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LookingGlass/idd/LGInput/CHIDDevice.cpp
Geoffrey McRae 4367fbc277
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[client/idd] input: avoid replaying absolute position
2026-08-09 02:07:38 +10:00

825 lines
24 KiB
C++

/**
* Looking Glass
* Copyright © 2017-2026 The Looking Glass Authors
* https://looking-glass.io
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of the GNU General Public License as published by the Free
* Software Foundation; either version 2 of the License, or (at your option)
* any later version.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
* You should have received a copy of the GNU General Public License along
* with this program; if not, write to the Free Software Foundation, Inc., 59
* Temple Place, Suite 330, Boston, MA 02111-1307 USA
*/
#include "CHIDDevice.h"
#include "CDebug.h"
#include "CSRWLock.h"
#include "HIDReports.h"
#include "ipc/CInputPipeClient.h"
#include <hidport.h>
#include <limits.h>
#include <new>
#include <string.h>
static constexpr USHORT LG_INPUT_VENDOR_ID = 0x0000;
static constexpr USHORT LG_INPUT_PRODUCT_ID = 0x0000;
static constexpr USHORT LG_INPUT_VERSION = 0x0001;
static constexpr size_t REPORT_QUEUE_LENGTH = 64;
static constexpr size_t MOTION_COALESCE_THRESHOLD =
REPORT_QUEUE_LENGTH / 2;
struct HIDQueuedReport
{
UCHAR data[HID_MAX_INPUT_REPORT_SIZE];
bool pureMotion;
size_t size;
};
struct HIDStatistics
{
uint64_t direct;
uint64_t queued;
uint64_t relativeCoalesced;
uint64_t absoluteCoalesced;
uint64_t staleAbsoluteCompacted;
uint64_t keyboardDuplicates;
uint64_t consumerDuplicates;
uint64_t overflows;
uint64_t resetDiscarded;
size_t queueHighWater;
};
struct HIDDeviceContext
{
WDFQUEUE reportQueue;
HID_DEVICE_ATTRIBUTES attributes;
HID_DESCRIPTOR descriptor;
UCHAR keyboardLeds;
SRWLOCK lifecycleLock;
SRWLOCK reportLock;
bool active;
bool stopping;
UCHAR mouseMode;
size_t reportHead;
size_t reportCount;
uint32_t relativeButtons;
uint32_t absoluteButtons;
uint16_t consumerUsage;
uint16_t absoluteX;
uint16_t absoluteY;
HIDStatistics statistics;
HIDQueuedReport reports[REPORT_QUEUE_LENGTH];
CInputPipeClient * inputPipe;
};
WDF_DECLARE_CONTEXT_TYPE_WITH_NAME(HIDDeviceContext, HIDGetDeviceContext);
static SRWLOCK s_deviceLock = SRWLOCK_INIT;
static HIDDeviceContext * s_device = nullptr;
EVT_WDF_IO_QUEUE_IO_DEVICE_CONTROL HIDEvtIoDeviceControl;
EVT_WDF_OBJECT_CONTEXT_CLEANUP HIDEvtReportQueueCleanup;
EVT_WDF_OBJECT_CONTEXT_CLEANUP HIDEvtDeviceCleanup;
EVT_WDF_DEVICE_SELF_MANAGED_IO_INIT HIDEvtSelfManagedIoInit;
EVT_WDF_DEVICE_SELF_MANAGED_IO_CLEANUP HIDEvtSelfManagedIoCleanup;
EVT_WDF_DEVICE_SELF_MANAGED_IO_FLUSH HIDEvtSelfManagedIoFlush;
EVT_WDF_DEVICE_SELF_MANAGED_IO_SUSPEND HIDEvtSelfManagedIoSuspend;
EVT_WDF_DEVICE_SELF_MANAGED_IO_RESTART HIDEvtSelfManagedIoRestart;
static NTSTATUS CopyToRequest(
_In_ WDFREQUEST request,
_In_reads_bytes_(size) const void * buffer,
_In_ size_t size)
{
WDFMEMORY memory;
NTSTATUS status = WdfRequestRetrieveOutputMemory(request, &memory);
if (!NT_SUCCESS(status))
return status;
size_t bufferSize;
WdfMemoryGetBuffer(memory, &bufferSize);
if (bufferSize < size)
return STATUS_BUFFER_TOO_SMALL;
status = WdfMemoryCopyFromBuffer(
memory, 0, const_cast<void *>(buffer), size);
if (NT_SUCCESS(status))
WdfRequestSetInformation(request, size);
return status;
}
static NTSTATUS GetOutputReport(
_In_ WDFREQUEST request,
_Out_ HID_XFER_PACKET * packet)
{
WDFMEMORY memory;
NTSTATUS status = WdfRequestRetrieveOutputMemory(request, &memory);
if (!NT_SUCCESS(status))
return status;
// mshidumdf carries the report ID in the output buffer length.
size_t outputBufferLength;
WdfMemoryGetBuffer(memory, &outputBufferLength);
packet->reportId = static_cast<UCHAR>(outputBufferLength);
status = WdfRequestRetrieveInputMemory(request, &memory);
if (!NT_SUCCESS(status))
return status;
size_t reportSize;
packet->reportBuffer =
static_cast<PUCHAR>(WdfMemoryGetBuffer(memory, &reportSize));
packet->reportBufferLen = static_cast<ULONG>(reportSize);
return STATUS_SUCCESS;
}
static NTSTATUS SetOutputReport(
_In_ WDFQUEUE queue,
_In_ WDFREQUEST request)
{
HID_XFER_PACKET packet = {};
NTSTATUS status = GetOutputReport(request, &packet);
if (!NT_SUCCESS(status))
return status;
if (packet.reportId != HID_REPORT_ID_KEYBOARD ||
packet.reportBufferLen < sizeof(HIDKeyboardLedsReport))
return STATUS_INVALID_PARAMETER;
const HIDKeyboardLedsReport * report =
reinterpret_cast<const HIDKeyboardLedsReport *>(packet.reportBuffer);
if (report->reportId != HID_REPORT_ID_KEYBOARD)
return STATUS_INVALID_PARAMETER;
WDFDEVICE device = WdfIoQueueGetDevice(queue);
HIDGetDeviceContext(device)->keyboardLeds = report->leds;
WdfRequestSetInformation(request, sizeof(*report));
return STATUS_SUCCESS;
}
static void PopReport(
_Inout_ HIDDeviceContext * context,
_Out_ HIDQueuedReport * report)
{
*report = context->reports[context->reportHead];
context->reportHead =
(context->reportHead + 1) % REPORT_QUEUE_LENGTH;
--context->reportCount;
}
static HIDQueuedReport& GetQueuedReport(
_Inout_ HIDDeviceContext * context,
_In_ size_t position)
{
return context->reports[
(context->reportHead + position) % REPORT_QUEUE_LENGTH];
}
static void RemoveQueuedReport(
_Inout_ HIDDeviceContext * context,
_In_ size_t position)
{
for (size_t i = position; i + 1 < context->reportCount; ++i)
GetQueuedReport(context, i) = GetQueuedReport(context, i + 1);
--context->reportCount;
}
static bool CompactStaleMotion(
_Inout_ HIDDeviceContext * context,
_In_ UCHAR incomingReportId)
{
for (size_t i = 0; i < context->reportCount; ++i)
{
HIDQueuedReport& report = GetQueuedReport(context, i);
if (!report.pureMotion ||
report.data[0] != HID_REPORT_ID_MOUSE_ABSOLUTE)
continue;
bool superseded = incomingReportId == HID_REPORT_ID_MOUSE_ABSOLUTE;
for (size_t j = i + 1; !superseded && j < context->reportCount; ++j)
superseded = GetQueuedReport(context, j).data[0] ==
HID_REPORT_ID_MOUSE_ABSOLUTE;
if (superseded)
{
RemoveQueuedReport(context, i);
++context->statistics.staleAbsoluteCompacted;
return true;
}
}
return false;
}
static NTSTATUS QueueReport(
_Inout_ HIDDeviceContext * context,
_In_reads_bytes_(size) const void * data,
_In_ size_t size,
_In_ bool pureMotion)
{
const UCHAR reportId = *static_cast<const UCHAR *>(data);
if (context->reportCount)
{
HIDQueuedReport& tail =
GetQueuedReport(context, context->reportCount - 1);
if (tail.data[0] == reportId)
{
if (reportId == HID_REPORT_ID_MOUSE_RELATIVE &&
context->reportCount >= MOTION_COALESCE_THRESHOLD &&
tail.pureMotion && pureMotion)
{
HIDMouseRelativeReport * previous =
reinterpret_cast<HIDMouseRelativeReport *>(tail.data);
const HIDMouseRelativeReport * current =
static_cast<const HIDMouseRelativeReport *>(data);
const int32_t x = static_cast<int32_t>(previous->x) +
current->x;
const int32_t y = static_cast<int32_t>(previous->y) +
current->y;
if (x >= INT16_MIN && x <= INT16_MAX &&
y >= INT16_MIN && y <= INT16_MAX &&
previous->buttons == current->buttons)
{
previous->x = static_cast<int16_t>(x);
previous->y = static_cast<int16_t>(y);
++context->statistics.relativeCoalesced;
return STATUS_SUCCESS;
}
}
else if (reportId == HID_REPORT_ID_MOUSE_ABSOLUTE &&
tail.pureMotion && pureMotion)
{
const HIDMouseAbsoluteReport * previous =
reinterpret_cast<const HIDMouseAbsoluteReport *>(tail.data);
const HIDMouseAbsoluteReport * current =
static_cast<const HIDMouseAbsoluteReport *>(data);
if (previous->buttons == current->buttons)
{
CopyMemory(tail.data, data, size);
tail.size = size;
++context->statistics.absoluteCoalesced;
return STATUS_SUCCESS;
}
}
else if (reportId == HID_REPORT_ID_KEYBOARD &&
tail.size == size && memcmp(tail.data, data, size) == 0)
{
++context->statistics.keyboardDuplicates;
return STATUS_SUCCESS;
}
}
}
if (context->reportCount == REPORT_QUEUE_LENGTH)
{
if (!CompactStaleMotion(context, reportId))
{
++context->statistics.overflows;
return STATUS_BUFFER_OVERFLOW;
}
}
const size_t index =
(context->reportHead + context->reportCount) % REPORT_QUEUE_LENGTH;
HIDQueuedReport * report = &context->reports[index];
CopyMemory(report->data, data, size);
report->size = size;
report->pureMotion = pureMotion;
++context->reportCount;
++context->statistics.queued;
if (context->reportCount > context->statistics.queueHighWater)
context->statistics.queueHighWater = context->reportCount;
return STATUS_SUCCESS;
}
static NTSTATUS ReadReport(
_In_ HIDDeviceContext * context,
_In_ WDFREQUEST request,
_Out_ bool * complete)
{
HIDQueuedReport report = {};
bool haveReport = false;
*complete = true;
NTSTATUS status;
{
CSRWExclusiveLock lock(&context->reportLock);
if (context->stopping || !context->active)
status = STATUS_DEVICE_NOT_READY;
else if (context->reportCount)
{
PopReport(context, &report);
haveReport = true;
status = STATUS_SUCCESS;
}
else
{
status = WdfRequestForwardToIoQueue(request, context->reportQueue);
*complete = !NT_SUCCESS(status);
}
}
if (haveReport)
status = CopyToRequest(request, report.data, report.size);
return status;
}
static NTSTATUS ActivateDevice(_Inout_ HIDDeviceContext * context)
{
CSRWExclusiveLock lifecycleLock(&context->lifecycleLock);
CSRWExclusiveLock lock(&context->reportLock);
if (context->stopping)
return STATUS_DEVICE_NOT_READY;
WdfIoQueueStart(context->reportQueue);
context->active = true;
return STATUS_SUCCESS;
}
static NTSTATUS DeactivateDevice(_Inout_ HIDDeviceContext * context)
{
CSRWExclusiveLock lifecycleLock(&context->lifecycleLock);
{
CSRWExclusiveLock lock(&context->reportLock);
if (context->stopping)
return STATUS_DEVICE_NOT_READY;
context->active = false;
context->reportHead = 0;
context->reportCount = 0;
context->consumerUsage = UINT16_MAX;
}
WdfIoQueuePurgeSynchronously(context->reportQueue);
return STATUS_SUCCESS;
}
static NTSTATUS CreateQueues(_In_ WDFDEVICE device)
{
WDF_IO_QUEUE_CONFIG queueConfig;
WDF_IO_QUEUE_CONFIG_INIT_DEFAULT_QUEUE(
&queueConfig, WdfIoQueueDispatchParallel);
queueConfig.EvtIoDeviceControl = HIDEvtIoDeviceControl;
NTSTATUS status = WdfIoQueueCreate(
device, &queueConfig, WDF_NO_OBJECT_ATTRIBUTES, WDF_NO_HANDLE);
if (!NT_SUCCESS(status))
return status;
WDF_IO_QUEUE_CONFIG_INIT(&queueConfig, WdfIoQueueDispatchManual);
WDF_OBJECT_ATTRIBUTES queueAttributes;
WDF_OBJECT_ATTRIBUTES_INIT(&queueAttributes);
queueAttributes.EvtCleanupCallback = HIDEvtReportQueueCleanup;
return WdfIoQueueCreate(
device,
&queueConfig,
&queueAttributes,
&HIDGetDeviceContext(device)->reportQueue);
}
NTSTATUS CHIDDevice::Create(_Inout_ PWDFDEVICE_INIT deviceInit)
{
WdfFdoInitSetFilter(deviceInit);
WDF_PNPPOWER_EVENT_CALLBACKS pnpPowerCallbacks;
WDF_PNPPOWER_EVENT_CALLBACKS_INIT(&pnpPowerCallbacks);
pnpPowerCallbacks.EvtDeviceSelfManagedIoInit = HIDEvtSelfManagedIoInit;
pnpPowerCallbacks.EvtDeviceSelfManagedIoCleanup =
HIDEvtSelfManagedIoCleanup;
pnpPowerCallbacks.EvtDeviceSelfManagedIoFlush = HIDEvtSelfManagedIoFlush;
pnpPowerCallbacks.EvtDeviceSelfManagedIoSuspend =
HIDEvtSelfManagedIoSuspend;
pnpPowerCallbacks.EvtDeviceSelfManagedIoRestart =
HIDEvtSelfManagedIoRestart;
WdfDeviceInitSetPnpPowerEventCallbacks(deviceInit, &pnpPowerCallbacks);
WDF_OBJECT_ATTRIBUTES attributes;
WDF_OBJECT_ATTRIBUTES_INIT_CONTEXT_TYPE(&attributes, HIDDeviceContext);
attributes.EvtCleanupCallback = HIDEvtDeviceCleanup;
WDFDEVICE device;
NTSTATUS status = WdfDeviceCreate(&deviceInit, &attributes, &device);
if (!NT_SUCCESS(status))
return status;
HIDDeviceContext * context = HIDGetDeviceContext(device);
RtlZeroMemory(context, sizeof(*context));
InitializeSRWLock(&context->lifecycleLock);
InitializeSRWLock(&context->reportLock);
context->active = true;
context->inputPipe = new (std::nothrow) CInputPipeClient;
if (!context->inputPipe)
return STATUS_INSUFFICIENT_RESOURCES;
context->attributes.Size =
static_cast<ULONG>(sizeof(context->attributes));
context->attributes.VendorID = LG_INPUT_VENDOR_ID;
context->attributes.ProductID = LG_INPUT_PRODUCT_ID;
context->attributes.VersionNumber = LG_INPUT_VERSION;
context->descriptor.bLength =
static_cast<UCHAR>(sizeof(context->descriptor));
context->descriptor.bDescriptorType = HID_HID_DESCRIPTOR_TYPE;
context->descriptor.bcdHID = 0x0111;
context->descriptor.bCountry = 0;
context->descriptor.bNumDescriptors = 1;
auto & reportDescriptor = context->descriptor.DescriptorList[0];
reportDescriptor.bReportType = HID_REPORT_DESCRIPTOR_TYPE;
reportDescriptor.wReportLength =
static_cast<USHORT>(HIDGetReportDescriptorSize());
status = CreateQueues(device);
if (!NT_SUCCESS(status))
return status;
{
CSRWExclusiveLock lock(&s_deviceLock);
if (s_device)
{
DEBUG_ERROR("Only one LGInput device instance is supported");
return STATUS_DEVICE_BUSY;
}
s_device = context;
}
return STATUS_SUCCESS;
}
NTSTATUS CHIDDevice::SubmitReport(
_In_reads_bytes_(size) const void * report,
_In_ size_t size)
{
if (!report || !size)
return STATUS_INVALID_PARAMETER;
const UCHAR reportId = *static_cast<const UCHAR *>(report);
if (HIDGetInputReportSize(reportId) != size)
return STATUS_INVALID_PARAMETER;
CSRWSharedLock deviceLock(&s_deviceLock);
HIDDeviceContext * context = s_device;
if (!context)
return STATUS_DEVICE_NOT_READY;
WDFREQUEST request = nullptr;
NTSTATUS status;
{
CSRWExclusiveLock reportLock(&context->reportLock);
if (context->stopping || !context->active)
status = STATUS_DEVICE_NOT_READY;
else
{
if (reportId == HID_REPORT_ID_CONSUMER &&
context->consumerUsage ==
static_cast<const HIDConsumerReport *>(report)->usage)
{
++context->statistics.consumerDuplicates;
return STATUS_SUCCESS;
}
bool pureMotion = false;
switch (reportId)
{
case HID_REPORT_ID_MOUSE_RELATIVE:
{
const HIDMouseRelativeReport * mouse =
static_cast<const HIDMouseRelativeReport *>(report);
pureMotion = context->mouseMode == reportId &&
(mouse->x != 0 || mouse->y != 0 || mouse->buttons != 0) &&
mouse->wheel == 0 &&
mouse->buttons == context->relativeButtons;
break;
}
case HID_REPORT_ID_MOUSE_ABSOLUTE:
{
const HIDMouseAbsoluteReport * mouse =
static_cast<const HIDMouseAbsoluteReport *>(report);
pureMotion = context->mouseMode == reportId &&
(mouse->x != context->absoluteX ||
mouse->y != context->absoluteY || mouse->buttons != 0) &&
mouse->wheel == 0 &&
mouse->buttons == context->absoluteButtons;
break;
}
default:
break;
}
status = WdfIoQueueRetrieveNextRequest(context->reportQueue, &request);
if (status == STATUS_NO_MORE_ENTRIES)
{
request = nullptr;
status = QueueReport(context, report, size, pureMotion);
}
else if (NT_SUCCESS(status))
{
status = CopyToRequest(request, report, size);
if (NT_SUCCESS(status))
++context->statistics.direct;
}
if (NT_SUCCESS(status))
{
switch (reportId)
{
case HID_REPORT_ID_MOUSE_RELATIVE:
context->mouseMode = reportId;
context->relativeButtons =
static_cast<const HIDMouseRelativeReport *>(report)->buttons;
break;
case HID_REPORT_ID_MOUSE_ABSOLUTE:
{
const HIDMouseAbsoluteReport * mouse =
static_cast<const HIDMouseAbsoluteReport *>(report);
context->mouseMode = reportId;
context->absoluteButtons = mouse->buttons;
context->absoluteX = mouse->x;
context->absoluteY = mouse->y;
break;
}
case HID_REPORT_ID_CONSUMER:
context->consumerUsage =
static_cast<const HIDConsumerReport *>(report)->usage;
break;
default:
break;
}
}
}
}
if (request)
WdfRequestComplete(request, status);
return status;
}
NTSTATUS CHIDDevice::ResetReports()
{
UCHAR mouseMode = 0;
uint32_t mouseButtons = 0;
uint16_t absoluteX = 0;
uint16_t absoluteY = 0;
{
CSRWSharedLock deviceLock(&s_deviceLock);
HIDDeviceContext * context = s_device;
if (!context)
return STATUS_DEVICE_NOT_READY;
CSRWExclusiveLock reportLock(&context->reportLock);
if (context->stopping)
return STATUS_DEVICE_NOT_READY;
mouseMode = context->mouseMode;
mouseButtons = mouseMode == HID_REPORT_ID_MOUSE_ABSOLUTE ?
context->absoluteButtons : context->relativeButtons;
absoluteX = context->absoluteX;
absoluteY = context->absoluteY;
context->statistics.resetDiscarded += context->reportCount;
context->reportHead = 0;
context->reportCount = 0;
context->mouseMode = 0;
context->relativeButtons = 0;
context->absoluteButtons = 0;
context->consumerUsage = UINT16_MAX;
}
const HIDKeyboardReport keyboard = {
HID_REPORT_ID_KEYBOARD,
};
const HIDConsumerReport consumer = {
HID_REPORT_ID_CONSUMER,
};
NTSTATUS status = STATUS_SUCCESS;
if (mouseButtons)
{
switch (mouseMode)
{
case HID_REPORT_ID_MOUSE_RELATIVE:
{
const HIDMouseRelativeReport relative = {
HID_REPORT_ID_MOUSE_RELATIVE,
0,
0,
0,
0,
};
status = SubmitReport(&relative, sizeof(relative));
break;
}
case HID_REPORT_ID_MOUSE_ABSOLUTE:
{
const HIDMouseAbsoluteReport absolute = {
HID_REPORT_ID_MOUSE_ABSOLUTE,
0,
absoluteX,
absoluteY,
0,
};
status = SubmitReport(&absolute, sizeof(absolute));
break;
}
default:
break;
}
}
const NTSTATUS keyboardStatus =
SubmitReport(&keyboard, sizeof(keyboard));
if (NT_SUCCESS(status))
status = keyboardStatus;
const NTSTATUS consumerStatus =
SubmitReport(&consumer, sizeof(consumer));
if (NT_SUCCESS(status))
status = consumerStatus;
return status;
}
void CHIDDevice::LogStatistics()
{
HIDStatistics statistics = {};
{
CSRWSharedLock deviceLock(&s_deviceLock);
HIDDeviceContext * context = s_device;
if (!context)
return;
CSRWExclusiveLock reportLock(&context->reportLock);
statistics = context->statistics;
context->statistics = {};
context->statistics.queueHighWater = context->reportCount;
}
if (!(statistics.direct || statistics.queued ||
statistics.relativeCoalesced || statistics.absoluteCoalesced ||
statistics.staleAbsoluteCompacted ||
statistics.keyboardDuplicates || statistics.consumerDuplicates ||
statistics.overflows || statistics.resetDiscarded))
return;
DEBUG_TRACE("HID reports: %llu direct, %llu queued, peak %zu; "
"%llu relative and %llu absolute coalesced, %llu stale absolute "
"compacted, %llu keyboard and %llu consumer duplicates, "
"%llu overflows, %llu discarded on reset",
static_cast<unsigned long long>(statistics.direct),
static_cast<unsigned long long>(statistics.queued),
statistics.queueHighWater,
static_cast<unsigned long long>(statistics.relativeCoalesced),
static_cast<unsigned long long>(statistics.absoluteCoalesced),
static_cast<unsigned long long>(statistics.staleAbsoluteCompacted),
static_cast<unsigned long long>(statistics.keyboardDuplicates),
static_cast<unsigned long long>(statistics.consumerDuplicates),
static_cast<unsigned long long>(statistics.overflows),
static_cast<unsigned long long>(statistics.resetDiscarded));
}
VOID HIDEvtIoDeviceControl(
_In_ WDFQUEUE queue,
_In_ WDFREQUEST request,
_In_ size_t outputBufferLength,
_In_ size_t inputBufferLength,
_In_ ULONG ioControlCode)
{
UNREFERENCED_PARAMETER(outputBufferLength);
UNREFERENCED_PARAMETER(inputBufferLength);
HIDDeviceContext * context =
HIDGetDeviceContext(WdfIoQueueGetDevice(queue));
NTSTATUS status;
bool complete = true;
switch (ioControlCode)
{
case IOCTL_HID_GET_DEVICE_DESCRIPTOR:
status = CopyToRequest(
request, &context->descriptor, context->descriptor.bLength);
break;
case IOCTL_HID_GET_DEVICE_ATTRIBUTES:
status = CopyToRequest(
request, &context->attributes, sizeof(context->attributes));
break;
case IOCTL_HID_GET_REPORT_DESCRIPTOR:
status = CopyToRequest(
request, HIDGetReportDescriptor(), HIDGetReportDescriptorSize());
break;
case IOCTL_HID_READ_REPORT:
status = ReadReport(context, request, &complete);
break;
case IOCTL_HID_WRITE_REPORT:
case IOCTL_UMDF_HID_SET_OUTPUT_REPORT:
status = SetOutputReport(queue, request);
break;
case IOCTL_HID_ACTIVATE_DEVICE:
status = ActivateDevice(context);
break;
case IOCTL_HID_DEACTIVATE_DEVICE:
status = DeactivateDevice(context);
break;
default:
status = STATUS_NOT_SUPPORTED;
break;
}
if (complete)
WdfRequestComplete(request, status);
}
VOID HIDEvtReportQueueCleanup(_In_ WDFOBJECT object)
{
HIDDeviceContext * context =
HIDGetDeviceContext(WdfIoQueueGetDevice((WDFQUEUE)object));
CSRWExclusiveLock deviceLock(&s_deviceLock);
if (s_device == context)
s_device = nullptr;
{
CSRWExclusiveLock reportLock(&context->reportLock);
context->stopping = true;
context->reportHead = 0;
context->reportCount = 0;
}
}
VOID HIDEvtDeviceCleanup(_In_ WDFOBJECT object)
{
HIDDeviceContext * context = HIDGetDeviceContext((WDFDEVICE)object);
if (context->inputPipe)
{
context->inputPipe->Stop();
delete context->inputPipe;
context->inputPipe = nullptr;
}
CSRWExclusiveLock deviceLock(&s_deviceLock);
if (s_device == context)
s_device = nullptr;
}
NTSTATUS HIDEvtSelfManagedIoInit(_In_ WDFDEVICE device)
{
HIDDeviceContext * context = HIDGetDeviceContext(device);
if (!context->inputPipe || !context->inputPipe->Start())
{
DEBUG_ERROR("Failed to start the LGIdd input pipe client");
return STATUS_INSUFFICIENT_RESOURCES;
}
return STATUS_SUCCESS;
}
VOID HIDEvtSelfManagedIoCleanup(_In_ WDFDEVICE device)
{
HIDDeviceContext * context = HIDGetDeviceContext(device);
if (context->inputPipe)
context->inputPipe->Stop();
}
VOID HIDEvtSelfManagedIoFlush(_In_ WDFDEVICE device)
{
HIDDeviceContext * context = HIDGetDeviceContext(device);
if (context->inputPipe)
context->inputPipe->Stop();
}
NTSTATUS HIDEvtSelfManagedIoSuspend(_In_ WDFDEVICE device)
{
HIDDeviceContext * context = HIDGetDeviceContext(device);
if (context->inputPipe)
context->inputPipe->Stop();
return STATUS_SUCCESS;
}
NTSTATUS HIDEvtSelfManagedIoRestart(_In_ WDFDEVICE device)
{
HIDDeviceContext * context = HIDGetDeviceContext(device);
if (!context->inputPipe || !context->inputPipe->Start())
{
DEBUG_ERROR("Failed to restart the LGIdd input pipe client");
return STATUS_INSUFFICIENT_RESOURCES;
}
return STATUS_SUCCESS;
}