| 1 | // SPDX-License-Identifier: GPL-2.0-or-later | 
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| 2 | /*  KVM paravirtual clock driver. A clocksource implementation | 
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| 3 | Copyright (C) 2008 Glauber de Oliveira Costa, Red Hat Inc. | 
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| 4 | */ | 
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| 5 |  | 
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| 6 | #include <linux/clocksource.h> | 
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| 7 | #include <linux/kvm_para.h> | 
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| 8 | #include <asm/pvclock.h> | 
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| 9 | #include <asm/msr.h> | 
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| 10 | #include <asm/apic.h> | 
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| 11 | #include <linux/percpu.h> | 
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| 12 | #include <linux/hardirq.h> | 
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| 13 | #include <linux/cpuhotplug.h> | 
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| 14 | #include <linux/sched.h> | 
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| 15 | #include <linux/sched/clock.h> | 
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| 16 | #include <linux/mm.h> | 
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| 17 | #include <linux/slab.h> | 
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| 18 | #include <linux/set_memory.h> | 
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| 19 | #include <linux/cc_platform.h> | 
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| 20 |  | 
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| 21 | #include <asm/hypervisor.h> | 
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| 22 | #include <asm/x86_init.h> | 
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| 23 | #include <asm/kvmclock.h> | 
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| 24 |  | 
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| 25 | static int kvmclock __initdata = 1; | 
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| 26 | static int kvmclock_vsyscall __initdata = 1; | 
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| 27 | static int msr_kvm_system_time __ro_after_init; | 
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| 28 | static int msr_kvm_wall_clock __ro_after_init; | 
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| 29 | static u64 kvm_sched_clock_offset __ro_after_init; | 
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| 30 |  | 
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| 31 | static int __init parse_no_kvmclock(char *arg) | 
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| 32 | { | 
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| 33 | kvmclock = 0; | 
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| 34 | return 0; | 
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| 35 | } | 
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| 36 | early_param( "no-kvmclock", parse_no_kvmclock); | 
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| 37 |  | 
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| 38 | static int __init parse_no_kvmclock_vsyscall(char *arg) | 
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| 39 | { | 
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| 40 | kvmclock_vsyscall = 0; | 
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| 41 | return 0; | 
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| 42 | } | 
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| 43 | early_param( "no-kvmclock-vsyscall", parse_no_kvmclock_vsyscall); | 
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| 44 |  | 
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| 45 | /* Aligned to page sizes to match what's mapped via vsyscalls to userspace */ | 
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| 46 | #define HVC_BOOT_ARRAY_SIZE \ | 
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| 47 | (PAGE_SIZE / sizeof(struct pvclock_vsyscall_time_info)) | 
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| 48 |  | 
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| 49 | static struct pvclock_vsyscall_time_info | 
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| 50 | hv_clock_boot[HVC_BOOT_ARRAY_SIZE] __bss_decrypted __aligned(PAGE_SIZE); | 
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| 51 | static struct pvclock_wall_clock wall_clock __bss_decrypted; | 
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| 52 | static struct pvclock_vsyscall_time_info *hvclock_mem; | 
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| 53 | DEFINE_PER_CPU(struct pvclock_vsyscall_time_info *, hv_clock_per_cpu); | 
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| 54 | EXPORT_PER_CPU_SYMBOL_GPL(hv_clock_per_cpu); | 
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| 55 |  | 
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| 56 | /* | 
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| 57 | * The wallclock is the time of day when we booted. Since then, some time may | 
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| 58 | * have elapsed since the hypervisor wrote the data. So we try to account for | 
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| 59 | * that with system time | 
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| 60 | */ | 
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| 61 | static void kvm_get_wallclock(struct timespec64 *now) | 
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| 62 | { | 
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| 63 | wrmsrq(msr: msr_kvm_wall_clock, val: slow_virt_to_phys(address: &wall_clock)); | 
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| 64 | preempt_disable(); | 
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| 65 | pvclock_read_wallclock(wall: &wall_clock, vcpu: this_cpu_pvti(), ts: now); | 
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| 66 | preempt_enable(); | 
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| 67 | } | 
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| 68 |  | 
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| 69 | static int kvm_set_wallclock(const struct timespec64 *now) | 
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| 70 | { | 
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| 71 | return -ENODEV; | 
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| 72 | } | 
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| 73 |  | 
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| 74 | static u64 kvm_clock_read(void) | 
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| 75 | { | 
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| 76 | u64 ret; | 
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| 77 |  | 
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| 78 | preempt_disable_notrace(); | 
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| 79 | ret = pvclock_clocksource_read_nowd(src: this_cpu_pvti()); | 
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| 80 | preempt_enable_notrace(); | 
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| 81 | return ret; | 
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| 82 | } | 
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| 83 |  | 
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| 84 | static u64 kvm_clock_get_cycles(struct clocksource *cs) | 
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| 85 | { | 
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| 86 | return kvm_clock_read(); | 
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| 87 | } | 
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| 88 |  | 
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| 89 | static noinstr u64 kvm_sched_clock_read(void) | 
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| 90 | { | 
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| 91 | return pvclock_clocksource_read_nowd(src: this_cpu_pvti()) - kvm_sched_clock_offset; | 
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| 92 | } | 
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| 93 |  | 
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| 94 | static inline void kvm_sched_clock_init(bool stable) | 
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| 95 | { | 
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| 96 | if (!stable) | 
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| 97 | clear_sched_clock_stable(); | 
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| 98 | kvm_sched_clock_offset = kvm_clock_read(); | 
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| 99 | paravirt_set_sched_clock(func: kvm_sched_clock_read); | 
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| 100 |  | 
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| 101 | pr_info( "kvm-clock: using sched offset of %llu cycles", | 
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| 102 | kvm_sched_clock_offset); | 
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| 103 |  | 
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| 104 | BUILD_BUG_ON(sizeof(kvm_sched_clock_offset) > | 
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| 105 | sizeof(((struct pvclock_vcpu_time_info *)NULL)->system_time)); | 
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| 106 | } | 
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| 107 |  | 
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| 108 | /* | 
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| 109 | * If we don't do that, there is the possibility that the guest | 
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| 110 | * will calibrate under heavy load - thus, getting a lower lpj - | 
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| 111 | * and execute the delays themselves without load. This is wrong, | 
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| 112 | * because no delay loop can finish beforehand. | 
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| 113 | * Any heuristics is subject to fail, because ultimately, a large | 
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| 114 | * poll of guests can be running and trouble each other. So we preset | 
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| 115 | * lpj here | 
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| 116 | */ | 
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| 117 | static unsigned long kvm_get_tsc_khz(void) | 
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| 118 | { | 
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| 119 | setup_force_cpu_cap(X86_FEATURE_TSC_KNOWN_FREQ); | 
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| 120 | return pvclock_tsc_khz(src: this_cpu_pvti()); | 
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| 121 | } | 
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| 122 |  | 
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| 123 | static void __init kvm_get_preset_lpj(void) | 
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| 124 | { | 
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| 125 | unsigned long khz; | 
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| 126 | u64 lpj; | 
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| 127 |  | 
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| 128 | khz = kvm_get_tsc_khz(); | 
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| 129 |  | 
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| 130 | lpj = ((u64)khz * 1000); | 
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| 131 | do_div(lpj, HZ); | 
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| 132 | preset_lpj = lpj; | 
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| 133 | } | 
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| 134 |  | 
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| 135 | bool kvm_check_and_clear_guest_paused(void) | 
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| 136 | { | 
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| 137 | struct pvclock_vsyscall_time_info *src = this_cpu_hvclock(); | 
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| 138 | bool ret = false; | 
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| 139 |  | 
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| 140 | if (!src) | 
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| 141 | return ret; | 
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| 142 |  | 
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| 143 | if ((src->pvti.flags & PVCLOCK_GUEST_STOPPED) != 0) { | 
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| 144 | src->pvti.flags &= ~PVCLOCK_GUEST_STOPPED; | 
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| 145 | pvclock_touch_watchdogs(); | 
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| 146 | ret = true; | 
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| 147 | } | 
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| 148 | return ret; | 
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| 149 | } | 
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| 150 |  | 
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| 151 | static int kvm_cs_enable(struct clocksource *cs) | 
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| 152 | { | 
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| 153 | vclocks_set_used(which: VDSO_CLOCKMODE_PVCLOCK); | 
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| 154 | return 0; | 
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| 155 | } | 
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| 156 |  | 
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| 157 | static struct clocksource kvm_clock = { | 
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| 158 | .name	= "kvm-clock", | 
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| 159 | .read	= kvm_clock_get_cycles, | 
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| 160 | .rating	= 400, | 
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| 161 | .mask	= CLOCKSOURCE_MASK(64), | 
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| 162 | .flags	= CLOCK_SOURCE_IS_CONTINUOUS, | 
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| 163 | .id     = CSID_X86_KVM_CLK, | 
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| 164 | .enable	= kvm_cs_enable, | 
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| 165 | }; | 
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| 166 |  | 
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| 167 | static void kvm_register_clock(char *txt) | 
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| 168 | { | 
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| 169 | struct pvclock_vsyscall_time_info *src = this_cpu_hvclock(); | 
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| 170 | u64 pa; | 
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| 171 |  | 
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| 172 | if (!src) | 
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| 173 | return; | 
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| 174 |  | 
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| 175 | pa = slow_virt_to_phys(address: &src->pvti) | 0x01ULL; | 
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| 176 | wrmsrq(msr: msr_kvm_system_time, val: pa); | 
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| 177 | pr_debug( "kvm-clock: cpu %d, msr %llx, %s", smp_processor_id(), pa, txt); | 
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| 178 | } | 
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| 179 |  | 
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| 180 | static void kvm_save_sched_clock_state(void) | 
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| 181 | { | 
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| 182 | } | 
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| 183 |  | 
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| 184 | static void kvm_restore_sched_clock_state(void) | 
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| 185 | { | 
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| 186 | kvm_register_clock(txt: "primary cpu clock, resume"); | 
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| 187 | } | 
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| 188 |  | 
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| 189 | #ifdef CONFIG_X86_LOCAL_APIC | 
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| 190 | static void kvm_setup_secondary_clock(void) | 
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| 191 | { | 
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| 192 | kvm_register_clock(txt: "secondary cpu clock"); | 
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| 193 | } | 
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| 194 | #endif | 
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| 195 |  | 
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| 196 | void kvmclock_disable(void) | 
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| 197 | { | 
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| 198 | if (msr_kvm_system_time) | 
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| 199 | native_write_msr(msr: msr_kvm_system_time, val: 0); | 
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| 200 | } | 
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| 201 |  | 
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| 202 | static void __init kvmclock_init_mem(void) | 
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| 203 | { | 
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| 204 | unsigned long ncpus; | 
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| 205 | unsigned int order; | 
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| 206 | struct page *p; | 
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| 207 | int r; | 
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| 208 |  | 
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| 209 | if (HVC_BOOT_ARRAY_SIZE >= num_possible_cpus()) | 
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| 210 | return; | 
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| 211 |  | 
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| 212 | ncpus = num_possible_cpus() - HVC_BOOT_ARRAY_SIZE; | 
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| 213 | order = get_order(size: ncpus * sizeof(*hvclock_mem)); | 
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| 214 |  | 
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| 215 | p = alloc_pages(GFP_KERNEL, order); | 
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| 216 | if (!p) { | 
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| 217 | pr_warn( "%s: failed to alloc %d pages", __func__, (1U << order)); | 
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| 218 | return; | 
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| 219 | } | 
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| 220 |  | 
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| 221 | hvclock_mem = page_address(p); | 
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| 222 |  | 
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| 223 | /* | 
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| 224 | * hvclock is shared between the guest and the hypervisor, must | 
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| 225 | * be mapped decrypted. | 
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| 226 | */ | 
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| 227 | if (cc_platform_has(attr: CC_ATTR_GUEST_MEM_ENCRYPT)) { | 
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| 228 | r = set_memory_decrypted(addr: (unsigned long) hvclock_mem, | 
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| 229 | numpages: 1UL << order); | 
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| 230 | if (r) { | 
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| 231 | __free_pages(page: p, order); | 
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| 232 | hvclock_mem = NULL; | 
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| 233 | pr_warn( "kvmclock: set_memory_decrypted() failed. Disabling\n"); | 
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| 234 | return; | 
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| 235 | } | 
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| 236 | } | 
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| 237 |  | 
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| 238 | memset(s: hvclock_mem, c: 0, PAGE_SIZE << order); | 
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| 239 | } | 
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| 240 |  | 
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| 241 | static int __init kvm_setup_vsyscall_timeinfo(void) | 
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| 242 | { | 
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| 243 | if (!kvm_para_available() || !kvmclock || nopv) | 
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| 244 | return 0; | 
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| 245 |  | 
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| 246 | kvmclock_init_mem(); | 
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| 247 |  | 
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| 248 | #ifdef CONFIG_X86_64 | 
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| 249 | if (per_cpu(hv_clock_per_cpu, 0) && kvmclock_vsyscall) { | 
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| 250 | u8 flags; | 
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| 251 |  | 
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| 252 | flags = pvclock_read_flags(src: &hv_clock_boot[0].pvti); | 
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| 253 | if (!(flags & PVCLOCK_TSC_STABLE_BIT)) | 
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| 254 | return 0; | 
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| 255 |  | 
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| 256 | kvm_clock.vdso_clock_mode = VDSO_CLOCKMODE_PVCLOCK; | 
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| 257 | } | 
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| 258 | #endif | 
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| 259 |  | 
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| 260 | return 0; | 
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| 261 | } | 
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| 262 | early_initcall(kvm_setup_vsyscall_timeinfo); | 
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| 263 |  | 
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| 264 | static int kvmclock_setup_percpu(unsigned int cpu) | 
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| 265 | { | 
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| 266 | struct pvclock_vsyscall_time_info *p = per_cpu(hv_clock_per_cpu, cpu); | 
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| 267 |  | 
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| 268 | /* | 
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| 269 | * The per cpu area setup replicates CPU0 data to all cpu | 
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| 270 | * pointers. So carefully check. CPU0 has been set up in init | 
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| 271 | * already. | 
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| 272 | */ | 
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| 273 | if (!cpu || (p && p != per_cpu(hv_clock_per_cpu, 0))) | 
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| 274 | return 0; | 
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| 275 |  | 
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| 276 | /* Use the static page for the first CPUs, allocate otherwise */ | 
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| 277 | if (cpu < HVC_BOOT_ARRAY_SIZE) | 
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| 278 | p = &hv_clock_boot[cpu]; | 
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| 279 | else if (hvclock_mem) | 
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| 280 | p = hvclock_mem + cpu - HVC_BOOT_ARRAY_SIZE; | 
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| 281 | else | 
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| 282 | return -ENOMEM; | 
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| 283 |  | 
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| 284 | per_cpu(hv_clock_per_cpu, cpu) = p; | 
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| 285 | return p ? 0 : -ENOMEM; | 
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| 286 | } | 
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| 287 |  | 
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| 288 | void __init kvmclock_init(void) | 
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| 289 | { | 
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| 290 | u8 flags; | 
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| 291 |  | 
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| 292 | if (!kvm_para_available() || !kvmclock) | 
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| 293 | return; | 
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| 294 |  | 
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| 295 | if (kvm_para_has_feature(KVM_FEATURE_CLOCKSOURCE2)) { | 
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| 296 | msr_kvm_system_time = MSR_KVM_SYSTEM_TIME_NEW; | 
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| 297 | msr_kvm_wall_clock = MSR_KVM_WALL_CLOCK_NEW; | 
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| 298 | } else if (kvm_para_has_feature(KVM_FEATURE_CLOCKSOURCE)) { | 
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| 299 | msr_kvm_system_time = MSR_KVM_SYSTEM_TIME; | 
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| 300 | msr_kvm_wall_clock = MSR_KVM_WALL_CLOCK; | 
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| 301 | } else { | 
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| 302 | return; | 
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| 303 | } | 
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| 304 |  | 
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| 305 | if (cpuhp_setup_state(state: CPUHP_BP_PREPARE_DYN, name: "kvmclock:setup_percpu", | 
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| 306 | startup: kvmclock_setup_percpu, NULL) < 0) { | 
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| 307 | return; | 
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| 308 | } | 
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| 309 |  | 
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| 310 | pr_info( "kvm-clock: Using msrs %x and %x", | 
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| 311 | msr_kvm_system_time, msr_kvm_wall_clock); | 
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| 312 |  | 
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| 313 | this_cpu_write(hv_clock_per_cpu, &hv_clock_boot[0]); | 
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| 314 | kvm_register_clock(txt: "primary cpu clock"); | 
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| 315 | pvclock_set_pvti_cpu0_va(pvti: hv_clock_boot); | 
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| 316 |  | 
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| 317 | if (kvm_para_has_feature(KVM_FEATURE_CLOCKSOURCE_STABLE_BIT)) | 
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| 318 | pvclock_set_flags(PVCLOCK_TSC_STABLE_BIT); | 
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| 319 |  | 
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| 320 | flags = pvclock_read_flags(src: &hv_clock_boot[0].pvti); | 
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| 321 | kvm_sched_clock_init(stable: flags & PVCLOCK_TSC_STABLE_BIT); | 
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| 322 |  | 
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| 323 | x86_platform.calibrate_tsc = kvm_get_tsc_khz; | 
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| 324 | x86_platform.calibrate_cpu = kvm_get_tsc_khz; | 
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| 325 | x86_platform.get_wallclock = kvm_get_wallclock; | 
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| 326 | x86_platform.set_wallclock = kvm_set_wallclock; | 
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| 327 | #ifdef CONFIG_X86_LOCAL_APIC | 
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| 328 | x86_cpuinit.early_percpu_clock_init = kvm_setup_secondary_clock; | 
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| 329 | #endif | 
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| 330 | x86_platform.save_sched_clock_state = kvm_save_sched_clock_state; | 
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| 331 | x86_platform.restore_sched_clock_state = kvm_restore_sched_clock_state; | 
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| 332 | kvm_get_preset_lpj(); | 
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| 333 |  | 
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| 334 | /* | 
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| 335 | * X86_FEATURE_NONSTOP_TSC is TSC runs at constant rate | 
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| 336 | * with P/T states and does not stop in deep C-states. | 
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| 337 | * | 
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| 338 | * Invariant TSC exposed by host means kvmclock is not necessary: | 
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| 339 | * can use TSC as clocksource. | 
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| 340 | * | 
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| 341 | */ | 
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| 342 | if (boot_cpu_has(X86_FEATURE_CONSTANT_TSC) && | 
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| 343 | boot_cpu_has(X86_FEATURE_NONSTOP_TSC) && | 
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| 344 | !check_tsc_unstable()) | 
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| 345 | kvm_clock.rating = 299; | 
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| 346 |  | 
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| 347 | clocksource_register_hz(cs: &kvm_clock, NSEC_PER_SEC); | 
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| 348 | pv_info.name = "KVM"; | 
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| 349 | } | 
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| 350 |  | 
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