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root/radiance/ray/src/cv/mgflib/parser.h
Revision: 1.26
Committed: Wed Nov 8 09:40:26 1995 UTC (28 years, 5 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 1.25: +2 -1 lines
Log Message:
added check for input line exceeding MG_MAXLINE

File Contents

# User Rev Content
1 greg 1.21 /* Copyright (c) 1995 Regents of the University of California */
2 greg 1.1
3     /* SCCSid "$SunId$ LBL" */
4    
5     /*
6     * Header file for MGF interpreter
7     */
8    
9     /* must include stdio.h before us */
10    
11 greg 1.25 #define MG_VMAJOR 1 /* major version number */
12     #define MG_VMINOR 0 /* minor version number */
13    
14     /* Entities (list is only appended, never modified) */
15 greg 1.21 #define MG_E_COMMENT 0 /* # */
16     #define MG_E_COLOR 1 /* c */
17     #define MG_E_CCT 2 /* cct */
18     #define MG_E_CONE 3 /* cone */
19     #define MG_E_CMIX 4 /* cmix */
20     #define MG_E_CSPEC 5 /* cspec */
21     #define MG_E_CXY 6 /* cxy */
22     #define MG_E_CYL 7 /* cyl */
23     #define MG_E_ED 8 /* ed */
24     #define MG_E_FACE 9 /* f */
25     #define MG_E_INCLUDE 10 /* i */
26     #define MG_E_IES 11 /* ies */
27     #define MG_E_IR 12 /* ir */
28     #define MG_E_MATERIAL 13 /* m */
29     #define MG_E_NORMAL 14 /* n */
30     #define MG_E_OBJECT 15 /* o */
31     #define MG_E_POINT 16 /* p */
32     #define MG_E_PRISM 17 /* prism */
33     #define MG_E_RD 18 /* rd */
34     #define MG_E_RING 19 /* ring */
35     #define MG_E_RS 20 /* rs */
36     #define MG_E_SIDES 21 /* sides */
37     #define MG_E_SPH 22 /* sph */
38     #define MG_E_TD 23 /* td */
39     #define MG_E_TORUS 24 /* torus */
40     #define MG_E_TS 25 /* ts */
41     #define MG_E_VERTEX 26 /* v */
42     #define MG_E_XF 27 /* xf */
43 greg 1.25 /* end of Version 1 entities */
44 greg 1.1
45 greg 1.21 #define MG_NENTITIES 28 /* total # entities */
46 greg 1.1
47 greg 1.25 #define MG_NELIST {28} /* entity count for version 1 and up */
48    
49 greg 1.18 #define MG_NAMELIST {"#","c","cct","cone","cmix","cspec","cxy","cyl","ed",\
50 greg 1.20 "f","i","ies","ir","m","n","o","p","prism","rd",\
51     "ring","rs","sides","sph","td","torus","ts","v","xf"}
52 greg 1.1
53     #define MG_MAXELEN 6
54    
55     extern char mg_ename[MG_NENTITIES][MG_MAXELEN];
56    
57 greg 1.24 /* Handler routines for each entity and unknown ones */
58 greg 1.1 #ifdef NOPROTO
59     extern int (*mg_ehand[MG_NENTITIES])();
60 greg 1.24 extern int (*mg_uhand)();
61     extern int mg_defuhand();
62 greg 1.1 #else
63     extern int (*mg_ehand[MG_NENTITIES])(int argc, char **argv);
64 greg 1.24 extern int (*mg_uhand)(int argc, char **argv);
65     extern int mg_defuhand(int, char **);
66 greg 1.1 #endif
67    
68 greg 1.24 extern unsigned mg_nunknown; /* count of unknown entities */
69    
70 greg 1.1 /* Error codes */
71     #define MG_OK 0 /* normal return value */
72     #define MG_EUNK 1 /* unknown entity */
73     #define MG_EARGC 2 /* wrong number of arguments */
74     #define MG_ETYPE 3 /* argument type error */
75     #define MG_EILL 4 /* illegal argument value */
76     #define MG_EUNDEF 5 /* undefined reference */
77     #define MG_ENOFILE 6 /* cannot open input file */
78     #define MG_EINCL 7 /* error in included file */
79     #define MG_EMEM 8 /* out of memory */
80     #define MG_ESEEK 9 /* file seek error */
81 greg 1.2 #define MG_EBADMAT 10 /* bad material specification */
82 greg 1.26 #define MG_ELINE 11 /* input line too long */
83 greg 1.1
84 greg 1.26 #define MG_NERRS 12
85 greg 1.1
86 greg 1.24 extern char *mg_err[MG_NERRS]; /* list of error messages */
87 greg 1.1
88     /*
89     * The general process for running the parser is to fill in the mg_ehand
90     * array with handlers for each entity you know how to handle.
91     * Then, call mg_init to fill in the rest. This function will report
92     * an error and quit if you try to support an inconsistent set of entities.
93     * For each file you want to parse, call mg_load with the file name.
94     * To read from standard input, use NULL as the file name.
95     * For additional control over error reporting and file management,
96     * use mg_open, mg_read, mg_parse and mg_close instead of mg_load.
97 greg 1.10 * To pass an entity of your own construction to the parser, use
98     * the mg_handle function rather than the mg_ehand routines directly.
99     * (The first argument to mg_handle is the entity #, or -1.)
100 greg 1.1 * To free any data structures and clear the parser, use mg_clear.
101 greg 1.15 * If there is an error, mg_load, mg_open, mg_parse, mg_handle and
102 greg 1.21 * mg_fgoto will return an error from the list above. In addition,
103 greg 1.15 * mg_load will report the error to stderr. The mg_read routine
104     * returns 0 when the end of file has been reached.
105 greg 1.1 */
106    
107 greg 1.17 #define MG_MAXLINE 4096 /* maximum input line length */
108 greg 1.1 #define MG_MAXARGC (MG_MAXLINE/4) /* maximum argument count */
109    
110     typedef struct mg_fctxt {
111 greg 1.7 char fname[96]; /* file name */
112 greg 1.1 FILE *fp; /* stream pointer */
113 greg 1.10 int fid; /* unique file context id */
114 greg 1.1 char inpline[MG_MAXLINE]; /* input line */
115     int lineno; /* line number */
116     struct mg_fctxt *prev; /* previous context */
117     } MG_FCTXT;
118    
119 greg 1.10 typedef struct {
120     int fid; /* file this position is for */
121     int lineno; /* line number in file */
122     long offset; /* offset from beginning */
123     } MG_FPOS;
124    
125 greg 1.1 extern MG_FCTXT *mg_file; /* current file context */
126    
127     #ifdef NOPROTO
128     extern void mg_init(); /* fill in mg_ehand array */
129     extern int mg_load(); /* parse a file */
130     extern int mg_open(); /* open new input file */
131     extern int mg_read(); /* read next line */
132     extern int mg_parse(); /* parse current line */
133 greg 1.10 extern void mg_fgetpos(); /* get position on input file */
134     extern int mg_fgoto(); /* go to position on input file */
135 greg 1.1 extern void mg_close(); /* close input file */
136     extern void mg_clear(); /* clear parser */
137 greg 1.10 extern int mg_handle(); /* handle an entity */
138 greg 1.1 #else
139     extern void mg_init(void); /* fill in mg_ehand array */
140     extern int mg_load(char *); /* parse a file */
141     extern int mg_open(MG_FCTXT *, char *); /* open new input file */
142     extern int mg_read(void); /* read next line */
143     extern int mg_parse(void); /* parse current line */
144 greg 1.10 extern void mg_fgetpos(MG_FPOS *); /* get position on input file */
145     extern int mg_fgoto(MG_FPOS *); /* go to position on input file */
146 greg 1.1 extern void mg_close(void); /* close input file */
147     extern void mg_clear(void); /* clear parser */
148 greg 1.10 extern int mg_handle(int, int, char **); /* handle an entity */
149 greg 1.1 #endif
150    
151     #ifndef MG_NQCD
152     #define MG_NQCD 5 /* default number of divisions */
153     #endif
154    
155     extern int mg_nqcdivs; /* divisions per quarter circle */
156    
157     /*
158     * The following library routines are included for your convenience:
159     */
160    
161     #ifdef NOPROTO
162     extern int mg_entity(); /* get entity number from its name */
163     extern int isint(); /* non-zero if integer format */
164     extern int isflt(); /* non-zero if floating point format */
165 greg 1.22 extern int isname(); /* non-zero if legal identifier name */
166 greg 1.1 #else
167     extern int mg_entity(char *); /* get entity number from its name */
168     extern int isint(char *); /* non-zero if integer format */
169     extern int isflt(char *); /* non-zero if floating point format */
170 greg 1.22 extern int isname(char *); /* non-zero if legal identifier name */
171 greg 1.1 #endif
172    
173     /************************************************************************
174     * Definitions for 3-d vector manipulation functions
175     */
176    
177 greg 1.3 #ifdef SMLFLT
178     #define FLOAT float
179     #define FTINY (1e-3)
180 greg 1.2 #else
181 greg 1.3 #define FLOAT double
182     #define FTINY (1e-6)
183 greg 1.2 #endif
184 greg 1.3 #define FHUGE (1e10)
185 greg 1.1
186 greg 1.2 typedef FLOAT FVECT[3];
187    
188 greg 1.3 #define VCOPY(v1,v2) ((v1)[0]=(v2)[0],(v1)[1]=(v2)[1],(v1)[2]=(v2)[2])
189     #define DOT(v1,v2) ((v1)[0]*(v2)[0]+(v1)[1]*(v2)[1]+(v1)[2]*(v2)[2])
190     #define VSUM(vr,v1,v2,f) ((vr)[0]=(v1)[0]+(f)*(v2)[0], \
191     (vr)[1]=(v1)[1]+(f)*(v2)[1], \
192     (vr)[2]=(v1)[2]+(f)*(v2)[2])
193    
194 greg 1.6 #define is0vect(v) (DOT(v,v) <= FTINY*FTINY)
195 greg 1.3
196     #define round0(x) if (x <= FTINY && x >= -FTINY) x = 0
197    
198 greg 1.1 #ifdef NOPROTO
199     extern double normalize(); /* normalize a vector */
200     #else
201     extern double normalize(FVECT); /* normalize a vector */
202     #endif
203    
204     /************************************************************************
205     * Definitions for context handling routines
206     * (materials, colors, vectors)
207     */
208    
209 greg 1.6 #define C_CMINWL 380 /* minimum wavelength */
210 greg 1.5 #define C_CMAXWL 780 /* maximum wavelength */
211     #define C_CNSS 41 /* number of spectral samples */
212 greg 1.6 #define C_CWLI ((C_CMAXWL-C_CMINWL)/(C_CNSS-1))
213 greg 1.5 #define C_CMAXV 10000 /* nominal maximum sample value */
214 greg 1.16 #define C_CLPWM (683./C_CMAXV) /* peak lumens/watt multiplier */
215 greg 1.5
216 greg 1.6 #define C_CSSPEC 01 /* flag if spectrum is set */
217     #define C_CDSPEC 02 /* flag if defined w/ spectrum */
218     #define C_CSXY 04 /* flag if xy is set */
219     #define C_CDXY 010 /* flag if defined w/ xy */
220 greg 1.16 #define C_CSEFF 020 /* flag if efficacy set */
221 greg 1.5
222 greg 1.1 typedef struct {
223 greg 1.8 int clock; /* incremented each change */
224 greg 1.19 short flags; /* what's been set */
225     short ssamp[C_CNSS]; /* spectral samples, min wl to max */
226     long ssum; /* straight sum of spectral values */
227 greg 1.6 float cx, cy; /* xy chromaticity value */
228 greg 1.16 float eff; /* efficacy (lumens/watt) */
229 greg 1.5 } C_COLOR;
230    
231 greg 1.16 #define C_DEFCOLOR { 1, C_CDXY|C_CSXY|C_CSSPEC|C_CSEFF,\
232 greg 1.5 {C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,\
233     C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,\
234     C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,\
235     C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,\
236     C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,\
237     C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,\
238     C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV,C_CMAXV},\
239 greg 1.16 (long)C_CNSS*C_CMAXV, 1./3., 1./3., 178.006 }
240 greg 1.5
241 greg 1.15 #define c_cval(c,l) ((double)(c)->ssamp[((l)-C_MINWL)/C_CWLI] / (c)->ssum)
242 greg 1.5
243 greg 1.20 #define C_1SIDEDTHICK 0.005 /* assumed thickness of 1-sided mat. */
244    
245 greg 1.5 typedef struct {
246 greg 1.2 int clock; /* incremented each change -- resettable */
247 greg 1.13 int sided; /* 1 if surface is 1-sided, 0 for 2-sided */
248 greg 1.20 float nr, ni; /* index of refraction, real and imaginary */
249 greg 1.2 float rd; /* diffuse reflectance */
250 greg 1.1 C_COLOR rd_c; /* diffuse reflectance color */
251 greg 1.2 float td; /* diffuse transmittance */
252 greg 1.1 C_COLOR td_c; /* diffuse transmittance color */
253 greg 1.2 float ed; /* diffuse emittance */
254 greg 1.1 C_COLOR ed_c; /* diffuse emittance color */
255 greg 1.2 float rs; /* specular reflectance */
256 greg 1.1 C_COLOR rs_c; /* specular reflectance color */
257 greg 1.2 float rs_a; /* specular reflectance roughness */
258     float ts; /* specular transmittance */
259 greg 1.1 C_COLOR ts_c; /* specular transmittance color */
260 greg 1.2 float ts_a; /* specular transmittance roughness */
261 greg 1.1 } C_MATERIAL; /* material context */
262    
263     typedef struct {
264 greg 1.8 int clock; /* incremented each change -- resettable */
265 greg 1.1 FVECT p, n; /* point and normal */
266     } C_VERTEX; /* vertex context */
267 greg 1.3
268 greg 1.20 #define C_DEFMATERIAL {1,0,1.,0.,0.,C_DEFCOLOR,0.,C_DEFCOLOR,0.,C_DEFCOLOR,\
269 greg 1.2 0.,C_DEFCOLOR,0.,0.,C_DEFCOLOR,0.}
270 greg 1.12 #define C_DEFVERTEX {1,{0.,0.,0.},{0.,0.,0.}}
271 greg 1.1
272     extern C_COLOR *c_ccolor; /* the current color */
273 greg 1.12 extern char *c_ccname; /* current color name */
274 greg 1.1 extern C_MATERIAL *c_cmaterial; /* the current material */
275 greg 1.12 extern char *c_cmname; /* current material name */
276 greg 1.1 extern C_VERTEX *c_cvertex; /* the current vertex */
277 greg 1.12 extern char *c_cvname; /* current vertex name */
278 greg 1.1
279     #ifdef NOPROTO
280     extern int c_hcolor(); /* handle color entity */
281     extern int c_hmaterial(); /* handle material entity */
282     extern int c_hvertex(); /* handle vertex entity */
283     extern void c_clearall(); /* clear context tables */
284 greg 1.11 extern C_MATERIAL *c_getmaterial(); /* get a named material */
285 greg 1.1 extern C_VERTEX *c_getvert(); /* get a named vertex */
286 greg 1.7 extern C_COLOR *c_getcolor(); /* get a named color */
287 greg 1.6 extern void c_ccvt(); /* fix color representation */
288     extern int c_isgrey(); /* check if color is grey */
289 greg 1.1 #else
290     extern int c_hcolor(int, char **); /* handle color entity */
291     extern int c_hmaterial(int, char **); /* handle material entity */
292     extern int c_hvertex(int, char **); /* handle vertex entity */
293     extern void c_clearall(void); /* clear context tables */
294 greg 1.11 extern C_MATERIAL *c_getmaterial(char *); /* get a named material */
295 greg 1.1 extern C_VERTEX *c_getvert(char *); /* get a named vertex */
296 greg 1.7 extern C_COLOR *c_getcolor(char *); /* get a named color */
297 greg 1.6 extern void c_ccvt(C_COLOR *, int); /* fix color representation */
298     extern int c_isgrey(C_COLOR *); /* check if color is grey */
299 greg 1.1 #endif
300    
301     /*************************************************************************
302     * Definitions for hierarchical object name handler
303     */
304    
305     extern int obj_nnames; /* depth of name hierarchy */
306     extern char **obj_name; /* names in hierarchy */
307    
308     #ifdef NOPROTO
309     extern int obj_handler(); /* handle an object entity */
310 greg 1.2 extern void obj_clear(); /* clear object stack */
311 greg 1.1 #else
312     extern int obj_handler(int, char **); /* handle an object entity */
313 greg 1.2 extern void obj_clear(void); /* clear object stack */
314 greg 1.1 #endif
315    
316     /**************************************************************************
317     * Definitions for hierarchical transformation handler
318     */
319    
320 greg 1.2 typedef FLOAT MAT4[4][4];
321 greg 1.1
322     #ifdef BSD
323     #define copymat4(m4a,m4b) bcopy((char *)m4b,(char *)m4a,sizeof(MAT4))
324     #else
325     #define copymat4(m4a,m4b) (void)memcpy((char *)m4a,(char *)m4b,sizeof(MAT4))
326     #endif
327    
328     #define MAT4IDENT { {1.,0.,0.,0.}, {0.,1.,0.,0.}, \
329     {0.,0.,1.,0.}, {0.,0.,0.,1.} }
330    
331     extern MAT4 m4ident;
332    
333     #define setident4(m4) copymat4(m4, m4ident)
334    
335     /* regular transformation */
336     typedef struct {
337 greg 1.14 MAT4 xfm; /* transform matrix */
338     FLOAT sca; /* scalefactor */
339 greg 1.1 } XF;
340    
341     #define identxf(xp) (void)(setident4((xp)->xfm),(xp)->sca=1.0)
342    
343 greg 1.10 #define XF_MAXDIM 8 /* maximum array dimensions */
344    
345     struct xf_array {
346     MG_FPOS spos; /* starting position on input */
347     int ndim; /* number of array dimensions */
348     struct {
349     short i, n; /* current count and maximum */
350     char arg[8]; /* string argument value */
351     } aarg[XF_MAXDIM];
352     };
353    
354 greg 1.1 typedef struct xf_spec {
355 greg 1.10 long xid; /* unique transform id */
356 greg 1.23 short xac; /* context argument count */
357 greg 1.14 short rev; /* boolean true if vertices reversed */
358 greg 1.10 XF xf; /* cumulative transformation */
359     struct xf_array *xarr; /* transformation array pointer */
360     struct xf_spec *prev; /* previous transformation context */
361     } XF_SPEC; /* followed by argument buffer */
362 greg 1.1
363 greg 1.23 extern XF_SPEC *xf_context; /* current transform context */
364     extern char **xf_argend; /* last transform argument */
365    
366     #define xf_ac(xf) ((xf)->xac)
367     #define xf_av(xf) (xf_argend - (xf)->xac)
368    
369     #define xf_argc (xf_context==NULL ? 0 : xf_ac(xf_context))
370     #define xf_argv xf_av(xf_context)
371 greg 1.1
372     /*
373     * The transformation handler should do most of the work that needs
374     * doing. Just pass it any xf entities, then use the associated
375     * functions to transform and translate points, transform vectors
376     * (without translation), rotate vectors (without scaling) and scale
377     * values appropriately.
378     *
379     * The routines xf_xfmpoint, xf_xfmvect and xf_rotvect take two
380     * 3-D vectors (which may be identical), transforms the second and
381     * puts the result into the first.
382     */
383    
384     #ifdef NOPROTO
385    
386     extern int xf_handler(); /* handle xf entity */
387     extern void xf_xfmpoint(); /* transform point */
388     extern void xf_xfmvect(); /* transform vector */
389     extern void xf_rotvect(); /* rotate vector */
390     extern double xf_scale(); /* scale a value */
391 greg 1.2 extern void xf_clear(); /* clear xf stack */
392 greg 1.1
393     /* The following are support routines you probably won't call directly */
394    
395     extern void multmat4(); /* m4a = m4b X m4c */
396     extern void multv3(); /* v3a = v3b X m4 (vectors) */
397     extern void multp3(); /* p3a = p3b X m4 (points) */
398     extern int xf(); /* interpret transform spec. */
399    
400     #else
401    
402 greg 1.2 extern int xf_handler(int, char **); /* handle xf entity */
403     extern void xf_xfmpoint(FVECT, FVECT); /* transform point */
404     extern void xf_xfmvect(FVECT, FVECT); /* transform vector */
405     extern void xf_rotvect(FVECT, FVECT); /* rotate vector */
406     extern double xf_scale(double); /* scale a value */
407     extern void xf_clear(void); /* clear xf stack */
408 greg 1.1
409     /* The following are support routines you probably won't call directly */
410    
411     extern void multmat4(MAT4, MAT4, MAT4); /* m4a = m4b X m4c */
412     extern void multv3(FVECT, FVECT, MAT4); /* v3a = v3b X m4 (vectors) */
413     extern void multp3(FVECT, FVECT, MAT4); /* p3a = p3b X m4 (points) */
414 greg 1.6 extern int xf(XF *, int, char **); /* interpret transform spec. */
415 greg 1.1
416     #endif
417    
418     /************************************************************************
419     * Miscellaneous definitions
420     */
421    
422     #ifdef M_PI
423     #define PI M_PI
424     #else
425     #define PI 3.14159265358979323846
426     #endif
427    
428     #ifdef DCL_ATOF
429     extern double atof();
430     #endif
431    
432     #ifndef MEM_PTR
433     #define MEM_PTR void *
434     #endif
435    
436     extern MEM_PTR malloc();
437     extern MEM_PTR calloc();
438     extern MEM_PTR realloc();
439 greg 1.4 extern void free();