Clean of Data and Allocation Tags by VA to PoDP
Clean Allocation Tags and data in data cache by address to Point of Deep Persistence.
If the memory system does not identify a Point of Deep Persistence, then this instruction behaves as a DC CGDVAP.
This instruction is present only when FEAT_DPB2 is implemented and FEAT_MTE is implemented. Otherwise, direct accesses to DC CGDVADP are UNDEFINED.
DC CGDVADP is a 64-bit System instruction.
| 63 | 62 | 61 | 60 | 59 | 58 | 57 | 56 | 55 | 54 | 53 | 52 | 51 | 50 | 49 | 48 | 47 | 46 | 45 | 44 | 43 | 42 | 41 | 40 | 39 | 38 | 37 | 36 | 35 | 34 | 33 | 32 |
| 31 | 30 | 29 | 28 | 27 | 26 | 25 | 24 | 23 | 22 | 21 | 20 | 19 | 18 | 17 | 16 | 15 | 14 | 13 | 12 | 11 | 10 | 9 | 8 | 7 | 6 | 5 | 4 | 3 | 2 | 1 | 0 |
| VA | |||||||||||||||||||||||||||||||
| VA | |||||||||||||||||||||||||||||||
Virtual address to use. No alignment restrictions apply to this VA.
If EL0 access is enabled, when executed at EL0, the instruction may generate a Permission fault, subject to the constraints described in 'MMU faults generated by cache maintenance operations'.
Execution of this instruction might require an address translation from VA to PA, and that translation might fault. For more information, see 'The data cache maintenance instruction (DC)'.
This system instruction is an alias of the SYS instruction.
Accesses to this instruction use the following encodings in the System instruction encoding space:
DC CGDVADP, <Xt>
(op0 = 0b01, op1 = 0b011, CRn = 0b0111, CRm = 0b1101, op2 = 0b101)
if !(IsFeatureImplemented(FEAT_DPB2) && IsFeatureImplemented(FEAT_MTE)) then Undefined(); elsif EffectivelyAtEL0NotInHost() then if !AArch64_CanTrapDC(CacheType_Data_Tag, CacheOp_Clean, CacheOpScope_PoDP) then ExecuteAsNOP(); elsif SCTLR_EL1().UCI == '0' then AArch64_SystemAccessTraptoEL1orEL2(0x18); elsif EL2Enabled() && HCR_EL2().TPCP == '1' then AArch64_SystemAccessTrap(EL2, 0x18); elsif EL2Enabled() && IsFeatureImplemented(FEAT_FGT) && (!HaveEL(EL3) || SCR_EL3().FGTEn == '1') && HFGITR_EL2().DCCVADP == '1' then AArch64_SystemAccessTrap(EL2, 0x18); else if AArch64_TreatDCAsNOP(CacheType_Data_Tag, CacheOp_Clean, CacheOpScope_PoDP) then ExecuteAsNOP(); else AArch64_DC(X{64}(t), CacheType_Data_Tag, CacheOp_Clean, CacheOpScope_PoDP); end; end; elsif EffectivelyAtEL0InHost() then if !AArch64_CanTrapDC(CacheType_Data_Tag, CacheOp_Clean, CacheOpScope_PoDP) then ExecuteAsNOP(); elsif SCTLR_EL2().UCI == '0' then AArch64_SystemAccessTrap(EL2, 0x18); else if AArch64_TreatDCAsNOP(CacheType_Data_Tag, CacheOp_Clean, CacheOpScope_PoDP) then ExecuteAsNOP(); else AArch64_DC(X{64}(t), CacheType_Data_Tag, CacheOp_Clean, CacheOpScope_PoDP); end; end; elsif PSTATE.EL == EL1 then if !AArch64_CanTrapDC(CacheType_Data_Tag, CacheOp_Clean, CacheOpScope_PoDP) then ExecuteAsNOP(); elsif EL2Enabled() && HCR_EL2().TPCP == '1' then AArch64_SystemAccessTrap(EL2, 0x18); elsif EL2Enabled() && IsFeatureImplemented(FEAT_FGT) && (!HaveEL(EL3) || SCR_EL3().FGTEn == '1') && HFGITR_EL2().DCCVADP == '1' then AArch64_SystemAccessTrap(EL2, 0x18); else if AArch64_TreatDCAsNOP(CacheType_Data_Tag, CacheOp_Clean, CacheOpScope_PoDP) then ExecuteAsNOP(); else AArch64_DC(X{64}(t), CacheType_Data_Tag, CacheOp_Clean, CacheOpScope_PoDP); end; end; elsif PSTATE.EL == EL2 then if !AArch64_CanTrapDC(CacheType_Data_Tag, CacheOp_Clean, CacheOpScope_PoDP) then ExecuteAsNOP(); else if AArch64_TreatDCAsNOP(CacheType_Data_Tag, CacheOp_Clean, CacheOpScope_PoDP) then ExecuteAsNOP(); else AArch64_DC(X{64}(t), CacheType_Data_Tag, CacheOp_Clean, CacheOpScope_PoDP); end; end; elsif PSTATE.EL == EL3 then if AArch64_TreatDCAsNOP(CacheType_Data_Tag, CacheOp_Clean, CacheOpScope_PoDP) then ExecuteAsNOP(); else AArch64_DC(X{64}(t), CacheType_Data_Tag, CacheOp_Clean, CacheOpScope_PoDP); end; end;
Version 2026.06 — Copyright © 2010-2026 Arm Limited or its affiliates.
This site is provided as a community resource and is NOT affiliated with nor endorsed by Arm Limited.