]> git.proxmox.com Git - mirror_qemu.git/blame - target/s390x/cpu.h
s390/stattrib: Make SaveVMHandlers data static
[mirror_qemu.git] / target / s390x / cpu.h
CommitLineData
10ec5117
AG
1/*
2 * S/390 virtual CPU header
3 *
4 * Copyright (c) 2009 Ulrich Hecht
5 *
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2 of the License, or (at your option) any later version.
10 *
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
15 *
ccb084d3
CB
16 * Contributions after 2012-10-29 are licensed under the terms of the
17 * GNU GPL, version 2 or (at your option) any later version.
18 *
19 * You should have received a copy of the GNU (Lesser) General Public
70539e18 20 * License along with this library; if not, see <http://www.gnu.org/licenses/>.
10ec5117 21 */
07f5a258
MA
22
23#ifndef S390X_CPU_H
24#define S390X_CPU_H
45133b74 25
45133b74 26#include "qemu-common.h"
a4a02f99 27#include "cpu-qom.h"
ef2974cc 28#include "cpu_models.h"
10ec5117
AG
29
30#define TARGET_LONG_BITS 64
31
4ab23a91 32#define ELF_MACHINE_UNAME "S390X"
10ec5117 33
9349b4f9 34#define CPUArchState struct CPUS390XState
10ec5117 35
022c62cb 36#include "exec/cpu-defs.h"
bcec36ea
AG
37#define TARGET_PAGE_BITS 12
38
5b23fd03 39#define TARGET_PHYS_ADDR_SPACE_BITS 64
bcec36ea
AG
40#define TARGET_VIRT_ADDR_SPACE_BITS 64
41
022c62cb 42#include "exec/cpu-all.h"
10ec5117 43
fb66944d 44#define NB_MMU_MODES 4
a3fd5220 45#define TARGET_INSN_START_EXTRA_WORDS 1
10ec5117 46
bcec36ea
AG
47#define MMU_MODE0_SUFFIX _primary
48#define MMU_MODE1_SUFFIX _secondary
49#define MMU_MODE2_SUFFIX _home
fb66944d 50#define MMU_MODE3_SUFFIX _real
bcec36ea 51
1f65958d 52#define MMU_USER_IDX 0
bcec36ea 53
f42dc44a
DH
54#define S390_MAX_CPUS 248
55
bcec36ea
AG
56typedef struct PSW {
57 uint64_t mask;
58 uint64_t addr;
59} PSW;
60
ef2974cc 61struct CPUS390XState {
1ac5889f 62 uint64_t regs[16]; /* GP registers */
fcb79802
EF
63 /*
64 * The floating point registers are part of the vector registers.
65 * vregs[0][0] -> vregs[15][0] are 16 floating point registers
66 */
67 CPU_DoubleU vregs[32][2]; /* vector registers */
1ac5889f 68 uint32_t aregs[16]; /* access registers */
cb4f4bc3 69 uint8_t riccb[64]; /* runtime instrumentation control */
62deb62d 70 uint64_t gscb[4]; /* guarded storage control */
cb4f4bc3
CB
71
72 /* Fields up to this point are not cleared by initial CPU reset */
73 struct {} start_initial_reset_fields;
10ec5117 74
1ac5889f
RH
75 uint32_t fpc; /* floating-point control register */
76 uint32_t cc_op;
b073c875 77 bool bpbc; /* branch prediction blocking */
10ec5117 78
10ec5117
AG
79 float_status fpu_status; /* passed to softfloat lib */
80
1ac5889f
RH
81 /* The low part of a 128-bit return, or remainder of a divide. */
82 uint64_t retxl;
83
bcec36ea 84 PSW psw;
10ec5117 85
4ada99ad
CB
86 S390CrashReason crash_reason;
87
bcec36ea
AG
88 uint64_t cc_src;
89 uint64_t cc_dst;
90 uint64_t cc_vr;
10ec5117 91
303c681a
RH
92 uint64_t ex_value;
93
10ec5117 94 uint64_t __excp_addr;
bcec36ea
AG
95 uint64_t psa;
96
97 uint32_t int_pgm_code;
d5a103cd 98 uint32_t int_pgm_ilen;
bcec36ea
AG
99
100 uint32_t int_svc_code;
d5a103cd 101 uint32_t int_svc_ilen;
bcec36ea 102
777c98c3
AJ
103 uint64_t per_address;
104 uint16_t per_perc_atmid;
105
bcec36ea
AG
106 uint64_t cregs[16]; /* control registers */
107
5d69c547 108 int pending_int;
14ca122e
DH
109 uint16_t external_call_addr;
110 DECLARE_BITMAP(emergency_signals, S390_MAX_CPUS);
5d69c547
CH
111
112 uint64_t ckc;
113 uint64_t cputm;
114 uint32_t todpr;
4e836781 115
819bd309
DD
116 uint64_t pfault_token;
117 uint64_t pfault_compare;
118 uint64_t pfault_select;
119
44b0c0bb
CB
120 uint64_t gbea;
121 uint64_t pp;
122
1f5c00cf
AB
123 /* Fields up to this point are cleared by a CPU reset */
124 struct {} end_reset_fields;
4e836781 125
1f5c00cf 126 CPU_COMMON
bcec36ea 127
1e70ba24 128#if !defined(CONFIG_USER_ONLY)
ca5c1457 129 uint32_t core_id; /* PoP "CPU address", same as cpu_index */
076d4d39 130 uint64_t cpuid;
1e70ba24 131#endif
7f745b31 132
bcec36ea
AG
133 uint64_t tod_offset;
134 uint64_t tod_basetime;
135 QEMUTimer *tod_timer;
136
137 QEMUTimer *cpu_timer;
75973bfe
DH
138
139 /*
140 * The cpu state represents the logical state of a cpu. In contrast to other
141 * architectures, there is a difference between a halt and a stop on s390.
142 * If all cpus are either stopped (including check stop) or in the disabled
143 * wait state, the vm can be shut down.
144 */
145#define CPU_STATE_UNINITIALIZED 0x00
146#define CPU_STATE_STOPPED 0x01
147#define CPU_STATE_CHECK_STOP 0x02
148#define CPU_STATE_OPERATING 0x03
149#define CPU_STATE_LOAD 0x04
150 uint8_t cpu_state;
151
18ff9494
DH
152 /* currently processed sigp order */
153 uint8_t sigp_order;
154
ef2974cc 155};
10ec5117 156
c498d8e3
EF
157static inline CPU_DoubleU *get_freg(CPUS390XState *cs, int nr)
158{
fcb79802 159 return &cs->vregs[nr][0];
c498d8e3
EF
160}
161
a4a02f99
PB
162/**
163 * S390CPU:
164 * @env: #CPUS390XState.
165 *
166 * An S/390 CPU.
167 */
168struct S390CPU {
169 /*< private >*/
170 CPUState parent_obj;
171 /*< public >*/
172
173 CPUS390XState env;
ad5afd07 174 S390CPUModel *model;
a4a02f99
PB
175 /* needed for live migration */
176 void *irqstate;
177 uint32_t irqstate_saved_size;
178};
179
180static inline S390CPU *s390_env_get_cpu(CPUS390XState *env)
181{
182 return container_of(env, S390CPU, env);
183}
184
185#define ENV_GET_CPU(e) CPU(s390_env_get_cpu(e))
186
187#define ENV_OFFSET offsetof(S390CPU, env)
188
189#ifndef CONFIG_USER_ONLY
190extern const struct VMStateDescription vmstate_s390_cpu;
191#endif
192
7b18aad5
CH
193/* distinguish between 24 bit and 31 bit addressing */
194#define HIGH_ORDER_BIT 0x80000000
195
bcec36ea
AG
196/* Interrupt Codes */
197/* Program Interrupts */
198#define PGM_OPERATION 0x0001
199#define PGM_PRIVILEGED 0x0002
200#define PGM_EXECUTE 0x0003
201#define PGM_PROTECTION 0x0004
202#define PGM_ADDRESSING 0x0005
203#define PGM_SPECIFICATION 0x0006
204#define PGM_DATA 0x0007
205#define PGM_FIXPT_OVERFLOW 0x0008
206#define PGM_FIXPT_DIVIDE 0x0009
207#define PGM_DEC_OVERFLOW 0x000a
208#define PGM_DEC_DIVIDE 0x000b
209#define PGM_HFP_EXP_OVERFLOW 0x000c
210#define PGM_HFP_EXP_UNDERFLOW 0x000d
211#define PGM_HFP_SIGNIFICANCE 0x000e
212#define PGM_HFP_DIVIDE 0x000f
213#define PGM_SEGMENT_TRANS 0x0010
214#define PGM_PAGE_TRANS 0x0011
215#define PGM_TRANS_SPEC 0x0012
216#define PGM_SPECIAL_OP 0x0013
217#define PGM_OPERAND 0x0015
218#define PGM_TRACE_TABLE 0x0016
219#define PGM_SPACE_SWITCH 0x001c
220#define PGM_HFP_SQRT 0x001d
221#define PGM_PC_TRANS_SPEC 0x001f
222#define PGM_AFX_TRANS 0x0020
223#define PGM_ASX_TRANS 0x0021
224#define PGM_LX_TRANS 0x0022
225#define PGM_EX_TRANS 0x0023
226#define PGM_PRIM_AUTH 0x0024
227#define PGM_SEC_AUTH 0x0025
228#define PGM_ALET_SPEC 0x0028
229#define PGM_ALEN_SPEC 0x0029
230#define PGM_ALE_SEQ 0x002a
231#define PGM_ASTE_VALID 0x002b
232#define PGM_ASTE_SEQ 0x002c
233#define PGM_EXT_AUTH 0x002d
234#define PGM_STACK_FULL 0x0030
235#define PGM_STACK_EMPTY 0x0031
236#define PGM_STACK_SPEC 0x0032
237#define PGM_STACK_TYPE 0x0033
238#define PGM_STACK_OP 0x0034
239#define PGM_ASCE_TYPE 0x0038
240#define PGM_REG_FIRST_TRANS 0x0039
241#define PGM_REG_SEC_TRANS 0x003a
242#define PGM_REG_THIRD_TRANS 0x003b
243#define PGM_MONITOR 0x0040
244#define PGM_PER 0x0080
245#define PGM_CRYPTO 0x0119
246
247/* External Interrupts */
248#define EXT_INTERRUPT_KEY 0x0040
249#define EXT_CLOCK_COMP 0x1004
250#define EXT_CPU_TIMER 0x1005
251#define EXT_MALFUNCTION 0x1200
252#define EXT_EMERGENCY 0x1201
253#define EXT_EXTERNAL_CALL 0x1202
254#define EXT_ETR 0x1406
255#define EXT_SERVICE 0x2401
256#define EXT_VIRTIO 0x2603
257
258/* PSW defines */
259#undef PSW_MASK_PER
260#undef PSW_MASK_DAT
261#undef PSW_MASK_IO
262#undef PSW_MASK_EXT
263#undef PSW_MASK_KEY
264#undef PSW_SHIFT_KEY
265#undef PSW_MASK_MCHECK
266#undef PSW_MASK_WAIT
267#undef PSW_MASK_PSTATE
268#undef PSW_MASK_ASC
3e7e5e0b 269#undef PSW_SHIFT_ASC
bcec36ea
AG
270#undef PSW_MASK_CC
271#undef PSW_MASK_PM
6b257354 272#undef PSW_SHIFT_MASK_PM
bcec36ea 273#undef PSW_MASK_64
29c6157c
CB
274#undef PSW_MASK_32
275#undef PSW_MASK_ESA_ADDR
bcec36ea
AG
276
277#define PSW_MASK_PER 0x4000000000000000ULL
278#define PSW_MASK_DAT 0x0400000000000000ULL
279#define PSW_MASK_IO 0x0200000000000000ULL
280#define PSW_MASK_EXT 0x0100000000000000ULL
281#define PSW_MASK_KEY 0x00F0000000000000ULL
c8bd9537 282#define PSW_SHIFT_KEY 52
bcec36ea
AG
283#define PSW_MASK_MCHECK 0x0004000000000000ULL
284#define PSW_MASK_WAIT 0x0002000000000000ULL
285#define PSW_MASK_PSTATE 0x0001000000000000ULL
286#define PSW_MASK_ASC 0x0000C00000000000ULL
3e7e5e0b 287#define PSW_SHIFT_ASC 46
bcec36ea
AG
288#define PSW_MASK_CC 0x0000300000000000ULL
289#define PSW_MASK_PM 0x00000F0000000000ULL
6b257354 290#define PSW_SHIFT_MASK_PM 40
bcec36ea
AG
291#define PSW_MASK_64 0x0000000100000000ULL
292#define PSW_MASK_32 0x0000000080000000ULL
29c6157c 293#define PSW_MASK_ESA_ADDR 0x000000007fffffffULL
bcec36ea
AG
294
295#undef PSW_ASC_PRIMARY
296#undef PSW_ASC_ACCREG
297#undef PSW_ASC_SECONDARY
298#undef PSW_ASC_HOME
299
300#define PSW_ASC_PRIMARY 0x0000000000000000ULL
301#define PSW_ASC_ACCREG 0x0000400000000000ULL
302#define PSW_ASC_SECONDARY 0x0000800000000000ULL
303#define PSW_ASC_HOME 0x0000C00000000000ULL
304
3e7e5e0b
DH
305/* the address space values shifted */
306#define AS_PRIMARY 0
307#define AS_ACCREG 1
308#define AS_SECONDARY 2
309#define AS_HOME 3
310
bcec36ea
AG
311/* tb flags */
312
159fed45
RH
313#define FLAG_MASK_PSW_SHIFT 31
314#define FLAG_MASK_PER (PSW_MASK_PER >> FLAG_MASK_PSW_SHIFT)
315#define FLAG_MASK_PSTATE (PSW_MASK_PSTATE >> FLAG_MASK_PSW_SHIFT)
316#define FLAG_MASK_ASC (PSW_MASK_ASC >> FLAG_MASK_PSW_SHIFT)
317#define FLAG_MASK_64 (PSW_MASK_64 >> FLAG_MASK_PSW_SHIFT)
318#define FLAG_MASK_32 (PSW_MASK_32 >> FLAG_MASK_PSW_SHIFT)
319#define FLAG_MASK_PSW (FLAG_MASK_PER | FLAG_MASK_PSTATE \
320 | FLAG_MASK_ASC | FLAG_MASK_64 | FLAG_MASK_32)
bcec36ea 321
c4400206 322/* Control register 0 bits */
c3edd628 323#define CR0_LOWPROT 0x0000000010000000ULL
3e7e5e0b 324#define CR0_SECONDARY 0x0000000004000000ULL
c4400206 325#define CR0_EDAT 0x0000000000800000ULL
9dec2388
DH
326#define CR0_EMERGENCY_SIGNAL_SC 0x0000000000004000ULL
327#define CR0_EXTERNAL_CALL_SC 0x0000000000002000ULL
328#define CR0_CKC_SC 0x0000000000000800ULL
329#define CR0_CPU_TIMER_SC 0x0000000000000400ULL
330#define CR0_SERVICE_SC 0x0000000000000200ULL
c4400206 331
b700d75e
DH
332/* Control register 14 bits */
333#define CR14_CHANNEL_REPORT_SC 0x0000000010000000ULL
334
4decd76d
AJ
335/* MMU */
336#define MMU_PRIMARY_IDX 0
337#define MMU_SECONDARY_IDX 1
338#define MMU_HOME_IDX 2
fb66944d 339#define MMU_REAL_IDX 3
4decd76d 340
3e7e5e0b 341static inline int cpu_mmu_index(CPUS390XState *env, bool ifetch)
10c339a0 342{
1f65958d
AJ
343 switch (env->psw.mask & PSW_MASK_ASC) {
344 case PSW_ASC_PRIMARY:
4decd76d 345 return MMU_PRIMARY_IDX;
1f65958d 346 case PSW_ASC_SECONDARY:
4decd76d 347 return MMU_SECONDARY_IDX;
1f65958d 348 case PSW_ASC_HOME:
4decd76d 349 return MMU_HOME_IDX;
1f65958d
AJ
350 case PSW_ASC_ACCREG:
351 /* Fallthrough: access register mode is not yet supported */
352 default:
353 abort();
bcec36ea 354 }
10c339a0
AG
355}
356
a4e3ad19 357static inline void cpu_get_tb_cpu_state(CPUS390XState* env, target_ulong *pc,
89fee74a 358 target_ulong *cs_base, uint32_t *flags)
bcec36ea
AG
359{
360 *pc = env->psw.addr;
303c681a 361 *cs_base = env->ex_value;
159fed45 362 *flags = (env->psw.mask >> FLAG_MASK_PSW_SHIFT) & FLAG_MASK_PSW;
bcec36ea
AG
363}
364
fb01bf4c
AJ
365/* PER bits from control register 9 */
366#define PER_CR9_EVENT_BRANCH 0x80000000
367#define PER_CR9_EVENT_IFETCH 0x40000000
368#define PER_CR9_EVENT_STORE 0x20000000
369#define PER_CR9_EVENT_STORE_REAL 0x08000000
370#define PER_CR9_EVENT_NULLIFICATION 0x01000000
371#define PER_CR9_CONTROL_BRANCH_ADDRESS 0x00800000
372#define PER_CR9_CONTROL_ALTERATION 0x00200000
373
374/* PER bits from the PER CODE/ATMID/AI in lowcore */
375#define PER_CODE_EVENT_BRANCH 0x8000
376#define PER_CODE_EVENT_IFETCH 0x4000
377#define PER_CODE_EVENT_STORE 0x2000
378#define PER_CODE_EVENT_STORE_REAL 0x0800
379#define PER_CODE_EVENT_NULLIFICATION 0x0100
380
bcec36ea
AG
381#define EXCP_EXT 1 /* external interrupt */
382#define EXCP_SVC 2 /* supervisor call (syscall) */
383#define EXCP_PGM 3 /* program interruption */
b1ab5f60
DH
384#define EXCP_RESTART 4 /* restart interrupt */
385#define EXCP_STOP 5 /* stop interrupt */
5d69c547
CH
386#define EXCP_IO 7 /* I/O interrupt */
387#define EXCP_MCHK 8 /* machine check */
bcec36ea 388
6482b0ff
DH
389#define INTERRUPT_EXT_CPU_TIMER (1 << 3)
390#define INTERRUPT_EXT_CLOCK_COMPARATOR (1 << 4)
14ca122e
DH
391#define INTERRUPT_EXTERNAL_CALL (1 << 5)
392#define INTERRUPT_EMERGENCY_SIGNAL (1 << 6)
b1ab5f60
DH
393#define INTERRUPT_RESTART (1 << 7)
394#define INTERRUPT_STOP (1 << 8)
10c339a0
AG
395
396/* Program Status Word. */
397#define S390_PSWM_REGNUM 0
398#define S390_PSWA_REGNUM 1
399/* General Purpose Registers. */
400#define S390_R0_REGNUM 2
401#define S390_R1_REGNUM 3
402#define S390_R2_REGNUM 4
403#define S390_R3_REGNUM 5
404#define S390_R4_REGNUM 6
405#define S390_R5_REGNUM 7
406#define S390_R6_REGNUM 8
407#define S390_R7_REGNUM 9
408#define S390_R8_REGNUM 10
409#define S390_R9_REGNUM 11
410#define S390_R10_REGNUM 12
411#define S390_R11_REGNUM 13
412#define S390_R12_REGNUM 14
413#define S390_R13_REGNUM 15
414#define S390_R14_REGNUM 16
415#define S390_R15_REGNUM 17
73d510c9
DH
416/* Total Core Registers. */
417#define S390_NUM_CORE_REGS 18
10c339a0 418
3d0a615f
TH
419static inline void setcc(S390CPU *cpu, uint64_t cc)
420{
421 CPUS390XState *env = &cpu->env;
422
423 env->psw.mask &= ~(3ull << 44);
424 env->psw.mask |= (cc & 3) << 44;
06e3c077 425 env->cc_op = cc;
3d0a615f
TH
426}
427
bcec36ea 428/* STSI */
79947862
DH
429#define STSI_R0_FC_MASK 0x00000000f0000000ULL
430#define STSI_R0_FC_CURRENT 0x0000000000000000ULL
431#define STSI_R0_FC_LEVEL_1 0x0000000010000000ULL
432#define STSI_R0_FC_LEVEL_2 0x0000000020000000ULL
433#define STSI_R0_FC_LEVEL_3 0x0000000030000000ULL
bcec36ea
AG
434#define STSI_R0_RESERVED_MASK 0x000000000fffff00ULL
435#define STSI_R0_SEL1_MASK 0x00000000000000ffULL
436#define STSI_R1_RESERVED_MASK 0x00000000ffff0000ULL
437#define STSI_R1_SEL2_MASK 0x000000000000ffffULL
438
439/* Basic Machine Configuration */
4d1369ef
DH
440typedef struct SysIB_111 {
441 uint8_t res1[32];
bcec36ea
AG
442 uint8_t manuf[16];
443 uint8_t type[4];
444 uint8_t res2[12];
445 uint8_t model[16];
446 uint8_t sequence[16];
447 uint8_t plant[4];
4d1369ef
DH
448 uint8_t res3[3996];
449} SysIB_111;
450QEMU_BUILD_BUG_ON(sizeof(SysIB_111) != 4096);
bcec36ea
AG
451
452/* Basic Machine CPU */
4d1369ef
DH
453typedef struct SysIB_121 {
454 uint8_t res1[80];
bcec36ea
AG
455 uint8_t sequence[16];
456 uint8_t plant[4];
457 uint8_t res2[2];
458 uint16_t cpu_addr;
4d1369ef
DH
459 uint8_t res3[3992];
460} SysIB_121;
461QEMU_BUILD_BUG_ON(sizeof(SysIB_121) != 4096);
bcec36ea
AG
462
463/* Basic Machine CPUs */
4d1369ef 464typedef struct SysIB_122 {
bcec36ea
AG
465 uint8_t res1[32];
466 uint32_t capability;
467 uint16_t total_cpus;
79947862 468 uint16_t conf_cpus;
bcec36ea
AG
469 uint16_t standby_cpus;
470 uint16_t reserved_cpus;
471 uint16_t adjustments[2026];
4d1369ef
DH
472} SysIB_122;
473QEMU_BUILD_BUG_ON(sizeof(SysIB_122) != 4096);
bcec36ea
AG
474
475/* LPAR CPU */
4d1369ef
DH
476typedef struct SysIB_221 {
477 uint8_t res1[80];
bcec36ea
AG
478 uint8_t sequence[16];
479 uint8_t plant[4];
480 uint16_t cpu_id;
481 uint16_t cpu_addr;
4d1369ef
DH
482 uint8_t res3[3992];
483} SysIB_221;
484QEMU_BUILD_BUG_ON(sizeof(SysIB_221) != 4096);
bcec36ea
AG
485
486/* LPAR CPUs */
4d1369ef
DH
487typedef struct SysIB_222 {
488 uint8_t res1[32];
bcec36ea
AG
489 uint16_t lpar_num;
490 uint8_t res2;
491 uint8_t lcpuc;
492 uint16_t total_cpus;
493 uint16_t conf_cpus;
494 uint16_t standby_cpus;
495 uint16_t reserved_cpus;
496 uint8_t name[8];
497 uint32_t caf;
498 uint8_t res3[16];
499 uint16_t dedicated_cpus;
500 uint16_t shared_cpus;
4d1369ef
DH
501 uint8_t res4[4020];
502} SysIB_222;
503QEMU_BUILD_BUG_ON(sizeof(SysIB_222) != 4096);
bcec36ea
AG
504
505/* VM CPUs */
4d1369ef 506typedef struct SysIB_322 {
bcec36ea
AG
507 uint8_t res1[31];
508 uint8_t count;
509 struct {
510 uint8_t res2[4];
511 uint16_t total_cpus;
512 uint16_t conf_cpus;
513 uint16_t standby_cpus;
514 uint16_t reserved_cpus;
515 uint8_t name[8];
516 uint32_t caf;
517 uint8_t cpi[16];
f07177a5
ET
518 uint8_t res5[3];
519 uint8_t ext_name_encoding;
520 uint32_t res3;
521 uint8_t uuid[16];
bcec36ea 522 } vm[8];
f07177a5
ET
523 uint8_t res4[1504];
524 uint8_t ext_names[8][256];
4d1369ef
DH
525} SysIB_322;
526QEMU_BUILD_BUG_ON(sizeof(SysIB_322) != 4096);
bcec36ea 527
79947862
DH
528typedef union SysIB {
529 SysIB_111 sysib_111;
530 SysIB_121 sysib_121;
531 SysIB_122 sysib_122;
532 SysIB_221 sysib_221;
533 SysIB_222 sysib_222;
534 SysIB_322 sysib_322;
535} SysIB;
536QEMU_BUILD_BUG_ON(sizeof(SysIB) != 4096);
537
bcec36ea
AG
538/* MMU defines */
539#define _ASCE_ORIGIN ~0xfffULL /* segment table origin */
540#define _ASCE_SUBSPACE 0x200 /* subspace group control */
541#define _ASCE_PRIVATE_SPACE 0x100 /* private space control */
542#define _ASCE_ALT_EVENT 0x80 /* storage alteration event control */
543#define _ASCE_SPACE_SWITCH 0x40 /* space switch event */
544#define _ASCE_REAL_SPACE 0x20 /* real space control */
545#define _ASCE_TYPE_MASK 0x0c /* asce table type mask */
546#define _ASCE_TYPE_REGION1 0x0c /* region first table type */
547#define _ASCE_TYPE_REGION2 0x08 /* region second table type */
548#define _ASCE_TYPE_REGION3 0x04 /* region third table type */
549#define _ASCE_TYPE_SEGMENT 0x00 /* segment table type */
550#define _ASCE_TABLE_LENGTH 0x03 /* region table length */
551
552#define _REGION_ENTRY_ORIGIN ~0xfffULL /* region/segment table origin */
43d49b01 553#define _REGION_ENTRY_RO 0x200 /* region/segment protection bit */
5d180439 554#define _REGION_ENTRY_TF 0xc0 /* region/segment table offset */
bcec36ea
AG
555#define _REGION_ENTRY_INV 0x20 /* invalid region table entry */
556#define _REGION_ENTRY_TYPE_MASK 0x0c /* region/segment table type mask */
557#define _REGION_ENTRY_TYPE_R1 0x0c /* region first table type */
558#define _REGION_ENTRY_TYPE_R2 0x08 /* region second table type */
559#define _REGION_ENTRY_TYPE_R3 0x04 /* region third table type */
560#define _REGION_ENTRY_LENGTH 0x03 /* region third length */
561
562#define _SEGMENT_ENTRY_ORIGIN ~0x7ffULL /* segment table origin */
c4400206 563#define _SEGMENT_ENTRY_FC 0x400 /* format control */
bcec36ea
AG
564#define _SEGMENT_ENTRY_RO 0x200 /* page protection bit */
565#define _SEGMENT_ENTRY_INV 0x20 /* invalid segment table entry */
566
8a4719f5
AJ
567#define VADDR_PX 0xff000 /* page index bits */
568
bcec36ea
AG
569#define _PAGE_RO 0x200 /* HW read-only bit */
570#define _PAGE_INVALID 0x400 /* HW invalid bit */
b4ecbf80 571#define _PAGE_RES0 0x800 /* bit must be zero */
bcec36ea 572
b9959138
AG
573#define SK_C (0x1 << 1)
574#define SK_R (0x1 << 2)
575#define SK_F (0x1 << 3)
576#define SK_ACC_MASK (0xf << 4)
bcec36ea 577
5172b780 578/* SIGP order codes */
bcec36ea
AG
579#define SIGP_SENSE 0x01
580#define SIGP_EXTERNAL_CALL 0x02
581#define SIGP_EMERGENCY 0x03
582#define SIGP_START 0x04
583#define SIGP_STOP 0x05
584#define SIGP_RESTART 0x06
585#define SIGP_STOP_STORE_STATUS 0x09
586#define SIGP_INITIAL_CPU_RESET 0x0b
587#define SIGP_CPU_RESET 0x0c
588#define SIGP_SET_PREFIX 0x0d
589#define SIGP_STORE_STATUS_ADDR 0x0e
590#define SIGP_SET_ARCH 0x12
a6880d21 591#define SIGP_COND_EMERGENCY 0x13
d1b468bc 592#define SIGP_SENSE_RUNNING 0x15
abec5356 593#define SIGP_STORE_ADTL_STATUS 0x17
bcec36ea 594
5172b780
DH
595/* SIGP condition codes */
596#define SIGP_CC_ORDER_CODE_ACCEPTED 0
597#define SIGP_CC_STATUS_STORED 1
598#define SIGP_CC_BUSY 2
599#define SIGP_CC_NOT_OPERATIONAL 3
600
601/* SIGP status bits */
bcec36ea 602#define SIGP_STAT_EQUIPMENT_CHECK 0x80000000UL
d1b468bc 603#define SIGP_STAT_NOT_RUNNING 0x00000400UL
bcec36ea
AG
604#define SIGP_STAT_INCORRECT_STATE 0x00000200UL
605#define SIGP_STAT_INVALID_PARAMETER 0x00000100UL
606#define SIGP_STAT_EXT_CALL_PENDING 0x00000080UL
607#define SIGP_STAT_STOPPED 0x00000040UL
608#define SIGP_STAT_OPERATOR_INTERV 0x00000020UL
609#define SIGP_STAT_CHECK_STOP 0x00000010UL
610#define SIGP_STAT_INOPERATIVE 0x00000004UL
611#define SIGP_STAT_INVALID_ORDER 0x00000002UL
612#define SIGP_STAT_RECEIVER_CHECK 0x00000001UL
613
18ff9494
DH
614/* SIGP SET ARCHITECTURE modes */
615#define SIGP_MODE_ESA_S390 0
616#define SIGP_MODE_Z_ARCH_TRANS_ALL_PSW 1
617#define SIGP_MODE_Z_ARCH_TRANS_CUR_PSW 2
618
a7c1fadf
AJ
619/* SIGP order code mask corresponding to bit positions 56-63 */
620#define SIGP_ORDER_MASK 0x000000ff
621
b6fe0124
MR
622/* from s390-virtio-ccw */
623#define MEM_SECTION_SIZE 0x10000000UL
1def6656 624#define MAX_AVAIL_SLOTS 32
b6fe0124 625
b080364a
CH
626/* machine check interruption code */
627
628/* subclasses */
629#define MCIC_SC_SD 0x8000000000000000ULL
630#define MCIC_SC_PD 0x4000000000000000ULL
631#define MCIC_SC_SR 0x2000000000000000ULL
632#define MCIC_SC_CD 0x0800000000000000ULL
633#define MCIC_SC_ED 0x0400000000000000ULL
634#define MCIC_SC_DG 0x0100000000000000ULL
635#define MCIC_SC_W 0x0080000000000000ULL
636#define MCIC_SC_CP 0x0040000000000000ULL
637#define MCIC_SC_SP 0x0020000000000000ULL
638#define MCIC_SC_CK 0x0010000000000000ULL
639
640/* subclass modifiers */
641#define MCIC_SCM_B 0x0002000000000000ULL
642#define MCIC_SCM_DA 0x0000000020000000ULL
643#define MCIC_SCM_AP 0x0000000000080000ULL
644
645/* storage errors */
646#define MCIC_SE_SE 0x0000800000000000ULL
647#define MCIC_SE_SC 0x0000400000000000ULL
648#define MCIC_SE_KE 0x0000200000000000ULL
649#define MCIC_SE_DS 0x0000100000000000ULL
650#define MCIC_SE_IE 0x0000000080000000ULL
651
652/* validity bits */
653#define MCIC_VB_WP 0x0000080000000000ULL
654#define MCIC_VB_MS 0x0000040000000000ULL
655#define MCIC_VB_PM 0x0000020000000000ULL
656#define MCIC_VB_IA 0x0000010000000000ULL
657#define MCIC_VB_FA 0x0000008000000000ULL
658#define MCIC_VB_VR 0x0000004000000000ULL
659#define MCIC_VB_EC 0x0000002000000000ULL
660#define MCIC_VB_FP 0x0000001000000000ULL
661#define MCIC_VB_GR 0x0000000800000000ULL
662#define MCIC_VB_CR 0x0000000400000000ULL
663#define MCIC_VB_ST 0x0000000100000000ULL
664#define MCIC_VB_AR 0x0000000040000000ULL
62deb62d 665#define MCIC_VB_GS 0x0000000008000000ULL
b080364a
CH
666#define MCIC_VB_PR 0x0000000000200000ULL
667#define MCIC_VB_FC 0x0000000000100000ULL
668#define MCIC_VB_CT 0x0000000000020000ULL
669#define MCIC_VB_CC 0x0000000000010000ULL
670
b700d75e
DH
671static inline uint64_t s390_build_validity_mcic(void)
672{
673 uint64_t mcic;
674
675 /*
676 * Indicate all validity bits (no damage) only. Other bits have to be
677 * added by the caller. (storage errors, subclasses and subclass modifiers)
678 */
679 mcic = MCIC_VB_WP | MCIC_VB_MS | MCIC_VB_PM | MCIC_VB_IA | MCIC_VB_FP |
680 MCIC_VB_GR | MCIC_VB_CR | MCIC_VB_ST | MCIC_VB_AR | MCIC_VB_PR |
681 MCIC_VB_FC | MCIC_VB_CT | MCIC_VB_CC;
682 if (s390_has_feat(S390_FEAT_VECTOR)) {
683 mcic |= MCIC_VB_VR;
684 }
685 if (s390_has_feat(S390_FEAT_GUARDED_STORAGE)) {
686 mcic |= MCIC_VB_GS;
687 }
688 return mcic;
689}
690
c862bddb
DH
691
692/* cpu.c */
693int s390_get_clock(uint8_t *tod_high, uint64_t *tod_low);
694int s390_set_clock(uint8_t *tod_high, uint64_t *tod_low);
695void s390_crypto_reset(void);
696bool s390_get_squash_mcss(void);
697int s390_get_memslot_count(void);
698int s390_set_memory_limit(uint64_t new_limit, uint64_t *hw_limit);
699void s390_cmma_reset(void);
c862bddb
DH
700void s390_enable_css_support(S390CPU *cpu);
701int s390_assign_subch_ioeventfd(EventNotifier *notifier, uint32_t sch_id,
702 int vq, bool assign);
703#ifndef CONFIG_USER_ONLY
704unsigned int s390_cpu_set_state(uint8_t cpu_state, S390CPU *cpu);
705#else
706static inline unsigned int s390_cpu_set_state(uint8_t cpu_state, S390CPU *cpu)
707{
708 return 0;
709}
710#endif /* CONFIG_USER_ONLY */
631b5966
DH
711static inline uint8_t s390_cpu_get_state(S390CPU *cpu)
712{
713 return cpu->env.cpu_state;
714}
c862bddb
DH
715
716
717/* cpu_models.c */
718void s390_cpu_list(FILE *f, fprintf_function cpu_fprintf);
719#define cpu_list s390_cpu_list
35b4df64
DH
720void s390_set_qemu_cpu_model(uint16_t type, uint8_t gen, uint8_t ec_ga,
721 const S390FeatInit feat_init);
722
c862bddb
DH
723
724/* helper.c */
6ad76dfd 725#define cpu_init(cpu_model) cpu_generic_init(TYPE_S390_CPU, cpu_model)
b6805e12
IM
726
727#define S390_CPU_TYPE_SUFFIX "-" TYPE_S390_CPU
728#define S390_CPU_TYPE_NAME(name) (name S390_CPU_TYPE_SUFFIX)
729
c862bddb
DH
730/* you can call this signal handler from your SIGBUS and SIGSEGV
731 signal handlers to inform the virtual CPU of exceptions. non zero
732 is returned if the signal was handled by the virtual CPU. */
733int cpu_s390x_signal_handler(int host_signum, void *pinfo, void *puc);
734#define cpu_signal_handler cpu_s390x_signal_handler
735
736
737/* interrupt.c */
738void s390_crw_mchk(void);
739void s390_io_interrupt(uint16_t subchannel_id, uint16_t subchannel_nr,
740 uint32_t io_int_parm, uint32_t io_int_word);
741/* automatically detect the instruction length */
742#define ILEN_AUTO 0xff
1b98fb99 743#define RA_IGNORED 0
8d2f850a
DH
744void s390_program_interrupt(CPUS390XState *env, uint32_t code, int ilen,
745 uintptr_t ra);
c862bddb
DH
746/* service interrupts are floating therefore we must not pass an cpustate */
747void s390_sclp_extint(uint32_t parm);
c862bddb
DH
748
749/* mmu_helper.c */
750int s390_cpu_virt_mem_rw(S390CPU *cpu, vaddr laddr, uint8_t ar, void *hostbuf,
751 int len, bool is_write);
752#define s390_cpu_virt_mem_read(cpu, laddr, ar, dest, len) \
753 s390_cpu_virt_mem_rw(cpu, laddr, ar, dest, len, false)
754#define s390_cpu_virt_mem_write(cpu, laddr, ar, dest, len) \
755 s390_cpu_virt_mem_rw(cpu, laddr, ar, dest, len, true)
b5e85329
DH
756#define s390_cpu_virt_mem_check_read(cpu, laddr, ar, len) \
757 s390_cpu_virt_mem_rw(cpu, laddr, ar, NULL, len, false)
c862bddb
DH
758#define s390_cpu_virt_mem_check_write(cpu, laddr, ar, len) \
759 s390_cpu_virt_mem_rw(cpu, laddr, ar, NULL, len, true)
98ee9bed 760void s390_cpu_virt_mem_handle_exc(S390CPU *cpu, uintptr_t ra);
c862bddb
DH
761
762
74b4c74d
DH
763/* sigp.c */
764int s390_cpu_restart(S390CPU *cpu);
765void s390_init_sigp(void);
766
767
c862bddb
DH
768/* outside of target/s390x/ */
769S390CPU *s390_cpu_addr2state(uint16_t cpu_addr);
c862bddb 770
10ec5117 771#endif