Recommit r186217 with testcase fix:

Use the function attributes to pass along the stack protector buffer size.

 Now that we have robust function attributes, don't use a command line option to
 specify the stack protecto buffer size.



git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@186863 91177308-0d34-0410-b5e6-96231b3b80d8
This commit is contained in:
Bill Wendling 2013-07-22 20:15:21 +00:00
parent 9a05b98ef9
commit 0dcba2fadb
7 changed files with 23 additions and 28 deletions

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@ -220,8 +220,4 @@ cl::opt<std::string> StartAfter("start-after",
cl::value_desc("pass-name"), cl::value_desc("pass-name"),
cl::init("")); cl::init(""));
cl::opt<unsigned>
SSPBufferSize("stack-protector-buffer-size", cl::init(8),
cl::desc("Lower bound for a buffer to be considered for "
"stack protection"));
#endif #endif

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@ -48,7 +48,7 @@ namespace llvm {
UseSoftFloat(false), NoZerosInBSS(false), UseSoftFloat(false), NoZerosInBSS(false),
JITEmitDebugInfo(false), JITEmitDebugInfoToDisk(false), JITEmitDebugInfo(false), JITEmitDebugInfoToDisk(false),
GuaranteedTailCallOpt(false), DisableTailCalls(false), GuaranteedTailCallOpt(false), DisableTailCalls(false),
StackAlignmentOverride(0), RealignStack(true), SSPBufferSize(0), StackAlignmentOverride(0), RealignStack(true),
EnableFastISel(false), PositionIndependentExecutable(false), EnableFastISel(false), PositionIndependentExecutable(false),
EnableSegmentedStacks(false), UseInitArray(false), TrapFuncName(""), EnableSegmentedStacks(false), UseInitArray(false), TrapFuncName(""),
FloatABIType(FloatABI::Default), AllowFPOpFusion(FPOpFusion::Standard) FloatABIType(FloatABI::Default), AllowFPOpFusion(FPOpFusion::Standard)
@ -151,10 +151,6 @@ namespace llvm {
/// automatically realigned, if needed. /// automatically realigned, if needed.
unsigned RealignStack : 1; unsigned RealignStack : 1;
/// SSPBufferSize - The minimum size of buffers that will receive stack
/// smashing protection when -fstack-protection is used.
unsigned SSPBufferSize;
/// EnableFastISel - This flag enables fast-path instruction selection /// EnableFastISel - This flag enables fast-path instruction selection
/// which trades away generated code quality in favor of reducing /// which trades away generated code quality in favor of reducing
/// compile time. /// compile time.
@ -224,7 +220,6 @@ inline bool operator==(const TargetOptions &LHS,
ARE_EQUAL(DisableTailCalls) && ARE_EQUAL(DisableTailCalls) &&
ARE_EQUAL(StackAlignmentOverride) && ARE_EQUAL(StackAlignmentOverride) &&
ARE_EQUAL(RealignStack) && ARE_EQUAL(RealignStack) &&
ARE_EQUAL(SSPBufferSize) &&
ARE_EQUAL(EnableFastISel) && ARE_EQUAL(EnableFastISel) &&
ARE_EQUAL(PositionIndependentExecutable) && ARE_EQUAL(PositionIndependentExecutable) &&
ARE_EQUAL(EnableSegmentedStacks) && ARE_EQUAL(EnableSegmentedStacks) &&

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@ -33,6 +33,7 @@
#include "llvm/Pass.h" #include "llvm/Pass.h"
#include "llvm/Support/CommandLine.h" #include "llvm/Support/CommandLine.h"
#include "llvm/Target/TargetLowering.h" #include "llvm/Target/TargetLowering.h"
#include <cstdlib>
using namespace llvm; using namespace llvm;
STATISTIC(NumFunProtected, "Number of functions protected"); STATISTIC(NumFunProtected, "Number of functions protected");
@ -53,6 +54,10 @@ namespace {
DominatorTree *DT; DominatorTree *DT;
/// \brief The minimum size of buffers that will receive stack smashing
/// protection when -fstack-protection is used.
unsigned SSPBufferSize;
/// VisitedPHIs - The set of PHI nodes visited when determining /// VisitedPHIs - The set of PHI nodes visited when determining
/// if a variable's reference has been taken. This set /// if a variable's reference has been taken. This set
/// is maintained to ensure we don't visit the same PHI node multiple /// is maintained to ensure we don't visit the same PHI node multiple
@ -85,11 +90,12 @@ namespace {
bool RequiresStackProtector(); bool RequiresStackProtector();
public: public:
static char ID; // Pass identification, replacement for typeid. static char ID; // Pass identification, replacement for typeid.
StackProtector() : FunctionPass(ID), TM(0), TLI(0) { StackProtector() : FunctionPass(ID), TM(0), TLI(0), SSPBufferSize(0) {
initializeStackProtectorPass(*PassRegistry::getPassRegistry()); initializeStackProtectorPass(*PassRegistry::getPassRegistry());
} }
StackProtector(const TargetMachine *TM) StackProtector(const TargetMachine *TM)
: FunctionPass(ID), TM(TM), TLI(0), Trip(TM->getTargetTriple()) { : FunctionPass(ID), TM(TM), TLI(0), Trip(TM->getTargetTriple()),
SSPBufferSize(8) {
initializeStackProtectorPass(*PassRegistry::getPassRegistry()); initializeStackProtectorPass(*PassRegistry::getPassRegistry());
} }
@ -117,6 +123,12 @@ bool StackProtector::runOnFunction(Function &Fn) {
if (!RequiresStackProtector()) return false; if (!RequiresStackProtector()) return false;
Attribute Attr =
Fn.getAttributes().getAttribute(AttributeSet::FunctionIndex,
"stack-protector-buffer-size");
if (Attr.isStringAttribute())
SSPBufferSize = atoi(Attr.getValueAsString().data());
++NumFunProtected; ++NumFunProtected;
return InsertStackProtectors(); return InsertStackProtectors();
} }
@ -132,7 +144,6 @@ bool StackProtector::ContainsProtectableArray(Type *Ty, bool Strong,
// protector // protector
if (Strong) if (Strong)
return true; return true;
const TargetMachine &TM = TLI->getTargetMachine();
if (!AT->getElementType()->isIntegerTy(8)) { if (!AT->getElementType()->isIntegerTy(8)) {
// If we're on a non-Darwin platform or we're inside of a structure, don't // If we're on a non-Darwin platform or we're inside of a structure, don't
// add stack protectors unless the array is a character array. // add stack protectors unless the array is a character array.
@ -142,7 +153,7 @@ bool StackProtector::ContainsProtectableArray(Type *Ty, bool Strong,
// If an array has more than SSPBufferSize bytes of allocated space, then we // If an array has more than SSPBufferSize bytes of allocated space, then we
// emit stack protectors. // emit stack protectors.
if (TM.Options.SSPBufferSize <= TLI->getDataLayout()->getTypeAllocSize(AT)) if (SSPBufferSize <= TLI->getDataLayout()->getTypeAllocSize(AT))
return true; return true;
} }
@ -230,13 +241,14 @@ bool StackProtector::RequiresStackProtector() {
if (const ConstantInt *CI = if (const ConstantInt *CI =
dyn_cast<ConstantInt>(AI->getArraySize())) { dyn_cast<ConstantInt>(AI->getArraySize())) {
unsigned BufferSize = TLI->getTargetMachine().Options.SSPBufferSize; if (CI->getLimitedValue(SSPBufferSize) >= SSPBufferSize)
if (CI->getLimitedValue(BufferSize) >= BufferSize)
// A call to alloca with size >= SSPBufferSize requires // A call to alloca with size >= SSPBufferSize requires
// stack protectors. // stack protectors.
return true; return true;
} else // A call to alloca with a variable size requires protectors. } else {
// A call to alloca with a variable size requires protectors.
return true; return true;
}
} }
if (ContainsProtectableArray(AI->getAllocatedType(), Strong)) if (ContainsProtectableArray(AI->getAllocatedType(), Strong))

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@ -1,4 +1,4 @@
; RUN: llc -filetype=obj -O0 -stack-protector-buffer-size=1 < %s ; RUN: llc -filetype=obj -O0 < %s
; Test that we handle DBG_VALUEs in a register without crashing. ; Test that we handle DBG_VALUEs in a register without crashing.
; ;
; Generated from clang with -fsanitize=address: ; Generated from clang with -fsanitize=address:
@ -23,7 +23,7 @@ target triple = "x86_64-unknown-linux-gnu"
@__asan_gen_ = private unnamed_addr constant [16 x i8] c"1 32 4 5 .addr \00", align 1 @__asan_gen_ = private unnamed_addr constant [16 x i8] c"1 32 4 5 .addr \00", align 1
; Function Attrs: sanitize_address uwtable ; Function Attrs: sanitize_address uwtable
define void @_Z4funci(%struct.A* noalias sret %agg.result, i32) #0 { define void @_Z4funci(%struct.A* noalias sret %agg.result, i32) #0 "stack-protector-buffer-size"="1" {
entry: entry:
%MyAlloca = alloca [96 x i8], align 32 %MyAlloca = alloca [96 x i8], align 32
%1 = ptrtoint [96 x i8]* %MyAlloca to i64 %1 = ptrtoint [96 x i8]* %MyAlloca to i64
@ -89,7 +89,7 @@ declare void @llvm.dbg.declare(metadata, metadata) #1
declare void @_ZN1AC1Ev(%struct.A*) #2 declare void @_ZN1AC1Ev(%struct.A*) #2
define internal void @asan.module_ctor() { define internal void @asan.module_ctor() "stack-protector-buffer-size"="1" {
call void @__asan_init_v3() call void @__asan_init_v3()
%1 = load volatile i64* @__asan_mapping_offset %1 = load volatile i64* @__asan_mapping_offset
%2 = load volatile i64* @__asan_mapping_scale %2 = load volatile i64* @__asan_mapping_scale

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@ -281,7 +281,6 @@ static int compileModule(char **argv, LLVMContext &Context) {
Options.PositionIndependentExecutable = EnablePIE; Options.PositionIndependentExecutable = EnablePIE;
Options.EnableSegmentedStacks = SegmentedStacks; Options.EnableSegmentedStacks = SegmentedStacks;
Options.UseInitArray = UseInitArray; Options.UseInitArray = UseInitArray;
Options.SSPBufferSize = SSPBufferSize;
OwningPtr<TargetMachine> OwningPtr<TargetMachine>
target(TheTarget->createTargetMachine(TheTriple.getTriple(), target(TheTarget->createTargetMachine(TheTriple.getTriple(),

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@ -151,11 +151,6 @@ UseInitArray("use-init-array",
cl::desc("Use .init_array instead of .ctors."), cl::desc("Use .init_array instead of .ctors."),
cl::init(false)); cl::init(false));
static cl::opt<unsigned>
SSPBufferSize("stack-protector-buffer-size", cl::init(8),
cl::desc("Lower bound for a buffer to be considered for "
"stack protection"));
LTOModule::LTOModule(llvm::Module *m, llvm::TargetMachine *t) LTOModule::LTOModule(llvm::Module *m, llvm::TargetMachine *t)
: _module(m), _target(t), : _module(m), _target(t),
_context(_target->getMCAsmInfo(), _target->getRegisterInfo(), NULL), _context(_target->getMCAsmInfo(), _target->getRegisterInfo(), NULL),
@ -261,7 +256,6 @@ void LTOModule::getTargetOptions(TargetOptions &Options) {
Options.PositionIndependentExecutable = EnablePIE; Options.PositionIndependentExecutable = EnablePIE;
Options.EnableSegmentedStacks = SegmentedStacks; Options.EnableSegmentedStacks = SegmentedStacks;
Options.UseInitArray = UseInitArray; Options.UseInitArray = UseInitArray;
Options.SSPBufferSize = SSPBufferSize;
} }
LTOModule *LTOModule::makeLTOModule(MemoryBuffer *buffer, LTOModule *LTOModule::makeLTOModule(MemoryBuffer *buffer,

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@ -510,7 +510,6 @@ static TargetOptions GetTargetOptions() {
Options.PositionIndependentExecutable = EnablePIE; Options.PositionIndependentExecutable = EnablePIE;
Options.EnableSegmentedStacks = SegmentedStacks; Options.EnableSegmentedStacks = SegmentedStacks;
Options.UseInitArray = UseInitArray; Options.UseInitArray = UseInitArray;
Options.SSPBufferSize = SSPBufferSize;
return Options; return Options;
} }