32 switch (
II->getIntrinsicID()) {
33 case Intrinsic::memcpy_inline:
34 case Intrinsic::memcpy:
35 case Intrinsic::memmove:
36 case Intrinsic::memset:
37 case Intrinsic::memcpy_element_unordered_atomic:
38 case Intrinsic::memmove_element_unordered_atomic:
39 case Intrinsic::memset_element_unordered_atomic:
47 auto *CF = CI->getCalledFunction();
55 bool KnownLibCall =
TLI.getLibFunc(*CF, LF) &&
TLI.has(LF);
60 case LibFunc_memcpy_chk:
61 case LibFunc_mempcpy_chk:
62 case LibFunc_memset_chk:
63 case LibFunc_memmove_chk:
94 visitIntrinsicCall(*
II);
111 return (
Type +
".").str();
117 return "MemoryOpStore";
119 return "MemoryOpUnknown";
121 return "MemoryOpIntrinsicCall";
123 return "MemoryOpCall";
131 if (Inline && *Inline)
132 R <<
" Inlined: " <<
NV(
"StoreInlined",
true) <<
".";
134 R <<
" Volatile: " <<
NV(
"StoreVolatile",
true) <<
".";
136 R <<
" Atomic: " <<
NV(
"StoreAtomic",
true) <<
".";
139 if ((Inline && !*Inline) || !Volatile || !Atomic)
141 if (Inline && !*Inline)
142 R <<
" Inlined: " <<
NV(
"StoreInlined",
false) <<
".";
144 R <<
" Volatile: " <<
NV(
"StoreVolatile",
false) <<
".";
146 R <<
" Atomic: " <<
NV(
"StoreAtomic",
false) <<
".";
149static std::optional<uint64_t>
151 if (!SizeInBits || *SizeInBits % 8 != 0)
153 return *SizeInBits / 8;
156template<
typename ...Ts>
157std::unique_ptr<DiagnosticInfoIROptimization>
158MemoryOpRemark::makeRemark(Ts... Args) {
161 return std::make_unique<OptimizationRemarkAnalysis>(
Args...);
163 return std::make_unique<OptimizationRemarkMissed>(
Args...);
169void MemoryOpRemark::visitStore(
const StoreInst &
SI) {
171 bool Atomic =
SI.isAtomic();
172 int64_t
Size =
DL.getTypeStoreSize(
SI.getOperand(0)->getType());
177 visitPtr(
SI.getOperand(1),
false, *R);
182void MemoryOpRemark::visitUnknown(
const Instruction &
I) {
189 SmallString<32> CallTo;
192 switch (
II.getIntrinsicID()) {
193 case Intrinsic::memcpy_inline:
197 case Intrinsic::memcpy:
200 case Intrinsic::memmove:
203 case Intrinsic::memset:
206 case Intrinsic::memcpy_element_unordered_atomic:
210 case Intrinsic::memmove_element_unordered_atomic:
214 case Intrinsic::memset_element_unordered_atomic:
219 return visitUnknown(
II);
223 visitCallee(CallTo.
str(),
true, *R);
224 visitSizeOperand(
II.getOperand(2), *R);
228 bool Volatile = !Atomic && CIVolatile && CIVolatile->getZExtValue();
229 switch (
II.getIntrinsicID()) {
230 case Intrinsic::memcpy_inline:
231 case Intrinsic::memcpy:
232 case Intrinsic::memmove:
233 case Intrinsic::memcpy_element_unordered_atomic:
234 visitPtr(
II.getOperand(1),
true, *R);
235 visitPtr(
II.getOperand(0),
false, *R);
237 case Intrinsic::memset:
238 case Intrinsic::memset_element_unordered_atomic:
239 visitPtr(
II.getOperand(0),
false, *R);
246void MemoryOpRemark::visitCall(
const CallInst &CI) {
249 return visitUnknown(CI);
252 bool KnownLibCall =
TLI.getLibFunc(*
F, LF) &&
TLI.has(LF);
254 visitCallee(
F, KnownLibCall, *R);
255 visitKnownLibCall(CI, LF, *R);
259template <
typename FTy>
260void MemoryOpRemark::visitCallee(FTy
F,
bool KnownLibCall,
264 R <<
NV(
"UnknownLibCall",
"unknown") <<
" function ";
273 case LibFunc_memset_chk:
282 case LibFunc_memcpy_chk:
283 case LibFunc_mempcpy_chk:
284 case LibFunc_memmove_chk:
286 case LibFunc_mempcpy:
287 case LibFunc_memmove:
298 uint64_t
Size =
Len->getZExtValue();
299 R <<
" Memory operation size: " <<
NV(
"StoreSize",
Size) <<
" bytes.";
309void MemoryOpRemark::visitVariable(
const Value *V,
312 auto *Ty = GV->getValueType();
313 uint64_t
Size =
DL.getTypeSizeInBits(Ty).getFixedValue();
316 Result.push_back(std::move(Var));
321 bool FoundDI =
false;
324 auto FindDI = [&](
const DbgVariableRecord *DVI) {
325 if (DILocalVariable *DILV = DVI->getVariable()) {
326 std::optional<uint64_t> DISize =
getSizeInBytes(DILV->getSizeInBits());
327 VariableInfo Var{DILV->getName(), DISize};
328 if (!Var.isEmpty()) {
329 Result.push_back(std::move(Var));
346 std::optional<TypeSize> TySize = AI->getAllocationSize(
DL);
347 std::optional<uint64_t>
Size =
348 TySize ? std::optional(TySize->getFixedValue()) : std::nullopt;
351 Result.push_back(std::move(Var));
356 SmallVector<Value *, 2> Objects;
359 for (
const Value *V : Objects)
360 visitVariable(V, VIs);
365 uint64_t
Size =
Ptr->getPointerDereferenceableBytes(
DL, CanBeNull, CanBeFreed);
371 R << (IsRead ?
"\n Read Variables: " :
"\n Written Variables: ");
372 for (
unsigned i = 0; i < VIs.
size(); ++i) {
373 const VariableInfo &
VI = VIs[i];
374 assert(!
VI.isEmpty() &&
"No extra content to display.");
378 R <<
NV(IsRead ?
"RVarName" :
"WVarName", *
VI.Name);
380 R <<
NV(IsRead ?
"RVarName" :
"WVarName",
"<unknown>");
382 R <<
" (" <<
NV(IsRead ?
"RVarSize" :
"WVarSize", *
VI.Size) <<
" bytes)";
388 if (!
I->hasMetadata(LLVMContext::MD_annotation))
390 return any_of(
I->getMetadata(LLVMContext::MD_annotation)->operands(),
392 return isa<MDString>(Op.get()) &&
393 cast<MDString>(Op.get())->getString() ==
"auto-init";
398 return (
Type +
" inserted by -ftrivial-auto-var-init.").str();
404 return "AutoInitStore";
406 return "AutoInitUnknownInstruction";
408 return "AutoInitIntrinsicCall";
410 return "AutoInitCall";
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
uint64_t IntrinsicInst * II
This file defines the SmallString class.
Function * getCalledFunction() const
Returns the function called, or null if this is an indirect function invocation or the function signa...
This class represents a function call, abstracting a target machine's calling convention.
Common features for diagnostics dealing with optimization remarks that are used by IR passes.
A wrapper class for inspecting calls to intrinsic functions.
Tracking metadata reference owned by Metadata.
StringRef str() const
Explicit conversion to StringRef.
This class consists of common code factored out of the SmallVector class to reduce code duplication b...
void push_back(const T &Elt)
An instruction for storing to memory.
StringRef - Represent a constant reference to a string, i.e.
Provides information about what library functions are available for the current target.
The instances of the Type class are immutable: once they are created, they are never changed.
Value * getOperand(unsigned i) const
LLVM Value Representation.
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
constexpr char Args[]
Key for Kernel::Metadata::mArgs.
Add a small namespace to avoid name clashes with the classes used in the streaming interface.
DiagnosticInfoOptimizationBase::Argument NV
DiagnosticInfoOptimizationBase::setExtraArgs setExtraArgs
This is an optimization pass for GlobalISel generic memory operations.
FunctionAddr VTableAddr Value
UnaryFunction for_each(R &&Range, UnaryFunction F)
Provide wrappers to std::for_each which take ranges instead of having to pass begin/end explicitly.
decltype(auto) dyn_cast(const From &Val)
dyn_cast<X> - Return the argument parameter cast to the specified type.
LLVM_ABI bool getUnderlyingObjectsForCodeGen(const Value *V, SmallVectorImpl< Value * > &Objects)
This is a wrapper around getUnderlyingObjects and adds support for basic ptrtoint+arithmetic+inttoptr...
@ DK_OptimizationRemarkAnalysis
@ DK_OptimizationRemarkMissed
bool any_of(R &&range, UnaryPredicate P)
Provide wrappers to std::any_of which take ranges instead of having to pass begin/end explicitly.
class LLVM_GSL_OWNER SmallVector
Forward declaration of SmallVector so that calculateSmallVectorDefaultInlinedElements can reference s...
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...
DWARFExpression::Operation Op
LLVM_ABI TinyPtrVector< DbgVariableRecord * > findDVRDeclares(Value *V)
Finds dbg.declare records declaring local variables as living in the memory that 'V' points to.