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EE2-1.7: On interpolation filter for TIMD
Non-EE2: On interpolation filter for TIMD
EE2-5.3: Cross-Chroma Input for Chroma-ALF and CC-ALF
EE2-2.3: CCP merge mode with adjustment
EE2-3.3: Additional inter merge candidates
EE2-3.1: Subblock-based spatial MVP
Non-EE2: Cross-Chroma Adaptive Loop-Filter
Non-EE2: Subblock-based spatial MVP
Non-EE2: CCP merge mode with adjustment
Non-EE2: On Sample-Based BDOF
Crosscheck of JVET-AK0187 (EE2-3.8: Implicit MTS extension)
EE2-1.17: Combination of EE2-1.16, EE2-1.11 and EE2-1.10
Non-EE2: Additional inter merge candidates
EE2-1.10: Bilateral Filtering for Intra Prediction
EE2-4.3: Boundary-Aware Offset Refinement for In-Loop-Filters
EE2-2.2: Enhanced derivation of affine merge candidates
Non-EE2: Boundary-aware Offset Refinement for In-Loop-Filters
Non-EE2: Enhanced derivation of affine merge candidates
Non-EE2: Bilateral Filtering for Intra Prediction
Non-EE2: Additional contexts for CABAC
EE2-3.10: SATD-based reordering
EE2 Test 3.12: Combined test of Test 3.6 and Test 3.11
EE2-5.4: Coding Information based Classification for ALF
EE2-5.3: Extended Usage of Fixed-Filters
EE2-3.2: Enhanced Inter Amvp
EE2 Test 2.22: A combination test of Test 2.19c and Test 3.10a
EE2-2.16: Unified reference area of IBC and IntraTMP
Crosscheck of JVET-AJ0097 (EE2-3.5: On POC conditions of BDOF)
EE2-3.6: GPM-affine with TM
Crosscheck of JVET-AI0110, Test EE2-2.1 (Merge-based intra prediction)
EE2-3.1: High Precision Sample Based Bi-Directional Optical Flow
Non-EE2: High Accuracy Sample Based Bi-Directional Optical Flow
Crosscheck of JVET-AH0128, Tests EE2-2.5c and EE2-2.5d (EE2-2.5 Combination of EE2-2.2,EE2-2.3, and EE2-2.4)
Non-EE2: Coding Information based ALF Classification
EE2-1.10: Bilateral Filtering for Intra Prediction
EE2-2.8: On DMVR Extensions
Non-EE2: On DMVR Extensions
Crosscheck of JVET-AE0136 (Non-EE2: Fix on TM-based reordering for affine MMVD mode)
EE2-3.8: Combination of Test 3.3e and Test 3.5
EE2-3.5: Iterative BDOF pass in multi-pass DMVR
EE2-related: Worst-Case Timing Reduction for ECM RA Simulations
EE2-related: On Iterative BDOF and EE2-2.6 Improvement
EE2-2.6: High-Precision MV Refinement for BDOF
Non-EE2: High-Precision MV Refinement for BDOF
EE2-2.6: Combination tests of Test 2.3, Test 2.4 and Test 2.5
EE2-3.3: Combination of EE2-3.1 and EE2-3.2
EE2-2.3: MMVD and Affine MMVD Extension
EE2-3.1: IBC Merge Mode with Block Vector Differences
EE2-related: On MMVD and Affine MMVD Extension
EE2-related: IBC Merge Mode with Block Vector Differences
EE2-3.9 and EE2-3.10: TM based reordering for MMVD and affine MMVD and MVD sign prediction
Crosscheck of JVET-Y0130: “EE2-related: Unification of availability check for intra mode coding”
Non-EE2: Template Matching-based Reordering for Extended MMVD Design
Crosscheck of JVET-X0132 (Non-EE2: On MVD sign prediction)
The interaction between LFNST and BDPCM
Alternative methods of LFNST index signalling
AHG9: General constraint information for LFNST
Separate transform skip checking of Luma and Chroma for LFNST index signalling
Alignment of MTS index signalling condition with MTS zero-out
Non-CE6: Combination of JVET-P0196 and JVET-P0392 on applying LFNST for ISP Blocks and simplifying the transform signalling
Non-CE6: Combination of ISP and LFNST
CE6: Summary Report on Transforms and Transform Signalling
Non-CE6: On LFNST kernels
Description of Core Experiment 6 (CE6): Transforms and transform signalling
Crosscheck of JVET-O0654 (AHG12/Non-CE5: Unification of boundary handling for adaptive loop filter)
Crosscheck of JVET-O0484 (CE3-related: Improved intra mode coding based on unified MPM list generation)
Crosscheck of JVET-O0295 (CE7-related: Modified subblock coding passes for coding TS residual)
Non-CE6: Block size restriction of LFNST
Non-CE6: LFNST simplification based on the methods proposed in CE6-2.1a
Non-CE3: Simplifications of MIP
CE8: Unified MVD and Block Vector Difference Coding (CE8-1.2)
CE3 Related: No MPM Derivation for Matrix Based Intra Prediction (MIP)
CE3 Related: Low Memory and Computational Complexity Matrix Based Intra Prediction (MIP)
CE6: Reduced Secondary Transform (RST) (CE6-3.1)
Cross-check of JVET-N0388 (Non-CE6: Shape Adaptive Transform Selection for ISP, SBT and MTS)
CE8-Related : On MVD Coding
CE6-related: Context selection of last non-zero coefficient position coding based on reduced TU size (related to JVET-M0297 and JVET-M0251/M0257)
CE6-related: 32 point MTS based on skipping high frequency coefficients
CE6: Reduced Secondary Transform (RST) (test 6.5.1)
Crosscheck of JVET-M0468 (Non-CE: Hadamard transform domain filter)
CE6: Fast DST-7/DCT-8 based on DFT (test 6.2.1)
CE6-related: Simplification related to MTS with reduced modes
CE4: Generic Vector Coding of Motion Vector Difference (Tests 4.4.1.a and 4.4.1.b)
CE 6-2.1: Reduced Secondary Transform (RST)
CE6-related: Combination test of CE 6-1.2-b and CE 6-2.1-a
CE6-related: Complexity reduction method based on skipping high frequency coefficients for inter MTS
Cross-check of JVET-L0421 (CE6-related: fast implementation of MTS transforms using matrix multiplication)
Cross-check of JVET-L0288 (CE6: Coupled Primary and Secondary Transform)
CE 6-1.1 (a,b): Selection of MTS Candidates
CE 6-1.1 (c,d): Fast DST-7/DCT-8 based on DFT and 32 point MTS based on skipping high frequency coefficients
CE6-Related: Multiplication Free Transform
CE4-related: Generic Vector Coding of Motion Vector Difference
CE6-Related : Matrix multiplication based NSST with reduced memory map
CE 6.2.6: Reduced Secondary Transform (RST)
CE 6.2.5: Layered Givens Transform (LGT)
CE 6.1.11: AMT replacement and restriction
CE4-related: Affine MVD Coding
Description of SDR video coding technology proposal by LG Electronics
Row-Column Transforms for Video Compression
CE6-related: NSST modification for wide angle intra prediction