1 //===------- SimpleRemoteEPC.cpp -- Simple remote executor control --------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include "llvm/ExecutionEngine/Orc/SimpleRemoteEPC.h" 10 #include "llvm/ExecutionEngine/Orc/EPCGenericJITLinkMemoryManager.h" 11 #include "llvm/ExecutionEngine/Orc/EPCGenericMemoryAccess.h" 12 #include "llvm/ExecutionEngine/Orc/Shared/OrcRTBridge.h" 13 #include "llvm/Support/FormatVariadic.h" 14 15 #define DEBUG_TYPE "orc" 16 17 namespace llvm { 18 namespace orc { 19 20 SimpleRemoteEPC::~SimpleRemoteEPC() { 21 #ifndef NDEBUG 22 std::lock_guard<std::mutex> Lock(SimpleRemoteEPCMutex); 23 assert(Disconnected && "Destroyed without disconnection"); 24 #endif // NDEBUG 25 } 26 27 Expected<tpctypes::DylibHandle> 28 SimpleRemoteEPC::loadDylib(const char *DylibPath) { 29 return DylibMgr->open(DylibPath, 0); 30 } 31 32 Expected<std::vector<tpctypes::LookupResult>> 33 SimpleRemoteEPC::lookupSymbols(ArrayRef<LookupRequest> Request) { 34 std::vector<tpctypes::LookupResult> Result; 35 36 for (auto &Element : Request) { 37 if (auto R = DylibMgr->lookup(Element.Handle, Element.Symbols)) { 38 Result.push_back({}); 39 Result.back().reserve(R->size()); 40 for (auto Addr : *R) 41 Result.back().push_back(Addr.getValue()); 42 } else 43 return R.takeError(); 44 } 45 return std::move(Result); 46 } 47 48 Expected<int32_t> SimpleRemoteEPC::runAsMain(JITTargetAddress MainFnAddr, 49 ArrayRef<std::string> Args) { 50 int64_t Result = 0; 51 if (auto Err = callSPSWrapper<rt::SPSRunAsMainSignature>( 52 RunAsMainAddr.getValue(), Result, ExecutorAddr(MainFnAddr), Args)) 53 return std::move(Err); 54 return Result; 55 } 56 57 void SimpleRemoteEPC::callWrapperAsync(SendResultFunction OnComplete, 58 JITTargetAddress WrapperFnAddr, 59 ArrayRef<char> ArgBuffer) { 60 uint64_t SeqNo; 61 { 62 std::lock_guard<std::mutex> Lock(SimpleRemoteEPCMutex); 63 SeqNo = getNextSeqNo(); 64 assert(!PendingCallWrapperResults.count(SeqNo) && "SeqNo already in use"); 65 PendingCallWrapperResults[SeqNo] = std::move(OnComplete); 66 } 67 68 if (auto Err = sendMessage(SimpleRemoteEPCOpcode::CallWrapper, SeqNo, 69 ExecutorAddr(WrapperFnAddr), ArgBuffer)) { 70 getExecutionSession().reportError(std::move(Err)); 71 } 72 } 73 74 Error SimpleRemoteEPC::disconnect() { 75 T->disconnect(); 76 std::unique_lock<std::mutex> Lock(SimpleRemoteEPCMutex); 77 DisconnectCV.wait(Lock, [this] { return Disconnected; }); 78 return std::move(DisconnectErr); 79 } 80 81 Expected<SimpleRemoteEPCTransportClient::HandleMessageAction> 82 SimpleRemoteEPC::handleMessage(SimpleRemoteEPCOpcode OpC, uint64_t SeqNo, 83 ExecutorAddr TagAddr, 84 SimpleRemoteEPCArgBytesVector ArgBytes) { 85 86 LLVM_DEBUG({ 87 dbgs() << "SimpleRemoteEPC::handleMessage: opc = "; 88 switch (OpC) { 89 case SimpleRemoteEPCOpcode::Setup: 90 dbgs() << "Setup"; 91 assert(SeqNo == 0 && "Non-zero SeqNo for Setup?"); 92 assert(TagAddr.getValue() == 0 && "Non-zero TagAddr for Setup?"); 93 break; 94 case SimpleRemoteEPCOpcode::Hangup: 95 dbgs() << "Hangup"; 96 assert(SeqNo == 0 && "Non-zero SeqNo for Hangup?"); 97 assert(TagAddr.getValue() == 0 && "Non-zero TagAddr for Hangup?"); 98 break; 99 case SimpleRemoteEPCOpcode::Result: 100 dbgs() << "Result"; 101 assert(TagAddr.getValue() == 0 && "Non-zero TagAddr for Result?"); 102 break; 103 case SimpleRemoteEPCOpcode::CallWrapper: 104 dbgs() << "CallWrapper"; 105 break; 106 } 107 dbgs() << ", seqno = " << SeqNo 108 << ", tag-addr = " << formatv("{0:x}", TagAddr.getValue()) 109 << ", arg-buffer = " << formatv("{0:x}", ArgBytes.size()) 110 << " bytes\n"; 111 }); 112 113 using UT = std::underlying_type_t<SimpleRemoteEPCOpcode>; 114 if (static_cast<UT>(OpC) > static_cast<UT>(SimpleRemoteEPCOpcode::LastOpC)) 115 return make_error<StringError>("Unexpected opcode", 116 inconvertibleErrorCode()); 117 118 switch (OpC) { 119 case SimpleRemoteEPCOpcode::Setup: 120 if (auto Err = handleSetup(SeqNo, TagAddr, std::move(ArgBytes))) 121 return std::move(Err); 122 break; 123 case SimpleRemoteEPCOpcode::Hangup: 124 return make_error<StringError>("Unexpected Hangup opcode", 125 inconvertibleErrorCode()); 126 case SimpleRemoteEPCOpcode::Result: 127 if (auto Err = handleResult(SeqNo, TagAddr, std::move(ArgBytes))) 128 return std::move(Err); 129 break; 130 case SimpleRemoteEPCOpcode::CallWrapper: 131 handleCallWrapper(SeqNo, TagAddr, std::move(ArgBytes)); 132 break; 133 } 134 return ContinueSession; 135 } 136 137 void SimpleRemoteEPC::handleDisconnect(Error Err) { 138 LLVM_DEBUG({ 139 dbgs() << "SimpleRemoteEPC::handleDisconnect: " 140 << (Err ? "failure" : "success") << "\n"; 141 }); 142 143 PendingCallWrapperResultsMap TmpPending; 144 145 { 146 std::lock_guard<std::mutex> Lock(SimpleRemoteEPCMutex); 147 std::swap(TmpPending, PendingCallWrapperResults); 148 } 149 150 for (auto &KV : TmpPending) 151 KV.second( 152 shared::WrapperFunctionResult::createOutOfBandError("disconnecting")); 153 154 std::lock_guard<std::mutex> Lock(SimpleRemoteEPCMutex); 155 DisconnectErr = joinErrors(std::move(DisconnectErr), std::move(Err)); 156 Disconnected = true; 157 DisconnectCV.notify_all(); 158 } 159 160 Expected<std::unique_ptr<jitlink::JITLinkMemoryManager>> 161 SimpleRemoteEPC::createMemoryManager() { 162 EPCGenericJITLinkMemoryManager::SymbolAddrs SAs; 163 if (auto Err = getBootstrapSymbols( 164 {{SAs.Allocator, rt::SimpleExecutorMemoryManagerInstanceName}, 165 {SAs.Reserve, rt::SimpleExecutorMemoryManagerReserveWrapperName}, 166 {SAs.Finalize, rt::SimpleExecutorMemoryManagerFinalizeWrapperName}, 167 {SAs.Deallocate, 168 rt::SimpleExecutorMemoryManagerDeallocateWrapperName}})) 169 return std::move(Err); 170 171 return std::make_unique<EPCGenericJITLinkMemoryManager>(*this, SAs); 172 } 173 174 Expected<std::unique_ptr<ExecutorProcessControl::MemoryAccess>> 175 SimpleRemoteEPC::createMemoryAccess() { 176 177 return nullptr; 178 } 179 180 Error SimpleRemoteEPC::sendMessage(SimpleRemoteEPCOpcode OpC, uint64_t SeqNo, 181 ExecutorAddr TagAddr, 182 ArrayRef<char> ArgBytes) { 183 assert(OpC != SimpleRemoteEPCOpcode::Setup && 184 "SimpleRemoteEPC sending Setup message? That's the wrong direction."); 185 186 LLVM_DEBUG({ 187 dbgs() << "SimpleRemoteEPC::sendMessage: opc = "; 188 switch (OpC) { 189 case SimpleRemoteEPCOpcode::Hangup: 190 dbgs() << "Hangup"; 191 assert(SeqNo == 0 && "Non-zero SeqNo for Hangup?"); 192 assert(TagAddr.getValue() == 0 && "Non-zero TagAddr for Hangup?"); 193 break; 194 case SimpleRemoteEPCOpcode::Result: 195 dbgs() << "Result"; 196 assert(TagAddr.getValue() == 0 && "Non-zero TagAddr for Result?"); 197 break; 198 case SimpleRemoteEPCOpcode::CallWrapper: 199 dbgs() << "CallWrapper"; 200 break; 201 default: 202 llvm_unreachable("Invalid opcode"); 203 } 204 dbgs() << ", seqno = " << SeqNo 205 << ", tag-addr = " << formatv("{0:x}", TagAddr.getValue()) 206 << ", arg-buffer = " << formatv("{0:x}", ArgBytes.size()) 207 << " bytes\n"; 208 }); 209 auto Err = T->sendMessage(OpC, SeqNo, TagAddr, ArgBytes); 210 LLVM_DEBUG({ 211 if (Err) 212 dbgs() << " \\--> SimpleRemoteEPC::sendMessage failed\n"; 213 }); 214 return Err; 215 } 216 217 Error SimpleRemoteEPC::handleSetup(uint64_t SeqNo, ExecutorAddr TagAddr, 218 SimpleRemoteEPCArgBytesVector ArgBytes) { 219 if (SeqNo != 0) 220 return make_error<StringError>("Setup packet SeqNo not zero", 221 inconvertibleErrorCode()); 222 223 if (TagAddr) 224 return make_error<StringError>("Setup packet TagAddr not zero", 225 inconvertibleErrorCode()); 226 227 std::lock_guard<std::mutex> Lock(SimpleRemoteEPCMutex); 228 auto I = PendingCallWrapperResults.find(0); 229 assert(PendingCallWrapperResults.size() == 1 && 230 I != PendingCallWrapperResults.end() && 231 "Setup message handler not connectly set up"); 232 auto SetupMsgHandler = std::move(I->second); 233 PendingCallWrapperResults.erase(I); 234 235 auto WFR = 236 shared::WrapperFunctionResult::copyFrom(ArgBytes.data(), ArgBytes.size()); 237 SetupMsgHandler(std::move(WFR)); 238 return Error::success(); 239 } 240 241 Error SimpleRemoteEPC::setup() { 242 using namespace SimpleRemoteEPCDefaultBootstrapSymbolNames; 243 244 std::promise<MSVCPExpected<SimpleRemoteEPCExecutorInfo>> EIP; 245 auto EIF = EIP.get_future(); 246 247 // Prepare a handler for the setup packet. 248 PendingCallWrapperResults[0] = 249 [&](shared::WrapperFunctionResult SetupMsgBytes) { 250 if (const char *ErrMsg = SetupMsgBytes.getOutOfBandError()) { 251 EIP.set_value( 252 make_error<StringError>(ErrMsg, inconvertibleErrorCode())); 253 return; 254 } 255 using SPSSerialize = 256 shared::SPSArgList<shared::SPSSimpleRemoteEPCExecutorInfo>; 257 shared::SPSInputBuffer IB(SetupMsgBytes.data(), SetupMsgBytes.size()); 258 SimpleRemoteEPCExecutorInfo EI; 259 if (SPSSerialize::deserialize(IB, EI)) 260 EIP.set_value(EI); 261 else 262 EIP.set_value(make_error<StringError>( 263 "Could not deserialize setup message", inconvertibleErrorCode())); 264 }; 265 266 // Start the transport. 267 if (auto Err = T->start()) 268 return Err; 269 270 // Wait for setup packet to arrive. 271 auto EI = EIF.get(); 272 if (!EI) { 273 T->disconnect(); 274 return EI.takeError(); 275 } 276 277 LLVM_DEBUG({ 278 dbgs() << "SimpleRemoteEPC received setup message:\n" 279 << " Triple: " << EI->TargetTriple << "\n" 280 << " Page size: " << EI->PageSize << "\n" 281 << " Bootstrap symbols:\n"; 282 for (const auto &KV : EI->BootstrapSymbols) 283 dbgs() << " " << KV.first() << ": " 284 << formatv("{0:x16}", KV.second.getValue()) << "\n"; 285 }); 286 TargetTriple = Triple(EI->TargetTriple); 287 PageSize = EI->PageSize; 288 BootstrapSymbols = std::move(EI->BootstrapSymbols); 289 290 if (auto Err = getBootstrapSymbols( 291 {{JDI.JITDispatchContext, ExecutorSessionObjectName}, 292 {JDI.JITDispatchFunction, DispatchFnName}, 293 {RunAsMainAddr, rt::RunAsMainWrapperName}})) 294 return Err; 295 296 if (auto DM = 297 EPCGenericDylibManager::CreateWithDefaultBootstrapSymbols(*this)) 298 DylibMgr = std::make_unique<EPCGenericDylibManager>(std::move(*DM)); 299 else 300 return DM.takeError(); 301 302 if (auto MemMgr = createMemoryManager()) { 303 OwnedMemMgr = std::move(*MemMgr); 304 this->MemMgr = OwnedMemMgr.get(); 305 } else 306 return MemMgr.takeError(); 307 308 if (auto MemAccess = createMemoryAccess()) { 309 OwnedMemAccess = std::move(*MemAccess); 310 this->MemAccess = OwnedMemAccess.get(); 311 } else 312 return MemAccess.takeError(); 313 314 return Error::success(); 315 } 316 317 Error SimpleRemoteEPC::handleResult(uint64_t SeqNo, ExecutorAddr TagAddr, 318 SimpleRemoteEPCArgBytesVector ArgBytes) { 319 SendResultFunction SendResult; 320 321 if (TagAddr) 322 return make_error<StringError>("Unexpected TagAddr in result message", 323 inconvertibleErrorCode()); 324 325 { 326 std::lock_guard<std::mutex> Lock(SimpleRemoteEPCMutex); 327 auto I = PendingCallWrapperResults.find(SeqNo); 328 if (I == PendingCallWrapperResults.end()) 329 return make_error<StringError>("No call for sequence number " + 330 Twine(SeqNo), 331 inconvertibleErrorCode()); 332 SendResult = std::move(I->second); 333 PendingCallWrapperResults.erase(I); 334 releaseSeqNo(SeqNo); 335 } 336 337 auto WFR = 338 shared::WrapperFunctionResult::copyFrom(ArgBytes.data(), ArgBytes.size()); 339 SendResult(std::move(WFR)); 340 return Error::success(); 341 } 342 343 void SimpleRemoteEPC::handleCallWrapper( 344 uint64_t RemoteSeqNo, ExecutorAddr TagAddr, 345 SimpleRemoteEPCArgBytesVector ArgBytes) { 346 assert(ES && "No ExecutionSession attached"); 347 ES->runJITDispatchHandler( 348 [this, RemoteSeqNo](shared::WrapperFunctionResult WFR) { 349 if (auto Err = sendMessage(SimpleRemoteEPCOpcode::Result, RemoteSeqNo, 350 ExecutorAddr(), {WFR.data(), WFR.size()})) 351 getExecutionSession().reportError(std::move(Err)); 352 }, 353 TagAddr.getValue(), ArgBytes); 354 } 355 356 } // end namespace orc 357 } // end namespace llvm 358