[llvm-branch-commits] [llvm] [LLVM] Add a ConcurrencySanitizer LLVM pass (PR #225780)
Joseph Huber via llvm-branch-commits
llvm-branch-commits at lists.llvm.org
Wed Sep 23 07:38:15 PDT 2026
https://github.com/jhuber6 updated https://github.com/llvm/llvm-project/pull/225780
>From f3c1aa6e92741e2b3b586b0261bb264b879c2bb9 Mon Sep 17 00:00:00 2001
From: Joseph Huber <huberjn at outlook.com>
Date: Mon, 21 Sep 2026 17:34:50 -0500
Subject: [PATCH] [LLVM] Add a ConcurrencySanitizer LLVM pass
Summary:
Add an LLVM ConcurrencySanitizer pass to instrument memory and atomic
operations for a sampling race detector. Fundamentally the pass iterates
through every candidate memory operation and adds a check above it.
Unlike TSAN, we do not replace any operations, which heavily simplifies
the instrumentation.
We do not re-use the TSAN instrumentaiton because the appraoches are
different enough and the passes simple enough that the extra code is not
a large concern. More differences will be added in the future, so
keeping them separate is easlier.
---
.../Instrumentation/ConcurrencySanitizer.h | 29 +
llvm/lib/Passes/PassBuilder.cpp | 1 +
llvm/lib/Passes/PassRegistry.def | 2 +
.../Transforms/Instrumentation/CMakeLists.txt | 1 +
.../Instrumentation/ConcurrencySanitizer.cpp | 614 ++++++++++++++++++
.../ConcurrencySanitizer/address_space.ll | 106 +++
.../ConcurrencySanitizer/atomic.ll | 86 +++
.../ConcurrencySanitizer/basic.ll | 49 ++
.../ConcurrencySanitizer/callbacks.ll | 72 ++
.../ConcurrencySanitizer/function_control.ll | 59 ++
.../ConcurrencySanitizer/memintrinsics.ll | 46 ++
.../ConcurrencySanitizer/module.ll | 12 +
.../ConcurrencySanitizer/no_sanitize.ll | 57 ++
.../ConcurrencySanitizer/selection.ll | 131 ++++
.../ConcurrencySanitizer/shared_alloca.ll | 23 +
.../ConcurrencySanitizer/unusual_sizes.ll | 33 +
16 files changed, 1321 insertions(+)
create mode 100644 llvm/include/llvm/Transforms/Instrumentation/ConcurrencySanitizer.h
create mode 100644 llvm/lib/Transforms/Instrumentation/ConcurrencySanitizer.cpp
create mode 100644 llvm/test/Instrumentation/ConcurrencySanitizer/address_space.ll
create mode 100644 llvm/test/Instrumentation/ConcurrencySanitizer/atomic.ll
create mode 100644 llvm/test/Instrumentation/ConcurrencySanitizer/basic.ll
create mode 100644 llvm/test/Instrumentation/ConcurrencySanitizer/callbacks.ll
create mode 100644 llvm/test/Instrumentation/ConcurrencySanitizer/function_control.ll
create mode 100644 llvm/test/Instrumentation/ConcurrencySanitizer/memintrinsics.ll
create mode 100644 llvm/test/Instrumentation/ConcurrencySanitizer/module.ll
create mode 100644 llvm/test/Instrumentation/ConcurrencySanitizer/no_sanitize.ll
create mode 100644 llvm/test/Instrumentation/ConcurrencySanitizer/selection.ll
create mode 100644 llvm/test/Instrumentation/ConcurrencySanitizer/shared_alloca.ll
create mode 100644 llvm/test/Instrumentation/ConcurrencySanitizer/unusual_sizes.ll
diff --git a/llvm/include/llvm/Transforms/Instrumentation/ConcurrencySanitizer.h b/llvm/include/llvm/Transforms/Instrumentation/ConcurrencySanitizer.h
new file mode 100644
index 00000000000000..9bf3b8bde6a13b
--- /dev/null
+++ b/llvm/include/llvm/Transforms/Instrumentation/ConcurrencySanitizer.h
@@ -0,0 +1,29 @@
+//===- ConcurrencySanitizer.h - ConcurrencySanitizer ------------*- C++ -*-===//
+//
+// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
+// See https://llvm.org/LICENSE.txt for license information.
+// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
+//
+//===----------------------------------------------------------------------===//
+
+#ifndef LLVM_TRANSFORMS_INSTRUMENTATION_CONCURRENCYSANITIZER_H
+#define LLVM_TRANSFORMS_INSTRUMENTATION_CONCURRENCYSANITIZER_H
+
+#include "llvm/IR/PassManager.h"
+#include "llvm/Support/Compiler.h"
+
+namespace llvm {
+
+struct ConcurrencySanitizerPass
+ : public RequiredPassInfoMixin<ConcurrencySanitizerPass> {
+ LLVM_ABI PreservedAnalyses run(Function &F, FunctionAnalysisManager &FAM);
+};
+
+struct ModuleConcurrencySanitizerPass
+ : public RequiredPassInfoMixin<ModuleConcurrencySanitizerPass> {
+ LLVM_ABI PreservedAnalyses run(Module &M, ModuleAnalysisManager &AM);
+};
+
+} // namespace llvm
+
+#endif // LLVM_TRANSFORMS_INSTRUMENTATION_CONCURRENCYSANITIZER_H
diff --git a/llvm/lib/Passes/PassBuilder.cpp b/llvm/lib/Passes/PassBuilder.cpp
index 858c76706427e8..d2c25e85beeb42 100644
--- a/llvm/lib/Passes/PassBuilder.cpp
+++ b/llvm/lib/Passes/PassBuilder.cpp
@@ -274,6 +274,7 @@
#include "llvm/Transforms/Instrumentation/AllocToken.h"
#include "llvm/Transforms/Instrumentation/BoundsChecking.h"
#include "llvm/Transforms/Instrumentation/CGProfile.h"
+#include "llvm/Transforms/Instrumentation/ConcurrencySanitizer.h"
#include "llvm/Transforms/Instrumentation/ControlHeightReduction.h"
#include "llvm/Transforms/Instrumentation/CopyProf.h"
#include "llvm/Transforms/Instrumentation/DataFlowSanitizer.h"
diff --git a/llvm/lib/Passes/PassRegistry.def b/llvm/lib/Passes/PassRegistry.def
index 33c9e19988d7ab..3913d0aaf75d49 100644
--- a/llvm/lib/Passes/PassRegistry.def
+++ b/llvm/lib/Passes/PassRegistry.def
@@ -67,6 +67,7 @@ MODULE_PASS("coro-cleanup", CoroCleanupPass())
MODULE_PASS("coro-early", CoroEarlyPass())
MODULE_PASS("lower-comment-string", LowerCommentStringPass())
MODULE_PASS("cross-dso-cfi", CrossDSOCFIPass())
+MODULE_PASS("csan-module", ModuleConcurrencySanitizerPass())
MODULE_PASS("ctx-instr-gen",
PGOInstrumentationGen(PGOInstrumentationType::CTXPROF))
MODULE_PASS("ctx-prof-flatten",
@@ -429,6 +430,7 @@ FUNCTION_PASS("copyprof-stores", CopyProfStoresPass())
FUNCTION_PASS("coro-elide", CoroElidePass())
FUNCTION_PASS("correlated-propagation", CorrelatedValuePropagationPass())
FUNCTION_PASS("count-visits", CountVisitsPass())
+FUNCTION_PASS("csan", ConcurrencySanitizerPass())
FUNCTION_PASS("dce", DCEPass())
FUNCTION_PASS("declare-to-assign", llvm::AssignmentTrackingPass())
FUNCTION_PASS("dfa-jump-threading", DFAJumpThreadingPass())
diff --git a/llvm/lib/Transforms/Instrumentation/CMakeLists.txt b/llvm/lib/Transforms/Instrumentation/CMakeLists.txt
index 7d2e658acb5c15..4d08d0fa42184b 100644
--- a/llvm/lib/Transforms/Instrumentation/CMakeLists.txt
+++ b/llvm/lib/Transforms/Instrumentation/CMakeLists.txt
@@ -25,6 +25,7 @@ add_llvm_component_library(LLVMInstrumentation
SanitizerBinaryMetadata.cpp
ValueProfileCollector.cpp
ThreadSanitizer.cpp
+ ConcurrencySanitizer.cpp
TypeSanitizer.cpp
HWAddressSanitizer.cpp
RealtimeSanitizer.cpp
diff --git a/llvm/lib/Transforms/Instrumentation/ConcurrencySanitizer.cpp b/llvm/lib/Transforms/Instrumentation/ConcurrencySanitizer.cpp
new file mode 100644
index 00000000000000..0a14d67f9f5bc1
--- /dev/null
+++ b/llvm/lib/Transforms/Instrumentation/ConcurrencySanitizer.cpp
@@ -0,0 +1,614 @@
+//===- ConcurrencySanitizer.cpp - watchpoint race detector ----------------===//
+//
+// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
+// See https://llvm.org/LICENSE.txt for license information.
+// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
+//
+//===----------------------------------------------------------------------===//
+//
+// This file implements instrumentation for ConcurrencySanitizer, a sampling
+// data-race detector. Memory accesses are preceded by runtime probes while the
+// original operations remain unchanged.
+//
+//===----------------------------------------------------------------------===//
+
+#include "llvm/Transforms/Instrumentation/ConcurrencySanitizer.h"
+#include "llvm/ADT/DenseSet.h"
+#include "llvm/ADT/SmallVector.h"
+#include "llvm/ADT/Statistic.h"
+#include "llvm/ADT/StringExtras.h"
+#include "llvm/ADT/bit.h"
+#include "llvm/Analysis/CaptureTracking.h"
+#include "llvm/Analysis/TargetLibraryInfo.h"
+#include "llvm/Analysis/ValueTracking.h"
+#include "llvm/IR/DataLayout.h"
+#include "llvm/IR/IRBuilder.h"
+#include "llvm/IR/Instructions.h"
+#include "llvm/IR/IntrinsicInst.h"
+#include "llvm/IR/Intrinsics.h"
+#include "llvm/IR/Module.h"
+#include "llvm/ProfileData/InstrProf.h"
+#include "llvm/Support/AMDGPUAddrSpace.h"
+#include "llvm/Support/CommandLine.h"
+#include "llvm/Support/NVPTXAddrSpace.h"
+#include "llvm/TargetParser/Triple.h"
+#include "llvm/Transforms/Utils/EscapeEnumerator.h"
+#include "llvm/Transforms/Utils/Instrumentation.h"
+#include "llvm/Transforms/Utils/Local.h"
+#include "llvm/Transforms/Utils/ModuleUtils.h"
+
+using namespace llvm;
+
+#define DEBUG_TYPE "csan"
+
+static cl::opt<bool> ClInstrumentMemoryAccesses(
+ "csan-instrument-memory-accesses", cl::init(true),
+ cl::desc("Instrument memory accesses"), cl::Hidden);
+static cl::opt<bool>
+ ClInstrumentFuncEntryExit("csan-instrument-func-entry-exit", cl::init(true),
+ cl::desc("Instrument function entry and exit"),
+ cl::Hidden);
+static cl::opt<bool> ClHandleCxxExceptions(
+ "csan-handle-cxx-exceptions", cl::init(true),
+ cl::desc("Handle C++ exceptions (insert cleanup blocks for unwinding)"),
+ cl::Hidden);
+static cl::opt<bool> ClInstrumentAtomics("csan-instrument-atomics",
+ cl::init(true),
+ cl::desc("Instrument atomics"),
+ cl::Hidden);
+static cl::opt<bool> ClInstrumentMemIntrinsics(
+ "csan-instrument-memintrinsics", cl::init(true),
+ cl::desc("Instrument memintrinsics (memset/memcpy/memmove)"), cl::Hidden);
+static cl::opt<bool> ClDistinguishVolatile(
+ "csan-distinguish-volatile", cl::init(false),
+ cl::desc("Emit special instrumentation for accesses to volatiles"),
+ cl::Hidden);
+STATISTIC(NumInstrumentedReads, "Number of instrumented reads");
+STATISTIC(NumInstrumentedWrites, "Number of instrumented writes");
+STATISTIC(NumOmittedReadsBeforeWrite,
+ "Number of reads ignored due to following writes");
+
+static constexpr char kCsanModuleCtorName[] = "csan.module_ctor";
+static constexpr char kCsanInitName[] = "__csan_init";
+
+namespace {
+
+/// Must match CSAN_ACCESS_* in compiler-rt/lib/csan/csan_defs.h.
+enum AccessFlags : unsigned {
+ AF_None = 0,
+ AF_Atomic = 1u << 0,
+ AF_Compound = 1u << 1,
+};
+
+static bool isAtomicMemoryAccess(const Instruction *I) {
+ auto SSID = getAtomicSyncScopeID(I);
+ if (!SSID)
+ return false;
+ if (isa<LoadInst>(I) || isa<StoreInst>(I))
+ return *SSID != SyncScope::SingleThread;
+ return true;
+}
+
+static Value *getCallbackAddress(IRBuilderBase &IRB, Value *Addr) {
+ return IRB.CreateAddrSpaceCast(Addr, IRB.getPtrTy());
+}
+
+static ConstantInt *createOrdering(IRBuilderBase &IRB, AtomicOrdering Ord) {
+ uint32_t Value = 0;
+ switch (Ord) {
+ case AtomicOrdering::NotAtomic:
+ llvm_unreachable("unexpected atomic ordering");
+ case AtomicOrdering::Unordered:
+ case AtomicOrdering::Monotonic:
+ Value = 0;
+ break;
+ case AtomicOrdering::Acquire:
+ Value = 2;
+ break;
+ case AtomicOrdering::Release:
+ Value = 3;
+ break;
+ case AtomicOrdering::AcquireRelease:
+ Value = 4;
+ break;
+ case AtomicOrdering::SequentiallyConsistent:
+ Value = 5;
+ break;
+ }
+ return IRB.getInt32(Value);
+}
+
+static int getAccessSizeIndex(Type *Ty, const DataLayout &DL) {
+ assert(Ty->isSized());
+ if (Ty->isScalableTy())
+ return -1;
+ uint32_t TypeSize = DL.getTypeStoreSizeInBits(Ty);
+ if (TypeSize != 8 && TypeSize != 16 && TypeSize != 32 && TypeSize != 64 &&
+ TypeSize != 128)
+ return -1;
+ unsigned Idx = llvm::countr_zero(TypeSize / 8);
+ return static_cast<int>(Idx);
+}
+
+static bool addressSpaceMayRace(const Triple &T, unsigned AS) {
+ if (T.isAMDGPU())
+ // GDS and buffer fat pointers cannot form a generic watchpoint key.
+ return AS == AMDGPUAS::FLAT_ADDRESS || AS == AMDGPUAS::GLOBAL_ADDRESS ||
+ AS == AMDGPUAS::LOCAL_ADDRESS;
+ if (T.isNVPTX())
+ return AS == NVPTXAS::ADDRESS_SPACE_GENERIC ||
+ AS == NVPTXAS::ADDRESS_SPACE_GLOBAL ||
+ AS == NVPTXAS::ADDRESS_SPACE_SHARED ||
+ AS == NVPTXAS::ADDRESS_SPACE_SHARED_CLUSTER;
+ if (T.isSPIRV())
+ // FIXME: No exposed address spaces for SPIR-V.
+ return false;
+ return AS == 0;
+}
+
+struct ConcurrencySanitizer {
+ bool sanitizeFunction(Function &F, const TargetLibraryInfo &TLI);
+
+private:
+ struct MemoryAccessLists {
+ SmallVector<Instruction *, 8> LoadsAndStores;
+ SmallVector<Instruction *, 8> AtomicAccesses;
+ SmallVector<MemIntrinsic *, 8> MemIntrinCalls;
+ bool HasCalls = false;
+ };
+
+ void initialize(Module &M, const TargetLibraryInfo &TLI);
+ void collectMemoryAccesses(Function &F, MemoryAccessLists &Out);
+ bool instrumentLoadOrStore(Instruction *I, const DataLayout &DL);
+ bool instrumentAtomic(Instruction *I, const DataLayout &DL);
+ bool instrumentMemIntrinsic(MemIntrinsic *M);
+ bool insertAccessProbe(Instruction *I, Value *Addr, Type *AccessTy,
+ const DataLayout &DL, bool IsWrite, bool IsCompound,
+ bool IsAtomic);
+ bool shouldInstrumentAddress(Value *Addr) const;
+ bool shouldInstrumentAccess(Instruction *I) const;
+ void insertFuncEntryExit(Function &F);
+ void insertRuntimeIgnores(Function &F);
+
+ Module *Mod = nullptr;
+ Type *IntptrTy = nullptr;
+ IntegerType *FlagsTy = nullptr;
+
+ // Accesses sizes are powers of two: 1, 2, 4, 8, 16.
+ static const size_t kNumAccessSizes = 5;
+ // void __csan_readN(ptr, i32);
+ FunctionCallee CsanRead[kNumAccessSizes];
+ // void __csan_writeN(ptr, i32);
+ FunctionCallee CsanWrite[kNumAccessSizes];
+ // void __csan_unaligned_readN(ptr, i32);
+ FunctionCallee CsanUnalignedRead[kNumAccessSizes];
+ // void __csan_unaligned_writeN(ptr, i32);
+ FunctionCallee CsanUnalignedWrite[kNumAccessSizes];
+ // void __csan_volatile_readN(ptr, i32);
+ FunctionCallee CsanVolatileRead[kNumAccessSizes];
+ // void __csan_volatile_writeN(ptr, i32);
+ FunctionCallee CsanVolatileWrite[kNumAccessSizes];
+ // void __csan_unaligned_volatile_readN(ptr, i32);
+ FunctionCallee CsanUnalignedVolatileRead[kNumAccessSizes];
+ // void __csan_unaligned_volatile_writeN(ptr, i32);
+ FunctionCallee CsanUnalignedVolatileWrite[kNumAccessSizes];
+ // void __csan_read_writeN(ptr, i32);
+ FunctionCallee CsanCompoundRW[kNumAccessSizes];
+ // void __csan_unaligned_read_writeN(ptr, i32);
+ FunctionCallee CsanUnalignedCompoundRW[kNumAccessSizes];
+ // void __csan_func_entry(ptr);
+ FunctionCallee CsanFuncEntry;
+ // void __csan_func_exit();
+ FunctionCallee CsanFuncExit;
+ // void __csan_ignore_thread_begin();
+ FunctionCallee CsanIgnoreBegin;
+ // void __csan_ignore_thread_end();
+ FunctionCallee CsanIgnoreEnd;
+ // void __csan_read_range(ptr, intptr_t, i32);
+ FunctionCallee CsanReadRange;
+ // void __csan_write_range(ptr, intptr_t, i32);
+ FunctionCallee CsanWriteRange;
+ // void __csan_atomic_thread_fence(i32);
+ FunctionCallee CsanAtomicThreadFence;
+ // void __csan_atomic_signal_fence(i32);
+ FunctionCallee CsanAtomicSignalFence;
+};
+
+void insertModuleCtor(Module &M) {
+ getOrCreateSanitizerCtorAndInitFunctions(
+ M, kCsanModuleCtorName, kCsanInitName, /*InitArgTypes=*/{},
+ /*InitArgs=*/{},
+ [&](Function *Ctor, FunctionCallee) { appendToGlobalCtors(M, Ctor, 0); });
+}
+
+} // namespace
+
+PreservedAnalyses ConcurrencySanitizerPass::run(Function &F,
+ FunctionAnalysisManager &FAM) {
+ ConcurrencySanitizer CSan;
+ if (CSan.sanitizeFunction(F, FAM.getResult<TargetLibraryAnalysis>(F)))
+ return PreservedAnalyses::none();
+ return PreservedAnalyses::all();
+}
+
+PreservedAnalyses ModuleConcurrencySanitizerPass::run(Module &M,
+ ModuleAnalysisManager &) {
+ if (checkIfAlreadyInstrumented(M, "nosanitize_concurrency"))
+ return PreservedAnalyses::all();
+ insertModuleCtor(M);
+ return PreservedAnalyses::none();
+}
+
+void ConcurrencySanitizer::initialize(Module &M, const TargetLibraryInfo &TLI) {
+ LLVMContext &Ctx = M.getContext();
+ Mod = &M;
+ IntptrTy = M.getDataLayout().getIntPtrType(Ctx);
+ FlagsTy = Type::getInt32Ty(Ctx);
+
+ AttributeList Attr = AttributeList().addFnAttribute(Ctx, Attribute::NoUnwind);
+ IRBuilder<> IRB(Ctx);
+ Type *VoidTy = IRB.getVoidTy();
+ Type *PtrTy = IRB.getPtrTy();
+ CsanFuncEntry =
+ M.getOrInsertFunction("__csan_func_entry", Attr, VoidTy, PtrTy);
+ CsanFuncExit = M.getOrInsertFunction("__csan_func_exit", Attr, VoidTy);
+ CsanIgnoreBegin =
+ M.getOrInsertFunction("__csan_ignore_thread_begin", Attr, VoidTy);
+ CsanIgnoreEnd =
+ M.getOrInsertFunction("__csan_ignore_thread_end", Attr, VoidTy);
+ for (unsigned I = 0; I < kNumAccessSizes; ++I) {
+ std::string ByteSize = utostr(1U << I);
+ auto AccessFn = [&](const Twine &Name) {
+ return M.getOrInsertFunction(("__csan_" + Name).str(), Attr, VoidTy,
+ PtrTy, FlagsTy);
+ };
+ CsanRead[I] = AccessFn("read" + ByteSize);
+ CsanWrite[I] = AccessFn("write" + ByteSize);
+ CsanUnalignedRead[I] = AccessFn("unaligned_read" + ByteSize);
+ CsanUnalignedWrite[I] = AccessFn("unaligned_write" + ByteSize);
+ CsanVolatileRead[I] = AccessFn("volatile_read" + ByteSize);
+ CsanVolatileWrite[I] = AccessFn("volatile_write" + ByteSize);
+ CsanUnalignedVolatileRead[I] =
+ AccessFn("unaligned_volatile_read" + ByteSize);
+ CsanUnalignedVolatileWrite[I] =
+ AccessFn("unaligned_volatile_write" + ByteSize);
+ CsanCompoundRW[I] = AccessFn("read_write" + ByteSize);
+ CsanUnalignedCompoundRW[I] = AccessFn("unaligned_read_write" + ByteSize);
+ }
+ IntegerType *OrdTy = IRB.getInt32Ty();
+ CsanReadRange = M.getOrInsertFunction("__csan_read_range", Attr, VoidTy,
+ PtrTy, IntptrTy, FlagsTy);
+ CsanWriteRange = M.getOrInsertFunction("__csan_write_range", Attr, VoidTy,
+ PtrTy, IntptrTy, FlagsTy);
+ CsanAtomicThreadFence = M.getOrInsertFunction(
+ "__csan_atomic_thread_fence",
+ TLI.getAttrList(&Ctx, {0}, /*Signed=*/true, /*Ret=*/false, Attr), VoidTy,
+ OrdTy);
+ CsanAtomicSignalFence = M.getOrInsertFunction(
+ "__csan_atomic_signal_fence",
+ TLI.getAttrList(&Ctx, {0}, /*Signed=*/true, /*Ret=*/false, Attr), VoidTy,
+ OrdTy);
+}
+
+bool ConcurrencySanitizer::sanitizeFunction(Function &F,
+ const TargetLibraryInfo &TLI) {
+ // This is required to prevent instrumenting call to __csan_init from within
+ // the module constructor.
+ if (F.getName() == kCsanModuleCtorName)
+ return false;
+ // Naked functions can not have prologue/epilogue
+ // (__csan_func_entry/__csan_func_exit) generated, so don't instrument them at
+ // all.
+ if (F.hasFnAttribute(Attribute::Naked))
+ return false;
+
+ // __attribute__(disable_sanitizer_instrumentation) prevents all kinds of
+ // instrumentation.
+ if (F.hasFnAttribute(Attribute::DisableSanitizerInstrumentation))
+ return false;
+
+ Mod = F.getParent();
+ MemoryAccessLists Acc;
+ collectMemoryAccesses(F, Acc);
+
+ const bool SuppressChecking =
+ F.hasFnAttribute("sanitize_concurrency_no_checking_at_run_time");
+ const bool SanitizeFunction =
+ F.hasFnAttribute(Attribute::SanitizeConcurrency) && !SuppressChecking;
+ const bool MayInstrument =
+ SanitizeFunction &&
+ ((ClInstrumentMemoryAccesses && !Acc.LoadsAndStores.empty()) ||
+ (ClInstrumentAtomics && !Acc.AtomicAccesses.empty()) ||
+ (ClInstrumentMemIntrinsics && !Acc.MemIntrinCalls.empty()));
+ const bool NeedsRuntimeIgnores = SuppressChecking && Acc.HasCalls;
+ const bool NeedsFuncEntryExit = ClInstrumentFuncEntryExit && Acc.HasCalls;
+ if (!MayInstrument && !NeedsRuntimeIgnores && !NeedsFuncEntryExit)
+ return false;
+
+ initialize(*Mod, TLI);
+ bool Res = false;
+ const DataLayout &DL = F.getDataLayout();
+
+ if (ClInstrumentMemoryAccesses && SanitizeFunction)
+ for (Instruction *I : Acc.LoadsAndStores)
+ Res |= instrumentLoadOrStore(I, DL);
+
+ if (ClInstrumentAtomics && SanitizeFunction)
+ for (Instruction *I : Acc.AtomicAccesses)
+ Res |= instrumentAtomic(I, DL);
+
+ if (ClInstrumentMemIntrinsics && SanitizeFunction)
+ for (MemIntrinsic *MI : Acc.MemIntrinCalls)
+ Res |= instrumentMemIntrinsic(MI);
+
+ if (NeedsRuntimeIgnores) {
+ insertRuntimeIgnores(F);
+ Res = true;
+ }
+
+ if ((Res || Acc.HasCalls) && ClInstrumentFuncEntryExit) {
+ insertFuncEntryExit(F);
+ Res = true;
+ }
+ // Callback declarations may have changed the module.
+ return true;
+}
+
+bool ConcurrencySanitizer::shouldInstrumentAddress(Value *Addr) const {
+ Value *BaseAddr = Addr->stripInBoundsOffsets();
+ if (auto *GV = dyn_cast<GlobalVariable>(BaseAddr)) {
+ if (GV->hasSection()) {
+ StringRef SectionName = GV->getSection();
+ auto OF = Mod->getTargetTriple().getObjectFormat();
+ if (SectionName.ends_with(
+ getInstrProfSectionName(IPSK_cnts, OF, /*AddSegmentInfo=*/false)))
+ return false;
+ }
+ }
+
+ Type *PtrTy = cast<PointerType>(Addr->getType()->getScalarType());
+ unsigned AS = PtrTy->getPointerAddressSpace();
+ if (Mod->getDataLayout().getPointerSizeInBits(AS) > 64)
+ return false;
+ return addressSpaceMayRace(Mod->getTargetTriple(), AS);
+}
+
+bool ConcurrencySanitizer::shouldInstrumentAccess(Instruction *I) const {
+ const bool IsWrite = isa<StoreInst>(I);
+ Value *Addr = getLoadStorePointerOperand(I);
+ if (!shouldInstrumentAddress(Addr))
+ return false;
+
+ if (!IsWrite)
+ if (auto *GV = dyn_cast<GlobalVariable>(getUnderlyingObject(Addr)))
+ if (GV->isConstant())
+ return false;
+
+ const AllocaInst *AI = findAllocaForValue(Addr);
+ if (!AI || PointerMayBeCaptured(AI, /*ReturnCaptures=*/true))
+ return true;
+
+ const Triple &T = AI->getModule()->getTargetTriple();
+ return T.isGPU() && addressSpaceMayRace(T, AI->getAddressSpace());
+}
+
+void ConcurrencySanitizer::collectMemoryAccesses(Function &F,
+ MemoryAccessLists &Out) {
+ SmallVector<Instruction *, 8> LocalLoadsAndStores;
+ auto FlushLocalAccesses = [&] {
+ DenseSet<Value *> WriteTargets;
+ for (Instruction *Inst : reverse(LocalLoadsAndStores)) {
+ const bool IsWrite = isa<StoreInst>(Inst);
+ Value *Addr = getLoadStorePointerOperand(Inst);
+ if (!IsWrite && WriteTargets.contains(Addr)) {
+ ++NumOmittedReadsBeforeWrite;
+ continue;
+ }
+
+ Out.LoadsAndStores.push_back(Inst);
+ if (IsWrite)
+ WriteTargets.insert(Addr);
+ }
+ LocalLoadsAndStores.clear();
+ };
+
+ for (BasicBlock &BB : F) {
+ for (Instruction &Inst : BB) {
+ // Skip instructions inserted by another instrumentation.
+ if (Inst.hasMetadata(LLVMContext::MD_nosanitize))
+ continue;
+ if (isAtomicMemoryAccess(&Inst))
+ Out.AtomicAccesses.push_back(&Inst);
+ else if ((isa<LoadInst>(Inst) || isa<StoreInst>(Inst)) &&
+ shouldInstrumentAccess(&Inst))
+ LocalLoadsAndStores.push_back(&Inst);
+ else if (isa<CallInst>(Inst) || isa<InvokeInst>(Inst)) {
+ FlushLocalAccesses();
+ if (auto *MI = dyn_cast<MemIntrinsic>(&Inst))
+ Out.MemIntrinCalls.push_back(MI);
+ Out.HasCalls = true;
+ }
+ }
+ FlushLocalAccesses();
+ }
+}
+
+bool ConcurrencySanitizer::instrumentLoadOrStore(Instruction *I,
+ const DataLayout &DL) {
+ const bool IsWrite = isa<StoreInst>(I);
+ Value *Addr = getLoadStorePointerOperand(I);
+ if (!insertAccessProbe(I, Addr, getLoadStoreType(I), DL, IsWrite,
+ /*IsCompound=*/false, /*IsAtomic=*/false))
+ return false;
+ if (IsWrite)
+ ++NumInstrumentedWrites;
+ else
+ ++NumInstrumentedReads;
+ return true;
+}
+
+bool ConcurrencySanitizer::instrumentAtomic(Instruction *I,
+ const DataLayout &DL) {
+ if (auto *FI = dyn_cast<FenceInst>(I)) {
+ InstrumentationIRBuilder IRB(I);
+ FunctionCallee Fn = FI->getSyncScopeID() == SyncScope::SingleThread
+ ? CsanAtomicSignalFence
+ : CsanAtomicThreadFence;
+ IRB.CreateCall(Fn, createOrdering(IRB, FI->getOrdering()));
+ return true;
+ }
+
+ Value *Addr = nullptr;
+ Type *AccessTy = nullptr;
+ bool IsWrite = true;
+ bool IsCompound = false;
+ if (auto *LI = dyn_cast<LoadInst>(I)) {
+ Addr = LI->getPointerOperand();
+ AccessTy = LI->getType();
+ IsWrite = false;
+ } else if (auto *SI = dyn_cast<StoreInst>(I)) {
+ Addr = SI->getPointerOperand();
+ AccessTy = SI->getValueOperand()->getType();
+ } else if (auto *RMW = dyn_cast<AtomicRMWInst>(I)) {
+ Addr = RMW->getPointerOperand();
+ AccessTy = RMW->getValOperand()->getType();
+ IsCompound = true;
+ } else if (auto *CAS = dyn_cast<AtomicCmpXchgInst>(I)) {
+ Addr = CAS->getPointerOperand();
+ AccessTy = CAS->getNewValOperand()->getType();
+ IsCompound = true;
+ } else {
+ return false;
+ }
+
+ if (!shouldInstrumentAddress(Addr))
+ return false;
+ if (!insertAccessProbe(I, Addr, AccessTy, DL, IsWrite, IsCompound,
+ /*IsAtomic=*/true))
+ return false;
+ if (IsCompound || IsWrite)
+ ++NumInstrumentedWrites;
+ if (IsCompound || !IsWrite)
+ ++NumInstrumentedReads;
+ return true;
+}
+
+bool ConcurrencySanitizer::instrumentMemIntrinsic(MemIntrinsic *M) {
+ if (auto *MS = dyn_cast<MemSetInst>(M)) {
+ if (!shouldInstrumentAddress(MS->getRawDest()))
+ return false;
+ InstrumentationIRBuilder IRB(M);
+ Value *Len = IRB.CreateIntCast(M->getLength(), IntptrTy, false);
+ IRB.CreateCall(CsanWriteRange, {getCallbackAddress(IRB, MS->getRawDest()),
+ Len, ConstantInt::get(FlagsTy, AF_None)});
+ ++NumInstrumentedWrites;
+ return true;
+ }
+
+ auto *MT = cast<MemTransferInst>(M);
+ bool InstrumentRead = shouldInstrumentAddress(MT->getRawSource());
+ bool InstrumentWrite = shouldInstrumentAddress(MT->getRawDest());
+ if (!InstrumentRead && !InstrumentWrite)
+ return false;
+
+ InstrumentationIRBuilder IRB(M);
+ Value *Len = IRB.CreateIntCast(M->getLength(), IntptrTy, false);
+ if (InstrumentRead) {
+ IRB.CreateCall(CsanReadRange, {getCallbackAddress(IRB, MT->getRawSource()),
+ Len, ConstantInt::get(FlagsTy, AF_None)});
+ ++NumInstrumentedReads;
+ }
+ if (InstrumentWrite) {
+ IRB.CreateCall(CsanWriteRange, {getCallbackAddress(IRB, MT->getRawDest()),
+ Len, ConstantInt::get(FlagsTy, AF_None)});
+ ++NumInstrumentedWrites;
+ }
+ return true;
+}
+
+bool ConcurrencySanitizer::insertAccessProbe(Instruction *I, Value *Addr,
+ Type *AccessTy,
+ const DataLayout &DL, bool IsWrite,
+ bool IsCompound, bool IsAtomic) {
+ if (Addr->isSwiftError())
+ return false;
+ unsigned Flags =
+ (IsAtomic ? AF_Atomic : AF_None) | (IsCompound ? AF_Compound : AF_None);
+ int Idx = getAccessSizeIndex(AccessTy, DL);
+ if (Idx < 0) {
+ if (IsCompound)
+ return false;
+ InstrumentationIRBuilder IRB(I);
+ Value *Len = IRB.CreateTypeSize(IntptrTy, DL.getTypeStoreSize(AccessTy));
+ IRB.CreateCall(
+ IsWrite ? CsanWriteRange : CsanReadRange,
+ {getCallbackAddress(IRB, Addr), Len, ConstantInt::get(FlagsTy, Flags)});
+ return true;
+ }
+
+ Align Alignment = Align(1);
+ bool IsVolatile = false;
+ if (auto *LI = dyn_cast<LoadInst>(I)) {
+ Alignment = LI->getAlign();
+ IsVolatile = LI->isVolatile();
+ } else if (auto *SI = dyn_cast<StoreInst>(I)) {
+ Alignment = SI->getAlign();
+ IsVolatile = SI->isVolatile();
+ } else if (auto *RMW = dyn_cast<AtomicRMWInst>(I)) {
+ Alignment = RMW->getAlign();
+ IsVolatile = RMW->isVolatile();
+ } else if (auto *CAS = dyn_cast<AtomicCmpXchgInst>(I)) {
+ Alignment = CAS->getAlign();
+ IsVolatile = CAS->isVolatile();
+ }
+ IsVolatile &= ClDistinguishVolatile;
+
+ uint32_t TypeSize = DL.getTypeStoreSizeInBits(AccessTy);
+ bool Unaligned =
+ Alignment < Align(8) && Alignment.value() % (TypeSize / 8) != 0;
+ FunctionCallee Callback;
+ if (IsCompound)
+ Callback = Unaligned ? CsanUnalignedCompoundRW[Idx] : CsanCompoundRW[Idx];
+ else if (IsVolatile && Unaligned)
+ Callback = IsWrite ? CsanUnalignedVolatileWrite[Idx]
+ : CsanUnalignedVolatileRead[Idx];
+ else if (IsVolatile)
+ Callback = IsWrite ? CsanVolatileWrite[Idx] : CsanVolatileRead[Idx];
+ else if (Unaligned)
+ Callback = IsWrite ? CsanUnalignedWrite[Idx] : CsanUnalignedRead[Idx];
+ else
+ Callback = IsWrite ? CsanWrite[Idx] : CsanRead[Idx];
+
+ InstrumentationIRBuilder IRB(I);
+ IRB.CreateCall(Callback, {getCallbackAddress(IRB, Addr),
+ ConstantInt::get(FlagsTy, Flags)});
+ return true;
+}
+
+void ConcurrencySanitizer::insertFuncEntryExit(Function &F) {
+ const DataLayout &DL = F.getDataLayout();
+ InstrumentationIRBuilder IRB(&F.getEntryBlock(),
+ F.getEntryBlock().getFirstNonPHIIt());
+ Type *ProgramAsPtrTy =
+ PointerType::get(F.getContext(), DL.getProgramAddressSpace());
+ Value *ReturnAddress = IRB.CreateIntrinsic(Intrinsic::returnaddress,
+ {ProgramAsPtrTy}, IRB.getInt32(0));
+ IRB.CreateCall(CsanFuncEntry, ReturnAddress);
+
+ EscapeEnumerator EE(F, "csan_cleanup", ClHandleCxxExceptions);
+ while (IRBuilder<> *AtExit = EE.Next()) {
+ InstrumentationIRBuilder::ensureDebugInfo(*AtExit, F);
+ AtExit->CreateCall(CsanFuncExit);
+ }
+}
+
+void ConcurrencySanitizer::insertRuntimeIgnores(Function &F) {
+ InstrumentationIRBuilder IRB(&F.getEntryBlock(),
+ F.getEntryBlock().getFirstNonPHIIt());
+ IRB.CreateCall(CsanIgnoreBegin);
+ EscapeEnumerator EE(F, "csan_ignore_cleanup", ClHandleCxxExceptions);
+ while (IRBuilder<> *AtExit = EE.Next()) {
+ InstrumentationIRBuilder::ensureDebugInfo(*AtExit, F);
+ AtExit->CreateCall(CsanIgnoreEnd);
+ }
+}
diff --git a/llvm/test/Instrumentation/ConcurrencySanitizer/address_space.ll b/llvm/test/Instrumentation/ConcurrencySanitizer/address_space.ll
new file mode 100644
index 00000000000000..c0190cf74b5c60
--- /dev/null
+++ b/llvm/test/Instrumentation/ConcurrencySanitizer/address_space.ll
@@ -0,0 +1,106 @@
+; NOTE: Assertions have been autogenerated by utils/update_test_checks.py UTC_ARGS: --version 6
+; RUN: opt < %s -passes='function(csan)' -S -mtriple=amdgcn-amd-amdhsa | FileCheck %s --check-prefixes=CHECK
+
+define void @load_as1(ptr addrspace(1) %p) sanitize_concurrency {
+; CHECK-LABEL: define void @load_as1(
+; CHECK-SAME: ptr addrspace(1) [[P:%.*]]) #[[ATTR0:[0-9]+]] {
+; CHECK-NEXT: [[ENTRY:.*:]]
+; CHECK-NEXT: [[TMP0:%.*]] = call ptr @llvm.returnaddress.p0(i32 0)
+; CHECK-NEXT: call void @__csan_func_entry(ptr [[TMP0]])
+; CHECK-NEXT: [[TMP1:%.*]] = addrspacecast ptr addrspace(1) [[P]] to ptr
+; CHECK-NEXT: call void @__csan_read4(ptr [[TMP1]], i32 0)
+; CHECK-NEXT: [[V:%.*]] = load i32, ptr addrspace(1) [[P]], align 4
+; CHECK-NEXT: call void @__csan_func_exit()
+; CHECK-NEXT: ret void
+;
+entry:
+ %v = load i32, ptr addrspace(1) %p, align 4
+ ret void
+}
+
+define void @load_lds(ptr addrspace(3) %p) sanitize_concurrency {
+; CHECK-LABEL: define void @load_lds(
+; CHECK-SAME: ptr addrspace(3) [[P:%.*]]) #[[ATTR0]] {
+; CHECK-NEXT: [[ENTRY:.*:]]
+; CHECK-NEXT: [[TMP0:%.*]] = call ptr @llvm.returnaddress.p0(i32 0)
+; CHECK-NEXT: call void @__csan_func_entry(ptr [[TMP0]])
+; CHECK-NEXT: [[TMP1:%.*]] = addrspacecast ptr addrspace(3) [[P]] to ptr
+; CHECK-NEXT: call void @__csan_read4(ptr [[TMP1]], i32 0)
+; CHECK-NEXT: [[V:%.*]] = load i32, ptr addrspace(3) [[P]], align 4
+; CHECK-NEXT: call void @__csan_func_exit()
+; CHECK-NEXT: ret void
+;
+entry:
+ %v = load i32, ptr addrspace(3) %p, align 4
+ ret void
+}
+
+define void @load_private(ptr addrspace(5) %p) sanitize_concurrency {
+; CHECK-LABEL: define void @load_private(
+; CHECK-SAME: ptr addrspace(5) [[P:%.*]]) #[[ATTR0]] {
+; CHECK-NEXT: [[ENTRY:.*:]]
+; CHECK-NEXT: [[V:%.*]] = load i32, ptr addrspace(5) [[P]], align 4
+; CHECK-NEXT: ret void
+;
+entry:
+ %v = load i32, ptr addrspace(5) %p, align 4
+ ret void
+}
+
+define void @load_gds(ptr addrspace(2) %p) sanitize_concurrency {
+; CHECK-LABEL: define void @load_gds(
+; CHECK-SAME: ptr addrspace(2) [[P:%.*]]) #[[ATTR0]] {
+; CHECK-NEXT: [[ENTRY:.*:]]
+; CHECK-NEXT: [[V:%.*]] = load i32, ptr addrspace(2) [[P]], align 4
+; CHECK-NEXT: ret void
+;
+entry:
+ %v = load i32, ptr addrspace(2) %p, align 4
+ ret void
+}
+
+define void @load_buffer_fat(ptr addrspace(7) %p) sanitize_concurrency {
+; CHECK-LABEL: define void @load_buffer_fat(
+; CHECK-SAME: ptr addrspace(7) [[P:%.*]]) #[[ATTR0]] {
+; CHECK-NEXT: [[ENTRY:.*:]]
+; CHECK-NEXT: [[V:%.*]] = load i32, ptr addrspace(7) [[P]], align 4
+; CHECK-NEXT: ret void
+;
+entry:
+ %v = load i32, ptr addrspace(7) %p, align 4
+ ret void
+}
+
+define void @memcpy_private(ptr addrspace(5) %dst, ptr addrspace(5) %src, i64 %n) sanitize_concurrency {
+; CHECK-LABEL: define void @memcpy_private(
+; CHECK-SAME: ptr addrspace(5) [[DST:%.*]], ptr addrspace(5) [[SRC:%.*]], i64 [[N:%.*]]) #[[ATTR0]] {
+; CHECK-NEXT: [[ENTRY:.*:]]
+; CHECK-NEXT: [[TMP0:%.*]] = call ptr @llvm.returnaddress.p0(i32 0)
+; CHECK-NEXT: call void @__csan_func_entry(ptr [[TMP0]])
+; CHECK-NEXT: call void @llvm.memcpy.p5.p5.i64(ptr addrspace(5) [[DST]], ptr addrspace(5) [[SRC]], i64 [[N]], i1 false)
+; CHECK-NEXT: call void @__csan_func_exit()
+; CHECK-NEXT: ret void
+;
+entry:
+ call void @llvm.memcpy.p5.p5.i64(ptr addrspace(5) %dst, ptr addrspace(5) %src, i64 %n, i1 false)
+ ret void
+}
+
+define i32 @scoped_atomic(ptr addrspace(1) %p) sanitize_concurrency {
+; CHECK-LABEL: define i32 @scoped_atomic(
+; CHECK-SAME: ptr addrspace(1) [[P:%.*]]) #[[ATTR0]] {
+; CHECK-NEXT: [[ENTRY:.*:]]
+; CHECK-NEXT: [[TMP0:%.*]] = call ptr @llvm.returnaddress.p0(i32 0)
+; CHECK-NEXT: call void @__csan_func_entry(ptr [[TMP0]])
+; CHECK-NEXT: [[TMP1:%.*]] = addrspacecast ptr addrspace(1) [[P]] to ptr
+; CHECK-NEXT: call void @__csan_read4(ptr [[TMP1]], i32 1)
+; CHECK-NEXT: [[V:%.*]] = load atomic i32, ptr addrspace(1) [[P]] syncscope("agent") seq_cst, align 4
+; CHECK-NEXT: call void @__csan_func_exit()
+; CHECK-NEXT: ret i32 [[V]]
+;
+entry:
+ %v = load atomic i32, ptr addrspace(1) %p syncscope("agent") seq_cst, align 4
+ ret i32 %v
+}
+
+declare void @llvm.memcpy.p5.p5.i64(ptr addrspace(5), ptr addrspace(5), i64, i1)
diff --git a/llvm/test/Instrumentation/ConcurrencySanitizer/atomic.ll b/llvm/test/Instrumentation/ConcurrencySanitizer/atomic.ll
new file mode 100644
index 00000000000000..ac2e0c2f78835e
--- /dev/null
+++ b/llvm/test/Instrumentation/ConcurrencySanitizer/atomic.ll
@@ -0,0 +1,86 @@
+; RUN: opt < %s -passes='function(csan)' -S -mtriple=x86_64-unknown-linux-gnu | FileCheck %s
+; RUN: opt < %s -passes='function(csan)' -S -mtriple=amdgcn-amd-amdhsa | FileCheck %s
+
+define i32 @atomic_load(ptr %a) sanitize_concurrency {
+entry:
+ %v = load atomic i32, ptr %a seq_cst, align 4
+ ret i32 %v
+}
+; CHECK-LABEL: @atomic_load(
+; CHECK: call void @__csan_read4(ptr %a, i32 1)
+; CHECK-NEXT: %v = load atomic i32, ptr %a seq_cst, align 4
+
+define void @atomic_store(ptr %a, i32 %v) sanitize_concurrency {
+entry:
+ store atomic i32 %v, ptr %a release, align 4
+ ret void
+}
+; CHECK-LABEL: @atomic_store(
+; CHECK: call void @__csan_write4(ptr %a, i32 1)
+; CHECK-NEXT: store atomic i32 %v, ptr %a release, align 4
+
+define i32 @atomic_rmw(ptr %a, i32 %v) sanitize_concurrency {
+entry:
+ %old = atomicrmw add ptr %a, i32 %v seq_cst
+ ret i32 %old
+}
+; CHECK-LABEL: @atomic_rmw(
+; CHECK: call void @__csan_read_write4(ptr %a, i32 3)
+; CHECK-NEXT: %old = atomicrmw add ptr %a, i32 %v seq_cst
+
+define i32 @atomic_cas(ptr %a, i32 %cmp, i32 %new) sanitize_concurrency {
+entry:
+ %pair = cmpxchg ptr %a, i32 %cmp, i32 %new seq_cst seq_cst
+ %old = extractvalue { i32, i1 } %pair, 0
+ ret i32 %old
+}
+; CHECK-LABEL: @atomic_cas(
+; CHECK: call void @__csan_read_write4(ptr %a, i32 3)
+; CHECK-NEXT: %pair = cmpxchg ptr %a, i32 %cmp, i32 %new seq_cst seq_cst
+
+define void @atomic_fence() sanitize_concurrency {
+entry:
+ fence seq_cst
+ ret void
+}
+; CHECK-LABEL: @atomic_fence(
+; CHECK: call void @__csan_atomic_thread_fence(i32 5)
+; CHECK-NEXT: fence seq_cst
+
+define void @atomic_signal_fence() sanitize_concurrency {
+entry:
+ fence syncscope("singlethread") seq_cst
+ ret void
+}
+; CHECK-LABEL: @atomic_signal_fence(
+; CHECK: call void @__csan_atomic_signal_fence(i32 5)
+; CHECK-NEXT: fence syncscope("singlethread") seq_cst
+
+define void @atomic_fence_orderings() sanitize_concurrency {
+entry:
+ fence acquire
+ fence release
+ fence acq_rel
+ ret void
+}
+; CHECK-LABEL: @atomic_fence_orderings(
+; CHECK: call void @__csan_atomic_thread_fence(i32 2)
+; CHECK-NEXT: fence acquire
+; CHECK: call void @__csan_atomic_thread_fence(i32 3)
+; CHECK-NEXT: fence release
+; CHECK: call void @__csan_atomic_thread_fence(i32 4)
+; CHECK-NEXT: fence acq_rel
+
+define i32 @suppressed(ptr %a) {
+entry:
+ %v = load atomic i32, ptr %a seq_cst, align 4
+ ret i32 %v
+}
+; CHECK-LABEL: @suppressed(
+; CHECK-NEXT: entry:
+; CHECK-NEXT: %v = load atomic i32, ptr %a seq_cst, align 4
+; CHECK-NEXT: ret i32 %v
+
+; CHECK-NOT: @__tsan
+; CHECK-NOT: @__csan_atomic8
+; CHECK-NOT: @__csan_atomic32
diff --git a/llvm/test/Instrumentation/ConcurrencySanitizer/basic.ll b/llvm/test/Instrumentation/ConcurrencySanitizer/basic.ll
new file mode 100644
index 00000000000000..fa1cc65c709892
--- /dev/null
+++ b/llvm/test/Instrumentation/ConcurrencySanitizer/basic.ll
@@ -0,0 +1,49 @@
+; RUN: opt < %s -passes='module(csan-module),function(csan)' -S -mtriple=x86_64-unknown-linux-gnu | FileCheck %s
+; RUN: opt < %s -passes='module(csan-module),function(csan)' -S -mtriple=amdgcn-amd-amdhsa | FileCheck %s
+
+define void @read_write(ptr %a, ptr %b) sanitize_concurrency {
+entry:
+ %v = load i32, ptr %a, align 4
+ store i32 %v, ptr %b, align 4
+ ret void
+}
+; CHECK-LABEL: @read_write(
+; CHECK: call void @__csan_func_entry
+; CHECK: call void @__csan_read4(ptr %a, i32 0)
+; CHECK-NEXT: %v = load i32, ptr %a, align 4
+; CHECK: call void @__csan_write4(ptr %b, i32 0)
+; CHECK-NEXT: store i32 %v, ptr %b, align 4
+; CHECK: call void @__csan_func_exit
+
+define i16 @unaligned(ptr %a) sanitize_concurrency {
+entry:
+ %v = load i16, ptr %a, align 1
+ ret i16 %v
+}
+; CHECK-LABEL: @unaligned(
+; CHECK: call void @__csan_unaligned_read2(ptr %a, i32 0)
+; CHECK-NEXT: %v = load i16, ptr %a, align 1
+
+define void @memintrinsics(ptr %dst, ptr %src, i64 %n) sanitize_concurrency {
+entry:
+ call void @llvm.memcpy.p0.p0.i64(ptr %dst, ptr %src, i64 %n, i1 false)
+ call void @llvm.memmove.p0.p0.i64(ptr %dst, ptr %src, i64 %n, i1 false)
+ call void @llvm.memset.p0.i64(ptr %dst, i8 0, i64 %n, i1 false)
+ ret void
+}
+; CHECK-LABEL: @memintrinsics(
+; CHECK: call void @__csan_read_range(ptr %src, i64 %n, i32 0)
+; CHECK: call void @__csan_write_range(ptr %dst, i64 %n, i32 0)
+; CHECK: call void @llvm.memcpy
+; CHECK: call void @llvm.memmove
+; CHECK: call void @llvm.memset
+
+; CHECK: define internal void @csan.module_ctor
+; CHECK: call void @__csan_init()
+; CHECK-NOT: @__tsan
+; CHECK-NOT: @__csan_atomic8
+; CHECK-NOT: @__csan_memcpy
+
+declare void @llvm.memcpy.p0.p0.i64(ptr, ptr, i64, i1)
+declare void @llvm.memmove.p0.p0.i64(ptr, ptr, i64, i1)
+declare void @llvm.memset.p0.i64(ptr, i8, i64, i1)
diff --git a/llvm/test/Instrumentation/ConcurrencySanitizer/callbacks.ll b/llvm/test/Instrumentation/ConcurrencySanitizer/callbacks.ll
new file mode 100644
index 00000000000000..d7d8269b081c17
--- /dev/null
+++ b/llvm/test/Instrumentation/ConcurrencySanitizer/callbacks.ll
@@ -0,0 +1,72 @@
+; RUN: opt < %s -passes='function(csan)' -csan-distinguish-volatile -S | FileCheck %s
+
+define void @access_sizes(ptr %p1, ptr %p2, ptr %p4, ptr %p8, ptr %p16) sanitize_concurrency {
+entry:
+ %v1 = load i8, ptr %p1, align 1
+ %v2 = load i16, ptr %p2, align 2
+ %v4 = load i32, ptr %p4, align 4
+ %v8 = load i64, ptr %p8, align 8
+ %v16 = load i128, ptr %p16, align 16
+ store i8 %v1, ptr %p1, align 1
+ store i16 %v2, ptr %p2, align 2
+ store i32 %v4, ptr %p4, align 4
+ store i64 %v8, ptr %p8, align 8
+ store i128 %v16, ptr %p16, align 16
+ ret void
+}
+; CHECK-LABEL: @access_sizes(
+; CHECK-DAG: call void @__csan_write1(ptr %p1, i32 0)
+; CHECK-DAG: call void @__csan_write2(ptr %p2, i32 0)
+; CHECK-DAG: call void @__csan_write4(ptr %p4, i32 0)
+; CHECK-DAG: call void @__csan_write8(ptr %p8, i32 0)
+; CHECK-DAG: call void @__csan_write16(ptr %p16, i32 0)
+
+define i128 @read_sizes(ptr %p1, ptr %p8, ptr %p16) sanitize_concurrency {
+entry:
+ %v1 = load i8, ptr %p1, align 1
+ %v8 = load i64, ptr %p8, align 8
+ %v16 = load i128, ptr %p16, align 16
+ %v1.ext = zext i8 %v1 to i128
+ %v8.ext = zext i64 %v8 to i128
+ %sum1 = add i128 %v1.ext, %v8.ext
+ %sum2 = add i128 %sum1, %v16
+ ret i128 %sum2
+}
+; CHECK-LABEL: @read_sizes(
+; CHECK: call void @__csan_read1(ptr %p1, i32 0)
+; CHECK: call void @__csan_read8(ptr %p8, i32 0)
+; CHECK: call void @__csan_read16(ptr %p16, i32 0)
+
+define i32 @volatile_read(ptr %p) sanitize_concurrency {
+entry:
+ %v = load volatile i32, ptr %p, align 4
+ ret i32 %v
+}
+; CHECK-LABEL: @volatile_read(
+; CHECK: call void @__csan_volatile_read4(ptr %p, i32 0)
+
+define void @unaligned_volatile_write(ptr %p) sanitize_concurrency {
+entry:
+ store volatile i64 1, ptr %p, align 1
+ ret void
+}
+; CHECK-LABEL: @unaligned_volatile_write(
+; CHECK: call void @__csan_unaligned_volatile_write8(ptr %p, i32 0)
+
+define i32 @unaligned_atomic_rmw(ptr %p) sanitize_concurrency {
+entry:
+ %v = atomicrmw add ptr %p, i32 1 seq_cst, align 1
+ ret i32 %v
+}
+; CHECK-LABEL: @unaligned_atomic_rmw(
+; CHECK: call void @__csan_unaligned_read_write4(ptr %p, i32 3)
+; CHECK-NEXT: %v = atomicrmw add ptr %p, i32 1 seq_cst, align 1
+
+define float @atomic_float(ptr %p) sanitize_concurrency {
+entry:
+ %v = load atomic float, ptr %p monotonic, align 4
+ ret float %v
+}
+; CHECK-LABEL: @atomic_float(
+; CHECK: call void @__csan_read4(ptr %p, i32 1)
+; CHECK-NEXT: %v = load atomic float, ptr %p monotonic, align 4
diff --git a/llvm/test/Instrumentation/ConcurrencySanitizer/function_control.ll b/llvm/test/Instrumentation/ConcurrencySanitizer/function_control.ll
new file mode 100644
index 00000000000000..69636563b24754
--- /dev/null
+++ b/llvm/test/Instrumentation/ConcurrencySanitizer/function_control.ll
@@ -0,0 +1,59 @@
+; RUN: opt < %s -passes='function(csan)' -S | FileCheck %s --check-prefixes=CHECK,EH
+; RUN: opt < %s -passes='function(csan)' -csan-handle-cxx-exceptions=0 -S | FileCheck %s --check-prefixes=CHECK,NOEH
+; RUN: opt < %s -passes='function(csan)' -csan-instrument-func-entry-exit=0 -S | FileCheck %s --check-prefix=NOENTRY
+
+declare void @may_throw()
+
+; Entry and exit callbacks must remain balanced when a call unwinds.
+define void @exception_exit() sanitize_concurrency {
+entry:
+ call void @may_throw()
+ ret void
+}
+; EH-LABEL: @exception_exit(
+; EH: invoke void @may_throw()
+; EH: csan_cleanup:
+; EH: call void @__csan_func_exit()
+; EH-NEXT: resume
+; NOEH-LABEL: @exception_exit(
+; NOEH: call void @may_throw()
+; NOEH: call void @__csan_func_exit()
+
+define void @unattributed_call() {
+entry:
+ call void @may_throw()
+ ret void
+}
+; CHECK-LABEL: @unattributed_call(
+; CHECK: call void @__csan_func_entry
+; CHECK: {{call|invoke}} void @may_throw()
+; CHECK: call void @__csan_func_exit()
+
+define i32 @musttail_callee(ptr %p) sanitize_concurrency {
+entry:
+ %v = load i32, ptr %p
+ ret i32 %v
+}
+
+; A musttail call must remain immediately before its return.
+define i32 @musttail_caller(ptr %p) sanitize_concurrency {
+entry:
+ %v = musttail call i32 @musttail_callee(ptr %p)
+ ret i32 %v
+}
+; CHECK-LABEL: @musttail_caller(
+; CHECK: call void @__csan_func_exit()
+; CHECK-NEXT: %v = musttail call i32 @musttail_callee(ptr %p)
+; CHECK-NEXT: ret i32 %v
+
+define void @ignored() "sanitize_concurrency_no_checking_at_run_time" {
+entry:
+ call void @may_throw()
+ ret void
+}
+; NOENTRY-LABEL: @ignored(
+; NOENTRY-NOT: __csan_func_
+; NOENTRY: call void @__csan_ignore_thread_begin()
+; NOENTRY: invoke void @may_throw()
+; NOENTRY: call void @__csan_ignore_thread_end()
+; NOENTRY: ret void
diff --git a/llvm/test/Instrumentation/ConcurrencySanitizer/memintrinsics.ll b/llvm/test/Instrumentation/ConcurrencySanitizer/memintrinsics.ll
new file mode 100644
index 00000000000000..35216aa84091a8
--- /dev/null
+++ b/llvm/test/Instrumentation/ConcurrencySanitizer/memintrinsics.ll
@@ -0,0 +1,46 @@
+; RUN: opt < %s -passes='function(csan)' -csan-instrument-func-entry-exit=0 -S -mtriple=amdgcn-amd-amdhsa | FileCheck %s
+
+define void @instrument_source(ptr addrspace(5) %dst, ptr addrspace(1) %src, i32 %n) sanitize_concurrency {
+entry:
+ call void @llvm.memcpy.p5.p1.i32(ptr addrspace(5) %dst, ptr addrspace(1) %src, i32 %n, i1 false)
+ ret void
+}
+; CHECK-LABEL: @instrument_source(
+; CHECK: %[[LEN:.*]] = zext i32 %n to i64
+; CHECK: %[[SRC:.*]] = addrspacecast ptr addrspace(1) %src to ptr
+; CHECK: call void @__csan_read_range(ptr %[[SRC]], i64 %[[LEN]], i32 0)
+; CHECK-NOT: __csan_write_range
+; CHECK: call void @llvm.memcpy
+
+define void @instrument_dest(ptr addrspace(1) %dst, ptr addrspace(5) %src, i32 %n) sanitize_concurrency {
+entry:
+ call void @llvm.memcpy.p1.p5.i32(ptr addrspace(1) %dst, ptr addrspace(5) %src, i32 %n, i1 false)
+ ret void
+}
+; CHECK-LABEL: @instrument_dest(
+; CHECK: %[[LEN:.*]] = zext i32 %n to i64
+; CHECK-NOT: __csan_read_range
+; CHECK: %[[DST:.*]] = addrspacecast ptr addrspace(1) %dst to ptr
+; CHECK: call void @__csan_write_range(ptr %[[DST]], i64 %[[LEN]], i32 0)
+; CHECK: call void @llvm.memcpy
+
+define void @private_copy(ptr addrspace(5) %dst, ptr addrspace(5) %src, i32 %n) sanitize_concurrency {
+entry:
+ call void @llvm.memcpy.p5.p5.i32(ptr addrspace(5) %dst, ptr addrspace(5) %src, i32 %n, i1 false)
+ ret void
+}
+; CHECK-LABEL: @private_copy(
+; CHECK-NEXT: entry:
+; CHECK-NEXT: call void @llvm.memcpy.p5.p5.i32
+; CHECK-NEXT: ret void
+
+define void @instrument_memset(ptr addrspace(1) %dst, i32 %n) sanitize_concurrency {
+entry:
+ call void @llvm.memset.p1.i32(ptr addrspace(1) %dst, i8 0, i32 %n, i1 false)
+ ret void
+}
+; CHECK-LABEL: @instrument_memset(
+; CHECK: %[[LEN:.*]] = zext i32 %n to i64
+; CHECK: %[[DST:.*]] = addrspacecast ptr addrspace(1) %dst to ptr
+; CHECK: call void @__csan_write_range(ptr %[[DST]], i64 %[[LEN]], i32 0)
+; CHECK: call void @llvm.memset
diff --git a/llvm/test/Instrumentation/ConcurrencySanitizer/module.ll b/llvm/test/Instrumentation/ConcurrencySanitizer/module.ll
new file mode 100644
index 00000000000000..b0ae86ad53bc88
--- /dev/null
+++ b/llvm/test/Instrumentation/ConcurrencySanitizer/module.ll
@@ -0,0 +1,12 @@
+; RUN: opt < %s -passes='csan-module,csan-module' -S | FileCheck %s
+
+; CHECK: @llvm.used = appending global [1 x ptr] [ptr @csan.module_ctor]
+; CHECK: @llvm.global_ctors = appending global [1 x { i32, ptr, ptr }] [{ i32, ptr, ptr } { i32 0, ptr @csan.module_ctor, ptr null }]
+
+define void @f() sanitize_concurrency {
+ ret void
+}
+
+; CHECK-LABEL: define internal void @csan.module_ctor()
+; CHECK: call void @__csan_init()
+; CHECK: !{i32 4, !"nosanitize_concurrency", i32 1}
diff --git a/llvm/test/Instrumentation/ConcurrencySanitizer/no_sanitize.ll b/llvm/test/Instrumentation/ConcurrencySanitizer/no_sanitize.ll
new file mode 100644
index 00000000000000..506ec9f380d130
--- /dev/null
+++ b/llvm/test/Instrumentation/ConcurrencySanitizer/no_sanitize.ll
@@ -0,0 +1,57 @@
+; RUN: opt < %s -passes='function(csan)' -S -mtriple=x86_64-unknown-linux-gnu | FileCheck %s
+; RUN: opt < %s -passes='function(csan)' -S -mtriple=amdgcn-amd-amdhsa | FileCheck %s
+
+define i32 @unattributed(ptr %a) {
+entry:
+ %v = load i32, ptr %a, align 4
+ ret i32 %v
+}
+; CHECK-LABEL: @unattributed(
+; CHECK-NEXT: entry:
+; CHECK-NEXT: %v = load i32, ptr %a, align 4
+; CHECK-NEXT: ret i32 %v
+
+define i32 @thread_only(ptr %a) sanitize_thread {
+entry:
+ %v = load i32, ptr %a, align 4
+ ret i32 %v
+}
+; CHECK-LABEL: @thread_only(
+; CHECK-NEXT: entry:
+; CHECK-NEXT: %v = load i32, ptr %a, align 4
+; CHECK-NEXT: ret i32 %v
+
+define i32 @instrumented(ptr %a) sanitize_concurrency {
+entry:
+ %v = load i32, ptr %a, align 4
+ ret i32 %v
+}
+; CHECK-LABEL: @instrumented(
+; CHECK: call void @__csan_read4(ptr %a, i32 0)
+
+define i32 @disabled(ptr %a) sanitize_concurrency disable_sanitizer_instrumentation {
+entry:
+ %v = load i32, ptr %a, align 4
+ ret i32 %v
+}
+; CHECK-LABEL: @disabled(
+; CHECK-NEXT: entry:
+; CHECK-NEXT: %v = load i32, ptr %a, align 4
+; CHECK-NEXT: ret i32 %v
+
+declare void @callee()
+
+define i32 @checking_suppressed(ptr %a) sanitize_concurrency "sanitize_concurrency_no_checking_at_run_time" {
+entry:
+ %v = load i32, ptr %a, align 4
+ call void @callee()
+ ret i32 %v
+}
+; CHECK-LABEL: @checking_suppressed(
+; CHECK: call void @__csan_func_entry
+; CHECK: call void @__csan_ignore_thread_begin()
+; CHECK-NOT: call void @__csan_read
+; CHECK: %v = load i32, ptr %a, align 4
+; CHECK: {{call|invoke}} void @callee()
+; CHECK: call void @__csan_ignore_thread_end()
+; CHECK: call void @__csan_func_exit()
diff --git a/llvm/test/Instrumentation/ConcurrencySanitizer/selection.ll b/llvm/test/Instrumentation/ConcurrencySanitizer/selection.ll
new file mode 100644
index 00000000000000..eb56ab4111e018
--- /dev/null
+++ b/llvm/test/Instrumentation/ConcurrencySanitizer/selection.ll
@@ -0,0 +1,131 @@
+; RUN: opt < %s -passes='function(csan)' -S | FileCheck %s --check-prefix=DEFAULT
+
+ at constant = constant i32 0
+ at mutable = global i32 0
+
+declare void @capture(ptr)
+
+define void @uncaptured_alloca() sanitize_concurrency {
+entry:
+ %p = alloca i32, align 4
+ store i32 1, ptr %p, align 4
+ ret void
+}
+; DEFAULT-LABEL: @uncaptured_alloca(
+; DEFAULT-NOT: __csan_write
+; DEFAULT: ret void
+
+define void @captured_alloca() sanitize_concurrency {
+entry:
+ %p = alloca i32, align 4
+ call void @capture(ptr %p)
+ store i32 1, ptr %p, align 4
+ ret void
+}
+; DEFAULT-LABEL: @captured_alloca(
+; DEFAULT: {{call|invoke}} void @capture(ptr %p)
+; DEFAULT: call void @__csan_write4(ptr %p, i32 0)
+
+define void @read_before_write(ptr %p) sanitize_concurrency {
+entry:
+ %v = load i32, ptr %p, align 4
+ store i32 %v, ptr %p, align 4
+ ret void
+}
+; DEFAULT-LABEL: @read_before_write(
+; DEFAULT-NOT: call void @__csan_read4(ptr %p, i32 0)
+; DEFAULT: call void @__csan_write4(ptr %p, i32 0)
+
+define void @call_between_accesses(ptr %p) sanitize_concurrency {
+entry:
+ %v = load i32, ptr %p, align 4
+ call void @capture(ptr %p)
+ store i32 %v, ptr %p, align 4
+ ret void
+}
+; DEFAULT-LABEL: @call_between_accesses(
+; DEFAULT: call void @__csan_read4(ptr %p, i32 0)
+; DEFAULT: {{call|invoke}} void @capture(ptr %p)
+; DEFAULT: call void @__csan_write4(ptr %p, i32 0)
+
+define i32 @constant_global() sanitize_concurrency {
+entry:
+ %v = load i32, ptr @constant, align 4
+ ret i32 %v
+}
+; DEFAULT-LABEL: @constant_global(
+; DEFAULT-NOT: __csan_read
+; DEFAULT: ret i32
+
+define i32 @mutable_global() sanitize_concurrency {
+entry:
+ %v = load i32, ptr @mutable, align 4
+ ret i32 %v
+}
+; DEFAULT-LABEL: @mutable_global(
+; DEFAULT: call void @__csan_read4(ptr @mutable, i32 0)
+
+define void @volatile_read_before_write(ptr %p) sanitize_concurrency {
+entry:
+ %v = load volatile i32, ptr %p, align 4
+ store volatile i32 %v, ptr %p, align 4
+ ret void
+}
+; DEFAULT-LABEL: @volatile_read_before_write(
+; DEFAULT-NOT: call void @__csan_read4(ptr %p, i32 0)
+; DEFAULT: call void @__csan_write4(ptr %p, i32 0)
+
+define void @no_sanitize_metadata(ptr %p) sanitize_concurrency {
+entry:
+ %v = load i32, ptr %p, align 4, !nosanitize !0
+ store i32 %v, ptr %p, align 4, !nosanitize !0
+ ret void
+}
+; DEFAULT-LABEL: @no_sanitize_metadata(
+; DEFAULT-NOT: __csan_read
+; DEFAULT-NOT: __csan_write
+; DEFAULT: ret void
+
+define void @unusual_size(ptr %p) sanitize_concurrency {
+entry:
+ %v = load i24, ptr %p, align 4
+ store i24 %v, ptr %p, align 4
+ ret void
+}
+; DEFAULT-LABEL: @unusual_size(
+; DEFAULT-NOT: call void @__csan_read_range(ptr %p, i64 3, i32 0)
+; DEFAULT: call void @__csan_write_range(ptr %p, i64 3, i32 0)
+; DEFAULT: ret void
+
+define void @scalable(ptr %p) sanitize_concurrency {
+entry:
+ %v = load <vscale x 4 x i32>, ptr %p, align 16
+ store <vscale x 4 x i32> %v, ptr %p, align 16
+ ret void
+}
+; DEFAULT-LABEL: @scalable(
+; DEFAULT-NOT: call void @__csan_read_range(ptr %p, i64 %{{.*}}, i32 0)
+; DEFAULT: call void @__csan_write_range(ptr %p, i64 %{{.*}}, i32 0)
+; DEFAULT: ret void
+
+define void @swifterror(ptr swifterror %p) sanitize_concurrency {
+entry:
+ %v = load ptr, ptr %p
+ store ptr null, ptr %p
+ ret void
+}
+; DEFAULT-LABEL: @swifterror(
+; DEFAULT-NOT: __csan_read
+; DEFAULT-NOT: __csan_write
+; DEFAULT: ret void
+
+define i32 @naked() naked sanitize_concurrency {
+entry:
+ %v = load i32, ptr @mutable
+ ret i32 %v
+}
+; DEFAULT-LABEL: @naked(
+; DEFAULT-NEXT: entry:
+; DEFAULT-NEXT: %v = load i32, ptr @mutable, align 4
+
+!0 = !{}
diff --git a/llvm/test/Instrumentation/ConcurrencySanitizer/shared_alloca.ll b/llvm/test/Instrumentation/ConcurrencySanitizer/shared_alloca.ll
new file mode 100644
index 00000000000000..694720f1f31bd8
--- /dev/null
+++ b/llvm/test/Instrumentation/ConcurrencySanitizer/shared_alloca.ll
@@ -0,0 +1,23 @@
+; RUN: opt < %s -passes='function(csan)' -S -mtriple=nvptx64-nvidia-cuda | FileCheck %s
+
+define void @shared_alloca() sanitize_concurrency {
+entry:
+ %p = alloca i32, align 4, addrspace(3)
+ store i32 0, ptr addrspace(3) %p, align 4
+ ret void
+}
+; CHECK-LABEL: @shared_alloca(
+; CHECK: call void @__csan_write4(ptr %{{.*}}, i32 0)
+; CHECK: store i32 0, ptr addrspace(3) %p, align 4
+
+define void @local_alloca() sanitize_concurrency {
+entry:
+ %p = alloca i32, align 4, addrspace(5)
+ store i32 0, ptr addrspace(5) %p, align 4
+ ret void
+}
+; CHECK-LABEL: @local_alloca(
+; CHECK-NEXT: entry:
+; CHECK-NEXT: %p = alloca i32, align 4, addrspace(5)
+; CHECK-NEXT: store i32 0, ptr addrspace(5) %p, align 4
+; CHECK-NEXT: ret void
diff --git a/llvm/test/Instrumentation/ConcurrencySanitizer/unusual_sizes.ll b/llvm/test/Instrumentation/ConcurrencySanitizer/unusual_sizes.ll
new file mode 100644
index 00000000000000..cd8f320a20155b
--- /dev/null
+++ b/llvm/test/Instrumentation/ConcurrencySanitizer/unusual_sizes.ll
@@ -0,0 +1,33 @@
+; RUN: opt < %s -passes='function(csan)' -S | FileCheck %s
+
+target datalayout = "e-p:64:64"
+
+define void @three_byte_access(ptr %src, ptr %dst) sanitize_concurrency {
+entry:
+ %value = load i24, ptr %src, align 1
+ store i24 %value, ptr %dst, align 1
+ ret void
+}
+; CHECK-LABEL: @three_byte_access(
+; CHECK: call void @__csan_read_range(ptr %src, i64 3, i32 0)
+; CHECK: call void @__csan_write_range(ptr %dst, i64 3, i32 0)
+
+define void @large_access(ptr %src, ptr %dst) sanitize_concurrency {
+entry:
+ %value = load i256, ptr %src, align 32
+ store i256 %value, ptr %dst, align 32
+ ret void
+}
+; CHECK-LABEL: @large_access(
+; CHECK: call void @__csan_read_range(ptr %src, i64 32, i32 0)
+; CHECK: call void @__csan_write_range(ptr %dst, i64 32, i32 0)
+
+define void @scalable_access(ptr %src, ptr %dst) sanitize_concurrency {
+entry:
+ %value = load <vscale x 8 x i32>, ptr %src, align 32
+ store <vscale x 8 x i32> %value, ptr %dst, align 32
+ ret void
+}
+; CHECK-LABEL: @scalable_access(
+; CHECK: call void @__csan_read_range(ptr %src, i64 %{{.*}}, i32 0)
+; CHECK: call void @__csan_write_range(ptr %dst, i64 %{{.*}}, i32 0)
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