1991-10-06 20:00:00 -04:00
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/*
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* jcmaster.c
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*
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1995-03-14 19:00:00 -05:00
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* Copyright (C) 1991-1995, Thomas G. Lane.
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1991-10-06 20:00:00 -04:00
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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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1994-09-23 20:00:00 -04:00
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* This file contains master control logic for the JPEG compressor.
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* These routines are concerned with selecting the modules to be executed
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* and with determining the number of passes and the work to be done in each
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* pass.
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1991-10-06 20:00:00 -04:00
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*/
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1994-09-23 20:00:00 -04:00
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#define JPEG_INTERNALS
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1991-10-06 20:00:00 -04:00
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#include "jinclude.h"
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1994-09-23 20:00:00 -04:00
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#include "jpeglib.h"
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1991-10-06 20:00:00 -04:00
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1994-09-23 20:00:00 -04:00
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/* Private state */
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1991-10-06 20:00:00 -04:00
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1994-09-23 20:00:00 -04:00
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typedef struct {
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struct jpeg_comp_master pub; /* public fields */
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1991-10-06 20:00:00 -04:00
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1994-09-23 20:00:00 -04:00
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int pass_number; /* eventually need more complex state... */
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} my_comp_master;
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typedef my_comp_master * my_master_ptr;
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1991-10-06 20:00:00 -04:00
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1994-09-23 20:00:00 -04:00
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/*
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* Support routines that do various essential calculations.
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*/
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1991-10-06 20:00:00 -04:00
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LOCAL void
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1994-09-23 20:00:00 -04:00
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initial_setup (j_compress_ptr cinfo)
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/* Do computations that are needed before master selection phase */
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1991-10-06 20:00:00 -04:00
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{
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1994-09-23 20:00:00 -04:00
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int ci;
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1991-10-06 20:00:00 -04:00
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jpeg_component_info *compptr;
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1994-09-23 20:00:00 -04:00
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long samplesperrow;
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JDIMENSION jd_samplesperrow;
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/* Sanity check on image dimensions */
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if (cinfo->image_height <= 0 || cinfo->image_width <= 0
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|| cinfo->num_components <= 0 || cinfo->input_components <= 0)
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ERREXIT(cinfo, JERR_EMPTY_IMAGE);
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/* Make sure image isn't bigger than I can handle */
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if ((long) cinfo->image_height > (long) JPEG_MAX_DIMENSION ||
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(long) cinfo->image_width > (long) JPEG_MAX_DIMENSION)
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ERREXIT1(cinfo, JERR_IMAGE_TOO_BIG, (unsigned int) JPEG_MAX_DIMENSION);
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/* Width of an input scanline must be representable as JDIMENSION. */
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samplesperrow = (long) cinfo->image_width * (long) cinfo->input_components;
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jd_samplesperrow = (JDIMENSION) samplesperrow;
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if ((long) jd_samplesperrow != samplesperrow)
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ERREXIT(cinfo, JERR_WIDTH_OVERFLOW);
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/* For now, precision must match compiled-in value... */
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if (cinfo->data_precision != BITS_IN_JSAMPLE)
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ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
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/* Check that number of components won't exceed internal array sizes */
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if (cinfo->num_components > MAX_COMPONENTS)
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ERREXIT2(cinfo, JERR_COMPONENT_COUNT, cinfo->num_components,
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MAX_COMPONENTS);
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1991-10-06 20:00:00 -04:00
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/* Compute maximum sampling factors; check factor validity */
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cinfo->max_h_samp_factor = 1;
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cinfo->max_v_samp_factor = 1;
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1994-09-23 20:00:00 -04:00
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for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
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ci++, compptr++) {
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1991-10-06 20:00:00 -04:00
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if (compptr->h_samp_factor<=0 || compptr->h_samp_factor>MAX_SAMP_FACTOR ||
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compptr->v_samp_factor<=0 || compptr->v_samp_factor>MAX_SAMP_FACTOR)
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1994-09-23 20:00:00 -04:00
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ERREXIT(cinfo, JERR_BAD_SAMPLING);
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1991-10-06 20:00:00 -04:00
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cinfo->max_h_samp_factor = MAX(cinfo->max_h_samp_factor,
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compptr->h_samp_factor);
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cinfo->max_v_samp_factor = MAX(cinfo->max_v_samp_factor,
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compptr->v_samp_factor);
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1994-09-23 20:00:00 -04:00
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}
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1991-10-06 20:00:00 -04:00
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1994-09-23 20:00:00 -04:00
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/* Compute dimensions of components */
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for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
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ci++, compptr++) {
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/* For compression, we never do DCT scaling. */
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compptr->DCT_scaled_size = DCTSIZE;
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/* Size in DCT blocks */
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compptr->width_in_blocks = (JDIMENSION)
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jdiv_round_up((long) cinfo->image_width * (long) compptr->h_samp_factor,
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(long) (cinfo->max_h_samp_factor * DCTSIZE));
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compptr->height_in_blocks = (JDIMENSION)
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jdiv_round_up((long) cinfo->image_height * (long) compptr->v_samp_factor,
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(long) (cinfo->max_v_samp_factor * DCTSIZE));
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/* Size in samples */
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compptr->downsampled_width = (JDIMENSION)
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jdiv_round_up((long) cinfo->image_width * (long) compptr->h_samp_factor,
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(long) cinfo->max_h_samp_factor);
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compptr->downsampled_height = (JDIMENSION)
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jdiv_round_up((long) cinfo->image_height * (long) compptr->v_samp_factor,
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(long) cinfo->max_v_samp_factor);
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/* Mark component needed (this flag isn't actually used for compression) */
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compptr->component_needed = TRUE;
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1991-10-06 20:00:00 -04:00
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}
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1994-09-23 20:00:00 -04:00
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/* Compute number of fully interleaved MCU rows (number of times that
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* main controller will call coefficient controller).
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*/
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cinfo->total_iMCU_rows = (JDIMENSION)
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jdiv_round_up((long) cinfo->image_height,
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(long) (cinfo->max_v_samp_factor*DCTSIZE));
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}
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LOCAL void
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per_scan_setup (j_compress_ptr cinfo)
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/* Do computations that are needed before processing a JPEG scan */
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/* cinfo->comps_in_scan and cinfo->cur_comp_info[] are already set */
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{
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int ci, mcublks, tmp;
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jpeg_component_info *compptr;
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if (cinfo->comps_in_scan == 1) {
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/* Noninterleaved (single-component) scan */
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compptr = cinfo->cur_comp_info[0];
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/* Overall image size in MCUs */
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cinfo->MCUs_per_row = compptr->width_in_blocks;
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cinfo->MCU_rows_in_scan = compptr->height_in_blocks;
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/* For noninterleaved scan, always one block per MCU */
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compptr->MCU_width = 1;
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compptr->MCU_height = 1;
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compptr->MCU_blocks = 1;
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compptr->MCU_sample_width = DCTSIZE;
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compptr->last_col_width = 1;
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1995-03-14 19:00:00 -05:00
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/* For noninterleaved scans, it is convenient to define last_row_height
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* as the number of block rows present in the last iMCU row.
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*/
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tmp = (int) (compptr->height_in_blocks % compptr->v_samp_factor);
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if (tmp == 0) tmp = compptr->v_samp_factor;
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compptr->last_row_height = tmp;
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1994-09-23 20:00:00 -04:00
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/* Prepare array describing MCU composition */
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cinfo->blocks_in_MCU = 1;
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cinfo->MCU_membership[0] = 0;
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} else {
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/* Interleaved (multi-component) scan */
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if (cinfo->comps_in_scan <= 0 || cinfo->comps_in_scan > MAX_COMPS_IN_SCAN)
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ERREXIT2(cinfo, JERR_COMPONENT_COUNT, cinfo->comps_in_scan,
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MAX_COMPS_IN_SCAN);
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/* Overall image size in MCUs */
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cinfo->MCUs_per_row = (JDIMENSION)
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jdiv_round_up((long) cinfo->image_width,
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(long) (cinfo->max_h_samp_factor*DCTSIZE));
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cinfo->MCU_rows_in_scan = (JDIMENSION)
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jdiv_round_up((long) cinfo->image_height,
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(long) (cinfo->max_v_samp_factor*DCTSIZE));
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cinfo->blocks_in_MCU = 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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/* Sampling factors give # of blocks of component in each MCU */
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compptr->MCU_width = compptr->h_samp_factor;
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compptr->MCU_height = compptr->v_samp_factor;
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compptr->MCU_blocks = compptr->MCU_width * compptr->MCU_height;
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compptr->MCU_sample_width = compptr->MCU_width * DCTSIZE;
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/* Figure number of non-dummy blocks in last MCU column & row */
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tmp = (int) (compptr->width_in_blocks % compptr->MCU_width);
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if (tmp == 0) tmp = compptr->MCU_width;
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compptr->last_col_width = tmp;
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tmp = (int) (compptr->height_in_blocks % compptr->MCU_height);
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if (tmp == 0) tmp = compptr->MCU_height;
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compptr->last_row_height = tmp;
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/* Prepare array describing MCU composition */
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mcublks = compptr->MCU_blocks;
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if (cinfo->blocks_in_MCU + mcublks > MAX_BLOCKS_IN_MCU)
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ERREXIT(cinfo, JERR_BAD_MCU_SIZE);
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while (mcublks-- > 0) {
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cinfo->MCU_membership[cinfo->blocks_in_MCU++] = ci;
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}
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}
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}
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/* Convert restart specified in rows to actual MCU count. */
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/* Note that count must fit in 16 bits, so we provide limiting. */
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if (cinfo->restart_in_rows > 0) {
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long nominal = (long) cinfo->restart_in_rows * (long) cinfo->MCUs_per_row;
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cinfo->restart_interval = (unsigned int) MIN(nominal, 65535L);
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1991-10-06 20:00:00 -04:00
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}
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}
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/*
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1994-09-23 20:00:00 -04:00
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* Master selection of compression modules.
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* This is done once at the start of processing an image. We determine
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* which modules will be used and give them appropriate initialization calls.
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1991-10-06 20:00:00 -04:00
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*/
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1994-09-23 20:00:00 -04:00
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LOCAL void
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master_selection (j_compress_ptr cinfo)
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1991-10-06 20:00:00 -04:00
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{
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1994-09-23 20:00:00 -04:00
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my_master_ptr master = (my_master_ptr) cinfo->master;
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initial_setup(cinfo);
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master->pass_number = 0;
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/* There's not a lot of smarts here right now, but it'll get more
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* complicated when we have multiple implementations available...
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1991-10-06 20:00:00 -04:00
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*/
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1994-09-23 20:00:00 -04:00
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/* Preprocessing */
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if (! cinfo->raw_data_in) {
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jinit_color_converter(cinfo);
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jinit_downsampler(cinfo);
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jinit_c_prep_controller(cinfo, FALSE /* never need full buffer here */);
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}
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/* Forward DCT */
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jinit_forward_dct(cinfo);
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/* Entropy encoding: either Huffman or arithmetic coding. */
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if (cinfo->arith_code) {
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#ifdef C_ARITH_CODING_SUPPORTED
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jinit_arith_encoder(cinfo);
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#else
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ERREXIT(cinfo, JERR_ARITH_NOTIMPL);
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#endif
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} else
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jinit_huff_encoder(cinfo);
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1991-10-06 20:00:00 -04:00
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1994-09-23 20:00:00 -04:00
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/* For now, a full buffer is needed only for Huffman optimization. */
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jinit_c_coef_controller(cinfo, cinfo->optimize_coding);
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jinit_c_main_controller(cinfo, FALSE /* never need full buffer here */);
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jinit_marker_writer(cinfo);
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/* We can now tell the memory manager to allocate virtual arrays. */
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(*cinfo->mem->realize_virt_arrays) ((j_common_ptr) cinfo);
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/* Write the datastream header (SOI) immediately.
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* Frame and scan headers are postponed till later.
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* This lets application insert special markers after the SOI.
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*/
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(*cinfo->marker->write_file_header) (cinfo);
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}
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/*
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* Per-pass setup.
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* This is called at the beginning of each pass. We determine which modules
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* will be active during this pass and give them appropriate start_pass calls.
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* We also set is_last_pass to indicate whether any more passes will be
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* required.
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*/
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METHODDEF void
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prepare_for_pass (j_compress_ptr cinfo)
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{
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my_master_ptr master = (my_master_ptr) cinfo->master;
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int ci;
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int npasses;
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/* ???? JUST A QUICK CROCK FOR NOW ??? */
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/* For now, handle only single interleaved output scan; */
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/* we support two passes for Huffman optimization. */
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/* Prepare for single scan containing all components */
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if (cinfo->num_components > MAX_COMPS_IN_SCAN)
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ERREXIT2(cinfo, JERR_COMPONENT_COUNT, cinfo->num_components,
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MAX_COMPS_IN_SCAN);
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cinfo->comps_in_scan = cinfo->num_components;
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for (ci = 0; ci < cinfo->num_components; ci++) {
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cinfo->cur_comp_info[ci] = &cinfo->comp_info[ci];
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}
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per_scan_setup(cinfo);
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if (! cinfo->optimize_coding) {
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/* Standard single-pass case */
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npasses = 1;
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master->pub.call_pass_startup = TRUE;
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master->pub.is_last_pass = TRUE;
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if (! cinfo->raw_data_in) {
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(*cinfo->cconvert->start_pass) (cinfo);
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(*cinfo->downsample->start_pass) (cinfo);
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(*cinfo->prep->start_pass) (cinfo, JBUF_PASS_THRU);
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}
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(*cinfo->fdct->start_pass) (cinfo);
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(*cinfo->entropy->start_pass) (cinfo, FALSE);
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(*cinfo->coef->start_pass) (cinfo, JBUF_PASS_THRU);
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(*cinfo->main->start_pass) (cinfo, JBUF_PASS_THRU);
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} else {
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npasses = 2;
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switch (master->pass_number) {
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case 0:
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/* Huffman optimization: run all modules, gather statistics */
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master->pub.call_pass_startup = FALSE;
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master->pub.is_last_pass = FALSE;
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if (! cinfo->raw_data_in) {
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(*cinfo->cconvert->start_pass) (cinfo);
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(*cinfo->downsample->start_pass) (cinfo);
|
|
|
|
(*cinfo->prep->start_pass) (cinfo, JBUF_PASS_THRU);
|
|
|
|
}
|
|
|
|
(*cinfo->fdct->start_pass) (cinfo);
|
|
|
|
(*cinfo->entropy->start_pass) (cinfo, TRUE);
|
|
|
|
(*cinfo->coef->start_pass) (cinfo, JBUF_SAVE_AND_PASS);
|
|
|
|
(*cinfo->main->start_pass) (cinfo, JBUF_PASS_THRU);
|
|
|
|
break;
|
|
|
|
case 1:
|
|
|
|
/* Second pass: reread data from coefficient buffer */
|
|
|
|
master->pub.is_last_pass = TRUE;
|
|
|
|
(*cinfo->entropy->start_pass) (cinfo, FALSE);
|
|
|
|
(*cinfo->coef->start_pass) (cinfo, JBUF_CRANK_DEST);
|
|
|
|
/* We emit frame/scan headers now */
|
|
|
|
(*cinfo->marker->write_frame_header) (cinfo);
|
|
|
|
(*cinfo->marker->write_scan_header) (cinfo);
|
|
|
|
break;
|
|
|
|
}
|
|
|
|
}
|
|
|
|
|
|
|
|
/* Set up progress monitor's pass info if present */
|
|
|
|
if (cinfo->progress != NULL) {
|
|
|
|
cinfo->progress->completed_passes = master->pass_number;
|
|
|
|
cinfo->progress->total_passes = npasses;
|
|
|
|
}
|
|
|
|
|
|
|
|
master->pass_number++;
|
|
|
|
}
|
1991-10-06 20:00:00 -04:00
|
|
|
|
|
|
|
|
1994-09-23 20:00:00 -04:00
|
|
|
/*
|
|
|
|
* Special start-of-pass hook.
|
|
|
|
* This is called by jpeg_write_scanlines if call_pass_startup is TRUE.
|
|
|
|
* In single-pass processing, we need this hook because we don't want to
|
|
|
|
* write frame/scan headers during jpeg_start_compress; we want to let the
|
|
|
|
* application write COM markers etc. between jpeg_start_compress and the
|
|
|
|
* jpeg_write_scanlines loop.
|
|
|
|
* In multi-pass processing, this routine is not used.
|
|
|
|
*/
|
|
|
|
|
|
|
|
METHODDEF void
|
|
|
|
pass_startup (j_compress_ptr cinfo)
|
|
|
|
{
|
|
|
|
cinfo->master->call_pass_startup = FALSE; /* reset flag so call only once */
|
|
|
|
|
|
|
|
(*cinfo->marker->write_frame_header) (cinfo);
|
|
|
|
(*cinfo->marker->write_scan_header) (cinfo);
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
|
|
/*
|
|
|
|
* Finish up at end of pass.
|
|
|
|
*/
|
|
|
|
|
|
|
|
METHODDEF void
|
|
|
|
finish_pass_master (j_compress_ptr cinfo)
|
|
|
|
{
|
|
|
|
/* More complex logic later ??? */
|
|
|
|
|
|
|
|
/* The entropy coder needs an end-of-pass call, either to analyze
|
|
|
|
* statistics or to flush its output buffer.
|
|
|
|
*/
|
|
|
|
(*cinfo->entropy->finish_pass) (cinfo);
|
|
|
|
}
|
1991-10-06 20:00:00 -04:00
|
|
|
|
|
|
|
|
1994-09-23 20:00:00 -04:00
|
|
|
/*
|
|
|
|
* Initialize master compression control.
|
|
|
|
* This creates my own subrecord and also performs the master selection phase,
|
|
|
|
* which causes other modules to create their subrecords.
|
|
|
|
*/
|
|
|
|
|
|
|
|
GLOBAL void
|
|
|
|
jinit_master_compress (j_compress_ptr cinfo)
|
|
|
|
{
|
|
|
|
my_master_ptr master;
|
1991-10-06 20:00:00 -04:00
|
|
|
|
1994-09-23 20:00:00 -04:00
|
|
|
master = (my_master_ptr)
|
|
|
|
(*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE,
|
|
|
|
SIZEOF(my_comp_master));
|
|
|
|
cinfo->master = (struct jpeg_comp_master *) master;
|
|
|
|
master->pub.prepare_for_pass = prepare_for_pass;
|
|
|
|
master->pub.pass_startup = pass_startup;
|
|
|
|
master->pub.finish_pass = finish_pass_master;
|
1992-03-16 19:00:00 -05:00
|
|
|
|
1994-09-23 20:00:00 -04:00
|
|
|
master_selection(cinfo);
|
1991-10-06 20:00:00 -04:00
|
|
|
}
|