1 /*
2 * Copyright (C) 2020, The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 #include "aidl_to_rust.h"
18 #include "aidl_language.h"
19 #include "aidl_typenames.h"
20 #include "logging.h"
21
22 #include <android-base/parseint.h>
23 #include <android-base/stringprintf.h>
24 #include <android-base/strings.h>
25
26 #include <functional>
27 #include <iostream>
28 #include <map>
29 #include <string>
30 #include <vector>
31
32 using android::base::Join;
33 using android::base::Split;
34 using android::base::StringPrintf;
35
36 namespace android {
37 namespace aidl {
38 namespace rust {
39
40 namespace {
41 std::string GetRawRustName(const AidlTypeSpecifier& type);
42
ConstantValueDecoratorInternal(const AidlTypeSpecifier & type,const std::variant<std::string,std::vector<std::string>> & raw_value,bool by_ref)43 std::string ConstantValueDecoratorInternal(
44 const AidlTypeSpecifier& type,
45 const std::variant<std::string, std::vector<std::string>>& raw_value, bool by_ref) {
46 if (type.IsArray()) {
47 const auto& values = std::get<std::vector<std::string>>(raw_value);
48 std::string value = "[" + Join(values, ", ") + "]";
49 if (type.IsDynamicArray()) {
50 value = "vec!" + value;
51 }
52 if (!type.IsFromWithinArray() && type.IsNullable()) {
53 value = "Some(" + value + ")";
54 }
55 return value;
56 }
57
58 std::string value = std::get<std::string>(raw_value);
59
60 const auto& aidl_name = type.GetName();
61 if (aidl_name == "char") {
62 return value + " as u16";
63 }
64
65 // Rust compiler will not re-interpret negative value into byte
66 if (aidl_name == "byte" && type.IsFromWithinArray()) {
67 AIDL_FATAL_IF(value.empty(), type);
68 if (value[0] == '-') {
69 // TODO: instead of getting raw string here, we should refactor everything to pass in the
70 // constant value object, so we don't need to re-parse the integer.
71 int8_t parsed;
72 AIDL_FATAL_IF(!android::base::ParseInt<int8_t>(value, &parsed), type);
73 return std::to_string(static_cast<uint8_t>(parsed));
74 }
75 }
76
77 if (aidl_name == "float") {
78 // value already ends in `f`, so just add `32`
79 return value + "32";
80 }
81
82 if (aidl_name == "double") {
83 return value + "f64";
84 }
85
86 if (auto defined_type = type.GetDefinedType(); defined_type) {
87 auto enum_type = defined_type->AsEnumDeclaration();
88 AIDL_FATAL_IF(!enum_type, type) << "Invalid type for \"" << value << "\"";
89 return GetRawRustName(type) + "::" + value.substr(value.find_last_of('.') + 1);
90 }
91
92 if (aidl_name == "String" && !by_ref) {
93 // The actual type might be String or &str,
94 // and .into() transparently converts into either one
95 value = value + ".into()";
96 }
97
98 if (type.IsNullable()) {
99 value = "Some(" + value + ")";
100 }
101
102 return value;
103 }
104
GetRawRustName(const AidlTypeSpecifier & type)105 std::string GetRawRustName(const AidlTypeSpecifier& type) {
106 const auto defined_type = type.GetDefinedType();
107 if (defined_type != nullptr) {
108 const auto unstructured = AidlCast<AidlParcelable>(*defined_type);
109 if (unstructured != nullptr) {
110 // Unstructured parcelable should set its rust_type. Use it.
111 const std::string rust_type = unstructured->GetRustType();
112 AIDL_FATAL_IF(rust_type.empty(), unstructured)
113 << "Parcelable " << unstructured->GetCanonicalName() << " has no rust_type defined.";
114 return rust_type;
115 }
116 }
117
118 // Each Rust type is defined in a file with the same name,
119 // e.g., IFoo is in IFoo.rs
120 auto split_name = type.GetSplitName();
121 std::string rust_name{"crate::mangled::"};
122 for (const auto& component : split_name) {
123 rust_name += StringPrintf("_%zd_%s", component.size(), component.c_str());
124 }
125 return rust_name;
126 }
127
128 // Usually, this means that the type implements `Default`, however `ParcelableHolder` is also
129 // included in this list because the code generator knows how to call `::new(stability)`.
AutoConstructor(const AidlTypeSpecifier & type,const AidlTypenames & typenames)130 bool AutoConstructor(const AidlTypeSpecifier& type, const AidlTypenames& typenames) {
131 return !(type.GetName() == "ParcelFileDescriptor" || type.GetName() == "IBinder" ||
132 TypeIsInterface(type, typenames));
133 }
134
GetRustName(const AidlTypeSpecifier & type,const AidlTypenames & typenames,StorageMode mode,bool is_vintf_stability)135 std::string GetRustName(const AidlTypeSpecifier& type, const AidlTypenames& typenames,
136 StorageMode mode, bool is_vintf_stability) {
137 // map from AIDL built-in type name to the corresponding Rust type name
138 static map<string, string> m = {
139 {"void", "()"},
140 {"boolean", "bool"},
141 {"byte", "i8"},
142 {"char", "u16"},
143 {"int", "i32"},
144 {"long", "i64"},
145 {"float", "f32"},
146 {"double", "f64"},
147 {"String", "String"},
148 {"IBinder", "binder::SpIBinder"},
149 {"ParcelFileDescriptor", "binder::ParcelFileDescriptor"},
150 };
151 const string& type_name = type.GetName();
152 if (m.find(type_name) != m.end()) {
153 AIDL_FATAL_IF(!AidlTypenames::IsBuiltinTypename(type_name), type);
154 if (type_name == "String" && mode == StorageMode::UNSIZED_ARGUMENT) {
155 return "str";
156 } else {
157 return m[type_name];
158 }
159 }
160 if (type_name == "ParcelableHolder") {
161 if (is_vintf_stability) {
162 return "binder::ParcelableHolder<binder::binder_impl::VintfStabilityType>";
163 } else {
164 return "binder::ParcelableHolder<binder::binder_impl::LocalStabilityType>";
165 }
166 }
167 auto name = GetRawRustName(type);
168 if (TypeIsInterface(type, typenames)) {
169 name = "binder::Strong<dyn " + name + ">";
170 }
171 if (type.IsGeneric()) {
172 name += "<";
173 for (const auto& param : type.GetTypeParameters()) {
174 name += GetRustName(*param, typenames, mode, is_vintf_stability);
175 name += ",";
176 }
177 name += ">";
178 }
179 return name;
180 }
181 } // namespace
182
ConstantValueDecorator(const AidlTypeSpecifier & type,const std::variant<std::string,std::vector<std::string>> & raw_value)183 std::string ConstantValueDecorator(
184 const AidlTypeSpecifier& type,
185 const std::variant<std::string, std::vector<std::string>>& raw_value) {
186 return ConstantValueDecoratorInternal(type, raw_value, false);
187 }
188
ConstantValueDecoratorRef(const AidlTypeSpecifier & type,const std::variant<std::string,std::vector<std::string>> & raw_value)189 std::string ConstantValueDecoratorRef(
190 const AidlTypeSpecifier& type,
191 const std::variant<std::string, std::vector<std::string>>& raw_value) {
192 return ConstantValueDecoratorInternal(type, raw_value, true);
193 }
194
195 // Returns default value for array.
ArrayDefaultValue(const AidlTypeSpecifier & type)196 std::string ArrayDefaultValue(const AidlTypeSpecifier& type) {
197 AIDL_FATAL_IF(!type.IsFixedSizeArray(), type) << "not a fixed-size array";
198 auto dimensions = type.GetFixedSizeArrayDimensions();
199 std::string value = "Default::default()";
200 for (auto it = rbegin(dimensions), end = rend(dimensions); it != end; it++) {
201 value = "[" + Join(std::vector<std::string>(*it, value), ", ") + "]";
202 }
203 return value;
204 }
205
206 // Returns true if @nullable T[] should be mapped Option<Vec<Option<T>>
UsesOptionInNullableVector(const AidlTypeSpecifier & type,const AidlTypenames & typenames)207 bool UsesOptionInNullableVector(const AidlTypeSpecifier& type, const AidlTypenames& typenames) {
208 AIDL_FATAL_IF(!type.IsArray() && !typenames.IsList(type), type) << "not a vector";
209 AIDL_FATAL_IF(typenames.IsList(type) && type.GetTypeParameters().size() != 1, type)
210 << "List should have a single type arg.";
211
212 const auto& element_type = type.IsArray() ? type : *type.GetTypeParameters().at(0);
213 if (typenames.IsPrimitiveTypename(element_type.GetName())) {
214 return false;
215 }
216 if (typenames.GetEnumDeclaration(element_type)) {
217 return false;
218 }
219 return true;
220 }
221
RustLifetimeName(Lifetime lifetime,std::vector<std::string> & lifetimes)222 std::string RustLifetimeName(Lifetime lifetime, std::vector<std::string>& lifetimes) {
223 switch (lifetime) {
224 case Lifetime::NONE:
225 return "";
226 case Lifetime::A:
227 if (find(lifetimes.begin(), lifetimes.end(), "a") == lifetimes.end()) {
228 lifetimes.push_back("a");
229 }
230 return "'a ";
231 case Lifetime::FRESH:
232 std::string fresh_lifetime = StringPrintf("l%zu", lifetimes.size());
233 lifetimes.push_back(fresh_lifetime);
234 return "'" + fresh_lifetime + " ";
235 }
236 }
237
RustNameOf(const AidlTypeSpecifier & type,const AidlTypenames & typenames,StorageMode mode,bool is_vintf_stability)238 std::string RustNameOf(const AidlTypeSpecifier& type, const AidlTypenames& typenames,
239 StorageMode mode, bool is_vintf_stability) {
240 std::vector<std::string> lifetimes;
241 return RustNameOf(type, typenames, mode, Lifetime::NONE, is_vintf_stability, lifetimes);
242 }
243
RustNameOf(const AidlTypeSpecifier & type,const AidlTypenames & typenames,StorageMode mode,Lifetime lifetime,bool is_vintf_stability,std::vector<std::string> & lifetimes)244 std::string RustNameOf(const AidlTypeSpecifier& type, const AidlTypenames& typenames,
245 StorageMode mode, Lifetime lifetime, bool is_vintf_stability,
246 std::vector<std::string>& lifetimes) {
247 std::string rust_name;
248 if (type.IsArray() || typenames.IsList(type)) {
249 const auto& element_type = type.IsGeneric() ? (*type.GetTypeParameters().at(0)) : type;
250 StorageMode element_mode;
251 if (type.IsFixedSizeArray() && mode == StorageMode::PARCELABLE_FIELD) {
252 // Elements of fixed-size array field need to have Default.
253 element_mode = StorageMode::DEFAULT_VALUE;
254 } else if (mode == StorageMode::OUT_ARGUMENT || mode == StorageMode::DEFAULT_VALUE) {
255 // Elements need to have Default for resize_out_vec()
256 element_mode = StorageMode::DEFAULT_VALUE;
257 } else {
258 element_mode = StorageMode::VALUE;
259 }
260 if (type.IsArray() && element_type.GetName() == "byte") {
261 rust_name = "u8";
262 } else {
263 rust_name = GetRustName(element_type, typenames, element_mode, is_vintf_stability);
264 }
265
266 // Needs `Option` wrapping because type is not default constructible
267 const bool default_option =
268 element_mode == StorageMode::DEFAULT_VALUE && !AutoConstructor(element_type, typenames);
269 // Needs `Option` wrapping due to being a nullable, non-primitive, non-enum type in a vector.
270 const bool nullable_option = type.IsNullable() && UsesOptionInNullableVector(type, typenames);
271 if (default_option || nullable_option) {
272 rust_name = "Option<" + rust_name + ">";
273 }
274
275 if (mode == StorageMode::UNSIZED_ARGUMENT) {
276 rust_name = "[" + rust_name + "]";
277 } else if (type.IsFixedSizeArray()) {
278 auto dimensions = type.GetFixedSizeArrayDimensions();
279 // T[N][M] => [[T; M]; N]
280 for (auto it = rbegin(dimensions), end = rend(dimensions); it != end; it++) {
281 rust_name = "[" + rust_name + "; " + std::to_string(*it) + "]";
282 }
283 } else {
284 rust_name = "Vec<" + rust_name + ">";
285 }
286 } else {
287 rust_name = GetRustName(type, typenames, mode, is_vintf_stability);
288 }
289
290 if (mode == StorageMode::IN_ARGUMENT || mode == StorageMode::UNSIZED_ARGUMENT) {
291 // If this is a nullable input argument, put the reference inside the option,
292 // e.g., `Option<&str>` instead of `&Option<str>`
293 rust_name = "&" + RustLifetimeName(lifetime, lifetimes) + rust_name;
294 }
295
296 if (type.IsNullable() ||
297 // Some types don't implement Default, so we wrap them
298 // in Option, which defaults to None
299 (TypeNeedsOption(type, typenames) &&
300 (mode == StorageMode::DEFAULT_VALUE || mode == StorageMode::OUT_ARGUMENT ||
301 mode == StorageMode::PARCELABLE_FIELD))) {
302 if (type.IsHeapNullable()) {
303 rust_name = "Option<Box<" + rust_name + ">>";
304 } else {
305 rust_name = "Option<" + rust_name + ">";
306 }
307 }
308
309 if (mode == StorageMode::OUT_ARGUMENT || mode == StorageMode::INOUT_ARGUMENT) {
310 rust_name = "&" + RustLifetimeName(lifetime, lifetimes) + "mut " + rust_name;
311 }
312
313 return rust_name;
314 }
315
ArgumentStorageMode(const AidlArgument & arg,const AidlTypenames & typenames)316 StorageMode ArgumentStorageMode(const AidlArgument& arg, const AidlTypenames& typenames) {
317 if (arg.IsOut()) {
318 return arg.IsIn() ? StorageMode::INOUT_ARGUMENT : StorageMode::OUT_ARGUMENT;
319 }
320
321 const auto typeName = arg.GetType().GetName();
322 const auto definedType = typenames.TryGetDefinedType(typeName);
323
324 const bool isEnum = definedType && definedType->AsEnumDeclaration() != nullptr;
325 const bool isPrimitive = AidlTypenames::IsPrimitiveTypename(typeName);
326 if (typeName == "String" || arg.GetType().IsDynamicArray() || typenames.IsList(arg.GetType())) {
327 return StorageMode::UNSIZED_ARGUMENT;
328 } else if (!(isPrimitive || isEnum) || arg.GetType().IsFixedSizeArray()) {
329 return StorageMode::IN_ARGUMENT;
330 } else {
331 return StorageMode::VALUE;
332 }
333 }
334
ArgumentReferenceMode(const AidlArgument & arg,const AidlTypenames & typenames)335 ReferenceMode ArgumentReferenceMode(const AidlArgument& arg, const AidlTypenames& typenames) {
336 auto arg_mode = ArgumentStorageMode(arg, typenames);
337 switch (arg_mode) {
338 case StorageMode::IN_ARGUMENT:
339 if (arg.GetType().IsNullable()) {
340 // &Option<T> => Option<&T>
341 return ReferenceMode::AS_REF;
342 } else {
343 return ReferenceMode::REF;
344 }
345
346 case StorageMode::OUT_ARGUMENT:
347 case StorageMode::INOUT_ARGUMENT:
348 return ReferenceMode::MUT_REF;
349
350 case StorageMode::UNSIZED_ARGUMENT:
351 if (arg.GetType().IsNullable()) {
352 // &Option<String> => Option<&str>
353 // &Option<Vec<T>> => Option<&[T]>
354 return ReferenceMode::AS_DEREF;
355 } else {
356 return ReferenceMode::REF;
357 }
358
359 default:
360 return ReferenceMode::VALUE;
361 }
362 }
363
TakeReference(ReferenceMode ref_mode,const std::string & name)364 std::string TakeReference(ReferenceMode ref_mode, const std::string& name) {
365 switch (ref_mode) {
366 case ReferenceMode::REF:
367 return "&" + name;
368
369 case ReferenceMode::MUT_REF:
370 return "&mut " + name;
371
372 case ReferenceMode::AS_REF:
373 return name + ".as_ref()";
374
375 case ReferenceMode::AS_DEREF:
376 return name + ".as_deref()";
377
378 default:
379 return name;
380 }
381 }
382
TypeIsInterface(const AidlTypeSpecifier & type,const AidlTypenames & typenames)383 bool TypeIsInterface(const AidlTypeSpecifier& type, const AidlTypenames& typenames) {
384 const auto definedType = typenames.TryGetDefinedType(type.GetName());
385 return definedType != nullptr && definedType->AsInterface() != nullptr;
386 }
387
TypeNeedsOption(const AidlTypeSpecifier & type,const AidlTypenames & typenames)388 bool TypeNeedsOption(const AidlTypeSpecifier& type, const AidlTypenames& typenames) {
389 if (type.IsArray() || typenames.IsList(type)) {
390 return false;
391 }
392
393 // Already an Option<T>
394 if (type.IsNullable()) {
395 return false;
396 }
397
398 const string& aidl_name = type.GetName();
399 if (aidl_name == "IBinder") {
400 return true;
401 }
402 if (aidl_name == "ParcelFileDescriptor") {
403 return true;
404 }
405 if (aidl_name == "ParcelableHolder") {
406 // ParcelableHolder never needs an Option because we always
407 // call its new() constructor directly instead of default()
408 return false;
409 }
410
411 // Strong<dyn IFoo> values don't implement Default
412 if (TypeIsInterface(type, typenames)) {
413 return true;
414 }
415
416 return false;
417 }
418
419 } // namespace rust
420 } // namespace aidl
421 } // namespace android
422