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1 //
2 // Copyright (C) 2002-2005  3Dlabs Inc. Ltd.
3 // Copyright (C) 2012-2013 LunarG, Inc.
4 // Copyright (C) 2017 ARM Limited.
5 // Copyright (C) 2015-2018 Google, Inc.
6 // Modifications Copyright (C) 2020 Advanced Micro Devices, Inc. All rights reserved.
7 //
8 // All rights reserved.
9 //
10 // Redistribution and use in source and binary forms, with or without
11 // modification, are permitted provided that the following conditions
12 // are met:
13 //
14 //    Redistributions of source code must retain the above copyright
15 //    notice, this list of conditions and the following disclaimer.
16 //
17 //    Redistributions in binary form must reproduce the above
18 //    copyright notice, this list of conditions and the following
19 //    disclaimer in the documentation and/or other materials provided
20 //    with the distribution.
21 //
22 //    Neither the name of 3Dlabs Inc. Ltd. nor the names of its
23 //    contributors may be used to endorse or promote products derived
24 //    from this software without specific prior written permission.
25 //
26 // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
27 // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
28 // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
29 // FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
30 // COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
31 // INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
32 // BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
33 // LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
34 // CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
35 // LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
36 // ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
37 // POSSIBILITY OF SUCH DAMAGE.
38 //
39 
40 //
41 // Symbol table for parsing.  Most functionality and main ideas
42 // are documented in the header file.
43 //
44 
45 #include "SymbolTable.h"
46 
47 namespace glslang {
48 
49 //
50 // TType helper function needs a place to live.
51 //
52 
53 //
54 // Recursively generate mangled names.
55 //
buildMangledName(TString & mangledName) const56 void TType::buildMangledName(TString& mangledName) const
57 {
58     if (isMatrix())
59         mangledName += 'm';
60     else if (isVector())
61         mangledName += 'v';
62 
63     switch (basicType) {
64     case EbtFloat:              mangledName += 'f';      break;
65     case EbtInt:                mangledName += 'i';      break;
66     case EbtUint:               mangledName += 'u';      break;
67     case EbtBool:               mangledName += 'b';      break;
68     case EbtDouble:             mangledName += 'd';      break;
69     case EbtFloat16:            mangledName += "f16";    break;
70     case EbtInt8:               mangledName += "i8";     break;
71     case EbtUint8:              mangledName += "u8";     break;
72     case EbtInt16:              mangledName += "i16";    break;
73     case EbtUint16:             mangledName += "u16";    break;
74     case EbtInt64:              mangledName += "i64";    break;
75     case EbtUint64:             mangledName += "u64";    break;
76     case EbtAtomicUint:         mangledName += "au";     break;
77     case EbtAccStruct:          mangledName += "as";     break;
78     case EbtRayQuery:           mangledName += "rq";     break;
79     case EbtSpirvType:          mangledName += "spv-t";  break;
80     case EbtHitObjectNV:        mangledName += "ho";     break;
81     case EbtSampler:
82         switch (sampler.type) {
83         case EbtFloat16: mangledName += "f16"; break;
84         case EbtInt:   mangledName += "i"; break;
85         case EbtUint:  mangledName += "u"; break;
86         case EbtInt64:   mangledName += "i64"; break;
87         case EbtUint64:  mangledName += "u64"; break;
88         default: break; // some compilers want this
89         }
90         if (sampler.isImageClass())
91             mangledName += "I";  // a normal image or subpass
92         else if (sampler.isPureSampler())
93             mangledName += "p";  // a "pure" sampler
94         else if (!sampler.isCombined())
95             mangledName += "t";  // a "pure" texture
96         else
97             mangledName += "s";  // traditional combined sampler
98         if (sampler.isArrayed())
99             mangledName += "A";
100         if (sampler.isShadow())
101             mangledName += "S";
102         if (sampler.isExternal())
103             mangledName += "E";
104         if (sampler.isYuv())
105             mangledName += "Y";
106         switch (sampler.dim) {
107         case Esd2D:       mangledName += "2";  break;
108         case Esd3D:       mangledName += "3";  break;
109         case EsdCube:     mangledName += "C";  break;
110         case Esd1D:       mangledName += "1";  break;
111         case EsdRect:     mangledName += "R2"; break;
112         case EsdBuffer:   mangledName += "B";  break;
113         case EsdSubpass:  mangledName += "P";  break;
114         default: break; // some compilers want this
115         }
116 
117 #ifdef ENABLE_HLSL
118         if (sampler.hasReturnStruct()) {
119             // Name mangle for sampler return struct uses struct table index.
120             mangledName += "-tx-struct";
121 
122             char text[16]; // plenty enough space for the small integers.
123             snprintf(text, sizeof(text), "%u-", sampler.getStructReturnIndex());
124             mangledName += text;
125         } else {
126             switch (sampler.getVectorSize()) {
127             case 1: mangledName += "1"; break;
128             case 2: mangledName += "2"; break;
129             case 3: mangledName += "3"; break;
130             case 4: break; // default to prior name mangle behavior
131             }
132         }
133 #endif
134 
135         if (sampler.isMultiSample())
136             mangledName += "M";
137         break;
138     case EbtStruct:
139     case EbtBlock:
140         if (basicType == EbtStruct)
141             mangledName += "struct-";
142         else
143             mangledName += "block-";
144         if (typeName)
145             mangledName += *typeName;
146         for (unsigned int i = 0; i < structure->size(); ++i) {
147             if ((*structure)[i].type->getBasicType() == EbtVoid)
148                 continue;
149             mangledName += '-';
150             (*structure)[i].type->buildMangledName(mangledName);
151         }
152     default:
153         break;
154     }
155 
156     if (getVectorSize() > 0)
157         mangledName += static_cast<char>('0' + getVectorSize());
158     else {
159         mangledName += static_cast<char>('0' + getMatrixCols());
160         mangledName += static_cast<char>('0' + getMatrixRows());
161     }
162 
163     if (arraySizes) {
164         const int maxSize = 11;
165         char buf[maxSize];
166         for (int i = 0; i < arraySizes->getNumDims(); ++i) {
167             if (arraySizes->getDimNode(i)) {
168                 if (arraySizes->getDimNode(i)->getAsSymbolNode())
169                     snprintf(buf, maxSize, "s%lld", arraySizes->getDimNode(i)->getAsSymbolNode()->getId());
170                 else
171                     snprintf(buf, maxSize, "s%p", arraySizes->getDimNode(i));
172             } else
173                 snprintf(buf, maxSize, "%d", arraySizes->getDimSize(i));
174             mangledName += '[';
175             mangledName += buf;
176             mangledName += ']';
177         }
178     }
179 }
180 
181 //
182 // Dump functions.
183 //
184 
dumpExtensions(TInfoSink & infoSink) const185 void TSymbol::dumpExtensions(TInfoSink& infoSink) const
186 {
187     int numExtensions = getNumExtensions();
188     if (numExtensions) {
189         infoSink.debug << " <";
190 
191         for (int i = 0; i < numExtensions; i++)
192             infoSink.debug << getExtensions()[i] << ",";
193 
194         infoSink.debug << ">";
195     }
196 }
197 
dump(TInfoSink & infoSink,bool complete) const198 void TVariable::dump(TInfoSink& infoSink, bool complete) const
199 {
200     if (complete) {
201         infoSink.debug << getName().c_str() << ": " << type.getCompleteString();
202         dumpExtensions(infoSink);
203     } else {
204         infoSink.debug << getName().c_str() << ": " << type.getStorageQualifierString() << " "
205                        << type.getBasicTypeString();
206 
207         if (type.isArray())
208             infoSink.debug << "[0]";
209     }
210 
211     infoSink.debug << "\n";
212 }
213 
dump(TInfoSink & infoSink,bool complete) const214 void TFunction::dump(TInfoSink& infoSink, bool complete) const
215 {
216     if (complete) {
217         infoSink.debug << getName().c_str() << ": " << returnType.getCompleteString() << " " << getName().c_str()
218                        << "(";
219 
220         int numParams = getParamCount();
221         for (int i = 0; i < numParams; i++) {
222             const TParameter &param = parameters[i];
223             infoSink.debug << param.type->getCompleteString() << " "
224                            << (param.type->isStruct() ? "of " + param.type->getTypeName() + " " : "")
225                            << (param.name ? *param.name : "") << (i < numParams - 1 ? "," : "");
226         }
227 
228         infoSink.debug << ")";
229         dumpExtensions(infoSink);
230     } else {
231         infoSink.debug << getName().c_str() << ": " << returnType.getBasicTypeString() << " "
232                        << getMangledName().c_str() << "n";
233     }
234 
235     infoSink.debug << "\n";
236 }
237 
dump(TInfoSink & TInfoSink,bool) const238 void TAnonMember::dump(TInfoSink& TInfoSink, bool) const
239 {
240     TInfoSink.debug << "anonymous member " << getMemberNumber() << " of " << getAnonContainer().getName().c_str()
241                     << "\n";
242 }
243 
dump(TInfoSink & infoSink,bool complete) const244 void TSymbolTableLevel::dump(TInfoSink& infoSink, bool complete) const
245 {
246     tLevel::const_iterator it;
247     for (it = level.begin(); it != level.end(); ++it)
248         (*it).second->dump(infoSink, complete);
249 }
250 
dump(TInfoSink & infoSink,bool complete) const251 void TSymbolTable::dump(TInfoSink& infoSink, bool complete) const
252 {
253     for (int level = currentLevel(); level >= 0; --level) {
254         infoSink.debug << "LEVEL " << level << "\n";
255         table[level]->dump(infoSink, complete);
256     }
257 }
258 
259 //
260 // Functions have buried pointers to delete.
261 //
~TFunction()262 TFunction::~TFunction()
263 {
264     for (TParamList::iterator i = parameters.begin(); i != parameters.end(); ++i)
265         delete (*i).type;
266 }
267 
268 //
269 // Symbol table levels are a map of pointers to symbols that have to be deleted.
270 //
~TSymbolTableLevel()271 TSymbolTableLevel::~TSymbolTableLevel()
272 {
273     for (tLevel::iterator it = level.begin(); it != level.end(); ++it) {
274         const TString& name = it->first;
275         auto retargetIter = std::find_if(retargetedSymbols.begin(), retargetedSymbols.end(),
276                                       [&name](const std::pair<TString, TString>& i) { return i.first == name; });
277         if (retargetIter == retargetedSymbols.end())
278             delete (*it).second;
279     }
280 
281 
282     delete [] defaultPrecision;
283 }
284 
285 //
286 // Change all function entries in the table with the non-mangled name
287 // to be related to the provided built-in operation.
288 //
relateToOperator(const char * name,TOperator op)289 void TSymbolTableLevel::relateToOperator(const char* name, TOperator op)
290 {
291     tLevel::const_iterator candidate = level.lower_bound(name);
292     while (candidate != level.end()) {
293         const TString& candidateName = (*candidate).first;
294         TString::size_type parenAt = candidateName.find_first_of('(');
295         if (parenAt != candidateName.npos && candidateName.compare(0, parenAt, name) == 0) {
296             TFunction* function = (*candidate).second->getAsFunction();
297             function->relateToOperator(op);
298         } else
299             break;
300         ++candidate;
301     }
302 }
303 
304 // Make all function overloads of the given name require an extension(s).
305 // Should only be used for a version/profile that actually needs the extension(s).
setFunctionExtensions(const char * name,int num,const char * const extensions[])306 void TSymbolTableLevel::setFunctionExtensions(const char* name, int num, const char* const extensions[])
307 {
308     tLevel::const_iterator candidate = level.lower_bound(name);
309     while (candidate != level.end()) {
310         const TString& candidateName = (*candidate).first;
311         TString::size_type parenAt = candidateName.find_first_of('(');
312         if (parenAt != candidateName.npos && candidateName.compare(0, parenAt, name) == 0) {
313             TSymbol* symbol = candidate->second;
314             symbol->setExtensions(num, extensions);
315         } else
316             break;
317         ++candidate;
318     }
319 }
320 
321 // Make a single function require an extension(s). i.e., this will only set the extensions for the symbol that matches 'name' exactly.
322 // This is different from setFunctionExtensions, which uses std::map::lower_bound to effectively set all symbols that start with 'name'.
323 // Should only be used for a version/profile that actually needs the extension(s).
setSingleFunctionExtensions(const char * name,int num,const char * const extensions[])324 void TSymbolTableLevel::setSingleFunctionExtensions(const char* name, int num, const char* const extensions[])
325 {
326     if (auto candidate = level.find(name); candidate != level.end()) {
327         candidate->second->setExtensions(num, extensions);
328     }
329 }
330 
331 //
332 // Make all symbols in this table level read only.
333 //
readOnly()334 void TSymbolTableLevel::readOnly()
335 {
336     for (tLevel::iterator it = level.begin(); it != level.end(); ++it)
337         (*it).second->makeReadOnly();
338 }
339 
340 //
341 // Copy a symbol, but the copy is writable; call readOnly() afterward if that's not desired.
342 //
TSymbol(const TSymbol & copyOf)343 TSymbol::TSymbol(const TSymbol& copyOf)
344 {
345     name = NewPoolTString(copyOf.name->c_str());
346     uniqueId = copyOf.uniqueId;
347     writable = true;
348 }
349 
TVariable(const TVariable & copyOf)350 TVariable::TVariable(const TVariable& copyOf) : TSymbol(copyOf)
351 {
352     type.deepCopy(copyOf.type);
353     userType = copyOf.userType;
354 
355     // we don't support specialization-constant subtrees in cloned tables, only extensions
356     constSubtree = nullptr;
357     extensions = nullptr;
358     memberExtensions = nullptr;
359     if (copyOf.getNumExtensions() > 0)
360         setExtensions(copyOf.getNumExtensions(), copyOf.getExtensions());
361     if (copyOf.hasMemberExtensions()) {
362         for (int m = 0; m < (int)copyOf.type.getStruct()->size(); ++m) {
363             if (copyOf.getNumMemberExtensions(m) > 0)
364                 setMemberExtensions(m, copyOf.getNumMemberExtensions(m), copyOf.getMemberExtensions(m));
365         }
366     }
367 
368     if (! copyOf.constArray.empty()) {
369         assert(! copyOf.type.isStruct());
370         TConstUnionArray newArray(copyOf.constArray, 0, copyOf.constArray.size());
371         constArray = newArray;
372     }
373 }
374 
clone() const375 TVariable* TVariable::clone() const
376 {
377     TVariable *variable = new TVariable(*this);
378 
379     return variable;
380 }
381 
TFunction(const TFunction & copyOf)382 TFunction::TFunction(const TFunction& copyOf) : TSymbol(copyOf)
383 {
384     for (unsigned int i = 0; i < copyOf.parameters.size(); ++i) {
385         TParameter param{};
386         parameters.push_back(param);
387         (void)parameters.back().copyParam(copyOf.parameters[i]);
388     }
389 
390     extensions = nullptr;
391     if (copyOf.getNumExtensions() > 0)
392         setExtensions(copyOf.getNumExtensions(), copyOf.getExtensions());
393     returnType.deepCopy(copyOf.returnType);
394     mangledName = copyOf.mangledName;
395     op = copyOf.op;
396     defined = copyOf.defined;
397     prototyped = copyOf.prototyped;
398     implicitThis = copyOf.implicitThis;
399     illegalImplicitThis = copyOf.illegalImplicitThis;
400     defaultParamCount = copyOf.defaultParamCount;
401     spirvInst = copyOf.spirvInst;
402 }
403 
clone() const404 TFunction* TFunction::clone() const
405 {
406     TFunction *function = new TFunction(*this);
407 
408     return function;
409 }
410 
clone() const411 TAnonMember* TAnonMember::clone() const
412 {
413     // Anonymous members of a given block should be cloned at a higher level,
414     // where they can all be assured to still end up pointing to a single
415     // copy of the original container.
416     assert(0);
417 
418     return nullptr;
419 }
420 
clone() const421 TSymbolTableLevel* TSymbolTableLevel::clone() const
422 {
423     TSymbolTableLevel *symTableLevel = new TSymbolTableLevel();
424     symTableLevel->anonId = anonId;
425     symTableLevel->thisLevel = thisLevel;
426     symTableLevel->retargetedSymbols.clear();
427     for (auto &s : retargetedSymbols) {
428         symTableLevel->retargetedSymbols.push_back({s.first, s.second});
429     }
430     std::vector<bool> containerCopied(anonId, false);
431     tLevel::const_iterator iter;
432     for (iter = level.begin(); iter != level.end(); ++iter) {
433         const TAnonMember* anon = iter->second->getAsAnonMember();
434         if (anon) {
435             // Insert all the anonymous members of this same container at once,
436             // avoid inserting the remaining members in the future, once this has been done,
437             // allowing them to all be part of the same new container.
438             if (! containerCopied[anon->getAnonId()]) {
439                 TVariable* container = anon->getAnonContainer().clone();
440                 container->changeName(NewPoolTString(""));
441                 // insert the container and all its members
442                 symTableLevel->insert(*container, false);
443                 containerCopied[anon->getAnonId()] = true;
444             }
445         } else {
446             const TString& name = iter->first;
447             auto retargetIter = std::find_if(retargetedSymbols.begin(), retargetedSymbols.end(),
448                                           [&name](const std::pair<TString, TString>& i) { return i.first == name; });
449             if (retargetIter != retargetedSymbols.end())
450                 continue;
451             symTableLevel->insert(*iter->second->clone(), false);
452         }
453     }
454     // Now point retargeted symbols to the newly created versions of them
455     for (auto &s : retargetedSymbols) {
456         TSymbol* sym = symTableLevel->find(s.second);
457         if (!sym)
458             continue;
459         symTableLevel->insert(s.first, sym);
460     }
461 
462     return symTableLevel;
463 }
464 
copyTable(const TSymbolTable & copyOf)465 void TSymbolTable::copyTable(const TSymbolTable& copyOf)
466 {
467     assert(adoptedLevels == copyOf.adoptedLevels);
468 
469     uniqueId = copyOf.uniqueId;
470     noBuiltInRedeclarations = copyOf.noBuiltInRedeclarations;
471     separateNameSpaces = copyOf.separateNameSpaces;
472     for (unsigned int i = copyOf.adoptedLevels; i < copyOf.table.size(); ++i)
473         table.push_back(copyOf.table[i]->clone());
474 }
475 
476 } // end namespace glslang
477