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ICV_PMR_EL1

Interrupt Controller Virtual Interrupt Priority Mask Register

Provides a virtual interrupt priority filter. Only virtual interrupts with a higher priority than the value in this register are signaled to the PE.

Configuration

AArch64 System register ICV_PMR_EL1 bits [31:0] are architecturally mapped to AArch32 System register ICV_PMR[31:0].

This register is present only when (GICv3 is implemented or FEAT_GCIE_LEGACY is implemented), EL2 is implemented, and FEAT_AA64 is implemented. Otherwise, direct accesses to ICV_PMR_EL1 are UNDEFINED.

The effect of writes to ICV_PMR_EL1 are guaranteed to be visible to later instructions in the Execution stream. This ensures that no interrupts below the written PMR value will be taken after a write to this register is architecturally executed. For more information, see 'Observability of the effects of accesses to the GIC registers' in ARM® Generic Interrupt Controller Architecture Specification, GIC architecture version 3.0 and version 4.0 (ARM IHI 0069).

Attributes

ICV_PMR_EL1 is a 64-bit register.

Field descriptions

6362616059585756555453525150494847464544434241403938373635343332
313029282726252423222120191817161514131211109876543210
RES0
RES0Priority

Bits [63:8]:

Reserved, RES0.

Priority, bits [7:0]:

The priority mask level for the virtual CPU interface. If the priority of a virtual interrupt is higher than the value indicated by this field, the interface signals the virtual interrupt to the PE.

The possible priority field values are as follows:

Implemented priority bitsPossible priority field valuesNumber of priority levels
[7:0]0x00-0xFF (0-255), all values256
[7:1]0x00-0xFE (0-254), even values only128
[7:2]0x00-0xFC (0-252), in steps of 464
[7:3]0x00-0xF8 (0-248), in steps of 832
[7:4]0x00-0xF0 (0-240), in steps of 1616

Unimplemented priority bits are RAZ/WI.

The reset behavior of this field is:

Access Instructions

Accesses to this register use the following encodings in the System register encoding space:

MRS <Xt>, ICC_PMR_EL1

(op0 = 0b11, op1 = 0b000, CRn = 0b0100, CRm = 0b0110, op2 = 0b000)

if !((IsFeatureImplemented(FEAT_GICv3) || IsFeatureImplemented(FEAT_GCIE_LEGACY)) && IsFeatureImplemented(FEAT_AA64)) then Undefined(); elsif HaveEL(EL3) && !(EffectivelyAtEL0InHost() || EffectivelyAtEL0NotInHost() || PSTATE.EL == EL3) && EL3SDDUndefPriority() && SCR_EL3().[IRQ,FIQ] == '11' then Undefined(); elsif PSTATE.EL == EL0 then Undefined(); elsif PSTATE.EL == EL1 then if IsFeatureImplemented(FEAT_GCIE_LEGACY) && (ICH_VCTLR_EL2().V3 == '0' || !EL2Enabled() || !(ICH_HCR_EL2().TC == '1' || HCR_EL2().FMO == '1' || HCR_EL2().IMO == '1')) then Undefined(); elsif ICC_SRE_EL1().SRE == '0' then AArch64_SystemAccessTrap(EL1, 0x18); elsif EL2Enabled() && ICH_HCR_EL2().TC == '1' then AArch64_SystemAccessTrap(EL2, 0x18); elsif EL2Enabled() && HCR_EL2().FMO == '1' then X{64}(t) = ICV_PMR_EL1(); elsif EL2Enabled() && HCR_EL2().IMO == '1' then X{64}(t) = ICV_PMR_EL1(); elsif HaveEL(EL3) && SCR_EL3().[IRQ,FIQ] == '11' then if EL3SDDUndef() then Undefined(); else AArch64_SystemAccessTrap(EL3, 0x18); end; else X{64}(t) = ICC_PMR_EL1(); end; elsif PSTATE.EL == EL2 then if IsFeatureImplemented(FEAT_GCIE_LEGACY) then Undefined(); elsif ICC_SRE_EL2().SRE == '0' then AArch64_SystemAccessTrap(EL2, 0x18); elsif HaveEL(EL3) && SCR_EL3().[IRQ,FIQ] == '11' then if EL3SDDUndef() then Undefined(); else AArch64_SystemAccessTrap(EL3, 0x18); end; else X{64}(t) = ICC_PMR_EL1(); end; elsif PSTATE.EL == EL3 then if IsFeatureImplemented(FEAT_GCIE_LEGACY) then Undefined(); elsif ICC_SRE_EL3().SRE == '0' then AArch64_SystemAccessTrap(EL3, 0x18); else X{64}(t) = ICC_PMR_EL1(); end; end;

MSR ICC_PMR_EL1, <Xt>

(op0 = 0b11, op1 = 0b000, CRn = 0b0100, CRm = 0b0110, op2 = 0b000)

if !((IsFeatureImplemented(FEAT_GICv3) || IsFeatureImplemented(FEAT_GCIE_LEGACY)) && IsFeatureImplemented(FEAT_AA64)) then Undefined(); elsif HaveEL(EL3) && !(EffectivelyAtEL0InHost() || EffectivelyAtEL0NotInHost() || PSTATE.EL == EL3) && EL3SDDUndefPriority() && SCR_EL3().[IRQ,FIQ] == '11' then Undefined(); elsif PSTATE.EL == EL0 then Undefined(); elsif PSTATE.EL == EL1 then if IsFeatureImplemented(FEAT_GCIE_LEGACY) && (ICH_VCTLR_EL2().V3 == '0' || !EL2Enabled() || !(ICH_HCR_EL2().TC == '1' || HCR_EL2().FMO == '1' || HCR_EL2().IMO == '1')) then Undefined(); elsif ICC_SRE_EL1().SRE == '0' then AArch64_SystemAccessTrap(EL1, 0x18); elsif EL2Enabled() && ICH_HCR_EL2().TC == '1' then AArch64_SystemAccessTrap(EL2, 0x18); elsif EL2Enabled() && HCR_EL2().FMO == '1' then ICV_PMR_EL1() = X{64}(t); elsif EL2Enabled() && HCR_EL2().IMO == '1' then ICV_PMR_EL1() = X{64}(t); elsif HaveEL(EL3) && SCR_EL3().[IRQ,FIQ] == '11' then if EL3SDDUndef() then Undefined(); else AArch64_SystemAccessTrap(EL3, 0x18); end; else ICC_PMR_EL1() = X{64}(t); end; elsif PSTATE.EL == EL2 then if IsFeatureImplemented(FEAT_GCIE_LEGACY) then Undefined(); elsif ICC_SRE_EL2().SRE == '0' then AArch64_SystemAccessTrap(EL2, 0x18); elsif HaveEL(EL3) && SCR_EL3().[IRQ,FIQ] == '11' then if EL3SDDUndef() then Undefined(); else AArch64_SystemAccessTrap(EL3, 0x18); end; else ICC_PMR_EL1() = X{64}(t); end; elsif PSTATE.EL == EL3 then if IsFeatureImplemented(FEAT_GCIE_LEGACY) then Undefined(); elsif ICC_SRE_EL3().SRE == '0' then AArch64_SystemAccessTrap(EL3, 0x18); else ICC_PMR_EL1() = X{64}(t); end; end;


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