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ICV_IGRPEN1_EL1, Interrupt Controller Virtual Interrupt Group 1 Enable register

The ICV_IGRPEN1_EL1 characteristics are:

Purpose

Controls whether virtual Group 1 interrupts are enabled for the current Security state.

Configuration

AArch64 System register ICV_IGRPEN1_EL1 bits [31:0] are architecturally mapped to AArch32 System register ICV_IGRPEN1[31:0] .

RW fields in this register reset to architecturally UNKNOWN values.

Attributes

ICV_IGRPEN1_EL1 is a 64-bit register.

Field descriptions

The ICV_IGRPEN1_EL1 bit assignments are:

6362616059585756555453525150494847464544434241403938373635343332
RES0
RES0Enable
313029282726252423222120191817161514131211109876543210

Bits [63:1]

Reserved, RES0.

Enable, bit [0]

Enables virtual Group 1 interrupts.

EnableMeaning
0b0

Virtual Group 1 interrupts are disabled.

0b1

Virtual Group 1 interrupts are enabled.

This field resets to an architecturally UNKNOWN value.

Accessing the ICV_IGRPEN1_EL1

Accesses to this register use the following encodings:

MRS <Xt>, ICC_IGRPEN1_EL1

op0op1CRnCRmop2
0b110b0000b11000b11000b111
if PSTATE.EL == EL0 then
    UNDEFINED;
elsif PSTATE.EL == EL1 then
    if ICC_SRE_EL1.SRE == '0' then
        AArch64.SystemAccessTrap(EL1, 0x18);
    elsif EL2Enabled() && !ELUsingAArch32(EL2) && ICH_HCR_EL2.TALL1 == '1' then
        AArch64.SystemAccessTrap(EL2, 0x18);
    elsif EL2Enabled() && !ELUsingAArch32(EL2) && HCR_EL2.IMO == '1' then
        return ICV_IGRPEN1_EL1;
    elsif HaveEL(EL3) && !ELUsingAArch32(EL3) && SCR_EL3.IRQ == '1' then
        AArch64.SystemAccessTrap(EL3, 0x18);
    elsif HaveEL(EL3) then
        if SCR_EL3.NS == '0' then
            return ICC_IGRPEN1_EL1_S;
        else
            return ICC_IGRPEN1_EL1_NS;
    else
        return ICC_IGRPEN1_EL1;
elsif PSTATE.EL == EL2 then
    if ICC_SRE_EL2.SRE == '0' then
        AArch64.SystemAccessTrap(EL2, 0x18);
    elsif HaveEL(EL3) && !ELUsingAArch32(EL3) && SCR_EL3.IRQ == '1' then
        AArch64.SystemAccessTrap(EL3, 0x18);
    elsif HaveEL(EL3) then
        if SCR_EL3.NS == '0' then
            return ICC_IGRPEN1_EL1_S;
        else
            return ICC_IGRPEN1_EL1_NS;
    else
        return ICC_IGRPEN1_EL1;
elsif PSTATE.EL == EL3 then
    if ICC_SRE_EL3.SRE == '0' then
        AArch64.SystemAccessTrap(EL3, 0x18);
    else
        if SCR_EL3.NS == '0' then
            return ICC_IGRPEN1_EL1_S;
        else
            return ICC_IGRPEN1_EL1_NS;
              

MSR ICC_IGRPEN1_EL1, <Xt>

op0op1CRnCRmop2
0b110b0000b11000b11000b111
if PSTATE.EL == EL0 then
    UNDEFINED;
elsif PSTATE.EL == EL1 then
    if ICC_SRE_EL1.SRE == '0' then
        AArch64.SystemAccessTrap(EL1, 0x18);
    elsif EL2Enabled() && !ELUsingAArch32(EL2) && ICH_HCR_EL2.TALL1 == '1' then
        AArch64.SystemAccessTrap(EL2, 0x18);
    elsif EL2Enabled() && !ELUsingAArch32(EL2) && HCR_EL2.IMO == '1' then
        ICV_IGRPEN1_EL1 = X[t];
    elsif HaveEL(EL3) && !ELUsingAArch32(EL3) && SCR_EL3.IRQ == '1' then
        AArch64.SystemAccessTrap(EL3, 0x18);
    elsif HaveEL(EL3) then
        if SCR_EL3.NS == '0' then
            ICC_IGRPEN1_EL1_S = X[t];
        else
            ICC_IGRPEN1_EL1_NS = X[t];
    else
        ICC_IGRPEN1_EL1 = X[t];
elsif PSTATE.EL == EL2 then
    if ICC_SRE_EL2.SRE == '0' then
        AArch64.SystemAccessTrap(EL2, 0x18);
    elsif HaveEL(EL3) && !ELUsingAArch32(EL3) && SCR_EL3.IRQ == '1' then
        AArch64.SystemAccessTrap(EL3, 0x18);
    elsif HaveEL(EL3) then
        if SCR_EL3.NS == '0' then
            ICC_IGRPEN1_EL1_S = X[t];
        else
            ICC_IGRPEN1_EL1_NS = X[t];
    else
        ICC_IGRPEN1_EL1 = X[t];
elsif PSTATE.EL == EL3 then
    if ICC_SRE_EL3.SRE == '0' then
        AArch64.SystemAccessTrap(EL3, 0x18);
    else
        if SCR_EL3.NS == '0' then
            ICC_IGRPEN1_EL1_S = X[t];
        else
            ICC_IGRPEN1_EL1_NS = X[t];
              


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