(unused_imports)]
                                use ::tracing::field::{debug, display, Value};
                                __CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("return value: {0:?}",
                                                                    self.dump_place(frame.return_place())) as
                                                            &dyn ::tracing::field::Value))])
                            });
                    } else { ; }
                };
            }
            let return_cont = frame.return_cont();
            let return_action = self.cleanup_stack_frame(unwinding, frame)?;
            match return_action {
                ReturnAction::Normal => {}
                ReturnAction::NoJump => { return interp_ok(()); }
                ReturnAction::NoCleanup => {
                    if !self.stack().is_empty() {
                        {
                            ::core::panicking::panic_fmt(format_args!("only the topmost frame should ever be leaked"));
                        }
                    };
                    if !!unwinding {
                        {
                            ::core::panicking::panic_fmt(format_args!("tried to skip cleanup during unwinding"));
                        }
                    };
                    return interp_ok(());
                }
            }
            if unwinding {
                match return_cont {
                    ReturnContinuation::Goto { unwind, .. } => {
                        self.unwind_to_block(unwind)
                    }
                    ReturnContinuation::Stop { .. } => {
                        {
                            ::core::panicking::panic_fmt(format_args!("encountered ReturnContinuation::Stop when unwinding!"));
                        }
                    }
                }
            } else {
                match return_cont {
                    ReturnContinuation::Goto { ret, .. } =>
                        self.return_to_block(ret),
                    ReturnContinuation::Stop { .. } => {
                        if !self.stack().is_empty() {
                            {
                                ::core::panicking::panic_fmt(format_args!("only the bottommost frame can have ReturnContinuation::Stop"));
                            }
                        };
                        interp_ok(())
                    }
                }
            }
        }
    }
}#[instrument(skip(self), level = "trace")]
1033    pub(super) fn return_from_current_stack_frame(
1034        &mut self,
1035        unwinding: bool,
1036    ) -> InterpResult<'tcx> {
1037        info!(
1038            "popping stack frame ({})",
1039            if unwinding { "during unwinding" } else { "returning from function" }
1040        );
1041
1042        // Check `unwinding`.
1043        assert_eq!(
1044            unwinding,
1045            match self.frame().loc {
1046                Left(loc) => self.body().basic_blocks[loc.block].is_cleanup,
1047                Right(_) => true,
1048            }
1049        );
1050        if unwinding && self.frame_idx() == 0 {
1051            throw_ub_format!("unwinding past the topmost frame of the stack");
1052        }
1053
1054        // Get out the return value. Must happen *before* the frame is popped as we have to get the
1055        // local's value out.
1056        let return_op =
1057            self.local_to_op(mir::RETURN_PLACE, None).expect("return place should always be live");
1058        // Remove the frame from the stack.
1059        let frame = self.pop_stack_frame_raw()?;
1060        // Copy the return value and remember the return continuation.
1061        if !unwinding {
1062            self.copy_op_allow_transmute(&return_op, frame.return_place())?;
1063            trace!("return value: {:?}", self.dump_place(frame.return_place()));
1064        }
1065        let return_cont = frame.return_cont();
1066        // Finish popping the stack frame.
1067        let return_action = self.cleanup_stack_frame(unwinding, frame)?;
1068        // Jump to the next block.
1069        match return_action {
1070            ReturnAction::Normal => {}
1071            ReturnAction::NoJump => {
1072                // The hook already did everything.
1073                return interp_ok(());
1074            }
1075            ReturnAction::NoCleanup => {
1076                // If we are not doing cleanup, also skip everything else.
1077                assert!(self.stack().is_empty(), "only the topmost frame should ever be leaked");
1078                assert!(!unwinding, "tried to skip cleanup during unwinding");
1079                // Don't jump anywhere.
1080                return interp_ok(());
1081            }
1082        }
1083
1084        // Normal return, figure out where to jump.
1085        if unwinding {
1086            // Follow the unwind edge.
1087            match return_cont {
1088                ReturnContinuation::Goto { unwind, .. } => {
1089                    // This must be the very last thing that happens, since it can in fact push a new stack frame.
1090                    self.unwind_to_block(unwind)
1091                }
1092                ReturnContinuation::Stop { .. } => {
1093                    panic!("encountered ReturnContinuation::Stop when unwinding!")
1094                }
1095            }
1096        } else {
1097            // Follow the normal return edge.
1098            match return_cont {
1099                ReturnContinuation::Goto { ret, .. } => self.return_to_block(ret),
1100                ReturnContinuation::Stop { .. } => {
1101                    assert!(
1102                        self.stack().is_empty(),
1103                        "only the bottommost frame can have ReturnContinuation::Stop"
1104                    );
1105                    interp_ok(())
1106                }
1107            }
1108        }
1109    }
1110}