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refinements to LambdaExpr's to provide flexibility, support for ZVal captures
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parent
06522c0264
commit
46983cfb2f
7 changed files with 194 additions and 58 deletions
142
src/Expr.cc
142
src/Expr.cc
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@ -4644,14 +4644,15 @@ void CallExpr::ExprDescribe(ODesc* d) const
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args->Describe(d);
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}
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LambdaExpr::LambdaExpr(std::unique_ptr<FunctionIngredients> arg_ing, IDPList arg_outer_ids,
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StmtPtr when_parent)
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LambdaExpr::LambdaExpr(std::shared_ptr<FunctionIngredients> arg_ing, IDPList arg_outer_ids,
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std::string name, StmtPtr when_parent)
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: Expr(EXPR_LAMBDA)
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{
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ingredients = std::move(arg_ing);
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outer_ids = std::move(arg_outer_ids);
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SetType(ingredients->GetID()->GetType());
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auto ingr_t = ingredients->GetID()->GetType<FuncType>();
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SetType(ingr_t);
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if ( ! CheckCaptures(when_parent) )
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{
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@ -4659,47 +4660,61 @@ LambdaExpr::LambdaExpr(std::unique_ptr<FunctionIngredients> arg_ing, IDPList arg
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return;
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}
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// Install a dummy version of the function globally for use only
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// when broker provides a closure.
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auto dummy_func = make_intrusive<ScriptFunc>(ingredients->GetID());
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dummy_func->AddBody(ingredients->Body(), ingredients->Inits(), ingredients->FrameSize(),
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ingredients->Priority());
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// Install a master version of the function globally. This is used
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// by both broker (for transmitting closures) and script optimization
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// (replacing its AST body with a compiled one).
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master_func = make_intrusive<ScriptFunc>(ingredients->GetID());
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master_func->SetOuterIDs(outer_ids);
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dummy_func->SetOuterIDs(outer_ids);
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// When we build the body, it will get updated with initialization
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// statements. Update the ingredients to reflect the new body,
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// and no more need for initializers.
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master_func->AddBody(*ingredients);
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master_func->SetScope(ingredients->Scope());
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ingredients->ClearInits();
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// Get the body's "string" representation.
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ODesc d;
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dummy_func->Describe(&d);
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for ( ;; )
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{
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hash128_t h;
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KeyedHash::Hash128(d.Bytes(), d.Len(), &h);
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my_name = "lambda_<" + std::to_string(h[0]) + ">";
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auto fullname = make_full_var_name(current_module.data(), my_name.data());
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const auto& id = global_scope()->Find(fullname);
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if ( id )
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// Just try again to make a unique lambda name.
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// If two peer processes need to agree on the same
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// lambda name, this assumes they're loading the same
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// scripts and thus have the same hash collisions.
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d.Add(" ");
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else
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break;
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}
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if ( name.empty() )
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BuildName();
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else
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my_name = name;
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// Install that in the global_scope
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lambda_id = install_ID(my_name.c_str(), current_module.c_str(), true, false);
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// Update lamb's name
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dummy_func->SetName(my_name.c_str());
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master_func->SetName(my_name.c_str());
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auto v = make_intrusive<FuncVal>(std::move(dummy_func));
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auto v = make_intrusive<FuncVal>(master_func);
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lambda_id->SetVal(std::move(v));
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lambda_id->SetType(ingredients->GetID()->GetType());
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lambda_id->SetType(ingr_t);
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lambda_id->SetConst();
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captures = ingr_t->GetCaptures();
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analyze_lambda(this);
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}
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LambdaExpr::LambdaExpr(LambdaExpr* orig) : Expr(EXPR_LAMBDA)
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{
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master_func = orig->master_func;
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ingredients = orig->ingredients;
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lambda_id = orig->lambda_id;
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my_name = orig->my_name;
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private_captures = orig->private_captures;
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// We need to have our own copies of the outer IDs and captures so
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// we can rename them when inlined.
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for ( auto i : orig->outer_ids )
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outer_ids.append(i);
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if ( orig->captures )
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{
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captures = std::vector<FuncType::Capture>{};
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for ( auto& c : *orig->captures )
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captures->push_back(c);
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}
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SetType(orig->GetType());
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}
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bool LambdaExpr::CheckCaptures(StmtPtr when_parent)
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@ -4784,6 +4799,32 @@ bool LambdaExpr::CheckCaptures(StmtPtr when_parent)
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return true;
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}
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void LambdaExpr::BuildName()
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{
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// Get the body's "string" representation.
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ODesc d;
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master_func->Describe(&d);
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for ( ;; )
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{
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hash128_t h;
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KeyedHash::Hash128(d.Bytes(), d.Len(), &h);
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my_name = "lambda_<" + std::to_string(h[0]) + ">";
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auto fullname = make_full_var_name(current_module.data(), my_name.data());
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const auto& id = global_scope()->Find(fullname);
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if ( id )
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// Just try again to make a unique lambda name.
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// If two peer processes need to agree on the same
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// lambda name, this assumes they're loading the same
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// scripts and thus have the same hash collisions.
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d.Add(" ");
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else
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break;
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}
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}
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ScopePtr LambdaExpr::GetScope() const
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{
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return ingredients->Scope();
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@ -4792,12 +4833,23 @@ ScopePtr LambdaExpr::GetScope() const
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ValPtr LambdaExpr::Eval(Frame* f) const
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{
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auto lamb = make_intrusive<ScriptFunc>(ingredients->GetID());
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lamb->AddBody(ingredients->Body(), ingredients->Inits(), ingredients->FrameSize(),
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ingredients->Priority());
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StmtPtr body = master_func->GetBodies()[0].stmts;
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if ( run_state::is_parsing )
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// We're evaluating this lambda at parse time, which happens
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// for initializations. If we're doing script optimization
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// then the current version of the body might be left in an
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// inconsistent state (e.g., if it's replaced with ZAM code)
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// causing problems if we execute this lambda subsequently.
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// To avoid that problem, we duplicate the AST so it's
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// distinct.
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body = body->Duplicate();
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lamb->AddBody(*ingredients, body);
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lamb->CreateCaptures(f);
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// Set name to corresponding dummy func.
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// Set name to corresponding master func.
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// Allows for lookups by the receiver.
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lamb->SetName(my_name.c_str());
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@ -4807,6 +4859,22 @@ ValPtr LambdaExpr::Eval(Frame* f) const
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void LambdaExpr::ExprDescribe(ODesc* d) const
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{
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d->Add(expr_name(Tag()));
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if ( captures && d->IsReadable() )
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{
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d->Add("[");
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for ( auto& c : *captures )
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{
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if ( &c != &(*captures)[0] )
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d->AddSP(", ");
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d->Add(c.Id()->Name());
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}
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d->Add("]");
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}
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ingredients->Body()->Describe(d);
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}
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43
src/Expr.h
43
src/Expr.h
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@ -28,8 +28,10 @@ namespace detail
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class Frame;
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class Scope;
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class FunctionIngredients;
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class WhenInfo;
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using IDPtr = IntrusivePtr<ID>;
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using ScopePtr = IntrusivePtr<Scope>;
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using ScriptFuncPtr = IntrusivePtr<ScriptFunc>;
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enum ExprTag : int
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{
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@ -1452,12 +1454,17 @@ protected:
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class LambdaExpr final : public Expr
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{
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public:
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LambdaExpr(std::unique_ptr<FunctionIngredients> ingredients, IDPList outer_ids,
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StmtPtr when_parent = nullptr);
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LambdaExpr(std::shared_ptr<FunctionIngredients> ingredients, IDPList outer_ids,
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std::string name = "", StmtPtr when_parent = nullptr);
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const std::string& Name() const { return my_name; }
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const IDPList& OuterIDs() const { return outer_ids; }
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const FunctionIngredients& Ingredients() const { return *ingredients; }
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// Lambda's potentially have their own private copy of captures,
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// to enable updates to the set during script optimization.
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using CaptureList = std::vector<FuncType::Capture>;
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const std::optional<CaptureList>& GetCaptures() const { return captures; }
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ValPtr Eval(Frame* f) const override;
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TraversalCode Traverse(TraversalCallback* cb) const override;
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@ -1466,19 +1473,43 @@ public:
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// Optimization-related:
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ExprPtr Duplicate() override;
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ExprPtr Inline(Inliner* inl) override;
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const ScriptFuncPtr& MasterFunc() const { return master_func; }
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const std::shared_ptr<FunctionIngredients>& Ingredients() const { return ingredients; }
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bool IsReduced(Reducer* c) const override;
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bool HasReducedOps(Reducer* c) const override;
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ExprPtr Reduce(Reducer* c, StmtPtr& red_stmt) override;
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StmtPtr ReduceToSingletons(Reducer* c) override;
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protected:
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// Constructor used for script optimization.
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LambdaExpr(LambdaExpr* orig);
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void ExprDescribe(ODesc* d) const override;
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private:
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bool CheckCaptures(StmtPtr when_parent);
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friend class WhenInfo;
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std::unique_ptr<FunctionIngredients> ingredients;
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// "Private" captures are captures that correspond to "when"
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// condition locals. These aren't true captures in that they
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// don't come from the outer frame when the lambda is constructed,
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// but they otherwise behave like captures in that they persist
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// across function invocations.
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void SetPrivateCaptures(const IDSet& pcaps) { private_captures = pcaps; }
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bool CheckCaptures(StmtPtr when_parent);
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void BuildName();
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void UpdateCaptures(Reducer* c);
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std::shared_ptr<FunctionIngredients> ingredients;
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ScriptFuncPtr master_func;
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IDPtr lambda_id;
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IDPList outer_ids;
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std::optional<CaptureList> captures;
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IDSet private_captures;
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std::string my_name;
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};
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@ -1566,7 +1566,7 @@ lambda_body:
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// Gather the ingredients for a Func from the
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// current scope.
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auto ingredients = std::make_unique<FunctionIngredients>(
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auto ingredients = std::make_shared<FunctionIngredients>(
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current_scope(), IntrusivePtr{AdoptRef{}, $3}, current_module.c_str());
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auto outer_ids = gather_outer_ids(pop_scope(), ingredients->Body());
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@ -29,8 +29,8 @@ void CPPCompile::DeclareLambda(const LambdaExpr* l, const ProfileFunc* pf)
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ASSERT(is_CPP_compilable(pf));
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auto lname = Canonicalize(l->Name().c_str()) + "_lb";
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auto body = l->Ingredients().Body();
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auto l_id = l->Ingredients().GetID();
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auto body = l->Ingredients()->Body();
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auto l_id = l->Ingredients()->GetID();
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auto& ids = l->OuterIDs();
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for ( auto id : ids )
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@ -150,7 +150,7 @@ void CPPCompile::Compile(bool report_uncompilable)
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for ( const auto& l : pfs.Lambdas() )
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{
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const auto& n = l->Name();
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const auto body = l->Ingredients().Body().get();
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const auto body = l->Ingredients()->Body().get();
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if ( lambda_ASTs.count(n) > 0 )
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// Reuse previous body.
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body_names[body] = body_names[lambda_ASTs[n]];
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@ -176,7 +176,7 @@ void CPPCompile::Compile(bool report_uncompilable)
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continue;
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CompileLambda(l, pfs.ExprProf(l).get());
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lambda_ASTs[n] = l->Ingredients().Body().get();
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lambda_ASTs[n] = l->Ingredients()->Body().get();
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}
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NL();
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@ -23,8 +23,8 @@ void CPPCompile::CompileFunc(const FuncInfo& func)
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void CPPCompile::CompileLambda(const LambdaExpr* l, const ProfileFunc* pf)
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{
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auto lname = Canonicalize(l->Name().c_str()) + "_lb";
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auto body = l->Ingredients().Body();
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auto l_id = l->Ingredients().GetID();
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auto body = l->Ingredients()->Body();
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auto l_id = l->Ingredients()->GetID();
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auto& ids = l->OuterIDs();
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DefineBody(l_id->GetType<FuncType>(), pf, lname, body, &ids, FUNC_FLAVOR_FUNCTION);
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@ -2425,23 +2425,60 @@ StmtPtr CallExpr::ReduceToSingletons(Reducer* c)
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ExprPtr LambdaExpr::Duplicate()
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{
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auto ingr = std::make_unique<FunctionIngredients>(*ingredients);
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ingr->SetBody(ingr->Body()->Duplicate());
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return SetSucc(new LambdaExpr(std::move(ingr), outer_ids));
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return SetSucc(new LambdaExpr(this));
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}
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ExprPtr LambdaExpr::Inline(Inliner* inl)
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bool LambdaExpr::IsReduced(Reducer* c) const
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{
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// Don't inline these, we currently don't get the closure right.
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return ThisPtr();
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if ( ! captures )
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return true;
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for ( auto& cp : *captures )
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{
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auto& cid = cp.Id();
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if ( private_captures.count(cid.get()) == 0 && ! c->ID_IsReduced(cid) )
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return NonReduced(this);
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}
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return true;
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}
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bool LambdaExpr::HasReducedOps(Reducer* c) const
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{
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return IsReduced(c);
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}
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ExprPtr LambdaExpr::Reduce(Reducer* c, StmtPtr& red_stmt)
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{
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if ( c->Optimizing() )
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return ThisPtr();
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else
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return AssignToTemporary(c, red_stmt);
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UpdateCaptures(c);
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return AssignToTemporary(c, red_stmt);
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}
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StmtPtr LambdaExpr::ReduceToSingletons(Reducer* c)
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{
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UpdateCaptures(c);
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return nullptr;
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}
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void LambdaExpr::UpdateCaptures(Reducer* c)
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{
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if ( captures )
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{
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for ( auto& cp : *captures )
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{
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auto& cid = cp.Id();
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if ( private_captures.count(cid.get()) == 0 )
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cp.SetID(c->UpdateID(cid));
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}
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c->UpdateIDs(&outer_ids);
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}
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}
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ExprPtr EventExpr::Duplicate()
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