mirror of
https://github.com/UberGames/GtkRadiant.git
synced 2024-11-22 11:51:22 +00:00
488 lines
16 KiB
C++
488 lines
16 KiB
C++
/*
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GenSurf plugin for GtkRadiant
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Copyright (C) 2001 David Hyde, Loki software and qeradiant.com
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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 Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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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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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with this library; 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 <gtk/gtk.h>
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#include <stdio.h>
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#include <stdlib.h>
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/*
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#include <string.h>
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#include <tchar.h>
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#include <math.h>
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*/
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#include "gensurf.h"
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char gszAppDir[NAME_MAX];
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char gszCaption[64];
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char gszIni[NAME_MAX];
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char gszHelpFile[NAME_MAX];
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char gszMapFile[NAME_MAX];
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char gszVersion[64];
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double Amplitude;
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double Roughness;
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double TexOffset[2];
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double TexScale[2];
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double WaveLength;
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double Hll, Hur, Vll, Vur;
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double Z00, Z01, Z10, Z11;
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ELEMENT Vertex[( MAX_ROWS + 1 ) * ( MAX_ROWS + 1 )];
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int AddHints;
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int ArghRad2;
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int AutoOverwrite;
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int Decimate = 0;
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int SnapToGrid = 0; // 0, or the grid size to snap to. // Hydra : snap to grid
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int FileAppend = 0;
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int FixBorders;
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int HideBackFaces = 0;
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int NH, NV;
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int NumVerticesSelected;
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int Plane;
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int Preview;
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int RandomSeed = 1;
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int Skybox;
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int UseDetail;
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int UseLadder;
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int VertexMode = 0;
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int WaveType;
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int gNumNodes = 0;
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int gNumTris = 0;
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int vid_x, vid_y;
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int view_x, view_y;
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int view_cx, view_cy;
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int UsePatches;
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int SlantAngle;
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int GimpHints;
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int Antialiasing; // ^Fishman - Antializing for the preview window.
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int AddTerrainKey; // ^Fishman - Add terrain key to func_group.
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int SP; // ^Fishman - Snap to grid.
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GtkWidget *g_pWnd; // ghwnd;
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GtkWidget *g_pRadiantWnd; // ghwnd_main;
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/*HWND ghwndAngles;
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*/GtkWidget *g_pWndPreview;
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GtkWidget *g_pPreviewWidget;
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MYBITMAP gbmp;
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NODE *gNode = (NODE *)NULL;
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TRI *gTri = (TRI *)NULL;
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int Game;
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bounding_box PlayerBox[NUMGAMES] = { {{-16., 16.}, {-16., 16.}, {-24., 32.}}, // Quake2
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{{-16., 16.}, {-16., 16.}, {-36., 36.}}, // Half-Life
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{{-16., 16.}, {-16., 16.}, {-32., 32.}}, // SiN
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{{-16., 16.}, {-16., 16.}, {-24., 32.}}, // Heretic2 (guess)
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{{-16., 16.}, {-16., 16.}, {-24., 32.}}, // KingPin (guess)
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{{-30., 30.}, {-30., 30.}, {-10.,160.}}, // Genesis3D (no idea)
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{{-16., 16.}, {-16., 16.}, {-24., 32.}}}; // Quake3 (not sure)
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//char gszOutputDir[NUMGAMES][NAME_MAX];
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//char gszTextureDir[NUMGAMES][NAME_MAX];
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char Texture[NUMGAMES][3][64];
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//char pakfile[NUMGAMES][NAME_MAX];
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//char lastpakfile[NUMGAMES][NAME_MAX];
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//int UsePak[NUMGAMES];
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//char GameDir[NUMGAMES][NAME_MAX];
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char GameName[NUMGAMES][16] = {"Quake2", "Half-Life", "SiN", "Heretic2", "Kingpin", "Genesis3D", "Quake3" };
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bool GenSurfInit(){
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strcpy( gszVersion, "1.05" );
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strcpy( gszCaption, "GtkGenSurf" );
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if ( strlen( gszVersion ) ) {
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strcat( gszCaption, " v" );
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strcat( gszCaption, gszVersion );
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}
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strcpy( gszIni, g_FuncTable.m_pfnProfileGetDirectory() );
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strcat( gszIni, "gensurf.ini" );
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/*if (g_FuncTable.m_pfnReadProjectKey != NULL)
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{
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char *basepath;
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basepath = g_FuncTable.m_pfnReadProjectKey("basepath");
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if (basepath)
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{
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strlwr (basepath);
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if (strstr(basepath,"baseq3"))
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Game = QUAKE3;
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else if (strstr (basepath,"baseq2"))
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Game = QUAKE2;
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else // Gotta have a game, might as well be Quake3
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Game = QUAKE3;
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}
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else
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Game = QUAKE3;
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}
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else */
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Game = QUAKE3;
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if ( g_pWnd == NULL ) {
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g_pWnd = create_main_dialog();
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}
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ReadIniFile( gszIni );
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return true;
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}
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// Reads default values
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#define OPTS_SECTION "Options"
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void ReadIniFile( const char *file ){
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char *Text;
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float x1,x2,x3,x4;
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int i;
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Text = g_FuncTable.m_pfnProfileLoadString( file, OPTS_SECTION, "Amplitude", "" );
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if ( strlen( Text ) ) {
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Amplitude = atof( Text );
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}
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else{
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Amplitude = 128;
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}
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Text = g_FuncTable.m_pfnProfileLoadString( file, OPTS_SECTION, "Roughness", "" );
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if ( strlen( Text ) ) {
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Roughness = atof( Text );
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}
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else{
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Roughness = 16;
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}
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Text = g_FuncTable.m_pfnProfileLoadString( file, OPTS_SECTION, "WaveLength", "" );
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if ( strlen( Text ) ) {
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WaveLength = atof( Text );
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}
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else{
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WaveLength = 1024;
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}
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Text = g_FuncTable.m_pfnProfileLoadString( file, OPTS_SECTION, "Extents", "" );
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if ( strlen( Text ) ) {
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sscanf( Text,"%f,%f,%f,%f",&x1,&x2,&x3,&x4 );
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Hll = x1;
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Vll = x2;
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Hur = x3;
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Vur = x4;
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}
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else
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{
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Hll = -512;
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Vll = -512;
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Hur = 512;
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Vur = 512;
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}
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Text = g_FuncTable.m_pfnProfileLoadString( file, OPTS_SECTION, "CornerValues", "" );
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if ( strlen( Text ) ) {
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sscanf( Text,"%f,%f,%f,%f",&x1,&x2,&x3,&x4 );
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Z00 = x1;
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Z01 = x2;
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Z10 = x3;
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Z11 = x4;
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}
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else
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{
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Z00 = 0.;
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Z01 = 0.;
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Z10 = 0.;
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Z11 = 0.;
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}
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Text = g_FuncTable.m_pfnProfileLoadString( file, OPTS_SECTION, "TextureOffset", "" );
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if ( strlen( Text ) ) {
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sscanf( Text,"%f,%f",&x1,&x2 );
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TexOffset[0] = x1;
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TexOffset[1] = x2;
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}
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else
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{
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TexOffset[0] = 0.;
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TexOffset[1] = 0.;
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}
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Text = g_FuncTable.m_pfnProfileLoadString( file, OPTS_SECTION,"TextureScale","" );
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if ( strlen( Text ) ) {
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sscanf( Text,"%f,%f",&x1,&x2 );
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TexScale[0] = x1;
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TexScale[1] = x2;
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if ( TexScale[0] == 0. ) {
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TexScale[0] = 1.0;
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}
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if ( TexScale[1] == 0. ) {
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TexScale[1] = 1.0;
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}
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}
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else
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{
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TexScale[0] = 1.;
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TexScale[1] = 1.;
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}
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NH = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"NH",8 );
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NH = max( 1,min( NH,MAX_ROWS ) );
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NV = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"NV",8 );
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NV = max( 1,min( NV,MAX_ROWS ) );
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// Decimate = GetPrivateProfileInt(OPTS_SECTION,"Decimate",0,file);
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// Decimate = max(0,min(Decimate,100));
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AddHints = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"AddHints",0 );
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ArghRad2 = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"ArghRad2",0 );
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AutoOverwrite = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"AutoOverwrite",0 );
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FixBorders = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"FixBorders",1 );
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HideBackFaces = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"HideBackFaces",0 );
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Plane = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"Plane",0 );
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Preview = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"Preview", 0 );
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Antialiasing = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"Antialiasing",0 ); // ^Fishman - Antializing for the preview window.
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RandomSeed = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"RandomSeed",1 );
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Skybox = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"Skybox",0 );
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UseDetail = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"UseDetail",0 );
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AddTerrainKey = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"AddTerrainKey",0 ); // ^Fishman - Add terrain key to func_group.
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UseLadder = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"UseLadder",0 );
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WaveType = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"WaveType",0 );
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vid_x = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"vid_x", 0 );
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vid_y = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"vid_y", 0 );
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view_x = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"view_x",0 );
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view_y = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"view_y",0 );
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view_cx = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"view_cx",0 );
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view_cy = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"view_cy",0 );
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UsePatches = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"UsePatches",0 );
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SlantAngle = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"SlantAngle",60 );
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GimpHints = g_FuncTable.m_pfnProfileLoadInt( file, OPTS_SECTION,"GimpHints",0 );
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for ( i = 0; i < NUMGAMES; i++ )
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{
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// strcpy (gszOutputDir[i], g_FuncTable.m_pfnProfileLoadString (file, GameName[i],"OutputDir",""));
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strcpy( Texture[i][0], g_FuncTable.m_pfnProfileLoadString( file, GameName[i], "Texture", "" ) );
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strcpy( Texture[i][1], g_FuncTable.m_pfnProfileLoadString( file, GameName[i], "Texture2", "" ) );
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strcpy( Texture[i][2], g_FuncTable.m_pfnProfileLoadString( file, GameName[i], "Texture3", "" ) );
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// strcpy (gszTextureDir[i], g_FuncTable.m_pfnProfileLoadString (file, GameName[i],"TextureDir",""));
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// UsePak[i] = GetPrivateProfileInt(GameName[i],"UsePak",0);
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// strcpy (pakfile[i], g_FuncTable.m_pfnProfileLoadString (file, GameName[i],"PakFile",""));
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// strcpy (lastpakfile[i], g_FuncTable.m_pfnProfileLoadString (file, GameName[i],"LastPakFile",""));
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// strcpy (GameDir[i], g_FuncTable.m_pfnProfileLoadString (file, GameName[i],"GameDir","\0"));
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}
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/*
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if(!strlen(gszTextureDir[QUAKE2]))
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strcpy(gszTextureDir[QUAKE2],"c:\\quake2\\baseq2\\textures\\");
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if(!strlen(gszTextureDir[KINGPIN]))
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strcpy(gszTextureDir[KINGPIN],"c:\\kingpin\\main\\textures\\");
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*/
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if ( !strlen( Texture[QUAKE2][0] ) ) {
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strcpy( Texture[QUAKE2][0], "textures/e1u1/grass1_4" );
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}
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if ( !strlen( Texture[HALFLIFE][0] ) ) {
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strcpy( Texture[HALFLIFE][0], "textures/OUT_GRND1" );
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}
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if ( !strlen( Texture[SIN][0] ) ) {
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strcpy( Texture[SIN][0], "textures/generic/floor_organic/fl_grass" );
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}
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if ( !strlen( Texture[HERETIC2][0] ) ) {
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strcpy( Texture[HERETIC2][0], "textures/canyon/canyon05" );
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}
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if ( !strlen( Texture[KINGPIN][0] ) ) {
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strcpy( Texture[KINGPIN][0], "textures/bricks/s_sr_m3" );
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}
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if ( !strlen( Texture[GENESIS3D][0] ) ) {
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strcpy( Texture[GENESIS3D][0],"textures/rock13" );
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}
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if ( !strlen( Texture[QUAKE3][0] ) ) {
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strcpy( Texture[QUAKE3][0], "textures/organics/grass3" );
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}
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if ( !strlen( Texture[QUAKE3][1] ) ) {
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strcpy( Texture[QUAKE3][1], "textures/common/caulk" );
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}
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strcpy( gbmp.name, g_FuncTable.m_pfnProfileLoadString( file, "Bitmap","Filename","" ) );
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gbmp.colors = NULL;
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if ( strlen( gbmp.name ) ) {
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OpenBitmap();
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}
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strcpy( gbmp.defpath, g_FuncTable.m_pfnProfileLoadString( file, "Bitmap","DefaultPath","" ) );
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Text = g_FuncTable.m_pfnProfileLoadString( file, "Bitmap","BlackValue","" );
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if ( strlen( Text ) ) {
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gbmp.black_value = atof( Text );
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}
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else{
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gbmp.black_value = 0;
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}
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Text = g_FuncTable.m_pfnProfileLoadString( file, "Bitmap","WhiteValue","" );
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if ( strlen( Text ) ) {
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gbmp.white_value = atof( Text );
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}
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else{
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gbmp.white_value = 256.;
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}
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}
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/*
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============
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va
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does a varargs printf into a temp buffer, so I don't need to have
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varargs versions of all text functions.
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FIXME: make this buffer size safe someday
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============
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*/
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char *va( const char *format, ... ){
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va_list argptr;
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static char string[1024];
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va_start( argptr, format );
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vsprintf( string, format,argptr );
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va_end( argptr );
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return string;
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}
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// Writes current values to INI file
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void WriteIniFile( const char *file ){
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int i;
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g_FuncTable.m_pfnProfileSaveString( file, OPTS_SECTION, "Amplitude", va( "%g",Amplitude ) );
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g_FuncTable.m_pfnProfileSaveString( file, OPTS_SECTION, "Roughness", va( "%g",Roughness ) );
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g_FuncTable.m_pfnProfileSaveString( file, OPTS_SECTION, "WaveLength", va( "%g",WaveLength ) );
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g_FuncTable.m_pfnProfileSaveString( file, OPTS_SECTION, "Extents", va( "%g,%g,%g,%g",Hll,Vll,Hur,Vur ) );
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g_FuncTable.m_pfnProfileSaveString( file, OPTS_SECTION, "CornerValues", va( "%g,%g,%g,%g",Z00,Z01,Z10,Z11 ) );
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g_FuncTable.m_pfnProfileSaveString( file, OPTS_SECTION, "TextureOffset",va( "%g,%g",TexOffset[0],TexOffset[1] ) );
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g_FuncTable.m_pfnProfileSaveString( file, OPTS_SECTION, "TextureScale", va( "%g,%g",TexScale[0],TexScale[1] ) );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "NH", NH );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "NV", NV );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "AddHints", AddHints );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "ArghRad2", ArghRad2 );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "AutoOverwrite", AutoOverwrite );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "FixBorders", FixBorders );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "Plane", Plane );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "Preview", Preview );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "Antialiasing", Antialiasing ); // ^Fishman - Antializing for the preview window.
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "RandomSeed", RandomSeed );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "Skybox", Skybox );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "UseDetail", UseDetail );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "AddTerrainKey", AddTerrainKey ); // ^Fishman - Add terrain key to func_group.
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "UseLadder", UseLadder );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "WaveType", WaveType );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "vid_x", vid_x );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "vid_y", vid_y );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "view_x", view_x );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "view_y", view_y );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "view_cx", view_cx );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "view_cy", view_cy );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "UsePatches", UsePatches );
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g_FuncTable.m_pfnProfileSaveInt( file, OPTS_SECTION, "SlantAngle", SlantAngle );
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for ( i = 0; i < NUMGAMES; i++ )
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{
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g_FuncTable.m_pfnProfileSaveString( file, GameName[i], "Texture", Texture[i][0] );
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g_FuncTable.m_pfnProfileSaveString( file, GameName[i], "Texture2", Texture[i][1] );
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g_FuncTable.m_pfnProfileSaveString( file, GameName[i], "Texture3", Texture[i][2] );
|
|
}
|
|
|
|
g_FuncTable.m_pfnProfileSaveString( file, "Bitmap", "Filename", gbmp.name );
|
|
g_FuncTable.m_pfnProfileSaveString( file, "Bitmap", "DefaultPath", gbmp.defpath );
|
|
g_FuncTable.m_pfnProfileSaveString( file, "Bitmap", "BlackValue", va( "%g",gbmp.black_value ) );
|
|
g_FuncTable.m_pfnProfileSaveString( file, "Bitmap", "WhiteValue", va( "%g",gbmp.white_value ) );
|
|
//g_FuncTable.m_pfnProfileSaveString (file, "Formula", "Formula", ExcelFunc );
|
|
}
|
|
|
|
void UpdatePreview( bool DataChange ){
|
|
if ( g_pWndPreview && GTK_WIDGET_VISIBLE( g_pWndPreview ) ) {
|
|
if ( DataChange ) {
|
|
GenerateXYZ();
|
|
}
|
|
|
|
gtk_widget_draw( g_pPreviewWidget, NULL );
|
|
}
|
|
}
|
|
|
|
void SaveSetup( GtkWidget *parent ){
|
|
const char *name = g_FuncTable.m_pfnFileDialog( parent, false, "Save GenSurf Settings",
|
|
g_FuncTable.m_pfnProfileGetDirectory(), "gtkgensurf", NULL );
|
|
|
|
if ( name != NULL ) {
|
|
char key[32], text[32];
|
|
int i, j;
|
|
|
|
WriteIniFile( name );
|
|
g_FuncTable.m_pfnProfileSaveString( name, OPTS_SECTION,"MapFile",gszMapFile );
|
|
sprintf( text,"0x%04x",FileAppend );
|
|
g_FuncTable.m_pfnProfileSaveString( name, OPTS_SECTION,"Append",text );
|
|
sprintf( text,"0x%04x",Decimate );
|
|
g_FuncTable.m_pfnProfileSaveString( name, OPTS_SECTION,"Decimate",text );
|
|
for ( i = 0; i <= NH; i++ )
|
|
{
|
|
for ( j = 0; j <= NV; j++ )
|
|
{
|
|
if ( xyz[i][j].fixed ) {
|
|
sprintf( key,"I%dJ%d",i,j );
|
|
sprintf( text,"%g %g %g", xyz[i][j].fixed_value, xyz[i][j].range, xyz[i][j].rate );
|
|
g_FuncTable.m_pfnProfileSaveString( name, "FixedPoints",key,text );
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
void OpenSetup( GtkWidget *parent, int UseDefaults ){
|
|
const char *name;
|
|
char key[32], *text;
|
|
float value,range,rate;
|
|
int i, j;
|
|
|
|
if ( UseDefaults ) {
|
|
name = g_strdup( "plugins/defaults.srf" ); // dummy string
|
|
}
|
|
else{
|
|
name = g_FuncTable.m_pfnFileDialog( parent, true, "Open GenSurf Settings",
|
|
g_FuncTable.m_pfnProfileGetDirectory(), "gtkgensurf", NULL );
|
|
}
|
|
|
|
if ( name != NULL ) {
|
|
ReadIniFile( name );
|
|
Decimate = g_FuncTable.m_pfnProfileLoadInt( name, OPTS_SECTION,"Decimate",0 );
|
|
Decimate = max( 0,min( Decimate,100 ) );
|
|
|
|
for ( i = 0; i <= NH; i++ )
|
|
{
|
|
for ( j = 0; j <= NV; j++ )
|
|
{
|
|
sprintf( key,"I%dJ%d",i,j );
|
|
text = g_FuncTable.m_pfnProfileLoadString( name, "FixedPoints", key, "" );
|
|
if ( strlen( text ) ) {
|
|
xyz[i][j].fixed = 1;
|
|
xyz[i][j].rate = 0.;
|
|
sscanf( text,"%g %g %g",&value,&range,&rate );
|
|
xyz[i][j].fixed_value = value;
|
|
xyz[i][j].range = range;
|
|
xyz[i][j].rate = rate;
|
|
}
|
|
else{
|
|
xyz[i][j].fixed = 0;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|