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Shih-wei Liaof8fd82b2010-02-10 11:10:31 -08001//===--- IdentifierTable.cpp - Hash table for identifier lookup -----------===//
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// This file implements the IdentifierInfo, IdentifierVisitor, and
11// IdentifierTable interfaces.
12//
13//===----------------------------------------------------------------------===//
14
15#include "clang/Basic/IdentifierTable.h"
16#include "clang/Basic/LangOptions.h"
17#include "llvm/ADT/FoldingSet.h"
18#include "llvm/ADT/DenseMap.h"
19#include "llvm/Support/raw_ostream.h"
20#include <cstdio>
21
22using namespace clang;
23
24//===----------------------------------------------------------------------===//
25// IdentifierInfo Implementation
26//===----------------------------------------------------------------------===//
27
28IdentifierInfo::IdentifierInfo() {
29 TokenID = tok::identifier;
30 ObjCOrBuiltinID = 0;
31 HasMacro = false;
32 IsExtension = false;
33 IsPoisoned = false;
34 IsCPPOperatorKeyword = false;
35 NeedsHandleIdentifier = false;
36 FETokenInfo = 0;
37 Entry = 0;
38}
39
40//===----------------------------------------------------------------------===//
41// IdentifierTable Implementation
42//===----------------------------------------------------------------------===//
43
44IdentifierInfoLookup::~IdentifierInfoLookup() {}
45
46ExternalIdentifierLookup::~ExternalIdentifierLookup() {}
47
48IdentifierTable::IdentifierTable(const LangOptions &LangOpts,
49 IdentifierInfoLookup* externalLookup)
50 : HashTable(8192), // Start with space for 8K identifiers.
51 ExternalLookup(externalLookup) {
52
53 // Populate the identifier table with info about keywords for the current
54 // language.
55 AddKeywords(LangOpts);
56}
57
58//===----------------------------------------------------------------------===//
59// Language Keyword Implementation
60//===----------------------------------------------------------------------===//
61
62// Constants for TokenKinds.def
63namespace {
64 enum {
65 KEYALL = 1,
66 KEYC99 = 2,
67 KEYCXX = 4,
68 KEYCXX0X = 8,
69 KEYGNU = 16,
70 KEYMS = 32,
71 BOOLSUPPORT = 64,
72 KEYALTIVEC = 128
73 };
74}
75
76/// AddKeyword - This method is used to associate a token ID with specific
77/// identifiers because they are language keywords. This causes the lexer to
78/// automatically map matching identifiers to specialized token codes.
79///
80/// The C90/C99/CPP/CPP0x flags are set to 0 if the token should be
81/// enabled in the specified langauge, set to 1 if it is an extension
82/// in the specified language, and set to 2 if disabled in the
83/// specified language.
84static void AddKeyword(const char *Keyword, unsigned KWLen,
85 tok::TokenKind TokenCode, unsigned Flags,
86 const LangOptions &LangOpts, IdentifierTable &Table) {
87 unsigned AddResult = 0;
88 if (Flags & KEYALL) AddResult = 2;
89 else if (LangOpts.CPlusPlus && (Flags & KEYCXX)) AddResult = 2;
90 else if (LangOpts.CPlusPlus0x && (Flags & KEYCXX0X)) AddResult = 2;
91 else if (LangOpts.C99 && (Flags & KEYC99)) AddResult = 2;
92 else if (LangOpts.GNUMode && (Flags & KEYGNU)) AddResult = 1;
93 else if (LangOpts.Microsoft && (Flags & KEYMS)) AddResult = 1;
94 else if (LangOpts.Bool && (Flags & BOOLSUPPORT)) AddResult = 2;
95 else if (LangOpts.AltiVec && (Flags & KEYALTIVEC)) AddResult = 2;
96
97 // Don't add this keyword if disabled in this language.
98 if (AddResult == 0) return;
99
100 IdentifierInfo &Info = Table.get(Keyword, Keyword+KWLen);
101 Info.setTokenID(TokenCode);
102 Info.setIsExtensionToken(AddResult == 1);
103}
104
105/// AddCXXOperatorKeyword - Register a C++ operator keyword alternative
106/// representations.
107static void AddCXXOperatorKeyword(const char *Keyword, unsigned KWLen,
108 tok::TokenKind TokenCode,
109 IdentifierTable &Table) {
110 IdentifierInfo &Info = Table.get(Keyword, Keyword + KWLen);
111 Info.setTokenID(TokenCode);
112 Info.setIsCPlusPlusOperatorKeyword();
113}
114
115/// AddObjCKeyword - Register an Objective-C @keyword like "class" "selector" or
116/// "property".
117static void AddObjCKeyword(tok::ObjCKeywordKind ObjCID,
118 const char *Name, unsigned NameLen,
119 IdentifierTable &Table) {
120 Table.get(Name, Name+NameLen).setObjCKeywordID(ObjCID);
121}
122
123/// AddKeywords - Add all keywords to the symbol table.
124///
125void IdentifierTable::AddKeywords(const LangOptions &LangOpts) {
126 // Add keywords and tokens for the current language.
127#define KEYWORD(NAME, FLAGS) \
128 AddKeyword(#NAME, strlen(#NAME), tok::kw_ ## NAME, \
129 FLAGS, LangOpts, *this);
130#define ALIAS(NAME, TOK, FLAGS) \
131 AddKeyword(NAME, strlen(NAME), tok::kw_ ## TOK, \
132 FLAGS, LangOpts, *this);
133#define CXX_KEYWORD_OPERATOR(NAME, ALIAS) \
134 if (LangOpts.CXXOperatorNames) \
135 AddCXXOperatorKeyword(#NAME, strlen(#NAME), tok::ALIAS, *this);
136#define OBJC1_AT_KEYWORD(NAME) \
137 if (LangOpts.ObjC1) \
138 AddObjCKeyword(tok::objc_##NAME, #NAME, strlen(#NAME), *this);
139#define OBJC2_AT_KEYWORD(NAME) \
140 if (LangOpts.ObjC2) \
141 AddObjCKeyword(tok::objc_##NAME, #NAME, strlen(#NAME), *this);
142#include "clang/Basic/TokenKinds.def"
143}
144
145tok::PPKeywordKind IdentifierInfo::getPPKeywordID() const {
146 // We use a perfect hash function here involving the length of the keyword,
147 // the first and third character. For preprocessor ID's there are no
148 // collisions (if there were, the switch below would complain about duplicate
149 // case values). Note that this depends on 'if' being null terminated.
150
151#define HASH(LEN, FIRST, THIRD) \
152 (LEN << 5) + (((FIRST-'a') + (THIRD-'a')) & 31)
153#define CASE(LEN, FIRST, THIRD, NAME) \
154 case HASH(LEN, FIRST, THIRD): \
155 return memcmp(Name, #NAME, LEN) ? tok::pp_not_keyword : tok::pp_ ## NAME
156
157 unsigned Len = getLength();
158 if (Len < 2) return tok::pp_not_keyword;
159 const char *Name = getNameStart();
160 switch (HASH(Len, Name[0], Name[2])) {
161 default: return tok::pp_not_keyword;
162 CASE( 2, 'i', '\0', if);
163 CASE( 4, 'e', 'i', elif);
164 CASE( 4, 'e', 's', else);
165 CASE( 4, 'l', 'n', line);
166 CASE( 4, 's', 'c', sccs);
167 CASE( 5, 'e', 'd', endif);
168 CASE( 5, 'e', 'r', error);
169 CASE( 5, 'i', 'e', ident);
170 CASE( 5, 'i', 'd', ifdef);
171 CASE( 5, 'u', 'd', undef);
172
173 CASE( 6, 'a', 's', assert);
174 CASE( 6, 'd', 'f', define);
175 CASE( 6, 'i', 'n', ifndef);
176 CASE( 6, 'i', 'p', import);
177 CASE( 6, 'p', 'a', pragma);
178
179 CASE( 7, 'd', 'f', defined);
180 CASE( 7, 'i', 'c', include);
181 CASE( 7, 'w', 'r', warning);
182
183 CASE( 8, 'u', 'a', unassert);
184 CASE(12, 'i', 'c', include_next);
185
186 CASE(16, '_', 'i', __include_macros);
187#undef CASE
188#undef HASH
189 }
190}
191
192//===----------------------------------------------------------------------===//
193// Stats Implementation
194//===----------------------------------------------------------------------===//
195
196/// PrintStats - Print statistics about how well the identifier table is doing
197/// at hashing identifiers.
198void IdentifierTable::PrintStats() const {
199 unsigned NumBuckets = HashTable.getNumBuckets();
200 unsigned NumIdentifiers = HashTable.getNumItems();
201 unsigned NumEmptyBuckets = NumBuckets-NumIdentifiers;
202 unsigned AverageIdentifierSize = 0;
203 unsigned MaxIdentifierLength = 0;
204
205 // TODO: Figure out maximum times an identifier had to probe for -stats.
206 for (llvm::StringMap<IdentifierInfo*, llvm::BumpPtrAllocator>::const_iterator
207 I = HashTable.begin(), E = HashTable.end(); I != E; ++I) {
208 unsigned IdLen = I->getKeyLength();
209 AverageIdentifierSize += IdLen;
210 if (MaxIdentifierLength < IdLen)
211 MaxIdentifierLength = IdLen;
212 }
213
214 fprintf(stderr, "\n*** Identifier Table Stats:\n");
215 fprintf(stderr, "# Identifiers: %d\n", NumIdentifiers);
216 fprintf(stderr, "# Empty Buckets: %d\n", NumEmptyBuckets);
217 fprintf(stderr, "Hash density (#identifiers per bucket): %f\n",
218 NumIdentifiers/(double)NumBuckets);
219 fprintf(stderr, "Ave identifier length: %f\n",
220 (AverageIdentifierSize/(double)NumIdentifiers));
221 fprintf(stderr, "Max identifier length: %d\n", MaxIdentifierLength);
222
223 // Compute statistics about the memory allocated for identifiers.
224 HashTable.getAllocator().PrintStats();
225}
226
227//===----------------------------------------------------------------------===//
228// SelectorTable Implementation
229//===----------------------------------------------------------------------===//
230
231unsigned llvm::DenseMapInfo<clang::Selector>::getHashValue(clang::Selector S) {
232 return DenseMapInfo<void*>::getHashValue(S.getAsOpaquePtr());
233}
234
235namespace clang {
236/// MultiKeywordSelector - One of these variable length records is kept for each
237/// selector containing more than one keyword. We use a folding set
238/// to unique aggregate names (keyword selectors in ObjC parlance). Access to
239/// this class is provided strictly through Selector.
240class MultiKeywordSelector
241 : public DeclarationNameExtra, public llvm::FoldingSetNode {
242 MultiKeywordSelector(unsigned nKeys) {
243 ExtraKindOrNumArgs = NUM_EXTRA_KINDS + nKeys;
244 }
245public:
246 // Constructor for keyword selectors.
247 MultiKeywordSelector(unsigned nKeys, IdentifierInfo **IIV) {
248 assert((nKeys > 1) && "not a multi-keyword selector");
249 ExtraKindOrNumArgs = NUM_EXTRA_KINDS + nKeys;
250
251 // Fill in the trailing keyword array.
252 IdentifierInfo **KeyInfo = reinterpret_cast<IdentifierInfo **>(this+1);
253 for (unsigned i = 0; i != nKeys; ++i)
254 KeyInfo[i] = IIV[i];
255 }
256
257 // getName - Derive the full selector name and return it.
258 std::string getName() const;
259
260 unsigned getNumArgs() const { return ExtraKindOrNumArgs - NUM_EXTRA_KINDS; }
261
262 typedef IdentifierInfo *const *keyword_iterator;
263 keyword_iterator keyword_begin() const {
264 return reinterpret_cast<keyword_iterator>(this+1);
265 }
266 keyword_iterator keyword_end() const {
267 return keyword_begin()+getNumArgs();
268 }
269 IdentifierInfo *getIdentifierInfoForSlot(unsigned i) const {
270 assert(i < getNumArgs() && "getIdentifierInfoForSlot(): illegal index");
271 return keyword_begin()[i];
272 }
273 static void Profile(llvm::FoldingSetNodeID &ID,
274 keyword_iterator ArgTys, unsigned NumArgs) {
275 ID.AddInteger(NumArgs);
276 for (unsigned i = 0; i != NumArgs; ++i)
277 ID.AddPointer(ArgTys[i]);
278 }
279 void Profile(llvm::FoldingSetNodeID &ID) {
280 Profile(ID, keyword_begin(), getNumArgs());
281 }
282};
283} // end namespace clang.
284
285unsigned Selector::getNumArgs() const {
286 unsigned IIF = getIdentifierInfoFlag();
287 if (IIF == ZeroArg)
288 return 0;
289 if (IIF == OneArg)
290 return 1;
291 // We point to a MultiKeywordSelector (pointer doesn't contain any flags).
292 MultiKeywordSelector *SI = reinterpret_cast<MultiKeywordSelector *>(InfoPtr);
293 return SI->getNumArgs();
294}
295
296IdentifierInfo *Selector::getIdentifierInfoForSlot(unsigned argIndex) const {
297 if (getIdentifierInfoFlag()) {
298 assert(argIndex == 0 && "illegal keyword index");
299 return getAsIdentifierInfo();
300 }
301 // We point to a MultiKeywordSelector (pointer doesn't contain any flags).
302 MultiKeywordSelector *SI = reinterpret_cast<MultiKeywordSelector *>(InfoPtr);
303 return SI->getIdentifierInfoForSlot(argIndex);
304}
305
306std::string MultiKeywordSelector::getName() const {
307 llvm::SmallString<256> Str;
308 llvm::raw_svector_ostream OS(Str);
309 for (keyword_iterator I = keyword_begin(), E = keyword_end(); I != E; ++I) {
310 if (*I)
311 OS << (*I)->getName();
312 OS << ':';
313 }
314
315 return OS.str();
316}
317
318std::string Selector::getAsString() const {
319 if (InfoPtr == 0)
320 return "<null selector>";
321
322 if (InfoPtr & ArgFlags) {
323 IdentifierInfo *II = getAsIdentifierInfo();
324
325 // If the number of arguments is 0 then II is guaranteed to not be null.
326 if (getNumArgs() == 0)
327 return II->getName();
328
329 if (!II)
330 return ":";
331
332 return II->getName().str() + ":";
333 }
334
335 // We have a multiple keyword selector (no embedded flags).
336 return reinterpret_cast<MultiKeywordSelector *>(InfoPtr)->getName();
337}
338
339
340namespace {
341 struct SelectorTableImpl {
342 llvm::FoldingSet<MultiKeywordSelector> Table;
343 llvm::BumpPtrAllocator Allocator;
344 };
345} // end anonymous namespace.
346
347static SelectorTableImpl &getSelectorTableImpl(void *P) {
348 return *static_cast<SelectorTableImpl*>(P);
349}
350
351
352Selector SelectorTable::getSelector(unsigned nKeys, IdentifierInfo **IIV) {
353 if (nKeys < 2)
354 return Selector(IIV[0], nKeys);
355
356 SelectorTableImpl &SelTabImpl = getSelectorTableImpl(Impl);
357
358 // Unique selector, to guarantee there is one per name.
359 llvm::FoldingSetNodeID ID;
360 MultiKeywordSelector::Profile(ID, IIV, nKeys);
361
362 void *InsertPos = 0;
363 if (MultiKeywordSelector *SI =
364 SelTabImpl.Table.FindNodeOrInsertPos(ID, InsertPos))
365 return Selector(SI);
366
367 // MultiKeywordSelector objects are not allocated with new because they have a
368 // variable size array (for parameter types) at the end of them.
369 unsigned Size = sizeof(MultiKeywordSelector) + nKeys*sizeof(IdentifierInfo *);
370 MultiKeywordSelector *SI =
371 (MultiKeywordSelector*)SelTabImpl.Allocator.Allocate(Size,
372 llvm::alignof<MultiKeywordSelector>());
373 new (SI) MultiKeywordSelector(nKeys, IIV);
374 SelTabImpl.Table.InsertNode(SI, InsertPos);
375 return Selector(SI);
376}
377
378SelectorTable::SelectorTable() {
379 Impl = new SelectorTableImpl();
380}
381
382SelectorTable::~SelectorTable() {
383 delete &getSelectorTableImpl(Impl);
384}
385
386const char *clang::getOperatorSpelling(OverloadedOperatorKind Operator) {
387 switch (Operator) {
388 case OO_None:
389 case NUM_OVERLOADED_OPERATORS:
390 return 0;
391
392#define OVERLOADED_OPERATOR(Name,Spelling,Token,Unary,Binary,MemberOnly) \
393 case OO_##Name: return Spelling;
394#include "clang/Basic/OperatorKinds.def"
395 }
396
397 return 0;
398}
399