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root/radiance/ray/src/cv/mgflib/parser.h
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Comparing ray/src/cv/mgflib/parser.h (file contents):
Revision 1.30 by greg, Tue Mar 18 11:05:40 1997 UTC vs.
Revision 1.35 by schorsch, Thu Jun 26 00:58:09 2003 UTC

# Line 1 | Line 1
1 < /* Copyright (c) 1995 Regents of the University of California */
2 <
3 < /* SCCSid "$SunId$ LBL" */
4 <
1 > /* RCSid: $Id$ */
2   /*
3   * Header file for MGF interpreter
4   */
5 + #ifndef _MGF_PARSER_H_
6 + #define _MGF_PARSER_H_
7 + #ifdef __cplusplus
8 + extern "C" {
9 + #endif
10  
11 +
12   #ifndef MG_VMAJOR
13  
14 < /* must include stdio.h before us */
14 > /* must include stdio.h and stdlib.h before us */
15  
16   #define MG_VMAJOR       2               /* major version number */
17   #define MG_VMINOR       0               /* minor version number */
# Line 60 | Line 63
63   extern char     mg_ename[MG_NENTITIES][MG_MAXELEN];
64  
65                          /* Handler routines for each entity and unknown ones */
63 #ifdef NOPROTO
64 extern int      (*mg_ehand[MG_NENTITIES])();
65 extern int      (*mg_uhand)();
66 extern int      mg_defuhand();
67 #else
66   extern int      (*mg_ehand[MG_NENTITIES])(int argc, char **argv);
67   extern int      (*mg_uhand)(int argc, char **argv);
68   extern int      mg_defuhand(int, char **);
71 #endif
69  
70   extern unsigned mg_nunknown;            /* count of unknown entities */
71  
# Line 130 | Line 127 | typedef struct {
127  
128   extern MG_FCTXT *mg_file;               /* current file context */
129  
133 #ifdef NOPROTO
134 extern void     mg_init();              /* fill in mg_ehand array */
135 extern int      mg_load();              /* parse a file */
136 extern int      mg_open();              /* open new input file */
137 extern int      mg_read();              /* read next line */
138 extern int      mg_parse();             /* parse current line */
139 extern void     mg_fgetpos();           /* get position on input file */
140 extern int      mg_fgoto();             /* go to position on input file */
141 extern void     mg_close();             /* close input file */
142 extern void     mg_clear();             /* clear parser */
143 extern int      mg_handle();            /* handle an entity */
144 #else
130   extern void     mg_init(void);          /* fill in mg_ehand array */
131   extern int      mg_load(char *);        /* parse a file */
132   extern int      mg_open(MG_FCTXT *, char *);    /* open new input file */
# Line 152 | Line 137 | extern int     mg_fgoto(MG_FPOS *);    /* go to position on i
137   extern void     mg_close(void);         /* close input file */
138   extern void     mg_clear(void);         /* clear parser */
139   extern int      mg_handle(int, int, char **);   /* handle an entity */
155 #endif
140  
141   #ifndef MG_NQCD
142   #define MG_NQCD         5               /* default number of divisions */
# Line 164 | Line 148 | extern int     mg_nqcdivs;             /* divisions per quarter circl
148   * The following library routines are included for your convenience:
149   */
150  
167 #ifdef NOPROTO
168 extern int mg_entity();                 /* get entity number from its name */
169 extern int isint();                     /* non-zero if integer format */
170 extern int isintd();                    /* same with delimiter set */
171 extern int isflt();                     /* non-zero if floating point format */
172 extern int isfltd();                    /* same with delimiter set */
173 extern int isname();                    /* non-zero if legal identifier name */
174 extern int badarg();                    /* check argument format */
175 extern int e_include();                 /* expand include entity */
176 extern int e_sph();                     /* expand sphere as other entities */
177 extern int e_torus();                   /* expand torus as other entities */
178 extern int e_cyl();                     /* expand cylinder as other entities */
179 extern int e_ring();                    /* expand ring as other entities */
180 extern int e_cone();                    /* expand cone as other entities */
181 extern int e_prism();                   /* expand prism as other entities */
182 extern int e_faceh();                   /* expand face w/ holes as face */
183 #else
151   extern int mg_entity(char *);           /* get entity number from its name */
152   extern int isint(char *);               /* non-zero if integer format */
153   extern int isintd(char *, char *);      /* same with delimiter set */
# Line 189 | Line 156 | extern int isfltd(char *, char *);     /* same with delimi
156   extern int isname(char *);              /* non-zero if legal identifier name */
157   extern int badarg(int, char **, char *);/* check argument format */
158   extern int e_include(int, char **);     /* expand include entity */
159 + extern int e_pipe(int, char **);        /* expand piped command */
160   extern int e_sph(int, char **);         /* expand sphere as other entities */
161   extern int e_torus(int, char **);       /* expand torus as other entities */
162   extern int e_cyl(int, char **);         /* expand cylinder as other entities */
# Line 196 | Line 164 | extern int e_ring(int, char **);       /* expand ring as oth
164   extern int e_cone(int, char **);        /* expand cone as other entities */
165   extern int e_prism(int, char **);       /* expand prism as other entities */
166   extern int e_faceh(int, char **);       /* expand face w/ holes as face */
199 #endif
167  
168   /************************************************************************
169   *      Definitions for 3-d vector manipulation functions
170   */
171  
172   #ifdef  SMLFLT
173 < #define  FLOAT          float
173 > #define  RREAL          float
174   #define  FTINY          (1e-3)
175   #else
176 < #define  FLOAT          double
176 > #define  RREAL          double
177   #define  FTINY          (1e-6)
178   #endif
179   #define  FHUGE          (1e10)
180  
181 < typedef FLOAT  FVECT[3];
181 > typedef RREAL  FVECT[3];
182  
183   #define  VCOPY(v1,v2)   ((v1)[0]=(v2)[0],(v1)[1]=(v2)[1],(v1)[2]=(v2)[2])
184   #define  DOT(v1,v2)     ((v1)[0]*(v2)[0]+(v1)[1]*(v2)[1]+(v1)[2]*(v2)[2])
# Line 223 | Line 190 | typedef FLOAT  FVECT[3];
190  
191   #define round0(x)       if (x <= FTINY && x >= -FTINY) x = 0
192  
226 #ifdef NOPROTO
227 extern double   normalize();            /* normalize a vector */
228 #else
193   extern double   normalize(FVECT);       /* normalize a vector */
194   extern void     fcross(FVECT,FVECT,FVECT);/* cross product of two vectors */
231 #endif
195  
196   /************************************************************************
197   *      Definitions for context handling routines
# Line 249 | Line 212 | extern void    fcross(FVECT,FVECT,FVECT);/* cross product
212   #define C_CSEFF         020             /* flag if efficacy set */
213  
214   typedef struct {
215 <        int     clock;                  /* incremented each change */
216 <        short   flags;                  /* what's been set */
217 <        short   ssamp[C_CNSS];          /* spectral samples, min wl to max */
218 <        long    ssum;                   /* straight sum of spectral values */
219 <        float   cx, cy;                 /* xy chromaticity value */
220 <        float   eff;                    /* efficacy (lumens/watt) */
215 >        int     clock;          /* incremented each change */
216 >        char    *client_data;   /* pointer to private client-owned data */
217 >        short   flags;          /* what's been set */
218 >        short   ssamp[C_CNSS];  /* spectral samples, min wl to max */
219 >        long    ssum;           /* straight sum of spectral values */
220 >        float   cx, cy;         /* xy chromaticity value */
221 >        float   eff;            /* efficacy (lumens/watt) */
222   } C_COLOR;
223  
224 < #define C_DEFCOLOR      { 1, C_CDXY|C_CSXY|C_CSSPEC|C_CSEFF,\
224 > #define C_DEFCOLOR      { 1, NULL, C_CDXY|C_CSXY|C_CSSPEC|C_CSEFF,\
225                          {C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,\
226                          C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,\
227                          C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,\
# Line 273 | Line 237 | typedef struct {
237  
238   typedef struct {
239          int     clock;          /* incremented each change -- resettable */
240 +        char    *client_data;   /* pointer to private client-owned data */
241          int     sided;          /* 1 if surface is 1-sided, 0 for 2-sided */
242          float   nr, ni;         /* index of refraction, real and imaginary */
243          float   rd;             /* diffuse reflectance */
# Line 291 | Line 256 | typedef struct {
256  
257   typedef struct {
258          int     clock;          /* incremented each change -- resettable */
259 +        char    *client_data;   /* pointer to private client-owned data */
260          FVECT   p, n;           /* point and normal */
261   } C_VERTEX;             /* vertex context */
262  
263 < #define C_DEFMATERIAL   {1,0,1.,0.,0.,C_DEFCOLOR,0.,C_DEFCOLOR,0.,C_DEFCOLOR,\
264 <                                        0.,C_DEFCOLOR,0.,0.,C_DEFCOLOR,0.}
265 < #define C_DEFVERTEX     {1,{0.,0.,0.},{0.,0.,0.}}
263 > #define C_DEFMATERIAL   {1,NULL,0,1.,0.,0.,C_DEFCOLOR,0.,C_DEFCOLOR,0.,\
264 >                                C_DEFCOLOR,0.,C_DEFCOLOR,0.,0.,C_DEFCOLOR,0.}
265 > #define C_DEFVERTEX     {1,NULL,{0.,0.,0.},{0.,0.,0.}}
266  
267   extern C_COLOR          *c_ccolor;      /* the current color */
268   extern char             *c_ccname;      /* current color name */
# Line 305 | Line 271 | extern char            *c_cmname;      /* current material name */
271   extern C_VERTEX         *c_cvertex;     /* the current vertex */
272   extern char             *c_cvname;      /* current vertex name */
273  
308 #ifdef NOPROTO
309 extern int      c_hcolor();                     /* handle color entity */
310 extern int      c_hmaterial();                  /* handle material entity */
311 extern int      c_hvertex();                    /* handle vertex entity */
312 extern void     c_clearall();                   /* clear context tables */
313 extern C_MATERIAL       *c_getmaterial();       /* get a named material */
314 extern C_VERTEX *c_getvert();                   /* get a named vertex */
315 extern C_COLOR  *c_getcolor();                  /* get a named color */
316 extern void     c_ccvt();                       /* fix color representation */
317 extern int      c_isgrey();                     /* check if color is grey */
318 #else
274   extern int      c_hcolor(int, char **);         /* handle color entity */
275   extern int      c_hmaterial(int, char **);      /* handle material entity */
276   extern int      c_hvertex(int, char **);        /* handle vertex entity */
# Line 325 | Line 280 | extern C_VERTEX        *c_getvert(char *);             /* get a named ve
280   extern C_COLOR  *c_getcolor(char *);            /* get a named color */
281   extern void     c_ccvt(C_COLOR *, int);         /* fix color representation */
282   extern int      c_isgrey(C_COLOR *);            /* check if color is grey */
328 #endif
283  
284   /*************************************************************************
285   *      Definitions for hierarchical object name handler
# Line 334 | Line 288 | extern int     c_isgrey(C_COLOR *);            /* check if color is
288   extern int      obj_nnames;             /* depth of name hierarchy */
289   extern char     **obj_name;             /* names in hierarchy */
290  
337 #ifdef NOPROTO
338 extern int      obj_handler();                  /* handle an object entity */
339 extern void     obj_clear();                    /* clear object stack */
340 #else
291   extern int      obj_handler(int, char **);      /* handle an object entity */
292   extern void     obj_clear(void);                /* clear object stack */
343 #endif
293  
294   /**************************************************************************
295   *      Definitions for hierarchical transformation handler
296   */
297  
298 < typedef FLOAT  MAT4[4][4];
298 > typedef RREAL  MAT4[4][4];
299  
300   #ifdef  BSD
301   #define  copymat4(m4a,m4b)      bcopy((char *)m4b,(char *)m4a,sizeof(MAT4))
# Line 364 | Line 313 | extern MAT4  m4ident;
313                                  /* regular transformation */
314   typedef struct {
315          MAT4    xfm;                            /* transform matrix */
316 <        FLOAT   sca;                            /* scalefactor */
316 >        RREAL   sca;                            /* scalefactor */
317   }  XF;
318  
319   #define identxf(xp)             (void)(setident4((xp)->xfm),(xp)->sca=1.0)
# Line 410 | Line 359 | extern char    **xf_argend;                    /* last transform argument
359   * puts the result into the first.
360   */
361  
413 #ifdef NOPROTO
362  
415 extern int      xf_handler();           /* handle xf entity */
416 extern void     xf_xfmpoint();          /* transform point */
417 extern void     xf_xfmvect();           /* transform vector */
418 extern void     xf_rotvect();           /* rotate vector */
419 extern double   xf_scale();             /* scale a value */
420 extern void     xf_clear();             /* clear xf stack */
421
422 /* The following are support routines you probably won't call directly */
423
424 XF_SPEC         *new_xf();              /* allocate new transform */
425 void            free_xf();              /* free a transform */
426 int             xf_aname();             /* name this instance */
427 long            comp_xfid();            /* compute unique ID */
428 extern void     multmat4();             /* m4a = m4b X m4c */
429 extern void     multv3();               /* v3a = v3b X m4 (vectors) */
430 extern void     multp3();               /* p3a = p3b X m4 (points) */
431 extern int      xf();                   /* interpret transform spec. */
432
433 #else
434
363   extern int      xf_handler(int, char **);       /* handle xf entity */
364   extern void     xf_xfmpoint(FVECT, FVECT);      /* transform point */
365   extern void     xf_xfmvect(FVECT, FVECT);       /* transform vector */
# Line 450 | Line 378 | extern void    multv3(FVECT, FVECT, MAT4);     /* v3a = v3b X
378   extern void     multp3(FVECT, FVECT, MAT4);     /* p3a = p3b X m4 (points) */
379   extern int      xf(XF *, int, char **);         /* interpret transform spec. */
380  
453 #endif
381  
382   /************************************************************************
383   *      Miscellaneous definitions
# Line 458 | Line 385 | extern int     xf(XF *, int, char **);         /* interpret trans
385  
386   #ifndef  PI
387   #ifdef  M_PI
388 < #define  PI             M_PI
388 > #define  PI             ((double)M_PI)
389   #else
390   #define  PI             3.14159265358979323846
391   #endif
392   #endif
393  
467 #ifdef DCL_ATOF
468 extern double   atof();
469 #endif
470
394   #ifndef MEM_PTR
395   #define MEM_PTR         void *
396   #endif
397  
475 extern MEM_PTR  malloc();
476 extern MEM_PTR  calloc();
477 extern MEM_PTR  realloc();
478 extern void     free();
479
398   #endif /*MG_VMAJOR*/
399 +
400 +
401 + #ifdef __cplusplus
402 + }
403 + #endif
404 + #endif /* _MGF_PARSER_H_ */
405 +

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