mirror of
https://git.code.sf.net/p/quake/quakeforge
synced 2024-11-23 12:52:46 +00:00
303 lines
5.9 KiB
C
303 lines
5.9 KiB
C
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/* Texture Paint - a GIMP plugin
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*
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* Copyright (C) 1998 Uwe Maurer <uwe_maurer@t-online.de>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (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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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <math.h>
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#include "texturepaint.h"
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#include "model.h"
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#include "q1pal.h"
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#define MDL_VERSION 6
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/*
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MDL (Quake I) Model
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*/
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typedef struct
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{
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gint32 ident;
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gint32 version;
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vec3_t scale;
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vec3_t origin;
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gfloat radius;
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vec3_t offsets;
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gint32 num_skins;
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gint32 skin_width;
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gint32 skin_height;
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gint32 num_verts;
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gint32 num_tris;
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gint32 num_frames;
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gint32 sync_type;
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gint32 flags;
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gfloat size;
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} Model1Header;
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typedef struct
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{
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gint32 onseam;
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gint32 s;
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gint32 t;
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} stvert_t;
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typedef struct
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{
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gint32 facesfront;
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gint32 v[3];
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} mdl_triangle_t;
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typedef struct
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{
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unsigned char p[3];
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unsigned char normal;
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} vertex_t;
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typedef struct
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{
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vertex_t min,max;
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char name[16];
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} frame_t;
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static void destroy(Model *mdl)
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{
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g_free(mdl->tri);
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g_free(mdl->vertex);
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g_free(mdl->frames);
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g_free(mdl);
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}
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static void draw(Model *mdl,int frame,int nextframe,float interp)
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{
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int i,j,v;
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vec3_t *vertex;
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gfloat x,y,z;
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frame= (frame % mdl->numframes)*mdl->num_verts;
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nextframe= (nextframe % mdl->numframes)*mdl->num_verts;
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vertex=mdl->vertex;
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glBegin(GL_TRIANGLES);
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for (i=0;i<mdl->num_tris;i++)
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{
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for (j=0;j<3;j++)
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{
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v=mdl->tri[i].v[j];
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x= vertex[frame+v].x +
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(vertex[nextframe+v].x-vertex[frame+v].x)*interp;
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y= vertex[frame+v].y +
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(vertex[nextframe+v].y-vertex[frame+v].y)*interp;
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z= vertex[frame+v].z +
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(vertex[nextframe+v].z-vertex[frame+v].z)*interp;
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glTexCoord2fv(mdl->tri[i].tex[j]);
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glVertex3f(x,y,z);
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}
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}
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glEnd();
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}
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Model *Model1Load(char *name,FILE *fp)
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{
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Model1Header header;
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Model *mdl;
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int i,k,f;
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gint32 dummy;
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guchar *texture;
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gint size;
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gint32 image_id,layer_id;
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GimpPixelRgn rgn;
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GimpDrawable *drawable;
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gint w,h;
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stvert_t *stvert;
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mdl_triangle_t *triangle;
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vertex_t *vertex;
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frame_t frame;
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gfloat x,y,z;
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gint v;
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gfloat xmin,xmax,ymax,ymin,zmax,zmin,scale;
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char filename[300];
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fread(&header,sizeof(header),1,fp);
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if (strncmp((char *)&header.ident,"IDPO",4)!=0) return NULL;
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if (header.version!=MDL_VERSION) return NULL;
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mdl=g_malloc(sizeof(*mdl));
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memset(mdl,0,sizeof(*mdl));
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mdl->num_tris=header.num_tris;
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mdl->num_verts=header.num_verts;
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w=header.skin_width;
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h=header.skin_height;
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size=w*h;
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texture=g_malloc(size);
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image_id=-1;
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for (i=0;i<header.num_skins;i++)
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{
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fread(&dummy,sizeof(dummy),1,fp);
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fread(texture,size,1,fp);
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image_id=gimp_image_new(w,h,GIMP_INDEXED);
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if (i==0)
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{
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strcpy(filename,name);
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}
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else
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{
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sprintf(filename,"%s%i",name,i);
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}
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gimp_image_set_filename(image_id,filename);
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layer_id=gimp_layer_new(image_id,"skin",w,h,GIMP_INDEXED_IMAGE,100,GIMP_NORMAL_MODE);
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gimp_image_add_layer(image_id,layer_id,1);
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gimp_image_set_cmap(image_id,q1pal,256);
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drawable=gimp_drawable_get(layer_id);
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gimp_pixel_rgn_init(&rgn,drawable,0,0,w,h,TRUE,FALSE);
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gimp_pixel_rgn_set_rect(&rgn,texture,0,0,w,h);
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gimp_drawable_detach(drawable);
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gimp_display_new(image_id);
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gimp_image_clean_all(image_id);
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}
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gimp_displays_flush();
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g_free(texture);
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update_images_menu(image_id);
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size=header.num_verts*sizeof(stvert_t);
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stvert=g_malloc(size);
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fread(stvert,size,1,fp);
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size=header.num_tris*sizeof(mdl_triangle_t);
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triangle=g_malloc(size);
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fread(triangle,size,1,fp);
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mdl->tri=g_malloc(header.num_tris*sizeof(triangle_t));
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mdl->vertex=g_malloc(header.num_frames*header.num_verts*sizeof(mdl->vertex[0]));
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size=header.num_verts*sizeof(vertex_t);
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vertex=g_malloc(size);
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mdl->frames=g_malloc(header.num_frames*sizeof(mdl->frames[0]));
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mdl->numframes=header.num_frames;
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xmax=-G_MAXFLOAT;
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ymax=-G_MAXFLOAT;
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zmax=-G_MAXFLOAT;
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xmin=+G_MAXFLOAT;
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ymin=+G_MAXFLOAT;
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zmin=+G_MAXFLOAT;
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for (f=k=0;f<header.num_frames;f++)
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{
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fread(&dummy,sizeof(dummy),1,fp);
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fread(&frame,sizeof(frame),1,fp);
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strncpy(mdl->frames[f].name,frame.name,16);
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fread(vertex,size,1,fp);
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for (i=0;i<header.num_verts;i++,k++)
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{
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x=(gfloat)vertex[i].p[0] * header.scale.x
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+ header.origin.x;
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y=(gfloat)vertex[i].p[1] * header.scale.y
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+ header.origin.y;
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z=(gfloat)vertex[i].p[2] * header.scale.z
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+ header.origin.z;
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mdl->vertex[k].x=x;
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mdl->vertex[k].y=y;
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mdl->vertex[k].z=z;
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if (x>xmax) xmax=x;
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if (x<xmin) xmin=x;
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if (y>ymax) ymax=y;
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if (y<ymin) ymin=y;
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if (z>zmax) zmax=z;
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if (z<zmin) zmin=z;
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}
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}
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x=(xmax-xmin)/2;
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y=(ymax-ymin)/2;
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z=(zmax-zmin)/2;
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scale=x;
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if (y>scale) scale=y;
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if (z>scale) scale=z;
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if (scale) scale=1/scale; else scale=1;
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x=(xmax+xmin)/2;
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y=(ymax+ymin)/2;
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z=(zmax+zmin)/2;
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for (i=0;i<header.num_verts*header.num_frames;i++)
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{
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mdl->vertex[i].x=(mdl->vertex[i].x-x)*scale;
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mdl->vertex[i].y=(mdl->vertex[i].y-y)*scale;
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mdl->vertex[i].z=(mdl->vertex[i].z-z)*scale;
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}
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for (i=0;i<header.num_tris;i++)
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{
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for (k=0;k<3;k++)
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{
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v=triangle[i].v[k];
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x=(gfloat)stvert[v].s/header.skin_width;
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y=(gfloat)stvert[v].t/header.skin_height;
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if (!triangle[i].facesfront && stvert[v].onseam)
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{
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x+=0.5;
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}
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mdl->tri[i].v[k]=v;
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mdl->tri[i].tex[k][0]=x;
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mdl->tri[i].tex[k][1]=y;
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}
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}
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g_free(vertex);
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g_free(stvert);
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g_free(triangle);
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mdl->destroy=destroy;
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mdl->draw=draw;
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return mdl;
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}
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