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/*
* Copyright (c) 2010-2011, 2014, 2016-2019 ARM Limited
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* Copyright (c) 2007-2008 The Florida State University
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#ifndef __ARCH_ARM_REGS_VEC_HH__
#define __ARCH_ARM_REGS_VEC_HH__
#include "arch/arm/types.hh"
#include "arch/generic/vec_pred_reg.hh"
#include "arch/generic/vec_reg.hh"
namespace gem5
{
namespace ArmISA
{
// Number of VecElem per Vector Register considering only pre-SVE
// Advanced SIMD registers.
constexpr unsigned NumVecElemPerNeonVecReg = 4;
// Number of VecElem per Vector Register, computed based on the vector length
constexpr unsigned NumVecElemPerVecReg = MaxSveVecLenInWords;
using VecElem = uint32_t;
using VecRegContainer =
gem5::VecRegContainer<NumVecElemPerVecReg * sizeof(VecElem)>;
using VecPredReg =
gem5::VecPredRegT<VecElem, NumVecElemPerVecReg, false, false>;
using ConstVecPredReg =
gem5::VecPredRegT<VecElem, NumVecElemPerVecReg, false, true>;
using VecPredRegContainer = VecPredReg::Container;
// Vec, PredVec
// NumFloatV7ArchRegs: This in theory should be 32.
// However in A32 gem5 is splitting double register accesses in two
// subsequent single register ones. This means we would use a index
// bigger than 31 when accessing D16-D31.
const int NumFloatV7ArchRegs = 64; // S0-S31, D0-D31
const int NumVecV7ArchRegs = 16; // Q0-Q15
const int NumVecV8ArchRegs = 32; // V0-V31
const int NumVecSpecialRegs = 8;
const int NumVecIntrlvRegs = 4;
const int NumVecRegs = NumVecV8ArchRegs + NumVecSpecialRegs + NumVecIntrlvRegs;
const int NumVecPredRegs = 18; // P0-P15, FFR, UREG0
// Vec, PredVec indices
const int VecSpecialElem = NumVecV8ArchRegs * NumVecElemPerNeonVecReg;
const int INTRLVREG0 = NumVecV8ArchRegs + NumVecSpecialRegs;
const int INTRLVREG1 = INTRLVREG0 + 1;
const int INTRLVREG2 = INTRLVREG0 + 2;
const int INTRLVREG3 = INTRLVREG0 + 3;
const int VECREG_UREG0 = 32;
const int PREDREG_FFR = 16;
const int PREDREG_UREG0 = 17;
} // namespace ArmISA
} // namespace gem5
#endif