Step 305: Python + Java parser deepening — class, async, lambda, decorator, generics (12/12 tests)
Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
This commit is contained in:
@@ -83,16 +83,65 @@ private:
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static void convertJavaTypeDeclaration(TSNode node,
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const std::string& source,
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Module* module) {
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std::string jtype = nodeType(node);
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TSNode nameNode = childByFieldName(node, "name");
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std::string className = nodeText(nameNode, source);
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TSNode bodyNode = childByFieldName(node, "body");
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if (ts_node_is_null(bodyNode)) return;
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// Create ClassDeclaration or InterfaceDeclaration for supported types
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ClassDeclaration* cls = nullptr;
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InterfaceDeclaration* iface = nullptr;
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if (jtype == "class_declaration") {
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cls = new ClassDeclaration(IdGenerator::next("cls"), className);
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applySpan(cls, node);
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// Superclass
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TSNode superNode = childByFieldName(node, "superclass");
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if (!ts_node_is_null(superNode)) {
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uint32_t sc = ts_node_named_child_count(superNode);
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if (sc > 0) cls->superClass = nodeText(ts_node_named_child(superNode, 0), source);
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}
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// Abstract check
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uint32_t nodeChildren = ts_node_named_child_count(node);
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for (uint32_t i = 0; i < nodeChildren; ++i) {
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TSNode ch = ts_node_named_child(node, i);
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if (nodeType(ch) == "modifiers") {
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uint32_t mc = ts_node_child_count(ch);
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for (uint32_t j = 0; j < mc; ++j) {
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if (nodeText(ts_node_child(ch, j), source) == "abstract")
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cls->isAbstract = true;
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}
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}
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}
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// Type parameters
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TSNode typeParamsNode = childByFieldName(node, "type_parameters");
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if (!ts_node_is_null(typeParamsNode)) {
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convertJavaTypeParameters(typeParamsNode, source, cls);
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}
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} else if (jtype == "interface_declaration") {
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iface = new InterfaceDeclaration(IdGenerator::next("iface"), className);
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applySpan(iface, node);
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}
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// Process body members
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uint32_t count = ts_node_named_child_count(bodyNode);
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for (uint32_t i = 0; i < count; ++i) {
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TSNode child = ts_node_named_child(bodyNode, i);
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std::string type = nodeType(child);
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if (type == "method_declaration") {
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// MethodDeclaration for class/interface hierarchy
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if (cls) {
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auto* meth = convertJavaMethodDeclaration(child, source, className);
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if (meth) cls->addChild("methods", meth);
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} else if (iface) {
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auto* meth = convertJavaMethodDeclaration(child, source, className);
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if (meth) iface->addChild("methods", meth);
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}
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// Backward compat: also add Function to module
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auto* fn = convertJavaMethod(child, source, className);
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if (fn) module->addChild("functions", fn);
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} else if (type == "constructor_declaration" || type == "compact_constructor_declaration") {
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@@ -106,6 +155,86 @@ private:
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convertJavaTypeDeclaration(child, source, module);
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}
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}
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// Add class/interface to module
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if (cls) module->addChild("classes", cls);
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if (iface) module->addChild("classes", iface);
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}
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static void convertJavaTypeParameters(TSNode typeParamsNode, const std::string& source,
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ClassDeclaration* cls) {
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uint32_t tpc = ts_node_named_child_count(typeParamsNode);
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for (uint32_t i = 0; i < tpc; ++i) {
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TSNode tp = ts_node_named_child(typeParamsNode, i);
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if (nodeType(tp) == "type_parameter") {
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std::string tpName;
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std::string constraint;
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uint32_t tpcc = ts_node_named_child_count(tp);
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for (uint32_t j = 0; j < tpcc; ++j) {
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TSNode tpChild = ts_node_named_child(tp, j);
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std::string tpType = nodeType(tpChild);
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if ((tpType == "identifier" || tpType == "type_identifier") && tpName.empty()) {
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tpName = nodeText(tpChild, source);
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} else if (tpType == "type_bound") {
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if (ts_node_named_child_count(tpChild) > 0) {
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constraint = nodeText(ts_node_named_child(tpChild, 0), source);
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}
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}
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}
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if (!tpName.empty()) {
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auto* typeParam = new TypeParameter(IdGenerator::next("tp"), tpName);
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typeParam->constraint = constraint;
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applySpan(typeParam, tp);
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cls->addChild("typeParameters", typeParam);
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}
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}
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}
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}
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static MethodDeclaration* convertJavaMethodDeclaration(TSNode node,
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const std::string& source,
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const std::string& className) {
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TSNode nameNode = childByFieldName(node, "name");
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if (ts_node_is_null(nameNode)) return nullptr;
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auto* meth = new MethodDeclaration(IdGenerator::next("meth"), nodeText(nameNode, source));
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applySpan(meth, node);
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meth->className = className;
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TSNode typeNode = childByFieldName(node, "type");
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if (!ts_node_is_null(typeNode)) {
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if (auto* t = convertJavaType(typeNode, source)) meth->setChild("returnType", t);
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}
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TSNode paramsNode = childByFieldName(node, "parameters");
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if (!ts_node_is_null(paramsNode)) {
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convertJavaParameters(paramsNode, source, meth);
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}
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TSNode bodyNode = childByFieldName(node, "body");
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if (!ts_node_is_null(bodyNode)) {
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convertJavaBlockStatements(bodyNode, source, meth);
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}
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// Check modifiers for visibility, static, abstract
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uint32_t allCount = ts_node_named_child_count(node);
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for (uint32_t i = 0; i < allCount; ++i) {
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TSNode child = ts_node_named_child(node, i);
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if (nodeType(child) == "modifiers") {
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uint32_t mc = ts_node_child_count(child);
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for (uint32_t j = 0; j < mc; ++j) {
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TSNode mod = ts_node_child(child, j);
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std::string modText = nodeText(mod, source);
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if (modText == "static") meth->isStatic = true;
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else if (modText == "public") meth->visibility = "public";
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else if (modText == "private") meth->visibility = "private";
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else if (modText == "protected") meth->visibility = "protected";
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else if (modText == "abstract") meth->isVirtual = true;
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}
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}
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}
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return meth;
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}
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static void convertJavaFieldDeclaration(TSNode node,
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@@ -512,9 +641,49 @@ private:
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return convertJavaExpression(ts_node_named_child(node, 0), source);
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}
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} else if (type == "lambda_expression") {
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auto* ref = new VariableReference(IdGenerator::next("var"), nodeText(node, source));
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applySpan(ref, node);
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return ref;
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auto* lam = new LambdaExpression(IdGenerator::next("lam"));
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applySpan(lam, node);
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TSNode paramsNode = childByFieldName(node, "parameters");
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if (!ts_node_is_null(paramsNode)) {
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std::string pType = nodeType(paramsNode);
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if (pType == "identifier") {
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auto* param = new Parameter(IdGenerator::next("param"), nodeText(paramsNode, source));
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applySpan(param, paramsNode);
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lam->addChild("parameters", param);
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} else {
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uint32_t pc = ts_node_named_child_count(paramsNode);
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for (uint32_t pi = 0; pi < pc; ++pi) {
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TSNode pChild = ts_node_named_child(paramsNode, pi);
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TSNode pName = childByFieldName(pChild, "name");
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if (ts_node_is_null(pName)) pName = pChild;
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std::string paramName = nodeText(pName, source);
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if (!paramName.empty()) {
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auto* param = new Parameter(IdGenerator::next("param"), paramName);
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applySpan(param, pChild);
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lam->addChild("parameters", param);
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}
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}
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}
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}
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TSNode bodyNode = childByFieldName(node, "body");
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if (!ts_node_is_null(bodyNode)) {
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if (nodeType(bodyNode) == "block") {
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uint32_t bc = ts_node_named_child_count(bodyNode);
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for (uint32_t bi = 0; bi < bc; ++bi) {
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ASTNode* stmt = convertJavaStatement(ts_node_named_child(bodyNode, bi), source);
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if (stmt) lam->addChild("body", stmt);
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}
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} else {
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ASTNode* expr = convertJavaExpression(bodyNode, source);
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if (expr) {
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auto* exprStmt = new ExpressionStatement();
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exprStmt->id = IdGenerator::next("exprstmt");
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exprStmt->setChild("expression", expr);
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lam->addChild("body", exprStmt);
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}
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}
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}
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return lam;
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}
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std::string text = nodeText(node, source);
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@@ -9,6 +9,9 @@
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#include "Expression.h"
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#include "Type.h"
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#include "Annotation.h"
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#include "ClassDeclaration.h"
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#include "GenericType.h"
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#include "AsyncNodes.h"
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#include <string>
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#include <memory>
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#include <vector>
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@@ -153,7 +156,9 @@ public:
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#include "ast/JavaParser.h"
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#include "ast/RustParser.h"
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#include "ast/GoParser.h"
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#include "ast/KotlinParser.h"
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#include "ast/CSharpParser.h"
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private:
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};
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// Standalone parsers (not tree-sitter fragment includes)
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#include "ast/KotlinParser.h"
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#include "ast/CSharpParser.h"
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@@ -45,7 +45,7 @@ public:
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// ---------------------------------------------------------------
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private:
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// Python CST → AST
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// Python CST -> AST
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// ---------------------------------------------------------------
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static void convertPythonModule(TSNode root, const std::string& source, Module* module) {
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uint32_t count = ts_node_named_child_count(root);
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@@ -55,20 +55,38 @@ private:
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if (type == "function_definition") {
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auto* fn = convertPythonFunction(child, source);
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if (fn) module->addChild("functions", fn);
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} else if (type == "class_definition") {
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auto* cls = convertPythonClass(child, source);
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if (cls) module->addChild("classes", cls);
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} else if (type == "decorated_definition") {
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convertPythonDecorated(child, source, module);
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}
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}
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}
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static Function* convertPythonFunction(TSNode node, const std::string& source) {
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// Get function name
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TSNode nameNode = childByFieldName(node, "name");
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if (ts_node_is_null(nameNode)) return nullptr;
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auto* fn = new Function();
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fn->id = IdGenerator::next("fn");
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applySpan(fn, node);
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applySpan(fn, node);
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fn->name = nodeText(nameNode, source);
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// Detect async keyword (non-named child with text "async")
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bool isAsync = false;
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uint32_t totalCount = ts_node_child_count(node);
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for (uint32_t i = 0; i < totalCount; ++i) {
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TSNode ch = ts_node_child(node, i);
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if (!ts_node_is_named(ch) && nodeText(ch, source) == "async") {
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isAsync = true;
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break;
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}
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}
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Function* fn;
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if (isAsync) {
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fn = new AsyncFunction(IdGenerator::next("fn"), nodeText(nameNode, source));
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} else {
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fn = new Function();
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fn->id = IdGenerator::next("fn");
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fn->name = nodeText(nameNode, source);
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}
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applySpan(fn, node);
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// Parameters
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@@ -90,6 +108,136 @@ private:
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return fn;
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}
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static ClassDeclaration* convertPythonClass(TSNode node, const std::string& source) {
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TSNode nameNode = childByFieldName(node, "name");
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if (ts_node_is_null(nameNode)) return nullptr;
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auto* cls = new ClassDeclaration(IdGenerator::next("cls"), nodeText(nameNode, source));
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applySpan(cls, node);
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// Superclasses — first argument is the primary superclass
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TSNode superNode = childByFieldName(node, "superclasses");
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if (!ts_node_is_null(superNode)) {
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uint32_t sc = ts_node_named_child_count(superNode);
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if (sc > 0) {
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cls->superClass = nodeText(ts_node_named_child(superNode, 0), source);
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}
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}
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// Body — extract methods
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TSNode bodyNode = childByFieldName(node, "body");
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if (!ts_node_is_null(bodyNode)) {
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uint32_t count = ts_node_named_child_count(bodyNode);
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for (uint32_t i = 0; i < count; ++i) {
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TSNode child = ts_node_named_child(bodyNode, i);
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std::string type = nodeType(child);
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if (type == "function_definition") {
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auto* meth = convertPythonMethodDecl(child, source, cls->name);
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if (meth) cls->addChild("methods", meth);
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} else if (type == "decorated_definition") {
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TSNode defNode = childByFieldName(child, "definition");
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if (!ts_node_is_null(defNode) && nodeType(defNode) == "function_definition") {
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auto* meth = convertPythonMethodDecl(defNode, source, cls->name);
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if (meth) {
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// Attach decorators
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uint32_t dc = ts_node_named_child_count(child);
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for (uint32_t j = 0; j < dc; ++j) {
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TSNode dChild = ts_node_named_child(child, j);
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if (nodeType(dChild) == "decorator") {
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auto* dec = convertPythonDecoratorNode(dChild, source);
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if (dec) meth->addChild("annotations", dec);
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}
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}
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cls->addChild("methods", meth);
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}
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}
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}
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}
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}
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return cls;
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}
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static MethodDeclaration* convertPythonMethodDecl(TSNode node, const std::string& source,
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const std::string& className) {
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TSNode nameNode = childByFieldName(node, "name");
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if (ts_node_is_null(nameNode)) return nullptr;
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auto* meth = new MethodDeclaration(IdGenerator::next("meth"), nodeText(nameNode, source));
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applySpan(meth, node);
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meth->className = className;
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// Parameters
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TSNode paramsNode = childByFieldName(node, "parameters");
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if (!ts_node_is_null(paramsNode)) {
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convertPythonParameters(paramsNode, source, meth);
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}
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// Body
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TSNode bodyNode = childByFieldName(node, "body");
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if (!ts_node_is_null(bodyNode)) {
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convertPythonBody(bodyNode, source, meth);
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}
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return meth;
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}
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static void convertPythonDecorated(TSNode node, const std::string& source, Module* module) {
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// Collect decorators
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std::vector<DecoratorAnnotation*> decorators;
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uint32_t count = ts_node_named_child_count(node);
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for (uint32_t i = 0; i < count; ++i) {
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TSNode child = ts_node_named_child(node, i);
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if (nodeType(child) == "decorator") {
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auto* dec = convertPythonDecoratorNode(child, source);
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if (dec) decorators.push_back(dec);
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}
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}
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// Get the wrapped definition
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TSNode defNode = childByFieldName(node, "definition");
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if (ts_node_is_null(defNode)) {
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for (auto* d : decorators) delete d;
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return;
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}
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std::string defType = nodeType(defNode);
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if (defType == "function_definition") {
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auto* fn = convertPythonFunction(defNode, source);
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if (fn) {
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for (auto* dec : decorators) fn->addChild("annotations", dec);
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module->addChild("functions", fn);
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} else {
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for (auto* d : decorators) delete d;
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}
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} else if (defType == "class_definition") {
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auto* cls = convertPythonClass(defNode, source);
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if (cls) {
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for (auto* dec : decorators) cls->addChild("annotations", dec);
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module->addChild("classes", cls);
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} else {
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for (auto* d : decorators) delete d;
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}
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} else {
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for (auto* d : decorators) delete d;
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}
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}
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static DecoratorAnnotation* convertPythonDecoratorNode(TSNode node, const std::string& source) {
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uint32_t dc = ts_node_named_child_count(node);
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if (dc == 0) return nullptr;
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TSNode exprNode = ts_node_named_child(node, 0);
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std::string name = nodeText(exprNode, source);
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// For call decorators like @app.route("/"), extract the function name
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if (nodeType(exprNode) == "call") {
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TSNode funcNode = childByFieldName(exprNode, "function");
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if (!ts_node_is_null(funcNode)) name = nodeText(funcNode, source);
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}
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auto* dec = new DecoratorAnnotation(IdGenerator::next("dec"), name);
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applySpan(dec, node);
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return dec;
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}
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static void convertPythonParameters(TSNode paramsNode, const std::string& source, Function* fn) {
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uint32_t count = ts_node_named_child_count(paramsNode);
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for (uint32_t i = 0; i < count; ++i) {
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@@ -100,7 +248,6 @@ private:
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applySpan(param, child);
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fn->addChild("parameters", param);
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} else if (type == "default_parameter") {
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// def f(x=10) → Parameter with defaultValue
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TSNode nameN = childByFieldName(child, "name");
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TSNode valueN = childByFieldName(child, "value");
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if (!ts_node_is_null(nameN)) {
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@@ -117,7 +264,6 @@ private:
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}
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static void convertPythonBody(TSNode bodyNode, const std::string& source, Function* fn) {
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// bodyNode is typically a "block" node
|
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uint32_t count = ts_node_named_child_count(bodyNode);
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for (uint32_t i = 0; i < count; ++i) {
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TSNode child = ts_node_named_child(bodyNode, i);
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@@ -132,7 +278,6 @@ private:
|
||||
auto* ret = new Return();
|
||||
ret->id = IdGenerator::next("ret");
|
||||
applySpan(ret, node);
|
||||
// The return value is the first named child (if any)
|
||||
uint32_t count = ts_node_named_child_count(node);
|
||||
if (count > 0) {
|
||||
TSNode valNode = ts_node_named_child(node, 0);
|
||||
@@ -240,7 +385,6 @@ private:
|
||||
applySpan(lit, node);
|
||||
return lit;
|
||||
} else if (type == "comparison_operator" || type == "boolean_operator") {
|
||||
// Treat like binary op
|
||||
auto* binOp = new BinaryOperation();
|
||||
binOp->id = IdGenerator::next("binop");
|
||||
applySpan(binOp, node);
|
||||
@@ -251,7 +395,6 @@ private:
|
||||
ASTNode* right = convertPythonExpression(ts_node_named_child(node, count - 1), source);
|
||||
if (right) binOp->setChild("right", right);
|
||||
}
|
||||
// Operator is a non-named child between the named ones
|
||||
uint32_t totalCount = ts_node_child_count(node);
|
||||
for (uint32_t i = 0; i < totalCount; ++i) {
|
||||
TSNode c = ts_node_child(node, i);
|
||||
@@ -281,6 +424,21 @@ private:
|
||||
}
|
||||
}
|
||||
return call;
|
||||
} else if (type == "assignment") {
|
||||
auto* assign = new Assignment();
|
||||
assign->id = IdGenerator::next("assign");
|
||||
applySpan(assign, node);
|
||||
TSNode leftNode = childByFieldName(node, "left");
|
||||
TSNode rightNode = childByFieldName(node, "right");
|
||||
if (!ts_node_is_null(leftNode)) {
|
||||
ASTNode* target = convertPythonExpression(leftNode, source);
|
||||
if (target) assign->setChild("target", target);
|
||||
}
|
||||
if (!ts_node_is_null(rightNode)) {
|
||||
ASTNode* value = convertPythonExpression(rightNode, source);
|
||||
if (value) assign->setChild("value", value);
|
||||
}
|
||||
return assign;
|
||||
} else if (type == "parenthesized_expression") {
|
||||
uint32_t count = ts_node_named_child_count(node);
|
||||
if (count > 0) return convertPythonExpression(ts_node_named_child(node, 0), source);
|
||||
@@ -298,6 +456,41 @@ private:
|
||||
if (operand) unOp->setChild("operand", operand);
|
||||
}
|
||||
return unOp;
|
||||
} else if (type == "await") {
|
||||
auto* awExpr = new AwaitExpression(IdGenerator::next("await"));
|
||||
applySpan(awExpr, node);
|
||||
uint32_t count = ts_node_named_child_count(node);
|
||||
if (count > 0) {
|
||||
ASTNode* expr = convertPythonExpression(ts_node_named_child(node, 0), source);
|
||||
if (expr) awExpr->setChild("expression", expr);
|
||||
}
|
||||
return awExpr;
|
||||
} else if (type == "lambda") {
|
||||
auto* lam = new LambdaExpression(IdGenerator::next("lam"));
|
||||
applySpan(lam, node);
|
||||
TSNode paramsNode = childByFieldName(node, "parameters");
|
||||
if (!ts_node_is_null(paramsNode)) {
|
||||
uint32_t pc = ts_node_named_child_count(paramsNode);
|
||||
for (uint32_t i = 0; i < pc; ++i) {
|
||||
TSNode pChild = ts_node_named_child(paramsNode, i);
|
||||
if (nodeType(pChild) == "identifier") {
|
||||
auto* param = new Parameter(IdGenerator::next("param"), nodeText(pChild, source));
|
||||
applySpan(param, pChild);
|
||||
lam->addChild("parameters", param);
|
||||
}
|
||||
}
|
||||
}
|
||||
TSNode bodyNode = childByFieldName(node, "body");
|
||||
if (!ts_node_is_null(bodyNode)) {
|
||||
ASTNode* bodyExpr = convertPythonExpression(bodyNode, source);
|
||||
if (bodyExpr) {
|
||||
auto* exprStmt = new ExpressionStatement();
|
||||
exprStmt->id = IdGenerator::next("exprstmt");
|
||||
exprStmt->setChild("expression", bodyExpr);
|
||||
lam->addChild("body", exprStmt);
|
||||
}
|
||||
}
|
||||
return lam;
|
||||
}
|
||||
// Fallback: treat as variable reference with raw text
|
||||
std::string text = nodeText(node, source);
|
||||
|
||||
Reference in New Issue
Block a user