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Peter Collingbournebee583f2011-10-06 13:03:08 +00001//===- ClangAttrEmitter.cpp - Generate Clang attribute handling =-*- C++ -*--=//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// These tablegen backends emit Clang attribute processing code
11//
12//===----------------------------------------------------------------------===//
13
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +000014#include "llvm/ADT/ArrayRef.h"
Alex Lorenz9e7bf162017-04-18 14:33:39 +000015#include "llvm/ADT/DenseMap.h"
George Burgess IV1881a572016-12-01 00:13:18 +000016#include "llvm/ADT/DenseSet.h"
Alex Lorenz3bfe9622017-04-18 10:46:41 +000017#include "llvm/ADT/STLExtras.h"
Alex Lorenz9e7bf162017-04-18 14:33:39 +000018#include "llvm/ADT/SmallString.h"
Aaron Ballman28afa182014-11-17 18:17:19 +000019#include "llvm/ADT/StringExtras.h"
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +000020#include "llvm/ADT/StringRef.h"
Alex Lorenz9e7bf162017-04-18 14:33:39 +000021#include "llvm/ADT/StringSet.h"
Chandler Carruth5553d0d2014-01-07 11:51:46 +000022#include "llvm/ADT/StringSwitch.h"
Alex Lorenz9e7bf162017-04-18 14:33:39 +000023#include "llvm/ADT/iterator_range.h"
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +000024#include "llvm/Support/ErrorHandling.h"
25#include "llvm/Support/raw_ostream.h"
Chandler Carruth5553d0d2014-01-07 11:51:46 +000026#include "llvm/TableGen/Error.h"
Peter Collingbournebee583f2011-10-06 13:03:08 +000027#include "llvm/TableGen/Record.h"
Douglas Gregor377f99b2012-05-02 17:33:51 +000028#include "llvm/TableGen/StringMatcher.h"
Jakob Stoklund Olesen995e0e12012-06-13 05:12:41 +000029#include "llvm/TableGen/TableGenBackend.h"
Peter Collingbournebee583f2011-10-06 13:03:08 +000030#include <algorithm>
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +000031#include <cassert>
Peter Collingbournebee583f2011-10-06 13:03:08 +000032#include <cctype>
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +000033#include <cstddef>
34#include <cstdint>
35#include <map>
Aaron Ballman8f1439b2014-03-05 16:49:55 +000036#include <memory>
Aaron Ballman80469032013-11-29 14:57:58 +000037#include <set>
Chandler Carruth5553d0d2014-01-07 11:51:46 +000038#include <sstream>
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +000039#include <string>
40#include <utility>
41#include <vector>
Peter Collingbournebee583f2011-10-06 13:03:08 +000042
43using namespace llvm;
44
Benjamin Kramerd910d162015-03-10 18:24:01 +000045namespace {
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +000046
Aaron Ballmanc669cc02014-01-27 22:10:04 +000047class FlattenedSpelling {
48 std::string V, N, NS;
49 bool K;
50
51public:
52 FlattenedSpelling(const std::string &Variety, const std::string &Name,
53 const std::string &Namespace, bool KnownToGCC) :
54 V(Variety), N(Name), NS(Namespace), K(KnownToGCC) {}
55 explicit FlattenedSpelling(const Record &Spelling) :
56 V(Spelling.getValueAsString("Variety")),
57 N(Spelling.getValueAsString("Name")) {
58
59 assert(V != "GCC" && "Given a GCC spelling, which means this hasn't been"
60 "flattened!");
Tyler Nowickie8b07ed2014-06-13 17:57:25 +000061 if (V == "CXX11" || V == "Pragma")
Aaron Ballmanc669cc02014-01-27 22:10:04 +000062 NS = Spelling.getValueAsString("Namespace");
63 bool Unset;
64 K = Spelling.getValueAsBitOrUnset("KnownToGCC", Unset);
65 }
66
67 const std::string &variety() const { return V; }
68 const std::string &name() const { return N; }
69 const std::string &nameSpace() const { return NS; }
70 bool knownToGCC() const { return K; }
71};
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +000072
Hans Wennborgdcfba332015-10-06 23:40:43 +000073} // end anonymous namespace
Aaron Ballmanc669cc02014-01-27 22:10:04 +000074
Benjamin Kramerd910d162015-03-10 18:24:01 +000075static std::vector<FlattenedSpelling>
76GetFlattenedSpellings(const Record &Attr) {
Aaron Ballmanc669cc02014-01-27 22:10:04 +000077 std::vector<Record *> Spellings = Attr.getValueAsListOfDefs("Spellings");
78 std::vector<FlattenedSpelling> Ret;
79
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +000080 for (const auto &Spelling : Spellings) {
81 if (Spelling->getValueAsString("Variety") == "GCC") {
Aaron Ballmanc669cc02014-01-27 22:10:04 +000082 // Gin up two new spelling objects to add into the list.
Benjamin Kramer3204b152015-05-29 19:42:19 +000083 Ret.emplace_back("GNU", Spelling->getValueAsString("Name"), "", true);
84 Ret.emplace_back("CXX11", Spelling->getValueAsString("Name"), "gnu",
85 true);
Aaron Ballmanc669cc02014-01-27 22:10:04 +000086 } else
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +000087 Ret.push_back(FlattenedSpelling(*Spelling));
Aaron Ballmanc669cc02014-01-27 22:10:04 +000088 }
89
90 return Ret;
91}
92
Peter Collingbournebee583f2011-10-06 13:03:08 +000093static std::string ReadPCHRecord(StringRef type) {
94 return StringSwitch<std::string>(type)
David L. Jones267b8842017-01-24 01:04:30 +000095 .EndsWith("Decl *", "Record.GetLocalDeclAs<"
96 + std::string(type, 0, type.size()-1) + ">(Record.readInt())")
97 .Case("TypeSourceInfo *", "Record.getTypeSourceInfo()")
98 .Case("Expr *", "Record.readExpr()")
99 .Case("IdentifierInfo *", "Record.getIdentifierInfo()")
100 .Case("StringRef", "Record.readString()")
101 .Default("Record.readInt()");
Peter Collingbournebee583f2011-10-06 13:03:08 +0000102}
103
Richard Smith19978562016-05-18 00:16:51 +0000104// Get a type that is suitable for storing an object of the specified type.
105static StringRef getStorageType(StringRef type) {
106 return StringSwitch<StringRef>(type)
107 .Case("StringRef", "std::string")
108 .Default(type);
109}
110
Peter Collingbournebee583f2011-10-06 13:03:08 +0000111// Assumes that the way to get the value is SA->getname()
112static std::string WritePCHRecord(StringRef type, StringRef name) {
Richard Smith290d8012016-04-06 17:06:00 +0000113 return "Record." + StringSwitch<std::string>(type)
114 .EndsWith("Decl *", "AddDeclRef(" + std::string(name) + ");\n")
115 .Case("TypeSourceInfo *", "AddTypeSourceInfo(" + std::string(name) + ");\n")
Peter Collingbournebee583f2011-10-06 13:03:08 +0000116 .Case("Expr *", "AddStmt(" + std::string(name) + ");\n")
Richard Smith290d8012016-04-06 17:06:00 +0000117 .Case("IdentifierInfo *", "AddIdentifierRef(" + std::string(name) + ");\n")
118 .Case("StringRef", "AddString(" + std::string(name) + ");\n")
119 .Default("push_back(" + std::string(name) + ");\n");
Peter Collingbournebee583f2011-10-06 13:03:08 +0000120}
121
Michael Han4a045172012-03-07 00:12:16 +0000122// Normalize attribute name by removing leading and trailing
123// underscores. For example, __foo, foo__, __foo__ would
124// become foo.
125static StringRef NormalizeAttrName(StringRef AttrName) {
George Burgess IV1881a572016-12-01 00:13:18 +0000126 AttrName.consume_front("__");
127 AttrName.consume_back("__");
Michael Han4a045172012-03-07 00:12:16 +0000128 return AttrName;
129}
130
Aaron Ballman36a53502014-01-16 13:03:14 +0000131// Normalize the name by removing any and all leading and trailing underscores.
132// This is different from NormalizeAttrName in that it also handles names like
133// _pascal and __pascal.
134static StringRef NormalizeNameForSpellingComparison(StringRef Name) {
Benjamin Kramer5c404072015-04-10 21:37:21 +0000135 return Name.trim("_");
Aaron Ballman36a53502014-01-16 13:03:14 +0000136}
137
Justin Lebar4086fe52017-01-05 16:51:54 +0000138// Normalize the spelling of a GNU attribute (i.e. "x" in "__attribute__((x))"),
139// removing "__" if it appears at the beginning and end of the attribute's name.
140static StringRef NormalizeGNUAttrSpelling(StringRef AttrSpelling) {
Michael Han4a045172012-03-07 00:12:16 +0000141 if (AttrSpelling.startswith("__") && AttrSpelling.endswith("__")) {
142 AttrSpelling = AttrSpelling.substr(2, AttrSpelling.size() - 4);
143 }
144
145 return AttrSpelling;
146}
147
Aaron Ballman2f22b942014-05-20 19:47:14 +0000148typedef std::vector<std::pair<std::string, const Record *>> ParsedAttrMap;
Aaron Ballman64e69862013-12-15 13:05:48 +0000149
Aaron Ballmanab7691c2014-01-09 22:48:32 +0000150static ParsedAttrMap getParsedAttrList(const RecordKeeper &Records,
Craig Topper8ae12032014-05-07 06:21:57 +0000151 ParsedAttrMap *Dupes = nullptr) {
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +0000152 std::vector<Record *> Attrs = Records.getAllDerivedDefinitions("Attr");
Aaron Ballman64e69862013-12-15 13:05:48 +0000153 std::set<std::string> Seen;
154 ParsedAttrMap R;
Aaron Ballman2f22b942014-05-20 19:47:14 +0000155 for (const auto *Attr : Attrs) {
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +0000156 if (Attr->getValueAsBit("SemaHandler")) {
Aaron Ballman64e69862013-12-15 13:05:48 +0000157 std::string AN;
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +0000158 if (Attr->isSubClassOf("TargetSpecificAttr") &&
159 !Attr->isValueUnset("ParseKind")) {
160 AN = Attr->getValueAsString("ParseKind");
Aaron Ballman64e69862013-12-15 13:05:48 +0000161
162 // If this attribute has already been handled, it does not need to be
163 // handled again.
Aaron Ballmanab7691c2014-01-09 22:48:32 +0000164 if (Seen.find(AN) != Seen.end()) {
165 if (Dupes)
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +0000166 Dupes->push_back(std::make_pair(AN, Attr));
Aaron Ballman64e69862013-12-15 13:05:48 +0000167 continue;
Aaron Ballmanab7691c2014-01-09 22:48:32 +0000168 }
Aaron Ballman64e69862013-12-15 13:05:48 +0000169 Seen.insert(AN);
170 } else
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +0000171 AN = NormalizeAttrName(Attr->getName()).str();
Aaron Ballman64e69862013-12-15 13:05:48 +0000172
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +0000173 R.push_back(std::make_pair(AN, Attr));
Aaron Ballman64e69862013-12-15 13:05:48 +0000174 }
175 }
176 return R;
177}
178
Peter Collingbournebee583f2011-10-06 13:03:08 +0000179namespace {
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000180
Peter Collingbournebee583f2011-10-06 13:03:08 +0000181 class Argument {
182 std::string lowerName, upperName;
183 StringRef attrName;
Aaron Ballman8ee40b72013-09-09 23:33:17 +0000184 bool isOpt;
John McCalla62c1a92015-10-28 00:17:34 +0000185 bool Fake;
Peter Collingbournebee583f2011-10-06 13:03:08 +0000186
187 public:
Aaron Ballman2f22b942014-05-20 19:47:14 +0000188 Argument(const Record &Arg, StringRef Attr)
Peter Collingbournebee583f2011-10-06 13:03:08 +0000189 : lowerName(Arg.getValueAsString("Name")), upperName(lowerName),
John McCalla62c1a92015-10-28 00:17:34 +0000190 attrName(Attr), isOpt(false), Fake(false) {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000191 if (!lowerName.empty()) {
192 lowerName[0] = std::tolower(lowerName[0]);
193 upperName[0] = std::toupper(upperName[0]);
194 }
Reid Klecknerebeb0ca2016-05-31 17:42:56 +0000195 // Work around MinGW's macro definition of 'interface' to 'struct'. We
196 // have an attribute argument called 'Interface', so only the lower case
197 // name conflicts with the macro definition.
198 if (lowerName == "interface")
199 lowerName = "interface_";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000200 }
Hans Wennborgdcfba332015-10-06 23:40:43 +0000201 virtual ~Argument() = default;
Peter Collingbournebee583f2011-10-06 13:03:08 +0000202
203 StringRef getLowerName() const { return lowerName; }
204 StringRef getUpperName() const { return upperName; }
205 StringRef getAttrName() const { return attrName; }
206
Aaron Ballman8ee40b72013-09-09 23:33:17 +0000207 bool isOptional() const { return isOpt; }
208 void setOptional(bool set) { isOpt = set; }
209
John McCalla62c1a92015-10-28 00:17:34 +0000210 bool isFake() const { return Fake; }
211 void setFake(bool fake) { Fake = fake; }
212
Peter Collingbournebee583f2011-10-06 13:03:08 +0000213 // These functions print the argument contents formatted in different ways.
214 virtual void writeAccessors(raw_ostream &OS) const = 0;
215 virtual void writeAccessorDefinitions(raw_ostream &OS) const {}
DeLesley Hutchinsc4a82432013-12-30 17:24:36 +0000216 virtual void writeASTVisitorTraversal(raw_ostream &OS) const {}
Peter Collingbournebee583f2011-10-06 13:03:08 +0000217 virtual void writeCloneArgs(raw_ostream &OS) const = 0;
DeLesley Hutchinsceec3062012-01-20 22:37:06 +0000218 virtual void writeTemplateInstantiationArgs(raw_ostream &OS) const = 0;
Daniel Dunbardc51baa2012-02-10 06:00:29 +0000219 virtual void writeTemplateInstantiation(raw_ostream &OS) const {}
Peter Collingbournebee583f2011-10-06 13:03:08 +0000220 virtual void writeCtorBody(raw_ostream &OS) const {}
221 virtual void writeCtorInitializers(raw_ostream &OS) const = 0;
Aaron Ballman8ee40b72013-09-09 23:33:17 +0000222 virtual void writeCtorDefaultInitializers(raw_ostream &OS) const = 0;
Peter Collingbournebee583f2011-10-06 13:03:08 +0000223 virtual void writeCtorParameters(raw_ostream &OS) const = 0;
224 virtual void writeDeclarations(raw_ostream &OS) const = 0;
225 virtual void writePCHReadArgs(raw_ostream &OS) const = 0;
226 virtual void writePCHReadDecls(raw_ostream &OS) const = 0;
227 virtual void writePCHWrite(raw_ostream &OS) const = 0;
Douglas Gregor49ccfaa2011-11-19 19:22:57 +0000228 virtual void writeValue(raw_ostream &OS) const = 0;
Alexander Kornienko5bc364e2013-01-07 17:53:08 +0000229 virtual void writeDump(raw_ostream &OS) const = 0;
230 virtual void writeDumpChildren(raw_ostream &OS) const {}
Richard Trieude5cc7d2013-01-31 01:44:26 +0000231 virtual void writeHasChildren(raw_ostream &OS) const { OS << "false"; }
Aaron Ballman682ee422013-09-11 19:47:58 +0000232
233 virtual bool isEnumArg() const { return false; }
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000234 virtual bool isVariadicEnumArg() const { return false; }
Aaron Ballman8ed8dbd2014-07-31 16:37:04 +0000235 virtual bool isVariadic() const { return false; }
Aaron Ballman36a53502014-01-16 13:03:14 +0000236
237 virtual void writeImplicitCtorArgs(raw_ostream &OS) const {
238 OS << getUpperName();
239 }
Peter Collingbournebee583f2011-10-06 13:03:08 +0000240 };
241
242 class SimpleArgument : public Argument {
243 std::string type;
244
245 public:
Aaron Ballman2f22b942014-05-20 19:47:14 +0000246 SimpleArgument(const Record &Arg, StringRef Attr, std::string T)
Benjamin Kramercfeacf52016-05-27 14:27:13 +0000247 : Argument(Arg, Attr), type(std::move(T)) {}
Peter Collingbournebee583f2011-10-06 13:03:08 +0000248
DeLesley Hutchinsceec3062012-01-20 22:37:06 +0000249 std::string getType() const { return type; }
250
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000251 void writeAccessors(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000252 OS << " " << type << " get" << getUpperName() << "() const {\n";
253 OS << " return " << getLowerName() << ";\n";
254 OS << " }";
255 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000256
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000257 void writeCloneArgs(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000258 OS << getLowerName();
259 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000260
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000261 void writeTemplateInstantiationArgs(raw_ostream &OS) const override {
DeLesley Hutchinsceec3062012-01-20 22:37:06 +0000262 OS << "A->get" << getUpperName() << "()";
263 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000264
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000265 void writeCtorInitializers(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000266 OS << getLowerName() << "(" << getUpperName() << ")";
267 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000268
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000269 void writeCtorDefaultInitializers(raw_ostream &OS) const override {
Aaron Ballman8ee40b72013-09-09 23:33:17 +0000270 OS << getLowerName() << "()";
271 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000272
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000273 void writeCtorParameters(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000274 OS << type << " " << getUpperName();
275 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000276
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000277 void writeDeclarations(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000278 OS << type << " " << getLowerName() << ";";
279 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000280
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000281 void writePCHReadDecls(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000282 std::string read = ReadPCHRecord(type);
283 OS << " " << type << " " << getLowerName() << " = " << read << ";\n";
284 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000285
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000286 void writePCHReadArgs(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000287 OS << getLowerName();
288 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000289
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000290 void writePCHWrite(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000291 OS << " " << WritePCHRecord(type, "SA->get" +
292 std::string(getUpperName()) + "()");
293 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000294
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000295 void writeValue(raw_ostream &OS) const override {
Douglas Gregor49ccfaa2011-11-19 19:22:57 +0000296 if (type == "FunctionDecl *") {
Richard Smithb87c4652013-10-31 21:23:20 +0000297 OS << "\" << get" << getUpperName()
298 << "()->getNameInfo().getAsString() << \"";
Douglas Gregor49ccfaa2011-11-19 19:22:57 +0000299 } else if (type == "IdentifierInfo *") {
Akira Hatanaka3d173132016-09-10 03:29:43 +0000300 OS << "\";\n";
301 if (isOptional())
302 OS << " if (get" << getUpperName() << "()) ";
303 else
304 OS << " ";
305 OS << "OS << get" << getUpperName() << "()->getName();\n";
306 OS << " OS << \"";
Richard Smithb87c4652013-10-31 21:23:20 +0000307 } else if (type == "TypeSourceInfo *") {
Douglas Gregor49ccfaa2011-11-19 19:22:57 +0000308 OS << "\" << get" << getUpperName() << "().getAsString() << \"";
Douglas Gregor49ccfaa2011-11-19 19:22:57 +0000309 } else {
310 OS << "\" << get" << getUpperName() << "() << \"";
311 }
312 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000313
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000314 void writeDump(raw_ostream &OS) const override {
Alexander Kornienko5bc364e2013-01-07 17:53:08 +0000315 if (type == "FunctionDecl *") {
316 OS << " OS << \" \";\n";
317 OS << " dumpBareDeclRef(SA->get" << getUpperName() << "());\n";
318 } else if (type == "IdentifierInfo *") {
Aaron Ballman415c4142015-11-30 15:25:34 +0000319 if (isOptional())
320 OS << " if (SA->get" << getUpperName() << "())\n ";
Alexander Kornienko5bc364e2013-01-07 17:53:08 +0000321 OS << " OS << \" \" << SA->get" << getUpperName()
322 << "()->getName();\n";
Richard Smithb87c4652013-10-31 21:23:20 +0000323 } else if (type == "TypeSourceInfo *") {
Alexander Kornienko5bc364e2013-01-07 17:53:08 +0000324 OS << " OS << \" \" << SA->get" << getUpperName()
325 << "().getAsString();\n";
Alexander Kornienko5bc364e2013-01-07 17:53:08 +0000326 } else if (type == "bool") {
327 OS << " if (SA->get" << getUpperName() << "()) OS << \" "
328 << getUpperName() << "\";\n";
329 } else if (type == "int" || type == "unsigned") {
330 OS << " OS << \" \" << SA->get" << getUpperName() << "();\n";
331 } else {
332 llvm_unreachable("Unknown SimpleArgument type!");
333 }
334 }
Peter Collingbournebee583f2011-10-06 13:03:08 +0000335 };
336
Aaron Ballman18a78382013-11-21 00:28:23 +0000337 class DefaultSimpleArgument : public SimpleArgument {
338 int64_t Default;
339
340 public:
Aaron Ballman2f22b942014-05-20 19:47:14 +0000341 DefaultSimpleArgument(const Record &Arg, StringRef Attr,
Aaron Ballman18a78382013-11-21 00:28:23 +0000342 std::string T, int64_t Default)
343 : SimpleArgument(Arg, Attr, T), Default(Default) {}
344
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000345 void writeAccessors(raw_ostream &OS) const override {
Aaron Ballman18a78382013-11-21 00:28:23 +0000346 SimpleArgument::writeAccessors(OS);
347
348 OS << "\n\n static const " << getType() << " Default" << getUpperName()
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000349 << " = ";
350 if (getType() == "bool")
351 OS << (Default != 0 ? "true" : "false");
352 else
353 OS << Default;
354 OS << ";";
Aaron Ballman18a78382013-11-21 00:28:23 +0000355 }
356 };
357
Peter Collingbournebee583f2011-10-06 13:03:08 +0000358 class StringArgument : public Argument {
359 public:
Aaron Ballman2f22b942014-05-20 19:47:14 +0000360 StringArgument(const Record &Arg, StringRef Attr)
Peter Collingbournebee583f2011-10-06 13:03:08 +0000361 : Argument(Arg, Attr)
362 {}
363
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000364 void writeAccessors(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000365 OS << " llvm::StringRef get" << getUpperName() << "() const {\n";
366 OS << " return llvm::StringRef(" << getLowerName() << ", "
367 << getLowerName() << "Length);\n";
368 OS << " }\n";
369 OS << " unsigned get" << getUpperName() << "Length() const {\n";
370 OS << " return " << getLowerName() << "Length;\n";
371 OS << " }\n";
372 OS << " void set" << getUpperName()
373 << "(ASTContext &C, llvm::StringRef S) {\n";
374 OS << " " << getLowerName() << "Length = S.size();\n";
375 OS << " this->" << getLowerName() << " = new (C, 1) char ["
376 << getLowerName() << "Length];\n";
Chandler Carruth38a45cc2015-08-04 03:53:01 +0000377 OS << " if (!S.empty())\n";
378 OS << " std::memcpy(this->" << getLowerName() << ", S.data(), "
Peter Collingbournebee583f2011-10-06 13:03:08 +0000379 << getLowerName() << "Length);\n";
380 OS << " }";
381 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000382
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000383 void writeCloneArgs(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000384 OS << "get" << getUpperName() << "()";
385 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000386
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000387 void writeTemplateInstantiationArgs(raw_ostream &OS) const override {
DeLesley Hutchinsceec3062012-01-20 22:37:06 +0000388 OS << "A->get" << getUpperName() << "()";
389 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000390
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000391 void writeCtorBody(raw_ostream &OS) const override {
Chandler Carruth38a45cc2015-08-04 03:53:01 +0000392 OS << " if (!" << getUpperName() << ".empty())\n";
393 OS << " std::memcpy(" << getLowerName() << ", " << getUpperName()
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000394 << ".data(), " << getLowerName() << "Length);\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000395 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000396
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000397 void writeCtorInitializers(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000398 OS << getLowerName() << "Length(" << getUpperName() << ".size()),"
399 << getLowerName() << "(new (Ctx, 1) char[" << getLowerName()
400 << "Length])";
401 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000402
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000403 void writeCtorDefaultInitializers(raw_ostream &OS) const override {
Hans Wennborg59dbe862015-09-29 20:56:43 +0000404 OS << getLowerName() << "Length(0)," << getLowerName() << "(nullptr)";
Aaron Ballman8ee40b72013-09-09 23:33:17 +0000405 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000406
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000407 void writeCtorParameters(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000408 OS << "llvm::StringRef " << getUpperName();
409 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000410
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000411 void writeDeclarations(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000412 OS << "unsigned " << getLowerName() << "Length;\n";
413 OS << "char *" << getLowerName() << ";";
414 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000415
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000416 void writePCHReadDecls(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000417 OS << " std::string " << getLowerName()
David L. Jones267b8842017-01-24 01:04:30 +0000418 << "= Record.readString();\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000419 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000420
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000421 void writePCHReadArgs(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000422 OS << getLowerName();
423 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000424
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000425 void writePCHWrite(raw_ostream &OS) const override {
Richard Smith290d8012016-04-06 17:06:00 +0000426 OS << " Record.AddString(SA->get" << getUpperName() << "());\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000427 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000428
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000429 void writeValue(raw_ostream &OS) const override {
Douglas Gregor49ccfaa2011-11-19 19:22:57 +0000430 OS << "\\\"\" << get" << getUpperName() << "() << \"\\\"";
431 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000432
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000433 void writeDump(raw_ostream &OS) const override {
Alexander Kornienko5bc364e2013-01-07 17:53:08 +0000434 OS << " OS << \" \\\"\" << SA->get" << getUpperName()
435 << "() << \"\\\"\";\n";
436 }
Peter Collingbournebee583f2011-10-06 13:03:08 +0000437 };
438
439 class AlignedArgument : public Argument {
440 public:
Aaron Ballman2f22b942014-05-20 19:47:14 +0000441 AlignedArgument(const Record &Arg, StringRef Attr)
Peter Collingbournebee583f2011-10-06 13:03:08 +0000442 : Argument(Arg, Attr)
443 {}
444
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000445 void writeAccessors(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000446 OS << " bool is" << getUpperName() << "Dependent() const;\n";
447
448 OS << " unsigned get" << getUpperName() << "(ASTContext &Ctx) const;\n";
449
450 OS << " bool is" << getUpperName() << "Expr() const {\n";
451 OS << " return is" << getLowerName() << "Expr;\n";
452 OS << " }\n";
453
454 OS << " Expr *get" << getUpperName() << "Expr() const {\n";
455 OS << " assert(is" << getLowerName() << "Expr);\n";
456 OS << " return " << getLowerName() << "Expr;\n";
457 OS << " }\n";
458
459 OS << " TypeSourceInfo *get" << getUpperName() << "Type() const {\n";
460 OS << " assert(!is" << getLowerName() << "Expr);\n";
461 OS << " return " << getLowerName() << "Type;\n";
462 OS << " }";
463 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000464
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000465 void writeAccessorDefinitions(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000466 OS << "bool " << getAttrName() << "Attr::is" << getUpperName()
467 << "Dependent() const {\n";
468 OS << " if (is" << getLowerName() << "Expr)\n";
469 OS << " return " << getLowerName() << "Expr && (" << getLowerName()
470 << "Expr->isValueDependent() || " << getLowerName()
471 << "Expr->isTypeDependent());\n";
472 OS << " else\n";
473 OS << " return " << getLowerName()
474 << "Type->getType()->isDependentType();\n";
475 OS << "}\n";
476
477 // FIXME: Do not do the calculation here
478 // FIXME: Handle types correctly
479 // A null pointer means maximum alignment
Peter Collingbournebee583f2011-10-06 13:03:08 +0000480 OS << "unsigned " << getAttrName() << "Attr::get" << getUpperName()
481 << "(ASTContext &Ctx) const {\n";
482 OS << " assert(!is" << getUpperName() << "Dependent());\n";
483 OS << " if (is" << getLowerName() << "Expr)\n";
Ulrich Weigandca3cb7f2015-04-21 17:29:35 +0000484 OS << " return " << getLowerName() << "Expr ? " << getLowerName()
485 << "Expr->EvaluateKnownConstInt(Ctx).getZExtValue()"
486 << " * Ctx.getCharWidth() : "
487 << "Ctx.getTargetDefaultAlignForAttributeAligned();\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000488 OS << " else\n";
489 OS << " return 0; // FIXME\n";
490 OS << "}\n";
491 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000492
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000493 void writeCloneArgs(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000494 OS << "is" << getLowerName() << "Expr, is" << getLowerName()
495 << "Expr ? static_cast<void*>(" << getLowerName()
496 << "Expr) : " << getLowerName()
497 << "Type";
498 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000499
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000500 void writeTemplateInstantiationArgs(raw_ostream &OS) const override {
DeLesley Hutchinsceec3062012-01-20 22:37:06 +0000501 // FIXME: move the definition in Sema::InstantiateAttrs to here.
502 // In the meantime, aligned attributes are cloned.
503 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000504
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000505 void writeCtorBody(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000506 OS << " if (is" << getLowerName() << "Expr)\n";
507 OS << " " << getLowerName() << "Expr = reinterpret_cast<Expr *>("
508 << getUpperName() << ");\n";
509 OS << " else\n";
510 OS << " " << getLowerName()
511 << "Type = reinterpret_cast<TypeSourceInfo *>(" << getUpperName()
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000512 << ");\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000513 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000514
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000515 void writeCtorInitializers(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000516 OS << "is" << getLowerName() << "Expr(Is" << getUpperName() << "Expr)";
517 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000518
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000519 void writeCtorDefaultInitializers(raw_ostream &OS) const override {
Aaron Ballman8ee40b72013-09-09 23:33:17 +0000520 OS << "is" << getLowerName() << "Expr(false)";
521 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000522
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000523 void writeCtorParameters(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000524 OS << "bool Is" << getUpperName() << "Expr, void *" << getUpperName();
525 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000526
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000527 void writeImplicitCtorArgs(raw_ostream &OS) const override {
Aaron Ballman36a53502014-01-16 13:03:14 +0000528 OS << "Is" << getUpperName() << "Expr, " << getUpperName();
529 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000530
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000531 void writeDeclarations(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000532 OS << "bool is" << getLowerName() << "Expr;\n";
533 OS << "union {\n";
534 OS << "Expr *" << getLowerName() << "Expr;\n";
535 OS << "TypeSourceInfo *" << getLowerName() << "Type;\n";
536 OS << "};";
537 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000538
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000539 void writePCHReadArgs(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000540 OS << "is" << getLowerName() << "Expr, " << getLowerName() << "Ptr";
541 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000542
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000543 void writePCHReadDecls(raw_ostream &OS) const override {
David L. Jones267b8842017-01-24 01:04:30 +0000544 OS << " bool is" << getLowerName() << "Expr = Record.readInt();\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000545 OS << " void *" << getLowerName() << "Ptr;\n";
546 OS << " if (is" << getLowerName() << "Expr)\n";
David L. Jones267b8842017-01-24 01:04:30 +0000547 OS << " " << getLowerName() << "Ptr = Record.readExpr();\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000548 OS << " else\n";
549 OS << " " << getLowerName()
David L. Jones267b8842017-01-24 01:04:30 +0000550 << "Ptr = Record.getTypeSourceInfo();\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000551 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000552
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000553 void writePCHWrite(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000554 OS << " Record.push_back(SA->is" << getUpperName() << "Expr());\n";
555 OS << " if (SA->is" << getUpperName() << "Expr())\n";
Richard Smith290d8012016-04-06 17:06:00 +0000556 OS << " Record.AddStmt(SA->get" << getUpperName() << "Expr());\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000557 OS << " else\n";
Richard Smith290d8012016-04-06 17:06:00 +0000558 OS << " Record.AddTypeSourceInfo(SA->get" << getUpperName()
559 << "Type());\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000560 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000561
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000562 void writeValue(raw_ostream &OS) const override {
Richard Trieuddd01ce2014-06-09 22:53:25 +0000563 OS << "\";\n";
Aaron Ballmanc960f562014-08-01 13:49:00 +0000564 // The aligned attribute argument expression is optional.
565 OS << " if (is" << getLowerName() << "Expr && "
566 << getLowerName() << "Expr)\n";
Hans Wennborg59dbe862015-09-29 20:56:43 +0000567 OS << " " << getLowerName() << "Expr->printPretty(OS, nullptr, Policy);\n";
Richard Trieuddd01ce2014-06-09 22:53:25 +0000568 OS << " OS << \"";
Douglas Gregor49ccfaa2011-11-19 19:22:57 +0000569 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000570
571 void writeDump(raw_ostream &OS) const override {}
572
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000573 void writeDumpChildren(raw_ostream &OS) const override {
Richard Smithf7514452014-10-30 21:02:37 +0000574 OS << " if (SA->is" << getUpperName() << "Expr())\n";
Alexander Kornienko5bc364e2013-01-07 17:53:08 +0000575 OS << " dumpStmt(SA->get" << getUpperName() << "Expr());\n";
Richard Smithf7514452014-10-30 21:02:37 +0000576 OS << " else\n";
Alexander Kornienko5bc364e2013-01-07 17:53:08 +0000577 OS << " dumpType(SA->get" << getUpperName()
578 << "Type()->getType());\n";
579 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000580
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000581 void writeHasChildren(raw_ostream &OS) const override {
Richard Trieude5cc7d2013-01-31 01:44:26 +0000582 OS << "SA->is" << getUpperName() << "Expr()";
583 }
Peter Collingbournebee583f2011-10-06 13:03:08 +0000584 };
585
586 class VariadicArgument : public Argument {
Aaron Ballmana82eaa72014-05-02 13:35:42 +0000587 std::string Type, ArgName, ArgSizeName, RangeName;
Peter Collingbournebee583f2011-10-06 13:03:08 +0000588
Aaron Ballman25a2cb92014-09-15 15:14:13 +0000589 protected:
590 // Assumed to receive a parameter: raw_ostream OS.
591 virtual void writeValueImpl(raw_ostream &OS) const {
592 OS << " OS << Val;\n";
593 }
594
Peter Collingbournebee583f2011-10-06 13:03:08 +0000595 public:
Aaron Ballman2f22b942014-05-20 19:47:14 +0000596 VariadicArgument(const Record &Arg, StringRef Attr, std::string T)
Benjamin Kramercfeacf52016-05-27 14:27:13 +0000597 : Argument(Arg, Attr), Type(std::move(T)),
598 ArgName(getLowerName().str() + "_"), ArgSizeName(ArgName + "Size"),
599 RangeName(getLowerName()) {}
Peter Collingbournebee583f2011-10-06 13:03:08 +0000600
Benjamin Kramer1b582012016-02-13 18:11:49 +0000601 const std::string &getType() const { return Type; }
602 const std::string &getArgName() const { return ArgName; }
603 const std::string &getArgSizeName() const { return ArgSizeName; }
Aaron Ballman8ed8dbd2014-07-31 16:37:04 +0000604 bool isVariadic() const override { return true; }
Peter Collingbournebee583f2011-10-06 13:03:08 +0000605
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000606 void writeAccessors(raw_ostream &OS) const override {
Aaron Ballmana82eaa72014-05-02 13:35:42 +0000607 std::string IteratorType = getLowerName().str() + "_iterator";
608 std::string BeginFn = getLowerName().str() + "_begin()";
609 std::string EndFn = getLowerName().str() + "_end()";
610
611 OS << " typedef " << Type << "* " << IteratorType << ";\n";
612 OS << " " << IteratorType << " " << BeginFn << " const {"
613 << " return " << ArgName << "; }\n";
614 OS << " " << IteratorType << " " << EndFn << " const {"
615 << " return " << ArgName << " + " << ArgSizeName << "; }\n";
616 OS << " unsigned " << getLowerName() << "_size() const {"
617 << " return " << ArgSizeName << "; }\n";
618 OS << " llvm::iterator_range<" << IteratorType << "> " << RangeName
619 << "() const { return llvm::make_range(" << BeginFn << ", " << EndFn
620 << "); }\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000621 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000622
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000623 void writeCloneArgs(raw_ostream &OS) const override {
Aaron Ballmana82eaa72014-05-02 13:35:42 +0000624 OS << ArgName << ", " << ArgSizeName;
Peter Collingbournebee583f2011-10-06 13:03:08 +0000625 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000626
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000627 void writeTemplateInstantiationArgs(raw_ostream &OS) const override {
DeLesley Hutchinsceec3062012-01-20 22:37:06 +0000628 // This isn't elegant, but we have to go through public methods...
629 OS << "A->" << getLowerName() << "_begin(), "
630 << "A->" << getLowerName() << "_size()";
631 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000632
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000633 void writeCtorBody(raw_ostream &OS) const override {
Aaron Ballmand6459e52014-05-01 15:21:03 +0000634 OS << " std::copy(" << getUpperName() << ", " << getUpperName()
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000635 << " + " << ArgSizeName << ", " << ArgName << ");\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000636 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000637
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000638 void writeCtorInitializers(raw_ostream &OS) const override {
Aaron Ballmana82eaa72014-05-02 13:35:42 +0000639 OS << ArgSizeName << "(" << getUpperName() << "Size), "
640 << ArgName << "(new (Ctx, 16) " << getType() << "["
641 << ArgSizeName << "])";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000642 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000643
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000644 void writeCtorDefaultInitializers(raw_ostream &OS) const override {
Aaron Ballmana82eaa72014-05-02 13:35:42 +0000645 OS << ArgSizeName << "(0), " << ArgName << "(nullptr)";
Aaron Ballman8ee40b72013-09-09 23:33:17 +0000646 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000647
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000648 void writeCtorParameters(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000649 OS << getType() << " *" << getUpperName() << ", unsigned "
650 << getUpperName() << "Size";
651 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000652
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000653 void writeImplicitCtorArgs(raw_ostream &OS) const override {
Aaron Ballman36a53502014-01-16 13:03:14 +0000654 OS << getUpperName() << ", " << getUpperName() << "Size";
655 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000656
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000657 void writeDeclarations(raw_ostream &OS) const override {
Aaron Ballmana82eaa72014-05-02 13:35:42 +0000658 OS << " unsigned " << ArgSizeName << ";\n";
659 OS << " " << getType() << " *" << ArgName << ";";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000660 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000661
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000662 void writePCHReadDecls(raw_ostream &OS) const override {
David L. Jones267b8842017-01-24 01:04:30 +0000663 OS << " unsigned " << getLowerName() << "Size = Record.readInt();\n";
Richard Smith19978562016-05-18 00:16:51 +0000664 OS << " SmallVector<" << getType() << ", 4> "
665 << getLowerName() << ";\n";
666 OS << " " << getLowerName() << ".reserve(" << getLowerName()
Peter Collingbournebee583f2011-10-06 13:03:08 +0000667 << "Size);\n";
Richard Smith19978562016-05-18 00:16:51 +0000668
669 // If we can't store the values in the current type (if it's something
670 // like StringRef), store them in a different type and convert the
671 // container afterwards.
672 std::string StorageType = getStorageType(getType());
673 std::string StorageName = getLowerName();
674 if (StorageType != getType()) {
675 StorageName += "Storage";
676 OS << " SmallVector<" << StorageType << ", 4> "
677 << StorageName << ";\n";
678 OS << " " << StorageName << ".reserve(" << getLowerName()
679 << "Size);\n";
680 }
681
682 OS << " for (unsigned i = 0; i != " << getLowerName() << "Size; ++i)\n";
Aaron Ballmana82eaa72014-05-02 13:35:42 +0000683 std::string read = ReadPCHRecord(Type);
Richard Smith19978562016-05-18 00:16:51 +0000684 OS << " " << StorageName << ".push_back(" << read << ");\n";
685
686 if (StorageType != getType()) {
687 OS << " for (unsigned i = 0; i != " << getLowerName() << "Size; ++i)\n";
688 OS << " " << getLowerName() << ".push_back("
689 << StorageName << "[i]);\n";
690 }
Peter Collingbournebee583f2011-10-06 13:03:08 +0000691 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000692
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000693 void writePCHReadArgs(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000694 OS << getLowerName() << ".data(), " << getLowerName() << "Size";
695 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000696
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000697 void writePCHWrite(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000698 OS << " Record.push_back(SA->" << getLowerName() << "_size());\n";
Aaron Ballmana82eaa72014-05-02 13:35:42 +0000699 OS << " for (auto &Val : SA->" << RangeName << "())\n";
700 OS << " " << WritePCHRecord(Type, "Val");
Peter Collingbournebee583f2011-10-06 13:03:08 +0000701 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000702
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000703 void writeValue(raw_ostream &OS) const override {
Douglas Gregor49ccfaa2011-11-19 19:22:57 +0000704 OS << "\";\n";
705 OS << " bool isFirst = true;\n"
Aaron Ballmana82eaa72014-05-02 13:35:42 +0000706 << " for (const auto &Val : " << RangeName << "()) {\n"
Douglas Gregor49ccfaa2011-11-19 19:22:57 +0000707 << " if (isFirst) isFirst = false;\n"
Aaron Ballman25a2cb92014-09-15 15:14:13 +0000708 << " else OS << \", \";\n";
709 writeValueImpl(OS);
710 OS << " }\n";
Douglas Gregor49ccfaa2011-11-19 19:22:57 +0000711 OS << " OS << \"";
712 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000713
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000714 void writeDump(raw_ostream &OS) const override {
Aaron Ballmana82eaa72014-05-02 13:35:42 +0000715 OS << " for (const auto &Val : SA->" << RangeName << "())\n";
716 OS << " OS << \" \" << Val;\n";
Alexander Kornienko5bc364e2013-01-07 17:53:08 +0000717 }
Peter Collingbournebee583f2011-10-06 13:03:08 +0000718 };
719
Reid Klecknerf526b9482014-02-12 18:22:18 +0000720 // Unique the enums, but maintain the original declaration ordering.
Reid Klecknerf06b2662014-02-12 19:26:24 +0000721 std::vector<std::string>
722 uniqueEnumsInOrder(const std::vector<std::string> &enums) {
Reid Klecknerf526b9482014-02-12 18:22:18 +0000723 std::vector<std::string> uniques;
George Burgess IV1881a572016-12-01 00:13:18 +0000724 SmallDenseSet<StringRef, 8> unique_set;
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +0000725 for (const auto &i : enums) {
George Burgess IV1881a572016-12-01 00:13:18 +0000726 if (unique_set.insert(i).second)
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +0000727 uniques.push_back(i);
Reid Klecknerf526b9482014-02-12 18:22:18 +0000728 }
729 return uniques;
730 }
731
Peter Collingbournebee583f2011-10-06 13:03:08 +0000732 class EnumArgument : public Argument {
733 std::string type;
Aaron Ballman0e468c02014-01-05 21:08:29 +0000734 std::vector<std::string> values, enums, uniques;
Peter Collingbournebee583f2011-10-06 13:03:08 +0000735 public:
Aaron Ballman2f22b942014-05-20 19:47:14 +0000736 EnumArgument(const Record &Arg, StringRef Attr)
Peter Collingbournebee583f2011-10-06 13:03:08 +0000737 : Argument(Arg, Attr), type(Arg.getValueAsString("Type")),
Aaron Ballman0e468c02014-01-05 21:08:29 +0000738 values(Arg.getValueAsListOfStrings("Values")),
739 enums(Arg.getValueAsListOfStrings("Enums")),
Reid Klecknerf526b9482014-02-12 18:22:18 +0000740 uniques(uniqueEnumsInOrder(enums))
Alexander Kornienko5bc364e2013-01-07 17:53:08 +0000741 {
Alexander Kornienko5bc364e2013-01-07 17:53:08 +0000742 // FIXME: Emit a proper error
743 assert(!uniques.empty());
744 }
Peter Collingbournebee583f2011-10-06 13:03:08 +0000745
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000746 bool isEnumArg() const override { return true; }
Aaron Ballman682ee422013-09-11 19:47:58 +0000747
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000748 void writeAccessors(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000749 OS << " " << type << " get" << getUpperName() << "() const {\n";
750 OS << " return " << getLowerName() << ";\n";
751 OS << " }";
752 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000753
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000754 void writeCloneArgs(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000755 OS << getLowerName();
756 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000757
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000758 void writeTemplateInstantiationArgs(raw_ostream &OS) const override {
DeLesley Hutchinsceec3062012-01-20 22:37:06 +0000759 OS << "A->get" << getUpperName() << "()";
760 }
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000761 void writeCtorInitializers(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000762 OS << getLowerName() << "(" << getUpperName() << ")";
763 }
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000764 void writeCtorDefaultInitializers(raw_ostream &OS) const override {
Aaron Ballman8ee40b72013-09-09 23:33:17 +0000765 OS << getLowerName() << "(" << type << "(0))";
766 }
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000767 void writeCtorParameters(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000768 OS << type << " " << getUpperName();
769 }
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000770 void writeDeclarations(raw_ostream &OS) const override {
Eugene Zelenko5f02b772015-12-08 18:49:01 +0000771 auto i = uniques.cbegin(), e = uniques.cend();
Peter Collingbournebee583f2011-10-06 13:03:08 +0000772 // The last one needs to not have a comma.
773 --e;
774
775 OS << "public:\n";
776 OS << " enum " << type << " {\n";
777 for (; i != e; ++i)
778 OS << " " << *i << ",\n";
779 OS << " " << *e << "\n";
780 OS << " };\n";
781 OS << "private:\n";
782 OS << " " << type << " " << getLowerName() << ";";
783 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000784
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000785 void writePCHReadDecls(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000786 OS << " " << getAttrName() << "Attr::" << type << " " << getLowerName()
787 << "(static_cast<" << getAttrName() << "Attr::" << type
David L. Jones267b8842017-01-24 01:04:30 +0000788 << ">(Record.readInt()));\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +0000789 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000790
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000791 void writePCHReadArgs(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000792 OS << getLowerName();
793 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000794
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000795 void writePCHWrite(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000796 OS << "Record.push_back(SA->get" << getUpperName() << "());\n";
797 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000798
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000799 void writeValue(raw_ostream &OS) const override {
Aaron Ballman36d79102014-09-15 16:16:14 +0000800 // FIXME: this isn't 100% correct -- some enum arguments require printing
801 // as a string literal, while others require printing as an identifier.
802 // Tablegen currently does not distinguish between the two forms.
Aaron Ballman25a2cb92014-09-15 15:14:13 +0000803 OS << "\\\"\" << " << getAttrName() << "Attr::Convert" << type << "ToStr(get"
804 << getUpperName() << "()) << \"\\\"";
Douglas Gregor49ccfaa2011-11-19 19:22:57 +0000805 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000806
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000807 void writeDump(raw_ostream &OS) const override {
Alexander Kornienko5bc364e2013-01-07 17:53:08 +0000808 OS << " switch(SA->get" << getUpperName() << "()) {\n";
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +0000809 for (const auto &I : uniques) {
810 OS << " case " << getAttrName() << "Attr::" << I << ":\n";
811 OS << " OS << \" " << I << "\";\n";
Alexander Kornienko5bc364e2013-01-07 17:53:08 +0000812 OS << " break;\n";
813 }
814 OS << " }\n";
815 }
Aaron Ballman682ee422013-09-11 19:47:58 +0000816
817 void writeConversion(raw_ostream &OS) const {
818 OS << " static bool ConvertStrTo" << type << "(StringRef Val, ";
819 OS << type << " &Out) {\n";
820 OS << " Optional<" << type << "> R = llvm::StringSwitch<Optional<";
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +0000821 OS << type << ">>(Val)\n";
Aaron Ballman682ee422013-09-11 19:47:58 +0000822 for (size_t I = 0; I < enums.size(); ++I) {
823 OS << " .Case(\"" << values[I] << "\", ";
824 OS << getAttrName() << "Attr::" << enums[I] << ")\n";
825 }
826 OS << " .Default(Optional<" << type << ">());\n";
827 OS << " if (R) {\n";
828 OS << " Out = *R;\n return true;\n }\n";
829 OS << " return false;\n";
Aaron Ballman25a2cb92014-09-15 15:14:13 +0000830 OS << " }\n\n";
831
832 // Mapping from enumeration values back to enumeration strings isn't
833 // trivial because some enumeration values have multiple named
834 // enumerators, such as type_visibility(internal) and
835 // type_visibility(hidden) both mapping to TypeVisibilityAttr::Hidden.
836 OS << " static const char *Convert" << type << "ToStr("
837 << type << " Val) {\n"
838 << " switch(Val) {\n";
George Burgess IV1881a572016-12-01 00:13:18 +0000839 SmallDenseSet<StringRef, 8> Uniques;
Aaron Ballman25a2cb92014-09-15 15:14:13 +0000840 for (size_t I = 0; I < enums.size(); ++I) {
841 if (Uniques.insert(enums[I]).second)
842 OS << " case " << getAttrName() << "Attr::" << enums[I]
843 << ": return \"" << values[I] << "\";\n";
844 }
845 OS << " }\n"
846 << " llvm_unreachable(\"No enumerator with that value\");\n"
847 << " }\n";
Aaron Ballman682ee422013-09-11 19:47:58 +0000848 }
Peter Collingbournebee583f2011-10-06 13:03:08 +0000849 };
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000850
851 class VariadicEnumArgument: public VariadicArgument {
852 std::string type, QualifiedTypeName;
Aaron Ballman0e468c02014-01-05 21:08:29 +0000853 std::vector<std::string> values, enums, uniques;
Aaron Ballman25a2cb92014-09-15 15:14:13 +0000854
855 protected:
856 void writeValueImpl(raw_ostream &OS) const override {
Aaron Ballman36d79102014-09-15 16:16:14 +0000857 // FIXME: this isn't 100% correct -- some enum arguments require printing
858 // as a string literal, while others require printing as an identifier.
859 // Tablegen currently does not distinguish between the two forms.
Aaron Ballman25a2cb92014-09-15 15:14:13 +0000860 OS << " OS << \"\\\"\" << " << getAttrName() << "Attr::Convert" << type
861 << "ToStr(Val)" << "<< \"\\\"\";\n";
862 }
863
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000864 public:
Aaron Ballman2f22b942014-05-20 19:47:14 +0000865 VariadicEnumArgument(const Record &Arg, StringRef Attr)
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000866 : VariadicArgument(Arg, Attr, Arg.getValueAsString("Type")),
867 type(Arg.getValueAsString("Type")),
Aaron Ballman0e468c02014-01-05 21:08:29 +0000868 values(Arg.getValueAsListOfStrings("Values")),
869 enums(Arg.getValueAsListOfStrings("Enums")),
Reid Klecknerf526b9482014-02-12 18:22:18 +0000870 uniques(uniqueEnumsInOrder(enums))
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000871 {
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000872 QualifiedTypeName = getAttrName().str() + "Attr::" + type;
873
874 // FIXME: Emit a proper error
875 assert(!uniques.empty());
876 }
877
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000878 bool isVariadicEnumArg() const override { return true; }
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000879
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000880 void writeDeclarations(raw_ostream &OS) const override {
Eugene Zelenko5f02b772015-12-08 18:49:01 +0000881 auto i = uniques.cbegin(), e = uniques.cend();
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000882 // The last one needs to not have a comma.
883 --e;
884
885 OS << "public:\n";
886 OS << " enum " << type << " {\n";
887 for (; i != e; ++i)
888 OS << " " << *i << ",\n";
889 OS << " " << *e << "\n";
890 OS << " };\n";
891 OS << "private:\n";
892
893 VariadicArgument::writeDeclarations(OS);
894 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000895
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000896 void writeDump(raw_ostream &OS) const override {
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000897 OS << " for (" << getAttrName() << "Attr::" << getLowerName()
898 << "_iterator I = SA->" << getLowerName() << "_begin(), E = SA->"
899 << getLowerName() << "_end(); I != E; ++I) {\n";
900 OS << " switch(*I) {\n";
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +0000901 for (const auto &UI : uniques) {
902 OS << " case " << getAttrName() << "Attr::" << UI << ":\n";
903 OS << " OS << \" " << UI << "\";\n";
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000904 OS << " break;\n";
905 }
906 OS << " }\n";
907 OS << " }\n";
908 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000909
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000910 void writePCHReadDecls(raw_ostream &OS) const override {
David L. Jones267b8842017-01-24 01:04:30 +0000911 OS << " unsigned " << getLowerName() << "Size = Record.readInt();\n";
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000912 OS << " SmallVector<" << QualifiedTypeName << ", 4> " << getLowerName()
913 << ";\n";
914 OS << " " << getLowerName() << ".reserve(" << getLowerName()
915 << "Size);\n";
916 OS << " for (unsigned i = " << getLowerName() << "Size; i; --i)\n";
917 OS << " " << getLowerName() << ".push_back(" << "static_cast<"
David L. Jones267b8842017-01-24 01:04:30 +0000918 << QualifiedTypeName << ">(Record.readInt()));\n";
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000919 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000920
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000921 void writePCHWrite(raw_ostream &OS) const override {
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000922 OS << " Record.push_back(SA->" << getLowerName() << "_size());\n";
923 OS << " for (" << getAttrName() << "Attr::" << getLowerName()
924 << "_iterator i = SA->" << getLowerName() << "_begin(), e = SA->"
925 << getLowerName() << "_end(); i != e; ++i)\n";
926 OS << " " << WritePCHRecord(QualifiedTypeName, "(*i)");
927 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000928
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000929 void writeConversion(raw_ostream &OS) const {
930 OS << " static bool ConvertStrTo" << type << "(StringRef Val, ";
931 OS << type << " &Out) {\n";
932 OS << " Optional<" << type << "> R = llvm::StringSwitch<Optional<";
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +0000933 OS << type << ">>(Val)\n";
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000934 for (size_t I = 0; I < enums.size(); ++I) {
935 OS << " .Case(\"" << values[I] << "\", ";
936 OS << getAttrName() << "Attr::" << enums[I] << ")\n";
937 }
938 OS << " .Default(Optional<" << type << ">());\n";
939 OS << " if (R) {\n";
940 OS << " Out = *R;\n return true;\n }\n";
941 OS << " return false;\n";
Aaron Ballman25a2cb92014-09-15 15:14:13 +0000942 OS << " }\n\n";
943
944 OS << " static const char *Convert" << type << "ToStr("
945 << type << " Val) {\n"
946 << " switch(Val) {\n";
George Burgess IV1881a572016-12-01 00:13:18 +0000947 SmallDenseSet<StringRef, 8> Uniques;
Aaron Ballman25a2cb92014-09-15 15:14:13 +0000948 for (size_t I = 0; I < enums.size(); ++I) {
949 if (Uniques.insert(enums[I]).second)
950 OS << " case " << getAttrName() << "Attr::" << enums[I]
951 << ": return \"" << values[I] << "\";\n";
952 }
953 OS << " }\n"
954 << " llvm_unreachable(\"No enumerator with that value\");\n"
955 << " }\n";
DeLesley Hutchins210791a2013-10-04 21:28:06 +0000956 }
957 };
Peter Collingbournebee583f2011-10-06 13:03:08 +0000958
959 class VersionArgument : public Argument {
960 public:
Aaron Ballman2f22b942014-05-20 19:47:14 +0000961 VersionArgument(const Record &Arg, StringRef Attr)
Peter Collingbournebee583f2011-10-06 13:03:08 +0000962 : Argument(Arg, Attr)
963 {}
964
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000965 void writeAccessors(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000966 OS << " VersionTuple get" << getUpperName() << "() const {\n";
967 OS << " return " << getLowerName() << ";\n";
968 OS << " }\n";
969 OS << " void set" << getUpperName()
970 << "(ASTContext &C, VersionTuple V) {\n";
971 OS << " " << getLowerName() << " = V;\n";
972 OS << " }";
973 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000974
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000975 void writeCloneArgs(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000976 OS << "get" << getUpperName() << "()";
977 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000978
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000979 void writeTemplateInstantiationArgs(raw_ostream &OS) const override {
DeLesley Hutchinsceec3062012-01-20 22:37:06 +0000980 OS << "A->get" << getUpperName() << "()";
981 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000982
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000983 void writeCtorInitializers(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000984 OS << getLowerName() << "(" << getUpperName() << ")";
985 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000986
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000987 void writeCtorDefaultInitializers(raw_ostream &OS) const override {
Aaron Ballman8ee40b72013-09-09 23:33:17 +0000988 OS << getLowerName() << "()";
989 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000990
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000991 void writeCtorParameters(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000992 OS << "VersionTuple " << getUpperName();
993 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000994
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000995 void writeDeclarations(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +0000996 OS << "VersionTuple " << getLowerName() << ";\n";
997 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +0000998
Aaron Ballman8cbf6332014-03-06 15:09:50 +0000999 void writePCHReadDecls(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +00001000 OS << " VersionTuple " << getLowerName()
David L. Jones267b8842017-01-24 01:04:30 +00001001 << "= Record.readVersionTuple();\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +00001002 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00001003
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001004 void writePCHReadArgs(raw_ostream &OS) const override {
Peter Collingbournebee583f2011-10-06 13:03:08 +00001005 OS << getLowerName();
1006 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00001007
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001008 void writePCHWrite(raw_ostream &OS) const override {
Richard Smith290d8012016-04-06 17:06:00 +00001009 OS << " Record.AddVersionTuple(SA->get" << getUpperName() << "());\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +00001010 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00001011
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001012 void writeValue(raw_ostream &OS) const override {
Douglas Gregor49ccfaa2011-11-19 19:22:57 +00001013 OS << getLowerName() << "=\" << get" << getUpperName() << "() << \"";
1014 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00001015
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001016 void writeDump(raw_ostream &OS) const override {
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00001017 OS << " OS << \" \" << SA->get" << getUpperName() << "();\n";
1018 }
Peter Collingbournebee583f2011-10-06 13:03:08 +00001019 };
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00001020
1021 class ExprArgument : public SimpleArgument {
1022 public:
Aaron Ballman2f22b942014-05-20 19:47:14 +00001023 ExprArgument(const Record &Arg, StringRef Attr)
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00001024 : SimpleArgument(Arg, Attr, "Expr *")
1025 {}
1026
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001027 void writeASTVisitorTraversal(raw_ostream &OS) const override {
DeLesley Hutchinsc4a82432013-12-30 17:24:36 +00001028 OS << " if (!"
1029 << "getDerived().TraverseStmt(A->get" << getUpperName() << "()))\n";
1030 OS << " return false;\n";
1031 }
1032
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001033 void writeTemplateInstantiationArgs(raw_ostream &OS) const override {
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00001034 OS << "tempInst" << getUpperName();
1035 }
1036
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001037 void writeTemplateInstantiation(raw_ostream &OS) const override {
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00001038 OS << " " << getType() << " tempInst" << getUpperName() << ";\n";
1039 OS << " {\n";
1040 OS << " EnterExpressionEvaluationContext "
Faisal Valid143a0c2017-04-01 21:30:49 +00001041 << "Unevaluated(S, Sema::ExpressionEvaluationContext::Unevaluated);\n";
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00001042 OS << " ExprResult " << "Result = S.SubstExpr("
1043 << "A->get" << getUpperName() << "(), TemplateArgs);\n";
1044 OS << " tempInst" << getUpperName() << " = "
Nikola Smiljanic01a75982014-05-29 10:55:11 +00001045 << "Result.getAs<Expr>();\n";
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00001046 OS << " }\n";
1047 }
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00001048
Craig Topper3164f332014-03-11 03:39:26 +00001049 void writeDump(raw_ostream &OS) const override {}
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00001050
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001051 void writeDumpChildren(raw_ostream &OS) const override {
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00001052 OS << " dumpStmt(SA->get" << getUpperName() << "());\n";
1053 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00001054
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001055 void writeHasChildren(raw_ostream &OS) const override { OS << "true"; }
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00001056 };
1057
1058 class VariadicExprArgument : public VariadicArgument {
1059 public:
Aaron Ballman2f22b942014-05-20 19:47:14 +00001060 VariadicExprArgument(const Record &Arg, StringRef Attr)
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00001061 : VariadicArgument(Arg, Attr, "Expr *")
1062 {}
1063
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001064 void writeASTVisitorTraversal(raw_ostream &OS) const override {
DeLesley Hutchinsc4a82432013-12-30 17:24:36 +00001065 OS << " {\n";
1066 OS << " " << getType() << " *I = A->" << getLowerName()
1067 << "_begin();\n";
1068 OS << " " << getType() << " *E = A->" << getLowerName()
1069 << "_end();\n";
1070 OS << " for (; I != E; ++I) {\n";
1071 OS << " if (!getDerived().TraverseStmt(*I))\n";
1072 OS << " return false;\n";
1073 OS << " }\n";
1074 OS << " }\n";
1075 }
1076
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001077 void writeTemplateInstantiationArgs(raw_ostream &OS) const override {
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00001078 OS << "tempInst" << getUpperName() << ", "
1079 << "A->" << getLowerName() << "_size()";
1080 }
1081
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001082 void writeTemplateInstantiation(raw_ostream &OS) const override {
Eugene Zelenko5f02b772015-12-08 18:49:01 +00001083 OS << " auto *tempInst" << getUpperName()
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00001084 << " = new (C, 16) " << getType()
1085 << "[A->" << getLowerName() << "_size()];\n";
1086 OS << " {\n";
1087 OS << " EnterExpressionEvaluationContext "
Faisal Valid143a0c2017-04-01 21:30:49 +00001088 << "Unevaluated(S, Sema::ExpressionEvaluationContext::Unevaluated);\n";
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00001089 OS << " " << getType() << " *TI = tempInst" << getUpperName()
1090 << ";\n";
1091 OS << " " << getType() << " *I = A->" << getLowerName()
1092 << "_begin();\n";
1093 OS << " " << getType() << " *E = A->" << getLowerName()
1094 << "_end();\n";
1095 OS << " for (; I != E; ++I, ++TI) {\n";
1096 OS << " ExprResult Result = S.SubstExpr(*I, TemplateArgs);\n";
Nikola Smiljanic01a75982014-05-29 10:55:11 +00001097 OS << " *TI = Result.getAs<Expr>();\n";
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00001098 OS << " }\n";
1099 OS << " }\n";
1100 }
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00001101
Craig Topper3164f332014-03-11 03:39:26 +00001102 void writeDump(raw_ostream &OS) const override {}
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00001103
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001104 void writeDumpChildren(raw_ostream &OS) const override {
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00001105 OS << " for (" << getAttrName() << "Attr::" << getLowerName()
1106 << "_iterator I = SA->" << getLowerName() << "_begin(), E = SA->"
Richard Smithf7514452014-10-30 21:02:37 +00001107 << getLowerName() << "_end(); I != E; ++I)\n";
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00001108 OS << " dumpStmt(*I);\n";
Richard Trieude5cc7d2013-01-31 01:44:26 +00001109 }
1110
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001111 void writeHasChildren(raw_ostream &OS) const override {
Richard Trieude5cc7d2013-01-31 01:44:26 +00001112 OS << "SA->" << getLowerName() << "_begin() != "
1113 << "SA->" << getLowerName() << "_end()";
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00001114 }
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00001115 };
Richard Smithb87c4652013-10-31 21:23:20 +00001116
Peter Collingbourne915df992015-05-15 18:33:32 +00001117 class VariadicStringArgument : public VariadicArgument {
1118 public:
1119 VariadicStringArgument(const Record &Arg, StringRef Attr)
Benjamin Kramer1b582012016-02-13 18:11:49 +00001120 : VariadicArgument(Arg, Attr, "StringRef")
Peter Collingbourne915df992015-05-15 18:33:32 +00001121 {}
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00001122
Benjamin Kramer1b582012016-02-13 18:11:49 +00001123 void writeCtorBody(raw_ostream &OS) const override {
1124 OS << " for (size_t I = 0, E = " << getArgSizeName() << "; I != E;\n"
1125 " ++I) {\n"
1126 " StringRef Ref = " << getUpperName() << "[I];\n"
1127 " if (!Ref.empty()) {\n"
1128 " char *Mem = new (Ctx, 1) char[Ref.size()];\n"
1129 " std::memcpy(Mem, Ref.data(), Ref.size());\n"
1130 " " << getArgName() << "[I] = StringRef(Mem, Ref.size());\n"
1131 " }\n"
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00001132 " }\n";
Benjamin Kramer1b582012016-02-13 18:11:49 +00001133 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00001134
Peter Collingbourne915df992015-05-15 18:33:32 +00001135 void writeValueImpl(raw_ostream &OS) const override {
1136 OS << " OS << \"\\\"\" << Val << \"\\\"\";\n";
1137 }
1138 };
1139
Richard Smithb87c4652013-10-31 21:23:20 +00001140 class TypeArgument : public SimpleArgument {
1141 public:
Aaron Ballman2f22b942014-05-20 19:47:14 +00001142 TypeArgument(const Record &Arg, StringRef Attr)
Richard Smithb87c4652013-10-31 21:23:20 +00001143 : SimpleArgument(Arg, Attr, "TypeSourceInfo *")
1144 {}
1145
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001146 void writeAccessors(raw_ostream &OS) const override {
Richard Smithb87c4652013-10-31 21:23:20 +00001147 OS << " QualType get" << getUpperName() << "() const {\n";
1148 OS << " return " << getLowerName() << "->getType();\n";
1149 OS << " }";
1150 OS << " " << getType() << " get" << getUpperName() << "Loc() const {\n";
1151 OS << " return " << getLowerName() << ";\n";
1152 OS << " }";
1153 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00001154
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001155 void writeTemplateInstantiationArgs(raw_ostream &OS) const override {
Richard Smithb87c4652013-10-31 21:23:20 +00001156 OS << "A->get" << getUpperName() << "Loc()";
1157 }
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00001158
Aaron Ballman8cbf6332014-03-06 15:09:50 +00001159 void writePCHWrite(raw_ostream &OS) const override {
Richard Smithb87c4652013-10-31 21:23:20 +00001160 OS << " " << WritePCHRecord(
1161 getType(), "SA->get" + std::string(getUpperName()) + "Loc()");
1162 }
1163 };
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00001164
Hans Wennborgdcfba332015-10-06 23:40:43 +00001165} // end anonymous namespace
Peter Collingbournebee583f2011-10-06 13:03:08 +00001166
Aaron Ballman2f22b942014-05-20 19:47:14 +00001167static std::unique_ptr<Argument>
1168createArgument(const Record &Arg, StringRef Attr,
1169 const Record *Search = nullptr) {
Peter Collingbournebee583f2011-10-06 13:03:08 +00001170 if (!Search)
1171 Search = &Arg;
1172
David Blaikie28f30ca2014-08-08 23:59:38 +00001173 std::unique_ptr<Argument> Ptr;
Peter Collingbournebee583f2011-10-06 13:03:08 +00001174 llvm::StringRef ArgName = Search->getName();
1175
David Blaikie28f30ca2014-08-08 23:59:38 +00001176 if (ArgName == "AlignedArgument")
1177 Ptr = llvm::make_unique<AlignedArgument>(Arg, Attr);
1178 else if (ArgName == "EnumArgument")
1179 Ptr = llvm::make_unique<EnumArgument>(Arg, Attr);
1180 else if (ArgName == "ExprArgument")
1181 Ptr = llvm::make_unique<ExprArgument>(Arg, Attr);
Peter Collingbournebee583f2011-10-06 13:03:08 +00001182 else if (ArgName == "FunctionArgument")
David Blaikie28f30ca2014-08-08 23:59:38 +00001183 Ptr = llvm::make_unique<SimpleArgument>(Arg, Attr, "FunctionDecl *");
Peter Collingbournebee583f2011-10-06 13:03:08 +00001184 else if (ArgName == "IdentifierArgument")
David Blaikie28f30ca2014-08-08 23:59:38 +00001185 Ptr = llvm::make_unique<SimpleArgument>(Arg, Attr, "IdentifierInfo *");
David Majnemer4bb09802014-02-10 19:50:15 +00001186 else if (ArgName == "DefaultBoolArgument")
David Blaikie28f30ca2014-08-08 23:59:38 +00001187 Ptr = llvm::make_unique<DefaultSimpleArgument>(
1188 Arg, Attr, "bool", Arg.getValueAsBit("Default"));
1189 else if (ArgName == "BoolArgument")
1190 Ptr = llvm::make_unique<SimpleArgument>(Arg, Attr, "bool");
Aaron Ballman18a78382013-11-21 00:28:23 +00001191 else if (ArgName == "DefaultIntArgument")
David Blaikie28f30ca2014-08-08 23:59:38 +00001192 Ptr = llvm::make_unique<DefaultSimpleArgument>(
1193 Arg, Attr, "int", Arg.getValueAsInt("Default"));
1194 else if (ArgName == "IntArgument")
1195 Ptr = llvm::make_unique<SimpleArgument>(Arg, Attr, "int");
1196 else if (ArgName == "StringArgument")
1197 Ptr = llvm::make_unique<StringArgument>(Arg, Attr);
1198 else if (ArgName == "TypeArgument")
1199 Ptr = llvm::make_unique<TypeArgument>(Arg, Attr);
Peter Collingbournebee583f2011-10-06 13:03:08 +00001200 else if (ArgName == "UnsignedArgument")
David Blaikie28f30ca2014-08-08 23:59:38 +00001201 Ptr = llvm::make_unique<SimpleArgument>(Arg, Attr, "unsigned");
Peter Collingbournebee583f2011-10-06 13:03:08 +00001202 else if (ArgName == "VariadicUnsignedArgument")
David Blaikie28f30ca2014-08-08 23:59:38 +00001203 Ptr = llvm::make_unique<VariadicArgument>(Arg, Attr, "unsigned");
Peter Collingbourne915df992015-05-15 18:33:32 +00001204 else if (ArgName == "VariadicStringArgument")
1205 Ptr = llvm::make_unique<VariadicStringArgument>(Arg, Attr);
DeLesley Hutchins210791a2013-10-04 21:28:06 +00001206 else if (ArgName == "VariadicEnumArgument")
David Blaikie28f30ca2014-08-08 23:59:38 +00001207 Ptr = llvm::make_unique<VariadicEnumArgument>(Arg, Attr);
Peter Collingbournebee583f2011-10-06 13:03:08 +00001208 else if (ArgName == "VariadicExprArgument")
David Blaikie28f30ca2014-08-08 23:59:38 +00001209 Ptr = llvm::make_unique<VariadicExprArgument>(Arg, Attr);
Peter Collingbournebee583f2011-10-06 13:03:08 +00001210 else if (ArgName == "VersionArgument")
David Blaikie28f30ca2014-08-08 23:59:38 +00001211 Ptr = llvm::make_unique<VersionArgument>(Arg, Attr);
Peter Collingbournebee583f2011-10-06 13:03:08 +00001212
1213 if (!Ptr) {
Aaron Ballman18a78382013-11-21 00:28:23 +00001214 // Search in reverse order so that the most-derived type is handled first.
Craig Topper25761242016-01-18 19:52:54 +00001215 ArrayRef<std::pair<Record*, SMRange>> Bases = Search->getSuperClasses();
David Majnemerf7e36092016-06-23 00:15:04 +00001216 for (const auto &Base : llvm::reverse(Bases)) {
Craig Topper25761242016-01-18 19:52:54 +00001217 if ((Ptr = createArgument(Arg, Attr, Base.first)))
Peter Collingbournebee583f2011-10-06 13:03:08 +00001218 break;
1219 }
1220 }
Aaron Ballman8ee40b72013-09-09 23:33:17 +00001221
1222 if (Ptr && Arg.getValueAsBit("Optional"))
1223 Ptr->setOptional(true);
1224
John McCalla62c1a92015-10-28 00:17:34 +00001225 if (Ptr && Arg.getValueAsBit("Fake"))
1226 Ptr->setFake(true);
1227
David Blaikie28f30ca2014-08-08 23:59:38 +00001228 return Ptr;
Peter Collingbournebee583f2011-10-06 13:03:08 +00001229}
1230
Douglas Gregor49ccfaa2011-11-19 19:22:57 +00001231static void writeAvailabilityValue(raw_ostream &OS) {
1232 OS << "\" << getPlatform()->getName();\n"
Manman Ren42e09eb2016-03-10 23:54:12 +00001233 << " if (getStrict()) OS << \", strict\";\n"
Douglas Gregor49ccfaa2011-11-19 19:22:57 +00001234 << " if (!getIntroduced().empty()) OS << \", introduced=\" << getIntroduced();\n"
1235 << " if (!getDeprecated().empty()) OS << \", deprecated=\" << getDeprecated();\n"
1236 << " if (!getObsoleted().empty()) OS << \", obsoleted=\" << getObsoleted();\n"
1237 << " if (getUnavailable()) OS << \", unavailable\";\n"
1238 << " OS << \"";
1239}
1240
Manman Renc7890fe2016-03-16 18:50:49 +00001241static void writeDeprecatedAttrValue(raw_ostream &OS, std::string &Variety) {
1242 OS << "\\\"\" << getMessage() << \"\\\"\";\n";
1243 // Only GNU deprecated has an optional fixit argument at the second position.
1244 if (Variety == "GNU")
1245 OS << " if (!getReplacement().empty()) OS << \", \\\"\""
1246 " << getReplacement() << \"\\\"\";\n";
1247 OS << " OS << \"";
1248}
1249
Aaron Ballman3e424b52013-12-26 18:30:57 +00001250static void writeGetSpellingFunction(Record &R, raw_ostream &OS) {
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001251 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(R);
Aaron Ballman3e424b52013-12-26 18:30:57 +00001252
1253 OS << "const char *" << R.getName() << "Attr::getSpelling() const {\n";
1254 if (Spellings.empty()) {
1255 OS << " return \"(No spelling)\";\n}\n\n";
1256 return;
1257 }
1258
1259 OS << " switch (SpellingListIndex) {\n"
1260 " default:\n"
1261 " llvm_unreachable(\"Unknown attribute spelling!\");\n"
1262 " return \"(No spelling)\";\n";
1263
1264 for (unsigned I = 0; I < Spellings.size(); ++I)
1265 OS << " case " << I << ":\n"
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001266 " return \"" << Spellings[I].name() << "\";\n";
Aaron Ballman3e424b52013-12-26 18:30:57 +00001267 // End of the switch statement.
1268 OS << " }\n";
1269 // End of the getSpelling function.
1270 OS << "}\n\n";
1271}
1272
Aaron Ballman8f1439b2014-03-05 16:49:55 +00001273static void
1274writePrettyPrintFunction(Record &R,
1275 const std::vector<std::unique_ptr<Argument>> &Args,
1276 raw_ostream &OS) {
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001277 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(R);
Michael Han99315932013-01-24 16:46:58 +00001278
1279 OS << "void " << R.getName() << "Attr::printPretty("
1280 << "raw_ostream &OS, const PrintingPolicy &Policy) const {\n";
1281
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00001282 if (Spellings.empty()) {
Michael Han99315932013-01-24 16:46:58 +00001283 OS << "}\n\n";
1284 return;
1285 }
1286
1287 OS <<
1288 " switch (SpellingListIndex) {\n"
1289 " default:\n"
1290 " llvm_unreachable(\"Unknown attribute spelling!\");\n"
1291 " break;\n";
1292
1293 for (unsigned I = 0; I < Spellings.size(); ++ I) {
1294 llvm::SmallString<16> Prefix;
1295 llvm::SmallString<8> Suffix;
1296 // The actual spelling of the name and namespace (if applicable)
1297 // of an attribute without considering prefix and suffix.
1298 llvm::SmallString<64> Spelling;
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001299 std::string Name = Spellings[I].name();
1300 std::string Variety = Spellings[I].variety();
Michael Han99315932013-01-24 16:46:58 +00001301
1302 if (Variety == "GNU") {
1303 Prefix = " __attribute__((";
1304 Suffix = "))";
1305 } else if (Variety == "CXX11") {
1306 Prefix = " [[";
1307 Suffix = "]]";
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001308 std::string Namespace = Spellings[I].nameSpace();
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00001309 if (!Namespace.empty()) {
Michael Han99315932013-01-24 16:46:58 +00001310 Spelling += Namespace;
1311 Spelling += "::";
1312 }
1313 } else if (Variety == "Declspec") {
1314 Prefix = " __declspec(";
1315 Suffix = ")";
Nico Weber20e08042016-09-03 02:55:10 +00001316 } else if (Variety == "Microsoft") {
1317 Prefix = "[";
1318 Suffix = "]";
Richard Smith0cdcc982013-01-29 01:24:26 +00001319 } else if (Variety == "Keyword") {
1320 Prefix = " ";
1321 Suffix = "";
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00001322 } else if (Variety == "Pragma") {
1323 Prefix = "#pragma ";
1324 Suffix = "\n";
1325 std::string Namespace = Spellings[I].nameSpace();
1326 if (!Namespace.empty()) {
1327 Spelling += Namespace;
1328 Spelling += " ";
1329 }
Michael Han99315932013-01-24 16:46:58 +00001330 } else {
Richard Smith0cdcc982013-01-29 01:24:26 +00001331 llvm_unreachable("Unknown attribute syntax variety!");
Michael Han99315932013-01-24 16:46:58 +00001332 }
1333
1334 Spelling += Name;
1335
1336 OS <<
1337 " case " << I << " : {\n"
Yaron Keren09fb7c62015-03-10 07:33:23 +00001338 " OS << \"" << Prefix << Spelling;
Michael Han99315932013-01-24 16:46:58 +00001339
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00001340 if (Variety == "Pragma") {
1341 OS << " \";\n";
1342 OS << " printPrettyPragma(OS, Policy);\n";
Alexey Bataev6d455322015-10-12 06:59:48 +00001343 OS << " OS << \"\\n\";";
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00001344 OS << " break;\n";
1345 OS << " }\n";
1346 continue;
1347 }
1348
John McCalla62c1a92015-10-28 00:17:34 +00001349 // Fake arguments aren't part of the parsed form and should not be
1350 // pretty-printed.
George Burgess IV1881a572016-12-01 00:13:18 +00001351 bool hasNonFakeArgs = llvm::any_of(
1352 Args, [](const std::unique_ptr<Argument> &A) { return !A->isFake(); });
John McCalla62c1a92015-10-28 00:17:34 +00001353
Aaron Ballmanc960f562014-08-01 13:49:00 +00001354 // FIXME: always printing the parenthesis isn't the correct behavior for
1355 // attributes which have optional arguments that were not provided. For
1356 // instance: __attribute__((aligned)) will be pretty printed as
1357 // __attribute__((aligned())). The logic should check whether there is only
1358 // a single argument, and if it is optional, whether it has been provided.
John McCalla62c1a92015-10-28 00:17:34 +00001359 if (hasNonFakeArgs)
Aaron Ballman8f1439b2014-03-05 16:49:55 +00001360 OS << "(";
Michael Han99315932013-01-24 16:46:58 +00001361 if (Spelling == "availability") {
1362 writeAvailabilityValue(OS);
Manman Renc7890fe2016-03-16 18:50:49 +00001363 } else if (Spelling == "deprecated" || Spelling == "gnu::deprecated") {
1364 writeDeprecatedAttrValue(OS, Variety);
Michael Han99315932013-01-24 16:46:58 +00001365 } else {
John McCalla62c1a92015-10-28 00:17:34 +00001366 unsigned index = 0;
1367 for (const auto &arg : Args) {
1368 if (arg->isFake()) continue;
1369 if (index++) OS << ", ";
1370 arg->writeValue(OS);
Michael Han99315932013-01-24 16:46:58 +00001371 }
1372 }
1373
John McCalla62c1a92015-10-28 00:17:34 +00001374 if (hasNonFakeArgs)
Aaron Ballman8f1439b2014-03-05 16:49:55 +00001375 OS << ")";
Yaron Keren09fb7c62015-03-10 07:33:23 +00001376 OS << Suffix + "\";\n";
Michael Han99315932013-01-24 16:46:58 +00001377
1378 OS <<
1379 " break;\n"
1380 " }\n";
1381 }
1382
1383 // End of the switch statement.
1384 OS << "}\n";
1385 // End of the print function.
1386 OS << "}\n\n";
1387}
1388
Michael Hanaf02bbe2013-02-01 01:19:17 +00001389/// \brief Return the index of a spelling in a spelling list.
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001390static unsigned
1391getSpellingListIndex(const std::vector<FlattenedSpelling> &SpellingList,
1392 const FlattenedSpelling &Spelling) {
Alexander Kornienko6ee521c2015-01-23 15:36:10 +00001393 assert(!SpellingList.empty() && "Spelling list is empty!");
Michael Hanaf02bbe2013-02-01 01:19:17 +00001394
1395 for (unsigned Index = 0; Index < SpellingList.size(); ++Index) {
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001396 const FlattenedSpelling &S = SpellingList[Index];
1397 if (S.variety() != Spelling.variety())
Michael Hanaf02bbe2013-02-01 01:19:17 +00001398 continue;
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001399 if (S.nameSpace() != Spelling.nameSpace())
Michael Hanaf02bbe2013-02-01 01:19:17 +00001400 continue;
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001401 if (S.name() != Spelling.name())
Michael Hanaf02bbe2013-02-01 01:19:17 +00001402 continue;
1403
1404 return Index;
1405 }
1406
1407 llvm_unreachable("Unknown spelling!");
1408}
1409
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00001410static void writeAttrAccessorDefinition(const Record &R, raw_ostream &OS) {
Michael Hanaf02bbe2013-02-01 01:19:17 +00001411 std::vector<Record*> Accessors = R.getValueAsListOfDefs("Accessors");
George Burgess IV1881a572016-12-01 00:13:18 +00001412 if (Accessors.empty())
1413 return;
1414
1415 const std::vector<FlattenedSpelling> SpellingList = GetFlattenedSpellings(R);
1416 assert(!SpellingList.empty() &&
1417 "Attribute with empty spelling list can't have accessors!");
Aaron Ballman2f22b942014-05-20 19:47:14 +00001418 for (const auto *Accessor : Accessors) {
Michael Hanaf02bbe2013-02-01 01:19:17 +00001419 std::string Name = Accessor->getValueAsString("Name");
George Burgess IV1881a572016-12-01 00:13:18 +00001420 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(*Accessor);
Michael Hanaf02bbe2013-02-01 01:19:17 +00001421
1422 OS << " bool " << Name << "() const { return SpellingListIndex == ";
1423 for (unsigned Index = 0; Index < Spellings.size(); ++Index) {
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001424 OS << getSpellingListIndex(SpellingList, Spellings[Index]);
George Burgess IV1881a572016-12-01 00:13:18 +00001425 if (Index != Spellings.size() - 1)
Michael Hanaf02bbe2013-02-01 01:19:17 +00001426 OS << " ||\n SpellingListIndex == ";
1427 else
1428 OS << "; }\n";
1429 }
1430 }
1431}
1432
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001433static bool
1434SpellingNamesAreCommon(const std::vector<FlattenedSpelling>& Spellings) {
Aaron Ballman36a53502014-01-16 13:03:14 +00001435 assert(!Spellings.empty() && "An empty list of spellings was provided");
1436 std::string FirstName = NormalizeNameForSpellingComparison(
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001437 Spellings.front().name());
Aaron Ballman2f22b942014-05-20 19:47:14 +00001438 for (const auto &Spelling :
1439 llvm::make_range(std::next(Spellings.begin()), Spellings.end())) {
1440 std::string Name = NormalizeNameForSpellingComparison(Spelling.name());
Aaron Ballman36a53502014-01-16 13:03:14 +00001441 if (Name != FirstName)
1442 return false;
1443 }
1444 return true;
1445}
1446
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00001447typedef std::map<unsigned, std::string> SemanticSpellingMap;
1448static std::string
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001449CreateSemanticSpellings(const std::vector<FlattenedSpelling> &Spellings,
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00001450 SemanticSpellingMap &Map) {
1451 // The enumerants are automatically generated based on the variety,
1452 // namespace (if present) and name for each attribute spelling. However,
1453 // care is taken to avoid trampling on the reserved namespace due to
1454 // underscores.
1455 std::string Ret(" enum Spelling {\n");
1456 std::set<std::string> Uniques;
1457 unsigned Idx = 0;
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00001458 for (auto I = Spellings.begin(), E = Spellings.end(); I != E; ++I, ++Idx) {
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001459 const FlattenedSpelling &S = *I;
Benjamin Kramer2e018ef2016-05-27 13:36:58 +00001460 const std::string &Variety = S.variety();
1461 const std::string &Spelling = S.name();
1462 const std::string &Namespace = S.nameSpace();
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00001463 std::string EnumName;
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00001464
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00001465 EnumName += (Variety + "_");
1466 if (!Namespace.empty())
1467 EnumName += (NormalizeNameForSpellingComparison(Namespace).str() +
1468 "_");
1469 EnumName += NormalizeNameForSpellingComparison(Spelling);
1470
1471 // Even if the name is not unique, this spelling index corresponds to a
1472 // particular enumerant name that we've calculated.
1473 Map[Idx] = EnumName;
1474
1475 // Since we have been stripping underscores to avoid trampling on the
1476 // reserved namespace, we may have inadvertently created duplicate
1477 // enumerant names. These duplicates are not considered part of the
1478 // semantic spelling, and can be elided.
1479 if (Uniques.find(EnumName) != Uniques.end())
1480 continue;
1481
1482 Uniques.insert(EnumName);
1483 if (I != Spellings.begin())
1484 Ret += ",\n";
Aaron Ballman9bf6b752015-03-10 17:19:18 +00001485 // Duplicate spellings are not considered part of the semantic spelling
1486 // enumeration, but the spelling index and semantic spelling values are
1487 // meant to be equivalent, so we must specify a concrete value for each
1488 // enumerator.
1489 Ret += " " + EnumName + " = " + llvm::utostr(Idx);
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00001490 }
1491 Ret += "\n };\n\n";
1492 return Ret;
1493}
1494
1495void WriteSemanticSpellingSwitch(const std::string &VarName,
1496 const SemanticSpellingMap &Map,
1497 raw_ostream &OS) {
1498 OS << " switch (" << VarName << ") {\n default: "
1499 << "llvm_unreachable(\"Unknown spelling list index\");\n";
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00001500 for (const auto &I : Map)
1501 OS << " case " << I.first << ": return " << I.second << ";\n";
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00001502 OS << " }\n";
1503}
1504
Aaron Ballman35db2b32014-01-29 22:13:45 +00001505// Emits the LateParsed property for attributes.
1506static void emitClangAttrLateParsedList(RecordKeeper &Records, raw_ostream &OS) {
1507 OS << "#if defined(CLANG_ATTR_LATE_PARSED_LIST)\n";
1508 std::vector<Record*> Attrs = Records.getAllDerivedDefinitions("Attr");
1509
Aaron Ballman2f22b942014-05-20 19:47:14 +00001510 for (const auto *Attr : Attrs) {
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00001511 bool LateParsed = Attr->getValueAsBit("LateParsed");
Aaron Ballman35db2b32014-01-29 22:13:45 +00001512
1513 if (LateParsed) {
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00001514 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(*Attr);
Aaron Ballman35db2b32014-01-29 22:13:45 +00001515
1516 // FIXME: Handle non-GNU attributes
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00001517 for (const auto &I : Spellings) {
1518 if (I.variety() != "GNU")
Aaron Ballman35db2b32014-01-29 22:13:45 +00001519 continue;
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00001520 OS << ".Case(\"" << I.name() << "\", " << LateParsed << ")\n";
Aaron Ballman35db2b32014-01-29 22:13:45 +00001521 }
1522 }
1523 }
1524 OS << "#endif // CLANG_ATTR_LATE_PARSED_LIST\n\n";
1525}
1526
Alex Lorenz9e7bf162017-04-18 14:33:39 +00001527static bool hasGNUorCXX11Spelling(const Record &Attribute) {
1528 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(Attribute);
1529 for (const auto &I : Spellings) {
1530 if (I.variety() == "GNU" || I.variety() == "CXX11")
1531 return true;
1532 }
1533 return false;
1534}
1535
1536namespace {
1537
1538struct AttributeSubjectMatchRule {
1539 const Record *MetaSubject;
1540 const Record *Constraint;
1541
1542 AttributeSubjectMatchRule(const Record *MetaSubject, const Record *Constraint)
1543 : MetaSubject(MetaSubject), Constraint(Constraint) {
1544 assert(MetaSubject && "Missing subject");
1545 }
1546
1547 bool isSubRule() const { return Constraint != nullptr; }
1548
1549 std::vector<Record *> getSubjects() const {
1550 return (Constraint ? Constraint : MetaSubject)
1551 ->getValueAsListOfDefs("Subjects");
1552 }
1553
1554 std::vector<Record *> getLangOpts() const {
1555 if (Constraint) {
1556 // Lookup the options in the sub-rule first, in case the sub-rule
1557 // overrides the rules options.
1558 std::vector<Record *> Opts = Constraint->getValueAsListOfDefs("LangOpts");
1559 if (!Opts.empty())
1560 return Opts;
1561 }
1562 return MetaSubject->getValueAsListOfDefs("LangOpts");
1563 }
1564
1565 // Abstract rules are used only for sub-rules
1566 bool isAbstractRule() const { return getSubjects().empty(); }
1567
1568 std::string getName() const {
1569 return (Constraint ? Constraint : MetaSubject)->getValueAsString("Name");
1570 }
1571
1572 bool isNegatedSubRule() const {
1573 assert(isSubRule() && "Not a sub-rule");
1574 return Constraint->getValueAsBit("Negated");
1575 }
1576
1577 std::string getSpelling() const {
1578 std::string Result = MetaSubject->getValueAsString("Name");
1579 if (isSubRule()) {
1580 Result += '(';
1581 if (isNegatedSubRule())
1582 Result += "unless(";
1583 Result += getName();
1584 if (isNegatedSubRule())
1585 Result += ')';
1586 Result += ')';
1587 }
1588 return Result;
1589 }
1590
1591 std::string getEnumValueName() const {
1592 std::string Result =
1593 "SubjectMatchRule_" + MetaSubject->getValueAsString("Name");
1594 if (isSubRule()) {
1595 Result += "_";
1596 if (isNegatedSubRule())
1597 Result += "not_";
1598 Result += Constraint->getValueAsString("Name");
1599 }
1600 if (isAbstractRule())
1601 Result += "_abstract";
1602 return Result;
1603 }
1604
1605 std::string getEnumValue() const { return "attr::" + getEnumValueName(); }
1606
1607 static const char *EnumName;
1608};
1609
1610const char *AttributeSubjectMatchRule::EnumName = "attr::SubjectMatchRule";
1611
1612struct PragmaClangAttributeSupport {
1613 std::vector<AttributeSubjectMatchRule> Rules;
1614 llvm::DenseMap<const Record *, AttributeSubjectMatchRule> SubjectsToRules;
1615
1616 PragmaClangAttributeSupport(RecordKeeper &Records);
1617
1618 bool isAttributedSupported(const Record &Attribute);
1619
1620 void emitMatchRuleList(raw_ostream &OS);
1621
1622 std::string generateStrictConformsTo(const Record &Attr, raw_ostream &OS);
1623
1624 void generateParsingHelpers(raw_ostream &OS);
1625};
1626
1627} // end anonymous namespace
1628
1629PragmaClangAttributeSupport::PragmaClangAttributeSupport(
1630 RecordKeeper &Records) {
1631 std::vector<Record *> MetaSubjects =
1632 Records.getAllDerivedDefinitions("AttrSubjectMatcherRule");
1633 auto MapFromSubjectsToRules = [this](const Record *SubjectContainer,
1634 const Record *MetaSubject,
1635 const Record *Constraint = nullptr) {
1636 Rules.emplace_back(MetaSubject, Constraint);
1637 std::vector<Record *> ApplicableSubjects =
1638 SubjectContainer->getValueAsListOfDefs("Subjects");
1639 for (const auto *Subject : ApplicableSubjects) {
1640 bool Inserted =
1641 SubjectsToRules.try_emplace(Subject, MetaSubject, Constraint).second;
1642 if (!Inserted) {
1643 PrintFatalError("Attribute subject match rules should not represent"
1644 "same attribute subjects.");
1645 }
1646 }
1647 };
1648 for (const auto *MetaSubject : MetaSubjects) {
1649 MapFromSubjectsToRules(MetaSubject, MetaSubject);
1650 std::vector<Record *> Constraints =
1651 MetaSubject->getValueAsListOfDefs("Constraints");
1652 for (const auto *Constraint : Constraints)
1653 MapFromSubjectsToRules(Constraint, MetaSubject, Constraint);
1654 }
1655}
1656
1657static PragmaClangAttributeSupport &
1658getPragmaAttributeSupport(RecordKeeper &Records) {
1659 static PragmaClangAttributeSupport Instance(Records);
1660 return Instance;
1661}
1662
1663void PragmaClangAttributeSupport::emitMatchRuleList(raw_ostream &OS) {
1664 OS << "#ifndef ATTR_MATCH_SUB_RULE\n";
1665 OS << "#define ATTR_MATCH_SUB_RULE(Value, Spelling, IsAbstract, Parent, "
1666 "IsNegated) "
1667 << "ATTR_MATCH_RULE(Value, Spelling, IsAbstract)\n";
1668 OS << "#endif\n";
1669 for (const auto &Rule : Rules) {
1670 OS << (Rule.isSubRule() ? "ATTR_MATCH_SUB_RULE" : "ATTR_MATCH_RULE") << '(';
1671 OS << Rule.getEnumValueName() << ", \"" << Rule.getSpelling() << "\", "
1672 << Rule.isAbstractRule();
1673 if (Rule.isSubRule())
1674 OS << ", "
1675 << AttributeSubjectMatchRule(Rule.MetaSubject, nullptr).getEnumValue()
1676 << ", " << Rule.isNegatedSubRule();
1677 OS << ")\n";
1678 }
1679 OS << "#undef ATTR_MATCH_SUB_RULE\n";
1680}
1681
1682bool PragmaClangAttributeSupport::isAttributedSupported(
1683 const Record &Attribute) {
1684 if (Attribute.getValueAsBit("ForcePragmaAttributeSupport"))
1685 return true;
1686 // Opt-out rules:
1687 // FIXME: The documentation check should be moved before
1688 // the ForcePragmaAttributeSupport check after annotate is documented.
1689 // No documentation present.
1690 if (Attribute.isValueUnset("Documentation"))
1691 return false;
1692 std::vector<Record *> Docs = Attribute.getValueAsListOfDefs("Documentation");
1693 if (Docs.empty())
1694 return false;
1695 if (Docs.size() == 1 && Docs[0]->getName() == "Undocumented")
1696 return false;
1697 // An attribute requires delayed parsing (LateParsed is on)
1698 if (Attribute.getValueAsBit("LateParsed"))
1699 return false;
1700 // An attribute has no GNU/CXX11 spelling
1701 if (!hasGNUorCXX11Spelling(Attribute))
1702 return false;
1703 // An attribute subject list has a subject that isn't covered by one of the
1704 // subject match rules or has no subjects at all.
1705 if (Attribute.isValueUnset("Subjects"))
1706 return false;
1707 const Record *SubjectObj = Attribute.getValueAsDef("Subjects");
1708 std::vector<Record *> Subjects = SubjectObj->getValueAsListOfDefs("Subjects");
1709 if (Subjects.empty())
1710 return false;
1711 for (const auto *Subject : Subjects) {
1712 if (SubjectsToRules.find(Subject) == SubjectsToRules.end())
1713 return false;
1714 }
1715 return true;
1716}
1717
1718std::string
1719PragmaClangAttributeSupport::generateStrictConformsTo(const Record &Attr,
1720 raw_ostream &OS) {
1721 if (!isAttributedSupported(Attr))
1722 return "nullptr";
1723 // Generate a function that constructs a set of matching rules that describe
1724 // to which declarations the attribute should apply to.
1725 std::string FnName = "matchRulesFor" + Attr.getName().str();
1726 std::stringstream SS;
1727 SS << "static void " << FnName << "(llvm::SmallVectorImpl<std::pair<"
1728 << AttributeSubjectMatchRule::EnumName
1729 << ", bool>> &MatchRules, const LangOptions &LangOpts) {\n";
1730 if (Attr.isValueUnset("Subjects")) {
1731 SS << "}\n\n";
1732 OS << SS.str();
1733 return FnName;
1734 }
1735 const Record *SubjectObj = Attr.getValueAsDef("Subjects");
1736 std::vector<Record *> Subjects = SubjectObj->getValueAsListOfDefs("Subjects");
1737 for (const auto *Subject : Subjects) {
1738 auto It = SubjectsToRules.find(Subject);
1739 assert(It != SubjectsToRules.end() &&
1740 "This attribute is unsupported by #pragma clang attribute");
1741 AttributeSubjectMatchRule Rule = It->getSecond();
1742 // The rule might be language specific, so only subtract it from the given
1743 // rules if the specific language options are specified.
1744 std::vector<Record *> LangOpts = Rule.getLangOpts();
1745 SS << " MatchRules.push_back(std::make_pair(" << Rule.getEnumValue()
1746 << ", /*IsSupported=*/";
1747 if (!LangOpts.empty()) {
1748 for (auto I = LangOpts.begin(), E = LangOpts.end(); I != E; ++I) {
1749 std::string Part = (*I)->getValueAsString("Name");
1750 if ((*I)->getValueAsBit("Negated"))
1751 SS << "!";
1752 SS << "LangOpts." + Part;
1753 if (I + 1 != E)
1754 SS << " || ";
1755 }
1756 } else
1757 SS << "true";
1758 SS << "));\n";
1759 }
1760 SS << "}\n\n";
1761 OS << SS.str();
1762 return FnName;
1763}
1764
1765void PragmaClangAttributeSupport::generateParsingHelpers(raw_ostream &OS) {
1766 // Generate routines that check the names of sub-rules.
1767 OS << "Optional<attr::SubjectMatchRule> "
1768 "defaultIsAttributeSubjectMatchSubRuleFor(StringRef, bool) {\n";
1769 OS << " return None;\n";
1770 OS << "}\n\n";
1771
1772 std::map<const Record *, std::vector<AttributeSubjectMatchRule>>
1773 SubMatchRules;
1774 for (const auto &Rule : Rules) {
1775 if (!Rule.isSubRule())
1776 continue;
1777 SubMatchRules[Rule.MetaSubject].push_back(Rule);
1778 }
1779
1780 for (const auto &SubMatchRule : SubMatchRules) {
1781 OS << "Optional<attr::SubjectMatchRule> isAttributeSubjectMatchSubRuleFor_"
1782 << SubMatchRule.first->getValueAsString("Name")
1783 << "(StringRef Name, bool IsUnless) {\n";
1784 OS << " if (IsUnless)\n";
1785 OS << " return "
1786 "llvm::StringSwitch<Optional<attr::SubjectMatchRule>>(Name).\n";
1787 for (const auto &Rule : SubMatchRule.second) {
1788 if (Rule.isNegatedSubRule())
1789 OS << " Case(\"" << Rule.getName() << "\", " << Rule.getEnumValue()
1790 << ").\n";
1791 }
1792 OS << " Default(None);\n";
1793 OS << " return "
1794 "llvm::StringSwitch<Optional<attr::SubjectMatchRule>>(Name).\n";
1795 for (const auto &Rule : SubMatchRule.second) {
1796 if (!Rule.isNegatedSubRule())
1797 OS << " Case(\"" << Rule.getName() << "\", " << Rule.getEnumValue()
1798 << ").\n";
1799 }
1800 OS << " Default(None);\n";
1801 OS << "}\n\n";
1802 }
1803
1804 // Generate the function that checks for the top-level rules.
1805 OS << "std::pair<Optional<attr::SubjectMatchRule>, "
1806 "Optional<attr::SubjectMatchRule> (*)(StringRef, "
1807 "bool)> isAttributeSubjectMatchRule(StringRef Name) {\n";
1808 OS << " return "
1809 "llvm::StringSwitch<std::pair<Optional<attr::SubjectMatchRule>, "
1810 "Optional<attr::SubjectMatchRule> (*) (StringRef, "
1811 "bool)>>(Name).\n";
1812 for (const auto &Rule : Rules) {
1813 if (Rule.isSubRule())
1814 continue;
1815 std::string SubRuleFunction;
1816 if (SubMatchRules.count(Rule.MetaSubject))
1817 SubRuleFunction = "isAttributeSubjectMatchSubRuleFor_" + Rule.getName();
1818 else
1819 SubRuleFunction = "defaultIsAttributeSubjectMatchSubRuleFor";
1820 OS << " Case(\"" << Rule.getName() << "\", std::make_pair("
1821 << Rule.getEnumValue() << ", " << SubRuleFunction << ")).\n";
1822 }
1823 OS << " Default(std::make_pair(None, "
1824 "defaultIsAttributeSubjectMatchSubRuleFor));\n";
1825 OS << "}\n\n";
1826
1827 // Generate the function that checks for the submatch rules.
1828 OS << "const char *validAttributeSubjectMatchSubRules("
1829 << AttributeSubjectMatchRule::EnumName << " Rule) {\n";
1830 OS << " switch (Rule) {\n";
1831 for (const auto &SubMatchRule : SubMatchRules) {
1832 OS << " case "
1833 << AttributeSubjectMatchRule(SubMatchRule.first, nullptr).getEnumValue()
1834 << ":\n";
1835 OS << " return \"'";
1836 bool IsFirst = true;
1837 for (const auto &Rule : SubMatchRule.second) {
1838 if (!IsFirst)
1839 OS << ", '";
1840 IsFirst = false;
1841 if (Rule.isNegatedSubRule())
1842 OS << "unless(";
1843 OS << Rule.getName();
1844 if (Rule.isNegatedSubRule())
1845 OS << ')';
1846 OS << "'";
1847 }
1848 OS << "\";\n";
1849 }
1850 OS << " default: return nullptr;\n";
1851 OS << " }\n";
1852 OS << "}\n\n";
1853}
1854
George Burgess IV1881a572016-12-01 00:13:18 +00001855template <typename Fn>
1856static void forEachUniqueSpelling(const Record &Attr, Fn &&F) {
1857 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(Attr);
1858 SmallDenseSet<StringRef, 8> Seen;
1859 for (const FlattenedSpelling &S : Spellings) {
1860 if (Seen.insert(S.name()).second)
1861 F(S);
1862 }
1863}
1864
Aaron Ballman35db2b32014-01-29 22:13:45 +00001865/// \brief Emits the first-argument-is-type property for attributes.
1866static void emitClangAttrTypeArgList(RecordKeeper &Records, raw_ostream &OS) {
1867 OS << "#if defined(CLANG_ATTR_TYPE_ARG_LIST)\n";
1868 std::vector<Record *> Attrs = Records.getAllDerivedDefinitions("Attr");
1869
Aaron Ballman2f22b942014-05-20 19:47:14 +00001870 for (const auto *Attr : Attrs) {
Aaron Ballman35db2b32014-01-29 22:13:45 +00001871 // Determine whether the first argument is a type.
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00001872 std::vector<Record *> Args = Attr->getValueAsListOfDefs("Args");
Aaron Ballman35db2b32014-01-29 22:13:45 +00001873 if (Args.empty())
1874 continue;
1875
Craig Topper25761242016-01-18 19:52:54 +00001876 if (Args[0]->getSuperClasses().back().first->getName() != "TypeArgument")
Aaron Ballman35db2b32014-01-29 22:13:45 +00001877 continue;
1878
1879 // All these spellings take a single type argument.
George Burgess IV1881a572016-12-01 00:13:18 +00001880 forEachUniqueSpelling(*Attr, [&](const FlattenedSpelling &S) {
1881 OS << ".Case(\"" << S.name() << "\", " << "true" << ")\n";
1882 });
Aaron Ballman35db2b32014-01-29 22:13:45 +00001883 }
1884 OS << "#endif // CLANG_ATTR_TYPE_ARG_LIST\n\n";
1885}
1886
1887/// \brief Emits the parse-arguments-in-unevaluated-context property for
1888/// attributes.
1889static void emitClangAttrArgContextList(RecordKeeper &Records, raw_ostream &OS) {
1890 OS << "#if defined(CLANG_ATTR_ARG_CONTEXT_LIST)\n";
1891 ParsedAttrMap Attrs = getParsedAttrList(Records);
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00001892 for (const auto &I : Attrs) {
1893 const Record &Attr = *I.second;
Aaron Ballman35db2b32014-01-29 22:13:45 +00001894
1895 if (!Attr.getValueAsBit("ParseArgumentsAsUnevaluated"))
1896 continue;
1897
1898 // All these spellings take are parsed unevaluated.
George Burgess IV1881a572016-12-01 00:13:18 +00001899 forEachUniqueSpelling(Attr, [&](const FlattenedSpelling &S) {
1900 OS << ".Case(\"" << S.name() << "\", " << "true" << ")\n";
1901 });
Aaron Ballman35db2b32014-01-29 22:13:45 +00001902 }
1903 OS << "#endif // CLANG_ATTR_ARG_CONTEXT_LIST\n\n";
1904}
1905
1906static bool isIdentifierArgument(Record *Arg) {
1907 return !Arg->getSuperClasses().empty() &&
Craig Topper25761242016-01-18 19:52:54 +00001908 llvm::StringSwitch<bool>(Arg->getSuperClasses().back().first->getName())
Aaron Ballman35db2b32014-01-29 22:13:45 +00001909 .Case("IdentifierArgument", true)
1910 .Case("EnumArgument", true)
Aaron Ballman55ef1512014-12-19 16:42:04 +00001911 .Case("VariadicEnumArgument", true)
Aaron Ballman35db2b32014-01-29 22:13:45 +00001912 .Default(false);
1913}
1914
1915// Emits the first-argument-is-identifier property for attributes.
1916static void emitClangAttrIdentifierArgList(RecordKeeper &Records, raw_ostream &OS) {
1917 OS << "#if defined(CLANG_ATTR_IDENTIFIER_ARG_LIST)\n";
1918 std::vector<Record*> Attrs = Records.getAllDerivedDefinitions("Attr");
1919
Aaron Ballman2f22b942014-05-20 19:47:14 +00001920 for (const auto *Attr : Attrs) {
Aaron Ballman35db2b32014-01-29 22:13:45 +00001921 // Determine whether the first argument is an identifier.
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00001922 std::vector<Record *> Args = Attr->getValueAsListOfDefs("Args");
Aaron Ballman35db2b32014-01-29 22:13:45 +00001923 if (Args.empty() || !isIdentifierArgument(Args[0]))
1924 continue;
1925
1926 // All these spellings take an identifier argument.
George Burgess IV1881a572016-12-01 00:13:18 +00001927 forEachUniqueSpelling(*Attr, [&](const FlattenedSpelling &S) {
1928 OS << ".Case(\"" << S.name() << "\", " << "true" << ")\n";
1929 });
Aaron Ballman35db2b32014-01-29 22:13:45 +00001930 }
1931 OS << "#endif // CLANG_ATTR_IDENTIFIER_ARG_LIST\n\n";
1932}
1933
Jakob Stoklund Olesen995e0e12012-06-13 05:12:41 +00001934namespace clang {
1935
1936// Emits the class definitions for attributes.
1937void EmitClangAttrClass(RecordKeeper &Records, raw_ostream &OS) {
Dmitri Gribenko6b11fca2013-01-30 21:54:20 +00001938 emitSourceFileHeader("Attribute classes' definitions", OS);
1939
Peter Collingbournebee583f2011-10-06 13:03:08 +00001940 OS << "#ifndef LLVM_CLANG_ATTR_CLASSES_INC\n";
1941 OS << "#define LLVM_CLANG_ATTR_CLASSES_INC\n\n";
1942
1943 std::vector<Record*> Attrs = Records.getAllDerivedDefinitions("Attr");
1944
Aaron Ballman2f22b942014-05-20 19:47:14 +00001945 for (const auto *Attr : Attrs) {
1946 const Record &R = *Attr;
Aaron Ballman06bd44b2014-02-17 18:23:02 +00001947
1948 // FIXME: Currently, documentation is generated as-needed due to the fact
1949 // that there is no way to allow a generated project "reach into" the docs
1950 // directory (for instance, it may be an out-of-tree build). However, we want
1951 // to ensure that every attribute has a Documentation field, and produce an
1952 // error if it has been neglected. Otherwise, the on-demand generation which
1953 // happens server-side will fail. This code is ensuring that functionality,
1954 // even though this Emitter doesn't technically need the documentation.
1955 // When attribute documentation can be generated as part of the build
1956 // itself, this code can be removed.
1957 (void)R.getValueAsListOfDefs("Documentation");
Douglas Gregorb2daf842012-05-02 15:56:52 +00001958
1959 if (!R.getValueAsBit("ASTNode"))
1960 continue;
1961
Craig Topper25761242016-01-18 19:52:54 +00001962 ArrayRef<std::pair<Record *, SMRange>> Supers = R.getSuperClasses();
Aaron Ballman0979e9e2013-07-30 01:44:15 +00001963 assert(!Supers.empty() && "Forgot to specify a superclass for the attr");
Aaron Ballman0979e9e2013-07-30 01:44:15 +00001964 std::string SuperName;
David Majnemerf7e36092016-06-23 00:15:04 +00001965 for (const auto &Super : llvm::reverse(Supers)) {
Craig Topper25761242016-01-18 19:52:54 +00001966 const Record *R = Super.first;
1967 if (R->getName() != "TargetSpecificAttr" && SuperName.empty())
1968 SuperName = R->getName();
Aaron Ballman0979e9e2013-07-30 01:44:15 +00001969 }
Peter Collingbournebee583f2011-10-06 13:03:08 +00001970
1971 OS << "class " << R.getName() << "Attr : public " << SuperName << " {\n";
1972
1973 std::vector<Record*> ArgRecords = R.getValueAsListOfDefs("Args");
Aaron Ballman8f1439b2014-03-05 16:49:55 +00001974 std::vector<std::unique_ptr<Argument>> Args;
Peter Collingbournebee583f2011-10-06 13:03:08 +00001975 Args.reserve(ArgRecords.size());
1976
John McCalla62c1a92015-10-28 00:17:34 +00001977 bool HasOptArg = false;
1978 bool HasFakeArg = false;
Aaron Ballman2f22b942014-05-20 19:47:14 +00001979 for (const auto *ArgRecord : ArgRecords) {
Aaron Ballman8f1439b2014-03-05 16:49:55 +00001980 Args.emplace_back(createArgument(*ArgRecord, R.getName()));
1981 Args.back()->writeDeclarations(OS);
Peter Collingbournebee583f2011-10-06 13:03:08 +00001982 OS << "\n\n";
John McCalla62c1a92015-10-28 00:17:34 +00001983
1984 // For these purposes, fake takes priority over optional.
1985 if (Args.back()->isFake()) {
1986 HasFakeArg = true;
1987 } else if (Args.back()->isOptional()) {
1988 HasOptArg = true;
1989 }
Peter Collingbournebee583f2011-10-06 13:03:08 +00001990 }
1991
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00001992 OS << "public:\n";
Aaron Ballman36a53502014-01-16 13:03:14 +00001993
Aaron Ballmanc669cc02014-01-27 22:10:04 +00001994 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(R);
Aaron Ballman36a53502014-01-16 13:03:14 +00001995
1996 // If there are zero or one spellings, all spelling-related functionality
1997 // can be elided. If all of the spellings share the same name, the spelling
1998 // functionality can also be elided.
1999 bool ElideSpelling = (Spellings.size() <= 1) ||
2000 SpellingNamesAreCommon(Spellings);
2001
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00002002 // This maps spelling index values to semantic Spelling enumerants.
2003 SemanticSpellingMap SemanticToSyntacticMap;
Aaron Ballman36a53502014-01-16 13:03:14 +00002004
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00002005 if (!ElideSpelling)
2006 OS << CreateSemanticSpellings(Spellings, SemanticToSyntacticMap);
Aaron Ballman36a53502014-01-16 13:03:14 +00002007
John McCalla62c1a92015-10-28 00:17:34 +00002008 // Emit CreateImplicit factory methods.
2009 auto emitCreateImplicit = [&](bool emitFake) {
2010 OS << " static " << R.getName() << "Attr *CreateImplicit(";
2011 OS << "ASTContext &Ctx";
2012 if (!ElideSpelling)
2013 OS << ", Spelling S";
2014 for (auto const &ai : Args) {
2015 if (ai->isFake() && !emitFake) continue;
2016 OS << ", ";
2017 ai->writeCtorParameters(OS);
2018 }
2019 OS << ", SourceRange Loc = SourceRange()";
2020 OS << ") {\n";
Eugene Zelenko5f02b772015-12-08 18:49:01 +00002021 OS << " auto *A = new (Ctx) " << R.getName();
John McCalla62c1a92015-10-28 00:17:34 +00002022 OS << "Attr(Loc, Ctx, ";
2023 for (auto const &ai : Args) {
2024 if (ai->isFake() && !emitFake) continue;
2025 ai->writeImplicitCtorArgs(OS);
2026 OS << ", ";
2027 }
2028 OS << (ElideSpelling ? "0" : "S") << ");\n";
2029 OS << " A->setImplicit(true);\n";
2030 OS << " return A;\n }\n\n";
2031 };
Aaron Ballman36a53502014-01-16 13:03:14 +00002032
John McCalla62c1a92015-10-28 00:17:34 +00002033 // Emit a CreateImplicit that takes all the arguments.
2034 emitCreateImplicit(true);
2035
2036 // Emit a CreateImplicit that takes all the non-fake arguments.
2037 if (HasFakeArg) {
2038 emitCreateImplicit(false);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002039 }
Michael Han99315932013-01-24 16:46:58 +00002040
John McCalla62c1a92015-10-28 00:17:34 +00002041 // Emit constructors.
2042 auto emitCtor = [&](bool emitOpt, bool emitFake) {
2043 auto shouldEmitArg = [=](const std::unique_ptr<Argument> &arg) {
2044 if (arg->isFake()) return emitFake;
2045 if (arg->isOptional()) return emitOpt;
2046 return true;
2047 };
Michael Han99315932013-01-24 16:46:58 +00002048
Aaron Ballman8ee40b72013-09-09 23:33:17 +00002049 OS << " " << R.getName() << "Attr(SourceRange R, ASTContext &Ctx\n";
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002050 for (auto const &ai : Args) {
John McCalla62c1a92015-10-28 00:17:34 +00002051 if (!shouldEmitArg(ai)) continue;
2052 OS << " , ";
2053 ai->writeCtorParameters(OS);
2054 OS << "\n";
Aaron Ballman8ee40b72013-09-09 23:33:17 +00002055 }
2056
2057 OS << " , ";
Aaron Ballman36a53502014-01-16 13:03:14 +00002058 OS << "unsigned SI\n";
Aaron Ballman8ee40b72013-09-09 23:33:17 +00002059
2060 OS << " )\n";
Benjamin Kramer845e32c2015-03-19 16:06:49 +00002061 OS << " : " << SuperName << "(attr::" << R.getName() << ", R, SI, "
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00002062 << ( R.getValueAsBit("LateParsed") ? "true" : "false" ) << ", "
2063 << ( R.getValueAsBit("DuplicatesAllowedWhileMerging") ? "true" : "false" ) << ")\n";
Aaron Ballman8ee40b72013-09-09 23:33:17 +00002064
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002065 for (auto const &ai : Args) {
Aaron Ballman8ee40b72013-09-09 23:33:17 +00002066 OS << " , ";
John McCalla62c1a92015-10-28 00:17:34 +00002067 if (!shouldEmitArg(ai)) {
2068 ai->writeCtorDefaultInitializers(OS);
2069 } else {
2070 ai->writeCtorInitializers(OS);
2071 }
Aaron Ballman8ee40b72013-09-09 23:33:17 +00002072 OS << "\n";
2073 }
2074
2075 OS << " {\n";
2076
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002077 for (auto const &ai : Args) {
John McCalla62c1a92015-10-28 00:17:34 +00002078 if (!shouldEmitArg(ai)) continue;
2079 ai->writeCtorBody(OS);
Aaron Ballman8ee40b72013-09-09 23:33:17 +00002080 }
2081 OS << " }\n\n";
John McCalla62c1a92015-10-28 00:17:34 +00002082 };
2083
2084 // Emit a constructor that includes all the arguments.
2085 // This is necessary for cloning.
2086 emitCtor(true, true);
2087
2088 // Emit a constructor that takes all the non-fake arguments.
2089 if (HasFakeArg) {
2090 emitCtor(true, false);
2091 }
2092
2093 // Emit a constructor that takes all the non-fake, non-optional arguments.
2094 if (HasOptArg) {
2095 emitCtor(false, false);
Aaron Ballman8ee40b72013-09-09 23:33:17 +00002096 }
2097
Benjamin Kramer845e32c2015-03-19 16:06:49 +00002098 OS << " " << R.getName() << "Attr *clone(ASTContext &C) const;\n";
Craig Toppercbce6e92014-03-11 06:22:39 +00002099 OS << " void printPretty(raw_ostream &OS,\n"
Benjamin Kramer845e32c2015-03-19 16:06:49 +00002100 << " const PrintingPolicy &Policy) const;\n";
2101 OS << " const char *getSpelling() const;\n";
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00002102
2103 if (!ElideSpelling) {
2104 assert(!SemanticToSyntacticMap.empty() && "Empty semantic mapping list");
2105 OS << " Spelling getSemanticSpelling() const {\n";
2106 WriteSemanticSpellingSwitch("SpellingListIndex", SemanticToSyntacticMap,
2107 OS);
2108 OS << " }\n";
2109 }
Peter Collingbournebee583f2011-10-06 13:03:08 +00002110
Michael Hanaf02bbe2013-02-01 01:19:17 +00002111 writeAttrAccessorDefinition(R, OS);
2112
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002113 for (auto const &ai : Args) {
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00002114 ai->writeAccessors(OS);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002115 OS << "\n\n";
Aaron Ballman682ee422013-09-11 19:47:58 +00002116
John McCalla62c1a92015-10-28 00:17:34 +00002117 // Don't write conversion routines for fake arguments.
2118 if (ai->isFake()) continue;
2119
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00002120 if (ai->isEnumArg())
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002121 static_cast<const EnumArgument *>(ai.get())->writeConversion(OS);
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00002122 else if (ai->isVariadicEnumArg())
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002123 static_cast<const VariadicEnumArgument *>(ai.get())
2124 ->writeConversion(OS);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002125 }
2126
Jakob Stoklund Olesen6f2288b62012-01-13 04:57:47 +00002127 OS << R.getValueAsString("AdditionalMembers");
Peter Collingbournebee583f2011-10-06 13:03:08 +00002128 OS << "\n\n";
2129
2130 OS << " static bool classof(const Attr *A) { return A->getKind() == "
2131 << "attr::" << R.getName() << "; }\n";
DeLesley Hutchins30398dd2012-01-20 22:50:54 +00002132
Peter Collingbournebee583f2011-10-06 13:03:08 +00002133 OS << "};\n\n";
2134 }
2135
Eugene Zelenko5f02b772015-12-08 18:49:01 +00002136 OS << "#endif // LLVM_CLANG_ATTR_CLASSES_INC\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +00002137}
2138
Jakob Stoklund Olesen995e0e12012-06-13 05:12:41 +00002139// Emits the class method definitions for attributes.
2140void EmitClangAttrImpl(RecordKeeper &Records, raw_ostream &OS) {
Dmitri Gribenko6b11fca2013-01-30 21:54:20 +00002141 emitSourceFileHeader("Attribute classes' member function definitions", OS);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002142
2143 std::vector<Record*> Attrs = Records.getAllDerivedDefinitions("Attr");
Peter Collingbournebee583f2011-10-06 13:03:08 +00002144
Aaron Ballman2f22b942014-05-20 19:47:14 +00002145 for (auto *Attr : Attrs) {
2146 Record &R = *Attr;
Douglas Gregorb2daf842012-05-02 15:56:52 +00002147
2148 if (!R.getValueAsBit("ASTNode"))
2149 continue;
Peter Collingbournebee583f2011-10-06 13:03:08 +00002150
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002151 std::vector<Record*> ArgRecords = R.getValueAsListOfDefs("Args");
2152 std::vector<std::unique_ptr<Argument>> Args;
Aaron Ballman2f22b942014-05-20 19:47:14 +00002153 for (const auto *Arg : ArgRecords)
2154 Args.emplace_back(createArgument(*Arg, R.getName()));
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002155
2156 for (auto const &ai : Args)
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00002157 ai->writeAccessorDefinitions(OS);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002158
2159 OS << R.getName() << "Attr *" << R.getName()
2160 << "Attr::clone(ASTContext &C) const {\n";
Hans Wennborg613807b2014-05-31 01:30:30 +00002161 OS << " auto *A = new (C) " << R.getName() << "Attr(getLocation(), C";
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002162 for (auto const &ai : Args) {
Peter Collingbournebee583f2011-10-06 13:03:08 +00002163 OS << ", ";
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00002164 ai->writeCloneArgs(OS);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002165 }
Hans Wennborg613807b2014-05-31 01:30:30 +00002166 OS << ", getSpellingListIndex());\n";
2167 OS << " A->Inherited = Inherited;\n";
2168 OS << " A->IsPackExpansion = IsPackExpansion;\n";
2169 OS << " A->Implicit = Implicit;\n";
2170 OS << " return A;\n}\n\n";
Douglas Gregor49ccfaa2011-11-19 19:22:57 +00002171
Michael Han99315932013-01-24 16:46:58 +00002172 writePrettyPrintFunction(R, Args, OS);
Aaron Ballman3e424b52013-12-26 18:30:57 +00002173 writeGetSpellingFunction(R, OS);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002174 }
Benjamin Kramer845e32c2015-03-19 16:06:49 +00002175
2176 // Instead of relying on virtual dispatch we just create a huge dispatch
2177 // switch. This is both smaller and faster than virtual functions.
2178 auto EmitFunc = [&](const char *Method) {
2179 OS << " switch (getKind()) {\n";
2180 for (const auto *Attr : Attrs) {
2181 const Record &R = *Attr;
2182 if (!R.getValueAsBit("ASTNode"))
2183 continue;
2184
2185 OS << " case attr::" << R.getName() << ":\n";
2186 OS << " return cast<" << R.getName() << "Attr>(this)->" << Method
2187 << ";\n";
2188 }
Benjamin Kramer845e32c2015-03-19 16:06:49 +00002189 OS << " }\n";
2190 OS << " llvm_unreachable(\"Unexpected attribute kind!\");\n";
2191 OS << "}\n\n";
2192 };
2193
2194 OS << "const char *Attr::getSpelling() const {\n";
2195 EmitFunc("getSpelling()");
2196
2197 OS << "Attr *Attr::clone(ASTContext &C) const {\n";
2198 EmitFunc("clone(C)");
2199
2200 OS << "void Attr::printPretty(raw_ostream &OS, "
2201 "const PrintingPolicy &Policy) const {\n";
2202 EmitFunc("printPretty(OS, Policy)");
Peter Collingbournebee583f2011-10-06 13:03:08 +00002203}
2204
Jakob Stoklund Olesen995e0e12012-06-13 05:12:41 +00002205} // end namespace clang
2206
John McCall2225c8b2016-03-01 00:18:05 +00002207static void emitAttrList(raw_ostream &OS, StringRef Class,
Peter Collingbournebee583f2011-10-06 13:03:08 +00002208 const std::vector<Record*> &AttrList) {
John McCall2225c8b2016-03-01 00:18:05 +00002209 for (auto Cur : AttrList) {
2210 OS << Class << "(" << Cur->getName() << ")\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +00002211 }
2212}
2213
Tyler Nowickic724a83e2014-10-12 20:46:07 +00002214// Determines if an attribute has a Pragma spelling.
2215static bool AttrHasPragmaSpelling(const Record *R) {
2216 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(*R);
George Burgess IV1881a572016-12-01 00:13:18 +00002217 return llvm::find_if(Spellings, [](const FlattenedSpelling &S) {
Tyler Nowickic724a83e2014-10-12 20:46:07 +00002218 return S.variety() == "Pragma";
2219 }) != Spellings.end();
2220}
Jakob Stoklund Olesen995e0e12012-06-13 05:12:41 +00002221
John McCall2225c8b2016-03-01 00:18:05 +00002222namespace {
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00002223
John McCall2225c8b2016-03-01 00:18:05 +00002224 struct AttrClassDescriptor {
2225 const char * const MacroName;
2226 const char * const TableGenName;
2227 };
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00002228
2229} // end anonymous namespace
John McCall2225c8b2016-03-01 00:18:05 +00002230
2231static const AttrClassDescriptor AttrClassDescriptors[] = {
2232 { "ATTR", "Attr" },
Richard Smith4f902c72016-03-08 00:32:55 +00002233 { "STMT_ATTR", "StmtAttr" },
John McCall2225c8b2016-03-01 00:18:05 +00002234 { "INHERITABLE_ATTR", "InheritableAttr" },
John McCall477f2bb2016-03-03 06:39:32 +00002235 { "INHERITABLE_PARAM_ATTR", "InheritableParamAttr" },
2236 { "PARAMETER_ABI_ATTR", "ParameterABIAttr" }
John McCall2225c8b2016-03-01 00:18:05 +00002237};
2238
2239static void emitDefaultDefine(raw_ostream &OS, StringRef name,
2240 const char *superName) {
2241 OS << "#ifndef " << name << "\n";
2242 OS << "#define " << name << "(NAME) ";
2243 if (superName) OS << superName << "(NAME)";
2244 OS << "\n#endif\n\n";
2245}
2246
2247namespace {
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00002248
John McCall2225c8b2016-03-01 00:18:05 +00002249 /// A class of attributes.
2250 struct AttrClass {
2251 const AttrClassDescriptor &Descriptor;
2252 Record *TheRecord;
2253 AttrClass *SuperClass = nullptr;
2254 std::vector<AttrClass*> SubClasses;
2255 std::vector<Record*> Attrs;
2256
2257 AttrClass(const AttrClassDescriptor &Descriptor, Record *R)
2258 : Descriptor(Descriptor), TheRecord(R) {}
2259
2260 void emitDefaultDefines(raw_ostream &OS) const {
2261 // Default the macro unless this is a root class (i.e. Attr).
2262 if (SuperClass) {
2263 emitDefaultDefine(OS, Descriptor.MacroName,
2264 SuperClass->Descriptor.MacroName);
2265 }
2266 }
2267
2268 void emitUndefs(raw_ostream &OS) const {
2269 OS << "#undef " << Descriptor.MacroName << "\n";
2270 }
2271
2272 void emitAttrList(raw_ostream &OS) const {
2273 for (auto SubClass : SubClasses) {
2274 SubClass->emitAttrList(OS);
2275 }
2276
2277 ::emitAttrList(OS, Descriptor.MacroName, Attrs);
2278 }
2279
2280 void classifyAttrOnRoot(Record *Attr) {
2281 bool result = classifyAttr(Attr);
2282 assert(result && "failed to classify on root"); (void) result;
2283 }
2284
2285 void emitAttrRange(raw_ostream &OS) const {
2286 OS << "ATTR_RANGE(" << Descriptor.TableGenName
2287 << ", " << getFirstAttr()->getName()
2288 << ", " << getLastAttr()->getName() << ")\n";
2289 }
2290
2291 private:
2292 bool classifyAttr(Record *Attr) {
2293 // Check all the subclasses.
2294 for (auto SubClass : SubClasses) {
2295 if (SubClass->classifyAttr(Attr))
2296 return true;
2297 }
2298
2299 // It's not more specific than this class, but it might still belong here.
2300 if (Attr->isSubClassOf(TheRecord)) {
2301 Attrs.push_back(Attr);
2302 return true;
2303 }
2304
2305 return false;
2306 }
2307
2308 Record *getFirstAttr() const {
2309 if (!SubClasses.empty())
2310 return SubClasses.front()->getFirstAttr();
2311 return Attrs.front();
2312 }
2313
2314 Record *getLastAttr() const {
2315 if (!Attrs.empty())
2316 return Attrs.back();
2317 return SubClasses.back()->getLastAttr();
2318 }
2319 };
2320
2321 /// The entire hierarchy of attribute classes.
2322 class AttrClassHierarchy {
2323 std::vector<std::unique_ptr<AttrClass>> Classes;
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00002324
John McCall2225c8b2016-03-01 00:18:05 +00002325 public:
2326 AttrClassHierarchy(RecordKeeper &Records) {
2327 // Find records for all the classes.
2328 for (auto &Descriptor : AttrClassDescriptors) {
2329 Record *ClassRecord = Records.getClass(Descriptor.TableGenName);
2330 AttrClass *Class = new AttrClass(Descriptor, ClassRecord);
2331 Classes.emplace_back(Class);
2332 }
2333
2334 // Link up the hierarchy.
2335 for (auto &Class : Classes) {
2336 if (AttrClass *SuperClass = findSuperClass(Class->TheRecord)) {
2337 Class->SuperClass = SuperClass;
2338 SuperClass->SubClasses.push_back(Class.get());
2339 }
2340 }
2341
2342#ifndef NDEBUG
2343 for (auto i = Classes.begin(), e = Classes.end(); i != e; ++i) {
2344 assert((i == Classes.begin()) == ((*i)->SuperClass == nullptr) &&
2345 "only the first class should be a root class!");
2346 }
2347#endif
2348 }
2349
2350 void emitDefaultDefines(raw_ostream &OS) const {
2351 for (auto &Class : Classes) {
2352 Class->emitDefaultDefines(OS);
2353 }
2354 }
2355
2356 void emitUndefs(raw_ostream &OS) const {
2357 for (auto &Class : Classes) {
2358 Class->emitUndefs(OS);
2359 }
2360 }
2361
2362 void emitAttrLists(raw_ostream &OS) const {
2363 // Just start from the root class.
2364 Classes[0]->emitAttrList(OS);
2365 }
2366
2367 void emitAttrRanges(raw_ostream &OS) const {
2368 for (auto &Class : Classes)
2369 Class->emitAttrRange(OS);
2370 }
2371
2372 void classifyAttr(Record *Attr) {
2373 // Add the attribute to the root class.
2374 Classes[0]->classifyAttrOnRoot(Attr);
2375 }
2376
2377 private:
2378 AttrClass *findClassByRecord(Record *R) const {
2379 for (auto &Class : Classes) {
2380 if (Class->TheRecord == R)
2381 return Class.get();
2382 }
2383 return nullptr;
2384 }
2385
2386 AttrClass *findSuperClass(Record *R) const {
2387 // TableGen flattens the superclass list, so we just need to walk it
2388 // in reverse.
2389 auto SuperClasses = R->getSuperClasses();
2390 for (signed i = 0, e = SuperClasses.size(); i != e; ++i) {
2391 auto SuperClass = findClassByRecord(SuperClasses[e - i - 1].first);
2392 if (SuperClass) return SuperClass;
2393 }
2394 return nullptr;
2395 }
2396 };
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00002397
2398} // end anonymous namespace
John McCall2225c8b2016-03-01 00:18:05 +00002399
Tyler Nowickic724a83e2014-10-12 20:46:07 +00002400namespace clang {
Eugene Zelenkoa9f3e902016-05-12 22:27:08 +00002401
Jakob Stoklund Olesen995e0e12012-06-13 05:12:41 +00002402// Emits the enumeration list for attributes.
2403void EmitClangAttrList(RecordKeeper &Records, raw_ostream &OS) {
Dmitri Gribenko6b11fca2013-01-30 21:54:20 +00002404 emitSourceFileHeader("List of all attributes that Clang recognizes", OS);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002405
John McCall2225c8b2016-03-01 00:18:05 +00002406 AttrClassHierarchy Hierarchy(Records);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002407
John McCall2225c8b2016-03-01 00:18:05 +00002408 // Add defaulting macro definitions.
2409 Hierarchy.emitDefaultDefines(OS);
2410 emitDefaultDefine(OS, "PRAGMA_SPELLING_ATTR", nullptr);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002411
John McCall2225c8b2016-03-01 00:18:05 +00002412 std::vector<Record *> Attrs = Records.getAllDerivedDefinitions("Attr");
2413 std::vector<Record *> PragmaAttrs;
Aaron Ballman2f22b942014-05-20 19:47:14 +00002414 for (auto *Attr : Attrs) {
2415 if (!Attr->getValueAsBit("ASTNode"))
Douglas Gregorb2daf842012-05-02 15:56:52 +00002416 continue;
Tyler Nowickic724a83e2014-10-12 20:46:07 +00002417
John McCall2225c8b2016-03-01 00:18:05 +00002418 // Add the attribute to the ad-hoc groups.
Tyler Nowickic724a83e2014-10-12 20:46:07 +00002419 if (AttrHasPragmaSpelling(Attr))
2420 PragmaAttrs.push_back(Attr);
2421
John McCall2225c8b2016-03-01 00:18:05 +00002422 // Place it in the hierarchy.
2423 Hierarchy.classifyAttr(Attr);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002424 }
2425
John McCall2225c8b2016-03-01 00:18:05 +00002426 // Emit the main attribute list.
2427 Hierarchy.emitAttrLists(OS);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002428
John McCall2225c8b2016-03-01 00:18:05 +00002429 // Emit the ad hoc groups.
2430 emitAttrList(OS, "PRAGMA_SPELLING_ATTR", PragmaAttrs);
2431
2432 // Emit the attribute ranges.
2433 OS << "#ifdef ATTR_RANGE\n";
2434 Hierarchy.emitAttrRanges(OS);
2435 OS << "#undef ATTR_RANGE\n";
2436 OS << "#endif\n";
2437
2438 Hierarchy.emitUndefs(OS);
Tyler Nowickic724a83e2014-10-12 20:46:07 +00002439 OS << "#undef PRAGMA_SPELLING_ATTR\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +00002440}
2441
Alex Lorenz9e7bf162017-04-18 14:33:39 +00002442// Emits the enumeration list for attributes.
2443void EmitClangAttrSubjectMatchRuleList(RecordKeeper &Records, raw_ostream &OS) {
2444 emitSourceFileHeader(
2445 "List of all attribute subject matching rules that Clang recognizes", OS);
2446 PragmaClangAttributeSupport &PragmaAttributeSupport =
2447 getPragmaAttributeSupport(Records);
2448 emitDefaultDefine(OS, "ATTR_MATCH_RULE", nullptr);
2449 PragmaAttributeSupport.emitMatchRuleList(OS);
2450 OS << "#undef ATTR_MATCH_RULE\n";
2451}
2452
Jakob Stoklund Olesen995e0e12012-06-13 05:12:41 +00002453// Emits the code to read an attribute from a precompiled header.
2454void EmitClangAttrPCHRead(RecordKeeper &Records, raw_ostream &OS) {
Dmitri Gribenko6b11fca2013-01-30 21:54:20 +00002455 emitSourceFileHeader("Attribute deserialization code", OS);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002456
2457 Record *InhClass = Records.getClass("InheritableAttr");
2458 std::vector<Record*> Attrs = Records.getAllDerivedDefinitions("Attr"),
2459 ArgRecords;
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002460 std::vector<std::unique_ptr<Argument>> Args;
Peter Collingbournebee583f2011-10-06 13:03:08 +00002461
2462 OS << " switch (Kind) {\n";
Aaron Ballman2f22b942014-05-20 19:47:14 +00002463 for (const auto *Attr : Attrs) {
2464 const Record &R = *Attr;
Douglas Gregorb2daf842012-05-02 15:56:52 +00002465 if (!R.getValueAsBit("ASTNode"))
2466 continue;
2467
Peter Collingbournebee583f2011-10-06 13:03:08 +00002468 OS << " case attr::" << R.getName() << ": {\n";
2469 if (R.isSubClassOf(InhClass))
David L. Jones267b8842017-01-24 01:04:30 +00002470 OS << " bool isInherited = Record.readInt();\n";
2471 OS << " bool isImplicit = Record.readInt();\n";
2472 OS << " unsigned Spelling = Record.readInt();\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +00002473 ArgRecords = R.getValueAsListOfDefs("Args");
2474 Args.clear();
Aaron Ballman2f22b942014-05-20 19:47:14 +00002475 for (const auto *Arg : ArgRecords) {
2476 Args.emplace_back(createArgument(*Arg, R.getName()));
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002477 Args.back()->writePCHReadDecls(OS);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002478 }
2479 OS << " New = new (Context) " << R.getName() << "Attr(Range, Context";
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002480 for (auto const &ri : Args) {
Peter Collingbournebee583f2011-10-06 13:03:08 +00002481 OS << ", ";
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00002482 ri->writePCHReadArgs(OS);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002483 }
Aaron Ballman36a53502014-01-16 13:03:14 +00002484 OS << ", Spelling);\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +00002485 if (R.isSubClassOf(InhClass))
2486 OS << " cast<InheritableAttr>(New)->setInherited(isInherited);\n";
Aaron Ballman36a53502014-01-16 13:03:14 +00002487 OS << " New->setImplicit(isImplicit);\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +00002488 OS << " break;\n";
2489 OS << " }\n";
2490 }
2491 OS << " }\n";
2492}
2493
Jakob Stoklund Olesen995e0e12012-06-13 05:12:41 +00002494// Emits the code to write an attribute to a precompiled header.
2495void EmitClangAttrPCHWrite(RecordKeeper &Records, raw_ostream &OS) {
Dmitri Gribenko6b11fca2013-01-30 21:54:20 +00002496 emitSourceFileHeader("Attribute serialization code", OS);
2497
Peter Collingbournebee583f2011-10-06 13:03:08 +00002498 Record *InhClass = Records.getClass("InheritableAttr");
2499 std::vector<Record*> Attrs = Records.getAllDerivedDefinitions("Attr"), Args;
Peter Collingbournebee583f2011-10-06 13:03:08 +00002500
2501 OS << " switch (A->getKind()) {\n";
Aaron Ballman2f22b942014-05-20 19:47:14 +00002502 for (const auto *Attr : Attrs) {
2503 const Record &R = *Attr;
Douglas Gregorb2daf842012-05-02 15:56:52 +00002504 if (!R.getValueAsBit("ASTNode"))
2505 continue;
Peter Collingbournebee583f2011-10-06 13:03:08 +00002506 OS << " case attr::" << R.getName() << ": {\n";
2507 Args = R.getValueAsListOfDefs("Args");
2508 if (R.isSubClassOf(InhClass) || !Args.empty())
Eugene Zelenko5f02b772015-12-08 18:49:01 +00002509 OS << " const auto *SA = cast<" << R.getName()
Peter Collingbournebee583f2011-10-06 13:03:08 +00002510 << "Attr>(A);\n";
2511 if (R.isSubClassOf(InhClass))
2512 OS << " Record.push_back(SA->isInherited());\n";
Aaron Ballman36a53502014-01-16 13:03:14 +00002513 OS << " Record.push_back(A->isImplicit());\n";
2514 OS << " Record.push_back(A->getSpellingListIndex());\n";
2515
Aaron Ballman2f22b942014-05-20 19:47:14 +00002516 for (const auto *Arg : Args)
2517 createArgument(*Arg, R.getName())->writePCHWrite(OS);
Peter Collingbournebee583f2011-10-06 13:03:08 +00002518 OS << " break;\n";
2519 OS << " }\n";
2520 }
2521 OS << " }\n";
2522}
2523
Bob Wilson0058b822015-07-20 22:57:36 +00002524// Generate a conditional expression to check if the current target satisfies
2525// the conditions for a TargetSpecificAttr record, and append the code for
2526// those checks to the Test string. If the FnName string pointer is non-null,
2527// append a unique suffix to distinguish this set of target checks from other
2528// TargetSpecificAttr records.
2529static void GenerateTargetSpecificAttrChecks(const Record *R,
2530 std::vector<std::string> &Arches,
2531 std::string &Test,
2532 std::string *FnName) {
2533 // It is assumed that there will be an llvm::Triple object
2534 // named "T" and a TargetInfo object named "Target" within
2535 // scope that can be used to determine whether the attribute exists in
2536 // a given target.
2537 Test += "(";
2538
2539 for (auto I = Arches.begin(), E = Arches.end(); I != E; ++I) {
2540 std::string Part = *I;
2541 Test += "T.getArch() == llvm::Triple::" + Part;
2542 if (I + 1 != E)
2543 Test += " || ";
2544 if (FnName)
2545 *FnName += Part;
2546 }
2547 Test += ")";
2548
2549 // If the attribute is specific to particular OSes, check those.
2550 if (!R->isValueUnset("OSes")) {
2551 // We know that there was at least one arch test, so we need to and in the
2552 // OS tests.
2553 Test += " && (";
2554 std::vector<std::string> OSes = R->getValueAsListOfStrings("OSes");
2555 for (auto I = OSes.begin(), E = OSes.end(); I != E; ++I) {
2556 std::string Part = *I;
2557
2558 Test += "T.getOS() == llvm::Triple::" + Part;
2559 if (I + 1 != E)
2560 Test += " || ";
2561 if (FnName)
2562 *FnName += Part;
2563 }
2564 Test += ")";
2565 }
2566
2567 // If one or more CXX ABIs are specified, check those as well.
2568 if (!R->isValueUnset("CXXABIs")) {
2569 Test += " && (";
2570 std::vector<std::string> CXXABIs = R->getValueAsListOfStrings("CXXABIs");
2571 for (auto I = CXXABIs.begin(), E = CXXABIs.end(); I != E; ++I) {
2572 std::string Part = *I;
2573 Test += "Target.getCXXABI().getKind() == TargetCXXABI::" + Part;
2574 if (I + 1 != E)
2575 Test += " || ";
2576 if (FnName)
2577 *FnName += Part;
2578 }
2579 Test += ")";
2580 }
2581}
2582
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002583static void GenerateHasAttrSpellingStringSwitch(
2584 const std::vector<Record *> &Attrs, raw_ostream &OS,
2585 const std::string &Variety = "", const std::string &Scope = "") {
2586 for (const auto *Attr : Attrs) {
Aaron Ballmana0344c52014-11-14 13:44:02 +00002587 // C++11-style attributes have specific version information associated with
2588 // them. If the attribute has no scope, the version information must not
2589 // have the default value (1), as that's incorrect. Instead, the unscoped
2590 // attribute version information should be taken from the SD-6 standing
2591 // document, which can be found at:
2592 // https://isocpp.org/std/standing-documents/sd-6-sg10-feature-test-recommendations
2593 int Version = 1;
2594
2595 if (Variety == "CXX11") {
2596 std::vector<Record *> Spellings = Attr->getValueAsListOfDefs("Spellings");
2597 for (const auto &Spelling : Spellings) {
2598 if (Spelling->getValueAsString("Variety") == "CXX11") {
2599 Version = static_cast<int>(Spelling->getValueAsInt("Version"));
2600 if (Scope.empty() && Version == 1)
2601 PrintError(Spelling->getLoc(), "C++ standard attributes must "
2602 "have valid version information.");
2603 break;
2604 }
2605 }
2606 }
2607
Aaron Ballman0fa06d82014-01-09 22:57:44 +00002608 std::string Test;
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002609 if (Attr->isSubClassOf("TargetSpecificAttr")) {
2610 const Record *R = Attr->getValueAsDef("Target");
Aaron Ballman0fa06d82014-01-09 22:57:44 +00002611 std::vector<std::string> Arches = R->getValueAsListOfStrings("Arches");
Hans Wennborgdcfba332015-10-06 23:40:43 +00002612 GenerateTargetSpecificAttrChecks(R, Arches, Test, nullptr);
Bob Wilson7c730832015-07-20 22:57:31 +00002613
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002614 // If this is the C++11 variety, also add in the LangOpts test.
2615 if (Variety == "CXX11")
2616 Test += " && LangOpts.CPlusPlus11";
2617 } else if (Variety == "CXX11")
2618 // C++11 mode should be checked against LangOpts, which is presumed to be
2619 // present in the caller.
2620 Test = "LangOpts.CPlusPlus11";
Aaron Ballman0fa06d82014-01-09 22:57:44 +00002621
Aaron Ballmana0344c52014-11-14 13:44:02 +00002622 std::string TestStr =
Aaron Ballman28afa182014-11-17 18:17:19 +00002623 !Test.empty() ? Test + " ? " + llvm::itostr(Version) + " : 0" : "1";
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002624 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(*Attr);
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00002625 for (const auto &S : Spellings)
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002626 if (Variety.empty() || (Variety == S.variety() &&
2627 (Scope.empty() || Scope == S.nameSpace())))
Aaron Ballmana0344c52014-11-14 13:44:02 +00002628 OS << " .Case(\"" << S.name() << "\", " << TestStr << ")\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +00002629 }
Aaron Ballmana0344c52014-11-14 13:44:02 +00002630 OS << " .Default(0);\n";
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002631}
2632
2633// Emits the list of spellings for attributes.
2634void EmitClangAttrHasAttrImpl(RecordKeeper &Records, raw_ostream &OS) {
2635 emitSourceFileHeader("Code to implement the __has_attribute logic", OS);
2636
2637 // Separate all of the attributes out into four group: generic, C++11, GNU,
2638 // and declspecs. Then generate a big switch statement for each of them.
2639 std::vector<Record *> Attrs = Records.getAllDerivedDefinitions("Attr");
Nico Weber20e08042016-09-03 02:55:10 +00002640 std::vector<Record *> Declspec, Microsoft, GNU, Pragma;
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002641 std::map<std::string, std::vector<Record *>> CXX;
2642
2643 // Walk over the list of all attributes, and split them out based on the
2644 // spelling variety.
2645 for (auto *R : Attrs) {
2646 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(*R);
2647 for (const auto &SI : Spellings) {
Benjamin Kramer2e018ef2016-05-27 13:36:58 +00002648 const std::string &Variety = SI.variety();
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002649 if (Variety == "GNU")
2650 GNU.push_back(R);
2651 else if (Variety == "Declspec")
2652 Declspec.push_back(R);
Nico Weber20e08042016-09-03 02:55:10 +00002653 else if (Variety == "Microsoft")
2654 Microsoft.push_back(R);
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00002655 else if (Variety == "CXX11")
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002656 CXX[SI.nameSpace()].push_back(R);
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00002657 else if (Variety == "Pragma")
2658 Pragma.push_back(R);
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002659 }
2660 }
2661
Bob Wilson7c730832015-07-20 22:57:31 +00002662 OS << "const llvm::Triple &T = Target.getTriple();\n";
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002663 OS << "switch (Syntax) {\n";
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002664 OS << "case AttrSyntax::GNU:\n";
Aaron Ballmana0344c52014-11-14 13:44:02 +00002665 OS << " return llvm::StringSwitch<int>(Name)\n";
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002666 GenerateHasAttrSpellingStringSwitch(GNU, OS, "GNU");
2667 OS << "case AttrSyntax::Declspec:\n";
Aaron Ballmana0344c52014-11-14 13:44:02 +00002668 OS << " return llvm::StringSwitch<int>(Name)\n";
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002669 GenerateHasAttrSpellingStringSwitch(Declspec, OS, "Declspec");
Nico Weber20e08042016-09-03 02:55:10 +00002670 OS << "case AttrSyntax::Microsoft:\n";
2671 OS << " return llvm::StringSwitch<int>(Name)\n";
2672 GenerateHasAttrSpellingStringSwitch(Microsoft, OS, "Microsoft");
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00002673 OS << "case AttrSyntax::Pragma:\n";
Aaron Ballmana0344c52014-11-14 13:44:02 +00002674 OS << " return llvm::StringSwitch<int>(Name)\n";
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00002675 GenerateHasAttrSpellingStringSwitch(Pragma, OS, "Pragma");
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002676 OS << "case AttrSyntax::CXX: {\n";
2677 // C++11-style attributes are further split out based on the Scope.
Eugene Zelenko5f02b772015-12-08 18:49:01 +00002678 for (auto I = CXX.cbegin(), E = CXX.cend(); I != E; ++I) {
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002679 if (I != CXX.begin())
2680 OS << " else ";
2681 if (I->first.empty())
2682 OS << "if (!Scope || Scope->getName() == \"\") {\n";
2683 else
2684 OS << "if (Scope->getName() == \"" << I->first << "\") {\n";
Aaron Ballmana0344c52014-11-14 13:44:02 +00002685 OS << " return llvm::StringSwitch<int>(Name)\n";
Aaron Ballman2fbf9942014-03-31 13:14:44 +00002686 GenerateHasAttrSpellingStringSwitch(I->second, OS, "CXX11", I->first);
2687 OS << "}";
2688 }
2689 OS << "\n}\n";
2690 OS << "}\n";
Peter Collingbournebee583f2011-10-06 13:03:08 +00002691}
2692
Michael Han99315932013-01-24 16:46:58 +00002693void EmitClangAttrSpellingListIndex(RecordKeeper &Records, raw_ostream &OS) {
Dmitri Gribenko6b11fca2013-01-30 21:54:20 +00002694 emitSourceFileHeader("Code to translate different attribute spellings "
2695 "into internal identifiers", OS);
Michael Han99315932013-01-24 16:46:58 +00002696
John McCall2225c8b2016-03-01 00:18:05 +00002697 OS << " switch (AttrKind) {\n";
Michael Han99315932013-01-24 16:46:58 +00002698
Aaron Ballman64e69862013-12-15 13:05:48 +00002699 ParsedAttrMap Attrs = getParsedAttrList(Records);
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00002700 for (const auto &I : Attrs) {
Aaron Ballman2f22b942014-05-20 19:47:14 +00002701 const Record &R = *I.second;
Aaron Ballmanc669cc02014-01-27 22:10:04 +00002702 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(R);
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00002703 OS << " case AT_" << I.first << ": {\n";
Richard Smith852e9ce2013-11-27 01:46:48 +00002704 for (unsigned I = 0; I < Spellings.size(); ++ I) {
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00002705 OS << " if (Name == \"" << Spellings[I].name() << "\" && "
2706 << "SyntaxUsed == "
2707 << StringSwitch<unsigned>(Spellings[I].variety())
2708 .Case("GNU", 0)
2709 .Case("CXX11", 1)
2710 .Case("Declspec", 2)
Nico Weber20e08042016-09-03 02:55:10 +00002711 .Case("Microsoft", 3)
2712 .Case("Keyword", 4)
2713 .Case("Pragma", 5)
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00002714 .Default(0)
2715 << " && Scope == \"" << Spellings[I].nameSpace() << "\")\n"
2716 << " return " << I << ";\n";
Michael Han99315932013-01-24 16:46:58 +00002717 }
Richard Smith852e9ce2013-11-27 01:46:48 +00002718
2719 OS << " break;\n";
2720 OS << " }\n";
Michael Han99315932013-01-24 16:46:58 +00002721 }
2722
2723 OS << " }\n";
Aaron Ballman64e69862013-12-15 13:05:48 +00002724 OS << " return 0;\n";
Michael Han99315932013-01-24 16:46:58 +00002725}
2726
DeLesley Hutchinsc4a82432013-12-30 17:24:36 +00002727// Emits code used by RecursiveASTVisitor to visit attributes
2728void EmitClangAttrASTVisitor(RecordKeeper &Records, raw_ostream &OS) {
2729 emitSourceFileHeader("Used by RecursiveASTVisitor to visit attributes.", OS);
2730
2731 std::vector<Record*> Attrs = Records.getAllDerivedDefinitions("Attr");
2732
2733 // Write method declarations for Traverse* methods.
2734 // We emit this here because we only generate methods for attributes that
2735 // are declared as ASTNodes.
2736 OS << "#ifdef ATTR_VISITOR_DECLS_ONLY\n\n";
Aaron Ballman2f22b942014-05-20 19:47:14 +00002737 for (const auto *Attr : Attrs) {
2738 const Record &R = *Attr;
DeLesley Hutchinsc4a82432013-12-30 17:24:36 +00002739 if (!R.getValueAsBit("ASTNode"))
2740 continue;
2741 OS << " bool Traverse"
2742 << R.getName() << "Attr(" << R.getName() << "Attr *A);\n";
2743 OS << " bool Visit"
2744 << R.getName() << "Attr(" << R.getName() << "Attr *A) {\n"
2745 << " return true; \n"
Hans Wennborg4afe5042015-07-22 20:46:26 +00002746 << " }\n";
DeLesley Hutchinsc4a82432013-12-30 17:24:36 +00002747 }
2748 OS << "\n#else // ATTR_VISITOR_DECLS_ONLY\n\n";
2749
2750 // Write individual Traverse* methods for each attribute class.
Aaron Ballman2f22b942014-05-20 19:47:14 +00002751 for (const auto *Attr : Attrs) {
2752 const Record &R = *Attr;
DeLesley Hutchinsc4a82432013-12-30 17:24:36 +00002753 if (!R.getValueAsBit("ASTNode"))
2754 continue;
2755
2756 OS << "template <typename Derived>\n"
DeLesley Hutchinsbb79c332013-12-30 21:03:02 +00002757 << "bool VISITORCLASS<Derived>::Traverse"
DeLesley Hutchinsc4a82432013-12-30 17:24:36 +00002758 << R.getName() << "Attr(" << R.getName() << "Attr *A) {\n"
2759 << " if (!getDerived().VisitAttr(A))\n"
2760 << " return false;\n"
2761 << " if (!getDerived().Visit" << R.getName() << "Attr(A))\n"
2762 << " return false;\n";
2763
2764 std::vector<Record*> ArgRecords = R.getValueAsListOfDefs("Args");
Aaron Ballman2f22b942014-05-20 19:47:14 +00002765 for (const auto *Arg : ArgRecords)
2766 createArgument(*Arg, R.getName())->writeASTVisitorTraversal(OS);
DeLesley Hutchinsc4a82432013-12-30 17:24:36 +00002767
2768 OS << " return true;\n";
2769 OS << "}\n\n";
2770 }
2771
2772 // Write generic Traverse routine
2773 OS << "template <typename Derived>\n"
DeLesley Hutchinsbb79c332013-12-30 21:03:02 +00002774 << "bool VISITORCLASS<Derived>::TraverseAttr(Attr *A) {\n"
DeLesley Hutchinsc4a82432013-12-30 17:24:36 +00002775 << " if (!A)\n"
2776 << " return true;\n"
2777 << "\n"
John McCall2225c8b2016-03-01 00:18:05 +00002778 << " switch (A->getKind()) {\n";
DeLesley Hutchinsc4a82432013-12-30 17:24:36 +00002779
Aaron Ballman2f22b942014-05-20 19:47:14 +00002780 for (const auto *Attr : Attrs) {
2781 const Record &R = *Attr;
DeLesley Hutchinsc4a82432013-12-30 17:24:36 +00002782 if (!R.getValueAsBit("ASTNode"))
2783 continue;
2784
2785 OS << " case attr::" << R.getName() << ":\n"
2786 << " return getDerived().Traverse" << R.getName() << "Attr("
2787 << "cast<" << R.getName() << "Attr>(A));\n";
2788 }
John McCall5d7cf772016-03-01 02:09:20 +00002789 OS << " }\n"; // end switch
2790 OS << " llvm_unreachable(\"bad attribute kind\");\n";
DeLesley Hutchinsc4a82432013-12-30 17:24:36 +00002791 OS << "}\n"; // end function
2792 OS << "#endif // ATTR_VISITOR_DECLS_ONLY\n";
2793}
2794
Erich Keanea32910d2017-03-23 18:51:54 +00002795void EmitClangAttrTemplateInstantiateHelper(const std::vector<Record *> &Attrs,
2796 raw_ostream &OS,
2797 bool AppliesToDecl) {
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00002798
Erich Keanea32910d2017-03-23 18:51:54 +00002799 OS << " switch (At->getKind()) {\n";
Aaron Ballman2f22b942014-05-20 19:47:14 +00002800 for (const auto *Attr : Attrs) {
2801 const Record &R = *Attr;
Douglas Gregorb2daf842012-05-02 15:56:52 +00002802 if (!R.getValueAsBit("ASTNode"))
2803 continue;
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00002804 OS << " case attr::" << R.getName() << ": {\n";
Erich Keanea32910d2017-03-23 18:51:54 +00002805 bool ShouldClone = R.getValueAsBit("Clone") &&
2806 (!AppliesToDecl ||
2807 R.getValueAsBit("MeaningfulToClassTemplateDefinition"));
Rafael Espindola7f90b7d2012-05-15 14:09:55 +00002808
2809 if (!ShouldClone) {
Hans Wennborg59dbe862015-09-29 20:56:43 +00002810 OS << " return nullptr;\n";
Rafael Espindola7f90b7d2012-05-15 14:09:55 +00002811 OS << " }\n";
2812 continue;
2813 }
2814
Eugene Zelenko5f02b772015-12-08 18:49:01 +00002815 OS << " const auto *A = cast<"
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00002816 << R.getName() << "Attr>(At);\n";
2817 bool TDependent = R.getValueAsBit("TemplateDependent");
2818
2819 if (!TDependent) {
2820 OS << " return A->clone(C);\n";
2821 OS << " }\n";
2822 continue;
2823 }
2824
2825 std::vector<Record*> ArgRecords = R.getValueAsListOfDefs("Args");
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002826 std::vector<std::unique_ptr<Argument>> Args;
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00002827 Args.reserve(ArgRecords.size());
2828
Aaron Ballman2f22b942014-05-20 19:47:14 +00002829 for (const auto *ArgRecord : ArgRecords)
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002830 Args.emplace_back(createArgument(*ArgRecord, R.getName()));
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00002831
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002832 for (auto const &ai : Args)
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00002833 ai->writeTemplateInstantiation(OS);
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002834
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00002835 OS << " return new (C) " << R.getName() << "Attr(A->getLocation(), C";
Aaron Ballman8f1439b2014-03-05 16:49:55 +00002836 for (auto const &ai : Args) {
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00002837 OS << ", ";
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00002838 ai->writeTemplateInstantiationArgs(OS);
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00002839 }
Aaron Ballman36a53502014-01-16 13:03:14 +00002840 OS << ", A->getSpellingListIndex());\n }\n";
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00002841 }
2842 OS << " } // end switch\n"
2843 << " llvm_unreachable(\"Unknown attribute!\");\n"
Erich Keanea32910d2017-03-23 18:51:54 +00002844 << " return nullptr;\n";
2845}
2846
2847// Emits code to instantiate dependent attributes on templates.
2848void EmitClangAttrTemplateInstantiate(RecordKeeper &Records, raw_ostream &OS) {
2849 emitSourceFileHeader("Template instantiation code for attributes", OS);
2850
2851 std::vector<Record*> Attrs = Records.getAllDerivedDefinitions("Attr");
2852
2853 OS << "namespace clang {\n"
2854 << "namespace sema {\n\n"
2855 << "Attr *instantiateTemplateAttribute(const Attr *At, ASTContext &C, "
2856 << "Sema &S,\n"
2857 << " const MultiLevelTemplateArgumentList &TemplateArgs) {\n";
2858 EmitClangAttrTemplateInstantiateHelper(Attrs, OS, /*AppliesToDecl*/false);
2859 OS << "}\n\n"
2860 << "Attr *instantiateTemplateAttributeForDecl(const Attr *At,\n"
2861 << " ASTContext &C, Sema &S,\n"
2862 << " const MultiLevelTemplateArgumentList &TemplateArgs) {\n";
2863 EmitClangAttrTemplateInstantiateHelper(Attrs, OS, /*AppliesToDecl*/true);
2864 OS << "}\n\n"
Benjamin Kramerbf8da9d2012-02-06 11:13:08 +00002865 << "} // end namespace sema\n"
2866 << "} // end namespace clang\n";
DeLesley Hutchinsceec3062012-01-20 22:37:06 +00002867}
2868
Aaron Ballman8ee40b72013-09-09 23:33:17 +00002869// Emits the list of parsed attributes.
2870void EmitClangAttrParsedAttrList(RecordKeeper &Records, raw_ostream &OS) {
2871 emitSourceFileHeader("List of all attributes that Clang recognizes", OS);
2872
2873 OS << "#ifndef PARSED_ATTR\n";
2874 OS << "#define PARSED_ATTR(NAME) NAME\n";
2875 OS << "#endif\n\n";
2876
2877 ParsedAttrMap Names = getParsedAttrList(Records);
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00002878 for (const auto &I : Names) {
2879 OS << "PARSED_ATTR(" << I.first << ")\n";
Aaron Ballman8ee40b72013-09-09 23:33:17 +00002880 }
2881}
2882
Aaron Ballman8ed8dbd2014-07-31 16:37:04 +00002883static bool isArgVariadic(const Record &R, StringRef AttrName) {
2884 return createArgument(R, AttrName)->isVariadic();
2885}
2886
Aaron Ballman74eeeae2013-11-27 13:27:02 +00002887static void emitArgInfo(const Record &R, std::stringstream &OS) {
Aaron Ballman8ee40b72013-09-09 23:33:17 +00002888 // This function will count the number of arguments specified for the
2889 // attribute and emit the number of required arguments followed by the
2890 // number of optional arguments.
2891 std::vector<Record *> Args = R.getValueAsListOfDefs("Args");
2892 unsigned ArgCount = 0, OptCount = 0;
Aaron Ballman8ed8dbd2014-07-31 16:37:04 +00002893 bool HasVariadic = false;
Aaron Ballman2f22b942014-05-20 19:47:14 +00002894 for (const auto *Arg : Args) {
George Burgess IV8a36ace2016-12-01 17:52:39 +00002895 // If the arg is fake, it's the user's job to supply it: general parsing
2896 // logic shouldn't need to know anything about it.
2897 if (Arg->getValueAsBit("Fake"))
2898 continue;
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00002899 Arg->getValueAsBit("Optional") ? ++OptCount : ++ArgCount;
Aaron Ballman8ed8dbd2014-07-31 16:37:04 +00002900 if (!HasVariadic && isArgVariadic(*Arg, R.getName()))
2901 HasVariadic = true;
Aaron Ballman8ee40b72013-09-09 23:33:17 +00002902 }
Aaron Ballman8ed8dbd2014-07-31 16:37:04 +00002903
2904 // If there is a variadic argument, we will set the optional argument count
2905 // to its largest value. Since it's currently a 4-bit number, we set it to 15.
2906 OS << ArgCount << ", " << (HasVariadic ? 15 : OptCount);
Aaron Ballman8ee40b72013-09-09 23:33:17 +00002907}
2908
Aaron Ballman74eeeae2013-11-27 13:27:02 +00002909static void GenerateDefaultAppertainsTo(raw_ostream &OS) {
Aaron Ballman93b5cc62013-12-02 19:36:42 +00002910 OS << "static bool defaultAppertainsTo(Sema &, const AttributeList &,";
Aaron Ballman74eeeae2013-11-27 13:27:02 +00002911 OS << "const Decl *) {\n";
2912 OS << " return true;\n";
2913 OS << "}\n\n";
2914}
2915
2916static std::string CalculateDiagnostic(const Record &S) {
2917 // If the SubjectList object has a custom diagnostic associated with it,
2918 // return that directly.
2919 std::string CustomDiag = S.getValueAsString("CustomDiag");
2920 if (!CustomDiag.empty())
2921 return CustomDiag;
2922
2923 // Given the list of subjects, determine what diagnostic best fits.
2924 enum {
2925 Func = 1U << 0,
2926 Var = 1U << 1,
2927 ObjCMethod = 1U << 2,
2928 Param = 1U << 3,
2929 Class = 1U << 4,
Aaron Ballmanc1494bd2013-11-27 20:14:30 +00002930 GenericRecord = 1U << 5,
Aaron Ballman74eeeae2013-11-27 13:27:02 +00002931 Type = 1U << 6,
2932 ObjCIVar = 1U << 7,
2933 ObjCProp = 1U << 8,
2934 ObjCInterface = 1U << 9,
2935 Block = 1U << 10,
2936 Namespace = 1U << 11,
Aaron Ballman981ba242014-05-20 14:10:53 +00002937 Field = 1U << 12,
2938 CXXMethod = 1U << 13,
Alexis Hunt724f14e2014-11-28 00:53:20 +00002939 ObjCProtocol = 1U << 14,
2940 Enum = 1U << 15
Aaron Ballman74eeeae2013-11-27 13:27:02 +00002941 };
2942 uint32_t SubMask = 0;
2943
2944 std::vector<Record *> Subjects = S.getValueAsListOfDefs("Subjects");
Aaron Ballman2f22b942014-05-20 19:47:14 +00002945 for (const auto *Subject : Subjects) {
2946 const Record &R = *Subject;
Aaron Ballman80469032013-11-29 14:57:58 +00002947 std::string Name;
2948
2949 if (R.isSubClassOf("SubsetSubject")) {
2950 PrintError(R.getLoc(), "SubsetSubjects should use a custom diagnostic");
2951 // As a fallback, look through the SubsetSubject to see what its base
2952 // type is, and use that. This needs to be updated if SubsetSubjects
2953 // are allowed within other SubsetSubjects.
2954 Name = R.getValueAsDef("Base")->getName();
2955 } else
2956 Name = R.getName();
2957
2958 uint32_t V = StringSwitch<uint32_t>(Name)
Aaron Ballman74eeeae2013-11-27 13:27:02 +00002959 .Case("Function", Func)
2960 .Case("Var", Var)
2961 .Case("ObjCMethod", ObjCMethod)
2962 .Case("ParmVar", Param)
2963 .Case("TypedefName", Type)
2964 .Case("ObjCIvar", ObjCIVar)
2965 .Case("ObjCProperty", ObjCProp)
Aaron Ballmanc1494bd2013-11-27 20:14:30 +00002966 .Case("Record", GenericRecord)
Aaron Ballman74eeeae2013-11-27 13:27:02 +00002967 .Case("ObjCInterface", ObjCInterface)
Ted Kremenekd980da22013-12-10 19:43:42 +00002968 .Case("ObjCProtocol", ObjCProtocol)
Aaron Ballman74eeeae2013-11-27 13:27:02 +00002969 .Case("Block", Block)
2970 .Case("CXXRecord", Class)
2971 .Case("Namespace", Namespace)
Aaron Ballman74eeeae2013-11-27 13:27:02 +00002972 .Case("Field", Field)
2973 .Case("CXXMethod", CXXMethod)
Alexis Hunt724f14e2014-11-28 00:53:20 +00002974 .Case("Enum", Enum)
Aaron Ballman74eeeae2013-11-27 13:27:02 +00002975 .Default(0);
2976 if (!V) {
2977 // Something wasn't in our mapping, so be helpful and let the developer
2978 // know about it.
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00002979 PrintFatalError(R.getLoc(), "Unknown subject type: " + R.getName());
Aaron Ballman74eeeae2013-11-27 13:27:02 +00002980 return "";
2981 }
2982
2983 SubMask |= V;
2984 }
2985
2986 switch (SubMask) {
2987 // For the simple cases where there's only a single entry in the mask, we
2988 // don't have to resort to bit fiddling.
2989 case Func: return "ExpectedFunction";
2990 case Var: return "ExpectedVariable";
2991 case Param: return "ExpectedParameter";
2992 case Class: return "ExpectedClass";
Alexis Hunt724f14e2014-11-28 00:53:20 +00002993 case Enum: return "ExpectedEnum";
Aaron Ballman74eeeae2013-11-27 13:27:02 +00002994 case CXXMethod:
2995 // FIXME: Currently, this maps to ExpectedMethod based on existing code,
2996 // but should map to something a bit more accurate at some point.
2997 case ObjCMethod: return "ExpectedMethod";
2998 case Type: return "ExpectedType";
2999 case ObjCInterface: return "ExpectedObjectiveCInterface";
Ted Kremenekd980da22013-12-10 19:43:42 +00003000 case ObjCProtocol: return "ExpectedObjectiveCProtocol";
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003001
Aaron Ballmanc1494bd2013-11-27 20:14:30 +00003002 // "GenericRecord" means struct, union or class; check the language options
3003 // and if not compiling for C++, strip off the class part. Note that this
3004 // relies on the fact that the context for this declares "Sema &S".
3005 case GenericRecord:
Aaron Ballman17046b82013-11-27 19:16:55 +00003006 return "(S.getLangOpts().CPlusPlus ? ExpectedStructOrUnionOrClass : "
3007 "ExpectedStructOrUnion)";
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003008 case Func | ObjCMethod | Block: return "ExpectedFunctionMethodOrBlock";
3009 case Func | ObjCMethod | Class: return "ExpectedFunctionMethodOrClass";
3010 case Func | Param:
3011 case Func | ObjCMethod | Param: return "ExpectedFunctionMethodOrParameter";
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003012 case Func | ObjCMethod: return "ExpectedFunctionOrMethod";
3013 case Func | Var: return "ExpectedVariableOrFunction";
Aaron Ballman604dfec2013-12-02 17:07:07 +00003014
3015 // If not compiling for C++, the class portion does not apply.
3016 case Func | Var | Class:
3017 return "(S.getLangOpts().CPlusPlus ? ExpectedFunctionVariableOrClass : "
3018 "ExpectedVariableOrFunction)";
3019
Saleem Abdulrasool511f2e52016-07-15 20:41:10 +00003020 case Func | Var | Class | ObjCInterface:
3021 return "(S.getLangOpts().CPlusPlus"
3022 " ? ((S.getLangOpts().ObjC1 || S.getLangOpts().ObjC2)"
3023 " ? ExpectedFunctionVariableClassOrObjCInterface"
3024 " : ExpectedFunctionVariableOrClass)"
3025 " : ((S.getLangOpts().ObjC1 || S.getLangOpts().ObjC2)"
3026 " ? ExpectedFunctionVariableOrObjCInterface"
3027 " : ExpectedVariableOrFunction))";
3028
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003029 case ObjCMethod | ObjCProp: return "ExpectedMethodOrProperty";
Aaron Ballman173361e2014-07-16 20:28:10 +00003030 case ObjCProtocol | ObjCInterface:
3031 return "ExpectedObjectiveCInterfaceOrProtocol";
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003032 case Field | Var: return "ExpectedFieldOrGlobalVar";
3033 }
3034
3035 PrintFatalError(S.getLoc(),
3036 "Could not deduce diagnostic argument for Attr subjects");
3037
3038 return "";
3039}
3040
Aaron Ballman12b9f652014-01-16 13:55:42 +00003041static std::string GetSubjectWithSuffix(const Record *R) {
George Burgess IV1881a572016-12-01 00:13:18 +00003042 const std::string &B = R->getName();
Aaron Ballman12b9f652014-01-16 13:55:42 +00003043 if (B == "DeclBase")
3044 return "Decl";
3045 return B + "Decl";
3046}
Hans Wennborgdcfba332015-10-06 23:40:43 +00003047
Alex Lorenz9e7bf162017-04-18 14:33:39 +00003048static std::string functionNameForCustomAppertainsTo(const Record &Subject) {
3049 return "is" + Subject.getName().str();
3050}
3051
Aaron Ballman80469032013-11-29 14:57:58 +00003052static std::string GenerateCustomAppertainsTo(const Record &Subject,
3053 raw_ostream &OS) {
Alex Lorenz9e7bf162017-04-18 14:33:39 +00003054 std::string FnName = functionNameForCustomAppertainsTo(Subject);
Aaron Ballmana358c902013-12-02 14:58:17 +00003055
Aaron Ballman80469032013-11-29 14:57:58 +00003056 // If this code has already been generated, simply return the previous
3057 // instance of it.
3058 static std::set<std::string> CustomSubjectSet;
Eugene Zelenko5f02b772015-12-08 18:49:01 +00003059 auto I = CustomSubjectSet.find(FnName);
Aaron Ballman80469032013-11-29 14:57:58 +00003060 if (I != CustomSubjectSet.end())
3061 return *I;
3062
3063 Record *Base = Subject.getValueAsDef("Base");
3064
3065 // Not currently support custom subjects within custom subjects.
3066 if (Base->isSubClassOf("SubsetSubject")) {
3067 PrintFatalError(Subject.getLoc(),
3068 "SubsetSubjects within SubsetSubjects is not supported");
3069 return "";
3070 }
3071
Aaron Ballman80469032013-11-29 14:57:58 +00003072 OS << "static bool " << FnName << "(const Decl *D) {\n";
Eugene Zelenko5f02b772015-12-08 18:49:01 +00003073 OS << " if (const auto *S = dyn_cast<";
Aaron Ballman12b9f652014-01-16 13:55:42 +00003074 OS << GetSubjectWithSuffix(Base);
Aaron Ballman47553042014-01-16 14:32:03 +00003075 OS << ">(D))\n";
3076 OS << " return " << Subject.getValueAsString("CheckCode") << ";\n";
3077 OS << " return false;\n";
Aaron Ballman80469032013-11-29 14:57:58 +00003078 OS << "}\n\n";
3079
3080 CustomSubjectSet.insert(FnName);
3081 return FnName;
3082}
3083
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003084static std::string GenerateAppertainsTo(const Record &Attr, raw_ostream &OS) {
3085 // If the attribute does not contain a Subjects definition, then use the
3086 // default appertainsTo logic.
3087 if (Attr.isValueUnset("Subjects"))
Aaron Ballman93b5cc62013-12-02 19:36:42 +00003088 return "defaultAppertainsTo";
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003089
3090 const Record *SubjectObj = Attr.getValueAsDef("Subjects");
3091 std::vector<Record*> Subjects = SubjectObj->getValueAsListOfDefs("Subjects");
3092
3093 // If the list of subjects is empty, it is assumed that the attribute
3094 // appertains to everything.
3095 if (Subjects.empty())
Aaron Ballman93b5cc62013-12-02 19:36:42 +00003096 return "defaultAppertainsTo";
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003097
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003098 bool Warn = SubjectObj->getValueAsDef("Diag")->getValueAsBit("Warn");
3099
3100 // Otherwise, generate an appertainsTo check specific to this attribute which
3101 // checks all of the given subjects against the Decl passed in. Return the
3102 // name of that check to the caller.
Matthias Braunbbbf5d42016-12-04 05:55:09 +00003103 std::string FnName = "check" + Attr.getName().str() + "AppertainsTo";
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003104 std::stringstream SS;
3105 SS << "static bool " << FnName << "(Sema &S, const AttributeList &Attr, ";
3106 SS << "const Decl *D) {\n";
3107 SS << " if (";
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00003108 for (auto I = Subjects.begin(), E = Subjects.end(); I != E; ++I) {
Aaron Ballman80469032013-11-29 14:57:58 +00003109 // If the subject has custom code associated with it, generate a function
3110 // for it. The function cannot be inlined into this check (yet) because it
3111 // requires the subject to be of a specific type, and were that information
3112 // inlined here, it would not support an attribute with multiple custom
3113 // subjects.
3114 if ((*I)->isSubClassOf("SubsetSubject")) {
3115 SS << "!" << GenerateCustomAppertainsTo(**I, OS) << "(D)";
3116 } else {
Aaron Ballman12b9f652014-01-16 13:55:42 +00003117 SS << "!isa<" << GetSubjectWithSuffix(*I) << ">(D)";
Aaron Ballman80469032013-11-29 14:57:58 +00003118 }
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003119
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003120 if (I + 1 != E)
3121 SS << " && ";
3122 }
3123 SS << ") {\n";
3124 SS << " S.Diag(Attr.getLoc(), diag::";
3125 SS << (Warn ? "warn_attribute_wrong_decl_type" :
3126 "err_attribute_wrong_decl_type");
3127 SS << ")\n";
3128 SS << " << Attr.getName() << ";
3129 SS << CalculateDiagnostic(*SubjectObj) << ";\n";
3130 SS << " return false;\n";
3131 SS << " }\n";
3132 SS << " return true;\n";
3133 SS << "}\n\n";
3134
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003135 OS << SS.str();
3136 return FnName;
3137}
3138
Alex Lorenz9e7bf162017-04-18 14:33:39 +00003139static void
3140emitAttributeMatchRules(PragmaClangAttributeSupport &PragmaAttributeSupport,
3141 raw_ostream &OS) {
3142 OS << "static bool checkAttributeMatchRuleAppliesTo(const Decl *D, "
3143 << AttributeSubjectMatchRule::EnumName << " rule) {\n";
3144 OS << " switch (rule) {\n";
3145 for (const auto &Rule : PragmaAttributeSupport.Rules) {
3146 if (Rule.isAbstractRule()) {
3147 OS << " case " << Rule.getEnumValue() << ":\n";
3148 OS << " assert(false && \"Abstract matcher rule isn't allowed\");\n";
3149 OS << " return false;\n";
3150 continue;
3151 }
3152 std::vector<Record *> Subjects = Rule.getSubjects();
3153 assert(!Subjects.empty() && "Missing subjects");
3154 OS << " case " << Rule.getEnumValue() << ":\n";
3155 OS << " return ";
3156 for (auto I = Subjects.begin(), E = Subjects.end(); I != E; ++I) {
3157 // If the subject has custom code associated with it, use the function
3158 // that was generated for GenerateAppertainsTo to check if the declaration
3159 // is valid.
3160 if ((*I)->isSubClassOf("SubsetSubject"))
3161 OS << functionNameForCustomAppertainsTo(**I) << "(D)";
3162 else
3163 OS << "isa<" << GetSubjectWithSuffix(*I) << ">(D)";
3164
3165 if (I + 1 != E)
3166 OS << " || ";
3167 }
3168 OS << ";\n";
3169 }
3170 OS << " }\n";
3171 OS << " llvm_unreachable(\"Invalid match rule\");\nreturn false;\n";
3172 OS << "}\n\n";
3173}
3174
Aaron Ballman3aff6332013-12-02 19:30:36 +00003175static void GenerateDefaultLangOptRequirements(raw_ostream &OS) {
3176 OS << "static bool defaultDiagnoseLangOpts(Sema &, ";
3177 OS << "const AttributeList &) {\n";
3178 OS << " return true;\n";
3179 OS << "}\n\n";
3180}
3181
3182static std::string GenerateLangOptRequirements(const Record &R,
3183 raw_ostream &OS) {
3184 // If the attribute has an empty or unset list of language requirements,
3185 // return the default handler.
3186 std::vector<Record *> LangOpts = R.getValueAsListOfDefs("LangOpts");
3187 if (LangOpts.empty())
3188 return "defaultDiagnoseLangOpts";
3189
3190 // Generate the test condition, as well as a unique function name for the
3191 // diagnostic test. The list of options should usually be short (one or two
3192 // options), and the uniqueness isn't strictly necessary (it is just for
3193 // codegen efficiency).
3194 std::string FnName = "check", Test;
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00003195 for (auto I = LangOpts.begin(), E = LangOpts.end(); I != E; ++I) {
Aaron Ballman3aff6332013-12-02 19:30:36 +00003196 std::string Part = (*I)->getValueAsString("Name");
Eric Fiselier341e8252016-09-02 18:53:31 +00003197 if ((*I)->getValueAsBit("Negated")) {
3198 FnName += "Not";
Alexis Hunt724f14e2014-11-28 00:53:20 +00003199 Test += "!";
Eric Fiselier341e8252016-09-02 18:53:31 +00003200 }
Aaron Ballman3aff6332013-12-02 19:30:36 +00003201 Test += "S.LangOpts." + Part;
3202 if (I + 1 != E)
3203 Test += " || ";
3204 FnName += Part;
3205 }
3206 FnName += "LangOpts";
3207
3208 // If this code has already been generated, simply return the previous
3209 // instance of it.
3210 static std::set<std::string> CustomLangOptsSet;
Eugene Zelenko5f02b772015-12-08 18:49:01 +00003211 auto I = CustomLangOptsSet.find(FnName);
Aaron Ballman3aff6332013-12-02 19:30:36 +00003212 if (I != CustomLangOptsSet.end())
3213 return *I;
3214
3215 OS << "static bool " << FnName << "(Sema &S, const AttributeList &Attr) {\n";
3216 OS << " if (" << Test << ")\n";
3217 OS << " return true;\n\n";
3218 OS << " S.Diag(Attr.getLoc(), diag::warn_attribute_ignored) ";
3219 OS << "<< Attr.getName();\n";
3220 OS << " return false;\n";
3221 OS << "}\n\n";
3222
3223 CustomLangOptsSet.insert(FnName);
3224 return FnName;
3225}
3226
Aaron Ballmanab7691c2014-01-09 22:48:32 +00003227static void GenerateDefaultTargetRequirements(raw_ostream &OS) {
Bob Wilson7c730832015-07-20 22:57:31 +00003228 OS << "static bool defaultTargetRequirements(const TargetInfo &) {\n";
Aaron Ballmanab7691c2014-01-09 22:48:32 +00003229 OS << " return true;\n";
3230 OS << "}\n\n";
3231}
3232
3233static std::string GenerateTargetRequirements(const Record &Attr,
3234 const ParsedAttrMap &Dupes,
3235 raw_ostream &OS) {
3236 // If the attribute is not a target specific attribute, return the default
3237 // target handler.
3238 if (!Attr.isSubClassOf("TargetSpecificAttr"))
3239 return "defaultTargetRequirements";
3240
3241 // Get the list of architectures to be tested for.
3242 const Record *R = Attr.getValueAsDef("Target");
3243 std::vector<std::string> Arches = R->getValueAsListOfStrings("Arches");
3244 if (Arches.empty()) {
3245 PrintError(Attr.getLoc(), "Empty list of target architectures for a "
3246 "target-specific attr");
3247 return "defaultTargetRequirements";
3248 }
3249
3250 // If there are other attributes which share the same parsed attribute kind,
3251 // such as target-specific attributes with a shared spelling, collapse the
3252 // duplicate architectures. This is required because a shared target-specific
3253 // attribute has only one AttributeList::Kind enumeration value, but it
3254 // applies to multiple target architectures. In order for the attribute to be
3255 // considered valid, all of its architectures need to be included.
3256 if (!Attr.isValueUnset("ParseKind")) {
3257 std::string APK = Attr.getValueAsString("ParseKind");
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00003258 for (const auto &I : Dupes) {
3259 if (I.first == APK) {
3260 std::vector<std::string> DA = I.second->getValueAsDef("Target")
3261 ->getValueAsListOfStrings("Arches");
George Burgess IV1881a572016-12-01 00:13:18 +00003262 std::move(DA.begin(), DA.end(), std::back_inserter(Arches));
Aaron Ballmanab7691c2014-01-09 22:48:32 +00003263 }
3264 }
3265 }
3266
Bob Wilson0058b822015-07-20 22:57:36 +00003267 std::string FnName = "isTarget";
3268 std::string Test;
3269 GenerateTargetSpecificAttrChecks(R, Arches, Test, &FnName);
Bob Wilson7c730832015-07-20 22:57:31 +00003270
Aaron Ballmanab7691c2014-01-09 22:48:32 +00003271 // If this code has already been generated, simply return the previous
3272 // instance of it.
3273 static std::set<std::string> CustomTargetSet;
Eugene Zelenko5f02b772015-12-08 18:49:01 +00003274 auto I = CustomTargetSet.find(FnName);
Aaron Ballmanab7691c2014-01-09 22:48:32 +00003275 if (I != CustomTargetSet.end())
3276 return *I;
3277
Bob Wilson7c730832015-07-20 22:57:31 +00003278 OS << "static bool " << FnName << "(const TargetInfo &Target) {\n";
3279 OS << " const llvm::Triple &T = Target.getTriple();\n";
Aaron Ballmanab7691c2014-01-09 22:48:32 +00003280 OS << " return " << Test << ";\n";
3281 OS << "}\n\n";
3282
3283 CustomTargetSet.insert(FnName);
3284 return FnName;
3285}
3286
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00003287static void GenerateDefaultSpellingIndexToSemanticSpelling(raw_ostream &OS) {
3288 OS << "static unsigned defaultSpellingIndexToSemanticSpelling("
3289 << "const AttributeList &Attr) {\n";
3290 OS << " return UINT_MAX;\n";
3291 OS << "}\n\n";
3292}
3293
3294static std::string GenerateSpellingIndexToSemanticSpelling(const Record &Attr,
3295 raw_ostream &OS) {
3296 // If the attribute does not have a semantic form, we can bail out early.
3297 if (!Attr.getValueAsBit("ASTNode"))
3298 return "defaultSpellingIndexToSemanticSpelling";
3299
Aaron Ballmanc669cc02014-01-27 22:10:04 +00003300 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(Attr);
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00003301
3302 // If there are zero or one spellings, or all of the spellings share the same
3303 // name, we can also bail out early.
3304 if (Spellings.size() <= 1 || SpellingNamesAreCommon(Spellings))
3305 return "defaultSpellingIndexToSemanticSpelling";
3306
3307 // Generate the enumeration we will use for the mapping.
3308 SemanticSpellingMap SemanticToSyntacticMap;
3309 std::string Enum = CreateSemanticSpellings(Spellings, SemanticToSyntacticMap);
Matthias Braunbbbf5d42016-12-04 05:55:09 +00003310 std::string Name = Attr.getName().str() + "AttrSpellingMap";
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00003311
3312 OS << "static unsigned " << Name << "(const AttributeList &Attr) {\n";
3313 OS << Enum;
3314 OS << " unsigned Idx = Attr.getAttributeSpellingListIndex();\n";
3315 WriteSemanticSpellingSwitch("Idx", SemanticToSyntacticMap, OS);
3316 OS << "}\n\n";
3317
3318 return Name;
3319}
3320
Aaron Ballmanc669cc02014-01-27 22:10:04 +00003321static bool IsKnownToGCC(const Record &Attr) {
3322 // Look at the spellings for this subject; if there are any spellings which
3323 // claim to be known to GCC, the attribute is known to GCC.
George Burgess IV1881a572016-12-01 00:13:18 +00003324 return llvm::any_of(
3325 GetFlattenedSpellings(Attr),
3326 [](const FlattenedSpelling &S) { return S.knownToGCC(); });
Aaron Ballman9a99e0d2014-01-20 17:18:35 +00003327}
3328
Aaron Ballman8ee40b72013-09-09 23:33:17 +00003329/// Emits the parsed attribute helpers
3330void EmitClangAttrParsedAttrImpl(RecordKeeper &Records, raw_ostream &OS) {
3331 emitSourceFileHeader("Parsed attribute helpers", OS);
3332
Alex Lorenz9e7bf162017-04-18 14:33:39 +00003333 PragmaClangAttributeSupport &PragmaAttributeSupport =
3334 getPragmaAttributeSupport(Records);
3335
Aaron Ballmanab7691c2014-01-09 22:48:32 +00003336 // Get the list of parsed attributes, and accept the optional list of
3337 // duplicates due to the ParseKind.
3338 ParsedAttrMap Dupes;
3339 ParsedAttrMap Attrs = getParsedAttrList(Records, &Dupes);
Aaron Ballman8ee40b72013-09-09 23:33:17 +00003340
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00003341 // Generate the default appertainsTo, target and language option diagnostic,
3342 // and spelling list index mapping methods.
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003343 GenerateDefaultAppertainsTo(OS);
Aaron Ballman3aff6332013-12-02 19:30:36 +00003344 GenerateDefaultLangOptRequirements(OS);
Aaron Ballmanab7691c2014-01-09 22:48:32 +00003345 GenerateDefaultTargetRequirements(OS);
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00003346 GenerateDefaultSpellingIndexToSemanticSpelling(OS);
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003347
3348 // Generate the appertainsTo diagnostic methods and write their names into
3349 // another mapping. At the same time, generate the AttrInfoMap object
3350 // contents. Due to the reliance on generated code, use separate streams so
3351 // that code will not be interleaved.
3352 std::stringstream SS;
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00003353 for (auto I = Attrs.begin(), E = Attrs.end(); I != E; ++I) {
Aaron Ballmanab7691c2014-01-09 22:48:32 +00003354 // TODO: If the attribute's kind appears in the list of duplicates, that is
3355 // because it is a target-specific attribute that appears multiple times.
3356 // It would be beneficial to test whether the duplicates are "similar
3357 // enough" to each other to not cause problems. For instance, check that
Alp Toker96cf7582014-01-18 21:49:37 +00003358 // the spellings are identical, and custom parsing rules match, etc.
Aaron Ballmanab7691c2014-01-09 22:48:32 +00003359
Aaron Ballman8ee40b72013-09-09 23:33:17 +00003360 // We need to generate struct instances based off ParsedAttrInfo from
3361 // AttributeList.cpp.
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003362 SS << " { ";
3363 emitArgInfo(*I->second, SS);
3364 SS << ", " << I->second->getValueAsBit("HasCustomParsing");
Aaron Ballmanab7691c2014-01-09 22:48:32 +00003365 SS << ", " << I->second->isSubClassOf("TargetSpecificAttr");
3366 SS << ", " << I->second->isSubClassOf("TypeAttr");
Richard Smith4f902c72016-03-08 00:32:55 +00003367 SS << ", " << I->second->isSubClassOf("StmtAttr");
Aaron Ballmanc669cc02014-01-27 22:10:04 +00003368 SS << ", " << IsKnownToGCC(*I->second);
Alex Lorenz9e7bf162017-04-18 14:33:39 +00003369 SS << ", " << PragmaAttributeSupport.isAttributedSupported(*I->second);
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003370 SS << ", " << GenerateAppertainsTo(*I->second, OS);
Aaron Ballman3aff6332013-12-02 19:30:36 +00003371 SS << ", " << GenerateLangOptRequirements(*I->second, OS);
Aaron Ballmanab7691c2014-01-09 22:48:32 +00003372 SS << ", " << GenerateTargetRequirements(*I->second, Dupes, OS);
Aaron Ballman81cb8cb2014-01-24 21:32:49 +00003373 SS << ", " << GenerateSpellingIndexToSemanticSpelling(*I->second, OS);
Alex Lorenz9e7bf162017-04-18 14:33:39 +00003374 SS << ", "
3375 << PragmaAttributeSupport.generateStrictConformsTo(*I->second, OS);
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003376 SS << " }";
Aaron Ballman8ee40b72013-09-09 23:33:17 +00003377
3378 if (I + 1 != E)
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003379 SS << ",";
3380
3381 SS << " // AT_" << I->first << "\n";
Aaron Ballman8ee40b72013-09-09 23:33:17 +00003382 }
Aaron Ballman74eeeae2013-11-27 13:27:02 +00003383
3384 OS << "static const ParsedAttrInfo AttrInfoMap[AttributeList::UnknownAttribute + 1] = {\n";
3385 OS << SS.str();
Aaron Ballman8ee40b72013-09-09 23:33:17 +00003386 OS << "};\n\n";
Alex Lorenz9e7bf162017-04-18 14:33:39 +00003387
3388 // Generate the attribute match rules.
3389 emitAttributeMatchRules(PragmaAttributeSupport, OS);
Michael Han4a045172012-03-07 00:12:16 +00003390}
3391
Jakob Stoklund Olesen995e0e12012-06-13 05:12:41 +00003392// Emits the kind list of parsed attributes
3393void EmitClangAttrParsedAttrKinds(RecordKeeper &Records, raw_ostream &OS) {
Dmitri Gribenko6b11fca2013-01-30 21:54:20 +00003394 emitSourceFileHeader("Attribute name matcher", OS);
3395
Aaron Ballman09e98ff2014-01-13 21:42:39 +00003396 std::vector<Record *> Attrs = Records.getAllDerivedDefinitions("Attr");
Nico Weber20e08042016-09-03 02:55:10 +00003397 std::vector<StringMatcher::StringPair> GNU, Declspec, Microsoft, CXX11,
3398 Keywords, Pragma;
Aaron Ballman64e69862013-12-15 13:05:48 +00003399 std::set<std::string> Seen;
Aaron Ballman2f22b942014-05-20 19:47:14 +00003400 for (const auto *A : Attrs) {
3401 const Record &Attr = *A;
Richard Smith852e9ce2013-11-27 01:46:48 +00003402
Michael Han4a045172012-03-07 00:12:16 +00003403 bool SemaHandler = Attr.getValueAsBit("SemaHandler");
Douglas Gregor19fbb8f2012-05-02 16:18:45 +00003404 bool Ignored = Attr.getValueAsBit("Ignored");
Douglas Gregor19fbb8f2012-05-02 16:18:45 +00003405 if (SemaHandler || Ignored) {
Aaron Ballman09e98ff2014-01-13 21:42:39 +00003406 // Attribute spellings can be shared between target-specific attributes,
3407 // and can be shared between syntaxes for the same attribute. For
3408 // instance, an attribute can be spelled GNU<"interrupt"> for an ARM-
3409 // specific attribute, or MSP430-specific attribute. Additionally, an
3410 // attribute can be spelled GNU<"dllexport"> and Declspec<"dllexport">
3411 // for the same semantic attribute. Ultimately, we need to map each of
3412 // these to a single AttributeList::Kind value, but the StringMatcher
3413 // class cannot handle duplicate match strings. So we generate a list of
3414 // string to match based on the syntax, and emit multiple string matchers
3415 // depending on the syntax used.
Aaron Ballman64e69862013-12-15 13:05:48 +00003416 std::string AttrName;
3417 if (Attr.isSubClassOf("TargetSpecificAttr") &&
3418 !Attr.isValueUnset("ParseKind")) {
3419 AttrName = Attr.getValueAsString("ParseKind");
3420 if (Seen.find(AttrName) != Seen.end())
3421 continue;
3422 Seen.insert(AttrName);
3423 } else
3424 AttrName = NormalizeAttrName(StringRef(Attr.getName())).str();
3425
Aaron Ballmanc669cc02014-01-27 22:10:04 +00003426 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(Attr);
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00003427 for (const auto &S : Spellings) {
Benjamin Kramer2e018ef2016-05-27 13:36:58 +00003428 const std::string &RawSpelling = S.name();
Craig Topper8ae12032014-05-07 06:21:57 +00003429 std::vector<StringMatcher::StringPair> *Matches = nullptr;
Benjamin Kramer2e018ef2016-05-27 13:36:58 +00003430 std::string Spelling;
3431 const std::string &Variety = S.variety();
Aaron Ballman09e98ff2014-01-13 21:42:39 +00003432 if (Variety == "CXX11") {
3433 Matches = &CXX11;
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00003434 Spelling += S.nameSpace();
Alexis Hunt3bc72c12012-06-19 23:57:03 +00003435 Spelling += "::";
Aaron Ballman09e98ff2014-01-13 21:42:39 +00003436 } else if (Variety == "GNU")
3437 Matches = &GNU;
3438 else if (Variety == "Declspec")
3439 Matches = &Declspec;
Nico Weber20e08042016-09-03 02:55:10 +00003440 else if (Variety == "Microsoft")
3441 Matches = &Microsoft;
Aaron Ballman09e98ff2014-01-13 21:42:39 +00003442 else if (Variety == "Keyword")
3443 Matches = &Keywords;
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00003444 else if (Variety == "Pragma")
3445 Matches = &Pragma;
Alexis Hunta0e54d42012-06-18 16:13:52 +00003446
Aaron Ballman09e98ff2014-01-13 21:42:39 +00003447 assert(Matches && "Unsupported spelling variety found");
3448
Justin Lebar4086fe52017-01-05 16:51:54 +00003449 if (Variety == "GNU")
3450 Spelling += NormalizeGNUAttrSpelling(RawSpelling);
3451 else
3452 Spelling += RawSpelling;
3453
Douglas Gregor19fbb8f2012-05-02 16:18:45 +00003454 if (SemaHandler)
Aaron Ballman09e98ff2014-01-13 21:42:39 +00003455 Matches->push_back(StringMatcher::StringPair(Spelling,
3456 "return AttributeList::AT_" + AttrName + ";"));
Douglas Gregor19fbb8f2012-05-02 16:18:45 +00003457 else
Aaron Ballman09e98ff2014-01-13 21:42:39 +00003458 Matches->push_back(StringMatcher::StringPair(Spelling,
3459 "return AttributeList::IgnoredAttribute;"));
Michael Han4a045172012-03-07 00:12:16 +00003460 }
3461 }
3462 }
Douglas Gregor377f99b2012-05-02 17:33:51 +00003463
Aaron Ballman09e98ff2014-01-13 21:42:39 +00003464 OS << "static AttributeList::Kind getAttrKind(StringRef Name, ";
3465 OS << "AttributeList::Syntax Syntax) {\n";
3466 OS << " if (AttributeList::AS_GNU == Syntax) {\n";
3467 StringMatcher("Name", GNU, OS).Emit();
3468 OS << " } else if (AttributeList::AS_Declspec == Syntax) {\n";
3469 StringMatcher("Name", Declspec, OS).Emit();
Nico Weber20e08042016-09-03 02:55:10 +00003470 OS << " } else if (AttributeList::AS_Microsoft == Syntax) {\n";
3471 StringMatcher("Name", Microsoft, OS).Emit();
Aaron Ballman09e98ff2014-01-13 21:42:39 +00003472 OS << " } else if (AttributeList::AS_CXX11 == Syntax) {\n";
3473 StringMatcher("Name", CXX11, OS).Emit();
Douglas Gregorbec595a2015-06-19 18:27:45 +00003474 OS << " } else if (AttributeList::AS_Keyword == Syntax || ";
3475 OS << "AttributeList::AS_ContextSensitiveKeyword == Syntax) {\n";
Aaron Ballman09e98ff2014-01-13 21:42:39 +00003476 StringMatcher("Name", Keywords, OS).Emit();
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00003477 OS << " } else if (AttributeList::AS_Pragma == Syntax) {\n";
3478 StringMatcher("Name", Pragma, OS).Emit();
Aaron Ballman09e98ff2014-01-13 21:42:39 +00003479 OS << " }\n";
3480 OS << " return AttributeList::UnknownAttribute;\n"
Douglas Gregor377f99b2012-05-02 17:33:51 +00003481 << "}\n";
Michael Han4a045172012-03-07 00:12:16 +00003482}
3483
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00003484// Emits the code to dump an attribute.
3485void EmitClangAttrDump(RecordKeeper &Records, raw_ostream &OS) {
Dmitri Gribenko6b11fca2013-01-30 21:54:20 +00003486 emitSourceFileHeader("Attribute dumper", OS);
3487
John McCall2225c8b2016-03-01 00:18:05 +00003488 OS << " switch (A->getKind()) {\n";
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00003489 std::vector<Record*> Attrs = Records.getAllDerivedDefinitions("Attr"), Args;
Aaron Ballman2f22b942014-05-20 19:47:14 +00003490 for (const auto *Attr : Attrs) {
3491 const Record &R = *Attr;
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00003492 if (!R.getValueAsBit("ASTNode"))
3493 continue;
3494 OS << " case attr::" << R.getName() << ": {\n";
Aaron Ballmanbc909612014-01-22 21:51:20 +00003495
3496 // If the attribute has a semantically-meaningful name (which is determined
3497 // by whether there is a Spelling enumeration for it), then write out the
3498 // spelling used for the attribute.
Aaron Ballmanc669cc02014-01-27 22:10:04 +00003499 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(R);
Aaron Ballmanbc909612014-01-22 21:51:20 +00003500 if (Spellings.size() > 1 && !SpellingNamesAreCommon(Spellings))
3501 OS << " OS << \" \" << A->getSpelling();\n";
3502
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00003503 Args = R.getValueAsListOfDefs("Args");
3504 if (!Args.empty()) {
Eugene Zelenko5f02b772015-12-08 18:49:01 +00003505 OS << " const auto *SA = cast<" << R.getName()
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00003506 << "Attr>(A);\n";
Aaron Ballman2f22b942014-05-20 19:47:14 +00003507 for (const auto *Arg : Args)
3508 createArgument(*Arg, R.getName())->writeDump(OS);
Richard Trieude5cc7d2013-01-31 01:44:26 +00003509
Eugene Zelenko5f02b772015-12-08 18:49:01 +00003510 for (const auto *AI : Args)
3511 createArgument(*AI, R.getName())->writeDumpChildren(OS);
Alexander Kornienko5bc364e2013-01-07 17:53:08 +00003512 }
3513 OS <<
3514 " break;\n"
3515 " }\n";
3516 }
3517 OS << " }\n";
3518}
3519
Aaron Ballman35db2b32014-01-29 22:13:45 +00003520void EmitClangAttrParserStringSwitches(RecordKeeper &Records,
3521 raw_ostream &OS) {
3522 emitSourceFileHeader("Parser-related llvm::StringSwitch cases", OS);
3523 emitClangAttrArgContextList(Records, OS);
3524 emitClangAttrIdentifierArgList(Records, OS);
3525 emitClangAttrTypeArgList(Records, OS);
3526 emitClangAttrLateParsedList(Records, OS);
3527}
3528
Alex Lorenz9e7bf162017-04-18 14:33:39 +00003529void EmitClangAttrSubjectMatchRulesParserStringSwitches(RecordKeeper &Records,
3530 raw_ostream &OS) {
3531 getPragmaAttributeSupport(Records).generateParsingHelpers(OS);
3532}
3533
Aaron Ballman97dba042014-02-17 15:27:10 +00003534class DocumentationData {
3535public:
Aaron Ballman1a3e5852014-02-17 16:18:32 +00003536 const Record *Documentation;
3537 const Record *Attribute;
Aaron Ballman97dba042014-02-17 15:27:10 +00003538
Aaron Ballman4de1b582014-02-19 22:59:32 +00003539 DocumentationData(const Record &Documentation, const Record &Attribute)
3540 : Documentation(&Documentation), Attribute(&Attribute) {}
Aaron Ballman97dba042014-02-17 15:27:10 +00003541};
3542
Aaron Ballman4de1b582014-02-19 22:59:32 +00003543static void WriteCategoryHeader(const Record *DocCategory,
Aaron Ballman97dba042014-02-17 15:27:10 +00003544 raw_ostream &OS) {
Aaron Ballman4de1b582014-02-19 22:59:32 +00003545 const std::string &Name = DocCategory->getValueAsString("Name");
3546 OS << Name << "\n" << std::string(Name.length(), '=') << "\n";
3547
3548 // If there is content, print that as well.
3549 std::string ContentStr = DocCategory->getValueAsString("Content");
Benjamin Kramer5c404072015-04-10 21:37:21 +00003550 // Trim leading and trailing newlines and spaces.
3551 OS << StringRef(ContentStr).trim();
3552
Aaron Ballman4de1b582014-02-19 22:59:32 +00003553 OS << "\n\n";
Aaron Ballman97dba042014-02-17 15:27:10 +00003554}
3555
Aaron Ballmana66b5742014-02-17 15:36:08 +00003556enum SpellingKind {
3557 GNU = 1 << 0,
3558 CXX11 = 1 << 1,
3559 Declspec = 1 << 2,
Nico Weber20e08042016-09-03 02:55:10 +00003560 Microsoft = 1 << 3,
3561 Keyword = 1 << 4,
3562 Pragma = 1 << 5
Aaron Ballmana66b5742014-02-17 15:36:08 +00003563};
3564
Alex Lorenz9e7bf162017-04-18 14:33:39 +00003565static void WriteDocumentation(RecordKeeper &Records,
3566 const DocumentationData &Doc, raw_ostream &OS) {
Aaron Ballman97dba042014-02-17 15:27:10 +00003567 // FIXME: there is no way to have a per-spelling category for the attribute
3568 // documentation. This may not be a limiting factor since the spellings
3569 // should generally be consistently applied across the category.
3570
Aaron Ballman1a3e5852014-02-17 16:18:32 +00003571 std::vector<FlattenedSpelling> Spellings = GetFlattenedSpellings(*Doc.Attribute);
Aaron Ballman97dba042014-02-17 15:27:10 +00003572
3573 // Determine the heading to be used for this attribute.
Aaron Ballman1a3e5852014-02-17 16:18:32 +00003574 std::string Heading = Doc.Documentation->getValueAsString("Heading");
Aaron Ballmanea6668c2014-02-21 14:14:04 +00003575 bool CustomHeading = !Heading.empty();
Aaron Ballman97dba042014-02-17 15:27:10 +00003576 if (Heading.empty()) {
3577 // If there's only one spelling, we can simply use that.
3578 if (Spellings.size() == 1)
3579 Heading = Spellings.begin()->name();
3580 else {
3581 std::set<std::string> Uniques;
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00003582 for (auto I = Spellings.begin(), E = Spellings.end();
3583 I != E && Uniques.size() <= 1; ++I) {
Aaron Ballman97dba042014-02-17 15:27:10 +00003584 std::string Spelling = NormalizeNameForSpellingComparison(I->name());
3585 Uniques.insert(Spelling);
3586 }
3587 // If the semantic map has only one spelling, that is sufficient for our
3588 // needs.
3589 if (Uniques.size() == 1)
3590 Heading = *Uniques.begin();
3591 }
3592 }
3593
3594 // If the heading is still empty, it is an error.
3595 if (Heading.empty())
Aaron Ballman1a3e5852014-02-17 16:18:32 +00003596 PrintFatalError(Doc.Attribute->getLoc(),
Aaron Ballman97dba042014-02-17 15:27:10 +00003597 "This attribute requires a heading to be specified");
3598
3599 // Gather a list of unique spellings; this is not the same as the semantic
3600 // spelling for the attribute. Variations in underscores and other non-
3601 // semantic characters are still acceptable.
3602 std::vector<std::string> Names;
3603
Aaron Ballman97dba042014-02-17 15:27:10 +00003604 unsigned SupportedSpellings = 0;
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00003605 for (const auto &I : Spellings) {
3606 SpellingKind Kind = StringSwitch<SpellingKind>(I.variety())
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00003607 .Case("GNU", GNU)
3608 .Case("CXX11", CXX11)
3609 .Case("Declspec", Declspec)
Nico Weber20e08042016-09-03 02:55:10 +00003610 .Case("Microsoft", Microsoft)
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00003611 .Case("Keyword", Keyword)
3612 .Case("Pragma", Pragma);
Aaron Ballman97dba042014-02-17 15:27:10 +00003613
3614 // Mask in the supported spelling.
3615 SupportedSpellings |= Kind;
3616
3617 std::string Name;
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00003618 if (Kind == CXX11 && !I.nameSpace().empty())
3619 Name = I.nameSpace() + "::";
3620 Name += I.name();
Aaron Ballman97dba042014-02-17 15:27:10 +00003621
3622 // If this name is the same as the heading, do not add it.
3623 if (Name != Heading)
3624 Names.push_back(Name);
3625 }
3626
3627 // Print out the heading for the attribute. If there are alternate spellings,
3628 // then display those after the heading.
Aaron Ballmanea6668c2014-02-21 14:14:04 +00003629 if (!CustomHeading && !Names.empty()) {
Aaron Ballman97dba042014-02-17 15:27:10 +00003630 Heading += " (";
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00003631 for (auto I = Names.begin(), E = Names.end(); I != E; ++I) {
Aaron Ballman97dba042014-02-17 15:27:10 +00003632 if (I != Names.begin())
3633 Heading += ", ";
3634 Heading += *I;
3635 }
3636 Heading += ")";
3637 }
3638 OS << Heading << "\n" << std::string(Heading.length(), '-') << "\n";
3639
3640 if (!SupportedSpellings)
Aaron Ballman1a3e5852014-02-17 16:18:32 +00003641 PrintFatalError(Doc.Attribute->getLoc(),
Aaron Ballman97dba042014-02-17 15:27:10 +00003642 "Attribute has no supported spellings; cannot be "
3643 "documented");
3644
3645 // List what spelling syntaxes the attribute supports.
3646 OS << ".. csv-table:: Supported Syntaxes\n";
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00003647 OS << " :header: \"GNU\", \"C++11\", \"__declspec\", \"Keyword\",";
Alex Lorenz9e7bf162017-04-18 14:33:39 +00003648 OS << " \"Pragma\", \"Pragma clang attribute\"\n\n";
Aaron Ballman97dba042014-02-17 15:27:10 +00003649 OS << " \"";
3650 if (SupportedSpellings & GNU) OS << "X";
3651 OS << "\",\"";
3652 if (SupportedSpellings & CXX11) OS << "X";
3653 OS << "\",\"";
3654 if (SupportedSpellings & Declspec) OS << "X";
3655 OS << "\",\"";
3656 if (SupportedSpellings & Keyword) OS << "X";
Aaron Ballman120c79f2014-06-25 12:48:06 +00003657 OS << "\", \"";
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00003658 if (SupportedSpellings & Pragma) OS << "X";
Alex Lorenz9e7bf162017-04-18 14:33:39 +00003659 OS << "\", \"";
3660 if (getPragmaAttributeSupport(Records).isAttributedSupported(*Doc.Attribute))
3661 OS << "X";
Tyler Nowickie8b07ed2014-06-13 17:57:25 +00003662 OS << "\"\n\n";
Aaron Ballman97dba042014-02-17 15:27:10 +00003663
3664 // If the attribute is deprecated, print a message about it, and possibly
3665 // provide a replacement attribute.
Aaron Ballman1a3e5852014-02-17 16:18:32 +00003666 if (!Doc.Documentation->isValueUnset("Deprecated")) {
Aaron Ballman97dba042014-02-17 15:27:10 +00003667 OS << "This attribute has been deprecated, and may be removed in a future "
3668 << "version of Clang.";
Aaron Ballman1a3e5852014-02-17 16:18:32 +00003669 const Record &Deprecated = *Doc.Documentation->getValueAsDef("Deprecated");
Aaron Ballman97dba042014-02-17 15:27:10 +00003670 std::string Replacement = Deprecated.getValueAsString("Replacement");
3671 if (!Replacement.empty())
3672 OS << " This attribute has been superseded by ``"
3673 << Replacement << "``.";
3674 OS << "\n\n";
3675 }
3676
Aaron Ballman1a3e5852014-02-17 16:18:32 +00003677 std::string ContentStr = Doc.Documentation->getValueAsString("Content");
Aaron Ballman97dba042014-02-17 15:27:10 +00003678 // Trim leading and trailing newlines and spaces.
Benjamin Kramer5c404072015-04-10 21:37:21 +00003679 OS << StringRef(ContentStr).trim();
Aaron Ballman97dba042014-02-17 15:27:10 +00003680
3681 OS << "\n\n\n";
3682}
3683
3684void EmitClangAttrDocs(RecordKeeper &Records, raw_ostream &OS) {
3685 // Get the documentation introduction paragraph.
3686 const Record *Documentation = Records.getDef("GlobalDocumentation");
3687 if (!Documentation) {
3688 PrintFatalError("The Documentation top-level definition is missing, "
3689 "no documentation will be generated.");
3690 return;
3691 }
3692
Aaron Ballman4de1b582014-02-19 22:59:32 +00003693 OS << Documentation->getValueAsString("Intro") << "\n";
Aaron Ballman97dba042014-02-17 15:27:10 +00003694
Aaron Ballman97dba042014-02-17 15:27:10 +00003695 // Gather the Documentation lists from each of the attributes, based on the
3696 // category provided.
3697 std::vector<Record *> Attrs = Records.getAllDerivedDefinitions("Attr");
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00003698 std::map<const Record *, std::vector<DocumentationData>> SplitDocs;
Aaron Ballman2f22b942014-05-20 19:47:14 +00003699 for (const auto *A : Attrs) {
3700 const Record &Attr = *A;
Aaron Ballman97dba042014-02-17 15:27:10 +00003701 std::vector<Record *> Docs = Attr.getValueAsListOfDefs("Documentation");
Aaron Ballman2f22b942014-05-20 19:47:14 +00003702 for (const auto *D : Docs) {
3703 const Record &Doc = *D;
Aaron Ballman4de1b582014-02-19 22:59:32 +00003704 const Record *Category = Doc.getValueAsDef("Category");
Aaron Ballman97dba042014-02-17 15:27:10 +00003705 // If the category is "undocumented", then there cannot be any other
3706 // documentation categories (otherwise, the attribute would become
3707 // documented).
Aaron Ballman4de1b582014-02-19 22:59:32 +00003708 std::string Cat = Category->getValueAsString("Name");
3709 bool Undocumented = Cat == "Undocumented";
Aaron Ballman97dba042014-02-17 15:27:10 +00003710 if (Undocumented && Docs.size() > 1)
3711 PrintFatalError(Doc.getLoc(),
3712 "Attribute is \"Undocumented\", but has multiple "
3713 "documentation categories");
3714
3715 if (!Undocumented)
Aaron Ballman4de1b582014-02-19 22:59:32 +00003716 SplitDocs[Category].push_back(DocumentationData(Doc, Attr));
Aaron Ballman97dba042014-02-17 15:27:10 +00003717 }
3718 }
3719
3720 // Having split the attributes out based on what documentation goes where,
3721 // we can begin to generate sections of documentation.
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00003722 for (const auto &I : SplitDocs) {
3723 WriteCategoryHeader(I.first, OS);
Aaron Ballman97dba042014-02-17 15:27:10 +00003724
3725 // Walk over each of the attributes in the category and write out their
3726 // documentation.
Aaron Ballmanb097f7fe2014-03-02 17:38:37 +00003727 for (const auto &Doc : I.second)
Alex Lorenz9e7bf162017-04-18 14:33:39 +00003728 WriteDocumentation(Records, Doc, OS);
3729 }
3730}
3731
3732void EmitTestPragmaAttributeSupportedAttributes(RecordKeeper &Records,
3733 raw_ostream &OS) {
3734 PragmaClangAttributeSupport Support = getPragmaAttributeSupport(Records);
3735 ParsedAttrMap Attrs = getParsedAttrList(Records);
3736 unsigned NumAttrs = 0;
3737 for (const auto &I : Attrs) {
3738 if (Support.isAttributedSupported(*I.second))
3739 ++NumAttrs;
3740 }
3741 OS << "#pragma clang attribute supports " << NumAttrs << " attributes:\n";
3742 for (const auto &I : Attrs) {
3743 if (!Support.isAttributedSupported(*I.second))
3744 continue;
3745 OS << I.first;
3746 if (I.second->isValueUnset("Subjects")) {
3747 OS << " ()\n";
3748 continue;
3749 }
3750 const Record *SubjectObj = I.second->getValueAsDef("Subjects");
3751 std::vector<Record *> Subjects =
3752 SubjectObj->getValueAsListOfDefs("Subjects");
3753 OS << " (";
3754 for (const auto &Subject : llvm::enumerate(Subjects)) {
3755 if (Subject.index())
3756 OS << ", ";
3757 OS << Support.SubjectsToRules.find(Subject.value())
3758 ->getSecond()
3759 .getEnumValueName();
3760 }
3761 OS << ")\n";
Aaron Ballman97dba042014-02-17 15:27:10 +00003762 }
3763}
3764
Jakob Stoklund Olesen995e0e12012-06-13 05:12:41 +00003765} // end namespace clang