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These are the sources for the final official release of JPEGView for the Mac, back in 1994.
1 line
5.3 KiB
C
1 line
5.3 KiB
C
/*
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* jdcoefct.c
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*
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* Copyright (C) 1994, 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 the coefficient buffer controller for decompression.
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* This controller is the top level of the JPEG decompressor proper.
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* The coefficient buffer lies between entropy decoding and inverse-DCT steps.
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*
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* For now, this file does not support a full-image coefficient buffer.
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* One will be necessary to handle noninterleaved or progressive JPEG files.
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*/
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#define JPEG_INTERNALS
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#include "jinclude.h"
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#include "jpeglib.h"
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/* Private buffer controller object */
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typedef struct {
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struct jpeg_d_coef_controller pub; /* public fields */
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JDIMENSION MCU_col_num; /* saves next MCU column to process */
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JDIMENSION MCU_row_num; /* keep track of MCU row # within image */
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/* When not doing block smoothing, it's sufficient to buffer just one MCU
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* (although this may prove a bit slow in practice). We allocate a
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* workspace of MAX_BLOCKS_IN_MCU coefficient blocks, and let the entropy
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* decoder write into that workspace each time. On 80x86, the workspace
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* is FAR even though it's not really very big; this is to keep the
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* module interfaces unchanged when a large coefficient buffer is necessary.
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*/
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JBLOCKROW MCU_buffer[MAX_BLOCKS_IN_MCU];
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} my_coef_controller;
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typedef my_coef_controller * my_coef_ptr;
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/*
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* Initialize for a processing pass.
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*/
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METHODDEF void
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start_pass (j_decompress_ptr cinfo, J_BUF_MODE pass_mode)
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{
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my_coef_ptr coef = (my_coef_ptr) cinfo->coef;
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switch (pass_mode) {
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case JBUF_PASS_THRU:
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break;
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default:
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ERREXIT(cinfo, JERR_BAD_BUFFER_MODE);
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break;
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}
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coef->MCU_col_num = 0;
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coef->MCU_row_num = 0;
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}
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/*
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* Process some data.
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* Always attempts to emit one fully interleaved MCU row ("iMCU" row).
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* Returns TRUE if it completed a row, FALSE if not (suspension).
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*
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* NB: output_buf contains a plane for each component in image.
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* For now, we assume this is the same as the components in the scan.
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*/
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METHODDEF boolean
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decompress_data (j_decompress_ptr cinfo, JSAMPIMAGE output_buf)
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{
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my_coef_ptr coef = (my_coef_ptr) cinfo->coef;
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JDIMENSION MCU_col_num; /* index of current MCU within row */
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JDIMENSION last_MCU_col = cinfo->MCUs_per_row - 1;
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JDIMENSION last_MCU_row = cinfo->MCU_rows_in_scan - 1;
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int blkn, ci, xindex, yindex, useful_width;
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JSAMPARRAY output_ptr;
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JDIMENSION start_col, output_col;
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jpeg_component_info *compptr;
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inverse_DCT_method_ptr inverse_DCT;
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/* Loop to process as much as one whole MCU row */
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for (MCU_col_num = coef->MCU_col_num; MCU_col_num <= last_MCU_col;
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MCU_col_num++) {
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/* Try to fetch an MCU. Entropy decoder expects buffer to be zeroed. */
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jzero_far((void FAR *) coef->MCU_buffer[0],
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(size_t) (cinfo->blocks_in_MCU * SIZEOF(JBLOCK)));
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if (! (*cinfo->entropy->decode_mcu) (cinfo, coef->MCU_buffer)) {
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/* Suspension forced; return with row unfinished */
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coef->MCU_col_num = MCU_col_num; /* update my state */
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return FALSE;
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}
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/* Determine where data should go in output_buf and do the IDCT thing.
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* We skip dummy blocks at the right and bottom edges (but blkn gets
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* incremented past them!). Note the inner loop relies on having
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* allocated the MCU_buffer[] blocks sequentially.
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*/
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blkn = 0; /* index of current DCT block within MCU */
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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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/* Don't bother to IDCT an uninteresting component. */
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if (! compptr->component_needed) {
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blkn += compptr->MCU_blocks;
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continue;
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}
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inverse_DCT = cinfo->idct->inverse_DCT[compptr->component_index];
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if (MCU_col_num < last_MCU_col)
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useful_width = compptr->MCU_width;
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else
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useful_width = compptr->last_col_width;
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output_ptr = output_buf[ci];
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start_col = MCU_col_num * compptr->MCU_sample_width;
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for (yindex = 0; yindex < compptr->MCU_height; yindex++) {
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if (coef->MCU_row_num < last_MCU_row ||
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yindex < compptr->last_row_height) {
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output_col = start_col;
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for (xindex = 0; xindex < useful_width; xindex++) {
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(*inverse_DCT) (cinfo, (JCOEFPTR) coef->MCU_buffer[blkn+xindex],
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output_ptr, output_col);
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output_col += compptr->DCT_scaled_size;
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}
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}
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blkn += compptr->MCU_width;
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output_ptr += compptr->DCT_scaled_size;
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}
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}
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}
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/* We finished the row successfully */
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coef->MCU_col_num = 0; /* prepare for next row */
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coef->MCU_row_num++;
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return TRUE;
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}
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/*
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* Initialize coefficient buffer controller.
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*/
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GLOBAL void
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jinit_d_coef_controller (j_decompress_ptr cinfo, boolean need_full_buffer)
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{
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my_coef_ptr coef;
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JBLOCKROW buffer;
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int i;
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coef = (my_coef_ptr)
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(*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE,
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SIZEOF(my_coef_controller));
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cinfo->coef = (struct jpeg_d_coef_controller *) coef;
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coef->pub.start_pass = start_pass;
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coef->pub.decompress_data = decompress_data;
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/* Create the coefficient buffer. */
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if (need_full_buffer) {
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ERREXIT(cinfo, JERR_BAD_BUFFER_MODE);
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} else {
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buffer = (JBLOCKROW)
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(*cinfo->mem->alloc_large) ((j_common_ptr) cinfo, JPOOL_IMAGE,
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MAX_BLOCKS_IN_MCU * SIZEOF(JBLOCK));
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for (i = 0; i < MAX_BLOCKS_IN_MCU; i++) {
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coef->MCU_buffer[i] = buffer + i;
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}
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}
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}
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