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Merge pull request #21618 from sivanov-work:vpp_preproc_core
G-API: Add VPL/VPP preproc core module * Add BaseMediAdapter for VPL * Add PreprocSession & PreprocEngine interface part * Implement preproc UT, Fix base path * Add common PP interface, add common pp_params * Rough decoupling VPL & Preproc * Add syntax sugar for PP interface * Integrate VPP preproc in GIEbackend * Add PP bypass * Add perf tests for PP * Fix warning in vpl core UT * Add inner preproc resolution Unit Test * Remove VPP preproc description from single ROI sample * Apply SetROIBlob for diferent Infer operations * Eliminate extra branch-lines for cfg_param_parser & transcode_engine * Fix UT warning &PreprocSession compile * Fix compilation & warnings * Reduce Session&Engine code amount * Apply some comments * Revert IE changes, rename preproc * Fix for DX11 infer for OV: turn off texture array * Remove dependency PP on IE * Change fixture tests params * Apply other comments & turn off ROI for GPU * Fix compilation: remove forgotten INFER define * Apply debt comments * Fix PP UTs: add FrameInfo value comparator * Fix style * Remove standalone map for preproc frames storage * Add other comments
This commit is contained in:
@@ -68,7 +68,7 @@ struct EmptyDataProvider : public cv::gapi::wip::onevpl::IDataProvider {
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struct TestProcessingSession : public cv::gapi::wip::onevpl::EngineSession {
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TestProcessingSession(mfxSession mfx_session) :
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EngineSession(mfx_session, {}) {
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EngineSession(mfx_session) {
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}
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const mfxFrameInfo& get_video_param() const override {
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@@ -319,7 +319,8 @@ TEST(OneVPL_Source_CPU_FrameAdapter, InitFrameAdapter)
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EXPECT_EQ(0, surf->get_locks_count());
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{
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VPLMediaFrameCPUAdapter adapter(surf);
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mfxSession stub_session = reinterpret_cast<mfxSession>(0x1);
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VPLMediaFrameCPUAdapter adapter(surf, stub_session);
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EXPECT_EQ(1, surf->get_locks_count());
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}
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EXPECT_EQ(0, surf->get_locks_count());
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@@ -528,9 +529,9 @@ TEST(OneVPL_Source_DX11_Accel, Init)
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cfg_params_w_dx11.push_back(CfgParam::create_acceleration_mode(MFX_ACCEL_MODE_VIA_D3D11));
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VPLDX11AccelerationPolicy accel(std::make_shared<CfgParamDeviceSelector>(cfg_params_w_dx11));
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mfxLoader mfx_handle = MFXLoad();
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mfxLoader test_mfx_handle = MFXLoad();
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mfxConfig cfg_inst_0 = MFXCreateConfig(mfx_handle);
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mfxConfig cfg_inst_0 = MFXCreateConfig(test_mfx_handle);
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EXPECT_TRUE(cfg_inst_0);
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mfxVariant mfx_param_0;
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mfx_param_0.Type = MFX_VARIANT_TYPE_U32;
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@@ -538,7 +539,7 @@ TEST(OneVPL_Source_DX11_Accel, Init)
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EXPECT_EQ(MFXSetConfigFilterProperty(cfg_inst_0,(mfxU8 *)CfgParam::implementation_name(),
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mfx_param_0), MFX_ERR_NONE);
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mfxConfig cfg_inst_1 = MFXCreateConfig(mfx_handle);
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mfxConfig cfg_inst_1 = MFXCreateConfig(test_mfx_handle);
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EXPECT_TRUE(cfg_inst_1);
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mfxVariant mfx_param_1;
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mfx_param_1.Type = MFX_VARIANT_TYPE_U32;
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@@ -546,7 +547,7 @@ TEST(OneVPL_Source_DX11_Accel, Init)
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EXPECT_EQ(MFXSetConfigFilterProperty(cfg_inst_1,(mfxU8 *)CfgParam::acceleration_mode_name(),
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mfx_param_1), MFX_ERR_NONE);
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mfxConfig cfg_inst_2 = MFXCreateConfig(mfx_handle);
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mfxConfig cfg_inst_2 = MFXCreateConfig(test_mfx_handle);
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EXPECT_TRUE(cfg_inst_2);
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mfxVariant mfx_param_2;
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mfx_param_2.Type = MFX_VARIANT_TYPE_U32;
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@@ -556,7 +557,7 @@ TEST(OneVPL_Source_DX11_Accel, Init)
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// create session
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mfxSession mfx_session{};
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mfxStatus sts = MFXCreateSession(mfx_handle, 0, &mfx_session);
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mfxStatus sts = MFXCreateSession(test_mfx_handle, 0, &mfx_session);
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EXPECT_EQ(MFX_ERR_NONE, sts);
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// assign acceleration
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@@ -600,7 +601,7 @@ TEST(OneVPL_Source_DX11_Accel, Init)
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EXPECT_NO_THROW(accel.deinit(mfx_session));
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MFXClose(mfx_session);
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MFXUnload(mfx_handle);
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MFXUnload(test_mfx_handle);
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}
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TEST(OneVPL_Source_DX11_Accel_VPL, Init)
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@@ -611,9 +612,9 @@ TEST(OneVPL_Source_DX11_Accel_VPL, Init)
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cfg_params_w_dx11.push_back(CfgParam::create_acceleration_mode(MFX_ACCEL_MODE_VIA_D3D11));
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std::unique_ptr<VPLAccelerationPolicy> acceleration_policy (new VPLDX11AccelerationPolicy(std::make_shared<CfgParamDeviceSelector>(cfg_params_w_dx11)));
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mfxLoader mfx_handle = MFXLoad();
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mfxLoader test_mfx_handle = MFXLoad();
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mfxConfig cfg_inst_0 = MFXCreateConfig(mfx_handle);
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mfxConfig cfg_inst_0 = MFXCreateConfig(test_mfx_handle);
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EXPECT_TRUE(cfg_inst_0);
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mfxVariant mfx_param_0;
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mfx_param_0.Type = MFX_VARIANT_TYPE_U32;
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@@ -621,7 +622,7 @@ TEST(OneVPL_Source_DX11_Accel_VPL, Init)
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EXPECT_EQ(MFXSetConfigFilterProperty(cfg_inst_0,(mfxU8 *)CfgParam::implementation_name(),
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mfx_param_0), MFX_ERR_NONE);
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mfxConfig cfg_inst_1 = MFXCreateConfig(mfx_handle);
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mfxConfig cfg_inst_1 = MFXCreateConfig(test_mfx_handle);
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EXPECT_TRUE(cfg_inst_1);
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mfxVariant mfx_param_1;
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mfx_param_1.Type = MFX_VARIANT_TYPE_U32;
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@@ -629,7 +630,7 @@ TEST(OneVPL_Source_DX11_Accel_VPL, Init)
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EXPECT_EQ(MFXSetConfigFilterProperty(cfg_inst_1,(mfxU8 *)CfgParam::acceleration_mode_name(),
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mfx_param_1), MFX_ERR_NONE);
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mfxConfig cfg_inst_2 = MFXCreateConfig(mfx_handle);
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mfxConfig cfg_inst_2 = MFXCreateConfig(test_mfx_handle);
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EXPECT_TRUE(cfg_inst_2);
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mfxVariant mfx_param_2;
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mfx_param_2.Type = MFX_VARIANT_TYPE_U32;
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@@ -637,7 +638,7 @@ TEST(OneVPL_Source_DX11_Accel_VPL, Init)
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EXPECT_EQ(MFXSetConfigFilterProperty(cfg_inst_2,(mfxU8 *)CfgParam::decoder_id_name(),
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mfx_param_2), MFX_ERR_NONE);
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mfxConfig cfg_inst_3 = MFXCreateConfig(mfx_handle);
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mfxConfig cfg_inst_3 = MFXCreateConfig(test_mfx_handle);
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EXPECT_TRUE(cfg_inst_3);
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mfxVariant mfx_param_3;
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mfx_param_3.Type = MFX_VARIANT_TYPE_U32;
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@@ -647,7 +648,7 @@ TEST(OneVPL_Source_DX11_Accel_VPL, Init)
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mfx_param_3), MFX_ERR_NONE);
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// create session
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mfxSession mfx_session{};
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mfxStatus sts = MFXCreateSession(mfx_handle, 0, &mfx_session);
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mfxStatus sts = MFXCreateSession(test_mfx_handle, 0, &mfx_session);
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EXPECT_EQ(MFX_ERR_NONE, sts);
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// assign acceleration
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@@ -732,7 +733,7 @@ TEST(OneVPL_Source_DX11_Accel_VPL, Init)
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sess_ptr->init_transcode_surface_pool(vpp_out_pool_key);
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// prepare working surfaces
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sess_ptr->swap_surface(engine);
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sess_ptr->swap_decode_surface(engine);
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sess_ptr->swap_transcode_surface(engine);
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// launch pipeline
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@@ -756,11 +757,8 @@ TEST(OneVPL_Source_DX11_Accel_VPL, Init)
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{
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my_sess.last_status =
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MFXVideoDECODE_DecodeFrameAsync(my_sess.session,
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(my_sess.data_provider || (my_sess.stream && my_sess.stream->DataLength))
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? my_sess.stream.get()
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: nullptr, /* No more data to read, start decode draining mode*/
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my_sess.procesing_surface_ptr.lock()->get_handle(),
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my_sess.get_mfx_bitstream_ptr(),
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my_sess.processing_surface_ptr.lock()->get_handle(),
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&sync_pair.second,
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&sync_pair.first);
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@@ -771,12 +769,12 @@ TEST(OneVPL_Source_DX11_Accel_VPL, Init)
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my_sess.last_status == MFX_WRN_DEVICE_BUSY) {
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try {
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if (my_sess.last_status == MFX_ERR_MORE_SURFACE) {
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my_sess.swap_surface(engine);
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my_sess.swap_decode_surface(engine);
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}
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my_sess.last_status =
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MFXVideoDECODE_DecodeFrameAsync(my_sess.session,
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my_sess.stream.get(),
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my_sess.procesing_surface_ptr.lock()->get_handle(),
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my_sess.get_mfx_bitstream_ptr(),
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my_sess.processing_surface_ptr.lock()->get_handle(),
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&sync_pair.second,
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&sync_pair.first);
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@@ -808,6 +806,224 @@ TEST(OneVPL_Source_DX11_Accel_VPL, Init)
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}
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}
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}
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TEST(OneVPL_Source_DX11_Accel_VPL, preproc)
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{
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using namespace cv::gapi::wip::onevpl;
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std::vector<CfgParam> cfg_params_w_dx11;
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cfg_params_w_dx11.push_back(CfgParam::create_acceleration_mode(MFX_ACCEL_MODE_VIA_D3D11));
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std::unique_ptr<VPLAccelerationPolicy> acceleration_policy (new VPLDX11AccelerationPolicy(std::make_shared<CfgParamDeviceSelector>(cfg_params_w_dx11)));
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mfxLoader test_mfx_handle = MFXLoad();
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mfxConfig cfg_inst_0 = MFXCreateConfig(test_mfx_handle);
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EXPECT_TRUE(cfg_inst_0);
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mfxVariant mfx_param_0;
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mfx_param_0.Type = MFX_VARIANT_TYPE_U32;
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mfx_param_0.Data.U32 = MFX_IMPL_TYPE_HARDWARE;
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EXPECT_EQ(MFXSetConfigFilterProperty(cfg_inst_0,(mfxU8 *)CfgParam::implementation_name(),
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mfx_param_0), MFX_ERR_NONE);
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mfxConfig cfg_inst_1 = MFXCreateConfig(test_mfx_handle);
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EXPECT_TRUE(cfg_inst_1);
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mfxVariant mfx_param_1;
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mfx_param_1.Type = MFX_VARIANT_TYPE_U32;
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mfx_param_1.Data.U32 = MFX_ACCEL_MODE_VIA_D3D11;
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EXPECT_EQ(MFXSetConfigFilterProperty(cfg_inst_1,(mfxU8 *)CfgParam::acceleration_mode_name(),
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mfx_param_1), MFX_ERR_NONE);
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mfxConfig cfg_inst_2 = MFXCreateConfig(test_mfx_handle);
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EXPECT_TRUE(cfg_inst_2);
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mfxVariant mfx_param_2;
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mfx_param_2.Type = MFX_VARIANT_TYPE_U32;
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mfx_param_2.Data.U32 = MFX_CODEC_HEVC;
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EXPECT_EQ(MFXSetConfigFilterProperty(cfg_inst_2,(mfxU8 *)CfgParam::decoder_id_name(),
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mfx_param_2), MFX_ERR_NONE);
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mfxConfig cfg_inst_3 = MFXCreateConfig(test_mfx_handle);
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EXPECT_TRUE(cfg_inst_3);
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mfxVariant mfx_param_3;
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mfx_param_3.Type = MFX_VARIANT_TYPE_U32;
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mfx_param_3.Data.U32 = MFX_EXTBUFF_VPP_SCALING;
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EXPECT_EQ(MFXSetConfigFilterProperty(cfg_inst_3,
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(mfxU8 *)"mfxImplDescription.mfxVPPDescription.filter.FilterFourCC",
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mfx_param_3), MFX_ERR_NONE);
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// create session
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mfxSession mfx_decode_session{};
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mfxStatus sts = MFXCreateSession(test_mfx_handle, 0, &mfx_decode_session);
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EXPECT_EQ(MFX_ERR_NONE, sts);
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// assign acceleration
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EXPECT_NO_THROW(acceleration_policy->init(mfx_decode_session));
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// create proper bitstream
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std::string file_path = findDataFile("highgui/video/big_buck_bunny.h265");
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std::shared_ptr<IDataProvider> data_provider(new FileDataProvider(file_path,
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{CfgParam::create_decoder_id(MFX_CODEC_HEVC)}));
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IDataProvider::mfx_codec_id_type decoder_id_name = data_provider->get_mfx_codec_id();
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// Prepare video param
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mfxVideoParam mfxDecParams {};
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mfxDecParams.mfx.CodecId = decoder_id_name;
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mfxDecParams.IOPattern = MFX_IOPATTERN_OUT_VIDEO_MEMORY;
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// try fetch & decode input data
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sts = MFX_ERR_NONE;
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std::shared_ptr<IDataProvider::mfx_bitstream> bitstream{};
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do {
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EXPECT_TRUE(data_provider->fetch_bitstream_data(bitstream));
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sts = MFXVideoDECODE_DecodeHeader(mfx_decode_session, bitstream.get(), &mfxDecParams);
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EXPECT_TRUE(MFX_ERR_NONE == sts || MFX_ERR_MORE_DATA == sts);
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} while (sts == MFX_ERR_MORE_DATA && !data_provider->empty());
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EXPECT_EQ(MFX_ERR_NONE, sts);
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mfxFrameAllocRequest request{};
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memset(&request, 0, sizeof(request));
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sts = MFXVideoDECODE_QueryIOSurf(mfx_decode_session, &mfxDecParams, &request);
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EXPECT_EQ(MFX_ERR_NONE, sts);
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// Allocate surfaces for decoder
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request.Type |= MFX_MEMTYPE_EXTERNAL_FRAME | MFX_MEMTYPE_FROM_DECODE | MFX_MEMTYPE_FROM_VPPIN;
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VPLAccelerationPolicy::pool_key_t decode_pool_key = acceleration_policy->create_surface_pool(request,
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mfxDecParams.mfx.FrameInfo);
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sts = MFXVideoDECODE_Init(mfx_decode_session, &mfxDecParams);
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EXPECT_EQ(MFX_ERR_NONE, sts);
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// initialize VPL session
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mfxSession mfx_vpl_session{};
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sts = MFXCreateSession(test_mfx_handle, 0, &mfx_vpl_session);
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// assign acceleration
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EXPECT_NO_THROW(acceleration_policy->init(mfx_vpl_session));
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EXPECT_EQ(MFX_ERR_NONE, sts);
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// request VPL surface
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mfxU16 vppOutImgWidth = 672;
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mfxU16 vppOutImgHeight = 382;
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mfxVideoParam mfxVPPParams{0};
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mfxVPPParams.vpp.In = mfxDecParams.mfx.FrameInfo;
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mfxVPPParams.vpp.Out.FourCC = MFX_FOURCC_NV12;
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mfxVPPParams.vpp.Out.ChromaFormat = MFX_CHROMAFORMAT_YUV420;
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mfxVPPParams.vpp.Out.Width = ALIGN16(vppOutImgWidth);
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mfxVPPParams.vpp.Out.Height = ALIGN16(vppOutImgHeight);
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mfxVPPParams.vpp.Out.CropX = 0;
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mfxVPPParams.vpp.Out.CropY = 0;
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mfxVPPParams.vpp.Out.CropW = vppOutImgWidth;
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mfxVPPParams.vpp.Out.CropH = vppOutImgHeight;
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mfxVPPParams.vpp.Out.PicStruct = MFX_PICSTRUCT_PROGRESSIVE;
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mfxVPPParams.vpp.Out.FrameRateExtN = 30;
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mfxVPPParams.vpp.Out.FrameRateExtD = 1;
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mfxVPPParams.IOPattern = MFX_IOPATTERN_IN_VIDEO_MEMORY | MFX_IOPATTERN_OUT_VIDEO_MEMORY;
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mfxFrameAllocRequest vppRequests[2];
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memset(&vppRequests, 0, sizeof(mfxFrameAllocRequest) * 2);
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EXPECT_EQ(MFXVideoVPP_QueryIOSurf(mfx_vpl_session, &mfxVPPParams, vppRequests), MFX_ERR_NONE);
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vppRequests[1].AllocId = 666;
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VPLAccelerationPolicy::pool_key_t vpp_out_pool_key =
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acceleration_policy->create_surface_pool(vppRequests[1], mfxVPPParams.vpp.Out);
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EXPECT_EQ(MFXVideoVPP_Init(mfx_vpl_session, &mfxVPPParams), MFX_ERR_NONE);
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// finalize session creation
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DecoderParams d_param{bitstream, mfxDecParams};
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TranscoderParams t_param{mfxVPPParams};
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VPLLegacyDecodeEngine engine(std::move(acceleration_policy));
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std::shared_ptr<LegacyDecodeSession> sess_ptr =
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engine.register_session<LegacyDecodeSession>(
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mfx_decode_session,
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std::move(d_param),
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data_provider);
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sess_ptr->init_surface_pool(decode_pool_key);
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// prepare working surfaces
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sess_ptr->swap_decode_surface(engine);
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// launch pipeline
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LegacyDecodeSession &my_sess = *sess_ptr;
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size_t min_available_frames_count =
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std::min(engine.get_accel()->get_surface_count(decode_pool_key),
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engine.get_accel()->get_surface_count(vpp_out_pool_key));
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size_t frame_num = 0;
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do {
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if (!my_sess.data_provider) {
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my_sess.last_status = MFX_ERR_MORE_DATA;
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} else {
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my_sess.last_status = MFX_ERR_NONE;
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if (!my_sess.data_provider->fetch_bitstream_data(my_sess.stream)) {
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my_sess.last_status = MFX_ERR_MORE_DATA;
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my_sess.data_provider.reset(); //close source
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}
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}
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// 2) enqueue ASYNC decode operation
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// prepare sync object for new surface
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LegacyTranscodeSession::op_handle_t sync_pair{};
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// enqueue decode operation with current session surface
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{
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my_sess.last_status =
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MFXVideoDECODE_DecodeFrameAsync(my_sess.session,
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my_sess.get_mfx_bitstream_ptr(),
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my_sess.processing_surface_ptr.lock()->get_handle(),
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&sync_pair.second,
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&sync_pair.first);
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// process wait-like statuses in-place:
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// It had better to use up all VPL decoding resources in pipeline
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// as soon as possible. So waiting more free-surface or device free
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while (my_sess.last_status == MFX_ERR_MORE_SURFACE ||
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my_sess.last_status == MFX_WRN_DEVICE_BUSY) {
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try {
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if (my_sess.last_status == MFX_ERR_MORE_SURFACE) {
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my_sess.swap_decode_surface(engine);
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}
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my_sess.last_status =
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MFXVideoDECODE_DecodeFrameAsync(my_sess.session,
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my_sess.get_mfx_bitstream_ptr(),
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my_sess.processing_surface_ptr.lock()->get_handle(),
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&sync_pair.second,
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&sync_pair.first);
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} catch (const std::runtime_error&) {
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// NB: not an error, yield CPU ticks to check
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// surface availability at a next phase.
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EXPECT_TRUE(false);
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}
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}
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}
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{
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do {
|
||||
my_sess.last_status = MFXVideoCORE_SyncOperation(my_sess.session, sync_pair.first, 0);
|
||||
// put frames in ready queue on success
|
||||
if (MFX_ERR_NONE == my_sess.last_status) {
|
||||
break;
|
||||
}
|
||||
} while (MFX_WRN_IN_EXECUTION == my_sess.last_status);
|
||||
EXPECT_EQ(my_sess.last_status, MFX_ERR_NONE);
|
||||
}
|
||||
|
||||
// perform VPP operation on decoder synchronized surface
|
||||
|
||||
auto vpp_out = engine.get_accel()->get_free_surface(vpp_out_pool_key).lock();
|
||||
EXPECT_TRUE(vpp_out.get());
|
||||
my_sess.last_status = MFXVideoVPP_RunFrameVPPAsync(mfx_vpl_session,
|
||||
sync_pair.second,
|
||||
vpp_out->get_handle(),
|
||||
nullptr, &sync_pair.first);
|
||||
if (my_sess.last_status == MFX_ERR_MORE_SURFACE ||
|
||||
my_sess.last_status == MFX_ERR_NONE) {
|
||||
my_sess.last_status = MFXVideoCORE_SyncOperation(mfx_vpl_session, sync_pair.first, INFINITE);
|
||||
EXPECT_EQ(my_sess.last_status, MFX_ERR_NONE);
|
||||
frame_num++;
|
||||
}
|
||||
} while(frame_num < min_available_frames_count);
|
||||
}
|
||||
#endif // HAVE_DIRECTX
|
||||
#endif // HAVE_D3D11
|
||||
|
||||
|
||||
@@ -73,9 +73,9 @@ TEST_P(OneVPL_Source_MFPAsyncDispatcherTest, open_and_decode_file)
|
||||
EXPECT_TRUE(dd_result);
|
||||
|
||||
// initialize MFX
|
||||
mfxLoader mfx_handle = MFXLoad();
|
||||
mfxLoader mfx = MFXLoad();
|
||||
|
||||
mfxConfig cfg_inst_0 = MFXCreateConfig(mfx_handle);
|
||||
mfxConfig cfg_inst_0 = MFXCreateConfig(mfx);
|
||||
EXPECT_TRUE(cfg_inst_0);
|
||||
mfxVariant mfx_param_0;
|
||||
mfx_param_0.Type = MFX_VARIANT_TYPE_U32;
|
||||
@@ -85,7 +85,7 @@ TEST_P(OneVPL_Source_MFPAsyncDispatcherTest, open_and_decode_file)
|
||||
|
||||
// create MFX session
|
||||
mfxSession mfx_session{};
|
||||
mfxStatus sts = MFXCreateSession(mfx_handle, 0, &mfx_session);
|
||||
mfxStatus sts = MFXCreateSession(mfx, 0, &mfx_session);
|
||||
EXPECT_EQ(MFX_ERR_NONE, sts);
|
||||
|
||||
// create proper bitstream
|
||||
@@ -112,7 +112,7 @@ TEST_P(OneVPL_Source_MFPAsyncDispatcherTest, open_and_decode_file)
|
||||
|
||||
MFXVideoDECODE_Close(mfx_session);
|
||||
MFXClose(mfx_session);
|
||||
MFXUnload(mfx_handle);
|
||||
MFXUnload(mfx);
|
||||
}
|
||||
|
||||
|
||||
|
||||
@@ -0,0 +1,495 @@
|
||||
// This file is part of OpenCV project.
|
||||
// It is subject to the license terms in the LICENSE file found in the top-level directory
|
||||
// of this distribution and at http://opencv.org/license.html.
|
||||
//
|
||||
// Copyright (C) 2022 Intel Corporation
|
||||
|
||||
|
||||
#include "../test_precomp.hpp"
|
||||
|
||||
#include "../common/gapi_tests_common.hpp"
|
||||
#include "../common/gapi_streaming_tests_common.hpp"
|
||||
|
||||
#include <chrono>
|
||||
#include <future>
|
||||
#include <tuple>
|
||||
|
||||
#include <opencv2/gapi/media.hpp>
|
||||
#include <opencv2/gapi/cpu/core.hpp>
|
||||
#include <opencv2/gapi/cpu/imgproc.hpp>
|
||||
|
||||
#include <opencv2/gapi/fluid/core.hpp>
|
||||
#include <opencv2/gapi/fluid/imgproc.hpp>
|
||||
#include <opencv2/gapi/fluid/gfluidkernel.hpp>
|
||||
|
||||
#include <opencv2/gapi/ocl/core.hpp>
|
||||
#include <opencv2/gapi/ocl/imgproc.hpp>
|
||||
|
||||
#include <opencv2/gapi/streaming/cap.hpp>
|
||||
#include <opencv2/gapi/streaming/desync.hpp>
|
||||
#include <opencv2/gapi/streaming/format.hpp>
|
||||
|
||||
#ifdef HAVE_ONEVPL
|
||||
|
||||
#include <opencv2/gapi/streaming/onevpl/data_provider_interface.hpp>
|
||||
#include "streaming/onevpl/file_data_provider.hpp"
|
||||
#include "streaming/onevpl/cfg_param_device_selector.hpp"
|
||||
|
||||
#include "streaming/onevpl/accelerators/surface/surface.hpp"
|
||||
#include "streaming/onevpl/accelerators/surface/cpu_frame_adapter.hpp"
|
||||
#include "streaming/onevpl/accelerators/surface/dx11_frame_adapter.hpp"
|
||||
#include "streaming/onevpl/accelerators/accel_policy_cpu.hpp"
|
||||
#include "streaming/onevpl/accelerators/accel_policy_dx11.hpp"
|
||||
#include "streaming/onevpl/accelerators/dx11_alloc_resource.hpp"
|
||||
#include "streaming/onevpl/accelerators/utils/shared_lock.hpp"
|
||||
#define private public
|
||||
#define protected public
|
||||
#include "streaming/onevpl/engine/decode/decode_engine_legacy.hpp"
|
||||
#include "streaming/onevpl/engine/decode/decode_session.hpp"
|
||||
|
||||
#include "streaming/onevpl/engine/preproc/preproc_engine.hpp"
|
||||
#include "streaming/onevpl/engine/preproc/preproc_session.hpp"
|
||||
|
||||
#include "streaming/onevpl/engine/transcode/transcode_engine_legacy.hpp"
|
||||
#include "streaming/onevpl/engine/transcode/transcode_session.hpp"
|
||||
#undef protected
|
||||
#undef private
|
||||
#include "logger.hpp"
|
||||
|
||||
#define ALIGN16(value) (((value + 15) >> 4) << 4)
|
||||
|
||||
namespace opencv_test
|
||||
{
|
||||
namespace
|
||||
{
|
||||
template<class ProcessingEngine>
|
||||
cv::MediaFrame extract_decoded_frame(mfxSession sessId, ProcessingEngine& engine) {
|
||||
using namespace cv::gapi::wip::onevpl;
|
||||
ProcessingEngineBase::ExecutionStatus status = ProcessingEngineBase::ExecutionStatus::Continue;
|
||||
while (0 == engine.get_ready_frames_count() &&
|
||||
status == ProcessingEngineBase::ExecutionStatus::Continue) {
|
||||
status = engine.process(sessId);
|
||||
}
|
||||
|
||||
if (engine.get_ready_frames_count() == 0) {
|
||||
GAPI_LOG_WARNING(nullptr, "failed: cannot obtain preprocessed frames, last status: " <<
|
||||
ProcessingEngineBase::status_to_string(status));
|
||||
throw std::runtime_error("cannot finalize VPP preprocessing operation");
|
||||
}
|
||||
cv::gapi::wip::Data data;
|
||||
engine.get_frame(data);
|
||||
return cv::util::get<cv::MediaFrame>(data);
|
||||
}
|
||||
|
||||
std::tuple<mfxLoader, mfxConfig> prepare_mfx(int mfx_codec, int mfx_accel_mode) {
|
||||
using namespace cv::gapi::wip::onevpl;
|
||||
mfxLoader mfx = MFXLoad();
|
||||
mfxConfig cfg_inst_0 = MFXCreateConfig(mfx);
|
||||
EXPECT_TRUE(cfg_inst_0);
|
||||
mfxVariant mfx_param_0;
|
||||
mfx_param_0.Type = MFX_VARIANT_TYPE_U32;
|
||||
mfx_param_0.Data.U32 = MFX_IMPL_TYPE_HARDWARE;
|
||||
EXPECT_EQ(MFXSetConfigFilterProperty(cfg_inst_0,(mfxU8 *)CfgParam::implementation_name(),
|
||||
mfx_param_0), MFX_ERR_NONE);
|
||||
|
||||
mfxConfig cfg_inst_1 = MFXCreateConfig(mfx);
|
||||
EXPECT_TRUE(cfg_inst_1);
|
||||
mfxVariant mfx_param_1;
|
||||
mfx_param_1.Type = MFX_VARIANT_TYPE_U32;
|
||||
mfx_param_1.Data.U32 = mfx_accel_mode;
|
||||
EXPECT_EQ(MFXSetConfigFilterProperty(cfg_inst_1,(mfxU8 *)CfgParam::acceleration_mode_name(),
|
||||
mfx_param_1), MFX_ERR_NONE);
|
||||
|
||||
mfxConfig cfg_inst_2 = MFXCreateConfig(mfx);
|
||||
EXPECT_TRUE(cfg_inst_2);
|
||||
mfxVariant mfx_param_2;
|
||||
mfx_param_2.Type = MFX_VARIANT_TYPE_U32;
|
||||
mfx_param_2.Data.U32 = mfx_codec;
|
||||
EXPECT_EQ(MFXSetConfigFilterProperty(cfg_inst_2,(mfxU8 *)CfgParam::decoder_id_name(),
|
||||
mfx_param_2), MFX_ERR_NONE);
|
||||
|
||||
mfxConfig cfg_inst_3 = MFXCreateConfig(mfx);
|
||||
EXPECT_TRUE(cfg_inst_3);
|
||||
mfxVariant mfx_param_3;
|
||||
mfx_param_3.Type = MFX_VARIANT_TYPE_U32;
|
||||
mfx_param_3.Data.U32 = MFX_EXTBUFF_VPP_SCALING;
|
||||
EXPECT_EQ(MFXSetConfigFilterProperty(cfg_inst_3,
|
||||
(mfxU8 *)"mfxImplDescription.mfxVPPDescription.filter.FilterFourCC",
|
||||
mfx_param_3), MFX_ERR_NONE);
|
||||
return std::make_tuple(mfx, cfg_inst_3);
|
||||
}
|
||||
|
||||
class SafeQueue {
|
||||
public:
|
||||
void push(cv::MediaFrame&& f) {
|
||||
std::unique_lock<std::mutex> lock(mutex);
|
||||
queue.push(std::move(f));
|
||||
cv.notify_all();
|
||||
}
|
||||
|
||||
cv::MediaFrame pop() {
|
||||
cv::MediaFrame ret;
|
||||
std::unique_lock<std::mutex> lock(mutex);
|
||||
cv.wait(lock, [this] () {
|
||||
return !queue.empty();
|
||||
});
|
||||
ret = queue.front();
|
||||
queue.pop();
|
||||
return ret;
|
||||
}
|
||||
|
||||
void push_stop() {
|
||||
push(cv::MediaFrame::Create<IStopAdapter>());
|
||||
}
|
||||
|
||||
static bool is_stop(const cv::MediaFrame &f) {
|
||||
try {
|
||||
return f.get<IStopAdapter>();
|
||||
} catch(...) {}
|
||||
return false;
|
||||
}
|
||||
|
||||
private:
|
||||
struct IStopAdapter final : public cv::MediaFrame::IAdapter {
|
||||
~IStopAdapter() {}
|
||||
cv::GFrameDesc meta() const { return {}; };
|
||||
MediaFrame::View access(MediaFrame::Access) { return {{}, {}}; };
|
||||
};
|
||||
private:
|
||||
std::condition_variable cv;
|
||||
std::mutex mutex;
|
||||
std::queue<cv::MediaFrame> queue;
|
||||
};
|
||||
|
||||
struct EmptyDataProvider : public cv::gapi::wip::onevpl::IDataProvider {
|
||||
|
||||
bool empty() const override {
|
||||
return true;
|
||||
}
|
||||
mfx_codec_id_type get_mfx_codec_id() const override {
|
||||
return std::numeric_limits<uint32_t>::max();
|
||||
}
|
||||
bool fetch_bitstream_data(std::shared_ptr<mfx_bitstream> &) override {
|
||||
return false;
|
||||
}
|
||||
};
|
||||
}
|
||||
|
||||
using source_t = std::string;
|
||||
using decoder_t = int;
|
||||
using acceleration_t = int;
|
||||
using out_frame_info_t = cv::GFrameDesc;
|
||||
using preproc_args_t = std::tuple<source_t, decoder_t, acceleration_t, out_frame_info_t>;
|
||||
|
||||
class VPPPreprocParams : public ::testing::TestWithParam<preproc_args_t> {};
|
||||
|
||||
preproc_args_t files[] = {
|
||||
preproc_args_t {"highgui/video/big_buck_bunny.h264",
|
||||
MFX_CODEC_AVC, MFX_ACCEL_MODE_VIA_D3D11,
|
||||
cv::GFrameDesc {cv::MediaFormat::NV12, {1920, 1080}}},
|
||||
preproc_args_t {"highgui/video/big_buck_bunny.h265",
|
||||
MFX_CODEC_HEVC, MFX_ACCEL_MODE_VIA_D3D11,
|
||||
cv::GFrameDesc {cv::MediaFormat::NV12, {1920, 1280}}}
|
||||
};
|
||||
|
||||
#ifdef HAVE_DIRECTX
|
||||
#ifdef HAVE_D3D11
|
||||
TEST(OneVPL_Source_PreprocEngine, functional_single_thread)
|
||||
{
|
||||
using namespace cv::gapi::wip::onevpl;
|
||||
using namespace cv::gapi::wip;
|
||||
|
||||
std::vector<CfgParam> cfg_params_w_dx11;
|
||||
cfg_params_w_dx11.push_back(CfgParam::create_acceleration_mode(MFX_ACCEL_MODE_VIA_D3D11));
|
||||
std::unique_ptr<VPLAccelerationPolicy> decode_accel_policy (
|
||||
new VPLDX11AccelerationPolicy(std::make_shared<CfgParamDeviceSelector>(cfg_params_w_dx11)));
|
||||
|
||||
// create file data provider
|
||||
std::string file_path = findDataFile("highgui/video/big_buck_bunny.h265");
|
||||
std::shared_ptr<IDataProvider> data_provider(new FileDataProvider(file_path,
|
||||
{CfgParam::create_decoder_id(MFX_CODEC_HEVC)}));
|
||||
|
||||
mfxLoader mfx{};
|
||||
mfxConfig mfx_cfg{};
|
||||
std::tie(mfx, mfx_cfg) = prepare_mfx(MFX_CODEC_HEVC, MFX_ACCEL_MODE_VIA_D3D11);
|
||||
|
||||
// create decode session
|
||||
mfxSession mfx_decode_session{};
|
||||
mfxStatus sts = MFXCreateSession(mfx, 0, &mfx_decode_session);
|
||||
EXPECT_EQ(MFX_ERR_NONE, sts);
|
||||
|
||||
// create decode engine
|
||||
auto device_selector = decode_accel_policy->get_device_selector();
|
||||
VPLLegacyDecodeEngine decode_engine(std::move(decode_accel_policy));
|
||||
auto sess_ptr = decode_engine.initialize_session(mfx_decode_session,
|
||||
cfg_params_w_dx11,
|
||||
data_provider);
|
||||
|
||||
// simulate net info
|
||||
cv::GFrameDesc required_frame_param {cv::MediaFormat::NV12,
|
||||
{1920, 1080}};
|
||||
|
||||
// create VPP preproc engine
|
||||
VPPPreprocEngine preproc_engine(std::unique_ptr<VPLAccelerationPolicy>{
|
||||
new VPLDX11AccelerationPolicy(device_selector)});
|
||||
|
||||
// launch pipeline
|
||||
// 1) decode frame
|
||||
cv::MediaFrame first_decoded_frame;
|
||||
ASSERT_NO_THROW(first_decoded_frame = extract_decoded_frame(sess_ptr->session, decode_engine));
|
||||
cv::GFrameDesc first_frame_decoded_desc = first_decoded_frame.desc();
|
||||
|
||||
// 1.5) create preproc session based on frame description & network info
|
||||
cv::util::optional<pp_params> first_pp_params = preproc_engine.is_applicable(first_decoded_frame);
|
||||
ASSERT_TRUE(first_pp_params.has_value());
|
||||
pp_session first_pp_sess = preproc_engine.initialize_preproc(first_pp_params.value(),
|
||||
required_frame_param);
|
||||
|
||||
// 2) make preproc using incoming decoded frame & preproc session
|
||||
cv::MediaFrame first_pp_frame = preproc_engine.run_sync(first_pp_sess, first_decoded_frame);
|
||||
cv::GFrameDesc first_outcome_pp_desc = first_pp_frame.desc();
|
||||
ASSERT_FALSE(first_frame_decoded_desc == first_outcome_pp_desc);
|
||||
|
||||
// do not hold media frames because they share limited DX11 surface pool resources
|
||||
first_decoded_frame = cv::MediaFrame();
|
||||
first_pp_frame = cv::MediaFrame();
|
||||
|
||||
// make test in loop
|
||||
bool in_progress = false;
|
||||
size_t frames_processed_count = 1;
|
||||
const auto &first_pp_param_value_impl =
|
||||
cv::util::get<cv::gapi::wip::onevpl::vpp_pp_params>(first_pp_params.value().value);
|
||||
try {
|
||||
while(true) {
|
||||
cv::MediaFrame decoded_frame = extract_decoded_frame(sess_ptr->session, decode_engine);
|
||||
in_progress = true;
|
||||
ASSERT_EQ(decoded_frame.desc(), first_frame_decoded_desc);
|
||||
|
||||
cv::util::optional<pp_params> params = preproc_engine.is_applicable(decoded_frame);
|
||||
ASSERT_TRUE(params.has_value());
|
||||
const auto &cur_pp_param_value_impl =
|
||||
cv::util::get<cv::gapi::wip::onevpl::vpp_pp_params>(params.value().value);
|
||||
|
||||
ASSERT_EQ(first_pp_param_value_impl.handle, cur_pp_param_value_impl.handle);
|
||||
ASSERT_TRUE(FrameInfoComparator::equal_to(first_pp_param_value_impl.info, cur_pp_param_value_impl.info));
|
||||
|
||||
pp_session pp_sess = preproc_engine.initialize_preproc(params.value(),
|
||||
required_frame_param);
|
||||
ASSERT_EQ(pp_sess.get<EngineSession>().get(),
|
||||
first_pp_sess.get<EngineSession>().get());
|
||||
|
||||
cv::MediaFrame pp_frame = preproc_engine.run_sync(pp_sess, decoded_frame);
|
||||
cv::GFrameDesc pp_desc = pp_frame.desc();
|
||||
ASSERT_TRUE(pp_desc == first_outcome_pp_desc);
|
||||
in_progress = false;
|
||||
frames_processed_count++;
|
||||
}
|
||||
} catch (...) {}
|
||||
|
||||
// test if interruption has happened
|
||||
ASSERT_FALSE(in_progress);
|
||||
ASSERT_NE(frames_processed_count, 1);
|
||||
}
|
||||
|
||||
|
||||
TEST_P(VPPPreprocParams, functional_different_threads)
|
||||
{
|
||||
using namespace cv::gapi::wip;
|
||||
using namespace cv::gapi::wip::onevpl;
|
||||
source_t file_path;
|
||||
decoder_t decoder_id;
|
||||
acceleration_t accel;
|
||||
out_frame_info_t required_frame_param;
|
||||
std::tie(file_path, decoder_id, accel, required_frame_param) = GetParam();
|
||||
|
||||
file_path = findDataFile(file_path);
|
||||
|
||||
std::vector<CfgParam> cfg_params_w_dx11;
|
||||
cfg_params_w_dx11.push_back(CfgParam::create_acceleration_mode(accel));
|
||||
std::unique_ptr<VPLAccelerationPolicy> decode_accel_policy (
|
||||
new VPLDX11AccelerationPolicy(std::make_shared<CfgParamDeviceSelector>(cfg_params_w_dx11)));
|
||||
|
||||
// create file data provider
|
||||
std::shared_ptr<IDataProvider> data_provider(new FileDataProvider(file_path,
|
||||
{CfgParam::create_decoder_id(decoder_id)}));
|
||||
|
||||
mfxLoader mfx{};
|
||||
mfxConfig mfx_cfg{};
|
||||
std::tie(mfx, mfx_cfg) = prepare_mfx(decoder_id, accel);
|
||||
|
||||
// create decode session
|
||||
mfxSession mfx_decode_session{};
|
||||
mfxStatus sts = MFXCreateSession(mfx, 0, &mfx_decode_session);
|
||||
EXPECT_EQ(MFX_ERR_NONE, sts);
|
||||
|
||||
// create decode engine
|
||||
auto device_selector = decode_accel_policy->get_device_selector();
|
||||
VPLLegacyDecodeEngine decode_engine(std::move(decode_accel_policy));
|
||||
auto sess_ptr = decode_engine.initialize_session(mfx_decode_session,
|
||||
cfg_params_w_dx11,
|
||||
data_provider);
|
||||
|
||||
// create VPP preproc engine
|
||||
VPPPreprocEngine preproc_engine(std::unique_ptr<VPLAccelerationPolicy>{
|
||||
new VPLDX11AccelerationPolicy(device_selector)});
|
||||
|
||||
// launch threads
|
||||
SafeQueue queue;
|
||||
size_t decoded_number = 1;
|
||||
size_t preproc_number = 0;
|
||||
|
||||
std::thread decode_thread([&decode_engine, sess_ptr,
|
||||
&queue, &decoded_number] () {
|
||||
// decode first frame
|
||||
{
|
||||
cv::MediaFrame decoded_frame;
|
||||
ASSERT_NO_THROW(decoded_frame = extract_decoded_frame(sess_ptr->session, decode_engine));
|
||||
queue.push(std::move(decoded_frame));
|
||||
}
|
||||
|
||||
// launch pipeline
|
||||
try {
|
||||
while(true) {
|
||||
queue.push(extract_decoded_frame(sess_ptr->session, decode_engine));
|
||||
decoded_number++;
|
||||
}
|
||||
} catch (...) {}
|
||||
|
||||
// send stop
|
||||
queue.push_stop();
|
||||
});
|
||||
|
||||
std::thread preproc_thread([&preproc_engine, &queue, &preproc_number, required_frame_param] () {
|
||||
// create preproc session based on frame description & network info
|
||||
cv::MediaFrame first_decoded_frame = queue.pop();
|
||||
cv::util::optional<pp_params> first_pp_params = preproc_engine.is_applicable(first_decoded_frame);
|
||||
ASSERT_TRUE(first_pp_params.has_value());
|
||||
pp_session first_pp_sess =
|
||||
preproc_engine.initialize_preproc(first_pp_params.value(), required_frame_param);
|
||||
|
||||
// make preproc using incoming decoded frame & preproc session
|
||||
cv::MediaFrame first_pp_frame = preproc_engine.run_sync(first_pp_sess, first_decoded_frame);
|
||||
cv::GFrameDesc first_outcome_pp_desc = first_pp_frame.desc();
|
||||
|
||||
// do not hold media frames because they share limited DX11 surface pool resources
|
||||
first_decoded_frame = cv::MediaFrame();
|
||||
first_pp_frame = cv::MediaFrame();
|
||||
|
||||
// launch pipeline
|
||||
bool in_progress = false;
|
||||
// let's allow counting of preprocessed frames to check this value later:
|
||||
// Currently, it looks redundant to implement any kind of gracefull shutdown logic
|
||||
// in this test - so let's apply agreement that media source is processed
|
||||
// succesfully when preproc_number != 1 in result
|
||||
preproc_number = 1;
|
||||
try {
|
||||
while(true) {
|
||||
cv::MediaFrame decoded_frame = queue.pop();
|
||||
if (SafeQueue::is_stop(decoded_frame)) {
|
||||
break;
|
||||
}
|
||||
in_progress = true;
|
||||
|
||||
cv::util::optional<pp_params> params = preproc_engine.is_applicable(decoded_frame);
|
||||
ASSERT_TRUE(params.has_value());
|
||||
ASSERT_TRUE(0 == memcmp(¶ms.value(), &first_pp_params.value(), sizeof(pp_params)));
|
||||
|
||||
pp_session pp_sess = preproc_engine.initialize_preproc(params.value(),
|
||||
required_frame_param);
|
||||
ASSERT_EQ(pp_sess.get<EngineSession>().get(),
|
||||
first_pp_sess.get<EngineSession>().get());
|
||||
|
||||
cv::MediaFrame pp_frame = preproc_engine.run_sync(pp_sess, decoded_frame);
|
||||
cv::GFrameDesc pp_desc = pp_frame.desc();
|
||||
ASSERT_TRUE(pp_desc == first_outcome_pp_desc);
|
||||
in_progress = false;
|
||||
preproc_number++;
|
||||
}
|
||||
} catch (...) {}
|
||||
|
||||
// test if interruption has happened
|
||||
ASSERT_FALSE(in_progress);
|
||||
ASSERT_NE(preproc_number, 1);
|
||||
});
|
||||
|
||||
decode_thread.join();
|
||||
preproc_thread.join();
|
||||
ASSERT_EQ(preproc_number, decoded_number);
|
||||
}
|
||||
|
||||
INSTANTIATE_TEST_CASE_P(OneVPL_Source_PreprocEngine, VPPPreprocParams,
|
||||
testing::ValuesIn(files));
|
||||
|
||||
using VPPInnerPreprocParams = VPPPreprocParams;
|
||||
TEST_P(VPPInnerPreprocParams, functional_inner_preproc_size)
|
||||
{
|
||||
using namespace cv::gapi::wip;
|
||||
using namespace cv::gapi::wip::onevpl;
|
||||
source_t file_path;
|
||||
decoder_t decoder_id;
|
||||
acceleration_t accel;
|
||||
out_frame_info_t required_frame_param;
|
||||
std::tie(file_path, decoder_id, accel, required_frame_param) = GetParam();
|
||||
|
||||
file_path = findDataFile(file_path);
|
||||
|
||||
std::vector<CfgParam> cfg_params_w_dx11_vpp;
|
||||
|
||||
// create accel policy
|
||||
cfg_params_w_dx11_vpp.push_back(CfgParam::create_acceleration_mode(accel));
|
||||
std::unique_ptr<VPLAccelerationPolicy> accel_policy (
|
||||
new VPLDX11AccelerationPolicy(std::make_shared<CfgParamDeviceSelector>(cfg_params_w_dx11_vpp)));
|
||||
|
||||
// create file data provider
|
||||
std::shared_ptr<IDataProvider> data_provider(new FileDataProvider(file_path,
|
||||
{CfgParam::create_decoder_id(decoder_id)}));
|
||||
|
||||
// create decode session
|
||||
mfxLoader mfx{};
|
||||
mfxConfig mfx_cfg{};
|
||||
std::tie(mfx, mfx_cfg) = prepare_mfx(decoder_id, accel);
|
||||
|
||||
mfxSession mfx_decode_session{};
|
||||
mfxStatus sts = MFXCreateSession(mfx, 0, &mfx_decode_session);
|
||||
EXPECT_EQ(MFX_ERR_NONE, sts);
|
||||
|
||||
// fill vpp params beforehand: resolution
|
||||
cfg_params_w_dx11_vpp.push_back(CfgParam::create_vpp_out_width(
|
||||
static_cast<uint16_t>(required_frame_param.size.width)));
|
||||
cfg_params_w_dx11_vpp.push_back(CfgParam::create_vpp_out_height(
|
||||
static_cast<uint16_t>(required_frame_param.size.height)));
|
||||
|
||||
// create transcode engine
|
||||
auto device_selector = accel_policy->get_device_selector();
|
||||
VPLLegacyTranscodeEngine engine(std::move(accel_policy));
|
||||
auto sess_ptr = engine.initialize_session(mfx_decode_session,
|
||||
cfg_params_w_dx11_vpp,
|
||||
data_provider);
|
||||
// make test in loop
|
||||
bool in_progress = false;
|
||||
size_t frames_processed_count = 1;
|
||||
try {
|
||||
while(true) {
|
||||
cv::MediaFrame decoded_frame = extract_decoded_frame(sess_ptr->session, engine);
|
||||
in_progress = true;
|
||||
ASSERT_EQ(decoded_frame.desc().size.width,
|
||||
ALIGN16(required_frame_param.size.width));
|
||||
ASSERT_EQ(decoded_frame.desc().size.height,
|
||||
ALIGN16(required_frame_param.size.height));
|
||||
ASSERT_EQ(decoded_frame.desc().fmt, required_frame_param.fmt);
|
||||
frames_processed_count++;
|
||||
in_progress = false;
|
||||
}
|
||||
} catch (...) {}
|
||||
|
||||
// test if interruption has happened
|
||||
ASSERT_FALSE(in_progress);
|
||||
ASSERT_NE(frames_processed_count, 1);
|
||||
}
|
||||
|
||||
INSTANTIATE_TEST_CASE_P(OneVPL_Source_PreprocInner, VPPInnerPreprocParams,
|
||||
testing::ValuesIn(files));
|
||||
#endif // HAVE_DIRECTX
|
||||
#endif // HAVE_D3D11
|
||||
} // namespace opencv_test
|
||||
#endif // HAVE_ONEVPL
|
||||
Reference in New Issue
Block a user