Skip to main content

rustc_codegen_ssa/back/
symbol_export.rs

1use std::collections::hash_map::Entry::*;
2
3use rustc_abi::{CanonAbi, X86Call};
4use rustc_ast::expand::allocator::{AllocatorKind, NO_ALLOC_SHIM_IS_UNSTABLE, global_fn_name};
5use rustc_data_structures::unord::UnordMap;
6use rustc_hir::def::DefKind;
7use rustc_hir::def_id::{CrateNum, DefId, DefIdMap, LOCAL_CRATE, LocalDefId};
8use rustc_middle::bug;
9use rustc_middle::middle::codegen_fn_attrs::CodegenFnAttrFlags;
10use rustc_middle::middle::exported_symbols::{
11    ExportedSymbol, SymbolExportInfo, SymbolExportKind, SymbolExportLevel,
12};
13use rustc_middle::query::LocalCrate;
14use rustc_middle::ty::{
15    self, GenericArgKind, GenericArgsRef, Instance, ShimKind, SymbolName, Ty, TyCtxt,
16};
17use rustc_middle::util::Providers;
18use rustc_session::config::CrateType;
19use rustc_span::Span;
20use rustc_symbol_mangling::mangle_internal_symbol;
21use rustc_target::spec::{Arch, Os, TlsModel};
22use tracing::debug;
23
24use crate::back::symbol_export;
25use crate::base::allocator_shim_contents;
26
27fn threshold(tcx: TyCtxt<'_>) -> SymbolExportLevel {
28    crates_export_threshold(tcx.crate_types())
29}
30
31fn crate_export_threshold(crate_type: CrateType) -> SymbolExportLevel {
32    match crate_type {
33        CrateType::Executable | CrateType::StaticLib | CrateType::ProcMacro | CrateType::Cdylib => {
34            SymbolExportLevel::C
35        }
36        CrateType::Rlib | CrateType::Dylib | CrateType::Sdylib => SymbolExportLevel::Rust,
37    }
38}
39
40pub fn crates_export_threshold(crate_types: &[CrateType]) -> SymbolExportLevel {
41    if crate_types
42        .iter()
43        .any(|&crate_type| crate_export_threshold(crate_type) == SymbolExportLevel::Rust)
44    {
45        SymbolExportLevel::Rust
46    } else {
47        SymbolExportLevel::C
48    }
49}
50
51fn reachable_non_generics_provider(tcx: TyCtxt<'_>, _: LocalCrate) -> DefIdMap<SymbolExportInfo> {
52    if !tcx.sess.opts.output_types.should_codegen() && !tcx.is_sdylib_interface_build() {
53        return Default::default();
54    }
55
56    let is_compiler_builtins = tcx.is_compiler_builtins(LOCAL_CRATE);
57
58    let mut reachable_non_generics: DefIdMap<_> = tcx
59        .reachable_set(())
60        .items()
61        .filter_map(|&def_id| {
62            // We want to ignore some FFI functions that are not exposed from
63            // this crate. Reachable FFI functions can be lumped into two
64            // categories:
65            //
66            // 1. Those that are included statically via a static library
67            // 2. Those included otherwise (e.g., dynamically or via a framework)
68            //
69            // Although our LLVM module is not literally emitting code for the
70            // statically included symbols, it's an export of our library which
71            // needs to be passed on to the linker and encoded in the metadata.
72            //
73            // As a result, if this id is an FFI item (foreign item) then we only
74            // let it through if it's included statically.
75            if let Some(parent_id) = tcx.opt_local_parent(def_id)
76                && let DefKind::ForeignMod = tcx.def_kind(parent_id)
77            {
78                let library = tcx.native_library(def_id)?;
79                return library.kind.is_statically_included().then_some(def_id);
80            }
81
82            // Only consider nodes that actually have exported symbols.
83            match tcx.def_kind(def_id) {
84                DefKind::Fn | DefKind::Static { .. } => {}
85                DefKind::AssocFn if tcx.impl_of_assoc(def_id.to_def_id()).is_some() => {}
86                _ => return None,
87            };
88
89            let generics = tcx.generics_of(def_id);
90            if generics.requires_monomorphization(tcx) {
91                return None;
92            }
93
94            if Instance::mono(tcx, def_id.into()).def.requires_inline(tcx) {
95                return None;
96            }
97
98            if tcx.cross_crate_inlinable(def_id) { None } else { Some(def_id) }
99        })
100        .map(|def_id| {
101            let export_level = if is_compiler_builtins {
102                // We don't want to export compiler-builtins symbols from any
103                // dylibs, even rust dylibs. Unlike all other crates it gets
104                // duplicated in every linker invocation and it may otherwise
105                // unintentionally override definitions of these symbols by
106                // libgcc or compiler-rt for C code.
107                SymbolExportLevel::Rust
108            } else {
109                symbol_export_level(tcx, def_id.to_def_id())
110            };
111            let codegen_attrs = tcx.codegen_fn_attrs(def_id.to_def_id());
112            {
    use ::tracing::__macro_support::Callsite as _;
    static __CALLSITE: ::tracing::callsite::DefaultCallsite =
        {
            static META: ::tracing::Metadata<'static> =
                {
                    ::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_ssa/src/back/symbol_export.rs:112",
                        "rustc_codegen_ssa::back::symbol_export",
                        ::tracing::Level::DEBUG,
                        ::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_ssa/src/back/symbol_export.rs"),
                        ::tracing_core::__macro_support::Option::Some(112u32),
                        ::tracing_core::__macro_support::Option::Some("rustc_codegen_ssa::back::symbol_export"),
                        ::tracing_core::field::FieldSet::new(&["message"],
                            ::tracing_core::callsite::Identifier(&__CALLSITE)),
                        ::tracing::metadata::Kind::EVENT)
                };
            ::tracing::callsite::DefaultCallsite::new(&META)
        };
    let enabled =
        ::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::DEBUG <=
                    ::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};
                let mut iter = __CALLSITE.metadata().fields().iter();
                __CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
                                    ::tracing::__macro_support::Option::Some(&format_args!("EXPORTED SYMBOL (local): {0} ({1:?})",
                                                    tcx.symbol_name(Instance::mono(tcx, def_id.to_def_id())),
                                                    export_level) as &dyn Value))])
            });
    } else { ; }
};debug!(
113                "EXPORTED SYMBOL (local): {} ({:?})",
114                tcx.symbol_name(Instance::mono(tcx, def_id.to_def_id())),
115                export_level
116            );
117            let info = SymbolExportInfo {
118                level: export_level,
119                kind: if tcx.is_static(def_id.to_def_id()) {
120                    if codegen_attrs.flags.contains(CodegenFnAttrFlags::THREAD_LOCAL) {
121                        SymbolExportKind::Tls
122                    } else {
123                        SymbolExportKind::Data
124                    }
125                } else {
126                    SymbolExportKind::Text
127                },
128                used: codegen_attrs.flags.contains(CodegenFnAttrFlags::USED_COMPILER)
129                    || codegen_attrs.flags.contains(CodegenFnAttrFlags::USED_LINKER),
130                rustc_std_internal_symbol: codegen_attrs
131                    .flags
132                    .contains(CodegenFnAttrFlags::RUSTC_STD_INTERNAL_SYMBOL)
133                    || codegen_attrs
134                        .flags
135                        .contains(CodegenFnAttrFlags::EXTERNALLY_IMPLEMENTABLE_ITEM),
136            };
137            (def_id.to_def_id(), info)
138        })
139        .into();
140
141    if let Some(id) = tcx.proc_macro_decls_static(()) {
142        reachable_non_generics.insert(
143            id.to_def_id(),
144            SymbolExportInfo {
145                level: SymbolExportLevel::C,
146                kind: SymbolExportKind::Data,
147                used: false,
148                rustc_std_internal_symbol: false,
149            },
150        );
151    }
152
153    reachable_non_generics
154}
155
156fn is_reachable_non_generic_provider_local(tcx: TyCtxt<'_>, def_id: LocalDefId) -> bool {
157    let export_threshold = threshold(tcx);
158
159    if let Some(&info) = tcx.reachable_non_generics(LOCAL_CRATE).get(&def_id.to_def_id()) {
160        info.level.is_below_threshold(export_threshold)
161    } else {
162        false
163    }
164}
165
166fn is_reachable_non_generic_provider_extern(tcx: TyCtxt<'_>, def_id: DefId) -> bool {
167    tcx.reachable_non_generics(def_id.krate).contains_key(&def_id)
168}
169
170fn exported_non_generic_symbols_provider_local<'tcx>(
171    tcx: TyCtxt<'tcx>,
172    _: LocalCrate,
173) -> &'tcx [(ExportedSymbol<'tcx>, SymbolExportInfo)] {
174    if !tcx.sess.opts.output_types.should_codegen() && !tcx.is_sdylib_interface_build() {
175        return &[];
176    }
177
178    // FIXME: Sorting this is unnecessary since we are sorting later anyway.
179    //        Can we skip the later sorting?
180    let sorted = tcx.with_stable_hashing_context(|mut hcx| {
181        tcx.reachable_non_generics(LOCAL_CRATE).to_sorted(&mut hcx, true)
182    });
183
184    let mut symbols: Vec<_> =
185        sorted.iter().map(|&(&def_id, &info)| (ExportedSymbol::NonGeneric(def_id), info)).collect();
186
187    // Export TLS shims
188    if !tcx.sess.target.dll_tls_export {
189        symbols.extend(sorted.iter().filter_map(|&(&def_id, &info)| {
190            tcx.needs_thread_local_shim(def_id).then(|| {
191                (
192                    ExportedSymbol::ThreadLocalShim(def_id),
193                    SymbolExportInfo {
194                        level: info.level,
195                        kind: SymbolExportKind::Text,
196                        used: info.used,
197                        rustc_std_internal_symbol: info.rustc_std_internal_symbol,
198                    },
199                )
200            })
201        }))
202    }
203
204    symbols.extend(sorted.iter().flat_map(|&(&def_id, &info)| {
205        tcx.codegen_fn_attrs(def_id).foreign_item_symbol_aliases.iter().map(
206            move |&(foreign_item, _linkage, _visibility)| {
207                (ExportedSymbol::NonGeneric(foreign_item), info)
208            },
209        )
210    }));
211
212    if tcx.entry_fn(()).is_some() {
213        let exported_symbol =
214            ExportedSymbol::NoDefId(SymbolName::new(tcx, tcx.sess.target.entry_name.as_ref()));
215
216        symbols.push((
217            exported_symbol,
218            SymbolExportInfo {
219                level: SymbolExportLevel::C,
220                kind: SymbolExportKind::Text,
221                used: false,
222                rustc_std_internal_symbol: false,
223            },
224        ));
225    }
226
227    // Sort so we get a stable incr. comp. hash.
228    symbols.sort_by_cached_key(|s| s.0.symbol_name_for_local_instance(tcx));
229
230    tcx.arena.alloc_from_iter(symbols)
231}
232
233fn exported_generic_symbols_provider_local<'tcx>(
234    tcx: TyCtxt<'tcx>,
235    _: LocalCrate,
236) -> &'tcx [(ExportedSymbol<'tcx>, SymbolExportInfo)] {
237    if !tcx.sess.opts.output_types.should_codegen() && !tcx.is_sdylib_interface_build() {
238        return &[];
239    }
240
241    let mut symbols: Vec<_> = ::alloc::vec::Vec::new()vec![];
242
243    if tcx.local_crate_exports_generics() {
244        use rustc_hir::attrs::Linkage;
245        use rustc_middle::mono::{MonoItem, Visibility};
246        use rustc_middle::ty::InstanceKind;
247
248        // Normally, we require that shared monomorphizations are not hidden,
249        // because if we want to re-use a monomorphization from a Rust dylib, it
250        // needs to be exported.
251        // However, on platforms that don't allow for Rust dylibs, having
252        // external linkage is enough for monomorphization to be linked to.
253        let need_visibility = tcx.sess.target.dynamic_linking && !tcx.sess.target.only_cdylib;
254
255        let cgus = tcx.collect_and_partition_mono_items(()).codegen_units;
256
257        // Do not export symbols that cannot be instantiated by downstream crates.
258        let reachable_set = tcx.reachable_set(());
259        let is_local_to_current_crate = |ty: Ty<'_>| {
260            let no_refs = ty.peel_refs();
261            let root_def_id = match no_refs.kind() {
262                ty::Closure(closure, _) => *closure,
263                ty::FnDef(def_id, _) => *def_id,
264                ty::Coroutine(def_id, _) => *def_id,
265                ty::CoroutineClosure(def_id, _) => *def_id,
266                ty::CoroutineWitness(def_id, _) => *def_id,
267                _ => return false,
268            };
269            let Some(root_def_id) = root_def_id.as_local() else {
270                return false;
271            };
272
273            let is_local = !reachable_set.contains(&root_def_id);
274            is_local
275        };
276
277        let is_instantiable_downstream =
278            |did: Option<DefId>, generic_args: GenericArgsRef<'tcx>| {
279                generic_args
280                    .types()
281                    .chain(did.into_iter().map(move |did| tcx.type_of(did).skip_binder()))
282                    .all(move |arg| {
283                        arg.walk().all(|ty| {
284                            ty.as_type().map_or(true, |ty| !is_local_to_current_crate(ty))
285                        })
286                    })
287            };
288
289        // The symbols created in this loop are sorted below it
290        #[allow(rustc::potential_query_instability)]
291        for (mono_item, data) in cgus.iter().flat_map(|cgu| cgu.items().iter()) {
292            if data.linkage != Linkage::External {
293                // We can only re-use things with external linkage, otherwise
294                // we'll get a linker error
295                continue;
296            }
297
298            if need_visibility && data.visibility == Visibility::Hidden {
299                // If we potentially share things from Rust dylibs, they must
300                // not be hidden
301                continue;
302            }
303
304            if !tcx.sess.opts.share_generics() {
305                if tcx.codegen_fn_attrs(mono_item.def_id()).inline
306                    == rustc_hir::attrs::InlineAttr::Never
307                {
308                    // this is OK, we explicitly allow sharing inline(never) across crates even
309                    // without share-generics.
310                } else {
311                    continue;
312                }
313            }
314
315            // Note: These all set rustc_std_internal_symbol to false as generic functions must not
316            // be marked with this attribute and we are only handling generic functions here.
317            match *mono_item {
318                MonoItem::Fn(Instance { def: InstanceKind::Item(def), args }) => {
319                    let has_generics = args.non_erasable_generics().next().is_some();
320
321                    let should_export =
322                        has_generics && is_instantiable_downstream(Some(def), &args);
323
324                    if should_export {
325                        let symbol = ExportedSymbol::Generic(def, args);
326                        symbols.push((
327                            symbol,
328                            SymbolExportInfo {
329                                level: SymbolExportLevel::Rust,
330                                kind: SymbolExportKind::Text,
331                                used: false,
332                                rustc_std_internal_symbol: false,
333                            },
334                        ));
335                    }
336                }
337                MonoItem::Fn(Instance {
338                    def: InstanceKind::Shim(ShimKind::DropGlue(_, Some(ty))),
339                    args,
340                }) => {
341                    // A little sanity-check
342                    {
    match (&args.non_erasable_generics().next(),
            &Some(GenericArgKind::Type(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!(args.non_erasable_generics().next(), Some(GenericArgKind::Type(ty)));
343
344                    // Drop glue did is always going to be non-local outside of libcore, thus we don't need to check it's locality (which includes invoking `type_of` query).
345                    let should_export = match ty.kind() {
346                        ty::Adt(_, args) => is_instantiable_downstream(None, args),
347                        ty::Closure(_, args) => is_instantiable_downstream(None, args),
348                        _ => true,
349                    };
350
351                    if should_export {
352                        symbols.push((
353                            ExportedSymbol::DropGlue(ty),
354                            SymbolExportInfo {
355                                level: SymbolExportLevel::Rust,
356                                kind: SymbolExportKind::Text,
357                                used: false,
358                                rustc_std_internal_symbol: false,
359                            },
360                        ));
361                    }
362                }
363                MonoItem::Fn(Instance {
364                    def: InstanceKind::Shim(ShimKind::AsyncDropGlueCtor(_, ty)),
365                    args,
366                }) => {
367                    // A little sanity-check
368                    {
    match (&args.non_erasable_generics().next(),
            &Some(GenericArgKind::Type(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!(args.non_erasable_generics().next(), Some(GenericArgKind::Type(ty)));
369                    symbols.push((
370                        ExportedSymbol::AsyncDropGlueCtorShim(ty),
371                        SymbolExportInfo {
372                            level: SymbolExportLevel::Rust,
373                            kind: SymbolExportKind::Text,
374                            used: false,
375                            rustc_std_internal_symbol: false,
376                        },
377                    ));
378                }
379                MonoItem::Fn(Instance {
380                    def: InstanceKind::Shim(ShimKind::AsyncDropGlue(def, ty)),
381                    args: _,
382                }) => {
383                    symbols.push((
384                        ExportedSymbol::AsyncDropGlue(def, ty),
385                        SymbolExportInfo {
386                            level: SymbolExportLevel::Rust,
387                            kind: SymbolExportKind::Text,
388                            used: false,
389                            rustc_std_internal_symbol: false,
390                        },
391                    ));
392                }
393                _ => {
394                    // Any other symbols don't qualify for sharing
395                }
396            }
397        }
398    }
399
400    // Sort so we get a stable incr. comp. hash.
401    symbols.sort_by_cached_key(|s| s.0.symbol_name_for_local_instance(tcx));
402
403    tcx.arena.alloc_from_iter(symbols)
404}
405
406fn upstream_monomorphizations_provider(
407    tcx: TyCtxt<'_>,
408    (): (),
409) -> DefIdMap<UnordMap<GenericArgsRef<'_>, CrateNum>> {
410    let cnums = tcx.crates(());
411
412    let mut instances: DefIdMap<UnordMap<_, _>> = Default::default();
413
414    let drop_glue_fn_def_id = tcx.lang_items().drop_glue_fn();
415    let async_drop_in_place_fn_def_id = tcx.lang_items().async_drop_in_place_fn();
416
417    for &cnum in cnums.iter() {
418        for (exported_symbol, _) in tcx.exported_generic_symbols(cnum).iter() {
419            let (def_id, args) = match *exported_symbol {
420                ExportedSymbol::Generic(def_id, args) => (def_id, args),
421                ExportedSymbol::DropGlue(ty) => {
422                    if let Some(drop_in_place_fn_def_id) = drop_glue_fn_def_id {
423                        (drop_in_place_fn_def_id, tcx.mk_args(&[ty.into()]))
424                    } else {
425                        // `drop_glue` does not exist, don't try to use it.
426                        continue;
427                    }
428                }
429                ExportedSymbol::AsyncDropGlueCtorShim(ty) => {
430                    if let Some(async_drop_in_place_fn_def_id) = async_drop_in_place_fn_def_id {
431                        (async_drop_in_place_fn_def_id, tcx.mk_args(&[ty.into()]))
432                    } else {
433                        continue;
434                    }
435                }
436                ExportedSymbol::AsyncDropGlue(def_id, ty) => (def_id, tcx.mk_args(&[ty.into()])),
437                ExportedSymbol::NonGeneric(..)
438                | ExportedSymbol::ThreadLocalShim(..)
439                | ExportedSymbol::NoDefId(..) => {
    ::core::panicking::panic_fmt(format_args!("internal error: entered unreachable code: {0}",
            format_args!("{0:?}", exported_symbol)));
}unreachable!("{exported_symbol:?}"),
440            };
441
442            let args_map = instances.entry(def_id).or_default();
443
444            match args_map.entry(args) {
445                Occupied(mut e) => {
446                    // If there are multiple monomorphizations available,
447                    // we select one deterministically.
448                    let other_cnum = *e.get();
449                    if tcx.stable_crate_id(other_cnum) > tcx.stable_crate_id(cnum) {
450                        e.insert(cnum);
451                    }
452                }
453                Vacant(e) => {
454                    e.insert(cnum);
455                }
456            }
457        }
458    }
459
460    instances
461}
462
463fn upstream_monomorphizations_for_provider(
464    tcx: TyCtxt<'_>,
465    def_id: DefId,
466) -> Option<&UnordMap<GenericArgsRef<'_>, CrateNum>> {
467    if !!def_id.is_local() {
    ::core::panicking::panic("assertion failed: !def_id.is_local()")
};assert!(!def_id.is_local());
468    tcx.upstream_monomorphizations(()).get(&def_id)
469}
470
471fn upstream_drop_glue_for_provider<'tcx>(
472    tcx: TyCtxt<'tcx>,
473    args: GenericArgsRef<'tcx>,
474) -> Option<CrateNum> {
475    let def_id = tcx.lang_items().drop_glue_fn()?;
476    tcx.upstream_monomorphizations_for(def_id)?.get(&args).cloned()
477}
478
479fn upstream_async_drop_glue_for_provider<'tcx>(
480    tcx: TyCtxt<'tcx>,
481    args: GenericArgsRef<'tcx>,
482) -> Option<CrateNum> {
483    let def_id = tcx.lang_items().async_drop_in_place_fn()?;
484    tcx.upstream_monomorphizations_for(def_id)?.get(&args).cloned()
485}
486
487fn is_unreachable_local_definition_provider(tcx: TyCtxt<'_>, def_id: LocalDefId) -> bool {
488    !tcx.reachable_set(()).contains(&def_id)
489}
490
491pub(crate) fn provide(providers: &mut Providers) {
492    providers.queries.reachable_non_generics = reachable_non_generics_provider;
493    providers.queries.is_reachable_non_generic = is_reachable_non_generic_provider_local;
494    providers.queries.exported_non_generic_symbols = exported_non_generic_symbols_provider_local;
495    providers.queries.exported_generic_symbols = exported_generic_symbols_provider_local;
496    providers.queries.upstream_monomorphizations = upstream_monomorphizations_provider;
497    providers.queries.is_unreachable_local_definition = is_unreachable_local_definition_provider;
498    providers.queries.upstream_drop_glue_for = upstream_drop_glue_for_provider;
499    providers.queries.upstream_async_drop_glue_for = upstream_async_drop_glue_for_provider;
500    providers.queries.wasm_import_module_map = wasm_import_module_map;
501    providers.extern_queries.is_reachable_non_generic = is_reachable_non_generic_provider_extern;
502    providers.extern_queries.upstream_monomorphizations_for =
503        upstream_monomorphizations_for_provider;
504}
505
506pub(crate) fn allocator_shim_symbols(
507    tcx: TyCtxt<'_>,
508    kind: AllocatorKind,
509) -> impl Iterator<Item = (String, SymbolExportKind)> {
510    allocator_shim_contents(tcx, kind)
511        .into_iter()
512        .map(move |method| mangle_internal_symbol(tcx, global_fn_name(method.name).as_str()))
513        .chain([mangle_internal_symbol(tcx, NO_ALLOC_SHIM_IS_UNSTABLE)])
514        .map(move |symbol_name| {
515            let exported_symbol = ExportedSymbol::NoDefId(SymbolName::new(tcx, &symbol_name));
516
517            (
518                symbol_export::exporting_symbol_name_for_instance_in_crate(
519                    tcx,
520                    exported_symbol,
521                    LOCAL_CRATE,
522                ),
523                SymbolExportKind::Text,
524            )
525        })
526}
527
528fn symbol_export_level(tcx: TyCtxt<'_>, sym_def_id: DefId) -> SymbolExportLevel {
529    // We export anything that's not mangled at the "C" layer as it probably has
530    // to do with ABI concerns. We do not, however, apply such treatment to
531    // special symbols in the standard library for various plumbing between
532    // core/std/allocators/etc. For example symbols used to hook up allocation
533    // are not considered for export
534    let codegen_fn_attrs = tcx.codegen_fn_attrs(sym_def_id);
535    let is_extern = codegen_fn_attrs.contains_extern_indicator();
536    let std_internal =
537        codegen_fn_attrs.flags.contains(CodegenFnAttrFlags::RUSTC_STD_INTERNAL_SYMBOL);
538    let eii = codegen_fn_attrs.flags.contains(CodegenFnAttrFlags::EXTERNALLY_IMPLEMENTABLE_ITEM);
539
540    if is_extern && !std_internal && !eii {
541        let target = &tcx.sess.target.llvm_target;
542        // WebAssembly cannot export data symbols, so reduce their export level
543        // FIXME(jdonszelmann) don't do a substring match here.
544        if target.contains("emscripten") {
545            if let DefKind::Static { .. } = tcx.def_kind(sym_def_id) {
546                return SymbolExportLevel::Rust;
547            }
548        }
549
550        SymbolExportLevel::C
551    } else {
552        SymbolExportLevel::Rust
553    }
554}
555
556/// This is the symbol name of the given instance instantiated in a specific crate.
557pub(crate) fn symbol_name_for_instance_in_crate<'tcx>(
558    tcx: TyCtxt<'tcx>,
559    symbol: ExportedSymbol<'tcx>,
560    instantiating_crate: CrateNum,
561) -> String {
562    // If this is something instantiated in the local crate then we might
563    // already have cached the name as a query result.
564    if instantiating_crate == LOCAL_CRATE {
565        return symbol.symbol_name_for_local_instance(tcx).to_string();
566    }
567
568    // This is something instantiated in an upstream crate, so we have to use
569    // the slower (because uncached) version of computing the symbol name.
570    match symbol {
571        ExportedSymbol::NonGeneric(def_id) => {
572            rustc_symbol_mangling::symbol_name_for_instance_in_crate(
573                tcx,
574                Instance::mono(tcx, def_id),
575                instantiating_crate,
576            )
577        }
578        ExportedSymbol::Generic(def_id, args) => {
579            rustc_symbol_mangling::symbol_name_for_instance_in_crate(
580                tcx,
581                Instance::new_raw(def_id, args),
582                instantiating_crate,
583            )
584        }
585        ExportedSymbol::ThreadLocalShim(def_id) => {
586            rustc_symbol_mangling::symbol_name_for_instance_in_crate(
587                tcx,
588                ty::Instance {
589                    def: ty::InstanceKind::Shim(ty::ShimKind::ThreadLocal(def_id)),
590                    args: ty::GenericArgs::empty(),
591                },
592                instantiating_crate,
593            )
594        }
595        ExportedSymbol::DropGlue(ty) => rustc_symbol_mangling::symbol_name_for_instance_in_crate(
596            tcx,
597            Instance::resolve_drop_glue(tcx, ty),
598            instantiating_crate,
599        ),
600        ExportedSymbol::AsyncDropGlueCtorShim(ty) => {
601            rustc_symbol_mangling::symbol_name_for_instance_in_crate(
602                tcx,
603                Instance::resolve_async_drop_in_place(tcx, ty),
604                instantiating_crate,
605            )
606        }
607        ExportedSymbol::AsyncDropGlue(def_id, ty) => {
608            rustc_symbol_mangling::symbol_name_for_instance_in_crate(
609                tcx,
610                Instance::resolve_async_drop_in_place_poll(tcx, def_id, ty),
611                instantiating_crate,
612            )
613        }
614        ExportedSymbol::NoDefId(symbol_name) => symbol_name.to_string(),
615    }
616}
617
618fn calling_convention_for_symbol<'tcx>(
619    tcx: TyCtxt<'tcx>,
620    symbol: ExportedSymbol<'tcx>,
621) -> (CanonAbi, &'tcx [rustc_target::callconv::ArgAbi<'tcx, Ty<'tcx>>]) {
622    let instance = match symbol {
623        ExportedSymbol::NonGeneric(def_id) | ExportedSymbol::Generic(def_id, _)
624            if tcx.is_static(def_id) =>
625        {
626            None
627        }
628        ExportedSymbol::NonGeneric(def_id) => Some(Instance::mono(tcx, def_id)),
629        ExportedSymbol::Generic(def_id, args) => Some(Instance::new_raw(def_id, args)),
630        // DropGlue always use the Rust calling convention and thus follow the target's default
631        // symbol decoration scheme.
632        ExportedSymbol::DropGlue(..) => None,
633        // AsyncDropGlueCtorShim always use the Rust calling convention and thus follow the
634        // target's default symbol decoration scheme.
635        ExportedSymbol::AsyncDropGlueCtorShim(..) => None,
636        ExportedSymbol::AsyncDropGlue(..) => None,
637        // NoDefId always follow the target's default symbol decoration scheme.
638        ExportedSymbol::NoDefId(..) => None,
639        // ThreadLocalShim always follow the target's default symbol decoration scheme.
640        ExportedSymbol::ThreadLocalShim(..) => None,
641    };
642
643    instance
644        .map(|i| {
645            tcx.fn_abi_of_instance(
646                ty::TypingEnv::fully_monomorphized().as_query_input((i, ty::List::empty())),
647            )
648            .unwrap_or_else(|_| ::rustc_middle::util::bug::bug_fmt(format_args!("fn_abi_of_instance({0:?}) failed",
        i))bug!("fn_abi_of_instance({i:?}) failed"))
649        })
650        .map(|fnabi| (fnabi.conv, &fnabi.args[..]))
651        // FIXME(workingjubilee): why don't we know the convention here?
652        .unwrap_or((CanonAbi::Rust, &[]))
653}
654
655/// This is the symbol name of the given instance as seen by the linker.
656///
657/// On 32-bit Windows symbols are decorated according to their calling conventions.
658pub(crate) fn linking_symbol_name_for_instance_in_crate<'tcx>(
659    tcx: TyCtxt<'tcx>,
660    symbol: ExportedSymbol<'tcx>,
661    export_kind: SymbolExportKind,
662    instantiating_crate: CrateNum,
663) -> String {
664    let mut undecorated = symbol_name_for_instance_in_crate(tcx, symbol, instantiating_crate);
665
666    // thread local will not be a function call,
667    // so it is safe to return before windows symbol decoration check.
668    if let Some(name) = maybe_emutls_symbol_name(tcx, symbol, &undecorated) {
669        return name;
670    }
671
672    let target = &tcx.sess.target;
673    if !target.is_like_windows {
674        // Mach-O has a global "_" suffix and `object` crate will handle it.
675        // ELF does not have any symbol decorations.
676        return undecorated;
677    }
678
679    let prefix = match target.arch {
680        Arch::X86 => Some('_'),
681        Arch::X86_64 => None,
682        // Only functions are decorated for arm64ec.
683        Arch::Arm64EC if export_kind == SymbolExportKind::Text => Some('#'),
684        // Only x86/64 and arm64ec use symbol decorations.
685        _ => return undecorated,
686    };
687
688    let (callconv, args) = calling_convention_for_symbol(tcx, symbol);
689
690    // Decorate symbols with prefixes, suffixes and total number of bytes of arguments.
691    // Reference: https://docs.microsoft.com/en-us/cpp/build/reference/decorated-names?view=msvc-170
692    let (prefix, suffix) = match callconv {
693        CanonAbi::X86(X86Call::Fastcall) => ("@", "@"),
694        CanonAbi::X86(X86Call::Stdcall) => ("_", "@"),
695        CanonAbi::X86(X86Call::Vectorcall) => ("", "@@"),
696        _ => {
697            if let Some(prefix) = prefix {
698                undecorated.insert(0, prefix);
699            }
700            return undecorated;
701        }
702    };
703
704    let args_in_bytes: u64 = args
705        .iter()
706        .map(|abi| abi.layout.size.bytes().next_multiple_of(target.pointer_width as u64 / 8))
707        .sum();
708    ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0}{1}{2}{3}", prefix, undecorated,
                suffix, args_in_bytes))
    })format!("{prefix}{undecorated}{suffix}{args_in_bytes}")
709}
710
711pub(crate) fn exporting_symbol_name_for_instance_in_crate<'tcx>(
712    tcx: TyCtxt<'tcx>,
713    symbol: ExportedSymbol<'tcx>,
714    cnum: CrateNum,
715) -> String {
716    let undecorated = symbol_name_for_instance_in_crate(tcx, symbol, cnum);
717    maybe_emutls_symbol_name(tcx, symbol, &undecorated).unwrap_or(undecorated)
718}
719
720/// On amdhsa, `gpu-kernel` functions have an associated metadata object with a `.kd` suffix.
721/// Add it to the symbols list for all kernel functions, so that it is exported in the linked
722/// object.
723pub(crate) fn extend_exported_symbols<'tcx>(
724    symbols: &mut Vec<(String, SymbolExportKind)>,
725    tcx: TyCtxt<'tcx>,
726    symbol: ExportedSymbol<'tcx>,
727    instantiating_crate: CrateNum,
728) {
729    let (callconv, _) = calling_convention_for_symbol(tcx, symbol);
730
731    if callconv != CanonAbi::GpuKernel || tcx.sess.target.os != Os::AmdHsa {
732        return;
733    }
734
735    let undecorated = symbol_name_for_instance_in_crate(tcx, symbol, instantiating_crate);
736
737    // Add the symbol for the kernel descriptor (with .kd suffix)
738    // Per https://llvm.org/docs/AMDGPUUsage.html#symbols these will always be `STT_OBJECT` so
739    // export as data.
740    symbols.push((::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0}.kd", undecorated))
    })format!("{undecorated}.kd"), SymbolExportKind::Data));
741}
742
743fn maybe_emutls_symbol_name<'tcx>(
744    tcx: TyCtxt<'tcx>,
745    symbol: ExportedSymbol<'tcx>,
746    undecorated: &str,
747) -> Option<String> {
748    if #[allow(non_exhaustive_omitted_patterns)] match tcx.sess.tls_model() {
    TlsModel::Emulated => true,
    _ => false,
}matches!(tcx.sess.tls_model(), TlsModel::Emulated)
749        && let ExportedSymbol::NonGeneric(def_id) = symbol
750        && tcx.is_thread_local_static(def_id)
751    {
752        // When using emutls, LLVM will add the `__emutls_v.` prefix to thread local symbols,
753        // and exported symbol name need to match this.
754        Some(::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("__emutls_v.{0}", undecorated))
    })format!("__emutls_v.{undecorated}"))
755    } else {
756        None
757    }
758}
759
760fn wasm_import_module_map(tcx: TyCtxt<'_>, cnum: CrateNum) -> DefIdMap<String> {
761    // Build up a map from DefId to a `NativeLib` structure, where
762    // `NativeLib` internally contains information about
763    // `#[link(wasm_import_module = "...")]` for example.
764    let native_libs = tcx.native_libraries(cnum);
765
766    let def_id_to_native_lib = native_libs
767        .iter()
768        .filter_map(|lib| lib.foreign_module.map(|id| (id, lib)))
769        .collect::<DefIdMap<_>>();
770
771    let mut ret = DefIdMap::default();
772    for (def_id, lib) in tcx.foreign_modules(cnum).iter() {
773        let module = def_id_to_native_lib.get(def_id).and_then(|s| s.wasm_import_module());
774        let Some(module) = module else { continue };
775        ret.extend(lib.foreign_items.iter().map(|id| {
776            {
    match (&id.krate, &cnum) {
        (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!(id.krate, cnum);
777            (*id, module.to_string())
778        }));
779    }
780
781    ret
782}
783
784pub fn escape_symbol_name(tcx: TyCtxt<'_>, symbol: &str, span: Span) -> String {
785    // https://github.com/llvm/llvm-project/blob/a55fbab0cffc9b4af497b9e4f187b61143743e06/llvm/lib/MC/MCSymbol.cpp
786    use rustc_target::spec::{Arch, BinaryFormat};
787    if !symbol.is_empty()
788        && symbol.chars().all(|c| #[allow(non_exhaustive_omitted_patterns)] match c {
    '0'..='9' | 'A'..='Z' | 'a'..='z' | '_' | '$' | '.' => true,
    _ => false,
}matches!(c, '0'..='9' | 'A'..='Z' | 'a'..='z' | '_' | '$' | '.'))
789    {
790        return symbol.to_string();
791    }
792    if tcx.sess.target.binary_format == BinaryFormat::Xcoff {
793        tcx.sess.dcx().span_fatal(
794            span,
795            ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("symbol escaping is not supported for the binary format {0}",
                tcx.sess.target.binary_format))
    })format!(
796                "symbol escaping is not supported for the binary format {}",
797                tcx.sess.target.binary_format
798            ),
799        );
800    }
801    if tcx.sess.target.arch == Arch::Nvptx64 {
802        tcx.sess.dcx().span_fatal(
803            span,
804            ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("symbol escaping is not supported for the architecture {0}",
                tcx.sess.target.arch))
    })format!(
805                "symbol escaping is not supported for the architecture {}",
806                tcx.sess.target.arch
807            ),
808        );
809    }
810    let mut escaped_symbol = String::new();
811    escaped_symbol.push('\"');
812    for c in symbol.chars() {
813        match c {
814            '\n' => escaped_symbol.push_str("\\\n"),
815            '"' => escaped_symbol.push_str("\\\""),
816            '\\' => escaped_symbol.push_str("\\\\"),
817            c => escaped_symbol.push(c),
818        }
819    }
820    escaped_symbol.push('\"');
821    escaped_symbol
822}