mirror of
https://github.com/CTCaer/RetroArch.git
synced 2024-12-23 11:18:25 +00:00
450 lines
10 KiB
C
450 lines
10 KiB
C
/* RetroArch - A frontend for libretro.
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* Copyright (C) 2010-2014 - Hans-Kristian Arntzen
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* Copyright (C) 2011-2014 - Daniel De Matteis
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*
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* RetroArch is free software: you can redistribute it and/or modify it under the terms
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* of the GNU General Public License as published by the Free Software Found-
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* ation, either version 3 of the License, or (at your option) any later version.
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*
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* RetroArch is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
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* without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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* PURPOSE. See the GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along with RetroArch.
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* If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "softfilter.h"
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#include <stdlib.h>
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#ifdef RARCH_INTERNAL
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#define softfilter_get_implementation epx_get_implementation
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#define softfilter_thread_data epx_softfilter_thread_data
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#define filter_data epx_filter_data
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#endif
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#define EPX_SCALE 2
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struct softfilter_thread_data
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{
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void *out_data;
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const void *in_data;
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size_t out_pitch;
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size_t in_pitch;
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unsigned colfmt;
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unsigned width;
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unsigned height;
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int first;
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int last;
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};
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struct filter_data
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{
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unsigned threads;
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struct softfilter_thread_data *workers;
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unsigned in_fmt;
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};
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static unsigned epx_generic_input_fmts(void)
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{
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return SOFTFILTER_FMT_RGB565;
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}
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static unsigned epx_generic_output_fmts(unsigned input_fmts)
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{
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return input_fmts;
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}
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static unsigned epx_generic_threads(void *data)
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{
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struct filter_data *filt = (struct filter_data*)data;
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return filt->threads;
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}
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static void *epx_generic_create(const struct softfilter_config *config,
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unsigned in_fmt, unsigned out_fmt,
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unsigned max_width, unsigned max_height,
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unsigned threads, softfilter_simd_mask_t simd, void *userdata)
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{
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(void)simd;
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(void)config;
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(void)userdata;
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struct filter_data *filt = (struct filter_data*)calloc(1, sizeof(*filt));
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if (!filt)
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return NULL;
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filt->workers = (struct softfilter_thread_data*)
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calloc(threads, sizeof(struct softfilter_thread_data));
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filt->threads = threads;
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filt->in_fmt = in_fmt;
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if (!filt->workers)
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{
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free(filt);
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return NULL;
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}
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return filt;
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}
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static void epx_generic_output(void *data,
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unsigned *out_width, unsigned *out_height,
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unsigned width, unsigned height)
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{
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*out_width = width * EPX_SCALE;
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*out_height = height * EPX_SCALE;
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}
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static void epx_generic_destroy(void *data)
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{
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struct filter_data *filt = (struct filter_data*)data;
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if (!filt)
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return;
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free(filt->workers);
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free(filt);
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}
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static void EPX_16 (int width, int height,
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int first, int last,
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uint16_t *src, int src_stride, uint16_t *dst, int dst_stride)
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{
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uint16_t colorX, colorA, colorB, colorC, colorD;
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uint16_t *sP, *uP, *lP;
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uint32_t *dP1, *dP2;
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int w, prevline;
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prevline = (first) ? 0 : src_stride;
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height -= 2;
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/* D
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* A X C
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* B
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*/
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/* top edge */
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sP = (uint16_t *)(src - prevline);
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lP = (uint16_t *) (src + src_stride);
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dP1 = (uint32_t *) dst;
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dP2 = (uint32_t *) (dst + dst_stride);
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// left edge
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colorX = *sP;
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colorC = *++sP;
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colorB = *lP++;
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if ((colorX != colorC) && (colorB != colorX))
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{
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#ifdef MSB_FIRST
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*dP1 = (colorX << 16) + colorX;
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*dP2 = (colorX << 16) + ((colorB == colorC) ? colorB : colorX);
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#else
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*dP1 = colorX + (colorX << 16);
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*dP2 = colorX + (((colorB == colorC) ? colorB : colorX) << 16);
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#endif
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}
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else
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*dP1 = *dP2 = (colorX << 16) + colorX;
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dP1++;
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dP2++;
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//
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for (w = width - 2; w; w--)
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{
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colorA = colorX;
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colorX = colorC;
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colorC = *++sP;
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colorB = *lP++;
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if ((colorA != colorC) && (colorB != colorX))
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{
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#ifdef MSB_FIRST
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*dP1 = (colorX << 16) + colorX;
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*dP2 = (((colorA == colorB) ? colorA : colorX) << 16) +
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((colorB == colorC) ? colorB : colorX);
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#else
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*dP1 = colorX + (colorX << 16);
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*dP2 = ((colorA == colorB) ? colorA : colorX) +
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(((colorB == colorC) ? colorB : colorX) << 16);
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#endif
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}
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else
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*dP1 = *dP2 = (colorX << 16) + colorX;
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dP1++;
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dP2++;
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}
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/* right edge */
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colorA = colorX;
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colorX = colorC;
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colorB = *lP;
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if ((colorA != colorX) && (colorB != colorX))
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{
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#ifdef MSB_FIRST
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*dP1 = (colorX << 16) + colorX;
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*dP2 = (((colorA == colorB) ? colorA : colorX) << 16) + colorX;
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#else
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*dP1 = colorX + (colorX << 16);
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*dP2 = ((colorA == colorB) ? colorA : colorX) + (colorX << 16);
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#endif
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}
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else
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*dP1 = *dP2 = (colorX << 16) + colorX;
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src += src_stride;
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dst += dst_stride << 1;
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for (; height; height--)
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{
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sP = (uint16_t *) src;
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uP = (uint16_t *) (src - src_stride);
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lP = (uint16_t *) (src + src_stride);
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dP1 = (uint32_t *) dst;
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dP2 = (uint32_t *) (dst + dst_stride);
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/* left edge */
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colorX = *sP;
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colorC = *++sP;
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colorB = *lP++;
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colorD = *uP++;
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if ((colorX != colorC) && (colorB != colorD))
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{
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#ifdef MSB_FIRST
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*dP1 = (colorX << 16) + ((colorC == colorD) ? colorC : colorX);
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*dP2 = (colorX << 16) + ((colorB == colorC) ? colorB : colorX);
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#else
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*dP1 = colorX + (((colorC == colorD) ? colorC : colorX) << 16);
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*dP2 = colorX + (((colorB == colorC) ? colorB : colorX) << 16);
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#endif
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}
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else
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*dP1 = *dP2 = (colorX << 16) + colorX;
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dP1++;
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dP2++;
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for (w = width - 2; w; w--)
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{
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colorA = colorX;
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colorX = colorC;
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colorC = *++sP;
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colorB = *lP++;
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colorD = *uP++;
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if ((colorA != colorC) && (colorB != colorD))
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{
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#ifdef MSB_FIRST
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*dP1 = (((colorD == colorA) ? colorD : colorX) << 16) +
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((colorC == colorD) ? colorC : colorX);
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*dP2 = (((colorA == colorB) ? colorA : colorX) << 16) +
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((colorB == colorC) ? colorB : colorX);
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#else
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*dP1 = ((colorD == colorA) ? colorD : colorX) +
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(((colorC == colorD) ? colorC : colorX) << 16);
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*dP2 = ((colorA == colorB) ? colorA : colorX) +
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(((colorB == colorC) ? colorB : colorX) << 16);
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#endif
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}
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else
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*dP1 = *dP2 = (colorX << 16) + colorX;
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dP1++;
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dP2++;
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}
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/* right edge */
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colorA = colorX;
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colorX = colorC;
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colorB = *lP;
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colorD = *uP;
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if ((colorA != colorX) && (colorB != colorD))
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{
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#ifdef MSB_FIRST
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*dP1 = (((colorD == colorA) ? colorD : colorX) << 16) + colorX;
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*dP2 = (((colorA == colorB) ? colorA : colorX) << 16) + colorX;
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#else
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*dP1 = ((colorD == colorA) ? colorD : colorX) + (colorX << 16);
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*dP2 = ((colorA == colorB) ? colorA : colorX) + (colorX << 16);
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#endif
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}
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else
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*dP1 = *dP2 = (colorX << 16) + colorX;
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src += src_stride;
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dst += dst_stride << 1;
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}
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/* bottom edge */
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sP = (uint16_t *) src;
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uP = (uint16_t *) (src - src_stride);
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dP1 = (uint32_t *) dst;
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dP2 = (uint32_t *) (dst + dst_stride);
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/* left edge */
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colorX = *sP;
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colorC = *++sP;
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colorD = *uP++;
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if ((colorX != colorC) && (colorX != colorD))
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{
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#ifdef MSB_FIRST
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*dP1 = (colorX << 16) + ((colorC == colorD) ? colorC : colorX);
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*dP2 = (colorX << 16) + colorX;
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#else
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*dP1 = colorX + (((colorC == colorD) ? colorC : colorX) << 16);
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*dP2 = colorX + (colorX << 16);
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#endif
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}
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else
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*dP1 = *dP2 = (colorX << 16) + colorX;
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dP1++;
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dP2++;
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for (w = width - 2; w; w--)
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{
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colorA = colorX;
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colorX = colorC;
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colorC = *++sP;
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colorD = *uP++;
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if ((colorA != colorC) && (colorX != colorD))
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{
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#ifdef MSB_FIRST
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*dP1 = (((colorD == colorA) ? colorD : colorX) << 16) +
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((colorC == colorD) ? colorC : colorX);
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*dP2 = (colorX << 16) + colorX;
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#else
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*dP1 = ((colorD == colorA) ? colorD : colorX) +
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(((colorC == colorD) ? colorC : colorX) << 16);
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*dP2 = colorX + (colorX << 16);
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#endif
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}
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else
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*dP1 = *dP2 = (colorX << 16) + colorX;
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dP1++;
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dP2++;
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}
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/* right edge */
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colorA = colorX;
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colorX = colorC;
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colorD = *uP;
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if ((colorA != colorX) && (colorX != colorD))
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{
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#ifdef MSB_FIRST
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*dP1 = (((colorD == colorA) ? colorD : colorX) << 16) + colorX;
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*dP2 = (colorX << 16) + colorX;
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#else
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*dP1 = ((colorD == colorA) ? colorD : colorX) + (colorX << 16);
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*dP2 = colorX + (colorX << 16);
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#endif
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}
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else
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*dP1 = *dP2 = (colorX << 16) + colorX;
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}
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static void epx_generic_rgb565(unsigned width, unsigned height,
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int first, int last, uint16_t *src,
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unsigned src_stride, uint16_t *dst, unsigned dst_stride)
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{
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EPX_16(width, height,
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first, last,
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src, src_stride,
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dst, dst_stride);
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}
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static void epx_work_cb_rgb565(void *data, void *thread_data)
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{
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struct softfilter_thread_data *thr =
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(struct softfilter_thread_data*)thread_data;
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uint16_t *input = (uint16_t*)thr->in_data;
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uint16_t *output = (uint16_t*)thr->out_data;
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unsigned width = thr->width;
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unsigned height = thr->height;
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epx_generic_rgb565(width, height,
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thr->first, thr->last, input,
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thr->in_pitch / SOFTFILTER_BPP_RGB565,
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output,
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thr->out_pitch / SOFTFILTER_BPP_RGB565);
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}
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static void epx_generic_packets(void *data,
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struct softfilter_work_packet *packets,
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void *output, size_t output_stride,
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const void *input, unsigned width, unsigned height, size_t input_stride)
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{
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struct filter_data *filt = (struct filter_data*)data;
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unsigned i;
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for (i = 0; i < filt->threads; i++)
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{
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struct softfilter_thread_data *thr =
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(struct softfilter_thread_data*)&filt->workers[i];
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unsigned y_start = (height * i) / filt->threads;
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unsigned y_end = (height * (i + 1)) / filt->threads;
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thr->out_data = (uint8_t*)output + y_start * EPX_SCALE * output_stride;
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thr->in_data = (const uint8_t*)input + y_start * input_stride;
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thr->out_pitch = output_stride;
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thr->in_pitch = input_stride;
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thr->width = width;
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thr->height = y_end - y_start;
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/* Workers need to know if they can
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* access pixels outside their given buffer. */
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thr->first = y_start;
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thr->last = y_end == height;
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if (filt->in_fmt == SOFTFILTER_FMT_RGB565)
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packets[i].work = epx_work_cb_rgb565;
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packets[i].thread_data = thr;
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}
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}
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static const struct softfilter_implementation epx_generic = {
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epx_generic_input_fmts,
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epx_generic_output_fmts,
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epx_generic_create,
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epx_generic_destroy,
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epx_generic_threads,
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epx_generic_output,
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epx_generic_packets,
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SOFTFILTER_API_VERSION,
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"EPX",
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"epx",
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};
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const struct softfilter_implementation *softfilter_get_implementation(
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softfilter_simd_mask_t simd)
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{
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(void)simd;
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return &epx_generic;
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}
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#ifdef RARCH_INTERNAL
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#undef softfilter_get_implementation
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#undef softfilter_thread_data
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#undef filter_data
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#endif
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