2 * Unit test suite for paths
4 * Copyright 2007 Laurent Vromman
5 * Copyright 2007 Misha Koshelev
7 * This library is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU Lesser General Public
9 * License as published by the Free Software Foundation; either
10 * version 2.1 of the License, or (at your option) any later version.
12 * This library is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * Lesser General Public License for more details.
17 * You should have received a copy of the GNU Lesser General Public
18 * License along with this library; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
29 #include "wine/test.h"
34 #define expect(expected, got) ok(got == expected, "Expected %.8x, got %.8x\n", expected, got)
36 static void test_widenpath(void)
39 HPEN greenPen
, narrowPen
;
43 /* Create a pen to be used in WidenPath */
44 greenPen
= CreatePen(PS_SOLID
, 10, RGB(0,0,0));
45 SelectObject(hdc
, greenPen
);
61 /* Set a polyline path */
63 Polyline(hdc
, pnt
, 6);
66 /* Widen the polyline path */
67 ok(WidenPath(hdc
), "WidenPath fails while widening a poyline path.\n");
69 /* Test if WidenPath seems to have done his job */
70 nSize
= GetPath(hdc
, NULL
, NULL
, 0);
71 ok(nSize
!= -1, "GetPath fails after calling WidenPath.\n");
72 ok(nSize
> 6, "Path number of points is too low. Should be more than 6 but is %d\n", nSize
);
76 /* Test WidenPath with an open path (last error only set on Win2k and later) */
77 SetLastError(0xdeadbeef);
80 ok(ret
== FALSE
&& (GetLastError() == ERROR_CAN_NOT_COMPLETE
|| GetLastError() == 0xdeadbeef),
81 "WidenPath fails while widening an open path. Return value is %d, should be %d. Error is %u\n", ret
, FALSE
, GetLastError());
85 /* Test when the pen width is equal to 1. The path should change too */
86 narrowPen
= CreatePen(PS_SOLID
, 1, RGB(0,0,0));
87 SelectObject(hdc
, narrowPen
);
89 Polyline(hdc
, pnt
, 6);
92 nSize
= GetPath(hdc
, NULL
, NULL
, 0);
93 ok(nSize
> 6, "WidenPath should compute a widdened path with a 1px wide pen. Path length is %d, should be more than 6\n", nSize
);
100 * Tests for GDI drawing functions in paths
108 /* How many extra entries before this one only on wine
109 * but not on native? */
110 int wine_only_entries_preceding
;
112 /* 0 - This entry matches on wine.
113 * 1 - This entry corresponds to a single entry on wine that does not match the native entry.
114 * 2 - This entry is currently skipped on wine but present on native. */
118 /* Helper function to verify that the current path in the given DC matches the expected path.
120 * We use a "smart" matching algorithm that allows us to detect partial improvements
121 * in conformance. Specifically, two running indices are kept, one through the actual
122 * path and one through the expected path. The actual path index increases unless there is
123 * no match and the todo field of the appropriate path_test_t element is 2. Similarly,
124 * if the wine_entries_preceding field of the appropriate path_test_t element is non-zero,
125 * the expected path index does not increase for that many elements as long as there
126 * is no match. This allows us to todo_wine extra path elements that are present only
127 * on wine but not on native and vice versa.
129 * Note that if expected_size is zero and the WINETEST_DEBUG environment variable is
130 * greater than 2, the trace() output is a C path_test_t array structure, useful for making
131 * new tests that use this function.
133 static void ok_path(HDC hdc
, const char *path_name
, const path_test_t
*expected
, int expected_size
, BOOL todo_size
)
135 static const char *type_string
[8] = { "Unknown (0)", "PT_CLOSEFIGURE", "PT_LINETO",
136 "PT_LINETO | PT_CLOSEFIGURE", "PT_BEZIERTO",
137 "PT_BEZIERTO | PT_CLOSEFIGURE", "PT_MOVETO", "PT_MOVETO | PT_CLOSEFIGURE"};
145 size
= GetPath(hdc
, NULL
, NULL
, 0);
146 ok(size
> 0, "GetPath returned size %d, last error %d\n", size
, GetLastError());
149 skip("Cannot perform path comparisons due to failure to retrieve path.\n");
152 pnt
= HeapAlloc(GetProcessHeap(), 0, size
*sizeof(POINT
));
154 types
= HeapAlloc(GetProcessHeap(), 0, size
*sizeof(BYTE
));
156 size
= GetPath(hdc
, pnt
, types
, size
);
159 if (todo_size
) todo_wine
160 ok(size
== expected_size
, "Path size %d does not match expected size %d\n", size
, expected_size
);
162 ok(size
== expected_size
, "Path size %d does not match expected size %d\n", size
, expected_size
);
164 if (winetest_debug
> 2)
165 trace("static const path_test_t %s[] = {\n", path_name
);
167 numskip
= expected_size
? expected
[eidx
].wine_only_entries_preceding
: 0;
168 while (idx
< size
&& eidx
< expected_size
)
170 /* We allow a few pixels fudge in matching X and Y coordinates to account for imprecision in
171 * floating point to integer conversion */
172 BOOL match
= (types
[idx
] == expected
[eidx
].type
) &&
173 (pnt
[idx
].x
>= expected
[eidx
].x
-2 && pnt
[idx
].x
<= expected
[eidx
].x
+2) &&
174 (pnt
[idx
].y
>= expected
[eidx
].y
-2 && pnt
[idx
].y
<= expected
[eidx
].y
+2);
176 if (expected
[eidx
].todo
|| numskip
) todo_wine
177 ok(match
, "Expected #%d: %s (%d,%d) but got %s (%d,%d)\n", eidx
,
178 type_string
[expected
[eidx
].type
], expected
[eidx
].x
, expected
[eidx
].y
,
179 type_string
[types
[idx
]], pnt
[idx
].x
, pnt
[idx
].y
);
181 ok(match
, "Expected #%d: %s (%d,%d) but got %s (%d,%d)\n", eidx
,
182 type_string
[expected
[eidx
].type
], expected
[eidx
].x
, expected
[eidx
].y
,
183 type_string
[types
[idx
]], pnt
[idx
].x
, pnt
[idx
].y
);
185 if (match
|| expected
[eidx
].todo
!= 2)
187 if (winetest_debug
> 2)
188 trace(" {%d, %d, %s, 0, 0}%s /* %d */\n", pnt
[idx
].x
, pnt
[idx
].y
,
189 type_string
[types
[idx
]], idx
< size
-1 ? "," : "};", idx
);
192 if (match
|| !numskip
--)
193 numskip
= expected
[++eidx
].wine_only_entries_preceding
;
196 /* If we are debugging and the actual path is longer than the expected path, make
197 * sure to display the entire path */
198 if (winetest_debug
> 2 && idx
< size
)
199 for (; idx
< size
; idx
++)
200 trace(" {%d, %d, %s, 0, 0}%s /* %d */\n", pnt
[idx
].x
, pnt
[idx
].y
,
201 type_string
[types
[idx
]], idx
< size
-1 ? "," : "};", idx
);
203 HeapFree(GetProcessHeap(), 0, types
);
204 HeapFree(GetProcessHeap(), 0, pnt
);
207 static const path_test_t arcto_path
[] = {
208 {0, 0, PT_MOVETO
, 0, 0}, /* 0 */
209 {229, 215, PT_LINETO
, 0, 0}, /* 1 */
210 {248, 205, PT_BEZIERTO
, 0, 0}, /* 2 */
211 {273, 200, PT_BEZIERTO
, 0, 0}, /* 3 */
212 {300, 200, PT_BEZIERTO
, 0, 0}, /* 4 */
213 {355, 200, PT_BEZIERTO
, 0, 0}, /* 5 */
214 {399, 222, PT_BEZIERTO
, 0, 0}, /* 6 */
215 {399, 250, PT_BEZIERTO
, 0, 0}, /* 7 */
216 {399, 263, PT_BEZIERTO
, 0, 0}, /* 8 */
217 {389, 275, PT_BEZIERTO
, 0, 0}, /* 9 */
218 {370, 285, PT_BEZIERTO
, 0, 0}, /* 10 */
219 {363, 277, PT_LINETO
, 0, 0}, /* 11 */
220 {380, 270, PT_BEZIERTO
, 0, 0}, /* 12 */
221 {389, 260, PT_BEZIERTO
, 0, 0}, /* 13 */
222 {389, 250, PT_BEZIERTO
, 0, 0}, /* 14 */
223 {389, 228, PT_BEZIERTO
, 0, 0}, /* 15 */
224 {349, 210, PT_BEZIERTO
, 0, 0}, /* 16 */
225 {300, 210, PT_BEZIERTO
, 0, 0}, /* 17 */
226 {276, 210, PT_BEZIERTO
, 0, 0}, /* 18 */
227 {253, 214, PT_BEZIERTO
, 0, 0}, /* 19 */
228 {236, 222, PT_BEZIERTO
| PT_CLOSEFIGURE
, 0, 0}}; /* 20 */
230 static void test_arcto(void)
235 SetArcDirection(hdc
, AD_CLOCKWISE
);
236 if (!ArcTo(hdc
, 200, 200, 400, 300, 200, 200, 400, 300) &&
237 GetLastError() == ERROR_CALL_NOT_IMPLEMENTED
)
239 /* ArcTo is only available on Win2k and later */
240 win_skip("ArcTo is not available\n");
243 SetArcDirection(hdc
, AD_COUNTERCLOCKWISE
);
244 ArcTo(hdc
, 210, 210, 390, 290, 390, 290, 210, 210);
248 ok_path(hdc
, "arcto_path", arcto_path
, sizeof(arcto_path
)/sizeof(path_test_t
), 0);
253 static const path_test_t anglearc_path
[] = {
254 {0, 0, PT_MOVETO
, 0, 0}, /* 0 */
255 {371, 229, PT_LINETO
, 0, 0}, /* 1 */
256 {352, 211, PT_BEZIERTO
, 0, 0}, /* 2 */
257 {327, 200, PT_BEZIERTO
, 0, 0}, /* 3 */
258 {300, 200, PT_BEZIERTO
, 0, 0}, /* 4 */
259 {245, 200, PT_BEZIERTO
, 0, 0}, /* 5 */
260 {200, 245, PT_BEZIERTO
, 0, 0}, /* 6 */
261 {200, 300, PT_BEZIERTO
, 0, 0}, /* 7 */
262 {200, 300, PT_BEZIERTO
, 0, 0}, /* 8 */
263 {200, 300, PT_BEZIERTO
, 0, 0}, /* 9 */
264 {200, 300, PT_BEZIERTO
, 0, 0}, /* 10 */
265 {231, 260, PT_LINETO
, 0, 0}, /* 11 */
266 {245, 235, PT_BEZIERTO
, 0, 0}, /* 12 */
267 {271, 220, PT_BEZIERTO
, 0, 0}, /* 13 */
268 {300, 220, PT_BEZIERTO
, 0, 0}, /* 14 */
269 {344, 220, PT_BEZIERTO
, 0, 0}, /* 15 */
270 {380, 256, PT_BEZIERTO
, 0, 0}, /* 16 */
271 {380, 300, PT_BEZIERTO
, 0, 0}, /* 17 */
272 {380, 314, PT_BEZIERTO
, 0, 0}, /* 18 */
273 {376, 328, PT_BEZIERTO
, 0, 0}, /* 19 */
274 {369, 340, PT_BEZIERTO
| PT_CLOSEFIGURE
, 0, 0}}; /* 20 */
276 static void test_anglearc(void)
280 if (!AngleArc(hdc
, 300, 300, 100, 45.0, 135.0) &&
281 GetLastError() == ERROR_CALL_NOT_IMPLEMENTED
)
283 /* AngleArc is only available on Win2k and later */
284 win_skip("AngleArc is not available\n");
287 AngleArc(hdc
, 300, 300, 80, 150.0, -180.0);
291 ok_path(hdc
, "anglearc_path", anglearc_path
, sizeof(anglearc_path
)/sizeof(path_test_t
), 0);
296 static const path_test_t polydraw_path
[] = {
297 {0, 0, PT_MOVETO
, 0, 0}, /*0*/
298 {10, 10, PT_LINETO
, 0, 0}, /*1*/
299 {10, 15, PT_LINETO
| PT_CLOSEFIGURE
, 0, 0}, /*2*/
300 {100, 100, PT_MOVETO
, 0, 0}, /*3*/
301 {95, 95, PT_LINETO
, 0, 0}, /*4*/
302 {10, 10, PT_LINETO
, 0, 0}, /*5*/
303 {10, 15, PT_LINETO
| PT_CLOSEFIGURE
, 0, 0}, /*6*/
304 {100, 100, PT_MOVETO
, 0, 0}, /*7*/
305 {15, 15, PT_LINETO
, 0, 0}, /*8*/
306 {25, 25, PT_MOVETO
, 0, 0}, /*9*/
307 {25, 30, PT_LINETO
, 0, 0}, /*10*/
308 {100, 100, PT_MOVETO
, 0, 0}, /*11*/
309 {30, 30, PT_BEZIERTO
, 0, 0}, /*12*/
310 {30, 35, PT_BEZIERTO
, 0, 0}, /*13*/
311 {35, 35, PT_BEZIERTO
, 0, 0}, /*14*/
312 {35, 40, PT_LINETO
, 0, 0}, /*15*/
313 {40, 40, PT_MOVETO
, 0, 0}, /*16*/
314 {40, 45, PT_LINETO
, 0, 0}, /*17*/
315 {35, 40, PT_MOVETO
, 0, 0}, /*18*/
316 {45, 50, PT_LINETO
, 0, 0}, /*19*/
317 {35, 40, PT_MOVETO
, 0, 0}, /*20*/
318 {50, 55, PT_LINETO
, 0, 0}, /*21*/
319 {45, 50, PT_LINETO
, 0, 0}, /*22*/
320 {35, 40, PT_MOVETO
, 0, 0}, /*23*/
321 {60, 60, PT_LINETO
, 0, 0}, /*24*/
322 {60, 65, PT_MOVETO
, 0, 0}, /*25*/
323 {65, 65, PT_LINETO
, 0, 0} /*26*/
326 static POINT polydraw_pts
[] = {
328 {15, 15}, {15, 20}, {20, 20}, {20, 25},
330 {30, 30}, {30, 35}, {35, 35}, {35, 40},
331 {40, 40}, {40, 45}, {45, 45},
333 {50, 55}, {45, 50}, {55, 60},
334 {60, 60}, {60, 65}, {65, 65}};
336 static BYTE polydraw_tps
[] =
337 {PT_LINETO
, PT_CLOSEFIGURE
| PT_LINETO
, /* 2 */
338 PT_LINETO
, PT_BEZIERTO
, PT_LINETO
, PT_LINETO
, /* 6 */
339 PT_MOVETO
, PT_LINETO
, /* 8 */
340 PT_BEZIERTO
, PT_BEZIERTO
, PT_BEZIERTO
, PT_LINETO
, /* 12 */
341 PT_MOVETO
, PT_LINETO
, PT_CLOSEFIGURE
, /* 15 */
342 PT_LINETO
, PT_MOVETO
| PT_CLOSEFIGURE
, /* 17 */
343 PT_LINETO
, PT_LINETO
, PT_MOVETO
| PT_CLOSEFIGURE
, /* 20 */
344 PT_LINETO
, PT_MOVETO
| PT_LINETO
, PT_LINETO
}; /* 23 */
346 static void test_polydraw(void)
352 /* closefigure with no previous moveto */
353 if (!(retb
= PolyDraw(hdc
, polydraw_pts
, polydraw_tps
, 2)) &&
354 GetLastError() == ERROR_CALL_NOT_IMPLEMENTED
)
356 /* PolyDraw is only available on Win2k and later */
357 win_skip("PolyDraw is not available\n");
362 MoveToEx(hdc
, 100, 100, NULL
);
364 /* closefigure with previous moveto */
365 retb
= PolyDraw(hdc
, polydraw_pts
, polydraw_tps
, 2);
367 /* bad bezier points */
368 retb
= PolyDraw(hdc
, &(polydraw_pts
[2]), &(polydraw_tps
[2]), 4);
370 retb
= PolyDraw(hdc
, &(polydraw_pts
[6]), &(polydraw_tps
[6]), 4);
372 /* good bezier points */
373 retb
= PolyDraw(hdc
, &(polydraw_pts
[8]), &(polydraw_tps
[8]), 4);
375 /* does lineto or bezierto take precedence? */
376 retb
= PolyDraw(hdc
, &(polydraw_pts
[12]), &(polydraw_tps
[12]), 4);
378 /* bad point type, has already moved cursor position */
379 retb
= PolyDraw(hdc
, &(polydraw_pts
[15]), &(polydraw_tps
[15]), 4);
381 /* bad point type, cursor position is moved, but back to its original spot */
382 retb
= PolyDraw(hdc
, &(polydraw_pts
[17]), &(polydraw_tps
[17]), 4);
384 /* does lineto or moveto take precedence? */
385 retb
= PolyDraw(hdc
, &(polydraw_pts
[20]), &(polydraw_tps
[20]), 3);
389 ok_path(hdc
, "polydraw_path", polydraw_path
, sizeof(polydraw_path
)/sizeof(path_test_t
), 0);
394 static void test_closefigure(void) {
395 int nSize
, nSizeWitness
;
399 MoveToEx(hdc
, 95, 95, NULL
);
405 nSize
= GetPath(hdc
, NULL
, NULL
, 0);
410 MoveToEx(hdc
, 95, 95, NULL
);
415 nSizeWitness
= GetPath(hdc
, NULL
, NULL
, 0);
417 /* This test shows CloseFigure does not have to add a point at the end of the path */
418 ok(nSize
== nSizeWitness
, "Wrong number of points, no point should be added by CloseFigure\n");
423 static void WINAPI
linedda_callback(INT x
, INT y
, LPARAM lparam
)
425 POINT
**pt
= (POINT
**)lparam
;
426 ok((*pt
)->x
== x
&& (*pt
)->y
== y
, "point mismatch expect(%d,%d) got(%d,%d)\n",
427 (*pt
)->x
, (*pt
)->y
, x
, y
);
433 static void test_linedda(void)
436 static const POINT array_10_20_20_40
[] = {{10,20},{10,21},{11,22},{11,23},
437 {12,24},{12,25},{13,26},{13,27},
438 {14,28},{14,29},{15,30},{15,31},
439 {16,32},{16,33},{17,34},{17,35},
440 {18,36},{18,37},{19,38},{19,39},
442 static const POINT array_10_20_20_43
[] = {{10,20},{10,21},{11,22},{11,23},
443 {12,24},{12,25},{13,26},{13,27},
444 {13,28},{14,29},{14,30},{15,31},
445 {15,32},{16,33},{16,34},{17,35},
446 {17,36},{17,37},{18,38},{18,39},
447 {19,40},{19,41},{20,42},{-1,-1}};
449 static const POINT array_10_20_10_20
[] = {{-1,-1}};
450 static const POINT array_10_20_11_27
[] = {{10,20},{10,21},{10,22},{10,23},
451 {11,24},{11,25},{11,26},{-1,-1}};
453 static const POINT array_20_43_10_20
[] = {{20,43},{20,42},{19,41},{19,40},
454 {18,39},{18,38},{17,37},{17,36},
455 {17,35},{16,34},{16,33},{15,32},
456 {15,31},{14,30},{14,29},{13,28},
457 {13,27},{13,26},{12,25},{12,24},
458 {11,23},{11,22},{10,21},{-1,-1}};
460 static const POINT array_20_20_10_43
[] = {{20,20},{20,21},{19,22},{19,23},
461 {18,24},{18,25},{17,26},{17,27},
462 {17,28},{16,29},{16,30},{15,31},
463 {15,32},{14,33},{14,34},{13,35},
464 {13,36},{13,37},{12,38},{12,39},
465 {11,40},{11,41},{10,42},{-1,-1}};
467 static const POINT array_20_20_43_10
[] = {{20,20},{21,20},{22,19},{23,19},
468 {24,18},{25,18},{26,17},{27,17},
469 {28,17},{29,16},{30,16},{31,15},
470 {32,15},{33,14},{34,14},{35,13},
471 {36,13},{37,13},{38,12},{39,12},
472 {40,11},{41,11},{42,10},{-1,-1}};
475 pt
= array_10_20_20_40
;
476 LineDDA(10, 20, 20, 40, linedda_callback
, (LPARAM
)&pt
);
477 ok(pt
->x
== -1 && pt
->y
== -1, "didn't find terminator\n");
479 pt
= array_10_20_20_43
;
480 LineDDA(10, 20, 20, 43, linedda_callback
, (LPARAM
)&pt
);
481 ok(pt
->x
== -1 && pt
->y
== -1, "didn't find terminator\n");
483 pt
= array_10_20_10_20
;
484 LineDDA(10, 20, 10, 20, linedda_callback
, (LPARAM
)&pt
);
485 ok(pt
->x
== -1 && pt
->y
== -1, "didn't find terminator\n");
487 pt
= array_10_20_11_27
;
488 LineDDA(10, 20, 11, 27, linedda_callback
, (LPARAM
)&pt
);
489 ok(pt
->x
== -1 && pt
->y
== -1, "didn't find terminator\n");
491 pt
= array_20_43_10_20
;
492 LineDDA(20, 43, 10, 20, linedda_callback
, (LPARAM
)&pt
);
493 ok(pt
->x
== -1 && pt
->y
== -1, "didn't find terminator\n");
495 pt
= array_20_20_10_43
;
496 LineDDA(20, 20, 10, 43, linedda_callback
, (LPARAM
)&pt
);
497 ok(pt
->x
== -1 && pt
->y
== -1, "didn't find terminator\n");
499 pt
= array_20_20_43_10
;
500 LineDDA(20, 20, 43, 10, linedda_callback
, (LPARAM
)&pt
);
501 ok(pt
->x
== -1 && pt
->y
== -1, "didn't find terminator\n");