#pragma once #include "ProjectionGenerator.h" #include "ClassDeclaration.h" #include "EnumNamespaceNodes.h" #include "../SemannoAnnotationImpl.h" class VBNetGenerator : public ProjectionGenerator, public SemannoAnnotationImpl { public: std::string commentPrefix() const { return "' "; } std::string generate(const ASTNode* node) override { return dispatchGenerate(this, node, "' Unknown concept: "); } std::string visitModule(const Module* module) override { std::ostringstream oss; oss << "' Module: " << module->name << "\n\n"; for (const auto* stmt : module->getChildren("statements")) oss << generate(stmt) << "\n"; if (!module->getChildren("statements").empty()) oss << "\n"; for (const auto* var : module->getChildren("variables")) oss << generate(var) << "\n"; if (!module->getChildren("variables").empty()) oss << "\n"; for (const auto* fn : module->getChildren("functions")) oss << generate(fn) << "\n"; return oss.str(); } std::string visitFunction(const Function* function) override { std::ostringstream oss; for (const auto* anno : function->getChildren("annotations")) oss << generate(anno) << "\n"; auto* retType = function->getChild("returnType"); const bool hasReturn = retType != nullptr; oss << (hasReturn ? "Function " : "Sub ") << function->name << "("; auto params = function->getChildren("parameters"); for (size_t i = 0; i < params.size(); ++i) { if (i > 0) oss << ", "; oss << generate(params[i]); } oss << ")"; if (hasReturn) oss << " As " << generate(retType); oss << "\n"; for (const auto* stmt : function->getChildren("body")) { oss << " " << generate(stmt) << "\n"; } oss << (hasReturn ? "End Function" : "End Sub"); return oss.str(); } std::string visitVariable(const Variable* variable) override { std::ostringstream oss; oss << "Dim " << variable->name; auto* type = variable->getChild("type"); if (type) oss << " As " << generate(type); auto* init = variable->getChild("initializer"); if (init) oss << " = " << generate(init); return oss.str(); } std::string visitParameter(const Parameter* parameter) override { auto* type = parameter->getChild("type"); if (!type) return parameter->name; return parameter->name + " As " + generate(type); } std::string visitAssignment(const Assignment* a) override { auto* t = a->getChild("target"); auto* v = a->getChild("value"); return (t ? generate(t) : "") + " = " + (v ? generate(v) : "Nothing"); } std::string visitReturn(const Return* r) override { auto* v = r->getChild("value"); return v ? "Return " + generate(v) : "Return"; } std::string visitBinaryOperation(const BinaryOperation* b) override { auto* l = b->getChild("left"); auto* r = b->getChild("right"); return (l ? generate(l) : "") + " " + b->op + " " + (r ? generate(r) : ""); } std::string visitVariableReference(const VariableReference* v) override { return v->variableName; } std::string visitIntegerLiteral(const IntegerLiteral* l) override { return std::to_string(l->value); } std::string visitFloatLiteral(const FloatLiteral* l) override { return l->value; } std::string visitStringLiteral(const StringLiteral* l) override { return "\"" + l->value + "\""; } std::string visitBooleanLiteral(const BooleanLiteral* l) override { return l->value ? "True" : "False"; } std::string visitNullLiteral(const NullLiteral*) override { return "Nothing"; } std::string visitIfStatement(const IfStatement* s) override { std::ostringstream oss; auto* cond = s->getChild("condition"); oss << "If " << (cond ? generate(cond) : "True") << " Then\n"; for (const auto* t : s->getChildren("thenBranch")) oss << " " << generate(t) << "\n"; auto elseBranch = s->getChildren("elseBranch"); if (!elseBranch.empty()) { oss << "Else\n"; for (const auto* e : elseBranch) oss << " " << generate(e) << "\n"; } oss << "End If"; return oss.str(); } std::string visitWhileLoop(const WhileLoop* l) override { std::ostringstream oss; auto* cond = l->getChild("condition"); oss << "While " << (cond ? generate(cond) : "True") << "\n"; for (const auto* s : l->getChildren("body")) oss << " " << generate(s) << "\n"; oss << "End While"; return oss.str(); } std::string visitForLoop(const ForLoop* l) override { std::ostringstream oss; auto* iter = l->getChild("iterable"); oss << "For Each " << (l->iteratorName.empty() ? "item" : l->iteratorName) << " In " << (iter ? generate(iter) : "collection") << "\n"; for (const auto* s : l->getChildren("body")) oss << " " << generate(s) << "\n"; oss << "Next"; return oss.str(); } std::string visitExpressionStatement(const ExpressionStatement* s) override { auto* expr = s->getChild("expression"); return expr ? generate(expr) : ""; } std::string visitUnaryOperation(const UnaryOperation* u) override { auto* o = u->getChild("operand"); return u->op + (o ? generate(o) : ""); } std::string visitFunctionCall(const FunctionCall* c) override { std::ostringstream oss; oss << c->functionName << "("; auto args = c->getChildren("arguments"); for (size_t i = 0; i < args.size(); ++i) { if (i > 0) oss << ", "; oss << generate(args[i]); } oss << ")"; return oss.str(); } std::string visitBlock(const Block* b) override { std::ostringstream oss; for (const auto* s : b->getChildren("statements")) oss << generate(s) << "\n"; return trimTrailingNewline(oss.str()); } std::string visitListLiteral(const ListLiteral* l) override { std::ostringstream oss; oss << "{"; auto elems = l->getChildren("elements"); for (size_t i = 0; i < elems.size(); ++i) { if (i > 0) oss << ", "; oss << generate(elems[i]); } oss << "}"; return oss.str(); } std::string visitIndexAccess(const IndexAccess* a) override { auto* t = a->getChild("target"); auto* i = a->getChild("index"); return (t ? generate(t) : "") + "(" + (i ? generate(i) : "") + ")"; } std::string visitMemberAccess(const MemberAccess* a) override { auto* t = a->getChild("target"); return (t ? generate(t) : "") + "." + a->memberName; } std::string visitPrimitiveType(const PrimitiveType* t) override { if (t->kind == "int") return "Integer"; if (t->kind == "float" || t->kind == "double") return "Double"; if (t->kind == "string") return "String"; if (t->kind == "bool") return "Boolean"; if (t->kind == "void") return "Object"; return t->kind; } std::string visitListType(const ListType* t) override { auto* e = t->getChild("elementType"); return "List(Of " + std::string(e ? generate(e) : "Object") + ")"; } std::string visitSetType(const SetType* t) override { auto* e = t->getChild("elementType"); return "HashSet(Of " + std::string(e ? generate(e) : "Object") + ")"; } std::string visitMapType(const MapType* t) override { auto* k = t->getChild("keyType"); auto* v = t->getChild("valueType"); return "Dictionary(Of " + std::string(k ? generate(k) : "Object") + ", " + std::string(v ? generate(v) : "Object") + ")"; } std::string visitTupleType(const TupleType* t) override { std::ostringstream oss; oss << "Tuple(Of "; auto elems = t->getChildren("elementTypes"); for (size_t i = 0; i < elems.size(); ++i) { if (i > 0) oss << ", "; oss << generate(elems[i]); } oss << ")"; return oss.str(); } std::string visitArrayType(const ArrayType* t) override { auto* e = t->getChild("elementType"); return (e ? generate(e) : "Object") + "()"; } std::string visitOptionalType(const OptionalType* t) override { auto* inner = t->getChild("innerType"); return "Nullable(Of " + std::string(inner ? generate(inner) : "Object") + ")"; } std::string visitCustomType(const CustomType* t) override { return t->typeName; } // Subject 1 annotations not covered by SemannoAnnotationImpl. std::string visitDerefStrategy(const DerefStrategy* a) override { return commentPrefix() + SemannoEmitter::emit(a); } std::string visitOptimizationLock(const OptimizationLock* a) override { return commentPrefix() + SemannoEmitter::emit(a); } std::string visitLangSpecific(const LangSpecific* a) override { return commentPrefix() + SemannoEmitter::emit(a); } std::string visitDeallocateAnnotation(const DeallocateAnnotation* a) override { return commentPrefix() + SemannoEmitter::emit(a); } std::string visitLifetimeAnnotation(const LifetimeAnnotation* a) override { return commentPrefix() + SemannoEmitter::emit(a); } std::string visitReclaimAnnotation(const ReclaimAnnotation* a) override { return commentPrefix() + SemannoEmitter::emit(a); } std::string visitOwnerAnnotation(const OwnerAnnotation* a) override { return commentPrefix() + SemannoEmitter::emit(a); } std::string visitAllocateAnnotation(const AllocateAnnotation* a) override { return commentPrefix() + SemannoEmitter::emit(a); } std::string visitHotColdAnnotation(const HotColdAnnotation* a) override { return commentPrefix() + SemannoEmitter::emit(a); } std::string visitInlineAnnotation(const InlineAnnotation* a) override { return commentPrefix() + SemannoEmitter::emit(a); } std::string visitPureAnnotation(const PureAnnotation* a) override { return commentPrefix() + SemannoEmitter::emit(a); } std::string visitConstExprAnnotation(const ConstExprAnnotation* a) override { return commentPrefix() + SemannoEmitter::emit(a); } std::string visitClassDeclaration(const ASTNode* node) override { auto* cls = static_cast(node); std::ostringstream oss; oss << "Class " << cls->name << "\n"; for (const auto* f : cls->getChildren("fields")) { oss << " " << generate(f) << "\n"; } oss << "End Class"; return oss.str(); } std::string visitInterfaceDeclaration(const ASTNode* node) override { auto* iface = static_cast(node); std::ostringstream oss; oss << "Interface " << iface->name << "\nEnd Interface"; return oss.str(); } std::string visitNamespaceDeclaration(const ASTNode* node) override { auto* ns = static_cast(node); std::ostringstream oss; oss << "Module " << ns->name << "\nEnd Module"; return oss.str(); } private: static std::string trimTrailingNewline(std::string s) { while (!s.empty() && (s.back() == '\n' || s.back() == '\r')) s.pop_back(); return s; } };