8 |
|
*/ |
9 |
|
|
10 |
|
#include <ctype.h> |
11 |
+ |
#include "platform.h" |
12 |
|
#include "standard.h" |
13 |
+ |
#include "cmatrix.h" |
14 |
|
#include "platform.h" |
13 |
– |
#include "color.h" |
15 |
|
#include "resolu.h" |
15 |
– |
#include "bsdf.h" |
16 |
|
|
17 |
|
char *progname; /* global argv[0] */ |
18 |
|
|
19 |
< |
/* Data types for file loading */ |
20 |
< |
enum {DTfromHeader, DTascii, DTfloat, DTdouble, DTrgbe, DTxyze}; |
21 |
< |
|
22 |
< |
/* A color coefficient matrix -- vectors have ncols==1 */ |
23 |
< |
typedef struct { |
24 |
< |
int nrows, ncols; |
25 |
< |
COLORV cmem[3]; /* extends struct */ |
26 |
< |
} CMATRIX; |
27 |
< |
|
28 |
< |
#define COLSPEC (sizeof(COLORV)==sizeof(float) ? "%f %f %f" : "%lf %lf %lf") |
29 |
< |
|
30 |
< |
#define cm_lval(cm,r,c) ((cm)->cmem + 3*((r)*(cm)->ncols + (c))) |
31 |
< |
|
32 |
< |
#define cv_lval(cm,i) ((cm)->cmem + 3*(i)) |
33 |
< |
|
34 |
< |
/* Allocate a color coefficient matrix */ |
35 |
< |
static CMATRIX * |
36 |
< |
cm_alloc(int nrows, int ncols) |
37 |
< |
{ |
38 |
< |
CMATRIX *cm; |
39 |
< |
|
40 |
< |
if ((nrows <= 0) | (ncols <= 0)) |
41 |
< |
error(USER, "attempt to create empty matrix"); |
42 |
< |
cm = (CMATRIX *)malloc(sizeof(CMATRIX) + |
43 |
< |
3*sizeof(COLORV)*(nrows*ncols - 1)); |
44 |
< |
if (cm == NULL) |
45 |
< |
error(SYSTEM, "out of memory in cm_alloc()"); |
46 |
< |
cm->nrows = nrows; |
47 |
< |
cm->ncols = ncols; |
48 |
< |
return(cm); |
49 |
< |
} |
50 |
< |
|
51 |
< |
#define cm_free(cm) free(cm) |
52 |
< |
|
53 |
< |
/* Resize color coefficient matrix */ |
54 |
< |
static CMATRIX * |
55 |
< |
cm_resize(CMATRIX *cm, int nrows) |
56 |
< |
{ |
57 |
< |
if (nrows == cm->nrows) |
58 |
< |
return(cm); |
59 |
< |
if (nrows <= 0) { |
60 |
< |
cm_free(cm); |
61 |
< |
return(NULL); |
62 |
< |
} |
63 |
< |
cm = (CMATRIX *)realloc(cm, sizeof(CMATRIX) + |
64 |
< |
3*sizeof(COLORV)*(nrows*cm->ncols - 1)); |
65 |
< |
if (cm == NULL) |
66 |
< |
error(SYSTEM, "out of memory in cm_resize()"); |
67 |
< |
cm->nrows = nrows; |
68 |
< |
return(cm); |
69 |
< |
} |
70 |
< |
|
71 |
< |
/* Load header to obtain data type */ |
19 |
> |
/* Sum together a set of images and write result to fout */ |
20 |
|
static int |
21 |
< |
getDT(char *s, void *p) |
21 |
> |
sum_images(const char *fspec, const CMATRIX *cv, FILE *fout) |
22 |
|
{ |
75 |
– |
char fmt[32]; |
76 |
– |
|
77 |
– |
if (formatval(fmt, s)) { |
78 |
– |
if (!strcmp(fmt, "ascii")) |
79 |
– |
*((int *)p) = DTascii; |
80 |
– |
else if (!strcmp(fmt, "float")) |
81 |
– |
*((int *)p) = DTfloat; |
82 |
– |
else if (!strcmp(fmt, "double")) |
83 |
– |
*((int *)p) = DTdouble; |
84 |
– |
else if (!strcmp(fmt, COLRFMT)) |
85 |
– |
*((int *)p) = DTrgbe; |
86 |
– |
else if (!strcmp(fmt, CIEFMT)) |
87 |
– |
*((int *)p) = DTxyze; |
88 |
– |
} |
89 |
– |
return(0); |
90 |
– |
} |
91 |
– |
|
92 |
– |
static int |
93 |
– |
getDTfromHeader(FILE *fp) |
94 |
– |
{ |
95 |
– |
int dt = DTfromHeader; |
96 |
– |
|
97 |
– |
if (getheader(fp, getDT, &dt) < 0) |
98 |
– |
error(SYSTEM, "header read error"); |
99 |
– |
if (dt == DTfromHeader) |
100 |
– |
error(USER, "missing data format in header"); |
101 |
– |
return(dt); |
102 |
– |
} |
103 |
– |
|
104 |
– |
/* Allocate and load a matrix from the given file (or stdin if NULL) */ |
105 |
– |
static CMATRIX * |
106 |
– |
cm_load(const char *fname, int nrows, int ncols, int dtype) |
107 |
– |
{ |
108 |
– |
CMATRIX *cm; |
109 |
– |
FILE *fp = stdin; |
110 |
– |
|
111 |
– |
if (ncols <= 0) |
112 |
– |
error(USER, "Non-positive number of columns"); |
113 |
– |
if (fname == NULL) |
114 |
– |
fname = "<stdin>"; |
115 |
– |
else if ((fp = fopen(fname, "r")) == NULL) { |
116 |
– |
sprintf(errmsg, "cannot open file '%s'", fname); |
117 |
– |
error(SYSTEM, errmsg); |
118 |
– |
} |
119 |
– |
if (dtype != DTascii) |
120 |
– |
SET_FILE_BINARY(fp); |
121 |
– |
if (dtype == DTfromHeader) |
122 |
– |
dtype = getDTfromHeader(fp); |
123 |
– |
switch (dtype) { |
124 |
– |
case DTascii: |
125 |
– |
case DTfloat: |
126 |
– |
case DTdouble: |
127 |
– |
break; |
128 |
– |
default: |
129 |
– |
error(USER, "unexpected data type in cm_load()"); |
130 |
– |
} |
131 |
– |
if (nrows <= 0) { /* don't know length? */ |
132 |
– |
int guessrows = 147; /* usually big enough */ |
133 |
– |
if ((dtype != DTascii) & (fp != stdin)) { |
134 |
– |
long startpos = ftell(fp); |
135 |
– |
if (fseek(fp, 0L, SEEK_END) == 0) { |
136 |
– |
long endpos = ftell(fp); |
137 |
– |
long elemsiz = 3*(dtype==DTfloat ? |
138 |
– |
sizeof(float) : sizeof(double)); |
139 |
– |
|
140 |
– |
if ((endpos - startpos) % (ncols*elemsiz)) { |
141 |
– |
sprintf(errmsg, |
142 |
– |
"improper length for binary file '%s'", |
143 |
– |
fname); |
144 |
– |
error(USER, errmsg); |
145 |
– |
} |
146 |
– |
guessrows = (endpos - startpos)/(ncols*elemsiz); |
147 |
– |
if (fseek(fp, startpos, SEEK_SET) < 0) { |
148 |
– |
sprintf(errmsg, |
149 |
– |
"fseek() error on file '%s'", |
150 |
– |
fname); |
151 |
– |
error(SYSTEM, errmsg); |
152 |
– |
} |
153 |
– |
nrows = guessrows; /* we're confident */ |
154 |
– |
} |
155 |
– |
} |
156 |
– |
cm = cm_alloc(guessrows, ncols); |
157 |
– |
} else |
158 |
– |
cm = cm_alloc(nrows, ncols); |
159 |
– |
if (cm == NULL) |
160 |
– |
return(NULL); |
161 |
– |
if (dtype == DTascii) { /* read text file */ |
162 |
– |
int maxrow = (nrows > 0 ? nrows : 32000); |
163 |
– |
int r, c; |
164 |
– |
for (r = 0; r < maxrow; r++) { |
165 |
– |
if (r >= cm->nrows) /* need more space? */ |
166 |
– |
cm = cm_resize(cm, 2*cm->nrows); |
167 |
– |
for (c = 0; c < ncols; c++) { |
168 |
– |
COLORV *cv = cm_lval(cm,r,c); |
169 |
– |
if (fscanf(fp, COLSPEC, cv, cv+1, cv+2) != 3) |
170 |
– |
if ((nrows <= 0) & (r > 0) & !c) { |
171 |
– |
cm = cm_resize(cm, maxrow=r); |
172 |
– |
break; |
173 |
– |
} else |
174 |
– |
goto EOFerror; |
175 |
– |
} |
176 |
– |
} |
177 |
– |
while ((c = getc(fp)) != EOF) |
178 |
– |
if (!isspace(c)) { |
179 |
– |
sprintf(errmsg, |
180 |
– |
"unexpected data at end of ascii file %s", |
181 |
– |
fname); |
182 |
– |
error(WARNING, errmsg); |
183 |
– |
break; |
184 |
– |
} |
185 |
– |
} else { /* read binary file */ |
186 |
– |
if (sizeof(COLORV) == (dtype==DTfloat ? sizeof(float) : |
187 |
– |
sizeof(double))) { |
188 |
– |
int nread = 0; |
189 |
– |
do { /* read all we can */ |
190 |
– |
nread += fread(cm->cmem + 3*nread, |
191 |
– |
3*sizeof(COLORV), |
192 |
– |
cm->nrows*cm->ncols - nread, |
193 |
– |
fp); |
194 |
– |
if (nrows <= 0) { /* unknown length */ |
195 |
– |
if (nread == cm->nrows*cm->ncols) |
196 |
– |
/* need more space? */ |
197 |
– |
cm = cm_resize(cm, 2*cm->nrows); |
198 |
– |
else if (nread && !(nread % cm->ncols)) |
199 |
– |
/* seem to be done */ |
200 |
– |
cm = cm_resize(cm, nread/cm->ncols); |
201 |
– |
else /* ended mid-row */ |
202 |
– |
goto EOFerror; |
203 |
– |
} else if (nread < cm->nrows*cm->ncols) |
204 |
– |
goto EOFerror; |
205 |
– |
} while (nread < cm->nrows*cm->ncols); |
206 |
– |
|
207 |
– |
} else if (dtype == DTdouble) { |
208 |
– |
double dc[3]; /* load from double */ |
209 |
– |
COLORV *cvp = cm->cmem; |
210 |
– |
int n = nrows*ncols; |
211 |
– |
|
212 |
– |
if (n <= 0) |
213 |
– |
goto not_handled; |
214 |
– |
while (n--) { |
215 |
– |
if (fread(dc, sizeof(double), 3, fp) != 3) |
216 |
– |
goto EOFerror; |
217 |
– |
copycolor(cvp, dc); |
218 |
– |
cvp += 3; |
219 |
– |
} |
220 |
– |
} else /* dtype == DTfloat */ { |
221 |
– |
float fc[3]; /* load from float */ |
222 |
– |
COLORV *cvp = cm->cmem; |
223 |
– |
int n = nrows*ncols; |
224 |
– |
|
225 |
– |
if (n <= 0) |
226 |
– |
goto not_handled; |
227 |
– |
while (n--) { |
228 |
– |
if (fread(fc, sizeof(float), 3, fp) != 3) |
229 |
– |
goto EOFerror; |
230 |
– |
copycolor(cvp, fc); |
231 |
– |
cvp += 3; |
232 |
– |
} |
233 |
– |
} |
234 |
– |
if (getc(fp) != EOF) { |
235 |
– |
sprintf(errmsg, |
236 |
– |
"unexpected data at end of binary file %s", |
237 |
– |
fname); |
238 |
– |
error(WARNING, errmsg); |
239 |
– |
} |
240 |
– |
} |
241 |
– |
if (fp != stdin) |
242 |
– |
fclose(fp); |
243 |
– |
return(cm); |
244 |
– |
EOFerror: |
245 |
– |
sprintf(errmsg, "unexpected EOF reading %s", |
246 |
– |
fname); |
247 |
– |
error(USER, errmsg); |
248 |
– |
not_handled: |
249 |
– |
error(INTERNAL, "unhandled data size or length in cm_load()"); |
250 |
– |
return(NULL); /* gratis return */ |
251 |
– |
} |
252 |
– |
|
253 |
– |
/* Multiply two matrices (or a matrix and a vector) and allocate the result*/ |
254 |
– |
static CMATRIX * |
255 |
– |
cm_multiply(const CMATRIX *cm1, const CMATRIX *cm2) |
256 |
– |
{ |
257 |
– |
CMATRIX *cmr; |
258 |
– |
int dr, dc, i; |
259 |
– |
|
260 |
– |
if ((cm1->ncols <= 0) | (cm1->ncols != cm2->nrows)) |
261 |
– |
error(INTERNAL, "matrix dimension mismatch in cm_multiply()"); |
262 |
– |
cmr = cm_alloc(cm1->nrows, cm2->ncols); |
263 |
– |
if (cmr == NULL) |
264 |
– |
return(NULL); |
265 |
– |
for (dr = 0; dr < cmr->nrows; dr++) |
266 |
– |
for (dc = 0; dc < cmr->ncols; dc++) { |
267 |
– |
COLORV *dp = cm_lval(cmr,dr,dc); |
268 |
– |
dp[0] = dp[1] = dp[2] = 0; |
269 |
– |
for (i = 0; i < cm1->ncols; i++) { |
270 |
– |
const COLORV *cp1 = cm_lval(cm1,dr,i); |
271 |
– |
const COLORV *cp2 = cm_lval(cm2,i,dc); |
272 |
– |
dp[0] += cp1[0] * cp2[0]; |
273 |
– |
dp[1] += cp1[1] * cp2[1]; |
274 |
– |
dp[2] += cp1[2] * cp2[2]; |
275 |
– |
} |
276 |
– |
} |
277 |
– |
return(cmr); |
278 |
– |
} |
279 |
– |
|
280 |
– |
/* print out matrix as ASCII text -- no header */ |
281 |
– |
static void |
282 |
– |
cm_print(const CMATRIX *cm, FILE *fp) |
283 |
– |
{ |
284 |
– |
int r, c; |
285 |
– |
const COLORV *mp = cm->cmem; |
286 |
– |
|
287 |
– |
for (r = 0; r < cm->nrows; r++) { |
288 |
– |
for (c = 0; c < cm->ncols; c++, mp += 3) |
289 |
– |
fprintf(fp, "\t%.6e %.6e %.6e", mp[0], mp[1], mp[2]); |
290 |
– |
fputc('\n', fp); |
291 |
– |
} |
292 |
– |
} |
293 |
– |
|
294 |
– |
/* convert a BSDF to our matrix representation */ |
295 |
– |
static CMATRIX * |
296 |
– |
cm_bsdf(const struct BSDF_data *bsdf) |
297 |
– |
{ |
298 |
– |
CMATRIX *cm = cm_alloc(bsdf->nout, bsdf->ninc); |
299 |
– |
int nbadohm = 0; |
300 |
– |
int nneg = 0; |
301 |
– |
int r, c; |
302 |
– |
|
303 |
– |
for (c = 0; c < cm->ncols; c++) { |
304 |
– |
float dom = getBSDF_incohm(bsdf,c); |
305 |
– |
FVECT v; |
306 |
– |
|
307 |
– |
if (dom <= .0) { |
308 |
– |
nbadohm++; |
309 |
– |
continue; |
310 |
– |
} |
311 |
– |
if (!getBSDF_incvec(v,bsdf,c) || v[2] > FTINY) |
312 |
– |
error(USER, "illegal incoming BTDF direction"); |
313 |
– |
dom *= -v[2]; |
314 |
– |
|
315 |
– |
for (r = 0; r < cm->nrows; r++) { |
316 |
– |
float f = BSDF_value(bsdf,c,r); |
317 |
– |
COLORV *mp = cm_lval(cm,r,c); |
318 |
– |
|
319 |
– |
if (f <= .0) { |
320 |
– |
nneg += (f < -FTINY); |
321 |
– |
f = .0f; |
322 |
– |
} |
323 |
– |
mp[0] = mp[1] = mp[2] = f * dom; |
324 |
– |
} |
325 |
– |
} |
326 |
– |
if (nneg || nbadohm) { |
327 |
– |
sprintf(errmsg, |
328 |
– |
"BTDF has %d negatives and %d bad incoming solid angles", |
329 |
– |
nneg, nbadohm); |
330 |
– |
error(WARNING, errmsg); |
331 |
– |
} |
332 |
– |
return(cm); |
333 |
– |
} |
334 |
– |
|
335 |
– |
/* Sum together a set of images and write result to stdout */ |
336 |
– |
static int |
337 |
– |
sum_images(const char *fspec, const CMATRIX *cv, FILE *fp) |
338 |
– |
{ |
23 |
|
int myDT = DTfromHeader; |
24 |
< |
CMATRIX *pmat; |
25 |
< |
COLOR *scanline; |
26 |
< |
int myXR, myYR; |
24 |
> |
COLR *scanline = NULL; |
25 |
> |
CMATRIX *pmat = NULL; |
26 |
> |
int myXR=0, myYR=0; |
27 |
|
int i, y; |
28 |
|
|
29 |
|
if (cv->ncols != 1) |
30 |
|
error(INTERNAL, "expected vector in sum_images()"); |
31 |
|
for (i = 0; i < cv->nrows; i++) { |
32 |
|
const COLORV *scv = cv_lval(cv,i); |
33 |
+ |
int flat_file = 0; |
34 |
|
char fname[1024]; |
35 |
|
FILE *fp; |
36 |
+ |
long data_start; |
37 |
|
int dt, xr, yr; |
38 |
|
COLORV *psp; |
39 |
+ |
char *err; |
40 |
+ |
/* check for zero */ |
41 |
+ |
if ((scv[RED] == 0) & (scv[GRN] == 0) & (scv[BLU] == 0) && |
42 |
+ |
(myDT != DTfromHeader) | (i < cv->nrows-1)) |
43 |
+ |
continue; |
44 |
|
/* open next picture */ |
45 |
|
sprintf(fname, fspec, i); |
46 |
< |
if ((fp = fopen(fname, "r")) == NULL) { |
46 |
> |
if ((fp = fopen(fname, "rb")) == NULL) { |
47 |
|
sprintf(errmsg, "cannot open picture '%s'", fname); |
48 |
|
error(SYSTEM, errmsg); |
49 |
|
} |
50 |
< |
SET_FILE_BINARY(fp); |
51 |
< |
dt = getDTfromHeader(fp); |
50 |
> |
#ifdef getc_unlocked |
51 |
> |
flockfile(fp); |
52 |
> |
#endif |
53 |
> |
dt = DTfromHeader; |
54 |
> |
if ((err = cm_getheader(&dt, NULL, NULL, NULL, NULL, fp)) != NULL) |
55 |
> |
error(USER, err); |
56 |
|
if ((dt != DTrgbe) & (dt != DTxyze) || |
57 |
|
!fscnresolu(&xr, &yr, fp)) { |
58 |
|
sprintf(errmsg, "file '%s' not a picture", fname); |
61 |
|
if (myDT == DTfromHeader) { /* on first one */ |
62 |
|
myDT = dt; |
63 |
|
myXR = xr; myYR = yr; |
64 |
< |
scanline = (COLOR *)malloc(sizeof(COLOR)*myXR); |
64 |
> |
scanline = (COLR *)malloc(sizeof(COLR)*myXR); |
65 |
|
if (scanline == NULL) |
66 |
|
error(SYSTEM, "out of memory in sum_images()"); |
67 |
|
pmat = cm_alloc(myYR, myXR); |
68 |
|
memset(pmat->cmem, 0, sizeof(COLOR)*myXR*myYR); |
69 |
|
/* finish header */ |
70 |
< |
fputformat(myDT==DTrgbe ? COLRFMT : CIEFMT, fp); |
71 |
< |
fputc('\n', fp); |
72 |
< |
fprtresolu(myXR, myYR, fp); |
378 |
< |
fflush(fp); |
70 |
> |
fputformat(cm_fmt_id[myDT], fout); |
71 |
> |
fputc('\n', fout); |
72 |
> |
fflush(fout); |
73 |
|
} else if ((dt != myDT) | (xr != myXR) | (yr != myYR)) { |
74 |
|
sprintf(errmsg, "picture '%s' format/size mismatch", |
75 |
|
fname); |
76 |
|
error(USER, errmsg); |
77 |
|
} |
78 |
+ |
/* flat file check */ |
79 |
+ |
if ((data_start = ftell(fp)) > 0 && fseek(fp, 0L, SEEK_END) == 0) { |
80 |
+ |
flat_file = (ftell(fp) >= data_start + sizeof(COLR)*xr*yr); |
81 |
+ |
if (fseek(fp, data_start, SEEK_SET) < 0) { |
82 |
+ |
sprintf(errmsg, "cannot seek on picture '%s'", fname); |
83 |
+ |
error(SYSTEM, errmsg); |
84 |
+ |
} |
85 |
+ |
} |
86 |
|
psp = pmat->cmem; |
87 |
|
for (y = 0; y < yr; y++) { /* read it in */ |
88 |
+ |
COLOR col; |
89 |
|
int x; |
90 |
< |
if (freadscan(scanline, xr, fp) < 0) { |
90 |
> |
if (flat_file ? getbinary(scanline, sizeof(COLR), xr, fp) != xr : |
91 |
> |
freadcolrs(scanline, xr, fp) < 0) { |
92 |
|
sprintf(errmsg, "error reading picture '%s'", |
93 |
|
fname); |
94 |
|
error(SYSTEM, errmsg); |
95 |
|
} |
96 |
|
/* sum in scanline */ |
97 |
|
for (x = 0; x < xr; x++, psp += 3) { |
98 |
< |
multcolor(scanline[x], scv); |
99 |
< |
addcolor(psp, scanline[x]); |
98 |
> |
if (!scanline[x][EXP]) |
99 |
> |
continue; /* skip zeroes */ |
100 |
> |
colr_color(col, scanline[x]); |
101 |
> |
multcolor(col, scv); |
102 |
> |
addcolor(psp, col); |
103 |
|
} |
104 |
|
} |
105 |
|
fclose(fp); /* done this picture */ |
106 |
|
} |
107 |
|
free(scanline); |
108 |
< |
/* write scanlines */ |
109 |
< |
for (y = 0; y < myYR; y++) |
110 |
< |
if (fwritescan((COLOR *)cm_lval(pmat, y, 0), myXR, fp) < 0) |
404 |
< |
return(0); |
405 |
< |
cm_free(pmat); /* all done */ |
406 |
< |
return(fflush(fp) == 0); |
108 |
> |
i = cm_write(pmat, myDT, fout); /* write picture */ |
109 |
> |
cm_free(pmat); /* free data */ |
110 |
> |
return(i); |
111 |
|
} |
112 |
|
|
113 |
+ |
/* adjust matrix dimensions according to user size(s) */ |
114 |
+ |
static int |
115 |
+ |
alt_dim(CMATRIX *cm, int nr, int nc) |
116 |
+ |
{ |
117 |
+ |
if ((nr <= 0) & (nc <= 0)) |
118 |
+ |
return(0); |
119 |
+ |
if ((nr == cm->nrows) & (nc == cm->ncols)) |
120 |
+ |
return(0); |
121 |
+ |
if (nr > 0) { |
122 |
+ |
if (nc <= 0) |
123 |
+ |
nc = cm->nrows*cm->ncols/nr; |
124 |
+ |
if (nr*nc != cm->nrows*cm->ncols) { |
125 |
+ |
fprintf(stderr, "Bad dimensions: %dx%d != %dx%d\n", |
126 |
+ |
nr, nc, cm->nrows, cm->ncols); |
127 |
+ |
return(-1); |
128 |
+ |
} |
129 |
+ |
} else /* nc > 0 */ { |
130 |
+ |
nr = cm->nrows*cm->ncols/nc; |
131 |
+ |
if (nc*nr != cm->nrows*cm->ncols) { |
132 |
+ |
fprintf(stderr, "Bad dimensions: %d does not divide %dx%d evenly\n", |
133 |
+ |
nc, cm->nrows, cm->ncols); |
134 |
+ |
return(-1); |
135 |
+ |
} |
136 |
+ |
} |
137 |
+ |
cm->nrows = nr; |
138 |
+ |
cm->ncols = nc; |
139 |
+ |
return(1); |
140 |
+ |
} |
141 |
+ |
|
142 |
|
/* check to see if a string contains a %d or %o specification */ |
143 |
|
static int |
144 |
|
hasNumberFormat(const char *s) |
145 |
|
{ |
146 |
< |
while (*s && *s != '%') |
414 |
< |
s++; |
415 |
< |
if (!*s) |
146 |
> |
if (s == NULL) |
147 |
|
return(0); |
417 |
– |
do |
418 |
– |
++s; |
419 |
– |
while (isdigit(*s)); |
148 |
|
|
149 |
< |
return(*s == 'd' | *s == 'i' | *s == 'o' | *s == 'x' | *s == 'X'); |
149 |
> |
while (*s) { |
150 |
> |
while (*s != '%') |
151 |
> |
if (!*s++) |
152 |
> |
return(0); |
153 |
> |
if (*++s == '%') { /* ignore "%%" */ |
154 |
> |
++s; |
155 |
> |
continue; |
156 |
> |
} |
157 |
> |
while (isdigit(*s)) /* field length */ |
158 |
> |
++s; |
159 |
> |
/* field we'll use? */ |
160 |
> |
if ((*s == 'd') | (*s == 'i') | (*s == 'o') | |
161 |
> |
(*s == 'x') | (*s == 'X')) |
162 |
> |
return(1); |
163 |
> |
} |
164 |
> |
return(0); /* didn't find one */ |
165 |
|
} |
166 |
|
|
167 |
|
int |
168 |
|
main(int argc, char *argv[]) |
169 |
|
{ |
170 |
< |
CMATRIX *cvec; |
170 |
> |
int skyfmt = DTfromHeader; |
171 |
> |
int outfmt = DTascii; |
172 |
> |
int headout = 1; |
173 |
> |
int nsteps = 0; |
174 |
> |
char *ofspec = NULL; |
175 |
> |
FILE *ofp = stdout; |
176 |
> |
int xres=0, yres=0; |
177 |
> |
CMATRIX *cmtx; /* component vector/matrix result */ |
178 |
> |
char fnbuf[256]; |
179 |
> |
int a, i; |
180 |
|
|
181 |
|
progname = argv[0]; |
182 |
+ |
/* get options */ |
183 |
+ |
for (a = 1; a < argc && argv[a][0] == '-'; a++) |
184 |
+ |
switch (argv[a][1]) { |
185 |
+ |
case 'n': |
186 |
+ |
nsteps = atoi(argv[++a]); |
187 |
+ |
if (nsteps < 0) |
188 |
+ |
goto userr; |
189 |
+ |
skyfmt = nsteps ? DTascii : DTfromHeader; |
190 |
+ |
break; |
191 |
+ |
case 'h': |
192 |
+ |
headout = !headout; |
193 |
+ |
break; |
194 |
+ |
case 'i': |
195 |
+ |
switch (argv[a][2]) { |
196 |
+ |
case 'f': |
197 |
+ |
skyfmt = DTfloat; |
198 |
+ |
break; |
199 |
+ |
case 'd': |
200 |
+ |
skyfmt = DTdouble; |
201 |
+ |
break; |
202 |
+ |
case 'a': |
203 |
+ |
skyfmt = DTascii; |
204 |
+ |
break; |
205 |
+ |
default: |
206 |
+ |
goto userr; |
207 |
+ |
} |
208 |
+ |
break; |
209 |
+ |
case 'o': |
210 |
+ |
switch (argv[a][2]) { |
211 |
+ |
case '\0': /* output specification (not format) */ |
212 |
+ |
ofspec = argv[++a]; |
213 |
+ |
break; |
214 |
+ |
case 'f': |
215 |
+ |
outfmt = DTfloat; |
216 |
+ |
break; |
217 |
+ |
case 'd': |
218 |
+ |
outfmt = DTdouble; |
219 |
+ |
break; |
220 |
+ |
case 'a': |
221 |
+ |
outfmt = DTascii; |
222 |
+ |
break; |
223 |
+ |
case 'c': |
224 |
+ |
outfmt = DTrgbe; |
225 |
+ |
break; |
226 |
+ |
default: |
227 |
+ |
goto userr; |
228 |
+ |
} |
229 |
+ |
break; |
230 |
+ |
case 'x': |
231 |
+ |
xres = atoi(argv[++a]); |
232 |
+ |
break; |
233 |
+ |
case 'y': |
234 |
+ |
yres = atoi(argv[++a]); |
235 |
+ |
break; |
236 |
+ |
default: |
237 |
+ |
goto userr; |
238 |
+ |
} |
239 |
+ |
if ((argc-a < 1) | (argc-a > 4)) |
240 |
+ |
goto userr; |
241 |
|
|
242 |
< |
if ((argc < 2) | (argc > 5)) { |
243 |
< |
fprintf(stderr, "Usage: %s DCspec [tregvec]\n", progname); |
244 |
< |
fprintf(stderr, " or: %s Vspec Tbsdf.xml Dmat.dat [tregvec]\n", |
245 |
< |
progname); |
246 |
< |
return(1); |
247 |
< |
} |
437 |
< |
|
438 |
< |
if (argc > 3) { /* need to compute DC matrix? */ |
439 |
< |
CMATRIX *svec, *Dmat, *Tmat, *ivec; |
440 |
< |
struct BSDF_data *btdf; |
441 |
< |
/* get sky vector */ |
442 |
< |
svec = cm_load(argv[4], 0, 1, DTascii); |
242 |
> |
if (argc-a > 2) { /* VTDs expression */ |
243 |
> |
CMATRIX *smtx, *Dmat, *Tmat, *imtx; |
244 |
> |
const char *ccp; |
245 |
> |
/* get sky vector/matrix */ |
246 |
> |
smtx = cm_load(argv[a+3], 0, nsteps, skyfmt); |
247 |
> |
nsteps = smtx->ncols; |
248 |
|
/* load BSDF */ |
249 |
< |
btdf = load_BSDF(argv[2]); |
250 |
< |
if (btdf == NULL) |
251 |
< |
return(1); |
249 |
> |
if (argv[a+1][0] != '!' && |
250 |
> |
(ccp = strrchr(argv[a+1], '.')) != NULL && |
251 |
> |
!strcasecmp(ccp+1, "XML")) |
252 |
> |
Tmat = cm_loadBTDF(argv[a+1]); |
253 |
> |
else |
254 |
> |
Tmat = cm_load(argv[a+1], 0, 0, DTfromHeader); |
255 |
|
/* load Daylight matrix */ |
256 |
< |
Dmat = cm_load(argv[3], btdf->ninc, svec->nrows, DTfromHeader); |
256 |
> |
Dmat = cm_load(argv[a+2], Tmat->ncols, |
257 |
> |
smtx->nrows, DTfromHeader); |
258 |
|
/* multiply vector through */ |
259 |
< |
ivec = cm_multiply(Dmat, svec); |
260 |
< |
cm_free(Dmat); cm_free(svec); |
261 |
< |
Tmat = cm_bsdf(btdf); /* convert BTDF to matrix */ |
262 |
< |
free_BSDF(btdf); |
263 |
< |
cvec = cm_multiply(Tmat, ivec); /* cvec = component vector */ |
264 |
< |
cm_free(Tmat); cm_free(ivec); |
265 |
< |
} else { /* else just use sky vector */ |
266 |
< |
cvec = cm_load(argv[2], 0, 1, DTascii); |
259 |
> |
imtx = cm_multiply(Dmat, smtx); |
260 |
> |
cm_free(Dmat); cm_free(smtx); |
261 |
> |
cmtx = cm_multiply(Tmat, imtx); |
262 |
> |
cm_free(Tmat); |
263 |
> |
cm_free(imtx); |
264 |
> |
} else { /* sky vector/matrix only */ |
265 |
> |
cmtx = cm_load(argv[a+1], 0, nsteps, skyfmt); |
266 |
> |
nsteps = cmtx->ncols; |
267 |
|
} |
268 |
< |
|
269 |
< |
if (hasNumberFormat(argv[1])) { /* generating image */ |
270 |
< |
SET_FILE_BINARY(stdout); |
271 |
< |
newheader("RADIANCE", stdout); |
272 |
< |
printargs(argc, argv, stdout); |
273 |
< |
fputnow(stdout); |
274 |
< |
if (!sum_images(argv[1], cvec, stdout)) |
268 |
> |
/* prepare output stream */ |
269 |
> |
if ((ofspec != NULL) & (nsteps == 1) && hasNumberFormat(ofspec)) { |
270 |
> |
sprintf(fnbuf, ofspec, 1); |
271 |
> |
ofspec = fnbuf; |
272 |
> |
} |
273 |
> |
if (ofspec != NULL && !hasNumberFormat(ofspec)) { |
274 |
> |
if ((ofp = fopen(ofspec, "w")) == NULL) { |
275 |
> |
fprintf(stderr, "%s: cannot open '%s' for output\n", |
276 |
> |
progname, ofspec); |
277 |
|
return(1); |
278 |
< |
} else { /* generating vector */ |
279 |
< |
CMATRIX *Vmat = cm_load(argv[1], 0, cvec->nrows, DTfromHeader); |
280 |
< |
CMATRIX *rvec = cm_multiply(Vmat, cvec); |
278 |
> |
} |
279 |
> |
ofspec = NULL; /* only need to open once */ |
280 |
> |
} |
281 |
> |
if (hasNumberFormat(argv[a])) { /* generating image(s) */ |
282 |
> |
if (outfmt != DTrgbe) { |
283 |
> |
error(WARNING, "changing output type to -oc"); |
284 |
> |
outfmt = DTrgbe; |
285 |
> |
} |
286 |
> |
if (ofspec == NULL) { |
287 |
> |
SET_FILE_BINARY(ofp); |
288 |
> |
newheader("RADIANCE", ofp); |
289 |
> |
printargs(argc, argv, ofp); |
290 |
> |
fputnow(ofp); |
291 |
> |
} |
292 |
> |
if (nsteps > 1) /* multiple output frames? */ |
293 |
> |
for (i = 0; i < nsteps; i++) { |
294 |
> |
CMATRIX *cvec = cm_column(cmtx, i); |
295 |
> |
if (ofspec != NULL) { |
296 |
> |
sprintf(fnbuf, ofspec, i); |
297 |
> |
if ((ofp = fopen(fnbuf, "wb")) == NULL) { |
298 |
> |
fprintf(stderr, |
299 |
> |
"%s: cannot open '%s' for output\n", |
300 |
> |
progname, fnbuf); |
301 |
> |
return(1); |
302 |
> |
} |
303 |
> |
newheader("RADIANCE", ofp); |
304 |
> |
printargs(argc, argv, ofp); |
305 |
> |
fputnow(ofp); |
306 |
> |
} |
307 |
> |
fprintf(ofp, "FRAME=%d\n", i); |
308 |
> |
if (!sum_images(argv[a], cvec, ofp)) |
309 |
> |
return(1); |
310 |
> |
if (ofspec != NULL) { |
311 |
> |
if (fclose(ofp) == EOF) { |
312 |
> |
fprintf(stderr, |
313 |
> |
"%s: error writing to '%s'\n", |
314 |
> |
progname, fnbuf); |
315 |
> |
return(1); |
316 |
> |
} |
317 |
> |
ofp = stdout; |
318 |
> |
} |
319 |
> |
cm_free(cvec); |
320 |
> |
} |
321 |
> |
else if (!sum_images(argv[a], cmtx, ofp)) |
322 |
> |
return(1); |
323 |
> |
} else { /* generating vector/matrix */ |
324 |
> |
CMATRIX *Vmat = cm_load(argv[a], 0, cmtx->nrows, DTfromHeader); |
325 |
> |
CMATRIX *rmtx = cm_multiply(Vmat, cmtx); |
326 |
|
cm_free(Vmat); |
327 |
< |
cm_print(rvec, stdout); |
328 |
< |
cm_free(rvec); |
327 |
> |
if (ofspec != NULL) { /* multiple vector files? */ |
328 |
> |
const char *wtype = (outfmt==DTascii) ? "w" : "wb"; |
329 |
> |
for (i = 0; i < nsteps; i++) { |
330 |
> |
CMATRIX *rvec = cm_column(rmtx, i); |
331 |
> |
if (alt_dim(rvec, yres, xres) < 0) |
332 |
> |
return(1); |
333 |
> |
sprintf(fnbuf, ofspec, i); |
334 |
> |
if ((ofp = fopen(fnbuf, wtype)) == NULL) { |
335 |
> |
fprintf(stderr, |
336 |
> |
"%s: cannot open '%s' for output\n", |
337 |
> |
progname, fnbuf); |
338 |
> |
return(1); |
339 |
> |
} |
340 |
> |
#ifdef getc_unlocked |
341 |
> |
flockfile(ofp); |
342 |
> |
#endif |
343 |
> |
if (headout) { /* header output */ |
344 |
> |
newheader("RADIANCE", ofp); |
345 |
> |
printargs(argc, argv, ofp); |
346 |
> |
fputnow(ofp); |
347 |
> |
fprintf(ofp, "FRAME=%d\n", i); |
348 |
> |
if ((outfmt != DTrgbe) & (outfmt != DTxyze)) { |
349 |
> |
fprintf(ofp, "NROWS=%d\n", rvec->nrows); |
350 |
> |
fprintf(ofp, "NCOLS=%d\n", rvec->ncols); |
351 |
> |
fputs("NCOMP=3\n", ofp); |
352 |
> |
} |
353 |
> |
if ((outfmt == DTfloat) | (outfmt == DTdouble)) |
354 |
> |
fputendian(ofp); |
355 |
> |
fputformat(cm_fmt_id[outfmt], ofp); |
356 |
> |
fputc('\n', ofp); |
357 |
> |
} |
358 |
> |
cm_write(rvec, outfmt, ofp); |
359 |
> |
if (fclose(ofp) == EOF) { |
360 |
> |
fprintf(stderr, |
361 |
> |
"%s: error writing to '%s'\n", |
362 |
> |
progname, fnbuf); |
363 |
> |
return(1); |
364 |
> |
} |
365 |
> |
ofp = stdout; |
366 |
> |
cm_free(rvec); |
367 |
> |
} |
368 |
> |
} else { |
369 |
> |
#ifdef getc_unlocked |
370 |
> |
flockfile(ofp); |
371 |
> |
#endif |
372 |
> |
if (outfmt != DTascii) |
373 |
> |
SET_FILE_BINARY(ofp); |
374 |
> |
if (alt_dim(rmtx, yres, xres) < 0) |
375 |
> |
return(1); |
376 |
> |
if (headout) { /* header output */ |
377 |
> |
newheader("RADIANCE", ofp); |
378 |
> |
printargs(argc, argv, ofp); |
379 |
> |
fputnow(ofp); |
380 |
> |
if ((outfmt != DTrgbe) & (outfmt != DTxyze)) { |
381 |
> |
fprintf(ofp, "NROWS=%d\n", rmtx->nrows); |
382 |
> |
fprintf(ofp, "NCOLS=%d\n", rmtx->ncols); |
383 |
> |
fputs("NCOMP=3\n", ofp); |
384 |
> |
} |
385 |
> |
if ((outfmt == DTfloat) | (outfmt == DTdouble)) |
386 |
> |
fputendian(ofp); |
387 |
> |
fputformat(cm_fmt_id[outfmt], ofp); |
388 |
> |
fputc('\n', ofp); |
389 |
> |
} |
390 |
> |
cm_write(rmtx, outfmt, ofp); |
391 |
> |
} |
392 |
> |
cm_free(rmtx); |
393 |
|
} |
394 |
< |
cm_free(cvec); /* final clean-up */ |
394 |
> |
if (fflush(ofp) == EOF) { /* final clean-up */ |
395 |
> |
fprintf(stderr, "%s: write error on output\n", progname); |
396 |
> |
return(1); |
397 |
> |
} |
398 |
> |
cm_free(cmtx); |
399 |
|
return(0); |
400 |
+ |
userr: |
401 |
+ |
fprintf(stderr, "Usage: %s [-n nsteps][-o ospec][-x xr][-y yr][-i{f|d|h}][-o{f|d|c}] DCspec [skyf]\n", |
402 |
+ |
progname); |
403 |
+ |
fprintf(stderr, " or: %s [-n nsteps][-o ospec][-x xr][-y yr][-i{f|d|h}][-o{f|d|c}] Vspec Tbsdf Dmat.dat [skyf]\n", |
404 |
+ |
progname); |
405 |
+ |
return(1); |
406 |
|
} |