Go: struct → ClassDeclaration, interface → InterfaceDeclaration, method receiver → MethodDeclaration, func literal → LambdaExpression, expression_list unwrapping C++: class/struct → ClassDeclaration, template → TypeParameter, methods → MethodDeclaration, lambda_expression → LambdaExpression Elisp: (lambda ...) special_form → LambdaExpression Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
316 lines
11 KiB
C++
316 lines
11 KiB
C++
// Step 307: Go + C++ + Elisp Parser Deepening (12 tests)
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// Tests that Go, C++, and Elisp parsers correctly produce the new AST node
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// types: ClassDeclaration, InterfaceDeclaration, MethodDeclaration,
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// GenericType, LambdaExpression via tree-sitter parsing.
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#include "ast/Parser.h"
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#include "ast/ClassDeclaration.h"
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#include "ast/GenericType.h"
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#include "ast/AsyncNodes.h"
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#include "ast/Module.h"
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#include "ast/Function.h"
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#include "ast/Variable.h"
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#include "ast/Parameter.h"
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#include "ast/Statement.h"
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#include "ast/Expression.h"
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#include <iostream>
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#include <string>
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#include <memory>
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static int passed = 0, failed = 0;
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#define TEST(name) { std::cout << " " << #name << "... "; }
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#define PASS() { std::cout << "PASS\n"; ++passed; }
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#define FAIL(msg) { std::cout << "FAIL: " << msg << "\n"; ++failed; }
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#define CHECK(cond, msg) if (!(cond)) { FAIL(msg); return; } else {}
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// Helper: recursively find a node of a given conceptType
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static bool findNodeOfType(ASTNode* node, const std::string& type) {
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if (!node) return false;
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if (node->conceptType == type) return true;
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for (auto* child : node->allChildren()) {
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if (findNodeOfType(child, type)) return true;
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}
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return false;
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}
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// ---------------------------------------------------------------
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// Go tests (1-5)
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// ---------------------------------------------------------------
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// 1. Go backward compat — simple function still yields Function
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void test_go_backward_compat() {
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TEST(go_backward_compat);
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std::string src = "package main\n\nfunc greet(name string) string {\n return name\n}\n";
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auto mod = TreeSitterParser::parseGo(src);
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CHECK(mod != nullptr, "module null");
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auto& fns = mod->getChildren("functions");
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CHECK(!fns.empty(), "expected at least one function");
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auto* fn0 = dynamic_cast<Function*>(fns[0]);
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CHECK(fn0 != nullptr, "dynamic_cast to Function failed");
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CHECK(fn0->name == "greet", "expected name 'greet', got " + fn0->name);
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PASS();
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}
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// 2. Go struct → ClassDeclaration
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void test_go_struct() {
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TEST(go_struct);
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std::string src =
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"package main\n\n"
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"type Point struct {\n"
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" X float64\n"
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" Y float64\n"
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"}\n";
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auto mod = TreeSitterParser::parseGo(src);
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CHECK(mod != nullptr, "module null");
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auto& classes = mod->getChildren("classes");
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CHECK(!classes.empty(), "expected at least one class");
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auto* cls = dynamic_cast<ClassDeclaration*>(classes[0]);
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CHECK(cls != nullptr, "expected ClassDeclaration, got " + classes[0]->conceptType);
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CHECK(cls->name == "Point", "expected name 'Point', got " + cls->name);
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PASS();
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}
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// 3. Go interface → InterfaceDeclaration
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void test_go_interface() {
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TEST(go_interface);
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std::string src =
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"package main\n\n"
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"type Stringer interface {\n"
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" String() string\n"
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"}\n";
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auto mod = TreeSitterParser::parseGo(src);
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CHECK(mod != nullptr, "module null");
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auto& classes = mod->getChildren("classes");
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bool foundInterface = false;
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for (auto* entry : classes) {
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if (entry->conceptType == "InterfaceDeclaration") {
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auto* iface = dynamic_cast<InterfaceDeclaration*>(entry);
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CHECK(iface != nullptr, "dynamic_cast to InterfaceDeclaration failed");
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CHECK(iface->name == "Stringer", "expected name 'Stringer', got " + iface->name);
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foundInterface = true;
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break;
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}
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}
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CHECK(foundInterface, "expected InterfaceDeclaration in classes");
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PASS();
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}
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// 4. Go method receiver → MethodDeclaration on ClassDeclaration
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void test_go_method_receiver() {
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TEST(go_method_receiver);
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std::string src =
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"package main\n\n"
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"type Dog struct {\n"
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" Name string\n"
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"}\n\n"
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"func (d *Dog) Bark() string {\n"
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" return \"Woof!\"\n"
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"}\n";
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auto mod = TreeSitterParser::parseGo(src);
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CHECK(mod != nullptr, "module null");
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auto& classes = mod->getChildren("classes");
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CHECK(!classes.empty(), "expected class from struct");
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auto* cls = dynamic_cast<ClassDeclaration*>(classes[0]);
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CHECK(cls != nullptr, "expected ClassDeclaration");
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CHECK(cls->name == "Dog", "expected name 'Dog', got " + cls->name);
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auto& methods = cls->getChildren("methods");
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CHECK(!methods.empty(), "expected at least one method from receiver");
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auto* meth = dynamic_cast<MethodDeclaration*>(methods[0]);
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CHECK(meth != nullptr, "expected MethodDeclaration");
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CHECK(meth->name == "Bark", "expected method 'Bark', got " + meth->name);
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CHECK(meth->className == "Dog", "expected className 'Dog', got " + meth->className);
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PASS();
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}
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// 5. Go func literal → LambdaExpression
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void test_go_func_literal() {
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TEST(go_func_literal);
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std::string src =
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"package main\n\n"
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"func make() {\n"
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" fn := func(x int) int { return x + 1 }\n"
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"}\n";
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auto mod = TreeSitterParser::parseGo(src);
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CHECK(mod != nullptr, "module null");
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auto& fns = mod->getChildren("functions");
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CHECK(!fns.empty(), "expected function");
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CHECK(findNodeOfType(fns[0], "LambdaExpression"),
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"expected LambdaExpression from func literal in body");
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PASS();
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}
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// ---------------------------------------------------------------
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// C++ tests (6-10)
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// ---------------------------------------------------------------
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// 6. C++ backward compat — simple function still yields Function
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void test_cpp_backward_compat() {
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TEST(cpp_backward_compat);
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std::string src = "int add(int a, int b) {\n return a + b;\n}\n";
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auto mod = TreeSitterParser::parseCpp(src);
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CHECK(mod != nullptr, "module null");
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auto& fns = mod->getChildren("functions");
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CHECK(!fns.empty(), "expected at least one function");
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auto* fn0 = dynamic_cast<Function*>(fns[0]);
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CHECK(fn0 != nullptr, "dynamic_cast to Function failed");
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CHECK(fn0->name == "add", "expected name 'add', got " + fn0->name);
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PASS();
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}
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// 7. C++ class → ClassDeclaration with MethodDeclaration
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void test_cpp_class() {
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TEST(cpp_class);
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std::string src =
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"class Animal {\n"
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"public:\n"
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" void speak() {\n"
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" return;\n"
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" }\n"
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"};\n";
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auto mod = TreeSitterParser::parseCpp(src);
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CHECK(mod != nullptr, "module null");
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auto& classes = mod->getChildren("classes");
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CHECK(!classes.empty(), "expected at least one class");
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auto* cls = dynamic_cast<ClassDeclaration*>(classes[0]);
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CHECK(cls != nullptr, "expected ClassDeclaration, got " + classes[0]->conceptType);
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CHECK(cls->name == "Animal", "expected name 'Animal', got " + cls->name);
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auto& methods = cls->getChildren("methods");
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CHECK(!methods.empty(), "expected at least one method");
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auto* meth = dynamic_cast<MethodDeclaration*>(methods[0]);
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CHECK(meth != nullptr, "expected MethodDeclaration");
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CHECK(meth->name == "speak", "expected method 'speak', got " + meth->name);
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CHECK(meth->className == "Animal", "expected className 'Animal', got " + meth->className);
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PASS();
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}
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// 8. C++ struct → ClassDeclaration
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void test_cpp_struct() {
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TEST(cpp_struct);
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std::string src =
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"struct Point {\n"
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" double x;\n"
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" double y;\n"
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"};\n";
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auto mod = TreeSitterParser::parseCpp(src);
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CHECK(mod != nullptr, "module null");
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auto& classes = mod->getChildren("classes");
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CHECK(!classes.empty(), "expected class from struct");
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auto* cls = dynamic_cast<ClassDeclaration*>(classes[0]);
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CHECK(cls != nullptr, "expected ClassDeclaration, got " + classes[0]->conceptType);
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CHECK(cls->name == "Point", "expected name 'Point', got " + cls->name);
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PASS();
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}
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// 9. C++ template class → GenericType on ClassDeclaration
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void test_cpp_template() {
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TEST(cpp_template);
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std::string src =
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"template<typename T>\n"
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"class Container {\n"
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"public:\n"
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" T value;\n"
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"};\n";
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auto mod = TreeSitterParser::parseCpp(src);
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CHECK(mod != nullptr, "module null");
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auto& classes = mod->getChildren("classes");
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CHECK(!classes.empty(), "expected class from template");
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auto* cls = dynamic_cast<ClassDeclaration*>(classes[0]);
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CHECK(cls != nullptr, "expected ClassDeclaration");
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CHECK(cls->name == "Container", "expected name 'Container', got " + cls->name);
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// Should have a GenericType annotation or child
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CHECK(findNodeOfType(cls, "TypeParameter"),
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"expected TypeParameter from template parameter");
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PASS();
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}
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// 10. C++ lambda → LambdaExpression
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void test_cpp_lambda() {
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TEST(cpp_lambda);
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std::string src =
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"void make() {\n"
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" auto fn = [](int x) { return x + 1; };\n"
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"}\n";
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auto mod = TreeSitterParser::parseCpp(src);
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CHECK(mod != nullptr, "module null");
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auto& fns = mod->getChildren("functions");
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CHECK(!fns.empty(), "expected function");
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CHECK(findNodeOfType(fns[0], "LambdaExpression"),
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"expected LambdaExpression from C++ lambda in body");
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PASS();
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}
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// ---------------------------------------------------------------
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// Elisp tests (11-12)
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// ---------------------------------------------------------------
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// 11. Elisp backward compat — defun still yields Function
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void test_elisp_backward_compat() {
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TEST(elisp_backward_compat);
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std::string src = "(defun greet (name)\n (message name))\n";
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auto mod = TreeSitterParser::parseElisp(src);
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CHECK(mod != nullptr, "module null");
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auto& fns = mod->getChildren("functions");
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CHECK(!fns.empty(), "expected at least one function");
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auto* fn0 = dynamic_cast<Function*>(fns[0]);
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CHECK(fn0 != nullptr, "dynamic_cast to Function failed");
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CHECK(fn0->name == "greet", "expected name 'greet', got " + fn0->name);
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PASS();
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}
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// 12. Elisp lambda → LambdaExpression
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void test_elisp_lambda() {
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TEST(elisp_lambda);
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std::string src =
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"(defun make ()\n"
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" (lambda (x) (+ x 1)))\n";
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auto mod = TreeSitterParser::parseElisp(src);
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CHECK(mod != nullptr, "module null");
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auto& fns = mod->getChildren("functions");
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CHECK(!fns.empty(), "expected function");
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CHECK(findNodeOfType(fns[0], "LambdaExpression"),
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"expected LambdaExpression from (lambda ...) in function body");
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PASS();
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}
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int main() {
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std::cout << "=== Step 307: Go + C++ + Elisp Parser Deepening ===\n";
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test_go_backward_compat();
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test_go_struct();
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test_go_interface();
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test_go_method_receiver();
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test_go_func_literal();
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test_cpp_backward_compat();
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test_cpp_class();
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test_cpp_struct();
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test_cpp_template();
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test_cpp_lambda();
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test_elisp_backward_compat();
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test_elisp_lambda();
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std::cout << "\nResults: " << passed << "/" << (passed + failed) << " passed\n";
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return failed > 0 ? 1 : 0;
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}
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