obs-studio/plugins/obs-qsv11/QSV_Encoder_Internal.cpp
Ryan Foster 9b1d6032e3 obs-qsv11: Remove D3D9 fallback
On Windows 10 and up, D3D11 should never fail, so the D3D9 code should
no longer be possible to hit. As far as I can tell, this code was mostly
for Windows 7/8/8.1 and it was part of the initial implementation. It
should no longer be needed.
2023-10-04 15:24:56 -04:00

942 lines
28 KiB
C++

/*
This file is provided under a dual BSD/GPLv2 license. When using or
redistributing this file, you may do so under either license.
GPL LICENSE SUMMARY
Copyright(c) Oct. 2015 Intel Corporation.
This program is free software; you can redistribute it and/or modify
it under the terms of version 2 of the GNU General Public License as
published by the Free Software Foundation.
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.
Contact Information:
Seung-Woo Kim, seung-woo.kim@intel.com
705 5th Ave S #500, Seattle, WA 98104
BSD LICENSE
Copyright(c) <date> Intel Corporation.
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions
are met:
* Redistributions of source code must retain the above copyright
notice, this list of conditions and the following disclaimer.
* Redistributions in binary form must reproduce the above copyright
notice, this list of conditions and the following disclaimer in
the documentation and/or other materials provided with the
distribution.
* Neither the name of Intel Corporation nor the names of its
contributors may be used to endorse or promote products derived
from this software without specific prior written permission.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#include "QSV_Encoder_Internal.h"
#include "QSV_Encoder.h"
#include <vpl/mfxstructures.h>
#include <vpl/mfxvideo++.h>
#include <vpl/mfxdispatcher.h>
#include <obs-module.h>
#define do_log(level, format, ...) \
blog(level, "[qsv encoder: '%s'] " format, "msdk_impl", ##__VA_ARGS__)
#define warn(format, ...) do_log(LOG_WARNING, format, ##__VA_ARGS__)
#define info(format, ...) do_log(LOG_INFO, format, ##__VA_ARGS__)
#define debug(format, ...) do_log(LOG_DEBUG, format, ##__VA_ARGS__)
mfxHDL QSV_Encoder_Internal::g_DX_Handle = NULL;
mfxU16 QSV_Encoder_Internal::g_numEncodersOpen = 0;
QSV_Encoder_Internal::QSV_Encoder_Internal(mfxVersion &version, bool isDGPU)
: m_pmfxSurfaces(NULL),
m_pmfxENC(NULL),
m_nSPSBufferSize(1024),
m_nPPSBufferSize(1024),
m_nTaskPool(0),
m_pTaskPool(NULL),
m_nTaskIdx(0),
m_nFirstSyncTask(0),
m_outBitstream(),
m_isDGPU(isDGPU),
m_sessionData(NULL)
{
mfxVariant tempImpl;
mfxStatus sts;
mfxLoader loader = MFXLoad();
mfxConfig cfg = MFXCreateConfig(loader);
tempImpl.Type = MFX_VARIANT_TYPE_U32;
tempImpl.Data.U32 = MFX_IMPL_TYPE_HARDWARE;
MFXSetConfigFilterProperty(
cfg, (const mfxU8 *)"mfxImplDescription.Impl", tempImpl);
tempImpl.Type = MFX_VARIANT_TYPE_U32;
tempImpl.Data.U32 = INTEL_VENDOR_ID;
MFXSetConfigFilterProperty(
cfg, (const mfxU8 *)"mfxImplDescription.VendorID", tempImpl);
#if defined(_WIN32)
m_bUseD3D11 = true;
m_bUseTexAlloc = true;
tempImpl.Type = MFX_VARIANT_TYPE_U32;
tempImpl.Data.U32 = MFX_ACCEL_MODE_VIA_D3D11;
MFXSetConfigFilterProperty(
cfg, (const mfxU8 *)"mfxImplDescription.AccelerationMode",
tempImpl);
#else
m_bUseTexAlloc = false;
tempImpl.Type = MFX_VARIANT_TYPE_U32;
tempImpl.Data.U32 = MFX_ACCEL_MODE_VIA_VAAPI;
MFXSetConfigFilterProperty(
cfg, (const mfxU8 *)"mfxImplDescription.AccelerationMode",
tempImpl);
#endif
sts = MFXCreateSession(loader, 0, &m_session);
if (sts == MFX_ERR_NONE) {
MFXQueryVersion(m_session, &version);
MFXClose(m_session);
MFXUnload(loader);
blog(LOG_INFO, "\tsurf: %s",
m_bUseTexAlloc ? "Texture" : "SysMem");
m_ver = version;
return;
}
}
QSV_Encoder_Internal::~QSV_Encoder_Internal()
{
if (m_pmfxENC)
ClearData();
}
mfxStatus QSV_Encoder_Internal::Open(qsv_param_t *pParams, enum qsv_codec codec)
{
mfxStatus sts = MFX_ERR_NONE;
#if defined(_WIN32)
if (m_bUseD3D11)
// Use D3D11 surface
sts = Initialize(m_ver, &m_session, &m_mfxAllocator,
&g_DX_Handle, false, codec, &m_sessionData);
else
sts = Initialize(m_ver, &m_session, NULL, NULL, NULL, codec,
&m_sessionData);
#else
sts = Initialize(m_ver, &m_session, NULL, NULL, false, codec,
&m_sessionData);
#endif
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
m_pmfxENC = new MFXVideoENCODE(m_session);
InitParams(pParams, codec);
sts = m_pmfxENC->Query(&m_mfxEncParams, &m_mfxEncParams);
MSDK_IGNORE_MFX_STS(sts, MFX_WRN_INCOMPATIBLE_VIDEO_PARAM);
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
sts = AllocateSurfaces();
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
sts = m_pmfxENC->Init(&m_mfxEncParams);
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
sts = GetVideoParam(codec);
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
sts = InitBitstream();
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
if (sts >= MFX_ERR_NONE) {
g_numEncodersOpen++;
}
return sts;
}
mfxStatus QSV_Encoder_Internal::InitParams(qsv_param_t *pParams,
enum qsv_codec codec)
{
memset(&m_mfxEncParams, 0, sizeof(m_mfxEncParams));
if (codec == QSV_CODEC_AVC)
m_mfxEncParams.mfx.CodecId = MFX_CODEC_AVC;
else if (codec == QSV_CODEC_AV1)
m_mfxEncParams.mfx.CodecId = MFX_CODEC_AV1;
else if (codec == QSV_CODEC_HEVC)
m_mfxEncParams.mfx.CodecId = MFX_CODEC_HEVC;
if (codec == QSV_CODEC_HEVC) {
m_mfxEncParams.mfx.NumSlice = 0;
m_mfxEncParams.mfx.IdrInterval = 1;
} else {
m_mfxEncParams.mfx.NumSlice = 1;
}
m_mfxEncParams.mfx.TargetUsage = pParams->nTargetUsage;
m_mfxEncParams.mfx.CodecProfile = pParams->nCodecProfile;
m_mfxEncParams.mfx.FrameInfo.FrameRateExtN = pParams->nFpsNum;
m_mfxEncParams.mfx.FrameInfo.FrameRateExtD = pParams->nFpsDen;
if (pParams->video_fmt_10bit) {
m_mfxEncParams.mfx.FrameInfo.FourCC = MFX_FOURCC_P010;
m_mfxEncParams.mfx.FrameInfo.BitDepthChroma = 10;
m_mfxEncParams.mfx.FrameInfo.BitDepthLuma = 10;
m_mfxEncParams.mfx.FrameInfo.Shift = 1;
} else {
m_mfxEncParams.mfx.FrameInfo.FourCC = MFX_FOURCC_NV12;
}
m_mfxEncParams.mfx.FrameInfo.ChromaFormat = MFX_CHROMAFORMAT_YUV420;
m_mfxEncParams.mfx.FrameInfo.PicStruct = MFX_PICSTRUCT_PROGRESSIVE;
m_mfxEncParams.mfx.FrameInfo.CropX = 0;
m_mfxEncParams.mfx.FrameInfo.CropY = 0;
m_mfxEncParams.mfx.FrameInfo.CropW = pParams->nWidth;
m_mfxEncParams.mfx.FrameInfo.CropH = pParams->nHeight;
m_mfxEncParams.mfx.GopRefDist = pParams->nbFrames + 1;
mfxPlatform platform;
MFXVideoCORE_QueryPlatform(m_session, &platform);
PRAGMA_WARN_PUSH
PRAGMA_WARN_DEPRECATION
if (codec == QSV_CODEC_AVC || codec == QSV_CODEC_HEVC) {
if (platform.CodeName >= MFX_PLATFORM_DG2)
m_mfxEncParams.mfx.LowPower = MFX_CODINGOPTION_ON;
} else if (codec == QSV_CODEC_AV1) {
m_mfxEncParams.mfx.LowPower = MFX_CODINGOPTION_ON;
}
PRAGMA_WARN_POP
m_mfxEncParams.mfx.RateControlMethod = pParams->nRateControl;
switch (pParams->nRateControl) {
case MFX_RATECONTROL_CBR:
m_mfxEncParams.mfx.TargetKbps = pParams->nTargetBitRate;
m_mfxEncParams.mfx.BufferSizeInKB =
(pParams->nTargetBitRate / 8) * 2;
m_mfxEncParams.mfx.InitialDelayInKB =
(pParams->nTargetBitRate / 8) * 1;
break;
case MFX_RATECONTROL_VBR:
m_mfxEncParams.mfx.TargetKbps = pParams->nTargetBitRate;
m_mfxEncParams.mfx.MaxKbps = pParams->nMaxBitRate;
m_mfxEncParams.mfx.BufferSizeInKB =
(pParams->nTargetBitRate / 8) * 2;
m_mfxEncParams.mfx.InitialDelayInKB =
(pParams->nTargetBitRate / 8) * 1;
break;
case MFX_RATECONTROL_CQP:
m_mfxEncParams.mfx.QPI = pParams->nQPI;
m_mfxEncParams.mfx.QPB = pParams->nQPB;
m_mfxEncParams.mfx.QPP = pParams->nQPP;
break;
case MFX_RATECONTROL_ICQ:
m_mfxEncParams.mfx.ICQQuality = pParams->nICQQuality;
break;
default:
break;
}
m_mfxEncParams.AsyncDepth = pParams->nAsyncDepth;
m_mfxEncParams.mfx.GopPicSize =
(pParams->nKeyIntSec)
? (mfxU16)(pParams->nKeyIntSec * pParams->nFpsNum /
(float)pParams->nFpsDen)
: 240;
memset(&m_co2, 0, sizeof(mfxExtCodingOption2));
m_co2.Header.BufferId = MFX_EXTBUFF_CODING_OPTION2;
m_co2.Header.BufferSz = sizeof(m_co2);
if (pParams->bRepeatHeaders)
m_co2.RepeatPPS = MFX_CODINGOPTION_ON;
else
m_co2.RepeatPPS = MFX_CODINGOPTION_OFF;
memset(&m_co3, 0, sizeof(mfxExtCodingOption3));
m_co3.Header.BufferId = MFX_EXTBUFF_CODING_OPTION3;
m_co3.Header.BufferSz = sizeof(m_co3);
if (pParams->nbFrames > 1)
m_co2.BRefType = MFX_B_REF_PYRAMID;
PRAGMA_WARN_PUSH
PRAGMA_WARN_DEPRECATION
// LA VME/ENC case for older platforms
if (pParams->nLADEPTH && codec == QSV_CODEC_AVC &&
m_mfxEncParams.mfx.LowPower != MFX_CODINGOPTION_ON &&
platform.CodeName >= MFX_PLATFORM_ICELAKE) {
if (pParams->nRateControl == MFX_RATECONTROL_CBR) {
pParams->nRateControl = MFX_RATECONTROL_LA_HRD;
} else if (pParams->nRateControl == MFX_RATECONTROL_VBR) {
pParams->nRateControl = MFX_RATECONTROL_LA;
} else if (pParams->nRateControl == MFX_RATECONTROL_ICQ) {
pParams->nRateControl = MFX_RATECONTROL_LA_ICQ;
}
m_co2.LookAheadDepth = pParams->nLADEPTH;
}
PRAGMA_WARN_POP
// LA VDENC case for newer platform, works only under CBR / VBR
if (pParams->nRateControl == MFX_RATECONTROL_CBR ||
pParams->nRateControl == MFX_RATECONTROL_VBR) {
if (pParams->nLADEPTH &&
m_mfxEncParams.mfx.LowPower == MFX_CODINGOPTION_ON) {
m_co2.LookAheadDepth = pParams->nLADEPTH;
}
// CQM to follow UI setting
if (pParams->bCQM && !pParams->bRepeatHeaders) {
m_co3.AdaptiveCQM = MFX_CODINGOPTION_ON;
} else {
m_co3.AdaptiveCQM = MFX_CODINGOPTION_OFF;
}
}
extendedBuffers.push_back((mfxExtBuffer *)&m_co2);
extendedBuffers.push_back((mfxExtBuffer *)&m_co3);
if (codec == QSV_CODEC_HEVC) {
if ((pParams->nWidth & 15) || (pParams->nHeight & 15)) {
memset(&m_ExtHEVCParam, 0, sizeof(m_ExtHEVCParam));
m_ExtHEVCParam.Header.BufferId = MFX_EXTBUFF_HEVC_PARAM;
m_ExtHEVCParam.Header.BufferSz = sizeof(m_ExtHEVCParam);
m_ExtHEVCParam.PicWidthInLumaSamples = pParams->nWidth;
m_ExtHEVCParam.PicHeightInLumaSamples =
pParams->nHeight;
extendedBuffers.push_back(
(mfxExtBuffer *)&m_ExtHEVCParam);
}
}
#if defined(_WIN32)
// TODO: Ask about this one on VAAPI too.
memset(&m_ExtVideoSignalInfo, 0, sizeof(m_ExtVideoSignalInfo));
m_ExtVideoSignalInfo.Header.BufferId = MFX_EXTBUFF_VIDEO_SIGNAL_INFO;
m_ExtVideoSignalInfo.Header.BufferSz = sizeof(m_ExtVideoSignalInfo);
m_ExtVideoSignalInfo.VideoFormat = pParams->VideoFormat;
m_ExtVideoSignalInfo.VideoFullRange = pParams->VideoFullRange;
m_ExtVideoSignalInfo.ColourDescriptionPresent = 1;
m_ExtVideoSignalInfo.ColourPrimaries = pParams->ColourPrimaries;
m_ExtVideoSignalInfo.TransferCharacteristics =
pParams->TransferCharacteristics;
m_ExtVideoSignalInfo.MatrixCoefficients = pParams->MatrixCoefficients;
extendedBuffers.push_back((mfxExtBuffer *)&m_ExtVideoSignalInfo);
#endif
// CLL and Chroma location in HEVC only supported by VPL
if (m_ver.Major >= 2) {
// Chroma location is HEVC only
if (codec == QSV_CODEC_HEVC) {
memset(&m_ExtChromaLocInfo, 0,
sizeof(m_ExtChromaLocInfo));
m_ExtChromaLocInfo.Header.BufferId =
MFX_EXTBUFF_CHROMA_LOC_INFO;
m_ExtChromaLocInfo.Header.BufferSz =
sizeof(m_ExtChromaLocInfo);
m_ExtChromaLocInfo.ChromaLocInfoPresentFlag = 1;
m_ExtChromaLocInfo.ChromaSampleLocTypeTopField =
pParams->ChromaSampleLocTypeTopField;
m_ExtChromaLocInfo.ChromaSampleLocTypeBottomField =
pParams->ChromaSampleLocTypeBottomField;
extendedBuffers.push_back(
(mfxExtBuffer *)&m_ExtChromaLocInfo);
}
}
// AV1 HDR meta data is now supported by VPL.
if (pParams->MaxContentLightLevel > 0) {
memset(&m_ExtMasteringDisplayColourVolume, 0,
sizeof(m_ExtMasteringDisplayColourVolume));
m_ExtMasteringDisplayColourVolume.Header.BufferId =
MFX_EXTBUFF_MASTERING_DISPLAY_COLOUR_VOLUME;
m_ExtMasteringDisplayColourVolume.Header.BufferSz =
sizeof(m_ExtMasteringDisplayColourVolume);
m_ExtMasteringDisplayColourVolume.InsertPayloadToggle =
MFX_PAYLOAD_IDR;
m_ExtMasteringDisplayColourVolume.DisplayPrimariesX[0] =
pParams->DisplayPrimariesX[0];
m_ExtMasteringDisplayColourVolume.DisplayPrimariesX[1] =
pParams->DisplayPrimariesX[1];
m_ExtMasteringDisplayColourVolume.DisplayPrimariesX[2] =
pParams->DisplayPrimariesX[2];
m_ExtMasteringDisplayColourVolume.DisplayPrimariesY[0] =
pParams->DisplayPrimariesY[0];
m_ExtMasteringDisplayColourVolume.DisplayPrimariesY[1] =
pParams->DisplayPrimariesY[1];
m_ExtMasteringDisplayColourVolume.DisplayPrimariesY[2] =
pParams->DisplayPrimariesY[2];
m_ExtMasteringDisplayColourVolume.WhitePointX =
pParams->WhitePointX;
m_ExtMasteringDisplayColourVolume.WhitePointY =
pParams->WhitePointY;
m_ExtMasteringDisplayColourVolume.MaxDisplayMasteringLuminance =
pParams->MaxDisplayMasteringLuminance;
m_ExtMasteringDisplayColourVolume.MinDisplayMasteringLuminance =
pParams->MinDisplayMasteringLuminance;
extendedBuffers.push_back(
(mfxExtBuffer *)&m_ExtMasteringDisplayColourVolume);
memset(&m_ExtContentLightLevelInfo, 0,
sizeof(m_ExtContentLightLevelInfo));
m_ExtContentLightLevelInfo.Header.BufferId =
MFX_EXTBUFF_CONTENT_LIGHT_LEVEL_INFO;
m_ExtContentLightLevelInfo.Header.BufferSz =
sizeof(m_ExtContentLightLevelInfo);
m_ExtContentLightLevelInfo.InsertPayloadToggle =
MFX_PAYLOAD_IDR;
m_ExtContentLightLevelInfo.MaxContentLightLevel =
pParams->MaxContentLightLevel;
m_ExtContentLightLevelInfo.MaxPicAverageLightLevel =
pParams->MaxPicAverageLightLevel;
extendedBuffers.push_back(
(mfxExtBuffer *)&m_ExtContentLightLevelInfo);
}
// Width must be a multiple of 16
// Height must be a multiple of 16 in case of frame picture and a
// multiple of 32 in case of field picture
m_mfxEncParams.mfx.FrameInfo.Width = MSDK_ALIGN16(pParams->nWidth);
m_mfxEncParams.mfx.FrameInfo.Height = MSDK_ALIGN16(pParams->nHeight);
if (m_bUseTexAlloc)
m_mfxEncParams.IOPattern = MFX_IOPATTERN_IN_VIDEO_MEMORY;
else
m_mfxEncParams.IOPattern = MFX_IOPATTERN_IN_SYSTEM_MEMORY;
m_mfxEncParams.ExtParam = extendedBuffers.data();
m_mfxEncParams.NumExtParam = (mfxU16)extendedBuffers.size();
// We don't check what was valid or invalid here, just try changing LowPower.
// Ensure set values are not overwritten so in case it wasn't lowPower we fail
// during the parameter check.
mfxVideoParam validParams = {0};
memcpy(&validParams, &m_mfxEncParams, sizeof(validParams));
mfxStatus sts = m_pmfxENC->Query(&m_mfxEncParams, &validParams);
if (sts == MFX_ERR_UNSUPPORTED || sts == MFX_ERR_UNDEFINED_BEHAVIOR) {
if (m_mfxEncParams.mfx.LowPower == MFX_CODINGOPTION_ON) {
m_mfxEncParams.mfx.LowPower = MFX_CODINGOPTION_OFF;
m_co2.LookAheadDepth = 0;
}
}
return sts;
}
bool QSV_Encoder_Internal::UpdateParams(qsv_param_t *pParams)
{
switch (pParams->nRateControl) {
case MFX_RATECONTROL_CBR:
m_mfxEncParams.mfx.TargetKbps = pParams->nTargetBitRate;
default:
break;
}
return true;
}
mfxStatus QSV_Encoder_Internal::ReconfigureEncoder()
{
return m_pmfxENC->Reset(&m_mfxEncParams);
}
mfxStatus QSV_Encoder_Internal::AllocateSurfaces()
{
// Query number of required surfaces for encoder
mfxFrameAllocRequest EncRequest;
memset(&EncRequest, 0, sizeof(EncRequest));
mfxStatus sts = m_pmfxENC->QueryIOSurf(&m_mfxEncParams, &EncRequest);
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
EncRequest.Type |= WILL_WRITE;
// SNB hack. On some SNB, it seems to require more surfaces
EncRequest.NumFrameSuggested += m_mfxEncParams.AsyncDepth;
// Allocate required surfaces
if (m_bUseTexAlloc) {
sts = m_mfxAllocator.Alloc(m_mfxAllocator.pthis, &EncRequest,
&m_mfxResponse);
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
m_nSurfNum = m_mfxResponse.NumFrameActual;
m_pmfxSurfaces = new mfxFrameSurface1 *[m_nSurfNum];
MSDK_CHECK_POINTER(m_pmfxSurfaces, MFX_ERR_MEMORY_ALLOC);
for (int i = 0; i < m_nSurfNum; i++) {
m_pmfxSurfaces[i] = new mfxFrameSurface1;
memset(m_pmfxSurfaces[i], 0, sizeof(mfxFrameSurface1));
memcpy(&(m_pmfxSurfaces[i]->Info),
&(m_mfxEncParams.mfx.FrameInfo),
sizeof(mfxFrameInfo));
m_pmfxSurfaces[i]->Data.MemId = m_mfxResponse.mids[i];
}
} else {
mfxU16 width = (mfxU16)MSDK_ALIGN32(EncRequest.Info.Width);
mfxU16 height = (mfxU16)MSDK_ALIGN32(EncRequest.Info.Height);
mfxU8 bitsPerPixel = 12;
mfxU32 surfaceSize = width * height * bitsPerPixel / 8;
m_nSurfNum = EncRequest.NumFrameSuggested;
m_pmfxSurfaces = new mfxFrameSurface1 *[m_nSurfNum];
for (int i = 0; i < m_nSurfNum; i++) {
m_pmfxSurfaces[i] = new mfxFrameSurface1;
memset(m_pmfxSurfaces[i], 0, sizeof(mfxFrameSurface1));
memcpy(&(m_pmfxSurfaces[i]->Info),
&(m_mfxEncParams.mfx.FrameInfo),
sizeof(mfxFrameInfo));
mfxU8 *pSurface = (mfxU8 *)new mfxU8[surfaceSize];
m_pmfxSurfaces[i]->Data.Y = pSurface;
m_pmfxSurfaces[i]->Data.U = pSurface + width * height;
m_pmfxSurfaces[i]->Data.V =
pSurface + width * height + 1;
m_pmfxSurfaces[i]->Data.Pitch = width;
}
}
blog(LOG_INFO, "\tm_nSurfNum: %d", m_nSurfNum);
return sts;
}
mfxStatus QSV_Encoder_Internal::GetVideoParam(enum qsv_codec codec)
{
memset(&m_parameter, 0, sizeof(m_parameter));
mfxExtCodingOptionSPSPPS opt;
memset(&m_parameter, 0, sizeof(m_parameter));
opt.Header.BufferId = MFX_EXTBUFF_CODING_OPTION_SPSPPS;
opt.Header.BufferSz = sizeof(mfxExtCodingOptionSPSPPS);
std::vector<mfxExtBuffer *> extendedBuffers;
extendedBuffers.reserve(2);
opt.SPSBuffer = m_SPSBuffer;
opt.PPSBuffer = m_PPSBuffer;
opt.SPSBufSize = 1024; // m_nSPSBufferSize;
opt.PPSBufSize = 1024; // m_nPPSBufferSize;
mfxExtCodingOptionVPS opt_vps{};
if (codec == QSV_CODEC_HEVC) {
opt_vps.Header.BufferId = MFX_EXTBUFF_CODING_OPTION_VPS;
opt_vps.Header.BufferSz = sizeof(mfxExtCodingOptionVPS);
opt_vps.VPSBuffer = m_VPSBuffer;
opt_vps.VPSBufSize = 1024;
extendedBuffers.push_back((mfxExtBuffer *)&opt_vps);
}
extendedBuffers.push_back((mfxExtBuffer *)&opt);
m_parameter.ExtParam = extendedBuffers.data();
m_parameter.NumExtParam = (mfxU16)extendedBuffers.size();
mfxStatus sts = m_pmfxENC->GetVideoParam(&m_parameter);
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
if (codec == QSV_CODEC_HEVC)
m_nVPSBufferSize = opt_vps.VPSBufSize;
m_nSPSBufferSize = opt.SPSBufSize;
m_nPPSBufferSize = opt.PPSBufSize;
return sts;
}
void QSV_Encoder_Internal::GetSPSPPS(mfxU8 **pSPSBuf, mfxU8 **pPPSBuf,
mfxU16 *pnSPSBuf, mfxU16 *pnPPSBuf)
{
*pSPSBuf = m_SPSBuffer;
*pPPSBuf = m_PPSBuffer;
*pnSPSBuf = m_nSPSBufferSize;
*pnPPSBuf = m_nPPSBufferSize;
}
void QSV_Encoder_Internal::GetVpsSpsPps(mfxU8 **pVPSBuf, mfxU8 **pSPSBuf,
mfxU8 **pPPSBuf, mfxU16 *pnVPSBuf,
mfxU16 *pnSPSBuf, mfxU16 *pnPPSBuf)
{
*pVPSBuf = m_VPSBuffer;
*pnVPSBuf = m_nVPSBufferSize;
*pSPSBuf = m_SPSBuffer;
*pnSPSBuf = m_nSPSBufferSize;
*pPPSBuf = m_PPSBuffer;
*pnPPSBuf = m_nPPSBufferSize;
}
mfxStatus QSV_Encoder_Internal::InitBitstream()
{
m_nTaskPool = m_parameter.AsyncDepth;
m_nFirstSyncTask = 0;
m_pTaskPool = new Task[m_nTaskPool];
memset(m_pTaskPool, 0, sizeof(Task) * m_nTaskPool);
for (int i = 0; i < m_nTaskPool; i++) {
m_pTaskPool[i].mfxBS.MaxLength =
m_parameter.mfx.BufferSizeInKB * 1000;
m_pTaskPool[i].mfxBS.Data =
new mfxU8[m_pTaskPool[i].mfxBS.MaxLength];
m_pTaskPool[i].mfxBS.DataOffset = 0;
m_pTaskPool[i].mfxBS.DataLength = 0;
MSDK_CHECK_POINTER(m_pTaskPool[i].mfxBS.Data,
MFX_ERR_MEMORY_ALLOC);
}
memset(&m_outBitstream, 0, sizeof(mfxBitstream));
m_outBitstream.MaxLength = m_parameter.mfx.BufferSizeInKB * 1000;
m_outBitstream.Data = new mfxU8[m_outBitstream.MaxLength];
m_outBitstream.DataOffset = 0;
m_outBitstream.DataLength = 0;
blog(LOG_INFO, "\tm_nTaskPool: %d", m_nTaskPool);
return MFX_ERR_NONE;
}
mfxStatus QSV_Encoder_Internal::LoadP010(mfxFrameSurface1 *pSurface,
uint8_t *pDataY, uint8_t *pDataUV,
uint32_t strideY, uint32_t strideUV)
{
mfxU16 w, h, i, pitch;
mfxU8 *ptr;
mfxFrameInfo *pInfo = &pSurface->Info;
mfxFrameData *pData = &pSurface->Data;
if (pInfo->CropH > 0 && pInfo->CropW > 0) {
w = pInfo->CropW;
h = pInfo->CropH;
} else {
w = pInfo->Width;
h = pInfo->Height;
}
pitch = pData->Pitch;
ptr = pData->Y + pInfo->CropX + pInfo->CropY * pData->Pitch;
const size_t line_size = w * 2;
// load Y plane
for (i = 0; i < h; i++)
memcpy(ptr + i * pitch, pDataY + i * strideY, line_size);
// load UV plane
h /= 2;
ptr = pData->UV + pInfo->CropX + (pInfo->CropY / 2) * pitch;
for (i = 0; i < h; i++)
memcpy(ptr + i * pitch, pDataUV + i * strideUV, line_size);
return MFX_ERR_NONE;
}
mfxStatus QSV_Encoder_Internal::LoadNV12(mfxFrameSurface1 *pSurface,
uint8_t *pDataY, uint8_t *pDataUV,
uint32_t strideY, uint32_t strideUV)
{
mfxU16 w, h, i, pitch;
mfxU8 *ptr;
mfxFrameInfo *pInfo = &pSurface->Info;
mfxFrameData *pData = &pSurface->Data;
if (pInfo->CropH > 0 && pInfo->CropW > 0) {
w = pInfo->CropW;
h = pInfo->CropH;
} else {
w = pInfo->Width;
h = pInfo->Height;
}
pitch = pData->Pitch;
ptr = pData->Y + pInfo->CropX + pInfo->CropY * pData->Pitch;
// load Y plane
for (i = 0; i < h; i++)
memcpy(ptr + i * pitch, pDataY + i * strideY, w);
// load UV plane
h /= 2;
ptr = pData->UV + pInfo->CropX + (pInfo->CropY / 2) * pitch;
for (i = 0; i < h; i++)
memcpy(ptr + i * pitch, pDataUV + i * strideUV, w);
return MFX_ERR_NONE;
}
int QSV_Encoder_Internal::GetFreeTaskIndex(Task *pTaskPool, mfxU16 nPoolSize)
{
if (pTaskPool)
for (int i = 0; i < nPoolSize; i++)
if (!pTaskPool[i].syncp)
return i;
return MFX_ERR_NOT_FOUND;
}
mfxStatus QSV_Encoder_Internal::Encode(uint64_t ts, uint8_t *pDataY,
uint8_t *pDataUV, uint32_t strideY,
uint32_t strideUV, mfxBitstream **pBS)
{
mfxStatus sts = MFX_ERR_NONE;
*pBS = NULL;
int nTaskIdx = GetFreeTaskIndex(m_pTaskPool, m_nTaskPool);
#if 0
info("MSDK Encode:\n"
"\tTaskIndex: %d",
nTaskIdx);
#endif
int nSurfIdx = GetFreeSurfaceIndex(m_pmfxSurfaces, m_nSurfNum);
#if 0
info("MSDK Encode:\n"
"\tnSurfIdx: %d",
nSurfIdx);
#endif
while (MFX_ERR_NOT_FOUND == nTaskIdx || MFX_ERR_NOT_FOUND == nSurfIdx) {
// No more free tasks or surfaces, need to sync
sts = MFXVideoCORE_SyncOperation(
m_session, m_pTaskPool[m_nFirstSyncTask].syncp, 60000);
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
mfxU8 *pTemp = m_outBitstream.Data;
memcpy(&m_outBitstream, &m_pTaskPool[m_nFirstSyncTask].mfxBS,
sizeof(mfxBitstream));
m_pTaskPool[m_nFirstSyncTask].mfxBS.Data = pTemp;
m_pTaskPool[m_nFirstSyncTask].mfxBS.DataLength = 0;
m_pTaskPool[m_nFirstSyncTask].mfxBS.DataOffset = 0;
m_pTaskPool[m_nFirstSyncTask].syncp = NULL;
nTaskIdx = m_nFirstSyncTask;
m_nFirstSyncTask = (m_nFirstSyncTask + 1) % m_nTaskPool;
*pBS = &m_outBitstream;
#if 0
info("MSDK Encode:\n"
"\tnew FirstSyncTask: %d\n"
"\tTaskIndex: %d",
m_nFirstSyncTask,
nTaskIdx);
#endif
nSurfIdx = GetFreeSurfaceIndex(m_pmfxSurfaces, m_nSurfNum);
#if 0
info("MSDK Encode:\n"
"\tnSurfIdx: %d",
nSurfIdx);
#endif
}
mfxFrameSurface1 *pSurface = m_pmfxSurfaces[nSurfIdx];
if (m_bUseTexAlloc) {
sts = m_mfxAllocator.Lock(m_mfxAllocator.pthis,
pSurface->Data.MemId,
&(pSurface->Data));
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
}
sts = (pSurface->Info.FourCC == MFX_FOURCC_P010)
? LoadP010(pSurface, pDataY, pDataUV, strideY, strideUV)
: LoadNV12(pSurface, pDataY, pDataUV, strideY, strideUV);
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
pSurface->Data.TimeStamp = ts;
if (m_bUseTexAlloc) {
sts = m_mfxAllocator.Unlock(m_mfxAllocator.pthis,
pSurface->Data.MemId,
&(pSurface->Data));
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
}
for (;;) {
// Encode a frame asynchronously (returns immediately)
sts = m_pmfxENC->EncodeFrameAsync(NULL, pSurface,
&m_pTaskPool[nTaskIdx].mfxBS,
&m_pTaskPool[nTaskIdx].syncp);
if (MFX_ERR_NONE < sts && !m_pTaskPool[nTaskIdx].syncp) {
// Repeat the call if warning and no output
if (MFX_WRN_DEVICE_BUSY == sts)
MSDK_SLEEP(
1); // Wait if device is busy, then repeat the same call
} else if (MFX_ERR_NONE < sts && m_pTaskPool[nTaskIdx].syncp) {
sts = MFX_ERR_NONE; // Ignore warnings if output is available
break;
} else if (MFX_ERR_NOT_ENOUGH_BUFFER == sts) {
// Allocate more bitstream buffer memory here if needed...
break;
} else
break;
}
return sts;
}
mfxStatus QSV_Encoder_Internal::Encode_tex(uint64_t ts, uint32_t tex_handle,
uint64_t lock_key,
uint64_t *next_key,
mfxBitstream **pBS)
{
mfxStatus sts = MFX_ERR_NONE;
*pBS = NULL;
int nTaskIdx = GetFreeTaskIndex(m_pTaskPool, m_nTaskPool);
int nSurfIdx = GetFreeSurfaceIndex(m_pmfxSurfaces, m_nSurfNum);
while (MFX_ERR_NOT_FOUND == nTaskIdx || MFX_ERR_NOT_FOUND == nSurfIdx) {
// No more free tasks or surfaces, need to sync
sts = MFXVideoCORE_SyncOperation(
m_session, m_pTaskPool[m_nFirstSyncTask].syncp, 60000);
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
mfxU8 *pTemp = m_outBitstream.Data;
memcpy(&m_outBitstream, &m_pTaskPool[m_nFirstSyncTask].mfxBS,
sizeof(mfxBitstream));
m_pTaskPool[m_nFirstSyncTask].mfxBS.Data = pTemp;
m_pTaskPool[m_nFirstSyncTask].mfxBS.DataLength = 0;
m_pTaskPool[m_nFirstSyncTask].mfxBS.DataOffset = 0;
m_pTaskPool[m_nFirstSyncTask].syncp = NULL;
nTaskIdx = m_nFirstSyncTask;
m_nFirstSyncTask = (m_nFirstSyncTask + 1) % m_nTaskPool;
*pBS = &m_outBitstream;
nSurfIdx = GetFreeSurfaceIndex(m_pmfxSurfaces, m_nSurfNum);
}
mfxFrameSurface1 *pSurface = m_pmfxSurfaces[nSurfIdx];
//copy to default surface directly
pSurface->Data.TimeStamp = ts;
if (m_bUseTexAlloc) {
// mfxU64 isn't consistent with stdint, requiring a cast to be multi-platform.
sts = simple_copytex(m_mfxAllocator.pthis, pSurface->Data.MemId,
tex_handle, lock_key, (mfxU64 *)next_key);
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
}
for (;;) {
// Encode a frame asynchronously (returns immediately)
sts = m_pmfxENC->EncodeFrameAsync(NULL, pSurface,
&m_pTaskPool[nTaskIdx].mfxBS,
&m_pTaskPool[nTaskIdx].syncp);
if (MFX_ERR_NONE < sts && !m_pTaskPool[nTaskIdx].syncp) {
// Repeat the call if warning and no output
if (MFX_WRN_DEVICE_BUSY == sts)
MSDK_SLEEP(
1); // Wait if device is busy, then repeat the same call
} else if (MFX_ERR_NONE < sts && m_pTaskPool[nTaskIdx].syncp) {
sts = MFX_ERR_NONE; // Ignore warnings if output is available
break;
} else if (MFX_ERR_NOT_ENOUGH_BUFFER == sts) {
// Allocate more bitstream buffer memory here if needed...
break;
} else
break;
}
return sts;
}
mfxStatus QSV_Encoder_Internal::Drain()
{
mfxStatus sts = MFX_ERR_NONE;
while (m_pTaskPool && m_pTaskPool[m_nFirstSyncTask].syncp) {
sts = MFXVideoCORE_SyncOperation(
m_session, m_pTaskPool[m_nFirstSyncTask].syncp, 60000);
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
m_pTaskPool[m_nFirstSyncTask].syncp = NULL;
m_nFirstSyncTask = (m_nFirstSyncTask + 1) % m_nTaskPool;
}
return sts;
}
mfxStatus QSV_Encoder_Internal::ClearData()
{
mfxStatus sts = MFX_ERR_NONE;
sts = Drain();
if (m_pmfxENC) {
sts = m_pmfxENC->Close();
delete m_pmfxENC;
m_pmfxENC = NULL;
}
if (m_bUseTexAlloc)
m_mfxAllocator.Free(m_mfxAllocator.pthis, &m_mfxResponse);
if (m_pmfxSurfaces) {
for (int i = 0; i < m_nSurfNum; i++) {
if (!m_bUseTexAlloc)
delete m_pmfxSurfaces[i]->Data.Y;
delete m_pmfxSurfaces[i];
}
MSDK_SAFE_DELETE_ARRAY(m_pmfxSurfaces);
}
if (m_pTaskPool) {
for (int i = 0; i < m_nTaskPool; i++)
delete m_pTaskPool[i].mfxBS.Data;
MSDK_SAFE_DELETE_ARRAY(m_pTaskPool);
}
if (m_outBitstream.Data) {
delete[] m_outBitstream.Data;
m_outBitstream.Data = NULL;
}
if (sts >= MFX_ERR_NONE) {
g_numEncodersOpen--;
}
if ((m_bUseTexAlloc) && (g_numEncodersOpen <= 0)) {
Release();
g_DX_Handle = NULL;
}
MFXVideoENCODE_Close(m_session);
ReleaseSessionData(m_sessionData);
m_sessionData = NULL;
return sts;
}
mfxStatus QSV_Encoder_Internal::Reset(qsv_param_t *pParams,
enum qsv_codec codec)
{
mfxStatus sts = ClearData();
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
sts = Open(pParams, codec);
MSDK_CHECK_RESULT(sts, MFX_ERR_NONE, sts);
return sts;
}