Override virtual function for ARM EH directives.

git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@173939 91177308-0d34-0410-b5e6-96231b3b80d8
This commit is contained in:
Logan Chien 2013-01-30 15:39:04 +00:00
parent f121b79a6a
commit 52b1b3bbc6

View File

@ -13,6 +13,7 @@
//
//===----------------------------------------------------------------------===//
#include "ARMUnwindOp.h"
#include "llvm/ADT/SmallPtrSet.h"
#include "llvm/ADT/Twine.h"
#include "llvm/MC/MCAsmBackend.h"
@ -56,11 +57,25 @@ public:
ARMELFStreamer(MCContext &Context, MCAsmBackend &TAB,
raw_ostream &OS, MCCodeEmitter *Emitter, bool IsThumb)
: MCELFStreamer(Context, TAB, OS, Emitter),
IsThumb(IsThumb), MappingSymbolCounter(0), LastEMS(EMS_None) {
IsThumb(IsThumb), MappingSymbolCounter(0), LastEMS(EMS_None),
ExTab(0), FnStart(0), Personality(0), CantUnwind(false) {
}
~ARMELFStreamer() {}
// ARM exception handling directives
virtual void EmitFnStart();
virtual void EmitFnEnd();
virtual void EmitCantUnwind();
virtual void EmitPersonality(const MCSymbol *Per);
virtual void EmitHandlerData();
virtual void EmitSetFP(unsigned NewFpReg,
unsigned NewSpReg,
int64_t Offset = 0);
virtual void EmitPad(int64_t Offset);
virtual void EmitRegSave(const SmallVectorImpl<unsigned> &RegList,
bool isVector);
virtual void ChangeSection(const MCSection *Section) {
// We have to keep track of the mapping symbol state of any sections we
// use. Each one should start off as EMS_None, which is provided as the
@ -172,6 +187,15 @@ private:
SD.setFlags(SD.getFlags() | ELF_Other_ThumbFunc);
}
// Helper functions for ARM exception handling directives
void Reset();
void EmitPersonalityFixup(StringRef Name);
void SwitchToEHSection(const char *Prefix, unsigned Type, unsigned Flags,
SectionKind Kind, const MCSymbol &Fn);
void SwitchToExTabSection(const MCSymbol &FnStart);
void SwitchToExIdxSection(const MCSymbol &FnStart);
bool IsThumb;
int64_t MappingSymbolCounter;
@ -179,10 +203,200 @@ private:
DenseMap<const MCSection *, ElfMappingSymbol> LastMappingSymbols;
ElfMappingSymbol LastEMS;
/// @}
// ARM Exception Handling Frame Information
MCSymbol *ExTab;
MCSymbol *FnStart;
const MCSymbol *Personality;
bool CantUnwind;
};
}
inline void ARMELFStreamer::SwitchToEHSection(const char *Prefix,
unsigned Type,
unsigned Flags,
SectionKind Kind,
const MCSymbol &Fn) {
const MCSectionELF &FnSection =
static_cast<const MCSectionELF &>(Fn.getSection());
// Create the name for new section
StringRef FnSecName(FnSection.getSectionName());
SmallString<128> EHSecName(Prefix);
if (FnSecName != ".text") {
EHSecName += FnSecName;
}
// Get .ARM.extab or .ARM.exidx section
const MCSectionELF *EHSection = NULL;
if (const MCSymbol *Group = FnSection.getGroup()) {
EHSection = getContext().getELFSection(
EHSecName, Type, Flags | ELF::SHF_GROUP, Kind,
FnSection.getEntrySize(), Group->getName());
} else {
EHSection = getContext().getELFSection(EHSecName, Type, Flags, Kind);
}
assert(EHSection);
// Switch to .ARM.extab or .ARM.exidx section
SwitchSection(EHSection);
EmitCodeAlignment(4, 0);
}
inline void ARMELFStreamer::SwitchToExTabSection(const MCSymbol &FnStart) {
SwitchToEHSection(".ARM.extab",
ELF::SHT_PROGBITS,
ELF::SHF_ALLOC,
SectionKind::getDataRel(),
FnStart);
}
inline void ARMELFStreamer::SwitchToExIdxSection(const MCSymbol &FnStart) {
SwitchToEHSection(".ARM.exidx",
ELF::SHT_ARM_EXIDX,
ELF::SHF_ALLOC | ELF::SHF_LINK_ORDER,
SectionKind::getDataRel(),
FnStart);
}
void ARMELFStreamer::Reset() {
ExTab = NULL;
FnStart = NULL;
Personality = NULL;
CantUnwind = false;
}
// Add the R_ARM_NONE fixup at the same position
void ARMELFStreamer::EmitPersonalityFixup(StringRef Name) {
const MCSymbol *PersonalitySym = getContext().GetOrCreateSymbol(Name);
const MCSymbolRefExpr *PersonalityRef =
MCSymbolRefExpr::Create(PersonalitySym,
MCSymbolRefExpr::VK_ARM_NONE,
getContext());
AddValueSymbols(PersonalityRef);
MCDataFragment *DF = getOrCreateDataFragment();
DF->getFixups().push_back(
MCFixup::Create(DF->getContents().size(), PersonalityRef,
MCFixup::getKindForSize(4, false)));
}
void ARMELFStreamer::EmitFnStart() {
assert(FnStart == 0);
FnStart = getContext().CreateTempSymbol();
EmitLabel(FnStart);
}
void ARMELFStreamer::EmitFnEnd() {
assert(FnStart && ".fnstart must preceeds .fnend");
// Emit unwind opcodes if there is no .handlerdata directive
int PersonalityIndex = -1;
if (!ExTab && !CantUnwind) {
// For __aeabi_unwind_cpp_pr1, we have to emit opcodes in .ARM.extab.
SwitchToExTabSection(*FnStart);
// Create .ARM.extab label for offset in .ARM.exidx
ExTab = getContext().CreateTempSymbol();
EmitLabel(ExTab);
PersonalityIndex = 1;
uint32_t Entry = 0;
uint32_t NumExtraEntryWords = 0;
Entry |= NumExtraEntryWords << 24;
Entry |= (EHT_COMPACT | PersonalityIndex) << 16;
// TODO: This should be generated according to .save, .vsave, .setfp
// directives. Currently, we are simply generating FINISH opcode.
Entry |= UNWIND_OPCODE_FINISH << 8;
Entry |= UNWIND_OPCODE_FINISH;
EmitIntValue(Entry, 4, 0);
}
// Emit the exception index table entry
SwitchToExIdxSection(*FnStart);
if (PersonalityIndex == 1)
EmitPersonalityFixup("__aeabi_unwind_cpp_pr1");
const MCSymbolRefExpr *FnStartRef =
MCSymbolRefExpr::Create(FnStart,
MCSymbolRefExpr::VK_ARM_PREL31,
getContext());
EmitValue(FnStartRef, 4, 0);
if (CantUnwind) {
EmitIntValue(EXIDX_CANTUNWIND, 4, 0);
} else {
const MCSymbolRefExpr *ExTabEntryRef =
MCSymbolRefExpr::Create(ExTab,
MCSymbolRefExpr::VK_ARM_PREL31,
getContext());
EmitValue(ExTabEntryRef, 4, 0);
}
// Clean exception handling frame information
Reset();
}
void ARMELFStreamer::EmitCantUnwind() {
CantUnwind = true;
}
void ARMELFStreamer::EmitHandlerData() {
SwitchToExTabSection(*FnStart);
// Create .ARM.extab label for offset in .ARM.exidx
assert(!ExTab);
ExTab = getContext().CreateTempSymbol();
EmitLabel(ExTab);
// Emit Personality
assert(Personality && ".personality directive must preceed .handlerdata");
const MCSymbolRefExpr *PersonalityRef =
MCSymbolRefExpr::Create(Personality,
MCSymbolRefExpr::VK_ARM_PREL31,
getContext());
EmitValue(PersonalityRef, 4, 0);
// Emit unwind opcodes
uint32_t Entry = 0;
uint32_t NumExtraEntryWords = 0;
// TODO: This should be generated according to .save, .vsave, .setfp
// directives. Currently, we are simply generating FINISH opcode.
Entry |= NumExtraEntryWords << 24;
Entry |= UNWIND_OPCODE_FINISH << 16;
Entry |= UNWIND_OPCODE_FINISH << 8;
Entry |= UNWIND_OPCODE_FINISH;
EmitIntValue(Entry, 4, 0);
}
void ARMELFStreamer::EmitPersonality(const MCSymbol *Per) {
Personality = Per;
}
void ARMELFStreamer::EmitSetFP(unsigned NewFpReg,
unsigned NewSpReg,
int64_t Offset) {
// TODO: Not implemented
}
void ARMELFStreamer::EmitPad(int64_t Offset) {
// TODO: Not implemented
}
void ARMELFStreamer::EmitRegSave(const SmallVectorImpl<unsigned> &RegList,
bool IsVector) {
// TODO: Not implemented
}
namespace llvm {
MCELFStreamer* createARMELFStreamer(MCContext &Context, MCAsmBackend &TAB,
raw_ostream &OS, MCCodeEmitter *Emitter,