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KVM: PPC: Book3S HV: Implement H_SVM_INIT_ABORT hcall
Implement the H_SVM_INIT_ABORT hcall which the Ultravisor can use to abort an SVM after it has issued the H_SVM_INIT_START and before the H_SVM_INIT_DONE hcalls. This hcall could be used when Ultravisor encounters security violations or other errors when starting an SVM. Note that this hcall is different from UV_SVM_TERMINATE ucall which is used by HV to terminate/cleanup an VM that has becore secure. The H_SVM_INIT_ABORT basically undoes operations that were done since the H_SVM_INIT_START hcall - i.e page-out all the VM pages back to normal memory, and terminate the SVM. (If we do not bring the pages back to normal memory, the text/data of the VM would be stuck in secure memory and since the SVM did not go secure, its MSR_S bit will be clear and the VM wont be able to access its pages even to do a clean exit). Based on patches and discussion with Paul Mackerras, Ram Pai and Bharata Rao. Signed-off-by: Ram Pai <linuxram@linux.ibm.com> Signed-off-by: Sukadev Bhattiprolu <sukadev@linux.ibm.com> Signed-off-by: Bharata B Rao <bharata@linux.ibm.com> Signed-off-by: Paul Mackerras <paulus@ozlabs.org>
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@ -948,6 +948,66 @@ Use cases
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up its internal state for this virtual machine.
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H_SVM_INIT_ABORT
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----------------
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Abort the process of securing an SVM.
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Syntax
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~~~~~~
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.. code-block:: c
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uint64_t hypercall(const uint64_t H_SVM_INIT_ABORT)
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Return values
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~~~~~~~~~~~~~
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One of the following values:
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* H_PARAMETER on successfully cleaning up the state,
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Hypervisor will return this value to the
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**guest**, to indicate that the underlying
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UV_ESM ultracall failed.
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* H_STATE if called after a VM has gone secure (i.e
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H_SVM_INIT_DONE hypercall was successful).
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* H_UNSUPPORTED if called from a wrong context (e.g. from a
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normal VM).
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Description
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~~~~~~~~~~~
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Abort the process of securing a virtual machine. This call must
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be made after a prior call to ``H_SVM_INIT_START`` hypercall and
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before a call to ``H_SVM_INIT_DONE``.
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On entry into this hypercall the non-volatile GPRs and FPRs are
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expected to contain the values they had at the time the VM issued
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the UV_ESM ultracall. Further ``SRR0`` is expected to contain the
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address of the instruction after the ``UV_ESM`` ultracall and ``SRR1``
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the MSR value with which to return to the VM.
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This hypercall will cleanup any partial state that was established for
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the VM since the prior ``H_SVM_INIT_START`` hypercall, including paging
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out pages that were paged-into secure memory, and issue the
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``UV_SVM_TERMINATE`` ultracall to terminate the VM.
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After the partial state is cleaned up, control returns to the VM
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(**not Ultravisor**), at the address specified in ``SRR0`` with the
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MSR values set to the value in ``SRR1``.
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Use cases
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~~~~~~~~~
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If after a successful call to ``H_SVM_INIT_START``, the Ultravisor
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encounters an error while securing a virtual machine, either due
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to lack of resources or because the VM's security information could
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not be validated, Ultravisor informs the Hypervisor about it.
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Hypervisor should use this call to clean up any internal state for
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this virtual machine and return to the VM.
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H_SVM_PAGE_IN
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-------------
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@ -350,6 +350,7 @@
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#define H_SVM_PAGE_OUT 0xEF04
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#define H_SVM_INIT_START 0xEF08
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#define H_SVM_INIT_DONE 0xEF0C
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#define H_SVM_INIT_ABORT 0xEF14
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/* Values for 2nd argument to H_SET_MODE */
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#define H_SET_MODE_RESOURCE_SET_CIABR 1
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@ -19,6 +19,7 @@ unsigned long kvmppc_h_svm_page_out(struct kvm *kvm,
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unsigned long kvmppc_h_svm_init_start(struct kvm *kvm);
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unsigned long kvmppc_h_svm_init_done(struct kvm *kvm);
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int kvmppc_send_page_to_uv(struct kvm *kvm, unsigned long gfn);
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unsigned long kvmppc_h_svm_init_abort(struct kvm *kvm);
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void kvmppc_uvmem_drop_pages(const struct kvm_memory_slot *free,
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struct kvm *kvm, bool skip_page_out);
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#else
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@ -62,6 +63,11 @@ static inline unsigned long kvmppc_h_svm_init_done(struct kvm *kvm)
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return H_UNSUPPORTED;
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}
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static inline unsigned long kvmppc_h_svm_init_abort(struct kvm *kvm)
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{
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return H_UNSUPPORTED;
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}
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static inline int kvmppc_send_page_to_uv(struct kvm *kvm, unsigned long gfn)
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{
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return -EFAULT;
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@ -278,6 +278,7 @@ struct kvm_resize_hpt;
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/* Flag values for kvm_arch.secure_guest */
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#define KVMPPC_SECURE_INIT_START 0x1 /* H_SVM_INIT_START has been called */
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#define KVMPPC_SECURE_INIT_DONE 0x2 /* H_SVM_INIT_DONE completed */
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#define KVMPPC_SECURE_INIT_ABORT 0x4 /* H_SVM_INIT_ABORT issued */
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struct kvm_arch {
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unsigned int lpid;
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@ -1091,6 +1091,9 @@ int kvmppc_pseries_do_hcall(struct kvm_vcpu *vcpu)
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case H_SVM_INIT_DONE:
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ret = kvmppc_h_svm_init_done(vcpu->kvm);
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break;
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case H_SVM_INIT_ABORT:
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ret = kvmppc_h_svm_init_abort(vcpu->kvm);
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break;
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default:
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return RESUME_HOST;
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@ -286,6 +286,34 @@ void kvmppc_uvmem_drop_pages(const struct kvm_memory_slot *free,
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}
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}
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unsigned long kvmppc_h_svm_init_abort(struct kvm *kvm)
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{
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int srcu_idx;
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struct kvm_memory_slot *memslot;
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/*
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* Expect to be called only after INIT_START and before INIT_DONE.
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* If INIT_DONE was completed, use normal VM termination sequence.
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*/
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if (!(kvm->arch.secure_guest & KVMPPC_SECURE_INIT_START))
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return H_UNSUPPORTED;
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if (kvm->arch.secure_guest & KVMPPC_SECURE_INIT_DONE)
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return H_STATE;
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srcu_idx = srcu_read_lock(&kvm->srcu);
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kvm_for_each_memslot(memslot, kvm_memslots(kvm))
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kvmppc_uvmem_drop_pages(memslot, kvm, false);
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srcu_read_unlock(&kvm->srcu, srcu_idx);
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kvm->arch.secure_guest = 0;
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uv_svm_terminate(kvm->arch.lpid);
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return H_PARAMETER;
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}
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/*
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* Get a free device PFN from the pool
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*
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