arm64: KVM: Trap VM ops when ARM64_WORKAROUND_CAVIUM_TX2_219_TVM is set
In order to workaround the TX2-219 erratum, it is necessary to trap TTBRx_EL1 accesses to EL2. This is done by setting HCR_EL2.TVM on guest entry, which has the side effect of trapping all the other VM-related sysregs as well. To minimize the overhead, a fast path is used so that we don't have to go all the way back to the main sysreg handling code, unless the rest of the hypervisor expects to see these accesses. Cc: <stable@vger.kernel.org> Signed-off-by: Marc Zyngier <marc.zyngier@arm.com> Signed-off-by: Will Deacon <will@kernel.org>
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@ -52,7 +52,8 @@
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#define ARM64_HAS_IRQ_PRIO_MASKING 42
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#define ARM64_HAS_DCPODP 43
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#define ARM64_WORKAROUND_1463225 44
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#define ARM64_WORKAROUND_CAVIUM_TX2_219_TVM 45
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#define ARM64_NCAPS 45
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#define ARM64_NCAPS 46
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#endif /* __ASM_CPUCAPS_H */
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@ -124,6 +124,9 @@ static void __hyp_text __activate_traps(struct kvm_vcpu *vcpu)
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{
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u64 hcr = vcpu->arch.hcr_el2;
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if (cpus_have_const_cap(ARM64_WORKAROUND_CAVIUM_TX2_219_TVM))
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hcr |= HCR_TVM;
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write_sysreg(hcr, hcr_el2);
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if (cpus_have_const_cap(ARM64_HAS_RAS_EXTN) && (hcr & HCR_VSE))
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@ -174,8 +177,10 @@ static void __hyp_text __deactivate_traps(struct kvm_vcpu *vcpu)
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* the crucial bit is "On taking a vSError interrupt,
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* HCR_EL2.VSE is cleared to 0."
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*/
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if (vcpu->arch.hcr_el2 & HCR_VSE)
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vcpu->arch.hcr_el2 = read_sysreg(hcr_el2);
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if (vcpu->arch.hcr_el2 & HCR_VSE) {
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vcpu->arch.hcr_el2 &= ~HCR_VSE;
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vcpu->arch.hcr_el2 |= read_sysreg(hcr_el2) & HCR_VSE;
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}
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if (has_vhe())
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deactivate_traps_vhe();
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@ -380,6 +385,61 @@ static bool __hyp_text __hyp_handle_fpsimd(struct kvm_vcpu *vcpu)
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return true;
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}
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static bool __hyp_text handle_tx2_tvm(struct kvm_vcpu *vcpu)
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{
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u32 sysreg = esr_sys64_to_sysreg(kvm_vcpu_get_hsr(vcpu));
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int rt = kvm_vcpu_sys_get_rt(vcpu);
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u64 val = vcpu_get_reg(vcpu, rt);
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/*
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* The normal sysreg handling code expects to see the traps,
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* let's not do anything here.
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*/
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if (vcpu->arch.hcr_el2 & HCR_TVM)
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return false;
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switch (sysreg) {
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case SYS_SCTLR_EL1:
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write_sysreg_el1(val, SYS_SCTLR);
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break;
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case SYS_TTBR0_EL1:
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write_sysreg_el1(val, SYS_TTBR0);
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break;
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case SYS_TTBR1_EL1:
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write_sysreg_el1(val, SYS_TTBR1);
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break;
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case SYS_TCR_EL1:
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write_sysreg_el1(val, SYS_TCR);
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break;
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case SYS_ESR_EL1:
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write_sysreg_el1(val, SYS_ESR);
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break;
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case SYS_FAR_EL1:
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write_sysreg_el1(val, SYS_FAR);
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break;
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case SYS_AFSR0_EL1:
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write_sysreg_el1(val, SYS_AFSR0);
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break;
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case SYS_AFSR1_EL1:
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write_sysreg_el1(val, SYS_AFSR1);
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break;
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case SYS_MAIR_EL1:
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write_sysreg_el1(val, SYS_MAIR);
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break;
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case SYS_AMAIR_EL1:
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write_sysreg_el1(val, SYS_AMAIR);
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break;
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case SYS_CONTEXTIDR_EL1:
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write_sysreg_el1(val, SYS_CONTEXTIDR);
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break;
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default:
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return false;
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}
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__kvm_skip_instr(vcpu);
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return true;
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}
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/*
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* Return true when we were able to fixup the guest exit and should return to
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* the guest, false when we should restore the host state and return to the
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@ -399,6 +459,11 @@ static bool __hyp_text fixup_guest_exit(struct kvm_vcpu *vcpu, u64 *exit_code)
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if (*exit_code != ARM_EXCEPTION_TRAP)
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goto exit;
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if (cpus_have_const_cap(ARM64_WORKAROUND_CAVIUM_TX2_219_TVM) &&
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kvm_vcpu_trap_get_class(vcpu) == ESR_ELx_EC_SYS64 &&
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handle_tx2_tvm(vcpu))
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return true;
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/*
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* We trap the first access to the FP/SIMD to save the host context
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* and restore the guest context lazily.
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