2020-04-06 19:10:07 +00:00
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// Note: This must not be included by anything but dobject.h!
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#pragma once
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#include "sc_man.h"
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class VMFunction;
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class PType;
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class PPrototype;
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struct ZCC_TreeNode;
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class PContainerType;
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// Symbol information -------------------------------------------------------
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class PTypeBase
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{
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public:
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// Allocate everything on the global memory arena because all subtypes of this
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// will live until the end of the game.
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void *operator new(size_t size)
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{
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return ClassDataAllocator.Alloc(size);
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}
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void operator delete(void *)
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{}
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};
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class PSymbol : public DObject
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{
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DECLARE_ABSTRACT_CLASS(PSymbol, DObject);
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public:
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FName SymbolName;
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VersionInfo mVersion = { 0,0,0 };
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protected:
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PSymbol(FName name) { SymbolName = name; }
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};
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// A VM function ------------------------------------------------------------
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// A symbol for a type ------------------------------------------------------
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class PSymbolType : public PSymbol
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{
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DECLARE_CLASS(PSymbolType, PSymbol);
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public:
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PType *Type;
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PSymbolType(FName name, class PType *ty) : PSymbol(name), Type(ty) {}
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PSymbolType() : PSymbol(NAME_None) {}
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};
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// A symbol for a compiler tree node ----------------------------------------
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class PSymbolTreeNode : public PSymbol
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{
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DECLARE_CLASS(PSymbolTreeNode, PSymbol);
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public:
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struct ZCC_TreeNode *Node;
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PSymbolTreeNode(FName name, struct ZCC_TreeNode *node) : PSymbol(name), Node(node) {}
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PSymbolTreeNode() : PSymbol(NAME_None) {}
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};
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// Struct/class fields ------------------------------------------------------
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// A PField describes a symbol that takes up physical space in the struct.
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class PField : public PSymbol
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{
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DECLARE_CLASS(PField, PSymbol);
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HAS_OBJECT_POINTERS
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public:
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PField(FName name, PType *type, uint32_t flags = 0, size_t offset = 0, int bitvalue = 0);
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VersionInfo GetVersion();
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size_t Offset;
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PType *Type;
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uint32_t Flags;
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int BitValue;
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FString DeprecationMessage;
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protected:
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PField();
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};
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// Properties ------------------------------------------------------
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// For setting properties in class defaults.
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class PProperty : public PSymbol
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{
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DECLARE_CLASS(PProperty, PSymbol);
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public:
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PProperty(FName name, TArray<PField *> &variables);
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TArray<PField *> Variables;
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protected:
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PProperty();
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};
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class PPropFlag : public PSymbol
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{
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DECLARE_CLASS(PPropFlag, PSymbol);
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public:
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PPropFlag(FName name, PField *offset, int bitval, bool decorateonly);
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PField *Offset;
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int bitval;
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bool decorateOnly;
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protected:
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PPropFlag();
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};
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// A constant value ---------------------------------------------------------
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class PSymbolConst : public PSymbol
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{
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DECLARE_CLASS(PSymbolConst, PSymbol);
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public:
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PType *ValueType;
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PSymbolConst(FName name, PType *type=NULL) : PSymbol(name), ValueType(type) {}
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PSymbolConst() : PSymbol(NAME_None), ValueType(NULL) {}
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};
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// A constant numeric value -------------------------------------------------
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class PSymbolConstNumeric : public PSymbolConst
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{
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DECLARE_CLASS(PSymbolConstNumeric, PSymbolConst);
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public:
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union
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{
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int Value;
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double Float;
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void *Pad;
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};
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PSymbolConstNumeric(FName name, PType *type=NULL) : PSymbolConst(name, type) {}
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PSymbolConstNumeric(FName name, PType *type, int val) : PSymbolConst(name, type), Value(val) {}
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PSymbolConstNumeric(FName name, PType *type, unsigned int val) : PSymbolConst(name, type), Value((int)val) {}
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PSymbolConstNumeric(FName name, PType *type, double val) : PSymbolConst(name, type), Float(val) {}
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PSymbolConstNumeric() {}
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};
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// A constant string value --------------------------------------------------
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class PSymbolConstString : public PSymbolConst
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{
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DECLARE_CLASS(PSymbolConstString, PSymbolConst);
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public:
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FString Str;
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PSymbolConstString(FName name, const FString &str);
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PSymbolConstString() {}
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};
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// A function for the VM --------------------------------------------------
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// TBD: Should we really support overloading?
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class PFunction : public PSymbol
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{
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DECLARE_CLASS(PFunction, PSymbol);
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public:
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struct Variant
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{
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PPrototype *Proto;
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VMFunction *Implementation;
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TArray<uint32_t> ArgFlags; // Should be the same length as Proto->ArgumentTypes
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TArray<FName> ArgNames; // we need the names to access them later when the function gets compiled.
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uint32_t Flags;
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int UseFlags;
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PContainerType *SelfClass;
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FString DeprecationMessage;
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};
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TArray<Variant> Variants;
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PContainerType *OwningClass = nullptr;
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unsigned AddVariant(PPrototype *proto, TArray<uint32_t> &argflags, TArray<FName> &argnames, VMFunction *impl, int flags, int useflags);
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int GetImplicitArgs();
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PFunction(PContainerType *owner = nullptr, FName name = NAME_None) : PSymbol(name), OwningClass(owner) {}
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};
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// A symbol table -----------------------------------------------------------
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struct PSymbolTable
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{
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PSymbolTable();
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PSymbolTable(PSymbolTable *parent);
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~PSymbolTable();
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// Sets the table to use for searches if this one doesn't contain the
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// requested symbol.
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void SetParentTable (PSymbolTable *parent);
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PSymbolTable *GetParentTable() const
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{
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return ParentSymbolTable;
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}
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// Finds a symbol in the table, optionally searching parent tables
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// as well.
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PSymbol *FindSymbol (FName symname, bool searchparents) const;
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// Like FindSymbol with searchparents set true, but also returns the
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// specific symbol table the symbol was found in.
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PSymbol *FindSymbolInTable(FName symname, PSymbolTable *&symtable);
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// Places the symbol in the table and returns a pointer to it or NULL if
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// a symbol with the same name is already in the table. This symbol is
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// not copied and will be freed when the symbol table is destroyed.
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PSymbol *AddSymbol (PSymbol *sym);
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PField *AddField(FName name, PType *type, uint32_t flags, unsigned &Size, unsigned *Align = nullptr);
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PField *AddNativeField(FName name, PType *type, size_t address, uint32_t flags, int bitvalue);
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bool ReadFields(FSerializer &ar, void *addr, const char *TypeName) const;
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void WriteFields(FSerializer &ar, const void *addr, const void *def = nullptr) const;
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// Similar to AddSymbol but always succeeds. Returns the symbol that used
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// to be in the table with this name, if any.
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void ReplaceSymbol(PSymbol *sym);
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void RemoveSymbol(PSymbol *sym);
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// Frees all symbols from this table.
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void ReleaseSymbols();
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typedef TMap<FName, PSymbol *> MapType;
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MapType::Iterator GetIterator()
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{
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return MapType::Iterator(Symbols);
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}
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private:
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PSymbolTable *ParentSymbolTable;
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MapType Symbols;
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friend class DObject;
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friend struct FNamespaceManager;
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};
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// Namespaces --------------------------------------------------
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class PNamespace : public PTypeBase
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{
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public:
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PSymbolTable Symbols;
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PNamespace *Parent;
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int FileNum; // This is for blocking DECORATE access to later files.
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PNamespace(int filenum, PNamespace *parent);
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};
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struct FNamespaceManager
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{
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PNamespace *GlobalNamespace;
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TArray<PNamespace *> AllNamespaces;
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FNamespaceManager();
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PNamespace *NewNamespace(int filenum);
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void ReleaseSymbols();
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int RemoveSymbols();
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};
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extern FNamespaceManager Namespaces;
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void RemoveUnusedSymbols();
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2020-04-07 22:19:49 +00:00
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struct AFuncDesc;
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struct FieldDesc;
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AFuncDesc *FindFunction(PContainerType *cls, const char * string);
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FieldDesc *FindField(PContainerType *cls, const char * string);
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void SetImplicitArgs(TArray<PType*>* args, TArray<uint32_t>* argflags, TArray<FName>* argnames, PContainerType* cls, uint32_t funcflags, int useflags);
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