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      1 //
      2 //Copyright (C) 2002-2005  3Dlabs Inc. Ltd.
      3 //Copyright (C) 2012-2013 LunarG, Inc.
      4 //
      5 //All rights reserved.
      6 //
      7 //Redistribution and use in source and binary forms, with or without
      8 //modification, are permitted provided that the following conditions
      9 //are met:
     10 //
     11 //    Redistributions of source code must retain the above copyright
     12 //    notice, this list of conditions and the following disclaimer.
     13 //
     14 //    Redistributions in binary form must reproduce the above
     15 //    copyright notice, this list of conditions and the following
     16 //    disclaimer in the documentation and/or other materials provided
     17 //    with the distribution.
     18 //
     19 //    Neither the name of 3Dlabs Inc. Ltd. nor the names of its
     20 //    contributors may be used to endorse or promote products derived
     21 //    from this software without specific prior written permission.
     22 //
     23 //THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
     24 //"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
     25 //LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
     26 //FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
     27 //COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
     28 //INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
     29 //BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
     30 //LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
     31 //CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     32 //LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
     33 //ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     34 //POSSIBILITY OF SUCH DAMAGE.
     35 //
     36 
     37 //
     38 // This header defines a two-level parse-helper hierarchy, derived from
     39 // TParseVersions:
     40 //  - TParseContextBase:  sharable across multiple parsers
     41 //  - TParseContext:      GLSL specific helper
     42 //
     43 
     44 #ifndef _PARSER_HELPER_INCLUDED_
     45 #define _PARSER_HELPER_INCLUDED_
     46 
     47 #include "parseVersions.h"
     48 #include "../Include/ShHandle.h"
     49 #include "SymbolTable.h"
     50 #include "localintermediate.h"
     51 #include "Scan.h"
     52 #include <functional>
     53 
     54 #include <functional>
     55 
     56 namespace glslang {
     57 
     58 struct TPragma {
     59     TPragma(bool o, bool d) : optimize(o), debug(d) { }
     60     bool optimize;
     61     bool debug;
     62     TPragmaTable pragmaTable;
     63 };
     64 
     65 class TScanContext;
     66 class TPpContext;
     67 
     68 typedef std::set<int> TIdSetType;
     69 
     70 //
     71 // Sharable code (as well as what's in TParseVersions) across
     72 // parse helpers.
     73 //
     74 class TParseContextBase : public TParseVersions {
     75 public:
     76     TParseContextBase(TSymbolTable& symbolTable, TIntermediate& interm, int version,
     77                       EProfile profile, const SpvVersion& spvVersion, EShLanguage language,
     78                       TInfoSink& infoSink, bool forwardCompatible, EShMessages messages)
     79           : TParseVersions(interm, version, profile, spvVersion, language, infoSink, forwardCompatible, messages),
     80             symbolTable(symbolTable), tokensBeforeEOF(false),
     81             linkage(nullptr), scanContext(nullptr), ppContext(nullptr) { }
     82     virtual ~TParseContextBase() { }
     83 
     84     virtual void setLimits(const TBuiltInResource&) = 0;
     85 
     86     EShLanguage getLanguage() const { return language; }
     87     TIntermAggregate*& getLinkage() { return linkage; }
     88     void setScanContext(TScanContext* c) { scanContext = c; }
     89     TScanContext* getScanContext() const { return scanContext; }
     90     void setPpContext(TPpContext* c) { ppContext = c; }
     91     TPpContext* getPpContext() const { return ppContext; }
     92 
     93     virtual void setLineCallback(const std::function<void(int, int, bool, int, const char*)>& func) { lineCallback = func; }
     94     virtual void setExtensionCallback(const std::function<void(int, const char*, const char*)>& func) { extensionCallback = func; }
     95     virtual void setVersionCallback(const std::function<void(int, int, const char*)>& func) { versionCallback = func; }
     96     virtual void setPragmaCallback(const std::function<void(int, const TVector<TString>&)>& func) { pragmaCallback = func; }
     97     virtual void setErrorCallback(const std::function<void(int, const char*)>& func) { errorCallback = func; }
     98 
     99     virtual void reservedPpErrorCheck(const TSourceLoc&, const char* name, const char* op) = 0;
    100     virtual bool lineContinuationCheck(const TSourceLoc&, bool endOfComment) = 0;
    101     virtual bool lineDirectiveShouldSetNextLine() const = 0;
    102     virtual void handlePragma(const TSourceLoc&, const TVector<TString>&) = 0;
    103 
    104     virtual bool parseShaderStrings(TPpContext&, TInputScanner& input, bool versionWillBeError = false) = 0;
    105 
    106     virtual void notifyVersion(int line, int version, const char* type_string)
    107     {
    108         if (versionCallback)
    109             versionCallback(line, version, type_string);
    110     }
    111     virtual void notifyErrorDirective(int line, const char* error_message)
    112     {
    113         if (errorCallback)
    114             errorCallback(line, error_message);
    115     }
    116     virtual void notifyLineDirective(int curLineNo, int newLineNo, bool hasSource, int sourceNum, const char* sourceName)
    117     {
    118         if (lineCallback)
    119             lineCallback(curLineNo, newLineNo, hasSource, sourceNum, sourceName);
    120     }
    121     virtual void notifyExtensionDirective(int line, const char* extension, const char* behavior)
    122     {
    123         if (extensionCallback)
    124             extensionCallback(line, extension, behavior);
    125     }
    126 
    127     TSymbolTable& symbolTable;   // symbol table that goes with the current language, version, and profile
    128     bool tokensBeforeEOF;
    129 
    130 protected:
    131     TParseContextBase(TParseContextBase&);
    132     TParseContextBase& operator=(TParseContextBase&);
    133 
    134     TIntermAggregate* linkage;   // aggregate node of objects the linker may need, if not referenced by the rest of the AST
    135     TScanContext* scanContext;
    136     TPpContext* ppContext;
    137 
    138     // These, if set, will be called when a line, pragma ... is preprocessed.
    139     // They will be called with any parameters to the original directive.
    140     std::function<void(int, int, bool, int, const char*)> lineCallback;
    141     std::function<void(int, const TVector<TString>&)> pragmaCallback;
    142     std::function<void(int, int, const char*)> versionCallback;
    143     std::function<void(int, const char*, const char*)> extensionCallback;
    144     std::function<void(int, const char*)> errorCallback;
    145 };
    146 
    147 //
    148 // GLSL-specific parse helper.  Should have GLSL in the name, but that's
    149 // too big of a change for comparing branches at the moment, and perhaps
    150 // impacts downstream consumers as well.
    151 //
    152 class TParseContext : public TParseContextBase {
    153 public:
    154     TParseContext(TSymbolTable&, TIntermediate&, bool parsingBuiltins, int version, EProfile, const SpvVersion& spvVersion, EShLanguage, TInfoSink&,
    155                   bool forwardCompatible = false, EShMessages messages = EShMsgDefault);
    156     virtual ~TParseContext();
    157 
    158     void setLimits(const TBuiltInResource&);
    159     bool parseShaderStrings(TPpContext&, TInputScanner& input, bool versionWillBeError = false);
    160     void parserError(const char* s);     // for bison's yyerror
    161 
    162     void C_DECL error(const TSourceLoc&, const char* szReason, const char* szToken,
    163                       const char* szExtraInfoFormat, ...);
    164     void C_DECL  warn(const TSourceLoc&, const char* szReason, const char* szToken,
    165                       const char* szExtraInfoFormat, ...);
    166     void C_DECL ppError(const TSourceLoc&, const char* szReason, const char* szToken,
    167                       const char* szExtraInfoFormat, ...);
    168     void C_DECL ppWarn(const TSourceLoc&, const char* szReason, const char* szToken,
    169                       const char* szExtraInfoFormat, ...);
    170 
    171     void reservedErrorCheck(const TSourceLoc&, const TString&);
    172     void reservedPpErrorCheck(const TSourceLoc&, const char* name, const char* op);
    173     bool lineContinuationCheck(const TSourceLoc&, bool endOfComment);
    174     bool lineDirectiveShouldSetNextLine() const;
    175     bool builtInName(const TString&);
    176 
    177     void handlePragma(const TSourceLoc&, const TVector<TString>&);
    178     TIntermTyped* handleVariable(const TSourceLoc&, TSymbol* symbol, const TString* string);
    179     TIntermTyped* handleBracketDereference(const TSourceLoc&, TIntermTyped* base, TIntermTyped* index);
    180     void checkIndex(const TSourceLoc&, const TType&, int& index);
    181     void handleIndexLimits(const TSourceLoc&, TIntermTyped* base, TIntermTyped* index);
    182 
    183     void makeEditable(TSymbol*&);
    184     TVariable* getEditableVariable(const char* name);
    185     bool isIoResizeArray(const TType&) const;
    186     void fixIoArraySize(const TSourceLoc&, TType&);
    187     void ioArrayCheck(const TSourceLoc&, const TType&, const TString& identifier);
    188     void handleIoResizeArrayAccess(const TSourceLoc&, TIntermTyped* base);
    189     void checkIoArraysConsistency(const TSourceLoc&, bool tailOnly = false);
    190     int getIoArrayImplicitSize() const;
    191     void checkIoArrayConsistency(const TSourceLoc&, int requiredSize, const char* feature, TType&, const TString&);
    192 
    193     TIntermTyped* handleBinaryMath(const TSourceLoc&, const char* str, TOperator op, TIntermTyped* left, TIntermTyped* right);
    194     TIntermTyped* handleUnaryMath(const TSourceLoc&, const char* str, TOperator op, TIntermTyped* childNode);
    195     TIntermTyped* handleDotDereference(const TSourceLoc&, TIntermTyped* base, const TString& field);
    196     void blockMemberExtensionCheck(const TSourceLoc&, const TIntermTyped* base, const TString& field);
    197     TFunction* handleFunctionDeclarator(const TSourceLoc&, TFunction& function, bool prototype);
    198     TIntermAggregate* handleFunctionDefinition(const TSourceLoc&, TFunction&);
    199     TIntermTyped* handleFunctionCall(const TSourceLoc&, TFunction*, TIntermNode*);
    200     TIntermNode* handleReturnValue(const TSourceLoc&, TIntermTyped*);
    201     void checkLocation(const TSourceLoc&, TOperator);
    202     TIntermTyped* handleLengthMethod(const TSourceLoc&, TFunction*, TIntermNode*);
    203     void addInputArgumentConversions(const TFunction&, TIntermNode*&) const;
    204     TIntermTyped* addOutputArgumentConversions(const TFunction&, TIntermAggregate&) const;
    205     void builtInOpCheck(const TSourceLoc&, const TFunction&, TIntermOperator&);
    206     void nonOpBuiltInCheck(const TSourceLoc&, const TFunction&, TIntermAggregate&);
    207     TFunction* handleConstructorCall(const TSourceLoc&, const TPublicType&);
    208 
    209     bool parseVectorFields(const TSourceLoc&, const TString&, int vecSize, TVectorFields&);
    210     void assignError(const TSourceLoc&, const char* op, TString left, TString right);
    211     void unaryOpError(const TSourceLoc&, const char* op, TString operand);
    212     void binaryOpError(const TSourceLoc&, const char* op, TString left, TString right);
    213     void variableCheck(TIntermTyped*& nodePtr);
    214     bool lValueErrorCheck(const TSourceLoc&, const char* op, TIntermTyped*);
    215     void rValueErrorCheck(const TSourceLoc&, const char* op, TIntermTyped*);
    216     void constantValueCheck(TIntermTyped* node, const char* token);
    217     void integerCheck(const TIntermTyped* node, const char* token);
    218     void globalCheck(const TSourceLoc&, const char* token);
    219     bool constructorError(const TSourceLoc&, TIntermNode*, TFunction&, TOperator, TType&);
    220     bool constructorTextureSamplerError(const TSourceLoc&, const TFunction&);
    221     void arraySizeCheck(const TSourceLoc&, TIntermTyped* expr, TArraySize&);
    222     bool arrayQualifierError(const TSourceLoc&, const TQualifier&);
    223     bool arrayError(const TSourceLoc&, const TType&);
    224     void arraySizeRequiredCheck(const TSourceLoc&, const TArraySizes&);
    225     void structArrayCheck(const TSourceLoc&, const TType& structure);
    226     void arrayUnsizedCheck(const TSourceLoc&, const TQualifier&, const TArraySizes*, bool initializer, bool lastMember);
    227     void arrayOfArrayVersionCheck(const TSourceLoc&);
    228     void arrayDimCheck(const TSourceLoc&, const TArraySizes* sizes1, const TArraySizes* sizes2);
    229     void arrayDimCheck(const TSourceLoc&, const TType*, const TArraySizes*);
    230     void arrayDimMerge(TType& type, const TArraySizes* sizes);
    231     bool voidErrorCheck(const TSourceLoc&, const TString&, TBasicType);
    232     void boolCheck(const TSourceLoc&, const TIntermTyped*);
    233     void boolCheck(const TSourceLoc&, const TPublicType&);
    234     void samplerCheck(const TSourceLoc&, const TType&, const TString& identifier, TIntermTyped* initializer);
    235     void atomicUintCheck(const TSourceLoc&, const TType&, const TString& identifier);
    236     void transparentCheck(const TSourceLoc&, const TType&, const TString& identifier);
    237     void globalQualifierFixCheck(const TSourceLoc&, TQualifier&);
    238     void globalQualifierTypeCheck(const TSourceLoc&, const TQualifier&, const TPublicType&);
    239     bool structQualifierErrorCheck(const TSourceLoc&, const TPublicType& pType);
    240     void mergeQualifiers(const TSourceLoc&, TQualifier& dst, const TQualifier& src, bool force);
    241     void setDefaultPrecision(const TSourceLoc&, TPublicType&, TPrecisionQualifier);
    242     int computeSamplerTypeIndex(TSampler&);
    243     TPrecisionQualifier getDefaultPrecision(TPublicType&);
    244     void precisionQualifierCheck(const TSourceLoc&, TBasicType, TQualifier&);
    245     void parameterTypeCheck(const TSourceLoc&, TStorageQualifier qualifier, const TType& type);
    246     bool containsFieldWithBasicType(const TType& type ,TBasicType basicType);
    247     TSymbol* redeclareBuiltinVariable(const TSourceLoc&, const TString&, const TQualifier&, const TShaderQualifiers&, bool& newDeclaration);
    248     void redeclareBuiltinBlock(const TSourceLoc&, TTypeList& typeList, const TString& blockName, const TString* instanceName, TArraySizes* arraySizes);
    249     void paramCheckFix(const TSourceLoc&, const TStorageQualifier&, TType& type);
    250     void paramCheckFix(const TSourceLoc&, const TQualifier&, TType& type);
    251     void nestedBlockCheck(const TSourceLoc&);
    252     void nestedStructCheck(const TSourceLoc&);
    253     void arrayObjectCheck(const TSourceLoc&, const TType&, const char* op);
    254     void opaqueCheck(const TSourceLoc&, const TType&, const char* op);
    255     void specializationCheck(const TSourceLoc&, const TType&, const char* op);
    256     void structTypeCheck(const TSourceLoc&, TPublicType&);
    257     void inductiveLoopCheck(const TSourceLoc&, TIntermNode* init, TIntermLoop* loop);
    258     void arrayLimitCheck(const TSourceLoc&, const TString&, int size);
    259     void limitCheck(const TSourceLoc&, int value, const char* limit, const char* feature);
    260 
    261     void inductiveLoopBodyCheck(TIntermNode*, int loopIndexId, TSymbolTable&);
    262     void constantIndexExpressionCheck(TIntermNode*);
    263 
    264     void setLayoutQualifier(const TSourceLoc&, TPublicType&, TString&);
    265     void setLayoutQualifier(const TSourceLoc&, TPublicType&, TString&, const TIntermTyped*);
    266     void mergeObjectLayoutQualifiers(TQualifier& dest, const TQualifier& src, bool inheritOnly);
    267     void layoutObjectCheck(const TSourceLoc&, const TSymbol&);
    268     void layoutTypeCheck(const TSourceLoc&, const TType&);
    269     void layoutQualifierCheck(const TSourceLoc&, const TQualifier&);
    270     void checkNoShaderLayouts(const TSourceLoc&, const TShaderQualifiers&);
    271     void fixOffset(const TSourceLoc&, TSymbol&);
    272 
    273     const TFunction* findFunction(const TSourceLoc& loc, const TFunction& call, bool& builtIn);
    274     const TFunction* findFunctionExact(const TSourceLoc& loc, const TFunction& call, bool& builtIn);
    275     const TFunction* findFunction120(const TSourceLoc& loc, const TFunction& call, bool& builtIn);
    276     const TFunction* findFunction400(const TSourceLoc& loc, const TFunction& call, bool& builtIn);
    277     void declareTypeDefaults(const TSourceLoc&, const TPublicType&);
    278     TIntermNode* declareVariable(const TSourceLoc&, TString& identifier, const TPublicType&, TArraySizes* typeArray = 0, TIntermTyped* initializer = 0);
    279     TIntermTyped* addConstructor(const TSourceLoc&, TIntermNode*, const TType&, TOperator);
    280     TIntermTyped* constructAggregate(TIntermNode*, const TType&, int, const TSourceLoc&);
    281     TIntermTyped* constructBuiltIn(const TType&, TOperator, TIntermTyped*, const TSourceLoc&, bool subset);
    282     void declareBlock(const TSourceLoc&, TTypeList& typeList, const TString* instanceName = 0, TArraySizes* arraySizes = 0);
    283     void blockStageIoCheck(const TSourceLoc&, const TQualifier&);
    284     void blockQualifierCheck(const TSourceLoc&, const TQualifier&, bool instanceName);
    285     void fixBlockLocations(const TSourceLoc&, TQualifier&, TTypeList&, bool memberWithLocation, bool memberWithoutLocation);
    286     void fixBlockXfbOffsets(TQualifier&, TTypeList&);
    287     void fixBlockUniformOffsets(TQualifier&, TTypeList&);
    288     void addQualifierToExisting(const TSourceLoc&, TQualifier, const TString& identifier);
    289     void addQualifierToExisting(const TSourceLoc&, TQualifier, TIdentifierList&);
    290     void invariantCheck(const TSourceLoc&, const TQualifier&);
    291     void updateStandaloneQualifierDefaults(const TSourceLoc&, const TPublicType&);
    292     void wrapupSwitchSubsequence(TIntermAggregate* statements, TIntermNode* branchNode);
    293     TIntermNode* addSwitch(const TSourceLoc&, TIntermTyped* expression, TIntermAggregate* body);
    294 
    295     void updateImplicitArraySize(const TSourceLoc&, TIntermNode*, int index);
    296 
    297 protected:
    298     void nonInitConstCheck(const TSourceLoc&, TString& identifier, TType& type);
    299     void inheritGlobalDefaults(TQualifier& dst) const;
    300     TVariable* makeInternalVariable(const char* name, const TType&) const;
    301     TVariable* declareNonArray(const TSourceLoc&, TString& identifier, TType&, bool& newDeclaration);
    302     void declareArray(const TSourceLoc&, TString& identifier, const TType&, TSymbol*&, bool& newDeclaration);
    303     TIntermNode* executeInitializer(const TSourceLoc&, TIntermTyped* initializer, TVariable* variable);
    304     TIntermTyped* convertInitializerList(const TSourceLoc&, const TType&, TIntermTyped* initializer);
    305     TOperator mapTypeToConstructorOp(const TType&) const;
    306     void finalErrorCheck();
    307     void outputMessage(const TSourceLoc&, const char* szReason, const char* szToken,
    308                        const char* szExtraInfoFormat, TPrefixType prefix,
    309                        va_list args);
    310 
    311 public:
    312     //
    313     // Generally, bison productions, the scanner, and the PP need read/write access to these; just give them direct access
    314     //
    315 
    316     // Current state of parsing
    317     struct TPragma contextPragma;
    318     int loopNestingLevel;        // 0 if outside all loops
    319     int structNestingLevel;      // 0 if outside blocks and structures
    320     int controlFlowNestingLevel; // 0 if outside all flow control
    321     int statementNestingLevel;   // 0 if outside all flow control or compound statements
    322     TList<TIntermSequence*> switchSequenceStack;  // case, node, case, case, node, ...; ensure only one node between cases;   stack of them for nesting
    323     TList<int> switchLevel;      // the statementNestingLevel the current switch statement is at, which must match the level of its case statements
    324     bool inMain;                 // if inside a function, true if the function is main
    325     bool postMainReturn;         // if inside a function, true if the function is main and this is after a return statement
    326     const TType* currentFunctionType;  // the return type of the function that's currently being parsed
    327     bool functionReturnsValue;   // true if a non-void function has a return
    328     const TString* blockName;
    329     TQualifier currentBlockQualifier;
    330     TPrecisionQualifier defaultPrecision[EbtNumTypes];
    331     TBuiltInResource resources;
    332     TLimits& limits;
    333 
    334 protected:
    335     TParseContext(TParseContext&);
    336     TParseContext& operator=(TParseContext&);
    337 
    338     const bool parsingBuiltins;        // true if parsing built-in symbols/functions
    339     static const int maxSamplerIndex = EsdNumDims * (EbtNumTypes * (2 * 2 * 2 * 2 * 2)); // see computeSamplerTypeIndex()
    340     TPrecisionQualifier defaultSamplerPrecision[maxSamplerIndex];
    341     bool afterEOF;
    342     TQualifier globalBufferDefaults;
    343     TQualifier globalUniformDefaults;
    344     TQualifier globalInputDefaults;
    345     TQualifier globalOutputDefaults;
    346     int* atomicUintOffsets;       // to become an array of the right size to hold an offset per binding point
    347     TString currentCaller;        // name of last function body entered (not valid when at global scope)
    348     TIdSetType inductiveLoopIds;
    349     bool anyIndexLimits;
    350     TVector<TIntermTyped*> needsIndexLimitationChecking;
    351 
    352     //
    353     // Geometry shader input arrays:
    354     //  - array sizing is based on input primitive and/or explicit size
    355     //
    356     // Tessellation control output arrays:
    357     //  - array sizing is based on output layout(vertices=...) and/or explicit size
    358     //
    359     // Both:
    360     //  - array sizing is retroactive
    361     //  - built-in block redeclarations interact with this
    362     //
    363     // Design:
    364     //  - use a per-context "resize-list", a list of symbols whose array sizes
    365     //    can be fixed
    366     //
    367     //  - the resize-list starts empty at beginning of user-shader compilation, it does
    368     //    not have built-ins in it
    369     //
    370     //  - on built-in array use: copyUp() symbol and add it to the resize-list
    371     //
    372     //  - on user array declaration: add it to the resize-list
    373     //
    374     //  - on block redeclaration: copyUp() symbol and add it to the resize-list
    375     //     * note, that appropriately gives an error if redeclaring a block that
    376     //       was already used and hence already copied-up
    377     //
    378     //  - on seeing a layout declaration that sizes the array, fix everything in the
    379     //    resize-list, giving errors for mismatch
    380     //
    381     //  - on seeing an array size declaration, give errors on mismatch between it and previous
    382     //    array-sizing declarations
    383     //
    384     TVector<TSymbol*> ioArraySymbolResizeList;
    385 };
    386 
    387 } // end namespace glslang
    388 
    389 #endif // _PARSER_HELPER_INCLUDED_
    390