1pub mod component_type_object;
2
3use anyhow::Result;
4use heck::*;
5use indexmap::IndexSet;
6use std::collections::{HashMap, HashSet};
7use std::fmt::Write;
8use std::mem;
9use wit_bindgen_core::abi::{
10 self, AbiVariant, Bindgen, Bitcast, Instruction, LiftLower, WasmSignature, WasmType,
11};
12use wit_bindgen_core::{
13 AnonymousTypeGenerator, AsyncFilterSet, Direction, Files, InterfaceGenerator as _, Ns,
14 WorldGenerator, dealias, uwrite, uwriteln, wit_parser::*,
15};
16use wit_component::StringEncoding;
17
18#[derive(Default)]
19struct C {
20 src: Source,
21 opts: Opts,
22 h_includes: Vec<String>,
23 c_includes: Vec<String>,
24 return_pointer_area_size: ArchitectureSize,
25 return_pointer_area_align: Alignment,
26 names: Ns,
27 needs_string: bool,
28 needs_union_int32_float: bool,
29 needs_union_float_int32: bool,
30 needs_union_int64_double: bool,
31 needs_union_double_int64: bool,
32 needs_async: bool,
33 prim_names: HashSet<String>,
34 world: String,
35 sizes: SizeAlign,
36 renamed_interfaces: HashMap<WorldKey, String>,
37
38 world_id: Option<WorldId>,
39 dtor_funcs: HashMap<TypeId, String>,
40 type_names: HashMap<TypeId, String>,
41 resources: HashMap<TypeId, ResourceInfo>,
42 futures: IndexSet<TypeId>,
43}
44
45#[derive(Default)]
46pub struct ResourceInfo {
47 pub direction: Direction,
48 own: String,
49 borrow: String,
50 drop_fn: String,
51}
52
53#[derive(Default, Debug, Eq, PartialEq, Clone, Copy)]
54#[cfg_attr(feature = "clap", derive(clap::ValueEnum))]
55pub enum Enabled {
56 #[default]
57 No,
58 Yes,
59}
60
61impl std::fmt::Display for Enabled {
62 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
63 match self {
64 Self::Yes => write!(f, "yes"),
65 Self::No => write!(f, "no"),
66 }
67 }
68}
69
70#[derive(Default, Debug, Clone)]
71#[cfg_attr(feature = "clap", derive(clap::Parser))]
72pub struct Opts {
73 #[cfg_attr(feature = "clap", arg(long))]
75 pub no_helpers: bool,
76
77 #[cfg_attr(
79 feature = "clap",
80 arg(
81 long,
82 default_value_t = StringEncoding::default(),
83 value_name = "ENCODING",
84 ),
85 )]
86 pub string_encoding: StringEncoding,
87
88 #[cfg_attr(feature = "clap", arg(long, default_value_t = false))]
91 pub no_sig_flattening: bool,
92
93 #[cfg_attr(feature = "clap", arg(long, default_value_t = false))]
96 pub no_object_file: bool,
97
98 #[cfg_attr(feature = "clap", arg(long, name = "K=V", value_parser = parse_rename))]
100 pub rename: Vec<(String, String)>,
101
102 #[cfg_attr(feature = "clap", arg(long, value_name = "NAME"))]
104 pub rename_world: Option<String>,
105
106 #[cfg_attr(feature = "clap", arg(long, value_name = "STRING"))]
109 pub type_section_suffix: Option<String>,
110
111 #[cfg_attr(
113 feature = "clap",
114 arg(
115 long,
116 default_value_t = Enabled::default(),
117 value_name = "ENABLED",
118 ),
119 )]
120 pub autodrop_borrows: Enabled,
121
122 #[cfg_attr(feature = "clap", clap(flatten))]
123 pub async_: AsyncFilterSet,
124
125 #[cfg_attr(feature = "clap", arg(long, default_value_t = false))]
127 pub generate_async_helpers: bool,
128
129 #[cfg_attr(feature = "clap", arg(long, default_value_t = false))]
131 pub generate_threading_helpers: bool,
132}
133
134#[cfg(feature = "clap")]
135fn parse_rename(name: &str) -> Result<(String, String)> {
136 let mut parts = name.splitn(2, '=');
137 let to_rename = parts.next().unwrap();
138 match parts.next() {
139 Some(part) => Ok((to_rename.to_string(), part.to_string())),
140 None => anyhow::bail!("`--rename` option must have an `=` in it (e.g. `--rename a=b`)"),
141 }
142}
143
144impl Opts {
145 pub fn build(&self) -> Box<dyn WorldGenerator> {
146 let mut r = C::default();
147 r.opts = self.clone();
148 Box::new(r)
149 }
150}
151
152#[derive(Clone, Debug, Default)]
153struct Return {
154 scalar: Option<Scalar>,
155 retptrs: Vec<Type>,
156}
157
158#[derive(Clone)]
159struct CSig {
160 name: String,
161 sig: String,
162 params: Vec<(bool, String)>,
163 ret: Return,
164 retptrs: Vec<String>,
165}
166
167#[derive(Clone, Debug)]
168enum Scalar {
169 Void,
170 OptionBool(Type),
171 ResultBool(Option<Type>, Option<Type>),
172 Type(Type),
173}
174
175impl WorldGenerator for C {
176 fn preprocess(&mut self, resolve: &Resolve, world: WorldId) {
177 self.world = self
178 .opts
179 .rename_world
180 .clone()
181 .unwrap_or_else(|| resolve.worlds[world].name.clone());
182 self.sizes.fill(resolve);
183 self.world_id = Some(world);
184
185 let mut interfaces = HashMap::new();
186 let world = &resolve.worlds[world];
187 for (key, _item) in world.imports.iter().chain(world.exports.iter()) {
188 let name = resolve.name_world_key(key);
189 interfaces
190 .entry(name)
191 .or_insert(Vec::new())
192 .push(key.clone());
193 }
194
195 for (from, to) in self.opts.rename.iter() {
196 match interfaces.get(from) {
197 Some(keys) => {
198 for key in keys {
199 self.renamed_interfaces.insert(key.clone(), to.clone());
200 }
201 }
202 None => {
203 eprintln!("warning: rename of `{from}` did not match any interfaces");
204 }
205 }
206 }
207 }
208
209 fn import_interface(
210 &mut self,
211 resolve: &Resolve,
212 name: &WorldKey,
213 id: InterfaceId,
214 _files: &mut Files,
215 ) -> Result<()> {
216 let wasm_import_module = resolve.name_world_key(name);
217 let mut r#gen = self.interface(resolve, true, Some(&wasm_import_module));
218 r#gen.interface = Some((id, name));
219 r#gen.define_interface_types(id);
220
221 for (i, (_name, func)) in resolve.interfaces[id].functions.iter().enumerate() {
222 if i == 0 {
223 let name = resolve.name_world_key(name);
224 uwriteln!(r#gen.src.h_fns, "\n// Imported Functions from `{name}`");
225 uwriteln!(r#gen.src.c_fns, "\n// Imported Functions from `{name}`");
226 }
227 r#gen.import(Some(name), func);
228 }
229
230 r#gen.r#gen.src.append(&r#gen.src);
231
232 Ok(())
233 }
234
235 fn import_funcs(
236 &mut self,
237 resolve: &Resolve,
238 world: WorldId,
239 funcs: &[(&str, &Function)],
240 _files: &mut Files,
241 ) {
242 let name = &resolve.worlds[world].name;
243 let mut r#gen = self.interface(resolve, true, Some("$root"));
244 r#gen.define_function_types(funcs);
245
246 for (i, (_name, func)) in funcs.iter().enumerate() {
247 if i == 0 {
248 uwriteln!(r#gen.src.h_fns, "\n// Imported Functions from `{name}`");
249 uwriteln!(r#gen.src.c_fns, "\n// Imported Functions from `{name}`");
250 }
251 r#gen.import(None, func);
252 }
253
254 r#gen.r#gen.src.append(&r#gen.src);
255 }
256
257 fn export_interface(
258 &mut self,
259 resolve: &Resolve,
260 name: &WorldKey,
261 id: InterfaceId,
262 _files: &mut Files,
263 ) -> Result<()> {
264 let mut r#gen = self.interface(resolve, false, None);
265 r#gen.interface = Some((id, name));
266 r#gen.define_interface_types(id);
267
268 for (i, (_name, func)) in resolve.interfaces[id].functions.iter().enumerate() {
269 if i == 0 {
270 let name = resolve.name_world_key(name);
271 uwriteln!(r#gen.src.h_fns, "\n// Exported Functions from `{name}`");
272 uwriteln!(r#gen.src.c_fns, "\n// Exported Functions from `{name}`");
273 }
274 r#gen.export(func, Some(name));
275 }
276
277 r#gen.r#gen.src.append(&r#gen.src);
278 Ok(())
279 }
280
281 fn export_funcs(
282 &mut self,
283 resolve: &Resolve,
284 world: WorldId,
285 funcs: &[(&str, &Function)],
286 _files: &mut Files,
287 ) -> Result<()> {
288 let name = &resolve.worlds[world].name;
289 let mut r#gen = self.interface(resolve, false, None);
290 r#gen.define_function_types(funcs);
291
292 for (i, (_name, func)) in funcs.iter().enumerate() {
293 if i == 0 {
294 uwriteln!(r#gen.src.h_fns, "\n// Exported Functions from `{name}`");
295 uwriteln!(r#gen.src.c_fns, "\n// Exported Functions from `{name}`");
296 }
297 r#gen.export(func, None);
298 }
299
300 r#gen.r#gen.src.append(&r#gen.src);
301 Ok(())
302 }
303
304 fn import_types(
305 &mut self,
306 resolve: &Resolve,
307 _world: WorldId,
308 types: &[(&str, TypeId)],
309 _files: &mut Files,
310 ) {
311 let mut r#gen = self.interface(resolve, true, Some("$root"));
312 let mut live = LiveTypes::default();
313 for (_, id) in types {
314 live.add_type_id(resolve, *id);
315 }
316 r#gen.define_live_types(live);
317 r#gen.r#gen.src.append(&r#gen.src);
318 }
319
320 fn finish(&mut self, resolve: &Resolve, id: WorldId, files: &mut Files) -> Result<()> {
321 let linking_symbol = component_type_object::linking_symbol(&self.world);
322 self.c_include("<stdlib.h>");
323 let snake = self.world.to_snake_case();
324 uwriteln!(
325 self.src.c_adapters,
326 "\n// Ensure that the *_component_type.o object is linked in"
327 );
328 uwrite!(
329 self.src.c_adapters,
330 "
331 extern void {linking_symbol}(void);
332 __attribute__((used))
333 void {linking_symbol}_public_use_in_this_compilation_unit(void) {{
334 {linking_symbol}();
335 }}
336 ",
337 );
338
339 self.print_intrinsics();
340
341 if self.needs_string {
342 self.c_include("<string.h>");
343 let (strlen, size) = match self.opts.string_encoding {
344 StringEncoding::UTF8 => (format!("strlen(s)"), 1),
345 StringEncoding::UTF16 => {
346 self.h_include("<uchar.h>");
347 uwrite!(
348 self.src.h_helpers,
349 "
350 // Returns the length of the UTF-16 string `s` in code units
351 size_t {snake}_string_len(const char16_t* s);
352 ",
353 );
354 uwrite!(
355 self.src.c_helpers,
356 "
357 size_t {snake}_string_len(const char16_t* s) {{
358 char16_t* c = (char16_t*)s;
359 for (; *c; ++c);
360 return c-s;
361 }}
362 ",
363 );
364 (format!("{snake}_string_len(s)"), 2)
365 }
366 StringEncoding::CompactUTF16 => unimplemented!(),
367 };
368 let ty = self.char_type();
369 let c_string_ty = match self.opts.string_encoding {
370 StringEncoding::UTF8 => "char",
371 StringEncoding::UTF16 => "char16_t",
372 StringEncoding::CompactUTF16 => panic!("Compact UTF16 unsupported"),
373 };
374 uwrite!(
375 self.src.h_helpers,
376 "
377 // Sets the string `ret` to reference the input string `s` without copying it
378 void {snake}_string_set({snake}_string_t *ret, const {c_string_ty} *s);
379
380 // Creates a copy of the input nul-terminated string `s` and
381 // stores it into the component model string `ret`.
382 void {snake}_string_dup({snake}_string_t *ret, const {c_string_ty} *s);
383
384 // Creates a copy of the input string `s` with length `len` and
385 // stores it into the component model string `ret`.
386 // The length is specified in code units (bytes for UTF-8, 16-bit values for UTF-16).
387 void {snake}_string_dup_n({snake}_string_t *ret, const {c_string_ty} *s, size_t len);
388
389 // Deallocates the string pointed to by `ret`, deallocating
390 // the memory behind the string.
391 void {snake}_string_free({snake}_string_t *ret);\
392 ",
393 );
394 uwrite!(
395 self.src.c_helpers,
396 "
397 void {snake}_string_set({snake}_string_t *ret, const {c_string_ty} *s) {{
398 ret->ptr = ({ty}*) s;
399 ret->len = {strlen};
400 }}
401
402 void {snake}_string_dup({snake}_string_t *ret, const {c_string_ty} *s) {{
403 ret->len = {strlen};
404 ret->ptr = ({ty}*) cabi_realloc(NULL, 0, {size}, ret->len * {size});
405 memcpy(ret->ptr, s, ret->len * {size});
406 }}
407
408 void {snake}_string_dup_n({snake}_string_t *ret, const {c_string_ty} *s, size_t len) {{
409 ret->len = len;
410 ret->ptr = ({ty}*) cabi_realloc(NULL, 0, {size}, ret->len * {size});
411 memcpy(ret->ptr, s, ret->len * {size});
412 }}
413
414 void {snake}_string_free({snake}_string_t *ret) {{
415 if (ret->len > 0) {{
416 free(ret->ptr);
417 }}
418 ret->ptr = NULL;
419 ret->len = 0;
420 }}
421 ",
422 );
423 }
424 if self.needs_union_int32_float {
425 uwriteln!(
426 self.src.c_defs,
427 "\nunion int32_float {{ int32_t a; float b; }};"
428 );
429 }
430 if self.needs_union_float_int32 {
431 uwriteln!(
432 self.src.c_defs,
433 "\nunion float_int32 {{ float a; int32_t b; }};"
434 );
435 }
436 if self.needs_union_int64_double {
437 uwriteln!(
438 self.src.c_defs,
439 "\nunion int64_double {{ int64_t a; double b; }};"
440 );
441 }
442 if self.needs_union_double_int64 {
443 uwriteln!(
444 self.src.c_defs,
445 "\nunion double_int64 {{ double a; int64_t b; }};"
446 );
447 }
448 if self.needs_async
449 || self.futures.len() > 0
450 || self.opts.generate_async_helpers
451 || self.opts.generate_threading_helpers
452 {
453 self.generate_async_helpers();
454 }
455 if self.opts.generate_threading_helpers {
456 self.generate_threading_helpers();
457 }
458 let version = env!("CARGO_PKG_VERSION");
459 let mut h_str = wit_bindgen_core::Source::default();
460
461 wit_bindgen_core::generated_preamble(&mut h_str, version);
462
463 uwrite!(
464 h_str,
465 "#ifndef __BINDINGS_{0}_H
466 #define __BINDINGS_{0}_H
467 #ifdef __cplusplus
468 extern \"C\" {{",
469 self.world.to_shouty_snake_case(),
470 );
471
472 h_str.deindent(1);
474 uwriteln!(h_str, "\n#endif\n");
475
476 uwriteln!(h_str, "#include <stdint.h>");
477 uwriteln!(h_str, "#include <stdbool.h>");
478 uwriteln!(h_str, "#include <stddef.h>");
479 for include in self.h_includes.iter() {
480 uwriteln!(h_str, "#include {include}");
481 }
482
483 let mut c_str = wit_bindgen_core::Source::default();
484 wit_bindgen_core::generated_preamble(&mut c_str, version);
485 uwriteln!(c_str, "#include \"{snake}.h\"");
486 for include in self.c_includes.iter() {
487 uwriteln!(c_str, "#include {include}");
488 }
489 c_str.push_str(&self.src.c_defs);
490 c_str.push_str(&self.src.c_fns);
491
492 if !self.return_pointer_area_size.is_empty() {
496 uwrite!(
498 c_str,
499 "
500 __attribute__((__aligned__({})))
501 static uint8_t RET_AREA[{}];
502 ",
503 self.return_pointer_area_align
504 .format(POINTER_SIZE_EXPRESSION),
505 self.return_pointer_area_size
506 .format(POINTER_SIZE_EXPRESSION),
507 );
508 }
509
510 if self.needs_string {
511 uwriteln!(
512 h_str,
513 "
514 typedef struct {snake}_string_t {{\n\
515 {ty} *ptr;\n\
516 size_t len;\n\
517 }} {snake}_string_t;",
518 ty = self.char_type(),
519 );
520 }
521
522 if self.src.h_async.len() > 0 {
523 uwriteln!(h_str, "\n// Async Helper Functions");
524 h_str.push_str(&self.src.h_async);
525 h_str.push_str("\n");
526 }
527
528 if self.src.h_defs.len() > 0 {
529 h_str.push_str(&self.src.h_defs);
530 }
531
532 h_str.push_str(&self.src.h_fns);
533
534 if !self.opts.no_helpers && self.src.h_helpers.len() > 0 {
535 uwriteln!(h_str, "\n// Helper Functions");
536 h_str.push_str(&self.src.h_helpers);
537 h_str.push_str("\n");
538 }
539
540 if !self.opts.no_helpers && self.src.c_helpers.len() > 0 {
541 uwriteln!(c_str, "\n// Helper Functions");
542 c_str.push_str(self.src.c_helpers.as_mut_string());
543 }
544
545 if self.src.c_async.len() > 0 {
546 uwriteln!(c_str, "\n// Async Helper Functions");
547 c_str.push_str(&self.src.c_async);
548 c_str.push_str("\n");
549 }
550
551 uwriteln!(c_str, "\n// Component Adapters");
552
553 c_str.push_str(&self.src.c_adapters);
554
555 uwriteln!(
556 h_str,
557 "
558 #ifdef __cplusplus
559 }}
560 #endif
561 #endif"
562 );
563
564 files.push(&format!("{snake}.h"), h_str.as_bytes());
565 files.push(&format!("{snake}.c"), c_str.as_bytes());
566 if !self.opts.no_object_file {
567 files.push(
568 &format!("{snake}_component_type.o",),
569 component_type_object::object(
570 resolve,
571 id,
572 &self.world,
573 self.opts.string_encoding,
574 self.opts.type_section_suffix.as_deref(),
575 )
576 .unwrap()
577 .as_slice(),
578 );
579 }
580
581 Ok(())
582 }
583
584 fn pre_export_interface(&mut self, resolve: &Resolve, _files: &mut Files) -> Result<()> {
585 self.remove_types_redefined_by_exports(resolve, self.world_id.unwrap());
586 Ok(())
587 }
588}
589
590impl C {
591 fn interface<'a>(
592 &'a mut self,
593 resolve: &'a Resolve,
594 in_import: bool,
595 wasm_import_module: Option<&'a str>,
596 ) -> InterfaceGenerator<'a> {
597 InterfaceGenerator {
598 src: Source::default(),
599 r#gen: self,
600 resolve,
601 interface: None,
602 in_import,
603 wasm_import_module,
604 }
605 }
606
607 fn h_include(&mut self, s: &str) {
608 self.h_includes.push(s.to_string());
609 }
610
611 fn c_include(&mut self, s: &str) {
612 self.c_includes.push(s.to_string());
613 }
614
615 fn char_type(&self) -> &'static str {
616 match self.opts.string_encoding {
617 StringEncoding::UTF8 => "uint8_t",
618 StringEncoding::UTF16 => "uint16_t",
619 StringEncoding::CompactUTF16 => panic!("Compact UTF16 unsupported"),
620 }
621 }
622
623 fn type_name(&mut self, ty: &Type) -> String {
624 let mut name = String::new();
625 self.push_type_name(ty, &mut name);
626 name
627 }
628
629 fn push_type_name(&mut self, ty: &Type, dst: &mut String) {
630 match ty {
631 Type::Bool => dst.push_str("bool"),
632 Type::Char => dst.push_str("uint32_t"), Type::U8 => dst.push_str("uint8_t"),
634 Type::S8 => dst.push_str("int8_t"),
635 Type::U16 => dst.push_str("uint16_t"),
636 Type::S16 => dst.push_str("int16_t"),
637 Type::U32 => dst.push_str("uint32_t"),
638 Type::S32 => dst.push_str("int32_t"),
639 Type::U64 => dst.push_str("uint64_t"),
640 Type::S64 => dst.push_str("int64_t"),
641 Type::F32 => dst.push_str("float"),
642 Type::F64 => dst.push_str("double"),
643 Type::String => {
644 dst.push_str(&self.world.to_snake_case());
645 dst.push_str("_");
646 dst.push_str("string_t");
647 self.needs_string = true;
648 }
649 Type::ErrorContext => dst.push_str("error_context"),
650 Type::Id(id) => {
651 if let Some(name) = self.type_names.get(id) {
652 dst.push_str(name);
653 return;
654 }
655
656 panic!("failed to find type name for {id:?}");
657 }
658 }
659 }
660
661 fn remove_types_redefined_by_exports(&mut self, resolve: &Resolve, world: WorldId) {
675 let live_import_types = imported_types_used_by_exported_interfaces(resolve, world);
676 self.dtor_funcs.retain(|k, _| live_import_types.contains(k));
677 self.type_names.retain(|k, _| live_import_types.contains(k));
678 self.resources.retain(|k, _| live_import_types.contains(k));
679 }
680
681 fn perform_cast(&mut self, op: &str, cast: &Bitcast) -> String {
682 match cast {
683 Bitcast::I32ToF32 | Bitcast::I64ToF32 => {
684 self.needs_union_int32_float = true;
685 format!("((union int32_float){{ (int32_t) {op} }}).b")
686 }
687 Bitcast::F32ToI32 | Bitcast::F32ToI64 => {
688 self.needs_union_float_int32 = true;
689 format!("((union float_int32){{ {op} }}).b")
690 }
691 Bitcast::I64ToF64 => {
692 self.needs_union_int64_double = true;
693 format!("((union int64_double){{ (int64_t) {op} }}).b")
694 }
695 Bitcast::F64ToI64 => {
696 self.needs_union_double_int64 = true;
697 format!("((union double_int64){{ {op} }}).b")
698 }
699 Bitcast::I32ToI64 | Bitcast::LToI64 | Bitcast::PToP64 => {
700 format!("(int64_t) {op}")
701 }
702 Bitcast::I64ToI32 | Bitcast::I64ToL => {
703 format!("(int32_t) {op}")
704 }
705 Bitcast::I64ToP64 | Bitcast::P64ToI64 => {
707 format!("{op}")
708 }
709 Bitcast::P64ToP | Bitcast::I32ToP | Bitcast::LToP => {
710 format!("(uint8_t *) {op}")
711 }
712
713 Bitcast::PToI32 | Bitcast::PToL => format!("(uintptr_t) {op}"),
715
716 Bitcast::I32ToL | Bitcast::LToI32 | Bitcast::None => op.to_string(),
717
718 Bitcast::Sequence(sequence) => {
719 let [first, second] = &**sequence;
720 let inner = self.perform_cast(op, first);
721 self.perform_cast(&inner, second)
722 }
723 }
724 }
725
726 fn generate_threading_helpers(&mut self) {
727 let snake = self.world.to_snake_case();
728 uwriteln!(
729 self.src.h_async,
730 "
731void* {snake}_context_get_1(void);
732void {snake}_context_set_1(void* value);
733uint32_t {snake}_thread_yield_cancellable(void);
734uint32_t {snake}_thread_index(void);
735uint32_t {snake}_thread_new_indirect(void (*start_function)(void*), void* arg);
736void {snake}_thread_suspend_to(uint32_t thread);
737uint32_t {snake}_thread_suspend_to_cancellable(uint32_t thread);
738void {snake}_thread_suspend_to_suspended(uint32_t thread);
739uint32_t {snake}_thread_suspend_to_suspended_cancellable(uint32_t thread);
740void {snake}_thread_unsuspend(uint32_t thread);
741void {snake}_thread_yield_to_suspended(uint32_t thread);
742uint32_t {snake}_thread_yield_to_suspended_cancellable(uint32_t thread);
743void {snake}_thread_suspend(void);
744uint32_t {snake}_thread_suspend_cancellable(void);
745 "
746 );
747 uwriteln!(
748 self.src.c_async,
749 r#"
750__attribute__((__import_module__("$root"), __import_name__("[context-get-1]")))
751extern void* __context_get_1(void);
752
753void* {snake}_context_get_1(void) {{
754 return __context_get_1();
755}}
756
757__attribute__((__import_module__("$root"), __import_name__("[context-set-1]")))
758extern void __context_set_1(void*);
759
760void {snake}_context_set_1(void* value) {{
761 __context_set_1(value);
762}}
763
764__attribute__((__import_module__("$root"), __import_name__("[cancellable][thread-yield]")))
765extern uint32_t __thread_yield_cancellable(void);
766
767uint32_t {snake}_thread_yield_cancellable(void) {{
768 return __thread_yield_cancellable();
769}}
770
771__attribute__((__import_module__("$root"), __import_name__("[thread-index]")))
772extern uint32_t __thread_index(void);
773
774uint32_t {snake}_thread_index(void) {{
775 return __thread_index();
776}}
777
778__attribute__((__import_module__("$root"), __import_name__("[thread-new-indirect-v0]")))
779extern uint32_t __thread_new_indirect(uint32_t, void*);
780
781uint32_t {snake}_thread_new_indirect(void (*start_function)(void*), void* arg) {{
782 return __thread_new_indirect((uint32_t)(uintptr_t)start_function, arg
783);
784}}
785
786__attribute__((__import_module__("$root"), __import_name__("[thread-suspend-to-suspended]")))
787extern uint32_t __thread_suspend_to_suspended(uint32_t);
788
789void {snake}_thread_suspend_to_suspended(uint32_t thread) {{
790 __thread_suspend_to_suspended(thread);
791}}
792
793__attribute__((__import_module__("$root"), __import_name__("[cancellable][thread-suspend-to-suspended]")))
794extern uint32_t __thread_suspend_to_suspended_cancellable(uint32_t);
795
796uint32_t {snake}_thread_suspend_to_suspended_cancellable(uint32_t thread) {{
797 return __thread_suspend_to_suspended_cancellable(thread);
798}}
799
800__attribute__((__import_module__("$root"), __import_name__("[thread-suspend-to]")))
801extern uint32_t __thread_suspend_to(uint32_t);
802
803void {snake}_thread_suspend_to(uint32_t thread) {{
804 __thread_suspend_to(thread);
805}}
806
807__attribute__((__import_module__("$root"), __import_name__("[cancellable][thread-suspend-to]")))
808extern uint32_t __thread_suspend_to_cancellable(uint32_t);
809
810uint32_t {snake}_thread_suspend_to_cancellable(uint32_t thread) {{
811 return __thread_suspend_to_cancellable(thread);
812}}
813
814__attribute__((__import_module__("$root"), __import_name__("[thread-unsuspend]")))
815extern void __thread_unsuspend(uint32_t);
816
817void {snake}_thread_unsuspend(uint32_t thread) {{
818 __thread_unsuspend(thread);
819}}
820
821__attribute__((__import_module__("$root"), __import_name__("[thread-yield-to-suspended]")))
822extern uint32_t __thread_yield_to_suspended(uint32_t);
823
824void {snake}_thread_yield_to_suspended(uint32_t thread) {{
825 __thread_yield_to_suspended(thread);
826}}
827
828__attribute__((__import_module__("$root"), __import_name__("[cancellable][thread-yield-to-suspended]")))
829extern uint32_t __thread_yield_to_suspended_cancellable(uint32_t);
830
831uint32_t {snake}_thread_yield_to_suspended_cancellable(uint32_t thread) {{
832 return __thread_yield_to_suspended_cancellable(thread);
833}}
834
835__attribute__((__import_module__("$root"), __import_name__("[thread-suspend]")))
836extern uint32_t __thread_suspend(void);
837
838void {snake}_thread_suspend(void) {{
839 __thread_suspend();
840}}
841
842__attribute__((__import_module__("$root"), __import_name__("[cancellable][thread-suspend]")))
843extern uint32_t __thread_suspend_cancellable(void);
844uint32_t {snake}_thread_suspend_cancellable(void) {{
845 return __thread_suspend_cancellable();
846}}
847 "#
848 );
849 }
850
851 fn generate_async_helpers(&mut self) {
852 let snake = self.world.to_snake_case();
853 let shouty = self.world.to_shouty_snake_case();
854 uwriteln!(
855 self.src.h_async,
856 "
857typedef uint32_t {snake}_subtask_status_t;
858typedef uint32_t {snake}_subtask_t;
859#define {shouty}_SUBTASK_STATE(status) (({snake}_subtask_state_t) ((status) & 0xf))
860#define {shouty}_SUBTASK_HANDLE(status) (({snake}_subtask_t) ((status) >> 4))
861
862typedef enum {snake}_subtask_state {{
863 {shouty}_SUBTASK_STARTING,
864 {shouty}_SUBTASK_STARTED,
865 {shouty}_SUBTASK_RETURNED,
866 {shouty}_SUBTASK_STARTED_CANCELLED,
867 {shouty}_SUBTASK_RETURNED_CANCELLED,
868}} {snake}_subtask_state_t;
869
870{snake}_subtask_status_t {snake}_subtask_cancel({snake}_subtask_t subtask);
871void {snake}_subtask_drop({snake}_subtask_t subtask);
872
873typedef uint32_t {snake}_callback_code_t;
874#define {shouty}_CALLBACK_CODE_EXIT 0
875#define {shouty}_CALLBACK_CODE_YIELD 1
876#define {shouty}_CALLBACK_CODE_WAIT(set) (2 | (set << 4))
877
878typedef enum {snake}_event_code {{
879 {shouty}_EVENT_NONE,
880 {shouty}_EVENT_SUBTASK,
881 {shouty}_EVENT_STREAM_READ,
882 {shouty}_EVENT_STREAM_WRITE,
883 {shouty}_EVENT_FUTURE_READ,
884 {shouty}_EVENT_FUTURE_WRITE,
885 {shouty}_EVENT_CANCEL,
886}} {snake}_event_code_t;
887
888typedef struct {snake}_event {{
889 {snake}_event_code_t event;
890 uint32_t waitable;
891 uint32_t code;
892}} {snake}_event_t;
893
894typedef uint32_t {snake}_waitable_set_t;
895{snake}_waitable_set_t {snake}_waitable_set_new(void);
896void {snake}_waitable_join(uint32_t waitable, {snake}_waitable_set_t set);
897void {snake}_waitable_set_drop({snake}_waitable_set_t set);
898void {snake}_waitable_set_wait({snake}_waitable_set_t set, {snake}_event_t *event);
899void {snake}_waitable_set_poll({snake}_waitable_set_t set, {snake}_event_t *event);
900
901void {snake}_task_cancel(void);
902
903typedef uint32_t {snake}_waitable_status_t;
904#define {shouty}_WAITABLE_STATE(status) (({snake}_waitable_state_t) ((status) & 0xf))
905#define {shouty}_WAITABLE_COUNT(status) ((uint32_t) ((status) >> 4))
906#define {shouty}_WAITABLE_STATUS_BLOCKED (({snake}_waitable_status_t) -1)
907
908typedef enum {snake}_waitable_state {{
909 {shouty}_WAITABLE_COMPLETED,
910 {shouty}_WAITABLE_DROPPED,
911 {shouty}_WAITABLE_CANCELLED,
912}} {snake}_waitable_state_t;
913
914void {snake}_backpressure_inc(void);
915void {snake}_backpressure_dec(void);
916void* {snake}_context_get_0(void);
917void {snake}_context_set_0(void* value);
918void {snake}_thread_yield(void);
919 "
920 );
921 uwriteln!(
922 self.src.c_async,
923 r#"
924__attribute__((__import_module__("$root"), __import_name__("[subtask-cancel]")))
925extern uint32_t __subtask_cancel(uint32_t handle);
926
927{snake}_subtask_status_t {snake}_subtask_cancel({snake}_subtask_t subtask) {{
928 return __subtask_cancel(subtask);
929}}
930
931__attribute__((__import_module__("$root"), __import_name__("[subtask-drop]")))
932extern void __subtask_drop(uint32_t handle);
933
934void {snake}_subtask_drop({snake}_subtask_t subtask) {{
935 __subtask_drop(subtask);
936}}
937
938__attribute__((__import_module__("$root"), __import_name__("[waitable-set-new]")))
939extern uint32_t __waitable_set_new(void);
940
941{snake}_waitable_set_t {snake}_waitable_set_new(void) {{
942 return __waitable_set_new();
943}}
944
945__attribute__((__import_module__("$root"), __import_name__("[waitable-join]")))
946extern void __waitable_join(uint32_t, uint32_t);
947
948void {snake}_waitable_join(uint32_t waitable, {snake}_waitable_set_t set) {{
949 __waitable_join(waitable, set);
950}}
951
952__attribute__((__import_module__("$root"), __import_name__("[waitable-set-drop]")))
953extern void __waitable_set_drop(uint32_t);
954
955void {snake}_waitable_set_drop({snake}_waitable_set_t set) {{
956 __waitable_set_drop(set);
957}}
958
959__attribute__((__import_module__("$root"), __import_name__("[waitable-set-wait]")))
960extern uint32_t __waitable_set_wait(uint32_t, uint32_t*);
961__attribute__((__import_module__("$root"), __import_name__("[waitable-set-poll]")))
962extern uint32_t __waitable_set_poll(uint32_t, uint32_t*);
963
964void {snake}_waitable_set_wait({snake}_waitable_set_t set, {snake}_event_t *event) {{
965 event->event = ({snake}_event_code_t) __waitable_set_wait(set, &event->waitable);
966}}
967
968void {snake}_waitable_set_poll({snake}_waitable_set_t set, {snake}_event_t *event) {{
969 event->event = ({snake}_event_code_t) __waitable_set_poll(set, &event->waitable);
970}}
971
972__attribute__((__import_module__("[export]$root"), __import_name__("[task-cancel]")))
973extern void __task_cancel(void);
974
975void {snake}_task_cancel() {{
976 __task_cancel();
977}}
978
979__attribute__((__import_module__("$root"), __import_name__("[backpressure-inc]")))
980extern void __backpressure_inc(void);
981
982void {snake}_backpressure_inc(void) {{
983 __backpressure_inc();
984}}
985
986__attribute__((__import_module__("$root"), __import_name__("[backpressure-dec]")))
987extern void __backpressure_dec(void);
988
989void {snake}_backpressure_dec(void) {{
990 __backpressure_dec();
991}}
992
993__attribute__((__import_module__("$root"), __import_name__("[context-get-0]")))
994extern void* __context_get_0(void);
995
996void* {snake}_context_get_0(void) {{
997 return __context_get_0();
998}}
999
1000__attribute__((__import_module__("$root"), __import_name__("[context-set-0]")))
1001extern void __context_set_0(void*);
1002
1003
1004void {snake}_context_set_0(void *value) {{
1005 __context_set_0(value);
1006}}
1007
1008__attribute__((__import_module__("$root"), __import_name__("[thread-yield]")))
1009extern uint32_t __thread_yield(void);
1010
1011void {snake}_thread_yield(void) {{
1012 __thread_yield();
1013}}
1014 "#
1015 );
1016 }
1017}
1018
1019pub fn imported_types_used_by_exported_interfaces(
1020 resolve: &Resolve,
1021 world: WorldId,
1022) -> HashSet<TypeId> {
1023 let mut live_export_types = LiveTypes::default();
1026 let mut exported_interfaces = HashSet::new();
1027 for (_, export) in resolve.worlds[world].exports.iter() {
1028 match export {
1029 WorldItem::Function(_) => {}
1030 WorldItem::Interface { id, .. } => {
1031 exported_interfaces.insert(*id);
1032 live_export_types.add_interface(resolve, *id)
1033 }
1034 WorldItem::Type { .. } => unreachable!(),
1035 }
1036 }
1037
1038 let mut imports_used = HashSet::new();
1043 for ty in live_export_types.iter() {
1044 if let TypeOwner::Interface(id) = resolve.types[ty].owner {
1045 if !exported_interfaces.contains(&id) {
1046 imports_used.insert(id);
1047 }
1048 }
1049 }
1050
1051 let mut live_import_types = LiveTypes::default();
1055 for import in imports_used {
1056 live_import_types.add_interface(resolve, import);
1057 }
1058 let live_import_types = live_import_types.iter().collect::<HashSet<_>>();
1059 live_import_types
1060}
1061
1062fn is_prim_type(resolve: &Resolve, ty: &Type) -> bool {
1063 if let Type::Id(id) = ty {
1064 is_prim_type_id(resolve, *id)
1065 } else {
1066 true
1067 }
1068}
1069
1070fn is_prim_type_id(resolve: &Resolve, id: TypeId) -> bool {
1071 match &resolve.types[id].kind {
1072 TypeDefKind::List(elem) => is_prim_type(resolve, elem),
1073
1074 TypeDefKind::Option(ty) => is_prim_type(resolve, ty),
1075
1076 TypeDefKind::Tuple(tuple) => tuple.types.iter().all(|ty| is_prim_type(resolve, ty)),
1077
1078 TypeDefKind::Type(ty) => is_prim_type(resolve, ty),
1079
1080 TypeDefKind::Record(_)
1081 | TypeDefKind::Resource
1082 | TypeDefKind::Handle(_)
1083 | TypeDefKind::Flags(_)
1084 | TypeDefKind::Variant(_)
1085 | TypeDefKind::Enum(_)
1086 | TypeDefKind::Result(_)
1087 | TypeDefKind::Future(_)
1088 | TypeDefKind::Stream(_)
1089 | TypeDefKind::Unknown => false,
1090 TypeDefKind::FixedLengthList(..) => todo!(),
1091 TypeDefKind::Map(..) => todo!(),
1092 }
1093}
1094
1095pub fn push_ty_name(resolve: &Resolve, ty: &Type, src: &mut String) {
1096 match ty {
1097 Type::Bool => src.push_str("bool"),
1098 Type::Char => src.push_str("char32"),
1099 Type::U8 => src.push_str("u8"),
1100 Type::S8 => src.push_str("s8"),
1101 Type::U16 => src.push_str("u16"),
1102 Type::S16 => src.push_str("s16"),
1103 Type::U32 => src.push_str("u32"),
1104 Type::S32 => src.push_str("s32"),
1105 Type::U64 => src.push_str("u64"),
1106 Type::S64 => src.push_str("s64"),
1107 Type::F32 => src.push_str("f32"),
1108 Type::F64 => src.push_str("f64"),
1109 Type::String => src.push_str("string"),
1110 Type::ErrorContext => todo!(),
1111 Type::Id(id) => {
1112 let ty = &resolve.types[*id];
1113 if let Some(name) = &ty.name {
1114 return src.push_str(&name.to_snake_case());
1115 }
1116 match &ty.kind {
1117 TypeDefKind::Type(t) => push_ty_name(resolve, t, src),
1118 TypeDefKind::Record(_)
1119 | TypeDefKind::Resource
1120 | TypeDefKind::Flags(_)
1121 | TypeDefKind::Enum(_)
1122 | TypeDefKind::Variant(_) => {
1123 unimplemented!()
1124 }
1125 TypeDefKind::Tuple(t) => {
1126 src.push_str("tuple");
1127 src.push_str(&t.types.len().to_string());
1128 for ty in t.types.iter() {
1129 src.push_str("_");
1130 push_ty_name(resolve, ty, src);
1131 }
1132 }
1133 TypeDefKind::Option(ty) => {
1134 src.push_str("option_");
1135 push_ty_name(resolve, ty, src);
1136 }
1137 TypeDefKind::Result(r) => {
1138 src.push_str("result_");
1139 match &r.ok {
1140 Some(ty) => push_ty_name(resolve, ty, src),
1141 None => src.push_str("void"),
1142 }
1143 src.push_str("_");
1144 match &r.err {
1145 Some(ty) => push_ty_name(resolve, ty, src),
1146 None => src.push_str("void"),
1147 }
1148 }
1149 TypeDefKind::List(ty) => {
1150 src.push_str("list_");
1151 push_ty_name(resolve, ty, src);
1152 }
1153 TypeDefKind::Future(ty) => {
1154 src.push_str("future_");
1155 match ty {
1156 Some(ty) => push_ty_name(resolve, ty, src),
1157 None => src.push_str("void"),
1158 }
1159 }
1160 TypeDefKind::Stream(ty) => {
1161 src.push_str("stream_");
1162 match ty {
1163 Some(ty) => push_ty_name(resolve, ty, src),
1164 None => src.push_str("void"),
1165 }
1166 }
1167 TypeDefKind::Handle(Handle::Own(resource)) => {
1168 src.push_str("own_");
1169 push_ty_name(resolve, &Type::Id(*resource), src);
1170 }
1171 TypeDefKind::Handle(Handle::Borrow(resource)) => {
1172 src.push_str("borrow_");
1173 push_ty_name(resolve, &Type::Id(*resource), src);
1174 }
1175 TypeDefKind::Unknown => unreachable!(),
1176 TypeDefKind::FixedLengthList(..) => todo!(),
1177 TypeDefKind::Map(..) => todo!(),
1178 }
1179 }
1180 }
1181}
1182
1183pub fn owner_namespace<'a>(
1184 interface: Option<(InterfaceId, &'a WorldKey)>,
1185 in_import: bool,
1186 world: String,
1187 resolve: &Resolve,
1188 id: TypeId,
1189 renamed_interfaces: &HashMap<WorldKey, String>,
1190) -> String {
1191 let ty = &resolve.types[id];
1192 match (ty.owner, interface) {
1193 (TypeOwner::Interface(a), Some((b, key))) if a == b => {
1196 interface_identifier(key, resolve, !in_import, renamed_interfaces)
1197 }
1198 (TypeOwner::Interface(_), None) => unreachable!(),
1199 (TypeOwner::Interface(_), Some(_)) => unreachable!(),
1200
1201 (TypeOwner::World(_), None) => world.to_snake_case(),
1204 (TypeOwner::World(_), Some(_)) => unreachable!(),
1205
1206 (TypeOwner::None, Some((_, key))) => {
1209 interface_identifier(key, resolve, !in_import, renamed_interfaces)
1210 }
1211 (TypeOwner::None, None) => world.to_snake_case(),
1212 }
1213}
1214
1215fn interface_identifier(
1216 interface_id: &WorldKey,
1217 resolve: &Resolve,
1218 in_export: bool,
1219 renamed_interfaces: &HashMap<WorldKey, String>,
1220) -> String {
1221 if let Some(rename) = renamed_interfaces.get(interface_id) {
1222 let mut ns = String::new();
1223 if in_export && matches!(interface_id, WorldKey::Interface(_)) {
1224 ns.push_str("exports_");
1225 }
1226 ns.push_str(rename);
1227 return ns;
1228 }
1229
1230 match interface_id {
1231 WorldKey::Name(name) => name.to_snake_case(),
1232 WorldKey::Interface(id) => {
1233 let mut ns = String::new();
1234 if in_export {
1235 ns.push_str("exports_");
1236 }
1237 let iface = &resolve.interfaces[*id];
1238 let pkg = &resolve.packages[iface.package.unwrap()];
1239 ns.push_str(&pkg.name.namespace.to_snake_case());
1240 ns.push_str("_");
1241 ns.push_str(&pkg.name.name.to_snake_case());
1242 ns.push_str("_");
1243 let pkg_has_multiple_versions = resolve.packages.iter().any(|(_, p)| {
1244 p.name.namespace == pkg.name.namespace
1245 && p.name.name == pkg.name.name
1246 && p.name.version != pkg.name.version
1247 });
1248 if pkg_has_multiple_versions {
1249 if let Some(version) = &pkg.name.version {
1250 let version = version
1251 .to_string()
1252 .replace('.', "_")
1253 .replace('-', "_")
1254 .replace('+', "_");
1255 ns.push_str(&version);
1256 ns.push_str("_");
1257 }
1258 }
1259 ns.push_str(&iface.name.as_ref().unwrap().to_snake_case());
1260 ns
1261 }
1262 }
1263}
1264
1265pub fn c_func_name(
1266 in_import: bool,
1267 resolve: &Resolve,
1268 world: &str,
1269 interface_id: Option<&WorldKey>,
1270 func: &Function,
1271 renamed_interfaces: &HashMap<WorldKey, String>,
1272) -> String {
1273 let mut name = String::new();
1274 match interface_id {
1275 Some(id) => name.push_str(&interface_identifier(
1276 id,
1277 resolve,
1278 !in_import,
1279 renamed_interfaces,
1280 )),
1281 None => {
1282 if !in_import {
1283 name.push_str("exports_");
1284 }
1285 name.push_str(&world.to_snake_case());
1286 }
1287 }
1288 name.push_str("_");
1289 name.push_str(&func.name.to_snake_case().replace('.', "_"));
1290 name
1291}
1292
1293struct InterfaceGenerator<'a> {
1294 src: Source,
1295 in_import: bool,
1296 r#gen: &'a mut C,
1297 resolve: &'a Resolve,
1298 interface: Option<(InterfaceId, &'a WorldKey)>,
1299 wasm_import_module: Option<&'a str>,
1300}
1301
1302impl C {
1303 fn print_intrinsics(&mut self) {
1304 self.src.c_fns("\n// Canonical ABI intrinsics");
1307 self.src.c_fns("\n");
1308 self.src.c_fns(
1309 r#"
1310 __attribute__((__weak__, __export_name__("cabi_realloc")))
1311 void *cabi_realloc(void *ptr, size_t old_size, size_t align, size_t new_size) {
1312 (void) old_size;
1313 if (new_size == 0) return (void*) align;
1314 void *ret = realloc(ptr, new_size);
1315 if (!ret) abort();
1316 return ret;
1317 }
1318 "#,
1319 );
1320 }
1321}
1322
1323impl Return {
1324 fn return_single(
1325 &mut self,
1326 resolve: &Resolve,
1327 ty: &Type,
1328 orig_ty: &Type,
1329 sig_flattening: bool,
1330 ) {
1331 let id = match ty {
1332 Type::Id(id) => *id,
1333 Type::String => {
1334 self.retptrs.push(*orig_ty);
1335 return;
1336 }
1337 Type::ErrorContext => todo!("return_single for error-context"),
1338 _ => {
1339 self.scalar = Some(Scalar::Type(*orig_ty));
1340 return;
1341 }
1342 };
1343 match &resolve.types[id].kind {
1344 TypeDefKind::Type(t) => return self.return_single(resolve, t, orig_ty, sig_flattening),
1345
1346 TypeDefKind::Flags(_)
1348 | TypeDefKind::Enum(_)
1349 | TypeDefKind::Handle(_)
1350 | TypeDefKind::Future(_)
1351 | TypeDefKind::Stream(_) => {
1352 self.scalar = Some(Scalar::Type(*orig_ty));
1353 return;
1354 }
1355
1356 TypeDefKind::Option(ty) => {
1360 if sig_flattening {
1361 self.scalar = Some(Scalar::OptionBool(*ty));
1362 self.retptrs.push(*ty);
1363 return;
1364 }
1365 }
1366
1367 TypeDefKind::Result(r) => {
1370 if sig_flattening {
1371 if let Some(ok) = r.ok {
1372 self.retptrs.push(ok);
1373 }
1374 if let Some(err) = r.err {
1375 self.retptrs.push(err);
1376 }
1377 self.scalar = Some(Scalar::ResultBool(r.ok, r.err));
1378 return;
1379 }
1380 }
1381
1382 TypeDefKind::Tuple(_)
1384 | TypeDefKind::Record(_)
1385 | TypeDefKind::List(_)
1386 | TypeDefKind::Variant(_) => {}
1387
1388 TypeDefKind::Resource => todo!("return_single for resource"),
1389 TypeDefKind::Unknown => unreachable!(),
1390 TypeDefKind::FixedLengthList(..) => todo!(),
1391 TypeDefKind::Map(..) => todo!(),
1392 }
1393
1394 self.retptrs.push(*orig_ty);
1395 }
1396}
1397
1398impl<'a> wit_bindgen_core::InterfaceGenerator<'a> for InterfaceGenerator<'a> {
1399 fn resolve(&self) -> &'a Resolve {
1400 self.resolve
1401 }
1402
1403 fn type_record(&mut self, id: TypeId, _name: &str, record: &Record, docs: &Docs) {
1404 self.src.h_defs("\n");
1405 self.docs(docs, SourceType::HDefs);
1406 self.start_typedef_struct(id);
1407 for field in record.fields.iter() {
1408 self.docs(&field.docs, SourceType::HDefs);
1409 self.print_ty(SourceType::HDefs, &field.ty);
1410 self.src.h_defs(" ");
1411 self.src.h_defs(&to_c_ident(&field.name));
1412 self.src.h_defs(";\n");
1413 }
1414 self.finish_typedef_struct(id);
1415 }
1416
1417 fn type_resource(&mut self, id: TypeId, name: &str, _docs: &Docs) {
1418 let ns = self.owner_namespace(id);
1419 let snake = name.to_snake_case();
1420 let mut own = ns.clone();
1421 let mut borrow = own.clone();
1422 own.push_str("_own");
1423 borrow.push_str("_borrow");
1424 own.push_str("_");
1425 borrow.push_str("_");
1426 own.push_str(&snake);
1427 borrow.push_str(&snake);
1428 own.push_str("_t");
1429 borrow.push_str("_t");
1430
1431 self.src.h_helpers(&format!(
1434 "
1435extern void {ns}_{snake}_drop_own({own} handle);
1436 "
1437 ));
1438 let import_module = if self.in_import {
1439 self.wasm_import_module.unwrap().to_string()
1440 } else {
1441 let module = match self.interface {
1442 Some((_, key)) => self.resolve.name_world_key(key),
1443 None => unimplemented!("resource exports from worlds"),
1444 };
1445 format!("[export]{module}")
1446 };
1447
1448 let drop_fn = format!("__wasm_import_{ns}_{snake}_drop");
1449
1450 self.src.c_helpers(&format!(
1451 r#"
1452__attribute__((__import_module__("{import_module}"), __import_name__("[resource-drop]{name}")))
1453extern void {drop_fn}(int32_t handle);
1454
1455void {ns}_{snake}_drop_own({own} handle) {{
1456 {drop_fn}(handle.__handle);
1457}}
1458 "#
1459 ));
1460
1461 self.src.h_defs(&format!(
1464 "\ntypedef struct {own} {{\nint32_t __handle;\n}} {own};\n"
1465 ));
1466
1467 if self.in_import {
1468 self.src.h_defs(&format!(
1472 "\ntypedef struct {borrow} {{\nint32_t __handle;\n}} {borrow};\n"
1473 ));
1474
1475 if !self.autodrop_enabled() {
1477 self.src.h_helpers(&format!(
1482 "\nextern void {ns}_{snake}_drop_borrow({borrow} handle);\n"
1483 ));
1484
1485 self.src.c_helpers(&format!(
1486 "
1487void {ns}_{snake}_drop_borrow({borrow} handle) {{
1488 __wasm_import_{ns}_{snake}_drop(handle.__handle);
1489}}
1490 "
1491 ));
1492 }
1493
1494 self.src.h_helpers(&format!(
1498 "
1499extern {borrow} {ns}_borrow_{snake}({own} handle);
1500 "
1501 ));
1502
1503 self.src.c_helpers(&format!(
1504 r#"
1505{borrow} {ns}_borrow_{snake}({own} arg) {{
1506 return ({borrow}) {{ arg.__handle }};
1507}}
1508 "#
1509 ));
1510 } else {
1511 self.src.h_defs("\n");
1514 self.src.h_defs("typedef struct ");
1515 let ty_name = self.r#gen.type_names[&id].clone();
1516 self.src.h_defs(&ty_name);
1517 self.src.h_defs(" ");
1518 self.print_typedef_target(id);
1519 let (_, key) = self.interface.unwrap();
1520 let module = self.resolve.name_world_key(key);
1521
1522 self.src
1526 .h_defs(&format!("\ntypedef {ty_name}* {borrow};\n"));
1527
1528 self.src.h_helpers(&format!(
1537 "
1538extern {own} {ns}_{snake}_new({ty_name} *rep);
1539extern {ty_name}* {ns}_{snake}_rep({own} handle);
1540void {ns}_{snake}_destructor({ty_name} *rep);
1541 "
1542 ));
1543
1544 self.src.c_helpers(&format!(
1545 r#"
1546__attribute__(( __import_module__("[export]{module}"), __import_name__("[resource-new]{name}")))
1547extern int32_t __wasm_import_{ns}_{snake}_new(int32_t);
1548
1549__attribute__((__import_module__("[export]{module}"), __import_name__("[resource-rep]{name}")))
1550extern int32_t __wasm_import_{ns}_{snake}_rep(int32_t);
1551
1552{own} {ns}_{snake}_new({ty_name} *rep) {{
1553 return ({own}) {{ __wasm_import_{ns}_{snake}_new((int32_t) rep) }};
1554}}
1555
1556{ty_name}* {ns}_{snake}_rep({own} handle) {{
1557 return ({ns}_{snake}_t*) __wasm_import_{ns}_{snake}_rep(handle.__handle);
1558}}
1559
1560__attribute__((__export_name__("{module}#[dtor]{snake}")))
1561void __wasm_export_{ns}_{snake}_dtor({ns}_{snake}_t* arg) {{
1562 {ns}_{snake}_destructor(arg);
1563}}
1564 "#
1565 ));
1566 }
1567
1568 self.r#gen.resources.insert(
1569 id,
1570 ResourceInfo {
1571 own,
1572 borrow,
1573 direction: if self.in_import {
1574 Direction::Import
1575 } else {
1576 Direction::Export
1577 },
1578 drop_fn,
1579 },
1580 );
1581 }
1582
1583 fn type_tuple(&mut self, id: TypeId, _name: &str, tuple: &Tuple, docs: &Docs) {
1584 self.src.h_defs("\n");
1585 self.docs(docs, SourceType::HDefs);
1586 self.start_typedef_struct(id);
1587 for (i, ty) in tuple.types.iter().enumerate() {
1588 self.print_ty(SourceType::HDefs, ty);
1589 uwriteln!(self.src.h_defs, " f{i};");
1590 }
1591 self.finish_typedef_struct(id);
1592 }
1593
1594 fn type_flags(&mut self, id: TypeId, name: &str, flags: &Flags, docs: &Docs) {
1595 self.src.h_defs("\n");
1596 self.docs(docs, SourceType::HDefs);
1597 self.src.h_defs("typedef ");
1598 let repr = flags_repr(flags);
1599 self.src.h_defs(int_repr(repr));
1600 self.src.h_defs(" ");
1601 self.print_typedef_target(id);
1602
1603 if flags.flags.len() > 0 {
1604 self.src.h_defs("\n");
1605 }
1606 let ns = self.owner_namespace(id).to_shouty_snake_case();
1607 for (i, flag) in flags.flags.iter().enumerate() {
1608 self.docs(&flag.docs, SourceType::HDefs);
1609 uwriteln!(
1610 self.src.h_defs,
1611 "#define {ns}_{}_{} (1 << {i})",
1612 name.to_shouty_snake_case(),
1613 flag.name.to_shouty_snake_case(),
1614 );
1615 }
1616 }
1617
1618 fn type_variant(&mut self, id: TypeId, name: &str, variant: &Variant, docs: &Docs) {
1619 self.src.h_defs("\n");
1620 self.docs(docs, SourceType::HDefs);
1621 self.start_typedef_struct(id);
1622 self.src.h_defs(int_repr(variant.tag()));
1623 self.src.h_defs(" tag;\n");
1624
1625 let cases_with_data = Vec::from_iter(
1626 variant
1627 .cases
1628 .iter()
1629 .filter_map(|case| case.ty.as_ref().map(|ty| (&case.name, ty))),
1630 );
1631
1632 if !cases_with_data.is_empty() {
1633 self.src.h_defs("union {\n");
1634 for (name, ty) in cases_with_data {
1635 self.print_ty(SourceType::HDefs, ty);
1636 self.src.h_defs(" ");
1637 self.src.h_defs(&to_c_ident(name));
1638 self.src.h_defs(";\n");
1639 }
1640 self.src.h_defs("} val;\n");
1641 }
1642 self.finish_typedef_struct(id);
1643
1644 if variant.cases.len() > 0 {
1645 self.src.h_defs("\n");
1646 }
1647 let ns = self.owner_namespace(id).to_shouty_snake_case();
1648 for (i, case) in variant.cases.iter().enumerate() {
1649 self.docs(&case.docs, SourceType::HDefs);
1650 uwriteln!(
1651 self.src.h_defs,
1652 "#define {ns}_{}_{} {i}",
1653 name.to_shouty_snake_case(),
1654 case.name.to_shouty_snake_case(),
1655 );
1656 }
1657 }
1658
1659 fn type_option(&mut self, id: TypeId, _name: &str, payload: &Type, docs: &Docs) {
1660 self.src.h_defs("\n");
1661 self.docs(docs, SourceType::HDefs);
1662 self.start_typedef_struct(id);
1663 self.src.h_defs("bool is_some;\n");
1664 self.print_ty(SourceType::HDefs, payload);
1665 self.src.h_defs(" val;\n");
1666 self.finish_typedef_struct(id);
1667 }
1668
1669 fn type_result(&mut self, id: TypeId, _name: &str, result: &Result_, docs: &Docs) {
1670 self.src.h_defs("\n");
1671 self.docs(docs, SourceType::HDefs);
1672 self.start_typedef_struct(id);
1673 self.src.h_defs("bool is_err;\n");
1674 if result.ok.is_some() || result.err.is_some() {
1675 self.src.h_defs("union {\n");
1676 if let Some(ok) = result.ok.as_ref() {
1677 self.print_ty(SourceType::HDefs, ok);
1678 self.src.h_defs(" ok;\n");
1679 }
1680 if let Some(err) = result.err.as_ref() {
1681 self.print_ty(SourceType::HDefs, err);
1682 self.src.h_defs(" err;\n");
1683 }
1684 self.src.h_defs("} val;\n");
1685 }
1686 self.finish_typedef_struct(id);
1687 }
1688
1689 fn type_enum(&mut self, id: TypeId, name: &str, enum_: &Enum, docs: &Docs) {
1690 uwrite!(self.src.h_defs, "\n");
1691 self.docs(docs, SourceType::HDefs);
1692 let int_t = int_repr(enum_.tag());
1693 uwrite!(self.src.h_defs, "typedef {int_t} ");
1694 self.print_typedef_target(id);
1695
1696 if enum_.cases.len() > 0 {
1697 self.src.h_defs("\n");
1698 }
1699 let ns = self.owner_namespace(id).to_shouty_snake_case();
1700 for (i, case) in enum_.cases.iter().enumerate() {
1701 self.docs(&case.docs, SourceType::HDefs);
1702 uwriteln!(
1703 self.src.h_defs,
1704 "#define {ns}_{}_{} {i}",
1705 name.to_shouty_snake_case(),
1706 case.name.to_shouty_snake_case(),
1707 );
1708 }
1709 }
1710
1711 fn type_alias(&mut self, id: TypeId, _name: &str, ty: &Type, docs: &Docs) {
1712 let target = dealias(self.resolve, id);
1716 if matches!(&self.resolve.types[target].kind, TypeDefKind::Resource) {
1717 return;
1718 }
1719
1720 self.src.h_defs("\n");
1721 self.docs(docs, SourceType::HDefs);
1722 self.src.h_defs("typedef ");
1723 self.print_ty(SourceType::HDefs, ty);
1724 self.src.h_defs(" ");
1725 self.print_typedef_target(id);
1726 }
1727
1728 fn type_list(&mut self, id: TypeId, _name: &str, ty: &Type, docs: &Docs) {
1729 self.src.h_defs("\n");
1730 self.docs(docs, SourceType::HDefs);
1731 self.start_typedef_struct(id);
1732 self.print_ty(SourceType::HDefs, ty);
1733 self.src.h_defs(" *ptr;\n");
1734 self.src.h_defs("size_t len;\n");
1735 self.finish_typedef_struct(id);
1736 }
1737
1738 fn type_fixed_length_list(
1739 &mut self,
1740 _id: TypeId,
1741 _name: &str,
1742 _ty: &Type,
1743 _size: u32,
1744 _docs: &Docs,
1745 ) {
1746 todo!("named fixed-length list types are not yet supported in the C backend")
1747 }
1748
1749 fn type_future(&mut self, id: TypeId, _name: &str, _ty: &Option<Type>, docs: &Docs) {
1750 self.src.h_defs("\n");
1751 self.docs(docs, SourceType::HDefs);
1752 self.src.h_defs("\ntypedef uint32_t ");
1753 self.print_typedef_target(id);
1754 }
1755
1756 fn type_stream(&mut self, id: TypeId, _name: &str, _ty: &Option<Type>, docs: &Docs) {
1757 self.src.h_defs("\n");
1758 self.docs(docs, SourceType::HDefs);
1759 self.src.h_defs("\ntypedef uint32_t ");
1760 self.print_typedef_target(id);
1761 }
1762
1763 fn type_builtin(&mut self, id: TypeId, name: &str, ty: &Type, docs: &Docs) {
1764 let _ = (id, name, ty, docs);
1765 }
1766}
1767
1768impl<'a> wit_bindgen_core::AnonymousTypeGenerator<'a> for InterfaceGenerator<'a> {
1769 fn resolve(&self) -> &'a Resolve {
1770 self.resolve
1771 }
1772
1773 fn anonymous_type_handle(&mut self, id: TypeId, handle: &Handle, _docs: &Docs) {
1774 self.src.h_defs("\ntypedef ");
1775 let resource = match handle {
1776 Handle::Borrow(id) | Handle::Own(id) => id,
1777 };
1778 let info = &self.r#gen.resources[&dealias(self.resolve, *resource)];
1779 match handle {
1780 Handle::Borrow(_) => self.src.h_defs(&info.borrow),
1781 Handle::Own(_) => self.src.h_defs(&info.own),
1782 }
1783 self.src.h_defs(" ");
1784 self.print_typedef_target(id);
1785 }
1786
1787 fn anonymous_type_tuple(&mut self, id: TypeId, ty: &Tuple, _docs: &Docs) {
1788 self.src.h_defs("\ntypedef ");
1789 self.src.h_defs("struct {\n");
1790 for (i, t) in ty.types.iter().enumerate() {
1791 let ty = self.r#gen.type_name(t);
1792 uwriteln!(self.src.h_defs, "{ty} f{i};");
1793 }
1794 self.src.h_defs("}");
1795 self.src.h_defs(" ");
1796 self.print_typedef_target(id);
1797 }
1798
1799 fn anonymous_type_option(&mut self, id: TypeId, ty: &Type, _docs: &Docs) {
1800 self.src.h_defs("\ntypedef ");
1801 self.src.h_defs("struct {\n");
1802 self.src.h_defs("bool is_some;\n");
1803 let ty = self.r#gen.type_name(ty);
1804 uwriteln!(self.src.h_defs, "{ty} val;");
1805 self.src.h_defs("}");
1806 self.src.h_defs(" ");
1807 self.print_typedef_target(id);
1808 }
1809
1810 fn anonymous_type_result(&mut self, id: TypeId, ty: &Result_, _docs: &Docs) {
1811 self.src.h_defs("\ntypedef ");
1812 self.src.h_defs(
1813 "struct {
1814 bool is_err;
1815 ",
1816 );
1817 let ok_ty = ty.ok.as_ref();
1818 let err_ty = ty.err.as_ref();
1819 if ok_ty.is_some() || err_ty.is_some() {
1820 self.src.h_defs("union {\n");
1821 if let Some(ok) = ok_ty {
1822 let ty = self.r#gen.type_name(ok);
1823 uwriteln!(self.src.h_defs, "{ty} ok;");
1824 }
1825 if let Some(err) = err_ty {
1826 let ty = self.r#gen.type_name(err);
1827 uwriteln!(self.src.h_defs, "{ty} err;");
1828 }
1829 self.src.h_defs("} val;\n");
1830 }
1831 self.src.h_defs("}");
1832 self.src.h_defs(" ");
1833 self.print_typedef_target(id);
1834 }
1835
1836 fn anonymous_type_list(&mut self, id: TypeId, ty: &Type, _docs: &Docs) {
1837 self.src.h_defs("\ntypedef ");
1838 self.src.h_defs("struct {\n");
1839 let ty = self.r#gen.type_name(ty);
1840 uwriteln!(self.src.h_defs, "{ty} *ptr;");
1841 self.src.h_defs("size_t len;\n");
1842 self.src.h_defs("}");
1843 self.src.h_defs(" ");
1844 self.print_typedef_target(id);
1845 }
1846
1847 fn anonymous_type_future(&mut self, id: TypeId, _ty: &Option<Type>, _docs: &Docs) {
1848 self.src.h_defs("\ntypedef uint32_t ");
1849 self.print_typedef_target(id);
1850 }
1851
1852 fn anonymous_type_stream(&mut self, id: TypeId, _ty: &Option<Type>, _docs: &Docs) {
1853 self.src.h_defs("\ntypedef uint32_t ");
1854 self.print_typedef_target(id);
1855 }
1856
1857 fn anonymous_type_type(&mut self, _id: TypeId, _ty: &Type, _docs: &Docs) {
1858 todo!("print_anonymous_type for type");
1859 }
1860
1861 fn anonymous_type_fixed_length_list(
1862 &mut self,
1863 _id: TypeId,
1864 _ty: &Type,
1865 _size: u32,
1866 _docs: &Docs,
1867 ) {
1868 todo!("print_anonymous_type for fixed length list");
1869 }
1870}
1871
1872pub enum CTypeNameInfo<'a> {
1873 Named { name: &'a str },
1874 Anonymous { is_prim: bool },
1875}
1876
1877pub fn gen_type_name(resolve: &Resolve, ty: TypeId) -> (CTypeNameInfo<'_>, String) {
1880 let mut encoded = String::new();
1881 push_ty_name(resolve, &Type::Id(ty), &mut encoded);
1882 let info = if let Some(name) = &resolve.types[ty].name {
1883 CTypeNameInfo::Named {
1884 name: name.as_ref(),
1885 }
1886 } else {
1887 CTypeNameInfo::Anonymous {
1888 is_prim: is_prim_type_id(resolve, ty),
1889 }
1890 };
1891
1892 (info, encoded)
1893}
1894
1895impl InterfaceGenerator<'_> {
1896 fn define_interface_types(&mut self, id: InterfaceId) {
1897 let mut live = LiveTypes::default();
1898 live.add_interface(self.resolve, id);
1899 self.define_live_types(live);
1900 }
1901
1902 fn define_function_types(&mut self, funcs: &[(&str, &Function)]) {
1903 let mut live = LiveTypes::default();
1904 for (_, func) in funcs {
1905 live.add_func(self.resolve, func);
1906 }
1907 self.define_live_types(live);
1908 }
1909
1910 fn define_live_types(&mut self, live: LiveTypes) {
1911 for ty in live.iter() {
1912 if self.r#gen.type_names.contains_key(&ty) {
1913 continue;
1914 }
1915
1916 let (info, encoded) = gen_type_name(&self.resolve, ty);
1917 match info {
1918 CTypeNameInfo::Named { name } => {
1919 let typedef_name = format!("{}_{encoded}_t", self.owner_namespace(ty));
1920 let prev = self.r#gen.type_names.insert(ty, typedef_name.clone());
1921 assert!(prev.is_none());
1922
1923 self.define_type(name, ty)
1924 }
1925
1926 CTypeNameInfo::Anonymous { is_prim } => {
1927 let (defined, name) = if is_prim {
1928 let namespace = self.r#gen.world.to_snake_case();
1929 let name = format!("{namespace}_{encoded}_t");
1930 let new_prim = self.r#gen.prim_names.insert(name.clone());
1931 (!new_prim, name)
1932 } else {
1933 let namespace = self.owner_namespace(ty);
1934 (false, format!("{namespace}_{encoded}_t"))
1935 };
1936
1937 let prev = self.r#gen.type_names.insert(ty, name);
1938 assert!(prev.is_none());
1939
1940 if defined {
1941 continue;
1942 }
1943
1944 let kind = &self.resolve.types[ty].kind;
1945 if let TypeDefKind::Handle(handle) = kind {
1946 let resource = match handle {
1947 Handle::Borrow(id) | Handle::Own(id) => id,
1948 };
1949 let origin = dealias(self.resolve, *resource);
1950 if origin == *resource {
1951 continue;
1952 }
1953 }
1954
1955 self.define_anonymous_type(ty)
1956 }
1957 }
1958
1959 self.define_dtor(ty);
1960 }
1961 }
1962
1963 fn define_dtor(&mut self, id: TypeId) {
1964 let h_helpers_start = self.src.h_helpers.len();
1965 let c_helpers_start = self.src.c_helpers.len();
1966
1967 let name = self.r#gen.type_names[&id].clone();
1968 let prefix = name.strip_suffix("_t").unwrap();
1969
1970 self.src
1971 .h_helpers(&format!("\nvoid {prefix}_free({name} *ptr);\n"));
1972 self.src
1973 .c_helpers(&format!("\nvoid {prefix}_free({name} *ptr) {{\n"));
1974 let c_helpers_body_start = self.src.c_helpers.len();
1975 match &self.resolve.types[id].kind {
1976 TypeDefKind::Type(t) => self.free(t, "ptr"),
1977
1978 TypeDefKind::Flags(_) => {}
1979 TypeDefKind::Enum(_) => {}
1980
1981 TypeDefKind::Record(r) => {
1982 for field in r.fields.iter() {
1983 self.free(&field.ty, &format!("&ptr->{}", to_c_ident(&field.name)));
1984 }
1985 }
1986
1987 TypeDefKind::Tuple(t) => {
1988 for (i, ty) in t.types.iter().enumerate() {
1989 self.free(ty, &format!("&ptr->f{i}"));
1990 }
1991 }
1992
1993 TypeDefKind::List(t) => {
1994 self.src.c_helpers("size_t list_len = ptr->len;\n");
1995 uwriteln!(self.src.c_helpers, "if (list_len > 0) {{");
1996 let mut t_name = String::new();
1997 self.r#gen.push_type_name(t, &mut t_name);
1998 self.src
1999 .c_helpers(&format!("{t_name} *list_ptr = ptr->ptr;\n"));
2000 self.src
2001 .c_helpers("for (size_t i = 0; i < list_len; i++) {\n");
2002 self.free(t, "&list_ptr[i]");
2003 self.src.c_helpers("}\n");
2004 uwriteln!(self.src.c_helpers, "free(list_ptr);");
2005 uwriteln!(self.src.c_helpers, "}}");
2006 }
2007
2008 TypeDefKind::Variant(v) => {
2009 self.src.c_helpers("switch ((int32_t) ptr->tag) {\n");
2010 for (i, case) in v.cases.iter().enumerate() {
2011 if let Some(ty) = &case.ty {
2012 uwriteln!(self.src.c_helpers, "case {}: {{", i);
2013 let expr = format!("&ptr->val.{}", to_c_ident(&case.name));
2014 self.free(ty, &expr);
2015 self.src.c_helpers("break;\n");
2016 self.src.c_helpers("}\n");
2017 }
2018 }
2019 self.src.c_helpers("}\n");
2020 }
2021
2022 TypeDefKind::Option(t) => {
2023 self.src.c_helpers("if (ptr->is_some) {\n");
2024 self.free(t, "&ptr->val");
2025 self.src.c_helpers("}\n");
2026 }
2027
2028 TypeDefKind::Result(r) => {
2029 self.src.c_helpers("if (!ptr->is_err) {\n");
2030 if let Some(ok) = &r.ok {
2031 self.free(ok, "&ptr->val.ok");
2032 }
2033 if let Some(err) = &r.err {
2034 self.src.c_helpers("} else {\n");
2035 self.free(err, "&ptr->val.err");
2036 }
2037 self.src.c_helpers("}\n");
2038 }
2039 TypeDefKind::Future(_) | TypeDefKind::Stream(_) => {
2040 self.free(&Type::Id(id), "*ptr");
2041 }
2042 TypeDefKind::Resource => {}
2043 TypeDefKind::Handle(Handle::Borrow(id) | Handle::Own(id)) => {
2044 self.free(&Type::Id(*id), "*ptr");
2045 }
2046 TypeDefKind::Unknown => unreachable!(),
2047 TypeDefKind::FixedLengthList(..) => todo!(),
2048 TypeDefKind::Map(..) => todo!(),
2049 }
2050 if c_helpers_body_start == self.src.c_helpers.len() {
2051 self.src.c_helpers.as_mut_string().truncate(c_helpers_start);
2052 self.src.h_helpers.as_mut_string().truncate(h_helpers_start);
2053 return;
2054 }
2055 self.src.c_helpers("}\n");
2056 self.r#gen.dtor_funcs.insert(id, format!("{prefix}_free"));
2057 }
2058
2059 fn free(&mut self, ty: &Type, expr: &str) {
2060 match ty {
2061 Type::Id(id) => {
2062 if let Some(dtor) = self.r#gen.dtor_funcs.get(&id) {
2063 self.src.c_helpers(&format!("{dtor}({expr});\n"));
2064 }
2065 }
2066 Type::String => {
2067 let snake = self.r#gen.world.to_snake_case();
2068 self.src
2069 .c_helpers(&format!("{snake}_string_free({expr});\n"));
2070 }
2071 Type::Bool
2072 | Type::U8
2073 | Type::S8
2074 | Type::U16
2075 | Type::S16
2076 | Type::U32
2077 | Type::S32
2078 | Type::U64
2079 | Type::S64
2080 | Type::F32
2081 | Type::F64
2082 | Type::Char => {}
2083 Type::ErrorContext => todo!("error context free"),
2084 }
2085 }
2086
2087 fn c_func_name(&self, interface_id: Option<&WorldKey>, func: &Function) -> String {
2088 c_func_name(
2089 self.in_import,
2090 self.resolve,
2091 &self.r#gen.world,
2092 interface_id,
2093 func,
2094 &self.r#gen.renamed_interfaces,
2095 )
2096 }
2097
2098 fn import(&mut self, interface_name: Option<&WorldKey>, func: &Function) {
2099 let async_ = self
2100 .r#gen
2101 .opts
2102 .async_
2103 .is_async(self.resolve, interface_name, func, true);
2104 if async_ {
2105 self.r#gen.needs_async = true;
2106 }
2107
2108 self.docs(&func.docs, SourceType::HFns);
2109 let (variant, import_prefix) = if async_ {
2110 (AbiVariant::GuestImportAsync, "[async-lower]")
2111 } else {
2112 (AbiVariant::GuestImport, "")
2113 };
2114 let sig = self.resolve.wasm_signature(variant, func);
2115
2116 self.src.c_fns("\n");
2117
2118 uwriteln!(
2122 self.src.c_fns,
2123 "__attribute__((__import_module__(\"{}\"), __import_name__(\"{import_prefix}{}\")))",
2124 match interface_name {
2125 Some(name) => self.resolve.name_world_key(name),
2126 None => "$root".to_string(),
2127 },
2128 func.name
2129 );
2130 let name = self.c_func_name(interface_name, func);
2131 let import_name = self.r#gen.names.tmp(&format!("__wasm_import_{name}",));
2132 self.src.c_fns("extern ");
2133 match sig.results.len() {
2134 0 => self.src.c_fns("void"),
2135 1 => self.src.c_fns(wasm_type(sig.results[0])),
2136 _ => unimplemented!("multi-value return not supported"),
2137 }
2138 self.src.c_fns(" ");
2139 self.src.c_fns(&import_name);
2140 self.src.c_fns("(");
2141 for (i, param) in sig.params.iter().enumerate() {
2142 if i > 0 {
2143 self.src.c_fns(", ");
2144 }
2145 self.src.c_fns(wasm_type(*param));
2146 }
2147 if sig.params.len() == 0 {
2148 self.src.c_fns("void");
2149 }
2150 self.src.c_fns(");\n");
2151
2152 self.src.h_fns("extern ");
2155 let c_sig = self.print_sig(interface_name, func, &sig, async_);
2156 self.src.c_adapters("\n");
2157 self.src.c_adapters(&c_sig.sig);
2158 self.src.c_adapters(" {\n");
2159
2160 if async_ {
2161 self.import_body_async(func, c_sig, &sig, &import_name);
2162 } else {
2163 self.import_body_sync(func, c_sig, &import_name);
2164 }
2165
2166 self.src.c_adapters("}\n");
2167
2168 self.generate_async_futures_and_streams("", func, interface_name);
2169 }
2170
2171 fn import_body_sync(&mut self, func: &Function, c_sig: CSig, import_name: &str) {
2172 let mut optional_adapters = String::from("");
2175 if !self.r#gen.opts.no_sig_flattening {
2176 for (i, (_, param)) in c_sig.params.iter().enumerate() {
2177 let ty = &func.params[i].ty;
2178 if let Type::Id(id) = ty {
2179 if let TypeDefKind::Option(_) = &self.resolve.types[*id].kind {
2180 let ty = self.r#gen.type_name(ty);
2181 uwrite!(
2182 optional_adapters,
2183 "{ty} {param};
2184 {param}.is_some = maybe_{param} != NULL;"
2185 );
2186 uwriteln!(
2187 optional_adapters,
2188 "if (maybe_{param}) {{
2189 {param}.val = *maybe_{param};
2190 }}",
2191 );
2192 }
2193 }
2194 }
2195 }
2196
2197 let mut f = FunctionBindgen::new(self, c_sig, &import_name);
2198 for (pointer, param) in f.sig.params.iter() {
2199 if *pointer {
2200 f.params.push(format!("*{param}"));
2201 } else {
2202 f.params.push(param.clone());
2203 }
2204 }
2205 for ptr in f.sig.retptrs.iter() {
2206 f.locals.insert(ptr).unwrap();
2207 }
2208 f.src.push_str(&optional_adapters);
2209 abi::call(
2210 f.r#gen.resolve,
2211 AbiVariant::GuestImport,
2212 LiftLower::LowerArgsLiftResults,
2213 func,
2214 &mut f,
2215 false,
2216 );
2217
2218 let FunctionBindgen {
2219 src,
2220 import_return_pointer_area_size,
2221 import_return_pointer_area_align,
2222 ..
2223 } = f;
2224
2225 if !import_return_pointer_area_size.is_empty() {
2226 self.src.c_adapters(&format!(
2227 "\
2228 __attribute__((__aligned__({})))
2229 uint8_t ret_area[{}];
2230 ",
2231 import_return_pointer_area_align.format(POINTER_SIZE_EXPRESSION),
2232 import_return_pointer_area_size.format(POINTER_SIZE_EXPRESSION),
2233 ));
2234 }
2235
2236 self.src.c_adapters(&String::from(src));
2237 }
2238
2239 fn import_body_async(
2240 &mut self,
2241 func: &Function,
2242 c_sig: CSig,
2243 wasm_sig: &WasmSignature,
2244 import_name: &str,
2245 ) {
2246 let mut params = Vec::new();
2247 if wasm_sig.indirect_params {
2248 params.push(format!("(uint8_t*) {}", c_sig.params[0].1));
2249 } else {
2250 let mut f = FunctionBindgen::new(self, c_sig.clone(), "INVALID");
2251 for (i, Param { ty, .. }) in func.params.iter().enumerate() {
2252 let param = &c_sig.params[i].1;
2253 params.extend(abi::lower_flat(f.r#gen.resolve, &mut f, param.clone(), ty));
2254 }
2255 f.r#gen.src.c_adapters.push_str(&f.src);
2256 }
2257 if func.result.is_some() {
2258 params.push(format!("(uint8_t*) {}", c_sig.params.last().unwrap().1));
2259 }
2260 uwriteln!(
2261 self.src.c_adapters,
2262 "return {import_name}({});",
2263 params.join(", "),
2264 );
2265 }
2266
2267 fn export(&mut self, func: &Function, interface_name: Option<&WorldKey>) {
2268 let async_ = self
2269 .r#gen
2270 .opts
2271 .async_
2272 .is_async(self.resolve, interface_name, func, false);
2273
2274 let (variant, prefix) = if async_ {
2275 self.r#gen.needs_async = true;
2276 (AbiVariant::GuestExportAsync, "[async-lift]")
2277 } else {
2278 (AbiVariant::GuestExport, "")
2279 };
2280
2281 let sig = self.resolve.wasm_signature(variant, func);
2282
2283 self.src.c_fns("\n");
2284
2285 let core_module_name = interface_name.map(|s| self.resolve.name_world_key(s));
2286 let export_name = func.legacy_core_export_name(core_module_name.as_deref());
2287
2288 let h_sig = self.print_sig(interface_name, func, &sig, async_);
2291
2292 uwriteln!(
2295 self.src.c_adapters,
2296 "\n__attribute__((__export_name__(\"{prefix}{export_name}\")))"
2297 );
2298 let name = self.c_func_name(interface_name, func);
2299 let import_name = self.r#gen.names.tmp(&format!("__wasm_export_{name}"));
2300
2301 let mut f = FunctionBindgen::new(self, h_sig, &import_name);
2302 match sig.results.len() {
2303 0 => f.r#gen.src.c_adapters("void"),
2304 1 => f.r#gen.src.c_adapters(wasm_type(sig.results[0])),
2305 _ => unimplemented!("multi-value return not supported"),
2306 }
2307 f.r#gen.src.c_adapters(" ");
2308 f.r#gen.src.c_adapters(&import_name);
2309 f.r#gen.src.c_adapters("(");
2310 for (i, param) in sig.params.iter().enumerate() {
2311 if i > 0 {
2312 f.r#gen.src.c_adapters(", ");
2313 }
2314 let name = f.locals.tmp("arg");
2315 uwrite!(f.r#gen.src.c_adapters, "{} {}", wasm_type(*param), name);
2316 f.params.push(name);
2317 }
2318 if sig.params.len() == 0 {
2319 f.r#gen.src.c_adapters("void");
2320 }
2321 f.r#gen.src.c_adapters(") {\n");
2322
2323 abi::call(
2325 f.r#gen.resolve,
2326 variant,
2327 LiftLower::LiftArgsLowerResults,
2328 func,
2329 &mut f,
2330 async_,
2331 );
2332 let FunctionBindgen {
2333 src,
2334 deferred_task_return,
2335 ..
2336 } = f;
2337 self.src.c_adapters(&src);
2338 self.src.c_adapters("}\n");
2339
2340 if async_ {
2341 let snake = self.r#gen.world.to_snake_case();
2342 let return_ty = match &func.result {
2343 Some(ty) => format!("{} ret", self.r#gen.type_name(ty)),
2344 None => "void".to_string(),
2345 };
2346 let DeferredTaskReturn::Emitted {
2347 body: mut task_return_body,
2348 name: task_return_name,
2349 params: task_return_params,
2350 } = deferred_task_return
2351 else {
2352 unreachable!()
2353 };
2354 let task_return_param_tys = task_return_params
2355 .iter()
2356 .map(|(ty, _expr)| wasm_type(*ty))
2357 .collect::<Vec<_>>()
2358 .join(", ");
2359 let task_return_param_exprs = task_return_params
2360 .iter()
2361 .map(|(_ty, expr)| expr.as_str())
2362 .collect::<Vec<_>>()
2363 .join(", ");
2364 let task_return_body = task_return_body.as_mut_string();
2365 uwriteln!(
2366 self.src.h_fns,
2367 "{snake}_callback_code_t {name}_callback({snake}_event_t *event);",
2368 );
2369 uwriteln!(self.src.h_helpers, "void {name}_return({return_ty});");
2370 let import_module = match interface_name {
2371 Some(name) => self.resolve.name_world_key(name),
2372 None => "$root".to_string(),
2373 };
2374 uwriteln!(
2375 self.src.c_helpers,
2376 r#"
2377__attribute__((__export_name__("[callback]{prefix}{export_name}")))
2378uint32_t {import_name}_callback(uint32_t event_raw, uint32_t waitable, uint32_t code) {{
2379 {snake}_event_t event;
2380 event.event = ({snake}_event_code_t) event_raw;
2381 event.waitable = waitable;
2382 event.code = code;
2383 return {name}_callback(&event);
2384}}
2385
2386__attribute__((__import_module__("[export]{import_module}"), __import_name__("{task_return_name}")))
2387void {import_name}__task_return({task_return_param_tys});
2388
2389void {name}_return({return_ty}) {{
2390 {task_return_body}
2391 {import_name}__task_return({task_return_param_exprs});
2392}}
2393 "#
2394 );
2395 } else if abi::guest_export_needs_post_return(self.resolve, func) {
2396 uwriteln!(
2397 self.src.c_fns,
2398 "__attribute__((__weak__, __export_name__(\"cabi_post_{export_name}\")))"
2399 );
2400 uwrite!(self.src.c_fns, "void {import_name}_post_return(");
2401
2402 let mut params = Vec::new();
2403 let mut c_sig = CSig {
2404 name: String::from("INVALID"),
2405 sig: String::from("INVALID"),
2406 params: Vec::new(),
2407 ret: Return::default(),
2408 retptrs: Vec::new(),
2409 };
2410 for (i, result) in sig.results.iter().enumerate() {
2411 let name = format!("arg{i}");
2412 uwrite!(self.src.c_fns, "{} {name}", wasm_type(*result));
2413 c_sig.params.push((false, name.clone()));
2414 params.push(name);
2415 }
2416 self.src.c_fns.push_str(") {\n");
2417
2418 let mut f = FunctionBindgen::new(self, c_sig, &import_name);
2419 f.params = params;
2420 abi::post_return(f.r#gen.resolve, func, &mut f);
2421 let FunctionBindgen { src, .. } = f;
2422 self.src.c_fns(&src);
2423 self.src.c_fns("}\n");
2424 }
2425
2426 self.generate_async_futures_and_streams("[export]", func, interface_name);
2427 }
2428
2429 fn print_sig(
2430 &mut self,
2431 interface_name: Option<&WorldKey>,
2432 func: &Function,
2433 sig: &WasmSignature,
2434 async_: bool,
2435 ) -> CSig {
2436 let name = self.c_func_name(interface_name, func);
2437 self.r#gen.names.insert(&name).expect("duplicate symbols");
2438
2439 let start = self.src.h_fns.len();
2440 let mut result_rets = false;
2441 let mut result_rets_has_ok_type = false;
2442
2443 let ret = if async_ && !self.in_import {
2444 Return {
2445 scalar: func.result.map(Scalar::Type),
2446 retptrs: Vec::new(),
2447 }
2448 } else {
2449 self.classify_ret(func)
2450 };
2451 if async_ {
2452 let snake = self.r#gen.world.to_snake_case();
2453 if self.in_import {
2454 uwrite!(self.src.h_fns, "{snake}_subtask_status_t");
2455 } else {
2456 uwrite!(self.src.h_fns, "{snake}_callback_code_t");
2457 }
2458 } else {
2459 match &ret.scalar {
2460 None | Some(Scalar::Void) => self.src.h_fns("void"),
2461 Some(Scalar::OptionBool(_id)) => self.src.h_fns("bool"),
2462 Some(Scalar::ResultBool(ok, _err)) => {
2463 result_rets = true;
2464 result_rets_has_ok_type = ok.is_some();
2465 self.src.h_fns("bool");
2466 }
2467 Some(Scalar::Type(ty)) => self.print_ty(SourceType::HFns, ty),
2468 }
2469 }
2470 self.src.h_fns(" ");
2471 self.src.h_fns(&name);
2472 self.src.h_fns("(");
2473 let params;
2474 let mut retptrs = Vec::new();
2475 if async_ && self.in_import {
2476 params = self.print_sig_async_import_params(&name, func, sig);
2477 } else if async_ && !self.in_import {
2478 params = self.print_sig_params(func);
2479 } else {
2480 params = self.print_sig_params(func);
2481 let single_ret = ret.retptrs.len() == 1;
2482 for (i, ty) in ret.retptrs.iter().enumerate() {
2483 if i > 0 || func.params.len() > 0 {
2484 self.src.h_fns(", ");
2485 }
2486 self.print_ty(SourceType::HFns, ty);
2487 self.src.h_fns(" *");
2488 let name: String = if result_rets {
2489 assert!(i <= 1);
2490 if i == 0 && result_rets_has_ok_type {
2491 "ret".into()
2492 } else {
2493 "err".into()
2494 }
2495 } else if single_ret {
2496 "ret".into()
2497 } else {
2498 format!("ret{i}")
2499 };
2500 self.src.h_fns(&name);
2501 retptrs.push(name);
2502 }
2503 if func.params.len() == 0 && ret.retptrs.len() == 0 {
2504 self.src.h_fns("void");
2505 }
2506 }
2507 self.src.h_fns(")");
2508
2509 let sig = self.src.h_fns[start..].to_string();
2510 self.src.h_fns(";\n");
2511
2512 CSig {
2513 sig,
2514 name,
2515 params,
2516 ret,
2517 retptrs,
2518 }
2519 }
2520
2521 fn print_sig_params(&mut self, func: &Function) -> Vec<(bool, String)> {
2522 let mut params = Vec::new();
2523 for (i, Param { name, ty, .. }) in func.params.iter().enumerate() {
2524 if i > 0 {
2525 self.src.h_fns(", ");
2526 }
2527 let pointer = is_arg_by_pointer(self.resolve, ty);
2528 let optional_type = if let Type::Id(id) = ty {
2530 if let TypeDefKind::Option(option_ty) = &self.resolve.types[*id].kind {
2531 if !self.r#gen.opts.no_sig_flattening {
2532 Some(option_ty)
2533 } else {
2534 None
2535 }
2536 } else {
2537 None
2538 }
2539 } else {
2540 None
2541 };
2542 let (print_ty, print_name) = if !self.r#gen.opts.no_sig_flattening {
2543 if let Some(option_ty) = optional_type {
2544 (option_ty, format!("maybe_{}", to_c_ident(name)))
2545 } else {
2546 (ty, to_c_ident(name))
2547 }
2548 } else {
2549 (ty, to_c_ident(name))
2550 };
2551 self.print_ty(SourceType::HFns, print_ty);
2552 self.src.h_fns(" ");
2553 if pointer {
2554 self.src.h_fns("*");
2555 }
2556 self.src.h_fns(&print_name);
2557 params.push((optional_type.is_none() && pointer, to_c_ident(name)));
2558 }
2559 params
2560 }
2561
2562 fn print_sig_async_import_params(
2563 &mut self,
2564 c_func_name: &str,
2565 func: &Function,
2566 sig: &WasmSignature,
2567 ) -> Vec<(bool, String)> {
2568 let mut params = Vec::new();
2569 let mut printed = false;
2570 if sig.indirect_params {
2571 match &func.params[..] {
2572 [] => {}
2573 [Param { name: _, ty, .. }] => {
2574 printed = true;
2575 let name = "arg".to_string();
2576 self.print_ty(SourceType::HFns, ty);
2577 self.src.h_fns(" *");
2578 self.src.h_fns(&name);
2579 params.push((true, name));
2580 }
2581 multiple => {
2582 printed = true;
2583 let names = multiple
2584 .iter()
2585 .map(|Param { name, ty, .. }| (to_c_ident(name), self.r#gen.type_name(ty)))
2586 .collect::<Vec<_>>();
2587 uwriteln!(self.src.h_defs, "typedef struct {c_func_name}_args {{");
2588 for (name, ty) in names {
2589 uwriteln!(self.src.h_defs, "{ty} {name};");
2590 }
2591 uwriteln!(self.src.h_defs, "}} {c_func_name}_args_t;");
2592 uwrite!(self.src.h_fns, "{c_func_name}_args_t *args");
2593 params.push((true, "args".to_string()));
2594 }
2595 }
2596 } else {
2597 for Param { name, ty, .. } in func.params.iter() {
2598 let name = to_c_ident(name);
2599 if printed {
2600 self.src.h_fns(", ");
2601 } else {
2602 printed = true;
2603 }
2604 self.print_ty(SourceType::HFns, ty);
2605 self.src.h_fns(" ");
2606 self.src.h_fns(&name);
2607 params.push((false, name));
2608 }
2609 }
2610 if let Some(ty) = &func.result {
2611 if printed {
2612 self.src.h_fns(", ");
2613 } else {
2614 printed = true;
2615 }
2616 let name = "result".to_string();
2617 self.print_ty(SourceType::HFns, ty);
2618 self.src.h_fns(" *");
2619 self.src.h_fns(&name);
2620 params.push((true, name));
2621 }
2622 if !printed {
2623 self.src.h_fns("void");
2624 }
2625 params
2626 }
2627
2628 fn classify_ret(&mut self, func: &Function) -> Return {
2629 let mut ret = Return::default();
2630 match &func.result {
2631 None => ret.scalar = Some(Scalar::Void),
2632 Some(ty) => {
2633 ret.return_single(self.resolve, ty, ty, !self.r#gen.opts.no_sig_flattening);
2634 }
2635 }
2636 return ret;
2637 }
2638
2639 fn print_typedef_target(&mut self, id: TypeId) {
2640 let name = &self.r#gen.type_names[&id];
2641 self.src.h_defs(&name);
2642 self.src.h_defs(";\n");
2643 }
2644
2645 fn start_typedef_struct(&mut self, id: TypeId) {
2646 let name = &self.r#gen.type_names[&id];
2647 self.src.h_defs("typedef struct ");
2648 self.src.h_defs(&name);
2649 self.src.h_defs(" {\n");
2650 }
2651
2652 fn finish_typedef_struct(&mut self, id: TypeId) {
2653 self.src.h_defs("} ");
2654 self.print_typedef_target(id);
2655 }
2656
2657 fn owner_namespace(&self, id: TypeId) -> String {
2658 owner_namespace(
2659 self.interface,
2660 self.in_import,
2661 self.r#gen.world.clone(),
2662 self.resolve,
2663 id,
2664 &self.r#gen.renamed_interfaces,
2665 )
2666 }
2667
2668 fn print_ty(&mut self, stype: SourceType, ty: &Type) {
2669 self.r#gen
2670 .push_type_name(ty, self.src.src(stype).as_mut_string());
2671 }
2672
2673 fn docs(&mut self, docs: &Docs, stype: SourceType) {
2674 let docs = match &docs.contents {
2675 Some(docs) => docs,
2676 None => return,
2677 };
2678 let src = self.src.src(stype);
2679 for line in docs.trim().lines() {
2680 src.push_str("// ");
2681 src.push_str(line);
2682 src.push_str("\n");
2683 }
2684 }
2685
2686 fn autodrop_enabled(&self) -> bool {
2687 self.r#gen.opts.autodrop_borrows == Enabled::Yes
2688 }
2689
2690 fn contains_droppable_borrow(&self, ty: &Type) -> bool {
2691 if let Type::Id(id) = ty {
2692 match &self.resolve.types[*id].kind {
2693 TypeDefKind::Handle(h) => match h {
2694 Handle::Borrow(id) => {
2697 !self.in_import
2698 && matches!(
2699 self.r#gen.resources[&dealias(self.resolve, *id)].direction,
2700 Direction::Import
2701 )
2702 }
2703
2704 Handle::Own(_) => false,
2705 },
2706
2707 TypeDefKind::Resource | TypeDefKind::Flags(_) | TypeDefKind::Enum(_) => false,
2708
2709 TypeDefKind::Record(r) => r
2710 .fields
2711 .iter()
2712 .any(|f| self.contains_droppable_borrow(&f.ty)),
2713
2714 TypeDefKind::Tuple(t) => {
2715 t.types.iter().any(|ty| self.contains_droppable_borrow(ty))
2716 }
2717
2718 TypeDefKind::Variant(v) => v.cases.iter().any(|case| {
2719 case.ty
2720 .as_ref()
2721 .map_or(false, |ty| self.contains_droppable_borrow(ty))
2722 }),
2723
2724 TypeDefKind::Option(ty) => self.contains_droppable_borrow(ty),
2725
2726 TypeDefKind::Result(r) => {
2727 r.ok.as_ref()
2728 .map_or(false, |ty| self.contains_droppable_borrow(ty))
2729 || r.err
2730 .as_ref()
2731 .map_or(false, |ty| self.contains_droppable_borrow(ty))
2732 }
2733
2734 TypeDefKind::List(ty) => self.contains_droppable_borrow(ty),
2735
2736 TypeDefKind::Future(_) | TypeDefKind::Stream(_) => false,
2737
2738 TypeDefKind::Type(ty) => self.contains_droppable_borrow(ty),
2739
2740 TypeDefKind::Unknown => false,
2741 TypeDefKind::FixedLengthList(..) => todo!(),
2742 TypeDefKind::Map(..) => todo!(),
2743 }
2744 } else {
2745 false
2746 }
2747 }
2748
2749 fn generate_async_futures_and_streams(
2750 &mut self,
2751 prefix: &str,
2752 func: &Function,
2753 interface: Option<&WorldKey>,
2754 ) {
2755 let module = format!(
2756 "{prefix}{}",
2757 interface
2758 .map(|name| self.resolve.name_world_key(name))
2759 .unwrap_or_else(|| "$root".into())
2760 );
2761 for (index, ty) in func
2762 .find_futures_and_streams(self.resolve)
2763 .into_iter()
2764 .enumerate()
2765 {
2766 let func_name = &func.name;
2767
2768 match &self.resolve.types[ty].kind {
2769 TypeDefKind::Future(payload_type) => {
2770 self.generate_async_future_or_stream(
2771 PayloadFor::Future,
2772 &module,
2773 index,
2774 func_name,
2775 ty,
2776 payload_type.as_ref(),
2777 );
2778 }
2779 TypeDefKind::Stream(payload_type) => {
2780 self.generate_async_future_or_stream(
2781 PayloadFor::Stream,
2782 &module,
2783 index,
2784 func_name,
2785 ty,
2786 payload_type.as_ref(),
2787 );
2788 }
2789 _ => unreachable!(),
2790 }
2791 }
2792 }
2793
2794 fn generate_async_future_or_stream(
2795 &mut self,
2796 payload_for: PayloadFor,
2797 module: &str,
2798 index: usize,
2799 func_name: &str,
2800 ty: TypeId,
2801 payload_type: Option<&Type>,
2802 ) {
2803 if !self.r#gen.futures.insert(ty) {
2804 return;
2805 }
2806 let ty = self.r#gen.type_name(&Type::Id(ty));
2807 let name = ty.strip_suffix("_t").unwrap();
2808 let snake = self.r#gen.world.to_snake_case();
2809 let kind = match payload_for {
2810 PayloadFor::Future => "future",
2811 PayloadFor::Stream => "stream",
2812 };
2813 let payload_len_arg = match payload_for {
2814 PayloadFor::Future => "",
2815 PayloadFor::Stream => ", size_t",
2816 };
2817 let (read_arg_ty, read_arg_expr, write_arg_ty, write_arg_expr) =
2818 match (payload_for, payload_type) {
2819 (PayloadFor::Future, None) => ("".to_string(), "NULL", "".to_string(), "NULL"),
2820 (PayloadFor::Future, Some(ty)) => {
2821 let ty = self.r#gen.type_name(ty);
2822 (
2823 format!(", {ty} *buf"),
2824 "(uint8_t*) buf",
2825 format!(", const {ty} *buf"),
2826 "(const uint8_t*) buf",
2827 )
2828 }
2829 (PayloadFor::Stream, None) => (
2830 ", size_t amt".to_string(),
2831 "NULL, amt",
2832 ", size_t amt".to_string(),
2833 "NULL, amt",
2834 ),
2835 (PayloadFor::Stream, Some(ty)) => {
2836 let ty = self.r#gen.type_name(ty);
2837 (
2838 format!(", {ty} *buf, size_t amt"),
2839 "(uint8_t*) buf, amt",
2840 format!(", const {ty} *buf, size_t amt"),
2841 "(const uint8_t*) buf, amt",
2842 )
2843 }
2844 };
2845
2846 let empty = "";
2849 uwriteln!(
2850 self.src.h_helpers,
2851 r#"
2852typedef uint32_t {name}_writer_t;
2853
2854{ty} {name}_new({name}_writer_t *writer);
2855{snake}_waitable_status_t {name}_read({ty} reader{read_arg_ty});
2856{snake}_waitable_status_t {name}_write({name}_writer_t writer{write_arg_ty});
2857{snake}_waitable_status_t {name}_cancel_read({ty} reader);
2858{snake}_waitable_status_t {name}_cancel_write({name}_writer_t writer);
2859void {name}_drop_readable({ty} reader);{empty}
2860void {name}_drop_writable({name}_writer_t writer);
2861 "#,
2862 );
2863 uwriteln!(
2864 self.src.c_helpers,
2865 r#"
2866__attribute__((__import_module__("{module}"), __import_name__("[{kind}-new-{index}]{func_name}")))
2867extern uint64_t {name}__new(void);
2868__attribute__((__import_module__("{module}"), __import_name__("[async-lower][{kind}-read-{index}]{func_name}")))
2869extern uint32_t {name}__read(uint32_t, uint8_t*{payload_len_arg});
2870__attribute__((__import_module__("{module}"), __import_name__("[async-lower][{kind}-write-{index}]{func_name}")))
2871extern uint32_t {name}__write(uint32_t, const uint8_t*{payload_len_arg});
2872__attribute__((__import_module__("{module}"), __import_name__("[{kind}-cancel-read-{index}]{func_name}")))
2873extern uint32_t {name}__cancel_read(uint32_t);
2874__attribute__((__import_module__("{module}"), __import_name__("[{kind}-cancel-write-{index}]{func_name}")))
2875extern uint32_t {name}__cancel_write(uint32_t);
2876__attribute__((__import_module__("{module}"), __import_name__("[{kind}-drop-readable-{index}]{func_name}")))
2877extern void {name}__drop_readable(uint32_t);
2878__attribute__((__import_module__("{module}"), __import_name__("[{kind}-drop-writable-{index}]{func_name}")))
2879extern void {name}__drop_writable(uint32_t);
2880
2881{ty} {name}_new({name}_writer_t *writer) {{
2882 uint64_t packed = {name}__new();
2883 *writer = (uint32_t) (packed >> 32);
2884 return (uint32_t) packed;
2885}}
2886
2887{snake}_waitable_status_t {name}_read({ty} reader{read_arg_ty}) {{
2888 return {name}__read(reader, {read_arg_expr});
2889}}
2890
2891{snake}_waitable_status_t {name}_write({name}_writer_t writer{write_arg_ty}) {{
2892 return {name}__write(writer, {write_arg_expr});
2893}}
2894
2895{snake}_waitable_status_t {name}_cancel_read({ty} reader){empty} {{
2896 return {name}__cancel_read(reader);
2897}}
2898
2899{snake}_waitable_status_t {name}_cancel_write({name}_writer_t writer) {{
2900 return {name}__cancel_write(writer);
2901}}
2902
2903void {name}_drop_readable({ty} reader){empty} {{
2904 {name}__drop_readable(reader);
2905}}
2906
2907void {name}_drop_writable({name}_writer_t writer) {{
2908 {name}__drop_writable(writer);
2909}}
2910 "#,
2911 );
2912 }
2913}
2914
2915enum PayloadFor {
2916 Future,
2917 Stream,
2918}
2919
2920struct DroppableBorrow {
2921 name: String,
2922 ty: TypeId,
2923}
2924
2925struct FunctionBindgen<'a, 'b> {
2926 r#gen: &'a mut InterfaceGenerator<'b>,
2927 locals: Ns,
2928 src: wit_bindgen_core::Source,
2929 sig: CSig,
2930 func_to_call: &'a str,
2931 block_storage: Vec<wit_bindgen_core::Source>,
2932 blocks: Vec<(String, Vec<String>)>,
2933 payloads: Vec<String>,
2934 params: Vec<String>,
2935 wasm_return: Option<String>,
2936 ret_store_cnt: usize,
2937 import_return_pointer_area_size: ArchitectureSize,
2938 import_return_pointer_area_align: Alignment,
2939
2940 deferred_task_return: DeferredTaskReturn,
2948
2949 borrows: Vec<DroppableBorrow>,
2952
2953 borrow_decls: wit_bindgen_core::Source,
2955}
2956
2957enum DeferredTaskReturn {
2960 None,
2964
2965 Generating {
2972 prev_src: wit_bindgen_core::Source,
2977 },
2978
2979 Emitted {
2987 name: String,
2990 params: Vec<(WasmType, String)>,
2996 body: wit_bindgen_core::Source,
3000 },
3001}
3002
3003impl<'a, 'b> FunctionBindgen<'a, 'b> {
3004 fn new(
3005 r#gen: &'a mut InterfaceGenerator<'b>,
3006 sig: CSig,
3007 func_to_call: &'a str,
3008 ) -> FunctionBindgen<'a, 'b> {
3009 let mut locals = Ns::default();
3010 for (_, name) in sig.params.iter() {
3011 locals.insert(name).unwrap();
3012 }
3013 FunctionBindgen {
3014 r#gen,
3015 sig,
3016 locals,
3017 src: Default::default(),
3018 func_to_call,
3019 block_storage: Vec::new(),
3020 blocks: Vec::new(),
3021 payloads: Vec::new(),
3022 params: Vec::new(),
3023 wasm_return: None,
3024 ret_store_cnt: 0,
3025 import_return_pointer_area_size: Default::default(),
3026 import_return_pointer_area_align: Default::default(),
3027 borrow_decls: Default::default(),
3028 borrows: Vec::new(),
3029 deferred_task_return: DeferredTaskReturn::None,
3030 }
3031 }
3032
3033 fn store_op(&mut self, op: &str, loc: &str) {
3034 self.src.push_str(loc);
3035 self.src.push_str(" = ");
3036 self.src.push_str(op);
3037 self.src.push_str(";\n");
3038 }
3039
3040 fn load(
3041 &mut self,
3042 ty: &str,
3043 offset: ArchitectureSize,
3044 operands: &[String],
3045 results: &mut Vec<String>,
3046 ) {
3047 results.push(format!(
3048 "*(({}*) ({} + {}))",
3049 ty,
3050 operands[0],
3051 offset.format(POINTER_SIZE_EXPRESSION)
3052 ));
3053 }
3054
3055 fn load_ext(
3056 &mut self,
3057 ty: &str,
3058 offset: ArchitectureSize,
3059 operands: &[String],
3060 results: &mut Vec<String>,
3061 ) {
3062 self.load(ty, offset, operands, results);
3063 let result = results.pop().unwrap();
3064 results.push(format!("(int32_t) {result}"));
3065 }
3066
3067 fn store(&mut self, ty: &str, offset: ArchitectureSize, operands: &[String]) {
3068 uwriteln!(
3069 self.src,
3070 "*(({}*)({} + {})) = {};",
3071 ty,
3072 operands[1],
3073 offset.format(POINTER_SIZE_EXPRESSION),
3074 operands[0]
3075 );
3076 }
3077
3078 fn store_in_retptr(&mut self, operand: &String) {
3079 self.store_op(
3080 operand,
3081 &format!("*{}", self.sig.retptrs[self.ret_store_cnt]),
3082 );
3083 self.ret_store_cnt = self.ret_store_cnt + 1;
3084 }
3085
3086 fn empty_return_value(&mut self) {
3087 self.ret_store_cnt = self.ret_store_cnt + 1;
3090 }
3091
3092 fn assert_no_droppable_borrows(&self, context: &str, ty: &Type) {
3093 if !self.r#gen.in_import
3094 && self.r#gen.autodrop_enabled()
3095 && self.r#gen.contains_droppable_borrow(ty)
3096 {
3097 panic!("Unable to autodrop borrows in `{context}` values, please disable autodrop")
3098 }
3099 }
3100}
3101
3102impl Bindgen for FunctionBindgen<'_, '_> {
3103 type Operand = String;
3104
3105 fn sizes(&self) -> &SizeAlign {
3106 &self.r#gen.r#gen.sizes
3107 }
3108
3109 fn push_block(&mut self) {
3110 let prev = mem::take(&mut self.src);
3111 self.block_storage.push(prev);
3112 }
3113
3114 fn finish_block(&mut self, operands: &mut Vec<String>) {
3115 let to_restore = self.block_storage.pop().unwrap();
3116 let src = mem::replace(&mut self.src, to_restore);
3117 self.blocks.push((src.into(), mem::take(operands)));
3118 }
3119
3120 fn return_pointer(&mut self, size: ArchitectureSize, align: Alignment) -> String {
3121 let ptr = self.locals.tmp("ptr");
3122
3123 if self.r#gen.in_import {
3126 self.import_return_pointer_area_size = self.import_return_pointer_area_size.max(size);
3127 self.import_return_pointer_area_align =
3128 self.import_return_pointer_area_align.max(align);
3129 uwriteln!(self.src, "uint8_t *{} = (uint8_t *) &ret_area;", ptr);
3130 } else {
3131 self.r#gen.r#gen.return_pointer_area_size =
3132 self.r#gen.r#gen.return_pointer_area_size.max(size);
3133 self.r#gen.r#gen.return_pointer_area_align =
3134 self.r#gen.r#gen.return_pointer_area_align.max(align);
3135 uwriteln!(self.src, "uint8_t *{} = (uint8_t *) &RET_AREA;", ptr);
3137 }
3138
3139 ptr
3140 }
3141
3142 fn is_list_canonical(&self, resolve: &Resolve, ty: &Type) -> bool {
3143 resolve.all_bits_valid(ty)
3144 }
3145
3146 fn emit(
3147 &mut self,
3148 resolve: &Resolve,
3149 inst: &Instruction<'_>,
3150 operands: &mut Vec<String>,
3151 results: &mut Vec<String>,
3152 ) {
3153 match inst {
3154 Instruction::GetArg { nth } => results.push(self.params[*nth].clone()),
3155 Instruction::I32Const { val } => results.push(val.to_string()),
3156 Instruction::ConstZero { tys } => {
3157 for _ in tys.iter() {
3158 results.push("0".to_string());
3159 }
3160 }
3161
3162 Instruction::U8FromI32 => results.push(format!("(uint8_t) ({})", operands[0])),
3164 Instruction::S8FromI32 => results.push(format!("(int8_t) ({})", operands[0])),
3165 Instruction::U16FromI32 => results.push(format!("(uint16_t) ({})", operands[0])),
3166 Instruction::S16FromI32 => results.push(format!("(int16_t) ({})", operands[0])),
3167 Instruction::U32FromI32 => results.push(format!("(uint32_t) ({})", operands[0])),
3168 Instruction::S32FromI32 | Instruction::S64FromI64 => results.push(operands[0].clone()),
3169 Instruction::U64FromI64 => results.push(format!("(uint64_t) ({})", operands[0])),
3170
3171 Instruction::I32FromU8
3172 | Instruction::I32FromS8
3173 | Instruction::I32FromU16
3174 | Instruction::I32FromS16
3175 | Instruction::I32FromU32 => {
3176 results.push(format!("(int32_t) ({})", operands[0]));
3177 }
3178 Instruction::I32FromS32 | Instruction::I64FromS64 => results.push(operands[0].clone()),
3179 Instruction::I64FromU64 => {
3180 results.push(format!("(int64_t) ({})", operands[0]));
3181 }
3182
3183 Instruction::CoreF32FromF32
3186 | Instruction::CoreF64FromF64
3187 | Instruction::F32FromCoreF32
3188 | Instruction::F64FromCoreF64 => {
3189 results.push(operands[0].clone());
3190 }
3191
3192 Instruction::CharFromI32 => {
3194 results.push(format!("(uint32_t) ({})", operands[0]));
3195 }
3196 Instruction::I32FromChar => {
3197 results.push(format!("(int32_t) ({})", operands[0]));
3198 }
3199
3200 Instruction::Bitcasts { casts } => {
3201 for (cast, op) in casts.iter().zip(operands) {
3202 let op = self.r#gen.r#gen.perform_cast(op, cast);
3203 results.push(op);
3204 }
3205 }
3206
3207 Instruction::BoolFromI32 | Instruction::I32FromBool => {
3208 results.push(operands[0].clone());
3209 }
3210
3211 Instruction::RecordLower { record, .. } => {
3212 let op = &operands[0];
3213 for f in record.fields.iter() {
3214 results.push(format!("({}).{}", op, to_c_ident(&f.name)));
3215 }
3216 }
3217 Instruction::RecordLift { ty, record, .. } => {
3218 let name = self.r#gen.r#gen.type_name(&Type::Id(*ty));
3219 let mut result = format!("({name}) {{\n");
3220 for (field, op) in record.fields.iter().zip(operands.iter()) {
3221 let field_ty = self.r#gen.r#gen.type_name(&field.ty);
3222 uwriteln!(result, "({}) {},", field_ty, op);
3223 }
3224 result.push_str("}");
3225 results.push(result);
3226 }
3227
3228 Instruction::TupleLower { tuple, .. } => {
3229 let op = &operands[0];
3230 for i in 0..tuple.types.len() {
3231 results.push(format!("({op}).f{i}"));
3232 }
3233 }
3234 Instruction::TupleLift { ty, tuple, .. } => {
3235 let name = self.r#gen.r#gen.type_name(&Type::Id(*ty));
3236 let mut result = format!("({name}) {{\n");
3237 for (ty, op) in tuple.types.iter().zip(operands.iter()) {
3238 let ty = self.r#gen.r#gen.type_name(&ty);
3239 uwriteln!(result, "({}) {},", ty, op);
3240 }
3241 result.push_str("}");
3242 results.push(result);
3243 }
3244
3245 Instruction::HandleLower { .. } => {
3246 let op = &operands[0];
3247 results.push(format!("({op}).__handle"))
3248 }
3249
3250 Instruction::HandleLift { handle, ty, .. } => match handle {
3251 Handle::Borrow(resource)
3252 if matches!(
3253 self.r#gen.r#gen.resources[&dealias(resolve, *resource)].direction,
3254 Direction::Export
3255 ) =>
3256 {
3257 let op = &operands[0];
3260 let name = self
3261 .r#gen
3262 .r#gen
3263 .type_name(&Type::Id(dealias(resolve, *resource)));
3264 results.push(format!("(({name}*) {op})"))
3265 }
3266 _ => {
3267 let op = &operands[0];
3268 let name = self.r#gen.r#gen.type_name(&Type::Id(*ty));
3269 results.push(format!("({name}) {{ {op} }}"));
3270
3271 if let Handle::Borrow(id) = handle {
3272 if !self.r#gen.in_import && self.r#gen.autodrop_enabled() {
3273 let ty = dealias(self.r#gen.resolve, *id);
3276
3277 let name = self.locals.tmp("borrow");
3278 uwriteln!(self.borrow_decls, "int32_t {name} = 0;");
3279 uwriteln!(self.src, "{name} = {op};");
3280
3281 self.borrows.push(DroppableBorrow { name, ty });
3282 }
3283 }
3284 }
3285 },
3286
3287 Instruction::FlagsLower { flags, ty, .. } => match flags_repr(flags) {
3289 Int::U8 | Int::U16 | Int::U32 => {
3290 results.push(operands.pop().unwrap());
3291 }
3292 Int::U64 => {
3293 let name = self.r#gen.r#gen.type_name(&Type::Id(*ty));
3294 let tmp = self.locals.tmp("flags");
3295 uwriteln!(self.src, "{name} {tmp} = {};", operands[0]);
3296 results.push(format!("{tmp} & 0xffffffff"));
3297 results.push(format!("({tmp} >> 32) & 0xffffffff"));
3298 }
3299 },
3300
3301 Instruction::FlagsLift { flags, ty, .. } => match flags_repr(flags) {
3302 Int::U8 | Int::U16 | Int::U32 => {
3303 results.push(operands.pop().unwrap());
3304 }
3305 Int::U64 => {
3306 let name = self.r#gen.r#gen.type_name(&Type::Id(*ty));
3307 let op0 = &operands[0];
3308 let op1 = &operands[1];
3309 results.push(format!("(({name}) ({op0})) | ((({name}) ({op1})) << 32)"));
3310 }
3311 },
3312
3313 Instruction::VariantPayloadName => {
3314 let name = self.locals.tmp("payload");
3315 results.push(format!("*{name}"));
3316 self.payloads.push(name);
3317 }
3318
3319 Instruction::VariantLower {
3320 variant,
3321 results: result_types,
3322 ..
3323 } => {
3324 let blocks = self
3325 .blocks
3326 .drain(self.blocks.len() - variant.cases.len()..)
3327 .collect::<Vec<_>>();
3328 let payloads = self
3329 .payloads
3330 .drain(self.payloads.len() - variant.cases.len()..)
3331 .collect::<Vec<_>>();
3332
3333 let mut variant_results = Vec::with_capacity(result_types.len());
3334 for ty in result_types.iter() {
3335 let name = self.locals.tmp("variant");
3336 results.push(name.clone());
3337 self.src.push_str(wasm_type(*ty));
3338 self.src.push_str(" ");
3339 self.src.push_str(&name);
3340 self.src.push_str(";\n");
3341 variant_results.push(name);
3342 }
3343
3344 let expr_to_match = format!("({}).tag", operands[0]);
3345
3346 uwriteln!(self.src, "switch ((int32_t) {}) {{", expr_to_match);
3347 for (i, ((case, (block, block_results)), payload)) in
3348 variant.cases.iter().zip(blocks).zip(payloads).enumerate()
3349 {
3350 uwriteln!(self.src, "case {}: {{", i);
3351 if let Some(ty) = case.ty.as_ref() {
3352 let ty = self.r#gen.r#gen.type_name(ty);
3353 uwrite!(
3354 self.src,
3355 "const {} *{} = &({}).val",
3356 ty,
3357 payload,
3358 operands[0],
3359 );
3360 self.src.push_str(".");
3361 self.src.push_str(&to_c_ident(&case.name));
3362 self.src.push_str(";\n");
3363 }
3364 self.src.push_str(&block);
3365
3366 for (name, result) in variant_results.iter().zip(&block_results) {
3367 uwriteln!(self.src, "{} = {};", name, result);
3368 }
3369 self.src.push_str("break;\n}\n");
3370 }
3371 self.src.push_str("}\n");
3372 }
3373
3374 Instruction::VariantLift { variant, ty, .. } => {
3375 let blocks = self
3376 .blocks
3377 .drain(self.blocks.len() - variant.cases.len()..)
3378 .collect::<Vec<_>>();
3379
3380 let ty = self.r#gen.r#gen.type_name(&Type::Id(*ty));
3381 let result = self.locals.tmp("variant");
3382 uwriteln!(self.src, "{} {};", ty, result);
3383 uwriteln!(self.src, "{}.tag = {};", result, operands[0]);
3384 uwriteln!(self.src, "switch ((int32_t) {}.tag) {{", result);
3385 for (i, (case, (block, block_results))) in
3386 variant.cases.iter().zip(blocks).enumerate()
3387 {
3388 uwriteln!(self.src, "case {}: {{", i);
3389 self.src.push_str(&block);
3390 assert!(block_results.len() == (case.ty.is_some() as usize));
3391
3392 if let Some(_) = case.ty.as_ref() {
3393 let mut dst = format!("{result}.val");
3394 dst.push_str(".");
3395 dst.push_str(&to_c_ident(&case.name));
3396 self.store_op(&block_results[0], &dst);
3397 }
3398 self.src.push_str("break;\n}\n");
3399 }
3400 self.src.push_str("}\n");
3401 results.push(result);
3402 }
3403
3404 Instruction::OptionLower {
3405 results: result_types,
3406 payload,
3407 ..
3408 } => {
3409 let (mut some, some_results) = self.blocks.pop().unwrap();
3410 let (mut none, none_results) = self.blocks.pop().unwrap();
3411 let some_payload = self.payloads.pop().unwrap();
3412 let _none_payload = self.payloads.pop().unwrap();
3413
3414 for (i, ty) in result_types.iter().enumerate() {
3415 let name = self.locals.tmp("option");
3416 results.push(name.clone());
3417 self.src.push_str(wasm_type(*ty));
3418 self.src.push_str(" ");
3419 self.src.push_str(&name);
3420 self.src.push_str(";\n");
3421 let some_result = &some_results[i];
3422 uwriteln!(some, "{name} = {some_result};");
3423 let none_result = &none_results[i];
3424 uwriteln!(none, "{name} = {none_result};");
3425 }
3426
3427 let op0 = &operands[0];
3428 let ty = self.r#gen.r#gen.type_name(payload);
3429 let bind_some = format!("const {ty} *{some_payload} = &({op0}).val;");
3430
3431 uwrite!(
3432 self.src,
3433 "\
3434 if (({op0}).is_some) {{
3435 {bind_some}
3436 {some}}} else {{
3437 {none}}}
3438 "
3439 );
3440 }
3441
3442 Instruction::OptionLift { ty, .. } => {
3443 let (mut some, some_results) = self.blocks.pop().unwrap();
3444 let (mut none, none_results) = self.blocks.pop().unwrap();
3445 assert!(none_results.len() == 0);
3446 assert!(some_results.len() == 1);
3447 let some_result = &some_results[0];
3448
3449 let ty = self.r#gen.r#gen.type_name(&Type::Id(*ty));
3450 let result = self.locals.tmp("option");
3451 uwriteln!(self.src, "{ty} {result};");
3452 let op0 = &operands[0];
3453 let set_some = format!("{result}.val = {some_result};\n");
3454 if none.len() > 0 {
3455 none.push('\n');
3456 }
3457 if some.len() > 0 {
3458 some.push('\n');
3459 }
3460 uwrite!(
3461 self.src,
3462 "switch ({op0}) {{
3463 case 0: {{
3464 {result}.is_some = false;
3465 {none}\
3466 break;
3467 }}
3468 case 1: {{
3469 {result}.is_some = true;
3470 {some}\
3471 {set_some}\
3472 break;
3473 }}
3474 }}\n"
3475 );
3476 results.push(result);
3477 }
3478
3479 Instruction::ResultLower {
3480 results: result_types,
3481 result,
3482 ..
3483 } => {
3484 let (mut err, err_results) = self.blocks.pop().unwrap();
3485 let (mut ok, ok_results) = self.blocks.pop().unwrap();
3486 let err_payload = self.payloads.pop().unwrap();
3487 let ok_payload = self.payloads.pop().unwrap();
3488
3489 for (i, ty) in result_types.iter().enumerate() {
3490 let name = self.locals.tmp("result");
3491 results.push(name.clone());
3492 self.src.push_str(wasm_type(*ty));
3493 self.src.push_str(" ");
3494 self.src.push_str(&name);
3495 self.src.push_str(";\n");
3496 let ok_result = &ok_results[i];
3497 uwriteln!(ok, "{name} = {ok_result};");
3498 let err_result = &err_results[i];
3499 uwriteln!(err, "{name} = {err_result};");
3500 }
3501
3502 let op0 = &operands[0];
3503 let bind_ok = if let Some(ok) = result.ok.as_ref() {
3504 let ok_ty = self.r#gen.r#gen.type_name(ok);
3505 format!("const {ok_ty} *{ok_payload} = &({op0}).val.ok;")
3506 } else {
3507 String::new()
3508 };
3509 let bind_err = if let Some(err) = result.err.as_ref() {
3510 let err_ty = self.r#gen.r#gen.type_name(err);
3511 format!("const {err_ty} *{err_payload} = &({op0}).val.err;")
3512 } else {
3513 String::new()
3514 };
3515 uwrite!(
3516 self.src,
3517 "\
3518 if (({op0}).is_err) {{
3519 {bind_err}\
3520 {err}\
3521 }} else {{
3522 {bind_ok}\
3523 {ok}\
3524 }}
3525 "
3526 );
3527 }
3528
3529 Instruction::ResultLift { result, ty, .. } => {
3530 let (mut err, err_results) = self.blocks.pop().unwrap();
3531 assert!(err_results.len() == (result.err.is_some() as usize));
3532 let (mut ok, ok_results) = self.blocks.pop().unwrap();
3533 assert!(ok_results.len() == (result.ok.is_some() as usize));
3534
3535 if err.len() > 0 {
3536 err.push_str("\n");
3537 }
3538 if ok.len() > 0 {
3539 ok.push_str("\n");
3540 }
3541
3542 let result_tmp = self.locals.tmp("result");
3543 let set_ok = if let Some(_) = result.ok.as_ref() {
3544 let ok_result = &ok_results[0];
3545 format!("{result_tmp}.val.ok = {ok_result};\n")
3546 } else {
3547 String::new()
3548 };
3549 let set_err = if let Some(_) = result.err.as_ref() {
3550 let err_result = &err_results[0];
3551 format!("{result_tmp}.val.err = {err_result};\n")
3552 } else {
3553 String::new()
3554 };
3555
3556 let ty = self.r#gen.r#gen.type_name(&Type::Id(*ty));
3557 uwriteln!(self.src, "{ty} {result_tmp};");
3558 let op0 = &operands[0];
3559 uwriteln!(
3560 self.src,
3561 "switch ({op0}) {{
3562 case 0: {{
3563 {result_tmp}.is_err = false;
3564 {ok}\
3565 {set_ok}\
3566 break;
3567 }}
3568 case 1: {{
3569 {result_tmp}.is_err = true;
3570 {err}\
3571 {set_err}\
3572 break;
3573 }}
3574 }}"
3575 );
3576 results.push(result_tmp);
3577 }
3578
3579 Instruction::EnumLower { .. } => results.push(format!("(int32_t) {}", operands[0])),
3580 Instruction::EnumLift { .. } => results.push(operands.pop().unwrap()),
3581
3582 Instruction::ListCanonLower { .. } | Instruction::StringLower { .. } => {
3583 results.push(format!("(uint8_t *) ({}).ptr", operands[0]));
3584 results.push(format!("({}).len", operands[0]));
3585 }
3586 Instruction::ListCanonLift { element, ty, .. } => {
3587 self.assert_no_droppable_borrows("list", &Type::Id(*ty));
3588
3589 let list_name = self.r#gen.r#gen.type_name(&Type::Id(*ty));
3590 let elem_name = self.r#gen.r#gen.type_name(element);
3591 results.push(format!(
3592 "({}) {{ ({}*)({}), ({}) }}",
3593 list_name, elem_name, operands[0], operands[1]
3594 ));
3595 }
3596 Instruction::StringLift { .. } => {
3597 let list_name = self.r#gen.r#gen.type_name(&Type::String);
3598 results.push(format!(
3599 "({}) {{ ({}*)({}), ({}) }}",
3600 list_name,
3601 self.r#gen.r#gen.char_type(),
3602 operands[0],
3603 operands[1]
3604 ));
3605 }
3606
3607 Instruction::ListLower { .. } => {
3608 let _body = self.blocks.pop().unwrap();
3609 results.push(format!("(uint8_t *) ({}).ptr", operands[0]));
3610 results.push(format!("({}).len", operands[0]));
3611 }
3612
3613 Instruction::ListLift { element, ty, .. } => {
3614 self.assert_no_droppable_borrows("list", &Type::Id(*ty));
3615
3616 let _body = self.blocks.pop().unwrap();
3617 let list_name = self.r#gen.r#gen.type_name(&Type::Id(*ty));
3618 let elem_name = self.r#gen.r#gen.type_name(element);
3619 results.push(format!(
3620 "({}) {{ ({}*)({}), ({}) }}",
3621 list_name, elem_name, operands[0], operands[1]
3622 ));
3623 }
3624 Instruction::IterElem { .. } => results.push("e".to_string()),
3625 Instruction::IterBasePointer => results.push("base".to_string()),
3626
3627 Instruction::CallWasm { sig, .. } => {
3628 match sig.results.len() {
3629 0 => {}
3630 1 => {
3631 self.src.push_str(wasm_type(sig.results[0]));
3632 let ret = self.locals.tmp("ret");
3633 self.wasm_return = Some(ret.clone());
3634 uwrite!(self.src, " {} = ", ret);
3635 results.push(ret);
3636 }
3637 _ => unimplemented!(),
3638 }
3639 self.src.push_str(self.func_to_call);
3640 self.src.push_str("(");
3641 for (i, op) in operands.iter().enumerate() {
3642 if i > 0 {
3643 self.src.push_str(", ");
3644 }
3645 self.src.push_str(op);
3646 }
3647 self.src.push_str(");\n");
3648 }
3649
3650 Instruction::CallInterface { func, async_ } => {
3651 let mut args = String::new();
3652 for (i, (op, (byref, _))) in operands.iter().zip(&self.sig.params).enumerate() {
3653 if i > 0 {
3654 args.push_str(", ");
3655 }
3656 let ty = &func.params[i].ty;
3657 if *byref {
3658 let name = self.locals.tmp("arg");
3659 let ty = self.r#gen.r#gen.type_name(ty);
3660 uwriteln!(self.src, "{} {} = {};", ty, name, op);
3661 args.push_str("&");
3662 args.push_str(&name);
3663 } else {
3664 if !self.r#gen.in_import {
3665 if let Type::Id(id) = ty {
3666 if let TypeDefKind::Option(_) = &self.r#gen.resolve.types[*id].kind
3667 {
3668 uwrite!(args, "{op}.is_some ? &({op}.val) : NULL");
3669 continue;
3670 }
3671 }
3672 }
3673 args.push_str(op);
3674 }
3675 }
3676 if *async_ {
3677 let ret = self.locals.tmp("ret");
3678 let snake = self.r#gen.r#gen.world.to_snake_case();
3679 uwriteln!(
3680 self.src,
3681 "{snake}_callback_code_t {ret} = {}({args});",
3682 self.sig.name,
3683 );
3684 uwriteln!(self.src, "return {ret};");
3685 if func.result.is_some() {
3686 results.push("ret".to_string());
3687 }
3688 assert!(matches!(
3689 self.deferred_task_return,
3690 DeferredTaskReturn::None
3691 ));
3692 self.deferred_task_return = DeferredTaskReturn::Generating {
3693 prev_src: mem::take(&mut self.src),
3694 };
3695 return;
3696 }
3697 match &self.sig.ret.scalar {
3698 None => {
3699 let mut retptrs = Vec::new();
3700 for ty in self.sig.ret.retptrs.iter() {
3701 let name = self.locals.tmp("ret");
3702 let ty = self.r#gen.r#gen.type_name(ty);
3703 uwriteln!(self.src, "{} {};", ty, name);
3704 if args.len() > 0 {
3705 args.push_str(", ");
3706 }
3707 args.push_str("&");
3708 args.push_str(&name);
3709 retptrs.push(name);
3710 }
3711 uwriteln!(self.src, "{}({});", self.sig.name, args);
3712 results.extend(retptrs);
3713 }
3714 Some(Scalar::Void) => {
3715 uwriteln!(self.src, "{}({});", self.sig.name, args);
3716 }
3717 Some(Scalar::Type(_)) => {
3718 let ret = self.locals.tmp("ret");
3719 let ty = func.result.unwrap();
3720 let ty = self.r#gen.r#gen.type_name(&ty);
3721 uwriteln!(self.src, "{} {} = {}({});", ty, ret, self.sig.name, args);
3722 results.push(ret);
3723 }
3724 Some(Scalar::OptionBool(ty)) => {
3725 let ret = self.locals.tmp("ret");
3726 let val = self.locals.tmp("val");
3727 if args.len() > 0 {
3728 args.push_str(", ");
3729 }
3730 args.push_str("&");
3731 args.push_str(&val);
3732 let payload_ty = self.r#gen.r#gen.type_name(ty);
3733 uwriteln!(self.src, "{} {};", payload_ty, val);
3734 uwriteln!(self.src, "bool {} = {}({});", ret, self.sig.name, args);
3735 let ty = func.result.unwrap();
3736 let option_ty = self.r#gen.r#gen.type_name(&ty);
3737 let option_ret = self.locals.tmp("ret");
3738 uwrite!(
3739 self.src,
3740 "
3741 {option_ty} {option_ret};
3742 {option_ret}.is_some = {ret};
3743 {option_ret}.val = {val};
3744 ",
3745 );
3746 results.push(option_ret);
3747 }
3748 Some(Scalar::ResultBool(ok, err)) => {
3749 let ty = &func.result.unwrap();
3750 let result_ty = self.r#gen.r#gen.type_name(ty);
3751 let ret = self.locals.tmp("ret");
3752 let mut ret_iter = self.sig.ret.retptrs.iter();
3753 uwriteln!(self.src, "{result_ty} {ret};");
3754 let ok_name = if ok.is_some() {
3755 if let Some(ty) = ret_iter.next() {
3756 let val = self.locals.tmp("ok");
3757 if args.len() > 0 {
3758 uwrite!(args, ", ");
3759 }
3760 uwrite!(args, "&{val}");
3761 let ty = self.r#gen.r#gen.type_name(ty);
3762 uwriteln!(self.src, "{} {};", ty, val);
3763 Some(val)
3764 } else {
3765 None
3766 }
3767 } else {
3768 None
3769 };
3770 let err_name = if let Some(ty) = ret_iter.next() {
3771 let val = self.locals.tmp("err");
3772 if args.len() > 0 {
3773 uwrite!(args, ", ")
3774 }
3775 uwrite!(args, "&{val}");
3776 let ty = self.r#gen.r#gen.type_name(ty);
3777 uwriteln!(self.src, "{} {};", ty, val);
3778 Some(val)
3779 } else {
3780 None
3781 };
3782 assert!(ret_iter.next().is_none());
3783 uwrite!(self.src, "");
3784 uwriteln!(self.src, "{ret}.is_err = !{}({args});", self.sig.name);
3785 if err.is_some() {
3786 if let Some(err_name) = err_name {
3787 uwriteln!(
3788 self.src,
3789 "if ({ret}.is_err) {{
3790 {ret}.val.err = {err_name};
3791 }}",
3792 );
3793 }
3794 }
3795 if ok.is_some() {
3796 if let Some(ok_name) = ok_name {
3797 uwriteln!(
3798 self.src,
3799 "if (!{ret}.is_err) {{
3800 {ret}.val.ok = {ok_name};
3801 }}"
3802 );
3803 } else {
3804 uwrite!(self.src, "\n");
3805 }
3806 }
3807 results.push(ret);
3808 }
3809 }
3810 }
3811 Instruction::Return { .. } if self.r#gen.in_import => match self.sig.ret.scalar {
3812 None => {
3813 for op in operands.iter() {
3814 self.store_in_retptr(op);
3815 }
3816 }
3817 Some(Scalar::Void) => {
3818 assert!(operands.is_empty());
3819 }
3820 Some(Scalar::Type(_)) => {
3821 assert_eq!(operands.len(), 1);
3822 self.src.push_str("return ");
3823 self.src.push_str(&operands[0]);
3824 self.src.push_str(";\n");
3825 }
3826 Some(Scalar::OptionBool(_)) => {
3827 assert_eq!(operands.len(), 1);
3828 let variant = &operands[0];
3829 self.store_in_retptr(&format!("{variant}.val"));
3830 self.src.push_str("return ");
3831 self.src.push_str(&variant);
3832 self.src.push_str(".is_some;\n");
3833 }
3834 Some(Scalar::ResultBool(ok, err)) => {
3835 assert_eq!(operands.len(), 1);
3836 let variant = &operands[0];
3837 assert!(self.sig.retptrs.len() <= 2);
3838 uwriteln!(self.src, "if (!{}.is_err) {{", variant);
3839 if ok.is_some() {
3840 if ok.is_some() {
3841 self.store_in_retptr(&format!("{variant}.val.ok"));
3842 } else {
3843 self.empty_return_value();
3844 }
3845 }
3846 uwriteln!(
3847 self.src,
3848 " return 1;
3849 }} else {{"
3850 );
3851 if err.is_some() {
3852 if err.is_some() {
3853 self.store_in_retptr(&format!("{variant}.val.err"));
3854 } else {
3855 self.empty_return_value();
3856 }
3857 }
3858 uwriteln!(
3859 self.src,
3860 " return 0;
3861 }}"
3862 );
3863 assert_eq!(self.ret_store_cnt, self.sig.retptrs.len());
3864 }
3865 },
3866 Instruction::Return { amt, .. } => {
3867 let src = std::mem::replace(&mut self.src, std::mem::take(&mut self.borrow_decls));
3869 self.src.append_src(&src);
3870
3871 for DroppableBorrow { name, ty } in self.borrows.iter() {
3872 let drop_fn = self.r#gen.r#gen.resources[ty].drop_fn.as_str();
3873 uwriteln!(self.src, "if ({name} != 0) {{");
3874 uwriteln!(self.src, " {drop_fn}({name});");
3875 uwriteln!(self.src, "}}");
3876 }
3877
3878 assert!(*amt <= 1);
3879 if *amt == 1 {
3880 uwriteln!(self.src, "return {};", operands[0]);
3881 }
3882 }
3883
3884 Instruction::I32Load { offset } => self.load("int32_t", *offset, operands, results),
3885 Instruction::I64Load { offset } => self.load("int64_t", *offset, operands, results),
3886 Instruction::F32Load { offset } => self.load("float", *offset, operands, results),
3887 Instruction::F64Load { offset } => self.load("double", *offset, operands, results),
3888 Instruction::PointerLoad { offset } => {
3889 self.load("uint8_t *", *offset, operands, results)
3890 }
3891 Instruction::LengthLoad { offset } => self.load("size_t", *offset, operands, results),
3892 Instruction::I32Store { offset } => self.store("int32_t", *offset, operands),
3893 Instruction::I64Store { offset } => self.store("int64_t", *offset, operands),
3894 Instruction::F32Store { offset } => self.store("float", *offset, operands),
3895 Instruction::F64Store { offset } => self.store("double", *offset, operands),
3896 Instruction::I32Store8 { offset } => self.store("int8_t", *offset, operands),
3897 Instruction::I32Store16 { offset } => self.store("int16_t", *offset, operands),
3898 Instruction::PointerStore { offset } => self.store("uint8_t *", *offset, operands),
3899 Instruction::LengthStore { offset } => self.store("size_t", *offset, operands),
3900
3901 Instruction::I32Load8U { offset } => {
3902 self.load_ext("uint8_t", *offset, operands, results)
3903 }
3904 Instruction::I32Load8S { offset } => {
3905 self.load_ext("int8_t", *offset, operands, results)
3906 }
3907 Instruction::I32Load16U { offset } => {
3908 self.load_ext("uint16_t", *offset, operands, results)
3909 }
3910 Instruction::I32Load16S { offset } => {
3911 self.load_ext("int16_t", *offset, operands, results)
3912 }
3913
3914 Instruction::GuestDeallocate { .. } => {
3915 uwriteln!(self.src, "free({});", operands[0]);
3916 }
3917 Instruction::GuestDeallocateString => {
3918 uwriteln!(self.src, "if (({}) > 0) {{", operands[1]);
3919 uwriteln!(self.src, "free({});", operands[0]);
3920 uwriteln!(self.src, "}}");
3921 }
3922 Instruction::GuestDeallocateVariant { blocks } => {
3923 let blocks = self
3924 .blocks
3925 .drain(self.blocks.len() - blocks..)
3926 .collect::<Vec<_>>();
3927
3928 uwriteln!(self.src, "switch ((int32_t) {}) {{", operands[0]);
3929 for (i, (block, results)) in blocks.into_iter().enumerate() {
3930 assert!(results.is_empty());
3931 uwriteln!(self.src, "case {}: {{", i);
3932 self.src.push_str(&block);
3933 self.src.push_str("break;\n}\n");
3934 }
3935 self.src.push_str("}\n");
3936 }
3937 Instruction::GuestDeallocateList { element } => {
3938 let (body, results) = self.blocks.pop().unwrap();
3939 assert!(results.is_empty());
3940 let len = self.locals.tmp("len");
3941 uwriteln!(self.src, "size_t {len} = {};", operands[1]);
3942 uwriteln!(self.src, "if ({len} > 0) {{");
3943 let ptr = self.locals.tmp("ptr");
3944 uwriteln!(self.src, "uint8_t *{ptr} = {};", operands[0]);
3945 let i = self.locals.tmp("i");
3946 uwriteln!(self.src, "for (size_t {i} = 0; {i} < {len}; {i}++) {{");
3947 let size = self.r#gen.r#gen.sizes.size(element);
3948 uwriteln!(
3949 self.src,
3950 "uint8_t *base = {ptr} + {i} * {};",
3951 size.format(POINTER_SIZE_EXPRESSION)
3952 );
3953 uwriteln!(self.src, "(void) base;");
3954 uwrite!(self.src, "{body}");
3955 uwriteln!(self.src, "}}");
3956 uwriteln!(self.src, "free({ptr});");
3957 uwriteln!(self.src, "}}");
3958 }
3959
3960 Instruction::Flush { amt } => {
3961 results.extend(operands.iter().take(*amt).cloned());
3962 }
3963
3964 Instruction::AsyncTaskReturn { name, params } => {
3965 let body = match &mut self.deferred_task_return {
3966 DeferredTaskReturn::Generating { prev_src } => {
3967 mem::swap(&mut self.src, prev_src);
3968 mem::take(prev_src)
3969 }
3970 _ => unreachable!(),
3971 };
3972 assert_eq!(params.len(), operands.len());
3973 self.deferred_task_return = DeferredTaskReturn::Emitted {
3974 name: name.to_string(),
3975 body,
3976 params: params
3977 .iter()
3978 .zip(operands)
3979 .map(|(a, b)| (*a, b.clone()))
3980 .collect(),
3981 };
3982 }
3983
3984 Instruction::FutureLift { .. } => {
3985 results.push(format!("((uint32_t) {})", operands[0]));
3986 }
3987 Instruction::FutureLower { .. } => {
3988 results.push(format!("((int32_t) {})", operands[0]));
3989 }
3990 Instruction::StreamLift { .. } => {
3991 results.push(format!("((uint32_t) {})", operands[0]));
3992 }
3993 Instruction::StreamLower { .. } => {
3994 results.push(format!("((int32_t) {})", operands[0]));
3995 }
3996
3997 i => unimplemented!("{:?}", i),
3998 }
3999 }
4000}
4001
4002#[derive(Default, Clone, Copy)]
4003enum SourceType {
4004 #[default]
4005 HDefs,
4006 HFns,
4007 }
4013
4014#[derive(Default)]
4015struct Source {
4016 h_defs: wit_bindgen_core::Source,
4017 h_fns: wit_bindgen_core::Source,
4018 h_helpers: wit_bindgen_core::Source,
4019 h_async: wit_bindgen_core::Source,
4020 c_defs: wit_bindgen_core::Source,
4021 c_fns: wit_bindgen_core::Source,
4022 c_helpers: wit_bindgen_core::Source,
4023 c_adapters: wit_bindgen_core::Source,
4024 c_async: wit_bindgen_core::Source,
4025}
4026
4027impl Source {
4028 fn src(&mut self, stype: SourceType) -> &mut wit_bindgen_core::Source {
4029 match stype {
4030 SourceType::HDefs => &mut self.h_defs,
4031 SourceType::HFns => &mut self.h_fns,
4032 }
4033 }
4034 fn append(&mut self, append_src: &Source) {
4035 self.h_defs.push_str(&append_src.h_defs);
4036 self.h_fns.push_str(&append_src.h_fns);
4037 self.h_helpers.push_str(&append_src.h_helpers);
4038 self.h_async.push_str(&append_src.h_async);
4039 self.c_defs.push_str(&append_src.c_defs);
4040 self.c_fns.push_str(&append_src.c_fns);
4041 self.c_helpers.push_str(&append_src.c_helpers);
4042 self.c_adapters.push_str(&append_src.c_adapters);
4043 self.c_async.push_str(&append_src.c_async);
4044 }
4045 fn h_defs(&mut self, s: &str) {
4046 self.h_defs.push_str(s);
4047 }
4048 fn h_fns(&mut self, s: &str) {
4049 self.h_fns.push_str(s);
4050 }
4051 fn h_helpers(&mut self, s: &str) {
4052 self.h_helpers.push_str(s);
4053 }
4054 fn c_fns(&mut self, s: &str) {
4055 self.c_fns.push_str(s);
4056 }
4057 fn c_helpers(&mut self, s: &str) {
4058 self.c_helpers.push_str(s);
4059 }
4060 fn c_adapters(&mut self, s: &str) {
4061 self.c_adapters.push_str(s);
4062 }
4063}
4064
4065pub fn wasm_type(ty: WasmType) -> &'static str {
4066 match ty {
4067 WasmType::I32 => "int32_t",
4068 WasmType::I64 => "int64_t",
4069 WasmType::F32 => "float",
4070 WasmType::F64 => "double",
4071 WasmType::Pointer => "uint8_t *",
4072 WasmType::PointerOrI64 => "int64_t",
4073 WasmType::Length => "size_t",
4074 }
4075}
4076
4077pub fn int_repr(ty: Int) -> &'static str {
4078 match ty {
4079 Int::U8 => "uint8_t",
4080 Int::U16 => "uint16_t",
4081 Int::U32 => "uint32_t",
4082 Int::U64 => "uint64_t",
4083 }
4084}
4085
4086pub fn flags_repr(f: &Flags) -> Int {
4087 match f.repr() {
4088 FlagsRepr::U8 => Int::U8,
4089 FlagsRepr::U16 => Int::U16,
4090 FlagsRepr::U32(1) => Int::U32,
4091 FlagsRepr::U32(2) => Int::U64,
4092 repr => panic!("unimplemented flags {repr:?}"),
4093 }
4094}
4095
4096pub fn is_arg_by_pointer(resolve: &Resolve, ty: &Type) -> bool {
4097 match ty {
4098 Type::Id(id) => match resolve.types[*id].kind {
4099 TypeDefKind::Type(t) => is_arg_by_pointer(resolve, &t),
4100 TypeDefKind::Variant(_) => true,
4101 TypeDefKind::Option(_) => true,
4102 TypeDefKind::Result(_) => true,
4103 TypeDefKind::Enum(_) => false,
4104 TypeDefKind::Flags(_) => false,
4105 TypeDefKind::Handle(_) => false,
4106 TypeDefKind::Tuple(_) | TypeDefKind::Record(_) | TypeDefKind::List(_) => true,
4107 TypeDefKind::Future(_) => false,
4108 TypeDefKind::Stream(_) => false,
4109 TypeDefKind::Resource => todo!("is_arg_by_pointer for resource"),
4110 TypeDefKind::Unknown => unreachable!(),
4111 TypeDefKind::FixedLengthList(..) => todo!(),
4112 TypeDefKind::Map(..) => todo!(),
4113 },
4114 Type::String => true,
4115 _ => false,
4116 }
4117}
4118
4119pub fn to_c_ident(name: &str) -> String {
4120 match name {
4121 "alignas" => "alignas_".into(),
4124 "alignof" => "alignof_".into(),
4125 "and" => "and_".into(),
4126 "and_eq" => "and_eq_".into(),
4127 "asm" => "asm_".into(),
4128 "atomic_cancel" => "atomic_cancel_".into(),
4129 "atomic_commit" => "atomic_commit_".into(),
4130 "atomic_noexcept" => "atomic_noexcept_".into(),
4131 "auto" => "auto_".into(),
4132 "bitand" => "bitand_".into(),
4133 "bitor" => "bitor_".into(),
4134 "bool" => "bool_".into(),
4135 "break" => "break_".into(),
4136 "case" => "case_".into(),
4137 "catch" => "catch_".into(),
4138 "char" => "char_".into(),
4139 "char8_t" => "char8_t_".into(),
4140 "char16_t" => "char16_t_".into(),
4141 "char32_t" => "char32_t_".into(),
4142 "class" => "class_".into(),
4143 "compl" => "compl_".into(),
4144 "concept" => "concept_".into(),
4145 "const" => "const_".into(),
4146 "consteval" => "consteval_".into(),
4147 "constexpr" => "constexpr_".into(),
4148 "constinit" => "constinit_".into(),
4149 "const_cast" => "const_cast_".into(),
4150 "continue" => "continue_".into(),
4151 "co_await" => "co_await_".into(),
4152 "co_return" => "co_return_".into(),
4153 "co_yield" => "co_yield_".into(),
4154 "decltype" => "decltype_".into(),
4155 "default" => "default_".into(),
4156 "delete" => "delete_".into(),
4157 "do" => "do_".into(),
4158 "double" => "double_".into(),
4159 "dynamic_cast" => "dynamic_cast_".into(),
4160 "else" => "else_".into(),
4161 "enum" => "enum_".into(),
4162 "explicit" => "explicit_".into(),
4163 "export" => "export_".into(),
4164 "extern" => "extern_".into(),
4165 "false" => "false_".into(),
4166 "float" => "float_".into(),
4167 "for" => "for_".into(),
4168 "friend" => "friend_".into(),
4169 "goto" => "goto_".into(),
4170 "if" => "if_".into(),
4171 "inline" => "inline_".into(),
4172 "int" => "int_".into(),
4173 "long" => "long_".into(),
4174 "mutable" => "mutable_".into(),
4175 "namespace" => "namespace_".into(),
4176 "new" => "new_".into(),
4177 "noexcept" => "noexcept_".into(),
4178 "not" => "not_".into(),
4179 "not_eq" => "not_eq_".into(),
4180 "nullptr" => "nullptr_".into(),
4181 "operator" => "operator_".into(),
4182 "or" => "or_".into(),
4183 "or_eq" => "or_eq_".into(),
4184 "private" => "private_".into(),
4185 "protected" => "protected_".into(),
4186 "public" => "public_".into(),
4187 "reflexpr" => "reflexpr_".into(),
4188 "register" => "register_".into(),
4189 "reinterpret_cast" => "reinterpret_cast_".into(),
4190 "requires" => "requires_".into(),
4191 "return" => "return_".into(),
4192 "short" => "short_".into(),
4193 "signed" => "signed_".into(),
4194 "sizeof" => "sizeof_".into(),
4195 "static" => "static_".into(),
4196 "static_assert" => "static_assert_".into(),
4197 "static_cast" => "static_cast_".into(),
4198 "struct" => "struct_".into(),
4199 "switch" => "switch_".into(),
4200 "synchronized" => "synchronized_".into(),
4201 "template" => "template_".into(),
4202 "this" => "this_".into(),
4203 "thread_local" => "thread_local_".into(),
4204 "throw" => "throw_".into(),
4205 "true" => "true_".into(),
4206 "try" => "try_".into(),
4207 "typedef" => "typedef_".into(),
4208 "typeid" => "typeid_".into(),
4209 "typename" => "typename_".into(),
4210 "union" => "union_".into(),
4211 "unsigned" => "unsigned_".into(),
4212 "using" => "using_".into(),
4213 "virtual" => "virtual_".into(),
4214 "void" => "void_".into(),
4215 "volatile" => "volatile_".into(),
4216 "wchar_t" => "wchar_t_".into(),
4217 "while" => "while_".into(),
4218 "xor" => "xor_".into(),
4219 "xor_eq" => "xor_eq_".into(),
4220 "_Packed" => "_Packed_".into(),
4221 "ret" => "ret_".into(),
4224 "err" => "err_".into(),
4225 "stdin" => "stdin_".into(),
4227 "stdout" => "stdout_".into(),
4228 "stderr" => "stderr_".into(),
4229 s => s.to_snake_case(),
4230 }
4231}
4232
4233const POINTER_SIZE_EXPRESSION: &str = "sizeof(void*)";