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KVM: nVMX: Fix erroneous exception bitmap check
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CommitLineData
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1/* KVM paravirtual clock driver. A clocksource implementation
2 Copyright (C) 2008 Glauber de Oliveira Costa, Red Hat Inc.
3
4 This program is free software; you can redistribute it and/or modify
5 it under the terms of the GNU General Public License as published by
6 the Free Software Foundation; either version 2 of the License, or
7 (at your option) any later version.
8
9 This program is distributed in the hope that it will be useful,
10 but WITHOUT ANY WARRANTY; without even the implied warranty of
11 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 GNU General Public License for more details.
13
14 You should have received a copy of the GNU General Public License
15 along with this program; if not, write to the Free Software
16 Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
17*/
18
19#include <linux/clocksource.h>
20#include <linux/kvm_para.h>
f6e16d5a 21#include <asm/pvclock.h>
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22#include <asm/msr.h>
23#include <asm/apic.h>
24#include <linux/percpu.h>
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25
26#include <asm/x86_init.h>
1e977aa1 27#include <asm/reboot.h>
790c73f6 28
790c73f6 29static int kvmclock = 1;
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30static int msr_kvm_system_time = MSR_KVM_SYSTEM_TIME;
31static int msr_kvm_wall_clock = MSR_KVM_WALL_CLOCK;
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32
33static int parse_no_kvmclock(char *arg)
34{
35 kvmclock = 0;
36 return 0;
37}
38early_param("no-kvmclock", parse_no_kvmclock);
39
40/* The hypervisor will put information about time periodically here */
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GH
41static DEFINE_PER_CPU_SHARED_ALIGNED(struct pvclock_vcpu_time_info, hv_clock);
42static struct pvclock_wall_clock wall_clock;
790c73f6 43
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44/*
45 * The wallclock is the time of day when we booted. Since then, some time may
46 * have elapsed since the hypervisor wrote the data. So we try to account for
47 * that with system time
48 */
2ddfd20e 49static unsigned long kvm_get_wallclock(void)
790c73f6 50{
f6e16d5a 51 struct pvclock_vcpu_time_info *vcpu_time;
790c73f6 52 struct timespec ts;
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53 int low, high;
54
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55 low = (int)__pa_symbol(&wall_clock);
56 high = ((u64)__pa_symbol(&wall_clock) >> 32);
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57
58 native_write_msr(msr_kvm_wall_clock, low, high);
790c73f6 59
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60 vcpu_time = &get_cpu_var(hv_clock);
61 pvclock_read_wallclock(&wall_clock, vcpu_time, &ts);
62 put_cpu_var(hv_clock);
790c73f6 63
f6e16d5a 64 return ts.tv_sec;
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65}
66
2ddfd20e 67static int kvm_set_wallclock(unsigned long now)
790c73f6 68{
f6e16d5a 69 return -1;
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70}
71
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72static cycle_t kvm_clock_read(void)
73{
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74 struct pvclock_vcpu_time_info *src;
75 cycle_t ret;
790c73f6 76
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77 preempt_disable_notrace();
78 src = &__get_cpu_var(hv_clock);
f6e16d5a 79 ret = pvclock_clocksource_read(src);
95ef1e52 80 preempt_enable_notrace();
f6e16d5a 81 return ret;
790c73f6 82}
f6e16d5a 83
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84static cycle_t kvm_clock_get_cycles(struct clocksource *cs)
85{
86 return kvm_clock_read();
87}
88
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89/*
90 * If we don't do that, there is the possibility that the guest
91 * will calibrate under heavy load - thus, getting a lower lpj -
92 * and execute the delays themselves without load. This is wrong,
93 * because no delay loop can finish beforehand.
94 * Any heuristics is subject to fail, because ultimately, a large
95 * poll of guests can be running and trouble each other. So we preset
96 * lpj here
97 */
98static unsigned long kvm_get_tsc_khz(void)
99{
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100 struct pvclock_vcpu_time_info *src;
101 src = &per_cpu(hv_clock, 0);
102 return pvclock_tsc_khz(src);
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103}
104
105static void kvm_get_preset_lpj(void)
106{
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107 unsigned long khz;
108 u64 lpj;
109
e93353c9 110 khz = kvm_get_tsc_khz();
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111
112 lpj = ((u64)khz * 1000);
113 do_div(lpj, HZ);
114 preset_lpj = lpj;
115}
116
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117static struct clocksource kvm_clock = {
118 .name = "kvm-clock",
8e19608e 119 .read = kvm_clock_get_cycles,
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120 .rating = 400,
121 .mask = CLOCKSOURCE_MASK(64),
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122 .flags = CLOCK_SOURCE_IS_CONTINUOUS,
123};
124
ca3f1017 125int kvm_register_clock(char *txt)
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126{
127 int cpu = smp_processor_id();
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128 int low, high, ret;
129
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130 low = (int)__pa(&per_cpu(hv_clock, cpu)) | 1;
131 high = ((u64)__pa(&per_cpu(hv_clock, cpu)) >> 32);
19b6a85b 132 ret = native_write_msr_safe(msr_kvm_system_time, low, high);
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133 printk(KERN_INFO "kvm-clock: cpu %d, msr %x:%x, %s\n",
134 cpu, high, low, txt);
838815a7 135
19b6a85b 136 return ret;
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137}
138
b8ba5f10 139#ifdef CONFIG_X86_LOCAL_APIC
23a14b9e 140static void __cpuinit kvm_setup_secondary_clock(void)
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141{
142 /*
143 * Now that the first cpu already had this clocksource initialized,
144 * we shouldn't fail.
145 */
f6e16d5a 146 WARN_ON(kvm_register_clock("secondary cpu clock"));
790c73f6 147}
b8ba5f10 148#endif
790c73f6 149
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150/*
151 * After the clock is registered, the host will keep writing to the
152 * registered memory location. If the guest happens to shutdown, this memory
153 * won't be valid. In cases like kexec, in which you install a new kernel, this
154 * means a random memory location will be kept being written. So before any
155 * kind of shutdown from our side, we unregister the clock by writting anything
156 * that does not have the 'enable' bit set in the msr
157 */
158#ifdef CONFIG_KEXEC
159static void kvm_crash_shutdown(struct pt_regs *regs)
160{
838815a7 161 native_write_msr(msr_kvm_system_time, 0, 0);
d910f5c1 162 kvm_disable_steal_time();
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163 native_machine_crash_shutdown(regs);
164}
165#endif
166
167static void kvm_shutdown(void)
168{
838815a7 169 native_write_msr(msr_kvm_system_time, 0, 0);
d910f5c1 170 kvm_disable_steal_time();
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171 native_machine_shutdown();
172}
173
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174void __init kvmclock_init(void)
175{
176 if (!kvm_para_available())
177 return;
178
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179 if (kvmclock && kvm_para_has_feature(KVM_FEATURE_CLOCKSOURCE2)) {
180 msr_kvm_system_time = MSR_KVM_SYSTEM_TIME_NEW;
181 msr_kvm_wall_clock = MSR_KVM_WALL_CLOCK_NEW;
182 } else if (!(kvmclock && kvm_para_has_feature(KVM_FEATURE_CLOCKSOURCE)))
183 return;
184
185 printk(KERN_INFO "kvm-clock: Using msrs %x and %x",
186 msr_kvm_system_time, msr_kvm_wall_clock);
187
188 if (kvm_register_clock("boot clock"))
189 return;
190 pv_time_ops.sched_clock = kvm_clock_read;
191 x86_platform.calibrate_tsc = kvm_get_tsc_khz;
192 x86_platform.get_wallclock = kvm_get_wallclock;
193 x86_platform.set_wallclock = kvm_set_wallclock;
b8ba5f10 194#ifdef CONFIG_X86_LOCAL_APIC
df156f90 195 x86_cpuinit.early_percpu_clock_init =
838815a7 196 kvm_setup_secondary_clock;
b8ba5f10 197#endif
838815a7 198 machine_ops.shutdown = kvm_shutdown;
1e977aa1 199#ifdef CONFIG_KEXEC
838815a7 200 machine_ops.crash_shutdown = kvm_crash_shutdown;
1e977aa1 201#endif
838815a7 202 kvm_get_preset_lpj();
b01cc1b0 203 clocksource_register_hz(&kvm_clock, NSEC_PER_SEC);
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204 pv_info.paravirt_enabled = 1;
205 pv_info.name = "KVM";
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206
207 if (kvm_para_has_feature(KVM_FEATURE_CLOCKSOURCE_STABLE_BIT))
208 pvclock_set_flags(PVCLOCK_TSC_STABLE_BIT);
790c73f6 209}