1use anyhow::bail;
2use heck::{ToPascalCase, ToShoutySnakeCase, ToSnakeCase, ToUpperCamelCase};
3use std::{
4 collections::{HashMap, HashSet},
5 fmt::{self, Display, Write as FmtWrite},
6 io::{Read, Write},
7 path::PathBuf,
8 process::{Command, Stdio},
9 str::FromStr,
10};
11use symbol_name::{make_external_component, make_external_symbol};
12use wit_bindgen_c::to_c_ident;
13use wit_bindgen_core::{
14 Files, InterfaceGenerator, Source, Types, WorldGenerator,
15 abi::{self, AbiVariant, Bindgen, Bitcast, LiftLower, WasmSignature, WasmType},
16 name_package_module, uwrite, uwriteln,
17 wit_parser::{
18 Alignment, ArchitectureSize, Docs, Function, FunctionKind, Handle, Int, InterfaceId, Param,
19 Resolve, SizeAlign, Stability, Type, TypeDef, TypeDefKind, TypeId, TypeOwner, WorldId,
20 WorldKey,
21 },
22};
23
24mod symbol_name;
26
27pub const RESOURCE_IMPORT_BASE_CLASS_NAME: &str = "ResourceImportBase";
28pub const RESOURCE_EXPORT_BASE_CLASS_NAME: &str = "ResourceExportBase";
29pub const RESOURCE_TABLE_NAME: &str = "ResourceTable";
30pub const OWNED_CLASS_NAME: &str = "Owned";
31pub const POINTER_SIZE_EXPRESSION: &str = "sizeof(void*)";
32
33type CppType = String;
34
35#[derive(Clone, Copy, Debug)]
36enum Flavor {
37 Argument(AbiVariant),
38 Result(AbiVariant),
39 InStruct,
40 BorrowedArgument,
41}
42
43#[derive(Default)]
44struct HighlevelSignature {
45 const_member: bool,
48 static_member: bool,
49 result: CppType,
50 arguments: Vec<(String, CppType)>,
51 name: String,
52 namespace: Vec<String>,
53 implicit_self: bool,
54 post_return: bool,
55}
56
57#[derive(Default)]
60struct Includes {
61 needs_vector: bool,
62 needs_expected: bool,
63 needs_string: bool,
64 needs_string_view: bool,
65 needs_optional: bool,
66 needs_cstring: bool,
67 needs_imported_resources: bool,
68 needs_exported_resources: bool,
69 needs_variant: bool,
70 needs_tuple: bool,
71 needs_assert: bool,
72 needs_bit: bool,
73 needs_span: bool,
74 needs_wit: bool,
76 needs_memory: bool,
77 needs_array: bool,
78}
79
80#[derive(Default)]
81struct SourceWithState {
82 src: Source,
83 namespace: Vec<String>,
84}
85
86#[derive(Eq, Hash, PartialEq, Clone, Copy, Debug)]
87enum Direction {
88 Import,
89 Export,
90}
91
92#[derive(Default)]
93struct Cpp {
94 opts: Opts,
95 c_src: SourceWithState,
96 h_src: SourceWithState,
97 c_src_head: Source,
98 extern_c_decls: Source,
99 dependencies: Includes,
100 includes: Vec<String>,
101 world: String,
102 world_id: Option<WorldId>,
103 imported_interfaces: HashSet<InterfaceId>,
104 user_class_files: HashMap<String, String>,
105 defined_types: HashSet<(Vec<String>, String)>,
106 types: Types,
107
108 interface_prefixes: HashMap<(Direction, WorldKey), String>,
110 import_prefix: Option<String>,
111}
112
113#[cfg(feature = "clap")]
114fn parse_with(s: &str) -> Result<(String, String), String> {
115 let (k, v) = s.split_once('=').ok_or_else(|| {
116 format!("expected string of form `<key>=<value>[,<key>=<value>...]`; got `{s}`")
117 })?;
118 Ok((k.to_string(), v.to_string()))
119}
120
121#[derive(Default, Debug, Clone)]
122#[cfg_attr(feature = "clap", derive(clap::Args))]
123pub struct Opts {
124 #[cfg_attr(feature = "clap", arg(long, default_value_t = bool::default()))]
126 pub format: bool,
127
128 #[cfg_attr(feature = "clap", arg(long, default_value_t = bool::default()))]
131 pub split_interfaces: bool,
132
133 #[cfg_attr(feature = "clap", arg(long))]
137 pub export_prefix: Option<String>,
138
139 #[cfg_attr(feature = "clap", arg(long))]
143 pub internal_prefix: Option<String>,
144
145 #[cfg_attr(
147 feature = "clap",
148 arg(
149 long,
150 default_value_t = APIStyle::default(),
151 value_name = "STYLE",
152 ),
153 )]
154 pub api_style: APIStyle,
155
156 #[cfg_attr(feature = "clap", arg(long, default_value_t = Ownership::Owning))]
172 pub ownership: Ownership,
173
174 #[cfg_attr(feature = "clap", arg(skip))]
176 out_dir: Option<PathBuf>,
177
178 #[cfg_attr(feature = "clap", arg(long, value_parser = parse_with, value_delimiter = ','))]
184 pub with: Vec<(String, String)>,
185}
186
187#[derive(Default, Debug, Copy, Clone, PartialEq, Eq, Hash)]
189pub enum APIStyle {
190 #[default]
192 Asymmetric,
193 Symmetric,
195}
196
197impl Display for APIStyle {
198 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
199 match self {
200 APIStyle::Asymmetric => write!(f, "asymmetric"),
201 APIStyle::Symmetric => write!(f, "symmetric"),
202 }
203 }
204}
205
206impl FromStr for APIStyle {
207 type Err = anyhow::Error;
208
209 fn from_str(s: &str) -> Result<Self, Self::Err> {
210 match s {
211 "asymmetric" => Ok(APIStyle::Asymmetric),
212 "symmetric" => Ok(APIStyle::Symmetric),
213 _ => bail!("unrecognized API style: `{s}`; expected `asymmetric` or `symmetric`"),
214 }
215 }
216}
217
218#[derive(Default, Debug, Clone, Copy)]
219pub enum Ownership {
220 #[default]
223 Owning,
224
225 CoarseBorrowing,
229
230 FineBorrowing,
234}
235
236impl FromStr for Ownership {
237 type Err = String;
238
239 fn from_str(s: &str) -> Result<Self, Self::Err> {
240 match s {
241 "owning" => Ok(Self::Owning),
242 "coarse-borrowing" => Ok(Self::CoarseBorrowing),
243 "fine-borrowing" => Ok(Self::FineBorrowing),
244 _ => Err(format!(
245 "unrecognized ownership: `{s}`; \
246 expected `owning`, `coarse-borrowing`, or `fine-borrowing`"
247 )),
248 }
249 }
250}
251
252impl fmt::Display for Ownership {
253 fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
254 f.write_str(match self {
255 Ownership::Owning => "owning",
256 Ownership::CoarseBorrowing => "coarse-borrowing",
257 Ownership::FineBorrowing => "fine-borrowing",
258 })
259 }
260}
261
262impl Opts {
263 pub fn build(mut self, out_dir: Option<&PathBuf>) -> Box<dyn WorldGenerator> {
264 let mut r = Cpp::new();
265 self.out_dir = out_dir.cloned();
266 r.opts = self;
267 Box::new(r)
268 }
269
270 fn is_only_handle(&self, variant: AbiVariant) -> bool {
271 !matches!(variant, AbiVariant::GuestExport)
272 }
273
274 fn ptr_type(&self) -> &'static str {
275 "uint8_t*"
276 }
277}
278
279impl Cpp {
280 fn new() -> Cpp {
281 Cpp::default()
282 }
283
284 pub fn is_first_definition(&mut self, ns: &Vec<String>, name: &str) -> bool {
285 let owned = (ns.to_owned(), name.to_owned());
286 if !self.defined_types.contains(&owned) {
287 self.defined_types.insert(owned);
288 true
289 } else {
290 false
291 }
292 }
293
294 fn include(&mut self, s: &str) {
295 self.includes.push(s.to_string());
296 }
297
298 fn is_fallible_constructor(&self, resolve: &Resolve, func: &Function) -> bool {
304 matches!(&func.kind, FunctionKind::Constructor(_))
305 && func.result.as_ref().is_some_and(|ty| {
306 if let Type::Id(id) = ty {
307 matches!(&resolve.types[*id].kind, TypeDefKind::Result(_))
308 } else {
309 false
310 }
311 })
312 }
313
314 fn interface<'a>(
315 &'a mut self,
316 resolve: &'a Resolve,
317 name: Option<&'a WorldKey>,
318 in_guest_import: bool,
319 wasm_import_module: Option<String>,
320 ) -> CppInterfaceGenerator<'a> {
321 let mut sizes = SizeAlign::default();
322 sizes.fill(resolve);
323
324 CppInterfaceGenerator {
325 _src: Source::default(),
326 r#gen: self,
327 resolve,
328 interface: None,
329 _name: name,
330 sizes,
331 in_guest_import,
332 wasm_import_module,
333 }
334 }
335
336 fn clang_format(code: &mut String) {
337 let mut child = Command::new("clang-format")
338 .stdin(Stdio::piped())
339 .stdout(Stdio::piped())
340 .spawn()
341 .expect("failed to spawn `clang-format`");
342 child
343 .stdin
344 .take()
345 .unwrap()
346 .write_all(code.as_bytes())
347 .unwrap();
348 code.truncate(0);
349 child.stdout.take().unwrap().read_to_string(code).unwrap();
350 let status = child.wait().unwrap();
351 assert!(status.success());
352 }
353
354 fn perform_cast(&mut self, op: &str, cast: &Bitcast) -> String {
355 match cast {
356 Bitcast::I32ToF32 | Bitcast::I64ToF32 => {
357 self.dependencies.needs_bit = true;
358 format!("std::bit_cast<float, int32_t>({op})")
359 }
360 Bitcast::F32ToI32 | Bitcast::F32ToI64 => {
361 self.dependencies.needs_bit = true;
362 format!("std::bit_cast<int32_t, float>({op})")
363 }
364 Bitcast::I64ToF64 => {
365 self.dependencies.needs_bit = true;
366 format!("std::bit_cast<double, int64_t>({op})")
367 }
368 Bitcast::F64ToI64 => {
369 self.dependencies.needs_bit = true;
370 format!("std::bit_cast<int64_t, double>({op})")
371 }
372 Bitcast::I32ToI64 | Bitcast::LToI64 | Bitcast::PToP64 => {
373 format!("(int64_t) {op}")
374 }
375 Bitcast::I64ToI32 | Bitcast::PToI32 | Bitcast::LToI32 => {
376 format!("(int32_t) {op}")
377 }
378 Bitcast::P64ToI64 | Bitcast::None | Bitcast::I64ToP64 => op.to_string(),
379 Bitcast::P64ToP | Bitcast::I32ToP | Bitcast::LToP => {
380 format!("(uint8_t*) {op}")
381 }
382 Bitcast::PToL | Bitcast::I32ToL | Bitcast::I64ToL => {
383 format!("(size_t) {op}")
384 }
385 Bitcast::Sequence(sequence) => {
386 let [first, second] = &**sequence;
387 let inner = self.perform_cast(op, first);
388 self.perform_cast(&inner, second)
389 }
390 }
391 }
392
393 fn finish_includes(&mut self) {
394 self.include("<cstdint>");
395 self.include("<utility>"); if self.dependencies.needs_string {
397 self.include("<string>");
398 }
399 if self.dependencies.needs_string_view {
400 self.include("<string_view>");
401 }
402 if self.dependencies.needs_vector {
403 self.include("<vector>");
404 }
405 if self.dependencies.needs_expected {
406 self.include("<expected>");
407 }
408 if self.dependencies.needs_optional {
409 self.include("<optional>");
410 }
411 if self.dependencies.needs_cstring {
412 self.include("<cstring>");
413 }
414 if self.dependencies.needs_imported_resources {
415 self.include("<cassert>");
416 }
417 if self.dependencies.needs_exported_resources {
418 self.include("<map>");
419 }
420 if self.dependencies.needs_variant {
421 self.include("<variant>");
422 }
423 if self.dependencies.needs_tuple {
424 self.include("<tuple>");
425 }
426 if self.dependencies.needs_wit {
427 self.include("\"wit.h\"");
428 }
429 if self.dependencies.needs_memory {
430 self.include("<memory>");
431 }
432 if self.dependencies.needs_array {
433 self.include("<array>");
434 }
435 if self.dependencies.needs_bit {
436 self.include("<bit>");
437 }
438 }
439
440 fn start_new_file(&mut self, condition: Option<bool>) -> FileContext {
441 if condition == Some(true) || self.opts.split_interfaces {
442 FileContext {
443 includes: std::mem::take(&mut self.includes),
444 src: std::mem::take(&mut self.h_src),
445 dependencies: std::mem::take(&mut self.dependencies),
446 }
447 } else {
448 Default::default()
449 }
450 }
451
452 fn finish_file(&mut self, namespace: &[String], store: FileContext) {
453 if !store.src.src.is_empty() {
454 let mut header = String::default();
455 self.finish_includes();
456 self.h_src.change_namespace(&[]);
457 uwriteln!(header, "#pragma once");
458 for include in self.includes.iter() {
459 uwriteln!(header, "#include {include}");
460 }
461 header.push_str(&self.h_src.src);
462 let mut filename = namespace.join("-");
463 filename.push_str(".h");
464 if self.opts.format {
465 Self::clang_format(&mut header);
466 }
467 self.user_class_files.insert(filename.clone(), header);
468
469 let _ = std::mem::replace(&mut self.includes, store.includes);
470 let _ = std::mem::replace(&mut self.h_src, store.src);
471 let _ = std::mem::replace(&mut self.dependencies, store.dependencies);
472 self.includes.push(String::from("\"") + &filename + "\"");
473 }
474 }
475}
476
477#[derive(Default)]
478struct FileContext {
479 includes: Vec<String>,
480 src: SourceWithState,
481 dependencies: Includes,
482}
483
484impl WorldGenerator for Cpp {
485 fn preprocess(&mut self, resolve: &Resolve, world: WorldId) {
486 let name = &resolve.worlds[world].name;
487 self.world = name.to_string();
488 self.types.analyze(resolve);
489 self.world_id = Some(world);
490 uwriteln!(
491 self.c_src_head,
492 r#"#include "{}_cpp.h"
493 #include <cstdlib> // realloc
494
495 extern "C" void *cabi_realloc(void *ptr, size_t old_size, size_t align, size_t new_size);
496
497 __attribute__((__weak__, __export_name__("cabi_realloc")))
498 void *cabi_realloc(void *ptr, size_t old_size, size_t align, size_t new_size) {{
499 (void) old_size;
500 if (new_size == 0) return (void*) align;
501 void *ret = realloc(ptr, new_size);
502 if (!ret) abort();
503 return ret;
504 }}
505
506 "#,
507 self.world.to_snake_case(),
508 );
509 }
510
511 fn import_interface(
512 &mut self,
513 resolve: &Resolve,
514 name: &WorldKey,
515 id: InterfaceId,
516 _files: &mut Files,
517 ) -> anyhow::Result<()> {
518 self.imported_interfaces.insert(id);
519
520 let full_name = resolve.name_world_key(name);
521 match self.opts.with.iter().find(|e| e.0 == full_name) {
522 None => {
523 if let Some(prefix) = self
524 .interface_prefixes
525 .get(&(Direction::Import, name.clone()))
526 {
527 self.import_prefix = Some(prefix.clone());
528 }
529
530 let store = self.start_new_file(None);
531 let wasm_import_module = resolve.name_world_key(name);
532 let binding = Some(name);
533 let mut r#gen = self.interface(resolve, binding, true, Some(wasm_import_module));
534 r#gen.interface = Some(id);
535 r#gen.types(id);
536 let namespace =
537 namespace(resolve, &TypeOwner::Interface(id), false, &r#gen.r#gen.opts);
538
539 for (_name, func) in resolve.interfaces[id].functions.iter() {
540 if matches!(func.kind, FunctionKind::Freestanding) {
541 r#gen.r#gen.h_src.change_namespace(&namespace);
542 r#gen.generate_function(
543 func,
544 &TypeOwner::Interface(id),
545 AbiVariant::GuestImport,
546 );
547 }
548 }
549 self.finish_file(&namespace, store);
550 }
551 Some((_, val)) => {
552 let with_quotes = format!("\"{val}\"");
553 if !self.includes.contains(&with_quotes) {
554 self.includes.push(with_quotes);
555 }
556 }
557 }
558 let _ = self.import_prefix.take();
559 Ok(())
560 }
561
562 fn export_interface(
563 &mut self,
564 resolve: &Resolve,
565 name: &WorldKey,
566 id: InterfaceId,
567 _files: &mut Files,
568 ) -> anyhow::Result<()> {
569 let old_prefix = self.opts.export_prefix.clone();
570 if let Some(prefix) = self
571 .interface_prefixes
572 .get(&(Direction::Export, name.clone()))
573 {
574 self.opts.export_prefix =
575 Some(prefix.clone() + old_prefix.as_ref().unwrap_or(&String::new()));
576 }
577 let store = self.start_new_file(None);
578 self.h_src
579 .src
580 .push_str(&format!("// export_interface {name:?}\n"));
581 self.imported_interfaces.remove(&id);
582 let wasm_import_module = resolve.name_world_key(name);
583 let binding = Some(name);
584 let mut r#gen = self.interface(resolve, binding, false, Some(wasm_import_module));
585 r#gen.interface = Some(id);
586 r#gen.types(id);
587 let namespace = namespace(resolve, &TypeOwner::Interface(id), true, &r#gen.r#gen.opts);
588
589 for (_name, func) in resolve.interfaces[id].functions.iter() {
590 if matches!(func.kind, FunctionKind::Freestanding) {
591 r#gen.r#gen.h_src.change_namespace(&namespace);
592 r#gen.generate_function(func, &TypeOwner::Interface(id), AbiVariant::GuestExport);
593 }
594 }
595 self.finish_file(&namespace, store);
596 self.opts.export_prefix = old_prefix;
597 Ok(())
598 }
599
600 fn import_funcs(
601 &mut self,
602 resolve: &Resolve,
603 world: WorldId,
604 funcs: &[(&str, &Function)],
605 _files: &mut Files,
606 ) {
607 let name = WorldKey::Name("$root".to_string()); let wasm_import_module = resolve.name_world_key(&name);
609 let binding = Some(name);
610 let mut r#gen = self.interface(resolve, binding.as_ref(), true, Some(wasm_import_module));
611 let namespace = namespace(resolve, &TypeOwner::World(world), false, &r#gen.r#gen.opts);
612
613 for (_name, func) in funcs.iter() {
614 if matches!(func.kind, FunctionKind::Freestanding) {
615 r#gen.r#gen.h_src.change_namespace(&namespace);
616 r#gen.generate_function(func, &TypeOwner::World(world), AbiVariant::GuestImport);
617 }
618 }
619 }
620
621 fn export_funcs(
622 &mut self,
623 resolve: &Resolve,
624 world: WorldId,
625 funcs: &[(&str, &Function)],
626 _files: &mut Files,
627 ) -> anyhow::Result<()> {
628 let name = WorldKey::Name(resolve.worlds[world].name.clone());
629 let binding = Some(name);
630 let mut r#gen = self.interface(resolve, binding.as_ref(), false, None);
631 let namespace = namespace(resolve, &TypeOwner::World(world), true, &r#gen.r#gen.opts);
632
633 for (_name, func) in funcs.iter() {
634 if matches!(func.kind, FunctionKind::Freestanding) {
635 r#gen.r#gen.h_src.change_namespace(&namespace);
636 r#gen.generate_function(func, &TypeOwner::World(world), AbiVariant::GuestExport);
637 }
638 }
639 Ok(())
640 }
641
642 fn import_types(
643 &mut self,
644 resolve: &Resolve,
645 _world: WorldId,
646 types: &[(&str, TypeId)],
647 _files: &mut Files,
648 ) {
649 let mut r#gen = self.interface(resolve, None, true, Some("$root".to_string()));
650 for (name, id) in types.iter() {
651 r#gen.define_type(name, *id);
652 }
653 }
654
655 fn finish(
656 &mut self,
657 resolve: &Resolve,
658 world_id: WorldId,
659 files: &mut Files,
660 ) -> std::result::Result<(), anyhow::Error> {
661 let world = &resolve.worlds[world_id];
662 let snake = world.name.to_snake_case();
663 let linking_symbol = wit_bindgen_c::component_type_object::linking_symbol(&world.name);
664
665 let mut h_str = SourceWithState::default();
666 let mut c_str = SourceWithState::default();
667
668 let version = env!("CARGO_PKG_VERSION");
669 uwriteln!(
670 h_str.src,
671 "// Generated by `wit-bindgen` {version}. DO NOT EDIT!"
672 );
673
674 uwrite!(
675 h_str.src,
676 "#ifndef __CPP_GUEST_BINDINGS_{0}_H
677 #define __CPP_GUEST_BINDINGS_{0}_H\n",
678 world.name.to_shouty_snake_case(),
679 );
680 self.finish_includes();
681
682 for include in self.includes.iter() {
683 uwriteln!(h_str.src, "#include {include}");
684 }
685
686 uwriteln!(
687 c_str.src,
688 "// Generated by `wit-bindgen` {version}. DO NOT EDIT!"
689 );
690 uwriteln!(
691 c_str.src,
692 "\n// Ensure that the *_component_type.o object is linked in"
693 );
694 uwrite!(
695 c_str.src,
696 "#ifdef __wasm32__
697 extern \"C\" void {linking_symbol}(void);
698 __attribute__((used))
699 void {linking_symbol}_public_use_in_this_compilation_unit(void) {{
700 {linking_symbol}();
701 }}
702 #endif
703 ",
704 );
705 if self.dependencies.needs_assert {
706 uwriteln!(c_str.src, "#include <assert.h>");
707 }
708
709 h_str.change_namespace(&Vec::default());
710
711 self.c_src.change_namespace(&Vec::default());
712 c_str.src.push_str(&self.c_src_head);
713 c_str.src.push_str(&self.extern_c_decls);
714 c_str.src.push_str(&self.c_src.src);
715 self.h_src.change_namespace(&Vec::default());
716 h_str.src.push_str(&self.h_src.src);
717
718 uwriteln!(c_str.src, "\n// Component Adapters");
719
720 uwriteln!(
721 h_str.src,
722 "
723 #endif"
724 );
725
726 if self.opts.format {
727 Self::clang_format(c_str.src.as_mut_string());
728 Self::clang_format(h_str.src.as_mut_string());
729 }
730
731 files.push(&format!("{snake}.cpp"), c_str.src.as_bytes());
732 files.push(&format!("{snake}_cpp.h"), h_str.src.as_bytes());
733 for (name, content) in self.user_class_files.iter() {
734 let dst = match &self.opts.out_dir {
736 Some(path) => path.join(name),
737 None => name.into(),
738 };
739 if std::path::Path::exists(&dst) {
740 files.push(&(String::from(name) + ".template"), content.as_bytes());
741 } else {
742 files.push(name, content.as_bytes());
743 }
744 }
745 files.push(
746 &format!("{snake}_component_type.o",),
747 wit_bindgen_c::component_type_object::object(
748 resolve,
749 world_id,
750 &world.name,
751 wit_component::StringEncoding::UTF8,
752 None,
753 )
754 .unwrap()
755 .as_slice(),
756 );
757
758 if self.dependencies.needs_wit {
759 files.push("wit.h", include_bytes!("../helper-types/wit.h"));
760 }
761 Ok(())
762 }
763}
764
765fn namespace(resolve: &Resolve, owner: &TypeOwner, guest_export: bool, opts: &Opts) -> Vec<String> {
767 let mut result = Vec::default();
768 if let Some(prefix) = &opts.internal_prefix {
769 result.push(prefix.clone());
770 }
771 if guest_export {
772 result.push(String::from("exports"));
773 }
774 match owner {
775 TypeOwner::World(w) => result.push(to_c_ident(&resolve.worlds[*w].name)),
776 TypeOwner::Interface(i) => {
777 let iface = &resolve.interfaces[*i];
778 let pkg_id = iface.package.unwrap();
779 let pkg = &resolve.packages[pkg_id];
780 result.push(to_c_ident(&pkg.name.namespace));
781 result.push(to_c_ident(&name_package_module(resolve, pkg_id)));
783 if let Some(name) = &iface.name {
784 result.push(to_c_ident(name));
785 }
786 }
787 TypeOwner::None => (),
788 }
789 result
790}
791
792impl SourceWithState {
793 fn change_namespace(&mut self, target: &[String]) {
794 let mut same = 0;
795 for (a, b) in self.namespace.iter().zip(target.iter()) {
797 if a == b {
798 same += 1;
799 } else {
800 break;
801 }
802 }
803 for _i in same..self.namespace.len() {
804 uwrite!(self.src, "}}\n");
805 }
806 self.namespace.truncate(same);
807 for i in target.iter().skip(same) {
808 uwrite!(self.src, "namespace {} {{\n", i);
809 self.namespace.push(i.clone());
810 }
811 }
812
813 fn qualify(&mut self, target: &[String]) {
814 let mut same = 0;
815 for (a, b) in self.namespace.iter().zip(target.iter()) {
817 if a == b {
818 same += 1;
819 } else {
820 break;
821 }
822 }
823 if same == 0 && !target.is_empty() {
824 if self.namespace.contains(target.first().unwrap())
827 || (self.namespace.first().map(|s| s.as_str()) == Some("exports")
828 && target.first().map(|s| s.as_str()) != Some("exports"))
829 {
830 self.src.push_str("::");
831 }
832 }
833 if same == target.len() && self.namespace.len() != target.len() && same > 0 {
834 uwrite!(self.src, "{}::", target[same - 1]);
836 } else {
837 for i in target.iter().skip(same) {
838 uwrite!(self.src, "{i}::");
839 }
840 }
841 }
842}
843
844struct CppInterfaceGenerator<'a> {
845 _src: Source,
846 r#gen: &'a mut Cpp,
847 resolve: &'a Resolve,
848 interface: Option<InterfaceId>,
849 _name: Option<&'a WorldKey>,
850 sizes: SizeAlign,
851 in_guest_import: bool,
852 pub wasm_import_module: Option<String>,
853}
854
855impl CppInterfaceGenerator<'_> {
856 fn types(&mut self, iface: InterfaceId) {
857 let iface_data = &self.resolve().interfaces[iface];
858
859 for (name, id) in iface_data.types.iter() {
862 let ty = &self.resolve().types[*id];
863 if matches!(&ty.kind, TypeDefKind::Resource) {
864 let pascal = name.to_upper_camel_case();
865 let guest_import = self.r#gen.imported_interfaces.contains(&iface);
866 let namespc = namespace(self.resolve, &ty.owner, !guest_import, &self.r#gen.opts);
867 self.r#gen.h_src.change_namespace(&namespc);
868 uwriteln!(self.r#gen.h_src.src, "class {pascal};");
869 }
870 }
871
872 for (name, id) in iface_data.types.iter() {
874 self.define_type(name, *id);
875 }
876 }
877
878 fn define_type(&mut self, name: &str, id: TypeId) {
879 let ty = &self.resolve().types[id];
880 match &ty.kind {
881 TypeDefKind::Record(record) => self.type_record(id, name, record, &ty.docs),
882 TypeDefKind::Resource => self.type_resource(id, name, &ty.docs),
883 TypeDefKind::Flags(flags) => self.type_flags(id, name, flags, &ty.docs),
884 TypeDefKind::Tuple(tuple) => self.type_tuple(id, name, tuple, &ty.docs),
885 TypeDefKind::Enum(enum_) => self.type_enum(id, name, enum_, &ty.docs),
886 TypeDefKind::Variant(variant) => self.type_variant(id, name, variant, &ty.docs),
887 TypeDefKind::Option(t) => self.type_option(id, name, t, &ty.docs),
888 TypeDefKind::Result(r) => self.type_result(id, name, r, &ty.docs),
889 TypeDefKind::List(t) => self.type_list(id, name, t, &ty.docs),
890 TypeDefKind::Type(t) => self.type_alias(id, name, t, &ty.docs),
891 TypeDefKind::Future(_) => todo!("generate for future"),
892 TypeDefKind::Stream(_) => todo!("generate for stream"),
893 TypeDefKind::Handle(_) => todo!("generate for handle"),
894 TypeDefKind::FixedLengthList(_, _) => todo!(),
895 TypeDefKind::Map(_, _) => todo!(),
896 TypeDefKind::Unknown => unreachable!(),
897 }
898 }
899
900 fn func_namespace_name(
902 &self,
903 func: &Function,
904 guest_export: bool,
905 cpp_file: bool,
906 ) -> (Vec<String>, String) {
907 let (object, owner) = match &func.kind {
908 FunctionKind::Freestanding => None,
909 FunctionKind::Method(i) => Some(i),
910 FunctionKind::Static(i) => Some(i),
911 FunctionKind::Constructor(i) => Some(i),
912 FunctionKind::AsyncFreestanding => todo!(),
913 FunctionKind::AsyncMethod(_id) => todo!(),
914 FunctionKind::AsyncStatic(_id) => todo!(),
915 }
916 .map(|i| {
917 let ty = &self.resolve.types[*i];
918 (ty.name.as_ref().unwrap().to_pascal_case(), ty.owner)
919 })
920 .unwrap_or((
921 Default::default(),
922 self.interface
923 .map(TypeOwner::Interface)
924 .unwrap_or(TypeOwner::World(self.r#gen.world_id.unwrap())),
925 ));
926 let mut namespace = namespace(self.resolve, &owner, guest_export, &self.r#gen.opts);
927 let is_drop = is_special_method(func);
928 let func_name_h = if !matches!(&func.kind, FunctionKind::Freestanding) {
929 namespace.push(object.clone());
930 if let FunctionKind::Constructor(_i) = &func.kind {
931 let is_fallible_constructor =
933 self.r#gen.is_fallible_constructor(self.resolve, func);
934
935 if is_fallible_constructor {
936 String::from("Create")
937 } else if guest_export && cpp_file {
938 String::from("New")
939 } else {
940 object.clone()
941 }
942 } else {
943 match is_drop {
944 SpecialMethod::ResourceDrop => {
945 if guest_export {
946 "ResourceDrop".to_string()
947 } else {
948 "~".to_string() + &object
949 }
950 }
951 SpecialMethod::Dtor => "Dtor".to_string(),
952 SpecialMethod::ResourceNew => "ResourceNew".to_string(),
953 SpecialMethod::ResourceRep => "ResourceRep".to_string(),
954 SpecialMethod::Allocate => "New".to_string(),
955 SpecialMethod::None => func.item_name().to_pascal_case(),
956 }
957 }
958 } else {
959 func.name.to_pascal_case()
960 };
961 (namespace, func_name_h)
962 }
963
964 fn print_export_signature(&mut self, func: &Function, variant: AbiVariant) -> Vec<String> {
966 let is_drop = is_special_method(func);
967 let id_type = WasmType::I32;
968 let signature = match is_drop {
969 SpecialMethod::ResourceDrop => WasmSignature {
970 params: vec![id_type],
971 results: Vec::new(),
972 indirect_params: false,
973 retptr: false,
974 },
975 SpecialMethod::ResourceRep => WasmSignature {
976 params: vec![id_type],
977 results: vec![WasmType::Pointer],
978 indirect_params: false,
979 retptr: false,
980 },
981 SpecialMethod::Dtor => WasmSignature {
982 params: vec![WasmType::Pointer],
983 results: Vec::new(),
984 indirect_params: false,
985 retptr: false,
986 },
987 SpecialMethod::ResourceNew => WasmSignature {
988 params: vec![WasmType::Pointer],
989 results: vec![id_type],
990 indirect_params: false,
991 retptr: false,
992 },
993 SpecialMethod::None => {
994 self.resolve.wasm_signature(variant, func)
996 }
997 SpecialMethod::Allocate => WasmSignature {
998 params: vec![],
999 results: vec![],
1000 indirect_params: false,
1001 retptr: false,
1002 },
1003 };
1004 let mut module_name = self.wasm_import_module.clone();
1005 let symbol_variant = variant;
1006 if matches!(variant, AbiVariant::GuestExport)
1007 && matches!(
1008 is_drop,
1009 SpecialMethod::ResourceNew
1010 | SpecialMethod::ResourceDrop
1011 | SpecialMethod::ResourceRep
1012 )
1013 {
1014 module_name = Some(String::from("[export]") + &module_name.unwrap());
1015 }
1016 let func_name = func.name.clone();
1017 let module_prefix = module_name.as_ref().map_or(String::default(), |name| {
1018 let mut res = name.clone();
1019 res.push('#');
1020 res
1021 });
1022 uwriteln!(
1023 self.r#gen.c_src.src,
1024 r#"extern "C" __attribute__((__export_name__("{module_prefix}{func_name}")))"#
1025 );
1026 let return_via_pointer = false;
1027 self.r#gen
1028 .c_src
1029 .src
1030 .push_str(if signature.results.is_empty() || return_via_pointer {
1031 "void"
1032 } else {
1033 wit_bindgen_c::wasm_type(signature.results[0])
1034 });
1035 self.r#gen.c_src.src.push_str(" ");
1036 let export_name = match module_name {
1037 Some(ref module_name) => make_external_symbol(module_name, &func_name, symbol_variant),
1038 None => make_external_component(&func_name),
1039 };
1040 self.r#gen.c_src.src.push_str("__wasm_export_");
1042 if let Some(prefix) = self.r#gen.opts.export_prefix.as_ref() {
1043 self.r#gen.c_src.src.push_str(prefix);
1044 }
1045 self.r#gen.c_src.src.push_str(&export_name);
1046 self.r#gen.c_src.src.push_str("(");
1047 let mut first_arg = true;
1048 let mut params = Vec::new();
1049 for (n, ty) in signature.params.iter().enumerate() {
1050 let name = format!("arg{n}");
1051 if !first_arg {
1052 self.r#gen.c_src.src.push_str(", ");
1053 } else {
1054 first_arg = false;
1055 }
1056 self.r#gen.c_src.src.push_str(wit_bindgen_c::wasm_type(*ty));
1057 self.r#gen.c_src.src.push_str(" ");
1058 self.r#gen.c_src.src.push_str(&name);
1059 params.push(name);
1060 }
1061 if return_via_pointer {
1062 if !first_arg {
1063 self.r#gen.c_src.src.push_str(", ");
1064 }
1065 self.r#gen.c_src.src.push_str(self.r#gen.opts.ptr_type());
1066 self.r#gen.c_src.src.push_str(" resultptr");
1067 params.push("resultptr".into());
1068 }
1069 self.r#gen.c_src.src.push_str(")\n");
1070 params
1071 }
1072
1073 fn high_level_signature(
1074 &mut self,
1075 func: &Function,
1076 abi_variant: AbiVariant,
1077 outer_namespace: &[String],
1078 ) -> HighlevelSignature {
1079 let mut res = HighlevelSignature::default();
1080
1081 let (namespace, func_name_h) =
1082 self.func_namespace_name(func, matches!(abi_variant, AbiVariant::GuestExport), false);
1083 res.name = func_name_h;
1084 res.namespace = namespace;
1085 let is_drop = is_special_method(func);
1086 let is_fallible_constructor = self.r#gen.is_fallible_constructor(self.resolve, func);
1091
1092 if (!matches!(&func.kind, FunctionKind::Constructor(_)) || is_fallible_constructor)
1094 && !(matches!(is_drop, SpecialMethod::ResourceDrop)
1095 && matches!(abi_variant, AbiVariant::GuestImport))
1096 {
1097 if matches!(is_drop, SpecialMethod::Allocate) {
1098 res.result.push_str("Owned");
1099 } else if let Some(ty) = &func.result {
1100 res.result.push_str(
1101 &(self.type_name(ty, outer_namespace, Flavor::Result(abi_variant))
1102 + if matches!(is_drop, SpecialMethod::ResourceRep) {
1103 "*"
1104 } else {
1105 ""
1106 }),
1107 );
1108 } else {
1109 res.result = "void".into();
1110 }
1111 if matches!(abi_variant, AbiVariant::GuestExport)
1112 && abi::guest_export_needs_post_return(self.resolve, func)
1113 {
1114 res.post_return = true;
1115 }
1116 }
1117 if (matches!(func.kind, FunctionKind::Static(_)) || is_fallible_constructor)
1118 && !(matches!(&is_drop, SpecialMethod::ResourceDrop)
1119 && matches!(abi_variant, AbiVariant::GuestImport))
1120 {
1121 res.static_member = true;
1122 }
1123 for (
1124 i,
1125 Param {
1126 name, ty: param, ..
1127 },
1128 ) in func.params.iter().enumerate()
1129 {
1130 if i == 0
1131 && name == "self"
1132 && (matches!(&func.kind, FunctionKind::Method(_))
1133 || (matches!(&is_drop, SpecialMethod::ResourceDrop)
1134 && matches!(abi_variant, AbiVariant::GuestImport)))
1135 {
1136 res.implicit_self = true;
1137 continue;
1138 }
1139 let is_pointer = if i == 0
1140 && name == "self"
1141 && matches!(&is_drop, SpecialMethod::Dtor | SpecialMethod::ResourceNew)
1142 && matches!(abi_variant, AbiVariant::GuestExport)
1143 {
1144 "*"
1145 } else {
1146 ""
1147 };
1148 res.arguments.push((
1149 to_c_ident(name),
1150 self.type_name(param, &res.namespace, Flavor::Argument(abi_variant)) + is_pointer,
1151 ));
1152 }
1153 let import = matches!(abi_variant, AbiVariant::GuestImport);
1155 if matches!(func.kind, FunctionKind::Method(_)) && import {
1156 res.const_member = true;
1157 }
1158 res
1159 }
1160
1161 fn print_signature(
1162 &mut self,
1163 func: &Function,
1164 variant: AbiVariant,
1165 import: bool,
1166 ) -> Vec<String> {
1167 let is_special = is_special_method(func);
1168 let from_namespace = self.r#gen.h_src.namespace.clone();
1169 let cpp_sig = self.high_level_signature(func, variant, &from_namespace);
1170 if cpp_sig.static_member {
1171 self.r#gen.h_src.src.push_str("static ");
1172 }
1173 self.r#gen.h_src.src.push_str(&cpp_sig.result);
1174 if !cpp_sig.result.is_empty() {
1175 self.r#gen.h_src.src.push_str(" ");
1176 }
1177 self.r#gen.h_src.src.push_str(&cpp_sig.name);
1178 self.r#gen.h_src.src.push_str("(");
1179 for (num, (arg, typ)) in cpp_sig.arguments.iter().enumerate() {
1180 if num > 0 {
1181 self.r#gen.h_src.src.push_str(", ");
1182 }
1183 self.r#gen.h_src.src.push_str(typ);
1184 self.r#gen.h_src.src.push_str(" ");
1185 self.r#gen.h_src.src.push_str(arg);
1186 }
1187 self.r#gen.h_src.src.push_str(")");
1188 if cpp_sig.const_member {
1189 self.r#gen.h_src.src.push_str(" const");
1190 }
1191 match (&is_special, false, &variant) {
1192 (SpecialMethod::Allocate, _, _) => {
1193 uwriteln!(
1194 self.r#gen.h_src.src,
1195 "{{\
1196 return {OWNED_CLASS_NAME}(new {}({}));\
1197 }}",
1198 cpp_sig.namespace.last().unwrap(), cpp_sig
1200 .arguments
1201 .iter()
1202 .map(|(arg, _)| format!("std::move({arg})"))
1203 .collect::<Vec<_>>()
1204 .join(", ")
1205 );
1206 return Vec::default();
1208 }
1209 (SpecialMethod::Dtor, _, _ )
1210 | (SpecialMethod::ResourceDrop, true, _) => {
1211 uwriteln!(
1212 self.r#gen.h_src.src,
1213 "{{\
1214 delete {};\
1215 }}",
1216 cpp_sig.arguments.first().unwrap().0
1217 );
1218 }
1219 _ => self.r#gen.h_src.src.push_str(";\n"),
1220 }
1221
1222 if !import
1224 && !matches!(
1225 &is_special,
1226 SpecialMethod::ResourceDrop
1227 | SpecialMethod::ResourceNew
1228 | SpecialMethod::ResourceRep
1229 )
1230 {
1231 self.print_export_signature(func, variant)
1232 } else {
1233 let c_namespace = self.r#gen.c_src.namespace.clone();
1235 let cpp_sig = self.high_level_signature(func, variant, &c_namespace);
1236 let mut params = Vec::new();
1237 self.r#gen.c_src.src.push_str(&cpp_sig.result);
1238 if !cpp_sig.result.is_empty() {
1239 self.r#gen.c_src.src.push_str(" ");
1240 }
1241 self.r#gen.c_src.qualify(&cpp_sig.namespace);
1242 self.r#gen.c_src.src.push_str(&cpp_sig.name);
1243 self.r#gen.c_src.src.push_str("(");
1244 if cpp_sig.implicit_self {
1245 params.push("(*this)".into());
1246 }
1247 for (num, (arg, typ)) in cpp_sig.arguments.iter().enumerate() {
1248 if num > 0 {
1249 self.r#gen.c_src.src.push_str(", ");
1250 }
1251 self.r#gen.c_src.src.push_str(typ);
1252 self.r#gen.c_src.src.push_str(" ");
1253 self.r#gen.c_src.src.push_str(arg);
1254 params.push(arg.clone());
1255 }
1256 self.r#gen.c_src.src.push_str(")");
1257 if cpp_sig.const_member {
1258 self.r#gen.c_src.src.push_str(" const");
1259 }
1260 self.r#gen.c_src.src.push_str("\n");
1261 params
1262 }
1263 }
1264
1265 fn generate_function(&mut self, func: &Function, owner: &TypeOwner, variant: AbiVariant) {
1266 fn class_namespace(
1267 cifg: &CppInterfaceGenerator,
1268 func: &Function,
1269 variant: AbiVariant,
1270 ) -> Vec<String> {
1271 let owner = &cifg.resolve.types[match &func.kind {
1272 FunctionKind::Static(id) => *id,
1273 _ => panic!("special func should be static"),
1274 }];
1275 let mut namespace = namespace(
1276 cifg.resolve,
1277 &owner.owner,
1278 matches!(variant, AbiVariant::GuestExport),
1279 &cifg.r#gen.opts,
1280 );
1281 namespace.push(owner.name.as_ref().unwrap().to_upper_camel_case());
1282 namespace
1283 }
1284
1285 let export = match variant {
1286 AbiVariant::GuestImport => false,
1287 AbiVariant::GuestExport => true,
1288 AbiVariant::GuestImportAsync => todo!(),
1289 AbiVariant::GuestExportAsync => todo!(),
1290 AbiVariant::GuestExportAsyncStackful => todo!(),
1291 };
1292 let params = self.print_signature(func, variant, !export);
1293 let special = is_special_method(func);
1294 if !matches!(special, SpecialMethod::Allocate) {
1295 self.r#gen.c_src.src.push_str("{\n");
1296 let needs_dealloc = if self.r#gen.opts.api_style == APIStyle::Symmetric
1297 && matches!(variant, AbiVariant::GuestExport)
1298 {
1299 self.r#gen
1300 .c_src
1301 .src
1302 .push_str("std::vector<void*> _deallocate;\n");
1303 self.r#gen.dependencies.needs_vector = true;
1304 true
1305 } else {
1306 false
1307 };
1308 let lift_lower = if export {
1309 LiftLower::LiftArgsLowerResults
1310 } else {
1311 LiftLower::LowerArgsLiftResults
1312 };
1313 match is_special_method(func) {
1314 SpecialMethod::ResourceDrop => match lift_lower {
1315 LiftLower::LiftArgsLowerResults => {
1316 let module_name =
1317 String::from("[export]") + &self.wasm_import_module.clone().unwrap();
1318 let wasm_sig =
1319 self.declare_import(&module_name, &func.name, &[WasmType::I32], &[]);
1320 uwriteln!(
1321 self.r#gen.c_src.src,
1322 "{wasm_sig}({});",
1323 func.params.first().unwrap().name
1324 );
1325 }
1326 LiftLower::LowerArgsLiftResults => {
1327 let module_name = self.wasm_import_module.clone().unwrap();
1328 let name =
1329 self.declare_import(&module_name, &func.name, &[WasmType::I32], &[]);
1330 uwriteln!(
1331 self.r#gen.c_src.src,
1332 " if (handle>=0) {{
1333 {name}(handle);
1334 }}"
1335 );
1336 }
1337 },
1338 SpecialMethod::Dtor => {
1339 let classname = class_namespace(self, func, variant).join("::");
1340 uwriteln!(self.r#gen.c_src.src, "(({classname}*)arg0)->handle=-1;");
1341 uwriteln!(self.r#gen.c_src.src, "{0}::Dtor(({0}*)arg0);", classname);
1342 }
1343 SpecialMethod::ResourceNew => {
1344 let module_name =
1345 String::from("[export]") + &self.wasm_import_module.clone().unwrap();
1346 let wasm_sig = self.declare_import(
1347 &module_name,
1348 &func.name,
1349 &[WasmType::Pointer],
1350 &[WasmType::I32],
1351 );
1352 uwriteln!(
1353 self.r#gen.c_src.src,
1354 "return {wasm_sig}(({}){});",
1355 self.r#gen.opts.ptr_type(),
1356 func.params.first().unwrap().name
1357 );
1358 }
1359 SpecialMethod::ResourceRep => {
1360 let module_name =
1361 String::from("[export]") + &self.wasm_import_module.clone().unwrap();
1362 let wasm_sig = self.declare_import(
1363 &module_name,
1364 &func.name,
1365 &[WasmType::I32],
1366 &[WasmType::Pointer],
1367 );
1368 let classname = class_namespace(self, func, variant).join("::");
1369 uwriteln!(
1370 self.r#gen.c_src.src,
1371 "return ({}*){wasm_sig}({});",
1372 classname,
1373 func.params.first().unwrap().name
1374 );
1375 }
1376 SpecialMethod::Allocate => unreachable!(),
1377 SpecialMethod::None => {
1378 let namespace = if matches!(func.kind, FunctionKind::Freestanding) {
1380 namespace(
1381 self.resolve,
1382 owner,
1383 matches!(variant, AbiVariant::GuestExport),
1384 &self.r#gen.opts,
1385 )
1386 } else {
1387 let owner = &self.resolve.types[match &func.kind {
1388 FunctionKind::Static(id) => *id,
1389 FunctionKind::Constructor(id) => *id,
1390 FunctionKind::Method(id) => *id,
1391 FunctionKind::Freestanding => unreachable!(),
1392 FunctionKind::AsyncFreestanding => todo!(),
1393 FunctionKind::AsyncMethod(_id) => todo!(),
1394 FunctionKind::AsyncStatic(_id) => todo!(),
1395 }]
1396 .clone();
1397 let mut namespace = namespace(
1398 self.resolve,
1399 &owner.owner,
1400 matches!(variant, AbiVariant::GuestExport),
1401 &self.r#gen.opts,
1402 );
1403 namespace.push(owner.name.as_ref().unwrap().to_upper_camel_case());
1404 namespace
1405 };
1406 let mut f = FunctionBindgen::new(self, params);
1407 if !export {
1408 f.namespace = namespace.clone();
1409 }
1410 f.variant = variant;
1411 f.needs_dealloc = needs_dealloc;
1412 f.cabi_post = None;
1413 abi::call(f.r#gen.resolve, variant, lift_lower, func, &mut f, false);
1414 let ret_area_decl = f.emit_ret_area_if_needed();
1415 let code = format!("{}{}", ret_area_decl, String::from(f.src));
1416 self.r#gen.c_src.src.push_str(&code);
1417 }
1418 }
1419 self.r#gen.c_src.src.push_str("}\n");
1420 if matches!(variant, AbiVariant::GuestExport)
1422 && abi::guest_export_needs_post_return(self.resolve, func)
1423 {
1424 let sig = self.resolve.wasm_signature(variant, func);
1425 let module_name = self.wasm_import_module.clone();
1426 let export_name = match module_name {
1427 Some(ref module_name) => {
1428 format!("{module_name}#{}", func.name)
1429 }
1430 None => make_external_component(&func.name),
1431 };
1432 let import_name = match module_name {
1433 Some(ref module_name) => {
1434 make_external_symbol(module_name, &func.name, AbiVariant::GuestExport)
1435 }
1436 None => make_external_component(&func.name),
1437 };
1438 uwriteln!(
1439 self.r#gen.c_src.src,
1440 "extern \"C\" __attribute__((__weak__, __export_name__(\"cabi_post_{export_name}\")))"
1441 );
1442 uwrite!(self.r#gen.c_src.src, "void cabi_post_{import_name}(");
1443
1444 let mut params = Vec::new();
1445 for (i, result) in sig.results.iter().enumerate() {
1446 let name = format!("arg{i}");
1447 uwrite!(
1448 self.r#gen.c_src.src,
1449 "{} {name}",
1450 wit_bindgen_c::wasm_type(*result)
1451 );
1452 params.push(name);
1453 }
1454 self.r#gen.c_src.src.push_str(") {\n");
1455
1456 let mut f = FunctionBindgen::new(self, params.clone());
1457 f.params = params;
1458 abi::post_return(f.r#gen.resolve, func, &mut f);
1459 let ret_area_decl = f.emit_ret_area_if_needed();
1460 let code = format!("{}{}", ret_area_decl, String::from(f.src));
1461 self.r#gen.c_src.src.push_str(&code);
1462 self.r#gen.c_src.src.push_str("}\n");
1463 }
1464 }
1465 }
1466
1467 fn optional_type_name(
1469 &mut self,
1470 ty: Option<&Type>,
1471 from_namespace: &[String],
1472 flavor: Flavor,
1473 ) -> String {
1474 match ty {
1475 Some(ty) => self.type_name(ty, from_namespace, flavor),
1476 None => "void".into(),
1477 }
1478 }
1479
1480 fn scoped_record_name(
1481 &self,
1482 id: TypeId,
1483 from_namespace: &[String],
1484 guest_export: bool,
1485 flavor: Flavor,
1486 ) -> String {
1487 let name = self.scoped_type_name(id, from_namespace, guest_export);
1488
1489 if let Flavor::Argument(AbiVariant::GuestImport) = flavor {
1490 match self.r#gen.opts.ownership {
1491 Ownership::Owning => name.to_string(),
1492 Ownership::CoarseBorrowing => {
1493 if self.r#gen.types.get(id).has_own_handle {
1494 name.to_string()
1495 } else {
1496 format!("{name}Param")
1497 }
1498 }
1499 Ownership::FineBorrowing => {
1500 format!("{name}Param")
1501 }
1502 }
1503 } else {
1504 name
1505 }
1506 }
1507
1508 fn scoped_type_name(
1509 &self,
1510 id: TypeId,
1511 from_namespace: &[String],
1512 guest_export: bool,
1513 ) -> String {
1514 let ty = &self.resolve.types[id];
1515 let namespc = namespace(self.resolve, &ty.owner, guest_export, &self.r#gen.opts);
1516 let mut relative = SourceWithState {
1517 namespace: Vec::from(from_namespace),
1518 ..Default::default()
1519 };
1520 relative.qualify(&namespc);
1521 format!(
1522 "{}{}",
1523 &*relative.src,
1524 ty.name.as_ref().unwrap().to_pascal_case()
1525 )
1526 }
1527
1528 fn type_name(&mut self, ty: &Type, from_namespace: &[String], flavor: Flavor) -> String {
1529 match ty {
1530 Type::Bool => "bool".into(),
1531 Type::Char => "uint32_t".into(),
1532 Type::U8 => "uint8_t".into(),
1533 Type::S8 => "int8_t".into(),
1534 Type::U16 => "uint16_t".into(),
1535 Type::S16 => "int16_t".into(),
1536 Type::U32 => "uint32_t".into(),
1537 Type::S32 => "int32_t".into(),
1538 Type::U64 => "uint64_t".into(),
1539 Type::S64 => "int64_t".into(),
1540 Type::F32 => "float".into(),
1541 Type::F64 => "double".into(),
1542 Type::String => match flavor {
1543 Flavor::BorrowedArgument => {
1544 self.r#gen.dependencies.needs_string_view = true;
1545 "std::string_view".into()
1546 }
1547 Flavor::Argument(var)
1548 if matches!(var, AbiVariant::GuestImport)
1549 || self.r#gen.opts.api_style == APIStyle::Symmetric =>
1550 {
1551 self.r#gen.dependencies.needs_string_view = true;
1552 "std::string_view".into()
1553 }
1554 Flavor::Argument(AbiVariant::GuestExport) => {
1555 self.r#gen.dependencies.needs_wit = true;
1556 "wit::string".into()
1557 }
1558 _ => {
1559 self.r#gen.dependencies.needs_wit = true;
1560 "wit::string".into()
1561 }
1562 },
1563 Type::Id(id) => match &self.resolve.types[*id].kind {
1564 TypeDefKind::Record(_) => {
1565 let guest_export = self.is_exported_type(&self.resolve.types[*id]);
1566 self.scoped_record_name(*id, from_namespace, guest_export, flavor)
1567 }
1568 TypeDefKind::Resource => {
1569 let guest_export = self.is_exported_type(&self.resolve.types[*id]);
1570 self.scoped_type_name(*id, from_namespace, guest_export)
1571 }
1572 TypeDefKind::Handle(Handle::Own(id)) => {
1573 let mut typename = self.type_name(&Type::Id(*id), from_namespace, flavor);
1574 let ty = &self.resolve.types[*id];
1575
1576 let resource_ty = match &ty.kind {
1580 TypeDefKind::Type(Type::Id(resource_id)) => {
1581 &self.resolve.types[*resource_id]
1582 }
1583 _ => ty,
1584 };
1585
1586 let is_exported = self.is_exported_type(resource_ty);
1587 match (false, flavor) {
1588 (false, Flavor::Argument(AbiVariant::GuestImport))
1589 | (true, Flavor::Argument(AbiVariant::GuestExport)) => {
1590 typename.push_str("&&")
1591 }
1592 (false, Flavor::Argument(AbiVariant::GuestExport))
1593 | (false, Flavor::Result(AbiVariant::GuestExport))
1594 | (true, Flavor::Argument(AbiVariant::GuestImport))
1595 | (true, Flavor::Result(AbiVariant::GuestImport)) => {
1596 if is_exported {
1598 typename.push_str(&format!("::{OWNED_CLASS_NAME}"))
1599 } else {
1600 typename.push_str("&&")
1601 }
1602 }
1603 (false, Flavor::Result(AbiVariant::GuestImport))
1604 | (true, Flavor::Result(AbiVariant::GuestExport)) => (),
1605 (_, Flavor::InStruct) => (),
1606 (false, Flavor::BorrowedArgument) => (),
1607 (_, _) => todo!(),
1608 }
1609 if matches!(flavor, Flavor::InStruct) && is_exported {
1610 typename.push_str(&format!("::{OWNED_CLASS_NAME}"))
1611 }
1612 typename
1613 }
1614 TypeDefKind::Handle(Handle::Borrow(id)) => {
1615 "std::reference_wrapper<const ".to_string()
1616 + &self.type_name(&Type::Id(*id), from_namespace, flavor)
1617 + ">"
1618 }
1619 TypeDefKind::Flags(_f) => {
1620 let ty = &self.resolve.types[*id];
1621 let guest_export = self.is_exported_type(ty);
1622 self.scoped_type_name(*id, from_namespace, guest_export)
1623 }
1624 TypeDefKind::Tuple(t) => {
1625 let types = t.types.iter().fold(String::new(), |mut a, b| {
1626 if !a.is_empty() {
1627 a += ", ";
1628 }
1629 a + &self.type_name(b, from_namespace, flavor)
1630 });
1631 self.r#gen.dependencies.needs_tuple = true;
1632 String::from("std::tuple<") + &types + ">"
1633 }
1634 TypeDefKind::Variant(_v) => {
1635 let ty = &self.resolve.types[*id];
1636 let guest_export = self.is_exported_type(ty);
1637 self.scoped_type_name(*id, from_namespace, guest_export)
1638 }
1639 TypeDefKind::Enum(_e) => {
1640 let ty = &self.resolve.types[*id];
1641 let guest_export = self.is_exported_type(ty);
1642 self.scoped_type_name(*id, from_namespace, guest_export)
1643 }
1644 TypeDefKind::Option(o) => {
1645 let template_flavor = match flavor {
1648 Flavor::Argument(AbiVariant::GuestImport) => Flavor::BorrowedArgument,
1649 _ => Flavor::InStruct,
1650 };
1651 self.r#gen.dependencies.needs_optional = true;
1652 "std::optional<".to_string()
1653 + &self.type_name(o, from_namespace, template_flavor)
1654 + ">"
1655 }
1656 TypeDefKind::Result(r) => {
1657 let template_flavor = Flavor::InStruct;
1659 let err_type = r.err.as_ref().map_or(String::from("wit::Void"), |ty| {
1660 self.type_name(ty, from_namespace, template_flavor)
1661 });
1662 self.r#gen.dependencies.needs_expected = true;
1663 "std::expected<".to_string()
1664 + &self.optional_type_name(r.ok.as_ref(), from_namespace, template_flavor)
1665 + ", "
1666 + &err_type
1667 + ">"
1668 }
1669 TypeDefKind::List(ty) => {
1670 let element_flavor = match flavor {
1674 Flavor::BorrowedArgument | Flavor::Argument(AbiVariant::GuestImport) => {
1675 Flavor::BorrowedArgument
1676 }
1677 _ => Flavor::InStruct,
1678 };
1679 let inner = self.type_name(ty, from_namespace, element_flavor);
1680 match flavor {
1681 Flavor::BorrowedArgument => {
1682 self.r#gen.dependencies.needs_span = true;
1683 format!("std::span<{inner} const>")
1684 }
1685 Flavor::Argument(var)
1686 if matches!(var, AbiVariant::GuestImport)
1687 || self.r#gen.opts.api_style == APIStyle::Symmetric =>
1688 {
1689 self.r#gen.dependencies.needs_span = true;
1690 let constness = if self.r#gen.types.get(*id).has_own_handle {
1692 ""
1693 } else {
1694 " const"
1695 };
1696 format!("std::span<{inner}{constness}>")
1697 }
1698 Flavor::Argument(AbiVariant::GuestExport) => {
1699 self.r#gen.dependencies.needs_wit = true;
1700 format!("wit::vector<{inner}>")
1701 }
1702 _ => {
1703 self.r#gen.dependencies.needs_wit = true;
1704 format!("wit::vector<{inner}>")
1705 }
1706 }
1707 }
1708 TypeDefKind::Future(_) => todo!(),
1709 TypeDefKind::Stream(_) => todo!(),
1710 TypeDefKind::Type(ty) => self.type_name(ty, from_namespace, flavor),
1711 TypeDefKind::FixedLengthList(ty, size) => {
1712 self.r#gen.dependencies.needs_array = true;
1713 format!(
1714 "std::array<{}, {size}>",
1715 self.type_name(ty, from_namespace, flavor)
1716 )
1717 }
1718 TypeDefKind::Map(_, _) => todo!(),
1719 TypeDefKind::Unknown => todo!(),
1720 },
1721 Type::ErrorContext => todo!(),
1722 }
1723 }
1724
1725 fn declare_import2(
1726 &self,
1727 module_name: &str,
1728 name: &str,
1729 args: &str,
1730 result: &str,
1731 variant: AbiVariant,
1732 ) -> (String, String) {
1733 let mut extern_name = String::from("__wasm_import_");
1734 extern_name.push_str(&make_external_symbol(module_name, name, variant));
1735 let import = format!(
1736 "extern \"C\" __attribute__((import_module(\"{module_name}\")))\n __attribute__((import_name(\"{name}\")))\n {result} {extern_name}({args});\n"
1737 );
1738 (extern_name, import)
1739 }
1740
1741 fn declare_import(
1742 &mut self,
1743 module_name: &str,
1744 name: &str,
1745 params: &[WasmType],
1746 results: &[WasmType],
1747 ) -> String {
1748 let mut args = String::default();
1749 for (n, param) in params.iter().enumerate() {
1750 args.push_str(wit_bindgen_c::wasm_type(*param));
1751 if n + 1 != params.len() {
1752 args.push_str(", ");
1753 }
1754 }
1755 let result = if results.is_empty() {
1756 "void"
1757 } else {
1758 wit_bindgen_c::wasm_type(results[0])
1759 };
1760 let variant = AbiVariant::GuestImport;
1761 let (name, code) = self.declare_import2(module_name, name, &args, result, variant);
1762 self.r#gen.extern_c_decls.push_str(&code);
1763 name
1764 }
1765
1766 fn docs(src: &mut Source, docs: &Docs) {
1767 if let Some(docs) = docs.contents.as_ref() {
1768 for line in docs.trim().lines() {
1769 src.push_str("/// ");
1770 src.push_str(line);
1771 src.push_str("\n");
1772 }
1773 }
1774 }
1775
1776 fn type_record_param(
1777 &mut self,
1778 id: TypeId,
1779 name: &str,
1780 record: &wit_bindgen_core::wit_parser::Record,
1781 namespc: &[String],
1782 ) {
1783 let (flavor, needs_param_type) = {
1784 match self.r#gen.opts.ownership {
1785 Ownership::Owning => (Flavor::InStruct, false),
1786 Ownership::CoarseBorrowing => {
1787 if self.r#gen.types.get(id).has_own_handle {
1788 (Flavor::InStruct, false)
1789 } else {
1790 (Flavor::BorrowedArgument, true)
1791 }
1792 }
1793 Ownership::FineBorrowing => (Flavor::BorrowedArgument, true),
1794 }
1795 };
1796
1797 if needs_param_type {
1798 let pascal = format!("{name}-param").to_pascal_case();
1799
1800 uwriteln!(self.r#gen.h_src.src, "struct {pascal} {{");
1801 for field in record.fields.iter() {
1802 let typename = self.type_name(&field.ty, namespc, flavor);
1803 let fname = to_c_ident(&field.name);
1804 uwriteln!(self.r#gen.h_src.src, "{typename} {fname};");
1805 }
1806 uwriteln!(self.r#gen.h_src.src, "}};");
1807 }
1808 }
1809
1810 fn is_exported_type(&self, ty: &TypeDef) -> bool {
1811 match ty.owner {
1812 TypeOwner::Interface(intf) => {
1813 !self.r#gen.imported_interfaces.contains(&intf)
1816 }
1817 TypeOwner::World(_) => {
1818 false
1820 }
1821 TypeOwner::None => true,
1822 }
1823 }
1824}
1825
1826impl<'a> wit_bindgen_core::InterfaceGenerator<'a> for CppInterfaceGenerator<'a> {
1827 fn resolve(&self) -> &'a Resolve {
1828 self.resolve
1829 }
1830
1831 fn type_record(
1832 &mut self,
1833 id: TypeId,
1834 name: &str,
1835 record: &wit_bindgen_core::wit_parser::Record,
1836 docs: &wit_bindgen_core::wit_parser::Docs,
1837 ) {
1838 let ty = &self.resolve.types[id];
1839 let guest_export = self.is_exported_type(ty);
1840 let namespc = namespace(self.resolve, &ty.owner, guest_export, &self.r#gen.opts);
1841
1842 if self.r#gen.is_first_definition(&namespc, name) {
1843 self.r#gen.h_src.change_namespace(&namespc);
1844 Self::docs(&mut self.r#gen.h_src.src, docs);
1845 let pascal = name.to_pascal_case();
1846
1847 uwriteln!(self.r#gen.h_src.src, "struct {pascal} {{");
1848 for field in record.fields.iter() {
1849 Self::docs(&mut self.r#gen.h_src.src, &field.docs);
1850 let typename = self.type_name(&field.ty, &namespc, Flavor::InStruct);
1851 let fname = to_c_ident(&field.name);
1852 uwriteln!(self.r#gen.h_src.src, "{typename} {fname};");
1853 }
1854 uwriteln!(self.r#gen.h_src.src, "}};");
1855 self.type_record_param(id, name, record, namespc.as_slice());
1856 }
1857 }
1858
1859 fn type_resource(
1860 &mut self,
1861 id: TypeId,
1862 name: &str,
1863 _docs: &wit_bindgen_core::wit_parser::Docs,
1864 ) {
1865 let type_ = &self.resolve.types[id];
1866 if let TypeOwner::Interface(intf) = type_.owner {
1867 let guest_import = self.r#gen.imported_interfaces.contains(&intf);
1868 let definition = !(guest_import);
1869 let store = self.r#gen.start_new_file(Some(definition));
1870 let mut world_name = to_c_ident(&self.r#gen.world);
1871 world_name.push_str("::");
1872 let namespc = namespace(self.resolve, &type_.owner, !guest_import, &self.r#gen.opts);
1873 let pascal = name.to_upper_camel_case();
1874 let mut user_filename = namespc.clone();
1875 user_filename.push(pascal.clone());
1876 if definition {
1877 uwriteln!(
1878 self.r#gen.h_src.src,
1879 r#"/* User class definition file, autogenerated once, then user modified
1880 * Updated versions of this file are generated into {pascal}.template.
1881 */"#
1882 );
1883 }
1884 self.r#gen.h_src.change_namespace(&namespc);
1885
1886 if !definition {
1887 self.r#gen.dependencies.needs_imported_resources = true;
1888 } else {
1889 self.r#gen.dependencies.needs_exported_resources = true;
1890 }
1891 self.r#gen.dependencies.needs_wit = true;
1892
1893 let base_type = match (definition, false) {
1894 (true, false) => format!("wit::{RESOURCE_EXPORT_BASE_CLASS_NAME}<{pascal}>"),
1895 (false, false) => {
1896 String::from_str("wit::").unwrap() + RESOURCE_IMPORT_BASE_CLASS_NAME
1897 }
1898 (false, true) => {
1899 String::from_str("wit::").unwrap() + RESOURCE_EXPORT_BASE_CLASS_NAME
1900 }
1901 (true, true) => format!("wit::{RESOURCE_IMPORT_BASE_CLASS_NAME}<{pascal}>"),
1902 };
1903 let derive = format!(" : public {base_type}");
1904 uwriteln!(self.r#gen.h_src.src, "class {pascal}{derive} {{\n");
1905 uwriteln!(self.r#gen.h_src.src, "public:\n");
1906 let variant = if guest_import {
1907 AbiVariant::GuestImport
1908 } else {
1909 AbiVariant::GuestExport
1910 };
1911 {
1912 let name = match variant {
1914 AbiVariant::GuestImport => "[resource-drop]",
1915 AbiVariant::GuestExport => "[dtor]",
1916 AbiVariant::GuestImportAsync => todo!(),
1917 AbiVariant::GuestExportAsync => todo!(),
1918 AbiVariant::GuestExportAsyncStackful => todo!(),
1919 }
1920 .to_string()
1921 + name;
1922 let func = Function {
1923 name,
1924 kind: FunctionKind::Static(id),
1925 params: vec![Param {
1926 name: "self".into(),
1927 ty: Type::Id(id),
1928 span: Default::default(),
1929 }],
1930 result: None,
1931 docs: Docs::default(),
1932 stability: Stability::Unknown,
1933 span: Default::default(),
1934 };
1935 self.generate_function(&func, &TypeOwner::Interface(intf), variant);
1936 }
1937 let funcs = self.resolve.interfaces[intf].functions.values();
1938 for func in funcs {
1939 if match &func.kind {
1940 FunctionKind::Freestanding => false,
1941 FunctionKind::Method(mid) => *mid == id,
1942 FunctionKind::Static(mid) => *mid == id,
1943 FunctionKind::Constructor(mid) => *mid == id,
1944 FunctionKind::AsyncFreestanding => todo!(),
1945 FunctionKind::AsyncMethod(_id) => todo!(),
1946 FunctionKind::AsyncStatic(_id) => todo!(),
1947 } {
1948 self.generate_function(func, &TypeOwner::Interface(intf), variant);
1949 let is_fallible_constructor =
1952 self.r#gen.is_fallible_constructor(self.resolve, func);
1953
1954 if matches!(func.kind, FunctionKind::Constructor(_))
1955 && matches!(variant, AbiVariant::GuestExport)
1956 && !is_fallible_constructor
1957 {
1958 let func2 = Function {
1960 name: "$alloc".to_string(),
1961 kind: FunctionKind::Static(id),
1962 params: func.params.clone(),
1964 result: Some(Type::Id(id)),
1965 docs: Docs::default(),
1966 stability: Stability::Unknown,
1967 span: Default::default(),
1968 };
1969 self.generate_function(&func2, &TypeOwner::Interface(intf), variant);
1970 }
1971 }
1972 }
1973
1974 if !definition {
1975 uwriteln!(self.r#gen.h_src.src, "{pascal}({base_type} &&);",);
1977 uwriteln!(self.r#gen.h_src.src, "{pascal}({pascal}&&) = default;");
1978 uwriteln!(
1979 self.r#gen.h_src.src,
1980 "{pascal}& operator=({pascal}&&) = default;"
1981 );
1982 self.r#gen.c_src.qualify(&namespc);
1983 uwriteln!(
1984 self.r#gen.c_src.src,
1985 "{pascal}::{pascal}({base_type}&&b) : {base_type}(std::move(b)) {{}}"
1986 );
1987 }
1988 if matches!(variant, AbiVariant::GuestExport) {
1989 let id_type = Type::S32;
1990 let func = Function {
1991 name: "[resource-new]".to_string() + name,
1992 kind: FunctionKind::Static(id),
1993 params: vec![Param {
1994 name: "self".into(),
1995 ty: Type::Id(id),
1996 span: Default::default(),
1997 }],
1998 result: Some(id_type),
1999 docs: Docs::default(),
2000 stability: Stability::Unknown,
2001 span: Default::default(),
2002 };
2003 self.generate_function(&func, &TypeOwner::Interface(intf), variant);
2004
2005 let func1 = Function {
2006 name: "[resource-rep]".to_string() + name,
2007 kind: FunctionKind::Static(id),
2008 params: vec![Param {
2009 name: "id".into(),
2010 ty: id_type,
2011 span: Default::default(),
2012 }],
2013 result: Some(Type::Id(id)),
2014 docs: Docs::default(),
2015 stability: Stability::Unknown,
2016 span: Default::default(),
2017 };
2018 self.generate_function(&func1, &TypeOwner::Interface(intf), variant);
2019
2020 let func2 = Function {
2021 name: "[resource-drop]".to_string() + name,
2022 kind: FunctionKind::Static(id),
2023 params: vec![Param {
2024 name: "id".into(),
2025 ty: id_type,
2026 span: Default::default(),
2027 }],
2028 result: None,
2029 docs: Docs::default(),
2030 stability: Stability::Unknown,
2031 span: Default::default(),
2032 };
2033 self.generate_function(&func2, &TypeOwner::Interface(intf), variant);
2034 }
2035 uwriteln!(self.r#gen.h_src.src, "}};\n");
2036 self.r#gen.finish_file(&user_filename, store);
2037 } else if matches!(type_.owner, TypeOwner::World(_)) {
2038 let guest_export = false; let namespc = namespace(self.resolve, &type_.owner, guest_export, &self.r#gen.opts);
2041 self.r#gen.h_src.change_namespace(&namespc);
2042
2043 let pascal = name.to_upper_camel_case();
2044 self.r#gen.dependencies.needs_imported_resources = true;
2045 self.r#gen.dependencies.needs_wit = true;
2046
2047 let base_type = format!("wit::{RESOURCE_IMPORT_BASE_CLASS_NAME}");
2048 let derive = format!(" : public {base_type}");
2049 uwriteln!(self.r#gen.h_src.src, "class {pascal}{derive}{{\n");
2050 uwriteln!(self.r#gen.h_src.src, "public:\n");
2051
2052 uwriteln!(self.r#gen.h_src.src, "~{pascal}();");
2054 uwriteln!(
2055 self.r#gen.h_src.src,
2056 "{pascal}(wit::{RESOURCE_IMPORT_BASE_CLASS_NAME} &&);"
2057 );
2058 uwriteln!(self.r#gen.h_src.src, "{pascal}({pascal}&&) = default;");
2059 uwriteln!(
2060 self.r#gen.h_src.src,
2061 "{pascal}& operator=({pascal}&&) = default;"
2062 );
2063 uwriteln!(self.r#gen.h_src.src, "}};\n");
2064 }
2065 }
2066
2067 fn type_flags(
2068 &mut self,
2069 id: TypeId,
2070 name: &str,
2071 flags: &wit_bindgen_core::wit_parser::Flags,
2072 docs: &wit_bindgen_core::wit_parser::Docs,
2073 ) {
2074 let ty = &self.resolve.types[id];
2075 let guest_export = self.is_exported_type(ty);
2076 let namespc = namespace(self.resolve, &ty.owner, guest_export, &self.r#gen.opts);
2077 if self.r#gen.is_first_definition(&namespc, name) {
2078 self.r#gen.h_src.change_namespace(&namespc);
2079 Self::docs(&mut self.r#gen.h_src.src, docs);
2080 let pascal = name.to_pascal_case();
2081 let int_repr = wit_bindgen_c::int_repr(wit_bindgen_c::flags_repr(flags));
2082 uwriteln!(self.r#gen.h_src.src, "enum class {pascal} : {int_repr} {{");
2083 uwriteln!(self.r#gen.h_src.src, "k_None = 0,");
2084 for (n, field) in flags.flags.iter().enumerate() {
2085 Self::docs(&mut self.r#gen.h_src.src, &field.docs);
2086 let fname = to_c_ident(&field.name).to_pascal_case();
2087 uwriteln!(self.r#gen.h_src.src, "k{fname} = (1ULL<<{n}),");
2088 }
2089 uwriteln!(self.r#gen.h_src.src, "}};");
2090 uwriteln!(
2091 self.r#gen.h_src.src,
2092 r#"static inline {pascal} operator|({pascal} a, {pascal} b) {{ return {pascal}({int_repr}(a)|{int_repr}(b)); }}
2093 static inline {pascal} operator&({pascal} a, {pascal} b) {{ return {pascal}({int_repr}(a)&{int_repr}(b)); }}"#
2094 );
2095 }
2096 }
2097
2098 fn type_tuple(
2099 &mut self,
2100 _id: TypeId,
2101 _name: &str,
2102 _flags: &wit_bindgen_core::wit_parser::Tuple,
2103 _docs: &wit_bindgen_core::wit_parser::Docs,
2104 ) {
2105 }
2107
2108 fn type_variant(
2109 &mut self,
2110 id: TypeId,
2111 name: &str,
2112 variant: &wit_bindgen_core::wit_parser::Variant,
2113 docs: &wit_bindgen_core::wit_parser::Docs,
2114 ) {
2115 let ty = &self.resolve.types[id];
2116 let guest_export = self.is_exported_type(ty);
2117 let namespc = namespace(self.resolve, &ty.owner, guest_export, &self.r#gen.opts);
2118 if self.r#gen.is_first_definition(&namespc, name) {
2119 self.r#gen.h_src.change_namespace(&namespc);
2120 Self::docs(&mut self.r#gen.h_src.src, docs);
2121 let pascal = name.to_pascal_case();
2122 uwriteln!(self.r#gen.h_src.src, "struct {pascal} {{");
2123 let mut inner_namespace = namespc.clone();
2124 inner_namespace.push(pascal.clone());
2125 let mut all_types = String::new();
2126 for case in variant.cases.iter() {
2127 Self::docs(&mut self.r#gen.h_src.src, &case.docs);
2128 let case_pascal = to_c_ident(&case.name).to_pascal_case();
2129 if !all_types.is_empty() {
2130 all_types += ", ";
2131 }
2132 all_types += &case_pascal;
2133 uwrite!(self.r#gen.h_src.src, "struct {case_pascal} {{");
2134 if let Some(ty) = case.ty.as_ref() {
2135 let typestr = self.type_name(ty, &inner_namespace, Flavor::InStruct);
2136 uwrite!(self.r#gen.h_src.src, " {typestr} value; ")
2137 }
2138 uwriteln!(self.r#gen.h_src.src, "}};");
2139 }
2140 uwriteln!(
2141 self.r#gen.h_src.src,
2142 " std::variant<{all_types}> variants;"
2143 );
2144 uwriteln!(self.r#gen.h_src.src, "}};");
2145 self.r#gen.dependencies.needs_variant = true;
2146 }
2147 }
2148
2149 fn type_option(
2150 &mut self,
2151 _id: TypeId,
2152 _name: &str,
2153 _payload: &wit_bindgen_core::wit_parser::Type,
2154 _docs: &wit_bindgen_core::wit_parser::Docs,
2155 ) {
2156 }
2158
2159 fn type_result(
2160 &mut self,
2161 _id: TypeId,
2162 _name: &str,
2163 _result: &wit_bindgen_core::wit_parser::Result_,
2164 _docs: &wit_bindgen_core::wit_parser::Docs,
2165 ) {
2166 }
2168
2169 fn type_enum(
2170 &mut self,
2171 id: TypeId,
2172 name: &str,
2173 enum_: &wit_bindgen_core::wit_parser::Enum,
2174 docs: &wit_bindgen_core::wit_parser::Docs,
2175 ) {
2176 let ty = &self.resolve.types[id];
2177 let guest_export = self.is_exported_type(ty);
2178 let namespc = namespace(self.resolve, &ty.owner, guest_export, &self.r#gen.opts);
2179 if self.r#gen.is_first_definition(&namespc, name) {
2180 self.r#gen.h_src.change_namespace(&namespc);
2181 let pascal = name.to_pascal_case();
2182 Self::docs(&mut self.r#gen.h_src.src, docs);
2183 let int_t = wit_bindgen_c::int_repr(enum_.tag());
2184 uwriteln!(self.r#gen.h_src.src, "enum class {pascal} : {int_t} {{");
2185 for (i, case) in enum_.cases.iter().enumerate() {
2186 Self::docs(&mut self.r#gen.h_src.src, &case.docs);
2187 uwriteln!(
2188 self.r#gen.h_src.src,
2189 " k{} = {i},",
2190 to_c_ident(&case.name).to_pascal_case(),
2191 );
2192 }
2193 uwriteln!(self.r#gen.h_src.src, "}};\n");
2194 }
2195 }
2196
2197 fn type_alias(
2198 &mut self,
2199 id: TypeId,
2200 name: &str,
2201 alias_type: &wit_bindgen_core::wit_parser::Type,
2202 docs: &wit_bindgen_core::wit_parser::Docs,
2203 ) {
2204 let ty = &self.resolve.types[id];
2205 let guest_export = self.is_exported_type(ty);
2206 let namespc = namespace(self.resolve, &ty.owner, guest_export, &self.r#gen.opts);
2207 self.r#gen.h_src.change_namespace(&namespc);
2208 let pascal = name.to_pascal_case();
2209 Self::docs(&mut self.r#gen.h_src.src, docs);
2210 let typename = self.type_name(alias_type, &namespc, Flavor::InStruct);
2211 uwriteln!(self.r#gen.h_src.src, "using {pascal} = {typename};");
2212 }
2213
2214 fn type_list(
2215 &mut self,
2216 _id: TypeId,
2217 _name: &str,
2218 _ty: &wit_bindgen_core::wit_parser::Type,
2219 _docs: &wit_bindgen_core::wit_parser::Docs,
2220 ) {
2221 }
2223
2224 fn type_builtin(
2225 &mut self,
2226 _id: TypeId,
2227 _name: &str,
2228 _ty: &wit_bindgen_core::wit_parser::Type,
2229 _docs: &wit_bindgen_core::wit_parser::Docs,
2230 ) {
2231 todo!()
2232 }
2233
2234 fn type_future(&mut self, _id: TypeId, _name: &str, _ty: &Option<Type>, _docs: &Docs) {
2235 todo!()
2236 }
2237
2238 fn type_stream(&mut self, _id: TypeId, _name: &str, _ty: &Option<Type>, _docs: &Docs) {
2239 todo!()
2240 }
2241}
2242
2243struct CabiPostInformation {
2244 module: String,
2245 name: String,
2246 ret_type: String,
2247}
2248
2249struct FunctionBindgen<'a, 'b> {
2250 r#gen: &'b mut CppInterfaceGenerator<'a>,
2251 params: Vec<String>,
2252 tmp: usize,
2253 namespace: Vec<String>,
2254 src: Source,
2255 block_storage: Vec<wit_bindgen_core::Source>,
2256 blocks: Vec<(String, Vec<String>)>,
2258 payloads: Vec<String>,
2259 variant: AbiVariant,
2261 cabi_post: Option<CabiPostInformation>,
2262 needs_dealloc: bool,
2263 leak_on_insertion: Option<String>,
2264 return_pointer_area_size: ArchitectureSize,
2265 return_pointer_area_align: Alignment,
2266}
2267
2268impl<'a, 'b> FunctionBindgen<'a, 'b> {
2269 fn new(r#gen: &'b mut CppInterfaceGenerator<'a>, params: Vec<String>) -> Self {
2270 Self {
2271 r#gen,
2272 params,
2273 tmp: 0,
2274 namespace: Default::default(),
2275 src: Default::default(),
2276 block_storage: Default::default(),
2277 blocks: Default::default(),
2278 payloads: Default::default(),
2279 variant: AbiVariant::GuestImport,
2280 cabi_post: None,
2281 needs_dealloc: false,
2282 leak_on_insertion: None,
2283 return_pointer_area_size: Default::default(),
2284 return_pointer_area_align: Default::default(),
2285 }
2286 }
2287
2288 fn tmp(&mut self) -> usize {
2289 let ret = self.tmp;
2290 self.tmp += 1;
2291 ret
2292 }
2293
2294 fn tempname(&self, base: &str, idx: usize) -> String {
2295 format!("{base}{idx}")
2296 }
2297
2298 fn push_str(&mut self, s: &str) {
2299 self.src.push_str(s);
2300 }
2301
2302 fn let_results(&mut self, amt: usize, results: &mut Vec<String>) {
2303 if amt > 0 {
2304 let tmp = self.tmp();
2305 let res = format!("result{tmp}");
2306 self.push_str("auto ");
2307 self.push_str(&res);
2308 self.push_str(" = ");
2309 if amt == 1 {
2310 results.push(res);
2311 } else {
2312 for i in 0..amt {
2313 results.push(format!("std::get<{i}>({res})"));
2314 }
2315 }
2316 }
2317 }
2318
2319 fn load(
2320 &mut self,
2321 ty: &str,
2322 offset: ArchitectureSize,
2323 operands: &[String],
2324 results: &mut Vec<String>,
2325 ) {
2326 results.push(format!(
2327 "*(({}*) ({} + {}))",
2328 ty,
2329 operands[0],
2330 offset.format(POINTER_SIZE_EXPRESSION)
2331 ));
2332 }
2333
2334 fn load_ext(
2335 &mut self,
2336 ty: &str,
2337 offset: ArchitectureSize,
2338 operands: &[String],
2339 results: &mut Vec<String>,
2340 ) {
2341 self.load(ty, offset, operands, results);
2342 let result = results.pop().unwrap();
2343 results.push(format!("(int32_t) ({result})"));
2344 }
2345
2346 fn store(&mut self, ty: &str, offset: ArchitectureSize, operands: &[String]) {
2347 uwriteln!(
2348 self.src,
2349 "*(({}*)({} + {})) = {};",
2350 ty,
2351 operands[1],
2352 offset.format(POINTER_SIZE_EXPRESSION),
2353 operands[0]
2354 );
2355 }
2356
2357 fn emit_ret_area_if_needed(&self) -> String {
2370 if !self.return_pointer_area_size.is_empty() {
2371 let size_string = self
2372 .return_pointer_area_size
2373 .format(POINTER_SIZE_EXPRESSION);
2374 let tp = match self.return_pointer_area_align {
2375 Alignment::Bytes(bytes) => match bytes.get() {
2376 1 => "uint8_t",
2377 2 => "uint16_t",
2378 4 => "uint32_t",
2379 8 => "uint64_t",
2380 _ => "uint8_t",
2384 },
2385 Alignment::Pointer => "uintptr_t",
2386 };
2387 let static_var = if self.r#gen.in_guest_import {
2388 ""
2389 } else {
2390 "static "
2391 };
2392 format!("{static_var}{tp} ret_area[({size_string}+sizeof({tp})-1)/sizeof({tp})];\n")
2393 } else {
2394 String::new()
2395 }
2396 }
2397}
2398
2399fn move_if_necessary(arg: &str) -> String {
2400 if !arg.is_empty() && arg.chars().all(char::is_alphanumeric) {
2402 format!("std::move({arg})")
2403 } else {
2404 arg.into()
2405 }
2406}
2407
2408impl<'a, 'b> Bindgen for FunctionBindgen<'a, 'b> {
2409 type Operand = String;
2410
2411 fn emit(
2412 &mut self,
2413 _resolve: &Resolve,
2414 inst: &wit_bindgen_core::abi::Instruction<'_>,
2415 operands: &mut Vec<Self::Operand>,
2416 results: &mut Vec<Self::Operand>,
2417 ) {
2418 let mut top_as = |cvt: &str| {
2419 results.push(format!("({cvt}({}))", operands.pop().unwrap()));
2420 };
2421
2422 match inst {
2423 abi::Instruction::GetArg { nth } => {
2424 if *nth == 0 && self.params[0].as_str() == "self" {
2425 if self.r#gen.in_guest_import {
2426 results.push("(*this)".to_string());
2427 } else {
2428 results.push("(*lookup_resource(self))".to_string());
2429 }
2430 } else {
2431 results.push(self.params[*nth].clone());
2432 }
2433 }
2434 abi::Instruction::I32Const { val } => results.push(format!("(int32_t({val}))")),
2435 abi::Instruction::Bitcasts { casts } => {
2436 for (cast, op) in casts.iter().zip(operands) {
2437 results.push(self.r#gen.r#gen.perform_cast(op, cast));
2439 }
2440 }
2441 abi::Instruction::ConstZero { tys } => {
2442 for ty in tys.iter() {
2443 match ty {
2444 WasmType::I32 => results.push("int32_t(0)".to_string()),
2445 WasmType::I64 => results.push("int64_t(0)".to_string()),
2446 WasmType::F32 => results.push("0.0f".to_string()),
2447 WasmType::F64 => results.push("0.0".to_string()),
2448 WasmType::Length => results.push("size_t(0)".to_string()),
2449 WasmType::Pointer => results.push("nullptr".to_string()),
2450 WasmType::PointerOrI64 => results.push("int64_t(0)".to_string()),
2451 }
2452 }
2453 }
2454 abi::Instruction::I32Load { offset } => {
2455 let tmp = self.tmp();
2456 uwriteln!(
2457 self.src,
2458 "int32_t l{tmp} = *((int32_t const*)({} + {offset}));",
2459 operands[0],
2460 offset = offset.format(POINTER_SIZE_EXPRESSION)
2461 );
2462 results.push(format!("l{tmp}"));
2463 }
2464 abi::Instruction::I32Load8U { offset } => {
2465 self.load_ext("uint8_t", *offset, operands, results)
2466 }
2467 abi::Instruction::I32Load8S { offset } => {
2468 self.load_ext("int8_t", *offset, operands, results)
2469 }
2470 abi::Instruction::I32Load16U { offset } => {
2471 self.load_ext("uint16_t", *offset, operands, results)
2472 }
2473 abi::Instruction::I32Load16S { offset } => {
2474 self.load_ext("int16_t", *offset, operands, results)
2475 }
2476 abi::Instruction::I64Load { offset } => {
2477 self.load("int64_t", *offset, operands, results)
2478 }
2479 abi::Instruction::F32Load { offset } => self.load("float", *offset, operands, results),
2480 abi::Instruction::F64Load { offset } => self.load("double", *offset, operands, results),
2481 abi::Instruction::I32Store { offset } => self.store("int32_t", *offset, operands),
2482 abi::Instruction::I32Store8 { offset } => self.store("int8_t", *offset, operands),
2483 abi::Instruction::I32Store16 { offset } => self.store("int16_t", *offset, operands),
2484 abi::Instruction::I64Store { offset } => self.store("int64_t", *offset, operands),
2485 abi::Instruction::F32Store { offset } => self.store("float", *offset, operands),
2486 abi::Instruction::F64Store { offset } => self.store("double", *offset, operands),
2487 abi::Instruction::I32FromChar
2488 | abi::Instruction::I32FromBool
2489 | abi::Instruction::I32FromU8
2490 | abi::Instruction::I32FromS8
2491 | abi::Instruction::I32FromU16
2492 | abi::Instruction::I32FromS16
2493 | abi::Instruction::I32FromU32
2494 | abi::Instruction::I32FromS32 => top_as("int32_t"),
2495 abi::Instruction::I64FromU64 | abi::Instruction::I64FromS64 => top_as("int64_t"),
2496 abi::Instruction::F32FromCoreF32 => top_as("float"),
2497 abi::Instruction::F64FromCoreF64 => top_as("double"),
2498 abi::Instruction::S8FromI32 => top_as("int8_t"),
2499 abi::Instruction::U8FromI32 => top_as("uint8_t"),
2500 abi::Instruction::S16FromI32 => top_as("int16_t"),
2501 abi::Instruction::U16FromI32 => top_as("uint16_t"),
2502 abi::Instruction::S32FromI32 => top_as("int32_t"),
2503 abi::Instruction::U32FromI32 => top_as("uint32_t"),
2504 abi::Instruction::S64FromI64 => top_as("int64_t"),
2505 abi::Instruction::U64FromI64 => top_as("uint64_t"),
2506 abi::Instruction::CharFromI32 => top_as("uint32_t"),
2507 abi::Instruction::CoreF32FromF32 => top_as("float"),
2508 abi::Instruction::CoreF64FromF64 => top_as("double"),
2509 abi::Instruction::BoolFromI32 => top_as("bool"),
2510 abi::Instruction::ListCanonLower { realloc, .. } => {
2511 let tmp = self.tmp();
2512 let val = format!("vec{tmp}");
2513 let ptr = format!("ptr{tmp}");
2514 let len = format!("len{tmp}");
2515 self.push_str(&format!("auto&& {} = {};\n", val, operands[0]));
2516 self.push_str(&format!(
2517 "auto {} = ({})({}.data());\n",
2518 ptr,
2519 self.r#gen.r#gen.opts.ptr_type(),
2520 val
2521 ));
2522 self.push_str(&format!("auto {len} = (size_t)({val}.size());\n"));
2523 if realloc.is_none() {
2524 results.push(ptr);
2525 } else {
2526 uwriteln!(self.src, "{}.leak();\n", operands[0]);
2527 results.push(ptr);
2528 }
2529 results.push(len);
2530 }
2531 abi::Instruction::StringLower { realloc } => {
2532 let tmp = self.tmp();
2533 let val = format!("vec{tmp}");
2534 let ptr = format!("ptr{tmp}");
2535 let len = format!("len{tmp}");
2536 self.push_str(&format!("auto&& {} = {};\n", val, operands[0]));
2537 self.push_str(&format!(
2538 "auto {} = ({})({}.data());\n",
2539 ptr,
2540 self.r#gen.r#gen.opts.ptr_type(),
2541 val
2542 ));
2543 self.push_str(&format!("auto {len} = (size_t)({val}.size());\n"));
2544 if realloc.is_none() {
2545 results.push(ptr);
2546 } else {
2547 uwriteln!(self.src, "{}.leak();\n", operands[0]);
2548 results.push(ptr);
2549 }
2550 results.push(len);
2551 }
2552 abi::Instruction::ListLower { element, realloc } => {
2553 let tmp = self.tmp();
2554 let body = self.blocks.pop().unwrap();
2555 let val = format!("vec{tmp}");
2556 let ptr = format!("ptr{tmp}");
2557 let len = format!("len{tmp}");
2558 let size = self.r#gen.sizes.size(element);
2559 self.push_str(&format!("auto&& {} = {};\n", val, operands[0]));
2560 self.push_str(&format!(
2561 "auto {} = ({})({}.data());\n",
2562 ptr,
2563 self.r#gen.r#gen.opts.ptr_type(),
2564 val
2565 ));
2566 self.push_str(&format!("auto {len} = (size_t)({val}.size());\n"));
2567 self.push_str(&format!("for (size_t i = 0; i < {len}; ++i) {{\n"));
2568 self.push_str(&format!(
2569 "auto base = {ptr} + i * {size};\n",
2570 size = size.format(POINTER_SIZE_EXPRESSION)
2571 ));
2572 self.push_str(&format!("auto&& iter_elem = {val}[i];\n"));
2573 self.push_str(&format!("{}\n", body.0));
2574 self.push_str("}\n");
2575 if realloc.is_none() {
2576 results.push(ptr);
2577 } else {
2578 uwriteln!(self.src, "{}.leak();\n", operands[0]);
2579 results.push(ptr);
2580 }
2581 results.push(len);
2582 }
2583 abi::Instruction::ListCanonLift { element, .. } => {
2584 let tmp = self.tmp();
2585 let len = format!("len{tmp}");
2586 let inner = self
2587 .r#gen
2588 .type_name(element, &self.namespace, Flavor::InStruct);
2589 self.push_str(&format!("auto {} = {};\n", len, operands[1]));
2590 let result = if self.r#gen.r#gen.opts.api_style == APIStyle::Symmetric
2591 && matches!(self.variant, AbiVariant::GuestExport)
2592 {
2593 format!(
2594 "wit::vector<{inner} const>(({inner}*)({}), {len}).get_view()",
2595 operands[0]
2596 )
2597 } else {
2598 format!("wit::vector<{inner}>(({inner}*)({}), {len})", operands[0])
2599 };
2600 results.push(result);
2601 }
2602 abi::Instruction::StringLift => {
2603 let tmp = self.tmp();
2604 let len = format!("len{tmp}");
2605 uwriteln!(self.src, "auto {} = {};\n", len, operands[1]);
2606 let result = if self.r#gen.r#gen.opts.api_style == APIStyle::Symmetric
2607 && matches!(self.variant, AbiVariant::GuestExport)
2608 {
2609 assert!(self.needs_dealloc);
2610 uwriteln!(
2611 self.src,
2612 "if ({len}>0) _deallocate.push_back({});\n",
2613 operands[0]
2614 );
2615 format!("std::string_view((char const*)({}), {len})", operands[0])
2616 } else {
2617 format!("wit::string((char const*)({}), {len})", operands[0])
2618 };
2619 results.push(result);
2620 }
2621 abi::Instruction::ListLift { element, .. } => {
2622 let body = self.blocks.pop().unwrap();
2623 let tmp = self.tmp();
2624 let size = self.r#gen.sizes.size(element);
2625 let _align = self.r#gen.sizes.align(element);
2626 let flavor = if self.r#gen.r#gen.opts.api_style == APIStyle::Symmetric
2627 && matches!(self.variant, AbiVariant::GuestExport)
2628 {
2629 Flavor::BorrowedArgument
2630 } else {
2631 Flavor::InStruct
2632 };
2633 let vtype = self.r#gen.type_name(element, &self.namespace, flavor);
2634 let len = format!("len{tmp}");
2635 let base = format!("base{tmp}");
2636 let result = format!("result{tmp}");
2637 self.push_str(&format!(
2638 "auto {base} = {operand0};\n",
2639 operand0 = operands[0]
2640 ));
2641 self.push_str(&format!(
2642 "auto {len} = {operand1};\n",
2643 operand1 = operands[1]
2644 ));
2645 self.push_str(&format!(
2646 r#"auto {result} = wit::vector<{vtype}>::allocate({len});
2647 "#,
2648 ));
2649
2650 if self.r#gen.r#gen.opts.api_style == APIStyle::Symmetric
2651 && matches!(self.variant, AbiVariant::GuestExport)
2652 {
2653 assert!(self.needs_dealloc);
2654 self.push_str(&format!("if ({len}>0) _deallocate.push_back({base});\n"));
2655 }
2656
2657 uwriteln!(self.src, "for (unsigned i=0; i<{len}; ++i) {{");
2658 uwriteln!(
2659 self.src,
2660 "auto base = {base} + i * {size};",
2661 size = size.format(POINTER_SIZE_EXPRESSION)
2662 );
2663 uwrite!(self.src, "{}", body.0);
2664 uwriteln!(self.src, "auto e{tmp} = {};", move_if_necessary(&body.1[0]));
2665 if let Some(code) = self.leak_on_insertion.take() {
2666 assert!(self.needs_dealloc);
2667 uwriteln!(self.src, "{code}");
2668 }
2669 uwriteln!(self.src, "{result}.initialize(i, std::move(e{tmp}));");
2671 uwriteln!(self.src, "}}");
2672
2673 if self.r#gen.r#gen.opts.api_style == APIStyle::Symmetric
2674 && matches!(self.variant, AbiVariant::GuestExport)
2675 {
2676 results.push(format!("{result}.get_const_view()"));
2677 if self.r#gen.r#gen.opts.api_style == APIStyle::Symmetric
2678 && matches!(self.variant, AbiVariant::GuestExport)
2679 {
2680 self.leak_on_insertion.replace(format!(
2681 "if ({len}>0) _deallocate.push_back((void*){result}.leak());\n"
2682 ));
2683 }
2684 } else {
2685 results.push(move_if_necessary(&result));
2686 }
2687 }
2688 abi::Instruction::FixedLengthListLift {
2689 element,
2690 size,
2691 id: _,
2692 } => {
2693 let tmp = self.tmp();
2694 let result = format!("result{tmp}");
2695 let typename = self
2696 .r#gen
2697 .type_name(element, &self.namespace, Flavor::InStruct);
2698 self.push_str(&format!("std::array<{typename}, {size}> {result} = {{",));
2699 for a in operands.drain(0..(*size as usize)) {
2700 self.push_str(&a);
2701 self.push_str(", ");
2702 }
2703 self.push_str("};\n");
2704 results.push(result);
2705 }
2706 abi::Instruction::FixedLengthListLiftFromMemory {
2707 element,
2708 size: elemsize,
2709 id: _,
2710 } => {
2711 let body = self.blocks.pop().unwrap();
2712 let tmp = self.tmp();
2713 let vec = format!("array{tmp}");
2714 let source = operands[0].clone();
2715 let size = self.r#gen.sizes.size(element);
2716 let size_str = size.format(POINTER_SIZE_EXPRESSION);
2717 let typename = self
2718 .r#gen
2719 .type_name(element, &self.namespace, Flavor::InStruct);
2720 let ptr_type = self.r#gen.r#gen.opts.ptr_type();
2721 self.push_str(&format!("std::array<{typename}, {elemsize}> {vec};\n"));
2722 self.push_str(&format!(
2723 "{{
2724 {ptr_type} outer_base = {source};\n"
2725 ));
2726 let source: String = "outer_base".into();
2727 self.push_str(&format!("for (unsigned i = 0; i<{elemsize}; ++i) {{\n",));
2729 self.push_str(&format!("{ptr_type} base = {source} + i * {size_str};\n"));
2730 self.push_str(&body.0);
2731 self.push_str(&format!("{vec}[i] = {};", body.1[0]));
2732 self.push_str("\n}\n}\n");
2733 results.push(vec);
2734 }
2735 abi::Instruction::FixedLengthListLower {
2736 element: _,
2737 size,
2738 id: _,
2739 } => {
2740 for i in 0..(*size as usize) {
2741 results.push(format!("{}[{i}]", operands[0]));
2742 }
2743 }
2744 abi::Instruction::FixedLengthListLowerToMemory {
2745 element,
2746 size: elemsize,
2747 id: _,
2748 } => {
2749 let body = self.blocks.pop().unwrap();
2750 let vec = operands[0].clone();
2751 let target = operands[1].clone();
2752 let size = self.r#gen.sizes.size(element);
2753 let size_str = size.format(POINTER_SIZE_EXPRESSION);
2754 let typename = self
2755 .r#gen
2756 .type_name(element, &self.namespace, Flavor::InStruct);
2757 let ptr_type = self.r#gen.r#gen.opts.ptr_type();
2758 self.push_str(&format!(
2759 "{{
2760 {ptr_type} outer_base = {target};\n"
2761 ));
2762 let target: String = "outer_base".into();
2763 self.push_str(&format!(
2764 "std::array<{typename}, {elemsize}>& outer_vec = {vec};\n"
2765 ));
2766 let vec: String = "outer_vec".into();
2767 self.push_str(&format!("for (unsigned i = 0; i<{vec}.size(); ++i) {{\n",));
2768 self.push_str(&format!(
2769 "{ptr_type} base = {target} + i * {size_str};
2770 {typename}& iter_elem = {vec}[i];\n"
2771 ));
2772 self.push_str(&body.0);
2773 self.push_str("\n}\n}\n");
2774 }
2775 abi::Instruction::IterElem { .. } => results.push("iter_elem".to_string()),
2776 abi::Instruction::IterBasePointer => results.push("base".to_string()),
2777 abi::Instruction::RecordLower { record, .. } => {
2778 let op = &operands[0];
2779 for f in record.fields.iter() {
2780 results.push(format!("({}).{}", op, to_c_ident(&f.name)));
2781 }
2782 }
2783 abi::Instruction::RecordLift { record, ty, .. } => {
2784 let mut result =
2785 self.r#gen
2786 .type_name(&Type::Id(*ty), &self.namespace, Flavor::InStruct);
2787 result.push('{');
2788 for (_field, val) in record.fields.iter().zip(operands) {
2789 result.push_str(&(move_if_necessary(val) + ", "));
2790 }
2791 result.push('}');
2792 results.push(result);
2793 }
2794 abi::Instruction::HandleLower {
2795 handle: Handle::Own(ty),
2796 ..
2797 } => {
2798 let op = &operands[0];
2799
2800 let resource_ty = &self.r#gen.resolve.types[*ty];
2802 let resource_ty = match &resource_ty.kind {
2803 TypeDefKind::Type(Type::Id(id)) => &self.r#gen.resolve.types[*id],
2804 _ => resource_ty,
2805 };
2806 let is_exported = self.r#gen.is_exported_type(resource_ty);
2807
2808 if is_exported {
2809 results.push(format!("{op}.release()->handle"));
2811 } else {
2812 results.push(format!("{op}.into_handle()"));
2814 }
2815 }
2816 abi::Instruction::HandleLower {
2817 handle: Handle::Borrow(_),
2818 ..
2819 } => {
2820 let op = &operands[0];
2821 if op == "(*this)" {
2822 results.push(format!("{op}.get_handle()"));
2824 } else {
2825 results.push(format!("{op}.get().get_handle()"));
2826 }
2827 }
2828 abi::Instruction::HandleLift { handle, .. } => {
2829 let op = &operands[0];
2830 match (handle, false) {
2831 (Handle::Own(ty), true) => match self.variant {
2832 AbiVariant::GuestExport => {
2833 results.push(format!("wit::{RESOURCE_EXPORT_BASE_CLASS_NAME}{{{op}}}"))
2834 }
2835 AbiVariant::GuestImport => {
2836 let tmp = self.tmp();
2837 let var = self.tempname("obj", tmp);
2838 let tname = self.r#gen.type_name(
2839 &Type::Id(*ty),
2840 &self.namespace,
2841 Flavor::Argument(self.variant),
2842 );
2843 uwriteln!(
2844 self.src,
2845 "auto {var} = {tname}::remove_resource({op});
2846 assert({var}.has_value());"
2847 );
2848 results.push(format!("{tname}::Owned(*{var})"));
2849 }
2850 AbiVariant::GuestImportAsync => todo!(),
2851 AbiVariant::GuestExportAsync => todo!(),
2852 AbiVariant::GuestExportAsyncStackful => todo!(),
2853 },
2854 (Handle::Own(ty), false) => match self.variant {
2855 AbiVariant::GuestImport => {
2856 results.push(format!("wit::{RESOURCE_IMPORT_BASE_CLASS_NAME}{{{op}}}"))
2857 }
2858 AbiVariant::GuestExport => {
2859 let tmp = self.tmp();
2860 let var = self.tempname("obj", tmp);
2861 let tname = self.r#gen.type_name(
2862 &Type::Id(*ty),
2863 &self.namespace,
2864 Flavor::Argument(self.variant),
2865 );
2866
2867 let resource_ty = &self.r#gen.resolve.types[*ty];
2869 let resource_ty = match &resource_ty.kind {
2870 TypeDefKind::Type(Type::Id(id)) => &self.r#gen.resolve.types[*id],
2871 _ => resource_ty,
2872 };
2873 let is_exported = self.r#gen.is_exported_type(resource_ty);
2874
2875 if is_exported {
2876 uwriteln!(
2878 self.src,
2879 "auto {var} = {tname}::Owned({tname}::ResourceRep({op}));"
2880 );
2881 } else {
2882 uwriteln!(
2884 self.src,
2885 "auto {var} = {tname}(wit::{RESOURCE_IMPORT_BASE_CLASS_NAME}{{{op}}});"
2886 );
2887 }
2888
2889 results.push(format!("std::move({var})"))
2890 }
2891 AbiVariant::GuestImportAsync => todo!(),
2892 AbiVariant::GuestExportAsync => todo!(),
2893 AbiVariant::GuestExportAsyncStackful => todo!(),
2894 },
2895 (Handle::Borrow(ty), true) => {
2896 let tname = self.r#gen.type_name(
2897 &Type::Id(*ty),
2898 &self.namespace,
2899 Flavor::Argument(self.variant),
2900 );
2901 results.push(format!("**{tname}::lookup_resource({op})"));
2902 }
2903 (Handle::Borrow(ty), false) => match self.variant {
2904 AbiVariant::GuestImport => results.push(op.clone()),
2905 AbiVariant::GuestExport => {
2906 let tname = self.r#gen.type_name(
2907 &Type::Id(*ty),
2908 &self.namespace,
2909 Flavor::Argument(self.variant),
2910 );
2911 results.push(format!("std::ref(*({tname} *){op})"));
2912 }
2913 AbiVariant::GuestImportAsync => todo!(),
2914 AbiVariant::GuestExportAsync => todo!(),
2915 AbiVariant::GuestExportAsyncStackful => todo!(),
2916 },
2917 }
2918 }
2919 abi::Instruction::TupleLower { tuple, .. } => {
2920 let op = &operands[0];
2921 for n in 0..tuple.types.len() {
2922 results.push(format!("std::get<{n}>({op})"));
2923 }
2924 }
2925 abi::Instruction::TupleLift { tuple, .. } => {
2926 let name = format!("tuple{}", self.tmp());
2927 uwrite!(self.src, "auto {name} = std::tuple<");
2928 self.src.push_str(
2929 &(tuple
2930 .types
2931 .iter()
2932 .map(|t| self.r#gen.type_name(t, &self.namespace, Flavor::InStruct)))
2933 .collect::<Vec<_>>()
2934 .join(", "),
2935 );
2936 self.src.push_str(">(");
2937 self.src.push_str(
2938 &operands
2939 .iter()
2940 .map(|op| move_if_necessary(op))
2941 .collect::<Vec<_>>()
2942 .join(", "),
2943 );
2944 self.src.push_str(");\n");
2945 results.push(format!("std::move({name})"));
2946 }
2947 abi::Instruction::FlagsLower { flags, ty, .. } => {
2948 match wit_bindgen_c::flags_repr(flags) {
2949 Int::U8 | Int::U16 | Int::U32 => {
2950 results.push(format!("((int32_t){})", operands.pop().unwrap()));
2951 }
2952 Int::U64 => {
2953 let name =
2954 self.r#gen
2955 .type_name(&Type::Id(*ty), &self.namespace, Flavor::InStruct);
2956 let tmp = self.tmp();
2957 let tempname = self.tempname("flags", tmp);
2958 uwriteln!(self.src, "{name} {tempname} = {};", operands[0]);
2959 results.push(format!("(int32_t)(((uint64_t){tempname}) & 0xffffffff)"));
2960 results.push(format!(
2961 "(int32_t)((((uint64_t){tempname}) >> 32) & 0xffffffff)"
2962 ));
2963 }
2964 }
2965 }
2966 abi::Instruction::FlagsLift { flags, ty, .. } => {
2967 let typename =
2968 self.r#gen
2969 .type_name(&Type::Id(*ty), &self.namespace, Flavor::InStruct);
2970 match wit_bindgen_c::flags_repr(flags) {
2971 Int::U8 | Int::U16 | Int::U32 => {
2972 results.push(format!("(({typename}){})", operands.pop().unwrap()));
2973 }
2974 Int::U64 => {
2975 let op0 = &operands[0];
2976 let op1 = &operands[1];
2977 results.push(format!(
2978 "(({typename})(({op0}) | (((uint64_t)({op1})) << 32)))"
2979 ));
2980 }
2981 }
2982 }
2983 abi::Instruction::VariantPayloadName => {
2984 let name = format!("payload{}", self.tmp());
2985 results.push(name.clone());
2986 self.payloads.push(name);
2987 }
2988 abi::Instruction::VariantLower {
2989 variant,
2990 results: result_types,
2991 ty: var_ty,
2992 name: _var_name,
2993 ..
2994 } => {
2995 let blocks = self
2996 .blocks
2997 .drain(self.blocks.len() - variant.cases.len()..)
2998 .collect::<Vec<_>>();
2999 let payloads = self
3000 .payloads
3001 .drain(self.payloads.len() - variant.cases.len()..)
3002 .collect::<Vec<_>>();
3003
3004 let mut variant_results = Vec::with_capacity(result_types.len());
3005 for ty in result_types.iter() {
3006 let name = format!("variant{}", self.tmp());
3007 results.push(name.clone());
3008 self.src.push_str(wit_bindgen_c::wasm_type(*ty));
3009 self.src.push_str(" ");
3010 self.src.push_str(&name);
3011 self.src.push_str(";\n");
3012 variant_results.push(name);
3013 }
3014
3015 let expr_to_match = format!("({}).variants.index()", operands[0]);
3016 let elem_ns =
3017 self.r#gen
3018 .type_name(&Type::Id(*var_ty), &self.namespace, Flavor::InStruct);
3019
3020 uwriteln!(self.src, "switch ((int32_t) {}) {{", expr_to_match);
3021 for (i, ((case, (block, block_results)), payload)) in
3022 variant.cases.iter().zip(blocks).zip(payloads).enumerate()
3023 {
3024 uwriteln!(self.src, "case {}: {{", i);
3025 if case.ty.is_some() {
3026 let case =
3027 format!("{elem_ns}::{}", to_c_ident(&case.name).to_pascal_case());
3028 uwriteln!(
3029 self.src,
3030 "auto& {} = std::get<{case}>({}.variants).value;",
3031 payload,
3032 operands[0],
3033 );
3034 }
3035
3036 self.src.push_str(&block);
3037
3038 for (name, result) in variant_results.iter().zip(&block_results) {
3039 uwriteln!(self.src, "{} = {};", name, result);
3040 }
3041 self.src.push_str("break;\n}\n");
3042 }
3043 self.src.push_str("}\n");
3044 }
3045 abi::Instruction::VariantLift { variant, ty, .. } => {
3046 let blocks = self
3047 .blocks
3048 .drain(self.blocks.len() - variant.cases.len()..)
3049 .collect::<Vec<_>>();
3050
3051 let ty = self
3052 .r#gen
3053 .type_name(&Type::Id(*ty), &self.namespace, Flavor::InStruct);
3054 let resultno = self.tmp();
3055 let result = format!("variant{resultno}");
3056
3057 let op0 = &operands[0];
3058
3059 self.r#gen.r#gen.dependencies.needs_optional = true;
3061 uwriteln!(self.src, "std::optional<{ty}> {result}_opt;");
3062 uwriteln!(self.src, "switch ({op0}) {{");
3063 for (i, (case, (block, block_results))) in
3064 variant.cases.iter().zip(blocks).enumerate()
3065 {
3066 let tp = to_c_ident(&case.name).to_pascal_case();
3067 uwriteln!(self.src, "case {i}: {{ {block}");
3068 uwriteln!(
3069 self.src,
3070 "{result}_opt = {ty}{{{{{ty}::{tp}{{{}}}}}}};",
3071 move_if_necessary(&block_results.first().cloned().unwrap_or_default())
3072 );
3073 uwriteln!(self.src, "}} break;");
3074 }
3075 uwriteln!(self.src, "}}");
3076 uwriteln!(self.src, "{ty} {result} = std::move(*{result}_opt);");
3077
3078 results.push(result);
3079 }
3080 abi::Instruction::EnumLower { .. } => results.push(format!("int32_t({})", operands[0])),
3081 abi::Instruction::EnumLift { ty, .. } => {
3082 let typename =
3083 self.r#gen
3084 .type_name(&Type::Id(*ty), &self.namespace, Flavor::InStruct);
3085 results.push(format!("({typename}){}", &operands[0]));
3086 }
3087 abi::Instruction::OptionLower {
3088 payload,
3089 results: result_types,
3090 ..
3091 } => {
3092 let (mut some, some_results) = self.blocks.pop().unwrap();
3093 let (mut none, none_results) = self.blocks.pop().unwrap();
3094 let some_payload = self.payloads.pop().unwrap();
3095 let _none_payload = self.payloads.pop().unwrap();
3096
3097 for (i, ty) in result_types.iter().enumerate() {
3098 let tmp = self.tmp();
3099 let name = self.tempname("option", tmp);
3100 results.push(name.clone());
3101 self.src.push_str(wit_bindgen_c::wasm_type(*ty));
3102 self.src.push_str(" ");
3103 self.src.push_str(&name);
3104 self.src.push_str(";\n");
3105 let some_result = &some_results[i];
3106 uwriteln!(some, "{name} = {some_result};");
3107 let none_result = &none_results[i];
3108 uwriteln!(none, "{name} = {none_result};");
3109 }
3110
3111 let op0 = &operands[0];
3112 let flavor = if matches!(self.variant, AbiVariant::GuestImport) {
3113 Flavor::BorrowedArgument
3114 } else {
3115 Flavor::InStruct
3116 };
3117 let ty = self.r#gen.type_name(payload, &self.namespace, flavor);
3118 let is_function_param = self.params.iter().any(|p| p == op0);
3119 let value_extract = if matches!(payload, Type::String)
3120 && matches!(self.variant, AbiVariant::GuestImport)
3121 && !is_function_param
3122 {
3123 format!("(std::move({op0})).value().get_view()")
3125 } else {
3126 format!("(std::move({op0})).value()")
3128 };
3129 let bind_some = format!("{ty} {some_payload} = {value_extract};");
3130
3131 uwrite!(
3132 self.src,
3133 "\
3134 if (({op0}).has_value()) {{
3135 {bind_some}
3136 {some}}} else {{
3137 {none}}}
3138 "
3139 );
3140 }
3141 abi::Instruction::OptionLift { payload, .. } => {
3142 let (some, some_results) = self.blocks.pop().unwrap();
3143 let (_none, none_results) = self.blocks.pop().unwrap();
3144 assert!(none_results.is_empty());
3145 assert!(some_results.len() == 1);
3146 let flavor = if self.r#gen.r#gen.opts.api_style == APIStyle::Symmetric
3147 && matches!(self.variant, AbiVariant::GuestExport)
3148 {
3149 Flavor::BorrowedArgument
3150 } else {
3151 Flavor::InStruct
3152 };
3153 let type_name = self.r#gen.type_name(payload, &self.namespace, flavor);
3154 let full_type = format!("std::optional<{type_name}>");
3155 let op0 = &operands[0];
3156
3157 let tmp = self.tmp();
3158 let resultname = self.tempname("option", tmp);
3159 let some_value = move_if_necessary(&some_results[0]);
3160 uwriteln!(
3161 self.src,
3162 "{full_type} {resultname};
3163 if ({op0}) {{
3164 {some}
3165 {resultname}.emplace({some_value});
3166 }}"
3167 );
3168 results.push(format!("std::move({resultname})"));
3169 }
3170 abi::Instruction::ResultLower {
3171 results: result_types,
3172 result,
3173 ..
3174 } => {
3175 let (mut err, err_results) = self.blocks.pop().unwrap();
3176 let (mut ok, ok_results) = self.blocks.pop().unwrap();
3177 let err_payload = self.payloads.pop().unwrap();
3178 let ok_payload = self.payloads.pop().unwrap();
3179
3180 for (i, ty) in result_types.iter().enumerate() {
3181 let tmp = self.tmp();
3182 let name = self.tempname("result", tmp);
3183 results.push(name.clone());
3184 self.src.push_str(wit_bindgen_c::wasm_type(*ty));
3185 self.src.push_str(" ");
3186 self.src.push_str(&name);
3187 self.src.push_str(";\n");
3188 let ok_result = &ok_results[i];
3189 uwriteln!(ok, "{name} = {ok_result};");
3190 let err_result = &err_results[i];
3191 uwriteln!(err, "{name} = {err_result};");
3192 }
3193
3194 let op0 = &operands[0];
3195 let ok_ty = self.r#gen.optional_type_name(
3196 result.ok.as_ref(),
3197 &self.namespace,
3198 Flavor::InStruct,
3199 );
3200 let err_ty = self.r#gen.optional_type_name(
3201 result.err.as_ref(),
3202 &self.namespace,
3203 Flavor::InStruct,
3204 );
3205 let bind_ok = if let Some(_ok) = result.ok.as_ref() {
3206 format!("{ok_ty} {ok_payload} = std::move({op0}).value();")
3207 } else {
3208 String::new()
3209 };
3210 let bind_err = if let Some(_err) = result.err.as_ref() {
3211 format!("{err_ty} {err_payload} = std::move({op0}).error();")
3212 } else {
3213 String::new()
3214 };
3215
3216 uwrite!(
3217 self.src,
3218 "\
3219 if (({op0}).has_value()) {{
3220 {bind_ok}
3221 {ok}}} else {{
3222 {bind_err}
3223 {err}}}
3224 "
3225 );
3226 }
3227 abi::Instruction::ResultLift { result, .. } => {
3228 let (mut err, err_results) = self.blocks.pop().unwrap();
3229 let (mut ok, ok_results) = self.blocks.pop().unwrap();
3230 let mut ok_result = String::new();
3231 let err_result;
3232 if result.ok.is_none() {
3233 ok.clear();
3234 } else {
3235 ok_result = move_if_necessary(&ok_results[0]);
3236 }
3237 if result.err.is_none() {
3238 err.clear();
3239 self.r#gen.r#gen.dependencies.needs_wit = true;
3240 err_result = String::from("wit::Void{}");
3241 } else {
3242 err_result = move_if_necessary(&err_results[0]);
3243 }
3244 let ok_type = self.r#gen.optional_type_name(
3245 result.ok.as_ref(),
3246 &self.namespace,
3247 Flavor::InStruct,
3248 );
3249 let err_type = result.err.as_ref().map_or(String::from("wit::Void"), |ty| {
3250 self.r#gen.type_name(ty, &self.namespace, Flavor::InStruct)
3251 });
3252 let full_type = format!("std::expected<{ok_type}, {err_type}>",);
3253 let err_type = "std::unexpected";
3254 let operand = &operands[0];
3255
3256 let tmp = self.tmp();
3257 let resultname = self.tempname("result", tmp);
3258 self.r#gen.r#gen.dependencies.needs_optional = true;
3260 let ok_assign = if result.ok.is_some() {
3261 format!("{resultname}_opt.emplace({full_type}({ok_result}));")
3262 } else {
3263 format!("{resultname}_opt.emplace({full_type}());")
3264 };
3265 uwriteln!(
3266 self.src,
3267 "std::optional<{full_type}> {resultname}_opt;
3268 if ({operand}==0) {{
3269 {ok}
3270 {ok_assign}
3271 }} else {{
3272 {err}
3273 {resultname}_opt.emplace({err_type}{{{err_result}}});
3274 }}
3275 {full_type} {resultname} = std::move(*{resultname}_opt);"
3276 );
3277 results.push(resultname);
3278 }
3279 abi::Instruction::CallWasm { name, sig } => {
3280 let module_name = self
3281 .r#gen
3282 .wasm_import_module
3283 .as_ref()
3284 .map(|e| {
3285 self.r#gen
3286 .r#gen
3287 .import_prefix
3288 .as_ref()
3289 .cloned()
3290 .unwrap_or_default()
3291 + e
3292 })
3293 .unwrap();
3294
3295 let func = self
3296 .r#gen
3297 .declare_import(&module_name, name, &sig.params, &sig.results);
3298
3299 if !sig.results.is_empty() {
3301 self.src.push_str("auto ret = ");
3302 results.push("ret".to_string());
3303 }
3304 self.src.push_str(&func);
3305 self.src.push_str("(");
3306 self.src.push_str(
3307 &operands
3308 .iter()
3309 .map(|op| move_if_necessary(op))
3310 .collect::<Vec<_>>()
3311 .join(", "),
3312 );
3313 self.src.push_str(");\n");
3314 }
3315 abi::Instruction::CallInterface { func, .. } => {
3316 self.let_results(if func.result.is_some() { 1 } else { 0 }, results);
3318 let (namespace, func_name_h) = self.r#gen.func_namespace_name(func, true, true);
3319 if matches!(func.kind, FunctionKind::Method(_)) {
3320 let this = operands.remove(0);
3321 uwrite!(self.src, "({this}).get().");
3322 } else {
3323 let mut relative = SourceWithState::default();
3324 relative.qualify(&namespace);
3325 self.push_str(&relative.src);
3326 }
3327 self.src.push_str(&func_name_h);
3328 self.push_str("(");
3329 self.push_str(
3330 &operands
3331 .iter()
3332 .map(|op| move_if_necessary(op))
3333 .collect::<Vec<_>>()
3334 .join(", "),
3335 );
3336 self.push_str(");\n");
3337 if self.needs_dealloc {
3338 uwriteln!(
3339 self.src,
3340 "for (auto i: _deallocate) {{ free(i); }}\n
3341 _deallocate.clear();"
3342 );
3343 }
3344 }
3345 abi::Instruction::Return { amt, func } => {
3346 match amt {
3347 0 => {}
3348 _ => {
3349 assert!(*amt == operands.len());
3350 let is_fallible_constructor = self
3352 .r#gen
3353 .r#gen
3354 .is_fallible_constructor(self.r#gen.resolve, func);
3355
3356 match &func.kind {
3357 FunctionKind::Constructor(_)
3358 if self.r#gen.r#gen.opts.is_only_handle(self.variant)
3359 && !is_fallible_constructor =>
3360 {
3361 if matches!(self.variant, AbiVariant::GuestExport) {
3363 self.src.push_str("this->index = ");
3364 } else {
3365 self.src.push_str("this->handle = ");
3366 }
3367 }
3368 _ => self.src.push_str("return "),
3369 }
3370 if let Some(CabiPostInformation {
3371 module: _,
3372 name: _cabi_post_name,
3373 ret_type: cabi_post_type,
3374 }) = self.cabi_post.as_ref()
3375 {
3376 self.src.push_str("wit::guest_owned<");
3377 self.src.push_str(cabi_post_type);
3378 self.src.push_str(">(");
3379 }
3380 if *amt == 1 {
3381 if operands[0].starts_with("std::move(") && !operands[0].contains('.') {
3382 self.src.push_str(&operands[0][9..]);
3384 } else {
3385 self.src.push_str(&operands[0]);
3386 }
3387 } else {
3388 todo!();
3389 }
3390 if let Some(CabiPostInformation {
3391 module: func_module,
3392 name: func_name,
3393 ret_type: _cabi_post_type,
3394 }) = self.cabi_post.as_ref()
3395 {
3396 let cabi_post_name = self.r#gen.declare_import(
3397 &format!("cabi_post_{func_module}"),
3398 func_name,
3399 &[WasmType::Pointer],
3400 &[],
3401 );
3402 self.src.push_str(&format!(", ret, {cabi_post_name})"));
3403 }
3404 if matches!(func.kind, FunctionKind::Constructor(_))
3405 && self.r#gen.r#gen.opts.is_only_handle(self.variant)
3406 && !is_fallible_constructor
3407 {
3408 self.src.push_str(".into_handle()");
3411 }
3412 self.src.push_str(";\n");
3413 }
3414 }
3415 }
3416 abi::Instruction::Malloc { .. } => todo!(),
3417 abi::Instruction::GuestDeallocate { .. } => {
3418 uwriteln!(self.src, "free((void*) ({}));", operands[0]);
3419 }
3420 abi::Instruction::GuestDeallocateString => {
3421 uwriteln!(self.src, "if (({}) > 0) {{", operands[1]);
3422 uwriteln!(
3423 self.src,
3424 "wit::string::drop_raw((void*) ({}));",
3425 operands[0]
3426 );
3427 uwriteln!(self.src, "}}");
3428 }
3429 abi::Instruction::GuestDeallocateList { element } => {
3430 let (body, results) = self.blocks.pop().unwrap();
3431 assert!(results.is_empty());
3432 let tmp = self.tmp();
3433 let ptr = self.tempname("ptr", tmp);
3434 let len = self.tempname("len", tmp);
3435 uwriteln!(self.src, "uint8_t* {ptr} = {};", operands[0]);
3436 uwriteln!(self.src, "size_t {len} = {};", operands[1]);
3437 let i = self.tempname("i", tmp);
3438 uwriteln!(self.src, "for (size_t {i} = 0; {i} < {len}; {i}++) {{");
3439 let size = self.r#gen.sizes.size(element);
3440 uwriteln!(
3441 self.src,
3442 "uint8_t* base = {ptr} + {i} * {size};",
3443 size = size.format(POINTER_SIZE_EXPRESSION)
3444 );
3445 uwriteln!(self.src, "(void) base;");
3446 uwrite!(self.src, "{body}");
3447 uwriteln!(self.src, "}}");
3448 uwriteln!(self.src, "if ({len} > 0) {{");
3449 uwriteln!(self.src, "free((void*) ({ptr}));");
3450 uwriteln!(self.src, "}}");
3451 }
3452 abi::Instruction::GuestDeallocateVariant { blocks } => {
3453 let blocks = self
3454 .blocks
3455 .drain(self.blocks.len() - blocks..)
3456 .collect::<Vec<_>>();
3457
3458 uwriteln!(self.src, "switch ((int32_t) {}) {{", operands[0]);
3459 for (i, (block, results)) in blocks.into_iter().enumerate() {
3460 assert!(results.is_empty());
3461 uwriteln!(self.src, "case {}: {{", i);
3462 self.src.push_str(&block);
3463 self.src.push_str("break;\n}\n");
3464 }
3465 self.src.push_str("}\n");
3466 }
3467 abi::Instruction::PointerLoad { offset } => {
3468 let ptr_type = self.r#gen.r#gen.opts.ptr_type();
3469 self.load(ptr_type, *offset, operands, results)
3470 }
3471 abi::Instruction::LengthLoad { offset } => {
3472 self.load("size_t", *offset, operands, results)
3473 }
3474 abi::Instruction::PointerStore { offset } => {
3475 let ptr_type = self.r#gen.r#gen.opts.ptr_type();
3476 self.store(ptr_type, *offset, operands)
3477 }
3478 abi::Instruction::LengthStore { offset } => self.store("size_t", *offset, operands),
3479 abi::Instruction::FutureLower { .. } => todo!(),
3480 abi::Instruction::FutureLift { .. } => todo!(),
3481 abi::Instruction::StreamLower { .. } => todo!(),
3482 abi::Instruction::StreamLift { .. } => todo!(),
3483 abi::Instruction::ErrorContextLower { .. } => todo!(),
3484 abi::Instruction::ErrorContextLift { .. } => todo!(),
3485 abi::Instruction::Flush { amt } => {
3486 for i in operands.iter().take(*amt) {
3487 let tmp = self.tmp();
3488 let result = format!("result{tmp}");
3489 uwriteln!(self.src, "auto {result} = {};", move_if_necessary(i));
3490 results.push(result);
3491 }
3492 }
3493 abi::Instruction::AsyncTaskReturn { .. } => todo!(),
3494 abi::Instruction::DropHandle { .. } => todo!(),
3495 }
3496 }
3497
3498 fn return_pointer(&mut self, size: ArchitectureSize, align: Alignment) -> Self::Operand {
3499 self.return_pointer_area_size = self.return_pointer_area_size.max(size);
3501 self.return_pointer_area_align = self.return_pointer_area_align.max(align);
3502
3503 let tmp = self.tmp();
3505 uwriteln!(
3506 self.src,
3507 "{} ptr{tmp} = ({0})(&ret_area);",
3508 self.r#gen.r#gen.opts.ptr_type(),
3509 );
3510
3511 format!("ptr{tmp}")
3512 }
3513
3514 fn push_block(&mut self) {
3515 let prev = core::mem::take(&mut self.src);
3516 self.block_storage.push(prev);
3517 }
3518
3519 fn finish_block(&mut self, operands: &mut Vec<Self::Operand>) {
3520 let to_restore = self.block_storage.pop().unwrap();
3521 let src = core::mem::replace(&mut self.src, to_restore);
3522 self.blocks.push((src.into(), core::mem::take(operands)));
3523 }
3524
3525 fn sizes(&self) -> &wit_bindgen_core::wit_parser::SizeAlign {
3526 &self.r#gen.sizes
3527 }
3528
3529 fn is_list_canonical(
3530 &self,
3531 resolve: &Resolve,
3532 ty: &wit_bindgen_core::wit_parser::Type,
3533 ) -> bool {
3534 if !resolve.all_bits_valid(ty) {
3535 return false;
3536 }
3537 match ty {
3538 Type::Id(id) => !self.r#gen.r#gen.types.get(*id).has_resource,
3539 _ => true,
3540 }
3541 }
3542}
3543
3544enum SpecialMethod {
3546 None,
3547 ResourceDrop, ResourceNew, ResourceRep, Dtor, Allocate, }
3553
3554fn is_special_method(func: &Function) -> SpecialMethod {
3555 if matches!(func.kind, FunctionKind::Static(_)) {
3556 if func.name.starts_with("[resource-drop]") {
3557 SpecialMethod::ResourceDrop
3558 } else if func.name.starts_with("[resource-new]") {
3559 SpecialMethod::ResourceNew
3560 } else if func.name.starts_with("[resource-rep]") {
3561 SpecialMethod::ResourceRep
3562 } else if func.name.starts_with("[dtor]") {
3563 SpecialMethod::Dtor
3564 } else if func.name == "$alloc" {
3565 SpecialMethod::Allocate
3566 } else {
3567 SpecialMethod::None
3568 }
3569 } else {
3570 SpecialMethod::None
3571 }
3572}