xref: /qemu/target/s390x/tcg/misc_helper.c (revision 84307cd6027c4602913177ff09aeefa4743b7234)
1 /*
2  *  S/390 misc helper routines
3  *
4  *  Copyright (c) 2009 Ulrich Hecht
5  *  Copyright (c) 2009 Alexander Graf
6  *
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.
11  *
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.
16  *
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/>.
19  */
20 
21 #include "qemu/osdep.h"
22 #include "qemu/cutils.h"
23 #include "qemu/log.h"
24 #include "cpu.h"
25 #include "s390x-internal.h"
26 #include "qemu/host-utils.h"
27 #include "exec/helper-proto.h"
28 #include "qemu/timer.h"
29 #include "exec/cputlb.h"
30 #include "accel/tcg/cpu-ldst.h"
31 #include "exec/target_page.h"
32 #include "qapi/error.h"
33 #include "tcg_s390x.h"
34 #include "s390-tod.h"
35 
36 #if !defined(CONFIG_USER_ONLY)
37 #include "system/cpus.h"
38 #include "system/system.h"
39 #include "hw/s390x/ebcdic.h"
40 #include "hw/s390x/s390-hypercall.h"
41 #include "hw/s390x/sclp.h"
42 #include "hw/s390x/s390_flic.h"
43 #include "hw/s390x/ioinst.h"
44 #include "hw/s390x/s390-pci-inst.h"
45 #include "hw/boards.h"
46 #include "hw/s390x/tod.h"
47 #include CONFIG_DEVICES
48 #endif
49 
50 /* #define DEBUG_HELPER */
51 #ifdef DEBUG_HELPER
52 #define HELPER_LOG(x...) qemu_log(x)
53 #else
54 #define HELPER_LOG(x...)
55 #endif
56 
57 /* Raise an exception statically from a TB.  */
HELPER(exception)58 void HELPER(exception)(CPUS390XState *env, uint32_t excp)
59 {
60     CPUState *cs = env_cpu(env);
61 
62     HELPER_LOG("%s: exception %d\n", __func__, excp);
63     cs->exception_index = excp;
64     cpu_loop_exit(cs);
65 }
66 
67 /* Store CPU Timer (also used for EXTRACT CPU TIME) */
HELPER(stpt)68 uint64_t HELPER(stpt)(CPUS390XState *env)
69 {
70 #if defined(CONFIG_USER_ONLY)
71     /*
72      * Fake a descending CPU timer. We could get negative values here,
73      * but we don't care as it is up to the OS when to process that
74      * interrupt and reset to > 0.
75      */
76     return UINT64_MAX - (uint64_t)cpu_get_host_ticks();
77 #else
78     return time2tod(env->cputm - qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL));
79 #endif
80 }
81 
82 /* Store Clock */
HELPER(stck)83 uint64_t HELPER(stck)(CPUS390XState *env)
84 {
85 #ifdef CONFIG_USER_ONLY
86     struct timespec ts;
87     uint64_t ns;
88 
89     clock_gettime(CLOCK_REALTIME, &ts);
90     ns = ts.tv_sec * NANOSECONDS_PER_SECOND + ts.tv_nsec;
91 
92     return TOD_UNIX_EPOCH + time2tod(ns);
93 #else
94     S390TODState *td = s390_get_todstate();
95     S390TODClass *tdc = S390_TOD_GET_CLASS(td);
96     S390TOD tod;
97 
98     tdc->get(td, &tod, &error_abort);
99     return tod.low;
100 #endif
101 }
102 
103 #ifndef CONFIG_USER_ONLY
104 /* SCLP service call */
HELPER(servc)105 uint32_t HELPER(servc)(CPUS390XState *env, uint64_t r1, uint64_t r2)
106 {
107     bql_lock();
108     int r = sclp_service_call(env_archcpu(env), r1, r2);
109     bql_unlock();
110     if (r < 0) {
111         tcg_s390_program_interrupt(env, -r, GETPC());
112     }
113     return r;
114 }
115 
HELPER(diag)116 void HELPER(diag)(CPUS390XState *env, uint32_t r1, uint32_t r3, uint32_t num)
117 {
118     uint64_t r;
119 
120     switch (num) {
121 #ifdef CONFIG_S390_CCW_VIRTIO
122     case 0x500:
123         /* QEMU/KVM hypercall */
124         bql_lock();
125         handle_diag_500(env_archcpu(env), GETPC());
126         bql_unlock();
127         r = 0;
128         break;
129 #endif /* CONFIG_S390_CCW_VIRTIO */
130     case 0x44:
131         /* yield */
132         r = 0;
133         break;
134     case 0x308:
135         /* ipl */
136         bql_lock();
137         handle_diag_308(env, r1, r3, GETPC());
138         bql_unlock();
139         r = 0;
140         break;
141     case 0x288:
142         /* time bomb (watchdog) */
143         r = handle_diag_288(env, r1, r3);
144         break;
145     default:
146         r = -1;
147         break;
148     }
149 
150     if (r) {
151         tcg_s390_program_interrupt(env, PGM_SPECIFICATION, GETPC());
152     }
153 }
154 
155 /* Set Prefix */
HELPER(spx)156 void HELPER(spx)(CPUS390XState *env, uint64_t a1)
157 {
158     const uint32_t prefix = a1 & 0x7fffe000;
159     const uint32_t old_prefix = env->psa;
160     CPUState *cs = env_cpu(env);
161 
162     if (prefix == old_prefix) {
163         return;
164     }
165     /*
166      * Since prefix got aligned to 8k and memory increments are a multiple of
167      * 8k checking the first page is sufficient
168      */
169     if (!mmu_absolute_addr_valid(prefix, true)) {
170         tcg_s390_program_interrupt(env, PGM_ADDRESSING, GETPC());
171     }
172 
173     env->psa = prefix;
174     HELPER_LOG("prefix: %#x\n", prefix);
175     tlb_flush_page(cs, 0);
176     tlb_flush_page(cs, TARGET_PAGE_SIZE);
177     if (prefix != 0) {
178         tlb_flush_page(cs, prefix);
179         tlb_flush_page(cs, prefix + TARGET_PAGE_SIZE);
180     }
181     if (old_prefix != 0) {
182         tlb_flush_page(cs, old_prefix);
183         tlb_flush_page(cs, old_prefix + TARGET_PAGE_SIZE);
184     }
185 }
186 
update_ckc_timer(CPUS390XState * env)187 static void update_ckc_timer(CPUS390XState *env)
188 {
189     S390TODState *td = s390_get_todstate();
190     uint64_t time;
191 
192     /* stop the timer and remove pending CKC IRQs */
193     timer_del(env->tod_timer);
194     g_assert(bql_locked());
195     env->pending_int &= ~INTERRUPT_EXT_CLOCK_COMPARATOR;
196 
197     /* the tod has to exceed the ckc, this can never happen if ckc is all 1's */
198     if (env->ckc == -1ULL) {
199         return;
200     }
201 
202     /* difference between origins */
203     time = env->ckc - td->base.low;
204 
205     /* nanoseconds */
206     time = tod2time(time);
207 
208     timer_mod(env->tod_timer, time);
209 }
210 
211 /* Set Clock Comparator */
HELPER(sckc)212 void HELPER(sckc)(CPUS390XState *env, uint64_t ckc)
213 {
214     env->ckc = ckc;
215 
216     bql_lock();
217     update_ckc_timer(env);
218     bql_unlock();
219 }
220 
tcg_s390_tod_updated(CPUState * cs,run_on_cpu_data opaque)221 void tcg_s390_tod_updated(CPUState *cs, run_on_cpu_data opaque)
222 {
223     update_ckc_timer(cpu_env(cs));
224 }
225 
226 /* Set Clock */
HELPER(sck)227 uint32_t HELPER(sck)(CPUS390XState *env, uint64_t tod_low)
228 {
229     S390TODState *td = s390_get_todstate();
230     S390TODClass *tdc = S390_TOD_GET_CLASS(td);
231     S390TOD tod = {
232         .high = 0,
233         .low = tod_low,
234     };
235 
236     bql_lock();
237     tdc->set(td, &tod, &error_abort);
238     bql_unlock();
239     return 0;
240 }
241 
242 /* Set Tod Programmable Field */
HELPER(sckpf)243 void HELPER(sckpf)(CPUS390XState *env, uint64_t r0)
244 {
245     uint32_t val = r0;
246 
247     if (val & 0xffff0000) {
248         tcg_s390_program_interrupt(env, PGM_SPECIFICATION, GETPC());
249     }
250     env->todpr = val;
251 }
252 
253 /* Store Clock Comparator */
HELPER(stckc)254 uint64_t HELPER(stckc)(CPUS390XState *env)
255 {
256     return env->ckc;
257 }
258 
259 /* Set CPU Timer */
HELPER(spt)260 void HELPER(spt)(CPUS390XState *env, uint64_t time)
261 {
262     if (time == -1ULL) {
263         return;
264     }
265 
266     /* nanoseconds */
267     time = tod2time(time);
268 
269     env->cputm = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) + time;
270 
271     timer_mod(env->cpu_timer, env->cputm);
272 }
273 
274 /* Store System Information */
HELPER(stsi)275 uint32_t HELPER(stsi)(CPUS390XState *env, uint64_t a0, uint64_t r0, uint64_t r1)
276 {
277     const uintptr_t ra = GETPC();
278     const uint32_t sel1 = r0 & STSI_R0_SEL1_MASK;
279     const uint32_t sel2 = r1 & STSI_R1_SEL2_MASK;
280     const MachineState *ms = MACHINE(qdev_get_machine());
281     uint16_t total_cpus = 0, conf_cpus = 0, reserved_cpus = 0;
282     S390CPU *cpu = env_archcpu(env);
283     SysIB sysib = { };
284     int i, cc = 0;
285 
286     if ((r0 & STSI_R0_FC_MASK) > STSI_R0_FC_LEVEL_3) {
287         /* invalid function code: no other checks are performed */
288         return 3;
289     }
290 
291     if ((r0 & STSI_R0_RESERVED_MASK) || (r1 & STSI_R1_RESERVED_MASK)) {
292         tcg_s390_program_interrupt(env, PGM_SPECIFICATION, ra);
293     }
294 
295     if ((r0 & STSI_R0_FC_MASK) == STSI_R0_FC_CURRENT) {
296         /* query the current level: no further checks are performed */
297         env->regs[0] = STSI_R0_FC_LEVEL_3;
298         return 0;
299     }
300 
301     if (a0 & ~TARGET_PAGE_MASK) {
302         tcg_s390_program_interrupt(env, PGM_SPECIFICATION, ra);
303     }
304 
305     /* count the cpus and split them into configured and reserved ones */
306     for (i = 0; i < ms->possible_cpus->len; i++) {
307         total_cpus++;
308         if (ms->possible_cpus->cpus[i].cpu) {
309             conf_cpus++;
310         } else {
311             reserved_cpus++;
312         }
313     }
314 
315     /*
316      * In theory, we could report Level 1 / Level 2 as current. However,
317      * the Linux kernel will detect this as running under LPAR and assume
318      * that we have a sclp linemode console (which is always present on
319      * LPAR, but not the default for QEMU), therefore not displaying boot
320      * messages and making booting a Linux kernel under TCG harder.
321      *
322      * For now we fake the same SMP configuration on all levels.
323      *
324      * TODO: We could later make the level configurable via the machine
325      *       and change defaults (linemode console) based on machine type
326      *       and accelerator.
327      */
328     switch (r0 & STSI_R0_FC_MASK) {
329     case STSI_R0_FC_LEVEL_1:
330         if ((sel1 == 1) && (sel2 == 1)) {
331             /* Basic Machine Configuration */
332             char type[5] = {};
333 
334             ebcdic_put(sysib.sysib_111.manuf, "QEMU            ", 16);
335             /* same as machine type number in STORE CPU ID, but in EBCDIC */
336             snprintf(type, ARRAY_SIZE(type), "%X", cpu->model->def->type);
337             ebcdic_put(sysib.sysib_111.type, type, 4);
338             /* model number (not stored in STORE CPU ID for z/Architecture) */
339             ebcdic_put(sysib.sysib_111.model, "QEMU            ", 16);
340             ebcdic_put(sysib.sysib_111.sequence, "QEMU            ", 16);
341             ebcdic_put(sysib.sysib_111.plant, "QEMU", 4);
342         } else if ((sel1 == 2) && (sel2 == 1)) {
343             /* Basic Machine CPU */
344             ebcdic_put(sysib.sysib_121.sequence, "QEMUQEMUQEMUQEMU", 16);
345             ebcdic_put(sysib.sysib_121.plant, "QEMU", 4);
346             sysib.sysib_121.cpu_addr = cpu_to_be16(env->core_id);
347         } else if ((sel1 == 2) && (sel2 == 2)) {
348             /* Basic Machine CPUs */
349             sysib.sysib_122.capability = cpu_to_be32(0x443afc29);
350             sysib.sysib_122.total_cpus = cpu_to_be16(total_cpus);
351             sysib.sysib_122.conf_cpus = cpu_to_be16(conf_cpus);
352             sysib.sysib_122.reserved_cpus = cpu_to_be16(reserved_cpus);
353         } else {
354             cc = 3;
355         }
356         break;
357     case STSI_R0_FC_LEVEL_2:
358         if ((sel1 == 2) && (sel2 == 1)) {
359             /* LPAR CPU */
360             ebcdic_put(sysib.sysib_221.sequence, "QEMUQEMUQEMUQEMU", 16);
361             ebcdic_put(sysib.sysib_221.plant, "QEMU", 4);
362             sysib.sysib_221.cpu_addr = cpu_to_be16(env->core_id);
363         } else if ((sel1 == 2) && (sel2 == 2)) {
364             /* LPAR CPUs */
365             sysib.sysib_222.lcpuc = 0x80; /* dedicated */
366             sysib.sysib_222.total_cpus = cpu_to_be16(total_cpus);
367             sysib.sysib_222.conf_cpus = cpu_to_be16(conf_cpus);
368             sysib.sysib_222.reserved_cpus = cpu_to_be16(reserved_cpus);
369             ebcdic_put(sysib.sysib_222.name, "QEMU    ", 8);
370             sysib.sysib_222.caf = cpu_to_be32(1000);
371             sysib.sysib_222.dedicated_cpus = cpu_to_be16(conf_cpus);
372         } else {
373             cc = 3;
374         }
375         break;
376     case STSI_R0_FC_LEVEL_3:
377         if ((sel1 == 2) && (sel2 == 2)) {
378             /* VM CPUs */
379             sysib.sysib_322.count = 1;
380             sysib.sysib_322.vm[0].total_cpus = cpu_to_be16(total_cpus);
381             sysib.sysib_322.vm[0].conf_cpus = cpu_to_be16(conf_cpus);
382             sysib.sysib_322.vm[0].reserved_cpus = cpu_to_be16(reserved_cpus);
383             sysib.sysib_322.vm[0].caf = cpu_to_be32(1000);
384             /* Linux kernel uses this to distinguish us from z/VM */
385             ebcdic_put(sysib.sysib_322.vm[0].cpi, "KVM/Linux       ", 16);
386             sysib.sysib_322.vm[0].ext_name_encoding = 2; /* UTF-8 */
387 
388             /* If our VM has a name, use the real name */
389             if (qemu_name) {
390                 memset(sysib.sysib_322.vm[0].name, 0x40,
391                        sizeof(sysib.sysib_322.vm[0].name));
392                 ebcdic_put(sysib.sysib_322.vm[0].name, qemu_name,
393                            MIN(sizeof(sysib.sysib_322.vm[0].name),
394                                strlen(qemu_name)));
395                 strpadcpy((char *)sysib.sysib_322.ext_names[0],
396                           sizeof(sysib.sysib_322.ext_names[0]),
397                           qemu_name, '\0');
398 
399             } else {
400                 ebcdic_put(sysib.sysib_322.vm[0].name, "TCGguest", 8);
401                 strcpy((char *)sysib.sysib_322.ext_names[0], "TCGguest");
402             }
403 
404             /* add the uuid */
405             memcpy(sysib.sysib_322.vm[0].uuid, &qemu_uuid,
406                    sizeof(sysib.sysib_322.vm[0].uuid));
407         } else {
408             cc = 3;
409         }
410         break;
411     }
412 
413     if (cc == 0) {
414         if (s390_cpu_virt_mem_write(cpu, a0, 0, &sysib, sizeof(sysib))) {
415             s390_cpu_virt_mem_handle_exc(cpu, ra);
416         }
417     }
418 
419     return cc;
420 }
421 
HELPER(sigp)422 uint32_t HELPER(sigp)(CPUS390XState *env, uint64_t order_code, uint32_t r1,
423                       uint32_t r3)
424 {
425     int cc;
426 
427     /* TODO: needed to inject interrupts  - push further down */
428     bql_lock();
429     cc = handle_sigp(env, order_code & SIGP_ORDER_MASK, r1, r3);
430     bql_unlock();
431 
432     return cc;
433 }
434 #endif
435 
436 #ifndef CONFIG_USER_ONLY
HELPER(xsch)437 void HELPER(xsch)(CPUS390XState *env, uint64_t r1)
438 {
439     S390CPU *cpu = env_archcpu(env);
440     bql_lock();
441     ioinst_handle_xsch(cpu, r1, GETPC());
442     bql_unlock();
443 }
444 
HELPER(csch)445 void HELPER(csch)(CPUS390XState *env, uint64_t r1)
446 {
447     S390CPU *cpu = env_archcpu(env);
448     bql_lock();
449     ioinst_handle_csch(cpu, r1, GETPC());
450     bql_unlock();
451 }
452 
HELPER(hsch)453 void HELPER(hsch)(CPUS390XState *env, uint64_t r1)
454 {
455     S390CPU *cpu = env_archcpu(env);
456     bql_lock();
457     ioinst_handle_hsch(cpu, r1, GETPC());
458     bql_unlock();
459 }
460 
HELPER(msch)461 void HELPER(msch)(CPUS390XState *env, uint64_t r1, uint64_t inst)
462 {
463     S390CPU *cpu = env_archcpu(env);
464     bql_lock();
465     ioinst_handle_msch(cpu, r1, inst >> 16, GETPC());
466     bql_unlock();
467 }
468 
HELPER(rchp)469 void HELPER(rchp)(CPUS390XState *env, uint64_t r1)
470 {
471     S390CPU *cpu = env_archcpu(env);
472     bql_lock();
473     ioinst_handle_rchp(cpu, r1, GETPC());
474     bql_unlock();
475 }
476 
HELPER(rsch)477 void HELPER(rsch)(CPUS390XState *env, uint64_t r1)
478 {
479     S390CPU *cpu = env_archcpu(env);
480     bql_lock();
481     ioinst_handle_rsch(cpu, r1, GETPC());
482     bql_unlock();
483 }
484 
HELPER(sal)485 void HELPER(sal)(CPUS390XState *env, uint64_t r1)
486 {
487     S390CPU *cpu = env_archcpu(env);
488 
489     bql_lock();
490     ioinst_handle_sal(cpu, r1, GETPC());
491     bql_unlock();
492 }
493 
HELPER(schm)494 void HELPER(schm)(CPUS390XState *env, uint64_t r1, uint64_t r2, uint64_t inst)
495 {
496     S390CPU *cpu = env_archcpu(env);
497 
498     bql_lock();
499     ioinst_handle_schm(cpu, r1, r2, inst >> 16, GETPC());
500     bql_unlock();
501 }
502 
HELPER(ssch)503 void HELPER(ssch)(CPUS390XState *env, uint64_t r1, uint64_t inst)
504 {
505     S390CPU *cpu = env_archcpu(env);
506     bql_lock();
507     ioinst_handle_ssch(cpu, r1, inst >> 16, GETPC());
508     bql_unlock();
509 }
510 
HELPER(stcrw)511 void HELPER(stcrw)(CPUS390XState *env, uint64_t inst)
512 {
513     S390CPU *cpu = env_archcpu(env);
514 
515     bql_lock();
516     ioinst_handle_stcrw(cpu, inst >> 16, GETPC());
517     bql_unlock();
518 }
519 
HELPER(stsch)520 void HELPER(stsch)(CPUS390XState *env, uint64_t r1, uint64_t inst)
521 {
522     S390CPU *cpu = env_archcpu(env);
523     bql_lock();
524     ioinst_handle_stsch(cpu, r1, inst >> 16, GETPC());
525     bql_unlock();
526 }
527 
HELPER(tpi)528 uint32_t HELPER(tpi)(CPUS390XState *env, uint64_t addr)
529 {
530     const uintptr_t ra = GETPC();
531     S390CPU *cpu = env_archcpu(env);
532     QEMUS390FLICState *flic = s390_get_qemu_flic(s390_get_flic());
533     QEMUS390FlicIO *io = NULL;
534     LowCore *lowcore;
535 
536     if (addr & 0x3) {
537         tcg_s390_program_interrupt(env, PGM_SPECIFICATION, ra);
538     }
539 
540     bql_lock();
541     io = qemu_s390_flic_dequeue_io(flic, env->cregs[6]);
542     if (!io) {
543         bql_unlock();
544         return 0;
545     }
546 
547     if (addr) {
548         struct {
549             uint16_t id;
550             uint16_t nr;
551             uint32_t parm;
552         } intc = {
553             .id = cpu_to_be16(io->id),
554             .nr = cpu_to_be16(io->nr),
555             .parm = cpu_to_be32(io->parm),
556         };
557 
558         if (s390_cpu_virt_mem_write(cpu, addr, 0, &intc, sizeof(intc))) {
559             /* writing failed, reinject and properly clean up */
560             s390_io_interrupt(io->id, io->nr, io->parm, io->word);
561             bql_unlock();
562             g_free(io);
563             s390_cpu_virt_mem_handle_exc(cpu, ra);
564             return 0;
565         }
566     } else {
567         /* no protection applies */
568         lowcore = cpu_map_lowcore(env);
569         lowcore->subchannel_id = cpu_to_be16(io->id);
570         lowcore->subchannel_nr = cpu_to_be16(io->nr);
571         lowcore->io_int_parm = cpu_to_be32(io->parm);
572         lowcore->io_int_word = cpu_to_be32(io->word);
573         cpu_unmap_lowcore(lowcore);
574     }
575 
576     g_free(io);
577     bql_unlock();
578     return 1;
579 }
580 
HELPER(tsch)581 void HELPER(tsch)(CPUS390XState *env, uint64_t r1, uint64_t inst)
582 {
583     S390CPU *cpu = env_archcpu(env);
584     bql_lock();
585     ioinst_handle_tsch(cpu, r1, inst >> 16, GETPC());
586     bql_unlock();
587 }
588 
HELPER(chsc)589 void HELPER(chsc)(CPUS390XState *env, uint64_t inst)
590 {
591     S390CPU *cpu = env_archcpu(env);
592     bql_lock();
593     ioinst_handle_chsc(cpu, inst >> 16, GETPC());
594     bql_unlock();
595 }
596 #endif
597 
598 #ifndef CONFIG_USER_ONLY
per_raise_exception(CPUS390XState * env)599 static G_NORETURN void per_raise_exception(CPUS390XState *env)
600 {
601     trigger_pgm_exception(env, PGM_PER);
602     cpu_loop_exit(env_cpu(env));
603 }
604 
per_raise_exception_log(CPUS390XState * env)605 static G_NORETURN void per_raise_exception_log(CPUS390XState *env)
606 {
607     qemu_log_mask(CPU_LOG_INT, "PER interrupt after 0x%" PRIx64 "\n",
608                   env->per_address);
609     per_raise_exception(env);
610 }
611 
HELPER(per_check_exception)612 void HELPER(per_check_exception)(CPUS390XState *env)
613 {
614     /* psw_addr, per_address and int_pgm_ilen are already set. */
615     if (unlikely(env->per_perc_atmid)) {
616         per_raise_exception_log(env);
617     }
618 }
619 
620 /* Check if an address is within the PER starting address and the PER
621    ending address.  The address range might loop.  */
get_per_in_range(CPUS390XState * env,uint64_t addr)622 static inline bool get_per_in_range(CPUS390XState *env, uint64_t addr)
623 {
624     if (env->cregs[10] <= env->cregs[11]) {
625         return env->cregs[10] <= addr && addr <= env->cregs[11];
626     } else {
627         return env->cregs[10] <= addr || addr <= env->cregs[11];
628     }
629 }
630 
HELPER(per_branch)631 void HELPER(per_branch)(CPUS390XState *env, uint64_t dest, uint32_t ilen)
632 {
633     if ((env->cregs[9] & PER_CR9_CONTROL_BRANCH_ADDRESS)
634         && !get_per_in_range(env, dest)) {
635         return;
636     }
637 
638     env->psw.addr = dest;
639     env->int_pgm_ilen = ilen;
640     env->per_address = env->gbea;
641     env->per_perc_atmid = PER_CODE_EVENT_BRANCH | get_per_atmid(env);
642     per_raise_exception_log(env);
643 }
644 
HELPER(per_ifetch)645 void HELPER(per_ifetch)(CPUS390XState *env, uint32_t ilen)
646 {
647     if (get_per_in_range(env, env->psw.addr)) {
648         env->per_address = env->psw.addr;
649         env->int_pgm_ilen = ilen;
650         env->per_perc_atmid = PER_CODE_EVENT_IFETCH | get_per_atmid(env);
651 
652         /* If the instruction has to be nullified, trigger the
653            exception immediately. */
654         if (env->cregs[9] & PER_CR9_EVENT_IFETCH_NULLIFICATION) {
655             env->per_perc_atmid |= PER_CODE_EVENT_NULLIFICATION;
656             qemu_log_mask(CPU_LOG_INT, "PER interrupt before 0x%" PRIx64 "\n",
657                           env->per_address);
658             per_raise_exception(env);
659         }
660     }
661 }
662 
HELPER(per_store_real)663 void HELPER(per_store_real)(CPUS390XState *env, uint32_t ilen)
664 {
665     /* PSW is saved just before calling the helper.  */
666     env->per_address = env->psw.addr;
667     env->int_pgm_ilen = ilen;
668     env->per_perc_atmid = PER_CODE_EVENT_STORE_REAL | get_per_atmid(env);
669     per_raise_exception_log(env);
670 }
671 #endif
672 
673 static uint8_t stfl_bytes[2048];
674 static unsigned int used_stfl_bytes;
675 
prepare_stfl(void)676 static void prepare_stfl(void)
677 {
678     static bool initialized;
679     int i;
680 
681     /* racy, but we don't care, the same values are always written */
682     if (initialized) {
683         return;
684     }
685 
686     s390_get_feat_block(S390_FEAT_TYPE_STFL, stfl_bytes);
687     for (i = 0; i < sizeof(stfl_bytes); i++) {
688         if (stfl_bytes[i]) {
689             used_stfl_bytes = i + 1;
690         }
691     }
692     initialized = true;
693 }
694 
695 #ifndef CONFIG_USER_ONLY
HELPER(stfl)696 void HELPER(stfl)(CPUS390XState *env)
697 {
698     LowCore *lowcore;
699 
700     lowcore = cpu_map_lowcore(env);
701     prepare_stfl();
702     memcpy(&lowcore->stfl_fac_list, stfl_bytes, sizeof(lowcore->stfl_fac_list));
703     cpu_unmap_lowcore(lowcore);
704 }
705 #endif
706 
HELPER(stfle)707 uint32_t HELPER(stfle)(CPUS390XState *env, uint64_t addr)
708 {
709     const uintptr_t ra = GETPC();
710     const int count_bytes = ((env->regs[0] & 0xff) + 1) * 8;
711     int max_bytes;
712     int i;
713 
714     if (addr & 0x7) {
715         tcg_s390_program_interrupt(env, PGM_SPECIFICATION, ra);
716     }
717 
718     prepare_stfl();
719     max_bytes = ROUND_UP(used_stfl_bytes, 8);
720 
721     /*
722      * The PoP says that doublewords beyond the highest-numbered facility
723      * bit may or may not be stored.  However, existing hardware appears to
724      * not store the words, and existing software depend on that.
725      */
726     for (i = 0; i < MIN(count_bytes, max_bytes); ++i) {
727         cpu_stb_data_ra(env, addr + i, stfl_bytes[i], ra);
728     }
729 
730     env->regs[0] = deposit64(env->regs[0], 0, 8, (max_bytes / 8) - 1);
731     return count_bytes >= max_bytes ? 0 : 3;
732 }
733 
734 #ifndef CONFIG_USER_ONLY
735 /*
736  * Note: we ignore any return code of the functions called for the pci
737  * instructions, as the only time they return !0 is when the stub is
738  * called, and in that case we didn't even offer the zpci facility.
739  * The only exception is SIC, where program checks need to be handled
740  * by the caller.
741  */
HELPER(clp)742 void HELPER(clp)(CPUS390XState *env, uint32_t r2)
743 {
744     S390CPU *cpu = env_archcpu(env);
745 
746     bql_lock();
747     clp_service_call(cpu, r2, GETPC());
748     bql_unlock();
749 }
750 
HELPER(pcilg)751 void HELPER(pcilg)(CPUS390XState *env, uint32_t r1, uint32_t r2)
752 {
753     S390CPU *cpu = env_archcpu(env);
754 
755     bql_lock();
756     pcilg_service_call(cpu, r1, r2, GETPC());
757     bql_unlock();
758 }
759 
HELPER(pcistg)760 void HELPER(pcistg)(CPUS390XState *env, uint32_t r1, uint32_t r2)
761 {
762     S390CPU *cpu = env_archcpu(env);
763 
764     bql_lock();
765     pcistg_service_call(cpu, r1, r2, GETPC());
766     bql_unlock();
767 }
768 
HELPER(stpcifc)769 void HELPER(stpcifc)(CPUS390XState *env, uint32_t r1, uint64_t fiba,
770                      uint32_t ar)
771 {
772     S390CPU *cpu = env_archcpu(env);
773 
774     bql_lock();
775     stpcifc_service_call(cpu, r1, fiba, ar, GETPC());
776     bql_unlock();
777 }
778 
HELPER(sic)779 void HELPER(sic)(CPUS390XState *env, uint64_t r1, uint64_t r3)
780 {
781     S390CPU *cpu = env_archcpu(env);
782     int r;
783 
784     bql_lock();
785     r = css_do_sic(cpu, (r3 >> 27) & 0x7, r1 & 0xffff);
786     bql_unlock();
787     /* css_do_sic() may actually return a PGM_xxx value to inject */
788     if (r) {
789         tcg_s390_program_interrupt(env, -r, GETPC());
790     }
791 }
792 
HELPER(rpcit)793 void HELPER(rpcit)(CPUS390XState *env, uint32_t r1, uint32_t r2)
794 {
795     S390CPU *cpu = env_archcpu(env);
796 
797     bql_lock();
798     rpcit_service_call(cpu, r1, r2, GETPC());
799     bql_unlock();
800 }
801 
HELPER(pcistb)802 void HELPER(pcistb)(CPUS390XState *env, uint32_t r1, uint32_t r3,
803                     uint64_t gaddr, uint32_t ar)
804 {
805     S390CPU *cpu = env_archcpu(env);
806 
807     bql_lock();
808     pcistb_service_call(cpu, r1, r3, gaddr, ar, GETPC());
809     bql_unlock();
810 }
811 
HELPER(mpcifc)812 void HELPER(mpcifc)(CPUS390XState *env, uint32_t r1, uint64_t fiba,
813                     uint32_t ar)
814 {
815     S390CPU *cpu = env_archcpu(env);
816 
817     bql_lock();
818     mpcifc_service_call(cpu, r1, fiba, ar, GETPC());
819     bql_unlock();
820 }
821 #endif
822