On x86/x64, the TSC clocksource is available in a Hyper-V VM only if Hyper-V provides the TSC_INVARIANT flag. The rating on the Hyper-V Reference TSC page clocksource is currently set so that it will not override the TSC clocksource in this case. Alternatively, if the TSC clocksource is not available, then the Hyper-V clocksource is used. But on ARM64, the Hyper-V Reference TSC page clocksource should override the ARM arch counter, since the Hyper-V clocksource provides scaling and offsetting during live migrations that is not provided for the ARM arch counter. To get the needed behavior for both x86/x64 and ARM64, tweak the logic by defaulting the Hyper-V Reference TSC page clocksource rating to a large value that will always override. If the Hyper-V TSC_INVARIANT flag is set, then reduce the rating so that it will not override the TSC. While the logic for getting there is slightly different, the net result in the normal cases is no functional change. Signed-off-by: Michael Kelley <mikelley@xxxxxxxxxxxxx> --- drivers/clocksource/hyperv_timer.c | 23 +++++++++++++---------- 1 file changed, 13 insertions(+), 10 deletions(-) diff --git a/drivers/clocksource/hyperv_timer.c b/drivers/clocksource/hyperv_timer.c index 38fb396..cdb8e0c 100644 --- a/drivers/clocksource/hyperv_timer.c +++ b/drivers/clocksource/hyperv_timer.c @@ -302,14 +302,6 @@ void hv_stimer_global_cleanup(void) * the other that uses the TSC reference page feature as defined in the * TLFS. The MSR version is for compatibility with old versions of * Hyper-V and 32-bit x86. The TSC reference page version is preferred. - * - * The Hyper-V clocksource ratings of 250 are chosen to be below the - * TSC clocksource rating of 300. In configurations where Hyper-V offers - * an InvariantTSC, the TSC is not marked "unstable", so the TSC clocksource - * is available and preferred. With the higher rating, it will be the - * default. On older hardware and Hyper-V versions, the TSC is marked - * "unstable", so no TSC clocksource is created and the selected Hyper-V - * clocksource will be the default. */ u64 (*hv_read_reference_counter)(void); @@ -380,7 +372,7 @@ static int hv_cs_enable(struct clocksource *cs) static struct clocksource hyperv_cs_tsc = { .name = "hyperv_clocksource_tsc_page", - .rating = 250, + .rating = 500, .read = read_hv_clock_tsc_cs, .mask = CLOCKSOURCE_MASK(64), .flags = CLOCK_SOURCE_IS_CONTINUOUS, @@ -417,7 +409,7 @@ static u64 notrace read_hv_sched_clock_msr(void) static struct clocksource hyperv_cs_msr = { .name = "hyperv_clocksource_msr", - .rating = 250, + .rating = 500, .read = read_hv_clock_msr_cs, .mask = CLOCKSOURCE_MASK(64), .flags = CLOCK_SOURCE_IS_CONTINUOUS, @@ -455,6 +447,17 @@ static bool __init hv_init_tsc_clocksource(void) if (hv_root_partition) return false; + /* + * If Hyper-V offers TSC_INVARIANT, then the virtualized TSC correctly + * handles frequency and offset changes due to live migration, + * pause/resume, and other VM management operations. So lower the + * Hyper-V Reference TSC rating, causing the generic TSC to be used. + * TSC_INVARIANT is not offered on ARM64, so the Hyper-V Reference + * TSC will be preferred over the virtualized ARM64 arch counter. + */ + if (ms_hyperv.features & HV_ACCESS_TSC_INVARIANT) + hyperv_cs_tsc.rating = 250; + hv_read_reference_counter = read_hv_clock_tsc; phys_addr = virt_to_phys(hv_get_tsc_page()); -- 1.8.3.1