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> 24b2d73b2aSMartin Schwidefsky #include <linux/mman.h> 25b0c632dbSHeiko Carstens #include <linux/module.h> 26a374e892STony Krowiak #include <linux/random.h> 27b0c632dbSHeiko Carstens #include <linux/slab.h> 28ba5c1e9bSCarsten Otte #include <linux/timer.h> 2941408c28SThomas Huth #include <linux/vmalloc.h> 3015c9705fSDavid Hildenbrand #include <linux/bitmap.h> 31cbb870c8SHeiko Carstens #include <asm/asm-offsets.h> 32b0c632dbSHeiko Carstens #include <asm/lowcore.h> 33fd5ada04SMartin Schwidefsky #include <asm/stp.h> 34b0c632dbSHeiko Carstens #include <asm/pgtable.h> 351e133ab2SMartin Schwidefsky #include <asm/gmap.h> 36f5daba1dSHeiko Carstens #include <asm/nmi.h> 37a0616cdeSDavid Howells #include <asm/switch_to.h> 386d3da241SJens Freimann #include <asm/isc.h> 391526bf9cSChristian Borntraeger #include <asm/sclp.h> 400a763c78SDavid Hildenbrand #include <asm/cpacf.h> 41221bb8a4SLinus Torvalds #include <asm/timex.h> 428f2abe6aSChristian Borntraeger #include "kvm-s390.h" 43b0c632dbSHeiko Carstens #include "gaccess.h" 44b0c632dbSHeiko Carstens 45ea2cdd27SDavid Hildenbrand #define KMSG_COMPONENT "kvm-s390" 46ea2cdd27SDavid Hildenbrand #undef pr_fmt 47ea2cdd27SDavid Hildenbrand #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt 48ea2cdd27SDavid Hildenbrand 495786fffaSCornelia Huck #define CREATE_TRACE_POINTS 505786fffaSCornelia Huck #include "trace.h" 51ade38c31SCornelia Huck #include "trace-s390.h" 525786fffaSCornelia Huck 5341408c28SThomas Huth #define MEM_OP_MAX_SIZE 65536 /* Maximum transfer size for KVM_S390_MEM_OP */ 54816c7667SJens Freimann #define LOCAL_IRQS 32 55816c7667SJens Freimann #define VCPU_IRQS_MAX_BUF (sizeof(struct kvm_s390_irq) * \ 56816c7667SJens Freimann (KVM_MAX_VCPUS + LOCAL_IRQS)) 5741408c28SThomas Huth 58b0c632dbSHeiko Carstens #define VCPU_STAT(x) offsetof(struct kvm_vcpu, stat.x), KVM_STAT_VCPU 59b0c632dbSHeiko Carstens 60b0c632dbSHeiko Carstens struct kvm_stats_debugfs_item debugfs_entries[] = { 61b0c632dbSHeiko Carstens { "userspace_handled", VCPU_STAT(exit_userspace) }, 620eaeafa1SChristian Borntraeger { "exit_null", VCPU_STAT(exit_null) }, 638f2abe6aSChristian Borntraeger { "exit_validity", VCPU_STAT(exit_validity) }, 648f2abe6aSChristian Borntraeger { "exit_stop_request", VCPU_STAT(exit_stop_request) }, 658f2abe6aSChristian Borntraeger { "exit_external_request", VCPU_STAT(exit_external_request) }, 668f2abe6aSChristian Borntraeger { "exit_external_interrupt", VCPU_STAT(exit_external_interrupt) }, 67ba5c1e9bSCarsten Otte { "exit_instruction", VCPU_STAT(exit_instruction) }, 689ec6de19SAlexander Yarygin { "exit_pei", VCPU_STAT(exit_pei) }, 69ba5c1e9bSCarsten Otte { "exit_program_interruption", VCPU_STAT(exit_program_interruption) }, 70ba5c1e9bSCarsten Otte { "exit_instr_and_program_int", VCPU_STAT(exit_instr_and_program) }, 71a011eeb2SJanosch Frank { "exit_operation_exception", VCPU_STAT(exit_operation_exception) }, 72f7819512SPaolo Bonzini { "halt_successful_poll", VCPU_STAT(halt_successful_poll) }, 7362bea5bfSPaolo Bonzini { "halt_attempted_poll", VCPU_STAT(halt_attempted_poll) }, 743491caf2SChristian Borntraeger { "halt_poll_invalid", VCPU_STAT(halt_poll_invalid) }, 75ce2e4f0bSDavid Hildenbrand { "halt_wakeup", VCPU_STAT(halt_wakeup) }, 76f5e10b09SChristian Borntraeger { "instruction_lctlg", VCPU_STAT(instruction_lctlg) }, 77ba5c1e9bSCarsten Otte { "instruction_lctl", VCPU_STAT(instruction_lctl) }, 78aba07508SDavid Hildenbrand { "instruction_stctl", VCPU_STAT(instruction_stctl) }, 79aba07508SDavid Hildenbrand { "instruction_stctg", VCPU_STAT(instruction_stctg) }, 80ba5c1e9bSCarsten Otte { "deliver_emergency_signal", VCPU_STAT(deliver_emergency_signal) }, 817697e71fSChristian Ehrhardt { "deliver_external_call", VCPU_STAT(deliver_external_call) }, 82ba5c1e9bSCarsten Otte { "deliver_service_signal", VCPU_STAT(deliver_service_signal) }, 83ba5c1e9bSCarsten Otte { "deliver_virtio_interrupt", VCPU_STAT(deliver_virtio_interrupt) }, 84ba5c1e9bSCarsten Otte { "deliver_stop_signal", VCPU_STAT(deliver_stop_signal) }, 85ba5c1e9bSCarsten Otte { "deliver_prefix_signal", VCPU_STAT(deliver_prefix_signal) }, 86ba5c1e9bSCarsten Otte { "deliver_restart_signal", VCPU_STAT(deliver_restart_signal) }, 87ba5c1e9bSCarsten Otte { "deliver_program_interruption", VCPU_STAT(deliver_program_int) }, 88ba5c1e9bSCarsten Otte { "exit_wait_state", VCPU_STAT(exit_wait_state) }, 8969d0d3a3SChristian Borntraeger { "instruction_pfmf", VCPU_STAT(instruction_pfmf) }, 90453423dcSChristian Borntraeger { "instruction_stidp", VCPU_STAT(instruction_stidp) }, 91453423dcSChristian Borntraeger { "instruction_spx", VCPU_STAT(instruction_spx) }, 92453423dcSChristian Borntraeger { "instruction_stpx", VCPU_STAT(instruction_stpx) }, 93453423dcSChristian Borntraeger { "instruction_stap", VCPU_STAT(instruction_stap) }, 94453423dcSChristian Borntraeger { "instruction_storage_key", VCPU_STAT(instruction_storage_key) }, 958a242234SHeiko Carstens { "instruction_ipte_interlock", VCPU_STAT(instruction_ipte_interlock) }, 96453423dcSChristian Borntraeger { "instruction_stsch", VCPU_STAT(instruction_stsch) }, 97453423dcSChristian Borntraeger { "instruction_chsc", VCPU_STAT(instruction_chsc) }, 98b31288faSKonstantin Weitz { "instruction_essa", VCPU_STAT(instruction_essa) }, 99453423dcSChristian Borntraeger { "instruction_stsi", VCPU_STAT(instruction_stsi) }, 100453423dcSChristian Borntraeger { "instruction_stfl", VCPU_STAT(instruction_stfl) }, 101bb25b9baSChristian Borntraeger { "instruction_tprot", VCPU_STAT(instruction_tprot) }, 10295ca2cb5SJanosch Frank { "instruction_sthyi", VCPU_STAT(instruction_sthyi) }, 103a3508fbeSDavid Hildenbrand { "instruction_sie", VCPU_STAT(instruction_sie) }, 1045288fbf0SChristian Borntraeger { "instruction_sigp_sense", VCPU_STAT(instruction_sigp_sense) }, 105bd59d3a4SCornelia Huck { "instruction_sigp_sense_running", VCPU_STAT(instruction_sigp_sense_running) }, 1067697e71fSChristian Ehrhardt { "instruction_sigp_external_call", VCPU_STAT(instruction_sigp_external_call) }, 1075288fbf0SChristian Borntraeger { "instruction_sigp_emergency", VCPU_STAT(instruction_sigp_emergency) }, 10842cb0c9fSDavid Hildenbrand { "instruction_sigp_cond_emergency", VCPU_STAT(instruction_sigp_cond_emergency) }, 10942cb0c9fSDavid Hildenbrand { "instruction_sigp_start", VCPU_STAT(instruction_sigp_start) }, 1105288fbf0SChristian Borntraeger { "instruction_sigp_stop", VCPU_STAT(instruction_sigp_stop) }, 11142cb0c9fSDavid Hildenbrand { "instruction_sigp_stop_store_status", VCPU_STAT(instruction_sigp_stop_store_status) }, 11242cb0c9fSDavid Hildenbrand { "instruction_sigp_store_status", VCPU_STAT(instruction_sigp_store_status) }, 113cd7b4b61SEric Farman { "instruction_sigp_store_adtl_status", VCPU_STAT(instruction_sigp_store_adtl_status) }, 1145288fbf0SChristian Borntraeger { "instruction_sigp_set_arch", VCPU_STAT(instruction_sigp_arch) }, 1155288fbf0SChristian Borntraeger { "instruction_sigp_set_prefix", VCPU_STAT(instruction_sigp_prefix) }, 1165288fbf0SChristian Borntraeger { "instruction_sigp_restart", VCPU_STAT(instruction_sigp_restart) }, 11742cb0c9fSDavid Hildenbrand { "instruction_sigp_cpu_reset", VCPU_STAT(instruction_sigp_cpu_reset) }, 11842cb0c9fSDavid Hildenbrand { "instruction_sigp_init_cpu_reset", VCPU_STAT(instruction_sigp_init_cpu_reset) }, 11942cb0c9fSDavid Hildenbrand { "instruction_sigp_unknown", VCPU_STAT(instruction_sigp_unknown) }, 120388186bcSChristian Borntraeger { "diagnose_10", VCPU_STAT(diagnose_10) }, 121e28acfeaSChristian Borntraeger { "diagnose_44", VCPU_STAT(diagnose_44) }, 12241628d33SKonstantin Weitz { "diagnose_9c", VCPU_STAT(diagnose_9c) }, 123175a5c9eSChristian Borntraeger { "diagnose_258", VCPU_STAT(diagnose_258) }, 124175a5c9eSChristian Borntraeger { "diagnose_308", VCPU_STAT(diagnose_308) }, 125175a5c9eSChristian Borntraeger { "diagnose_500", VCPU_STAT(diagnose_500) }, 126b0c632dbSHeiko Carstens { NULL } 127b0c632dbSHeiko Carstens }; 128b0c632dbSHeiko Carstens 129a411edf1SDavid Hildenbrand /* allow nested virtualization in KVM (if enabled by user space) */ 130a411edf1SDavid Hildenbrand static int nested; 131a411edf1SDavid Hildenbrand module_param(nested, int, S_IRUGO); 132a411edf1SDavid Hildenbrand MODULE_PARM_DESC(nested, "Nested virtualization support"); 133a411edf1SDavid Hildenbrand 1349d8d5786SMichael Mueller /* upper facilities limit for kvm */ 135f6c1d359SHeiko Carstens unsigned long kvm_s390_fac_list_mask[16] = { FACILITIES_KVM }; 136b0c632dbSHeiko Carstens 1379d8d5786SMichael Mueller unsigned long kvm_s390_fac_list_mask_size(void) 13878c4b59fSMichael Mueller { 1399d8d5786SMichael Mueller BUILD_BUG_ON(ARRAY_SIZE(kvm_s390_fac_list_mask) > S390_ARCH_FAC_MASK_SIZE_U64); 1409d8d5786SMichael Mueller return ARRAY_SIZE(kvm_s390_fac_list_mask); 14178c4b59fSMichael Mueller } 14278c4b59fSMichael Mueller 14315c9705fSDavid Hildenbrand /* available cpu features supported by kvm */ 14415c9705fSDavid Hildenbrand static DECLARE_BITMAP(kvm_s390_available_cpu_feat, KVM_S390_VM_CPU_FEAT_NR_BITS); 1450a763c78SDavid Hildenbrand /* available subfunctions indicated via query / "test bit" */ 1460a763c78SDavid Hildenbrand static struct kvm_s390_vm_cpu_subfunc kvm_s390_available_subfunc; 14715c9705fSDavid Hildenbrand 1489d8d5786SMichael Mueller static struct gmap_notifier gmap_notifier; 149a3508fbeSDavid Hildenbrand static struct gmap_notifier vsie_gmap_notifier; 15078f26131SChristian Borntraeger debug_info_t *kvm_s390_dbf; 1519d8d5786SMichael Mueller 152b0c632dbSHeiko Carstens /* Section: not file related */ 15313a34e06SRadim Krčmář int kvm_arch_hardware_enable(void) 154b0c632dbSHeiko Carstens { 155b0c632dbSHeiko Carstens /* every s390 is virtualization enabled ;-) */ 15610474ae8SAlexander Graf return 0; 157b0c632dbSHeiko Carstens } 158b0c632dbSHeiko Carstens 159414d3b07SMartin Schwidefsky static void kvm_gmap_notifier(struct gmap *gmap, unsigned long start, 160414d3b07SMartin Schwidefsky unsigned long end); 1612c70fe44SChristian Borntraeger 162fdf03650SFan Zhang /* 163fdf03650SFan Zhang * This callback is executed during stop_machine(). All CPUs are therefore 164fdf03650SFan Zhang * temporarily stopped. In order not to change guest behavior, we have to 165fdf03650SFan Zhang * disable preemption whenever we touch the epoch of kvm and the VCPUs, 166fdf03650SFan Zhang * so a CPU won't be stopped while calculating with the epoch. 167fdf03650SFan Zhang */ 168fdf03650SFan Zhang static int kvm_clock_sync(struct notifier_block *notifier, unsigned long val, 169fdf03650SFan Zhang void *v) 170fdf03650SFan Zhang { 171fdf03650SFan Zhang struct kvm *kvm; 172fdf03650SFan Zhang struct kvm_vcpu *vcpu; 173fdf03650SFan Zhang int i; 174fdf03650SFan Zhang unsigned long long *delta = v; 175fdf03650SFan Zhang 176fdf03650SFan Zhang list_for_each_entry(kvm, &vm_list, vm_list) { 177fdf03650SFan Zhang kvm->arch.epoch -= *delta; 178fdf03650SFan Zhang kvm_for_each_vcpu(i, vcpu, kvm) { 179fdf03650SFan Zhang vcpu->arch.sie_block->epoch -= *delta; 180db0758b2SDavid Hildenbrand if (vcpu->arch.cputm_enabled) 181db0758b2SDavid Hildenbrand vcpu->arch.cputm_start += *delta; 18291473b48SDavid Hildenbrand if (vcpu->arch.vsie_block) 18391473b48SDavid Hildenbrand vcpu->arch.vsie_block->epoch -= *delta; 184fdf03650SFan Zhang } 185fdf03650SFan Zhang } 186fdf03650SFan Zhang return NOTIFY_OK; 187fdf03650SFan Zhang } 188fdf03650SFan Zhang 189fdf03650SFan Zhang static struct notifier_block kvm_clock_notifier = { 190fdf03650SFan Zhang .notifier_call = kvm_clock_sync, 191fdf03650SFan Zhang }; 192fdf03650SFan Zhang 193b0c632dbSHeiko Carstens int kvm_arch_hardware_setup(void) 194b0c632dbSHeiko Carstens { 1952c70fe44SChristian Borntraeger gmap_notifier.notifier_call = kvm_gmap_notifier; 196b2d73b2aSMartin Schwidefsky gmap_register_pte_notifier(&gmap_notifier); 197a3508fbeSDavid Hildenbrand vsie_gmap_notifier.notifier_call = kvm_s390_vsie_gmap_notifier; 198a3508fbeSDavid Hildenbrand gmap_register_pte_notifier(&vsie_gmap_notifier); 199fdf03650SFan Zhang atomic_notifier_chain_register(&s390_epoch_delta_notifier, 200fdf03650SFan Zhang &kvm_clock_notifier); 201b0c632dbSHeiko Carstens return 0; 202b0c632dbSHeiko Carstens } 203b0c632dbSHeiko Carstens 204b0c632dbSHeiko Carstens void kvm_arch_hardware_unsetup(void) 205b0c632dbSHeiko Carstens { 206b2d73b2aSMartin Schwidefsky gmap_unregister_pte_notifier(&gmap_notifier); 207a3508fbeSDavid Hildenbrand gmap_unregister_pte_notifier(&vsie_gmap_notifier); 208fdf03650SFan Zhang atomic_notifier_chain_unregister(&s390_epoch_delta_notifier, 209fdf03650SFan Zhang &kvm_clock_notifier); 210b0c632dbSHeiko Carstens } 211b0c632dbSHeiko Carstens 21222be5a13SDavid Hildenbrand static void allow_cpu_feat(unsigned long nr) 21322be5a13SDavid Hildenbrand { 21422be5a13SDavid Hildenbrand set_bit_inv(nr, kvm_s390_available_cpu_feat); 21522be5a13SDavid Hildenbrand } 21622be5a13SDavid Hildenbrand 2170a763c78SDavid Hildenbrand static inline int plo_test_bit(unsigned char nr) 2180a763c78SDavid Hildenbrand { 2190a763c78SDavid Hildenbrand register unsigned long r0 asm("0") = (unsigned long) nr | 0x100; 2200a763c78SDavid Hildenbrand int cc = 3; /* subfunction not available */ 2210a763c78SDavid Hildenbrand 2220a763c78SDavid Hildenbrand asm volatile( 2230a763c78SDavid Hildenbrand /* Parameter registers are ignored for "test bit" */ 2240a763c78SDavid Hildenbrand " plo 0,0,0,0(0)\n" 2250a763c78SDavid Hildenbrand " ipm %0\n" 2260a763c78SDavid Hildenbrand " srl %0,28\n" 2270a763c78SDavid Hildenbrand : "=d" (cc) 2280a763c78SDavid Hildenbrand : "d" (r0) 2290a763c78SDavid Hildenbrand : "cc"); 2300a763c78SDavid Hildenbrand return cc == 0; 2310a763c78SDavid Hildenbrand } 2320a763c78SDavid Hildenbrand 23322be5a13SDavid Hildenbrand static void kvm_s390_cpu_feat_init(void) 23422be5a13SDavid Hildenbrand { 2350a763c78SDavid Hildenbrand int i; 2360a763c78SDavid Hildenbrand 2370a763c78SDavid Hildenbrand for (i = 0; i < 256; ++i) { 2380a763c78SDavid Hildenbrand if (plo_test_bit(i)) 2390a763c78SDavid Hildenbrand kvm_s390_available_subfunc.plo[i >> 3] |= 0x80 >> (i & 7); 2400a763c78SDavid Hildenbrand } 2410a763c78SDavid Hildenbrand 2420a763c78SDavid Hildenbrand if (test_facility(28)) /* TOD-clock steering */ 243221bb8a4SLinus Torvalds ptff(kvm_s390_available_subfunc.ptff, 244221bb8a4SLinus Torvalds sizeof(kvm_s390_available_subfunc.ptff), 245221bb8a4SLinus Torvalds PTFF_QAF); 2460a763c78SDavid Hildenbrand 2470a763c78SDavid Hildenbrand if (test_facility(17)) { /* MSA */ 24869c0e360SMartin Schwidefsky __cpacf_query(CPACF_KMAC, (cpacf_mask_t *) 24969c0e360SMartin Schwidefsky kvm_s390_available_subfunc.kmac); 25069c0e360SMartin Schwidefsky __cpacf_query(CPACF_KMC, (cpacf_mask_t *) 25169c0e360SMartin Schwidefsky kvm_s390_available_subfunc.kmc); 25269c0e360SMartin Schwidefsky __cpacf_query(CPACF_KM, (cpacf_mask_t *) 25369c0e360SMartin Schwidefsky kvm_s390_available_subfunc.km); 25469c0e360SMartin Schwidefsky __cpacf_query(CPACF_KIMD, (cpacf_mask_t *) 25569c0e360SMartin Schwidefsky kvm_s390_available_subfunc.kimd); 25669c0e360SMartin Schwidefsky __cpacf_query(CPACF_KLMD, (cpacf_mask_t *) 25769c0e360SMartin Schwidefsky kvm_s390_available_subfunc.klmd); 2580a763c78SDavid Hildenbrand } 2590a763c78SDavid Hildenbrand if (test_facility(76)) /* MSA3 */ 26069c0e360SMartin Schwidefsky __cpacf_query(CPACF_PCKMO, (cpacf_mask_t *) 26169c0e360SMartin Schwidefsky kvm_s390_available_subfunc.pckmo); 2620a763c78SDavid Hildenbrand if (test_facility(77)) { /* MSA4 */ 26369c0e360SMartin Schwidefsky __cpacf_query(CPACF_KMCTR, (cpacf_mask_t *) 26469c0e360SMartin Schwidefsky kvm_s390_available_subfunc.kmctr); 26569c0e360SMartin Schwidefsky __cpacf_query(CPACF_KMF, (cpacf_mask_t *) 26669c0e360SMartin Schwidefsky kvm_s390_available_subfunc.kmf); 26769c0e360SMartin Schwidefsky __cpacf_query(CPACF_KMO, (cpacf_mask_t *) 26869c0e360SMartin Schwidefsky kvm_s390_available_subfunc.kmo); 26969c0e360SMartin Schwidefsky __cpacf_query(CPACF_PCC, (cpacf_mask_t *) 27069c0e360SMartin Schwidefsky kvm_s390_available_subfunc.pcc); 2710a763c78SDavid Hildenbrand } 2720a763c78SDavid Hildenbrand if (test_facility(57)) /* MSA5 */ 27369c0e360SMartin Schwidefsky __cpacf_query(CPACF_PPNO, (cpacf_mask_t *) 27469c0e360SMartin Schwidefsky kvm_s390_available_subfunc.ppno); 2750a763c78SDavid Hildenbrand 27622be5a13SDavid Hildenbrand if (MACHINE_HAS_ESOP) 27722be5a13SDavid Hildenbrand allow_cpu_feat(KVM_S390_VM_CPU_FEAT_ESOP); 278a3508fbeSDavid Hildenbrand /* 279a3508fbeSDavid Hildenbrand * We need SIE support, ESOP (PROT_READ protection for gmap_shadow), 280a3508fbeSDavid Hildenbrand * 64bit SCAO (SCA passthrough) and IDTE (for gmap_shadow unshadowing). 281a3508fbeSDavid Hildenbrand */ 282a3508fbeSDavid Hildenbrand if (!sclp.has_sief2 || !MACHINE_HAS_ESOP || !sclp.has_64bscao || 283a411edf1SDavid Hildenbrand !test_facility(3) || !nested) 284a3508fbeSDavid Hildenbrand return; 285a3508fbeSDavid Hildenbrand allow_cpu_feat(KVM_S390_VM_CPU_FEAT_SIEF2); 28619c439b5SDavid Hildenbrand if (sclp.has_64bscao) 28719c439b5SDavid Hildenbrand allow_cpu_feat(KVM_S390_VM_CPU_FEAT_64BSCAO); 2880615a326SDavid Hildenbrand if (sclp.has_siif) 2890615a326SDavid Hildenbrand allow_cpu_feat(KVM_S390_VM_CPU_FEAT_SIIF); 29077d18f6dSDavid Hildenbrand if (sclp.has_gpere) 29177d18f6dSDavid Hildenbrand allow_cpu_feat(KVM_S390_VM_CPU_FEAT_GPERE); 292a1b7b9b2SDavid Hildenbrand if (sclp.has_gsls) 293a1b7b9b2SDavid Hildenbrand allow_cpu_feat(KVM_S390_VM_CPU_FEAT_GSLS); 2945630a8e8SDavid Hildenbrand if (sclp.has_ib) 2955630a8e8SDavid Hildenbrand allow_cpu_feat(KVM_S390_VM_CPU_FEAT_IB); 29613ee3f67SDavid Hildenbrand if (sclp.has_cei) 29713ee3f67SDavid Hildenbrand allow_cpu_feat(KVM_S390_VM_CPU_FEAT_CEI); 2987fd7f39dSDavid Hildenbrand if (sclp.has_ibs) 2997fd7f39dSDavid Hildenbrand allow_cpu_feat(KVM_S390_VM_CPU_FEAT_IBS); 3005d3876a8SDavid Hildenbrand /* 3015d3876a8SDavid Hildenbrand * KVM_S390_VM_CPU_FEAT_SKEY: Wrong shadow of PTE.I bits will make 3025d3876a8SDavid Hildenbrand * all skey handling functions read/set the skey from the PGSTE 3035d3876a8SDavid Hildenbrand * instead of the real storage key. 3045d3876a8SDavid Hildenbrand * 3055d3876a8SDavid Hildenbrand * KVM_S390_VM_CPU_FEAT_CMMA: Wrong shadow of PTE.I bits will make 3065d3876a8SDavid Hildenbrand * pages being detected as preserved although they are resident. 3075d3876a8SDavid Hildenbrand * 3085d3876a8SDavid Hildenbrand * KVM_S390_VM_CPU_FEAT_PFMFI: Wrong shadow of PTE.I bits will 3095d3876a8SDavid Hildenbrand * have the same effect as for KVM_S390_VM_CPU_FEAT_SKEY. 3105d3876a8SDavid Hildenbrand * 3115d3876a8SDavid Hildenbrand * For KVM_S390_VM_CPU_FEAT_SKEY, KVM_S390_VM_CPU_FEAT_CMMA and 3125d3876a8SDavid Hildenbrand * KVM_S390_VM_CPU_FEAT_PFMFI, all PTE.I and PGSTE bits have to be 3135d3876a8SDavid Hildenbrand * correctly shadowed. We can do that for the PGSTE but not for PTE.I. 3145d3876a8SDavid Hildenbrand * 3155d3876a8SDavid Hildenbrand * KVM_S390_VM_CPU_FEAT_SIGPIF: Wrong SCB addresses in the SCA. We 3165d3876a8SDavid Hildenbrand * cannot easily shadow the SCA because of the ipte lock. 3175d3876a8SDavid Hildenbrand */ 31822be5a13SDavid Hildenbrand } 31922be5a13SDavid Hildenbrand 320b0c632dbSHeiko Carstens int kvm_arch_init(void *opaque) 321b0c632dbSHeiko Carstens { 32278f26131SChristian Borntraeger kvm_s390_dbf = debug_register("kvm-trace", 32, 1, 7 * sizeof(long)); 32378f26131SChristian Borntraeger if (!kvm_s390_dbf) 32478f26131SChristian Borntraeger return -ENOMEM; 32578f26131SChristian Borntraeger 32678f26131SChristian Borntraeger if (debug_register_view(kvm_s390_dbf, &debug_sprintf_view)) { 32778f26131SChristian Borntraeger debug_unregister(kvm_s390_dbf); 32878f26131SChristian Borntraeger return -ENOMEM; 32978f26131SChristian Borntraeger } 33078f26131SChristian Borntraeger 33122be5a13SDavid Hildenbrand kvm_s390_cpu_feat_init(); 33222be5a13SDavid Hildenbrand 33384877d93SCornelia Huck /* Register floating interrupt controller interface. */ 33484877d93SCornelia Huck return kvm_register_device_ops(&kvm_flic_ops, KVM_DEV_TYPE_FLIC); 335b0c632dbSHeiko Carstens } 336b0c632dbSHeiko Carstens 33778f26131SChristian Borntraeger void kvm_arch_exit(void) 33878f26131SChristian Borntraeger { 33978f26131SChristian Borntraeger debug_unregister(kvm_s390_dbf); 34078f26131SChristian Borntraeger } 34178f26131SChristian Borntraeger 342b0c632dbSHeiko Carstens /* Section: device related */ 343b0c632dbSHeiko Carstens long kvm_arch_dev_ioctl(struct file *filp, 344b0c632dbSHeiko Carstens unsigned int ioctl, unsigned long arg) 345b0c632dbSHeiko Carstens { 346b0c632dbSHeiko Carstens if (ioctl == KVM_S390_ENABLE_SIE) 347b0c632dbSHeiko Carstens return s390_enable_sie(); 348b0c632dbSHeiko Carstens return -EINVAL; 349b0c632dbSHeiko Carstens } 350b0c632dbSHeiko Carstens 351784aa3d7SAlexander Graf int kvm_vm_ioctl_check_extension(struct kvm *kvm, long ext) 352b0c632dbSHeiko Carstens { 353d7b0b5ebSCarsten Otte int r; 354d7b0b5ebSCarsten Otte 3552bd0ac4eSCarsten Otte switch (ext) { 356d7b0b5ebSCarsten Otte case KVM_CAP_S390_PSW: 357b6cf8788SChristian Borntraeger case KVM_CAP_S390_GMAP: 35852e16b18SChristian Borntraeger case KVM_CAP_SYNC_MMU: 3591efd0f59SCarsten Otte #ifdef CONFIG_KVM_S390_UCONTROL 3601efd0f59SCarsten Otte case KVM_CAP_S390_UCONTROL: 3611efd0f59SCarsten Otte #endif 3623c038e6bSDominik Dingel case KVM_CAP_ASYNC_PF: 36360b413c9SChristian Borntraeger case KVM_CAP_SYNC_REGS: 36414eebd91SCarsten Otte case KVM_CAP_ONE_REG: 365d6712df9SCornelia Huck case KVM_CAP_ENABLE_CAP: 366fa6b7fe9SCornelia Huck case KVM_CAP_S390_CSS_SUPPORT: 36710ccaa1eSCornelia Huck case KVM_CAP_IOEVENTFD: 368c05c4186SJens Freimann case KVM_CAP_DEVICE_CTRL: 369d938dc55SCornelia Huck case KVM_CAP_ENABLE_CAP_VM: 37078599d90SCornelia Huck case KVM_CAP_S390_IRQCHIP: 371f2061656SDominik Dingel case KVM_CAP_VM_ATTRIBUTES: 3726352e4d2SDavid Hildenbrand case KVM_CAP_MP_STATE: 37347b43c52SJens Freimann case KVM_CAP_S390_INJECT_IRQ: 3742444b352SDavid Hildenbrand case KVM_CAP_S390_USER_SIGP: 375e44fc8c9SEkaterina Tumanova case KVM_CAP_S390_USER_STSI: 37630ee2a98SJason J. Herne case KVM_CAP_S390_SKEYS: 377816c7667SJens Freimann case KVM_CAP_S390_IRQ_STATE: 3786502a34cSDavid Hildenbrand case KVM_CAP_S390_USER_INSTR0: 379d7b0b5ebSCarsten Otte r = 1; 380d7b0b5ebSCarsten Otte break; 38141408c28SThomas Huth case KVM_CAP_S390_MEM_OP: 38241408c28SThomas Huth r = MEM_OP_MAX_SIZE; 38341408c28SThomas Huth break; 384e726b1bdSChristian Borntraeger case KVM_CAP_NR_VCPUS: 385e726b1bdSChristian Borntraeger case KVM_CAP_MAX_VCPUS: 38676a6dd72SDavid Hildenbrand r = KVM_S390_BSCA_CPU_SLOTS; 387a6940674SDavid Hildenbrand if (!kvm_s390_use_sca_entries()) 388a6940674SDavid Hildenbrand r = KVM_MAX_VCPUS; 389a6940674SDavid Hildenbrand else if (sclp.has_esca && sclp.has_64bscao) 39076a6dd72SDavid Hildenbrand r = KVM_S390_ESCA_CPU_SLOTS; 391e726b1bdSChristian Borntraeger break; 392e1e2e605SNick Wang case KVM_CAP_NR_MEMSLOTS: 393e1e2e605SNick Wang r = KVM_USER_MEM_SLOTS; 394e1e2e605SNick Wang break; 3951526bf9cSChristian Borntraeger case KVM_CAP_S390_COW: 396abf09bedSMartin Schwidefsky r = MACHINE_HAS_ESOP; 3971526bf9cSChristian Borntraeger break; 39868c55750SEric Farman case KVM_CAP_S390_VECTOR_REGISTERS: 39968c55750SEric Farman r = MACHINE_HAS_VX; 40068c55750SEric Farman break; 401c6e5f166SFan Zhang case KVM_CAP_S390_RI: 402c6e5f166SFan Zhang r = test_facility(64); 403c6e5f166SFan Zhang break; 4042bd0ac4eSCarsten Otte default: 405d7b0b5ebSCarsten Otte r = 0; 406b0c632dbSHeiko Carstens } 407d7b0b5ebSCarsten Otte return r; 4082bd0ac4eSCarsten Otte } 409b0c632dbSHeiko Carstens 41015f36ebdSJason J. Herne static void kvm_s390_sync_dirty_log(struct kvm *kvm, 41115f36ebdSJason J. Herne struct kvm_memory_slot *memslot) 41215f36ebdSJason J. Herne { 41315f36ebdSJason J. Herne gfn_t cur_gfn, last_gfn; 41415f36ebdSJason J. Herne unsigned long address; 41515f36ebdSJason J. Herne struct gmap *gmap = kvm->arch.gmap; 41615f36ebdSJason J. Herne 41715f36ebdSJason J. Herne /* Loop over all guest pages */ 41815f36ebdSJason J. Herne last_gfn = memslot->base_gfn + memslot->npages; 41915f36ebdSJason J. Herne for (cur_gfn = memslot->base_gfn; cur_gfn <= last_gfn; cur_gfn++) { 42015f36ebdSJason J. Herne address = gfn_to_hva_memslot(memslot, cur_gfn); 42115f36ebdSJason J. Herne 4221e133ab2SMartin Schwidefsky if (test_and_clear_guest_dirty(gmap->mm, address)) 42315f36ebdSJason J. Herne mark_page_dirty(kvm, cur_gfn); 4241763f8d0SChristian Borntraeger if (fatal_signal_pending(current)) 4251763f8d0SChristian Borntraeger return; 42670c88a00SChristian Borntraeger cond_resched(); 42715f36ebdSJason J. Herne } 42815f36ebdSJason J. Herne } 42915f36ebdSJason J. Herne 430b0c632dbSHeiko Carstens /* Section: vm related */ 431a6e2f683SEugene (jno) Dvurechenski static void sca_del_vcpu(struct kvm_vcpu *vcpu); 432a6e2f683SEugene (jno) Dvurechenski 433b0c632dbSHeiko Carstens /* 434b0c632dbSHeiko Carstens * Get (and clear) the dirty memory log for a memory slot. 435b0c632dbSHeiko Carstens */ 436b0c632dbSHeiko Carstens int kvm_vm_ioctl_get_dirty_log(struct kvm *kvm, 437b0c632dbSHeiko Carstens struct kvm_dirty_log *log) 438b0c632dbSHeiko Carstens { 43915f36ebdSJason J. Herne int r; 44015f36ebdSJason J. Herne unsigned long n; 4419f6b8029SPaolo Bonzini struct kvm_memslots *slots; 44215f36ebdSJason J. Herne struct kvm_memory_slot *memslot; 44315f36ebdSJason J. Herne int is_dirty = 0; 44415f36ebdSJason J. Herne 44515f36ebdSJason J. Herne mutex_lock(&kvm->slots_lock); 44615f36ebdSJason J. Herne 44715f36ebdSJason J. Herne r = -EINVAL; 44815f36ebdSJason J. Herne if (log->slot >= KVM_USER_MEM_SLOTS) 44915f36ebdSJason J. Herne goto out; 45015f36ebdSJason J. Herne 4519f6b8029SPaolo Bonzini slots = kvm_memslots(kvm); 4529f6b8029SPaolo Bonzini memslot = id_to_memslot(slots, log->slot); 45315f36ebdSJason J. Herne r = -ENOENT; 45415f36ebdSJason J. Herne if (!memslot->dirty_bitmap) 45515f36ebdSJason J. Herne goto out; 45615f36ebdSJason J. Herne 45715f36ebdSJason J. Herne kvm_s390_sync_dirty_log(kvm, memslot); 45815f36ebdSJason J. Herne r = kvm_get_dirty_log(kvm, log, &is_dirty); 45915f36ebdSJason J. Herne if (r) 46015f36ebdSJason J. Herne goto out; 46115f36ebdSJason J. Herne 46215f36ebdSJason J. Herne /* Clear the dirty log */ 46315f36ebdSJason J. Herne if (is_dirty) { 46415f36ebdSJason J. Herne n = kvm_dirty_bitmap_bytes(memslot); 46515f36ebdSJason J. Herne memset(memslot->dirty_bitmap, 0, n); 46615f36ebdSJason J. Herne } 46715f36ebdSJason J. Herne r = 0; 46815f36ebdSJason J. Herne out: 46915f36ebdSJason J. Herne mutex_unlock(&kvm->slots_lock); 47015f36ebdSJason J. Herne return r; 471b0c632dbSHeiko Carstens } 472b0c632dbSHeiko Carstens 4736502a34cSDavid Hildenbrand static void icpt_operexc_on_all_vcpus(struct kvm *kvm) 4746502a34cSDavid Hildenbrand { 4756502a34cSDavid Hildenbrand unsigned int i; 4766502a34cSDavid Hildenbrand struct kvm_vcpu *vcpu; 4776502a34cSDavid Hildenbrand 4786502a34cSDavid Hildenbrand kvm_for_each_vcpu(i, vcpu, kvm) { 4796502a34cSDavid Hildenbrand kvm_s390_sync_request(KVM_REQ_ICPT_OPEREXC, vcpu); 4806502a34cSDavid Hildenbrand } 4816502a34cSDavid Hildenbrand } 4826502a34cSDavid Hildenbrand 483d938dc55SCornelia Huck static int kvm_vm_ioctl_enable_cap(struct kvm *kvm, struct kvm_enable_cap *cap) 484d938dc55SCornelia Huck { 485d938dc55SCornelia Huck int r; 486d938dc55SCornelia Huck 487d938dc55SCornelia Huck if (cap->flags) 488d938dc55SCornelia Huck return -EINVAL; 489d938dc55SCornelia Huck 490d938dc55SCornelia Huck switch (cap->cap) { 49184223598SCornelia Huck case KVM_CAP_S390_IRQCHIP: 492c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "ENABLE: CAP_S390_IRQCHIP"); 49384223598SCornelia Huck kvm->arch.use_irqchip = 1; 49484223598SCornelia Huck r = 0; 49584223598SCornelia Huck break; 4962444b352SDavid Hildenbrand case KVM_CAP_S390_USER_SIGP: 497c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "ENABLE: CAP_S390_USER_SIGP"); 4982444b352SDavid Hildenbrand kvm->arch.user_sigp = 1; 4992444b352SDavid Hildenbrand r = 0; 5002444b352SDavid Hildenbrand break; 50168c55750SEric Farman case KVM_CAP_S390_VECTOR_REGISTERS: 5025967c17bSDavid Hildenbrand mutex_lock(&kvm->lock); 503a03825bbSPaolo Bonzini if (kvm->created_vcpus) { 5045967c17bSDavid Hildenbrand r = -EBUSY; 5055967c17bSDavid Hildenbrand } else if (MACHINE_HAS_VX) { 506c54f0d6aSDavid Hildenbrand set_kvm_facility(kvm->arch.model.fac_mask, 129); 507c54f0d6aSDavid Hildenbrand set_kvm_facility(kvm->arch.model.fac_list, 129); 50818280d8bSMichael Mueller r = 0; 50918280d8bSMichael Mueller } else 51018280d8bSMichael Mueller r = -EINVAL; 5115967c17bSDavid Hildenbrand mutex_unlock(&kvm->lock); 512c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "ENABLE: CAP_S390_VECTOR_REGISTERS %s", 513c92ea7b9SChristian Borntraeger r ? "(not available)" : "(success)"); 51468c55750SEric Farman break; 515c6e5f166SFan Zhang case KVM_CAP_S390_RI: 516c6e5f166SFan Zhang r = -EINVAL; 517c6e5f166SFan Zhang mutex_lock(&kvm->lock); 518a03825bbSPaolo Bonzini if (kvm->created_vcpus) { 519c6e5f166SFan Zhang r = -EBUSY; 520c6e5f166SFan Zhang } else if (test_facility(64)) { 521c54f0d6aSDavid Hildenbrand set_kvm_facility(kvm->arch.model.fac_mask, 64); 522c54f0d6aSDavid Hildenbrand set_kvm_facility(kvm->arch.model.fac_list, 64); 523c6e5f166SFan Zhang r = 0; 524c6e5f166SFan Zhang } 525c6e5f166SFan Zhang mutex_unlock(&kvm->lock); 526c6e5f166SFan Zhang VM_EVENT(kvm, 3, "ENABLE: CAP_S390_RI %s", 527c6e5f166SFan Zhang r ? "(not available)" : "(success)"); 528c6e5f166SFan Zhang break; 529e44fc8c9SEkaterina Tumanova case KVM_CAP_S390_USER_STSI: 530c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "ENABLE: CAP_S390_USER_STSI"); 531e44fc8c9SEkaterina Tumanova kvm->arch.user_stsi = 1; 532e44fc8c9SEkaterina Tumanova r = 0; 533e44fc8c9SEkaterina Tumanova break; 5346502a34cSDavid Hildenbrand case KVM_CAP_S390_USER_INSTR0: 5356502a34cSDavid Hildenbrand VM_EVENT(kvm, 3, "%s", "ENABLE: CAP_S390_USER_INSTR0"); 5366502a34cSDavid Hildenbrand kvm->arch.user_instr0 = 1; 5376502a34cSDavid Hildenbrand icpt_operexc_on_all_vcpus(kvm); 5386502a34cSDavid Hildenbrand r = 0; 5396502a34cSDavid Hildenbrand break; 540d938dc55SCornelia Huck default: 541d938dc55SCornelia Huck r = -EINVAL; 542d938dc55SCornelia Huck break; 543d938dc55SCornelia Huck } 544d938dc55SCornelia Huck return r; 545d938dc55SCornelia Huck } 546d938dc55SCornelia Huck 5478c0a7ce6SDominik Dingel static int kvm_s390_get_mem_control(struct kvm *kvm, struct kvm_device_attr *attr) 5488c0a7ce6SDominik Dingel { 5498c0a7ce6SDominik Dingel int ret; 5508c0a7ce6SDominik Dingel 5518c0a7ce6SDominik Dingel switch (attr->attr) { 5528c0a7ce6SDominik Dingel case KVM_S390_VM_MEM_LIMIT_SIZE: 5538c0a7ce6SDominik Dingel ret = 0; 554c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "QUERY: max guest memory: %lu bytes", 555a3a92c31SDominik Dingel kvm->arch.mem_limit); 556a3a92c31SDominik Dingel if (put_user(kvm->arch.mem_limit, (u64 __user *)attr->addr)) 5578c0a7ce6SDominik Dingel ret = -EFAULT; 5588c0a7ce6SDominik Dingel break; 5598c0a7ce6SDominik Dingel default: 5608c0a7ce6SDominik Dingel ret = -ENXIO; 5618c0a7ce6SDominik Dingel break; 5628c0a7ce6SDominik Dingel } 5638c0a7ce6SDominik Dingel return ret; 5648c0a7ce6SDominik Dingel } 5658c0a7ce6SDominik Dingel 5668c0a7ce6SDominik Dingel static int kvm_s390_set_mem_control(struct kvm *kvm, struct kvm_device_attr *attr) 5674f718eabSDominik Dingel { 5684f718eabSDominik Dingel int ret; 5694f718eabSDominik Dingel unsigned int idx; 5704f718eabSDominik Dingel switch (attr->attr) { 5714f718eabSDominik Dingel case KVM_S390_VM_MEM_ENABLE_CMMA: 572f9cbd9b0SDavid Hildenbrand ret = -ENXIO; 573c24cc9c8SDavid Hildenbrand if (!sclp.has_cmma) 574e6db1d61SDominik Dingel break; 575e6db1d61SDominik Dingel 5764f718eabSDominik Dingel ret = -EBUSY; 577c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "ENABLE: CMMA support"); 5784f718eabSDominik Dingel mutex_lock(&kvm->lock); 579a03825bbSPaolo Bonzini if (!kvm->created_vcpus) { 5804f718eabSDominik Dingel kvm->arch.use_cmma = 1; 5814f718eabSDominik Dingel ret = 0; 5824f718eabSDominik Dingel } 5834f718eabSDominik Dingel mutex_unlock(&kvm->lock); 5844f718eabSDominik Dingel break; 5854f718eabSDominik Dingel case KVM_S390_VM_MEM_CLR_CMMA: 586f9cbd9b0SDavid Hildenbrand ret = -ENXIO; 587f9cbd9b0SDavid Hildenbrand if (!sclp.has_cmma) 588f9cbd9b0SDavid Hildenbrand break; 589c3489155SDominik Dingel ret = -EINVAL; 590c3489155SDominik Dingel if (!kvm->arch.use_cmma) 591c3489155SDominik Dingel break; 592c3489155SDominik Dingel 593c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "RESET: CMMA states"); 5944f718eabSDominik Dingel mutex_lock(&kvm->lock); 5954f718eabSDominik Dingel idx = srcu_read_lock(&kvm->srcu); 596a13cff31SDominik Dingel s390_reset_cmma(kvm->arch.gmap->mm); 5974f718eabSDominik Dingel srcu_read_unlock(&kvm->srcu, idx); 5984f718eabSDominik Dingel mutex_unlock(&kvm->lock); 5994f718eabSDominik Dingel ret = 0; 6004f718eabSDominik Dingel break; 6018c0a7ce6SDominik Dingel case KVM_S390_VM_MEM_LIMIT_SIZE: { 6028c0a7ce6SDominik Dingel unsigned long new_limit; 6038c0a7ce6SDominik Dingel 6048c0a7ce6SDominik Dingel if (kvm_is_ucontrol(kvm)) 6058c0a7ce6SDominik Dingel return -EINVAL; 6068c0a7ce6SDominik Dingel 6078c0a7ce6SDominik Dingel if (get_user(new_limit, (u64 __user *)attr->addr)) 6088c0a7ce6SDominik Dingel return -EFAULT; 6098c0a7ce6SDominik Dingel 610a3a92c31SDominik Dingel if (kvm->arch.mem_limit != KVM_S390_NO_MEM_LIMIT && 611a3a92c31SDominik Dingel new_limit > kvm->arch.mem_limit) 6128c0a7ce6SDominik Dingel return -E2BIG; 6138c0a7ce6SDominik Dingel 614a3a92c31SDominik Dingel if (!new_limit) 615a3a92c31SDominik Dingel return -EINVAL; 616a3a92c31SDominik Dingel 6176ea427bbSMartin Schwidefsky /* gmap_create takes last usable address */ 618a3a92c31SDominik Dingel if (new_limit != KVM_S390_NO_MEM_LIMIT) 619a3a92c31SDominik Dingel new_limit -= 1; 620a3a92c31SDominik Dingel 6218c0a7ce6SDominik Dingel ret = -EBUSY; 6228c0a7ce6SDominik Dingel mutex_lock(&kvm->lock); 623a03825bbSPaolo Bonzini if (!kvm->created_vcpus) { 6246ea427bbSMartin Schwidefsky /* gmap_create will round the limit up */ 6256ea427bbSMartin Schwidefsky struct gmap *new = gmap_create(current->mm, new_limit); 6268c0a7ce6SDominik Dingel 6278c0a7ce6SDominik Dingel if (!new) { 6288c0a7ce6SDominik Dingel ret = -ENOMEM; 6298c0a7ce6SDominik Dingel } else { 6306ea427bbSMartin Schwidefsky gmap_remove(kvm->arch.gmap); 6318c0a7ce6SDominik Dingel new->private = kvm; 6328c0a7ce6SDominik Dingel kvm->arch.gmap = new; 6338c0a7ce6SDominik Dingel ret = 0; 6348c0a7ce6SDominik Dingel } 6358c0a7ce6SDominik Dingel } 6368c0a7ce6SDominik Dingel mutex_unlock(&kvm->lock); 637a3a92c31SDominik Dingel VM_EVENT(kvm, 3, "SET: max guest address: %lu", new_limit); 638a3a92c31SDominik Dingel VM_EVENT(kvm, 3, "New guest asce: 0x%pK", 639a3a92c31SDominik Dingel (void *) kvm->arch.gmap->asce); 6408c0a7ce6SDominik Dingel break; 6418c0a7ce6SDominik Dingel } 6424f718eabSDominik Dingel default: 6434f718eabSDominik Dingel ret = -ENXIO; 6444f718eabSDominik Dingel break; 6454f718eabSDominik Dingel } 6464f718eabSDominik Dingel return ret; 6474f718eabSDominik Dingel } 6484f718eabSDominik Dingel 649a374e892STony Krowiak static void kvm_s390_vcpu_crypto_setup(struct kvm_vcpu *vcpu); 650a374e892STony Krowiak 651a374e892STony Krowiak static int kvm_s390_vm_set_crypto(struct kvm *kvm, struct kvm_device_attr *attr) 652a374e892STony Krowiak { 653a374e892STony Krowiak struct kvm_vcpu *vcpu; 654a374e892STony Krowiak int i; 655a374e892STony Krowiak 6569d8d5786SMichael Mueller if (!test_kvm_facility(kvm, 76)) 657a374e892STony Krowiak return -EINVAL; 658a374e892STony Krowiak 659a374e892STony Krowiak mutex_lock(&kvm->lock); 660a374e892STony Krowiak switch (attr->attr) { 661a374e892STony Krowiak case KVM_S390_VM_CRYPTO_ENABLE_AES_KW: 662a374e892STony Krowiak get_random_bytes( 663a374e892STony Krowiak kvm->arch.crypto.crycb->aes_wrapping_key_mask, 664a374e892STony Krowiak sizeof(kvm->arch.crypto.crycb->aes_wrapping_key_mask)); 665a374e892STony Krowiak kvm->arch.crypto.aes_kw = 1; 666c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "ENABLE: AES keywrapping support"); 667a374e892STony Krowiak break; 668a374e892STony Krowiak case KVM_S390_VM_CRYPTO_ENABLE_DEA_KW: 669a374e892STony Krowiak get_random_bytes( 670a374e892STony Krowiak kvm->arch.crypto.crycb->dea_wrapping_key_mask, 671a374e892STony Krowiak sizeof(kvm->arch.crypto.crycb->dea_wrapping_key_mask)); 672a374e892STony Krowiak kvm->arch.crypto.dea_kw = 1; 673c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "ENABLE: DEA keywrapping support"); 674a374e892STony Krowiak break; 675a374e892STony Krowiak case KVM_S390_VM_CRYPTO_DISABLE_AES_KW: 676a374e892STony Krowiak kvm->arch.crypto.aes_kw = 0; 677a374e892STony Krowiak memset(kvm->arch.crypto.crycb->aes_wrapping_key_mask, 0, 678a374e892STony Krowiak sizeof(kvm->arch.crypto.crycb->aes_wrapping_key_mask)); 679c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "DISABLE: AES keywrapping support"); 680a374e892STony Krowiak break; 681a374e892STony Krowiak case KVM_S390_VM_CRYPTO_DISABLE_DEA_KW: 682a374e892STony Krowiak kvm->arch.crypto.dea_kw = 0; 683a374e892STony Krowiak memset(kvm->arch.crypto.crycb->dea_wrapping_key_mask, 0, 684a374e892STony Krowiak sizeof(kvm->arch.crypto.crycb->dea_wrapping_key_mask)); 685c92ea7b9SChristian Borntraeger VM_EVENT(kvm, 3, "%s", "DISABLE: DEA keywrapping support"); 686a374e892STony Krowiak break; 687a374e892STony Krowiak default: 688a374e892STony Krowiak mutex_unlock(&kvm->lock); 689a374e892STony Krowiak return -ENXIO; 690a374e892STony Krowiak } 691a374e892STony Krowiak 692a374e892STony Krowiak kvm_for_each_vcpu(i, vcpu, kvm) { 693a374e892STony Krowiak kvm_s390_vcpu_crypto_setup(vcpu); 694a374e892STony Krowiak exit_sie(vcpu); 695a374e892STony Krowiak } 696a374e892STony Krowiak mutex_unlock(&kvm->lock); 697a374e892STony Krowiak return 0; 698a374e892STony Krowiak } 699a374e892STony Krowiak 70072f25020SJason J. Herne static int kvm_s390_set_tod_high(struct kvm *kvm, struct kvm_device_attr *attr) 70172f25020SJason J. Herne { 70272f25020SJason J. Herne u8 gtod_high; 70372f25020SJason J. Herne 70472f25020SJason J. Herne if (copy_from_user(>od_high, (void __user *)attr->addr, 70572f25020SJason J. Herne sizeof(gtod_high))) 70672f25020SJason J. Herne return -EFAULT; 70772f25020SJason J. Herne 70872f25020SJason J. Herne if (gtod_high != 0) 70972f25020SJason J. Herne return -EINVAL; 71058c383c6SChristian Borntraeger VM_EVENT(kvm, 3, "SET: TOD extension: 0x%x", gtod_high); 71172f25020SJason J. Herne 71272f25020SJason J. Herne return 0; 71372f25020SJason J. Herne } 71472f25020SJason J. Herne 71572f25020SJason J. Herne static int kvm_s390_set_tod_low(struct kvm *kvm, struct kvm_device_attr *attr) 71672f25020SJason J. Herne { 7175a3d883aSDavid Hildenbrand u64 gtod; 71872f25020SJason J. Herne 71972f25020SJason J. Herne if (copy_from_user(>od, (void __user *)attr->addr, sizeof(gtod))) 72072f25020SJason J. Herne return -EFAULT; 72172f25020SJason J. Herne 72225ed1675SDavid Hildenbrand kvm_s390_set_tod_clock(kvm, gtod); 72358c383c6SChristian Borntraeger VM_EVENT(kvm, 3, "SET: TOD base: 0x%llx", gtod); 72472f25020SJason J. Herne return 0; 72572f25020SJason J. Herne } 72672f25020SJason J. Herne 72772f25020SJason J. Herne static int kvm_s390_set_tod(struct kvm *kvm, struct kvm_device_attr *attr) 72872f25020SJason J. Herne { 72972f25020SJason J. Herne int ret; 73072f25020SJason J. Herne 73172f25020SJason J. Herne if (attr->flags) 73272f25020SJason J. Herne return -EINVAL; 73372f25020SJason J. Herne 73472f25020SJason J. Herne switch (attr->attr) { 73572f25020SJason J. Herne case KVM_S390_VM_TOD_HIGH: 73672f25020SJason J. Herne ret = kvm_s390_set_tod_high(kvm, attr); 73772f25020SJason J. Herne break; 73872f25020SJason J. Herne case KVM_S390_VM_TOD_LOW: 73972f25020SJason J. Herne ret = kvm_s390_set_tod_low(kvm, attr); 74072f25020SJason J. Herne break; 74172f25020SJason J. Herne default: 74272f25020SJason J. Herne ret = -ENXIO; 74372f25020SJason J. Herne break; 74472f25020SJason J. Herne } 74572f25020SJason J. Herne return ret; 74672f25020SJason J. Herne } 74772f25020SJason J. Herne 74872f25020SJason J. Herne static int kvm_s390_get_tod_high(struct kvm *kvm, struct kvm_device_attr *attr) 74972f25020SJason J. Herne { 75072f25020SJason J. Herne u8 gtod_high = 0; 75172f25020SJason J. Herne 75272f25020SJason J. Herne if (copy_to_user((void __user *)attr->addr, >od_high, 75372f25020SJason J. Herne sizeof(gtod_high))) 75472f25020SJason J. Herne return -EFAULT; 75558c383c6SChristian Borntraeger VM_EVENT(kvm, 3, "QUERY: TOD extension: 0x%x", gtod_high); 75672f25020SJason J. Herne 75772f25020SJason J. Herne return 0; 75872f25020SJason J. Herne } 75972f25020SJason J. Herne 76072f25020SJason J. Herne static int kvm_s390_get_tod_low(struct kvm *kvm, struct kvm_device_attr *attr) 76172f25020SJason J. Herne { 7625a3d883aSDavid Hildenbrand u64 gtod; 76372f25020SJason J. Herne 76460417fccSDavid Hildenbrand gtod = kvm_s390_get_tod_clock_fast(kvm); 76572f25020SJason J. Herne if (copy_to_user((void __user *)attr->addr, >od, sizeof(gtod))) 76672f25020SJason J. Herne return -EFAULT; 76758c383c6SChristian Borntraeger VM_EVENT(kvm, 3, "QUERY: TOD base: 0x%llx", gtod); 76872f25020SJason J. Herne 76972f25020SJason J. Herne return 0; 77072f25020SJason J. Herne } 77172f25020SJason J. Herne 77272f25020SJason J. Herne static int kvm_s390_get_tod(struct kvm *kvm, struct kvm_device_attr *attr) 77372f25020SJason J. Herne { 77472f25020SJason J. Herne int ret; 77572f25020SJason J. Herne 77672f25020SJason J. Herne if (attr->flags) 77772f25020SJason J. Herne return -EINVAL; 77872f25020SJason J. Herne 77972f25020SJason J. Herne switch (attr->attr) { 78072f25020SJason J. Herne case KVM_S390_VM_TOD_HIGH: 78172f25020SJason J. Herne ret = kvm_s390_get_tod_high(kvm, attr); 78272f25020SJason J. Herne break; 78372f25020SJason J. Herne case KVM_S390_VM_TOD_LOW: 78472f25020SJason J. Herne ret = kvm_s390_get_tod_low(kvm, attr); 78572f25020SJason J. Herne break; 78672f25020SJason J. Herne default: 78772f25020SJason J. Herne ret = -ENXIO; 78872f25020SJason J. Herne break; 78972f25020SJason J. Herne } 79072f25020SJason J. Herne return ret; 79172f25020SJason J. Herne } 79272f25020SJason J. Herne 793658b6edaSMichael Mueller static int kvm_s390_set_processor(struct kvm *kvm, struct kvm_device_attr *attr) 794658b6edaSMichael Mueller { 795658b6edaSMichael Mueller struct kvm_s390_vm_cpu_processor *proc; 796053dd230SDavid Hildenbrand u16 lowest_ibc, unblocked_ibc; 797658b6edaSMichael Mueller int ret = 0; 798658b6edaSMichael Mueller 799658b6edaSMichael Mueller mutex_lock(&kvm->lock); 800a03825bbSPaolo Bonzini if (kvm->created_vcpus) { 801658b6edaSMichael Mueller ret = -EBUSY; 802658b6edaSMichael Mueller goto out; 803658b6edaSMichael Mueller } 804658b6edaSMichael Mueller proc = kzalloc(sizeof(*proc), GFP_KERNEL); 805658b6edaSMichael Mueller if (!proc) { 806658b6edaSMichael Mueller ret = -ENOMEM; 807658b6edaSMichael Mueller goto out; 808658b6edaSMichael Mueller } 809658b6edaSMichael Mueller if (!copy_from_user(proc, (void __user *)attr->addr, 810658b6edaSMichael Mueller sizeof(*proc))) { 8119bb0ec09SDavid Hildenbrand kvm->arch.model.cpuid = proc->cpuid; 812053dd230SDavid Hildenbrand lowest_ibc = sclp.ibc >> 16 & 0xfff; 813053dd230SDavid Hildenbrand unblocked_ibc = sclp.ibc & 0xfff; 8140487c44dSDavid Hildenbrand if (lowest_ibc && proc->ibc) { 815053dd230SDavid Hildenbrand if (proc->ibc > unblocked_ibc) 816053dd230SDavid Hildenbrand kvm->arch.model.ibc = unblocked_ibc; 817053dd230SDavid Hildenbrand else if (proc->ibc < lowest_ibc) 818053dd230SDavid Hildenbrand kvm->arch.model.ibc = lowest_ibc; 819053dd230SDavid Hildenbrand else 820658b6edaSMichael Mueller kvm->arch.model.ibc = proc->ibc; 821053dd230SDavid Hildenbrand } 822c54f0d6aSDavid Hildenbrand memcpy(kvm->arch.model.fac_list, proc->fac_list, 823658b6edaSMichael Mueller S390_ARCH_FAC_LIST_SIZE_BYTE); 824658b6edaSMichael Mueller } else 825658b6edaSMichael Mueller ret = -EFAULT; 826658b6edaSMichael Mueller kfree(proc); 827658b6edaSMichael Mueller out: 828658b6edaSMichael Mueller mutex_unlock(&kvm->lock); 829658b6edaSMichael Mueller return ret; 830658b6edaSMichael Mueller } 831658b6edaSMichael Mueller 83215c9705fSDavid Hildenbrand static int kvm_s390_set_processor_feat(struct kvm *kvm, 83315c9705fSDavid Hildenbrand struct kvm_device_attr *attr) 83415c9705fSDavid Hildenbrand { 83515c9705fSDavid Hildenbrand struct kvm_s390_vm_cpu_feat data; 83615c9705fSDavid Hildenbrand int ret = -EBUSY; 83715c9705fSDavid Hildenbrand 83815c9705fSDavid Hildenbrand if (copy_from_user(&data, (void __user *)attr->addr, sizeof(data))) 83915c9705fSDavid Hildenbrand return -EFAULT; 84015c9705fSDavid Hildenbrand if (!bitmap_subset((unsigned long *) data.feat, 84115c9705fSDavid Hildenbrand kvm_s390_available_cpu_feat, 84215c9705fSDavid Hildenbrand KVM_S390_VM_CPU_FEAT_NR_BITS)) 84315c9705fSDavid Hildenbrand return -EINVAL; 84415c9705fSDavid Hildenbrand 84515c9705fSDavid Hildenbrand mutex_lock(&kvm->lock); 84615c9705fSDavid Hildenbrand if (!atomic_read(&kvm->online_vcpus)) { 84715c9705fSDavid Hildenbrand bitmap_copy(kvm->arch.cpu_feat, (unsigned long *) data.feat, 84815c9705fSDavid Hildenbrand KVM_S390_VM_CPU_FEAT_NR_BITS); 84915c9705fSDavid Hildenbrand ret = 0; 85015c9705fSDavid Hildenbrand } 85115c9705fSDavid Hildenbrand mutex_unlock(&kvm->lock); 85215c9705fSDavid Hildenbrand return ret; 85315c9705fSDavid Hildenbrand } 85415c9705fSDavid Hildenbrand 8550a763c78SDavid Hildenbrand static int kvm_s390_set_processor_subfunc(struct kvm *kvm, 8560a763c78SDavid Hildenbrand struct kvm_device_attr *attr) 8570a763c78SDavid Hildenbrand { 8580a763c78SDavid Hildenbrand /* 8590a763c78SDavid Hildenbrand * Once supported by kernel + hw, we have to store the subfunctions 8600a763c78SDavid Hildenbrand * in kvm->arch and remember that user space configured them. 8610a763c78SDavid Hildenbrand */ 8620a763c78SDavid Hildenbrand return -ENXIO; 8630a763c78SDavid Hildenbrand } 8640a763c78SDavid Hildenbrand 865658b6edaSMichael Mueller static int kvm_s390_set_cpu_model(struct kvm *kvm, struct kvm_device_attr *attr) 866658b6edaSMichael Mueller { 867658b6edaSMichael Mueller int ret = -ENXIO; 868658b6edaSMichael Mueller 869658b6edaSMichael Mueller switch (attr->attr) { 870658b6edaSMichael Mueller case KVM_S390_VM_CPU_PROCESSOR: 871658b6edaSMichael Mueller ret = kvm_s390_set_processor(kvm, attr); 872658b6edaSMichael Mueller break; 87315c9705fSDavid Hildenbrand case KVM_S390_VM_CPU_PROCESSOR_FEAT: 87415c9705fSDavid Hildenbrand ret = kvm_s390_set_processor_feat(kvm, attr); 87515c9705fSDavid Hildenbrand break; 8760a763c78SDavid Hildenbrand case KVM_S390_VM_CPU_PROCESSOR_SUBFUNC: 8770a763c78SDavid Hildenbrand ret = kvm_s390_set_processor_subfunc(kvm, attr); 8780a763c78SDavid Hildenbrand break; 879658b6edaSMichael Mueller } 880658b6edaSMichael Mueller return ret; 881658b6edaSMichael Mueller } 882658b6edaSMichael Mueller 883658b6edaSMichael Mueller static int kvm_s390_get_processor(struct kvm *kvm, struct kvm_device_attr *attr) 884658b6edaSMichael Mueller { 885658b6edaSMichael Mueller struct kvm_s390_vm_cpu_processor *proc; 886658b6edaSMichael Mueller int ret = 0; 887658b6edaSMichael Mueller 888658b6edaSMichael Mueller proc = kzalloc(sizeof(*proc), GFP_KERNEL); 889658b6edaSMichael Mueller if (!proc) { 890658b6edaSMichael Mueller ret = -ENOMEM; 891658b6edaSMichael Mueller goto out; 892658b6edaSMichael Mueller } 8939bb0ec09SDavid Hildenbrand proc->cpuid = kvm->arch.model.cpuid; 894658b6edaSMichael Mueller proc->ibc = kvm->arch.model.ibc; 895c54f0d6aSDavid Hildenbrand memcpy(&proc->fac_list, kvm->arch.model.fac_list, 896c54f0d6aSDavid Hildenbrand S390_ARCH_FAC_LIST_SIZE_BYTE); 897658b6edaSMichael Mueller if (copy_to_user((void __user *)attr->addr, proc, sizeof(*proc))) 898658b6edaSMichael Mueller ret = -EFAULT; 899658b6edaSMichael Mueller kfree(proc); 900658b6edaSMichael Mueller out: 901658b6edaSMichael Mueller return ret; 902658b6edaSMichael Mueller } 903658b6edaSMichael Mueller 904658b6edaSMichael Mueller static int kvm_s390_get_machine(struct kvm *kvm, struct kvm_device_attr *attr) 905658b6edaSMichael Mueller { 906658b6edaSMichael Mueller struct kvm_s390_vm_cpu_machine *mach; 907658b6edaSMichael Mueller int ret = 0; 908658b6edaSMichael Mueller 909658b6edaSMichael Mueller mach = kzalloc(sizeof(*mach), GFP_KERNEL); 910658b6edaSMichael Mueller if (!mach) { 911658b6edaSMichael Mueller ret = -ENOMEM; 912658b6edaSMichael Mueller goto out; 913658b6edaSMichael Mueller } 914658b6edaSMichael Mueller get_cpu_id((struct cpuid *) &mach->cpuid); 91537c5f6c8SDavid Hildenbrand mach->ibc = sclp.ibc; 916c54f0d6aSDavid Hildenbrand memcpy(&mach->fac_mask, kvm->arch.model.fac_mask, 917981467c9SMichael Mueller S390_ARCH_FAC_LIST_SIZE_BYTE); 918658b6edaSMichael Mueller memcpy((unsigned long *)&mach->fac_list, S390_lowcore.stfle_fac_list, 91994422ee8SMichael Mueller S390_ARCH_FAC_LIST_SIZE_BYTE); 920658b6edaSMichael Mueller if (copy_to_user((void __user *)attr->addr, mach, sizeof(*mach))) 921658b6edaSMichael Mueller ret = -EFAULT; 922658b6edaSMichael Mueller kfree(mach); 923658b6edaSMichael Mueller out: 924658b6edaSMichael Mueller return ret; 925658b6edaSMichael Mueller } 926658b6edaSMichael Mueller 92715c9705fSDavid Hildenbrand static int kvm_s390_get_processor_feat(struct kvm *kvm, 92815c9705fSDavid Hildenbrand struct kvm_device_attr *attr) 92915c9705fSDavid Hildenbrand { 93015c9705fSDavid Hildenbrand struct kvm_s390_vm_cpu_feat data; 93115c9705fSDavid Hildenbrand 93215c9705fSDavid Hildenbrand bitmap_copy((unsigned long *) data.feat, kvm->arch.cpu_feat, 93315c9705fSDavid Hildenbrand KVM_S390_VM_CPU_FEAT_NR_BITS); 93415c9705fSDavid Hildenbrand if (copy_to_user((void __user *)attr->addr, &data, sizeof(data))) 93515c9705fSDavid Hildenbrand return -EFAULT; 93615c9705fSDavid Hildenbrand return 0; 93715c9705fSDavid Hildenbrand } 93815c9705fSDavid Hildenbrand 93915c9705fSDavid Hildenbrand static int kvm_s390_get_machine_feat(struct kvm *kvm, 94015c9705fSDavid Hildenbrand struct kvm_device_attr *attr) 94115c9705fSDavid Hildenbrand { 94215c9705fSDavid Hildenbrand struct kvm_s390_vm_cpu_feat data; 94315c9705fSDavid Hildenbrand 94415c9705fSDavid Hildenbrand bitmap_copy((unsigned long *) data.feat, 94515c9705fSDavid Hildenbrand kvm_s390_available_cpu_feat, 94615c9705fSDavid Hildenbrand KVM_S390_VM_CPU_FEAT_NR_BITS); 94715c9705fSDavid Hildenbrand if (copy_to_user((void __user *)attr->addr, &data, sizeof(data))) 94815c9705fSDavid Hildenbrand return -EFAULT; 94915c9705fSDavid Hildenbrand return 0; 95015c9705fSDavid Hildenbrand } 95115c9705fSDavid Hildenbrand 9520a763c78SDavid Hildenbrand static int kvm_s390_get_processor_subfunc(struct kvm *kvm, 9530a763c78SDavid Hildenbrand struct kvm_device_attr *attr) 9540a763c78SDavid Hildenbrand { 9550a763c78SDavid Hildenbrand /* 9560a763c78SDavid Hildenbrand * Once we can actually configure subfunctions (kernel + hw support), 9570a763c78SDavid Hildenbrand * we have to check if they were already set by user space, if so copy 9580a763c78SDavid Hildenbrand * them from kvm->arch. 9590a763c78SDavid Hildenbrand */ 9600a763c78SDavid Hildenbrand return -ENXIO; 9610a763c78SDavid Hildenbrand } 9620a763c78SDavid Hildenbrand 9630a763c78SDavid Hildenbrand static int kvm_s390_get_machine_subfunc(struct kvm *kvm, 9640a763c78SDavid Hildenbrand struct kvm_device_attr *attr) 9650a763c78SDavid Hildenbrand { 9660a763c78SDavid Hildenbrand if (copy_to_user((void __user *)attr->addr, &kvm_s390_available_subfunc, 9670a763c78SDavid Hildenbrand sizeof(struct kvm_s390_vm_cpu_subfunc))) 9680a763c78SDavid Hildenbrand return -EFAULT; 9690a763c78SDavid Hildenbrand return 0; 9700a763c78SDavid Hildenbrand } 971658b6edaSMichael Mueller static int kvm_s390_get_cpu_model(struct kvm *kvm, struct kvm_device_attr *attr) 972658b6edaSMichael Mueller { 973658b6edaSMichael Mueller int ret = -ENXIO; 974658b6edaSMichael Mueller 975658b6edaSMichael Mueller switch (attr->attr) { 976658b6edaSMichael Mueller case KVM_S390_VM_CPU_PROCESSOR: 977658b6edaSMichael Mueller ret = kvm_s390_get_processor(kvm, attr); 978658b6edaSMichael Mueller break; 979658b6edaSMichael Mueller case KVM_S390_VM_CPU_MACHINE: 980658b6edaSMichael Mueller ret = kvm_s390_get_machine(kvm, attr); 981658b6edaSMichael Mueller break; 98215c9705fSDavid Hildenbrand case KVM_S390_VM_CPU_PROCESSOR_FEAT: 98315c9705fSDavid Hildenbrand ret = kvm_s390_get_processor_feat(kvm, attr); 98415c9705fSDavid Hildenbrand break; 98515c9705fSDavid Hildenbrand case KVM_S390_VM_CPU_MACHINE_FEAT: 98615c9705fSDavid Hildenbrand ret = kvm_s390_get_machine_feat(kvm, attr); 98715c9705fSDavid Hildenbrand break; 9880a763c78SDavid Hildenbrand case KVM_S390_VM_CPU_PROCESSOR_SUBFUNC: 9890a763c78SDavid Hildenbrand ret = kvm_s390_get_processor_subfunc(kvm, attr); 9900a763c78SDavid Hildenbrand break; 9910a763c78SDavid Hildenbrand case KVM_S390_VM_CPU_MACHINE_SUBFUNC: 9920a763c78SDavid Hildenbrand ret = kvm_s390_get_machine_subfunc(kvm, attr); 9930a763c78SDavid Hildenbrand break; 994658b6edaSMichael Mueller } 995658b6edaSMichael Mueller return ret; 996658b6edaSMichael Mueller } 997658b6edaSMichael Mueller 998f2061656SDominik Dingel static int kvm_s390_vm_set_attr(struct kvm *kvm, struct kvm_device_attr *attr) 999f2061656SDominik Dingel { 1000f2061656SDominik Dingel int ret; 1001f2061656SDominik Dingel 1002f2061656SDominik Dingel switch (attr->group) { 10034f718eabSDominik Dingel case KVM_S390_VM_MEM_CTRL: 10048c0a7ce6SDominik Dingel ret = kvm_s390_set_mem_control(kvm, attr); 10054f718eabSDominik Dingel break; 100672f25020SJason J. Herne case KVM_S390_VM_TOD: 100772f25020SJason J. Herne ret = kvm_s390_set_tod(kvm, attr); 100872f25020SJason J. Herne break; 1009658b6edaSMichael Mueller case KVM_S390_VM_CPU_MODEL: 1010658b6edaSMichael Mueller ret = kvm_s390_set_cpu_model(kvm, attr); 1011658b6edaSMichael Mueller break; 1012a374e892STony Krowiak case KVM_S390_VM_CRYPTO: 1013a374e892STony Krowiak ret = kvm_s390_vm_set_crypto(kvm, attr); 1014a374e892STony Krowiak break; 1015f2061656SDominik Dingel default: 1016f2061656SDominik Dingel ret = -ENXIO; 1017f2061656SDominik Dingel break; 1018f2061656SDominik Dingel } 1019f2061656SDominik Dingel 1020f2061656SDominik Dingel return ret; 1021f2061656SDominik Dingel } 1022f2061656SDominik Dingel 1023f2061656SDominik Dingel static int kvm_s390_vm_get_attr(struct kvm *kvm, struct kvm_device_attr *attr) 1024f2061656SDominik Dingel { 10258c0a7ce6SDominik Dingel int ret; 10268c0a7ce6SDominik Dingel 10278c0a7ce6SDominik Dingel switch (attr->group) { 10288c0a7ce6SDominik Dingel case KVM_S390_VM_MEM_CTRL: 10298c0a7ce6SDominik Dingel ret = kvm_s390_get_mem_control(kvm, attr); 10308c0a7ce6SDominik Dingel break; 103172f25020SJason J. Herne case KVM_S390_VM_TOD: 103272f25020SJason J. Herne ret = kvm_s390_get_tod(kvm, attr); 103372f25020SJason J. Herne break; 1034658b6edaSMichael Mueller case KVM_S390_VM_CPU_MODEL: 1035658b6edaSMichael Mueller ret = kvm_s390_get_cpu_model(kvm, attr); 1036658b6edaSMichael Mueller break; 10378c0a7ce6SDominik Dingel default: 10388c0a7ce6SDominik Dingel ret = -ENXIO; 10398c0a7ce6SDominik Dingel break; 10408c0a7ce6SDominik Dingel } 10418c0a7ce6SDominik Dingel 10428c0a7ce6SDominik Dingel return ret; 1043f2061656SDominik Dingel } 1044f2061656SDominik Dingel 1045f2061656SDominik Dingel static int kvm_s390_vm_has_attr(struct kvm *kvm, struct kvm_device_attr *attr) 1046f2061656SDominik Dingel { 1047f2061656SDominik Dingel int ret; 1048f2061656SDominik Dingel 1049f2061656SDominik Dingel switch (attr->group) { 10504f718eabSDominik Dingel case KVM_S390_VM_MEM_CTRL: 10514f718eabSDominik Dingel switch (attr->attr) { 10524f718eabSDominik Dingel case KVM_S390_VM_MEM_ENABLE_CMMA: 10534f718eabSDominik Dingel case KVM_S390_VM_MEM_CLR_CMMA: 1054f9cbd9b0SDavid Hildenbrand ret = sclp.has_cmma ? 0 : -ENXIO; 1055f9cbd9b0SDavid Hildenbrand break; 10568c0a7ce6SDominik Dingel case KVM_S390_VM_MEM_LIMIT_SIZE: 10574f718eabSDominik Dingel ret = 0; 10584f718eabSDominik Dingel break; 10594f718eabSDominik Dingel default: 10604f718eabSDominik Dingel ret = -ENXIO; 10614f718eabSDominik Dingel break; 10624f718eabSDominik Dingel } 10634f718eabSDominik Dingel break; 106472f25020SJason J. Herne case KVM_S390_VM_TOD: 106572f25020SJason J. Herne switch (attr->attr) { 106672f25020SJason J. Herne case KVM_S390_VM_TOD_LOW: 106772f25020SJason J. Herne case KVM_S390_VM_TOD_HIGH: 106872f25020SJason J. Herne ret = 0; 106972f25020SJason J. Herne break; 107072f25020SJason J. Herne default: 107172f25020SJason J. Herne ret = -ENXIO; 107272f25020SJason J. Herne break; 107372f25020SJason J. Herne } 107472f25020SJason J. Herne break; 1075658b6edaSMichael Mueller case KVM_S390_VM_CPU_MODEL: 1076658b6edaSMichael Mueller switch (attr->attr) { 1077658b6edaSMichael Mueller case KVM_S390_VM_CPU_PROCESSOR: 1078658b6edaSMichael Mueller case KVM_S390_VM_CPU_MACHINE: 107915c9705fSDavid Hildenbrand case KVM_S390_VM_CPU_PROCESSOR_FEAT: 108015c9705fSDavid Hildenbrand case KVM_S390_VM_CPU_MACHINE_FEAT: 10810a763c78SDavid Hildenbrand case KVM_S390_VM_CPU_MACHINE_SUBFUNC: 1082658b6edaSMichael Mueller ret = 0; 1083658b6edaSMichael Mueller break; 10840a763c78SDavid Hildenbrand /* configuring subfunctions is not supported yet */ 10850a763c78SDavid Hildenbrand case KVM_S390_VM_CPU_PROCESSOR_SUBFUNC: 1086658b6edaSMichael Mueller default: 1087658b6edaSMichael Mueller ret = -ENXIO; 1088658b6edaSMichael Mueller break; 1089658b6edaSMichael Mueller } 1090658b6edaSMichael Mueller break; 1091a374e892STony Krowiak case KVM_S390_VM_CRYPTO: 1092a374e892STony Krowiak switch (attr->attr) { 1093a374e892STony Krowiak case KVM_S390_VM_CRYPTO_ENABLE_AES_KW: 1094a374e892STony Krowiak case KVM_S390_VM_CRYPTO_ENABLE_DEA_KW: 1095a374e892STony Krowiak case KVM_S390_VM_CRYPTO_DISABLE_AES_KW: 1096a374e892STony Krowiak case KVM_S390_VM_CRYPTO_DISABLE_DEA_KW: 1097a374e892STony Krowiak ret = 0; 1098a374e892STony Krowiak break; 1099a374e892STony Krowiak default: 1100a374e892STony Krowiak ret = -ENXIO; 1101a374e892STony Krowiak break; 1102a374e892STony Krowiak } 1103a374e892STony Krowiak break; 1104f2061656SDominik Dingel default: 1105f2061656SDominik Dingel ret = -ENXIO; 1106f2061656SDominik Dingel break; 1107f2061656SDominik Dingel } 1108f2061656SDominik Dingel 1109f2061656SDominik Dingel return ret; 1110f2061656SDominik Dingel } 1111f2061656SDominik Dingel 111230ee2a98SJason J. Herne static long kvm_s390_get_skeys(struct kvm *kvm, struct kvm_s390_skeys *args) 111330ee2a98SJason J. Herne { 111430ee2a98SJason J. Herne uint8_t *keys; 111530ee2a98SJason J. Herne uint64_t hva; 111630ee2a98SJason J. Herne int i, r = 0; 111730ee2a98SJason J. Herne 111830ee2a98SJason J. Herne if (args->flags != 0) 111930ee2a98SJason J. Herne return -EINVAL; 112030ee2a98SJason J. Herne 112130ee2a98SJason J. Herne /* Is this guest using storage keys? */ 112230ee2a98SJason J. Herne if (!mm_use_skey(current->mm)) 112330ee2a98SJason J. Herne return KVM_S390_GET_SKEYS_NONE; 112430ee2a98SJason J. Herne 112530ee2a98SJason J. Herne /* Enforce sane limit on memory allocation */ 112630ee2a98SJason J. Herne if (args->count < 1 || args->count > KVM_S390_SKEYS_MAX) 112730ee2a98SJason J. Herne return -EINVAL; 112830ee2a98SJason J. Herne 112930ee2a98SJason J. Herne keys = kmalloc_array(args->count, sizeof(uint8_t), 113030ee2a98SJason J. Herne GFP_KERNEL | __GFP_NOWARN); 113130ee2a98SJason J. Herne if (!keys) 113230ee2a98SJason J. Herne keys = vmalloc(sizeof(uint8_t) * args->count); 113330ee2a98SJason J. Herne if (!keys) 113430ee2a98SJason J. Herne return -ENOMEM; 113530ee2a98SJason J. Herne 1136d3ed1ceeSMartin Schwidefsky down_read(¤t->mm->mmap_sem); 113730ee2a98SJason J. Herne for (i = 0; i < args->count; i++) { 113830ee2a98SJason J. Herne hva = gfn_to_hva(kvm, args->start_gfn + i); 113930ee2a98SJason J. Herne if (kvm_is_error_hva(hva)) { 114030ee2a98SJason J. Herne r = -EFAULT; 1141d3ed1ceeSMartin Schwidefsky break; 114230ee2a98SJason J. Herne } 114330ee2a98SJason J. Herne 1144154c8c19SDavid Hildenbrand r = get_guest_storage_key(current->mm, hva, &keys[i]); 1145154c8c19SDavid Hildenbrand if (r) 1146d3ed1ceeSMartin Schwidefsky break; 114730ee2a98SJason J. Herne } 1148d3ed1ceeSMartin Schwidefsky up_read(¤t->mm->mmap_sem); 114930ee2a98SJason J. Herne 1150d3ed1ceeSMartin Schwidefsky if (!r) { 115130ee2a98SJason J. Herne r = copy_to_user((uint8_t __user *)args->skeydata_addr, keys, 115230ee2a98SJason J. Herne sizeof(uint8_t) * args->count); 115330ee2a98SJason J. Herne if (r) 115430ee2a98SJason J. Herne r = -EFAULT; 1155d3ed1ceeSMartin Schwidefsky } 1156d3ed1ceeSMartin Schwidefsky 115730ee2a98SJason J. Herne kvfree(keys); 115830ee2a98SJason J. Herne return r; 115930ee2a98SJason J. Herne } 116030ee2a98SJason J. Herne 116130ee2a98SJason J. Herne static long kvm_s390_set_skeys(struct kvm *kvm, struct kvm_s390_skeys *args) 116230ee2a98SJason J. Herne { 116330ee2a98SJason J. Herne uint8_t *keys; 116430ee2a98SJason J. Herne uint64_t hva; 116530ee2a98SJason J. Herne int i, r = 0; 116630ee2a98SJason J. Herne 116730ee2a98SJason J. Herne if (args->flags != 0) 116830ee2a98SJason J. Herne return -EINVAL; 116930ee2a98SJason J. Herne 117030ee2a98SJason J. Herne /* Enforce sane limit on memory allocation */ 117130ee2a98SJason J. Herne if (args->count < 1 || args->count > KVM_S390_SKEYS_MAX) 117230ee2a98SJason J. Herne return -EINVAL; 117330ee2a98SJason J. Herne 117430ee2a98SJason J. Herne keys = kmalloc_array(args->count, sizeof(uint8_t), 117530ee2a98SJason J. Herne GFP_KERNEL | __GFP_NOWARN); 117630ee2a98SJason J. Herne if (!keys) 117730ee2a98SJason J. Herne keys = vmalloc(sizeof(uint8_t) * args->count); 117830ee2a98SJason J. Herne if (!keys) 117930ee2a98SJason J. Herne return -ENOMEM; 118030ee2a98SJason J. Herne 118130ee2a98SJason J. Herne r = copy_from_user(keys, (uint8_t __user *)args->skeydata_addr, 118230ee2a98SJason J. Herne sizeof(uint8_t) * args->count); 118330ee2a98SJason J. Herne if (r) { 118430ee2a98SJason J. Herne r = -EFAULT; 118530ee2a98SJason J. Herne goto out; 118630ee2a98SJason J. Herne } 118730ee2a98SJason J. Herne 118830ee2a98SJason J. Herne /* Enable storage key handling for the guest */ 118914d4a425SDominik Dingel r = s390_enable_skey(); 119014d4a425SDominik Dingel if (r) 119114d4a425SDominik Dingel goto out; 119230ee2a98SJason J. Herne 1193d3ed1ceeSMartin Schwidefsky down_read(¤t->mm->mmap_sem); 119430ee2a98SJason J. Herne for (i = 0; i < args->count; i++) { 119530ee2a98SJason J. Herne hva = gfn_to_hva(kvm, args->start_gfn + i); 119630ee2a98SJason J. Herne if (kvm_is_error_hva(hva)) { 119730ee2a98SJason J. Herne r = -EFAULT; 1198d3ed1ceeSMartin Schwidefsky break; 119930ee2a98SJason J. Herne } 120030ee2a98SJason J. Herne 120130ee2a98SJason J. Herne /* Lowest order bit is reserved */ 120230ee2a98SJason J. Herne if (keys[i] & 0x01) { 120330ee2a98SJason J. Herne r = -EINVAL; 1204d3ed1ceeSMartin Schwidefsky break; 120530ee2a98SJason J. Herne } 120630ee2a98SJason J. Herne 1207fe69eabfSDavid Hildenbrand r = set_guest_storage_key(current->mm, hva, keys[i], 0); 120830ee2a98SJason J. Herne if (r) 1209d3ed1ceeSMartin Schwidefsky break; 121030ee2a98SJason J. Herne } 1211d3ed1ceeSMartin Schwidefsky up_read(¤t->mm->mmap_sem); 121230ee2a98SJason J. Herne out: 121330ee2a98SJason J. Herne kvfree(keys); 121430ee2a98SJason J. Herne return r; 121530ee2a98SJason J. Herne } 121630ee2a98SJason J. Herne 1217b0c632dbSHeiko Carstens long kvm_arch_vm_ioctl(struct file *filp, 1218b0c632dbSHeiko Carstens unsigned int ioctl, unsigned long arg) 1219b0c632dbSHeiko Carstens { 1220b0c632dbSHeiko Carstens struct kvm *kvm = filp->private_data; 1221b0c632dbSHeiko Carstens void __user *argp = (void __user *)arg; 1222f2061656SDominik Dingel struct kvm_device_attr attr; 1223b0c632dbSHeiko Carstens int r; 1224b0c632dbSHeiko Carstens 1225b0c632dbSHeiko Carstens switch (ioctl) { 1226ba5c1e9bSCarsten Otte case KVM_S390_INTERRUPT: { 1227ba5c1e9bSCarsten Otte struct kvm_s390_interrupt s390int; 1228ba5c1e9bSCarsten Otte 1229ba5c1e9bSCarsten Otte r = -EFAULT; 1230ba5c1e9bSCarsten Otte if (copy_from_user(&s390int, argp, sizeof(s390int))) 1231ba5c1e9bSCarsten Otte break; 1232ba5c1e9bSCarsten Otte r = kvm_s390_inject_vm(kvm, &s390int); 1233ba5c1e9bSCarsten Otte break; 1234ba5c1e9bSCarsten Otte } 1235d938dc55SCornelia Huck case KVM_ENABLE_CAP: { 1236d938dc55SCornelia Huck struct kvm_enable_cap cap; 1237d938dc55SCornelia Huck r = -EFAULT; 1238d938dc55SCornelia Huck if (copy_from_user(&cap, argp, sizeof(cap))) 1239d938dc55SCornelia Huck break; 1240d938dc55SCornelia Huck r = kvm_vm_ioctl_enable_cap(kvm, &cap); 1241d938dc55SCornelia Huck break; 1242d938dc55SCornelia Huck } 124384223598SCornelia Huck case KVM_CREATE_IRQCHIP: { 124484223598SCornelia Huck struct kvm_irq_routing_entry routing; 124584223598SCornelia Huck 124684223598SCornelia Huck r = -EINVAL; 124784223598SCornelia Huck if (kvm->arch.use_irqchip) { 124884223598SCornelia Huck /* Set up dummy routing. */ 124984223598SCornelia Huck memset(&routing, 0, sizeof(routing)); 1250152b2839SNicholas Krause r = kvm_set_irq_routing(kvm, &routing, 0, 0); 125184223598SCornelia Huck } 125284223598SCornelia Huck break; 125384223598SCornelia Huck } 1254f2061656SDominik Dingel case KVM_SET_DEVICE_ATTR: { 1255f2061656SDominik Dingel r = -EFAULT; 1256f2061656SDominik Dingel if (copy_from_user(&attr, (void __user *)arg, sizeof(attr))) 1257f2061656SDominik Dingel break; 1258f2061656SDominik Dingel r = kvm_s390_vm_set_attr(kvm, &attr); 1259f2061656SDominik Dingel break; 1260f2061656SDominik Dingel } 1261f2061656SDominik Dingel case KVM_GET_DEVICE_ATTR: { 1262f2061656SDominik Dingel r = -EFAULT; 1263f2061656SDominik Dingel if (copy_from_user(&attr, (void __user *)arg, sizeof(attr))) 1264f2061656SDominik Dingel break; 1265f2061656SDominik Dingel r = kvm_s390_vm_get_attr(kvm, &attr); 1266f2061656SDominik Dingel break; 1267f2061656SDominik Dingel } 1268f2061656SDominik Dingel case KVM_HAS_DEVICE_ATTR: { 1269f2061656SDominik Dingel r = -EFAULT; 1270f2061656SDominik Dingel if (copy_from_user(&attr, (void __user *)arg, sizeof(attr))) 1271f2061656SDominik Dingel break; 1272f2061656SDominik Dingel r = kvm_s390_vm_has_attr(kvm, &attr); 1273f2061656SDominik Dingel break; 1274f2061656SDominik Dingel } 127530ee2a98SJason J. Herne case KVM_S390_GET_SKEYS: { 127630ee2a98SJason J. Herne struct kvm_s390_skeys args; 127730ee2a98SJason J. Herne 127830ee2a98SJason J. Herne r = -EFAULT; 127930ee2a98SJason J. Herne if (copy_from_user(&args, argp, 128030ee2a98SJason J. Herne sizeof(struct kvm_s390_skeys))) 128130ee2a98SJason J. Herne break; 128230ee2a98SJason J. Herne r = kvm_s390_get_skeys(kvm, &args); 128330ee2a98SJason J. Herne break; 128430ee2a98SJason J. Herne } 128530ee2a98SJason J. Herne case KVM_S390_SET_SKEYS: { 128630ee2a98SJason J. Herne struct kvm_s390_skeys args; 128730ee2a98SJason J. Herne 128830ee2a98SJason J. Herne r = -EFAULT; 128930ee2a98SJason J. Herne if (copy_from_user(&args, argp, 129030ee2a98SJason J. Herne sizeof(struct kvm_s390_skeys))) 129130ee2a98SJason J. Herne break; 129230ee2a98SJason J. Herne r = kvm_s390_set_skeys(kvm, &args); 129330ee2a98SJason J. Herne break; 129430ee2a98SJason J. Herne } 1295b0c632dbSHeiko Carstens default: 1296367e1319SAvi Kivity r = -ENOTTY; 1297b0c632dbSHeiko Carstens } 1298b0c632dbSHeiko Carstens 1299b0c632dbSHeiko Carstens return r; 1300b0c632dbSHeiko Carstens } 1301b0c632dbSHeiko Carstens 130245c9b47cSTony Krowiak static int kvm_s390_query_ap_config(u8 *config) 130345c9b47cSTony Krowiak { 130445c9b47cSTony Krowiak u32 fcn_code = 0x04000000UL; 130586044c8cSChristian Borntraeger u32 cc = 0; 130645c9b47cSTony Krowiak 130786044c8cSChristian Borntraeger memset(config, 0, 128); 130845c9b47cSTony Krowiak asm volatile( 130945c9b47cSTony Krowiak "lgr 0,%1\n" 131045c9b47cSTony Krowiak "lgr 2,%2\n" 131145c9b47cSTony Krowiak ".long 0xb2af0000\n" /* PQAP(QCI) */ 131286044c8cSChristian Borntraeger "0: ipm %0\n" 131345c9b47cSTony Krowiak "srl %0,28\n" 131486044c8cSChristian Borntraeger "1:\n" 131586044c8cSChristian Borntraeger EX_TABLE(0b, 1b) 131686044c8cSChristian Borntraeger : "+r" (cc) 131745c9b47cSTony Krowiak : "r" (fcn_code), "r" (config) 131845c9b47cSTony Krowiak : "cc", "0", "2", "memory" 131945c9b47cSTony Krowiak ); 132045c9b47cSTony Krowiak 132145c9b47cSTony Krowiak return cc; 132245c9b47cSTony Krowiak } 132345c9b47cSTony Krowiak 132445c9b47cSTony Krowiak static int kvm_s390_apxa_installed(void) 132545c9b47cSTony Krowiak { 132645c9b47cSTony Krowiak u8 config[128]; 132745c9b47cSTony Krowiak int cc; 132845c9b47cSTony Krowiak 1329a6aacc3fSHeiko Carstens if (test_facility(12)) { 133045c9b47cSTony Krowiak cc = kvm_s390_query_ap_config(config); 133145c9b47cSTony Krowiak 133245c9b47cSTony Krowiak if (cc) 133345c9b47cSTony Krowiak pr_err("PQAP(QCI) failed with cc=%d", cc); 133445c9b47cSTony Krowiak else 133545c9b47cSTony Krowiak return config[0] & 0x40; 133645c9b47cSTony Krowiak } 133745c9b47cSTony Krowiak 133845c9b47cSTony Krowiak return 0; 133945c9b47cSTony Krowiak } 134045c9b47cSTony Krowiak 134145c9b47cSTony Krowiak static void kvm_s390_set_crycb_format(struct kvm *kvm) 134245c9b47cSTony Krowiak { 134345c9b47cSTony Krowiak kvm->arch.crypto.crycbd = (__u32)(unsigned long) kvm->arch.crypto.crycb; 134445c9b47cSTony Krowiak 134545c9b47cSTony Krowiak if (kvm_s390_apxa_installed()) 134645c9b47cSTony Krowiak kvm->arch.crypto.crycbd |= CRYCB_FORMAT2; 134745c9b47cSTony Krowiak else 134845c9b47cSTony Krowiak kvm->arch.crypto.crycbd |= CRYCB_FORMAT1; 134945c9b47cSTony Krowiak } 135045c9b47cSTony Krowiak 13519bb0ec09SDavid Hildenbrand static u64 kvm_s390_get_initial_cpuid(void) 13529d8d5786SMichael Mueller { 13539bb0ec09SDavid Hildenbrand struct cpuid cpuid; 13549bb0ec09SDavid Hildenbrand 13559bb0ec09SDavid Hildenbrand get_cpu_id(&cpuid); 13569bb0ec09SDavid Hildenbrand cpuid.version = 0xff; 13579bb0ec09SDavid Hildenbrand return *((u64 *) &cpuid); 13589d8d5786SMichael Mueller } 13599d8d5786SMichael Mueller 1360c54f0d6aSDavid Hildenbrand static void kvm_s390_crypto_init(struct kvm *kvm) 13615102ee87STony Krowiak { 13629d8d5786SMichael Mueller if (!test_kvm_facility(kvm, 76)) 1363c54f0d6aSDavid Hildenbrand return; 13645102ee87STony Krowiak 1365c54f0d6aSDavid Hildenbrand kvm->arch.crypto.crycb = &kvm->arch.sie_page2->crycb; 136645c9b47cSTony Krowiak kvm_s390_set_crycb_format(kvm); 13675102ee87STony Krowiak 1368ed6f76b4STony Krowiak /* Enable AES/DEA protected key functions by default */ 1369ed6f76b4STony Krowiak kvm->arch.crypto.aes_kw = 1; 1370ed6f76b4STony Krowiak kvm->arch.crypto.dea_kw = 1; 1371ed6f76b4STony Krowiak get_random_bytes(kvm->arch.crypto.crycb->aes_wrapping_key_mask, 1372ed6f76b4STony Krowiak sizeof(kvm->arch.crypto.crycb->aes_wrapping_key_mask)); 1373ed6f76b4STony Krowiak get_random_bytes(kvm->arch.crypto.crycb->dea_wrapping_key_mask, 1374ed6f76b4STony Krowiak sizeof(kvm->arch.crypto.crycb->dea_wrapping_key_mask)); 13755102ee87STony Krowiak } 13765102ee87STony Krowiak 13777d43bafcSEugene (jno) Dvurechenski static void sca_dispose(struct kvm *kvm) 13787d43bafcSEugene (jno) Dvurechenski { 13797d43bafcSEugene (jno) Dvurechenski if (kvm->arch.use_esca) 13805e044315SEugene (jno) Dvurechenski free_pages_exact(kvm->arch.sca, sizeof(struct esca_block)); 13817d43bafcSEugene (jno) Dvurechenski else 13827d43bafcSEugene (jno) Dvurechenski free_page((unsigned long)(kvm->arch.sca)); 13837d43bafcSEugene (jno) Dvurechenski kvm->arch.sca = NULL; 13847d43bafcSEugene (jno) Dvurechenski } 13857d43bafcSEugene (jno) Dvurechenski 1386e08b9637SCarsten Otte int kvm_arch_init_vm(struct kvm *kvm, unsigned long type) 1387b0c632dbSHeiko Carstens { 138876a6dd72SDavid Hildenbrand gfp_t alloc_flags = GFP_KERNEL; 13899d8d5786SMichael Mueller int i, rc; 1390b0c632dbSHeiko Carstens char debug_name[16]; 1391f6c137ffSChristian Borntraeger static unsigned long sca_offset; 1392b0c632dbSHeiko Carstens 1393e08b9637SCarsten Otte rc = -EINVAL; 1394e08b9637SCarsten Otte #ifdef CONFIG_KVM_S390_UCONTROL 1395e08b9637SCarsten Otte if (type & ~KVM_VM_S390_UCONTROL) 1396e08b9637SCarsten Otte goto out_err; 1397e08b9637SCarsten Otte if ((type & KVM_VM_S390_UCONTROL) && (!capable(CAP_SYS_ADMIN))) 1398e08b9637SCarsten Otte goto out_err; 1399e08b9637SCarsten Otte #else 1400e08b9637SCarsten Otte if (type) 1401e08b9637SCarsten Otte goto out_err; 1402e08b9637SCarsten Otte #endif 1403e08b9637SCarsten Otte 1404b0c632dbSHeiko Carstens rc = s390_enable_sie(); 1405b0c632dbSHeiko Carstens if (rc) 1406d89f5effSJan Kiszka goto out_err; 1407b0c632dbSHeiko Carstens 1408b290411aSCarsten Otte rc = -ENOMEM; 1409b290411aSCarsten Otte 14107d0a5e62SJanosch Frank ratelimit_state_init(&kvm->arch.sthyi_limit, 5 * HZ, 500); 14117d0a5e62SJanosch Frank 14127d43bafcSEugene (jno) Dvurechenski kvm->arch.use_esca = 0; /* start with basic SCA */ 141376a6dd72SDavid Hildenbrand if (!sclp.has_64bscao) 141476a6dd72SDavid Hildenbrand alloc_flags |= GFP_DMA; 14155e044315SEugene (jno) Dvurechenski rwlock_init(&kvm->arch.sca_lock); 141676a6dd72SDavid Hildenbrand kvm->arch.sca = (struct bsca_block *) get_zeroed_page(alloc_flags); 1417b0c632dbSHeiko Carstens if (!kvm->arch.sca) 1418d89f5effSJan Kiszka goto out_err; 1419f6c137ffSChristian Borntraeger spin_lock(&kvm_lock); 1420c5c2c393SDavid Hildenbrand sca_offset += 16; 1421bc784cceSEugene (jno) Dvurechenski if (sca_offset + sizeof(struct bsca_block) > PAGE_SIZE) 1422c5c2c393SDavid Hildenbrand sca_offset = 0; 1423bc784cceSEugene (jno) Dvurechenski kvm->arch.sca = (struct bsca_block *) 1424bc784cceSEugene (jno) Dvurechenski ((char *) kvm->arch.sca + sca_offset); 1425f6c137ffSChristian Borntraeger spin_unlock(&kvm_lock); 1426b0c632dbSHeiko Carstens 1427b0c632dbSHeiko Carstens sprintf(debug_name, "kvm-%u", current->pid); 1428b0c632dbSHeiko Carstens 14291cb9cf72SChristian Borntraeger kvm->arch.dbf = debug_register(debug_name, 32, 1, 7 * sizeof(long)); 1430b0c632dbSHeiko Carstens if (!kvm->arch.dbf) 143140f5b735SDominik Dingel goto out_err; 1432b0c632dbSHeiko Carstens 1433c54f0d6aSDavid Hildenbrand kvm->arch.sie_page2 = 1434c54f0d6aSDavid Hildenbrand (struct sie_page2 *) get_zeroed_page(GFP_KERNEL | GFP_DMA); 1435c54f0d6aSDavid Hildenbrand if (!kvm->arch.sie_page2) 143640f5b735SDominik Dingel goto out_err; 14379d8d5786SMichael Mueller 1438fb5bf93fSMichael Mueller /* Populate the facility mask initially. */ 1439c54f0d6aSDavid Hildenbrand memcpy(kvm->arch.model.fac_mask, S390_lowcore.stfle_fac_list, 144094422ee8SMichael Mueller S390_ARCH_FAC_LIST_SIZE_BYTE); 14419d8d5786SMichael Mueller for (i = 0; i < S390_ARCH_FAC_LIST_SIZE_U64; i++) { 14429d8d5786SMichael Mueller if (i < kvm_s390_fac_list_mask_size()) 1443c54f0d6aSDavid Hildenbrand kvm->arch.model.fac_mask[i] &= kvm_s390_fac_list_mask[i]; 14449d8d5786SMichael Mueller else 1445c54f0d6aSDavid Hildenbrand kvm->arch.model.fac_mask[i] = 0UL; 14469d8d5786SMichael Mueller } 14479d8d5786SMichael Mueller 1448981467c9SMichael Mueller /* Populate the facility list initially. */ 1449c54f0d6aSDavid Hildenbrand kvm->arch.model.fac_list = kvm->arch.sie_page2->fac_list; 1450c54f0d6aSDavid Hildenbrand memcpy(kvm->arch.model.fac_list, kvm->arch.model.fac_mask, 1451981467c9SMichael Mueller S390_ARCH_FAC_LIST_SIZE_BYTE); 1452981467c9SMichael Mueller 145395ca2cb5SJanosch Frank set_kvm_facility(kvm->arch.model.fac_mask, 74); 145495ca2cb5SJanosch Frank set_kvm_facility(kvm->arch.model.fac_list, 74); 145595ca2cb5SJanosch Frank 14569bb0ec09SDavid Hildenbrand kvm->arch.model.cpuid = kvm_s390_get_initial_cpuid(); 145737c5f6c8SDavid Hildenbrand kvm->arch.model.ibc = sclp.ibc & 0x0fff; 14589d8d5786SMichael Mueller 1459c54f0d6aSDavid Hildenbrand kvm_s390_crypto_init(kvm); 14605102ee87STony Krowiak 1461ba5c1e9bSCarsten Otte spin_lock_init(&kvm->arch.float_int.lock); 14626d3da241SJens Freimann for (i = 0; i < FIRQ_LIST_COUNT; i++) 14636d3da241SJens Freimann INIT_LIST_HEAD(&kvm->arch.float_int.lists[i]); 14648a242234SHeiko Carstens init_waitqueue_head(&kvm->arch.ipte_wq); 1465a6b7e459SThomas Huth mutex_init(&kvm->arch.ipte_mutex); 1466ba5c1e9bSCarsten Otte 1467b0c632dbSHeiko Carstens debug_register_view(kvm->arch.dbf, &debug_sprintf_view); 146878f26131SChristian Borntraeger VM_EVENT(kvm, 3, "vm created with type %lu", type); 1469b0c632dbSHeiko Carstens 1470e08b9637SCarsten Otte if (type & KVM_VM_S390_UCONTROL) { 1471e08b9637SCarsten Otte kvm->arch.gmap = NULL; 1472a3a92c31SDominik Dingel kvm->arch.mem_limit = KVM_S390_NO_MEM_LIMIT; 1473e08b9637SCarsten Otte } else { 147432e6b236SGuenther Hutzl if (sclp.hamax == U64_MAX) 1475a3a92c31SDominik Dingel kvm->arch.mem_limit = TASK_MAX_SIZE; 147632e6b236SGuenther Hutzl else 147732e6b236SGuenther Hutzl kvm->arch.mem_limit = min_t(unsigned long, TASK_MAX_SIZE, 147832e6b236SGuenther Hutzl sclp.hamax + 1); 14796ea427bbSMartin Schwidefsky kvm->arch.gmap = gmap_create(current->mm, kvm->arch.mem_limit - 1); 1480598841caSCarsten Otte if (!kvm->arch.gmap) 148140f5b735SDominik Dingel goto out_err; 14822c70fe44SChristian Borntraeger kvm->arch.gmap->private = kvm; 148324eb3a82SDominik Dingel kvm->arch.gmap->pfault_enabled = 0; 1484e08b9637SCarsten Otte } 1485fa6b7fe9SCornelia Huck 1486fa6b7fe9SCornelia Huck kvm->arch.css_support = 0; 148784223598SCornelia Huck kvm->arch.use_irqchip = 0; 148872f25020SJason J. Herne kvm->arch.epoch = 0; 1489fa6b7fe9SCornelia Huck 14908ad35755SDavid Hildenbrand spin_lock_init(&kvm->arch.start_stop_lock); 1491a3508fbeSDavid Hildenbrand kvm_s390_vsie_init(kvm); 14928335713aSChristian Borntraeger KVM_EVENT(3, "vm 0x%pK created by pid %u", kvm, current->pid); 14938ad35755SDavid Hildenbrand 1494d89f5effSJan Kiszka return 0; 1495d89f5effSJan Kiszka out_err: 1496c54f0d6aSDavid Hildenbrand free_page((unsigned long)kvm->arch.sie_page2); 149740f5b735SDominik Dingel debug_unregister(kvm->arch.dbf); 14987d43bafcSEugene (jno) Dvurechenski sca_dispose(kvm); 149978f26131SChristian Borntraeger KVM_EVENT(3, "creation of vm failed: %d", rc); 1500d89f5effSJan Kiszka return rc; 1501b0c632dbSHeiko Carstens } 1502b0c632dbSHeiko Carstens 1503235539b4SLuiz Capitulino bool kvm_arch_has_vcpu_debugfs(void) 1504235539b4SLuiz Capitulino { 1505235539b4SLuiz Capitulino return false; 1506235539b4SLuiz Capitulino } 1507235539b4SLuiz Capitulino 1508235539b4SLuiz Capitulino int kvm_arch_create_vcpu_debugfs(struct kvm_vcpu *vcpu) 1509235539b4SLuiz Capitulino { 1510235539b4SLuiz Capitulino return 0; 1511235539b4SLuiz Capitulino } 1512235539b4SLuiz Capitulino 1513d329c035SChristian Borntraeger void kvm_arch_vcpu_destroy(struct kvm_vcpu *vcpu) 1514d329c035SChristian Borntraeger { 1515d329c035SChristian Borntraeger VCPU_EVENT(vcpu, 3, "%s", "free cpu"); 1516ade38c31SCornelia Huck trace_kvm_s390_destroy_vcpu(vcpu->vcpu_id); 151767335e63SChristian Borntraeger kvm_s390_clear_local_irqs(vcpu); 15183c038e6bSDominik Dingel kvm_clear_async_pf_completion_queue(vcpu); 1519bc784cceSEugene (jno) Dvurechenski if (!kvm_is_ucontrol(vcpu->kvm)) 1520a6e2f683SEugene (jno) Dvurechenski sca_del_vcpu(vcpu); 152127e0393fSCarsten Otte 152227e0393fSCarsten Otte if (kvm_is_ucontrol(vcpu->kvm)) 15236ea427bbSMartin Schwidefsky gmap_remove(vcpu->arch.gmap); 152427e0393fSCarsten Otte 1525e6db1d61SDominik Dingel if (vcpu->kvm->arch.use_cmma) 1526b31605c1SDominik Dingel kvm_s390_vcpu_unsetup_cmma(vcpu); 1527d329c035SChristian Borntraeger free_page((unsigned long)(vcpu->arch.sie_block)); 1528b31288faSKonstantin Weitz 15296692cef3SChristian Borntraeger kvm_vcpu_uninit(vcpu); 1530b110feafSMichael Mueller kmem_cache_free(kvm_vcpu_cache, vcpu); 1531d329c035SChristian Borntraeger } 1532d329c035SChristian Borntraeger 1533d329c035SChristian Borntraeger static void kvm_free_vcpus(struct kvm *kvm) 1534d329c035SChristian Borntraeger { 1535d329c035SChristian Borntraeger unsigned int i; 1536988a2caeSGleb Natapov struct kvm_vcpu *vcpu; 1537d329c035SChristian Borntraeger 1538988a2caeSGleb Natapov kvm_for_each_vcpu(i, vcpu, kvm) 1539988a2caeSGleb Natapov kvm_arch_vcpu_destroy(vcpu); 1540988a2caeSGleb Natapov 1541988a2caeSGleb Natapov mutex_lock(&kvm->lock); 1542988a2caeSGleb Natapov for (i = 0; i < atomic_read(&kvm->online_vcpus); i++) 1543d329c035SChristian Borntraeger kvm->vcpus[i] = NULL; 1544988a2caeSGleb Natapov 1545988a2caeSGleb Natapov atomic_set(&kvm->online_vcpus, 0); 1546988a2caeSGleb Natapov mutex_unlock(&kvm->lock); 1547d329c035SChristian Borntraeger } 1548d329c035SChristian Borntraeger 1549b0c632dbSHeiko Carstens void kvm_arch_destroy_vm(struct kvm *kvm) 1550b0c632dbSHeiko Carstens { 1551d329c035SChristian Borntraeger kvm_free_vcpus(kvm); 15527d43bafcSEugene (jno) Dvurechenski sca_dispose(kvm); 1553d329c035SChristian Borntraeger debug_unregister(kvm->arch.dbf); 1554c54f0d6aSDavid Hildenbrand free_page((unsigned long)kvm->arch.sie_page2); 155527e0393fSCarsten Otte if (!kvm_is_ucontrol(kvm)) 15566ea427bbSMartin Schwidefsky gmap_remove(kvm->arch.gmap); 1557841b91c5SCornelia Huck kvm_s390_destroy_adapters(kvm); 155867335e63SChristian Borntraeger kvm_s390_clear_float_irqs(kvm); 1559a3508fbeSDavid Hildenbrand kvm_s390_vsie_destroy(kvm); 15608335713aSChristian Borntraeger KVM_EVENT(3, "vm 0x%pK destroyed", kvm); 1561b0c632dbSHeiko Carstens } 1562b0c632dbSHeiko Carstens 1563b0c632dbSHeiko Carstens /* Section: vcpu related */ 1564dafd032aSDominik Dingel static int __kvm_ucontrol_vcpu_init(struct kvm_vcpu *vcpu) 1565b0c632dbSHeiko Carstens { 15666ea427bbSMartin Schwidefsky vcpu->arch.gmap = gmap_create(current->mm, -1UL); 156727e0393fSCarsten Otte if (!vcpu->arch.gmap) 156827e0393fSCarsten Otte return -ENOMEM; 15692c70fe44SChristian Borntraeger vcpu->arch.gmap->private = vcpu->kvm; 1570dafd032aSDominik Dingel 157127e0393fSCarsten Otte return 0; 157227e0393fSCarsten Otte } 157327e0393fSCarsten Otte 1574a6e2f683SEugene (jno) Dvurechenski static void sca_del_vcpu(struct kvm_vcpu *vcpu) 1575a6e2f683SEugene (jno) Dvurechenski { 1576a6940674SDavid Hildenbrand if (!kvm_s390_use_sca_entries()) 1577a6940674SDavid Hildenbrand return; 15785e044315SEugene (jno) Dvurechenski read_lock(&vcpu->kvm->arch.sca_lock); 15797d43bafcSEugene (jno) Dvurechenski if (vcpu->kvm->arch.use_esca) { 15807d43bafcSEugene (jno) Dvurechenski struct esca_block *sca = vcpu->kvm->arch.sca; 15817d43bafcSEugene (jno) Dvurechenski 15827d43bafcSEugene (jno) Dvurechenski clear_bit_inv(vcpu->vcpu_id, (unsigned long *) sca->mcn); 15837d43bafcSEugene (jno) Dvurechenski sca->cpu[vcpu->vcpu_id].sda = 0; 15847d43bafcSEugene (jno) Dvurechenski } else { 1585bc784cceSEugene (jno) Dvurechenski struct bsca_block *sca = vcpu->kvm->arch.sca; 1586a6e2f683SEugene (jno) Dvurechenski 1587a6e2f683SEugene (jno) Dvurechenski clear_bit_inv(vcpu->vcpu_id, (unsigned long *) &sca->mcn); 1588a6e2f683SEugene (jno) Dvurechenski sca->cpu[vcpu->vcpu_id].sda = 0; 1589a6e2f683SEugene (jno) Dvurechenski } 15905e044315SEugene (jno) Dvurechenski read_unlock(&vcpu->kvm->arch.sca_lock); 15917d43bafcSEugene (jno) Dvurechenski } 1592a6e2f683SEugene (jno) Dvurechenski 1593eaa78f34SDavid Hildenbrand static void sca_add_vcpu(struct kvm_vcpu *vcpu) 1594a6e2f683SEugene (jno) Dvurechenski { 1595a6940674SDavid Hildenbrand if (!kvm_s390_use_sca_entries()) { 1596a6940674SDavid Hildenbrand struct bsca_block *sca = vcpu->kvm->arch.sca; 1597a6940674SDavid Hildenbrand 1598a6940674SDavid Hildenbrand /* we still need the basic sca for the ipte control */ 1599a6940674SDavid Hildenbrand vcpu->arch.sie_block->scaoh = (__u32)(((__u64)sca) >> 32); 1600a6940674SDavid Hildenbrand vcpu->arch.sie_block->scaol = (__u32)(__u64)sca; 1601a6940674SDavid Hildenbrand } 1602eaa78f34SDavid Hildenbrand read_lock(&vcpu->kvm->arch.sca_lock); 1603eaa78f34SDavid Hildenbrand if (vcpu->kvm->arch.use_esca) { 1604eaa78f34SDavid Hildenbrand struct esca_block *sca = vcpu->kvm->arch.sca; 16057d43bafcSEugene (jno) Dvurechenski 1606eaa78f34SDavid Hildenbrand sca->cpu[vcpu->vcpu_id].sda = (__u64) vcpu->arch.sie_block; 16077d43bafcSEugene (jno) Dvurechenski vcpu->arch.sie_block->scaoh = (__u32)(((__u64)sca) >> 32); 16087d43bafcSEugene (jno) Dvurechenski vcpu->arch.sie_block->scaol = (__u32)(__u64)sca & ~0x3fU; 160925508824SDavid Hildenbrand vcpu->arch.sie_block->ecb2 |= 0x04U; 1610eaa78f34SDavid Hildenbrand set_bit_inv(vcpu->vcpu_id, (unsigned long *) sca->mcn); 16117d43bafcSEugene (jno) Dvurechenski } else { 1612eaa78f34SDavid Hildenbrand struct bsca_block *sca = vcpu->kvm->arch.sca; 1613a6e2f683SEugene (jno) Dvurechenski 1614eaa78f34SDavid Hildenbrand sca->cpu[vcpu->vcpu_id].sda = (__u64) vcpu->arch.sie_block; 1615a6e2f683SEugene (jno) Dvurechenski vcpu->arch.sie_block->scaoh = (__u32)(((__u64)sca) >> 32); 1616a6e2f683SEugene (jno) Dvurechenski vcpu->arch.sie_block->scaol = (__u32)(__u64)sca; 1617eaa78f34SDavid Hildenbrand set_bit_inv(vcpu->vcpu_id, (unsigned long *) &sca->mcn); 1618a6e2f683SEugene (jno) Dvurechenski } 1619eaa78f34SDavid Hildenbrand read_unlock(&vcpu->kvm->arch.sca_lock); 16205e044315SEugene (jno) Dvurechenski } 16215e044315SEugene (jno) Dvurechenski 16225e044315SEugene (jno) Dvurechenski /* Basic SCA to Extended SCA data copy routines */ 16235e044315SEugene (jno) Dvurechenski static inline void sca_copy_entry(struct esca_entry *d, struct bsca_entry *s) 16245e044315SEugene (jno) Dvurechenski { 16255e044315SEugene (jno) Dvurechenski d->sda = s->sda; 16265e044315SEugene (jno) Dvurechenski d->sigp_ctrl.c = s->sigp_ctrl.c; 16275e044315SEugene (jno) Dvurechenski d->sigp_ctrl.scn = s->sigp_ctrl.scn; 16285e044315SEugene (jno) Dvurechenski } 16295e044315SEugene (jno) Dvurechenski 16305e044315SEugene (jno) Dvurechenski static void sca_copy_b_to_e(struct esca_block *d, struct bsca_block *s) 16315e044315SEugene (jno) Dvurechenski { 16325e044315SEugene (jno) Dvurechenski int i; 16335e044315SEugene (jno) Dvurechenski 16345e044315SEugene (jno) Dvurechenski d->ipte_control = s->ipte_control; 16355e044315SEugene (jno) Dvurechenski d->mcn[0] = s->mcn; 16365e044315SEugene (jno) Dvurechenski for (i = 0; i < KVM_S390_BSCA_CPU_SLOTS; i++) 16375e044315SEugene (jno) Dvurechenski sca_copy_entry(&d->cpu[i], &s->cpu[i]); 16385e044315SEugene (jno) Dvurechenski } 16395e044315SEugene (jno) Dvurechenski 16405e044315SEugene (jno) Dvurechenski static int sca_switch_to_extended(struct kvm *kvm) 16415e044315SEugene (jno) Dvurechenski { 16425e044315SEugene (jno) Dvurechenski struct bsca_block *old_sca = kvm->arch.sca; 16435e044315SEugene (jno) Dvurechenski struct esca_block *new_sca; 16445e044315SEugene (jno) Dvurechenski struct kvm_vcpu *vcpu; 16455e044315SEugene (jno) Dvurechenski unsigned int vcpu_idx; 16465e044315SEugene (jno) Dvurechenski u32 scaol, scaoh; 16475e044315SEugene (jno) Dvurechenski 16485e044315SEugene (jno) Dvurechenski new_sca = alloc_pages_exact(sizeof(*new_sca), GFP_KERNEL|__GFP_ZERO); 16495e044315SEugene (jno) Dvurechenski if (!new_sca) 16505e044315SEugene (jno) Dvurechenski return -ENOMEM; 16515e044315SEugene (jno) Dvurechenski 16525e044315SEugene (jno) Dvurechenski scaoh = (u32)((u64)(new_sca) >> 32); 16535e044315SEugene (jno) Dvurechenski scaol = (u32)(u64)(new_sca) & ~0x3fU; 16545e044315SEugene (jno) Dvurechenski 16555e044315SEugene (jno) Dvurechenski kvm_s390_vcpu_block_all(kvm); 16565e044315SEugene (jno) Dvurechenski write_lock(&kvm->arch.sca_lock); 16575e044315SEugene (jno) Dvurechenski 16585e044315SEugene (jno) Dvurechenski sca_copy_b_to_e(new_sca, old_sca); 16595e044315SEugene (jno) Dvurechenski 16605e044315SEugene (jno) Dvurechenski kvm_for_each_vcpu(vcpu_idx, vcpu, kvm) { 16615e044315SEugene (jno) Dvurechenski vcpu->arch.sie_block->scaoh = scaoh; 16625e044315SEugene (jno) Dvurechenski vcpu->arch.sie_block->scaol = scaol; 16635e044315SEugene (jno) Dvurechenski vcpu->arch.sie_block->ecb2 |= 0x04U; 16645e044315SEugene (jno) Dvurechenski } 16655e044315SEugene (jno) Dvurechenski kvm->arch.sca = new_sca; 16665e044315SEugene (jno) Dvurechenski kvm->arch.use_esca = 1; 16675e044315SEugene (jno) Dvurechenski 16685e044315SEugene (jno) Dvurechenski write_unlock(&kvm->arch.sca_lock); 16695e044315SEugene (jno) Dvurechenski kvm_s390_vcpu_unblock_all(kvm); 16705e044315SEugene (jno) Dvurechenski 16715e044315SEugene (jno) Dvurechenski free_page((unsigned long)old_sca); 16725e044315SEugene (jno) Dvurechenski 16738335713aSChristian Borntraeger VM_EVENT(kvm, 2, "Switched to ESCA (0x%pK -> 0x%pK)", 16748335713aSChristian Borntraeger old_sca, kvm->arch.sca); 16755e044315SEugene (jno) Dvurechenski return 0; 16767d43bafcSEugene (jno) Dvurechenski } 1677a6e2f683SEugene (jno) Dvurechenski 1678a6e2f683SEugene (jno) Dvurechenski static int sca_can_add_vcpu(struct kvm *kvm, unsigned int id) 1679a6e2f683SEugene (jno) Dvurechenski { 16805e044315SEugene (jno) Dvurechenski int rc; 16815e044315SEugene (jno) Dvurechenski 1682a6940674SDavid Hildenbrand if (!kvm_s390_use_sca_entries()) { 1683a6940674SDavid Hildenbrand if (id < KVM_MAX_VCPUS) 1684a6940674SDavid Hildenbrand return true; 1685a6940674SDavid Hildenbrand return false; 1686a6940674SDavid Hildenbrand } 16875e044315SEugene (jno) Dvurechenski if (id < KVM_S390_BSCA_CPU_SLOTS) 16885e044315SEugene (jno) Dvurechenski return true; 168976a6dd72SDavid Hildenbrand if (!sclp.has_esca || !sclp.has_64bscao) 16905e044315SEugene (jno) Dvurechenski return false; 16915e044315SEugene (jno) Dvurechenski 16925e044315SEugene (jno) Dvurechenski mutex_lock(&kvm->lock); 16935e044315SEugene (jno) Dvurechenski rc = kvm->arch.use_esca ? 0 : sca_switch_to_extended(kvm); 16945e044315SEugene (jno) Dvurechenski mutex_unlock(&kvm->lock); 16955e044315SEugene (jno) Dvurechenski 16965e044315SEugene (jno) Dvurechenski return rc == 0 && id < KVM_S390_ESCA_CPU_SLOTS; 1697a6e2f683SEugene (jno) Dvurechenski } 1698a6e2f683SEugene (jno) Dvurechenski 1699dafd032aSDominik Dingel int kvm_arch_vcpu_init(struct kvm_vcpu *vcpu) 1700dafd032aSDominik Dingel { 1701dafd032aSDominik Dingel vcpu->arch.pfault_token = KVM_S390_PFAULT_TOKEN_INVALID; 1702dafd032aSDominik Dingel kvm_clear_async_pf_completion_queue(vcpu); 170359674c1aSChristian Borntraeger vcpu->run->kvm_valid_regs = KVM_SYNC_PREFIX | 170459674c1aSChristian Borntraeger KVM_SYNC_GPRS | 17059eed0735SChristian Borntraeger KVM_SYNC_ACRS | 1706b028ee3eSDavid Hildenbrand KVM_SYNC_CRS | 1707b028ee3eSDavid Hildenbrand KVM_SYNC_ARCH0 | 1708b028ee3eSDavid Hildenbrand KVM_SYNC_PFAULT; 170975a4615cSJulius Niedworok kvm_s390_set_prefix(vcpu, 0); 1710c6e5f166SFan Zhang if (test_kvm_facility(vcpu->kvm, 64)) 1711c6e5f166SFan Zhang vcpu->run->kvm_valid_regs |= KVM_SYNC_RICCB; 1712f6aa6dc4SDavid Hildenbrand /* fprs can be synchronized via vrs, even if the guest has no vx. With 1713f6aa6dc4SDavid Hildenbrand * MACHINE_HAS_VX, (load|store)_fpu_regs() will work with vrs format. 1714f6aa6dc4SDavid Hildenbrand */ 1715f6aa6dc4SDavid Hildenbrand if (MACHINE_HAS_VX) 171668c55750SEric Farman vcpu->run->kvm_valid_regs |= KVM_SYNC_VRS; 17176fd8e67dSDavid Hildenbrand else 17186fd8e67dSDavid Hildenbrand vcpu->run->kvm_valid_regs |= KVM_SYNC_FPRS; 1719dafd032aSDominik Dingel 1720dafd032aSDominik Dingel if (kvm_is_ucontrol(vcpu->kvm)) 1721dafd032aSDominik Dingel return __kvm_ucontrol_vcpu_init(vcpu); 1722dafd032aSDominik Dingel 1723b0c632dbSHeiko Carstens return 0; 1724b0c632dbSHeiko Carstens } 1725b0c632dbSHeiko Carstens 1726db0758b2SDavid Hildenbrand /* needs disabled preemption to protect from TOD sync and vcpu_load/put */ 1727db0758b2SDavid Hildenbrand static void __start_cpu_timer_accounting(struct kvm_vcpu *vcpu) 1728db0758b2SDavid Hildenbrand { 1729db0758b2SDavid Hildenbrand WARN_ON_ONCE(vcpu->arch.cputm_start != 0); 17309c23a131SDavid Hildenbrand raw_write_seqcount_begin(&vcpu->arch.cputm_seqcount); 1731db0758b2SDavid Hildenbrand vcpu->arch.cputm_start = get_tod_clock_fast(); 17329c23a131SDavid Hildenbrand raw_write_seqcount_end(&vcpu->arch.cputm_seqcount); 1733db0758b2SDavid Hildenbrand } 1734db0758b2SDavid Hildenbrand 1735db0758b2SDavid Hildenbrand /* needs disabled preemption to protect from TOD sync and vcpu_load/put */ 1736db0758b2SDavid Hildenbrand static void __stop_cpu_timer_accounting(struct kvm_vcpu *vcpu) 1737db0758b2SDavid Hildenbrand { 1738db0758b2SDavid Hildenbrand WARN_ON_ONCE(vcpu->arch.cputm_start == 0); 17399c23a131SDavid Hildenbrand raw_write_seqcount_begin(&vcpu->arch.cputm_seqcount); 1740db0758b2SDavid Hildenbrand vcpu->arch.sie_block->cputm -= get_tod_clock_fast() - vcpu->arch.cputm_start; 1741db0758b2SDavid Hildenbrand vcpu->arch.cputm_start = 0; 17429c23a131SDavid Hildenbrand raw_write_seqcount_end(&vcpu->arch.cputm_seqcount); 1743db0758b2SDavid Hildenbrand } 1744db0758b2SDavid Hildenbrand 1745db0758b2SDavid Hildenbrand /* needs disabled preemption to protect from TOD sync and vcpu_load/put */ 1746db0758b2SDavid Hildenbrand static void __enable_cpu_timer_accounting(struct kvm_vcpu *vcpu) 1747db0758b2SDavid Hildenbrand { 1748db0758b2SDavid Hildenbrand WARN_ON_ONCE(vcpu->arch.cputm_enabled); 1749db0758b2SDavid Hildenbrand vcpu->arch.cputm_enabled = true; 1750db0758b2SDavid Hildenbrand __start_cpu_timer_accounting(vcpu); 1751db0758b2SDavid Hildenbrand } 1752db0758b2SDavid Hildenbrand 1753db0758b2SDavid Hildenbrand /* needs disabled preemption to protect from TOD sync and vcpu_load/put */ 1754db0758b2SDavid Hildenbrand static void __disable_cpu_timer_accounting(struct kvm_vcpu *vcpu) 1755db0758b2SDavid Hildenbrand { 1756db0758b2SDavid Hildenbrand WARN_ON_ONCE(!vcpu->arch.cputm_enabled); 1757db0758b2SDavid Hildenbrand __stop_cpu_timer_accounting(vcpu); 1758db0758b2SDavid Hildenbrand vcpu->arch.cputm_enabled = false; 1759db0758b2SDavid Hildenbrand } 1760db0758b2SDavid Hildenbrand 1761db0758b2SDavid Hildenbrand static void enable_cpu_timer_accounting(struct kvm_vcpu *vcpu) 1762db0758b2SDavid Hildenbrand { 1763db0758b2SDavid Hildenbrand preempt_disable(); /* protect from TOD sync and vcpu_load/put */ 1764db0758b2SDavid Hildenbrand __enable_cpu_timer_accounting(vcpu); 1765db0758b2SDavid Hildenbrand preempt_enable(); 1766db0758b2SDavid Hildenbrand } 1767db0758b2SDavid Hildenbrand 1768db0758b2SDavid Hildenbrand static void disable_cpu_timer_accounting(struct kvm_vcpu *vcpu) 1769db0758b2SDavid Hildenbrand { 1770db0758b2SDavid Hildenbrand preempt_disable(); /* protect from TOD sync and vcpu_load/put */ 1771db0758b2SDavid Hildenbrand __disable_cpu_timer_accounting(vcpu); 1772db0758b2SDavid Hildenbrand preempt_enable(); 1773db0758b2SDavid Hildenbrand } 1774db0758b2SDavid Hildenbrand 17754287f247SDavid Hildenbrand /* set the cpu timer - may only be called from the VCPU thread itself */ 17764287f247SDavid Hildenbrand void kvm_s390_set_cpu_timer(struct kvm_vcpu *vcpu, __u64 cputm) 17774287f247SDavid Hildenbrand { 1778db0758b2SDavid Hildenbrand preempt_disable(); /* protect from TOD sync and vcpu_load/put */ 17799c23a131SDavid Hildenbrand raw_write_seqcount_begin(&vcpu->arch.cputm_seqcount); 1780db0758b2SDavid Hildenbrand if (vcpu->arch.cputm_enabled) 1781db0758b2SDavid Hildenbrand vcpu->arch.cputm_start = get_tod_clock_fast(); 17824287f247SDavid Hildenbrand vcpu->arch.sie_block->cputm = cputm; 17839c23a131SDavid Hildenbrand raw_write_seqcount_end(&vcpu->arch.cputm_seqcount); 1784db0758b2SDavid Hildenbrand preempt_enable(); 17854287f247SDavid Hildenbrand } 17864287f247SDavid Hildenbrand 1787db0758b2SDavid Hildenbrand /* update and get the cpu timer - can also be called from other VCPU threads */ 17884287f247SDavid Hildenbrand __u64 kvm_s390_get_cpu_timer(struct kvm_vcpu *vcpu) 17894287f247SDavid Hildenbrand { 17909c23a131SDavid Hildenbrand unsigned int seq; 1791db0758b2SDavid Hildenbrand __u64 value; 1792db0758b2SDavid Hildenbrand 1793db0758b2SDavid Hildenbrand if (unlikely(!vcpu->arch.cputm_enabled)) 17944287f247SDavid Hildenbrand return vcpu->arch.sie_block->cputm; 1795db0758b2SDavid Hildenbrand 17969c23a131SDavid Hildenbrand preempt_disable(); /* protect from TOD sync and vcpu_load/put */ 17979c23a131SDavid Hildenbrand do { 17989c23a131SDavid Hildenbrand seq = raw_read_seqcount(&vcpu->arch.cputm_seqcount); 17999c23a131SDavid Hildenbrand /* 18009c23a131SDavid Hildenbrand * If the writer would ever execute a read in the critical 18019c23a131SDavid Hildenbrand * section, e.g. in irq context, we have a deadlock. 18029c23a131SDavid Hildenbrand */ 18039c23a131SDavid Hildenbrand WARN_ON_ONCE((seq & 1) && smp_processor_id() == vcpu->cpu); 1804db0758b2SDavid Hildenbrand value = vcpu->arch.sie_block->cputm; 18059c23a131SDavid Hildenbrand /* if cputm_start is 0, accounting is being started/stopped */ 18069c23a131SDavid Hildenbrand if (likely(vcpu->arch.cputm_start)) 1807db0758b2SDavid Hildenbrand value -= get_tod_clock_fast() - vcpu->arch.cputm_start; 18089c23a131SDavid Hildenbrand } while (read_seqcount_retry(&vcpu->arch.cputm_seqcount, seq & ~1)); 18099c23a131SDavid Hildenbrand preempt_enable(); 1810db0758b2SDavid Hildenbrand return value; 18114287f247SDavid Hildenbrand } 18124287f247SDavid Hildenbrand 1813b0c632dbSHeiko Carstens void kvm_arch_vcpu_load(struct kvm_vcpu *vcpu, int cpu) 1814b0c632dbSHeiko Carstens { 18159977e886SHendrik Brueckner /* Save host register state */ 1816d0164ee2SHendrik Brueckner save_fpu_regs(); 18179abc2a08SDavid Hildenbrand vcpu->arch.host_fpregs.fpc = current->thread.fpu.fpc; 18189abc2a08SDavid Hildenbrand vcpu->arch.host_fpregs.regs = current->thread.fpu.regs; 181996b2d7a8SHendrik Brueckner 18206fd8e67dSDavid Hildenbrand if (MACHINE_HAS_VX) 18219abc2a08SDavid Hildenbrand current->thread.fpu.regs = vcpu->run->s.regs.vrs; 18226fd8e67dSDavid Hildenbrand else 18236fd8e67dSDavid Hildenbrand current->thread.fpu.regs = vcpu->run->s.regs.fprs; 18249abc2a08SDavid Hildenbrand current->thread.fpu.fpc = vcpu->run->s.regs.fpc; 18259977e886SHendrik Brueckner if (test_fp_ctl(current->thread.fpu.fpc)) 182696b2d7a8SHendrik Brueckner /* User space provided an invalid FPC, let's clear it */ 18279977e886SHendrik Brueckner current->thread.fpu.fpc = 0; 18289977e886SHendrik Brueckner 182937d9df98SDavid Hildenbrand gmap_enable(vcpu->arch.enabled_gmap); 1830805de8f4SPeter Zijlstra atomic_or(CPUSTAT_RUNNING, &vcpu->arch.sie_block->cpuflags); 18315ebda316SDavid Hildenbrand if (vcpu->arch.cputm_enabled && !is_vcpu_idle(vcpu)) 1832db0758b2SDavid Hildenbrand __start_cpu_timer_accounting(vcpu); 183301a745acSDavid Hildenbrand vcpu->cpu = cpu; 1834b0c632dbSHeiko Carstens } 1835b0c632dbSHeiko Carstens 1836b0c632dbSHeiko Carstens void kvm_arch_vcpu_put(struct kvm_vcpu *vcpu) 1837b0c632dbSHeiko Carstens { 183801a745acSDavid Hildenbrand vcpu->cpu = -1; 18395ebda316SDavid Hildenbrand if (vcpu->arch.cputm_enabled && !is_vcpu_idle(vcpu)) 1840db0758b2SDavid Hildenbrand __stop_cpu_timer_accounting(vcpu); 1841805de8f4SPeter Zijlstra atomic_andnot(CPUSTAT_RUNNING, &vcpu->arch.sie_block->cpuflags); 184237d9df98SDavid Hildenbrand vcpu->arch.enabled_gmap = gmap_get_enabled(); 184337d9df98SDavid Hildenbrand gmap_disable(vcpu->arch.enabled_gmap); 18449977e886SHendrik Brueckner 18459abc2a08SDavid Hildenbrand /* Save guest register state */ 1846d0164ee2SHendrik Brueckner save_fpu_regs(); 18479977e886SHendrik Brueckner vcpu->run->s.regs.fpc = current->thread.fpu.fpc; 18489abc2a08SDavid Hildenbrand 18499abc2a08SDavid Hildenbrand /* Restore host register state */ 18509abc2a08SDavid Hildenbrand current->thread.fpu.fpc = vcpu->arch.host_fpregs.fpc; 18519abc2a08SDavid Hildenbrand current->thread.fpu.regs = vcpu->arch.host_fpregs.regs; 1852b0c632dbSHeiko Carstens } 1853b0c632dbSHeiko Carstens 1854b0c632dbSHeiko Carstens static void kvm_s390_vcpu_initial_reset(struct kvm_vcpu *vcpu) 1855b0c632dbSHeiko Carstens { 1856b0c632dbSHeiko Carstens /* this equals initial cpu reset in pop, but we don't switch to ESA */ 1857b0c632dbSHeiko Carstens vcpu->arch.sie_block->gpsw.mask = 0UL; 1858b0c632dbSHeiko Carstens vcpu->arch.sie_block->gpsw.addr = 0UL; 18598d26cf7bSChristian Borntraeger kvm_s390_set_prefix(vcpu, 0); 18604287f247SDavid Hildenbrand kvm_s390_set_cpu_timer(vcpu, 0); 1861b0c632dbSHeiko Carstens vcpu->arch.sie_block->ckc = 0UL; 1862b0c632dbSHeiko Carstens vcpu->arch.sie_block->todpr = 0; 1863b0c632dbSHeiko Carstens memset(vcpu->arch.sie_block->gcr, 0, 16 * sizeof(__u64)); 1864b0c632dbSHeiko Carstens vcpu->arch.sie_block->gcr[0] = 0xE0UL; 1865b0c632dbSHeiko Carstens vcpu->arch.sie_block->gcr[14] = 0xC2000000UL; 18669abc2a08SDavid Hildenbrand /* make sure the new fpc will be lazily loaded */ 18679abc2a08SDavid Hildenbrand save_fpu_regs(); 18689abc2a08SDavid Hildenbrand current->thread.fpu.fpc = 0; 1869b0c632dbSHeiko Carstens vcpu->arch.sie_block->gbea = 1; 1870672550fbSChristian Borntraeger vcpu->arch.sie_block->pp = 0; 18713c038e6bSDominik Dingel vcpu->arch.pfault_token = KVM_S390_PFAULT_TOKEN_INVALID; 18723c038e6bSDominik Dingel kvm_clear_async_pf_completion_queue(vcpu); 18736352e4d2SDavid Hildenbrand if (!kvm_s390_user_cpu_state_ctrl(vcpu->kvm)) 18746852d7b6SDavid Hildenbrand kvm_s390_vcpu_stop(vcpu); 18752ed10cc1SJens Freimann kvm_s390_clear_local_irqs(vcpu); 1876b0c632dbSHeiko Carstens } 1877b0c632dbSHeiko Carstens 187831928aa5SDominik Dingel void kvm_arch_vcpu_postcreate(struct kvm_vcpu *vcpu) 187942897d86SMarcelo Tosatti { 188072f25020SJason J. Herne mutex_lock(&vcpu->kvm->lock); 1881fdf03650SFan Zhang preempt_disable(); 188272f25020SJason J. Herne vcpu->arch.sie_block->epoch = vcpu->kvm->arch.epoch; 1883fdf03650SFan Zhang preempt_enable(); 188472f25020SJason J. Herne mutex_unlock(&vcpu->kvm->lock); 188525508824SDavid Hildenbrand if (!kvm_is_ucontrol(vcpu->kvm)) { 1886dafd032aSDominik Dingel vcpu->arch.gmap = vcpu->kvm->arch.gmap; 1887eaa78f34SDavid Hildenbrand sca_add_vcpu(vcpu); 188825508824SDavid Hildenbrand } 18896502a34cSDavid Hildenbrand if (test_kvm_facility(vcpu->kvm, 74) || vcpu->kvm->arch.user_instr0) 18906502a34cSDavid Hildenbrand vcpu->arch.sie_block->ictl |= ICTL_OPEREXC; 189137d9df98SDavid Hildenbrand /* make vcpu_load load the right gmap on the first trigger */ 189237d9df98SDavid Hildenbrand vcpu->arch.enabled_gmap = vcpu->arch.gmap; 189342897d86SMarcelo Tosatti } 189442897d86SMarcelo Tosatti 18955102ee87STony Krowiak static void kvm_s390_vcpu_crypto_setup(struct kvm_vcpu *vcpu) 18965102ee87STony Krowiak { 18979d8d5786SMichael Mueller if (!test_kvm_facility(vcpu->kvm, 76)) 18985102ee87STony Krowiak return; 18995102ee87STony Krowiak 1900a374e892STony Krowiak vcpu->arch.sie_block->ecb3 &= ~(ECB3_AES | ECB3_DEA); 1901a374e892STony Krowiak 1902a374e892STony Krowiak if (vcpu->kvm->arch.crypto.aes_kw) 1903a374e892STony Krowiak vcpu->arch.sie_block->ecb3 |= ECB3_AES; 1904a374e892STony Krowiak if (vcpu->kvm->arch.crypto.dea_kw) 1905a374e892STony Krowiak vcpu->arch.sie_block->ecb3 |= ECB3_DEA; 1906a374e892STony Krowiak 19075102ee87STony Krowiak vcpu->arch.sie_block->crycbd = vcpu->kvm->arch.crypto.crycbd; 19085102ee87STony Krowiak } 19095102ee87STony Krowiak 1910b31605c1SDominik Dingel void kvm_s390_vcpu_unsetup_cmma(struct kvm_vcpu *vcpu) 1911b31605c1SDominik Dingel { 1912b31605c1SDominik Dingel free_page(vcpu->arch.sie_block->cbrlo); 1913b31605c1SDominik Dingel vcpu->arch.sie_block->cbrlo = 0; 1914b31605c1SDominik Dingel } 1915b31605c1SDominik Dingel 1916b31605c1SDominik Dingel int kvm_s390_vcpu_setup_cmma(struct kvm_vcpu *vcpu) 1917b31605c1SDominik Dingel { 1918b31605c1SDominik Dingel vcpu->arch.sie_block->cbrlo = get_zeroed_page(GFP_KERNEL); 1919b31605c1SDominik Dingel if (!vcpu->arch.sie_block->cbrlo) 1920b31605c1SDominik Dingel return -ENOMEM; 1921b31605c1SDominik Dingel 1922b31605c1SDominik Dingel vcpu->arch.sie_block->ecb2 |= 0x80; 1923b31605c1SDominik Dingel vcpu->arch.sie_block->ecb2 &= ~0x08; 1924b31605c1SDominik Dingel return 0; 1925b31605c1SDominik Dingel } 1926b31605c1SDominik Dingel 192791520f1aSMichael Mueller static void kvm_s390_vcpu_setup_model(struct kvm_vcpu *vcpu) 192891520f1aSMichael Mueller { 192991520f1aSMichael Mueller struct kvm_s390_cpu_model *model = &vcpu->kvm->arch.model; 193091520f1aSMichael Mueller 193191520f1aSMichael Mueller vcpu->arch.sie_block->ibc = model->ibc; 193280bc79dcSDavid Hildenbrand if (test_kvm_facility(vcpu->kvm, 7)) 1933c54f0d6aSDavid Hildenbrand vcpu->arch.sie_block->fac = (u32)(u64) model->fac_list; 193491520f1aSMichael Mueller } 193591520f1aSMichael Mueller 1936b0c632dbSHeiko Carstens int kvm_arch_vcpu_setup(struct kvm_vcpu *vcpu) 1937b0c632dbSHeiko Carstens { 1938b31605c1SDominik Dingel int rc = 0; 1939b31288faSKonstantin Weitz 19409e6dabefSCornelia Huck atomic_set(&vcpu->arch.sie_block->cpuflags, CPUSTAT_ZARCH | 19419e6dabefSCornelia Huck CPUSTAT_SM | 1942a4a4f191SGuenther Hutzl CPUSTAT_STOPPED); 1943a4a4f191SGuenther Hutzl 194453df84f8SGuenther Hutzl if (test_kvm_facility(vcpu->kvm, 78)) 1945805de8f4SPeter Zijlstra atomic_or(CPUSTAT_GED2, &vcpu->arch.sie_block->cpuflags); 194653df84f8SGuenther Hutzl else if (test_kvm_facility(vcpu->kvm, 8)) 1947805de8f4SPeter Zijlstra atomic_or(CPUSTAT_GED, &vcpu->arch.sie_block->cpuflags); 1948a4a4f191SGuenther Hutzl 194991520f1aSMichael Mueller kvm_s390_vcpu_setup_model(vcpu); 195091520f1aSMichael Mueller 1951bdab09f3SDavid Hildenbrand /* pgste_set_pte has special handling for !MACHINE_HAS_ESOP */ 1952bdab09f3SDavid Hildenbrand if (MACHINE_HAS_ESOP) 1953bdab09f3SDavid Hildenbrand vcpu->arch.sie_block->ecb |= 0x02; 1954bd50e8ecSDavid Hildenbrand if (test_kvm_facility(vcpu->kvm, 9)) 1955bd50e8ecSDavid Hildenbrand vcpu->arch.sie_block->ecb |= 0x04; 1956f597d24eSDavid Hildenbrand if (test_kvm_facility(vcpu->kvm, 73)) 19577feb6bb8SMichael Mueller vcpu->arch.sie_block->ecb |= 0x10; 19587feb6bb8SMichael Mueller 1959873b425eSDavid Hildenbrand if (test_kvm_facility(vcpu->kvm, 8) && sclp.has_pfmfi) 1960d6af0b49SDavid Hildenbrand vcpu->arch.sie_block->ecb2 |= 0x08; 196148ee7d3aSDavid Hildenbrand vcpu->arch.sie_block->eca = 0x1002000U; 196248ee7d3aSDavid Hildenbrand if (sclp.has_cei) 196348ee7d3aSDavid Hildenbrand vcpu->arch.sie_block->eca |= 0x80000000U; 196411ad65b7SDavid Hildenbrand if (sclp.has_ib) 196511ad65b7SDavid Hildenbrand vcpu->arch.sie_block->eca |= 0x40000000U; 196637c5f6c8SDavid Hildenbrand if (sclp.has_siif) 1967217a4406SHeiko Carstens vcpu->arch.sie_block->eca |= 1; 196837c5f6c8SDavid Hildenbrand if (sclp.has_sigpif) 1969ea5f4969SDavid Hildenbrand vcpu->arch.sie_block->eca |= 0x10000000U; 197018280d8bSMichael Mueller if (test_kvm_facility(vcpu->kvm, 129)) { 197113211ea7SEric Farman vcpu->arch.sie_block->eca |= 0x00020000; 197213211ea7SEric Farman vcpu->arch.sie_block->ecd |= 0x20000000; 197313211ea7SEric Farman } 1974c6e5f166SFan Zhang vcpu->arch.sie_block->riccbd = (unsigned long) &vcpu->run->s.regs.riccb; 1975492d8642SThomas Huth vcpu->arch.sie_block->ictl |= ICTL_ISKE | ICTL_SSKE | ICTL_RRBE; 19765a5e6536SMatthew Rosato 1977e6db1d61SDominik Dingel if (vcpu->kvm->arch.use_cmma) { 1978b31605c1SDominik Dingel rc = kvm_s390_vcpu_setup_cmma(vcpu); 1979b31605c1SDominik Dingel if (rc) 1980b31605c1SDominik Dingel return rc; 1981b31288faSKonstantin Weitz } 19820ac96cafSDavid Hildenbrand hrtimer_init(&vcpu->arch.ckc_timer, CLOCK_MONOTONIC, HRTIMER_MODE_REL); 1983ca872302SChristian Borntraeger vcpu->arch.ckc_timer.function = kvm_s390_idle_wakeup; 19849d8d5786SMichael Mueller 19855102ee87STony Krowiak kvm_s390_vcpu_crypto_setup(vcpu); 19865102ee87STony Krowiak 1987b31605c1SDominik Dingel return rc; 1988b0c632dbSHeiko Carstens } 1989b0c632dbSHeiko Carstens 1990b0c632dbSHeiko Carstens struct kvm_vcpu *kvm_arch_vcpu_create(struct kvm *kvm, 1991b0c632dbSHeiko Carstens unsigned int id) 1992b0c632dbSHeiko Carstens { 19934d47555aSCarsten Otte struct kvm_vcpu *vcpu; 19947feb6bb8SMichael Mueller struct sie_page *sie_page; 19954d47555aSCarsten Otte int rc = -EINVAL; 1996b0c632dbSHeiko Carstens 19974215825eSDavid Hildenbrand if (!kvm_is_ucontrol(kvm) && !sca_can_add_vcpu(kvm, id)) 19984d47555aSCarsten Otte goto out; 19994d47555aSCarsten Otte 20004d47555aSCarsten Otte rc = -ENOMEM; 20014d47555aSCarsten Otte 2002b110feafSMichael Mueller vcpu = kmem_cache_zalloc(kvm_vcpu_cache, GFP_KERNEL); 2003b0c632dbSHeiko Carstens if (!vcpu) 20044d47555aSCarsten Otte goto out; 2005b0c632dbSHeiko Carstens 20067feb6bb8SMichael Mueller sie_page = (struct sie_page *) get_zeroed_page(GFP_KERNEL); 20077feb6bb8SMichael Mueller if (!sie_page) 2008b0c632dbSHeiko Carstens goto out_free_cpu; 2009b0c632dbSHeiko Carstens 20107feb6bb8SMichael Mueller vcpu->arch.sie_block = &sie_page->sie_block; 20117feb6bb8SMichael Mueller vcpu->arch.sie_block->itdba = (unsigned long) &sie_page->itdb; 20127feb6bb8SMichael Mueller 2013efed1104SDavid Hildenbrand /* the real guest size will always be smaller than msl */ 2014efed1104SDavid Hildenbrand vcpu->arch.sie_block->mso = 0; 2015efed1104SDavid Hildenbrand vcpu->arch.sie_block->msl = sclp.hamax; 2016efed1104SDavid Hildenbrand 2017b0c632dbSHeiko Carstens vcpu->arch.sie_block->icpua = id; 2018ba5c1e9bSCarsten Otte spin_lock_init(&vcpu->arch.local_int.lock); 2019ba5c1e9bSCarsten Otte vcpu->arch.local_int.float_int = &kvm->arch.float_int; 2020d0321a24SChristian Borntraeger vcpu->arch.local_int.wq = &vcpu->wq; 20215288fbf0SChristian Borntraeger vcpu->arch.local_int.cpuflags = &vcpu->arch.sie_block->cpuflags; 20229c23a131SDavid Hildenbrand seqcount_init(&vcpu->arch.cputm_seqcount); 2023ba5c1e9bSCarsten Otte 2024b0c632dbSHeiko Carstens rc = kvm_vcpu_init(vcpu, kvm, id); 2025b0c632dbSHeiko Carstens if (rc) 20269abc2a08SDavid Hildenbrand goto out_free_sie_block; 20278335713aSChristian Borntraeger VM_EVENT(kvm, 3, "create cpu %d at 0x%pK, sie block at 0x%pK", id, vcpu, 2028b0c632dbSHeiko Carstens vcpu->arch.sie_block); 2029ade38c31SCornelia Huck trace_kvm_s390_create_vcpu(id, vcpu, vcpu->arch.sie_block); 2030b0c632dbSHeiko Carstens 2031b0c632dbSHeiko Carstens return vcpu; 20327b06bf2fSWei Yongjun out_free_sie_block: 20337b06bf2fSWei Yongjun free_page((unsigned long)(vcpu->arch.sie_block)); 2034b0c632dbSHeiko Carstens out_free_cpu: 2035b110feafSMichael Mueller kmem_cache_free(kvm_vcpu_cache, vcpu); 20364d47555aSCarsten Otte out: 2037b0c632dbSHeiko Carstens return ERR_PTR(rc); 2038b0c632dbSHeiko Carstens } 2039b0c632dbSHeiko Carstens 2040b0c632dbSHeiko Carstens int kvm_arch_vcpu_runnable(struct kvm_vcpu *vcpu) 2041b0c632dbSHeiko Carstens { 20429a022067SDavid Hildenbrand return kvm_s390_vcpu_has_irq(vcpu, 0); 2043b0c632dbSHeiko Carstens } 2044b0c632dbSHeiko Carstens 204527406cd5SChristian Borntraeger void kvm_s390_vcpu_block(struct kvm_vcpu *vcpu) 204649b99e1eSChristian Borntraeger { 2047805de8f4SPeter Zijlstra atomic_or(PROG_BLOCK_SIE, &vcpu->arch.sie_block->prog20); 204861a6df54SDavid Hildenbrand exit_sie(vcpu); 204949b99e1eSChristian Borntraeger } 205049b99e1eSChristian Borntraeger 205127406cd5SChristian Borntraeger void kvm_s390_vcpu_unblock(struct kvm_vcpu *vcpu) 205249b99e1eSChristian Borntraeger { 2053805de8f4SPeter Zijlstra atomic_andnot(PROG_BLOCK_SIE, &vcpu->arch.sie_block->prog20); 205449b99e1eSChristian Borntraeger } 205549b99e1eSChristian Borntraeger 20568e236546SChristian Borntraeger static void kvm_s390_vcpu_request(struct kvm_vcpu *vcpu) 20578e236546SChristian Borntraeger { 2058805de8f4SPeter Zijlstra atomic_or(PROG_REQUEST, &vcpu->arch.sie_block->prog20); 205961a6df54SDavid Hildenbrand exit_sie(vcpu); 20608e236546SChristian Borntraeger } 20618e236546SChristian Borntraeger 20628e236546SChristian Borntraeger static void kvm_s390_vcpu_request_handled(struct kvm_vcpu *vcpu) 20638e236546SChristian Borntraeger { 20649bf9fde2SJason J. Herne atomic_andnot(PROG_REQUEST, &vcpu->arch.sie_block->prog20); 20658e236546SChristian Borntraeger } 20668e236546SChristian Borntraeger 206749b99e1eSChristian Borntraeger /* 206849b99e1eSChristian Borntraeger * Kick a guest cpu out of SIE and wait until SIE is not running. 206949b99e1eSChristian Borntraeger * If the CPU is not running (e.g. waiting as idle) the function will 207049b99e1eSChristian Borntraeger * return immediately. */ 207149b99e1eSChristian Borntraeger void exit_sie(struct kvm_vcpu *vcpu) 207249b99e1eSChristian Borntraeger { 2073805de8f4SPeter Zijlstra atomic_or(CPUSTAT_STOP_INT, &vcpu->arch.sie_block->cpuflags); 207449b99e1eSChristian Borntraeger while (vcpu->arch.sie_block->prog0c & PROG_IN_SIE) 207549b99e1eSChristian Borntraeger cpu_relax(); 207649b99e1eSChristian Borntraeger } 207749b99e1eSChristian Borntraeger 20788e236546SChristian Borntraeger /* Kick a guest cpu out of SIE to process a request synchronously */ 20798e236546SChristian Borntraeger void kvm_s390_sync_request(int req, struct kvm_vcpu *vcpu) 208049b99e1eSChristian Borntraeger { 20818e236546SChristian Borntraeger kvm_make_request(req, vcpu); 20828e236546SChristian Borntraeger kvm_s390_vcpu_request(vcpu); 208349b99e1eSChristian Borntraeger } 208449b99e1eSChristian Borntraeger 2085414d3b07SMartin Schwidefsky static void kvm_gmap_notifier(struct gmap *gmap, unsigned long start, 2086414d3b07SMartin Schwidefsky unsigned long end) 20872c70fe44SChristian Borntraeger { 20882c70fe44SChristian Borntraeger struct kvm *kvm = gmap->private; 20892c70fe44SChristian Borntraeger struct kvm_vcpu *vcpu; 2090414d3b07SMartin Schwidefsky unsigned long prefix; 2091414d3b07SMartin Schwidefsky int i; 20922c70fe44SChristian Borntraeger 209365d0b0d4SDavid Hildenbrand if (gmap_is_shadow(gmap)) 209465d0b0d4SDavid Hildenbrand return; 2095414d3b07SMartin Schwidefsky if (start >= 1UL << 31) 2096414d3b07SMartin Schwidefsky /* We are only interested in prefix pages */ 2097414d3b07SMartin Schwidefsky return; 20982c70fe44SChristian Borntraeger kvm_for_each_vcpu(i, vcpu, kvm) { 20992c70fe44SChristian Borntraeger /* match against both prefix pages */ 2100414d3b07SMartin Schwidefsky prefix = kvm_s390_get_prefix(vcpu); 2101414d3b07SMartin Schwidefsky if (prefix <= end && start <= prefix + 2*PAGE_SIZE - 1) { 2102414d3b07SMartin Schwidefsky VCPU_EVENT(vcpu, 2, "gmap notifier for %lx-%lx", 2103414d3b07SMartin Schwidefsky start, end); 21048e236546SChristian Borntraeger kvm_s390_sync_request(KVM_REQ_MMU_RELOAD, vcpu); 21052c70fe44SChristian Borntraeger } 21062c70fe44SChristian Borntraeger } 21072c70fe44SChristian Borntraeger } 21082c70fe44SChristian Borntraeger 2109b6d33834SChristoffer Dall int kvm_arch_vcpu_should_kick(struct kvm_vcpu *vcpu) 2110b6d33834SChristoffer Dall { 2111b6d33834SChristoffer Dall /* kvm common code refers to this, but never calls it */ 2112b6d33834SChristoffer Dall BUG(); 2113b6d33834SChristoffer Dall return 0; 2114b6d33834SChristoffer Dall } 2115b6d33834SChristoffer Dall 211614eebd91SCarsten Otte static int kvm_arch_vcpu_ioctl_get_one_reg(struct kvm_vcpu *vcpu, 211714eebd91SCarsten Otte struct kvm_one_reg *reg) 211814eebd91SCarsten Otte { 211914eebd91SCarsten Otte int r = -EINVAL; 212014eebd91SCarsten Otte 212114eebd91SCarsten Otte switch (reg->id) { 212229b7c71bSCarsten Otte case KVM_REG_S390_TODPR: 212329b7c71bSCarsten Otte r = put_user(vcpu->arch.sie_block->todpr, 212429b7c71bSCarsten Otte (u32 __user *)reg->addr); 212529b7c71bSCarsten Otte break; 212629b7c71bSCarsten Otte case KVM_REG_S390_EPOCHDIFF: 212729b7c71bSCarsten Otte r = put_user(vcpu->arch.sie_block->epoch, 212829b7c71bSCarsten Otte (u64 __user *)reg->addr); 212929b7c71bSCarsten Otte break; 213046a6dd1cSJason J. herne case KVM_REG_S390_CPU_TIMER: 21314287f247SDavid Hildenbrand r = put_user(kvm_s390_get_cpu_timer(vcpu), 213246a6dd1cSJason J. herne (u64 __user *)reg->addr); 213346a6dd1cSJason J. herne break; 213446a6dd1cSJason J. herne case KVM_REG_S390_CLOCK_COMP: 213546a6dd1cSJason J. herne r = put_user(vcpu->arch.sie_block->ckc, 213646a6dd1cSJason J. herne (u64 __user *)reg->addr); 213746a6dd1cSJason J. herne break; 2138536336c2SDominik Dingel case KVM_REG_S390_PFTOKEN: 2139536336c2SDominik Dingel r = put_user(vcpu->arch.pfault_token, 2140536336c2SDominik Dingel (u64 __user *)reg->addr); 2141536336c2SDominik Dingel break; 2142536336c2SDominik Dingel case KVM_REG_S390_PFCOMPARE: 2143536336c2SDominik Dingel r = put_user(vcpu->arch.pfault_compare, 2144536336c2SDominik Dingel (u64 __user *)reg->addr); 2145536336c2SDominik Dingel break; 2146536336c2SDominik Dingel case KVM_REG_S390_PFSELECT: 2147536336c2SDominik Dingel r = put_user(vcpu->arch.pfault_select, 2148536336c2SDominik Dingel (u64 __user *)reg->addr); 2149536336c2SDominik Dingel break; 2150672550fbSChristian Borntraeger case KVM_REG_S390_PP: 2151672550fbSChristian Borntraeger r = put_user(vcpu->arch.sie_block->pp, 2152672550fbSChristian Borntraeger (u64 __user *)reg->addr); 2153672550fbSChristian Borntraeger break; 2154afa45ff5SChristian Borntraeger case KVM_REG_S390_GBEA: 2155afa45ff5SChristian Borntraeger r = put_user(vcpu->arch.sie_block->gbea, 2156afa45ff5SChristian Borntraeger (u64 __user *)reg->addr); 2157afa45ff5SChristian Borntraeger break; 215814eebd91SCarsten Otte default: 215914eebd91SCarsten Otte break; 216014eebd91SCarsten Otte } 216114eebd91SCarsten Otte 216214eebd91SCarsten Otte return r; 216314eebd91SCarsten Otte } 216414eebd91SCarsten Otte 216514eebd91SCarsten Otte static int kvm_arch_vcpu_ioctl_set_one_reg(struct kvm_vcpu *vcpu, 216614eebd91SCarsten Otte struct kvm_one_reg *reg) 216714eebd91SCarsten Otte { 216814eebd91SCarsten Otte int r = -EINVAL; 21694287f247SDavid Hildenbrand __u64 val; 217014eebd91SCarsten Otte 217114eebd91SCarsten Otte switch (reg->id) { 217229b7c71bSCarsten Otte case KVM_REG_S390_TODPR: 217329b7c71bSCarsten Otte r = get_user(vcpu->arch.sie_block->todpr, 217429b7c71bSCarsten Otte (u32 __user *)reg->addr); 217529b7c71bSCarsten Otte break; 217629b7c71bSCarsten Otte case KVM_REG_S390_EPOCHDIFF: 217729b7c71bSCarsten Otte r = get_user(vcpu->arch.sie_block->epoch, 217829b7c71bSCarsten Otte (u64 __user *)reg->addr); 217929b7c71bSCarsten Otte break; 218046a6dd1cSJason J. herne case KVM_REG_S390_CPU_TIMER: 21814287f247SDavid Hildenbrand r = get_user(val, (u64 __user *)reg->addr); 21824287f247SDavid Hildenbrand if (!r) 21834287f247SDavid Hildenbrand kvm_s390_set_cpu_timer(vcpu, val); 218446a6dd1cSJason J. herne break; 218546a6dd1cSJason J. herne case KVM_REG_S390_CLOCK_COMP: 218646a6dd1cSJason J. herne r = get_user(vcpu->arch.sie_block->ckc, 218746a6dd1cSJason J. herne (u64 __user *)reg->addr); 218846a6dd1cSJason J. herne break; 2189536336c2SDominik Dingel case KVM_REG_S390_PFTOKEN: 2190536336c2SDominik Dingel r = get_user(vcpu->arch.pfault_token, 2191536336c2SDominik Dingel (u64 __user *)reg->addr); 21929fbd8082SDavid Hildenbrand if (vcpu->arch.pfault_token == KVM_S390_PFAULT_TOKEN_INVALID) 21939fbd8082SDavid Hildenbrand kvm_clear_async_pf_completion_queue(vcpu); 2194536336c2SDominik Dingel break; 2195536336c2SDominik Dingel case KVM_REG_S390_PFCOMPARE: 2196536336c2SDominik Dingel r = get_user(vcpu->arch.pfault_compare, 2197536336c2SDominik Dingel (u64 __user *)reg->addr); 2198536336c2SDominik Dingel break; 2199536336c2SDominik Dingel case KVM_REG_S390_PFSELECT: 2200536336c2SDominik Dingel r = get_user(vcpu->arch.pfault_select, 2201536336c2SDominik Dingel (u64 __user *)reg->addr); 2202536336c2SDominik Dingel break; 2203672550fbSChristian Borntraeger case KVM_REG_S390_PP: 2204672550fbSChristian Borntraeger r = get_user(vcpu->arch.sie_block->pp, 2205672550fbSChristian Borntraeger (u64 __user *)reg->addr); 2206672550fbSChristian Borntraeger break; 2207afa45ff5SChristian Borntraeger case KVM_REG_S390_GBEA: 2208afa45ff5SChristian Borntraeger r = get_user(vcpu->arch.sie_block->gbea, 2209afa45ff5SChristian Borntraeger (u64 __user *)reg->addr); 2210afa45ff5SChristian Borntraeger break; 221114eebd91SCarsten Otte default: 221214eebd91SCarsten Otte break; 221314eebd91SCarsten Otte } 221414eebd91SCarsten Otte 221514eebd91SCarsten Otte return r; 221614eebd91SCarsten Otte } 2217b6d33834SChristoffer Dall 2218b0c632dbSHeiko Carstens static int kvm_arch_vcpu_ioctl_initial_reset(struct kvm_vcpu *vcpu) 2219b0c632dbSHeiko Carstens { 2220b0c632dbSHeiko Carstens kvm_s390_vcpu_initial_reset(vcpu); 2221b0c632dbSHeiko Carstens return 0; 2222b0c632dbSHeiko Carstens } 2223b0c632dbSHeiko Carstens 2224b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_set_regs(struct kvm_vcpu *vcpu, struct kvm_regs *regs) 2225b0c632dbSHeiko Carstens { 22265a32c1afSChristian Borntraeger memcpy(&vcpu->run->s.regs.gprs, ®s->gprs, sizeof(regs->gprs)); 2227b0c632dbSHeiko Carstens return 0; 2228b0c632dbSHeiko Carstens } 2229b0c632dbSHeiko Carstens 2230b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_get_regs(struct kvm_vcpu *vcpu, struct kvm_regs *regs) 2231b0c632dbSHeiko Carstens { 22325a32c1afSChristian Borntraeger memcpy(®s->gprs, &vcpu->run->s.regs.gprs, sizeof(regs->gprs)); 2233b0c632dbSHeiko Carstens return 0; 2234b0c632dbSHeiko Carstens } 2235b0c632dbSHeiko Carstens 2236b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_set_sregs(struct kvm_vcpu *vcpu, 2237b0c632dbSHeiko Carstens struct kvm_sregs *sregs) 2238b0c632dbSHeiko Carstens { 223959674c1aSChristian Borntraeger memcpy(&vcpu->run->s.regs.acrs, &sregs->acrs, sizeof(sregs->acrs)); 2240b0c632dbSHeiko Carstens memcpy(&vcpu->arch.sie_block->gcr, &sregs->crs, sizeof(sregs->crs)); 2241b0c632dbSHeiko Carstens return 0; 2242b0c632dbSHeiko Carstens } 2243b0c632dbSHeiko Carstens 2244b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_get_sregs(struct kvm_vcpu *vcpu, 2245b0c632dbSHeiko Carstens struct kvm_sregs *sregs) 2246b0c632dbSHeiko Carstens { 224759674c1aSChristian Borntraeger memcpy(&sregs->acrs, &vcpu->run->s.regs.acrs, sizeof(sregs->acrs)); 2248b0c632dbSHeiko Carstens memcpy(&sregs->crs, &vcpu->arch.sie_block->gcr, sizeof(sregs->crs)); 2249b0c632dbSHeiko Carstens return 0; 2250b0c632dbSHeiko Carstens } 2251b0c632dbSHeiko Carstens 2252b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_set_fpu(struct kvm_vcpu *vcpu, struct kvm_fpu *fpu) 2253b0c632dbSHeiko Carstens { 22549abc2a08SDavid Hildenbrand /* make sure the new values will be lazily loaded */ 22559abc2a08SDavid Hildenbrand save_fpu_regs(); 22564725c860SMartin Schwidefsky if (test_fp_ctl(fpu->fpc)) 22574725c860SMartin Schwidefsky return -EINVAL; 22589abc2a08SDavid Hildenbrand current->thread.fpu.fpc = fpu->fpc; 22599abc2a08SDavid Hildenbrand if (MACHINE_HAS_VX) 2260a7d4b8f2SDavid Hildenbrand convert_fp_to_vx((__vector128 *) vcpu->run->s.regs.vrs, 2261a7d4b8f2SDavid Hildenbrand (freg_t *) fpu->fprs); 22629abc2a08SDavid Hildenbrand else 2263a7d4b8f2SDavid Hildenbrand memcpy(vcpu->run->s.regs.fprs, &fpu->fprs, sizeof(fpu->fprs)); 2264b0c632dbSHeiko Carstens return 0; 2265b0c632dbSHeiko Carstens } 2266b0c632dbSHeiko Carstens 2267b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_get_fpu(struct kvm_vcpu *vcpu, struct kvm_fpu *fpu) 2268b0c632dbSHeiko Carstens { 22699abc2a08SDavid Hildenbrand /* make sure we have the latest values */ 22709abc2a08SDavid Hildenbrand save_fpu_regs(); 22719abc2a08SDavid Hildenbrand if (MACHINE_HAS_VX) 2272a7d4b8f2SDavid Hildenbrand convert_vx_to_fp((freg_t *) fpu->fprs, 2273a7d4b8f2SDavid Hildenbrand (__vector128 *) vcpu->run->s.regs.vrs); 22749abc2a08SDavid Hildenbrand else 2275a7d4b8f2SDavid Hildenbrand memcpy(fpu->fprs, vcpu->run->s.regs.fprs, sizeof(fpu->fprs)); 22769abc2a08SDavid Hildenbrand fpu->fpc = current->thread.fpu.fpc; 2277b0c632dbSHeiko Carstens return 0; 2278b0c632dbSHeiko Carstens } 2279b0c632dbSHeiko Carstens 2280b0c632dbSHeiko Carstens static int kvm_arch_vcpu_ioctl_set_initial_psw(struct kvm_vcpu *vcpu, psw_t psw) 2281b0c632dbSHeiko Carstens { 2282b0c632dbSHeiko Carstens int rc = 0; 2283b0c632dbSHeiko Carstens 22847a42fdc2SDavid Hildenbrand if (!is_vcpu_stopped(vcpu)) 2285b0c632dbSHeiko Carstens rc = -EBUSY; 2286d7b0b5ebSCarsten Otte else { 2287d7b0b5ebSCarsten Otte vcpu->run->psw_mask = psw.mask; 2288d7b0b5ebSCarsten Otte vcpu->run->psw_addr = psw.addr; 2289d7b0b5ebSCarsten Otte } 2290b0c632dbSHeiko Carstens return rc; 2291b0c632dbSHeiko Carstens } 2292b0c632dbSHeiko Carstens 2293b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_translate(struct kvm_vcpu *vcpu, 2294b0c632dbSHeiko Carstens struct kvm_translation *tr) 2295b0c632dbSHeiko Carstens { 2296b0c632dbSHeiko Carstens return -EINVAL; /* not implemented yet */ 2297b0c632dbSHeiko Carstens } 2298b0c632dbSHeiko Carstens 229927291e21SDavid Hildenbrand #define VALID_GUESTDBG_FLAGS (KVM_GUESTDBG_SINGLESTEP | \ 230027291e21SDavid Hildenbrand KVM_GUESTDBG_USE_HW_BP | \ 230127291e21SDavid Hildenbrand KVM_GUESTDBG_ENABLE) 230227291e21SDavid Hildenbrand 2303d0bfb940SJan Kiszka int kvm_arch_vcpu_ioctl_set_guest_debug(struct kvm_vcpu *vcpu, 2304d0bfb940SJan Kiszka struct kvm_guest_debug *dbg) 2305b0c632dbSHeiko Carstens { 230627291e21SDavid Hildenbrand int rc = 0; 230727291e21SDavid Hildenbrand 230827291e21SDavid Hildenbrand vcpu->guest_debug = 0; 230927291e21SDavid Hildenbrand kvm_s390_clear_bp_data(vcpu); 231027291e21SDavid Hildenbrand 23112de3bfc2SDavid Hildenbrand if (dbg->control & ~VALID_GUESTDBG_FLAGS) 231227291e21SDavid Hildenbrand return -EINVAL; 231389b5b4deSDavid Hildenbrand if (!sclp.has_gpere) 231489b5b4deSDavid Hildenbrand return -EINVAL; 231527291e21SDavid Hildenbrand 231627291e21SDavid Hildenbrand if (dbg->control & KVM_GUESTDBG_ENABLE) { 231727291e21SDavid Hildenbrand vcpu->guest_debug = dbg->control; 231827291e21SDavid Hildenbrand /* enforce guest PER */ 2319805de8f4SPeter Zijlstra atomic_or(CPUSTAT_P, &vcpu->arch.sie_block->cpuflags); 232027291e21SDavid Hildenbrand 232127291e21SDavid Hildenbrand if (dbg->control & KVM_GUESTDBG_USE_HW_BP) 232227291e21SDavid Hildenbrand rc = kvm_s390_import_bp_data(vcpu, dbg); 232327291e21SDavid Hildenbrand } else { 2324805de8f4SPeter Zijlstra atomic_andnot(CPUSTAT_P, &vcpu->arch.sie_block->cpuflags); 232527291e21SDavid Hildenbrand vcpu->arch.guestdbg.last_bp = 0; 232627291e21SDavid Hildenbrand } 232727291e21SDavid Hildenbrand 232827291e21SDavid Hildenbrand if (rc) { 232927291e21SDavid Hildenbrand vcpu->guest_debug = 0; 233027291e21SDavid Hildenbrand kvm_s390_clear_bp_data(vcpu); 2331805de8f4SPeter Zijlstra atomic_andnot(CPUSTAT_P, &vcpu->arch.sie_block->cpuflags); 233227291e21SDavid Hildenbrand } 233327291e21SDavid Hildenbrand 233427291e21SDavid Hildenbrand return rc; 2335b0c632dbSHeiko Carstens } 2336b0c632dbSHeiko Carstens 233762d9f0dbSMarcelo Tosatti int kvm_arch_vcpu_ioctl_get_mpstate(struct kvm_vcpu *vcpu, 233862d9f0dbSMarcelo Tosatti struct kvm_mp_state *mp_state) 233962d9f0dbSMarcelo Tosatti { 23406352e4d2SDavid Hildenbrand /* CHECK_STOP and LOAD are not supported yet */ 23416352e4d2SDavid Hildenbrand return is_vcpu_stopped(vcpu) ? KVM_MP_STATE_STOPPED : 23426352e4d2SDavid Hildenbrand KVM_MP_STATE_OPERATING; 234362d9f0dbSMarcelo Tosatti } 234462d9f0dbSMarcelo Tosatti 234562d9f0dbSMarcelo Tosatti int kvm_arch_vcpu_ioctl_set_mpstate(struct kvm_vcpu *vcpu, 234662d9f0dbSMarcelo Tosatti struct kvm_mp_state *mp_state) 234762d9f0dbSMarcelo Tosatti { 23486352e4d2SDavid Hildenbrand int rc = 0; 23496352e4d2SDavid Hildenbrand 23506352e4d2SDavid Hildenbrand /* user space knows about this interface - let it control the state */ 23516352e4d2SDavid Hildenbrand vcpu->kvm->arch.user_cpu_state_ctrl = 1; 23526352e4d2SDavid Hildenbrand 23536352e4d2SDavid Hildenbrand switch (mp_state->mp_state) { 23546352e4d2SDavid Hildenbrand case KVM_MP_STATE_STOPPED: 23556352e4d2SDavid Hildenbrand kvm_s390_vcpu_stop(vcpu); 23566352e4d2SDavid Hildenbrand break; 23576352e4d2SDavid Hildenbrand case KVM_MP_STATE_OPERATING: 23586352e4d2SDavid Hildenbrand kvm_s390_vcpu_start(vcpu); 23596352e4d2SDavid Hildenbrand break; 23606352e4d2SDavid Hildenbrand case KVM_MP_STATE_LOAD: 23616352e4d2SDavid Hildenbrand case KVM_MP_STATE_CHECK_STOP: 23626352e4d2SDavid Hildenbrand /* fall through - CHECK_STOP and LOAD are not supported yet */ 23636352e4d2SDavid Hildenbrand default: 23646352e4d2SDavid Hildenbrand rc = -ENXIO; 23656352e4d2SDavid Hildenbrand } 23666352e4d2SDavid Hildenbrand 23676352e4d2SDavid Hildenbrand return rc; 236862d9f0dbSMarcelo Tosatti } 236962d9f0dbSMarcelo Tosatti 23708ad35755SDavid Hildenbrand static bool ibs_enabled(struct kvm_vcpu *vcpu) 23718ad35755SDavid Hildenbrand { 23728ad35755SDavid Hildenbrand return atomic_read(&vcpu->arch.sie_block->cpuflags) & CPUSTAT_IBS; 23738ad35755SDavid Hildenbrand } 23748ad35755SDavid Hildenbrand 23752c70fe44SChristian Borntraeger static int kvm_s390_handle_requests(struct kvm_vcpu *vcpu) 23762c70fe44SChristian Borntraeger { 23778ad35755SDavid Hildenbrand retry: 23788e236546SChristian Borntraeger kvm_s390_vcpu_request_handled(vcpu); 2379586b7ccdSChristian Borntraeger if (!vcpu->requests) 2380586b7ccdSChristian Borntraeger return 0; 23812c70fe44SChristian Borntraeger /* 23822c70fe44SChristian Borntraeger * We use MMU_RELOAD just to re-arm the ipte notifier for the 2383b2d73b2aSMartin Schwidefsky * guest prefix page. gmap_mprotect_notify will wait on the ptl lock. 23842c70fe44SChristian Borntraeger * This ensures that the ipte instruction for this request has 23852c70fe44SChristian Borntraeger * already finished. We might race against a second unmapper that 23862c70fe44SChristian Borntraeger * wants to set the blocking bit. Lets just retry the request loop. 23872c70fe44SChristian Borntraeger */ 23888ad35755SDavid Hildenbrand if (kvm_check_request(KVM_REQ_MMU_RELOAD, vcpu)) { 23892c70fe44SChristian Borntraeger int rc; 2390b2d73b2aSMartin Schwidefsky rc = gmap_mprotect_notify(vcpu->arch.gmap, 2391fda902cbSMichael Mueller kvm_s390_get_prefix(vcpu), 2392b2d73b2aSMartin Schwidefsky PAGE_SIZE * 2, PROT_WRITE); 2393aca411a4SJulius Niedworok if (rc) { 2394aca411a4SJulius Niedworok kvm_make_request(KVM_REQ_MMU_RELOAD, vcpu); 23952c70fe44SChristian Borntraeger return rc; 2396aca411a4SJulius Niedworok } 23978ad35755SDavid Hildenbrand goto retry; 23982c70fe44SChristian Borntraeger } 23998ad35755SDavid Hildenbrand 2400d3d692c8SDavid Hildenbrand if (kvm_check_request(KVM_REQ_TLB_FLUSH, vcpu)) { 2401d3d692c8SDavid Hildenbrand vcpu->arch.sie_block->ihcpu = 0xffff; 2402d3d692c8SDavid Hildenbrand goto retry; 2403d3d692c8SDavid Hildenbrand } 2404d3d692c8SDavid Hildenbrand 24058ad35755SDavid Hildenbrand if (kvm_check_request(KVM_REQ_ENABLE_IBS, vcpu)) { 24068ad35755SDavid Hildenbrand if (!ibs_enabled(vcpu)) { 24078ad35755SDavid Hildenbrand trace_kvm_s390_enable_disable_ibs(vcpu->vcpu_id, 1); 2408805de8f4SPeter Zijlstra atomic_or(CPUSTAT_IBS, 24098ad35755SDavid Hildenbrand &vcpu->arch.sie_block->cpuflags); 24108ad35755SDavid Hildenbrand } 24118ad35755SDavid Hildenbrand goto retry; 24128ad35755SDavid Hildenbrand } 24138ad35755SDavid Hildenbrand 24148ad35755SDavid Hildenbrand if (kvm_check_request(KVM_REQ_DISABLE_IBS, vcpu)) { 24158ad35755SDavid Hildenbrand if (ibs_enabled(vcpu)) { 24168ad35755SDavid Hildenbrand trace_kvm_s390_enable_disable_ibs(vcpu->vcpu_id, 0); 2417805de8f4SPeter Zijlstra atomic_andnot(CPUSTAT_IBS, 24188ad35755SDavid Hildenbrand &vcpu->arch.sie_block->cpuflags); 24198ad35755SDavid Hildenbrand } 24208ad35755SDavid Hildenbrand goto retry; 24218ad35755SDavid Hildenbrand } 24228ad35755SDavid Hildenbrand 24236502a34cSDavid Hildenbrand if (kvm_check_request(KVM_REQ_ICPT_OPEREXC, vcpu)) { 24246502a34cSDavid Hildenbrand vcpu->arch.sie_block->ictl |= ICTL_OPEREXC; 24256502a34cSDavid Hildenbrand goto retry; 24266502a34cSDavid Hildenbrand } 24276502a34cSDavid Hildenbrand 24280759d068SDavid Hildenbrand /* nothing to do, just clear the request */ 24290759d068SDavid Hildenbrand clear_bit(KVM_REQ_UNHALT, &vcpu->requests); 24300759d068SDavid Hildenbrand 24312c70fe44SChristian Borntraeger return 0; 24322c70fe44SChristian Borntraeger } 24332c70fe44SChristian Borntraeger 243425ed1675SDavid Hildenbrand void kvm_s390_set_tod_clock(struct kvm *kvm, u64 tod) 243525ed1675SDavid Hildenbrand { 243625ed1675SDavid Hildenbrand struct kvm_vcpu *vcpu; 243725ed1675SDavid Hildenbrand int i; 243825ed1675SDavid Hildenbrand 243925ed1675SDavid Hildenbrand mutex_lock(&kvm->lock); 244025ed1675SDavid Hildenbrand preempt_disable(); 244125ed1675SDavid Hildenbrand kvm->arch.epoch = tod - get_tod_clock(); 244225ed1675SDavid Hildenbrand kvm_s390_vcpu_block_all(kvm); 244325ed1675SDavid Hildenbrand kvm_for_each_vcpu(i, vcpu, kvm) 244425ed1675SDavid Hildenbrand vcpu->arch.sie_block->epoch = kvm->arch.epoch; 244525ed1675SDavid Hildenbrand kvm_s390_vcpu_unblock_all(kvm); 244625ed1675SDavid Hildenbrand preempt_enable(); 244725ed1675SDavid Hildenbrand mutex_unlock(&kvm->lock); 244825ed1675SDavid Hildenbrand } 244925ed1675SDavid Hildenbrand 2450fa576c58SThomas Huth /** 2451fa576c58SThomas Huth * kvm_arch_fault_in_page - fault-in guest page if necessary 2452fa576c58SThomas Huth * @vcpu: The corresponding virtual cpu 2453fa576c58SThomas Huth * @gpa: Guest physical address 2454fa576c58SThomas Huth * @writable: Whether the page should be writable or not 2455fa576c58SThomas Huth * 2456fa576c58SThomas Huth * Make sure that a guest page has been faulted-in on the host. 2457fa576c58SThomas Huth * 2458fa576c58SThomas Huth * Return: Zero on success, negative error code otherwise. 2459fa576c58SThomas Huth */ 2460fa576c58SThomas Huth long kvm_arch_fault_in_page(struct kvm_vcpu *vcpu, gpa_t gpa, int writable) 246124eb3a82SDominik Dingel { 2462527e30b4SMartin Schwidefsky return gmap_fault(vcpu->arch.gmap, gpa, 2463527e30b4SMartin Schwidefsky writable ? FAULT_FLAG_WRITE : 0); 246424eb3a82SDominik Dingel } 246524eb3a82SDominik Dingel 24663c038e6bSDominik Dingel static void __kvm_inject_pfault_token(struct kvm_vcpu *vcpu, bool start_token, 24673c038e6bSDominik Dingel unsigned long token) 24683c038e6bSDominik Dingel { 24693c038e6bSDominik Dingel struct kvm_s390_interrupt inti; 2470383d0b05SJens Freimann struct kvm_s390_irq irq; 24713c038e6bSDominik Dingel 24723c038e6bSDominik Dingel if (start_token) { 2473383d0b05SJens Freimann irq.u.ext.ext_params2 = token; 2474383d0b05SJens Freimann irq.type = KVM_S390_INT_PFAULT_INIT; 2475383d0b05SJens Freimann WARN_ON_ONCE(kvm_s390_inject_vcpu(vcpu, &irq)); 24763c038e6bSDominik Dingel } else { 24773c038e6bSDominik Dingel inti.type = KVM_S390_INT_PFAULT_DONE; 2478383d0b05SJens Freimann inti.parm64 = token; 24793c038e6bSDominik Dingel WARN_ON_ONCE(kvm_s390_inject_vm(vcpu->kvm, &inti)); 24803c038e6bSDominik Dingel } 24813c038e6bSDominik Dingel } 24823c038e6bSDominik Dingel 24833c038e6bSDominik Dingel void kvm_arch_async_page_not_present(struct kvm_vcpu *vcpu, 24843c038e6bSDominik Dingel struct kvm_async_pf *work) 24853c038e6bSDominik Dingel { 24863c038e6bSDominik Dingel trace_kvm_s390_pfault_init(vcpu, work->arch.pfault_token); 24873c038e6bSDominik Dingel __kvm_inject_pfault_token(vcpu, true, work->arch.pfault_token); 24883c038e6bSDominik Dingel } 24893c038e6bSDominik Dingel 24903c038e6bSDominik Dingel void kvm_arch_async_page_present(struct kvm_vcpu *vcpu, 24913c038e6bSDominik Dingel struct kvm_async_pf *work) 24923c038e6bSDominik Dingel { 24933c038e6bSDominik Dingel trace_kvm_s390_pfault_done(vcpu, work->arch.pfault_token); 24943c038e6bSDominik Dingel __kvm_inject_pfault_token(vcpu, false, work->arch.pfault_token); 24953c038e6bSDominik Dingel } 24963c038e6bSDominik Dingel 24973c038e6bSDominik Dingel void kvm_arch_async_page_ready(struct kvm_vcpu *vcpu, 24983c038e6bSDominik Dingel struct kvm_async_pf *work) 24993c038e6bSDominik Dingel { 25003c038e6bSDominik Dingel /* s390 will always inject the page directly */ 25013c038e6bSDominik Dingel } 25023c038e6bSDominik Dingel 25033c038e6bSDominik Dingel bool kvm_arch_can_inject_async_page_present(struct kvm_vcpu *vcpu) 25043c038e6bSDominik Dingel { 25053c038e6bSDominik Dingel /* 25063c038e6bSDominik Dingel * s390 will always inject the page directly, 25073c038e6bSDominik Dingel * but we still want check_async_completion to cleanup 25083c038e6bSDominik Dingel */ 25093c038e6bSDominik Dingel return true; 25103c038e6bSDominik Dingel } 25113c038e6bSDominik Dingel 25123c038e6bSDominik Dingel static int kvm_arch_setup_async_pf(struct kvm_vcpu *vcpu) 25133c038e6bSDominik Dingel { 25143c038e6bSDominik Dingel hva_t hva; 25153c038e6bSDominik Dingel struct kvm_arch_async_pf arch; 25163c038e6bSDominik Dingel int rc; 25173c038e6bSDominik Dingel 25183c038e6bSDominik Dingel if (vcpu->arch.pfault_token == KVM_S390_PFAULT_TOKEN_INVALID) 25193c038e6bSDominik Dingel return 0; 25203c038e6bSDominik Dingel if ((vcpu->arch.sie_block->gpsw.mask & vcpu->arch.pfault_select) != 25213c038e6bSDominik Dingel vcpu->arch.pfault_compare) 25223c038e6bSDominik Dingel return 0; 25233c038e6bSDominik Dingel if (psw_extint_disabled(vcpu)) 25243c038e6bSDominik Dingel return 0; 25259a022067SDavid Hildenbrand if (kvm_s390_vcpu_has_irq(vcpu, 0)) 25263c038e6bSDominik Dingel return 0; 25273c038e6bSDominik Dingel if (!(vcpu->arch.sie_block->gcr[0] & 0x200ul)) 25283c038e6bSDominik Dingel return 0; 25293c038e6bSDominik Dingel if (!vcpu->arch.gmap->pfault_enabled) 25303c038e6bSDominik Dingel return 0; 25313c038e6bSDominik Dingel 253281480cc1SHeiko Carstens hva = gfn_to_hva(vcpu->kvm, gpa_to_gfn(current->thread.gmap_addr)); 253381480cc1SHeiko Carstens hva += current->thread.gmap_addr & ~PAGE_MASK; 253481480cc1SHeiko Carstens if (read_guest_real(vcpu, vcpu->arch.pfault_token, &arch.pfault_token, 8)) 25353c038e6bSDominik Dingel return 0; 25363c038e6bSDominik Dingel 25373c038e6bSDominik Dingel rc = kvm_setup_async_pf(vcpu, current->thread.gmap_addr, hva, &arch); 25383c038e6bSDominik Dingel return rc; 25393c038e6bSDominik Dingel } 25403c038e6bSDominik Dingel 25413fb4c40fSThomas Huth static int vcpu_pre_run(struct kvm_vcpu *vcpu) 2542b0c632dbSHeiko Carstens { 25433fb4c40fSThomas Huth int rc, cpuflags; 2544e168bf8dSCarsten Otte 25453c038e6bSDominik Dingel /* 25463c038e6bSDominik Dingel * On s390 notifications for arriving pages will be delivered directly 25473c038e6bSDominik Dingel * to the guest but the house keeping for completed pfaults is 25483c038e6bSDominik Dingel * handled outside the worker. 25493c038e6bSDominik Dingel */ 25503c038e6bSDominik Dingel kvm_check_async_pf_completion(vcpu); 25513c038e6bSDominik Dingel 25527ec7c8c7SChristian Borntraeger vcpu->arch.sie_block->gg14 = vcpu->run->s.regs.gprs[14]; 25537ec7c8c7SChristian Borntraeger vcpu->arch.sie_block->gg15 = vcpu->run->s.regs.gprs[15]; 2554b0c632dbSHeiko Carstens 2555b0c632dbSHeiko Carstens if (need_resched()) 2556b0c632dbSHeiko Carstens schedule(); 2557b0c632dbSHeiko Carstens 2558d3a73acbSMartin Schwidefsky if (test_cpu_flag(CIF_MCCK_PENDING)) 255971cde587SChristian Borntraeger s390_handle_mcck(); 256071cde587SChristian Borntraeger 256179395031SJens Freimann if (!kvm_is_ucontrol(vcpu->kvm)) { 256279395031SJens Freimann rc = kvm_s390_deliver_pending_interrupts(vcpu); 256379395031SJens Freimann if (rc) 256479395031SJens Freimann return rc; 256579395031SJens Freimann } 25660ff31867SCarsten Otte 25672c70fe44SChristian Borntraeger rc = kvm_s390_handle_requests(vcpu); 25682c70fe44SChristian Borntraeger if (rc) 25692c70fe44SChristian Borntraeger return rc; 25702c70fe44SChristian Borntraeger 257127291e21SDavid Hildenbrand if (guestdbg_enabled(vcpu)) { 257227291e21SDavid Hildenbrand kvm_s390_backup_guest_per_regs(vcpu); 257327291e21SDavid Hildenbrand kvm_s390_patch_guest_per_regs(vcpu); 257427291e21SDavid Hildenbrand } 257527291e21SDavid Hildenbrand 2576b0c632dbSHeiko Carstens vcpu->arch.sie_block->icptcode = 0; 25773fb4c40fSThomas Huth cpuflags = atomic_read(&vcpu->arch.sie_block->cpuflags); 25783fb4c40fSThomas Huth VCPU_EVENT(vcpu, 6, "entering sie flags %x", cpuflags); 25793fb4c40fSThomas Huth trace_kvm_s390_sie_enter(vcpu, cpuflags); 25802b29a9fdSDominik Dingel 25813fb4c40fSThomas Huth return 0; 25823fb4c40fSThomas Huth } 25833fb4c40fSThomas Huth 2584492d8642SThomas Huth static int vcpu_post_run_fault_in_sie(struct kvm_vcpu *vcpu) 2585492d8642SThomas Huth { 258656317920SDavid Hildenbrand struct kvm_s390_pgm_info pgm_info = { 258756317920SDavid Hildenbrand .code = PGM_ADDRESSING, 258856317920SDavid Hildenbrand }; 258956317920SDavid Hildenbrand u8 opcode, ilen; 2590492d8642SThomas Huth int rc; 2591492d8642SThomas Huth 2592492d8642SThomas Huth VCPU_EVENT(vcpu, 3, "%s", "fault in sie instruction"); 2593492d8642SThomas Huth trace_kvm_s390_sie_fault(vcpu); 2594492d8642SThomas Huth 2595492d8642SThomas Huth /* 2596492d8642SThomas Huth * We want to inject an addressing exception, which is defined as a 2597492d8642SThomas Huth * suppressing or terminating exception. However, since we came here 2598492d8642SThomas Huth * by a DAT access exception, the PSW still points to the faulting 2599492d8642SThomas Huth * instruction since DAT exceptions are nullifying. So we've got 2600492d8642SThomas Huth * to look up the current opcode to get the length of the instruction 2601492d8642SThomas Huth * to be able to forward the PSW. 2602492d8642SThomas Huth */ 260365977322SDavid Hildenbrand rc = read_guest_instr(vcpu, &opcode, 1); 260456317920SDavid Hildenbrand ilen = insn_length(opcode); 26059b0d721aSDavid Hildenbrand if (rc < 0) { 26069b0d721aSDavid Hildenbrand return rc; 26079b0d721aSDavid Hildenbrand } else if (rc) { 26089b0d721aSDavid Hildenbrand /* Instruction-Fetching Exceptions - we can't detect the ilen. 26099b0d721aSDavid Hildenbrand * Forward by arbitrary ilc, injection will take care of 26109b0d721aSDavid Hildenbrand * nullification if necessary. 26119b0d721aSDavid Hildenbrand */ 26129b0d721aSDavid Hildenbrand pgm_info = vcpu->arch.pgm; 26139b0d721aSDavid Hildenbrand ilen = 4; 26149b0d721aSDavid Hildenbrand } 261556317920SDavid Hildenbrand pgm_info.flags = ilen | KVM_S390_PGM_FLAGS_ILC_VALID; 261656317920SDavid Hildenbrand kvm_s390_forward_psw(vcpu, ilen); 261756317920SDavid Hildenbrand return kvm_s390_inject_prog_irq(vcpu, &pgm_info); 2618492d8642SThomas Huth } 2619492d8642SThomas Huth 26203fb4c40fSThomas Huth static int vcpu_post_run(struct kvm_vcpu *vcpu, int exit_reason) 26213fb4c40fSThomas Huth { 26222b29a9fdSDominik Dingel VCPU_EVENT(vcpu, 6, "exit sie icptcode %d", 26232b29a9fdSDominik Dingel vcpu->arch.sie_block->icptcode); 26242b29a9fdSDominik Dingel trace_kvm_s390_sie_exit(vcpu, vcpu->arch.sie_block->icptcode); 26252b29a9fdSDominik Dingel 262627291e21SDavid Hildenbrand if (guestdbg_enabled(vcpu)) 262727291e21SDavid Hildenbrand kvm_s390_restore_guest_per_regs(vcpu); 262827291e21SDavid Hildenbrand 26297ec7c8c7SChristian Borntraeger vcpu->run->s.regs.gprs[14] = vcpu->arch.sie_block->gg14; 26307ec7c8c7SChristian Borntraeger vcpu->run->s.regs.gprs[15] = vcpu->arch.sie_block->gg15; 263171f116bfSDavid Hildenbrand 263271f116bfSDavid Hildenbrand if (vcpu->arch.sie_block->icptcode > 0) { 263371f116bfSDavid Hildenbrand int rc = kvm_handle_sie_intercept(vcpu); 263471f116bfSDavid Hildenbrand 263571f116bfSDavid Hildenbrand if (rc != -EOPNOTSUPP) 263671f116bfSDavid Hildenbrand return rc; 263771f116bfSDavid Hildenbrand vcpu->run->exit_reason = KVM_EXIT_S390_SIEIC; 263871f116bfSDavid Hildenbrand vcpu->run->s390_sieic.icptcode = vcpu->arch.sie_block->icptcode; 263971f116bfSDavid Hildenbrand vcpu->run->s390_sieic.ipa = vcpu->arch.sie_block->ipa; 264071f116bfSDavid Hildenbrand vcpu->run->s390_sieic.ipb = vcpu->arch.sie_block->ipb; 264171f116bfSDavid Hildenbrand return -EREMOTE; 264271f116bfSDavid Hildenbrand } else if (exit_reason != -EFAULT) { 264371f116bfSDavid Hildenbrand vcpu->stat.exit_null++; 264471f116bfSDavid Hildenbrand return 0; 2645210b1607SThomas Huth } else if (kvm_is_ucontrol(vcpu->kvm)) { 2646210b1607SThomas Huth vcpu->run->exit_reason = KVM_EXIT_S390_UCONTROL; 2647210b1607SThomas Huth vcpu->run->s390_ucontrol.trans_exc_code = 2648210b1607SThomas Huth current->thread.gmap_addr; 2649210b1607SThomas Huth vcpu->run->s390_ucontrol.pgm_code = 0x10; 265071f116bfSDavid Hildenbrand return -EREMOTE; 265124eb3a82SDominik Dingel } else if (current->thread.gmap_pfault) { 26523c038e6bSDominik Dingel trace_kvm_s390_major_guest_pfault(vcpu); 265324eb3a82SDominik Dingel current->thread.gmap_pfault = 0; 265471f116bfSDavid Hildenbrand if (kvm_arch_setup_async_pf(vcpu)) 265571f116bfSDavid Hildenbrand return 0; 265671f116bfSDavid Hildenbrand return kvm_arch_fault_in_page(vcpu, current->thread.gmap_addr, 1); 2657fa576c58SThomas Huth } 265871f116bfSDavid Hildenbrand return vcpu_post_run_fault_in_sie(vcpu); 26593fb4c40fSThomas Huth } 26603fb4c40fSThomas Huth 26613fb4c40fSThomas Huth static int __vcpu_run(struct kvm_vcpu *vcpu) 26623fb4c40fSThomas Huth { 26633fb4c40fSThomas Huth int rc, exit_reason; 26643fb4c40fSThomas Huth 2665800c1065SThomas Huth /* 2666800c1065SThomas Huth * We try to hold kvm->srcu during most of vcpu_run (except when run- 2667800c1065SThomas Huth * ning the guest), so that memslots (and other stuff) are protected 2668800c1065SThomas Huth */ 2669800c1065SThomas Huth vcpu->srcu_idx = srcu_read_lock(&vcpu->kvm->srcu); 2670800c1065SThomas Huth 2671a76ccff6SThomas Huth do { 26723fb4c40fSThomas Huth rc = vcpu_pre_run(vcpu); 26733fb4c40fSThomas Huth if (rc) 2674a76ccff6SThomas Huth break; 26753fb4c40fSThomas Huth 2676800c1065SThomas Huth srcu_read_unlock(&vcpu->kvm->srcu, vcpu->srcu_idx); 26773fb4c40fSThomas Huth /* 2678a76ccff6SThomas Huth * As PF_VCPU will be used in fault handler, between 2679a76ccff6SThomas Huth * guest_enter and guest_exit should be no uaccess. 26803fb4c40fSThomas Huth */ 26810097d12eSChristian Borntraeger local_irq_disable(); 26826edaa530SPaolo Bonzini guest_enter_irqoff(); 2683db0758b2SDavid Hildenbrand __disable_cpu_timer_accounting(vcpu); 26840097d12eSChristian Borntraeger local_irq_enable(); 2685a76ccff6SThomas Huth exit_reason = sie64a(vcpu->arch.sie_block, 2686a76ccff6SThomas Huth vcpu->run->s.regs.gprs); 26870097d12eSChristian Borntraeger local_irq_disable(); 2688db0758b2SDavid Hildenbrand __enable_cpu_timer_accounting(vcpu); 26896edaa530SPaolo Bonzini guest_exit_irqoff(); 26900097d12eSChristian Borntraeger local_irq_enable(); 2691800c1065SThomas Huth vcpu->srcu_idx = srcu_read_lock(&vcpu->kvm->srcu); 26923fb4c40fSThomas Huth 26933fb4c40fSThomas Huth rc = vcpu_post_run(vcpu, exit_reason); 269427291e21SDavid Hildenbrand } while (!signal_pending(current) && !guestdbg_exit_pending(vcpu) && !rc); 26953fb4c40fSThomas Huth 2696800c1065SThomas Huth srcu_read_unlock(&vcpu->kvm->srcu, vcpu->srcu_idx); 2697e168bf8dSCarsten Otte return rc; 2698b0c632dbSHeiko Carstens } 2699b0c632dbSHeiko Carstens 2700b028ee3eSDavid Hildenbrand static void sync_regs(struct kvm_vcpu *vcpu, struct kvm_run *kvm_run) 2701b028ee3eSDavid Hildenbrand { 2702b028ee3eSDavid Hildenbrand vcpu->arch.sie_block->gpsw.mask = kvm_run->psw_mask; 2703b028ee3eSDavid Hildenbrand vcpu->arch.sie_block->gpsw.addr = kvm_run->psw_addr; 2704b028ee3eSDavid Hildenbrand if (kvm_run->kvm_dirty_regs & KVM_SYNC_PREFIX) 2705b028ee3eSDavid Hildenbrand kvm_s390_set_prefix(vcpu, kvm_run->s.regs.prefix); 2706b028ee3eSDavid Hildenbrand if (kvm_run->kvm_dirty_regs & KVM_SYNC_CRS) { 2707b028ee3eSDavid Hildenbrand memcpy(&vcpu->arch.sie_block->gcr, &kvm_run->s.regs.crs, 128); 2708d3d692c8SDavid Hildenbrand /* some control register changes require a tlb flush */ 2709d3d692c8SDavid Hildenbrand kvm_make_request(KVM_REQ_TLB_FLUSH, vcpu); 2710b028ee3eSDavid Hildenbrand } 2711b028ee3eSDavid Hildenbrand if (kvm_run->kvm_dirty_regs & KVM_SYNC_ARCH0) { 27124287f247SDavid Hildenbrand kvm_s390_set_cpu_timer(vcpu, kvm_run->s.regs.cputm); 2713b028ee3eSDavid Hildenbrand vcpu->arch.sie_block->ckc = kvm_run->s.regs.ckc; 2714b028ee3eSDavid Hildenbrand vcpu->arch.sie_block->todpr = kvm_run->s.regs.todpr; 2715b028ee3eSDavid Hildenbrand vcpu->arch.sie_block->pp = kvm_run->s.regs.pp; 2716b028ee3eSDavid Hildenbrand vcpu->arch.sie_block->gbea = kvm_run->s.regs.gbea; 2717b028ee3eSDavid Hildenbrand } 2718b028ee3eSDavid Hildenbrand if (kvm_run->kvm_dirty_regs & KVM_SYNC_PFAULT) { 2719b028ee3eSDavid Hildenbrand vcpu->arch.pfault_token = kvm_run->s.regs.pft; 2720b028ee3eSDavid Hildenbrand vcpu->arch.pfault_select = kvm_run->s.regs.pfs; 2721b028ee3eSDavid Hildenbrand vcpu->arch.pfault_compare = kvm_run->s.regs.pfc; 27229fbd8082SDavid Hildenbrand if (vcpu->arch.pfault_token == KVM_S390_PFAULT_TOKEN_INVALID) 27239fbd8082SDavid Hildenbrand kvm_clear_async_pf_completion_queue(vcpu); 2724b028ee3eSDavid Hildenbrand } 272580cd8763SFan Zhang /* 272680cd8763SFan Zhang * If userspace sets the riccb (e.g. after migration) to a valid state, 272780cd8763SFan Zhang * we should enable RI here instead of doing the lazy enablement. 272880cd8763SFan Zhang */ 272980cd8763SFan Zhang if ((kvm_run->kvm_dirty_regs & KVM_SYNC_RICCB) && 273080cd8763SFan Zhang test_kvm_facility(vcpu->kvm, 64)) { 273180cd8763SFan Zhang struct runtime_instr_cb *riccb = 273280cd8763SFan Zhang (struct runtime_instr_cb *) &kvm_run->s.regs.riccb; 273380cd8763SFan Zhang 273480cd8763SFan Zhang if (riccb->valid) 273580cd8763SFan Zhang vcpu->arch.sie_block->ecb3 |= 0x01; 273680cd8763SFan Zhang } 2737*31d8b8d4SChristian Borntraeger save_access_regs(vcpu->arch.host_acrs); 2738*31d8b8d4SChristian Borntraeger restore_access_regs(vcpu->run->s.regs.acrs); 273980cd8763SFan Zhang 2740b028ee3eSDavid Hildenbrand kvm_run->kvm_dirty_regs = 0; 2741b028ee3eSDavid Hildenbrand } 2742b028ee3eSDavid Hildenbrand 2743b028ee3eSDavid Hildenbrand static void store_regs(struct kvm_vcpu *vcpu, struct kvm_run *kvm_run) 2744b028ee3eSDavid Hildenbrand { 2745b028ee3eSDavid Hildenbrand kvm_run->psw_mask = vcpu->arch.sie_block->gpsw.mask; 2746b028ee3eSDavid Hildenbrand kvm_run->psw_addr = vcpu->arch.sie_block->gpsw.addr; 2747b028ee3eSDavid Hildenbrand kvm_run->s.regs.prefix = kvm_s390_get_prefix(vcpu); 2748b028ee3eSDavid Hildenbrand memcpy(&kvm_run->s.regs.crs, &vcpu->arch.sie_block->gcr, 128); 27494287f247SDavid Hildenbrand kvm_run->s.regs.cputm = kvm_s390_get_cpu_timer(vcpu); 2750b028ee3eSDavid Hildenbrand kvm_run->s.regs.ckc = vcpu->arch.sie_block->ckc; 2751b028ee3eSDavid Hildenbrand kvm_run->s.regs.todpr = vcpu->arch.sie_block->todpr; 2752b028ee3eSDavid Hildenbrand kvm_run->s.regs.pp = vcpu->arch.sie_block->pp; 2753b028ee3eSDavid Hildenbrand kvm_run->s.regs.gbea = vcpu->arch.sie_block->gbea; 2754b028ee3eSDavid Hildenbrand kvm_run->s.regs.pft = vcpu->arch.pfault_token; 2755b028ee3eSDavid Hildenbrand kvm_run->s.regs.pfs = vcpu->arch.pfault_select; 2756b028ee3eSDavid Hildenbrand kvm_run->s.regs.pfc = vcpu->arch.pfault_compare; 2757*31d8b8d4SChristian Borntraeger save_access_regs(vcpu->run->s.regs.acrs); 2758*31d8b8d4SChristian Borntraeger restore_access_regs(vcpu->arch.host_acrs); 2759b028ee3eSDavid Hildenbrand } 2760b028ee3eSDavid Hildenbrand 2761b0c632dbSHeiko Carstens int kvm_arch_vcpu_ioctl_run(struct kvm_vcpu *vcpu, struct kvm_run *kvm_run) 2762b0c632dbSHeiko Carstens { 27638f2abe6aSChristian Borntraeger int rc; 2764b0c632dbSHeiko Carstens sigset_t sigsaved; 2765b0c632dbSHeiko Carstens 276627291e21SDavid Hildenbrand if (guestdbg_exit_pending(vcpu)) { 276727291e21SDavid Hildenbrand kvm_s390_prepare_debug_exit(vcpu); 276827291e21SDavid Hildenbrand return 0; 276927291e21SDavid Hildenbrand } 277027291e21SDavid Hildenbrand 2771b0c632dbSHeiko Carstens if (vcpu->sigset_active) 2772b0c632dbSHeiko Carstens sigprocmask(SIG_SETMASK, &vcpu->sigset, &sigsaved); 2773b0c632dbSHeiko Carstens 27746352e4d2SDavid Hildenbrand if (!kvm_s390_user_cpu_state_ctrl(vcpu->kvm)) { 27756852d7b6SDavid Hildenbrand kvm_s390_vcpu_start(vcpu); 27766352e4d2SDavid Hildenbrand } else if (is_vcpu_stopped(vcpu)) { 2777ea2cdd27SDavid Hildenbrand pr_err_ratelimited("can't run stopped vcpu %d\n", 27786352e4d2SDavid Hildenbrand vcpu->vcpu_id); 27796352e4d2SDavid Hildenbrand return -EINVAL; 27806352e4d2SDavid Hildenbrand } 2781b0c632dbSHeiko Carstens 2782b028ee3eSDavid Hildenbrand sync_regs(vcpu, kvm_run); 2783db0758b2SDavid Hildenbrand enable_cpu_timer_accounting(vcpu); 2784d7b0b5ebSCarsten Otte 2785dab4079dSHeiko Carstens might_fault(); 2786e168bf8dSCarsten Otte rc = __vcpu_run(vcpu); 27879ace903dSChristian Ehrhardt 2788b1d16c49SChristian Ehrhardt if (signal_pending(current) && !rc) { 2789b1d16c49SChristian Ehrhardt kvm_run->exit_reason = KVM_EXIT_INTR; 27908f2abe6aSChristian Borntraeger rc = -EINTR; 2791b1d16c49SChristian Ehrhardt } 27928f2abe6aSChristian Borntraeger 279327291e21SDavid Hildenbrand if (guestdbg_exit_pending(vcpu) && !rc) { 279427291e21SDavid Hildenbrand kvm_s390_prepare_debug_exit(vcpu); 279527291e21SDavid Hildenbrand rc = 0; 279627291e21SDavid Hildenbrand } 279727291e21SDavid Hildenbrand 27988f2abe6aSChristian Borntraeger if (rc == -EREMOTE) { 279971f116bfSDavid Hildenbrand /* userspace support is needed, kvm_run has been prepared */ 28008f2abe6aSChristian Borntraeger rc = 0; 28018f2abe6aSChristian Borntraeger } 28028f2abe6aSChristian Borntraeger 2803db0758b2SDavid Hildenbrand disable_cpu_timer_accounting(vcpu); 2804b028ee3eSDavid Hildenbrand store_regs(vcpu, kvm_run); 2805d7b0b5ebSCarsten Otte 2806b0c632dbSHeiko Carstens if (vcpu->sigset_active) 2807b0c632dbSHeiko Carstens sigprocmask(SIG_SETMASK, &sigsaved, NULL); 2808b0c632dbSHeiko Carstens 2809b0c632dbSHeiko Carstens vcpu->stat.exit_userspace++; 28107e8e6ab4SHeiko Carstens return rc; 2811b0c632dbSHeiko Carstens } 2812b0c632dbSHeiko Carstens 2813b0c632dbSHeiko Carstens /* 2814b0c632dbSHeiko Carstens * store status at address 2815b0c632dbSHeiko Carstens * we use have two special cases: 2816b0c632dbSHeiko Carstens * KVM_S390_STORE_STATUS_NOADDR: -> 0x1200 on 64 bit 2817b0c632dbSHeiko Carstens * KVM_S390_STORE_STATUS_PREFIXED: -> prefix 2818b0c632dbSHeiko Carstens */ 2819d0bce605SHeiko Carstens int kvm_s390_store_status_unloaded(struct kvm_vcpu *vcpu, unsigned long gpa) 2820b0c632dbSHeiko Carstens { 2821092670cdSCarsten Otte unsigned char archmode = 1; 28229abc2a08SDavid Hildenbrand freg_t fprs[NUM_FPRS]; 2823fda902cbSMichael Mueller unsigned int px; 28244287f247SDavid Hildenbrand u64 clkcomp, cputm; 2825d0bce605SHeiko Carstens int rc; 2826b0c632dbSHeiko Carstens 2827d9a3a09aSMartin Schwidefsky px = kvm_s390_get_prefix(vcpu); 2828d0bce605SHeiko Carstens if (gpa == KVM_S390_STORE_STATUS_NOADDR) { 2829d0bce605SHeiko Carstens if (write_guest_abs(vcpu, 163, &archmode, 1)) 2830b0c632dbSHeiko Carstens return -EFAULT; 2831d9a3a09aSMartin Schwidefsky gpa = 0; 2832d0bce605SHeiko Carstens } else if (gpa == KVM_S390_STORE_STATUS_PREFIXED) { 2833d0bce605SHeiko Carstens if (write_guest_real(vcpu, 163, &archmode, 1)) 2834b0c632dbSHeiko Carstens return -EFAULT; 2835d9a3a09aSMartin Schwidefsky gpa = px; 2836d9a3a09aSMartin Schwidefsky } else 2837d9a3a09aSMartin Schwidefsky gpa -= __LC_FPREGS_SAVE_AREA; 28389abc2a08SDavid Hildenbrand 28399abc2a08SDavid Hildenbrand /* manually convert vector registers if necessary */ 28409abc2a08SDavid Hildenbrand if (MACHINE_HAS_VX) { 28419522b37fSDavid Hildenbrand convert_vx_to_fp(fprs, (__vector128 *) vcpu->run->s.regs.vrs); 2842d9a3a09aSMartin Schwidefsky rc = write_guest_abs(vcpu, gpa + __LC_FPREGS_SAVE_AREA, 28439abc2a08SDavid Hildenbrand fprs, 128); 28449abc2a08SDavid Hildenbrand } else { 28459abc2a08SDavid Hildenbrand rc = write_guest_abs(vcpu, gpa + __LC_FPREGS_SAVE_AREA, 28466fd8e67dSDavid Hildenbrand vcpu->run->s.regs.fprs, 128); 28479abc2a08SDavid Hildenbrand } 2848d9a3a09aSMartin Schwidefsky rc |= write_guest_abs(vcpu, gpa + __LC_GPREGS_SAVE_AREA, 2849d0bce605SHeiko Carstens vcpu->run->s.regs.gprs, 128); 2850d9a3a09aSMartin Schwidefsky rc |= write_guest_abs(vcpu, gpa + __LC_PSW_SAVE_AREA, 2851d0bce605SHeiko Carstens &vcpu->arch.sie_block->gpsw, 16); 2852d9a3a09aSMartin Schwidefsky rc |= write_guest_abs(vcpu, gpa + __LC_PREFIX_SAVE_AREA, 2853fda902cbSMichael Mueller &px, 4); 2854d9a3a09aSMartin Schwidefsky rc |= write_guest_abs(vcpu, gpa + __LC_FP_CREG_SAVE_AREA, 28559abc2a08SDavid Hildenbrand &vcpu->run->s.regs.fpc, 4); 2856d9a3a09aSMartin Schwidefsky rc |= write_guest_abs(vcpu, gpa + __LC_TOD_PROGREG_SAVE_AREA, 2857d0bce605SHeiko Carstens &vcpu->arch.sie_block->todpr, 4); 28584287f247SDavid Hildenbrand cputm = kvm_s390_get_cpu_timer(vcpu); 2859d9a3a09aSMartin Schwidefsky rc |= write_guest_abs(vcpu, gpa + __LC_CPU_TIMER_SAVE_AREA, 28604287f247SDavid Hildenbrand &cputm, 8); 2861178bd789SThomas Huth clkcomp = vcpu->arch.sie_block->ckc >> 8; 2862d9a3a09aSMartin Schwidefsky rc |= write_guest_abs(vcpu, gpa + __LC_CLOCK_COMP_SAVE_AREA, 2863d0bce605SHeiko Carstens &clkcomp, 8); 2864d9a3a09aSMartin Schwidefsky rc |= write_guest_abs(vcpu, gpa + __LC_AREGS_SAVE_AREA, 2865d0bce605SHeiko Carstens &vcpu->run->s.regs.acrs, 64); 2866d9a3a09aSMartin Schwidefsky rc |= write_guest_abs(vcpu, gpa + __LC_CREGS_SAVE_AREA, 2867d0bce605SHeiko Carstens &vcpu->arch.sie_block->gcr, 128); 2868d0bce605SHeiko Carstens return rc ? -EFAULT : 0; 2869b0c632dbSHeiko Carstens } 2870b0c632dbSHeiko Carstens 2871e879892cSThomas Huth int kvm_s390_vcpu_store_status(struct kvm_vcpu *vcpu, unsigned long addr) 2872e879892cSThomas Huth { 2873e879892cSThomas Huth /* 2874e879892cSThomas Huth * The guest FPRS and ACRS are in the host FPRS/ACRS due to the lazy 2875*31d8b8d4SChristian Borntraeger * switch in the run ioctl. Let's update our copies before we save 2876e879892cSThomas Huth * it into the save area 2877e879892cSThomas Huth */ 2878d0164ee2SHendrik Brueckner save_fpu_regs(); 28799abc2a08SDavid Hildenbrand vcpu->run->s.regs.fpc = current->thread.fpu.fpc; 2880e879892cSThomas Huth save_access_regs(vcpu->run->s.regs.acrs); 2881e879892cSThomas Huth 2882e879892cSThomas Huth return kvm_s390_store_status_unloaded(vcpu, addr); 2883e879892cSThomas Huth } 2884e879892cSThomas Huth 28858ad35755SDavid Hildenbrand static void __disable_ibs_on_vcpu(struct kvm_vcpu *vcpu) 28868ad35755SDavid Hildenbrand { 28878ad35755SDavid Hildenbrand kvm_check_request(KVM_REQ_ENABLE_IBS, vcpu); 28888e236546SChristian Borntraeger kvm_s390_sync_request(KVM_REQ_DISABLE_IBS, vcpu); 28898ad35755SDavid Hildenbrand } 28908ad35755SDavid Hildenbrand 28918ad35755SDavid Hildenbrand static void __disable_ibs_on_all_vcpus(struct kvm *kvm) 28928ad35755SDavid Hildenbrand { 28938ad35755SDavid Hildenbrand unsigned int i; 28948ad35755SDavid Hildenbrand struct kvm_vcpu *vcpu; 28958ad35755SDavid Hildenbrand 28968ad35755SDavid Hildenbrand kvm_for_each_vcpu(i, vcpu, kvm) { 28978ad35755SDavid Hildenbrand __disable_ibs_on_vcpu(vcpu); 28988ad35755SDavid Hildenbrand } 28998ad35755SDavid Hildenbrand } 29008ad35755SDavid Hildenbrand 29018ad35755SDavid Hildenbrand static void __enable_ibs_on_vcpu(struct kvm_vcpu *vcpu) 29028ad35755SDavid Hildenbrand { 290309a400e7SDavid Hildenbrand if (!sclp.has_ibs) 290409a400e7SDavid Hildenbrand return; 29058ad35755SDavid Hildenbrand kvm_check_request(KVM_REQ_DISABLE_IBS, vcpu); 29068e236546SChristian Borntraeger kvm_s390_sync_request(KVM_REQ_ENABLE_IBS, vcpu); 29078ad35755SDavid Hildenbrand } 29088ad35755SDavid Hildenbrand 29096852d7b6SDavid Hildenbrand void kvm_s390_vcpu_start(struct kvm_vcpu *vcpu) 29106852d7b6SDavid Hildenbrand { 29118ad35755SDavid Hildenbrand int i, online_vcpus, started_vcpus = 0; 29128ad35755SDavid Hildenbrand 29138ad35755SDavid Hildenbrand if (!is_vcpu_stopped(vcpu)) 29148ad35755SDavid Hildenbrand return; 29158ad35755SDavid Hildenbrand 29166852d7b6SDavid Hildenbrand trace_kvm_s390_vcpu_start_stop(vcpu->vcpu_id, 1); 29178ad35755SDavid Hildenbrand /* Only one cpu at a time may enter/leave the STOPPED state. */ 2918433b9ee4SDavid Hildenbrand spin_lock(&vcpu->kvm->arch.start_stop_lock); 29198ad35755SDavid Hildenbrand online_vcpus = atomic_read(&vcpu->kvm->online_vcpus); 29208ad35755SDavid Hildenbrand 29218ad35755SDavid Hildenbrand for (i = 0; i < online_vcpus; i++) { 29228ad35755SDavid Hildenbrand if (!is_vcpu_stopped(vcpu->kvm->vcpus[i])) 29238ad35755SDavid Hildenbrand started_vcpus++; 29248ad35755SDavid Hildenbrand } 29258ad35755SDavid Hildenbrand 29268ad35755SDavid Hildenbrand if (started_vcpus == 0) { 29278ad35755SDavid Hildenbrand /* we're the only active VCPU -> speed it up */ 29288ad35755SDavid Hildenbrand __enable_ibs_on_vcpu(vcpu); 29298ad35755SDavid Hildenbrand } else if (started_vcpus == 1) { 29308ad35755SDavid Hildenbrand /* 29318ad35755SDavid Hildenbrand * As we are starting a second VCPU, we have to disable 29328ad35755SDavid Hildenbrand * the IBS facility on all VCPUs to remove potentially 29338ad35755SDavid Hildenbrand * oustanding ENABLE requests. 29348ad35755SDavid Hildenbrand */ 29358ad35755SDavid Hildenbrand __disable_ibs_on_all_vcpus(vcpu->kvm); 29368ad35755SDavid Hildenbrand } 29378ad35755SDavid Hildenbrand 2938805de8f4SPeter Zijlstra atomic_andnot(CPUSTAT_STOPPED, &vcpu->arch.sie_block->cpuflags); 29398ad35755SDavid Hildenbrand /* 29408ad35755SDavid Hildenbrand * Another VCPU might have used IBS while we were offline. 29418ad35755SDavid Hildenbrand * Let's play safe and flush the VCPU at startup. 29428ad35755SDavid Hildenbrand */ 2943d3d692c8SDavid Hildenbrand kvm_make_request(KVM_REQ_TLB_FLUSH, vcpu); 2944433b9ee4SDavid Hildenbrand spin_unlock(&vcpu->kvm->arch.start_stop_lock); 29458ad35755SDavid Hildenbrand return; 29466852d7b6SDavid Hildenbrand } 29476852d7b6SDavid Hildenbrand 29486852d7b6SDavid Hildenbrand void kvm_s390_vcpu_stop(struct kvm_vcpu *vcpu) 29496852d7b6SDavid Hildenbrand { 29508ad35755SDavid Hildenbrand int i, online_vcpus, started_vcpus = 0; 29518ad35755SDavid Hildenbrand struct kvm_vcpu *started_vcpu = NULL; 29528ad35755SDavid Hildenbrand 29538ad35755SDavid Hildenbrand if (is_vcpu_stopped(vcpu)) 29548ad35755SDavid Hildenbrand return; 29558ad35755SDavid Hildenbrand 29566852d7b6SDavid Hildenbrand trace_kvm_s390_vcpu_start_stop(vcpu->vcpu_id, 0); 29578ad35755SDavid Hildenbrand /* Only one cpu at a time may enter/leave the STOPPED state. */ 2958433b9ee4SDavid Hildenbrand spin_lock(&vcpu->kvm->arch.start_stop_lock); 29598ad35755SDavid Hildenbrand online_vcpus = atomic_read(&vcpu->kvm->online_vcpus); 29608ad35755SDavid Hildenbrand 296132f5ff63SDavid Hildenbrand /* SIGP STOP and SIGP STOP AND STORE STATUS has been fully processed */ 29626cddd432SDavid Hildenbrand kvm_s390_clear_stop_irq(vcpu); 296332f5ff63SDavid Hildenbrand 2964805de8f4SPeter Zijlstra atomic_or(CPUSTAT_STOPPED, &vcpu->arch.sie_block->cpuflags); 29658ad35755SDavid Hildenbrand __disable_ibs_on_vcpu(vcpu); 29668ad35755SDavid Hildenbrand 29678ad35755SDavid Hildenbrand for (i = 0; i < online_vcpus; i++) { 29688ad35755SDavid Hildenbrand if (!is_vcpu_stopped(vcpu->kvm->vcpus[i])) { 29698ad35755SDavid Hildenbrand started_vcpus++; 29708ad35755SDavid Hildenbrand started_vcpu = vcpu->kvm->vcpus[i]; 29718ad35755SDavid Hildenbrand } 29728ad35755SDavid Hildenbrand } 29738ad35755SDavid Hildenbrand 29748ad35755SDavid Hildenbrand if (started_vcpus == 1) { 29758ad35755SDavid Hildenbrand /* 29768ad35755SDavid Hildenbrand * As we only have one VCPU left, we want to enable the 29778ad35755SDavid Hildenbrand * IBS facility for that VCPU to speed it up. 29788ad35755SDavid Hildenbrand */ 29798ad35755SDavid Hildenbrand __enable_ibs_on_vcpu(started_vcpu); 29808ad35755SDavid Hildenbrand } 29818ad35755SDavid Hildenbrand 2982433b9ee4SDavid Hildenbrand spin_unlock(&vcpu->kvm->arch.start_stop_lock); 29838ad35755SDavid Hildenbrand return; 29846852d7b6SDavid Hildenbrand } 29856852d7b6SDavid Hildenbrand 2986d6712df9SCornelia Huck static int kvm_vcpu_ioctl_enable_cap(struct kvm_vcpu *vcpu, 2987d6712df9SCornelia Huck struct kvm_enable_cap *cap) 2988d6712df9SCornelia Huck { 2989d6712df9SCornelia Huck int r; 2990d6712df9SCornelia Huck 2991d6712df9SCornelia Huck if (cap->flags) 2992d6712df9SCornelia Huck return -EINVAL; 2993d6712df9SCornelia Huck 2994d6712df9SCornelia Huck switch (cap->cap) { 2995fa6b7fe9SCornelia Huck case KVM_CAP_S390_CSS_SUPPORT: 2996fa6b7fe9SCornelia Huck if (!vcpu->kvm->arch.css_support) { 2997fa6b7fe9SCornelia Huck vcpu->kvm->arch.css_support = 1; 2998c92ea7b9SChristian Borntraeger VM_EVENT(vcpu->kvm, 3, "%s", "ENABLE: CSS support"); 2999fa6b7fe9SCornelia Huck trace_kvm_s390_enable_css(vcpu->kvm); 3000fa6b7fe9SCornelia Huck } 3001fa6b7fe9SCornelia Huck r = 0; 3002fa6b7fe9SCornelia Huck break; 3003d6712df9SCornelia Huck default: 3004d6712df9SCornelia Huck r = -EINVAL; 3005d6712df9SCornelia Huck break; 3006d6712df9SCornelia Huck } 3007d6712df9SCornelia Huck return r; 3008d6712df9SCornelia Huck } 3009d6712df9SCornelia Huck 301041408c28SThomas Huth static long kvm_s390_guest_mem_op(struct kvm_vcpu *vcpu, 301141408c28SThomas Huth struct kvm_s390_mem_op *mop) 301241408c28SThomas Huth { 301341408c28SThomas Huth void __user *uaddr = (void __user *)mop->buf; 301441408c28SThomas Huth void *tmpbuf = NULL; 301541408c28SThomas Huth int r, srcu_idx; 301641408c28SThomas Huth const u64 supported_flags = KVM_S390_MEMOP_F_INJECT_EXCEPTION 301741408c28SThomas Huth | KVM_S390_MEMOP_F_CHECK_ONLY; 301841408c28SThomas Huth 301941408c28SThomas Huth if (mop->flags & ~supported_flags) 302041408c28SThomas Huth return -EINVAL; 302141408c28SThomas Huth 302241408c28SThomas Huth if (mop->size > MEM_OP_MAX_SIZE) 302341408c28SThomas Huth return -E2BIG; 302441408c28SThomas Huth 302541408c28SThomas Huth if (!(mop->flags & KVM_S390_MEMOP_F_CHECK_ONLY)) { 302641408c28SThomas Huth tmpbuf = vmalloc(mop->size); 302741408c28SThomas Huth if (!tmpbuf) 302841408c28SThomas Huth return -ENOMEM; 302941408c28SThomas Huth } 303041408c28SThomas Huth 303141408c28SThomas Huth srcu_idx = srcu_read_lock(&vcpu->kvm->srcu); 303241408c28SThomas Huth 303341408c28SThomas Huth switch (mop->op) { 303441408c28SThomas Huth case KVM_S390_MEMOP_LOGICAL_READ: 303541408c28SThomas Huth if (mop->flags & KVM_S390_MEMOP_F_CHECK_ONLY) { 303692c96321SDavid Hildenbrand r = check_gva_range(vcpu, mop->gaddr, mop->ar, 303792c96321SDavid Hildenbrand mop->size, GACC_FETCH); 303841408c28SThomas Huth break; 303941408c28SThomas Huth } 304041408c28SThomas Huth r = read_guest(vcpu, mop->gaddr, mop->ar, tmpbuf, mop->size); 304141408c28SThomas Huth if (r == 0) { 304241408c28SThomas Huth if (copy_to_user(uaddr, tmpbuf, mop->size)) 304341408c28SThomas Huth r = -EFAULT; 304441408c28SThomas Huth } 304541408c28SThomas Huth break; 304641408c28SThomas Huth case KVM_S390_MEMOP_LOGICAL_WRITE: 304741408c28SThomas Huth if (mop->flags & KVM_S390_MEMOP_F_CHECK_ONLY) { 304892c96321SDavid Hildenbrand r = check_gva_range(vcpu, mop->gaddr, mop->ar, 304992c96321SDavid Hildenbrand mop->size, GACC_STORE); 305041408c28SThomas Huth break; 305141408c28SThomas Huth } 305241408c28SThomas Huth if (copy_from_user(tmpbuf, uaddr, mop->size)) { 305341408c28SThomas Huth r = -EFAULT; 305441408c28SThomas Huth break; 305541408c28SThomas Huth } 305641408c28SThomas Huth r = write_guest(vcpu, mop->gaddr, mop->ar, tmpbuf, mop->size); 305741408c28SThomas Huth break; 305841408c28SThomas Huth default: 305941408c28SThomas Huth r = -EINVAL; 306041408c28SThomas Huth } 306141408c28SThomas Huth 306241408c28SThomas Huth srcu_read_unlock(&vcpu->kvm->srcu, srcu_idx); 306341408c28SThomas Huth 306441408c28SThomas Huth if (r > 0 && (mop->flags & KVM_S390_MEMOP_F_INJECT_EXCEPTION) != 0) 306541408c28SThomas Huth kvm_s390_inject_prog_irq(vcpu, &vcpu->arch.pgm); 306641408c28SThomas Huth 306741408c28SThomas Huth vfree(tmpbuf); 306841408c28SThomas Huth return r; 306941408c28SThomas Huth } 307041408c28SThomas Huth 3071b0c632dbSHeiko Carstens long kvm_arch_vcpu_ioctl(struct file *filp, 3072b0c632dbSHeiko Carstens unsigned int ioctl, unsigned long arg) 3073b0c632dbSHeiko Carstens { 3074b0c632dbSHeiko Carstens struct kvm_vcpu *vcpu = filp->private_data; 3075b0c632dbSHeiko Carstens void __user *argp = (void __user *)arg; 3076800c1065SThomas Huth int idx; 3077bc923cc9SAvi Kivity long r; 3078b0c632dbSHeiko Carstens 307993736624SAvi Kivity switch (ioctl) { 308047b43c52SJens Freimann case KVM_S390_IRQ: { 308147b43c52SJens Freimann struct kvm_s390_irq s390irq; 308247b43c52SJens Freimann 308347b43c52SJens Freimann r = -EFAULT; 308447b43c52SJens Freimann if (copy_from_user(&s390irq, argp, sizeof(s390irq))) 308547b43c52SJens Freimann break; 308647b43c52SJens Freimann r = kvm_s390_inject_vcpu(vcpu, &s390irq); 308747b43c52SJens Freimann break; 308847b43c52SJens Freimann } 308993736624SAvi Kivity case KVM_S390_INTERRUPT: { 3090ba5c1e9bSCarsten Otte struct kvm_s390_interrupt s390int; 3091383d0b05SJens Freimann struct kvm_s390_irq s390irq; 3092ba5c1e9bSCarsten Otte 309393736624SAvi Kivity r = -EFAULT; 3094ba5c1e9bSCarsten Otte if (copy_from_user(&s390int, argp, sizeof(s390int))) 309593736624SAvi Kivity break; 3096383d0b05SJens Freimann if (s390int_to_s390irq(&s390int, &s390irq)) 3097383d0b05SJens Freimann return -EINVAL; 3098383d0b05SJens Freimann r = kvm_s390_inject_vcpu(vcpu, &s390irq); 309993736624SAvi Kivity break; 3100ba5c1e9bSCarsten Otte } 3101b0c632dbSHeiko Carstens case KVM_S390_STORE_STATUS: 3102800c1065SThomas Huth idx = srcu_read_lock(&vcpu->kvm->srcu); 3103bc923cc9SAvi Kivity r = kvm_s390_vcpu_store_status(vcpu, arg); 3104800c1065SThomas Huth srcu_read_unlock(&vcpu->kvm->srcu, idx); 3105bc923cc9SAvi Kivity break; 3106b0c632dbSHeiko Carstens case KVM_S390_SET_INITIAL_PSW: { 3107b0c632dbSHeiko Carstens psw_t psw; 3108b0c632dbSHeiko Carstens 3109bc923cc9SAvi Kivity r = -EFAULT; 3110b0c632dbSHeiko Carstens if (copy_from_user(&psw, argp, sizeof(psw))) 3111bc923cc9SAvi Kivity break; 3112bc923cc9SAvi Kivity r = kvm_arch_vcpu_ioctl_set_initial_psw(vcpu, psw); 3113bc923cc9SAvi Kivity break; 3114b0c632dbSHeiko Carstens } 3115b0c632dbSHeiko Carstens case KVM_S390_INITIAL_RESET: 3116bc923cc9SAvi Kivity r = kvm_arch_vcpu_ioctl_initial_reset(vcpu); 3117bc923cc9SAvi Kivity break; 311814eebd91SCarsten Otte case KVM_SET_ONE_REG: 311914eebd91SCarsten Otte case KVM_GET_ONE_REG: { 312014eebd91SCarsten Otte struct kvm_one_reg reg; 312114eebd91SCarsten Otte r = -EFAULT; 312214eebd91SCarsten Otte if (copy_from_user(®, argp, sizeof(reg))) 312314eebd91SCarsten Otte break; 312414eebd91SCarsten Otte if (ioctl == KVM_SET_ONE_REG) 312514eebd91SCarsten Otte r = kvm_arch_vcpu_ioctl_set_one_reg(vcpu, ®); 312614eebd91SCarsten Otte else 312714eebd91SCarsten Otte r = kvm_arch_vcpu_ioctl_get_one_reg(vcpu, ®); 312814eebd91SCarsten Otte break; 312914eebd91SCarsten Otte } 313027e0393fSCarsten Otte #ifdef CONFIG_KVM_S390_UCONTROL 313127e0393fSCarsten Otte case KVM_S390_UCAS_MAP: { 313227e0393fSCarsten Otte struct kvm_s390_ucas_mapping ucasmap; 313327e0393fSCarsten Otte 313427e0393fSCarsten Otte if (copy_from_user(&ucasmap, argp, sizeof(ucasmap))) { 313527e0393fSCarsten Otte r = -EFAULT; 313627e0393fSCarsten Otte break; 313727e0393fSCarsten Otte } 313827e0393fSCarsten Otte 313927e0393fSCarsten Otte if (!kvm_is_ucontrol(vcpu->kvm)) { 314027e0393fSCarsten Otte r = -EINVAL; 314127e0393fSCarsten Otte break; 314227e0393fSCarsten Otte } 314327e0393fSCarsten Otte 314427e0393fSCarsten Otte r = gmap_map_segment(vcpu->arch.gmap, ucasmap.user_addr, 314527e0393fSCarsten Otte ucasmap.vcpu_addr, ucasmap.length); 314627e0393fSCarsten Otte break; 314727e0393fSCarsten Otte } 314827e0393fSCarsten Otte case KVM_S390_UCAS_UNMAP: { 314927e0393fSCarsten Otte struct kvm_s390_ucas_mapping ucasmap; 315027e0393fSCarsten Otte 315127e0393fSCarsten Otte if (copy_from_user(&ucasmap, argp, sizeof(ucasmap))) { 315227e0393fSCarsten Otte r = -EFAULT; 315327e0393fSCarsten Otte break; 315427e0393fSCarsten Otte } 315527e0393fSCarsten Otte 315627e0393fSCarsten Otte if (!kvm_is_ucontrol(vcpu->kvm)) { 315727e0393fSCarsten Otte r = -EINVAL; 315827e0393fSCarsten Otte break; 315927e0393fSCarsten Otte } 316027e0393fSCarsten Otte 316127e0393fSCarsten Otte r = gmap_unmap_segment(vcpu->arch.gmap, ucasmap.vcpu_addr, 316227e0393fSCarsten Otte ucasmap.length); 316327e0393fSCarsten Otte break; 316427e0393fSCarsten Otte } 316527e0393fSCarsten Otte #endif 3166ccc7910fSCarsten Otte case KVM_S390_VCPU_FAULT: { 3167527e30b4SMartin Schwidefsky r = gmap_fault(vcpu->arch.gmap, arg, 0); 3168ccc7910fSCarsten Otte break; 3169ccc7910fSCarsten Otte } 3170d6712df9SCornelia Huck case KVM_ENABLE_CAP: 3171d6712df9SCornelia Huck { 3172d6712df9SCornelia Huck struct kvm_enable_cap cap; 3173d6712df9SCornelia Huck r = -EFAULT; 3174d6712df9SCornelia Huck if (copy_from_user(&cap, argp, sizeof(cap))) 3175d6712df9SCornelia Huck break; 3176d6712df9SCornelia Huck r = kvm_vcpu_ioctl_enable_cap(vcpu, &cap); 3177d6712df9SCornelia Huck break; 3178d6712df9SCornelia Huck } 317941408c28SThomas Huth case KVM_S390_MEM_OP: { 318041408c28SThomas Huth struct kvm_s390_mem_op mem_op; 318141408c28SThomas Huth 318241408c28SThomas Huth if (copy_from_user(&mem_op, argp, sizeof(mem_op)) == 0) 318341408c28SThomas Huth r = kvm_s390_guest_mem_op(vcpu, &mem_op); 318441408c28SThomas Huth else 318541408c28SThomas Huth r = -EFAULT; 318641408c28SThomas Huth break; 318741408c28SThomas Huth } 3188816c7667SJens Freimann case KVM_S390_SET_IRQ_STATE: { 3189816c7667SJens Freimann struct kvm_s390_irq_state irq_state; 3190816c7667SJens Freimann 3191816c7667SJens Freimann r = -EFAULT; 3192816c7667SJens Freimann if (copy_from_user(&irq_state, argp, sizeof(irq_state))) 3193816c7667SJens Freimann break; 3194816c7667SJens Freimann if (irq_state.len > VCPU_IRQS_MAX_BUF || 3195816c7667SJens Freimann irq_state.len == 0 || 3196816c7667SJens Freimann irq_state.len % sizeof(struct kvm_s390_irq) > 0) { 3197816c7667SJens Freimann r = -EINVAL; 3198816c7667SJens Freimann break; 3199816c7667SJens Freimann } 3200816c7667SJens Freimann r = kvm_s390_set_irq_state(vcpu, 3201816c7667SJens Freimann (void __user *) irq_state.buf, 3202816c7667SJens Freimann irq_state.len); 3203816c7667SJens Freimann break; 3204816c7667SJens Freimann } 3205816c7667SJens Freimann case KVM_S390_GET_IRQ_STATE: { 3206816c7667SJens Freimann struct kvm_s390_irq_state irq_state; 3207816c7667SJens Freimann 3208816c7667SJens Freimann r = -EFAULT; 3209816c7667SJens Freimann if (copy_from_user(&irq_state, argp, sizeof(irq_state))) 3210816c7667SJens Freimann break; 3211816c7667SJens Freimann if (irq_state.len == 0) { 3212816c7667SJens Freimann r = -EINVAL; 3213816c7667SJens Freimann break; 3214816c7667SJens Freimann } 3215816c7667SJens Freimann r = kvm_s390_get_irq_state(vcpu, 3216816c7667SJens Freimann (__u8 __user *) irq_state.buf, 3217816c7667SJens Freimann irq_state.len); 3218816c7667SJens Freimann break; 3219816c7667SJens Freimann } 3220b0c632dbSHeiko Carstens default: 32213e6afcf1SCarsten Otte r = -ENOTTY; 3222b0c632dbSHeiko Carstens } 3223bc923cc9SAvi Kivity return r; 3224b0c632dbSHeiko Carstens } 3225b0c632dbSHeiko Carstens 32265b1c1493SCarsten Otte int kvm_arch_vcpu_fault(struct kvm_vcpu *vcpu, struct vm_fault *vmf) 32275b1c1493SCarsten Otte { 32285b1c1493SCarsten Otte #ifdef CONFIG_KVM_S390_UCONTROL 32295b1c1493SCarsten Otte if ((vmf->pgoff == KVM_S390_SIE_PAGE_OFFSET) 32305b1c1493SCarsten Otte && (kvm_is_ucontrol(vcpu->kvm))) { 32315b1c1493SCarsten Otte vmf->page = virt_to_page(vcpu->arch.sie_block); 32325b1c1493SCarsten Otte get_page(vmf->page); 32335b1c1493SCarsten Otte return 0; 32345b1c1493SCarsten Otte } 32355b1c1493SCarsten Otte #endif 32365b1c1493SCarsten Otte return VM_FAULT_SIGBUS; 32375b1c1493SCarsten Otte } 32385b1c1493SCarsten Otte 32395587027cSAneesh Kumar K.V int kvm_arch_create_memslot(struct kvm *kvm, struct kvm_memory_slot *slot, 32405587027cSAneesh Kumar K.V unsigned long npages) 3241db3fe4ebSTakuya Yoshikawa { 3242db3fe4ebSTakuya Yoshikawa return 0; 3243db3fe4ebSTakuya Yoshikawa } 3244db3fe4ebSTakuya Yoshikawa 3245b0c632dbSHeiko Carstens /* Section: memory related */ 3246f7784b8eSMarcelo Tosatti int kvm_arch_prepare_memory_region(struct kvm *kvm, 3247f7784b8eSMarcelo Tosatti struct kvm_memory_slot *memslot, 324809170a49SPaolo Bonzini const struct kvm_userspace_memory_region *mem, 32497b6195a9STakuya Yoshikawa enum kvm_mr_change change) 3250b0c632dbSHeiko Carstens { 3251dd2887e7SNick Wang /* A few sanity checks. We can have memory slots which have to be 3252dd2887e7SNick Wang located/ended at a segment boundary (1MB). The memory in userland is 3253dd2887e7SNick Wang ok to be fragmented into various different vmas. It is okay to mmap() 3254dd2887e7SNick Wang and munmap() stuff in this slot after doing this call at any time */ 3255b0c632dbSHeiko Carstens 3256598841caSCarsten Otte if (mem->userspace_addr & 0xffffful) 3257b0c632dbSHeiko Carstens return -EINVAL; 3258b0c632dbSHeiko Carstens 3259598841caSCarsten Otte if (mem->memory_size & 0xffffful) 3260b0c632dbSHeiko Carstens return -EINVAL; 3261b0c632dbSHeiko Carstens 3262a3a92c31SDominik Dingel if (mem->guest_phys_addr + mem->memory_size > kvm->arch.mem_limit) 3263a3a92c31SDominik Dingel return -EINVAL; 3264a3a92c31SDominik Dingel 3265f7784b8eSMarcelo Tosatti return 0; 3266f7784b8eSMarcelo Tosatti } 3267f7784b8eSMarcelo Tosatti 3268f7784b8eSMarcelo Tosatti void kvm_arch_commit_memory_region(struct kvm *kvm, 326909170a49SPaolo Bonzini const struct kvm_userspace_memory_region *mem, 32708482644aSTakuya Yoshikawa const struct kvm_memory_slot *old, 3271f36f3f28SPaolo Bonzini const struct kvm_memory_slot *new, 32728482644aSTakuya Yoshikawa enum kvm_mr_change change) 3273f7784b8eSMarcelo Tosatti { 3274f7850c92SCarsten Otte int rc; 3275f7784b8eSMarcelo Tosatti 32762cef4debSChristian Borntraeger /* If the basics of the memslot do not change, we do not want 32772cef4debSChristian Borntraeger * to update the gmap. Every update causes several unnecessary 32782cef4debSChristian Borntraeger * segment translation exceptions. This is usually handled just 32792cef4debSChristian Borntraeger * fine by the normal fault handler + gmap, but it will also 32802cef4debSChristian Borntraeger * cause faults on the prefix page of running guest CPUs. 32812cef4debSChristian Borntraeger */ 32822cef4debSChristian Borntraeger if (old->userspace_addr == mem->userspace_addr && 32832cef4debSChristian Borntraeger old->base_gfn * PAGE_SIZE == mem->guest_phys_addr && 32842cef4debSChristian Borntraeger old->npages * PAGE_SIZE == mem->memory_size) 32852cef4debSChristian Borntraeger return; 3286598841caSCarsten Otte 3287598841caSCarsten Otte rc = gmap_map_segment(kvm->arch.gmap, mem->userspace_addr, 3288598841caSCarsten Otte mem->guest_phys_addr, mem->memory_size); 3289598841caSCarsten Otte if (rc) 3290ea2cdd27SDavid Hildenbrand pr_warn("failed to commit memory region\n"); 3291598841caSCarsten Otte return; 3292b0c632dbSHeiko Carstens } 3293b0c632dbSHeiko Carstens 329460a37709SAlexander Yarygin static inline unsigned long nonhyp_mask(int i) 329560a37709SAlexander Yarygin { 329660a37709SAlexander Yarygin unsigned int nonhyp_fai = (sclp.hmfai << i * 2) >> 30; 329760a37709SAlexander Yarygin 329860a37709SAlexander Yarygin return 0x0000ffffffffffffUL >> (nonhyp_fai << 4); 329960a37709SAlexander Yarygin } 330060a37709SAlexander Yarygin 33013491caf2SChristian Borntraeger void kvm_arch_vcpu_block_finish(struct kvm_vcpu *vcpu) 33023491caf2SChristian Borntraeger { 33033491caf2SChristian Borntraeger vcpu->valid_wakeup = false; 33043491caf2SChristian Borntraeger } 33053491caf2SChristian Borntraeger 3306b0c632dbSHeiko Carstens static int __init kvm_s390_init(void) 3307b0c632dbSHeiko Carstens { 330860a37709SAlexander Yarygin int i; 330960a37709SAlexander Yarygin 331007197fd0SDavid Hildenbrand if (!sclp.has_sief2) { 331107197fd0SDavid Hildenbrand pr_info("SIE not available\n"); 331207197fd0SDavid Hildenbrand return -ENODEV; 331307197fd0SDavid Hildenbrand } 331407197fd0SDavid Hildenbrand 331560a37709SAlexander Yarygin for (i = 0; i < 16; i++) 331660a37709SAlexander Yarygin kvm_s390_fac_list_mask[i] |= 331760a37709SAlexander Yarygin S390_lowcore.stfle_fac_list[i] & nonhyp_mask(i); 331860a37709SAlexander Yarygin 33199d8d5786SMichael Mueller return kvm_init(NULL, sizeof(struct kvm_vcpu), 0, THIS_MODULE); 3320b0c632dbSHeiko Carstens } 3321b0c632dbSHeiko Carstens 3322b0c632dbSHeiko Carstens static void __exit kvm_s390_exit(void) 3323b0c632dbSHeiko Carstens { 3324b0c632dbSHeiko Carstens kvm_exit(); 3325b0c632dbSHeiko Carstens } 3326b0c632dbSHeiko Carstens 3327b0c632dbSHeiko Carstens module_init(kvm_s390_init); 3328b0c632dbSHeiko Carstens module_exit(kvm_s390_exit); 3329566af940SCornelia Huck 3330566af940SCornelia Huck /* 3331566af940SCornelia Huck * Enable autoloading of the kvm module. 3332566af940SCornelia Huck * Note that we add the module alias here instead of virt/kvm/kvm_main.c 3333566af940SCornelia Huck * since x86 takes a different approach. 3334566af940SCornelia Huck */ 3335566af940SCornelia Huck #include <linux/miscdevice.h> 3336566af940SCornelia Huck MODULE_ALIAS_MISCDEV(KVM_MINOR); 3337566af940SCornelia Huck MODULE_ALIAS("devname:kvm"); 3338