//===--- CodeGenHwModes.cpp -----------------------------------------------===// // // The LLVM Compiler Infrastructure // // This file is distributed under the University of Illinois Open Source // License. See LICENSE.TXT for details. // //===----------------------------------------------------------------------===// // Classes to parse and store HW mode information for instruction selection //===----------------------------------------------------------------------===// #include "CodeGenHwModes.h" #include "llvm/Support/Debug.h" #include "llvm/Support/raw_ostream.h" #include "llvm/TableGen/Error.h" #include "llvm/TableGen/Record.h" using namespace llvm; StringRef CodeGenHwModes::DefaultModeName = "DefaultMode"; HwMode::HwMode(Record *R) { Name = R->getName(); Features = R->getValueAsString("Features"); } LLVM_DUMP_METHOD void HwMode::dump() const { dbgs() << Name << ": " << Features << '\n'; } HwModeSelect::HwModeSelect(Record *R, CodeGenHwModes &CGH) { std::vector Modes = R->getValueAsListOfDefs("Modes"); std::vector Objects = R->getValueAsListOfDefs("Objects"); if (Modes.size() != Objects.size()) { PrintError(R->getLoc(), "in record " + R->getName() + " derived from HwModeSelect: the lists Modes and Objects should " "have the same size"); report_fatal_error("error in target description."); } for (unsigned i = 0, e = Modes.size(); i != e; ++i) { unsigned ModeId = CGH.getHwModeId(Modes[i]->getName()); Items.push_back(std::make_pair(ModeId, Objects[i])); } } LLVM_DUMP_METHOD void HwModeSelect::dump() const { dbgs() << '{'; for (const PairType &P : Items) dbgs() << " (" << P.first << ',' << P.second->getName() << ')'; dbgs() << " }\n"; } CodeGenHwModes::CodeGenHwModes(RecordKeeper &RK) : Records(RK) { std::vector MRs = Records.getAllDerivedDefinitions("HwMode"); // The default mode needs a definition in the .td sources for TableGen // to accept references to it. We need to ignore the definition here. for (auto I = MRs.begin(), E = MRs.end(); I != E; ++I) { if ((*I)->getName() != DefaultModeName) continue; MRs.erase(I); break; } for (Record *R : MRs) { Modes.emplace_back(R); unsigned NewId = Modes.size(); ModeIds.insert(std::make_pair(Modes[NewId-1].Name, NewId)); } std::vector MSs = Records.getAllDerivedDefinitions("HwModeSelect"); for (Record *R : MSs) { auto P = ModeSelects.emplace(std::make_pair(R, HwModeSelect(R, *this))); assert(P.second); (void)P; } } unsigned CodeGenHwModes::getHwModeId(StringRef Name) const { if (Name == DefaultModeName) return DefaultMode; auto F = ModeIds.find(Name); assert(F != ModeIds.end() && "Unknown mode name"); return F->second; } const HwModeSelect &CodeGenHwModes::getHwModeSelect(Record *R) const { auto F = ModeSelects.find(R); assert(F != ModeSelects.end() && "Record is not a \"mode select\""); return F->second; } LLVM_DUMP_METHOD void CodeGenHwModes::dump() const { dbgs() << "Modes: {\n"; for (const HwMode &M : Modes) { dbgs() << " "; M.dump(); } dbgs() << "}\n"; dbgs() << "ModeIds: {\n"; for (const auto &P : ModeIds) dbgs() << " " << P.first() << " -> " << P.second << '\n'; dbgs() << "}\n"; dbgs() << "ModeSelects: {\n"; for (const auto &P : ModeSelects) { dbgs() << " " << P.first->getName() << " -> "; P.second.dump(); } dbgs() << "}\n"; }