clang 20.0.0 (based on r547379) from build 12806354. Bug: http://b/379133546 Test: N/A Change-Id: I2eb8938af55d809de674be63cb30cf27e801862b Upstream-Commit: ad834e67b1105d15ef907f6255d4c96e8e733f57
299 lines
11 KiB
C++
299 lines
11 KiB
C++
//ProgramStateTrait.h - Partial implementations of ProgramStateTrait -*- C++ -*-
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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//
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// This file defines partial implementations of template specializations of
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// the class ProgramStateTrait<>. ProgramStateTrait<> is used by ProgramState
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// to implement set/get methods for manipulating a ProgramState's
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// generic data map.
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_CLANG_STATICANALYZER_CORE_PATHSENSITIVE_PROGRAMSTATETRAIT_H
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#define LLVM_CLANG_STATICANALYZER_CORE_PATHSENSITIVE_PROGRAMSTATETRAIT_H
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#include "llvm/ADT/ImmutableList.h"
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#include "llvm/ADT/ImmutableMap.h"
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#include "llvm/ADT/ImmutableSet.h"
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#include "llvm/Support/Allocator.h"
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#include <cstdint>
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#include <type_traits>
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namespace clang {
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namespace ento {
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template <typename T, typename Enable = void> struct ProgramStatePartialTrait;
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/// Declares a program state trait for type \p Type called \p Name, and
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/// introduce a type named \c NameTy.
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/// The macro should not be used inside namespaces.
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#define REGISTER_TRAIT_WITH_PROGRAMSTATE(Name, Type) \
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namespace { \
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class Name {}; \
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using Name##Ty = Type; \
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} \
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namespace clang { \
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namespace ento { \
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template <> \
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struct ProgramStateTrait<Name> : public ProgramStatePartialTrait<Name##Ty> { \
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static void *GDMIndex() { \
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static int Index; \
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return &Index; \
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} \
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}; \
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} \
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}
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/// Declares a factory for objects of type \p Type in the program state
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/// manager. The type must provide a ::Factory sub-class. Commonly used for
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/// ImmutableMap, ImmutableSet, ImmutableList. The macro should not be used
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/// inside namespaces.
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#define REGISTER_FACTORY_WITH_PROGRAMSTATE(Type) \
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namespace clang { \
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namespace ento { \
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template <> \
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struct ProgramStateTrait<Type> \
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: public ProgramStatePartialTrait<Type> { \
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static void *GDMIndex() { static int Index; return &Index; } \
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}; \
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} \
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}
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/// Helper for registering a map trait.
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///
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/// If the map type were written directly in the invocation of
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/// REGISTER_TRAIT_WITH_PROGRAMSTATE, the comma in the template arguments
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/// would be treated as a macro argument separator, which is wrong.
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/// This allows the user to specify a map type in a way that the preprocessor
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/// can deal with.
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#define CLANG_ENTO_PROGRAMSTATE_MAP(Key, Value) llvm::ImmutableMap<Key, Value>
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/// Declares an immutable map of type \p NameTy, suitable for placement into
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/// the ProgramState. This is implementing using llvm::ImmutableMap.
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///
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/// \code
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/// State = State->set<Name>(K, V);
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/// const Value *V = State->get<Name>(K); // Returns NULL if not in the map.
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/// State = State->remove<Name>(K);
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/// NameTy Map = State->get<Name>();
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/// \endcode
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///
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/// The macro should not be used inside namespaces, or for traits that must
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/// be accessible from more than one translation unit.
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#define REGISTER_MAP_WITH_PROGRAMSTATE(Name, Key, Value) \
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REGISTER_TRAIT_WITH_PROGRAMSTATE(Name, \
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CLANG_ENTO_PROGRAMSTATE_MAP(Key, Value))
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/// Declares an immutable map type \p Name and registers the factory
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/// for such maps in the program state, but does not add the map itself
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/// to the program state. Useful for managing lifetime of maps that are used
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/// as elements of other program state data structures.
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#define REGISTER_MAP_FACTORY_WITH_PROGRAMSTATE(Name, Key, Value) \
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using Name = llvm::ImmutableMap<Key, Value>; \
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REGISTER_FACTORY_WITH_PROGRAMSTATE(Name)
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/// Declares an immutable set of type \p NameTy, suitable for placement into
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/// the ProgramState. This is implementing using llvm::ImmutableSet.
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///
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/// \code
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/// State = State->add<Name>(E);
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/// State = State->remove<Name>(E);
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/// bool Present = State->contains<Name>(E);
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/// NameTy Set = State->get<Name>();
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/// \endcode
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///
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/// The macro should not be used inside namespaces, or for traits that must
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/// be accessible from more than one translation unit.
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#define REGISTER_SET_WITH_PROGRAMSTATE(Name, Elem) \
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REGISTER_TRAIT_WITH_PROGRAMSTATE(Name, llvm::ImmutableSet<Elem>)
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/// Declares an immutable set type \p Name and registers the factory
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/// for such sets in the program state, but does not add the set itself
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/// to the program state. Useful for managing lifetime of sets that are used
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/// as elements of other program state data structures.
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#define REGISTER_SET_FACTORY_WITH_PROGRAMSTATE(Name, Elem) \
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using Name = llvm::ImmutableSet<Elem>; \
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REGISTER_FACTORY_WITH_PROGRAMSTATE(Name)
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/// Declares an immutable list type \p NameTy, suitable for placement into
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/// the ProgramState. This is implementing using llvm::ImmutableList.
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///
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/// \code
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/// State = State->add<Name>(E); // Adds to the /end/ of the list.
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/// bool Present = State->contains<Name>(E);
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/// NameTy List = State->get<Name>();
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/// \endcode
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///
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/// The macro should not be used inside namespaces, or for traits that must
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/// be accessible from more than one translation unit.
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#define REGISTER_LIST_WITH_PROGRAMSTATE(Name, Elem) \
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REGISTER_TRAIT_WITH_PROGRAMSTATE(Name, llvm::ImmutableList<Elem>)
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/// Declares an immutable list of type \p Name and registers the factory
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/// for such lists in the program state, but does not add the list itself
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/// to the program state. Useful for managing lifetime of lists that are used
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/// as elements of other program state data structures.
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#define REGISTER_LIST_FACTORY_WITH_PROGRAMSTATE(Name, Elem) \
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using Name = llvm::ImmutableList<Elem>; \
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REGISTER_FACTORY_WITH_PROGRAMSTATE(Name)
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// Partial-specialization for ImmutableMap.
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template <typename Key, typename Data, typename Info>
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struct ProgramStatePartialTrait<llvm::ImmutableMap<Key, Data, Info>> {
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using data_type = llvm::ImmutableMap<Key, Data, Info>;
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using context_type = typename data_type::Factory &;
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using key_type = Key;
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using value_type = Data;
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using lookup_type = const value_type *;
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static data_type MakeData(void *const *p) {
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return p ? data_type((typename data_type::TreeTy *) *p)
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: data_type(nullptr);
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}
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static void *MakeVoidPtr(data_type B) {
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return B.getRoot();
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}
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static lookup_type Lookup(data_type B, key_type K) {
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return B.lookup(K);
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}
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static data_type Set(data_type B, key_type K, value_type E,
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context_type F) {
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return F.add(B, K, E);
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}
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static data_type Remove(data_type B, key_type K, context_type F) {
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return F.remove(B, K);
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}
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static bool Contains(data_type B, key_type K) {
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return B.contains(K);
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}
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static context_type MakeContext(void *p) {
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return *((typename data_type::Factory *) p);
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}
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static void *CreateContext(llvm::BumpPtrAllocator& Alloc) {
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return new typename data_type::Factory(Alloc);
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}
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static void DeleteContext(void *Ctx) {
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delete (typename data_type::Factory *) Ctx;
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}
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};
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// Partial-specialization for ImmutableSet.
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template <typename Key, typename Info>
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struct ProgramStatePartialTrait<llvm::ImmutableSet<Key, Info>> {
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using data_type = llvm::ImmutableSet<Key, Info>;
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using context_type = typename data_type::Factory &;
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using key_type = Key;
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static data_type MakeData(void *const *p) {
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return p ? data_type((typename data_type::TreeTy *) *p)
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: data_type(nullptr);
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}
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static void *MakeVoidPtr(data_type B) {
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return B.getRoot();
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}
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static data_type Add(data_type B, key_type K, context_type F) {
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return F.add(B, K);
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}
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static data_type Remove(data_type B, key_type K, context_type F) {
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return F.remove(B, K);
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}
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static bool Contains(data_type B, key_type K) {
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return B.contains(K);
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}
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static context_type MakeContext(void *p) {
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return *((typename data_type::Factory *) p);
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}
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static void *CreateContext(llvm::BumpPtrAllocator &Alloc) {
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return new typename data_type::Factory(Alloc);
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}
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static void DeleteContext(void *Ctx) {
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delete (typename data_type::Factory *) Ctx;
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}
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};
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// Partial-specialization for ImmutableList.
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template <typename T>
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struct ProgramStatePartialTrait<llvm::ImmutableList<T>> {
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using data_type = llvm::ImmutableList<T>;
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using key_type = T;
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using context_type = typename data_type::Factory &;
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static data_type Add(data_type L, key_type K, context_type F) {
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return F.add(K, L);
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}
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static bool Contains(data_type L, key_type K) {
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return L.contains(K);
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}
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static data_type MakeData(void *const *p) {
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return p ? data_type((const llvm::ImmutableListImpl<T> *) *p)
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: data_type(nullptr);
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}
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static void *MakeVoidPtr(data_type D) {
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return const_cast<llvm::ImmutableListImpl<T> *>(D.getInternalPointer());
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}
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static context_type MakeContext(void *p) {
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return *((typename data_type::Factory *) p);
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}
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static void *CreateContext(llvm::BumpPtrAllocator &Alloc) {
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return new typename data_type::Factory(Alloc);
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}
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static void DeleteContext(void *Ctx) {
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delete (typename data_type::Factory *) Ctx;
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}
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};
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template <typename T> struct DefaultProgramStatePartialTraitImpl {
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using data_type = T;
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static T MakeData(void *const *P) { return P ? (T)(uintptr_t)*P : T{}; }
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static void *MakeVoidPtr(T D) { return (void *)(uintptr_t)D; }
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};
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// Partial specialization for integral types.
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template <typename T>
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struct ProgramStatePartialTrait<T,
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std::enable_if_t<std::is_integral<T>::value>>
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: DefaultProgramStatePartialTraitImpl<T> {};
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// Partial specialization for enums.
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template <typename T>
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struct ProgramStatePartialTrait<T, std::enable_if_t<std::is_enum<T>::value>>
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: DefaultProgramStatePartialTraitImpl<T> {};
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// Partial specialization for pointers.
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template <typename T>
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struct ProgramStatePartialTrait<T *, void>
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: DefaultProgramStatePartialTraitImpl<T *> {};
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} // namespace ento
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} // namespace clang
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#endif // LLVM_CLANG_STATICANALYZER_CORE_PATHSENSITIVE_PROGRAMSTATETRAIT_H
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