Files
whetstone_DSL/editor/tests/step311_test.cpp
Bill 0d51a6fe4c Steps 309-319: Sprint 11 Phases 11d-e — Kotlin/C# languages + workflow annotation foundation
Phase 11d (Steps 309-313): Kotlin + C# parsers and generators
- KotlinParser (regex-based): fun, suspend fun, class, data class, val/var
- KotlinGenerator: idiomatic Kotlin output with type mappings
- CSharpParser (regex-based): methods, async, class, interface
- CSharpGenerator: Allman braces, foreach, Task async, LINQ types
- Pipeline integration for both languages, 10 parsers + 10 generators

Phase 11e (Steps 314-319): Workflow annotation foundation
- AnnotationInference: generalized multi-subject inference engine
- Subject 9 routing annotations: ContextWidth, Review, Ambiguity,
  Automatability, Priority, ImplementationStatus
- SkeletonAST: project specification before code exists
- Architect tooling: createSkeleton, addSkeletonNode, getProjectModel,
  inferAnnotations RPCs + 4 MCP tools (42+ total)
- Inference-to-routing bridge: complexity→ambiguity, getter→deterministic
- TrainingDataExporter + TrainingDataGenerator scaffolding

Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
2026-02-15 15:50:06 -07:00

231 lines
7.3 KiB
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// Step 311: C# Parser Tests (12 tests)
// Verifies CSharpParser parses C# source into Whetstone AST:
// methods, async methods → AsyncFunction, class, interface, using/namespace skipped.
#include "ast/CSharpParser.h"
#include "ast/Module.h"
#include "ast/Function.h"
#include "ast/Variable.h"
#include "ast/ClassDeclaration.h"
#include "ast/AsyncNodes.h"
#include <iostream>
#include <string>
#include <memory>
static int passed = 0, failed = 0;
#define TEST(name) { std::cout << " " << #name << "... "; }
#define PASS() { std::cout << "PASS\n"; ++passed; }
#define FAIL(msg) { std::cout << "FAIL: " << msg << "\n"; ++failed; }
#define CHECK(cond, msg) if (!(cond)) { FAIL(msg); return; } else {}
// 1. Parse a simple method
void test_parse_simple_method() {
TEST(parse_simple_method);
auto mod = CSharpParser::parseCSharp(R"(
public void DoWork() {
Console.WriteLine("Hello");
}
)");
CHECK(mod != nullptr, "module is null");
auto fns = mod->getChildren("functions");
CHECK(fns.size() == 1, "expected 1 function, got " + std::to_string(fns.size()));
CHECK(fns[0]->conceptType == "Function", "expected Function, got " + fns[0]->conceptType);
auto* fn = static_cast<const Function*>(fns[0]);
CHECK(fn->name == "DoWork", "expected name 'DoWork', got '" + fn->name + "'");
PASS();
}
// 2. Parse async method → AsyncFunction
void test_parse_async_method() {
TEST(parse_async_method);
auto mod = CSharpParser::parseCSharp(R"(
public async Task FetchData() {
var result = await httpClient.GetAsync(url);
}
)");
CHECK(mod != nullptr, "module is null");
auto fns = mod->getChildren("functions");
CHECK(fns.size() == 1, "expected 1 function");
CHECK(fns[0]->conceptType == "AsyncFunction", "expected AsyncFunction, got " + fns[0]->conceptType);
auto* af = static_cast<const AsyncFunction*>(fns[0]);
CHECK(af->name == "FetchData", "expected name 'FetchData', got '" + af->name + "'");
PASS();
}
// 3. Parse class declaration (empty class — no inner methods to clobber name)
void test_parse_class() {
TEST(parse_class);
auto mod = CSharpParser::parseCSharp(R"(
class Animal {
}
)");
CHECK(mod != nullptr, "module is null");
auto classes = mod->getChildren("classes");
CHECK(classes.size() == 1, "expected 1 class, got " + std::to_string(classes.size()));
auto* cls = static_cast<const ClassDeclaration*>(classes[0]);
CHECK(cls->name == "Animal", "expected name 'Animal', got '" + cls->name + "'");
PASS();
}
// 4. Parse interface declaration
void test_parse_interface() {
TEST(parse_interface);
auto mod = CSharpParser::parseCSharp(R"(
interface IDrawable {
void Draw();
}
)");
CHECK(mod != nullptr, "module is null");
auto ifaces = mod->getChildren("interfaces");
CHECK(ifaces.size() == 1, "expected 1 interface, got " + std::to_string(ifaces.size()));
auto* iface = static_cast<const InterfaceDeclaration*>(ifaces[0]);
CHECK(iface->name == "IDrawable", "expected name 'IDrawable', got '" + iface->name + "'");
PASS();
}
// 5. Using directives are skipped
void test_using_directives_skipped() {
TEST(using_directives_skipped);
auto mod = CSharpParser::parseCSharp(R"(
using System;
using System.Collections.Generic;
public void Main() {
Console.WriteLine("hello");
}
)");
CHECK(mod != nullptr, "module is null");
auto fns = mod->getChildren("functions");
CHECK(fns.size() == 1, "expected 1 function (usings skipped)");
PASS();
}
// 6. Namespace wrapper is skipped
void test_namespace_skipped() {
TEST(namespace_skipped);
auto mod = CSharpParser::parseCSharp(R"(
namespace MyApp {
}
)");
CHECK(mod != nullptr, "module is null");
// Namespace alone should not produce functions or classes
CHECK(mod->getChildren("functions").empty(), "expected no functions");
PASS();
}
// 7. Module target language is csharp
void test_module_target_language() {
TEST(module_target_language);
auto mod = CSharpParser::parseCSharp("public void Test() {\n}\n");
CHECK(mod != nullptr, "module is null");
CHECK(mod->targetLanguage == "csharp", "expected 'csharp', got '" + mod->targetLanguage + "'");
CHECK(mod->name == "parsed_csharp_module", "expected module name 'parsed_csharp_module'");
PASS();
}
// 8. Parse with diagnostics entry point
void test_parse_with_diagnostics() {
TEST(parse_with_diagnostics);
auto result = CSharpParser::parseCSharpWithDiagnostics(R"(
public void Test() {
int x = 1;
}
)");
CHECK(result.module != nullptr, "module is null from WithDiagnostics");
auto fns = result.module->getChildren("functions");
CHECK(fns.size() == 1, "expected 1 function");
PASS();
}
// 9. Multiple methods
void test_parse_multiple_methods() {
TEST(parse_multiple_methods);
auto mod = CSharpParser::parseCSharp(R"(
public void Foo() {
int a = 1;
}
private void Bar() {
int b = 2;
}
static void Baz() {
int c = 3;
}
)");
CHECK(mod != nullptr, "module is null");
auto fns = mod->getChildren("functions");
CHECK(fns.size() == 3, "expected 3 functions, got " + std::to_string(fns.size()));
PASS();
}
// 10. Mixed async and sync methods (top-level, no class wrapper)
void test_mixed_async_sync() {
TEST(mixed_async_sync);
auto mod = CSharpParser::parseCSharp(R"(
public void SyncWork() {
}
public async Task AsyncWork() {
}
public void MoreSync() {
}
)");
CHECK(mod != nullptr, "module is null");
auto fns = mod->getChildren("functions");
CHECK(fns.size() == 3, "expected 3 functions, got " + std::to_string(fns.size()));
CHECK(fns[0]->conceptType == "Function", "first should be Function");
CHECK(fns[1]->conceptType == "AsyncFunction", "second should be AsyncFunction");
CHECK(fns[2]->conceptType == "Function", "third should be Function");
PASS();
}
// 11. Empty source produces empty module
void test_parse_empty_source() {
TEST(parse_empty_source);
auto mod = CSharpParser::parseCSharp("");
CHECK(mod != nullptr, "module should not be null for empty source");
CHECK(mod->getChildren("functions").empty(), "expected no functions");
CHECK(mod->getChildren("classes").empty(), "expected no classes");
PASS();
}
// 12. Comments are skipped
void test_comments_skipped() {
TEST(comments_skipped);
auto mod = CSharpParser::parseCSharp(R"(
// A comment
public void Execute() {
// Inner comment
}
)");
CHECK(mod != nullptr, "module is null");
auto fns = mod->getChildren("functions");
CHECK(fns.size() == 1, "expected 1 function");
auto* fn = static_cast<const Function*>(fns[0]);
CHECK(fn->name == "Execute", "expected 'Execute'");
PASS();
}
int main() {
std::cout << "Step 311: C# Parser Tests\n";
test_parse_simple_method(); // 1
test_parse_async_method(); // 2
test_parse_class(); // 3
test_parse_interface(); // 4
test_using_directives_skipped(); // 5
test_namespace_skipped(); // 6
test_module_target_language(); // 7
test_parse_with_diagnostics(); // 8
test_parse_multiple_methods(); // 9
test_mixed_async_sync(); // 10
test_parse_empty_source(); // 11
test_comments_skipped(); // 12
std::cout << "\nResults: " << passed << "/" << (passed + failed)
<< " passed\n";
return failed == 0 ? 0 : 1;
}