namespace {
-struct StringValueUtility {
- StringRef String;
- std::string UnescapedString;
-
- StringValueUtility(const MIToken &Token) {
- if (Token.isStringValueQuoted()) {
- Token.unescapeQuotedStringValue(UnescapedString);
- String = UnescapedString;
- return;
- }
- String = Token.stringValue();
- }
-
- operator StringRef() const { return String; }
-};
-
/// A wrapper struct around the 'MachineOperand' struct that includes a source
/// range.
struct MachineOperandWithLocation {
DenseMap<unsigned, const BasicBlock *> Slots2BasicBlocks;
/// Maps from target index names to target indices.
StringMap<int> Names2TargetIndices;
+ /// Maps from direct target flag names to the direct target flag values.
+ StringMap<unsigned> Names2DirectTargetFlags;
public:
MIParser(SourceMgr &SM, MachineFunction &MF, SMDiagnostic &Error,
/// This function always return true.
bool error(StringRef::iterator Loc, const Twine &Msg);
+ bool
+ parseBasicBlockDefinitions(DenseMap<unsigned, MachineBasicBlock *> &MBBSlots);
+ bool parseBasicBlocks();
bool parse(MachineInstr *&MI);
bool parseStandaloneMBB(MachineBasicBlock *&MBB);
bool parseStandaloneNamedRegister(unsigned &Reg);
bool parseStandaloneVirtualRegister(unsigned &Reg);
- bool parseStandaloneIRBlockReference(const BasicBlock *&BB);
+
+ bool
+ parseBasicBlockDefinition(DenseMap<unsigned, MachineBasicBlock *> &MBBSlots);
+ bool parseBasicBlock(MachineBasicBlock &MBB);
+ bool parseBasicBlockLiveins(MachineBasicBlock &MBB);
+ bool parseBasicBlockSuccessors(MachineBasicBlock &MBB);
bool parseRegister(unsigned &Reg);
bool parseRegisterFlag(unsigned &Flags);
bool parseSubRegisterIndex(unsigned &SubReg);
bool parseRegisterOperand(MachineOperand &Dest, bool IsDef = false);
bool parseImmediateOperand(MachineOperand &Dest);
+ bool parseIRConstant(StringRef::iterator Loc, const Constant *&C);
+ bool parseTypedImmediateOperand(MachineOperand &Dest);
bool parseFPImmediateOperand(MachineOperand &Dest);
bool parseMBBReference(MachineBasicBlock *&MBB);
bool parseMBBOperand(MachineOperand &Dest);
bool parseStackObjectOperand(MachineOperand &Dest);
+ bool parseFixedStackFrameIndex(int &FI);
bool parseFixedStackObjectOperand(MachineOperand &Dest);
bool parseGlobalValue(GlobalValue *&GV);
bool parseGlobalAddressOperand(MachineOperand &Dest);
bool parseIRBlock(BasicBlock *&BB, const Function &F);
bool parseBlockAddressOperand(MachineOperand &Dest);
bool parseTargetIndexOperand(MachineOperand &Dest);
+ bool parseLiveoutRegisterMaskOperand(MachineOperand &Dest);
bool parseMachineOperand(MachineOperand &Dest);
+ bool parseMachineOperandAndTargetFlags(MachineOperand &Dest);
+ bool parseOffset(int64_t &Offset);
+ bool parseAlignment(unsigned &Alignment);
+ bool parseOperandsOffset(MachineOperand &Op);
bool parseIRValue(Value *&V);
bool parseMemoryOperandFlag(unsigned &Flags);
+ bool parseMemoryPseudoSourceValue(const PseudoSourceValue *&PSV);
+ bool parseMachinePointerInfo(MachinePointerInfo &Dest);
bool parseMachineMemoryOperand(MachineMemOperand *&Dest);
private:
/// Otherwise report an error and return true.
bool expectAndConsume(MIToken::TokenKind TokenKind);
+ /// If the current token is of the given kind, consume it and return true.
+ /// Otherwise return false.
+ bool consumeIfPresent(MIToken::TokenKind TokenKind);
+
void initNames2InstrOpCodes();
/// Try to convert an instruction name to an opcode. Return true if the
/// Return 0 if the name isn't a subregister index class.
unsigned getSubRegIndex(StringRef Name);
- void initSlots2BasicBlocks();
-
const BasicBlock *getIRBlock(unsigned Slot);
+ const BasicBlock *getIRBlock(unsigned Slot, const Function &F);
void initNames2TargetIndices();
///
/// Return true if the name isn't a name of a target index.
bool getTargetIndex(StringRef Name, int &Index);
+
+ void initNames2DirectTargetFlags();
+
+ /// Try to convert a name of a direct target flag to the corresponding
+ /// target flag.
+ ///
+ /// Return true if the name isn't a name of a direct flag.
+ bool getDirectTargetFlag(StringRef Name, unsigned &Flag);
};
} // end anonymous namespace
StringRef Source, const PerFunctionMIParsingState &PFS,
const SlotMapping &IRSlots)
: SM(SM), MF(MF), Error(Error), Source(Source), CurrentSource(Source),
- Token(MIToken::Error, StringRef()), PFS(PFS), IRSlots(IRSlots) {}
+ PFS(PFS), IRSlots(IRSlots) {}
void MIParser::lex() {
CurrentSource = lexMIToken(
bool MIParser::error(StringRef::iterator Loc, const Twine &Msg) {
assert(Loc >= Source.data() && Loc <= (Source.data() + Source.size()));
- Error = SMDiagnostic(
- SM, SMLoc(),
- SM.getMemoryBuffer(SM.getMainFileID())->getBufferIdentifier(), 1,
- Loc - Source.data(), SourceMgr::DK_Error, Msg.str(), Source, None, None);
+ const MemoryBuffer &Buffer = *SM.getMemoryBuffer(SM.getMainFileID());
+ if (Loc >= Buffer.getBufferStart() && Loc <= Buffer.getBufferEnd()) {
+ // Create an ordinary diagnostic when the source manager's buffer is the
+ // source string.
+ Error = SM.GetMessage(SMLoc::getFromPointer(Loc), SourceMgr::DK_Error, Msg);
+ return true;
+ }
+ // Create a diagnostic for a YAML string literal.
+ Error = SMDiagnostic(SM, SMLoc(), Buffer.getBufferIdentifier(), 1,
+ Loc - Source.data(), SourceMgr::DK_Error, Msg.str(),
+ Source, None, None);
return true;
}
return "','";
case MIToken::equal:
return "'='";
+ case MIToken::colon:
+ return "':'";
case MIToken::lparen:
return "'('";
case MIToken::rparen:
return false;
}
-bool MIParser::parse(MachineInstr *&MI) {
+bool MIParser::consumeIfPresent(MIToken::TokenKind TokenKind) {
+ if (Token.isNot(TokenKind))
+ return false;
+ lex();
+ return true;
+}
+
+bool MIParser::parseBasicBlockDefinition(
+ DenseMap<unsigned, MachineBasicBlock *> &MBBSlots) {
+ assert(Token.is(MIToken::MachineBasicBlockLabel));
+ unsigned ID = 0;
+ if (getUnsigned(ID))
+ return true;
+ auto Loc = Token.location();
+ auto Name = Token.stringValue();
+ lex();
+ bool HasAddressTaken = false;
+ bool IsLandingPad = false;
+ unsigned Alignment = 0;
+ BasicBlock *BB = nullptr;
+ if (consumeIfPresent(MIToken::lparen)) {
+ do {
+ // TODO: Report an error when multiple same attributes are specified.
+ switch (Token.kind()) {
+ case MIToken::kw_address_taken:
+ HasAddressTaken = true;
+ lex();
+ break;
+ case MIToken::kw_landing_pad:
+ IsLandingPad = true;
+ lex();
+ break;
+ case MIToken::kw_align:
+ if (parseAlignment(Alignment))
+ return true;
+ break;
+ case MIToken::IRBlock:
+ // TODO: Report an error when both name and ir block are specified.
+ if (parseIRBlock(BB, *MF.getFunction()))
+ return true;
+ lex();
+ break;
+ default:
+ break;
+ }
+ } while (consumeIfPresent(MIToken::comma));
+ if (expectAndConsume(MIToken::rparen))
+ return true;
+ }
+ if (expectAndConsume(MIToken::colon))
+ return true;
+
+ if (!Name.empty()) {
+ BB = dyn_cast_or_null<BasicBlock>(
+ MF.getFunction()->getValueSymbolTable().lookup(Name));
+ if (!BB)
+ return error(Loc, Twine("basic block '") + Name +
+ "' is not defined in the function '" +
+ MF.getName() + "'");
+ }
+ auto *MBB = MF.CreateMachineBasicBlock(BB);
+ MF.insert(MF.end(), MBB);
+ bool WasInserted = MBBSlots.insert(std::make_pair(ID, MBB)).second;
+ if (!WasInserted)
+ return error(Loc, Twine("redefinition of machine basic block with id #") +
+ Twine(ID));
+ if (Alignment)
+ MBB->setAlignment(Alignment);
+ if (HasAddressTaken)
+ MBB->setHasAddressTaken();
+ MBB->setIsLandingPad(IsLandingPad);
+ return false;
+}
+
+bool MIParser::parseBasicBlockDefinitions(
+ DenseMap<unsigned, MachineBasicBlock *> &MBBSlots) {
+ lex();
+ // Skip until the first machine basic block.
+ while (Token.is(MIToken::Newline))
+ lex();
+ if (Token.isErrorOrEOF())
+ return Token.isError();
+ if (Token.isNot(MIToken::MachineBasicBlockLabel))
+ return error("expected a basic block definition before instructions");
+ do {
+ if (parseBasicBlockDefinition(MBBSlots))
+ return true;
+ bool IsAfterNewline = false;
+ // Skip until the next machine basic block.
+ while (true) {
+ if ((Token.is(MIToken::MachineBasicBlockLabel) && IsAfterNewline) ||
+ Token.isErrorOrEOF())
+ break;
+ else if (Token.is(MIToken::MachineBasicBlockLabel))
+ return error("basic block definition should be located at the start of "
+ "the line");
+ if (Token.is(MIToken::Newline))
+ IsAfterNewline = true;
+ else
+ IsAfterNewline = false;
+ lex();
+ }
+ } while (!Token.isErrorOrEOF());
+ return Token.isError();
+}
+
+bool MIParser::parseBasicBlockLiveins(MachineBasicBlock &MBB) {
+ assert(Token.is(MIToken::kw_liveins));
+ lex();
+ if (expectAndConsume(MIToken::colon))
+ return true;
+ if (Token.isNewlineOrEOF()) // Allow an empty list of liveins.
+ return false;
+ do {
+ if (Token.isNot(MIToken::NamedRegister))
+ return error("expected a named register");
+ unsigned Reg = 0;
+ if (parseRegister(Reg))
+ return true;
+ MBB.addLiveIn(Reg);
+ lex();
+ } while (consumeIfPresent(MIToken::comma));
+ return false;
+}
+
+bool MIParser::parseBasicBlockSuccessors(MachineBasicBlock &MBB) {
+ assert(Token.is(MIToken::kw_successors));
+ lex();
+ if (expectAndConsume(MIToken::colon))
+ return true;
+ if (Token.isNewlineOrEOF()) // Allow an empty list of successors.
+ return false;
+ do {
+ if (Token.isNot(MIToken::MachineBasicBlock))
+ return error("expected a machine basic block reference");
+ MachineBasicBlock *SuccMBB = nullptr;
+ if (parseMBBReference(SuccMBB))
+ return true;
+ lex();
+ unsigned Weight = 0;
+ if (consumeIfPresent(MIToken::lparen)) {
+ if (Token.isNot(MIToken::IntegerLiteral))
+ return error("expected an integer literal after '('");
+ if (getUnsigned(Weight))
+ return true;
+ lex();
+ if (expectAndConsume(MIToken::rparen))
+ return true;
+ }
+ MBB.addSuccessor(SuccMBB, Weight);
+ } while (consumeIfPresent(MIToken::comma));
+ return false;
+}
+
+bool MIParser::parseBasicBlock(MachineBasicBlock &MBB) {
+ // Skip the definition.
+ assert(Token.is(MIToken::MachineBasicBlockLabel));
+ lex();
+ if (consumeIfPresent(MIToken::lparen)) {
+ while (Token.isNot(MIToken::rparen) && !Token.isErrorOrEOF())
+ lex();
+ consumeIfPresent(MIToken::rparen);
+ }
+ consumeIfPresent(MIToken::colon);
+
+ // Parse the liveins and successors.
+ // N.B: Multiple lists of successors and liveins are allowed and they're
+ // merged into one.
+ // Example:
+ // liveins: %edi
+ // liveins: %esi
+ //
+ // is equivalent to
+ // liveins: %edi, %esi
+ while (true) {
+ if (Token.is(MIToken::kw_successors)) {
+ if (parseBasicBlockSuccessors(MBB))
+ return true;
+ } else if (Token.is(MIToken::kw_liveins)) {
+ if (parseBasicBlockLiveins(MBB))
+ return true;
+ } else if (consumeIfPresent(MIToken::Newline)) {
+ continue;
+ } else
+ break;
+ if (!Token.isNewlineOrEOF())
+ return error("expected line break at the end of a list");
+ lex();
+ }
+
+ // Parse the instructions.
+ while (true) {
+ if (Token.is(MIToken::MachineBasicBlockLabel) || Token.is(MIToken::Eof))
+ return false;
+ else if (consumeIfPresent(MIToken::Newline))
+ continue;
+ MachineInstr *MI = nullptr;
+ if (parse(MI))
+ return true;
+ MBB.insert(MBB.end(), MI);
+ assert(Token.isNewlineOrEOF() && "MI is not fully parsed");
+ lex();
+ }
+ return false;
+}
+
+bool MIParser::parseBasicBlocks() {
lex();
+ // Skip until the first machine basic block.
+ while (Token.is(MIToken::Newline))
+ lex();
+ if (Token.isErrorOrEOF())
+ return Token.isError();
+ // The first parsing pass should have verified that this token is a MBB label
+ // in the 'parseBasicBlockDefinitions' method.
+ assert(Token.is(MIToken::MachineBasicBlockLabel));
+ do {
+ MachineBasicBlock *MBB = nullptr;
+ if (parseMBBReference(MBB))
+ return true;
+ if (parseBasicBlock(*MBB))
+ return true;
+ // The method 'parseBasicBlock' should parse the whole block until the next
+ // block or the end of file.
+ assert(Token.is(MIToken::MachineBasicBlockLabel) || Token.is(MIToken::Eof));
+ } while (Token.isNot(MIToken::Eof));
+ return false;
+}
+bool MIParser::parse(MachineInstr *&MI) {
// Parse any register operands before '='
MachineOperand MO = MachineOperand::CreateImm(0);
SmallVector<MachineOperandWithLocation, 8> Operands;
// TODO: Parse the bundle instruction flags.
// Parse the remaining machine operands.
- while (Token.isNot(MIToken::Eof) && Token.isNot(MIToken::kw_debug_location) &&
+ while (!Token.isNewlineOrEOF() && Token.isNot(MIToken::kw_debug_location) &&
Token.isNot(MIToken::coloncolon)) {
auto Loc = Token.location();
- if (parseMachineOperand(MO))
+ if (parseMachineOperandAndTargetFlags(MO))
return true;
Operands.push_back(MachineOperandWithLocation(MO, Loc, Token.location()));
- if (Token.is(MIToken::Eof) || Token.is(MIToken::coloncolon))
+ if (Token.isNewlineOrEOF() || Token.is(MIToken::coloncolon))
break;
if (Token.isNot(MIToken::comma))
return error("expected ',' before the next machine operand");
SmallVector<MachineMemOperand *, 2> MemOperands;
if (Token.is(MIToken::coloncolon)) {
lex();
- while (Token.isNot(MIToken::Eof)) {
+ while (!Token.isNewlineOrEOF()) {
MachineMemOperand *MemOp = nullptr;
if (parseMachineMemoryOperand(MemOp))
return true;
MemOperands.push_back(MemOp);
- if (Token.is(MIToken::Eof))
+ if (Token.isNewlineOrEOF())
break;
if (Token.isNot(MIToken::comma))
return error("expected ',' before the next machine memory operand");
return false;
}
-bool MIParser::parseStandaloneIRBlockReference(const BasicBlock *&BB) {
- lex();
- if (Token.isNot(MIToken::IRBlock))
- return error("expected an IR block reference");
- unsigned SlotNumber = 0;
- if (getUnsigned(SlotNumber))
- return true;
- BB = getIRBlock(SlotNumber);
- if (!BB)
- return error(Twine("use of undefined IR block '%ir-block.") +
- Twine(SlotNumber) + "'");
- lex();
- if (Token.isNot(MIToken::Eof))
- return error("expected end of string after the IR block reference");
- return false;
-}
-
static const char *printImplicitRegisterFlag(const MachineOperand &MO) {
assert(MO.isImplicit());
return MO.isDef() ? "implicit-def" : "implicit";
}
bool MIParser::parseRegisterFlag(unsigned &Flags) {
+ const unsigned OldFlags = Flags;
switch (Token.kind()) {
case MIToken::kw_implicit:
Flags |= RegState::Implicit;
case MIToken::kw_undef:
Flags |= RegState::Undef;
break;
- // TODO: report an error when we specify the same flag more than once.
+ case MIToken::kw_early_clobber:
+ Flags |= RegState::EarlyClobber;
+ break;
+ case MIToken::kw_debug_use:
+ Flags |= RegState::Debug;
+ break;
// TODO: parse the other register flags.
default:
llvm_unreachable("The current token should be a register flag");
}
+ if (OldFlags == Flags)
+ // We know that the same flag is specified more than once when the flags
+ // weren't modified.
+ return error("duplicate '" + Token.stringValue() + "' register flag");
lex();
return false;
}
Dest = MachineOperand::CreateReg(
Reg, Flags & RegState::Define, Flags & RegState::Implicit,
Flags & RegState::Kill, Flags & RegState::Dead, Flags & RegState::Undef,
- /*isEarlyClobber=*/false, SubReg);
+ Flags & RegState::EarlyClobber, SubReg, Flags & RegState::Debug);
return false;
}
assert(Token.is(MIToken::IntegerLiteral));
const APSInt &Int = Token.integerValue();
if (Int.getMinSignedBits() > 64)
- // TODO: Replace this with an error when we can parse CIMM Machine Operands.
- llvm_unreachable("Can't parse large integer literals yet!");
+ return error("integer literal is too large to be an immediate operand");
Dest = MachineOperand::CreateImm(Int.getExtValue());
lex();
return false;
}
+bool MIParser::parseIRConstant(StringRef::iterator Loc, const Constant *&C) {
+ auto Source = StringRef(Loc, Token.range().end() - Loc).str();
+ lex();
+ SMDiagnostic Err;
+ C = parseConstantValue(Source.c_str(), Err, *MF.getFunction()->getParent());
+ if (!C)
+ return error(Loc + Err.getColumnNo(), Err.getMessage());
+ return false;
+}
+
+bool MIParser::parseTypedImmediateOperand(MachineOperand &Dest) {
+ assert(Token.is(MIToken::IntegerType));
+ auto Loc = Token.location();
+ lex();
+ if (Token.isNot(MIToken::IntegerLiteral))
+ return error("expected an integer literal");
+ const Constant *C = nullptr;
+ if (parseIRConstant(Loc, C))
+ return true;
+ Dest = MachineOperand::CreateCImm(cast<ConstantInt>(C));
+ return false;
+}
+
bool MIParser::parseFPImmediateOperand(MachineOperand &Dest) {
auto Loc = Token.location();
lex();
if (Token.isNot(MIToken::FloatingPointLiteral))
return error("expected a floating point literal");
- auto Source = StringRef(Loc, Token.stringValue().end() - Loc).str();
- lex();
- SMDiagnostic Err;
- const Constant *C =
- parseConstantValue(Source.c_str(), Err, *MF.getFunction()->getParent());
- if (!C)
- return error(Loc + Err.getColumnNo(), Err.getMessage());
+ const Constant *C = nullptr;
+ if (parseIRConstant(Loc, C))
+ return true;
Dest = MachineOperand::CreateFPImm(cast<ConstantFP>(C));
return false;
}
}
bool MIParser::parseMBBReference(MachineBasicBlock *&MBB) {
- assert(Token.is(MIToken::MachineBasicBlock));
+ assert(Token.is(MIToken::MachineBasicBlock) ||
+ Token.is(MIToken::MachineBasicBlockLabel));
unsigned Number;
if (getUnsigned(Number))
return true;
return false;
}
-bool MIParser::parseFixedStackObjectOperand(MachineOperand &Dest) {
+bool MIParser::parseFixedStackFrameIndex(int &FI) {
assert(Token.is(MIToken::FixedStackObject));
unsigned ID;
if (getUnsigned(ID))
return error(Twine("use of undefined fixed stack object '%fixed-stack.") +
Twine(ID) + "'");
lex();
- Dest = MachineOperand::CreateFI(ObjectInfo->second);
+ FI = ObjectInfo->second;
+ return false;
+}
+
+bool MIParser::parseFixedStackObjectOperand(MachineOperand &Dest) {
+ int FI;
+ if (parseFixedStackFrameIndex(FI))
+ return true;
+ Dest = MachineOperand::CreateFI(FI);
return false;
}
bool MIParser::parseGlobalValue(GlobalValue *&GV) {
switch (Token.kind()) {
- case MIToken::NamedGlobalValue:
- case MIToken::QuotedNamedGlobalValue: {
- StringValueUtility Name(Token);
+ case MIToken::NamedGlobalValue: {
const Module *M = MF.getFunction()->getParent();
- GV = M->getNamedValue(Name);
+ GV = M->getNamedValue(Token.stringValue());
if (!GV)
- return error(Twine("use of undefined global value '@") +
- Token.rawStringValue() + "'");
+ return error(Twine("use of undefined global value '") + Token.range() +
+ "'");
break;
}
case MIToken::GlobalValue: {
GlobalValue *GV = nullptr;
if (parseGlobalValue(GV))
return true;
- Dest = MachineOperand::CreateGA(GV, /*Offset=*/0);
- // TODO: Parse offset and target flags.
lex();
+ Dest = MachineOperand::CreateGA(GV, /*Offset=*/0);
+ if (parseOperandsOffset(Dest))
+ return true;
return false;
}
if (ConstantInfo == PFS.ConstantPoolSlots.end())
return error("use of undefined constant '%const." + Twine(ID) + "'");
lex();
- // TODO: Parse offset and target flags.
Dest = MachineOperand::CreateCPI(ID, /*Offset=*/0);
+ if (parseOperandsOffset(Dest))
+ return true;
return false;
}
if (JumpTableEntryInfo == PFS.JumpTableSlots.end())
return error("use of undefined jump table '%jump-table." + Twine(ID) + "'");
lex();
- // TODO: Parse target flags.
Dest = MachineOperand::CreateJTI(JumpTableEntryInfo->second);
return false;
}
bool MIParser::parseExternalSymbolOperand(MachineOperand &Dest) {
- assert(Token.is(MIToken::ExternalSymbol) ||
- Token.is(MIToken::QuotedExternalSymbol));
- StringValueUtility Name(Token);
- const char *Symbol = MF.createExternalSymbolName(Name);
+ assert(Token.is(MIToken::ExternalSymbol));
+ const char *Symbol = MF.createExternalSymbolName(Token.stringValue());
lex();
- // TODO: Parse the target flags.
Dest = MachineOperand::CreateES(Symbol);
+ if (parseOperandsOffset(Dest))
+ return true;
return false;
}
bool MIParser::parseIRBlock(BasicBlock *&BB, const Function &F) {
switch (Token.kind()) {
- case MIToken::NamedIRBlock:
- case MIToken::QuotedNamedIRBlock: {
- StringValueUtility Name(Token);
- BB = dyn_cast_or_null<BasicBlock>(F.getValueSymbolTable().lookup(Name));
+ case MIToken::NamedIRBlock: {
+ BB = dyn_cast_or_null<BasicBlock>(
+ F.getValueSymbolTable().lookup(Token.stringValue()));
if (!BB)
- return error(Twine("use of undefined IR block '%ir-block.") +
- Token.rawStringValue() + "'");
+ return error(Twine("use of undefined IR block '") + Token.range() + "'");
break;
}
case MIToken::IRBlock: {
unsigned SlotNumber = 0;
if (getUnsigned(SlotNumber))
return true;
- BB = const_cast<BasicBlock *>(getIRBlock(SlotNumber));
+ BB = const_cast<BasicBlock *>(getIRBlock(SlotNumber, F));
if (!BB)
return error(Twine("use of undefined IR block '%ir-block.") +
Twine(SlotNumber) + "'");
if (expectAndConsume(MIToken::lparen))
return true;
if (Token.isNot(MIToken::GlobalValue) &&
- Token.isNot(MIToken::NamedGlobalValue) &&
- Token.isNot(MIToken::QuotedNamedGlobalValue))
+ Token.isNot(MIToken::NamedGlobalValue))
return error("expected a global value");
GlobalValue *GV = nullptr;
if (parseGlobalValue(GV))
if (expectAndConsume(MIToken::comma))
return true;
BasicBlock *BB = nullptr;
- if (Token.isNot(MIToken::IRBlock) && Token.isNot(MIToken::NamedIRBlock) &&
- Token.isNot(MIToken::QuotedNamedIRBlock))
+ if (Token.isNot(MIToken::IRBlock) && Token.isNot(MIToken::NamedIRBlock))
return error("expected an IR block reference");
if (parseIRBlock(BB, *F))
return true;
lex();
if (expectAndConsume(MIToken::rparen))
return true;
- // TODO: parse offset and target flags.
Dest = MachineOperand::CreateBA(BlockAddress::get(F, BB), /*Offset=*/0);
+ if (parseOperandsOffset(Dest))
+ return true;
return false;
}
lex();
if (expectAndConsume(MIToken::rparen))
return true;
- // TODO: Parse the offset and target flags.
Dest = MachineOperand::CreateTargetIndex(unsigned(Index), /*Offset=*/0);
+ if (parseOperandsOffset(Dest))
+ return true;
+ return false;
+}
+
+bool MIParser::parseLiveoutRegisterMaskOperand(MachineOperand &Dest) {
+ assert(Token.is(MIToken::kw_liveout));
+ const auto *TRI = MF.getSubtarget().getRegisterInfo();
+ assert(TRI && "Expected target register info");
+ uint32_t *Mask = MF.allocateRegisterMask(TRI->getNumRegs());
+ lex();
+ if (expectAndConsume(MIToken::lparen))
+ return true;
+ while (true) {
+ if (Token.isNot(MIToken::NamedRegister))
+ return error("expected a named register");
+ unsigned Reg = 0;
+ if (parseRegister(Reg))
+ return true;
+ lex();
+ Mask[Reg / 32] |= 1U << (Reg % 32);
+ // TODO: Report an error if the same register is used more than once.
+ if (Token.isNot(MIToken::comma))
+ break;
+ lex();
+ }
+ if (expectAndConsume(MIToken::rparen))
+ return true;
+ Dest = MachineOperand::CreateRegLiveOut(Mask);
return false;
}
case MIToken::kw_dead:
case MIToken::kw_killed:
case MIToken::kw_undef:
+ case MIToken::kw_early_clobber:
+ case MIToken::kw_debug_use:
case MIToken::underscore:
case MIToken::NamedRegister:
case MIToken::VirtualRegister:
return parseRegisterOperand(Dest);
case MIToken::IntegerLiteral:
return parseImmediateOperand(Dest);
+ case MIToken::IntegerType:
+ return parseTypedImmediateOperand(Dest);
case MIToken::kw_half:
case MIToken::kw_float:
case MIToken::kw_double:
return parseFixedStackObjectOperand(Dest);
case MIToken::GlobalValue:
case MIToken::NamedGlobalValue:
- case MIToken::QuotedNamedGlobalValue:
return parseGlobalAddressOperand(Dest);
case MIToken::ConstantPoolItem:
return parseConstantPoolIndexOperand(Dest);
case MIToken::JumpTableIndex:
return parseJumpTableIndexOperand(Dest);
case MIToken::ExternalSymbol:
- case MIToken::QuotedExternalSymbol:
return parseExternalSymbolOperand(Dest);
case MIToken::exclaim:
return parseMetadataOperand(Dest);
return parseBlockAddressOperand(Dest);
case MIToken::kw_target_index:
return parseTargetIndexOperand(Dest);
+ case MIToken::kw_liveout:
+ return parseLiveoutRegisterMaskOperand(Dest);
case MIToken::Error:
return true;
case MIToken::Identifier:
return false;
}
+bool MIParser::parseMachineOperandAndTargetFlags(MachineOperand &Dest) {
+ unsigned TF = 0;
+ bool HasTargetFlags = false;
+ if (Token.is(MIToken::kw_target_flags)) {
+ HasTargetFlags = true;
+ lex();
+ if (expectAndConsume(MIToken::lparen))
+ return true;
+ if (Token.isNot(MIToken::Identifier))
+ return error("expected the name of the target flag");
+ if (getDirectTargetFlag(Token.stringValue(), TF))
+ return error("use of undefined target flag '" + Token.stringValue() +
+ "'");
+ lex();
+ // TODO: Parse target's bit target flags.
+ if (expectAndConsume(MIToken::rparen))
+ return true;
+ }
+ auto Loc = Token.location();
+ if (parseMachineOperand(Dest))
+ return true;
+ if (!HasTargetFlags)
+ return false;
+ if (Dest.isReg())
+ return error(Loc, "register operands can't have target flags");
+ Dest.setTargetFlags(TF);
+ return false;
+}
+
+bool MIParser::parseOffset(int64_t &Offset) {
+ if (Token.isNot(MIToken::plus) && Token.isNot(MIToken::minus))
+ return false;
+ StringRef Sign = Token.range();
+ bool IsNegative = Token.is(MIToken::minus);
+ lex();
+ if (Token.isNot(MIToken::IntegerLiteral))
+ return error("expected an integer literal after '" + Sign + "'");
+ if (Token.integerValue().getMinSignedBits() > 64)
+ return error("expected 64-bit integer (too large)");
+ Offset = Token.integerValue().getExtValue();
+ if (IsNegative)
+ Offset = -Offset;
+ lex();
+ return false;
+}
+
+bool MIParser::parseAlignment(unsigned &Alignment) {
+ assert(Token.is(MIToken::kw_align));
+ lex();
+ if (Token.isNot(MIToken::IntegerLiteral) || Token.integerValue().isSigned())
+ return error("expected an integer literal after 'align'");
+ if (getUnsigned(Alignment))
+ return true;
+ lex();
+ return false;
+}
+
+bool MIParser::parseOperandsOffset(MachineOperand &Op) {
+ int64_t Offset = 0;
+ if (parseOffset(Offset))
+ return true;
+ Op.setOffset(Offset);
+ return false;
+}
+
bool MIParser::parseIRValue(Value *&V) {
switch (Token.kind()) {
- case MIToken::NamedIRValue:
- case MIToken::QuotedNamedIRValue: {
- StringValueUtility Name(Token);
- V = MF.getFunction()->getValueSymbolTable().lookup(Name);
+ case MIToken::NamedIRValue: {
+ V = MF.getFunction()->getValueSymbolTable().lookup(Token.stringValue());
+ if (!V)
+ V = MF.getFunction()->getParent()->getValueSymbolTable().lookup(
+ Token.stringValue());
if (!V)
- return error(Twine("use of undefined IR value '%ir.") +
- Token.rawStringValue() + "'");
+ return error(Twine("use of undefined IR value '") + Token.range() + "'");
break;
}
// TODO: Parse unnamed IR value references.
}
bool MIParser::parseMemoryOperandFlag(unsigned &Flags) {
+ const unsigned OldFlags = Flags;
switch (Token.kind()) {
case MIToken::kw_volatile:
Flags |= MachineMemOperand::MOVolatile;
break;
- // TODO: report an error when we specify the same flag more than once.
- // TODO: parse the other memory operand flags.
+ case MIToken::kw_non_temporal:
+ Flags |= MachineMemOperand::MONonTemporal;
+ break;
+ case MIToken::kw_invariant:
+ Flags |= MachineMemOperand::MOInvariant;
+ break;
+ // TODO: parse the target specific memory operand flags.
default:
llvm_unreachable("The current token should be a memory operand flag");
}
+ if (OldFlags == Flags)
+ // We know that the same flag is specified more than once when the flags
+ // weren't modified.
+ return error("duplicate '" + Token.stringValue() + "' memory operand flag");
+ lex();
+ return false;
+}
+
+bool MIParser::parseMemoryPseudoSourceValue(const PseudoSourceValue *&PSV) {
+ switch (Token.kind()) {
+ case MIToken::kw_stack:
+ PSV = MF.getPSVManager().getStack();
+ break;
+ case MIToken::kw_got:
+ PSV = MF.getPSVManager().getGOT();
+ break;
+ case MIToken::kw_jump_table:
+ PSV = MF.getPSVManager().getJumpTable();
+ break;
+ case MIToken::kw_constant_pool:
+ PSV = MF.getPSVManager().getConstantPool();
+ break;
+ case MIToken::FixedStackObject: {
+ int FI;
+ if (parseFixedStackFrameIndex(FI))
+ return true;
+ PSV = MF.getPSVManager().getFixedStack(FI);
+ // The token was already consumed, so use return here instead of break.
+ return false;
+ }
+ // TODO: Parse the other pseudo source values.
+ default:
+ llvm_unreachable("The current token should be pseudo source value");
+ }
+ lex();
+ return false;
+}
+
+bool MIParser::parseMachinePointerInfo(MachinePointerInfo &Dest) {
+ if (Token.is(MIToken::kw_constant_pool) || Token.is(MIToken::kw_stack) ||
+ Token.is(MIToken::kw_got) || Token.is(MIToken::kw_jump_table) ||
+ Token.is(MIToken::FixedStackObject)) {
+ const PseudoSourceValue *PSV = nullptr;
+ if (parseMemoryPseudoSourceValue(PSV))
+ return true;
+ int64_t Offset = 0;
+ if (parseOffset(Offset))
+ return true;
+ Dest = MachinePointerInfo(PSV, Offset);
+ return false;
+ }
+ if (Token.isNot(MIToken::NamedIRValue))
+ return error("expected an IR value reference");
+ Value *V = nullptr;
+ if (parseIRValue(V))
+ return true;
+ if (!V->getType()->isPointerTy())
+ return error("expected a pointer IR value");
lex();
+ int64_t Offset = 0;
+ if (parseOffset(Offset))
+ return true;
+ Dest = MachinePointerInfo(V, Offset);
return false;
}
return error(Twine("expected '") + Word + "'");
lex();
- // TODO: Parse pseudo source values.
- if (Token.isNot(MIToken::NamedIRValue) &&
- Token.isNot(MIToken::QuotedNamedIRValue))
- return error("expected an IR value reference");
- Value *V = nullptr;
- if (parseIRValue(V))
+ MachinePointerInfo Ptr = MachinePointerInfo();
+ if (parseMachinePointerInfo(Ptr))
return true;
- if (!V->getType()->isPointerTy())
- return error("expected a pointer IR value");
- lex();
- // TODO: Parse the base alignment.
+ unsigned BaseAlignment = Size;
+ if (Token.is(MIToken::comma)) {
+ lex();
+ if (Token.isNot(MIToken::kw_align))
+ return error("expected 'align'");
+ if (parseAlignment(BaseAlignment))
+ return true;
+ }
// TODO: Parse the attached metadata nodes.
if (expectAndConsume(MIToken::rparen))
return true;
-
- Dest = MF.getMachineMemOperand(MachinePointerInfo(V), Flags, Size, Size);
+ Dest = MF.getMachineMemOperand(Ptr, Flags, Size, BaseAlignment);
return false;
}
return SubRegInfo->getValue();
}
-void MIParser::initSlots2BasicBlocks() {
- if (!Slots2BasicBlocks.empty())
- return;
- const auto &F = *MF.getFunction();
- ModuleSlotTracker MST(F.getParent());
+static void initSlots2BasicBlocks(
+ const Function &F,
+ DenseMap<unsigned, const BasicBlock *> &Slots2BasicBlocks) {
+ ModuleSlotTracker MST(F.getParent(), /*ShouldInitializeAllMetadata=*/false);
MST.incorporateFunction(F);
for (auto &BB : F) {
if (BB.hasName())
}
}
-const BasicBlock *MIParser::getIRBlock(unsigned Slot) {
- initSlots2BasicBlocks();
+static const BasicBlock *getIRBlockFromSlot(
+ unsigned Slot,
+ const DenseMap<unsigned, const BasicBlock *> &Slots2BasicBlocks) {
auto BlockInfo = Slots2BasicBlocks.find(Slot);
if (BlockInfo == Slots2BasicBlocks.end())
return nullptr;
return BlockInfo->second;
}
+const BasicBlock *MIParser::getIRBlock(unsigned Slot) {
+ if (Slots2BasicBlocks.empty())
+ initSlots2BasicBlocks(*MF.getFunction(), Slots2BasicBlocks);
+ return getIRBlockFromSlot(Slot, Slots2BasicBlocks);
+}
+
+const BasicBlock *MIParser::getIRBlock(unsigned Slot, const Function &F) {
+ if (&F == MF.getFunction())
+ return getIRBlock(Slot);
+ DenseMap<unsigned, const BasicBlock *> CustomSlots2BasicBlocks;
+ initSlots2BasicBlocks(F, CustomSlots2BasicBlocks);
+ return getIRBlockFromSlot(Slot, CustomSlots2BasicBlocks);
+}
+
void MIParser::initNames2TargetIndices() {
if (!Names2TargetIndices.empty())
return;
return false;
}
-bool llvm::parseMachineInstr(MachineInstr *&MI, SourceMgr &SM,
- MachineFunction &MF, StringRef Src,
- const PerFunctionMIParsingState &PFS,
- const SlotMapping &IRSlots, SMDiagnostic &Error) {
- return MIParser(SM, MF, Error, Src, PFS, IRSlots).parse(MI);
+void MIParser::initNames2DirectTargetFlags() {
+ if (!Names2DirectTargetFlags.empty())
+ return;
+ const auto *TII = MF.getSubtarget().getInstrInfo();
+ assert(TII && "Expected target instruction info");
+ auto Flags = TII->getSerializableDirectMachineOperandTargetFlags();
+ for (const auto &I : Flags)
+ Names2DirectTargetFlags.insert(
+ std::make_pair(StringRef(I.second), I.first));
+}
+
+bool MIParser::getDirectTargetFlag(StringRef Name, unsigned &Flag) {
+ initNames2DirectTargetFlags();
+ auto FlagInfo = Names2DirectTargetFlags.find(Name);
+ if (FlagInfo == Names2DirectTargetFlags.end())
+ return true;
+ Flag = FlagInfo->second;
+ return false;
+}
+
+bool llvm::parseMachineBasicBlockDefinitions(MachineFunction &MF, StringRef Src,
+ PerFunctionMIParsingState &PFS,
+ const SlotMapping &IRSlots,
+ SMDiagnostic &Error) {
+ SourceMgr SM;
+ SM.AddNewSourceBuffer(
+ MemoryBuffer::getMemBuffer(Src, "", /*RequiresNullTerminator=*/false),
+ SMLoc());
+ return MIParser(SM, MF, Error, Src, PFS, IRSlots)
+ .parseBasicBlockDefinitions(PFS.MBBSlots);
+}
+
+bool llvm::parseMachineInstructions(MachineFunction &MF, StringRef Src,
+ const PerFunctionMIParsingState &PFS,
+ const SlotMapping &IRSlots,
+ SMDiagnostic &Error) {
+ SourceMgr SM;
+ SM.AddNewSourceBuffer(
+ MemoryBuffer::getMemBuffer(Src, "", /*RequiresNullTerminator=*/false),
+ SMLoc());
+ return MIParser(SM, MF, Error, Src, PFS, IRSlots).parseBasicBlocks();
}
bool llvm::parseMBBReference(MachineBasicBlock *&MBB, SourceMgr &SM,
return MIParser(SM, MF, Error, Src, PFS, IRSlots)
.parseStandaloneVirtualRegister(Reg);
}
-
-bool llvm::parseIRBlockReference(const BasicBlock *&BB, SourceMgr &SM,
- MachineFunction &MF, StringRef Src,
- const PerFunctionMIParsingState &PFS,
- const SlotMapping &IRSlots,
- SMDiagnostic &Error) {
- return MIParser(SM, MF, Error, Src, PFS, IRSlots)
- .parseStandaloneIRBlockReference(BB);
-}