1054 lines
36 KiB
C++
1054 lines
36 KiB
C++
//------------------------------------------------------------------------------
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// CLING - the C++ LLVM-based InterpreterG :)
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// version: $Id$
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// author: Lukasz Janyst <ljanyst@cern.ch>
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//------------------------------------------------------------------------------
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#include "cling/Interpreter/Interpreter.h"
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#include "DynamicLookup.h"
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#include "ExecutionContext.h"
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#include "IncrementalParser.h"
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#include "cling/Interpreter/CIFactory.h"
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#include "cling/Interpreter/CompilationOptions.h"
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#include "cling/Interpreter/InterpreterCallbacks.h"
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#include "cling/Interpreter/LookupHelper.h"
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#include "cling/Interpreter/StoredValueRef.h"
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#include "cling/Interpreter/Transaction.h"
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#include "cling/Utils/AST.h"
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#include "clang/AST/ASTContext.h"
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#include "clang/AST/Mangle.h"
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#include "clang/Basic/TargetInfo.h"
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#include "clang/CodeGen/ModuleBuilder.h"
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#include "clang/Frontend/CompilerInstance.h"
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#include "clang/Frontend/Utils.h"
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#include "clang/Lex/Preprocessor.h"
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#include "clang/Parse/ParseDiagnostic.h" // FIXME: remove this back-dependency!
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// when clang is ready.
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#include "clang/Parse/Parser.h"
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#include "clang/Sema/Sema.h"
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#include "clang/Sema/SemaInternal.h"
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#include "clang/Serialization/ASTReader.h"
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#include "clang/Serialization/ASTDeserializationListener.h"
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#include "llvm/Linker.h"
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#include "llvm/IR/LLVMContext.h"
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#include "llvm/Support/DynamicLibrary.h"
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#include "llvm/Support/Path.h"
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#include "llvm/Support/FileSystem.h"
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#include <set>
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#include <sstream>
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#include <vector>
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using namespace clang;
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namespace std {
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template<>
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struct less<llvm::sys::DynamicLibrary> {
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bool operator()(const llvm::sys::DynamicLibrary& lhs,
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const llvm::sys::DynamicLibrary& rhs ) const {
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return *reinterpret_cast<void* const*>(&lhs)
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< *reinterpret_cast<void* const*>(&rhs);
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}
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};
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}
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namespace {
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static cling::Interpreter::ExecutionResult
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ConvertExecutionResult(cling::ExecutionContext::ExecutionResult ExeRes) {
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switch (ExeRes) {
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case cling::ExecutionContext::kExeSuccess:
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return cling::Interpreter::kExeSuccess;
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case cling::ExecutionContext::kExeFunctionNotCompiled:
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return cling::Interpreter::kExeFunctionNotCompiled;
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case cling::ExecutionContext::kExeUnresolvedSymbols:
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return cling::Interpreter::kExeUnresolvedSymbols;
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default: break;
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}
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return cling::Interpreter::kExeSuccess;
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}
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class DynLibSetImpl: public std::set<llvm::sys::DynamicLibrary>,
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public cling::Interpreter::DynLibSetBase {
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};
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} // unnamed namespace
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// "Declared" to the JIT in RuntimeUniverse.h
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extern "C"
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int cling__runtime__internal__local_cxa_atexit(void (*func) (void*), void* arg,
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void* dso,
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void* interp) {
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return ((cling::Interpreter*)interp)->CXAAtExit(func, arg, dso);
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}
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namespace cling {
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#if (!_WIN32)
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// "Declared" to the JIT in RuntimeUniverse.h
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namespace runtime {
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namespace internal {
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struct __trigger__cxa_atexit {
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~__trigger__cxa_atexit();
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} /*S*/;
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__trigger__cxa_atexit::~__trigger__cxa_atexit() {
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if (std::getenv("bar") == (char*)-1) {
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llvm::errs() <<
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"UNEXPECTED cling::runtime::internal::__trigger__cxa_atexit\n";
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}
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}
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}
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}
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#endif
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class ClingCallbackAdaptor: public ASTDeserializationListener {
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public:
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ClingCallbackAdaptor(cling::InterpreterCallbacks* CB): m_CB(CB) {}
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virtual void DeclRead(serialization::DeclID, const Decl *D) {
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m_CB->DeclDeserialized(D);
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}
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virtual void TypeRead(serialization::TypeIdx, QualType T) {
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m_CB->TypeDeserialized(T.getTypePtr());
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}
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private:
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cling::InterpreterCallbacks* m_CB;
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};
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Interpreter::PushTransactionRAII::PushTransactionRAII(Interpreter* i)
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: m_Interpreter(i) {
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CompilationOptions CO;
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CO.DeclarationExtraction = 0;
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CO.ValuePrinting = 0;
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CO.ResultEvaluation = 0;
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CO.DynamicScoping = 0;
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CO.Debug = 0;
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CO.CodeGeneration = 1;
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CO.CodeGenerationForModule = 0;
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m_Transaction = m_Interpreter->m_IncrParser->beginTransaction(CO);
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}
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Interpreter::PushTransactionRAII::~PushTransactionRAII() {
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pop();
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}
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void Interpreter::PushTransactionRAII::pop() {
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Transaction* T = m_Interpreter->m_IncrParser->endTransaction(m_Transaction);
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assert(T == m_Transaction && "Ended different transaction?");
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m_Interpreter->m_IncrParser->commitTransaction(T);
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}
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// This function isn't referenced outside its translation unit, but it
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// can't use the "static" keyword because its address is used for
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// GetMainExecutable (since some platforms don't support taking the
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// address of main, and some platforms can't implement GetMainExecutable
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// without being given the address of a function in the main executable).
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llvm::sys::Path GetExecutablePath(const char *Argv0) {
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// This just needs to be some symbol in the binary; C++ doesn't
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// allow taking the address of ::main however.
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void *MainAddr = (void*) (intptr_t) GetExecutablePath;
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return llvm::sys::Path::GetMainExecutable(Argv0, MainAddr);
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}
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const Parser& Interpreter::getParser() const {
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return *m_IncrParser->getParser();
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}
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CodeGenerator* Interpreter::getCodeGenerator() const {
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return m_IncrParser->getCodeGenerator();
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}
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void Interpreter::unload() {
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m_IncrParser->unloadTransaction(0);
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}
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Interpreter::Interpreter(int argc, const char* const *argv,
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const char* llvmdir /*= 0*/) :
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m_UniqueCounter(0), m_PrintAST(false), m_PrintIR(false), m_DynamicLookupEnabled(false),
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m_RawInputEnabled(false), m_CallbackAdaptor(0) {
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m_DyLibs.reset(new DynLibSetImpl());
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m_AtExitFuncs.reserve(200);
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m_LoadedFiles.reserve(20);
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m_LLVMContext.reset(new llvm::LLVMContext);
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std::vector<unsigned> LeftoverArgsIdx;
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m_Opts = InvocationOptions::CreateFromArgs(argc, argv, LeftoverArgsIdx);
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std::vector<const char*> LeftoverArgs;
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for (size_t I = 0, N = LeftoverArgsIdx.size(); I < N; ++I) {
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LeftoverArgs.push_back(argv[LeftoverArgsIdx[I]]);
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}
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m_IncrParser.reset(new IncrementalParser(this, LeftoverArgs.size(),
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&LeftoverArgs[0],
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llvmdir));
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Sema& SemaRef = getSema();
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m_LookupHelper.reset(new LookupHelper(new Parser(SemaRef.getPreprocessor(),
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SemaRef,
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/*SkipFunctionBodies*/false,
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/*isTemp*/true), this));
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if (m_IncrParser->hasCodeGenerator()) {
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llvm::Module* theModule = m_IncrParser->getCodeGenerator()->GetModule();
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m_ExecutionContext.reset(new ExecutionContext(theModule));
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}
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m_IncrParser->Initialize();
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// Add path to interpreter's include files
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// Try to find the headers in the src folder first
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#ifdef CLING_SRCDIR_INCL
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llvm::sys::Path SrcP(CLING_SRCDIR_INCL);
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if (SrcP.canRead())
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AddIncludePath(SrcP.str());
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#endif
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llvm::sys::Path P = GetExecutablePath(argv[0]);
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if (!P.isEmpty()) {
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P.eraseComponent(); // Remove /cling from foo/bin/clang
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P.eraseComponent(); // Remove /bin from foo/bin
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// Get foo/include
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P.appendComponent("include");
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if (P.canRead())
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AddIncludePath(P.str());
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else {
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#ifdef CLING_INSTDIR_INCL
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llvm::sys::Path InstP(CLING_INSTDIR_INCL);
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if (InstP.canRead())
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AddIncludePath(InstP.str());
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#endif
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}
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}
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m_ExecutionContext->addSymbol("cling__runtime__internal__local_cxa_atexit",
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(void*)(intptr_t)&cling__runtime__internal__local_cxa_atexit);
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// Enable incremental processing, which prevents the preprocessor destroying
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// the lexer on EOF token.
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getSema().getPreprocessor().enableIncrementalProcessing();
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handleFrontendOptions();
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// Tell the diagnostic client that we are entering file parsing mode.
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DiagnosticConsumer& DClient = getCI()->getDiagnosticClient();
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DClient.BeginSourceFile(getCI()->getLangOpts(),
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&getCI()->getPreprocessor());
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if (getCI()->getLangOpts().CPlusPlus) {
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// Set up common declarations which are going to be available
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// only at runtime
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// Make sure that the universe won't be included to compile time by using
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// -D __CLING__ as CompilerInstance's arguments
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#ifdef _WIN32
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// We have to use the #defined __CLING__ on windows first.
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//FIXME: Find proper fix.
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declare("#ifdef __CLING__ \n#endif");
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#endif
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declare("#include \"cling/Interpreter/RuntimeUniverse.h\"");
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declare("#include \"cling/Interpreter/ValuePrinter.h\"");
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if (getCodeGenerator()) {
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// Set up the gCling variable if it can be used
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std::stringstream initializer;
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initializer << "namespace cling {namespace runtime { "
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"cling::Interpreter *gCling=(cling::Interpreter*)"
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<< (uintptr_t)this << ";} }";
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declare(initializer.str());
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}
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}
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else {
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declare("#include \"cling/Interpreter/CValuePrinter.h\"");
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}
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}
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Interpreter::~Interpreter() {
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DiagnosticConsumer& DClient = getCI()->getDiagnosticClient();
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DClient.EndSourceFile();
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for (size_t I = 0, N = m_AtExitFuncs.size(); I < N; ++I) {
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const CXAAtExitElement& AEE = m_AtExitFuncs[N - I - 1];
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(*AEE.m_Func)(AEE.m_Arg);
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}
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delete m_CallbackAdaptor;
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}
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const char* Interpreter::getVersion() const {
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return "$Id$";
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}
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void Interpreter::handleFrontendOptions() {
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if (m_Opts.ShowVersion) {
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llvm::errs() << getVersion() << '\n';
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}
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if (m_Opts.Help) {
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m_Opts.PrintHelp();
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}
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}
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void Interpreter::AddIncludePath(llvm::StringRef incpath)
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{
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// Add the given path to the list of directories in which the interpreter
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// looks for include files. Only one path item can be specified at a
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// time, i.e. "path1:path2" is not supported.
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CompilerInstance* CI = getCI();
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HeaderSearchOptions& headerOpts = CI->getHeaderSearchOpts();
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const bool IsFramework = false;
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const bool IsSysRootRelative = true;
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headerOpts.AddPath(incpath, frontend::Angled, IsFramework,
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IsSysRootRelative);
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Preprocessor& PP = CI->getPreprocessor();
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ApplyHeaderSearchOptions(PP.getHeaderSearchInfo(), headerOpts,
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PP.getLangOpts(),
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PP.getTargetInfo().getTriple());
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}
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void Interpreter::DumpIncludePath() {
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llvm::SmallVector<std::string, 100> IncPaths;
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GetIncludePaths(IncPaths, true /*withSystem*/, true /*withFlags*/);
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// print'em all
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for (unsigned i = 0; i < IncPaths.size(); ++i) {
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llvm::errs() << IncPaths[i] <<"\n";
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}
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}
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// Adapted from clang/lib/Frontend/CompilerInvocation.cpp
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void Interpreter::GetIncludePaths(llvm::SmallVectorImpl<std::string>& incpaths,
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bool withSystem, bool withFlags) {
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const HeaderSearchOptions Opts(getCI()->getHeaderSearchOpts());
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if (withFlags && Opts.Sysroot != "/") {
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incpaths.push_back("-isysroot");
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incpaths.push_back(Opts.Sysroot);
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}
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/// User specified include entries.
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for (unsigned i = 0, e = Opts.UserEntries.size(); i != e; ++i) {
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const HeaderSearchOptions::Entry &E = Opts.UserEntries[i];
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if (E.IsFramework && E.Group != frontend::Angled)
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llvm::report_fatal_error("Invalid option set!");
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switch (E.Group) {
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case frontend::After:
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if (withFlags) incpaths.push_back("-idirafter");
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break;
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case frontend::Quoted:
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if (withFlags) incpaths.push_back("-iquote");
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break;
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case frontend::System:
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if (!withSystem) continue;
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if (withFlags) incpaths.push_back("-isystem");
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break;
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case frontend::IndexHeaderMap:
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if (!withSystem) continue;
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if (withFlags) incpaths.push_back("-index-header-map");
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if (withFlags) incpaths.push_back(E.IsFramework? "-F" : "-I");
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break;
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case frontend::CSystem:
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if (!withSystem) continue;
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if (withFlags) incpaths.push_back("-c-isystem");
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break;
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case frontend::ExternCSystem:
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if (!withSystem) continue;
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if (withFlags) incpaths.push_back("-extern-c-isystem");
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break;
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case frontend::CXXSystem:
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if (!withSystem) continue;
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if (withFlags) incpaths.push_back("-cxx-isystem");
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break;
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case frontend::ObjCSystem:
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if (!withSystem) continue;
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if (withFlags) incpaths.push_back("-objc-isystem");
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break;
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case frontend::ObjCXXSystem:
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if (!withSystem) continue;
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if (withFlags) incpaths.push_back("-objcxx-isystem");
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break;
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case frontend::Angled:
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if (withFlags) incpaths.push_back(E.IsFramework ? "-F" : "-I");
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break;
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}
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incpaths.push_back(E.Path);
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}
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if (withSystem && !Opts.ResourceDir.empty()) {
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if (withFlags) incpaths.push_back("-resource-dir");
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incpaths.push_back(Opts.ResourceDir);
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}
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if (withSystem && withFlags && !Opts.ModuleCachePath.empty()) {
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incpaths.push_back("-fmodule-cache-path");
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incpaths.push_back(Opts.ModuleCachePath);
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}
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if (withSystem && withFlags && !Opts.UseStandardSystemIncludes)
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incpaths.push_back("-nostdinc");
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if (withSystem && withFlags && !Opts.UseStandardCXXIncludes)
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incpaths.push_back("-nostdinc++");
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if (withSystem && withFlags && Opts.UseLibcxx)
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incpaths.push_back("-stdlib=libc++");
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if (withSystem && withFlags && Opts.Verbose)
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incpaths.push_back("-v");
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}
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CompilerInstance* Interpreter::getCI() const {
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return m_IncrParser->getCI();
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}
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const Sema& Interpreter::getSema() const {
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return getCI()->getSema();
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}
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Sema& Interpreter::getSema() {
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return getCI()->getSema();
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}
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llvm::ExecutionEngine* Interpreter::getExecutionEngine() const {
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return m_ExecutionContext->getExecutionEngine();
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}
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llvm::Module* Interpreter::getModule() const {
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return m_IncrParser->getCodeGenerator()->GetModule();
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}
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///\brief Maybe transform the input line to implement cint command line
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/// semantics (declarations are global) and compile to produce a module.
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///
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Interpreter::CompilationResult
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Interpreter::process(const std::string& input, StoredValueRef* V /* = 0 */,
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const Decl** D /* = 0 */) {
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if (isRawInputEnabled() || !ShouldWrapInput(input))
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return declare(input, D);
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CompilationOptions CO;
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CO.DeclarationExtraction = 1;
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CO.ValuePrinting = CompilationOptions::VPAuto;
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CO.ResultEvaluation = (bool)V;
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CO.DynamicScoping = isDynamicLookupEnabled();
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CO.Debug = isPrintingAST();
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CO.IRDebug = isPrintingIR();
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if (EvaluateInternal(input, CO, V) == Interpreter::kFailure) {
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if (D)
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*D = 0;
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return Interpreter::kFailure;
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}
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if (D)
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*D = m_IncrParser->getLastTransaction()->getFirstDecl().getSingleDecl();
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return Interpreter::kSuccess;
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}
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Interpreter::CompilationResult
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Interpreter::parse(const std::string& input) {
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CompilationOptions CO;
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CO.CodeGeneration = 0;
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CO.DeclarationExtraction = 0;
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CO.ValuePrinting = 0;
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CO.ResultEvaluation = 0;
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CO.DynamicScoping = isDynamicLookupEnabled();
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CO.Debug = isPrintingAST();
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CO.IRDebug = isPrintingIR();
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return DeclareInternal(input, CO);
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}
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Interpreter::CompilationResult
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Interpreter::loadModuleForHeader(const std::string& headerFile) {
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Preprocessor& PP = getCI()->getPreprocessor();
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//Copied from clang's PPDirectives.cpp
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bool isAngled = false;
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// Clang doc says:
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// "LookupFrom is set when this is a \#include_next directive, it specifies
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// the file to start searching from."
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const DirectoryLookup* LookupFrom = 0;
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const DirectoryLookup* CurDir = 0;
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Module* module = 0;
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PP.LookupFile(headerFile, isAngled, LookupFrom, CurDir, /*SearchPath*/0,
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/*RelativePath*/ 0, &module, /*SkipCache*/false);
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if (!module)
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return Interpreter::kFailure;
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SourceLocation fileNameLoc;
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ModuleIdPath path = std::make_pair(PP.getIdentifierInfo(module->Name),
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fileNameLoc);
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// Pretend that the module came from an inclusion directive, so that clang
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// will create an implicit import declaration to capture it in the AST.
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bool isInclude = true;
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SourceLocation includeLoc;
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if (getCI()->loadModule(includeLoc, path, Module::AllVisible, isInclude)) {
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// After module load we need to "force" Sema to generate the code for
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// things like dynamic classes.
|
|
getSema().ActOnEndOfTranslationUnit();
|
|
return Interpreter::kSuccess;
|
|
}
|
|
|
|
return Interpreter::kFailure;
|
|
}
|
|
|
|
Interpreter::CompilationResult
|
|
Interpreter::parseForModule(const std::string& input) {
|
|
CompilationOptions CO;
|
|
CO.CodeGeneration = 1;
|
|
CO.CodeGenerationForModule = 1;
|
|
CO.DeclarationExtraction = 0;
|
|
CO.ValuePrinting = 0;
|
|
CO.ResultEvaluation = 0;
|
|
CO.DynamicScoping = isDynamicLookupEnabled();
|
|
CO.Debug = isPrintingAST();
|
|
CO.IRDebug = isPrintingIR();
|
|
|
|
// When doing parseForModule avoid warning about the user code
|
|
// being loaded ... we probably might as well extend this to
|
|
// ALL warnings ... but this will suffice for now (working
|
|
// around a real bug in QT :().
|
|
DiagnosticsEngine& Diag = getCI()->getDiagnostics();
|
|
Diag.setDiagnosticMapping(clang::diag::warn_field_is_uninit,
|
|
clang::diag::MAP_IGNORE, SourceLocation());
|
|
return DeclareInternal(input, CO);
|
|
}
|
|
|
|
Interpreter::CompilationResult
|
|
Interpreter::declare(const std::string& input, const Decl** D /* = 0 */) {
|
|
CompilationOptions CO;
|
|
CO.DeclarationExtraction = 0;
|
|
CO.ValuePrinting = 0;
|
|
CO.ResultEvaluation = 0;
|
|
CO.DynamicScoping = isDynamicLookupEnabled();
|
|
CO.Debug = isPrintingAST();
|
|
CO.IRDebug = isPrintingIR();
|
|
|
|
return DeclareInternal(input, CO, D);
|
|
}
|
|
|
|
Interpreter::CompilationResult
|
|
Interpreter::evaluate(const std::string& input, StoredValueRef& V) {
|
|
// Here we might want to enforce further restrictions like: Only one
|
|
// ExprStmt can be evaluated and etc. Such enforcement cannot happen in the
|
|
// worker, because it is used from various places, where there is no such
|
|
// rule
|
|
CompilationOptions CO;
|
|
CO.DeclarationExtraction = 0;
|
|
CO.ValuePrinting = 0;
|
|
CO.ResultEvaluation = 1;
|
|
|
|
return EvaluateInternal(input, CO, &V);
|
|
}
|
|
|
|
Interpreter::CompilationResult
|
|
Interpreter::echo(const std::string& input, StoredValueRef* V /* = 0 */) {
|
|
CompilationOptions CO;
|
|
CO.DeclarationExtraction = 0;
|
|
CO.ValuePrinting = CompilationOptions::VPEnabled;
|
|
CO.ResultEvaluation = 0;
|
|
|
|
return EvaluateInternal(input, CO, V);
|
|
}
|
|
|
|
Interpreter::CompilationResult
|
|
Interpreter::execute(const std::string& input) {
|
|
CompilationOptions CO;
|
|
CO.DeclarationExtraction = 0;
|
|
CO.ValuePrinting = 0;
|
|
CO.ResultEvaluation = 0;
|
|
CO.DynamicScoping = 0;
|
|
CO.Debug = isPrintingAST();
|
|
CO.IRDebug = isPrintingIR();
|
|
|
|
// Disable warnings which doesn't make sense when using the prompt
|
|
// This gets reset with the clang::Diagnostics().Reset()
|
|
// TODO: Here might be useful to issue unused variable diagnostic,
|
|
// because we don't do declaration extraction and the decl won't be visible
|
|
// anymore.
|
|
ignoreFakeDiagnostics();
|
|
|
|
// Wrap the expression
|
|
std::string WrapperName;
|
|
std::string Wrapper = input;
|
|
WrapInput(Wrapper, WrapperName);
|
|
|
|
const Transaction* lastT = m_IncrParser->Compile(Wrapper, CO);
|
|
if (lastT->getIssuedDiags() == Transaction::kNone)
|
|
if (lastT->getState() == Transaction::kCommitted
|
|
&& RunFunction(lastT->getWrapperFD()) < kExeFirstError)
|
|
return Interpreter::kSuccess;
|
|
|
|
return Interpreter::kFailure;
|
|
}
|
|
|
|
Interpreter::CompilationResult Interpreter::codegen(Transaction* T) {
|
|
assert(getCodeGenerator() && "No CodeGenerator?");
|
|
// FIXME: move this into the transaction's CompOpts.
|
|
m_IncrParser->commitTransaction(T, /*forceCodeGen*/ true);
|
|
if (T->getState() == Transaction::kCommitted)
|
|
return Interpreter::kSuccess;
|
|
return Interpreter::kFailure;
|
|
}
|
|
|
|
bool Interpreter::ShouldWrapInput(const std::string& input) {
|
|
llvm::OwningPtr<llvm::MemoryBuffer> buf;
|
|
buf.reset(llvm::MemoryBuffer::getMemBuffer(input, "Cling Preparse Buf"));
|
|
Lexer WrapLexer(SourceLocation(), getSema().getLangOpts(), input.c_str(),
|
|
input.c_str(), input.c_str() + input.size());
|
|
Token Tok;
|
|
WrapLexer.Lex(Tok);
|
|
|
|
const tok::TokenKind kind = Tok.getKind();
|
|
|
|
if (kind == tok::raw_identifier && !Tok.needsCleaning()) {
|
|
StringRef keyword(Tok.getRawIdentifierData(), Tok.getLength());
|
|
if (keyword.equals("using"))
|
|
return false;
|
|
if (keyword.equals("extern"))
|
|
return false;
|
|
if (keyword.equals("namespace"))
|
|
return false;
|
|
if (keyword.equals("template"))
|
|
return false;
|
|
}
|
|
else if (kind == tok::hash) {
|
|
WrapLexer.Lex(Tok);
|
|
if (Tok.is(tok::raw_identifier) && !Tok.needsCleaning()) {
|
|
StringRef keyword(Tok.getRawIdentifierData(), Tok.getLength());
|
|
if (keyword.equals("include"))
|
|
return false;
|
|
}
|
|
}
|
|
|
|
return true;
|
|
}
|
|
|
|
void Interpreter::WrapInput(std::string& input, std::string& fname) {
|
|
fname = createUniqueWrapper();
|
|
input.insert(0, "void " + fname + "() {\n ");
|
|
input.append("\n;\n}");
|
|
}
|
|
|
|
Interpreter::ExecutionResult
|
|
Interpreter::RunFunction(const FunctionDecl* FD, StoredValueRef* res /*=0*/) {
|
|
if (getCI()->getDiagnostics().hasErrorOccurred())
|
|
return kExeCompilationError;
|
|
|
|
if (!m_IncrParser->hasCodeGenerator()) {
|
|
return kExeNoCodeGen;
|
|
}
|
|
|
|
if (!FD)
|
|
return kExeUnkownFunction;
|
|
|
|
std::string mangledNameIfNeeded;
|
|
maybeMangleDeclName(FD, mangledNameIfNeeded);
|
|
ExecutionContext::ExecutionResult ExeRes =
|
|
m_ExecutionContext->executeFunction(mangledNameIfNeeded.c_str(),
|
|
getCI()->getASTContext(),
|
|
FD->getResultType(), res);
|
|
if (res && res->isValid())
|
|
res->get().setLLVMType(getLLVMType(res->get().getClangType()));
|
|
return ConvertExecutionResult(ExeRes);
|
|
}
|
|
|
|
void Interpreter::createUniqueName(std::string& out) {
|
|
out += utils::Synthesize::UniquePrefix;
|
|
llvm::raw_string_ostream(out) << m_UniqueCounter++;
|
|
}
|
|
|
|
bool Interpreter::isUniqueName(llvm::StringRef name) {
|
|
return name.startswith(utils::Synthesize::UniquePrefix);
|
|
}
|
|
|
|
llvm::StringRef Interpreter::createUniqueWrapper() {
|
|
const size_t size
|
|
= sizeof(utils::Synthesize::UniquePrefix) + sizeof(m_UniqueCounter);
|
|
llvm::SmallString<size> out(utils::Synthesize::UniquePrefix);
|
|
llvm::raw_svector_ostream(out) << m_UniqueCounter++;
|
|
|
|
return (getCI()->getASTContext().Idents.getOwn(out)).getName();
|
|
}
|
|
|
|
bool Interpreter::isUniqueWrapper(llvm::StringRef name) {
|
|
return name.startswith(utils::Synthesize::UniquePrefix);
|
|
}
|
|
|
|
Interpreter::CompilationResult
|
|
Interpreter::DeclareInternal(const std::string& input,
|
|
const CompilationOptions& CO,
|
|
const clang::Decl** D /* = 0 */) {
|
|
// Disable warnings which doesn't make sense when using the prompt
|
|
// This gets reset with the clang::Diagnostics().Reset()
|
|
ignoreFakeDiagnostics();
|
|
|
|
const Transaction* lastT = m_IncrParser->Compile(input, CO);
|
|
if (lastT->getIssuedDiags() != Transaction::kErrors) {
|
|
if (D)
|
|
*D = lastT->getFirstDecl().getSingleDecl();
|
|
return Interpreter::kSuccess;
|
|
}
|
|
|
|
return Interpreter::kFailure;
|
|
}
|
|
|
|
Interpreter::CompilationResult
|
|
Interpreter::EvaluateInternal(const std::string& input,
|
|
const CompilationOptions& CO,
|
|
StoredValueRef* V /* = 0 */) {
|
|
// Disable warnings which doesn't make sense when using the prompt
|
|
// This gets reset with the clang::Diagnostics().Reset()
|
|
ignoreFakeDiagnostics();
|
|
|
|
// Wrap the expression
|
|
std::string WrapperName;
|
|
std::string Wrapper = input;
|
|
WrapInput(Wrapper, WrapperName);
|
|
Transaction* lastT = 0;
|
|
if (V) {
|
|
lastT = m_IncrParser->Parse(Wrapper, CO);
|
|
assert(lastT->size() && "No decls created by Parse!");
|
|
|
|
m_IncrParser->commitTransaction(lastT);
|
|
}
|
|
else
|
|
lastT = m_IncrParser->Compile(Wrapper, CO);
|
|
|
|
if (lastT->getState() == Transaction::kCommitted
|
|
&& RunFunction(lastT->getWrapperFD(), V) < kExeFirstError)
|
|
return Interpreter::kSuccess;
|
|
else if (V)
|
|
*V = StoredValueRef::invalidValue();
|
|
|
|
return Interpreter::kFailure;
|
|
}
|
|
|
|
void Interpreter::addLoadedFile(const std::string& name,
|
|
Interpreter::LoadedFileInfo::FileType type,
|
|
const llvm::sys::DynamicLibrary* dyLib) {
|
|
m_LoadedFiles.push_back(new LoadedFileInfo(name, type, dyLib));
|
|
}
|
|
|
|
Interpreter::CompilationResult
|
|
Interpreter::loadFile(const std::string& filename,
|
|
bool allowSharedLib /*=true*/) {
|
|
if (allowSharedLib) {
|
|
bool tryCode;
|
|
if (loadLibrary(filename, false, &tryCode) == kLoadLibSuccess)
|
|
return kSuccess;
|
|
if (!tryCode)
|
|
return kFailure;
|
|
}
|
|
|
|
std::string code;
|
|
code += "#include \"" + filename + "\"";
|
|
CompilationResult res = declare(code);
|
|
if (res == kSuccess)
|
|
addLoadedFile(filename, LoadedFileInfo::kSource);
|
|
return res;
|
|
}
|
|
|
|
static llvm::sys::Path
|
|
findSharedLibrary(llvm::StringRef fileStem,
|
|
const llvm::SmallVectorImpl<llvm::sys::Path>& Paths,
|
|
bool& exists, bool& isDyLib) {
|
|
for (llvm::SmallVectorImpl<llvm::sys::Path>::const_iterator
|
|
IPath = Paths.begin(), EPath = Paths.end(); IPath != EPath; ++IPath) {
|
|
llvm::sys::Path ThisPath(*IPath);
|
|
ThisPath.appendComponent(fileStem);
|
|
exists = llvm::sys::fs::exists(ThisPath.str());
|
|
if (exists && ThisPath.isDynamicLibrary()) {
|
|
isDyLib = true;
|
|
return ThisPath;
|
|
}
|
|
}
|
|
return llvm::sys::Path();
|
|
}
|
|
|
|
Interpreter::LoadLibResult
|
|
Interpreter::tryLinker(const std::string& filename, bool permanent,
|
|
bool isAbsolute, bool& exists, bool& isDyLib) {
|
|
using namespace llvm::sys;
|
|
exists = false;
|
|
isDyLib = false;
|
|
llvm::Module* module = m_IncrParser->getCodeGenerator()->GetModule();
|
|
assert(module && "Module must exist for linking!");
|
|
|
|
llvm::sys::Path FoundDyLib;
|
|
|
|
if (isAbsolute) {
|
|
exists = llvm::sys::fs::exists(filename.c_str());
|
|
if (exists && Path(filename).isDynamicLibrary()) {
|
|
isDyLib = true;
|
|
FoundDyLib = filename;
|
|
}
|
|
} else {
|
|
const InvocationOptions& Opts = getOptions();
|
|
llvm::SmallVector<Path, 16>
|
|
SearchPaths(Opts.LibSearchPath.begin(), Opts.LibSearchPath.end());
|
|
|
|
std::vector<Path> SysSearchPaths;
|
|
Path::GetSystemLibraryPaths(SysSearchPaths);
|
|
SearchPaths.append(SysSearchPaths.begin(), SysSearchPaths.end());
|
|
|
|
FoundDyLib = findSharedLibrary(filename, SearchPaths, exists, isDyLib);
|
|
|
|
std::string filenameWithExt(filename);
|
|
filenameWithExt += ("." + Path::GetDLLSuffix()).str();
|
|
if (!exists) {
|
|
// Add DyLib extension:
|
|
FoundDyLib = findSharedLibrary(filenameWithExt, SearchPaths, exists,
|
|
isDyLib);
|
|
}
|
|
}
|
|
|
|
if (!isDyLib)
|
|
return kLoadLibError;
|
|
|
|
assert(!FoundDyLib.isEmpty() && "The shared lib exists but can't find it!");
|
|
std::string errMsg;
|
|
// TODO: !permanent case
|
|
DynamicLibrary DyLib
|
|
= DynamicLibrary::getPermanentLibrary(FoundDyLib.str().c_str(), &errMsg);
|
|
if (!DyLib.isValid()) {
|
|
llvm::errs() << "cling::Interpreter::tryLinker(): " << errMsg << '\n';
|
|
return kLoadLibError;
|
|
}
|
|
std::pair<std::set<llvm::sys::DynamicLibrary>::iterator, bool> insRes
|
|
= static_cast<DynLibSetImpl*>(m_DyLibs.get())->insert(DyLib);
|
|
if (!insRes.second)
|
|
return kLoadLibExists;
|
|
addLoadedFile(FoundDyLib.str(), LoadedFileInfo::kDynamicLibrary,
|
|
&(*insRes.first));
|
|
return kLoadLibSuccess;
|
|
}
|
|
|
|
Interpreter::LoadLibResult
|
|
Interpreter::loadLibrary(const std::string& filename, bool permanent,
|
|
bool* tryCode) {
|
|
// If it's not an absolute path, prepend "lib"
|
|
SmallVector<char, 128> Absolute(filename.c_str(),
|
|
filename.c_str() + filename.length());
|
|
Absolute.push_back(0);
|
|
llvm::sys::fs::make_absolute(Absolute);
|
|
bool isAbsolute = filename == Absolute.data();
|
|
bool exists = false;
|
|
bool isDyLib = false;
|
|
LoadLibResult res = tryLinker(filename, permanent, isAbsolute, exists,
|
|
isDyLib);
|
|
if (tryCode) {
|
|
*tryCode = !isDyLib;
|
|
if (isAbsolute)
|
|
*tryCode &= exists;
|
|
}
|
|
if (exists)
|
|
return res;
|
|
|
|
if (!isAbsolute && filename.compare(0, 3, "lib")) {
|
|
// try with "lib" prefix:
|
|
res = tryLinker("lib" + filename, permanent, false, exists, isDyLib);
|
|
if (tryCode) {
|
|
*tryCode = !isDyLib;
|
|
if (isAbsolute)
|
|
*tryCode &= exists;
|
|
}
|
|
if (res != kLoadLibError)
|
|
return res;
|
|
}
|
|
return kLoadLibError;
|
|
}
|
|
|
|
void Interpreter::installLazyFunctionCreator(void* (*fp)(const std::string&)) {
|
|
m_ExecutionContext->installLazyFunctionCreator(fp);
|
|
}
|
|
|
|
void Interpreter::suppressLazyFunctionCreatorDiags(bool suppressed/*=true*/) {
|
|
m_ExecutionContext->suppressLazyFunctionCreatorDiags(suppressed);
|
|
}
|
|
|
|
StoredValueRef Interpreter::Evaluate(const char* expr, DeclContext* DC,
|
|
bool ValuePrinterReq) {
|
|
Sema& TheSema = getCI()->getSema();
|
|
// The evaluation should happen on the global scope, because of the wrapper
|
|
// that is created.
|
|
//
|
|
// We can't PushDeclContext, because we don't have scope.
|
|
Sema::ContextRAII pushDC(TheSema,
|
|
TheSema.getASTContext().getTranslationUnitDecl());
|
|
|
|
StoredValueRef Result;
|
|
getCallbacks()->SetIsRuntime(true);
|
|
if (ValuePrinterReq)
|
|
echo(expr, &Result);
|
|
else
|
|
evaluate(expr, Result);
|
|
getCallbacks()->SetIsRuntime(false);
|
|
|
|
return Result;
|
|
}
|
|
|
|
void Interpreter::setCallbacks(InterpreterCallbacks* C) {
|
|
// We need it to enable LookupObject callback.
|
|
m_Callbacks.reset(C);
|
|
// FIXME: what if the ASTReader is set only later?
|
|
// FIXME: need to create a multiplexer if a DeserializationListener is
|
|
// alreday present.
|
|
if (getCI()->getModuleManager()) {
|
|
m_CallbackAdaptor = new ClingCallbackAdaptor(C);
|
|
getCI()->getModuleManager()
|
|
->setDeserializationListener(m_CallbackAdaptor);
|
|
}
|
|
}
|
|
|
|
clang::ASTDeserializationListener*
|
|
Interpreter::getASTDeserializationListener() const {
|
|
return m_CallbackAdaptor;
|
|
}
|
|
|
|
|
|
const Transaction* Interpreter::getFirstTransaction() const {
|
|
return m_IncrParser->getFirstTransaction();
|
|
}
|
|
|
|
void Interpreter::enableDynamicLookup(bool value /*=true*/) {
|
|
m_DynamicLookupEnabled = value;
|
|
|
|
if (isDynamicLookupEnabled()) {
|
|
if (loadModuleForHeader("cling/Interpreter/DynamicLookupRuntimeUniverse.h")
|
|
!= kSuccess)
|
|
declare("#include \"cling/Interpreter/DynamicLookupRuntimeUniverse.h\"");
|
|
}
|
|
}
|
|
|
|
Interpreter::ExecutionResult
|
|
Interpreter::runStaticInitializersOnce() const {
|
|
// Forward to ExecutionContext; should not be called by
|
|
// anyone except for IncrementalParser.
|
|
llvm::Module* module = m_IncrParser->getCodeGenerator()->GetModule();
|
|
ExecutionContext::ExecutionResult ExeRes
|
|
= m_ExecutionContext->runStaticInitializersOnce(module);
|
|
|
|
// Reset the module builder to clean up global initializers, c'tors, d'tors
|
|
getCodeGenerator()->HandleTranslationUnit(getCI()->getASTContext());
|
|
|
|
return ConvertExecutionResult(ExeRes);
|
|
}
|
|
|
|
Interpreter::ExecutionResult
|
|
Interpreter::runStaticDestructorsOnce() {
|
|
for (size_t I = 0, E = m_AtExitFuncs.size(); I < E; ++I) {
|
|
const CXAAtExitElement& AEE = m_AtExitFuncs[E-I-1];
|
|
(*AEE.m_Func)(AEE.m_Arg);
|
|
}
|
|
m_AtExitFuncs.clear();
|
|
return kExeSuccess;
|
|
}
|
|
|
|
int Interpreter::CXAAtExit(void (*func) (void*), void* arg, void* dso) {
|
|
// Register a CXAAtExit function
|
|
Decl* LastTLD
|
|
= m_IncrParser->getLastTransaction()->getLastDecl().getSingleDecl();
|
|
m_AtExitFuncs.push_back(CXAAtExitElement(func, arg, dso, LastTLD));
|
|
return 0; // happiness
|
|
}
|
|
|
|
void Interpreter::maybeMangleDeclName(const clang::NamedDecl* D,
|
|
std::string& mangledName) const {
|
|
///Get the mangled name of a NamedDecl.
|
|
///
|
|
///D - mangle this decl's name
|
|
///mangledName - put the mangled name in here
|
|
if (!m_MangleCtx) {
|
|
m_MangleCtx.reset(getCI()->getASTContext().createMangleContext());
|
|
}
|
|
if (m_MangleCtx->shouldMangleDeclName(D)) {
|
|
llvm::raw_string_ostream RawStr(mangledName);
|
|
switch(D->getKind()) {
|
|
case Decl::CXXConstructor:
|
|
//Ctor_Complete, // Complete object ctor
|
|
//Ctor_Base, // Base object ctor
|
|
//Ctor_CompleteAllocating // Complete object allocating ctor (unused)
|
|
m_MangleCtx->mangleCXXCtor(cast<CXXConstructorDecl>(D),
|
|
Ctor_Complete, RawStr);
|
|
break;
|
|
|
|
case Decl::CXXDestructor:
|
|
//Dtor_Deleting, // Deleting dtor
|
|
//Dtor_Complete, // Complete object dtor
|
|
//Dtor_Base // Base object dtor
|
|
m_MangleCtx->mangleCXXDtor(cast<CXXDestructorDecl>(D),
|
|
Dtor_Deleting, RawStr);
|
|
break;
|
|
|
|
default :
|
|
m_MangleCtx->mangleName(D, RawStr);
|
|
break;
|
|
}
|
|
RawStr.flush();
|
|
} else {
|
|
mangledName = D->getNameAsString();
|
|
}
|
|
}
|
|
|
|
void Interpreter::ignoreFakeDiagnostics() const {
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DiagnosticsEngine& Diag = getCI()->getDiagnostics();
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// Disable warnings which doesn't make sense when using the prompt
|
|
// This gets reset with the clang::Diagnostics().Reset()
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Diag.setDiagnosticMapping(clang::diag::warn_unused_expr,
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clang::diag::MAP_IGNORE, SourceLocation());
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Diag.setDiagnosticMapping(clang::diag::warn_unused_call,
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clang::diag::MAP_IGNORE, SourceLocation());
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|
Diag.setDiagnosticMapping(clang::diag::warn_unused_comparison,
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|
clang::diag::MAP_IGNORE, SourceLocation());
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|
Diag.setDiagnosticMapping(clang::diag::ext_return_has_expr,
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|
clang::diag::MAP_IGNORE, SourceLocation());
|
|
// Very very ugly. TODO: Revisit and extract out as interpreter arg
|
|
Diag.setDiagnosticMapping(clang::diag::ext_auto_type_specifier,
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|
clang::diag::MAP_IGNORE, SourceLocation());
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|
}
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|
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bool Interpreter::addSymbol(const char* symbolName, void* symbolAddress) {
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|
// Forward to ExecutionContext;
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|
if (!symbolName || !symbolAddress )
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|
return false;
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|
|
|
return m_ExecutionContext->addSymbol(symbolName, symbolAddress);
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|
}
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|
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void* Interpreter::getAddressOfGlobal(const clang::NamedDecl* D,
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bool* fromJIT /*=0*/) const {
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|
// Return a symbol's address, and whether it was jitted.
|
|
std::string mangledName;
|
|
maybeMangleDeclName(D, mangledName);
|
|
return getAddressOfGlobal(mangledName.c_str(), fromJIT);
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|
}
|
|
|
|
void* Interpreter::getAddressOfGlobal(const char* SymName,
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|
bool* fromJIT /*=0*/) const {
|
|
// Return a symbol's address, and whether it was jitted.
|
|
llvm::Module* module = m_IncrParser->getCodeGenerator()->GetModule();
|
|
return m_ExecutionContext->getAddressOfGlobal(module, SymName, fromJIT);
|
|
}
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|
|
|
const llvm::Type* Interpreter::getLLVMType(QualType QT) {
|
|
if (!m_IncrParser->hasCodeGenerator())
|
|
return 0;
|
|
|
|
// Note: The first thing this routine does is getCanonicalType(), so we
|
|
// do not need to do that first.
|
|
return getCodeGenerator()->ConvertType(QT);
|
|
}
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|
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} // namespace cling
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