1dd873966SEric Auger /* SPDX-License-Identifier: GPL-2.0 WITH Linux-syscall-note */ 251b24e34SJan Kiszka #ifndef __LINUX_KVM_S390_H 351b24e34SJan Kiszka #define __LINUX_KVM_S390_H 451b24e34SJan Kiszka /* 5651682dcSMichael S. Tsirkin * KVM s390 specific structures and definitions 651b24e34SJan Kiszka * 7d36f7de8SCornelia Huck * Copyright IBM Corp. 2008, 2018 851b24e34SJan Kiszka * 951b24e34SJan Kiszka * Author(s): Carsten Otte <cotte@de.ibm.com> 1051b24e34SJan Kiszka * Christian Borntraeger <borntraeger@de.ibm.com> 1151b24e34SJan Kiszka */ 1251b24e34SJan Kiszka #include <linux/types.h> 1351b24e34SJan Kiszka 1451b24e34SJan Kiszka #define __KVM_S390 15*ab0c7fb2SPaolo Bonzini 16*ab0c7fb2SPaolo Bonzini struct kvm_s390_skeys { 17*ab0c7fb2SPaolo Bonzini __u64 start_gfn; 18*ab0c7fb2SPaolo Bonzini __u64 count; 19*ab0c7fb2SPaolo Bonzini __u64 skeydata_addr; 20*ab0c7fb2SPaolo Bonzini __u32 flags; 21*ab0c7fb2SPaolo Bonzini __u32 reserved[9]; 22*ab0c7fb2SPaolo Bonzini }; 23*ab0c7fb2SPaolo Bonzini 24*ab0c7fb2SPaolo Bonzini #define KVM_S390_CMMA_PEEK (1 << 0) 25*ab0c7fb2SPaolo Bonzini 26*ab0c7fb2SPaolo Bonzini /** 27*ab0c7fb2SPaolo Bonzini * kvm_s390_cmma_log - Used for CMMA migration. 28*ab0c7fb2SPaolo Bonzini * 29*ab0c7fb2SPaolo Bonzini * Used both for input and output. 30*ab0c7fb2SPaolo Bonzini * 31*ab0c7fb2SPaolo Bonzini * @start_gfn: Guest page number to start from. 32*ab0c7fb2SPaolo Bonzini * @count: Size of the result buffer. 33*ab0c7fb2SPaolo Bonzini * @flags: Control operation mode via KVM_S390_CMMA_* flags 34*ab0c7fb2SPaolo Bonzini * @remaining: Used with KVM_S390_GET_CMMA_BITS. Indicates how many dirty 35*ab0c7fb2SPaolo Bonzini * pages are still remaining. 36*ab0c7fb2SPaolo Bonzini * @mask: Used with KVM_S390_SET_CMMA_BITS. Bitmap of bits to actually set 37*ab0c7fb2SPaolo Bonzini * in the PGSTE. 38*ab0c7fb2SPaolo Bonzini * @values: Pointer to the values buffer. 39*ab0c7fb2SPaolo Bonzini * 40*ab0c7fb2SPaolo Bonzini * Used in KVM_S390_{G,S}ET_CMMA_BITS ioctls. 41*ab0c7fb2SPaolo Bonzini */ 42*ab0c7fb2SPaolo Bonzini struct kvm_s390_cmma_log { 43*ab0c7fb2SPaolo Bonzini __u64 start_gfn; 44*ab0c7fb2SPaolo Bonzini __u32 count; 45*ab0c7fb2SPaolo Bonzini __u32 flags; 46*ab0c7fb2SPaolo Bonzini union { 47*ab0c7fb2SPaolo Bonzini __u64 remaining; 48*ab0c7fb2SPaolo Bonzini __u64 mask; 49*ab0c7fb2SPaolo Bonzini }; 50*ab0c7fb2SPaolo Bonzini __u64 values; 51*ab0c7fb2SPaolo Bonzini }; 52*ab0c7fb2SPaolo Bonzini 53*ab0c7fb2SPaolo Bonzini #define KVM_S390_RESET_POR 1 54*ab0c7fb2SPaolo Bonzini #define KVM_S390_RESET_CLEAR 2 55*ab0c7fb2SPaolo Bonzini #define KVM_S390_RESET_SUBSYSTEM 4 56*ab0c7fb2SPaolo Bonzini #define KVM_S390_RESET_CPU_INIT 8 57*ab0c7fb2SPaolo Bonzini #define KVM_S390_RESET_IPL 16 58*ab0c7fb2SPaolo Bonzini 59*ab0c7fb2SPaolo Bonzini /* for KVM_S390_MEM_OP */ 60*ab0c7fb2SPaolo Bonzini struct kvm_s390_mem_op { 61*ab0c7fb2SPaolo Bonzini /* in */ 62*ab0c7fb2SPaolo Bonzini __u64 gaddr; /* the guest address */ 63*ab0c7fb2SPaolo Bonzini __u64 flags; /* flags */ 64*ab0c7fb2SPaolo Bonzini __u32 size; /* amount of bytes */ 65*ab0c7fb2SPaolo Bonzini __u32 op; /* type of operation */ 66*ab0c7fb2SPaolo Bonzini __u64 buf; /* buffer in userspace */ 67*ab0c7fb2SPaolo Bonzini union { 68*ab0c7fb2SPaolo Bonzini struct { 69*ab0c7fb2SPaolo Bonzini __u8 ar; /* the access register number */ 70*ab0c7fb2SPaolo Bonzini __u8 key; /* access key, ignored if flag unset */ 71*ab0c7fb2SPaolo Bonzini __u8 pad1[6]; /* ignored */ 72*ab0c7fb2SPaolo Bonzini __u64 old_addr; /* ignored if cmpxchg flag unset */ 73*ab0c7fb2SPaolo Bonzini }; 74*ab0c7fb2SPaolo Bonzini __u32 sida_offset; /* offset into the sida */ 75*ab0c7fb2SPaolo Bonzini __u8 reserved[32]; /* ignored */ 76*ab0c7fb2SPaolo Bonzini }; 77*ab0c7fb2SPaolo Bonzini }; 78*ab0c7fb2SPaolo Bonzini /* types for kvm_s390_mem_op->op */ 79*ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_LOGICAL_READ 0 80*ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_LOGICAL_WRITE 1 81*ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_SIDA_READ 2 82*ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_SIDA_WRITE 3 83*ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_ABSOLUTE_READ 4 84*ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_ABSOLUTE_WRITE 5 85*ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_ABSOLUTE_CMPXCHG 6 86*ab0c7fb2SPaolo Bonzini 87*ab0c7fb2SPaolo Bonzini /* flags for kvm_s390_mem_op->flags */ 88*ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_F_CHECK_ONLY (1ULL << 0) 89*ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_F_INJECT_EXCEPTION (1ULL << 1) 90*ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_F_SKEY_PROTECTION (1ULL << 2) 91*ab0c7fb2SPaolo Bonzini 92*ab0c7fb2SPaolo Bonzini /* flags specifying extension support via KVM_CAP_S390_MEM_OP_EXTENSION */ 93*ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_EXTENSION_CAP_BASE (1 << 0) 94*ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_EXTENSION_CAP_CMPXCHG (1 << 1) 95*ab0c7fb2SPaolo Bonzini 96*ab0c7fb2SPaolo Bonzini struct kvm_s390_psw { 97*ab0c7fb2SPaolo Bonzini __u64 mask; 98*ab0c7fb2SPaolo Bonzini __u64 addr; 99*ab0c7fb2SPaolo Bonzini }; 100*ab0c7fb2SPaolo Bonzini 101*ab0c7fb2SPaolo Bonzini /* valid values for type in kvm_s390_interrupt */ 102*ab0c7fb2SPaolo Bonzini #define KVM_S390_SIGP_STOP 0xfffe0000u 103*ab0c7fb2SPaolo Bonzini #define KVM_S390_PROGRAM_INT 0xfffe0001u 104*ab0c7fb2SPaolo Bonzini #define KVM_S390_SIGP_SET_PREFIX 0xfffe0002u 105*ab0c7fb2SPaolo Bonzini #define KVM_S390_RESTART 0xfffe0003u 106*ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_PFAULT_INIT 0xfffe0004u 107*ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_PFAULT_DONE 0xfffe0005u 108*ab0c7fb2SPaolo Bonzini #define KVM_S390_MCHK 0xfffe1000u 109*ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_CLOCK_COMP 0xffff1004u 110*ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_CPU_TIMER 0xffff1005u 111*ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_VIRTIO 0xffff2603u 112*ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_SERVICE 0xffff2401u 113*ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_EMERGENCY 0xffff1201u 114*ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_EXTERNAL_CALL 0xffff1202u 115*ab0c7fb2SPaolo Bonzini /* Anything below 0xfffe0000u is taken by INT_IO */ 116*ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_IO(ai,cssid,ssid,schid) \ 117*ab0c7fb2SPaolo Bonzini (((schid)) | \ 118*ab0c7fb2SPaolo Bonzini ((ssid) << 16) | \ 119*ab0c7fb2SPaolo Bonzini ((cssid) << 18) | \ 120*ab0c7fb2SPaolo Bonzini ((ai) << 26)) 121*ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_IO_MIN 0x00000000u 122*ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_IO_MAX 0xfffdffffu 123*ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_IO_AI_MASK 0x04000000u 124*ab0c7fb2SPaolo Bonzini 125*ab0c7fb2SPaolo Bonzini 126*ab0c7fb2SPaolo Bonzini struct kvm_s390_interrupt { 127*ab0c7fb2SPaolo Bonzini __u32 type; 128*ab0c7fb2SPaolo Bonzini __u32 parm; 129*ab0c7fb2SPaolo Bonzini __u64 parm64; 130*ab0c7fb2SPaolo Bonzini }; 131*ab0c7fb2SPaolo Bonzini 132*ab0c7fb2SPaolo Bonzini struct kvm_s390_io_info { 133*ab0c7fb2SPaolo Bonzini __u16 subchannel_id; 134*ab0c7fb2SPaolo Bonzini __u16 subchannel_nr; 135*ab0c7fb2SPaolo Bonzini __u32 io_int_parm; 136*ab0c7fb2SPaolo Bonzini __u32 io_int_word; 137*ab0c7fb2SPaolo Bonzini }; 138*ab0c7fb2SPaolo Bonzini 139*ab0c7fb2SPaolo Bonzini struct kvm_s390_ext_info { 140*ab0c7fb2SPaolo Bonzini __u32 ext_params; 141*ab0c7fb2SPaolo Bonzini __u32 pad; 142*ab0c7fb2SPaolo Bonzini __u64 ext_params2; 143*ab0c7fb2SPaolo Bonzini }; 144*ab0c7fb2SPaolo Bonzini 145*ab0c7fb2SPaolo Bonzini struct kvm_s390_pgm_info { 146*ab0c7fb2SPaolo Bonzini __u64 trans_exc_code; 147*ab0c7fb2SPaolo Bonzini __u64 mon_code; 148*ab0c7fb2SPaolo Bonzini __u64 per_address; 149*ab0c7fb2SPaolo Bonzini __u32 data_exc_code; 150*ab0c7fb2SPaolo Bonzini __u16 code; 151*ab0c7fb2SPaolo Bonzini __u16 mon_class_nr; 152*ab0c7fb2SPaolo Bonzini __u8 per_code; 153*ab0c7fb2SPaolo Bonzini __u8 per_atmid; 154*ab0c7fb2SPaolo Bonzini __u8 exc_access_id; 155*ab0c7fb2SPaolo Bonzini __u8 per_access_id; 156*ab0c7fb2SPaolo Bonzini __u8 op_access_id; 157*ab0c7fb2SPaolo Bonzini #define KVM_S390_PGM_FLAGS_ILC_VALID 0x01 158*ab0c7fb2SPaolo Bonzini #define KVM_S390_PGM_FLAGS_ILC_0 0x02 159*ab0c7fb2SPaolo Bonzini #define KVM_S390_PGM_FLAGS_ILC_1 0x04 160*ab0c7fb2SPaolo Bonzini #define KVM_S390_PGM_FLAGS_ILC_MASK 0x06 161*ab0c7fb2SPaolo Bonzini #define KVM_S390_PGM_FLAGS_NO_REWIND 0x08 162*ab0c7fb2SPaolo Bonzini __u8 flags; 163*ab0c7fb2SPaolo Bonzini __u8 pad[2]; 164*ab0c7fb2SPaolo Bonzini }; 165*ab0c7fb2SPaolo Bonzini 166*ab0c7fb2SPaolo Bonzini struct kvm_s390_prefix_info { 167*ab0c7fb2SPaolo Bonzini __u32 address; 168*ab0c7fb2SPaolo Bonzini }; 169*ab0c7fb2SPaolo Bonzini 170*ab0c7fb2SPaolo Bonzini struct kvm_s390_extcall_info { 171*ab0c7fb2SPaolo Bonzini __u16 code; 172*ab0c7fb2SPaolo Bonzini }; 173*ab0c7fb2SPaolo Bonzini 174*ab0c7fb2SPaolo Bonzini struct kvm_s390_emerg_info { 175*ab0c7fb2SPaolo Bonzini __u16 code; 176*ab0c7fb2SPaolo Bonzini }; 177*ab0c7fb2SPaolo Bonzini 178*ab0c7fb2SPaolo Bonzini #define KVM_S390_STOP_FLAG_STORE_STATUS 0x01 179*ab0c7fb2SPaolo Bonzini struct kvm_s390_stop_info { 180*ab0c7fb2SPaolo Bonzini __u32 flags; 181*ab0c7fb2SPaolo Bonzini }; 182*ab0c7fb2SPaolo Bonzini 183*ab0c7fb2SPaolo Bonzini struct kvm_s390_mchk_info { 184*ab0c7fb2SPaolo Bonzini __u64 cr14; 185*ab0c7fb2SPaolo Bonzini __u64 mcic; 186*ab0c7fb2SPaolo Bonzini __u64 failing_storage_address; 187*ab0c7fb2SPaolo Bonzini __u32 ext_damage_code; 188*ab0c7fb2SPaolo Bonzini __u32 pad; 189*ab0c7fb2SPaolo Bonzini __u8 fixed_logout[16]; 190*ab0c7fb2SPaolo Bonzini }; 191*ab0c7fb2SPaolo Bonzini 192*ab0c7fb2SPaolo Bonzini struct kvm_s390_irq { 193*ab0c7fb2SPaolo Bonzini __u64 type; 194*ab0c7fb2SPaolo Bonzini union { 195*ab0c7fb2SPaolo Bonzini struct kvm_s390_io_info io; 196*ab0c7fb2SPaolo Bonzini struct kvm_s390_ext_info ext; 197*ab0c7fb2SPaolo Bonzini struct kvm_s390_pgm_info pgm; 198*ab0c7fb2SPaolo Bonzini struct kvm_s390_emerg_info emerg; 199*ab0c7fb2SPaolo Bonzini struct kvm_s390_extcall_info extcall; 200*ab0c7fb2SPaolo Bonzini struct kvm_s390_prefix_info prefix; 201*ab0c7fb2SPaolo Bonzini struct kvm_s390_stop_info stop; 202*ab0c7fb2SPaolo Bonzini struct kvm_s390_mchk_info mchk; 203*ab0c7fb2SPaolo Bonzini char reserved[64]; 204*ab0c7fb2SPaolo Bonzini } u; 205*ab0c7fb2SPaolo Bonzini }; 206*ab0c7fb2SPaolo Bonzini 207*ab0c7fb2SPaolo Bonzini struct kvm_s390_irq_state { 208*ab0c7fb2SPaolo Bonzini __u64 buf; 209*ab0c7fb2SPaolo Bonzini __u32 flags; /* will stay unused for compatibility reasons */ 210*ab0c7fb2SPaolo Bonzini __u32 len; 211*ab0c7fb2SPaolo Bonzini __u32 reserved[4]; /* will stay unused for compatibility reasons */ 212*ab0c7fb2SPaolo Bonzini }; 213*ab0c7fb2SPaolo Bonzini 214*ab0c7fb2SPaolo Bonzini struct kvm_s390_ucas_mapping { 215*ab0c7fb2SPaolo Bonzini __u64 user_addr; 216*ab0c7fb2SPaolo Bonzini __u64 vcpu_addr; 217*ab0c7fb2SPaolo Bonzini __u64 length; 218*ab0c7fb2SPaolo Bonzini }; 219*ab0c7fb2SPaolo Bonzini 220*ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_sec_parm { 221*ab0c7fb2SPaolo Bonzini __u64 origin; 222*ab0c7fb2SPaolo Bonzini __u64 length; 223*ab0c7fb2SPaolo Bonzini }; 224*ab0c7fb2SPaolo Bonzini 225*ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_unp { 226*ab0c7fb2SPaolo Bonzini __u64 addr; 227*ab0c7fb2SPaolo Bonzini __u64 size; 228*ab0c7fb2SPaolo Bonzini __u64 tweak; 229*ab0c7fb2SPaolo Bonzini }; 230*ab0c7fb2SPaolo Bonzini 231*ab0c7fb2SPaolo Bonzini enum pv_cmd_dmp_id { 232*ab0c7fb2SPaolo Bonzini KVM_PV_DUMP_INIT, 233*ab0c7fb2SPaolo Bonzini KVM_PV_DUMP_CONFIG_STOR_STATE, 234*ab0c7fb2SPaolo Bonzini KVM_PV_DUMP_COMPLETE, 235*ab0c7fb2SPaolo Bonzini KVM_PV_DUMP_CPU, 236*ab0c7fb2SPaolo Bonzini }; 237*ab0c7fb2SPaolo Bonzini 238*ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_dmp { 239*ab0c7fb2SPaolo Bonzini __u64 subcmd; 240*ab0c7fb2SPaolo Bonzini __u64 buff_addr; 241*ab0c7fb2SPaolo Bonzini __u64 buff_len; 242*ab0c7fb2SPaolo Bonzini __u64 gaddr; /* For dump storage state */ 243*ab0c7fb2SPaolo Bonzini __u64 reserved[4]; 244*ab0c7fb2SPaolo Bonzini }; 245*ab0c7fb2SPaolo Bonzini 246*ab0c7fb2SPaolo Bonzini enum pv_cmd_info_id { 247*ab0c7fb2SPaolo Bonzini KVM_PV_INFO_VM, 248*ab0c7fb2SPaolo Bonzini KVM_PV_INFO_DUMP, 249*ab0c7fb2SPaolo Bonzini }; 250*ab0c7fb2SPaolo Bonzini 251*ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_info_dump { 252*ab0c7fb2SPaolo Bonzini __u64 dump_cpu_buffer_len; 253*ab0c7fb2SPaolo Bonzini __u64 dump_config_mem_buffer_per_1m; 254*ab0c7fb2SPaolo Bonzini __u64 dump_config_finalize_len; 255*ab0c7fb2SPaolo Bonzini }; 256*ab0c7fb2SPaolo Bonzini 257*ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_info_vm { 258*ab0c7fb2SPaolo Bonzini __u64 inst_calls_list[4]; 259*ab0c7fb2SPaolo Bonzini __u64 max_cpus; 260*ab0c7fb2SPaolo Bonzini __u64 max_guests; 261*ab0c7fb2SPaolo Bonzini __u64 max_guest_addr; 262*ab0c7fb2SPaolo Bonzini __u64 feature_indication; 263*ab0c7fb2SPaolo Bonzini }; 264*ab0c7fb2SPaolo Bonzini 265*ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_info_header { 266*ab0c7fb2SPaolo Bonzini __u32 id; 267*ab0c7fb2SPaolo Bonzini __u32 len_max; 268*ab0c7fb2SPaolo Bonzini __u32 len_written; 269*ab0c7fb2SPaolo Bonzini __u32 reserved; 270*ab0c7fb2SPaolo Bonzini }; 271*ab0c7fb2SPaolo Bonzini 272*ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_info { 273*ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_info_header header; 274*ab0c7fb2SPaolo Bonzini union { 275*ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_info_dump dump; 276*ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_info_vm vm; 277*ab0c7fb2SPaolo Bonzini }; 278*ab0c7fb2SPaolo Bonzini }; 279*ab0c7fb2SPaolo Bonzini 280*ab0c7fb2SPaolo Bonzini enum pv_cmd_id { 281*ab0c7fb2SPaolo Bonzini KVM_PV_ENABLE, 282*ab0c7fb2SPaolo Bonzini KVM_PV_DISABLE, 283*ab0c7fb2SPaolo Bonzini KVM_PV_SET_SEC_PARMS, 284*ab0c7fb2SPaolo Bonzini KVM_PV_UNPACK, 285*ab0c7fb2SPaolo Bonzini KVM_PV_VERIFY, 286*ab0c7fb2SPaolo Bonzini KVM_PV_PREP_RESET, 287*ab0c7fb2SPaolo Bonzini KVM_PV_UNSHARE_ALL, 288*ab0c7fb2SPaolo Bonzini KVM_PV_INFO, 289*ab0c7fb2SPaolo Bonzini KVM_PV_DUMP, 290*ab0c7fb2SPaolo Bonzini KVM_PV_ASYNC_CLEANUP_PREPARE, 291*ab0c7fb2SPaolo Bonzini KVM_PV_ASYNC_CLEANUP_PERFORM, 292*ab0c7fb2SPaolo Bonzini }; 293*ab0c7fb2SPaolo Bonzini 294*ab0c7fb2SPaolo Bonzini struct kvm_pv_cmd { 295*ab0c7fb2SPaolo Bonzini __u32 cmd; /* Command to be executed */ 296*ab0c7fb2SPaolo Bonzini __u16 rc; /* Ultravisor return code */ 297*ab0c7fb2SPaolo Bonzini __u16 rrc; /* Ultravisor return reason code */ 298*ab0c7fb2SPaolo Bonzini __u64 data; /* Data or address */ 299*ab0c7fb2SPaolo Bonzini __u32 flags; /* flags for future extensions. Must be 0 for now */ 300*ab0c7fb2SPaolo Bonzini __u32 reserved[3]; 301*ab0c7fb2SPaolo Bonzini }; 302*ab0c7fb2SPaolo Bonzini 303*ab0c7fb2SPaolo Bonzini struct kvm_s390_zpci_op { 304*ab0c7fb2SPaolo Bonzini /* in */ 305*ab0c7fb2SPaolo Bonzini __u32 fh; /* target device */ 306*ab0c7fb2SPaolo Bonzini __u8 op; /* operation to perform */ 307*ab0c7fb2SPaolo Bonzini __u8 pad[3]; 308*ab0c7fb2SPaolo Bonzini union { 309*ab0c7fb2SPaolo Bonzini /* for KVM_S390_ZPCIOP_REG_AEN */ 310*ab0c7fb2SPaolo Bonzini struct { 311*ab0c7fb2SPaolo Bonzini __u64 ibv; /* Guest addr of interrupt bit vector */ 312*ab0c7fb2SPaolo Bonzini __u64 sb; /* Guest addr of summary bit */ 313*ab0c7fb2SPaolo Bonzini __u32 flags; 314*ab0c7fb2SPaolo Bonzini __u32 noi; /* Number of interrupts */ 315*ab0c7fb2SPaolo Bonzini __u8 isc; /* Guest interrupt subclass */ 316*ab0c7fb2SPaolo Bonzini __u8 sbo; /* Offset of guest summary bit vector */ 317*ab0c7fb2SPaolo Bonzini __u16 pad; 318*ab0c7fb2SPaolo Bonzini } reg_aen; 319*ab0c7fb2SPaolo Bonzini __u64 reserved[8]; 320*ab0c7fb2SPaolo Bonzini } u; 321*ab0c7fb2SPaolo Bonzini }; 322*ab0c7fb2SPaolo Bonzini 323*ab0c7fb2SPaolo Bonzini /* types for kvm_s390_zpci_op->op */ 324*ab0c7fb2SPaolo Bonzini #define KVM_S390_ZPCIOP_REG_AEN 0 325*ab0c7fb2SPaolo Bonzini #define KVM_S390_ZPCIOP_DEREG_AEN 1 326*ab0c7fb2SPaolo Bonzini 327*ab0c7fb2SPaolo Bonzini /* flags for kvm_s390_zpci_op->u.reg_aen.flags */ 328*ab0c7fb2SPaolo Bonzini #define KVM_S390_ZPCIOP_REGAEN_HOST (1 << 0) 32951b24e34SJan Kiszka 330216db403SChristian Borntraeger /* Device control API: s390-specific devices */ 331216db403SChristian Borntraeger #define KVM_DEV_FLIC_GET_ALL_IRQS 1 332216db403SChristian Borntraeger #define KVM_DEV_FLIC_ENQUEUE 2 333216db403SChristian Borntraeger #define KVM_DEV_FLIC_CLEAR_IRQS 3 334216db403SChristian Borntraeger #define KVM_DEV_FLIC_APF_ENABLE 4 335216db403SChristian Borntraeger #define KVM_DEV_FLIC_APF_DISABLE_WAIT 5 3369ffd2685SCornelia Huck #define KVM_DEV_FLIC_ADAPTER_REGISTER 6 3379ffd2685SCornelia Huck #define KVM_DEV_FLIC_ADAPTER_MODIFY 7 338ff804f15SCornelia Huck #define KVM_DEV_FLIC_CLEAR_IO_IRQ 8 33974c98e20SCornelia Huck #define KVM_DEV_FLIC_AISM 9 34074c98e20SCornelia Huck #define KVM_DEV_FLIC_AIRQ_INJECT 10 3413272f0e2SChristian Borntraeger #define KVM_DEV_FLIC_AISM_ALL 11 342216db403SChristian Borntraeger /* 343216db403SChristian Borntraeger * We can have up to 4*64k pending subchannels + 8 adapter interrupts, 344216db403SChristian Borntraeger * as well as up to ASYNC_PF_PER_VCPU*KVM_MAX_VCPUS pfault done interrupts. 345216db403SChristian Borntraeger * There are also sclp and machine checks. This gives us 346216db403SChristian Borntraeger * sizeof(kvm_s390_irq)*(4*65536+8+64*64+1+1) = 72 * 266250 = 19170000 347216db403SChristian Borntraeger * Lets round up to 8192 pages. 348216db403SChristian Borntraeger */ 349216db403SChristian Borntraeger #define KVM_S390_MAX_FLOAT_IRQS 266250 350216db403SChristian Borntraeger #define KVM_S390_FLIC_MAX_BUFFER 0x2000000 351216db403SChristian Borntraeger 3529ffd2685SCornelia Huck struct kvm_s390_io_adapter { 3539ffd2685SCornelia Huck __u32 id; 3549ffd2685SCornelia Huck __u8 isc; 3559ffd2685SCornelia Huck __u8 maskable; 3569ffd2685SCornelia Huck __u8 swap; 35774c98e20SCornelia Huck __u8 flags; 35874c98e20SCornelia Huck }; 35974c98e20SCornelia Huck 36074c98e20SCornelia Huck #define KVM_S390_ADAPTER_SUPPRESSIBLE 0x01 36174c98e20SCornelia Huck 36274c98e20SCornelia Huck struct kvm_s390_ais_req { 36374c98e20SCornelia Huck __u8 isc; 36474c98e20SCornelia Huck __u16 mode; 3659ffd2685SCornelia Huck }; 3669ffd2685SCornelia Huck 3673272f0e2SChristian Borntraeger struct kvm_s390_ais_all { 3683272f0e2SChristian Borntraeger __u8 simm; 3693272f0e2SChristian Borntraeger __u8 nimm; 3703272f0e2SChristian Borntraeger }; 3713272f0e2SChristian Borntraeger 3729ffd2685SCornelia Huck #define KVM_S390_IO_ADAPTER_MASK 1 3739ffd2685SCornelia Huck #define KVM_S390_IO_ADAPTER_MAP 2 3749ffd2685SCornelia Huck #define KVM_S390_IO_ADAPTER_UNMAP 3 3759ffd2685SCornelia Huck 3769ffd2685SCornelia Huck struct kvm_s390_io_adapter_req { 3779ffd2685SCornelia Huck __u32 id; 3789ffd2685SCornelia Huck __u8 type; 3799ffd2685SCornelia Huck __u8 mask; 3809ffd2685SCornelia Huck __u16 pad0; 3819ffd2685SCornelia Huck __u64 addr; 3829ffd2685SCornelia Huck }; 3839ffd2685SCornelia Huck 38476eb98d5SJens Freimann /* kvm attr_group on vm fd */ 38576eb98d5SJens Freimann #define KVM_S390_VM_MEM_CTRL 0 38651628b18SChristian Borntraeger #define KVM_S390_VM_TOD 1 38751628b18SChristian Borntraeger #define KVM_S390_VM_CRYPTO 2 38851628b18SChristian Borntraeger #define KVM_S390_VM_CPU_MODEL 3 3893272f0e2SChristian Borntraeger #define KVM_S390_VM_MIGRATION 4 390d525f73fSChenyi Qiang #define KVM_S390_VM_CPU_TOPOLOGY 5 39176eb98d5SJens Freimann 39276eb98d5SJens Freimann /* kvm attributes for mem_ctrl */ 39376eb98d5SJens Freimann #define KVM_S390_VM_MEM_ENABLE_CMMA 0 39476eb98d5SJens Freimann #define KVM_S390_VM_MEM_CLR_CMMA 1 39551628b18SChristian Borntraeger #define KVM_S390_VM_MEM_LIMIT_SIZE 2 39651628b18SChristian Borntraeger 397fff02bc0SPaolo Bonzini #define KVM_S390_NO_MEM_LIMIT U64_MAX 398fff02bc0SPaolo Bonzini 39951628b18SChristian Borntraeger /* kvm attributes for KVM_S390_VM_TOD */ 40051628b18SChristian Borntraeger #define KVM_S390_VM_TOD_LOW 0 40151628b18SChristian Borntraeger #define KVM_S390_VM_TOD_HIGH 1 402d4083f50SAlexey Perevalov #define KVM_S390_VM_TOD_EXT 2 403d4083f50SAlexey Perevalov 404d4083f50SAlexey Perevalov struct kvm_s390_vm_tod_clock { 405d4083f50SAlexey Perevalov __u8 epoch_idx; 406d4083f50SAlexey Perevalov __u64 tod; 407d4083f50SAlexey Perevalov }; 40851628b18SChristian Borntraeger 40951628b18SChristian Borntraeger /* kvm attributes for KVM_S390_VM_CPU_MODEL */ 41051628b18SChristian Borntraeger /* processor related attributes are r/w */ 41151628b18SChristian Borntraeger #define KVM_S390_VM_CPU_PROCESSOR 0 41251628b18SChristian Borntraeger struct kvm_s390_vm_cpu_processor { 41351628b18SChristian Borntraeger __u64 cpuid; 41451628b18SChristian Borntraeger __u16 ibc; 41551628b18SChristian Borntraeger __u8 pad[6]; 41651628b18SChristian Borntraeger __u64 fac_list[256]; 41751628b18SChristian Borntraeger }; 41851628b18SChristian Borntraeger 41951628b18SChristian Borntraeger /* machine related attributes are r/o */ 42051628b18SChristian Borntraeger #define KVM_S390_VM_CPU_MACHINE 1 42151628b18SChristian Borntraeger struct kvm_s390_vm_cpu_machine { 42251628b18SChristian Borntraeger __u64 cpuid; 42351628b18SChristian Borntraeger __u32 ibc; 42451628b18SChristian Borntraeger __u8 pad[4]; 42551628b18SChristian Borntraeger __u64 fac_mask[256]; 42651628b18SChristian Borntraeger __u64 fac_list[256]; 42751628b18SChristian Borntraeger }; 42851628b18SChristian Borntraeger 429dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_PROCESSOR_FEAT 2 430dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_MACHINE_FEAT 3 431dbdfea92SCornelia Huck 432dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_FEAT_NR_BITS 1024 433dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_FEAT_ESOP 0 434dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_FEAT_SIEF2 1 435dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_FEAT_64BSCAO 2 436dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_FEAT_SIIF 3 437dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_FEAT_GPERE 4 438dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_FEAT_GSLS 5 439dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_FEAT_IB 6 440dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_FEAT_CEI 7 441dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_FEAT_IBS 8 442dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_FEAT_SKEY 9 443dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_FEAT_CMMA 10 444dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_FEAT_PFMFI 11 445dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_FEAT_SIGPIF 12 44674c98e20SCornelia Huck #define KVM_S390_VM_CPU_FEAT_KSS 13 447dbdfea92SCornelia Huck struct kvm_s390_vm_cpu_feat { 448dbdfea92SCornelia Huck __u64 feat[16]; 449dbdfea92SCornelia Huck }; 450dbdfea92SCornelia Huck 451dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_PROCESSOR_SUBFUNC 4 452dbdfea92SCornelia Huck #define KVM_S390_VM_CPU_MACHINE_SUBFUNC 5 453dbdfea92SCornelia Huck /* for "test bit" instructions MSB 0 bit ordering, for "query" raw blocks */ 454dbdfea92SCornelia Huck struct kvm_s390_vm_cpu_subfunc { 455dbdfea92SCornelia Huck __u8 plo[32]; /* always */ 456dbdfea92SCornelia Huck __u8 ptff[16]; /* with TOD-clock steering */ 457dbdfea92SCornelia Huck __u8 kmac[16]; /* with MSA */ 458dbdfea92SCornelia Huck __u8 kmc[16]; /* with MSA */ 459dbdfea92SCornelia Huck __u8 km[16]; /* with MSA */ 460dbdfea92SCornelia Huck __u8 kimd[16]; /* with MSA */ 461dbdfea92SCornelia Huck __u8 klmd[16]; /* with MSA */ 462dbdfea92SCornelia Huck __u8 pckmo[16]; /* with MSA3 */ 463dbdfea92SCornelia Huck __u8 kmctr[16]; /* with MSA4 */ 464dbdfea92SCornelia Huck __u8 kmf[16]; /* with MSA4 */ 465dbdfea92SCornelia Huck __u8 kmo[16]; /* with MSA4 */ 466dbdfea92SCornelia Huck __u8 pcc[16]; /* with MSA4 */ 467dbdfea92SCornelia Huck __u8 ppno[16]; /* with MSA5 */ 46874c98e20SCornelia Huck __u8 kma[16]; /* with MSA8 */ 469d9cb4336SCornelia Huck __u8 kdsa[16]; /* with MSA9 */ 470d9cb4336SCornelia Huck __u8 sortl[32]; /* with STFLE.150 */ 471d9cb4336SCornelia Huck __u8 dfltcc[32]; /* with STFLE.151 */ 472d9cb4336SCornelia Huck __u8 reserved[1728]; 473dbdfea92SCornelia Huck }; 474dbdfea92SCornelia Huck 475da3c22c7SThomas Huth #define KVM_S390_VM_CPU_PROCESSOR_UV_FEAT_GUEST 6 476da3c22c7SThomas Huth #define KVM_S390_VM_CPU_MACHINE_UV_FEAT_GUEST 7 477da3c22c7SThomas Huth 478da3c22c7SThomas Huth #define KVM_S390_VM_CPU_UV_FEAT_NR_BITS 64 479da3c22c7SThomas Huth struct kvm_s390_vm_cpu_uv_feat { 480da3c22c7SThomas Huth union { 481da3c22c7SThomas Huth struct { 482da3c22c7SThomas Huth __u64 : 4; 483da3c22c7SThomas Huth __u64 ap : 1; /* bit 4 */ 484da3c22c7SThomas Huth __u64 ap_intr : 1; /* bit 5 */ 485da3c22c7SThomas Huth __u64 : 58; 486da3c22c7SThomas Huth }; 487da3c22c7SThomas Huth __u64 feat; 488da3c22c7SThomas Huth }; 489da3c22c7SThomas Huth }; 490da3c22c7SThomas Huth 49151628b18SChristian Borntraeger /* kvm attributes for crypto */ 49251628b18SChristian Borntraeger #define KVM_S390_VM_CRYPTO_ENABLE_AES_KW 0 49351628b18SChristian Borntraeger #define KVM_S390_VM_CRYPTO_ENABLE_DEA_KW 1 49451628b18SChristian Borntraeger #define KVM_S390_VM_CRYPTO_DISABLE_AES_KW 2 49551628b18SChristian Borntraeger #define KVM_S390_VM_CRYPTO_DISABLE_DEA_KW 3 4968f3cd250SCornelia Huck #define KVM_S390_VM_CRYPTO_ENABLE_APIE 4 4978f3cd250SCornelia Huck #define KVM_S390_VM_CRYPTO_DISABLE_APIE 5 49876eb98d5SJens Freimann 4993272f0e2SChristian Borntraeger /* kvm attributes for migration mode */ 5003272f0e2SChristian Borntraeger #define KVM_S390_VM_MIGRATION_STOP 0 5013272f0e2SChristian Borntraeger #define KVM_S390_VM_MIGRATION_START 1 5023272f0e2SChristian Borntraeger #define KVM_S390_VM_MIGRATION_STATUS 2 5033272f0e2SChristian Borntraeger 50451b24e34SJan Kiszka /* for KVM_GET_REGS and KVM_SET_REGS */ 50551b24e34SJan Kiszka struct kvm_regs { 50651b24e34SJan Kiszka /* general purpose regs for s390 */ 50751b24e34SJan Kiszka __u64 gprs[16]; 50851b24e34SJan Kiszka }; 50951b24e34SJan Kiszka 51051b24e34SJan Kiszka /* for KVM_GET_SREGS and KVM_SET_SREGS */ 51151b24e34SJan Kiszka struct kvm_sregs { 51251b24e34SJan Kiszka __u32 acrs[16]; 51351b24e34SJan Kiszka __u64 crs[16]; 51451b24e34SJan Kiszka }; 51551b24e34SJan Kiszka 51651b24e34SJan Kiszka /* for KVM_GET_FPU and KVM_SET_FPU */ 51751b24e34SJan Kiszka struct kvm_fpu { 51851b24e34SJan Kiszka __u32 fpc; 51951b24e34SJan Kiszka __u64 fprs[16]; 52051b24e34SJan Kiszka }; 52151b24e34SJan Kiszka 52276eb98d5SJens Freimann #define KVM_GUESTDBG_USE_HW_BP 0x00010000 52376eb98d5SJens Freimann 52476eb98d5SJens Freimann #define KVM_HW_BP 1 52576eb98d5SJens Freimann #define KVM_HW_WP_WRITE 2 52676eb98d5SJens Freimann #define KVM_SINGLESTEP 4 52776eb98d5SJens Freimann 52851b24e34SJan Kiszka struct kvm_debug_exit_arch { 52976eb98d5SJens Freimann __u64 addr; 53076eb98d5SJens Freimann __u8 type; 53176eb98d5SJens Freimann __u8 pad[7]; /* Should be set to 0 */ 53276eb98d5SJens Freimann }; 53376eb98d5SJens Freimann 53476eb98d5SJens Freimann struct kvm_hw_breakpoint { 53576eb98d5SJens Freimann __u64 addr; 53676eb98d5SJens Freimann __u64 phys_addr; 53776eb98d5SJens Freimann __u64 len; 53876eb98d5SJens Freimann __u8 type; 53976eb98d5SJens Freimann __u8 pad[7]; /* Should be set to 0 */ 54051b24e34SJan Kiszka }; 54151b24e34SJan Kiszka 54251b24e34SJan Kiszka /* for KVM_SET_GUEST_DEBUG */ 54351b24e34SJan Kiszka struct kvm_guest_debug_arch { 54476eb98d5SJens Freimann __u32 nr_hw_bp; 54576eb98d5SJens Freimann __u32 pad; /* Should be set to 0 */ 54676eb98d5SJens Freimann struct kvm_hw_breakpoint *hw_bp; 54751b24e34SJan Kiszka }; 54851b24e34SJan Kiszka 54951628b18SChristian Borntraeger /* for KVM_SYNC_PFAULT and KVM_REG_S390_PFTOKEN */ 55051628b18SChristian Borntraeger #define KVM_S390_PFAULT_TOKEN_INVALID 0xffffffffffffffffULL 55151628b18SChristian Borntraeger 5521529ae1bSAlexander Graf #define KVM_SYNC_PREFIX (1UL << 0) 5531529ae1bSAlexander Graf #define KVM_SYNC_GPRS (1UL << 1) 5541529ae1bSAlexander Graf #define KVM_SYNC_ACRS (1UL << 2) 5559ab2195dSMarcelo Tosatti #define KVM_SYNC_CRS (1UL << 3) 556444b1996SArd Biesheuvel #define KVM_SYNC_ARCH0 (1UL << 4) 557444b1996SArd Biesheuvel #define KVM_SYNC_PFAULT (1UL << 5) 5587a52ce8aSCornelia Huck #define KVM_SYNC_VRS (1UL << 6) 55966fb2d54SCornelia Huck #define KVM_SYNC_RICCB (1UL << 7) 56066fb2d54SCornelia Huck #define KVM_SYNC_FPRS (1UL << 8) 56174c98e20SCornelia Huck #define KVM_SYNC_GSCB (1UL << 9) 5629cbb6362SCornelia Huck #define KVM_SYNC_BPBC (1UL << 10) 563d36f7de8SCornelia Huck #define KVM_SYNC_ETOKEN (1UL << 11) 564e6546342SJason Wang #define KVM_SYNC_DIAG318 (1UL << 12) 565f363d039SEric Auger 566f363d039SEric Auger #define KVM_SYNC_S390_VALID_FIELDS \ 567f363d039SEric Auger (KVM_SYNC_PREFIX | KVM_SYNC_GPRS | KVM_SYNC_ACRS | KVM_SYNC_CRS | \ 568f363d039SEric Auger KVM_SYNC_ARCH0 | KVM_SYNC_PFAULT | KVM_SYNC_VRS | KVM_SYNC_RICCB | \ 569e6546342SJason Wang KVM_SYNC_FPRS | KVM_SYNC_GSCB | KVM_SYNC_BPBC | KVM_SYNC_ETOKEN | \ 570e6546342SJason Wang KVM_SYNC_DIAG318) 571f363d039SEric Auger 57274c98e20SCornelia Huck /* length and alignment of the sdnx as a power of two */ 57374c98e20SCornelia Huck #define SDNXC 8 57474c98e20SCornelia Huck #define SDNXL (1UL << SDNXC) 5751529ae1bSAlexander Graf /* definition of registers in kvm_run */ 5761529ae1bSAlexander Graf struct kvm_sync_regs { 5771529ae1bSAlexander Graf __u64 prefix; /* prefix register */ 5781529ae1bSAlexander Graf __u64 gprs[16]; /* general purpose registers */ 5791529ae1bSAlexander Graf __u32 acrs[16]; /* access registers */ 5809ab2195dSMarcelo Tosatti __u64 crs[16]; /* control registers */ 581444b1996SArd Biesheuvel __u64 todpr; /* tod programmable register [ARCH0] */ 582444b1996SArd Biesheuvel __u64 cputm; /* cpu timer [ARCH0] */ 583444b1996SArd Biesheuvel __u64 ckc; /* clock comparator [ARCH0] */ 584444b1996SArd Biesheuvel __u64 pp; /* program parameter [ARCH0] */ 585444b1996SArd Biesheuvel __u64 gbea; /* guest breaking-event address [ARCH0] */ 586444b1996SArd Biesheuvel __u64 pft; /* pfault token [PFAULT] */ 587444b1996SArd Biesheuvel __u64 pfs; /* pfault select [PFAULT] */ 588444b1996SArd Biesheuvel __u64 pfc; /* pfault compare [PFAULT] */ 58966fb2d54SCornelia Huck union { 59066fb2d54SCornelia Huck __u64 vrs[32][2]; /* vector registers (KVM_SYNC_VRS) */ 59166fb2d54SCornelia Huck __u64 fprs[16]; /* fp registers (KVM_SYNC_FPRS) */ 59266fb2d54SCornelia Huck }; 5937a52ce8aSCornelia Huck __u8 reserved[512]; /* for future vector expansion */ 59466fb2d54SCornelia Huck __u32 fpc; /* valid on KVM_SYNC_VRS or KVM_SYNC_FPRS */ 5959cbb6362SCornelia Huck __u8 bpbc : 1; /* bp mode */ 5969cbb6362SCornelia Huck __u8 reserved2 : 7; 5979cbb6362SCornelia Huck __u8 padding1[51]; /* riccb needs to be 64byte aligned */ 59866fb2d54SCornelia Huck __u8 riccb[64]; /* runtime instrumentation controls block */ 599e6546342SJason Wang __u64 diag318; /* diagnose 0x318 info */ 600e6546342SJason Wang __u8 padding2[184]; /* sdnx needs to be 256byte aligned */ 60174c98e20SCornelia Huck union { 60274c98e20SCornelia Huck __u8 sdnx[SDNXL]; /* state description annex */ 60374c98e20SCornelia Huck struct { 60474c98e20SCornelia Huck __u64 reserved1[2]; 60574c98e20SCornelia Huck __u64 gscb[4]; 606d36f7de8SCornelia Huck __u64 etoken; 607d36f7de8SCornelia Huck __u64 etoken_extension; 60874c98e20SCornelia Huck }; 60974c98e20SCornelia Huck }; 6101529ae1bSAlexander Graf }; 6112a60dba4SAlexander Graf 6122a60dba4SAlexander Graf #define KVM_REG_S390_TODPR (KVM_REG_S390 | KVM_REG_SIZE_U32 | 0x1) 6132a60dba4SAlexander Graf #define KVM_REG_S390_EPOCHDIFF (KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x2) 6142a60dba4SAlexander Graf #define KVM_REG_S390_CPU_TIMER (KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x3) 6152a60dba4SAlexander Graf #define KVM_REG_S390_CLOCK_COMP (KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x4) 616216db403SChristian Borntraeger #define KVM_REG_S390_PFTOKEN (KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x5) 617216db403SChristian Borntraeger #define KVM_REG_S390_PFCOMPARE (KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x6) 618216db403SChristian Borntraeger #define KVM_REG_S390_PFSELECT (KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x7) 6199ffd2685SCornelia Huck #define KVM_REG_S390_PP (KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x8) 6209ffd2685SCornelia Huck #define KVM_REG_S390_GBEA (KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x9) 62151b24e34SJan Kiszka #endif 622