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root/radiance/ray/src/rt/data.c
Revision: 2.4
Committed: Thu Nov 12 10:11:51 1992 UTC (31 years, 5 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 2.3: +5 -5 lines
Log Message:
fixed call to getheader() to pass 3 arguments always (DOS bug fix)

File Contents

# User Rev Content
1 greg 2.3 /* Copyright (c) 1992 Regents of the University of California */
2 greg 1.1
3     #ifndef lint
4     static char SCCSid[] = "$SunId$ LBL";
5     #endif
6    
7     /*
8     * data.c - routines dealing with interpolated data.
9     *
10     * 6/4/86
11     */
12    
13     #include "standard.h"
14    
15     #include "color.h"
16    
17 greg 1.11 #include "resolu.h"
18    
19 greg 1.1 #include "data.h"
20    
21    
22 greg 1.10 extern char *fgetword();
23    
24 greg 1.1 extern char *libpath; /* library search path */
25    
26 greg 2.3 static DATARRAY *dlist = NULL; /* data array list */
27 greg 1.1
28 greg 2.3 static DATARRAY *plist = NULL; /* picture list */
29 greg 1.1
30    
31     DATARRAY *
32     getdata(dname) /* get data array dname */
33     char *dname;
34     {
35 greg 1.10 char word[64];
36 greg 1.1 char *dfname;
37     FILE *fp;
38     int asize;
39 greg 1.4 register int i, j;
40 greg 1.1 register DATARRAY *dp;
41     /* look for array in list */
42     for (dp = dlist; dp != NULL; dp = dp->next)
43     if (!strcmp(dname, dp->name))
44     return(dp); /* found! */
45    
46     /*
47     * If we haven't loaded the data already, we will look
48     * for it in the directorys specified by the library path.
49     *
50     * The file has the following format:
51     *
52 greg 1.4 * N
53 greg 1.1 * beg0 end0 n0
54     * beg1 end1 n1
55     * . . .
56 greg 1.4 * begN endN nN
57 greg 1.1 * data, later dimensions changing faster
58     * . . .
59     *
60 greg 1.4 * For irregularly spaced points, the following can be
61     * substituted for begi endi ni:
62     *
63 greg 1.6 * 0 0 ni p0i p1i .. pni
64 greg 1.1 */
65    
66 greg 1.2 if ((dfname = getpath(dname, libpath, R_OK)) == NULL) {
67 greg 1.1 sprintf(errmsg, "cannot find data file \"%s\"", dname);
68     error(USER, errmsg);
69     }
70     if ((dp = (DATARRAY *)malloc(sizeof(DATARRAY))) == NULL)
71     goto memerr;
72    
73     dp->name = savestr(dname);
74    
75     if ((fp = fopen(dfname, "r")) == NULL) {
76     sprintf(errmsg, "cannot open data file \"%s\"", dfname);
77     error(SYSTEM, errmsg);
78     }
79     /* get dimensions */
80 greg 1.10 if (fgetword(word, sizeof(word), fp) == NULL || !isint(word))
81 greg 1.1 goto scanerr;
82 greg 1.10 dp->nd = atoi(word);
83 greg 1.9 if (dp->nd <= 0 || dp->nd > MAXDDIM) {
84 greg 1.1 sprintf(errmsg, "bad number of dimensions for \"%s\"", dname);
85     error(USER, errmsg);
86     }
87     asize = 1;
88     for (i = 0; i < dp->nd; i++) {
89 greg 1.10 if (fgetword(word, sizeof(word), fp) == NULL || !isflt(word))
90 greg 1.6 goto scanerr;
91 greg 1.10 dp->dim[i].org = atof(word);
92     if (fgetword(word, sizeof(word), fp) == NULL || !isflt(word))
93     goto scanerr;
94     dp->dim[i].siz = atof(word);
95     if (fgetword(word, sizeof(word), fp) == NULL || !isint(word))
96     goto scanerr;
97     dp->dim[i].ne = atoi(word);
98 greg 1.6 if (dp->dim[i].ne < 2)
99     goto scanerr;
100     asize *= dp->dim[i].ne;
101     if ((dp->dim[i].siz -= dp->dim[i].org) == 0) {
102 greg 1.4 dp->dim[i].p = (double *)malloc(dp->dim[i].ne*sizeof(double));
103     if (dp->dim[i].p == NULL)
104     goto memerr;
105 greg 1.10 for (j = 0; j < dp->dim[i].ne; j++) {
106     if (fgetword(word, sizeof(word), fp) == NULL ||
107     !isflt(word))
108 greg 1.4 goto scanerr;
109 greg 1.10 dp->dim[i].p[j] = atof(word);
110     }
111 greg 1.4 for (j = 1; j < dp->dim[i].ne-1; j++)
112     if ((dp->dim[i].p[j-1] < dp->dim[i].p[j]) !=
113     (dp->dim[i].p[j] < dp->dim[i].p[j+1]))
114     goto scanerr;
115     dp->dim[i].org = dp->dim[i].p[0];
116     dp->dim[i].siz = dp->dim[i].p[dp->dim[i].ne-1]
117     - dp->dim[i].p[0];
118     } else
119 greg 1.6 dp->dim[i].p = NULL;
120 greg 1.1 }
121     if ((dp->arr = (DATATYPE *)malloc(asize*sizeof(DATATYPE))) == NULL)
122     goto memerr;
123    
124 greg 1.10 for (i = 0; i < asize; i++) {
125     if (fgetword(word, sizeof(word), fp) == NULL || !isflt(word))
126 greg 1.1 goto scanerr;
127 greg 1.10 dp->arr[i] = atof(word);
128     }
129 greg 1.1 fclose(fp);
130     dp->next = dlist;
131     return(dlist = dp);
132    
133     memerr:
134     error(SYSTEM, "out of memory in getdata");
135     scanerr:
136     sprintf(errmsg, "%s in data file \"%s\"",
137     feof(fp) ? "unexpected EOF" : "bad format", dfname);
138     error(USER, errmsg);
139     }
140    
141    
142 greg 1.5 static
143 greg 2.4 headaspect(s, iap) /* check string for aspect ratio */
144 greg 1.5 char *s;
145 greg 2.4 double *iap;
146 greg 1.5 {
147     if (isaspect(s))
148 greg 2.4 *iap *= aspectval(s);
149 greg 1.5 }
150    
151    
152 greg 1.1 DATARRAY *
153     getpict(pname) /* get picture pname */
154     char *pname;
155     {
156     extern char *libpath;
157 greg 2.4 double inpaspect;
158 greg 1.1 char *pfname;
159     FILE *fp;
160     COLOR *scanin;
161 greg 1.11 int sl, ns;
162 greg 2.3 RESOLU inpres;
163 greg 1.11 FLOAT loc[2];
164     int y;
165     register int x, i;
166 greg 1.1 register DATARRAY *pp;
167     /* look for array in list */
168     for (pp = plist; pp != NULL; pp = pp->next)
169     if (!strcmp(pname, pp->name))
170     return(pp); /* found! */
171    
172 greg 1.2 if ((pfname = getpath(pname, libpath, R_OK)) == NULL) {
173 greg 1.1 sprintf(errmsg, "cannot find picture file \"%s\"", pname);
174     error(USER, errmsg);
175     }
176     if ((pp = (DATARRAY *)calloc(3, sizeof(DATARRAY))) == NULL)
177     goto memerr;
178    
179     pp[0].name =
180     pp[1].name =
181     pp[2].name = savestr(pname);
182    
183     if ((fp = fopen(pfname, "r")) == NULL) {
184     sprintf(errmsg, "cannot open picture file \"%s\"", pfname);
185     error(SYSTEM, errmsg);
186     }
187 greg 2.3 #ifdef MSDOS
188     setmode(fileno(fp), O_BINARY);
189     #endif
190 greg 1.1 /* get dimensions */
191 greg 1.5 inpaspect = 1.0;
192 greg 2.4 getheader(fp, headaspect, &inpaspect);
193 greg 1.11 if (!fgetsresolu(&inpres, fp))
194 greg 1.1 goto readerr;
195     for (i = 0; i < 3; i++) {
196     pp[i].nd = 2;
197 greg 1.11 pp[i].dim[0].ne = inpres.yr;
198     pp[i].dim[1].ne = inpres.xr;
199 greg 1.1 pp[i].dim[0].org =
200     pp[i].dim[1].org = 0.0;
201 greg 1.11 if (inpres.xr <= inpres.yr*inpaspect) {
202     pp[i].dim[0].siz = inpaspect *
203     (double)inpres.yr/inpres.xr;
204 greg 1.7 pp[i].dim[1].siz = 1.0;
205     } else {
206 greg 1.1 pp[i].dim[0].siz = 1.0;
207 greg 1.11 pp[i].dim[1].siz = (double)inpres.xr/inpres.yr /
208     inpaspect;
209 greg 1.1 }
210 greg 1.7 pp[i].dim[0].p = pp[i].dim[1].p = NULL;
211 greg 1.11 pp[i].arr = (DATATYPE *)
212     malloc(inpres.xr*inpres.yr*sizeof(DATATYPE));
213 greg 1.1 if (pp[i].arr == NULL)
214     goto memerr;
215     }
216     /* load picture */
217 greg 1.11 sl = scanlen(&inpres);
218     ns = numscans(&inpres);
219     if ((scanin = (COLOR *)malloc(sl*sizeof(COLOR))) == NULL)
220 greg 1.1 goto memerr;
221 greg 1.11 for (y = 0; y < ns; y++) {
222     if (freadscan(scanin, sl, fp) < 0)
223 greg 1.1 goto readerr;
224 greg 1.11 for (x = 0; x < sl; x++) {
225     pix2loc(loc, &inpres, x, y);
226     i = (int)(loc[1]*inpres.yr)*inpres.xr +
227     (int)(loc[0]*inpres.xr);
228     pp[0].arr[i] = colval(scanin[x],RED);
229     pp[1].arr[i] = colval(scanin[x],GRN);
230     pp[2].arr[i] = colval(scanin[x],BLU);
231     }
232 greg 1.1 }
233     free((char *)scanin);
234     fclose(fp);
235     pp[0].next =
236     pp[1].next =
237     pp[2].next = plist;
238     return(plist = pp);
239    
240     memerr:
241     error(SYSTEM, "out of memory in getpict");
242     readerr:
243     sprintf(errmsg, "bad picture file \"%s\"", pfname);
244     error(USER, errmsg);
245     }
246    
247    
248     freedata(dname) /* free memory associated with dname */
249     char *dname;
250     {
251     register DATARRAY *dp, *dpl;
252 greg 1.4 register int i;
253 greg 1.1
254     for (dpl = NULL, dp = dlist; dp != NULL; dpl = dp, dp = dp->next)
255     if (!strcmp(dname, dp->name)) {
256     if (dpl == NULL)
257     dlist = dp->next;
258     else
259     dpl->next = dp->next;
260     free((char *)dp->arr);
261 greg 1.4 for (i = 0; i < dp->nd; i++)
262     if (dp->dim[i].p != NULL)
263     free((char *)dp->dim[i].p);
264 greg 1.1 freestr(dp->name);
265     free((char *)dp);
266     return;
267     }
268     }
269    
270    
271     freepict(pname) /* free memory associated with pname */
272     char *pname;
273     {
274     register DATARRAY *pp, *ppl;
275    
276     for (ppl = NULL, pp = plist; pp != NULL; ppl = pp, pp = pp->next)
277     if (!strcmp(pname, pp->name)) {
278     if (ppl == NULL)
279     plist = pp->next;
280     else
281     ppl->next = pp->next;
282     free((char *)pp[0].arr);
283     free((char *)pp[1].arr);
284     free((char *)pp[2].arr);
285     freestr(pp[0].name);
286     free((char *)pp);
287     return;
288     }
289     }
290    
291    
292     double
293     datavalue(dp, pt) /* interpolate data value at a point */
294     register DATARRAY *dp;
295 greg 2.3 double *pt;
296 greg 1.1 {
297     DATARRAY sd;
298     int asize;
299 greg 1.6 int lower, upper;
300 greg 1.1 register int i;
301 greg 2.3 double x, y, y0, y1;
302 greg 1.4 /* set up dimensions for recursion */
303 greg 1.1 sd.nd = dp->nd - 1;
304     asize = 1;
305     for (i = 0; i < sd.nd; i++) {
306     sd.dim[i].org = dp->dim[i+1].org;
307     sd.dim[i].siz = dp->dim[i+1].siz;
308 greg 1.4 sd.dim[i].p = dp->dim[i+1].p;
309 greg 1.1 asize *= sd.dim[i].ne = dp->dim[i+1].ne;
310     }
311 greg 1.4 /* get independent variable */
312     if (dp->dim[0].p == NULL) { /* evenly spaced points */
313     x = (pt[0] - dp->dim[0].org)/dp->dim[0].siz;
314     x = x * (dp->dim[0].ne - 1);
315     i = x;
316     if (i < 0)
317     i = 0;
318     else if (i > dp->dim[0].ne - 2)
319     i = dp->dim[0].ne - 2;
320     } else { /* unevenly spaced points */
321 greg 1.6 if (dp->dim[0].siz > 0.0) {
322     lower = 0;
323     upper = dp->dim[0].ne;
324     } else {
325     lower = dp->dim[0].ne;
326     upper = 0;
327     }
328     do {
329     i = (lower + upper) >> 1;
330     if (pt[0] >= dp->dim[0].p[i])
331     lower = i;
332 greg 1.8 else
333 greg 1.6 upper = i;
334     } while (i != (lower + upper) >> 1);
335 greg 1.8 if (i > dp->dim[0].ne - 2)
336 greg 1.4 i = dp->dim[0].ne - 2;
337     x = i + (pt[0] - dp->dim[0].p[i]) /
338     (dp->dim[0].p[i+1] - dp->dim[0].p[i]);
339     }
340     /* get dependent variable */
341 greg 1.1 if (dp->nd == 1) {
342     y0 = dp->arr[i];
343     y1 = dp->arr[i+1];
344     } else {
345     sd.arr = &dp->arr[i*asize];
346     y0 = datavalue(&sd, pt+1);
347     sd.arr = &dp->arr[(i+1)*asize];
348     y1 = datavalue(&sd, pt+1);
349     }
350     /*
351     * Extrapolate as far as one division, then
352     * taper off harmonically to zero.
353     */
354     if (x > i+2)
355     y = (2*y1-y0)/(x-i-1);
356     else if (x < i-1)
357     y = (2*y0-y1)/(i-x);
358     else
359     y = y0*((i+1)-x) + y1*(x-i);
360    
361     return(y);
362     }