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1 /******************************************************************** |
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2 * * |
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3 * THIS FILE IS PART OF THE OggTheora SOFTWARE CODEC SOURCE CODE. * |
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4 * USE, DISTRIBUTION AND REPRODUCTION OF THIS LIBRARY SOURCE IS * |
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5 * GOVERNED BY A BSD-STYLE SOURCE LICENSE INCLUDED WITH THIS SOURCE * |
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6 * IN 'COPYING'. PLEASE READ THESE TERMS BEFORE DISTRIBUTING. * |
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7 * * |
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8 * THE Theora SOURCE CODE IS COPYRIGHT (C) 2002-2009 * |
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9 * by the Xiph.Org Foundation and contributors http://www.xiph.org/ * |
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10 * * |
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11 ******************************************************************** |
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12 |
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13 function: |
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14 last mod: $Id: internal.h 17337 2010-07-19 16:08:54Z tterribe $ |
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15 |
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16 ********************************************************************/ |
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17 #if !defined(_state_H) |
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18 # define _state_H (1) |
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19 # include "internal.h" |
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20 # include "huffman.h" |
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21 # include "quant.h" |
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22 |
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23 |
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24 |
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25 /*A single quadrant of the map from a super block to fragment numbers.*/ |
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26 typedef ptrdiff_t oc_sb_map_quad[4]; |
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27 /*A map from a super block to fragment numbers.*/ |
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28 typedef oc_sb_map_quad oc_sb_map[4]; |
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29 /*A single plane of the map from a macro block to fragment numbers.*/ |
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30 typedef ptrdiff_t oc_mb_map_plane[4]; |
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31 /*A map from a macro block to fragment numbers.*/ |
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32 typedef oc_mb_map_plane oc_mb_map[3]; |
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33 /*A motion vector.*/ |
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34 typedef ogg_int16_t oc_mv; |
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35 |
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36 typedef struct oc_sb_flags oc_sb_flags; |
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37 typedef struct oc_border_info oc_border_info; |
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38 typedef struct oc_fragment oc_fragment; |
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39 typedef struct oc_fragment_plane oc_fragment_plane; |
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40 typedef struct oc_base_opt_vtable oc_base_opt_vtable; |
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41 typedef struct oc_base_opt_data oc_base_opt_data; |
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42 typedef struct oc_state_dispatch_vtable oc_state_dispatch_vtable; |
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43 typedef struct oc_theora_state oc_theora_state; |
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44 |
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45 |
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46 |
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47 /*Shared accelerated functions.*/ |
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48 # if defined(OC_X86_ASM) |
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49 # if defined(_MSC_VER) |
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50 # include "x86_vc/x86int.h" |
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51 # else |
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52 # include "x86/x86int.h" |
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53 # endif |
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54 # endif |
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55 # if defined(OC_ARM_ASM) |
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56 # include "arm/armint.h" |
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57 # endif |
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58 # if defined(OC_C64X_ASM) |
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59 # include "c64x/c64xint.h" |
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60 # endif |
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61 |
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62 # if !defined(oc_state_accel_init) |
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63 # define oc_state_accel_init oc_state_accel_init_c |
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64 # endif |
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65 # if defined(OC_STATE_USE_VTABLE) |
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66 # if !defined(oc_frag_copy) |
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67 # define oc_frag_copy(_state,_dst,_src,_ystride) \ |
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68 ((*(_state)->opt_vtable.frag_copy)(_dst,_src,_ystride)) |
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69 # endif |
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70 # if !defined(oc_frag_copy_list) |
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71 # define oc_frag_copy_list(_state,_dst_frame,_src_frame,_ystride, \ |
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72 _fragis,_nfragis,_frag_buf_offs) \ |
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73 ((*(_state)->opt_vtable.frag_copy_list)(_dst_frame,_src_frame,_ystride, \ |
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74 _fragis,_nfragis,_frag_buf_offs)) |
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75 # endif |
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76 # if !defined(oc_frag_recon_intra) |
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77 # define oc_frag_recon_intra(_state,_dst,_dst_ystride,_residue) \ |
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78 ((*(_state)->opt_vtable.frag_recon_intra)(_dst,_dst_ystride,_residue)) |
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79 # endif |
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80 # if !defined(oc_frag_recon_inter) |
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81 # define oc_frag_recon_inter(_state,_dst,_src,_ystride,_residue) \ |
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82 ((*(_state)->opt_vtable.frag_recon_inter)(_dst,_src,_ystride,_residue)) |
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83 # endif |
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84 # if !defined(oc_frag_recon_inter2) |
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85 # define oc_frag_recon_inter2(_state,_dst,_src1,_src2,_ystride,_residue) \ |
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86 ((*(_state)->opt_vtable.frag_recon_inter2)(_dst, \ |
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87 _src1,_src2,_ystride,_residue)) |
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88 # endif |
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89 # if !defined(oc_idct8x8) |
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90 # define oc_idct8x8(_state,_y,_x,_last_zzi) \ |
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91 ((*(_state)->opt_vtable.idct8x8)(_y,_x,_last_zzi)) |
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92 # endif |
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93 # if !defined(oc_state_frag_recon) |
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94 # define oc_state_frag_recon(_state,_fragi, \ |
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95 _pli,_dct_coeffs,_last_zzi,_dc_quant) \ |
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96 ((*(_state)->opt_vtable.state_frag_recon)(_state,_fragi, \ |
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97 _pli,_dct_coeffs,_last_zzi,_dc_quant)) |
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98 # endif |
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99 # if !defined(oc_loop_filter_init) |
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100 # define oc_loop_filter_init(_state,_bv,_flimit) \ |
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101 ((*(_state)->opt_vtable.loop_filter_init)(_bv,_flimit)) |
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102 # endif |
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103 # if !defined(oc_state_loop_filter_frag_rows) |
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104 # define oc_state_loop_filter_frag_rows(_state, \ |
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105 _bv,_refi,_pli,_fragy0,_fragy_end) \ |
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106 ((*(_state)->opt_vtable.state_loop_filter_frag_rows)(_state, \ |
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107 _bv,_refi,_pli,_fragy0,_fragy_end)) |
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108 # endif |
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109 # if !defined(oc_restore_fpu) |
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110 # define oc_restore_fpu(_state) \ |
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111 ((*(_state)->opt_vtable.restore_fpu)()) |
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112 # endif |
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113 # else |
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114 # if !defined(oc_frag_copy) |
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115 # define oc_frag_copy(_state,_dst,_src,_ystride) \ |
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116 oc_frag_copy_c(_dst,_src,_ystride) |
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117 # endif |
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118 # if !defined(oc_frag_copy_list) |
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119 # define oc_frag_copy_list(_state,_dst_frame,_src_frame,_ystride, \ |
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120 _fragis,_nfragis,_frag_buf_offs) \ |
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121 oc_frag_copy_list_c(_dst_frame,_src_frame,_ystride, \ |
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122 _fragis,_nfragis,_frag_buf_offs) |
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123 # endif |
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124 # if !defined(oc_frag_recon_intra) |
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125 # define oc_frag_recon_intra(_state,_dst,_dst_ystride,_residue) \ |
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126 oc_frag_recon_intra_c(_dst,_dst_ystride,_residue) |
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127 # endif |
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128 # if !defined(oc_frag_recon_inter) |
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129 # define oc_frag_recon_inter(_state,_dst,_src,_ystride,_residue) \ |
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130 oc_frag_recon_inter_c(_dst,_src,_ystride,_residue) |
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131 # endif |
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132 # if !defined(oc_frag_recon_inter2) |
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133 # define oc_frag_recon_inter2(_state,_dst,_src1,_src2,_ystride,_residue) \ |
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134 oc_frag_recon_inter2_c(_dst,_src1,_src2,_ystride,_residue) |
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135 # endif |
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136 # if !defined(oc_idct8x8) |
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137 # define oc_idct8x8(_state,_y,_x,_last_zzi) oc_idct8x8_c(_y,_x,_last_zzi) |
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138 # endif |
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139 # if !defined(oc_state_frag_recon) |
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140 # define oc_state_frag_recon oc_state_frag_recon_c |
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141 # endif |
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142 # if !defined(oc_loop_filter_init) |
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143 # define oc_loop_filter_init(_state,_bv,_flimit) \ |
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144 oc_loop_filter_init_c(_bv,_flimit) |
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145 # endif |
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146 # if !defined(oc_state_loop_filter_frag_rows) |
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147 # define oc_state_loop_filter_frag_rows oc_state_loop_filter_frag_rows_c |
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148 # endif |
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149 # if !defined(oc_restore_fpu) |
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150 # define oc_restore_fpu(_state) do{}while(0) |
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151 # endif |
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152 # endif |
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153 |
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154 |
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155 |
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156 /*A keyframe.*/ |
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157 # define OC_INTRA_FRAME (0) |
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158 /*A predicted frame.*/ |
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159 # define OC_INTER_FRAME (1) |
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160 /*A frame of unknown type (frame type decision has not yet been made).*/ |
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161 # define OC_UNKWN_FRAME (-1) |
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162 |
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163 /*The amount of padding to add to the reconstructed frame buffers on all |
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164 sides. |
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165 This is used to allow unrestricted motion vectors without special casing. |
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166 This must be a multiple of 2.*/ |
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167 # define OC_UMV_PADDING (16) |
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168 |
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169 /*Frame classification indices.*/ |
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170 /*The previous golden frame.*/ |
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171 # define OC_FRAME_GOLD (0) |
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172 /*The previous frame.*/ |
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173 # define OC_FRAME_PREV (1) |
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174 /*The current frame.*/ |
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175 # define OC_FRAME_SELF (2) |
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176 /*Used to mark uncoded fragments (for DC prediction).*/ |
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177 # define OC_FRAME_NONE (3) |
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178 |
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179 /*The input or output buffer.*/ |
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180 # define OC_FRAME_IO (3) |
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181 /*Uncompressed prev golden frame.*/ |
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182 # define OC_FRAME_GOLD_ORIG (4) |
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183 /*Uncompressed previous frame. */ |
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184 # define OC_FRAME_PREV_ORIG (5) |
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185 |
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186 /*Macroblock modes.*/ |
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187 /*Macro block is invalid: It is never coded.*/ |
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188 # define OC_MODE_INVALID (-1) |
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189 /*Encoded difference from the same macro block in the previous frame.*/ |
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190 # define OC_MODE_INTER_NOMV (0) |
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191 /*Encoded with no motion compensated prediction.*/ |
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192 # define OC_MODE_INTRA (1) |
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193 /*Encoded difference from the previous frame offset by the given motion |
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194 vector.*/ |
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195 # define OC_MODE_INTER_MV (2) |
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196 /*Encoded difference from the previous frame offset by the last coded motion |
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197 vector.*/ |
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198 # define OC_MODE_INTER_MV_LAST (3) |
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199 /*Encoded difference from the previous frame offset by the second to last |
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200 coded motion vector.*/ |
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201 # define OC_MODE_INTER_MV_LAST2 (4) |
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202 /*Encoded difference from the same macro block in the previous golden |
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203 frame.*/ |
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204 # define OC_MODE_GOLDEN_NOMV (5) |
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205 /*Encoded difference from the previous golden frame offset by the given motion |
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206 vector.*/ |
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207 # define OC_MODE_GOLDEN_MV (6) |
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208 /*Encoded difference from the previous frame offset by the individual motion |
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209 vectors given for each block.*/ |
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210 # define OC_MODE_INTER_MV_FOUR (7) |
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211 /*The number of (coded) modes.*/ |
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212 # define OC_NMODES (8) |
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213 |
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214 /*Determines the reference frame used for a given MB mode.*/ |
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215 # define OC_FRAME_FOR_MODE(_x) \ |
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216 OC_UNIBBLE_TABLE32(OC_FRAME_PREV,OC_FRAME_SELF,OC_FRAME_PREV,OC_FRAME_PREV, \ |
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217 OC_FRAME_PREV,OC_FRAME_GOLD,OC_FRAME_GOLD,OC_FRAME_PREV,(_x)) |
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218 |
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219 /*Constants for the packet state machine common between encoder and decoder.*/ |
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220 |
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221 /*Next packet to emit/read: Codec info header.*/ |
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222 # define OC_PACKET_INFO_HDR (-3) |
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223 /*Next packet to emit/read: Comment header.*/ |
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224 # define OC_PACKET_COMMENT_HDR (-2) |
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225 /*Next packet to emit/read: Codec setup header.*/ |
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226 # define OC_PACKET_SETUP_HDR (-1) |
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227 /*No more packets to emit/read.*/ |
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228 # define OC_PACKET_DONE (INT_MAX) |
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229 |
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230 |
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231 |
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232 #define OC_MV(_x,_y) ((oc_mv)((_x)&0xFF|(_y)<<8)) |
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233 #define OC_MV_X(_mv) ((signed char)(_mv)) |
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234 #define OC_MV_Y(_mv) ((_mv)>>8) |
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235 #define OC_MV_ADD(_mv1,_mv2) \ |
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236 OC_MV(OC_MV_X(_mv1)+OC_MV_X(_mv2), \ |
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237 OC_MV_Y(_mv1)+OC_MV_Y(_mv2)) |
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238 #define OC_MV_SUB(_mv1,_mv2) \ |
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239 OC_MV(OC_MV_X(_mv1)-OC_MV_X(_mv2), \ |
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240 OC_MV_Y(_mv1)-OC_MV_Y(_mv2)) |
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241 |
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242 |
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243 |
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244 /*Super blocks are 32x32 segments of pixels in a single color plane indexed |
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245 in image order. |
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246 Internally, super blocks are broken up into four quadrants, each of which |
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247 contains a 2x2 pattern of blocks, each of which is an 8x8 block of pixels. |
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248 Quadrants, and the blocks within them, are indexed in a special order called |
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249 a "Hilbert curve" within the super block. |
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250 |
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251 In order to differentiate between the Hilbert-curve indexing strategy and |
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252 the regular image order indexing strategy, blocks indexed in image order |
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253 are called "fragments". |
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254 Fragments are indexed in image order, left to right, then bottom to top, |
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255 from Y' plane to Cb plane to Cr plane. |
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256 |
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257 The co-located fragments in all image planes corresponding to the location |
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258 of a single quadrant of a luma plane super block form a macro block. |
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259 Thus there is only a single set of macro blocks for all planes, each of which |
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260 contains between 6 and 12 fragments, depending on the pixel format. |
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261 Therefore macro block information is kept in a separate set of arrays from |
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262 super blocks to avoid unused space in the other planes. |
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263 The lists are indexed in super block order. |
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264 That is, the macro block corresponding to the macro block mbi in (luma plane) |
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265 super block sbi is at index (sbi<<2|mbi). |
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266 Thus the number of macro blocks in each dimension is always twice the number |
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267 of super blocks, even when only an odd number fall inside the coded frame. |
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268 These "extra" macro blocks are just an artifact of our internal data layout, |
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269 and not part of the coded stream; they are flagged with a negative MB mode.*/ |
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270 |
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271 |
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272 |
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273 /*Super block information.*/ |
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274 struct oc_sb_flags{ |
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275 unsigned char coded_fully:1; |
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276 unsigned char coded_partially:1; |
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277 unsigned char quad_valid:4; |
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278 }; |
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279 |
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280 |
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281 |
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282 /*Information about a fragment which intersects the border of the displayable |
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283 region. |
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284 This marks which pixels belong to the displayable region.*/ |
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285 struct oc_border_info{ |
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286 /*A bit mask marking which pixels are in the displayable region. |
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287 Pixel (x,y) corresponds to bit (y<<3|x).*/ |
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288 ogg_int64_t mask; |
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289 /*The number of pixels in the displayable region. |
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290 This is always positive, and always less than 64.*/ |
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291 int npixels; |
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292 }; |
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293 |
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294 |
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295 |
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296 /*Fragment information.*/ |
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297 struct oc_fragment{ |
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298 /*A flag indicating whether or not this fragment is coded.*/ |
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299 unsigned coded:1; |
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300 /*A flag indicating that this entire fragment lies outside the displayable |
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301 region of the frame. |
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302 Note the contrast with an invalid macro block, which is outside the coded |
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303 frame, not just the displayable one. |
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304 There are no fragments outside the coded frame by construction.*/ |
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305 unsigned invalid:1; |
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306 /*The index of the quality index used for this fragment's AC coefficients.*/ |
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307 unsigned qii:4; |
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308 /*The index of the reference frame this fragment is predicted from.*/ |
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309 unsigned refi:2; |
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310 /*The mode of the macroblock this fragment belongs to.*/ |
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311 unsigned mb_mode:3; |
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312 /*The index of the associated border information for fragments which lie |
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313 partially outside the displayable region. |
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314 For fragments completely inside or outside this region, this is -1. |
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315 Note that the C standard requires an explicit signed keyword for bitfield |
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316 types, since some compilers may treat them as unsigned without it.*/ |
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317 signed int borderi:5; |
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318 /*The prediction-corrected DC component. |
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319 Note that the C standard requires an explicit signed keyword for bitfield |
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320 types, since some compilers may treat them as unsigned without it.*/ |
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321 signed int dc:16; |
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322 }; |
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323 |
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324 |
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325 |
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326 /*A description of each fragment plane.*/ |
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327 struct oc_fragment_plane{ |
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328 /*The number of fragments in the horizontal direction.*/ |
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329 int nhfrags; |
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330 /*The number of fragments in the vertical direction.*/ |
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331 int nvfrags; |
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332 /*The offset of the first fragment in the plane.*/ |
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333 ptrdiff_t froffset; |
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334 /*The total number of fragments in the plane.*/ |
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335 ptrdiff_t nfrags; |
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336 /*The number of super blocks in the horizontal direction.*/ |
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337 unsigned nhsbs; |
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338 /*The number of super blocks in the vertical direction.*/ |
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339 unsigned nvsbs; |
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340 /*The offset of the first super block in the plane.*/ |
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341 unsigned sboffset; |
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342 /*The total number of super blocks in the plane.*/ |
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343 unsigned nsbs; |
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344 }; |
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345 |
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346 |
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347 typedef void (*oc_state_loop_filter_frag_rows_func)( |
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348 const oc_theora_state *_state,signed char _bv[256],int _refi,int _pli, |
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349 int _fragy0,int _fragy_end); |
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350 |
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351 /*The shared (encoder and decoder) functions that have accelerated variants.*/ |
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352 struct oc_base_opt_vtable{ |
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353 void (*frag_copy)(unsigned char *_dst, |
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354 const unsigned char *_src,int _ystride); |
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355 void (*frag_copy_list)(unsigned char *_dst_frame, |
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356 const unsigned char *_src_frame,int _ystride, |
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357 const ptrdiff_t *_fragis,ptrdiff_t _nfragis,const ptrdiff_t *_frag_buf_offs); |
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358 void (*frag_recon_intra)(unsigned char *_dst,int _ystride, |
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359 const ogg_int16_t _residue[64]); |
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360 void (*frag_recon_inter)(unsigned char *_dst, |
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361 const unsigned char *_src,int _ystride,const ogg_int16_t _residue[64]); |
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362 void (*frag_recon_inter2)(unsigned char *_dst,const unsigned char *_src1, |
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363 const unsigned char *_src2,int _ystride,const ogg_int16_t _residue[64]); |
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364 void (*idct8x8)(ogg_int16_t _y[64],ogg_int16_t _x[64],int _last_zzi); |
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365 void (*state_frag_recon)(const oc_theora_state *_state,ptrdiff_t _fragi, |
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366 int _pli,ogg_int16_t _dct_coeffs[128],int _last_zzi,ogg_uint16_t _dc_quant); |
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367 void (*loop_filter_init)(signed char _bv[256],int _flimit); |
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368 oc_state_loop_filter_frag_rows_func state_loop_filter_frag_rows; |
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369 void (*restore_fpu)(void); |
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370 }; |
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371 |
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372 /*The shared (encoder and decoder) tables that vary according to which variants |
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373 of the above functions are used.*/ |
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374 struct oc_base_opt_data{ |
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375 const unsigned char *dct_fzig_zag; |
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376 }; |
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377 |
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378 |
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379 /*State information common to both the encoder and decoder.*/ |
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380 struct oc_theora_state{ |
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381 /*The stream information.*/ |
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382 th_info info; |
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383 # if defined(OC_STATE_USE_VTABLE) |
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384 /*Table for shared accelerated functions.*/ |
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385 oc_base_opt_vtable opt_vtable; |
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386 # endif |
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387 /*Table for shared data used by accelerated functions.*/ |
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388 oc_base_opt_data opt_data; |
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389 /*CPU flags to detect the presence of extended instruction sets.*/ |
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390 ogg_uint32_t cpu_flags; |
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391 /*The fragment plane descriptions.*/ |
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392 oc_fragment_plane fplanes[3]; |
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393 /*The list of fragments, indexed in image order.*/ |
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394 oc_fragment *frags; |
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395 /*The the offset into the reference frame buffer to the upper-left pixel of |
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396 each fragment.*/ |
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397 ptrdiff_t *frag_buf_offs; |
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398 /*The motion vector for each fragment.*/ |
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399 oc_mv *frag_mvs; |
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400 /*The total number of fragments in a single frame.*/ |
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401 ptrdiff_t nfrags; |
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402 /*The list of super block maps, indexed in image order.*/ |
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403 oc_sb_map *sb_maps; |
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404 /*The list of super block flags, indexed in image order.*/ |
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405 oc_sb_flags *sb_flags; |
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406 /*The total number of super blocks in a single frame.*/ |
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407 unsigned nsbs; |
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408 /*The fragments from each color plane that belong to each macro block. |
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409 Fragments are stored in image order (left to right then top to bottom). |
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410 When chroma components are decimated, the extra fragments have an index of |
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411 -1.*/ |
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412 oc_mb_map *mb_maps; |
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413 /*The list of macro block modes. |
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414 A negative number indicates the macro block lies entirely outside the |
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415 coded frame.*/ |
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416 signed char *mb_modes; |
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417 /*The number of macro blocks in the X direction.*/ |
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418 unsigned nhmbs; |
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419 /*The number of macro blocks in the Y direction.*/ |
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420 unsigned nvmbs; |
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421 /*The total number of macro blocks.*/ |
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422 size_t nmbs; |
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423 /*The list of coded fragments, in coded order. |
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424 Uncoded fragments are stored in reverse order from the end of the list.*/ |
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425 ptrdiff_t *coded_fragis; |
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426 /*The number of coded fragments in each plane.*/ |
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427 ptrdiff_t ncoded_fragis[3]; |
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428 /*The total number of coded fragments.*/ |
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429 ptrdiff_t ntotal_coded_fragis; |
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430 /*The actual buffers used for the reference frames.*/ |
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431 th_ycbcr_buffer ref_frame_bufs[6]; |
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432 /*The index of the buffers being used for each OC_FRAME_* reference frame.*/ |
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433 int ref_frame_idx[6]; |
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434 /*The storage for the reference frame buffers. |
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435 This is just ref_frame_bufs[ref_frame_idx[i]][0].data, but is cached here |
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436 for faster look-up.*/ |
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437 unsigned char *ref_frame_data[6]; |
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438 /*The handle used to allocate the reference frame buffers.*/ |
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439 unsigned char *ref_frame_handle; |
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440 /*The strides for each plane in the reference frames.*/ |
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441 int ref_ystride[3]; |
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442 /*The number of unique border patterns.*/ |
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443 int nborders; |
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444 /*The unique border patterns for all border fragments. |
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445 The borderi field of fragments which straddle the border indexes this |
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446 list.*/ |
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447 oc_border_info borders[16]; |
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448 /*The frame number of the last keyframe.*/ |
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449 ogg_int64_t keyframe_num; |
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450 /*The frame number of the current frame.*/ |
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451 ogg_int64_t curframe_num; |
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452 /*The granpos of the current frame.*/ |
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453 ogg_int64_t granpos; |
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454 /*The type of the current frame.*/ |
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455 signed char frame_type; |
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456 /*The bias to add to the frame count when computing granule positions.*/ |
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457 unsigned char granpos_bias; |
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458 /*The number of quality indices used in the current frame.*/ |
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459 unsigned char nqis; |
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460 /*The quality indices of the current frame.*/ |
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461 unsigned char qis[3]; |
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462 /*The dequantization tables, stored in zig-zag order, and indexed by |
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463 qi, pli, qti, and zzi.*/ |
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464 ogg_uint16_t *dequant_tables[64][3][2]; |
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465 OC_ALIGN16(oc_quant_table dequant_table_data[64][3][2]); |
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466 /*Loop filter strength parameters.*/ |
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467 unsigned char loop_filter_limits[64]; |
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468 }; |
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469 |
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470 |
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471 |
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472 /*The function type used to fill in the chroma plane motion vectors for a |
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473 macro block when 4 different motion vectors are specified in the luma |
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474 plane. |
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475 _cbmvs: The chroma block-level motion vectors to fill in. |
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476 _lmbmv: The luma macro-block level motion vector to fill in for use in |
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477 prediction. |
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478 _lbmvs: The luma block-level motion vectors.*/ |
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479 typedef void (*oc_set_chroma_mvs_func)(oc_mv _cbmvs[4],const oc_mv _lbmvs[4]); |
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480 |
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481 |
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482 |
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483 /*A table of functions used to fill in the Cb,Cr plane motion vectors for a |
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484 macro block when 4 different motion vectors are specified in the luma |
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485 plane.*/ |
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486 extern const oc_set_chroma_mvs_func OC_SET_CHROMA_MVS_TABLE[TH_PF_NFORMATS]; |
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487 |
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488 |
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489 |
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490 int oc_state_init(oc_theora_state *_state,const th_info *_info,int _nrefs); |
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491 void oc_state_clear(oc_theora_state *_state); |
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492 void oc_state_accel_init_c(oc_theora_state *_state); |
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493 void oc_state_borders_fill_rows(oc_theora_state *_state,int _refi,int _pli, |
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494 int _y0,int _yend); |
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495 void oc_state_borders_fill_caps(oc_theora_state *_state,int _refi,int _pli); |
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496 void oc_state_borders_fill(oc_theora_state *_state,int _refi); |
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497 void oc_state_fill_buffer_ptrs(oc_theora_state *_state,int _buf_idx, |
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498 th_ycbcr_buffer _img); |
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499 int oc_state_mbi_for_pos(oc_theora_state *_state,int _mbx,int _mby); |
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500 int oc_state_get_mv_offsets(const oc_theora_state *_state,int _offsets[2], |
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501 int _pli,oc_mv _mv); |
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502 |
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503 void oc_loop_filter_init_c(signed char _bv[256],int _flimit); |
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504 void oc_state_loop_filter(oc_theora_state *_state,int _frame); |
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505 # if defined(OC_DUMP_IMAGES) |
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506 int oc_state_dump_frame(const oc_theora_state *_state,int _frame, |
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507 const char *_suf); |
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508 # endif |
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509 |
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510 /*Default pure-C implementations of shared accelerated functions.*/ |
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511 void oc_frag_copy_c(unsigned char *_dst, |
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512 const unsigned char *_src,int _src_ystride); |
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513 void oc_frag_copy_list_c(unsigned char *_dst_frame, |
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514 const unsigned char *_src_frame,int _ystride, |
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515 const ptrdiff_t *_fragis,ptrdiff_t _nfragis,const ptrdiff_t *_frag_buf_offs); |
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516 void oc_frag_recon_intra_c(unsigned char *_dst,int _dst_ystride, |
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517 const ogg_int16_t _residue[64]); |
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518 void oc_frag_recon_inter_c(unsigned char *_dst, |
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519 const unsigned char *_src,int _ystride,const ogg_int16_t _residue[64]); |
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520 void oc_frag_recon_inter2_c(unsigned char *_dst,const unsigned char *_src1, |
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521 const unsigned char *_src2,int _ystride,const ogg_int16_t _residue[64]); |
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522 void oc_idct8x8_c(ogg_int16_t _y[64],ogg_int16_t _x[64],int _last_zzi); |
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523 void oc_state_frag_recon_c(const oc_theora_state *_state,ptrdiff_t _fragi, |
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524 int _pli,ogg_int16_t _dct_coeffs[128],int _last_zzi,ogg_uint16_t _dc_quant); |
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525 void oc_state_loop_filter_frag_rows_c(const oc_theora_state *_state, |
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526 signed char _bv[256],int _refi,int _pli,int _fragy0,int _fragy_end); |
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527 void oc_restore_fpu_c(void); |
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528 |
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529 /*We need a way to call a few encoder functions without introducing a link-time |
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530 dependency into the decoder, while still allowing the old alpha API which |
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531 does not distinguish between encoder and decoder objects to be used. |
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532 We do this by placing a function table at the start of the encoder object |
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533 which can dispatch into the encoder library. |
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534 We do a similar thing for the decoder in case we ever decide to split off a |
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535 common base library.*/ |
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536 typedef void (*oc_state_clear_func)(theora_state *_th); |
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537 typedef int (*oc_state_control_func)(theora_state *th,int _req, |
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538 void *_buf,size_t _buf_sz); |
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539 typedef ogg_int64_t (*oc_state_granule_frame_func)(theora_state *_th, |
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540 ogg_int64_t _granulepos); |
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541 typedef double (*oc_state_granule_time_func)(theora_state *_th, |
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542 ogg_int64_t _granulepos); |
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543 |
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544 |
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545 struct oc_state_dispatch_vtable{ |
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546 oc_state_clear_func clear; |
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547 oc_state_control_func control; |
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548 oc_state_granule_frame_func granule_frame; |
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549 oc_state_granule_time_func granule_time; |
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550 }; |
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551 |
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552 #endif |