Add a global mapping layer for Orc. Adapted from a patch by Andy Somogyi.

Thanks Andy!

llvm-svn: 246226
This commit is contained in:
Lang Hames 2015-08-27 22:20:05 +00:00
parent da89d6804c
commit a4b3d4ec3e
3 changed files with 164 additions and 0 deletions

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@ -0,0 +1,108 @@
//===---- GlobalMappingLayer.h - Run all IR through a functor ---*- C++ -*-===//
//
// The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
//
// Convenience layer for injecting symbols that will appear in calls to
// findSymbol.
//
//===----------------------------------------------------------------------===//
#ifndef LLVM_EXECUTIONENGINE_ORC_GLOBALMAPPINGLAYER_H
#define LLVM_EXECUTIONENGINE_ORC_GLOBALMAPPINGLAYER_H
#include "JITSymbol.h"
#include <map>
namespace llvm {
namespace orc {
/// @brief Global mapping layer.
///
/// This layer overrides the findSymbol method to first search a local symbol
/// table that the client can define. It can be used to inject new symbol
/// mappings into the JIT. Beware, however: symbols within a single IR module or
/// object file will still resolve locally (via RuntimeDyld's symbol table) -
/// such internal references cannot be overriden via this layer.
template <typename BaseLayerT>
class GlobalMappingLayer {
public:
/// @brief Handle to a set of added modules.
typedef typename BaseLayerT::ModuleSetHandleT ModuleSetHandleT;
/// @brief Construct an GlobalMappingLayer with the given BaseLayer
GlobalMappingLayer(BaseLayerT &BaseLayer) : BaseLayer(BaseLayer) {}
/// @brief Add the given module set to the JIT.
/// @return A handle for the added modules.
template <typename ModuleSetT, typename MemoryManagerPtrT,
typename SymbolResolverPtrT>
ModuleSetHandleT addModuleSet(ModuleSetT Ms,
MemoryManagerPtrT MemMgr,
SymbolResolverPtrT Resolver) {
return BaseLayer.addModuleSet(std::move(Ms), std::move(MemMgr),
std::move(Resolver));
}
/// @brief Remove the module set associated with the handle H.
void removeModuleSet(ModuleSetHandleT H) { BaseLayer.removeModuleSet(H); }
/// @brief Manually set the address to return for the given symbol.
void setGlobalMapping(const std::string &Name, TargetAddress Addr) {
SymbolTable[Name] = Addr;
}
/// @brief Remove the given symbol from the global mapping.
void eraseGlobalMapping(const std::string &Name) {
SymbolTable.erase(Name);
}
/// @brief Search for the given named symbol.
///
/// This method will first search the local symbol table, returning
/// any symbol found there. If the symbol is not found in the local
/// table then this call will be passed through to the base layer.
///
/// @param Name The name of the symbol to search for.
/// @param ExportedSymbolsOnly If true, search only for exported symbols.
/// @return A handle for the given named symbol, if it exists.
JITSymbol findSymbol(const std::string &Name, bool ExportedSymbolsOnly) {
auto I = SymbolTable.find(Name);
if (I != SymbolTable.end())
return JITSymbol(I->second, JITSymbolFlags::Exported);
return BaseLayer.findSymbol(Name, ExportedSymbolsOnly);
}
/// @brief Get the address of the given symbol in the context of the set of
/// modules represented by the handle H. This call is forwarded to the
/// base layer's implementation.
/// @param H The handle for the module set to search in.
/// @param Name The name of the symbol to search for.
/// @param ExportedSymbolsOnly If true, search only for exported symbols.
/// @return A handle for the given named symbol, if it is found in the
/// given module set.
JITSymbol findSymbolIn(ModuleSetHandleT H, const std::string &Name,
bool ExportedSymbolsOnly) {
return BaseLayer.findSymbolIn(H, Name, ExportedSymbolsOnly);
}
/// @brief Immediately emit and finalize the module set represented by the
/// given handle.
/// @param H Handle for module set to emit/finalize.
void emitAndFinalize(ModuleSetHandleT H) {
BaseLayer.emitAndFinalize(H);
}
private:
BaseLayerT &BaseLayer;
std::map<std::string, TargetAddress> SymbolTable;
};
} // End namespace orc.
} // End namespace llvm.
#endif // LLVM_EXECUTIONENGINE_ORC_GLOBALMAPPINGLAYER_H

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@ -6,6 +6,7 @@ set(LLVM_LINK_COMPONENTS
add_llvm_unittest(OrcJITTests
IndirectionUtilsTest.cpp
GlobalMappingLayerTest.cpp
LazyEmittingLayerTest.cpp
ObjectTransformLayerTest.cpp
OrcTestCommon.cpp

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//===--- GlobalMappingLayerTest.cpp - Unit test the global mapping layer --===//
//
// The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
#include "llvm/ExecutionEngine/Orc/GlobalMappingLayer.h"
#include "gtest/gtest.h"
using namespace llvm;
using namespace llvm::orc;
namespace {
struct MockBaseLayer {
typedef int ModuleSetHandleT;
JITSymbol findSymbol(const std::string &Name, bool ExportedSymbolsOnly) {
if (Name == "bar")
return llvm::orc::JITSymbol(0x4567, JITSymbolFlags::Exported);
return nullptr;
}
};
TEST(GlobalMappingLayerTest, Empty) {
MockBaseLayer M;
GlobalMappingLayer<MockBaseLayer> L(M);
// Test fall-through for missing symbol.
auto FooSym = L.findSymbol("foo", true);
EXPECT_FALSE(FooSym) << "Found unexpected symbol.";
// Test fall-through for symbol in base layer.
auto BarSym = L.findSymbol("bar", true);
EXPECT_EQ(BarSym.getAddress(), static_cast<TargetAddress>(0x4567))
<< "Symbol lookup fall-through failed.";
// Test setup of a global mapping.
L.setGlobalMapping("foo", 0x0123);
auto FooSym2 = L.findSymbol("foo", true);
EXPECT_EQ(FooSym2.getAddress(), static_cast<TargetAddress>(0x0123))
<< "Symbol mapping setup failed.";
// Test removal of a global mapping.
L.eraseGlobalMapping("foo");
auto FooSym3 = L.findSymbol("foo", true);
EXPECT_FALSE(FooSym3) << "Symbol mapping removal failed.";
}
}