target-arm: remove raw_read|write duplication
[qemu.git] / target-s390x / kvm.c
blobf7b772668c2f168f6aedb5f8895268be10b5c840
1 /*
2 * QEMU S390x KVM implementation
4 * Copyright (c) 2009 Alexander Graf <agraf@suse.de>
5 * Copyright IBM Corp. 2012
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 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 * Contributions after 2012-10-29 are licensed under the terms of the
18 * GNU GPL, version 2 or (at your option) any later version.
20 * You should have received a copy of the GNU (Lesser) General Public
21 * License along with this library; if not, see <http://www.gnu.org/licenses/>.
24 #include <sys/types.h>
25 #include <sys/ioctl.h>
26 #include <sys/mman.h>
28 #include <linux/kvm.h>
29 #include <asm/ptrace.h>
31 #include "qemu-common.h"
32 #include "qemu/timer.h"
33 #include "sysemu/sysemu.h"
34 #include "sysemu/kvm.h"
35 #include "cpu.h"
36 #include "sysemu/device_tree.h"
37 #include "qapi/qmp/qjson.h"
38 #include "monitor/monitor.h"
40 /* #define DEBUG_KVM */
42 #ifdef DEBUG_KVM
43 #define DPRINTF(fmt, ...) \
44 do { fprintf(stderr, fmt, ## __VA_ARGS__); } while (0)
45 #else
46 #define DPRINTF(fmt, ...) \
47 do { } while (0)
48 #endif
50 #define IPA0_DIAG 0x8300
51 #define IPA0_SIGP 0xae00
52 #define IPA0_B2 0xb200
53 #define IPA0_B9 0xb900
54 #define IPA0_EB 0xeb00
56 #define PRIV_SCLP_CALL 0x20
57 #define PRIV_CSCH 0x30
58 #define PRIV_HSCH 0x31
59 #define PRIV_MSCH 0x32
60 #define PRIV_SSCH 0x33
61 #define PRIV_STSCH 0x34
62 #define PRIV_TSCH 0x35
63 #define PRIV_TPI 0x36
64 #define PRIV_SAL 0x37
65 #define PRIV_RSCH 0x38
66 #define PRIV_STCRW 0x39
67 #define PRIV_STCPS 0x3a
68 #define PRIV_RCHP 0x3b
69 #define PRIV_SCHM 0x3c
70 #define PRIV_CHSC 0x5f
71 #define PRIV_SIGA 0x74
72 #define PRIV_XSCH 0x76
73 #define PRIV_SQBS 0x8a
74 #define PRIV_EQBS 0x9c
75 #define DIAG_IPL 0x308
76 #define DIAG_KVM_HYPERCALL 0x500
77 #define DIAG_KVM_BREAKPOINT 0x501
79 #define ICPT_INSTRUCTION 0x04
80 #define ICPT_WAITPSW 0x1c
81 #define ICPT_SOFT_INTERCEPT 0x24
82 #define ICPT_CPU_STOP 0x28
83 #define ICPT_IO 0x40
85 const KVMCapabilityInfo kvm_arch_required_capabilities[] = {
86 KVM_CAP_LAST_INFO
89 static int cap_sync_regs;
91 static void *legacy_s390_alloc(size_t size);
93 int kvm_arch_init(KVMState *s)
95 cap_sync_regs = kvm_check_extension(s, KVM_CAP_SYNC_REGS);
96 if (!kvm_check_extension(s, KVM_CAP_S390_GMAP)
97 || !kvm_check_extension(s, KVM_CAP_S390_COW)) {
98 phys_mem_set_alloc(legacy_s390_alloc);
100 return 0;
103 unsigned long kvm_arch_vcpu_id(CPUState *cpu)
105 return cpu->cpu_index;
108 int kvm_arch_init_vcpu(CPUState *cpu)
110 /* nothing todo yet */
111 return 0;
114 void kvm_arch_reset_vcpu(CPUState *cpu)
116 /* The initial reset call is needed here to reset in-kernel
117 * vcpu data that we can't access directly from QEMU
118 * (i.e. with older kernels which don't support sync_regs/ONE_REG).
119 * Before this ioctl cpu_synchronize_state() is called in common kvm
120 * code (kvm-all) */
121 if (kvm_vcpu_ioctl(cpu, KVM_S390_INITIAL_RESET, NULL)) {
122 perror("Can't reset vcpu\n");
126 int kvm_arch_put_registers(CPUState *cs, int level)
128 S390CPU *cpu = S390_CPU(cs);
129 CPUS390XState *env = &cpu->env;
130 struct kvm_one_reg reg;
131 struct kvm_sregs sregs;
132 struct kvm_regs regs;
133 int ret;
134 int i;
136 /* always save the PSW and the GPRS*/
137 cs->kvm_run->psw_addr = env->psw.addr;
138 cs->kvm_run->psw_mask = env->psw.mask;
140 if (cap_sync_regs && cs->kvm_run->kvm_valid_regs & KVM_SYNC_GPRS) {
141 for (i = 0; i < 16; i++) {
142 cs->kvm_run->s.regs.gprs[i] = env->regs[i];
143 cs->kvm_run->kvm_dirty_regs |= KVM_SYNC_GPRS;
145 } else {
146 for (i = 0; i < 16; i++) {
147 regs.gprs[i] = env->regs[i];
149 ret = kvm_vcpu_ioctl(cs, KVM_SET_REGS, &regs);
150 if (ret < 0) {
151 return ret;
155 if (env->runtime_reg_dirty_mask == KVM_S390_RUNTIME_DIRTY_FULL) {
156 reg.id = KVM_REG_S390_CPU_TIMER;
157 reg.addr = (__u64)&(env->cputm);
158 ret = kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, &reg);
159 if (ret < 0) {
160 return ret;
163 reg.id = KVM_REG_S390_CLOCK_COMP;
164 reg.addr = (__u64)&(env->ckc);
165 ret = kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, &reg);
166 if (ret < 0) {
167 return ret;
170 reg.id = KVM_REG_S390_TODPR;
171 reg.addr = (__u64)&(env->todpr);
172 ret = kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, &reg);
173 if (ret < 0) {
174 return ret;
177 env->runtime_reg_dirty_mask = KVM_S390_RUNTIME_DIRTY_NONE;
179 /* Do we need to save more than that? */
180 if (level == KVM_PUT_RUNTIME_STATE) {
181 return 0;
184 if (cap_sync_regs &&
185 cs->kvm_run->kvm_valid_regs & KVM_SYNC_ACRS &&
186 cs->kvm_run->kvm_valid_regs & KVM_SYNC_CRS) {
187 for (i = 0; i < 16; i++) {
188 cs->kvm_run->s.regs.acrs[i] = env->aregs[i];
189 cs->kvm_run->s.regs.crs[i] = env->cregs[i];
191 cs->kvm_run->kvm_dirty_regs |= KVM_SYNC_ACRS;
192 cs->kvm_run->kvm_dirty_regs |= KVM_SYNC_CRS;
193 } else {
194 for (i = 0; i < 16; i++) {
195 sregs.acrs[i] = env->aregs[i];
196 sregs.crs[i] = env->cregs[i];
198 ret = kvm_vcpu_ioctl(cs, KVM_SET_SREGS, &sregs);
199 if (ret < 0) {
200 return ret;
204 /* Finally the prefix */
205 if (cap_sync_regs && cs->kvm_run->kvm_valid_regs & KVM_SYNC_PREFIX) {
206 cs->kvm_run->s.regs.prefix = env->psa;
207 cs->kvm_run->kvm_dirty_regs |= KVM_SYNC_PREFIX;
208 } else {
209 /* prefix is only supported via sync regs */
211 return 0;
214 int kvm_arch_get_registers(CPUState *cs)
216 S390CPU *cpu = S390_CPU(cs);
217 CPUS390XState *env = &cpu->env;
218 struct kvm_one_reg reg;
219 int r;
221 r = kvm_s390_get_registers_partial(cs);
222 if (r < 0) {
223 return r;
226 reg.id = KVM_REG_S390_CPU_TIMER;
227 reg.addr = (__u64)&(env->cputm);
228 r = kvm_vcpu_ioctl(cs, KVM_GET_ONE_REG, &reg);
229 if (r < 0) {
230 return r;
233 reg.id = KVM_REG_S390_CLOCK_COMP;
234 reg.addr = (__u64)&(env->ckc);
235 r = kvm_vcpu_ioctl(cs, KVM_GET_ONE_REG, &reg);
236 if (r < 0) {
237 return r;
240 reg.id = KVM_REG_S390_TODPR;
241 reg.addr = (__u64)&(env->todpr);
242 r = kvm_vcpu_ioctl(cs, KVM_GET_ONE_REG, &reg);
243 if (r < 0) {
244 return r;
247 env->runtime_reg_dirty_mask = KVM_S390_RUNTIME_DIRTY_FULL;
248 return 0;
251 int kvm_s390_get_registers_partial(CPUState *cs)
253 S390CPU *cpu = S390_CPU(cs);
254 CPUS390XState *env = &cpu->env;
255 struct kvm_sregs sregs;
256 struct kvm_regs regs;
257 int ret;
258 int i;
260 if (env->runtime_reg_dirty_mask) {
261 return 0;
264 /* get the PSW */
265 env->psw.addr = cs->kvm_run->psw_addr;
266 env->psw.mask = cs->kvm_run->psw_mask;
268 /* the GPRS */
269 if (cap_sync_regs && cs->kvm_run->kvm_valid_regs & KVM_SYNC_GPRS) {
270 for (i = 0; i < 16; i++) {
271 env->regs[i] = cs->kvm_run->s.regs.gprs[i];
273 } else {
274 ret = kvm_vcpu_ioctl(cs, KVM_GET_REGS, &regs);
275 if (ret < 0) {
276 return ret;
278 for (i = 0; i < 16; i++) {
279 env->regs[i] = regs.gprs[i];
283 /* The ACRS and CRS */
284 if (cap_sync_regs &&
285 cs->kvm_run->kvm_valid_regs & KVM_SYNC_ACRS &&
286 cs->kvm_run->kvm_valid_regs & KVM_SYNC_CRS) {
287 for (i = 0; i < 16; i++) {
288 env->aregs[i] = cs->kvm_run->s.regs.acrs[i];
289 env->cregs[i] = cs->kvm_run->s.regs.crs[i];
291 } else {
292 ret = kvm_vcpu_ioctl(cs, KVM_GET_SREGS, &sregs);
293 if (ret < 0) {
294 return ret;
296 for (i = 0; i < 16; i++) {
297 env->aregs[i] = sregs.acrs[i];
298 env->cregs[i] = sregs.crs[i];
302 /* Finally the prefix */
303 if (cap_sync_regs && cs->kvm_run->kvm_valid_regs & KVM_SYNC_PREFIX) {
304 env->psa = cs->kvm_run->s.regs.prefix;
305 } else {
306 /* no prefix without sync regs */
309 env->runtime_reg_dirty_mask = KVM_S390_RUNTIME_DIRTY_PARTIAL;
310 return 0;
314 * Legacy layout for s390:
315 * Older S390 KVM requires the topmost vma of the RAM to be
316 * smaller than an system defined value, which is at least 256GB.
317 * Larger systems have larger values. We put the guest between
318 * the end of data segment (system break) and this value. We
319 * use 32GB as a base to have enough room for the system break
320 * to grow. We also have to use MAP parameters that avoid
321 * read-only mapping of guest pages.
323 static void *legacy_s390_alloc(size_t size)
325 void *mem;
327 mem = mmap((void *) 0x800000000ULL, size,
328 PROT_EXEC|PROT_READ|PROT_WRITE,
329 MAP_SHARED | MAP_ANONYMOUS | MAP_FIXED, -1, 0);
330 return mem == MAP_FAILED ? NULL : mem;
333 int kvm_arch_insert_sw_breakpoint(CPUState *cs, struct kvm_sw_breakpoint *bp)
335 static const uint8_t diag_501[] = {0x83, 0x24, 0x05, 0x01};
337 if (cpu_memory_rw_debug(cs, bp->pc, (uint8_t *)&bp->saved_insn, 4, 0) ||
338 cpu_memory_rw_debug(cs, bp->pc, (uint8_t *)diag_501, 4, 1)) {
339 return -EINVAL;
341 return 0;
344 int kvm_arch_remove_sw_breakpoint(CPUState *cs, struct kvm_sw_breakpoint *bp)
346 uint8_t t[4];
347 static const uint8_t diag_501[] = {0x83, 0x24, 0x05, 0x01};
349 if (cpu_memory_rw_debug(cs, bp->pc, t, 4, 0)) {
350 return -EINVAL;
351 } else if (memcmp(t, diag_501, 4)) {
352 return -EINVAL;
353 } else if (cpu_memory_rw_debug(cs, bp->pc, (uint8_t *)&bp->saved_insn, 1, 1)) {
354 return -EINVAL;
357 return 0;
360 void kvm_arch_pre_run(CPUState *cpu, struct kvm_run *run)
364 void kvm_arch_post_run(CPUState *cpu, struct kvm_run *run)
368 int kvm_arch_process_async_events(CPUState *cs)
370 return cs->halted;
373 void kvm_s390_interrupt_internal(S390CPU *cpu, int type, uint32_t parm,
374 uint64_t parm64, int vm)
376 CPUState *cs = CPU(cpu);
377 struct kvm_s390_interrupt kvmint;
378 int r;
380 if (!cs->kvm_state) {
381 return;
384 kvmint.type = type;
385 kvmint.parm = parm;
386 kvmint.parm64 = parm64;
388 if (vm) {
389 r = kvm_vm_ioctl(cs->kvm_state, KVM_S390_INTERRUPT, &kvmint);
390 } else {
391 r = kvm_vcpu_ioctl(cs, KVM_S390_INTERRUPT, &kvmint);
394 if (r < 0) {
395 fprintf(stderr, "KVM failed to inject interrupt\n");
396 exit(1);
400 void kvm_s390_virtio_irq(S390CPU *cpu, int config_change, uint64_t token)
402 kvm_s390_interrupt_internal(cpu, KVM_S390_INT_VIRTIO, config_change,
403 token, 1);
406 void kvm_s390_interrupt(S390CPU *cpu, int type, uint32_t code)
408 kvm_s390_interrupt_internal(cpu, type, code, 0, 0);
411 static void enter_pgmcheck(S390CPU *cpu, uint16_t code)
413 kvm_s390_interrupt(cpu, KVM_S390_PROGRAM_INT, code);
416 static int kvm_sclp_service_call(S390CPU *cpu, struct kvm_run *run,
417 uint16_t ipbh0)
419 CPUS390XState *env = &cpu->env;
420 uint32_t sccb;
421 uint64_t code;
422 int r = 0;
424 cpu_synchronize_state(CPU(cpu));
425 if (env->psw.mask & PSW_MASK_PSTATE) {
426 enter_pgmcheck(cpu, PGM_PRIVILEGED);
427 return 0;
429 sccb = env->regs[ipbh0 & 0xf];
430 code = env->regs[(ipbh0 & 0xf0) >> 4];
432 r = sclp_service_call(sccb, code);
433 if (r < 0) {
434 enter_pgmcheck(cpu, -r);
436 setcc(cpu, r);
438 return 0;
441 static int kvm_handle_css_inst(S390CPU *cpu, struct kvm_run *run,
442 uint8_t ipa0, uint8_t ipa1, uint8_t ipb)
444 CPUS390XState *env = &cpu->env;
445 CPUState *cs = CPU(cpu);
447 if (ipa0 != 0xb2) {
448 /* Not handled for now. */
449 return -1;
452 kvm_s390_get_registers_partial(cs);
453 cs->kvm_vcpu_dirty = true;
455 switch (ipa1) {
456 case PRIV_XSCH:
457 ioinst_handle_xsch(cpu, env->regs[1]);
458 break;
459 case PRIV_CSCH:
460 ioinst_handle_csch(cpu, env->regs[1]);
461 break;
462 case PRIV_HSCH:
463 ioinst_handle_hsch(cpu, env->regs[1]);
464 break;
465 case PRIV_MSCH:
466 ioinst_handle_msch(cpu, env->regs[1], run->s390_sieic.ipb);
467 break;
468 case PRIV_SSCH:
469 ioinst_handle_ssch(cpu, env->regs[1], run->s390_sieic.ipb);
470 break;
471 case PRIV_STCRW:
472 ioinst_handle_stcrw(cpu, run->s390_sieic.ipb);
473 break;
474 case PRIV_STSCH:
475 ioinst_handle_stsch(cpu, env->regs[1], run->s390_sieic.ipb);
476 break;
477 case PRIV_TSCH:
478 /* We should only get tsch via KVM_EXIT_S390_TSCH. */
479 fprintf(stderr, "Spurious tsch intercept\n");
480 break;
481 case PRIV_CHSC:
482 ioinst_handle_chsc(cpu, run->s390_sieic.ipb);
483 break;
484 case PRIV_TPI:
485 /* This should have been handled by kvm already. */
486 fprintf(stderr, "Spurious tpi intercept\n");
487 break;
488 case PRIV_SCHM:
489 ioinst_handle_schm(cpu, env->regs[1], env->regs[2],
490 run->s390_sieic.ipb);
491 break;
492 case PRIV_RSCH:
493 ioinst_handle_rsch(cpu, env->regs[1]);
494 break;
495 case PRIV_RCHP:
496 ioinst_handle_rchp(cpu, env->regs[1]);
497 break;
498 case PRIV_STCPS:
499 /* We do not provide this instruction, it is suppressed. */
500 break;
501 case PRIV_SAL:
502 ioinst_handle_sal(cpu, env->regs[1]);
503 break;
504 case PRIV_SIGA:
505 /* Not provided, set CC = 3 for subchannel not operational */
506 setcc(cpu, 3);
507 break;
508 default:
509 return -1;
512 return 0;
515 static int handle_priv(S390CPU *cpu, struct kvm_run *run,
516 uint8_t ipa0, uint8_t ipa1)
518 int r = 0;
519 uint16_t ipbh0 = (run->s390_sieic.ipb & 0xffff0000) >> 16;
520 uint8_t ipb = run->s390_sieic.ipb & 0xff;
522 DPRINTF("KVM: PRIV: %d\n", ipa1);
523 switch (ipa1) {
524 case PRIV_SCLP_CALL:
525 r = kvm_sclp_service_call(cpu, run, ipbh0);
526 break;
527 default:
528 r = kvm_handle_css_inst(cpu, run, ipa0, ipa1, ipb);
529 if (r == -1) {
530 DPRINTF("KVM: unhandled PRIV: 0x%x\n", ipa1);
532 break;
535 return r;
538 static int handle_hypercall(S390CPU *cpu, struct kvm_run *run)
540 CPUState *cs = CPU(cpu);
541 CPUS390XState *env = &cpu->env;
543 kvm_s390_get_registers_partial(cs);
544 cs->kvm_vcpu_dirty = true;
545 env->regs[2] = s390_virtio_hypercall(env);
547 return 0;
550 static void kvm_handle_diag_308(S390CPU *cpu, struct kvm_run *run)
552 uint64_t r1, r3;
554 cpu_synchronize_state(CPU(cpu));
555 r1 = (run->s390_sieic.ipa & 0x00f0) >> 8;
556 r3 = run->s390_sieic.ipa & 0x000f;
557 handle_diag_308(&cpu->env, r1, r3);
560 #define DIAG_KVM_CODE_MASK 0x000000000000ffff
562 static int handle_diag(S390CPU *cpu, struct kvm_run *run, uint32_t ipb)
564 int r = 0;
565 uint16_t func_code;
568 * For any diagnose call we support, bits 48-63 of the resulting
569 * address specify the function code; the remainder is ignored.
571 func_code = decode_basedisp_rs(&cpu->env, ipb) & DIAG_KVM_CODE_MASK;
572 switch (func_code) {
573 case DIAG_IPL:
574 kvm_handle_diag_308(cpu, run);
575 break;
576 case DIAG_KVM_HYPERCALL:
577 r = handle_hypercall(cpu, run);
578 break;
579 case DIAG_KVM_BREAKPOINT:
580 sleep(10);
581 break;
582 default:
583 DPRINTF("KVM: unknown DIAG: 0x%x\n", func_code);
584 r = -1;
585 break;
588 return r;
591 static int kvm_s390_cpu_start(S390CPU *cpu)
593 s390_add_running_cpu(cpu);
594 qemu_cpu_kick(CPU(cpu));
595 DPRINTF("DONE: KVM cpu start: %p\n", &cpu->env);
596 return 0;
599 int kvm_s390_cpu_restart(S390CPU *cpu)
601 kvm_s390_interrupt(cpu, KVM_S390_RESTART, 0);
602 s390_add_running_cpu(cpu);
603 qemu_cpu_kick(CPU(cpu));
604 DPRINTF("DONE: KVM cpu restart: %p\n", &cpu->env);
605 return 0;
608 static int s390_cpu_initial_reset(S390CPU *cpu)
610 CPUState *cs = CPU(cpu);
611 CPUS390XState *env = &cpu->env;
612 int i;
614 s390_del_running_cpu(cpu);
615 if (kvm_vcpu_ioctl(cs, KVM_S390_INITIAL_RESET, NULL) < 0) {
616 perror("cannot init reset vcpu");
619 /* Manually zero out all registers */
620 cpu_synchronize_state(cs);
621 for (i = 0; i < 16; i++) {
622 env->regs[i] = 0;
625 DPRINTF("DONE: SIGP initial reset: %p\n", env);
626 return 0;
629 #define SIGP_ORDER_MASK 0x000000ff
631 static int handle_sigp(S390CPU *cpu, struct kvm_run *run, uint8_t ipa1)
633 CPUS390XState *env = &cpu->env;
634 uint8_t order_code;
635 uint16_t cpu_addr;
636 S390CPU *target_cpu;
637 uint64_t *statusreg = &env->regs[ipa1 >> 4];
638 int cc;
640 cpu_synchronize_state(CPU(cpu));
642 /* get order code */
643 order_code = decode_basedisp_rs(env, run->s390_sieic.ipb) & SIGP_ORDER_MASK;
645 cpu_addr = env->regs[ipa1 & 0x0f];
646 target_cpu = s390_cpu_addr2state(cpu_addr);
647 if (target_cpu == NULL) {
648 cc = 3; /* not operational */
649 goto out;
652 switch (order_code) {
653 case SIGP_START:
654 cc = kvm_s390_cpu_start(target_cpu);
655 break;
656 case SIGP_RESTART:
657 cc = kvm_s390_cpu_restart(target_cpu);
658 break;
659 case SIGP_SET_ARCH:
660 /* make the caller panic */
661 return -1;
662 case SIGP_INITIAL_CPU_RESET:
663 cc = s390_cpu_initial_reset(target_cpu);
664 break;
665 default:
666 DPRINTF("KVM: unknown SIGP: 0x%x\n", order_code);
667 *statusreg &= 0xffffffff00000000UL;
668 *statusreg |= SIGP_STAT_INVALID_ORDER;
669 cc = 1; /* status stored */
670 break;
673 out:
674 setcc(cpu, cc);
675 return 0;
678 static void handle_instruction(S390CPU *cpu, struct kvm_run *run)
680 unsigned int ipa0 = (run->s390_sieic.ipa & 0xff00);
681 uint8_t ipa1 = run->s390_sieic.ipa & 0x00ff;
682 int r = -1;
684 DPRINTF("handle_instruction 0x%x 0x%x\n",
685 run->s390_sieic.ipa, run->s390_sieic.ipb);
686 switch (ipa0) {
687 case IPA0_B2:
688 case IPA0_B9:
689 case IPA0_EB:
690 r = handle_priv(cpu, run, ipa0 >> 8, ipa1);
691 break;
692 case IPA0_DIAG:
693 r = handle_diag(cpu, run, run->s390_sieic.ipb);
694 break;
695 case IPA0_SIGP:
696 r = handle_sigp(cpu, run, ipa1);
697 break;
700 if (r < 0) {
701 enter_pgmcheck(cpu, 0x0001);
705 static bool is_special_wait_psw(CPUState *cs)
707 /* signal quiesce */
708 return cs->kvm_run->psw_addr == 0xfffUL;
711 static int handle_intercept(S390CPU *cpu)
713 CPUState *cs = CPU(cpu);
714 struct kvm_run *run = cs->kvm_run;
715 int icpt_code = run->s390_sieic.icptcode;
716 int r = 0;
718 DPRINTF("intercept: 0x%x (at 0x%lx)\n", icpt_code,
719 (long)cs->kvm_run->psw_addr);
720 switch (icpt_code) {
721 case ICPT_INSTRUCTION:
722 handle_instruction(cpu, run);
723 break;
724 case ICPT_WAITPSW:
725 /* disabled wait, since enabled wait is handled in kernel */
726 if (s390_del_running_cpu(cpu) == 0) {
727 if (is_special_wait_psw(cs)) {
728 qemu_system_shutdown_request();
729 } else {
730 QObject *data;
732 data = qobject_from_jsonf("{ 'action': %s }", "pause");
733 monitor_protocol_event(QEVENT_GUEST_PANICKED, data);
734 qobject_decref(data);
735 vm_stop(RUN_STATE_GUEST_PANICKED);
738 r = EXCP_HALTED;
739 break;
740 case ICPT_CPU_STOP:
741 if (s390_del_running_cpu(cpu) == 0) {
742 qemu_system_shutdown_request();
744 r = EXCP_HALTED;
745 break;
746 case ICPT_SOFT_INTERCEPT:
747 fprintf(stderr, "KVM unimplemented icpt SOFT\n");
748 exit(1);
749 break;
750 case ICPT_IO:
751 fprintf(stderr, "KVM unimplemented icpt IO\n");
752 exit(1);
753 break;
754 default:
755 fprintf(stderr, "Unknown intercept code: %d\n", icpt_code);
756 exit(1);
757 break;
760 return r;
763 static int handle_tsch(S390CPU *cpu)
765 CPUS390XState *env = &cpu->env;
766 CPUState *cs = CPU(cpu);
767 struct kvm_run *run = cs->kvm_run;
768 int ret;
770 kvm_s390_get_registers_partial(cs);
771 cs->kvm_vcpu_dirty = true;
773 ret = ioinst_handle_tsch(env, env->regs[1], run->s390_tsch.ipb);
774 if (ret >= 0) {
775 /* Success; set condition code. */
776 setcc(cpu, ret);
777 ret = 0;
778 } else if (ret < -1) {
780 * Failure.
781 * If an I/O interrupt had been dequeued, we have to reinject it.
783 if (run->s390_tsch.dequeued) {
784 uint16_t subchannel_id = run->s390_tsch.subchannel_id;
785 uint16_t subchannel_nr = run->s390_tsch.subchannel_nr;
786 uint32_t io_int_parm = run->s390_tsch.io_int_parm;
787 uint32_t io_int_word = run->s390_tsch.io_int_word;
788 uint32_t type = ((subchannel_id & 0xff00) << 24) |
789 ((subchannel_id & 0x00060) << 22) | (subchannel_nr << 16);
791 kvm_s390_interrupt_internal(cpu, type,
792 ((uint32_t)subchannel_id << 16)
793 | subchannel_nr,
794 ((uint64_t)io_int_parm << 32)
795 | io_int_word, 1);
797 ret = 0;
799 return ret;
802 int kvm_arch_handle_exit(CPUState *cs, struct kvm_run *run)
804 S390CPU *cpu = S390_CPU(cs);
805 int ret = 0;
807 switch (run->exit_reason) {
808 case KVM_EXIT_S390_SIEIC:
809 ret = handle_intercept(cpu);
810 break;
811 case KVM_EXIT_S390_RESET:
812 qemu_system_reset_request();
813 break;
814 case KVM_EXIT_S390_TSCH:
815 ret = handle_tsch(cpu);
816 break;
817 default:
818 fprintf(stderr, "Unknown KVM exit: %d\n", run->exit_reason);
819 break;
822 if (ret == 0) {
823 ret = EXCP_INTERRUPT;
825 return ret;
828 bool kvm_arch_stop_on_emulation_error(CPUState *cpu)
830 return true;
833 int kvm_arch_on_sigbus_vcpu(CPUState *cpu, int code, void *addr)
835 return 1;
838 int kvm_arch_on_sigbus(int code, void *addr)
840 return 1;
843 void kvm_s390_io_interrupt(S390CPU *cpu, uint16_t subchannel_id,
844 uint16_t subchannel_nr, uint32_t io_int_parm,
845 uint32_t io_int_word)
847 uint32_t type;
849 type = ((subchannel_id & 0xff00) << 24) |
850 ((subchannel_id & 0x00060) << 22) | (subchannel_nr << 16);
851 kvm_s390_interrupt_internal(cpu, type,
852 ((uint32_t)subchannel_id << 16) | subchannel_nr,
853 ((uint64_t)io_int_parm << 32) | io_int_word, 1);
856 void kvm_s390_crw_mchk(S390CPU *cpu)
858 kvm_s390_interrupt_internal(cpu, KVM_S390_MCHK, 1 << 28,
859 0x00400f1d40330000, 1);
862 void kvm_s390_enable_css_support(S390CPU *cpu)
864 struct kvm_enable_cap cap = {};
865 int r;
867 /* Activate host kernel channel subsystem support. */
868 cap.cap = KVM_CAP_S390_CSS_SUPPORT;
869 r = kvm_vcpu_ioctl(CPU(cpu), KVM_ENABLE_CAP, &cap);
870 assert(r == 0);
873 void kvm_arch_init_irq_routing(KVMState *s)
877 int kvm_s390_assign_subch_ioeventfd(EventNotifier *notifier, uint32_t sch,
878 int vq, bool assign)
880 struct kvm_ioeventfd kick = {
881 .flags = KVM_IOEVENTFD_FLAG_VIRTIO_CCW_NOTIFY |
882 KVM_IOEVENTFD_FLAG_DATAMATCH,
883 .fd = event_notifier_get_fd(notifier),
884 .datamatch = vq,
885 .addr = sch,
886 .len = 8,
888 if (!kvm_check_extension(kvm_state, KVM_CAP_IOEVENTFD)) {
889 return -ENOSYS;
891 if (!assign) {
892 kick.flags |= KVM_IOEVENTFD_FLAG_DEASSIGN;
894 return kvm_vm_ioctl(kvm_state, KVM_IOEVENTFD, &kick);