From: Wei Liu <[email protected]> Sent: Tuesday, August 11, 2026 10:37 AM > > On Tue, Aug 11, 2026 at 04:10:33PM +0000, Michael Kelley wrote: > > From: [email protected] <[email protected]> Sent: Friday, July 24, 2026 > > 4:09 PM > > > > > > Hyper-V vPCI protocol version 1.5 adds a RESET_DEVICE request for > > > projected > > > PCI functions. Negotiate the new protocol version and issue the request > > > through the vPCI VMBus channel from the PCI controller reset callback. > > > > > > Use the existing VMBus response path. Return -ENOTTY when the host reports > > > STATUS_NOT_SUPPORTED so PCI core may try another reset method. > > > > > > Signed-off-by: Wei Liu <[email protected]> > > > --- > > > Documentation/virt/hyperv/vpci.rst | 2 +- > > > drivers/pci/controller/pci-hyperv.c | 61 +++++++++++++++++++++++++++++ > > > 2 files changed, 62 insertions(+), 1 deletion(-) > > > > > > diff --git a/Documentation/virt/hyperv/vpci.rst > > > b/Documentation/virt/hyperv/vpci.rst > > > index b65b2126ede3..6bfee7225c14 100644 > > > --- a/Documentation/virt/hyperv/vpci.rst > > > +++ b/Documentation/virt/hyperv/vpci.rst > > > @@ -65,7 +65,7 @@ exchange messages with the vPCI VSP for the purpose of > > > setting > > > up and configuring the vPCI device in Linux. Once the device > > > is fully configured in Linux as a PCI device, the VMBus > > > channel is used only if Linux changes the vCPU to be interrupted > > > -in the guest, or if the vPCI device is removed from > > > +in the guest, or if the vPCI device is reset or removed from > > > the VM while the VM is running. The ongoing operation of the > > > device happens directly between the Linux device driver for > > > the device and the hardware, with VMBus and the VMBus channel > > > diff --git a/drivers/pci/controller/pci-hyperv.c > > > b/drivers/pci/controller/pci-hyperv.c > > > index cfc8fa403dad..d3c0fd5e1d8e 100644 > > > --- a/drivers/pci/controller/pci-hyperv.c > > > +++ b/drivers/pci/controller/pci-hyperv.c > > > @@ -68,6 +68,7 @@ enum pci_protocol_version_t { > > > PCI_PROTOCOL_VERSION_1_2 = PCI_MAKE_VERSION(1, 2), /* RS1 */ > > > PCI_PROTOCOL_VERSION_1_3 = PCI_MAKE_VERSION(1, 3), /* Vibranium */ > > > PCI_PROTOCOL_VERSION_1_4 = PCI_MAKE_VERSION(1, 4), /* WS2022 */ > > > + PCI_PROTOCOL_VERSION_1_5 = PCI_MAKE_VERSION(1, 5), /* GE, device > > > reset */ > > > > I wish there were a better way to identify the Hyper-V version than internal > > code names that mean nothing to the Linux community. "GE" refers to > > Germanium, which would be the Build 26100 series, right? > > > > Yes, you're right about Germanium. I see the numbers also match, though > I don't have a clear idea that the numbering will stay the same. > > > > }; > > > > > > #define CPU_AFFINITY_ALL -1ULL > > > @@ -77,6 +78,7 @@ enum pci_protocol_version_t { > > > * first. > > > */ > > > static enum pci_protocol_version_t pci_protocol_versions[] = { > > > + PCI_PROTOCOL_VERSION_1_5, > > > PCI_PROTOCOL_VERSION_1_4, > > > PCI_PROTOCOL_VERSION_1_3, > > > PCI_PROTOCOL_VERSION_1_2, > > > @@ -90,6 +92,7 @@ static enum pci_protocol_version_t > > > pci_protocol_versions[] = { > > > #define MAX_SUPPORTED_MSI_MESSAGES 0x400 > > > > > > #define STATUS_REVISION_MISMATCH 0xC0000059 > > > +#define STATUS_NOT_SUPPORTED 0xC00000BB > > > > > > /* space for 32bit serial number as string */ > > > #define SLOT_NAME_SIZE 11 > > > @@ -136,6 +139,7 @@ enum pci_message_type { > > > PCI_BUS_RELATIONS2 = PCI_MESSAGE_BASE + 0x19, > > > PCI_RESOURCES_ASSIGNED3 = PCI_MESSAGE_BASE + 0x1A, > > > PCI_CREATE_INTERRUPT_MESSAGE3 = PCI_MESSAGE_BASE + 0x1B, > > > + PCI_RESET_DEVICE = PCI_MESSAGE_BASE + 0x1C, > > > PCI_MESSAGE_MAXIMUM > > > }; > > > > > > @@ -1397,10 +1401,66 @@ static int hv_pcifront_write_config(struct > > > pci_bus *bus, unsigned int devfn, > > > return PCIBIOS_SUCCESSFUL; > > > } > > > > > > +static int hv_pcifront_reset(struct pci_dev *pdev, bool probe) > > > +{ > > > + struct hv_pcibus_device *hbus = > > > + container_of(pdev->bus->sysdata, struct hv_pcibus_device, > > > sysdata); > > > + struct pci_child_message reset = {}; > > > + struct hv_pci_compl comp_pkt; > > > + struct pci_packet pkt = { > > > + .completion_func = hv_pci_generic_compl, > > > + .compl_ctxt = &comp_pkt, > > > + }; > > > + enum hv_pcibus_state state; > > > + int ret; > > > + > > > + /* Device reset was added in vPCI protocol version 1.5. */ > > > + if (hbus->protocol_version < PCI_PROTOCOL_VERSION_1_5) > > > + return -ENOTTY; > > > + > > > + /* Hyper-V exposes projected functions directly on the root bus. */ > > > + if (!pci_is_root_bus(pdev->bus)) > > > + return -ENOTTY; > > > + > > > + if (probe) > > > + return 0; > > > + > > > + /* Do not take state_lock: eject holds it while removing/locking pdev. > > > */ > > > + state = READ_ONCE(hbus->state); > > > + if (state != hv_pcibus_probed && state != hv_pcibus_installed) > > > + return -ENODEV; > > > + > > > + init_completion(&comp_pkt.host_event); > > > + reset.message_type.type = PCI_RESET_DEVICE; > > > + reset.wslot.slot = devfn_to_wslot(pdev->devfn); > > > + > > > + ret = vmbus_sendpacket(hbus->hdev->channel, &reset, sizeof(reset), > > > + (unsigned long)&pkt, VM_PKT_DATA_INBAND, > > > + VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED); > > > + if (ret) > > > + return ret; > > > + > > > + ret = wait_for_response(hbus->hdev, &comp_pkt.host_event); > > > + if (ret) > > > + return ret; > > > + > > > + if (comp_pkt.completion_status == STATUS_NOT_SUPPORTED) > > > + return -ENOTTY; > > > > I tried this patch series in a linux-next20260726 build, and running on a > > D16lds v6 > > VM in Azure. The host hypervisor version is 10.0.26100.1652-1-0, and the VM > > has a paravisor with HvLite. > > > > This VM has an NVMe OS disk, two NVMe temp disks, and a MANA network > > controller. > > Absent this patch set, the temp disks and MANA report the "reset_method" as > > "flr", > > while the NVMe OS disk reports no reset methods. With this patch set, > > "controller" > > is added as a reset method for all. The NVMe disks and MANA network > > controller > > are probed with PCI protocol 1.5. That's all good and as expected (though > > I'm not > > sure why the NVMe OS disk doesn't support flr). > > > > I then did "echo 1 >reset" for the NVMe OS disk. This returns a -ENOTTY > > error > > from the above line of code. So the host hypervisor (or paravisor?) is > > saying that > > the new PCI_RESET_DEVICE message isn't supported. Presumably this is new > > functionality that hasn’t been rolled out to where I'm running this Azure > > VM. > > That's fine too. > > > > That's right. It is not yet rolled out. > > > But interestingly, the NVMe OS disk did a Linux-side reset anyway. That's > > because of this stack trace from the "echo 1 >reset" command: > > > > [ 99.642483] nvme_try_sched_reset+0x25/0x60 [nvme_core] > > [ 99.642495] nvme_reset_done+0x1c/0x40 [nvme] > > [ 99.642499] pci_dev_restore+0x35/0x70 > > [ 99.642503] pci_reset_function+0x100/0x140 > > [ 99.642506] reset_store+0x5a/0xa0 > > [ 99.642508] dev_attr_store+0x16/0x30 > > [ 99.642512] sysfs_kf_write+0x71/0x80 > > [ 99.642516] kernfs_fop_write_iter+0x140/0x1d0 > > [ 99.642518] vfs_write+0x313/0x420 > > [ 99.642522] ksys_write+0x68/0xe0 > > [ 99.642525] __x64_sys_write+0x18/0x20 > > [ 99.642527] x64_sys_call+0x1700/0x21c0 > > [ 99.642530] do_syscall_64+0x8d/0x440 > > [ 99.642532] entry_SYSCALL_64_after_hwframe+0x76/0x7e > > > > Even though __pci_reset_function_locked() failed, the subsequent > > code in pci_reset_function() calls nvme_try_sched_reset(), which puts > > nvme_reset_work() on a workqueue. nvme_reset_work() tears > > things down on the Linux side and rebuilds, and the message > > > > nvme nvme0: 16/0/0 default/read/poll queues > > > > is output. > > > > It's not immediately clear to me how to resolve this issue, so > > I'm just pointing it out. :-( > > > > Is resetting the OS disk a real use case?
Perhaps not. However, the same behavior occurs with the NVMe temp disks if "flr" is removed from "reset_modes" so that the "controller" method is used. I was just trying to see how this new controller method behaves, and the result seemed anomalous. Using the "controller" method against the MANA device (again presumably with a "not supported" reply from Hyper-V) produced a hung MANA that I couldn't recover without rebooting the VM. I did not try to sort out what when wrong there. > > I'm not sure what magic is happening behind this. > FWIW, I don't think anything is happening on the Hyper-V host side. Hyper-V says PCI_RESET_DEVICE isn't supported and then just goes on normally. But the Linux path through pci_reset_function() and the NVMe driver does its reset handling even if none of the available reset methods succeed. Arguably that's independent of your patch set, though the existence of Hyper-V versions that support vPCI protocol 1.5 but not PCI_RESET_DEVICE could make the problem more likely. Michael

