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git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@293511 91177308-0d34-0410-b5e6-96231b3b80d8
754 lines
28 KiB
C++
754 lines
28 KiB
C++
//===---- OrcRemoteTargetClient.h - Orc Remote-target Client ----*- 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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// This file defines the OrcRemoteTargetClient class and helpers. This class
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// can be used to communicate over an RawByteChannel with an
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// OrcRemoteTargetServer instance to support remote-JITing.
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_EXECUTIONENGINE_ORC_ORCREMOTETARGETCLIENT_H
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#define LLVM_EXECUTIONENGINE_ORC_ORCREMOTETARGETCLIENT_H
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#include "IndirectionUtils.h"
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#include "OrcRemoteTargetRPCAPI.h"
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#include "llvm/ExecutionEngine/RuntimeDyld.h"
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#include <system_error>
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#define DEBUG_TYPE "orc-remote"
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namespace llvm {
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namespace orc {
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namespace remote {
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/// This class provides utilities (including memory manager, indirect stubs
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/// manager, and compile callback manager types) that support remote JITing
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/// in ORC.
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///
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/// Each of the utility classes talks to a JIT server (an instance of the
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/// OrcRemoteTargetServer class) via an RPC system (see RPCUtils.h) to carry out
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/// its actions.
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template <typename ChannelT>
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class OrcRemoteTargetClient : public OrcRemoteTargetRPCAPI {
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public:
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/// Remote memory manager.
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class RCMemoryManager : public RuntimeDyld::MemoryManager {
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public:
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RCMemoryManager(OrcRemoteTargetClient &Client, ResourceIdMgr::ResourceId Id)
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: Client(Client), Id(Id) {
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DEBUG(dbgs() << "Created remote allocator " << Id << "\n");
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}
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RCMemoryManager(const RCMemoryManager &) = delete;
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RCMemoryManager &operator=(const RCMemoryManager &) = delete;
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RCMemoryManager(RCMemoryManager &&) = default;
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RCMemoryManager &operator=(RCMemoryManager &&) = default;
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~RCMemoryManager() override {
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Client.destroyRemoteAllocator(Id);
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DEBUG(dbgs() << "Destroyed remote allocator " << Id << "\n");
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}
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uint8_t *allocateCodeSection(uintptr_t Size, unsigned Alignment,
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unsigned SectionID,
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StringRef SectionName) override {
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Unmapped.back().CodeAllocs.emplace_back(Size, Alignment);
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uint8_t *Alloc = reinterpret_cast<uint8_t *>(
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Unmapped.back().CodeAllocs.back().getLocalAddress());
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DEBUG(dbgs() << "Allocator " << Id << " allocated code for "
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<< SectionName << ": " << Alloc << " (" << Size
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<< " bytes, alignment " << Alignment << ")\n");
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return Alloc;
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}
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uint8_t *allocateDataSection(uintptr_t Size, unsigned Alignment,
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unsigned SectionID, StringRef SectionName,
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bool IsReadOnly) override {
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if (IsReadOnly) {
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Unmapped.back().RODataAllocs.emplace_back(Size, Alignment);
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uint8_t *Alloc = reinterpret_cast<uint8_t *>(
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Unmapped.back().RODataAllocs.back().getLocalAddress());
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DEBUG(dbgs() << "Allocator " << Id << " allocated ro-data for "
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<< SectionName << ": " << Alloc << " (" << Size
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<< " bytes, alignment " << Alignment << ")\n");
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return Alloc;
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} // else...
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Unmapped.back().RWDataAllocs.emplace_back(Size, Alignment);
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uint8_t *Alloc = reinterpret_cast<uint8_t *>(
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Unmapped.back().RWDataAllocs.back().getLocalAddress());
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DEBUG(dbgs() << "Allocator " << Id << " allocated rw-data for "
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<< SectionName << ": " << Alloc << " (" << Size
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<< " bytes, alignment " << Alignment << ")\n");
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return Alloc;
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}
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void reserveAllocationSpace(uintptr_t CodeSize, uint32_t CodeAlign,
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uintptr_t RODataSize, uint32_t RODataAlign,
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uintptr_t RWDataSize,
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uint32_t RWDataAlign) override {
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Unmapped.push_back(ObjectAllocs());
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DEBUG(dbgs() << "Allocator " << Id << " reserved:\n");
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if (CodeSize != 0) {
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if (auto AddrOrErr = Client.reserveMem(Id, CodeSize, CodeAlign))
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Unmapped.back().RemoteCodeAddr = *AddrOrErr;
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else {
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// FIXME; Add error to poll.
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assert(!AddrOrErr.takeError() && "Failed reserving remote memory.");
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}
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DEBUG(dbgs() << " code: "
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<< format("0x%016x", Unmapped.back().RemoteCodeAddr)
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<< " (" << CodeSize << " bytes, alignment " << CodeAlign
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<< ")\n");
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}
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if (RODataSize != 0) {
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if (auto AddrOrErr = Client.reserveMem(Id, RODataSize, RODataAlign))
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Unmapped.back().RemoteRODataAddr = *AddrOrErr;
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else {
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// FIXME; Add error to poll.
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assert(!AddrOrErr.takeError() && "Failed reserving remote memory.");
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}
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DEBUG(dbgs() << " ro-data: "
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<< format("0x%016x", Unmapped.back().RemoteRODataAddr)
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<< " (" << RODataSize << " bytes, alignment "
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<< RODataAlign << ")\n");
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}
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if (RWDataSize != 0) {
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if (auto AddrOrErr = Client.reserveMem(Id, RWDataSize, RWDataAlign))
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Unmapped.back().RemoteRWDataAddr = *AddrOrErr;
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else {
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// FIXME; Add error to poll.
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assert(!AddrOrErr.takeError() && "Failed reserving remote memory.");
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}
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DEBUG(dbgs() << " rw-data: "
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<< format("0x%016x", Unmapped.back().RemoteRWDataAddr)
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<< " (" << RWDataSize << " bytes, alignment "
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<< RWDataAlign << ")\n");
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}
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}
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bool needsToReserveAllocationSpace() override { return true; }
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void registerEHFrames(uint8_t *Addr, uint64_t LoadAddr,
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size_t Size) override {
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UnfinalizedEHFrames.push_back(
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std::make_pair(LoadAddr, static_cast<uint32_t>(Size)));
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}
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void deregisterEHFrames(uint8_t *Addr, uint64_t LoadAddr,
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size_t Size) override {
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auto Err = Client.deregisterEHFrames(LoadAddr, Size);
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// FIXME: Add error poll.
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assert(!Err && "Failed to register remote EH frames.");
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(void)Err;
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}
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void notifyObjectLoaded(RuntimeDyld &Dyld,
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const object::ObjectFile &Obj) override {
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DEBUG(dbgs() << "Allocator " << Id << " applied mappings:\n");
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for (auto &ObjAllocs : Unmapped) {
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{
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JITTargetAddress NextCodeAddr = ObjAllocs.RemoteCodeAddr;
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for (auto &Alloc : ObjAllocs.CodeAllocs) {
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NextCodeAddr = alignTo(NextCodeAddr, Alloc.getAlign());
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Dyld.mapSectionAddress(Alloc.getLocalAddress(), NextCodeAddr);
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DEBUG(dbgs() << " code: "
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<< static_cast<void *>(Alloc.getLocalAddress())
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<< " -> " << format("0x%016x", NextCodeAddr) << "\n");
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Alloc.setRemoteAddress(NextCodeAddr);
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NextCodeAddr += Alloc.getSize();
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}
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}
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{
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JITTargetAddress NextRODataAddr = ObjAllocs.RemoteRODataAddr;
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for (auto &Alloc : ObjAllocs.RODataAllocs) {
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NextRODataAddr = alignTo(NextRODataAddr, Alloc.getAlign());
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Dyld.mapSectionAddress(Alloc.getLocalAddress(), NextRODataAddr);
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DEBUG(dbgs() << " ro-data: "
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<< static_cast<void *>(Alloc.getLocalAddress())
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<< " -> " << format("0x%016x", NextRODataAddr)
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<< "\n");
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Alloc.setRemoteAddress(NextRODataAddr);
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NextRODataAddr += Alloc.getSize();
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}
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}
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{
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JITTargetAddress NextRWDataAddr = ObjAllocs.RemoteRWDataAddr;
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for (auto &Alloc : ObjAllocs.RWDataAllocs) {
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NextRWDataAddr = alignTo(NextRWDataAddr, Alloc.getAlign());
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Dyld.mapSectionAddress(Alloc.getLocalAddress(), NextRWDataAddr);
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DEBUG(dbgs() << " rw-data: "
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<< static_cast<void *>(Alloc.getLocalAddress())
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<< " -> " << format("0x%016x", NextRWDataAddr)
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<< "\n");
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Alloc.setRemoteAddress(NextRWDataAddr);
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NextRWDataAddr += Alloc.getSize();
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}
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}
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Unfinalized.push_back(std::move(ObjAllocs));
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}
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Unmapped.clear();
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}
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bool finalizeMemory(std::string *ErrMsg = nullptr) override {
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DEBUG(dbgs() << "Allocator " << Id << " finalizing:\n");
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for (auto &ObjAllocs : Unfinalized) {
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for (auto &Alloc : ObjAllocs.CodeAllocs) {
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DEBUG(dbgs() << " copying code: "
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<< static_cast<void *>(Alloc.getLocalAddress()) << " -> "
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<< format("0x%016x", Alloc.getRemoteAddress()) << " ("
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<< Alloc.getSize() << " bytes)\n");
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if (auto Err =
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Client.writeMem(Alloc.getRemoteAddress(),
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Alloc.getLocalAddress(), Alloc.getSize())) {
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// FIXME: Replace this once finalizeMemory can return an Error.
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handleAllErrors(std::move(Err), [&](ErrorInfoBase &EIB) {
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if (ErrMsg) {
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raw_string_ostream ErrOut(*ErrMsg);
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EIB.log(ErrOut);
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}
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});
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return true;
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}
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}
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if (ObjAllocs.RemoteCodeAddr) {
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DEBUG(dbgs() << " setting R-X permissions on code block: "
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<< format("0x%016x", ObjAllocs.RemoteCodeAddr) << "\n");
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if (auto Err = Client.setProtections(Id, ObjAllocs.RemoteCodeAddr,
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sys::Memory::MF_READ |
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sys::Memory::MF_EXEC)) {
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// FIXME: Replace this once finalizeMemory can return an Error.
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handleAllErrors(std::move(Err), [&](ErrorInfoBase &EIB) {
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if (ErrMsg) {
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raw_string_ostream ErrOut(*ErrMsg);
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EIB.log(ErrOut);
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}
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});
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return true;
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}
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}
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for (auto &Alloc : ObjAllocs.RODataAllocs) {
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DEBUG(dbgs() << " copying ro-data: "
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<< static_cast<void *>(Alloc.getLocalAddress()) << " -> "
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<< format("0x%016x", Alloc.getRemoteAddress()) << " ("
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<< Alloc.getSize() << " bytes)\n");
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if (auto Err =
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Client.writeMem(Alloc.getRemoteAddress(),
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Alloc.getLocalAddress(), Alloc.getSize())) {
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// FIXME: Replace this once finalizeMemory can return an Error.
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handleAllErrors(std::move(Err), [&](ErrorInfoBase &EIB) {
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if (ErrMsg) {
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raw_string_ostream ErrOut(*ErrMsg);
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EIB.log(ErrOut);
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}
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});
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return true;
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}
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}
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if (ObjAllocs.RemoteRODataAddr) {
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DEBUG(dbgs() << " setting R-- permissions on ro-data block: "
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<< format("0x%016x", ObjAllocs.RemoteRODataAddr)
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<< "\n");
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if (auto Err = Client.setProtections(Id, ObjAllocs.RemoteRODataAddr,
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sys::Memory::MF_READ)) {
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// FIXME: Replace this once finalizeMemory can return an Error.
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handleAllErrors(std::move(Err), [&](ErrorInfoBase &EIB) {
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if (ErrMsg) {
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raw_string_ostream ErrOut(*ErrMsg);
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EIB.log(ErrOut);
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}
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});
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return false;
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}
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}
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for (auto &Alloc : ObjAllocs.RWDataAllocs) {
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DEBUG(dbgs() << " copying rw-data: "
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<< static_cast<void *>(Alloc.getLocalAddress()) << " -> "
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<< format("0x%016x", Alloc.getRemoteAddress()) << " ("
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<< Alloc.getSize() << " bytes)\n");
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if (auto Err =
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Client.writeMem(Alloc.getRemoteAddress(),
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Alloc.getLocalAddress(), Alloc.getSize())) {
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// FIXME: Replace this once finalizeMemory can return an Error.
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handleAllErrors(std::move(Err), [&](ErrorInfoBase &EIB) {
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if (ErrMsg) {
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raw_string_ostream ErrOut(*ErrMsg);
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EIB.log(ErrOut);
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}
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});
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return false;
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}
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}
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if (ObjAllocs.RemoteRWDataAddr) {
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DEBUG(dbgs() << " setting RW- permissions on rw-data block: "
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<< format("0x%016x", ObjAllocs.RemoteRWDataAddr)
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<< "\n");
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if (auto Err = Client.setProtections(Id, ObjAllocs.RemoteRWDataAddr,
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sys::Memory::MF_READ |
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sys::Memory::MF_WRITE)) {
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// FIXME: Replace this once finalizeMemory can return an Error.
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handleAllErrors(std::move(Err), [&](ErrorInfoBase &EIB) {
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if (ErrMsg) {
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raw_string_ostream ErrOut(*ErrMsg);
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EIB.log(ErrOut);
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}
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});
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return false;
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}
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}
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}
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Unfinalized.clear();
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for (auto &EHFrame : UnfinalizedEHFrames) {
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if (auto Err = Client.registerEHFrames(EHFrame.first, EHFrame.second)) {
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// FIXME: Replace this once finalizeMemory can return an Error.
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handleAllErrors(std::move(Err), [&](ErrorInfoBase &EIB) {
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if (ErrMsg) {
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raw_string_ostream ErrOut(*ErrMsg);
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EIB.log(ErrOut);
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}
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});
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return false;
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}
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}
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UnfinalizedEHFrames.clear();
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return false;
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}
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private:
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class Alloc {
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public:
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Alloc(uint64_t Size, unsigned Align)
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: Size(Size), Align(Align), Contents(new char[Size + Align - 1]) {}
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Alloc(const Alloc &) = delete;
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Alloc &operator=(const Alloc &) = delete;
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Alloc(Alloc &&) = default;
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Alloc &operator=(Alloc &&) = default;
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uint64_t getSize() const { return Size; }
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unsigned getAlign() const { return Align; }
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char *getLocalAddress() const {
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uintptr_t LocalAddr = reinterpret_cast<uintptr_t>(Contents.get());
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LocalAddr = alignTo(LocalAddr, Align);
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return reinterpret_cast<char *>(LocalAddr);
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}
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void setRemoteAddress(JITTargetAddress RemoteAddr) {
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this->RemoteAddr = RemoteAddr;
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}
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JITTargetAddress getRemoteAddress() const { return RemoteAddr; }
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private:
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uint64_t Size;
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unsigned Align;
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std::unique_ptr<char[]> Contents;
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JITTargetAddress RemoteAddr = 0;
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};
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struct ObjectAllocs {
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ObjectAllocs() = default;
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ObjectAllocs(const ObjectAllocs &) = delete;
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ObjectAllocs &operator=(const ObjectAllocs &) = delete;
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ObjectAllocs(ObjectAllocs &&) = default;
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ObjectAllocs &operator=(ObjectAllocs &&) = default;
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JITTargetAddress RemoteCodeAddr = 0;
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JITTargetAddress RemoteRODataAddr = 0;
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JITTargetAddress RemoteRWDataAddr = 0;
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std::vector<Alloc> CodeAllocs, RODataAllocs, RWDataAllocs;
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};
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OrcRemoteTargetClient &Client;
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ResourceIdMgr::ResourceId Id;
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std::vector<ObjectAllocs> Unmapped;
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std::vector<ObjectAllocs> Unfinalized;
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std::vector<std::pair<uint64_t, uint32_t>> UnfinalizedEHFrames;
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};
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/// Remote indirect stubs manager.
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class RCIndirectStubsManager : public IndirectStubsManager {
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public:
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RCIndirectStubsManager(OrcRemoteTargetClient &Remote,
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ResourceIdMgr::ResourceId Id)
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: Remote(Remote), Id(Id) {}
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~RCIndirectStubsManager() override {
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if (auto Err = Remote.destroyIndirectStubsManager(Id)) {
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// FIXME: Thread this error back to clients.
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consumeError(std::move(Err));
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}
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}
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Error createStub(StringRef StubName, JITTargetAddress StubAddr,
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JITSymbolFlags StubFlags) override {
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if (auto Err = reserveStubs(1))
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return Err;
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return createStubInternal(StubName, StubAddr, StubFlags);
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}
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Error createStubs(const StubInitsMap &StubInits) override {
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if (auto Err = reserveStubs(StubInits.size()))
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return Err;
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for (auto &Entry : StubInits)
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if (auto Err = createStubInternal(Entry.first(), Entry.second.first,
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Entry.second.second))
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return Err;
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return Error::success();
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}
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JITSymbol findStub(StringRef Name, bool ExportedStubsOnly) override {
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auto I = StubIndexes.find(Name);
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if (I == StubIndexes.end())
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return nullptr;
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auto Key = I->second.first;
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auto Flags = I->second.second;
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auto StubSymbol = JITSymbol(getStubAddr(Key), Flags);
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if (ExportedStubsOnly && !StubSymbol.getFlags().isExported())
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return nullptr;
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return StubSymbol;
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}
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JITSymbol findPointer(StringRef Name) override {
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auto I = StubIndexes.find(Name);
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if (I == StubIndexes.end())
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return nullptr;
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auto Key = I->second.first;
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auto Flags = I->second.second;
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return JITSymbol(getPtrAddr(Key), Flags);
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}
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Error updatePointer(StringRef Name, JITTargetAddress NewAddr) override {
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auto I = StubIndexes.find(Name);
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assert(I != StubIndexes.end() && "No stub pointer for symbol");
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auto Key = I->second.first;
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return Remote.writePointer(getPtrAddr(Key), NewAddr);
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}
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private:
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struct RemoteIndirectStubsInfo {
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JITTargetAddress StubBase;
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JITTargetAddress PtrBase;
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unsigned NumStubs;
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};
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OrcRemoteTargetClient &Remote;
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ResourceIdMgr::ResourceId Id;
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std::vector<RemoteIndirectStubsInfo> RemoteIndirectStubsInfos;
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typedef std::pair<uint16_t, uint16_t> StubKey;
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std::vector<StubKey> FreeStubs;
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StringMap<std::pair<StubKey, JITSymbolFlags>> StubIndexes;
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Error reserveStubs(unsigned NumStubs) {
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if (NumStubs <= FreeStubs.size())
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return Error::success();
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unsigned NewStubsRequired = NumStubs - FreeStubs.size();
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JITTargetAddress StubBase;
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JITTargetAddress PtrBase;
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unsigned NumStubsEmitted;
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if (auto StubInfoOrErr = Remote.emitIndirectStubs(Id, NewStubsRequired))
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std::tie(StubBase, PtrBase, NumStubsEmitted) = *StubInfoOrErr;
|
|
else
|
|
return StubInfoOrErr.takeError();
|
|
|
|
unsigned NewBlockId = RemoteIndirectStubsInfos.size();
|
|
RemoteIndirectStubsInfos.push_back({StubBase, PtrBase, NumStubsEmitted});
|
|
|
|
for (unsigned I = 0; I < NumStubsEmitted; ++I)
|
|
FreeStubs.push_back(std::make_pair(NewBlockId, I));
|
|
|
|
return Error::success();
|
|
}
|
|
|
|
Error createStubInternal(StringRef StubName, JITTargetAddress InitAddr,
|
|
JITSymbolFlags StubFlags) {
|
|
auto Key = FreeStubs.back();
|
|
FreeStubs.pop_back();
|
|
StubIndexes[StubName] = std::make_pair(Key, StubFlags);
|
|
return Remote.writePointer(getPtrAddr(Key), InitAddr);
|
|
}
|
|
|
|
JITTargetAddress getStubAddr(StubKey K) {
|
|
assert(RemoteIndirectStubsInfos[K.first].StubBase != 0 &&
|
|
"Missing stub address");
|
|
return RemoteIndirectStubsInfos[K.first].StubBase +
|
|
K.second * Remote.getIndirectStubSize();
|
|
}
|
|
|
|
JITTargetAddress getPtrAddr(StubKey K) {
|
|
assert(RemoteIndirectStubsInfos[K.first].PtrBase != 0 &&
|
|
"Missing pointer address");
|
|
return RemoteIndirectStubsInfos[K.first].PtrBase +
|
|
K.second * Remote.getPointerSize();
|
|
}
|
|
};
|
|
|
|
/// Remote compile callback manager.
|
|
class RCCompileCallbackManager : public JITCompileCallbackManager {
|
|
public:
|
|
RCCompileCallbackManager(JITTargetAddress ErrorHandlerAddress,
|
|
OrcRemoteTargetClient &Remote)
|
|
: JITCompileCallbackManager(ErrorHandlerAddress), Remote(Remote) {}
|
|
|
|
private:
|
|
void grow() override {
|
|
JITTargetAddress BlockAddr = 0;
|
|
uint32_t NumTrampolines = 0;
|
|
if (auto TrampolineInfoOrErr = Remote.emitTrampolineBlock())
|
|
std::tie(BlockAddr, NumTrampolines) = *TrampolineInfoOrErr;
|
|
else {
|
|
// FIXME: Return error.
|
|
llvm_unreachable("Failed to create trampolines");
|
|
}
|
|
|
|
uint32_t TrampolineSize = Remote.getTrampolineSize();
|
|
for (unsigned I = 0; I < NumTrampolines; ++I)
|
|
this->AvailableTrampolines.push_back(BlockAddr + (I * TrampolineSize));
|
|
}
|
|
|
|
OrcRemoteTargetClient &Remote;
|
|
};
|
|
|
|
/// Create an OrcRemoteTargetClient.
|
|
/// Channel is the ChannelT instance to communicate on. It is assumed that
|
|
/// the channel is ready to be read from and written to.
|
|
static Expected<std::unique_ptr<OrcRemoteTargetClient>>
|
|
Create(ChannelT &Channel) {
|
|
Error Err = Error::success();
|
|
std::unique_ptr<OrcRemoteTargetClient> Client(
|
|
new OrcRemoteTargetClient(Channel, Err));
|
|
if (Err)
|
|
return std::move(Err);
|
|
return std::move(Client);
|
|
}
|
|
|
|
/// Call the int(void) function at the given address in the target and return
|
|
/// its result.
|
|
Expected<int> callIntVoid(JITTargetAddress Addr) {
|
|
DEBUG(dbgs() << "Calling int(*)(void) " << format("0x%016x", Addr) << "\n");
|
|
return callB<CallIntVoid>(Addr);
|
|
}
|
|
|
|
/// Call the int(int, char*[]) function at the given address in the target and
|
|
/// return its result.
|
|
Expected<int> callMain(JITTargetAddress Addr,
|
|
const std::vector<std::string> &Args) {
|
|
DEBUG(dbgs() << "Calling int(*)(int, char*[]) " << format("0x%016x", Addr)
|
|
<< "\n");
|
|
return callB<CallMain>(Addr, Args);
|
|
}
|
|
|
|
/// Call the void() function at the given address in the target and wait for
|
|
/// it to finish.
|
|
Error callVoidVoid(JITTargetAddress Addr) {
|
|
DEBUG(dbgs() << "Calling void(*)(void) " << format("0x%016x", Addr)
|
|
<< "\n");
|
|
return callB<CallVoidVoid>(Addr);
|
|
}
|
|
|
|
/// Create an RCMemoryManager which will allocate its memory on the remote
|
|
/// target.
|
|
Error createRemoteMemoryManager(std::unique_ptr<RCMemoryManager> &MM) {
|
|
assert(!MM && "MemoryManager should be null before creation.");
|
|
|
|
auto Id = AllocatorIds.getNext();
|
|
if (auto Err = callB<CreateRemoteAllocator>(Id))
|
|
return Err;
|
|
MM = llvm::make_unique<RCMemoryManager>(*this, Id);
|
|
return Error::success();
|
|
}
|
|
|
|
/// Create an RCIndirectStubsManager that will allocate stubs on the remote
|
|
/// target.
|
|
Error createIndirectStubsManager(std::unique_ptr<RCIndirectStubsManager> &I) {
|
|
assert(!I && "Indirect stubs manager should be null before creation.");
|
|
auto Id = IndirectStubOwnerIds.getNext();
|
|
if (auto Err = callB<CreateIndirectStubsOwner>(Id))
|
|
return Err;
|
|
I = llvm::make_unique<RCIndirectStubsManager>(*this, Id);
|
|
return Error::success();
|
|
}
|
|
|
|
Expected<RCCompileCallbackManager &>
|
|
enableCompileCallbacks(JITTargetAddress ErrorHandlerAddress) {
|
|
// Check for an 'out-of-band' error, e.g. from an MM destructor.
|
|
if (ExistingError)
|
|
return std::move(ExistingError);
|
|
|
|
// Emit the resolver block on the JIT server.
|
|
if (auto Err = callB<EmitResolverBlock>())
|
|
return std::move(Err);
|
|
|
|
// Create the callback manager.
|
|
CallbackManager.emplace(ErrorHandlerAddress, *this);
|
|
RCCompileCallbackManager &Mgr = *CallbackManager;
|
|
return Mgr;
|
|
}
|
|
|
|
/// Search for symbols in the remote process. Note: This should be used by
|
|
/// symbol resolvers *after* they've searched the local symbol table in the
|
|
/// JIT stack.
|
|
Expected<JITTargetAddress> getSymbolAddress(StringRef Name) {
|
|
// Check for an 'out-of-band' error, e.g. from an MM destructor.
|
|
if (ExistingError)
|
|
return std::move(ExistingError);
|
|
|
|
return callB<GetSymbolAddress>(Name);
|
|
}
|
|
|
|
/// Get the triple for the remote target.
|
|
const std::string &getTargetTriple() const { return RemoteTargetTriple; }
|
|
|
|
Error terminateSession() { return callB<TerminateSession>(); }
|
|
|
|
private:
|
|
OrcRemoteTargetClient(ChannelT &Channel, Error &Err)
|
|
: OrcRemoteTargetRPCAPI(Channel) {
|
|
ErrorAsOutParameter EAO(&Err);
|
|
|
|
addHandler<RequestCompile>(
|
|
[this](JITTargetAddress Addr) -> JITTargetAddress {
|
|
if (CallbackManager)
|
|
return CallbackManager->executeCompileCallback(Addr);
|
|
return 0;
|
|
});
|
|
|
|
if (auto RIOrErr = callB<GetRemoteInfo>()) {
|
|
std::tie(RemoteTargetTriple, RemotePointerSize, RemotePageSize,
|
|
RemoteTrampolineSize, RemoteIndirectStubSize) = *RIOrErr;
|
|
Err = Error::success();
|
|
} else {
|
|
Err = joinErrors(RIOrErr.takeError(), std::move(ExistingError));
|
|
}
|
|
}
|
|
|
|
Error deregisterEHFrames(JITTargetAddress Addr, uint32_t Size) {
|
|
return callB<RegisterEHFrames>(Addr, Size);
|
|
}
|
|
|
|
void destroyRemoteAllocator(ResourceIdMgr::ResourceId Id) {
|
|
if (auto Err = callB<DestroyRemoteAllocator>(Id)) {
|
|
// FIXME: This will be triggered by a removeModuleSet call: Propagate
|
|
// error return up through that.
|
|
llvm_unreachable("Failed to destroy remote allocator.");
|
|
AllocatorIds.release(Id);
|
|
}
|
|
}
|
|
|
|
Error destroyIndirectStubsManager(ResourceIdMgr::ResourceId Id) {
|
|
IndirectStubOwnerIds.release(Id);
|
|
return callB<DestroyIndirectStubsOwner>(Id);
|
|
}
|
|
|
|
Expected<std::tuple<JITTargetAddress, JITTargetAddress, uint32_t>>
|
|
emitIndirectStubs(ResourceIdMgr::ResourceId Id, uint32_t NumStubsRequired) {
|
|
return callB<EmitIndirectStubs>(Id, NumStubsRequired);
|
|
}
|
|
|
|
Expected<std::tuple<JITTargetAddress, uint32_t>> emitTrampolineBlock() {
|
|
// Check for an 'out-of-band' error, e.g. from an MM destructor.
|
|
if (ExistingError)
|
|
return std::move(ExistingError);
|
|
|
|
return callB<EmitTrampolineBlock>();
|
|
}
|
|
|
|
uint32_t getIndirectStubSize() const { return RemoteIndirectStubSize; }
|
|
uint32_t getPageSize() const { return RemotePageSize; }
|
|
uint32_t getPointerSize() const { return RemotePointerSize; }
|
|
|
|
uint32_t getTrampolineSize() const { return RemoteTrampolineSize; }
|
|
|
|
Expected<std::vector<char>> readMem(char *Dst, JITTargetAddress Src,
|
|
uint64_t Size) {
|
|
// Check for an 'out-of-band' error, e.g. from an MM destructor.
|
|
if (ExistingError)
|
|
return std::move(ExistingError);
|
|
|
|
return callB<ReadMem>(Src, Size);
|
|
}
|
|
|
|
Error registerEHFrames(JITTargetAddress &RAddr, uint32_t Size) {
|
|
return callB<RegisterEHFrames>(RAddr, Size);
|
|
}
|
|
|
|
Expected<JITTargetAddress> reserveMem(ResourceIdMgr::ResourceId Id,
|
|
uint64_t Size, uint32_t Align) {
|
|
|
|
// Check for an 'out-of-band' error, e.g. from an MM destructor.
|
|
if (ExistingError)
|
|
return std::move(ExistingError);
|
|
|
|
return callB<ReserveMem>(Id, Size, Align);
|
|
}
|
|
|
|
Error setProtections(ResourceIdMgr::ResourceId Id,
|
|
JITTargetAddress RemoteSegAddr, unsigned ProtFlags) {
|
|
return callB<SetProtections>(Id, RemoteSegAddr, ProtFlags);
|
|
}
|
|
|
|
Error writeMem(JITTargetAddress Addr, const char *Src, uint64_t Size) {
|
|
// Check for an 'out-of-band' error, e.g. from an MM destructor.
|
|
if (ExistingError)
|
|
return std::move(ExistingError);
|
|
|
|
return callB<WriteMem>(DirectBufferWriter(Src, Addr, Size));
|
|
}
|
|
|
|
Error writePointer(JITTargetAddress Addr, JITTargetAddress PtrVal) {
|
|
// Check for an 'out-of-band' error, e.g. from an MM destructor.
|
|
if (ExistingError)
|
|
return std::move(ExistingError);
|
|
|
|
return callB<WritePtr>(Addr, PtrVal);
|
|
}
|
|
|
|
static Error doNothing() { return Error::success(); }
|
|
|
|
Error ExistingError = Error::success();
|
|
std::string RemoteTargetTriple;
|
|
uint32_t RemotePointerSize = 0;
|
|
uint32_t RemotePageSize = 0;
|
|
uint32_t RemoteTrampolineSize = 0;
|
|
uint32_t RemoteIndirectStubSize = 0;
|
|
ResourceIdMgr AllocatorIds, IndirectStubOwnerIds;
|
|
Optional<RCCompileCallbackManager> CallbackManager;
|
|
};
|
|
|
|
} // end namespace remote
|
|
} // end namespace orc
|
|
} // end namespace llvm
|
|
|
|
#undef DEBUG_TYPE
|
|
|
|
#endif // LLVM_EXECUTIONENGINE_ORC_ORCREMOTETARGETCLIENT_H
|