source: 3DVCSoftware/branches/HTM-14.1-update-dev1/source/Lib/TLibCommon/TypeDef.h @ 1307

Last change on this file since 1307 was 1307, checked in by chen, 9 years ago

The reactivation of fast texture encoding with the MACRO "NH_3D_FAST_TEXTURE_ENCODING".

by Yi-Wen Chen (yiwen.chen@…)

  • Property svn:eol-style set to native
File size: 62.5 KB
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33/** \file     TypeDef.h
34    \brief    Define basic types, new types and enumerations
35*/
36#ifndef __TYPEDEF__
37#define __TYPEDEF__
38#ifndef __COMMONDEF__
39#error Include CommonDef.h not TypeDef.h
40#endif
41#include <vector>
42//! \ingroup TLibCommon
43//! \{
44/////////////////////////////////////////////////////////////////////////////////////////
45///////////////////////////////// EXTENSION SELECTION /////////////////////////////////// 
46/////////////////////////////////////////////////////////////////////////////////////////
47/* HEVC_EXT might be defined by compiler/makefile options.
48   Linux makefiles support the following settings:   
49   make             -> HEVC_EXT not defined   
50   make HEVC_EXT=0  -> NH_MV=0 H_3D=0   --> plain HM
51   make HEVC_EXT=1  -> NH_MV=1 H_3D=0   --> MV only
52   make HEVC_EXT=2  -> NH_MV=1 H_3D=1   --> full 3D
53*/
54#ifndef HEVC_EXT
55#define HEVC_EXT                    2
56#endif
57#if ( HEVC_EXT < 0 )||( HEVC_EXT > 2 )
58#error HEVC_EXT must be in the range of 0 to 2, inclusive.
59#endif
60#define NH_MV          ( HEVC_EXT != 0)
61#define NH_3D          ( HEVC_EXT == 2)
62
63
64/////////////////////////////////////////////////////////////////////////////////////////
65///////////////////////////////////   MAJOR DEFINES   /////////////////////////////////// 
66/////////////////////////////////////////////////////////////////////////////////////////
67#if NH_MV
68#define NH_3D_DLT_FIX                     1 // Fixes numbers of parsed DLTs
69#define NH_3D_VER141_DEC_COMP_FLAG        0 // Makes decoding of this version compatible to HTM-14.1 by re-introducing HTM-14.1 bugs.
70#define NH_3D_ALIGN_SPIVMP_DBBP           1 // Further alignment of DBBP and SBP motion
71#define NH_3D_ALIGN_SPIVMP_RP             1 // Alignment of DBBP and RP
72#define NH_3D_FIX_VSP                     1
73
74#define H_MV_ENC_DEC_TRAC                 1  //< CU/PU level tracking
75#define H_MV_ENC_DEC_TRAC_FIX             1  // by SHARP
76
77#if NH_3D
78#define NH_3D_VSO                         1
79#define NH_3D_NBDV                        1
80#define NH_3D_TMVP                        1   // QC_TMVP_C0047
81                                              // Sony_M23639
82                                              // H_3D_TMVP_SCALING_FIX_K0053       1   // QC/CY for K0053
83#define NH_3D_IC                          1   // Illumination Compensation, JCT3V-B0045, JCT3V-C0046, JCT3V-D0060
84                                              // Unifying rounding offset, for IC part, JCT3V-D0135
85                                              // SHARP_ILLUCOMP_REFINE_E0046
86                                              // MTK_CLIPPING_ALIGN_IC_E0168       // To support simplify bi-prediction PU with identical motion checking, JCT3V-E0168
87                                              // LGE_IC_CTX_F0160 //JCT3V-F0160
88                                              // SEC_ONLY_TEXTURE_IC_F0151
89                                              // MTK_IC_FLAG_CABAC_SIMP_G0061
90                                              // SEC_IC_ARP_SIG_G0072, Disabling IC when ARP is enabled, option 1 in JCT3V-G0072, part 2 in JCT3V-G0121
91                                              // MTK_LOW_LATENCY_IC_ENCODING_H0086  Low-latency IC encoding in JCT3V-H0086
92                                              // MTK_LOW_LATENCY_IC_ENCODING_H0086_FIX  1  // Remove the global variables used in JCT3V-H0086
93                                              // SEC_IC_NEIGHBOR_CLIP_I0080    // Clipping of neighboring sample position, JCT3V-I0080
94                                              // LGE_CHROMA_IC_J0050_J0034
95
96#define NH_3D_IC_FIX                      1   // Fix uninitialized value in cDtParam.bUseIC (it happened on intra block)
97#define NH_3D_FULL_PEL_DEPTH_MAP_MV_ACC   1   // Full Pel Interpolation for Depth, HHI_FULL_PEL_DEPTH_MAP_MV_ACC
98
99#define NH_3D_QTLPC                       1   // OL_QTLIMIT_PREDCODING_B0068 //JCT3V-B0068
100                                              // HHI_QTLPC_RAU_OFF_C0160 JCT3V-C0160 change 2: quadtree limitation and predictive coding switched off in random access units
101                                              // MTK_TEX_DEP_PAR_G0055 Texture-partition-dependent depth partition. JCT3V-G0055
102
103#define NH_3D_NBDV_REF                    1
104#define NH_3D_MLC                         1
105#define NH_3D_FIX_PRUNING                 1
106#define NH_3D_VSP                         1
107#define NH_3D_IV_MERGE                    1
108#define NH_3D_SPIVMP                      1
109#define NH_3D_INTEGER_MV_DEPTH            1
110#define NH_3D_TEXT_MERGE                  1
111#define NH_3D_DBBP                         1
112#define BUF_FIX 1
113#define NH_3D_ARP                         1  // Advanced residual prediction (ARP), JCT3V-D0177
114                                              // QC_MTK_INTERVIEW_ARP_F0123_F0108 JCT3V-F0123; JCT3V-F0108
115                                              // SHARP_ARP_REF_CHECK_F0105        ARP reference picture selection and DPB check
116                                              // LGE_ARP_CTX_F0161                JCT3V-F0161
117                                              // MTK_ARP_FLAG_CABAC_SIMP_G0061 Use 2 context for ARP flag referring to only left neighbor block in JCT3V-G0061
118                                              // MTK_ARP_REF_SELECTION_G0053 ARP Reference picture selection in JCT3V-G0053
119                                              // MTK_ALIGN_SW_WD_BI_PRED_ARP_H0085  Align the SW and WD for the bi-prediction ARP PUs by disallowing non-normative fast bi-prediction for ARP PUs, JCT3V-H0085
120                                              // QC_I0051_ARP_SIMP         
121                                              // SHARP_ARP_CHROMA_I0104     
122                                              // MTK_I0072_IVARP_SCALING_FIX
123                                              // SEC_ARP_VIEW_REF_CHECK_J0037    Signaling iv_res_pred_weight_idx when the current slice has both view and temporal reference picture(s), JCT3V-J0037 item1
124                                              // SEC_ARP_REM_ENC_RESTRICT_K0035    Removal of encoder restriction of ARP, JCT3V-K0035
125
126#define NH_3D_DMM                         1   // Depth modeling modes
127#define NH_3D_DLT                         1   // Depth Lookup Table
128#define NH_3D_SDC_INTRA                   1   // Segment-wise DC Coding method for INTRA
129#define NH_3D_SDC_INTER                   1   // Segment-wise DC Coding method for INTER 
130#define NH_3D_ENC_DEPTH                   1   // Encoder optimizations for depth, incl.
131                                              // HHI_DEPTH_INTRA_SEARCH_RAU_C0160
132                                              // LG_ZEROINTRADEPTHRESI_A0087
133                                              // HHI_DMM4_ENC_I0066
134                                              // H_3D_FAST_DEPTH_INTRA
135#define NH_3D_DIS                         1
136#define NH_3D_FAST_TEXTURE_ENCODING       1   // Fast merge mode decision and early CU determination for texture component of dependent view, JCT3V-E0173
137#endif
138
139#if H_3D
140#define H_3D_QTLPC                        1   // OL_QTLIMIT_PREDCODING_B0068 //JCT3V-B0068
141                                              // HHI_QTLPC_RAU_OFF_C0160 JCT3V-C0160 change 2: quadtree limitation and predictive coding switched off in random access units
142                                              // MTK_TEX_DEP_PAR_G0055 Texture-partition-dependent depth partition. JCT3V-G0055
143#define H_3D_VSO                          1   // VSO, View synthesis optimization, includes:
144                                              // HHI_VSO
145                                              // HHI_VSO_LS_TABLE_M23714 enable table base Lagrange multiplier optimization
146                                              // SAIT_VSO_EST_A0033, JCT3V-A0033 modification 3
147                                              // LGE_WVSO_A0119
148                                              // SCU_HS_VSD_BUGFIX_IMPROV_G0163
149#define H_3D_NBDV                         1   // Neighboring block disparity derivation
150                                              // QC_JCT3V-A0097
151                                              // LGE_DVMCP_A0126
152                                              // LGE_DVMCP_MEM_REDUCTION_B0135     
153                                              // QC_SIMPLE_NBDV_B0047
154                                              // FIX_LGE_DVMCP_B0133
155                                              // QC_NBDV_LDB_FIX_C0055
156                                              // MTK_SAIT_TEMPORAL_FIRST_ORDER_C0141_C0097
157                                              // MTK_SIMPLIFY_DVTC_C0135           
158                                              // QC_CU_NBDV_D0181
159                                              // SEC_DEFAULT_DV_D0112
160                                              // MTK_DVMCP_FIX_E0172       fix the mismatch between software and WD for DV derivation from DVMCP blocks, issue 2 in JCT3V-E0172
161                                              // SEC_SIMPLIFIED_NBDV_E0142 Simplified NBDV, JCT3V-E0142 and JCT3V-E0190
162                                              // MTK_NBDV_TN_FIX_E0172     fix the issue of DV derivation from the temporal neighboring blocks, issue 7 in JCT3V-E0172
163                                              // MTK_TEXTURE_MRGCAND_BUGFIX_E0182  Bug fix for TEXTURE MERGING CANDIDATE     , JCT3V-E0182
164                                              // LGE_SIMP_DISP_AVAIL_J0041    // Use 2 status for disparity availability - DISP_AVAILABLE and DISP_NONE
165#define H_3D_IC                           1   // Illumination Compensation, JCT3V-B0045, JCT3V-C0046, JCT3V-D0060
166                                              // Unifying rounding offset, for IC part, JCT3V-D0135
167                                              // Full Pel Interpolation for Depth, HHI_FULL_PEL_DEPTH_MAP_MV_ACC
168                                              // SHARP_ILLUCOMP_REFINE_E0046
169                                              // MTK_CLIPPING_ALIGN_IC_E0168       // To support simplify bi-prediction PU with identical motion checking, JCT3V-E0168
170                                              // LGE_IC_CTX_F0160 //JCT3V-F0160
171                                              // SEC_ONLY_TEXTURE_IC_F0151
172                                              // MTK_IC_FLAG_CABAC_SIMP_G0061
173                                              // SEC_IC_ARP_SIG_G0072, Disabling IC when ARP is enabled, option 1 in JCT3V-G0072, part 2 in JCT3V-G0121
174                                              // MTK_LOW_LATENCY_IC_ENCODING_H0086  Low-latency IC encoding in JCT3V-H0086
175                                              // MTK_LOW_LATENCY_IC_ENCODING_H0086_FIX  1  // Remove the global variables used in JCT3V-H0086
176                                              // SEC_IC_NEIGHBOR_CLIP_I0080    // Clipping of neighboring sample position, JCT3V-I0080
177                                              // LGE_CHROMA_IC_J0050_J0034
178#if NH_3D_NBDV
179#define H_3D_NBDV_REF                     1   // Depth oriented neighboring block disparity derivation
180                                              // MTK_D0156
181                                              // MERL_D0166: Reference view selection in NBDV & Bi-VSP
182                                              // MERL_C0152: Basic VSP
183                                              // NBDV_DEFAULT_VIEWIDX_BUGFIX Bug fix for invalid default view index for NBDV
184                                              // NTT_DoNBDV_VECTOR_CLIP_E0141 disparity vector clipping in DoNBDV, JCT3V-E0141 and JCT3V-E0209
185                                              // SEC_VER_DONBDV_H0103          Vertical DV Restriction for DoNBDV
186#endif
187#define H_3D_VSP                          1   // View synthesis prediction
188                                              // MERL_C0152: Basic VSP
189                                              // MERL_D0166: Reference view selection in NBDV & Bi-VSP
190                                              // MTK_D0105, LG_D0139: No VSP for depth
191                                              // QC_D0191: Clean up
192                                              // LG_D0092: Multiple VSP candidate allowed
193                                              // MTK_VSP_FIX_ALIGN_WD_E0172
194                                              // NTT_VSP_ADAPTIVE_SPLIT_E0207 adaptive sub-PU partitioning in VSP, JCT3V-E0207
195                                              // NTT_VSP_DC_BUGFIX_E0208 bugfix for sub-PU based DC in VSP, JCT3V-E0208
196                                              // NTT_VSP_COMMON_E0207_E0208 common part of JCT3V-E0207 and JCT3V-E0208
197                                              // MTK_F0109_LG_F0120_VSP_BLOCK MTK_LG_SIMPLIFY_VSP_BLOCK_PARTITION_F0109_F0120 
198                                              // SHARP_VSP_BLOCK_IN_AMP_F0102 VSP partitioning for AMP
199                                              // MTK_VSP_SIMPLIFICATION_F0111 1. Inherited VSP also use NBDV of current CU, 2. VSP cannot be inherited from above LCU rowss
200                                              // LGE_SHARP_VSP_INHERIT_F0104
201                                              // NTT_STORE_SPDV_VSP_G0148 Storing Sub-PU based DV for VSP
202                                              // Restricted bi-prediction for VSP
203                                              // MTK_MRG_LIST_SIZE_CLEANUP_J0059   1   // Include VSP for deriving merge candidate list size, JCT3V-J0059
204                                              // SEC_A1_BASED_VSP_J0039            1   // Removal of redundant VSP in Merge list
205#define H_3D_IV_MERGE                     1   // Inter-view motion merge candidate
206                                              // HHI_INTER_VIEW_MOTION_PRED
207                                              // SAIT_IMPROV_MOTION_PRED_M24829, improved inter-view motion vector prediction
208                                              // QC_MRG_CANS_B0048             , JCT3V-B0048, B0086, B0069
209                                              // OL_DISMV_POS_B0069            , different pos for disparity MV candidate, B0069
210                                              // MTK_INTERVIEW_MERGE_A0049     , second part
211                                              // QC_AMVP_MRG_UNIFY_IVCAN_C0051     
212                                              // TEXTURE MERGING CANDIDATE     , JCT3V-C0137
213                                              // QC_INRIA_MTK_MRG_E0126
214                                              // ETRIKHU_MERGE_REUSE_F0093 QC_DEPTH_IV_MRG_F0125, JCT3V-F0125: Depth oriented Inter-view MV candidate
215                                              // EC_MPI_ENABLING_MERGE_F0150, MPI flag in VPS and enabling in Merge mode
216                                              // MTK_NBDV_IVREF_FIX_G0067      , Disable IvMC, VSP when IVREF is not available, JCT3V-G0067
217                                              // SEC_DEPTH_DV_DERIVAITON_G0074, Simplification of DV derivation for depth, JCT3V-G0074
218                                              // QC_DEPTH_MERGE_SIMP_G0127 Remove DV candidate and shifting candidate for depth coding
219                                              // QC_IV_PRED_CONSTRAINT_H0137   Constraint on inter-view (motion) prediction tools
220                                              // ETRIKHU_BUGFIX_H0083          bug-fix for DV candidate pruning
221                                              // ETRIKHU_CLEANUP_H0083         cleaned-up source code for constructing merging candidate list
222                                              // ETRIKHU_CLEANUP_H0083_MISSING missing guard macros added by GT
223                                              // SHARP_SIMPLE_MERGE_H0062      Restrict 3D-HEVC merge cand in small PUs
224                                              // MTK_DIS_SPBIP8X4_H0205        Disable bi-prediction for 8x4 and 4x8 sub PU and remove the SPIVMP 2Nx2N restriction
225                                              // SEC_ADAPT_DISABLE_IVMP        Disabling IVMP merge candidates when IC is enabled, JCT3V-H0070
226                                              // SEC_SIMP_SHIFTED_DV_I0086     Simplification of Shifted DV candidate, JCT3V-I0086
227                                              // SEC_SHIFTED_IVMC_POS_K0036    Position Derivation for Shifted-IVMC, JCT3V-K0036
228#define H_3D_TMVP                         1   // QC_TMVP_C0047
229                                              // Sony_M23639
230                                              // H_3D_TMVP_SCALING_FIX_K0053       1   // QC/CY for K0053
231#define H_3D_DIM                          1   // DIM, Depth intra modes, includes:
232                                              // HHI_DMM_WEDGE_INTRA
233                                              // HHI_DMM_PRED_TEX
234                                              // FIX_WEDGE_NOFLOAT_D0036
235                                              // LGE_EDGE_INTRA_A0070
236                                              // LGE_DMM3_SIMP_C0044
237                                              // QC_DC_PREDICTOR_D0183
238                                              // HHI_DELTADC_DLT_D0035
239                                              // PKU_QC_DEPTH_INTRA_UNI_D0195
240                                              // RWTH_SDC_DLT_B0036
241                                              // INTEL_SDC64_D0193
242                                              // RWTH_SDC_CTX_SIMPL_D0032
243                                              // LGE_CONCATENATE_D0141
244                                              // FIX_SDC_ENC_RD_WVSO_D0163
245                                              // MTK_SAMPLE_BASED_SDC_D0110
246                                              // SEC_DMM2_E0146_HHIFIX Removal of DMM2 from DMMs
247                                              // ZJU_DEPTH_INTRA_MODE_E0204 Simplified Binarization for depth_intra_mode
248                                              // KWU_SDC_SIMPLE_DC_E0117 Simplified DC calculation for SDC
249                                              // SCU_HS_DMM4_REMOVE_DIV_E0242 DMM4 Division Removal
250                                              // LGE_SDC_REMOVE_DC_E0158 Removal of DC mode from SDC
251                                              // LGE_PKU_DMM3_OVERLAP_E0159_HHIFIX 1   Removal of overlap between DMM3 and DMM1
252                                              // LGE_PRED_RES_CODING_DLT_DOMAIN_F0159 JCT3V-F0159
253                                              // HHI_DIM_PREDSAMP_FIX_F0171
254                                              // SEC_DMM3_RBC_F0147 Removal of DMM3 and RBC from DMMs
255                                              // QC_DIM_DELTADC_UNIFY_F0132 Unify delta DC coding in depth intra modes
256                                              // Unify intra SDC and inter SDC
257                                              // QC_GENERIC_SDC_G0122 Generalize SDC to all depth intra modes
258                                              // SCU_HS_DEPTH_DC_PRED_G0143
259                                              // HS_TSINGHUA_SDC_SPLIT_G0111
260                                              // QC_PKU_SDC_SPLIT_G0123 Intra SDC Split
261                                              // HS_DMM_SDC_PREDICTOR_UNIFY_H0108  Unification of DMM and SDC predictor derivation
262                                              // LGE_SIMP_DIM_NOT_PRESENT_FLAG_CODING_H0119_H0135  Use only one context for CABAC of dim_not_present_flag
263                                              // QC_SIMP_DELTADC_CODING_H0131   Simplify detaDC entropy coding
264                                              // MTK_DMM_SIMP_CODE_H0092        Remove CABAC context for DMM1 mode coding
265                                              // MTK_DELTA_DC_FLAG_ONE_CONTEXT_H0084_H0100_H0113 Use only one context for CABAC of delta_dc_flag as in JCTVC-H0084, JCTVC-H0100 and JCTVC-H0113
266                                              // MTK_SDC_FLAG_FIX_H0095                          Remove conditional check of PCM flag based on SDC flag, JCTVC-H0095
267                                              // SEC_NO_RESI_DLT_H0105   
268                                              // MTK_DLT_CODING_FIX_H0091
269                                              // HS_DMM_SIGNALLING_I0120
270                                              // SHARP_DMM1_I0110 LUT size reduction for DMM1 proposed in JCT3V-I0110
271                                              // FAST_SDC_OFFSET_DECISION_I0084
272                                              // SEPARATE_FLAG_I0085
273                                              // H_3D_DELTA_DLT
274                                              // RWTH_DLT_CLIP_I0057
275                                              // MTK_DMM_SIM_J0035
276                                              // MTK_J0033
277                                              // SHARP_DLT_SIMP_J0029 DLT(DepthValue2Idx[]) table derivation cleanup
278                                              // SHARP_DMM_CLEAN_K0042             1   // Generate DMM pattern with rotation
279#define H_3D_INTER_SDC                    1   // INTER SDC, Inter simplified depth coding
280                                              // LGE_INTER_SDC_E0156 Enable inter SDC for depth coding
281                                              // SEC_INTER_SDC_G0101 Improved inter SDC with multiple DC candidates
282#define H_3D_INTER_SDC_FIX                1
283#define H_3D_SPIVMP                       1   // H_3D_SPIVMP JCT3V-F0110: Sub-PU level inter-view motion prediction
284                                              // SEC_SPIVMP_MCP_SIZE_G0077, Apply SPIVMP only to 2Nx2N partition, JCT3V-G0077
285                                              // QC_SPIVMP_MPI_G0119 Sub-PU level MPI merge candidate
286                                              // Simplification on Sub-PU level temporal interview motion prediction
287                                              // MPI_SUBPU_DEFAULT_MV_H0077_H0099_H0111_H0133
288#define H_3D_DBBP                         1   // DBBP: Depth-based Block Partitioning and Merging
289                                              // MTK_DBBP_AMP_REM_H0072   
290                                              // RWTH_DBBP_NO_SPU_H0057   
291                                              // SEC_DBBP_FILTERING_H0104
292                                              // MTK_DBBP_SIGNALING_H0094   
293                                              // H_3D_FIX_DBBP_IVMP Fix . Enable IVMP is always disabled, when DBBP is enabled. The original intention is to disable Sub-PU IVMP when DBBP is enabled, not to disable IVMP itself.
294                                              // SEC_DBBP_EXPLICIT_SIG_I0077 Remove the partition derivation and signal dbbp_flag only when the partition mode is 2NxN/Nx2N, JCT3V-I0077
295                                              // Disallow DBBP in 8x8 CU, JCT3V-I0078
296                                              // SHARP_DBBP_SIMPLE_FLTER_I0109 Simple condition and one dimensional filter for DBBP
297                                              // SEC_DBBP_DMM4_THRESHOLD_I0076 Simplification of threshold derivation for DBBP and DMM4, JCT3V-I0076
298                                              // SEC_DBBP_VIEW_REF_CHECK_J0037 Signaling dbbp_flag when the current slice has view reference picture(s), JCT3V-J0037 item4
299                                              // RWTH_DBBP_NO_SATD_K0028
300                                              // HS_DBBP_CLEAN_K0048
301#define H_3D_DDD                          1   // Disparity derived depth coding
302                                              // LGE_DDD_REMOVAL_J0042_J0030 DDD removal
303#define H_3D_DIS                          1   // Depth intra skip
304                                              // SEC_DEPTH_INTRA_SKIP_MODE_K0033  Depth intra skip mode
305#define H_3D_FCO                          0   // Flexible coding order for 3D
306#define H_3D_FAST_INTRA_SDC               1   // I0123
307// OTHERS
308                                              // MTK_SONY_PROGRESSIVE_MV_COMPRESSION_E0170 // Progressive MV Compression, JCT3V-E0170
309#define H_3D_FAST_TEXTURE_ENCODING        1   // Fast merge mode decision and early CU determination for texture component of dependent view, JCT3V-E0173
310                                              // MTK_FAST_TEXTURE_ENCODING_E0173
311#if H_3D_DIM
312#define H_3D_FAST_DEPTH_INTRA             1   // Fast DMM Selection
313                                              // SCU_HS_FAST_DEPTH_INTRA_E0238_HHIFIX
314#endif
315//HLS
316                                             // HHI_DEPENDENCY_SIGNALLING_I1_J0107
317                                             // HHI_TOOL_PARAMETERS_I2_J0107
318                                             // HHI_VPS_3D_EXTENSION_I3_J0107
319                                             // HHI_INTER_COMP_PRED_K0052
320                                             // HHI_RES_PRED_K0052       
321                                             // HHI_CAM_PARA_K0052       
322                                             // H_3D_DIRECT_DEP_TYPE     
323// Rate Control
324#define KWU_FIX_URQ                       1
325#define KWU_RC_VIEWRC_E0227               0  ///< JCT3V-E0227, view-wise target bitrate allocation
326#define KWU_RC_MADPRED_E0227              0  ///< JCT3V-E0227, inter-view MAD prediction
327#endif // H_3D
328/////////////////////////////////////////////////////////////////////////////////////////
329///////////////////////////////////   DERIVED DEFINES /////////////////////////////////// 
330/////////////////////////////////////////////////////////////////////////////////////////
331#if NH_3D
332#define H_3D_OUTPUT_ACTIVE_TOOLS               0
333#define H_3D_REN_MAX_DEV_OUT                   0
334#endif
335///// ***** VIEW SYNTHESIS OPTIMIZAION *********
336#if NH_3D_VSO                                 
337#define H_3D_VSO_DIST_INT                 1   // Allow negative synthesized view distortion change
338#define H_3D_VSO_COLOR_PLANES             1   // Compute VSO distortion on color planes
339#define H_3D_VSO_EARLY_SKIP               1   // LGE_VSO_EARLY_SKIP_A0093, A0093 modification 4
340#define H_3D_VSO_RM_ASSERTIONS            0   // Output VSO assertions
341#define H_3D_VSO_SYNTH_DIST_OUT           0   // Output of synthesized view distortion instead of depth distortion in encoder output
342#endif
343////   ****** NEIGHBOURING BLOCK-BASED DISPARITY VECTOR  *********
344#if NH_3D_NBDV
345#define DVFROM_LEFT                       0
346#define DVFROM_ABOVE                      1
347#define IDV_CANDS                         2
348#endif
349///// ***** ADVANCED INTERVIEW RESIDUAL PREDICTION *********
350#if NH_3D_ARP
351#define H_3D_ARP_WFNR                     3
352#endif
353///// ***** DEPTH INTRA MODES *********
354#if H_3D_DIM
355                                              // HHI_DMM4_ENC_I0066
356#define H_3D_DIM_DMM                      1   // Depth Modeling Modes
357#define H_3D_DIM_SDC                      1   // Simplified Depth Coding method
358#define H_3D_DIM_DLT                      1   // Depth Lookup Table
359#define H_3D_DIM_ENC                      1   // Depth Intra encoder optimizations, includes:
360                                              // HHI_DEPTH_INTRA_SEARCH_RAU_C0160
361                                              // LG_ZEROINTRADEPTHRESI_A0087
362#endif
363/////////////////////////////////////////////////////////////////////////////////////
364/// GT: Move values which are not flags to CommonDef.h and convert to static int !!
365///////////////////////////////////////////////////////////////////////////////////
366///// ***** ILLUMATION COMPENSATION *********
367#if NH_3D_IC
368#define IC_REG_COST_SHIFT                 7
369#define IC_CONST_SHIFT                    5
370#define IC_SHIFT_DIFF                     12
371#define IC_LOW_LATENCY_ENCODING_THRESHOLD 0.1 // Threshold for low-latency IC encoding in JCT3V-H0086
372#endif
373///// ***** DEPTH BASED BLOCK PARTITIONING *********
374#if NH_3D_DBBP
375#define DBBP_INVALID_SHORT                (-4)
376#define DBBP_PACK_MODE               SIZE_2NxN
377#endif
378///// ***** FCO *********
379#if H_3D_FCO
380#define H_3D_FCO_VSP_DONBDV_E0163               1   // Adaptive depth reference for flexible coding order
381#else
382#define H_3D_FCO_VSP_DONBDV_E0163               0   // Adaptive depth reference for flexible coding order
383#endif
384#if H_3D
385#define PPS_FIX_DEPTH                           1
386#endif
387/////////////////////////////////////////////////////////////////////////////////
388///////////////////////////////////   MV_HEVC HLS  //////////////////////////////
389/////////////////////////////////////////////////////////////////////////////////
390// TBD: Check if integration is necessary.
391#define H_MV_HLS_PTL_LIMITS                  0
392#define H_MV_HLS7_GEN                        0  // General changes (not tested)
393// POC
394// #define H_MV_HLS_7_POC_P0041_3            0 // (POC/P0041/POC reset) #3 It was remarked that we should require each non-IRAP picture that has discardable_flag equal to 1 to have NUT value indicating that it is a sub-layer non-reference picture. This was agreed. Decision: Adopt (with constraint for discardable_flag as described above)
395// #define H_MV_HLS_7_POC_P0041_FIXES        0 // (POC/P0041/Fixes) For each non-IRAP picture that has discardable_flag equal to 1 to have NUT value indicating that it is a sub-layer non-reference picture.
396// #define H_MV_HLS_7_POC_P0056_4            0 // (POC/P0056/layer tree poc) #4 Proposal 1: If the POC reset approach is adopted as the basis for multi-layer POC derivation, it is proposed to derive the POC anchor picture from the previous TID0 picture (that is not a RASL picture, a RADL picture or a sub-layer non-reference picture and not with discardable_flag equal to 1) of  the current layer or any of its reference layer. This is asserted to improve loss resilience and reduce bit rate overhead. Decision: Adopt Proposal 1 (with the suggested modifications Ewith text provided as P0297).
397// SEI related
398//#define H_MV_HLS_8_SEI_NODOC_53  0 // #53 (SEI    /NODOC/Added Multiview view position SEI message) Plain copy from AVC.
399//#define H_MV_HLS_8_SEI_NODOC_52  0 // #52 (SEI    /NODOC/Added Multiview acquisition information SEI) Plain copy from AVC.
400//#define H_MV_HLS_8_SEI_NODOC_51  0 // #51 (SEI    /NODOC/Added Multiview scene information SEI message)
401//#define H_MV_HLS_8_SEI_Q0189_35  0 // #35 (SEI    /Q0189/SEI message for indicating constraints on TMVP) Proposal 2.3,  SEI message for indicating constraints on TMVP
402//#define H_MV_HLS_8_EDF_Q0116_29  0 // #29 (ED.FIX /Q0116/Recovery point SEI) , consider adding a note regarding how random accessibility is affected by the recovery point SEI message
403//#define H_MV_HLS_8_GEN_Q0183_23  0 // #23 (GEN    /Q0183/SEI clean-ups) numerous small clean-ups on SEI messages.
404//#define H_MV_HLS_8_MIS_Q0247_49  0 // #49 (MISC   /Q0247/frame-field information SEI message)
405//#define H_MV_HLS_8_MIS_Q0189_34  0 // #34 (MISC   /Q0189/slice temporal mvp enabled flag) Proposal 2.2, clarification of semantics of slice temporal mvp enabled flag
406//#define H_MV_HLS_8_EDF_Q0081_01  0 // #1  (ED.FIX /Q0081/alpha channel persist) On reuse of alpha planes in auxiliary pictures. It was asked why there would not be a presumption that the alpha channel content would simply persist, without needing the flag to indicate it. Decision (Ed.): Delegated to editors to clarify, as necessary, that the alpha channel content persists until cancelled or updated in output order.
407//#define H_MV_HLS_8_SEI_Q0253_37  0 // #37 (SEI    /Q0253/layer not present), modified semantics of layers not present SEI message to correct bug introduced during editing
408//#define H_MV_HLS_8_SEI_Q0045_11  0 // #11 (SEI    /Q0045/Overlay) Proposal for an SEI message on selectable overlays. Decision: Adopt (modified for variable-length strings).
409//#define H_MV_HLS_7_SEI_P0133_28  0 // (SEI/P0133/Recovery point SEI) #28 Decision: Adopt change to recover point semantics only (-v3)
410//#define H_MV_HLS_7_SEI_P0123_25  0 // (SEI/P0123/Alpha channel info) #25 Add alpha channel information SEI message Decision: Adopt. Constrain the bit depth indicated to be equal to the coded bit depth of the aux picture.
411// DPB
412//#define H_MV_HLS_8_HRD_Q0102_09  0 // #9  (HRD    /Q0102/NoOutputOfPriorPicsFlag) It was suggested that also the separate_colour_plane_flag should affect inference of NoOutputOfPriorPicsFlag. Decision (Ed.): Agreed (affects RExt text).
413//#define H_MV_HLS_8_DBP_Q0154_38  0 // #38 (DBP    /Q0154/VPS DPB) Proposal in C.5.2.1: Add in the decoding process that when a new VPS is activated, all pictures in the DPB are marked as unused for reference
414//#define H_MV_HLS_8_HRD_Q0154_10  0 // #10 (HRD    /Q0154/DPB Flushing and parameters) On picture flushing and DPB parameters Decision: Adopted (some details to be discussed further in BoG).
415//#define H_MV_HLS_7_OTHER_P0187_1 0 // (OTHER/P0187/NoOutputOfPriorPicsFlag) #1 Inference of NoOutputOfPriorPicsFlag and proposes to take into account colour format and bit depth for the inference in addition to spatial resolution
416// OTHERS
417//#define H_MV_HLS_8_HSB_Q0041_03  0 // #3  (HS     /Q0041/hybrid scalability) The proposed text was endorsed, with non-editorial open issues considered as follows ?// #define H_MV_HLS_7_OTHER_P0187_1          0 // (OTHER/P0187/NoOutputOfPriorPicsFlag) #1 Inference of NoOutputOfPriorPicsFlag and proposes to take into account colour format and bit depth for the inference in addition to spatial resolution
418//#define H_MV_HLS_8_MIS_Q0078_24  0 // #24 (MISC   /Q0078/scan and pic type) , Items 3 b,c and 4, clarifying which pictures in an output layer sets are applied the values of general_progressive_source_flag, general_interlaced_source_flag, general_non_packed_constraint_flag and general_frame_only_constraint_flag.
419//#define H_MV_HLS_7_HRD_P0138_6   0 //     (HRD/P0138/HRD parameters for bitstreams excluding) #6 Decision: Adopt (as revised in updated contribution, with the specification of a flag in the BP SEI (HRD/P0192/sub-DPB) #12 Establish sub-DPBs based on the representation format indicated at the VPS level. It was suggested that the expressed shared capacity limit would need to be less than or equal to the sum of the individual capacity limits. Decision: Adopt as modified. Further study is encouraged on profile/level constraint selections.
420/////////////////////////////////////////////////////////////////////////////////////////
421///////////////////////////////////   HM RELATED DEFINES ////////////////////////////////
422/////////////////////////////////////////////////////////////////////////////////////////
423#endif
424// ====================================================================================================================
425// Debugging
426// ====================================================================================================================
427#define DEBUG_STRING                                      0 ///< When enabled, prints out final decision debug info at encoder and decoder
428#define DEBUG_ENCODER_SEARCH_BINS                         0 ///< When enabled, prints out each bin as it is coded during encoder search
429#define DEBUG_CABAC_BINS                                  0 ///< When enabled, prints out each bin as it is coded during final encode and decode
430#define DEBUG_INTRA_SEARCH_COSTS                          0 ///< When enabled, prints out the cost for each mode during encoder search
431#define DEBUG_TRANSFORM_AND_QUANTISE                      0 ///< When enabled, prints out each TU as it passes through the transform-quantise-dequantise-inverseTransform process
432#define ENVIRONMENT_VARIABLE_DEBUG_AND_TEST               0 ///< When enabled, allows control of debug modifications via environment variables
433#define PRINT_MACRO_VALUES                                1 ///< When enabled, the encoder prints out a list of the non-environment-variable controlled macros and their values on startup
434// TODO: rename this macro to DECODER_DEBUG_BIT_STATISTICS (may currently cause merge issues with other branches)
435// This can be enabled by the makefile
436#ifndef RExt__DECODER_DEBUG_BIT_STATISTICS
437#define RExt__DECODER_DEBUG_BIT_STATISTICS                0 ///< 0 (default) = decoder reports as normal, 1 = decoder produces bit usage statistics (will impact decoder run time by up to ~10%)
438#endif
439// This can be enabled by the makefile
440#if !NH_MV
441#ifndef ENC_DEC_TRACE
442#define ENC_DEC_TRACE                                     0
443#endif
444#endif
445#define DEC_NUH_TRACE                                     0 ///< When trace enabled, enable tracing of NAL unit headers at the decoder (currently not possible at the encoder)
446#define PRINT_RPS_INFO                                    0 ///< Enable/disable the printing of bits used to send the RPS.
447// ====================================================================================================================
448// Tool Switches - transitory (these macros are likely to be removed in future revisions)
449// ====================================================================================================================
450#define DECODER_CHECK_SUBSTREAM_AND_SLICE_TRAILING_BYTES  1 ///< TODO: integrate this macro into a broader conformance checking system.
451#define T0196_SELECTIVE_RDOQ                              1 ///< selective RDOQ
452// ====================================================================================================================
453// Tool Switches
454// ====================================================================================================================
455#define ADAPTIVE_QP_SELECTION                             1 ///< G382: Adaptive reconstruction levels, non-normative part for adaptive QP selection
456#define AMP_ENC_SPEEDUP                                   1 ///< encoder only speed-up by AMP mode skipping
457#if AMP_ENC_SPEEDUP
458#define AMP_MRG                                           1 ///< encoder only force merge for AMP partition (no motion search for AMP)
459#endif
460#define FAST_BIT_EST                                      1   ///< G763: Table-based bit estimation for CABAC
461#define HHI_RQT_INTRA_SPEEDUP                             1           ///< tests one best mode with full rqt
462#define HHI_RQT_INTRA_SPEEDUP_MOD                         0           ///< tests two best modes with full rqt
463#if HHI_RQT_INTRA_SPEEDUP_MOD && !HHI_RQT_INTRA_SPEEDUP
464#error
465#endif
466#define MATRIX_MULT                                       0 ///< Brute force matrix multiplication instead of partial butterfly
467#define O0043_BEST_EFFORT_DECODING                        0 ///< 0 (default) = disable code related to best effort decoding, 1 = enable code relating to best effort decoding [ decode-side only ].
468#define RDOQ_CHROMA_LAMBDA                                1 ///< F386: weighting of chroma for RDOQ
469// This can be enabled by the makefile
470#ifndef RExt__HIGH_BIT_DEPTH_SUPPORT
471#define RExt__HIGH_BIT_DEPTH_SUPPORT                                           0 ///< 0 (default) use data type definitions for 8-10 bit video, 1 = use larger data types to allow for up to 16-bit video (originally developed as part of N0188)
472#endif
473// ====================================================================================================================
474// Derived macros
475// ====================================================================================================================
476#if RExt__HIGH_BIT_DEPTH_SUPPORT
477#define FULL_NBIT                                                              1 ///< When enabled, use distortion measure derived from all bits of source data, otherwise discard (bitDepth - 8) least-significant bits of distortion
478#define RExt__HIGH_PRECISION_FORWARD_TRANSFORM                                 1 ///< 0 use original 6-bit transform matrices for both forward and inverse transform, 1 (default) = use original matrices for inverse transform and high precision matrices for forward transform
479#else
480#define FULL_NBIT                                                              0 ///< When enabled, use distortion measure derived from all bits of source data, otherwise discard (bitDepth - 8) least-significant bits of distortion
481#define RExt__HIGH_PRECISION_FORWARD_TRANSFORM                                 0 ///< 0 (default) use original 6-bit transform matrices for both forward and inverse transform, 1 = use original matrices for inverse transform and high precision matrices for forward transform
482#endif
483#if FULL_NBIT
484# define DISTORTION_PRECISION_ADJUSTMENT(x)  0
485#else
486# define DISTORTION_PRECISION_ADJUSTMENT(x) (x)
487#endif
488#if DEBUG_STRING
489  #define DEBUG_STRING_PASS_INTO(name) , name
490  #define DEBUG_STRING_PASS_INTO_OPTIONAL(name, exp) , (exp==0)?0:name
491  #define DEBUG_STRING_FN_DECLARE(name) , std::string &name
492  #define DEBUG_STRING_FN_DECLAREP(name) , std::string *name
493  #define DEBUG_STRING_NEW(name) std::string name;
494  #define DEBUG_STRING_OUTPUT(os, name) os << name;
495  #define DEBUG_STRING_APPEND(str1, str2) str1+=str2;
496  #define DEBUG_STRING_SWAP(str1, str2) str1.swap(str2);
497  #define DEBUG_STRING_CHANNEL_CONDITION(compID) (true)
498  #include <sstream>
499  #include <iomanip>
500#else
501  #define DEBUG_STRING_PASS_INTO(name)
502  #define DEBUG_STRING_PASS_INTO_OPTIONAL(name, exp)
503  #define DEBUG_STRING_FN_DECLARE(name)
504  #define DEBUG_STRING_FN_DECLAREP(name)
505  #define DEBUG_STRING_NEW(name)
506  #define DEBUG_STRING_OUTPUT(os, name)
507  #define DEBUG_STRING_APPEND(str1, str2)
508  #define DEBUG_STRING_SWAP(srt1, str2)
509  #define DEBUG_STRING_CHANNEL_CONDITION(compID)
510#endif
511// ====================================================================================================================
512// Error checks
513// ====================================================================================================================
514#if ((RExt__HIGH_PRECISION_FORWARD_TRANSFORM != 0) && (RExt__HIGH_BIT_DEPTH_SUPPORT == 0))
515#error ERROR: cannot enable RExt__HIGH_PRECISION_FORWARD_TRANSFORM without RExt__HIGH_BIT_DEPTH_SUPPORT
516#endif
517// ====================================================================================================================
518// Basic type redefinition
519// ====================================================================================================================
520typedef       void                Void;
521typedef       bool                Bool;
522#ifdef __arm__
523typedef       signed char         Char;
524#else
525typedef       char                Char;
526#endif
527typedef       unsigned char       UChar;
528typedef       short               Short;
529typedef       unsigned short      UShort;
530typedef       int                 Int;
531typedef       unsigned int        UInt;
532typedef       double              Double;
533typedef       float               Float;
534// ====================================================================================================================
535// 64-bit integer type
536// ====================================================================================================================
537#ifdef _MSC_VER
538typedef       __int64             Int64;
539#if _MSC_VER <= 1200 // MS VC6
540typedef       __int64             UInt64;   // MS VC6 does not support unsigned __int64 to double conversion
541#else
542typedef       unsigned __int64    UInt64;
543#endif
544#else
545typedef       long long           Int64;
546typedef       unsigned long long  UInt64;
547#endif
548// ====================================================================================================================
549// Named numerical types
550// ====================================================================================================================
551#if RExt__HIGH_BIT_DEPTH_SUPPORT
552typedef       Int             Pel;               ///< pixel type
553typedef       Int64           TCoeff;            ///< transform coefficient
554typedef       Int             TMatrixCoeff;      ///< transform matrix coefficient
555typedef       Short           TFilterCoeff;      ///< filter coefficient
556typedef       Int64           Intermediate_Int;  ///< used as intermediate value in calculations
557typedef       UInt64          Intermediate_UInt; ///< used as intermediate value in calculations
558#else
559typedef       Short           Pel;               ///< pixel type
560typedef       Int             TCoeff;            ///< transform coefficient
561typedef       Short           TMatrixCoeff;      ///< transform matrix coefficient
562typedef       Short           TFilterCoeff;      ///< filter coefficient
563typedef       Int             Intermediate_Int;  ///< used as intermediate value in calculations
564typedef       UInt            Intermediate_UInt; ///< used as intermediate value in calculations
565#endif
566#if FULL_NBIT
567typedef       UInt64          Distortion;        ///< distortion measurement
568#else
569typedef       UInt            Distortion;        ///< distortion measurement
570#endif
571#if NH_MV                         
572typedef std::vector< Int >        IntAry1d;
573typedef std::vector< IntAry1d >   IntAry2d; 
574typedef std::vector< IntAry2d >   IntAry3d; 
575typedef std::vector< IntAry3d >   IntAry4d; 
576typedef std::vector< IntAry4d >   IntAry5d; 
577typedef std::vector< Bool >        BoolAry1d;
578typedef std::vector< BoolAry1d >   BoolAry2d; 
579typedef std::vector< BoolAry2d >   BoolAry3d; 
580typedef std::vector< BoolAry3d >   BoolAry4d; 
581typedef std::vector< BoolAry4d >   BoolAry5d; 
582#endif
583#if NH_3D_VSO
584// ====================================================================================================================
585// Define Distortion Types
586// ====================================================================================================================
587typedef       Int64           RMDist;     ///< renderer model distortion
588#if H_3D_VSO_DIST_INT
589typedef       Int64            Dist;       ///< RDO distortion
590typedef       Int64            Dist64; 
591#define       RDO_DIST_MIN     MIN_INT
592#define       RDO_DIST_MAX     MAX_INT
593#else
594typedef       UInt             Dist;       ///< RDO distortion
595typedef       UInt64           Dist; 
596#define       RDO_DIST_MIN     0
597#define       RDO_DIST_MAX     MAX_UINT
598#endif
599#endif
600// ====================================================================================================================
601// Enumeration
602// ====================================================================================================================
603enum RDPCMMode
604{
605  RDPCM_OFF             = 0,
606  RDPCM_HOR             = 1,
607  RDPCM_VER             = 2,
608  NUMBER_OF_RDPCM_MODES = 3
609};
610enum RDPCMSignallingMode
611{
612  RDPCM_SIGNAL_IMPLICIT            = 0,
613  RDPCM_SIGNAL_EXPLICIT            = 1,
614  NUMBER_OF_RDPCM_SIGNALLING_MODES = 2
615};
616/// supported slice type
617enum SliceType
618{
619  B_SLICE               = 0,
620  P_SLICE               = 1,
621  I_SLICE               = 2,
622  NUMBER_OF_SLICE_TYPES = 3
623};
624/// chroma formats (according to semantics of chroma_format_idc)
625enum ChromaFormat
626{
627  CHROMA_400        = 0,
628  CHROMA_420        = 1,
629  CHROMA_422        = 2,
630  CHROMA_444        = 3,
631  NUM_CHROMA_FORMAT = 4
632};
633enum ChannelType
634{
635  CHANNEL_TYPE_LUMA    = 0,
636  CHANNEL_TYPE_CHROMA  = 1,
637  MAX_NUM_CHANNEL_TYPE = 2
638};
639enum ComponentID
640{
641  COMPONENT_Y       = 0,
642  COMPONENT_Cb      = 1,
643  COMPONENT_Cr      = 2,
644  MAX_NUM_COMPONENT = 3
645};
646enum InputColourSpaceConversion // defined in terms of conversion prior to input of encoder.
647{
648  IPCOLOURSPACE_UNCHANGED               = 0,
649  IPCOLOURSPACE_YCbCrtoYCrCb            = 1, // Mainly used for debug!
650  IPCOLOURSPACE_YCbCrtoYYY              = 2, // Mainly used for debug!
651  IPCOLOURSPACE_RGBtoGBR                = 3,
652  NUMBER_INPUT_COLOUR_SPACE_CONVERSIONS = 4
653};
654enum DeblockEdgeDir
655{
656  EDGE_VER     = 0,
657  EDGE_HOR     = 1,
658  NUM_EDGE_DIR = 2
659};
660/// supported partition shape
661enum PartSize
662{
663  SIZE_2Nx2N           = 0,           ///< symmetric motion partition,  2Nx2N
664  SIZE_2NxN            = 1,           ///< symmetric motion partition,  2Nx N
665  SIZE_Nx2N            = 2,           ///< symmetric motion partition,   Nx2N
666  SIZE_NxN             = 3,           ///< symmetric motion partition,   Nx N
667  SIZE_2NxnU           = 4,           ///< asymmetric motion partition, 2Nx( N/2) + 2Nx(3N/2)
668  SIZE_2NxnD           = 5,           ///< asymmetric motion partition, 2Nx(3N/2) + 2Nx( N/2)
669  SIZE_nLx2N           = 6,           ///< asymmetric motion partition, ( N/2)x2N + (3N/2)x2N
670  SIZE_nRx2N           = 7,           ///< asymmetric motion partition, (3N/2)x2N + ( N/2)x2N
671  NUMBER_OF_PART_SIZES = 8
672};
673/// supported prediction type
674enum PredMode
675{
676  MODE_INTER                 = 0,     ///< inter-prediction mode
677  MODE_INTRA                 = 1,     ///< intra-prediction mode
678  NUMBER_OF_PREDICTION_MODES = 2,
679};
680/// reference list index
681enum RefPicList
682{
683  REF_PIC_LIST_0               = 0,   ///< reference list 0
684  REF_PIC_LIST_1               = 1,   ///< reference list 1
685  NUM_REF_PIC_LIST_01          = 2,
686  REF_PIC_LIST_X               = 100  ///< special mark
687};
688/// distortion function index
689enum DFunc
690{
691  DF_DEFAULT         = 0,
692  DF_SSE             = 1,      ///< general size SSE
693  DF_SSE4            = 2,      ///<   4xM SSE
694  DF_SSE8            = 3,      ///<   8xM SSE
695  DF_SSE16           = 4,      ///<  16xM SSE
696  DF_SSE32           = 5,      ///<  32xM SSE
697  DF_SSE64           = 6,      ///<  64xM SSE
698  DF_SSE16N          = 7,      ///< 16NxM SSE
699  DF_SAD             = 8,      ///< general size SAD
700  DF_SAD4            = 9,      ///<   4xM SAD
701  DF_SAD8            = 10,     ///<   8xM SAD
702  DF_SAD16           = 11,     ///<  16xM SAD
703  DF_SAD32           = 12,     ///<  32xM SAD
704  DF_SAD64           = 13,     ///<  64xM SAD
705  DF_SAD16N          = 14,     ///< 16NxM SAD
706  DF_SADS            = 15,     ///< general size SAD with step
707  DF_SADS4           = 16,     ///<   4xM SAD with step
708  DF_SADS8           = 17,     ///<   8xM SAD with step
709  DF_SADS16          = 18,     ///<  16xM SAD with step
710  DF_SADS32          = 19,     ///<  32xM SAD with step
711  DF_SADS64          = 20,     ///<  64xM SAD with step
712  DF_SADS16N         = 21,     ///< 16NxM SAD with step
713  DF_HADS            = 22,     ///< general size Hadamard with step
714  DF_HADS4           = 23,     ///<   4xM HAD with step
715  DF_HADS8           = 24,     ///<   8xM HAD with step
716  DF_HADS16          = 25,     ///<  16xM HAD with step
717  DF_HADS32          = 26,     ///<  32xM HAD with step
718  DF_HADS64          = 27,     ///<  64xM HAD with step
719  DF_HADS16N         = 28,     ///< 16NxM HAD with step
720#if NH_3D_VSO
721  DF_VSD      = 29,      ///< general size VSD
722  DF_VSD4     = 30,      ///<   4xM VSD
723  DF_VSD8     = 31,      ///<   8xM VSD
724  DF_VSD16    = 32,      ///<  16xM VSD
725  DF_VSD32    = 33,      ///<  32xM VSD
726  DF_VSD64    = 34,      ///<  64xM VSD
727  DF_VSD16N   = 35,      ///< 16NxM VSD
728#endif
729  DF_SAD12           = 43,
730  DF_SAD24           = 44,
731  DF_SAD48           = 45,
732  DF_SADS12          = 46,
733  DF_SADS24          = 47,
734  DF_SADS48          = 48,
735  DF_SSE_FRAME       = 50,     ///< Frame-based SSE
736  DF_TOTAL_FUNCTIONS = 64
737};
738/// index for SBAC based RD optimization
739enum CI_IDX
740{
741  CI_CURR_BEST = 0,     ///< best mode index
742  CI_NEXT_BEST,         ///< next best index
743  CI_TEMP_BEST,         ///< temporal index
744  CI_CHROMA_INTRA,      ///< chroma intra index
745  CI_QT_TRAFO_TEST,
746  CI_QT_TRAFO_ROOT,
747  CI_NUM,               ///< total number
748};
749/// motion vector predictor direction used in AMVP
750enum MVP_DIR
751{
752  MD_LEFT = 0,          ///< MVP of left block
753  MD_ABOVE,             ///< MVP of above block
754  MD_ABOVE_RIGHT,       ///< MVP of above right block
755  MD_BELOW_LEFT,        ///< MVP of below left block
756  MD_ABOVE_LEFT         ///< MVP of above left block
757};
758#if NH_3D_MLC
759enum DefaultMergCandOrder
760{
761  MRG_T = 0,            ///< MPI
762  MRG_D,                ///< DDD
763  MRG_IVMC,             ///< Temporal inter-view
764  MRG_A1,               ///< Left
765  MRG_B1,               ///< Above
766  MRG_VSP,              ///< VSP
767  MRG_B0,               ///< Above right
768  MRG_IVDC,             ///< Disparity inter-view
769  MRG_A0,               ///< Left bottom
770  MRG_B2,               ///< Above left
771  MRG_IVSHIFT,          ///< Shifted IVMC or Shifted IVDC. (These are mutually exclusive)
772  MRG_COL               ///< Temporal co-located
773};
774#endif
775enum StoredResidualType
776{
777  RESIDUAL_RECONSTRUCTED          = 0,
778  RESIDUAL_ENCODER_SIDE           = 1,
779  NUMBER_OF_STORED_RESIDUAL_TYPES = 2
780};
781enum TransformDirection
782{
783  TRANSFORM_FORWARD              = 0,
784  TRANSFORM_INVERSE              = 1,
785  TRANSFORM_NUMBER_OF_DIRECTIONS = 2
786};
787/// supported ME search methods
788enum MESearchMethod
789{
790  FULL_SEARCH                = 0,     ///< Full search
791  DIAMOND                    = 1,     ///< Fast search
792  SELECTIVE                  = 2      ///< Selective search
793};
794/// coefficient scanning type used in ACS
795enum COEFF_SCAN_TYPE
796{
797  SCAN_DIAG = 0,        ///< up-right diagonal scan
798  SCAN_HOR  = 1,        ///< horizontal first scan
799  SCAN_VER  = 2,        ///< vertical first scan
800  SCAN_NUMBER_OF_TYPES = 3
801};
802enum COEFF_SCAN_GROUP_TYPE
803{
804  SCAN_UNGROUPED   = 0,
805  SCAN_GROUPED_4x4 = 1,
806  SCAN_NUMBER_OF_GROUP_TYPES = 2
807};
808enum SignificanceMapContextType
809{
810  CONTEXT_TYPE_4x4    = 0,
811  CONTEXT_TYPE_8x8    = 1,
812  CONTEXT_TYPE_NxN    = 2,
813  CONTEXT_TYPE_SINGLE = 3,
814  CONTEXT_NUMBER_OF_TYPES = 4
815};
816enum ScalingListMode
817{
818  SCALING_LIST_OFF,
819  SCALING_LIST_DEFAULT,
820  SCALING_LIST_FILE_READ
821};
822enum ScalingListSize
823{
824  SCALING_LIST_4x4 = 0,
825  SCALING_LIST_8x8,
826  SCALING_LIST_16x16,
827  SCALING_LIST_32x32,
828  SCALING_LIST_SIZE_NUM
829};
830// Slice / Slice segment encoding modes
831enum SliceConstraint
832{
833  NO_SLICES              = 0,          ///< don't use slices / slice segments
834  FIXED_NUMBER_OF_CTU    = 1,          ///< Limit maximum number of largest coding tree units in a slice / slice segments
835  FIXED_NUMBER_OF_BYTES  = 2,          ///< Limit maximum number of bytes in a slice / slice segment
836  FIXED_NUMBER_OF_TILES  = 3,          ///< slices / slice segments span an integer number of tiles
837};
838enum SAOMode //mode
839{
840  SAO_MODE_OFF = 0,
841  SAO_MODE_NEW,
842  SAO_MODE_MERGE,
843  NUM_SAO_MODES
844};
845enum SAOModeMergeTypes
846{
847  SAO_MERGE_LEFT =0,
848  SAO_MERGE_ABOVE,
849  NUM_SAO_MERGE_TYPES
850};
851enum SAOModeNewTypes
852{
853  SAO_TYPE_START_EO =0,
854  SAO_TYPE_EO_0 = SAO_TYPE_START_EO,
855  SAO_TYPE_EO_90,
856  SAO_TYPE_EO_135,
857  SAO_TYPE_EO_45,
858  SAO_TYPE_START_BO,
859  SAO_TYPE_BO = SAO_TYPE_START_BO,
860  NUM_SAO_NEW_TYPES
861};
862#define NUM_SAO_EO_TYPES_LOG2 2
863enum SAOEOClasses
864{
865  SAO_CLASS_EO_FULL_VALLEY = 0,
866  SAO_CLASS_EO_HALF_VALLEY = 1,
867  SAO_CLASS_EO_PLAIN       = 2,
868  SAO_CLASS_EO_HALF_PEAK   = 3,
869  SAO_CLASS_EO_FULL_PEAK   = 4,
870  NUM_SAO_EO_CLASSES,
871};
872#define NUM_SAO_BO_CLASSES_LOG2  5
873#define NUM_SAO_BO_CLASSES       (1<<NUM_SAO_BO_CLASSES_LOG2)
874namespace Profile
875{
876  enum Name
877  {
878    NONE = 0,
879    MAIN = 1,
880    MAIN10 = 2,
881    MAINSTILLPICTURE = 3,
882    MAINREXT = 4,
883    HIGHTHROUGHPUTREXT = 5
884#if NH_MV
885    ,MULTIVIEWMAIN = 6,
886#if NH_3D
887    MAIN3D = 8, 
888#endif
889#endif
890  };
891}
892namespace Level
893{
894  enum Tier
895  {
896    MAIN = 0,
897    HIGH = 1,
898  };
899  enum Name
900  {
901    // code = (level * 30)
902    NONE     = 0,
903    LEVEL1   = 30,
904    LEVEL2   = 60,
905    LEVEL2_1 = 63,
906    LEVEL3   = 90,
907    LEVEL3_1 = 93,
908    LEVEL4   = 120,
909    LEVEL4_1 = 123,
910    LEVEL5   = 150,
911    LEVEL5_1 = 153,
912    LEVEL5_2 = 156,
913    LEVEL6   = 180,
914    LEVEL6_1 = 183,
915    LEVEL6_2 = 186,
916    LEVEL8_5 = 255,
917  };
918}
919enum CostMode
920{
921  COST_STANDARD_LOSSY              = 0,
922  COST_SEQUENCE_LEVEL_LOSSLESS     = 1,
923  COST_LOSSLESS_CODING             = 2,
924  COST_MIXED_LOSSLESS_LOSSY_CODING = 3
925};
926enum SPSExtensionFlagIndex
927{
928  SPS_EXT__REXT           = 0,
929//SPS_EXT__MVHEVC         = 1, //for use in future versions
930//SPS_EXT__SHVC           = 2, //for use in future versions
931  NUM_SPS_EXTENSION_FLAGS = 8
932};
933enum PPSExtensionFlagIndex
934{
935  PPS_EXT__REXT           = 0,
936//PPS_EXT__MVHEVC         = 1, //for use in future versions
937//PPS_EXT__SHVC           = 2, //for use in future versions
938  NUM_PPS_EXTENSION_FLAGS = 8
939};
940// TODO: Existing names used for the different NAL unit types can be altered to better reflect the names in the spec.
941//       However, the names in the spec are not yet stable at this point. Once the names are stable, a cleanup
942//       effort can be done without use of macros to alter the names used to indicate the different NAL unit types.
943enum NalUnitType
944{
945  NAL_UNIT_CODED_SLICE_TRAIL_N = 0, // 0
946  NAL_UNIT_CODED_SLICE_TRAIL_R,     // 1
947  NAL_UNIT_CODED_SLICE_TSA_N,       // 2
948  NAL_UNIT_CODED_SLICE_TSA_R,       // 3
949  NAL_UNIT_CODED_SLICE_STSA_N,      // 4
950  NAL_UNIT_CODED_SLICE_STSA_R,      // 5
951  NAL_UNIT_CODED_SLICE_RADL_N,      // 6
952  NAL_UNIT_CODED_SLICE_RADL_R,      // 7
953  NAL_UNIT_CODED_SLICE_RASL_N,      // 8
954  NAL_UNIT_CODED_SLICE_RASL_R,      // 9
955  NAL_UNIT_RESERVED_VCL_N10,
956  NAL_UNIT_RESERVED_VCL_R11,
957  NAL_UNIT_RESERVED_VCL_N12,
958  NAL_UNIT_RESERVED_VCL_R13,
959  NAL_UNIT_RESERVED_VCL_N14,
960  NAL_UNIT_RESERVED_VCL_R15,
961  NAL_UNIT_CODED_SLICE_BLA_W_LP,    // 16
962  NAL_UNIT_CODED_SLICE_BLA_W_RADL,  // 17
963  NAL_UNIT_CODED_SLICE_BLA_N_LP,    // 18
964  NAL_UNIT_CODED_SLICE_IDR_W_RADL,  // 19
965  NAL_UNIT_CODED_SLICE_IDR_N_LP,    // 20
966  NAL_UNIT_CODED_SLICE_CRA,         // 21
967  NAL_UNIT_RESERVED_IRAP_VCL22,
968  NAL_UNIT_RESERVED_IRAP_VCL23,
969  NAL_UNIT_RESERVED_VCL24,
970  NAL_UNIT_RESERVED_VCL25,
971  NAL_UNIT_RESERVED_VCL26,
972  NAL_UNIT_RESERVED_VCL27,
973  NAL_UNIT_RESERVED_VCL28,
974  NAL_UNIT_RESERVED_VCL29,
975  NAL_UNIT_RESERVED_VCL30,
976  NAL_UNIT_RESERVED_VCL31,
977  NAL_UNIT_VPS,                     // 32
978  NAL_UNIT_SPS,                     // 33
979  NAL_UNIT_PPS,                     // 34
980  NAL_UNIT_ACCESS_UNIT_DELIMITER,   // 35
981  NAL_UNIT_EOS,                     // 36
982  NAL_UNIT_EOB,                     // 37
983  NAL_UNIT_FILLER_DATA,             // 38
984  NAL_UNIT_PREFIX_SEI,              // 39
985  NAL_UNIT_SUFFIX_SEI,              // 40
986  NAL_UNIT_RESERVED_NVCL41,
987  NAL_UNIT_RESERVED_NVCL42,
988  NAL_UNIT_RESERVED_NVCL43,
989  NAL_UNIT_RESERVED_NVCL44,
990  NAL_UNIT_RESERVED_NVCL45,
991  NAL_UNIT_RESERVED_NVCL46,
992  NAL_UNIT_RESERVED_NVCL47,
993  NAL_UNIT_UNSPECIFIED_48,
994  NAL_UNIT_UNSPECIFIED_49,
995  NAL_UNIT_UNSPECIFIED_50,
996  NAL_UNIT_UNSPECIFIED_51,
997  NAL_UNIT_UNSPECIFIED_52,
998  NAL_UNIT_UNSPECIFIED_53,
999  NAL_UNIT_UNSPECIFIED_54,
1000  NAL_UNIT_UNSPECIFIED_55,
1001  NAL_UNIT_UNSPECIFIED_56,
1002  NAL_UNIT_UNSPECIFIED_57,
1003  NAL_UNIT_UNSPECIFIED_58,
1004  NAL_UNIT_UNSPECIFIED_59,
1005  NAL_UNIT_UNSPECIFIED_60,
1006  NAL_UNIT_UNSPECIFIED_61,
1007  NAL_UNIT_UNSPECIFIED_62,
1008  NAL_UNIT_UNSPECIFIED_63,
1009  NAL_UNIT_INVALID,
1010};
1011#if NH_MV
1012/// scalability types
1013enum ScalabilityType
1014{
1015  DEPTH_ID = 0,   
1016  VIEW_ORDER_INDEX  = 1,
1017  DEPENDENCY_ID = 2,
1018  AUX_ID = 3,
1019};
1020#endif
1021#if NH_3D
1022// Renderer
1023enum BlenMod
1024{
1025  BLEND_NONE  = -1,
1026  BLEND_AVRG  = 0,
1027  BLEND_LEFT  = 1,
1028  BLEND_RIGHT = 2,
1029  BLEND_GEN   =  3
1030};
1031enum
1032{
1033  VIEWPOS_INVALID = -1,
1034  VIEWPOS_LEFT    = 0,
1035  VIEWPOS_RIGHT   = 1,
1036  VIEWPOS_MERGED  = 2
1037};
1038#endif
1039// ====================================================================================================================
1040// Type definition
1041// ====================================================================================================================
1042/// parameters for adaptive loop filter
1043class TComPicSym;
1044#define MAX_NUM_SAO_CLASSES  32  //(NUM_SAO_EO_GROUPS > NUM_SAO_BO_GROUPS)?NUM_SAO_EO_GROUPS:NUM_SAO_BO_GROUPS
1045struct SAOOffset
1046{
1047  SAOMode modeIdc; // NEW, MERGE, OFF
1048  Int typeIdc;     // union of SAOModeMergeTypes and SAOModeNewTypes, depending on modeIdc.
1049  Int typeAuxInfo; // BO: starting band index
1050  Int offset[MAX_NUM_SAO_CLASSES];
1051  SAOOffset();
1052  ~SAOOffset();
1053  Void reset();
1054  const SAOOffset& operator= (const SAOOffset& src);
1055};
1056struct SAOBlkParam
1057{
1058  SAOBlkParam();
1059  ~SAOBlkParam();
1060  Void reset();
1061  const SAOBlkParam& operator= (const SAOBlkParam& src);
1062  SAOOffset& operator[](Int compIdx){ return offsetParam[compIdx];}
1063private:
1064  SAOOffset offsetParam[MAX_NUM_COMPONENT];
1065};
1066struct BitDepths
1067{
1068#if O0043_BEST_EFFORT_DECODING
1069  Int recon[MAX_NUM_CHANNEL_TYPE]; ///< the bit depth used for reconstructing the video
1070  Int stream[MAX_NUM_CHANNEL_TYPE];///< the bit depth used indicated in the SPS
1071#else
1072  Int recon[MAX_NUM_CHANNEL_TYPE]; ///< the bit depth as indicated in the SPS
1073#endif
1074};
1075/// parameters for deblocking filter
1076typedef struct _LFCUParam
1077{
1078  Bool bInternalEdge;                     ///< indicates internal edge
1079  Bool bLeftEdge;                         ///< indicates left edge
1080  Bool bTopEdge;                          ///< indicates top edge
1081} LFCUParam;
1082//TU settings for entropy encoding
1083struct TUEntropyCodingParameters
1084{
1085  const UInt            *scan;
1086  const UInt            *scanCG;
1087        COEFF_SCAN_TYPE  scanType;
1088        UInt             widthInGroups;
1089        UInt             heightInGroups;
1090        UInt             firstSignificanceMapContext;
1091};
1092struct TComPictureHash
1093{
1094  std::vector<UChar> hash;
1095  Bool operator==(const TComPictureHash &other) const
1096  {
1097    if (other.hash.size() != hash.size())
1098    {
1099      return false;
1100    }
1101    for(UInt i=0; i<UInt(hash.size()); i++)
1102    {
1103      if (other.hash[i] != hash[i])
1104      {
1105        return false;
1106      }
1107    }
1108    return true;
1109  }
1110  Bool operator!=(const TComPictureHash &other) const
1111  {
1112    return !(*this == other);
1113  }
1114};
1115struct TComSEITimeSet
1116{
1117  TComSEITimeSet() : clockTimeStampFlag(false),
1118                     numUnitFieldBasedFlag(false),
1119                     countingType(0),
1120                     fullTimeStampFlag(false),
1121                     discontinuityFlag(false),
1122                     cntDroppedFlag(false),
1123                     numberOfFrames(0),
1124                     secondsValue(0),
1125                     minutesValue(0),
1126                     hoursValue(0),
1127                     secondsFlag(false),
1128                     minutesFlag(false),
1129                     hoursFlag(false),
1130                     timeOffsetLength(0),
1131                     timeOffsetValue(0)
1132  { }
1133  Bool clockTimeStampFlag;
1134  Bool numUnitFieldBasedFlag;
1135  Int  countingType;
1136  Bool fullTimeStampFlag;
1137  Bool discontinuityFlag;
1138  Bool cntDroppedFlag;
1139  Int  numberOfFrames;
1140  Int  secondsValue;
1141  Int  minutesValue;
1142  Int  hoursValue;
1143  Bool secondsFlag;
1144  Bool minutesFlag;
1145  Bool hoursFlag;
1146  Int  timeOffsetLength;
1147  Int  timeOffsetValue;
1148};
1149struct TComSEIMasteringDisplay
1150{
1151  Bool      colourVolumeSEIEnabled;
1152  UInt      maxLuminance;
1153  UInt      minLuminance;
1154  UShort    primaries[3][2];
1155  UShort    whitePoint[2];
1156};
1157//! \}
1158#endif
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