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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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#include "jdct.h"
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typedef struct {
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struct jpeg_forward_dct pub;
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forward_DCT_method_ptr do_dct[MAX_COMPONENTS];
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DCTELEM * divisors[NUM_QUANT_TBLS];
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#ifdef DCT_FLOAT_SUPPORTED
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float_DCT_method_ptr do_float_dct[MAX_COMPONENTS];
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FAST_FLOAT * float_divisors[NUM_QUANT_TBLS];
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#endif
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} my_fdct_controller;
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typedef my_fdct_controller * my_fdct_ptr;
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#ifdef DCT_ISLOW_SUPPORTED
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#define PROVIDE_ISLOW_TABLES
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#else
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#ifdef DCT_SCALING_SUPPORTED
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#define PROVIDE_ISLOW_TABLES
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#endif
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#endif
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METHODDEF(void)
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forward_DCT (j_compress_ptr cinfo, jpeg_component_info * compptr,
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JSAMPARRAY sample_data, JBLOCKROW coef_blocks,
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JDIMENSION start_row, JDIMENSION start_col,
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JDIMENSION num_blocks)
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{
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my_fdct_ptr fdct = (my_fdct_ptr) cinfo->fdct;
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forward_DCT_method_ptr do_dct = fdct->do_dct[compptr->component_index];
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DCTELEM * divisors = fdct->divisors[compptr->quant_tbl_no];
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DCTELEM workspace[DCTSIZE2];
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JDIMENSION bi;
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sample_data += start_row;
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for (bi = 0; bi < num_blocks; bi++, start_col += compptr->DCT_h_scaled_size) {
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(*do_dct) (workspace, sample_data, start_col);
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{ register DCTELEM temp, qval;
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register int i;
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register JCOEFPTR output_ptr = coef_blocks[bi];
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for (i = 0; i < DCTSIZE2; i++) {
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qval = divisors[i];
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temp = workspace[i];
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#ifdef FAST_DIVIDE
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#define DIVIDE_BY(a,b) a /= b
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#else
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#define DIVIDE_BY(a,b) if (a >= b) a /= b; else a = 0
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#endif
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if (temp < 0) {
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temp = -temp;
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temp += qval>>1;
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DIVIDE_BY(temp, qval);
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temp = -temp;
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} else {
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temp += qval>>1;
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DIVIDE_BY(temp, qval);
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}
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output_ptr[i] = (JCOEF) temp;
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}
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}
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}
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}
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#ifdef DCT_FLOAT_SUPPORTED
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METHODDEF(void)
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forward_DCT_float (j_compress_ptr cinfo, jpeg_component_info * compptr,
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JSAMPARRAY sample_data, JBLOCKROW coef_blocks,
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JDIMENSION start_row, JDIMENSION start_col,
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JDIMENSION num_blocks)
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{
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my_fdct_ptr fdct = (my_fdct_ptr) cinfo->fdct;
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float_DCT_method_ptr do_dct = fdct->do_float_dct[compptr->component_index];
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FAST_FLOAT * divisors = fdct->float_divisors[compptr->quant_tbl_no];
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FAST_FLOAT workspace[DCTSIZE2];
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JDIMENSION bi;
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sample_data += start_row;
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for (bi = 0; bi < num_blocks; bi++, start_col += compptr->DCT_h_scaled_size) {
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(*do_dct) (workspace, sample_data, start_col);
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{ register FAST_FLOAT temp;
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register int i;
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register JCOEFPTR output_ptr = coef_blocks[bi];
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for (i = 0; i < DCTSIZE2; i++) {
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temp = workspace[i] * divisors[i];
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output_ptr[i] = (JCOEF) ((int) (temp + (FAST_FLOAT) 16384.5) - 16384);
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}
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}
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}
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}
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#endif
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METHODDEF(void)
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start_pass_fdctmgr (j_compress_ptr cinfo)
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{
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my_fdct_ptr fdct = (my_fdct_ptr) cinfo->fdct;
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int ci, qtblno, i;
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jpeg_component_info *compptr;
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int method = 0;
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JQUANT_TBL * qtbl;
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DCTELEM * dtbl;
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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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switch ((compptr->DCT_h_scaled_size << 8) + compptr->DCT_v_scaled_size) {
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#ifdef DCT_SCALING_SUPPORTED
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case ((1 << 8) + 1):
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fdct->do_dct[ci] = jpeg_fdct_1x1;
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method = JDCT_ISLOW;
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break;
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case ((2 << 8) + 2):
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fdct->do_dct[ci] = jpeg_fdct_2x2;
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method = JDCT_ISLOW;
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break;
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case ((3 << 8) + 3):
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fdct->do_dct[ci] = jpeg_fdct_3x3;
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method = JDCT_ISLOW;
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break;
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case ((4 << 8) + 4):
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fdct->do_dct[ci] = jpeg_fdct_4x4;
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method = JDCT_ISLOW;
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break;
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case ((5 << 8) + 5):
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fdct->do_dct[ci] = jpeg_fdct_5x5;
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method = JDCT_ISLOW;
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break;
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case ((6 << 8) + 6):
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fdct->do_dct[ci] = jpeg_fdct_6x6;
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method = JDCT_ISLOW;
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break;
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case ((7 << 8) + 7):
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fdct->do_dct[ci] = jpeg_fdct_7x7;
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method = JDCT_ISLOW;
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break;
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case ((9 << 8) + 9):
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fdct->do_dct[ci] = jpeg_fdct_9x9;
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method = JDCT_ISLOW;
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break;
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case ((10 << 8) + 10):
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fdct->do_dct[ci] = jpeg_fdct_10x10;
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method = JDCT_ISLOW;
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break;
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case ((11 << 8) + 11):
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fdct->do_dct[ci] = jpeg_fdct_11x11;
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method = JDCT_ISLOW;
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break;
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case ((12 << 8) + 12):
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fdct->do_dct[ci] = jpeg_fdct_12x12;
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method = JDCT_ISLOW;
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break;
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case ((13 << 8) + 13):
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fdct->do_dct[ci] = jpeg_fdct_13x13;
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method = JDCT_ISLOW;
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break;
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case ((14 << 8) + 14):
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fdct->do_dct[ci] = jpeg_fdct_14x14;
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method = JDCT_ISLOW;
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break;
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case ((15 << 8) + 15):
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fdct->do_dct[ci] = jpeg_fdct_15x15;
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method = JDCT_ISLOW;
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break;
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case ((16 << 8) + 16):
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fdct->do_dct[ci] = jpeg_fdct_16x16;
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method = JDCT_ISLOW;
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break;
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case ((16 << 8) + 8):
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fdct->do_dct[ci] = jpeg_fdct_16x8;
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method = JDCT_ISLOW;
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break;
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case ((14 << 8) + 7):
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fdct->do_dct[ci] = jpeg_fdct_14x7;
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method = JDCT_ISLOW;
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break;
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case ((12 << 8) + 6):
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fdct->do_dct[ci] = jpeg_fdct_12x6;
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method = JDCT_ISLOW;
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break;
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case ((10 << 8) + 5):
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fdct->do_dct[ci] = jpeg_fdct_10x5;
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method = JDCT_ISLOW;
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break;
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case ((8 << 8) + 4):
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fdct->do_dct[ci] = jpeg_fdct_8x4;
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method = JDCT_ISLOW;
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break;
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case ((6 << 8) + 3):
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fdct->do_dct[ci] = jpeg_fdct_6x3;
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method = JDCT_ISLOW;
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break;
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case ((4 << 8) + 2):
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fdct->do_dct[ci] = jpeg_fdct_4x2;
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method = JDCT_ISLOW;
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break;
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case ((2 << 8) + 1):
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fdct->do_dct[ci] = jpeg_fdct_2x1;
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method = JDCT_ISLOW;
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break;
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case ((8 << 8) + 16):
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fdct->do_dct[ci] = jpeg_fdct_8x16;
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method = JDCT_ISLOW;
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break;
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case ((7 << 8) + 14):
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fdct->do_dct[ci] = jpeg_fdct_7x14;
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method = JDCT_ISLOW;
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break;
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case ((6 << 8) + 12):
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fdct->do_dct[ci] = jpeg_fdct_6x12;
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method = JDCT_ISLOW;
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break;
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case ((5 << 8) + 10):
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fdct->do_dct[ci] = jpeg_fdct_5x10;
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method = JDCT_ISLOW;
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break;
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case ((4 << 8) + 8):
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fdct->do_dct[ci] = jpeg_fdct_4x8;
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method = JDCT_ISLOW;
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break;
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case ((3 << 8) + 6):
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fdct->do_dct[ci] = jpeg_fdct_3x6;
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method = JDCT_ISLOW;
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break;
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case ((2 << 8) + 4):
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fdct->do_dct[ci] = jpeg_fdct_2x4;
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method = JDCT_ISLOW;
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break;
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case ((1 << 8) + 2):
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fdct->do_dct[ci] = jpeg_fdct_1x2;
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method = JDCT_ISLOW;
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break;
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#endif
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case ((DCTSIZE << 8) + DCTSIZE):
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switch (cinfo->dct_method) {
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#ifdef DCT_ISLOW_SUPPORTED
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case JDCT_ISLOW:
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fdct->do_dct[ci] = jpeg_fdct_islow;
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method = JDCT_ISLOW;
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break;
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#endif
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#ifdef DCT_IFAST_SUPPORTED
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case JDCT_IFAST:
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fdct->do_dct[ci] = jpeg_fdct_ifast;
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method = JDCT_IFAST;
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break;
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#endif
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#ifdef DCT_FLOAT_SUPPORTED
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case JDCT_FLOAT:
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fdct->do_float_dct[ci] = jpeg_fdct_float;
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method = JDCT_FLOAT;
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break;
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#endif
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default:
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ERREXIT(cinfo, JERR_NOT_COMPILED);
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break;
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}
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break;
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default:
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ERREXIT2(cinfo, JERR_BAD_DCTSIZE,
|
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compptr->DCT_h_scaled_size, compptr->DCT_v_scaled_size);
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break;
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}
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qtblno = compptr->quant_tbl_no;
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if (qtblno < 0 || qtblno >= NUM_QUANT_TBLS ||
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cinfo->quant_tbl_ptrs[qtblno] == NULL)
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ERREXIT1(cinfo, JERR_NO_QUANT_TABLE, qtblno);
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qtbl = cinfo->quant_tbl_ptrs[qtblno];
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switch (method) {
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#ifdef PROVIDE_ISLOW_TABLES
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case JDCT_ISLOW:
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if (fdct->divisors[qtblno] == NULL) {
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fdct->divisors[qtblno] = (DCTELEM *)
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(*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE,
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DCTSIZE2 * SIZEOF(DCTELEM));
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}
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dtbl = fdct->divisors[qtblno];
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for (i = 0; i < DCTSIZE2; i++) {
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dtbl[i] = ((DCTELEM) qtbl->quantval[i]) << 3;
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}
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fdct->pub.forward_DCT[ci] = forward_DCT;
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break;
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#endif
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#ifdef DCT_IFAST_SUPPORTED
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case JDCT_IFAST:
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{
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#define CONST_BITS 14
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static const INT16 aanscales[DCTSIZE2] = {
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16384, 22725, 21407, 19266, 16384, 12873, 8867, 4520,
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22725, 31521, 29692, 26722, 22725, 17855, 12299, 6270,
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21407, 29692, 27969, 25172, 21407, 16819, 11585, 5906,
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19266, 26722, 25172, 22654, 19266, 15137, 10426, 5315,
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16384, 22725, 21407, 19266, 16384, 12873, 8867, 4520,
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12873, 17855, 16819, 15137, 12873, 10114, 6967, 3552,
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8867, 12299, 11585, 10426, 8867, 6967, 4799, 2446,
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4520, 6270, 5906, 5315, 4520, 3552, 2446, 1247
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};
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SHIFT_TEMPS
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if (fdct->divisors[qtblno] == NULL) {
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fdct->divisors[qtblno] = (DCTELEM *)
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(*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE,
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DCTSIZE2 * SIZEOF(DCTELEM));
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}
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dtbl = fdct->divisors[qtblno];
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for (i = 0; i < DCTSIZE2; i++) {
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dtbl[i] = (DCTELEM)
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DESCALE(MULTIPLY16V16((INT32) qtbl->quantval[i],
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(INT32) aanscales[i]),
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CONST_BITS-3);
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}
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}
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fdct->pub.forward_DCT[ci] = forward_DCT;
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break;
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#endif
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#ifdef DCT_FLOAT_SUPPORTED
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case JDCT_FLOAT:
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{
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FAST_FLOAT * fdtbl;
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int row, col;
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static const double aanscalefactor[DCTSIZE] = {
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1.0, 1.387039845, 1.306562965, 1.175875602,
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1.0, 0.785694958, 0.541196100, 0.275899379
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};
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if (fdct->float_divisors[qtblno] == NULL) {
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fdct->float_divisors[qtblno] = (FAST_FLOAT *)
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(*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE,
|
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DCTSIZE2 * SIZEOF(FAST_FLOAT));
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}
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fdtbl = fdct->float_divisors[qtblno];
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i = 0;
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for (row = 0; row < DCTSIZE; row++) {
|
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for (col = 0; col < DCTSIZE; col++) {
|
|
fdtbl[i] = (FAST_FLOAT)
|
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(1.0 / (((double) qtbl->quantval[i] *
|
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aanscalefactor[row] * aanscalefactor[col] * 8.0)));
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i++;
|
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}
|
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}
|
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}
|
|
fdct->pub.forward_DCT[ci] = forward_DCT_float;
|
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break;
|
|
#endif
|
|
default:
|
|
ERREXIT(cinfo, JERR_NOT_COMPILED);
|
|
break;
|
|
}
|
|
}
|
|
}
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|
|
GLOBAL(void)
|
|
jinit_forward_dct (j_compress_ptr cinfo)
|
|
{
|
|
my_fdct_ptr fdct;
|
|
int i;
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|
|
fdct = (my_fdct_ptr)
|
|
(*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE,
|
|
SIZEOF(my_fdct_controller));
|
|
cinfo->fdct = (struct jpeg_forward_dct *) fdct;
|
|
fdct->pub.start_pass = start_pass_fdctmgr;
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|
for (i = 0; i < NUM_QUANT_TBLS; i++) {
|
|
fdct->divisors[i] = NULL;
|
|
#ifdef DCT_FLOAT_SUPPORTED
|
|
fdct->float_divisors[i] = NULL;
|
|
#endif
|
|
}
|
|
}
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