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https://github.com/c64scene-ar/llvm-6502.git
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afb57c0251
git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@233168 91177308-0d34-0410-b5e6-96231b3b80d8
248 lines
9.3 KiB
C++
248 lines
9.3 KiB
C++
//===-- IndirectionUtils.h - Utilities for adding indirections --*- C++ -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// Contains utilities for adding indirections and breaking up modules.
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_EXECUTIONENGINE_ORC_INDIRECTIONUTILS_H
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#define LLVM_EXECUTIONENGINE_ORC_INDIRECTIONUTILS_H
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#include "JITSymbol.h"
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#include "llvm/ADT/DenseSet.h"
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#include "llvm/IR/IRBuilder.h"
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#include "llvm/IR/Mangler.h"
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#include "llvm/IR/Module.h"
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#include <sstream>
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namespace llvm {
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namespace orc {
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/// @brief Base class for JITLayer independent aspects of
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/// JITCompileCallbackManager.
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class JITCompileCallbackManagerBase {
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public:
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typedef std::function<TargetAddress()> CompileFtor;
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typedef std::function<void(TargetAddress)> UpdateFtor;
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/// @brief Handle to a newly created compile callback. Can be used to get an
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/// IR constant representing the address of the trampoline, and to set
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/// the compile and update actions for the callback.
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class CompileCallbackInfo {
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public:
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CompileCallbackInfo(Constant *Addr, CompileFtor &Compile,
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UpdateFtor &Update)
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: Addr(Addr), Compile(Compile), Update(Update) {}
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Constant* getAddress() const { return Addr; }
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void setCompileAction(CompileFtor Compile) {
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this->Compile = std::move(Compile);
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}
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void setUpdateAction(UpdateFtor Update) {
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this->Update = std::move(Update);
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}
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private:
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Constant *Addr;
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CompileFtor &Compile;
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UpdateFtor &Update;
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};
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/// @brief Construct a JITCompileCallbackManagerBase.
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/// @param ErrorHandlerAddress The address of an error handler in the target
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/// process to be used if a compile callback fails.
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/// @param NumTrampolinesPerBlock Number of trampolines to emit if there is no
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/// available trampoline when getCompileCallback is
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/// called.
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JITCompileCallbackManagerBase(TargetAddress ErrorHandlerAddress,
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unsigned NumTrampolinesPerBlock)
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: ErrorHandlerAddress(ErrorHandlerAddress),
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NumTrampolinesPerBlock(NumTrampolinesPerBlock) {}
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virtual ~JITCompileCallbackManagerBase() {}
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/// @brief Execute the callback for the given trampoline id. Called by the JIT
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/// to compile functions on demand.
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TargetAddress executeCompileCallback(TargetAddress TrampolineID) {
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TrampolineMapT::iterator I = ActiveTrampolines.find(TrampolineID);
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// FIXME: Also raise an error in the Orc error-handler when we finally have
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// one.
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if (I == ActiveTrampolines.end())
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return ErrorHandlerAddress;
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// Found a callback handler. Yank this trampoline out of the active list and
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// put it back in the available trampolines list, then try to run the
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// handler's compile and update actions.
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// Moving the trampoline ID back to the available list first means there's at
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// least one available trampoline if the compile action triggers a request for
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// a new one.
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AvailableTrampolines.push_back(I->first);
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auto CallbackHandler = std::move(I->second);
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ActiveTrampolines.erase(I);
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if (auto Addr = CallbackHandler.Compile()) {
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CallbackHandler.Update(Addr);
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return Addr;
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}
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return ErrorHandlerAddress;
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}
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/// @brief Get/create a compile callback with the given signature.
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virtual CompileCallbackInfo getCompileCallback(FunctionType &FT) = 0;
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protected:
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struct CallbackHandler {
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CompileFtor Compile;
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UpdateFtor Update;
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};
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TargetAddress ErrorHandlerAddress;
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unsigned NumTrampolinesPerBlock;
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typedef std::map<TargetAddress, CallbackHandler> TrampolineMapT;
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TrampolineMapT ActiveTrampolines;
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std::vector<TargetAddress> AvailableTrampolines;
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};
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/// @brief Manage compile callbacks.
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template <typename JITLayerT, typename TargetT>
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class JITCompileCallbackManager : public JITCompileCallbackManagerBase {
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public:
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/// @brief Construct a JITCompileCallbackManager.
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/// @param JIT JIT layer to emit callback trampolines, etc. into.
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/// @param Context LLVMContext to use for trampoline & resolve block modules.
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/// @param ErrorHandlerAddress The address of an error handler in the target
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/// process to be used if a compile callback fails.
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/// @param NumTrampolinesPerBlock Number of trampolines to allocate whenever
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/// there is no existing callback trampoline.
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/// (Trampolines are allocated in blocks for
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/// efficiency.)
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JITCompileCallbackManager(JITLayerT &JIT, LLVMContext &Context,
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TargetAddress ErrorHandlerAddress,
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unsigned NumTrampolinesPerBlock)
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: JITCompileCallbackManagerBase(ErrorHandlerAddress,
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NumTrampolinesPerBlock),
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JIT(JIT) {
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emitResolverBlock(Context);
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}
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/// @brief Get/create a compile callback with the given signature.
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CompileCallbackInfo getCompileCallback(FunctionType &FT) final {
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TargetAddress TrampolineAddr = getAvailableTrampolineAddr(FT.getContext());
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auto &CallbackHandler =
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this->ActiveTrampolines[TrampolineAddr];
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Constant *AddrIntVal =
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ConstantInt::get(Type::getInt64Ty(FT.getContext()), TrampolineAddr);
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Constant *AddrPtrVal =
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ConstantExpr::getCast(Instruction::IntToPtr, AddrIntVal,
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PointerType::get(&FT, 0));
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return CompileCallbackInfo(AddrPtrVal, CallbackHandler.Compile,
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CallbackHandler.Update);
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}
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private:
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std::vector<std::unique_ptr<Module>>
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SingletonSet(std::unique_ptr<Module> M) {
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std::vector<std::unique_ptr<Module>> Ms;
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Ms.push_back(std::move(M));
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return Ms;
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}
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void emitResolverBlock(LLVMContext &Context) {
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std::unique_ptr<Module> M(new Module("resolver_block_module",
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Context));
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TargetT::insertResolverBlock(*M, *this);
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auto H = JIT.addModuleSet(SingletonSet(std::move(M)), nullptr);
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JIT.emitAndFinalize(H);
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auto ResolverBlockSymbol =
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JIT.findSymbolIn(H, TargetT::ResolverBlockName, false);
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assert(ResolverBlockSymbol && "Failed to insert resolver block");
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ResolverBlockAddr = ResolverBlockSymbol.getAddress();
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}
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TargetAddress getAvailableTrampolineAddr(LLVMContext &Context) {
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if (this->AvailableTrampolines.empty())
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grow(Context);
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assert(!this->AvailableTrampolines.empty() &&
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"Failed to grow available trampolines.");
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TargetAddress TrampolineAddr = this->AvailableTrampolines.back();
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this->AvailableTrampolines.pop_back();
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return TrampolineAddr;
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}
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void grow(LLVMContext &Context) {
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assert(this->AvailableTrampolines.empty() && "Growing prematurely?");
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std::unique_ptr<Module> M(new Module("trampoline_block", Context));
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auto GetLabelName =
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TargetT::insertCompileCallbackTrampolines(*M, ResolverBlockAddr,
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this->NumTrampolinesPerBlock,
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this->ActiveTrampolines.size());
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auto H = JIT.addModuleSet(SingletonSet(std::move(M)), nullptr);
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JIT.emitAndFinalize(H);
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for (unsigned I = 0; I < this->NumTrampolinesPerBlock; ++I) {
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std::string Name = GetLabelName(I);
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auto TrampolineSymbol = JIT.findSymbolIn(H, Name, false);
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assert(TrampolineSymbol && "Failed to emit trampoline.");
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this->AvailableTrampolines.push_back(TrampolineSymbol.getAddress());
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}
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}
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JITLayerT &JIT;
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TargetAddress ResolverBlockAddr;
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};
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/// @brief Get an update functor for updating the value of a named function
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/// pointer.
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template <typename JITLayerT>
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JITCompileCallbackManagerBase::UpdateFtor
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getLocalFPUpdater(JITLayerT &JIT, typename JITLayerT::ModuleSetHandleT H,
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std::string Name) {
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// FIXME: Move-capture Name once we can use C++14.
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return [=,&JIT](TargetAddress Addr) {
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auto FPSym = JIT.findSymbolIn(H, Name, true);
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assert(FPSym && "Cannot find function pointer to update.");
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void *FPAddr = reinterpret_cast<void*>(
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static_cast<uintptr_t>(FPSym.getAddress()));
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memcpy(FPAddr, &Addr, sizeof(uintptr_t));
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};
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}
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GlobalVariable* createImplPointer(Function &F, const Twine &Name,
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Constant *Initializer);
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void makeStub(Function &F, GlobalVariable &ImplPointer);
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typedef std::map<Module*, DenseSet<const GlobalValue*>> ModulePartitionMap;
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void partition(Module &M, const ModulePartitionMap &PMap);
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/// @brief Struct for trivial "complete" partitioning of a module.
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class FullyPartitionedModule {
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public:
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std::unique_ptr<Module> GlobalVars;
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std::unique_ptr<Module> Commons;
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std::vector<std::unique_ptr<Module>> Functions;
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FullyPartitionedModule() = default;
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FullyPartitionedModule(FullyPartitionedModule &&S)
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: GlobalVars(std::move(S.GlobalVars)), Commons(std::move(S.Commons)),
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Functions(std::move(S.Functions)) {}
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};
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FullyPartitionedModule fullyPartition(Module &M);
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} // End namespace orc.
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} // End namespace llvm.
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#endif // LLVM_EXECUTIONENGINE_ORC_INDIRECTIONUTILS_H
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