2 * QEMU SPAPR Dynamic Reconfiguration Connector Implementation
4 * Copyright IBM Corp. 2014
7 * Michael Roth <mdroth@linux.vnet.ibm.com>
9 * This work is licensed under the terms of the GNU GPL, version 2 or later.
10 * See the COPYING file in the top-level directory.
13 #include "qemu/osdep.h"
14 #include "qapi/error.h"
16 #include "qemu/cutils.h"
17 #include "hw/ppc/spapr_drc.h"
18 #include "qom/object.h"
20 #include "qapi/visitor.h"
21 #include "qemu/error-report.h"
22 #include "hw/ppc/spapr.h" /* for RTAS return codes */
23 #include "hw/pci-host/spapr.h" /* spapr_phb_remove_pci_device_cb callback */
26 #define DRC_CONTAINER_PATH "/dr-connector"
27 #define DRC_INDEX_TYPE_SHIFT 28
28 #define DRC_INDEX_ID_MASK ((1ULL << DRC_INDEX_TYPE_SHIFT) - 1)
30 sPAPRDRConnectorType
spapr_drc_type(sPAPRDRConnector
*drc
)
32 sPAPRDRConnectorClass
*drck
= SPAPR_DR_CONNECTOR_GET_CLASS(drc
);
34 return 1 << drck
->typeshift
;
37 uint32_t spapr_drc_index(sPAPRDRConnector
*drc
)
39 sPAPRDRConnectorClass
*drck
= SPAPR_DR_CONNECTOR_GET_CLASS(drc
);
41 /* no set format for a drc index: it only needs to be globally
42 * unique. this is how we encode the DRC type on bare-metal
43 * however, so might as well do that here
45 return (drck
->typeshift
<< DRC_INDEX_TYPE_SHIFT
)
46 | (drc
->id
& DRC_INDEX_ID_MASK
);
49 static uint32_t drc_isolate_physical(sPAPRDRConnector
*drc
)
51 /* if the guest is configuring a device attached to this DRC, we
52 * should reset the configuration state at this point since it may
53 * no longer be reliable (guest released device and needs to start
54 * over, or unplug occurred so the FDT is no longer valid)
59 drc
->isolation_state
= SPAPR_DR_ISOLATION_STATE_ISOLATED
;
61 /* if we're awaiting release, but still in an unconfigured state,
62 * it's likely the guest is still in the process of configuring
63 * the device and is transitioning the devices to an ISOLATED
64 * state as a part of that process. so we only complete the
65 * removal when this transition happens for a device in a
66 * configured state, as suggested by the state diagram from PAPR+
69 if (drc
->awaiting_release
) {
70 uint32_t drc_index
= spapr_drc_index(drc
);
71 if (drc
->configured
) {
72 trace_spapr_drc_set_isolation_state_finalizing(drc_index
);
73 spapr_drc_detach(drc
);
75 trace_spapr_drc_set_isolation_state_deferring(drc_index
);
78 drc
->configured
= false;
80 return RTAS_OUT_SUCCESS
;
83 static uint32_t drc_unisolate_physical(sPAPRDRConnector
*drc
)
85 /* cannot unisolate a non-existent resource, and, or resources
86 * which are in an 'UNUSABLE' allocation state. (PAPR 2.7,
90 return RTAS_OUT_NO_SUCH_INDICATOR
;
93 drc
->isolation_state
= SPAPR_DR_ISOLATION_STATE_UNISOLATED
;
95 return RTAS_OUT_SUCCESS
;
98 static uint32_t drc_isolate_logical(sPAPRDRConnector
*drc
)
100 /* if the guest is configuring a device attached to this DRC, we
101 * should reset the configuration state at this point since it may
102 * no longer be reliable (guest released device and needs to start
103 * over, or unplug occurred so the FDT is no longer valid)
109 * Fail any requests to ISOLATE the LMB DRC if this LMB doesn't
110 * belong to a DIMM device that is marked for removal.
112 * Currently the guest userspace tool drmgr that drives the memory
113 * hotplug/unplug will just try to remove a set of 'removable' LMBs
114 * in response to a hot unplug request that is based on drc-count.
115 * If the LMB being removed doesn't belong to a DIMM device that is
116 * actually being unplugged, fail the isolation request here.
118 if (spapr_drc_type(drc
) == SPAPR_DR_CONNECTOR_TYPE_LMB
119 && !drc
->awaiting_release
) {
120 return RTAS_OUT_HW_ERROR
;
123 drc
->isolation_state
= SPAPR_DR_ISOLATION_STATE_ISOLATED
;
125 /* if we're awaiting release, but still in an unconfigured state,
126 * it's likely the guest is still in the process of configuring
127 * the device and is transitioning the devices to an ISOLATED
128 * state as a part of that process. so we only complete the
129 * removal when this transition happens for a device in a
130 * configured state, as suggested by the state diagram from PAPR+
133 if (drc
->awaiting_release
) {
134 uint32_t drc_index
= spapr_drc_index(drc
);
135 if (drc
->configured
) {
136 trace_spapr_drc_set_isolation_state_finalizing(drc_index
);
137 spapr_drc_detach(drc
);
139 trace_spapr_drc_set_isolation_state_deferring(drc_index
);
142 drc
->configured
= false;
144 return RTAS_OUT_SUCCESS
;
147 static uint32_t drc_unisolate_logical(sPAPRDRConnector
*drc
)
149 /* cannot unisolate a non-existent resource, and, or resources
150 * which are in an 'UNUSABLE' allocation state. (PAPR 2.7,
154 drc
->allocation_state
== SPAPR_DR_ALLOCATION_STATE_UNUSABLE
) {
155 return RTAS_OUT_NO_SUCH_INDICATOR
;
158 drc
->isolation_state
= SPAPR_DR_ISOLATION_STATE_UNISOLATED
;
160 return RTAS_OUT_SUCCESS
;
163 static uint32_t drc_set_usable(sPAPRDRConnector
*drc
)
165 /* if there's no resource/device associated with the DRC, there's
166 * no way for us to put it in an allocation state consistent with
167 * being 'USABLE'. PAPR 2.7, 13.5.3.4 documents that this should
168 * result in an RTAS return code of -3 / "no such indicator"
171 return RTAS_OUT_NO_SUCH_INDICATOR
;
173 if (drc
->awaiting_release
) {
174 /* Don't allow the guest to move a device away from UNUSABLE
175 * state when we want to unplug it */
176 return RTAS_OUT_NO_SUCH_INDICATOR
;
179 drc
->allocation_state
= SPAPR_DR_ALLOCATION_STATE_USABLE
;
181 return RTAS_OUT_SUCCESS
;
184 static uint32_t drc_set_unusable(sPAPRDRConnector
*drc
)
186 drc
->allocation_state
= SPAPR_DR_ALLOCATION_STATE_UNUSABLE
;
187 if (drc
->awaiting_release
) {
188 uint32_t drc_index
= spapr_drc_index(drc
);
189 trace_spapr_drc_set_allocation_state_finalizing(drc_index
);
190 spapr_drc_detach(drc
);
193 return RTAS_OUT_SUCCESS
;
196 static const char *spapr_drc_name(sPAPRDRConnector
*drc
)
198 sPAPRDRConnectorClass
*drck
= SPAPR_DR_CONNECTOR_GET_CLASS(drc
);
200 /* human-readable name for a DRC to encode into the DT
201 * description. this is mainly only used within a guest in place
202 * of the unique DRC index.
204 * in the case of VIO/PCI devices, it corresponds to a "location
205 * code" that maps a logical device/function (DRC index) to a
206 * physical (or virtual in the case of VIO) location in the system
207 * by chaining together the "location label" for each
208 * encapsulating component.
210 * since this is more to do with diagnosing physical hardware
211 * issues than guest compatibility, we choose location codes/DRC
212 * names that adhere to the documented format, but avoid encoding
213 * the entire topology information into the label/code, instead
214 * just using the location codes based on the labels for the
215 * endpoints (VIO/PCI adaptor connectors), which is basically just
216 * "C" followed by an integer ID.
218 * DRC names as documented by PAPR+ v2.7, 13.5.2.4
219 * location codes as documented by PAPR+ v2.7, 12.3.1.5
221 return g_strdup_printf("%s%d", drck
->drc_name_prefix
, drc
->id
);
225 * dr-entity-sense sensor value
226 * returned via get-sensor-state RTAS calls
227 * as expected by state diagram in PAPR+ 2.7, 13.4
228 * based on the current allocation/indicator/power states
229 * for the DR connector.
231 static sPAPRDREntitySense
physical_entity_sense(sPAPRDRConnector
*drc
)
233 /* this assumes all PCI devices are assigned to a 'live insertion'
234 * power domain, where QEMU manages power state automatically as
235 * opposed to the guest. present, non-PCI resources are unaffected
238 return drc
->dev
? SPAPR_DR_ENTITY_SENSE_PRESENT
239 : SPAPR_DR_ENTITY_SENSE_EMPTY
;
242 static sPAPRDREntitySense
logical_entity_sense(sPAPRDRConnector
*drc
)
245 && (drc
->allocation_state
!= SPAPR_DR_ALLOCATION_STATE_UNUSABLE
)) {
246 return SPAPR_DR_ENTITY_SENSE_PRESENT
;
248 return SPAPR_DR_ENTITY_SENSE_UNUSABLE
;
252 static void prop_get_index(Object
*obj
, Visitor
*v
, const char *name
,
253 void *opaque
, Error
**errp
)
255 sPAPRDRConnector
*drc
= SPAPR_DR_CONNECTOR(obj
);
256 uint32_t value
= spapr_drc_index(drc
);
257 visit_type_uint32(v
, name
, &value
, errp
);
260 static void prop_get_fdt(Object
*obj
, Visitor
*v
, const char *name
,
261 void *opaque
, Error
**errp
)
263 sPAPRDRConnector
*drc
= SPAPR_DR_CONNECTOR(obj
);
265 int fdt_offset_next
, fdt_offset
, fdt_depth
;
269 visit_type_null(v
, NULL
, errp
);
274 fdt_offset
= drc
->fdt_start_offset
;
278 const char *name
= NULL
;
279 const struct fdt_property
*prop
= NULL
;
280 int prop_len
= 0, name_len
= 0;
283 tag
= fdt_next_tag(fdt
, fdt_offset
, &fdt_offset_next
);
287 name
= fdt_get_name(fdt
, fdt_offset
, &name_len
);
288 visit_start_struct(v
, name
, NULL
, 0, &err
);
290 error_propagate(errp
, err
);
295 /* shouldn't ever see an FDT_END_NODE before FDT_BEGIN_NODE */
296 g_assert(fdt_depth
> 0);
297 visit_check_struct(v
, &err
);
298 visit_end_struct(v
, NULL
);
300 error_propagate(errp
, err
);
307 prop
= fdt_get_property_by_offset(fdt
, fdt_offset
, &prop_len
);
308 name
= fdt_string(fdt
, fdt32_to_cpu(prop
->nameoff
));
309 visit_start_list(v
, name
, NULL
, 0, &err
);
311 error_propagate(errp
, err
);
314 for (i
= 0; i
< prop_len
; i
++) {
315 visit_type_uint8(v
, NULL
, (uint8_t *)&prop
->data
[i
], &err
);
317 error_propagate(errp
, err
);
321 visit_check_list(v
, &err
);
322 visit_end_list(v
, NULL
);
324 error_propagate(errp
, err
);
330 error_setg(&error_abort
, "device FDT in unexpected state: %d", tag
);
332 fdt_offset
= fdt_offset_next
;
333 } while (fdt_depth
!= 0);
336 void spapr_drc_attach(sPAPRDRConnector
*drc
, DeviceState
*d
, void *fdt
,
337 int fdt_start_offset
, Error
**errp
)
339 trace_spapr_drc_attach(spapr_drc_index(drc
));
341 if (drc
->isolation_state
!= SPAPR_DR_ISOLATION_STATE_ISOLATED
) {
342 error_setg(errp
, "an attached device is still awaiting release");
345 if (spapr_drc_type(drc
) == SPAPR_DR_CONNECTOR_TYPE_PCI
) {
346 g_assert(drc
->allocation_state
== SPAPR_DR_ALLOCATION_STATE_USABLE
);
352 drc
->fdt_start_offset
= fdt_start_offset
;
354 object_property_add_link(OBJECT(drc
), "device",
355 object_get_typename(OBJECT(drc
->dev
)),
356 (Object
**)(&drc
->dev
),
360 static void spapr_drc_release(sPAPRDRConnector
*drc
)
362 sPAPRDRConnectorClass
*drck
= SPAPR_DR_CONNECTOR_GET_CLASS(drc
);
364 drck
->release(drc
->dev
);
366 drc
->awaiting_release
= false;
369 drc
->fdt_start_offset
= 0;
370 object_property_del(OBJECT(drc
), "device", &error_abort
);
374 void spapr_drc_detach(sPAPRDRConnector
*drc
)
376 trace_spapr_drc_detach(spapr_drc_index(drc
));
378 drc
->awaiting_release
= true;
380 if (drc
->isolation_state
!= SPAPR_DR_ISOLATION_STATE_ISOLATED
) {
381 trace_spapr_drc_awaiting_isolated(spapr_drc_index(drc
));
385 if (spapr_drc_type(drc
) != SPAPR_DR_CONNECTOR_TYPE_PCI
&&
386 drc
->allocation_state
!= SPAPR_DR_ALLOCATION_STATE_UNUSABLE
) {
387 trace_spapr_drc_awaiting_unusable(spapr_drc_index(drc
));
391 spapr_drc_release(drc
);
394 static bool release_pending(sPAPRDRConnector
*drc
)
396 return drc
->awaiting_release
;
399 void spapr_drc_reset(sPAPRDRConnector
*drc
)
401 trace_spapr_drc_reset(spapr_drc_index(drc
));
406 /* immediately upon reset we can safely assume DRCs whose devices
407 * are pending removal can be safely removed.
409 if (drc
->awaiting_release
) {
410 spapr_drc_release(drc
);
414 /* A device present at reset is coldplugged */
415 drc
->isolation_state
= SPAPR_DR_ISOLATION_STATE_UNISOLATED
;
416 if (spapr_drc_type(drc
) != SPAPR_DR_CONNECTOR_TYPE_PCI
) {
417 drc
->allocation_state
= SPAPR_DR_ALLOCATION_STATE_USABLE
;
419 drc
->dr_indicator
= SPAPR_DR_INDICATOR_ACTIVE
;
421 /* Otherwise device is absent, but might be hotplugged */
422 drc
->isolation_state
= SPAPR_DR_ISOLATION_STATE_ISOLATED
;
423 if (spapr_drc_type(drc
) != SPAPR_DR_CONNECTOR_TYPE_PCI
) {
424 drc
->allocation_state
= SPAPR_DR_ALLOCATION_STATE_UNUSABLE
;
426 drc
->dr_indicator
= SPAPR_DR_INDICATOR_INACTIVE
;
430 static void drc_reset(void *opaque
)
432 spapr_drc_reset(SPAPR_DR_CONNECTOR(opaque
));
435 static bool spapr_drc_needed(void *opaque
)
437 sPAPRDRConnector
*drc
= (sPAPRDRConnector
*)opaque
;
438 sPAPRDRConnectorClass
*drck
= SPAPR_DR_CONNECTOR_GET_CLASS(drc
);
440 sPAPRDREntitySense value
= drck
->dr_entity_sense(drc
);
442 /* If no dev is plugged in there is no need to migrate the DRC state */
443 if (value
!= SPAPR_DR_ENTITY_SENSE_PRESENT
) {
448 * If there is dev plugged in, we need to migrate the DRC state when
449 * it is different from cold-plugged state
451 switch (spapr_drc_type(drc
)) {
452 case SPAPR_DR_CONNECTOR_TYPE_PCI
:
453 case SPAPR_DR_CONNECTOR_TYPE_CPU
:
454 case SPAPR_DR_CONNECTOR_TYPE_LMB
:
455 rc
= !((drc
->isolation_state
== SPAPR_DR_ISOLATION_STATE_UNISOLATED
) &&
456 (drc
->allocation_state
== SPAPR_DR_ALLOCATION_STATE_USABLE
) &&
457 drc
->configured
&& !drc
->awaiting_release
);
459 case SPAPR_DR_CONNECTOR_TYPE_PHB
:
460 case SPAPR_DR_CONNECTOR_TYPE_VIO
:
462 g_assert_not_reached();
467 static const VMStateDescription vmstate_spapr_drc
= {
470 .minimum_version_id
= 1,
471 .needed
= spapr_drc_needed
,
472 .fields
= (VMStateField
[]) {
473 VMSTATE_UINT32(isolation_state
, sPAPRDRConnector
),
474 VMSTATE_UINT32(allocation_state
, sPAPRDRConnector
),
475 VMSTATE_UINT32(dr_indicator
, sPAPRDRConnector
),
476 VMSTATE_BOOL(configured
, sPAPRDRConnector
),
477 VMSTATE_BOOL(awaiting_release
, sPAPRDRConnector
),
478 VMSTATE_END_OF_LIST()
482 static void realize(DeviceState
*d
, Error
**errp
)
484 sPAPRDRConnector
*drc
= SPAPR_DR_CONNECTOR(d
);
485 Object
*root_container
;
490 trace_spapr_drc_realize(spapr_drc_index(drc
));
491 /* NOTE: we do this as part of realize/unrealize due to the fact
492 * that the guest will communicate with the DRC via RTAS calls
493 * referencing the global DRC index. By unlinking the DRC
494 * from DRC_CONTAINER_PATH/<drc_index> we effectively make it
495 * inaccessible by the guest, since lookups rely on this path
496 * existing in the composition tree
498 root_container
= container_get(object_get_root(), DRC_CONTAINER_PATH
);
499 snprintf(link_name
, sizeof(link_name
), "%x", spapr_drc_index(drc
));
500 child_name
= object_get_canonical_path_component(OBJECT(drc
));
501 trace_spapr_drc_realize_child(spapr_drc_index(drc
), child_name
);
502 object_property_add_alias(root_container
, link_name
,
503 drc
->owner
, child_name
, &err
);
505 error_report_err(err
);
506 object_unref(OBJECT(drc
));
509 vmstate_register(DEVICE(drc
), spapr_drc_index(drc
), &vmstate_spapr_drc
,
511 qemu_register_reset(drc_reset
, drc
);
512 trace_spapr_drc_realize_complete(spapr_drc_index(drc
));
515 static void unrealize(DeviceState
*d
, Error
**errp
)
517 sPAPRDRConnector
*drc
= SPAPR_DR_CONNECTOR(d
);
518 Object
*root_container
;
522 trace_spapr_drc_unrealize(spapr_drc_index(drc
));
523 root_container
= container_get(object_get_root(), DRC_CONTAINER_PATH
);
524 snprintf(name
, sizeof(name
), "%x", spapr_drc_index(drc
));
525 object_property_del(root_container
, name
, &err
);
527 error_report_err(err
);
528 object_unref(OBJECT(drc
));
532 sPAPRDRConnector
*spapr_dr_connector_new(Object
*owner
, const char *type
,
535 sPAPRDRConnector
*drc
= SPAPR_DR_CONNECTOR(object_new(type
));
540 prop_name
= g_strdup_printf("dr-connector[%"PRIu32
"]",
541 spapr_drc_index(drc
));
542 object_property_add_child(owner
, prop_name
, OBJECT(drc
), NULL
);
543 object_property_set_bool(OBJECT(drc
), true, "realized", NULL
);
546 /* PCI slot always start in a USABLE state, and stay there */
547 if (spapr_drc_type(drc
) == SPAPR_DR_CONNECTOR_TYPE_PCI
) {
548 drc
->allocation_state
= SPAPR_DR_ALLOCATION_STATE_USABLE
;
554 static void spapr_dr_connector_instance_init(Object
*obj
)
556 sPAPRDRConnector
*drc
= SPAPR_DR_CONNECTOR(obj
);
558 object_property_add_uint32_ptr(obj
, "id", &drc
->id
, NULL
);
559 object_property_add(obj
, "index", "uint32", prop_get_index
,
560 NULL
, NULL
, NULL
, NULL
);
561 object_property_add(obj
, "fdt", "struct", prop_get_fdt
,
562 NULL
, NULL
, NULL
, NULL
);
565 static void spapr_dr_connector_class_init(ObjectClass
*k
, void *data
)
567 DeviceClass
*dk
= DEVICE_CLASS(k
);
568 sPAPRDRConnectorClass
*drck
= SPAPR_DR_CONNECTOR_CLASS(k
);
570 dk
->realize
= realize
;
571 dk
->unrealize
= unrealize
;
572 drck
->release_pending
= release_pending
;
574 * Reason: it crashes FIXME find and document the real reason
576 dk
->user_creatable
= false;
579 static void spapr_drc_physical_class_init(ObjectClass
*k
, void *data
)
581 sPAPRDRConnectorClass
*drck
= SPAPR_DR_CONNECTOR_CLASS(k
);
583 drck
->dr_entity_sense
= physical_entity_sense
;
584 drck
->isolate
= drc_isolate_physical
;
585 drck
->unisolate
= drc_unisolate_physical
;
588 static void spapr_drc_logical_class_init(ObjectClass
*k
, void *data
)
590 sPAPRDRConnectorClass
*drck
= SPAPR_DR_CONNECTOR_CLASS(k
);
592 drck
->dr_entity_sense
= logical_entity_sense
;
593 drck
->isolate
= drc_isolate_logical
;
594 drck
->unisolate
= drc_unisolate_logical
;
597 static void spapr_drc_cpu_class_init(ObjectClass
*k
, void *data
)
599 sPAPRDRConnectorClass
*drck
= SPAPR_DR_CONNECTOR_CLASS(k
);
601 drck
->typeshift
= SPAPR_DR_CONNECTOR_TYPE_SHIFT_CPU
;
602 drck
->typename
= "CPU";
603 drck
->drc_name_prefix
= "CPU ";
604 drck
->release
= spapr_core_release
;
607 static void spapr_drc_pci_class_init(ObjectClass
*k
, void *data
)
609 sPAPRDRConnectorClass
*drck
= SPAPR_DR_CONNECTOR_CLASS(k
);
611 drck
->typeshift
= SPAPR_DR_CONNECTOR_TYPE_SHIFT_PCI
;
612 drck
->typename
= "28";
613 drck
->drc_name_prefix
= "C";
614 drck
->release
= spapr_phb_remove_pci_device_cb
;
617 static void spapr_drc_lmb_class_init(ObjectClass
*k
, void *data
)
619 sPAPRDRConnectorClass
*drck
= SPAPR_DR_CONNECTOR_CLASS(k
);
621 drck
->typeshift
= SPAPR_DR_CONNECTOR_TYPE_SHIFT_LMB
;
622 drck
->typename
= "MEM";
623 drck
->drc_name_prefix
= "LMB ";
624 drck
->release
= spapr_lmb_release
;
627 static const TypeInfo spapr_dr_connector_info
= {
628 .name
= TYPE_SPAPR_DR_CONNECTOR
,
629 .parent
= TYPE_DEVICE
,
630 .instance_size
= sizeof(sPAPRDRConnector
),
631 .instance_init
= spapr_dr_connector_instance_init
,
632 .class_size
= sizeof(sPAPRDRConnectorClass
),
633 .class_init
= spapr_dr_connector_class_init
,
637 static const TypeInfo spapr_drc_physical_info
= {
638 .name
= TYPE_SPAPR_DRC_PHYSICAL
,
639 .parent
= TYPE_SPAPR_DR_CONNECTOR
,
640 .class_init
= spapr_drc_physical_class_init
,
644 static const TypeInfo spapr_drc_logical_info
= {
645 .name
= TYPE_SPAPR_DRC_LOGICAL
,
646 .parent
= TYPE_SPAPR_DR_CONNECTOR
,
647 .class_init
= spapr_drc_logical_class_init
,
651 static const TypeInfo spapr_drc_cpu_info
= {
652 .name
= TYPE_SPAPR_DRC_CPU
,
653 .parent
= TYPE_SPAPR_DRC_LOGICAL
,
654 .class_init
= spapr_drc_cpu_class_init
,
657 static const TypeInfo spapr_drc_pci_info
= {
658 .name
= TYPE_SPAPR_DRC_PCI
,
659 .parent
= TYPE_SPAPR_DRC_PHYSICAL
,
660 .class_init
= spapr_drc_pci_class_init
,
663 static const TypeInfo spapr_drc_lmb_info
= {
664 .name
= TYPE_SPAPR_DRC_LMB
,
665 .parent
= TYPE_SPAPR_DRC_LOGICAL
,
666 .class_init
= spapr_drc_lmb_class_init
,
669 /* helper functions for external users */
671 sPAPRDRConnector
*spapr_drc_by_index(uint32_t index
)
676 snprintf(name
, sizeof(name
), "%s/%x", DRC_CONTAINER_PATH
, index
);
677 obj
= object_resolve_path(name
, NULL
);
679 return !obj
? NULL
: SPAPR_DR_CONNECTOR(obj
);
682 sPAPRDRConnector
*spapr_drc_by_id(const char *type
, uint32_t id
)
684 sPAPRDRConnectorClass
*drck
685 = SPAPR_DR_CONNECTOR_CLASS(object_class_by_name(type
));
687 return spapr_drc_by_index(drck
->typeshift
<< DRC_INDEX_TYPE_SHIFT
688 | (id
& DRC_INDEX_ID_MASK
));
692 * spapr_drc_populate_dt
694 * @fdt: libfdt device tree
695 * @path: path in the DT to generate properties
696 * @owner: parent Object/DeviceState for which to generate DRC
698 * @drc_type_mask: mask of sPAPRDRConnectorType values corresponding
699 * to the types of DRCs to generate entries for
701 * generate OF properties to describe DRC topology/indices to guests
703 * as documented in PAPR+ v2.1, 13.5.2
705 int spapr_drc_populate_dt(void *fdt
, int fdt_offset
, Object
*owner
,
706 uint32_t drc_type_mask
)
708 Object
*root_container
;
709 ObjectProperty
*prop
;
710 ObjectPropertyIterator iter
;
711 uint32_t drc_count
= 0;
712 GArray
*drc_indexes
, *drc_power_domains
;
713 GString
*drc_names
, *drc_types
;
716 /* the first entry of each properties is a 32-bit integer encoding
717 * the number of elements in the array. we won't know this until
718 * we complete the iteration through all the matching DRCs, but
719 * reserve the space now and set the offsets accordingly so we
720 * can fill them in later.
722 drc_indexes
= g_array_new(false, true, sizeof(uint32_t));
723 drc_indexes
= g_array_set_size(drc_indexes
, 1);
724 drc_power_domains
= g_array_new(false, true, sizeof(uint32_t));
725 drc_power_domains
= g_array_set_size(drc_power_domains
, 1);
726 drc_names
= g_string_set_size(g_string_new(NULL
), sizeof(uint32_t));
727 drc_types
= g_string_set_size(g_string_new(NULL
), sizeof(uint32_t));
729 /* aliases for all DRConnector objects will be rooted in QOM
730 * composition tree at DRC_CONTAINER_PATH
732 root_container
= container_get(object_get_root(), DRC_CONTAINER_PATH
);
734 object_property_iter_init(&iter
, root_container
);
735 while ((prop
= object_property_iter_next(&iter
))) {
737 sPAPRDRConnector
*drc
;
738 sPAPRDRConnectorClass
*drck
;
739 uint32_t drc_index
, drc_power_domain
;
741 if (!strstart(prop
->type
, "link<", NULL
)) {
745 obj
= object_property_get_link(root_container
, prop
->name
, NULL
);
746 drc
= SPAPR_DR_CONNECTOR(obj
);
747 drck
= SPAPR_DR_CONNECTOR_GET_CLASS(drc
);
749 if (owner
&& (drc
->owner
!= owner
)) {
753 if ((spapr_drc_type(drc
) & drc_type_mask
) == 0) {
759 /* ibm,drc-indexes */
760 drc_index
= cpu_to_be32(spapr_drc_index(drc
));
761 g_array_append_val(drc_indexes
, drc_index
);
763 /* ibm,drc-power-domains */
764 drc_power_domain
= cpu_to_be32(-1);
765 g_array_append_val(drc_power_domains
, drc_power_domain
);
768 drc_names
= g_string_append(drc_names
, spapr_drc_name(drc
));
769 drc_names
= g_string_insert_len(drc_names
, -1, "\0", 1);
772 drc_types
= g_string_append(drc_types
, drck
->typename
);
773 drc_types
= g_string_insert_len(drc_types
, -1, "\0", 1);
776 /* now write the drc count into the space we reserved at the
777 * beginning of the arrays previously
779 *(uint32_t *)drc_indexes
->data
= cpu_to_be32(drc_count
);
780 *(uint32_t *)drc_power_domains
->data
= cpu_to_be32(drc_count
);
781 *(uint32_t *)drc_names
->str
= cpu_to_be32(drc_count
);
782 *(uint32_t *)drc_types
->str
= cpu_to_be32(drc_count
);
784 ret
= fdt_setprop(fdt
, fdt_offset
, "ibm,drc-indexes",
786 drc_indexes
->len
* sizeof(uint32_t));
788 error_report("Couldn't create ibm,drc-indexes property");
792 ret
= fdt_setprop(fdt
, fdt_offset
, "ibm,drc-power-domains",
793 drc_power_domains
->data
,
794 drc_power_domains
->len
* sizeof(uint32_t));
796 error_report("Couldn't finalize ibm,drc-power-domains property");
800 ret
= fdt_setprop(fdt
, fdt_offset
, "ibm,drc-names",
801 drc_names
->str
, drc_names
->len
);
803 error_report("Couldn't finalize ibm,drc-names property");
807 ret
= fdt_setprop(fdt
, fdt_offset
, "ibm,drc-types",
808 drc_types
->str
, drc_types
->len
);
810 error_report("Couldn't finalize ibm,drc-types property");
815 g_array_free(drc_indexes
, true);
816 g_array_free(drc_power_domains
, true);
817 g_string_free(drc_names
, true);
818 g_string_free(drc_types
, true);
827 static uint32_t rtas_set_isolation_state(uint32_t idx
, uint32_t state
)
829 sPAPRDRConnector
*drc
= spapr_drc_by_index(idx
);
830 sPAPRDRConnectorClass
*drck
;
833 return RTAS_OUT_NO_SUCH_INDICATOR
;
836 trace_spapr_drc_set_isolation_state(spapr_drc_index(drc
), state
);
838 drck
= SPAPR_DR_CONNECTOR_GET_CLASS(drc
);
841 case SPAPR_DR_ISOLATION_STATE_ISOLATED
:
842 return drck
->isolate(drc
);
844 case SPAPR_DR_ISOLATION_STATE_UNISOLATED
:
845 return drck
->unisolate(drc
);
848 return RTAS_OUT_PARAM_ERROR
;
852 static uint32_t rtas_set_allocation_state(uint32_t idx
, uint32_t state
)
854 sPAPRDRConnector
*drc
= spapr_drc_by_index(idx
);
856 if (!drc
|| !object_dynamic_cast(OBJECT(drc
), TYPE_SPAPR_DRC_LOGICAL
)) {
857 return RTAS_OUT_NO_SUCH_INDICATOR
;
860 trace_spapr_drc_set_allocation_state(spapr_drc_index(drc
), state
);
863 case SPAPR_DR_ALLOCATION_STATE_USABLE
:
864 return drc_set_usable(drc
);
866 case SPAPR_DR_ALLOCATION_STATE_UNUSABLE
:
867 return drc_set_unusable(drc
);
870 return RTAS_OUT_PARAM_ERROR
;
874 static uint32_t rtas_set_dr_indicator(uint32_t idx
, uint32_t state
)
876 sPAPRDRConnector
*drc
= spapr_drc_by_index(idx
);
879 return RTAS_OUT_PARAM_ERROR
;
882 trace_spapr_drc_set_dr_indicator(idx
, state
);
883 drc
->dr_indicator
= state
;
884 return RTAS_OUT_SUCCESS
;
887 static void rtas_set_indicator(PowerPCCPU
*cpu
, sPAPRMachineState
*spapr
,
889 uint32_t nargs
, target_ulong args
,
890 uint32_t nret
, target_ulong rets
)
892 uint32_t type
, idx
, state
;
893 uint32_t ret
= RTAS_OUT_SUCCESS
;
895 if (nargs
!= 3 || nret
!= 1) {
896 ret
= RTAS_OUT_PARAM_ERROR
;
900 type
= rtas_ld(args
, 0);
901 idx
= rtas_ld(args
, 1);
902 state
= rtas_ld(args
, 2);
905 case RTAS_SENSOR_TYPE_ISOLATION_STATE
:
906 ret
= rtas_set_isolation_state(idx
, state
);
908 case RTAS_SENSOR_TYPE_DR
:
909 ret
= rtas_set_dr_indicator(idx
, state
);
911 case RTAS_SENSOR_TYPE_ALLOCATION_STATE
:
912 ret
= rtas_set_allocation_state(idx
, state
);
915 ret
= RTAS_OUT_NOT_SUPPORTED
;
919 rtas_st(rets
, 0, ret
);
922 static void rtas_get_sensor_state(PowerPCCPU
*cpu
, sPAPRMachineState
*spapr
,
923 uint32_t token
, uint32_t nargs
,
924 target_ulong args
, uint32_t nret
,
927 uint32_t sensor_type
;
928 uint32_t sensor_index
;
929 uint32_t sensor_state
= 0;
930 sPAPRDRConnector
*drc
;
931 sPAPRDRConnectorClass
*drck
;
932 uint32_t ret
= RTAS_OUT_SUCCESS
;
934 if (nargs
!= 2 || nret
!= 2) {
935 ret
= RTAS_OUT_PARAM_ERROR
;
939 sensor_type
= rtas_ld(args
, 0);
940 sensor_index
= rtas_ld(args
, 1);
942 if (sensor_type
!= RTAS_SENSOR_TYPE_ENTITY_SENSE
) {
943 /* currently only DR-related sensors are implemented */
944 trace_spapr_rtas_get_sensor_state_not_supported(sensor_index
,
946 ret
= RTAS_OUT_NOT_SUPPORTED
;
950 drc
= spapr_drc_by_index(sensor_index
);
952 trace_spapr_rtas_get_sensor_state_invalid(sensor_index
);
953 ret
= RTAS_OUT_PARAM_ERROR
;
956 drck
= SPAPR_DR_CONNECTOR_GET_CLASS(drc
);
957 sensor_state
= drck
->dr_entity_sense(drc
);
960 rtas_st(rets
, 0, ret
);
961 rtas_st(rets
, 1, sensor_state
);
964 /* configure-connector work area offsets, int32_t units for field
965 * indexes, bytes for field offset/len values.
967 * as documented by PAPR+ v2.7, 13.5.3.5
969 #define CC_IDX_NODE_NAME_OFFSET 2
970 #define CC_IDX_PROP_NAME_OFFSET 2
971 #define CC_IDX_PROP_LEN 3
972 #define CC_IDX_PROP_DATA_OFFSET 4
973 #define CC_VAL_DATA_OFFSET ((CC_IDX_PROP_DATA_OFFSET + 1) * 4)
974 #define CC_WA_LEN 4096
976 static void configure_connector_st(target_ulong addr
, target_ulong offset
,
977 const void *buf
, size_t len
)
979 cpu_physical_memory_write(ppc64_phys_to_real(addr
+ offset
),
980 buf
, MIN(len
, CC_WA_LEN
- offset
));
983 static void rtas_ibm_configure_connector(PowerPCCPU
*cpu
,
984 sPAPRMachineState
*spapr
,
985 uint32_t token
, uint32_t nargs
,
986 target_ulong args
, uint32_t nret
,
992 sPAPRDRConnector
*drc
;
993 sPAPRConfigureConnectorState
*ccs
;
994 sPAPRDRCCResponse resp
= SPAPR_DR_CC_RESPONSE_CONTINUE
;
997 if (nargs
!= 2 || nret
!= 1) {
998 rtas_st(rets
, 0, RTAS_OUT_PARAM_ERROR
);
1002 wa_addr
= ((uint64_t)rtas_ld(args
, 1) << 32) | rtas_ld(args
, 0);
1004 drc_index
= rtas_ld(wa_addr
, 0);
1005 drc
= spapr_drc_by_index(drc_index
);
1007 trace_spapr_rtas_ibm_configure_connector_invalid(drc_index
);
1008 rc
= RTAS_OUT_PARAM_ERROR
;
1013 trace_spapr_rtas_ibm_configure_connector_missing_fdt(drc_index
);
1014 rc
= SPAPR_DR_CC_RESPONSE_NOT_CONFIGURABLE
;
1020 ccs
= g_new0(sPAPRConfigureConnectorState
, 1);
1021 ccs
->fdt_offset
= drc
->fdt_start_offset
;
1028 const struct fdt_property
*prop
;
1029 int fdt_offset_next
, prop_len
;
1031 tag
= fdt_next_tag(drc
->fdt
, ccs
->fdt_offset
, &fdt_offset_next
);
1034 case FDT_BEGIN_NODE
:
1036 name
= fdt_get_name(drc
->fdt
, ccs
->fdt_offset
, NULL
);
1038 /* provide the name of the next OF node */
1039 wa_offset
= CC_VAL_DATA_OFFSET
;
1040 rtas_st(wa_addr
, CC_IDX_NODE_NAME_OFFSET
, wa_offset
);
1041 configure_connector_st(wa_addr
, wa_offset
, name
, strlen(name
) + 1);
1042 resp
= SPAPR_DR_CC_RESPONSE_NEXT_CHILD
;
1046 if (ccs
->fdt_depth
== 0) {
1047 sPAPRDRIsolationState state
= drc
->isolation_state
;
1048 uint32_t drc_index
= spapr_drc_index(drc
);
1049 /* done sending the device tree, don't need to track
1052 trace_spapr_drc_set_configured(drc_index
);
1053 if (state
== SPAPR_DR_ISOLATION_STATE_UNISOLATED
) {
1054 drc
->configured
= true;
1056 /* guest should be not configuring an isolated device */
1057 trace_spapr_drc_set_configured_skipping(drc_index
);
1062 resp
= SPAPR_DR_CC_RESPONSE_SUCCESS
;
1064 resp
= SPAPR_DR_CC_RESPONSE_PREV_PARENT
;
1068 prop
= fdt_get_property_by_offset(drc
->fdt
, ccs
->fdt_offset
,
1070 name
= fdt_string(drc
->fdt
, fdt32_to_cpu(prop
->nameoff
));
1072 /* provide the name of the next OF property */
1073 wa_offset
= CC_VAL_DATA_OFFSET
;
1074 rtas_st(wa_addr
, CC_IDX_PROP_NAME_OFFSET
, wa_offset
);
1075 configure_connector_st(wa_addr
, wa_offset
, name
, strlen(name
) + 1);
1077 /* provide the length and value of the OF property. data gets
1078 * placed immediately after NULL terminator of the OF property's
1081 wa_offset
+= strlen(name
) + 1,
1082 rtas_st(wa_addr
, CC_IDX_PROP_LEN
, prop_len
);
1083 rtas_st(wa_addr
, CC_IDX_PROP_DATA_OFFSET
, wa_offset
);
1084 configure_connector_st(wa_addr
, wa_offset
, prop
->data
, prop_len
);
1085 resp
= SPAPR_DR_CC_RESPONSE_NEXT_PROPERTY
;
1088 resp
= SPAPR_DR_CC_RESPONSE_ERROR
;
1090 /* keep seeking for an actionable tag */
1094 ccs
->fdt_offset
= fdt_offset_next
;
1096 } while (resp
== SPAPR_DR_CC_RESPONSE_CONTINUE
);
1100 rtas_st(rets
, 0, rc
);
1103 static void spapr_drc_register_types(void)
1105 type_register_static(&spapr_dr_connector_info
);
1106 type_register_static(&spapr_drc_physical_info
);
1107 type_register_static(&spapr_drc_logical_info
);
1108 type_register_static(&spapr_drc_cpu_info
);
1109 type_register_static(&spapr_drc_pci_info
);
1110 type_register_static(&spapr_drc_lmb_info
);
1112 spapr_rtas_register(RTAS_SET_INDICATOR
, "set-indicator",
1113 rtas_set_indicator
);
1114 spapr_rtas_register(RTAS_GET_SENSOR_STATE
, "get-sensor-state",
1115 rtas_get_sensor_state
);
1116 spapr_rtas_register(RTAS_IBM_CONFIGURE_CONNECTOR
, "ibm,configure-connector",
1117 rtas_ibm_configure_connector
);
1119 type_init(spapr_drc_register_types
)