A32: Implement ASIMD VSHL
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3 changed files with 41 additions and 9 deletions
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@ -63,7 +63,7 @@ INST(asimd_SRA, "SRA", "1111001U1Diiiiiidddd000
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INST(asimd_VRSHR, "VRSHR", "1111001U1Diiiiiidddd0010LQM1mmmm") // ASIMD
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INST(asimd_VRSRA, "VRSRA", "1111001U1Diiiiiidddd0011LQM1mmmm") // ASIMD
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//INST(asimd_VSRI, "VSRI", "111100111-vvv-------0100LB-1----") // ASIMD
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//INST(asimd_VSHL, "VSHL", "111100101-vvv-------0101LB-1----") // ASIMD
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INST(asimd_VSHL, "VSHL", "111100101Diiiiiidddd0101LQM1mmmm") // ASIMD
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//INST(asimd_VSLI, "VSLI", "111100111-vvv-------0101LB-1----") // ASIMD
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//INST(asimd_VQSHL, "VQSHL" , "1111001U1-vvv-------011xLB-1----") // ASIMD
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//INST(asimd_VSHRN, "VSHRN", "111100101-vvv-------100000-1----") // ASIMD
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@ -25,7 +25,8 @@ IR::U128 PerformRoundingCorrection(ArmTranslatorVisitor& v, size_t esize, u64 ro
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return v.ir.VectorSub(esize, shifted, round_correction);
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}
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std::pair<size_t, size_t> ElementSizeAndShiftAmount(bool L, size_t imm6) {
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std::pair<size_t, size_t> ElementSizeAndShiftAmount(bool right_shift, bool L, size_t imm6) {
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if (right_shift) {
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if (L) {
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return {64, 64 - imm6};
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}
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@ -33,6 +34,15 @@ std::pair<size_t, size_t> ElementSizeAndShiftAmount(bool L, size_t imm6) {
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const size_t esize = 8U << Common::HighestSetBit(imm6 >> 3);
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const size_t shift_amount = (esize * 2) - imm6;
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return {esize, shift_amount};
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} else {
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if (L) {
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return {64, imm6};
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}
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const size_t esize = 8U << Common::HighestSetBit(imm6 >> 3);
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const size_t shift_amount = imm6 - esize;
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return {esize, shift_amount};
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}
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}
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bool ShiftRight(ArmTranslatorVisitor& v, bool U, bool D, size_t imm6, size_t Vd, bool L, bool Q, bool M, size_t Vm,
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@ -46,7 +56,7 @@ bool ShiftRight(ArmTranslatorVisitor& v, bool U, bool D, size_t imm6, size_t Vd,
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return v.UndefinedInstruction();
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}
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const auto [esize, shift_amount] = ElementSizeAndShiftAmount(L, imm6);
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const auto [esize, shift_amount] = ElementSizeAndShiftAmount(true, L, imm6);
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const auto d = ToVector(Q, Vd, D);
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const auto m = ToVector(Q, Vm, M);
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@ -89,4 +99,25 @@ bool ArmTranslatorVisitor::asimd_VRSRA(bool U, bool D, size_t imm6, size_t Vd, b
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Accumulating::Accumulate, Rounding::Round);
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}
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bool ArmTranslatorVisitor::asimd_VSHL(bool D, size_t imm6, size_t Vd, bool L, bool Q, bool M, size_t Vm) {
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if (Q && (Common::Bit<0>(Vd) || Common::Bit<0>(Vm))) {
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return UndefinedInstruction();
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}
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// Technically just a related encoding (One register and modified immediate instructions)
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if (!L && Common::Bits<3, 5>(imm6) == 0) {
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return UndefinedInstruction();
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}
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const auto [esize, shift_amount] = ElementSizeAndShiftAmount(false, L, imm6);
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const auto d = ToVector(Q, Vd, D);
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const auto m = ToVector(Q, Vm, M);
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const auto reg_m = ir.GetVector(m);
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const auto result = ir.VectorLogicalShiftLeft(esize, reg_m, static_cast<u8>(shift_amount));
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ir.SetVector(d, result);
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return true;
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}
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} // namespace Dynarmic::A32
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@ -456,6 +456,7 @@ struct ArmTranslatorVisitor final {
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bool asimd_SRA(bool U, bool D, size_t imm6, size_t Vd, bool L, bool Q, bool M, size_t Vm);
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bool asimd_VRSHR(bool U, bool D, size_t imm6, size_t Vd, bool L, bool Q, bool M, size_t Vm);
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bool asimd_VRSRA(bool U, bool D, size_t imm6, size_t Vd, bool L, bool Q, bool M, size_t Vm);
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bool asimd_VSHL(bool D, size_t imm6, size_t Vd, bool L, bool Q, bool M, size_t Vm);
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// Advanced SIMD two register, miscellaneous
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bool asimd_VREV(bool D, size_t sz, size_t Vd, size_t op, bool Q, bool M, size_t Vm);
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