2 * QEMU PowerPC pSeries Logical Partition (aka sPAPR) hardware System Emulator
4 * PAPR Virtualized Interrupt System, aka ICS/ICP aka xics, in-kernel emulation
6 * Copyright (c) 2013 David Gibson, IBM Corporation.
8 * Permission is hereby granted, free of charge, to any person obtaining a copy
9 * of this software and associated documentation files (the "Software"), to deal
10 * in the Software without restriction, including without limitation the rights
11 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
12 * copies of the Software, and to permit persons to whom the Software is
13 * furnished to do so, subject to the following conditions:
15 * The above copyright notice and this permission notice shall be included in
16 * all copies or substantial portions of the Software.
18 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
19 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
20 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
21 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
22 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
23 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
30 #include "hw/ppc/spapr.h"
31 #include "hw/ppc/xics.h"
33 #include "qemu/config-file.h"
34 #include "qemu/error-report.h"
36 #include <sys/ioctl.h>
38 typedef struct KVMXICSState
{
41 uint32_t set_xive_token
;
42 uint32_t get_xive_token
;
43 uint32_t int_off_token
;
44 uint32_t int_on_token
;
51 static void icp_get_kvm_state(ICPState
*ss
)
54 struct kvm_one_reg reg
= {
55 .id
= KVM_REG_PPC_ICP_STATE
,
56 .addr
= (uintptr_t)&state
,
60 /* ICP for this CPU thread is not in use, exiting */
65 ret
= kvm_vcpu_ioctl(ss
->cs
, KVM_GET_ONE_REG
, ®
);
67 error_report("Unable to retrieve KVM interrupt controller state"
68 " for CPU %ld: %s", kvm_arch_vcpu_id(ss
->cs
), strerror(errno
));
72 ss
->xirr
= state
>> KVM_REG_PPC_ICP_XISR_SHIFT
;
73 ss
->mfrr
= (state
>> KVM_REG_PPC_ICP_MFRR_SHIFT
)
74 & KVM_REG_PPC_ICP_MFRR_MASK
;
75 ss
->pending_priority
= (state
>> KVM_REG_PPC_ICP_PPRI_SHIFT
)
76 & KVM_REG_PPC_ICP_PPRI_MASK
;
79 static int icp_set_kvm_state(ICPState
*ss
, int version_id
)
82 struct kvm_one_reg reg
= {
83 .id
= KVM_REG_PPC_ICP_STATE
,
84 .addr
= (uintptr_t)&state
,
88 /* ICP for this CPU thread is not in use, exiting */
93 state
= ((uint64_t)ss
->xirr
<< KVM_REG_PPC_ICP_XISR_SHIFT
)
94 | ((uint64_t)ss
->mfrr
<< KVM_REG_PPC_ICP_MFRR_SHIFT
)
95 | ((uint64_t)ss
->pending_priority
<< KVM_REG_PPC_ICP_PPRI_SHIFT
);
97 ret
= kvm_vcpu_ioctl(ss
->cs
, KVM_SET_ONE_REG
, ®
);
99 error_report("Unable to restore KVM interrupt controller state (0x%"
100 PRIx64
") for CPU %ld: %s", state
, kvm_arch_vcpu_id(ss
->cs
),
108 static void icp_kvm_reset(DeviceState
*dev
)
110 ICPState
*icp
= ICP(dev
);
113 icp
->pending_priority
= 0xff;
116 /* Make all outputs are deasserted */
117 qemu_set_irq(icp
->output
, 0);
119 icp_set_kvm_state(icp
, 1);
122 static void icp_kvm_class_init(ObjectClass
*klass
, void *data
)
124 DeviceClass
*dc
= DEVICE_CLASS(klass
);
125 ICPStateClass
*icpc
= ICP_CLASS(klass
);
127 dc
->reset
= icp_kvm_reset
;
128 icpc
->pre_save
= icp_get_kvm_state
;
129 icpc
->post_load
= icp_set_kvm_state
;
132 static const TypeInfo icp_kvm_info
= {
133 .name
= TYPE_KVM_ICP
,
135 .instance_size
= sizeof(ICPState
),
136 .class_init
= icp_kvm_class_init
,
137 .class_size
= sizeof(ICPStateClass
),
143 static void ics_get_kvm_state(ICSState
*ics
)
145 KVMXICSState
*icpkvm
= KVM_XICS(ics
->icp
);
147 struct kvm_device_attr attr
= {
149 .group
= KVM_DEV_XICS_GRP_SOURCES
,
150 .addr
= (uint64_t)(uintptr_t)&state
,
154 for (i
= 0; i
< ics
->nr_irqs
; i
++) {
155 ICSIRQState
*irq
= &ics
->irqs
[i
];
158 attr
.attr
= i
+ ics
->offset
;
160 ret
= ioctl(icpkvm
->kernel_xics_fd
, KVM_GET_DEVICE_ATTR
, &attr
);
162 error_report("Unable to retrieve KVM interrupt controller state"
163 " for IRQ %d: %s", i
+ ics
->offset
, strerror(errno
));
167 irq
->server
= state
& KVM_XICS_DESTINATION_MASK
;
168 irq
->saved_priority
= (state
>> KVM_XICS_PRIORITY_SHIFT
)
169 & KVM_XICS_PRIORITY_MASK
;
171 * To be consistent with the software emulation in xics.c, we
172 * split out the masked state + priority that we get from the
173 * kernel into 'current priority' (0xff if masked) and
174 * 'saved priority' (if masked, this is the priority the
175 * interrupt had before it was masked). Masking and unmasking
176 * are done with the ibm,int-off and ibm,int-on RTAS calls.
178 if (state
& KVM_XICS_MASKED
) {
179 irq
->priority
= 0xff;
181 irq
->priority
= irq
->saved_priority
;
184 if (state
& KVM_XICS_PENDING
) {
185 if (state
& KVM_XICS_LEVEL_SENSITIVE
) {
186 irq
->status
|= XICS_STATUS_ASSERTED
;
189 * A pending edge-triggered interrupt (or MSI)
190 * must have been rejected previously when we
191 * first detected it and tried to deliver it,
192 * so mark it as pending and previously rejected
193 * for consistency with how xics.c works.
195 irq
->status
|= XICS_STATUS_MASKED_PENDING
196 | XICS_STATUS_REJECTED
;
202 static int ics_set_kvm_state(ICSState
*ics
, int version_id
)
204 KVMXICSState
*icpkvm
= KVM_XICS(ics
->icp
);
206 struct kvm_device_attr attr
= {
208 .group
= KVM_DEV_XICS_GRP_SOURCES
,
209 .addr
= (uint64_t)(uintptr_t)&state
,
213 for (i
= 0; i
< ics
->nr_irqs
; i
++) {
214 ICSIRQState
*irq
= &ics
->irqs
[i
];
217 attr
.attr
= i
+ ics
->offset
;
220 state
|= (uint64_t)(irq
->saved_priority
& KVM_XICS_PRIORITY_MASK
)
221 << KVM_XICS_PRIORITY_SHIFT
;
222 if (irq
->priority
!= irq
->saved_priority
) {
223 assert(irq
->priority
== 0xff);
224 state
|= KVM_XICS_MASKED
;
228 state
|= KVM_XICS_LEVEL_SENSITIVE
;
229 if (irq
->status
& XICS_STATUS_ASSERTED
) {
230 state
|= KVM_XICS_PENDING
;
233 if (irq
->status
& XICS_STATUS_MASKED_PENDING
) {
234 state
|= KVM_XICS_PENDING
;
238 ret
= ioctl(icpkvm
->kernel_xics_fd
, KVM_SET_DEVICE_ATTR
, &attr
);
240 error_report("Unable to restore KVM interrupt controller state"
241 " for IRQs %d: %s", i
+ ics
->offset
, strerror(errno
));
249 static void ics_kvm_set_irq(void *opaque
, int srcno
, int val
)
251 ICSState
*ics
= opaque
;
252 struct kvm_irq_level args
;
255 args
.irq
= srcno
+ ics
->offset
;
256 if (!ics
->islsi
[srcno
]) {
260 args
.level
= KVM_INTERRUPT_SET
;
262 args
.level
= val
? KVM_INTERRUPT_SET_LEVEL
: KVM_INTERRUPT_UNSET
;
264 rc
= kvm_vm_ioctl(kvm_state
, KVM_IRQ_LINE
, &args
);
266 perror("kvm_irq_line");
270 static void ics_kvm_reset(DeviceState
*dev
)
272 ICSState
*ics
= ICS(dev
);
275 memset(ics
->irqs
, 0, sizeof(ICSIRQState
) * ics
->nr_irqs
);
276 for (i
= 0; i
< ics
->nr_irqs
; i
++) {
277 ics
->irqs
[i
].priority
= 0xff;
278 ics
->irqs
[i
].saved_priority
= 0xff;
281 ics_set_kvm_state(ics
, 1);
284 static void ics_kvm_realize(DeviceState
*dev
, Error
**errp
)
286 ICSState
*ics
= ICS(dev
);
289 error_setg(errp
, "Number of interrupts needs to be greater 0");
292 ics
->irqs
= g_malloc0(ics
->nr_irqs
* sizeof(ICSIRQState
));
293 ics
->islsi
= g_malloc0(ics
->nr_irqs
* sizeof(bool));
294 ics
->qirqs
= qemu_allocate_irqs(ics_kvm_set_irq
, ics
, ics
->nr_irqs
);
297 static void ics_kvm_class_init(ObjectClass
*klass
, void *data
)
299 DeviceClass
*dc
= DEVICE_CLASS(klass
);
300 ICSStateClass
*icsc
= ICS_CLASS(klass
);
302 dc
->realize
= ics_kvm_realize
;
303 dc
->reset
= ics_kvm_reset
;
304 icsc
->pre_save
= ics_get_kvm_state
;
305 icsc
->post_load
= ics_set_kvm_state
;
308 static const TypeInfo ics_kvm_info
= {
309 .name
= TYPE_KVM_ICS
,
311 .instance_size
= sizeof(ICSState
),
312 .class_init
= ics_kvm_class_init
,
318 static void xics_kvm_cpu_setup(XICSState
*icp
, PowerPCCPU
*cpu
)
322 KVMXICSState
*icpkvm
= KVM_XICS(icp
);
325 ss
= &icp
->ss
[cs
->cpu_index
];
327 assert(cs
->cpu_index
< icp
->nr_servers
);
328 if (icpkvm
->kernel_xics_fd
== -1) {
332 if (icpkvm
->kernel_xics_fd
!= -1) {
337 ret
= kvm_vcpu_enable_cap(cs
, KVM_CAP_IRQ_XICS
, 0,
338 icpkvm
->kernel_xics_fd
, kvm_arch_vcpu_id(cs
));
340 error_report("Unable to connect CPU%ld to kernel XICS: %s",
341 kvm_arch_vcpu_id(cs
), strerror(errno
));
347 static void xics_kvm_set_nr_irqs(XICSState
*icp
, uint32_t nr_irqs
, Error
**errp
)
349 icp
->nr_irqs
= icp
->ics
->nr_irqs
= nr_irqs
;
352 static void xics_kvm_set_nr_servers(XICSState
*icp
, uint32_t nr_servers
,
357 icp
->nr_servers
= nr_servers
;
359 icp
->ss
= g_malloc0(icp
->nr_servers
*sizeof(ICPState
));
360 for (i
= 0; i
< icp
->nr_servers
; i
++) {
362 object_initialize(&icp
->ss
[i
], sizeof(icp
->ss
[i
]), TYPE_KVM_ICP
);
363 snprintf(buffer
, sizeof(buffer
), "icp[%d]", i
);
364 object_property_add_child(OBJECT(icp
), buffer
, OBJECT(&icp
->ss
[i
]),
369 static void rtas_dummy(PowerPCCPU
*cpu
, sPAPREnvironment
*spapr
,
371 uint32_t nargs
, target_ulong args
,
372 uint32_t nret
, target_ulong rets
)
374 error_report("pseries: %s must never be called for in-kernel XICS",
378 static void xics_kvm_realize(DeviceState
*dev
, Error
**errp
)
380 KVMXICSState
*icpkvm
= KVM_XICS(dev
);
381 XICSState
*icp
= XICS_COMMON(dev
);
384 struct kvm_create_device xics_create_device
= {
385 .type
= KVM_DEV_TYPE_XICS
,
389 if (!kvm_enabled() || !kvm_check_extension(kvm_state
, KVM_CAP_IRQ_XICS
)) {
391 "KVM and IRQ_XICS capability must be present for in-kernel XICS");
395 icpkvm
->set_xive_token
= spapr_rtas_register("ibm,set-xive", rtas_dummy
);
396 icpkvm
->get_xive_token
= spapr_rtas_register("ibm,get-xive", rtas_dummy
);
397 icpkvm
->int_off_token
= spapr_rtas_register("ibm,int-off", rtas_dummy
);
398 icpkvm
->int_on_token
= spapr_rtas_register("ibm,int-on", rtas_dummy
);
400 rc
= kvmppc_define_rtas_kernel_token(icpkvm
->set_xive_token
,
403 error_setg(errp
, "kvmppc_define_rtas_kernel_token: ibm,set-xive");
407 rc
= kvmppc_define_rtas_kernel_token(icpkvm
->get_xive_token
,
410 error_setg(errp
, "kvmppc_define_rtas_kernel_token: ibm,get-xive");
414 rc
= kvmppc_define_rtas_kernel_token(icpkvm
->int_on_token
, "ibm,int-on");
416 error_setg(errp
, "kvmppc_define_rtas_kernel_token: ibm,int-on");
420 rc
= kvmppc_define_rtas_kernel_token(icpkvm
->int_off_token
, "ibm,int-off");
422 error_setg(errp
, "kvmppc_define_rtas_kernel_token: ibm,int-off");
426 /* Create the kernel ICP */
427 rc
= kvm_vm_ioctl(kvm_state
, KVM_CREATE_DEVICE
, &xics_create_device
);
429 error_setg_errno(errp
, -rc
, "Error on KVM_CREATE_DEVICE for XICS");
433 icpkvm
->kernel_xics_fd
= xics_create_device
.fd
;
435 object_property_set_bool(OBJECT(icp
->ics
), true, "realized", &error
);
437 error_propagate(errp
, error
);
441 assert(icp
->nr_servers
);
442 for (i
= 0; i
< icp
->nr_servers
; i
++) {
443 object_property_set_bool(OBJECT(&icp
->ss
[i
]), true, "realized", &error
);
445 error_propagate(errp
, error
);
450 kvm_kernel_irqchip
= true;
451 kvm_irqfds_allowed
= true;
452 kvm_msi_via_irqfd_allowed
= true;
453 kvm_gsi_direct_mapping
= true;
458 kvmppc_define_rtas_kernel_token(0, "ibm,set-xive");
459 kvmppc_define_rtas_kernel_token(0, "ibm,get-xive");
460 kvmppc_define_rtas_kernel_token(0, "ibm,int-on");
461 kvmppc_define_rtas_kernel_token(0, "ibm,int-off");
464 static void xics_kvm_initfn(Object
*obj
)
466 XICSState
*xics
= XICS_COMMON(obj
);
468 xics
->ics
= ICS(object_new(TYPE_KVM_ICS
));
469 object_property_add_child(obj
, "ics", OBJECT(xics
->ics
), NULL
);
470 xics
->ics
->icp
= xics
;
473 static void xics_kvm_class_init(ObjectClass
*oc
, void *data
)
475 DeviceClass
*dc
= DEVICE_CLASS(oc
);
476 XICSStateClass
*xsc
= XICS_COMMON_CLASS(oc
);
478 dc
->realize
= xics_kvm_realize
;
479 xsc
->cpu_setup
= xics_kvm_cpu_setup
;
480 xsc
->set_nr_irqs
= xics_kvm_set_nr_irqs
;
481 xsc
->set_nr_servers
= xics_kvm_set_nr_servers
;
484 static const TypeInfo xics_kvm_info
= {
485 .name
= TYPE_KVM_XICS
,
486 .parent
= TYPE_XICS_COMMON
,
487 .instance_size
= sizeof(KVMXICSState
),
488 .class_init
= xics_kvm_class_init
,
489 .instance_init
= xics_kvm_initfn
,
492 static void xics_kvm_register_types(void)
494 type_register_static(&xics_kvm_info
);
495 type_register_static(&ics_kvm_info
);
496 type_register_static(&icp_kvm_info
);
499 type_init(xics_kvm_register_types
)