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whetstone_DSL/editor/tests/step369_test.cpp

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// Step 369: Phase 14b Integration (8 tests)
#include <cassert>
#include <iostream>
#include <string>
#include <vector>
#include <filesystem>
#include <algorithm>
#include "Pipeline.h"
#include "CrossLanguageProjector.h"
#include "AnnotationInference.h"
#include "CompactAST.h"
#include "SemannoSidecar.h"
#include "MCPServer.h"
#include "ast/WatParser.h"
#include "ast/WatGenerator.h"
static bool contains(const std::string& text, const std::string& token) {
return text.find(token) != std::string::npos;
}
int main() {
int passed = 0;
// Test 1: Parse WAT -> generate WAT -> valid shape
{
std::string wat = "(module (func $add (param $x i32) (param $y i32) (result i32) i32.add))";
auto mod = WatParser::parseWat(wat);
WatGenerator gen;
std::string out = gen.generate(mod.get());
assert(contains(out, "(module"));
assert(contains(out, "(func"));
assert(std::count(out.begin(), out.end(), '(') == std::count(out.begin(), out.end(), ')'));
std::cout << "Test 1 PASSED: parse/generate WAT validity\n";
passed++;
}
// Test 2: C -> WAT -> C roundtrip
{
Pipeline p;
std::string csrc = "int add(int a, int b) { return a + b; }\n";
auto toWat = p.run(csrc, "c", "wat");
assert(toWat.success);
auto toC = p.run(toWat.generatedCode, "wat", "c");
assert(toC.success);
assert(!toC.generatedCode.empty());
std::cout << "Test 2 PASSED: C -> WAT -> C roundtrip\n";
passed++;
}
// Test 3: 12 language parser routes can target WAT
{
struct Sample { std::string lang; std::string src; };
std::vector<Sample> samples = {
{"python", "def f(x):\n return x\n"},
{"cpp", "int f(int x){ return x; }\n"},
{"elisp", "(defun f (x) x)\n"},
{"javascript", "function f(x){ return x; }\n"},
{"typescript", "function f(x:number){ return x; }\n"},
{"java", "class A { int f(int x){ return x; } }\n"},
{"rust", "fn f(x:i32)->i32 { x }\n"},
{"go", "package main\nfunc f(x int) int { return x }\n"},
{"kotlin", "fun f(x:Int):Int { return x }\n"},
{"csharp", "class A { int F(int x){ return x; } }\n"},
{"c", "int f(int x){ return x; }\n"},
{"wat", "(module (func $f (param $x i32) (result i32)))"}
};
Pipeline p;
int succeeded = 0;
for (const auto& s : samples) {
auto res = p.run(s.src, s.lang, "wat");
if (res.success && !res.generatedCode.empty()) {
succeeded++;
}
}
assert(succeeded >= 10); // allow parser variability, require broad coverage
std::cout << "Test 3 PASSED: multi-language -> WAT coverage (" << succeeded << "/12)\n";
passed++;
}
// Test 4: WAT annotations inferred and present
{
Module mod("m1", "wat", "wat");
mod.addChild("functions", new Function("f1", "run"));
mod.addChild("statements", new PragmaDirective("p1", "memory"));
AnnotationInference inf;
auto inferred = inf.inferAll(&mod);
bool hasExec = false, hasLayout = false;
for (const auto& a : inferred) {
hasExec = hasExec || (a.annotationType == "ExecAnnotation" && a.value == "stack");
hasLayout = hasLayout || (a.annotationType == "LayoutAnnotation" && a.value == "linear");
}
assert(hasExec && hasLayout);
std::cout << "Test 4 PASSED: WAT annotations meaningful\n";
passed++;
}
// Test 5: Compact AST for WAT module has expected node labels
{
auto mod = WatParser::parseWat("(module (func $f (result i32)))");
auto compact = toJsonCompactTree(mod.get());
assert(compact.is_array());
bool hasFunctionNode = false;
for (const auto& n : compact) {
if (n.contains("type") && n["type"] == "Function") hasFunctionNode = true;
}
assert(hasFunctionNode);
std::cout << "Test 5 PASSED: compact AST includes Function node\n";
passed++;
}
// Test 6: Diagnostics catch malformed WAT
{
auto pr = WatParser::parseWatWithDiagnostics("(module (func $f (result i32))");
assert(!pr.diagnostics.empty());
bool hasError = false;
for (const auto& d : pr.diagnostics) if (d.severity == "error") hasError = true;
assert(hasError);
std::cout << "Test 6 PASSED: malformed WAT diagnostics\n";
passed++;
}
// Test 7: Semanno sidecar save/load for WAT file
{
Module mod("m1", "wat", "wat");
auto* fn = new Function("f1", "run");
fn->setSpan(1, 1, 1, 10);
auto* owner = new OwnerAnnotation("a1", "Manual");
fn->addChild("annotations", owner);
mod.addChild("functions", fn);
std::string root = "/tmp/whetstone_step369";
std::string filePath = "samples/test.wat";
auto save = saveSemannoSidecar(root, filePath, &mod);
assert(save.success);
auto load = loadSemannoSidecar(root, filePath);
assert(load.success);
assert(load.count >= 1);
std::cout << "Test 7 PASSED: Semanno sidecar save/load for WAT\n";
passed++;
}
// Test 8: MCP tools handle WAT language parameter
{
MCPServer server;
auto tools = server.getTools();
bool hasRunPipeline = false;
for (const auto& t : tools) {
if (t.name == "whetstone_run_pipeline") {
hasRunPipeline = true;
assert(t.inputSchema.contains("properties"));
auto props = t.inputSchema["properties"];
assert(props.contains("sourceLanguage"));
assert(props["sourceLanguage"]["type"] == "string");
}
}
assert(hasRunPipeline);
std::cout << "Test 8 PASSED: MCP run_pipeline accepts language string (incl. wat)\n";
passed++;
}
std::cout << "\nResults: " << passed << "/8\n";
assert(passed == 8);
return 0;
}