- include/crt/math.h: float type math functions are not c++ specific, they are especi...
[reactos.git] / reactos / dll / win32 / gdiplus / graphics.c
1 /*
2 * Copyright (C) 2007 Google (Evan Stade)
3 *
4 * This library is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU Lesser General Public
6 * License as published by the Free Software Foundation; either
7 * version 2.1 of the License, or (at your option) any later version.
8 *
9 * This library is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
12 * Lesser General Public License for more details.
13 *
14 * You should have received a copy of the GNU Lesser General Public
15 * License along with this library; if not, write to the Free Software
16 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
17 */
18
19 #include <stdarg.h>
20 #include <math.h>
21 #include <limits.h>
22
23 #include "windef.h"
24 #include "winbase.h"
25 #include "winuser.h"
26 #include "wingdi.h"
27 #include "wine/unicode.h"
28
29 #define COBJMACROS
30 #include "objbase.h"
31 #include "ocidl.h"
32 #include "olectl.h"
33 #include "ole2.h"
34
35 #include "winreg.h"
36 #include "shlwapi.h"
37
38 #include "gdiplus.h"
39 #include "gdiplus_private.h"
40 #include "wine/debug.h"
41
42 WINE_DEFAULT_DEBUG_CHANNEL(gdiplus);
43
44 /* looks-right constants */
45 #define ANCHOR_WIDTH (2.0)
46 #define MAX_ITERS (50)
47
48 /* Converts angle (in degrees) to x/y coordinates */
49 static void deg2xy(REAL angle, REAL x_0, REAL y_0, REAL *x, REAL *y)
50 {
51 REAL radAngle, hypotenuse;
52
53 radAngle = deg2rad(angle);
54 hypotenuse = 50.0; /* arbitrary */
55
56 *x = x_0 + cos(radAngle) * hypotenuse;
57 *y = y_0 + sin(radAngle) * hypotenuse;
58 }
59
60 /* Converts from gdiplus path point type to gdi path point type. */
61 static BYTE convert_path_point_type(BYTE type)
62 {
63 BYTE ret;
64
65 switch(type & PathPointTypePathTypeMask){
66 case PathPointTypeBezier:
67 ret = PT_BEZIERTO;
68 break;
69 case PathPointTypeLine:
70 ret = PT_LINETO;
71 break;
72 case PathPointTypeStart:
73 ret = PT_MOVETO;
74 break;
75 default:
76 ERR("Bad point type\n");
77 return 0;
78 }
79
80 if(type & PathPointTypeCloseSubpath)
81 ret |= PT_CLOSEFIGURE;
82
83 return ret;
84 }
85
86 static INT prepare_dc(GpGraphics *graphics, GpPen *pen)
87 {
88 HPEN gdipen;
89 REAL width;
90 INT save_state = SaveDC(graphics->hdc), i, numdashes;
91 GpPointF pt[2];
92 DWORD dash_array[MAX_DASHLEN];
93
94 EndPath(graphics->hdc);
95
96 if(pen->unit == UnitPixel){
97 width = pen->width;
98 }
99 else{
100 /* Get an estimate for the amount the pen width is affected by the world
101 * transform. (This is similar to what some of the wine drivers do.) */
102 pt[0].X = 0.0;
103 pt[0].Y = 0.0;
104 pt[1].X = 1.0;
105 pt[1].Y = 1.0;
106 GdipTransformMatrixPoints(graphics->worldtrans, pt, 2);
107 width = sqrt((pt[1].X - pt[0].X) * (pt[1].X - pt[0].X) +
108 (pt[1].Y - pt[0].Y) * (pt[1].Y - pt[0].Y)) / sqrt(2.0);
109
110 width *= pen->width * convert_unit(graphics->hdc,
111 pen->unit == UnitWorld ? graphics->unit : pen->unit);
112 }
113
114 if(pen->dash == DashStyleCustom){
115 numdashes = min(pen->numdashes, MAX_DASHLEN);
116
117 TRACE("dashes are: ");
118 for(i = 0; i < numdashes; i++){
119 dash_array[i] = roundr(width * pen->dashes[i]);
120 TRACE("%d, ", dash_array[i]);
121 }
122 TRACE("\n and the pen style is %x\n", pen->style);
123
124 gdipen = ExtCreatePen(pen->style, roundr(width), &pen->brush->lb,
125 numdashes, dash_array);
126 }
127 else
128 gdipen = ExtCreatePen(pen->style, roundr(width), &pen->brush->lb, 0, NULL);
129
130 SelectObject(graphics->hdc, gdipen);
131
132 return save_state;
133 }
134
135 static void restore_dc(GpGraphics *graphics, INT state)
136 {
137 DeleteObject(SelectObject(graphics->hdc, GetStockObject(NULL_PEN)));
138 RestoreDC(graphics->hdc, state);
139 }
140
141 /* This helper applies all the changes that the points listed in ptf need in
142 * order to be drawn on the device context. In the end, this should include at
143 * least:
144 * -scaling by page unit
145 * -applying world transformation
146 * -converting from float to int
147 * Native gdiplus uses gdi32 to do all this (via SetMapMode, SetViewportExtEx,
148 * SetWindowExtEx, SetWorldTransform, etc.) but we cannot because we are using
149 * gdi to draw, and these functions would irreparably mess with line widths.
150 */
151 static void transform_and_round_points(GpGraphics *graphics, POINT *pti,
152 GpPointF *ptf, INT count)
153 {
154 REAL unitscale;
155 GpMatrix *matrix;
156 int i;
157
158 unitscale = convert_unit(graphics->hdc, graphics->unit);
159
160 /* apply page scale */
161 if(graphics->unit != UnitDisplay)
162 unitscale *= graphics->scale;
163
164 GdipCloneMatrix(graphics->worldtrans, &matrix);
165 GdipScaleMatrix(matrix, unitscale, unitscale, MatrixOrderAppend);
166 GdipTransformMatrixPoints(matrix, ptf, count);
167 GdipDeleteMatrix(matrix);
168
169 for(i = 0; i < count; i++){
170 pti[i].x = roundr(ptf[i].X);
171 pti[i].y = roundr(ptf[i].Y);
172 }
173 }
174
175 static ARGB blend_colors(ARGB start, ARGB end, int current, int total)
176 {
177 ARGB result=0;
178 ARGB i;
179 for (i=0xff; i<=0xff0000; i = i << 8)
180 result |= (((start&i)*(total - current)+(end&i)*(current))/total)&i;
181 return result;
182 }
183
184 static void brush_fill_path(GpGraphics *graphics, GpBrush* brush)
185 {
186 switch (brush->bt)
187 {
188 case BrushTypeLinearGradient:
189 {
190 GpLineGradient *line = (GpLineGradient*)brush;
191 RECT rc;
192 int num_steps = 255;
193
194 SelectClipPath(graphics->hdc, RGN_AND);
195 if (GetClipBox(graphics->hdc, &rc) != NULLREGION)
196 {
197 GpPointF endpointsf[2];
198 POINT endpointsi[2];
199 POINT poly[4];
200
201 SelectObject(graphics->hdc, GetStockObject(NULL_PEN));
202
203 /* fill with starting color */
204 FillRect(graphics->hdc, &rc, brush->gdibrush);
205
206 endpointsf[0] = line->startpoint;
207 endpointsf[1] = line->endpoint;
208 transform_and_round_points(graphics, endpointsi, endpointsf, 2);
209
210 if (abs(endpointsi[0].x-endpointsi[1].x) > abs(endpointsi[0].y-endpointsi[1].y))
211 {
212 /* vertical-ish gradient */
213 int endborderx; /* vertical rectangle boundary near endpoint */
214 int startx, endx; /* x co-ordinates of endpoints shifted to intersect the top of the visible rectangle */
215 int startbottomx, endbottomx; /* x co-ordinate of endpoints shifted to intersect the bottom of the visible rectangle */
216 int width;
217 COLORREF col;
218 HBRUSH hbrush, hprevbrush;
219 int i;
220
221 if (endpointsi[1].x > endpointsi[0].x)
222 endborderx = rc.right;
223 else
224 endborderx = rc.left;
225
226 startx = roundr((rc.top - endpointsf[0].Y) * (endpointsf[1].Y - endpointsf[0].Y) / (endpointsf[0].X - endpointsf[1].X) + endpointsf[0].X);
227 endx = roundr((rc.top - endpointsf[1].Y) * (endpointsf[1].Y - endpointsf[0].Y) / (endpointsf[0].X - endpointsf[1].X) + endpointsf[1].X);
228 width = endx - startx;
229 startbottomx = roundr((rc.bottom - endpointsf[0].Y) * (endpointsf[1].Y - endpointsf[0].Y) / (endpointsf[0].X - endpointsf[1].X) + endpointsf[0].X);
230 endbottomx = startbottomx+width;
231
232 if (num_steps > abs(width)) num_steps = abs(width);
233
234 poly[0].x = endborderx;
235 poly[0].y = rc.bottom;
236 poly[1].x = endborderx;
237 poly[1].y = rc.top;
238 poly[2].y = rc.top;
239 poly[3].y = rc.bottom;
240
241 for (i=1; i<num_steps; i++)
242 {
243 ARGB argb = blend_colors(line->startcolor, line->endcolor, i, num_steps);
244 int ofs = width * i / num_steps;
245 col = ARGB2COLORREF(argb);
246 hbrush = CreateSolidBrush(col);
247 hprevbrush = SelectObject(graphics->hdc, hbrush);
248 poly[2].x = startx + ofs;
249 poly[3].x = startbottomx + ofs;
250 Polygon(graphics->hdc, poly, 4);
251 SelectObject(graphics->hdc, hprevbrush);
252 DeleteObject(hbrush);
253 }
254
255 poly[2].x = endx;
256 poly[3].x = endbottomx;
257
258 /* draw the ending color */
259 col = ARGB2COLORREF(line->endcolor);
260 hbrush = CreateSolidBrush(col);
261 hprevbrush = SelectObject(graphics->hdc, hbrush);
262 Polygon(graphics->hdc, poly, 4);
263 SelectObject(graphics->hdc, hprevbrush);
264 DeleteObject(hbrush);
265 }
266 else if (endpointsi[0].y != endpointsi[1].y)
267 {
268 /* horizontal-ish gradient */
269 int endbordery; /* horizontal rectangle boundary near endpoint */
270 int starty, endy; /* y co-ordinates of endpoints shifted to intersect the left of the visible rectangle */
271 int startrighty, endrighty; /* y co-ordinate of endpoints shifted to intersect the right of the visible rectangle */
272 int height;
273 COLORREF col;
274 HBRUSH hbrush, hprevbrush;
275 int i;
276
277 if (endpointsi[1].y > endpointsi[0].y)
278 endbordery = rc.bottom;
279 else
280 endbordery = rc.top;
281
282 starty = roundr((rc.left - endpointsf[0].X) * (endpointsf[0].X - endpointsf[1].X) / (endpointsf[1].Y - endpointsf[0].Y) + endpointsf[0].Y);
283 endy = roundr((rc.left - endpointsf[1].X) * (endpointsf[0].X - endpointsf[1].X) / (endpointsf[1].Y - endpointsf[0].Y) + endpointsf[1].Y);
284 height = endy - starty;
285 startrighty = roundr((rc.right - endpointsf[0].X) * (endpointsf[0].X - endpointsf[1].X) / (endpointsf[1].Y - endpointsf[0].Y) + endpointsf[0].Y);
286 endrighty = startrighty+height;
287
288 if (num_steps > abs(height)) num_steps = abs(height);
289
290 poly[0].x = rc.right;
291 poly[0].y = endbordery;
292 poly[1].x = rc.left;
293 poly[1].y = endbordery;
294 poly[2].x = rc.left;
295 poly[3].x = rc.right;
296
297 for (i=1; i<num_steps; i++)
298 {
299 ARGB argb = blend_colors(line->startcolor, line->endcolor, i, num_steps);
300 int ofs = height * i / num_steps;
301 col = ARGB2COLORREF(argb);
302 hbrush = CreateSolidBrush(col);
303 hprevbrush = SelectObject(graphics->hdc, hbrush);
304 poly[2].y = starty + ofs;
305 poly[3].y = startrighty + ofs;
306 Polygon(graphics->hdc, poly, 4);
307 SelectObject(graphics->hdc, hprevbrush);
308 DeleteObject(hbrush);
309 }
310
311 poly[2].y = endy;
312 poly[3].y = endrighty;
313
314 /* draw the ending color */
315 col = ARGB2COLORREF(line->endcolor);
316 hbrush = CreateSolidBrush(col);
317 hprevbrush = SelectObject(graphics->hdc, hbrush);
318 Polygon(graphics->hdc, poly, 4);
319 SelectObject(graphics->hdc, hprevbrush);
320 DeleteObject(hbrush);
321 }
322 /* else startpoint == endpoint */
323 }
324 break;
325 }
326 default:
327 SelectObject(graphics->hdc, brush->gdibrush);
328 FillPath(graphics->hdc);
329 break;
330 }
331 }
332
333 /* GdipDrawPie/GdipFillPie helper function */
334 static void draw_pie(GpGraphics *graphics, REAL x, REAL y, REAL width,
335 REAL height, REAL startAngle, REAL sweepAngle)
336 {
337 GpPointF ptf[4];
338 POINT pti[4];
339
340 ptf[0].X = x;
341 ptf[0].Y = y;
342 ptf[1].X = x + width;
343 ptf[1].Y = y + height;
344
345 deg2xy(startAngle+sweepAngle, x + width / 2.0, y + width / 2.0, &ptf[2].X, &ptf[2].Y);
346 deg2xy(startAngle, x + width / 2.0, y + width / 2.0, &ptf[3].X, &ptf[3].Y);
347
348 transform_and_round_points(graphics, pti, ptf, 4);
349
350 Pie(graphics->hdc, pti[0].x, pti[0].y, pti[1].x, pti[1].y, pti[2].x,
351 pti[2].y, pti[3].x, pti[3].y);
352 }
353
354 /* Draws the linecap the specified color and size on the hdc. The linecap is in
355 * direction of the line from x1, y1 to x2, y2 and is anchored on x2, y2. Probably
356 * should not be called on an hdc that has a path you care about. */
357 static void draw_cap(GpGraphics *graphics, COLORREF color, GpLineCap cap, REAL size,
358 const GpCustomLineCap *custom, REAL x1, REAL y1, REAL x2, REAL y2)
359 {
360 HGDIOBJ oldbrush = NULL, oldpen = NULL;
361 GpMatrix *matrix = NULL;
362 HBRUSH brush = NULL;
363 HPEN pen = NULL;
364 PointF ptf[4], *custptf = NULL;
365 POINT pt[4], *custpt = NULL;
366 BYTE *tp = NULL;
367 REAL theta, dsmall, dbig, dx, dy = 0.0;
368 INT i, count;
369 LOGBRUSH lb;
370 BOOL customstroke;
371
372 if((x1 == x2) && (y1 == y2))
373 return;
374
375 theta = gdiplus_atan2(y2 - y1, x2 - x1);
376
377 customstroke = (cap == LineCapCustom) && custom && (!custom->fill);
378 if(!customstroke){
379 brush = CreateSolidBrush(color);
380 lb.lbStyle = BS_SOLID;
381 lb.lbColor = color;
382 lb.lbHatch = 0;
383 pen = ExtCreatePen(PS_GEOMETRIC | PS_SOLID | PS_ENDCAP_FLAT |
384 PS_JOIN_MITER, 1, &lb, 0,
385 NULL);
386 oldbrush = SelectObject(graphics->hdc, brush);
387 oldpen = SelectObject(graphics->hdc, pen);
388 }
389
390 switch(cap){
391 case LineCapFlat:
392 break;
393 case LineCapSquare:
394 case LineCapSquareAnchor:
395 case LineCapDiamondAnchor:
396 size = size * (cap & LineCapNoAnchor ? ANCHOR_WIDTH : 1.0) / 2.0;
397 if(cap == LineCapDiamondAnchor){
398 dsmall = cos(theta + M_PI_2) * size;
399 dbig = sin(theta + M_PI_2) * size;
400 }
401 else{
402 dsmall = cos(theta + M_PI_4) * size;
403 dbig = sin(theta + M_PI_4) * size;
404 }
405
406 ptf[0].X = x2 - dsmall;
407 ptf[1].X = x2 + dbig;
408
409 ptf[0].Y = y2 - dbig;
410 ptf[3].Y = y2 + dsmall;
411
412 ptf[1].Y = y2 - dsmall;
413 ptf[2].Y = y2 + dbig;
414
415 ptf[3].X = x2 - dbig;
416 ptf[2].X = x2 + dsmall;
417
418 transform_and_round_points(graphics, pt, ptf, 4);
419 Polygon(graphics->hdc, pt, 4);
420
421 break;
422 case LineCapArrowAnchor:
423 size = size * 4.0 / sqrt(3.0);
424
425 dx = cos(M_PI / 6.0 + theta) * size;
426 dy = sin(M_PI / 6.0 + theta) * size;
427
428 ptf[0].X = x2 - dx;
429 ptf[0].Y = y2 - dy;
430
431 dx = cos(- M_PI / 6.0 + theta) * size;
432 dy = sin(- M_PI / 6.0 + theta) * size;
433
434 ptf[1].X = x2 - dx;
435 ptf[1].Y = y2 - dy;
436
437 ptf[2].X = x2;
438 ptf[2].Y = y2;
439
440 transform_and_round_points(graphics, pt, ptf, 3);
441 Polygon(graphics->hdc, pt, 3);
442
443 break;
444 case LineCapRoundAnchor:
445 dx = dy = ANCHOR_WIDTH * size / 2.0;
446
447 ptf[0].X = x2 - dx;
448 ptf[0].Y = y2 - dy;
449 ptf[1].X = x2 + dx;
450 ptf[1].Y = y2 + dy;
451
452 transform_and_round_points(graphics, pt, ptf, 2);
453 Ellipse(graphics->hdc, pt[0].x, pt[0].y, pt[1].x, pt[1].y);
454
455 break;
456 case LineCapTriangle:
457 size = size / 2.0;
458 dx = cos(M_PI_2 + theta) * size;
459 dy = sin(M_PI_2 + theta) * size;
460
461 ptf[0].X = x2 - dx;
462 ptf[0].Y = y2 - dy;
463 ptf[1].X = x2 + dx;
464 ptf[1].Y = y2 + dy;
465
466 dx = cos(theta) * size;
467 dy = sin(theta) * size;
468
469 ptf[2].X = x2 + dx;
470 ptf[2].Y = y2 + dy;
471
472 transform_and_round_points(graphics, pt, ptf, 3);
473 Polygon(graphics->hdc, pt, 3);
474
475 break;
476 case LineCapRound:
477 dx = dy = size / 2.0;
478
479 ptf[0].X = x2 - dx;
480 ptf[0].Y = y2 - dy;
481 ptf[1].X = x2 + dx;
482 ptf[1].Y = y2 + dy;
483
484 dx = -cos(M_PI_2 + theta) * size;
485 dy = -sin(M_PI_2 + theta) * size;
486
487 ptf[2].X = x2 - dx;
488 ptf[2].Y = y2 - dy;
489 ptf[3].X = x2 + dx;
490 ptf[3].Y = y2 + dy;
491
492 transform_and_round_points(graphics, pt, ptf, 4);
493 Pie(graphics->hdc, pt[0].x, pt[0].y, pt[1].x, pt[1].y, pt[2].x,
494 pt[2].y, pt[3].x, pt[3].y);
495
496 break;
497 case LineCapCustom:
498 if(!custom)
499 break;
500
501 count = custom->pathdata.Count;
502 custptf = GdipAlloc(count * sizeof(PointF));
503 custpt = GdipAlloc(count * sizeof(POINT));
504 tp = GdipAlloc(count);
505
506 if(!custptf || !custpt || !tp || (GdipCreateMatrix(&matrix) != Ok))
507 goto custend;
508
509 memcpy(custptf, custom->pathdata.Points, count * sizeof(PointF));
510
511 GdipScaleMatrix(matrix, size, size, MatrixOrderAppend);
512 GdipRotateMatrix(matrix, (180.0 / M_PI) * (theta - M_PI_2),
513 MatrixOrderAppend);
514 GdipTranslateMatrix(matrix, x2, y2, MatrixOrderAppend);
515 GdipTransformMatrixPoints(matrix, custptf, count);
516
517 transform_and_round_points(graphics, custpt, custptf, count);
518
519 for(i = 0; i < count; i++)
520 tp[i] = convert_path_point_type(custom->pathdata.Types[i]);
521
522 if(custom->fill){
523 BeginPath(graphics->hdc);
524 PolyDraw(graphics->hdc, custpt, tp, count);
525 EndPath(graphics->hdc);
526 StrokeAndFillPath(graphics->hdc);
527 }
528 else
529 PolyDraw(graphics->hdc, custpt, tp, count);
530
531 custend:
532 GdipFree(custptf);
533 GdipFree(custpt);
534 GdipFree(tp);
535 GdipDeleteMatrix(matrix);
536 break;
537 default:
538 break;
539 }
540
541 if(!customstroke){
542 SelectObject(graphics->hdc, oldbrush);
543 SelectObject(graphics->hdc, oldpen);
544 DeleteObject(brush);
545 DeleteObject(pen);
546 }
547 }
548
549 /* Shortens the line by the given percent by changing x2, y2.
550 * If percent is > 1.0 then the line will change direction.
551 * If percent is negative it can lengthen the line. */
552 static void shorten_line_percent(REAL x1, REAL y1, REAL *x2, REAL *y2, REAL percent)
553 {
554 REAL dist, theta, dx, dy;
555
556 if((y1 == *y2) && (x1 == *x2))
557 return;
558
559 dist = sqrt((*x2 - x1) * (*x2 - x1) + (*y2 - y1) * (*y2 - y1)) * -percent;
560 theta = gdiplus_atan2((*y2 - y1), (*x2 - x1));
561 dx = cos(theta) * dist;
562 dy = sin(theta) * dist;
563
564 *x2 = *x2 + dx;
565 *y2 = *y2 + dy;
566 }
567
568 /* Shortens the line by the given amount by changing x2, y2.
569 * If the amount is greater than the distance, the line will become length 0.
570 * If the amount is negative, it can lengthen the line. */
571 static void shorten_line_amt(REAL x1, REAL y1, REAL *x2, REAL *y2, REAL amt)
572 {
573 REAL dx, dy, percent;
574
575 dx = *x2 - x1;
576 dy = *y2 - y1;
577 if(dx == 0 && dy == 0)
578 return;
579
580 percent = amt / sqrt(dx * dx + dy * dy);
581 if(percent >= 1.0){
582 *x2 = x1;
583 *y2 = y1;
584 return;
585 }
586
587 shorten_line_percent(x1, y1, x2, y2, percent);
588 }
589
590 /* Draws lines between the given points, and if caps is true then draws an endcap
591 * at the end of the last line. */
592 static GpStatus draw_polyline(GpGraphics *graphics, GpPen *pen,
593 GDIPCONST GpPointF * pt, INT count, BOOL caps)
594 {
595 POINT *pti = NULL;
596 GpPointF *ptcopy = NULL;
597 GpStatus status = GenericError;
598
599 if(!count)
600 return Ok;
601
602 pti = GdipAlloc(count * sizeof(POINT));
603 ptcopy = GdipAlloc(count * sizeof(GpPointF));
604
605 if(!pti || !ptcopy){
606 status = OutOfMemory;
607 goto end;
608 }
609
610 memcpy(ptcopy, pt, count * sizeof(GpPointF));
611
612 if(caps){
613 if(pen->endcap == LineCapArrowAnchor)
614 shorten_line_amt(ptcopy[count-2].X, ptcopy[count-2].Y,
615 &ptcopy[count-1].X, &ptcopy[count-1].Y, pen->width);
616 else if((pen->endcap == LineCapCustom) && pen->customend)
617 shorten_line_amt(ptcopy[count-2].X, ptcopy[count-2].Y,
618 &ptcopy[count-1].X, &ptcopy[count-1].Y,
619 pen->customend->inset * pen->width);
620
621 if(pen->startcap == LineCapArrowAnchor)
622 shorten_line_amt(ptcopy[1].X, ptcopy[1].Y,
623 &ptcopy[0].X, &ptcopy[0].Y, pen->width);
624 else if((pen->startcap == LineCapCustom) && pen->customstart)
625 shorten_line_amt(ptcopy[1].X, ptcopy[1].Y,
626 &ptcopy[0].X, &ptcopy[0].Y,
627 pen->customstart->inset * pen->width);
628
629 draw_cap(graphics, pen->brush->lb.lbColor, pen->endcap, pen->width, pen->customend,
630 pt[count - 2].X, pt[count - 2].Y, pt[count - 1].X, pt[count - 1].Y);
631 draw_cap(graphics, pen->brush->lb.lbColor, pen->startcap, pen->width, pen->customstart,
632 pt[1].X, pt[1].Y, pt[0].X, pt[0].Y);
633 }
634
635 transform_and_round_points(graphics, pti, ptcopy, count);
636
637 if(Polyline(graphics->hdc, pti, count))
638 status = Ok;
639
640 end:
641 GdipFree(pti);
642 GdipFree(ptcopy);
643
644 return status;
645 }
646
647 /* Conducts a linear search to find the bezier points that will back off
648 * the endpoint of the curve by a distance of amt. Linear search works
649 * better than binary in this case because there are multiple solutions,
650 * and binary searches often find a bad one. I don't think this is what
651 * Windows does but short of rendering the bezier without GDI's help it's
652 * the best we can do. If rev then work from the start of the passed points
653 * instead of the end. */
654 static void shorten_bezier_amt(GpPointF * pt, REAL amt, BOOL rev)
655 {
656 GpPointF origpt[4];
657 REAL percent = 0.00, dx, dy, origx, origy, diff = -1.0;
658 INT i, first = 0, second = 1, third = 2, fourth = 3;
659
660 if(rev){
661 first = 3;
662 second = 2;
663 third = 1;
664 fourth = 0;
665 }
666
667 origx = pt[fourth].X;
668 origy = pt[fourth].Y;
669 memcpy(origpt, pt, sizeof(GpPointF) * 4);
670
671 for(i = 0; (i < MAX_ITERS) && (diff < amt); i++){
672 /* reset bezier points to original values */
673 memcpy(pt, origpt, sizeof(GpPointF) * 4);
674 /* Perform magic on bezier points. Order is important here.*/
675 shorten_line_percent(pt[third].X, pt[third].Y, &pt[fourth].X, &pt[fourth].Y, percent);
676 shorten_line_percent(pt[second].X, pt[second].Y, &pt[third].X, &pt[third].Y, percent);
677 shorten_line_percent(pt[third].X, pt[third].Y, &pt[fourth].X, &pt[fourth].Y, percent);
678 shorten_line_percent(pt[first].X, pt[first].Y, &pt[second].X, &pt[second].Y, percent);
679 shorten_line_percent(pt[second].X, pt[second].Y, &pt[third].X, &pt[third].Y, percent);
680 shorten_line_percent(pt[third].X, pt[third].Y, &pt[fourth].X, &pt[fourth].Y, percent);
681
682 dx = pt[fourth].X - origx;
683 dy = pt[fourth].Y - origy;
684
685 diff = sqrt(dx * dx + dy * dy);
686 percent += 0.0005 * amt;
687 }
688 }
689
690 /* Draws bezier curves between given points, and if caps is true then draws an
691 * endcap at the end of the last line. */
692 static GpStatus draw_polybezier(GpGraphics *graphics, GpPen *pen,
693 GDIPCONST GpPointF * pt, INT count, BOOL caps)
694 {
695 POINT *pti;
696 GpPointF *ptcopy;
697 GpStatus status = GenericError;
698
699 if(!count)
700 return Ok;
701
702 pti = GdipAlloc(count * sizeof(POINT));
703 ptcopy = GdipAlloc(count * sizeof(GpPointF));
704
705 if(!pti || !ptcopy){
706 status = OutOfMemory;
707 goto end;
708 }
709
710 memcpy(ptcopy, pt, count * sizeof(GpPointF));
711
712 if(caps){
713 if(pen->endcap == LineCapArrowAnchor)
714 shorten_bezier_amt(&ptcopy[count-4], pen->width, FALSE);
715 else if((pen->endcap == LineCapCustom) && pen->customend)
716 shorten_bezier_amt(&ptcopy[count-4], pen->width * pen->customend->inset,
717 FALSE);
718
719 if(pen->startcap == LineCapArrowAnchor)
720 shorten_bezier_amt(ptcopy, pen->width, TRUE);
721 else if((pen->startcap == LineCapCustom) && pen->customstart)
722 shorten_bezier_amt(ptcopy, pen->width * pen->customstart->inset, TRUE);
723
724 /* the direction of the line cap is parallel to the direction at the
725 * end of the bezier (which, if it has been shortened, is not the same
726 * as the direction from pt[count-2] to pt[count-1]) */
727 draw_cap(graphics, pen->brush->lb.lbColor, pen->endcap, pen->width, pen->customend,
728 pt[count - 1].X - (ptcopy[count - 1].X - ptcopy[count - 2].X),
729 pt[count - 1].Y - (ptcopy[count - 1].Y - ptcopy[count - 2].Y),
730 pt[count - 1].X, pt[count - 1].Y);
731
732 draw_cap(graphics, pen->brush->lb.lbColor, pen->startcap, pen->width, pen->customstart,
733 pt[0].X - (ptcopy[0].X - ptcopy[1].X),
734 pt[0].Y - (ptcopy[0].Y - ptcopy[1].Y), pt[0].X, pt[0].Y);
735 }
736
737 transform_and_round_points(graphics, pti, ptcopy, count);
738
739 PolyBezier(graphics->hdc, pti, count);
740
741 status = Ok;
742
743 end:
744 GdipFree(pti);
745 GdipFree(ptcopy);
746
747 return status;
748 }
749
750 /* Draws a combination of bezier curves and lines between points. */
751 static GpStatus draw_poly(GpGraphics *graphics, GpPen *pen, GDIPCONST GpPointF * pt,
752 GDIPCONST BYTE * types, INT count, BOOL caps)
753 {
754 POINT *pti = GdipAlloc(count * sizeof(POINT));
755 BYTE *tp = GdipAlloc(count);
756 GpPointF *ptcopy = GdipAlloc(count * sizeof(GpPointF));
757 INT i, j;
758 GpStatus status = GenericError;
759
760 if(!count){
761 status = Ok;
762 goto end;
763 }
764 if(!pti || !tp || !ptcopy){
765 status = OutOfMemory;
766 goto end;
767 }
768
769 for(i = 1; i < count; i++){
770 if((types[i] & PathPointTypePathTypeMask) == PathPointTypeBezier){
771 if((i + 2 >= count) || !(types[i + 1] & PathPointTypeBezier)
772 || !(types[i + 1] & PathPointTypeBezier)){
773 ERR("Bad bezier points\n");
774 goto end;
775 }
776 i += 2;
777 }
778 }
779
780 memcpy(ptcopy, pt, count * sizeof(GpPointF));
781
782 /* If we are drawing caps, go through the points and adjust them accordingly,
783 * and draw the caps. */
784 if(caps){
785 switch(types[count - 1] & PathPointTypePathTypeMask){
786 case PathPointTypeBezier:
787 if(pen->endcap == LineCapArrowAnchor)
788 shorten_bezier_amt(&ptcopy[count - 4], pen->width, FALSE);
789 else if((pen->endcap == LineCapCustom) && pen->customend)
790 shorten_bezier_amt(&ptcopy[count - 4],
791 pen->width * pen->customend->inset, FALSE);
792
793 draw_cap(graphics, pen->brush->lb.lbColor, pen->endcap, pen->width, pen->customend,
794 pt[count - 1].X - (ptcopy[count - 1].X - ptcopy[count - 2].X),
795 pt[count - 1].Y - (ptcopy[count - 1].Y - ptcopy[count - 2].Y),
796 pt[count - 1].X, pt[count - 1].Y);
797
798 break;
799 case PathPointTypeLine:
800 if(pen->endcap == LineCapArrowAnchor)
801 shorten_line_amt(ptcopy[count - 2].X, ptcopy[count - 2].Y,
802 &ptcopy[count - 1].X, &ptcopy[count - 1].Y,
803 pen->width);
804 else if((pen->endcap == LineCapCustom) && pen->customend)
805 shorten_line_amt(ptcopy[count - 2].X, ptcopy[count - 2].Y,
806 &ptcopy[count - 1].X, &ptcopy[count - 1].Y,
807 pen->customend->inset * pen->width);
808
809 draw_cap(graphics, pen->brush->lb.lbColor, pen->endcap, pen->width, pen->customend,
810 pt[count - 2].X, pt[count - 2].Y, pt[count - 1].X,
811 pt[count - 1].Y);
812
813 break;
814 default:
815 ERR("Bad path last point\n");
816 goto end;
817 }
818
819 /* Find start of points */
820 for(j = 1; j < count && ((types[j] & PathPointTypePathTypeMask)
821 == PathPointTypeStart); j++);
822
823 switch(types[j] & PathPointTypePathTypeMask){
824 case PathPointTypeBezier:
825 if(pen->startcap == LineCapArrowAnchor)
826 shorten_bezier_amt(&ptcopy[j - 1], pen->width, TRUE);
827 else if((pen->startcap == LineCapCustom) && pen->customstart)
828 shorten_bezier_amt(&ptcopy[j - 1],
829 pen->width * pen->customstart->inset, TRUE);
830
831 draw_cap(graphics, pen->brush->lb.lbColor, pen->startcap, pen->width, pen->customstart,
832 pt[j - 1].X - (ptcopy[j - 1].X - ptcopy[j].X),
833 pt[j - 1].Y - (ptcopy[j - 1].Y - ptcopy[j].Y),
834 pt[j - 1].X, pt[j - 1].Y);
835
836 break;
837 case PathPointTypeLine:
838 if(pen->startcap == LineCapArrowAnchor)
839 shorten_line_amt(ptcopy[j].X, ptcopy[j].Y,
840 &ptcopy[j - 1].X, &ptcopy[j - 1].Y,
841 pen->width);
842 else if((pen->startcap == LineCapCustom) && pen->customstart)
843 shorten_line_amt(ptcopy[j].X, ptcopy[j].Y,
844 &ptcopy[j - 1].X, &ptcopy[j - 1].Y,
845 pen->customstart->inset * pen->width);
846
847 draw_cap(graphics, pen->brush->lb.lbColor, pen->startcap, pen->width, pen->customstart,
848 pt[j].X, pt[j].Y, pt[j - 1].X,
849 pt[j - 1].Y);
850
851 break;
852 default:
853 ERR("Bad path points\n");
854 goto end;
855 }
856 }
857
858 transform_and_round_points(graphics, pti, ptcopy, count);
859
860 for(i = 0; i < count; i++){
861 tp[i] = convert_path_point_type(types[i]);
862 }
863
864 PolyDraw(graphics->hdc, pti, tp, count);
865
866 status = Ok;
867
868 end:
869 GdipFree(pti);
870 GdipFree(ptcopy);
871 GdipFree(tp);
872
873 return status;
874 }
875
876 GpStatus trace_path(GpGraphics *graphics, GpPath *path)
877 {
878 GpStatus result;
879
880 BeginPath(graphics->hdc);
881 result = draw_poly(graphics, NULL, path->pathdata.Points,
882 path->pathdata.Types, path->pathdata.Count, FALSE);
883 EndPath(graphics->hdc);
884 return result;
885 }
886
887 GpStatus WINGDIPAPI GdipCreateFromHDC(HDC hdc, GpGraphics **graphics)
888 {
889 TRACE("(%p, %p)\n", hdc, graphics);
890
891 return GdipCreateFromHDC2(hdc, NULL, graphics);
892 }
893
894 GpStatus WINGDIPAPI GdipCreateFromHDC2(HDC hdc, HANDLE hDevice, GpGraphics **graphics)
895 {
896 GpStatus retval;
897
898 TRACE("(%p, %p, %p)\n", hdc, hDevice, graphics);
899
900 if(hDevice != NULL) {
901 FIXME("Don't know how to hadle parameter hDevice\n");
902 return NotImplemented;
903 }
904
905 if(hdc == NULL)
906 return OutOfMemory;
907
908 if(graphics == NULL)
909 return InvalidParameter;
910
911 *graphics = GdipAlloc(sizeof(GpGraphics));
912 if(!*graphics) return OutOfMemory;
913
914 if((retval = GdipCreateMatrix(&(*graphics)->worldtrans)) != Ok){
915 GdipFree(*graphics);
916 return retval;
917 }
918
919 if((retval = GdipCreateRegion(&(*graphics)->clip)) != Ok){
920 GdipFree((*graphics)->worldtrans);
921 GdipFree(*graphics);
922 return retval;
923 }
924
925 (*graphics)->hdc = hdc;
926 (*graphics)->hwnd = WindowFromDC(hdc);
927 (*graphics)->smoothing = SmoothingModeDefault;
928 (*graphics)->compqual = CompositingQualityDefault;
929 (*graphics)->interpolation = InterpolationModeDefault;
930 (*graphics)->pixeloffset = PixelOffsetModeDefault;
931 (*graphics)->compmode = CompositingModeSourceOver;
932 (*graphics)->unit = UnitDisplay;
933 (*graphics)->scale = 1.0;
934 (*graphics)->busy = FALSE;
935 (*graphics)->textcontrast = 4;
936
937 return Ok;
938 }
939
940 GpStatus WINGDIPAPI GdipCreateFromHWND(HWND hwnd, GpGraphics **graphics)
941 {
942 GpStatus ret;
943
944 TRACE("(%p, %p)\n", hwnd, graphics);
945
946 if((ret = GdipCreateFromHDC(GetDC(hwnd), graphics)) != Ok)
947 return ret;
948
949 (*graphics)->hwnd = hwnd;
950
951 return Ok;
952 }
953
954 /* FIXME: no icm handling */
955 GpStatus WINGDIPAPI GdipCreateFromHWNDICM(HWND hwnd, GpGraphics **graphics)
956 {
957 TRACE("(%p, %p)\n", hwnd, graphics);
958
959 return GdipCreateFromHWND(hwnd, graphics);
960 }
961
962 GpStatus WINGDIPAPI GdipCreateMetafileFromEmf(HENHMETAFILE hemf, BOOL delete,
963 GpMetafile **metafile)
964 {
965 static int calls;
966
967 if(!hemf || !metafile)
968 return InvalidParameter;
969
970 if(!(calls++))
971 FIXME("not implemented\n");
972
973 return NotImplemented;
974 }
975
976 GpStatus WINGDIPAPI GdipCreateMetafileFromWmf(HMETAFILE hwmf, BOOL delete,
977 GDIPCONST WmfPlaceableFileHeader * placeable, GpMetafile **metafile)
978 {
979 IStream *stream = NULL;
980 UINT read;
981 BYTE* copy;
982 HENHMETAFILE hemf;
983 GpStatus retval = GenericError;
984
985 TRACE("(%p, %d, %p, %p)\n", hwmf, delete, placeable, metafile);
986
987 if(!hwmf || !metafile || !placeable)
988 return InvalidParameter;
989
990 *metafile = NULL;
991 read = GetMetaFileBitsEx(hwmf, 0, NULL);
992 if(!read)
993 return GenericError;
994 copy = GdipAlloc(read);
995 GetMetaFileBitsEx(hwmf, read, copy);
996
997 hemf = SetWinMetaFileBits(read, copy, NULL, NULL);
998 GdipFree(copy);
999
1000 read = GetEnhMetaFileBits(hemf, 0, NULL);
1001 copy = GdipAlloc(read);
1002 GetEnhMetaFileBits(hemf, read, copy);
1003 DeleteEnhMetaFile(hemf);
1004
1005 if(CreateStreamOnHGlobal(copy, TRUE, &stream) != S_OK){
1006 ERR("could not make stream\n");
1007 GdipFree(copy);
1008 goto err;
1009 }
1010
1011 *metafile = GdipAlloc(sizeof(GpMetafile));
1012 if(!*metafile){
1013 retval = OutOfMemory;
1014 goto err;
1015 }
1016
1017 if(OleLoadPicture(stream, 0, FALSE, &IID_IPicture,
1018 (LPVOID*) &((*metafile)->image.picture)) != S_OK)
1019 goto err;
1020
1021
1022 (*metafile)->image.type = ImageTypeMetafile;
1023 (*metafile)->bounds.X = ((REAL) placeable->BoundingBox.Left) / ((REAL) placeable->Inch);
1024 (*metafile)->bounds.Y = ((REAL) placeable->BoundingBox.Right) / ((REAL) placeable->Inch);
1025 (*metafile)->bounds.Width = ((REAL) (placeable->BoundingBox.Right
1026 - placeable->BoundingBox.Left)) / ((REAL) placeable->Inch);
1027 (*metafile)->bounds.Height = ((REAL) (placeable->BoundingBox.Bottom
1028 - placeable->BoundingBox.Top)) / ((REAL) placeable->Inch);
1029 (*metafile)->unit = UnitInch;
1030
1031 if(delete)
1032 DeleteMetaFile(hwmf);
1033
1034 return Ok;
1035
1036 err:
1037 GdipFree(*metafile);
1038 IStream_Release(stream);
1039 return retval;
1040 }
1041
1042 GpStatus WINGDIPAPI GdipCreateMetafileFromWmfFile(GDIPCONST WCHAR *file,
1043 GDIPCONST WmfPlaceableFileHeader * placeable, GpMetafile **metafile)
1044 {
1045 HMETAFILE hmf = GetMetaFileW(file);
1046
1047 TRACE("(%s, %p, %p)\n", debugstr_w(file), placeable, metafile);
1048
1049 if(!hmf) return InvalidParameter;
1050
1051 return GdipCreateMetafileFromWmf(hmf, TRUE, placeable, metafile);
1052 }
1053
1054 GpStatus WINGDIPAPI GdipCreateStreamOnFile(GDIPCONST WCHAR * filename,
1055 UINT access, IStream **stream)
1056 {
1057 DWORD dwMode;
1058 HRESULT ret;
1059
1060 TRACE("(%s, %u, %p)\n", debugstr_w(filename), access, stream);
1061
1062 if(!stream || !filename)
1063 return InvalidParameter;
1064
1065 if(access & GENERIC_WRITE)
1066 dwMode = STGM_SHARE_DENY_WRITE | STGM_WRITE | STGM_CREATE;
1067 else if(access & GENERIC_READ)
1068 dwMode = STGM_SHARE_DENY_WRITE | STGM_READ | STGM_FAILIFTHERE;
1069 else
1070 return InvalidParameter;
1071
1072 ret = SHCreateStreamOnFileW(filename, dwMode, stream);
1073
1074 return hresult_to_status(ret);
1075 }
1076
1077 GpStatus WINGDIPAPI GdipDeleteGraphics(GpGraphics *graphics)
1078 {
1079 TRACE("(%p)\n", graphics);
1080
1081 if(!graphics) return InvalidParameter;
1082 if(graphics->busy) return ObjectBusy;
1083
1084 if(graphics->hwnd)
1085 ReleaseDC(graphics->hwnd, graphics->hdc);
1086
1087 GdipDeleteRegion(graphics->clip);
1088 GdipDeleteMatrix(graphics->worldtrans);
1089 GdipFree(graphics);
1090
1091 return Ok;
1092 }
1093
1094 GpStatus WINGDIPAPI GdipDrawArc(GpGraphics *graphics, GpPen *pen, REAL x,
1095 REAL y, REAL width, REAL height, REAL startAngle, REAL sweepAngle)
1096 {
1097 INT save_state, num_pts;
1098 GpPointF points[MAX_ARC_PTS];
1099 GpStatus retval;
1100
1101 TRACE("(%p, %p, %.2f, %.2f, %.2f, %.2f, %.2f, %.2f)\n", graphics, pen, x, y,
1102 width, height, startAngle, sweepAngle);
1103
1104 if(!graphics || !pen || width <= 0 || height <= 0)
1105 return InvalidParameter;
1106
1107 if(graphics->busy)
1108 return ObjectBusy;
1109
1110 num_pts = arc2polybezier(points, x, y, width, height, startAngle, sweepAngle);
1111
1112 save_state = prepare_dc(graphics, pen);
1113
1114 retval = draw_polybezier(graphics, pen, points, num_pts, TRUE);
1115
1116 restore_dc(graphics, save_state);
1117
1118 return retval;
1119 }
1120
1121 GpStatus WINGDIPAPI GdipDrawArcI(GpGraphics *graphics, GpPen *pen, INT x,
1122 INT y, INT width, INT height, REAL startAngle, REAL sweepAngle)
1123 {
1124 TRACE("(%p, %p, %d, %d, %d, %d, %.2f, %.2f)\n", graphics, pen, x, y,
1125 width, height, startAngle, sweepAngle);
1126
1127 return GdipDrawArc(graphics,pen,(REAL)x,(REAL)y,(REAL)width,(REAL)height,startAngle,sweepAngle);
1128 }
1129
1130 GpStatus WINGDIPAPI GdipDrawBezier(GpGraphics *graphics, GpPen *pen, REAL x1,
1131 REAL y1, REAL x2, REAL y2, REAL x3, REAL y3, REAL x4, REAL y4)
1132 {
1133 INT save_state;
1134 GpPointF pt[4];
1135 GpStatus retval;
1136
1137 TRACE("(%p, %p, %.2f, %.2f, %.2f, %.2f, %.2f, %.2f, %.2f, %.2f)\n", graphics, pen, x1, y1,
1138 x2, y2, x3, y3, x4, y4);
1139
1140 if(!graphics || !pen)
1141 return InvalidParameter;
1142
1143 if(graphics->busy)
1144 return ObjectBusy;
1145
1146 pt[0].X = x1;
1147 pt[0].Y = y1;
1148 pt[1].X = x2;
1149 pt[1].Y = y2;
1150 pt[2].X = x3;
1151 pt[2].Y = y3;
1152 pt[3].X = x4;
1153 pt[3].Y = y4;
1154
1155 save_state = prepare_dc(graphics, pen);
1156
1157 retval = draw_polybezier(graphics, pen, pt, 4, TRUE);
1158
1159 restore_dc(graphics, save_state);
1160
1161 return retval;
1162 }
1163
1164 GpStatus WINGDIPAPI GdipDrawBezierI(GpGraphics *graphics, GpPen *pen, INT x1,
1165 INT y1, INT x2, INT y2, INT x3, INT y3, INT x4, INT y4)
1166 {
1167 INT save_state;
1168 GpPointF pt[4];
1169 GpStatus retval;
1170
1171 TRACE("(%p, %p, %d, %d, %d, %d, %d, %d, %d, %d)\n", graphics, pen, x1, y1,
1172 x2, y2, x3, y3, x4, y4);
1173
1174 if(!graphics || !pen)
1175 return InvalidParameter;
1176
1177 if(graphics->busy)
1178 return ObjectBusy;
1179
1180 pt[0].X = x1;
1181 pt[0].Y = y1;
1182 pt[1].X = x2;
1183 pt[1].Y = y2;
1184 pt[2].X = x3;
1185 pt[2].Y = y3;
1186 pt[3].X = x4;
1187 pt[3].Y = y4;
1188
1189 save_state = prepare_dc(graphics, pen);
1190
1191 retval = draw_polybezier(graphics, pen, pt, 4, TRUE);
1192
1193 restore_dc(graphics, save_state);
1194
1195 return retval;
1196 }
1197
1198 GpStatus WINGDIPAPI GdipDrawBeziers(GpGraphics *graphics, GpPen *pen,
1199 GDIPCONST GpPointF *points, INT count)
1200 {
1201 INT i;
1202 GpStatus ret;
1203
1204 TRACE("(%p, %p, %p, %d)\n", graphics, pen, points, count);
1205
1206 if(!graphics || !pen || !points || (count <= 0))
1207 return InvalidParameter;
1208
1209 if(graphics->busy)
1210 return ObjectBusy;
1211
1212 for(i = 0; i < floor(count / 4); i++){
1213 ret = GdipDrawBezier(graphics, pen,
1214 points[4*i].X, points[4*i].Y,
1215 points[4*i + 1].X, points[4*i + 1].Y,
1216 points[4*i + 2].X, points[4*i + 2].Y,
1217 points[4*i + 3].X, points[4*i + 3].Y);
1218 if(ret != Ok)
1219 return ret;
1220 }
1221
1222 return Ok;
1223 }
1224
1225 GpStatus WINGDIPAPI GdipDrawBeziersI(GpGraphics *graphics, GpPen *pen,
1226 GDIPCONST GpPoint *points, INT count)
1227 {
1228 GpPointF *pts;
1229 GpStatus ret;
1230 INT i;
1231
1232 TRACE("(%p, %p, %p, %d)\n", graphics, pen, points, count);
1233
1234 if(!graphics || !pen || !points || (count <= 0))
1235 return InvalidParameter;
1236
1237 if(graphics->busy)
1238 return ObjectBusy;
1239
1240 pts = GdipAlloc(sizeof(GpPointF) * count);
1241 if(!pts)
1242 return OutOfMemory;
1243
1244 for(i = 0; i < count; i++){
1245 pts[i].X = (REAL)points[i].X;
1246 pts[i].Y = (REAL)points[i].Y;
1247 }
1248
1249 ret = GdipDrawBeziers(graphics,pen,pts,count);
1250
1251 GdipFree(pts);
1252
1253 return ret;
1254 }
1255
1256 GpStatus WINGDIPAPI GdipDrawClosedCurve(GpGraphics *graphics, GpPen *pen,
1257 GDIPCONST GpPointF *points, INT count)
1258 {
1259 TRACE("(%p, %p, %p, %d)\n", graphics, pen, points, count);
1260
1261 return GdipDrawClosedCurve2(graphics, pen, points, count, 1.0);
1262 }
1263
1264 GpStatus WINGDIPAPI GdipDrawClosedCurveI(GpGraphics *graphics, GpPen *pen,
1265 GDIPCONST GpPoint *points, INT count)
1266 {
1267 TRACE("(%p, %p, %p, %d)\n", graphics, pen, points, count);
1268
1269 return GdipDrawClosedCurve2I(graphics, pen, points, count, 1.0);
1270 }
1271
1272 GpStatus WINGDIPAPI GdipDrawClosedCurve2(GpGraphics *graphics, GpPen *pen,
1273 GDIPCONST GpPointF *points, INT count, REAL tension)
1274 {
1275 GpPath *path;
1276 GpStatus stat;
1277
1278 TRACE("(%p, %p, %p, %d, %.2f)\n", graphics, pen, points, count, tension);
1279
1280 if(!graphics || !pen || !points || count <= 0)
1281 return InvalidParameter;
1282
1283 if(graphics->busy)
1284 return ObjectBusy;
1285
1286 if((stat = GdipCreatePath(FillModeAlternate, &path)) != Ok)
1287 return stat;
1288
1289 stat = GdipAddPathClosedCurve2(path, points, count, tension);
1290 if(stat != Ok){
1291 GdipDeletePath(path);
1292 return stat;
1293 }
1294
1295 stat = GdipDrawPath(graphics, pen, path);
1296
1297 GdipDeletePath(path);
1298
1299 return stat;
1300 }
1301
1302 GpStatus WINGDIPAPI GdipDrawClosedCurve2I(GpGraphics *graphics, GpPen *pen,
1303 GDIPCONST GpPoint *points, INT count, REAL tension)
1304 {
1305 GpPointF *ptf;
1306 GpStatus stat;
1307 INT i;
1308
1309 TRACE("(%p, %p, %p, %d, %.2f)\n", graphics, pen, points, count, tension);
1310
1311 if(!points || count <= 0)
1312 return InvalidParameter;
1313
1314 ptf = GdipAlloc(sizeof(GpPointF)*count);
1315 if(!ptf)
1316 return OutOfMemory;
1317
1318 for(i = 0; i < count; i++){
1319 ptf[i].X = (REAL)points[i].X;
1320 ptf[i].Y = (REAL)points[i].Y;
1321 }
1322
1323 stat = GdipDrawClosedCurve2(graphics, pen, ptf, count, tension);
1324
1325 GdipFree(ptf);
1326
1327 return stat;
1328 }
1329
1330 GpStatus WINGDIPAPI GdipDrawCurve(GpGraphics *graphics, GpPen *pen,
1331 GDIPCONST GpPointF *points, INT count)
1332 {
1333 TRACE("(%p, %p, %p, %d)\n", graphics, pen, points, count);
1334
1335 return GdipDrawCurve2(graphics,pen,points,count,1.0);
1336 }
1337
1338 GpStatus WINGDIPAPI GdipDrawCurveI(GpGraphics *graphics, GpPen *pen,
1339 GDIPCONST GpPoint *points, INT count)
1340 {
1341 GpPointF *pointsF;
1342 GpStatus ret;
1343 INT i;
1344
1345 TRACE("(%p, %p, %p, %d)\n", graphics, pen, points, count);
1346
1347 if(!points || count <= 0)
1348 return InvalidParameter;
1349
1350 pointsF = GdipAlloc(sizeof(GpPointF)*count);
1351 if(!pointsF)
1352 return OutOfMemory;
1353
1354 for(i = 0; i < count; i++){
1355 pointsF[i].X = (REAL)points[i].X;
1356 pointsF[i].Y = (REAL)points[i].Y;
1357 }
1358
1359 ret = GdipDrawCurve(graphics,pen,pointsF,count);
1360 GdipFree(pointsF);
1361
1362 return ret;
1363 }
1364
1365 /* Approximates cardinal spline with Bezier curves. */
1366 GpStatus WINGDIPAPI GdipDrawCurve2(GpGraphics *graphics, GpPen *pen,
1367 GDIPCONST GpPointF *points, INT count, REAL tension)
1368 {
1369 /* PolyBezier expects count*3-2 points. */
1370 INT i, len_pt = count*3-2, save_state;
1371 GpPointF *pt;
1372 REAL x1, x2, y1, y2;
1373 GpStatus retval;
1374
1375 TRACE("(%p, %p, %p, %d, %.2f)\n", graphics, pen, points, count, tension);
1376
1377 if(!graphics || !pen)
1378 return InvalidParameter;
1379
1380 if(graphics->busy)
1381 return ObjectBusy;
1382
1383 pt = GdipAlloc(len_pt * sizeof(GpPointF));
1384 tension = tension * TENSION_CONST;
1385
1386 calc_curve_bezier_endp(points[0].X, points[0].Y, points[1].X, points[1].Y,
1387 tension, &x1, &y1);
1388
1389 pt[0].X = points[0].X;
1390 pt[0].Y = points[0].Y;
1391 pt[1].X = x1;
1392 pt[1].Y = y1;
1393
1394 for(i = 0; i < count-2; i++){
1395 calc_curve_bezier(&(points[i]), tension, &x1, &y1, &x2, &y2);
1396
1397 pt[3*i+2].X = x1;
1398 pt[3*i+2].Y = y1;
1399 pt[3*i+3].X = points[i+1].X;
1400 pt[3*i+3].Y = points[i+1].Y;
1401 pt[3*i+4].X = x2;
1402 pt[3*i+4].Y = y2;
1403 }
1404
1405 calc_curve_bezier_endp(points[count-1].X, points[count-1].Y,
1406 points[count-2].X, points[count-2].Y, tension, &x1, &y1);
1407
1408 pt[len_pt-2].X = x1;
1409 pt[len_pt-2].Y = y1;
1410 pt[len_pt-1].X = points[count-1].X;
1411 pt[len_pt-1].Y = points[count-1].Y;
1412
1413 save_state = prepare_dc(graphics, pen);
1414
1415 retval = draw_polybezier(graphics, pen, pt, len_pt, TRUE);
1416
1417 GdipFree(pt);
1418 restore_dc(graphics, save_state);
1419
1420 return retval;
1421 }
1422
1423 GpStatus WINGDIPAPI GdipDrawCurve2I(GpGraphics *graphics, GpPen *pen,
1424 GDIPCONST GpPoint *points, INT count, REAL tension)
1425 {
1426 GpPointF *pointsF;
1427 GpStatus ret;
1428 INT i;
1429
1430 TRACE("(%p, %p, %p, %d, %.2f)\n", graphics, pen, points, count, tension);
1431
1432 if(!points || count <= 0)
1433 return InvalidParameter;
1434
1435 pointsF = GdipAlloc(sizeof(GpPointF)*count);
1436 if(!pointsF)
1437 return OutOfMemory;
1438
1439 for(i = 0; i < count; i++){
1440 pointsF[i].X = (REAL)points[i].X;
1441 pointsF[i].Y = (REAL)points[i].Y;
1442 }
1443
1444 ret = GdipDrawCurve2(graphics,pen,pointsF,count,tension);
1445 GdipFree(pointsF);
1446
1447 return ret;
1448 }
1449
1450 GpStatus WINGDIPAPI GdipDrawEllipse(GpGraphics *graphics, GpPen *pen, REAL x,
1451 REAL y, REAL width, REAL height)
1452 {
1453 INT save_state;
1454 GpPointF ptf[2];
1455 POINT pti[2];
1456
1457 TRACE("(%p, %p, %.2f, %.2f, %.2f, %.2f)\n", graphics, pen, x, y, width, height);
1458
1459 if(!graphics || !pen)
1460 return InvalidParameter;
1461
1462 if(graphics->busy)
1463 return ObjectBusy;
1464
1465 ptf[0].X = x;
1466 ptf[0].Y = y;
1467 ptf[1].X = x + width;
1468 ptf[1].Y = y + height;
1469
1470 save_state = prepare_dc(graphics, pen);
1471 SelectObject(graphics->hdc, GetStockObject(NULL_BRUSH));
1472
1473 transform_and_round_points(graphics, pti, ptf, 2);
1474
1475 Ellipse(graphics->hdc, pti[0].x, pti[0].y, pti[1].x, pti[1].y);
1476
1477 restore_dc(graphics, save_state);
1478
1479 return Ok;
1480 }
1481
1482 GpStatus WINGDIPAPI GdipDrawEllipseI(GpGraphics *graphics, GpPen *pen, INT x,
1483 INT y, INT width, INT height)
1484 {
1485 TRACE("(%p, %p, %d, %d, %d, %d)\n", graphics, pen, x, y, width, height);
1486
1487 return GdipDrawEllipse(graphics,pen,(REAL)x,(REAL)y,(REAL)width,(REAL)height);
1488 }
1489
1490
1491 GpStatus WINGDIPAPI GdipDrawImage(GpGraphics *graphics, GpImage *image, REAL x, REAL y)
1492 {
1493 TRACE("(%p, %p, %.2f, %.2f)\n", graphics, image, x, y);
1494
1495 /* IPicture::Render uses LONG coords */
1496 return GdipDrawImageI(graphics,image,roundr(x),roundr(y));
1497 }
1498
1499 GpStatus WINGDIPAPI GdipDrawImageI(GpGraphics *graphics, GpImage *image, INT x,
1500 INT y)
1501 {
1502 UINT width, height, srcw, srch;
1503
1504 TRACE("(%p, %p, %d, %d)\n", graphics, image, x, y);
1505
1506 if(!graphics || !image)
1507 return InvalidParameter;
1508
1509 GdipGetImageWidth(image, &width);
1510 GdipGetImageHeight(image, &height);
1511
1512 srcw = width * (((REAL) INCH_HIMETRIC) /
1513 ((REAL) GetDeviceCaps(graphics->hdc, LOGPIXELSX)));
1514 srch = height * (((REAL) INCH_HIMETRIC) /
1515 ((REAL) GetDeviceCaps(graphics->hdc, LOGPIXELSY)));
1516
1517 if(image->type != ImageTypeMetafile){
1518 y += height;
1519 height *= -1;
1520 }
1521
1522 IPicture_Render(image->picture, graphics->hdc, x, y, width, height,
1523 0, 0, srcw, srch, NULL);
1524
1525 return Ok;
1526 }
1527
1528 /* FIXME: partially implemented (only works for rectangular parallelograms) */
1529 GpStatus WINGDIPAPI GdipDrawImagePointsRect(GpGraphics *graphics, GpImage *image,
1530 GDIPCONST GpPointF *points, INT count, REAL srcx, REAL srcy, REAL srcwidth,
1531 REAL srcheight, GpUnit srcUnit, GDIPCONST GpImageAttributes* imageAttributes,
1532 DrawImageAbort callback, VOID * callbackData)
1533 {
1534 GpPointF ptf[3];
1535 POINT pti[3];
1536 REAL dx, dy;
1537
1538 TRACE("(%p, %p, %p, %d, %f, %f, %f, %f, %d, %p, %p, %p)\n", graphics, image, points,
1539 count, srcx, srcy, srcwidth, srcheight, srcUnit, imageAttributes, callback,
1540 callbackData);
1541
1542 if(!graphics || !image || !points || count != 3)
1543 return InvalidParameter;
1544
1545 if(srcUnit == UnitInch)
1546 dx = dy = (REAL) INCH_HIMETRIC;
1547 else if(srcUnit == UnitPixel){
1548 dx = ((REAL) INCH_HIMETRIC) /
1549 ((REAL) GetDeviceCaps(graphics->hdc, LOGPIXELSX));
1550 dy = ((REAL) INCH_HIMETRIC) /
1551 ((REAL) GetDeviceCaps(graphics->hdc, LOGPIXELSY));
1552 }
1553 else
1554 return NotImplemented;
1555
1556 memcpy(ptf, points, 3 * sizeof(GpPointF));
1557 transform_and_round_points(graphics, pti, ptf, 3);
1558
1559 /* IPicture renders bitmaps with the y-axis reversed
1560 * FIXME: flipping for unknown image type might not be correct. */
1561 if(image->type != ImageTypeMetafile){
1562 INT temp;
1563 temp = pti[0].y;
1564 pti[0].y = pti[2].y;
1565 pti[2].y = temp;
1566 }
1567
1568 if(IPicture_Render(image->picture, graphics->hdc,
1569 pti[0].x, pti[0].y, pti[1].x - pti[0].x, pti[2].y - pti[0].y,
1570 srcx * dx, srcy * dy,
1571 srcwidth * dx, srcheight * dy,
1572 NULL) != S_OK){
1573 if(callback)
1574 callback(callbackData);
1575 return GenericError;
1576 }
1577
1578 return Ok;
1579 }
1580
1581 GpStatus WINGDIPAPI GdipDrawImagePointsRectI(GpGraphics *graphics, GpImage *image,
1582 GDIPCONST GpPoint *points, INT count, INT srcx, INT srcy, INT srcwidth,
1583 INT srcheight, GpUnit srcUnit, GDIPCONST GpImageAttributes* imageAttributes,
1584 DrawImageAbort callback, VOID * callbackData)
1585 {
1586 GpPointF pointsF[3];
1587 INT i;
1588
1589 TRACE("(%p, %p, %p, %d, %d, %d, %d, %d, %d, %p, %p, %p)\n", graphics, image, points, count,
1590 srcx, srcy, srcwidth, srcheight, srcUnit, imageAttributes, callback,
1591 callbackData);
1592
1593 if(!points || count!=3)
1594 return InvalidParameter;
1595
1596 for(i = 0; i < count; i++){
1597 pointsF[i].X = (REAL)points[i].X;
1598 pointsF[i].Y = (REAL)points[i].Y;
1599 }
1600
1601 return GdipDrawImagePointsRect(graphics, image, pointsF, count, (REAL)srcx, (REAL)srcy,
1602 (REAL)srcwidth, (REAL)srcheight, srcUnit, imageAttributes,
1603 callback, callbackData);
1604 }
1605
1606 GpStatus WINGDIPAPI GdipDrawImageRectRect(GpGraphics *graphics, GpImage *image,
1607 REAL dstx, REAL dsty, REAL dstwidth, REAL dstheight, REAL srcx, REAL srcy,
1608 REAL srcwidth, REAL srcheight, GpUnit srcUnit,
1609 GDIPCONST GpImageAttributes* imageattr, DrawImageAbort callback,
1610 VOID * callbackData)
1611 {
1612 GpPointF points[3];
1613
1614 TRACE("(%p, %p, %.2f, %.2f, %.2f, %.2f, %.2f, %.2f, %.2f, %.2f, %d, %p, %p, %p)\n",
1615 graphics, image, dstx, dsty, dstwidth, dstheight, srcx, srcy,
1616 srcwidth, srcheight, srcUnit, imageattr, callback, callbackData);
1617
1618 points[0].X = dstx;
1619 points[0].Y = dsty;
1620 points[1].X = dstx + dstwidth;
1621 points[1].Y = dsty;
1622 points[2].X = dstx;
1623 points[2].Y = dsty + dstheight;
1624
1625 return GdipDrawImagePointsRect(graphics, image, points, 3, srcx, srcy,
1626 srcwidth, srcheight, srcUnit, imageattr, callback, callbackData);
1627 }
1628
1629 GpStatus WINGDIPAPI GdipDrawImageRectRectI(GpGraphics *graphics, GpImage *image,
1630 INT dstx, INT dsty, INT dstwidth, INT dstheight, INT srcx, INT srcy,
1631 INT srcwidth, INT srcheight, GpUnit srcUnit,
1632 GDIPCONST GpImageAttributes* imageAttributes, DrawImageAbort callback,
1633 VOID * callbackData)
1634 {
1635 GpPointF points[3];
1636
1637 TRACE("(%p, %p, %d, %d, %d, %d, %d, %d, %d, %d, %d, %p, %p, %p)\n",
1638 graphics, image, dstx, dsty, dstwidth, dstheight, srcx, srcy,
1639 srcwidth, srcheight, srcUnit, imageAttributes, callback, callbackData);
1640
1641 points[0].X = dstx;
1642 points[0].Y = dsty;
1643 points[1].X = dstx + dstwidth;
1644 points[1].Y = dsty;
1645 points[2].X = dstx;
1646 points[2].Y = dsty + dstheight;
1647
1648 return GdipDrawImagePointsRect(graphics, image, points, 3, srcx, srcy,
1649 srcwidth, srcheight, srcUnit, imageAttributes, callback, callbackData);
1650 }
1651
1652 GpStatus WINGDIPAPI GdipDrawImageRect(GpGraphics *graphics, GpImage *image,
1653 REAL x, REAL y, REAL width, REAL height)
1654 {
1655 RectF bounds;
1656 GpUnit unit;
1657 GpStatus ret;
1658
1659 TRACE("(%p, %p, %.2f, %.2f, %.2f, %.2f)\n", graphics, image, x, y, width, height);
1660
1661 if(!graphics || !image)
1662 return InvalidParameter;
1663
1664 ret = GdipGetImageBounds(image, &bounds, &unit);
1665 if(ret != Ok)
1666 return ret;
1667
1668 return GdipDrawImageRectRect(graphics, image, x, y, width, height,
1669 bounds.X, bounds.Y, bounds.Width, bounds.Height,
1670 unit, NULL, NULL, NULL);
1671 }
1672
1673 GpStatus WINGDIPAPI GdipDrawImageRectI(GpGraphics *graphics, GpImage *image,
1674 INT x, INT y, INT width, INT height)
1675 {
1676 TRACE("(%p, %p, %d, %d, %d, %d)\n", graphics, image, x, y, width, height);
1677
1678 return GdipDrawImageRect(graphics, image, (REAL)x, (REAL)y, (REAL)width, (REAL)height);
1679 }
1680
1681 GpStatus WINGDIPAPI GdipDrawLine(GpGraphics *graphics, GpPen *pen, REAL x1,
1682 REAL y1, REAL x2, REAL y2)
1683 {
1684 INT save_state;
1685 GpPointF pt[2];
1686 GpStatus retval;
1687
1688 TRACE("(%p, %p, %.2f, %.2f, %.2f, %.2f)\n", graphics, pen, x1, y1, x2, y2);
1689
1690 if(!pen || !graphics)
1691 return InvalidParameter;
1692
1693 if(graphics->busy)
1694 return ObjectBusy;
1695
1696 pt[0].X = x1;
1697 pt[0].Y = y1;
1698 pt[1].X = x2;
1699 pt[1].Y = y2;
1700
1701 save_state = prepare_dc(graphics, pen);
1702
1703 retval = draw_polyline(graphics, pen, pt, 2, TRUE);
1704
1705 restore_dc(graphics, save_state);
1706
1707 return retval;
1708 }
1709
1710 GpStatus WINGDIPAPI GdipDrawLineI(GpGraphics *graphics, GpPen *pen, INT x1,
1711 INT y1, INT x2, INT y2)
1712 {
1713 INT save_state;
1714 GpPointF pt[2];
1715 GpStatus retval;
1716
1717 TRACE("(%p, %p, %d, %d, %d, %d)\n", graphics, pen, x1, y1, x2, y2);
1718
1719 if(!pen || !graphics)
1720 return InvalidParameter;
1721
1722 if(graphics->busy)
1723 return ObjectBusy;
1724
1725 pt[0].X = (REAL)x1;
1726 pt[0].Y = (REAL)y1;
1727 pt[1].X = (REAL)x2;
1728 pt[1].Y = (REAL)y2;
1729
1730 save_state = prepare_dc(graphics, pen);
1731
1732 retval = draw_polyline(graphics, pen, pt, 2, TRUE);
1733
1734 restore_dc(graphics, save_state);
1735
1736 return retval;
1737 }
1738
1739 GpStatus WINGDIPAPI GdipDrawLines(GpGraphics *graphics, GpPen *pen, GDIPCONST
1740 GpPointF *points, INT count)
1741 {
1742 INT save_state;
1743 GpStatus retval;
1744
1745 TRACE("(%p, %p, %p, %d)\n", graphics, pen, points, count);
1746
1747 if(!pen || !graphics || (count < 2))
1748 return InvalidParameter;
1749
1750 if(graphics->busy)
1751 return ObjectBusy;
1752
1753 save_state = prepare_dc(graphics, pen);
1754
1755 retval = draw_polyline(graphics, pen, points, count, TRUE);
1756
1757 restore_dc(graphics, save_state);
1758
1759 return retval;
1760 }
1761
1762 GpStatus WINGDIPAPI GdipDrawLinesI(GpGraphics *graphics, GpPen *pen, GDIPCONST
1763 GpPoint *points, INT count)
1764 {
1765 INT save_state;
1766 GpStatus retval;
1767 GpPointF *ptf = NULL;
1768 int i;
1769
1770 TRACE("(%p, %p, %p, %d)\n", graphics, pen, points, count);
1771
1772 if(!pen || !graphics || (count < 2))
1773 return InvalidParameter;
1774
1775 if(graphics->busy)
1776 return ObjectBusy;
1777
1778 ptf = GdipAlloc(count * sizeof(GpPointF));
1779 if(!ptf) return OutOfMemory;
1780
1781 for(i = 0; i < count; i ++){
1782 ptf[i].X = (REAL) points[i].X;
1783 ptf[i].Y = (REAL) points[i].Y;
1784 }
1785
1786 save_state = prepare_dc(graphics, pen);
1787
1788 retval = draw_polyline(graphics, pen, ptf, count, TRUE);
1789
1790 restore_dc(graphics, save_state);
1791
1792 GdipFree(ptf);
1793 return retval;
1794 }
1795
1796 GpStatus WINGDIPAPI GdipDrawPath(GpGraphics *graphics, GpPen *pen, GpPath *path)
1797 {
1798 INT save_state;
1799 GpStatus retval;
1800
1801 TRACE("(%p, %p, %p)\n", graphics, pen, path);
1802
1803 if(!pen || !graphics)
1804 return InvalidParameter;
1805
1806 if(graphics->busy)
1807 return ObjectBusy;
1808
1809 save_state = prepare_dc(graphics, pen);
1810
1811 retval = draw_poly(graphics, pen, path->pathdata.Points,
1812 path->pathdata.Types, path->pathdata.Count, TRUE);
1813
1814 restore_dc(graphics, save_state);
1815
1816 return retval;
1817 }
1818
1819 GpStatus WINGDIPAPI GdipDrawPie(GpGraphics *graphics, GpPen *pen, REAL x,
1820 REAL y, REAL width, REAL height, REAL startAngle, REAL sweepAngle)
1821 {
1822 INT save_state;
1823
1824 TRACE("(%p, %p, %.2f, %.2f, %.2f, %.2f, %.2f, %.2f)\n", graphics, pen, x, y,
1825 width, height, startAngle, sweepAngle);
1826
1827 if(!graphics || !pen)
1828 return InvalidParameter;
1829
1830 if(graphics->busy)
1831 return ObjectBusy;
1832
1833 save_state = prepare_dc(graphics, pen);
1834 SelectObject(graphics->hdc, GetStockObject(NULL_BRUSH));
1835
1836 draw_pie(graphics, x, y, width, height, startAngle, sweepAngle);
1837
1838 restore_dc(graphics, save_state);
1839
1840 return Ok;
1841 }
1842
1843 GpStatus WINGDIPAPI GdipDrawPieI(GpGraphics *graphics, GpPen *pen, INT x,
1844 INT y, INT width, INT height, REAL startAngle, REAL sweepAngle)
1845 {
1846 TRACE("(%p, %p, %d, %d, %d, %d, %.2f, %.2f)\n", graphics, pen, x, y,
1847 width, height, startAngle, sweepAngle);
1848
1849 return GdipDrawPie(graphics,pen,(REAL)x,(REAL)y,(REAL)width,(REAL)height,startAngle,sweepAngle);
1850 }
1851
1852 GpStatus WINGDIPAPI GdipDrawRectangle(GpGraphics *graphics, GpPen *pen, REAL x,
1853 REAL y, REAL width, REAL height)
1854 {
1855 INT save_state;
1856 GpPointF ptf[4];
1857 POINT pti[4];
1858
1859 TRACE("(%p, %p, %.2f, %.2f, %.2f, %.2f)\n", graphics, pen, x, y, width, height);
1860
1861 if(!pen || !graphics)
1862 return InvalidParameter;
1863
1864 if(graphics->busy)
1865 return ObjectBusy;
1866
1867 ptf[0].X = x;
1868 ptf[0].Y = y;
1869 ptf[1].X = x + width;
1870 ptf[1].Y = y;
1871 ptf[2].X = x + width;
1872 ptf[2].Y = y + height;
1873 ptf[3].X = x;
1874 ptf[3].Y = y + height;
1875
1876 save_state = prepare_dc(graphics, pen);
1877 SelectObject(graphics->hdc, GetStockObject(NULL_BRUSH));
1878
1879 transform_and_round_points(graphics, pti, ptf, 4);
1880 Polygon(graphics->hdc, pti, 4);
1881
1882 restore_dc(graphics, save_state);
1883
1884 return Ok;
1885 }
1886
1887 GpStatus WINGDIPAPI GdipDrawRectangleI(GpGraphics *graphics, GpPen *pen, INT x,
1888 INT y, INT width, INT height)
1889 {
1890 TRACE("(%p, %p, %d, %d, %d, %d)\n", graphics, pen, x, y, width, height);
1891
1892 return GdipDrawRectangle(graphics,pen,(REAL)x,(REAL)y,(REAL)width,(REAL)height);
1893 }
1894
1895 GpStatus WINGDIPAPI GdipDrawRectangles(GpGraphics *graphics, GpPen *pen,
1896 GDIPCONST GpRectF* rects, INT count)
1897 {
1898 GpPointF *ptf;
1899 POINT *pti;
1900 INT save_state, i;
1901
1902 TRACE("(%p, %p, %p, %d)\n", graphics, pen, rects, count);
1903
1904 if(!graphics || !pen || !rects || count < 1)
1905 return InvalidParameter;
1906
1907 if(graphics->busy)
1908 return ObjectBusy;
1909
1910 ptf = GdipAlloc(4 * count * sizeof(GpPointF));
1911 pti = GdipAlloc(4 * count * sizeof(POINT));
1912
1913 if(!ptf || !pti){
1914 GdipFree(ptf);
1915 GdipFree(pti);
1916 return OutOfMemory;
1917 }
1918
1919 for(i = 0; i < count; i++){
1920 ptf[4 * i + 3].X = ptf[4 * i].X = rects[i].X;
1921 ptf[4 * i + 1].Y = ptf[4 * i].Y = rects[i].Y;
1922 ptf[4 * i + 2].X = ptf[4 * i + 1].X = rects[i].X + rects[i].Width;
1923 ptf[4 * i + 3].Y = ptf[4 * i + 2].Y = rects[i].Y + rects[i].Height;
1924 }
1925
1926 save_state = prepare_dc(graphics, pen);
1927 SelectObject(graphics->hdc, GetStockObject(NULL_BRUSH));
1928
1929 transform_and_round_points(graphics, pti, ptf, 4 * count);
1930
1931 for(i = 0; i < count; i++)
1932 Polygon(graphics->hdc, &pti[4 * i], 4);
1933
1934 restore_dc(graphics, save_state);
1935
1936 GdipFree(ptf);
1937 GdipFree(pti);
1938
1939 return Ok;
1940 }
1941
1942 GpStatus WINGDIPAPI GdipDrawRectanglesI(GpGraphics *graphics, GpPen *pen,
1943 GDIPCONST GpRect* rects, INT count)
1944 {
1945 GpRectF *rectsF;
1946 GpStatus ret;
1947 INT i;
1948
1949 TRACE("(%p, %p, %p, %d)\n", graphics, pen, rects, count);
1950
1951 if(!rects || count<=0)
1952 return InvalidParameter;
1953
1954 rectsF = GdipAlloc(sizeof(GpRectF) * count);
1955 if(!rectsF)
1956 return OutOfMemory;
1957
1958 for(i = 0;i < count;i++){
1959 rectsF[i].X = (REAL)rects[i].X;
1960 rectsF[i].Y = (REAL)rects[i].Y;
1961 rectsF[i].Width = (REAL)rects[i].Width;
1962 rectsF[i].Height = (REAL)rects[i].Height;
1963 }
1964
1965 ret = GdipDrawRectangles(graphics, pen, rectsF, count);
1966 GdipFree(rectsF);
1967
1968 return ret;
1969 }
1970
1971 GpStatus WINGDIPAPI GdipDrawString(GpGraphics *graphics, GDIPCONST WCHAR *string,
1972 INT length, GDIPCONST GpFont *font, GDIPCONST RectF *rect,
1973 GDIPCONST GpStringFormat *format, GDIPCONST GpBrush *brush)
1974 {
1975 HRGN rgn = NULL;
1976 HFONT gdifont;
1977 LOGFONTW lfw;
1978 TEXTMETRICW textmet;
1979 GpPointF pt[2], rectcpy[4];
1980 POINT corners[4];
1981 WCHAR* stringdup;
1982 REAL angle, ang_cos, ang_sin, rel_width, rel_height;
1983 INT sum = 0, height = 0, fit, fitcpy, save_state, i, j, lret, nwidth,
1984 nheight;
1985 SIZE size;
1986 RECT drawcoord;
1987
1988 if(!graphics || !string || !font || !brush || !rect)
1989 return InvalidParameter;
1990
1991 if((brush->bt != BrushTypeSolidColor)){
1992 FIXME("not implemented for given parameters\n");
1993 return NotImplemented;
1994 }
1995
1996 if(format)
1997 TRACE("may be ignoring some format flags: attr %x\n", format->attr);
1998
1999 if(length == -1) length = lstrlenW(string);
2000
2001 stringdup = GdipAlloc(length * sizeof(WCHAR));
2002 if(!stringdup) return OutOfMemory;
2003
2004 save_state = SaveDC(graphics->hdc);
2005 SetBkMode(graphics->hdc, TRANSPARENT);
2006 SetTextColor(graphics->hdc, brush->lb.lbColor);
2007
2008 rectcpy[3].X = rectcpy[0].X = rect->X;
2009 rectcpy[1].Y = rectcpy[0].Y = rect->Y;
2010 rectcpy[2].X = rectcpy[1].X = rect->X + rect->Width;
2011 rectcpy[3].Y = rectcpy[2].Y = rect->Y + rect->Height;
2012 transform_and_round_points(graphics, corners, rectcpy, 4);
2013
2014 if (roundr(rect->Width) == 0)
2015 {
2016 rel_width = 1.0;
2017 nwidth = INT_MAX;
2018 }
2019 else
2020 {
2021 rel_width = sqrt((corners[1].x - corners[0].x) * (corners[1].x - corners[0].x) +
2022 (corners[1].y - corners[0].y) * (corners[1].y - corners[0].y))
2023 / rect->Width;
2024 nwidth = roundr(rel_width * rect->Width);
2025 }
2026
2027 if (roundr(rect->Height) == 0)
2028 {
2029 rel_height = 1.0;
2030 nheight = INT_MAX;
2031 }
2032 else
2033 {
2034 rel_height = sqrt((corners[2].x - corners[1].x) * (corners[2].x - corners[1].x) +
2035 (corners[2].y - corners[1].y) * (corners[2].y - corners[1].y))
2036 / rect->Height;
2037 nheight = roundr(rel_height * rect->Height);
2038 }
2039
2040 if (roundr(rect->Width) != 0 && roundr(rect->Height) != 0)
2041 {
2042 /* FIXME: If only the width or only the height is 0, we should probably still clip */
2043 rgn = CreatePolygonRgn(corners, 4, ALTERNATE);
2044 SelectClipRgn(graphics->hdc, rgn);
2045 }
2046
2047 /* Use gdi to find the font, then perform transformations on it (height,
2048 * width, angle). */
2049 SelectObject(graphics->hdc, CreateFontIndirectW(&font->lfw));
2050 GetTextMetricsW(graphics->hdc, &textmet);
2051 lfw = font->lfw;
2052
2053 lfw.lfHeight = roundr(((REAL)lfw.lfHeight) * rel_height);
2054 lfw.lfWidth = roundr(textmet.tmAveCharWidth * rel_width);
2055
2056 pt[0].X = 0.0;
2057 pt[0].Y = 0.0;
2058 pt[1].X = 1.0;
2059 pt[1].Y = 0.0;
2060 GdipTransformMatrixPoints(graphics->worldtrans, pt, 2);
2061 angle = gdiplus_atan2((pt[1].Y - pt[0].Y), (pt[1].X - pt[0].X));
2062 ang_cos = cos(angle);
2063 ang_sin = sin(angle);
2064 lfw.lfEscapement = lfw.lfOrientation = -roundr((angle / M_PI) * 1800.0);
2065
2066 gdifont = CreateFontIndirectW(&lfw);
2067 DeleteObject(SelectObject(graphics->hdc, CreateFontIndirectW(&lfw)));
2068
2069 for(i = 0, j = 0; i < length; i++){
2070 if(!isprintW(string[i]) && (string[i] != '\n'))
2071 continue;
2072
2073 stringdup[j] = string[i];
2074 j++;
2075 }
2076
2077 length = j;
2078
2079 while(sum < length){
2080 drawcoord.left = corners[0].x + roundr(ang_sin * (REAL) height);
2081 drawcoord.top = corners[0].y + roundr(ang_cos * (REAL) height);
2082
2083 GetTextExtentExPointW(graphics->hdc, stringdup + sum, length - sum,
2084 nwidth, &fit, NULL, &size);
2085 fitcpy = fit;
2086
2087 if(fit == 0){
2088 DrawTextW(graphics->hdc, stringdup + sum, 1, &drawcoord, DT_NOCLIP |
2089 DT_EXPANDTABS);
2090 break;
2091 }
2092
2093 for(lret = 0; lret < fit; lret++)
2094 if(*(stringdup + sum + lret) == '\n')
2095 break;
2096
2097 /* Line break code (may look strange, but it imitates windows). */
2098 if(lret < fit)
2099 fit = lret; /* this is not an off-by-one error */
2100 else if(fit < (length - sum)){
2101 if(*(stringdup + sum + fit) == ' ')
2102 while(*(stringdup + sum + fit) == ' ')
2103 fit++;
2104 else
2105 while(*(stringdup + sum + fit - 1) != ' '){
2106 fit--;
2107
2108 if(*(stringdup + sum + fit) == '\t')
2109 break;
2110
2111 if(fit == 0){
2112 fit = fitcpy;
2113 break;
2114 }
2115 }
2116 }
2117 DrawTextW(graphics->hdc, stringdup + sum, min(length - sum, fit),
2118 &drawcoord, DT_NOCLIP | DT_EXPANDTABS);
2119
2120 sum += fit + (lret < fitcpy ? 1 : 0);
2121 height += size.cy;
2122
2123 if(height > nheight)
2124 break;
2125
2126 /* Stop if this was a linewrap (but not if it was a linebreak). */
2127 if((lret == fitcpy) && format && (format->attr & StringFormatFlagsNoWrap))
2128 break;
2129 }
2130
2131 GdipFree(stringdup);
2132 DeleteObject(rgn);
2133 DeleteObject(gdifont);
2134
2135 RestoreDC(graphics->hdc, save_state);
2136
2137 return Ok;
2138 }
2139
2140 GpStatus WINGDIPAPI GdipFillClosedCurve2(GpGraphics *graphics, GpBrush *brush,
2141 GDIPCONST GpPointF *points, INT count, REAL tension, GpFillMode fill)
2142 {
2143 GpPath *path;
2144 GpStatus stat;
2145
2146 TRACE("(%p, %p, %p, %d, %.2f, %d)\n", graphics, brush, points,
2147 count, tension, fill);
2148
2149 if(!graphics || !brush || !points)
2150 return InvalidParameter;
2151
2152 if(graphics->busy)
2153 return ObjectBusy;
2154
2155 stat = GdipCreatePath(fill, &path);
2156 if(stat != Ok)
2157 return stat;
2158
2159 stat = GdipAddPathClosedCurve2(path, points, count, tension);
2160 if(stat != Ok){
2161 GdipDeletePath(path);
2162 return stat;
2163 }
2164
2165 stat = GdipFillPath(graphics, brush, path);
2166 if(stat != Ok){
2167 GdipDeletePath(path);
2168 return stat;
2169 }
2170
2171 GdipDeletePath(path);
2172
2173 return Ok;
2174 }
2175
2176 GpStatus WINGDIPAPI GdipFillClosedCurve2I(GpGraphics *graphics, GpBrush *brush,
2177 GDIPCONST GpPoint *points, INT count, REAL tension, GpFillMode fill)
2178 {
2179 GpPointF *ptf;
2180 GpStatus stat;
2181 INT i;
2182
2183 TRACE("(%p, %p, %p, %d, %.2f, %d)\n", graphics, brush, points,
2184 count, tension, fill);
2185
2186 if(!points || count <= 0)
2187 return InvalidParameter;
2188
2189 ptf = GdipAlloc(sizeof(GpPointF)*count);
2190 if(!ptf)
2191 return OutOfMemory;
2192
2193 for(i = 0;i < count;i++){
2194 ptf[i].X = (REAL)points[i].X;
2195 ptf[i].Y = (REAL)points[i].Y;
2196 }
2197
2198 stat = GdipFillClosedCurve2(graphics, brush, ptf, count, tension, fill);
2199
2200 GdipFree(ptf);
2201
2202 return stat;
2203 }
2204
2205 GpStatus WINGDIPAPI GdipFillEllipse(GpGraphics *graphics, GpBrush *brush, REAL x,
2206 REAL y, REAL width, REAL height)
2207 {
2208 INT save_state;
2209 GpPointF ptf[2];
2210 POINT pti[2];
2211
2212 TRACE("(%p, %p, %.2f, %.2f, %.2f, %.2f)\n", graphics, brush, x, y, width, height);
2213
2214 if(!graphics || !brush)
2215 return InvalidParameter;
2216
2217 if(graphics->busy)
2218 return ObjectBusy;
2219
2220 ptf[0].X = x;
2221 ptf[0].Y = y;
2222 ptf[1].X = x + width;
2223 ptf[1].Y = y + height;
2224
2225 save_state = SaveDC(graphics->hdc);
2226 EndPath(graphics->hdc);
2227 SelectObject(graphics->hdc, brush->gdibrush);
2228 SelectObject(graphics->hdc, GetStockObject(NULL_PEN));
2229
2230 transform_and_round_points(graphics, pti, ptf, 2);
2231
2232 Ellipse(graphics->hdc, pti[0].x, pti[0].y, pti[1].x, pti[1].y);
2233
2234 RestoreDC(graphics->hdc, save_state);
2235
2236 return Ok;
2237 }
2238
2239 GpStatus WINGDIPAPI GdipFillEllipseI(GpGraphics *graphics, GpBrush *brush, INT x,
2240 INT y, INT width, INT height)
2241 {
2242 TRACE("(%p, %p, %d, %d, %d, %d)\n", graphics, brush, x, y, width, height);
2243
2244 return GdipFillEllipse(graphics,brush,(REAL)x,(REAL)y,(REAL)width,(REAL)height);
2245 }
2246
2247 GpStatus WINGDIPAPI GdipFillPath(GpGraphics *graphics, GpBrush *brush, GpPath *path)
2248 {
2249 INT save_state;
2250 GpStatus retval;
2251
2252 TRACE("(%p, %p, %p)\n", graphics, brush, path);
2253
2254 if(!brush || !graphics || !path)
2255 return InvalidParameter;
2256
2257 if(graphics->busy)
2258 return ObjectBusy;
2259
2260 save_state = SaveDC(graphics->hdc);
2261 EndPath(graphics->hdc);
2262 SetPolyFillMode(graphics->hdc, (path->fill == FillModeAlternate ? ALTERNATE
2263 : WINDING));
2264
2265 BeginPath(graphics->hdc);
2266 retval = draw_poly(graphics, NULL, path->pathdata.Points,
2267 path->pathdata.Types, path->pathdata.Count, FALSE);
2268
2269 if(retval != Ok)
2270 goto end;
2271
2272 EndPath(graphics->hdc);
2273 brush_fill_path(graphics, brush);
2274
2275 retval = Ok;
2276
2277 end:
2278 RestoreDC(graphics->hdc, save_state);
2279
2280 return retval;
2281 }
2282
2283 GpStatus WINGDIPAPI GdipFillPie(GpGraphics *graphics, GpBrush *brush, REAL x,
2284 REAL y, REAL width, REAL height, REAL startAngle, REAL sweepAngle)
2285 {
2286 INT save_state;
2287
2288 TRACE("(%p, %p, %.2f, %.2f, %.2f, %.2f, %.2f, %.2f)\n",
2289 graphics, brush, x, y, width, height, startAngle, sweepAngle);
2290
2291 if(!graphics || !brush)
2292 return InvalidParameter;
2293
2294 if(graphics->busy)
2295 return ObjectBusy;
2296
2297 save_state = SaveDC(graphics->hdc);
2298 EndPath(graphics->hdc);
2299 SelectObject(graphics->hdc, brush->gdibrush);
2300 SelectObject(graphics->hdc, GetStockObject(NULL_PEN));
2301
2302 draw_pie(graphics, x, y, width, height, startAngle, sweepAngle);
2303
2304 RestoreDC(graphics->hdc, save_state);
2305
2306 return Ok;
2307 }
2308
2309 GpStatus WINGDIPAPI GdipFillPieI(GpGraphics *graphics, GpBrush *brush, INT x,
2310 INT y, INT width, INT height, REAL startAngle, REAL sweepAngle)
2311 {
2312 TRACE("(%p, %p, %d, %d, %d, %d, %.2f, %.2f)\n",
2313 graphics, brush, x, y, width, height, startAngle, sweepAngle);
2314
2315 return GdipFillPie(graphics,brush,(REAL)x,(REAL)y,(REAL)width,(REAL)height,startAngle,sweepAngle);
2316 }
2317
2318 GpStatus WINGDIPAPI GdipFillPolygon(GpGraphics *graphics, GpBrush *brush,
2319 GDIPCONST GpPointF *points, INT count, GpFillMode fillMode)
2320 {
2321 INT save_state;
2322 GpPointF *ptf = NULL;
2323 POINT *pti = NULL;
2324 GpStatus retval = Ok;
2325
2326 TRACE("(%p, %p, %p, %d, %d)\n", graphics, brush, points, count, fillMode);
2327
2328 if(!graphics || !brush || !points || !count)
2329 return InvalidParameter;
2330
2331 if(graphics->busy)
2332 return ObjectBusy;
2333
2334 ptf = GdipAlloc(count * sizeof(GpPointF));
2335 pti = GdipAlloc(count * sizeof(POINT));
2336 if(!ptf || !pti){
2337 retval = OutOfMemory;
2338 goto end;
2339 }
2340
2341 memcpy(ptf, points, count * sizeof(GpPointF));
2342
2343 save_state = SaveDC(graphics->hdc);
2344 EndPath(graphics->hdc);
2345 SelectObject(graphics->hdc, brush->gdibrush);
2346 SelectObject(graphics->hdc, GetStockObject(NULL_PEN));
2347 SetPolyFillMode(graphics->hdc, (fillMode == FillModeAlternate ? ALTERNATE
2348 : WINDING));
2349
2350 transform_and_round_points(graphics, pti, ptf, count);
2351 Polygon(graphics->hdc, pti, count);
2352
2353 RestoreDC(graphics->hdc, save_state);
2354
2355 end:
2356 GdipFree(ptf);
2357 GdipFree(pti);
2358
2359 return retval;
2360 }
2361
2362 GpStatus WINGDIPAPI GdipFillPolygonI(GpGraphics *graphics, GpBrush *brush,
2363 GDIPCONST GpPoint *points, INT count, GpFillMode fillMode)
2364 {
2365 INT save_state, i;
2366 GpPointF *ptf = NULL;
2367 POINT *pti = NULL;
2368 GpStatus retval = Ok;
2369
2370 TRACE("(%p, %p, %p, %d, %d)\n", graphics, brush, points, count, fillMode);
2371
2372 if(!graphics || !brush || !points || !count)
2373 return InvalidParameter;
2374
2375 if(graphics->busy)
2376 return ObjectBusy;
2377
2378 ptf = GdipAlloc(count * sizeof(GpPointF));
2379 pti = GdipAlloc(count * sizeof(POINT));
2380 if(!ptf || !pti){
2381 retval = OutOfMemory;
2382 goto end;
2383 }
2384
2385 for(i = 0; i < count; i ++){
2386 ptf[i].X = (REAL) points[i].X;
2387 ptf[i].Y = (REAL) points[i].Y;
2388 }
2389
2390 save_state = SaveDC(graphics->hdc);
2391 EndPath(graphics->hdc);
2392 SelectObject(graphics->hdc, brush->gdibrush);
2393 SelectObject(graphics->hdc, GetStockObject(NULL_PEN));
2394 SetPolyFillMode(graphics->hdc, (fillMode == FillModeAlternate ? ALTERNATE
2395 : WINDING));
2396
2397 transform_and_round_points(graphics, pti, ptf, count);
2398 Polygon(graphics->hdc, pti, count);
2399
2400 RestoreDC(graphics->hdc, save_state);
2401
2402 end:
2403 GdipFree(ptf);
2404 GdipFree(pti);
2405
2406 return retval;
2407 }
2408
2409 GpStatus WINGDIPAPI GdipFillPolygon2(GpGraphics *graphics, GpBrush *brush,
2410 GDIPCONST GpPointF *points, INT count)
2411 {
2412 TRACE("(%p, %p, %p, %d)\n", graphics, brush, points, count);
2413
2414 return GdipFillPolygon(graphics, brush, points, count, FillModeAlternate);
2415 }
2416
2417 GpStatus WINGDIPAPI GdipFillPolygon2I(GpGraphics *graphics, GpBrush *brush,
2418 GDIPCONST GpPoint *points, INT count)
2419 {
2420 TRACE("(%p, %p, %p, %d)\n", graphics, brush, points, count);
2421
2422 return GdipFillPolygonI(graphics, brush, points, count, FillModeAlternate);
2423 }
2424
2425 GpStatus WINGDIPAPI GdipFillRectangle(GpGraphics *graphics, GpBrush *brush,
2426 REAL x, REAL y, REAL width, REAL height)
2427 {
2428 INT save_state;
2429 GpPointF ptf[4];
2430 POINT pti[4];
2431
2432 TRACE("(%p, %p, %.2f, %.2f, %.2f, %.2f)\n", graphics, brush, x, y, width, height);
2433
2434 if(!graphics || !brush)
2435 return InvalidParameter;
2436
2437 if(graphics->busy)
2438 return ObjectBusy;
2439
2440 ptf[0].X = x;
2441 ptf[0].Y = y;
2442 ptf[1].X = x + width;
2443 ptf[1].Y = y;
2444 ptf[2].X = x + width;
2445 ptf[2].Y = y + height;
2446 ptf[3].X = x;
2447 ptf[3].Y = y + height;
2448
2449 save_state = SaveDC(graphics->hdc);
2450 EndPath(graphics->hdc);
2451 SelectObject(graphics->hdc, brush->gdibrush);
2452 SelectObject(graphics->hdc, GetStockObject(NULL_PEN));
2453
2454 transform_and_round_points(graphics, pti, ptf, 4);
2455
2456 Polygon(graphics->hdc, pti, 4);
2457
2458 RestoreDC(graphics->hdc, save_state);
2459
2460 return Ok;
2461 }
2462
2463 GpStatus WINGDIPAPI GdipFillRectangleI(GpGraphics *graphics, GpBrush *brush,
2464 INT x, INT y, INT width, INT height)
2465 {
2466 INT save_state;
2467 GpPointF ptf[4];
2468 POINT pti[4];
2469
2470 TRACE("(%p, %p, %d, %d, %d, %d)\n", graphics, brush, x, y, width, height);
2471
2472 if(!graphics || !brush)
2473 return InvalidParameter;
2474
2475 if(graphics->busy)
2476 return ObjectBusy;
2477
2478 ptf[0].X = x;
2479 ptf[0].Y = y;
2480 ptf[1].X = x + width;
2481 ptf[1].Y = y;
2482 ptf[2].X = x + width;
2483 ptf[2].Y = y + height;
2484 ptf[3].X = x;
2485 ptf[3].Y = y + height;
2486
2487 save_state = SaveDC(graphics->hdc);
2488 EndPath(graphics->hdc);
2489 SelectObject(graphics->hdc, brush->gdibrush);
2490 SelectObject(graphics->hdc, GetStockObject(NULL_PEN));
2491
2492 transform_and_round_points(graphics, pti, ptf, 4);
2493
2494 Polygon(graphics->hdc, pti, 4);
2495
2496 RestoreDC(graphics->hdc, save_state);
2497
2498 return Ok;
2499 }
2500
2501 GpStatus WINGDIPAPI GdipFillRectangles(GpGraphics *graphics, GpBrush *brush, GDIPCONST GpRectF *rects,
2502 INT count)
2503 {
2504 GpStatus ret;
2505 INT i;
2506
2507 TRACE("(%p, %p, %p, %d)\n", graphics, brush, rects, count);
2508
2509 if(!rects)
2510 return InvalidParameter;
2511
2512 for(i = 0; i < count; i++){
2513 ret = GdipFillRectangle(graphics, brush, rects[i].X, rects[i].Y, rects[i].Width, rects[i].Height);
2514 if(ret != Ok) return ret;
2515 }
2516
2517 return Ok;
2518 }
2519
2520 GpStatus WINGDIPAPI GdipFillRectanglesI(GpGraphics *graphics, GpBrush *brush, GDIPCONST GpRect *rects,
2521 INT count)
2522 {
2523 GpRectF *rectsF;
2524 GpStatus ret;
2525 INT i;
2526
2527 TRACE("(%p, %p, %p, %d)\n", graphics, brush, rects, count);
2528
2529 if(!rects || count <= 0)
2530 return InvalidParameter;
2531
2532 rectsF = GdipAlloc(sizeof(GpRectF)*count);
2533 if(!rectsF)
2534 return OutOfMemory;
2535
2536 for(i = 0; i < count; i++){
2537 rectsF[i].X = (REAL)rects[i].X;
2538 rectsF[i].Y = (REAL)rects[i].Y;
2539 rectsF[i].X = (REAL)rects[i].Width;
2540 rectsF[i].Height = (REAL)rects[i].Height;
2541 }
2542
2543 ret = GdipFillRectangles(graphics,brush,rectsF,count);
2544 GdipFree(rectsF);
2545
2546 return ret;
2547 }
2548
2549 /*****************************************************************************
2550 * GdipFillRegion [GDIPLUS.@]
2551 */
2552 GpStatus WINGDIPAPI GdipFillRegion(GpGraphics* graphics, GpBrush* brush,
2553 GpRegion* region)
2554 {
2555 INT save_state;
2556 GpStatus status;
2557 HRGN hrgn;
2558
2559 TRACE("(%p, %p, %p)\n", graphics, brush, region);
2560
2561 if (!(graphics && brush && region))
2562 return InvalidParameter;
2563
2564 if(graphics->busy)
2565 return ObjectBusy;
2566
2567 status = GdipGetRegionHRgn(region, graphics, &hrgn);
2568 if(status != Ok)
2569 return status;
2570
2571 save_state = SaveDC(graphics->hdc);
2572 EndPath(graphics->hdc);
2573 SelectObject(graphics->hdc, GetStockObject(NULL_PEN));
2574
2575 FillRgn(graphics->hdc, hrgn, brush->gdibrush);
2576
2577 RestoreDC(graphics->hdc, save_state);
2578
2579 DeleteObject(hrgn);
2580
2581 return Ok;
2582 }
2583
2584 GpStatus WINGDIPAPI GdipFlush(GpGraphics *graphics, GpFlushIntention intention)
2585 {
2586 static int calls;
2587
2588 if(!graphics)
2589 return InvalidParameter;
2590
2591 if(graphics->busy)
2592 return ObjectBusy;
2593
2594 if(!(calls++))
2595 FIXME("not implemented\n");
2596
2597 return NotImplemented;
2598 }
2599
2600 /*****************************************************************************
2601 * GdipGetClipBounds [GDIPLUS.@]
2602 */
2603 GpStatus WINGDIPAPI GdipGetClipBounds(GpGraphics *graphics, GpRectF *rect)
2604 {
2605 TRACE("(%p, %p)\n", graphics, rect);
2606
2607 if(!graphics)
2608 return InvalidParameter;
2609
2610 if(graphics->busy)
2611 return ObjectBusy;
2612
2613 return GdipGetRegionBounds(graphics->clip, graphics, rect);
2614 }
2615
2616 /*****************************************************************************
2617 * GdipGetClipBoundsI [GDIPLUS.@]
2618 */
2619 GpStatus WINGDIPAPI GdipGetClipBoundsI(GpGraphics *graphics, GpRect *rect)
2620 {
2621 TRACE("(%p, %p)\n", graphics, rect);
2622
2623 if(!graphics)
2624 return InvalidParameter;
2625
2626 if(graphics->busy)
2627 return ObjectBusy;
2628
2629 return GdipGetRegionBoundsI(graphics->clip, graphics, rect);
2630 }
2631
2632 /* FIXME: Compositing mode is not used anywhere except the getter/setter. */
2633 GpStatus WINGDIPAPI GdipGetCompositingMode(GpGraphics *graphics,
2634 CompositingMode *mode)
2635 {
2636 TRACE("(%p, %p)\n", graphics, mode);
2637
2638 if(!graphics || !mode)
2639 return InvalidParameter;
2640
2641 if(graphics->busy)
2642 return ObjectBusy;
2643
2644 *mode = graphics->compmode;
2645
2646 return Ok;
2647 }
2648
2649 /* FIXME: Compositing quality is not used anywhere except the getter/setter. */
2650 GpStatus WINGDIPAPI GdipGetCompositingQuality(GpGraphics *graphics,
2651 CompositingQuality *quality)
2652 {
2653 TRACE("(%p, %p)\n", graphics, quality);
2654
2655 if(!graphics || !quality)
2656 return InvalidParameter;
2657
2658 if(graphics->busy)
2659 return ObjectBusy;
2660
2661 *quality = graphics->compqual;
2662
2663 return Ok;
2664 }
2665
2666 /* FIXME: Interpolation mode is not used anywhere except the getter/setter. */
2667 GpStatus WINGDIPAPI GdipGetInterpolationMode(GpGraphics *graphics,
2668 InterpolationMode *mode)
2669 {
2670 TRACE("(%p, %p)\n", graphics, mode);
2671
2672 if(!graphics || !mode)
2673 return InvalidParameter;
2674
2675 if(graphics->busy)
2676 return ObjectBusy;
2677
2678 *mode = graphics->interpolation;
2679
2680 return Ok;
2681 }
2682
2683 GpStatus WINGDIPAPI GdipGetNearestColor(GpGraphics *graphics, ARGB* argb)
2684 {
2685 if(!graphics || !argb)
2686 return InvalidParameter;
2687
2688 if(graphics->busy)
2689 return ObjectBusy;
2690
2691 FIXME("(%p, %p): stub\n", graphics, argb);
2692
2693 return NotImplemented;
2694 }
2695
2696 GpStatus WINGDIPAPI GdipGetPageScale(GpGraphics *graphics, REAL *scale)
2697 {
2698 TRACE("(%p, %p)\n", graphics, scale);
2699
2700 if(!graphics || !scale)
2701 return InvalidParameter;
2702
2703 if(graphics->busy)
2704 return ObjectBusy;
2705
2706 *scale = graphics->scale;
2707
2708 return Ok;
2709 }
2710
2711 GpStatus WINGDIPAPI GdipGetPageUnit(GpGraphics *graphics, GpUnit *unit)
2712 {
2713 TRACE("(%p, %p)\n", graphics, unit);
2714
2715 if(!graphics || !unit)
2716 return InvalidParameter;
2717
2718 if(graphics->busy)
2719 return ObjectBusy;
2720
2721 *unit = graphics->unit;
2722
2723 return Ok;
2724 }
2725
2726 /* FIXME: Pixel offset mode is not used anywhere except the getter/setter. */
2727 GpStatus WINGDIPAPI GdipGetPixelOffsetMode(GpGraphics *graphics, PixelOffsetMode
2728 *mode)
2729 {
2730 TRACE("(%p, %p)\n", graphics, mode);
2731
2732 if(!graphics || !mode)
2733 return InvalidParameter;
2734
2735 if(graphics->busy)
2736 return ObjectBusy;
2737
2738 *mode = graphics->pixeloffset;
2739
2740 return Ok;
2741 }
2742
2743 /* FIXME: Smoothing mode is not used anywhere except the getter/setter. */
2744 GpStatus WINGDIPAPI GdipGetSmoothingMode(GpGraphics *graphics, SmoothingMode *mode)
2745 {
2746 TRACE("(%p, %p)\n", graphics, mode);
2747
2748 if(!graphics || !mode)
2749 return InvalidParameter;
2750
2751 if(graphics->busy)
2752 return ObjectBusy;
2753
2754 *mode = graphics->smoothing;
2755
2756 return Ok;
2757 }
2758
2759 GpStatus WINGDIPAPI GdipGetTextContrast(GpGraphics *graphics, UINT *contrast)
2760 {
2761 TRACE("(%p, %p)\n", graphics, contrast);
2762
2763 if(!graphics || !contrast)
2764 return InvalidParameter;
2765
2766 *contrast = graphics->textcontrast;
2767
2768 return Ok;
2769 }
2770
2771 /* FIXME: Text rendering hint is not used anywhere except the getter/setter. */
2772 GpStatus WINGDIPAPI GdipGetTextRenderingHint(GpGraphics *graphics,
2773 TextRenderingHint *hint)
2774 {
2775 TRACE("(%p, %p)\n", graphics, hint);
2776
2777 if(!graphics || !hint)
2778 return InvalidParameter;
2779
2780 if(graphics->busy)
2781 return ObjectBusy;
2782
2783 *hint = graphics->texthint;
2784
2785 return Ok;
2786 }
2787
2788 GpStatus WINGDIPAPI GdipGetWorldTransform(GpGraphics *graphics, GpMatrix *matrix)
2789 {
2790 TRACE("(%p, %p)\n", graphics, matrix);
2791
2792 if(!graphics || !matrix)
2793 return InvalidParameter;
2794
2795 if(graphics->busy)
2796 return ObjectBusy;
2797
2798 *matrix = *graphics->worldtrans;
2799 return Ok;
2800 }
2801
2802 GpStatus WINGDIPAPI GdipGraphicsClear(GpGraphics *graphics, ARGB color)
2803 {
2804 GpSolidFill *brush;
2805 GpStatus stat;
2806 RECT rect;
2807
2808 TRACE("(%p, %x)\n", graphics, color);
2809
2810 if(!graphics)
2811 return InvalidParameter;
2812
2813 if(graphics->busy)
2814 return ObjectBusy;
2815
2816 if((stat = GdipCreateSolidFill(color, &brush)) != Ok)
2817 return stat;
2818
2819 if(graphics->hwnd){
2820 if(!GetWindowRect(graphics->hwnd, &rect)){
2821 GdipDeleteBrush((GpBrush*)brush);
2822 return GenericError;
2823 }
2824
2825 GdipFillRectangle(graphics, (GpBrush*)brush, 0.0, 0.0, (REAL)(rect.right - rect.left),
2826 (REAL)(rect.bottom - rect.top));
2827 }
2828 else
2829 GdipFillRectangle(graphics, (GpBrush*)brush, 0.0, 0.0, (REAL)GetDeviceCaps(graphics->hdc, HORZRES),
2830 (REAL)GetDeviceCaps(graphics->hdc, VERTRES));
2831
2832 GdipDeleteBrush((GpBrush*)brush);
2833
2834 return Ok;
2835 }
2836
2837 GpStatus WINGDIPAPI GdipIsClipEmpty(GpGraphics *graphics, BOOL *res)
2838 {
2839 TRACE("(%p, %p)\n", graphics, res);
2840
2841 if(!graphics || !res)
2842 return InvalidParameter;
2843
2844 return GdipIsEmptyRegion(graphics->clip, graphics, res);
2845 }
2846
2847 GpStatus WINGDIPAPI GdipIsVisiblePoint(GpGraphics *graphics, REAL x, REAL y, BOOL *result)
2848 {
2849 FIXME("(%p, %.2f, %.2f, %p) stub\n", graphics, x, y, result);
2850
2851 if(!graphics || !result)
2852 return InvalidParameter;
2853
2854 if(graphics->busy)
2855 return ObjectBusy;
2856
2857 return NotImplemented;
2858 }
2859
2860 GpStatus WINGDIPAPI GdipIsVisiblePointI(GpGraphics *graphics, INT x, INT y, BOOL *result)
2861 {
2862 FIXME("(%p, %d, %d, %p) stub\n", graphics, x, y, result);
2863
2864 if(!graphics || !result)
2865 return InvalidParameter;
2866
2867 if(graphics->busy)
2868 return ObjectBusy;
2869
2870 return NotImplemented;
2871 }
2872
2873 GpStatus WINGDIPAPI GdipMeasureCharacterRanges(GpGraphics* graphics,
2874 GDIPCONST WCHAR* string, INT length, GDIPCONST GpFont* font,
2875 GDIPCONST RectF* layoutRect, GDIPCONST GpStringFormat *stringFormat,
2876 INT regionCount, GpRegion** regions)
2877 {
2878 if (!(graphics && string && font && layoutRect && stringFormat && regions))
2879 return InvalidParameter;
2880
2881 FIXME("stub: %p %s %d %p %p %p %d %p\n", graphics, debugstr_w(string),
2882 length, font, layoutRect, stringFormat, regionCount, regions);
2883
2884 return NotImplemented;
2885 }
2886
2887 /* Find the smallest rectangle that bounds the text when it is printed in rect
2888 * according to the format options listed in format. If rect has 0 width and
2889 * height, then just find the smallest rectangle that bounds the text when it's
2890 * printed at location (rect->X, rect-Y). */
2891 GpStatus WINGDIPAPI GdipMeasureString(GpGraphics *graphics,
2892 GDIPCONST WCHAR *string, INT length, GDIPCONST GpFont *font,
2893 GDIPCONST RectF *rect, GDIPCONST GpStringFormat *format, RectF *bounds,
2894 INT *codepointsfitted, INT *linesfilled)
2895 {
2896 HFONT oldfont;
2897 WCHAR* stringdup;
2898 INT sum = 0, height = 0, fit, fitcpy, max_width = 0, i, j, lret, nwidth,
2899 nheight;
2900 SIZE size;
2901
2902 if(!graphics || !string || !font || !rect)
2903 return InvalidParameter;
2904
2905 if(linesfilled) *linesfilled = 0;
2906 if(codepointsfitted) *codepointsfitted = 0;
2907
2908 if(format)
2909 TRACE("may be ignoring some format flags: attr %x\n", format->attr);
2910
2911 if(length == -1) length = lstrlenW(string);
2912
2913 stringdup = GdipAlloc((length + 1) * sizeof(WCHAR));
2914 if(!stringdup) return OutOfMemory;
2915
2916 oldfont = SelectObject(graphics->hdc, CreateFontIndirectW(&font->lfw));
2917 nwidth = roundr(rect->Width);
2918 nheight = roundr(rect->Height);
2919
2920 if((nwidth == 0) && (nheight == 0))
2921 nwidth = nheight = INT_MAX;
2922
2923 for(i = 0, j = 0; i < length; i++){
2924 if(!isprintW(string[i]) && (string[i] != '\n'))
2925 continue;
2926
2927 stringdup[j] = string[i];
2928 j++;
2929 }
2930
2931 stringdup[j] = 0;
2932 length = j;
2933
2934 while(sum < length){
2935 GetTextExtentExPointW(graphics->hdc, stringdup + sum, length - sum,
2936 nwidth, &fit, NULL, &size);
2937 fitcpy = fit;
2938
2939 if(fit == 0)
2940 break;
2941
2942 for(lret = 0; lret < fit; lret++)
2943 if(*(stringdup + sum + lret) == '\n')
2944 break;
2945
2946 /* Line break code (may look strange, but it imitates windows). */
2947 if(lret < fit)
2948 fit = lret; /* this is not an off-by-one error */
2949 else if(fit < (length - sum)){
2950 if(*(stringdup + sum + fit) == ' ')
2951 while(*(stringdup + sum + fit) == ' ')
2952 fit++;
2953 else
2954 while(*(stringdup + sum + fit - 1) != ' '){
2955 fit--;
2956
2957 if(*(stringdup + sum + fit) == '\t')
2958 break;
2959
2960 if(fit == 0){
2961 fit = fitcpy;
2962 break;
2963 }
2964 }
2965 }
2966
2967 GetTextExtentExPointW(graphics->hdc, stringdup + sum, fit,
2968 nwidth, &j, NULL, &size);
2969
2970 sum += fit + (lret < fitcpy ? 1 : 0);
2971 if(codepointsfitted) *codepointsfitted = sum;
2972
2973 height += size.cy;
2974 if(linesfilled) *linesfilled += size.cy;
2975 max_width = max(max_width, size.cx);
2976
2977 if(height > nheight)
2978 break;
2979
2980 /* Stop if this was a linewrap (but not if it was a linebreak). */
2981 if((lret == fitcpy) && format && (format->attr & StringFormatFlagsNoWrap))
2982 break;
2983 }
2984
2985 bounds->X = rect->X;
2986 bounds->Y = rect->Y;
2987 bounds->Width = (REAL)max_width;
2988 bounds->Height = (REAL) min(height, nheight);
2989
2990 GdipFree(stringdup);
2991 DeleteObject(SelectObject(graphics->hdc, oldfont));
2992
2993 return Ok;
2994 }
2995
2996 GpStatus WINGDIPAPI GdipResetClip(GpGraphics *graphics)
2997 {
2998 TRACE("(%p)\n", graphics);
2999
3000 if(!graphics)
3001 return InvalidParameter;
3002
3003 if(graphics->busy)
3004 return ObjectBusy;
3005
3006 return GdipSetInfinite(graphics->clip);
3007 }
3008
3009 GpStatus WINGDIPAPI GdipResetWorldTransform(GpGraphics *graphics)
3010 {
3011 TRACE("(%p)\n", graphics);
3012
3013 if(!graphics)
3014 return InvalidParameter;
3015
3016 if(graphics->busy)
3017 return ObjectBusy;
3018
3019 graphics->worldtrans->matrix[0] = 1.0;
3020 graphics->worldtrans->matrix[1] = 0.0;
3021 graphics->worldtrans->matrix[2] = 0.0;
3022 graphics->worldtrans->matrix[3] = 1.0;
3023 graphics->worldtrans->matrix[4] = 0.0;
3024 graphics->worldtrans->matrix[5] = 0.0;
3025
3026 return Ok;
3027 }
3028
3029 GpStatus WINGDIPAPI GdipRestoreGraphics(GpGraphics *graphics, GraphicsState state)
3030 {
3031 static int calls;
3032
3033 if(!graphics)
3034 return InvalidParameter;
3035
3036 if(!(calls++))
3037 FIXME("graphics state not implemented\n");
3038
3039 return Ok;
3040 }
3041
3042 GpStatus WINGDIPAPI GdipRotateWorldTransform(GpGraphics *graphics, REAL angle,
3043 GpMatrixOrder order)
3044 {
3045 TRACE("(%p, %.2f, %d)\n", graphics, angle, order);
3046
3047 if(!graphics)
3048 return InvalidParameter;
3049
3050 if(graphics->busy)
3051 return ObjectBusy;
3052
3053 return GdipRotateMatrix(graphics->worldtrans, angle, order);
3054 }
3055
3056 GpStatus WINGDIPAPI GdipSaveGraphics(GpGraphics *graphics, GraphicsState *state)
3057 {
3058 static int calls;
3059
3060 if(!graphics || !state)
3061 return InvalidParameter;
3062
3063 if(!(calls++))
3064 FIXME("graphics state not implemented\n");
3065
3066 *state = 0xdeadbeef;
3067 return Ok;
3068 }
3069
3070 GpStatus WINGDIPAPI GdipBeginContainer2(GpGraphics *graphics, GraphicsContainer *state)
3071 {
3072 FIXME("(%p, %p)\n", graphics, state);
3073
3074 if(!graphics || !state)
3075 return InvalidParameter;
3076
3077 *state = 0xdeadbeef;
3078 return Ok;
3079 }
3080
3081 GpStatus WINGDIPAPI GdipEndContainer(GpGraphics *graphics, GraphicsState state)
3082 {
3083 FIXME("(%p, 0x%x)\n", graphics, state);
3084
3085 if(!graphics || !state)
3086 return InvalidParameter;
3087
3088 return Ok;
3089 }
3090
3091 GpStatus WINGDIPAPI GdipScaleWorldTransform(GpGraphics *graphics, REAL sx,
3092 REAL sy, GpMatrixOrder order)
3093 {
3094 TRACE("(%p, %.2f, %.2f, %d)\n", graphics, sx, sy, order);
3095
3096 if(!graphics)
3097 return InvalidParameter;
3098
3099 if(graphics->busy)
3100 return ObjectBusy;
3101
3102 return GdipScaleMatrix(graphics->worldtrans, sx, sy, order);
3103 }
3104
3105 GpStatus WINGDIPAPI GdipSetClipGraphics(GpGraphics *graphics, GpGraphics *srcgraphics,
3106 CombineMode mode)
3107 {
3108 TRACE("(%p, %p, %d)\n", graphics, srcgraphics, mode);
3109
3110 if(!graphics || !srcgraphics)
3111 return InvalidParameter;
3112
3113 return GdipCombineRegionRegion(graphics->clip, srcgraphics->clip, mode);
3114 }
3115
3116 GpStatus WINGDIPAPI GdipSetCompositingMode(GpGraphics *graphics,
3117 CompositingMode mode)
3118 {
3119 TRACE("(%p, %d)\n", graphics, mode);
3120
3121 if(!graphics)
3122 return InvalidParameter;
3123
3124 if(graphics->busy)
3125 return ObjectBusy;
3126
3127 graphics->compmode = mode;
3128
3129 return Ok;
3130 }
3131
3132 GpStatus WINGDIPAPI GdipSetCompositingQuality(GpGraphics *graphics,
3133 CompositingQuality quality)
3134 {
3135 TRACE("(%p, %d)\n", graphics, quality);
3136
3137 if(!graphics)
3138 return InvalidParameter;
3139
3140 if(graphics->busy)
3141 return ObjectBusy;
3142
3143 graphics->compqual = quality;
3144
3145 return Ok;
3146 }
3147
3148 GpStatus WINGDIPAPI GdipSetInterpolationMode(GpGraphics *graphics,
3149 InterpolationMode mode)
3150 {
3151 TRACE("(%p, %d)\n", graphics, mode);
3152
3153 if(!graphics)
3154 return InvalidParameter;
3155
3156 if(graphics->busy)
3157 return ObjectBusy;
3158
3159 graphics->interpolation = mode;
3160
3161 return Ok;
3162 }
3163
3164 GpStatus WINGDIPAPI GdipSetPageScale(GpGraphics *graphics, REAL scale)
3165 {
3166 TRACE("(%p, %.2f)\n", graphics, scale);
3167
3168 if(!graphics || (scale <= 0.0))
3169 return InvalidParameter;
3170
3171 if(graphics->busy)
3172 return ObjectBusy;
3173
3174 graphics->scale = scale;
3175
3176 return Ok;
3177 }
3178
3179 GpStatus WINGDIPAPI GdipSetPageUnit(GpGraphics *graphics, GpUnit unit)
3180 {
3181 TRACE("(%p, %d)\n", graphics, unit);
3182
3183 if(!graphics)
3184 return InvalidParameter;
3185
3186 if(graphics->busy)
3187 return ObjectBusy;
3188
3189 if(unit == UnitWorld)
3190 return InvalidParameter;
3191
3192 graphics->unit = unit;
3193
3194 return Ok;
3195 }
3196
3197 GpStatus WINGDIPAPI GdipSetPixelOffsetMode(GpGraphics *graphics, PixelOffsetMode
3198 mode)
3199 {
3200 TRACE("(%p, %d)\n", graphics, mode);
3201
3202 if(!graphics)
3203 return InvalidParameter;
3204
3205 if(graphics->busy)
3206 return ObjectBusy;
3207
3208 graphics->pixeloffset = mode;
3209
3210 return Ok;
3211 }
3212
3213 GpStatus WINGDIPAPI GdipSetSmoothingMode(GpGraphics *graphics, SmoothingMode mode)
3214 {
3215 TRACE("(%p, %d)\n", graphics, mode);
3216
3217 if(!graphics)
3218 return InvalidParameter;
3219
3220 if(graphics->busy)
3221 return ObjectBusy;
3222
3223 graphics->smoothing = mode;
3224
3225 return Ok;
3226 }
3227
3228 GpStatus WINGDIPAPI GdipSetTextContrast(GpGraphics *graphics, UINT contrast)
3229 {
3230 TRACE("(%p, %d)\n", graphics, contrast);
3231
3232 if(!graphics)
3233 return InvalidParameter;
3234
3235 graphics->textcontrast = contrast;
3236
3237 return Ok;
3238 }
3239
3240 GpStatus WINGDIPAPI GdipSetTextRenderingHint(GpGraphics *graphics,
3241 TextRenderingHint hint)
3242 {
3243 TRACE("(%p, %d)\n", graphics, hint);
3244
3245 if(!graphics)
3246 return InvalidParameter;
3247
3248 if(graphics->busy)
3249 return ObjectBusy;
3250
3251 graphics->texthint = hint;
3252
3253 return Ok;
3254 }
3255
3256 GpStatus WINGDIPAPI GdipSetWorldTransform(GpGraphics *graphics, GpMatrix *matrix)
3257 {
3258 TRACE("(%p, %p)\n", graphics, matrix);
3259
3260 if(!graphics || !matrix)
3261 return InvalidParameter;
3262
3263 if(graphics->busy)
3264 return ObjectBusy;
3265
3266 GdipDeleteMatrix(graphics->worldtrans);
3267 return GdipCloneMatrix(matrix, &graphics->worldtrans);
3268 }
3269
3270 GpStatus WINGDIPAPI GdipTranslateWorldTransform(GpGraphics *graphics, REAL dx,
3271 REAL dy, GpMatrixOrder order)
3272 {
3273 TRACE("(%p, %.2f, %.2f, %d)\n", graphics, dx, dy, order);
3274
3275 if(!graphics)
3276 return InvalidParameter;
3277
3278 if(graphics->busy)
3279 return ObjectBusy;
3280
3281 return GdipTranslateMatrix(graphics->worldtrans, dx, dy, order);
3282 }
3283
3284 /*****************************************************************************
3285 * GdipSetClipHrgn [GDIPLUS.@]
3286 */
3287 GpStatus WINGDIPAPI GdipSetClipHrgn(GpGraphics *graphics, HRGN hrgn, CombineMode mode)
3288 {
3289 GpRegion *region;
3290 GpStatus status;
3291
3292 TRACE("(%p, %p, %d)\n", graphics, hrgn, mode);
3293
3294 if(!graphics)
3295 return InvalidParameter;
3296
3297 status = GdipCreateRegionHrgn(hrgn, &region);
3298 if(status != Ok)
3299 return status;
3300
3301 status = GdipSetClipRegion(graphics, region, mode);
3302
3303 GdipDeleteRegion(region);
3304 return status;
3305 }
3306
3307 GpStatus WINGDIPAPI GdipSetClipPath(GpGraphics *graphics, GpPath *path, CombineMode mode)
3308 {
3309 TRACE("(%p, %p, %d)\n", graphics, path, mode);
3310
3311 if(!graphics)
3312 return InvalidParameter;
3313
3314 if(graphics->busy)
3315 return ObjectBusy;
3316
3317 return GdipCombineRegionPath(graphics->clip, path, mode);
3318 }
3319
3320 GpStatus WINGDIPAPI GdipSetClipRect(GpGraphics *graphics, REAL x, REAL y,
3321 REAL width, REAL height,
3322 CombineMode mode)
3323 {
3324 GpRectF rect;
3325
3326 TRACE("(%p, %.2f, %.2f, %.2f, %.2f, %d)\n", graphics, x, y, width, height, mode);
3327
3328 if(!graphics)
3329 return InvalidParameter;
3330
3331 if(graphics->busy)
3332 return ObjectBusy;
3333
3334 rect.X = x;
3335 rect.Y = y;
3336 rect.Width = width;
3337 rect.Height = height;
3338
3339 return GdipCombineRegionRect(graphics->clip, &rect, mode);
3340 }
3341
3342 GpStatus WINGDIPAPI GdipSetClipRectI(GpGraphics *graphics, INT x, INT y,
3343 INT width, INT height,
3344 CombineMode mode)
3345 {
3346 TRACE("(%p, %d, %d, %d, %d, %d)\n", graphics, x, y, width, height, mode);
3347
3348 if(!graphics)
3349 return InvalidParameter;
3350
3351 if(graphics->busy)
3352 return ObjectBusy;
3353
3354 return GdipSetClipRect(graphics, (REAL)x, (REAL)y, (REAL)width, (REAL)height, mode);
3355 }
3356
3357 GpStatus WINGDIPAPI GdipSetClipRegion(GpGraphics *graphics, GpRegion *region,
3358 CombineMode mode)
3359 {
3360 TRACE("(%p, %p, %d)\n", graphics, region, mode);
3361
3362 if(!graphics || !region)
3363 return InvalidParameter;
3364
3365 if(graphics->busy)
3366 return ObjectBusy;
3367
3368 return GdipCombineRegionRegion(graphics->clip, region, mode);
3369 }
3370
3371 GpStatus WINGDIPAPI GdipSetMetafileDownLevelRasterizationLimit(GpMetafile *metafile,
3372 UINT limitDpi)
3373 {
3374 static int calls;
3375
3376 if(!(calls++))
3377 FIXME("not implemented\n");
3378
3379 return NotImplemented;
3380 }
3381
3382 GpStatus WINGDIPAPI GdipDrawPolygon(GpGraphics *graphics,GpPen *pen,GDIPCONST GpPointF *points,
3383 INT count)
3384 {
3385 INT save_state;
3386 POINT *pti;
3387
3388 TRACE("(%p, %p, %d)\n", graphics, points, count);
3389
3390 if(!graphics || !pen || count<=0)
3391 return InvalidParameter;
3392
3393 if(graphics->busy)
3394 return ObjectBusy;
3395
3396 pti = GdipAlloc(sizeof(POINT) * count);
3397
3398 save_state = prepare_dc(graphics, pen);
3399 SelectObject(graphics->hdc, GetStockObject(NULL_BRUSH));
3400
3401 transform_and_round_points(graphics, pti, (GpPointF*)points, count);
3402 Polygon(graphics->hdc, pti, count);
3403
3404 restore_dc(graphics, save_state);
3405 GdipFree(pti);
3406
3407 return Ok;
3408 }
3409
3410 GpStatus WINGDIPAPI GdipDrawPolygonI(GpGraphics *graphics,GpPen *pen,GDIPCONST GpPoint *points,
3411 INT count)
3412 {
3413 GpStatus ret;
3414 GpPointF *ptf;
3415 INT i;
3416
3417 TRACE("(%p, %p, %p, %d)\n", graphics, pen, points, count);
3418
3419 if(count<=0) return InvalidParameter;
3420 ptf = GdipAlloc(sizeof(GpPointF) * count);
3421
3422 for(i = 0;i < count; i++){
3423 ptf[i].X = (REAL)points[i].X;
3424 ptf[i].Y = (REAL)points[i].Y;
3425 }
3426
3427 ret = GdipDrawPolygon(graphics,pen,ptf,count);
3428 GdipFree(ptf);
3429
3430 return ret;
3431 }
3432
3433 GpStatus WINGDIPAPI GdipGetDpiX(GpGraphics *graphics, REAL* dpi)
3434 {
3435 TRACE("(%p, %p)\n", graphics, dpi);
3436
3437 if(!graphics || !dpi)
3438 return InvalidParameter;
3439
3440 if(graphics->busy)
3441 return ObjectBusy;
3442
3443 *dpi = (REAL)GetDeviceCaps(graphics->hdc, LOGPIXELSX);
3444
3445 return Ok;
3446 }
3447
3448 GpStatus WINGDIPAPI GdipGetDpiY(GpGraphics *graphics, REAL* dpi)
3449 {
3450 TRACE("(%p, %p)\n", graphics, dpi);
3451
3452 if(!graphics || !dpi)
3453 return InvalidParameter;
3454
3455 if(graphics->busy)
3456 return ObjectBusy;
3457
3458 *dpi = (REAL)GetDeviceCaps(graphics->hdc, LOGPIXELSY);
3459
3460 return Ok;
3461 }
3462
3463 GpStatus WINGDIPAPI GdipMultiplyWorldTransform(GpGraphics *graphics, GDIPCONST GpMatrix *matrix,
3464 GpMatrixOrder order)
3465 {
3466 GpMatrix m;
3467 GpStatus ret;
3468
3469 TRACE("(%p, %p, %d)\n", graphics, matrix, order);
3470
3471 if(!graphics || !matrix)
3472 return InvalidParameter;
3473
3474 if(graphics->busy)
3475 return ObjectBusy;
3476
3477 m = *(graphics->worldtrans);
3478
3479 ret = GdipMultiplyMatrix(&m, matrix, order);
3480 if(ret == Ok)
3481 *(graphics->worldtrans) = m;
3482
3483 return ret;
3484 }
3485
3486 GpStatus WINGDIPAPI GdipGetDC(GpGraphics *graphics, HDC *hdc)
3487 {
3488 TRACE("(%p, %p)\n", graphics, hdc);
3489
3490 if(!graphics || !hdc)
3491 return InvalidParameter;
3492
3493 if(graphics->busy)
3494 return ObjectBusy;
3495
3496 *hdc = graphics->hdc;
3497 graphics->busy = TRUE;
3498
3499 return Ok;
3500 }
3501
3502 GpStatus WINGDIPAPI GdipReleaseDC(GpGraphics *graphics, HDC hdc)
3503 {
3504 TRACE("(%p, %p)\n", graphics, hdc);
3505
3506 if(!graphics)
3507 return InvalidParameter;
3508
3509 if(graphics->hdc != hdc || !(graphics->busy))
3510 return InvalidParameter;
3511
3512 graphics->busy = FALSE;
3513
3514 return Ok;
3515 }
3516
3517 GpStatus WINGDIPAPI GdipGetClip(GpGraphics *graphics, GpRegion *region)
3518 {
3519 GpRegion *clip;
3520 GpStatus status;
3521
3522 TRACE("(%p, %p)\n", graphics, region);
3523
3524 if(!graphics || !region)
3525 return InvalidParameter;
3526
3527 if(graphics->busy)
3528 return ObjectBusy;
3529
3530 if((status = GdipCloneRegion(graphics->clip, &clip)) != Ok)
3531 return status;
3532
3533 /* free everything except root node and header */
3534 delete_element(&region->node);
3535 memcpy(region, clip, sizeof(GpRegion));
3536
3537 return Ok;
3538 }
3539
3540 GpStatus WINGDIPAPI GdipTransformPoints(GpGraphics *graphics, GpCoordinateSpace dst_space,
3541 GpCoordinateSpace src_space, GpPointF *points, INT count)
3542 {
3543 if(!graphics || !points || count <= 0)
3544 return InvalidParameter;
3545
3546 if(graphics->busy)
3547 return ObjectBusy;
3548
3549 FIXME("(%p, %d, %d, %p, %d): stub\n", graphics, dst_space, src_space, points, count);
3550
3551 return NotImplemented;
3552 }
3553
3554 GpStatus WINGDIPAPI GdipTransformPointsI(GpGraphics *graphics, GpCoordinateSpace dst_space,
3555 GpCoordinateSpace src_space, GpPoint *points, INT count)
3556 {
3557 FIXME("(%p, %d, %d, %p, %d): stub\n", graphics, dst_space, src_space, points, count);
3558
3559 return NotImplemented;
3560 }
3561
3562 HPALETTE WINGDIPAPI GdipCreateHalftonePalette(void)
3563 {
3564 FIXME("\n");
3565
3566 return NULL;
3567 }
3568
3569 /*****************************************************************************
3570 * GdipTranslateClip [GDIPLUS.@]
3571 */
3572 GpStatus WINGDIPAPI GdipTranslateClip(GpGraphics *graphics, REAL dx, REAL dy)
3573 {
3574 TRACE("(%p, %.2f, %.2f)\n", graphics, dx, dy);
3575
3576 if(!graphics)
3577 return InvalidParameter;
3578
3579 if(graphics->busy)
3580 return ObjectBusy;
3581
3582 return GdipTranslateRegion(graphics->clip, dx, dy);
3583 }
3584
3585 /*****************************************************************************
3586 * GdipTranslateClipI [GDIPLUS.@]
3587 */
3588 GpStatus WINGDIPAPI GdipTranslateClipI(GpGraphics *graphics, INT dx, INT dy)
3589 {
3590 TRACE("(%p, %d, %d)\n", graphics, dx, dy);
3591
3592 if(!graphics)
3593 return InvalidParameter;
3594
3595 if(graphics->busy)
3596 return ObjectBusy;
3597
3598 return GdipTranslateRegion(graphics->clip, (REAL)dx, (REAL)dy);
3599 }