213 lines
5.7 KiB
C
213 lines
5.7 KiB
C
/*
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* jcmcu.c
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*
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* Copyright (C) 1991, 1992, Thomas G. Lane.
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* This file is part of the Independent JPEG Group's software.
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* For conditions of distribution and use, see the accompanying README file.
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*
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* This file contains MCU extraction routines and quantization scaling.
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* These routines are invoked via the extract_MCUs and
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* extract_init/term methods.
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*/
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#include "jinclude.h"
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/*
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* If this file is compiled with -DDCT_ERR_STATS, it will reverse-DCT each
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* block and sum the total errors across the whole picture. This provides
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* a convenient method of using real picture data to test the roundoff error
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* of a DCT algorithm. DCT_ERR_STATS should *not* be defined for a production
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* compression program, since compression is much slower with it defined.
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* Also note that jrevdct.o must be linked into the compressor when this
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* switch is defined.
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*/
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#ifdef DCT_ERR_STATS
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static int dcterrorsum; /* these hold the error statistics */
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static int dcterrormax;
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static int dctcoefcount; /* This will probably overflow on a 16-bit-int machine */
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#endif
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/* ZAG[i] is the natural-order position of the i'th element of zigzag order. */
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static const short ZAG[DCTSIZE2] = {
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0, 1, 8, 16, 9, 2, 3, 10,
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17, 24, 32, 25, 18, 11, 4, 5,
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12, 19, 26, 33, 40, 48, 41, 34,
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27, 20, 13, 6, 7, 14, 21, 28,
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35, 42, 49, 56, 57, 50, 43, 36,
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29, 22, 15, 23, 30, 37, 44, 51,
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58, 59, 52, 45, 38, 31, 39, 46,
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53, 60, 61, 54, 47, 55, 62, 63
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};
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LOCAL void
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extract_block (JSAMPARRAY input_data, int start_row, long start_col,
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JBLOCK output_data, QUANT_TBL_PTR quanttbl)
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/* Extract one 8x8 block from the specified location in the sample array; */
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/* perform forward DCT, quantization scaling, and zigzag reordering on it. */
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{
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/* This routine is heavily used, so it's worth coding it tightly. */
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DCTBLOCK block;
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#ifdef DCT_ERR_STATS
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DCTBLOCK svblock; /* saves input data for comparison */
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#endif
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{ register JSAMPROW elemptr;
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register DCTELEM *localblkptr = block;
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#if DCTSIZE != 8
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register int elemc;
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#endif
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register int elemr;
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for (elemr = DCTSIZE; elemr > 0; elemr--) {
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elemptr = input_data[start_row++] + start_col;
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#if DCTSIZE == 8 /* unroll the inner loop */
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*localblkptr++ = (DCTELEM) (GETJSAMPLE(*elemptr++) - CENTERJSAMPLE);
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*localblkptr++ = (DCTELEM) (GETJSAMPLE(*elemptr++) - CENTERJSAMPLE);
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*localblkptr++ = (DCTELEM) (GETJSAMPLE(*elemptr++) - CENTERJSAMPLE);
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*localblkptr++ = (DCTELEM) (GETJSAMPLE(*elemptr++) - CENTERJSAMPLE);
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*localblkptr++ = (DCTELEM) (GETJSAMPLE(*elemptr++) - CENTERJSAMPLE);
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*localblkptr++ = (DCTELEM) (GETJSAMPLE(*elemptr++) - CENTERJSAMPLE);
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*localblkptr++ = (DCTELEM) (GETJSAMPLE(*elemptr++) - CENTERJSAMPLE);
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*localblkptr++ = (DCTELEM) (GETJSAMPLE(*elemptr++) - CENTERJSAMPLE);
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#else
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for (elemc = DCTSIZE; elemc > 0; elemc--) {
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*localblkptr++ = (DCTELEM) (GETJSAMPLE(*elemptr++) - CENTERJSAMPLE);
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}
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#endif
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}
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}
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#ifdef DCT_ERR_STATS
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MEMCOPY(svblock, block, SIZEOF(DCTBLOCK));
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#endif
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j_fwd_dct(block);
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{ register JCOEF temp;
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register short i;
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for (i = 0; i < DCTSIZE2; i++) {
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temp = (JCOEF) block[ZAG[i]];
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/* divide by *quanttbl, ensuring proper rounding */
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if (temp < 0) {
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temp = -temp;
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temp += *quanttbl>>1;
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temp /= *quanttbl;
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temp = -temp;
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} else {
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temp += *quanttbl>>1;
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temp /= *quanttbl;
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}
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*output_data++ = temp;
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quanttbl++;
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}
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}
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#ifdef DCT_ERR_STATS
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j_rev_dct(block);
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{ register int diff;
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register short i;
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for (i = 0; i < DCTSIZE2; i++) {
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diff = block[i] - svblock[i];
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if (diff < 0) diff = -diff;
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dcterrorsum += diff;
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if (dcterrormax < diff) dcterrormax = diff;
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}
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dctcoefcount += DCTSIZE2;
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}
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#endif
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}
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/*
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* Extract samples in MCU order, process & hand off to output_method.
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* The input is always exactly N MCU rows worth of data.
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*/
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METHODDEF void
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extract_MCUs (compress_info_ptr cinfo,
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JSAMPIMAGE image_data,
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int num_mcu_rows,
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MCU_output_method_ptr output_method)
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{
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JBLOCK MCU_data[MAX_BLOCKS_IN_MCU];
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int mcurow;
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long mcuindex;
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short blkn, ci, xpos, ypos;
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jpeg_component_info * compptr;
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QUANT_TBL_PTR quant_ptr;
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for (mcurow = 0; mcurow < num_mcu_rows; mcurow++) {
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for (mcuindex = 0; mcuindex < cinfo->MCUs_per_row; mcuindex++) {
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/* Extract data from the image array, DCT it, and quantize it */
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blkn = 0;
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for (ci = 0; ci < cinfo->comps_in_scan; ci++) {
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compptr = cinfo->cur_comp_info[ci];
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quant_ptr = cinfo->quant_tbl_ptrs[compptr->quant_tbl_no];
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for (ypos = 0; ypos < compptr->MCU_height; ypos++) {
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for (xpos = 0; xpos < compptr->MCU_width; xpos++) {
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extract_block(image_data[ci],
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(mcurow * compptr->MCU_height + ypos)*DCTSIZE,
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(mcuindex * compptr->MCU_width + xpos)*DCTSIZE,
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MCU_data[blkn], quant_ptr);
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blkn++;
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}
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}
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}
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/* Send the MCU whereever the pipeline controller wants it to go */
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(*output_method) (cinfo, MCU_data);
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}
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}
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}
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/*
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* Initialize for processing a scan.
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*/
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METHODDEF void
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extract_init (compress_info_ptr cinfo)
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{
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/* no work for now */
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#ifdef DCT_ERR_STATS
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dcterrorsum = dcterrormax = dctcoefcount = 0;
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#endif
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}
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/*
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* Clean up after a scan.
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*/
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METHODDEF void
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extract_term (compress_info_ptr cinfo)
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{
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/* no work for now */
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#ifdef DCT_ERR_STATS
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TRACEMS3(cinfo->emethods, 0, "DCT roundoff errors = %d/%d, max = %d",
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dcterrorsum, dctcoefcount, dcterrormax);
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#endif
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}
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/*
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* The method selection routine for MCU extraction.
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*/
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GLOBAL void
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jselcmcu (compress_info_ptr cinfo)
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{
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/* just one implementation for now */
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cinfo->methods->extract_init = extract_init;
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cinfo->methods->extract_MCUs = extract_MCUs;
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cinfo->methods->extract_term = extract_term;
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}
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