s390x patches for 4.0:

- add 4.0 machine type
 - various fixes and small changes
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Merge remote-tracking branch 'remotes/cohuck/tags/s390x-20181212' into staging

s390x patches for 4.0:
- add 4.0 machine type
- various fixes and small changes

# gpg: Signature made Wed 12 Dec 2018 09:52:04 GMT
# gpg:                using RSA key DECF6B93C6F02FAF
# gpg: Good signature from "Cornelia Huck <conny@cornelia-huck.de>"
# gpg:                 aka "Cornelia Huck <huckc@linux.vnet.ibm.com>"
# gpg:                 aka "Cornelia Huck <cornelia.huck@de.ibm.com>"
# gpg:                 aka "Cornelia Huck <cohuck@kernel.org>"
# gpg:                 aka "Cornelia Huck <cohuck@redhat.com>"
# Primary key fingerprint: C3D0 D66D C362 4FF6 A8C0  18CE DECF 6B93 C6F0 2FAF

* remotes/cohuck/tags/s390x-20181212:
  hw/s390x/virtio-ccw.c: Don't take address of fields in packed structs
  vfio-ap: flag as compatible with balloon
  s390x/tod: Properly stop the KVM TOD while the guest is not running
  s390/MAINTAINERS: Add Halil as kvm and machine maintainer
  s390x: introduce 4.0 compat machine
  s390x/zpci: drop msix.available

Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
This commit is contained in:
Peter Maydell 2018-12-13 13:06:09 +00:00
commit 6145a6d84b
8 changed files with 156 additions and 28 deletions

View File

@ -368,8 +368,9 @@ S: Maintained
F: target/ppc/kvm.c
S390
M: Christian Borntraeger <borntraeger@de.ibm.com>
M: Halil Pasic <pasic@linux.ibm.com>
M: Cornelia Huck <cohuck@redhat.com>
M: Christian Borntraeger <borntraeger@de.ibm.com>
S: Maintained
F: target/s390x/kvm.c
F: target/s390x/kvm_s390x.h
@ -1075,6 +1076,7 @@ S390 Machines
-------------
S390 Virtio-ccw
M: Cornelia Huck <cohuck@redhat.com>
M: Halil Pasic <pasic@linux.ibm.com>
M: Christian Borntraeger <borntraeger@de.ibm.com>
S: Supported
F: hw/char/sclp*.[hc]

View File

@ -745,7 +745,6 @@ static int s390_pci_msix_init(S390PCIBusDevice *pbdev)
pos = pci_find_capability(pbdev->pdev, PCI_CAP_ID_MSIX);
if (!pos) {
pbdev->msix.available = false;
return -1;
}
@ -761,7 +760,6 @@ static int s390_pci_msix_init(S390PCIBusDevice *pbdev)
pbdev->msix.pba_bar = pba & PCI_MSIX_FLAGS_BIRMASK;
pbdev->msix.pba_offset = pba & ~PCI_MSIX_FLAGS_BIRMASK;
pbdev->msix.entries = (ctrl & PCI_MSIX_FLAGS_QSIZE) + 1;
pbdev->msix.available = true;
name = g_strdup_printf("msix-s390-%04x", pbdev->uid);
memory_region_init_io(&pbdev->msix_notify_mr, OBJECT(pbdev),

View File

@ -252,7 +252,6 @@ typedef struct ChscSeiNt2Res {
} QEMU_PACKED ChscSeiNt2Res;
typedef struct S390MsixInfo {
bool available;
uint8_t table_bar;
uint8_t pba_bar;
uint16_t entries;

View File

@ -651,6 +651,9 @@ bool css_migration_enabled(void)
} \
type_init(ccw_machine_register_##suffix)
#define CCW_COMPAT_3_1 \
HW_COMPAT_3_1
#define CCW_COMPAT_3_0 \
HW_COMPAT_3_0
@ -742,14 +745,26 @@ bool css_migration_enabled(void)
.value = "0",\
},
static void ccw_machine_4_0_instance_options(MachineState *machine)
{
}
static void ccw_machine_4_0_class_options(MachineClass *mc)
{
}
DEFINE_CCW_MACHINE(4_0, "4.0", true);
static void ccw_machine_3_1_instance_options(MachineState *machine)
{
ccw_machine_4_0_instance_options(machine);
}
static void ccw_machine_3_1_class_options(MachineClass *mc)
{
ccw_machine_4_0_class_options(mc);
SET_MACHINE_COMPAT(mc, CCW_COMPAT_3_1);
}
DEFINE_CCW_MACHINE(3_1, "3.1", true);
DEFINE_CCW_MACHINE(3_1, "3.1", false);
static void ccw_machine_3_0_instance_options(MachineState *machine)
{

View File

@ -10,10 +10,11 @@
#include "qemu/osdep.h"
#include "qapi/error.h"
#include "sysemu/sysemu.h"
#include "hw/s390x/tod.h"
#include "kvm_s390x.h"
static void kvm_s390_tod_get(const S390TODState *td, S390TOD *tod, Error **errp)
static void kvm_s390_get_tod_raw(S390TOD *tod, Error **errp)
{
int r;
@ -27,7 +28,17 @@ static void kvm_s390_tod_get(const S390TODState *td, S390TOD *tod, Error **errp)
}
}
static void kvm_s390_tod_set(S390TODState *td, const S390TOD *tod, Error **errp)
static void kvm_s390_tod_get(const S390TODState *td, S390TOD *tod, Error **errp)
{
if (td->stopped) {
*tod = td->base;
return;
}
kvm_s390_get_tod_raw(tod, errp);
}
static void kvm_s390_set_tod_raw(const S390TOD *tod, Error **errp)
{
int r;
@ -41,18 +52,105 @@ static void kvm_s390_tod_set(S390TODState *td, const S390TOD *tod, Error **errp)
}
}
static void kvm_s390_tod_set(S390TODState *td, const S390TOD *tod, Error **errp)
{
Error *local_err = NULL;
/*
* Somebody (e.g. migration) set the TOD. We'll store it into KVM to
* properly detect errors now but take a look at the runstate to decide
* whether really to keep the tod running. E.g. during migration, this
* is the point where we want to stop the initially running TOD to fire
* it back up when actually starting the migrated guest.
*/
kvm_s390_set_tod_raw(tod, &local_err);
if (local_err) {
error_propagate(errp, local_err);
return;
}
if (runstate_is_running()) {
td->stopped = false;
} else {
td->stopped = true;
td->base = *tod;
}
}
static void kvm_s390_tod_vm_state_change(void *opaque, int running,
RunState state)
{
S390TODState *td = opaque;
Error *local_err = NULL;
if (running && td->stopped) {
/* Set the old TOD when running the VM - start the TOD clock. */
kvm_s390_set_tod_raw(&td->base, &local_err);
if (local_err) {
warn_report_err(local_err);
}
/* Treat errors like the TOD was running all the time. */
td->stopped = false;
} else if (!running && !td->stopped) {
/* Store the TOD when stopping the VM - stop the TOD clock. */
kvm_s390_get_tod_raw(&td->base, &local_err);
if (local_err) {
/* Keep the TOD running in case we could not back it up. */
warn_report_err(local_err);
} else {
td->stopped = true;
}
}
}
static void kvm_s390_tod_realize(DeviceState *dev, Error **errp)
{
S390TODState *td = S390_TOD(dev);
S390TODClass *tdc = S390_TOD_GET_CLASS(td);
Error *local_err = NULL;
tdc->parent_realize(dev, &local_err);
if (local_err) {
error_propagate(errp, local_err);
return;
}
/*
* We need to know when the VM gets started/stopped to start/stop the TOD.
* As we can never have more than one TOD instance (and that will never be
* removed), registering here and never unregistering is good enough.
*/
qemu_add_vm_change_state_handler(kvm_s390_tod_vm_state_change, td);
}
static void kvm_s390_tod_class_init(ObjectClass *oc, void *data)
{
S390TODClass *tdc = S390_TOD_CLASS(oc);
device_class_set_parent_realize(DEVICE_CLASS(oc), kvm_s390_tod_realize,
&tdc->parent_realize);
tdc->get = kvm_s390_tod_get;
tdc->set = kvm_s390_tod_set;
}
static void kvm_s390_tod_init(Object *obj)
{
S390TODState *td = S390_TOD(obj);
/*
* The TOD is initially running (value stored in KVM). Avoid needless
* loading/storing of the TOD when starting a simple VM, so let it
* run although the (never started) VM is stopped. For migration, we
* will properly set the TOD later.
*/
td->stopped = false;
}
static TypeInfo kvm_s390_tod_info = {
.name = TYPE_KVM_S390_TOD,
.parent = TYPE_S390_TOD,
.instance_size = sizeof(S390TODState),
.instance_init = kvm_s390_tod_init,
.class_init = kvm_s390_tod_class_init,
.class_size = sizeof(S390TODClass),
};

View File

@ -287,18 +287,18 @@ static int virtio_ccw_handle_set_vq(SubchDev *sch, CCW1 ccw, bool check_len,
}
if (is_legacy) {
ccw_dstream_read(&sch->cds, linfo);
be64_to_cpus(&linfo.queue);
be32_to_cpus(&linfo.align);
be16_to_cpus(&linfo.index);
be16_to_cpus(&linfo.num);
linfo.queue = be64_to_cpu(linfo.queue);
linfo.align = be32_to_cpu(linfo.align);
linfo.index = be16_to_cpu(linfo.index);
linfo.num = be16_to_cpu(linfo.num);
ret = virtio_ccw_set_vqs(sch, NULL, &linfo);
} else {
ccw_dstream_read(&sch->cds, info);
be64_to_cpus(&info.desc);
be16_to_cpus(&info.index);
be16_to_cpus(&info.num);
be64_to_cpus(&info.avail);
be64_to_cpus(&info.used);
info.desc = be64_to_cpu(info.desc);
info.index = be16_to_cpu(info.index);
info.num = be16_to_cpu(info.num);
info.avail = be64_to_cpu(info.avail);
info.used = be64_to_cpu(info.used);
ret = virtio_ccw_set_vqs(sch, &info, NULL);
}
sch->curr_status.scsw.count = 0;
@ -382,7 +382,7 @@ static int virtio_ccw_cb(SubchDev *sch, CCW1 ccw)
features.features = 0;
}
ccw_dstream_rewind(&sch->cds);
cpu_to_le32s(&features.features);
features.features = cpu_to_le32(features.features);
ccw_dstream_write(&sch->cds, features.features);
sch->curr_status.scsw.count = ccw.count - sizeof(features);
ret = 0;
@ -403,7 +403,7 @@ static int virtio_ccw_cb(SubchDev *sch, CCW1 ccw)
ret = -EFAULT;
} else {
ccw_dstream_read(&sch->cds, features);
le32_to_cpus(&features.features);
features.features = le32_to_cpu(features.features);
if (features.index == 0) {
virtio_set_features(vdev,
(vdev->guest_features & 0xffffffff00000000ULL) |
@ -546,7 +546,7 @@ static int virtio_ccw_cb(SubchDev *sch, CCW1 ccw)
ret = -EFAULT;
} else {
ccw_dstream_read(&sch->cds, indicators);
be64_to_cpus(&indicators);
indicators = be64_to_cpu(indicators);
dev->indicators = get_indicator(indicators, sizeof(uint64_t));
sch->curr_status.scsw.count = ccw.count - sizeof(indicators);
ret = 0;
@ -567,7 +567,7 @@ static int virtio_ccw_cb(SubchDev *sch, CCW1 ccw)
ret = -EFAULT;
} else {
ccw_dstream_read(&sch->cds, indicators);
be64_to_cpus(&indicators);
indicators = be64_to_cpu(indicators);
dev->indicators2 = get_indicator(indicators, sizeof(uint64_t));
sch->curr_status.scsw.count = ccw.count - sizeof(indicators);
ret = 0;
@ -588,14 +588,14 @@ static int virtio_ccw_cb(SubchDev *sch, CCW1 ccw)
ret = -EFAULT;
} else {
ccw_dstream_read(&sch->cds, vq_config.index);
be16_to_cpus(&vq_config.index);
vq_config.index = be16_to_cpu(vq_config.index);
if (vq_config.index >= VIRTIO_QUEUE_MAX) {
ret = -EINVAL;
break;
}
vq_config.num_max = virtio_queue_get_num(vdev,
vq_config.index);
cpu_to_be16s(&vq_config.num_max);
vq_config.num_max = cpu_to_be16(vq_config.num_max);
ccw_dstream_write(&sch->cds, vq_config.num_max);
sch->curr_status.scsw.count = ccw.count - sizeof(vq_config);
ret = 0;
@ -621,9 +621,11 @@ static int virtio_ccw_cb(SubchDev *sch, CCW1 ccw)
if (ccw_dstream_read(&sch->cds, thinint)) {
ret = -EFAULT;
} else {
be64_to_cpus(&thinint.ind_bit);
be64_to_cpus(&thinint.summary_indicator);
be64_to_cpus(&thinint.device_indicator);
thinint.ind_bit = be64_to_cpu(thinint.ind_bit);
thinint.summary_indicator =
be64_to_cpu(thinint.summary_indicator);
thinint.device_indicator =
be64_to_cpu(thinint.device_indicator);
dev->summary_indicator =
get_indicator(thinint.summary_indicator, sizeof(uint8_t));
@ -654,8 +656,8 @@ static int virtio_ccw_cb(SubchDev *sch, CCW1 ccw)
break;
}
ccw_dstream_read_buf(&sch->cds, &revinfo, 4);
be16_to_cpus(&revinfo.revision);
be16_to_cpus(&revinfo.length);
revinfo.revision = be16_to_cpu(revinfo.revision);
revinfo.length = be16_to_cpu(revinfo.length);
if (ccw.count < len + revinfo.length ||
(check_len && ccw.count > len + revinfo.length)) {
ret = -EINVAL;

View File

@ -104,6 +104,14 @@ static void vfio_ap_realize(DeviceState *dev, Error **errp)
vapdev->vdev.name = g_strdup_printf("%s", mdevid);
vapdev->vdev.dev = dev;
/*
* vfio-ap devices operate in a way compatible with
* memory ballooning, as no pages are pinned in the host.
* This needs to be set before vfio_get_device() for vfio common to
* handle the balloon inhibitor.
*/
vapdev->vdev.balloon_allowed = true;
ret = vfio_get_device(vfio_group, mdevid, &vapdev->vdev, &local_err);
if (ret) {
goto out_get_dev_err;

View File

@ -31,13 +31,19 @@ typedef struct S390TODState {
/* private */
DeviceState parent_obj;
/* unused by KVM implementation */
/*
* Used by TCG to remember the time base. Used by KVM to backup the TOD
* while the TOD is stopped.
*/
S390TOD base;
/* Used by KVM to remember if the TOD is stopped and base is valid. */
bool stopped;
} S390TODState;
typedef struct S390TODClass {
/* private */
DeviceClass parent_class;
void (*parent_realize)(DeviceState *dev, Error **errp);
/* public */
void (*get)(const S390TODState *td, S390TOD *tod, Error **errp);