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root/radiance/ray/src/util/rmatrix.c
Revision: 2.87
Committed: Fri Apr 4 01:48:25 2025 UTC (4 weeks ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 2.86: +42 -27 lines
Log Message:
perf(rmtxop): Changed rmx_transpose() call to do in-situ operation on square matrices

File Contents

# User Rev Content
1 greg 2.1 #ifndef lint
2 greg 2.87 static const char RCSid[] = "$Id: rmatrix.c,v 2.86 2025/03/28 00:06:36 greg Exp $";
3 greg 2.1 #endif
4     /*
5     * General matrix operations.
6     */
7    
8     #include <stdlib.h>
9 greg 2.25 #include <errno.h>
10 greg 2.21 #include "rtio.h"
11 schorsch 2.20 #include "platform.h"
12 greg 2.1 #include "resolu.h"
13 greg 2.19 #include "paths.h"
14 greg 2.1 #include "rmatrix.h"
15 greg 2.50 #if !defined(_WIN32) && !defined(_WIN64)
16     #include <sys/mman.h>
17     #endif
18 greg 2.1
19 greg 2.86 #ifndef MAXCOMP
20     #define MAXCOMP MAXCSAMP /* #components we support */
21     #endif
22    
23 greg 2.60 static const char rmx_mismatch_warn[] = "WARNING: data type mismatch\n";
24 greg 2.1
25 greg 2.50 /* Initialize a RMATRIX struct but don't allocate array space */
26 greg 2.1 RMATRIX *
27 greg 2.50 rmx_new(int nr, int nc, int n)
28     {
29 greg 2.60 RMATRIX *dnew;
30    
31     if (n <= 0)
32     return(NULL);
33 greg 2.50
34 greg 2.60 dnew = (RMATRIX *)calloc(1, sizeof(RMATRIX));
35 greg 2.69 if (!dnew)
36     return(NULL);
37    
38 greg 2.80 dnew->dtype = DTrmx_native;
39 greg 2.69 dnew->nrows = nr;
40     dnew->ncols = nc;
41     dnew->ncomp = n;
42     setcolor(dnew->cexp, 1.f, 1.f, 1.f);
43     memcpy(dnew->wlpart, WLPART, sizeof(dnew->wlpart));
44    
45 greg 2.50 return(dnew);
46     }
47    
48     /* Prepare a RMATRIX for writing (allocate array if needed) */
49     int
50     rmx_prepare(RMATRIX *rm)
51     {
52     if (!rm) return(0);
53 greg 2.83 if (rm->mtx) /* assume it's right size */
54 greg 2.50 return(1);
55 greg 2.60 if ((rm->nrows <= 0) | (rm->ncols <= 0) | (rm->ncomp <= 0))
56     return(0);
57 greg 2.82 rm->mtx = (rmx_dtype *)malloc(rmx_array_size(rm));
58 greg 2.81 rm->pflags |= RMF_FREEMEM;
59 greg 2.50 return(rm->mtx != NULL);
60     }
61    
62     /* Call rmx_new() and rmx_prepare() */
63     RMATRIX *
64 greg 2.1 rmx_alloc(int nr, int nc, int n)
65     {
66 greg 2.50 RMATRIX *dnew = rmx_new(nr, nc, n);
67 greg 2.1
68 greg 2.83 if (!rmx_prepare(dnew)) {
69 greg 2.50 rmx_free(dnew);
70 greg 2.83 return(NULL);
71 greg 2.50 }
72 greg 2.1 return(dnew);
73     }
74    
75 greg 2.67 /* Clear state by freeing info and matrix data */
76 greg 2.6 void
77 greg 2.67 rmx_reset(RMATRIX *rm)
78 greg 2.6 {
79     if (!rm) return;
80 greg 2.67 if (rm->info) {
81 greg 2.6 free(rm->info);
82 greg 2.67 rm->info = NULL;
83     }
84 greg 2.50 #ifdef MAP_FILE
85 greg 2.81 if (rm->mapped) {
86     munmap(rm->mapped, rmx_mapped_size(rm));
87     rm->mapped = NULL;
88     } else
89 greg 2.50 #endif
90 greg 2.81 if (rm->pflags & RMF_FREEMEM) {
91     free(rm->mtx);
92     rm->pflags &= ~RMF_FREEMEM;
93 greg 2.67 }
94 greg 2.79 rm->mtx = NULL;
95 greg 2.67 }
96    
97     /* Free an RMATRIX struct and data */
98     void
99     rmx_free(RMATRIX *rm)
100     {
101     if (!rm) return;
102     rmx_reset(rm);
103 greg 2.6 free(rm);
104     }
105    
106     /* Resolve data type based on two input types (returns 0 for mismatch) */
107     int
108     rmx_newtype(int dtyp1, int dtyp2)
109     {
110 greg 2.60 if ((dtyp1==DTxyze) | (dtyp1==DTrgbe) | (dtyp1==DTspec) |
111     (dtyp2==DTxyze) | (dtyp2==DTrgbe) | (dtyp2==DTspec)
112 greg 2.14 && dtyp1 != dtyp2)
113 greg 2.6 return(0);
114     if (dtyp1 < dtyp2)
115     return(dtyp1);
116     return(dtyp2);
117     }
118    
119 greg 2.5 /* Append header information associated with matrix data */
120     int
121     rmx_addinfo(RMATRIX *rm, const char *info)
122     {
123 greg 2.83 size_t oldlen = 0;
124 greg 2.50
125 greg 2.33 if (!rm || !info || !*info)
126 greg 2.5 return(0);
127 greg 2.8 if (!rm->info) {
128 greg 2.5 rm->info = (char *)malloc(strlen(info)+1);
129 greg 2.50 } else {
130     oldlen = strlen(rm->info);
131 greg 2.5 rm->info = (char *)realloc(rm->info,
132 greg 2.50 oldlen+strlen(info)+1);
133     }
134 greg 2.5 if (!rm->info)
135     return(0);
136 greg 2.50 strcpy(rm->info+oldlen, info);
137 greg 2.5 return(1);
138     }
139    
140 greg 2.1 static int
141     get_dminfo(char *s, void *p)
142     {
143 greg 2.6 RMATRIX *ip = (RMATRIX *)p;
144 greg 2.29 char fmt[MAXFMTLEN];
145 greg 2.1 int i;
146    
147 greg 2.83 if (isheadid(s))
148 greg 2.6 return(0);
149 greg 2.60 if (isncomp(s)) {
150     ip->ncomp = ncompval(s);
151 greg 2.83 return(ip->ncomp - 1);
152 greg 2.1 }
153     if (!strncmp(s, "NROWS=", 6)) {
154     ip->nrows = atoi(s+6);
155 greg 2.83 return(ip->nrows - 1);
156 greg 2.1 }
157     if (!strncmp(s, "NCOLS=", 6)) {
158     ip->ncols = atoi(s+6);
159 greg 2.83 return(ip->ncols - 1);
160 greg 2.1 }
161 greg 2.35 if ((i = isbigendian(s)) >= 0) {
162 greg 2.79 if (nativebigendian() != i)
163     ip->pflags |= RMF_SWAPIN;
164     else
165     ip->pflags &= ~RMF_SWAPIN;
166 greg 2.35 return(0);
167     }
168 greg 2.40 if (isexpos(s)) {
169 greg 2.52 float f = exposval(s);
170     scalecolor(ip->cexp, f);
171 greg 2.83 return(f > .0 ? 0 : -1);
172 greg 2.40 }
173     if (iscolcor(s)) {
174     COLOR ctmp;
175 greg 2.83 if (!colcorval(ctmp, s)) return(-1);
176 greg 2.50 multcolor(ip->cexp, ctmp);
177 greg 2.40 return(0);
178     }
179 greg 2.83 if (iswlsplit(s))
180     return(wlsplitval(ip->wlpart, s) - 1);
181    
182 greg 2.5 if (!formatval(fmt, s)) {
183 greg 2.6 rmx_addinfo(ip, s);
184 greg 2.1 return(0);
185 greg 2.50 } /* else check format */
186 greg 2.1 for (i = 1; i < DTend; i++)
187     if (!strcmp(fmt, cm_fmt_id[i])) {
188     ip->dtype = i;
189     return(0);
190     }
191 greg 2.83 return(-1); /* bad format */
192 greg 2.1 }
193    
194     static int
195 greg 2.82 rmx_load_ascii(rmx_dtype *drp, const RMATRIX *rm, FILE *fp)
196 greg 2.1 {
197 greg 2.65 int j, k;
198 greg 2.17
199 greg 2.65 for (j = 0; j < rm->ncols; j++)
200     for (k = rm->ncomp; k-- > 0; )
201     if (fscanf(fp, "%lf", drp++) != 1)
202     return(0);
203 greg 2.1 return(1);
204     }
205    
206     static int
207 greg 2.82 rmx_load_float(rmx_dtype *drp, const RMATRIX *rm, FILE *fp)
208 greg 2.1 {
209 greg 2.65 int j, k;
210 greg 2.86 float val[MAXCOMP];
211 greg 2.1
212 greg 2.86 if (rm->ncomp > MAXCOMP) {
213 greg 2.1 fputs("Unsupported # components in rmx_load_float()\n", stderr);
214     exit(1);
215     }
216 greg 2.65 for (j = 0; j < rm->ncols; j++) {
217 greg 2.21 if (getbinary(val, sizeof(val[0]), rm->ncomp, fp) != rm->ncomp)
218 greg 2.65 return(0);
219 greg 2.79 if (rm->pflags & RMF_SWAPIN)
220 greg 2.65 swap32((char *)val, rm->ncomp);
221     for (k = 0; k < rm->ncomp; k++)
222     *drp++ = val[k];
223     }
224 greg 2.1 return(1);
225     }
226    
227     static int
228 greg 2.82 rmx_load_double(rmx_dtype *drp, const RMATRIX *rm, FILE *fp)
229 greg 2.1 {
230 greg 2.65 if (getbinary(drp, sizeof(*drp)*rm->ncomp, rm->ncols, fp) != rm->ncols)
231 greg 2.50 return(0);
232 greg 2.79 if (rm->pflags & RMF_SWAPIN)
233 greg 2.65 swap64((char *)drp, rm->ncols*rm->ncomp);
234 greg 2.1 return(1);
235     }
236    
237     static int
238 greg 2.82 rmx_load_rgbe(rmx_dtype *drp, const RMATRIX *rm, FILE *fp)
239 greg 2.1 {
240 greg 2.65 COLR *scan;
241     COLOR col;
242     int j;
243 greg 2.1
244 greg 2.65 if (rm->ncomp != 3)
245     return(0);
246     scan = (COLR *)tempbuffer(sizeof(COLR)*rm->ncols);
247 greg 2.33 if (!scan)
248 greg 2.1 return(0);
249 greg 2.65 if (freadcolrs(scan, rm->ncols, fp) < 0)
250 greg 2.1 return(0);
251 greg 2.65 for (j = 0; j < rm->ncols; j++) {
252     colr_color(col, scan[j]);
253     *drp++ = colval(col,RED);
254     *drp++ = colval(col,GRN);
255     *drp++ = colval(col,BLU);
256 greg 2.1 }
257     return(1);
258     }
259    
260 greg 2.60 static int
261 greg 2.82 rmx_load_spec(rmx_dtype *drp, const RMATRIX *rm, FILE *fp)
262 greg 2.60 {
263 greg 2.86 COLRV *scan;
264     COLORV scol[MAXCOMP];
265 greg 2.65 int j, k;
266 greg 2.60
267 greg 2.86 if ((rm->ncomp < 3) | (rm->ncomp > MAXCOMP))
268 greg 2.60 return(0);
269 greg 2.86 scan = (COLRV *)tempbuffer((rm->ncomp+1)*rm->ncols);
270 greg 2.60 if (!scan)
271     return(0);
272 greg 2.65 if (freadscolrs(scan, rm->ncomp, rm->ncols, fp) < 0)
273 greg 2.60 return(0);
274 greg 2.65 for (j = 0; j < rm->ncols; j++) {
275     scolr2scolor(scol, scan+j*(rm->ncomp+1), rm->ncomp);
276     for (k = 0; k < rm->ncomp; k++)
277     *drp++ = scol[k];
278 greg 2.60 }
279     return(1);
280     }
281    
282 greg 2.62 /* Read matrix header from input stream (cannot be XML) */
283     int
284     rmx_load_header(RMATRIX *rm, FILE *fp)
285     {
286     if (!rm | !fp)
287 greg 2.63 return(0);
288 greg 2.67 rmx_reset(rm); /* clear state */
289 greg 2.62 if (rm->nrows | rm->ncols | !rm->dtype) {
290     rm->nrows = rm->ncols = 0;
291     rm->ncomp = 3;
292     setcolor(rm->cexp, 1.f, 1.f, 1.f);
293     memcpy(rm->wlpart, WLPART, sizeof(rm->wlpart));
294 greg 2.79 rm->pflags = 0;
295 greg 2.62 }
296     rm->dtype = DTascii; /* assumed w/o FORMAT */
297     if (getheader(fp, get_dminfo, rm) < 0) {
298 greg 2.83 fputs("Bad matrix header\n", stderr);
299 greg 2.63 return(0);
300 greg 2.62 }
301 greg 2.68 if ((rm->dtype == DTrgbe) | (rm->dtype == DTxyze) &&
302     rm->ncomp != 3)
303     return(0);
304     if (rm->ncols <= 0 && /* resolution string? */
305     !fscnresolu(&rm->ncols, &rm->nrows, fp))
306     return(0);
307     if (rm->dtype == DTascii) /* set file type (WINDOWS) */
308 greg 2.67 SET_FILE_TEXT(fp);
309     else
310     SET_FILE_BINARY(fp);
311 greg 2.63 return(1);
312 greg 2.62 }
313    
314 greg 2.82 /* Load next row as rmx_dtype (cannot be XML) */
315 greg 2.62 int
316 greg 2.82 rmx_load_row(rmx_dtype *drp, const RMATRIX *rm, FILE *fp)
317 greg 2.62 {
318     switch (rm->dtype) {
319     case DTascii:
320 greg 2.65 return(rmx_load_ascii(drp, rm, fp));
321 greg 2.62 case DTfloat:
322 greg 2.65 return(rmx_load_float(drp, rm, fp));
323 greg 2.62 case DTdouble:
324 greg 2.65 return(rmx_load_double(drp, rm, fp));
325 greg 2.62 case DTrgbe:
326     case DTxyze:
327 greg 2.65 return(rmx_load_rgbe(drp, rm, fp));
328 greg 2.62 case DTspec:
329 greg 2.65 return(rmx_load_spec(drp, rm, fp));
330 greg 2.62 default:
331 greg 2.65 fputs("Unsupported data type in rmx_load_row()\n", stderr);
332 greg 2.62 }
333     return(0);
334     }
335    
336 greg 2.65 /* Allocate & load post-header data from stream given type set in rm->dtype */
337     int
338     rmx_load_data(RMATRIX *rm, FILE *fp)
339     {
340     int i;
341     #ifdef MAP_FILE
342     long pos; /* map memory for file > 1MB if possible */
343 greg 2.81 if ((rm->dtype == DTrmx_native) & !(rm->pflags & RMF_SWAPIN) &
344     (rmx_array_size(rm) >= 1L<<20) &&
345 greg 2.82 (pos = ftell(fp)) >= 0 && !(pos % sizeof(rmx_dtype))) {
346 greg 2.79 rm->mapped = mmap(NULL, rmx_array_size(rm)+pos, PROT_READ|PROT_WRITE,
347 greg 2.65 MAP_PRIVATE, fileno(fp), 0);
348     if (rm->mapped != MAP_FAILED) {
349 greg 2.81 if (rm->pflags & RMF_FREEMEM)
350     free(rm->mtx);
351 greg 2.82 rm->mtx = (rmx_dtype *)rm->mapped + pos/sizeof(rmx_dtype);
352 greg 2.81 rm->pflags &= ~RMF_FREEMEM;
353 greg 2.65 return(1);
354     } /* else fall back on reading into memory */
355     rm->mapped = NULL;
356     }
357     #endif
358     if (!rmx_prepare(rm)) { /* need in-core matrix array */
359     fprintf(stderr, "Cannot allocate %g MByte matrix array\n",
360 greg 2.79 (1./(1L<<20))*(double)rmx_array_size(rm));
361 greg 2.65 return(0);
362     }
363     for (i = 0; i < rm->nrows; i++)
364     if (!rmx_load_row(rmx_lval(rm,i,0), rm, fp))
365     return(0);
366     return(1);
367     }
368    
369 greg 2.1 /* Load matrix from supported file type */
370     RMATRIX *
371 greg 2.46 rmx_load(const char *inspec, RMPref rmp)
372 greg 2.1 {
373 greg 2.46 FILE *fp;
374 greg 2.1 RMATRIX *dnew;
375 greg 2.62 int ok;
376 greg 2.1
377 greg 2.47 if (!inspec)
378     inspec = stdin_name;
379     else if (!*inspec)
380 greg 2.46 return(NULL);
381 greg 2.62 if (inspec == stdin_name) /* reading from stdin? */
382 greg 2.46 fp = stdin;
383 greg 2.62 else if (inspec[0] == '!')
384     fp = popen(inspec+1, "r");
385 greg 2.84 else { /* check suffix */
386     const char *sp = strrchr(inspec, '.');
387     if (sp > inspec && !strcasecmp(sp+1, "XML")) { /* BSDF? */
388 greg 2.71 CMATRIX *cm = rmp==RMPnone ? (CMATRIX *)NULL :
389     rmp==RMPtrans ? cm_loadBTDF(inspec) :
390 greg 2.46 cm_loadBRDF(inspec, rmp==RMPreflB) ;
391 greg 2.33 if (!cm)
392 greg 2.1 return(NULL);
393     dnew = rmx_from_cmatrix(cm);
394     cm_free(cm);
395 greg 2.18 dnew->dtype = DTascii;
396 greg 2.62 return(dnew); /* return here */
397     } /* else open it ourselves */
398     fp = fopen(inspec, "r");
399 greg 2.1 }
400 greg 2.77 if (!fp) {
401     fprintf(stderr, "Cannot open for reading: %s\n", inspec);
402 greg 2.62 return(NULL);
403 greg 2.77 }
404 greg 2.1 #ifdef getc_unlocked
405     flockfile(fp);
406     #endif
407 greg 2.67 SET_FILE_BINARY(fp); /* load header info */
408 greg 2.63 if (!rmx_load_header(dnew = rmx_new(0,0,3), fp)) {
409 greg 2.62 fprintf(stderr, "Bad header in: %s\n", inspec);
410     if (inspec[0] == '!') pclose(fp);
411     else fclose(fp);
412     rmx_free(dnew);
413 greg 2.1 return(NULL);
414     }
415 greg 2.62 ok = rmx_load_data(dnew, fp); /* allocate & load data */
416    
417     if (fp != stdin) { /* close input stream */
418 greg 2.13 if (inspec[0] == '!')
419     pclose(fp);
420     else
421     fclose(fp);
422     }
423     #ifdef getc_unlocked
424     else
425     funlockfile(fp);
426     #endif
427 greg 2.62 if (!ok) { /* load failure? */
428     fprintf(stderr, "Error loading data from: %s\n", inspec);
429     rmx_free(dnew);
430     return(NULL);
431     }
432 greg 2.58 /* undo exposure? */
433 greg 2.60 if ((dnew->cexp[0] != 1.f) |
434 greg 2.58 (dnew->cexp[1] != 1.f) | (dnew->cexp[2] != 1.f)) {
435 greg 2.86 double cmlt[MAXCOMP];
436 greg 2.60 int i;
437 greg 2.86 if (dnew->ncomp > MAXCOMP) {
438 greg 2.62 fprintf(stderr, "Excess spectral components in: %s\n",
439     inspec);
440     rmx_free(dnew);
441     return(NULL);
442     }
443 greg 2.81 cmlt[0] = 1./dnew->cexp[0];
444     cmlt[1] = 1./dnew->cexp[1];
445     cmlt[2] = 1./dnew->cexp[2];
446 greg 2.60 for (i = dnew->ncomp; i-- > 3; )
447 greg 2.81 cmlt[i] = cmlt[1]; /* XXX hack! */
448 greg 2.58 rmx_scale(dnew, cmlt);
449     setcolor(dnew->cexp, 1.f, 1.f, 1.f);
450     }
451 greg 2.1 return(dnew);
452     }
453    
454     static int
455 greg 2.82 rmx_write_ascii(const rmx_dtype *dp, int nc, int len, FILE *fp)
456 greg 2.1 {
457 greg 2.67 while (len-- > 0) {
458     int k = nc;
459 greg 2.72 while (k-- > 0)
460 greg 2.67 fprintf(fp, " %.7e", *dp++);
461 greg 2.1 fputc('\t', fp);
462     }
463 greg 2.67 return(fputc('\n', fp) != EOF);
464 greg 2.1 }
465    
466     static int
467 greg 2.82 rmx_write_float(const rmx_dtype *dp, int len, FILE *fp)
468 greg 2.1 {
469 greg 2.67 float val;
470 greg 2.1
471 greg 2.67 while (len--) {
472     val = *dp++;
473     if (putbinary(&val, sizeof(float), 1, fp) != 1)
474     return(0);
475 greg 2.1 }
476     return(1);
477     }
478    
479     static int
480 greg 2.82 rmx_write_rgbe(const rmx_dtype *dp, int nc, int len, FILE *fp)
481 greg 2.1 {
482 greg 2.67 COLR *scan;
483     int j;
484 greg 2.1
485 greg 2.67 if ((nc != 1) & (nc != 3)) return(0);
486     scan = (COLR *)tempbuffer(sizeof(COLR)*len);
487     if (!scan) return(0);
488 greg 2.1
489 greg 2.67 for (j = 0; j < len; j++, dp += nc)
490     if (nc == 1)
491 greg 2.54 setcolr(scan[j], dp[0], dp[0], dp[0]);
492     else
493     setcolr(scan[j], dp[0], dp[1], dp[2]);
494 greg 2.67
495     return(fwritecolrs(scan, len, fp) >= 0);
496 greg 2.1 }
497    
498 greg 2.60 static int
499 greg 2.82 rmx_write_spec(const rmx_dtype *dp, int nc, int len, FILE *fp)
500 greg 2.60 {
501 greg 2.86 COLRV *scan;
502     COLORV scol[MAXCOMP];
503 greg 2.67 int j, k;
504 greg 2.60
505 greg 2.86 if ((nc < 3) | (nc > MAXCOMP)) return(0);
506     scan = (COLRV *)tempbuffer((nc+1)*len);
507 greg 2.67 if (!scan) return(0);
508 greg 2.78 for (j = 0; j < len; j++, dp += nc) {
509 greg 2.67 for (k = nc; k--; )
510 greg 2.60 scol[k] = dp[k];
511 greg 2.67 scolor2scolr(scan+j*(nc+1), scol, nc);
512 greg 2.60 }
513 greg 2.67 return(fwritescolrs(scan, nc, len, fp) >= 0);
514 greg 2.60 }
515    
516 greg 2.48 /* Check if CIE XYZ primaries were specified */
517     static int
518     findCIEprims(const char *info)
519     {
520     RGBPRIMS prims;
521    
522     if (!info)
523     return(0);
524     info = strstr(info, PRIMARYSTR);
525     if (!info || !primsval(prims, info))
526     return(0);
527    
528     return((prims[RED][CIEX] > .99) & (prims[RED][CIEY] < .01) &&
529     (prims[GRN][CIEX] < .01) & (prims[GRN][CIEY] > .99) &&
530     (prims[BLU][CIEX] < .01) & (prims[BLU][CIEY] < .01));
531     }
532    
533 greg 2.67 /* Finish writing header data with resolution and format, returning type used */
534 greg 2.10 int
535 greg 2.67 rmx_write_header(const RMATRIX *rm, int dtype, FILE *fp)
536 greg 2.1 {
537 greg 2.70 if (!rm | !fp || rm->ncols <= 0)
538 greg 2.1 return(0);
539 greg 2.67 if (rm->info)
540 greg 2.5 fputs(rm->info, fp);
541 greg 2.6 if (dtype == DTfromHeader)
542     dtype = rm->dtype;
543 greg 2.48 else if (dtype == DTrgbe && (rm->dtype == DTxyze ||
544     findCIEprims(rm->info)))
545 greg 2.6 dtype = DTxyze;
546 greg 2.9 else if ((dtype == DTxyze) & (rm->dtype == DTrgbe))
547 greg 2.6 dtype = DTrgbe;
548 greg 2.75 if ((dtype < DTspec) & (rm->ncomp > 3))
549     dtype = DTspec;
550     else if ((dtype == DTspec) & (rm->ncomp <= 3))
551 greg 2.68 return(0);
552 greg 2.67
553 greg 2.68 if (dtype == DTascii) /* set file type (WINDOWS) */
554 greg 2.67 SET_FILE_TEXT(fp);
555     else
556     SET_FILE_BINARY(fp);
557 greg 2.60 /* write exposure? */
558     if (rm->ncomp == 3 && (rm->cexp[RED] != rm->cexp[GRN]) |
559     (rm->cexp[GRN] != rm->cexp[BLU]))
560     fputcolcor(rm->cexp, fp);
561     else if (rm->cexp[GRN] != 1.f)
562     fputexpos(rm->cexp[GRN], fp);
563 greg 2.68 /* matrix size? */
564     if ((dtype > DTspec) | (rm->nrows <= 0)) {
565     if (rm->nrows > 0)
566 greg 2.60 fprintf(fp, "NROWS=%d\n", rm->nrows);
567 greg 2.68 fprintf(fp, "NCOLS=%d\n", rm->ncols);
568     }
569     if (dtype >= DTspec) { /* # components & split? */
570 greg 2.60 fputncomp(rm->ncomp, fp);
571 greg 2.74 if (rm->ncomp > 3 &&
572     memcmp(rm->wlpart, WLPART, sizeof(WLPART)))
573 greg 2.64 fputwlsplit(rm->wlpart, fp);
574 greg 2.54 } else if ((rm->ncomp != 3) & (rm->ncomp != 1))
575     return(0); /* wrong # components */
576 greg 2.35 if ((dtype == DTfloat) | (dtype == DTdouble))
577     fputendian(fp); /* important to record */
578 greg 2.49 fputformat(cm_fmt_id[dtype], fp);
579 greg 2.64 fputc('\n', fp); /* end of header */
580 greg 2.68 if ((dtype <= DTspec) & (rm->nrows > 0))
581 greg 2.67 fprtresolu(rm->ncols, rm->nrows, fp);
582     return(dtype);
583     }
584    
585     /* Write out matrix data (usually by row) */
586     int
587 greg 2.82 rmx_write_data(const rmx_dtype *dp, int nc, int len, int dtype, FILE *fp)
588 greg 2.67 {
589     switch (dtype) {
590 greg 2.1 case DTascii:
591 greg 2.67 return(rmx_write_ascii(dp, nc, len, fp));
592 greg 2.1 case DTfloat:
593 greg 2.67 return(rmx_write_float(dp, nc*len, fp));
594 greg 2.80 case DTrmx_native:
595 greg 2.67 return(putbinary(dp, sizeof(*dp)*nc, len, fp) == len);
596 greg 2.1 case DTrgbe:
597     case DTxyze:
598 greg 2.67 return(rmx_write_rgbe(dp, nc, len, fp));
599 greg 2.60 case DTspec:
600 greg 2.67 return(rmx_write_spec(dp, nc, len, fp));
601     }
602     return(0);
603     }
604    
605     /* Write matrix using file format indicated by dtype */
606     int
607     rmx_write(const RMATRIX *rm, int dtype, FILE *fp)
608     {
609     int ok = 0;
610     int i;
611     /* complete header */
612     dtype = rmx_write_header(rm, dtype, fp);
613     if (dtype <= 0)
614 greg 2.1 return(0);
615 greg 2.67 #ifdef getc_unlocked
616     flockfile(fp);
617     #endif
618 greg 2.80 if (dtype == DTrmx_native) /* write all at once? */
619 greg 2.67 ok = rmx_write_data(rm->mtx, rm->ncomp,
620     rm->nrows*rm->ncols, dtype, fp);
621     else /* else row by row */
622     for (i = 0; i < rm->nrows; i++) {
623     ok = rmx_write_data(rmx_val(rm,i,0), rm->ncomp,
624     rm->ncols, dtype, fp);
625     if (!ok) break;
626     }
627    
628     if (ok) ok = (fflush(fp) == 0);
629 greg 2.17 #ifdef getc_unlocked
630     funlockfile(fp);
631     #endif
632 greg 2.62 if (!ok) fputs("Error writing matrix\n", stderr);
633 greg 2.10 return(ok);
634 greg 2.1 }
635    
636     /* Allocate and assign square identity matrix with n components */
637     RMATRIX *
638     rmx_identity(const int dim, const int n)
639     {
640     RMATRIX *rid = rmx_alloc(dim, dim, n);
641 greg 2.12 int i, k;
642 greg 2.1
643 greg 2.33 if (!rid)
644 greg 2.1 return(NULL);
645 greg 2.79 memset(rid->mtx, 0, rmx_array_size(rid));
646 greg 2.53 for (i = dim; i--; ) {
647 greg 2.82 rmx_dtype *dp = rmx_lval(rid,i,i);
648 greg 2.12 for (k = n; k--; )
649 greg 2.53 dp[k] = 1.;
650     }
651 greg 2.1 return(rid);
652     }
653    
654 greg 2.69 /* Duplicate the given matrix (may be unallocated) */
655 greg 2.1 RMATRIX *
656     rmx_copy(const RMATRIX *rm)
657     {
658     RMATRIX *dnew;
659    
660 greg 2.69 if (!rm)
661 greg 2.1 return(NULL);
662 greg 2.69 dnew = rmx_new(rm->nrows, rm->ncols, rm->ncomp);
663 greg 2.33 if (!dnew)
664 greg 2.1 return(NULL);
665 greg 2.69 if (rm->mtx) {
666     if (!rmx_prepare(dnew)) {
667     rmx_free(dnew);
668     return(NULL);
669     }
670 greg 2.79 memcpy(dnew->mtx, rm->mtx, rmx_array_size(dnew));
671 greg 2.69 }
672 greg 2.5 rmx_addinfo(dnew, rm->info);
673 greg 2.6 dnew->dtype = rm->dtype;
674 greg 2.60 copycolor(dnew->cexp, rm->cexp);
675     memcpy(dnew->wlpart, rm->wlpart, sizeof(dnew->wlpart));
676 greg 2.1 return(dnew);
677     }
678    
679 greg 2.73 /* Replace data in first matrix with data from second */
680     int
681     rmx_transfer_data(RMATRIX *rdst, RMATRIX *rsrc, int dometa)
682     {
683     if (!rdst | !rsrc || (rdst->nrows != rsrc->nrows) |
684     (rdst->ncols != rsrc->ncols) |
685     (rdst->ncomp != rsrc->ncomp))
686     return(0);
687    
688     if (dometa) { /* transfer everything? */
689     rmx_reset(rdst);
690     *rdst = *rsrc;
691     rsrc->info = NULL; rsrc->mapped = NULL; rsrc->mtx = NULL;
692     return(1);
693     }
694 greg 2.76 #ifdef MAP_FILE /* just matrix data -- leave metadata */
695 greg 2.81 if (rdst->mapped)
696     munmap(rdst->mapped, rmx_mapped_size(rdst));
697     else
698 greg 2.76 #endif
699 greg 2.83 if (rdst->pflags & RMF_FREEMEM) {
700 greg 2.81 free(rdst->mtx);
701 greg 2.83 rdst->pflags &= ~RMF_FREEMEM;
702     }
703 greg 2.76 rdst->mapped = rsrc->mapped;
704 greg 2.73 rdst->mtx = rsrc->mtx;
705 greg 2.83 rdst->pflags |= rsrc->pflags & RMF_FREEMEM;
706 greg 2.76 rsrc->mapped = NULL; rsrc->mtx = NULL;
707 greg 2.73 return(1);
708     }
709    
710 greg 2.87 /* Transpose the given matrix */
711     int
712     rmx_transpose(RMATRIX *rm)
713 greg 2.1 {
714 greg 2.87 RMATRIX dnew;
715 greg 2.55 int i, j;
716 greg 2.1
717 greg 2.87 if (!rm || !rm->mtx | (rm->ncomp > MAXCOMP))
718 greg 2.1 return(0);
719 greg 2.87 if (rm->info)
720     rmx_addinfo(rm, "Transposed rows and columns\n");
721     if ((rm->nrows == 1) | (rm->ncols == 1)) { /* vector? */
722     j = rm->ncols;
723     rm->ncols = rm->nrows;
724     rm->nrows = j;
725     return(1);
726 greg 2.31 }
727 greg 2.87 if (rm->nrows == rm->ncols) { /* square matrix case */
728     rmx_dtype val[MAXCOMP];
729     for (j = rm->ncols; j--; )
730     for (i = rm->nrows; i--; ) {
731     if (i == j) continue;
732     memcpy(val, rmx_val(rm,i,j),
733     sizeof(rmx_dtype)*rm->ncomp);
734     memcpy(rmx_lval(rm,i,j), rmx_val(rm,j,i),
735     sizeof(rmx_dtype)*rm->ncomp);
736     memcpy(rmx_val(rm,j,i), val,
737     sizeof(rmx_dtype)*rm->ncomp);
738     }
739     return(1);
740 greg 2.5 }
741 greg 2.87 memset(&dnew, 0, sizeof(dnew));
742     dnew.ncols = rm->nrows; dnew.nrows = rm->ncols;
743     dnew.ncomp = rm->ncomp;
744     if (!rmx_prepare(&dnew))
745     return(0);
746     rmx_addinfo(&dnew, rm->info);
747     dnew.dtype = rm->dtype;
748     copycolor(dnew.cexp, rm->cexp);
749     memcpy(dnew.wlpart, rm->wlpart, sizeof(dnew.wlpart));
750     for (j = dnew.ncols; j--; )
751     for (i = dnew.nrows; i--; )
752     memcpy(rmx_lval(&dnew,i,j), rmx_val(rm,j,i),
753     sizeof(rmx_dtype)*dnew.ncomp);
754     rmx_reset(rm); /* frees memory */
755     *rm = dnew; /* replace w/ transpose */
756     return(1);
757 greg 2.1 }
758    
759     /* Multiply (concatenate) two matrices and allocate the result */
760     RMATRIX *
761     rmx_multiply(const RMATRIX *m1, const RMATRIX *m2)
762     {
763     RMATRIX *mres;
764     int i, j, k, h;
765    
766 greg 2.67 if (!m1 | !m2 || !m1->mtx | !m2->mtx |
767     (m1->ncomp != m2->ncomp) | (m1->ncols != m2->nrows))
768 greg 2.1 return(NULL);
769     mres = rmx_alloc(m1->nrows, m2->ncols, m1->ncomp);
770 greg 2.33 if (!mres)
771 greg 2.1 return(NULL);
772 greg 2.6 i = rmx_newtype(m1->dtype, m2->dtype);
773     if (i)
774     mres->dtype = i;
775     else
776     rmx_addinfo(mres, rmx_mismatch_warn);
777 greg 2.1 for (i = mres->nrows; i--; )
778     for (j = mres->ncols; j--; )
779 greg 2.8 for (k = mres->ncomp; k--; ) {
780 greg 2.82 rmx_dtype d = 0;
781 greg 2.8 for (h = m1->ncols; h--; )
782 greg 2.62 d += rmx_val(m1,i,h)[k] * rmx_val(m2,h,j)[k];
783 greg 2.53 rmx_lval(mres,i,j)[k] = d;
784 greg 2.1 }
785     return(mres);
786     }
787    
788 greg 2.25 /* Element-wise multiplication (or division) of m2 into m1 */
789     int
790     rmx_elemult(RMATRIX *m1, const RMATRIX *m2, int divide)
791     {
792     int zeroDivides = 0;
793     int i, j, k;
794    
795 greg 2.67 if (!m1 | !m2 || !m1->mtx | !m2->mtx |
796     (m1->ncols != m2->ncols) | (m1->nrows != m2->nrows))
797 greg 2.25 return(0);
798     if ((m2->ncomp > 1) & (m2->ncomp != m1->ncomp))
799     return(0);
800     i = rmx_newtype(m1->dtype, m2->dtype);
801     if (i)
802     m1->dtype = i;
803     else
804     rmx_addinfo(m1, rmx_mismatch_warn);
805     for (i = m1->nrows; i--; )
806     for (j = m1->ncols; j--; )
807     if (divide) {
808 greg 2.82 rmx_dtype d;
809 greg 2.25 if (m2->ncomp == 1) {
810 greg 2.62 d = rmx_val(m2,i,j)[0];
811 greg 2.25 if (d == 0) {
812     ++zeroDivides;
813     for (k = m1->ncomp; k--; )
814 greg 2.53 rmx_lval(m1,i,j)[k] = 0;
815 greg 2.25 } else {
816     d = 1./d;
817     for (k = m1->ncomp; k--; )
818 greg 2.53 rmx_lval(m1,i,j)[k] *= d;
819 greg 2.25 }
820     } else
821     for (k = m1->ncomp; k--; ) {
822 greg 2.62 d = rmx_val(m2,i,j)[k];
823 greg 2.25 if (d == 0) {
824     ++zeroDivides;
825 greg 2.53 rmx_lval(m1,i,j)[k] = 0;
826 greg 2.25 } else
827 greg 2.53 rmx_lval(m1,i,j)[k] /= d;
828 greg 2.25 }
829     } else {
830     if (m2->ncomp == 1) {
831 greg 2.82 const rmx_dtype d = rmx_val(m2,i,j)[0];
832 greg 2.25 for (k = m1->ncomp; k--; )
833 greg 2.53 rmx_lval(m1,i,j)[k] *= d;
834 greg 2.25 } else
835     for (k = m1->ncomp; k--; )
836 greg 2.62 rmx_lval(m1,i,j)[k] *= rmx_val(m2,i,j)[k];
837 greg 2.25 }
838     if (zeroDivides) {
839 greg 2.34 rmx_addinfo(m1, "WARNING: zero divide(s) corrupted results\n");
840 greg 2.25 errno = ERANGE;
841     }
842     return(1);
843     }
844    
845 greg 2.1 /* Sum second matrix into first, applying scale factor beforehand */
846     int
847     rmx_sum(RMATRIX *msum, const RMATRIX *madd, const double sf[])
848     {
849     double *mysf = NULL;
850     int i, j, k;
851    
852 greg 2.67 if (!msum | !madd || !msum->mtx | !madd->mtx |
853 greg 2.1 (msum->nrows != madd->nrows) |
854     (msum->ncols != madd->ncols) |
855     (msum->ncomp != madd->ncomp))
856     return(0);
857 greg 2.33 if (!sf) {
858 greg 2.1 mysf = (double *)malloc(sizeof(double)*msum->ncomp);
859 greg 2.33 if (!mysf)
860 greg 2.1 return(0);
861     for (k = msum->ncomp; k--; )
862     mysf[k] = 1;
863     sf = mysf;
864     }
865 greg 2.6 i = rmx_newtype(msum->dtype, madd->dtype);
866     if (i)
867     msum->dtype = i;
868     else
869     rmx_addinfo(msum, rmx_mismatch_warn);
870 greg 2.1 for (i = msum->nrows; i--; )
871 greg 2.53 for (j = msum->ncols; j--; ) {
872 greg 2.82 const rmx_dtype *da = rmx_val(madd,i,j);
873     rmx_dtype *ds = rmx_lval(msum,i,j);
874 greg 2.1 for (k = msum->ncomp; k--; )
875 greg 2.53 ds[k] += sf[k] * da[k];
876     }
877 greg 2.33 if (mysf)
878     free(mysf);
879 greg 2.1 return(1);
880     }
881    
882     /* Scale the given matrix by the indicated scalar component vector */
883     int
884     rmx_scale(RMATRIX *rm, const double sf[])
885     {
886     int i, j, k;
887    
888 greg 2.67 if (!rm | !sf || !rm->mtx)
889 greg 2.1 return(0);
890     for (i = rm->nrows; i--; )
891 greg 2.53 for (j = rm->ncols; j--; ) {
892 greg 2.82 rmx_dtype *dp = rmx_lval(rm,i,j);
893 greg 2.1 for (k = rm->ncomp; k--; )
894 greg 2.53 dp[k] *= sf[k];
895     }
896 greg 2.28 if (rm->info)
897     rmx_addinfo(rm, "Applied scalar\n");
898 greg 2.60 /* XXX: should record as exposure for COLR and SCOLR types? */
899 greg 2.1 return(1);
900     }
901    
902     /* Allocate new matrix and apply component transformation */
903     RMATRIX *
904     rmx_transform(const RMATRIX *msrc, int n, const double cmat[])
905     {
906     int i, j, ks, kd;
907     RMATRIX *dnew;
908    
909 greg 2.67 if (!msrc | (n <= 0) | !cmat || !msrc->mtx)
910 greg 2.1 return(NULL);
911     dnew = rmx_alloc(msrc->nrows, msrc->ncols, n);
912 greg 2.33 if (!dnew)
913 greg 2.1 return(NULL);
914 greg 2.28 if (msrc->info) {
915     char buf[128];
916 greg 2.38 sprintf(buf, "Applied %dx%d component transform\n",
917 greg 2.28 dnew->ncomp, msrc->ncomp);
918     rmx_addinfo(dnew, msrc->info);
919     rmx_addinfo(dnew, buf);
920     }
921 greg 2.6 dnew->dtype = msrc->dtype;
922 greg 2.1 for (i = dnew->nrows; i--; )
923 greg 2.53 for (j = dnew->ncols; j--; ) {
924 greg 2.82 const rmx_dtype *ds = rmx_val(msrc,i,j);
925 greg 2.1 for (kd = dnew->ncomp; kd--; ) {
926 greg 2.82 rmx_dtype d = 0;
927 greg 2.1 for (ks = msrc->ncomp; ks--; )
928 greg 2.53 d += cmat[kd*msrc->ncomp + ks] * ds[ks];
929     rmx_lval(dnew,i,j)[kd] = d;
930 greg 2.1 }
931 greg 2.53 }
932 greg 2.1 return(dnew);
933     }
934    
935     /* Convert a color matrix to newly allocated RMATRIX buffer */
936     RMATRIX *
937     rmx_from_cmatrix(const CMATRIX *cm)
938     {
939     int i, j;
940     RMATRIX *dnew;
941    
942 greg 2.33 if (!cm)
943 greg 2.1 return(NULL);
944     dnew = rmx_alloc(cm->nrows, cm->ncols, 3);
945 greg 2.33 if (!dnew)
946 greg 2.1 return(NULL);
947 greg 2.6 dnew->dtype = DTfloat;
948 greg 2.1 for (i = dnew->nrows; i--; )
949     for (j = dnew->ncols; j--; ) {
950     const COLORV *cv = cm_lval(cm,i,j);
951 greg 2.82 rmx_dtype *dp = rmx_lval(dnew,i,j);
952 greg 2.53 dp[0] = cv[0];
953     dp[1] = cv[1];
954     dp[2] = cv[2];
955 greg 2.1 }
956     return(dnew);
957     }
958    
959     /* Convert general matrix to newly allocated CMATRIX buffer */
960     CMATRIX *
961     cm_from_rmatrix(const RMATRIX *rm)
962     {
963     int i, j;
964     CMATRIX *cnew;
965    
966 greg 2.86 if (!rm || !rm->mtx | (rm->ncomp == 2) | (rm->ncomp > MAXCOMP))
967 greg 2.1 return(NULL);
968     cnew = cm_alloc(rm->nrows, rm->ncols);
969 greg 2.33 if (!cnew)
970 greg 2.1 return(NULL);
971     for (i = cnew->nrows; i--; )
972     for (j = cnew->ncols; j--; ) {
973 greg 2.82 const rmx_dtype *dp = rmx_val(rm,i,j);
974 greg 2.53 COLORV *cv = cm_lval(cnew,i,j);
975 greg 2.60 switch (rm->ncomp) {
976     case 3:
977     setcolor(cv, dp[0], dp[1], dp[2]);
978     break;
979     case 1:
980 greg 2.53 setcolor(cv, dp[0], dp[0], dp[0]);
981 greg 2.60 break;
982     default: {
983 greg 2.86 COLORV scol[MAXCOMP];
984 greg 2.60 int k;
985     for (k = rm->ncomp; k--; )
986     scol[k] = dp[k];
987     scolor2color(cv, scol, rm->ncomp, rm->wlpart);
988     } break;
989     }
990 greg 2.1 }
991     return(cnew);
992     }