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284 lines
7.4 KiB
284 lines
7.4 KiB
// SPDX-License-Identifier: GPL-2.0-only |
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/* |
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* Copyright (C) 2020 - Google Inc |
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* Author: Andrew Scull <[email protected]> |
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*/ |
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#include <hyp/adjust_pc.h> |
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#include <asm/pgtable-types.h> |
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#include <asm/kvm_asm.h> |
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#include <asm/kvm_emulate.h> |
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#include <asm/kvm_host.h> |
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#include <asm/kvm_hyp.h> |
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#include <asm/kvm_mmu.h> |
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#include <nvhe/mem_protect.h> |
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#include <nvhe/mm.h> |
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#include <nvhe/trap_handler.h> |
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DEFINE_PER_CPU(struct kvm_nvhe_init_params, kvm_init_params); |
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void __kvm_hyp_host_forward_smc(struct kvm_cpu_context *host_ctxt); |
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static void handle___kvm_vcpu_run(struct kvm_cpu_context *host_ctxt) |
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{ |
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DECLARE_REG(struct kvm_vcpu *, vcpu, host_ctxt, 1); |
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cpu_reg(host_ctxt, 1) = __kvm_vcpu_run(kern_hyp_va(vcpu)); |
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} |
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static void handle___kvm_adjust_pc(struct kvm_cpu_context *host_ctxt) |
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{ |
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DECLARE_REG(struct kvm_vcpu *, vcpu, host_ctxt, 1); |
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__kvm_adjust_pc(kern_hyp_va(vcpu)); |
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} |
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static void handle___kvm_flush_vm_context(struct kvm_cpu_context *host_ctxt) |
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{ |
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__kvm_flush_vm_context(); |
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} |
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static void handle___kvm_tlb_flush_vmid_ipa(struct kvm_cpu_context *host_ctxt) |
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{ |
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DECLARE_REG(struct kvm_s2_mmu *, mmu, host_ctxt, 1); |
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DECLARE_REG(phys_addr_t, ipa, host_ctxt, 2); |
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DECLARE_REG(int, level, host_ctxt, 3); |
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__kvm_tlb_flush_vmid_ipa(kern_hyp_va(mmu), ipa, level); |
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} |
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static void handle___kvm_tlb_flush_vmid(struct kvm_cpu_context *host_ctxt) |
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{ |
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DECLARE_REG(struct kvm_s2_mmu *, mmu, host_ctxt, 1); |
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__kvm_tlb_flush_vmid(kern_hyp_va(mmu)); |
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} |
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static void handle___kvm_flush_cpu_context(struct kvm_cpu_context *host_ctxt) |
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{ |
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DECLARE_REG(struct kvm_s2_mmu *, mmu, host_ctxt, 1); |
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__kvm_flush_cpu_context(kern_hyp_va(mmu)); |
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} |
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static void handle___kvm_timer_set_cntvoff(struct kvm_cpu_context *host_ctxt) |
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{ |
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__kvm_timer_set_cntvoff(cpu_reg(host_ctxt, 1)); |
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} |
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static void handle___kvm_enable_ssbs(struct kvm_cpu_context *host_ctxt) |
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{ |
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u64 tmp; |
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tmp = read_sysreg_el2(SYS_SCTLR); |
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tmp |= SCTLR_ELx_DSSBS; |
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write_sysreg_el2(tmp, SYS_SCTLR); |
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} |
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static void handle___vgic_v3_get_gic_config(struct kvm_cpu_context *host_ctxt) |
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{ |
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cpu_reg(host_ctxt, 1) = __vgic_v3_get_gic_config(); |
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} |
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static void handle___vgic_v3_read_vmcr(struct kvm_cpu_context *host_ctxt) |
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{ |
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cpu_reg(host_ctxt, 1) = __vgic_v3_read_vmcr(); |
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} |
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static void handle___vgic_v3_write_vmcr(struct kvm_cpu_context *host_ctxt) |
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{ |
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__vgic_v3_write_vmcr(cpu_reg(host_ctxt, 1)); |
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} |
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static void handle___vgic_v3_init_lrs(struct kvm_cpu_context *host_ctxt) |
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{ |
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__vgic_v3_init_lrs(); |
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} |
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static void handle___kvm_get_mdcr_el2(struct kvm_cpu_context *host_ctxt) |
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{ |
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cpu_reg(host_ctxt, 1) = __kvm_get_mdcr_el2(); |
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} |
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static void handle___vgic_v3_save_aprs(struct kvm_cpu_context *host_ctxt) |
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{ |
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DECLARE_REG(struct vgic_v3_cpu_if *, cpu_if, host_ctxt, 1); |
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__vgic_v3_save_aprs(kern_hyp_va(cpu_if)); |
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} |
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static void handle___vgic_v3_restore_aprs(struct kvm_cpu_context *host_ctxt) |
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{ |
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DECLARE_REG(struct vgic_v3_cpu_if *, cpu_if, host_ctxt, 1); |
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__vgic_v3_restore_aprs(kern_hyp_va(cpu_if)); |
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} |
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static void handle___pkvm_init(struct kvm_cpu_context *host_ctxt) |
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{ |
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DECLARE_REG(phys_addr_t, phys, host_ctxt, 1); |
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DECLARE_REG(unsigned long, size, host_ctxt, 2); |
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DECLARE_REG(unsigned long, nr_cpus, host_ctxt, 3); |
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DECLARE_REG(unsigned long *, per_cpu_base, host_ctxt, 4); |
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DECLARE_REG(u32, hyp_va_bits, host_ctxt, 5); |
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/* |
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* __pkvm_init() will return only if an error occurred, otherwise it |
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* will tail-call in __pkvm_init_finalise() which will have to deal |
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* with the host context directly. |
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*/ |
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cpu_reg(host_ctxt, 1) = __pkvm_init(phys, size, nr_cpus, per_cpu_base, |
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hyp_va_bits); |
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} |
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static void handle___pkvm_cpu_set_vector(struct kvm_cpu_context *host_ctxt) |
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{ |
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DECLARE_REG(enum arm64_hyp_spectre_vector, slot, host_ctxt, 1); |
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cpu_reg(host_ctxt, 1) = pkvm_cpu_set_vector(slot); |
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} |
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static void handle___pkvm_host_share_hyp(struct kvm_cpu_context *host_ctxt) |
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{ |
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DECLARE_REG(u64, pfn, host_ctxt, 1); |
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cpu_reg(host_ctxt, 1) = __pkvm_host_share_hyp(pfn); |
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} |
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static void handle___pkvm_host_unshare_hyp(struct kvm_cpu_context *host_ctxt) |
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{ |
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DECLARE_REG(u64, pfn, host_ctxt, 1); |
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cpu_reg(host_ctxt, 1) = __pkvm_host_unshare_hyp(pfn); |
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} |
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static void handle___pkvm_create_private_mapping(struct kvm_cpu_context *host_ctxt) |
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{ |
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DECLARE_REG(phys_addr_t, phys, host_ctxt, 1); |
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DECLARE_REG(size_t, size, host_ctxt, 2); |
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DECLARE_REG(enum kvm_pgtable_prot, prot, host_ctxt, 3); |
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cpu_reg(host_ctxt, 1) = __pkvm_create_private_mapping(phys, size, prot); |
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} |
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static void handle___pkvm_prot_finalize(struct kvm_cpu_context *host_ctxt) |
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{ |
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cpu_reg(host_ctxt, 1) = __pkvm_prot_finalize(); |
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} |
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static void handle___pkvm_vcpu_init_traps(struct kvm_cpu_context *host_ctxt) |
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{ |
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DECLARE_REG(struct kvm_vcpu *, vcpu, host_ctxt, 1); |
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__pkvm_vcpu_init_traps(kern_hyp_va(vcpu)); |
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} |
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typedef void (*hcall_t)(struct kvm_cpu_context *); |
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#define HANDLE_FUNC(x) [__KVM_HOST_SMCCC_FUNC_##x] = (hcall_t)handle_##x |
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static const hcall_t host_hcall[] = { |
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/* ___kvm_hyp_init */ |
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HANDLE_FUNC(__kvm_get_mdcr_el2), |
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HANDLE_FUNC(__pkvm_init), |
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HANDLE_FUNC(__pkvm_create_private_mapping), |
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HANDLE_FUNC(__pkvm_cpu_set_vector), |
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HANDLE_FUNC(__kvm_enable_ssbs), |
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HANDLE_FUNC(__vgic_v3_init_lrs), |
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HANDLE_FUNC(__vgic_v3_get_gic_config), |
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HANDLE_FUNC(__pkvm_prot_finalize), |
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HANDLE_FUNC(__pkvm_host_share_hyp), |
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HANDLE_FUNC(__pkvm_host_unshare_hyp), |
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HANDLE_FUNC(__kvm_adjust_pc), |
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HANDLE_FUNC(__kvm_vcpu_run), |
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HANDLE_FUNC(__kvm_flush_vm_context), |
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HANDLE_FUNC(__kvm_tlb_flush_vmid_ipa), |
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HANDLE_FUNC(__kvm_tlb_flush_vmid), |
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HANDLE_FUNC(__kvm_flush_cpu_context), |
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HANDLE_FUNC(__kvm_timer_set_cntvoff), |
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HANDLE_FUNC(__vgic_v3_read_vmcr), |
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HANDLE_FUNC(__vgic_v3_write_vmcr), |
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HANDLE_FUNC(__vgic_v3_save_aprs), |
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HANDLE_FUNC(__vgic_v3_restore_aprs), |
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HANDLE_FUNC(__pkvm_vcpu_init_traps), |
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}; |
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static void handle_host_hcall(struct kvm_cpu_context *host_ctxt) |
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{ |
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DECLARE_REG(unsigned long, id, host_ctxt, 0); |
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unsigned long hcall_min = 0; |
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hcall_t hfn; |
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/* |
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* If pKVM has been initialised then reject any calls to the |
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* early "privileged" hypercalls. Note that we cannot reject |
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* calls to __pkvm_prot_finalize for two reasons: (1) The static |
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* key used to determine initialisation must be toggled prior to |
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* finalisation and (2) finalisation is performed on a per-CPU |
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* basis. This is all fine, however, since __pkvm_prot_finalize |
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* returns -EPERM after the first call for a given CPU. |
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*/ |
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if (static_branch_unlikely(&kvm_protected_mode_initialized)) |
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hcall_min = __KVM_HOST_SMCCC_FUNC___pkvm_prot_finalize; |
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id -= KVM_HOST_SMCCC_ID(0); |
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if (unlikely(id < hcall_min || id >= ARRAY_SIZE(host_hcall))) |
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goto inval; |
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hfn = host_hcall[id]; |
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if (unlikely(!hfn)) |
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goto inval; |
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cpu_reg(host_ctxt, 0) = SMCCC_RET_SUCCESS; |
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hfn(host_ctxt); |
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return; |
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inval: |
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cpu_reg(host_ctxt, 0) = SMCCC_RET_NOT_SUPPORTED; |
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} |
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static void default_host_smc_handler(struct kvm_cpu_context *host_ctxt) |
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{ |
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__kvm_hyp_host_forward_smc(host_ctxt); |
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} |
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static void handle_host_smc(struct kvm_cpu_context *host_ctxt) |
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{ |
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bool handled; |
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handled = kvm_host_psci_handler(host_ctxt); |
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if (!handled) |
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default_host_smc_handler(host_ctxt); |
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/* SMC was trapped, move ELR past the current PC. */ |
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kvm_skip_host_instr(); |
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} |
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void handle_trap(struct kvm_cpu_context *host_ctxt) |
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{ |
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u64 esr = read_sysreg_el2(SYS_ESR); |
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switch (ESR_ELx_EC(esr)) { |
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case ESR_ELx_EC_HVC64: |
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handle_host_hcall(host_ctxt); |
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break; |
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case ESR_ELx_EC_SMC64: |
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handle_host_smc(host_ctxt); |
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break; |
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case ESR_ELx_EC_SVE: |
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sysreg_clear_set(cptr_el2, CPTR_EL2_TZ, 0); |
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isb(); |
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sve_cond_update_zcr_vq(ZCR_ELx_LEN_MASK, SYS_ZCR_EL2); |
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break; |
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case ESR_ELx_EC_IABT_LOW: |
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case ESR_ELx_EC_DABT_LOW: |
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handle_host_mem_abort(host_ctxt); |
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break; |
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default: |
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BUG(); |
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} |
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}
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