1use crate::metadata::{self, Bindgen, ModuleMetadata};
75use crate::validation::{Export, ExportMap, Import, ImportInstance, ImportMap, PayloadInfo};
76use crate::StringEncoding;
77use anyhow::{anyhow, bail, Context, Result};
78use indexmap::{IndexMap, IndexSet};
79use std::borrow::Cow;
80use std::collections::HashMap;
81use std::hash::Hash;
82use std::mem;
83use wasm_encoder::*;
84use wasmparser::{Validator, WasmFeatures};
85use wit_parser::{
86 abi::{AbiVariant, WasmSignature, WasmType},
87 Function, FunctionKind, InterfaceId, LiveTypes, Resolve, Stability, Type, TypeDefKind, TypeId,
88 TypeOwner, WorldItem, WorldKey,
89};
90
91const INDIRECT_TABLE_NAME: &str = "$imports";
92
93mod wit;
94pub use wit::{encode, encode_world};
95
96mod types;
97use types::{InstanceTypeEncoder, RootTypeEncoder, ValtypeEncoder};
98mod world;
99use world::{ComponentWorld, ImportedInterface, Lowering};
100
101fn to_val_type(ty: &WasmType) -> ValType {
102 match ty {
103 WasmType::I32 => ValType::I32,
104 WasmType::I64 => ValType::I64,
105 WasmType::F32 => ValType::F32,
106 WasmType::F64 => ValType::F64,
107 WasmType::Pointer => ValType::I32,
108 WasmType::PointerOrI64 => ValType::I64,
109 WasmType::Length => ValType::I32,
110 }
111}
112
113bitflags::bitflags! {
114 #[derive(Copy, Clone, Debug)]
117 pub struct RequiredOptions: u8 {
118 const MEMORY = 1 << 0;
121 const REALLOC = 1 << 1;
124 const STRING_ENCODING = 1 << 2;
127 const ASYNC = 1 << 3;
128 }
129}
130
131impl RequiredOptions {
132 fn for_import(resolve: &Resolve, func: &Function, abi: AbiVariant) -> RequiredOptions {
133 let sig = resolve.wasm_signature(abi, func);
134 let mut ret = RequiredOptions::empty();
135 ret.add_lift(TypeContents::for_types(
137 resolve,
138 func.params.iter().map(|(_, t)| t),
139 ));
140 ret.add_lower(TypeContents::for_types(resolve, &func.result));
141
142 if sig.retptr || sig.indirect_params {
145 ret |= RequiredOptions::MEMORY;
146 }
147 if abi == AbiVariant::GuestImportAsync {
148 ret |= RequiredOptions::ASYNC;
149 }
150 ret
151 }
152
153 fn for_export(resolve: &Resolve, func: &Function, abi: AbiVariant) -> RequiredOptions {
154 let sig = resolve.wasm_signature(abi, func);
155 let mut ret = RequiredOptions::empty();
156 ret.add_lower(TypeContents::for_types(
158 resolve,
159 func.params.iter().map(|(_, t)| t),
160 ));
161 ret.add_lift(TypeContents::for_types(resolve, &func.result));
162
163 if sig.retptr || sig.indirect_params {
167 ret |= RequiredOptions::MEMORY;
168 if sig.indirect_params {
169 ret |= RequiredOptions::REALLOC;
170 }
171 }
172 if let AbiVariant::GuestExportAsync | AbiVariant::GuestExportAsyncStackful = abi {
173 ret |= RequiredOptions::ASYNC;
174 }
175 ret
176 }
177
178 fn add_lower(&mut self, types: TypeContents) {
179 if types.contains(TypeContents::LIST) {
183 *self |= RequiredOptions::MEMORY | RequiredOptions::REALLOC;
184 }
185 if types.contains(TypeContents::STRING) {
186 *self |= RequiredOptions::MEMORY
187 | RequiredOptions::STRING_ENCODING
188 | RequiredOptions::REALLOC;
189 }
190 }
191
192 fn add_lift(&mut self, types: TypeContents) {
193 if types.contains(TypeContents::LIST) {
197 *self |= RequiredOptions::MEMORY;
198 }
199 if types.contains(TypeContents::STRING) {
200 *self |= RequiredOptions::MEMORY | RequiredOptions::STRING_ENCODING;
201 }
202 }
203
204 fn into_iter(
205 self,
206 encoding: StringEncoding,
207 memory_index: Option<u32>,
208 realloc_index: Option<u32>,
209 ) -> Result<impl ExactSizeIterator<Item = CanonicalOption>> {
210 #[derive(Default)]
211 struct Iter {
212 options: [Option<CanonicalOption>; 5],
213 current: usize,
214 count: usize,
215 }
216
217 impl Iter {
218 fn push(&mut self, option: CanonicalOption) {
219 assert!(self.count < self.options.len());
220 self.options[self.count] = Some(option);
221 self.count += 1;
222 }
223 }
224
225 impl Iterator for Iter {
226 type Item = CanonicalOption;
227
228 fn next(&mut self) -> Option<Self::Item> {
229 if self.current == self.count {
230 return None;
231 }
232 let option = self.options[self.current];
233 self.current += 1;
234 option
235 }
236
237 fn size_hint(&self) -> (usize, Option<usize>) {
238 (self.count - self.current, Some(self.count - self.current))
239 }
240 }
241
242 impl ExactSizeIterator for Iter {}
243
244 let mut iter = Iter::default();
245
246 if self.contains(RequiredOptions::MEMORY) {
247 iter.push(CanonicalOption::Memory(memory_index.ok_or_else(|| {
248 anyhow!("module does not export a memory named `memory`")
249 })?));
250 }
251
252 if self.contains(RequiredOptions::REALLOC) {
253 iter.push(CanonicalOption::Realloc(realloc_index.ok_or_else(
254 || anyhow!("module does not export a function named `cabi_realloc`"),
255 )?));
256 }
257
258 if self.contains(RequiredOptions::STRING_ENCODING) {
259 iter.push(encoding.into());
260 }
261
262 if self.contains(RequiredOptions::ASYNC) {
263 iter.push(CanonicalOption::Async);
264 }
265
266 Ok(iter)
267 }
268}
269
270bitflags::bitflags! {
271 struct TypeContents: u8 {
274 const STRING = 1 << 0;
275 const LIST = 1 << 1;
276 }
277}
278
279impl TypeContents {
280 fn for_types<'a>(resolve: &Resolve, types: impl IntoIterator<Item = &'a Type>) -> Self {
281 let mut cur = TypeContents::empty();
282 for ty in types {
283 cur |= Self::for_type(resolve, ty);
284 }
285 cur
286 }
287
288 fn for_optional_types<'a>(
289 resolve: &Resolve,
290 types: impl Iterator<Item = Option<&'a Type>>,
291 ) -> Self {
292 Self::for_types(resolve, types.flatten())
293 }
294
295 fn for_optional_type(resolve: &Resolve, ty: Option<&Type>) -> Self {
296 match ty {
297 Some(ty) => Self::for_type(resolve, ty),
298 None => Self::empty(),
299 }
300 }
301
302 fn for_type(resolve: &Resolve, ty: &Type) -> Self {
303 match ty {
304 Type::Id(id) => match &resolve.types[*id].kind {
305 TypeDefKind::Handle(h) => match h {
306 wit_parser::Handle::Own(_) => Self::empty(),
307 wit_parser::Handle::Borrow(_) => Self::empty(),
308 },
309 TypeDefKind::Resource => Self::empty(),
310 TypeDefKind::Record(r) => Self::for_types(resolve, r.fields.iter().map(|f| &f.ty)),
311 TypeDefKind::Tuple(t) => Self::for_types(resolve, t.types.iter()),
312 TypeDefKind::Flags(_) => Self::empty(),
313 TypeDefKind::Option(t) => Self::for_type(resolve, t),
314 TypeDefKind::Result(r) => {
315 Self::for_optional_type(resolve, r.ok.as_ref())
316 | Self::for_optional_type(resolve, r.err.as_ref())
317 }
318 TypeDefKind::Variant(v) => {
319 Self::for_optional_types(resolve, v.cases.iter().map(|c| c.ty.as_ref()))
320 }
321 TypeDefKind::Enum(_) => Self::empty(),
322 TypeDefKind::List(t) => Self::for_type(resolve, t) | Self::LIST,
323 TypeDefKind::Type(t) => Self::for_type(resolve, t),
324 TypeDefKind::Future(_) => Self::empty(),
325 TypeDefKind::Stream(_) => Self::empty(),
326 TypeDefKind::Unknown => unreachable!(),
327 },
328 Type::String => Self::STRING,
329 _ => Self::empty(),
330 }
331 }
332}
333
334pub struct EncodingState<'a> {
336 component: ComponentBuilder,
338 module_index: Option<u32>,
342 instance_index: Option<u32>,
346 memory_index: Option<u32>,
350 shim_instance_index: Option<u32>,
354 fixups_module_index: Option<u32>,
358
359 adapter_modules: IndexMap<&'a str, u32>,
362 adapter_instances: IndexMap<&'a str, u32>,
364
365 imported_instances: IndexMap<InterfaceId, u32>,
367 imported_funcs: IndexMap<String, u32>,
368 exported_instances: IndexMap<InterfaceId, u32>,
369
370 import_type_map: HashMap<TypeId, u32>,
375 import_func_type_map: HashMap<types::FunctionKey<'a>, u32>,
376 export_type_map: HashMap<TypeId, u32>,
377 export_func_type_map: HashMap<types::FunctionKey<'a>, u32>,
378
379 aliased_core_items: HashMap<(u32, String), u32>,
385
386 info: &'a ComponentWorld<'a>,
388}
389
390impl<'a> EncodingState<'a> {
391 fn encode_core_modules(&mut self) {
392 assert!(self.module_index.is_none());
393 let idx = self.component.core_module_raw(&self.info.encoder.module);
394 self.module_index = Some(idx);
395
396 for (name, adapter) in self.info.adapters.iter() {
397 let add_meta = wasm_metadata::AddMetadata {
398 name: Some(if adapter.library_info.is_some() {
399 name.to_string()
400 } else {
401 format!("wit-component:adapter:{name}")
402 }),
403 ..Default::default()
404 };
405 let wasm = add_meta
406 .to_wasm(&adapter.wasm)
407 .expect("core wasm can get name added");
408 let idx = self.component.core_module_raw(&wasm);
409 let prev = self.adapter_modules.insert(name, idx);
410 assert!(prev.is_none());
411 }
412 }
413
414 fn root_import_type_encoder(
415 &mut self,
416 interface: Option<InterfaceId>,
417 ) -> RootTypeEncoder<'_, 'a> {
418 RootTypeEncoder {
419 state: self,
420 interface,
421 import_types: true,
422 }
423 }
424
425 fn root_export_type_encoder(
426 &mut self,
427 interface: Option<InterfaceId>,
428 ) -> RootTypeEncoder<'_, 'a> {
429 RootTypeEncoder {
430 state: self,
431 interface,
432 import_types: false,
433 }
434 }
435
436 fn instance_type_encoder(&mut self, interface: InterfaceId) -> InstanceTypeEncoder<'_, 'a> {
437 InstanceTypeEncoder {
438 state: self,
439 interface,
440 type_map: Default::default(),
441 func_type_map: Default::default(),
442 ty: Default::default(),
443 }
444 }
445
446 fn encode_imports(&mut self, name_map: &HashMap<String, String>) -> Result<()> {
447 let mut has_funcs = false;
448 for (name, info) in self.info.import_map.iter() {
449 match name {
450 Some(name) => {
451 self.encode_interface_import(name_map.get(name).unwrap_or(name), info)?
452 }
453 None => has_funcs = true,
454 }
455 }
456
457 let resolve = &self.info.encoder.metadata.resolve;
458 let world = &resolve.worlds[self.info.encoder.metadata.world];
459 for (_name, item) in world.imports.iter() {
460 if let WorldItem::Type(ty) = item {
461 self.root_import_type_encoder(None)
462 .encode_valtype(resolve, &Type::Id(*ty))?;
463 }
464 }
465
466 if has_funcs {
467 let info = &self.info.import_map[&None];
468 self.encode_root_import_funcs(info)?;
469 }
470 Ok(())
471 }
472
473 fn encode_interface_import(&mut self, name: &str, info: &ImportedInterface) -> Result<()> {
474 let resolve = &self.info.encoder.metadata.resolve;
475 let interface_id = info.interface.as_ref().unwrap();
476 let interface_id = *interface_id;
477 let interface = &resolve.interfaces[interface_id];
478 log::trace!("encoding imports for `{name}` as {:?}", interface_id);
479 let mut encoder = self.instance_type_encoder(interface_id);
480
481 if let Some(live) = encoder.state.info.live_type_imports.get(&interface_id) {
483 for ty in live {
484 log::trace!(
485 "encoding extra type {ty:?} name={:?}",
486 resolve.types[*ty].name
487 );
488 encoder.encode_valtype(resolve, &Type::Id(*ty))?;
489 }
490 }
491
492 for (_, func) in interface.functions.iter() {
495 if !(info
496 .lowerings
497 .contains_key(&(func.name.clone(), AbiVariant::GuestImport))
498 || info
499 .lowerings
500 .contains_key(&(func.name.clone(), AbiVariant::GuestImportAsync)))
501 {
502 continue;
503 }
504 log::trace!("encoding function type for `{}`", func.name);
505 let idx = encoder.encode_func_type(resolve, func)?;
506
507 encoder.ty.export(&func.name, ComponentTypeRef::Func(idx));
508 }
509
510 let ty = encoder.ty;
511 if ty.is_empty() {
514 return Ok(());
515 }
516 let instance_type_idx = self.component.type_instance(&ty);
517 let instance_idx = self
518 .component
519 .import(name, ComponentTypeRef::Instance(instance_type_idx));
520 let prev = self.imported_instances.insert(interface_id, instance_idx);
521 assert!(prev.is_none());
522 Ok(())
523 }
524
525 fn encode_root_import_funcs(&mut self, info: &ImportedInterface) -> Result<()> {
526 let resolve = &self.info.encoder.metadata.resolve;
527 let world = self.info.encoder.metadata.world;
528 for (name, item) in resolve.worlds[world].imports.iter() {
529 let func = match item {
530 WorldItem::Function(f) => f,
531 WorldItem::Interface { .. } | WorldItem::Type(_) => continue,
532 };
533 let name = resolve.name_world_key(name);
534 if !(info
535 .lowerings
536 .contains_key(&(name.clone(), AbiVariant::GuestImport))
537 || info
538 .lowerings
539 .contains_key(&(name.clone(), AbiVariant::GuestImportAsync)))
540 {
541 continue;
542 }
543 log::trace!("encoding function type for `{}`", func.name);
544 let idx = self
545 .root_import_type_encoder(None)
546 .encode_func_type(resolve, func)?;
547 let func_idx = self.component.import(&name, ComponentTypeRef::Func(idx));
548 let prev = self.imported_funcs.insert(name, func_idx);
549 assert!(prev.is_none());
550 }
551 Ok(())
552 }
553
554 fn alias_imported_type(&mut self, interface: InterfaceId, id: TypeId) -> u32 {
555 let ty = &self.info.encoder.metadata.resolve.types[id];
556 let name = ty.name.as_ref().expect("type must have a name");
557 let instance = self.imported_instances[&interface];
558 self.component
559 .alias_export(instance, name, ComponentExportKind::Type)
560 }
561
562 fn alias_exported_type(&mut self, interface: InterfaceId, id: TypeId) -> u32 {
563 let ty = &self.info.encoder.metadata.resolve.types[id];
564 let name = ty.name.as_ref().expect("type must have a name");
565 let instance = self.exported_instances[&interface];
566 self.component
567 .alias_export(instance, name, ComponentExportKind::Type)
568 }
569
570 fn encode_core_instantiation(&mut self) -> Result<()> {
571 let shims = self.encode_shim_instantiation()?;
573
574 self.declare_exported_resources(&shims);
578
579 self.instantiate_main_module(&shims)?;
583
584 let (before, after) = self
587 .info
588 .adapters
589 .iter()
590 .partition::<Vec<_>, _>(|(_, adapter)| {
591 !matches!(
592 adapter.library_info,
593 Some(LibraryInfo {
594 instantiate_after_shims: true,
595 ..
596 })
597 )
598 });
599
600 for (name, _adapter) in before {
601 self.instantiate_adapter_module(&shims, name)?;
602 }
603
604 self.encode_indirect_lowerings(&shims)?;
607
608 for (name, _adapter) in after {
609 self.instantiate_adapter_module(&shims, name)?;
610 }
611
612 self.encode_initialize_with_start()?;
613
614 Ok(())
615 }
616
617 fn lookup_resource_index(&mut self, id: TypeId) -> u32 {
618 let resolve = &self.info.encoder.metadata.resolve;
619 let ty = &resolve.types[id];
620 match ty.owner {
621 TypeOwner::World(_) => self.import_type_map[&id],
625 TypeOwner::Interface(i) => {
626 let instance = self.imported_instances[&i];
627 let name = ty.name.as_ref().expect("resources must be named");
628 self.component
629 .alias_export(instance, name, ComponentExportKind::Type)
630 }
631 TypeOwner::None => panic!("resources must have an owner"),
632 }
633 }
634
635 fn encode_exports(&mut self, module: CustomModule) -> Result<()> {
636 let resolve = &self.info.encoder.metadata.resolve;
637 let exports = match module {
638 CustomModule::Main => &self.info.encoder.main_module_exports,
639 CustomModule::Adapter(name) => &self.info.encoder.adapters[name].required_exports,
640 };
641
642 if exports.is_empty() {
643 return Ok(());
644 }
645
646 let mut interface_func_core_names = IndexMap::new();
647 let mut world_func_core_names = IndexMap::new();
648 for (core_name, export) in self.info.exports_for(module).iter() {
649 match export {
650 Export::WorldFunc(_, name, _) => {
651 let prev = world_func_core_names.insert(name, core_name);
652 assert!(prev.is_none());
653 }
654 Export::InterfaceFunc(_, id, name, _) => {
655 let prev = interface_func_core_names
656 .entry(id)
657 .or_insert(IndexMap::new())
658 .insert(name.as_str(), core_name);
659 assert!(prev.is_none());
660 }
661 Export::WorldFuncCallback(..)
662 | Export::InterfaceFuncCallback(..)
663 | Export::WorldFuncPostReturn(..)
664 | Export::InterfaceFuncPostReturn(..)
665 | Export::ResourceDtor(..)
666 | Export::Memory
667 | Export::GeneralPurposeRealloc
668 | Export::GeneralPurposeExportRealloc
669 | Export::GeneralPurposeImportRealloc
670 | Export::Initialize
671 | Export::ReallocForAdapter => continue,
672 }
673 }
674
675 let world = &resolve.worlds[self.info.encoder.metadata.world];
676
677 for export_name in exports {
678 let export_string = resolve.name_world_key(export_name);
679 match &world.exports[export_name] {
680 WorldItem::Function(func) => {
681 let ty = self
682 .root_import_type_encoder(None)
683 .encode_func_type(resolve, func)?;
684 let core_name = world_func_core_names[&func.name];
685 let idx = self.encode_lift(module, &core_name, export_name, func, ty)?;
686 self.component
687 .export(&export_string, ComponentExportKind::Func, idx, None);
688 }
689 WorldItem::Interface { id, .. } => {
690 let core_names = interface_func_core_names.get(id);
691 self.encode_interface_export(
692 &export_string,
693 module,
694 export_name,
695 *id,
696 core_names,
697 )?;
698 }
699 WorldItem::Type(_) => unreachable!(),
700 }
701 }
702
703 Ok(())
704 }
705
706 fn encode_interface_export(
707 &mut self,
708 export_name: &str,
709 module: CustomModule<'_>,
710 key: &WorldKey,
711 export: InterfaceId,
712 interface_func_core_names: Option<&IndexMap<&str, &str>>,
713 ) -> Result<()> {
714 log::trace!("encode interface export `{export_name}`");
715 let resolve = &self.info.encoder.metadata.resolve;
716
717 let mut imports = Vec::new();
724 let mut root = self.root_export_type_encoder(Some(export));
725 for (_, func) in &resolve.interfaces[export].functions {
726 let core_name = interface_func_core_names.unwrap()[func.name.as_str()];
727 let ty = root.encode_func_type(resolve, func)?;
728 let func_index = root.state.encode_lift(module, &core_name, key, func, ty)?;
729 imports.push((
730 import_func_name(func),
731 ComponentExportKind::Func,
732 func_index,
733 ));
734 }
735
736 let mut nested = NestedComponentTypeEncoder {
740 component: ComponentBuilder::default(),
741 type_map: Default::default(),
742 func_type_map: Default::default(),
743 export_types: false,
744 interface: export,
745 state: self,
746 imports: IndexMap::new(),
747 };
748
749 let mut types_to_import = LiveTypes::default();
759 types_to_import.add_interface(resolve, export);
760 let exports_used = &nested.state.info.exports_used[&export];
761 for ty in types_to_import.iter() {
762 if let TypeOwner::Interface(owner) = resolve.types[ty].owner {
763 if owner == export {
764 continue;
767 }
768
769 let mut encoder = if exports_used.contains(&owner) {
772 nested.state.root_export_type_encoder(Some(export))
773 } else {
774 nested.state.root_import_type_encoder(Some(export))
775 };
776 encoder.encode_valtype(resolve, &Type::Id(ty))?;
777
778 nested.interface = owner;
782 nested.encode_valtype(resolve, &Type::Id(ty))?;
783 }
784 }
785 nested.interface = export;
786
787 let imported_types = nested.type_map.clone();
791
792 let mut resources = HashMap::new();
798 for (_name, ty) in resolve.interfaces[export].types.iter() {
799 if !matches!(resolve.types[*ty].kind, TypeDefKind::Resource) {
800 continue;
801 }
802 let idx = match nested.encode_valtype(resolve, &Type::Id(*ty))? {
803 ComponentValType::Type(idx) => idx,
804 _ => unreachable!(),
805 };
806 resources.insert(*ty, idx);
807 }
808
809 for (_, func) in resolve.interfaces[export].functions.iter() {
813 let ty = nested.encode_func_type(resolve, func)?;
814 nested
815 .component
816 .import(&import_func_name(func), ComponentTypeRef::Func(ty));
817 }
818
819 let reverse_map = nested
826 .type_map
827 .drain()
828 .map(|p| (p.1, p.0))
829 .collect::<HashMap<_, _>>();
830 for (name, idx) in nested.imports.drain(..) {
831 let id = reverse_map[&idx];
832 let owner = match resolve.types[id].owner {
833 TypeOwner::Interface(id) => id,
834 _ => unreachable!(),
835 };
836 let idx = if owner == export || exports_used.contains(&owner) {
837 log::trace!("consulting exports for {id:?}");
838 nested.state.export_type_map[&id]
839 } else {
840 log::trace!("consulting imports for {id:?}");
841 nested.state.import_type_map[&id]
842 };
843 imports.push((name, ComponentExportKind::Type, idx))
844 }
845
846 nested.type_map = imported_types;
851
852 nested.export_types = true;
859 nested.func_type_map.clear();
860
861 for (_, id) in resolve.interfaces[export].types.iter() {
867 let ty = &resolve.types[*id];
868 match ty.kind {
869 TypeDefKind::Resource => {
870 let idx = nested.component.export(
871 ty.name.as_ref().expect("resources must be named"),
872 ComponentExportKind::Type,
873 resources[id],
874 None,
875 );
876 nested.type_map.insert(*id, idx);
877 }
878 _ => {
879 nested.encode_valtype(resolve, &Type::Id(*id))?;
880 }
881 }
882 }
883
884 for (i, (_, func)) in resolve.interfaces[export].functions.iter().enumerate() {
885 let ty = nested.encode_func_type(resolve, func)?;
886 nested.component.export(
887 &func.name,
888 ComponentExportKind::Func,
889 i as u32,
890 Some(ComponentTypeRef::Func(ty)),
891 );
892 }
893
894 let component = nested.component;
898 let component_index = self.component.component(component);
899 let instance_index = self.component.instantiate(component_index, imports);
900 let idx = self.component.export(
901 export_name,
902 ComponentExportKind::Instance,
903 instance_index,
904 None,
905 );
906 let prev = self.exported_instances.insert(export, idx);
907 assert!(prev.is_none());
908
909 for (_name, id) in resolve.interfaces[export].types.iter() {
917 self.export_type_map.remove(id);
918 }
919
920 return Ok(());
921
922 struct NestedComponentTypeEncoder<'state, 'a> {
923 component: ComponentBuilder,
924 type_map: HashMap<TypeId, u32>,
925 func_type_map: HashMap<types::FunctionKey<'a>, u32>,
926 export_types: bool,
927 interface: InterfaceId,
928 state: &'state mut EncodingState<'a>,
929 imports: IndexMap<String, u32>,
930 }
931
932 impl<'a> ValtypeEncoder<'a> for NestedComponentTypeEncoder<'_, 'a> {
933 fn defined_type(&mut self) -> (u32, ComponentDefinedTypeEncoder<'_>) {
934 self.component.type_defined()
935 }
936 fn define_function_type(&mut self) -> (u32, ComponentFuncTypeEncoder<'_>) {
937 self.component.type_function()
938 }
939 fn export_type(&mut self, idx: u32, name: &'a str) -> Option<u32> {
940 if self.export_types {
941 Some(
942 self.component
943 .export(name, ComponentExportKind::Type, idx, None),
944 )
945 } else {
946 let name = self.unique_import_name(name);
947 let ret = self
948 .component
949 .import(&name, ComponentTypeRef::Type(TypeBounds::Eq(idx)));
950 self.imports.insert(name, ret);
951 Some(ret)
952 }
953 }
954 fn export_resource(&mut self, name: &'a str) -> u32 {
955 if self.export_types {
956 panic!("resources should already be exported")
957 } else {
958 let name = self.unique_import_name(name);
959 let ret = self
960 .component
961 .import(&name, ComponentTypeRef::Type(TypeBounds::SubResource));
962 self.imports.insert(name, ret);
963 ret
964 }
965 }
966 fn import_type(&mut self, _: InterfaceId, _id: TypeId) -> u32 {
967 unreachable!()
968 }
969 fn type_map(&mut self) -> &mut HashMap<TypeId, u32> {
970 &mut self.type_map
971 }
972 fn func_type_map(&mut self) -> &mut HashMap<types::FunctionKey<'a>, u32> {
973 &mut self.func_type_map
974 }
975 fn interface(&self) -> Option<InterfaceId> {
976 Some(self.interface)
977 }
978 }
979
980 impl NestedComponentTypeEncoder<'_, '_> {
981 fn unique_import_name(&mut self, name: &str) -> String {
982 let mut name = format!("import-type-{name}");
983 let mut n = 0;
984 while self.imports.contains_key(&name) {
985 name = format!("{name}{n}");
986 n += 1;
987 }
988 name
989 }
990 }
991
992 fn import_func_name(f: &Function) -> String {
993 match f.kind {
994 FunctionKind::Freestanding | FunctionKind::AsyncFreestanding => {
995 format!("import-func-{}", f.item_name())
996 }
997
998 FunctionKind::Method(_)
1006 | FunctionKind::AsyncMethod(_)
1007 | FunctionKind::Static(_)
1008 | FunctionKind::AsyncStatic(_)
1009 | FunctionKind::Constructor(_) => {
1010 format!(
1011 "import-{}",
1012 f.name.replace('[', "").replace([']', '.', ' '], "-")
1013 )
1014 }
1015 }
1016 }
1017 }
1018
1019 fn encode_lift(
1020 &mut self,
1021 module: CustomModule<'_>,
1022 core_name: &str,
1023 key: &WorldKey,
1024 func: &Function,
1025 ty: u32,
1026 ) -> Result<u32> {
1027 let resolve = &self.info.encoder.metadata.resolve;
1028 let metadata = self.info.module_metadata_for(module);
1029 let instance_index = self.instance_for(module);
1030 let core_func_index = self.core_alias_export(instance_index, core_name, ExportKind::Func);
1031 let exports = self.info.exports_for(module);
1032
1033 let options = RequiredOptions::for_export(
1034 resolve,
1035 func,
1036 exports
1037 .abi(key, func)
1038 .ok_or_else(|| anyhow!("no ABI found for {}", func.name))?,
1039 );
1040
1041 let encoding = metadata
1042 .export_encodings
1043 .get(resolve, key, &func.name)
1044 .unwrap();
1045 let exports = self.info.exports_for(module);
1046 let realloc_index = exports
1047 .export_realloc_for(key, &func.name)
1048 .map(|name| self.core_alias_export(instance_index, name, ExportKind::Func));
1049 let mut options = options
1050 .into_iter(encoding, self.memory_index, realloc_index)?
1051 .collect::<Vec<_>>();
1052
1053 if let Some(post_return) = exports.post_return(key, func) {
1054 let post_return = self.core_alias_export(instance_index, post_return, ExportKind::Func);
1055 options.push(CanonicalOption::PostReturn(post_return));
1056 }
1057 if let Some(callback) = exports.callback(key, func) {
1058 let callback = self.core_alias_export(instance_index, callback, ExportKind::Func);
1059 options.push(CanonicalOption::Callback(callback));
1060 }
1061 let func_index = self.component.lift_func(core_func_index, ty, options);
1062 Ok(func_index)
1063 }
1064
1065 fn encode_shim_instantiation(&mut self) -> Result<Shims<'a>> {
1066 let mut ret = Shims::default();
1067
1068 ret.append_indirect(self.info, CustomModule::Main)
1069 .context("failed to register indirect shims for main module")?;
1070
1071 for (adapter_name, _adapter) in self.info.adapters.iter() {
1075 ret.append_indirect(self.info, CustomModule::Adapter(adapter_name))
1076 .with_context(|| {
1077 format!("failed to register indirect shims for adapter {adapter_name}")
1078 })?;
1079 }
1080
1081 if ret.shims.is_empty() {
1082 return Ok(ret);
1083 }
1084
1085 assert!(self.shim_instance_index.is_none());
1086 assert!(self.fixups_module_index.is_none());
1087
1088 let mut types = TypeSection::new();
1097 let mut tables = TableSection::new();
1098 let mut functions = FunctionSection::new();
1099 let mut exports = ExportSection::new();
1100 let mut code = CodeSection::new();
1101 let mut sigs = IndexMap::new();
1102 let mut imports_section = ImportSection::new();
1103 let mut elements = ElementSection::new();
1104 let mut func_indexes = Vec::new();
1105 let mut func_names = NameMap::new();
1106
1107 for (i, shim) in ret.shims.values().enumerate() {
1108 let i = i as u32;
1109 let type_index = *sigs.entry(&shim.sig).or_insert_with(|| {
1110 let index = types.len();
1111 types.ty().function(
1112 shim.sig.params.iter().map(to_val_type),
1113 shim.sig.results.iter().map(to_val_type),
1114 );
1115 index
1116 });
1117
1118 functions.function(type_index);
1119 Self::encode_shim_function(type_index, i, &mut code, shim.sig.params.len() as u32);
1120 exports.export(&shim.name, ExportKind::Func, i);
1121
1122 imports_section.import("", &shim.name, EntityType::Function(type_index));
1123 func_indexes.push(i);
1124 func_names.append(i, &shim.debug_name);
1125 }
1126 let mut names = NameSection::new();
1127 names.module("wit-component:shim");
1128 names.functions(&func_names);
1129
1130 let table_type = TableType {
1131 element_type: RefType::FUNCREF,
1132 minimum: ret.shims.len() as u64,
1133 maximum: Some(ret.shims.len() as u64),
1134 table64: false,
1135 shared: false,
1136 };
1137
1138 tables.table(table_type);
1139
1140 exports.export(INDIRECT_TABLE_NAME, ExportKind::Table, 0);
1141 imports_section.import("", INDIRECT_TABLE_NAME, table_type);
1142
1143 elements.active(
1144 None,
1145 &ConstExpr::i32_const(0),
1146 Elements::Functions(func_indexes.into()),
1147 );
1148
1149 let mut shim = Module::new();
1150 shim.section(&types);
1151 shim.section(&functions);
1152 shim.section(&tables);
1153 shim.section(&exports);
1154 shim.section(&code);
1155 shim.section(&RawCustomSection(
1156 &crate::base_producers().raw_custom_section(),
1157 ));
1158 shim.section(&names);
1159
1160 let mut fixups = Module::default();
1161 fixups.section(&types);
1162 fixups.section(&imports_section);
1163 fixups.section(&elements);
1164 fixups.section(&RawCustomSection(
1165 &crate::base_producers().raw_custom_section(),
1166 ));
1167
1168 let mut names = NameSection::new();
1169 names.module("wit-component:fixups");
1170 fixups.section(&names);
1171
1172 let shim_module_index = self.component.core_module(&shim);
1173 self.fixups_module_index = Some(self.component.core_module(&fixups));
1174 self.shim_instance_index = Some(self.component.core_instantiate(shim_module_index, []));
1175
1176 return Ok(ret);
1177 }
1178
1179 fn encode_shim_function(
1180 type_index: u32,
1181 func_index: u32,
1182 code: &mut CodeSection,
1183 param_count: u32,
1184 ) {
1185 let mut func = wasm_encoder::Function::new(std::iter::empty());
1186 for i in 0..param_count {
1187 func.instructions().local_get(i);
1188 }
1189 func.instructions().i32_const(func_index as i32);
1190 func.instructions().call_indirect(0, type_index);
1191 func.instructions().end();
1192 code.function(&func);
1193 }
1194
1195 fn encode_indirect_lowerings(&mut self, shims: &Shims<'_>) -> Result<()> {
1196 if shims.shims.is_empty() {
1197 return Ok(());
1198 }
1199
1200 let shim_instance_index = self
1201 .shim_instance_index
1202 .expect("must have an instantiated shim");
1203
1204 let table_index =
1205 self.core_alias_export(shim_instance_index, INDIRECT_TABLE_NAME, ExportKind::Table);
1206
1207 let resolve = &self.info.encoder.metadata.resolve;
1208
1209 let mut exports = Vec::new();
1210 exports.push((INDIRECT_TABLE_NAME, ExportKind::Table, table_index));
1211
1212 for shim in shims.shims.values() {
1213 let core_func_index = match &shim.kind {
1214 ShimKind::IndirectLowering {
1221 interface,
1222 index,
1223 realloc,
1224 encoding,
1225 } => {
1226 let interface = &self.info.import_map[interface];
1227 let ((name, _), _) = interface.lowerings.get_index(*index).unwrap();
1228 let func_index = match &interface.interface {
1229 Some(interface_id) => {
1230 let instance_index = self.imported_instances[interface_id];
1231 self.component.alias_export(
1232 instance_index,
1233 name,
1234 ComponentExportKind::Func,
1235 )
1236 }
1237 None => self.imported_funcs[name],
1238 };
1239
1240 let realloc = self
1241 .info
1242 .exports_for(*realloc)
1243 .import_realloc_for(interface.interface, name)
1244 .map(|name| {
1245 let instance = self.instance_for(*realloc);
1246 self.core_alias_export(instance, name, ExportKind::Func)
1247 });
1248
1249 self.component.lower_func(
1250 func_index,
1251 shim.options
1252 .into_iter(*encoding, self.memory_index, realloc)?,
1253 )
1254 }
1255
1256 ShimKind::Adapter { adapter, func } => {
1261 self.core_alias_export(self.adapter_instances[adapter], func, ExportKind::Func)
1262 }
1263
1264 ShimKind::ResourceDtor { module, export } => {
1269 self.core_alias_export(self.instance_for(*module), export, ExportKind::Func)
1270 }
1271
1272 ShimKind::PayloadFunc {
1273 for_module,
1274 info,
1275 kind,
1276 } => {
1277 let metadata = self.info.module_metadata_for(*for_module);
1278 let exports = self.info.exports_for(*for_module);
1279 let instance_index = self.instance_for(*for_module);
1280 let (encoding, realloc) = if info.imported {
1281 (
1282 metadata
1283 .import_encodings
1284 .get(resolve, &info.key, &info.function),
1285 exports.import_realloc_for(info.interface, &info.function),
1286 )
1287 } else {
1288 (
1289 metadata
1290 .export_encodings
1291 .get(resolve, &info.key, &info.function),
1292 exports.export_realloc_for(&info.key, &info.function),
1293 )
1294 };
1295 let encoding = encoding.unwrap_or(StringEncoding::UTF8);
1296 let realloc_index = realloc
1297 .map(|name| self.core_alias_export(instance_index, name, ExportKind::Func));
1298 let type_index = self.payload_type_index(info)?;
1299 let options =
1300 shim.options
1301 .into_iter(encoding, self.memory_index, realloc_index)?;
1302
1303 match kind {
1304 PayloadFuncKind::FutureWrite => {
1305 self.component.future_write(type_index, options)
1306 }
1307 PayloadFuncKind::FutureRead => {
1308 self.component.future_read(type_index, options)
1309 }
1310 PayloadFuncKind::StreamWrite => {
1311 self.component.stream_write(type_index, options)
1312 }
1313 PayloadFuncKind::StreamRead => {
1314 self.component.stream_read(type_index, options)
1315 }
1316 }
1317 }
1318
1319 ShimKind::WaitableSetWait { async_ } => self
1320 .component
1321 .waitable_set_wait(*async_, self.memory_index.unwrap()),
1322 ShimKind::WaitableSetPoll { async_ } => self
1323 .component
1324 .waitable_set_poll(*async_, self.memory_index.unwrap()),
1325 ShimKind::ErrorContextNew { encoding } => self.component.error_context_new(
1326 shim.options.into_iter(*encoding, self.memory_index, None)?,
1327 ),
1328 ShimKind::ErrorContextDebugMessage {
1329 for_module,
1330 encoding,
1331 } => {
1332 let instance_index = self.instance_for(*for_module);
1333 let realloc = self.info.exports_for(*for_module).import_realloc_fallback();
1334 let realloc_index = realloc
1335 .map(|r| self.core_alias_export(instance_index, r, ExportKind::Func));
1336
1337 self.component
1338 .error_context_debug_message(shim.options.into_iter(
1339 *encoding,
1340 self.memory_index,
1341 realloc_index,
1342 )?)
1343 }
1344 ShimKind::TaskReturn {
1345 interface,
1346 func,
1347 result,
1348 encoding,
1349 for_module,
1350 } => {
1351 let mut encoder = self.root_export_type_encoder(*interface);
1352 let result = match result {
1353 Some(ty) => Some(encoder.encode_valtype(resolve, ty)?),
1354 None => None,
1355 };
1356
1357 let exports = self.info.exports_for(*for_module);
1358 let realloc = exports.import_realloc_for(*interface, func);
1359
1360 let instance_index = self.instance_for(*for_module);
1361 let realloc_index = realloc
1362 .map(|r| self.core_alias_export(instance_index, r, ExportKind::Func));
1363 let options =
1364 shim.options
1365 .into_iter(*encoding, self.memory_index, realloc_index)?;
1366 self.component.task_return(result, options)
1367 }
1368 };
1369
1370 exports.push((shim.name.as_str(), ExportKind::Func, core_func_index));
1371 }
1372
1373 let instance_index = self.component.core_instantiate_exports(exports);
1374 self.component.core_instantiate(
1375 self.fixups_module_index.expect("must have fixup module"),
1376 [("", ModuleArg::Instance(instance_index))],
1377 );
1378 Ok(())
1379 }
1380
1381 fn payload_type_index(&mut self, info: &PayloadInfo) -> Result<u32> {
1389 let resolve = &self.info.encoder.metadata.resolve;
1390 let ComponentValType::Type(type_index) = if info.imported {
1391 self.root_import_type_encoder(info.interface)
1392 } else {
1393 self.root_export_type_encoder(info.interface)
1394 }
1395 .encode_valtype(resolve, &Type::Id(info.ty))?
1396 else {
1397 unreachable!()
1398 };
1399 Ok(type_index)
1400 }
1401
1402 fn declare_exported_resources(&mut self, shims: &Shims<'_>) {
1409 let resolve = &self.info.encoder.metadata.resolve;
1410 let world = &resolve.worlds[self.info.encoder.metadata.world];
1411
1412 let main_module_keys = self.info.encoder.main_module_exports.iter();
1416 let main_module_keys = main_module_keys.map(|key| (CustomModule::Main, key));
1417 let adapter_keys = self.info.encoder.adapters.iter().flat_map(|(name, info)| {
1418 info.required_exports
1419 .iter()
1420 .map(move |key| (CustomModule::Adapter(name), key))
1421 });
1422 for (for_module, key) in main_module_keys.chain(adapter_keys) {
1423 let id = match &world.exports[key] {
1424 WorldItem::Interface { id, .. } => *id,
1425 WorldItem::Type { .. } => unreachable!(),
1426 WorldItem::Function(_) => continue,
1427 };
1428
1429 for ty in resolve.interfaces[id].types.values() {
1430 match resolve.types[*ty].kind {
1431 TypeDefKind::Resource => {}
1432 _ => continue,
1433 }
1434
1435 let exports = self.info.exports_for(for_module);
1438 let dtor = exports.resource_dtor(*ty).map(|name| {
1439 let name = &shims.shims[&ShimKind::ResourceDtor {
1440 module: for_module,
1441 export: name,
1442 }]
1443 .name;
1444 let shim = self.shim_instance_index.unwrap();
1445 self.core_alias_export(shim, name, ExportKind::Func)
1446 });
1447
1448 let resource_idx = self.component.type_resource(ValType::I32, dtor);
1452 let prev = self.export_type_map.insert(*ty, resource_idx);
1453 assert!(prev.is_none());
1454 }
1455 }
1456 }
1457
1458 fn instantiate_main_module(&mut self, shims: &Shims<'_>) -> Result<()> {
1461 assert!(self.instance_index.is_none());
1462
1463 let instance_index = self.instantiate_core_module(shims, CustomModule::Main)?;
1464
1465 if let Some(memory) = self.info.info.exports.memory() {
1466 self.memory_index =
1467 Some(self.core_alias_export(instance_index, memory, ExportKind::Memory));
1468 }
1469
1470 self.instance_index = Some(instance_index);
1471 Ok(())
1472 }
1473
1474 fn instantiate_adapter_module(&mut self, shims: &Shims<'_>, name: &'a str) -> Result<()> {
1477 let instance = self.instantiate_core_module(shims, CustomModule::Adapter(name))?;
1478 self.adapter_instances.insert(name, instance);
1479 Ok(())
1480 }
1481
1482 fn instantiate_core_module(
1489 &mut self,
1490 shims: &Shims,
1491 for_module: CustomModule<'_>,
1492 ) -> Result<u32> {
1493 let module = self.module_for(for_module);
1494
1495 let mut args = Vec::new();
1496 for (core_wasm_name, instance) in self.info.imports_for(for_module).modules() {
1497 match instance {
1498 ImportInstance::Names(names) => {
1504 let mut exports = Vec::new();
1505 for (name, import) in names {
1506 let (kind, index) = self
1507 .materialize_import(&shims, for_module, core_wasm_name, name, import)
1508 .with_context(|| {
1509 format!("failed to satisfy import `{core_wasm_name}::{name}`")
1510 })?;
1511 exports.push((name.as_str(), kind, index));
1512 }
1513 let index = self.component.core_instantiate_exports(exports);
1514 args.push((core_wasm_name.as_str(), ModuleArg::Instance(index)));
1515 }
1516
1517 ImportInstance::Whole(which) => {
1520 let instance = self.instance_for(which.to_custom_module());
1521 args.push((core_wasm_name.as_str(), ModuleArg::Instance(instance)));
1522 }
1523 }
1524 }
1525
1526 Ok(self.component.core_instantiate(module, args))
1528 }
1529
1530 fn materialize_import(
1537 &mut self,
1538 shims: &Shims<'_>,
1539 for_module: CustomModule<'_>,
1540 module: &str,
1541 field: &str,
1542 import: &'a Import,
1543 ) -> Result<(ExportKind, u32)> {
1544 log::trace!("attempting to materialize import of `{module}::{field}` for {for_module:?}");
1545 let resolve = &self.info.encoder.metadata.resolve;
1546 match import {
1547 Import::AdapterExport(_) => {
1550 assert!(self.info.encoder.adapters.contains_key(module));
1551 Ok(self.materialize_shim_import(
1552 shims,
1553 &ShimKind::Adapter {
1554 adapter: module,
1555 func: field,
1556 },
1557 ))
1558 }
1559
1560 Import::MainModuleMemory => {
1563 let index = self
1564 .memory_index
1565 .ok_or_else(|| anyhow!("main module cannot import memory"))?;
1566 Ok((ExportKind::Memory, index))
1567 }
1568
1569 Import::MainModuleExport { name, kind } => {
1571 let instance = self.instance_index.unwrap();
1572 let index = self.core_alias_export(instance, name, *kind);
1573 Ok((*kind, index))
1574 }
1575
1576 Import::Item(item) => {
1580 let instance = self.instance_for(item.which.to_custom_module());
1581 let index = self.core_alias_export(instance, &item.name, item.kind);
1582 Ok((item.kind, index))
1583 }
1584
1585 Import::ExportedResourceDrop(_key, id) => {
1591 let index = self.component.resource_drop(self.export_type_map[id]);
1592 Ok((ExportKind::Func, index))
1593 }
1594 Import::ExportedResourceRep(_key, id) => {
1595 let index = self.component.resource_rep(self.export_type_map[id]);
1596 Ok((ExportKind::Func, index))
1597 }
1598 Import::ExportedResourceNew(_key, id) => {
1599 let index = self.component.resource_new(self.export_type_map[id]);
1600 Ok((ExportKind::Func, index))
1601 }
1602
1603 Import::ImportedResourceDrop(key, iface, id) => {
1608 let ty = &resolve.types[*id];
1609 let name = ty.name.as_ref().unwrap();
1610 self.materialize_wit_import(
1611 shims,
1612 for_module,
1613 iface.map(|_| resolve.name_world_key(key)),
1614 &format!("{name}_drop"),
1615 key,
1616 AbiVariant::GuestImport,
1617 )
1618 }
1619 Import::ExportedTaskReturn(key, interface, func, result) => {
1620 let (options, _sig) = task_return_options_and_type(resolve, *result);
1621 if options.is_empty() {
1622 let mut encoder = self.root_export_type_encoder(*interface);
1623
1624 let result = match result {
1625 Some(ty) => Some(encoder.encode_valtype(resolve, ty)?),
1626 None => None,
1627 };
1628 let index = self.component.task_return(result, []);
1629 Ok((ExportKind::Func, index))
1630 } else {
1631 let metadata = &self.info.encoder.metadata.metadata;
1632 let encoding = metadata.export_encodings.get(resolve, key, func).unwrap();
1633 Ok(self.materialize_shim_import(
1634 shims,
1635 &ShimKind::TaskReturn {
1636 for_module,
1637 interface: *interface,
1638 func,
1639 result: *result,
1640 encoding,
1641 },
1642 ))
1643 }
1644 }
1645 Import::BackpressureSet => {
1646 let index = self.component.backpressure_set();
1647 Ok((ExportKind::Func, index))
1648 }
1649 Import::WaitableSetWait { async_ } => {
1650 Ok(self
1651 .materialize_shim_import(shims, &ShimKind::WaitableSetWait { async_: *async_ }))
1652 }
1653 Import::WaitableSetPoll { async_ } => {
1654 Ok(self
1655 .materialize_shim_import(shims, &ShimKind::WaitableSetPoll { async_: *async_ }))
1656 }
1657 Import::Yield { async_ } => {
1658 let index = self.component.yield_(*async_);
1659 Ok((ExportKind::Func, index))
1660 }
1661 Import::SubtaskDrop => {
1662 let index = self.component.subtask_drop();
1663 Ok((ExportKind::Func, index))
1664 }
1665 Import::StreamNew(info) => {
1666 let ty = self.payload_type_index(info)?;
1667 let index = self.component.stream_new(ty);
1668 Ok((ExportKind::Func, index))
1669 }
1670 Import::StreamRead { info, .. } => Ok(self.materialize_payload_import(
1671 shims,
1672 for_module,
1673 info,
1674 PayloadFuncKind::StreamRead,
1675 )),
1676 Import::StreamWrite { info, .. } => Ok(self.materialize_payload_import(
1677 shims,
1678 for_module,
1679 info,
1680 PayloadFuncKind::StreamWrite,
1681 )),
1682 Import::StreamCancelRead { info, async_ } => {
1683 let ty = self.payload_type_index(info)?;
1684 let index = self.component.stream_cancel_read(ty, *async_);
1685 Ok((ExportKind::Func, index))
1686 }
1687 Import::StreamCancelWrite { info, async_ } => {
1688 let ty = self.payload_type_index(info)?;
1689 let index = self.component.stream_cancel_write(ty, *async_);
1690 Ok((ExportKind::Func, index))
1691 }
1692 Import::StreamCloseReadable(info) => {
1693 let type_index = self.payload_type_index(info)?;
1694 let index = self.component.stream_close_readable(type_index);
1695 Ok((ExportKind::Func, index))
1696 }
1697 Import::StreamCloseWritable(info) => {
1698 let type_index = self.payload_type_index(info)?;
1699 let index = self.component.stream_close_writable(type_index);
1700 Ok((ExportKind::Func, index))
1701 }
1702 Import::FutureNew(info) => {
1703 let ty = self.payload_type_index(info)?;
1704 let index = self.component.future_new(ty);
1705 Ok((ExportKind::Func, index))
1706 }
1707 Import::FutureRead { info, .. } => Ok(self.materialize_payload_import(
1708 shims,
1709 for_module,
1710 info,
1711 PayloadFuncKind::FutureRead,
1712 )),
1713 Import::FutureWrite { info, .. } => Ok(self.materialize_payload_import(
1714 shims,
1715 for_module,
1716 info,
1717 PayloadFuncKind::FutureWrite,
1718 )),
1719 Import::FutureCancelRead { info, async_ } => {
1720 let ty = self.payload_type_index(info)?;
1721 let index = self.component.future_cancel_read(ty, *async_);
1722 Ok((ExportKind::Func, index))
1723 }
1724 Import::FutureCancelWrite { info, async_ } => {
1725 let ty = self.payload_type_index(info)?;
1726 let index = self.component.future_cancel_write(ty, *async_);
1727 Ok((ExportKind::Func, index))
1728 }
1729 Import::FutureCloseReadable(info) => {
1730 let type_index = self.payload_type_index(info)?;
1731 let index = self.component.future_close_readable(type_index);
1732 Ok((ExportKind::Func, index))
1733 }
1734 Import::FutureCloseWritable(info) => {
1735 let type_index = self.payload_type_index(info)?;
1736 let index = self.component.future_close_writable(type_index);
1737 Ok((ExportKind::Func, index))
1738 }
1739 Import::ErrorContextNew { encoding } => Ok(self.materialize_shim_import(
1740 shims,
1741 &ShimKind::ErrorContextNew {
1742 encoding: *encoding,
1743 },
1744 )),
1745 Import::ErrorContextDebugMessage { encoding } => Ok(self.materialize_shim_import(
1746 shims,
1747 &ShimKind::ErrorContextDebugMessage {
1748 for_module,
1749 encoding: *encoding,
1750 },
1751 )),
1752 Import::ErrorContextDrop => {
1753 let index = self.component.error_context_drop();
1754 Ok((ExportKind::Func, index))
1755 }
1756 Import::WorldFunc(key, name, abi) => {
1757 self.materialize_wit_import(shims, for_module, None, name, key, *abi)
1758 }
1759 Import::InterfaceFunc(key, _, name, abi) => self.materialize_wit_import(
1760 shims,
1761 for_module,
1762 Some(resolve.name_world_key(key)),
1763 name,
1764 key,
1765 *abi,
1766 ),
1767
1768 Import::WaitableSetNew => {
1769 let index = self.component.waitable_set_new();
1770 Ok((ExportKind::Func, index))
1771 }
1772 Import::WaitableSetDrop => {
1773 let index = self.component.waitable_set_drop();
1774 Ok((ExportKind::Func, index))
1775 }
1776 Import::WaitableJoin => {
1777 let index = self.component.waitable_join();
1778 Ok((ExportKind::Func, index))
1779 }
1780 }
1781 }
1782
1783 fn materialize_shim_import(&mut self, shims: &Shims<'_>, kind: &ShimKind) -> (ExportKind, u32) {
1786 let index = self.core_alias_export(
1787 self.shim_instance_index
1788 .expect("shim should be instantiated"),
1789 &shims.shims[kind].name,
1790 ExportKind::Func,
1791 );
1792 (ExportKind::Func, index)
1793 }
1794
1795 fn materialize_payload_import(
1798 &mut self,
1799 shims: &Shims<'_>,
1800 for_module: CustomModule<'_>,
1801 info: &PayloadInfo,
1802 kind: PayloadFuncKind,
1803 ) -> (ExportKind, u32) {
1804 self.materialize_shim_import(
1805 shims,
1806 &ShimKind::PayloadFunc {
1807 for_module,
1808 info,
1809 kind,
1810 },
1811 )
1812 }
1813
1814 fn materialize_wit_import(
1817 &mut self,
1818 shims: &Shims<'_>,
1819 for_module: CustomModule<'_>,
1820 interface_key: Option<String>,
1821 name: &String,
1822 key: &WorldKey,
1823 abi: AbiVariant,
1824 ) -> Result<(ExportKind, u32)> {
1825 let resolve = &self.info.encoder.metadata.resolve;
1826 let import = &self.info.import_map[&interface_key];
1827 let (index, _, lowering) = import.lowerings.get_full(&(name.clone(), abi)).unwrap();
1828 let metadata = self.info.module_metadata_for(for_module);
1829
1830 let index = match lowering {
1831 Lowering::Direct => {
1834 let func_index = match &import.interface {
1835 Some(interface) => {
1836 let instance_index = self.imported_instances[interface];
1837 self.component
1838 .alias_export(instance_index, name, ComponentExportKind::Func)
1839 }
1840 None => self.imported_funcs[name],
1841 };
1842 self.component.lower_func(
1843 func_index,
1844 if let AbiVariant::GuestImportAsync = abi {
1845 vec![CanonicalOption::Async]
1846 } else {
1847 Vec::new()
1848 },
1849 )
1850 }
1851
1852 Lowering::Indirect { .. } => {
1856 let encoding = metadata.import_encodings.get(resolve, key, name).unwrap();
1857 return Ok(self.materialize_shim_import(
1858 shims,
1859 &ShimKind::IndirectLowering {
1860 interface: interface_key,
1861 index,
1862 realloc: for_module,
1863 encoding,
1864 },
1865 ));
1866 }
1867
1868 Lowering::ResourceDrop(id) => {
1871 let resource_idx = self.lookup_resource_index(*id);
1872 self.component.resource_drop(resource_idx)
1873 }
1874 };
1875 Ok((ExportKind::Func, index))
1876 }
1877
1878 fn encode_initialize_with_start(&mut self) -> Result<()> {
1897 let initialize = match self.info.info.exports.initialize() {
1898 Some(name) => name,
1899 None => return Ok(()),
1902 };
1903 let initialize_index =
1904 self.core_alias_export(self.instance_index.unwrap(), initialize, ExportKind::Func);
1905 let mut shim = Module::default();
1906 let mut section = TypeSection::new();
1907 section.ty().function([], []);
1908 shim.section(§ion);
1909 let mut section = ImportSection::new();
1910 section.import("", "", EntityType::Function(0));
1911 shim.section(§ion);
1912 shim.section(&StartSection { function_index: 0 });
1913
1914 let shim_module_index = self.component.core_module(&shim);
1919 let shim_args_instance_index =
1920 self.component
1921 .core_instantiate_exports([("", ExportKind::Func, initialize_index)]);
1922 self.component.core_instantiate(
1923 shim_module_index,
1924 [("", ModuleArg::Instance(shim_args_instance_index))],
1925 );
1926 Ok(())
1927 }
1928
1929 fn instance_for(&self, module: CustomModule) -> u32 {
1932 match module {
1933 CustomModule::Main => self.instance_index.expect("instantiated by now"),
1934 CustomModule::Adapter(name) => self.adapter_instances[name],
1935 }
1936 }
1937
1938 fn module_for(&self, module: CustomModule) -> u32 {
1941 match module {
1942 CustomModule::Main => self.module_index.unwrap(),
1943 CustomModule::Adapter(name) => self.adapter_modules[name],
1944 }
1945 }
1946
1947 fn core_alias_export(&mut self, instance: u32, name: &str, kind: ExportKind) -> u32 {
1950 *self
1951 .aliased_core_items
1952 .entry((instance, name.to_string()))
1953 .or_insert_with(|| self.component.core_alias_export(instance, name, kind))
1954 }
1955}
1956
1957#[derive(Default)]
1975struct Shims<'a> {
1976 shims: IndexMap<ShimKind<'a>, Shim<'a>>,
1978}
1979
1980struct Shim<'a> {
1981 options: RequiredOptions,
1984
1985 name: String,
1989
1990 debug_name: String,
1993
1994 kind: ShimKind<'a>,
1996
1997 sig: WasmSignature,
1999}
2000
2001#[derive(Debug, Clone, Hash, Eq, PartialEq)]
2004enum PayloadFuncKind {
2005 FutureWrite,
2006 FutureRead,
2007 StreamWrite,
2008 StreamRead,
2009}
2010
2011#[derive(Debug, Clone, Hash, Eq, PartialEq)]
2012enum ShimKind<'a> {
2013 IndirectLowering {
2017 interface: Option<String>,
2019 index: usize,
2021 realloc: CustomModule<'a>,
2023 encoding: StringEncoding,
2025 },
2026 Adapter {
2029 adapter: &'a str,
2031 func: &'a str,
2033 },
2034 ResourceDtor {
2037 module: CustomModule<'a>,
2039 export: &'a str,
2041 },
2042 PayloadFunc {
2046 for_module: CustomModule<'a>,
2049 info: &'a PayloadInfo,
2054 kind: PayloadFuncKind,
2056 },
2057 WaitableSetWait { async_: bool },
2061 WaitableSetPoll { async_: bool },
2065 TaskReturn {
2067 interface: Option<InterfaceId>,
2070 func: &'a str,
2073 result: Option<Type>,
2075 for_module: CustomModule<'a>,
2077 encoding: StringEncoding,
2079 },
2080 ErrorContextNew {
2084 encoding: StringEncoding,
2086 },
2087 ErrorContextDebugMessage {
2091 for_module: CustomModule<'a>,
2093 encoding: StringEncoding,
2095 },
2096}
2097
2098#[derive(Debug, Copy, Clone, Hash, Eq, PartialEq)]
2108enum CustomModule<'a> {
2109 Main,
2112 Adapter(&'a str),
2115}
2116
2117impl<'a> Shims<'a> {
2118 fn append_indirect(
2123 &mut self,
2124 world: &'a ComponentWorld<'a>,
2125 for_module: CustomModule<'a>,
2126 ) -> Result<()> {
2127 let module_imports = world.imports_for(for_module);
2128 let module_exports = world.exports_for(for_module);
2129 let resolve = &world.encoder.metadata.resolve;
2130
2131 for (module, field, import) in module_imports.imports() {
2132 match import {
2133 Import::ImportedResourceDrop(..)
2136 | Import::MainModuleMemory
2137 | Import::MainModuleExport { .. }
2138 | Import::Item(_)
2139 | Import::ExportedResourceDrop(..)
2140 | Import::ExportedResourceRep(..)
2141 | Import::ExportedResourceNew(..)
2142 | Import::ErrorContextDrop
2143 | Import::BackpressureSet
2144 | Import::Yield { .. }
2145 | Import::SubtaskDrop
2146 | Import::FutureNew(..)
2147 | Import::StreamNew(..)
2148 | Import::FutureCancelRead { .. }
2149 | Import::FutureCancelWrite { .. }
2150 | Import::FutureCloseWritable { .. }
2151 | Import::FutureCloseReadable { .. }
2152 | Import::StreamCancelRead { .. }
2153 | Import::StreamCancelWrite { .. }
2154 | Import::StreamCloseWritable { .. }
2155 | Import::StreamCloseReadable { .. }
2156 | Import::WaitableSetNew
2157 | Import::WaitableSetDrop
2158 | Import::WaitableJoin => {}
2159
2160 Import::ExportedTaskReturn(key, interface, func, ty) => {
2164 let (options, sig) = task_return_options_and_type(resolve, *ty);
2165 if options.is_empty() {
2166 continue;
2167 }
2168 let name = self.shims.len().to_string();
2169 let encoding = world
2170 .module_metadata_for(for_module)
2171 .export_encodings
2172 .get(resolve, key, func)
2173 .ok_or_else(|| {
2174 anyhow::anyhow!(
2175 "missing component metadata for export of \
2176 `{module}::{field}`"
2177 )
2178 })?;
2179 self.push(Shim {
2180 name,
2181 debug_name: format!("task-return-{func}"),
2182 options,
2183 kind: ShimKind::TaskReturn {
2184 interface: *interface,
2185 func,
2186 result: *ty,
2187 for_module,
2188 encoding,
2189 },
2190 sig,
2191 });
2192 }
2193
2194 Import::FutureWrite { async_, info } => {
2195 self.append_indirect_payload_push(
2196 resolve,
2197 for_module,
2198 module,
2199 *async_,
2200 info,
2201 PayloadFuncKind::FutureWrite,
2202 vec![WasmType::I32; 2],
2203 vec![WasmType::I32],
2204 );
2205 }
2206 Import::FutureRead { async_, info } => {
2207 self.append_indirect_payload_push(
2208 resolve,
2209 for_module,
2210 module,
2211 *async_,
2212 info,
2213 PayloadFuncKind::FutureRead,
2214 vec![WasmType::I32; 2],
2215 vec![WasmType::I32],
2216 );
2217 }
2218 Import::StreamWrite { async_, info } => {
2219 self.append_indirect_payload_push(
2220 resolve,
2221 for_module,
2222 module,
2223 *async_,
2224 info,
2225 PayloadFuncKind::StreamWrite,
2226 vec![WasmType::I32; 3],
2227 vec![WasmType::I32],
2228 );
2229 }
2230 Import::StreamRead { async_, info } => {
2231 self.append_indirect_payload_push(
2232 resolve,
2233 for_module,
2234 module,
2235 *async_,
2236 info,
2237 PayloadFuncKind::StreamRead,
2238 vec![WasmType::I32; 3],
2239 vec![WasmType::I32],
2240 );
2241 }
2242
2243 Import::WaitableSetWait { async_ } => {
2244 let name = self.shims.len().to_string();
2245 self.push(Shim {
2246 name,
2247 debug_name: "waitable-set.wait".to_string(),
2248 options: RequiredOptions::empty(),
2249 kind: ShimKind::WaitableSetWait { async_: *async_ },
2250 sig: WasmSignature {
2251 params: vec![WasmType::I32; 2],
2252 results: vec![WasmType::I32],
2253 indirect_params: false,
2254 retptr: false,
2255 },
2256 });
2257 }
2258
2259 Import::WaitableSetPoll { async_ } => {
2260 let name = self.shims.len().to_string();
2261 self.push(Shim {
2262 name,
2263 debug_name: "waitable-set.poll".to_string(),
2264 options: RequiredOptions::empty(),
2265 kind: ShimKind::WaitableSetPoll { async_: *async_ },
2266 sig: WasmSignature {
2267 params: vec![WasmType::I32; 2],
2268 results: vec![WasmType::I32],
2269 indirect_params: false,
2270 retptr: false,
2271 },
2272 });
2273 }
2274
2275 Import::ErrorContextNew { encoding } => {
2276 let name = self.shims.len().to_string();
2277 self.push(Shim {
2278 name,
2279 debug_name: "error-new".to_string(),
2280 options: RequiredOptions::MEMORY | RequiredOptions::STRING_ENCODING,
2281 kind: ShimKind::ErrorContextNew {
2282 encoding: *encoding,
2283 },
2284 sig: WasmSignature {
2285 params: vec![WasmType::I32; 2],
2286 results: vec![WasmType::I32],
2287 indirect_params: false,
2288 retptr: false,
2289 },
2290 });
2291 }
2292
2293 Import::ErrorContextDebugMessage { encoding } => {
2294 let name = self.shims.len().to_string();
2295 self.push(Shim {
2296 name,
2297 debug_name: "error-debug-message".to_string(),
2298 options: RequiredOptions::MEMORY
2299 | RequiredOptions::STRING_ENCODING
2300 | RequiredOptions::REALLOC,
2301 kind: ShimKind::ErrorContextDebugMessage {
2302 for_module,
2303 encoding: *encoding,
2304 },
2305 sig: WasmSignature {
2306 params: vec![WasmType::I32; 2],
2307 results: vec![],
2308 indirect_params: false,
2309 retptr: false,
2310 },
2311 });
2312 }
2313
2314 Import::AdapterExport(ty) => {
2317 let name = self.shims.len().to_string();
2318 log::debug!("shim {name} is adapter `{module}::{field}`");
2319 self.push(Shim {
2320 name,
2321 debug_name: format!("adapt-{module}-{field}"),
2322 options: RequiredOptions::MEMORY,
2326 kind: ShimKind::Adapter {
2327 adapter: module,
2328 func: field,
2329 },
2330 sig: WasmSignature {
2331 params: ty.params().iter().map(to_wasm_type).collect(),
2332 results: ty.results().iter().map(to_wasm_type).collect(),
2333 indirect_params: false,
2334 retptr: false,
2335 },
2336 });
2337
2338 fn to_wasm_type(ty: &wasmparser::ValType) -> WasmType {
2339 match ty {
2340 wasmparser::ValType::I32 => WasmType::I32,
2341 wasmparser::ValType::I64 => WasmType::I64,
2342 wasmparser::ValType::F32 => WasmType::F32,
2343 wasmparser::ValType::F64 => WasmType::F64,
2344 _ => unreachable!(),
2345 }
2346 }
2347 }
2348
2349 Import::InterfaceFunc(key, _, name, abi) => {
2353 self.append_indirect_wit_func(
2354 world,
2355 for_module,
2356 module,
2357 field,
2358 key,
2359 name,
2360 Some(resolve.name_world_key(key)),
2361 *abi,
2362 )?;
2363 }
2364 Import::WorldFunc(key, name, abi) => {
2365 self.append_indirect_wit_func(
2366 world, for_module, module, field, key, name, None, *abi,
2367 )?;
2368 }
2369 }
2370 }
2371
2372 for (export_name, export) in module_exports.iter() {
2378 let id = match export {
2379 Export::ResourceDtor(id) => id,
2380 _ => continue,
2381 };
2382 let resource = resolve.types[*id].name.as_ref().unwrap();
2383 let name = self.shims.len().to_string();
2384 self.push(Shim {
2385 name,
2386 debug_name: format!("dtor-{resource}"),
2387 options: RequiredOptions::empty(),
2388 kind: ShimKind::ResourceDtor {
2389 module: for_module,
2390 export: export_name,
2391 },
2392 sig: WasmSignature {
2393 params: vec![WasmType::I32],
2394 results: Vec::new(),
2395 indirect_params: false,
2396 retptr: false,
2397 },
2398 });
2399 }
2400
2401 Ok(())
2402 }
2403
2404 fn append_indirect_payload_push(
2407 &mut self,
2408 resolve: &Resolve,
2409 for_module: CustomModule<'a>,
2410 module: &str,
2411 async_: bool,
2412 info: &'a PayloadInfo,
2413 kind: PayloadFuncKind,
2414 params: Vec<WasmType>,
2415 results: Vec<WasmType>,
2416 ) {
2417 let debug_name = format!("{module}-{}", info.name);
2418 let name = self.shims.len().to_string();
2419
2420 let payload = info.payload(resolve);
2421 let (wit_param, wit_result) = match kind {
2422 PayloadFuncKind::StreamRead | PayloadFuncKind::FutureRead => (None, payload),
2423 PayloadFuncKind::StreamWrite | PayloadFuncKind::FutureWrite => (payload, None),
2424 };
2425 self.push(Shim {
2426 name,
2427 debug_name,
2428 options: RequiredOptions::MEMORY
2429 | RequiredOptions::for_import(
2430 resolve,
2431 &Function {
2432 name: String::new(),
2433 kind: FunctionKind::Freestanding,
2434 params: match wit_param {
2435 Some(ty) => vec![("a".to_string(), ty)],
2436 None => Vec::new(),
2437 },
2438 result: wit_result,
2439 docs: Default::default(),
2440 stability: Stability::Unknown,
2441 },
2442 if async_ {
2443 AbiVariant::GuestImportAsync
2444 } else {
2445 AbiVariant::GuestImport
2446 },
2447 ),
2448 kind: ShimKind::PayloadFunc {
2449 for_module,
2450 info,
2451 kind,
2452 },
2453 sig: WasmSignature {
2454 params,
2455 results,
2456 indirect_params: false,
2457 retptr: false,
2458 },
2459 });
2460 }
2461
2462 fn append_indirect_wit_func(
2465 &mut self,
2466 world: &'a ComponentWorld<'a>,
2467 for_module: CustomModule<'a>,
2468 module: &str,
2469 field: &str,
2470 key: &WorldKey,
2471 name: &String,
2472 interface_key: Option<String>,
2473 abi: AbiVariant,
2474 ) -> Result<()> {
2475 let resolve = &world.encoder.metadata.resolve;
2476 let metadata = world.module_metadata_for(for_module);
2477 let interface = &world.import_map[&interface_key];
2478 let (index, _, lowering) = interface.lowerings.get_full(&(name.clone(), abi)).unwrap();
2479 let shim_name = self.shims.len().to_string();
2480 match lowering {
2481 Lowering::Direct | Lowering::ResourceDrop(_) => {}
2482
2483 Lowering::Indirect { sig, options } => {
2484 log::debug!(
2485 "shim {shim_name} is import `{module}::{field}` lowering {index} `{name}`",
2486 );
2487 let encoding = metadata
2488 .import_encodings
2489 .get(resolve, key, name)
2490 .ok_or_else(|| {
2491 anyhow::anyhow!(
2492 "missing component metadata for import of \
2493 `{module}::{field}`"
2494 )
2495 })?;
2496 self.push(Shim {
2497 name: shim_name,
2498 debug_name: format!("indirect-{module}-{field}"),
2499 options: *options,
2500 kind: ShimKind::IndirectLowering {
2501 interface: interface_key,
2502 index,
2503 realloc: for_module,
2504 encoding,
2505 },
2506 sig: sig.clone(),
2507 });
2508 }
2509 }
2510
2511 Ok(())
2512 }
2513
2514 fn push(&mut self, shim: Shim<'a>) {
2515 if !self.shims.contains_key(&shim.kind) {
2519 self.shims.insert(shim.kind.clone(), shim);
2520 }
2521 }
2522}
2523
2524fn task_return_options_and_type(
2525 resolve: &Resolve,
2526 ty: Option<Type>,
2527) -> (RequiredOptions, WasmSignature) {
2528 let func_tmp = Function {
2529 name: String::new(),
2530 kind: FunctionKind::Freestanding,
2531 params: match ty {
2532 Some(ty) => vec![("a".to_string(), ty)],
2533 None => Vec::new(),
2534 },
2535 result: None,
2536 docs: Default::default(),
2537 stability: Stability::Unknown,
2538 };
2539 let abi = AbiVariant::GuestImport;
2540 let options = RequiredOptions::for_import(resolve, &func_tmp, abi);
2541 let sig = resolve.wasm_signature(abi, &func_tmp);
2542 (options, sig)
2543}
2544
2545#[derive(Clone, Debug)]
2547pub struct Item {
2548 pub alias: String,
2549 pub kind: ExportKind,
2550 pub which: MainOrAdapter,
2551 pub name: String,
2552}
2553
2554#[derive(Debug, PartialEq, Clone)]
2556pub enum MainOrAdapter {
2557 Main,
2558 Adapter(String),
2559}
2560
2561impl MainOrAdapter {
2562 fn to_custom_module(&self) -> CustomModule<'_> {
2563 match self {
2564 MainOrAdapter::Main => CustomModule::Main,
2565 MainOrAdapter::Adapter(s) => CustomModule::Adapter(s),
2566 }
2567 }
2568}
2569
2570#[derive(Clone)]
2572pub enum Instance {
2573 MainOrAdapter(MainOrAdapter),
2575
2576 Items(Vec<Item>),
2578}
2579
2580#[derive(Clone)]
2583pub struct LibraryInfo {
2584 pub instantiate_after_shims: bool,
2586
2587 pub arguments: Vec<(String, Instance)>,
2589}
2590
2591pub(super) struct Adapter {
2593 wasm: Vec<u8>,
2595
2596 metadata: ModuleMetadata,
2598
2599 required_exports: IndexSet<WorldKey>,
2602
2603 library_info: Option<LibraryInfo>,
2608}
2609
2610#[derive(Default)]
2612pub struct ComponentEncoder {
2613 module: Vec<u8>,
2614 pub(super) metadata: Bindgen,
2615 validate: bool,
2616 pub(super) main_module_exports: IndexSet<WorldKey>,
2617 pub(super) adapters: IndexMap<String, Adapter>,
2618 import_name_map: HashMap<String, String>,
2619 realloc_via_memory_grow: bool,
2620 merge_imports_based_on_semver: Option<bool>,
2621 pub(super) reject_legacy_names: bool,
2622}
2623
2624impl ComponentEncoder {
2625 pub fn module(mut self, module: &[u8]) -> Result<Self> {
2631 let (wasm, metadata) = self.decode(module)?;
2632 let exports = self
2633 .merge_metadata(metadata)
2634 .context("failed merge WIT metadata for module with previous metadata")?;
2635 self.main_module_exports.extend(exports);
2636 self.module = if let Some(producers) = &self.metadata.producers {
2637 producers.add_to_wasm(&wasm)?
2638 } else {
2639 wasm.to_vec()
2640 };
2641 Ok(self)
2642 }
2643
2644 fn decode<'a>(&self, wasm: &'a [u8]) -> Result<(Cow<'a, [u8]>, Bindgen)> {
2645 let (bytes, metadata) = metadata::decode(wasm)?;
2646 match bytes {
2647 Some(wasm) => Ok((Cow::Owned(wasm), metadata)),
2648 None => Ok((Cow::Borrowed(wasm), metadata)),
2649 }
2650 }
2651
2652 fn merge_metadata(&mut self, metadata: Bindgen) -> Result<IndexSet<WorldKey>> {
2653 self.metadata.merge(metadata)
2654 }
2655
2656 pub fn validate(mut self, validate: bool) -> Self {
2658 self.validate = validate;
2659 self
2660 }
2661
2662 pub fn merge_imports_based_on_semver(mut self, merge: bool) -> Self {
2670 self.merge_imports_based_on_semver = Some(merge);
2671 self
2672 }
2673
2674 pub fn reject_legacy_names(mut self, reject: bool) -> Self {
2683 self.reject_legacy_names = reject;
2684 self
2685 }
2686
2687 pub fn adapter(self, name: &str, bytes: &[u8]) -> Result<Self> {
2705 self.library_or_adapter(name, bytes, None)
2706 }
2707
2708 pub fn library(self, name: &str, bytes: &[u8], library_info: LibraryInfo) -> Result<Self> {
2721 self.library_or_adapter(name, bytes, Some(library_info))
2722 }
2723
2724 fn library_or_adapter(
2725 mut self,
2726 name: &str,
2727 bytes: &[u8],
2728 library_info: Option<LibraryInfo>,
2729 ) -> Result<Self> {
2730 let (wasm, mut metadata) = self.decode(bytes)?;
2731 let adapter_metadata = mem::take(&mut metadata.metadata);
2739 let exports = self.merge_metadata(metadata).with_context(|| {
2740 format!("failed to merge WIT packages of adapter `{name}` into main packages")
2741 })?;
2742 if let Some(library_info) = &library_info {
2743 for (_, instance) in &library_info.arguments {
2745 let resolve = |which: &_| match which {
2746 MainOrAdapter::Main => Ok(()),
2747 MainOrAdapter::Adapter(name) => {
2748 if self.adapters.contains_key(name.as_str()) {
2749 Ok(())
2750 } else {
2751 Err(anyhow!("instance refers to unknown adapter `{name}`"))
2752 }
2753 }
2754 };
2755
2756 match instance {
2757 Instance::MainOrAdapter(which) => resolve(which)?,
2758 Instance::Items(items) => {
2759 for item in items {
2760 resolve(&item.which)?;
2761 }
2762 }
2763 }
2764 }
2765 }
2766 self.adapters.insert(
2767 name.to_string(),
2768 Adapter {
2769 wasm: wasm.to_vec(),
2770 metadata: adapter_metadata,
2771 required_exports: exports,
2772 library_info,
2773 },
2774 );
2775 Ok(self)
2776 }
2777
2778 pub fn realloc_via_memory_grow(mut self, value: bool) -> Self {
2783 self.realloc_via_memory_grow = value;
2784 self
2785 }
2786
2787 pub fn import_name_map(mut self, map: HashMap<String, String>) -> Self {
2798 self.import_name_map = map;
2799 self
2800 }
2801
2802 pub fn encode(&mut self) -> Result<Vec<u8>> {
2804 if self.module.is_empty() {
2805 bail!("a module is required when encoding a component");
2806 }
2807
2808 if self.merge_imports_based_on_semver.unwrap_or(true) {
2809 self.metadata
2810 .resolve
2811 .merge_world_imports_based_on_semver(self.metadata.world)?;
2812 }
2813
2814 let world = ComponentWorld::new(self).context("failed to decode world from module")?;
2815 let mut state = EncodingState {
2816 component: ComponentBuilder::default(),
2817 module_index: None,
2818 instance_index: None,
2819 memory_index: None,
2820 shim_instance_index: None,
2821 fixups_module_index: None,
2822 adapter_modules: IndexMap::new(),
2823 adapter_instances: IndexMap::new(),
2824 import_type_map: HashMap::new(),
2825 import_func_type_map: HashMap::new(),
2826 export_type_map: HashMap::new(),
2827 export_func_type_map: HashMap::new(),
2828 imported_instances: Default::default(),
2829 imported_funcs: Default::default(),
2830 exported_instances: Default::default(),
2831 aliased_core_items: Default::default(),
2832 info: &world,
2833 };
2834 state.encode_imports(&self.import_name_map)?;
2835 state.encode_core_modules();
2836 state.encode_core_instantiation()?;
2837 state.encode_exports(CustomModule::Main)?;
2838 for name in self.adapters.keys() {
2839 state.encode_exports(CustomModule::Adapter(name))?;
2840 }
2841 state
2842 .component
2843 .raw_custom_section(&crate::base_producers().raw_custom_section());
2844 let bytes = state.component.finish();
2845
2846 if self.validate {
2847 Validator::new_with_features(WasmFeatures::all())
2848 .validate_all(&bytes)
2849 .context("failed to validate component output")?;
2850 }
2851
2852 Ok(bytes)
2853 }
2854}
2855
2856impl ComponentWorld<'_> {
2857 fn imports_for(&self, module: CustomModule) -> &ImportMap {
2859 match module {
2860 CustomModule::Main => &self.info.imports,
2861 CustomModule::Adapter(name) => &self.adapters[name].info.imports,
2862 }
2863 }
2864
2865 fn exports_for(&self, module: CustomModule) -> &ExportMap {
2867 match module {
2868 CustomModule::Main => &self.info.exports,
2869 CustomModule::Adapter(name) => &self.adapters[name].info.exports,
2870 }
2871 }
2872
2873 fn module_metadata_for(&self, module: CustomModule) -> &ModuleMetadata {
2875 match module {
2876 CustomModule::Main => &self.encoder.metadata.metadata,
2877 CustomModule::Adapter(name) => &self.encoder.adapters[name].metadata,
2878 }
2879 }
2880}
2881
2882#[cfg(all(test, feature = "dummy-module"))]
2883mod test {
2884 use super::*;
2885 use crate::{dummy_module, embed_component_metadata};
2886 use wit_parser::ManglingAndAbi;
2887
2888 #[test]
2889 fn it_renames_imports() {
2890 let mut resolve = Resolve::new();
2891 let pkg = resolve
2892 .push_str(
2893 "test.wit",
2894 r#"
2895package test:wit;
2896
2897interface i {
2898 f: func();
2899}
2900
2901world test {
2902 import i;
2903 import foo: interface {
2904 f: func();
2905 }
2906}
2907"#,
2908 )
2909 .unwrap();
2910 let world = resolve.select_world(pkg, None).unwrap();
2911
2912 let mut module = dummy_module(&resolve, world, ManglingAndAbi::Standard32);
2913
2914 embed_component_metadata(&mut module, &resolve, world, StringEncoding::UTF8).unwrap();
2915
2916 let encoded = ComponentEncoder::default()
2917 .import_name_map(HashMap::from([
2918 (
2919 "foo".to_string(),
2920 "unlocked-dep=<foo:bar/foo@{>=1.0.0 <1.1.0}>".to_string(),
2921 ),
2922 (
2923 "test:wit/i".to_string(),
2924 "locked-dep=<foo:bar/i@1.2.3>".to_string(),
2925 ),
2926 ]))
2927 .module(&module)
2928 .unwrap()
2929 .validate(true)
2930 .encode()
2931 .unwrap();
2932
2933 let wat = wasmprinter::print_bytes(encoded).unwrap();
2934 assert!(wat.contains("unlocked-dep=<foo:bar/foo@{>=1.0.0 <1.1.0}>"));
2935 assert!(wat.contains("locked-dep=<foo:bar/i@1.2.3>"));
2936 }
2937}