xref: /qemu/linux-headers/asm-s390/kvm.h (revision ed2db97e60fdc32441f22526a26bd66a6557674d)
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
15ab0c7fb2SPaolo Bonzini 
16ab0c7fb2SPaolo Bonzini struct kvm_s390_skeys {
17ab0c7fb2SPaolo Bonzini 	__u64 start_gfn;
18ab0c7fb2SPaolo Bonzini 	__u64 count;
19ab0c7fb2SPaolo Bonzini 	__u64 skeydata_addr;
20ab0c7fb2SPaolo Bonzini 	__u32 flags;
21ab0c7fb2SPaolo Bonzini 	__u32 reserved[9];
22ab0c7fb2SPaolo Bonzini };
23ab0c7fb2SPaolo Bonzini 
24ab0c7fb2SPaolo Bonzini #define KVM_S390_CMMA_PEEK (1 << 0)
25ab0c7fb2SPaolo Bonzini 
26ab0c7fb2SPaolo Bonzini /**
27ab0c7fb2SPaolo Bonzini  * kvm_s390_cmma_log - Used for CMMA migration.
28ab0c7fb2SPaolo Bonzini  *
29ab0c7fb2SPaolo Bonzini  * Used both for input and output.
30ab0c7fb2SPaolo Bonzini  *
31ab0c7fb2SPaolo Bonzini  * @start_gfn: Guest page number to start from.
32ab0c7fb2SPaolo Bonzini  * @count: Size of the result buffer.
33ab0c7fb2SPaolo Bonzini  * @flags: Control operation mode via KVM_S390_CMMA_* flags
34ab0c7fb2SPaolo Bonzini  * @remaining: Used with KVM_S390_GET_CMMA_BITS. Indicates how many dirty
35ab0c7fb2SPaolo Bonzini  *             pages are still remaining.
36ab0c7fb2SPaolo Bonzini  * @mask: Used with KVM_S390_SET_CMMA_BITS. Bitmap of bits to actually set
37ab0c7fb2SPaolo Bonzini  *        in the PGSTE.
38ab0c7fb2SPaolo Bonzini  * @values: Pointer to the values buffer.
39ab0c7fb2SPaolo Bonzini  *
40ab0c7fb2SPaolo Bonzini  * Used in KVM_S390_{G,S}ET_CMMA_BITS ioctls.
41ab0c7fb2SPaolo Bonzini  */
42ab0c7fb2SPaolo Bonzini struct kvm_s390_cmma_log {
43ab0c7fb2SPaolo Bonzini 	__u64 start_gfn;
44ab0c7fb2SPaolo Bonzini 	__u32 count;
45ab0c7fb2SPaolo Bonzini 	__u32 flags;
46ab0c7fb2SPaolo Bonzini 	union {
47ab0c7fb2SPaolo Bonzini 		__u64 remaining;
48ab0c7fb2SPaolo Bonzini 		__u64 mask;
49ab0c7fb2SPaolo Bonzini 	};
50ab0c7fb2SPaolo Bonzini 	__u64 values;
51ab0c7fb2SPaolo Bonzini };
52ab0c7fb2SPaolo Bonzini 
53ab0c7fb2SPaolo Bonzini #define KVM_S390_RESET_POR       1
54ab0c7fb2SPaolo Bonzini #define KVM_S390_RESET_CLEAR     2
55ab0c7fb2SPaolo Bonzini #define KVM_S390_RESET_SUBSYSTEM 4
56ab0c7fb2SPaolo Bonzini #define KVM_S390_RESET_CPU_INIT  8
57ab0c7fb2SPaolo Bonzini #define KVM_S390_RESET_IPL       16
58ab0c7fb2SPaolo Bonzini 
59ab0c7fb2SPaolo Bonzini /* for KVM_S390_MEM_OP */
60ab0c7fb2SPaolo Bonzini struct kvm_s390_mem_op {
61ab0c7fb2SPaolo Bonzini 	/* in */
62ab0c7fb2SPaolo Bonzini 	__u64 gaddr;		/* the guest address */
63ab0c7fb2SPaolo Bonzini 	__u64 flags;		/* flags */
64ab0c7fb2SPaolo Bonzini 	__u32 size;		/* amount of bytes */
65ab0c7fb2SPaolo Bonzini 	__u32 op;		/* type of operation */
66ab0c7fb2SPaolo Bonzini 	__u64 buf;		/* buffer in userspace */
67ab0c7fb2SPaolo Bonzini 	union {
68ab0c7fb2SPaolo Bonzini 		struct {
69ab0c7fb2SPaolo Bonzini 			__u8 ar;	/* the access register number */
70ab0c7fb2SPaolo Bonzini 			__u8 key;	/* access key, ignored if flag unset */
71ab0c7fb2SPaolo Bonzini 			__u8 pad1[6];	/* ignored */
72ab0c7fb2SPaolo Bonzini 			__u64 old_addr;	/* ignored if cmpxchg flag unset */
73ab0c7fb2SPaolo Bonzini 		};
74ab0c7fb2SPaolo Bonzini 		__u32 sida_offset; /* offset into the sida */
75ab0c7fb2SPaolo Bonzini 		__u8 reserved[32]; /* ignored */
76ab0c7fb2SPaolo Bonzini 	};
77ab0c7fb2SPaolo Bonzini };
78ab0c7fb2SPaolo Bonzini /* types for kvm_s390_mem_op->op */
79ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_LOGICAL_READ	0
80ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_LOGICAL_WRITE	1
81ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_SIDA_READ	2
82ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_SIDA_WRITE	3
83ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_ABSOLUTE_READ	4
84ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_ABSOLUTE_WRITE	5
85ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_ABSOLUTE_CMPXCHG	6
86ab0c7fb2SPaolo Bonzini 
87ab0c7fb2SPaolo Bonzini /* flags for kvm_s390_mem_op->flags */
88ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_F_CHECK_ONLY		(1ULL << 0)
89ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_F_INJECT_EXCEPTION	(1ULL << 1)
90ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_F_SKEY_PROTECTION	(1ULL << 2)
91ab0c7fb2SPaolo Bonzini 
92ab0c7fb2SPaolo Bonzini /* flags specifying extension support via KVM_CAP_S390_MEM_OP_EXTENSION */
93ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_EXTENSION_CAP_BASE	(1 << 0)
94ab0c7fb2SPaolo Bonzini #define KVM_S390_MEMOP_EXTENSION_CAP_CMPXCHG	(1 << 1)
95ab0c7fb2SPaolo Bonzini 
96ab0c7fb2SPaolo Bonzini struct kvm_s390_psw {
97ab0c7fb2SPaolo Bonzini 	__u64 mask;
98ab0c7fb2SPaolo Bonzini 	__u64 addr;
99ab0c7fb2SPaolo Bonzini };
100ab0c7fb2SPaolo Bonzini 
101ab0c7fb2SPaolo Bonzini /* valid values for type in kvm_s390_interrupt */
102ab0c7fb2SPaolo Bonzini #define KVM_S390_SIGP_STOP		0xfffe0000u
103ab0c7fb2SPaolo Bonzini #define KVM_S390_PROGRAM_INT		0xfffe0001u
104ab0c7fb2SPaolo Bonzini #define KVM_S390_SIGP_SET_PREFIX	0xfffe0002u
105ab0c7fb2SPaolo Bonzini #define KVM_S390_RESTART		0xfffe0003u
106ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_PFAULT_INIT	0xfffe0004u
107ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_PFAULT_DONE	0xfffe0005u
108ab0c7fb2SPaolo Bonzini #define KVM_S390_MCHK			0xfffe1000u
109ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_CLOCK_COMP		0xffff1004u
110ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_CPU_TIMER		0xffff1005u
111ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_VIRTIO		0xffff2603u
112ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_SERVICE		0xffff2401u
113ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_EMERGENCY		0xffff1201u
114ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_EXTERNAL_CALL	0xffff1202u
115ab0c7fb2SPaolo Bonzini /* Anything below 0xfffe0000u is taken by INT_IO */
116ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_IO(ai,cssid,ssid,schid)   \
117ab0c7fb2SPaolo Bonzini 	(((schid)) |			       \
118ab0c7fb2SPaolo Bonzini 	 ((ssid) << 16) |		       \
119ab0c7fb2SPaolo Bonzini 	 ((cssid) << 18) |		       \
120ab0c7fb2SPaolo Bonzini 	 ((ai) << 26))
121ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_IO_MIN		0x00000000u
122ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_IO_MAX		0xfffdffffu
123ab0c7fb2SPaolo Bonzini #define KVM_S390_INT_IO_AI_MASK		0x04000000u
124ab0c7fb2SPaolo Bonzini 
125ab0c7fb2SPaolo Bonzini 
126ab0c7fb2SPaolo Bonzini struct kvm_s390_interrupt {
127ab0c7fb2SPaolo Bonzini 	__u32 type;
128ab0c7fb2SPaolo Bonzini 	__u32 parm;
129ab0c7fb2SPaolo Bonzini 	__u64 parm64;
130ab0c7fb2SPaolo Bonzini };
131ab0c7fb2SPaolo Bonzini 
132ab0c7fb2SPaolo Bonzini struct kvm_s390_io_info {
133ab0c7fb2SPaolo Bonzini 	__u16 subchannel_id;
134ab0c7fb2SPaolo Bonzini 	__u16 subchannel_nr;
135ab0c7fb2SPaolo Bonzini 	__u32 io_int_parm;
136ab0c7fb2SPaolo Bonzini 	__u32 io_int_word;
137ab0c7fb2SPaolo Bonzini };
138ab0c7fb2SPaolo Bonzini 
139ab0c7fb2SPaolo Bonzini struct kvm_s390_ext_info {
140ab0c7fb2SPaolo Bonzini 	__u32 ext_params;
141ab0c7fb2SPaolo Bonzini 	__u32 pad;
142ab0c7fb2SPaolo Bonzini 	__u64 ext_params2;
143ab0c7fb2SPaolo Bonzini };
144ab0c7fb2SPaolo Bonzini 
145ab0c7fb2SPaolo Bonzini struct kvm_s390_pgm_info {
146ab0c7fb2SPaolo Bonzini 	__u64 trans_exc_code;
147ab0c7fb2SPaolo Bonzini 	__u64 mon_code;
148ab0c7fb2SPaolo Bonzini 	__u64 per_address;
149ab0c7fb2SPaolo Bonzini 	__u32 data_exc_code;
150ab0c7fb2SPaolo Bonzini 	__u16 code;
151ab0c7fb2SPaolo Bonzini 	__u16 mon_class_nr;
152ab0c7fb2SPaolo Bonzini 	__u8 per_code;
153ab0c7fb2SPaolo Bonzini 	__u8 per_atmid;
154ab0c7fb2SPaolo Bonzini 	__u8 exc_access_id;
155ab0c7fb2SPaolo Bonzini 	__u8 per_access_id;
156ab0c7fb2SPaolo Bonzini 	__u8 op_access_id;
157ab0c7fb2SPaolo Bonzini #define KVM_S390_PGM_FLAGS_ILC_VALID	0x01
158ab0c7fb2SPaolo Bonzini #define KVM_S390_PGM_FLAGS_ILC_0	0x02
159ab0c7fb2SPaolo Bonzini #define KVM_S390_PGM_FLAGS_ILC_1	0x04
160ab0c7fb2SPaolo Bonzini #define KVM_S390_PGM_FLAGS_ILC_MASK	0x06
161ab0c7fb2SPaolo Bonzini #define KVM_S390_PGM_FLAGS_NO_REWIND	0x08
162ab0c7fb2SPaolo Bonzini 	__u8 flags;
163ab0c7fb2SPaolo Bonzini 	__u8 pad[2];
164ab0c7fb2SPaolo Bonzini };
165ab0c7fb2SPaolo Bonzini 
166ab0c7fb2SPaolo Bonzini struct kvm_s390_prefix_info {
167ab0c7fb2SPaolo Bonzini 	__u32 address;
168ab0c7fb2SPaolo Bonzini };
169ab0c7fb2SPaolo Bonzini 
170ab0c7fb2SPaolo Bonzini struct kvm_s390_extcall_info {
171ab0c7fb2SPaolo Bonzini 	__u16 code;
172ab0c7fb2SPaolo Bonzini };
173ab0c7fb2SPaolo Bonzini 
174ab0c7fb2SPaolo Bonzini struct kvm_s390_emerg_info {
175ab0c7fb2SPaolo Bonzini 	__u16 code;
176ab0c7fb2SPaolo Bonzini };
177ab0c7fb2SPaolo Bonzini 
178ab0c7fb2SPaolo Bonzini #define KVM_S390_STOP_FLAG_STORE_STATUS	0x01
179ab0c7fb2SPaolo Bonzini struct kvm_s390_stop_info {
180ab0c7fb2SPaolo Bonzini 	__u32 flags;
181ab0c7fb2SPaolo Bonzini };
182ab0c7fb2SPaolo Bonzini 
183ab0c7fb2SPaolo Bonzini struct kvm_s390_mchk_info {
184ab0c7fb2SPaolo Bonzini 	__u64 cr14;
185ab0c7fb2SPaolo Bonzini 	__u64 mcic;
186ab0c7fb2SPaolo Bonzini 	__u64 failing_storage_address;
187ab0c7fb2SPaolo Bonzini 	__u32 ext_damage_code;
188ab0c7fb2SPaolo Bonzini 	__u32 pad;
189ab0c7fb2SPaolo Bonzini 	__u8 fixed_logout[16];
190ab0c7fb2SPaolo Bonzini };
191ab0c7fb2SPaolo Bonzini 
192ab0c7fb2SPaolo Bonzini struct kvm_s390_irq {
193ab0c7fb2SPaolo Bonzini 	__u64 type;
194ab0c7fb2SPaolo Bonzini 	union {
195ab0c7fb2SPaolo Bonzini 		struct kvm_s390_io_info io;
196ab0c7fb2SPaolo Bonzini 		struct kvm_s390_ext_info ext;
197ab0c7fb2SPaolo Bonzini 		struct kvm_s390_pgm_info pgm;
198ab0c7fb2SPaolo Bonzini 		struct kvm_s390_emerg_info emerg;
199ab0c7fb2SPaolo Bonzini 		struct kvm_s390_extcall_info extcall;
200ab0c7fb2SPaolo Bonzini 		struct kvm_s390_prefix_info prefix;
201ab0c7fb2SPaolo Bonzini 		struct kvm_s390_stop_info stop;
202ab0c7fb2SPaolo Bonzini 		struct kvm_s390_mchk_info mchk;
203ab0c7fb2SPaolo Bonzini 		char reserved[64];
204ab0c7fb2SPaolo Bonzini 	} u;
205ab0c7fb2SPaolo Bonzini };
206ab0c7fb2SPaolo Bonzini 
207ab0c7fb2SPaolo Bonzini struct kvm_s390_irq_state {
208ab0c7fb2SPaolo Bonzini 	__u64 buf;
209ab0c7fb2SPaolo Bonzini 	__u32 flags;        /* will stay unused for compatibility reasons */
210ab0c7fb2SPaolo Bonzini 	__u32 len;
211ab0c7fb2SPaolo Bonzini 	__u32 reserved[4];  /* will stay unused for compatibility reasons */
212ab0c7fb2SPaolo Bonzini };
213ab0c7fb2SPaolo Bonzini 
214ab0c7fb2SPaolo Bonzini struct kvm_s390_ucas_mapping {
215ab0c7fb2SPaolo Bonzini 	__u64 user_addr;
216ab0c7fb2SPaolo Bonzini 	__u64 vcpu_addr;
217ab0c7fb2SPaolo Bonzini 	__u64 length;
218ab0c7fb2SPaolo Bonzini };
219ab0c7fb2SPaolo Bonzini 
220ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_sec_parm {
221ab0c7fb2SPaolo Bonzini 	__u64 origin;
222ab0c7fb2SPaolo Bonzini 	__u64 length;
223ab0c7fb2SPaolo Bonzini };
224ab0c7fb2SPaolo Bonzini 
225ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_unp {
226ab0c7fb2SPaolo Bonzini 	__u64 addr;
227ab0c7fb2SPaolo Bonzini 	__u64 size;
228ab0c7fb2SPaolo Bonzini 	__u64 tweak;
229ab0c7fb2SPaolo Bonzini };
230ab0c7fb2SPaolo Bonzini 
231ab0c7fb2SPaolo Bonzini enum pv_cmd_dmp_id {
232ab0c7fb2SPaolo Bonzini 	KVM_PV_DUMP_INIT,
233ab0c7fb2SPaolo Bonzini 	KVM_PV_DUMP_CONFIG_STOR_STATE,
234ab0c7fb2SPaolo Bonzini 	KVM_PV_DUMP_COMPLETE,
235ab0c7fb2SPaolo Bonzini 	KVM_PV_DUMP_CPU,
236ab0c7fb2SPaolo Bonzini };
237ab0c7fb2SPaolo Bonzini 
238ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_dmp {
239ab0c7fb2SPaolo Bonzini 	__u64 subcmd;
240ab0c7fb2SPaolo Bonzini 	__u64 buff_addr;
241ab0c7fb2SPaolo Bonzini 	__u64 buff_len;
242ab0c7fb2SPaolo Bonzini 	__u64 gaddr;		/* For dump storage state */
243ab0c7fb2SPaolo Bonzini 	__u64 reserved[4];
244ab0c7fb2SPaolo Bonzini };
245ab0c7fb2SPaolo Bonzini 
246ab0c7fb2SPaolo Bonzini enum pv_cmd_info_id {
247ab0c7fb2SPaolo Bonzini 	KVM_PV_INFO_VM,
248ab0c7fb2SPaolo Bonzini 	KVM_PV_INFO_DUMP,
249ab0c7fb2SPaolo Bonzini };
250ab0c7fb2SPaolo Bonzini 
251ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_info_dump {
252ab0c7fb2SPaolo Bonzini 	__u64 dump_cpu_buffer_len;
253ab0c7fb2SPaolo Bonzini 	__u64 dump_config_mem_buffer_per_1m;
254ab0c7fb2SPaolo Bonzini 	__u64 dump_config_finalize_len;
255ab0c7fb2SPaolo Bonzini };
256ab0c7fb2SPaolo Bonzini 
257ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_info_vm {
258ab0c7fb2SPaolo Bonzini 	__u64 inst_calls_list[4];
259ab0c7fb2SPaolo Bonzini 	__u64 max_cpus;
260ab0c7fb2SPaolo Bonzini 	__u64 max_guests;
261ab0c7fb2SPaolo Bonzini 	__u64 max_guest_addr;
262ab0c7fb2SPaolo Bonzini 	__u64 feature_indication;
263ab0c7fb2SPaolo Bonzini };
264ab0c7fb2SPaolo Bonzini 
265ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_info_header {
266ab0c7fb2SPaolo Bonzini 	__u32 id;
267ab0c7fb2SPaolo Bonzini 	__u32 len_max;
268ab0c7fb2SPaolo Bonzini 	__u32 len_written;
269ab0c7fb2SPaolo Bonzini 	__u32 reserved;
270ab0c7fb2SPaolo Bonzini };
271ab0c7fb2SPaolo Bonzini 
272ab0c7fb2SPaolo Bonzini struct kvm_s390_pv_info {
273ab0c7fb2SPaolo Bonzini 	struct kvm_s390_pv_info_header header;
274ab0c7fb2SPaolo Bonzini 	union {
275ab0c7fb2SPaolo Bonzini 		struct kvm_s390_pv_info_dump dump;
276ab0c7fb2SPaolo Bonzini 		struct kvm_s390_pv_info_vm vm;
277ab0c7fb2SPaolo Bonzini 	};
278ab0c7fb2SPaolo Bonzini };
279ab0c7fb2SPaolo Bonzini 
280ab0c7fb2SPaolo Bonzini enum pv_cmd_id {
281ab0c7fb2SPaolo Bonzini 	KVM_PV_ENABLE,
282ab0c7fb2SPaolo Bonzini 	KVM_PV_DISABLE,
283ab0c7fb2SPaolo Bonzini 	KVM_PV_SET_SEC_PARMS,
284ab0c7fb2SPaolo Bonzini 	KVM_PV_UNPACK,
285ab0c7fb2SPaolo Bonzini 	KVM_PV_VERIFY,
286ab0c7fb2SPaolo Bonzini 	KVM_PV_PREP_RESET,
287ab0c7fb2SPaolo Bonzini 	KVM_PV_UNSHARE_ALL,
288ab0c7fb2SPaolo Bonzini 	KVM_PV_INFO,
289ab0c7fb2SPaolo Bonzini 	KVM_PV_DUMP,
290ab0c7fb2SPaolo Bonzini 	KVM_PV_ASYNC_CLEANUP_PREPARE,
291ab0c7fb2SPaolo Bonzini 	KVM_PV_ASYNC_CLEANUP_PERFORM,
292ab0c7fb2SPaolo Bonzini };
293ab0c7fb2SPaolo Bonzini 
294ab0c7fb2SPaolo Bonzini struct kvm_pv_cmd {
295ab0c7fb2SPaolo Bonzini 	__u32 cmd;	/* Command to be executed */
296ab0c7fb2SPaolo Bonzini 	__u16 rc;	/* Ultravisor return code */
297ab0c7fb2SPaolo Bonzini 	__u16 rrc;	/* Ultravisor return reason code */
298ab0c7fb2SPaolo Bonzini 	__u64 data;	/* Data or address */
299ab0c7fb2SPaolo Bonzini 	__u32 flags;    /* flags for future extensions. Must be 0 for now */
300ab0c7fb2SPaolo Bonzini 	__u32 reserved[3];
301ab0c7fb2SPaolo Bonzini };
302ab0c7fb2SPaolo Bonzini 
303ab0c7fb2SPaolo Bonzini struct kvm_s390_zpci_op {
304ab0c7fb2SPaolo Bonzini 	/* in */
305ab0c7fb2SPaolo Bonzini 	__u32 fh;               /* target device */
306ab0c7fb2SPaolo Bonzini 	__u8  op;               /* operation to perform */
307ab0c7fb2SPaolo Bonzini 	__u8  pad[3];
308ab0c7fb2SPaolo Bonzini 	union {
309ab0c7fb2SPaolo Bonzini 		/* for KVM_S390_ZPCIOP_REG_AEN */
310ab0c7fb2SPaolo Bonzini 		struct {
311ab0c7fb2SPaolo Bonzini 			__u64 ibv;      /* Guest addr of interrupt bit vector */
312ab0c7fb2SPaolo Bonzini 			__u64 sb;       /* Guest addr of summary bit */
313ab0c7fb2SPaolo Bonzini 			__u32 flags;
314ab0c7fb2SPaolo Bonzini 			__u32 noi;      /* Number of interrupts */
315ab0c7fb2SPaolo Bonzini 			__u8 isc;       /* Guest interrupt subclass */
316ab0c7fb2SPaolo Bonzini 			__u8 sbo;       /* Offset of guest summary bit vector */
317ab0c7fb2SPaolo Bonzini 			__u16 pad;
318ab0c7fb2SPaolo Bonzini 		} reg_aen;
319ab0c7fb2SPaolo Bonzini 		__u64 reserved[8];
320ab0c7fb2SPaolo Bonzini 	} u;
321ab0c7fb2SPaolo Bonzini };
322ab0c7fb2SPaolo Bonzini 
323ab0c7fb2SPaolo Bonzini /* types for kvm_s390_zpci_op->op */
324ab0c7fb2SPaolo Bonzini #define KVM_S390_ZPCIOP_REG_AEN                0
325ab0c7fb2SPaolo Bonzini #define KVM_S390_ZPCIOP_DEREG_AEN      1
326ab0c7fb2SPaolo Bonzini 
327ab0c7fb2SPaolo Bonzini /* flags for kvm_s390_zpci_op->u.reg_aen.flags */
328ab0c7fb2SPaolo 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 */
472*44fe383cSHendrik Brueckner 	__u8 pfcr[16];		/* with STFLE.201 */
473*44fe383cSHendrik Brueckner 	__u8 reserved[1712];
474dbdfea92SCornelia Huck };
475dbdfea92SCornelia Huck 
476da3c22c7SThomas Huth #define KVM_S390_VM_CPU_PROCESSOR_UV_FEAT_GUEST	6
477da3c22c7SThomas Huth #define KVM_S390_VM_CPU_MACHINE_UV_FEAT_GUEST	7
478da3c22c7SThomas Huth 
479da3c22c7SThomas Huth #define KVM_S390_VM_CPU_UV_FEAT_NR_BITS	64
480da3c22c7SThomas Huth struct kvm_s390_vm_cpu_uv_feat {
481da3c22c7SThomas Huth 	union {
482da3c22c7SThomas Huth 		struct {
483da3c22c7SThomas Huth 			__u64 : 4;
484da3c22c7SThomas Huth 			__u64 ap : 1;		/* bit 4 */
485da3c22c7SThomas Huth 			__u64 ap_intr : 1;	/* bit 5 */
486da3c22c7SThomas Huth 			__u64 : 58;
487da3c22c7SThomas Huth 		};
488da3c22c7SThomas Huth 		__u64 feat;
489da3c22c7SThomas Huth 	};
490da3c22c7SThomas Huth };
491da3c22c7SThomas Huth 
49251628b18SChristian Borntraeger /* kvm attributes for crypto */
49351628b18SChristian Borntraeger #define KVM_S390_VM_CRYPTO_ENABLE_AES_KW	0
49451628b18SChristian Borntraeger #define KVM_S390_VM_CRYPTO_ENABLE_DEA_KW	1
49551628b18SChristian Borntraeger #define KVM_S390_VM_CRYPTO_DISABLE_AES_KW	2
49651628b18SChristian Borntraeger #define KVM_S390_VM_CRYPTO_DISABLE_DEA_KW	3
4978f3cd250SCornelia Huck #define KVM_S390_VM_CRYPTO_ENABLE_APIE		4
4988f3cd250SCornelia Huck #define KVM_S390_VM_CRYPTO_DISABLE_APIE		5
49976eb98d5SJens Freimann 
5003272f0e2SChristian Borntraeger /* kvm attributes for migration mode */
5013272f0e2SChristian Borntraeger #define KVM_S390_VM_MIGRATION_STOP	0
5023272f0e2SChristian Borntraeger #define KVM_S390_VM_MIGRATION_START	1
5033272f0e2SChristian Borntraeger #define KVM_S390_VM_MIGRATION_STATUS	2
5043272f0e2SChristian Borntraeger 
50551b24e34SJan Kiszka /* for KVM_GET_REGS and KVM_SET_REGS */
50651b24e34SJan Kiszka struct kvm_regs {
50751b24e34SJan Kiszka 	/* general purpose regs for s390 */
50851b24e34SJan Kiszka 	__u64 gprs[16];
50951b24e34SJan Kiszka };
51051b24e34SJan Kiszka 
51151b24e34SJan Kiszka /* for KVM_GET_SREGS and KVM_SET_SREGS */
51251b24e34SJan Kiszka struct kvm_sregs {
51351b24e34SJan Kiszka 	__u32 acrs[16];
51451b24e34SJan Kiszka 	__u64 crs[16];
51551b24e34SJan Kiszka };
51651b24e34SJan Kiszka 
51751b24e34SJan Kiszka /* for KVM_GET_FPU and KVM_SET_FPU */
51851b24e34SJan Kiszka struct kvm_fpu {
51951b24e34SJan Kiszka 	__u32 fpc;
52051b24e34SJan Kiszka 	__u64 fprs[16];
52151b24e34SJan Kiszka };
52251b24e34SJan Kiszka 
52376eb98d5SJens Freimann #define KVM_GUESTDBG_USE_HW_BP		0x00010000
52476eb98d5SJens Freimann 
52576eb98d5SJens Freimann #define KVM_HW_BP			1
52676eb98d5SJens Freimann #define KVM_HW_WP_WRITE			2
52776eb98d5SJens Freimann #define KVM_SINGLESTEP			4
52876eb98d5SJens Freimann 
52951b24e34SJan Kiszka struct kvm_debug_exit_arch {
53076eb98d5SJens Freimann 	__u64 addr;
53176eb98d5SJens Freimann 	__u8 type;
53276eb98d5SJens Freimann 	__u8 pad[7]; /* Should be set to 0 */
53376eb98d5SJens Freimann };
53476eb98d5SJens Freimann 
53576eb98d5SJens Freimann struct kvm_hw_breakpoint {
53676eb98d5SJens Freimann 	__u64 addr;
53776eb98d5SJens Freimann 	__u64 phys_addr;
53876eb98d5SJens Freimann 	__u64 len;
53976eb98d5SJens Freimann 	__u8 type;
54076eb98d5SJens Freimann 	__u8 pad[7]; /* Should be set to 0 */
54151b24e34SJan Kiszka };
54251b24e34SJan Kiszka 
54351b24e34SJan Kiszka /* for KVM_SET_GUEST_DEBUG */
54451b24e34SJan Kiszka struct kvm_guest_debug_arch {
54576eb98d5SJens Freimann 	__u32 nr_hw_bp;
54676eb98d5SJens Freimann 	__u32 pad; /* Should be set to 0 */
54776eb98d5SJens Freimann 	struct kvm_hw_breakpoint *hw_bp;
54851b24e34SJan Kiszka };
54951b24e34SJan Kiszka 
55051628b18SChristian Borntraeger /* for KVM_SYNC_PFAULT and KVM_REG_S390_PFTOKEN */
55151628b18SChristian Borntraeger #define KVM_S390_PFAULT_TOKEN_INVALID	0xffffffffffffffffULL
55251628b18SChristian Borntraeger 
5531529ae1bSAlexander Graf #define KVM_SYNC_PREFIX (1UL << 0)
5541529ae1bSAlexander Graf #define KVM_SYNC_GPRS   (1UL << 1)
5551529ae1bSAlexander Graf #define KVM_SYNC_ACRS   (1UL << 2)
5569ab2195dSMarcelo Tosatti #define KVM_SYNC_CRS    (1UL << 3)
557444b1996SArd Biesheuvel #define KVM_SYNC_ARCH0  (1UL << 4)
558444b1996SArd Biesheuvel #define KVM_SYNC_PFAULT (1UL << 5)
5597a52ce8aSCornelia Huck #define KVM_SYNC_VRS    (1UL << 6)
56066fb2d54SCornelia Huck #define KVM_SYNC_RICCB  (1UL << 7)
56166fb2d54SCornelia Huck #define KVM_SYNC_FPRS   (1UL << 8)
56274c98e20SCornelia Huck #define KVM_SYNC_GSCB   (1UL << 9)
5639cbb6362SCornelia Huck #define KVM_SYNC_BPBC   (1UL << 10)
564d36f7de8SCornelia Huck #define KVM_SYNC_ETOKEN (1UL << 11)
565e6546342SJason Wang #define KVM_SYNC_DIAG318 (1UL << 12)
566f363d039SEric Auger 
567f363d039SEric Auger #define KVM_SYNC_S390_VALID_FIELDS \
568f363d039SEric Auger 	(KVM_SYNC_PREFIX | KVM_SYNC_GPRS | KVM_SYNC_ACRS | KVM_SYNC_CRS | \
569f363d039SEric Auger 	 KVM_SYNC_ARCH0 | KVM_SYNC_PFAULT | KVM_SYNC_VRS | KVM_SYNC_RICCB | \
570e6546342SJason Wang 	 KVM_SYNC_FPRS | KVM_SYNC_GSCB | KVM_SYNC_BPBC | KVM_SYNC_ETOKEN | \
571e6546342SJason Wang 	 KVM_SYNC_DIAG318)
572f363d039SEric Auger 
57374c98e20SCornelia Huck /* length and alignment of the sdnx as a power of two */
57474c98e20SCornelia Huck #define SDNXC 8
57574c98e20SCornelia Huck #define SDNXL (1UL << SDNXC)
5761529ae1bSAlexander Graf /* definition of registers in kvm_run */
5771529ae1bSAlexander Graf struct kvm_sync_regs {
5781529ae1bSAlexander Graf 	__u64 prefix;	/* prefix register */
5791529ae1bSAlexander Graf 	__u64 gprs[16];	/* general purpose registers */
5801529ae1bSAlexander Graf 	__u32 acrs[16];	/* access registers */
5819ab2195dSMarcelo Tosatti 	__u64 crs[16];	/* control registers */
582444b1996SArd Biesheuvel 	__u64 todpr;	/* tod programmable register [ARCH0] */
583444b1996SArd Biesheuvel 	__u64 cputm;	/* cpu timer [ARCH0] */
584444b1996SArd Biesheuvel 	__u64 ckc;	/* clock comparator [ARCH0] */
585444b1996SArd Biesheuvel 	__u64 pp;	/* program parameter [ARCH0] */
586444b1996SArd Biesheuvel 	__u64 gbea;	/* guest breaking-event address [ARCH0] */
587444b1996SArd Biesheuvel 	__u64 pft;	/* pfault token [PFAULT] */
588444b1996SArd Biesheuvel 	__u64 pfs;	/* pfault select [PFAULT] */
589444b1996SArd Biesheuvel 	__u64 pfc;	/* pfault compare [PFAULT] */
59066fb2d54SCornelia Huck 	union {
59166fb2d54SCornelia Huck 		__u64 vrs[32][2];	/* vector registers (KVM_SYNC_VRS) */
59266fb2d54SCornelia Huck 		__u64 fprs[16];		/* fp registers (KVM_SYNC_FPRS) */
59366fb2d54SCornelia Huck 	};
5947a52ce8aSCornelia Huck 	__u8  reserved[512];	/* for future vector expansion */
59566fb2d54SCornelia Huck 	__u32 fpc;		/* valid on KVM_SYNC_VRS or KVM_SYNC_FPRS */
5969cbb6362SCornelia Huck 	__u8 bpbc : 1;		/* bp mode */
5979cbb6362SCornelia Huck 	__u8 reserved2 : 7;
5989cbb6362SCornelia Huck 	__u8 padding1[51];	/* riccb needs to be 64byte aligned */
59966fb2d54SCornelia Huck 	__u8 riccb[64];		/* runtime instrumentation controls block */
600e6546342SJason Wang 	__u64 diag318;		/* diagnose 0x318 info */
601e6546342SJason Wang 	__u8 padding2[184];	/* sdnx needs to be 256byte aligned */
60274c98e20SCornelia Huck 	union {
60374c98e20SCornelia Huck 		__u8 sdnx[SDNXL];  /* state description annex */
60474c98e20SCornelia Huck 		struct {
60574c98e20SCornelia Huck 			__u64 reserved1[2];
60674c98e20SCornelia Huck 			__u64 gscb[4];
607d36f7de8SCornelia Huck 			__u64 etoken;
608d36f7de8SCornelia Huck 			__u64 etoken_extension;
60974c98e20SCornelia Huck 		};
61074c98e20SCornelia Huck 	};
6111529ae1bSAlexander Graf };
6122a60dba4SAlexander Graf 
6132a60dba4SAlexander Graf #define KVM_REG_S390_TODPR	(KVM_REG_S390 | KVM_REG_SIZE_U32 | 0x1)
6142a60dba4SAlexander Graf #define KVM_REG_S390_EPOCHDIFF	(KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x2)
6152a60dba4SAlexander Graf #define KVM_REG_S390_CPU_TIMER  (KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x3)
6162a60dba4SAlexander Graf #define KVM_REG_S390_CLOCK_COMP (KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x4)
617216db403SChristian Borntraeger #define KVM_REG_S390_PFTOKEN	(KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x5)
618216db403SChristian Borntraeger #define KVM_REG_S390_PFCOMPARE	(KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x6)
619216db403SChristian Borntraeger #define KVM_REG_S390_PFSELECT	(KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x7)
6209ffd2685SCornelia Huck #define KVM_REG_S390_PP		(KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x8)
6219ffd2685SCornelia Huck #define KVM_REG_S390_GBEA	(KVM_REG_S390 | KVM_REG_SIZE_U64 | 0x9)
62251b24e34SJan Kiszka #endif
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