Update libjpeg to "Version 9 13-Jan-2013"
This commit is contained in:
367
3rdparty/libjpeg/jdcoefct.c
vendored
367
3rdparty/libjpeg/jdcoefct.c
vendored
@@ -2,6 +2,7 @@
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* jdcoefct.c
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*
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* Copyright (C) 1994-1997, Thomas G. Lane.
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* Modified 2002-2011 by Guido Vollbeding.
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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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@@ -63,15 +64,15 @@ typedef my_coef_controller * my_coef_ptr;
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/* Forward declarations */
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METHODDEF(int) decompress_onepass
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JPP((j_decompress_ptr cinfo, JSAMPIMAGE output_buf));
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JPP((j_decompress_ptr cinfo, JSAMPIMAGE output_buf));
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#ifdef D_MULTISCAN_FILES_SUPPORTED
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METHODDEF(int) decompress_data
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JPP((j_decompress_ptr cinfo, JSAMPIMAGE output_buf));
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JPP((j_decompress_ptr cinfo, JSAMPIMAGE output_buf));
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#endif
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#ifdef BLOCK_SMOOTHING_SUPPORTED
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LOCAL(boolean) smoothing_ok JPP((j_decompress_ptr cinfo));
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METHODDEF(int) decompress_smooth_data
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JPP((j_decompress_ptr cinfo, JSAMPIMAGE output_buf));
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JPP((j_decompress_ptr cinfo, JSAMPIMAGE output_buf));
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#endif
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@@ -160,15 +161,16 @@ decompress_onepass (j_decompress_ptr cinfo, JSAMPIMAGE output_buf)
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for (yoffset = coef->MCU_vert_offset; yoffset < coef->MCU_rows_per_iMCU_row;
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yoffset++) {
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for (MCU_col_num = coef->MCU_ctr; MCU_col_num <= last_MCU_col;
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MCU_col_num++) {
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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->lim_Se) /* can bypass in DC only case */
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FMEMZERO((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; update state counters and exit */
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coef->MCU_vert_offset = yoffset;
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coef->MCU_ctr = MCU_col_num;
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return JPEG_SUSPENDED;
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/* Suspension forced; update state counters and exit */
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coef->MCU_vert_offset = yoffset;
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coef->MCU_ctr = MCU_col_num;
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return JPEG_SUSPENDED;
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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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@@ -177,32 +179,32 @@ decompress_onepass (j_decompress_ptr cinfo, JSAMPIMAGE output_buf)
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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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useful_width = (MCU_col_num < last_MCU_col) ? compptr->MCU_width
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: compptr->last_col_width;
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output_ptr = output_buf[compptr->component_index] +
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yoffset * compptr->DCT_scaled_size;
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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 (cinfo->input_iMCU_row < last_iMCU_row ||
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yoffset+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, compptr,
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(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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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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useful_width = (MCU_col_num < last_MCU_col) ? compptr->MCU_width
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: compptr->last_col_width;
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output_ptr = output_buf[compptr->component_index] +
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yoffset * compptr->DCT_v_scaled_size;
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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 (cinfo->input_iMCU_row < last_iMCU_row ||
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yoffset+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, compptr,
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(JCOEFPTR) coef->MCU_buffer[blkn+xindex],
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output_ptr, output_col);
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output_col += compptr->DCT_h_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_v_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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/* Completed an MCU row, but perhaps not an iMCU row */
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@@ -268,25 +270,25 @@ consume_data (j_decompress_ptr cinfo)
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for (yoffset = coef->MCU_vert_offset; yoffset < coef->MCU_rows_per_iMCU_row;
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yoffset++) {
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for (MCU_col_num = coef->MCU_ctr; MCU_col_num < cinfo->MCUs_per_row;
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MCU_col_num++) {
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MCU_col_num++) {
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/* Construct list of pointers to DCT blocks belonging to this MCU */
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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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start_col = MCU_col_num * compptr->MCU_width;
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for (yindex = 0; yindex < compptr->MCU_height; yindex++) {
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buffer_ptr = buffer[ci][yindex+yoffset] + start_col;
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for (xindex = 0; xindex < compptr->MCU_width; xindex++) {
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coef->MCU_buffer[blkn++] = buffer_ptr++;
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}
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}
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compptr = cinfo->cur_comp_info[ci];
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start_col = MCU_col_num * compptr->MCU_width;
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for (yindex = 0; yindex < compptr->MCU_height; yindex++) {
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buffer_ptr = buffer[ci][yindex+yoffset] + start_col;
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for (xindex = 0; xindex < compptr->MCU_width; xindex++) {
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coef->MCU_buffer[blkn++] = buffer_ptr++;
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}
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}
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}
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/* Try to fetch the MCU. */
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if (! (*cinfo->entropy->decode_mcu) (cinfo, coef->MCU_buffer)) {
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/* Suspension forced; update state counters and exit */
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coef->MCU_vert_offset = yoffset;
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coef->MCU_ctr = MCU_col_num;
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return JPEG_SUSPENDED;
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/* Suspension forced; update state counters and exit */
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coef->MCU_vert_offset = yoffset;
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coef->MCU_ctr = MCU_col_num;
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return JPEG_SUSPENDED;
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}
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}
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/* Completed an MCU row, but perhaps not an iMCU row */
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@@ -327,8 +329,8 @@ decompress_data (j_decompress_ptr cinfo, JSAMPIMAGE output_buf)
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/* Force some input to be done if we are getting ahead of the input. */
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while (cinfo->input_scan_number < cinfo->output_scan_number ||
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(cinfo->input_scan_number == cinfo->output_scan_number &&
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cinfo->input_iMCU_row <= cinfo->output_iMCU_row)) {
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(cinfo->input_scan_number == cinfo->output_scan_number &&
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cinfo->input_iMCU_row <= cinfo->output_iMCU_row)) {
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if ((*cinfo->inputctl->consume_input)(cinfo) == JPEG_SUSPENDED)
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return JPEG_SUSPENDED;
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}
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@@ -359,12 +361,12 @@ decompress_data (j_decompress_ptr cinfo, JSAMPIMAGE output_buf)
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buffer_ptr = buffer[block_row];
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output_col = 0;
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for (block_num = 0; block_num < compptr->width_in_blocks; block_num++) {
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(*inverse_DCT) (cinfo, compptr, (JCOEFPTR) buffer_ptr,
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output_ptr, output_col);
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buffer_ptr++;
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output_col += compptr->DCT_scaled_size;
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(*inverse_DCT) (cinfo, compptr, (JCOEFPTR) buffer_ptr,
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output_ptr, output_col);
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buffer_ptr++;
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output_col += compptr->DCT_h_scaled_size;
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}
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output_ptr += compptr->DCT_scaled_size;
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output_ptr += compptr->DCT_v_scaled_size;
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}
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}
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@@ -419,8 +421,8 @@ smoothing_ok (j_decompress_ptr cinfo)
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if (coef->coef_bits_latch == NULL)
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coef->coef_bits_latch = (int *)
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(*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE,
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cinfo->num_components *
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(SAVED_COEFS * SIZEOF(int)));
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cinfo->num_components *
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(SAVED_COEFS * SIZEOF(int)));
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coef_bits_latch = coef->coef_bits_latch;
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for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
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@@ -430,11 +432,11 @@ smoothing_ok (j_decompress_ptr cinfo)
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return FALSE;
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/* Verify DC & first 5 AC quantizers are nonzero to avoid zero-divide. */
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if (qtable->quantval[0] == 0 ||
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qtable->quantval[Q01_POS] == 0 ||
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qtable->quantval[Q10_POS] == 0 ||
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qtable->quantval[Q20_POS] == 0 ||
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qtable->quantval[Q11_POS] == 0 ||
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qtable->quantval[Q02_POS] == 0)
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qtable->quantval[Q01_POS] == 0 ||
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qtable->quantval[Q10_POS] == 0 ||
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qtable->quantval[Q20_POS] == 0 ||
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qtable->quantval[Q11_POS] == 0 ||
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qtable->quantval[Q02_POS] == 0)
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return FALSE;
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/* DC values must be at least partly known for all components. */
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coef_bits = cinfo->coef_bits[ci];
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@@ -444,7 +446,7 @@ smoothing_ok (j_decompress_ptr cinfo)
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for (coefi = 1; coefi <= 5; coefi++) {
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coef_bits_latch[coefi] = coef_bits[coefi];
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if (coef_bits[coefi] != 0)
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smoothing_useful = TRUE;
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smoothing_useful = TRUE;
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}
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coef_bits_latch += SAVED_COEFS;
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}
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@@ -480,7 +482,7 @@ decompress_smooth_data (j_decompress_ptr cinfo, JSAMPIMAGE output_buf)
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/* Force some input to be done if we are getting ahead of the input. */
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while (cinfo->input_scan_number <= cinfo->output_scan_number &&
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! cinfo->inputctl->eoi_reached) {
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! cinfo->inputctl->eoi_reached) {
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if (cinfo->input_scan_number == cinfo->output_scan_number) {
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/* If input is working on current scan, we ordinarily want it to
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* have completed the current row. But if input scan is DC,
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@@ -489,7 +491,7 @@ decompress_smooth_data (j_decompress_ptr cinfo, JSAMPIMAGE output_buf)
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*/
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JDIMENSION delta = (cinfo->Ss == 0) ? 1 : 0;
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if (cinfo->input_iMCU_row > cinfo->output_iMCU_row+delta)
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break;
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break;
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}
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if ((*cinfo->inputctl->consume_input)(cinfo) == JPEG_SUSPENDED)
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return JPEG_SUSPENDED;
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@@ -517,15 +519,15 @@ decompress_smooth_data (j_decompress_ptr cinfo, JSAMPIMAGE output_buf)
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if (cinfo->output_iMCU_row > 0) {
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access_rows += compptr->v_samp_factor; /* prior iMCU row too */
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buffer = (*cinfo->mem->access_virt_barray)
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((j_common_ptr) cinfo, coef->whole_image[ci],
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(cinfo->output_iMCU_row - 1) * compptr->v_samp_factor,
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(JDIMENSION) access_rows, FALSE);
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((j_common_ptr) cinfo, coef->whole_image[ci],
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(cinfo->output_iMCU_row - 1) * compptr->v_samp_factor,
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(JDIMENSION) access_rows, FALSE);
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buffer += compptr->v_samp_factor; /* point to current iMCU row */
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first_row = FALSE;
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} else {
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buffer = (*cinfo->mem->access_virt_barray)
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((j_common_ptr) cinfo, coef->whole_image[ci],
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(JDIMENSION) 0, (JDIMENSION) access_rows, FALSE);
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((j_common_ptr) cinfo, coef->whole_image[ci],
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(JDIMENSION) 0, (JDIMENSION) access_rows, FALSE);
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first_row = TRUE;
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}
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/* Fetch component-dependent info */
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@@ -543,13 +545,13 @@ decompress_smooth_data (j_decompress_ptr cinfo, JSAMPIMAGE output_buf)
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for (block_row = 0; block_row < block_rows; block_row++) {
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buffer_ptr = buffer[block_row];
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if (first_row && block_row == 0)
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prev_block_row = buffer_ptr;
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prev_block_row = buffer_ptr;
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else
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prev_block_row = buffer[block_row-1];
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prev_block_row = buffer[block_row-1];
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if (last_row && block_row == block_rows-1)
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next_block_row = buffer_ptr;
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next_block_row = buffer_ptr;
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else
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next_block_row = buffer[block_row+1];
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next_block_row = buffer[block_row+1];
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/* We fetch the surrounding DC values using a sliding-register approach.
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* Initialize all nine here so as to do the right thing on narrow pics.
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*/
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@@ -559,104 +561,104 @@ decompress_smooth_data (j_decompress_ptr cinfo, JSAMPIMAGE output_buf)
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output_col = 0;
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last_block_column = compptr->width_in_blocks - 1;
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for (block_num = 0; block_num <= last_block_column; block_num++) {
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/* Fetch current DCT block into workspace so we can modify it. */
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jcopy_block_row(buffer_ptr, (JBLOCKROW) workspace, (JDIMENSION) 1);
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/* Update DC values */
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if (block_num < last_block_column) {
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DC3 = (int) prev_block_row[1][0];
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DC6 = (int) buffer_ptr[1][0];
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DC9 = (int) next_block_row[1][0];
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}
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/* Compute coefficient estimates per K.8.
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* An estimate is applied only if coefficient is still zero,
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* and is not known to be fully accurate.
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*/
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/* AC01 */
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if ((Al=coef_bits[1]) != 0 && workspace[1] == 0) {
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num = 36 * Q00 * (DC4 - DC6);
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if (num >= 0) {
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pred = (int) (((Q01<<7) + num) / (Q01<<8));
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if (Al > 0 && pred >= (1<<Al))
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pred = (1<<Al)-1;
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} else {
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pred = (int) (((Q01<<7) - num) / (Q01<<8));
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if (Al > 0 && pred >= (1<<Al))
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pred = (1<<Al)-1;
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pred = -pred;
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/* Fetch current DCT block into workspace so we can modify it. */
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jcopy_block_row(buffer_ptr, (JBLOCKROW) workspace, (JDIMENSION) 1);
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/* Update DC values */
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if (block_num < last_block_column) {
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DC3 = (int) prev_block_row[1][0];
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DC6 = (int) buffer_ptr[1][0];
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DC9 = (int) next_block_row[1][0];
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}
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/* Compute coefficient estimates per K.8.
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* An estimate is applied only if coefficient is still zero,
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* and is not known to be fully accurate.
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*/
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/* AC01 */
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if ((Al=coef_bits[1]) != 0 && workspace[1] == 0) {
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num = 36 * Q00 * (DC4 - DC6);
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if (num >= 0) {
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pred = (int) (((Q01<<7) + num) / (Q01<<8));
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if (Al > 0 && pred >= (1<<Al))
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pred = (1<<Al)-1;
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} else {
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pred = (int) (((Q01<<7) - num) / (Q01<<8));
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if (Al > 0 && pred >= (1<<Al))
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pred = (1<<Al)-1;
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pred = -pred;
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}
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workspace[1] = (JCOEF) pred;
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}
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/* AC10 */
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if ((Al=coef_bits[2]) != 0 && workspace[8] == 0) {
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num = 36 * Q00 * (DC2 - DC8);
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if (num >= 0) {
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pred = (int) (((Q10<<7) + num) / (Q10<<8));
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if (Al > 0 && pred >= (1<<Al))
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pred = (1<<Al)-1;
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} else {
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pred = (int) (((Q10<<7) - num) / (Q10<<8));
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if (Al > 0 && pred >= (1<<Al))
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pred = (1<<Al)-1;
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pred = -pred;
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}
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workspace[8] = (JCOEF) pred;
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}
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/* AC20 */
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if ((Al=coef_bits[3]) != 0 && workspace[16] == 0) {
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num = 9 * Q00 * (DC2 + DC8 - 2*DC5);
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if (num >= 0) {
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pred = (int) (((Q20<<7) + num) / (Q20<<8));
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if (Al > 0 && pred >= (1<<Al))
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pred = (1<<Al)-1;
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} else {
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pred = (int) (((Q20<<7) - num) / (Q20<<8));
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if (Al > 0 && pred >= (1<<Al))
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pred = (1<<Al)-1;
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pred = -pred;
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}
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workspace[16] = (JCOEF) pred;
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}
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/* AC11 */
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if ((Al=coef_bits[4]) != 0 && workspace[9] == 0) {
|
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num = 5 * Q00 * (DC1 - DC3 - DC7 + DC9);
|
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if (num >= 0) {
|
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pred = (int) (((Q11<<7) + num) / (Q11<<8));
|
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if (Al > 0 && pred >= (1<<Al))
|
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pred = (1<<Al)-1;
|
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} else {
|
||||
pred = (int) (((Q11<<7) - num) / (Q11<<8));
|
||||
if (Al > 0 && pred >= (1<<Al))
|
||||
pred = (1<<Al)-1;
|
||||
pred = -pred;
|
||||
}
|
||||
workspace[9] = (JCOEF) pred;
|
||||
}
|
||||
/* AC02 */
|
||||
if ((Al=coef_bits[5]) != 0 && workspace[2] == 0) {
|
||||
num = 9 * Q00 * (DC4 + DC6 - 2*DC5);
|
||||
if (num >= 0) {
|
||||
pred = (int) (((Q02<<7) + num) / (Q02<<8));
|
||||
if (Al > 0 && pred >= (1<<Al))
|
||||
pred = (1<<Al)-1;
|
||||
} else {
|
||||
pred = (int) (((Q02<<7) - num) / (Q02<<8));
|
||||
if (Al > 0 && pred >= (1<<Al))
|
||||
pred = (1<<Al)-1;
|
||||
pred = -pred;
|
||||
}
|
||||
workspace[2] = (JCOEF) pred;
|
||||
}
|
||||
/* OK, do the IDCT */
|
||||
(*inverse_DCT) (cinfo, compptr, (JCOEFPTR) workspace,
|
||||
output_ptr, output_col);
|
||||
/* Advance for next column */
|
||||
DC1 = DC2; DC2 = DC3;
|
||||
DC4 = DC5; DC5 = DC6;
|
||||
DC7 = DC8; DC8 = DC9;
|
||||
buffer_ptr++, prev_block_row++, next_block_row++;
|
||||
output_col += compptr->DCT_h_scaled_size;
|
||||
}
|
||||
workspace[1] = (JCOEF) pred;
|
||||
}
|
||||
/* AC10 */
|
||||
if ((Al=coef_bits[2]) != 0 && workspace[8] == 0) {
|
||||
num = 36 * Q00 * (DC2 - DC8);
|
||||
if (num >= 0) {
|
||||
pred = (int) (((Q10<<7) + num) / (Q10<<8));
|
||||
if (Al > 0 && pred >= (1<<Al))
|
||||
pred = (1<<Al)-1;
|
||||
} else {
|
||||
pred = (int) (((Q10<<7) - num) / (Q10<<8));
|
||||
if (Al > 0 && pred >= (1<<Al))
|
||||
pred = (1<<Al)-1;
|
||||
pred = -pred;
|
||||
}
|
||||
workspace[8] = (JCOEF) pred;
|
||||
}
|
||||
/* AC20 */
|
||||
if ((Al=coef_bits[3]) != 0 && workspace[16] == 0) {
|
||||
num = 9 * Q00 * (DC2 + DC8 - 2*DC5);
|
||||
if (num >= 0) {
|
||||
pred = (int) (((Q20<<7) + num) / (Q20<<8));
|
||||
if (Al > 0 && pred >= (1<<Al))
|
||||
pred = (1<<Al)-1;
|
||||
} else {
|
||||
pred = (int) (((Q20<<7) - num) / (Q20<<8));
|
||||
if (Al > 0 && pred >= (1<<Al))
|
||||
pred = (1<<Al)-1;
|
||||
pred = -pred;
|
||||
}
|
||||
workspace[16] = (JCOEF) pred;
|
||||
}
|
||||
/* AC11 */
|
||||
if ((Al=coef_bits[4]) != 0 && workspace[9] == 0) {
|
||||
num = 5 * Q00 * (DC1 - DC3 - DC7 + DC9);
|
||||
if (num >= 0) {
|
||||
pred = (int) (((Q11<<7) + num) / (Q11<<8));
|
||||
if (Al > 0 && pred >= (1<<Al))
|
||||
pred = (1<<Al)-1;
|
||||
} else {
|
||||
pred = (int) (((Q11<<7) - num) / (Q11<<8));
|
||||
if (Al > 0 && pred >= (1<<Al))
|
||||
pred = (1<<Al)-1;
|
||||
pred = -pred;
|
||||
}
|
||||
workspace[9] = (JCOEF) pred;
|
||||
}
|
||||
/* AC02 */
|
||||
if ((Al=coef_bits[5]) != 0 && workspace[2] == 0) {
|
||||
num = 9 * Q00 * (DC4 + DC6 - 2*DC5);
|
||||
if (num >= 0) {
|
||||
pred = (int) (((Q02<<7) + num) / (Q02<<8));
|
||||
if (Al > 0 && pred >= (1<<Al))
|
||||
pred = (1<<Al)-1;
|
||||
} else {
|
||||
pred = (int) (((Q02<<7) - num) / (Q02<<8));
|
||||
if (Al > 0 && pred >= (1<<Al))
|
||||
pred = (1<<Al)-1;
|
||||
pred = -pred;
|
||||
}
|
||||
workspace[2] = (JCOEF) pred;
|
||||
}
|
||||
/* OK, do the IDCT */
|
||||
(*inverse_DCT) (cinfo, compptr, (JCOEFPTR) workspace,
|
||||
output_ptr, output_col);
|
||||
/* Advance for next column */
|
||||
DC1 = DC2; DC2 = DC3;
|
||||
DC4 = DC5; DC5 = DC6;
|
||||
DC7 = DC8; DC8 = DC9;
|
||||
buffer_ptr++, prev_block_row++, next_block_row++;
|
||||
output_col += compptr->DCT_scaled_size;
|
||||
}
|
||||
output_ptr += compptr->DCT_scaled_size;
|
||||
output_ptr += compptr->DCT_v_scaled_size;
|
||||
}
|
||||
}
|
||||
|
||||
@@ -679,7 +681,7 @@ jinit_d_coef_controller (j_decompress_ptr cinfo, boolean need_full_buffer)
|
||||
|
||||
coef = (my_coef_ptr)
|
||||
(*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE,
|
||||
SIZEOF(my_coef_controller));
|
||||
SIZEOF(my_coef_controller));
|
||||
cinfo->coef = (struct jpeg_d_coef_controller *) coef;
|
||||
coef->pub.start_input_pass = start_input_pass;
|
||||
coef->pub.start_output_pass = start_output_pass;
|
||||
@@ -697,20 +699,20 @@ jinit_d_coef_controller (j_decompress_ptr cinfo, boolean need_full_buffer)
|
||||
jpeg_component_info *compptr;
|
||||
|
||||
for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
|
||||
ci++, compptr++) {
|
||||
ci++, compptr++) {
|
||||
access_rows = compptr->v_samp_factor;
|
||||
#ifdef BLOCK_SMOOTHING_SUPPORTED
|
||||
/* If block smoothing could be used, need a bigger window */
|
||||
if (cinfo->progressive_mode)
|
||||
access_rows *= 3;
|
||||
access_rows *= 3;
|
||||
#endif
|
||||
coef->whole_image[ci] = (*cinfo->mem->request_virt_barray)
|
||||
((j_common_ptr) cinfo, JPOOL_IMAGE, TRUE,
|
||||
(JDIMENSION) jround_up((long) compptr->width_in_blocks,
|
||||
(long) compptr->h_samp_factor),
|
||||
(JDIMENSION) jround_up((long) compptr->height_in_blocks,
|
||||
(long) compptr->v_samp_factor),
|
||||
(JDIMENSION) access_rows);
|
||||
((j_common_ptr) cinfo, JPOOL_IMAGE, TRUE,
|
||||
(JDIMENSION) jround_up((long) compptr->width_in_blocks,
|
||||
(long) compptr->h_samp_factor),
|
||||
(JDIMENSION) jround_up((long) compptr->height_in_blocks,
|
||||
(long) compptr->v_samp_factor),
|
||||
(JDIMENSION) access_rows);
|
||||
}
|
||||
coef->pub.consume_data = consume_data;
|
||||
coef->pub.decompress_data = decompress_data;
|
||||
@@ -725,10 +727,13 @@ jinit_d_coef_controller (j_decompress_ptr cinfo, boolean need_full_buffer)
|
||||
|
||||
buffer = (JBLOCKROW)
|
||||
(*cinfo->mem->alloc_large) ((j_common_ptr) cinfo, JPOOL_IMAGE,
|
||||
D_MAX_BLOCKS_IN_MCU * SIZEOF(JBLOCK));
|
||||
D_MAX_BLOCKS_IN_MCU * SIZEOF(JBLOCK));
|
||||
for (i = 0; i < D_MAX_BLOCKS_IN_MCU; i++) {
|
||||
coef->MCU_buffer[i] = buffer + i;
|
||||
}
|
||||
if (cinfo->lim_Se == 0) /* DC only case: want to bypass later */
|
||||
FMEMZERO((void FAR *) buffer,
|
||||
(size_t) (D_MAX_BLOCKS_IN_MCU * SIZEOF(JBLOCK)));
|
||||
coef->pub.consume_data = dummy_consume_data;
|
||||
coef->pub.decompress_data = decompress_onepass;
|
||||
coef->pub.coef_arrays = NULL; /* flag for no virtual arrays */
|
||||
|
Reference in New Issue
Block a user