1b0c632dbSHeiko Carstens /* 2a53c8fabSHeiko Carstens * hosting zSeries kernel virtual machines 3b0c632dbSHeiko Carstens * 4628eb9b8SChristian Ehrhardt * Copyright IBM Corp. 2008, 2009 5b0c632dbSHeiko Carstens * 6b0c632dbSHeiko Carstens * This program is free software; you can redistribute it and/or modify 7b0c632dbSHeiko Carstens * it under the terms of the GNU General Public License (version 2 only) 8b0c632dbSHeiko Carstens * as published by the Free Software Foundation. 9b0c632dbSHeiko Carstens * 10b0c632dbSHeiko Carstens * Author(s): Carsten Otte <cotte@de.ibm.com> 11b0c632dbSHeiko Carstens * Christian Borntraeger <borntraeger@de.ibm.com> 12b0c632dbSHeiko Carstens * Heiko Carstens <heiko.carstens@de.ibm.com> 13628eb9b8SChristian Ehrhardt * Christian Ehrhardt <ehrhardt@de.ibm.com> 1415f36ebdSJason J. Herne * Jason J. Herne <jjherne@us.ibm.com> 15b0c632dbSHeiko Carstens */ 16b0c632dbSHeiko Carstens 17b0c632dbSHeiko Carstens #include <linux/compiler.h> 18b0c632dbSHeiko Carstens #include <linux/err.h> 19b0c632dbSHeiko Carstens #include <linux/fs.h> 20ca872302SChristian Borntraeger #include <linux/hrtimer.h> 21b0c632dbSHeiko Carstens #include <linux/init.h> 22b0c632dbSHeiko Carstens #include <linux/kvm.h> 23b0c632dbSHeiko Carstens #include <linux/kvm_host.h> 24b0c632dbSHeiko Carstens #include <linux/module.h> 25a374e892STony Krowiak #include <linux/random.h> 26b0c632dbSHeiko Carstens #include <linux/slab.h> 27ba5c1e9bSCarsten Otte #include <linux/timer.h> 2841408c28SThomas Huth #include <linux/vmalloc.h> 29cbb870c8SHeiko Carstens #include <asm/asm-offsets.h> 30b0c632dbSHeiko Carstens #include <asm/lowcore.h> 31fdf03650SFan Zhang #include <asm/etr.h> 32b0c632dbSHeiko Carstens #include <asm/pgtable.h> 33f5daba1dSHeiko Carstens #include <asm/nmi.h> 34a0616cdeSDavid Howells #include <asm/switch_to.h> 356d3da241SJens Freimann #include <asm/isc.h> 361526bf9cSChristian Borntraeger #include <asm/sclp.h> 378f2abe6aSChristian Borntraeger #include "kvm-s390.h" 38b0c632dbSHeiko Carstens #include "gaccess.h" 39b0c632dbSHeiko Carstens 40ea2cdd27SDavid Hildenbrand #define KMSG_COMPONENT "kvm-s390" 41ea2cdd27SDavid Hildenbrand #undef pr_fmt 42ea2cdd27SDavid Hildenbrand #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt 43ea2cdd27SDavid Hildenbrand 445786fffaSCornelia Huck #define CREATE_TRACE_POINTS 455786fffaSCornelia Huck #include "trace.h" 46ade38c31SCornelia Huck #include "trace-s390.h" 475786fffaSCornelia Huck 4841408c28SThomas Huth #define MEM_OP_MAX_SIZE 65536 /* Maximum transfer size for KVM_S390_MEM_OP */ 49816c7667SJens Freimann #define LOCAL_IRQS 32 50816c7667SJens Freimann #define VCPU_IRQS_MAX_BUF (sizeof(struct kvm_s390_irq) * \ 51816c7667SJens Freimann (KVM_MAX_VCPUS + LOCAL_IRQS)) 5241408c28SThomas Huth 53b0c632dbSHeiko Carstens #define VCPU_STAT(x) offsetof(struct kvm_vcpu, stat.x), KVM_STAT_VCPU 54b0c632dbSHeiko Carstens 55b0c632dbSHeiko Carstens struct kvm_stats_debugfs_item debugfs_entries[] = { 56b0c632dbSHeiko Carstens { "userspace_handled", VCPU_STAT(exit_userspace) }, 570eaeafa1SChristian Borntraeger { "exit_null", VCPU_STAT(exit_null) }, 588f2abe6aSChristian Borntraeger { "exit_validity", VCPU_STAT(exit_validity) }, 598f2abe6aSChristian Borntraeger { "exit_stop_request", VCPU_STAT(exit_stop_request) }, 608f2abe6aSChristian Borntraeger { "exit_external_request", VCPU_STAT(exit_external_request) }, 618f2abe6aSChristian Borntraeger { "exit_external_interrupt", VCPU_STAT(exit_external_interrupt) }, 62ba5c1e9bSCarsten Otte { "exit_instruction", VCPU_STAT(exit_instruction) }, 63ba5c1e9bSCarsten Otte { "exit_program_interruption", VCPU_STAT(exit_program_interruption) }, 64ba5c1e9bSCarsten Otte { "exit_instr_and_program_int", VCPU_STAT(exit_instr_and_program) }, 65f7819512SPaolo Bonzini { "halt_successful_poll", VCPU_STAT(halt_successful_poll) }, 6662bea5bfSPaolo Bonzini { "halt_attempted_poll", VCPU_STAT(halt_attempted_poll) }, 67ce2e4f0bSDavid Hildenbrand { "halt_wakeup", VCPU_STAT(halt_wakeup) }, 68f5e10b09SChristian Borntraeger { "instruction_lctlg", VCPU_STAT(instruction_lctlg) }, 69ba5c1e9bSCarsten Otte { "instruction_lctl", VCPU_STAT(instruction_lctl) }, 70aba07508SDavid Hildenbrand { "instruction_stctl", VCPU_STAT(instruction_stctl) }, 71aba07508SDavid Hildenbrand { "instruction_stctg", VCPU_STAT(instruction_stctg) }, 72ba5c1e9bSCarsten Otte { "deliver_emergency_signal", VCPU_STAT(deliver_emergency_signal) }, 737697e71fSChristian Ehrhardt { "deliver_external_call", VCPU_STAT(deliver_external_call) }, 74ba5c1e9bSCarsten Otte { "deliver_service_signal", VCPU_STAT(deliver_service_signal) }, 75ba5c1e9bSCarsten Otte { "deliver_virtio_interrupt", VCPU_STAT(deliver_virtio_interrupt) }, 76ba5c1e9bSCarsten Otte { "deliver_stop_signal", VCPU_STAT(deliver_stop_signal) }, 77ba5c1e9bSCarsten Otte { "deliver_prefix_signal", VCPU_STAT(deliver_prefix_signal) }, 78ba5c1e9bSCarsten Otte { "deliver_restart_signal", VCPU_STAT(deliver_restart_signal) }, 79ba5c1e9bSCarsten Otte { "deliver_program_interruption", VCPU_STAT(deliver_program_int) }, 80ba5c1e9bSCarsten Otte { "exit_wait_state", VCPU_STAT(exit_wait_state) }, 8169d0d3a3SChristian Borntraeger { "instruction_pfmf", VCPU_STAT(instruction_pfmf) }, 82453423dcSChristian Borntraeger { "instruction_stidp", VCPU_STAT(instruction_stidp) }, 83453423dcSChristian Borntraeger { "instruction_spx", VCPU_STAT(instruction_spx) }, 84453423dcSChristian Borntraeger { "instruction_stpx", VCPU_STAT(instruction_stpx) }, 85453423dcSChristian Borntraeger { "instruction_stap", VCPU_STAT(instruction_stap) }, 86453423dcSChristian Borntraeger { "instruction_storage_key", VCPU_STAT(instruction_storage_key) }, 878a242234SHeiko Carstens { "instruction_ipte_interlock", VCPU_STAT(instruction_ipte_interlock) }, 88453423dcSChristian Borntraeger { "instruction_stsch", VCPU_STAT(instruction_stsch) }, 89453423dcSChristian Borntraeger { "instruction_chsc", VCPU_STAT(instruction_chsc) }, 90b31288faSKonstantin Weitz { "instruction_essa", VCPU_STAT(instruction_essa) }, 91453423dcSChristian Borntraeger { "instruction_stsi", VCPU_STAT(instruction_stsi) }, 92453423dcSChristian Borntraeger { "instruction_stfl", VCPU_STAT(instruction_stfl) }, 93bb25b9baSChristian Borntraeger { "instruction_tprot", VCPU_STAT(instruction_tprot) }, 945288fbf0SChristian Borntraeger { "instruction_sigp_sense", VCPU_STAT(instruction_sigp_sense) }, 95bd59d3a4SCornelia Huck { "instruction_sigp_sense_running", VCPU_STAT(instruction_sigp_sense_running) }, 967697e71fSChristian Ehrhardt { "instruction_sigp_external_call", VCPU_STAT(instruction_sigp_external_call) }, 975288fbf0SChristian Borntraeger { "instruction_sigp_emergency", VCPU_STAT(instruction_sigp_emergency) }, 9842cb0c9fSDavid Hildenbrand { "instruction_sigp_cond_emergency", VCPU_STAT(instruction_sigp_cond_emergency) }, 9942cb0c9fSDavid Hildenbrand { "instruction_sigp_start", VCPU_STAT(instruction_sigp_start) }, 1005288fbf0SChristian Borntraeger { "instruction_sigp_stop", VCPU_STAT(instruction_sigp_stop) }, 10142cb0c9fSDavid Hildenbrand { "instruction_sigp_stop_store_status", VCPU_STAT(instruction_sigp_stop_store_status) }, 10242cb0c9fSDavid Hildenbrand { "instruction_sigp_store_status", VCPU_STAT(instruction_sigp_store_status) }, 103cd7b4b61SEric Farman { "instruction_sigp_store_adtl_status", VCPU_STAT(instruction_sigp_store_adtl_status) }, 1045288fbf0SChristian Borntraeger { "instruction_sigp_set_arch", VCPU_STAT(instruction_sigp_arch) }, 1055288fbf0SChristian Borntraeger { "instruction_sigp_set_prefix", VCPU_STAT(instruction_sigp_prefix) }, 1065288fbf0SChristian Borntraeger { "instruction_sigp_restart", VCPU_STAT(instruction_sigp_restart) }, 10742cb0c9fSDavid Hildenbrand { "instruction_sigp_cpu_reset", VCPU_STAT(instruction_sigp_cpu_reset) }, 10842cb0c9fSDavid Hildenbrand { "instruction_sigp_init_cpu_reset", VCPU_STAT(instruction_sigp_init_cpu_reset) }, 10942cb0c9fSDavid Hildenbrand { "instruction_sigp_unknown", VCPU_STAT(instruction_sigp_unknown) }, 110388186bcSChristian Borntraeger { "diagnose_10", VCPU_STAT(diagnose_10) }, 111e28acfeaSChristian Borntraeger { "diagnose_44", VCPU_STAT(diagnose_44) }, 11241628d33SKonstantin Weitz { "diagnose_9c", VCPU_STAT(diagnose_9c) }, 113175a5c9eSChristian Borntraeger { "diagnose_258", VCPU_STAT(diagnose_258) }, 114175a5c9eSChristian Borntraeger { "diagnose_308", VCPU_STAT(diagnose_308) }, 115175a5c9eSChristian Borntraeger { "diagnose_500", VCPU_STAT(diagnose_500) }, 116b0c632dbSHeiko Carstens { NULL } 117b0c632dbSHeiko Carstens }; 118b0c632dbSHeiko Carstens 1199d8d5786SMichael Mueller /* upper facilities limit for kvm */ 1209d8d5786SMichael Mueller unsigned long kvm_s390_fac_list_mask[] = { 121a3ed8daeSChristian Borntraeger 0xffe6fffbfcfdfc40UL, 12253df84f8SGuenther Hutzl 0x005e800000000000UL, 1239d8d5786SMichael Mueller }; 124b0c632dbSHeiko Carstens 1259d8d5786SMichael Mueller unsigned long kvm_s390_fac_list_mask_size(void) 12678c4b59fSMichael Mueller { 1279d8d5786SMichael Mueller BUILD_BUG_ON(ARRAY_SIZE(kvm_s390_fac_list_mask) > S390_ARCH_FAC_MASK_SIZE_U64); 1289d8d5786SMichael Mueller return ARRAY_SIZE(kvm_s390_fac_list_mask); 12978c4b59fSMichael Mueller } 13078c4b59fSMichael Mueller 1319d8d5786SMichael Mueller static struct gmap_notifier gmap_notifier; 13278f26131SChristian Borntraeger debug_info_t *kvm_s390_dbf; 1339d8d5786SMichael Mueller 134b0c632dbSHeiko Carstens /* Section: not file related */ 13513a34e06SRadim Krčmář int kvm_arch_hardware_enable(void) 136b0c632dbSHeiko Carstens { 137b0c632dbSHeiko Carstens /* every s390 is virtualization enabled ;-) */ 13810474ae8SAlexander Graf return 0; 139b0c632dbSHeiko Carstens } 140b0c632dbSHeiko Carstens 1412c70fe44SChristian Borntraeger static void kvm_gmap_notifier(struct gmap *gmap, unsigned long address); 1422c70fe44SChristian Borntraeger 143fdf03650SFan Zhang /* 144fdf03650SFan Zhang * This callback is executed during stop_machine(). All CPUs are therefore 145fdf03650SFan Zhang * temporarily stopped. In order not to change guest behavior, we have to 146fdf03650SFan Zhang * disable preemption whenever we touch the epoch of kvm and the VCPUs, 147fdf03650SFan Zhang * so a CPU won't be stopped while calculating with the epoch. 148fdf03650SFan Zhang */ 149fdf03650SFan Zhang static int kvm_clock_sync(struct notifier_block *notifier, unsigned long val, 150fdf03650SFan Zhang void *v) 151fdf03650SFan Zhang { 152fdf03650SFan Zhang struct kvm *kvm; 153fdf03650SFan Zhang struct kvm_vcpu *vcpu; 154fdf03650SFan Zhang int i; 155fdf03650SFan Zhang unsigned long long *delta = v; 156fdf03650SFan Zhang 157fdf03650SFan Zhang list_for_each_entry(kvm, &vm_list, vm_list) { 158fdf03650SFan Zhang kvm->arch.epoch -= *delta; 159fdf03650SFan Zhang kvm_for_each_vcpu(i, vcpu, kvm) { 160fdf03650SFan Zhang vcpu->arch.sie_block->epoch -= *delta; 161fdf03650SFan Zhang } 162fdf03650SFan Zhang } 163fdf03650SFan Zhang return NOTIFY_OK; 164fdf03650SFan Zhang } 165fdf03650SFan Zhang 166fdf03650SFan Zhang static struct notifier_block kvm_clock_notifier = { 167fdf03650SFan Zhang .notifier_call = kvm_clock_sync, 168fdf03650SFan Zhang }; 169fdf03650SFan Zhang 170b0c632dbSHeiko Carstens int kvm_arch_hardware_setup(void) 171b0c632dbSHeiko Carstens { 1722c70fe44SChristian Borntraeger gmap_notifier.notifier_call = kvm_gmap_notifier; 1732c70fe44SChristian Borntraeger gmap_register_ipte_notifier(&gmap_notifier); 174fdf03650SFan Zhang atomic_notifier_chain_register(&s390_epoch_delta_notifier, 175fdf03650SFan Zhang &kvm_clock_notifier); 176b0c632dbSHeiko Carstens return 0; 177b0c632dbSHeiko Carstens } 178b0c632dbSHeiko Carstens 179b0c632dbSHeiko Carstens void kvm_arch_hardware_unsetup(void) 180b0c632dbSHeiko Carstens { 1812c70fe44SChristian Borntraeger gmap_unregister_ipte_notifier(&gmap_notifier); 182fdf03650SFan Zhang atomic_notifier_chain_unregister(&s390_epoch_delta_notifier, 183fdf03650SFan Zhang &kvm_clock_notifier); 184b0c632dbSHeiko Carstens } 185b0c632dbSHeiko Carstens 186b0c632dbSHeiko Carstens int kvm_arch_init(void *opaque) 187b0c632dbSHeiko Carstens { 18878f26131SChristian Borntraeger kvm_s390_dbf = debug_register("kvm-trace", 32, 1, 7 * sizeof(long)); 18978f26131SChristian Borntraeger if (!kvm_s390_dbf) 19078f26131SChristian Borntraeger return -ENOMEM; 19178f26131SChristian Borntraeger 19278f26131SChristian Borntraeger if (debug_register_view(kvm_s390_dbf, &debug_sprintf_view)) { 19378f26131SChristian Borntraeger debug_unregister(kvm_s390_dbf); 19478f26131SChristian Borntraeger return -ENOMEM; 19578f26131SChristian Borntraeger } 19678f26131SChristian Borntraeger 19784877d93SCornelia Huck /* Register floating interrupt controller interface. */ 19884877d93SCornelia Huck return kvm_register_device_ops(&kvm_flic_ops, KVM_DEV_TYPE_FLIC); 199b0c632dbSHeiko Carstens } 200b0c632dbSHeiko Carstens 20178f26131SChristian Borntraeger void kvm_arch_exit(void) 20278f26131SChristian Borntraeger { 20378f26131SChristian Borntraeger debug_unregister(kvm_s390_dbf); 20478f26131SChristian Borntraeger } 20578f26131SChristian Borntraeger 206b0c632dbSHeiko Carstens /* Section: device related */ 207b0c632dbSHeiko Carstens long kvm_arch_dev_ioctl(struct file *filp, 208b0c632dbSHeiko Carstens unsigned int ioctl, unsigned long arg) 209b0c632dbSHeiko Carstens { 210b0c632dbSHeiko Carstens if (ioctl == KVM_S390_ENABLE_SIE) 211b0c632dbSHeiko Carstens return s390_enable_sie(); 212b0c632dbSHeiko Carstens return -EINVAL; 213b0c632dbSHeiko Carstens } 214b0c632dbSHeiko Carstens 215784aa3d7SAlexander Graf int kvm_vm_ioctl_check_extension(struct kvm *kvm, long ext) 216b0c632dbSHeiko Carstens { 217d7b0b5ebSCarsten Otte int r; 218d7b0b5ebSCarsten Otte 2192bd0ac4eSCarsten Otte switch (ext) { 220d7b0b5ebSCarsten Otte case KVM_CAP_S390_PSW: 221b6cf8788SChristian Borntraeger case KVM_CAP_S390_GMAP: 22252e16b18SChristian Borntraeger case KVM_CAP_SYNC_MMU: 2231efd0f59SCarsten Otte #ifdef CONFIG_KVM_S390_UCONTROL 2241efd0f59SCarsten Otte case KVM_CAP_S390_UCONTROL: 2251efd0f59SCarsten Otte #endif 2263c038e6bSDominik Dingel case KVM_CAP_ASYNC_PF: 22760b413c9SChristian Borntraeger case KVM_CAP_SYNC_REGS: 22814eebd91SCarsten Otte case KVM_CAP_ONE_REG: 229d6712df9SCornelia Huck case KVM_CAP_ENABLE_CAP: 230fa6b7fe9SCornelia Huck case KVM_CAP_S390_CSS_SUPPORT: 23110ccaa1eSCornelia Huck case KVM_CAP_IOEVENTFD: 232c05c4186SJens Freimann case KVM_CAP_DEVICE_CTRL: 233d938dc55SCornelia Huck case KVM_CAP_ENABLE_CAP_VM: 23478599d90SCornelia Huck case KVM_CAP_S390_IRQCHIP: 235f2061656SDominik Dingel case KVM_CAP_VM_ATTRIBUTES: 2366352e4d2SDavid Hildenbrand case KVM_CAP_MP_STATE: 23747b43c52SJens Freimann case KVM_CAP_S390_INJECT_IRQ: 2382444b352SDavid Hildenbrand case KVM_CAP_S390_USER_SIGP: 239e44fc8c9SEkaterina Tumanova case KVM_CAP_S390_USER_STSI: 24030ee2a98SJason J. Herne case KVM_CAP_S390_SKEYS: 241816c7667SJens Freimann case KVM_CAP_S390_IRQ_STATE: 242d7b0b5ebSCarsten Otte r = 1; 243d7b0b5ebSCarsten Otte break; 24441408c28SThomas Huth case KVM_CAP_S390_MEM_OP: 24541408c28SThomas Huth r = MEM_OP_MAX_SIZE; 24641408c28SThomas Huth break; 247e726b1bdSChristian Borntraeger case KVM_CAP_NR_VCPUS: 248e726b1bdSChristian Borntraeger case KVM_CAP_MAX_VCPUS: 249fe0edcb7SEugene (jno) Dvurechenski r = sclp.has_esca ? KVM_S390_ESCA_CPU_SLOTS 250fe0edcb7SEugene (jno) Dvurechenski : KVM_S390_BSCA_CPU_SLOTS; 251e726b1bdSChristian Borntraeger break; 252e1e2e605SNick Wang case KVM_CAP_NR_MEMSLOTS: 253e1e2e605SNick Wang r = KVM_USER_MEM_SLOTS; 254e1e2e605SNick Wang break; 2551526bf9cSChristian Borntraeger case KVM_CAP_S390_COW: 256abf09bedSMartin Schwidefsky r = MACHINE_HAS_ESOP; 2571526bf9cSChristian Borntraeger break; 25868c55750SEric Farman case KVM_CAP_S390_VECTOR_REGISTERS: 25968c55750SEric Farman r = MACHINE_HAS_VX; 26068c55750SEric Farman break; 2612bd0ac4eSCarsten Otte default: 262d7b0b5ebSCarsten Otte r = 0; 263b0c632dbSHeiko Carstens } 264d7b0b5ebSCarsten Otte return r; 2652bd0ac4eSCarsten Otte } 266b0c632dbSHeiko Carstens 26715f36ebdSJason J. Herne static void kvm_s390_sync_dirty_log(struct kvm *kvm, 26815f36ebdSJason J. Herne struct kvm_memory_slot *memslot) 26915f36ebdSJason J. Herne { 27015f36ebdSJason J. Herne gfn_t cur_gfn, last_gfn; 27115f36ebdSJason J. Herne unsigned long address; 27215f36ebdSJason J. Herne struct gmap *gmap = kvm->arch.gmap; 27315f36ebdSJason J. Herne 27415f36ebdSJason J. Herne down_read(&gmap->mm->mmap_sem); 27515f36ebdSJason J. Herne /* Loop over all guest pages */ 27615f36ebdSJason J. Herne last_gfn = memslot->base_gfn + memslot->npages; 27715f36ebdSJason J. Herne for (cur_gfn = memslot->base_gfn; cur_gfn <= last_gfn; cur_gfn++) { 27815f36ebdSJason J. Herne address = gfn_to_hva_memslot(memslot, cur_gfn); 27915f36ebdSJason J. Herne 28015f36ebdSJason J. Herne if (gmap_test_and_clear_dirty(address, gmap)) 28115f36ebdSJason J. Herne mark_page_dirty(kvm, cur_gfn); 28215f36ebdSJason J. Herne } 28315f36ebdSJason J. Herne up_read(&gmap->mm->mmap_sem); 28415f36ebdSJason J. Herne } 28515f36ebdSJason J. Herne 286b0c632dbSHeiko Carstens /* Section: vm related */ 287a6e2f683SEugene (jno) Dvurechenski static void sca_del_vcpu(struct kvm_vcpu *vcpu); 288a6e2f683SEugene (jno) Dvurechenski 289b0c632dbSHeiko Carstens /* 290b0c632dbSHeiko Carstens * Get (and clear) the dirty memory log for a memory slot. 291b0c632dbSHeiko Carstens */ 292b0c632dbSHeiko Carstens int kvm_vm_ioctl_get_dirty_log(struct kvm *kvm, 293b0c632dbSHeiko Carstens struct kvm_dirty_log *log) 294b0c632dbSHeiko Carstens { 29515f36ebdSJason J. Herne int r; 29615f36ebdSJason J. Herne unsigned long n; 2979f6b8029SPaolo Bonzini struct kvm_memslots *slots; 29815f36ebdSJason J. Herne struct kvm_memory_slot *memslot; 29915f36ebdSJason J. Herne int is_dirty = 0; 30015f36ebdSJason J. Herne 30115f36ebdSJason J. Herne mutex_lock(&kvm->slots_lock); 30215f36ebdSJason J. Herne 30315f36ebdSJason J. Herne r = -EINVAL; 30415f36ebdSJason J. Herne if (log->slot >= KVM_USER_MEM_SLOTS) 30515f36ebdSJason J. Herne goto out; 30615f36ebdSJason J. Herne 3079f6b8029SPaolo Bonzini slots = kvm_memslots(kvm); 3089f6b8029SPaolo Bonzini memslot = id_to_memslot(slots, log->slot); 30915f36ebdSJason J. Herne r = -ENOENT; 31015f36ebdSJason J. Herne if (!memslot->dirty_bitmap) 31115f36ebdSJason J. Herne goto out; 31215f36ebdSJason J. Herne 31315f36ebdSJason J. Herne kvm_s390_sync_dirty_log(kvm, memslot); 31415f36ebdSJason J. Herne r = kvm_get_dirty_log(kvm, log, &is_dirty); 31515f36ebdSJason J. Herne if (r) 31615f36ebdSJason J. Herne goto out; 31715f36ebdSJason J. Herne 31815f36ebdSJason J. Herne /* Clear the dirty log */ 31915f36ebdSJason J. Herne if (is_dirty) { 32015f36ebdSJason J. Herne n = kvm_dirty_bitmap_bytes(memslot); 32115f36ebdSJason J. Herne memset(memslot->dirty_bitmap, 0, n); 32215f36ebdSJason J. Herne } 32315f36ebdSJason J. Herne r = 0; 32415f36ebdSJason J. Herne out: 32515f36ebdSJason J. Herne mutex_unlock(&kvm->slots_lock); 32615f36ebdSJason J. Herne return r; 327b0c632dbSHeiko Carstens } 328b0c632dbSHeiko Carstens 329d938dc55SCornelia Huck static int kvm_vm_ioctl_enable_cap(struct kvm *kvm, struct kvm_enable_cap *cap) 330d938dc55SCornelia Huck { 331d938dc55SCornelia Huck int r; 332d938dc55SCornelia Huck 333d938dc55SCornelia Huck if (cap->flags) 334d938dc55SCornelia Huck return -EINVAL; 335d938dc55SCornelia Huck 336d938dc55SCornelia Huck switch (cap->cap) { 33784223598SCornelia Huck case KVM_CAP_S390_IRQCHIP: 338c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "ENABLE: CAP_S390_IRQCHIP"); 33984223598SCornelia Huck kvm->arch.use_irqchip = 1; 34084223598SCornelia Huck r = 0; 34184223598SCornelia Huck break; 3422444b352SDavid Hildenbrand case KVM_CAP_S390_USER_SIGP: 343c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "ENABLE: CAP_S390_USER_SIGP"); 3442444b352SDavid Hildenbrand kvm->arch.user_sigp = 1; 3452444b352SDavid Hildenbrand r = 0; 3462444b352SDavid Hildenbrand break; 34768c55750SEric Farman case KVM_CAP_S390_VECTOR_REGISTERS: 3485967c17bSDavid Hildenbrand mutex_lock(&kvm->lock); 3495967c17bSDavid Hildenbrand if (atomic_read(&kvm->online_vcpus)) { 3505967c17bSDavid Hildenbrand r = -EBUSY; 3515967c17bSDavid Hildenbrand } else if (MACHINE_HAS_VX) { 35218280d8bSMichael Mueller set_kvm_facility(kvm->arch.model.fac->mask, 129); 35318280d8bSMichael Mueller set_kvm_facility(kvm->arch.model.fac->list, 129); 35418280d8bSMichael Mueller r = 0; 35518280d8bSMichael Mueller } else 35618280d8bSMichael Mueller r = -EINVAL; 3575967c17bSDavid Hildenbrand mutex_unlock(&kvm->lock); 358c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "ENABLE: CAP_S390_VECTOR_REGISTERS %s", 359c92ea7b9SChristian Borntraeger r ? "(not available)" : "(success)"); 36068c55750SEric Farman break; 361e44fc8c9SEkaterina Tumanova case KVM_CAP_S390_USER_STSI: 362c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "ENABLE: CAP_S390_USER_STSI"); 363e44fc8c9SEkaterina Tumanova kvm->arch.user_stsi = 1; 364e44fc8c9SEkaterina Tumanova r = 0; 365e44fc8c9SEkaterina Tumanova break; 366d938dc55SCornelia Huck default: 367d938dc55SCornelia Huck r = -EINVAL; 368d938dc55SCornelia Huck break; 369d938dc55SCornelia Huck } 370d938dc55SCornelia Huck return r; 371d938dc55SCornelia Huck } 372d938dc55SCornelia Huck 3738c0a7ce6SDominik Dingel static int kvm_s390_get_mem_control(struct kvm *kvm, struct kvm_device_attr *attr) 3748c0a7ce6SDominik Dingel { 3758c0a7ce6SDominik Dingel int ret; 3768c0a7ce6SDominik Dingel 3778c0a7ce6SDominik Dingel switch (attr->attr) { 3788c0a7ce6SDominik Dingel case KVM_S390_VM_MEM_LIMIT_SIZE: 3798c0a7ce6SDominik Dingel ret = 0; 380c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "QUERY: max guest memory: %lu bytes", 381c92ea7b9SChristian Borntraeger kvm->arch.gmap->asce_end); 3828c0a7ce6SDominik Dingel if (put_user(kvm->arch.gmap->asce_end, (u64 __user *)attr->addr)) 3838c0a7ce6SDominik Dingel ret = -EFAULT; 3848c0a7ce6SDominik Dingel break; 3858c0a7ce6SDominik Dingel default: 3868c0a7ce6SDominik Dingel ret = -ENXIO; 3878c0a7ce6SDominik Dingel break; 3888c0a7ce6SDominik Dingel } 3898c0a7ce6SDominik Dingel return ret; 3908c0a7ce6SDominik Dingel } 3918c0a7ce6SDominik Dingel 3928c0a7ce6SDominik Dingel static int kvm_s390_set_mem_control(struct kvm *kvm, struct kvm_device_attr *attr) 3934f718eabSDominik Dingel { 3944f718eabSDominik Dingel int ret; 3954f718eabSDominik Dingel unsigned int idx; 3964f718eabSDominik Dingel switch (attr->attr) { 3974f718eabSDominik Dingel case KVM_S390_VM_MEM_ENABLE_CMMA: 398e6db1d61SDominik Dingel /* enable CMMA only for z10 and later (EDAT_1) */ 399e6db1d61SDominik Dingel ret = -EINVAL; 400e6db1d61SDominik Dingel if (!MACHINE_IS_LPAR || !MACHINE_HAS_EDAT1) 401e6db1d61SDominik Dingel break; 402e6db1d61SDominik Dingel 4034f718eabSDominik Dingel ret = -EBUSY; 404c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "ENABLE: CMMA support"); 4054f718eabSDominik Dingel mutex_lock(&kvm->lock); 4064f718eabSDominik Dingel if (atomic_read(&kvm->online_vcpus) == 0) { 4074f718eabSDominik Dingel kvm->arch.use_cmma = 1; 4084f718eabSDominik Dingel ret = 0; 4094f718eabSDominik Dingel } 4104f718eabSDominik Dingel mutex_unlock(&kvm->lock); 4114f718eabSDominik Dingel break; 4124f718eabSDominik Dingel case KVM_S390_VM_MEM_CLR_CMMA: 413c3489155SDominik Dingel ret = -EINVAL; 414c3489155SDominik Dingel if (!kvm->arch.use_cmma) 415c3489155SDominik Dingel break; 416c3489155SDominik Dingel 417c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "RESET: CMMA states"); 4184f718eabSDominik Dingel mutex_lock(&kvm->lock); 4194f718eabSDominik Dingel idx = srcu_read_lock(&kvm->srcu); 420a13cff31SDominik Dingel s390_reset_cmma(kvm->arch.gmap->mm); 4214f718eabSDominik Dingel srcu_read_unlock(&kvm->srcu, idx); 4224f718eabSDominik Dingel mutex_unlock(&kvm->lock); 4234f718eabSDominik Dingel ret = 0; 4244f718eabSDominik Dingel break; 4258c0a7ce6SDominik Dingel case KVM_S390_VM_MEM_LIMIT_SIZE: { 4268c0a7ce6SDominik Dingel unsigned long new_limit; 4278c0a7ce6SDominik Dingel 4288c0a7ce6SDominik Dingel if (kvm_is_ucontrol(kvm)) 4298c0a7ce6SDominik Dingel return -EINVAL; 4308c0a7ce6SDominik Dingel 4318c0a7ce6SDominik Dingel if (get_user(new_limit, (u64 __user *)attr->addr)) 4328c0a7ce6SDominik Dingel return -EFAULT; 4338c0a7ce6SDominik Dingel 4348c0a7ce6SDominik Dingel if (new_limit > kvm->arch.gmap->asce_end) 4358c0a7ce6SDominik Dingel return -E2BIG; 4368c0a7ce6SDominik Dingel 4378c0a7ce6SDominik Dingel ret = -EBUSY; 4388c0a7ce6SDominik Dingel mutex_lock(&kvm->lock); 4398c0a7ce6SDominik Dingel if (atomic_read(&kvm->online_vcpus) == 0) { 4408c0a7ce6SDominik Dingel /* gmap_alloc will round the limit up */ 4418c0a7ce6SDominik Dingel struct gmap *new = gmap_alloc(current->mm, new_limit); 4428c0a7ce6SDominik Dingel 4438c0a7ce6SDominik Dingel if (!new) { 4448c0a7ce6SDominik Dingel ret = -ENOMEM; 4458c0a7ce6SDominik Dingel } else { 4468c0a7ce6SDominik Dingel gmap_free(kvm->arch.gmap); 4478c0a7ce6SDominik Dingel new->private = kvm; 4488c0a7ce6SDominik Dingel kvm->arch.gmap = new; 4498c0a7ce6SDominik Dingel ret = 0; 4508c0a7ce6SDominik Dingel } 4518c0a7ce6SDominik Dingel } 4528c0a7ce6SDominik Dingel mutex_unlock(&kvm->lock); 453c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "SET: max guest memory: %lu bytes", new_limit); 4548c0a7ce6SDominik Dingel break; 4558c0a7ce6SDominik Dingel } 4564f718eabSDominik Dingel default: 4574f718eabSDominik Dingel ret = -ENXIO; 4584f718eabSDominik Dingel break; 4594f718eabSDominik Dingel } 4604f718eabSDominik Dingel return ret; 4614f718eabSDominik Dingel } 4624f718eabSDominik Dingel 463a374e892STony Krowiak static void kvm_s390_vcpu_crypto_setup(struct kvm_vcpu *vcpu); 464a374e892STony Krowiak 465a374e892STony Krowiak static int kvm_s390_vm_set_crypto(struct kvm *kvm, struct kvm_device_attr *attr) 466a374e892STony Krowiak { 467a374e892STony Krowiak struct kvm_vcpu *vcpu; 468a374e892STony Krowiak int i; 469a374e892STony Krowiak 4709d8d5786SMichael Mueller if (!test_kvm_facility(kvm, 76)) 471a374e892STony Krowiak return -EINVAL; 472a374e892STony Krowiak 473a374e892STony Krowiak mutex_lock(&kvm->lock); 474a374e892STony Krowiak switch (attr->attr) { 475a374e892STony Krowiak case KVM_S390_VM_CRYPTO_ENABLE_AES_KW: 476a374e892STony Krowiak get_random_bytes( 477a374e892STony Krowiak kvm->arch.crypto.crycb->aes_wrapping_key_mask, 478a374e892STony Krowiak sizeof(kvm->arch.crypto.crycb->aes_wrapping_key_mask)); 479a374e892STony Krowiak kvm->arch.crypto.aes_kw = 1; 480c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "ENABLE: AES keywrapping support"); 481a374e892STony Krowiak break; 482a374e892STony Krowiak case KVM_S390_VM_CRYPTO_ENABLE_DEA_KW: 483a374e892STony Krowiak get_random_bytes( 484a374e892STony Krowiak kvm->arch.crypto.crycb->dea_wrapping_key_mask, 485a374e892STony Krowiak sizeof(kvm->arch.crypto.crycb->dea_wrapping_key_mask)); 486a374e892STony Krowiak kvm->arch.crypto.dea_kw = 1; 487c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "ENABLE: DEA keywrapping support"); 488a374e892STony Krowiak break; 489a374e892STony Krowiak case KVM_S390_VM_CRYPTO_DISABLE_AES_KW: 490a374e892STony Krowiak kvm->arch.crypto.aes_kw = 0; 491a374e892STony Krowiak memset(kvm->arch.crypto.crycb->aes_wrapping_key_mask, 0, 492a374e892STony Krowiak sizeof(kvm->arch.crypto.crycb->aes_wrapping_key_mask)); 493c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "DISABLE: AES keywrapping support"); 494a374e892STony Krowiak break; 495a374e892STony Krowiak case KVM_S390_VM_CRYPTO_DISABLE_DEA_KW: 496a374e892STony Krowiak kvm->arch.crypto.dea_kw = 0; 497a374e892STony Krowiak memset(kvm->arch.crypto.crycb->dea_wrapping_key_mask, 0, 498a374e892STony Krowiak sizeof(kvm->arch.crypto.crycb->dea_wrapping_key_mask)); 499c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "DISABLE: DEA keywrapping support"); 500a374e892STony Krowiak break; 501a374e892STony Krowiak default: 502a374e892STony Krowiak mutex_unlock(&kvm->lock); 503a374e892STony Krowiak return -ENXIO; 504a374e892STony Krowiak } 505a374e892STony Krowiak 506a374e892STony Krowiak kvm_for_each_vcpu(i, vcpu, kvm) { 507a374e892STony Krowiak kvm_s390_vcpu_crypto_setup(vcpu); 508a374e892STony Krowiak exit_sie(vcpu); 509a374e892STony Krowiak } 510a374e892STony Krowiak mutex_unlock(&kvm->lock); 511a374e892STony Krowiak return 0; 512a374e892STony Krowiak } 513a374e892STony Krowiak 51472f25020SJason J. Herne static int kvm_s390_set_tod_high(struct kvm *kvm, struct kvm_device_attr *attr) 51572f25020SJason J. Herne { 51672f25020SJason J. Herne u8 gtod_high; 51772f25020SJason J. Herne 51872f25020SJason J. Herne if (copy_from_user(>od_high, (void __user *)attr->addr, 51972f25020SJason J. Herne sizeof(gtod_high))) 52072f25020SJason J. Herne return -EFAULT; 52172f25020SJason J. Herne 52272f25020SJason J. Herne if (gtod_high != 0) 52372f25020SJason J. Herne return -EINVAL; 52458c383c6SChristian Borntraeger VM_EVENT(kvm, 3, "SET: TOD extension: 0x%x", gtod_high); 52572f25020SJason J. Herne 52672f25020SJason J. Herne return 0; 52772f25020SJason J. Herne } 52872f25020SJason J. Herne 52972f25020SJason J. Herne static int kvm_s390_set_tod_low(struct kvm *kvm, struct kvm_device_attr *attr) 53072f25020SJason J. Herne { 5315a3d883aSDavid Hildenbrand u64 gtod; 53272f25020SJason J. Herne 53372f25020SJason J. Herne if (copy_from_user(>od, (void __user *)attr->addr, sizeof(gtod))) 53472f25020SJason J. Herne return -EFAULT; 53572f25020SJason J. Herne 53625ed1675SDavid Hildenbrand kvm_s390_set_tod_clock(kvm, gtod); 53758c383c6SChristian Borntraeger VM_EVENT(kvm, 3, "SET: TOD base: 0x%llx", gtod); 53872f25020SJason J. Herne return 0; 53972f25020SJason J. Herne } 54072f25020SJason J. Herne 54172f25020SJason J. Herne static int kvm_s390_set_tod(struct kvm *kvm, struct kvm_device_attr *attr) 54272f25020SJason J. Herne { 54372f25020SJason J. Herne int ret; 54472f25020SJason J. Herne 54572f25020SJason J. Herne if (attr->flags) 54672f25020SJason J. Herne return -EINVAL; 54772f25020SJason J. Herne 54872f25020SJason J. Herne switch (attr->attr) { 54972f25020SJason J. Herne case KVM_S390_VM_TOD_HIGH: 55072f25020SJason J. Herne ret = kvm_s390_set_tod_high(kvm, attr); 55172f25020SJason J. Herne break; 55272f25020SJason J. Herne case KVM_S390_VM_TOD_LOW: 55372f25020SJason J. Herne ret = kvm_s390_set_tod_low(kvm, attr); 55472f25020SJason J. Herne break; 55572f25020SJason J. Herne default: 55672f25020SJason J. Herne ret = -ENXIO; 55772f25020SJason J. Herne break; 55872f25020SJason J. Herne } 55972f25020SJason J. Herne return ret; 56072f25020SJason J. Herne } 56172f25020SJason J. Herne 56272f25020SJason J. Herne static int kvm_s390_get_tod_high(struct kvm *kvm, struct kvm_device_attr *attr) 56372f25020SJason J. Herne { 56472f25020SJason J. Herne u8 gtod_high = 0; 56572f25020SJason J. Herne 56672f25020SJason J. Herne if (copy_to_user((void __user *)attr->addr, >od_high, 56772f25020SJason J. Herne sizeof(gtod_high))) 56872f25020SJason J. Herne return -EFAULT; 56958c383c6SChristian Borntraeger VM_EVENT(kvm, 3, "QUERY: TOD extension: 0x%x", gtod_high); 57072f25020SJason J. Herne 57172f25020SJason J. Herne return 0; 57272f25020SJason J. Herne } 57372f25020SJason J. Herne 57472f25020SJason J. Herne static int kvm_s390_get_tod_low(struct kvm *kvm, struct kvm_device_attr *attr) 57572f25020SJason J. Herne { 5765a3d883aSDavid Hildenbrand u64 gtod; 57772f25020SJason J. Herne 57860417fccSDavid Hildenbrand gtod = kvm_s390_get_tod_clock_fast(kvm); 57972f25020SJason J. Herne if (copy_to_user((void __user *)attr->addr, >od, sizeof(gtod))) 58072f25020SJason J. Herne return -EFAULT; 58158c383c6SChristian Borntraeger VM_EVENT(kvm, 3, "QUERY: TOD base: 0x%llx", gtod); 58272f25020SJason J. Herne 58372f25020SJason J. Herne return 0; 58472f25020SJason J. Herne } 58572f25020SJason J. Herne 58672f25020SJason J. Herne static int kvm_s390_get_tod(struct kvm *kvm, struct kvm_device_attr *attr) 58772f25020SJason J. Herne { 58872f25020SJason J. Herne int ret; 58972f25020SJason J. Herne 59072f25020SJason J. Herne if (attr->flags) 59172f25020SJason J. Herne return -EINVAL; 59272f25020SJason J. Herne 59372f25020SJason J. Herne switch (attr->attr) { 59472f25020SJason J. Herne case KVM_S390_VM_TOD_HIGH: 59572f25020SJason J. Herne ret = kvm_s390_get_tod_high(kvm, attr); 59672f25020SJason J. Herne break; 59772f25020SJason J. Herne case KVM_S390_VM_TOD_LOW: 59872f25020SJason J. Herne ret = kvm_s390_get_tod_low(kvm, attr); 59972f25020SJason J. Herne break; 60072f25020SJason J. Herne default: 60172f25020SJason J. Herne ret = -ENXIO; 60272f25020SJason J. Herne break; 60372f25020SJason J. Herne } 60472f25020SJason J. Herne return ret; 60572f25020SJason J. Herne } 60672f25020SJason J. Herne 607658b6edaSMichael Mueller static int kvm_s390_set_processor(struct kvm *kvm, struct kvm_device_attr *attr) 608658b6edaSMichael Mueller { 609658b6edaSMichael Mueller struct kvm_s390_vm_cpu_processor *proc; 610658b6edaSMichael Mueller int ret = 0; 611658b6edaSMichael Mueller 612658b6edaSMichael Mueller mutex_lock(&kvm->lock); 613658b6edaSMichael Mueller if (atomic_read(&kvm->online_vcpus)) { 614658b6edaSMichael Mueller ret = -EBUSY; 615658b6edaSMichael Mueller goto out; 616658b6edaSMichael Mueller } 617658b6edaSMichael Mueller proc = kzalloc(sizeof(*proc), GFP_KERNEL); 618658b6edaSMichael Mueller if (!proc) { 619658b6edaSMichael Mueller ret = -ENOMEM; 620658b6edaSMichael Mueller goto out; 621658b6edaSMichael Mueller } 622658b6edaSMichael Mueller if (!copy_from_user(proc, (void __user *)attr->addr, 623658b6edaSMichael Mueller sizeof(*proc))) { 624658b6edaSMichael Mueller memcpy(&kvm->arch.model.cpu_id, &proc->cpuid, 625658b6edaSMichael Mueller sizeof(struct cpuid)); 626658b6edaSMichael Mueller kvm->arch.model.ibc = proc->ibc; 627981467c9SMichael Mueller memcpy(kvm->arch.model.fac->list, proc->fac_list, 628658b6edaSMichael Mueller S390_ARCH_FAC_LIST_SIZE_BYTE); 629658b6edaSMichael Mueller } else 630658b6edaSMichael Mueller ret = -EFAULT; 631658b6edaSMichael Mueller kfree(proc); 632658b6edaSMichael Mueller out: 633658b6edaSMichael Mueller mutex_unlock(&kvm->lock); 634658b6edaSMichael Mueller return ret; 635658b6edaSMichael Mueller } 636658b6edaSMichael Mueller 637658b6edaSMichael Mueller static int kvm_s390_set_cpu_model(struct kvm *kvm, struct kvm_device_attr *attr) 638658b6edaSMichael Mueller { 639658b6edaSMichael Mueller int ret = -ENXIO; 640658b6edaSMichael Mueller 641658b6edaSMichael Mueller switch (attr->attr) { 642658b6edaSMichael Mueller case KVM_S390_VM_CPU_PROCESSOR: 643658b6edaSMichael Mueller ret = kvm_s390_set_processor(kvm, attr); 644658b6edaSMichael Mueller break; 645658b6edaSMichael Mueller } 646658b6edaSMichael Mueller return ret; 647658b6edaSMichael Mueller } 648658b6edaSMichael Mueller 649658b6edaSMichael Mueller static int kvm_s390_get_processor(struct kvm *kvm, struct kvm_device_attr *attr) 650658b6edaSMichael Mueller { 651658b6edaSMichael Mueller struct kvm_s390_vm_cpu_processor *proc; 652658b6edaSMichael Mueller int ret = 0; 653658b6edaSMichael Mueller 654658b6edaSMichael Mueller proc = kzalloc(sizeof(*proc), GFP_KERNEL); 655658b6edaSMichael Mueller if (!proc) { 656658b6edaSMichael Mueller ret = -ENOMEM; 657658b6edaSMichael Mueller goto out; 658658b6edaSMichael Mueller } 659658b6edaSMichael Mueller memcpy(&proc->cpuid, &kvm->arch.model.cpu_id, sizeof(struct cpuid)); 660658b6edaSMichael Mueller proc->ibc = kvm->arch.model.ibc; 661981467c9SMichael Mueller memcpy(&proc->fac_list, kvm->arch.model.fac->list, S390_ARCH_FAC_LIST_SIZE_BYTE); 662658b6edaSMichael Mueller if (copy_to_user((void __user *)attr->addr, proc, sizeof(*proc))) 663658b6edaSMichael Mueller ret = -EFAULT; 664658b6edaSMichael Mueller kfree(proc); 665658b6edaSMichael Mueller out: 666658b6edaSMichael Mueller return ret; 667658b6edaSMichael Mueller } 668658b6edaSMichael Mueller 669658b6edaSMichael Mueller static int kvm_s390_get_machine(struct kvm *kvm, struct kvm_device_attr *attr) 670658b6edaSMichael Mueller { 671658b6edaSMichael Mueller struct kvm_s390_vm_cpu_machine *mach; 672658b6edaSMichael Mueller int ret = 0; 673658b6edaSMichael Mueller 674658b6edaSMichael Mueller mach = kzalloc(sizeof(*mach), GFP_KERNEL); 675658b6edaSMichael Mueller if (!mach) { 676658b6edaSMichael Mueller ret = -ENOMEM; 677658b6edaSMichael Mueller goto out; 678658b6edaSMichael Mueller } 679658b6edaSMichael Mueller get_cpu_id((struct cpuid *) &mach->cpuid); 68037c5f6c8SDavid Hildenbrand mach->ibc = sclp.ibc; 681981467c9SMichael Mueller memcpy(&mach->fac_mask, kvm->arch.model.fac->mask, 682981467c9SMichael Mueller S390_ARCH_FAC_LIST_SIZE_BYTE); 683658b6edaSMichael Mueller memcpy((unsigned long *)&mach->fac_list, S390_lowcore.stfle_fac_list, 68494422ee8SMichael Mueller S390_ARCH_FAC_LIST_SIZE_BYTE); 685658b6edaSMichael Mueller if (copy_to_user((void __user *)attr->addr, mach, sizeof(*mach))) 686658b6edaSMichael Mueller ret = -EFAULT; 687658b6edaSMichael Mueller kfree(mach); 688658b6edaSMichael Mueller out: 689658b6edaSMichael Mueller return ret; 690658b6edaSMichael Mueller } 691658b6edaSMichael Mueller 692658b6edaSMichael Mueller static int kvm_s390_get_cpu_model(struct kvm *kvm, struct kvm_device_attr *attr) 693658b6edaSMichael Mueller { 694658b6edaSMichael Mueller int ret = -ENXIO; 695658b6edaSMichael Mueller 696658b6edaSMichael Mueller switch (attr->attr) { 697658b6edaSMichael Mueller case KVM_S390_VM_CPU_PROCESSOR: 698658b6edaSMichael Mueller ret = kvm_s390_get_processor(kvm, attr); 699658b6edaSMichael Mueller break; 700658b6edaSMichael Mueller case KVM_S390_VM_CPU_MACHINE: 701658b6edaSMichael Mueller ret = kvm_s390_get_machine(kvm, attr); 702658b6edaSMichael Mueller break; 703658b6edaSMichael Mueller } 704658b6edaSMichael Mueller return ret; 705658b6edaSMichael Mueller } 706658b6edaSMichael Mueller 707f2061656SDominik Dingel static int kvm_s390_vm_set_attr(struct kvm *kvm, struct kvm_device_attr *attr) 708f2061656SDominik Dingel { 709f2061656SDominik Dingel int ret; 710f2061656SDominik Dingel 711f2061656SDominik Dingel switch (attr->group) { 7124f718eabSDominik Dingel case KVM_S390_VM_MEM_CTRL: 7138c0a7ce6SDominik Dingel ret = kvm_s390_set_mem_control(kvm, attr); 7144f718eabSDominik Dingel break; 71572f25020SJason J. Herne case KVM_S390_VM_TOD: 71672f25020SJason J. Herne ret = kvm_s390_set_tod(kvm, attr); 71772f25020SJason J. Herne break; 718658b6edaSMichael Mueller case KVM_S390_VM_CPU_MODEL: 719658b6edaSMichael Mueller ret = kvm_s390_set_cpu_model(kvm, attr); 720658b6edaSMichael Mueller break; 721a374e892STony Krowiak case KVM_S390_VM_CRYPTO: 722a374e892STony Krowiak ret = kvm_s390_vm_set_crypto(kvm, attr); 723a374e892STony Krowiak break; 724f2061656SDominik Dingel default: 725f2061656SDominik Dingel ret = -ENXIO; 726f2061656SDominik Dingel break; 727f2061656SDominik Dingel } 728f2061656SDominik Dingel 729f2061656SDominik Dingel return ret; 730f2061656SDominik Dingel } 731f2061656SDominik Dingel 732f2061656SDominik Dingel static int kvm_s390_vm_get_attr(struct kvm *kvm, struct kvm_device_attr *attr) 733f2061656SDominik Dingel { 7348c0a7ce6SDominik Dingel int ret; 7358c0a7ce6SDominik Dingel 7368c0a7ce6SDominik Dingel switch (attr->group) { 7378c0a7ce6SDominik Dingel case KVM_S390_VM_MEM_CTRL: 7388c0a7ce6SDominik Dingel ret = kvm_s390_get_mem_control(kvm, attr); 7398c0a7ce6SDominik Dingel break; 74072f25020SJason J. Herne case KVM_S390_VM_TOD: 74172f25020SJason J. Herne ret = kvm_s390_get_tod(kvm, attr); 74272f25020SJason J. Herne break; 743658b6edaSMichael Mueller case KVM_S390_VM_CPU_MODEL: 744658b6edaSMichael Mueller ret = kvm_s390_get_cpu_model(kvm, attr); 745658b6edaSMichael Mueller break; 7468c0a7ce6SDominik Dingel default: 7478c0a7ce6SDominik Dingel ret = -ENXIO; 7488c0a7ce6SDominik Dingel break; 7498c0a7ce6SDominik Dingel } 7508c0a7ce6SDominik Dingel 7518c0a7ce6SDominik Dingel return ret; 752f2061656SDominik Dingel } 753f2061656SDominik Dingel 754f2061656SDominik Dingel static int kvm_s390_vm_has_attr(struct kvm *kvm, struct kvm_device_attr *attr) 755f2061656SDominik Dingel { 756f2061656SDominik Dingel int ret; 757f2061656SDominik Dingel 758f2061656SDominik Dingel switch (attr->group) { 7594f718eabSDominik Dingel case KVM_S390_VM_MEM_CTRL: 7604f718eabSDominik Dingel switch (attr->attr) { 7614f718eabSDominik Dingel case KVM_S390_VM_MEM_ENABLE_CMMA: 7624f718eabSDominik Dingel case KVM_S390_VM_MEM_CLR_CMMA: 7638c0a7ce6SDominik Dingel case KVM_S390_VM_MEM_LIMIT_SIZE: 7644f718eabSDominik Dingel ret = 0; 7654f718eabSDominik Dingel break; 7664f718eabSDominik Dingel default: 7674f718eabSDominik Dingel ret = -ENXIO; 7684f718eabSDominik Dingel break; 7694f718eabSDominik Dingel } 7704f718eabSDominik Dingel break; 77172f25020SJason J. Herne case KVM_S390_VM_TOD: 77272f25020SJason J. Herne switch (attr->attr) { 77372f25020SJason J. Herne case KVM_S390_VM_TOD_LOW: 77472f25020SJason J. Herne case KVM_S390_VM_TOD_HIGH: 77572f25020SJason J. Herne ret = 0; 77672f25020SJason J. Herne break; 77772f25020SJason J. Herne default: 77872f25020SJason J. Herne ret = -ENXIO; 77972f25020SJason J. Herne break; 78072f25020SJason J. Herne } 78172f25020SJason J. Herne break; 782658b6edaSMichael Mueller case KVM_S390_VM_CPU_MODEL: 783658b6edaSMichael Mueller switch (attr->attr) { 784658b6edaSMichael Mueller case KVM_S390_VM_CPU_PROCESSOR: 785658b6edaSMichael Mueller case KVM_S390_VM_CPU_MACHINE: 786658b6edaSMichael Mueller ret = 0; 787658b6edaSMichael Mueller break; 788658b6edaSMichael Mueller default: 789658b6edaSMichael Mueller ret = -ENXIO; 790658b6edaSMichael Mueller break; 791658b6edaSMichael Mueller } 792658b6edaSMichael Mueller break; 793a374e892STony Krowiak case KVM_S390_VM_CRYPTO: 794a374e892STony Krowiak switch (attr->attr) { 795a374e892STony Krowiak case KVM_S390_VM_CRYPTO_ENABLE_AES_KW: 796a374e892STony Krowiak case KVM_S390_VM_CRYPTO_ENABLE_DEA_KW: 797a374e892STony Krowiak case KVM_S390_VM_CRYPTO_DISABLE_AES_KW: 798a374e892STony Krowiak case KVM_S390_VM_CRYPTO_DISABLE_DEA_KW: 799a374e892STony Krowiak ret = 0; 800a374e892STony Krowiak break; 801a374e892STony Krowiak default: 802a374e892STony Krowiak ret = -ENXIO; 803a374e892STony Krowiak break; 804a374e892STony Krowiak } 805a374e892STony Krowiak break; 806f2061656SDominik Dingel default: 807f2061656SDominik Dingel ret = -ENXIO; 808f2061656SDominik Dingel break; 809f2061656SDominik Dingel } 810f2061656SDominik Dingel 811f2061656SDominik Dingel return ret; 812f2061656SDominik Dingel } 813f2061656SDominik Dingel 81430ee2a98SJason J. Herne static long kvm_s390_get_skeys(struct kvm *kvm, struct kvm_s390_skeys *args) 81530ee2a98SJason J. Herne { 81630ee2a98SJason J. Herne uint8_t *keys; 81730ee2a98SJason J. Herne uint64_t hva; 81830ee2a98SJason J. Herne unsigned long curkey; 81930ee2a98SJason J. Herne int i, r = 0; 82030ee2a98SJason J. Herne 82130ee2a98SJason J. Herne if (args->flags != 0) 82230ee2a98SJason J. Herne return -EINVAL; 82330ee2a98SJason J. Herne 82430ee2a98SJason J. Herne /* Is this guest using storage keys? */ 82530ee2a98SJason J. Herne if (!mm_use_skey(current->mm)) 82630ee2a98SJason J. Herne return KVM_S390_GET_SKEYS_NONE; 82730ee2a98SJason J. Herne 82830ee2a98SJason J. Herne /* Enforce sane limit on memory allocation */ 82930ee2a98SJason J. Herne if (args->count < 1 || args->count > KVM_S390_SKEYS_MAX) 83030ee2a98SJason J. Herne return -EINVAL; 83130ee2a98SJason J. Herne 83230ee2a98SJason J. Herne keys = kmalloc_array(args->count, sizeof(uint8_t), 83330ee2a98SJason J. Herne GFP_KERNEL | __GFP_NOWARN); 83430ee2a98SJason J. Herne if (!keys) 83530ee2a98SJason J. Herne keys = vmalloc(sizeof(uint8_t) * args->count); 83630ee2a98SJason J. Herne if (!keys) 83730ee2a98SJason J. Herne return -ENOMEM; 83830ee2a98SJason J. Herne 83930ee2a98SJason J. Herne for (i = 0; i < args->count; i++) { 84030ee2a98SJason J. Herne hva = gfn_to_hva(kvm, args->start_gfn + i); 84130ee2a98SJason J. Herne if (kvm_is_error_hva(hva)) { 84230ee2a98SJason J. Herne r = -EFAULT; 84330ee2a98SJason J. Herne goto out; 84430ee2a98SJason J. Herne } 84530ee2a98SJason J. Herne 84630ee2a98SJason J. Herne curkey = get_guest_storage_key(current->mm, hva); 84730ee2a98SJason J. Herne if (IS_ERR_VALUE(curkey)) { 84830ee2a98SJason J. Herne r = curkey; 84930ee2a98SJason J. Herne goto out; 85030ee2a98SJason J. Herne } 85130ee2a98SJason J. Herne keys[i] = curkey; 85230ee2a98SJason J. Herne } 85330ee2a98SJason J. Herne 85430ee2a98SJason J. Herne r = copy_to_user((uint8_t __user *)args->skeydata_addr, keys, 85530ee2a98SJason J. Herne sizeof(uint8_t) * args->count); 85630ee2a98SJason J. Herne if (r) 85730ee2a98SJason J. Herne r = -EFAULT; 85830ee2a98SJason J. Herne out: 85930ee2a98SJason J. Herne kvfree(keys); 86030ee2a98SJason J. Herne return r; 86130ee2a98SJason J. Herne } 86230ee2a98SJason J. Herne 86330ee2a98SJason J. Herne static long kvm_s390_set_skeys(struct kvm *kvm, struct kvm_s390_skeys *args) 86430ee2a98SJason J. Herne { 86530ee2a98SJason J. Herne uint8_t *keys; 86630ee2a98SJason J. Herne uint64_t hva; 86730ee2a98SJason J. Herne int i, r = 0; 86830ee2a98SJason J. Herne 86930ee2a98SJason J. Herne if (args->flags != 0) 87030ee2a98SJason J. Herne return -EINVAL; 87130ee2a98SJason J. Herne 87230ee2a98SJason J. Herne /* Enforce sane limit on memory allocation */ 87330ee2a98SJason J. Herne if (args->count < 1 || args->count > KVM_S390_SKEYS_MAX) 87430ee2a98SJason J. Herne return -EINVAL; 87530ee2a98SJason J. Herne 87630ee2a98SJason J. Herne keys = kmalloc_array(args->count, sizeof(uint8_t), 87730ee2a98SJason J. Herne GFP_KERNEL | __GFP_NOWARN); 87830ee2a98SJason J. Herne if (!keys) 87930ee2a98SJason J. Herne keys = vmalloc(sizeof(uint8_t) * args->count); 88030ee2a98SJason J. Herne if (!keys) 88130ee2a98SJason J. Herne return -ENOMEM; 88230ee2a98SJason J. Herne 88330ee2a98SJason J. Herne r = copy_from_user(keys, (uint8_t __user *)args->skeydata_addr, 88430ee2a98SJason J. Herne sizeof(uint8_t) * args->count); 88530ee2a98SJason J. Herne if (r) { 88630ee2a98SJason J. Herne r = -EFAULT; 88730ee2a98SJason J. Herne goto out; 88830ee2a98SJason J. Herne } 88930ee2a98SJason J. Herne 89030ee2a98SJason J. Herne /* Enable storage key handling for the guest */ 89114d4a425SDominik Dingel r = s390_enable_skey(); 89214d4a425SDominik Dingel if (r) 89314d4a425SDominik Dingel goto out; 89430ee2a98SJason J. Herne 89530ee2a98SJason J. Herne for (i = 0; i < args->count; i++) { 89630ee2a98SJason J. Herne hva = gfn_to_hva(kvm, args->start_gfn + i); 89730ee2a98SJason J. Herne if (kvm_is_error_hva(hva)) { 89830ee2a98SJason J. Herne r = -EFAULT; 89930ee2a98SJason J. Herne goto out; 90030ee2a98SJason J. Herne } 90130ee2a98SJason J. Herne 90230ee2a98SJason J. Herne /* Lowest order bit is reserved */ 90330ee2a98SJason J. Herne if (keys[i] & 0x01) { 90430ee2a98SJason J. Herne r = -EINVAL; 90530ee2a98SJason J. Herne goto out; 90630ee2a98SJason J. Herne } 90730ee2a98SJason J. Herne 90830ee2a98SJason J. Herne r = set_guest_storage_key(current->mm, hva, 90930ee2a98SJason J. Herne (unsigned long)keys[i], 0); 91030ee2a98SJason J. Herne if (r) 91130ee2a98SJason J. Herne goto out; 91230ee2a98SJason J. Herne } 91330ee2a98SJason J. Herne out: 91430ee2a98SJason J. Herne kvfree(keys); 91530ee2a98SJason J. Herne return r; 91630ee2a98SJason J. Herne } 91730ee2a98SJason J. Herne 918b0c632dbSHeiko Carstens long kvm_arch_vm_ioctl(struct file *filp, 919b0c632dbSHeiko Carstens unsigned int ioctl, unsigned long arg) 920b0c632dbSHeiko Carstens { 921b0c632dbSHeiko Carstens struct kvm *kvm = filp->private_data; 922b0c632dbSHeiko Carstens void __user *argp = (void __user *)arg; 923f2061656SDominik Dingel struct kvm_device_attr attr; 924b0c632dbSHeiko Carstens int r; 925b0c632dbSHeiko Carstens 926b0c632dbSHeiko Carstens switch (ioctl) { 927ba5c1e9bSCarsten Otte case KVM_S390_INTERRUPT: { 928ba5c1e9bSCarsten Otte struct kvm_s390_interrupt s390int; 929ba5c1e9bSCarsten Otte 930ba5c1e9bSCarsten Otte r = -EFAULT; 931ba5c1e9bSCarsten Otte if (copy_from_user(&s390int, argp, sizeof(s390int))) 932ba5c1e9bSCarsten Otte break; 933ba5c1e9bSCarsten Otte r = kvm_s390_inject_vm(kvm, &s390int); 934ba5c1e9bSCarsten Otte break; 935ba5c1e9bSCarsten Otte } 936d938dc55SCornelia Huck case KVM_ENABLE_CAP: { 937d938dc55SCornelia Huck struct kvm_enable_cap cap; 938d938dc55SCornelia Huck r = -EFAULT; 939d938dc55SCornelia Huck if (copy_from_user(&cap, argp, sizeof(cap))) 940d938dc55SCornelia Huck break; 941d938dc55SCornelia Huck r = kvm_vm_ioctl_enable_cap(kvm, &cap); 942d938dc55SCornelia Huck break; 943d938dc55SCornelia Huck } 94484223598SCornelia Huck case KVM_CREATE_IRQCHIP: { 94584223598SCornelia Huck struct kvm_irq_routing_entry routing; 94684223598SCornelia Huck 94784223598SCornelia Huck r = -EINVAL; 94884223598SCornelia Huck if (kvm->arch.use_irqchip) { 94984223598SCornelia Huck /* Set up dummy routing. */ 95084223598SCornelia Huck memset(&routing, 0, sizeof(routing)); 951152b2839SNicholas Krause r = kvm_set_irq_routing(kvm, &routing, 0, 0); 95284223598SCornelia Huck } 95384223598SCornelia Huck break; 95484223598SCornelia Huck } 955f2061656SDominik Dingel case KVM_SET_DEVICE_ATTR: { 956f2061656SDominik Dingel r = -EFAULT; 957f2061656SDominik Dingel if (copy_from_user(&attr, (void __user *)arg, sizeof(attr))) 958f2061656SDominik Dingel break; 959f2061656SDominik Dingel r = kvm_s390_vm_set_attr(kvm, &attr); 960f2061656SDominik Dingel break; 961f2061656SDominik Dingel } 962f2061656SDominik Dingel case KVM_GET_DEVICE_ATTR: { 963f2061656SDominik Dingel r = -EFAULT; 964f2061656SDominik Dingel if (copy_from_user(&attr, (void __user *)arg, sizeof(attr))) 965f2061656SDominik Dingel break; 966f2061656SDominik Dingel r = kvm_s390_vm_get_attr(kvm, &attr); 967f2061656SDominik Dingel break; 968f2061656SDominik Dingel } 969f2061656SDominik Dingel case KVM_HAS_DEVICE_ATTR: { 970f2061656SDominik Dingel r = -EFAULT; 971f2061656SDominik Dingel if (copy_from_user(&attr, (void __user *)arg, sizeof(attr))) 972f2061656SDominik Dingel break; 973f2061656SDominik Dingel r = kvm_s390_vm_has_attr(kvm, &attr); 974f2061656SDominik Dingel break; 975f2061656SDominik Dingel } 97630ee2a98SJason J. Herne case KVM_S390_GET_SKEYS: { 97730ee2a98SJason J. Herne struct kvm_s390_skeys args; 97830ee2a98SJason J. Herne 97930ee2a98SJason J. Herne r = -EFAULT; 98030ee2a98SJason J. Herne if (copy_from_user(&args, argp, 98130ee2a98SJason J. Herne sizeof(struct kvm_s390_skeys))) 98230ee2a98SJason J. Herne break; 98330ee2a98SJason J. Herne r = kvm_s390_get_skeys(kvm, &args); 98430ee2a98SJason J. Herne break; 98530ee2a98SJason J. Herne } 98630ee2a98SJason J. Herne case KVM_S390_SET_SKEYS: { 98730ee2a98SJason J. Herne struct kvm_s390_skeys args; 98830ee2a98SJason J. Herne 98930ee2a98SJason J. Herne r = -EFAULT; 99030ee2a98SJason J. Herne if (copy_from_user(&args, argp, 99130ee2a98SJason J. Herne sizeof(struct kvm_s390_skeys))) 99230ee2a98SJason J. Herne break; 99330ee2a98SJason J. Herne r = kvm_s390_set_skeys(kvm, &args); 99430ee2a98SJason J. Herne break; 99530ee2a98SJason J. Herne } 996b0c632dbSHeiko Carstens default: 997367e1319SAvi Kivity r = -ENOTTY; 998b0c632dbSHeiko Carstens } 999b0c632dbSHeiko Carstens 1000b0c632dbSHeiko Carstens return r; 1001b0c632dbSHeiko Carstens } 1002b0c632dbSHeiko Carstens 100345c9b47cSTony Krowiak static int kvm_s390_query_ap_config(u8 *config) 100445c9b47cSTony Krowiak { 100545c9b47cSTony Krowiak u32 fcn_code = 0x04000000UL; 100686044c8cSChristian Borntraeger u32 cc = 0; 100745c9b47cSTony Krowiak 100886044c8cSChristian Borntraeger memset(config, 0, 128); 100945c9b47cSTony Krowiak asm volatile( 101045c9b47cSTony Krowiak "lgr 0,%1\n" 101145c9b47cSTony Krowiak "lgr 2,%2\n" 101245c9b47cSTony Krowiak ".long 0xb2af0000\n" /* PQAP(QCI) */ 101386044c8cSChristian Borntraeger "0: ipm %0\n" 101445c9b47cSTony Krowiak "srl %0,28\n" 101586044c8cSChristian Borntraeger "1:\n" 101686044c8cSChristian Borntraeger EX_TABLE(0b, 1b) 101786044c8cSChristian Borntraeger : "+r" (cc) 101845c9b47cSTony Krowiak : "r" (fcn_code), "r" (config) 101945c9b47cSTony Krowiak : "cc", "0", "2", "memory" 102045c9b47cSTony Krowiak ); 102145c9b47cSTony Krowiak 102245c9b47cSTony Krowiak return cc; 102345c9b47cSTony Krowiak } 102445c9b47cSTony Krowiak 102545c9b47cSTony Krowiak static int kvm_s390_apxa_installed(void) 102645c9b47cSTony Krowiak { 102745c9b47cSTony Krowiak u8 config[128]; 102845c9b47cSTony Krowiak int cc; 102945c9b47cSTony Krowiak 1030*a6aacc3fSHeiko Carstens if (test_facility(12)) { 103145c9b47cSTony Krowiak cc = kvm_s390_query_ap_config(config); 103245c9b47cSTony Krowiak 103345c9b47cSTony Krowiak if (cc) 103445c9b47cSTony Krowiak pr_err("PQAP(QCI) failed with cc=%d", cc); 103545c9b47cSTony Krowiak else 103645c9b47cSTony Krowiak return config[0] & 0x40; 103745c9b47cSTony Krowiak } 103845c9b47cSTony Krowiak 103945c9b47cSTony Krowiak return 0; 104045c9b47cSTony Krowiak } 104145c9b47cSTony Krowiak 104245c9b47cSTony Krowiak static void kvm_s390_set_crycb_format(struct kvm *kvm) 104345c9b47cSTony Krowiak { 104445c9b47cSTony Krowiak kvm->arch.crypto.crycbd = (__u32)(unsigned long) kvm->arch.crypto.crycb; 104545c9b47cSTony Krowiak 104645c9b47cSTony Krowiak if (kvm_s390_apxa_installed()) 104745c9b47cSTony Krowiak kvm->arch.crypto.crycbd |= CRYCB_FORMAT2; 104845c9b47cSTony Krowiak else 104945c9b47cSTony Krowiak kvm->arch.crypto.crycbd |= CRYCB_FORMAT1; 105045c9b47cSTony Krowiak } 105145c9b47cSTony Krowiak 10529d8d5786SMichael Mueller static void kvm_s390_get_cpu_id(struct cpuid *cpu_id) 10539d8d5786SMichael Mueller { 10549d8d5786SMichael Mueller get_cpu_id(cpu_id); 10559d8d5786SMichael Mueller cpu_id->version = 0xff; 10569d8d5786SMichael Mueller } 10579d8d5786SMichael Mueller 10585102ee87STony Krowiak static int kvm_s390_crypto_init(struct kvm *kvm) 10595102ee87STony Krowiak { 10609d8d5786SMichael Mueller if (!test_kvm_facility(kvm, 76)) 10615102ee87STony Krowiak return 0; 10625102ee87STony Krowiak 10635102ee87STony Krowiak kvm->arch.crypto.crycb = kzalloc(sizeof(*kvm->arch.crypto.crycb), 10645102ee87STony Krowiak GFP_KERNEL | GFP_DMA); 10655102ee87STony Krowiak if (!kvm->arch.crypto.crycb) 10665102ee87STony Krowiak return -ENOMEM; 10675102ee87STony Krowiak 106845c9b47cSTony Krowiak kvm_s390_set_crycb_format(kvm); 10695102ee87STony Krowiak 1070ed6f76b4STony Krowiak /* Enable AES/DEA protected key functions by default */ 1071ed6f76b4STony Krowiak kvm->arch.crypto.aes_kw = 1; 1072ed6f76b4STony Krowiak kvm->arch.crypto.dea_kw = 1; 1073ed6f76b4STony Krowiak get_random_bytes(kvm->arch.crypto.crycb->aes_wrapping_key_mask, 1074ed6f76b4STony Krowiak sizeof(kvm->arch.crypto.crycb->aes_wrapping_key_mask)); 1075ed6f76b4STony Krowiak get_random_bytes(kvm->arch.crypto.crycb->dea_wrapping_key_mask, 1076ed6f76b4STony Krowiak sizeof(kvm->arch.crypto.crycb->dea_wrapping_key_mask)); 1077a374e892STony Krowiak 10785102ee87STony Krowiak return 0; 10795102ee87STony Krowiak } 10805102ee87STony Krowiak 10817d43bafcSEugene (jno) Dvurechenski static void sca_dispose(struct kvm *kvm) 10827d43bafcSEugene (jno) Dvurechenski { 10837d43bafcSEugene (jno) Dvurechenski if (kvm->arch.use_esca) 10845e044315SEugene (jno) Dvurechenski free_pages_exact(kvm->arch.sca, sizeof(struct esca_block)); 10857d43bafcSEugene (jno) Dvurechenski else 10867d43bafcSEugene (jno) Dvurechenski free_page((unsigned long)(kvm->arch.sca)); 10877d43bafcSEugene (jno) Dvurechenski kvm->arch.sca = NULL; 10887d43bafcSEugene (jno) Dvurechenski } 10897d43bafcSEugene (jno) Dvurechenski 1090e08b9637SCarsten Otte int kvm_arch_init_vm(struct kvm *kvm, unsigned long type) 1091b0c632dbSHeiko Carstens { 10929d8d5786SMichael Mueller int i, rc; 1093b0c632dbSHeiko Carstens char debug_name[16]; 1094f6c137ffSChristian Borntraeger static unsigned long sca_offset; 1095b0c632dbSHeiko Carstens 1096e08b9637SCarsten Otte rc = -EINVAL; 1097e08b9637SCarsten Otte #ifdef CONFIG_KVM_S390_UCONTROL 1098e08b9637SCarsten Otte if (type & ~KVM_VM_S390_UCONTROL) 1099e08b9637SCarsten Otte goto out_err; 1100e08b9637SCarsten Otte if ((type & KVM_VM_S390_UCONTROL) && (!capable(CAP_SYS_ADMIN))) 1101e08b9637SCarsten Otte goto out_err; 1102e08b9637SCarsten Otte #else 1103e08b9637SCarsten Otte if (type) 1104e08b9637SCarsten Otte goto out_err; 1105e08b9637SCarsten Otte #endif 1106e08b9637SCarsten Otte 1107b0c632dbSHeiko Carstens rc = s390_enable_sie(); 1108b0c632dbSHeiko Carstens if (rc) 1109d89f5effSJan Kiszka goto out_err; 1110b0c632dbSHeiko Carstens 1111b290411aSCarsten Otte rc = -ENOMEM; 1112b290411aSCarsten Otte 11137d43bafcSEugene (jno) Dvurechenski kvm->arch.use_esca = 0; /* start with basic SCA */ 11145e044315SEugene (jno) Dvurechenski rwlock_init(&kvm->arch.sca_lock); 1115bc784cceSEugene (jno) Dvurechenski kvm->arch.sca = (struct bsca_block *) get_zeroed_page(GFP_KERNEL); 1116b0c632dbSHeiko Carstens if (!kvm->arch.sca) 1117d89f5effSJan Kiszka goto out_err; 1118f6c137ffSChristian Borntraeger spin_lock(&kvm_lock); 1119c5c2c393SDavid Hildenbrand sca_offset += 16; 1120bc784cceSEugene (jno) Dvurechenski if (sca_offset + sizeof(struct bsca_block) > PAGE_SIZE) 1121c5c2c393SDavid Hildenbrand sca_offset = 0; 1122bc784cceSEugene (jno) Dvurechenski kvm->arch.sca = (struct bsca_block *) 1123bc784cceSEugene (jno) Dvurechenski ((char *) kvm->arch.sca + sca_offset); 1124f6c137ffSChristian Borntraeger spin_unlock(&kvm_lock); 1125b0c632dbSHeiko Carstens 1126b0c632dbSHeiko Carstens sprintf(debug_name, "kvm-%u", current->pid); 1127b0c632dbSHeiko Carstens 11281cb9cf72SChristian Borntraeger kvm->arch.dbf = debug_register(debug_name, 32, 1, 7 * sizeof(long)); 1129b0c632dbSHeiko Carstens if (!kvm->arch.dbf) 113040f5b735SDominik Dingel goto out_err; 1131b0c632dbSHeiko Carstens 11329d8d5786SMichael Mueller /* 11339d8d5786SMichael Mueller * The architectural maximum amount of facilities is 16 kbit. To store 11349d8d5786SMichael Mueller * this amount, 2 kbyte of memory is required. Thus we need a full 1135981467c9SMichael Mueller * page to hold the guest facility list (arch.model.fac->list) and the 1136981467c9SMichael Mueller * facility mask (arch.model.fac->mask). Its address size has to be 11379d8d5786SMichael Mueller * 31 bits and word aligned. 11389d8d5786SMichael Mueller */ 11399d8d5786SMichael Mueller kvm->arch.model.fac = 1140981467c9SMichael Mueller (struct kvm_s390_fac *) get_zeroed_page(GFP_KERNEL | GFP_DMA); 11419d8d5786SMichael Mueller if (!kvm->arch.model.fac) 114240f5b735SDominik Dingel goto out_err; 11439d8d5786SMichael Mueller 1144fb5bf93fSMichael Mueller /* Populate the facility mask initially. */ 1145981467c9SMichael Mueller memcpy(kvm->arch.model.fac->mask, S390_lowcore.stfle_fac_list, 114694422ee8SMichael Mueller S390_ARCH_FAC_LIST_SIZE_BYTE); 11479d8d5786SMichael Mueller for (i = 0; i < S390_ARCH_FAC_LIST_SIZE_U64; i++) { 11489d8d5786SMichael Mueller if (i < kvm_s390_fac_list_mask_size()) 1149981467c9SMichael Mueller kvm->arch.model.fac->mask[i] &= kvm_s390_fac_list_mask[i]; 11509d8d5786SMichael Mueller else 1151981467c9SMichael Mueller kvm->arch.model.fac->mask[i] = 0UL; 11529d8d5786SMichael Mueller } 11539d8d5786SMichael Mueller 1154981467c9SMichael Mueller /* Populate the facility list initially. */ 1155981467c9SMichael Mueller memcpy(kvm->arch.model.fac->list, kvm->arch.model.fac->mask, 1156981467c9SMichael Mueller S390_ARCH_FAC_LIST_SIZE_BYTE); 1157981467c9SMichael Mueller 11589d8d5786SMichael Mueller kvm_s390_get_cpu_id(&kvm->arch.model.cpu_id); 115937c5f6c8SDavid Hildenbrand kvm->arch.model.ibc = sclp.ibc & 0x0fff; 11609d8d5786SMichael Mueller 11615102ee87STony Krowiak if (kvm_s390_crypto_init(kvm) < 0) 116240f5b735SDominik Dingel goto out_err; 11635102ee87STony Krowiak 1164ba5c1e9bSCarsten Otte spin_lock_init(&kvm->arch.float_int.lock); 11656d3da241SJens Freimann for (i = 0; i < FIRQ_LIST_COUNT; i++) 11666d3da241SJens Freimann INIT_LIST_HEAD(&kvm->arch.float_int.lists[i]); 11678a242234SHeiko Carstens init_waitqueue_head(&kvm->arch.ipte_wq); 1168a6b7e459SThomas Huth mutex_init(&kvm->arch.ipte_mutex); 1169ba5c1e9bSCarsten Otte 1170b0c632dbSHeiko Carstens debug_register_view(kvm->arch.dbf, &debug_sprintf_view); 117178f26131SChristian Borntraeger VM_EVENT(kvm, 3, "vm created with type %lu", type); 1172b0c632dbSHeiko Carstens 1173e08b9637SCarsten Otte if (type & KVM_VM_S390_UCONTROL) { 1174e08b9637SCarsten Otte kvm->arch.gmap = NULL; 1175e08b9637SCarsten Otte } else { 11760349985aSChristian Borntraeger kvm->arch.gmap = gmap_alloc(current->mm, (1UL << 44) - 1); 1177598841caSCarsten Otte if (!kvm->arch.gmap) 117840f5b735SDominik Dingel goto out_err; 11792c70fe44SChristian Borntraeger kvm->arch.gmap->private = kvm; 118024eb3a82SDominik Dingel kvm->arch.gmap->pfault_enabled = 0; 1181e08b9637SCarsten Otte } 1182fa6b7fe9SCornelia Huck 1183fa6b7fe9SCornelia Huck kvm->arch.css_support = 0; 118484223598SCornelia Huck kvm->arch.use_irqchip = 0; 118572f25020SJason J. Herne kvm->arch.epoch = 0; 1186fa6b7fe9SCornelia Huck 11878ad35755SDavid Hildenbrand spin_lock_init(&kvm->arch.start_stop_lock); 118878f26131SChristian Borntraeger KVM_EVENT(3, "vm 0x%p created by pid %u", kvm, current->pid); 11898ad35755SDavid Hildenbrand 1190d89f5effSJan Kiszka return 0; 1191d89f5effSJan Kiszka out_err: 119240f5b735SDominik Dingel kfree(kvm->arch.crypto.crycb); 119340f5b735SDominik Dingel free_page((unsigned long)kvm->arch.model.fac); 119440f5b735SDominik Dingel debug_unregister(kvm->arch.dbf); 11957d43bafcSEugene (jno) Dvurechenski sca_dispose(kvm); 119678f26131SChristian Borntraeger KVM_EVENT(3, "creation of vm failed: %d", rc); 1197d89f5effSJan Kiszka return rc; 1198b0c632dbSHeiko Carstens } 1199b0c632dbSHeiko Carstens 1200d329c035SChristian Borntraeger void kvm_arch_vcpu_destroy(struct kvm_vcpu *vcpu) 1201d329c035SChristian Borntraeger { 1202d329c035SChristian Borntraeger VCPU_EVENT(vcpu, 3, "%s", "free cpu"); 1203ade38c31SCornelia Huck trace_kvm_s390_destroy_vcpu(vcpu->vcpu_id); 120467335e63SChristian Borntraeger kvm_s390_clear_local_irqs(vcpu); 12053c038e6bSDominik Dingel kvm_clear_async_pf_completion_queue(vcpu); 1206bc784cceSEugene (jno) Dvurechenski if (!kvm_is_ucontrol(vcpu->kvm)) 1207a6e2f683SEugene (jno) Dvurechenski sca_del_vcpu(vcpu); 1208abf4a71eSCarsten Otte smp_mb(); 120927e0393fSCarsten Otte 121027e0393fSCarsten Otte if (kvm_is_ucontrol(vcpu->kvm)) 121127e0393fSCarsten Otte gmap_free(vcpu->arch.gmap); 121227e0393fSCarsten Otte 1213e6db1d61SDominik Dingel if (vcpu->kvm->arch.use_cmma) 1214b31605c1SDominik Dingel kvm_s390_vcpu_unsetup_cmma(vcpu); 1215d329c035SChristian Borntraeger free_page((unsigned long)(vcpu->arch.sie_block)); 1216b31288faSKonstantin Weitz 12176692cef3SChristian Borntraeger kvm_vcpu_uninit(vcpu); 1218b110feafSMichael Mueller kmem_cache_free(kvm_vcpu_cache, vcpu); 1219d329c035SChristian Borntraeger } 1220d329c035SChristian Borntraeger 1221d329c035SChristian Borntraeger static void kvm_free_vcpus(struct kvm *kvm) 1222d329c035SChristian Borntraeger { 1223d329c035SChristian Borntraeger unsigned int i; 1224988a2caeSGleb Natapov struct kvm_vcpu *vcpu; 1225d329c035SChristian Borntraeger 1226988a2caeSGleb Natapov kvm_for_each_vcpu(i, vcpu, kvm) 1227988a2caeSGleb Natapov kvm_arch_vcpu_destroy(vcpu); 1228988a2caeSGleb Natapov 1229988a2caeSGleb Natapov mutex_lock(&kvm->lock); 1230988a2caeSGleb Natapov for (i = 0; i < atomic_read(&kvm->online_vcpus); i++) 1231d329c035SChristian Borntraeger kvm->vcpus[i] = NULL; 1232988a2caeSGleb Natapov 1233988a2caeSGleb Natapov atomic_set(&kvm->online_vcpus, 0); 1234988a2caeSGleb Natapov mutex_unlock(&kvm->lock); 1235d329c035SChristian Borntraeger } 1236d329c035SChristian Borntraeger 1237b0c632dbSHeiko Carstens void kvm_arch_destroy_vm(struct kvm *kvm) 1238b0c632dbSHeiko Carstens { 1239d329c035SChristian Borntraeger kvm_free_vcpus(kvm); 12409d8d5786SMichael Mueller free_page((unsigned long)kvm->arch.model.fac); 12417d43bafcSEugene (jno) Dvurechenski sca_dispose(kvm); 1242d329c035SChristian Borntraeger debug_unregister(kvm->arch.dbf); 12435102ee87STony Krowiak kfree(kvm->arch.crypto.crycb); 124427e0393fSCarsten Otte if (!kvm_is_ucontrol(kvm)) 1245598841caSCarsten Otte gmap_free(kvm->arch.gmap); 1246841b91c5SCornelia Huck kvm_s390_destroy_adapters(kvm); 124767335e63SChristian Borntraeger kvm_s390_clear_float_irqs(kvm); 124878f26131SChristian Borntraeger KVM_EVENT(3, "vm 0x%p destroyed", kvm); 1249b0c632dbSHeiko Carstens } 1250b0c632dbSHeiko Carstens 1251b0c632dbSHeiko Carstens /* Section: vcpu related */ 1252dafd032aSDominik Dingel static int __kvm_ucontrol_vcpu_init(struct kvm_vcpu *vcpu) 1253b0c632dbSHeiko Carstens { 1254c6c956b8SMartin Schwidefsky vcpu->arch.gmap = gmap_alloc(current->mm, -1UL); 125527e0393fSCarsten Otte if (!vcpu->arch.gmap) 125627e0393fSCarsten Otte return -ENOMEM; 12572c70fe44SChristian Borntraeger vcpu->arch.gmap->private = vcpu->kvm; 1258dafd032aSDominik Dingel 125927e0393fSCarsten Otte return 0; 126027e0393fSCarsten Otte } 126127e0393fSCarsten Otte 1262a6e2f683SEugene (jno) Dvurechenski static void sca_del_vcpu(struct kvm_vcpu *vcpu) 1263a6e2f683SEugene (jno) Dvurechenski { 12645e044315SEugene (jno) Dvurechenski read_lock(&vcpu->kvm->arch.sca_lock); 12657d43bafcSEugene (jno) Dvurechenski if (vcpu->kvm->arch.use_esca) { 12667d43bafcSEugene (jno) Dvurechenski struct esca_block *sca = vcpu->kvm->arch.sca; 12677d43bafcSEugene (jno) Dvurechenski 12687d43bafcSEugene (jno) Dvurechenski clear_bit_inv(vcpu->vcpu_id, (unsigned long *) sca->mcn); 12697d43bafcSEugene (jno) Dvurechenski sca->cpu[vcpu->vcpu_id].sda = 0; 12707d43bafcSEugene (jno) Dvurechenski } else { 1271bc784cceSEugene (jno) Dvurechenski struct bsca_block *sca = vcpu->kvm->arch.sca; 1272a6e2f683SEugene (jno) Dvurechenski 1273a6e2f683SEugene (jno) Dvurechenski clear_bit_inv(vcpu->vcpu_id, (unsigned long *) &sca->mcn); 1274a6e2f683SEugene (jno) Dvurechenski sca->cpu[vcpu->vcpu_id].sda = 0; 1275a6e2f683SEugene (jno) Dvurechenski } 12765e044315SEugene (jno) Dvurechenski read_unlock(&vcpu->kvm->arch.sca_lock); 12777d43bafcSEugene (jno) Dvurechenski } 1278a6e2f683SEugene (jno) Dvurechenski 1279eaa78f34SDavid Hildenbrand static void sca_add_vcpu(struct kvm_vcpu *vcpu) 1280a6e2f683SEugene (jno) Dvurechenski { 1281eaa78f34SDavid Hildenbrand read_lock(&vcpu->kvm->arch.sca_lock); 1282eaa78f34SDavid Hildenbrand if (vcpu->kvm->arch.use_esca) { 1283eaa78f34SDavid Hildenbrand struct esca_block *sca = vcpu->kvm->arch.sca; 12847d43bafcSEugene (jno) Dvurechenski 1285eaa78f34SDavid Hildenbrand sca->cpu[vcpu->vcpu_id].sda = (__u64) vcpu->arch.sie_block; 12867d43bafcSEugene (jno) Dvurechenski vcpu->arch.sie_block->scaoh = (__u32)(((__u64)sca) >> 32); 12877d43bafcSEugene (jno) Dvurechenski vcpu->arch.sie_block->scaol = (__u32)(__u64)sca & ~0x3fU; 128825508824SDavid Hildenbrand vcpu->arch.sie_block->ecb2 |= 0x04U; 1289eaa78f34SDavid Hildenbrand set_bit_inv(vcpu->vcpu_id, (unsigned long *) sca->mcn); 12907d43bafcSEugene (jno) Dvurechenski } else { 1291eaa78f34SDavid Hildenbrand struct bsca_block *sca = vcpu->kvm->arch.sca; 1292a6e2f683SEugene (jno) Dvurechenski 1293eaa78f34SDavid Hildenbrand sca->cpu[vcpu->vcpu_id].sda = (__u64) vcpu->arch.sie_block; 1294a6e2f683SEugene (jno) Dvurechenski vcpu->arch.sie_block->scaoh = (__u32)(((__u64)sca) >> 32); 1295a6e2f683SEugene (jno) Dvurechenski vcpu->arch.sie_block->scaol = (__u32)(__u64)sca; 1296eaa78f34SDavid Hildenbrand set_bit_inv(vcpu->vcpu_id, (unsigned long *) &sca->mcn); 1297a6e2f683SEugene (jno) Dvurechenski } 1298eaa78f34SDavid Hildenbrand read_unlock(&vcpu->kvm->arch.sca_lock); 12995e044315SEugene (jno) Dvurechenski } 13005e044315SEugene (jno) Dvurechenski 13015e044315SEugene (jno) Dvurechenski /* Basic SCA to Extended SCA data copy routines */ 13025e044315SEugene (jno) Dvurechenski static inline void sca_copy_entry(struct esca_entry *d, struct bsca_entry *s) 13035e044315SEugene (jno) Dvurechenski { 13045e044315SEugene (jno) Dvurechenski d->sda = s->sda; 13055e044315SEugene (jno) Dvurechenski d->sigp_ctrl.c = s->sigp_ctrl.c; 13065e044315SEugene (jno) Dvurechenski d->sigp_ctrl.scn = s->sigp_ctrl.scn; 13075e044315SEugene (jno) Dvurechenski } 13085e044315SEugene (jno) Dvurechenski 13095e044315SEugene (jno) Dvurechenski static void sca_copy_b_to_e(struct esca_block *d, struct bsca_block *s) 13105e044315SEugene (jno) Dvurechenski { 13115e044315SEugene (jno) Dvurechenski int i; 13125e044315SEugene (jno) Dvurechenski 13135e044315SEugene (jno) Dvurechenski d->ipte_control = s->ipte_control; 13145e044315SEugene (jno) Dvurechenski d->mcn[0] = s->mcn; 13155e044315SEugene (jno) Dvurechenski for (i = 0; i < KVM_S390_BSCA_CPU_SLOTS; i++) 13165e044315SEugene (jno) Dvurechenski sca_copy_entry(&d->cpu[i], &s->cpu[i]); 13175e044315SEugene (jno) Dvurechenski } 13185e044315SEugene (jno) Dvurechenski 13195e044315SEugene (jno) Dvurechenski static int sca_switch_to_extended(struct kvm *kvm) 13205e044315SEugene (jno) Dvurechenski { 13215e044315SEugene (jno) Dvurechenski struct bsca_block *old_sca = kvm->arch.sca; 13225e044315SEugene (jno) Dvurechenski struct esca_block *new_sca; 13235e044315SEugene (jno) Dvurechenski struct kvm_vcpu *vcpu; 13245e044315SEugene (jno) Dvurechenski unsigned int vcpu_idx; 13255e044315SEugene (jno) Dvurechenski u32 scaol, scaoh; 13265e044315SEugene (jno) Dvurechenski 13275e044315SEugene (jno) Dvurechenski new_sca = alloc_pages_exact(sizeof(*new_sca), GFP_KERNEL|__GFP_ZERO); 13285e044315SEugene (jno) Dvurechenski if (!new_sca) 13295e044315SEugene (jno) Dvurechenski return -ENOMEM; 13305e044315SEugene (jno) Dvurechenski 13315e044315SEugene (jno) Dvurechenski scaoh = (u32)((u64)(new_sca) >> 32); 13325e044315SEugene (jno) Dvurechenski scaol = (u32)(u64)(new_sca) & ~0x3fU; 13335e044315SEugene (jno) Dvurechenski 13345e044315SEugene (jno) Dvurechenski kvm_s390_vcpu_block_all(kvm); 13355e044315SEugene (jno) Dvurechenski write_lock(&kvm->arch.sca_lock); 13365e044315SEugene (jno) Dvurechenski 13375e044315SEugene (jno) Dvurechenski sca_copy_b_to_e(new_sca, old_sca); 13385e044315SEugene (jno) Dvurechenski 13395e044315SEugene (jno) Dvurechenski kvm_for_each_vcpu(vcpu_idx, vcpu, kvm) { 13405e044315SEugene (jno) Dvurechenski vcpu->arch.sie_block->scaoh = scaoh; 13415e044315SEugene (jno) Dvurechenski vcpu->arch.sie_block->scaol = scaol; 13425e044315SEugene (jno) Dvurechenski vcpu->arch.sie_block->ecb2 |= 0x04U; 13435e044315SEugene (jno) Dvurechenski } 13445e044315SEugene (jno) Dvurechenski kvm->arch.sca = new_sca; 13455e044315SEugene (jno) Dvurechenski kvm->arch.use_esca = 1; 13465e044315SEugene (jno) Dvurechenski 13475e044315SEugene (jno) Dvurechenski write_unlock(&kvm->arch.sca_lock); 13485e044315SEugene (jno) Dvurechenski kvm_s390_vcpu_unblock_all(kvm); 13495e044315SEugene (jno) Dvurechenski 13505e044315SEugene (jno) Dvurechenski free_page((unsigned long)old_sca); 13515e044315SEugene (jno) Dvurechenski 13525e044315SEugene (jno) Dvurechenski VM_EVENT(kvm, 2, "Switched to ESCA (%p -> %p)", old_sca, kvm->arch.sca); 13535e044315SEugene (jno) Dvurechenski return 0; 13547d43bafcSEugene (jno) Dvurechenski } 1355a6e2f683SEugene (jno) Dvurechenski 1356a6e2f683SEugene (jno) Dvurechenski static int sca_can_add_vcpu(struct kvm *kvm, unsigned int id) 1357a6e2f683SEugene (jno) Dvurechenski { 13585e044315SEugene (jno) Dvurechenski int rc; 13595e044315SEugene (jno) Dvurechenski 13605e044315SEugene (jno) Dvurechenski if (id < KVM_S390_BSCA_CPU_SLOTS) 13615e044315SEugene (jno) Dvurechenski return true; 13625e044315SEugene (jno) Dvurechenski if (!sclp.has_esca) 13635e044315SEugene (jno) Dvurechenski return false; 13645e044315SEugene (jno) Dvurechenski 13655e044315SEugene (jno) Dvurechenski mutex_lock(&kvm->lock); 13665e044315SEugene (jno) Dvurechenski rc = kvm->arch.use_esca ? 0 : sca_switch_to_extended(kvm); 13675e044315SEugene (jno) Dvurechenski mutex_unlock(&kvm->lock); 13685e044315SEugene (jno) Dvurechenski 13695e044315SEugene (jno) Dvurechenski return rc == 0 && id < KVM_S390_ESCA_CPU_SLOTS; 1370a6e2f683SEugene (jno) Dvurechenski } 1371a6e2f683SEugene (jno) Dvurechenski 1372dafd032aSDominik Dingel int kvm_arch_vcpu_init(struct kvm_vcpu *vcpu) 1373dafd032aSDominik Dingel { 1374dafd032aSDominik Dingel vcpu->arch.pfault_token = KVM_S390_PFAULT_TOKEN_INVALID; 1375dafd032aSDominik Dingel kvm_clear_async_pf_completion_queue(vcpu); 137659674c1aSChristian Borntraeger vcpu->run->kvm_valid_regs = KVM_SYNC_PREFIX | 137759674c1aSChristian Borntraeger KVM_SYNC_GPRS | 13789eed0735SChristian Borntraeger KVM_SYNC_ACRS | 1379b028ee3eSDavid Hildenbrand KVM_SYNC_CRS | 1380b028ee3eSDavid Hildenbrand KVM_SYNC_ARCH0 | 1381b028ee3eSDavid Hildenbrand KVM_SYNC_PFAULT; 138268c55750SEric Farman if (test_kvm_facility(vcpu->kvm, 129)) 138368c55750SEric Farman vcpu->run->kvm_valid_regs |= KVM_SYNC_VRS; 1384dafd032aSDominik Dingel 1385dafd032aSDominik Dingel if (kvm_is_ucontrol(vcpu->kvm)) 1386dafd032aSDominik Dingel return __kvm_ucontrol_vcpu_init(vcpu); 1387dafd032aSDominik Dingel 1388b0c632dbSHeiko Carstens return 0; 1389b0c632dbSHeiko Carstens } 1390b0c632dbSHeiko Carstens 13919977e886SHendrik Brueckner /* 13929977e886SHendrik Brueckner * Backs up the current FP/VX register save area on a particular 13939977e886SHendrik Brueckner * destination. Used to switch between different register save 13949977e886SHendrik Brueckner * areas. 13959977e886SHendrik Brueckner */ 13969977e886SHendrik Brueckner static inline void save_fpu_to(struct fpu *dst) 13979977e886SHendrik Brueckner { 13989977e886SHendrik Brueckner dst->fpc = current->thread.fpu.fpc; 13999977e886SHendrik Brueckner dst->regs = current->thread.fpu.regs; 14009977e886SHendrik Brueckner } 14019977e886SHendrik Brueckner 14029977e886SHendrik Brueckner /* 14039977e886SHendrik Brueckner * Switches the FP/VX register save area from which to lazy 14049977e886SHendrik Brueckner * restore register contents. 14059977e886SHendrik Brueckner */ 14069977e886SHendrik Brueckner static inline void load_fpu_from(struct fpu *from) 14079977e886SHendrik Brueckner { 14089977e886SHendrik Brueckner current->thread.fpu.fpc = from->fpc; 14099977e886SHendrik Brueckner current->thread.fpu.regs = from->regs; 14109977e886SHendrik Brueckner } 14119977e886SHendrik Brueckner 1412b0c632dbSHeiko Carstens void kvm_arch_vcpu_load(struct kvm_vcpu *vcpu, int cpu) 1413b0c632dbSHeiko Carstens { 14149977e886SHendrik Brueckner /* Save host register state */ 1415d0164ee2SHendrik Brueckner save_fpu_regs(); 14169977e886SHendrik Brueckner save_fpu_to(&vcpu->arch.host_fpregs); 141796b2d7a8SHendrik Brueckner 141818280d8bSMichael Mueller if (test_kvm_facility(vcpu->kvm, 129)) { 14199977e886SHendrik Brueckner current->thread.fpu.fpc = vcpu->run->s.regs.fpc; 14209977e886SHendrik Brueckner /* 14219977e886SHendrik Brueckner * Use the register save area in the SIE-control block 14229977e886SHendrik Brueckner * for register restore and save in kvm_arch_vcpu_put() 14239977e886SHendrik Brueckner */ 14249977e886SHendrik Brueckner current->thread.fpu.vxrs = 14259977e886SHendrik Brueckner (__vector128 *)&vcpu->run->s.regs.vrs; 14269977e886SHendrik Brueckner } else 14279977e886SHendrik Brueckner load_fpu_from(&vcpu->arch.guest_fpregs); 14289977e886SHendrik Brueckner 14299977e886SHendrik Brueckner if (test_fp_ctl(current->thread.fpu.fpc)) 143096b2d7a8SHendrik Brueckner /* User space provided an invalid FPC, let's clear it */ 14319977e886SHendrik Brueckner current->thread.fpu.fpc = 0; 14329977e886SHendrik Brueckner 14339977e886SHendrik Brueckner save_access_regs(vcpu->arch.host_acrs); 143459674c1aSChristian Borntraeger restore_access_regs(vcpu->run->s.regs.acrs); 1435480e5926SChristian Borntraeger gmap_enable(vcpu->arch.gmap); 1436805de8f4SPeter Zijlstra atomic_or(CPUSTAT_RUNNING, &vcpu->arch.sie_block->cpuflags); 1437b0c632dbSHeiko Carstens } 1438b0c632dbSHeiko Carstens 1439b0c632dbSHeiko Carstens void kvm_arch_vcpu_put(struct kvm_vcpu *vcpu) 1440b0c632dbSHeiko Carstens { 1441805de8f4SPeter Zijlstra atomic_andnot(CPUSTAT_RUNNING, &vcpu->arch.sie_block->cpuflags); 1442480e5926SChristian Borntraeger gmap_disable(vcpu->arch.gmap); 14439977e886SHendrik Brueckner 1444d0164ee2SHendrik Brueckner save_fpu_regs(); 14459977e886SHendrik Brueckner 144618280d8bSMichael Mueller if (test_kvm_facility(vcpu->kvm, 129)) 14479977e886SHendrik Brueckner /* 14489977e886SHendrik Brueckner * kvm_arch_vcpu_load() set up the register save area to 14499977e886SHendrik Brueckner * the &vcpu->run->s.regs.vrs and, thus, the vector registers 14509977e886SHendrik Brueckner * are already saved. Only the floating-point control must be 14519977e886SHendrik Brueckner * copied. 14529977e886SHendrik Brueckner */ 14539977e886SHendrik Brueckner vcpu->run->s.regs.fpc = current->thread.fpu.fpc; 145468c55750SEric Farman else 14559977e886SHendrik Brueckner save_fpu_to(&vcpu->arch.guest_fpregs); 14569977e886SHendrik Brueckner load_fpu_from(&vcpu->arch.host_fpregs); 14579977e886SHendrik Brueckner 14589977e886SHendrik Brueckner save_access_regs(vcpu->run->s.regs.acrs); 1459b0c632dbSHeiko Carstens restore_access_regs(vcpu->arch.host_acrs); 1460b0c632dbSHeiko Carstens } 1461b0c632dbSHeiko Carstens 1462b0c632dbSHeiko Carstens static void kvm_s390_vcpu_initial_reset(struct kvm_vcpu *vcpu) 1463b0c632dbSHeiko Carstens { 1464b0c632dbSHeiko Carstens /* this equals initial cpu reset in pop, but we don't switch to ESA */ 1465b0c632dbSHeiko Carstens vcpu->arch.sie_block->gpsw.mask = 0UL; 1466b0c632dbSHeiko Carstens vcpu->arch.sie_block->gpsw.addr = 0UL; 14678d26cf7bSChristian Borntraeger kvm_s390_set_prefix(vcpu, 0); 1468b0c632dbSHeiko Carstens vcpu->arch.sie_block->cputm = 0UL; 1469b0c632dbSHeiko Carstens vcpu->arch.sie_block->ckc = 0UL; 1470b0c632dbSHeiko Carstens vcpu->arch.sie_block->todpr = 0; 1471b0c632dbSHeiko Carstens memset(vcpu->arch.sie_block->gcr, 0, 16 * sizeof(__u64)); 1472b0c632dbSHeiko Carstens vcpu->arch.sie_block->gcr[0] = 0xE0UL; 1473b0c632dbSHeiko Carstens vcpu->arch.sie_block->gcr[14] = 0xC2000000UL; 1474b0c632dbSHeiko Carstens vcpu->arch.guest_fpregs.fpc = 0; 1475b0c632dbSHeiko Carstens asm volatile("lfpc %0" : : "Q" (vcpu->arch.guest_fpregs.fpc)); 1476b0c632dbSHeiko Carstens vcpu->arch.sie_block->gbea = 1; 1477672550fbSChristian Borntraeger vcpu->arch.sie_block->pp = 0; 14783c038e6bSDominik Dingel vcpu->arch.pfault_token = KVM_S390_PFAULT_TOKEN_INVALID; 14793c038e6bSDominik Dingel kvm_clear_async_pf_completion_queue(vcpu); 14806352e4d2SDavid Hildenbrand if (!kvm_s390_user_cpu_state_ctrl(vcpu->kvm)) 14816852d7b6SDavid Hildenbrand kvm_s390_vcpu_stop(vcpu); 14822ed10cc1SJens Freimann kvm_s390_clear_local_irqs(vcpu); 1483b0c632dbSHeiko Carstens } 1484b0c632dbSHeiko Carstens 148531928aa5SDominik Dingel void kvm_arch_vcpu_postcreate(struct kvm_vcpu *vcpu) 148642897d86SMarcelo Tosatti { 148772f25020SJason J. Herne mutex_lock(&vcpu->kvm->lock); 1488fdf03650SFan Zhang preempt_disable(); 148972f25020SJason J. Herne vcpu->arch.sie_block->epoch = vcpu->kvm->arch.epoch; 1490fdf03650SFan Zhang preempt_enable(); 149172f25020SJason J. Herne mutex_unlock(&vcpu->kvm->lock); 149225508824SDavid Hildenbrand if (!kvm_is_ucontrol(vcpu->kvm)) { 1493dafd032aSDominik Dingel vcpu->arch.gmap = vcpu->kvm->arch.gmap; 1494eaa78f34SDavid Hildenbrand sca_add_vcpu(vcpu); 149525508824SDavid Hildenbrand } 149625508824SDavid Hildenbrand 149742897d86SMarcelo Tosatti } 149842897d86SMarcelo Tosatti 14995102ee87STony Krowiak static void kvm_s390_vcpu_crypto_setup(struct kvm_vcpu *vcpu) 15005102ee87STony Krowiak { 15019d8d5786SMichael Mueller if (!test_kvm_facility(vcpu->kvm, 76)) 15025102ee87STony Krowiak return; 15035102ee87STony Krowiak 1504a374e892STony Krowiak vcpu->arch.sie_block->ecb3 &= ~(ECB3_AES | ECB3_DEA); 1505a374e892STony Krowiak 1506a374e892STony Krowiak if (vcpu->kvm->arch.crypto.aes_kw) 1507a374e892STony Krowiak vcpu->arch.sie_block->ecb3 |= ECB3_AES; 1508a374e892STony Krowiak if (vcpu->kvm->arch.crypto.dea_kw) 1509a374e892STony Krowiak vcpu->arch.sie_block->ecb3 |= ECB3_DEA; 1510a374e892STony Krowiak 15115102ee87STony Krowiak vcpu->arch.sie_block->crycbd = vcpu->kvm->arch.crypto.crycbd; 15125102ee87STony Krowiak } 15135102ee87STony Krowiak 1514b31605c1SDominik Dingel void kvm_s390_vcpu_unsetup_cmma(struct kvm_vcpu *vcpu) 1515b31605c1SDominik Dingel { 1516b31605c1SDominik Dingel free_page(vcpu->arch.sie_block->cbrlo); 1517b31605c1SDominik Dingel vcpu->arch.sie_block->cbrlo = 0; 1518b31605c1SDominik Dingel } 1519b31605c1SDominik Dingel 1520b31605c1SDominik Dingel int kvm_s390_vcpu_setup_cmma(struct kvm_vcpu *vcpu) 1521b31605c1SDominik Dingel { 1522b31605c1SDominik Dingel vcpu->arch.sie_block->cbrlo = get_zeroed_page(GFP_KERNEL); 1523b31605c1SDominik Dingel if (!vcpu->arch.sie_block->cbrlo) 1524b31605c1SDominik Dingel return -ENOMEM; 1525b31605c1SDominik Dingel 1526b31605c1SDominik Dingel vcpu->arch.sie_block->ecb2 |= 0x80; 1527b31605c1SDominik Dingel vcpu->arch.sie_block->ecb2 &= ~0x08; 1528b31605c1SDominik Dingel return 0; 1529b31605c1SDominik Dingel } 1530b31605c1SDominik Dingel 153191520f1aSMichael Mueller static void kvm_s390_vcpu_setup_model(struct kvm_vcpu *vcpu) 153291520f1aSMichael Mueller { 153391520f1aSMichael Mueller struct kvm_s390_cpu_model *model = &vcpu->kvm->arch.model; 153491520f1aSMichael Mueller 153591520f1aSMichael Mueller vcpu->arch.cpu_id = model->cpu_id; 153691520f1aSMichael Mueller vcpu->arch.sie_block->ibc = model->ibc; 153791520f1aSMichael Mueller vcpu->arch.sie_block->fac = (int) (long) model->fac->list; 153891520f1aSMichael Mueller } 153991520f1aSMichael Mueller 1540b0c632dbSHeiko Carstens int kvm_arch_vcpu_setup(struct kvm_vcpu *vcpu) 1541b0c632dbSHeiko Carstens { 1542b31605c1SDominik Dingel int rc = 0; 1543b31288faSKonstantin Weitz 15449e6dabefSCornelia Huck atomic_set(&vcpu->arch.sie_block->cpuflags, CPUSTAT_ZARCH | 15459e6dabefSCornelia Huck CPUSTAT_SM | 1546a4a4f191SGuenther Hutzl CPUSTAT_STOPPED); 1547a4a4f191SGuenther Hutzl 154853df84f8SGuenther Hutzl if (test_kvm_facility(vcpu->kvm, 78)) 1549805de8f4SPeter Zijlstra atomic_or(CPUSTAT_GED2, &vcpu->arch.sie_block->cpuflags); 155053df84f8SGuenther Hutzl else if (test_kvm_facility(vcpu->kvm, 8)) 1551805de8f4SPeter Zijlstra atomic_or(CPUSTAT_GED, &vcpu->arch.sie_block->cpuflags); 1552a4a4f191SGuenther Hutzl 155391520f1aSMichael Mueller kvm_s390_vcpu_setup_model(vcpu); 155491520f1aSMichael Mueller 1555fc34531dSChristian Borntraeger vcpu->arch.sie_block->ecb = 6; 15569d8d5786SMichael Mueller if (test_kvm_facility(vcpu->kvm, 50) && test_kvm_facility(vcpu->kvm, 73)) 15577feb6bb8SMichael Mueller vcpu->arch.sie_block->ecb |= 0x10; 15587feb6bb8SMichael Mueller 155969d0d3a3SChristian Borntraeger vcpu->arch.sie_block->ecb2 = 8; 1560ea5f4969SDavid Hildenbrand vcpu->arch.sie_block->eca = 0xC1002000U; 156137c5f6c8SDavid Hildenbrand if (sclp.has_siif) 1562217a4406SHeiko Carstens vcpu->arch.sie_block->eca |= 1; 156337c5f6c8SDavid Hildenbrand if (sclp.has_sigpif) 1564ea5f4969SDavid Hildenbrand vcpu->arch.sie_block->eca |= 0x10000000U; 156518280d8bSMichael Mueller if (test_kvm_facility(vcpu->kvm, 129)) { 156613211ea7SEric Farman vcpu->arch.sie_block->eca |= 0x00020000; 156713211ea7SEric Farman vcpu->arch.sie_block->ecd |= 0x20000000; 156813211ea7SEric Farman } 1569492d8642SThomas Huth vcpu->arch.sie_block->ictl |= ICTL_ISKE | ICTL_SSKE | ICTL_RRBE; 15705a5e6536SMatthew Rosato 1571e6db1d61SDominik Dingel if (vcpu->kvm->arch.use_cmma) { 1572b31605c1SDominik Dingel rc = kvm_s390_vcpu_setup_cmma(vcpu); 1573b31605c1SDominik Dingel if (rc) 1574b31605c1SDominik Dingel return rc; 1575b31288faSKonstantin Weitz } 15760ac96cafSDavid Hildenbrand hrtimer_init(&vcpu->arch.ckc_timer, CLOCK_MONOTONIC, HRTIMER_MODE_REL); 1577ca872302SChristian Borntraeger vcpu->arch.ckc_timer.function = kvm_s390_idle_wakeup; 15789d8d5786SMichael Mueller 15795102ee87STony Krowiak kvm_s390_vcpu_crypto_setup(vcpu); 15805102ee87STony Krowiak 1581b31605c1SDominik Dingel return rc; 1582b0c632dbSHeiko Carstens } 1583b0c632dbSHeiko Carstens 1584b0c632dbSHeiko Carstens struct kvm_vcpu *kvm_arch_vcpu_create(struct kvm *kvm, 1585b0c632dbSHeiko Carstens unsigned int id) 1586b0c632dbSHeiko Carstens { 15874d47555aSCarsten Otte struct kvm_vcpu *vcpu; 15887feb6bb8SMichael Mueller struct sie_page *sie_page; 15894d47555aSCarsten Otte int rc = -EINVAL; 1590b0c632dbSHeiko Carstens 15914215825eSDavid Hildenbrand if (!kvm_is_ucontrol(kvm) && !sca_can_add_vcpu(kvm, id)) 15924d47555aSCarsten Otte goto out; 15934d47555aSCarsten Otte 15944d47555aSCarsten Otte rc = -ENOMEM; 15954d47555aSCarsten Otte 1596b110feafSMichael Mueller vcpu = kmem_cache_zalloc(kvm_vcpu_cache, GFP_KERNEL); 1597b0c632dbSHeiko Carstens if (!vcpu) 15984d47555aSCarsten Otte goto out; 1599b0c632dbSHeiko Carstens 16007feb6bb8SMichael Mueller sie_page = (struct sie_page *) get_zeroed_page(GFP_KERNEL); 16017feb6bb8SMichael Mueller if (!sie_page) 1602b0c632dbSHeiko Carstens goto out_free_cpu; 1603b0c632dbSHeiko Carstens 16047feb6bb8SMichael Mueller vcpu->arch.sie_block = &sie_page->sie_block; 16057feb6bb8SMichael Mueller vcpu->arch.sie_block->itdba = (unsigned long) &sie_page->itdb; 16067feb6bb8SMichael Mueller 1607b0c632dbSHeiko Carstens vcpu->arch.sie_block->icpua = id; 1608ba5c1e9bSCarsten Otte spin_lock_init(&vcpu->arch.local_int.lock); 1609ba5c1e9bSCarsten Otte vcpu->arch.local_int.float_int = &kvm->arch.float_int; 1610d0321a24SChristian Borntraeger vcpu->arch.local_int.wq = &vcpu->wq; 16115288fbf0SChristian Borntraeger vcpu->arch.local_int.cpuflags = &vcpu->arch.sie_block->cpuflags; 1612ba5c1e9bSCarsten Otte 16139977e886SHendrik Brueckner /* 16149977e886SHendrik Brueckner * Allocate a save area for floating-point registers. If the vector 16159977e886SHendrik Brueckner * extension is available, register contents are saved in the SIE 16169977e886SHendrik Brueckner * control block. The allocated save area is still required in 16179977e886SHendrik Brueckner * particular places, for example, in kvm_s390_vcpu_store_status(). 16189977e886SHendrik Brueckner */ 16199977e886SHendrik Brueckner vcpu->arch.guest_fpregs.fprs = kzalloc(sizeof(freg_t) * __NUM_FPRS, 16209977e886SHendrik Brueckner GFP_KERNEL); 16219977e886SHendrik Brueckner if (!vcpu->arch.guest_fpregs.fprs) { 16229977e886SHendrik Brueckner rc = -ENOMEM; 16239977e886SHendrik Brueckner goto out_free_sie_block; 16249977e886SHendrik Brueckner } 16259977e886SHendrik Brueckner 1626b0c632dbSHeiko Carstens rc = kvm_vcpu_init(vcpu, kvm, id); 1627b0c632dbSHeiko Carstens if (rc) 16287b06bf2fSWei Yongjun goto out_free_sie_block; 1629b0c632dbSHeiko Carstens VM_EVENT(kvm, 3, "create cpu %d at %p, sie block at %p", id, vcpu, 1630b0c632dbSHeiko Carstens vcpu->arch.sie_block); 1631ade38c31SCornelia Huck trace_kvm_s390_create_vcpu(id, vcpu, vcpu->arch.sie_block); 1632b0c632dbSHeiko Carstens 1633b0c632dbSHeiko Carstens return vcpu; 16347b06bf2fSWei Yongjun out_free_sie_block: 16357b06bf2fSWei Yongjun free_page((unsigned long)(vcpu->arch.sie_block)); 1636b0c632dbSHeiko Carstens out_free_cpu: 1637b110feafSMichael Mueller kmem_cache_free(kvm_vcpu_cache, vcpu); 16384d47555aSCarsten Otte out: 1639b0c632dbSHeiko Carstens return ERR_PTR(rc); 1640b0c632dbSHeiko Carstens } 1641b0c632dbSHeiko Carstens 1642b0c632dbSHeiko Carstens int kvm_arch_vcpu_runnable(struct kvm_vcpu *vcpu) 1643b0c632dbSHeiko Carstens { 16449a022067SDavid Hildenbrand return kvm_s390_vcpu_has_irq(vcpu, 0); 1645b0c632dbSHeiko Carstens } 1646b0c632dbSHeiko Carstens 164727406cd5SChristian Borntraeger void kvm_s390_vcpu_block(struct kvm_vcpu *vcpu) 164849b99e1eSChristian Borntraeger { 1649805de8f4SPeter Zijlstra atomic_or(PROG_BLOCK_SIE, &vcpu->arch.sie_block->prog20); 165061a6df54SDavid Hildenbrand exit_sie(vcpu); 165149b99e1eSChristian Borntraeger } 165249b99e1eSChristian Borntraeger 165327406cd5SChristian Borntraeger void kvm_s390_vcpu_unblock(struct kvm_vcpu *vcpu) 165449b99e1eSChristian Borntraeger { 1655805de8f4SPeter Zijlstra atomic_andnot(PROG_BLOCK_SIE, &vcpu->arch.sie_block->prog20); 165649b99e1eSChristian Borntraeger } 165749b99e1eSChristian Borntraeger 16588e236546SChristian Borntraeger static void kvm_s390_vcpu_request(struct kvm_vcpu *vcpu) 16598e236546SChristian Borntraeger { 1660805de8f4SPeter Zijlstra atomic_or(PROG_REQUEST, &vcpu->arch.sie_block->prog20); 166161a6df54SDavid Hildenbrand exit_sie(vcpu); 16628e236546SChristian Borntraeger } 16638e236546SChristian Borntraeger 16648e236546SChristian Borntraeger static void kvm_s390_vcpu_request_handled(struct kvm_vcpu *vcpu) 16658e236546SChristian Borntraeger { 16669bf9fde2SJason J. Herne atomic_andnot(PROG_REQUEST, &vcpu->arch.sie_block->prog20); 16678e236546SChristian Borntraeger } 16688e236546SChristian Borntraeger 166949b99e1eSChristian Borntraeger /* 167049b99e1eSChristian Borntraeger * Kick a guest cpu out of SIE and wait until SIE is not running. 167149b99e1eSChristian Borntraeger * If the CPU is not running (e.g. waiting as idle) the function will 167249b99e1eSChristian Borntraeger * return immediately. */ 167349b99e1eSChristian Borntraeger void exit_sie(struct kvm_vcpu *vcpu) 167449b99e1eSChristian Borntraeger { 1675805de8f4SPeter Zijlstra atomic_or(CPUSTAT_STOP_INT, &vcpu->arch.sie_block->cpuflags); 167649b99e1eSChristian Borntraeger while (vcpu->arch.sie_block->prog0c & PROG_IN_SIE) 167749b99e1eSChristian Borntraeger cpu_relax(); 167849b99e1eSChristian Borntraeger } 167949b99e1eSChristian Borntraeger 16808e236546SChristian Borntraeger /* Kick a guest cpu out of SIE to process a request synchronously */ 16818e236546SChristian Borntraeger void kvm_s390_sync_request(int req, struct kvm_vcpu *vcpu) 168249b99e1eSChristian Borntraeger { 16838e236546SChristian Borntraeger kvm_make_request(req, vcpu); 16848e236546SChristian Borntraeger kvm_s390_vcpu_request(vcpu); 168549b99e1eSChristian Borntraeger } 168649b99e1eSChristian Borntraeger 16872c70fe44SChristian Borntraeger static void kvm_gmap_notifier(struct gmap *gmap, unsigned long address) 16882c70fe44SChristian Borntraeger { 16892c70fe44SChristian Borntraeger int i; 16902c70fe44SChristian Borntraeger struct kvm *kvm = gmap->private; 16912c70fe44SChristian Borntraeger struct kvm_vcpu *vcpu; 16922c70fe44SChristian Borntraeger 16932c70fe44SChristian Borntraeger kvm_for_each_vcpu(i, vcpu, kvm) { 16942c70fe44SChristian Borntraeger /* match against both prefix pages */ 1695fda902cbSMichael Mueller if (kvm_s390_get_prefix(vcpu) == (address & ~0x1000UL)) { 16962c70fe44SChristian Borntraeger VCPU_EVENT(vcpu, 2, "gmap notifier for %lx", address); 16978e236546SChristian Borntraeger kvm_s390_sync_request(KVM_REQ_MMU_RELOAD, vcpu); 16982c70fe44SChristian Borntraeger } 16992c70fe44SChristian Borntraeger } 17002c70fe44SChristian Borntraeger } 17012c70fe44SChristian Borntraeger 1702b6d33834SChristoffer Dall int kvm_arch_vcpu_should_kick(struct kvm_vcpu *vcpu) 1703b6d33834SChristoffer Dall { 1704b6d33834SChristoffer Dall /* kvm common code refers to this, but never calls it */ 1705b6d33834SChristoffer Dall BUG(); 1706b6d33834SChristoffer Dall return 0; 1707b6d33834SChristoffer Dall } 1708b6d33834SChristoffer Dall 170914eebd91SCarsten Otte static int kvm_arch_vcpu_ioctl_get_one_reg(struct kvm_vcpu *vcpu, 171014eebd91SCarsten Otte struct kvm_one_reg *reg) 171114eebd91SCarsten Otte { 171214eebd91SCarsten Otte int r = -EINVAL; 171314eebd91SCarsten Otte 171414eebd91SCarsten Otte switch (reg->id) { 171529b7c71bSCarsten Otte case KVM_REG_S390_TODPR: 171629b7c71bSCarsten Otte r = put_user(vcpu->arch.sie_block->todpr, 171729b7c71bSCarsten Otte (u32 __user *)reg->addr); 171829b7c71bSCarsten Otte break; 171929b7c71bSCarsten Otte case KVM_REG_S390_EPOCHDIFF: 172029b7c71bSCarsten Otte r = put_user(vcpu->arch.sie_block->epoch, 172129b7c71bSCarsten Otte (u64 __user *)reg->addr); 172229b7c71bSCarsten Otte break; 172346a6dd1cSJason J. herne case KVM_REG_S390_CPU_TIMER: 172446a6dd1cSJason J. herne r = put_user(vcpu->arch.sie_block->cputm, 172546a6dd1cSJason J. herne (u64 __user *)reg->addr); 172646a6dd1cSJason J. herne break; 172746a6dd1cSJason J. herne case KVM_REG_S390_CLOCK_COMP: 172846a6dd1cSJason J. herne r = put_user(vcpu->arch.sie_block->ckc, 172946a6dd1cSJason J. herne (u64 __user *)reg->addr); 173046a6dd1cSJason J. herne break; 1731536336c2SDominik Dingel case KVM_REG_S390_PFTOKEN: 1732536336c2SDominik Dingel r = put_user(vcpu->arch.pfault_token, 1733536336c2SDominik Dingel (u64 __user *)reg->addr); 1734536336c2SDominik Dingel break; 1735536336c2SDominik Dingel case KVM_REG_S390_PFCOMPARE: 1736536336c2SDominik Dingel r = put_user(vcpu->arch.pfault_compare, 1737536336c2SDominik Dingel (u64 __user *)reg->addr); 1738536336c2SDominik Dingel break; 1739536336c2SDominik Dingel case KVM_REG_S390_PFSELECT: 1740536336c2SDominik Dingel r = put_user(vcpu->arch.pfault_select, 1741536336c2SDominik Dingel (u64 __user *)reg->addr); 1742536336c2SDominik Dingel break; 1743672550fbSChristian Borntraeger case KVM_REG_S390_PP: 1744672550fbSChristian Borntraeger r = put_user(vcpu->arch.sie_block->pp, 1745672550fbSChristian Borntraeger (u64 __user *)reg->addr); 1746672550fbSChristian Borntraeger break; 1747afa45ff5SChristian Borntraeger case KVM_REG_S390_GBEA: 1748afa45ff5SChristian Borntraeger r = put_user(vcpu->arch.sie_block->gbea, 1749afa45ff5SChristian Borntraeger (u64 __user *)reg->addr); 1750afa45ff5SChristian Borntraeger break; 175114eebd91SCarsten Otte default: 175214eebd91SCarsten Otte break; 175314eebd91SCarsten Otte } 175414eebd91SCarsten Otte 175514eebd91SCarsten Otte return r; 175614eebd91SCarsten Otte } 175714eebd91SCarsten Otte 175814eebd91SCarsten Otte static int kvm_arch_vcpu_ioctl_set_one_reg(struct kvm_vcpu *vcpu, 175914eebd91SCarsten Otte struct kvm_one_reg *reg) 176014eebd91SCarsten Otte { 176114eebd91SCarsten Otte int r = -EINVAL; 176214eebd91SCarsten Otte 176314eebd91SCarsten Otte switch (reg->id) { 176429b7c71bSCarsten Otte case KVM_REG_S390_TODPR: 176529b7c71bSCarsten Otte r = get_user(vcpu->arch.sie_block->todpr, 176629b7c71bSCarsten Otte (u32 __user *)reg->addr); 176729b7c71bSCarsten Otte break; 176829b7c71bSCarsten Otte case KVM_REG_S390_EPOCHDIFF: 176929b7c71bSCarsten Otte r = get_user(vcpu->arch.sie_block->epoch, 177029b7c71bSCarsten Otte (u64 __user *)reg->addr); 177129b7c71bSCarsten Otte break; 177246a6dd1cSJason J. herne case KVM_REG_S390_CPU_TIMER: 177346a6dd1cSJason J. herne r = get_user(vcpu->arch.sie_block->cputm, 177446a6dd1cSJason J. herne (u64 __user *)reg->addr); 177546a6dd1cSJason J. herne break; 177646a6dd1cSJason J. herne case KVM_REG_S390_CLOCK_COMP: 177746a6dd1cSJason J. herne r = get_user(vcpu->arch.sie_block->ckc, 177846a6dd1cSJason J. herne (u64 __user *)reg->addr); 177946a6dd1cSJason J. herne break; 1780536336c2SDominik Dingel case KVM_REG_S390_PFTOKEN: 1781536336c2SDominik Dingel r = get_user(vcpu->arch.pfault_token, 1782536336c2SDominik Dingel (u64 __user *)reg->addr); 17839fbd8082SDavid Hildenbrand if (vcpu->arch.pfault_token == KVM_S390_PFAULT_TOKEN_INVALID) 17849fbd8082SDavid Hildenbrand kvm_clear_async_pf_completion_queue(vcpu); 1785536336c2SDominik Dingel break; 1786536336c2SDominik Dingel case KVM_REG_S390_PFCOMPARE: 1787536336c2SDominik Dingel r = get_user(vcpu->arch.pfault_compare, 1788536336c2SDominik Dingel (u64 __user *)reg->addr); 1789536336c2SDominik Dingel break; 1790536336c2SDominik Dingel case KVM_REG_S390_PFSELECT: 1791536336c2SDominik Dingel r = get_user(vcpu->arch.pfault_select, 1792536336c2SDominik Dingel (u64 __user *)reg->addr); 1793536336c2SDominik Dingel break; 1794672550fbSChristian Borntraeger case KVM_REG_S390_PP: 1795672550fbSChristian Borntraeger r = get_user(vcpu->arch.sie_block->pp, 1796672550fbSChristian Borntraeger (u64 __user *)reg->addr); 1797672550fbSChristian Borntraeger break; 1798afa45ff5SChristian Borntraeger case KVM_REG_S390_GBEA: 1799afa45ff5SChristian Borntraeger r = get_user(vcpu->arch.sie_block->gbea, 1800afa45ff5SChristian Borntraeger (u64 __user *)reg->addr); 1801afa45ff5SChristian Borntraeger break; 180214eebd91SCarsten Otte default: 180314eebd91SCarsten Otte break; 180414eebd91SCarsten Otte } 180514eebd91SCarsten Otte 180614eebd91SCarsten Otte return r; 180714eebd91SCarsten Otte } 1808b6d33834SChristoffer Dall 1809b0c632dbSHeiko Carstens static int kvm_arch_vcpu_ioctl_initial_reset(struct kvm_vcpu *vcpu) 1810b0c632dbSHeiko Carstens { 1811b0c632dbSHeiko Carstens kvm_s390_vcpu_initial_reset(vcpu); 1812b0c632dbSHeiko Carstens return 0; 1813b0c632dbSHeiko Carstens } 1814b0c632dbSHeiko Carstens 1815b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_set_regs(struct kvm_vcpu *vcpu, struct kvm_regs *regs) 1816b0c632dbSHeiko Carstens { 18175a32c1afSChristian Borntraeger memcpy(&vcpu->run->s.regs.gprs, ®s->gprs, sizeof(regs->gprs)); 1818b0c632dbSHeiko Carstens return 0; 1819b0c632dbSHeiko Carstens } 1820b0c632dbSHeiko Carstens 1821b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_get_regs(struct kvm_vcpu *vcpu, struct kvm_regs *regs) 1822b0c632dbSHeiko Carstens { 18235a32c1afSChristian Borntraeger memcpy(®s->gprs, &vcpu->run->s.regs.gprs, sizeof(regs->gprs)); 1824b0c632dbSHeiko Carstens return 0; 1825b0c632dbSHeiko Carstens } 1826b0c632dbSHeiko Carstens 1827b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_set_sregs(struct kvm_vcpu *vcpu, 1828b0c632dbSHeiko Carstens struct kvm_sregs *sregs) 1829b0c632dbSHeiko Carstens { 183059674c1aSChristian Borntraeger memcpy(&vcpu->run->s.regs.acrs, &sregs->acrs, sizeof(sregs->acrs)); 1831b0c632dbSHeiko Carstens memcpy(&vcpu->arch.sie_block->gcr, &sregs->crs, sizeof(sregs->crs)); 183259674c1aSChristian Borntraeger restore_access_regs(vcpu->run->s.regs.acrs); 1833b0c632dbSHeiko Carstens return 0; 1834b0c632dbSHeiko Carstens } 1835b0c632dbSHeiko Carstens 1836b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_get_sregs(struct kvm_vcpu *vcpu, 1837b0c632dbSHeiko Carstens struct kvm_sregs *sregs) 1838b0c632dbSHeiko Carstens { 183959674c1aSChristian Borntraeger memcpy(&sregs->acrs, &vcpu->run->s.regs.acrs, sizeof(sregs->acrs)); 1840b0c632dbSHeiko Carstens memcpy(&sregs->crs, &vcpu->arch.sie_block->gcr, sizeof(sregs->crs)); 1841b0c632dbSHeiko Carstens return 0; 1842b0c632dbSHeiko Carstens } 1843b0c632dbSHeiko Carstens 1844b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_set_fpu(struct kvm_vcpu *vcpu, struct kvm_fpu *fpu) 1845b0c632dbSHeiko Carstens { 18464725c860SMartin Schwidefsky if (test_fp_ctl(fpu->fpc)) 18474725c860SMartin Schwidefsky return -EINVAL; 18489977e886SHendrik Brueckner memcpy(vcpu->arch.guest_fpregs.fprs, &fpu->fprs, sizeof(fpu->fprs)); 18494725c860SMartin Schwidefsky vcpu->arch.guest_fpregs.fpc = fpu->fpc; 1850d0164ee2SHendrik Brueckner save_fpu_regs(); 18519977e886SHendrik Brueckner load_fpu_from(&vcpu->arch.guest_fpregs); 1852b0c632dbSHeiko Carstens return 0; 1853b0c632dbSHeiko Carstens } 1854b0c632dbSHeiko Carstens 1855b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_get_fpu(struct kvm_vcpu *vcpu, struct kvm_fpu *fpu) 1856b0c632dbSHeiko Carstens { 18579977e886SHendrik Brueckner memcpy(&fpu->fprs, vcpu->arch.guest_fpregs.fprs, sizeof(fpu->fprs)); 1858b0c632dbSHeiko Carstens fpu->fpc = vcpu->arch.guest_fpregs.fpc; 1859b0c632dbSHeiko Carstens return 0; 1860b0c632dbSHeiko Carstens } 1861b0c632dbSHeiko Carstens 1862b0c632dbSHeiko Carstens static int kvm_arch_vcpu_ioctl_set_initial_psw(struct kvm_vcpu *vcpu, psw_t psw) 1863b0c632dbSHeiko Carstens { 1864b0c632dbSHeiko Carstens int rc = 0; 1865b0c632dbSHeiko Carstens 18667a42fdc2SDavid Hildenbrand if (!is_vcpu_stopped(vcpu)) 1867b0c632dbSHeiko Carstens rc = -EBUSY; 1868d7b0b5ebSCarsten Otte else { 1869d7b0b5ebSCarsten Otte vcpu->run->psw_mask = psw.mask; 1870d7b0b5ebSCarsten Otte vcpu->run->psw_addr = psw.addr; 1871d7b0b5ebSCarsten Otte } 1872b0c632dbSHeiko Carstens return rc; 1873b0c632dbSHeiko Carstens } 1874b0c632dbSHeiko Carstens 1875b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_translate(struct kvm_vcpu *vcpu, 1876b0c632dbSHeiko Carstens struct kvm_translation *tr) 1877b0c632dbSHeiko Carstens { 1878b0c632dbSHeiko Carstens return -EINVAL; /* not implemented yet */ 1879b0c632dbSHeiko Carstens } 1880b0c632dbSHeiko Carstens 188127291e21SDavid Hildenbrand #define VALID_GUESTDBG_FLAGS (KVM_GUESTDBG_SINGLESTEP | \ 188227291e21SDavid Hildenbrand KVM_GUESTDBG_USE_HW_BP | \ 188327291e21SDavid Hildenbrand KVM_GUESTDBG_ENABLE) 188427291e21SDavid Hildenbrand 1885d0bfb940SJan Kiszka int kvm_arch_vcpu_ioctl_set_guest_debug(struct kvm_vcpu *vcpu, 1886d0bfb940SJan Kiszka struct kvm_guest_debug *dbg) 1887b0c632dbSHeiko Carstens { 188827291e21SDavid Hildenbrand int rc = 0; 188927291e21SDavid Hildenbrand 189027291e21SDavid Hildenbrand vcpu->guest_debug = 0; 189127291e21SDavid Hildenbrand kvm_s390_clear_bp_data(vcpu); 189227291e21SDavid Hildenbrand 18932de3bfc2SDavid Hildenbrand if (dbg->control & ~VALID_GUESTDBG_FLAGS) 189427291e21SDavid Hildenbrand return -EINVAL; 189527291e21SDavid Hildenbrand 189627291e21SDavid Hildenbrand if (dbg->control & KVM_GUESTDBG_ENABLE) { 189727291e21SDavid Hildenbrand vcpu->guest_debug = dbg->control; 189827291e21SDavid Hildenbrand /* enforce guest PER */ 1899805de8f4SPeter Zijlstra atomic_or(CPUSTAT_P, &vcpu->arch.sie_block->cpuflags); 190027291e21SDavid Hildenbrand 190127291e21SDavid Hildenbrand if (dbg->control & KVM_GUESTDBG_USE_HW_BP) 190227291e21SDavid Hildenbrand rc = kvm_s390_import_bp_data(vcpu, dbg); 190327291e21SDavid Hildenbrand } else { 1904805de8f4SPeter Zijlstra atomic_andnot(CPUSTAT_P, &vcpu->arch.sie_block->cpuflags); 190527291e21SDavid Hildenbrand vcpu->arch.guestdbg.last_bp = 0; 190627291e21SDavid Hildenbrand } 190727291e21SDavid Hildenbrand 190827291e21SDavid Hildenbrand if (rc) { 190927291e21SDavid Hildenbrand vcpu->guest_debug = 0; 191027291e21SDavid Hildenbrand kvm_s390_clear_bp_data(vcpu); 1911805de8f4SPeter Zijlstra atomic_andnot(CPUSTAT_P, &vcpu->arch.sie_block->cpuflags); 191227291e21SDavid Hildenbrand } 191327291e21SDavid Hildenbrand 191427291e21SDavid Hildenbrand return rc; 1915b0c632dbSHeiko Carstens } 1916b0c632dbSHeiko Carstens 191762d9f0dbSMarcelo Tosatti int kvm_arch_vcpu_ioctl_get_mpstate(struct kvm_vcpu *vcpu, 191862d9f0dbSMarcelo Tosatti struct kvm_mp_state *mp_state) 191962d9f0dbSMarcelo Tosatti { 19206352e4d2SDavid Hildenbrand /* CHECK_STOP and LOAD are not supported yet */ 19216352e4d2SDavid Hildenbrand return is_vcpu_stopped(vcpu) ? KVM_MP_STATE_STOPPED : 19226352e4d2SDavid Hildenbrand KVM_MP_STATE_OPERATING; 192362d9f0dbSMarcelo Tosatti } 192462d9f0dbSMarcelo Tosatti 192562d9f0dbSMarcelo Tosatti int kvm_arch_vcpu_ioctl_set_mpstate(struct kvm_vcpu *vcpu, 192662d9f0dbSMarcelo Tosatti struct kvm_mp_state *mp_state) 192762d9f0dbSMarcelo Tosatti { 19286352e4d2SDavid Hildenbrand int rc = 0; 19296352e4d2SDavid Hildenbrand 19306352e4d2SDavid Hildenbrand /* user space knows about this interface - let it control the state */ 19316352e4d2SDavid Hildenbrand vcpu->kvm->arch.user_cpu_state_ctrl = 1; 19326352e4d2SDavid Hildenbrand 19336352e4d2SDavid Hildenbrand switch (mp_state->mp_state) { 19346352e4d2SDavid Hildenbrand case KVM_MP_STATE_STOPPED: 19356352e4d2SDavid Hildenbrand kvm_s390_vcpu_stop(vcpu); 19366352e4d2SDavid Hildenbrand break; 19376352e4d2SDavid Hildenbrand case KVM_MP_STATE_OPERATING: 19386352e4d2SDavid Hildenbrand kvm_s390_vcpu_start(vcpu); 19396352e4d2SDavid Hildenbrand break; 19406352e4d2SDavid Hildenbrand case KVM_MP_STATE_LOAD: 19416352e4d2SDavid Hildenbrand case KVM_MP_STATE_CHECK_STOP: 19426352e4d2SDavid Hildenbrand /* fall through - CHECK_STOP and LOAD are not supported yet */ 19436352e4d2SDavid Hildenbrand default: 19446352e4d2SDavid Hildenbrand rc = -ENXIO; 19456352e4d2SDavid Hildenbrand } 19466352e4d2SDavid Hildenbrand 19476352e4d2SDavid Hildenbrand return rc; 194862d9f0dbSMarcelo Tosatti } 194962d9f0dbSMarcelo Tosatti 19508ad35755SDavid Hildenbrand static bool ibs_enabled(struct kvm_vcpu *vcpu) 19518ad35755SDavid Hildenbrand { 19528ad35755SDavid Hildenbrand return atomic_read(&vcpu->arch.sie_block->cpuflags) & CPUSTAT_IBS; 19538ad35755SDavid Hildenbrand } 19548ad35755SDavid Hildenbrand 19552c70fe44SChristian Borntraeger static int kvm_s390_handle_requests(struct kvm_vcpu *vcpu) 19562c70fe44SChristian Borntraeger { 19578ad35755SDavid Hildenbrand retry: 19588e236546SChristian Borntraeger kvm_s390_vcpu_request_handled(vcpu); 1959586b7ccdSChristian Borntraeger if (!vcpu->requests) 1960586b7ccdSChristian Borntraeger return 0; 19612c70fe44SChristian Borntraeger /* 19622c70fe44SChristian Borntraeger * We use MMU_RELOAD just to re-arm the ipte notifier for the 19632c70fe44SChristian Borntraeger * guest prefix page. gmap_ipte_notify will wait on the ptl lock. 19642c70fe44SChristian Borntraeger * This ensures that the ipte instruction for this request has 19652c70fe44SChristian Borntraeger * already finished. We might race against a second unmapper that 19662c70fe44SChristian Borntraeger * wants to set the blocking bit. Lets just retry the request loop. 19672c70fe44SChristian Borntraeger */ 19688ad35755SDavid Hildenbrand if (kvm_check_request(KVM_REQ_MMU_RELOAD, vcpu)) { 19692c70fe44SChristian Borntraeger int rc; 19702c70fe44SChristian Borntraeger rc = gmap_ipte_notify(vcpu->arch.gmap, 1971fda902cbSMichael Mueller kvm_s390_get_prefix(vcpu), 19722c70fe44SChristian Borntraeger PAGE_SIZE * 2); 19732c70fe44SChristian Borntraeger if (rc) 19742c70fe44SChristian Borntraeger return rc; 19758ad35755SDavid Hildenbrand goto retry; 19762c70fe44SChristian Borntraeger } 19778ad35755SDavid Hildenbrand 1978d3d692c8SDavid Hildenbrand if (kvm_check_request(KVM_REQ_TLB_FLUSH, vcpu)) { 1979d3d692c8SDavid Hildenbrand vcpu->arch.sie_block->ihcpu = 0xffff; 1980d3d692c8SDavid Hildenbrand goto retry; 1981d3d692c8SDavid Hildenbrand } 1982d3d692c8SDavid Hildenbrand 19838ad35755SDavid Hildenbrand if (kvm_check_request(KVM_REQ_ENABLE_IBS, vcpu)) { 19848ad35755SDavid Hildenbrand if (!ibs_enabled(vcpu)) { 19858ad35755SDavid Hildenbrand trace_kvm_s390_enable_disable_ibs(vcpu->vcpu_id, 1); 1986805de8f4SPeter Zijlstra atomic_or(CPUSTAT_IBS, 19878ad35755SDavid Hildenbrand &vcpu->arch.sie_block->cpuflags); 19888ad35755SDavid Hildenbrand } 19898ad35755SDavid Hildenbrand goto retry; 19908ad35755SDavid Hildenbrand } 19918ad35755SDavid Hildenbrand 19928ad35755SDavid Hildenbrand if (kvm_check_request(KVM_REQ_DISABLE_IBS, vcpu)) { 19938ad35755SDavid Hildenbrand if (ibs_enabled(vcpu)) { 19948ad35755SDavid Hildenbrand trace_kvm_s390_enable_disable_ibs(vcpu->vcpu_id, 0); 1995805de8f4SPeter Zijlstra atomic_andnot(CPUSTAT_IBS, 19968ad35755SDavid Hildenbrand &vcpu->arch.sie_block->cpuflags); 19978ad35755SDavid Hildenbrand } 19988ad35755SDavid Hildenbrand goto retry; 19998ad35755SDavid Hildenbrand } 20008ad35755SDavid Hildenbrand 20010759d068SDavid Hildenbrand /* nothing to do, just clear the request */ 20020759d068SDavid Hildenbrand clear_bit(KVM_REQ_UNHALT, &vcpu->requests); 20030759d068SDavid Hildenbrand 20042c70fe44SChristian Borntraeger return 0; 20052c70fe44SChristian Borntraeger } 20062c70fe44SChristian Borntraeger 200725ed1675SDavid Hildenbrand void kvm_s390_set_tod_clock(struct kvm *kvm, u64 tod) 200825ed1675SDavid Hildenbrand { 200925ed1675SDavid Hildenbrand struct kvm_vcpu *vcpu; 201025ed1675SDavid Hildenbrand int i; 201125ed1675SDavid Hildenbrand 201225ed1675SDavid Hildenbrand mutex_lock(&kvm->lock); 201325ed1675SDavid Hildenbrand preempt_disable(); 201425ed1675SDavid Hildenbrand kvm->arch.epoch = tod - get_tod_clock(); 201525ed1675SDavid Hildenbrand kvm_s390_vcpu_block_all(kvm); 201625ed1675SDavid Hildenbrand kvm_for_each_vcpu(i, vcpu, kvm) 201725ed1675SDavid Hildenbrand vcpu->arch.sie_block->epoch = kvm->arch.epoch; 201825ed1675SDavid Hildenbrand kvm_s390_vcpu_unblock_all(kvm); 201925ed1675SDavid Hildenbrand preempt_enable(); 202025ed1675SDavid Hildenbrand mutex_unlock(&kvm->lock); 202125ed1675SDavid Hildenbrand } 202225ed1675SDavid Hildenbrand 2023fa576c58SThomas Huth /** 2024fa576c58SThomas Huth * kvm_arch_fault_in_page - fault-in guest page if necessary 2025fa576c58SThomas Huth * @vcpu: The corresponding virtual cpu 2026fa576c58SThomas Huth * @gpa: Guest physical address 2027fa576c58SThomas Huth * @writable: Whether the page should be writable or not 2028fa576c58SThomas Huth * 2029fa576c58SThomas Huth * Make sure that a guest page has been faulted-in on the host. 2030fa576c58SThomas Huth * 2031fa576c58SThomas Huth * Return: Zero on success, negative error code otherwise. 2032fa576c58SThomas Huth */ 2033fa576c58SThomas Huth long kvm_arch_fault_in_page(struct kvm_vcpu *vcpu, gpa_t gpa, int writable) 203424eb3a82SDominik Dingel { 2035527e30b4SMartin Schwidefsky return gmap_fault(vcpu->arch.gmap, gpa, 2036527e30b4SMartin Schwidefsky writable ? FAULT_FLAG_WRITE : 0); 203724eb3a82SDominik Dingel } 203824eb3a82SDominik Dingel 20393c038e6bSDominik Dingel static void __kvm_inject_pfault_token(struct kvm_vcpu *vcpu, bool start_token, 20403c038e6bSDominik Dingel unsigned long token) 20413c038e6bSDominik Dingel { 20423c038e6bSDominik Dingel struct kvm_s390_interrupt inti; 2043383d0b05SJens Freimann struct kvm_s390_irq irq; 20443c038e6bSDominik Dingel 20453c038e6bSDominik Dingel if (start_token) { 2046383d0b05SJens Freimann irq.u.ext.ext_params2 = token; 2047383d0b05SJens Freimann irq.type = KVM_S390_INT_PFAULT_INIT; 2048383d0b05SJens Freimann WARN_ON_ONCE(kvm_s390_inject_vcpu(vcpu, &irq)); 20493c038e6bSDominik Dingel } else { 20503c038e6bSDominik Dingel inti.type = KVM_S390_INT_PFAULT_DONE; 2051383d0b05SJens Freimann inti.parm64 = token; 20523c038e6bSDominik Dingel WARN_ON_ONCE(kvm_s390_inject_vm(vcpu->kvm, &inti)); 20533c038e6bSDominik Dingel } 20543c038e6bSDominik Dingel } 20553c038e6bSDominik Dingel 20563c038e6bSDominik Dingel void kvm_arch_async_page_not_present(struct kvm_vcpu *vcpu, 20573c038e6bSDominik Dingel struct kvm_async_pf *work) 20583c038e6bSDominik Dingel { 20593c038e6bSDominik Dingel trace_kvm_s390_pfault_init(vcpu, work->arch.pfault_token); 20603c038e6bSDominik Dingel __kvm_inject_pfault_token(vcpu, true, work->arch.pfault_token); 20613c038e6bSDominik Dingel } 20623c038e6bSDominik Dingel 20633c038e6bSDominik Dingel void kvm_arch_async_page_present(struct kvm_vcpu *vcpu, 20643c038e6bSDominik Dingel struct kvm_async_pf *work) 20653c038e6bSDominik Dingel { 20663c038e6bSDominik Dingel trace_kvm_s390_pfault_done(vcpu, work->arch.pfault_token); 20673c038e6bSDominik Dingel __kvm_inject_pfault_token(vcpu, false, work->arch.pfault_token); 20683c038e6bSDominik Dingel } 20693c038e6bSDominik Dingel 20703c038e6bSDominik Dingel void kvm_arch_async_page_ready(struct kvm_vcpu *vcpu, 20713c038e6bSDominik Dingel struct kvm_async_pf *work) 20723c038e6bSDominik Dingel { 20733c038e6bSDominik Dingel /* s390 will always inject the page directly */ 20743c038e6bSDominik Dingel } 20753c038e6bSDominik Dingel 20763c038e6bSDominik Dingel bool kvm_arch_can_inject_async_page_present(struct kvm_vcpu *vcpu) 20773c038e6bSDominik Dingel { 20783c038e6bSDominik Dingel /* 20793c038e6bSDominik Dingel * s390 will always inject the page directly, 20803c038e6bSDominik Dingel * but we still want check_async_completion to cleanup 20813c038e6bSDominik Dingel */ 20823c038e6bSDominik Dingel return true; 20833c038e6bSDominik Dingel } 20843c038e6bSDominik Dingel 20853c038e6bSDominik Dingel static int kvm_arch_setup_async_pf(struct kvm_vcpu *vcpu) 20863c038e6bSDominik Dingel { 20873c038e6bSDominik Dingel hva_t hva; 20883c038e6bSDominik Dingel struct kvm_arch_async_pf arch; 20893c038e6bSDominik Dingel int rc; 20903c038e6bSDominik Dingel 20913c038e6bSDominik Dingel if (vcpu->arch.pfault_token == KVM_S390_PFAULT_TOKEN_INVALID) 20923c038e6bSDominik Dingel return 0; 20933c038e6bSDominik Dingel if ((vcpu->arch.sie_block->gpsw.mask & vcpu->arch.pfault_select) != 20943c038e6bSDominik Dingel vcpu->arch.pfault_compare) 20953c038e6bSDominik Dingel return 0; 20963c038e6bSDominik Dingel if (psw_extint_disabled(vcpu)) 20973c038e6bSDominik Dingel return 0; 20989a022067SDavid Hildenbrand if (kvm_s390_vcpu_has_irq(vcpu, 0)) 20993c038e6bSDominik Dingel return 0; 21003c038e6bSDominik Dingel if (!(vcpu->arch.sie_block->gcr[0] & 0x200ul)) 21013c038e6bSDominik Dingel return 0; 21023c038e6bSDominik Dingel if (!vcpu->arch.gmap->pfault_enabled) 21033c038e6bSDominik Dingel return 0; 21043c038e6bSDominik Dingel 210581480cc1SHeiko Carstens hva = gfn_to_hva(vcpu->kvm, gpa_to_gfn(current->thread.gmap_addr)); 210681480cc1SHeiko Carstens hva += current->thread.gmap_addr & ~PAGE_MASK; 210781480cc1SHeiko Carstens if (read_guest_real(vcpu, vcpu->arch.pfault_token, &arch.pfault_token, 8)) 21083c038e6bSDominik Dingel return 0; 21093c038e6bSDominik Dingel 21103c038e6bSDominik Dingel rc = kvm_setup_async_pf(vcpu, current->thread.gmap_addr, hva, &arch); 21113c038e6bSDominik Dingel return rc; 21123c038e6bSDominik Dingel } 21133c038e6bSDominik Dingel 21143fb4c40fSThomas Huth static int vcpu_pre_run(struct kvm_vcpu *vcpu) 2115b0c632dbSHeiko Carstens { 21163fb4c40fSThomas Huth int rc, cpuflags; 2117e168bf8dSCarsten Otte 21183c038e6bSDominik Dingel /* 21193c038e6bSDominik Dingel * On s390 notifications for arriving pages will be delivered directly 21203c038e6bSDominik Dingel * to the guest but the house keeping for completed pfaults is 21213c038e6bSDominik Dingel * handled outside the worker. 21223c038e6bSDominik Dingel */ 21233c038e6bSDominik Dingel kvm_check_async_pf_completion(vcpu); 21243c038e6bSDominik Dingel 21255a32c1afSChristian Borntraeger memcpy(&vcpu->arch.sie_block->gg14, &vcpu->run->s.regs.gprs[14], 16); 2126b0c632dbSHeiko Carstens 2127b0c632dbSHeiko Carstens if (need_resched()) 2128b0c632dbSHeiko Carstens schedule(); 2129b0c632dbSHeiko Carstens 2130d3a73acbSMartin Schwidefsky if (test_cpu_flag(CIF_MCCK_PENDING)) 213171cde587SChristian Borntraeger s390_handle_mcck(); 213271cde587SChristian Borntraeger 213379395031SJens Freimann if (!kvm_is_ucontrol(vcpu->kvm)) { 213479395031SJens Freimann rc = kvm_s390_deliver_pending_interrupts(vcpu); 213579395031SJens Freimann if (rc) 213679395031SJens Freimann return rc; 213779395031SJens Freimann } 21380ff31867SCarsten Otte 21392c70fe44SChristian Borntraeger rc = kvm_s390_handle_requests(vcpu); 21402c70fe44SChristian Borntraeger if (rc) 21412c70fe44SChristian Borntraeger return rc; 21422c70fe44SChristian Borntraeger 214327291e21SDavid Hildenbrand if (guestdbg_enabled(vcpu)) { 214427291e21SDavid Hildenbrand kvm_s390_backup_guest_per_regs(vcpu); 214527291e21SDavid Hildenbrand kvm_s390_patch_guest_per_regs(vcpu); 214627291e21SDavid Hildenbrand } 214727291e21SDavid Hildenbrand 2148b0c632dbSHeiko Carstens vcpu->arch.sie_block->icptcode = 0; 21493fb4c40fSThomas Huth cpuflags = atomic_read(&vcpu->arch.sie_block->cpuflags); 21503fb4c40fSThomas Huth VCPU_EVENT(vcpu, 6, "entering sie flags %x", cpuflags); 21513fb4c40fSThomas Huth trace_kvm_s390_sie_enter(vcpu, cpuflags); 21522b29a9fdSDominik Dingel 21533fb4c40fSThomas Huth return 0; 21543fb4c40fSThomas Huth } 21553fb4c40fSThomas Huth 2156492d8642SThomas Huth static int vcpu_post_run_fault_in_sie(struct kvm_vcpu *vcpu) 2157492d8642SThomas Huth { 2158492d8642SThomas Huth psw_t *psw = &vcpu->arch.sie_block->gpsw; 2159492d8642SThomas Huth u8 opcode; 2160492d8642SThomas Huth int rc; 2161492d8642SThomas Huth 2162492d8642SThomas Huth VCPU_EVENT(vcpu, 3, "%s", "fault in sie instruction"); 2163492d8642SThomas Huth trace_kvm_s390_sie_fault(vcpu); 2164492d8642SThomas Huth 2165492d8642SThomas Huth /* 2166492d8642SThomas Huth * We want to inject an addressing exception, which is defined as a 2167492d8642SThomas Huth * suppressing or terminating exception. However, since we came here 2168492d8642SThomas Huth * by a DAT access exception, the PSW still points to the faulting 2169492d8642SThomas Huth * instruction since DAT exceptions are nullifying. So we've got 2170492d8642SThomas Huth * to look up the current opcode to get the length of the instruction 2171492d8642SThomas Huth * to be able to forward the PSW. 2172492d8642SThomas Huth */ 21738ae04b8fSAlexander Yarygin rc = read_guest(vcpu, psw->addr, 0, &opcode, 1); 2174492d8642SThomas Huth if (rc) 2175492d8642SThomas Huth return kvm_s390_inject_prog_cond(vcpu, rc); 2176492d8642SThomas Huth psw->addr = __rewind_psw(*psw, -insn_length(opcode)); 2177492d8642SThomas Huth 2178492d8642SThomas Huth return kvm_s390_inject_program_int(vcpu, PGM_ADDRESSING); 2179492d8642SThomas Huth } 2180492d8642SThomas Huth 21813fb4c40fSThomas Huth static int vcpu_post_run(struct kvm_vcpu *vcpu, int exit_reason) 21823fb4c40fSThomas Huth { 21832b29a9fdSDominik Dingel VCPU_EVENT(vcpu, 6, "exit sie icptcode %d", 21842b29a9fdSDominik Dingel vcpu->arch.sie_block->icptcode); 21852b29a9fdSDominik Dingel trace_kvm_s390_sie_exit(vcpu, vcpu->arch.sie_block->icptcode); 21862b29a9fdSDominik Dingel 218727291e21SDavid Hildenbrand if (guestdbg_enabled(vcpu)) 218827291e21SDavid Hildenbrand kvm_s390_restore_guest_per_regs(vcpu); 218927291e21SDavid Hildenbrand 219071f116bfSDavid Hildenbrand memcpy(&vcpu->run->s.regs.gprs[14], &vcpu->arch.sie_block->gg14, 16); 219171f116bfSDavid Hildenbrand 219271f116bfSDavid Hildenbrand if (vcpu->arch.sie_block->icptcode > 0) { 219371f116bfSDavid Hildenbrand int rc = kvm_handle_sie_intercept(vcpu); 219471f116bfSDavid Hildenbrand 219571f116bfSDavid Hildenbrand if (rc != -EOPNOTSUPP) 219671f116bfSDavid Hildenbrand return rc; 219771f116bfSDavid Hildenbrand vcpu->run->exit_reason = KVM_EXIT_S390_SIEIC; 219871f116bfSDavid Hildenbrand vcpu->run->s390_sieic.icptcode = vcpu->arch.sie_block->icptcode; 219971f116bfSDavid Hildenbrand vcpu->run->s390_sieic.ipa = vcpu->arch.sie_block->ipa; 220071f116bfSDavid Hildenbrand vcpu->run->s390_sieic.ipb = vcpu->arch.sie_block->ipb; 220171f116bfSDavid Hildenbrand return -EREMOTE; 220271f116bfSDavid Hildenbrand } else if (exit_reason != -EFAULT) { 220371f116bfSDavid Hildenbrand vcpu->stat.exit_null++; 220471f116bfSDavid Hildenbrand return 0; 2205210b1607SThomas Huth } else if (kvm_is_ucontrol(vcpu->kvm)) { 2206210b1607SThomas Huth vcpu->run->exit_reason = KVM_EXIT_S390_UCONTROL; 2207210b1607SThomas Huth vcpu->run->s390_ucontrol.trans_exc_code = 2208210b1607SThomas Huth current->thread.gmap_addr; 2209210b1607SThomas Huth vcpu->run->s390_ucontrol.pgm_code = 0x10; 221071f116bfSDavid Hildenbrand return -EREMOTE; 221124eb3a82SDominik Dingel } else if (current->thread.gmap_pfault) { 22123c038e6bSDominik Dingel trace_kvm_s390_major_guest_pfault(vcpu); 221324eb3a82SDominik Dingel current->thread.gmap_pfault = 0; 221471f116bfSDavid Hildenbrand if (kvm_arch_setup_async_pf(vcpu)) 221571f116bfSDavid Hildenbrand return 0; 221671f116bfSDavid Hildenbrand return kvm_arch_fault_in_page(vcpu, current->thread.gmap_addr, 1); 2217fa576c58SThomas Huth } 221871f116bfSDavid Hildenbrand return vcpu_post_run_fault_in_sie(vcpu); 22193fb4c40fSThomas Huth } 22203fb4c40fSThomas Huth 22213fb4c40fSThomas Huth static int __vcpu_run(struct kvm_vcpu *vcpu) 22223fb4c40fSThomas Huth { 22233fb4c40fSThomas Huth int rc, exit_reason; 22243fb4c40fSThomas Huth 2225800c1065SThomas Huth /* 2226800c1065SThomas Huth * We try to hold kvm->srcu during most of vcpu_run (except when run- 2227800c1065SThomas Huth * ning the guest), so that memslots (and other stuff) are protected 2228800c1065SThomas Huth */ 2229800c1065SThomas Huth vcpu->srcu_idx = srcu_read_lock(&vcpu->kvm->srcu); 2230800c1065SThomas Huth 2231a76ccff6SThomas Huth do { 22323fb4c40fSThomas Huth rc = vcpu_pre_run(vcpu); 22333fb4c40fSThomas Huth if (rc) 2234a76ccff6SThomas Huth break; 22353fb4c40fSThomas Huth 2236800c1065SThomas Huth srcu_read_unlock(&vcpu->kvm->srcu, vcpu->srcu_idx); 22373fb4c40fSThomas Huth /* 2238a76ccff6SThomas Huth * As PF_VCPU will be used in fault handler, between 2239a76ccff6SThomas Huth * guest_enter and guest_exit should be no uaccess. 22403fb4c40fSThomas Huth */ 22410097d12eSChristian Borntraeger local_irq_disable(); 22420097d12eSChristian Borntraeger __kvm_guest_enter(); 22430097d12eSChristian Borntraeger local_irq_enable(); 2244a76ccff6SThomas Huth exit_reason = sie64a(vcpu->arch.sie_block, 2245a76ccff6SThomas Huth vcpu->run->s.regs.gprs); 22460097d12eSChristian Borntraeger local_irq_disable(); 22470097d12eSChristian Borntraeger __kvm_guest_exit(); 22480097d12eSChristian Borntraeger local_irq_enable(); 2249800c1065SThomas Huth vcpu->srcu_idx = srcu_read_lock(&vcpu->kvm->srcu); 22503fb4c40fSThomas Huth 22513fb4c40fSThomas Huth rc = vcpu_post_run(vcpu, exit_reason); 225227291e21SDavid Hildenbrand } while (!signal_pending(current) && !guestdbg_exit_pending(vcpu) && !rc); 22533fb4c40fSThomas Huth 2254800c1065SThomas Huth srcu_read_unlock(&vcpu->kvm->srcu, vcpu->srcu_idx); 2255e168bf8dSCarsten Otte return rc; 2256b0c632dbSHeiko Carstens } 2257b0c632dbSHeiko Carstens 2258b028ee3eSDavid Hildenbrand static void sync_regs(struct kvm_vcpu *vcpu, struct kvm_run *kvm_run) 2259b028ee3eSDavid Hildenbrand { 2260b028ee3eSDavid Hildenbrand vcpu->arch.sie_block->gpsw.mask = kvm_run->psw_mask; 2261b028ee3eSDavid Hildenbrand vcpu->arch.sie_block->gpsw.addr = kvm_run->psw_addr; 2262b028ee3eSDavid Hildenbrand if (kvm_run->kvm_dirty_regs & KVM_SYNC_PREFIX) 2263b028ee3eSDavid Hildenbrand kvm_s390_set_prefix(vcpu, kvm_run->s.regs.prefix); 2264b028ee3eSDavid Hildenbrand if (kvm_run->kvm_dirty_regs & KVM_SYNC_CRS) { 2265b028ee3eSDavid Hildenbrand memcpy(&vcpu->arch.sie_block->gcr, &kvm_run->s.regs.crs, 128); 2266d3d692c8SDavid Hildenbrand /* some control register changes require a tlb flush */ 2267d3d692c8SDavid Hildenbrand kvm_make_request(KVM_REQ_TLB_FLUSH, vcpu); 2268b028ee3eSDavid Hildenbrand } 2269b028ee3eSDavid Hildenbrand if (kvm_run->kvm_dirty_regs & KVM_SYNC_ARCH0) { 2270b028ee3eSDavid Hildenbrand vcpu->arch.sie_block->cputm = kvm_run->s.regs.cputm; 2271b028ee3eSDavid Hildenbrand vcpu->arch.sie_block->ckc = kvm_run->s.regs.ckc; 2272b028ee3eSDavid Hildenbrand vcpu->arch.sie_block->todpr = kvm_run->s.regs.todpr; 2273b028ee3eSDavid Hildenbrand vcpu->arch.sie_block->pp = kvm_run->s.regs.pp; 2274b028ee3eSDavid Hildenbrand vcpu->arch.sie_block->gbea = kvm_run->s.regs.gbea; 2275b028ee3eSDavid Hildenbrand } 2276b028ee3eSDavid Hildenbrand if (kvm_run->kvm_dirty_regs & KVM_SYNC_PFAULT) { 2277b028ee3eSDavid Hildenbrand vcpu->arch.pfault_token = kvm_run->s.regs.pft; 2278b028ee3eSDavid Hildenbrand vcpu->arch.pfault_select = kvm_run->s.regs.pfs; 2279b028ee3eSDavid Hildenbrand vcpu->arch.pfault_compare = kvm_run->s.regs.pfc; 22809fbd8082SDavid Hildenbrand if (vcpu->arch.pfault_token == KVM_S390_PFAULT_TOKEN_INVALID) 22819fbd8082SDavid Hildenbrand kvm_clear_async_pf_completion_queue(vcpu); 2282b028ee3eSDavid Hildenbrand } 2283b028ee3eSDavid Hildenbrand kvm_run->kvm_dirty_regs = 0; 2284b028ee3eSDavid Hildenbrand } 2285b028ee3eSDavid Hildenbrand 2286b028ee3eSDavid Hildenbrand static void store_regs(struct kvm_vcpu *vcpu, struct kvm_run *kvm_run) 2287b028ee3eSDavid Hildenbrand { 2288b028ee3eSDavid Hildenbrand kvm_run->psw_mask = vcpu->arch.sie_block->gpsw.mask; 2289b028ee3eSDavid Hildenbrand kvm_run->psw_addr = vcpu->arch.sie_block->gpsw.addr; 2290b028ee3eSDavid Hildenbrand kvm_run->s.regs.prefix = kvm_s390_get_prefix(vcpu); 2291b028ee3eSDavid Hildenbrand memcpy(&kvm_run->s.regs.crs, &vcpu->arch.sie_block->gcr, 128); 2292b028ee3eSDavid Hildenbrand kvm_run->s.regs.cputm = vcpu->arch.sie_block->cputm; 2293b028ee3eSDavid Hildenbrand kvm_run->s.regs.ckc = vcpu->arch.sie_block->ckc; 2294b028ee3eSDavid Hildenbrand kvm_run->s.regs.todpr = vcpu->arch.sie_block->todpr; 2295b028ee3eSDavid Hildenbrand kvm_run->s.regs.pp = vcpu->arch.sie_block->pp; 2296b028ee3eSDavid Hildenbrand kvm_run->s.regs.gbea = vcpu->arch.sie_block->gbea; 2297b028ee3eSDavid Hildenbrand kvm_run->s.regs.pft = vcpu->arch.pfault_token; 2298b028ee3eSDavid Hildenbrand kvm_run->s.regs.pfs = vcpu->arch.pfault_select; 2299b028ee3eSDavid Hildenbrand kvm_run->s.regs.pfc = vcpu->arch.pfault_compare; 2300b028ee3eSDavid Hildenbrand } 2301b028ee3eSDavid Hildenbrand 2302b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_run(struct kvm_vcpu *vcpu, struct kvm_run *kvm_run) 2303b0c632dbSHeiko Carstens { 23048f2abe6aSChristian Borntraeger int rc; 2305b0c632dbSHeiko Carstens sigset_t sigsaved; 2306b0c632dbSHeiko Carstens 230727291e21SDavid Hildenbrand if (guestdbg_exit_pending(vcpu)) { 230827291e21SDavid Hildenbrand kvm_s390_prepare_debug_exit(vcpu); 230927291e21SDavid Hildenbrand return 0; 231027291e21SDavid Hildenbrand } 231127291e21SDavid Hildenbrand 2312b0c632dbSHeiko Carstens if (vcpu->sigset_active) 2313b0c632dbSHeiko Carstens sigprocmask(SIG_SETMASK, &vcpu->sigset, &sigsaved); 2314b0c632dbSHeiko Carstens 23156352e4d2SDavid Hildenbrand if (!kvm_s390_user_cpu_state_ctrl(vcpu->kvm)) { 23166852d7b6SDavid Hildenbrand kvm_s390_vcpu_start(vcpu); 23176352e4d2SDavid Hildenbrand } else if (is_vcpu_stopped(vcpu)) { 2318ea2cdd27SDavid Hildenbrand pr_err_ratelimited("can't run stopped vcpu %d\n", 23196352e4d2SDavid Hildenbrand vcpu->vcpu_id); 23206352e4d2SDavid Hildenbrand return -EINVAL; 23216352e4d2SDavid Hildenbrand } 2322b0c632dbSHeiko Carstens 2323b028ee3eSDavid Hildenbrand sync_regs(vcpu, kvm_run); 2324d7b0b5ebSCarsten Otte 2325dab4079dSHeiko Carstens might_fault(); 2326e168bf8dSCarsten Otte rc = __vcpu_run(vcpu); 23279ace903dSChristian Ehrhardt 2328b1d16c49SChristian Ehrhardt if (signal_pending(current) && !rc) { 2329b1d16c49SChristian Ehrhardt kvm_run->exit_reason = KVM_EXIT_INTR; 23308f2abe6aSChristian Borntraeger rc = -EINTR; 2331b1d16c49SChristian Ehrhardt } 23328f2abe6aSChristian Borntraeger 233327291e21SDavid Hildenbrand if (guestdbg_exit_pending(vcpu) && !rc) { 233427291e21SDavid Hildenbrand kvm_s390_prepare_debug_exit(vcpu); 233527291e21SDavid Hildenbrand rc = 0; 233627291e21SDavid Hildenbrand } 233727291e21SDavid Hildenbrand 23388f2abe6aSChristian Borntraeger if (rc == -EREMOTE) { 233971f116bfSDavid Hildenbrand /* userspace support is needed, kvm_run has been prepared */ 23408f2abe6aSChristian Borntraeger rc = 0; 23418f2abe6aSChristian Borntraeger } 23428f2abe6aSChristian Borntraeger 2343b028ee3eSDavid Hildenbrand store_regs(vcpu, kvm_run); 2344d7b0b5ebSCarsten Otte 2345b0c632dbSHeiko Carstens if (vcpu->sigset_active) 2346b0c632dbSHeiko Carstens sigprocmask(SIG_SETMASK, &sigsaved, NULL); 2347b0c632dbSHeiko Carstens 2348b0c632dbSHeiko Carstens vcpu->stat.exit_userspace++; 23497e8e6ab4SHeiko Carstens return rc; 2350b0c632dbSHeiko Carstens } 2351b0c632dbSHeiko Carstens 2352b0c632dbSHeiko Carstens /* 2353b0c632dbSHeiko Carstens * store status at address 2354b0c632dbSHeiko Carstens * we use have two special cases: 2355b0c632dbSHeiko Carstens * KVM_S390_STORE_STATUS_NOADDR: -> 0x1200 on 64 bit 2356b0c632dbSHeiko Carstens * KVM_S390_STORE_STATUS_PREFIXED: -> prefix 2357b0c632dbSHeiko Carstens */ 2358d0bce605SHeiko Carstens int kvm_s390_store_status_unloaded(struct kvm_vcpu *vcpu, unsigned long gpa) 2359b0c632dbSHeiko Carstens { 2360092670cdSCarsten Otte unsigned char archmode = 1; 2361fda902cbSMichael Mueller unsigned int px; 2362178bd789SThomas Huth u64 clkcomp; 2363d0bce605SHeiko Carstens int rc; 2364b0c632dbSHeiko Carstens 2365d0bce605SHeiko Carstens if (gpa == KVM_S390_STORE_STATUS_NOADDR) { 2366d0bce605SHeiko Carstens if (write_guest_abs(vcpu, 163, &archmode, 1)) 2367b0c632dbSHeiko Carstens return -EFAULT; 2368d0bce605SHeiko Carstens gpa = SAVE_AREA_BASE; 2369d0bce605SHeiko Carstens } else if (gpa == KVM_S390_STORE_STATUS_PREFIXED) { 2370d0bce605SHeiko Carstens if (write_guest_real(vcpu, 163, &archmode, 1)) 2371b0c632dbSHeiko Carstens return -EFAULT; 2372d0bce605SHeiko Carstens gpa = kvm_s390_real_to_abs(vcpu, SAVE_AREA_BASE); 2373d0bce605SHeiko Carstens } 2374d0bce605SHeiko Carstens rc = write_guest_abs(vcpu, gpa + offsetof(struct save_area, fp_regs), 2375d0bce605SHeiko Carstens vcpu->arch.guest_fpregs.fprs, 128); 2376d0bce605SHeiko Carstens rc |= write_guest_abs(vcpu, gpa + offsetof(struct save_area, gp_regs), 2377d0bce605SHeiko Carstens vcpu->run->s.regs.gprs, 128); 2378d0bce605SHeiko Carstens rc |= write_guest_abs(vcpu, gpa + offsetof(struct save_area, psw), 2379d0bce605SHeiko Carstens &vcpu->arch.sie_block->gpsw, 16); 2380fda902cbSMichael Mueller px = kvm_s390_get_prefix(vcpu); 2381d0bce605SHeiko Carstens rc |= write_guest_abs(vcpu, gpa + offsetof(struct save_area, pref_reg), 2382fda902cbSMichael Mueller &px, 4); 2383d0bce605SHeiko Carstens rc |= write_guest_abs(vcpu, 2384d0bce605SHeiko Carstens gpa + offsetof(struct save_area, fp_ctrl_reg), 2385d0bce605SHeiko Carstens &vcpu->arch.guest_fpregs.fpc, 4); 2386d0bce605SHeiko Carstens rc |= write_guest_abs(vcpu, gpa + offsetof(struct save_area, tod_reg), 2387d0bce605SHeiko Carstens &vcpu->arch.sie_block->todpr, 4); 2388d0bce605SHeiko Carstens rc |= write_guest_abs(vcpu, gpa + offsetof(struct save_area, timer), 2389d0bce605SHeiko Carstens &vcpu->arch.sie_block->cputm, 8); 2390178bd789SThomas Huth clkcomp = vcpu->arch.sie_block->ckc >> 8; 2391d0bce605SHeiko Carstens rc |= write_guest_abs(vcpu, gpa + offsetof(struct save_area, clk_cmp), 2392d0bce605SHeiko Carstens &clkcomp, 8); 2393d0bce605SHeiko Carstens rc |= write_guest_abs(vcpu, gpa + offsetof(struct save_area, acc_regs), 2394d0bce605SHeiko Carstens &vcpu->run->s.regs.acrs, 64); 2395d0bce605SHeiko Carstens rc |= write_guest_abs(vcpu, gpa + offsetof(struct save_area, ctrl_regs), 2396d0bce605SHeiko Carstens &vcpu->arch.sie_block->gcr, 128); 2397d0bce605SHeiko Carstens return rc ? -EFAULT : 0; 2398b0c632dbSHeiko Carstens } 2399b0c632dbSHeiko Carstens 2400e879892cSThomas Huth int kvm_s390_vcpu_store_status(struct kvm_vcpu *vcpu, unsigned long addr) 2401e879892cSThomas Huth { 2402e879892cSThomas Huth /* 2403e879892cSThomas Huth * The guest FPRS and ACRS are in the host FPRS/ACRS due to the lazy 2404e879892cSThomas Huth * copying in vcpu load/put. Lets update our copies before we save 2405e879892cSThomas Huth * it into the save area 2406e879892cSThomas Huth */ 2407d0164ee2SHendrik Brueckner save_fpu_regs(); 24089977e886SHendrik Brueckner if (test_kvm_facility(vcpu->kvm, 129)) { 24099977e886SHendrik Brueckner /* 24109977e886SHendrik Brueckner * If the vector extension is available, the vector registers 24119977e886SHendrik Brueckner * which overlaps with floating-point registers are saved in 24129977e886SHendrik Brueckner * the SIE-control block. Hence, extract the floating-point 24139977e886SHendrik Brueckner * registers and the FPC value and store them in the 24149977e886SHendrik Brueckner * guest_fpregs structure. 24159977e886SHendrik Brueckner */ 24169977e886SHendrik Brueckner vcpu->arch.guest_fpregs.fpc = current->thread.fpu.fpc; 24179977e886SHendrik Brueckner convert_vx_to_fp(vcpu->arch.guest_fpregs.fprs, 24189977e886SHendrik Brueckner current->thread.fpu.vxrs); 24199977e886SHendrik Brueckner } else 24209977e886SHendrik Brueckner save_fpu_to(&vcpu->arch.guest_fpregs); 2421e879892cSThomas Huth save_access_regs(vcpu->run->s.regs.acrs); 2422e879892cSThomas Huth 2423e879892cSThomas Huth return kvm_s390_store_status_unloaded(vcpu, addr); 2424e879892cSThomas Huth } 2425e879892cSThomas Huth 2426bc17de7cSEric Farman /* 2427bc17de7cSEric Farman * store additional status at address 2428bc17de7cSEric Farman */ 2429bc17de7cSEric Farman int kvm_s390_store_adtl_status_unloaded(struct kvm_vcpu *vcpu, 2430bc17de7cSEric Farman unsigned long gpa) 2431bc17de7cSEric Farman { 2432bc17de7cSEric Farman /* Only bits 0-53 are used for address formation */ 2433bc17de7cSEric Farman if (!(gpa & ~0x3ff)) 2434bc17de7cSEric Farman return 0; 2435bc17de7cSEric Farman 2436bc17de7cSEric Farman return write_guest_abs(vcpu, gpa & ~0x3ff, 2437bc17de7cSEric Farman (void *)&vcpu->run->s.regs.vrs, 512); 2438bc17de7cSEric Farman } 2439bc17de7cSEric Farman 2440bc17de7cSEric Farman int kvm_s390_vcpu_store_adtl_status(struct kvm_vcpu *vcpu, unsigned long addr) 2441bc17de7cSEric Farman { 2442bc17de7cSEric Farman if (!test_kvm_facility(vcpu->kvm, 129)) 2443bc17de7cSEric Farman return 0; 2444bc17de7cSEric Farman 2445bc17de7cSEric Farman /* 2446bc17de7cSEric Farman * The guest VXRS are in the host VXRs due to the lazy 24479977e886SHendrik Brueckner * copying in vcpu load/put. We can simply call save_fpu_regs() 24489977e886SHendrik Brueckner * to save the current register state because we are in the 24499977e886SHendrik Brueckner * middle of a load/put cycle. 24509977e886SHendrik Brueckner * 24519977e886SHendrik Brueckner * Let's update our copies before we save it into the save area. 2452bc17de7cSEric Farman */ 2453d0164ee2SHendrik Brueckner save_fpu_regs(); 2454bc17de7cSEric Farman 2455bc17de7cSEric Farman return kvm_s390_store_adtl_status_unloaded(vcpu, addr); 2456bc17de7cSEric Farman } 2457bc17de7cSEric Farman 24588ad35755SDavid Hildenbrand static void __disable_ibs_on_vcpu(struct kvm_vcpu *vcpu) 24598ad35755SDavid Hildenbrand { 24608ad35755SDavid Hildenbrand kvm_check_request(KVM_REQ_ENABLE_IBS, vcpu); 24618e236546SChristian Borntraeger kvm_s390_sync_request(KVM_REQ_DISABLE_IBS, vcpu); 24628ad35755SDavid Hildenbrand } 24638ad35755SDavid Hildenbrand 24648ad35755SDavid Hildenbrand static void __disable_ibs_on_all_vcpus(struct kvm *kvm) 24658ad35755SDavid Hildenbrand { 24668ad35755SDavid Hildenbrand unsigned int i; 24678ad35755SDavid Hildenbrand struct kvm_vcpu *vcpu; 24688ad35755SDavid Hildenbrand 24698ad35755SDavid Hildenbrand kvm_for_each_vcpu(i, vcpu, kvm) { 24708ad35755SDavid Hildenbrand __disable_ibs_on_vcpu(vcpu); 24718ad35755SDavid Hildenbrand } 24728ad35755SDavid Hildenbrand } 24738ad35755SDavid Hildenbrand 24748ad35755SDavid Hildenbrand static void __enable_ibs_on_vcpu(struct kvm_vcpu *vcpu) 24758ad35755SDavid Hildenbrand { 24768ad35755SDavid Hildenbrand kvm_check_request(KVM_REQ_DISABLE_IBS, vcpu); 24778e236546SChristian Borntraeger kvm_s390_sync_request(KVM_REQ_ENABLE_IBS, vcpu); 24788ad35755SDavid Hildenbrand } 24798ad35755SDavid Hildenbrand 24806852d7b6SDavid Hildenbrand void kvm_s390_vcpu_start(struct kvm_vcpu *vcpu) 24816852d7b6SDavid Hildenbrand { 24828ad35755SDavid Hildenbrand int i, online_vcpus, started_vcpus = 0; 24838ad35755SDavid Hildenbrand 24848ad35755SDavid Hildenbrand if (!is_vcpu_stopped(vcpu)) 24858ad35755SDavid Hildenbrand return; 24868ad35755SDavid Hildenbrand 24876852d7b6SDavid Hildenbrand trace_kvm_s390_vcpu_start_stop(vcpu->vcpu_id, 1); 24888ad35755SDavid Hildenbrand /* Only one cpu at a time may enter/leave the STOPPED state. */ 2489433b9ee4SDavid Hildenbrand spin_lock(&vcpu->kvm->arch.start_stop_lock); 24908ad35755SDavid Hildenbrand online_vcpus = atomic_read(&vcpu->kvm->online_vcpus); 24918ad35755SDavid Hildenbrand 24928ad35755SDavid Hildenbrand for (i = 0; i < online_vcpus; i++) { 24938ad35755SDavid Hildenbrand if (!is_vcpu_stopped(vcpu->kvm->vcpus[i])) 24948ad35755SDavid Hildenbrand started_vcpus++; 24958ad35755SDavid Hildenbrand } 24968ad35755SDavid Hildenbrand 24978ad35755SDavid Hildenbrand if (started_vcpus == 0) { 24988ad35755SDavid Hildenbrand /* we're the only active VCPU -> speed it up */ 24998ad35755SDavid Hildenbrand __enable_ibs_on_vcpu(vcpu); 25008ad35755SDavid Hildenbrand } else if (started_vcpus == 1) { 25018ad35755SDavid Hildenbrand /* 25028ad35755SDavid Hildenbrand * As we are starting a second VCPU, we have to disable 25038ad35755SDavid Hildenbrand * the IBS facility on all VCPUs to remove potentially 25048ad35755SDavid Hildenbrand * oustanding ENABLE requests. 25058ad35755SDavid Hildenbrand */ 25068ad35755SDavid Hildenbrand __disable_ibs_on_all_vcpus(vcpu->kvm); 25078ad35755SDavid Hildenbrand } 25088ad35755SDavid Hildenbrand 2509805de8f4SPeter Zijlstra atomic_andnot(CPUSTAT_STOPPED, &vcpu->arch.sie_block->cpuflags); 25108ad35755SDavid Hildenbrand /* 25118ad35755SDavid Hildenbrand * Another VCPU might have used IBS while we were offline. 25128ad35755SDavid Hildenbrand * Let's play safe and flush the VCPU at startup. 25138ad35755SDavid Hildenbrand */ 2514d3d692c8SDavid Hildenbrand kvm_make_request(KVM_REQ_TLB_FLUSH, vcpu); 2515433b9ee4SDavid Hildenbrand spin_unlock(&vcpu->kvm->arch.start_stop_lock); 25168ad35755SDavid Hildenbrand return; 25176852d7b6SDavid Hildenbrand } 25186852d7b6SDavid Hildenbrand 25196852d7b6SDavid Hildenbrand void kvm_s390_vcpu_stop(struct kvm_vcpu *vcpu) 25206852d7b6SDavid Hildenbrand { 25218ad35755SDavid Hildenbrand int i, online_vcpus, started_vcpus = 0; 25228ad35755SDavid Hildenbrand struct kvm_vcpu *started_vcpu = NULL; 25238ad35755SDavid Hildenbrand 25248ad35755SDavid Hildenbrand if (is_vcpu_stopped(vcpu)) 25258ad35755SDavid Hildenbrand return; 25268ad35755SDavid Hildenbrand 25276852d7b6SDavid Hildenbrand trace_kvm_s390_vcpu_start_stop(vcpu->vcpu_id, 0); 25288ad35755SDavid Hildenbrand /* Only one cpu at a time may enter/leave the STOPPED state. */ 2529433b9ee4SDavid Hildenbrand spin_lock(&vcpu->kvm->arch.start_stop_lock); 25308ad35755SDavid Hildenbrand online_vcpus = atomic_read(&vcpu->kvm->online_vcpus); 25318ad35755SDavid Hildenbrand 253232f5ff63SDavid Hildenbrand /* SIGP STOP and SIGP STOP AND STORE STATUS has been fully processed */ 25336cddd432SDavid Hildenbrand kvm_s390_clear_stop_irq(vcpu); 253432f5ff63SDavid Hildenbrand 2535805de8f4SPeter Zijlstra atomic_or(CPUSTAT_STOPPED, &vcpu->arch.sie_block->cpuflags); 25368ad35755SDavid Hildenbrand __disable_ibs_on_vcpu(vcpu); 25378ad35755SDavid Hildenbrand 25388ad35755SDavid Hildenbrand for (i = 0; i < online_vcpus; i++) { 25398ad35755SDavid Hildenbrand if (!is_vcpu_stopped(vcpu->kvm->vcpus[i])) { 25408ad35755SDavid Hildenbrand started_vcpus++; 25418ad35755SDavid Hildenbrand started_vcpu = vcpu->kvm->vcpus[i]; 25428ad35755SDavid Hildenbrand } 25438ad35755SDavid Hildenbrand } 25448ad35755SDavid Hildenbrand 25458ad35755SDavid Hildenbrand if (started_vcpus == 1) { 25468ad35755SDavid Hildenbrand /* 25478ad35755SDavid Hildenbrand * As we only have one VCPU left, we want to enable the 25488ad35755SDavid Hildenbrand * IBS facility for that VCPU to speed it up. 25498ad35755SDavid Hildenbrand */ 25508ad35755SDavid Hildenbrand __enable_ibs_on_vcpu(started_vcpu); 25518ad35755SDavid Hildenbrand } 25528ad35755SDavid Hildenbrand 2553433b9ee4SDavid Hildenbrand spin_unlock(&vcpu->kvm->arch.start_stop_lock); 25548ad35755SDavid Hildenbrand return; 25556852d7b6SDavid Hildenbrand } 25566852d7b6SDavid Hildenbrand 2557d6712df9SCornelia Huck static int kvm_vcpu_ioctl_enable_cap(struct kvm_vcpu *vcpu, 2558d6712df9SCornelia Huck struct kvm_enable_cap *cap) 2559d6712df9SCornelia Huck { 2560d6712df9SCornelia Huck int r; 2561d6712df9SCornelia Huck 2562d6712df9SCornelia Huck if (cap->flags) 2563d6712df9SCornelia Huck return -EINVAL; 2564d6712df9SCornelia Huck 2565d6712df9SCornelia Huck switch (cap->cap) { 2566fa6b7fe9SCornelia Huck case KVM_CAP_S390_CSS_SUPPORT: 2567fa6b7fe9SCornelia Huck if (!vcpu->kvm->arch.css_support) { 2568fa6b7fe9SCornelia Huck vcpu->kvm->arch.css_support = 1; 2569c92ea7b9SChristian Borntraeger VM_EVENT(vcpu->kvm, 3, "%s", "ENABLE: CSS support"); 2570fa6b7fe9SCornelia Huck trace_kvm_s390_enable_css(vcpu->kvm); 2571fa6b7fe9SCornelia Huck } 2572fa6b7fe9SCornelia Huck r = 0; 2573fa6b7fe9SCornelia Huck break; 2574d6712df9SCornelia Huck default: 2575d6712df9SCornelia Huck r = -EINVAL; 2576d6712df9SCornelia Huck break; 2577d6712df9SCornelia Huck } 2578d6712df9SCornelia Huck return r; 2579d6712df9SCornelia Huck } 2580d6712df9SCornelia Huck 258141408c28SThomas Huth static long kvm_s390_guest_mem_op(struct kvm_vcpu *vcpu, 258241408c28SThomas Huth struct kvm_s390_mem_op *mop) 258341408c28SThomas Huth { 258441408c28SThomas Huth void __user *uaddr = (void __user *)mop->buf; 258541408c28SThomas Huth void *tmpbuf = NULL; 258641408c28SThomas Huth int r, srcu_idx; 258741408c28SThomas Huth const u64 supported_flags = KVM_S390_MEMOP_F_INJECT_EXCEPTION 258841408c28SThomas Huth | KVM_S390_MEMOP_F_CHECK_ONLY; 258941408c28SThomas Huth 259041408c28SThomas Huth if (mop->flags & ~supported_flags) 259141408c28SThomas Huth return -EINVAL; 259241408c28SThomas Huth 259341408c28SThomas Huth if (mop->size > MEM_OP_MAX_SIZE) 259441408c28SThomas Huth return -E2BIG; 259541408c28SThomas Huth 259641408c28SThomas Huth if (!(mop->flags & KVM_S390_MEMOP_F_CHECK_ONLY)) { 259741408c28SThomas Huth tmpbuf = vmalloc(mop->size); 259841408c28SThomas Huth if (!tmpbuf) 259941408c28SThomas Huth return -ENOMEM; 260041408c28SThomas Huth } 260141408c28SThomas Huth 260241408c28SThomas Huth srcu_idx = srcu_read_lock(&vcpu->kvm->srcu); 260341408c28SThomas Huth 260441408c28SThomas Huth switch (mop->op) { 260541408c28SThomas Huth case KVM_S390_MEMOP_LOGICAL_READ: 260641408c28SThomas Huth if (mop->flags & KVM_S390_MEMOP_F_CHECK_ONLY) { 260741408c28SThomas Huth r = check_gva_range(vcpu, mop->gaddr, mop->ar, mop->size, false); 260841408c28SThomas Huth break; 260941408c28SThomas Huth } 261041408c28SThomas Huth r = read_guest(vcpu, mop->gaddr, mop->ar, tmpbuf, mop->size); 261141408c28SThomas Huth if (r == 0) { 261241408c28SThomas Huth if (copy_to_user(uaddr, tmpbuf, mop->size)) 261341408c28SThomas Huth r = -EFAULT; 261441408c28SThomas Huth } 261541408c28SThomas Huth break; 261641408c28SThomas Huth case KVM_S390_MEMOP_LOGICAL_WRITE: 261741408c28SThomas Huth if (mop->flags & KVM_S390_MEMOP_F_CHECK_ONLY) { 261841408c28SThomas Huth r = check_gva_range(vcpu, mop->gaddr, mop->ar, mop->size, true); 261941408c28SThomas Huth break; 262041408c28SThomas Huth } 262141408c28SThomas Huth if (copy_from_user(tmpbuf, uaddr, mop->size)) { 262241408c28SThomas Huth r = -EFAULT; 262341408c28SThomas Huth break; 262441408c28SThomas Huth } 262541408c28SThomas Huth r = write_guest(vcpu, mop->gaddr, mop->ar, tmpbuf, mop->size); 262641408c28SThomas Huth break; 262741408c28SThomas Huth default: 262841408c28SThomas Huth r = -EINVAL; 262941408c28SThomas Huth } 263041408c28SThomas Huth 263141408c28SThomas Huth srcu_read_unlock(&vcpu->kvm->srcu, srcu_idx); 263241408c28SThomas Huth 263341408c28SThomas Huth if (r > 0 && (mop->flags & KVM_S390_MEMOP_F_INJECT_EXCEPTION) != 0) 263441408c28SThomas Huth kvm_s390_inject_prog_irq(vcpu, &vcpu->arch.pgm); 263541408c28SThomas Huth 263641408c28SThomas Huth vfree(tmpbuf); 263741408c28SThomas Huth return r; 263841408c28SThomas Huth } 263941408c28SThomas Huth 2640b0c632dbSHeiko Carstens long kvm_arch_vcpu_ioctl(struct file *filp, 2641b0c632dbSHeiko Carstens unsigned int ioctl, unsigned long arg) 2642b0c632dbSHeiko Carstens { 2643b0c632dbSHeiko Carstens struct kvm_vcpu *vcpu = filp->private_data; 2644b0c632dbSHeiko Carstens void __user *argp = (void __user *)arg; 2645800c1065SThomas Huth int idx; 2646bc923cc9SAvi Kivity long r; 2647b0c632dbSHeiko Carstens 264893736624SAvi Kivity switch (ioctl) { 264947b43c52SJens Freimann case KVM_S390_IRQ: { 265047b43c52SJens Freimann struct kvm_s390_irq s390irq; 265147b43c52SJens Freimann 265247b43c52SJens Freimann r = -EFAULT; 265347b43c52SJens Freimann if (copy_from_user(&s390irq, argp, sizeof(s390irq))) 265447b43c52SJens Freimann break; 265547b43c52SJens Freimann r = kvm_s390_inject_vcpu(vcpu, &s390irq); 265647b43c52SJens Freimann break; 265747b43c52SJens Freimann } 265893736624SAvi Kivity case KVM_S390_INTERRUPT: { 2659ba5c1e9bSCarsten Otte struct kvm_s390_interrupt s390int; 2660383d0b05SJens Freimann struct kvm_s390_irq s390irq; 2661ba5c1e9bSCarsten Otte 266293736624SAvi Kivity r = -EFAULT; 2663ba5c1e9bSCarsten Otte if (copy_from_user(&s390int, argp, sizeof(s390int))) 266493736624SAvi Kivity break; 2665383d0b05SJens Freimann if (s390int_to_s390irq(&s390int, &s390irq)) 2666383d0b05SJens Freimann return -EINVAL; 2667383d0b05SJens Freimann r = kvm_s390_inject_vcpu(vcpu, &s390irq); 266893736624SAvi Kivity break; 2669ba5c1e9bSCarsten Otte } 2670b0c632dbSHeiko Carstens case KVM_S390_STORE_STATUS: 2671800c1065SThomas Huth idx = srcu_read_lock(&vcpu->kvm->srcu); 2672bc923cc9SAvi Kivity r = kvm_s390_vcpu_store_status(vcpu, arg); 2673800c1065SThomas Huth srcu_read_unlock(&vcpu->kvm->srcu, idx); 2674bc923cc9SAvi Kivity break; 2675b0c632dbSHeiko Carstens case KVM_S390_SET_INITIAL_PSW: { 2676b0c632dbSHeiko Carstens psw_t psw; 2677b0c632dbSHeiko Carstens 2678bc923cc9SAvi Kivity r = -EFAULT; 2679b0c632dbSHeiko Carstens if (copy_from_user(&psw, argp, sizeof(psw))) 2680bc923cc9SAvi Kivity break; 2681bc923cc9SAvi Kivity r = kvm_arch_vcpu_ioctl_set_initial_psw(vcpu, psw); 2682bc923cc9SAvi Kivity break; 2683b0c632dbSHeiko Carstens } 2684b0c632dbSHeiko Carstens case KVM_S390_INITIAL_RESET: 2685bc923cc9SAvi Kivity r = kvm_arch_vcpu_ioctl_initial_reset(vcpu); 2686bc923cc9SAvi Kivity break; 268714eebd91SCarsten Otte case KVM_SET_ONE_REG: 268814eebd91SCarsten Otte case KVM_GET_ONE_REG: { 268914eebd91SCarsten Otte struct kvm_one_reg reg; 269014eebd91SCarsten Otte r = -EFAULT; 269114eebd91SCarsten Otte if (copy_from_user(®, argp, sizeof(reg))) 269214eebd91SCarsten Otte break; 269314eebd91SCarsten Otte if (ioctl == KVM_SET_ONE_REG) 269414eebd91SCarsten Otte r = kvm_arch_vcpu_ioctl_set_one_reg(vcpu, ®); 269514eebd91SCarsten Otte else 269614eebd91SCarsten Otte r = kvm_arch_vcpu_ioctl_get_one_reg(vcpu, ®); 269714eebd91SCarsten Otte break; 269814eebd91SCarsten Otte } 269927e0393fSCarsten Otte #ifdef CONFIG_KVM_S390_UCONTROL 270027e0393fSCarsten Otte case KVM_S390_UCAS_MAP: { 270127e0393fSCarsten Otte struct kvm_s390_ucas_mapping ucasmap; 270227e0393fSCarsten Otte 270327e0393fSCarsten Otte if (copy_from_user(&ucasmap, argp, sizeof(ucasmap))) { 270427e0393fSCarsten Otte r = -EFAULT; 270527e0393fSCarsten Otte break; 270627e0393fSCarsten Otte } 270727e0393fSCarsten Otte 270827e0393fSCarsten Otte if (!kvm_is_ucontrol(vcpu->kvm)) { 270927e0393fSCarsten Otte r = -EINVAL; 271027e0393fSCarsten Otte break; 271127e0393fSCarsten Otte } 271227e0393fSCarsten Otte 271327e0393fSCarsten Otte r = gmap_map_segment(vcpu->arch.gmap, ucasmap.user_addr, 271427e0393fSCarsten Otte ucasmap.vcpu_addr, ucasmap.length); 271527e0393fSCarsten Otte break; 271627e0393fSCarsten Otte } 271727e0393fSCarsten Otte case KVM_S390_UCAS_UNMAP: { 271827e0393fSCarsten Otte struct kvm_s390_ucas_mapping ucasmap; 271927e0393fSCarsten Otte 272027e0393fSCarsten Otte if (copy_from_user(&ucasmap, argp, sizeof(ucasmap))) { 272127e0393fSCarsten Otte r = -EFAULT; 272227e0393fSCarsten Otte break; 272327e0393fSCarsten Otte } 272427e0393fSCarsten Otte 272527e0393fSCarsten Otte if (!kvm_is_ucontrol(vcpu->kvm)) { 272627e0393fSCarsten Otte r = -EINVAL; 272727e0393fSCarsten Otte break; 272827e0393fSCarsten Otte } 272927e0393fSCarsten Otte 273027e0393fSCarsten Otte r = gmap_unmap_segment(vcpu->arch.gmap, ucasmap.vcpu_addr, 273127e0393fSCarsten Otte ucasmap.length); 273227e0393fSCarsten Otte break; 273327e0393fSCarsten Otte } 273427e0393fSCarsten Otte #endif 2735ccc7910fSCarsten Otte case KVM_S390_VCPU_FAULT: { 2736527e30b4SMartin Schwidefsky r = gmap_fault(vcpu->arch.gmap, arg, 0); 2737ccc7910fSCarsten Otte break; 2738ccc7910fSCarsten Otte } 2739d6712df9SCornelia Huck case KVM_ENABLE_CAP: 2740d6712df9SCornelia Huck { 2741d6712df9SCornelia Huck struct kvm_enable_cap cap; 2742d6712df9SCornelia Huck r = -EFAULT; 2743d6712df9SCornelia Huck if (copy_from_user(&cap, argp, sizeof(cap))) 2744d6712df9SCornelia Huck break; 2745d6712df9SCornelia Huck r = kvm_vcpu_ioctl_enable_cap(vcpu, &cap); 2746d6712df9SCornelia Huck break; 2747d6712df9SCornelia Huck } 274841408c28SThomas Huth case KVM_S390_MEM_OP: { 274941408c28SThomas Huth struct kvm_s390_mem_op mem_op; 275041408c28SThomas Huth 275141408c28SThomas Huth if (copy_from_user(&mem_op, argp, sizeof(mem_op)) == 0) 275241408c28SThomas Huth r = kvm_s390_guest_mem_op(vcpu, &mem_op); 275341408c28SThomas Huth else 275441408c28SThomas Huth r = -EFAULT; 275541408c28SThomas Huth break; 275641408c28SThomas Huth } 2757816c7667SJens Freimann case KVM_S390_SET_IRQ_STATE: { 2758816c7667SJens Freimann struct kvm_s390_irq_state irq_state; 2759816c7667SJens Freimann 2760816c7667SJens Freimann r = -EFAULT; 2761816c7667SJens Freimann if (copy_from_user(&irq_state, argp, sizeof(irq_state))) 2762816c7667SJens Freimann break; 2763816c7667SJens Freimann if (irq_state.len > VCPU_IRQS_MAX_BUF || 2764816c7667SJens Freimann irq_state.len == 0 || 2765816c7667SJens Freimann irq_state.len % sizeof(struct kvm_s390_irq) > 0) { 2766816c7667SJens Freimann r = -EINVAL; 2767816c7667SJens Freimann break; 2768816c7667SJens Freimann } 2769816c7667SJens Freimann r = kvm_s390_set_irq_state(vcpu, 2770816c7667SJens Freimann (void __user *) irq_state.buf, 2771816c7667SJens Freimann irq_state.len); 2772816c7667SJens Freimann break; 2773816c7667SJens Freimann } 2774816c7667SJens Freimann case KVM_S390_GET_IRQ_STATE: { 2775816c7667SJens Freimann struct kvm_s390_irq_state irq_state; 2776816c7667SJens Freimann 2777816c7667SJens Freimann r = -EFAULT; 2778816c7667SJens Freimann if (copy_from_user(&irq_state, argp, sizeof(irq_state))) 2779816c7667SJens Freimann break; 2780816c7667SJens Freimann if (irq_state.len == 0) { 2781816c7667SJens Freimann r = -EINVAL; 2782816c7667SJens Freimann break; 2783816c7667SJens Freimann } 2784816c7667SJens Freimann r = kvm_s390_get_irq_state(vcpu, 2785816c7667SJens Freimann (__u8 __user *) irq_state.buf, 2786816c7667SJens Freimann irq_state.len); 2787816c7667SJens Freimann break; 2788816c7667SJens Freimann } 2789b0c632dbSHeiko Carstens default: 27903e6afcf1SCarsten Otte r = -ENOTTY; 2791b0c632dbSHeiko Carstens } 2792bc923cc9SAvi Kivity return r; 2793b0c632dbSHeiko Carstens } 2794b0c632dbSHeiko Carstens 27955b1c1493SCarsten Otte int kvm_arch_vcpu_fault(struct kvm_vcpu *vcpu, struct vm_fault *vmf) 27965b1c1493SCarsten Otte { 27975b1c1493SCarsten Otte #ifdef CONFIG_KVM_S390_UCONTROL 27985b1c1493SCarsten Otte if ((vmf->pgoff == KVM_S390_SIE_PAGE_OFFSET) 27995b1c1493SCarsten Otte && (kvm_is_ucontrol(vcpu->kvm))) { 28005b1c1493SCarsten Otte vmf->page = virt_to_page(vcpu->arch.sie_block); 28015b1c1493SCarsten Otte get_page(vmf->page); 28025b1c1493SCarsten Otte return 0; 28035b1c1493SCarsten Otte } 28045b1c1493SCarsten Otte #endif 28055b1c1493SCarsten Otte return VM_FAULT_SIGBUS; 28065b1c1493SCarsten Otte } 28075b1c1493SCarsten Otte 28085587027cSAneesh Kumar K.V int kvm_arch_create_memslot(struct kvm *kvm, struct kvm_memory_slot *slot, 28095587027cSAneesh Kumar K.V unsigned long npages) 2810db3fe4ebSTakuya Yoshikawa { 2811db3fe4ebSTakuya Yoshikawa return 0; 2812db3fe4ebSTakuya Yoshikawa } 2813db3fe4ebSTakuya Yoshikawa 2814b0c632dbSHeiko Carstens /* Section: memory related */ 2815f7784b8eSMarcelo Tosatti int kvm_arch_prepare_memory_region(struct kvm *kvm, 2816f7784b8eSMarcelo Tosatti struct kvm_memory_slot *memslot, 281709170a49SPaolo Bonzini const struct kvm_userspace_memory_region *mem, 28187b6195a9STakuya Yoshikawa enum kvm_mr_change change) 2819b0c632dbSHeiko Carstens { 2820dd2887e7SNick Wang /* A few sanity checks. We can have memory slots which have to be 2821dd2887e7SNick Wang located/ended at a segment boundary (1MB). The memory in userland is 2822dd2887e7SNick Wang ok to be fragmented into various different vmas. It is okay to mmap() 2823dd2887e7SNick Wang and munmap() stuff in this slot after doing this call at any time */ 2824b0c632dbSHeiko Carstens 2825598841caSCarsten Otte if (mem->userspace_addr & 0xffffful) 2826b0c632dbSHeiko Carstens return -EINVAL; 2827b0c632dbSHeiko Carstens 2828598841caSCarsten Otte if (mem->memory_size & 0xffffful) 2829b0c632dbSHeiko Carstens return -EINVAL; 2830b0c632dbSHeiko Carstens 2831f7784b8eSMarcelo Tosatti return 0; 2832f7784b8eSMarcelo Tosatti } 2833f7784b8eSMarcelo Tosatti 2834f7784b8eSMarcelo Tosatti void kvm_arch_commit_memory_region(struct kvm *kvm, 283509170a49SPaolo Bonzini const struct kvm_userspace_memory_region *mem, 28368482644aSTakuya Yoshikawa const struct kvm_memory_slot *old, 2837f36f3f28SPaolo Bonzini const struct kvm_memory_slot *new, 28388482644aSTakuya Yoshikawa enum kvm_mr_change change) 2839f7784b8eSMarcelo Tosatti { 2840f7850c92SCarsten Otte int rc; 2841f7784b8eSMarcelo Tosatti 28422cef4debSChristian Borntraeger /* If the basics of the memslot do not change, we do not want 28432cef4debSChristian Borntraeger * to update the gmap. Every update causes several unnecessary 28442cef4debSChristian Borntraeger * segment translation exceptions. This is usually handled just 28452cef4debSChristian Borntraeger * fine by the normal fault handler + gmap, but it will also 28462cef4debSChristian Borntraeger * cause faults on the prefix page of running guest CPUs. 28472cef4debSChristian Borntraeger */ 28482cef4debSChristian Borntraeger if (old->userspace_addr == mem->userspace_addr && 28492cef4debSChristian Borntraeger old->base_gfn * PAGE_SIZE == mem->guest_phys_addr && 28502cef4debSChristian Borntraeger old->npages * PAGE_SIZE == mem->memory_size) 28512cef4debSChristian Borntraeger return; 2852598841caSCarsten Otte 2853598841caSCarsten Otte rc = gmap_map_segment(kvm->arch.gmap, mem->userspace_addr, 2854598841caSCarsten Otte mem->guest_phys_addr, mem->memory_size); 2855598841caSCarsten Otte if (rc) 2856ea2cdd27SDavid Hildenbrand pr_warn("failed to commit memory region\n"); 2857598841caSCarsten Otte return; 2858b0c632dbSHeiko Carstens } 2859b0c632dbSHeiko Carstens 2860b0c632dbSHeiko Carstens static int __init kvm_s390_init(void) 2861b0c632dbSHeiko Carstens { 286207197fd0SDavid Hildenbrand if (!sclp.has_sief2) { 286307197fd0SDavid Hildenbrand pr_info("SIE not available\n"); 286407197fd0SDavid Hildenbrand return -ENODEV; 286507197fd0SDavid Hildenbrand } 286607197fd0SDavid Hildenbrand 28679d8d5786SMichael Mueller return kvm_init(NULL, sizeof(struct kvm_vcpu), 0, THIS_MODULE); 2868b0c632dbSHeiko Carstens } 2869b0c632dbSHeiko Carstens 2870b0c632dbSHeiko Carstens static void __exit kvm_s390_exit(void) 2871b0c632dbSHeiko Carstens { 2872b0c632dbSHeiko Carstens kvm_exit(); 2873b0c632dbSHeiko Carstens } 2874b0c632dbSHeiko Carstens 2875b0c632dbSHeiko Carstens module_init(kvm_s390_init); 2876b0c632dbSHeiko Carstens module_exit(kvm_s390_exit); 2877566af940SCornelia Huck 2878566af940SCornelia Huck /* 2879566af940SCornelia Huck * Enable autoloading of the kvm module. 2880566af940SCornelia Huck * Note that we add the module alias here instead of virt/kvm/kvm_main.c 2881566af940SCornelia Huck * since x86 takes a different approach. 2882566af940SCornelia Huck */ 2883566af940SCornelia Huck #include <linux/miscdevice.h> 2884566af940SCornelia Huck MODULE_ALIAS_MISCDEV(KVM_MINOR); 2885566af940SCornelia Huck MODULE_ALIAS("devname:kvm"); 2886