Adds the three annotation types from SemAnno. Test builds SimpleFunctionExample with @deref(batched), exercises OptimizationLock on Module, LangSpecific on Variable, and DerefStrategy's derefTime child link. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
147 lines
4.9 KiB
C++
147 lines
4.9 KiB
C++
// Step 4: Build SimpleFunctionExample from MPS with @deref(batched) annotation.
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//
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// Module "SimpleFunctionExample" (cpp)
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// └── Function "calculate_sum"
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// ├── annotations: DerefStrategy(strategy: "batched")
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// ├── parameters: Parameter("a", int), Parameter("b", int)
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// ├── returnType: PrimitiveType("int")
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// └── body:
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// ├── Assignment { target: VarRef("result"), value: BinOp("+", VarRef("a"), VarRef("b")) }
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// └── Return { value: VarRef("result") }
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#include "../src/ast/Module.h"
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#include "../src/ast/Function.h"
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#include "../src/ast/Variable.h"
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#include "../src/ast/Parameter.h"
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#include "../src/ast/Statement.h"
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#include "../src/ast/Expression.h"
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#include "../src/ast/Type.h"
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#include "../src/ast/Annotation.h"
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#include <cassert>
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#include <iostream>
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int main() {
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// --- Build the SimpleFunctionExample tree ---
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Module mod("SFE_M001", "SimpleFunctionExample", "cpp");
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Function calcSum("SFE_F001", "calculate_sum");
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// Annotation: @deref(batched)
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DerefStrategy deref("SFE_DR001", "batched");
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calcSum.addChild("annotations", &deref);
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// Parameters
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Parameter pa("SFE_P001", "a");
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PrimitiveType paType("SFE_PT001", "int");
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pa.setChild("type", &paType);
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calcSum.addChild("parameters", &pa);
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Parameter pb("SFE_P002", "b");
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PrimitiveType pbType("SFE_PT002", "int");
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pb.setChild("type", &pbType);
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calcSum.addChild("parameters", &pb);
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// Return type
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PrimitiveType retType("SFE_RT001", "int");
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calcSum.setChild("returnType", &retType);
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// Body: Assignment(result = a + b)
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Assignment assign;
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assign.id = "SFE_A001";
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VariableReference assignTarget("SFE_VR001", "result");
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assign.setChild("target", &assignTarget);
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BinaryOperation addOp("SFE_BO001", "+");
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VariableReference vrA("SFE_VR_a", "a");
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VariableReference vrB("SFE_VR_b", "b");
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addOp.setChild("left", &vrA);
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addOp.setChild("right", &vrB);
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assign.setChild("value", &addOp);
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calcSum.addChild("body", &assign);
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// Body: Return(result)
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Return ret;
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ret.id = "SFE_R001";
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VariableReference vrRet("SFE_VR_ret", "result");
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ret.setChild("value", &vrRet);
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calcSum.addChild("body", &ret);
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mod.addChild("functions", &calcSum);
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// --- Verify annotations ---
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auto* fn = static_cast<Function*>(mod.getChildren("functions")[0]);
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assert(fn->name == "calculate_sum");
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const auto& annots = fn->getChildren("annotations");
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assert(annots.size() == 1);
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assert(annots[0]->conceptType == "DerefStrategy");
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auto* ds = static_cast<DerefStrategy*>(annots[0]);
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assert(ds->strategy == "batched");
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assert(ds->parent == fn);
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assert(ds->id == "SFE_DR001");
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// Verify annotation sits alongside other children
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assert(fn->getChildren("parameters").size() == 2);
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assert(fn->getChildren("body").size() == 2);
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assert(fn->getChild("returnType") != nullptr);
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// Test OptimizationLock on Module
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OptimizationLock lock;
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lock.id = "OL001";
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lock.lockedBy = "human";
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lock.lockReason = "performance-critical path";
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lock.lockLevel = "full";
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lock.affectedStrategies = "batched,lazy";
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lock.timestamp = "2026-02-06T12:00:00Z";
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mod.addChild("annotations", &lock);
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const auto& modAnnots = mod.getChildren("annotations");
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assert(modAnnots.size() == 1);
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auto* ol = static_cast<OptimizationLock*>(modAnnots[0]);
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assert(ol->lockedBy == "human");
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assert(ol->lockReason == "performance-critical path");
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assert(ol->lockLevel == "full");
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assert(ol->parent == &mod);
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// Test LangSpecific on Variable
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Variable v("V001", "counter");
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mod.addChild("variables", &v);
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LangSpecific langSpec;
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langSpec.id = "LS001";
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langSpec.language = "cpp";
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langSpec.idiomType = "constexpr";
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langSpec.rawSyntax = "constexpr int counter = 0;";
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langSpec.semanticHint = "compile_time";
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langSpec.position = "before";
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v.addChild("annotations", &langSpec);
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const auto& varAnnots = v.getChildren("annotations");
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assert(varAnnots.size() == 1);
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auto* ls = static_cast<LangSpecific*>(varAnnots[0]);
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assert(ls->language == "cpp");
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assert(ls->idiomType == "constexpr");
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assert(ls->rawSyntax == "constexpr int counter = 0;");
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assert(ls->semanticHint == "compile_time");
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assert(ls->parent == &v);
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// DerefStrategy with derefTime child
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DerefStrategy timedDeref("DS002", "lazy");
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timedDeref.derefLocation = "call_site";
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timedDeref.owner = "runtime";
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IntegerLiteral derefTime("DT001", 500);
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timedDeref.setChild("derefTime", &derefTime);
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assert(timedDeref.getChild("derefTime") != nullptr);
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auto* dt = static_cast<IntegerLiteral*>(timedDeref.getChild("derefTime"));
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assert(dt->value == 500);
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assert(dt->parent == &timedDeref);
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std::cout << "Step 4: PASS — Annotations (DerefStrategy, OptimizationLock, LangSpecific)" << std::endl;
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return 0;
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}
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