26#define DEBUG_TYPE "aarch64-jump-tables"
28STATISTIC(NumJT8,
"Number of jump-tables with 1-byte entries");
29STATISTIC(NumJT16,
"Number of jump-tables with 2-byte entries");
30STATISTIC(NumJT32,
"Number of jump-tables with 4-byte entries");
52 bool runOnMachineFunction(MachineFunction &MF)
override;
54 MachineFunctionProperties getRequiredProperties()
const override {
55 return MachineFunctionProperties().setNoVRegs();
57 StringRef getPassName()
const override {
58 return "AArch64 Compress Jump Tables";
61char AArch64CompressJumpTables::ID = 0;
65 "AArch64 compress jump tables pass",
false,
false)
74 if (
MI.getOpcode() == AArch64::INLINEASM ||
75 MI.getOpcode() == AArch64::INLINEASM_BR)
82bool AArch64CompressJumpTables::scanFunction() {
89 for (MachineBasicBlock &
MBB : *MF) {
91 unsigned OffsetAfterAlignment =
Offset;
93 if (Alignment >
Align(4))
94 OffsetAfterAlignment += Alignment.
value() - 4;
104bool AArch64CompressJumpTables::compressJumpTable(MachineInstr &
MI,
106 if (
MI.getOpcode() != AArch64::JumpTableDest32)
109 int JTIdx =
MI.getOperand(4).getIndex();
110 auto &JTInfo = *MF->getJumpTableInfo();
111 const MachineJumpTableEntry &
JT = JTInfo.getJumpTables()[JTIdx];
117 int MaxOffset = std::numeric_limits<int>::min(),
118 MinOffset = std::numeric_limits<int>::max();
119 MachineBasicBlock *MinBlock =
nullptr;
121 int BlockOffset = BlockInfo[
Block->getNumber()];
122 assert(BlockOffset % 4 == 0 &&
"misaligned basic block");
124 MaxOffset = std::max(MaxOffset, BlockOffset);
125 if (BlockOffset <= MinOffset) {
126 MinOffset = BlockOffset;
130 assert(MinBlock &&
"Failed to find minimum offset block");
139 int Span = MaxOffset - MinOffset;
140 auto *AFI = MF->getInfo<AArch64FunctionInfo>();
142 AFI->setJumpTableEntryInfo(JTIdx, 1, MinBlock->
getSymbol());
143 MI.setDesc(
TII->get(AArch64::JumpTableDest8));
148 AFI->setJumpTableEntryInfo(JTIdx, 2, MinBlock->
getSymbol());
149 MI.setDesc(
TII->get(AArch64::JumpTableDest16));
158bool AArch64CompressJumpTables::runOnMachineFunction(MachineFunction &MFIn) {
162 const auto &
ST = MF->getSubtarget<AArch64Subtarget>();
163 TII =
ST.getInstrInfo();
165 if (
ST.force32BitJumpTables() && !MF->getFunction().hasMinSize())
171 for (MachineBasicBlock &
MBB : *MF) {
173 for (MachineInstr &
MI :
MBB) {
183 return new AArch64CompressJumpTables();
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
const HexagonInstrInfo * TII
#define INITIALIZE_PASS(passName, arg, name, cfg, analysis)
This file defines the 'Statistic' class, which is designed to be an easy way to expose various metric...
#define STATISTIC(VARNAME, DESC)
static const int BlockSize
FunctionPass class - This class is used to implement most global optimizations.
LLVM_ABI MCSymbol * getSymbol() const
Return the MCSymbol for this basic block.
int getNumber() const
MachineBasicBlocks are uniquely numbered at the function level, unless they're not in a MachineFuncti...
Align getAlignment() const
Return alignment of the basic block.
MachineFunctionPass - This class adapts the FunctionPass interface to allow convenient creation of pa...
unsigned getNumBlockIDs() const
getNumBlockIDs - Return the number of MBB ID's allocated.
Representation of each machine instruction.
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
TargetInstrInfo - Interface to description of machine instruction set.
constexpr char Align[]
Key for Kernel::Arg::Metadata::mAlign.
unsigned ID
LLVM IR allows to use arbitrary numbers as calling convention identifiers.
This is an optimization pass for GlobalISel generic memory operations.
constexpr bool isInt(int64_t x)
Checks if an integer fits into the given bit width.
FunctionPass * createAArch64CompressJumpTablesPass()
constexpr bool isUInt(uint64_t x)
Checks if an unsigned integer fits into the given bit width.
Implement std::hash so that hash_code can be used in STL containers.
uint64_t value() const
This is a hole in the type system and should not be abused.