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s390x/kvm: Rework priv instruction handlers
The current implementation uses the second byte of the instruction to identify the instruction handler. This is not sufficient to support instructions not starting with 0xb2. This patch adds separate handlers for 0xb2, 0xb9 and 0xeb to be able to support the full instruction set. Signed-off-by: Frank Blaschka <blaschka@linux.vnet.ibm.com> Reviewed-by: Cornelia Huck <cornelia.huck@de.ibm.com> Reviewed-by: Christian Borntraeger <borntraeger@de.ibm.com> Signed-off-by: Christian Borntraeger <borntraeger@de.ibm.com>
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04c2b5168e
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1 changed files with 80 additions and 59 deletions
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@ -53,25 +53,28 @@
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#define IPA0_B9 0xb900
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#define IPA0_EB 0xeb00
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#define PRIV_SCLP_CALL 0x20
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#define PRIV_CSCH 0x30
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#define PRIV_HSCH 0x31
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#define PRIV_MSCH 0x32
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#define PRIV_SSCH 0x33
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#define PRIV_STSCH 0x34
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#define PRIV_TSCH 0x35
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#define PRIV_TPI 0x36
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#define PRIV_SAL 0x37
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#define PRIV_RSCH 0x38
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#define PRIV_STCRW 0x39
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#define PRIV_STCPS 0x3a
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#define PRIV_RCHP 0x3b
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#define PRIV_SCHM 0x3c
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#define PRIV_CHSC 0x5f
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#define PRIV_SIGA 0x74
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#define PRIV_XSCH 0x76
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#define PRIV_SQBS 0x8a
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#define PRIV_EQBS 0x9c
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#define PRIV_B2_SCLP_CALL 0x20
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#define PRIV_B2_CSCH 0x30
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#define PRIV_B2_HSCH 0x31
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#define PRIV_B2_MSCH 0x32
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#define PRIV_B2_SSCH 0x33
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#define PRIV_B2_STSCH 0x34
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#define PRIV_B2_TSCH 0x35
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#define PRIV_B2_TPI 0x36
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#define PRIV_B2_SAL 0x37
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#define PRIV_B2_RSCH 0x38
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#define PRIV_B2_STCRW 0x39
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#define PRIV_B2_STCPS 0x3a
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#define PRIV_B2_RCHP 0x3b
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#define PRIV_B2_SCHM 0x3c
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#define PRIV_B2_CHSC 0x5f
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#define PRIV_B2_SIGA 0x74
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#define PRIV_B2_XSCH 0x76
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#define PRIV_EB_SQBS 0x8a
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#define PRIV_B9_EQBS 0x9c
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#define DIAG_IPL 0x308
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#define DIAG_KVM_HYPERCALL 0x500
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#define DIAG_KVM_BREAKPOINT 0x501
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@ -458,96 +461,110 @@ static int kvm_sclp_service_call(S390CPU *cpu, struct kvm_run *run,
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return 0;
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}
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static int kvm_handle_css_inst(S390CPU *cpu, struct kvm_run *run,
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uint8_t ipa0, uint8_t ipa1, uint8_t ipb)
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static int handle_b2(S390CPU *cpu, struct kvm_run *run, uint8_t ipa1)
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{
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CPUS390XState *env = &cpu->env;
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if (ipa0 != 0xb2) {
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/* Not handled for now. */
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return -1;
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}
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int rc = 0;
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uint16_t ipbh0 = (run->s390_sieic.ipb & 0xffff0000) >> 16;
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cpu_synchronize_state(CPU(cpu));
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switch (ipa1) {
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case PRIV_XSCH:
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case PRIV_B2_XSCH:
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ioinst_handle_xsch(cpu, env->regs[1]);
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break;
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case PRIV_CSCH:
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case PRIV_B2_CSCH:
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ioinst_handle_csch(cpu, env->regs[1]);
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break;
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case PRIV_HSCH:
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case PRIV_B2_HSCH:
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ioinst_handle_hsch(cpu, env->regs[1]);
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break;
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case PRIV_MSCH:
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case PRIV_B2_MSCH:
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ioinst_handle_msch(cpu, env->regs[1], run->s390_sieic.ipb);
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break;
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case PRIV_SSCH:
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case PRIV_B2_SSCH:
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ioinst_handle_ssch(cpu, env->regs[1], run->s390_sieic.ipb);
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break;
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case PRIV_STCRW:
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case PRIV_B2_STCRW:
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ioinst_handle_stcrw(cpu, run->s390_sieic.ipb);
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break;
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case PRIV_STSCH:
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case PRIV_B2_STSCH:
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ioinst_handle_stsch(cpu, env->regs[1], run->s390_sieic.ipb);
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break;
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case PRIV_TSCH:
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case PRIV_B2_TSCH:
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/* We should only get tsch via KVM_EXIT_S390_TSCH. */
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fprintf(stderr, "Spurious tsch intercept\n");
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break;
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case PRIV_CHSC:
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case PRIV_B2_CHSC:
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ioinst_handle_chsc(cpu, run->s390_sieic.ipb);
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break;
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case PRIV_TPI:
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case PRIV_B2_TPI:
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/* This should have been handled by kvm already. */
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fprintf(stderr, "Spurious tpi intercept\n");
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break;
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case PRIV_SCHM:
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case PRIV_B2_SCHM:
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ioinst_handle_schm(cpu, env->regs[1], env->regs[2],
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run->s390_sieic.ipb);
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break;
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case PRIV_RSCH:
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case PRIV_B2_RSCH:
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ioinst_handle_rsch(cpu, env->regs[1]);
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break;
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case PRIV_RCHP:
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case PRIV_B2_RCHP:
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ioinst_handle_rchp(cpu, env->regs[1]);
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break;
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case PRIV_STCPS:
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case PRIV_B2_STCPS:
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/* We do not provide this instruction, it is suppressed. */
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break;
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case PRIV_SAL:
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case PRIV_B2_SAL:
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ioinst_handle_sal(cpu, env->regs[1]);
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break;
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case PRIV_SIGA:
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case PRIV_B2_SIGA:
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/* Not provided, set CC = 3 for subchannel not operational */
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setcc(cpu, 3);
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break;
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case PRIV_B2_SCLP_CALL:
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rc = kvm_sclp_service_call(cpu, run, ipbh0);
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break;
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default:
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return -1;
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rc = -1;
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DPRINTF("KVM: unhandled PRIV: 0xb2%x\n", ipa1);
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break;
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}
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return 0;
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return rc;
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}
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static int handle_priv(S390CPU *cpu, struct kvm_run *run,
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uint8_t ipa0, uint8_t ipa1)
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static int handle_b9(S390CPU *cpu, 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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uint8_t ipb = run->s390_sieic.ipb & 0xff;
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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(cpu, run, ipbh0);
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break;
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default:
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r = kvm_handle_css_inst(cpu, run, ipa0, ipa1, ipb);
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if (r == -1) {
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DPRINTF("KVM: unhandled PRIV: 0x%x\n", ipa1);
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}
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break;
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case PRIV_B9_EQBS:
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/* just inject exception */
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r = -1;
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break;
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default:
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r = -1;
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DPRINTF("KVM: unhandled PRIV: 0xb9%x\n", ipa1);
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break;
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}
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return r;
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}
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static int handle_eb(S390CPU *cpu, struct kvm_run *run, uint8_t ipa1)
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{
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int r = 0;
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switch (ipa1) {
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case PRIV_EB_SQBS:
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/* just inject exception */
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r = -1;
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break;
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default:
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r = -1;
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DPRINTF("KVM: unhandled PRIV: 0xeb%x\n", ipa1);
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break;
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}
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return r;
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@ -710,9 +727,13 @@ static void handle_instruction(S390CPU *cpu, struct kvm_run *run)
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run->s390_sieic.ipa, run->s390_sieic.ipb);
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switch (ipa0) {
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case IPA0_B2:
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r = handle_b2(cpu, run, ipa1);
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break;
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case IPA0_B9:
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r = handle_b9(cpu, run, ipa1);
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break;
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case IPA0_EB:
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r = handle_priv(cpu, run, ipa0 >> 8, ipa1);
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r = handle_eb(cpu, run, ipa1);
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break;
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case IPA0_DIAG:
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r = handle_diag(cpu, run, run->s390_sieic.ipb);
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