14fb7801bSKostya Serebryany //===-- ASanStackFrameLayout.cpp - helper for AddressSanitizer ------------===// 24fb7801bSKostya Serebryany // 34fb7801bSKostya Serebryany // The LLVM Compiler Infrastructure 44fb7801bSKostya Serebryany // 54fb7801bSKostya Serebryany // This file is distributed under the University of Illinois Open Source 64fb7801bSKostya Serebryany // License. See LICENSE.TXT for details. 74fb7801bSKostya Serebryany // 84fb7801bSKostya Serebryany //===----------------------------------------------------------------------===// 94fb7801bSKostya Serebryany // 104fb7801bSKostya Serebryany // Definition of ComputeASanStackFrameLayout (see ASanStackFrameLayout.h). 114fb7801bSKostya Serebryany // 124fb7801bSKostya Serebryany //===----------------------------------------------------------------------===// 134fb7801bSKostya Serebryany #include "llvm/Transforms/Utils/ASanStackFrameLayout.h" 144fb7801bSKostya Serebryany #include "llvm/ADT/SmallString.h" 15d88e5201SVitaly Buka #include "llvm/IR/DebugInfo.h" 16292acab8SEvgeniy Stepanov #include "llvm/Support/MathExtras.h" 17*490fda33SVitaly Buka #include "llvm/Support/ScopedPrinter.h" 1845d4cb9aSWeiming Zhao #include "llvm/Support/raw_ostream.h" 194fb7801bSKostya Serebryany #include <algorithm> 204fb7801bSKostya Serebryany 214fb7801bSKostya Serebryany namespace llvm { 224fb7801bSKostya Serebryany 234fb7801bSKostya Serebryany // We sort the stack variables by alignment (largest first) to minimize 244fb7801bSKostya Serebryany // unnecessary large gaps due to alignment. 254fb7801bSKostya Serebryany // It is tempting to also sort variables by size so that larger variables 264fb7801bSKostya Serebryany // have larger redzones at both ends. But reordering will make report analysis 274fb7801bSKostya Serebryany // harder, especially when temporary unnamed variables are present. 284fb7801bSKostya Serebryany // So, until we can provide more information (type, line number, etc) 294fb7801bSKostya Serebryany // for the stack variables we avoid reordering them too much. 304fb7801bSKostya Serebryany static inline bool CompareVars(const ASanStackVariableDescription &a, 314fb7801bSKostya Serebryany const ASanStackVariableDescription &b) { 324fb7801bSKostya Serebryany return a.Alignment > b.Alignment; 334fb7801bSKostya Serebryany } 344fb7801bSKostya Serebryany 354fb7801bSKostya Serebryany // We also force minimal alignment for all vars to kMinAlignment so that vars 364fb7801bSKostya Serebryany // with e.g. alignment 1 and alignment 16 do not get reordered by CompareVars. 374fb7801bSKostya Serebryany static const size_t kMinAlignment = 16; 384fb7801bSKostya Serebryany 394fb7801bSKostya Serebryany // The larger the variable Size the larger is the redzone. 404fb7801bSKostya Serebryany // The resulting frame size is a multiple of Alignment. 414fb7801bSKostya Serebryany static size_t VarAndRedzoneSize(size_t Size, size_t Alignment) { 424fb7801bSKostya Serebryany size_t Res = 0; 434fb7801bSKostya Serebryany if (Size <= 4) Res = 16; 444fb7801bSKostya Serebryany else if (Size <= 16) Res = 32; 454fb7801bSKostya Serebryany else if (Size <= 128) Res = Size + 32; 464fb7801bSKostya Serebryany else if (Size <= 512) Res = Size + 64; 474fb7801bSKostya Serebryany else if (Size <= 4096) Res = Size + 128; 484fb7801bSKostya Serebryany else Res = Size + 256; 49da00f2fdSRui Ueyama return alignTo(Res, Alignment); 504fb7801bSKostya Serebryany } 514fb7801bSKostya Serebryany 52db331d8bSVitaly Buka ASanStackFrameLayout 534fb7801bSKostya Serebryany ComputeASanStackFrameLayout(SmallVectorImpl<ASanStackVariableDescription> &Vars, 54db331d8bSVitaly Buka size_t Granularity, size_t MinHeaderSize) { 554fb7801bSKostya Serebryany assert(Granularity >= 8 && Granularity <= 64 && 564fb7801bSKostya Serebryany (Granularity & (Granularity - 1)) == 0); 574fb7801bSKostya Serebryany assert(MinHeaderSize >= 16 && (MinHeaderSize & (MinHeaderSize - 1)) == 0 && 584fb7801bSKostya Serebryany MinHeaderSize >= Granularity); 59db331d8bSVitaly Buka const size_t NumVars = Vars.size(); 604fb7801bSKostya Serebryany assert(NumVars > 0); 614fb7801bSKostya Serebryany for (size_t i = 0; i < NumVars; i++) 624fb7801bSKostya Serebryany Vars[i].Alignment = std::max(Vars[i].Alignment, kMinAlignment); 634fb7801bSKostya Serebryany 644fb7801bSKostya Serebryany std::stable_sort(Vars.begin(), Vars.end(), CompareVars); 65db331d8bSVitaly Buka 66db331d8bSVitaly Buka ASanStackFrameLayout Layout; 67db331d8bSVitaly Buka Layout.Granularity = Granularity; 68db331d8bSVitaly Buka Layout.FrameAlignment = std::max(Granularity, Vars[0].Alignment); 694fb7801bSKostya Serebryany size_t Offset = std::max(std::max(MinHeaderSize, Granularity), 704fb7801bSKostya Serebryany Vars[0].Alignment); 714fb7801bSKostya Serebryany assert((Offset % Granularity) == 0); 724fb7801bSKostya Serebryany for (size_t i = 0; i < NumVars; i++) { 734fb7801bSKostya Serebryany bool IsLast = i == NumVars - 1; 744fb7801bSKostya Serebryany size_t Alignment = std::max(Granularity, Vars[i].Alignment); 75152d48d3SKostya Serebryany (void)Alignment; // Used only in asserts. 764fb7801bSKostya Serebryany size_t Size = Vars[i].Size; 774fb7801bSKostya Serebryany assert((Alignment & (Alignment - 1)) == 0); 78db331d8bSVitaly Buka assert(Layout.FrameAlignment >= Alignment); 794fb7801bSKostya Serebryany assert((Offset % Alignment) == 0); 804fb7801bSKostya Serebryany assert(Size > 0); 814fb7801bSKostya Serebryany size_t NextAlignment = IsLast ? Granularity 824fb7801bSKostya Serebryany : std::max(Granularity, Vars[i + 1].Alignment); 835910a925SVitaly Buka size_t SizeWithRedzone = VarAndRedzoneSize(Size, NextAlignment); 844fb7801bSKostya Serebryany Vars[i].Offset = Offset; 854fb7801bSKostya Serebryany Offset += SizeWithRedzone; 864fb7801bSKostya Serebryany } 874fb7801bSKostya Serebryany if (Offset % MinHeaderSize) { 88db331d8bSVitaly Buka Offset += MinHeaderSize - (Offset % MinHeaderSize); 894fb7801bSKostya Serebryany } 90db331d8bSVitaly Buka Layout.FrameSize = Offset; 91db331d8bSVitaly Buka assert((Layout.FrameSize % MinHeaderSize) == 0); 92db331d8bSVitaly Buka return Layout; 93db331d8bSVitaly Buka } 94db331d8bSVitaly Buka 955910a925SVitaly Buka SmallString<64> ComputeASanStackFrameDescription( 965910a925SVitaly Buka const SmallVectorImpl<ASanStackVariableDescription> &Vars) { 975910a925SVitaly Buka SmallString<2048> StackDescriptionStorage; 985910a925SVitaly Buka raw_svector_ostream StackDescription(StackDescriptionStorage); 995910a925SVitaly Buka StackDescription << Vars.size(); 1005910a925SVitaly Buka 1015910a925SVitaly Buka for (const auto &Var : Vars) { 1025910a925SVitaly Buka std::string Name = Var.Name; 1035910a925SVitaly Buka if (Var.Line) { 1045910a925SVitaly Buka Name += ":"; 105*490fda33SVitaly Buka Name += to_string(Var.Line); 1065910a925SVitaly Buka } 1075910a925SVitaly Buka StackDescription << " " << Var.Offset << " " << Var.Size << " " 1085910a925SVitaly Buka << Name.size() << " " << Name; 1095910a925SVitaly Buka } 1105910a925SVitaly Buka return StackDescription.str(); 1115910a925SVitaly Buka } 1125910a925SVitaly Buka 113db331d8bSVitaly Buka SmallVector<uint8_t, 64> 114db331d8bSVitaly Buka GetShadowBytes(const SmallVectorImpl<ASanStackVariableDescription> &Vars, 115db331d8bSVitaly Buka const ASanStackFrameLayout &Layout) { 116c10c3344STim Northover assert(Vars.size() > 0); 117db331d8bSVitaly Buka SmallVector<uint8_t, 64> SB; 118db331d8bSVitaly Buka SB.clear(); 119db331d8bSVitaly Buka const size_t Granularity = Layout.Granularity; 120db331d8bSVitaly Buka SB.resize(Vars[0].Offset / Granularity, kAsanStackLeftRedzoneMagic); 121db331d8bSVitaly Buka for (const auto &Var : Vars) { 122db331d8bSVitaly Buka SB.resize(Var.Offset / Granularity, kAsanStackMidRedzoneMagic); 123db331d8bSVitaly Buka 124db331d8bSVitaly Buka SB.resize(SB.size() + Var.Size / Granularity, 0); 125db331d8bSVitaly Buka if (Var.Size % Granularity) 126db331d8bSVitaly Buka SB.push_back(Var.Size % Granularity); 127db331d8bSVitaly Buka } 128db331d8bSVitaly Buka SB.resize(Layout.FrameSize / Granularity, kAsanStackRightRedzoneMagic); 129db331d8bSVitaly Buka return SB; 130db331d8bSVitaly Buka } 131db331d8bSVitaly Buka 132db331d8bSVitaly Buka SmallVector<uint8_t, 64> GetShadowBytesAfterScope( 133db331d8bSVitaly Buka const SmallVectorImpl<ASanStackVariableDescription> &Vars, 134db331d8bSVitaly Buka const ASanStackFrameLayout &Layout) { 135db331d8bSVitaly Buka SmallVector<uint8_t, 64> SB = GetShadowBytes(Vars, Layout); 136db331d8bSVitaly Buka const size_t Granularity = Layout.Granularity; 137db331d8bSVitaly Buka 138db331d8bSVitaly Buka for (const auto &Var : Vars) { 1395910a925SVitaly Buka assert(Var.LifetimeSize <= Var.Size); 140db331d8bSVitaly Buka const size_t LifetimeShadowSize = 141db331d8bSVitaly Buka (Var.LifetimeSize + Granularity - 1) / Granularity; 142db331d8bSVitaly Buka const size_t Offset = Var.Offset / Granularity; 143db331d8bSVitaly Buka std::fill(SB.begin() + Offset, SB.begin() + Offset + LifetimeShadowSize, 144db331d8bSVitaly Buka kAsanStackUseAfterScopeMagic); 145db331d8bSVitaly Buka } 146db331d8bSVitaly Buka 147db331d8bSVitaly Buka return SB; 1484fb7801bSKostya Serebryany } 1494fb7801bSKostya Serebryany 150f00654e3SAlexander Kornienko } // llvm namespace 151