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[wine.git] / dlls / wineps.drv / ps.c
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1 /*
2 * PostScript output functions
4 * Copyright 1998 Huw D M Davies
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2.1 of the License, or (at your option) any later version.
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
21 #include <ctype.h>
22 #include <stdio.h>
23 #include <string.h>
24 #include <stdarg.h>
25 #include <locale.h>
27 #define NONAMELESSUNION
28 #define NONAMELESSSTRUCT
29 #include "windef.h"
30 #include "winbase.h"
31 #include "wingdi.h"
32 #include "psdrv.h"
33 #include "winspool.h"
34 #include "wine/debug.h"
36 WINE_DEFAULT_DEBUG_CHANNEL(psdrv);
38 static const char psheader[] = /* title llx lly urx ury */
39 "%%!PS-Adobe-3.0\n"
40 "%%%%Creator: Wine PostScript Driver\n"
41 "%%%%Title: %s\n"
42 "%%%%BoundingBox: %d %d %d %d\n"
43 "%%%%Pages: (atend)\n"
44 "%%%%EndComments\n";
46 static const char psbeginprolog[] =
47 "%%BeginProlog\n";
49 static const char psendprolog[] =
50 "%%EndProlog\n";
52 static const char psprolog[] =
53 "/tmpmtrx matrix def\n"
54 "/hatch {\n"
55 " pathbbox\n"
56 " /b exch def /r exch def /t exch def /l exch def /gap 32 def\n"
57 " l cvi gap idiv gap mul\n"
58 " gap\n"
59 " r cvi gap idiv gap mul\n"
60 " {t moveto 0 b t sub rlineto}\n"
61 " for\n"
62 "} bind def\n"
63 "/B {pop pop pop pop} def\n"
64 "/N {newpath} def\n"
65 "/havetype42gdir {version cvi 2015 ge} bind def\n";
67 static const char psbeginsetup[] =
68 "%%BeginSetup\n";
70 static const char psendsetup[] =
71 "%%EndSetup\n";
73 static const char psbeginfeature[] = /* feature, value */
74 "mark {\n"
75 "%%%%BeginFeature: %s %s\n";
77 static const char psendfeature[] =
78 "\n%%EndFeature\n"
79 "} stopped cleartomark\n";
81 static const char psnewpage[] = /* name, number, xres, yres, xtrans, ytrans, rot */
82 "%%%%Page: %s %d\n"
83 "%%%%BeginPageSetup\n"
84 "/pgsave save def\n"
85 "72 %d div 72 %d div scale\n"
86 "%d %d translate\n"
87 "1 -1 scale\n"
88 "%d rotate\n"
89 "%%%%EndPageSetup\n";
91 static const char psendpage[] =
92 "pgsave restore\n"
93 "showpage\n";
95 static const char psfooter[] = /* pages */
96 "%%%%Trailer\n"
97 "%%%%Pages: %d\n"
98 "%%%%EOF\n";
100 static const char psmoveto[] = /* x, y */
101 "%d %d moveto\n";
103 static const char pslineto[] = /* x, y */
104 "%d %d lineto\n";
106 static const char psstroke[] =
107 "stroke\n";
109 static const char psrectangle[] = /* x, y, width, height, -width */
110 "%d %d moveto\n"
111 "%d 0 rlineto\n"
112 "0 %d rlineto\n"
113 "%d 0 rlineto\n"
114 "closepath\n";
116 static const char psrrectangle[] = /* x, y, width, height, -width */
117 "%d %d rmoveto\n"
118 "%d 0 rlineto\n"
119 "0 %d rlineto\n"
120 "%d 0 rlineto\n"
121 "closepath\n";
123 static const char psglyphshow[] = /* glyph name */
124 "/%s glyphshow\n";
126 static const char pssetfont[] = /* fontname, xscale, yscale, ascent, escapement */
127 "/%s findfont\n"
128 "[%d 0 0 %d 0 0]\n"
129 "%d 10 div matrix rotate\n"
130 "matrix concatmatrix\n"
131 "makefont setfont\n";
133 static const char pssetlinewidth[] = /* width */
134 "%d setlinewidth\n";
136 static const char pssetdash[] = /* dash, offset */
137 "[%s] %d setdash\n";
139 static const char pssetgray[] = /* gray */
140 "%.2f setgray\n";
142 static const char pssetrgbcolor[] = /* r, g, b */
143 "%.2f %.2f %.2f setrgbcolor\n";
145 static const char psarc[] = /* x, y, w, h, ang1, ang2 */
146 "tmpmtrx currentmatrix pop\n"
147 "%d %d translate\n"
148 "%d %d scale\n"
149 "0 0 0.5 %.1f %.1f arc\n"
150 "tmpmtrx setmatrix\n";
152 static const char psgsave[] =
153 "gsave\n";
155 static const char psgrestore[] =
156 "grestore\n";
158 static const char psfill[] =
159 "fill\n";
161 static const char pseofill[] =
162 "eofill\n";
164 static const char psnewpath[] =
165 "newpath\n";
167 static const char psclosepath[] =
168 "closepath\n";
170 static const char psclip[] =
171 "clip\n";
173 static const char psinitclip[] =
174 "initclip\n";
176 static const char pseoclip[] =
177 "eoclip\n";
179 static const char psrectclip[] =
180 "%d %d %d %d rectclip\n";
182 static const char psrectclip2[] =
183 "%s rectclip\n";
185 static const char pshatch[] =
186 "hatch\n";
188 static const char psrotate[] = /* ang */
189 "%.1f rotate\n";
191 static const char psarrayget[] =
192 "%s %d get\n";
194 static const char psarrayput[] =
195 "%s %d %ld put\n";
197 static const char psarraydef[] =
198 "/%s %d array def\n";
200 static const char psenddocument[] =
201 "\n%%EndDocument\n";
203 DWORD PSDRV_WriteSpool(PSDRV_PDEVICE *physDev, LPCSTR lpData, DWORD cch)
205 int num, num_left = cch;
207 if(physDev->job.quiet) {
208 TRACE("ignoring output\n");
209 return 0;
212 if(physDev->job.in_passthrough) { /* Was in PASSTHROUGH mode */
213 WriteSpool16( physDev->job.hJob, (LPSTR)psenddocument, sizeof(psenddocument)-1 );
214 physDev->job.in_passthrough = physDev->job.had_passthrough_rect = FALSE;
217 if(physDev->job.OutOfPage) { /* Will get here after NEWFRAME Escape */
218 if( !PSDRV_StartPage(physDev) )
219 return 0;
222 do {
223 num = min(num_left, 0x8000);
224 if(WriteSpool16( physDev->job.hJob, (LPSTR)lpData, num ) != num)
225 return 0;
226 lpData += num;
227 num_left -= num;
228 } while(num_left);
230 return cch;
234 INT PSDRV_WriteFeature(HANDLE16 hJob, char *feature, char *value,
235 char *invocation)
238 char *buf = HeapAlloc( PSDRV_Heap, 0, sizeof(psbeginfeature) +
239 strlen(feature) + strlen(value));
242 sprintf(buf, psbeginfeature, feature, value);
243 WriteSpool16( hJob, buf, strlen(buf) );
245 WriteSpool16( hJob, invocation, strlen(invocation) );
247 WriteSpool16( hJob, (LPSTR)psendfeature, strlen(psendfeature) );
249 HeapFree( PSDRV_Heap, 0, buf );
250 return 1;
253 /********************************************************
254 * escape_title
256 * Helper for PSDRV_WriteHeader. Escape any non-printable characters
257 * as octal. If we've had to use an escape then surround the entire string
258 * in brackets. Truncate string to represent at most 0x80 characters.
261 static char *escape_title(LPCSTR str)
263 char *ret, *cp;
264 int i, extra = 0;
266 if(!str)
268 ret = HeapAlloc(GetProcessHeap(), 0, 1);
269 *ret = '\0';
270 return ret;
273 for(i = 0; i < 0x80 && str[i]; i++)
275 if(!isprint(str[i]))
276 extra += 3;
279 if(!extra)
281 ret = HeapAlloc(GetProcessHeap(), 0, i + 1);
282 memcpy(ret, str, i);
283 ret[i] = '\0';
284 return ret;
287 extra += 2; /* two for the brackets */
288 cp = ret = HeapAlloc(GetProcessHeap(), 0, i + extra + 1);
289 *cp++ = '(';
290 for(i = 0; i < 0x80 && str[i]; i++)
292 if(!isprint(str[i]))
294 BYTE b = (BYTE)str[i];
295 *cp++ = '\\';
296 *cp++ = ((b >> 6) & 0x7) + '0';
297 *cp++ = ((b >> 3) & 0x7) + '0';
298 *cp++ = ((b) & 0x7) + '0';
300 else
301 *cp++ = str[i];
303 *cp++ = ')';
304 *cp = '\0';
305 return ret;
309 INT PSDRV_WriteHeader( PSDRV_PDEVICE *physDev, LPCSTR title )
311 char *buf, *escaped_title;
312 INPUTSLOT *slot;
313 PAGESIZE *page;
314 DUPLEX *duplex;
315 int win_duplex;
316 int llx, lly, urx, ury;
318 TRACE("'%s'\n", debugstr_a(title));
320 escaped_title = escape_title(title);
321 buf = HeapAlloc( PSDRV_Heap, 0, sizeof(psheader) +
322 strlen(escaped_title) + 30 );
323 if(!buf) {
324 WARN("HeapAlloc failed\n");
325 return 0;
328 /* BBox co-ords are in default user co-ord system so urx < ury even in
329 landscape mode */
330 llx = physDev->ImageableArea.left * 72.0 / physDev->logPixelsX;
331 lly = physDev->ImageableArea.bottom * 72.0 / physDev->logPixelsY;
332 urx = physDev->ImageableArea.right * 72.0 / physDev->logPixelsX;
333 ury = physDev->ImageableArea.top * 72.0 / physDev->logPixelsY;
334 /* FIXME should do something better with BBox */
336 sprintf(buf, psheader, escaped_title, llx, lly, urx, ury);
338 HeapFree(GetProcessHeap(), 0, escaped_title);
339 if( WriteSpool16( physDev->job.hJob, buf, strlen(buf) ) !=
340 strlen(buf) ) {
341 WARN("WriteSpool error\n");
342 HeapFree( PSDRV_Heap, 0, buf );
343 return 0;
345 HeapFree( PSDRV_Heap, 0, buf );
347 WriteSpool16( physDev->job.hJob, (LPSTR)psbeginprolog, strlen(psbeginprolog) );
348 WriteSpool16( physDev->job.hJob, (LPSTR)psprolog, strlen(psprolog) );
349 WriteSpool16( physDev->job.hJob, (LPSTR)psendprolog, strlen(psendprolog) );
351 WriteSpool16( physDev->job.hJob, (LPSTR)psbeginsetup, strlen(psbeginsetup) );
353 if(physDev->Devmode->dmPublic.dmCopies > 1) {
354 char copies_buf[100];
355 sprintf(copies_buf, "mark {\n << /NumCopies %d >> setpagedevice\n} stopped cleartomark\n", physDev->Devmode->dmPublic.dmCopies);
356 WriteSpool16(physDev->job.hJob, copies_buf, strlen(copies_buf));
359 for(slot = physDev->pi->ppd->InputSlots; slot; slot = slot->next) {
360 if(slot->WinBin == physDev->Devmode->dmPublic.dmDefaultSource) {
361 if(slot->InvocationString) {
362 PSDRV_WriteFeature(physDev->job.hJob, "*InputSlot", slot->Name,
363 slot->InvocationString);
364 break;
369 for(page = physDev->pi->ppd->PageSizes; page; page = page->next) {
370 if(page->WinPage == physDev->Devmode->dmPublic.u1.s1.dmPaperSize) {
371 if(page->InvocationString) {
372 PSDRV_WriteFeature(physDev->job.hJob, "*PageSize", page->Name,
373 page->InvocationString);
374 break;
379 win_duplex = physDev->Devmode->dmPublic.dmFields & DM_DUPLEX ?
380 physDev->Devmode->dmPublic.dmDuplex : 0;
381 for(duplex = physDev->pi->ppd->Duplexes; duplex; duplex = duplex->next) {
382 if(duplex->WinDuplex == win_duplex) {
383 if(duplex->InvocationString) {
384 PSDRV_WriteFeature(physDev->job.hJob, "*Duplex", duplex->Name,
385 duplex->InvocationString);
386 break;
391 WriteSpool16( physDev->job.hJob, (LPSTR)psendsetup, strlen(psendsetup) );
394 return 1;
398 INT PSDRV_WriteFooter( PSDRV_PDEVICE *physDev )
400 char *buf;
402 buf = HeapAlloc( PSDRV_Heap, 0, sizeof(psfooter) + 100 );
403 if(!buf) {
404 WARN("HeapAlloc failed\n");
405 return 0;
408 sprintf(buf, psfooter, physDev->job.PageNo);
410 if( WriteSpool16( physDev->job.hJob, buf, strlen(buf) ) !=
411 strlen(buf) ) {
412 WARN("WriteSpool error\n");
413 HeapFree( PSDRV_Heap, 0, buf );
414 return 0;
416 HeapFree( PSDRV_Heap, 0, buf );
417 return 1;
422 INT PSDRV_WriteEndPage( PSDRV_PDEVICE *physDev )
424 if( WriteSpool16( physDev->job.hJob, (LPSTR)psendpage, sizeof(psendpage)-1 ) !=
425 sizeof(psendpage)-1 ) {
426 WARN("WriteSpool error\n");
427 return 0;
429 return 1;
435 INT PSDRV_WriteNewPage( PSDRV_PDEVICE *physDev )
437 char *buf;
438 char name[100];
439 signed int xtrans, ytrans, rotation;
441 sprintf(name, "%d", physDev->job.PageNo);
443 buf = HeapAlloc( PSDRV_Heap, 0, sizeof(psnewpage) + 200 );
444 if(!buf) {
445 WARN("HeapAlloc failed\n");
446 return 0;
449 if(physDev->Devmode->dmPublic.u1.s1.dmOrientation == DMORIENT_LANDSCAPE) {
450 if(physDev->pi->ppd->LandscapeOrientation == -90) {
451 xtrans = physDev->ImageableArea.right;
452 ytrans = physDev->ImageableArea.top;
453 rotation = 90;
454 } else {
455 xtrans = physDev->ImageableArea.left;
456 ytrans = physDev->ImageableArea.bottom;
457 rotation = -90;
459 } else {
460 xtrans = physDev->ImageableArea.left;
461 ytrans = physDev->ImageableArea.top;
462 rotation = 0;
465 sprintf(buf, psnewpage, name, physDev->job.PageNo,
466 physDev->logPixelsX, physDev->logPixelsY,
467 xtrans, ytrans, rotation);
469 if( WriteSpool16( physDev->job.hJob, buf, strlen(buf) ) !=
470 strlen(buf) ) {
471 WARN("WriteSpool error\n");
472 HeapFree( PSDRV_Heap, 0, buf );
473 return 0;
475 HeapFree( PSDRV_Heap, 0, buf );
476 return 1;
480 BOOL PSDRV_WriteMoveTo(PSDRV_PDEVICE *physDev, INT x, INT y)
482 char buf[100];
484 sprintf(buf, psmoveto, x, y);
485 return PSDRV_WriteSpool(physDev, buf, strlen(buf));
488 BOOL PSDRV_WriteLineTo(PSDRV_PDEVICE *physDev, INT x, INT y)
490 char buf[100];
492 sprintf(buf, pslineto, x, y);
493 return PSDRV_WriteSpool(physDev, buf, strlen(buf));
497 BOOL PSDRV_WriteStroke(PSDRV_PDEVICE *physDev)
499 return PSDRV_WriteSpool(physDev, psstroke, sizeof(psstroke)-1);
504 BOOL PSDRV_WriteRectangle(PSDRV_PDEVICE *physDev, INT x, INT y, INT width,
505 INT height)
507 char buf[100];
509 sprintf(buf, psrectangle, x, y, width, height, -width);
510 return PSDRV_WriteSpool(physDev, buf, strlen(buf));
513 BOOL PSDRV_WriteRRectangle(PSDRV_PDEVICE *physDev, INT x, INT y, INT width,
514 INT height)
516 char buf[100];
518 sprintf(buf, psrrectangle, x, y, width, height, -width);
519 return PSDRV_WriteSpool(physDev, buf, strlen(buf));
522 BOOL PSDRV_WriteArc(PSDRV_PDEVICE *physDev, INT x, INT y, INT w, INT h, double ang1,
523 double ang2)
525 char buf[256];
527 /* Make angles -ve and swap order because we're working with an upside
528 down y-axis */
529 push_lc_numeric("C");
530 sprintf(buf, psarc, x, y, w, h, -ang2, -ang1);
531 pop_lc_numeric();
532 return PSDRV_WriteSpool(physDev, buf, strlen(buf));
536 BOOL PSDRV_WriteSetFont(PSDRV_PDEVICE *physDev, const char *name, INT size, INT escapement)
538 char *buf;
540 buf = HeapAlloc( PSDRV_Heap, 0, sizeof(pssetfont) +
541 strlen(name) + 40);
543 if(!buf) {
544 WARN("HeapAlloc failed\n");
545 return FALSE;
548 sprintf(buf, pssetfont, name, size, -size, -escapement);
550 PSDRV_WriteSpool(physDev, buf, strlen(buf));
551 HeapFree(PSDRV_Heap, 0, buf);
552 return TRUE;
555 BOOL PSDRV_WriteSetColor(PSDRV_PDEVICE *physDev, PSCOLOR *color)
557 char buf[256];
559 PSDRV_CopyColor(&physDev->inkColor, color);
560 switch(color->type) {
561 case PSCOLOR_RGB:
562 push_lc_numeric("C");
563 sprintf(buf, pssetrgbcolor, color->value.rgb.r, color->value.rgb.g,
564 color->value.rgb.b);
565 pop_lc_numeric();
566 return PSDRV_WriteSpool(physDev, buf, strlen(buf));
568 case PSCOLOR_GRAY:
569 push_lc_numeric("C");
570 sprintf(buf, pssetgray, color->value.gray.i);
571 pop_lc_numeric();
572 return PSDRV_WriteSpool(physDev, buf, strlen(buf));
574 default:
575 ERR("Unkonwn colour type %d\n", color->type);
576 break;
579 return FALSE;
582 BOOL PSDRV_WriteSetPen(PSDRV_PDEVICE *physDev)
584 char buf[256];
586 sprintf(buf, pssetlinewidth, physDev->pen.width);
587 PSDRV_WriteSpool(physDev, buf, strlen(buf));
589 if(physDev->pen.dash) {
590 sprintf(buf, pssetdash, physDev->pen.dash, 0);
592 else
593 sprintf(buf, pssetdash, "", 0);
595 PSDRV_WriteSpool(physDev, buf, strlen(buf));
597 return TRUE;
600 BOOL PSDRV_WriteGlyphShow(PSDRV_PDEVICE *physDev, LPCSTR g_name)
602 char buf[128];
603 int l;
605 l = snprintf(buf, sizeof(buf), psglyphshow, g_name);
607 if (l < sizeof(psglyphshow) - 2 || l > sizeof(buf) - 1) {
608 WARN("Unusable glyph name '%s' - ignoring\n", g_name);
609 return FALSE;
612 PSDRV_WriteSpool(physDev, buf, l);
613 return TRUE;
616 BOOL PSDRV_WriteFill(PSDRV_PDEVICE *physDev)
618 return PSDRV_WriteSpool(physDev, psfill, sizeof(psfill)-1);
621 BOOL PSDRV_WriteEOFill(PSDRV_PDEVICE *physDev)
623 return PSDRV_WriteSpool(physDev, pseofill, sizeof(pseofill)-1);
626 BOOL PSDRV_WriteGSave(PSDRV_PDEVICE *physDev)
628 return PSDRV_WriteSpool(physDev, psgsave, sizeof(psgsave)-1);
631 BOOL PSDRV_WriteGRestore(PSDRV_PDEVICE *physDev)
633 return PSDRV_WriteSpool(physDev, psgrestore, sizeof(psgrestore)-1);
636 BOOL PSDRV_WriteNewPath(PSDRV_PDEVICE *physDev)
638 return PSDRV_WriteSpool(physDev, psnewpath, sizeof(psnewpath)-1);
641 BOOL PSDRV_WriteClosePath(PSDRV_PDEVICE *physDev)
643 return PSDRV_WriteSpool(physDev, psclosepath, sizeof(psclosepath)-1);
646 BOOL PSDRV_WriteClip(PSDRV_PDEVICE *physDev)
648 return PSDRV_WriteSpool(physDev, psclip, sizeof(psclip)-1);
651 BOOL PSDRV_WriteEOClip(PSDRV_PDEVICE *physDev)
653 return PSDRV_WriteSpool(physDev, pseoclip, sizeof(pseoclip)-1);
656 BOOL PSDRV_WriteInitClip(PSDRV_PDEVICE *physDev)
658 return PSDRV_WriteSpool(physDev, psinitclip, sizeof(psinitclip)-1);
661 BOOL PSDRV_WriteHatch(PSDRV_PDEVICE *physDev)
663 return PSDRV_WriteSpool(physDev, pshatch, sizeof(pshatch)-1);
666 BOOL PSDRV_WriteRotate(PSDRV_PDEVICE *physDev, float ang)
668 char buf[256];
670 push_lc_numeric("C");
671 sprintf(buf, psrotate, ang);
672 pop_lc_numeric();
673 return PSDRV_WriteSpool(physDev, buf, strlen(buf));
676 BOOL PSDRV_WriteIndexColorSpaceBegin(PSDRV_PDEVICE *physDev, int size)
678 char buf[256];
679 sprintf(buf, "[/Indexed /DeviceRGB %d\n<\n", size);
680 return PSDRV_WriteSpool(physDev, buf, strlen(buf));
683 BOOL PSDRV_WriteIndexColorSpaceEnd(PSDRV_PDEVICE *physDev)
685 static const char buf[] = ">\n] setcolorspace\n";
686 return PSDRV_WriteSpool(physDev, buf, sizeof(buf) - 1);
689 BOOL PSDRV_WriteRGB(PSDRV_PDEVICE *physDev, COLORREF *map, int number)
691 char *buf = HeapAlloc(PSDRV_Heap, 0, number * 7 + 1), *ptr;
692 int i;
694 ptr = buf;
695 for(i = 0; i < number; i++) {
696 sprintf(ptr, "%02x%02x%02x%c", (int)GetRValue(map[i]),
697 (int)GetGValue(map[i]), (int)GetBValue(map[i]),
698 ((i & 0x7) == 0x7) || (i == number - 1) ? '\n' : ' ');
699 ptr += 7;
701 PSDRV_WriteSpool(physDev, buf, number * 7);
702 HeapFree(PSDRV_Heap, 0, buf);
703 return TRUE;
706 static BOOL PSDRV_WriteImageDict(PSDRV_PDEVICE *physDev, WORD depth,
707 INT widthSrc, INT heightSrc, char *bits)
709 static const char start[] = "<<\n"
710 " /ImageType 1\n /Width %d\n /Height %d\n /BitsPerComponent %d\n"
711 " /ImageMatrix [%d 0 0 %d 0 %d]\n";
713 static const char decode1[] = " /Decode [0 %d]\n";
714 static const char decode3[] = " /Decode [0 1 0 1 0 1]\n";
716 static const char end[] = " /DataSource currentfile /ASCII85Decode filter /RunLengthDecode filter\n>>\n";
717 static const char endbits[] = " /DataSource <%s>\n>>\n";
719 char *buf = HeapAlloc(PSDRV_Heap, 0, 1000);
721 sprintf(buf, start, widthSrc, heightSrc,
722 (depth < 8) ? depth : 8, widthSrc, -heightSrc, heightSrc);
724 PSDRV_WriteSpool(physDev, buf, strlen(buf));
726 switch(depth) {
727 case 8:
728 sprintf(buf, decode1, 255);
729 break;
731 case 4:
732 sprintf(buf, decode1, 15);
733 break;
735 case 1:
736 sprintf(buf, decode1, 1);
737 break;
739 default:
740 strcpy(buf, decode3);
741 break;
744 PSDRV_WriteSpool(physDev, buf, strlen(buf));
746 if(!bits) {
747 PSDRV_WriteSpool(physDev, end, sizeof(end) - 1);
748 } else {
749 sprintf(buf, endbits, bits);
750 PSDRV_WriteSpool(physDev, buf, strlen(buf));
753 HeapFree(PSDRV_Heap, 0, buf);
754 return TRUE;
757 BOOL PSDRV_WriteImage(PSDRV_PDEVICE *physDev, WORD depth, INT xDst, INT yDst,
758 INT widthDst, INT heightDst, INT widthSrc,
759 INT heightSrc, BOOL mask)
761 static const char start[] = "%d %d translate\n%d %d scale\n";
762 static const char image[] = "image\n";
763 static const char imagemask[] = "imagemask\n";
764 char buf[100];
766 sprintf(buf, start, xDst, yDst, widthDst, heightDst);
767 PSDRV_WriteSpool(physDev, buf, strlen(buf));
768 PSDRV_WriteImageDict(physDev, depth, widthSrc, heightSrc, NULL);
769 if(mask)
770 PSDRV_WriteSpool(physDev, imagemask, sizeof(imagemask) - 1);
771 else
772 PSDRV_WriteSpool(physDev, image, sizeof(image) - 1);
773 return TRUE;
777 BOOL PSDRV_WriteBytes(PSDRV_PDEVICE *physDev, const BYTE *bytes, DWORD number)
779 char *buf = HeapAlloc(PSDRV_Heap, 0, number * 3 + 1);
780 char *ptr;
781 unsigned int i;
783 ptr = buf;
785 for(i = 0; i < number; i++) {
786 sprintf(ptr, "%02x", bytes[i]);
787 ptr += 2;
788 if(((i & 0xf) == 0xf) || (i == number - 1)) {
789 strcpy(ptr, "\n");
790 ptr++;
793 PSDRV_WriteSpool(physDev, buf, ptr - buf);
794 HeapFree(PSDRV_Heap, 0, buf);
795 return TRUE;
798 BOOL PSDRV_WriteData(PSDRV_PDEVICE *physDev, const BYTE *data, DWORD number)
800 int num, num_left = number;
802 do {
803 num = min(num_left, 60);
804 PSDRV_WriteSpool(physDev, (LPCSTR)data, num);
805 PSDRV_WriteSpool(physDev, "\n", 1);
806 data += num;
807 num_left -= num;
808 } while(num_left);
810 return TRUE;
813 BOOL PSDRV_WriteArrayGet(PSDRV_PDEVICE *physDev, CHAR *pszArrayName, INT nIndex)
815 char buf[100];
817 sprintf(buf, psarrayget, pszArrayName, nIndex);
818 return PSDRV_WriteSpool(physDev, buf, strlen(buf));
821 BOOL PSDRV_WriteArrayPut(PSDRV_PDEVICE *physDev, CHAR *pszArrayName, INT nIndex, LONG lObject)
823 char buf[100];
825 sprintf(buf, psarrayput, pszArrayName, nIndex, lObject);
826 return PSDRV_WriteSpool(physDev, buf, strlen(buf));
829 BOOL PSDRV_WriteArrayDef(PSDRV_PDEVICE *physDev, CHAR *pszArrayName, INT nSize)
831 char buf[100];
833 sprintf(buf, psarraydef, pszArrayName, nSize);
834 return PSDRV_WriteSpool(physDev, buf, strlen(buf));
837 BOOL PSDRV_WriteRectClip(PSDRV_PDEVICE *physDev, INT x, INT y, INT w, INT h)
839 char buf[100];
841 sprintf(buf, psrectclip, x, y, w, h);
842 return PSDRV_WriteSpool(physDev, buf, strlen(buf));
845 BOOL PSDRV_WriteRectClip2(PSDRV_PDEVICE *physDev, CHAR *pszArrayName)
847 char buf[100];
849 sprintf(buf, psrectclip2, pszArrayName);
850 return PSDRV_WriteSpool(physDev, buf, strlen(buf));
853 BOOL PSDRV_WritePatternDict(PSDRV_PDEVICE *physDev, BITMAP *bm, BYTE *bits)
855 static const char mypat[] = "/mypat\n";
856 static const char do_pattern[] = "<<\n /PaintType 1\n /PatternType 1\n /TilingType 1\n "
857 "/BBox [0 0 %d %d]\n /XStep %d\n /YStep %d\n /PaintProc {\n begin\n 0 0 translate\n"
858 " %d %d scale\n mypat image\n end\n }\n>>\n matrix makepattern setpattern\n";
860 char *buf, *ptr;
861 INT w, h, x, y, w_mult, h_mult;
862 COLORREF map[2];
864 w = bm->bmWidth & ~0x7;
865 h = bm->bmHeight & ~0x7;
867 buf = HeapAlloc(PSDRV_Heap, 0, sizeof(do_pattern) + 100);
868 ptr = buf;
869 for(y = h-1; y >= 0; y--) {
870 for(x = 0; x < w/8; x++) {
871 sprintf(ptr, "%02x", *(bits + x/8 + y * bm->bmWidthBytes));
872 ptr += 2;
875 PSDRV_WriteSpool(physDev, mypat, sizeof(mypat) - 1);
876 PSDRV_WriteImageDict(physDev, 1, 8, 8, buf);
877 PSDRV_WriteSpool(physDev, "def\n", 4);
879 PSDRV_WriteIndexColorSpaceBegin(physDev, 1);
880 map[0] = GetTextColor( physDev->hdc );
881 map[1] = GetBkColor( physDev->hdc );
882 PSDRV_WriteRGB(physDev, map, 2);
883 PSDRV_WriteIndexColorSpaceEnd(physDev);
885 /* Windows seems to scale patterns so that a one pixel corresponds to 1/300" */
886 w_mult = (physDev->logPixelsX + 150) / 300;
887 h_mult = (physDev->logPixelsY + 150) / 300;
888 sprintf(buf, do_pattern, w * w_mult, h * h_mult, w * w_mult, h * h_mult, w * w_mult, h * h_mult);
889 PSDRV_WriteSpool(physDev, buf, strlen(buf));
891 HeapFree(PSDRV_Heap, 0, buf);
892 return TRUE;
895 BOOL PSDRV_WriteDIBPatternDict(PSDRV_PDEVICE *physDev, BITMAPINFO *bmi, UINT usage)
897 static const char mypat[] = "/mypat\n";
898 static const char do_pattern[] = "<<\n /PaintType 1\n /PatternType 1\n /TilingType 1\n "
899 "/BBox [0 0 %d %d]\n /XStep %d\n /YStep %d\n /PaintProc {\n begin\n 0 0 translate\n"
900 " %d %d scale\n mypat image\n end\n }\n>>\n matrix makepattern setpattern\n";
901 char *buf, *ptr;
902 BYTE *bits;
903 INT w, h, x, y, colours, w_mult, h_mult;
904 COLORREF map[2];
906 if(bmi->bmiHeader.biBitCount != 1) {
907 FIXME("dib depth %d not supported\n", bmi->bmiHeader.biBitCount);
908 return FALSE;
911 bits = (LPBYTE)bmi + bmi->bmiHeader.biSize;
912 colours = bmi->bmiHeader.biClrUsed;
913 if (colours > 256) colours = 256;
914 if(!colours && bmi->bmiHeader.biBitCount <= 8)
915 colours = 1 << bmi->bmiHeader.biBitCount;
916 bits += colours * ((usage == DIB_RGB_COLORS) ?
917 sizeof(RGBQUAD) : sizeof(WORD));
919 w = bmi->bmiHeader.biWidth & ~0x7;
920 h = bmi->bmiHeader.biHeight & ~0x7;
922 buf = HeapAlloc(PSDRV_Heap, 0, sizeof(do_pattern) + 100);
923 ptr = buf;
924 for(y = h-1; y >= 0; y--) {
925 for(x = 0; x < w/8; x++) {
926 sprintf(ptr, "%02x", *(bits + x/8 + y *
927 (bmi->bmiHeader.biWidth + 31) / 32 * 4));
928 ptr += 2;
931 PSDRV_WriteSpool(physDev, mypat, sizeof(mypat) - 1);
932 PSDRV_WriteImageDict(physDev, 1, 8, 8, buf);
933 PSDRV_WriteSpool(physDev, "def\n", 4);
935 PSDRV_WriteIndexColorSpaceBegin(physDev, 1);
936 map[0] = GetTextColor( physDev->hdc );
937 map[1] = GetBkColor( physDev->hdc );
938 PSDRV_WriteRGB(physDev, map, 2);
939 PSDRV_WriteIndexColorSpaceEnd(physDev);
941 /* Windows seems to scale patterns so that a one pixel corresponds to 1/300" */
942 w_mult = (physDev->logPixelsX + 150) / 300;
943 h_mult = (physDev->logPixelsY + 150) / 300;
944 sprintf(buf, do_pattern, w * w_mult, h * h_mult, w * w_mult, h * h_mult, w * w_mult, h * h_mult);
945 PSDRV_WriteSpool(physDev, buf, strlen(buf));
946 HeapFree(PSDRV_Heap, 0, buf);
947 return TRUE;