4 * Add KVM PowerPC specific calls for qemu.
6 * Copyright 2007 IBM Corporation.
8 * Jerone Young <jyoung5@us.ibm.com>
9 * Christian Ehrhardt <ehrhardt@linux.vnet.ibm.com>
11 * This work is licensed under the GNU GPL licence version 2 or later.
16 #include "config-host.h"
23 #include "helper_regs.h"
28 #include <sys/utsname.h>
30 extern kvm_context_t kvm_context
;
32 void cpu_reset(CPUState
*env
)
38 int kvm_arch_qemu_create_context(void)
43 void kvm_arch_load_regs(CPUState
*env
)
48 rc
= kvm_get_regs(kvm_context
, env
->cpu_index
, ®s
);
50 perror("kvm_get_regs FAILED");
52 /* cr is untouched in qemu and not existant in CPUState fr ppr */
53 /* hflags is a morphed to MSR on ppc, no need to sync that down to kvm */
59 regs
.xer
= ppc_load_xer(env
);
62 regs
.srr0
= env
->spr
[SPR_SRR0
];
63 regs
.srr1
= env
->spr
[SPR_SRR1
];
65 regs
.sprg0
= env
->spr
[SPR_SPRG0
];
66 regs
.sprg1
= env
->spr
[SPR_SPRG1
];
67 regs
.sprg2
= env
->spr
[SPR_SPRG2
];
68 regs
.sprg3
= env
->spr
[SPR_SPRG3
];
69 regs
.sprg4
= env
->spr
[SPR_SPRG4
];
70 regs
.sprg5
= env
->spr
[SPR_SPRG5
];
71 regs
.sprg6
= env
->spr
[SPR_SPRG6
];
72 regs
.sprg7
= env
->spr
[SPR_SPRG7
];
74 for (i
= 0;i
< 32; i
++){
75 regs
.gpr
[i
] = env
->gpr
[i
];
78 rc
= kvm_set_regs(kvm_context
, env
->cpu_index
, ®s
);
80 perror("kvm_set_regs FAILED");
84 void kvm_arch_save_regs(CPUState
*env
)
89 rc
= kvm_get_regs(kvm_context
, env
->cpu_index
, ®s
);
91 perror("kvm_get_regs FAILED");
95 ppc_store_xer(env
,regs
.xer
);
97 /* calculate hflags based on the current msr using the ppc qemu helper */
98 hreg_compute_hflags(env
);
102 env
->spr
[SPR_SRR0
] = regs
.srr0
;
103 env
->spr
[SPR_SRR1
] = regs
.srr1
;
105 env
->spr
[SPR_SPRG0
] = regs
.sprg0
;
106 env
->spr
[SPR_SPRG1
] = regs
.sprg1
;
107 env
->spr
[SPR_SPRG2
] = regs
.sprg2
;
108 env
->spr
[SPR_SPRG3
] = regs
.sprg3
;
109 env
->spr
[SPR_SPRG4
] = regs
.sprg4
;
110 env
->spr
[SPR_SPRG5
] = regs
.sprg5
;
111 env
->spr
[SPR_SPRG6
] = regs
.sprg6
;
112 env
->spr
[SPR_SPRG7
] = regs
.sprg7
;
114 for (i
= 0;i
< 32; i
++){
115 env
->gpr
[i
] = regs
.gpr
[i
];
120 int kvm_arch_qemu_init_env(CPUState
*cenv
)
122 if (cenv
->cpu_index
== 0) {
123 /* load any registers set in env into
124 kvm for the first guest vcpu */
125 kvm_load_registers(cenv
);
131 int kvm_arch_halt(void *opaque
, int vcpu
)
133 CPUState
*env
= cpu_single_env
;
135 if (!(env
->interrupt_request
& CPU_INTERRUPT_HARD
)
139 env
->exception_index
= EXCP_HLT
;
144 void kvm_arch_pre_kvm_run(void *opaque
, int vcpu
)
149 void kvm_arch_post_kvm_run(void *opaque
, int vcpu
)
151 CPUState
*env
= qemu_kvm_cpu_env(vcpu
);
152 cpu_single_env
= env
;
153 env
->ready_for_interrupt_injection
= \
154 kvm_is_ready_for_interrupt_injection(kvm_context
, vcpu
);
157 int kvm_arch_has_work(CPUState
*env
)
159 if ((env
->interrupt_request
& (CPU_INTERRUPT_HARD
| CPU_INTERRUPT_EXIT
)) &&
165 int kvm_arch_try_push_interrupts(void *opaque
)
167 CPUState
*env
= cpu_single_env
;
171 /* PowerPC Qemu tracks the various core input pins (interrupt, critical
172 * interrupt, reset, etc) in PPC-specific env->irq_input_state. */
173 if (env
->ready_for_interrupt_injection
&&
174 (env
->irq_input_state
& (1<<PPC40x_INPUT_INT
)))
176 /* For now KVM disregards the 'irq' argument. However, in the
177 * future KVM could cache it in-kernel to avoid a heavyweight exit
178 * when reading the UIC.
182 r
= kvm_inject_irq(kvm_context
, env
->cpu_index
, irq
);
184 printf("cpu %d fail inject %x\n", env
->cpu_index
, irq
);
187 /* We don't know if there are more interrupts pending after this. However,
188 * the guest will return to userspace in the course of handling this one
189 * anyways, so we will get a chance to deliver the rest. */
193 void kvm_arch_update_regs_for_sipi(CPUState
*env
)
195 printf("%s: no kvm-powerpc multi processor support yet!\n", __func__
);
198 /* map dcr access to existing qemu dcr emulation */
199 int handle_powerpc_dcr_read(int vcpu
, uint32_t dcrn
, uint32_t *data
)
201 CPUState
*env
= cpu_single_env
;
202 if (ppc_dcr_read(env
->dcr_env
, dcrn
, data
) < 0)
203 fprintf(stderr
, "Read to unhandled DCR (0x%x)\n", dcrn
);
205 return 0; /* XXX ignore failed DCR ops */
208 int handle_powerpc_dcr_write(int vcpu
, uint32_t dcrn
, uint32_t data
)
210 CPUState
*env
= cpu_single_env
;
211 if (ppc_dcr_write(env
->dcr_env
, dcrn
, data
) < 0)
212 fprintf(stderr
, "Write to unhandled DCR (0x%x)\n", dcrn
);
214 return 0; /* XXX ignore failed DCR ops */