83static const unsigned Read = 1;
84static const unsigned Write = 2;
85static const unsigned Callee = 4;
86static const unsigned Branchee = 8;
119 Value *findValue(
Value *V,
bool OffsetOk)
const;
132 std::string Messages;
138 TLI(TLI), MessagesStr(Messages) {}
141 for (
const Value *V : Vs) {
145 MessagesStr << *
V <<
'\n';
147 V->printAsOperand(MessagesStr,
true, Mod);
157 void CheckFailed(
const Twine &Message) { MessagesStr << Message <<
'\n'; }
163 template <
typename T1,
typename... Ts>
164 void CheckFailed(
const Twine &Message,
const T1 &V1,
const Ts &... Vs) {
165 CheckFailed(Message);
166 WriteValues({V1, Vs...});
172#define Check(C, ...) \
175 CheckFailed(__VA_ARGS__); \
183 Check(
F.hasName() ||
F.hasLocalLinkage(),
184 "Unusual: Unnamed function with non-local linkage", &
F);
189void Lint::visitCallBase(CallBase &
I) {
193 nullptr, MemRef::Callee);
197 Check(
I.getCallingConv() ==
F->getCallingConv(),
198 "Undefined behavior: Caller and callee calling convention differ",
201 FunctionType *FT =
F->getFunctionType();
202 unsigned NumActualArgs =
I.arg_size();
204 Check(FT->isVarArg() ? FT->getNumParams() <= NumActualArgs
205 : FT->getNumParams() == NumActualArgs,
206 "Undefined behavior: Call argument count mismatches callee "
210 Check(FT->getReturnType() ==
I.getType(),
211 "Undefined behavior: Call return type mismatches "
212 "callee return type",
218 auto AI =
I.arg_begin(), AE =
I.arg_end();
219 for (; AI != AE; ++AI) {
224 "Undefined behavior: Call argument type mismatches "
225 "callee parameter type",
232 AttributeList PAL =
I.getAttributes();
234 for (
auto *BI =
I.arg_begin(); BI != AE; ++BI, ++ArgNo) {
237 if (PAL.hasParamAttr(ArgNo, Attribute::ByVal))
244 if (
I.doesNotAccessMemory(ArgNo))
246 if (AI != BI && (*BI)->getType()->isPointerTy() &&
251 "Unusual: noalias argument aliases another argument", &
I);
261 visitMemoryReference(
I, Loc,
DL->getABITypeAlign(Ty), Ty,
262 MemRef::Read | MemRef::Write);
266 unsigned ArgNo = AI->getOperandNo();
267 Attribute::AttrKind ABIAttributes[] = {
268 Attribute::ZExt, Attribute::SExt, Attribute::InReg,
269 Attribute::ByVal, Attribute::ByRef, Attribute::InAlloca,
270 Attribute::Preallocated, Attribute::StructRet};
271 AttributeList CallAttrs =
I.getAttributes();
272 for (Attribute::AttrKind Attr : ABIAttributes) {
273 Attribute CallAttr = CallAttrs.getParamAttr(ArgNo, Attr);
276 Twine(
"Undefined behavior: ABI attribute ") +
277 Attribute::getNameFromAttrKind(Attr) +
278 " not present on both function and call-site",
282 Twine(
"Undefined behavior: ABI attribute ") +
283 Attribute::getNameFromAttrKind(Attr) +
284 " does not have same argument for function and call-site",
293 if (CI->isTailCall()) {
294 const AttributeList &PAL = CI->getAttributes();
296 for (
Value *Arg :
I.args()) {
299 if (PAL.hasParamAttr(ArgNo++, Attribute::ByVal))
301 Value *Obj = findValue(Arg,
true);
303 "Undefined behavior: Call with \"tail\" keyword references "
311 switch (
II->getIntrinsicID()) {
317 case Intrinsic::memcpy:
318 case Intrinsic::memcpy_inline: {
329 if (
const ConstantInt *Len =
332 if (
Len->getValue().isIntN(32))
336 "Undefined behavior: memcpy source and destination overlap", &
I);
339 case Intrinsic::memmove: {
347 case Intrinsic::memset:
348 case Intrinsic::memset_inline: {
354 case Intrinsic::vastart:
357 std::nullopt,
nullptr, MemRef::Read | MemRef::Write);
359 case Intrinsic::vacopy:
361 std::nullopt,
nullptr, MemRef::Write);
363 std::nullopt,
nullptr, MemRef::Read);
365 case Intrinsic::vaend:
367 std::nullopt,
nullptr, MemRef::Read | MemRef::Write);
370 case Intrinsic::stackrestore:
375 std::nullopt,
nullptr, MemRef::Read | MemRef::Write);
377 case Intrinsic::get_active_lane_mask:
379 Check(!TripCount->isZero(),
380 "get_active_lane_mask: operand #2 "
381 "must be greater than 0",
387void Lint::visitReturnInst(ReturnInst &
I) {
389 Check(!
F->doesNotReturn(),
390 "Unusual: Return statement in function with noreturn attribute", &
I);
392 if (
Value *V =
I.getReturnValue()) {
393 Value *Obj = findValue(V,
true);
400void Lint::visitMemoryReference(Instruction &
I,
const MemoryLocation &Loc,
401 MaybeAlign Align,
Type *Ty,
unsigned Flags) {
408 Value *UnderlyingObject = findValue(
Ptr,
true);
410 "Undefined behavior: Null pointer dereference", &
I);
412 "Undefined behavior: Undef pointer dereference", &
I);
415 "Unusual: All-ones pointer dereference", &
I);
418 "Unusual: Address one pointer dereference", &
I);
420 if (Flags & MemRef::Write) {
424 "Undefined behavior: Write to memory in const addrspace", &
I);
427 Check(!GV->isConstant(),
"Undefined behavior: Write to read-only memory",
431 "Undefined behavior: Write to text section", &
I);
433 if (Flags & MemRef::Read) {
437 "Undefined behavior: Load from block address", &
I);
439 if (Flags & MemRef::Callee) {
441 "Undefined behavior: Call to block address", &
I);
443 if (Flags & MemRef::Branchee) {
446 "Undefined behavior: Branch to non-blockaddress", &
I);
458 MaybeAlign BaseAlign;
461 Type *ATy = AI->getAllocatedType();
463 BaseSize =
DL->getTypeAllocSize(ATy).getFixedValue();
464 BaseAlign = AI->getAlign();
468 if (GV->hasDefinitiveInitializer()) {
469 Type *GTy = GV->getValueType();
471 BaseSize =
DL->getTypeAllocSize(GTy);
472 BaseAlign = GV->getAlign();
473 if (!BaseAlign && GTy->
isSized())
474 BaseAlign =
DL->getABITypeAlign(GTy);
483 "Undefined behavior: Buffer overflow", &
I);
487 if (!Align && Ty && Ty->
isSized())
488 Align =
DL->getABITypeAlign(Ty);
489 if (BaseAlign && Align)
491 "Undefined behavior: Memory reference address is misaligned", &
I);
495void Lint::visitLoadInst(LoadInst &
I) {
500void Lint::visitStoreInst(StoreInst &
I) {
502 I.getOperand(0)->getType(), MemRef::Write);
505void Lint::visitAtomicCmpXchgInst(AtomicCmpXchgInst &
I) {
507 I.getOperand(0)->getType(), MemRef::Write);
510void Lint::visitAtomicRMWInst(AtomicRMWInst &
I) {
512 I.getOperand(0)->getType(), MemRef::Write);
515void Lint::visitXor(BinaryOperator &
I) {
517 "Undefined result: xor(undef, undef)", &
I);
520void Lint::visitSub(BinaryOperator &
I) {
522 "Undefined result: sub(undef, undef)", &
I);
525void Lint::visitLShr(BinaryOperator &
I) {
529 "Undefined result: Shift count out of range", &
I);
532void Lint::visitAShr(BinaryOperator &
I) {
533 if (ConstantInt *CI =
536 "Undefined result: Shift count out of range", &
I);
539void Lint::visitShl(BinaryOperator &
I) {
540 if (ConstantInt *CI =
543 "Undefined result: Shift count out of range", &
I);
563 if (
C->isZeroValue())
582void Lint::visitSDiv(BinaryOperator &
I) {
584 "Undefined behavior: Division by zero", &
I);
587void Lint::visitUDiv(BinaryOperator &
I) {
589 "Undefined behavior: Division by zero", &
I);
592void Lint::visitSRem(BinaryOperator &
I) {
594 "Undefined behavior: Division by zero", &
I);
597void Lint::visitURem(BinaryOperator &
I) {
599 "Undefined behavior: Division by zero", &
I);
602void Lint::visitAllocaInst(AllocaInst &
I) {
605 Check(&
I.getParent()->getParent()->getEntryBlock() ==
I.getParent(),
606 "Pessimization: Static alloca outside of entry block", &
I);
611void Lint::visitVAArgInst(VAArgInst &
I) {
613 MemRef::Read | MemRef::Write);
616void Lint::visitIndirectBrInst(IndirectBrInst &
I) {
618 std::nullopt,
nullptr, MemRef::Branchee);
620 Check(
I.getNumDestinations() != 0,
621 "Undefined behavior: indirectbr with no destinations", &
I);
624void Lint::visitExtractElementInst(ExtractElementInst &
I) {
627 ElementCount
EC =
I.getVectorOperandType()->getElementCount();
628 Check(
EC.isScalable() || CI->getValue().ult(
EC.getFixedValue()),
629 "Undefined result: extractelement index out of range", &
I);
633void Lint::visitInsertElementInst(InsertElementInst &
I) {
636 ElementCount
EC =
I.getType()->getElementCount();
637 Check(
EC.isScalable() || CI->getValue().ult(
EC.getFixedValue()),
638 "Undefined result: insertelement index out of range", &
I);
642void Lint::visitUnreachableInst(UnreachableInst &
I) {
644 Check(&
I == &
I.getParent()->front() ||
645 std::prev(
I.getIterator())->mayHaveSideEffects(),
646 "Unusual: unreachable immediately preceded by instruction without "
658Value *Lint::findValue(
Value *V,
bool OffsetOk)
const {
659 SmallPtrSet<Value *, 4> Visited;
660 return findValueImpl(V, OffsetOk, Visited);
664Value *Lint::findValueImpl(
Value *V,
bool OffsetOk,
665 SmallPtrSetImpl<Value *> &Visited)
const {
667 if (!Visited.
insert(V).second)
679 SmallPtrSet<BasicBlock *, 4> VisitedBlocks;
680 BatchAAResults BatchAA(*AA);
682 if (!VisitedBlocks.
insert(BB).second)
686 return findValueImpl(U, OffsetOk, Visited);
687 if (BBI != BB->
begin())
695 if (
Value *W = PN->hasConstantValue())
696 return findValueImpl(W, OffsetOk, Visited);
698 if (CI->isNoopCast(*
DL))
699 return findValueImpl(CI->getOperand(0), OffsetOk, Visited);
704 return findValueImpl(W, OffsetOk, Visited);
709 CE->getOperand(0)->getType(),
CE->getType(),
711 return findValueImpl(
CE->getOperand(0), OffsetOk, Visited);
718 return findValueImpl(W, OffsetOk, Visited);
722 return findValueImpl(W, OffsetOk, Visited);
729 auto *
Mod =
F.getParent();
730 auto *
DL = &
F.getDataLayout();
735 Lint L(
Mod,
DL,
AA, AC, DT, TLI);
737 dbgs() << L.MessagesStr.str();
738 if (AbortOnError && !L.MessagesStr.str().empty())
740 "linter found errors, aborting. (enabled by abort-on-error)",
false);
748 OS <<
"<abort-on-error>";
759 assert(!
F.isDeclaration() &&
"Cannot lint external functions");
765 FAM.registerPass([&] {
779 if (!
F.isDeclaration())
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
AMDGPU address space definition.
This file implements a class to represent arbitrary precision integral constant values and operations...
MachineBasicBlock MachineBasicBlock::iterator DebugLoc DL
This is the interface for LLVM's primary stateless and local alias analysis.
This file contains the declarations for the subclasses of Constant, which represent the different fla...
Module.h This file contains the declarations for the Module class.
This header defines various interfaces for pass management in LLVM.
static bool isZero(Value *V, const DataLayout &DL, DominatorTree *DT, AssumptionCache *AC)
This file provides utility analysis objects describing memory locations.
uint64_t IntrinsicInst * II
if(auto Err=PB.parsePassPipeline(MPM, Passes)) return wrap(std MPM run * Mod
FunctionAnalysisManager FAM
static unsigned getNumElements(Type *Ty)
This is the interface for a metadata-based scoped no-alias analysis.
This file defines the SmallPtrSet class.
This is the interface for a metadata-based TBAA.
A manager for alias analyses.
LLVM_ABI AliasResult alias(const MemoryLocation &LocA, const MemoryLocation &LocB)
The main low level interface to the alias analysis implementation.
@ PartialAlias
The two locations alias, but only due to a partial overlap.
@ MustAlias
The two locations precisely alias each other.
an instruction to allocate memory on the stack
PassT::Result & getResult(IRUnitT &IR, ExtraArgTs... ExtraArgs)
Get the result of an analysis pass for a given IR unit.
LLVM_ABI bool hasNoAliasAttr() const
Return true if this argument has the noalias attribute.
LLVM_ABI bool onlyReadsMemory() const
Return true if this argument has the readonly or readnone attribute.
LLVM_ABI Type * getParamStructRetType() const
If this is an sret argument, return its type.
LLVM_ABI bool hasStructRetAttr() const
Return true if this argument has the sret attribute.
A function analysis which provides an AssumptionCache.
A cache of @llvm.assume calls within a function.
An instruction that atomically checks whether a specified value is in a memory location,...
an instruction that atomically reads a memory location, combines it with another value,...
bool isValid() const
Return true if the attribute is any kind of attribute.
Analysis pass providing a never-invalidated alias analysis result.
iterator begin()
Instruction iterator methods.
LLVM_ABI const BasicBlock * getUniquePredecessor() const
Return the predecessor of this block if it has a unique predecessor block.
InstListType::iterator iterator
Instruction iterators...
Base class for all callable instructions (InvokeInst and CallInst) Holds everything related to callin...
static LLVM_ABI bool isNoopCast(Instruction::CastOps Opcode, Type *SrcTy, Type *DstTy, const DataLayout &DL)
A no-op cast is one that can be effected without changing any bits.
This is an important base class in LLVM.
A parsed version of the target data layout string in and methods for querying it.
Analysis pass which computes a DominatorTree.
Concrete subclass of DominatorTreeBase that is used to compute a normal dominator tree.
Indirect Branch Instruction.
This instruction inserts a single (scalar) element into a VectorType value.
Base class for instruction visitors.
PreservedAnalyses run(Function &F, FunctionAnalysisManager &AM)
void printPipeline(raw_ostream &OS, function_ref< StringRef(StringRef)> MapClassName2PassName)
An instruction for reading from memory.
static LocationSize precise(uint64_t Value)
TypeSize getValue() const
static constexpr LocationSize afterPointer()
Any location after the base pointer (but still within the underlying object).
Value * getLength() const
Value * getDest() const
This is just like getRawDest, but it strips off any cast instructions (including addrspacecast) that ...
MaybeAlign getDestAlign() const
MaybeAlign getSourceAlign() const
Value * getSource() const
This is just like getRawSource, but it strips off any cast instructions that feed it,...
Representation for a specific memory location.
static LLVM_ABI MemoryLocation get(const LoadInst *LI)
Return a location with information about the memory reference by the given instruction.
static LLVM_ABI MemoryLocation getForSource(const MemTransferInst *MTI)
Return a location representing the source of a memory transfer.
LocationSize Size
The maximum size of the location, in address-units, or UnknownSize if the size is not known.
static MemoryLocation getAfter(const Value *Ptr, const AAMDNodes &AATags=AAMDNodes())
Return a location that may access any location after Ptr, while remaining within the underlying objec...
const Value * Ptr
The address of the start of the location.
static LLVM_ABI MemoryLocation getForDest(const MemIntrinsic *MI)
Return a location representing the destination of a memory set or transfer.
static LLVM_ABI MemoryLocation getForArgument(const CallBase *Call, unsigned ArgIdx, const TargetLibraryInfo *TLI)
Return a location representing a particular argument of a call.
A Module instance is used to store all the information related to an LLVM module.
static LLVM_ABI PoisonValue * get(Type *T)
Static factory methods - Return an 'poison' object of the specified type.
A set of analyses that are preserved following a run of a transformation pass.
static PreservedAnalyses all()
Construct a special preserved set that preserves all passes.
Return a value (possibly void), from a function.
Analysis pass providing a never-invalidated alias analysis result.
A templated base class for SmallPtrSet which provides the typesafe interface that is common across al...
std::pair< iterator, bool > insert(PtrType Ptr)
Inserts Ptr if and only if there is no element in the container equal to Ptr.
An instruction for storing to memory.
StringRef - Represent a constant reference to a string, i.e.
Analysis pass providing the TargetLibraryInfo.
Provides information about what library functions are available for the current target.
Triple - Helper class for working with autoconf configuration names.
Analysis pass providing a never-invalidated alias analysis result.
The instances of the Type class are immutable: once they are created, they are never changed.
LLVM_ABI bool isScalableTy(SmallPtrSetImpl< const Type * > &Visited) const
Return true if this is a type whose size is a known multiple of vscale.
bool isPointerTy() const
True if this is an instance of PointerType.
LLVM_ABI unsigned getPointerAddressSpace() const
Get the address space of this pointer or pointer vector type.
bool isSized(SmallPtrSetImpl< Type * > *Visited=nullptr) const
Return true if it makes sense to take the size of this type.
This function has undefined behavior.
This class represents the va_arg llvm instruction, which returns an argument of the specified type gi...
LLVM Value Representation.
Type * getType() const
All values are typed, get the type of this value.
An efficient, type-erasing, non-owning reference to a callable.
This class implements an extremely fast bulk output stream that can only output to a stream.
A raw_ostream that writes to an std::string.
Abstract Attribute helper functions.
constexpr char Align[]
Key for Kernel::Arg::Metadata::mAlign.
bool isConstantAddressSpace(unsigned AS)
@ C
The default llvm calling convention, compatible with C.
@ BasicBlock
Various leaf nodes.
@ CE
Windows NT (Windows on ARM)
This is an optimization pass for GlobalISel generic memory operations.
FunctionAddr VTableAddr Value
decltype(auto) dyn_cast(const From &Val)
dyn_cast<X> - Return the argument parameter cast to the specified type.
Value * GetPointerBaseWithConstantOffset(Value *Ptr, int64_t &Offset, const DataLayout &DL, bool AllowNonInbounds=true)
Analyze the specified pointer to see if it can be expressed as a base pointer plus a constant offset.
LLVM_ABI Value * FindAvailableLoadedValue(LoadInst *Load, BasicBlock *ScanBB, BasicBlock::iterator &ScanFrom, unsigned MaxInstsToScan=DefMaxInstsToScan, BatchAAResults *AA=nullptr, bool *IsLoadCSE=nullptr, unsigned *NumScanedInst=nullptr)
Scan backwards to see if we have the value of the given load available locally within a small number ...
LLVM_ABI Value * simplifyInstruction(Instruction *I, const SimplifyQuery &Q)
See if we can compute a simplified version of this instruction.
LLVM_ABI Constant * ConstantFoldConstant(const Constant *C, const DataLayout &DL, const TargetLibraryInfo *TLI=nullptr)
ConstantFoldConstant - Fold the constant using the specified DataLayout.
LLVM_ABI void computeKnownBits(const Value *V, KnownBits &Known, const DataLayout &DL, AssumptionCache *AC=nullptr, const Instruction *CxtI=nullptr, const DominatorTree *DT=nullptr, bool UseInstrInfo=true, unsigned Depth=0)
Determine which bits of V are known to be either zero or one and return them in the KnownZero/KnownOn...
LLVM_ABI raw_ostream & dbgs()
dbgs() - This returns a reference to a raw_ostream for debugging messages.
LLVM_ABI void report_fatal_error(Error Err, bool gen_crash_diag=true)
void lintModule(const Module &M, bool AbortOnError=false)
Lint a module.
LLVM_ABI cl::opt< unsigned > DefMaxInstsToScan
The default number of maximum instructions to scan in the block, used by FindAvailableLoadedValue().
bool isa(const From &Val)
isa<X> - Return true if the parameter to the template is an instance of one of the template type argu...
@ Mod
The access may modify the value stored in memory.
ArrayRef(const T &OneElt) -> ArrayRef< T >
decltype(auto) cast(const From &Val)
cast<X> - Return the argument parameter cast to the specified type.
Align commonAlignment(Align A, uint64_t Offset)
Returns the alignment that satisfies both alignments.
AnalysisManager< Function > FunctionAnalysisManager
Convenience typedef for the Function analysis manager.
LLVM_ABI Value * FindInsertedValue(Value *V, ArrayRef< unsigned > idx_range, std::optional< BasicBlock::iterator > InsertBefore=std::nullopt)
Given an aggregate and an sequence of indices, see if the scalar value indexed is already around as a...
LLVM_ABI const Value * getUnderlyingObject(const Value *V, unsigned MaxLookup=MaxLookupSearchDepth)
This method strips off any GEP address adjustments, pointer casts or llvm.threadlocal....
AAResults AliasAnalysis
Temporary typedef for legacy code that uses a generic AliasAnalysis pointer or reference.
void lintFunction(const Function &F, bool AbortOnError=false)
lintFunction - Check a function for errors, printing messages on stderr.
bool isZero() const
Returns true if value is all zero.
This struct is a compact representation of a valid (power of two) or undefined (0) alignment.
void printPipeline(raw_ostream &OS, function_ref< StringRef(StringRef)> MapClassName2PassName)