31 auto checkFixupInRange = [&](int64_t Min, int64_t Max) ->
bool {
32 int64_t SVal = int64_t(
Value);
33 if (SVal < Min || SVal > Max) {
34 Ctx.reportError(
Fixup.getLoc(),
"operand out of range (" +
Twine(SVal) +
35 " not between " +
Twine(Min) +
36 " and " +
Twine(Max) +
")");
42 auto handlePCRelFixupValue = [&](
unsigned W) ->
uint64_t {
44 Ctx.reportError(
Fixup.getLoc(),
"Non-even PC relative offset.");
47 return (int64_t)
Value / 2;
50 auto handleImmValue = [&](
bool IsSigned,
unsigned W) ->
uint64_t {
52 : checkFixupInRange(0,
maxUIntN(W))))
57 switch (
unsigned(Kind)) {
59 return handlePCRelFixupValue(12);
61 return handlePCRelFixupValue(16);
63 return handlePCRelFixupValue(24);
65 return handlePCRelFixupValue(32);
71 return handleImmValue(
true, 8);
73 return handleImmValue(
true, 16);
75 Value = handleImmValue(
true, 20);
80 return (DLo << 8) | DHi;
83 return handleImmValue(
true, 32);
85 return handleImmValue(
false, 1);
87 return handleImmValue(
false, 2);
89 return handleImmValue(
false, 3);
91 return handleImmValue(
false, 4);
93 return handleImmValue(
false, 8);
95 return handleImmValue(
false, 12);
97 return handleImmValue(
false, 16);
99 return handleImmValue(
false, 32);
101 return handleImmValue(
false, 48);
110 SystemZMCAsmBackend() : MCAsmBackend(llvm::
endianness::
big) {}
113 std::optional<MCFixupKind>
getFixupKind(StringRef Name)
const override;
114 MCFixupKindInfo getFixupKindInfo(
MCFixupKind Kind)
const override;
115 void applyFixup(
const MCFragment &,
const MCFixup &,
const MCValue &Target,
116 uint8_t *
Data, uint64_t
Value,
bool IsResolved)
override;
117 bool writeNopData(raw_ostream &OS, uint64_t
Count,
118 const MCSubtargetInfo *STI)
const override;
122std::optional<MCFixupKind>
123SystemZMCAsmBackend::getFixupKind(
StringRef Name)
const {
124 unsigned Type = llvm::StringSwitch<unsigned>(Name)
125#define ELF_RELOC(X, Y) .Case(#X, Y)
126#include "llvm/BinaryFormat/ELFRelocs/SystemZ.def"
128 .Case(
"BFD_RELOC_NONE", ELF::R_390_NONE)
129 .Case(
"BFD_RELOC_8", ELF::R_390_8)
130 .Case(
"BFD_RELOC_16", ELF::R_390_16)
131 .Case(
"BFD_RELOC_32", ELF::R_390_32)
132 .Case(
"BFD_RELOC_64", ELF::R_390_64)
139MCFixupKindInfo SystemZMCAsmBackend::getFixupKindInfo(
MCFixupKind Kind)
const {
153void SystemZMCAsmBackend::applyFixup(
const MCFragment &
F,
const MCFixup &
Fixup,
154 const MCValue &Target, uint8_t *
Data,
155 uint64_t
Value,
bool IsResolved) {
156 if (
Target.getSpecifier())
158 maybeAddReloc(
F,
Fixup, Target,
Value, IsResolved);
162 unsigned BitSize = getFixupKindInfo(Kind).TargetSize;
163 unsigned Size = (BitSize + 7) / 8;
170 Value &= ((uint64_t)1 << BitSize) - 1;
171 unsigned ShiftValue = (
Size * 8) - 8;
172 for (
unsigned I = 0;
I !=
Size; ++
I) {
178bool SystemZMCAsmBackend::writeNopData(raw_ostream &OS, uint64_t
Count,
179 const MCSubtargetInfo *STI)
const {
180 for (uint64_t
I = 0;
I !=
Count; ++
I)
186class ELFSystemZAsmBackend :
public SystemZMCAsmBackend {
190 ELFSystemZAsmBackend(uint8_t OsABI) : SystemZMCAsmBackend(), OSABI(OsABI){};
192 std::unique_ptr<MCObjectTargetWriter>
193 createObjectTargetWriter()
const override {
198class GOFFSystemZAsmBackend :
public SystemZMCAsmBackend {
200 GOFFSystemZAsmBackend() : SystemZMCAsmBackend(){};
202 std::unique_ptr<MCObjectTargetWriter>
203 createObjectTargetWriter()
const override {
214 return new GOFFSystemZAsmBackend();
219 return new ELFSystemZAsmBackend(OSABI);
unsigned const MachineRegisterInfo * MRI
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
PowerPC TLS Dynamic Call Fixup
This file implements the StringSwitch template, which mimics a switch() statement whose cases are str...
static uint64_t extractBitsForFixup(MCFixupKind Kind, uint64_t Value, const MCFixup &Fixup, MCContext &Ctx)
Generic interface to target specific assembler backends.
virtual MCFixupKindInfo getFixupKindInfo(MCFixupKind Kind) const
Get information on a fixup kind.
Context object for machine code objects.
Encode information on a single operation to perform on a byte sequence (e.g., an encoded instruction)...
MCRegisterInfo base class - We assume that the target defines a static array of MCRegisterDesc object...
Generic base class for all target subtargets.
const Triple & getTargetTriple() const
StringRef - Represent a constant reference to a string, i.e.
Target - Wrapper for Target specific information.
OSType getOS() const
Get the parsed operating system type of this triple.
Twine - A lightweight data structure for efficiently representing the concatenation of temporary valu...
LLVM Value Representation.
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
static const MCFixupKindInfo MCFixupKindInfos[SystemZ::NumTargetFixupKinds]
VE::Fixups getFixupKind(uint8_t S)
Error applyFixup(LinkGraph &G, Block &B, const Edge &E, const ArmConfig &ArmCfg)
Apply fixup expression for edge to block content.
bool isRelocation(MCFixupKind FixupKind)
Context & getContext() const
This is an optimization pass for GlobalISel generic memory operations.
FunctionAddr VTableAddr Value
constexpr uint64_t maxUIntN(uint64_t N)
Gets the maximum value for a N-bit unsigned integer.
constexpr int64_t minIntN(int64_t N)
Gets the minimum value for a N-bit signed integer.
std::unique_ptr< MCObjectTargetWriter > createSystemZGOFFObjectWriter()
MCAsmBackend * createSystemZMCAsmBackend(const Target &T, const MCSubtargetInfo &STI, const MCRegisterInfo &MRI, const MCTargetOptions &Options)
uint16_t MCFixupKind
Extensible enumeration to represent the type of a fixup.
FunctionAddr VTableAddr Count
@ FirstLiteralRelocationKind
FunctionAddr VTableAddr uintptr_t uintptr_t Data
constexpr int64_t maxIntN(int64_t N)
Gets the maximum value for a N-bit signed integer.
std::unique_ptr< MCObjectTargetWriter > createSystemZELFObjectWriter(uint8_t OSABI)