151 lines
5.4 KiB
C++
151 lines
5.4 KiB
C++
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// Step 373: Common Lisp Integration (8 tests)
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#include <cassert>
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#include <iostream>
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#include <string>
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#include "Pipeline.h"
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#include "CrossLanguageProjector.h"
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#include "AnnotationInference.h"
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#include "CompactAST.h"
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#include "SemannoSidecar.h"
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#include "ast/CommonLispParser.h"
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#include "ast/CommonLispGenerator.h"
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static bool contains(const std::string& text, const std::string& token) {
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return text.find(token) != std::string::npos;
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}
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static bool hasInference(const std::vector<AnnotationInference::InferredAnnotation>& inferred,
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const std::string& annotationType,
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const std::string& value = "") {
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for (const auto& a : inferred) {
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if (a.annotationType != annotationType) continue;
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if (value.empty() || a.value == value) return true;
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}
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return false;
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}
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int main() {
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int passed = 0;
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// Test 1: Parse CL -> generate CL -> parse roundtrip shape
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{
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std::string src =
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"(defclass point () ((x) (y)))\n"
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"(defun add (a b) (+ a b))\n";
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auto mod1 = CommonLispParser::parseCommonLisp(src);
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CommonLispGenerator gen;
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std::string out = gen.generate(mod1.get());
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auto mod2 = CommonLispParser::parseCommonLisp(out);
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assert(mod1->getChildren("classes").size() == mod2->getChildren("classes").size());
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assert(mod1->getChildren("functions").size() == mod2->getChildren("functions").size());
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std::cout << "Test 1 PASSED: CL parse/generate/parse roundtrip\n";
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passed++;
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}
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// Test 2: Python -> Common Lisp (class -> CLOS)
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{
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Pipeline p;
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std::string py =
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"class Point:\n"
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" def __init__(self, x, y):\n"
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" self.x = x\n"
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" self.y = y\n";
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auto res = p.run(py, "python", "common-lisp");
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assert(res.success);
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assert(contains(res.generatedCode, "(defclass"));
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std::cout << "Test 2 PASSED: Python class -> Common Lisp CLOS form\n";
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passed++;
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}
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// Test 3: Common Lisp -> Python projection retains class structure
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{
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auto src = CommonLispParser::parseCommonLisp("(defclass point () ((x) (y)))");
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CrossLanguageProjector projector;
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auto pyMod = projector.project(src.get(), "python");
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Pipeline p;
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auto code = p.generate(pyMod.get(), "python");
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assert(pyMod != nullptr);
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assert(pyMod->getChildren("classes").size() == 1);
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assert(!code.empty());
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std::cout << "Test 3 PASSED: Common Lisp class retained in Python projection\n";
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passed++;
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}
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// Test 4: Common Lisp -> Java projection retains class hierarchy shape
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{
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auto src = CommonLispParser::parseCommonLisp("(defclass rectangle (shape) ((w) (h)))");
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CrossLanguageProjector projector;
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auto javaMod = projector.project(src.get(), "java");
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assert(javaMod != nullptr);
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assert(javaMod->getChildren("classes").size() == 1);
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std::cout << "Test 4 PASSED: Common Lisp class retained in Java projection\n";
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passed++;
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}
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// Test 5: CL annotation inference (macro, dynamic var, tail call)
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{
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std::string cl =
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"(defmacro m (x) x)\n"
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"(defvar *state* 1)\n"
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"(defun loopf (n) (loopf n))\n";
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auto mod = CommonLispParser::parseCommonLisp(cl);
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AnnotationInference inf;
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auto inferred = inf.inferAll(mod.get());
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assert(hasInference(inferred, "MetaAnnotation", "quoted"));
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assert(hasInference(inferred, "BindingAnnotation", "dynamic"));
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assert(hasInference(inferred, "TailCallAnnotation"));
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std::cout << "Test 5 PASSED: CL annotation inference integration\n";
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passed++;
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}
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// Test 6: Semanno sidecar roundtrip on .lisp path
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{
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Module mod("m1", "cl_module", "common-lisp");
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auto* fn = new Function("f1", "run");
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fn->setSpan(1, 1, 1, 12);
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auto* owner = new OwnerAnnotation("a1", "Shared_GC");
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fn->addChild("annotations", owner);
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mod.addChild("functions", fn);
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std::string root = "/tmp/whetstone_step373";
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std::string filePath = "samples/test.lisp";
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auto save = saveSemannoSidecar(root, filePath, &mod);
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auto load = loadSemannoSidecar(root, filePath);
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assert(save.success);
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assert(load.success);
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assert(load.count >= 1);
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std::cout << "Test 6 PASSED: Semanno sidecar roundtrip for CL\n";
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passed++;
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}
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// Test 7: Pipeline.run with CL source succeeds
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{
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Pipeline p;
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std::string cl = "(defun id (x) x)";
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auto res = p.run(cl, "common-lisp", "common-lisp");
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assert(res.success);
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assert(!res.generatedCode.empty());
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std::cout << "Test 7 PASSED: Pipeline.run with CL source\n";
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passed++;
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}
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// Test 8: Compact AST has meaningful Lisp node names
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{
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auto mod = CommonLispParser::parseCommonLisp("(defun id (x) x)");
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auto compact = toJsonCompactTree(mod.get());
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assert(compact.is_array());
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bool hasFunctionNode = false;
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for (const auto& n : compact) {
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if (n.contains("type") && n["type"] == "Function") hasFunctionNode = true;
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}
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assert(hasFunctionNode);
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std::cout << "Test 8 PASSED: compact AST contains Function node\n";
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passed++;
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}
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std::cout << "\nResults: " << passed << "/8\n";
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assert(passed == 8);
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return 0;
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}
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