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This makes the target triple, graph name, and full graph content available when making decisions about how to populate the linker pass pipeline. Also updates the LLJITWithObjectLinkingLayerPlugin example to show more API use, including use of the API changes in this patch.
257 lines
8.7 KiB
C++
257 lines
8.7 KiB
C++
//===--------------- LLJITWithCustomObjectLinkingLayer.cpp ----------------===//
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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 shows how to switch LLJIT to use a custom object linking layer (we
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// use ObjectLinkingLayer, which is backed by JITLink, as an example).
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//
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//===----------------------------------------------------------------------===//
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#include "llvm/ADT/StringMap.h"
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#include "llvm/ExecutionEngine/JITLink/JITLink.h"
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#include "llvm/ExecutionEngine/JITLink/JITLinkMemoryManager.h"
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#include "llvm/ExecutionEngine/Orc/ExecutionUtils.h"
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#include "llvm/ExecutionEngine/Orc/LLJIT.h"
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#include "llvm/ExecutionEngine/Orc/ObjectLinkingLayer.h"
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#include "llvm/Support/InitLLVM.h"
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#include "llvm/Support/TargetSelect.h"
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#include "llvm/Support/raw_ostream.h"
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#include "../ExampleModules.h"
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using namespace llvm;
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using namespace llvm::orc;
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ExitOnError ExitOnErr;
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const llvm::StringRef TestMod =
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R"(
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define i32 @callee() {
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entry:
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ret i32 7
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}
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define i32 @entry() {
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entry:
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%0 = call i32 @callee()
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ret i32 %0
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}
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)";
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class MyPlugin : public ObjectLinkingLayer::Plugin {
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public:
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// The modifyPassConfig callback gives us a chance to inspect the
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// MaterializationResponsibility and target triple for the object being
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// linked, then add any JITLink passes that we would like to run on the
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// link graph. A pass is just a function object that is callable as
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// Error(jitlink::LinkGraph&). In this case we will add two passes
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// defined as lambdas that call the printLinkerGraph method on our
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// plugin: One to run before the linker applies fixups and another to
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// run afterwards.
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void modifyPassConfig(MaterializationResponsibility &MR,
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jitlink::LinkGraph &LG,
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jitlink::PassConfiguration &Config) override {
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outs() << "MyPlugin -- Modifying pass config for " << LG.getName() << " ("
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<< LG.getTargetTriple().str() << "):\n";
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// Print sections, symbol names and addresses, and any edges for the
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// associated blocks.
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Config.PostPrunePasses.push_back(printGraph);
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// Print graph contents before and after fixups:
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//
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// Config.PostPrunePasses.push_back([this](jitlink::LinkGraph &G) -> Error {
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// printLinkGraphContent(G, "Before fixup:");
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// return Error::success();
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// });
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// Config.PostFixupPasses.push_back([this](jitlink::LinkGraph &G) -> Error {
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// printLinkGraphContent(G, "After fixup:");
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// return Error::success();
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// });
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}
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void notifyLoaded(MaterializationResponsibility &MR) override {
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outs() << "Loading object defining " << MR.getSymbols() << "\n";
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}
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Error notifyEmitted(MaterializationResponsibility &MR) override {
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outs() << "Emitted object defining " << MR.getSymbols() << "\n";
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return Error::success();
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}
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Error notifyFailed(MaterializationResponsibility &MR) override {
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return Error::success();
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}
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Error notifyRemovingResources(ResourceKey K) override {
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return Error::success();
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}
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void notifyTransferringResources(ResourceKey DstKey,
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ResourceKey SrcKey) override {}
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private:
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static void printBlockContent(jitlink::Block &B) {
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constexpr JITTargetAddress LineWidth = 16;
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if (B.isZeroFill()) {
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outs() << " " << formatv("{0:x16}", B.getAddress()) << ": "
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<< B.getSize() << " bytes of zero-fill.\n";
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return;
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}
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JITTargetAddress InitAddr = B.getAddress() & ~(LineWidth - 1);
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JITTargetAddress StartAddr = B.getAddress();
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JITTargetAddress EndAddr = B.getAddress() + B.getSize();
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auto *Data = reinterpret_cast<const uint8_t *>(B.getContent().data());
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for (JITTargetAddress CurAddr = InitAddr; CurAddr != EndAddr; ++CurAddr) {
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if (CurAddr % LineWidth == 0)
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outs() << " " << formatv("{0:x16}", CurAddr) << ": ";
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if (CurAddr < StartAddr)
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outs() << " ";
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else
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outs() << formatv("{0:x-2}", Data[CurAddr - StartAddr]) << " ";
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if (CurAddr % LineWidth == LineWidth - 1)
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outs() << "\n";
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}
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if (EndAddr % LineWidth != 0)
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outs() << "\n";
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}
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static Error printGraph(jitlink::LinkGraph &G) {
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DenseSet<jitlink::Block *> BlocksAlreadyVisited;
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outs() << "Graph \"" << G.getName() << "\"\n";
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// Loop over all sections...
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for (auto &S : G.sections()) {
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outs() << " Section " << S.getName() << ":\n";
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// Loop over all symbols in the current section...
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for (auto *Sym : S.symbols()) {
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// Print the symbol's address.
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outs() << " " << formatv("{0:x16}", Sym->getAddress()) << ": ";
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// Print the symbol's name, or "<anonymous symbol>" if it doesn't have
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// one.
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if (Sym->hasName())
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outs() << Sym->getName() << "\n";
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else
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outs() << "<anonymous symbol>\n";
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// Get the content block for this symbol.
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auto &B = Sym->getBlock();
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if (BlocksAlreadyVisited.count(&B)) {
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outs() << " Block " << formatv("{0:x16}", B.getAddress())
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<< " already printed.\n";
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continue;
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} else
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outs() << " Block " << formatv("{0:x16}", B.getAddress())
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<< ":\n";
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outs() << " Content:\n";
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printBlockContent(B);
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BlocksAlreadyVisited.insert(&B);
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if (!llvm::empty(B.edges())) {
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outs() << " Edges:\n";
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for (auto &E : B.edges()) {
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outs() << " "
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<< formatv("{0:x16}", B.getAddress() + E.getOffset())
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<< ": kind = " << formatv("{0:d}", E.getKind())
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<< ", addend = " << formatv("{0:x}", E.getAddend())
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<< ", target = ";
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jitlink::Symbol &TargetSym = E.getTarget();
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if (TargetSym.hasName())
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outs() << TargetSym.getName() << "\n";
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else
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outs() << "<anonymous target>\n";
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}
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}
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outs() << "\n";
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}
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}
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return Error::success();
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}
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};
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static cl::opt<std::string>
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EntryPointName("entry", cl::desc("Symbol to call as main entry point"),
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cl::init("entry"));
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static cl::list<std::string> InputObjects(cl::Positional, cl::ZeroOrMore,
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cl::desc("input objects"));
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int main(int argc, char *argv[]) {
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// Initialize LLVM.
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InitLLVM X(argc, argv);
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InitializeNativeTarget();
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InitializeNativeTargetAsmPrinter();
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cl::ParseCommandLineOptions(argc, argv, "LLJITWithObjectLinkingLayerPlugin");
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ExitOnErr.setBanner(std::string(argv[0]) + ": ");
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// Detect the host and set code model to small.
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auto JTMB = ExitOnErr(JITTargetMachineBuilder::detectHost());
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JTMB.setCodeModel(CodeModel::Small);
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// Create an LLJIT instance with an ObjectLinkingLayer as the base layer.
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// We attach our plugin in to the newly created ObjectLinkingLayer before
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// returning it.
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auto J = ExitOnErr(
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LLJITBuilder()
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.setJITTargetMachineBuilder(std::move(JTMB))
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.setObjectLinkingLayerCreator(
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[&](ExecutionSession &ES, const Triple &TT) {
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// Create ObjectLinkingLayer.
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auto ObjLinkingLayer = std::make_unique<ObjectLinkingLayer>(
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ES, std::make_unique<jitlink::InProcessMemoryManager>());
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// Add an instance of our plugin.
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ObjLinkingLayer->addPlugin(std::make_unique<MyPlugin>());
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return ObjLinkingLayer;
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})
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.create());
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if (!InputObjects.empty()) {
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// If we have input objects then reflect process symbols so the input
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// objects can do interesting things, like call printf.
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J->getMainJITDylib().addGenerator(
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ExitOnErr(DynamicLibrarySearchGenerator::GetForCurrentProcess(
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J->getDataLayout().getGlobalPrefix())));
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// Load the input objects.
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for (auto InputObject : InputObjects) {
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auto ObjBuffer =
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ExitOnErr(errorOrToExpected(MemoryBuffer::getFile(InputObject)));
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ExitOnErr(J->addObjectFile(std::move(ObjBuffer)));
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}
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} else {
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auto M = ExitOnErr(parseExampleModule(TestMod, "test-module"));
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M.withModuleDo([](Module &MP) {
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outs() << "No input objects specified. Using demo module:\n"
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<< MP << "\n";
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});
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ExitOnErr(J->addIRModule(std::move(M)));
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}
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// Look up the JIT'd function, cast it to a function pointer, then call it.
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auto EntrySym = ExitOnErr(J->lookup(EntryPointName));
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auto *Entry = (int (*)())EntrySym.getAddress();
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int Result = Entry();
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outs() << "---Result---\n"
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<< EntryPointName << "() = " << Result << "\n";
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return 0;
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}
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