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126 lines
4.4 KiB
126 lines
4.4 KiB
{ ----------------------- JPEG_INTERNAL_OPTIONS ---------------------- }
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{ These defines indicate whether to include various optional functions.
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Undefining some of these symbols will produce a smaller but less capable
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library. Note that you can leave certain source files out of the
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compilation/linking process if you've #undef'd the corresponding symbols.
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(You may HAVE to do that if your compiler doesn't like null source files.)}
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{ Arithmetic coding is unsupported for legal reasons. Complaints to IBM. }
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{ Capability options common to encoder and decoder: }
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{$define DCT_ISLOW_SUPPORTED} { slow but accurate integer algorithm }
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{$define DCT_IFAST_SUPPORTED} { faster, less accurate integer method }
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{$define DCT_FLOAT_SUPPORTED} { floating-point: accurate, fast on fast HW }
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{ Encoder capability options: }
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{$undef C_ARITH_CODING_SUPPORTED} { Arithmetic coding back end? }
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{$define C_MULTISCAN_FILES_SUPPORTED} { Multiple-scan JPEG files? }
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{$define C_PROGRESSIVE_SUPPORTED} { Progressive JPEG? (Requires MULTISCAN)}
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{$define ENTROPY_OPT_SUPPORTED} { Optimization of entropy coding parms? }
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{ Note: if you selected 12-bit data precision, it is dangerous to turn off
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ENTROPY_OPT_SUPPORTED. The standard Huffman tables are only good for 8-bit
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precision, so jchuff.c normally uses entropy optimization to compute
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usable tables for higher precision. If you don't want to do optimization,
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you'll have to supply different default Huffman tables.
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The exact same statements apply for progressive JPEG: the default tables
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don't work for progressive mode. (This may get fixed, however.) }
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{$define INPUT_SMOOTHING_SUPPORTED} { Input image smoothing option? }
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{ Decoder capability options: }
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{$undef D_ARITH_CODING_SUPPORTED} { Arithmetic coding back end? }
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{$define D_MULTISCAN_FILES_SUPPORTED} { Multiple-scan JPEG files? }
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{$define D_PROGRESSIVE_SUPPORTED} { Progressive JPEG? (Requires MULTISCAN)}
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{$define SAVE_MARKERS_SUPPORTED} { jpeg_save_markers() needed? }
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{$define BLOCK_SMOOTHING_SUPPORTED} { Block smoothing? (Progressive only) }
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{$define IDCT_SCALING_SUPPORTED} { Output rescaling via IDCT? }
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{$undef UPSAMPLE_SCALING_SUPPORTED} { Output rescaling at upsample stage? }
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{$define UPSAMPLE_MERGING_SUPPORTED} { Fast path for sloppy upsampling? }
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{$define QUANT_1PASS_SUPPORTED} { 1-pass color quantization? }
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{$define QUANT_2PASS_SUPPORTED} { 2-pass color quantization? }
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{ If you happen not to want the image transform support, disable it here }
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{$define TRANSFORMS_SUPPORTED}
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{ more capability options later, no doubt }
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{$ifopt I+} {$define IOcheck} {$endif}
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{ ------------------------------------------------------------------------ }
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{$define USE_FMEM} { Borland has _fmemcpy() and _fmemset() }
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{$define FMEMCOPY}
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{$define FMEMZERO}
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{$define DCTSIZE_IS_8} { e.g. unroll the inner loop }
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{$define RIGHT_SHIFT_IS_UNSIGNED}
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{$undef AVOID_TABLES}
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{$undef FAST_DIVIDE}
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{$define BITS_IN_JSAMPLE_IS_8}
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{----------------------------------------------------------------}
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{ for test of 12 bit JPEG code only. !! }
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{-- $undef BITS_IN_JSAMPLE_IS_8}
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{----------------------------------------------------------------}
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//{$define RGB_RED_IS_0}
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{ !CHANGE: This must be defined for Delphi/Kylix/FPC }
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{$define RGB_RED_IS_2} { RGB byte order }
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{$define RGB_PIXELSIZE_IS_3}
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{$define SLOW_SHIFT_32}
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{$undef NO_ZERO_ROW_TEST}
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{$define USE_MSDOS_MEMMGR} { Define this if you use jmemdos.c }
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{$define XMS_SUPPORTED}
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{$define EMS_SUPPORTED}
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{$undef MEM_STATS} { Write out memory usage }
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{$define AM_MEMORY_MANAGER} { we define jvirt_Xarray_control structs }
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{$undef FULL_MAIN_BUFFER_SUPPORTED}
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{$define PROGRESS_REPORT}
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{$define TWO_FILE_COMMANDLINE}
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{$undef BMP_SUPPORTED}
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{$undef PPM_SUPPORTED}
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{$undef GIF_SUPPORTED}
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{$undef RLE_SUPPORTED}
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{$undef TARGA_SUPPORTED}
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{$define EXT_SWITCH}
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{$ifndef BITS_IN_JSAMPLE_IS_8} { for 12 bit samples }
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{$undef BMP_SUPPORTED}
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{$undef RLE_SUPPORTED}
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{$undef TARGA_SUPPORTED}
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{$endif}
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{!CHANGE: Allowed only for Delphi}
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{$undef BASM16} { for TP7 - use BASM for fast multiply }
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{$ifdef Win32}
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{$ifndef FPC}
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{$define BASM} { jidctint with BASM for Delphi 2/3 }
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{$undef RGB_RED_IS_0} { BGR byte order in JQUANT2 }
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{$endif}
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{$endif}
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{$ifdef FPC}
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{$MODE DELPHI}
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{$endif}
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{!CHANGE: Added this}
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{$define Delphi_Stream}
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{$Q-}
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{$MINENUMSIZE 4}
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{$ALIGN 8}
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