Use FIONREAD for hasdata
[llpp.git] / link.c
blobb26e217c3432440b499101e384dbd37c254487e7
1 /* lot's of code c&p-ed directly from mupdf */
2 #ifdef _WIN32
3 #define WIN32_LEAN_AND_MEAN
4 #include <windows.h>
5 #include <winsock2.h>
6 #define fionread_arg long
7 #define ssize_t int
8 #define FMT_ss "%d"
9 #ifdef _WIN64
10 #define FMT_s "%i64u"
11 #else
12 #define FMT_s "%u"
13 #endif
14 #pragma warning (disable:4244)
15 #pragma warning (disable:4996)
16 #pragma warning (disable:4995)
17 #endif
19 #ifdef _MSC_VER
20 #include <errno.h>
21 #include <stdio.h>
22 #include <string.h>
23 #include <stdlib.h>
24 static void __declspec (noreturn) err (int exitcode, const char *fmt, ...)
26 va_list ap;
27 int errcode;
29 errcode = errno;
30 va_start (ap, fmt);
31 vfprintf (stderr, fmt, ap);
32 va_end (ap);
33 fprintf (stderr, ": %s\n", strerror (errno));
34 exit (exitcode);
36 static void __declspec (noreturn) errx (int exitcode, const char *fmt, ...)
38 va_list ap;
40 va_start (ap, fmt);
41 vfprintf (stderr, fmt, ap);
42 va_end (ap);
43 fputc ('\n', stderr);
44 exit (exitcode);
46 static void __declspec (noreturn) sockerr (int exitcode, const char *fmt, ...)
48 va_list ap;
50 va_start (ap, fmt);
51 vfprintf (stderr, fmt, ap);
52 va_end (ap);
53 fprintf (stderr, ": wsaerror 0x%x\n", WSAGetLastError ());
54 exit (exitcode);
56 #else
57 #define FMT_ss "%zd"
58 #define FMT_s "%zu"
59 #define fionread_arg int
60 #define ioctlsocket ioctl
61 #define _GNU_SOURCE
62 #include <err.h>
63 #define sockerr err
64 #endif
65 #include <regex.h>
66 #include <errno.h>
67 #include <ctype.h>
68 #include <stdio.h>
69 #include <stdarg.h>
70 #include <stdlib.h>
71 #include <string.h>
72 #include <limits.h>
73 #ifndef _WIN32
74 #include <pthread.h>
75 #include <sys/time.h>
76 #include <sys/types.h>
77 #include <sys/socket.h>
78 #include <sys/ioctl.h>
79 #endif
81 #ifdef __APPLE__
82 #include <OpenGL/gl.h>
83 #else
84 #include <GL/gl.h>
85 #endif
87 #ifndef GL_TEXTURE_RECTANGLE_ARB
88 #define GL_TEXTURE_RECTANGLE_ARB 0x84F5
89 #endif
91 #include <caml/fail.h>
92 #include <caml/alloc.h>
93 #include <caml/memory.h>
94 #include <caml/unixsupport.h>
96 #include <fitz.h>
97 #include <mupdf.h>
99 #if 0
100 #define lprintf printf
101 #else
102 #define lprintf(...)
103 #endif
105 #ifdef FT_FREETYPE_H
106 #include FT_FREETYPE_H
107 #endif
109 #define ARSERT(cond) for (;;) { \
110 if (!(cond)) { \
111 errx (1, "%s:%d " #cond, __FILE__, __LINE__); \
113 break; \
116 struct slice {
117 int texindex;
118 int w, h;
121 struct pagedim {
122 int pageno;
123 int rotate;
124 fz_rect box;
125 fz_bbox bbox;
126 fz_matrix ctm, ctm1;
129 struct page {
130 int pageno;
131 int slicecount;
132 fz_textspan *text;
133 fz_pixmap *pixmap;
134 pdf_page *drawpage;
135 struct pagedim pagedim;
136 struct page *prev;
137 struct mark {
138 int i;
139 fz_textspan *span;
140 } fmark, lmark;
141 struct slice slices[];
144 #if !defined _WIN32 && !defined __APPLE__
145 #define USE_XSEL
146 #endif
148 struct {
149 int sock;
150 int sliceheight;
151 struct page *pages, *pig;
152 struct pagedim *pagedims;
153 int pagecount;
154 int pagedimcount;
155 pdf_xref *xref;
156 fz_glyphcache *cache;
157 int w, h;
159 int texindex;
160 int texcount;
161 GLuint *texids;
163 GLenum texform;
164 GLenum texty;
166 struct {
167 int w, h;
168 struct slice *slice;
169 } *texowners;
171 int rotate;
172 int needoutline;
174 #ifdef _WIN32
175 HANDLE thread;
176 #else
177 pthread_t thread;
178 #endif
179 FILE *xselpipe;
180 } state;
182 #ifdef _WIN32
183 static CRITICAL_SECTION critsec;
185 static void lock (void *unused)
187 (void) unused;
188 EnterCriticalSection (&critsec);
191 static void unlock (void *unused)
193 (void) unused;
194 LeaveCriticalSection (&critsec);
197 static int trylock (void *unused)
199 return TryEnterCriticalSection (&critsec) == 0;
201 #else
202 static pthread_mutex_t mutex = PTHREAD_MUTEX_INITIALIZER;
204 static void lock (const char *cap)
206 int ret = pthread_mutex_lock (&mutex);
207 if (ret) {
208 errx (1, "%s: pthread_mutex_lock: %s", cap, strerror (ret));
212 static void unlock (const char *cap)
214 int ret = pthread_mutex_unlock (&mutex);
215 if (ret) {
216 errx (1, "%s: pthread_mutex_unlock: %s", cap, strerror (ret));
220 static int trylock (const char *cap)
222 int ret = pthread_mutex_trylock (&mutex);
224 if (ret && ret != EBUSY) {
225 errx (1, "%s: pthread_mutex_trylock: %s", cap, strerror (ret));
227 return ret == EBUSY;
229 #endif
231 static void *parse_pointer (const char *cap, const char *s)
233 int ret;
234 void *ptr;
236 ret = sscanf (s, "%p", &ptr);
237 if (ret != 1) {
238 errx (1, "%s: cannot parse pointer in `%s'", cap, s);
240 return ptr;
243 static int hasdata (int sock)
245 int ret;
246 fionread_arg avail;
247 ret = ioctlsocket (sock, FIONREAD, &avail);
248 if (ret) err (1, "hasdata: FIONREAD error ret=%d", ret);
249 return avail > 0;
252 static double now (void)
254 struct timeval tv;
256 if (gettimeofday (&tv, NULL)) {
257 err (1, "gettimeofday");
259 return tv.tv_sec + tv.tv_usec*1e-6;
262 static void readdata (int fd, char *p, int size)
264 ssize_t n;
266 n = recv (fd, p, size, 0);
267 if (n - size) {
268 if (!n) errx (1, "EOF while reading");
269 sockerr (1, "recv (req %d, ret " FMT_ss ")", size, n);
273 static void writedata (int fd, char *p, int size)
275 char buf[4];
276 ssize_t n;
278 buf[0] = (size >> 24) & 0xff;
279 buf[1] = (size >> 16) & 0xff;
280 buf[2] = (size >> 8) & 0xff;
281 buf[3] = (size >> 0) & 0xff;
283 n = send (fd, buf, 4, 0);
284 if (n != 4) {
285 if (!n) errx (1, "EOF while writing length");
286 sockerr (1, "send " FMT_ss, n);
289 n = send (fd, p, size, 0);
290 if (n - size) {
291 if (!n) errx (1, "EOF while writing data");
292 sockerr (1, "send (req %d, ret " FMT_ss ")", size, n);
296 static void
297 #ifdef __GNUC__
298 __attribute__ ((format (printf, 2, 3)))
299 #endif
300 printd (int fd, const char *fmt, ...)
302 int len;
303 va_list ap;
304 char buf[200];
306 va_start (ap, fmt);
307 len = vsnprintf (buf, sizeof (buf), fmt, ap);
308 va_end (ap);
309 writedata (fd, buf, len);
312 static void die (fz_error error)
314 fz_catch (error, "aborting");
315 if (state.xref)
316 pdf_freexref (state.xref);
317 exit (1);
320 static void openxref (char *filename)
322 int fd;
323 fz_error error;
324 fz_stream *file;
326 fd = open (filename, O_BINARY | O_RDONLY, 0666);
327 if (fd < 0)
328 die (fz_throw ("cannot open file '%s'", filename));
330 file = fz_openfile (fd);
331 error = pdf_openxrefwithstream (&state.xref, file, NULL);
332 if (error)
333 die (fz_rethrow(error, "cannot open document '%s'", filename));
334 fz_close (file);
336 if (pdf_needspassword (state.xref)) {
337 die (fz_throw ("password protected"));
340 error = pdf_loadpagetree (state.xref);
341 if (error) {
342 die (fz_throw ("cannot load page tree"));
345 state.pagecount = pdf_getpagecount (state.xref);
348 static int readlen (int fd)
350 ssize_t n;
351 char p[4];
353 n = recv (fd, p, 4, 0);
354 if (n != 4) {
355 if (!n) errx (1, "EOF while reading length");
356 sockerr (1, "recv " FMT_ss, n);
359 return (p[0] << 24) | (p[1] << 16) | (p[2] << 8) | p[3];
362 static void unlinkpage (struct page *page)
364 int i;
365 struct page *p;
367 for (p = state.pages; p; p = p->prev) {
368 if (p->prev == page) {
369 p->prev = page->prev;
370 break;
373 for (i = 0; i < page->slicecount; ++i) {
374 struct slice *s = &page->slices[i];
375 if (s->texindex != -1) {
376 if (state.texowners[s->texindex].slice == s) {
377 state.texowners[s->texindex].slice = NULL;
378 ARSERT (state.texowners[s->texindex].w == s->w);
379 ARSERT (state.texowners[s->texindex].h >= s->h);
385 static void freepage (struct page *page)
387 fz_droppixmap (page->pixmap);
389 unlinkpage (page);
391 if (page->text) {
392 fz_freetextspan (page->text);
394 if (page->drawpage) {
395 pdf_freepage (page->drawpage);
398 free (page);
401 static void subdivide (struct page *p)
403 int i;
404 int h = p->pixmap->h;
405 int th = MIN (h, state.sliceheight);
407 for (i = 0; i < p->slicecount; ++i) {
408 struct slice *s = &p->slices[i];
409 s->texindex = -1;
410 s->h = MIN (th, h);
411 s->w = p->pixmap->w;
412 h -= th;
416 int compatpdims (struct pagedim *p1, struct pagedim *p2)
418 return p1->rotate == p2->rotate
419 && !memcmp (&p1->bbox, &p2->bbox, sizeof (p1->bbox))
420 && !memcmp (&p1->ctm, &p2->ctm, sizeof (p1->ctm));
423 #ifdef __ALTIVEC__
424 #include <altivec.h>
426 static int cacheline32bytes;
428 static void __attribute__ ((constructor)) clcheck (void)
430 char **envp = environ;
431 unsigned long *auxv;
433 while (*envp++);
435 for (auxv = (unsigned long *) envp; *auxv != 0; auxv += 2) {
436 if (*auxv == 19) {
437 cacheline32bytes = auxv[1] == 32;
438 return;
443 static void __attribute__ ((optimize ("O"))) clearpixmap (fz_pixmap *pixmap)
445 if (cacheline32bytes) {
446 intptr_t a1, a2, diff;
447 size_t sizea, i, size = pixmap->w * pixmap->h * pixmap->n;
448 vector unsigned char v = vec_splat_u8 (-1);
449 vector unsigned char *p;
451 a1 = a2 = (intptr_t) pixmap->samples;
452 a2 = (a1 + 31) & ~31;
453 diff = a2 - a1;
454 sizea = size - diff;
455 p = (void *) a2;
457 while (a1 != a2) *(char *) a1++ = 0xff;
458 for (i = 0; i < (sizea - 31); i += 32) {
459 __asm volatile ("dcbz %0, %1"::"b"(a2),"r"(i));
460 vec_st (v, i, p);
461 vec_st (v, i + 16, p);
463 while (i++ < sizea) *((char *) a1 + i) = 0xff;
465 else fz_clearpixmap (pixmap, 0xff);
467 #else
468 #define clearpixmap(p) fz_clearpixmap (p, 0xff)
469 #endif
471 static void *render (int pageno, int pindex)
473 fz_error error;
474 int slicecount;
475 fz_obj *pageobj;
476 struct page *page = NULL;
477 double start, end;
478 pdf_page *drawpage;
479 fz_device *idev;
480 struct pagedim *pagedim;
482 start = now ();
483 printd (state.sock, "V rendering %d", pageno);
485 pagedim = &state.pagedims[pindex];
486 slicecount = (pagedim->bbox.y1 - pagedim->bbox.y0
487 + state.sliceheight - 1) / state.sliceheight;
488 slicecount += slicecount == 0;
490 if (state.pig) {
491 if (compatpdims (&state.pig->pagedim, pagedim)) {
492 page = state.pig;
493 if (page->text) {
494 fz_freetextspan (page->text);
495 page->text = NULL;
497 if (page->drawpage) {
498 pdf_freepage (page->drawpage);
499 page->drawpage = NULL;
502 else {
503 freepage (state.pig);
506 if (!page) {
507 page = calloc (sizeof (*page)
508 + (slicecount * sizeof (struct slice)), 1);
509 if (!page) {
510 err (1, "calloc page %d\n", pageno);
512 page->pixmap = fz_newpixmapwithrect (fz_devicergb, pagedim->bbox);
515 page->slicecount = slicecount;
516 page->prev = state.pages;
517 state.pages = page;
519 pageobj = pdf_getpageobject (state.xref, pageno);
520 if (!pageobj)
521 die (fz_throw ("cannot retrieve info from page %d", pageno));
523 error = pdf_loadpage (&drawpage, state.xref, pageobj);
524 if (error)
525 die (error);
527 clearpixmap (page->pixmap);
529 idev = fz_newdrawdevice (state.cache, page->pixmap);
530 if (!idev)
531 die (fz_throw ("fz_newdrawdevice failed"));
532 error = pdf_runpage (state.xref, drawpage, idev, pagedim->ctm);
533 if (error)
534 die (fz_rethrow (error, "pdf_runpage failed"));
535 fz_freedevice (idev);
537 page->drawpage = drawpage;
538 page->pagedim = *pagedim;
539 page->pageno = pageno;
540 subdivide (page);
541 end = now ();
543 pdf_agestore(state.xref->store, 3);
545 printd (state.sock, "V rendering %d took %f sec", pageno, end - start);
546 state.pig = NULL;
547 return page;
550 static void initpdims (void)
552 int pageno;
553 double start, end;
555 start = now ();
556 for (pageno = 0; pageno < state.pagecount; ++pageno) {
557 int rotate;
558 fz_rect box;
559 struct pagedim *p;
560 fz_obj *obj, *pageobj;
562 pageobj = pdf_getpageobject (state.xref, pageno + 1);
564 obj = fz_dictgets (pageobj, "CropBox");
565 if (!fz_isarray (obj)) {
566 obj = fz_dictgets (pageobj, "MediaBox");
567 if (!fz_isarray (obj)) {
568 die (fz_throw ("cannot find page bounds %d (%d Rd)",
569 fz_tonum (pageobj), fz_togen (pageobj)));
572 box = pdf_torect (obj);
574 obj = fz_dictgets (pageobj, "Rotate");
575 if (fz_isint (obj)) {
576 rotate = fz_toint (obj);
578 else {
579 rotate = 0;
581 rotate += state.rotate;
583 p = &state.pagedims[state.pagedimcount - 1];
584 if ((state.pagedimcount == 0)
585 || (p->rotate != rotate || memcmp (&p->box, &box, sizeof (box)))) {
586 size_t size;
588 size = (state.pagedimcount + 1) * sizeof (*state.pagedims);
589 state.pagedims = realloc (state.pagedims, size);
590 if (!state.pagedims) {
591 err (1, "realloc pagedims to " FMT_s " (%d elems)",
592 size, state.pagedimcount + 1);
594 p = &state.pagedims[state.pagedimcount++];
595 p->rotate = rotate;
596 p->box = box;
597 p->pageno = pageno;
600 end = now ();
601 printd (state.sock, "T Processed %d pages in %f seconds",
602 state.pagecount, end - start);
605 static void layout (void)
607 int pindex;
608 fz_matrix ctm;
609 fz_rect box, box2;
610 double zoom, w;
611 struct pagedim *p = state.pagedims;
613 pindex = 0;
614 for (pindex = 0; pindex < state.pagedimcount; ++pindex, ++p) {
615 box.x0 = MIN (p->box.x0, p->box.x1);
616 box.y0 = MIN (p->box.y0, p->box.y1);
617 box.x1 = MAX (p->box.x0, p->box.x1);
618 box.y1 = MAX (p->box.y0, p->box.y1);
620 ctm = fz_identity;
621 ctm = fz_concat (ctm, fz_translate (0, -box.y1));
622 ctm = fz_concat (ctm, fz_rotate (p->rotate));
623 box2 = fz_transformrect (ctm, box);
624 w = box2.x1 - box2.x0;
626 zoom = (state.w / w);
627 ctm = fz_identity;
628 ctm = fz_concat (ctm, fz_translate (0, -box.y1));
629 ctm = fz_concat (ctm, fz_scale (zoom, -zoom));
630 memcpy (&p->ctm1, &ctm, sizeof (ctm));
631 ctm = fz_concat (ctm, fz_rotate (p->rotate));
632 p->bbox = fz_roundrect (fz_transformrect (ctm, box));
633 memcpy (&p->ctm, &ctm, sizeof (ctm));
636 while (p-- != state.pagedims) {
637 printd (state.sock, "l %d %d %d",
638 p->pageno, p->bbox.x1 - p->bbox.x0, p->bbox.y1 - p->bbox.y0);
642 static void recurse_outline (pdf_outline *outline, int level)
644 while (outline) {
645 int i;
646 fz_obj *obj;
647 int pageno = -1;
648 int top = 0, h = 0;
650 if (!outline->link) goto next;
652 obj = outline->link->dest;
653 if (fz_isindirect (obj)) {
654 obj = fz_resolveindirect (obj);
656 if (fz_isarray (obj)) {
657 fz_obj *obj2;
659 obj2 = fz_arrayget (obj, 0);
660 if (fz_isint (obj2)) {
661 pageno = fz_toint (obj2);
663 else {
664 pageno = pdf_findpageobject (state.xref, obj2) - 1;
667 if (fz_arraylen (obj) > 3) {
668 fz_point p;
669 struct pagedim *pagedim = state.pagedims;
671 for (i = 0; i < state.pagedimcount; ++i) {
672 if (state.pagedims[i].pageno > pageno)
673 break;
674 pagedim = &state.pagedims[i];
677 p.x = fz_toint (fz_arrayget (obj, 2));
678 p.y = fz_toint (fz_arrayget (obj, 3));
679 p = fz_transformpoint (pagedim->ctm, p);
680 top = p.y;
681 h = pagedim->bbox.y1 - pagedim->bbox.y0;
684 else {
685 pageno = pdf_findpageobject (state.xref, outline->link->dest) - 1;
688 lprintf ("%*c%s %d\n", level, ' ', outline->title, pageno);
689 printd (state.sock, "o %d %d %d %d %s",
690 level, pageno, top, h, outline->title);
691 next:
692 if (outline->child) {
693 recurse_outline (outline->child, level + 1);
695 outline = outline->next;
699 static void process_outline (void)
701 pdf_outline *outline;
703 if (!state.needoutline) return;
705 state.needoutline = 0;
706 outline = pdf_loadoutline (state.xref);
707 if (outline) {
708 recurse_outline (outline, 0);
709 pdf_freeoutline (outline);
713 static int comparespans (const void *l, const void *r)
715 fz_textspan const *const*ls = l;
716 fz_textspan const *const*rs = r;
717 return (*ls)->text->bbox.y0 - (*rs)->text->bbox.y0;
720 /* wishful thinking function */
721 static void search (regex_t *re, int pageno, int y, int forward)
723 int i, j;
724 int ret;
725 char *p;
726 char buf[256];
727 fz_matrix ctm;
728 fz_error error;
729 fz_obj *pageobj;
730 fz_device *tdev;
731 pdf_page *drawpage;
732 fz_textspan *text, *span, **pspan;
733 struct pagedim *pdim, *pdimprev;
734 int stop = 0;
735 int niters = 0;
736 int nspans;
737 double start, end;
739 start = now ();
740 while (pageno >= 0 && pageno < state.pagecount && !stop) {
741 if (niters++ == 5) {
742 pdf_agestore(state.xref->store, 3);
743 niters = 0;
744 if (hasdata (state.sock)) {
745 printd (state.sock, "T attention requested aborting search at %d",
746 pageno);
747 stop = 1;
749 else {
750 printd (state.sock, "T searching in page %d", pageno);
753 pdimprev = NULL;
754 for (i = 0; i < state.pagedimcount; ++i) {
755 pdim = &state.pagedims[i];
756 if (pdim->pageno == pageno) {
757 goto found;
759 if (pdim->pageno > pageno) {
760 pdim = pdimprev;
761 goto found;
763 pdimprev = pdim;
765 pdim = pdimprev;
766 found:
768 pageobj = pdf_getpageobject (state.xref, pageno + 1);
769 if (!pageobj)
770 die (fz_throw ("cannot retrieve info from page %d", pageno));
772 error = pdf_loadpage (&drawpage, state.xref, pageobj);
773 if (error)
774 die (error);
776 ctm = fz_rotate (pdim->rotate);
778 text = fz_newtextspan ();
779 tdev = fz_newtextdevice (text);
780 error = pdf_runpage (state.xref, drawpage, tdev, pdim->ctm1);
781 if (error) die (error);
782 fz_freedevice (tdev);
784 nspans = 0;
785 for (span = text; span; span = span->next) {
786 nspans++;
788 pspan = malloc (sizeof (void *) * nspans);
789 if (!pspan) {
790 err (1, "malloc span pointers " FMT_s, sizeof (void *) * nspans);
792 for (i = 0, span = text; span; span = span->next, ++i) {
793 pspan[i] = span;
795 qsort (pspan, nspans, sizeof (fz_textspan *), comparespans);
797 j = forward ? 0 : nspans - 1;
798 while (nspans--) {
799 regmatch_t rm;
801 span = pspan[j];
802 j += forward ? 1 : -1;
803 p = buf;
804 for (i = 0; i < MIN (span->len, (int) sizeof (buf) - 1); ++i) {
805 if (forward) {
806 if (span->text[i].bbox.y0 < y + 1) {
807 continue;
810 else {
811 if (span->text[i].bbox.y0 > y - 1) {
812 continue;
815 if (span->text[i].c < 256) {
816 *p++ = span->text[i].c;
818 else {
819 *p++ = '?';
822 if (p == buf) {
823 continue;
825 *p++ = 0;
827 ret = regexec (re, buf, 1, &rm, 0);
828 if (ret) {
829 if (ret != REG_NOMATCH) {
830 size_t size;
831 char errbuf[80];
832 size = regerror (ret, re, errbuf, sizeof (errbuf));
833 printd (state.sock,
834 "T regexec error `%.*s'",
835 (int) size, errbuf);
836 fz_freetextspan (text);
837 pdf_freepage (drawpage);
838 free (pspan);
839 return;
842 else {
843 int xoff, yoff;
844 fz_bbox *sb, *eb;
845 fz_point p1, p2, p3, p4;
847 xoff = -pdim->bbox.x0;
848 yoff = -pdim->bbox.y0;
850 sb = &span->text[rm.rm_so].bbox;
851 eb = &span->text[rm.rm_eo - 1].bbox;
853 p1.x = sb->x0;
854 p1.y = sb->y0;
855 p2.x = eb->x1;
856 p2.y = sb->y0;
857 p3.x = eb->x1;
858 p3.y = eb->y1;
859 p4.x = sb->x0;
860 p4.y = eb->y1;
862 p1 = fz_transformpoint (ctm, p1);
863 p2 = fz_transformpoint (ctm, p2);
864 p3 = fz_transformpoint (ctm, p3);
865 p4 = fz_transformpoint (ctm, p4);
867 if (!stop) {
868 printd (state.sock, "F %d %d %f %f %f %f %f %f %f %f",
869 pageno, 1,
870 p1.x + xoff, p1.y + yoff,
871 p2.x + xoff, p2.y + yoff,
872 p3.x + xoff, p3.y + yoff,
873 p4.x + xoff, p4.y + yoff);
875 printd (state.sock, "T found at %d `%.*s' in %f sec",
876 pageno, rm.rm_eo - rm.rm_so, &buf[rm.rm_so],
877 now () - start);
879 else {
880 printd (state.sock, "R %d %d %f %f %f %f %f %f %f %f",
881 pageno, 2,
882 p1.x + xoff, p1.y + yoff,
883 p2.x + xoff, p2.y + yoff,
884 p3.x + xoff, p3.y + yoff,
885 p4.x + xoff, p4.y + yoff);
887 stop = 1;
890 if (forward) {
891 pageno += 1;
892 y = 0;
894 else {
895 pageno -= 1;
896 y = INT_MAX;
898 fz_freetextspan (text);
899 pdf_freepage (drawpage);
900 free (pspan);
902 end = now ();
903 if (!stop) {
904 printd (state.sock, "T no matches %f sec", end - start);
906 printd (state.sock, "D");
909 static
910 #ifdef _WIN32
911 DWORD _stdcall
912 #else
913 void *
914 #endif
915 mainloop (void *unused)
917 char *p = NULL;
918 int len, ret, oldlen = 0;
920 for (;;) {
921 len = readlen (state.sock);
922 if (len == 0) {
923 errx (1, "readlen returned 0");
926 if (oldlen < len + 1) {
927 p = realloc (p, len + 1);
928 if (!p) {
929 err (1, "realloc %d failed", len + 1);
931 oldlen = len + 1;
933 readdata (state.sock, p, len);
934 p[len] = 0;
936 if (!strncmp ("open", p, 4)) {
937 fz_obj *obj;
938 char *filename = p + 5;
940 openxref (filename);
941 initpdims ();
943 obj = fz_dictgets (state.xref->trailer, "Info");
944 if (obj) {
945 obj = fz_dictgets (obj, "Title");
946 if (obj) {
947 printd (state.sock, "t %s", pdf_toutf8 (obj));
950 state.needoutline = 1;
952 else if (!strncmp ("free", p, 4)) {
953 void *ptr;
955 ret = sscanf (p + 4, " %p", &ptr);
956 if (ret != 1) {
957 errx (1, "malformed free `%.*s' ret=%d", len, p, ret);
959 unlinkpage (ptr);
960 state.pig = ptr;
962 else if (!strncmp ("search", p, 6)) {
963 int icase, pageno, y, ret, len2, forward;
964 char *pattern;
965 regex_t re;
967 ret = sscanf (p + 6, " %d %d %d %d,%n",
968 &icase, &pageno, &y, &forward, &len2);
969 if (ret != 4) {
970 errx (1, "malformed search `%s' ret=%d", p, ret);
973 pattern = p + 6 + len2;
974 ret = regcomp (&re, pattern,
975 REG_EXTENDED | (icase ? REG_ICASE : 0));
976 if (ret) {
977 char errbuf[80];
978 size_t size;
980 size = regerror (ret, &re, errbuf, sizeof (errbuf));
981 printd (state.sock, "T regcomp failed `%.*s'",
982 (int) size, errbuf);
984 else {
985 search (&re, pageno, y, forward);
986 regfree (&re);
989 else if (!strncmp ("geometry", p, 8)) {
990 int w, h;
992 printd (state.sock, "c");
993 ret = sscanf (p + 8, " %d %d", &w, &h);
994 if (ret != 2) {
995 errx (1, "malformed geometry `%.*s' ret=%d", len, p, ret);
998 lock ("geometry");
999 state.h = h;
1000 if (w != state.w) {
1001 int i;
1002 state.w = w;
1003 for (i = 0; i < state.texcount; ++i) {
1004 state.texowners[i].slice = NULL;
1007 layout ();
1008 process_outline ();
1009 unlock ("geometry");
1010 printd (state.sock, "C %d", state.pagecount);
1012 else if (!strncmp ("rotate", p, 6)) {
1013 float rotate;
1015 printd (state.sock, "c");
1016 ret = sscanf (p + 6, " %f", &rotate);
1017 if (ret != 1) {
1018 errx (1, "bad rotate line `%.*s' ret=%d", len, p, ret);
1020 lock ("rotate");
1021 state.rotate = rotate;
1022 state.pagedimcount = 0;
1023 free (state.pagedims);
1024 state.pagedims = NULL;
1025 initpdims ();
1026 layout ();
1027 process_outline ();
1028 if (state.pig) {
1029 freepage (state.pig);
1030 state.pig = NULL;
1032 unlock ("rotate");
1033 printd (state.sock, "C %d", state.pagecount);
1035 else if (!strncmp ("render", p, 6)) {
1036 int pageno, pindex, w, h, ret;
1037 struct page *page;
1039 ret = sscanf (p + 6, " %d %d %d %d", &pageno, &pindex, &w, &h);
1040 if (ret != 4) {
1041 errx (1, "bad render line `%.*s' ret=%d", len, p, ret);
1044 lock ("render");
1045 page = render (pageno, pindex);
1046 unlock ("render");
1048 printd (state.sock, "r %d %d %d %d %p",
1049 pageno,
1050 state.w,
1051 state.h,
1052 state.rotate,
1053 page);
1055 else if (!strncmp ("interrupt", p, 9)) {
1056 printd (state.sock, "V interrupted");
1058 else {
1059 errx (1, "unknown command %.*s", len, p);
1062 return 0;
1065 static void showsel (struct page *page, int oy)
1067 int ox;
1068 fz_bbox bbox;
1069 fz_textspan *span;
1070 struct mark first, last;
1072 first = page->fmark;
1073 last = page->lmark;
1075 if (!first.span || !last.span) return;
1077 glEnable (GL_BLEND);
1078 glBlendFunc (GL_SRC_ALPHA, GL_SRC_ALPHA);
1079 glColor4f (0.5f, 0.5f, 0.0f, 0.6f);
1081 ox = -page->pixmap->x;
1082 oy = -page->pixmap->y + oy;
1083 for (span = first.span; span; span = span->next) {
1084 int i, j, k;
1086 bbox.x0 = bbox.y0 = bbox.x1 = bbox.y1 = 0;
1088 j = 0;
1089 k = span->len - 1;
1091 if (span == page->fmark.span && span == page->lmark.span) {
1092 j = MIN (first.i, last.i);
1093 k = MAX (first.i, last.i);
1095 else if (span == first.span) {
1096 j = first.i;
1098 else if (span == last.span) {
1099 k = last.i;
1102 for (i = j; i <= k; ++i) {
1103 bbox = fz_unionbbox (bbox, span->text[i].bbox);
1105 lprintf ("%d %d %d %d oy=%d ox=%d\n",
1106 bbox.x0,
1107 bbox.y0,
1108 bbox.x1,
1109 bbox.y1,
1110 oy, ox);
1112 glRecti (bbox.x0 + ox, bbox.y0 + oy, bbox.x1 + ox, bbox.y1 + oy);
1114 if (span == last.span) break;
1116 glDisable (GL_BLEND);
1119 static void upload2 (struct page *page, int slicenum, const char *cap)
1121 int i;
1122 int w, h;
1123 double start, end;
1124 struct slice *slice = &page->slices[slicenum];
1126 w = page->pixmap->w;
1127 h = page->pixmap->h;
1129 ARSERT (w == slice->w);
1130 if (slice->texindex != -1
1131 && state.texowners[slice->texindex].slice == slice) {
1132 glBindTexture (GL_TEXTURE_RECTANGLE_ARB, state.texids[slice->texindex]);
1134 else {
1135 int subimage = 0;
1136 int index = (state.texindex++ % state.texcount);
1137 size_t offset = 0;
1139 for (i = 0; i < slicenum; ++i) {
1140 offset += w * page->slices[i].h * 4;
1143 if (state.texowners[index].w == slice->w) {
1144 if (state.texowners[index].h >= slice->h ) {
1145 subimage = 1;
1147 else {
1148 state.texowners[index].h = slice->h;
1151 else {
1152 state.texowners[index].h = slice->h;
1155 state.texowners[index].slice = slice;
1156 state.texowners[index].w = slice->w;
1157 slice->texindex = index;
1159 glBindTexture (GL_TEXTURE_RECTANGLE_ARB, state.texids[slice->texindex]);
1160 start = now ();
1161 if (subimage) {
1163 GLenum err = glGetError ();
1164 if (err != GL_NO_ERROR) {
1165 printf ("\033[0;31mERROR1 %d %d %#x\033[0m\n", w, slice->h, err);
1166 abort ();
1169 glTexSubImage2D (GL_TEXTURE_RECTANGLE_ARB,
1174 slice->h,
1175 state.texform,
1176 state.texty,
1177 page->pixmap->samples + offset
1180 GLenum err = glGetError ();
1181 if (err != GL_NO_ERROR) {
1182 printf ("\033[0;31mERROR %d %d %#x\033[0m\n", w, slice->h, err);
1183 abort ();
1187 else {
1188 glTexImage2D (GL_TEXTURE_RECTANGLE_ARB,
1190 GL_RGBA8,
1192 slice->h,
1194 state.texform,
1195 state.texty,
1196 page->pixmap->samples + offset
1200 end = now ();
1201 lprintf ("%s[%d] slice=%d(%d,%d) texid=%d %f sec\n",
1202 subimage ? "sub" : "img",
1203 page->pageno, slicenum,
1204 slice->w, slice->h,
1205 state.texids[slice->texindex],
1206 end - start);
1210 CAMLprim value ml_draw (value dispy_v, value w_v, value h_v,
1211 value py_v, value ptr_v)
1213 CAMLparam5 (dispy_v, w_v, h_v, py_v, ptr_v);
1214 int dispy = Int_val (dispy_v);
1215 int w = Int_val (w_v);
1216 int h = Int_val (h_v);
1217 int py = Int_val (py_v);
1218 char *s = String_val (ptr_v);
1219 int ret;
1220 void *ptr;
1221 struct page *page;
1222 int slicenum = 0;
1224 ret = sscanf (s, "%p", &ptr);
1225 if (ret != 1) {
1226 errx (1, "cannot parse pointer `%s'", s);
1228 page = ptr;
1230 w = page->pixmap->w;
1232 ARSERT (h >= 0 && "ml_draw wrong h");
1233 ARSERT (py <= page->pixmap->h && "ml_draw wrong py");
1235 glEnable (GL_TEXTURE_RECTANGLE_ARB);
1237 for (slicenum = 0; slicenum < page->slicecount; ++slicenum) {
1238 struct slice *slice = &page->slices[slicenum];
1239 if (slice->h > py) {
1240 break;
1242 py -= slice->h;
1245 h = MIN (state.h, h);
1246 while (h) {
1247 int th;
1248 struct slice *slice = &page->slices[slicenum];
1250 ARSERT (slicenum < page->slicecount && "ml_draw wrong slicenum");
1252 th = MIN (h, slice->h - py);
1253 upload2 (page, slicenum, "upload");
1255 glBegin (GL_QUADS);
1257 glTexCoord2i (0, py);
1258 glVertex2i (0, dispy);
1260 glTexCoord2i (w, py);
1261 glVertex2i (w, dispy);
1263 glTexCoord2i (w, py+th);
1264 glVertex2i (w, dispy + th);
1266 glTexCoord2i (0, py+th);
1267 glVertex2i (0, dispy + th);
1269 glEnd ();
1271 h -= th;
1272 py = 0;
1273 dispy += th;
1274 slicenum += 1;
1277 showsel (page, Int_val (dispy_v) - Int_val (py_v));
1278 glDisable (GL_TEXTURE_RECTANGLE_ARB);
1280 CAMLreturn (Val_unit);
1283 static pdf_link *getlink (struct page *page, int x, int y)
1285 fz_point p;
1286 fz_matrix ctm;
1287 pdf_link *link;
1289 p.x = x + page->pixmap->x;
1290 p.y = y + page->pixmap->y;
1292 ctm = fz_invertmatrix (page->pagedim.ctm);
1293 p = fz_transformpoint (ctm, p);
1295 for (link = page->drawpage->links; link; link = link->next) {
1296 if (p.x >= link->rect.x0 && p.x <= link->rect.x1) {
1297 if (p.y >= link->rect.y0 && p.y <= link->rect.y1) {
1298 return link;
1302 return NULL;
1305 CAMLprim value ml_highlightlinks (value ptr_v, value yoff_v)
1307 CAMLparam2 (ptr_v, yoff_v);
1308 pdf_link *link;
1309 struct page *page;
1310 int xoff, yoff = Int_val (yoff_v);
1311 const char *s = String_val (ptr_v);
1313 page = parse_pointer ("ml_highlightlinks", s);
1315 glPolygonMode (GL_FRONT_AND_BACK, GL_LINE);
1316 glEnable (GL_LINE_STIPPLE);
1317 glLineStipple (0.5, 0xcccc);
1319 xoff = -page->pixmap->x;
1320 yoff -= page->pixmap->y;
1322 glBegin (GL_QUADS);
1323 for (link = page->drawpage->links; link; link = link->next) {
1324 fz_point p1, p2, p3, p4;
1325 fz_matrix ctm = page->pagedim.ctm;
1327 p1.x = link->rect.x0;
1328 p1.y = link->rect.y0;
1330 p2.x = link->rect.x1;
1331 p2.y = link->rect.y0;
1333 p3.x = link->rect.x1;
1334 p3.y = link->rect.y1;
1336 p4.x = link->rect.x0;
1337 p4.y = link->rect.y1;
1339 p1 = fz_transformpoint (ctm, p1);
1340 p2 = fz_transformpoint (ctm, p2);
1341 p3 = fz_transformpoint (ctm, p3);
1342 p4 = fz_transformpoint (ctm, p4);
1344 switch (link->kind) {
1345 case PDF_LGOTO: glColor3ub (255, 0, 0); break;
1346 case PDF_LURI: glColor3ub (0, 0, 255); break;
1347 default: glColor3ub (0, 0, 0); break;
1350 glVertex2f (p1.x + xoff, p1.y + yoff);
1351 glVertex2f (p2.x + xoff, p2.y + yoff);
1352 glVertex2f (p3.x + xoff, p3.y + yoff);
1353 glVertex2f (p4.x + xoff, p4.y + yoff);
1355 glEnd ();
1357 glPolygonMode (GL_FRONT_AND_BACK, GL_FILL);
1358 glDisable (GL_LINE_STIPPLE);
1360 CAMLreturn (Val_unit);
1363 static void ensuretext (struct page *page)
1365 if (!page->text) {
1366 fz_error error;
1367 fz_device *tdev;
1369 page->text = fz_newtextspan ();
1370 tdev = fz_newtextdevice (page->text);
1371 error = pdf_runpage (state.xref, page->drawpage, tdev,
1372 page->pagedim.ctm);
1373 if (error) die (error);
1374 fz_freedevice (tdev);
1378 CAMLprim value ml_whatsunder (value ptr_v, value x_v, value y_v)
1380 CAMLparam3 (ptr_v, x_v, y_v);
1381 CAMLlocal3 (ret_v, tup_v, str_v);
1382 pdf_link *link;
1383 struct page *page;
1384 char *s = String_val (ptr_v);
1386 ret_v = Val_int (0);
1387 if (trylock ("ml_whatsunder")) {
1388 goto done;
1391 page = parse_pointer ("ml_whatsunder", s);
1392 link = getlink (page, Int_val (x_v), Int_val (y_v));
1393 if (link) {
1394 switch (link->kind) {
1395 case PDF_LGOTO:
1397 int pageno;
1398 fz_point p;
1399 fz_obj *obj;
1401 pageno = -1;
1402 p.x = 0;
1403 p.y = 0;
1405 if (fz_isarray (link->dest)) {
1406 obj = fz_arrayget (link->dest, 0);
1407 if (fz_isindirect (obj)) {
1408 pageno = pdf_findpageobject (state.xref, obj) - 1;
1410 else if (fz_isint (obj)) {
1411 pageno = fz_toint (obj);
1414 if (fz_arraylen (link->dest) > 3) {
1415 fz_obj *xo, *yo;
1417 xo = fz_arrayget (link->dest, 2);
1418 yo = fz_arrayget (link->dest, 3);
1419 if (!fz_isnull (xo) && !fz_isnull (yo)) {
1420 p.x = fz_toint (xo);
1421 p.y = fz_toint (yo);
1422 p = fz_transformpoint (page->pagedim.ctm, p);
1426 else {
1427 pageno = pdf_findpageobject (state.xref, link->dest) - 1;
1429 tup_v = caml_alloc_tuple (2);
1430 ret_v = caml_alloc_small (1, 1);
1431 Field (tup_v, 0) = Val_int (pageno);
1432 Field (tup_v, 1) = Val_int (p.y);
1433 Field (ret_v, 0) = tup_v;
1435 break;
1437 case PDF_LURI:
1438 str_v = caml_copy_string (fz_tostrbuf (link->dest));
1439 ret_v = caml_alloc_small (1, 0);
1440 Field (ret_v, 0) = str_v;
1441 break;
1443 default:
1444 printd (state.sock, "T unhandled link kind %d", link->kind);
1445 break;
1448 else {
1449 int i, x, y;
1450 fz_textspan *span;
1452 ensuretext (page);
1453 x = Int_val (x_v) + page->pixmap->x;
1454 y = Int_val (y_v) + page->pixmap->y;
1456 for (span = page->text; span; span = span->next) {
1457 for (i = 0; i < span->len; ++i) {
1458 fz_bbox *b;
1459 b = &span->text[i].bbox;
1460 if ((x >= b->x0 && x <= b->x1 && y >= b->y0 && y <= b->y1)) {
1461 #ifdef FT_FREETYPE_H
1462 FT_FaceRec *face = span->font->ftface;
1463 if (face) {
1464 char *s;
1465 char *n1 = face->family_name;
1466 char *n2 = span->font->name;
1467 size_t l1 = strlen (n1);
1468 size_t l2 = strlen (n2);
1470 if (l1 != l2 || memcmp (n1, n2, l1)) {
1471 s = malloc (l1 + l2 + 2);
1472 if (s) {
1473 memcpy (s, n2, l2);
1474 s[l2] = '=';
1475 memcpy (s + l2 + 1, n1, l1 + 1);
1476 str_v = caml_copy_string (s);
1477 free (s);
1481 if (str_v == 0) {
1482 str_v = caml_copy_string (span->font->name);
1484 #else
1485 str_v = caml_copy_string (span->font->name);
1486 #endif
1487 ret_v = caml_alloc_small (1, 2);
1488 Field (ret_v, 0) = str_v;
1489 goto unlock;
1494 unlock:
1495 unlock ("ml_whatsunder");
1497 done:
1498 CAMLreturn (ret_v);
1501 CAMLprim value ml_seltext (value ptr_v, value rect_v, value oy_v)
1503 CAMLparam4 (ptr_v, rect_v, oy_v, rect_v);
1504 fz_bbox *b;
1505 struct page *page;
1506 fz_textspan *span;
1507 struct mark first, last;
1508 int i, x0, x1, y0, y1, oy;
1509 char *s = String_val (ptr_v);
1511 if (trylock ("ml_seltext")) {
1512 goto done;
1515 page = parse_pointer ("ml_seltext", s);
1516 ensuretext (page);
1518 oy = Int_val (oy_v);
1519 x0 = Int_val (Field (rect_v, 0));
1520 y0 = Int_val (Field (rect_v, 1));
1521 x1 = Int_val (Field (rect_v, 2));
1522 y1 = Int_val (Field (rect_v, 3));
1524 if (0) {
1525 glPolygonMode (GL_FRONT_AND_BACK, GL_LINE);
1526 glColor3ub (128, 128, 128);
1527 glRecti (x0, y0, x1, y1);
1528 glPolygonMode (GL_FRONT_AND_BACK, GL_FILL);
1531 x0 += page->pixmap->x;
1532 y0 += page->pixmap->y - oy;
1533 x1 += page->pixmap->x;
1534 y1 += page->pixmap->y - oy;
1536 first.span = NULL;
1537 last.span = NULL;
1539 last.i = first.i = 0;
1540 first.span = page->text;
1541 for (span = page->text; span; span = span->next) {
1542 for (i = 0; i < span->len; ++i) {
1543 b = &span->text[i].bbox;
1544 if (x0 >= b->x0 && x0 <= b->x1 && y0 >= b->y0 && y0 <= b->y1) {
1545 first.i = i;
1546 first.span = span;
1548 if (x1 >= b->x0 && x1 <= b->x1 && y1 >= b->y0 && y1 <= b->y1) {
1549 last.i = i;
1550 last.span = span;
1555 if (y1 < y0 || x1 < x0) {
1556 int swap = 0;
1558 if (first.span == last.span) {
1559 swap = 1;
1561 else {
1562 if (y1 < y0) {
1563 for (span = first.span; span && span != last.span;
1564 span = span->next) {
1565 if (span->eol) {
1566 swap = 1;
1567 break;
1573 if (swap) {
1574 i = first.i;
1575 span = first.span;
1576 first.i = last.i;
1577 first.span = last.span;
1578 last.i = i;
1579 last.span = span;
1583 page->fmark = first;
1584 page->lmark = last;
1586 unlock ("ml_seltext");
1588 done:
1589 CAMLreturn (Val_unit);
1592 static int pipespan (FILE *f, fz_textspan *span, int a, int b)
1594 char buf[4];
1595 int i, len, ret;
1597 for (i = a; i <= b; ++i) {
1598 len = runetochar (buf, &span->text[i].c);
1599 ret = fwrite (buf, len, 1, f);
1601 if (ret != 1) {
1602 printd (state.sock, "T failed to write %d bytes ret=%d: %s",
1603 len, ret, strerror (errno));
1604 return -1;
1607 return 0;
1610 CAMLprim value ml_copysel (value ptr_v)
1612 CAMLparam1 (ptr_v);
1613 FILE *f;
1614 struct page *page;
1615 char *s = String_val (ptr_v);
1617 if (trylock ("ml_copysel")) {
1618 goto done;
1621 if (!*s) {
1622 close:
1623 #ifdef USE_XSEL
1624 if (state.xselpipe) {
1625 int ret = pclose (state.xselpipe);
1626 if (ret) {
1627 printd (state.sock, "T failed to close xsel pipe `%s'",
1628 strerror (errno));
1630 state.xselpipe = NULL;
1632 #else
1633 printf ("========================================\n");
1634 #endif
1636 else {
1637 fz_textspan *span;
1639 page = parse_pointer ("ml_sopysel", s);
1641 if (!page->fmark.span || !page->lmark.span) {
1642 printd (state.sock, "T nothing to copy");
1643 goto unlock;
1646 f = stdout;
1647 #ifdef USE_XSEL
1648 if (!state.xselpipe) {
1649 state.xselpipe = popen ("xsel -i", "w");
1650 if (!state.xselpipe) {
1651 printd (state.sock, "T failed to open xsel pipe `%s'",
1652 strerror (errno));
1654 else {
1655 f = state.xselpipe;
1658 else {
1659 f = state.xselpipe;
1661 #endif
1663 for (span = page->fmark.span;
1664 span && span != page->lmark.span->next;
1665 span = span->next) {
1666 int a = span == page->fmark.span ? page->fmark.i : 0;
1667 int b = span == page->lmark.span ? page->lmark.i : span->len - 1;
1668 if (pipespan (f, span, a, b)) {
1669 goto close;
1671 if (span->eol) {
1672 if (putc ('\n', f) == EOF) {
1673 printd (state.sock, "T failed break line on xsel pipe `%s'",
1674 strerror (errno));
1675 goto close;
1679 page->lmark.span = NULL;
1680 page->fmark.span = NULL;
1683 unlock:
1684 unlock ("ml_copysel");
1686 done:
1687 CAMLreturn (Val_unit);
1690 CAMLprim value ml_getpagewh (value pagedimno_v)
1692 CAMLparam1 (pagedimno_v);
1693 CAMLlocal1 (ret_v);
1694 int pagedimno = Int_val (pagedimno_v);
1696 ret_v = caml_alloc_small (4 * Double_wosize, Double_array_tag);
1697 Store_double_field (ret_v, 0, state.pagedims[pagedimno].box.x0);
1698 Store_double_field (ret_v, 1, state.pagedims[pagedimno].box.x1);
1699 Store_double_field (ret_v, 2, state.pagedims[pagedimno].box.y0);
1700 Store_double_field (ret_v, 3, state.pagedims[pagedimno].box.y1);
1701 CAMLreturn (ret_v);
1704 CAMLprim value ml_init (value sock_v)
1706 #ifndef _WIN32
1707 int ret;
1708 #endif
1709 CAMLparam1 (sock_v);
1711 state.texcount = 256;
1712 state.sliceheight = 24;
1713 state.texform = GL_RGBA;
1714 state.texty = GL_UNSIGNED_BYTE;
1716 fz_accelerate ();
1717 state.texids = calloc (state.texcount * sizeof (*state.texids), 1);
1718 if (!state.texids) {
1719 err (1, "calloc texids " FMT_s,
1720 state.texcount * sizeof (*state.texids));
1723 state.texowners = calloc (state.texcount * sizeof (*state.texowners), 1);
1724 if (!state.texowners) {
1725 err (1, "calloc texowners " FMT_s,
1726 state.texcount * sizeof (*state.texowners));
1729 glGenTextures (state.texcount, state.texids);
1731 #ifdef _WIN32
1732 state.sock = Socket_val (sock_v);
1733 #else
1734 state.sock = Int_val (sock_v);
1735 #endif
1737 state.cache = fz_newglyphcache ();
1738 if (!state.cache) {
1739 errx (1, "fz_newglyphcache failed");
1742 #ifdef _WIN32
1743 InitializeCriticalSection (&critsec);
1744 state.thread = CreateThread (NULL, 0, mainloop, NULL, 0, NULL);
1745 if (state.thread == INVALID_HANDLE_VALUE) {
1746 errx (1, "CreateThread failed: %lx", GetLastError ());
1748 #else
1749 ret = pthread_create (&state.thread, NULL, mainloop, NULL);
1750 if (ret) {
1751 errx (1, "pthread_create: %s", strerror (errno));
1753 #endif
1755 CAMLreturn (Val_unit);