blob: be5037c7a9f2f2f1fe7a3be6b39a4763cd281d8a [file] [log] [blame]
John Bauman66b8ab22014-05-06 15:57:45 -04001//
John Baumand4ae8632014-05-06 16:18:33 -04002// Copyright (c) 2002-2013 The ANGLE Project Authors. All rights reserved.
John Bauman66b8ab22014-05-06 15:57:45 -04003// Use of this source code is governed by a BSD-style license that can be
4// found in the LICENSE file.
5//
6
7#ifndef _SYMBOL_TABLE_INCLUDED_
8#define _SYMBOL_TABLE_INCLUDED_
9
10//
11// Symbol table for parsing. Has these design characteristics:
12//
13// * Same symbol table can be used to compile many shaders, to preserve
14// effort of creating and loading with the large numbers of built-in
15// symbols.
16//
17// * Name mangling will be used to give each function a unique name
18// so that symbol table lookups are never ambiguous. This allows
19// a simpler symbol table structure.
20//
Nicolas Capenscc1e9962015-03-02 11:17:58 -050021// * Pushing and popping of scope, so symbol table will really be a stack
John Bauman66b8ab22014-05-06 15:57:45 -040022// of symbol tables. Searched from the top, with new inserts going into
23// the top.
24//
25// * Constants: Compile time constant symbols will keep their values
26// in the symbol table. The parser can substitute constants at parse
27// time, including doing constant folding and constant propagation.
28//
29// * No temporaries: Temporaries made from operations (+, --, .xy, etc.)
30// are tracked in the intermediate representation, not the symbol table.
31//
32
33#include <assert.h>
34
Nicolas Capenscc863da2015-01-21 15:50:55 -050035#include "InfoSink.h"
36#include "intermediate.h"
John Bauman66b8ab22014-05-06 15:57:45 -040037
38//
39// Symbol base class. (Can build functions or variables out of these...)
40//
Nicolas Capens0a7f0c22015-02-18 14:47:31 -050041class TSymbol
42{
John Bauman66b8ab22014-05-06 15:57:45 -040043public:
Nicolas Capens978ddc52014-11-11 12:42:08 -050044 POOL_ALLOCATOR_NEW_DELETE();
John Bauman66b8ab22014-05-06 15:57:45 -040045 TSymbol(const TString *n) : name(n) { }
46 virtual ~TSymbol() { /* don't delete name, it's from the pool */ }
Nicolas Capens978ddc52014-11-11 12:42:08 -050047
John Bauman66b8ab22014-05-06 15:57:45 -040048 const TString& getName() const { return *name; }
49 virtual const TString& getMangledName() const { return getName(); }
50 virtual bool isFunction() const { return false; }
51 virtual bool isVariable() const { return false; }
52 void setUniqueId(int id) { uniqueId = id; }
53 int getUniqueId() const { return uniqueId; }
John Bauman66b8ab22014-05-06 15:57:45 -040054 TSymbol(const TSymbol&);
John Bauman66b8ab22014-05-06 15:57:45 -040055
56protected:
57 const TString *name;
58 unsigned int uniqueId; // For real comparing during code generation
59};
60
61//
62// Variable class, meaning a symbol that's not a function.
Nicolas Capenscc1e9962015-03-02 11:17:58 -050063//
John Bauman66b8ab22014-05-06 15:57:45 -040064// There could be a separate class heirarchy for Constant variables;
65// Only one of int, bool, or float, (or none) is correct for
66// any particular use, but it's easy to do this way, and doesn't
67// seem worth having separate classes, and "getConst" can't simply return
Nicolas Capenscc1e9962015-03-02 11:17:58 -050068// different values for different types polymorphically, so this is
John Bauman66b8ab22014-05-06 15:57:45 -040069// just simple and pragmatic.
70//
Nicolas Capens0a7f0c22015-02-18 14:47:31 -050071class TVariable : public TSymbol
72{
John Bauman66b8ab22014-05-06 15:57:45 -040073public:
74 TVariable(const TString *name, const TType& t, bool uT = false ) : TSymbol(name), type(t), userType(uT), unionArray(0), arrayInformationType(0) { }
75 virtual ~TVariable() { }
Nicolas Capenscc1e9962015-03-02 11:17:58 -050076 virtual bool isVariable() const { return true; }
77 TType& getType() { return type; }
John Bauman66b8ab22014-05-06 15:57:45 -040078 const TType& getType() const { return type; }
79 bool isUserType() const { return userType; }
80 void setQualifier(TQualifier qualifier) { type.setQualifier(qualifier); }
81 void updateArrayInformationType(TType *t) { arrayInformationType = t; }
82 TType* getArrayInformationType() { return arrayInformationType; }
83
John Bauman66b8ab22014-05-06 15:57:45 -040084 ConstantUnion* getConstPointer()
Nicolas Capenscc1e9962015-03-02 11:17:58 -050085 {
John Bauman66b8ab22014-05-06 15:57:45 -040086 if (!unionArray)
87 unionArray = new ConstantUnion[type.getObjectSize()];
88
89 return unionArray;
90 }
91
92 ConstantUnion* getConstPointer() const { return unionArray; }
93
94 void shareConstPointer( ConstantUnion *constArray)
95 {
96 if (unionArray == constArray)
97 return;
98
99 delete[] unionArray;
Nicolas Capenscc1e9962015-03-02 11:17:58 -0500100 unionArray = constArray;
John Bauman66b8ab22014-05-06 15:57:45 -0400101 }
John Bauman66b8ab22014-05-06 15:57:45 -0400102
103protected:
104 TType type;
105 bool userType;
106 // we are assuming that Pool Allocator will free the memory allocated to unionArray
107 // when this object is destroyed
108 ConstantUnion *unionArray;
109 TType *arrayInformationType; // this is used for updating maxArraySize in all the references to a given symbol
110};
111
112//
113// The function sub-class of symbols and the parser will need to
114// share this definition of a function parameter.
115//
Nicolas Capens0a7f0c22015-02-18 14:47:31 -0500116struct TParameter
117{
John Bauman66b8ab22014-05-06 15:57:45 -0400118 TString *name;
John Baumand4ae8632014-05-06 16:18:33 -0400119 TType *type;
John Bauman66b8ab22014-05-06 15:57:45 -0400120};
121
122//
Nicolas Capenscc1e9962015-03-02 11:17:58 -0500123// The function sub-class of a symbol.
John Bauman66b8ab22014-05-06 15:57:45 -0400124//
Nicolas Capens0a7f0c22015-02-18 14:47:31 -0500125class TFunction : public TSymbol
126{
John Bauman66b8ab22014-05-06 15:57:45 -0400127public:
128 TFunction(TOperator o) :
129 TSymbol(0),
130 returnType(TType(EbtVoid, EbpUndefined)),
131 op(o),
132 defined(false) { }
Nicolas Capenscc1e9962015-03-02 11:17:58 -0500133 TFunction(const TString *name, TType& retType, TOperator tOp = EOpNull, const char *ext = "") :
134 TSymbol(name),
John Bauman66b8ab22014-05-06 15:57:45 -0400135 returnType(retType),
136 mangledName(TFunction::mangleName(*name)),
137 op(tOp),
Nicolas Capens18d5ef92015-02-24 17:38:08 -0500138 extension(ext),
John Bauman66b8ab22014-05-06 15:57:45 -0400139 defined(false) { }
140 virtual ~TFunction();
Nicolas Capenscc1e9962015-03-02 11:17:58 -0500141 virtual bool isFunction() const { return true; }
John Bauman66b8ab22014-05-06 15:57:45 -0400142
143 static TString mangleName(const TString& name) { return name + '('; }
144 static TString unmangleName(const TString& mangledName)
145 {
146 return TString(mangledName.c_str(), mangledName.find_first_of('('));
147 }
148
Nicolas Capenscc1e9962015-03-02 11:17:58 -0500149 void addParameter(TParameter& p)
Nicolas Capens0a7f0c22015-02-18 14:47:31 -0500150 {
John Bauman66b8ab22014-05-06 15:57:45 -0400151 parameters.push_back(p);
152 mangledName = mangledName + p.type->getMangledName();
153 }
154
155 const TString& getMangledName() const { return mangledName; }
156 const TType& getReturnType() const { return returnType; }
157
John Bauman66b8ab22014-05-06 15:57:45 -0400158 TOperator getBuiltInOp() const { return op; }
John Bauman66b8ab22014-05-06 15:57:45 -0400159 const TString& getExtension() const { return extension; }
160
161 void setDefined() { defined = true; }
162 bool isDefined() { return defined; }
163
Nicolas Capenscc1e9962015-03-02 11:17:58 -0500164 int getParamCount() const { return static_cast<int>(parameters.size()); }
John Bauman66b8ab22014-05-06 15:57:45 -0400165 const TParameter& getParam(int i) const { return parameters[i]; }
166
John Bauman66b8ab22014-05-06 15:57:45 -0400167protected:
168 typedef TVector<TParameter> TParamList;
169 TParamList parameters;
170 TType returnType;
171 TString mangledName;
172 TOperator op;
173 TString extension;
174 bool defined;
175};
176
177
Nicolas Capens0a7f0c22015-02-18 14:47:31 -0500178class TSymbolTableLevel
179{
John Bauman66b8ab22014-05-06 15:57:45 -0400180public:
181 typedef TMap<TString, TSymbol*> tLevel;
182 typedef tLevel::const_iterator const_iterator;
183 typedef const tLevel::value_type tLevelPair;
184 typedef std::pair<tLevel::iterator, bool> tInsertResult;
185
Nicolas Capens978ddc52014-11-11 12:42:08 -0500186 POOL_ALLOCATOR_NEW_DELETE();
John Bauman66b8ab22014-05-06 15:57:45 -0400187 TSymbolTableLevel() { }
188 ~TSymbolTableLevel();
189
Nicolas Capenscc1e9962015-03-02 11:17:58 -0500190 bool insert(TSymbol &symbol)
John Bauman66b8ab22014-05-06 15:57:45 -0400191 {
John Baumand4ae8632014-05-06 16:18:33 -0400192 symbol.setUniqueId(++uniqueId);
193
John Bauman66b8ab22014-05-06 15:57:45 -0400194 //
195 // returning true means symbol was added to the table
196 //
197 tInsertResult result;
198 result = level.insert(tLevelPair(symbol.getMangledName(), &symbol));
199
200 return result.second;
201 }
202
203 TSymbol* find(const TString& name) const
204 {
205 tLevel::const_iterator it = level.find(name);
206 if (it == level.end())
207 return 0;
208 else
209 return (*it).second;
210 }
211
John Bauman66b8ab22014-05-06 15:57:45 -0400212protected:
213 tLevel level;
John Baumand4ae8632014-05-06 16:18:33 -0400214 static int uniqueId; // for unique identification in code generation
John Bauman66b8ab22014-05-06 15:57:45 -0400215};
216
Nicolas Capense2858652015-02-18 15:30:51 -0500217enum ESymbolLevel
218{
Nicolas Capens3d7f6ed2015-02-18 16:34:50 -0500219 COMMON_BUILTINS,
220 ESSL1_BUILTINS,
221 ESSL3_BUILTINS,
222 LAST_BUILTIN_LEVEL = ESSL3_BUILTINS,
223 GLOBAL_LEVEL
Nicolas Capense2858652015-02-18 15:30:51 -0500224};
225
Nicolas Capens8fa9d232015-02-19 15:53:16 -0500226inline bool IsGenType(const TType *type)
227{
228 if(type)
229 {
230 TBasicType basicType = type->getBasicType();
231 return basicType == EbtGenType || basicType == EbtGenIType || basicType == EbtGenUType || basicType == EbtGenBType;
232 }
233
234 return false;
235}
236
237inline bool IsVecType(const TType *type)
238{
239 if(type)
240 {
241 TBasicType basicType = type->getBasicType();
242 return basicType == EbtVec || basicType == EbtIVec || basicType == EbtUVec || basicType == EbtBVec;
243 }
244
245 return false;
246}
247
248inline TType *GenType(TType *type, int size)
249{
250 ASSERT(size >= 1 && size <= 4);
251
252 if(!type)
253 {
254 return nullptr;
255 }
256
257 ASSERT(!IsVecType(type));
258
259 switch(type->getBasicType())
260 {
261 case EbtGenType: return new TType(EbtFloat, size);
262 case EbtGenIType: return new TType(EbtInt, size);
263 case EbtGenUType: return new TType(EbtUInt, size);
264 case EbtGenBType: return new TType(EbtBool, size);
265 default: return type;
266 }
267}
268
269inline TType *VecType(TType *type, int size)
270{
271 ASSERT(size >= 2 && size <= 4);
272
273 if(!type)
274 {
275 return nullptr;
276 }
277
278 ASSERT(!IsGenType(type));
279
280 switch(type->getBasicType())
281 {
282 case EbtVec: return new TType(EbtFloat, size);
283 case EbtIVec: return new TType(EbtInt, size);
284 case EbtUVec: return new TType(EbtUInt, size);
285 case EbtBVec: return new TType(EbtBool, size);
286 default: return type;
287 }
288}
289
Nicolas Capens0a7f0c22015-02-18 14:47:31 -0500290class TSymbolTable
291{
John Bauman66b8ab22014-05-06 15:57:45 -0400292public:
John Baumand4ae8632014-05-06 16:18:33 -0400293 TSymbolTable()
John Bauman66b8ab22014-05-06 15:57:45 -0400294 {
295 //
296 // The symbol table cannot be used until push() is called, but
297 // the lack of an initial call to push() can be used to detect
298 // that the symbol table has not been preloaded with built-ins.
299 //
300 }
301
302 ~TSymbolTable()
303 {
Nicolas Capense2858652015-02-18 15:30:51 -0500304 while(currentLevel() > LAST_BUILTIN_LEVEL)
305 {
306 pop();
307 }
John Bauman66b8ab22014-05-06 15:57:45 -0400308 }
309
Nicolas Capense2858652015-02-18 15:30:51 -0500310 bool isEmpty() { return table.empty(); }
311 bool atBuiltInLevel() { return currentLevel() <= LAST_BUILTIN_LEVEL; }
312 bool atGlobalLevel() { return currentLevel() <= GLOBAL_LEVEL; }
John Bauman66b8ab22014-05-06 15:57:45 -0400313 void push()
314 {
315 table.push_back(new TSymbolTableLevel);
316 precisionStack.push_back( PrecisionStackLevel() );
317 }
318
319 void pop()
Nicolas Capens0a7f0c22015-02-18 14:47:31 -0500320 {
321 delete table[currentLevel()];
322 table.pop_back();
John Bauman66b8ab22014-05-06 15:57:45 -0400323 precisionStack.pop_back();
324 }
325
Nicolas Capensd603ecd2015-02-18 14:52:21 -0500326 bool declare(TSymbol &symbol)
John Bauman66b8ab22014-05-06 15:57:45 -0400327 {
Nicolas Capensd603ecd2015-02-18 14:52:21 -0500328 return insert(currentLevel(), symbol);
329 }
330
Nicolas Capense2858652015-02-18 15:30:51 -0500331 bool insert(ESymbolLevel level, TSymbol &symbol)
Nicolas Capensd603ecd2015-02-18 14:52:21 -0500332 {
333 return table[level]->insert(symbol);
John Bauman66b8ab22014-05-06 15:57:45 -0400334 }
335
Nicolas Capense2858652015-02-18 15:30:51 -0500336 bool insertConstInt(ESymbolLevel level, const char *name, int value)
John Baumand4ae8632014-05-06 16:18:33 -0400337 {
338 TVariable *constant = new TVariable(NewPoolTString(name), TType(EbtInt, EbpUndefined, EvqConst, 1));
339 constant->getConstPointer()->setIConst(value);
Nicolas Capense2858652015-02-18 15:30:51 -0500340 return insert(level, *constant);
John Baumand4ae8632014-05-06 16:18:33 -0400341 }
342
Nicolas Capens18d5ef92015-02-24 17:38:08 -0500343 void insertBuiltIn(ESymbolLevel level, TOperator op, const char *ext, TType *rvalue, const char *name, TType *ptype1, TType *ptype2 = 0, TType *ptype3 = 0, TType *ptype4 = 0)
John Baumand4ae8632014-05-06 16:18:33 -0400344 {
Nicolas Capensf8a4cba2015-02-18 17:30:46 -0500345 if(ptype1->getBasicType() == EbtGSampler2D)
346 {
347 bool gvec4 = (rvalue->getBasicType() == EbtGVec4);
348 insertBuiltIn(level, gvec4 ? new TType(EbtFloat, 4) : rvalue, name, new TType(EbtSampler2D), ptype2, ptype3, ptype4);
349 insertBuiltIn(level, gvec4 ? new TType(EbtInt, 4) : rvalue, name, new TType(EbtISampler2D), ptype2, ptype3, ptype4);
350 insertBuiltIn(level, gvec4 ? new TType(EbtUInt, 4) : rvalue, name, new TType(EbtUSampler2D), ptype2, ptype3, ptype4);
Nicolas Capensf8a4cba2015-02-18 17:30:46 -0500351 }
352 else if(ptype1->getBasicType() == EbtGSampler3D)
353 {
354 bool gvec4 = (rvalue->getBasicType() == EbtGVec4);
355 insertBuiltIn(level, gvec4 ? new TType(EbtFloat, 4) : rvalue, name, new TType(EbtSampler3D), ptype2, ptype3, ptype4);
356 insertBuiltIn(level, gvec4 ? new TType(EbtInt, 4) : rvalue, name, new TType(EbtISampler3D), ptype2, ptype3, ptype4);
357 insertBuiltIn(level, gvec4 ? new TType(EbtUInt, 4) : rvalue, name, new TType(EbtUSampler3D), ptype2, ptype3, ptype4);
Nicolas Capensf8a4cba2015-02-18 17:30:46 -0500358 }
359 else if(ptype1->getBasicType() == EbtGSamplerCube)
360 {
361 bool gvec4 = (rvalue->getBasicType() == EbtGVec4);
362 insertBuiltIn(level, gvec4 ? new TType(EbtFloat, 4) : rvalue, name, new TType(EbtSamplerCube), ptype2, ptype3, ptype4);
363 insertBuiltIn(level, gvec4 ? new TType(EbtInt, 4) : rvalue, name, new TType(EbtISamplerCube), ptype2, ptype3, ptype4);
364 insertBuiltIn(level, gvec4 ? new TType(EbtUInt, 4) : rvalue, name, new TType(EbtUSamplerCube), ptype2, ptype3, ptype4);
Nicolas Capensf8a4cba2015-02-18 17:30:46 -0500365 }
366 else if(ptype1->getBasicType() == EbtGSampler2DArray)
367 {
368 bool gvec4 = (rvalue->getBasicType() == EbtGVec4);
369 insertBuiltIn(level, gvec4 ? new TType(EbtFloat, 4) : rvalue, name, new TType(EbtSampler2DArray), ptype2, ptype3, ptype4);
370 insertBuiltIn(level, gvec4 ? new TType(EbtInt, 4) : rvalue, name, new TType(EbtISampler2DArray), ptype2, ptype3, ptype4);
371 insertBuiltIn(level, gvec4 ? new TType(EbtUInt, 4) : rvalue, name, new TType(EbtUSampler2DArray), ptype2, ptype3, ptype4);
Nicolas Capensf8a4cba2015-02-18 17:30:46 -0500372 }
Nicolas Capens33cda112015-02-24 17:35:47 -0500373 else if(IsGenType(rvalue) || IsGenType(ptype1) || IsGenType(ptype2) || IsGenType(ptype3))
Nicolas Capens8fa9d232015-02-19 15:53:16 -0500374 {
Nicolas Capens33cda112015-02-24 17:35:47 -0500375 ASSERT(!ptype4);
Nicolas Capens18d5ef92015-02-24 17:38:08 -0500376 insertBuiltIn(level, op, ext, GenType(rvalue, 1), name, GenType(ptype1, 1), GenType(ptype2, 1), GenType(ptype3, 1));
377 insertBuiltIn(level, op, ext, GenType(rvalue, 2), name, GenType(ptype1, 2), GenType(ptype2, 2), GenType(ptype3, 2));
378 insertBuiltIn(level, op, ext, GenType(rvalue, 3), name, GenType(ptype1, 3), GenType(ptype2, 3), GenType(ptype3, 3));
379 insertBuiltIn(level, op, ext, GenType(rvalue, 4), name, GenType(ptype1, 4), GenType(ptype2, 4), GenType(ptype3, 4));
Nicolas Capens8fa9d232015-02-19 15:53:16 -0500380 }
Nicolas Capens33cda112015-02-24 17:35:47 -0500381 else if(IsVecType(rvalue) || IsVecType(ptype1) || IsVecType(ptype2) || IsVecType(ptype3))
Nicolas Capens8fa9d232015-02-19 15:53:16 -0500382 {
Nicolas Capens33cda112015-02-24 17:35:47 -0500383 ASSERT(!ptype4);
Nicolas Capens18d5ef92015-02-24 17:38:08 -0500384 insertBuiltIn(level, op, ext, VecType(rvalue, 2), name, VecType(ptype1, 2), VecType(ptype2, 2), VecType(ptype3, 2));
385 insertBuiltIn(level, op, ext, VecType(rvalue, 3), name, VecType(ptype1, 3), VecType(ptype2, 3), VecType(ptype3, 3));
386 insertBuiltIn(level, op, ext, VecType(rvalue, 4), name, VecType(ptype1, 4), VecType(ptype2, 4), VecType(ptype3, 4));
Nicolas Capens8fa9d232015-02-19 15:53:16 -0500387 }
Nicolas Capens33cda112015-02-24 17:35:47 -0500388 else
John Baumand4ae8632014-05-06 16:18:33 -0400389 {
Nicolas Capens18d5ef92015-02-24 17:38:08 -0500390 TFunction *function = new TFunction(NewPoolTString(name), *rvalue, op, ext);
John Baumand4ae8632014-05-06 16:18:33 -0400391
Nicolas Capens33cda112015-02-24 17:35:47 -0500392 TParameter param1 = {0, ptype1};
393 function->addParameter(param1);
John Baumand4ae8632014-05-06 16:18:33 -0400394
Nicolas Capens33cda112015-02-24 17:35:47 -0500395 if(ptype2)
396 {
397 TParameter param2 = {0, ptype2};
398 function->addParameter(param2);
399 }
Nicolas Capens8fa9d232015-02-19 15:53:16 -0500400
Nicolas Capens33cda112015-02-24 17:35:47 -0500401 if(ptype3)
402 {
403 TParameter param3 = {0, ptype3};
404 function->addParameter(param3);
405 }
406
407 if(ptype4)
408 {
409 TParameter param4 = {0, ptype4};
410 function->addParameter(param4);
411 }
412
413 insert(level, *function);
414 }
415 }
416
Nicolas Capens18d5ef92015-02-24 17:38:08 -0500417 void insertBuiltIn(ESymbolLevel level, TOperator op, TType *rvalue, const char *name, TType *ptype1, TType *ptype2 = 0, TType *ptype3 = 0, TType *ptype4 = 0)
418 {
419 insertBuiltIn(level, op, "", rvalue, name, ptype1, ptype2, ptype3, ptype4);
420 }
421
Nicolas Capens33cda112015-02-24 17:35:47 -0500422 void insertBuiltIn(ESymbolLevel level, TType *rvalue, const char *name, TType *ptype1, TType *ptype2 = 0, TType *ptype3 = 0, TType *ptype4 = 0)
423 {
424 insertBuiltIn(level, EOpNull, rvalue, name, ptype1, ptype2, ptype3, ptype4);
John Bauman66b8ab22014-05-06 15:57:45 -0400425 }
426
Nicolas Capenscc1e9962015-03-02 11:17:58 -0500427 TSymbol *find(const TString &name, int shaderVersion, bool *builtIn = nullptr, bool *sameScope = nullptr) const;
Nicolas Capense2858652015-02-18 15:30:51 -0500428 TSymbol *findBuiltIn(const TString &name, int shaderVersion) const;
John Bauman66b8ab22014-05-06 15:57:45 -0400429
Nicolas Capens0a7f0c22015-02-18 14:47:31 -0500430 TSymbolTableLevel *getOuterLevel() const
431 {
Nicolas Capense2858652015-02-18 15:30:51 -0500432 assert(currentLevel() >= 1);
John Bauman66b8ab22014-05-06 15:57:45 -0400433 return table[currentLevel() - 1];
434 }
435
Nicolas Capens0a7f0c22015-02-18 14:47:31 -0500436 bool setDefaultPrecision(const TPublicType &type, TPrecision prec)
437 {
John Baumand4ae8632014-05-06 16:18:33 -0400438 if (IsSampler(type.type))
439 return true; // Skip sampler types for the time being
440 if (type.type != EbtFloat && type.type != EbtInt)
441 return false; // Only set default precision for int/float
442 if (type.size != 1 || type.matrix || type.array)
443 return false; // Not allowed to set for aggregate types
John Bauman66b8ab22014-05-06 15:57:45 -0400444 int indexOfLastElement = static_cast<int>(precisionStack.size()) - 1;
John Baumand4ae8632014-05-06 16:18:33 -0400445 precisionStack[indexOfLastElement][type.type] = prec; // Uses map operator [], overwrites the current value
446 return true;
John Bauman66b8ab22014-05-06 15:57:45 -0400447 }
448
449 // Searches down the precisionStack for a precision qualifier for the specified TBasicType
Nicolas Capens3c20f802015-02-17 17:17:20 -0500450 TPrecision getDefaultPrecision( TBasicType type)
451 {
452 // unsigned integers use the same precision as signed
453 if (type == EbtUInt) type = EbtInt;
454
John Bauman66b8ab22014-05-06 15:57:45 -0400455 if( type != EbtFloat && type != EbtInt ) return EbpUndefined;
456 int level = static_cast<int>(precisionStack.size()) - 1;
457 assert( level >= 0); // Just to be safe. Should not happen.
458 PrecisionStackLevel::iterator it;
459 TPrecision prec = EbpUndefined; // If we dont find anything we return this. Should we error check this?
460 while( level >= 0 ){
461 it = precisionStack[level].find( type );
462 if( it != precisionStack[level].end() ){
463 prec = (*it).second;
464 break;
465 }
466 level--;
467 }
468 return prec;
469 }
470
Nicolas Capens0a7f0c22015-02-18 14:47:31 -0500471protected:
Nicolas Capense2858652015-02-18 15:30:51 -0500472 ESymbolLevel currentLevel() const { return static_cast<ESymbolLevel>(table.size() - 1); }
John Bauman66b8ab22014-05-06 15:57:45 -0400473
474 std::vector<TSymbolTableLevel*> table;
475 typedef std::map< TBasicType, TPrecision > PrecisionStackLevel;
476 std::vector< PrecisionStackLevel > precisionStack;
John Bauman66b8ab22014-05-06 15:57:45 -0400477};
478
479#endif // _SYMBOL_TABLE_INCLUDED_