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371 lines
10 KiB
C
371 lines
10 KiB
C
/* Goom Project
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* Copyright (C) <2003> iOS-Software
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Library General Public
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* License as published by the Free Software Foundation; either
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* version 2 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Library General Public License for more details.
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*
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* You should have received a copy of the GNU Library General Public
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* License along with this library; if not, write to the
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* Free Software Foundation, Inc., 59 Temple Place - Suite 330,
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* Boston, MA 02111-1307, USA.
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*/
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#include "goom_fx.h"
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#include "goom_plugin_info.h"
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#include "goom_config.h"
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#include <math.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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//#define CONV_MOTIF_W 32
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//#define CONV_MOTIF_WMASK 0x1f
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/* Define if you like the wacky GOOM logo: */
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#undef DRAW_MOTIF
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#define CONV_MOTIF_W 128
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#define CONV_MOTIF_WMASK 0x7f
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typedef char Motif[CONV_MOTIF_W][CONV_MOTIF_W];
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#include "motif_goom1.h"
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#include "motif_goom2.h"
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#define NB_THETA 512
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typedef struct _CONV_DATA
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{
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PluginParam light;
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PluginParam factor_adj_p;
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PluginParam factor_p;
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PluginParameters params;
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/* rotozoom */
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int theta;
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float ftheta;
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int h_sin[NB_THETA];
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int h_cos[NB_THETA];
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int h_height;
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float visibility;
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Motif conv_motif;
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int inverse_motif;
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} ConvData;
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/* init rotozoom tables */
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static void
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compute_tables (VisualFX * _this, PluginInfo * info)
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{
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ConvData *data = (ConvData *) _this->fx_data;
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double screen_coef;
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int i;
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double h;
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double radian;
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if (data->h_height == info->screen.height)
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return;
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screen_coef = 2.0 * 300.0 / (double) info->screen.height;
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data->h_height = info->screen.height;
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for (i = 0; i < NB_THETA; i++) {
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radian = 2 * i * M_PI / NB_THETA;
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h = (0.2 + cos (radian) / 15.0 * sin (radian * 2.0 + 12.123)) * screen_coef;
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data->h_cos[i] = 0x10000 * (-h * cos (radian) * cos (radian));
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data->h_sin[i] = 0x10000 * (h * sin (radian + 1.57) * sin (radian));
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}
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}
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static void
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set_motif (ConvData * data, Motif motif)
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{
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int i, j;
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for (i = 0; i < CONV_MOTIF_W; ++i)
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for (j = 0; j < CONV_MOTIF_W; ++j)
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data->conv_motif[i][j] =
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motif[CONV_MOTIF_W - i - 1][CONV_MOTIF_W - j - 1];
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}
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static void
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convolve_init (VisualFX * _this, PluginInfo * info)
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{
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ConvData *data;
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data = (ConvData *) malloc (sizeof (ConvData));
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_this->fx_data = (void *) data;
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data->light = secure_f_param ("Screen Brightness");
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data->light.param.fval.max = 300.0f;
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data->light.param.fval.step = 1.0f;
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data->light.param.fval.value = 100.0f;
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data->factor_adj_p = secure_f_param ("Flash Intensity");
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data->factor_adj_p.param.fval.max = 200.0f;
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data->factor_adj_p.param.fval.step = 1.0f;
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data->factor_adj_p.param.fval.value = 70.0f;
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data->factor_p = secure_f_feedback ("Factor");
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data->params = plugin_parameters ("Bright Flash", 5);
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data->params.params[0] = &data->light;
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data->params.params[1] = &data->factor_adj_p;
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data->params.params[2] = 0;
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data->params.params[3] = &data->factor_p;
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data->params.params[4] = 0;
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data->h_height = 0;
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/* init rotozoom tables */
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compute_tables (_this, info);
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data->theta = 0;
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data->ftheta = 0.0;
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data->visibility = 1.0;
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set_motif (data, CONV_MOTIF2);
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data->inverse_motif = 0;
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_this->params = &data->params;
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}
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static void
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convolve_free (VisualFX * _this)
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{
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ConvData *data = (ConvData *) _this->fx_data;
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goom_plugin_parameters_free (&data->params);
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free (_this->fx_data);
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}
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#ifdef DRAW_MOTIF
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static void
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create_output_with_brightness (VisualFX * _this, Pixel * src, Pixel * dest,
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PluginInfo * info, int iff)
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{
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ConvData *data = (ConvData *) _this->fx_data;
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int x, y;
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int i = 0; //info->screen.height * info->screen.width - 1;
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const int c = data->h_cos[data->theta];
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const int s = data->h_sin[data->theta];
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const int xi = -(info->screen.width / 2) * c;
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const int yi = (info->screen.width / 2) * s;
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const int xj = -(info->screen.height / 2) * s;
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const int yj = -(info->screen.height / 2) * c;
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int xprime = xj;
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int yprime = yj;
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int ifftab[16];
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if (data->inverse_motif) {
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int i;
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for (i = 0; i < 16; ++i)
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ifftab[i] = (double) iff *(1.0 + data->visibility * (15.0 - i) / 15.0);
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} else {
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int i;
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for (i = 0; i < 16; ++i)
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ifftab[i] = (double) iff / (1.0 + data->visibility * (15.0 - i) / 15.0);
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}
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for (y = info->screen.height; y--;) {
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int xtex, ytex;
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xtex = xprime + xi + CONV_MOTIF_W * 0x10000 / 2;
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xprime += s;
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ytex = yprime + yi + CONV_MOTIF_W * 0x10000 / 2;
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yprime += c;
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#ifdef HAVE_MMX
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__asm__ __volatile__ ("\n\t pxor %%mm7, %%mm7" /* mm7 = 0 */
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"\n\t movd %[xtex], %%mm2" "\n\t movd %[ytex], %%mm3" "\n\t punpckldq %%mm3, %%mm2" /* mm2 = [ ytex | xtex ] */
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"\n\t movd %[c], %%mm4" "\n\t movd %[s], %%mm6" "\n\t pxor %%mm5, %%mm5" "\n\t psubd %%mm6, %%mm5" "\n\t punpckldq %%mm5, %%mm4" /* mm4 = [ -s | c ] */
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"\n\t movd %[motif], %%mm6" /* mm6 = motif */
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::[xtex] "g" (xtex),[ytex] "g" (ytex)
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,[c] "g" (c),[s] "g" (s)
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,[motif] "g" (&data->conv_motif[0][0]));
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for (x = info->screen.width; x--;) {
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__asm__ __volatile__ ("\n\t movd %[src], %%mm0" /* mm0 = src */
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"\n\t paddd %%mm4, %%mm2" /* [ ytex | xtex ] += [ -s | s ] */
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"\n\t movd %%esi, %%mm5" /* save esi into mm5 */
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"\n\t movq %%mm2, %%mm3" "\n\t psrld $16, %%mm3" /* mm3 = [ (ytex>>16) | (xtex>>16) ] */
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"\n\t movd %%mm3, %%eax" /* eax = xtex' */
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"\n\t psrlq $25, %%mm3" "\n\t movd %%mm3, %%ecx" /* ecx = ytex' << 7 */
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"\n\t andl $127, %%eax" "\n\t andl $16256, %%ecx" "\n\t addl %%ecx, %%eax" "\n\t movd %%mm6, %%esi" /* esi = motif */
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"\n\t xorl %%ecx, %%ecx" "\n\t movb (%%eax,%%esi), %%cl" "\n\t movl %[ifftab], %%eax" "\n\t movd %%mm5, %%esi" /* restore esi from mm5 */
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"\n\t movd (%%eax,%%ecx,4), %%mm1" /* mm1 = [0|0|0|iff2] */
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"\n\t punpcklwd %%mm1, %%mm1"
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"\n\t punpcklbw %%mm7, %%mm0"
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"\n\t punpckldq %%mm1, %%mm1"
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"\n\t psrlw $1, %%mm0"
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"\n\t psrlw $2, %%mm1"
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"\n\t pmullw %%mm1, %%mm0"
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"\n\t psrlw $5, %%mm0"
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"\n\t packuswb %%mm7, %%mm0"
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"\n\t movd %%mm0, %[dest]":[dest] "=g" (dest[i].val)
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:[src] "g" (src[i].val)
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,[ifftab] "g" (&ifftab[0])
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:"eax", "ecx");
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i++;
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}
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#else
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for (x = info->screen.width; x--;) {
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int iff2;
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unsigned int f0, f1, f2, f3;
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xtex += c;
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ytex -= s;
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iff2 =
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ifftab[(int) data->
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conv_motif[(ytex >> 16) & CONV_MOTIF_WMASK][(xtex >> 16) &
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CONV_MOTIF_WMASK]];
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#define sat(a) ((a)>0xFF?0xFF:(a))
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f0 = src[i].val;
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f1 = ((f0 >> R_OFFSET) & 0xFF) * iff2 >> 8;
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f2 = ((f0 >> G_OFFSET) & 0xFF) * iff2 >> 8;
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f3 = ((f0 >> B_OFFSET) & 0xFF) * iff2 >> 8;
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dest[i].val =
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(sat (f1) << R_OFFSET) | (sat (f2) << G_OFFSET) | (sat (f3) <<
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B_OFFSET);
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/*
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f0 = (src[i].cop[0] * iff2) >> 8;
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f1 = (src[i].cop[1] * iff2) >> 8;
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f2 = (src[i].cop[2] * iff2) >> 8;
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f3 = (src[i].cop[3] * iff2) >> 8;
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dest[i].cop[0] = (f0 & 0xffffff00) ? 0xff : (unsigned char)f0;
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dest[i].cop[1] = (f1 & 0xffffff00) ? 0xff : (unsigned char)f1;
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dest[i].cop[2] = (f2 & 0xffffff00) ? 0xff : (unsigned char)f2;
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dest[i].cop[3] = (f3 & 0xffffff00) ? 0xff : (unsigned char)f3;
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*/
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i++;
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}
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#endif
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}
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#ifdef HAVE_MMX
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__asm__ __volatile__ ("\n\t emms");
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#endif
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compute_tables (_this, info);
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}
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#endif
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/*#include <stdint.h>
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static uint64_t GetTick()
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{
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uint64_t x;
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asm volatile ("RDTSC" : "=A" (x));
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return x;
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}*/
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static void
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convolve_apply (VisualFX * _this, Pixel * src, Pixel * dest, PluginInfo * info)
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{
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ConvData *data = (ConvData *) _this->fx_data;
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#ifdef DRAW_MOTIF
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float ff;
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int iff;
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ff = (FVAL (data->factor_p) * FVAL (data->factor_adj_p) +
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FVAL (data->light)) / 100.0f;
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iff = (unsigned int) (ff * 256);
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#endif
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{
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double fcycle = (double) info->cycle;
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double rotate_param, rotate_coef;
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float INCREASE_RATE = 1.5;
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float DECAY_RATE = 0.955;
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if (FVAL (info->sound.last_goom_p) > 0.8)
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FVAL (data->factor_p) += FVAL (info->sound.goom_power_p) * INCREASE_RATE;
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FVAL (data->factor_p) *= DECAY_RATE;
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rotate_param = FVAL (info->sound.last_goom_p);
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if (rotate_param < 0.0)
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rotate_param = 0.0;
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rotate_param += FVAL (info->sound.goom_power_p);
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rotate_coef = 4.0 + FVAL (info->sound.goom_power_p) * 6.0;
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data->ftheta = (data->ftheta + rotate_coef * sin (rotate_param * 6.3));
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data->theta = ((unsigned int) data->ftheta) % NB_THETA;
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data->visibility =
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(cos (fcycle * 0.001 + 1.5) * sin (fcycle * 0.008) +
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cos (fcycle * 0.011 + 5.0) - 0.8 + info->sound.speedvar) * 1.5;
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if (data->visibility < 0.0)
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data->visibility = 0.0;
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data->factor_p.change_listener (&data->factor_p);
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}
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if (data->visibility < 0.01) {
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switch (goom_irand (info->gRandom, 300)) {
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case 1:
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set_motif (data, CONV_MOTIF1);
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data->inverse_motif = 1;
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break;
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case 2:
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set_motif (data, CONV_MOTIF2);
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data->inverse_motif = 0;
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break;
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}
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}
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#ifdef DRAW_MOTIF
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if ((ff > 0.98f) && (ff < 1.02f))
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memcpy (dest, src, info->screen.size * sizeof (Pixel));
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else
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create_output_with_brightness (_this, src, dest, info, iff);
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#else
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memcpy (dest, src, info->screen.size * sizeof (Pixel));
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#endif
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/*
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// Benching suite...
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{
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uint64_t before, after;
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double timed;
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static double stimed = 10000.0;
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before = GetTick();
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data->visibility = 1.0;
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create_output_with_brightness(_this,src,dest,info,iff);
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after = GetTick();
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timed = (double)((after-before) / info->screen.size);
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if (timed < stimed) {
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stimed = timed;
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printf ("CLK = %3.0f CPP\n", stimed);
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}
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}
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*/
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}
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VisualFX
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convolve_create (void)
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{
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VisualFX vfx = {
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convolve_init,
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convolve_free,
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convolve_apply,
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NULL
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};
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return vfx;
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}
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