Merge "vp9: Re-enable SVC datarate tests."
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17559cd8b5
@ -1256,7 +1256,7 @@ TEST_P(DatarateOnePassCbrSvc, OnePassCbrSvc2SL1TLScreenContent1) {
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// Check basic rate targeting for 1 pass CBR SVC: 2 spatial layers and
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// 3 temporal layers. Run CIF clip with 1 thread.
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TEST_P(DatarateOnePassCbrSvc, DISABLED_OnePassCbrSvc2SL3TL) {
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TEST_P(DatarateOnePassCbrSvc, OnePassCbrSvc2SL3TL) {
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cfg_.rc_buf_initial_sz = 500;
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cfg_.rc_buf_optimal_sz = 500;
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cfg_.rc_buf_sz = 1000;
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@ -1292,17 +1292,19 @@ TEST_P(DatarateOnePassCbrSvc, DISABLED_OnePassCbrSvc2SL3TL) {
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<< " The datarate for the file exceeds the target by too much!";
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ASSERT_LE(cfg_.rc_target_bitrate, file_datarate_ * 1.15)
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<< " The datarate for the file is lower than the target by too much!";
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#if CONFIG_VP9_DECODER
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// Number of temporal layers > 1, so half of the frames in this SVC pattern
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// will be non-reference frame and hence encoder will avoid loopfilter.
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// Since frame dropper is off, we can expcet 100 (half of the sequence)
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// mismatched frames.
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EXPECT_EQ(static_cast<unsigned int>(100), GetMismatchFrames());
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#endif
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}
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}
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// Check basic rate targeting for 1 pass CBR SVC with denoising.
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// 2 spatial layers and 3 temporal layer. Run HD clip with 2 threads.
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TEST_P(DatarateOnePassCbrSvc, DISABLED_OnePassCbrSvc2SL3TLDenoiserOn) {
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TEST_P(DatarateOnePassCbrSvc, OnePassCbrSvc2SL3TLDenoiserOn) {
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cfg_.rc_buf_initial_sz = 500;
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cfg_.rc_buf_optimal_sz = 500;
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cfg_.rc_buf_sz = 1000;
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@ -1338,11 +1340,13 @@ TEST_P(DatarateOnePassCbrSvc, DISABLED_OnePassCbrSvc2SL3TLDenoiserOn) {
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<< " The datarate for the file exceeds the target by too much!";
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ASSERT_LE(cfg_.rc_target_bitrate, file_datarate_ * 1.15)
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<< " The datarate for the file is lower than the target by too much!";
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#if CONFIG_VP9_DECODER
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// Number of temporal layers > 1, so half of the frames in this SVC pattern
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// will be non-reference frame and hence encoder will avoid loopfilter.
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// Since frame dropper is off, we can expcet 150 (half of the sequence)
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// mismatched frames.
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EXPECT_EQ(static_cast<unsigned int>(150), GetMismatchFrames());
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#endif
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}
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}
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@ -1389,7 +1393,7 @@ TEST_P(DatarateOnePassCbrSvc, DISABLED_OnePassCbrSvc2SL3TLSmallKf) {
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// Check basic rate targeting for 1 pass CBR SVC: 2 spatial layers and
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// 3 temporal layers. Run HD clip with 4 threads.
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TEST_P(DatarateOnePassCbrSvc, DISABLED_OnePassCbrSvc2SL3TL4threads) {
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TEST_P(DatarateOnePassCbrSvc, OnePassCbrSvc2SL3TL4threads) {
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cfg_.rc_buf_initial_sz = 500;
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cfg_.rc_buf_optimal_sz = 500;
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cfg_.rc_buf_sz = 1000;
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@ -1421,16 +1425,18 @@ TEST_P(DatarateOnePassCbrSvc, DISABLED_OnePassCbrSvc2SL3TL4threads) {
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<< " The datarate for the file exceeds the target by too much!";
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ASSERT_LE(cfg_.rc_target_bitrate, file_datarate_ * 1.15)
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<< " The datarate for the file is lower than the target by too much!";
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#if CONFIG_VP9_DECODER
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// Number of temporal layers > 1, so half of the frames in this SVC pattern
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// will be non-reference frame and hence encoder will avoid loopfilter.
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// Since frame dropper is off, we can expcet 150 (half of the sequence)
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// mismatched frames.
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EXPECT_EQ(static_cast<unsigned int>(150), GetMismatchFrames());
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#endif
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}
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// Check basic rate targeting for 1 pass CBR SVC: 3 spatial layers and
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// 3 temporal layers. Run CIF clip with 1 thread.
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TEST_P(DatarateOnePassCbrSvc, DISABLED_OnePassCbrSvc3SL3TL) {
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TEST_P(DatarateOnePassCbrSvc, OnePassCbrSvc3SL3TL) {
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cfg_.rc_buf_initial_sz = 500;
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cfg_.rc_buf_optimal_sz = 500;
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cfg_.rc_buf_sz = 1000;
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@ -1464,16 +1470,18 @@ TEST_P(DatarateOnePassCbrSvc, DISABLED_OnePassCbrSvc3SL3TL) {
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<< " The datarate for the file exceeds the target by too much!";
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ASSERT_LE(cfg_.rc_target_bitrate, file_datarate_ * 1.22)
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<< " The datarate for the file is lower than the target by too much!";
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#if CONFIG_VP9_DECODER
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// Number of temporal layers > 1, so half of the frames in this SVC pattern
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// will be non-reference frame and hence encoder will avoid loopfilter.
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// Since frame dropper is off, we can expcet 150 (half of the sequence)
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// mismatched frames.
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EXPECT_EQ(static_cast<unsigned int>(150), GetMismatchFrames());
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#endif
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}
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// Check basic rate targeting for 1 pass CBR SVC: 3 spatial layers and 3
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// temporal layers. Run CIF clip with 1 thread, and few short key frame periods.
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TEST_P(DatarateOnePassCbrSvc, DISABLED_OnePassCbrSvc3SL3TLSmallKf) {
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TEST_P(DatarateOnePassCbrSvc, OnePassCbrSvc3SL3TLSmallKf) {
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cfg_.rc_buf_initial_sz = 500;
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cfg_.rc_buf_optimal_sz = 500;
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cfg_.rc_buf_sz = 1000;
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@ -1515,7 +1523,7 @@ TEST_P(DatarateOnePassCbrSvc, DISABLED_OnePassCbrSvc3SL3TLSmallKf) {
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// Check basic rate targeting for 1 pass CBR SVC: 3 spatial layers and
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// 3 temporal layers. Run HD clip with 4 threads.
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TEST_P(DatarateOnePassCbrSvc, DISABLED_OnePassCbrSvc3SL3TL4threads) {
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TEST_P(DatarateOnePassCbrSvc, OnePassCbrSvc3SL3TL4threads) {
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cfg_.rc_buf_initial_sz = 500;
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cfg_.rc_buf_optimal_sz = 500;
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cfg_.rc_buf_sz = 1000;
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@ -1549,11 +1557,13 @@ TEST_P(DatarateOnePassCbrSvc, DISABLED_OnePassCbrSvc3SL3TL4threads) {
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<< " The datarate for the file exceeds the target by too much!";
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ASSERT_LE(cfg_.rc_target_bitrate, file_datarate_ * 1.22)
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<< " The datarate for the file is lower than the target by too much!";
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#if CONFIG_VP9_DECODER
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// Number of temporal layers > 1, so half of the frames in this SVC pattern
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// will be non-reference frame and hence encoder will avoid loopfilter.
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// Since frame dropper is off, we can expcet 150 (half of the sequence)
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// mismatched frames.
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EXPECT_EQ(static_cast<unsigned int>(150), GetMismatchFrames());
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#endif
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}
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// Run SVC encoder for 1 temporal layer, 2 spatial layers, with spatial
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