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60cc270b53
This adds partial support for weak functions to the CompileOnDemandLayer by modifying the addLogicalModule method to check for existing stub definitions before building a new stub for a weak function. This scheme is sufficient to support ODR definitions, but fails for general weak definitions if strong definition is encountered after the first weak definition. (A more extensive refactor will be required to fully support weak symbols). This patch does *not* add weak symbol support to RuntimeDyld: I hope to add that in the near future. llvm-svn: 277896
160 lines
5.3 KiB
C++
160 lines
5.3 KiB
C++
//===------ OrcLazyJIT.cpp - Basic Orc-based JIT for lazy execution -------===//
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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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#include "OrcLazyJIT.h"
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#include "llvm/ExecutionEngine/Orc/OrcABISupport.h"
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#include "llvm/Support/Debug.h"
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#include "llvm/Support/DynamicLibrary.h"
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#include <cstdio>
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#include <system_error>
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using namespace llvm;
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namespace {
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enum class DumpKind { NoDump, DumpFuncsToStdOut, DumpModsToStdErr,
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DumpModsToDisk };
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cl::opt<DumpKind> OrcDumpKind("orc-lazy-debug",
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cl::desc("Debug dumping for the orc-lazy JIT."),
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cl::init(DumpKind::NoDump),
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cl::values(
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clEnumValN(DumpKind::NoDump, "no-dump",
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"Don't dump anything."),
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clEnumValN(DumpKind::DumpFuncsToStdOut,
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"funcs-to-stdout",
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"Dump function names to stdout."),
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clEnumValN(DumpKind::DumpModsToStdErr,
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"mods-to-stderr",
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"Dump modules to stderr."),
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clEnumValN(DumpKind::DumpModsToDisk,
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"mods-to-disk",
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"Dump modules to the current "
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"working directory. (WARNING: "
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"will overwrite existing files)."),
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clEnumValEnd),
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cl::Hidden);
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cl::opt<bool> OrcInlineStubs("orc-lazy-inline-stubs",
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cl::desc("Try to inline stubs"),
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cl::init(true), cl::Hidden);
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}
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OrcLazyJIT::TransformFtor OrcLazyJIT::createDebugDumper() {
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switch (OrcDumpKind) {
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case DumpKind::NoDump:
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return [](std::unique_ptr<Module> M) { return M; };
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case DumpKind::DumpFuncsToStdOut:
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return [](std::unique_ptr<Module> M) {
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printf("[ ");
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for (const auto &F : *M) {
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if (F.isDeclaration())
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continue;
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if (F.hasName()) {
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std::string Name(F.getName());
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printf("%s ", Name.c_str());
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} else
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printf("<anon> ");
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}
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printf("]\n");
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return M;
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};
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case DumpKind::DumpModsToStdErr:
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return [](std::unique_ptr<Module> M) {
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dbgs() << "----- Module Start -----\n" << *M
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<< "----- Module End -----\n";
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return M;
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};
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case DumpKind::DumpModsToDisk:
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return [](std::unique_ptr<Module> M) {
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std::error_code EC;
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raw_fd_ostream Out(M->getModuleIdentifier() + ".ll", EC,
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sys::fs::F_Text);
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if (EC) {
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errs() << "Couldn't open " << M->getModuleIdentifier()
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<< " for dumping.\nError:" << EC.message() << "\n";
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exit(1);
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}
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Out << *M;
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return M;
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};
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}
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llvm_unreachable("Unknown DumpKind");
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}
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// Defined in lli.cpp.
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CodeGenOpt::Level getOptLevel();
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template <typename PtrTy>
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static PtrTy fromTargetAddress(JITTargetAddress Addr) {
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return reinterpret_cast<PtrTy>(static_cast<uintptr_t>(Addr));
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}
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int llvm::runOrcLazyJIT(std::vector<std::unique_ptr<Module>> Ms, int ArgC,
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char* ArgV[]) {
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// Add the program's symbols into the JIT's search space.
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if (sys::DynamicLibrary::LoadLibraryPermanently(nullptr)) {
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errs() << "Error loading program symbols.\n";
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return 1;
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}
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// Grab a target machine and try to build a factory function for the
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// target-specific Orc callback manager.
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EngineBuilder EB;
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EB.setOptLevel(getOptLevel());
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auto TM = std::unique_ptr<TargetMachine>(EB.selectTarget());
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Triple T(TM->getTargetTriple());
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auto CompileCallbackMgr = orc::createLocalCompileCallbackManager(T, 0);
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// If we couldn't build the factory function then there must not be a callback
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// manager for this target. Bail out.
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if (!CompileCallbackMgr) {
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errs() << "No callback manager available for target '"
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<< TM->getTargetTriple().str() << "'.\n";
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return 1;
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}
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auto IndirectStubsMgrBuilder = orc::createLocalIndirectStubsManagerBuilder(T);
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// If we couldn't build a stubs-manager-builder for this target then bail out.
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if (!IndirectStubsMgrBuilder) {
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errs() << "No indirect stubs manager available for target '"
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<< TM->getTargetTriple().str() << "'.\n";
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return 1;
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}
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// Everything looks good. Build the JIT.
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OrcLazyJIT J(std::move(TM), std::move(CompileCallbackMgr),
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std::move(IndirectStubsMgrBuilder),
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OrcInlineStubs);
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// Add the module, look up main and run it.
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J.addModuleSet(std::move(Ms));
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auto MainSym = J.findSymbol("main");
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if (!MainSym) {
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errs() << "Could not find main function.\n";
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return 1;
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}
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typedef int (*MainFnPtr)(int, char*[]);
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auto Main = fromTargetAddress<MainFnPtr>(MainSym.getAddress());
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return Main(ArgC, ArgV);
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}
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