2 * S/390 misc helper routines
4 * Copyright (c) 2009 Ulrich Hecht
5 * Copyright (c) 2009 Alexander Graf
7 * This library is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU Lesser General Public
9 * License as published by the Free Software Foundation; either
10 * version 2.1 of the License, or (at your option) any later version.
12 * This library is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * Lesser General Public License for more details.
17 * You should have received a copy of the GNU Lesser General Public
18 * License along with this library; if not, see <http://www.gnu.org/licenses/>.
21 #include "qemu/osdep.h"
22 #include "qemu/main-loop.h"
25 #include "exec/memory.h"
26 #include "qemu/host-utils.h"
27 #include "exec/helper-proto.h"
28 #include "qemu/timer.h"
29 #include "exec/exec-all.h"
30 #include "exec/cpu_ldst.h"
31 #include "qapi/error.h"
32 #include "tcg_s390x.h"
34 #if !defined(CONFIG_USER_ONLY)
35 #include "sysemu/cpus.h"
36 #include "sysemu/sysemu.h"
37 #include "hw/s390x/ebcdic.h"
38 #include "hw/s390x/s390-virtio-hcall.h"
39 #include "hw/s390x/sclp.h"
40 #include "hw/s390x/s390_flic.h"
41 #include "hw/s390x/ioinst.h"
42 #include "hw/s390x/s390-pci-inst.h"
43 #include "hw/boards.h"
44 #include "hw/s390x/tod.h"
47 /* #define DEBUG_HELPER */
49 #define HELPER_LOG(x...) qemu_log(x)
51 #define HELPER_LOG(x...)
54 /* Raise an exception statically from a TB. */
55 void HELPER(exception
)(CPUS390XState
*env
, uint32_t excp
)
57 CPUState
*cs
= CPU(s390_env_get_cpu(env
));
59 HELPER_LOG("%s: exception %d\n", __func__
, excp
);
60 cs
->exception_index
= excp
;
64 /* Store CPU Timer (also used for EXTRACT CPU TIME) */
65 uint64_t HELPER(stpt
)(CPUS390XState
*env
)
67 #if defined(CONFIG_USER_ONLY)
69 * Fake a descending CPU timer. We could get negative values here,
70 * but we don't care as it is up to the OS when to process that
71 * interrupt and reset to > 0.
73 return UINT64_MAX
- (uint64_t)cpu_get_host_ticks();
75 return time2tod(env
->cputm
- qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL
));
79 #ifndef CONFIG_USER_ONLY
81 /* SCLP service call */
82 uint32_t HELPER(servc
)(CPUS390XState
*env
, uint64_t r1
, uint64_t r2
)
84 qemu_mutex_lock_iothread();
85 int r
= sclp_service_call(env
, r1
, r2
);
86 qemu_mutex_unlock_iothread();
88 s390_program_interrupt(env
, -r
, 4, GETPC());
93 void HELPER(diag
)(CPUS390XState
*env
, uint32_t r1
, uint32_t r3
, uint32_t num
)
100 qemu_mutex_lock_iothread();
101 r
= s390_virtio_hypercall(env
);
102 qemu_mutex_unlock_iothread();
110 qemu_mutex_lock_iothread();
111 handle_diag_308(env
, r1
, r3
, GETPC());
112 qemu_mutex_unlock_iothread();
116 /* time bomb (watchdog) */
117 r
= handle_diag_288(env
, r1
, r3
);
125 s390_program_interrupt(env
, PGM_SPECIFICATION
, ILEN_AUTO
, GETPC());
130 void HELPER(spx
)(CPUS390XState
*env
, uint64_t a1
)
132 CPUState
*cs
= CPU(s390_env_get_cpu(env
));
133 uint32_t prefix
= a1
& 0x7fffe000;
136 HELPER_LOG("prefix: %#x\n", prefix
);
137 tlb_flush_page(cs
, 0);
138 tlb_flush_page(cs
, TARGET_PAGE_SIZE
);
142 uint64_t HELPER(stck
)(CPUS390XState
*env
)
144 S390TODState
*td
= s390_get_todstate();
145 S390TODClass
*tdc
= S390_TOD_GET_CLASS(td
);
148 tdc
->get(td
, &tod
, &error_abort
);
152 static void update_ckc_timer(CPUS390XState
*env
)
154 S390TODState
*td
= s390_get_todstate();
157 /* stop the timer and remove pending CKC IRQs */
158 timer_del(env
->tod_timer
);
159 g_assert(qemu_mutex_iothread_locked());
160 env
->pending_int
&= ~INTERRUPT_EXT_CLOCK_COMPARATOR
;
162 /* the tod has to exceed the ckc, this can never happen if ckc is all 1's */
163 if (env
->ckc
== -1ULL) {
167 /* difference between origins */
168 time
= env
->ckc
- td
->base
.low
;
171 time
= tod2time(time
);
173 timer_mod(env
->tod_timer
, time
);
176 /* Set Clock Comparator */
177 void HELPER(sckc
)(CPUS390XState
*env
, uint64_t ckc
)
181 qemu_mutex_lock_iothread();
182 update_ckc_timer(env
);
183 qemu_mutex_unlock_iothread();
186 void tcg_s390_tod_updated(CPUState
*cs
, run_on_cpu_data opaque
)
188 S390CPU
*cpu
= S390_CPU(cs
);
190 update_ckc_timer(&cpu
->env
);
194 uint32_t HELPER(sck
)(CPUS390XState
*env
, uint64_t tod_low
)
196 S390TODState
*td
= s390_get_todstate();
197 S390TODClass
*tdc
= S390_TOD_GET_CLASS(td
);
203 qemu_mutex_lock_iothread();
204 tdc
->set(td
, &tod
, &error_abort
);
205 qemu_mutex_unlock_iothread();
209 /* Set Tod Programmable Field */
210 void HELPER(sckpf
)(CPUS390XState
*env
, uint64_t r0
)
214 if (val
& 0xffff0000) {
215 s390_program_interrupt(env
, PGM_SPECIFICATION
, 2, GETPC());
220 /* Store Clock Comparator */
221 uint64_t HELPER(stckc
)(CPUS390XState
*env
)
227 void HELPER(spt
)(CPUS390XState
*env
, uint64_t time
)
234 time
= tod2time(time
);
236 env
->cputm
= qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL
) + time
;
238 timer_mod(env
->cpu_timer
, env
->cputm
);
241 /* Store System Information */
242 uint32_t HELPER(stsi
)(CPUS390XState
*env
, uint64_t a0
, uint64_t r0
, uint64_t r1
)
244 const uintptr_t ra
= GETPC();
245 const uint32_t sel1
= r0
& STSI_R0_SEL1_MASK
;
246 const uint32_t sel2
= r1
& STSI_R1_SEL2_MASK
;
247 const MachineState
*ms
= MACHINE(qdev_get_machine());
248 uint16_t total_cpus
= 0, conf_cpus
= 0, reserved_cpus
= 0;
249 S390CPU
*cpu
= s390_env_get_cpu(env
);
253 if ((r0
& STSI_R0_FC_MASK
) > STSI_R0_FC_LEVEL_3
) {
254 /* invalid function code: no other checks are performed */
258 if ((r0
& STSI_R0_RESERVED_MASK
) || (r1
& STSI_R1_RESERVED_MASK
)) {
259 s390_program_interrupt(env
, PGM_SPECIFICATION
, 4, ra
);
262 if ((r0
& STSI_R0_FC_MASK
) == STSI_R0_FC_CURRENT
) {
263 /* query the current level: no further checks are performed */
264 env
->regs
[0] = STSI_R0_FC_LEVEL_3
;
268 if (a0
& ~TARGET_PAGE_MASK
) {
269 s390_program_interrupt(env
, PGM_SPECIFICATION
, 4, ra
);
272 /* count the cpus and split them into configured and reserved ones */
273 for (i
= 0; i
< ms
->possible_cpus
->len
; i
++) {
275 if (ms
->possible_cpus
->cpus
[i
].cpu
) {
283 * In theory, we could report Level 1 / Level 2 as current. However,
284 * the Linux kernel will detect this as running under LPAR and assume
285 * that we have a sclp linemode console (which is always present on
286 * LPAR, but not the default for QEMU), therefore not displaying boot
287 * messages and making booting a Linux kernel under TCG harder.
289 * For now we fake the same SMP configuration on all levels.
291 * TODO: We could later make the level configurable via the machine
292 * and change defaults (linemode console) based on machine type
295 switch (r0
& STSI_R0_FC_MASK
) {
296 case STSI_R0_FC_LEVEL_1
:
297 if ((sel1
== 1) && (sel2
== 1)) {
298 /* Basic Machine Configuration */
301 ebcdic_put(sysib
.sysib_111
.manuf
, "QEMU ", 16);
302 /* same as machine type number in STORE CPU ID, but in EBCDIC */
303 snprintf(type
, ARRAY_SIZE(type
), "%X", cpu
->model
->def
->type
);
304 ebcdic_put(sysib
.sysib_111
.type
, type
, 4);
305 /* model number (not stored in STORE CPU ID for z/Architecure) */
306 ebcdic_put(sysib
.sysib_111
.model
, "QEMU ", 16);
307 ebcdic_put(sysib
.sysib_111
.sequence
, "QEMU ", 16);
308 ebcdic_put(sysib
.sysib_111
.plant
, "QEMU", 4);
309 } else if ((sel1
== 2) && (sel2
== 1)) {
310 /* Basic Machine CPU */
311 ebcdic_put(sysib
.sysib_121
.sequence
, "QEMUQEMUQEMUQEMU", 16);
312 ebcdic_put(sysib
.sysib_121
.plant
, "QEMU", 4);
313 sysib
.sysib_121
.cpu_addr
= cpu_to_be16(env
->core_id
);
314 } else if ((sel1
== 2) && (sel2
== 2)) {
315 /* Basic Machine CPUs */
316 sysib
.sysib_122
.capability
= cpu_to_be32(0x443afc29);
317 sysib
.sysib_122
.total_cpus
= cpu_to_be16(total_cpus
);
318 sysib
.sysib_122
.conf_cpus
= cpu_to_be16(conf_cpus
);
319 sysib
.sysib_122
.reserved_cpus
= cpu_to_be16(reserved_cpus
);
324 case STSI_R0_FC_LEVEL_2
:
325 if ((sel1
== 2) && (sel2
== 1)) {
327 ebcdic_put(sysib
.sysib_221
.sequence
, "QEMUQEMUQEMUQEMU", 16);
328 ebcdic_put(sysib
.sysib_221
.plant
, "QEMU", 4);
329 sysib
.sysib_221
.cpu_addr
= cpu_to_be16(env
->core_id
);
330 } else if ((sel1
== 2) && (sel2
== 2)) {
332 sysib
.sysib_222
.lcpuc
= 0x80; /* dedicated */
333 sysib
.sysib_222
.total_cpus
= cpu_to_be16(total_cpus
);
334 sysib
.sysib_222
.conf_cpus
= cpu_to_be16(conf_cpus
);
335 sysib
.sysib_222
.reserved_cpus
= cpu_to_be16(reserved_cpus
);
336 ebcdic_put(sysib
.sysib_222
.name
, "QEMU ", 8);
337 sysib
.sysib_222
.caf
= cpu_to_be32(1000);
338 sysib
.sysib_222
.dedicated_cpus
= cpu_to_be16(conf_cpus
);
343 case STSI_R0_FC_LEVEL_3
:
344 if ((sel1
== 2) && (sel2
== 2)) {
346 sysib
.sysib_322
.count
= 1;
347 sysib
.sysib_322
.vm
[0].total_cpus
= cpu_to_be16(total_cpus
);
348 sysib
.sysib_322
.vm
[0].conf_cpus
= cpu_to_be16(conf_cpus
);
349 sysib
.sysib_322
.vm
[0].reserved_cpus
= cpu_to_be16(reserved_cpus
);
350 sysib
.sysib_322
.vm
[0].caf
= cpu_to_be32(1000);
351 /* Linux kernel uses this to distinguish us from z/VM */
352 ebcdic_put(sysib
.sysib_322
.vm
[0].cpi
, "KVM/Linux ", 16);
353 sysib
.sysib_322
.vm
[0].ext_name_encoding
= 2; /* UTF-8 */
355 /* If our VM has a name, use the real name */
357 memset(sysib
.sysib_322
.vm
[0].name
, 0x40,
358 sizeof(sysib
.sysib_322
.vm
[0].name
));
359 ebcdic_put(sysib
.sysib_322
.vm
[0].name
, qemu_name
,
360 MIN(sizeof(sysib
.sysib_322
.vm
[0].name
),
362 strncpy((char *)sysib
.sysib_322
.ext_names
[0], qemu_name
,
363 sizeof(sysib
.sysib_322
.ext_names
[0]));
365 ebcdic_put(sysib
.sysib_322
.vm
[0].name
, "TCGguest", 8);
366 strcpy((char *)sysib
.sysib_322
.ext_names
[0], "TCGguest");
370 memcpy(sysib
.sysib_322
.vm
[0].uuid
, &qemu_uuid
,
371 sizeof(sysib
.sysib_322
.vm
[0].uuid
));
379 if (s390_cpu_virt_mem_write(cpu
, a0
, 0, &sysib
, sizeof(sysib
))) {
380 s390_cpu_virt_mem_handle_exc(cpu
, ra
);
387 uint32_t HELPER(sigp
)(CPUS390XState
*env
, uint64_t order_code
, uint32_t r1
,
392 /* TODO: needed to inject interrupts - push further down */
393 qemu_mutex_lock_iothread();
394 cc
= handle_sigp(env
, order_code
& SIGP_ORDER_MASK
, r1
, r3
);
395 qemu_mutex_unlock_iothread();
401 #ifndef CONFIG_USER_ONLY
402 void HELPER(xsch
)(CPUS390XState
*env
, uint64_t r1
)
404 S390CPU
*cpu
= s390_env_get_cpu(env
);
405 qemu_mutex_lock_iothread();
406 ioinst_handle_xsch(cpu
, r1
, GETPC());
407 qemu_mutex_unlock_iothread();
410 void HELPER(csch
)(CPUS390XState
*env
, uint64_t r1
)
412 S390CPU
*cpu
= s390_env_get_cpu(env
);
413 qemu_mutex_lock_iothread();
414 ioinst_handle_csch(cpu
, r1
, GETPC());
415 qemu_mutex_unlock_iothread();
418 void HELPER(hsch
)(CPUS390XState
*env
, uint64_t r1
)
420 S390CPU
*cpu
= s390_env_get_cpu(env
);
421 qemu_mutex_lock_iothread();
422 ioinst_handle_hsch(cpu
, r1
, GETPC());
423 qemu_mutex_unlock_iothread();
426 void HELPER(msch
)(CPUS390XState
*env
, uint64_t r1
, uint64_t inst
)
428 S390CPU
*cpu
= s390_env_get_cpu(env
);
429 qemu_mutex_lock_iothread();
430 ioinst_handle_msch(cpu
, r1
, inst
>> 16, GETPC());
431 qemu_mutex_unlock_iothread();
434 void HELPER(rchp
)(CPUS390XState
*env
, uint64_t r1
)
436 S390CPU
*cpu
= s390_env_get_cpu(env
);
437 qemu_mutex_lock_iothread();
438 ioinst_handle_rchp(cpu
, r1
, GETPC());
439 qemu_mutex_unlock_iothread();
442 void HELPER(rsch
)(CPUS390XState
*env
, uint64_t r1
)
444 S390CPU
*cpu
= s390_env_get_cpu(env
);
445 qemu_mutex_lock_iothread();
446 ioinst_handle_rsch(cpu
, r1
, GETPC());
447 qemu_mutex_unlock_iothread();
450 void HELPER(sal
)(CPUS390XState
*env
, uint64_t r1
)
452 S390CPU
*cpu
= s390_env_get_cpu(env
);
454 qemu_mutex_lock_iothread();
455 ioinst_handle_sal(cpu
, r1
, GETPC());
456 qemu_mutex_unlock_iothread();
459 void HELPER(schm
)(CPUS390XState
*env
, uint64_t r1
, uint64_t r2
, uint64_t inst
)
461 S390CPU
*cpu
= s390_env_get_cpu(env
);
463 qemu_mutex_lock_iothread();
464 ioinst_handle_schm(cpu
, r1
, r2
, inst
>> 16, GETPC());
465 qemu_mutex_unlock_iothread();
468 void HELPER(ssch
)(CPUS390XState
*env
, uint64_t r1
, uint64_t inst
)
470 S390CPU
*cpu
= s390_env_get_cpu(env
);
471 qemu_mutex_lock_iothread();
472 ioinst_handle_ssch(cpu
, r1
, inst
>> 16, GETPC());
473 qemu_mutex_unlock_iothread();
476 void HELPER(stcrw
)(CPUS390XState
*env
, uint64_t inst
)
478 S390CPU
*cpu
= s390_env_get_cpu(env
);
480 qemu_mutex_lock_iothread();
481 ioinst_handle_stcrw(cpu
, inst
>> 16, GETPC());
482 qemu_mutex_unlock_iothread();
485 void HELPER(stsch
)(CPUS390XState
*env
, uint64_t r1
, uint64_t inst
)
487 S390CPU
*cpu
= s390_env_get_cpu(env
);
488 qemu_mutex_lock_iothread();
489 ioinst_handle_stsch(cpu
, r1
, inst
>> 16, GETPC());
490 qemu_mutex_unlock_iothread();
493 uint32_t HELPER(tpi
)(CPUS390XState
*env
, uint64_t addr
)
495 const uintptr_t ra
= GETPC();
496 S390CPU
*cpu
= s390_env_get_cpu(env
);
497 QEMUS390FLICState
*flic
= s390_get_qemu_flic(s390_get_flic());
498 QEMUS390FlicIO
*io
= NULL
;
502 s390_program_interrupt(env
, PGM_SPECIFICATION
, 4, ra
);
505 qemu_mutex_lock_iothread();
506 io
= qemu_s390_flic_dequeue_io(flic
, env
->cregs
[6]);
508 qemu_mutex_unlock_iothread();
518 .id
= cpu_to_be16(io
->id
),
519 .nr
= cpu_to_be16(io
->nr
),
520 .parm
= cpu_to_be32(io
->parm
),
523 if (s390_cpu_virt_mem_write(cpu
, addr
, 0, &intc
, sizeof(intc
))) {
524 /* writing failed, reinject and properly clean up */
525 s390_io_interrupt(io
->id
, io
->nr
, io
->parm
, io
->word
);
526 qemu_mutex_unlock_iothread();
528 s390_cpu_virt_mem_handle_exc(cpu
, ra
);
532 /* no protection applies */
533 lowcore
= cpu_map_lowcore(env
);
534 lowcore
->subchannel_id
= cpu_to_be16(io
->id
);
535 lowcore
->subchannel_nr
= cpu_to_be16(io
->nr
);
536 lowcore
->io_int_parm
= cpu_to_be32(io
->parm
);
537 lowcore
->io_int_word
= cpu_to_be32(io
->word
);
538 cpu_unmap_lowcore(lowcore
);
542 qemu_mutex_unlock_iothread();
546 void HELPER(tsch
)(CPUS390XState
*env
, uint64_t r1
, uint64_t inst
)
548 S390CPU
*cpu
= s390_env_get_cpu(env
);
549 qemu_mutex_lock_iothread();
550 ioinst_handle_tsch(cpu
, r1
, inst
>> 16, GETPC());
551 qemu_mutex_unlock_iothread();
554 void HELPER(chsc
)(CPUS390XState
*env
, uint64_t inst
)
556 S390CPU
*cpu
= s390_env_get_cpu(env
);
557 qemu_mutex_lock_iothread();
558 ioinst_handle_chsc(cpu
, inst
>> 16, GETPC());
559 qemu_mutex_unlock_iothread();
563 #ifndef CONFIG_USER_ONLY
564 void HELPER(per_check_exception
)(CPUS390XState
*env
)
568 if (env
->per_perc_atmid
) {
570 * FIXME: ILEN_AUTO is most probably the right thing to use. ilen
571 * always has to match the instruction referenced in the PSW. E.g.
572 * if a PER interrupt is triggered via EXECUTE, we have to use ilen
573 * of EXECUTE, while per_address contains the target of EXECUTE.
575 ilen
= get_ilen(cpu_ldub_code(env
, env
->per_address
));
576 s390_program_interrupt(env
, PGM_PER
, ilen
, GETPC());
580 /* Check if an address is within the PER starting address and the PER
581 ending address. The address range might loop. */
582 static inline bool get_per_in_range(CPUS390XState
*env
, uint64_t addr
)
584 if (env
->cregs
[10] <= env
->cregs
[11]) {
585 return env
->cregs
[10] <= addr
&& addr
<= env
->cregs
[11];
587 return env
->cregs
[10] <= addr
|| addr
<= env
->cregs
[11];
591 void HELPER(per_branch
)(CPUS390XState
*env
, uint64_t from
, uint64_t to
)
593 if ((env
->cregs
[9] & PER_CR9_EVENT_BRANCH
)) {
594 if (!(env
->cregs
[9] & PER_CR9_CONTROL_BRANCH_ADDRESS
)
595 || get_per_in_range(env
, to
)) {
596 env
->per_address
= from
;
597 env
->per_perc_atmid
= PER_CODE_EVENT_BRANCH
| get_per_atmid(env
);
602 void HELPER(per_ifetch
)(CPUS390XState
*env
, uint64_t addr
)
604 if ((env
->cregs
[9] & PER_CR9_EVENT_IFETCH
) && get_per_in_range(env
, addr
)) {
605 env
->per_address
= addr
;
606 env
->per_perc_atmid
= PER_CODE_EVENT_IFETCH
| get_per_atmid(env
);
608 /* If the instruction has to be nullified, trigger the
609 exception immediately. */
610 if (env
->cregs
[9] & PER_CR9_EVENT_NULLIFICATION
) {
611 CPUState
*cs
= CPU(s390_env_get_cpu(env
));
613 env
->per_perc_atmid
|= PER_CODE_EVENT_NULLIFICATION
;
614 env
->int_pgm_code
= PGM_PER
;
615 env
->int_pgm_ilen
= get_ilen(cpu_ldub_code(env
, addr
));
617 cs
->exception_index
= EXCP_PGM
;
624 static uint8_t stfl_bytes
[2048];
625 static unsigned int used_stfl_bytes
;
627 static void prepare_stfl(void)
629 static bool initialized
;
632 /* racy, but we don't care, the same values are always written */
637 s390_get_feat_block(S390_FEAT_TYPE_STFL
, stfl_bytes
);
638 for (i
= 0; i
< sizeof(stfl_bytes
); i
++) {
640 used_stfl_bytes
= i
+ 1;
646 #ifndef CONFIG_USER_ONLY
647 void HELPER(stfl
)(CPUS390XState
*env
)
651 lowcore
= cpu_map_lowcore(env
);
653 memcpy(&lowcore
->stfl_fac_list
, stfl_bytes
, sizeof(lowcore
->stfl_fac_list
));
654 cpu_unmap_lowcore(lowcore
);
658 uint32_t HELPER(stfle
)(CPUS390XState
*env
, uint64_t addr
)
660 const uintptr_t ra
= GETPC();
661 const int count_bytes
= ((env
->regs
[0] & 0xff) + 1) * 8;
662 const int max_bytes
= ROUND_UP(used_stfl_bytes
, 8);
666 s390_program_interrupt(env
, PGM_SPECIFICATION
, 4, ra
);
670 for (i
= 0; i
< count_bytes
; ++i
) {
671 cpu_stb_data_ra(env
, addr
+ i
, stfl_bytes
[i
], ra
);
674 env
->regs
[0] = deposit64(env
->regs
[0], 0, 8, (max_bytes
/ 8) - 1);
675 return count_bytes
>= max_bytes
? 0 : 3;
678 #ifndef CONFIG_USER_ONLY
680 * Note: we ignore any return code of the functions called for the pci
681 * instructions, as the only time they return !0 is when the stub is
682 * called, and in that case we didn't even offer the zpci facility.
683 * The only exception is SIC, where program checks need to be handled
686 void HELPER(clp
)(CPUS390XState
*env
, uint32_t r2
)
688 S390CPU
*cpu
= s390_env_get_cpu(env
);
690 qemu_mutex_lock_iothread();
691 clp_service_call(cpu
, r2
, GETPC());
692 qemu_mutex_unlock_iothread();
695 void HELPER(pcilg
)(CPUS390XState
*env
, uint32_t r1
, uint32_t r2
)
697 S390CPU
*cpu
= s390_env_get_cpu(env
);
699 qemu_mutex_lock_iothread();
700 pcilg_service_call(cpu
, r1
, r2
, GETPC());
701 qemu_mutex_unlock_iothread();
704 void HELPER(pcistg
)(CPUS390XState
*env
, uint32_t r1
, uint32_t r2
)
706 S390CPU
*cpu
= s390_env_get_cpu(env
);
708 qemu_mutex_lock_iothread();
709 pcistg_service_call(cpu
, r1
, r2
, GETPC());
710 qemu_mutex_unlock_iothread();
713 void HELPER(stpcifc
)(CPUS390XState
*env
, uint32_t r1
, uint64_t fiba
,
716 S390CPU
*cpu
= s390_env_get_cpu(env
);
718 qemu_mutex_lock_iothread();
719 stpcifc_service_call(cpu
, r1
, fiba
, ar
, GETPC());
720 qemu_mutex_unlock_iothread();
723 void HELPER(sic
)(CPUS390XState
*env
, uint64_t r1
, uint64_t r3
)
727 qemu_mutex_lock_iothread();
728 r
= css_do_sic(env
, (r3
>> 27) & 0x7, r1
& 0xffff);
729 qemu_mutex_unlock_iothread();
730 /* css_do_sic() may actually return a PGM_xxx value to inject */
732 s390_program_interrupt(env
, -r
, 4, GETPC());
736 void HELPER(rpcit
)(CPUS390XState
*env
, uint32_t r1
, uint32_t r2
)
738 S390CPU
*cpu
= s390_env_get_cpu(env
);
740 qemu_mutex_lock_iothread();
741 rpcit_service_call(cpu
, r1
, r2
, GETPC());
742 qemu_mutex_unlock_iothread();
745 void HELPER(pcistb
)(CPUS390XState
*env
, uint32_t r1
, uint32_t r3
,
746 uint64_t gaddr
, uint32_t ar
)
748 S390CPU
*cpu
= s390_env_get_cpu(env
);
750 qemu_mutex_lock_iothread();
751 pcistb_service_call(cpu
, r1
, r3
, gaddr
, ar
, GETPC());
752 qemu_mutex_unlock_iothread();
755 void HELPER(mpcifc
)(CPUS390XState
*env
, uint32_t r1
, uint64_t fiba
,
758 S390CPU
*cpu
= s390_env_get_cpu(env
);
760 qemu_mutex_lock_iothread();
761 mpcifc_service_call(cpu
, r1
, fiba
, ar
, GETPC());
762 qemu_mutex_unlock_iothread();