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x86/xen: Fix xen_hvm_smp_init() when vector callback not available
Only the IPI-related functions in the smp_ops should be conditional on the vector callback being available. The rest should still happen: • xen_hvm_smp_prepare_boot_cpu() This function does two things, both of which should still happen if there is no vector callback support. The call to xen_vcpu_setup() for vCPU0 should still happen as it just sets up the vcpu_info for CPU0. That does happen for the secondary vCPUs too, from xen_cpu_up_prepare_hvm(). The second thing it does is call xen_init_spinlocks(), which perhaps counter-intuitively should *also* still be happening in the case without vector callbacks, so that it can clear its local xen_pvspin flag and disable the virt_spin_lock_key accordingly. Checking xen_have_vector_callback in xen_init_spinlocks() itself would affect PV guests, so set the global nopvspin flag in xen_hvm_smp_init() instead, when vector callbacks aren't available. • xen_hvm_smp_prepare_cpus() This does some IPI-related setup by calling xen_smp_intr_init() and xen_init_lock_cpu(), which can be made conditional. And it sets the xen_vcpu_id to XEN_VCPU_ID_INVALID for all possible CPUS, which does need to happen. • xen_smp_cpus_done() This offlines any vCPUs which doesn't fit in the global shared_info page, if separate vcpu_info placement isn't available. That part also needs to happen regardless of vector callback support. • xen_hvm_cpu_die() This doesn't actually do anything other than commin_cpu_die() right right now in the !vector_callback case; all three teardown functions it calls should be no-ops. But to guard against future regressions it's useful to call it anyway, and for it to explicitly check for xen_have_vector_callback before calling those additional functions. Signed-off-by: David Woodhouse <dwmw@amazon.co.uk> Reviewed-by: Boris Ostrovsky <boris.ostrovsky@oracle.com> Link: https://lore.kernel.org/r/20210106153958.584169-6-dwmw2@infradead.org Signed-off-by: Juergen Gross <jgross@suse.com>
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@ -33,9 +33,11 @@ static void __init xen_hvm_smp_prepare_cpus(unsigned int max_cpus)
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int cpu;
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native_smp_prepare_cpus(max_cpus);
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WARN_ON(xen_smp_intr_init(0));
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xen_init_lock_cpu(0);
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if (xen_have_vector_callback) {
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WARN_ON(xen_smp_intr_init(0));
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xen_init_lock_cpu(0);
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}
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for_each_possible_cpu(cpu) {
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if (cpu == 0)
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@ -50,9 +52,11 @@ static void __init xen_hvm_smp_prepare_cpus(unsigned int max_cpus)
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static void xen_hvm_cpu_die(unsigned int cpu)
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{
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if (common_cpu_die(cpu) == 0) {
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xen_smp_intr_free(cpu);
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xen_uninit_lock_cpu(cpu);
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xen_teardown_timer(cpu);
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if (xen_have_vector_callback) {
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xen_smp_intr_free(cpu);
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xen_uninit_lock_cpu(cpu);
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xen_teardown_timer(cpu);
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}
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}
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}
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#else
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@ -64,14 +68,17 @@ static void xen_hvm_cpu_die(unsigned int cpu)
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void __init xen_hvm_smp_init(void)
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{
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if (!xen_have_vector_callback)
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return;
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smp_ops.smp_prepare_boot_cpu = xen_hvm_smp_prepare_boot_cpu;
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smp_ops.smp_prepare_cpus = xen_hvm_smp_prepare_cpus;
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smp_ops.smp_send_reschedule = xen_smp_send_reschedule;
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smp_ops.smp_cpus_done = xen_smp_cpus_done;
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smp_ops.cpu_die = xen_hvm_cpu_die;
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if (!xen_have_vector_callback) {
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nopvspin = true;
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return;
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}
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smp_ops.smp_send_reschedule = xen_smp_send_reschedule;
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smp_ops.send_call_func_ipi = xen_smp_send_call_function_ipi;
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smp_ops.send_call_func_single_ipi = xen_smp_send_call_function_single_ipi;
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smp_ops.smp_prepare_boot_cpu = xen_hvm_smp_prepare_boot_cpu;
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smp_ops.smp_cpus_done = xen_smp_cpus_done;
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}
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