a41faf34b034c86a7e0bb214597ac30f400ddae4
[deliverable/linux.git] / arch / s390 / include / asm / kvm_host.h
1 /*
2 * definition for kernel virtual machines on s390
3 *
4 * Copyright IBM Corp. 2008, 2009
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License (version 2 only)
8 * as published by the Free Software Foundation.
9 *
10 * Author(s): Carsten Otte <cotte@de.ibm.com>
11 */
12
13
14 #ifndef ASM_KVM_HOST_H
15 #define ASM_KVM_HOST_H
16
17 #include <linux/types.h>
18 #include <linux/hrtimer.h>
19 #include <linux/interrupt.h>
20 #include <linux/kvm_types.h>
21 #include <linux/kvm_host.h>
22 #include <linux/kvm.h>
23 #include <linux/seqlock.h>
24 #include <asm/debug.h>
25 #include <asm/cpu.h>
26 #include <asm/fpu/api.h>
27 #include <asm/isc.h>
28
29 #define KVM_S390_BSCA_CPU_SLOTS 64
30 #define KVM_S390_ESCA_CPU_SLOTS 248
31 #define KVM_MAX_VCPUS 255
32 #define KVM_USER_MEM_SLOTS 32
33
34 /*
35 * These seem to be used for allocating ->chip in the routing table,
36 * which we don't use. 4096 is an out-of-thin-air value. If we need
37 * to look at ->chip later on, we'll need to revisit this.
38 */
39 #define KVM_NR_IRQCHIPS 1
40 #define KVM_IRQCHIP_NUM_PINS 4096
41 #define KVM_HALT_POLL_NS_DEFAULT 80000
42
43 /* s390-specific vcpu->requests bit members */
44 #define KVM_REQ_ENABLE_IBS 8
45 #define KVM_REQ_DISABLE_IBS 9
46 #define KVM_REQ_ICPT_OPEREXC 10
47
48 #define SIGP_CTRL_C 0x80
49 #define SIGP_CTRL_SCN_MASK 0x3f
50
51 union bsca_sigp_ctrl {
52 __u8 value;
53 struct {
54 __u8 c : 1;
55 __u8 r : 1;
56 __u8 scn : 6;
57 };
58 } __packed;
59
60 union esca_sigp_ctrl {
61 __u16 value;
62 struct {
63 __u8 c : 1;
64 __u8 reserved: 7;
65 __u8 scn;
66 };
67 } __packed;
68
69 struct esca_entry {
70 union esca_sigp_ctrl sigp_ctrl;
71 __u16 reserved1[3];
72 __u64 sda;
73 __u64 reserved2[6];
74 } __packed;
75
76 struct bsca_entry {
77 __u8 reserved0;
78 union bsca_sigp_ctrl sigp_ctrl;
79 __u16 reserved[3];
80 __u64 sda;
81 __u64 reserved2[2];
82 } __attribute__((packed));
83
84 union ipte_control {
85 unsigned long val;
86 struct {
87 unsigned long k : 1;
88 unsigned long kh : 31;
89 unsigned long kg : 32;
90 };
91 };
92
93 struct bsca_block {
94 union ipte_control ipte_control;
95 __u64 reserved[5];
96 __u64 mcn;
97 __u64 reserved2;
98 struct bsca_entry cpu[KVM_S390_BSCA_CPU_SLOTS];
99 } __attribute__((packed));
100
101 struct esca_block {
102 union ipte_control ipte_control;
103 __u64 reserved1[7];
104 __u64 mcn[4];
105 __u64 reserved2[20];
106 struct esca_entry cpu[KVM_S390_ESCA_CPU_SLOTS];
107 } __packed;
108
109 #define CPUSTAT_STOPPED 0x80000000
110 #define CPUSTAT_WAIT 0x10000000
111 #define CPUSTAT_ECALL_PEND 0x08000000
112 #define CPUSTAT_STOP_INT 0x04000000
113 #define CPUSTAT_IO_INT 0x02000000
114 #define CPUSTAT_EXT_INT 0x01000000
115 #define CPUSTAT_RUNNING 0x00800000
116 #define CPUSTAT_RETAINED 0x00400000
117 #define CPUSTAT_TIMING_SUB 0x00020000
118 #define CPUSTAT_SIE_SUB 0x00010000
119 #define CPUSTAT_RRF 0x00008000
120 #define CPUSTAT_SLSV 0x00004000
121 #define CPUSTAT_SLSR 0x00002000
122 #define CPUSTAT_ZARCH 0x00000800
123 #define CPUSTAT_MCDS 0x00000100
124 #define CPUSTAT_SM 0x00000080
125 #define CPUSTAT_IBS 0x00000040
126 #define CPUSTAT_GED2 0x00000010
127 #define CPUSTAT_G 0x00000008
128 #define CPUSTAT_GED 0x00000004
129 #define CPUSTAT_J 0x00000002
130 #define CPUSTAT_P 0x00000001
131
132 struct kvm_s390_sie_block {
133 atomic_t cpuflags; /* 0x0000 */
134 __u32 : 1; /* 0x0004 */
135 __u32 prefix : 18;
136 __u32 : 1;
137 __u32 ibc : 12;
138 __u8 reserved08[4]; /* 0x0008 */
139 #define PROG_IN_SIE (1<<0)
140 __u32 prog0c; /* 0x000c */
141 __u8 reserved10[16]; /* 0x0010 */
142 #define PROG_BLOCK_SIE (1<<0)
143 #define PROG_REQUEST (1<<1)
144 atomic_t prog20; /* 0x0020 */
145 __u8 reserved24[4]; /* 0x0024 */
146 __u64 cputm; /* 0x0028 */
147 __u64 ckc; /* 0x0030 */
148 __u64 epoch; /* 0x0038 */
149 __u32 svcc; /* 0x0040 */
150 #define LCTL_CR0 0x8000
151 #define LCTL_CR6 0x0200
152 #define LCTL_CR9 0x0040
153 #define LCTL_CR10 0x0020
154 #define LCTL_CR11 0x0010
155 #define LCTL_CR14 0x0002
156 __u16 lctl; /* 0x0044 */
157 __s16 icpua; /* 0x0046 */
158 #define ICTL_OPEREXC 0x80000000
159 #define ICTL_PINT 0x20000000
160 #define ICTL_LPSW 0x00400000
161 #define ICTL_STCTL 0x00040000
162 #define ICTL_ISKE 0x00004000
163 #define ICTL_SSKE 0x00002000
164 #define ICTL_RRBE 0x00001000
165 #define ICTL_TPROT 0x00000200
166 __u32 ictl; /* 0x0048 */
167 __u32 eca; /* 0x004c */
168 #define ICPT_INST 0x04
169 #define ICPT_PROGI 0x08
170 #define ICPT_INSTPROGI 0x0C
171 #define ICPT_EXTINT 0x14
172 #define ICPT_VALIDITY 0x20
173 #define ICPT_STOP 0x28
174 #define ICPT_OPEREXC 0x2C
175 #define ICPT_PARTEXEC 0x38
176 #define ICPT_IOINST 0x40
177 __u8 icptcode; /* 0x0050 */
178 __u8 icptstatus; /* 0x0051 */
179 __u16 ihcpu; /* 0x0052 */
180 __u8 reserved54[2]; /* 0x0054 */
181 __u16 ipa; /* 0x0056 */
182 __u32 ipb; /* 0x0058 */
183 __u32 scaoh; /* 0x005c */
184 __u8 reserved60; /* 0x0060 */
185 __u8 ecb; /* 0x0061 */
186 __u8 ecb2; /* 0x0062 */
187 #define ECB3_AES 0x04
188 #define ECB3_DEA 0x08
189 __u8 ecb3; /* 0x0063 */
190 __u32 scaol; /* 0x0064 */
191 __u8 reserved68[4]; /* 0x0068 */
192 __u32 todpr; /* 0x006c */
193 __u8 reserved70[16]; /* 0x0070 */
194 __u64 mso; /* 0x0080 */
195 __u64 msl; /* 0x0088 */
196 psw_t gpsw; /* 0x0090 */
197 __u64 gg14; /* 0x00a0 */
198 __u64 gg15; /* 0x00a8 */
199 __u8 reservedb0[20]; /* 0x00b0 */
200 __u16 extcpuaddr; /* 0x00c4 */
201 __u16 eic; /* 0x00c6 */
202 __u32 reservedc8; /* 0x00c8 */
203 __u16 pgmilc; /* 0x00cc */
204 __u16 iprcc; /* 0x00ce */
205 __u32 dxc; /* 0x00d0 */
206 __u16 mcn; /* 0x00d4 */
207 __u8 perc; /* 0x00d6 */
208 __u8 peratmid; /* 0x00d7 */
209 __u64 peraddr; /* 0x00d8 */
210 __u8 eai; /* 0x00e0 */
211 __u8 peraid; /* 0x00e1 */
212 __u8 oai; /* 0x00e2 */
213 __u8 armid; /* 0x00e3 */
214 __u8 reservede4[4]; /* 0x00e4 */
215 __u64 tecmc; /* 0x00e8 */
216 __u8 reservedf0[12]; /* 0x00f0 */
217 #define CRYCB_FORMAT1 0x00000001
218 #define CRYCB_FORMAT2 0x00000003
219 __u32 crycbd; /* 0x00fc */
220 __u64 gcr[16]; /* 0x0100 */
221 __u64 gbea; /* 0x0180 */
222 __u8 reserved188[24]; /* 0x0188 */
223 __u32 fac; /* 0x01a0 */
224 __u8 reserved1a4[20]; /* 0x01a4 */
225 __u64 cbrlo; /* 0x01b8 */
226 __u8 reserved1c0[8]; /* 0x01c0 */
227 __u32 ecd; /* 0x01c8 */
228 __u8 reserved1cc[18]; /* 0x01cc */
229 __u64 pp; /* 0x01de */
230 __u8 reserved1e6[2]; /* 0x01e6 */
231 __u64 itdba; /* 0x01e8 */
232 __u64 riccbd; /* 0x01f0 */
233 __u64 gvrd; /* 0x01f8 */
234 } __attribute__((packed));
235
236 struct kvm_s390_itdb {
237 __u8 data[256];
238 } __packed;
239
240 struct sie_page {
241 struct kvm_s390_sie_block sie_block;
242 __u8 reserved200[1024]; /* 0x0200 */
243 struct kvm_s390_itdb itdb; /* 0x0600 */
244 __u8 reserved700[2304]; /* 0x0700 */
245 } __packed;
246
247 struct kvm_vcpu_stat {
248 u64 exit_userspace;
249 u64 exit_null;
250 u64 exit_external_request;
251 u64 exit_external_interrupt;
252 u64 exit_stop_request;
253 u64 exit_validity;
254 u64 exit_instruction;
255 u64 exit_pei;
256 u64 halt_successful_poll;
257 u64 halt_attempted_poll;
258 u64 halt_poll_invalid;
259 u64 halt_wakeup;
260 u64 instruction_lctl;
261 u64 instruction_lctlg;
262 u64 instruction_stctl;
263 u64 instruction_stctg;
264 u64 exit_program_interruption;
265 u64 exit_instr_and_program;
266 u64 exit_operation_exception;
267 u64 deliver_external_call;
268 u64 deliver_emergency_signal;
269 u64 deliver_service_signal;
270 u64 deliver_virtio_interrupt;
271 u64 deliver_stop_signal;
272 u64 deliver_prefix_signal;
273 u64 deliver_restart_signal;
274 u64 deliver_program_int;
275 u64 deliver_io_int;
276 u64 exit_wait_state;
277 u64 instruction_pfmf;
278 u64 instruction_stidp;
279 u64 instruction_spx;
280 u64 instruction_stpx;
281 u64 instruction_stap;
282 u64 instruction_storage_key;
283 u64 instruction_ipte_interlock;
284 u64 instruction_stsch;
285 u64 instruction_chsc;
286 u64 instruction_stsi;
287 u64 instruction_stfl;
288 u64 instruction_tprot;
289 u64 instruction_sie;
290 u64 instruction_essa;
291 u64 instruction_sthyi;
292 u64 instruction_sigp_sense;
293 u64 instruction_sigp_sense_running;
294 u64 instruction_sigp_external_call;
295 u64 instruction_sigp_emergency;
296 u64 instruction_sigp_cond_emergency;
297 u64 instruction_sigp_start;
298 u64 instruction_sigp_stop;
299 u64 instruction_sigp_stop_store_status;
300 u64 instruction_sigp_store_status;
301 u64 instruction_sigp_store_adtl_status;
302 u64 instruction_sigp_arch;
303 u64 instruction_sigp_prefix;
304 u64 instruction_sigp_restart;
305 u64 instruction_sigp_init_cpu_reset;
306 u64 instruction_sigp_cpu_reset;
307 u64 instruction_sigp_unknown;
308 u64 diagnose_10;
309 u64 diagnose_44;
310 u64 diagnose_9c;
311 u64 diagnose_258;
312 u64 diagnose_308;
313 u64 diagnose_500;
314 };
315
316 #define PGM_OPERATION 0x01
317 #define PGM_PRIVILEGED_OP 0x02
318 #define PGM_EXECUTE 0x03
319 #define PGM_PROTECTION 0x04
320 #define PGM_ADDRESSING 0x05
321 #define PGM_SPECIFICATION 0x06
322 #define PGM_DATA 0x07
323 #define PGM_FIXED_POINT_OVERFLOW 0x08
324 #define PGM_FIXED_POINT_DIVIDE 0x09
325 #define PGM_DECIMAL_OVERFLOW 0x0a
326 #define PGM_DECIMAL_DIVIDE 0x0b
327 #define PGM_HFP_EXPONENT_OVERFLOW 0x0c
328 #define PGM_HFP_EXPONENT_UNDERFLOW 0x0d
329 #define PGM_HFP_SIGNIFICANCE 0x0e
330 #define PGM_HFP_DIVIDE 0x0f
331 #define PGM_SEGMENT_TRANSLATION 0x10
332 #define PGM_PAGE_TRANSLATION 0x11
333 #define PGM_TRANSLATION_SPEC 0x12
334 #define PGM_SPECIAL_OPERATION 0x13
335 #define PGM_OPERAND 0x15
336 #define PGM_TRACE_TABEL 0x16
337 #define PGM_VECTOR_PROCESSING 0x1b
338 #define PGM_SPACE_SWITCH 0x1c
339 #define PGM_HFP_SQUARE_ROOT 0x1d
340 #define PGM_PC_TRANSLATION_SPEC 0x1f
341 #define PGM_AFX_TRANSLATION 0x20
342 #define PGM_ASX_TRANSLATION 0x21
343 #define PGM_LX_TRANSLATION 0x22
344 #define PGM_EX_TRANSLATION 0x23
345 #define PGM_PRIMARY_AUTHORITY 0x24
346 #define PGM_SECONDARY_AUTHORITY 0x25
347 #define PGM_LFX_TRANSLATION 0x26
348 #define PGM_LSX_TRANSLATION 0x27
349 #define PGM_ALET_SPECIFICATION 0x28
350 #define PGM_ALEN_TRANSLATION 0x29
351 #define PGM_ALE_SEQUENCE 0x2a
352 #define PGM_ASTE_VALIDITY 0x2b
353 #define PGM_ASTE_SEQUENCE 0x2c
354 #define PGM_EXTENDED_AUTHORITY 0x2d
355 #define PGM_LSTE_SEQUENCE 0x2e
356 #define PGM_ASTE_INSTANCE 0x2f
357 #define PGM_STACK_FULL 0x30
358 #define PGM_STACK_EMPTY 0x31
359 #define PGM_STACK_SPECIFICATION 0x32
360 #define PGM_STACK_TYPE 0x33
361 #define PGM_STACK_OPERATION 0x34
362 #define PGM_ASCE_TYPE 0x38
363 #define PGM_REGION_FIRST_TRANS 0x39
364 #define PGM_REGION_SECOND_TRANS 0x3a
365 #define PGM_REGION_THIRD_TRANS 0x3b
366 #define PGM_MONITOR 0x40
367 #define PGM_PER 0x80
368 #define PGM_CRYPTO_OPERATION 0x119
369
370 /* irq types in order of priority */
371 enum irq_types {
372 IRQ_PEND_MCHK_EX = 0,
373 IRQ_PEND_SVC,
374 IRQ_PEND_PROG,
375 IRQ_PEND_MCHK_REP,
376 IRQ_PEND_EXT_IRQ_KEY,
377 IRQ_PEND_EXT_MALFUNC,
378 IRQ_PEND_EXT_EMERGENCY,
379 IRQ_PEND_EXT_EXTERNAL,
380 IRQ_PEND_EXT_CLOCK_COMP,
381 IRQ_PEND_EXT_CPU_TIMER,
382 IRQ_PEND_EXT_TIMING,
383 IRQ_PEND_EXT_SERVICE,
384 IRQ_PEND_EXT_HOST,
385 IRQ_PEND_PFAULT_INIT,
386 IRQ_PEND_PFAULT_DONE,
387 IRQ_PEND_VIRTIO,
388 IRQ_PEND_IO_ISC_0,
389 IRQ_PEND_IO_ISC_1,
390 IRQ_PEND_IO_ISC_2,
391 IRQ_PEND_IO_ISC_3,
392 IRQ_PEND_IO_ISC_4,
393 IRQ_PEND_IO_ISC_5,
394 IRQ_PEND_IO_ISC_6,
395 IRQ_PEND_IO_ISC_7,
396 IRQ_PEND_SIGP_STOP,
397 IRQ_PEND_RESTART,
398 IRQ_PEND_SET_PREFIX,
399 IRQ_PEND_COUNT
400 };
401
402 /* We have 2M for virtio device descriptor pages. Smallest amount of
403 * memory per page is 24 bytes (1 queue), so (2048*1024) / 24 = 87381
404 */
405 #define KVM_S390_MAX_VIRTIO_IRQS 87381
406
407 /*
408 * Repressible (non-floating) machine check interrupts
409 * subclass bits in MCIC
410 */
411 #define MCHK_EXTD_BIT 58
412 #define MCHK_DEGR_BIT 56
413 #define MCHK_WARN_BIT 55
414 #define MCHK_REP_MASK ((1UL << MCHK_DEGR_BIT) | \
415 (1UL << MCHK_EXTD_BIT) | \
416 (1UL << MCHK_WARN_BIT))
417
418 /* Exigent machine check interrupts subclass bits in MCIC */
419 #define MCHK_SD_BIT 63
420 #define MCHK_PD_BIT 62
421 #define MCHK_EX_MASK ((1UL << MCHK_SD_BIT) | (1UL << MCHK_PD_BIT))
422
423 #define IRQ_PEND_EXT_MASK ((1UL << IRQ_PEND_EXT_IRQ_KEY) | \
424 (1UL << IRQ_PEND_EXT_CLOCK_COMP) | \
425 (1UL << IRQ_PEND_EXT_CPU_TIMER) | \
426 (1UL << IRQ_PEND_EXT_MALFUNC) | \
427 (1UL << IRQ_PEND_EXT_EMERGENCY) | \
428 (1UL << IRQ_PEND_EXT_EXTERNAL) | \
429 (1UL << IRQ_PEND_EXT_TIMING) | \
430 (1UL << IRQ_PEND_EXT_HOST) | \
431 (1UL << IRQ_PEND_EXT_SERVICE) | \
432 (1UL << IRQ_PEND_VIRTIO) | \
433 (1UL << IRQ_PEND_PFAULT_INIT) | \
434 (1UL << IRQ_PEND_PFAULT_DONE))
435
436 #define IRQ_PEND_IO_MASK ((1UL << IRQ_PEND_IO_ISC_0) | \
437 (1UL << IRQ_PEND_IO_ISC_1) | \
438 (1UL << IRQ_PEND_IO_ISC_2) | \
439 (1UL << IRQ_PEND_IO_ISC_3) | \
440 (1UL << IRQ_PEND_IO_ISC_4) | \
441 (1UL << IRQ_PEND_IO_ISC_5) | \
442 (1UL << IRQ_PEND_IO_ISC_6) | \
443 (1UL << IRQ_PEND_IO_ISC_7))
444
445 #define IRQ_PEND_MCHK_MASK ((1UL << IRQ_PEND_MCHK_REP) | \
446 (1UL << IRQ_PEND_MCHK_EX))
447
448 struct kvm_s390_interrupt_info {
449 struct list_head list;
450 u64 type;
451 union {
452 struct kvm_s390_io_info io;
453 struct kvm_s390_ext_info ext;
454 struct kvm_s390_pgm_info pgm;
455 struct kvm_s390_emerg_info emerg;
456 struct kvm_s390_extcall_info extcall;
457 struct kvm_s390_prefix_info prefix;
458 struct kvm_s390_stop_info stop;
459 struct kvm_s390_mchk_info mchk;
460 };
461 };
462
463 struct kvm_s390_irq_payload {
464 struct kvm_s390_io_info io;
465 struct kvm_s390_ext_info ext;
466 struct kvm_s390_pgm_info pgm;
467 struct kvm_s390_emerg_info emerg;
468 struct kvm_s390_extcall_info extcall;
469 struct kvm_s390_prefix_info prefix;
470 struct kvm_s390_stop_info stop;
471 struct kvm_s390_mchk_info mchk;
472 };
473
474 struct kvm_s390_local_interrupt {
475 spinlock_t lock;
476 struct kvm_s390_float_interrupt *float_int;
477 struct swait_queue_head *wq;
478 atomic_t *cpuflags;
479 DECLARE_BITMAP(sigp_emerg_pending, KVM_MAX_VCPUS);
480 struct kvm_s390_irq_payload irq;
481 unsigned long pending_irqs;
482 };
483
484 #define FIRQ_LIST_IO_ISC_0 0
485 #define FIRQ_LIST_IO_ISC_1 1
486 #define FIRQ_LIST_IO_ISC_2 2
487 #define FIRQ_LIST_IO_ISC_3 3
488 #define FIRQ_LIST_IO_ISC_4 4
489 #define FIRQ_LIST_IO_ISC_5 5
490 #define FIRQ_LIST_IO_ISC_6 6
491 #define FIRQ_LIST_IO_ISC_7 7
492 #define FIRQ_LIST_PFAULT 8
493 #define FIRQ_LIST_VIRTIO 9
494 #define FIRQ_LIST_COUNT 10
495 #define FIRQ_CNTR_IO 0
496 #define FIRQ_CNTR_SERVICE 1
497 #define FIRQ_CNTR_VIRTIO 2
498 #define FIRQ_CNTR_PFAULT 3
499 #define FIRQ_MAX_COUNT 4
500
501 struct kvm_s390_float_interrupt {
502 unsigned long pending_irqs;
503 spinlock_t lock;
504 struct list_head lists[FIRQ_LIST_COUNT];
505 int counters[FIRQ_MAX_COUNT];
506 struct kvm_s390_mchk_info mchk;
507 struct kvm_s390_ext_info srv_signal;
508 int next_rr_cpu;
509 unsigned long idle_mask[BITS_TO_LONGS(KVM_MAX_VCPUS)];
510 };
511
512 struct kvm_hw_wp_info_arch {
513 unsigned long addr;
514 unsigned long phys_addr;
515 int len;
516 char *old_data;
517 };
518
519 struct kvm_hw_bp_info_arch {
520 unsigned long addr;
521 int len;
522 };
523
524 /*
525 * Only the upper 16 bits of kvm_guest_debug->control are arch specific.
526 * Further KVM_GUESTDBG flags which an be used from userspace can be found in
527 * arch/s390/include/uapi/asm/kvm.h
528 */
529 #define KVM_GUESTDBG_EXIT_PENDING 0x10000000
530
531 #define guestdbg_enabled(vcpu) \
532 (vcpu->guest_debug & KVM_GUESTDBG_ENABLE)
533 #define guestdbg_sstep_enabled(vcpu) \
534 (vcpu->guest_debug & KVM_GUESTDBG_SINGLESTEP)
535 #define guestdbg_hw_bp_enabled(vcpu) \
536 (vcpu->guest_debug & KVM_GUESTDBG_USE_HW_BP)
537 #define guestdbg_exit_pending(vcpu) (guestdbg_enabled(vcpu) && \
538 (vcpu->guest_debug & KVM_GUESTDBG_EXIT_PENDING))
539
540 struct kvm_guestdbg_info_arch {
541 unsigned long cr0;
542 unsigned long cr9;
543 unsigned long cr10;
544 unsigned long cr11;
545 struct kvm_hw_bp_info_arch *hw_bp_info;
546 struct kvm_hw_wp_info_arch *hw_wp_info;
547 int nr_hw_bp;
548 int nr_hw_wp;
549 unsigned long last_bp;
550 };
551
552 struct kvm_vcpu_arch {
553 struct kvm_s390_sie_block *sie_block;
554 /* if vsie is active, currently executed shadow sie control block */
555 struct kvm_s390_sie_block *vsie_block;
556 unsigned int host_acrs[NUM_ACRS];
557 struct fpu host_fpregs;
558 struct kvm_s390_local_interrupt local_int;
559 struct hrtimer ckc_timer;
560 struct kvm_s390_pgm_info pgm;
561 struct gmap *gmap;
562 /* backup location for the currently enabled gmap when scheduled out */
563 struct gmap *enabled_gmap;
564 struct kvm_guestdbg_info_arch guestdbg;
565 unsigned long pfault_token;
566 unsigned long pfault_select;
567 unsigned long pfault_compare;
568 bool cputm_enabled;
569 /*
570 * The seqcount protects updates to cputm_start and sie_block.cputm,
571 * this way we can have non-blocking reads with consistent values.
572 * Only the owning VCPU thread (vcpu->cpu) is allowed to change these
573 * values and to start/stop/enable/disable cpu timer accounting.
574 */
575 seqcount_t cputm_seqcount;
576 __u64 cputm_start;
577 };
578
579 struct kvm_vm_stat {
580 ulong remote_tlb_flush;
581 };
582
583 struct kvm_arch_memory_slot {
584 };
585
586 struct s390_map_info {
587 struct list_head list;
588 __u64 guest_addr;
589 __u64 addr;
590 struct page *page;
591 };
592
593 struct s390_io_adapter {
594 unsigned int id;
595 int isc;
596 bool maskable;
597 bool masked;
598 bool swap;
599 struct rw_semaphore maps_lock;
600 struct list_head maps;
601 atomic_t nr_maps;
602 };
603
604 #define MAX_S390_IO_ADAPTERS ((MAX_ISC + 1) * 8)
605 #define MAX_S390_ADAPTER_MAPS 256
606
607 /* maximum size of facilities and facility mask is 2k bytes */
608 #define S390_ARCH_FAC_LIST_SIZE_BYTE (1<<11)
609 #define S390_ARCH_FAC_LIST_SIZE_U64 \
610 (S390_ARCH_FAC_LIST_SIZE_BYTE / sizeof(u64))
611 #define S390_ARCH_FAC_MASK_SIZE_BYTE S390_ARCH_FAC_LIST_SIZE_BYTE
612 #define S390_ARCH_FAC_MASK_SIZE_U64 \
613 (S390_ARCH_FAC_MASK_SIZE_BYTE / sizeof(u64))
614
615 struct kvm_s390_cpu_model {
616 /* facility mask supported by kvm & hosting machine */
617 __u64 fac_mask[S390_ARCH_FAC_LIST_SIZE_U64];
618 /* facility list requested by guest (in dma page) */
619 __u64 *fac_list;
620 u64 cpuid;
621 unsigned short ibc;
622 };
623
624 struct kvm_s390_crypto {
625 struct kvm_s390_crypto_cb *crycb;
626 __u32 crycbd;
627 __u8 aes_kw;
628 __u8 dea_kw;
629 };
630
631 struct kvm_s390_crypto_cb {
632 __u8 reserved00[72]; /* 0x0000 */
633 __u8 dea_wrapping_key_mask[24]; /* 0x0048 */
634 __u8 aes_wrapping_key_mask[32]; /* 0x0060 */
635 __u8 reserved80[128]; /* 0x0080 */
636 };
637
638 /*
639 * sie_page2 has to be allocated as DMA because fac_list and crycb need
640 * 31bit addresses in the sie control block.
641 */
642 struct sie_page2 {
643 __u64 fac_list[S390_ARCH_FAC_LIST_SIZE_U64]; /* 0x0000 */
644 struct kvm_s390_crypto_cb crycb; /* 0x0800 */
645 u8 reserved900[0x1000 - 0x900]; /* 0x0900 */
646 } __packed;
647
648 struct kvm_s390_vsie {
649 struct mutex mutex;
650 struct radix_tree_root addr_to_page;
651 int page_count;
652 int next;
653 struct page *pages[KVM_MAX_VCPUS];
654 };
655
656 struct kvm_arch{
657 void *sca;
658 int use_esca;
659 rwlock_t sca_lock;
660 debug_info_t *dbf;
661 struct kvm_s390_float_interrupt float_int;
662 struct kvm_device *flic;
663 struct gmap *gmap;
664 unsigned long mem_limit;
665 int css_support;
666 int use_irqchip;
667 int use_cmma;
668 int user_cpu_state_ctrl;
669 int user_sigp;
670 int user_stsi;
671 int user_instr0;
672 struct s390_io_adapter *adapters[MAX_S390_IO_ADAPTERS];
673 wait_queue_head_t ipte_wq;
674 int ipte_lock_count;
675 struct mutex ipte_mutex;
676 struct ratelimit_state sthyi_limit;
677 spinlock_t start_stop_lock;
678 struct sie_page2 *sie_page2;
679 struct kvm_s390_cpu_model model;
680 struct kvm_s390_crypto crypto;
681 struct kvm_s390_vsie vsie;
682 u64 epoch;
683 /* subset of available cpu features enabled by user space */
684 DECLARE_BITMAP(cpu_feat, KVM_S390_VM_CPU_FEAT_NR_BITS);
685 };
686
687 #define KVM_HVA_ERR_BAD (-1UL)
688 #define KVM_HVA_ERR_RO_BAD (-2UL)
689
690 static inline bool kvm_is_error_hva(unsigned long addr)
691 {
692 return IS_ERR_VALUE(addr);
693 }
694
695 #define ASYNC_PF_PER_VCPU 64
696 struct kvm_arch_async_pf {
697 unsigned long pfault_token;
698 };
699
700 bool kvm_arch_can_inject_async_page_present(struct kvm_vcpu *vcpu);
701
702 void kvm_arch_async_page_ready(struct kvm_vcpu *vcpu,
703 struct kvm_async_pf *work);
704
705 void kvm_arch_async_page_not_present(struct kvm_vcpu *vcpu,
706 struct kvm_async_pf *work);
707
708 void kvm_arch_async_page_present(struct kvm_vcpu *vcpu,
709 struct kvm_async_pf *work);
710
711 extern int sie64a(struct kvm_s390_sie_block *, u64 *);
712 extern char sie_exit;
713
714 static inline void kvm_arch_hardware_disable(void) {}
715 static inline void kvm_arch_check_processor_compat(void *rtn) {}
716 static inline void kvm_arch_sync_events(struct kvm *kvm) {}
717 static inline void kvm_arch_vcpu_uninit(struct kvm_vcpu *vcpu) {}
718 static inline void kvm_arch_sched_in(struct kvm_vcpu *vcpu, int cpu) {}
719 static inline void kvm_arch_free_memslot(struct kvm *kvm,
720 struct kvm_memory_slot *free, struct kvm_memory_slot *dont) {}
721 static inline void kvm_arch_memslots_updated(struct kvm *kvm, struct kvm_memslots *slots) {}
722 static inline void kvm_arch_flush_shadow_all(struct kvm *kvm) {}
723 static inline void kvm_arch_flush_shadow_memslot(struct kvm *kvm,
724 struct kvm_memory_slot *slot) {}
725 static inline void kvm_arch_vcpu_blocking(struct kvm_vcpu *vcpu) {}
726 static inline void kvm_arch_vcpu_unblocking(struct kvm_vcpu *vcpu) {}
727
728 void kvm_arch_vcpu_block_finish(struct kvm_vcpu *vcpu);
729
730 #endif
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