243 lines
8.7 KiB
C++
243 lines
8.7 KiB
C++
// Step 372: Lisp Annotation Mapping (12 tests)
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#include <cassert>
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#include <iostream>
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#include <string>
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#include <vector>
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#include "AnnotationInference.h"
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#include "MemoryStrategyInference.h"
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#include "CrossLanguageProjector.h"
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#include "ast/PythonGenerator.h"
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#include "ast/CppGenerator.h"
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#include "ast/ClassDeclaration.h"
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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 && a.value == value) return true;
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}
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return false;
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}
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static bool hasMemorySuggestion(const std::vector<MemoryStrategyInference::Suggestion>& suggestions,
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const std::string& annotationType,
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const std::string& strategy) {
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for (const auto& s : suggestions) {
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if (s.annotationType == annotationType && s.strategy == strategy) 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: macro -> @Meta(quoted)
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{
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Module mod("m1", "cl", "common-lisp");
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mod.addChild("statements", new MacroDefinition("mac1", "when1"));
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AnnotationInference inf;
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auto inferred = inf.inferAll(&mod);
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assert(hasInference(inferred, "MetaAnnotation", "quoted"));
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std::cout << "Test 1 PASSED: macro -> Meta(quoted)\n";
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passed++;
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}
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// Test 2: dynamic variable -> @Binding(dynamic)
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{
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Module mod("m1", "cl", "common-lisp");
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mod.addChild("variables", new Variable("v1", "*runtime-mode*"));
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AnnotationInference inf;
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auto inferred = inf.inferAll(&mod);
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assert(hasInference(inferred, "BindingAnnotation", "dynamic"));
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std::cout << "Test 2 PASSED: dynamic variable -> Binding(dynamic)\n";
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passed++;
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}
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// Test 3: values form -> @Contract(multiple-values)
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{
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Module mod("m1", "cl", "common-lisp");
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auto* fn = new Function("f1", "pair");
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auto* valuesCall = new FunctionCall();
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valuesCall->id = "c1";
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valuesCall->functionName = "values";
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valuesCall->addChild("arguments", new IntegerLiteral("i1", 1));
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valuesCall->addChild("arguments", new IntegerLiteral("i2", 2));
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auto* stmt = new ExpressionStatement();
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stmt->id = "s1";
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stmt->setChild("expression", valuesCall);
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fn->addChild("body", stmt);
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mod.addChild("functions", fn);
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AnnotationInference inf;
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auto inferred = inf.inferAll(&mod);
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assert(hasInference(inferred, "ContractAnnotation", "multiple-values"));
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std::cout << "Test 3 PASSED: values -> Contract annotation\n";
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passed++;
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}
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// Test 4: tail-recursive function -> @TailCall
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{
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Module mod("m1", "cl", "common-lisp");
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auto* fn = new Function("f1", "fact");
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auto* call = new FunctionCall();
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call->id = "c1";
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call->functionName = "fact";
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auto* stmt = new ExpressionStatement();
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stmt->id = "s1";
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stmt->setChild("expression", call);
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fn->addChild("body", stmt);
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mod.addChild("functions", fn);
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AnnotationInference inf;
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auto inferred = inf.inferAll(&mod);
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assert(hasInference(inferred, "TailCallAnnotation", ""));
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std::cout << "Test 4 PASSED: tail recursion detected\n";
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passed++;
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}
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// Test 5: CLOS class -> @Visibility(public)
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{
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Module mod("m1", "cl", "common-lisp");
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mod.addChild("classes", new ClassDeclaration("c1", "point"));
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AnnotationInference inf;
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auto inferred = inf.inferAll(&mod);
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assert(hasInference(inferred, "VisibilityAnnotation", "public"));
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std::cout << "Test 5 PASSED: CLOS class -> Visibility(public)\n";
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passed++;
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}
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// Test 6: optimize declaration -> @Policy(perf=critical, style=literal)
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{
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Module mod("m1", "cl", "common-lisp");
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auto* fn = new Function("f1", "hot");
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auto* optimize = new FunctionCall();
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optimize->id = "c2";
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optimize->functionName = "optimize";
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auto* decl = new FunctionCall();
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decl->id = "c1";
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decl->functionName = "declare";
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decl->addChild("arguments", optimize);
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auto* stmt = new ExpressionStatement();
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stmt->id = "s1";
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stmt->setChild("expression", decl);
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fn->addChild("body", stmt);
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mod.addChild("functions", fn);
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AnnotationInference inf;
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auto inferred = inf.inferAll(&mod);
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assert(hasInference(inferred, "PolicyAnnotation", "critical"));
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assert(hasInference(inferred, "PolicyAnnotation", "literal"));
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std::cout << "Test 6 PASSED: optimize -> Policy mapping\n";
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passed++;
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}
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// Test 7: CL memory defaults -> GC
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{
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Module mod("m1", "cl", "common-lisp");
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MemoryStrategyInference mem;
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auto suggestions = mem.inferAnnotations(&mod);
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assert(hasMemorySuggestion(suggestions, "ReclaimAnnotation", "Tracing"));
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assert(hasMemorySuggestion(suggestions, "OwnerAnnotation", "Shared_GC"));
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std::cout << "Test 7 PASSED: CL memory defaults (GC)\n";
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passed++;
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}
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// Test 8: confidence values are bounded and include strong signal
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{
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Module mod("m1", "cl", "common-lisp");
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mod.addChild("statements", new MacroDefinition("mac1", "m"));
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mod.addChild("variables", new Variable("v1", "*x*"));
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AnnotationInference inf;
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auto inferred = inf.inferAll(&mod);
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bool strong = false;
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for (const auto& a : inferred) {
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assert(a.confidence >= 0.0 && a.confidence <= 1.0);
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if (a.confidence >= 0.90) strong = true;
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}
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assert(strong);
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std::cout << "Test 8 PASSED: confidence bounds\n";
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passed++;
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}
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// Test 9: CL @Binding(dynamic) -> Python projection preserves annotation
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{
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Module mod("m1", "cl", "common-lisp");
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auto* fn = new Function("f1", "f");
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auto* b = new BindingAnnotation();
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b->id = "a1";
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b->time = "dynamic";
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fn->addChild("annotations", b);
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mod.addChild("functions", fn);
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CrossLanguageProjector projector;
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auto pyMod = projector.project(&mod, "python");
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PythonGenerator gen;
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auto out = gen.generate(pyMod.get());
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assert(projector.annotationsPreserved(&mod, pyMod.get()));
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assert(out.find("def f(") != std::string::npos);
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std::cout << "Test 9 PASSED: binding(dynamic) preserved to Python projection\n";
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passed++;
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}
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// Test 10: CL @Binding(dynamic) -> C++ projection preserves annotation
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{
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Module mod("m1", "cl", "common-lisp");
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auto* fn = new Function("f1", "f");
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auto* b = new BindingAnnotation();
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b->id = "a1";
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b->time = "dynamic";
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fn->addChild("annotations", b);
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mod.addChild("functions", fn);
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CrossLanguageProjector projector;
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auto cppMod = projector.project(&mod, "cpp");
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CppGenerator gen;
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auto out = gen.generate(cppMod.get());
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assert(projector.annotationsPreserved(&mod, cppMod.get()));
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assert(out.find("f(") != std::string::npos);
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std::cout << "Test 10 PASSED: binding(dynamic) preserved to C++ projection\n";
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passed++;
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}
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// Test 11: (declare (type ...)) -> Complexity(declared-type)
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{
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Module mod("m1", "cl", "common-lisp");
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auto* fn = new Function("f1", "typed");
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auto* typeCall = new FunctionCall();
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typeCall->id = "c2";
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typeCall->functionName = "type";
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typeCall->addChild("arguments", new VariableReference("r1", "fixnum"));
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auto* decl = new FunctionCall();
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decl->id = "c1";
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decl->functionName = "declare";
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decl->addChild("arguments", typeCall);
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auto* stmt = new ExpressionStatement();
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stmt->id = "s1";
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stmt->setChild("expression", decl);
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fn->addChild("body", stmt);
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mod.addChild("functions", fn);
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AnnotationInference inf;
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auto inferred = inf.inferAll(&mod);
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assert(hasInference(inferred, "ComplexityAnnotation", "declared-type"));
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std::cout << "Test 11 PASSED: declare(type) -> Complexity mapping\n";
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passed++;
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}
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// Test 12: CLOS method -> synthetic method-combination hint
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{
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Module mod("m1", "cl", "common-lisp");
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mod.addChild("functions", new MethodDeclaration("m1", "area"));
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AnnotationInference inf;
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auto inferred = inf.inferAll(&mod);
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assert(hasInference(inferred, "SyntheticAnnotation", "clos-method"));
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std::cout << "Test 12 PASSED: CLOS method -> synthetic hint\n";
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passed++;
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}
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std::cout << "\nResults: " << passed << "/12\n";
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assert(passed == 12);
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return 0;
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}
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