High Latency on Wdf01000.sys driver causing Real Time Audio Playback issues

Anonymous
2022-12-20T11:06:29+00:00

Hi

I have ran Latency Mon as I am getting issues when using using my Traktor Kontrol s3 DJ controller causing real time audio play back issues and the above driver is reporting Highest execution of over 5.83 which appears to be causing the audio issues - have you any advice on what I can do to improve this?

Windows/drivers/BIOS are all up to date

Info below

SYSTEM INFORMATION

_________________________________________________________________________________________________________

Computer name: LAPTOP-RP5HJ9VC

OS version: Windows 11, 10.0, version 2009, build: 22621 (x64)

Hardware: 81NC, LENOVO

BIOS: AMCN25WW(V1.08)

CPU: AuthenticAMD AMD Ryzen 7 3700U with Radeon Vega Mobile Gfx

Logical processors: 8

Processor groups: 1

Processor group size: 8

RAM: 6082 MB total

CPU SPEED

_________________________________________________________________________________________________________

Reported CPU speed (WMI): 230 MHz

Reported CPU speed (registry): 2296 MHz

Note: reported execution times may be calculated based on a fixed reported CPU speed. Disable variable speed settings like Intel Speed Step and AMD Cool N Quiet in the BIOS setup for more accurate results.

Windows 11 Version 22H2 (OS Build 22621.963)

I am not aware of any changes prior to my my issue

_________________________________________________________________________________________________________

CONCLUSION

_________________________________________________________________________________________________________

Your system appears to be having trouble handling real-time audio and other tasks. You are likely to experience buffer underruns

appearing as drop outs, clicks or pops. One or more DPC routines that belong to a driver running in your system appear to be executing

for too long. One problem may be related to power management, disable CPU throttling settings in Control Panel and BIOS setup. Check for

BIOS updates.

LatencyMon has been analyzing your system for 0:09:40 (h:mm:ss) on all processors.

_________________________________________________________________________________________________________

SYSTEM INFORMATION

_________________________________________________________________________________________________________

Computer name: LAPTOP-RP5HJ9VC

OS version: Windows 11, 10.0, version 2009, build: 22621 (x64)

Hardware: 81NC, LENOVO

BIOS: AMCN25WW(V1.08)

CPU: AuthenticAMD AMD Ryzen 7 3700U with Radeon Vega Mobile Gfx

Logical processors: 8

Processor groups: 1

Processor group size: 8

RAM: 6082 MB total

_________________________________________________________________________________________________________

CPU SPEED

_________________________________________________________________________________________________________

Reported CPU speed (WMI): 230 MHz

Reported CPU speed (registry): 2296 MHz

Note: reported execution times may be calculated based on a fixed reported CPU speed. Disable variable speed settings like Intel Speed

Step and AMD Cool N Quiet in the BIOS setup for more accurate results.

_________________________________________________________________________________________________________

MEASURED INTERRUPT TO USER PROCESS LATENCIES

_________________________________________________________________________________________________________

The interrupt to process latency reflects the measured interval that a usermode process needed to respond to a hardware request from the

moment the interrupt service routine started execution. This includes the scheduling and execution of a DPC routine, the signaling of an

event and the waking up of a usermode thread from an idle wait state in response to that event.

Highest measured interrupt to process latency (µs): 418.20

Average measured interrupt to process latency (µs): 18.544421

Highest measured interrupt to DPC latency (µs): 399.30

Average measured interrupt to DPC latency (µs): 5.148406

_________________________________________________________________________________________________________

REPORTED ISRs

_________________________________________________________________________________________________________

Interrupt service routines are routines installed by the OS and device drivers that execute in response to a hardware interrupt signal.

Highest ISR routine execution time (µs): 72.415941

Driver with highest ISR routine execution time: Wdf01000.sys - Kernel Mode Driver Framework Runtime, Microsoft Corporation

Highest reported total ISR routine time (%): 0.008239

Driver with highest ISR total time: Wdf01000.sys - Kernel Mode Driver Framework Runtime, Microsoft Corporation

Total time spent in ISRs (%) 0.008239

ISR count (execution time <250 µs): 68316

ISR count (execution time 250-500 µs): 0

ISR count (execution time 500-1000 µs): 0

ISR count (execution time 1000-2000 µs): 0

ISR count (execution time 2000-4000 µs): 0

ISR count (execution time >=4000 µs): 0

_________________________________________________________________________________________________________

REPORTED DPCs

_________________________________________________________________________________________________________

DPC routines are part of the interrupt servicing dispatch mechanism and disable the possibility for a process to utilize the CPU while it

is interrupted until the DPC has finished execution.

Highest DPC routine execution time (µs): 5830.930749

Driver with highest DPC routine execution time: Wdf01000.sys - Kernel Mode Driver Framework Runtime, Microsoft Corporation

Highest reported total DPC routine time (%): 0.116586

Driver with highest DPC total execution time: Wdf01000.sys - Kernel Mode Driver Framework Runtime, Microsoft Corporation

Total time spent in DPCs (%) 0.246767

DPC count (execution time <250 µs): 537267

DPC count (execution time 250-500 µs): 0

DPC count (execution time 500-10000 µs): 210

DPC count (execution time 1000-2000 µs): 1

DPC count (execution time 2000-4000 µs): 1

DPC count (execution time >=4000 µs): 1

_________________________________________________________________________________________________________

REPORTED HARD PAGEFAULTS

_________________________________________________________________________________________________________

Hard pagefaults are events that get triggered by making use of virtual memory that is not resident in RAM but backed by a memory mapped

file on disk. The process of resolving the hard pagefault requires reading in the memory from disk while the process is interrupted and

blocked from execution.

NOTE: some processes were hit by hard pagefaults. If these were programs producing audio, they are likely to interrupt the audio stream

resulting in dropouts, clicks and pops. Check the Processes tab to see which programs were hit.

Process with highest pagefault count: msmpeng.exe

Total number of hard pagefaults 49848

Hard pagefault count of hardest hit process: 23033

Number of processes hit: 76

_________________________________________________________________________________________________________

PER CPU DATA

_________________________________________________________________________________________________________

CPU 0 Interrupt cycle time (s): 29.199812

CPU 0 ISR highest execution time (µs): 72.415941

CPU 0 ISR total execution time (s): 0.382205

CPU 0 ISR count: 68295

CPU 0 DPC highest execution time (µs): 5830.930749

CPU 0 DPC total execution time (s): 9.460795

CPU 0 DPC count: 353658

_________________________________________________________________________________________________________

CPU 1 Interrupt cycle time (s): 3.327245

CPU 1 ISR highest execution time (µs): 12.952526

CPU 1 ISR total execution time (s): 0.000158

CPU 1 ISR count: 21

CPU 1 DPC highest execution time (µs): 199.577091

CPU 1 DPC total execution time (s): 0.131493

CPU 1 DPC count: 16616

_________________________________________________________________________________________________________

CPU 2 Interrupt cycle time (s): 5.915394

CPU 2 ISR highest execution time (µs): 0.0

CPU 2 ISR total execution time (s): 0.0

CPU 2 ISR count: 0

CPU 2 DPC highest execution time (µs): 653.486498

CPU 2 DPC total execution time (s): 0.450144

CPU 2 DPC count: 39039

_________________________________________________________________________________________________________

CPU 3 Interrupt cycle time (s): 3.192211

CPU 3 ISR highest execution time (µs): 0.0

CPU 3 ISR total execution time (s): 0.0

CPU 3 ISR count: 0

CPU 3 DPC highest execution time (µs): 76.172474

CPU 3 DPC total execution time (s): 0.154109

CPU 3 DPC count: 17995

_________________________________________________________________________________________________________

CPU 4 Interrupt cycle time (s): 5.699611

CPU 4 ISR highest execution time (µs): 0.0

CPU 4 ISR total execution time (s): 0.0

CPU 4 ISR count: 0

CPU 4 DPC highest execution time (µs): 223.598868

CPU 4 DPC total execution time (s): 0.369758

CPU 4 DPC count: 30900

_________________________________________________________________________________________________________

CPU 5 Interrupt cycle time (s): 4.162972

CPU 5 ISR highest execution time (µs): 0.0

CPU 5 ISR total execution time (s): 0.0

CPU 5 ISR count: 0

CPU 5 DPC highest execution time (µs): 127.471690

CPU 5 DPC total execution time (s): 0.233076

CPU 5 DPC count: 26874

_________________________________________________________________________________________________________

CPU 6 Interrupt cycle time (s): 4.355492

CPU 6 ISR highest execution time (µs): 0.0

CPU 6 ISR total execution time (s): 0.0

CPU 6 ISR count: 0

CPU 6 DPC highest execution time (µs): 195.680314

CPU 6 DPC total execution time (s): 0.374942

CPU 6 DPC count: 31047

_________________________________________________________________________________________________________

CPU 7 Interrupt cycle time (s): 3.526148

CPU 7 ISR highest execution time (µs): 0.0

CPU 7 ISR total execution time (s): 0.0

CPU 7 ISR count: 0

CPU 7 DPC highest execution time (µs): 570.812718

CPU 7 DPC total execution time (s): 0.277543

CPU 7 DPC count: 21351

_________________________________________________________________________________________________________

Windows for home | Windows 11 | Performance and system failures

Locked Question. This question was migrated from the Microsoft Support Community. You can vote on whether it's helpful, but you can't add comments or replies or follow the question.

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73 answers

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  1. Anonymous
    2024-07-13T15:41:32+00:00

    Also I see recomendation use for system process another cores than first or thouse, that not used for another app. Another words - use core that is clean from another process.

    It is my Latency today report after Windows reinstalling with app and data

    _________________________________________________________________________________________________________

    CONCLUSION

    _________________________________________________________________________________________________________

    Your system appears to be suitable for handling real-time audio and other tasks without dropouts.

    LatencyMon has been analyzing your system for 0:02:55 (h:mm:ss) on all processors.

    _________________________________________________________________________________________________________

    SYSTEM INFORMATION

    _________________________________________________________________________________________________________

    Computer name: PC3

    OS version: Windows 11, 10.0, version 2009, build: 22631 (x64)

    Hardware: B650 AORUS ELITE AX, Gigabyte Technology Co., Ltd.

    BIOS: FA2

    CPU: AuthenticAMD AMD Ryzen 5 7500F 6-Core Processor

    Logical processors: 12

    Processor groups: 1

    Processor group size: 12

    RAM: 32405 MB total

    _________________________________________________________________________________________________________

    CPU SPEED

    _________________________________________________________________________________________________________

    Reported CPU speed (WMI): 3701 MHz

    Reported CPU speed (registry): 3693 MHz

    Note: reported execution times may be calculated based on a fixed reported CPU speed. Disable variable speed settings like Intel Speed Step and AMD Cool N Quiet in the

    BIOS setup for more accurate results.

    _________________________________________________________________________________________________________

    MEASURED INTERRUPT TO USER PROCESS LATENCIES

    _________________________________________________________________________________________________________

    The interrupt to process latency reflects the measured interval that a usermode process needed to respond to a hardware request from the moment the interrupt service

    routine started execution. This includes the scheduling and execution of a DPC routine, the signaling of an event and the waking up of a usermode thread from an idle

    wait state in response to that event.

    Highest measured interrupt to process latency (µs): 465.0

    Average measured interrupt to process latency (µs): 13.286383

    Highest measured interrupt to DPC latency (µs): 460.0

    Average measured interrupt to DPC latency (µs): 7.619160

    _________________________________________________________________________________________________________

    REPORTED ISRs

    _________________________________________________________________________________________________________

    Interrupt service routines are routines installed by the OS and device drivers that execute in response to a hardware interrupt signal.

    Highest ISR routine execution time (µs): 27.632277

    Driver with highest ISR routine execution time: HDAudBus.sys - High Definition Audio Bus Driver, Microsoft Corporation

    Highest reported total ISR routine time (%): 0.001383

    Driver with highest ISR total time: Wdf01000.sys - Среда выполнения платформы драйвера режима ядра, Microsoft Corporation

    Total time spent in ISRs (%) 0.001569

    ISR count (execution time <250 µs): 47928

    ISR count (execution time 250-500 µs): 0

    ISR count (execution time 500-1000 µs): 0

    ISR count (execution time 1000-2000 µs): 0

    ISR count (execution time 2000-4000 µs): 0

    ISR count (execution time >=4000 µs): 0

    _________________________________________________________________________________________________________

    REPORTED DPCs

    _________________________________________________________________________________________________________

    DPC routines are part of the interrupt servicing dispatch mechanism and disable the possibility for a process to utilize the CPU while it is interrupted until the DPC

    has finished execution.

    Highest DPC routine execution time (µs): 693.391822

    Driver with highest DPC routine execution time: Wdf01000.sys - Среда выполнения платформы драйвера режима ядра, Microsoft Corporation

    Highest reported total DPC routine time (%): 0.575988

    Driver with highest DPC total execution time: Wdf01000.sys - Среда выполнения платформы драйвера режима ядра, Microsoft Corporation

    Total time spent in DPCs (%) 0.597395

    DPC count (execution time <250 µs): 94023

    DPC count (execution time 250-500 µs): 0

    DPC count (execution time 500-10000 µs): 34282

    DPC count (execution time 1000-2000 µs): 0

    DPC count (execution time 2000-4000 µs): 0

    DPC count (execution time >=4000 µs): 0

    _________________________________________________________________________________________________________

    REPORTED HARD PAGEFAULTS

    _________________________________________________________________________________________________________

    Hard pagefaults are events that get triggered by making use of virtual memory that is not resident in RAM but backed by a memory mapped file on disk. The process of

    resolving the hard pagefault requires reading in the memory from disk while the process is interrupted and blocked from execution.

    NOTE: some processes were hit by hard pagefaults. If these were programs producing audio, they are likely to interrupt the audio stream resulting in dropouts, clicks

    and pops. Check the Processes tab to see which programs were hit.

    Process with highest pagefault count: latmon.exe

    Total number of hard pagefaults 47

    Hard pagefault count of hardest hit process: 9

    Number of processes hit: 6

    _________________________________________________________________________________________________________

    PER CPU DATA

    _________________________________________________________________________________________________________

    CPU 0 Interrupt cycle time (s): 21.684445

    CPU 0 ISR highest execution time (µs): 9.688329

    CPU 0 ISR total execution time (s): 0.029050

    CPU 0 ISR count: 47529

    CPU 0 DPC highest execution time (µs): 693.391822

    CPU 0 DPC total execution time (s): 12.316690

    CPU 0 DPC count: 113572

    _________________________________________________________________________________________________________

    CPU 1 Interrupt cycle time (s): 4.878762

    CPU 1 ISR highest execution time (µs): 27.632277

    CPU 1 ISR total execution time (s): 0.003925

    CPU 1 ISR count: 399

    CPU 1 DPC highest execution time (µs): 462.715408

    CPU 1 DPC total execution time (s): 0.170331

    CPU 1 DPC count: 7608

    _________________________________________________________________________________________________________

    CPU 2 Interrupt cycle time (s): 1.161069

    CPU 2 ISR highest execution time (µs): 0.0

    CPU 2 ISR total execution time (s): 0.0

    CPU 2 ISR count: 0

    CPU 2 DPC highest execution time (µs): 149.933658

    CPU 2 DPC total execution time (s): 0.008039

    CPU 2 DPC count: 979

    _________________________________________________________________________________________________________

    CPU 3 Interrupt cycle time (s): 1.044495

    CPU 3 ISR highest execution time (µs): 0.0

    CPU 3 ISR total execution time (s): 0.0

    CPU 3 ISR count: 0

    CPU 3 DPC highest execution time (µs): 155.614406

    CPU 3 DPC total execution time (s): 0.001355

    CPU 3 DPC count: 198

    _________________________________________________________________________________________________________

    CPU 4 Interrupt cycle time (s): 0.573097

    CPU 4 ISR highest execution time (µs): 0.0

    CPU 4 ISR total execution time (s): 0.0

    CPU 4 ISR count: 0

    CPU 4 DPC highest execution time (µs): 68.960466

    CPU 4 DPC total execution time (s): 0.00170

    CPU 4 DPC count: 258

    _________________________________________________________________________________________________________

    CPU 5 Interrupt cycle time (s): 0.512585

    CPU 5 ISR highest execution time (µs): 0.0

    CPU 5 ISR total execution time (s): 0.0

    CPU 5 ISR count: 0

    CPU 5 DPC highest execution time (µs): 141.547793

    CPU 5 DPC total execution time (s): 0.000562

    CPU 5 DPC count: 79

    _________________________________________________________________________________________________________

    CPU 6 Interrupt cycle time (s): 3.191660

    CPU 6 ISR highest execution time (µs): 0.0

    CPU 6 ISR total execution time (s): 0.0

    CPU 6 ISR count: 0

    CPU 6 DPC highest execution time (µs): 354.881397

    CPU 6 DPC total execution time (s): 0.043139

    CPU 6 DPC count: 4107

    _________________________________________________________________________________________________________

    CPU 7 Interrupt cycle time (s): 3.096684

    CPU 7 ISR highest execution time (µs): 0.0

    CPU 7 ISR total execution time (s): 0.0

    CPU 7 ISR count: 0

    CPU 7 DPC highest execution time (µs): 346.525589

    CPU 7 DPC total execution time (s): 0.014119

    CPU 7 DPC count: 1181

    _________________________________________________________________________________________________________

    CPU 8 Interrupt cycle time (s): 0.253027

    CPU 8 ISR highest execution time (µs): 0.0

    CPU 8 ISR total execution time (s): 0.0

    CPU 8 ISR count: 0

    CPU 8 DPC highest execution time (µs): 35.657460

    CPU 8 DPC total execution time (s): 0.001407

    CPU 8 DPC count: 169

    _________________________________________________________________________________________________________

    CPU 9 Interrupt cycle time (s): 0.238213

    CPU 9 ISR highest execution time (µs): 0.0

    CPU 9 ISR total execution time (s): 0.0

    CPU 9 ISR count: 0

    CPU 9 DPC highest execution time (µs): 30.157054

    CPU 9 DPC total execution time (s): 0.000271

    CPU 9 DPC count: 37

    _________________________________________________________________________________________________________

    CPU 10 Interrupt cycle time (s): 0.349654

    CPU 10 ISR highest execution time (µs): 0.0

    CPU 10 ISR total execution time (s): 0.0

    CPU 10 ISR count: 0

    CPU 10 DPC highest execution time (µs): 151.326293

    CPU 10 DPC total execution time (s): 0.000818

    CPU 10 DPC count: 73

    _________________________________________________________________________________________________________

    CPU 11 Interrupt cycle time (s): 0.343730

    CPU 11 ISR highest execution time (µs): 0.0

    CPU 11 ISR total execution time (s): 0.0

    CPU 11 ISR count: 0

    CPU 11 DPC highest execution time (µs): 28.784457

    CPU 11 DPC total execution time (s): 0.000278

    CPU 11 DPC count: 44

    _________________________________________________________________________________________________________

    I have set off for HDAudBus.sys - High Definition Audio Bus Driver, Microsoft Corporation

    Afer reinstallation Windows it is set on. Need to set off this audio Chanall. There will be more good results for latency.

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  2. Anonymous
    2024-07-13T15:39:51+00:00

    I I found an intermediate but working solution. The first is that I connect my US366 USB card to a fast USB port, to a HOST that does not have any other devices and not via a PCIe expansion card. The second solution is that for playback I use a program that properly performs synchronization, which eliminates the jitter of the sync pulses.

    True, for each file the program requires a significant time delay before playback. App use ASIO drivers.

    ASIO output Bug head Nontallion / WASAPI EXCLUSIVE output Also supports PINK HQ Qctahedron / SSE2 CPU. Supports music format formats WAV FLAC DSD, MP3 CDA, and pursues accurate sound balance by strictly enforcing electronic bit standards based on the internal circuitry of the memory chip. Two output modes are available: High , which output FLOAT32 without changing [ ] the music data, and [Low] and [Super Black] and [Extreme], which output FLOAT32 with low frequency interpolation from the music data.

    Using unique memory manipulation

    techniques, the result is an I2S waveform correction algorithm.

    It is Super Easy Music Player

    App has 3 exe files and start exe file. See Easy_English_Manual_2020.pdf in app derectory.

    Bug head 12.25 x64

    Qctahedron 3.12 x64

    Nontallion 12.25 x64

    Developer information author : Hiroyuki Yokota (oryaaaaa) address: Kuyo-bo, Shinden-cho, Okazaki, Aichi, Japan (444-3174) E-mail: ******@gmail.com Homepage: http://www.mics.ne.jp/~coolverse/
    download link https://www.bytesin.com/software/Download-Bug-head/ -not use Softpedia or Russian jr not Russian links with Emperor player.

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  3. Anonymous
    2024-07-13T11:28:06+00:00

    This is so terrible! I've been away from all Microsoft's products for years but I had to return to Windows 10 a few months ago and I'm telling you I feel like I'm 10 years older. This clicking noise caused by Wdf01000.sys is ruining my life! I'm considering a downgrade to Windows 7 and Nuendo 10!

    Core i5
    16 GB RAM
    Behringer UMC1820

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  4. Anonymous
    2024-07-13T11:03:36+00:00

    I am having a horrible time troubleshooting this, I've even gone so far as to disable or uninstall most of my devices & manage interrupt affinity for the ones that are left, as well as managing process affinity for everything running on my box. The issue with all that, however, is that on restart the Wd01000.sys runtime can choose a different processor or set of processors to clog.

    I have a 12/24 core Ryzen 9 5900X proc, GeForce RTX 3070, and MOTU UltraLite-mk4 and am getting unbelievable audio and video stutters. All the basics have been tried (updating everything & all types of system health scans).

    Is there any tool that will allow me to see what is causing this Kernel Mode Driver Framework Runtime to wait for so long? Something that would allow me to trace the origin of the process or driver that triggered the DPC? And possibly even allow me to see what messages or processes it's waiting for?

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  5. Anonymous
    2024-03-20T14:57:09+00:00

    didnt seem to help me. still getting audio crashes and high dpc latency from tcpip.sys, dxgkrnl.sys and wdf01000.sys. cant figure out what is causing it.

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