mirror of
https://github.com/game-stop/veejay.git
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275 lines
7.3 KiB
C
275 lines
7.3 KiB
C
/*
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* Linux VeeJay
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*
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* Copyright(C)2002-2015 Niels Elburg <nwelburg@gmail.com>
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License , or (at your option) any later version.
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*
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* This program 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
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* 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
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307 , USA.
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*/
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/*
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shift pixels in row/column to get a 'bathroom' window look. Use the parameters
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to set the distance and mode
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*/
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#include "common.h"
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#include <veejaycore/vjmem.h>
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#include "bathroom.h"
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#include "motionmap.h"
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typedef struct {
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uint8_t *bathroom_frame[4];
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void *motionmap;
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int n__;
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int N__;
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} bathroom_t;
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vj_effect *bathroom_init(int width,int height)
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{
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vj_effect *ve = (vj_effect *) vj_calloc(sizeof(vj_effect));
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ve->num_params = 4;
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ve->defaults = (int *) vj_calloc(sizeof(int) * ve->num_params); /* default values */
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ve->limits[0] = (int *) vj_calloc(sizeof(int) * ve->num_params); /* min */
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ve->limits[1] = (int *) vj_calloc(sizeof(int) * ve->num_params); /* max */
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ve->limits[0][0] = 0;
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ve->limits[1][0] = 3;
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ve->limits[0][1] = 1;
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ve->limits[1][1] = 64;
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ve->limits[0][2] = 0;
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ve->limits[1][2] = width;
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ve->limits[0][3] = 0;
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ve->limits[1][3] = width;
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ve->defaults[0] = 1;
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ve->defaults[1] = 32;
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ve->defaults[2] = 0;
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ve->defaults[3] = width;
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ve->description = "Bathroom Window";
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ve->sub_format = 1;
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ve->extra_frame = 0;
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ve->has_user = 0;
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ve->motion = 1;
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ve->alpha = FLAG_ALPHA_SRC_A| FLAG_ALPHA_OUT | FLAG_ALPHA_OPTIONAL;
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ve->param_description = vje_build_param_list( ve->num_params, "Mode", "Distance","X start position", "X end position" );
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ve->hints = vje_init_value_hint_list( ve->num_params );
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vje_build_value_hint_list( ve->hints, ve->limits[1][0], 0, "Horizontal", "Vertical", "Horizontal (Alpha)", "Vertical (Alpha)" );
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return ve;
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}
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void *bathroom_malloc(int width, int height)
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{
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bathroom_t *b = (bathroom_t*) vj_calloc(sizeof(bathroom_t));
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if(!b) {
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return NULL;
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}
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b->bathroom_frame[0] = (uint8_t*)vj_malloc(sizeof(uint8_t) * RUP8(width*height * 4));
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if(!b->bathroom_frame[0]) {
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free(b);
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return NULL;
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}
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b->bathroom_frame[1] = b->bathroom_frame[0] + RUP8(width*height);
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b->bathroom_frame[2] = b->bathroom_frame[1] + RUP8(width*height);
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b->bathroom_frame[3] = b->bathroom_frame[2] + RUP8(width*height);
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return (void*) b;
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}
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void bathroom_free(void *ptr) {
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bathroom_t *b = (bathroom_t*) ptr;
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free(b->bathroom_frame[0]);
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free(b);
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}
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static void bathroom_verti_apply(bathroom_t *b, VJFrame *frame, int val, int x0, int x1 )
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{
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const unsigned int width = frame->width;
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const unsigned int height = frame->height;
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const int len = frame->len;
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unsigned int y_val = val;
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unsigned int x,y;
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uint8_t *Y = frame->data[0];
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uint8_t *Cb = frame->data[1];
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uint8_t *Cr = frame->data[2];
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int strides[4] = { len, len, len, 0 };
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int i;
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uint8_t **bathroom_frame = b->bathroom_frame;
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vj_frame_copy( frame->data, bathroom_frame, strides );
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if( y_val <= 0 )
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y_val = 1;
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for(y=0; y < height;y++) {
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for(x=x0; x < x1; x++) {
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i = (x + (x % y_val) - (y_val>>1)) + (y*width);
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if( i < 0 ) i = 0; else if ( i > len ) i = len;
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Y[y*width+x] = bathroom_frame[0][i];
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Cb[y*width+x] = bathroom_frame[1][i];
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Cr[y*width+x] = bathroom_frame[2][i];
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}
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}
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}
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static void bathroom_alpha_verti_apply(bathroom_t *b, VJFrame *frame, int val, int x0, int x1)
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{
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const unsigned int width = frame->width;
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const unsigned int height = frame->height;
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const int len = frame->len;
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unsigned int y_val = val;
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unsigned int x,y;
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uint8_t *Y = frame->data[0];
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uint8_t *Cb = frame->data[1];
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uint8_t *Cr = frame->data[2];
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uint8_t *A = frame->data[3];
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int strides[4] = { len, len, len, len };
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int i;
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uint8_t **bathroom_frame = b->bathroom_frame;
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vj_frame_copy( frame->data, bathroom_frame, strides );
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if( y_val <= 0 )
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y_val = 1;
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for(y=0; y < height;y++) {
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for(x=x0; x < x1; x++) {
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i = (x + (x % y_val) - (y_val>>1)) + (y*width);
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if( i < 0 ) i = 0; else if ( i > len ) i = len;
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Y[y*width+x] = bathroom_frame[0][i];
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Cb[y*width+x] = bathroom_frame[1][i];
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Cr[y*width+x] = bathroom_frame[2][i];
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A[y*width+x] = bathroom_frame[3][i];
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}
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}
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}
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static void bathroom_hori_apply(bathroom_t *b, VJFrame *frame, int val, int x0, int x1)
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{
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const unsigned int width = frame->width;
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const unsigned int height = frame->height;
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const int len = frame->len;
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unsigned int y_val = val;
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uint8_t *Y = frame->data[0];
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uint8_t *Cb = frame->data[1];
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uint8_t *Cr = frame->data[2];
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unsigned int x,y;
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int i;
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int strides[4] = { len, len, len, 0 };
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uint8_t **bathroom_frame = b->bathroom_frame;
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vj_frame_copy( frame->data, bathroom_frame, strides );
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for(y=0; y < height;y++) {
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for(x=x0; x < x1; x++) {
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i = ((y*width) + (y % y_val) - (y_val>>1)) + x;
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if( i < 0 ) i = 0; else if ( i > len ) i = len;
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Y[(y*width)+x] = bathroom_frame[0][i];
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Cb[(y*width)+x] = bathroom_frame[1][i];
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Cr[(y*width)+x] = bathroom_frame[2][i];
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}
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}
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}
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static void bathroom_alpha_hori_apply(bathroom_t *b, VJFrame *frame, int val, int x0, int x1)
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{
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const unsigned int width = frame->width;
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const unsigned int height = frame->height;
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const int len = frame->len;
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unsigned int y_val = val;
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uint8_t *Y = frame->data[0];
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uint8_t *Cb = frame->data[1];
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uint8_t *Cr = frame->data[2];
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uint8_t *A = frame->data[3];
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unsigned int x,y;
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int strides[4] = { len, len, len, len };
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int i;
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uint8_t **bathroom_frame = b->bathroom_frame;
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vj_frame_copy( frame->data, bathroom_frame, strides );
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for(y=0; y < height;y++) {
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for(x=x0; x < x1; x++) {
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i = ((y*width) + (y % y_val) - (y_val>>1)) + x;
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if( i < 0 ) i = 0; else if ( i > len ) i = len;
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Y[(y*width)+x] = bathroom_frame[0][i];
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Cb[(y*width)+x] = bathroom_frame[1][i];
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Cr[(y*width)+x] = bathroom_frame[2][i];
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A[(y*width)+x] = bathroom_frame[3][i];
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}
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}
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}
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void bathroom_apply(void *ptr, VJFrame *frame, int *args) {
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int mode = args[0];
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int val = args[1];
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int x0 = args[2];
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int x1 = args[3];
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int interpolate = 1;
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int tmp1 = val;
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int tmp2 = 0;
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int motion = 0;
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bathroom_t *b = (bathroom_t*) ptr;
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if(motionmap_active(b->motionmap))
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{
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motionmap_scale_to(b->motionmap, 64, 64, 1, 1, &tmp1, &tmp2, &(b->n__), &(b->N__) );
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motion = 1;
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}
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else
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{
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b->N__ = 0;
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b->n__ = 0;
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}
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if( b->n__ == b->N__ || b->n__ == 0 )
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interpolate = 0;
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switch(mode)
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{
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case 1: bathroom_hori_apply(b,frame,tmp1,x0,x1); break;
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case 0: bathroom_verti_apply(b,frame,tmp1,x0,x1); break;
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case 2: bathroom_alpha_hori_apply(b,frame,tmp1,x0,x1); break;
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case 3: bathroom_alpha_verti_apply(b,frame,tmp1,x0,x1); break;
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}
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if( interpolate )
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{
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motionmap_interpolate_frame( b->motionmap,frame, b->N__,b->n__ );
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}
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if(motion)
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{
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motionmap_store_frame( b->motionmap,frame );
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}
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}
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