a8c2454d52
Change-Id: Ie101eb355887072b2ab92f489b86115a40952bd1
284 lines
13 KiB
C++
284 lines
13 KiB
C++
/*
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* Copyright (C) 2009 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef HARDWARE_API_H_
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#define HARDWARE_API_H_
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#include <media/hardware/OMXPluginBase.h>
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#include <media/hardware/MetadataBufferType.h>
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#include <system/window.h>
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#include <utils/RefBase.h>
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#include <OMX_Component.h>
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namespace android {
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// A pointer to this struct is passed to the OMX_SetParameter when the extension
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// index for the 'OMX.google.android.index.enableAndroidNativeBuffers' extension
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// is given.
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//
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// When Android native buffer use is disabled for a port (the default state),
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// the OMX node should operate as normal, and expect UseBuffer calls to set its
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// buffers. This is the mode that will be used when CPU access to the buffer is
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// required.
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//
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// When Android native buffer use has been enabled for a given port, the video
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// color format for the port is to be interpreted as an Android pixel format
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// rather than an OMX color format. Enabling Android native buffers may also
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// change how the component receives the native buffers. If store-metadata-mode
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// is enabled on the port, the component will receive the buffers as specified
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// in the section below. Otherwise, unless the node supports the
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// 'OMX.google.android.index.useAndroidNativeBuffer2' extension, it should
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// expect to receive UseAndroidNativeBuffer calls (via OMX_SetParameter) rather
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// than UseBuffer calls for that port.
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struct EnableAndroidNativeBuffersParams {
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OMX_U32 nSize;
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OMX_VERSIONTYPE nVersion;
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OMX_U32 nPortIndex;
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OMX_BOOL enable;
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};
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// A pointer to this struct is passed to OMX_SetParameter() when the extension index
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// "OMX.google.android.index.storeMetaDataInBuffers" or
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// "OMX.google.android.index.storeANWBufferInMetadata" is given.
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//
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// When meta data is stored in the video buffers passed between OMX clients
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// and OMX components, interpretation of the buffer data is up to the
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// buffer receiver, and the data may or may not be the actual video data, but
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// some information helpful for the receiver to locate the actual data.
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// The buffer receiver thus needs to know how to interpret what is stored
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// in these buffers, with mechanisms pre-determined externally. How to
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// interpret the meta data is outside of the scope of this parameter.
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//
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// Currently, this is used to pass meta data from video source (camera component, for instance) to
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// video encoder to avoid memcpying of input video frame data, as well as to pass dynamic output
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// buffer to video decoder. To do this, bStoreMetaData is set to OMX_TRUE.
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//
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// If bStoreMetaData is set to false, real YUV frame data will be stored in input buffers, and
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// the output buffers contain either real YUV frame data, or are themselves native handles as
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// directed by enable/use-android-native-buffer parameter settings.
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// In addition, if no OMX_SetParameter() call is made on a port with the corresponding extension
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// index, the component should not assume that the client is not using metadata mode for the port.
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//
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// If the component supports this using the "OMX.google.android.index.storeANWBufferInMetadata"
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// extension and bStoreMetaData is set to OMX_TRUE, data is passed using the VideoNativeMetadata
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// layout as defined below. Each buffer will be accompanied by a fence. The fence must signal
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// before the buffer can be used (e.g. read from or written into). When returning such buffer to
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// the client, component must provide a new fence that must signal before the returned buffer can
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// be used (e.g. read from or written into). The component owns the incoming fenceFd, and must close
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// it when fence has signaled. The client will own and close the returned fence file descriptor.
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//
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// If the component supports this using the "OMX.google.android.index.storeMetaDataInBuffers"
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// extension and bStoreMetaData is set to OMX_TRUE, data is passed using VideoGrallocMetadata
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// (the layout of which is the VideoGrallocMetadata defined below). Camera input can be also passed
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// as "CameraSource", the layout of which is vendor dependent.
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//
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// Metadata buffers are registered with the component using UseBuffer calls, or can be allocated
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// by the component for encoder-metadata-output buffers.
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struct StoreMetaDataInBuffersParams {
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OMX_U32 nSize;
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OMX_VERSIONTYPE nVersion;
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OMX_U32 nPortIndex;
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OMX_BOOL bStoreMetaData;
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};
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// Meta data buffer layout used to transport output frames to the decoder for
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// dynamic buffer handling.
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struct VideoGrallocMetadata {
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MetadataBufferType eType; // must be kMetadataBufferTypeGrallocSource
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buffer_handle_t hHandle;
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};
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// Legacy name for VideoGrallocMetadata struct.
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struct VideoDecoderOutputMetaData {
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MetadataBufferType eType; // must be kMetadataBufferTypeGrallocSource
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buffer_handle_t pHandle;
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};
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struct VideoNativeMetadata {
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MetadataBufferType eType; // must be kMetadataBufferTypeANWBuffer
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struct ANativeWindowBuffer* pBuffer;
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int nFenceFd; // -1 if unused
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};
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// A pointer to this struct is passed to OMX_SetParameter() when the extension
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// index "OMX.google.android.index.prepareForAdaptivePlayback" is given.
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//
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// This method is used to signal a video decoder, that the user has requested
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// seamless resolution change support (if bEnable is set to OMX_TRUE).
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// nMaxFrameWidth and nMaxFrameHeight are the dimensions of the largest
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// anticipated frames in the video. If bEnable is OMX_FALSE, no resolution
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// change is expected, and the nMaxFrameWidth/Height fields are unused.
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//
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// If the decoder supports dynamic output buffers, it may ignore this
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// request. Otherwise, it shall request resources in such a way so that it
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// avoids full port-reconfiguration (due to output port-definition change)
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// during resolution changes.
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//
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// DO NOT USE THIS STRUCTURE AS IT WILL BE REMOVED. INSTEAD, IMPLEMENT
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// METADATA SUPPORT FOR VIDEO DECODERS.
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struct PrepareForAdaptivePlaybackParams {
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OMX_U32 nSize;
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OMX_VERSIONTYPE nVersion;
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OMX_U32 nPortIndex;
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OMX_BOOL bEnable;
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OMX_U32 nMaxFrameWidth;
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OMX_U32 nMaxFrameHeight;
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};
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// A pointer to this struct is passed to OMX_SetParameter when the extension
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// index for the 'OMX.google.android.index.useAndroidNativeBuffer' extension is
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// given. This call will only be performed if a prior call was made with the
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// 'OMX.google.android.index.enableAndroidNativeBuffers' extension index,
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// enabling use of Android native buffers.
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struct UseAndroidNativeBufferParams {
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OMX_U32 nSize;
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OMX_VERSIONTYPE nVersion;
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OMX_U32 nPortIndex;
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OMX_PTR pAppPrivate;
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OMX_BUFFERHEADERTYPE **bufferHeader;
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const sp<ANativeWindowBuffer>& nativeBuffer;
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};
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// A pointer to this struct is passed to OMX_GetParameter when the extension
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// index for the 'OMX.google.android.index.getAndroidNativeBufferUsage'
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// extension is given. The usage bits returned from this query will be used to
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// allocate the Gralloc buffers that get passed to the useAndroidNativeBuffer
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// command.
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struct GetAndroidNativeBufferUsageParams {
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OMX_U32 nSize; // IN
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OMX_VERSIONTYPE nVersion; // IN
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OMX_U32 nPortIndex; // IN
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OMX_U32 nUsage; // OUT
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};
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// An enum OMX_COLOR_FormatAndroidOpaque to indicate an opaque colorformat
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// is declared in media/stagefright/openmax/OMX_IVCommon.h
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// This will inform the encoder that the actual
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// colorformat will be relayed by the GRalloc Buffers.
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// OMX_COLOR_FormatAndroidOpaque = 0x7F000001,
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// A pointer to this struct is passed to OMX_SetParameter when the extension
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// index for the 'OMX.google.android.index.prependSPSPPSToIDRFrames' extension
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// is given.
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// A successful result indicates that future IDR frames will be prefixed by
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// SPS/PPS.
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struct PrependSPSPPSToIDRFramesParams {
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OMX_U32 nSize;
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OMX_VERSIONTYPE nVersion;
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OMX_BOOL bEnable;
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};
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// Structure describing a media image (frame)
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// Currently only supporting YUV
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struct MediaImage {
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enum Type {
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MEDIA_IMAGE_TYPE_UNKNOWN = 0,
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MEDIA_IMAGE_TYPE_YUV,
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};
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enum PlaneIndex {
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Y = 0,
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U,
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V,
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MAX_NUM_PLANES
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};
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Type mType;
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size_t mNumPlanes; // number of planes
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size_t mWidth; // width of largest plane (unpadded, as in nFrameWidth)
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size_t mHeight; // height of largest plane (unpadded, as in nFrameHeight)
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size_t mBitDepth; // useable bit depth
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struct PlaneInfo {
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size_t mOffset; // offset of first pixel of the plane in bytes
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// from buffer offset
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size_t mColInc; // column increment in bytes
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size_t mRowInc; // row increment in bytes
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size_t mHorizSubsampling; // subsampling compared to the largest plane
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size_t mVertSubsampling; // subsampling compared to the largest plane
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};
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PlaneInfo mPlane[MAX_NUM_PLANES];
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};
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// A pointer to this struct is passed to OMX_GetParameter when the extension
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// index for the 'OMX.google.android.index.describeColorFormat'
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// extension is given. This method can be called from any component state
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// other than invalid. The color-format, frame width/height, and stride/
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// slice-height parameters are ones that are associated with a raw video
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// port (input or output), but the stride/slice height parameters may be
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// incorrect. bUsingNativeBuffers is OMX_TRUE if native android buffers will
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// be used (while specifying this color format).
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//
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// The component shall fill out the MediaImage structure that
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// corresponds to the described raw video format, and the potentially corrected
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// stride and slice-height info.
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//
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// The behavior is slightly different if bUsingNativeBuffers is OMX_TRUE,
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// though most implementations can ignore this difference. When using native buffers,
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// the component may change the configured color format to an optimized format.
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// Additionally, when allocating these buffers for flexible usecase, the framework
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// will set the SW_READ/WRITE_OFTEN usage flags. In this case (if bUsingNativeBuffers
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// is OMX_TRUE), the component shall fill out the MediaImage information for the
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// scenario when these SW-readable/writable buffers are locked using gralloc_lock.
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// Note, that these buffers may also be locked using gralloc_lock_ycbcr, which must
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// be supported for vendor-specific formats.
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//
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// For non-YUV packed planar/semiplanar image formats, or if bUsingNativeBuffers
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// is OMX_TRUE and the component does not support this color format with native
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// buffers, the component shall set mNumPlanes to 0, and mType to MEDIA_IMAGE_TYPE_UNKNOWN.
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struct DescribeColorFormatParams {
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OMX_U32 nSize;
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OMX_VERSIONTYPE nVersion;
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// input: parameters from OMX_VIDEO_PORTDEFINITIONTYPE
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OMX_COLOR_FORMATTYPE eColorFormat;
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OMX_U32 nFrameWidth;
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OMX_U32 nFrameHeight;
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OMX_U32 nStride;
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OMX_U32 nSliceHeight;
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OMX_BOOL bUsingNativeBuffers;
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// output: fill out the MediaImage fields
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MediaImage sMediaImage;
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};
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// A pointer to this struct is passed to OMX_SetParameter or OMX_GetParameter
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// when the extension index for the
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// 'OMX.google.android.index.configureVideoTunnelMode' extension is given.
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// If the extension is supported then tunneled playback mode should be supported
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// by the codec. If bTunneled is set to OMX_TRUE then the video decoder should
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// operate in "tunneled" mode and output its decoded frames directly to the
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// sink. In this case nAudioHwSync is the HW SYNC ID of the audio HAL Output
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// stream to sync the video with. If bTunneled is set to OMX_FALSE, "tunneled"
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// mode should be disabled and nAudioHwSync should be ignored.
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// OMX_GetParameter is used to query tunneling configuration. bTunneled should
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// return whether decoder is operating in tunneled mode, and if it is,
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// pSidebandWindow should contain the codec allocated sideband window handle.
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struct ConfigureVideoTunnelModeParams {
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OMX_U32 nSize; // IN
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OMX_VERSIONTYPE nVersion; // IN
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OMX_U32 nPortIndex; // IN
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OMX_BOOL bTunneled; // IN/OUT
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OMX_U32 nAudioHwSync; // IN
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OMX_PTR pSidebandWindow; // OUT
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};
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} // namespace android
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extern android::OMXPluginBase *createOMXPlugin();
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#endif // HARDWARE_API_H_
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