Merge pull request #19 from TheBlueMatt/2021-04-invoice-incl
[ldk-c-bindings] / c-bindings-gen / src / blocks.rs
1 // This file is Copyright its original authors, visible in version control
2 // history.
3 //
4 // This file is licensed under the Apache License, Version 2.0 <LICENSE-APACHE>
5 // or the MIT license <LICENSE-MIT>, at your option.
6 // You may not use this file except in accordance with one or both of these
7 // licenses.
8
9 //! Printing logic for basic blocks of Rust-mapped code - parts of functions and declarations but
10 //! not the full mapping logic.
11
12 use std::fs::File;
13 use std::io::Write;
14
15 use proc_macro2::TokenTree;
16 use quote::format_ident;
17
18 use crate::types::*;
19
20 /// Writes out a C++ wrapper class for the given type, which contains various utilities to access
21 /// the underlying C-mapped type safely avoiding some common memory management issues by handling
22 /// resource-freeing and prevending accidental raw copies.
23 pub fn write_cpp_wrapper(cpp_header_file: &mut File, ty: &str, has_destructor: bool) {
24         writeln!(cpp_header_file, "class {} {{", ty).unwrap();
25         writeln!(cpp_header_file, "private:").unwrap();
26         writeln!(cpp_header_file, "\tLDK{} self;", ty).unwrap();
27         writeln!(cpp_header_file, "public:").unwrap();
28         writeln!(cpp_header_file, "\t{}(const {}&) = delete;", ty, ty).unwrap();
29         writeln!(cpp_header_file, "\t{}({}&& o) : self(o.self) {{ memset(&o, 0, sizeof({})); }}", ty, ty, ty).unwrap();
30         writeln!(cpp_header_file, "\t{}(LDK{}&& m_self) : self(m_self) {{ memset(&m_self, 0, sizeof(LDK{})); }}", ty, ty, ty).unwrap();
31         writeln!(cpp_header_file, "\toperator LDK{}() && {{ LDK{} res = self; memset(&self, 0, sizeof(LDK{})); return res; }}", ty, ty, ty).unwrap();
32         if has_destructor {
33                 writeln!(cpp_header_file, "\t~{}() {{ {}_free(self); }}", ty, ty).unwrap();
34                 writeln!(cpp_header_file, "\t{}& operator=({}&& o) {{ {}_free(self); self = o.self; memset(&o, 0, sizeof({})); return *this; }}", ty, ty, ty, ty).unwrap();
35         } else {
36                 writeln!(cpp_header_file, "\t{}& operator=({}&& o) {{ self = o.self; memset(&o, 0, sizeof({})); return *this; }}", ty, ty, ty).unwrap();
37         }
38         writeln!(cpp_header_file, "\tLDK{}* operator &() {{ return &self; }}", ty).unwrap();
39         writeln!(cpp_header_file, "\tLDK{}* operator ->() {{ return &self; }}", ty).unwrap();
40         writeln!(cpp_header_file, "\tconst LDK{}* operator &() const {{ return &self; }}", ty).unwrap();
41         writeln!(cpp_header_file, "\tconst LDK{}* operator ->() const {{ return &self; }}", ty).unwrap();
42         writeln!(cpp_header_file, "}};").unwrap();
43 }
44
45 /// Writes out a C-callable concrete Result<A, B> struct and utility methods
46 pub fn write_result_block<W: std::io::Write>(w: &mut W, mangled_container: &str, ok_type: &str, err_type: &str, clonable: bool) {
47         writeln!(w, "#[repr(C)]").unwrap();
48         writeln!(w, "/// The contents of {}", mangled_container).unwrap();
49         writeln!(w, "pub union {}Ptr {{", mangled_container).unwrap();
50         if ok_type != "()" {
51                 writeln!(w, "\t/// A pointer to the contents in the success state.").unwrap();
52                 writeln!(w, "\t/// Reading from this pointer when `result_ok` is not set is undefined.").unwrap();
53                 writeln!(w, "\tpub result: *mut {},", ok_type).unwrap();
54         } else {
55                 writeln!(w, "\t/// Note that this value is always NULL, as there are no contents in the OK variant").unwrap();
56                 writeln!(w, "\tpub result: *mut std::ffi::c_void,").unwrap();
57         }
58         if err_type != "()" {
59                 writeln!(w, "\t/// A pointer to the contents in the error state.").unwrap();
60                 writeln!(w, "\t/// Reading from this pointer when `result_ok` is set is undefined.").unwrap();
61                 writeln!(w, "\tpub err: *mut {},", err_type).unwrap();
62         } else {
63                 writeln!(w, "\t/// Note that this value is always NULL, as there are no contents in the Err variant").unwrap();
64                 writeln!(w, "\tpub err: *mut std::ffi::c_void,").unwrap();
65         }
66         writeln!(w, "}}").unwrap();
67         writeln!(w, "#[repr(C)]").unwrap();
68         writeln!(w, "/// A {} represents the result of a fallible operation,", mangled_container).unwrap();
69         writeln!(w, "/// containing a {} on success and a {} on failure.", ok_type, err_type).unwrap();
70         writeln!(w, "/// `result_ok` indicates the overall state, and the contents are provided via `contents`.").unwrap();
71         writeln!(w, "pub struct {} {{", mangled_container).unwrap();
72         writeln!(w, "\t/// The contents of this {}, accessible via either", mangled_container).unwrap();
73         writeln!(w, "\t/// `err` or `result` depending on the state of `result_ok`.").unwrap();
74         writeln!(w, "\tpub contents: {}Ptr,", mangled_container).unwrap();
75         writeln!(w, "\t/// Whether this {} represents a success state.", mangled_container).unwrap();
76         writeln!(w, "\tpub result_ok: bool,").unwrap();
77         writeln!(w, "}}").unwrap();
78
79         writeln!(w, "#[no_mangle]").unwrap();
80         if ok_type != "()" {
81                 writeln!(w, "/// Creates a new {} in the success state.", mangled_container).unwrap();
82                 writeln!(w, "pub extern \"C\" fn {}_ok(o: {}) -> {} {{", mangled_container, ok_type, mangled_container).unwrap();
83         } else {
84                 writeln!(w, "/// Creates a new {} in the success state.", mangled_container).unwrap();
85                 writeln!(w, "pub extern \"C\" fn {}_ok() -> {} {{", mangled_container, mangled_container).unwrap();
86         }
87         writeln!(w, "\t{} {{", mangled_container).unwrap();
88         writeln!(w, "\t\tcontents: {}Ptr {{", mangled_container).unwrap();
89         if ok_type != "()" {
90                 writeln!(w, "\t\t\tresult: Box::into_raw(Box::new(o)),").unwrap();
91         } else {
92                 writeln!(w, "\t\t\tresult: std::ptr::null_mut(),").unwrap();
93         }
94         writeln!(w, "\t\t}},").unwrap();
95         writeln!(w, "\t\tresult_ok: true,").unwrap();
96         writeln!(w, "\t}}").unwrap();
97         writeln!(w, "}}").unwrap();
98
99         writeln!(w, "#[no_mangle]").unwrap();
100         if err_type != "()" {
101                 writeln!(w, "/// Creates a new {} in the error state.", mangled_container).unwrap();
102                 writeln!(w, "pub extern \"C\" fn {}_err(e: {}) -> {} {{", mangled_container, err_type, mangled_container).unwrap();
103         } else {
104                 writeln!(w, "/// Creates a new {} in the error state.", mangled_container).unwrap();
105                 writeln!(w, "pub extern \"C\" fn {}_err() -> {} {{", mangled_container, mangled_container).unwrap();
106         }
107         writeln!(w, "\t{} {{", mangled_container).unwrap();
108         writeln!(w, "\t\tcontents: {}Ptr {{", mangled_container).unwrap();
109         if err_type != "()" {
110                 writeln!(w, "\t\t\terr: Box::into_raw(Box::new(e)),").unwrap();
111         } else {
112                 writeln!(w, "\t\t\terr: std::ptr::null_mut(),").unwrap();
113         }
114         writeln!(w, "\t\t}},").unwrap();
115         writeln!(w, "\t\tresult_ok: false,").unwrap();
116         writeln!(w, "\t}}").unwrap();
117         writeln!(w, "}}").unwrap();
118
119         writeln!(w, "#[no_mangle]").unwrap();
120         writeln!(w, "/// Frees any resources used by the {}.", mangled_container).unwrap();
121         writeln!(w, "pub extern \"C\" fn {}_free(_res: {}) {{ }}", mangled_container, mangled_container).unwrap();
122         writeln!(w, "impl Drop for {} {{", mangled_container).unwrap();
123         writeln!(w, "\tfn drop(&mut self) {{").unwrap();
124         writeln!(w, "\t\tif self.result_ok {{").unwrap();
125         if ok_type != "()" {
126                 writeln!(w, "\t\t\tif unsafe {{ !(self.contents.result as *mut ()).is_null() }} {{").unwrap();
127                 writeln!(w, "\t\t\t\tlet _ = unsafe {{ Box::from_raw(self.contents.result) }};").unwrap();
128                 writeln!(w, "\t\t\t}}").unwrap();
129         }
130         writeln!(w, "\t\t}} else {{").unwrap();
131         if err_type != "()" {
132                 writeln!(w, "\t\t\tif unsafe {{ !(self.contents.err as *mut ()).is_null() }} {{").unwrap();
133                 writeln!(w, "\t\t\t\tlet _ = unsafe {{ Box::from_raw(self.contents.err) }};").unwrap();
134                 writeln!(w, "\t\t\t}}").unwrap();
135         }
136         writeln!(w, "\t\t}}").unwrap();
137         writeln!(w, "\t}}").unwrap();
138         writeln!(w, "}}").unwrap();
139
140         writeln!(w, "impl From<crate::c_types::CResultTempl<{}, {}>> for {} {{", ok_type, err_type, mangled_container).unwrap();
141         writeln!(w, "\tfn from(mut o: crate::c_types::CResultTempl<{}, {}>) -> Self {{", ok_type, err_type).unwrap();
142         writeln!(w, "\t\tlet contents = if o.result_ok {{").unwrap();
143         if ok_type != "()" {
144                 writeln!(w, "\t\t\tlet result = unsafe {{ o.contents.result }};").unwrap();
145                 writeln!(w, "\t\t\tunsafe {{ o.contents.result = std::ptr::null_mut() }};").unwrap();
146                 writeln!(w, "\t\t\t{}Ptr {{ result }}", mangled_container).unwrap();
147         } else {
148                 writeln!(w, "\t\t\tlet _ = unsafe {{ Box::from_raw(o.contents.result) }};").unwrap();
149                 writeln!(w, "\t\t\to.contents.result = std::ptr::null_mut();").unwrap();
150                 writeln!(w, "\t\t\t{}Ptr {{ result: std::ptr::null_mut() }}", mangled_container).unwrap();
151         }
152         writeln!(w, "\t\t}} else {{").unwrap();
153         if err_type != "()" {
154                 writeln!(w, "\t\t\tlet err = unsafe {{ o.contents.err }};").unwrap();
155                 writeln!(w, "\t\t\tunsafe {{ o.contents.err = std::ptr::null_mut(); }}").unwrap();
156                 writeln!(w, "\t\t\t{}Ptr {{ err }}", mangled_container).unwrap();
157         } else {
158                 writeln!(w, "\t\t\tlet _ = unsafe {{ Box::from_raw(o.contents.err) }};").unwrap();
159                 writeln!(w, "\t\t\to.contents.err = std::ptr::null_mut();").unwrap();
160                 writeln!(w, "\t\t\t{}Ptr {{ err: std::ptr::null_mut() }}", mangled_container).unwrap();
161         }
162         writeln!(w, "\t\t}};").unwrap();
163         writeln!(w, "\t\tSelf {{").unwrap();
164         writeln!(w, "\t\t\tcontents,").unwrap();
165         writeln!(w, "\t\t\tresult_ok: o.result_ok,").unwrap();
166         writeln!(w, "\t\t}}").unwrap();
167         writeln!(w, "\t}}").unwrap();
168         writeln!(w, "}}").unwrap();
169
170         if clonable {
171                 writeln!(w, "impl Clone for {} {{", mangled_container).unwrap();
172                 writeln!(w, "\tfn clone(&self) -> Self {{").unwrap();
173                 writeln!(w, "\t\tif self.result_ok {{").unwrap();
174                 writeln!(w, "\t\t\tSelf {{ result_ok: true, contents: {}Ptr {{", mangled_container).unwrap();
175                 if ok_type != "()" {
176                         writeln!(w, "\t\t\t\tresult: Box::into_raw(Box::new(<{}>::clone(unsafe {{ &*self.contents.result }})))", ok_type).unwrap();
177                 } else {
178                         writeln!(w, "\t\t\t\tresult: std::ptr::null_mut()").unwrap();
179                 }
180                 writeln!(w, "\t\t\t}} }}").unwrap();
181                 writeln!(w, "\t\t}} else {{").unwrap();
182                 writeln!(w, "\t\t\tSelf {{ result_ok: false, contents: {}Ptr {{", mangled_container).unwrap();
183                 if err_type != "()" {
184                         writeln!(w, "\t\t\t\terr: Box::into_raw(Box::new(<{}>::clone(unsafe {{ &*self.contents.err }})))", err_type).unwrap();
185                 } else {
186                         writeln!(w, "\t\t\t\terr: std::ptr::null_mut()").unwrap();
187                 }
188                 writeln!(w, "\t\t\t}} }}").unwrap();
189                 writeln!(w, "\t\t}}").unwrap();
190                 writeln!(w, "\t}}").unwrap();
191                 writeln!(w, "}}").unwrap();
192                 writeln!(w, "#[no_mangle]").unwrap();
193                 writeln!(w, "/// Creates a new {} which has the same data as `orig`", mangled_container).unwrap();
194                 writeln!(w, "/// but with all dynamically-allocated buffers duplicated in new buffers.").unwrap();
195                 writeln!(w, "pub extern \"C\" fn {}_clone(orig: &{}) -> {} {{ orig.clone() }}", mangled_container, mangled_container, mangled_container).unwrap();
196         }
197 }
198
199 /// Writes out a C-callable concrete Vec<A> struct and utility methods
200 pub fn write_vec_block<W: std::io::Write>(w: &mut W, mangled_container: &str, inner_type: &str, clonable: bool) {
201         writeln!(w, "#[repr(C)]").unwrap();
202         writeln!(w, "/// A dynamically-allocated array of {}s of arbitrary size.", inner_type).unwrap();
203         writeln!(w, "/// This corresponds to std::vector in C++").unwrap();
204         writeln!(w, "pub struct {} {{", mangled_container).unwrap();
205         writeln!(w, "\t/// The elements in the array.").unwrap();
206         writeln!(w, "\t/// If datalen is non-0 this must be a valid, non-NULL pointer allocated by malloc().").unwrap();
207         writeln!(w, "\tpub data: *mut {},", inner_type).unwrap();
208         writeln!(w, "\t/// The number of elements pointed to by `data`.").unwrap();
209         writeln!(w, "\tpub datalen: usize").unwrap();
210         writeln!(w, "}}").unwrap();
211
212         writeln!(w, "impl {} {{", mangled_container).unwrap();
213         writeln!(w, "\t#[allow(unused)] pub(crate) fn into_rust(&mut self) -> Vec<{}> {{", inner_type).unwrap();
214         writeln!(w, "\t\tif self.datalen == 0 {{ return Vec::new(); }}").unwrap();
215         writeln!(w, "\t\tlet ret = unsafe {{ Box::from_raw(std::slice::from_raw_parts_mut(self.data, self.datalen)) }}.into();").unwrap();
216         writeln!(w, "\t\tself.data = std::ptr::null_mut();").unwrap();
217         writeln!(w, "\t\tself.datalen = 0;").unwrap();
218         writeln!(w, "\t\tret").unwrap();
219         writeln!(w, "\t}}").unwrap();
220         writeln!(w, "\t#[allow(unused)] pub(crate) fn as_slice(&self) -> &[{}] {{", inner_type).unwrap();
221         writeln!(w, "\t\tunsafe {{ std::slice::from_raw_parts_mut(self.data, self.datalen) }}").unwrap();
222         writeln!(w, "\t}}").unwrap();
223         writeln!(w, "}}").unwrap();
224
225         writeln!(w, "impl From<Vec<{}>> for {} {{", inner_type, mangled_container).unwrap();
226         writeln!(w, "\tfn from(v: Vec<{}>) -> Self {{", inner_type).unwrap();
227         writeln!(w, "\t\tlet datalen = v.len();").unwrap();
228         writeln!(w, "\t\tlet data = Box::into_raw(v.into_boxed_slice());").unwrap();
229         writeln!(w, "\t\tSelf {{ datalen, data: unsafe {{ (*data).as_mut_ptr() }} }}").unwrap();
230         writeln!(w, "\t}}").unwrap();
231         writeln!(w, "}}").unwrap();
232
233         writeln!(w, "#[no_mangle]").unwrap();
234         writeln!(w, "/// Frees the buffer pointed to by `data` if `datalen` is non-0.").unwrap();
235         writeln!(w, "pub extern \"C\" fn {}_free(_res: {}) {{ }}", mangled_container, mangled_container).unwrap();
236         writeln!(w, "impl Drop for {} {{", mangled_container).unwrap();
237         writeln!(w, "\tfn drop(&mut self) {{").unwrap();
238         writeln!(w, "\t\tif self.datalen == 0 {{ return; }}").unwrap();
239         writeln!(w, "\t\tunsafe {{ Box::from_raw(std::slice::from_raw_parts_mut(self.data, self.datalen)) }};").unwrap();
240         writeln!(w, "\t}}").unwrap();
241         writeln!(w, "}}").unwrap();
242         if clonable {
243                 writeln!(w, "impl Clone for {} {{", mangled_container).unwrap();
244                 writeln!(w, "\tfn clone(&self) -> Self {{").unwrap();
245                 writeln!(w, "\t\tlet mut res = Vec::new();").unwrap();
246                 writeln!(w, "\t\tif self.datalen == 0 {{ return Self::from(res); }}").unwrap();
247                 writeln!(w, "\t\tres.extend_from_slice(unsafe {{ std::slice::from_raw_parts_mut(self.data, self.datalen) }});").unwrap();
248                 writeln!(w, "\t\tSelf::from(res)").unwrap();
249                 writeln!(w, "\t}}").unwrap();
250                 writeln!(w, "}}").unwrap();
251         }
252 }
253
254 /// Writes out a C-callable concrete (A, B, ...) struct and utility methods
255 pub fn write_tuple_block<W: std::io::Write>(w: &mut W, mangled_container: &str, types: &[String], clonable: bool) {
256         writeln!(w, "#[repr(C)]").unwrap();
257         writeln!(w, "/// A tuple of {} elements. See the individual fields for the types contained.", types.len()).unwrap();
258         writeln!(w, "pub struct {} {{", mangled_container).unwrap();
259         for (idx, ty) in types.iter().enumerate() {
260                 writeln!(w, "\t/// The element at position {}", idx).unwrap();
261                 writeln!(w, "\tpub {}: {},", ('a' as u8 + idx as u8) as char, ty).unwrap();
262         }
263         writeln!(w, "}}").unwrap();
264
265         let mut tuple_str = "(".to_owned();
266         for (idx, ty) in types.iter().enumerate() {
267                 if idx != 0 { tuple_str += ", "; }
268                 tuple_str += ty;
269         }
270         tuple_str += ")";
271
272         writeln!(w, "impl From<{}> for {} {{", tuple_str, mangled_container).unwrap();
273         writeln!(w, "\tfn from (tup: {}) -> Self {{", tuple_str).unwrap();
274         writeln!(w, "\t\tSelf {{").unwrap();
275         for idx in 0..types.len() {
276                 writeln!(w, "\t\t\t{}: tup.{},", ('a' as u8 + idx as u8) as char, idx).unwrap();
277         }
278         writeln!(w, "\t\t}}").unwrap();
279         writeln!(w, "\t}}").unwrap();
280         writeln!(w, "}}").unwrap();
281         writeln!(w, "impl {} {{", mangled_container).unwrap();
282         writeln!(w, "\t#[allow(unused)] pub(crate) fn to_rust(mut self) -> {} {{", tuple_str).unwrap();
283         write!(w, "\t\t(").unwrap();
284         for idx in 0..types.len() {
285                 write!(w, "{}self.{}", if idx != 0 {", "} else {""}, ('a' as u8 + idx as u8) as char).unwrap();
286         }
287         writeln!(w, ")").unwrap();
288         writeln!(w, "\t}}").unwrap();
289         writeln!(w, "}}").unwrap();
290
291         if clonable {
292                 writeln!(w, "impl Clone for {} {{", mangled_container).unwrap();
293                 writeln!(w, "\tfn clone(&self) -> Self {{").unwrap();
294                 writeln!(w, "\t\tSelf {{").unwrap();
295                 for idx in 0..types.len() {
296                         writeln!(w, "\t\t\t{}: self.{}.clone(),", ('a' as u8 + idx as u8) as char, ('a' as u8 + idx as u8) as char).unwrap();
297                 }
298                 writeln!(w, "\t\t}}").unwrap();
299                 writeln!(w, "\t}}").unwrap();
300                 writeln!(w, "}}").unwrap();
301                 writeln!(w, "#[no_mangle]").unwrap();
302                 writeln!(w, "/// Creates a new tuple which has the same data as `orig`").unwrap();
303                 writeln!(w, "/// but with all dynamically-allocated buffers duplicated in new buffers.").unwrap();
304                 writeln!(w, "pub extern \"C\" fn {}_clone(orig: &{}) -> {} {{ orig.clone() }}", mangled_container, mangled_container, mangled_container).unwrap();
305         }
306
307         writeln!(w, "/// Creates a new {} from the contained elements.", mangled_container).unwrap();
308         write!(w, "#[no_mangle]\npub extern \"C\" fn {}_new(", mangled_container).unwrap();
309         for (idx, gen) in types.iter().enumerate() {
310                 write!(w, "{}{}: ", if idx != 0 { ", " } else { "" }, ('a' as u8 + idx as u8) as char).unwrap();
311                 //if !self.write_c_type_intern(&mut created_container, gen, generics, false, false, false) { return false; }
312                 write!(w, "{}", gen).unwrap();
313         }
314         writeln!(w, ") -> {} {{", mangled_container).unwrap();
315         write!(w, "\t{} {{ ", mangled_container).unwrap();
316         for idx in 0..types.len() {
317                 write!(w, "{}, ", ('a' as u8 + idx as u8) as char).unwrap();
318         }
319         writeln!(w, "}}\n}}\n").unwrap();
320
321         writeln!(w, "#[no_mangle]").unwrap();
322         writeln!(w, "/// Frees any resources used by the {}.", mangled_container).unwrap();
323         writeln!(w, "pub extern \"C\" fn {}_free(_res: {}) {{ }}", mangled_container, mangled_container).unwrap();
324 }
325
326 /// Writes out a C-callable concrete Option<A> struct and utility methods
327 pub fn write_option_block<W: std::io::Write>(w: &mut W, mangled_container: &str, inner_type: &str, clonable: bool) {
328         writeln!(w, "#[repr(C)]").unwrap();
329         if clonable {
330                 writeln!(w, "#[derive(Clone)]").unwrap();
331         }
332         writeln!(w, "/// An enum which can either contain a {} or not", inner_type).unwrap();
333         writeln!(w, "pub enum {} {{", mangled_container).unwrap();
334         writeln!(w, "\t/// When we're in this state, this {} contains a {}", mangled_container, inner_type).unwrap();
335         writeln!(w, "\tSome({}),", inner_type).unwrap();
336         writeln!(w, "\t/// When we're in this state, this {} contains nothing", mangled_container).unwrap();
337         writeln!(w, "\tNone").unwrap();
338         writeln!(w, "}}").unwrap();
339
340         writeln!(w, "impl {} {{", mangled_container).unwrap();
341         writeln!(w, "\t#[allow(unused)] pub(crate) fn is_some(&self) -> bool {{").unwrap();
342         writeln!(w, "\t\tif let Self::Some(_) = self {{ true }} else {{ false }}").unwrap();
343         writeln!(w, "\t}}").unwrap();
344         writeln!(w, "\t#[allow(unused)] pub(crate) fn take(mut self) -> {} {{", inner_type).unwrap();
345         writeln!(w, "\t\tif let Self::Some(v) = self {{ v }} else {{ unreachable!() }}").unwrap();
346         writeln!(w, "\t}}").unwrap();
347         writeln!(w, "}}").unwrap();
348
349         writeln!(w, "#[no_mangle]").unwrap();
350         writeln!(w, "/// Constructs a new {} containing a {}", mangled_container, inner_type).unwrap();
351         writeln!(w, "pub extern \"C\" fn {}_some(o: {}) -> {} {{", mangled_container, inner_type, mangled_container).unwrap();
352         writeln!(w, "\t{}::Some(o)", mangled_container).unwrap();
353         writeln!(w, "}}").unwrap();
354
355         writeln!(w, "#[no_mangle]").unwrap();
356         writeln!(w, "/// Constructs a new {} containing nothing", mangled_container).unwrap();
357         writeln!(w, "pub extern \"C\" fn {}_none() -> {} {{", mangled_container, mangled_container).unwrap();
358         writeln!(w, "\t{}::None", mangled_container).unwrap();
359         writeln!(w, "}}").unwrap();
360
361         writeln!(w, "#[no_mangle]").unwrap();
362         writeln!(w, "/// Frees any resources associated with the {}, if we are in the Some state", inner_type).unwrap();
363         writeln!(w, "pub extern \"C\" fn {}_free(_res: {}) {{ }}", mangled_container, mangled_container).unwrap();
364         if clonable {
365                 writeln!(w, "#[no_mangle]").unwrap();
366                 writeln!(w, "/// Creates a new {} which has the same data as `orig`", mangled_container).unwrap();
367                 writeln!(w, "/// but with all dynamically-allocated buffers duplicated in new buffers.").unwrap();
368                 writeln!(w, "pub extern \"C\" fn {}_clone(orig: &{}) -> {} {{ orig.clone() }}", mangled_container, mangled_container, mangled_container).unwrap();
369         }
370 }
371
372 /// Prints the docs from a given attribute list unless its tagged no export
373 pub fn writeln_docs<W: std::io::Write>(w: &mut W, attrs: &[syn::Attribute], prefix: &str) {
374         for attr in attrs.iter() {
375                 let tokens_clone = attr.tokens.clone();
376                 let mut token_iter = tokens_clone.into_iter();
377                 if let Some(token) = token_iter.next() {
378                         match token {
379                                 TokenTree::Punct(c) if c.as_char() == '=' => {
380                                         // syn gets '=' from '///' or '//!' as it is syntax for #[doc = ""]
381                                 },
382                                 TokenTree::Group(_) => continue, // eg #[derive()]
383                                 _ => unimplemented!(),
384                         }
385                 } else { continue; }
386                 match attr.style {
387                         syn::AttrStyle::Inner(_) => {
388                                 match token_iter.next().unwrap() {
389                                         TokenTree::Literal(lit) => {
390                                                 // Drop the first and last chars from lit as they are always "
391                                                 let doc = format!("{}", lit);
392                                                 writeln!(w, "{}//!{}", prefix, &doc[1..doc.len() - 1]).unwrap();
393                                         },
394                                         _ => unimplemented!(),
395                                 }
396                         },
397                         syn::AttrStyle::Outer => {
398                                 match token_iter.next().unwrap() {
399                                         TokenTree::Literal(lit) => {
400                                                 // Drop the first and last chars from lit as they are always "
401                                                 let doc = format!("{}", lit);
402                                                 writeln!(w, "{}///{}", prefix, &doc[1..doc.len() - 1]).unwrap();
403                                         },
404                                         _ => unimplemented!(),
405                                 }
406                         },
407                 }
408         }
409 }
410
411 /// Print the parameters in a method declaration, starting after the open parenthesis, through and
412 /// including the closing parenthesis and return value, but not including the open bracket or any
413 /// trailing semicolons.
414 ///
415 /// Usable both for a function definition and declaration.
416 ///
417 /// this_param is used when returning Self or accepting a self parameter, and should be the
418 /// concrete, mapped type.
419 pub fn write_method_params<W: std::io::Write>(w: &mut W, sig: &syn::Signature, this_param: &str, types: &mut TypeResolver, generics: Option<&GenericTypes>, self_ptr: bool, fn_decl: bool) {
420         if sig.constness.is_some() || sig.asyncness.is_some() || sig.unsafety.is_some() ||
421                         sig.abi.is_some() || sig.variadic.is_some() {
422                 unimplemented!();
423         }
424         if sig.generics.lt_token.is_some() {
425                 for generic in sig.generics.params.iter() {
426                         match generic {
427                                 syn::GenericParam::Type(_)|syn::GenericParam::Lifetime(_) => {
428                                         // We ignore these, if they're not on skipped args, we'll blow up
429                                         // later, and lifetimes we just hope the C client enforces.
430                                 },
431                                 _ => unimplemented!(),
432                         }
433                 }
434         }
435
436         let mut first_arg = true;
437         let mut num_unused = 0;
438         for inp in sig.inputs.iter() {
439                 match inp {
440                         syn::FnArg::Receiver(recv) => {
441                                 if !recv.attrs.is_empty() { unimplemented!(); }
442                                 write!(w, "{}this_arg: {}{}", if recv.reference.is_none() { "mut " } else { "" },
443                                         if recv.reference.is_some() {
444                                                 match (self_ptr, recv.mutability.is_some()) {
445                                                         (true, true) => "*mut ",
446                                                         (true, false) => "*const ",
447                                                         (false, true) => "&mut ",
448                                                         (false, false) => "&",
449                                                 }
450                                         } else { "" }, this_param).unwrap();
451                                 assert!(first_arg);
452                                 first_arg = false;
453                         },
454                         syn::FnArg::Typed(arg) => {
455                                 if types.skip_arg(&*arg.ty, generics) { continue; }
456                                 if !arg.attrs.is_empty() { unimplemented!(); }
457                                 // First get the c type so that we can check if it ends up being a reference:
458                                 let mut c_type = Vec::new();
459                                 types.write_c_type(&mut c_type, &*arg.ty, generics, false);
460                                 match &*arg.pat {
461                                         syn::Pat::Ident(ident) => {
462                                                 if !ident.attrs.is_empty() || ident.subpat.is_some() {
463                                                         unimplemented!();
464                                                 }
465                                                 write!(w, "{}{}{}: ", if first_arg { "" } else { ", " }, if !fn_decl || c_type[0] == '&' as u8 || c_type[0] == '*' as u8 { "" } else { "mut " }, ident.ident).unwrap();
466                                                 first_arg = false;
467                                         },
468                                         syn::Pat::Wild(wild) => {
469                                                 if !wild.attrs.is_empty() { unimplemented!(); }
470                                                 write!(w, "{}unused_{}: ", if first_arg { "" } else { ", " }, num_unused).unwrap();
471                                                 num_unused += 1;
472                                         },
473                                         _ => unimplemented!(),
474                                 }
475                                 w.write(&c_type).unwrap();
476                         }
477                 }
478         }
479         write!(w, ")").unwrap();
480         match &sig.output {
481                 syn::ReturnType::Type(_, rtype) => {
482                         write!(w, " -> ").unwrap();
483                         if let Some(mut remaining_path) = first_seg_self(&*rtype) {
484                                 if remaining_path.next().is_none() {
485                                         write!(w, "{}", this_param).unwrap();
486                                         return;
487                                 }
488                         }
489                         types.write_c_type(w, &*rtype, generics, true);
490                 },
491                 _ => {},
492         }
493 }
494
495 /// Print the main part of a method declaration body, starting with a newline after the function
496 /// open bracket and converting each function parameter to or from C-mapped types. Ends with "let
497 /// mut ret = " assuming the next print will be the unmapped Rust function to call followed by the
498 /// parameters we mapped to/from C here.
499 pub fn write_method_var_decl_body<W: std::io::Write>(w: &mut W, sig: &syn::Signature, extra_indent: &str, types: &TypeResolver, generics: Option<&GenericTypes>, to_c: bool) {
500         let mut num_unused = 0u32;
501         for inp in sig.inputs.iter() {
502                 match inp {
503                         syn::FnArg::Receiver(_) => {},
504                         syn::FnArg::Typed(arg) => {
505                                 if types.skip_arg(&*arg.ty, generics) { continue; }
506                                 if !arg.attrs.is_empty() { unimplemented!(); }
507                                 macro_rules! write_new_var {
508                                         ($ident: expr, $ty: expr) => {
509                                                 if to_c {
510                                                         if types.write_to_c_conversion_new_var(w, &$ident, &$ty, generics, false) {
511                                                                 write!(w, "\n\t{}", extra_indent).unwrap();
512                                                         }
513                                                 } else {
514                                                         if types.write_from_c_conversion_new_var(w, &$ident, &$ty, generics) {
515                                                                 write!(w, "\n\t{}", extra_indent).unwrap();
516                                                         }
517                                                 }
518                                         }
519                                 }
520                                 match &*arg.pat {
521                                         syn::Pat::Ident(ident) => {
522                                                 if !ident.attrs.is_empty() || ident.subpat.is_some() {
523                                                         unimplemented!();
524                                                 }
525                                                 write_new_var!(ident.ident, *arg.ty);
526                                         },
527                                         syn::Pat::Wild(w) => {
528                                                 if !w.attrs.is_empty() { unimplemented!(); }
529                                                 write_new_var!(format_ident!("unused_{}", num_unused), *arg.ty);
530                                                 num_unused += 1;
531                                         },
532                                         _ => unimplemented!(),
533                                 }
534                         }
535                 }
536         }
537         match &sig.output {
538                 syn::ReturnType::Type(_, _) => {
539                         write!(w, "let mut ret = ").unwrap();
540                 },
541                 _ => {},
542         }
543 }
544
545 /// Prints the parameters in a method call, starting after the open parenthesis and ending with a
546 /// final return statement returning the method's result. Should be followed by a single closing
547 /// bracket.
548 ///
549 /// The return value is expected to be bound to a variable named `ret` which is available after a
550 /// method-call-ending semicolon.
551 pub fn write_method_call_params<W: std::io::Write>(w: &mut W, sig: &syn::Signature, extra_indent: &str, types: &TypeResolver, generics: Option<&GenericTypes>, this_type: &str, to_c: bool) {
552         let mut first_arg = true;
553         let mut num_unused = 0;
554         for inp in sig.inputs.iter() {
555                 match inp {
556                         syn::FnArg::Receiver(recv) => {
557                                 if !recv.attrs.is_empty() { unimplemented!(); }
558                                 if to_c {
559                                         if recv.reference.is_none() { unimplemented!(); }
560                                         write!(w, "self.this_arg").unwrap();
561                                         first_arg = false;
562                                 }
563                         },
564                         syn::FnArg::Typed(arg) => {
565                                 if types.skip_arg(&*arg.ty, generics) {
566                                         if !to_c {
567                                                 if !first_arg {
568                                                         write!(w, ", ").unwrap();
569                                                 }
570                                                 first_arg = false;
571                                                 types.no_arg_to_rust(w, &*arg.ty, generics);
572                                         }
573                                         continue;
574                                 }
575                                 if !arg.attrs.is_empty() { unimplemented!(); }
576                                 macro_rules! write_ident {
577                                         ($ident: expr) => {
578                                                 if !first_arg {
579                                                         write!(w, ", ").unwrap();
580                                                 }
581                                                 first_arg = false;
582                                                 if to_c {
583                                                         types.write_to_c_conversion_inline_prefix(w, &*arg.ty, generics, false);
584                                                         write!(w, "{}", $ident).unwrap();
585                                                         types.write_to_c_conversion_inline_suffix(w, &*arg.ty, generics, false);
586                                                 } else {
587                                                         types.write_from_c_conversion_prefix(w, &*arg.ty, generics);
588                                                         write!(w, "{}", $ident).unwrap();
589                                                         types.write_from_c_conversion_suffix(w, &*arg.ty, generics);
590                                                 }
591                                         }
592                                 }
593                                 match &*arg.pat {
594                                         syn::Pat::Ident(ident) => {
595                                                 if !ident.attrs.is_empty() || ident.subpat.is_some() {
596                                                         unimplemented!();
597                                                 }
598                                                 write_ident!(ident.ident);
599                                         },
600                                         syn::Pat::Wild(w) => {
601                                                 if !w.attrs.is_empty() { unimplemented!(); }
602                                                 write_ident!(format!("unused_{}", num_unused));
603                                                 num_unused += 1;
604                                         },
605                                         _ => unimplemented!(),
606                                 }
607                         }
608                 }
609         }
610         write!(w, ")").unwrap();
611         match &sig.output {
612                 syn::ReturnType::Type(_, rtype) => {
613                         write!(w, ";\n\t{}", extra_indent).unwrap();
614
615                         let self_segs_iter = first_seg_self(&*rtype);
616                         if to_c && first_seg_self(&*rtype).is_some() {
617                                 // Assume rather blindly that we're returning an associated trait from a C fn call to a Rust trait object.
618                                 write!(w, "ret").unwrap();
619                         } else if !to_c && self_segs_iter.is_some() && self_segs_iter.unwrap().next().is_none() {
620                                 // If we're returning "Self" (and not "Self::X"), just do it manually
621                                 write!(w, "{} {{ inner: Box::into_raw(Box::new(ret)), is_owned: true }}", this_type).unwrap();
622                         } else if to_c {
623                                 let new_var = types.write_from_c_conversion_new_var(w, &format_ident!("ret"), rtype, generics);
624                                 if new_var {
625                                         write!(w, "\n\t{}", extra_indent).unwrap();
626                                 }
627                                 types.write_from_c_conversion_prefix(w, &*rtype, generics);
628                                 write!(w, "ret").unwrap();
629                                 types.write_from_c_conversion_suffix(w, &*rtype, generics);
630                         } else {
631                                 let new_var = types.write_to_c_conversion_new_var(w, &format_ident!("ret"), &rtype, generics, true);
632                                 if new_var {
633                                         write!(w, "\n\t{}", extra_indent).unwrap();
634                                 }
635                                 types.write_to_c_conversion_inline_prefix(w, &rtype, generics, true);
636                                 write!(w, "ret").unwrap();
637                                 types.write_to_c_conversion_inline_suffix(w, &rtype, generics, true);
638                         }
639                 }
640                 _ => {},
641         }
642 }
643
644 /// Prints concrete generic parameters for a struct/trait/function, including the less-than and
645 /// greater-than symbols, if any generic parameters are defined.
646 pub fn maybe_write_generics<W: std::io::Write>(w: &mut W, generics: &syn::Generics, types: &TypeResolver, concrete_lifetimes: bool) {
647         let mut gen_types = GenericTypes::new(None);
648         assert!(gen_types.learn_generics(generics, types));
649         if !generics.params.is_empty() {
650                 write!(w, "<").unwrap();
651                 for (idx, generic) in generics.params.iter().enumerate() {
652                         match generic {
653                                 syn::GenericParam::Type(type_param) => {
654                                         let mut printed_param = false;
655                                         for bound in type_param.bounds.iter() {
656                                                 if let syn::TypeParamBound::Trait(trait_bound) = bound {
657                                                         assert_simple_bound(&trait_bound);
658                                                         write!(w, "{}{}", if idx != 0 { ", " } else { "" }, gen_types.maybe_resolve_ident(&type_param.ident).unwrap()).unwrap();
659                                                         if printed_param {
660                                                                 unimplemented!("Can't print generic params that have multiple non-lifetime bounds");
661                                                         }
662                                                         printed_param = true;
663                                                 }
664                                         }
665                                 },
666                                 syn::GenericParam::Lifetime(lt) => {
667                                         if concrete_lifetimes {
668                                                 write!(w, "'static").unwrap();
669                                         } else {
670                                                 write!(w, "{}'{}", if idx != 0 { ", " } else { "" }, lt.lifetime.ident).unwrap();
671                                         }
672                                 },
673                                 _ => unimplemented!(),
674                         }
675                 }
676                 write!(w, ">").unwrap();
677         }
678 }
679
680