vfio/migration: Refactor vfio_devices_all_running_and_mig_active() logic

During DMA unmap with vIOMMU, vfio_devices_all_running_and_mig_active()
is used to check whether a dirty page log sync of the unmapped pages is
required. Such log sync is needed during migration pre-copy phase, and
the current logic detects it by checking if migration is active and if
the VFIO devices are running.

However, recently there has been an effort to simplify the migration
status API and reduce it to a single migration_is_running() function.

To accommodate this, refactor vfio_devices_all_running_and_mig_active()
logic so it won't use migration_is_active(). Do it by simply checking if
dirty tracking has been started using internal VFIO flags.

This should be equivalent to the previous logic as during migration
dirty tracking is active and when the guest is stopped there shouldn't
be DMA unmaps coming from it.

As a side effect, now that migration status is no longer used, DMA unmap
log syncs are untied from migration. This will make calc-dirty-rate more
accurate as now it will also include VFIO dirty pages that were DMA
unmapped.

Also rename the function to properly reflect its new logic and extract
common code from vfio_devices_all_dirty_tracking().

Signed-off-by: Avihai Horon <avihaih@nvidia.com>
Reviewed-by: Joao Martins <joao.m.martins@oracle.com>
Tested-by: Joao Martins <joao.m.martins@oracle.com>
Link: https://lore.kernel.org/r/20241218134022.21264-4-avihaih@nvidia.com
Signed-off-by: Cédric Le Goater <clg@redhat.com>
This commit is contained in:
Avihai Horon 2024-12-18 15:40:18 +02:00 committed by Cédric Le Goater
parent 0ae05e087f
commit 6e9df66e8a
3 changed files with 11 additions and 35 deletions

View File

@ -184,12 +184,18 @@ static bool vfio_devices_all_device_dirty_tracking_started(
return true;
}
bool vfio_devices_all_dirty_tracking_started(
const VFIOContainerBase *bcontainer)
{
return vfio_devices_all_device_dirty_tracking_started(bcontainer) ||
bcontainer->dirty_pages_started;
}
static bool vfio_devices_all_dirty_tracking(VFIOContainerBase *bcontainer)
{
VFIODevice *vbasedev;
if (!(vfio_devices_all_device_dirty_tracking_started(bcontainer) ||
bcontainer->dirty_pages_started)) {
if (!vfio_devices_all_dirty_tracking_started(bcontainer)) {
return false;
}
@ -225,36 +231,6 @@ bool vfio_devices_all_device_dirty_tracking(const VFIOContainerBase *bcontainer)
return true;
}
/*
* Check if all VFIO devices are running and migration is active, which is
* essentially equivalent to the migration being in pre-copy phase.
*/
bool
vfio_devices_all_running_and_mig_active(const VFIOContainerBase *bcontainer)
{
VFIODevice *vbasedev;
if (!migration_is_active()) {
return false;
}
QLIST_FOREACH(vbasedev, &bcontainer->device_list, container_next) {
VFIOMigration *migration = vbasedev->migration;
if (!migration) {
return false;
}
if (vfio_device_state_is_running(vbasedev) ||
vfio_device_state_is_precopy(vbasedev)) {
continue;
} else {
return false;
}
}
return true;
}
static bool vfio_listener_skipped_section(MemoryRegionSection *section)
{
return (!memory_region_is_ram(section->mr) &&

View File

@ -131,7 +131,7 @@ static int vfio_legacy_dma_unmap(const VFIOContainerBase *bcontainer,
int ret;
Error *local_err = NULL;
if (iotlb && vfio_devices_all_running_and_mig_active(bcontainer)) {
if (iotlb && vfio_devices_all_dirty_tracking_started(bcontainer)) {
if (!vfio_devices_all_device_dirty_tracking(bcontainer) &&
bcontainer->dirty_pages_supported) {
return vfio_dma_unmap_bitmap(container, iova, size, iotlb);

View File

@ -296,8 +296,8 @@ bool vfio_migration_realize(VFIODevice *vbasedev, Error **errp);
void vfio_migration_exit(VFIODevice *vbasedev);
int vfio_bitmap_alloc(VFIOBitmap *vbmap, hwaddr size);
bool
vfio_devices_all_running_and_mig_active(const VFIOContainerBase *bcontainer);
bool vfio_devices_all_dirty_tracking_started(
const VFIOContainerBase *bcontainer);
bool
vfio_devices_all_device_dirty_tracking(const VFIOContainerBase *bcontainer);
int vfio_devices_query_dirty_bitmap(const VFIOContainerBase *bcontainer,