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Revision: 1.69
Committed: Wed Jun 7 17:18:46 2023 UTC (11 months, 1 week ago) by root
Branch: MAIN
Changes since 1.68: +0 -2 lines
Log Message:
*** empty log message ***

File Contents

# User Rev Content
1 root 1.1 #include "EXTERN.h"
2     #include "perl.h"
3     #include "XSUB.h"
4    
5 root 1.18 #include <string.h>
6 root 1.17 #include <setjmp.h>
7 root 1.33 #include <math.h>
8 root 1.17
9 root 1.31 #include <magic.h>
10    
11 root 1.17 #include <jpeglib.h>
12 root 1.53 #include <jerror.h>
13    
14 root 1.23 #include <glib.h>
15     #include <gtk/gtk.h>
16 root 1.50 #include <gdk/gdkx.h>
17 root 1.2 #include <gdk-pixbuf/gdk-pixbuf.h>
18    
19     #include <gperl.h>
20     #include <gtk2perl.h>
21    
22 root 1.43 #include <assert.h>
23    
24 root 1.50 #if WEBP
25 root 1.54 #include <webp/demux.h>
26 root 1.50 #include <webp/decode.h>
27     #endif
28    
29 root 1.58 #if JXL
30     #include <jxl/decode.h>
31     #include "jxl/thread_parallel_runner.h"
32     #endif
33    
34 root 1.46 #include "perlmulticore.h"
35    
36 root 1.33 #define IW 80 /* MUST match Schnauzer.pm! */
37     #define IH 60 /* MUST match Schnauzer.pm! */
38 root 1.5
39 root 1.7 #define LINELENGTH 240
40    
41 root 1.6 #define ELLIPSIS "\xe2\x80\xa6"
42    
43 root 1.42 typedef char *octet_string;
44    
45 root 1.51 static magic_t magic_cookie[2]; /* !mime, mime */
46    
47 root 1.17 struct jpg_err_mgr
48     {
49     struct jpeg_error_mgr err;
50     jmp_buf setjmp_buffer;
51     };
52    
53     static void
54     cv_error_exit (j_common_ptr cinfo)
55     {
56 root 1.48 cinfo->err->output_message (cinfo);
57 root 1.17 longjmp (((struct jpg_err_mgr *)cinfo->err)->setjmp_buffer, 99);
58     }
59    
60     static void
61     cv_error_output (j_common_ptr cinfo)
62     {
63 root 1.48 char msg[JMSG_LENGTH_MAX];
64    
65     cinfo->err->format_message (cinfo, msg);
66    
67     fprintf (stderr, "JPEG decoding error: %s\n", msg);
68 root 1.17 return;
69     }
70    
71     static void
72     rgb_to_hsv (unsigned int r, unsigned int g, unsigned int b,
73     unsigned int *h, unsigned int *s, unsigned int *v)
74     {
75     unsigned int mx = r; if (g > mx) mx = g; if (b > mx) mx = b;
76     unsigned int mn = r; if (g < mn) mn = g; if (b < mn) mn = b;
77     unsigned int delta = mx - mn;
78    
79     *v = mx;
80    
81     *s = mx ? delta * 255 / mx : 0;
82    
83     if (delta == 0)
84     *h = 0;
85     else
86     {
87     if (r == mx)
88     *h = ((int)g - (int)b) * 255 / (int)(delta * 3);
89     else if (g == mx)
90     *h = ((int)b - (int)r) * 255 / (int)(delta * 3) + 52;
91     else if (b == mx)
92     *h = ((int)r - (int)g) * 255 / (int)(delta * 3) + 103;
93    
94     *h &= 255;
95     }
96     }
97    
98 root 1.36 struct feature {
99     float v1, v2, v3; // mean, square, cube
100     int n;
101     };
102    
103     static void
104     feature_init (struct feature *f)
105     {
106     f->v1 = 0.;
107     f->v2 = 0.;
108     f->v3 = 0.;
109     f->n = 0;
110     }
111    
112     // didn't find an algorithm to neatly do mean, variance and skew in one pass.
113     // elmex ist schuld.
114     static void
115     feature_update_pass_1 (struct feature *f, unsigned int v)
116     {
117     f->v1 += v;
118     f->n += 1;
119     }
120    
121     static void
122     feature_finish_pass_1 (struct feature *f)
123     {
124     if (f->n < 1)
125     return;
126    
127     f->v1 /= f->n;
128     }
129    
130     static void
131     feature_update_pass_2 (struct feature *f, unsigned int v)
132     {
133     float d = v - f->v1;
134    
135     f->v2 += d * d;
136     f->v3 += d * d * d;
137     }
138    
139     static void
140     feature_finish_pass_2 (struct feature *f)
141     {
142     if (f->n < 1)
143     return;
144    
145     f->v2 /= f->n;
146     f->v3 /= f->n;
147    
148     f->v1 /= 255.;
149 root 1.37 f->v2 /= 255. * 255.; f->v2 = sqrtf (f->v2);
150     f->v3 /= 255. * 255. * 255.; f->v3 = powf (fabsf (f->v3), 1./3.);
151 root 1.36 }
152    
153 root 1.4 static guint32 a85_val;
154     static guint a85_cnt;
155 root 1.7 static guchar a85_buf[LINELENGTH], *a85_ptr;
156 root 1.4
157     static void
158     a85_init (void)
159     {
160     a85_cnt = 4;
161     a85_ptr = a85_buf;
162     }
163    
164     static void
165     a85_push (PerlIO *fp, guchar c)
166     {
167     a85_val = a85_val << 8 | c;
168    
169     if (!--a85_cnt)
170     {
171     a85_cnt = 4;
172     if (a85_val)
173     {
174 root 1.49 a85_ptr[4] = (a85_val % 85) + 33; a85_val /= 85;
175     a85_ptr[3] = (a85_val % 85) + 33; a85_val /= 85;
176     a85_ptr[2] = (a85_val % 85) + 33; a85_val /= 85;
177 root 1.4 a85_ptr[1] = (a85_val % 85) + 33; a85_val /= 85;
178     a85_ptr[0] = (a85_val ) + 33;
179    
180     a85_ptr += 5;
181     }
182     else
183     *a85_ptr++ = 'z';
184    
185     if (a85_ptr >= a85_buf + sizeof (a85_buf) - 7)
186     {
187     *a85_ptr++ = '\n';
188     PerlIO_write (fp, a85_buf, a85_ptr - a85_buf);
189     a85_ptr = a85_buf;
190     }
191     }
192    
193     }
194    
195 root 1.8 static void
196 root 1.4 a85_finish (PerlIO *fp)
197     {
198     while (a85_cnt != 4)
199     a85_push (fp, 0);
200    
201     *a85_ptr++ = '~'; // probably buggy end-marker
202     *a85_ptr++ = '>'; // probably buggy end-marker
203     *a85_ptr++ = '\n';
204    
205     PerlIO_write (fp, a85_buf, a85_ptr - a85_buf);
206     }
207    
208 root 1.6 /////////////////////////////////////////////////////////////////////////////
209 root 1.56 // memory source for libjpeg
210 root 1.6
211 root 1.53 static void cv_ms_init (j_decompress_ptr cinfo)
212     {
213     }
214    
215     static void cv_ms_term (j_decompress_ptr cinfo)
216     {
217     }
218    
219     static boolean cv_ms_fill (j_decompress_ptr cinfo)
220     {
221 root 1.57 // unexpected EOF, warn and generate fake EOI marker
222    
223     WARNMS (cinfo, JWRN_JPEG_EOF);
224    
225     struct jpeg_source_mgr *src = (struct jpeg_source_mgr *)cinfo->src;
226    
227     static const JOCTET eoi[] = { 0xFF, JPEG_EOI };
228    
229     src->next_input_byte = eoi;
230     src->bytes_in_buffer = sizeof (eoi);
231 root 1.53
232     return TRUE;
233     }
234    
235     static void cv_ms_skip (j_decompress_ptr cinfo, long num_bytes)
236     {
237 root 1.57 struct jpeg_source_mgr *src = (struct jpeg_source_mgr *)cinfo->src;
238    
239     src->next_input_byte += num_bytes;
240     src->bytes_in_buffer -= num_bytes;
241 root 1.53 }
242    
243     static void cv_jpeg_mem_src (j_decompress_ptr cinfo, void *buf, size_t buflen)
244     {
245     struct jpeg_source_mgr *src;
246    
247     if (!cinfo->src)
248     cinfo->src = (struct jpeg_source_mgr *)
249     (*cinfo->mem->alloc_small) (
250     (j_common_ptr) cinfo, JPOOL_PERMANENT, sizeof (struct jpeg_source_mgr)
251     );
252    
253     src = (struct jpeg_source_mgr *)cinfo->src;
254     src->init_source = cv_ms_init;
255     src->fill_input_buffer = cv_ms_fill;
256     src->skip_input_data = cv_ms_skip;
257     src->resync_to_restart = jpeg_resync_to_restart;
258     src->term_source = cv_ms_term;
259     src->next_input_byte = (JOCTET *)buf;
260     src->bytes_in_buffer = buflen;
261     }
262    
263     /////////////////////////////////////////////////////////////////////////////
264    
265 root 1.58 /* great, the jpeg-xl reference implementaton requires us to parse bmff files */
266    
267     struct bmff_box
268     {
269     char type[4];
270     const uint8_t *ptr;
271     size_t size;
272     };
273    
274     static int
275     bmff_parse_box (struct bmff_box *box, const uint8_t **next_in, size_t *avail_in)
276     {
277     if (*avail_in < 8)
278     return 0;
279    
280     box->size = ((*next_in)[0] << 24)
281     | ((*next_in)[1] << 16)
282     | ((*next_in)[2] << 8)
283     | ((*next_in)[3] );
284    
285     if (box->size < 8)
286     return 0;
287    
288     if (*avail_in < box->size)
289     return 0;
290    
291     memcpy (box->type, *next_in + 4, 4);
292     box->ptr = *next_in + 8;
293    
294     *next_in += box->size;
295     *avail_in -= box->size;
296    
297     box->size -= 8;
298    
299     return 1;
300     }
301    
302     /////////////////////////////////////////////////////////////////////////////
303    
304 root 1.9 MODULE = Gtk2::CV PACKAGE = Gtk2::CV
305 root 1.1
306     PROTOTYPES: ENABLE
307 root 1.2
308 root 1.66 void
309     _exit (int code)
310    
311 root 1.56 # calculate the common prefix length of two strings
312 root 1.29 # missing function in perl. really :)
313     int
314     common_prefix_length (a, b)
315     unsigned char *a = (unsigned char *)SvPVutf8_nolen ($arg);
316     unsigned char *b = (unsigned char *)SvPVutf8_nolen ($arg);
317     CODE:
318     RETVAL = 0;
319    
320     while (*a == *b && *a)
321     {
322     RETVAL += (*a & 0xc0) != 0x80;
323     a++, b++;
324     }
325    
326     OUTPUT:
327     RETVAL
328    
329 root 1.31 const char *
330 root 1.51 magic (SV *path_or_data)
331     ALIAS:
332     magic = 0
333     magic_mime = 1
334     magic_buffer = 2
335     magic_buffer_mime = 3
336 root 1.31 CODE:
337     {
338 root 1.51 STRLEN len;
339     char *data = SvPVbyte (path_or_data, len);
340 root 1.31
341 root 1.51 if (!magic_cookie[0])
342     {
343     magic_cookie[0] = magic_open (MAGIC_SYMLINK);
344 root 1.52 magic_cookie[1] = magic_open (MAGIC_SYMLINK | MAGIC_MIME_TYPE);
345     magic_load (magic_cookie[0], 0);
346     magic_load (magic_cookie[1], 0);
347 root 1.32 }
348    
349 root 1.52 perlinterp_release ();
350    
351 root 1.51 RETVAL = ix & 2
352 root 1.52 ? magic_buffer (magic_cookie[ix & 1], data, len)
353     : magic_file (magic_cookie[ix & 1], data);
354 root 1.32
355 root 1.46 perlinterp_acquire ();
356 root 1.31 }
357     OUTPUT:
358     RETVAL
359    
360 root 1.40 # missing/broken in Gtk2 perl module
361    
362     void
363     gdk_window_clear_hints (GdkWindow *window)
364     CODE:
365     gdk_window_set_geometry_hints (window, 0, 0);
366 root 1.22
367     gboolean
368     gdk_net_wm_supports (GdkAtom property)
369     CODE:
370     #if defined(GDK_WINDOWING_X11) && !defined(GDK_MULTIHEAD_SAFE)
371     RETVAL = gdk_net_wm_supports (property);
372     #else
373     RETVAL = 0;
374     #endif
375     OUTPUT:
376     RETVAL
377    
378 root 1.3 GdkPixbuf_noinc *
379 root 1.26 dealpha_expose (GdkPixbuf *pb)
380     CODE:
381 root 1.46 perlinterp_release ();
382 root 1.26 {
383     int w = gdk_pixbuf_get_width (pb);
384     int h = gdk_pixbuf_get_height (pb);
385     int bpp = gdk_pixbuf_get_n_channels (pb);
386     int x, y, i;
387     guchar *src = gdk_pixbuf_get_pixels (pb), *dst;
388     int sstr = gdk_pixbuf_get_rowstride (pb), dstr;
389    
390     RETVAL = gdk_pixbuf_new (GDK_COLORSPACE_RGB, 0, 8, w, h);
391    
392     dst = gdk_pixbuf_get_pixels (RETVAL);
393     dstr = gdk_pixbuf_get_rowstride (RETVAL);
394    
395     for (x = 0; x < w; x++)
396     for (y = 0; y < h; y++)
397     for (i = 0; i < 3; i++)
398     dst[x * 3 + y * dstr + i] = src[x * bpp + y * sstr + i];
399     }
400 root 1.46 perlinterp_acquire ();
401 root 1.26 OUTPUT:
402     RETVAL
403    
404     GdkPixbuf_noinc *
405 root 1.28 rotate (GdkPixbuf *pb, int angle)
406 root 1.2 CODE:
407 root 1.46 perlinterp_release ();
408 root 1.44 if (angle < 0)
409     angle += 360;
410 root 1.28 RETVAL = gdk_pixbuf_rotate_simple (pb, angle == 0 ? GDK_PIXBUF_ROTATE_NONE
411     : angle == 90 ? GDK_PIXBUF_ROTATE_COUNTERCLOCKWISE
412     : angle == 180 ? GDK_PIXBUF_ROTATE_UPSIDEDOWN
413     : angle == 270 ? GDK_PIXBUF_ROTATE_CLOCKWISE
414     : angle);
415 root 1.46 perlinterp_acquire ();
416 root 1.2 OUTPUT:
417     RETVAL
418    
419 root 1.53 const char *
420     filetype (SV *image_data)
421     CODE:
422     {
423     STRLEN data_len;
424     U8 *data = SvPVbyte (image_data, data_len);
425 root 1.58 static const unsigned char jxl_header[] = {
426 root 1.63 0, 0, 0, 0x0c, 0x4a, 0x58, 0x4c, 0x20, 0x0d, 0xa, 0x87, 0x0a
427 root 1.58 };
428 root 1.53
429     if (data_len >= 20
430     && data[0] == 0xff
431     && data[1] == 0xd8
432     && data[2] == 0xff)
433 root 1.58 RETVAL = "image/jpeg";
434 root 1.53 else if (data_len >= 12
435     && data[ 0] == (U8)'R'
436     && data[ 1] == (U8)'I'
437     && data[ 2] == (U8)'F'
438     && data[ 3] == (U8)'F'
439     && data[ 8] == (U8)'W'
440     && data[ 9] == (U8)'E'
441     && data[10] == (U8)'B'
442     && data[11] == (U8)'P')
443 root 1.58 RETVAL = "image/webp";
444 root 1.53 else if (data_len >= 16
445     && data[ 0] == 0x89
446     && data[ 1] == (U8)'P'
447     && data[ 2] == (U8)'N'
448     && data[ 3] == (U8)'G'
449     && data[ 4] == 0x0d
450     && data[ 5] == 0x0a
451     && data[ 6] == 0x1a
452     && data[ 7] == 0x0a)
453 root 1.58 RETVAL = "image/png";
454     else if (data_len >= sizeof (jxl_header) && memcmp (data, jxl_header, sizeof (jxl_header)) == 0)
455 root 1.63 RETVAL = "image/jxl"; // todo: might want to use JxlSignatureCheck
456     else if (data_len >= 2
457     && data[0] == 0xff
458     && data[1] == 0x0a)
459 root 1.58 RETVAL = "image/jxl";
460 root 1.61 else if (data_len >= 13
461     && data[0] == 'G'
462     && data[1] == 'I'
463     && data[2] == 'F'
464     && data[3] == '8'
465     //&& (data[4] == '7' || data[4] == '9')
466     && data[5] == 'a')
467     {
468     RETVAL = "image/gif";
469    
470     // now see if its animated - we require the netscape application header for this
471     int ofs = 13;
472    
473     if (data[10] & 0x80)
474     ofs += (1 << ((data[10] & 7) + 1)) * 3;
475    
476     if (data_len >= ofs + 2 + 1 + 11)
477     {
478 root 1.62
479     // skip a graphic control extension block. we assume
480     // there is at most one such block - while the NAB
481     // has to come firstz, some files do not obey this
482 root 1.61 if (data[ofs] == 0x21 && data[ofs + 1] == 0xf9)
483     ofs += 3 + data[ofs + 2] + 1;
484    
485     if (data_len >= ofs + 2 + 1 + 11)
486     if (!memcmp (data + ofs, "\x21\xff\x0bNETSCAPE2.0", sizeof ("\x21\xff\x0bNETSCAPE2.0") - 1))
487     RETVAL = "video/gif";
488     }
489     }
490 root 1.67 else if (data_len >= 0x8000 + 6
491     && data[0x8000+1] == (U8)'B'
492     && data[0x8000+2] == (U8)'E'
493     && data[0x8000+3] == (U8)'A'
494     && data[0x8000+4] == (U8)'0'
495     && data[0x8000+5] == (U8)'1')
496     RETVAL = "video/iso-bluray";
497 root 1.68 else if (data_len >= 0x8000 + 6
498     && data[0x8000+1] == (U8)'C'
499     && data[0x8000+2] == (U8)'D'
500     && data[0x8000+3] == (U8)'0'
501     && data[0x8000+4] == (U8)'0'
502     && data[0x8000+5] == (U8)'1')
503     RETVAL = "video/iso9660";
504 root 1.61
505 root 1.53 else
506 root 1.58 XSRETURN_UNDEF;
507 root 1.53 }
508     OUTPUT:
509     RETVAL
510    
511 root 1.17 GdkPixbuf_noinc *
512 root 1.51 decode_webp (SV *image_data, int thumbnail = 0, int iw = 0, int ih = 0)
513 root 1.50 CODE:
514     {
515     #if WEBP
516     STRLEN data_size;
517     int alpha;
518 root 1.54 WebPData data;
519     WebPDemuxer *demux;
520     WebPIterator iter;
521     WebPDecoderConfig config;
522 root 1.51 int inw, inh;
523    
524 root 1.54 data.bytes = (uint8_t *)SvPVbyte (image_data, data_size);
525     data.size = data_size;
526 root 1.50
527     perlinterp_release ();
528    
529     RETVAL = 0;
530    
531 root 1.54 if (!(demux = WebPDemux (&data)))
532     goto err_demux;
533    
534     if (!WebPDemuxGetFrame (demux, 1, &iter))
535     goto err_iter;
536    
537     if (!WebPInitDecoderConfig (&config))
538     goto err_iter;
539 root 1.50
540     config.options.use_threads = 1;
541    
542 root 1.54 if (WebPGetFeatures (iter.fragment.bytes, iter.fragment.size, &config.input) != VP8_STATUS_OK)
543     goto err_iter;
544 root 1.51
545     inw = config.input.width;
546     inh = config.input.height;
547    
548 root 1.50 if (thumbnail)
549     {
550 root 1.51 if (inw * ih > inh * iw)
551     ih = (iw * inh + inw - 1) / inw;
552     else
553     iw = (ih * inw + inh - 1) / inh;
554    
555 root 1.50 config.options.bypass_filtering = 1;
556     config.options.no_fancy_upsampling = 1;
557    
558     config.options.use_scaling = 1;
559     config.options.scaled_width = iw;
560     config.options.scaled_height = ih;
561     }
562     else
563     {
564 root 1.51 iw = inw;
565     ih = inh;
566 root 1.50 }
567    
568 root 1.54 alpha = !!config.input.has_alpha;
569 root 1.50
570 root 1.54 RETVAL = gdk_pixbuf_new (GDK_COLORSPACE_RGB, alpha, 8, iw, ih);
571 root 1.50 if (!RETVAL)
572 root 1.54 goto err_iter;
573 root 1.50
574     config.output.colorspace = alpha ? MODE_RGBA : MODE_RGB;
575     config.output.u.RGBA.rgba = gdk_pixbuf_get_pixels (RETVAL);
576     config.output.u.RGBA.stride = gdk_pixbuf_get_rowstride (RETVAL);
577     config.output.u.RGBA.size = gdk_pixbuf_get_byte_length (RETVAL);
578     config.output.is_external_memory = 1;
579    
580 root 1.54 if (WebPDecode (iter.fragment.bytes, iter.fragment.size, &config) != VP8_STATUS_OK)
581 root 1.50 {
582     g_object_unref (RETVAL);
583     RETVAL = 0;
584 root 1.54 goto err_iter;
585 root 1.50 }
586    
587 root 1.54 err_iter:
588     WebPDemuxReleaseIterator (&iter);
589     err_demux:
590 root 1.55 WebPDemuxDelete (demux);
591 root 1.54
592 root 1.50 perlinterp_acquire ();
593     #else
594     croak ("load_webp: webp not enabled at compile time");
595     #endif
596     }
597     OUTPUT:
598     RETVAL
599    
600     GdkPixbuf_noinc *
601 root 1.58 decode_jxl (SV *image_data, int thumbnail = 0, int iw = 0, int ih = 0)
602     CODE:
603     {
604     #if JXL
605 root 1.63 JxlDecoder *dec;
606 root 1.58 JxlBasicInfo info;
607     const uint8_t *next_in = (uint8_t *)SvPVbyte_nolen (image_data);
608     size_t avail_in = SvCUR (image_data);
609     const char *error = 0;
610 root 1.63 JxlDecoderStatus status;
611 root 1.65 static void *runner_cache;
612 root 1.58 void *runner = 0;
613    
614 root 1.63 RETVAL = 0;
615    
616 root 1.65 if (runner_cache)
617     runner = runner_cache;
618     else
619     runner = JxlThreadParallelRunnerCreate (0, JxlThreadParallelRunnerDefaultNumWorkerThreads ());
620    
621     runner_cache = 0;
622    
623 root 1.58 perlinterp_release ();
624    
625 root 1.63 dec = JxlDecoderCreate (0);
626 root 1.58
627     error = "JxlDecoderCreate failed";
628     if (!dec)
629     goto done;
630    
631 root 1.63 status = JxlDecoderSetParallelRunner (dec, JxlThreadParallelRunner, runner);
632 root 1.58 error = "JxlDecoderSetParallelRunner failed";
633 root 1.63 if (status != JXL_DEC_SUCCESS)
634 root 1.58 goto done;
635    
636     error = "JxlDecoderSubscribeEvents failed";
637 root 1.63 status = JxlDecoderSubscribeEvents (dec, JXL_DEC_BASIC_INFO | JXL_DEC_FULL_IMAGE);
638     if (status != JXL_DEC_SUCCESS)
639 root 1.59 goto done;
640    
641 root 1.63 status = JxlDecoderSetInput (dec, next_in, avail_in);
642 root 1.59 error = "JxlDecoderSetInput failed";
643 root 1.63 if (status != JXL_DEC_SUCCESS)
644 root 1.58 goto done;
645    
646     for (;;)
647     {
648 root 1.63 status = JxlDecoderProcessInput (dec);
649 root 1.58
650     switch (status)
651     {
652 root 1.63 case JXL_DEC_FULL_IMAGE:
653     error = 0;
654     goto done;
655    
656 root 1.58 case JXL_DEC_ERROR:
657     error = "JxlDecoderProcessInput failed";
658     goto done;
659    
660     case JXL_DEC_NEED_MORE_INPUT:
661     error = "incomplete file";
662     goto done;
663    
664     case JXL_DEC_SUCCESS:
665 root 1.63 error = "incomplete decode";
666 root 1.58 goto done;
667    
668 root 1.63 case JXL_DEC_BASIC_INFO:
669 root 1.58 {
670 root 1.63 status = JxlDecoderGetBasicInfo (dec, &info);
671 root 1.58 error = "JxlDecoderGetBasicInfo failed";
672 root 1.63 if (status != JXL_DEC_SUCCESS)
673 root 1.58 goto done;
674    
675     RETVAL = gdk_pixbuf_new (GDK_COLORSPACE_RGB, !!info.alpha_bits, 8, info.xsize, info.ysize);
676     error = "unable to allocate pixbuf";
677     if (!RETVAL)
678     goto done;
679    
680     JxlPixelFormat format = {
681     info.alpha_bits ? 4 : 3,
682     JXL_TYPE_UINT8,
683     JXL_NATIVE_ENDIAN,
684     gdk_pixbuf_get_rowstride (RETVAL)
685     };
686    
687 root 1.63 // cannot use gdk_pixbuf_get_byte_length because that does
688     // not return the size of the buffer, but the size of the buffer without
689     // the last padding bytes. the internal buffer is rowstride * ysize,
690     // and this is what the jxl decoder needs. none of this is documented
691     // in either library, of course.
692    
693     status = JxlDecoderSetImageOutBuffer (
694     dec,
695     &format,
696     gdk_pixbuf_get_pixels (RETVAL),
697     gdk_pixbuf_get_rowstride (RETVAL) * info.ysize
698     );
699 root 1.58 error = "JxlDecoderSetImageOutBuffer failed";
700 root 1.63 if (status != JXL_DEC_SUCCESS)
701 root 1.58 goto done;
702     }
703     break;
704    
705     default:
706     error = "unexpected event";
707     goto done;
708     }
709     }
710    
711     done:
712     if (dec)
713     JxlDecoderDestroy (dec);
714    
715 root 1.65 perlinterp_acquire ();
716    
717     if (runner_cache)
718 root 1.58 JxlThreadParallelRunnerDestroy (runner);
719    
720 root 1.65 runner_cache = runner;
721 root 1.58
722     if (error)
723     {
724     if (RETVAL)
725     g_object_unref (RETVAL);
726    
727 root 1.63 croak ("load_jxl: %s (status %d)", error, status);
728 root 1.58 }
729     #else
730     croak ("load_jxl: jpeg-xl not enabled at compile time");
731     #endif
732     }
733     OUTPUT:
734     RETVAL
735    
736     GdkPixbuf_noinc *
737 root 1.53 decode_jpeg (SV *image_data, int thumbnail = 0, int iw = 0, int ih = 0)
738 root 1.17 CODE:
739     {
740     struct jpeg_decompress_struct cinfo;
741     struct jpg_err_mgr jerr;
742     int rs;
743     volatile GdkPixbuf *pb = 0;
744 root 1.53 STRLEN data_len;
745     guchar *data = SvPVbyte (image_data, data_len);
746 root 1.23
747 root 1.17 RETVAL = 0;
748    
749 root 1.46 perlinterp_release ();
750    
751 root 1.17 cinfo.err = jpeg_std_error (&jerr.err);
752    
753     jerr.err.error_exit = cv_error_exit;
754     jerr.err.output_message = cv_error_output;
755    
756     if ((rs = setjmp (jerr.setjmp_buffer)))
757     {
758     jpeg_destroy_decompress (&cinfo);
759    
760     if (pb)
761     g_object_unref ((gpointer)pb);
762    
763 root 1.46 perlinterp_acquire ();
764 root 1.17 XSRETURN_UNDEF;
765     }
766    
767 root 1.57 if (!data_len)
768     longjmp (jerr.setjmp_buffer, 4);
769    
770 root 1.17 jpeg_create_decompress (&cinfo);
771 root 1.53 cv_jpeg_mem_src (&cinfo, data, data_len);
772 root 1.17
773     jpeg_read_header (&cinfo, TRUE);
774    
775     cinfo.dct_method = JDCT_DEFAULT;
776     cinfo.do_fancy_upsampling = FALSE; /* worse quality, but nobody compained so far, and gdk-pixbuf does the same */
777     cinfo.do_block_smoothing = FALSE;
778     cinfo.out_color_space = JCS_RGB;
779     cinfo.quantize_colors = FALSE;
780    
781     cinfo.scale_num = 1;
782     cinfo.scale_denom = 1;
783    
784     jpeg_calc_output_dimensions (&cinfo);
785    
786     if (thumbnail)
787     {
788     cinfo.dct_method = JDCT_FASTEST;
789     cinfo.do_fancy_upsampling = FALSE;
790    
791     while (cinfo.scale_denom < 8
792 root 1.47 && cinfo.output_width >= iw*4
793     && cinfo.output_height >= ih*4)
794 root 1.17 {
795     cinfo.scale_denom <<= 1;
796     jpeg_calc_output_dimensions (&cinfo);
797     }
798     }
799    
800 root 1.48 if (cinfo.output_components != 3)
801     longjmp (jerr.setjmp_buffer, 3);
802    
803     if (cinfo.jpeg_color_space == JCS_YCCK || cinfo.jpeg_color_space == JCS_CMYK)
804     {
805     cinfo.out_color_space = JCS_CMYK;
806     cinfo.output_components = 4;
807     }
808    
809     pb = RETVAL = gdk_pixbuf_new (GDK_COLORSPACE_RGB, cinfo.output_components == 4, 8, cinfo.output_width, cinfo.output_height);
810 root 1.17 if (!RETVAL)
811     longjmp (jerr.setjmp_buffer, 2);
812    
813     data = gdk_pixbuf_get_pixels (RETVAL);
814     rs = gdk_pixbuf_get_rowstride (RETVAL);
815    
816     jpeg_start_decompress (&cinfo);
817    
818     while (cinfo.output_scanline < cinfo.output_height)
819     {
820     int remaining = cinfo.output_height - cinfo.output_scanline;
821     JSAMPROW rp[4];
822    
823     rp [0] = data + cinfo.output_scanline * rs;
824     rp [1] = (guchar *)rp [0] + rs;
825     rp [2] = (guchar *)rp [1] + rs;
826     rp [3] = (guchar *)rp [2] + rs;
827    
828     jpeg_read_scanlines (&cinfo, rp, remaining < 4 ? remaining : 4);
829     }
830    
831 root 1.48 if (cinfo.out_color_space == JCS_CMYK)
832     {
833     guchar *end = data + cinfo.output_height * rs;
834    
835     while (data < end)
836     {
837     U32 c = data [0];
838     U32 m = data [1];
839     U32 y = data [2];
840     U32 k = data [3];
841    
842 root 1.49 if (0)
843     if (cinfo.Adobe_transform == 2)
844     {
845     c ^= 0xff;
846     m ^= 0xff;
847     y ^= 0xff;
848     k ^= 0xff;
849     }
850    
851     data [0] = (c * k + 0x80) / 0xff;
852     data [1] = (m * k + 0x80) / 0xff;
853     data [2] = (y * k + 0x80) / 0xff;
854     data [3] = 0xff;
855 root 1.48
856     data += 4;
857     }
858     }
859    
860 root 1.17 jpeg_finish_decompress (&cinfo);
861     jpeg_destroy_decompress (&cinfo);
862 root 1.46 perlinterp_acquire ();
863 root 1.17 }
864     OUTPUT:
865     RETVAL
866    
867 root 1.33 void
868     compare (GdkPixbuf *a, GdkPixbuf *b)
869     PPCODE:
870 root 1.46 perlinterp_release ();
871 root 1.33 {
872     int w = gdk_pixbuf_get_width (a);
873     int h = gdk_pixbuf_get_height (a);
874 root 1.43
875 root 1.33 int sa = gdk_pixbuf_get_rowstride (a);
876     int sb = gdk_pixbuf_get_rowstride (b);
877    
878     guchar *pa = gdk_pixbuf_get_pixels (a);
879     guchar *pb = gdk_pixbuf_get_pixels (b);
880    
881     int x, y;
882    
883     assert (w == gdk_pixbuf_get_width (b));
884     assert (h == gdk_pixbuf_get_height (b));
885    
886     assert (gdk_pixbuf_get_n_channels (a) == 3);
887     assert (gdk_pixbuf_get_n_channels (b) == 3);
888    
889     double diff = 0.;
890     int peak = 0;
891    
892 root 1.35 if (w && h)
893 root 1.34 for (y = 0; y < h; y++)
894     {
895     guchar *pa_ = pa + y * sa;
896     guchar *pb_ = pb + y * sb;
897 root 1.33
898 root 1.34 for (x = 0; x < w; x++)
899     {
900     int d;
901    
902     d = ((int)*pa_++) - ((int)*pb_++); diff += d*d; peak = MAX (peak, abs (d));
903     d = ((int)*pa_++) - ((int)*pb_++); diff += d*d; peak = MAX (peak, abs (d));
904     d = ((int)*pa_++) - ((int)*pb_++); diff += d*d; peak = MAX (peak, abs (d));
905     }
906     }
907 root 1.33
908 root 1.46 perlinterp_acquire ();
909    
910 root 1.33 EXTEND (SP, 2);
911     PUSHs (sv_2mortal (newSVnv (sqrt (diff / (w * h * 3. * 255. * 255.)))));
912     PUSHs (sv_2mortal (newSVnv (peak / 255.)));
913     }
914    
915 root 1.6 #############################################################################
916    
917 root 1.2 MODULE = Gtk2::CV PACKAGE = Gtk2::CV::Schnauzer
918    
919 root 1.41 # currently only works for filenames (octet strings)
920    
921 root 1.18 SV *
922     foldcase (SV *pathsv)
923     PROTOTYPE: $
924     CODE:
925     {
926     STRLEN plen;
927 root 1.41 U8 *path = (U8 *)SvPV (pathsv, plen);
928 root 1.18 U8 *pend = path + plen;
929 root 1.60 U8 dst [plen * 8 * 3], *dstp = dst;
930 root 1.18
931     while (path < pend)
932     {
933 root 1.19 U8 ch = *path;
934    
935     if (ch >= 'a' && ch <= 'z')
936     *dstp++ = *path++;
937 root 1.41 else if (ch >= 'A' && ch <= 'Z')
938     *dstp++ = *path++ + ('a' - 'A');
939 root 1.19 else if (ch >= '0' && ch <= '9')
940 root 1.18 {
941 root 1.60 /* version sort, up to 8 digits */
942 root 1.18 STRLEN el, nl = 0;
943 root 1.19 while (*path >= '0' && *path <= '9' && path < pend)
944 root 1.18 path++, nl++;
945    
946 root 1.60 for (el = nl; el < 8; el++)
947 root 1.18 *dstp++ = '0';
948    
949     memcpy (dstp, path - nl, nl);
950     dstp += nl;
951     }
952     else
953 root 1.41 *dstp++ = *path++;
954     #if 0
955     else
956 root 1.18 {
957     STRLEN cl;
958     to_utf8_fold (path, dstp, &cl);
959     dstp += cl;
960     path += is_utf8_char (path);
961     }
962 root 1.41 #endif
963 root 1.18 }
964    
965 root 1.25 RETVAL = newSVpvn ((const char *)dst, dstp - dst);
966 root 1.18 }
967     OUTPUT:
968     RETVAL
969    
970 root 1.3 GdkPixbuf_noinc *
971 root 1.24 p7_to_pb (int w, int h, SV *src_sv)
972 root 1.21 PROTOTYPE: @
973 root 1.2 CODE:
974     {
975     int x, y;
976     guchar *dst, *d;
977     int dstr;
978 root 1.25 guchar *src = (guchar *)SvPVbyte_nolen (src_sv);
979 root 1.2
980     RETVAL = gdk_pixbuf_new (GDK_COLORSPACE_RGB, 0, 8, w, h);
981     dst = gdk_pixbuf_get_pixels (RETVAL);
982     dstr = gdk_pixbuf_get_rowstride (RETVAL);
983    
984     for (y = 0; y < h; y++)
985     for (d = dst + y * dstr, x = 0; x < w; x++)
986     {
987 root 1.3 *d++ = (((*src >> 5) & 7) * 255 + 4) / 7;
988     *d++ = (((*src >> 2) & 7) * 255 + 4) / 7;
989     *d++ = (((*src >> 0) & 3) * 255 + 2) / 3;
990 root 1.2
991     src++;
992     }
993 root 1.3 }
994     OUTPUT:
995     RETVAL
996    
997 root 1.6 #############################################################################
998 root 1.4
999     MODULE = Gtk2::CV PACKAGE = Gtk2::CV::PostScript
1000    
1001     void
1002 root 1.7 dump_ascii85 (PerlIO *fp, GdkPixbuf *pb)
1003 root 1.4 CODE:
1004     {
1005     int w = gdk_pixbuf_get_width (pb);
1006     int h = gdk_pixbuf_get_height (pb);
1007     int x, y, i;
1008     guchar *dst;
1009 root 1.7 int bpp = gdk_pixbuf_get_n_channels (pb);
1010 root 1.4 guchar *src = gdk_pixbuf_get_pixels (pb);
1011     int sstr = gdk_pixbuf_get_rowstride (pb);
1012    
1013     a85_init ();
1014    
1015     for (y = 0; y < h; y++)
1016     for (x = 0; x < w; x++)
1017 root 1.7 for (i = 0; i < (bpp < 3 ? 1 : 3); i++)
1018 root 1.4 a85_push (fp, src [x * bpp + y * sstr + i]);
1019    
1020     a85_finish (fp);
1021 root 1.7 }
1022    
1023     void
1024     dump_binary (PerlIO *fp, GdkPixbuf *pb)
1025     CODE:
1026     {
1027     int w = gdk_pixbuf_get_width (pb);
1028     int h = gdk_pixbuf_get_height (pb);
1029     int x, y, i;
1030     guchar *dst;
1031     int bpp = gdk_pixbuf_get_n_channels (pb);
1032     guchar *src = gdk_pixbuf_get_pixels (pb);
1033     int sstr = gdk_pixbuf_get_rowstride (pb);
1034    
1035     for (y = 0; y < h; y++)
1036     for (x = 0; x < w; x++)
1037     for (i = 0; i < (bpp < 3 ? 1 : 3); i++)
1038     PerlIO_putc (fp, src [x * bpp + y * sstr + i]);
1039 root 1.4 }
1040 root 1.8
1041     #############################################################################
1042    
1043     MODULE = Gtk2::CV PACKAGE = Gtk2::CV
1044    
1045     SV *
1046     pb_to_hv84 (GdkPixbuf *pb)
1047     CODE:
1048     {
1049     int w = gdk_pixbuf_get_width (pb);
1050     int h = gdk_pixbuf_get_height (pb);
1051     int x, y;
1052     guchar *dst;
1053     int bpp = gdk_pixbuf_get_n_channels (pb);
1054     guchar *src = gdk_pixbuf_get_pixels (pb);
1055     int sstr = gdk_pixbuf_get_rowstride (pb);
1056    
1057     RETVAL = newSV (6 * 8 * 12 / 8);
1058     SvPOK_only (RETVAL);
1059     SvCUR_set (RETVAL, 6 * 8 * 12 / 8);
1060    
1061 root 1.25 dst = (guchar *)SvPVX (RETVAL);
1062 root 1.8
1063     /* some primitive error distribution + random dithering */
1064    
1065     for (y = 0; y < h; y++)
1066     {
1067     guchar *p = src + y * sstr;
1068    
1069     for (x = 0; x < w; x += 2)
1070     {
1071     unsigned int r, g, b, h, s, v, H, V1, V2;
1072    
1073     if (bpp == 3)
1074     r = *p++, g = *p++, b = *p++;
1075     else if (bpp == 1)
1076     r = g = b = *p++;
1077     else
1078     abort ();
1079    
1080     rgb_to_hsv (r, g, b, &h, &s, &v);
1081    
1082     H = (h * 15 / 255) << 4;
1083     V1 = v;
1084    
1085     if (bpp == 3)
1086     r = *p++, g = *p++, b = *p++;
1087     else if (bpp == 1)
1088     r = g = b = *p++;
1089     else
1090     abort ();
1091    
1092     rgb_to_hsv (r, g, b, &h, &s, &v);
1093    
1094     H |= h * 15 / 255;
1095     V2 = v;
1096    
1097     *dst++ = H;
1098     *dst++ = V1;
1099     *dst++ = V2;
1100     }
1101     }
1102     }
1103     OUTPUT:
1104     RETVAL
1105 root 1.4
1106 root 1.9 SV *
1107     hv84_to_av (unsigned char *hv84)
1108     CODE:
1109     {
1110     int i = 72 / 3;
1111     AV *av = newAV ();
1112    
1113     RETVAL = (SV *)newRV_noinc ((SV *)av);
1114     while (i--)
1115     {
1116     int h = *hv84++;
1117     int v1 = *hv84++;
1118     int v2 = *hv84++;
1119    
1120     av_push (av, newSViv (v1));
1121     av_push (av, newSViv ((h >> 4) * 255 / 15));
1122     av_push (av, newSViv (v2));
1123     av_push (av, newSViv ((h & 15) * 255 / 15));
1124     }
1125     }
1126     OUTPUT:
1127     RETVAL
1128 root 1.2
1129 root 1.20 #############################################################################
1130    
1131     MODULE = Gtk2::CV PACKAGE = Gtk2::CV::Plugin::RCluster
1132    
1133     SV *
1134 root 1.36 extract_features (SV *ar)
1135     CODE:
1136     {
1137     int i;
1138     AV *av, *result;
1139    
1140     if (!SvROK (ar) || SvTYPE (SvRV (ar)) != SVt_PVAV)
1141 root 1.39 croak ("Not an array ref as first argument to extract_features");
1142 root 1.36
1143     av = (AV *) SvRV (ar);
1144     result = newAV ();
1145    
1146     for (i = 0; i <= av_len (av); ++i)
1147     {
1148     SV *sv = *av_fetch (av, i, 1);
1149     SV *histsv = newSV (9 * sizeof (float) + 1);
1150    
1151     SvPOK_on (histsv);
1152     SvCUR_set (histsv, 9 * sizeof (float));
1153     float *hist = (float *)SvPVX (histsv);
1154    
1155     struct feature f_h, f_s, f_v;
1156     feature_init (&f_h);
1157     feature_init (&f_s);
1158     feature_init (&f_v);
1159    
1160     {
1161     STRLEN len;
1162     unsigned char *buf = (unsigned char *)SvPVbyte (sv, len);
1163     while (len >= 3)
1164     {
1165     unsigned int r, g, b, h, s, v;
1166     r = *buf++; g = *buf++; b = *buf++;
1167     rgb_to_hsv (r, g, b, &h, &s, &v);
1168    
1169     feature_update_pass_1 (&f_h, h);
1170     feature_update_pass_1 (&f_s, s);
1171     feature_update_pass_1 (&f_v, v);
1172    
1173     len -= 3;
1174     }
1175    
1176     feature_finish_pass_1 (&f_h);
1177     feature_finish_pass_1 (&f_s);
1178     feature_finish_pass_1 (&f_v);
1179     }
1180    
1181     {
1182     STRLEN len;
1183     unsigned char *buf = (unsigned char *)SvPVbyte (sv, len);
1184     while (len >= 3)
1185     {
1186     unsigned int r, g, b, h, s, v;
1187     r = *buf++; g = *buf++; b = *buf++;
1188     rgb_to_hsv (r, g, b, &h, &s, &v);
1189    
1190     feature_update_pass_2 (&f_h, h);
1191     feature_update_pass_2 (&f_s, s);
1192     feature_update_pass_2 (&f_v, v);
1193    
1194     len -= 3;
1195     }
1196    
1197     feature_finish_pass_2 (&f_h);
1198     feature_finish_pass_2 (&f_s);
1199     feature_finish_pass_2 (&f_v);
1200     }
1201    
1202     hist [0] = f_h.v1 * 2.; hist [1] = f_h.v2 * 2.; hist [2] = f_h.v3 * 2.;
1203     hist [3] = f_s.v1 ; hist [4] = f_s.v2 ; hist [5] = f_s.v3 ;
1204 root 1.38 hist [6] = f_v.v1 * .5; hist [7] = f_v.v2 * .5; hist [8] = f_v.v3 * .5;
1205 root 1.36
1206     av_push (result, histsv);
1207     }
1208    
1209     RETVAL = newRV_noinc ((SV *)result);
1210     }
1211     OUTPUT:
1212     RETVAL
1213