1 /*
2 * Copyright (C) 2015, 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 "ast_java.h"
18 #include "code_writer.h"
19
20 using std::vector;
21 using std::string;
22
23 template <class... Ts>
24 struct overloaded : Ts... {
25 using Ts::operator()...;
26 };
27 template <class... Ts>
28 overloaded(Ts...)->overloaded<Ts...>;
29
30 namespace android {
31 namespace aidl {
32 namespace java {
33
ToString()34 std::string AstNode::ToString() {
35 std::string str;
36 Write(CodeWriter::ForString(&str).get());
37 return str;
38 }
39
WriteComment(CodeWriter * to,const std::string & comment)40 void WriteComment(CodeWriter* to, const std::string& comment) {
41 to->Write("%s", comment.c_str());
42 if (!comment.empty() && comment.back() != '\n') to->Write("\n");
43 }
44
WriteModifiers(CodeWriter * to,int mod,int mask)45 void WriteModifiers(CodeWriter* to, int mod, int mask) {
46 int m = mod & mask;
47
48 if (m & OVERRIDE) {
49 to->Write("@Override ");
50 }
51
52 if ((m & SCOPE_MASK) == PUBLIC) {
53 to->Write("public ");
54 } else if ((m & SCOPE_MASK) == PRIVATE) {
55 to->Write("private ");
56 } else if ((m & SCOPE_MASK) == PROTECTED) {
57 to->Write("protected ");
58 }
59
60 if (m & STATIC) {
61 to->Write("static ");
62 }
63
64 if (m & FINAL) {
65 to->Write("final ");
66 }
67
68 if (m & ABSTRACT) {
69 to->Write("abstract ");
70 }
71 }
72
WriteArgumentList(CodeWriter * to,const vector<std::shared_ptr<Expression>> & arguments)73 void WriteArgumentList(CodeWriter* to, const vector<std::shared_ptr<Expression>>& arguments) {
74 size_t N = arguments.size();
75 for (size_t i = 0; i < N; i++) {
76 arguments[i]->Write(to);
77 if (i != N - 1) {
78 to->Write(", ");
79 }
80 }
81 }
82
Field(int m,std::shared_ptr<Variable> v)83 Field::Field(int m, std::shared_ptr<Variable> v) : ClassElement(), modifiers(m), variable(v) {}
84
Write(CodeWriter * to) const85 void Field::Write(CodeWriter* to) const {
86 WriteComment(to, comment);
87 for (const auto& a : this->annotations) {
88 to->Write("%s\n", a.c_str());
89 }
90 WriteModifiers(to, this->modifiers, SCOPE_MASK | STATIC | FINAL | OVERRIDE);
91 this->variable->WriteDeclaration(to);
92
93 if (this->value.length() != 0) {
94 to->Write(" = %s", this->value.c_str());
95 }
96 to->Write(";\n");
97 }
98
LiteralExpression(const string & v)99 LiteralExpression::LiteralExpression(const string& v) : value(v) {}
100
Write(CodeWriter * to) const101 void LiteralExpression::Write(CodeWriter* to) const {
102 to->Write("%s", this->value.c_str());
103 }
104
StringLiteralExpression(const string & v)105 StringLiteralExpression::StringLiteralExpression(const string& v) : value(v) {}
106
Write(CodeWriter * to) const107 void StringLiteralExpression::Write(CodeWriter* to) const {
108 to->Write("\"%s\"", this->value.c_str());
109 }
110
Variable(const string & t,const string & n)111 Variable::Variable(const string& t, const string& n) : type(t), name(n) {}
112
WriteDeclaration(CodeWriter * to) const113 void Variable::WriteDeclaration(CodeWriter* to) const {
114 for (const auto& a : this->annotations) {
115 to->Write("%s ", a.c_str());
116 }
117 to->Write("%s %s", this->type.c_str(), this->name.c_str());
118 }
119
Write(CodeWriter * to) const120 void Variable::Write(CodeWriter* to) const { to->Write("%s", name.c_str()); }
121
FieldVariable(std::shared_ptr<Expression> o,const string & n)122 FieldVariable::FieldVariable(std::shared_ptr<Expression> o, const string& n)
123 : receiver(o), name(n) {}
124
FieldVariable(const string & c,const string & n)125 FieldVariable::FieldVariable(const string& c, const string& n) : receiver(c), name(n) {}
126
Write(CodeWriter * to) const127 void FieldVariable::Write(CodeWriter* to) const {
128 visit(
129 overloaded{[&](std::shared_ptr<Expression> e) { e->Write(to); },
130 [&](const std::string& s) { to->Write("%s", s.c_str()); }, [](std::monostate) {}},
131 this->receiver);
132 to->Write(".%s", name.c_str());
133 }
134
LiteralStatement(const std::string & value)135 LiteralStatement::LiteralStatement(const std::string& value) : value_(value) {}
136
Write(CodeWriter * to) const137 void LiteralStatement::Write(CodeWriter* to) const {
138 to->Write("%s", value_.c_str());
139 }
140
Write(CodeWriter * to) const141 void StatementBlock::Write(CodeWriter* to) const {
142 to->Write("{\n");
143 to->Indent();
144 int N = this->statements.size();
145 for (int i = 0; i < N; i++) {
146 this->statements[i]->Write(to);
147 }
148 to->Dedent();
149 to->Write("}\n");
150 }
151
Add(std::shared_ptr<Statement> statement)152 void StatementBlock::Add(std::shared_ptr<Statement> statement) {
153 this->statements.push_back(statement);
154 }
155
Add(std::shared_ptr<Expression> expression)156 void StatementBlock::Add(std::shared_ptr<Expression> expression) {
157 this->statements.push_back(std::make_shared<ExpressionStatement>(expression));
158 }
159
ExpressionStatement(std::shared_ptr<Expression> e)160 ExpressionStatement::ExpressionStatement(std::shared_ptr<Expression> e) : expression(e) {}
161
Write(CodeWriter * to) const162 void ExpressionStatement::Write(CodeWriter* to) const {
163 this->expression->Write(to);
164 to->Write(";\n");
165 }
166
Assignment(std::shared_ptr<Variable> l,std::shared_ptr<Expression> r)167 Assignment::Assignment(std::shared_ptr<Variable> l, std::shared_ptr<Expression> r)
168 : lvalue(l), rvalue(r) {}
169
Assignment(std::shared_ptr<Variable> l,std::shared_ptr<Expression> r,string c)170 Assignment::Assignment(std::shared_ptr<Variable> l, std::shared_ptr<Expression> r, string c)
171 : lvalue(l), rvalue(r), cast(c) {}
172
Write(CodeWriter * to) const173 void Assignment::Write(CodeWriter* to) const {
174 this->lvalue->Write(to);
175 to->Write(" = ");
176 if (this->cast) {
177 to->Write("(%s)", this->cast->c_str());
178 }
179 this->rvalue->Write(to);
180 }
181
MethodCall(const string & n)182 MethodCall::MethodCall(const string& n) : name(n) {}
183
MethodCall(const string & n,const std::vector<std::shared_ptr<Expression>> & args)184 MethodCall::MethodCall(const string& n, const std::vector<std::shared_ptr<Expression>>& args)
185 : name(n), arguments(args) {}
186
MethodCall(std::shared_ptr<Expression> o,const string & n)187 MethodCall::MethodCall(std::shared_ptr<Expression> o, const string& n) : receiver(o), name(n) {}
188
MethodCall(const std::string & t,const string & n)189 MethodCall::MethodCall(const std::string& t, const string& n) : receiver(t), name(n) {}
190
MethodCall(std::shared_ptr<Expression> o,const string & n,const std::vector<std::shared_ptr<Expression>> & args)191 MethodCall::MethodCall(std::shared_ptr<Expression> o, const string& n,
192 const std::vector<std::shared_ptr<Expression>>& args)
193 : receiver(o), name(n), arguments(args) {}
194
MethodCall(const std::string & t,const string & n,const std::vector<std::shared_ptr<Expression>> & args)195 MethodCall::MethodCall(const std::string& t, const string& n,
196 const std::vector<std::shared_ptr<Expression>>& args)
197 : receiver(t), name(n), arguments(args) {}
198
Write(CodeWriter * to) const199 void MethodCall::Write(CodeWriter* to) const {
200 visit(
201 overloaded{[&](std::shared_ptr<Expression> e) {
202 e->Write(to);
203 to->Write(".");
204 },
205 [&](const std::string& s) { to->Write("%s.", s.c_str()); }, [](std::monostate) {}},
206 this->receiver);
207 to->Write("%s(", this->name.c_str());
208 WriteArgumentList(to, this->arguments);
209 to->Write(")");
210 }
211
Comparison(std::shared_ptr<Expression> l,const string & o,std::shared_ptr<Expression> r)212 Comparison::Comparison(std::shared_ptr<Expression> l, const string& o,
213 std::shared_ptr<Expression> r)
214 : lvalue(l), op(o), rvalue(r) {}
215
Write(CodeWriter * to) const216 void Comparison::Write(CodeWriter* to) const {
217 to->Write("(");
218 this->lvalue->Write(to);
219 to->Write("%s", this->op.c_str());
220 this->rvalue->Write(to);
221 to->Write(")");
222 }
223
NewExpression(const std::string & n)224 NewExpression::NewExpression(const std::string& n) : instantiableName(n) {}
225
NewExpression(const std::string & n,const std::vector<std::shared_ptr<Expression>> & args)226 NewExpression::NewExpression(const std::string& n,
227 const std::vector<std::shared_ptr<Expression>>& args)
228 : instantiableName(n), arguments(args) {}
229
Write(CodeWriter * to) const230 void NewExpression::Write(CodeWriter* to) const {
231 to->Write("new %s(", this->instantiableName.c_str());
232 WriteArgumentList(to, this->arguments);
233 to->Write(")");
234 }
235
NewArrayExpression(const std::string & t,std::shared_ptr<Expression> s)236 NewArrayExpression::NewArrayExpression(const std::string& t, std::shared_ptr<Expression> s)
237 : type(t), size(s) {}
238
Write(CodeWriter * to) const239 void NewArrayExpression::Write(CodeWriter* to) const {
240 to->Write("new %s[", this->type.c_str());
241 size->Write(to);
242 to->Write("]");
243 }
244
Cast(const std::string & t,std::shared_ptr<Expression> e)245 Cast::Cast(const std::string& t, std::shared_ptr<Expression> e) : type(t), expression(e) {}
246
Write(CodeWriter * to) const247 void Cast::Write(CodeWriter* to) const {
248 to->Write("((%s)", this->type.c_str());
249 expression->Write(to);
250 to->Write(")");
251 }
252
VariableDeclaration(std::shared_ptr<Variable> l,std::shared_ptr<Expression> r)253 VariableDeclaration::VariableDeclaration(std::shared_ptr<Variable> l, std::shared_ptr<Expression> r)
254 : lvalue(l), rvalue(r) {}
255
VariableDeclaration(std::shared_ptr<Variable> l)256 VariableDeclaration::VariableDeclaration(std::shared_ptr<Variable> l) : lvalue(l) {}
257
Write(CodeWriter * to) const258 void VariableDeclaration::Write(CodeWriter* to) const {
259 this->lvalue->WriteDeclaration(to);
260 if (this->rvalue != nullptr) {
261 to->Write(" = ");
262 this->rvalue->Write(to);
263 }
264 to->Write(";\n");
265 }
266
Write(CodeWriter * to) const267 void IfStatement::Write(CodeWriter* to) const {
268 if (this->expression != nullptr) {
269 to->Write("if (");
270 this->expression->Write(to);
271 to->Write(") ");
272 }
273 this->statements->Write(to);
274 if (this->elseif != nullptr) {
275 to->Write("else ");
276 this->elseif->Write(to);
277 }
278 }
279
ReturnStatement(std::shared_ptr<Expression> e)280 ReturnStatement::ReturnStatement(std::shared_ptr<Expression> e) : expression(e) {}
281
Write(CodeWriter * to) const282 void ReturnStatement::Write(CodeWriter* to) const {
283 to->Write("return ");
284 this->expression->Write(to);
285 to->Write(";\n");
286 }
287
Write(CodeWriter * to) const288 void TryStatement::Write(CodeWriter* to) const {
289 to->Write("try ");
290 this->statements->Write(to);
291 }
292
Write(CodeWriter * to) const293 void FinallyStatement::Write(CodeWriter* to) const {
294 to->Write("finally ");
295 this->statements->Write(to);
296 }
297
Case(const string & c)298 Case::Case(const string& c) { cases.push_back(c); }
299
Write(CodeWriter * to) const300 void Case::Write(CodeWriter* to) const {
301 int N = this->cases.size();
302 if (N > 0) {
303 for (int i = 0; i < N; i++) {
304 string s = this->cases[i];
305 if (s.length() != 0) {
306 to->Write("case %s:\n", s.c_str());
307 } else {
308 to->Write("default:\n");
309 }
310 }
311 } else {
312 to->Write("default:\n");
313 }
314 statements->Write(to);
315 }
316
SwitchStatement(std::shared_ptr<Expression> e)317 SwitchStatement::SwitchStatement(std::shared_ptr<Expression> e) : expression(e) {}
318
Write(CodeWriter * to) const319 void SwitchStatement::Write(CodeWriter* to) const {
320 to->Write("switch (");
321 this->expression->Write(to);
322 to->Write(")\n{\n");
323 to->Indent();
324 int N = this->cases.size();
325 for (int i = 0; i < N; i++) {
326 this->cases[i]->Write(to);
327 }
328 to->Dedent();
329 to->Write("}\n");
330 }
331
Write(CodeWriter * to) const332 void Method::Write(CodeWriter* to) const {
333 size_t N, i;
334
335 WriteComment(to, comment);
336
337 for (const auto& a : this->annotations) {
338 to->Write("%s\n", a.c_str());
339 }
340
341 WriteModifiers(to, this->modifiers,
342 SCOPE_MASK | STATIC | ABSTRACT | FINAL | OVERRIDE);
343
344 if (this->returnType) {
345 to->Write("%s ", this->returnType->c_str());
346 }
347
348 to->Write("%s(", this->name.c_str());
349
350 N = this->parameters.size();
351 for (i = 0; i < N; i++) {
352 this->parameters[i]->WriteDeclaration(to);
353 if (i != N - 1) {
354 to->Write(", ");
355 }
356 }
357
358 to->Write(")");
359
360 N = this->exceptions.size();
361 for (i = 0; i < N; i++) {
362 if (i == 0) {
363 to->Write(" throws ");
364 } else {
365 to->Write(", ");
366 }
367 to->Write("%s", this->exceptions[i].c_str());
368 }
369
370 if (this->statements == nullptr) {
371 to->Write(";\n");
372 } else {
373 to->Write("\n");
374 this->statements->Write(to);
375 }
376 }
377
Write(CodeWriter * to) const378 void LiteralClassElement::Write(CodeWriter* to) const {
379 to->Write("%s", element.c_str());
380 }
381
Write(CodeWriter * to) const382 void Class::Write(CodeWriter* to) const {
383 size_t N, i;
384
385 WriteComment(to, comment);
386 for (const auto& a : this->annotations) {
387 to->Write("%s\n", a.c_str());
388 }
389
390 WriteModifiers(to, this->modifiers, ALL_MODIFIERS);
391
392 if (this->what == Class::CLASS) {
393 to->Write("class ");
394 } else {
395 to->Write("interface ");
396 }
397
398 string name = this->type;
399 size_t pos = name.rfind('.');
400 if (pos != string::npos) {
401 name = name.c_str() + pos + 1;
402 }
403
404 to->Write("%s", name.c_str());
405
406 if (this->extends) {
407 to->Write(" extends %s", this->extends->c_str());
408 }
409
410 N = this->interfaces.size();
411 if (N != 0) {
412 if (this->what == Class::CLASS) {
413 to->Write(" implements");
414 } else {
415 to->Write(" extends");
416 }
417 for (i = 0; i < N; i++) {
418 to->Write(" %s", this->interfaces[i].c_str());
419 }
420 }
421
422 to->Write("\n");
423 to->Write("{\n");
424 to->Indent();
425
426 N = this->elements.size();
427 for (i = 0; i < N; i++) {
428 this->elements[i]->Write(to);
429 }
430
431 to->Dedent();
432 to->Write("}\n");
433 }
434
Document(const std::string & comment,const std::string & package,std::unique_ptr<Class> clazz)435 Document::Document(const std::string& comment,
436 const std::string& package,
437 std::unique_ptr<Class> clazz)
438 : comment_(comment),
439 package_(package),
440 clazz_(std::move(clazz)) {
441 }
442
Write(CodeWriter * to) const443 void Document::Write(CodeWriter* to) const {
444 if (!comment_.empty()) {
445 to->Write("%s\n", comment_.c_str());
446 }
447 to->Write(
448 "/*\n"
449 " * This file is auto-generated. DO NOT MODIFY.\n"
450 " */\n");
451 if (!package_.empty()) {
452 to->Write("package %s;\n", package_.c_str());
453 }
454
455 if (clazz_) {
456 clazz_->Write(to);
457 }
458 }
459
460 std::shared_ptr<Expression> NULL_VALUE = std::make_shared<LiteralExpression>("null");
461 std::shared_ptr<Expression> THIS_VALUE = std::make_shared<LiteralExpression>("this");
462 std::shared_ptr<Expression> SUPER_VALUE = std::make_shared<LiteralExpression>("super");
463 std::shared_ptr<Expression> TRUE_VALUE = std::make_shared<LiteralExpression>("true");
464 std::shared_ptr<Expression> FALSE_VALUE = std::make_shared<LiteralExpression>("false");
465 } // namespace java
466 } // namespace aidl
467 } // namespace android
468