Refactor
[llpp.git] / link.c
blob52b32f36b93c6cc221583234dbd78654f19a4ce5
1 /* lots of code c&p-ed directly from mupdf */
2 #include <errno.h>
3 #include <stdio.h>
4 #include <ctype.h>
5 #include <string.h>
6 #include <stdlib.h>
7 #include <signal.h>
9 #include <unistd.h>
10 #include <pthread.h>
11 #include <sys/time.h>
12 #include <sys/types.h>
13 #include <sys/ioctl.h>
15 #ifdef __CYGWIN__
16 #include <cygwin/socket.h> /* FIONREAD */
17 #endif
19 #include <regex.h>
20 #include <ctype.h>
21 #include <stdarg.h>
22 #include <limits.h>
24 #include <GL/gl.h>
26 #include <caml/fail.h>
27 #include <caml/alloc.h>
28 #include <caml/memory.h>
29 #include <caml/unixsupport.h>
31 #include <fitz.h>
32 #include <mupdf.h>
33 #include <muxps.h>
34 #include <mucbz.h>
36 #include FT_FREETYPE_H
38 #define PIGGYBACK
40 #if defined __GNUC__
41 #define NORETURN __attribute__ ((noreturn))
42 #define UNUSED __attribute__ ((unused))
43 #define OPTIMIZE(n) __attribute__ ((optimize ("O"#n)))
44 #define GCC_FMT_ATTR(a, b) __attribute__ ((format (printf, a, b)))
45 #else
46 #define NORETURN
47 #define UNUSED
48 #define OPTIMIZE(n)
49 #define GCC_FMT_ATTR(a, b)
50 #endif
52 #define FMT_s "zu"
54 #define FMT_ptr "p"
55 #define FMT_ptr_cast(p) (p)
56 #define FMT_ptr_cast2(p) (p)
58 static void NORETURN GCC_FMT_ATTR (2, 3)
59 err (int exitcode, const char *fmt, ...)
61 va_list ap;
62 int savederrno;
64 savederrno = errno;
65 va_start (ap, fmt);
66 vfprintf (stderr, fmt, ap);
67 va_end (ap);
68 fprintf (stderr, ": %s\n", strerror (savederrno));
69 fflush (stderr);
70 _exit (exitcode);
73 static void NORETURN GCC_FMT_ATTR (2, 3)
74 errx (int exitcode, const char *fmt, ...)
76 va_list ap;
78 va_start (ap, fmt);
79 vfprintf (stderr, fmt, ap);
80 va_end (ap);
81 fputc ('\n', stderr);
82 fflush (stderr);
83 _exit (exitcode);
86 #ifndef GL_TEXTURE_RECTANGLE_ARB
87 #define GL_TEXTURE_RECTANGLE_ARB 0x84F5
88 #endif
90 #ifndef GL_BGRA
91 #define GL_BGRA 0x80E1
92 #endif
94 #ifndef GL_UNSIGNED_INT_8_8_8_8
95 #define GL_UNSIGNED_INT_8_8_8_8 0x8035
96 #endif
98 #ifndef GL_UNSIGNED_INT_8_8_8_8_REV
99 #define GL_UNSIGNED_INT_8_8_8_8_REV 0x8367
100 #endif
102 #if 0
103 #define lprintf printf
104 #else
105 #define lprintf(...)
106 #endif
108 #define ARSERT(cond) for (;;) { \
109 if (!(cond)) { \
110 errx (1, "%s:%d " #cond, __FILE__, __LINE__); \
112 break; \
115 struct slice {
116 int h;
117 int texindex;
120 struct tile {
121 int x, y, w, h;
122 int slicecount;
123 int sliceheight;
124 fz_pixmap *pixmap;
125 struct slice slices[1];
128 struct pagedim {
129 int pageno;
130 int rotate;
131 int left;
132 int tctmready;
133 fz_bbox bounds;
134 fz_rect pagebox;
135 fz_rect mediabox;
136 fz_matrix ctm, zoomctm, lctm, tctm;
139 struct slink {
140 fz_bbox bbox;
141 fz_link *link;
144 enum { DPDF, DXPS, DCBZ };
146 struct page {
147 int gen;
148 int type;
149 int pageno;
150 int pdimno;
151 fz_text_span *text;
152 union {
153 void *ptr;
154 pdf_page *pdfpage;
155 xps_page *xpspage;
156 cbz_page *cbzpage;
157 } u;
158 fz_display_list *dlist;
159 int slinkcount;
160 struct slink *slinks;
161 struct mark {
162 int i;
163 fz_text_span *span;
164 } fmark, lmark;
165 void (*freepage) (void *);
168 struct {
169 int type;
170 int sliceheight;
171 struct pagedim *pagedims;
172 int pagecount;
173 int pagedimcount;
174 union {
175 pdf_document *pdf;
176 xps_document *xps;
177 cbz_document *cbz;
178 } u;
179 fz_context *ctx;
180 int w, h;
182 int texindex;
183 int texcount;
184 GLuint *texids;
186 GLenum texiform;
187 GLenum texform;
188 GLenum texty;
190 fz_colorspace *colorspace;
192 struct {
193 int w, h;
194 struct slice *slice;
195 } *texowners;
197 int rotate;
198 int proportional;
199 int trimmargins;
200 int needoutline;
201 int gen;
202 int aalevel;
204 int trimanew;
205 fz_bbox trimfuzz;
206 fz_pixmap *pig;
208 pthread_t thread;
209 int cr, cw;
210 FT_Face face;
212 void (*closedoc) (void);
213 void (*freepage) (void *);
214 } state;
216 static void UNUSED debug_rect (const char *cap, fz_rect r)
218 printf ("%s(rect) %.2f,%.2f,%.2f,%.2f\n", cap, r.x0, r.y0, r.x1, r.y1);
221 static void UNUSED debug_bbox (const char *cap, fz_bbox r)
223 printf ("%s(bbox) %d,%d,%d,%d\n", cap, r.x0, r.y0, r.x1, r.y1);
226 static void UNUSED debug_matrix (const char *cap, fz_matrix m)
228 printf ("%s(matrix) %.2f,%.2f,%.2f,%.2f %.2f %.2f\n", cap,
229 m.a, m.b, m.c, m.d, m.e, m.f);
232 static pthread_mutex_t mutex = PTHREAD_MUTEX_INITIALIZER;
234 static void lock (const char *cap)
236 int ret = pthread_mutex_lock (&mutex);
237 if (ret) {
238 errx (1, "%s: pthread_mutex_lock: %s", cap, strerror (ret));
242 static void unlock (const char *cap)
244 int ret = pthread_mutex_unlock (&mutex);
245 if (ret) {
246 errx (1, "%s: pthread_mutex_unlock: %s", cap, strerror (ret));
250 static int trylock (const char *cap)
252 int ret = pthread_mutex_trylock (&mutex);
254 if (ret && ret != EBUSY) {
255 errx (1, "%s: pthread_mutex_trylock: %s", cap, strerror (ret));
257 return ret == EBUSY;
260 static void *parse_pointer (const char *cap, const char *s)
262 int ret;
263 void *ptr;
265 ret = sscanf (s, "%" FMT_ptr, FMT_ptr_cast (&ptr));
266 if (ret != 1) {
267 errx (1, "%s: cannot parse pointer in `%s'", cap, s);
269 return ptr;
272 static double now (void)
274 struct timeval tv;
276 if (gettimeofday (&tv, NULL)) {
277 err (1, "gettimeofday");
279 return tv.tv_sec + tv.tv_usec*1e-6;
282 static int hasdata (void)
284 int ret, avail;
285 ret = ioctl (state.cr, FIONREAD, &avail);
286 if (ret) err (1, "hasdata: FIONREAD error ret=%d", ret);
287 return avail > 0;
290 CAMLprim value ml_hasdata (value fd_v)
292 CAMLparam1 (fd_v);
293 int ret, avail;
295 ret = ioctl (Int_val (fd_v), FIONREAD, &avail);
296 if (ret) uerror ("ioctl (FIONREAD)", Nothing);
297 CAMLreturn (Val_bool (avail > 0));
300 static void readdata (void *p, int size)
302 ssize_t n;
304 n = read (state.cr, p, size);
305 if (n - size) {
306 if (!n) errx (1, "EOF while reading");
307 err (1, "read (req %d, ret %zd)", size, n);
311 static void writedata (char *p, int size)
313 char buf[4];
314 ssize_t n;
316 buf[0] = (size >> 24) & 0xff;
317 buf[1] = (size >> 16) & 0xff;
318 buf[2] = (size >> 8) & 0xff;
319 buf[3] = (size >> 0) & 0xff;
321 n = write (state.cw, buf, 4);
322 if (n != 4) {
323 if (!n) errx (1, "EOF while writing length");
324 err (1, "write %zd", n);
327 n = write (state.cw, p, size);
328 if (n - size) {
329 if (!n) errx (1, "EOF while writing data");
330 err (1, "write (req %d, ret %zd)", size, n);
334 static int readlen (void)
336 unsigned char p[4];
338 readdata (p, 4);
339 return (p[0] << 24) | (p[1] << 16) | (p[2] << 8) | p[3];
342 static void GCC_FMT_ATTR (1, 2) printd (const char *fmt, ...)
344 int size = 200, len;
345 va_list ap;
346 char *buf;
348 buf = malloc (size);
349 for (;;) {
350 if (!buf) err (errno, "malloc for temp buf (%d bytes) failed", size);
352 va_start (ap, fmt);
353 len = vsnprintf (buf, size, fmt, ap);
354 va_end (ap);
356 if (len > -1 && len < size) {
357 writedata (buf, len);
358 break;
361 if (len > -1) {
362 size = len + 1;
364 else {
365 size *= 2;
367 buf = realloc (buf, size);
369 free (buf);
372 static void closepdf (void)
374 if (state.u.pdf) {
375 pdf_close_document (state.u.pdf);
376 state.u.pdf = NULL;
380 static void closexps (void)
382 if (state.u.xps) {
383 xps_close_document (state.u.xps);
384 state.u.xps = NULL;
388 static void closecbz (void)
390 if (state.u.cbz) {
391 cbz_close_document (state.u.cbz);
392 state.u.cbz = NULL;
396 static void freepdfpage (void *ptr)
398 pdf_free_page (state.u.pdf, ptr);
401 static void freexpspage (void *ptr)
403 xps_free_page (state.u.xps, ptr);
406 static void freecbzpage (void *ptr)
408 cbz_free_page (state.u.cbz, ptr);
411 static void openxref (char *filename, char *password)
413 int i, len;
415 for (i = 0; i < state.texcount; ++i) {
416 state.texowners[i].w = -1;
417 state.texowners[i].slice = NULL;
420 if (state.closedoc) state.closedoc ();
422 len = strlen (filename);
424 state.type = DPDF;
425 if (len > 4) {
426 char ext[4];
428 ext[0] = tolower ((int) filename[len-3]);
429 ext[1] = tolower ((int) filename[len-2]);
430 ext[2] = tolower ((int) filename[len-1]);
432 /**/ if (ext[0] == 'x' && ext[1] == 'p' && ext[2] == 's') {
433 state.type = DXPS;
435 else if (ext[0] == 'c' && ext[1] == 'b' && ext[2] == 'z') {
436 state.type = DCBZ;
440 if (state.pagedims) {
441 free (state.pagedims);
442 state.pagedims = NULL;
444 state.pagedimcount = 0;
446 fz_set_aa_level (state.ctx, state.aalevel);
447 switch (state.type) {
448 case DPDF:
449 state.u.pdf = pdf_open_document (state.ctx, filename);
450 if (pdf_needs_password (state.u.pdf)) {
451 int okay = pdf_authenticate_password (state.u.pdf, password);
452 if (!okay) {
453 errx (1, "invalid password");
456 state.pagecount = pdf_count_pages (state.u.pdf);
457 state.closedoc = closepdf;
458 state.freepage = freepdfpage;
459 break;
461 case DXPS:
462 state.u.xps = xps_open_document (state.ctx, filename);
463 state.pagecount = xps_count_pages (state.u.xps);
464 state.closedoc = closexps;
465 state.freepage = freexpspage;
466 break;
468 case DCBZ:
469 state.u.cbz = cbz_open_document (state.ctx, filename);
470 state.pagecount = cbz_count_pages (state.u.cbz);
471 state.closedoc = closecbz;
472 state.freepage = freecbzpage;
473 break;
477 static void pdfinfo (void)
479 if (state.type == DPDF) {
480 pdf_obj *infoobj;
482 printd ("info PDF version\t%d.%d",
483 state.u.pdf->version / 10, state.u.pdf->version % 10);
485 infoobj = pdf_dict_gets (state.u.pdf->trailer, "Info");
486 if (infoobj) {
487 int i;
488 char *s;
489 char *items[] = { "Title", "Author", "Creator",
490 "Producer", "CreationDate" };
492 for (i = 0; i < sizeof (items) / sizeof (*items); ++i) {
493 pdf_obj *obj = pdf_dict_gets (infoobj, items[i]);
494 s = pdf_to_utf8 (state.ctx, obj);
495 if (*s) {
496 if (i == 0) {
497 printd ("title %s", s);
499 printd ("info %s\t%s", items[i], s);
501 fz_free (state.ctx, s);
504 printd ("infoend");
508 static void unlinktile (struct tile *tile)
510 int i;
512 for (i = 0; i < tile->slicecount; ++i) {
513 struct slice *s = &tile->slices[i];
515 if (s->texindex != -1) {
516 if (state.texowners[s->texindex].slice == s) {
517 state.texowners[s->texindex].slice = NULL;
523 static void freepage (struct page *page)
525 if (page->text) {
526 fz_free_text_span (state.ctx, page->text);
528 if (page->slinks) {
529 free (page->slinks);
531 page->freepage (page->u.ptr);
532 fz_free_display_list (state.ctx, page->dlist);
533 free (page);
536 static void freetile (struct tile *tile)
538 unlinktile (tile);
539 #ifndef PIGGYBACK
540 fz_drop_pixmap (state.ctx, tile->pixmap);
541 #else
542 if (state.pig) {
543 fz_drop_pixmap (state.ctx, state.pig);
545 state.pig = tile->pixmap;
546 #endif
547 free (tile);
550 #ifdef __ALTIVEC__
551 #include <altivec.h>
553 static int cacheline32bytes;
554 extern char **environ;
556 static void __attribute__ ((constructor)) clcheck (void)
558 char **envp = environ;
559 unsigned long *auxv;
561 while (*envp++);
563 for (auxv = (unsigned long *) envp; *auxv != 0; auxv += 2) {
564 if (*auxv == 19) {
565 cacheline32bytes = auxv[1] == 32;
566 return;
571 static void OPTIMIZE (3) clearpixmap (fz_pixmap *pixmap)
573 if (cacheline32bytes) {
574 intptr_t a1, a2, diff;
575 size_t sizea, i, size = pixmap->w * pixmap->h * pixmap->n;
576 vector unsigned char v = vec_splat_u8 (-1);
577 vector unsigned char *p;
579 a1 = a2 = (intptr_t) pixmap->samples;
580 a2 = (a1 + 31) & ~31;
581 diff = a2 - a1;
582 sizea = size - diff;
583 p = (void *) a2;
585 while (a1 != a2) *(char *) a1++ = 0xff;
586 for (i = 0; i < (sizea & ~31); i += 32) {
587 __asm volatile ("dcbz %0, %1"::"b"(a2),"r"(i));
588 vec_st (v, i, p);
589 vec_st (v, i + 16, p);
591 while (i < sizea) *((char *) a1 + i++) = 0xff;
593 else fz_clear_pixmap_with_value (state.ctx, pixmap, 0xff);
595 #else
596 #define clearpixmap(p) fz_clear_pixmap_with_value (state.ctx, p, 0xff)
597 #endif
599 static fz_matrix trimctm (pdf_page *page, int pindex)
601 fz_matrix ctm;
602 struct pagedim *pdim = &state.pagedims[pindex];
604 if (!pdim->tctmready) {
605 if (state.trimmargins) {
606 fz_rect realbox;
608 ctm = fz_concat (fz_rotate (-pdim->rotate), fz_scale (1, -1));
609 realbox = fz_transform_rect (ctm, pdim->mediabox);
610 ctm = fz_concat (ctm, fz_translate (-realbox.x0, -realbox.y0));
611 ctm = fz_concat (fz_invert_matrix (page->ctm), ctm);
613 else {
614 ctm = fz_identity;
616 pdim->tctm = ctm;
617 pdim->tctmready = 1;
619 return pdim->tctm;
622 static fz_matrix pagectm (struct page *page)
624 if (page->type == DPDF) {
625 return fz_concat (trimctm (page->u.pdfpage, page->pdimno),
626 state.pagedims[page->pdimno].ctm);
628 else {
629 fz_matrix ctm;
630 struct pagedim *pdim = &state.pagedims[page->pdimno];
632 ctm = state.pagedims[page->pdimno].ctm;
633 ctm = fz_concat (fz_translate (-pdim->mediabox.x0,
634 -pdim->mediabox.y0), ctm);
635 return ctm;
639 static void *loadpage (int pageno, int pindex)
641 fz_device *dev;
642 struct page *page = NULL;
644 page = calloc (sizeof (struct page), 1);
645 if (!page) {
646 err (1, "calloc page %d", pageno);
649 page->dlist = fz_new_display_list (state.ctx);
650 dev = fz_new_list_device (state.ctx, page->dlist);
651 switch (state.type) {
652 case DPDF:
653 page->u.pdfpage = pdf_load_page (state.u.pdf, pageno);
654 pdf_run_page (state.u.pdf, page->u.pdfpage, dev, fz_identity, NULL);
655 page->freepage = freepdfpage;
656 break;
658 case DXPS:
659 page->u.xpspage = xps_load_page (state.u.xps, pageno);
660 xps_run_page (state.u.xps, page->u.xpspage, dev, fz_identity, NULL);
661 page->freepage = freexpspage;
662 break;
664 case DCBZ:
665 page->u.cbzpage = cbz_load_page (state.u.cbz, pageno);
666 cbz_run_page (state.u.cbz, page->u.cbzpage, dev, fz_identity, NULL);
667 page->freepage = freecbzpage;
668 break;
670 fz_free_device (dev);
672 page->pdimno = pindex;
673 page->pageno = pageno;
674 page->gen = state.gen;
675 page->type = state.type;
677 return page;
680 static struct tile *alloctile (int h)
682 int i;
683 int slicecount;
684 size_t tilesize;
685 struct tile *tile;
687 slicecount = (h + state.sliceheight - 1) / state.sliceheight;
688 tilesize = sizeof (*tile) + ((slicecount - 1) * sizeof (struct slice));
689 tile = calloc (tilesize, 1);
690 if (!tile) {
691 err (1, "can not allocate tile (%" FMT_s " bytes)", tilesize);
693 for (i = 0; i < slicecount; ++i) {
694 int sh = MIN (h, state.sliceheight);
695 tile->slices[i].h = sh;
696 tile->slices[i].texindex = -1;
697 h -= sh;
699 tile->slicecount = slicecount;
700 tile->sliceheight = state.sliceheight;
701 return tile;
704 struct obs {
705 int cured;
706 fz_bbox b;
709 static void obs_fill_image (fz_device *dev, fz_image *image, fz_matrix ctm,
710 float alpha)
712 struct obs *obs = dev->user;
714 if (!obs->cured && fabs (1.0 - alpha) < 1e6) {
715 fz_bbox b = fz_round_rect (fz_transform_rect (ctm, fz_unit_rect));
716 b = fz_intersect_bbox (b, obs->b);
717 obs->cured = b.x0 == obs->b.x0
718 && b.x1 == obs->b.x1
719 && b.y0 == obs->b.y0
720 && b.y1 == obs->b.y1;
724 static int obscured (struct page *page, fz_bbox bbox)
726 fz_device dev;
727 struct obs obs;
729 memset (&dev, 0, sizeof (dev));
730 memset (&obs, 0, sizeof (obs));
731 dev.hints = 0;
732 dev.flags = 0;
733 dev.user = &obs;
734 dev.fill_image = obs_fill_image;
735 obs.b = bbox;
736 fz_run_display_list (page->dlist, &dev, pagectm (page), bbox, NULL);
737 return obs.cured;
740 static struct tile *rendertile (struct page *page, int x, int y, int w, int h)
742 fz_bbox bbox;
743 fz_device *dev;
744 struct tile *tile;
745 struct pagedim *pdim;
747 tile = alloctile (h);
748 pdim = &state.pagedims[page->pdimno];
750 bbox = pdim->bounds;
751 bbox.x0 += x;
752 bbox.y0 += y;
753 bbox.x1 = bbox.x0 + w;
754 bbox.y1 = bbox.y0 + h;
756 if (state.pig) {
757 if (state.pig->w == w
758 && state.pig->h == h
759 && state.pig->colorspace == state.colorspace) {
760 tile->pixmap = state.pig;
761 tile->pixmap->x = bbox.x0;
762 tile->pixmap->y = bbox.y0;
764 else {
765 fz_drop_pixmap (state.ctx, state.pig);
767 state.pig = NULL;
769 if (!tile->pixmap) {
770 tile->pixmap =
771 fz_new_pixmap_with_rect (state.ctx, state.colorspace, bbox);
774 tile->w = w;
775 tile->h = h;
776 if ((w < 128 && h < 128) || !obscured (page, bbox)) {
777 clearpixmap (tile->pixmap);
779 dev = fz_new_draw_device (state.ctx, tile->pixmap);
780 fz_run_display_list (page->dlist, dev, pagectm (page), bbox, NULL);
781 fz_free_device (dev);
783 return tile;
786 static void initpdims (void)
788 int pageno;
789 double start, end;
791 start = now ();
792 for (pageno = 0; pageno < state.pagecount; ++pageno) {
793 int rotate;
794 struct pagedim *p;
795 fz_rect mediabox;
797 switch (state.type) {
798 case DPDF: {
799 pdf_obj *pageobj = state.u.pdf->page_objs[pageno];
801 if (state.trimmargins) {
802 pdf_obj *obj;
803 pdf_page *page;
805 page = pdf_load_page (state.u.pdf, pageno);
806 obj = pdf_dict_gets (pageobj, "llpp.TrimBox");
807 if (state.trimanew || !obj) {
808 fz_rect rect;
809 fz_bbox bbox;
810 fz_matrix ctm;
811 fz_device *dev;
813 dev = fz_new_bbox_device (state.ctx, &bbox);
814 dev->hints |= FZ_IGNORE_SHADE;
815 ctm = fz_invert_matrix (page->ctm);
816 pdf_run_page (state.u.pdf, page, dev, fz_identity, NULL);
817 fz_free_device (dev);
819 rect.x0 = bbox.x0 + state.trimfuzz.x0;
820 rect.x1 = bbox.x1 + state.trimfuzz.x1;
821 rect.y0 = bbox.y0 + state.trimfuzz.y0;
822 rect.y1 = bbox.y1 + state.trimfuzz.y1;
823 rect = fz_transform_rect (ctm, rect);
824 rect = fz_intersect_rect (rect, page->mediabox);
826 if (fz_is_empty_rect (rect)) {
827 mediabox = page->mediabox;
829 else {
830 mediabox = rect;
833 obj = pdf_new_array (state.ctx, 4);
834 pdf_array_push (obj, pdf_new_real (state.ctx, mediabox.x0));
835 pdf_array_push (obj, pdf_new_real (state.ctx, mediabox.y0));
836 pdf_array_push (obj, pdf_new_real (state.ctx, mediabox.x1));
837 pdf_array_push (obj, pdf_new_real (state.ctx, mediabox.y1));
838 pdf_dict_puts (pageobj, "llpp.TrimBox", obj);
840 else {
841 mediabox.x0 = pdf_to_real (pdf_array_get (obj, 0));
842 mediabox.y0 = pdf_to_real (pdf_array_get (obj, 1));
843 mediabox.x1 = pdf_to_real (pdf_array_get (obj, 2));
844 mediabox.y1 = pdf_to_real (pdf_array_get (obj, 3));
847 rotate = page->rotate;
848 pdf_free_page (state.u.pdf, page);
850 printd ("progress %f Trimming %d",
851 (double) (pageno + 1) / state.pagecount,
852 pageno + 1);
854 else {
855 fz_rect cropbox;
857 mediabox = pdf_to_rect (state.ctx,
858 pdf_dict_gets (pageobj, "MediaBox"));
859 if (fz_is_empty_rect (mediabox)) {
860 fprintf (stderr, "cannot find page size for page %d\n",
861 pageno+1);
862 mediabox.x0 = 0;
863 mediabox.y0 = 0;
864 mediabox.x1 = 612;
865 mediabox.y1 = 792;
868 cropbox = pdf_to_rect (state.ctx,
869 pdf_dict_gets (pageobj, "CropBox"));
870 if (!fz_is_empty_rect (cropbox)) {
871 mediabox = fz_intersect_rect (mediabox, cropbox);
873 rotate = pdf_to_int (pdf_dict_gets (pageobj, "Rotate"));
875 break;
878 case DXPS:
880 xps_page *page;
882 page = xps_load_page (state.u.xps, pageno);
883 mediabox = xps_bound_page (state.u.xps, page);
884 rotate = 0;
885 if (state.trimmargins) {
886 fz_rect rect;
887 fz_bbox bbox;
888 fz_device *dev;
890 dev = fz_new_bbox_device (state.ctx, &bbox);
891 dev->hints |= FZ_IGNORE_SHADE;
892 xps_run_page (state.u.xps, page, dev, fz_identity, NULL);
893 fz_free_device (dev);
895 rect.x0 = bbox.x0 + state.trimfuzz.x0;
896 rect.x1 = bbox.x1 + state.trimfuzz.x1;
897 rect.y0 = bbox.y0 + state.trimfuzz.y0;
898 rect.y1 = bbox.y1 + state.trimfuzz.y1;
899 rect = fz_intersect_rect (rect, mediabox);
901 if (!fz_is_empty_rect (rect)) {
902 mediabox = rect;
905 xps_free_page (state.u.xps, page);
906 printd ("progress %f loading %d",
907 (double) (pageno + 1) / state.pagecount,
908 pageno + 1);
910 break;
912 case DCBZ:
914 rotate = 0;
915 if (state.trimmargins) {
916 cbz_page *page;
918 page = cbz_load_page (state.u.cbz, pageno);
919 mediabox = cbz_bound_page (state.u.cbz, page);
920 cbz_free_page (state.u.cbz, page);
921 printd ("progress %f Trimming %d",
922 (double) (pageno + 1) / state.pagecount,
923 pageno + 1);
925 else {
926 mediabox.x0 = mediabox.y0 = 0;
927 mediabox.x1 = 900;
928 mediabox.y1 = 900;
931 break;
933 default:
934 ARSERT (0 && state.type);
937 if (state.pagedimcount == 0
938 || (p = &state.pagedims[state.pagedimcount-1], p->rotate != rotate)
939 || memcmp (&p->mediabox, &mediabox, sizeof (mediabox))) {
940 size_t size;
942 size = (state.pagedimcount + 1) * sizeof (*state.pagedims);
943 state.pagedims = realloc (state.pagedims, size);
944 if (!state.pagedims) {
945 err (1, "realloc pagedims to %" FMT_s " (%d elems)",
946 size, state.pagedimcount + 1);
949 p = &state.pagedims[state.pagedimcount++];
950 p->rotate = rotate;
951 p->mediabox = mediabox;
952 p->pageno = pageno;
955 end = now ();
956 if (state.trimmargins) {
957 printd ("progress 1 Trimmed %d pages in %f seconds",
958 state.pagecount, end - start);
960 else {
961 printd ("vmsg Processed %d pages in %f seconds",
962 state.pagecount, end - start);
964 state.trimanew = 0;
967 static void layout (void)
969 int pindex;
970 fz_rect box;
971 fz_matrix ctm;
972 double zoom, w, maxw = 0;
973 struct pagedim *p = state.pagedims;
975 if (state.proportional) {
976 for (pindex = 0; pindex < state.pagedimcount; ++pindex, ++p) {
977 box = fz_transform_rect (fz_rotate (p->rotate + state.rotate),
978 p->mediabox);
979 w = box.x1 - box.x0;
980 maxw = MAX (w, maxw);
984 p = state.pagedims;
985 for (pindex = 0; pindex < state.pagedimcount; ++pindex, ++p) {
986 fz_bbox bbox;
988 ctm = fz_rotate (state.rotate);
989 box = fz_transform_rect (fz_rotate (p->rotate + state.rotate),
990 p->mediabox);
991 w = box.x1 - box.x0;
993 if (state.proportional) {
994 double scale = w / maxw;
995 zoom = (state.w / w) * scale;
997 else {
998 zoom = state.w / w;
1001 p->zoomctm = fz_scale (zoom, zoom);
1002 ctm = fz_concat (p->zoomctm, ctm);
1004 p->pagebox = fz_transform_rect (fz_rotate (p->rotate), p->mediabox);
1005 p->pagebox.x1 -= p->pagebox.x0;
1006 p->pagebox.y1 -= p->pagebox.y0;
1007 p->pagebox.x0 = 0;
1008 p->pagebox.y0 = 0;
1009 bbox = fz_round_rect (fz_transform_rect (ctm, p->pagebox));
1011 p->bounds = bbox;
1012 p->left = state.proportional ? ((maxw - w) * zoom) / 2.0 : 0;
1013 p->ctm = ctm;
1015 ctm = fz_identity;
1016 ctm = fz_concat (ctm, fz_translate (0, -p->mediabox.y1));
1017 ctm = fz_concat (ctm, fz_scale (zoom, -zoom));
1018 ctm = fz_concat (ctm, fz_rotate (p->rotate + state.rotate));
1019 p->lctm = ctm;
1021 p->tctmready = 0;
1024 while (p-- != state.pagedims) {
1025 int x0 = MIN (p->bounds.x0, p->bounds.x1);
1026 int y0 = MIN (p->bounds.y0, p->bounds.y1);
1027 int x1 = MAX (p->bounds.x0, p->bounds.x1);
1028 int y1 = MAX (p->bounds.y0, p->bounds.y1);
1029 int w = x1 - x0;
1030 int h = y1 - y0;
1032 printd ("pdim %d %d %d %d", p->pageno, w, h, p->left);
1036 static void recurse_outline (fz_outline *outline, int level)
1038 while (outline) {
1039 fz_link_dest *dest;
1040 int i, top = 0;
1041 struct pagedim *pdim = state.pagedims;
1043 dest = &outline->dest;
1044 for (i = 0; i < state.pagedimcount; ++i) {
1045 if (state.pagedims[i].pageno > dest->ld.gotor.page)
1046 break;
1047 pdim = &state.pagedims[i];
1049 if (dest->ld.gotor.flags & fz_link_flag_t_valid) {
1050 fz_point p;
1051 p.x = 0;
1052 p.y = dest->ld.gotor.lt.y;
1053 p = fz_transform_point (pdim->lctm, p);
1054 top = p.y;
1056 if (dest->ld.gotor.page >= 0 && dest->ld.gotor.page < 1<<30) {
1057 int h;
1058 double y0, y1;
1060 y0 = MIN (pdim->bounds.y0, pdim->bounds.y1);
1061 y1 = MAX (pdim->bounds.y0, pdim->bounds.y1);
1062 h = y1 - y0;
1063 printd ("o %d %d %d %d %s",
1064 level, dest->ld.gotor.page, top, h, outline->title);
1066 if (outline->down) {
1067 recurse_outline (outline->down, level + 1);
1069 outline = outline->next;
1073 static void process_outline (void)
1075 fz_outline *outline;
1077 if (!state.needoutline) return;
1079 state.needoutline = 0;
1080 switch (state.type) {
1081 case DPDF:
1082 outline = pdf_load_outline (state.u.pdf);
1083 break;
1084 case DXPS:
1085 outline = xps_load_outline (state.u.xps);
1086 break;
1087 default:
1088 outline = NULL;
1089 break;
1091 if (outline) {
1092 recurse_outline (outline, 0);
1093 fz_free_outline (state.ctx, outline);
1097 static int comparespans (const void *l, const void *r)
1099 fz_text_span const *const*ls = l;
1100 fz_text_span const *const*rs = r;
1101 return (*ls)->text->bbox.y0 - (*rs)->text->bbox.y0;
1104 /* wishful thinking function */
1105 static void search (regex_t *re, int pageno, int y, int forward)
1107 int i, j;
1108 int ret;
1109 char *p;
1110 char buf[256];
1111 fz_matrix ctm;
1112 fz_device *tdev;
1113 union { void *ptr; pdf_page *pdfpage; xps_page *xpspage; } u;
1114 fz_text_span *text, *span, **pspan;
1115 struct pagedim *pdim, *pdimprev;
1116 int stop = 0;
1117 int niters = 0;
1118 int nspans;
1119 double start, end;
1121 if (!(state.type == DPDF || state.type == DXPS))
1122 return;
1124 start = now ();
1125 while (pageno >= 0 && pageno < state.pagecount && !stop) {
1126 if (niters++ == 5) {
1127 niters = 0;
1128 if (hasdata ()) {
1129 printd ("progress 1 attention requested aborting search at %d",
1130 pageno);
1131 stop = 1;
1133 else {
1134 printd ("progress %f searching in page %d",
1135 (double) (pageno + 1) / state.pagecount,
1136 pageno);
1139 pdimprev = NULL;
1140 for (i = 0; i < state.pagedimcount; ++i) {
1141 pdim = &state.pagedims[i];
1142 if (pdim->pageno == pageno) {
1143 goto found;
1145 if (pdim->pageno > pageno) {
1146 pdim = pdimprev;
1147 goto found;
1149 pdimprev = pdim;
1151 pdim = pdimprev;
1152 found:
1154 text = fz_new_text_span (state.ctx);
1155 tdev = fz_new_text_device (state.ctx, text);
1157 switch (state.type) {
1158 case DPDF:
1159 u.pdfpage = pdf_load_page (state.u.pdf, pageno);
1160 pdf_run_page (state.u.pdf, u.pdfpage, tdev, fz_identity, NULL);
1161 break;
1163 case DXPS:
1164 u.xpspage = xps_load_page (state.u.xps, pageno);
1165 xps_run_page (state.u.xps, u.xpspage, tdev, fz_identity, NULL);
1166 break;
1168 default:
1169 ARSERT (0 && state.type);
1172 fz_free_device (tdev);
1174 nspans = 0;
1175 for (span = text; span; span = span->next) {
1176 nspans++;
1178 pspan = malloc (sizeof (void *) * nspans);
1179 if (!pspan) {
1180 err (1, "malloc span pointers %" FMT_s, sizeof (void *) * nspans);
1182 for (i = 0, span = text; span; span = span->next, ++i) {
1183 pspan[i] = span;
1185 qsort (pspan, nspans, sizeof (fz_text_span *), comparespans);
1187 j = forward ? 0 : nspans - 1;
1188 while (nspans--) {
1189 regmatch_t rm;
1191 span = pspan[j];
1192 j += forward ? 1 : -1;
1193 p = buf;
1194 for (i = 0; i < span->len; ++i) {
1195 int len;
1196 char cbuf[4];
1198 if (forward) {
1199 if (span->text[i].bbox.y0 < y + 1) {
1200 continue;
1203 else {
1204 if (span->text[i].bbox.y0 > y - 1) {
1205 continue;
1208 len = runetochar (cbuf, &span->text[i].c);
1209 if (sizeof (buf) - 1 - (p - buf) > len) {
1210 int k;
1211 for (k = 0; k < len; ++k)
1212 *p++ = cbuf[k];
1214 else {
1215 break;
1218 if (p == buf) {
1219 continue;
1221 *p++ = 0;
1223 ret = regexec (re, buf, 1, &rm, 0);
1224 if (ret) {
1225 if (ret != REG_NOMATCH) {
1226 size_t size;
1227 char errbuf[80];
1228 size = regerror (ret, re, errbuf, sizeof (errbuf));
1229 printd ("msg regexec error `%.*s'",
1230 (int) size, errbuf);
1231 fz_free_text_span (state.ctx, text);
1232 state.freepage (u.ptr);
1233 free (pspan);
1234 return;
1237 else {
1238 fz_bbox *sb, *eb;
1239 fz_point p1, p2, p3, p4;
1240 int a, b, c, l;
1242 l = span->len;
1243 for (a = 0, c = 0; c < rm.rm_so && a < l; a++) {
1244 c += runelen (span->text[a].c);
1246 for (b = a; c < rm.rm_eo - 1 && b < l; b++) {
1247 c += runelen (span->text[b].c);
1250 if (runelen (span->text[b].c) > 1) {
1251 b = MAX (0, b-1);
1253 sb = &span->text[MIN (a, l-1)].bbox;
1254 eb = &span->text[MIN (b, l-1)].bbox;
1256 p1.x = sb->x0;
1257 p1.y = sb->y0;
1258 p2.x = eb->x1;
1259 p2.y = sb->y0;
1260 p3.x = eb->x1;
1261 p3.y = eb->y1;
1262 p4.x = sb->x0;
1263 p4.y = eb->y1;
1265 switch (state.type) {
1266 case DPDF:
1267 trimctm (u.pdfpage, pdim - state.pagedims);
1268 ctm = fz_concat (pdim->tctm, pdim->zoomctm);
1269 break;
1271 case DXPS:
1272 ctm = pdim->ctm;
1273 break;
1276 p1 = fz_transform_point (ctm, p1);
1277 p2 = fz_transform_point (ctm, p2);
1278 p3 = fz_transform_point (ctm, p3);
1279 p4 = fz_transform_point (ctm, p4);
1281 if (!stop) {
1282 printd ("firstmatch %d %d %f %f %f %f %f %f %f %f",
1283 pageno, 1,
1284 p1.x, p1.y,
1285 p2.x, p2.y,
1286 p3.x, p3.y,
1287 p4.x, p4.y);
1289 printd ("progress 1 found at %d `%.*s' in %f sec",
1290 pageno, (int) (rm.rm_eo - rm.rm_so), &buf[rm.rm_so],
1291 now () - start);
1293 else {
1294 printd ("match %d %d %f %f %f %f %f %f %f %f",
1295 pageno, 2,
1296 p1.x, p1.y,
1297 p2.x, p2.y,
1298 p3.x, p3.y,
1299 p4.x, p4.y);
1301 stop = 1;
1304 if (forward) {
1305 pageno += 1;
1306 y = 0;
1308 else {
1309 pageno -= 1;
1310 y = INT_MAX;
1312 fz_free_text_span (state.ctx, text);
1313 state.freepage (u.ptr);
1314 free (pspan);
1316 end = now ();
1317 if (!stop) {
1318 printd ("progress 1 no matches %f sec", end - start);
1320 printd ("clearrects");
1323 static void set_tex_params (int colorspace)
1325 switch (colorspace) {
1326 case 0:
1327 state.texiform = GL_RGBA8;
1328 state.texform = GL_RGBA;
1329 state.texty = GL_UNSIGNED_BYTE;
1330 state.colorspace = fz_device_rgb;
1331 break;
1332 case 1:
1333 state.texiform = GL_RGBA8;
1334 state.texform = GL_BGRA;
1335 state.texty = fz_is_big_endian ()
1336 ? GL_UNSIGNED_INT_8_8_8_8
1337 : GL_UNSIGNED_INT_8_8_8_8_REV;
1338 state.colorspace = fz_device_bgr;
1339 break;
1340 case 2:
1341 state.texiform = GL_LUMINANCE_ALPHA;
1342 state.texform = GL_LUMINANCE_ALPHA;
1343 state.texty = GL_UNSIGNED_BYTE;
1344 state.colorspace = fz_device_gray;
1345 break;
1346 default:
1347 errx (1, "invalid colorspce %d", colorspace);
1351 static void realloctexts (int texcount)
1353 size_t size;
1355 if (texcount == state.texcount) return;
1357 if (texcount < state.texcount) {
1358 glDeleteTextures (state.texcount - texcount,
1359 state.texids + texcount);
1362 size = texcount * sizeof (*state.texids);
1363 state.texids = realloc (state.texids, size);
1364 if (!state.texids) {
1365 err (1, "realloc texids %" FMT_s, size);
1368 size = texcount * sizeof (*state.texowners);
1369 state.texowners = realloc (state.texowners, size);
1370 if (!state.texowners) {
1371 err (1, "realloc texowners %" FMT_s, size);
1373 if (texcount > state.texcount) {
1374 int i;
1376 glGenTextures (texcount - state.texcount,
1377 state.texids + state.texcount);
1378 for (i = state.texcount; i < texcount; ++i) {
1379 state.texowners[i].w = -1;
1380 state.texowners[i].slice = NULL;
1383 state.texcount = texcount;
1384 state.texindex = 0;
1387 static void * mainloop (void *unused)
1389 char *p = NULL;
1390 int len, ret, oldlen = 0;
1392 for (;;) {
1393 len = readlen ();
1394 if (len == 0) {
1395 errx (1, "readlen returned 0");
1398 if (oldlen < len + 1) {
1399 p = realloc (p, len + 1);
1400 if (!p) {
1401 err (1, "realloc %d failed", len + 1);
1403 oldlen = len + 1;
1405 readdata (p, len);
1406 p[len] = 0;
1408 if (!strncmp ("open", p, 4)) {
1409 size_t filenamelen;
1410 char *password;
1411 char *filename = p + 5;
1413 filenamelen = strlen (filename);
1414 password = filename + filenamelen + 1;
1416 openxref (filename, password);
1417 pdfinfo ();
1418 initpdims ();
1419 printd ("msg Opened %s (press h/F1 to get help)", filename);
1420 state.needoutline = 1;
1422 else if (!strncmp ("cs", p, 2)) {
1423 int i, colorspace;
1425 ret = sscanf (p + 2, " %d", &colorspace);
1426 if (ret != 1) {
1427 errx (1, "malformed cs `%.*s' ret=%d", len, p, ret);
1429 lock ("cs");
1430 set_tex_params (colorspace);
1431 for (i = 0; i < state.texcount; ++i) {
1432 state.texowners[i].w = -1;
1433 state.texowners[i].slice = NULL;
1435 unlock ("cs");
1437 else if (!strncmp ("freepage", p, 8)) {
1438 void *ptr;
1440 ret = sscanf (p + 8, " %" FMT_ptr, FMT_ptr_cast (&ptr));
1441 if (ret != 1) {
1442 errx (1, "malformed freepage `%.*s' ret=%d", len, p, ret);
1444 freepage (ptr);
1446 else if (!strncmp ("freetile", p, 8)) {
1447 void *ptr;
1449 ret = sscanf (p + 8, " %" FMT_ptr, FMT_ptr_cast (&ptr));
1450 if (ret != 1) {
1451 errx (1, "malformed freetile `%.*s' ret=%d", len, p, ret);
1453 freetile (ptr);
1455 else if (!strncmp ("search", p, 6)) {
1456 int icase, pageno, y, ret, len2, forward;
1457 char *pattern;
1458 regex_t re;
1460 ret = sscanf (p + 6, " %d %d %d %d,%n",
1461 &icase, &pageno, &y, &forward, &len2);
1462 if (ret != 4) {
1463 errx (1, "malformed search `%s' ret=%d", p, ret);
1466 pattern = p + 6 + len2;
1467 ret = regcomp (&re, pattern,
1468 REG_EXTENDED | (icase ? REG_ICASE : 0));
1469 if (ret) {
1470 char errbuf[80];
1471 size_t size;
1473 size = regerror (ret, &re, errbuf, sizeof (errbuf));
1474 printd ("msg regcomp failed `%.*s'", (int) size, errbuf);
1476 else {
1477 search (&re, pageno, y, forward);
1478 regfree (&re);
1481 else if (!strncmp ("geometry", p, 8)) {
1482 int w, h;
1484 printd ("clear");
1485 ret = sscanf (p + 8, " %d %d", &w, &h);
1486 if (ret != 2) {
1487 errx (1, "malformed geometry `%.*s' ret=%d", len, p, ret);
1490 lock ("geometry");
1491 state.h = h;
1492 if (w != state.w) {
1493 int i;
1494 state.w = w;
1495 for (i = 0; i < state.texcount; ++i) {
1496 state.texowners[i].slice = NULL;
1499 layout ();
1500 process_outline ();
1501 state.gen++;
1502 unlock ("geometry");
1503 printd ("continue %d", state.pagecount);
1505 else if (!strncmp ("reqlayout", p, 9)) {
1506 int rotate, proportional;
1508 printd ("clear");
1509 ret = sscanf (p + 9, " %d %d", &rotate, &proportional);
1510 if (ret != 2) {
1511 errx (1, "bad reqlayout line `%.*s' ret=%d", len, p, ret);
1513 lock ("reqlayout");
1514 if (state.rotate != rotate || state.proportional != proportional) {
1515 state.gen += 1;
1517 state.rotate = rotate;
1518 state.proportional = proportional;
1519 layout ();
1520 process_outline ();
1521 state.gen++;
1522 unlock ("reqlayout");
1523 printd ("continue %d", state.pagecount);
1525 else if (!strncmp ("page", p, 4)) {
1526 double a, b;
1527 struct page *page;
1528 int pageno, pindex, ret;
1530 ret = sscanf (p + 4, " %d %d", &pageno, &pindex);
1531 if (ret != 2) {
1532 errx (1, "bad render line `%.*s' ret=%d", len, p, ret);
1535 lock ("page");
1536 a = now ();
1537 page = loadpage (pageno, pindex);
1538 b = now ();
1539 unlock ("page");
1541 printd ("page %" FMT_ptr " %f", FMT_ptr_cast2 (page), b - a);
1543 else if (!strncmp ("tile", p, 4)) {
1544 int x, y, w, h, ret;
1545 struct page *page;
1546 struct tile *tile;
1547 double a, b;
1549 ret = sscanf (p + 4, " %" FMT_ptr " %d %d %d %d",
1550 FMT_ptr_cast (&page), &x, &y, &w, &h);
1551 if (ret != 5) {
1552 errx (1, "bad tile line `%.*s' ret=%d", len, p, ret);
1555 lock ("tile");
1556 a = now ();
1557 tile = rendertile (page, x, y, w, h);
1558 b = now ();
1559 unlock ("tile");
1561 printd ("tile %d %d %" FMT_ptr " %u %f",
1562 x, y,
1563 FMT_ptr_cast2 (tile),
1564 tile->w * tile->h * tile->pixmap->n,
1565 b - a);
1567 else if (!strncmp ("settrim", p, 7)) {
1568 int trimmargins;
1569 fz_bbox fuzz;
1571 ret = sscanf (p + 7, " %d %d %d %d %d", &trimmargins,
1572 &fuzz.x0, &fuzz.y0, &fuzz.x1, &fuzz.y1);
1573 if (ret != 5) {
1574 errx (1, "malformed settrim `%.*s' ret=%d", len, p, ret);
1576 printd ("clear");
1577 lock ("settrim");
1578 state.trimmargins = trimmargins;
1579 state.needoutline = 1;
1580 if (memcmp (&fuzz, &state.trimfuzz, sizeof (fuzz))) {
1581 state.trimanew = 1;
1582 state.trimfuzz = fuzz;
1584 state.pagedimcount = 0;
1585 free (state.pagedims);
1586 state.pagedims = NULL;
1587 initpdims ();
1588 layout ();
1589 process_outline ();
1590 unlock ("settrim");
1591 printd ("continue %d", state.pagecount);
1593 else if (!strncmp ("sliceh", p, 6)) {
1594 int h;
1596 ret = sscanf (p + 6, " %d", &h);
1597 if (ret != 1) {
1598 errx (1, "malformed sliceh `%.*s' ret=%d", len, p, ret);
1600 if (h != state.sliceheight) {
1601 int i;
1603 state.sliceheight = h;
1604 for (i = 0; i < state.texcount; ++i) {
1605 state.texowners[i].w = -1;
1606 state.texowners[i].h = -1;
1607 state.texowners[i].slice = NULL;
1611 else if (!strncmp ("interrupt", p, 9)) {
1612 printd ("vmsg interrupted");
1614 else {
1615 errx (1, "unknown command %.*s", len, p);
1618 return 0;
1621 CAMLprim value ml_realloctexts (value texcount_v)
1623 CAMLparam1 (texcount_v);
1624 int ok;
1626 if (trylock ("ml_realloctexts")) {
1627 ok = 0;
1628 goto done;
1630 realloctexts (Int_val (texcount_v));
1631 ok = 1;
1632 unlock ("ml_realloctexts");
1634 done:
1635 CAMLreturn (Val_bool (ok));
1638 static void showsel (struct page *page, int ox, int oy)
1640 fz_bbox bbox;
1641 fz_text_span *span;
1642 struct mark first, last;
1644 first = page->fmark;
1645 last = page->lmark;
1647 if (!first.span || !last.span) return;
1649 glEnable (GL_BLEND);
1650 glBlendFunc (GL_SRC_ALPHA, GL_SRC_ALPHA);
1651 glColor4f (0.5f, 0.5f, 0.0f, 0.6f);
1653 ox += state.pagedims[page->pdimno].bounds.x0;
1654 oy += state.pagedims[page->pdimno].bounds.y0;
1655 for (span = first.span; span; span = span->next) {
1656 int i, j, k;
1658 bbox.x0 = bbox.y0 = bbox.x1 = bbox.y1 = 0;
1660 j = 0;
1661 k = span->len - 1;
1663 if (span == page->fmark.span && span == page->lmark.span) {
1664 j = MIN (first.i, last.i);
1665 k = MAX (first.i, last.i);
1667 else if (span == first.span) {
1668 j = first.i;
1670 else if (span == last.span) {
1671 k = last.i;
1674 for (i = j; i <= k; ++i) {
1675 bbox = fz_union_bbox (bbox, span->text[i].bbox);
1677 lprintf ("%d %d %d %d oy=%d ox=%d\n",
1678 bbox.x0,
1679 bbox.y0,
1680 bbox.x1,
1681 bbox.y1,
1682 oy, ox);
1684 glRecti (bbox.x0 + ox, bbox.y0 + oy, bbox.x1 + ox, bbox.y1 + oy);
1686 if (span == last.span) break;
1688 glDisable (GL_BLEND);
1691 #include "glfont.c"
1693 static void highlightlinks (struct page *page, int xoff, int yoff)
1695 fz_matrix ctm;
1696 fz_link *link, *links;
1698 switch (page->type) {
1699 case DPDF:
1700 links = page->u.pdfpage->links;
1701 break;
1703 case DXPS:
1704 links = page->u.xpspage->links;
1705 break;
1707 default:
1708 return;
1711 glPolygonMode (GL_FRONT_AND_BACK, GL_LINE);
1712 glEnable (GL_LINE_STIPPLE);
1713 glLineStipple (0.5, 0xcccc);
1715 xoff -= state.pagedims[page->pdimno].bounds.x0;
1716 yoff -= state.pagedims[page->pdimno].bounds.y0;
1717 ctm = fz_concat (pagectm (page), fz_translate (xoff, yoff));
1719 glBegin (GL_QUADS);
1720 for (link = links; link; link = link->next) {
1721 fz_point p1, p2, p3, p4;
1723 p1.x = link->rect.x0;
1724 p1.y = link->rect.y0;
1726 p2.x = link->rect.x1;
1727 p2.y = link->rect.y0;
1729 p3.x = link->rect.x1;
1730 p3.y = link->rect.y1;
1732 p4.x = link->rect.x0;
1733 p4.y = link->rect.y1;
1735 p1 = fz_transform_point (ctm, p1);
1736 p2 = fz_transform_point (ctm, p2);
1737 p3 = fz_transform_point (ctm, p3);
1738 p4 = fz_transform_point (ctm, p4);
1740 switch (link->dest.kind) {
1741 case FZ_LINK_GOTO: glColor3ub (255, 0, 0); break;
1742 case FZ_LINK_URI: glColor3ub (0, 0, 255); break;
1743 default: glColor3ub (0, 0, 0); break;
1746 glVertex2f (p1.x, p1.y);
1747 glVertex2f (p2.x, p2.y);
1748 glVertex2f (p3.x, p3.y);
1749 glVertex2f (p4.x, p4.y);
1751 glEnd ();
1753 glPolygonMode (GL_FRONT_AND_BACK, GL_FILL);
1754 glDisable (GL_LINE_STIPPLE);
1757 static int compareslinks (const void *l, const void *r)
1759 struct slink const *ls = l;
1760 struct slink const *rs = r;
1761 if (ls->bbox.y0 == rs->bbox.y0) {
1762 return rs->bbox.x0 - rs->bbox.x0;
1764 return ls->bbox.y0 - rs->bbox.y0;
1767 static void droptext (struct page *page)
1769 if (page->text) {
1770 fz_free_text_span (state.ctx, page->text);
1771 page->fmark.i = -1;
1772 page->lmark.i = -1;
1773 page->fmark.span = NULL;
1774 page->lmark.span = NULL;
1775 page->text = NULL;
1779 static void dropslinks (struct page *page)
1781 if (page->slinks) {
1782 free (page->slinks);
1783 page->slinks = NULL;
1784 page->slinkcount = 0;
1788 static void ensureslinks (struct page *page)
1790 fz_matrix ctm;
1791 int i, count = 0;
1792 size_t slinksize = sizeof (*page->slinks);
1793 fz_link *link, *links;
1795 if (state.gen != page->gen) {
1796 droptext (page);
1797 dropslinks (page);
1798 page->gen = state.gen;
1800 if (page->slinks) return;
1802 switch (page->type) {
1803 case DPDF:
1804 links = page->u.pdfpage->links;
1805 ctm = fz_concat (trimctm (page->u.pdfpage, page->pdimno),
1806 state.pagedims[page->pdimno].ctm);
1807 break;
1809 case DXPS:
1810 links = page->u.xpspage->links;
1811 ctm = state.pagedims[page->pdimno].ctm;
1812 break;
1814 default:
1815 return;
1818 for (link = links; link; link = link->next) {
1819 count++;
1821 if (count > 0) {
1822 page->slinkcount = count;
1823 page->slinks = calloc (count, slinksize);
1824 if (!page->slinks) {
1825 err (1, "realloc slinks %d", count);
1828 for (i = 0, link = links; link; ++i, link = link->next) {
1829 page->slinks[i].link = link;
1830 page->slinks[i].bbox =
1831 fz_round_rect (fz_transform_rect (ctm, link->rect));
1833 qsort (page->slinks, count, slinksize, compareslinks);
1837 static void highlightslinks (struct page *page, int xoff, int yoff, int noff)
1839 int i;
1840 char buf[40];
1841 struct slink *slink;
1842 double x0, y0, x1, y1, w;
1844 ensureslinks (page);
1845 glColor3ub (0xc3, 0xb0, 0x91);
1846 for (i = 0; i < page->slinkcount; ++i) {
1847 slink = &page->slinks[i];
1849 snprintf (buf, sizeof (buf), "%d", i + noff);
1850 x0 = slink->bbox.x0 + xoff - 5;
1851 y1 = slink->bbox.y0 + yoff - 5;
1852 y0 = y1 + 22;
1853 w = measure_string (state.face, 12, buf);
1854 x1 = x0 + w + 10;
1855 glRectd (x0, y0, x1, y1);
1858 glEnable (GL_BLEND);
1859 glEnable (GL_TEXTURE_2D);
1860 glColor3ub (0, 0, 0);
1861 for (i = 0; i < page->slinkcount; ++i) {
1862 slink = &page->slinks[i];
1864 snprintf (buf, sizeof (buf), "%d", i + noff);
1865 x0 = slink->bbox.x0 + xoff;
1866 y0 = slink->bbox.y0 + yoff + 12;
1867 draw_string (state.face, 12, x0, y0, buf);
1869 glDisable (GL_TEXTURE_2D);
1870 glDisable (GL_BLEND);
1873 static void uploadslice (struct tile *tile, struct slice *slice)
1875 int offset;
1876 struct slice *slice1;
1878 offset = 0;
1879 for (slice1 = tile->slices; slice != slice1; slice1++) {
1880 offset += slice1->h * tile->w * tile->pixmap->n;
1882 if (slice->texindex != -1 && slice->texindex < state.texcount
1883 && state.texowners[slice->texindex].slice == slice) {
1884 glBindTexture (GL_TEXTURE_RECTANGLE_ARB, state.texids[slice->texindex]);
1886 else {
1887 int subimage = 0;
1888 int texindex = state.texindex++ % state.texcount;
1890 if (state.texowners[texindex].w == tile->w) {
1891 if (state.texowners[texindex].h >= slice->h) {
1892 subimage = 1;
1894 else {
1895 state.texowners[texindex].h = slice->h;
1898 else {
1899 state.texowners[texindex].h = slice->h;
1902 state.texowners[texindex].w = tile->w;
1903 state.texowners[texindex].slice = slice;
1904 slice->texindex = texindex;
1906 glBindTexture (GL_TEXTURE_RECTANGLE_ARB, state.texids[texindex]);
1907 if (subimage) {
1908 glTexSubImage2D (GL_TEXTURE_RECTANGLE_ARB,
1912 tile->w,
1913 slice->h,
1914 state.texform,
1915 state.texty,
1916 tile->pixmap->samples+offset
1919 else {
1920 glTexImage2D (GL_TEXTURE_RECTANGLE_ARB,
1922 state.texiform,
1923 tile->w,
1924 slice->h,
1926 state.texform,
1927 state.texty,
1928 tile->pixmap->samples+offset
1934 CAMLprim value ml_drawtile (value args_v, value ptr_v)
1936 CAMLparam2 (args_v, ptr_v);
1937 int dispx = Int_val (Field (args_v, 0));
1938 int dispy = Int_val (Field (args_v, 1));
1939 int dispw = Int_val (Field (args_v, 2));
1940 int disph = Int_val (Field (args_v, 3));
1941 int tilex = Int_val (Field (args_v, 4));
1942 int tiley = Int_val (Field (args_v, 5));
1943 char *s = String_val (ptr_v);
1944 struct tile *tile = parse_pointer ("ml_drawtile", s);
1946 glEnable (GL_TEXTURE_RECTANGLE_ARB);
1948 int slicey, firstslice;
1949 struct slice *slice;
1951 firstslice = tiley / tile->sliceheight;
1952 slice = &tile->slices[firstslice];
1953 slicey = tiley % tile->sliceheight;
1955 while (disph > 0) {
1956 int dh;
1958 dh = slice->h - slicey;
1959 dh = MIN (disph, dh);
1960 uploadslice (tile, slice);
1962 glBegin (GL_QUADS);
1964 glTexCoord2i (tilex, slicey);
1965 glVertex2i (dispx, dispy);
1967 glTexCoord2i (tilex+dispw, slicey);
1968 glVertex2i (dispx+dispw, dispy);
1970 glTexCoord2i (tilex+dispw, slicey+dh);
1971 glVertex2i (dispx+dispw, dispy+dh);
1973 glTexCoord2i (tilex, slicey+dh);
1974 glVertex2i (dispx, dispy+dh);
1976 glEnd ();
1978 dispy += dh;
1979 disph -= dh;
1980 slice++;
1981 ARSERT (!(slice - tile->slices >= tile->slicecount && disph > 0));
1982 slicey = 0;
1985 glDisable (GL_TEXTURE_RECTANGLE_ARB);
1986 CAMLreturn (Val_unit);
1989 CAMLprim value ml_postprocess (value ptr_v, value hlinks_v,
1990 value xoff_v, value yoff_v,
1991 value noff_v)
1993 CAMLparam5 (ptr_v, hlinks_v, xoff_v, yoff_v, noff_v);
1994 int xoff = Int_val (xoff_v);
1995 int yoff = Int_val (yoff_v);
1996 int noff = Int_val (noff_v);
1997 char *s = String_val (ptr_v);
1998 int hlmask = Int_val (hlinks_v);
1999 struct page *page = parse_pointer ("ml_postprocess", s);
2001 if (hlmask & 1) highlightlinks (page, xoff, yoff);
2002 if (trylock ("ml_postprocess")) {
2003 noff = 0;
2004 goto done;
2006 if (hlmask & 2) {
2007 highlightslinks (page, xoff, yoff, noff);
2008 noff = page->slinkcount;
2010 showsel (page, xoff, yoff);
2011 unlock ("ml_postprocess");
2013 done:
2014 CAMLreturn (Val_int (noff));
2017 static fz_link *getlink (struct page *page, int x, int y)
2019 fz_point p;
2020 fz_matrix ctm;
2021 fz_link *link, *links;
2023 switch (page->type) {
2024 case DPDF:
2025 ctm = trimctm (page->u.pdfpage, page->pdimno);
2026 links = page->u.pdfpage->links;
2027 break;
2029 case DXPS:
2030 ctm = fz_identity;
2031 links = page->u.xpspage->links;
2032 break;
2034 default:
2035 return NULL;
2037 p.x = x;
2038 p.y = y;
2040 ctm = fz_concat (ctm, state.pagedims[page->pdimno].ctm);
2041 ctm = fz_invert_matrix (ctm);
2042 p = fz_transform_point (ctm, p);
2044 for (link = links; link; link = link->next) {
2045 if (p.x >= link->rect.x0 && p.x <= link->rect.x1) {
2046 if (p.y >= link->rect.y0 && p.y <= link->rect.y1) {
2047 return link;
2051 return NULL;
2054 static void ensuretext (struct page *page)
2056 if (state.gen != page->gen) {
2057 droptext (page);
2058 dropslinks (page);
2059 page->gen = state.gen;
2061 if (!page->text) {
2062 fz_device *tdev;
2064 page->text = fz_new_text_span (state.ctx);
2065 tdev = fz_new_text_device (state.ctx, page->text);
2066 fz_run_display_list (page->dlist,
2067 tdev,
2068 pagectm (page),
2069 fz_infinite_bbox, NULL);
2070 fz_free_device (tdev);
2074 CAMLprim value ml_find_page_with_links (value start_page_v, value dir_v)
2076 CAMLparam2 (start_page_v, dir_v);
2077 CAMLlocal1 (ret_v);
2078 int i, dir = Int_val (dir_v);
2079 int start_page = Int_val (start_page_v);
2080 int end_page = dir > 0 ? state.pagecount : -1;
2082 ret_v = Val_int (0);
2083 if (!(state.type == DPDF || state.type == DXPS)) {
2084 goto done;
2087 lock ("ml_findpage_with_links");
2088 for (i = start_page + dir; i != end_page; i += dir) {
2089 int found;
2091 switch (state.type) {
2092 case DPDF:
2094 pdf_page *page = pdf_load_page (state.u.pdf, i);
2095 found = !!page->links;
2096 freepdfpage (page);
2098 break;
2099 case DXPS:
2101 xps_page *page = xps_load_page (state.u.xps, i);
2102 found = !!page->links;
2103 freexpspage (page);
2105 break;
2107 default:
2108 ARSERT ("invalid document type");
2111 if (found) {
2112 ret_v = caml_alloc_small (1, 1);
2113 Field (ret_v, 0) = Val_int (i);
2114 goto unlock;
2117 unlock:
2118 unlock ("ml_findpage_with_links");
2120 done:
2121 CAMLreturn (ret_v);
2124 enum { dir_first, dir_last};
2125 enum { dir_first_visible, dir_left, dir_right, dir_down, dir_up };
2127 CAMLprim value ml_findlink (value ptr_v, value dir_v)
2129 CAMLparam2 (ptr_v, dir_v);
2130 CAMLlocal2 (ret_v, pos_v);
2131 struct page *page;
2132 int dirtag, i, slinkindex;
2133 struct slink *found = NULL ,*slink;
2134 char *s = String_val (ptr_v);
2136 page = parse_pointer ("ml_findlink", s);
2137 ensureslinks (page);
2139 ret_v = Val_int (0);
2140 if (Is_block (dir_v)) {
2141 dirtag = Tag_val (dir_v);
2142 switch (dirtag) {
2143 case dir_first_visible:
2145 int x0, y0, dir, first_index, last_index;
2147 pos_v = Field (dir_v, 0);
2148 x0 = Int_val (Field (pos_v, 0));
2149 y0 = Int_val (Field (pos_v, 1));
2150 dir = Int_val (Field (pos_v, 2));
2152 if (dir >= 0) {
2153 dir = 1;
2154 first_index = 0;
2155 last_index = page->slinkcount;
2157 else {
2158 first_index = page->slinkcount - 1;
2159 last_index = -1;
2162 for (i = first_index; i != last_index; i += dir) {
2163 slink = &page->slinks[i];
2164 if (slink->bbox.y0 >= y0 && slink->bbox.x0 >= x0) {
2165 found = slink;
2166 break;
2170 break;
2172 case dir_left:
2173 slinkindex = Int_val (Field (dir_v, 0));
2174 found = &page->slinks[slinkindex];
2175 for (i = slinkindex - 1; i >= 0; --i) {
2176 slink = &page->slinks[i];
2177 if (slink->bbox.x0 < found->bbox.x0) {
2178 found = slink;
2179 break;
2182 break;
2184 case dir_right:
2185 slinkindex = Int_val (Field (dir_v, 0));
2186 found = &page->slinks[slinkindex];
2187 for (i = slinkindex + 1; i < page->slinkcount; ++i) {
2188 slink = &page->slinks[i];
2189 if (slink->bbox.x0 > found->bbox.x0) {
2190 found = slink;
2191 break;
2194 break;
2196 case dir_down:
2197 slinkindex = Int_val (Field (dir_v, 0));
2198 found = &page->slinks[slinkindex];
2199 for (i = slinkindex + 1; i < page->slinkcount; ++i) {
2200 slink = &page->slinks[i];
2201 if (slink->bbox.y0 >= found->bbox.y0) {
2202 found = slink;
2203 break;
2206 break;
2208 case dir_up:
2209 slinkindex = Int_val (Field (dir_v, 0));
2210 found = &page->slinks[slinkindex];
2211 for (i = slinkindex - 1; i >= 0; --i) {
2212 slink = &page->slinks[i];
2213 if (slink->bbox.y0 <= found->bbox.y0) {
2214 found = slink;
2215 break;
2218 break;
2221 else {
2222 dirtag = Int_val (dir_v);
2223 switch (dirtag) {
2224 case dir_first:
2225 found = page->slinks;
2226 break;
2228 case dir_last:
2229 if (page->slinks) {
2230 found = page->slinks + (page->slinkcount - 1);
2232 break;
2235 if (found) {
2236 ret_v = caml_alloc_small (2, 1);
2237 Field (ret_v, 0) = Val_int (found - page->slinks);
2240 CAMLreturn (ret_v);
2243 enum { uuri, ugoto, utext, uunexpected, ulaunch, unamed, uremote };
2245 #define LINKTOVAL \
2247 int pageno; \
2249 switch (link->dest.kind) { \
2250 case FZ_LINK_GOTO: \
2252 fz_point p; \
2254 pageno = link->dest.ld.gotor.page; \
2255 p.x = 0; \
2256 p.y = 0; \
2258 if (link->dest.ld.gotor.flags & fz_link_flag_t_valid) { \
2259 p.y = link->dest.ld.gotor.lt.y; \
2260 p = fz_transform_point (pdim->lctm, p); \
2262 tup_v = caml_alloc_tuple (2); \
2263 ret_v = caml_alloc_small (1, ugoto); \
2264 Field (tup_v, 0) = Val_int (pageno); \
2265 Field (tup_v, 1) = Val_int (p.y); \
2266 Field (ret_v, 0) = tup_v; \
2268 break; \
2270 case FZ_LINK_URI: \
2271 str_v = caml_copy_string (link->dest.ld.uri.uri); \
2272 ret_v = caml_alloc_small (1, uuri); \
2273 Field (ret_v, 0) = str_v; \
2274 break; \
2276 case FZ_LINK_LAUNCH: \
2277 str_v = caml_copy_string (link->dest.ld.launch.file_spec); \
2278 ret_v = caml_alloc_small (1, ulaunch); \
2279 Field (ret_v, 0) = str_v; \
2280 break; \
2282 case FZ_LINK_NAMED: \
2283 str_v = caml_copy_string (link->dest.ld.named.named); \
2284 ret_v = caml_alloc_small (1, unamed); \
2285 Field (ret_v, 0) = str_v; \
2286 break; \
2288 case FZ_LINK_GOTOR: \
2289 str_v = caml_copy_string (link->dest.ld.gotor.file_spec); \
2290 pageno = link->dest.ld.gotor.page; \
2291 tup_v = caml_alloc_tuple (2); \
2292 ret_v = caml_alloc_small (1, uremote); \
2293 Field (tup_v, 0) = str_v; \
2294 Field (tup_v, 1) = Val_int (pageno); \
2295 Field (ret_v, 0) = tup_v; \
2296 break; \
2298 default: \
2300 char buf[80]; \
2302 snprintf (buf, sizeof (buf), \
2303 "unhandled link kind %d", link->dest.kind); \
2304 str_v = caml_copy_string (buf); \
2305 ret_v = caml_alloc_small (1, uunexpected); \
2306 Field (ret_v, 0) = str_v; \
2308 break; \
2312 CAMLprim value ml_getlink (value ptr_v, value n_v)
2314 CAMLparam2 (ptr_v, n_v);
2315 CAMLlocal3 (ret_v, tup_v, str_v);
2316 fz_link *link;
2317 struct page *page;
2318 struct pagedim *pdim;
2319 char *s = String_val (ptr_v);
2321 ret_v = Val_int (0);
2322 page = parse_pointer ("ml_getlink", s);
2323 ensureslinks (page);
2324 pdim = &state.pagedims[page->pdimno];
2325 link = page->slinks[Int_val (n_v)].link;
2326 LINKTOVAL;
2327 CAMLreturn (ret_v);
2330 CAMLprim value ml_getlinkcount (value ptr_v)
2332 CAMLparam1 (ptr_v);
2333 struct page *page;
2334 char *s = String_val (ptr_v);
2336 page = parse_pointer ("ml_getlinkcount", s);
2337 CAMLreturn (Val_int (page->slinkcount));
2340 CAMLprim value ml_getlinkrect (value ptr_v, value n_v)
2342 CAMLparam2 (ptr_v, n_v);
2343 CAMLlocal1 (ret_v);
2344 struct page *page;
2345 struct slink *slink;
2346 char *s = String_val (ptr_v);
2348 page = parse_pointer ("ml_getlinkrect", s);
2349 ensureslinks (page);
2351 slink = &page->slinks[Int_val (n_v)];
2352 ret_v = caml_alloc_tuple (4);
2353 Field (ret_v, 0) = Val_int (slink->bbox.x0);
2354 Field (ret_v, 1) = Val_int (slink->bbox.y0);
2355 Field (ret_v, 2) = Val_int (slink->bbox.x1);
2356 Field (ret_v, 3) = Val_int (slink->bbox.y1);
2357 CAMLreturn (ret_v);
2360 CAMLprim value ml_whatsunder (value ptr_v, value x_v, value y_v)
2362 CAMLparam3 (ptr_v, x_v, y_v);
2363 CAMLlocal3 (ret_v, tup_v, str_v);
2364 fz_link *link;
2365 struct page *page;
2366 char *s = String_val (ptr_v);
2367 int x = Int_val (x_v), y = Int_val (y_v);
2368 struct pagedim *pdim;
2370 ret_v = Val_int (0);
2371 if (trylock ("ml_whatsunder")) {
2372 goto done;
2375 page = parse_pointer ("ml_whatsunder", s);
2376 pdim = &state.pagedims[page->pdimno];
2377 x += pdim->bounds.x0;
2378 y += pdim->bounds.y0;
2379 link = getlink (page, x, y);
2380 if (link) {
2381 LINKTOVAL;
2383 else {
2384 int i;
2385 fz_text_span *span;
2387 ensuretext (page);
2388 for (span = page->text; span; span = span->next) {
2389 for (i = 0; i < span->len; ++i) {
2390 fz_bbox *b;
2391 b = &span->text[i].bbox;
2392 if ((x >= b->x0 && x <= b->x1 && y >= b->y0 && y <= b->y1)) {
2393 const char *n2 =
2394 span->font && span->font->name
2395 ? span->font->name
2396 : "Span has no font name"
2398 FT_FaceRec *face = span->font->ft_face;
2399 if (face && face->family_name) {
2400 char *s;
2401 char *n1 = face->family_name;
2402 size_t l1 = strlen (n1);
2403 size_t l2 = strlen (n2);
2405 if (l1 != l2 || memcmp (n1, n2, l1)) {
2406 s = malloc (l1 + l2 + 2);
2407 if (s) {
2408 memcpy (s, n2, l2);
2409 s[l2] = '=';
2410 memcpy (s + l2 + 1, n1, l1 + 1);
2411 str_v = caml_copy_string (s);
2412 free (s);
2416 if (str_v == 0) {
2417 str_v = caml_copy_string (n2);
2419 ret_v = caml_alloc_small (1, utext);
2420 Field (ret_v, 0) = str_v;
2421 goto unlock;
2426 unlock:
2427 unlock ("ml_whatsunder");
2429 done:
2430 CAMLreturn (ret_v);
2433 CAMLprim value ml_seltext (value ptr_v, value rect_v)
2435 CAMLparam2 (ptr_v, rect_v);
2436 fz_bbox *b;
2437 struct page *page;
2438 fz_text_span *span;
2439 struct mark first, last;
2440 struct pagedim *pdim;
2441 int i, x0, x1, y0, y1;
2442 char *s = String_val (ptr_v);
2444 if (trylock ("ml_seltext")) {
2445 goto done;
2448 page = parse_pointer ("ml_seltext", s);
2449 ensuretext (page);
2451 pdim = &state.pagedims[page->pdimno];
2452 x0 = Int_val (Field (rect_v, 0)) + pdim->bounds.x0;;
2453 y0 = Int_val (Field (rect_v, 1)) + pdim->bounds.y0;
2454 x1 = Int_val (Field (rect_v, 2)) + pdim->bounds.x0;
2455 y1 = Int_val (Field (rect_v, 3)) + pdim->bounds.y0;
2457 if (0) {
2458 glPolygonMode (GL_FRONT_AND_BACK, GL_LINE);
2459 glColor3ub (128, 128, 128);
2460 glRecti (x0, y0, x1, y1);
2461 glPolygonMode (GL_FRONT_AND_BACK, GL_FILL);
2464 first.span = NULL;
2465 last.span = NULL;
2467 last.i = first.i = 0;
2468 first.span = page->text;
2469 for (span = page->text; span; span = span->next) {
2470 for (i = 0; i < span->len; ++i) {
2471 b = &span->text[i].bbox;
2472 int selected = 0;
2474 if (x0 >= b->x0 && x0 <= b->x1 && y0 >= b->y0 && y0 <= b->y1) {
2475 first.i = i;
2476 first.span = span;
2477 selected = 1;
2479 if (x1 >= b->x0 && x1 <= b->x1 && y1 >= b->y0 && y1 <= b->y1) {
2480 last.i = i;
2481 last.span = span;
2482 selected = 1;
2484 if (0 && selected) {
2485 glPolygonMode (GL_FRONT_AND_BACK, GL_LINE);
2486 glColor3ub (128, 128, 128);
2487 glRecti (b->x0, b->y0, b->x1, b->y1);
2488 glPolygonMode (GL_FRONT_AND_BACK, GL_FILL);
2493 if (y1 < y0 || x1 < x0) {
2494 int swap = 0;
2496 if (first.span == last.span) {
2497 swap = 1;
2499 else {
2500 if (y1 < y0) {
2501 for (span = first.span; span && span != last.span;
2502 span = span->next) {
2503 if (span->eol) {
2504 swap = 1;
2505 break;
2511 if (swap) {
2512 i = first.i;
2513 span = first.span;
2514 first.i = last.i;
2515 first.span = last.span;
2516 last.i = i;
2517 last.span = span;
2521 page->fmark = first;
2522 page->lmark = last;
2524 unlock ("ml_seltext");
2526 done:
2527 CAMLreturn (Val_unit);
2530 static int pipespan (FILE *f, fz_text_span *span, int a, int b)
2532 char buf[4];
2533 int i, len, ret;
2535 for (i = a; i <= b; ++i) {
2536 len = runetochar (buf, &span->text[i].c);
2537 ret = fwrite (buf, len, 1, f);
2539 if (ret != 1) {
2540 fprintf (stderr, "failed to write %d bytes ret=%d: %s\n",
2541 len, ret, strerror (errno));
2542 return -1;
2545 return 0;
2548 CAMLprim value ml_copysel (value command_v, value ptr_v)
2550 CAMLparam1 (ptr_v);
2551 FILE *f;
2552 struct page *page;
2553 fz_text_span *span;
2554 char *s = String_val (ptr_v);
2555 char *command = String_val (command_v);
2557 if (trylock ("ml_copysel")) {
2558 goto done;
2561 page = parse_pointer ("ml_sopysel", s);
2563 if (!page->fmark.span || !page->lmark.span) {
2564 fprintf (stderr, "nothing to copy\n");
2565 goto unlock;
2568 f = popen (command, "w");
2569 if (!f) {
2570 fprintf (stderr, "failed to open sel pipe: %s\n",
2571 strerror (errno));
2572 f = stdout;
2575 for (span = page->fmark.span;
2576 span && span != page->lmark.span->next;
2577 span = span->next) {
2578 int a = span == page->fmark.span ? page->fmark.i : 0;
2579 int b = span == page->lmark.span ? page->lmark.i : span->len - 1;
2580 if (pipespan (f, span, a, b)) {
2581 goto close;
2583 if (span->eol) {
2584 if (putc ('\n', f) == EOF) {
2585 fprintf (stderr, "failed break line on sel pipe: %s\n",
2586 strerror (errno));
2587 goto close;
2591 page->lmark.span = NULL;
2592 page->fmark.span = NULL;
2594 close:
2595 if (f != stdout) {
2596 int ret = pclose (f);
2597 if (ret == -1) {
2598 if (errno != ECHILD) {
2599 fprintf (stderr, "failed to close sel pipe: %s\n",
2600 strerror (errno));
2604 unlock:
2605 unlock ("ml_copysel");
2607 done:
2608 CAMLreturn (Val_unit);
2611 CAMLprim value ml_getpdimrect (value pagedimno_v)
2613 CAMLparam1 (pagedimno_v);
2614 CAMLlocal1 (ret_v);
2615 int pagedimno = Int_val (pagedimno_v);
2616 fz_rect box;
2618 ret_v = caml_alloc_small (4 * Double_wosize, Double_array_tag);
2619 if (trylock ("ml_getpdimrect")) {
2620 box = fz_empty_rect;
2622 else {
2623 box = state.pagedims[pagedimno].mediabox;
2624 unlock ("ml_getpdimrect");
2627 Store_double_field (ret_v, 0, box.x0);
2628 Store_double_field (ret_v, 1, box.x1);
2629 Store_double_field (ret_v, 2, box.y0);
2630 Store_double_field (ret_v, 3, box.y1);
2632 CAMLreturn (ret_v);
2635 static double getmaxw (void)
2637 int i;
2638 struct pagedim *p;
2639 double maxw = 0.0;
2641 for (i = 0, p = state.pagedims; i < state.pagedimcount; ++i, ++p) {
2642 double x0, x1, w;
2644 x0 = MIN (p->mediabox.x0, p->mediabox.x1);
2645 x1 = MAX (p->mediabox.x0, p->mediabox.x1);
2647 w = x1 - x0;
2648 maxw = MAX (w, maxw);
2650 return maxw;
2653 CAMLprim value ml_getmaxw (value unit_v)
2655 CAMLparam1 (unit_v);
2656 CAMLlocal1 (ret_v);
2657 double maxw = 0.0;
2659 if (trylock ("ml_getmaxw")) {
2660 goto done;
2662 maxw = getmaxw ();
2663 unlock ("ml_getmaxw");
2664 done:
2665 ret_v = caml_copy_double (maxw);
2666 CAMLreturn (ret_v);
2669 CAMLprim value ml_zoom_for_height (value winw_v, value winh_v, value dw_v)
2671 CAMLparam3 (winw_v, winh_v, dw_v);
2672 CAMLlocal1 (ret_v);
2673 int i;
2674 double zoom = 1.0;
2675 double maxw = 0.0, maxh = 0.0;
2676 struct pagedim *p;
2677 double winw = Int_val (winw_v);
2678 double winh = Int_val (winh_v);
2679 double dw = Int_val (dw_v);
2680 double pw = 1.0, ph = 1.0, num, den;
2682 if (trylock ("ml_zoom_for_height")) {
2683 goto done;
2686 if (state.proportional) {
2687 maxw = getmaxw ();
2690 for (i = 0, p = state.pagedims; i < state.pagedimcount; ++i, ++p) {
2691 double x0, x1, y0, y1, w, h, scaledh, scale;
2693 x0 = MIN (p->mediabox.x0, p->mediabox.x1);
2694 x1 = MAX (p->mediabox.x0, p->mediabox.x1);
2695 y0 = MIN (p->mediabox.y0, p->mediabox.y1);
2696 y1 = MAX (p->mediabox.y0, p->mediabox.y1);
2698 w = x1 - x0;
2699 h = y1 - y0;
2701 if (state.proportional) {
2702 scale = w / maxw;
2703 scaledh = h * scale;
2705 else {
2706 scale = 1.0;
2707 scaledh = h;
2710 if (scaledh > maxh) {
2711 maxh = scaledh;
2712 ph = scaledh;
2713 pw = w * scale;
2717 num = (winh * pw) + (ph * dw);
2718 den = ph * winw;
2719 zoom = num / den;
2721 unlock ("ml_zoom_for_height");
2722 done:
2723 ret_v = caml_copy_double (zoom);
2724 CAMLreturn (ret_v);
2727 CAMLprim value ml_draw_string (value pt_v, value x_v, value y_v, value string_v)
2729 CAMLparam4 (pt_v, x_v, y_v, string_v);
2730 CAMLlocal1 (ret_v);
2731 int pt = Int_val(pt_v);
2732 int x = Int_val (x_v);
2733 int y = Int_val (y_v);
2734 double w;
2736 w = draw_string (state.face, pt, x, y, String_val (string_v));
2737 ret_v = caml_copy_double (w);
2738 CAMLreturn (ret_v);
2741 CAMLprim value ml_measure_string (value pt_v, value string_v)
2743 CAMLparam2 (pt_v, string_v);
2744 CAMLlocal1 (ret_v);
2745 int pt = Int_val (pt_v);
2746 double w;
2748 w = measure_string (state.face, pt, String_val (string_v));
2749 ret_v = caml_copy_double (w);
2750 CAMLreturn (ret_v);
2753 CAMLprim value ml_getpagebox (value opaque_v)
2755 CAMLparam1 (opaque_v);
2756 CAMLlocal1 (ret_v);
2757 fz_bbox bbox;
2758 fz_device *dev;
2759 char *s = String_val (opaque_v);
2760 struct page *page = parse_pointer ("ml_getpagebox", s);
2762 ret_v = caml_alloc_tuple (4);
2763 dev = fz_new_bbox_device (state.ctx, &bbox);
2764 dev->hints |= FZ_IGNORE_SHADE;
2766 switch (page->type) {
2767 case DPDF:
2768 pdf_run_page (state.u.pdf, page->u.pdfpage, dev, pagectm (page), NULL);
2769 break;
2771 case DXPS:
2772 xps_run_page (state.u.xps, page->u.xpspage, dev, pagectm (page), NULL);
2773 break;
2775 default:
2776 bbox = fz_infinite_bbox;
2777 break;
2780 fz_free_device (dev);
2781 Field (ret_v, 0) = Val_int (bbox.x0);
2782 Field (ret_v, 1) = Val_int (bbox.y0);
2783 Field (ret_v, 2) = Val_int (bbox.x1);
2784 Field (ret_v, 3) = Val_int (bbox.y1);
2786 CAMLreturn (ret_v);
2789 CAMLprim value ml_setaalevel (value level_v)
2791 CAMLparam1 (level_v);
2793 state.aalevel = Int_val (level_v);
2794 CAMLreturn (Val_unit);
2797 #undef pixel
2798 #include <X11/Xlib.h>
2799 #include <GL/glx.h>
2801 static struct {
2802 Display *dpy;
2803 GLXContext ctx;
2804 GLXDrawable drawable;
2805 } glx;
2807 #include "keysym2ucs.c"
2809 CAMLprim value ml_keysymtoutf8 (value keysym_v)
2811 CAMLparam1 (keysym_v);
2812 CAMLlocal1 (str_v);
2813 KeySym keysym = Int_val (keysym_v);
2814 Rune rune;
2815 int len;
2816 char buf[5];
2818 rune = keysym2ucs (keysym);
2819 len = runetochar (buf, &rune);
2820 buf[len] = 0;
2821 str_v = caml_copy_string (buf);
2822 CAMLreturn (str_v);
2825 CAMLprim value ml_glx (value win_v)
2827 CAMLparam1 (win_v);
2828 int screen;
2829 XVisualInfo *visual;
2830 int attributes[] = { GLX_RGBA, GLX_DOUBLEBUFFER, None };
2832 glx.dpy = XOpenDisplay (NULL);
2833 if (!glx.dpy) {
2834 caml_failwith ("XOpenDisplay failed");
2837 screen = DefaultScreen (glx.dpy);
2838 visual = glXChooseVisual (glx.dpy, screen, attributes);
2839 if (!visual) {
2840 XCloseDisplay (glx.dpy);
2841 glx.dpy = NULL;
2842 caml_failwith ("glXChooseVisual");
2845 glx.ctx = glXCreateContext (glx.dpy, visual, NULL, True);
2846 if (!glx.ctx) {
2847 XCloseDisplay (glx.dpy);
2848 XFree (visual);
2849 glx.dpy = NULL;
2850 caml_failwith ("glXCreateContext");
2853 XFree (visual);
2854 if (!glXMakeCurrent (glx.dpy, Int_val (win_v), glx.ctx)) {
2855 glXDestroyContext (glx.dpy, glx.ctx);
2856 XCloseDisplay (glx.dpy);
2857 glx.dpy = NULL;
2858 glx.ctx = NULL;
2859 caml_failwith ("glXMakeCurrent");
2861 glx.drawable = Int_val (win_v);
2863 CAMLreturn (Val_unit);
2866 CAMLprim value ml_swapb (value unit_v)
2868 CAMLparam1 (unit_v);
2869 glXSwapBuffers (glx.dpy, glx.drawable);
2870 CAMLreturn (Val_unit);
2873 enum { piunknown, pilinux, piosx, pisun, pifreebsd,
2874 pidragonflybsd, piopenbsd, pinetbsd, picygwin };
2876 CAMLprim value ml_platform (value unit_v)
2878 CAMLparam1 (unit_v);
2879 int platid = piunknown;
2881 #if defined __linux__
2882 platid = pilinux;
2883 #elif defined __CYGWIN__
2884 platid = picygwin;
2885 #elif defined __DragonFly__
2886 platid = pidragonflybsd;
2887 #elif defined __FreeBSD__
2888 platid = pifreebsd;
2889 #elif defined __OpenBSD__
2890 platid = piopenbsd;
2891 #elif defined __NetBSD__
2892 platid = pinetbsd;
2893 #elif defined __sun__
2894 platid = pisun;
2895 #elif defined __APPLE__
2896 platid = piosx;
2897 #endif
2898 CAMLreturn (Val_int (platid));
2901 CAMLprim value ml_cloexec (value fd_v)
2903 CAMLparam1 (fd_v);
2904 int fd = Int_val (fd_v);
2906 if (fcntl (fd, F_SETFD, FD_CLOEXEC, 1)) {
2907 uerror ("fcntl", Nothing);
2909 CAMLreturn (Val_unit);
2912 CAMLprim value ml_init (value pipe_v, value params_v)
2914 CAMLparam2 (pipe_v, params_v);
2915 CAMLlocal2 (trim_v, fuzz_v);
2916 int ret;
2917 int texcount;
2918 char *fontpath;
2919 int colorspace;
2920 int mustoresize;
2921 #ifndef __CYGWIN__
2922 struct sigaction sa;
2923 #endif
2925 state.cr = Int_val (Field (pipe_v, 0));
2926 state.cw = Int_val (Field (pipe_v, 1));
2927 state.rotate = Int_val (Field (params_v, 0));
2928 state.proportional = Bool_val (Field (params_v, 1));
2929 trim_v = Field (params_v, 2);
2930 texcount = Int_val (Field (params_v, 3));
2931 state.sliceheight = Int_val (Field (params_v, 4));
2932 mustoresize = Int_val (Field (params_v, 5));
2933 colorspace = Int_val (Field (params_v, 6));
2934 fontpath = String_val (Field (params_v, 7));
2936 state.ctx = fz_new_context (NULL, NULL, mustoresize);
2938 state.trimmargins = Bool_val (Field (trim_v, 0));
2939 fuzz_v = Field (trim_v, 1);
2940 state.trimfuzz.x0 = Int_val (Field (fuzz_v, 0));
2941 state.trimfuzz.y0 = Int_val (Field (fuzz_v, 1));
2942 state.trimfuzz.x1 = Int_val (Field (fuzz_v, 2));
2943 state.trimfuzz.y1 = Int_val (Field (fuzz_v, 3));
2945 set_tex_params (colorspace);
2947 if (*fontpath) {
2948 state.face = load_font (fontpath);
2950 else {
2951 unsigned int len;
2952 void *base = pdf_find_substitute_font (0, 0, 0, 0, &len);
2954 state.face = load_builtin_font (base, len);
2956 if (!state.face) _exit (1);
2958 realloctexts (texcount);
2960 #ifndef __CYGWIN__
2961 sa.sa_handler = SIG_DFL;
2962 if (sigemptyset (&sa.sa_mask)) {
2963 err (1, "sigemptyset");
2965 sa.sa_flags = SA_RESTART | SA_NOCLDSTOP | SA_NOCLDWAIT;
2966 if (sigaction (SIGCHLD, &sa, NULL)) {
2967 err (1, "sigaction");
2969 #endif
2971 ret = pthread_create (&state.thread, NULL, mainloop, NULL);
2972 if (ret) {
2973 errx (1, "pthread_create: %s", strerror (ret));
2976 CAMLreturn (Val_unit);