Mercurial > sdl-ios-xcode
annotate src/video/SDL_surface.c @ 1026:0f3aa6ab3341
Select patches included from The NetBSD Package Collection (www.pkgsrc.org)
author | Sam Lantinga <slouken@libsdl.org> |
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date | Wed, 12 Jan 2005 06:04:48 +0000 |
parents | c2f2370ac1e5 |
children | 68f607298ca9 |
rev | line source |
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0 | 1 /* |
2 SDL - Simple DirectMedia Layer | |
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Updated copyright information for 2004 (Happy New Year!)
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3 Copyright (C) 1997-2004 Sam Lantinga |
0 | 4 |
5 This library is free software; you can redistribute it and/or | |
6 modify it under the terms of the GNU Library General Public | |
7 License as published by the Free Software Foundation; either | |
8 version 2 of the License, or (at your option) any later version. | |
9 | |
10 This library is distributed in the hope that it will be useful, | |
11 but WITHOUT ANY WARRANTY; without even the implied warranty of | |
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU | |
13 Library General Public License for more details. | |
14 | |
15 You should have received a copy of the GNU Library General Public | |
16 License along with this library; if not, write to the Free | |
17 Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA | |
18 | |
19 Sam Lantinga | |
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20 slouken@libsdl.org |
0 | 21 */ |
22 | |
23 #ifdef SAVE_RCSID | |
24 static char rcsid = | |
25 "@(#) $Id$"; | |
26 #endif | |
27 | |
28 #include <stdio.h> | |
29 #include <stdlib.h> | |
30 #include <string.h> | |
31 | |
32 #include "SDL_error.h" | |
33 #include "SDL_video.h" | |
34 #include "SDL_sysvideo.h" | |
35 #include "SDL_cursor_c.h" | |
36 #include "SDL_blit.h" | |
37 #include "SDL_RLEaccel_c.h" | |
38 #include "SDL_pixels_c.h" | |
39 #include "SDL_memops.h" | |
40 #include "SDL_leaks.h" | |
41 | |
42 /* Public routines */ | |
43 /* | |
44 * Create an empty RGB surface of the appropriate depth | |
45 */ | |
46 SDL_Surface * SDL_CreateRGBSurface (Uint32 flags, | |
47 int width, int height, int depth, | |
48 Uint32 Rmask, Uint32 Gmask, Uint32 Bmask, Uint32 Amask) | |
49 { | |
50 SDL_VideoDevice *video = current_video; | |
51 SDL_VideoDevice *this = current_video; | |
52 SDL_Surface *screen; | |
53 SDL_Surface *surface; | |
54 | |
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55 /* Make sure the size requested doesn't overflow our datatypes */ |
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56 /* Next time I write a library like SDL, I'll use int for size. :) */ |
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57 if ( width >= 16384 || height >= 65536 ) { |
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58 SDL_SetError("Width or height is too large"); |
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59 return(NULL); |
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60 } |
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61 |
0 | 62 /* Check to see if we desire the surface in video memory */ |
63 if ( video ) { | |
64 screen = SDL_PublicSurface; | |
65 } else { | |
66 screen = NULL; | |
67 } | |
68 if ( screen && ((screen->flags&SDL_HWSURFACE) == SDL_HWSURFACE) ) { | |
69 if ( (flags&(SDL_SRCCOLORKEY|SDL_SRCALPHA)) != 0 ) { | |
70 flags |= SDL_HWSURFACE; | |
71 } | |
72 if ( (flags & SDL_SRCCOLORKEY) == SDL_SRCCOLORKEY ) { | |
73 if ( ! current_video->info.blit_hw_CC ) { | |
74 flags &= ~SDL_HWSURFACE; | |
75 } | |
76 } | |
77 if ( (flags & SDL_SRCALPHA) == SDL_SRCALPHA ) { | |
78 if ( ! current_video->info.blit_hw_A ) { | |
79 flags &= ~SDL_HWSURFACE; | |
80 } | |
81 } | |
82 } else { | |
83 flags &= ~SDL_HWSURFACE; | |
84 } | |
85 | |
86 /* Allocate the surface */ | |
87 surface = (SDL_Surface *)malloc(sizeof(*surface)); | |
88 if ( surface == NULL ) { | |
89 SDL_OutOfMemory(); | |
90 return(NULL); | |
91 } | |
92 surface->flags = SDL_SWSURFACE; | |
93 if ( (flags & SDL_HWSURFACE) == SDL_HWSURFACE ) { | |
94 depth = screen->format->BitsPerPixel; | |
95 Rmask = screen->format->Rmask; | |
96 Gmask = screen->format->Gmask; | |
97 Bmask = screen->format->Bmask; | |
98 Amask = screen->format->Amask; | |
99 } | |
100 surface->format = SDL_AllocFormat(depth, Rmask, Gmask, Bmask, Amask); | |
101 if ( surface->format == NULL ) { | |
102 free(surface); | |
103 return(NULL); | |
104 } | |
105 if ( Amask ) { | |
106 surface->flags |= SDL_SRCALPHA; | |
107 } | |
108 surface->w = width; | |
109 surface->h = height; | |
110 surface->pitch = SDL_CalculatePitch(surface); | |
111 surface->pixels = NULL; | |
112 surface->offset = 0; | |
113 surface->hwdata = NULL; | |
114 surface->locked = 0; | |
115 surface->map = NULL; | |
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116 surface->unused1 = 0; |
0 | 117 SDL_SetClipRect(surface, NULL); |
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118 SDL_FormatChanged(surface); |
0 | 119 |
120 /* Get the pixels */ | |
121 if ( ((flags&SDL_HWSURFACE) == SDL_SWSURFACE) || | |
122 (video->AllocHWSurface(this, surface) < 0) ) { | |
123 if ( surface->w && surface->h ) { | |
124 surface->pixels = malloc(surface->h*surface->pitch); | |
125 if ( surface->pixels == NULL ) { | |
126 SDL_FreeSurface(surface); | |
127 SDL_OutOfMemory(); | |
128 return(NULL); | |
129 } | |
130 /* This is important for bitmaps */ | |
131 memset(surface->pixels, 0, surface->h*surface->pitch); | |
132 } | |
133 } | |
134 | |
135 /* Allocate an empty mapping */ | |
136 surface->map = SDL_AllocBlitMap(); | |
137 if ( surface->map == NULL ) { | |
138 SDL_FreeSurface(surface); | |
139 return(NULL); | |
140 } | |
141 | |
142 /* The surface is ready to go */ | |
143 surface->refcount = 1; | |
144 #ifdef CHECK_LEAKS | |
145 ++surfaces_allocated; | |
146 #endif | |
147 return(surface); | |
148 } | |
149 /* | |
150 * Create an RGB surface from an existing memory buffer | |
151 */ | |
152 SDL_Surface * SDL_CreateRGBSurfaceFrom (void *pixels, | |
153 int width, int height, int depth, int pitch, | |
154 Uint32 Rmask, Uint32 Gmask, Uint32 Bmask, Uint32 Amask) | |
155 { | |
156 SDL_Surface *surface; | |
157 | |
158 surface = SDL_CreateRGBSurface(SDL_SWSURFACE, 0, 0, depth, | |
159 Rmask, Gmask, Bmask, Amask); | |
160 if ( surface != NULL ) { | |
161 surface->flags |= SDL_PREALLOC; | |
162 surface->pixels = pixels; | |
163 surface->w = width; | |
164 surface->h = height; | |
165 surface->pitch = pitch; | |
166 SDL_SetClipRect(surface, NULL); | |
167 } | |
168 return(surface); | |
169 } | |
170 /* | |
171 * Set the color key in a blittable surface | |
172 */ | |
173 int SDL_SetColorKey (SDL_Surface *surface, Uint32 flag, Uint32 key) | |
174 { | |
175 /* Sanity check the flag as it gets passed in */ | |
176 if ( flag & SDL_SRCCOLORKEY ) { | |
177 if ( flag & (SDL_RLEACCEL|SDL_RLEACCELOK) ) { | |
178 flag = (SDL_SRCCOLORKEY | SDL_RLEACCELOK); | |
179 } else { | |
180 flag = SDL_SRCCOLORKEY; | |
181 } | |
182 } else { | |
183 flag = 0; | |
184 } | |
185 | |
186 /* Optimize away operations that don't change anything */ | |
187 if ( (flag == (surface->flags & (SDL_SRCCOLORKEY|SDL_RLEACCELOK))) && | |
188 (key == surface->format->colorkey) ) { | |
189 return(0); | |
190 } | |
191 | |
192 /* UnRLE surfaces before we change the colorkey */ | |
193 if ( surface->flags & SDL_RLEACCEL ) { | |
194 SDL_UnRLESurface(surface, 1); | |
195 } | |
196 | |
197 if ( flag ) { | |
198 SDL_VideoDevice *video = current_video; | |
199 SDL_VideoDevice *this = current_video; | |
200 | |
201 | |
202 surface->flags |= SDL_SRCCOLORKEY; | |
203 surface->format->colorkey = key; | |
204 if ( (surface->flags & SDL_HWACCEL) == SDL_HWACCEL ) { | |
205 if ( (video->SetHWColorKey == NULL) || | |
206 (video->SetHWColorKey(this, surface, key) < 0) ) { | |
207 surface->flags &= ~SDL_HWACCEL; | |
208 } | |
209 } | |
210 if ( flag & SDL_RLEACCELOK ) { | |
211 surface->flags |= SDL_RLEACCELOK; | |
212 } else { | |
213 surface->flags &= ~SDL_RLEACCELOK; | |
214 } | |
215 } else { | |
216 surface->flags &= ~(SDL_SRCCOLORKEY|SDL_RLEACCELOK); | |
217 surface->format->colorkey = 0; | |
218 } | |
219 SDL_InvalidateMap(surface->map); | |
220 return(0); | |
221 } | |
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222 /* This function sets the alpha channel of a surface */ |
0 | 223 int SDL_SetAlpha (SDL_Surface *surface, Uint32 flag, Uint8 value) |
224 { | |
225 Uint32 oldflags = surface->flags; | |
226 Uint32 oldalpha = surface->format->alpha; | |
227 | |
228 /* Sanity check the flag as it gets passed in */ | |
229 if ( flag & SDL_SRCALPHA ) { | |
230 if ( flag & (SDL_RLEACCEL|SDL_RLEACCELOK) ) { | |
231 flag = (SDL_SRCALPHA | SDL_RLEACCELOK); | |
232 } else { | |
233 flag = SDL_SRCALPHA; | |
234 } | |
235 } else { | |
236 flag = 0; | |
237 } | |
238 | |
239 /* Optimize away operations that don't change anything */ | |
240 if ( (flag == (surface->flags & (SDL_SRCALPHA|SDL_RLEACCELOK))) && | |
241 (!flag || value == oldalpha) ) { | |
242 return(0); | |
243 } | |
244 | |
245 if(!(flag & SDL_RLEACCELOK) && (surface->flags & SDL_RLEACCEL)) | |
246 SDL_UnRLESurface(surface, 1); | |
247 | |
248 if ( flag ) { | |
249 SDL_VideoDevice *video = current_video; | |
250 SDL_VideoDevice *this = current_video; | |
251 | |
252 surface->flags |= SDL_SRCALPHA; | |
253 surface->format->alpha = value; | |
254 if ( (surface->flags & SDL_HWACCEL) == SDL_HWACCEL ) { | |
255 if ( (video->SetHWAlpha == NULL) || | |
256 (video->SetHWAlpha(this, surface, value) < 0) ) { | |
257 surface->flags &= ~SDL_HWACCEL; | |
258 } | |
259 } | |
260 if ( flag & SDL_RLEACCELOK ) { | |
261 surface->flags |= SDL_RLEACCELOK; | |
262 } else { | |
263 surface->flags &= ~SDL_RLEACCELOK; | |
264 } | |
265 } else { | |
266 surface->flags &= ~SDL_SRCALPHA; | |
267 surface->format->alpha = SDL_ALPHA_OPAQUE; | |
268 } | |
269 /* | |
270 * The representation for software surfaces is independent of | |
271 * per-surface alpha, so no need to invalidate the blit mapping | |
272 * if just the alpha value was changed. (If either is 255, we still | |
273 * need to invalidate.) | |
274 */ | |
275 if((surface->flags & SDL_HWACCEL) == SDL_HWACCEL | |
276 || oldflags != surface->flags | |
277 || (((oldalpha + 1) ^ (value + 1)) & 0x100)) | |
278 SDL_InvalidateMap(surface->map); | |
279 return(0); | |
280 } | |
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281 int SDL_SetAlphaChannel(SDL_Surface *surface, Uint8 value) |
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282 { |
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283 int row, col; |
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284 int offset; |
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285 Uint8 *buf; |
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286 |
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287 if ( (surface->format->Amask != 0xFF000000) && |
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288 (surface->format->Amask != 0x000000FF) ) { |
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289 SDL_SetError("Unsupported surface alpha mask format"); |
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290 return -1; |
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291 } |
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292 |
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293 #if SDL_BYTEORDER == SDL_LIL_ENDIAN |
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294 if ( surface->format->Amask == 0xFF000000 ) { |
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295 offset = 3; |
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296 } else { |
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297 offset = 0; |
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298 } |
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299 #else |
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300 if ( surface->format->Amask == 0xFF000000 ) { |
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301 offset = 0; |
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302 } else { |
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303 offset = 3; |
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304 } |
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305 #endif /* Byte ordering */ |
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306 |
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307 /* Quickly set the alpha channel of an RGBA or ARGB surface */ |
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308 if ( SDL_MUSTLOCK(surface) ) { |
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309 if ( SDL_LockSurface(surface) < 0 ) { |
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310 return -1; |
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311 } |
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312 } |
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313 row = surface->h; |
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314 while (row--) { |
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315 col = surface->w; |
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316 buf = (Uint8 *)surface->pixels + row * surface->pitch + offset; |
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317 while(col--) { |
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318 *buf = value; |
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319 buf += 4; |
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320 } |
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321 } |
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322 if ( SDL_MUSTLOCK(surface) ) { |
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323 SDL_UnlockSurface(surface); |
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324 } |
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325 return 0; |
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326 } |
0 | 327 |
328 /* | |
329 * A function to calculate the intersection of two rectangles: | |
330 * return true if the rectangles intersect, false otherwise | |
331 */ | |
332 static __inline__ | |
130
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333 SDL_bool SDL_IntersectRect(const SDL_Rect *A, const SDL_Rect *B, SDL_Rect *intersection) |
0 | 334 { |
335 int Amin, Amax, Bmin, Bmax; | |
336 | |
337 /* Horizontal intersection */ | |
338 Amin = A->x; | |
339 Amax = Amin + A->w; | |
340 Bmin = B->x; | |
341 Bmax = Bmin + B->w; | |
342 if(Bmin > Amin) | |
343 Amin = Bmin; | |
344 intersection->x = Amin; | |
345 if(Bmax < Amax) | |
346 Amax = Bmax; | |
347 intersection->w = Amax - Amin > 0 ? Amax - Amin : 0; | |
348 | |
349 /* Vertical intersection */ | |
350 Amin = A->y; | |
351 Amax = Amin + A->h; | |
352 Bmin = B->y; | |
353 Bmax = Bmin + B->h; | |
354 if(Bmin > Amin) | |
355 Amin = Bmin; | |
356 intersection->y = Amin; | |
357 if(Bmax < Amax) | |
358 Amax = Bmax; | |
359 intersection->h = Amax - Amin > 0 ? Amax - Amin : 0; | |
360 | |
361 return (intersection->w && intersection->h); | |
362 } | |
363 /* | |
364 * Set the clipping rectangle for a blittable surface | |
365 */ | |
130
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366 SDL_bool SDL_SetClipRect(SDL_Surface *surface, const SDL_Rect *rect) |
0 | 367 { |
368 SDL_Rect full_rect; | |
369 | |
370 /* Don't do anything if there's no surface to act on */ | |
371 if ( ! surface ) { | |
372 return SDL_FALSE; | |
373 } | |
374 | |
375 /* Set up the full surface rectangle */ | |
376 full_rect.x = 0; | |
377 full_rect.y = 0; | |
378 full_rect.w = surface->w; | |
379 full_rect.h = surface->h; | |
380 | |
381 /* Set the clipping rectangle */ | |
382 if ( ! rect ) { | |
383 surface->clip_rect = full_rect; | |
384 return 1; | |
385 } | |
386 return SDL_IntersectRect(rect, &full_rect, &surface->clip_rect); | |
387 } | |
388 void SDL_GetClipRect(SDL_Surface *surface, SDL_Rect *rect) | |
389 { | |
390 if ( surface && rect ) { | |
391 *rect = surface->clip_rect; | |
392 } | |
393 } | |
394 /* | |
395 * Set up a blit between two surfaces -- split into three parts: | |
396 * The upper part, SDL_UpperBlit(), performs clipping and rectangle | |
397 * verification. The lower part is a pointer to a low level | |
398 * accelerated blitting function. | |
399 * | |
400 * These parts are separated out and each used internally by this | |
401 * library in the optimimum places. They are exported so that if | |
402 * you know exactly what you are doing, you can optimize your code | |
403 * by calling the one(s) you need. | |
404 */ | |
405 int SDL_LowerBlit (SDL_Surface *src, SDL_Rect *srcrect, | |
406 SDL_Surface *dst, SDL_Rect *dstrect) | |
407 { | |
408 SDL_blit do_blit; | |
462
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409 SDL_Rect hw_srcrect; |
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410 SDL_Rect hw_dstrect; |
0 | 411 |
412 /* Check to make sure the blit mapping is valid */ | |
413 if ( (src->map->dst != dst) || | |
414 (src->map->dst->format_version != src->map->format_version) ) { | |
415 if ( SDL_MapSurface(src, dst) < 0 ) { | |
416 return(-1); | |
417 } | |
418 } | |
419 | |
420 /* Figure out which blitter to use */ | |
421 if ( (src->flags & SDL_HWACCEL) == SDL_HWACCEL ) { | |
462
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422 if ( src == SDL_VideoSurface ) { |
519
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*** empty log message ***
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423 hw_srcrect = *srcrect; |
462
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424 hw_srcrect.x += current_video->offset_x; |
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425 hw_srcrect.y += current_video->offset_y; |
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426 srcrect = &hw_srcrect; |
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427 } |
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428 if ( dst == SDL_VideoSurface ) { |
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429 hw_dstrect = *dstrect; |
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430 hw_dstrect.x += current_video->offset_x; |
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431 hw_dstrect.y += current_video->offset_y; |
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432 dstrect = &hw_dstrect; |
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433 } |
0 | 434 do_blit = src->map->hw_blit; |
435 } else { | |
436 do_blit = src->map->sw_blit; | |
437 } | |
438 return(do_blit(src, srcrect, dst, dstrect)); | |
439 } | |
440 | |
441 | |
442 int SDL_UpperBlit (SDL_Surface *src, SDL_Rect *srcrect, | |
443 SDL_Surface *dst, SDL_Rect *dstrect) | |
444 { | |
445 SDL_Rect fulldst; | |
446 int srcx, srcy, w, h; | |
447 | |
448 /* Make sure the surfaces aren't locked */ | |
449 if ( ! src || ! dst ) { | |
450 SDL_SetError("SDL_UpperBlit: passed a NULL surface"); | |
451 return(-1); | |
452 } | |
453 if ( src->locked || dst->locked ) { | |
454 SDL_SetError("Surfaces must not be locked during blit"); | |
455 return(-1); | |
456 } | |
457 | |
458 /* If the destination rectangle is NULL, use the entire dest surface */ | |
459 if ( dstrect == NULL ) { | |
460 fulldst.x = fulldst.y = 0; | |
461 dstrect = &fulldst; | |
462 } | |
463 | |
464 /* clip the source rectangle to the source surface */ | |
465 if(srcrect) { | |
466 int maxw, maxh; | |
467 | |
468 srcx = srcrect->x; | |
469 w = srcrect->w; | |
470 if(srcx < 0) { | |
471 w += srcx; | |
472 dstrect->x -= srcx; | |
473 srcx = 0; | |
474 } | |
475 maxw = src->w - srcx; | |
476 if(maxw < w) | |
477 w = maxw; | |
478 | |
479 srcy = srcrect->y; | |
480 h = srcrect->h; | |
481 if(srcy < 0) { | |
482 h += srcy; | |
483 dstrect->y -= srcy; | |
484 srcy = 0; | |
485 } | |
486 maxh = src->h - srcy; | |
487 if(maxh < h) | |
488 h = maxh; | |
489 | |
490 } else { | |
491 srcx = srcy = 0; | |
492 w = src->w; | |
493 h = src->h; | |
494 } | |
495 | |
496 /* clip the destination rectangle against the clip rectangle */ | |
497 { | |
498 SDL_Rect *clip = &dst->clip_rect; | |
499 int dx, dy; | |
500 | |
501 dx = clip->x - dstrect->x; | |
502 if(dx > 0) { | |
503 w -= dx; | |
504 dstrect->x += dx; | |
505 srcx += dx; | |
506 } | |
507 dx = dstrect->x + w - clip->x - clip->w; | |
508 if(dx > 0) | |
509 w -= dx; | |
510 | |
511 dy = clip->y - dstrect->y; | |
512 if(dy > 0) { | |
513 h -= dy; | |
514 dstrect->y += dy; | |
515 srcy += dy; | |
516 } | |
517 dy = dstrect->y + h - clip->y - clip->h; | |
518 if(dy > 0) | |
519 h -= dy; | |
520 } | |
521 | |
522 if(w > 0 && h > 0) { | |
523 SDL_Rect sr; | |
524 sr.x = srcx; | |
525 sr.y = srcy; | |
526 sr.w = dstrect->w = w; | |
527 sr.h = dstrect->h = h; | |
528 return SDL_LowerBlit(src, &sr, dst, dstrect); | |
529 } | |
530 dstrect->w = dstrect->h = 0; | |
531 return 0; | |
532 } | |
533 | |
532
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534 static int SDL_FillRect1(SDL_Surface *dst, SDL_Rect *dstrect, Uint32 color) |
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535 { |
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536 /* FIXME: We have to worry about packing order.. *sigh* */ |
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537 SDL_SetError("1-bpp rect fill not yet implemented"); |
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538 return -1; |
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Return an error with color fills on less than 8 bpp surfaces.
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539 } |
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Return an error with color fills on less than 8 bpp surfaces.
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540 |
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Return an error with color fills on less than 8 bpp surfaces.
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541 static int SDL_FillRect4(SDL_Surface *dst, SDL_Rect *dstrect, Uint32 color) |
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542 { |
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543 /* FIXME: We have to worry about packing order.. *sigh* */ |
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544 SDL_SetError("4-bpp rect fill not yet implemented"); |
058d47b7a3b4
Return an error with color fills on less than 8 bpp surfaces.
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545 return -1; |
058d47b7a3b4
Return an error with color fills on less than 8 bpp surfaces.
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diff
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|
546 } |
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547 |
0 | 548 /* |
549 * This function performs a fast fill of the given rectangle with 'color' | |
550 */ | |
551 int SDL_FillRect(SDL_Surface *dst, SDL_Rect *dstrect, Uint32 color) | |
552 { | |
553 SDL_VideoDevice *video = current_video; | |
554 SDL_VideoDevice *this = current_video; | |
555 int x, y; | |
556 Uint8 *row; | |
557 | |
532
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558 /* This function doesn't work on surfaces < 8 bpp */ |
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559 if ( dst->format->BitsPerPixel < 8 ) { |
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560 switch(dst->format->BitsPerPixel) { |
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561 case 1: |
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diff
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562 return SDL_FillRect1(dst, dstrect, color); |
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Sam Lantinga <slouken@libsdl.org>
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563 break; |
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564 case 4: |
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565 return SDL_FillRect4(dst, dstrect, color); |
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526
diff
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566 break; |
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diff
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|
567 default: |
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diff
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|
568 SDL_SetError("Fill rect on unsupported surface format"); |
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Return an error with color fills on less than 8 bpp surfaces.
Sam Lantinga <slouken@libsdl.org>
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526
diff
changeset
|
569 return(-1); |
058d47b7a3b4
Return an error with color fills on less than 8 bpp surfaces.
Sam Lantinga <slouken@libsdl.org>
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526
diff
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|
570 break; |
058d47b7a3b4
Return an error with color fills on less than 8 bpp surfaces.
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diff
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|
571 } |
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Return an error with color fills on less than 8 bpp surfaces.
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diff
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|
572 } |
058d47b7a3b4
Return an error with color fills on less than 8 bpp surfaces.
Sam Lantinga <slouken@libsdl.org>
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526
diff
changeset
|
573 |
0 | 574 /* If 'dstrect' == NULL, then fill the whole surface */ |
575 if ( dstrect ) { | |
576 /* Perform clipping */ | |
577 if ( !SDL_IntersectRect(dstrect, &dst->clip_rect, dstrect) ) { | |
578 return(0); | |
579 } | |
580 } else { | |
581 dstrect = &dst->clip_rect; | |
582 } | |
583 | |
584 /* Check for hardware acceleration */ | |
585 if ( ((dst->flags & SDL_HWSURFACE) == SDL_HWSURFACE) && | |
586 video->info.blit_fill ) { | |
462
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Fixed offset bug in hardware accelerated fills and blits
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|
587 SDL_Rect hw_rect; |
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Fixed offset bug in hardware accelerated fills and blits
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|
588 if ( dst == SDL_VideoSurface ) { |
1be0cdaf8092
Fixed offset bug in hardware accelerated fills and blits
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441
diff
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|
589 hw_rect = *dstrect; |
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Fixed offset bug in hardware accelerated fills and blits
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590 hw_rect.x += current_video->offset_x; |
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Fixed offset bug in hardware accelerated fills and blits
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591 hw_rect.y += current_video->offset_y; |
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Fixed offset bug in hardware accelerated fills and blits
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592 dstrect = &hw_rect; |
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Fixed offset bug in hardware accelerated fills and blits
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593 } |
0 | 594 return(video->FillHWRect(this, dst, dstrect, color)); |
595 } | |
596 | |
597 /* Perform software fill */ | |
598 if ( SDL_LockSurface(dst) != 0 ) { | |
599 return(-1); | |
600 } | |
601 row = (Uint8 *)dst->pixels+dstrect->y*dst->pitch+ | |
602 dstrect->x*dst->format->BytesPerPixel; | |
603 if ( dst->format->palette || (color == 0) ) { | |
604 x = dstrect->w*dst->format->BytesPerPixel; | |
605 if ( !color && !((long)row&3) && !(x&3) && !(dst->pitch&3) ) { | |
606 int n = x >> 2; | |
607 for ( y=dstrect->h; y; --y ) { | |
608 SDL_memset4(row, 0, n); | |
609 row += dst->pitch; | |
610 } | |
611 } else { | |
612 #ifdef __powerpc__ | |
613 /* | |
614 * memset() on PPC (both glibc and codewarrior) uses | |
615 * the dcbz (Data Cache Block Zero) instruction, which | |
616 * causes an alignment exception if the destination is | |
617 * uncachable, so only use it on software surfaces | |
618 */ | |
619 if((dst->flags & SDL_HWSURFACE) == SDL_HWSURFACE) { | |
620 if(dstrect->w >= 8) { | |
621 /* | |
622 * 64-bit stores are probably most | |
623 * efficient to uncached video memory | |
624 */ | |
625 double fill; | |
626 memset(&fill, color, (sizeof fill)); | |
627 for(y = dstrect->h; y; y--) { | |
628 Uint8 *d = row; | |
629 unsigned n = x; | |
630 unsigned nn; | |
631 Uint8 c = color; | |
632 double f = fill; | |
633 while((unsigned long)d | |
634 & (sizeof(double) - 1)) { | |
635 *d++ = c; | |
636 n--; | |
637 } | |
638 nn = n / (sizeof(double) * 4); | |
639 while(nn) { | |
640 ((double *)d)[0] = f; | |
641 ((double *)d)[1] = f; | |
642 ((double *)d)[2] = f; | |
643 ((double *)d)[3] = f; | |
644 d += 4*sizeof(double); | |
645 nn--; | |
646 } | |
647 n &= ~(sizeof(double) * 4 - 1); | |
648 nn = n / sizeof(double); | |
649 while(nn) { | |
650 *(double *)d = f; | |
651 d += sizeof(double); | |
652 nn--; | |
653 } | |
654 n &= ~(sizeof(double) - 1); | |
655 while(n) { | |
656 *d++ = c; | |
657 n--; | |
658 } | |
659 row += dst->pitch; | |
660 } | |
661 } else { | |
662 /* narrow boxes */ | |
663 for(y = dstrect->h; y; y--) { | |
664 Uint8 *d = row; | |
665 Uint8 c = color; | |
666 int n = x; | |
667 while(n) { | |
668 *d++ = c; | |
669 n--; | |
670 } | |
671 row += dst->pitch; | |
672 } | |
673 } | |
674 } else | |
675 #endif /* __powerpc__ */ | |
676 { | |
677 for(y = dstrect->h; y; y--) { | |
678 memset(row, color, x); | |
679 row += dst->pitch; | |
680 } | |
681 } | |
682 } | |
683 } else { | |
684 switch (dst->format->BytesPerPixel) { | |
685 case 2: | |
686 for ( y=dstrect->h; y; --y ) { | |
687 Uint16 *pixels = (Uint16 *)row; | |
688 Uint16 c = color; | |
689 Uint32 cc = (Uint32)c << 16 | c; | |
690 int n = dstrect->w; | |
691 if((unsigned long)pixels & 3) { | |
692 *pixels++ = c; | |
693 n--; | |
694 } | |
695 if(n >> 1) | |
696 SDL_memset4(pixels, cc, n >> 1); | |
697 if(n & 1) | |
698 pixels[n - 1] = c; | |
699 row += dst->pitch; | |
700 } | |
701 break; | |
702 | |
703 case 3: | |
704 if(SDL_BYTEORDER == SDL_BIG_ENDIAN) | |
705 color <<= 8; | |
706 for ( y=dstrect->h; y; --y ) { | |
707 Uint8 *pixels = row; | |
708 for ( x=dstrect->w; x; --x ) { | |
709 memcpy(pixels, &color, 3); | |
710 pixels += 3; | |
711 } | |
712 row += dst->pitch; | |
713 } | |
714 break; | |
715 | |
716 case 4: | |
717 for(y = dstrect->h; y; --y) { | |
718 SDL_memset4(row, color, dstrect->w); | |
719 row += dst->pitch; | |
720 } | |
721 break; | |
722 } | |
723 } | |
724 SDL_UnlockSurface(dst); | |
725 | |
726 /* We're done! */ | |
727 return(0); | |
728 } | |
729 | |
730 /* | |
731 * Lock a surface to directly access the pixels | |
732 */ | |
733 int SDL_LockSurface (SDL_Surface *surface) | |
734 { | |
735 if ( ! surface->locked ) { | |
736 /* Perform the lock */ | |
737 if ( surface->flags & (SDL_HWSURFACE|SDL_ASYNCBLIT) ) { | |
738 SDL_VideoDevice *video = current_video; | |
739 SDL_VideoDevice *this = current_video; | |
740 if ( video->LockHWSurface(this, surface) < 0 ) { | |
741 return(-1); | |
742 } | |
743 } | |
744 if ( surface->flags & SDL_RLEACCEL ) { | |
745 SDL_UnRLESurface(surface, 1); | |
746 surface->flags |= SDL_RLEACCEL; /* save accel'd state */ | |
747 } | |
748 /* This needs to be done here in case pixels changes value */ | |
749 surface->pixels = (Uint8 *)surface->pixels + surface->offset; | |
750 } | |
751 | |
752 /* Increment the surface lock count, for recursive locks */ | |
753 ++surface->locked; | |
754 | |
755 /* Ready to go.. */ | |
756 return(0); | |
757 } | |
758 /* | |
759 * Unlock a previously locked surface | |
760 */ | |
761 void SDL_UnlockSurface (SDL_Surface *surface) | |
762 { | |
763 /* Only perform an unlock if we are locked */ | |
764 if ( ! surface->locked || (--surface->locked > 0) ) { | |
765 return; | |
766 } | |
767 | |
768 /* Perform the unlock */ | |
769 surface->pixels = (Uint8 *)surface->pixels - surface->offset; | |
770 | |
771 /* Unlock hardware or accelerated surfaces */ | |
772 if ( surface->flags & (SDL_HWSURFACE|SDL_ASYNCBLIT) ) { | |
773 SDL_VideoDevice *video = current_video; | |
774 SDL_VideoDevice *this = current_video; | |
775 video->UnlockHWSurface(this, surface); | |
776 } else { | |
777 /* Update RLE encoded surface with new data */ | |
778 if ( (surface->flags & SDL_RLEACCEL) == SDL_RLEACCEL ) { | |
779 surface->flags &= ~SDL_RLEACCEL; /* stop lying */ | |
780 SDL_RLESurface(surface); | |
781 } | |
782 } | |
783 } | |
784 | |
785 /* | |
786 * Convert a surface into the specified pixel format. | |
787 */ | |
788 SDL_Surface * SDL_ConvertSurface (SDL_Surface *surface, | |
789 SDL_PixelFormat *format, Uint32 flags) | |
790 { | |
791 SDL_Surface *convert; | |
792 Uint32 colorkey = 0; | |
793 Uint8 alpha = 0; | |
794 Uint32 surface_flags; | |
795 SDL_Rect bounds; | |
796 | |
797 /* Check for empty destination palette! (results in empty image) */ | |
798 if ( format->palette != NULL ) { | |
799 int i; | |
800 for ( i=0; i<format->palette->ncolors; ++i ) { | |
801 if ( (format->palette->colors[i].r != 0) || | |
802 (format->palette->colors[i].g != 0) || | |
803 (format->palette->colors[i].b != 0) ) | |
804 break; | |
805 } | |
806 if ( i == format->palette->ncolors ) { | |
807 SDL_SetError("Empty destination palette"); | |
808 return(NULL); | |
809 } | |
810 } | |
811 | |
264
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812 /* Only create hw surfaces with alpha channel if hw alpha blits |
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813 are supported */ |
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814 if(format->Amask != 0 && (flags & SDL_HWSURFACE)) { |
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815 const SDL_VideoInfo *vi = SDL_GetVideoInfo(); |
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816 if(!vi || !vi->blit_hw_A) |
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817 flags &= ~SDL_HWSURFACE; |
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818 } |
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819 |
0 | 820 /* Create a new surface with the desired format */ |
821 convert = SDL_CreateRGBSurface(flags, | |
822 surface->w, surface->h, format->BitsPerPixel, | |
823 format->Rmask, format->Gmask, format->Bmask, format->Amask); | |
824 if ( convert == NULL ) { | |
825 return(NULL); | |
826 } | |
827 | |
828 /* Copy the palette if any */ | |
829 if ( format->palette && convert->format->palette ) { | |
830 memcpy(convert->format->palette->colors, | |
831 format->palette->colors, | |
832 format->palette->ncolors*sizeof(SDL_Color)); | |
833 convert->format->palette->ncolors = format->palette->ncolors; | |
834 } | |
835 | |
836 /* Save the original surface color key and alpha */ | |
837 surface_flags = surface->flags; | |
838 if ( (surface_flags & SDL_SRCCOLORKEY) == SDL_SRCCOLORKEY ) { | |
839 /* Convert colourkeyed surfaces to RGBA if requested */ | |
840 if((flags & SDL_SRCCOLORKEY) != SDL_SRCCOLORKEY | |
841 && format->Amask) { | |
842 surface_flags &= ~SDL_SRCCOLORKEY; | |
843 } else { | |
844 colorkey = surface->format->colorkey; | |
845 SDL_SetColorKey(surface, 0, 0); | |
846 } | |
847 } | |
848 if ( (surface_flags & SDL_SRCALPHA) == SDL_SRCALPHA ) { | |
431
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849 /* Copy over the alpha channel to RGBA if requested */ |
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850 if ( format->Amask ) { |
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851 surface->flags &= ~SDL_SRCALPHA; |
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852 } else { |
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853 alpha = surface->format->alpha; |
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854 SDL_SetAlpha(surface, 0, 0); |
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855 } |
0 | 856 } |
857 | |
858 /* Copy over the image data */ | |
859 bounds.x = 0; | |
860 bounds.y = 0; | |
861 bounds.w = surface->w; | |
862 bounds.h = surface->h; | |
863 SDL_LowerBlit(surface, &bounds, convert, &bounds); | |
864 | |
865 /* Clean up the original surface, and update converted surface */ | |
866 if ( convert != NULL ) { | |
867 SDL_SetClipRect(convert, &surface->clip_rect); | |
868 } | |
869 if ( (surface_flags & SDL_SRCCOLORKEY) == SDL_SRCCOLORKEY ) { | |
870 Uint32 cflags = surface_flags&(SDL_SRCCOLORKEY|SDL_RLEACCELOK); | |
871 if ( convert != NULL ) { | |
872 Uint8 keyR, keyG, keyB; | |
873 | |
874 SDL_GetRGB(colorkey,surface->format,&keyR,&keyG,&keyB); | |
875 SDL_SetColorKey(convert, cflags|(flags&SDL_RLEACCELOK), | |
876 SDL_MapRGB(convert->format, keyR, keyG, keyB)); | |
877 } | |
878 SDL_SetColorKey(surface, cflags, colorkey); | |
879 } | |
880 if ( (surface_flags & SDL_SRCALPHA) == SDL_SRCALPHA ) { | |
881 Uint32 aflags = surface_flags&(SDL_SRCALPHA|SDL_RLEACCELOK); | |
882 if ( convert != NULL ) { | |
883 SDL_SetAlpha(convert, aflags|(flags&SDL_RLEACCELOK), | |
884 alpha); | |
885 } | |
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886 if ( format->Amask ) { |
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887 surface->flags |= SDL_SRCALPHA; |
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888 } else { |
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889 SDL_SetAlpha(surface, aflags, alpha); |
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890 } |
0 | 891 } |
892 | |
893 /* We're ready to go! */ | |
894 return(convert); | |
895 } | |
896 | |
897 /* | |
898 * Free a surface created by the above function. | |
899 */ | |
900 void SDL_FreeSurface (SDL_Surface *surface) | |
901 { | |
902 /* Free anything that's not NULL, and not the screen surface */ | |
903 if ((surface == NULL) || | |
904 (current_video && | |
905 ((surface == SDL_ShadowSurface)||(surface == SDL_VideoSurface)))) { | |
906 return; | |
907 } | |
908 if ( --surface->refcount > 0 ) { | |
909 return; | |
910 } | |
915
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911 while ( surface->locked > 0 ) { |
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912 SDL_UnlockSurface(surface); |
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913 } |
0 | 914 if ( (surface->flags & SDL_RLEACCEL) == SDL_RLEACCEL ) { |
915 SDL_UnRLESurface(surface, 0); | |
916 } | |
917 if ( surface->format ) { | |
918 SDL_FreeFormat(surface->format); | |
919 surface->format = NULL; | |
920 } | |
921 if ( surface->map != NULL ) { | |
922 SDL_FreeBlitMap(surface->map); | |
923 surface->map = NULL; | |
924 } | |
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925 if ( surface->hwdata ) { |
0 | 926 SDL_VideoDevice *video = current_video; |
927 SDL_VideoDevice *this = current_video; | |
928 video->FreeHWSurface(this, surface); | |
929 } | |
930 if ( surface->pixels && | |
931 ((surface->flags & SDL_PREALLOC) != SDL_PREALLOC) ) { | |
932 free(surface->pixels); | |
933 } | |
934 free(surface); | |
935 #ifdef CHECK_LEAKS | |
936 --surfaces_allocated; | |
937 #endif | |
938 } |