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/*
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 * QEMU S390x KVM implementation
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 *
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 * Copyright (c) 2009 Alexander Graf <agraf@suse.de>
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 *
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 * This library is free software; you can redistribute it and/or
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 * modify it under the terms of the GNU Lesser General Public
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 * License as published by the Free Software Foundation; either
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 * version 2 of the License, or (at your option) any later version.
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 *
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 * This library is distributed in the hope that it will be useful,
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 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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 * Lesser General Public License for more details.
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 *
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 * You should have received a copy of the GNU Lesser General Public
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 * License along with this library; if not, see <http://www.gnu.org/licenses/>.
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 */
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#include <sys/types.h>
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#include <sys/ioctl.h>
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#include <sys/mman.h>
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#include <linux/kvm.h>
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#include <asm/ptrace.h>
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#include "qemu-common.h"
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#include "qemu-timer.h"
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#include "sysemu.h"
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#include "kvm.h"
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#include "cpu.h"
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#include "device_tree.h"
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/* #define DEBUG_KVM */
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#ifdef DEBUG_KVM
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#define dprintf(fmt, ...) \
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    do { fprintf(stderr, fmt, ## __VA_ARGS__); } while (0)
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#else
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#define dprintf(fmt, ...) \
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    do { } while (0)
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#endif
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#define IPA0_DIAG                       0x8300
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#define IPA0_SIGP                       0xae00
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#define IPA0_PRIV                       0xb200
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#define PRIV_SCLP_CALL                  0x20
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#define DIAG_KVM_HYPERCALL              0x500
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#define DIAG_KVM_BREAKPOINT             0x501
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#define ICPT_INSTRUCTION                0x04
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#define ICPT_WAITPSW                    0x1c
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#define ICPT_SOFT_INTERCEPT             0x24
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#define ICPT_CPU_STOP                   0x28
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#define ICPT_IO                         0x40
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#define SIGP_RESTART                    0x06
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#define SIGP_INITIAL_CPU_RESET          0x0b
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#define SIGP_STORE_STATUS_ADDR          0x0e
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#define SIGP_SET_ARCH                   0x12
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#define SCLP_CMDW_READ_SCP_INFO         0x00020001
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#define SCLP_CMDW_READ_SCP_INFO_FORCED  0x00120001
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const KVMCapabilityInfo kvm_arch_required_capabilities[] = {
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    KVM_CAP_LAST_INFO
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};
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int kvm_arch_init(KVMState *s)
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{
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    return 0;
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}
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int kvm_arch_init_vcpu(CPUS390XState *env)
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{
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    int ret = 0;
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    if (kvm_vcpu_ioctl(env, KVM_S390_INITIAL_RESET, NULL) < 0) {
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        perror("cannot init reset vcpu");
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    }
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    return ret;
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}
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void kvm_arch_reset_vcpu(CPUS390XState *env)
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{
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    /* FIXME: add code to reset vcpu. */
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}
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int kvm_arch_put_registers(CPUS390XState *env, int level)
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{
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    struct kvm_regs regs;
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    int ret;
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    int i;
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    ret = kvm_vcpu_ioctl(env, KVM_GET_REGS, &regs);
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    if (ret < 0) {
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        return ret;
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    }
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    for (i = 0; i < 16; i++) {
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        regs.gprs[i] = env->regs[i];
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    }
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    ret = kvm_vcpu_ioctl(env, KVM_SET_REGS, &regs);
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    if (ret < 0) {
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        return ret;
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    }
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    env->kvm_run->psw_addr = env->psw.addr;
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    env->kvm_run->psw_mask = env->psw.mask;
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    return ret;
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}
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int kvm_arch_get_registers(CPUS390XState *env)
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{
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    int ret;
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    struct kvm_regs regs;
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    int i;
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    ret = kvm_vcpu_ioctl(env, KVM_GET_REGS, &regs);
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    if (ret < 0) {
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        return ret;
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    }
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    for (i = 0; i < 16; i++) {
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        env->regs[i] = regs.gprs[i];
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    }
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    env->psw.addr = env->kvm_run->psw_addr;
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    env->psw.mask = env->kvm_run->psw_mask;
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    return 0;
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}
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int kvm_arch_insert_sw_breakpoint(CPUS390XState *env, struct kvm_sw_breakpoint *bp)
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{
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    static const uint8_t diag_501[] = {0x83, 0x24, 0x05, 0x01};
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    if (cpu_memory_rw_debug(env, bp->pc, (uint8_t *)&bp->saved_insn, 4, 0) ||
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        cpu_memory_rw_debug(env, bp->pc, (uint8_t *)diag_501, 4, 1)) {
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        return -EINVAL;
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    }
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    return 0;
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}
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int kvm_arch_remove_sw_breakpoint(CPUS390XState *env, struct kvm_sw_breakpoint *bp)
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{
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    uint8_t t[4];
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    static const uint8_t diag_501[] = {0x83, 0x24, 0x05, 0x01};
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    if (cpu_memory_rw_debug(env, bp->pc, t, 4, 0)) {
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        return -EINVAL;
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    } else if (memcmp(t, diag_501, 4)) {
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        return -EINVAL;
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    } else if (cpu_memory_rw_debug(env, bp->pc, (uint8_t *)&bp->saved_insn, 1, 1)) {
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        return -EINVAL;
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    }
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    return 0;
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}
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void kvm_arch_pre_run(CPUS390XState *env, struct kvm_run *run)
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{
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}
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void kvm_arch_post_run(CPUS390XState *env, struct kvm_run *run)
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{
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}
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int kvm_arch_process_async_events(CPUS390XState *env)
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{
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    return env->halted;
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}
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void kvm_s390_interrupt_internal(CPUS390XState *env, int type, uint32_t parm,
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                                 uint64_t parm64, int vm)
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{
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    struct kvm_s390_interrupt kvmint;
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    int r;
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    if (!env->kvm_state) {
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        return;
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    }
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    kvmint.type = type;
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    kvmint.parm = parm;
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    kvmint.parm64 = parm64;
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    if (vm) {
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        r = kvm_vm_ioctl(env->kvm_state, KVM_S390_INTERRUPT, &kvmint);
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    } else {
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        r = kvm_vcpu_ioctl(env, KVM_S390_INTERRUPT, &kvmint);
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    }
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    if (r < 0) {
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        fprintf(stderr, "KVM failed to inject interrupt\n");
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        exit(1);
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    }
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}
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void kvm_s390_virtio_irq(CPUS390XState *env, int config_change, uint64_t token)
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{
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    kvm_s390_interrupt_internal(env, KVM_S390_INT_VIRTIO, config_change,
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                                token, 1);
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}
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void kvm_s390_interrupt(CPUS390XState *env, int type, uint32_t code)
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{
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    kvm_s390_interrupt_internal(env, type, code, 0, 0);
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}
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static void enter_pgmcheck(CPUS390XState *env, uint16_t code)
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{
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    kvm_s390_interrupt(env, KVM_S390_PROGRAM_INT, code);
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}
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static inline void setcc(CPUS390XState *env, uint64_t cc)
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{
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    env->kvm_run->psw_mask &= ~(3ull << 44);
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    env->kvm_run->psw_mask |= (cc & 3) << 44;
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    env->psw.mask &= ~(3ul << 44);
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    env->psw.mask |= (cc & 3) << 44;
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}
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static int kvm_sclp_service_call(CPUS390XState *env, struct kvm_run *run,
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                                 uint16_t ipbh0)
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{
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    uint32_t sccb;
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    uint64_t code;
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    int r = 0;
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    cpu_synchronize_state(env);
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    sccb = env->regs[ipbh0 & 0xf];
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    code = env->regs[(ipbh0 & 0xf0) >> 4];
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    r = sclp_service_call(env, sccb, code);
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    if (r) {
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        setcc(env, 3);
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    }
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    return 0;
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}
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static int handle_priv(CPUS390XState *env, struct kvm_run *run, uint8_t ipa1)
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{
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    int r = 0;
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    uint16_t ipbh0 = (run->s390_sieic.ipb & 0xffff0000) >> 16;
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    dprintf("KVM: PRIV: %d\n", ipa1);
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    switch (ipa1) {
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        case PRIV_SCLP_CALL:
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            r = kvm_sclp_service_call(env, run, ipbh0);
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            break;
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        default:
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            dprintf("KVM: unknown PRIV: 0x%x\n", ipa1);
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            r = -1;
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            break;
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    }
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264
    return r;
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}
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static int handle_hypercall(CPUS390XState *env, struct kvm_run *run)
268
{
269
    cpu_synchronize_state(env);
270
    env->regs[2] = s390_virtio_hypercall(env, env->regs[2], env->regs[1]);
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272
    return 0;
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}
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static int handle_diag(CPUS390XState *env, struct kvm_run *run, int ipb_code)
276
{
277
    int r = 0;
278

    
279
    switch (ipb_code) {
280
        case DIAG_KVM_HYPERCALL:
281
            r = handle_hypercall(env, run);
282
            break;
283
        case DIAG_KVM_BREAKPOINT:
284
            sleep(10);
285
            break;
286
        default:
287
            dprintf("KVM: unknown DIAG: 0x%x\n", ipb_code);
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            r = -1;
289
            break;
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    }
291

    
292
    return r;
293
}
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295
static int s390_cpu_restart(CPUS390XState *env)
296
{
297
    kvm_s390_interrupt(env, KVM_S390_RESTART, 0);
298
    s390_add_running_cpu(env);
299
    qemu_cpu_kick(env);
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    dprintf("DONE: SIGP cpu restart: %p\n", env);
301
    return 0;
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}
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304
static int s390_store_status(CPUS390XState *env, uint32_t parameter)
305
{
306
    /* XXX */
307
    fprintf(stderr, "XXX SIGP store status\n");
308
    return -1;
309
}
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311
static int s390_cpu_initial_reset(CPUS390XState *env)
312
{
313
    int i;
314

    
315
    if (kvm_vcpu_ioctl(env, KVM_S390_INITIAL_RESET, NULL) < 0) {
316
        perror("cannot init reset vcpu");
317
    }
318

    
319
    /* Manually zero out all registers */
320
    cpu_synchronize_state(env);
321
    for (i = 0; i < 16; i++) {
322
        env->regs[i] = 0;
323
    }
324

    
325
    dprintf("DONE: SIGP initial reset: %p\n", env);
326
    return 0;
327
}
328

    
329
static int handle_sigp(CPUS390XState *env, struct kvm_run *run, uint8_t ipa1)
330
{
331
    uint8_t order_code;
332
    uint32_t parameter;
333
    uint16_t cpu_addr;
334
    uint8_t t;
335
    int r = -1;
336
    CPUS390XState *target_env;
337

    
338
    cpu_synchronize_state(env);
339

    
340
    /* get order code */
341
    order_code = run->s390_sieic.ipb >> 28;
342
    if (order_code > 0) {
343
        order_code = env->regs[order_code];
344
    }
345
    order_code += (run->s390_sieic.ipb & 0x0fff0000) >> 16;
346

    
347
    /* get parameters */
348
    t = (ipa1 & 0xf0) >> 4;
349
    if (!(t % 2)) {
350
        t++;
351
    }
352

    
353
    parameter = env->regs[t] & 0x7ffffe00;
354
    cpu_addr = env->regs[ipa1 & 0x0f];
355

    
356
    target_env = s390_cpu_addr2state(cpu_addr);
357
    if (!target_env) {
358
        goto out;
359
    }
360

    
361
    switch (order_code) {
362
        case SIGP_RESTART:
363
            r = s390_cpu_restart(target_env);
364
            break;
365
        case SIGP_STORE_STATUS_ADDR:
366
            r = s390_store_status(target_env, parameter);
367
            break;
368
        case SIGP_SET_ARCH:
369
            /* make the caller panic */
370
            return -1;
371
        case SIGP_INITIAL_CPU_RESET:
372
            r = s390_cpu_initial_reset(target_env);
373
            break;
374
        default:
375
            fprintf(stderr, "KVM: unknown SIGP: 0x%x\n", order_code);
376
            break;
377
    }
378

    
379
out:
380
    setcc(env, r ? 3 : 0);
381
    return 0;
382
}
383

    
384
static int handle_instruction(CPUS390XState *env, struct kvm_run *run)
385
{
386
    unsigned int ipa0 = (run->s390_sieic.ipa & 0xff00);
387
    uint8_t ipa1 = run->s390_sieic.ipa & 0x00ff;
388
    int ipb_code = (run->s390_sieic.ipb & 0x0fff0000) >> 16;
389
    int r = -1;
390

    
391
    dprintf("handle_instruction 0x%x 0x%x\n", run->s390_sieic.ipa, run->s390_sieic.ipb);
392
    switch (ipa0) {
393
        case IPA0_PRIV:
394
            r = handle_priv(env, run, ipa1);
395
            break;
396
        case IPA0_DIAG:
397
            r = handle_diag(env, run, ipb_code);
398
            break;
399
        case IPA0_SIGP:
400
            r = handle_sigp(env, run, ipa1);
401
            break;
402
    }
403

    
404
    if (r < 0) {
405
        enter_pgmcheck(env, 0x0001);
406
    }
407
    return 0;
408
}
409

    
410
static bool is_special_wait_psw(CPUS390XState *env)
411
{
412
    /* signal quiesce */
413
    return env->kvm_run->psw_addr == 0xfffUL;
414
}
415

    
416
static int handle_intercept(CPUS390XState *env)
417
{
418
    struct kvm_run *run = env->kvm_run;
419
    int icpt_code = run->s390_sieic.icptcode;
420
    int r = 0;
421

    
422
    dprintf("intercept: 0x%x (at 0x%lx)\n", icpt_code,
423
            (long)env->kvm_run->psw_addr);
424
    switch (icpt_code) {
425
        case ICPT_INSTRUCTION:
426
            r = handle_instruction(env, run);
427
            break;
428
        case ICPT_WAITPSW:
429
            if (s390_del_running_cpu(env) == 0 &&
430
                is_special_wait_psw(env)) {
431
                qemu_system_shutdown_request();
432
            }
433
            r = EXCP_HALTED;
434
            break;
435
        case ICPT_CPU_STOP:
436
            if (s390_del_running_cpu(env) == 0) {
437
                qemu_system_shutdown_request();
438
            }
439
            r = EXCP_HALTED;
440
            break;
441
        case ICPT_SOFT_INTERCEPT:
442
            fprintf(stderr, "KVM unimplemented icpt SOFT\n");
443
            exit(1);
444
            break;
445
        case ICPT_IO:
446
            fprintf(stderr, "KVM unimplemented icpt IO\n");
447
            exit(1);
448
            break;
449
        default:
450
            fprintf(stderr, "Unknown intercept code: %d\n", icpt_code);
451
            exit(1);
452
            break;
453
    }
454

    
455
    return r;
456
}
457

    
458
int kvm_arch_handle_exit(CPUS390XState *env, struct kvm_run *run)
459
{
460
    int ret = 0;
461

    
462
    switch (run->exit_reason) {
463
        case KVM_EXIT_S390_SIEIC:
464
            ret = handle_intercept(env);
465
            break;
466
        case KVM_EXIT_S390_RESET:
467
            qemu_system_reset_request();
468
            break;
469
        default:
470
            fprintf(stderr, "Unknown KVM exit: %d\n", run->exit_reason);
471
            break;
472
    }
473

    
474
    if (ret == 0) {
475
        ret = EXCP_INTERRUPT;
476
    }
477
    return ret;
478
}
479

    
480
bool kvm_arch_stop_on_emulation_error(CPUS390XState *env)
481
{
482
    return true;
483
}
484

    
485
int kvm_arch_on_sigbus_vcpu(CPUS390XState *env, int code, void *addr)
486
{
487
    return 1;
488
}
489

    
490
int kvm_arch_on_sigbus(int code, void *addr)
491
{
492
    return 1;
493
}