235 lines
4.7 KiB
C
235 lines
4.7 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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/*
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* Copyright (C) 2020, Google LLC.
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*
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* Tests for KVM paravirtual feature disablement
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*/
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#include <asm/kvm_para.h>
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#include <linux/kvm_para.h>
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#include <stdint.h>
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#include "test_util.h"
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#include "kvm_util.h"
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#include "processor.h"
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extern unsigned char rdmsr_start;
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extern unsigned char rdmsr_end;
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static u64 do_rdmsr(u32 idx)
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{
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u32 lo, hi;
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asm volatile("rdmsr_start: rdmsr;"
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"rdmsr_end:"
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: "=a"(lo), "=c"(hi)
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: "c"(idx));
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return (((u64) hi) << 32) | lo;
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}
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extern unsigned char wrmsr_start;
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extern unsigned char wrmsr_end;
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static void do_wrmsr(u32 idx, u64 val)
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{
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u32 lo, hi;
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lo = val;
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hi = val >> 32;
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asm volatile("wrmsr_start: wrmsr;"
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"wrmsr_end:"
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: : "a"(lo), "c"(idx), "d"(hi));
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}
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static int nr_gp;
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static void guest_gp_handler(struct ex_regs *regs)
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{
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unsigned char *rip = (unsigned char *)regs->rip;
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bool r, w;
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r = rip == &rdmsr_start;
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w = rip == &wrmsr_start;
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GUEST_ASSERT(r || w);
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nr_gp++;
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if (r)
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regs->rip = (uint64_t)&rdmsr_end;
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else
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regs->rip = (uint64_t)&wrmsr_end;
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}
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struct msr_data {
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uint32_t idx;
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const char *name;
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};
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#define TEST_MSR(msr) { .idx = msr, .name = #msr }
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#define UCALL_PR_MSR 0xdeadbeef
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#define PR_MSR(msr) ucall(UCALL_PR_MSR, 1, msr)
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/*
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* KVM paravirtual msrs to test. Expect a #GP if any of these msrs are read or
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* written, as the KVM_CPUID_FEATURES leaf is cleared.
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*/
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static struct msr_data msrs_to_test[] = {
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TEST_MSR(MSR_KVM_SYSTEM_TIME),
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TEST_MSR(MSR_KVM_SYSTEM_TIME_NEW),
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TEST_MSR(MSR_KVM_WALL_CLOCK),
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TEST_MSR(MSR_KVM_WALL_CLOCK_NEW),
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TEST_MSR(MSR_KVM_ASYNC_PF_EN),
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TEST_MSR(MSR_KVM_STEAL_TIME),
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TEST_MSR(MSR_KVM_PV_EOI_EN),
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TEST_MSR(MSR_KVM_POLL_CONTROL),
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TEST_MSR(MSR_KVM_ASYNC_PF_INT),
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TEST_MSR(MSR_KVM_ASYNC_PF_ACK),
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};
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static void test_msr(struct msr_data *msr)
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{
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PR_MSR(msr);
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do_rdmsr(msr->idx);
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GUEST_ASSERT(READ_ONCE(nr_gp) == 1);
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nr_gp = 0;
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do_wrmsr(msr->idx, 0);
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GUEST_ASSERT(READ_ONCE(nr_gp) == 1);
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nr_gp = 0;
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}
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struct hcall_data {
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uint64_t nr;
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const char *name;
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};
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#define TEST_HCALL(hc) { .nr = hc, .name = #hc }
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#define UCALL_PR_HCALL 0xdeadc0de
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#define PR_HCALL(hc) ucall(UCALL_PR_HCALL, 1, hc)
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/*
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* KVM hypercalls to test. Expect -KVM_ENOSYS when called, as the corresponding
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* features have been cleared in KVM_CPUID_FEATURES.
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*/
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static struct hcall_data hcalls_to_test[] = {
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TEST_HCALL(KVM_HC_KICK_CPU),
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TEST_HCALL(KVM_HC_SEND_IPI),
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TEST_HCALL(KVM_HC_SCHED_YIELD),
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};
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static void test_hcall(struct hcall_data *hc)
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{
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uint64_t r;
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PR_HCALL(hc);
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r = kvm_hypercall(hc->nr, 0, 0, 0, 0);
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GUEST_ASSERT(r == -KVM_ENOSYS);
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}
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static void guest_main(void)
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{
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int i;
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for (i = 0; i < ARRAY_SIZE(msrs_to_test); i++) {
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test_msr(&msrs_to_test[i]);
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}
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for (i = 0; i < ARRAY_SIZE(hcalls_to_test); i++) {
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test_hcall(&hcalls_to_test[i]);
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}
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GUEST_DONE();
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}
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static void clear_kvm_cpuid_features(struct kvm_cpuid2 *cpuid)
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{
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struct kvm_cpuid_entry2 ent = {0};
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ent.function = KVM_CPUID_FEATURES;
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TEST_ASSERT(set_cpuid(cpuid, &ent),
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"failed to clear KVM_CPUID_FEATURES leaf");
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}
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static void pr_msr(struct ucall *uc)
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{
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struct msr_data *msr = (struct msr_data *)uc->args[0];
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pr_info("testing msr: %s (%#x)\n", msr->name, msr->idx);
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}
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static void pr_hcall(struct ucall *uc)
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{
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struct hcall_data *hc = (struct hcall_data *)uc->args[0];
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pr_info("testing hcall: %s (%lu)\n", hc->name, hc->nr);
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}
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static void handle_abort(struct ucall *uc)
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{
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TEST_FAIL("%s at %s:%ld", (const char *)uc->args[0],
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__FILE__, uc->args[1]);
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}
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#define VCPU_ID 0
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static void enter_guest(struct kvm_vm *vm)
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{
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struct kvm_run *run;
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struct ucall uc;
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int r;
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run = vcpu_state(vm, VCPU_ID);
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while (true) {
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r = _vcpu_run(vm, VCPU_ID);
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TEST_ASSERT(!r, "vcpu_run failed: %d\n", r);
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TEST_ASSERT(run->exit_reason == KVM_EXIT_IO,
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"unexpected exit reason: %u (%s)",
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run->exit_reason, exit_reason_str(run->exit_reason));
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switch (get_ucall(vm, VCPU_ID, &uc)) {
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case UCALL_PR_MSR:
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pr_msr(&uc);
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break;
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case UCALL_PR_HCALL:
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pr_hcall(&uc);
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break;
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case UCALL_ABORT:
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handle_abort(&uc);
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return;
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case UCALL_DONE:
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return;
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}
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}
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}
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int main(void)
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{
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struct kvm_enable_cap cap = {0};
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struct kvm_cpuid2 *best;
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struct kvm_vm *vm;
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if (!kvm_check_cap(KVM_CAP_ENFORCE_PV_FEATURE_CPUID)) {
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print_skip("KVM_CAP_ENFORCE_PV_FEATURE_CPUID not supported");
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exit(KSFT_SKIP);
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}
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vm = vm_create_default(VCPU_ID, 0, guest_main);
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cap.cap = KVM_CAP_ENFORCE_PV_FEATURE_CPUID;
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cap.args[0] = 1;
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vcpu_enable_cap(vm, VCPU_ID, &cap);
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best = kvm_get_supported_cpuid();
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clear_kvm_cpuid_features(best);
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vcpu_set_cpuid(vm, VCPU_ID, best);
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vm_init_descriptor_tables(vm);
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vcpu_init_descriptor_tables(vm, VCPU_ID);
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vm_install_exception_handler(vm, GP_VECTOR, guest_gp_handler);
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enter_guest(vm);
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kvm_vm_free(vm);
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}
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