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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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#ifdef DCT_FLOAT_SUPPORTED
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#if DCTSIZE != 8
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Sorry, this code only copes with 8x8 DCTs.
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#endif
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GLOBAL(void)
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jpeg_fdct_float (FAST_FLOAT * data, JSAMPARRAY sample_data, JDIMENSION start_col)
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{
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FAST_FLOAT tmp0, tmp1, tmp2, tmp3, tmp4, tmp5, tmp6, tmp7;
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FAST_FLOAT tmp10, tmp11, tmp12, tmp13;
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FAST_FLOAT z1, z2, z3, z4, z5, z11, z13;
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FAST_FLOAT *dataptr;
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JSAMPROW elemptr;
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int ctr;
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dataptr = data;
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for (ctr = 0; ctr < DCTSIZE; ctr++) {
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elemptr = sample_data[ctr] + start_col;
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tmp0 = (FAST_FLOAT) (GETJSAMPLE(elemptr[0]) + GETJSAMPLE(elemptr[7]));
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tmp7 = (FAST_FLOAT) (GETJSAMPLE(elemptr[0]) - GETJSAMPLE(elemptr[7]));
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tmp1 = (FAST_FLOAT) (GETJSAMPLE(elemptr[1]) + GETJSAMPLE(elemptr[6]));
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tmp6 = (FAST_FLOAT) (GETJSAMPLE(elemptr[1]) - GETJSAMPLE(elemptr[6]));
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tmp2 = (FAST_FLOAT) (GETJSAMPLE(elemptr[2]) + GETJSAMPLE(elemptr[5]));
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tmp5 = (FAST_FLOAT) (GETJSAMPLE(elemptr[2]) - GETJSAMPLE(elemptr[5]));
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tmp3 = (FAST_FLOAT) (GETJSAMPLE(elemptr[3]) + GETJSAMPLE(elemptr[4]));
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tmp4 = (FAST_FLOAT) (GETJSAMPLE(elemptr[3]) - GETJSAMPLE(elemptr[4]));
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tmp10 = tmp0 + tmp3;
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tmp13 = tmp0 - tmp3;
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tmp11 = tmp1 + tmp2;
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tmp12 = tmp1 - tmp2;
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dataptr[0] = tmp10 + tmp11 - 8 * CENTERJSAMPLE;
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dataptr[4] = tmp10 - tmp11;
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z1 = (tmp12 + tmp13) * ((FAST_FLOAT) 0.707106781);
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dataptr[2] = tmp13 + z1;
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dataptr[6] = tmp13 - z1;
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tmp10 = tmp4 + tmp5;
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tmp11 = tmp5 + tmp6;
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tmp12 = tmp6 + tmp7;
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z5 = (tmp10 - tmp12) * ((FAST_FLOAT) 0.382683433);
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z2 = ((FAST_FLOAT) 0.541196100) * tmp10 + z5;
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z4 = ((FAST_FLOAT) 1.306562965) * tmp12 + z5;
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z3 = tmp11 * ((FAST_FLOAT) 0.707106781);
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z11 = tmp7 + z3;
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z13 = tmp7 - z3;
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dataptr[5] = z13 + z2;
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dataptr[3] = z13 - z2;
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dataptr[1] = z11 + z4;
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dataptr[7] = z11 - z4;
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dataptr += DCTSIZE;
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}
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dataptr = data;
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for (ctr = DCTSIZE-1; ctr >= 0; ctr--) {
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tmp0 = dataptr[DCTSIZE*0] + dataptr[DCTSIZE*7];
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tmp7 = dataptr[DCTSIZE*0] - dataptr[DCTSIZE*7];
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tmp1 = dataptr[DCTSIZE*1] + dataptr[DCTSIZE*6];
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tmp6 = dataptr[DCTSIZE*1] - dataptr[DCTSIZE*6];
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tmp2 = dataptr[DCTSIZE*2] + dataptr[DCTSIZE*5];
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tmp5 = dataptr[DCTSIZE*2] - dataptr[DCTSIZE*5];
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tmp3 = dataptr[DCTSIZE*3] + dataptr[DCTSIZE*4];
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tmp4 = dataptr[DCTSIZE*3] - dataptr[DCTSIZE*4];
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tmp10 = tmp0 + tmp3;
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tmp13 = tmp0 - tmp3;
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tmp11 = tmp1 + tmp2;
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tmp12 = tmp1 - tmp2;
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dataptr[DCTSIZE*0] = tmp10 + tmp11;
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dataptr[DCTSIZE*4] = tmp10 - tmp11;
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z1 = (tmp12 + tmp13) * ((FAST_FLOAT) 0.707106781);
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dataptr[DCTSIZE*2] = tmp13 + z1;
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dataptr[DCTSIZE*6] = tmp13 - z1;
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tmp10 = tmp4 + tmp5;
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tmp11 = tmp5 + tmp6;
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tmp12 = tmp6 + tmp7;
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z5 = (tmp10 - tmp12) * ((FAST_FLOAT) 0.382683433);
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z2 = ((FAST_FLOAT) 0.541196100) * tmp10 + z5;
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z4 = ((FAST_FLOAT) 1.306562965) * tmp12 + z5;
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z3 = tmp11 * ((FAST_FLOAT) 0.707106781);
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z11 = tmp7 + z3;
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z13 = tmp7 - z3;
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dataptr[DCTSIZE*5] = z13 + z2;
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dataptr[DCTSIZE*3] = z13 - z2;
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dataptr[DCTSIZE*1] = z11 + z4;
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dataptr[DCTSIZE*7] = z11 - z4;
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dataptr++;
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}
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}
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#endif
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