2 * COPYRIGHT: See COPYING in the top level directory
3 * PROJECT: ReactOS Kernel Streaming
4 * FILE: drivers/wdm/audio/backpln/portcls/irpstream.cpp
5 * PURPOSE: IRP Stream handling
6 * PROGRAMMER: Johannes Anderwald
12 class CIrpQueue
: public IIrpQueue
15 STDMETHODIMP
QueryInterface( REFIID InterfaceId
, PVOID
* Interface
);
17 STDMETHODIMP_(ULONG
) AddRef()
19 InterlockedIncrement(&m_Ref
);
22 STDMETHODIMP_(ULONG
) Release()
24 InterlockedDecrement(&m_Ref
);
34 CIrpQueue(IUnknown
*OuterUnknown
){}
35 virtual ~CIrpQueue(){}
38 volatile ULONG m_CurrentOffset
;
40 ULONG m_NumDataAvailable
;
42 PKSPIN_CONNECT m_ConnectDetails
;
43 PKSDATAFORMAT_WAVEFORMATEX m_DataFormat
;
45 KSPIN_LOCK m_IrpListLock
;
47 LIST_ENTRY m_FreeIrpList
;
49 PVOID m_SilenceBuffer
;
54 ULONG m_MinimumDataThreshold
;
60 #define OFFSET_HEADERINDEX (0)
61 #define OFFSET_STREAMHEADER (2)
62 #define OFFSET_HEADERCOUNT (3)
65 #define STREAMHEADER_INDEX(Irp) (PtrToUlong(Irp->Tail.Overlay.DriverContext[OFFSET_HEADERINDEX]))
66 #define STREAMHEADER_COUNT(Irp) (PtrToUlong(Irp->Tail.Overlay.DriverContext[OFFSET_HEADERCOUNT]))
67 #define STREAMHEADER_CURRENT(Irp) (Irp->Tail.Overlay.DriverContext[OFFSET_STREAMHEADER])
72 CIrpQueue::QueryInterface(
76 if (IsEqualGUIDAligned(refiid
, IID_IUnknown
))
78 *Output
= PVOID(PUNKNOWN(this));
79 PUNKNOWN(*Output
)->AddRef();
80 return STATUS_SUCCESS
;
83 return STATUS_UNSUCCESSFUL
;
89 IN KSPIN_CONNECT
*ConnectDetails
,
90 IN PKSDATAFORMAT DataFormat
,
91 IN PDEVICE_OBJECT DeviceObject
,
94 IN PVOID SilenceBuffer
)
96 m_ConnectDetails
= ConnectDetails
;
97 m_DataFormat
= (PKSDATAFORMAT_WAVEFORMATEX
)DataFormat
;
98 m_MaxFrameSize
= FrameSize
;
99 m_SilenceBuffer
= SilenceBuffer
;
100 m_Alignment
= Alignment
;
101 m_MinimumDataThreshold
= ((PKSDATAFORMAT_WAVEFORMATEX
)DataFormat
)->WaveFormatEx
.nAvgBytesPerSec
/ 3;
103 InitializeListHead(&m_IrpList
);
104 InitializeListHead(&m_FreeIrpList
);
105 KeInitializeSpinLock(&m_IrpListLock
);
107 return STATUS_SUCCESS
;
112 CIrpQueue::AddMapping(
116 PKSSTREAM_HEADER Header
;
117 NTSTATUS Status
= STATUS_SUCCESS
;
118 PIO_STACK_LOCATION IoStack
;
119 ULONG NumHeaders
, NumData
, Index
;
122 PC_ASSERT(KeGetCurrentIrql() == PASSIVE_LEVEL
);
124 // get current irp stack location
125 IoStack
= IoGetCurrentIrpStackLocation(Irp
);
127 if (!Irp
->MdlAddress
)
129 // ioctl from KsStudio
130 // Wdmaud already probes buffers, therefore no need to probe it again
131 // probe the stream irp
132 if (IoStack
->Parameters
.DeviceIoControl
.IoControlCode
== IOCTL_KS_WRITE_STREAM
)
133 Status
= KsProbeStreamIrp(Irp
, KSSTREAM_WRITE
| KSPROBE_ALLOCATEMDL
| KSPROBE_PROBEANDLOCK
| KSPROBE_SYSTEMADDRESS
, 0);
134 else if (IoStack
->Parameters
.DeviceIoControl
.IoControlCode
== IOCTL_KS_READ_STREAM
)
135 Status
= KsProbeStreamIrp(Irp
, KSSTREAM_READ
| KSPROBE_ALLOCATEMDL
| KSPROBE_PROBEANDLOCK
| KSPROBE_SYSTEMADDRESS
, 0);
140 if (!NT_SUCCESS(Status
))
142 DPRINT("KsProbeStreamIrp failed with %x\n", Status
);
147 // get first stream header
149 if (Irp
->RequestorMode
== UserMode
)
150 Header
= (PKSSTREAM_HEADER
)Irp
->AssociatedIrp
.SystemBuffer
;
152 Header
= (PKSSTREAM_HEADER
)Irp
->UserBuffer
;
157 // calculate num headers
158 NumHeaders
= IoStack
->Parameters
.DeviceIoControl
.OutputBufferLength
/ Header
->Size
;
160 // assume headers of same length
161 PC_ASSERT(IoStack
->Parameters
.DeviceIoControl
.OutputBufferLength
% Header
->Size
== 0);
164 // get first audio buffer
165 Mdl
= Irp
->MdlAddress
;
169 // store the current stream header
170 Irp
->Tail
.Overlay
.DriverContext
[OFFSET_STREAMHEADER
] = (PVOID
)Header
;
171 // store header count
172 Irp
->Tail
.Overlay
.DriverContext
[OFFSET_HEADERCOUNT
] = UlongToPtr(NumHeaders
);
174 // store current header index
175 Irp
->Tail
.Overlay
.DriverContext
[OFFSET_HEADERINDEX
] = UlongToPtr(0);
178 // prepare all headers
179 for(Index
= 0; Index
< NumHeaders
; Index
++)
185 if (Irp
->RequestorMode
== UserMode
)
187 Header
->Data
= MmGetSystemAddressForMdlSafe(Mdl
, NormalPagePriority
);
192 // insufficient resources
193 ExFreePool(Irp
->AssociatedIrp
.SystemBuffer
);
194 Irp
->AssociatedIrp
.SystemBuffer
= NULL
;
195 // complete and forget request
196 Irp
->IoStatus
.Status
= STATUS_INSUFFICIENT_RESOURCES
;
197 Irp
->IoStatus
.Information
= 0;
199 IoCompleteRequest(Irp
, IO_NO_INCREMENT
);
200 return STATUS_INSUFFICIENT_RESOURCES
;
203 // increment num mappings
204 InterlockedIncrement(&m_NumMappings
);
206 // increment available data
207 InterlockedExchangeAdd((PLONG
)&m_NumDataAvailable
,
208 (max(Header
->DataUsed
, Header
->FrameExtent
)));
210 NumData
+= max(Header
->DataUsed
, Header
->FrameExtent
);
212 // move to next header
213 Header
= (PKSSTREAM_HEADER
)((ULONG_PTR
)Header
+ Header
->Size
);
219 DPRINT("StreamHeaders %u NumData %u FrameSize %u NumDataAvailable %u\n", NumHeaders
, NumData
, m_MaxFrameSize
, m_NumDataAvailable
);
222 // mark irp as pending
223 IoMarkIrpPending(Irp
);
225 // add irp to cancelable queue
226 KsAddIrpToCancelableQueue(&m_IrpList
, &m_IrpListLock
, Irp
, KsListEntryTail
, NULL
);
234 CIrpQueue::GetMapping(
236 OUT PULONG BufferSize
)
240 //PIO_STACK_LOCATION IoStack;
241 PKSSTREAM_HEADER StreamHeader
;
243 // check if there is an irp in the partially processed
247 if (m_Irp
->Cancel
== FALSE
)
250 Offset
= m_CurrentOffset
;
254 // irp has been cancelled
255 m_Irp
->IoStatus
.Status
= STATUS_CANCELLED
;
256 IoCompleteRequest(m_Irp
, IO_NO_INCREMENT
);
262 // get a fresh new irp from the queue
263 m_Irp
= Irp
= KsRemoveIrpFromCancelableQueue(&m_IrpList
, &m_IrpListLock
, KsListEntryHead
, KsAcquireAndRemoveOnlySingleItem
);
264 m_CurrentOffset
= Offset
= 0;
270 // no irp available, use silence buffer
271 *Buffer
= (PUCHAR
)m_SilenceBuffer
;
272 *BufferSize
= m_MaxFrameSize
;
273 // flag for port wave pci driver
274 m_OutOfMapping
= TRUE
;
275 // indicate flag to restart fast buffering
276 m_StartStream
= FALSE
;
277 return STATUS_SUCCESS
;
281 StreamHeader
= (PKSSTREAM_HEADER
)Irp
->Tail
.Overlay
.DriverContext
[2];
284 PC_ASSERT(StreamHeader
);
287 if (StreamHeader
->DataUsed
)
288 *BufferSize
= StreamHeader
->DataUsed
- Offset
;
290 *BufferSize
= StreamHeader
->FrameExtent
- Offset
;
292 PC_ASSERT(*BufferSize
);
295 *Buffer
= &((PUCHAR
)StreamHeader
->Data
)[Offset
];
297 // unset flag that no irps are available
298 m_OutOfMapping
= FALSE
;
300 return STATUS_SUCCESS
;
305 CIrpQueue::UpdateMapping(
306 IN ULONG BytesWritten
)
308 PKSSTREAM_HEADER StreamHeader
;
309 ULONG Size
, NumData
, Index
;
313 // silence buffer was used
318 StreamHeader
= (PKSSTREAM_HEADER
)STREAMHEADER_CURRENT(m_Irp
);
321 // ASSERT(StreamHeader);
323 // add to current offset
324 InterlockedExchangeAdd((volatile PLONG
)&m_CurrentOffset
, (LONG
)BytesWritten
);
326 // decrement available data counter
327 m_NumDataAvailable
-= BytesWritten
;
329 if (StreamHeader
->DataUsed
)
330 Size
= StreamHeader
->DataUsed
;
332 Size
= StreamHeader
->FrameExtent
;
336 if (m_CurrentOffset
>= Size
)
338 if (STREAMHEADER_INDEX(m_Irp
) + 1 < STREAMHEADER_COUNT(m_Irp
))
340 // the irp has at least one more stream header
341 m_Irp
->Tail
.Overlay
.DriverContext
[OFFSET_HEADERINDEX
] = UlongToPtr(STREAMHEADER_INDEX(m_Irp
) + 1);
343 // get next stream header
344 StreamHeader
= (PKSSTREAM_HEADER
)((ULONG_PTR
)StreamHeader
+ StreamHeader
->Size
);
346 // store next stream header
347 STREAMHEADER_CURRENT(m_Irp
) = (PVOID
)StreamHeader
;
349 // reset current offset
356 // irp has been processed completly
359 if (m_Irp
->RequestorMode
== KernelMode
)
360 StreamHeader
= (PKSSTREAM_HEADER
)m_Irp
->UserBuffer
;
362 StreamHeader
= (PKSSTREAM_HEADER
)m_Irp
->AssociatedIrp
.SystemBuffer
;
364 // loop all stream headers
365 for(Index
= 0; Index
< STREAMHEADER_COUNT(m_Irp
); Index
++)
367 PC_ASSERT(StreamHeader
);
369 // add size of buffer
370 // depends on if the buffer is input / output
371 if (StreamHeader
->DataUsed
)
372 Size
= StreamHeader
->DataUsed
;
374 Size
= StreamHeader
->FrameExtent
;
379 // get next stream header
380 StreamHeader
= (PKSSTREAM_HEADER
)((ULONG_PTR
)StreamHeader
+ StreamHeader
->Size
);
383 if (m_ConnectDetails
->Interface
.Id
== KSINTERFACE_STANDARD_LOOPED_STREAMING
)
385 // looped streaming repeat the buffers untill
386 // the caller decides to stop the streams
388 // reset stream header index
389 m_Irp
->Tail
.Overlay
.DriverContext
[OFFSET_HEADERINDEX
] = UlongToPtr(0);
391 KsAddIrpToCancelableQueue(&m_IrpList
, &m_IrpListLock
, m_Irp
, KsListEntryTail
, NULL
);
396 // increment available data
397 InterlockedExchangeAdd((PLONG
)&m_NumDataAvailable
, NumData
);
402 m_Irp
->IoStatus
.Status
= STATUS_SUCCESS
;
403 m_Irp
->IoStatus
.Information
= NumData
;
405 // complete the request
406 IoCompleteRequest(m_Irp
, IO_SOUND_INCREMENT
);
407 // remove irp as it is complete
415 CIrpQueue::NumMappings()
418 // returns the amount of mappings available
419 return m_NumMappings
;
426 // returns the amount of audio stream data available
427 return m_NumDataAvailable
;
433 CIrpQueue::MinimumDataAvailable()
440 if (m_MinimumDataThreshold
< m_NumDataAvailable
)
442 m_StartStream
= TRUE
;
454 CIrpQueue::CancelBuffers()
456 // is there an active irp
459 // re-insert it to cancelable queue
460 KsAddIrpToCancelableQueue(&m_IrpList
, &m_IrpListLock
, m_Irp
, KsListEntryTail
, NULL
);
466 KsCancelIo(&m_IrpList
, &m_IrpListLock
);
467 // reset stream start flag
468 m_StartStream
= FALSE
;
475 CIrpQueue::UpdateFormat(
476 PKSDATAFORMAT DataFormat
)
478 m_DataFormat
= (PKSDATAFORMAT_WAVEFORMATEX
)DataFormat
;
479 m_MinimumDataThreshold
= m_DataFormat
->WaveFormatEx
.nAvgBytesPerSec
/ 3;
480 m_StartStream
= FALSE
;
481 m_NumDataAvailable
= 0;
486 CIrpQueue::GetMappingWithTag(
488 OUT PPHYSICAL_ADDRESS PhysicalAddress
,
489 OUT PVOID
*VirtualAddress
,
490 OUT PULONG ByteCount
,
493 PKSSTREAM_HEADER StreamHeader
;
497 PC_ASSERT(Tag
!= NULL
);
499 // get an irp from the queue
500 Irp
= KsRemoveIrpFromCancelableQueue(&m_IrpList
, &m_IrpListLock
, KsListEntryHead
, KsAcquireAndRemoveOnlySingleItem
);
502 // check if there is an irp
506 m_OutOfMapping
= TRUE
;
507 m_StartStream
= FALSE
;
508 return STATUS_UNSUCCESSFUL
;
511 //FIXME support more than one stream header
512 PC_ASSERT(STREAMHEADER_COUNT(Irp
) == 1);
514 // HACK get stream header
515 StreamHeader
= (PKSSTREAM_HEADER
)Irp
->Tail
.Overlay
.DriverContext
[2];
517 // store mapping in the free list
518 ExInterlockedInsertTailList(&m_FreeIrpList
, &Irp
->Tail
.Overlay
.ListEntry
, &m_IrpListLock
);
521 *PhysicalAddress
= MmGetPhysicalAddress(StreamHeader
->Data
);
522 *VirtualAddress
= StreamHeader
->Data
;
523 *ByteCount
= StreamHeader
->DataUsed
;
525 // decrement mapping count
526 InterlockedDecrement(&m_NumMappings
);
527 // decrement num data available
528 m_NumDataAvailable
-= StreamHeader
->DataUsed
;
531 Irp
->Tail
.Overlay
.DriverContext
[3] = Tag
;
534 return STATUS_SUCCESS
;
539 CIrpQueue::ReleaseMappingWithTag(
543 PLIST_ENTRY CurEntry
;
544 PKSSTREAM_HEADER StreamHeader
;
546 DPRINT("CIrpQueue::ReleaseMappingWithTag Tag %p\n", Tag
);
548 // remove irp from used list
549 CurEntry
= ExInterlockedRemoveHeadList(&m_FreeIrpList
, &m_IrpListLock
);
553 // get irp from list entry
554 Irp
= (PIRP
)CONTAINING_RECORD(CurEntry
, IRP
, Tail
.Overlay
.ListEntry
);
556 // HACK get stream header
557 StreamHeader
= (PKSSTREAM_HEADER
)Irp
->Tail
.Overlay
.DriverContext
[2];
559 // driver must release items in the same order
560 PC_ASSERT(Irp
->Tail
.Overlay
.DriverContext
[3] == Tag
);
562 // irp has been processed completly
563 Irp
->IoStatus
.Status
= STATUS_SUCCESS
;
565 // frame extend contains the original request size, DataUsed contains the real buffer size
566 // is different when kmixer performs channel conversion, upsampling etc
568 Irp
->IoStatus
.Information
= StreamHeader
->FrameExtent
;
570 // free stream header, no tag as wdmaud.drv allocates it atm
571 ExFreePool(StreamHeader
);
573 // complete the request
574 IoCompleteRequest(Irp
, IO_SOUND_INCREMENT
);
576 return STATUS_SUCCESS
;
581 CIrpQueue::HasLastMappingFailed()
583 return m_OutOfMapping
;
588 CIrpQueue::GetCurrentIrpOffset()
591 return m_CurrentOffset
;
596 CIrpQueue::SetMinimumDataThreshold(
597 ULONG MinimumDataThreshold
)
600 m_MinimumDataThreshold
= MinimumDataThreshold
;
605 CIrpQueue::GetMinimumDataThreshold()
607 return m_MinimumDataThreshold
;
614 IN IIrpQueue
**Queue
)
616 CIrpQueue
*This
= new(NonPagedPool
, TAG_PORTCLASS
)CIrpQueue(NULL
);
618 return STATUS_INSUFFICIENT_RESOURCES
;
622 *Queue
= (IIrpQueue
*)This
;
623 return STATUS_SUCCESS
;