egl: move eglSwapInterval() fallback to eglapi.c
[mesa.git] / src / egl / main / eglapi.c
1 /**************************************************************************
2 *
3 * Copyright 2008 VMware, Inc.
4 * Copyright 2009-2010 Chia-I Wu <olvaffe@gmail.com>
5 * Copyright 2010-2011 LunarG, Inc.
6 * All Rights Reserved.
7 *
8 * Permission is hereby granted, free of charge, to any person obtaining a
9 * copy of this software and associated documentation files (the
10 * "Software"), to deal in the Software without restriction, including
11 * without limitation the rights to use, copy, modify, merge, publish,
12 * distribute, sub license, and/or sell copies of the Software, and to
13 * permit persons to whom the Software is furnished to do so, subject to
14 * the following conditions:
15 *
16 * The above copyright notice and this permission notice (including the
17 * next paragraph) shall be included in all copies or substantial portions
18 * of the Software.
19 *
20 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
21 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
23 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
24 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
25 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
26 * DEALINGS IN THE SOFTWARE.
27 *
28 **************************************************************************/
29
30
31 /**
32 * Public EGL API entrypoints
33 *
34 * Generally, we use the EGLDisplay parameter as a key to lookup the
35 * appropriate device driver handle, then jump though the driver's
36 * dispatch table to handle the function.
37 *
38 * That allows us the option of supporting multiple, simultaneous,
39 * heterogeneous hardware devices in the future.
40 *
41 * The EGLDisplay, EGLConfig, EGLContext and EGLSurface types are
42 * opaque handles. Internal objects are linked to a display to
43 * create the handles.
44 *
45 * For each public API entry point, the opaque handles are looked up
46 * before being dispatched to the drivers. When it fails to look up
47 * a handle, one of
48 *
49 * EGL_BAD_DISPLAY
50 * EGL_BAD_CONFIG
51 * EGL_BAD_CONTEXT
52 * EGL_BAD_SURFACE
53 * EGL_BAD_SCREEN_MESA
54 * EGL_BAD_MODE_MESA
55 *
56 * is generated and the driver function is not called. An
57 * uninitialized EGLDisplay has no driver associated with it. When
58 * such display is detected,
59 *
60 * EGL_NOT_INITIALIZED
61 *
62 * is generated.
63 *
64 * Some of the entry points use current display, context, or surface
65 * implicitly. For such entry points, the implicit objects are also
66 * checked before calling the driver function. Other than the
67 * errors listed above,
68 *
69 * EGL_BAD_CURRENT_SURFACE
70 *
71 * may also be generated.
72 *
73 * Notes on naming conventions:
74 *
75 * eglFooBar - public EGL function
76 * EGL_FOO_BAR - public EGL token
77 * EGLDatatype - public EGL datatype
78 *
79 * _eglFooBar - private EGL function
80 * _EGLDatatype - private EGL datatype, typedef'd struct
81 * _egl_struct - private EGL struct, non-typedef'd
82 *
83 */
84
85
86 #ifdef USE_LIBGLVND
87 #define EGLAPI
88 #undef PUBLIC
89 #define PUBLIC
90 #endif
91
92 #include <stdio.h>
93 #include <stdlib.h>
94 #include <string.h>
95 #include "c99_compat.h"
96 #include "c11/threads.h"
97 #include "util/macros.h"
98
99 #include "eglapi.h"
100 #include "egldefines.h"
101 #include "eglglobals.h"
102 #include "eglcontext.h"
103 #include "egldisplay.h"
104 #include "egltypedefs.h"
105 #include "eglcurrent.h"
106 #include "egldevice.h"
107 #include "egldriver.h"
108 #include "eglsurface.h"
109 #include "eglconfig.h"
110 #include "eglimage.h"
111 #include "eglsync.h"
112
113 #include "GL/mesa_glinterop.h"
114
115 /**
116 * Macros to help return an API entrypoint.
117 *
118 * These macros will unlock the display and record the error code.
119 */
120 #define RETURN_EGL_ERROR(disp, err, ret) \
121 do { \
122 if (disp) \
123 _eglUnlockDisplay(disp); \
124 /* EGL error codes are non-zero */ \
125 if (err) \
126 _eglError(err, __func__); \
127 return ret; \
128 } while (0)
129
130 #define RETURN_EGL_SUCCESS(disp, ret) \
131 RETURN_EGL_ERROR(disp, EGL_SUCCESS, ret)
132
133 /* record EGL_SUCCESS only when ret evaluates to true */
134 #define RETURN_EGL_EVAL(disp, ret) \
135 RETURN_EGL_ERROR(disp, (ret) ? EGL_SUCCESS : 0, ret)
136
137
138 /*
139 * A bunch of macros and checks to simplify error checking.
140 */
141
142 #define _EGL_CHECK_DISPLAY(disp, ret, drv) \
143 do { \
144 drv = _eglCheckDisplay(disp, __func__); \
145 if (!drv) \
146 RETURN_EGL_ERROR(disp, 0, ret); \
147 } while (0)
148
149 #define _EGL_CHECK_OBJECT(disp, type, obj, ret, drv) \
150 do { \
151 drv = _eglCheck ## type(disp, obj, __func__); \
152 if (!drv) \
153 RETURN_EGL_ERROR(disp, 0, ret); \
154 } while (0)
155
156 #define _EGL_CHECK_SURFACE(disp, surf, ret, drv) \
157 _EGL_CHECK_OBJECT(disp, Surface, surf, ret, drv)
158
159 #define _EGL_CHECK_CONTEXT(disp, context, ret, drv) \
160 _EGL_CHECK_OBJECT(disp, Context, context, ret, drv)
161
162 #define _EGL_CHECK_CONFIG(disp, conf, ret, drv) \
163 _EGL_CHECK_OBJECT(disp, Config, conf, ret, drv)
164
165 #define _EGL_CHECK_SYNC(disp, s, ret, drv) \
166 _EGL_CHECK_OBJECT(disp, Sync, s, ret, drv)
167
168
169 struct _egl_entrypoint {
170 const char *name;
171 _EGLProc function;
172 };
173
174
175 static inline _EGLDriver *
176 _eglCheckDisplay(_EGLDisplay *disp, const char *msg)
177 {
178 if (!disp) {
179 _eglError(EGL_BAD_DISPLAY, msg);
180 return NULL;
181 }
182 if (!disp->Initialized) {
183 _eglError(EGL_NOT_INITIALIZED, msg);
184 return NULL;
185 }
186 return disp->Driver;
187 }
188
189
190 static inline _EGLDriver *
191 _eglCheckSurface(_EGLDisplay *disp, _EGLSurface *surf, const char *msg)
192 {
193 _EGLDriver *drv = _eglCheckDisplay(disp, msg);
194 if (!drv)
195 return NULL;
196 if (!surf) {
197 _eglError(EGL_BAD_SURFACE, msg);
198 return NULL;
199 }
200 return drv;
201 }
202
203
204 static inline _EGLDriver *
205 _eglCheckContext(_EGLDisplay *disp, _EGLContext *context, const char *msg)
206 {
207 _EGLDriver *drv = _eglCheckDisplay(disp, msg);
208 if (!drv)
209 return NULL;
210 if (!context) {
211 _eglError(EGL_BAD_CONTEXT, msg);
212 return NULL;
213 }
214 return drv;
215 }
216
217
218 static inline _EGLDriver *
219 _eglCheckConfig(_EGLDisplay *disp, _EGLConfig *conf, const char *msg)
220 {
221 _EGLDriver *drv = _eglCheckDisplay(disp, msg);
222 if (!drv)
223 return NULL;
224 if (!conf) {
225 _eglError(EGL_BAD_CONFIG, msg);
226 return NULL;
227 }
228 return drv;
229 }
230
231
232 static inline _EGLDriver *
233 _eglCheckSync(_EGLDisplay *disp, _EGLSync *s, const char *msg)
234 {
235 _EGLDriver *drv = _eglCheckDisplay(disp, msg);
236 if (!drv)
237 return NULL;
238 if (!s) {
239 _eglError(EGL_BAD_PARAMETER, msg);
240 return NULL;
241 }
242 return drv;
243 }
244
245
246 /**
247 * Lookup and lock a display.
248 */
249 static inline _EGLDisplay *
250 _eglLockDisplay(EGLDisplay dpy)
251 {
252 _EGLDisplay *disp = _eglLookupDisplay(dpy);
253 if (disp)
254 mtx_lock(&disp->Mutex);
255 return disp;
256 }
257
258
259 /**
260 * Unlock a display.
261 */
262 static inline void
263 _eglUnlockDisplay(_EGLDisplay *disp)
264 {
265 mtx_unlock(&disp->Mutex);
266 }
267
268 static EGLBoolean
269 _eglSetFuncName(const char *funcName, _EGLDisplay *disp, EGLenum objectType, _EGLResource *object)
270 {
271 _EGLThreadInfo *thr = _eglGetCurrentThread();
272 if (!_eglIsCurrentThreadDummy()) {
273 thr->CurrentFuncName = funcName;
274 thr->CurrentObjectLabel = NULL;
275
276 if (objectType == EGL_OBJECT_THREAD_KHR)
277 thr->CurrentObjectLabel = thr->Label;
278 else if (objectType == EGL_OBJECT_DISPLAY_KHR && disp)
279 thr->CurrentObjectLabel = disp->Label;
280 else if (object)
281 thr->CurrentObjectLabel = object->Label;
282
283 return EGL_TRUE;
284 }
285
286 _eglDebugReport(EGL_BAD_ALLOC, funcName, EGL_DEBUG_MSG_CRITICAL_KHR, NULL);
287 return EGL_FALSE;
288 }
289
290 #define _EGL_FUNC_START(disp, objectType, object, ret) \
291 do { \
292 if (!_eglSetFuncName(__func__, disp, objectType, (_EGLResource *) object)) { \
293 if (disp) \
294 _eglUnlockDisplay(disp); \
295 return ret; \
296 } \
297 } while(0)
298
299 /**
300 * Convert an attribute list from EGLint[] to EGLAttrib[].
301 *
302 * Return an EGL error code. The output parameter out_attrib_list is modified
303 * only on success.
304 */
305 static EGLint
306 _eglConvertIntsToAttribs(const EGLint *int_list, EGLAttrib **out_attrib_list)
307 {
308 size_t len = 0;
309 EGLAttrib *attrib_list;
310
311 if (int_list) {
312 while (int_list[2*len] != EGL_NONE)
313 ++len;
314 }
315
316 if (len == 0) {
317 *out_attrib_list = NULL;
318 return EGL_SUCCESS;
319 }
320
321 if (2*len + 1 > SIZE_MAX / sizeof(EGLAttrib))
322 return EGL_BAD_ALLOC;
323
324 attrib_list = malloc((2*len + 1) * sizeof(EGLAttrib));
325 if (!attrib_list)
326 return EGL_BAD_ALLOC;
327
328 for (size_t i = 0; i < len; ++i) {
329 attrib_list[2*i + 0] = int_list[2*i + 0];
330 attrib_list[2*i + 1] = int_list[2*i + 1];
331 }
332
333 attrib_list[2*len] = EGL_NONE;
334
335 *out_attrib_list = attrib_list;
336 return EGL_SUCCESS;
337 }
338
339
340 static EGLint *
341 _eglConvertAttribsToInt(const EGLAttrib *attr_list)
342 {
343 size_t size = _eglNumAttribs(attr_list);
344 EGLint *int_attribs = NULL;
345
346 /* Convert attributes from EGLAttrib[] to EGLint[] */
347 if (size) {
348 int_attribs = calloc(size, sizeof(int_attribs[0]));
349 if (!int_attribs)
350 return NULL;
351
352 for (size_t i = 0; i < size; i++)
353 int_attribs[i] = attr_list[i];
354 }
355 return int_attribs;
356 }
357
358
359 /**
360 * This is typically the first EGL function that an application calls.
361 * It associates a private _EGLDisplay object to the native display.
362 */
363 EGLDisplay EGLAPIENTRY
364 eglGetDisplay(EGLNativeDisplayType nativeDisplay)
365 {
366 _EGLPlatformType plat;
367 _EGLDisplay *disp;
368 void *native_display_ptr;
369
370 _EGL_FUNC_START(NULL, EGL_OBJECT_THREAD_KHR, NULL, EGL_NO_DISPLAY);
371
372 STATIC_ASSERT(sizeof(void*) == sizeof(nativeDisplay));
373 native_display_ptr = (void*) nativeDisplay;
374
375 plat = _eglGetNativePlatform(native_display_ptr);
376 disp = _eglFindDisplay(plat, native_display_ptr, NULL);
377 return _eglGetDisplayHandle(disp);
378 }
379
380 static EGLDisplay
381 _eglGetPlatformDisplayCommon(EGLenum platform, void *native_display,
382 const EGLAttrib *attrib_list)
383 {
384 _EGLDisplay *disp;
385
386 switch (platform) {
387 #ifdef HAVE_X11_PLATFORM
388 case EGL_PLATFORM_X11_EXT:
389 disp = _eglGetX11Display((Display*) native_display, attrib_list);
390 break;
391 #endif
392 #ifdef HAVE_DRM_PLATFORM
393 case EGL_PLATFORM_GBM_MESA:
394 disp = _eglGetGbmDisplay((struct gbm_device*) native_display,
395 attrib_list);
396 break;
397 #endif
398 #ifdef HAVE_WAYLAND_PLATFORM
399 case EGL_PLATFORM_WAYLAND_EXT:
400 disp = _eglGetWaylandDisplay((struct wl_display*) native_display,
401 attrib_list);
402 break;
403 #endif
404 #ifdef HAVE_SURFACELESS_PLATFORM
405 case EGL_PLATFORM_SURFACELESS_MESA:
406 disp = _eglGetSurfacelessDisplay(native_display, attrib_list);
407 break;
408 #endif
409 case EGL_PLATFORM_DEVICE_EXT:
410 disp = _eglGetDeviceDisplay(native_display, attrib_list);
411 break;
412 default:
413 RETURN_EGL_ERROR(NULL, EGL_BAD_PARAMETER, NULL);
414 }
415
416 return _eglGetDisplayHandle(disp);
417 }
418
419 static EGLDisplay EGLAPIENTRY
420 eglGetPlatformDisplayEXT(EGLenum platform, void *native_display,
421 const EGLint *int_attribs)
422 {
423 EGLAttrib *attrib_list;
424 EGLDisplay disp;
425
426 _EGL_FUNC_START(NULL, EGL_OBJECT_THREAD_KHR, NULL, EGL_NO_DISPLAY);
427
428 if (_eglConvertIntsToAttribs(int_attribs, &attrib_list) != EGL_SUCCESS)
429 RETURN_EGL_ERROR(NULL, EGL_BAD_ALLOC, NULL);
430
431 disp = _eglGetPlatformDisplayCommon(platform, native_display, attrib_list);
432 free(attrib_list);
433 return disp;
434 }
435
436 EGLDisplay EGLAPIENTRY
437 eglGetPlatformDisplay(EGLenum platform, void *native_display,
438 const EGLAttrib *attrib_list)
439 {
440 _EGL_FUNC_START(NULL, EGL_OBJECT_THREAD_KHR, NULL, EGL_NO_DISPLAY);
441 return _eglGetPlatformDisplayCommon(platform, native_display, attrib_list);
442 }
443
444 /**
445 * Copy the extension into the string and update the string pointer.
446 */
447 static EGLint
448 _eglAppendExtension(char **str, const char *ext)
449 {
450 char *s = *str;
451 size_t len = strlen(ext);
452
453 if (s) {
454 memcpy(s, ext, len);
455 s[len++] = ' ';
456 s[len] = '\0';
457
458 *str += len;
459 }
460 else {
461 len++;
462 }
463
464 return (EGLint) len;
465 }
466
467 /**
468 * Examine the individual extension enable/disable flags and recompute
469 * the driver's Extensions string.
470 */
471 static void
472 _eglCreateExtensionsString(_EGLDisplay *disp)
473 {
474 #define _EGL_CHECK_EXTENSION(ext) \
475 do { \
476 if (disp->Extensions.ext) { \
477 _eglAppendExtension(&exts, "EGL_" #ext); \
478 assert(exts <= disp->ExtensionsString + _EGL_MAX_EXTENSIONS_LEN); \
479 } \
480 } while (0)
481
482 char *exts = disp->ExtensionsString;
483
484 /* Please keep these sorted alphabetically. */
485 _EGL_CHECK_EXTENSION(ANDROID_blob_cache);
486 _EGL_CHECK_EXTENSION(ANDROID_framebuffer_target);
487 _EGL_CHECK_EXTENSION(ANDROID_image_native_buffer);
488 _EGL_CHECK_EXTENSION(ANDROID_native_fence_sync);
489 _EGL_CHECK_EXTENSION(ANDROID_recordable);
490
491 _EGL_CHECK_EXTENSION(CHROMIUM_sync_control);
492
493 _EGL_CHECK_EXTENSION(EXT_buffer_age);
494 _EGL_CHECK_EXTENSION(EXT_create_context_robustness);
495 _EGL_CHECK_EXTENSION(EXT_image_dma_buf_import);
496 _EGL_CHECK_EXTENSION(EXT_image_dma_buf_import_modifiers);
497 _EGL_CHECK_EXTENSION(EXT_surface_CTA861_3_metadata);
498 _EGL_CHECK_EXTENSION(EXT_surface_SMPTE2086_metadata);
499 _EGL_CHECK_EXTENSION(EXT_swap_buffers_with_damage);
500
501 _EGL_CHECK_EXTENSION(IMG_context_priority);
502
503 _EGL_CHECK_EXTENSION(KHR_cl_event2);
504 _EGL_CHECK_EXTENSION(KHR_config_attribs);
505 _EGL_CHECK_EXTENSION(KHR_context_flush_control);
506 _EGL_CHECK_EXTENSION(KHR_create_context);
507 _EGL_CHECK_EXTENSION(KHR_create_context_no_error);
508 _EGL_CHECK_EXTENSION(KHR_fence_sync);
509 _EGL_CHECK_EXTENSION(KHR_get_all_proc_addresses);
510 _EGL_CHECK_EXTENSION(KHR_gl_colorspace);
511 _EGL_CHECK_EXTENSION(KHR_gl_renderbuffer_image);
512 _EGL_CHECK_EXTENSION(KHR_gl_texture_2D_image);
513 _EGL_CHECK_EXTENSION(KHR_gl_texture_3D_image);
514 _EGL_CHECK_EXTENSION(KHR_gl_texture_cubemap_image);
515 if (disp->Extensions.KHR_image_base && disp->Extensions.KHR_image_pixmap)
516 disp->Extensions.KHR_image = EGL_TRUE;
517 _EGL_CHECK_EXTENSION(KHR_image);
518 _EGL_CHECK_EXTENSION(KHR_image_base);
519 _EGL_CHECK_EXTENSION(KHR_image_pixmap);
520 _EGL_CHECK_EXTENSION(KHR_mutable_render_buffer);
521 _EGL_CHECK_EXTENSION(KHR_no_config_context);
522 _EGL_CHECK_EXTENSION(KHR_partial_update);
523 _EGL_CHECK_EXTENSION(KHR_reusable_sync);
524 _EGL_CHECK_EXTENSION(KHR_surfaceless_context);
525 if (disp->Extensions.EXT_swap_buffers_with_damage)
526 _eglAppendExtension(&exts, "EGL_KHR_swap_buffers_with_damage");
527 _EGL_CHECK_EXTENSION(EXT_pixel_format_float);
528 _EGL_CHECK_EXTENSION(KHR_wait_sync);
529
530 if (disp->Extensions.KHR_no_config_context)
531 _eglAppendExtension(&exts, "EGL_MESA_configless_context");
532 _EGL_CHECK_EXTENSION(MESA_drm_image);
533 _EGL_CHECK_EXTENSION(MESA_image_dma_buf_export);
534 _EGL_CHECK_EXTENSION(MESA_query_driver);
535
536 _EGL_CHECK_EXTENSION(NOK_swap_region);
537 _EGL_CHECK_EXTENSION(NOK_texture_from_pixmap);
538
539 _EGL_CHECK_EXTENSION(NV_post_sub_buffer);
540
541 _EGL_CHECK_EXTENSION(WL_bind_wayland_display);
542 _EGL_CHECK_EXTENSION(WL_create_wayland_buffer_from_image);
543
544 #undef _EGL_CHECK_EXTENSION
545 }
546
547 static void
548 _eglCreateAPIsString(_EGLDisplay *disp)
549 {
550 #define addstr(str) \
551 { \
552 const size_t old_len = strlen(disp->ClientAPIsString); \
553 const size_t add_len = sizeof(str); \
554 const size_t max_len = sizeof(disp->ClientAPIsString) - 1; \
555 if (old_len + add_len <= max_len) \
556 strcat(disp->ClientAPIsString, str " "); \
557 else \
558 assert(!"disp->ClientAPIsString is not large enough"); \
559 }
560
561 if (disp->ClientAPIs & EGL_OPENGL_BIT)
562 addstr("OpenGL");
563
564 if (disp->ClientAPIs & EGL_OPENGL_ES_BIT ||
565 disp->ClientAPIs & EGL_OPENGL_ES2_BIT ||
566 disp->ClientAPIs & EGL_OPENGL_ES3_BIT_KHR) {
567 addstr("OpenGL_ES");
568 }
569
570 if (disp->ClientAPIs & EGL_OPENVG_BIT)
571 addstr("OpenVG");
572
573 #undef addstr
574 }
575
576 static void
577 _eglComputeVersion(_EGLDisplay *disp)
578 {
579 disp->Version = 14;
580
581 if (disp->Extensions.KHR_fence_sync &&
582 disp->Extensions.KHR_cl_event2 &&
583 disp->Extensions.KHR_wait_sync &&
584 disp->Extensions.KHR_image_base &&
585 disp->Extensions.KHR_gl_texture_2D_image &&
586 disp->Extensions.KHR_gl_texture_3D_image &&
587 disp->Extensions.KHR_gl_texture_cubemap_image &&
588 disp->Extensions.KHR_gl_renderbuffer_image &&
589 disp->Extensions.KHR_create_context &&
590 disp->Extensions.EXT_create_context_robustness &&
591 disp->Extensions.KHR_get_all_proc_addresses &&
592 disp->Extensions.KHR_gl_colorspace &&
593 disp->Extensions.KHR_surfaceless_context)
594 disp->Version = 15;
595 }
596
597 /**
598 * This is typically the second EGL function that an application calls.
599 * Here we load/initialize the actual hardware driver.
600 */
601 EGLBoolean EGLAPIENTRY
602 eglInitialize(EGLDisplay dpy, EGLint *major, EGLint *minor)
603 {
604 _EGLDisplay *disp = _eglLockDisplay(dpy);
605
606 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_FALSE);
607
608 if (!disp)
609 RETURN_EGL_ERROR(NULL, EGL_BAD_DISPLAY, EGL_FALSE);
610
611 if (!disp->Initialized) {
612 if (!_eglMatchDriver(disp))
613 RETURN_EGL_ERROR(disp, EGL_NOT_INITIALIZED, EGL_FALSE);
614
615 /* limit to APIs supported by core */
616 disp->ClientAPIs &= _EGL_API_ALL_BITS;
617
618 /* EGL_KHR_get_all_proc_addresses is a corner-case extension. The spec
619 * classifies it as an EGL display extension, though conceptually it's an
620 * EGL client extension.
621 *
622 * From the EGL_KHR_get_all_proc_addresses spec:
623 *
624 * The EGL implementation must expose the name
625 * EGL_KHR_client_get_all_proc_addresses if and only if it exposes
626 * EGL_KHR_get_all_proc_addresses and supports
627 * EGL_EXT_client_extensions.
628 *
629 * Mesa unconditionally exposes both client extensions mentioned above,
630 * so the spec requires that each EGLDisplay unconditionally expose
631 * EGL_KHR_get_all_proc_addresses also.
632 */
633 disp->Extensions.KHR_get_all_proc_addresses = EGL_TRUE;
634
635 /* Extensions is used to provide EGL 1.3 functionality for 1.2 aware
636 * programs. It is driver agnostic and handled in the main EGL code.
637 */
638 disp->Extensions.KHR_config_attribs = EGL_TRUE;
639
640 _eglComputeVersion(disp);
641 _eglCreateExtensionsString(disp);
642 _eglCreateAPIsString(disp);
643 snprintf(disp->VersionString, sizeof(disp->VersionString),
644 "%d.%d", disp->Version / 10, disp->Version % 10);
645 }
646
647 /* Update applications version of major and minor if not NULL */
648 if ((major != NULL) && (minor != NULL)) {
649 *major = disp->Version / 10;
650 *minor = disp->Version % 10;
651 }
652
653 RETURN_EGL_SUCCESS(disp, EGL_TRUE);
654 }
655
656
657 EGLBoolean EGLAPIENTRY
658 eglTerminate(EGLDisplay dpy)
659 {
660 _EGLDisplay *disp = _eglLockDisplay(dpy);
661
662 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_FALSE);
663
664 if (!disp)
665 RETURN_EGL_ERROR(NULL, EGL_BAD_DISPLAY, EGL_FALSE);
666
667 if (disp->Initialized) {
668 _EGLDriver *drv = disp->Driver;
669
670 drv->API.Terminate(drv, disp);
671 /* do not reset disp->Driver */
672 disp->ClientAPIsString[0] = 0;
673 disp->Initialized = EGL_FALSE;
674 }
675
676 RETURN_EGL_SUCCESS(disp, EGL_TRUE);
677 }
678
679
680 const char * EGLAPIENTRY
681 eglQueryString(EGLDisplay dpy, EGLint name)
682 {
683 _EGLDisplay *disp;
684 _EGLDriver *drv;
685
686 if (dpy == EGL_NO_DISPLAY && name == EGL_EXTENSIONS) {
687 const char *ret = _eglGetClientExtensionString();
688 if (ret != NULL)
689 RETURN_EGL_SUCCESS(NULL, ret);
690 else
691 RETURN_EGL_ERROR(NULL, EGL_BAD_ALLOC, NULL);
692 }
693
694 disp = _eglLockDisplay(dpy);
695 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, NULL);
696 _EGL_CHECK_DISPLAY(disp, NULL, drv);
697
698 switch (name) {
699 case EGL_VENDOR:
700 RETURN_EGL_SUCCESS(disp, _EGL_VENDOR_STRING);
701 case EGL_VERSION:
702 RETURN_EGL_SUCCESS(disp, disp->VersionString);
703 case EGL_EXTENSIONS:
704 RETURN_EGL_SUCCESS(disp, disp->ExtensionsString);
705 case EGL_CLIENT_APIS:
706 RETURN_EGL_SUCCESS(disp, disp->ClientAPIsString);
707 default:
708 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, NULL);
709 }
710 }
711
712
713 EGLBoolean EGLAPIENTRY
714 eglGetConfigs(EGLDisplay dpy, EGLConfig *configs,
715 EGLint config_size, EGLint *num_config)
716 {
717 _EGLDisplay *disp = _eglLockDisplay(dpy);
718 _EGLDriver *drv;
719 EGLBoolean ret;
720
721 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_FALSE);
722
723 _EGL_CHECK_DISPLAY(disp, EGL_FALSE, drv);
724
725 if (!num_config)
726 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_FALSE);
727
728 if (drv->API.GetConfigs)
729 ret = drv->API.GetConfigs(drv, disp, configs, config_size, num_config);
730 else
731 ret = _eglGetConfigs(drv, disp, configs, config_size, num_config);
732
733 RETURN_EGL_EVAL(disp, ret);
734 }
735
736
737 EGLBoolean EGLAPIENTRY
738 eglChooseConfig(EGLDisplay dpy, const EGLint *attrib_list, EGLConfig *configs,
739 EGLint config_size, EGLint *num_config)
740 {
741 _EGLDisplay *disp = _eglLockDisplay(dpy);
742 _EGLDriver *drv;
743 EGLBoolean ret;
744
745 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_FALSE);
746
747 _EGL_CHECK_DISPLAY(disp, EGL_FALSE, drv);
748
749 if (!num_config)
750 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_FALSE);
751
752 if (drv->API.ChooseConfig)
753 ret = drv->API.ChooseConfig(drv, disp, attrib_list, configs,
754 config_size, num_config);
755 else
756 ret = _eglChooseConfig(drv, disp, attrib_list, configs,
757 config_size, num_config);
758
759 RETURN_EGL_EVAL(disp, ret);
760 }
761
762
763 EGLBoolean EGLAPIENTRY
764 eglGetConfigAttrib(EGLDisplay dpy, EGLConfig config,
765 EGLint attribute, EGLint *value)
766 {
767 _EGLDisplay *disp = _eglLockDisplay(dpy);
768 _EGLConfig *conf = _eglLookupConfig(config, disp);
769 _EGLDriver *drv;
770 EGLBoolean ret;
771
772 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_FALSE);
773
774 _EGL_CHECK_CONFIG(disp, conf, EGL_FALSE, drv);
775
776 if (drv->API.GetConfigAttrib)
777 ret = drv->API.GetConfigAttrib(drv, disp, conf, attribute, value);
778 else
779 ret = _eglGetConfigAttrib(drv, disp, conf, attribute, value);
780
781 RETURN_EGL_EVAL(disp, ret);
782 }
783
784
785 EGLContext EGLAPIENTRY
786 eglCreateContext(EGLDisplay dpy, EGLConfig config, EGLContext share_list,
787 const EGLint *attrib_list)
788 {
789 _EGLDisplay *disp = _eglLockDisplay(dpy);
790 _EGLConfig *conf = _eglLookupConfig(config, disp);
791 _EGLContext *share = _eglLookupContext(share_list, disp);
792 _EGLDriver *drv;
793 _EGLContext *context;
794 EGLContext ret;
795
796 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_NO_CONTEXT);
797
798 _EGL_CHECK_DISPLAY(disp, EGL_NO_CONTEXT, drv);
799
800 if (config != EGL_NO_CONFIG_KHR)
801 _EGL_CHECK_CONFIG(disp, conf, EGL_NO_CONTEXT, drv);
802 else if (!disp->Extensions.KHR_no_config_context)
803 RETURN_EGL_ERROR(disp, EGL_BAD_CONFIG, EGL_NO_CONTEXT);
804
805 if (!share && share_list != EGL_NO_CONTEXT)
806 RETURN_EGL_ERROR(disp, EGL_BAD_CONTEXT, EGL_NO_CONTEXT);
807
808 context = drv->API.CreateContext(drv, disp, conf, share, attrib_list);
809 ret = (context) ? _eglLinkContext(context) : EGL_NO_CONTEXT;
810
811 RETURN_EGL_EVAL(disp, ret);
812 }
813
814
815 EGLBoolean EGLAPIENTRY
816 eglDestroyContext(EGLDisplay dpy, EGLContext ctx)
817 {
818 _EGLDisplay *disp = _eglLockDisplay(dpy);
819 _EGLContext *context = _eglLookupContext(ctx, disp);
820 _EGLDriver *drv;
821 EGLBoolean ret;
822
823 _EGL_FUNC_START(disp, EGL_OBJECT_CONTEXT_KHR, context, EGL_FALSE);
824
825 _EGL_CHECK_CONTEXT(disp, context, EGL_FALSE, drv);
826 _eglUnlinkContext(context);
827 ret = drv->API.DestroyContext(drv, disp, context);
828
829 RETURN_EGL_EVAL(disp, ret);
830 }
831
832
833 EGLBoolean EGLAPIENTRY
834 eglMakeCurrent(EGLDisplay dpy, EGLSurface draw, EGLSurface read,
835 EGLContext ctx)
836 {
837 _EGLDisplay *disp = _eglLockDisplay(dpy);
838 _EGLContext *context = _eglLookupContext(ctx, disp);
839 _EGLSurface *draw_surf = _eglLookupSurface(draw, disp);
840 _EGLSurface *read_surf = _eglLookupSurface(read, disp);
841 _EGLDriver *drv;
842 EGLBoolean ret;
843
844 _EGL_FUNC_START(disp, EGL_OBJECT_CONTEXT_KHR, context, EGL_FALSE);
845
846 if (!disp)
847 RETURN_EGL_ERROR(disp, EGL_BAD_DISPLAY, EGL_FALSE);
848 drv = disp->Driver;
849
850 /* display is allowed to be uninitialized under certain condition */
851 if (!disp->Initialized) {
852 if (draw != EGL_NO_SURFACE || read != EGL_NO_SURFACE ||
853 ctx != EGL_NO_CONTEXT)
854 RETURN_EGL_ERROR(disp, EGL_BAD_DISPLAY, EGL_FALSE);
855 }
856 if (!drv)
857 RETURN_EGL_SUCCESS(disp, EGL_TRUE);
858
859 if (!context && ctx != EGL_NO_CONTEXT)
860 RETURN_EGL_ERROR(disp, EGL_BAD_CONTEXT, EGL_FALSE);
861 if (!draw_surf || !read_surf) {
862 /* From the EGL 1.4 (20130211) spec:
863 *
864 * To release the current context without assigning a new one, set ctx
865 * to EGL_NO_CONTEXT and set draw and read to EGL_NO_SURFACE.
866 */
867 if (!disp->Extensions.KHR_surfaceless_context && ctx != EGL_NO_CONTEXT)
868 RETURN_EGL_ERROR(disp, EGL_BAD_SURFACE, EGL_FALSE);
869
870 if ((!draw_surf && draw != EGL_NO_SURFACE) ||
871 (!read_surf && read != EGL_NO_SURFACE))
872 RETURN_EGL_ERROR(disp, EGL_BAD_SURFACE, EGL_FALSE);
873 if (draw_surf || read_surf)
874 RETURN_EGL_ERROR(disp, EGL_BAD_MATCH, EGL_FALSE);
875 }
876
877 /* If a native window underlying either draw or read is no longer valid,
878 * an EGL_BAD_NATIVE_WINDOW error is generated.
879 */
880 if (draw_surf && draw_surf->Lost)
881 RETURN_EGL_ERROR(disp, EGL_BAD_NATIVE_WINDOW, EGL_FALSE);
882 if (read_surf && read_surf->Lost)
883 RETURN_EGL_ERROR(disp, EGL_BAD_NATIVE_WINDOW, EGL_FALSE);
884
885 ret = drv->API.MakeCurrent(drv, disp, draw_surf, read_surf, context);
886
887 RETURN_EGL_EVAL(disp, ret);
888 }
889
890
891 EGLBoolean EGLAPIENTRY
892 eglQueryContext(EGLDisplay dpy, EGLContext ctx,
893 EGLint attribute, EGLint *value)
894 {
895 _EGLDisplay *disp = _eglLockDisplay(dpy);
896 _EGLContext *context = _eglLookupContext(ctx, disp);
897 _EGLDriver *drv;
898 EGLBoolean ret;
899
900 _EGL_FUNC_START(disp, EGL_OBJECT_CONTEXT_KHR, context, EGL_FALSE);
901
902 _EGL_CHECK_CONTEXT(disp, context, EGL_FALSE, drv);
903
904 if (drv->API.QueryContext)
905 ret = drv->API.QueryContext(drv, disp, context, attribute, value);
906 else
907 ret = _eglQueryContext(drv, disp, context, attribute, value);
908
909 RETURN_EGL_EVAL(disp, ret);
910 }
911
912
913 /* In EGL specs 1.4 and 1.5, at the end of sections 3.5.1 and 3.5.4, it says
914 * that if native_surface was already used to create a window or pixmap, we
915 * can't create a new one. This is what this function checks for.
916 */
917 static bool
918 _eglNativeSurfaceAlreadyUsed(_EGLDisplay *disp, void *native_surface)
919 {
920 _EGLResource *list;
921
922 list = disp->ResourceLists[_EGL_RESOURCE_SURFACE];
923 while (list) {
924 _EGLSurface *surf = (_EGLSurface *) list;
925
926 list = list->Next;
927
928 if (surf->Type == EGL_PBUFFER_BIT)
929 continue;
930
931 if (surf->NativeSurface == native_surface)
932 return true;
933 }
934
935 return false;
936 }
937
938
939 static EGLSurface
940 _eglCreateWindowSurfaceCommon(_EGLDisplay *disp, EGLConfig config,
941 void *native_window, const EGLint *attrib_list)
942 {
943 _EGLConfig *conf = _eglLookupConfig(config, disp);
944 _EGLDriver *drv;
945 _EGLSurface *surf;
946 EGLSurface ret;
947
948
949 if (native_window == NULL)
950 RETURN_EGL_ERROR(disp, EGL_BAD_NATIVE_WINDOW, EGL_NO_SURFACE);
951
952 if (disp && (disp->Platform == _EGL_PLATFORM_SURFACELESS ||
953 disp->Platform == _EGL_PLATFORM_DEVICE)) {
954 /* From the EGL_MESA_platform_surfaceless spec (v1):
955 *
956 * eglCreatePlatformWindowSurface fails when called with a <display>
957 * that belongs to the surfaceless platform. It returns
958 * EGL_NO_SURFACE and generates EGL_BAD_NATIVE_WINDOW. The
959 * justification for this unconditional failure is that the
960 * surfaceless platform has no native windows, and therefore the
961 * <native_window> parameter is always invalid.
962 *
963 * This check must occur before checking the EGLConfig, which emits
964 * EGL_BAD_CONFIG.
965 */
966 RETURN_EGL_ERROR(disp, EGL_BAD_NATIVE_WINDOW, EGL_NO_SURFACE);
967 }
968
969 _EGL_CHECK_CONFIG(disp, conf, EGL_NO_SURFACE, drv);
970
971 if ((conf->SurfaceType & EGL_WINDOW_BIT) == 0)
972 RETURN_EGL_ERROR(disp, EGL_BAD_MATCH, EGL_NO_SURFACE);
973
974 if (_eglNativeSurfaceAlreadyUsed(disp, native_window))
975 RETURN_EGL_ERROR(disp, EGL_BAD_ALLOC, EGL_NO_SURFACE);
976
977 surf = drv->API.CreateWindowSurface(drv, disp, conf, native_window,
978 attrib_list);
979 ret = (surf) ? _eglLinkSurface(surf) : EGL_NO_SURFACE;
980
981 RETURN_EGL_EVAL(disp, ret);
982 }
983
984
985 EGLSurface EGLAPIENTRY
986 eglCreateWindowSurface(EGLDisplay dpy, EGLConfig config,
987 EGLNativeWindowType window, const EGLint *attrib_list)
988 {
989 _EGLDisplay *disp = _eglLockDisplay(dpy);
990
991 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_NO_SURFACE);
992 STATIC_ASSERT(sizeof(void*) == sizeof(window));
993 return _eglCreateWindowSurfaceCommon(disp, config, (void*) window,
994 attrib_list);
995 }
996
997 static void *
998 _fixupNativeWindow(_EGLDisplay *disp, void *native_window)
999 {
1000 #ifdef HAVE_X11_PLATFORM
1001 if (disp && disp->Platform == _EGL_PLATFORM_X11 && native_window != NULL) {
1002 /* The `native_window` parameter for the X11 platform differs between
1003 * eglCreateWindowSurface() and eglCreatePlatformPixmapSurfaceEXT(). In
1004 * eglCreateWindowSurface(), the type of `native_window` is an Xlib
1005 * `Window`. In eglCreatePlatformWindowSurfaceEXT(), the type is
1006 * `Window*`. Convert `Window*` to `Window` because that's what
1007 * dri2_x11_create_window_surface() expects.
1008 */
1009 return (void *)(* (Window*) native_window);
1010 }
1011 #endif
1012 return native_window;
1013 }
1014
1015 static EGLSurface EGLAPIENTRY
1016 eglCreatePlatformWindowSurfaceEXT(EGLDisplay dpy, EGLConfig config,
1017 void *native_window,
1018 const EGLint *attrib_list)
1019 {
1020 _EGLDisplay *disp = _eglLockDisplay(dpy);
1021
1022 native_window = _fixupNativeWindow(disp, native_window);
1023
1024 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_NO_SURFACE);
1025 return _eglCreateWindowSurfaceCommon(disp, config, native_window,
1026 attrib_list);
1027 }
1028
1029
1030 EGLSurface EGLAPIENTRY
1031 eglCreatePlatformWindowSurface(EGLDisplay dpy, EGLConfig config,
1032 void *native_window,
1033 const EGLAttrib *attrib_list)
1034 {
1035 _EGLDisplay *disp = _eglLockDisplay(dpy);
1036 EGLSurface surface;
1037 EGLint *int_attribs;
1038
1039 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_NO_SURFACE);
1040
1041 int_attribs = _eglConvertAttribsToInt(attrib_list);
1042 if (attrib_list && !int_attribs)
1043 RETURN_EGL_ERROR(disp, EGL_BAD_ALLOC, EGL_NO_SURFACE);
1044
1045 native_window = _fixupNativeWindow(disp, native_window);
1046 surface = _eglCreateWindowSurfaceCommon(disp, config, native_window,
1047 int_attribs);
1048 free(int_attribs);
1049 return surface;
1050 }
1051
1052 static void *
1053 _fixupNativePixmap(_EGLDisplay *disp, void *native_pixmap)
1054 {
1055 #ifdef HAVE_X11_PLATFORM
1056 /* The `native_pixmap` parameter for the X11 platform differs between
1057 * eglCreatePixmapSurface() and eglCreatePlatformPixmapSurfaceEXT(). In
1058 * eglCreatePixmapSurface(), the type of `native_pixmap` is an Xlib
1059 * `Pixmap`. In eglCreatePlatformPixmapSurfaceEXT(), the type is
1060 * `Pixmap*`. Convert `Pixmap*` to `Pixmap` because that's what
1061 * dri2_x11_create_pixmap_surface() expects.
1062 */
1063 if (disp && disp->Platform == _EGL_PLATFORM_X11 && native_pixmap != NULL)
1064 return (void *)(* (Pixmap*) native_pixmap);
1065 #endif
1066 return native_pixmap;
1067 }
1068
1069 static EGLSurface
1070 _eglCreatePixmapSurfaceCommon(_EGLDisplay *disp, EGLConfig config,
1071 void *native_pixmap, const EGLint *attrib_list)
1072 {
1073 _EGLConfig *conf = _eglLookupConfig(config, disp);
1074 _EGLDriver *drv;
1075 _EGLSurface *surf;
1076 EGLSurface ret;
1077
1078 if (disp && (disp->Platform == _EGL_PLATFORM_SURFACELESS ||
1079 disp->Platform == _EGL_PLATFORM_DEVICE)) {
1080 /* From the EGL_MESA_platform_surfaceless spec (v1):
1081 *
1082 * [Like eglCreatePlatformWindowSurface,] eglCreatePlatformPixmapSurface
1083 * also fails when called with a <display> that belongs to the
1084 * surfaceless platform. It returns EGL_NO_SURFACE and generates
1085 * EGL_BAD_NATIVE_PIXMAP.
1086 *
1087 * This check must occur before checking the EGLConfig, which emits
1088 * EGL_BAD_CONFIG.
1089 */
1090 RETURN_EGL_ERROR(disp, EGL_BAD_NATIVE_PIXMAP, EGL_NO_SURFACE);
1091 }
1092
1093 _EGL_CHECK_CONFIG(disp, conf, EGL_NO_SURFACE, drv);
1094
1095 if ((conf->SurfaceType & EGL_PIXMAP_BIT) == 0)
1096 RETURN_EGL_ERROR(disp, EGL_BAD_MATCH, EGL_NO_SURFACE);
1097
1098 if (native_pixmap == NULL)
1099 RETURN_EGL_ERROR(disp, EGL_BAD_NATIVE_PIXMAP, EGL_NO_SURFACE);
1100
1101 if (_eglNativeSurfaceAlreadyUsed(disp, native_pixmap))
1102 RETURN_EGL_ERROR(disp, EGL_BAD_ALLOC, EGL_NO_SURFACE);
1103
1104 surf = drv->API.CreatePixmapSurface(drv, disp, conf, native_pixmap,
1105 attrib_list);
1106 ret = (surf) ? _eglLinkSurface(surf) : EGL_NO_SURFACE;
1107
1108 RETURN_EGL_EVAL(disp, ret);
1109 }
1110
1111
1112 EGLSurface EGLAPIENTRY
1113 eglCreatePixmapSurface(EGLDisplay dpy, EGLConfig config,
1114 EGLNativePixmapType pixmap, const EGLint *attrib_list)
1115 {
1116 _EGLDisplay *disp = _eglLockDisplay(dpy);
1117
1118 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_NO_SURFACE);
1119 STATIC_ASSERT(sizeof(void*) == sizeof(pixmap));
1120 return _eglCreatePixmapSurfaceCommon(disp, config, (void*) pixmap,
1121 attrib_list);
1122 }
1123
1124 static EGLSurface EGLAPIENTRY
1125 eglCreatePlatformPixmapSurfaceEXT(EGLDisplay dpy, EGLConfig config,
1126 void *native_pixmap,
1127 const EGLint *attrib_list)
1128 {
1129 _EGLDisplay *disp = _eglLockDisplay(dpy);
1130
1131 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_NO_SURFACE);
1132 native_pixmap = _fixupNativePixmap(disp, native_pixmap);
1133 return _eglCreatePixmapSurfaceCommon(disp, config, native_pixmap,
1134 attrib_list);
1135 }
1136
1137
1138 EGLSurface EGLAPIENTRY
1139 eglCreatePlatformPixmapSurface(EGLDisplay dpy, EGLConfig config,
1140 void *native_pixmap,
1141 const EGLAttrib *attrib_list)
1142 {
1143 _EGLDisplay *disp = _eglLockDisplay(dpy);
1144 EGLSurface surface;
1145 EGLint *int_attribs;
1146
1147 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_NO_SURFACE);
1148
1149 int_attribs = _eglConvertAttribsToInt(attrib_list);
1150 if (attrib_list && !int_attribs)
1151 RETURN_EGL_ERROR(disp, EGL_BAD_ALLOC, EGL_NO_SURFACE);
1152
1153 native_pixmap = _fixupNativePixmap(disp, native_pixmap);
1154 surface = _eglCreatePixmapSurfaceCommon(disp, config, native_pixmap,
1155 int_attribs);
1156 free(int_attribs);
1157 return surface;
1158 }
1159
1160
1161 EGLSurface EGLAPIENTRY
1162 eglCreatePbufferSurface(EGLDisplay dpy, EGLConfig config,
1163 const EGLint *attrib_list)
1164 {
1165 _EGLDisplay *disp = _eglLockDisplay(dpy);
1166 _EGLConfig *conf = _eglLookupConfig(config, disp);
1167 _EGLDriver *drv;
1168 _EGLSurface *surf;
1169 EGLSurface ret;
1170
1171 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_NO_SURFACE);
1172 _EGL_CHECK_CONFIG(disp, conf, EGL_NO_SURFACE, drv);
1173
1174 if ((conf->SurfaceType & EGL_PBUFFER_BIT) == 0)
1175 RETURN_EGL_ERROR(disp, EGL_BAD_MATCH, EGL_NO_SURFACE);
1176
1177 surf = drv->API.CreatePbufferSurface(drv, disp, conf, attrib_list);
1178 ret = (surf) ? _eglLinkSurface(surf) : EGL_NO_SURFACE;
1179
1180 RETURN_EGL_EVAL(disp, ret);
1181 }
1182
1183
1184 EGLBoolean EGLAPIENTRY
1185 eglDestroySurface(EGLDisplay dpy, EGLSurface surface)
1186 {
1187 _EGLDisplay *disp = _eglLockDisplay(dpy);
1188 _EGLSurface *surf = _eglLookupSurface(surface, disp);
1189 _EGLDriver *drv;
1190 EGLBoolean ret;
1191
1192 _EGL_FUNC_START(disp, EGL_OBJECT_SURFACE_KHR, surf, EGL_FALSE);
1193 _EGL_CHECK_SURFACE(disp, surf, EGL_FALSE, drv);
1194 _eglUnlinkSurface(surf);
1195 ret = drv->API.DestroySurface(drv, disp, surf);
1196
1197 RETURN_EGL_EVAL(disp, ret);
1198 }
1199
1200 EGLBoolean EGLAPIENTRY
1201 eglQuerySurface(EGLDisplay dpy, EGLSurface surface,
1202 EGLint attribute, EGLint *value)
1203 {
1204 _EGLDisplay *disp = _eglLockDisplay(dpy);
1205 _EGLSurface *surf = _eglLookupSurface(surface, disp);
1206 _EGLDriver *drv;
1207 EGLBoolean ret;
1208
1209 _EGL_FUNC_START(disp, EGL_OBJECT_SURFACE_KHR, surf, EGL_FALSE);
1210 _EGL_CHECK_SURFACE(disp, surf, EGL_FALSE, drv);
1211
1212 if (drv->API.QuerySurface)
1213 ret = drv->API.QuerySurface(drv, disp, surf, attribute, value);
1214 else
1215 ret = _eglQuerySurface(drv, disp, surf, attribute, value);
1216
1217 RETURN_EGL_EVAL(disp, ret);
1218 }
1219
1220 EGLBoolean EGLAPIENTRY
1221 eglSurfaceAttrib(EGLDisplay dpy, EGLSurface surface,
1222 EGLint attribute, EGLint value)
1223 {
1224 _EGLDisplay *disp = _eglLockDisplay(dpy);
1225 _EGLSurface *surf = _eglLookupSurface(surface, disp);
1226 _EGLDriver *drv;
1227 EGLBoolean ret;
1228
1229 _EGL_FUNC_START(disp, EGL_OBJECT_SURFACE_KHR, surf, EGL_FALSE);
1230 _EGL_CHECK_SURFACE(disp, surf, EGL_FALSE, drv);
1231
1232 if (drv->API.SurfaceAttrib)
1233 ret = drv->API.SurfaceAttrib(drv, disp, surf, attribute, value);
1234 else
1235 ret = _eglSurfaceAttrib(drv, disp, surf, attribute, value);
1236
1237 RETURN_EGL_EVAL(disp, ret);
1238 }
1239
1240
1241 EGLBoolean EGLAPIENTRY
1242 eglBindTexImage(EGLDisplay dpy, EGLSurface surface, EGLint buffer)
1243 {
1244 _EGLDisplay *disp = _eglLockDisplay(dpy);
1245 _EGLSurface *surf = _eglLookupSurface(surface, disp);
1246 _EGLDriver *drv;
1247 EGLBoolean ret;
1248
1249 _EGL_FUNC_START(disp, EGL_OBJECT_SURFACE_KHR, surf, EGL_FALSE);
1250 _EGL_CHECK_SURFACE(disp, surf, EGL_FALSE, drv);
1251 ret = drv->API.BindTexImage(drv, disp, surf, buffer);
1252
1253 RETURN_EGL_EVAL(disp, ret);
1254 }
1255
1256
1257 EGLBoolean EGLAPIENTRY
1258 eglReleaseTexImage(EGLDisplay dpy, EGLSurface surface, EGLint buffer)
1259 {
1260 _EGLDisplay *disp = _eglLockDisplay(dpy);
1261 _EGLSurface *surf = _eglLookupSurface(surface, disp);
1262 _EGLDriver *drv;
1263 EGLBoolean ret;
1264
1265 _EGL_FUNC_START(disp, EGL_OBJECT_SURFACE_KHR, surf, EGL_FALSE);
1266 _EGL_CHECK_SURFACE(disp, surf, EGL_FALSE, drv);
1267 ret = drv->API.ReleaseTexImage(drv, disp, surf, buffer);
1268
1269 RETURN_EGL_EVAL(disp, ret);
1270 }
1271
1272
1273 EGLBoolean EGLAPIENTRY
1274 eglSwapInterval(EGLDisplay dpy, EGLint interval)
1275 {
1276 _EGLDisplay *disp = _eglLockDisplay(dpy);
1277 _EGLContext *ctx = _eglGetCurrentContext();
1278 _EGLSurface *surf = ctx ? ctx->DrawSurface : NULL;
1279 _EGLDriver *drv;
1280 EGLBoolean ret;
1281
1282 _EGL_FUNC_START(disp, EGL_OBJECT_SURFACE_KHR, surf, EGL_FALSE);
1283 _EGL_CHECK_DISPLAY(disp, EGL_FALSE, drv);
1284
1285 if (_eglGetContextHandle(ctx) == EGL_NO_CONTEXT ||
1286 ctx->Resource.Display != disp)
1287 RETURN_EGL_ERROR(disp, EGL_BAD_CONTEXT, EGL_FALSE);
1288
1289 if (_eglGetSurfaceHandle(surf) == EGL_NO_SURFACE)
1290 RETURN_EGL_ERROR(disp, EGL_BAD_SURFACE, EGL_FALSE);
1291
1292 if (surf->Type != EGL_WINDOW_BIT)
1293 RETURN_EGL_EVAL(disp, EGL_TRUE);
1294
1295 interval = CLAMP(interval,
1296 surf->Config->MinSwapInterval,
1297 surf->Config->MaxSwapInterval);
1298
1299 if (surf->SwapInterval != interval) {
1300 if (drv->API.SwapInterval)
1301 ret = drv->API.SwapInterval(drv, disp, surf, interval);
1302 else
1303 ret = _eglSwapInterval(drv, disp, surf, interval);
1304 }
1305 else {
1306 ret = EGL_TRUE;
1307 }
1308
1309 if (ret)
1310 surf->SwapInterval = interval;
1311
1312 RETURN_EGL_EVAL(disp, ret);
1313 }
1314
1315
1316 EGLBoolean EGLAPIENTRY
1317 eglSwapBuffers(EGLDisplay dpy, EGLSurface surface)
1318 {
1319 _EGLContext *ctx = _eglGetCurrentContext();
1320 _EGLDisplay *disp = _eglLockDisplay(dpy);
1321 _EGLSurface *surf = _eglLookupSurface(surface, disp);
1322 _EGLDriver *drv;
1323 EGLBoolean ret;
1324
1325 _EGL_FUNC_START(disp, EGL_OBJECT_SURFACE_KHR, surf, EGL_FALSE);
1326 _EGL_CHECK_SURFACE(disp, surf, EGL_FALSE, drv);
1327
1328 /* surface must be bound to current context in EGL 1.4 */
1329 #ifndef _EGL_BUILT_IN_DRIVER_HAIKU
1330 if (_eglGetContextHandle(ctx) == EGL_NO_CONTEXT ||
1331 surf != ctx->DrawSurface)
1332 RETURN_EGL_ERROR(disp, EGL_BAD_SURFACE, EGL_FALSE);
1333 #endif
1334
1335 if (surf->Type != EGL_WINDOW_BIT)
1336 RETURN_EGL_EVAL(disp, EGL_TRUE);
1337
1338 /* From the EGL 1.5 spec:
1339 *
1340 * If eglSwapBuffers is called and the native window associated with
1341 * surface is no longer valid, an EGL_BAD_NATIVE_WINDOW error is
1342 * generated.
1343 */
1344 if (surf->Lost)
1345 RETURN_EGL_ERROR(disp, EGL_BAD_NATIVE_WINDOW, EGL_FALSE);
1346
1347 ret = drv->API.SwapBuffers(drv, disp, surf);
1348
1349 /* EGL_KHR_partial_update
1350 * Frame boundary successfully reached,
1351 * reset damage region and reset BufferAgeRead
1352 */
1353 if (ret) {
1354 surf->SetDamageRegionCalled = EGL_FALSE;
1355 surf->BufferAgeRead = EGL_FALSE;
1356 }
1357
1358 RETURN_EGL_EVAL(disp, ret);
1359 }
1360
1361
1362 static EGLBoolean
1363 _eglSwapBuffersWithDamageCommon(_EGLDisplay *disp, _EGLSurface *surf,
1364 EGLint *rects, EGLint n_rects)
1365 {
1366 _EGLContext *ctx = _eglGetCurrentContext();
1367 _EGLDriver *drv;
1368 EGLBoolean ret;
1369
1370 _EGL_CHECK_SURFACE(disp, surf, EGL_FALSE, drv);
1371
1372 /* surface must be bound to current context in EGL 1.4 */
1373 if (_eglGetContextHandle(ctx) == EGL_NO_CONTEXT ||
1374 surf != ctx->DrawSurface)
1375 RETURN_EGL_ERROR(disp, EGL_BAD_SURFACE, EGL_FALSE);
1376
1377 if (surf->Type != EGL_WINDOW_BIT)
1378 RETURN_EGL_EVAL(disp, EGL_TRUE);
1379
1380 if ((n_rects > 0 && rects == NULL) || n_rects < 0)
1381 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_FALSE);
1382
1383 ret = drv->API.SwapBuffersWithDamageEXT(drv, disp, surf, rects, n_rects);
1384
1385 /* EGL_KHR_partial_update
1386 * Frame boundary successfully reached,
1387 * reset damage region and reset BufferAgeRead
1388 */
1389 if (ret) {
1390 surf->SetDamageRegionCalled = EGL_FALSE;
1391 surf->BufferAgeRead = EGL_FALSE;
1392 }
1393
1394 RETURN_EGL_EVAL(disp, ret);
1395 }
1396
1397 static EGLBoolean EGLAPIENTRY
1398 eglSwapBuffersWithDamageEXT(EGLDisplay dpy, EGLSurface surface,
1399 EGLint *rects, EGLint n_rects)
1400 {
1401 _EGLDisplay *disp = _eglLockDisplay(dpy);
1402 _EGLSurface *surf = _eglLookupSurface(surface, disp);
1403 _EGL_FUNC_START(disp, EGL_OBJECT_SURFACE_KHR, surf, EGL_FALSE);
1404 return _eglSwapBuffersWithDamageCommon(disp, surf, rects, n_rects);
1405 }
1406
1407 static EGLBoolean EGLAPIENTRY
1408 eglSwapBuffersWithDamageKHR(EGLDisplay dpy, EGLSurface surface,
1409 EGLint *rects, EGLint n_rects)
1410 {
1411 _EGLDisplay *disp = _eglLockDisplay(dpy);
1412 _EGLSurface *surf = _eglLookupSurface(surface, disp);
1413 _EGL_FUNC_START(disp, EGL_OBJECT_SURFACE_KHR, surf, EGL_FALSE);
1414 return _eglSwapBuffersWithDamageCommon(disp, surf, rects, n_rects);
1415 }
1416
1417 /**
1418 * Clamp the rectangles so that they lie within the surface.
1419 */
1420
1421 static void
1422 _eglSetDamageRegionKHRClampRects(_EGLDisplay* disp, _EGLSurface* surf,
1423 EGLint *rects, EGLint n_rects)
1424 {
1425 EGLint i;
1426 EGLint surf_height = surf->Height;
1427 EGLint surf_width = surf->Width;
1428
1429 for (i = 0; i < (4 * n_rects); i += 4) {
1430 EGLint x1, y1, x2, y2;
1431 x1 = rects[i];
1432 y1 = rects[i + 1];
1433 x2 = rects[i + 2] + x1;
1434 y2 = rects[i + 3] + y1;
1435
1436 rects[i] = CLAMP(x1, 0, surf_width);
1437 rects[i + 1] = CLAMP(y1, 0, surf_height);
1438 rects[i + 2] = CLAMP(x2, 0, surf_width) - rects[i];
1439 rects[i + 3] = CLAMP(y2, 0, surf_height) - rects[i + 1];
1440 }
1441 }
1442
1443 static EGLBoolean EGLAPIENTRY
1444 eglSetDamageRegionKHR(EGLDisplay dpy, EGLSurface surface,
1445 EGLint *rects, EGLint n_rects)
1446 {
1447 _EGLDisplay *disp = _eglLockDisplay(dpy);
1448 _EGLSurface *surf = _eglLookupSurface(surface, disp);
1449 _EGL_FUNC_START(disp, EGL_OBJECT_SURFACE_KHR, surf, EGL_FALSE);
1450 _EGLContext *ctx = _eglGetCurrentContext();
1451 _EGLDriver *drv;
1452 EGLBoolean ret;
1453 _EGL_CHECK_SURFACE(disp, surf, EGL_FALSE, drv);
1454
1455 if (_eglGetContextHandle(ctx) == EGL_NO_CONTEXT ||
1456 surf->Type != EGL_WINDOW_BIT ||
1457 ctx->DrawSurface != surf ||
1458 surf->SwapBehavior != EGL_BUFFER_DESTROYED)
1459 RETURN_EGL_ERROR(disp, EGL_BAD_MATCH, EGL_FALSE);
1460
1461 /* If the damage region is already set or
1462 * buffer age is not queried between
1463 * frame boundaries, throw bad access error
1464 */
1465
1466 if (surf->SetDamageRegionCalled || !surf->BufferAgeRead)
1467 RETURN_EGL_ERROR(disp, EGL_BAD_ACCESS, EGL_FALSE);
1468
1469 _eglSetDamageRegionKHRClampRects(disp, surf, rects, n_rects);
1470 ret = drv->API.SetDamageRegion(drv, disp, surf, rects, n_rects);
1471
1472 if (ret)
1473 surf->SetDamageRegionCalled = EGL_TRUE;
1474
1475 RETURN_EGL_EVAL(disp, ret);
1476 }
1477
1478 EGLBoolean EGLAPIENTRY
1479 eglCopyBuffers(EGLDisplay dpy, EGLSurface surface, EGLNativePixmapType target)
1480 {
1481 _EGLDisplay *disp = _eglLockDisplay(dpy);
1482 _EGLSurface *surf = _eglLookupSurface(surface, disp);
1483 _EGLDriver *drv;
1484 EGLBoolean ret;
1485 void *native_pixmap_ptr;
1486
1487 _EGL_FUNC_START(disp, EGL_OBJECT_SURFACE_KHR, surf, EGL_FALSE);
1488 STATIC_ASSERT(sizeof(void*) == sizeof(target));
1489 native_pixmap_ptr = (void*) target;
1490
1491 _EGL_CHECK_SURFACE(disp, surf, EGL_FALSE, drv);
1492 ret = drv->API.CopyBuffers(drv, disp, surf, native_pixmap_ptr);
1493
1494 RETURN_EGL_EVAL(disp, ret);
1495 }
1496
1497
1498 static EGLBoolean
1499 _eglWaitClientCommon(void)
1500 {
1501 _EGLContext *ctx = _eglGetCurrentContext();
1502 _EGLDisplay *disp;
1503 _EGLDriver *drv;
1504 EGLBoolean ret;
1505
1506 if (!ctx)
1507 RETURN_EGL_SUCCESS(NULL, EGL_TRUE);
1508
1509 disp = ctx->Resource.Display;
1510 mtx_lock(&disp->Mutex);
1511
1512 /* let bad current context imply bad current surface */
1513 if (_eglGetContextHandle(ctx) == EGL_NO_CONTEXT ||
1514 _eglGetSurfaceHandle(ctx->DrawSurface) == EGL_NO_SURFACE)
1515 RETURN_EGL_ERROR(disp, EGL_BAD_CURRENT_SURFACE, EGL_FALSE);
1516
1517 /* a valid current context implies an initialized current display */
1518 assert(disp->Initialized);
1519 drv = disp->Driver;
1520 ret = drv->API.WaitClient(drv, disp, ctx);
1521
1522 RETURN_EGL_EVAL(disp, ret);
1523 }
1524
1525 EGLBoolean EGLAPIENTRY
1526 eglWaitClient(void)
1527 {
1528 _EGL_FUNC_START(NULL, EGL_OBJECT_CONTEXT_KHR, _eglGetCurrentContext(), EGL_FALSE);
1529 return _eglWaitClientCommon();
1530 }
1531
1532 EGLBoolean EGLAPIENTRY
1533 eglWaitGL(void)
1534 {
1535 /* Since we only support OpenGL and GLES, eglWaitGL is equivalent to eglWaitClient. */
1536 _EGL_FUNC_START(NULL, EGL_OBJECT_CONTEXT_KHR, _eglGetCurrentContext(), EGL_FALSE);
1537 return _eglWaitClientCommon();
1538 }
1539
1540
1541 EGLBoolean EGLAPIENTRY
1542 eglWaitNative(EGLint engine)
1543 {
1544 _EGLContext *ctx = _eglGetCurrentContext();
1545 _EGLDisplay *disp;
1546 _EGLDriver *drv;
1547 EGLBoolean ret;
1548
1549 if (!ctx)
1550 RETURN_EGL_SUCCESS(NULL, EGL_TRUE);
1551
1552 _EGL_FUNC_START(NULL, EGL_OBJECT_THREAD_KHR, NULL, EGL_FALSE);
1553
1554 disp = ctx->Resource.Display;
1555 mtx_lock(&disp->Mutex);
1556
1557 /* let bad current context imply bad current surface */
1558 if (_eglGetContextHandle(ctx) == EGL_NO_CONTEXT ||
1559 _eglGetSurfaceHandle(ctx->DrawSurface) == EGL_NO_SURFACE)
1560 RETURN_EGL_ERROR(disp, EGL_BAD_CURRENT_SURFACE, EGL_FALSE);
1561
1562 /* a valid current context implies an initialized current display */
1563 assert(disp->Initialized);
1564 drv = disp->Driver;
1565 ret = drv->API.WaitNative(drv, disp, engine);
1566
1567 RETURN_EGL_EVAL(disp, ret);
1568 }
1569
1570
1571 EGLDisplay EGLAPIENTRY
1572 eglGetCurrentDisplay(void)
1573 {
1574 _EGLContext *ctx = _eglGetCurrentContext();
1575 EGLDisplay ret;
1576
1577 ret = (ctx) ? _eglGetDisplayHandle(ctx->Resource.Display) : EGL_NO_DISPLAY;
1578
1579 RETURN_EGL_SUCCESS(NULL, ret);
1580 }
1581
1582
1583 EGLContext EGLAPIENTRY
1584 eglGetCurrentContext(void)
1585 {
1586 _EGLContext *ctx = _eglGetCurrentContext();
1587 EGLContext ret;
1588
1589 ret = _eglGetContextHandle(ctx);
1590
1591 RETURN_EGL_SUCCESS(NULL, ret);
1592 }
1593
1594
1595 EGLSurface EGLAPIENTRY
1596 eglGetCurrentSurface(EGLint readdraw)
1597 {
1598 _EGLContext *ctx = _eglGetCurrentContext();
1599 EGLint err = EGL_SUCCESS;
1600 _EGLSurface *surf;
1601 EGLSurface ret;
1602
1603 _EGL_FUNC_START(NULL, EGL_NONE, NULL, EGL_NO_SURFACE);
1604
1605 if (!ctx)
1606 RETURN_EGL_SUCCESS(NULL, EGL_NO_SURFACE);
1607
1608 switch (readdraw) {
1609 case EGL_DRAW:
1610 surf = ctx->DrawSurface;
1611 break;
1612 case EGL_READ:
1613 surf = ctx->ReadSurface;
1614 break;
1615 default:
1616 surf = NULL;
1617 err = EGL_BAD_PARAMETER;
1618 break;
1619 }
1620
1621 ret = _eglGetSurfaceHandle(surf);
1622
1623 RETURN_EGL_ERROR(NULL, err, ret);
1624 }
1625
1626
1627 EGLint EGLAPIENTRY
1628 eglGetError(void)
1629 {
1630 _EGLThreadInfo *t = _eglGetCurrentThread();
1631 EGLint e = t->LastError;
1632 if (!_eglIsCurrentThreadDummy())
1633 t->LastError = EGL_SUCCESS;
1634 return e;
1635 }
1636
1637
1638 /**
1639 ** EGL 1.2
1640 **/
1641
1642 /**
1643 * Specify the client API to use for subsequent calls including:
1644 * eglCreateContext()
1645 * eglGetCurrentContext()
1646 * eglGetCurrentDisplay()
1647 * eglGetCurrentSurface()
1648 * eglMakeCurrent(when the ctx parameter is EGL NO CONTEXT)
1649 * eglWaitClient()
1650 * eglWaitNative()
1651 * See section 3.7 "Rendering Context" in the EGL specification for details.
1652 */
1653 EGLBoolean EGLAPIENTRY
1654 eglBindAPI(EGLenum api)
1655 {
1656 _EGLThreadInfo *t;
1657
1658 _EGL_FUNC_START(NULL, EGL_OBJECT_THREAD_KHR, NULL, EGL_FALSE);
1659
1660 t = _eglGetCurrentThread();
1661 if (_eglIsCurrentThreadDummy())
1662 RETURN_EGL_ERROR(NULL, EGL_BAD_ALLOC, EGL_FALSE);
1663
1664 if (!_eglIsApiValid(api))
1665 RETURN_EGL_ERROR(NULL, EGL_BAD_PARAMETER, EGL_FALSE);
1666
1667 t->CurrentAPI = api;
1668
1669 RETURN_EGL_SUCCESS(NULL, EGL_TRUE);
1670 }
1671
1672
1673 /**
1674 * Return the last value set with eglBindAPI().
1675 */
1676 EGLenum EGLAPIENTRY
1677 eglQueryAPI(void)
1678 {
1679 _EGLThreadInfo *t = _eglGetCurrentThread();
1680 EGLenum ret;
1681
1682 /* returns one of EGL_OPENGL_API, EGL_OPENGL_ES_API or EGL_OPENVG_API */
1683 ret = t->CurrentAPI;
1684
1685 RETURN_EGL_SUCCESS(NULL, ret);
1686 }
1687
1688
1689 EGLSurface EGLAPIENTRY
1690 eglCreatePbufferFromClientBuffer(EGLDisplay dpy, EGLenum buftype,
1691 EGLClientBuffer buffer, EGLConfig config,
1692 const EGLint *attrib_list)
1693 {
1694 _EGLDisplay *disp = _eglLockDisplay(dpy);
1695 _EGLConfig *conf = _eglLookupConfig(config, disp);
1696 _EGLDriver *drv;
1697 _EGLSurface *surf;
1698 EGLSurface ret;
1699
1700 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_NO_SURFACE);
1701
1702 _EGL_CHECK_CONFIG(disp, conf, EGL_NO_SURFACE, drv);
1703
1704 surf = drv->API.CreatePbufferFromClientBuffer(drv, disp, buftype, buffer,
1705 conf, attrib_list);
1706 ret = (surf) ? _eglLinkSurface(surf) : EGL_NO_SURFACE;
1707
1708 RETURN_EGL_EVAL(disp, ret);
1709 }
1710
1711
1712 EGLBoolean EGLAPIENTRY
1713 eglReleaseThread(void)
1714 {
1715 /* unbind current contexts */
1716 if (!_eglIsCurrentThreadDummy()) {
1717 _EGLThreadInfo *t = _eglGetCurrentThread();
1718 _EGLContext *ctx = t->CurrentContext;
1719
1720 _EGL_FUNC_START(NULL, EGL_OBJECT_THREAD_KHR, NULL, EGL_FALSE);
1721
1722 if (ctx) {
1723 _EGLDisplay *disp = ctx->Resource.Display;
1724 _EGLDriver *drv;
1725
1726 mtx_lock(&disp->Mutex);
1727 drv = disp->Driver;
1728 (void) drv->API.MakeCurrent(drv, disp, NULL, NULL, NULL);
1729 mtx_unlock(&disp->Mutex);
1730 }
1731 }
1732
1733 _eglDestroyCurrentThread();
1734
1735 RETURN_EGL_SUCCESS(NULL, EGL_TRUE);
1736 }
1737
1738
1739 static EGLImage
1740 _eglCreateImageCommon(_EGLDisplay *disp, EGLContext ctx, EGLenum target,
1741 EGLClientBuffer buffer, const EGLint *attr_list)
1742 {
1743 _EGLContext *context = _eglLookupContext(ctx, disp);
1744 _EGLDriver *drv;
1745 _EGLImage *img;
1746 EGLImage ret;
1747
1748 _EGL_CHECK_DISPLAY(disp, EGL_NO_IMAGE_KHR, drv);
1749 if (!disp->Extensions.KHR_image_base)
1750 RETURN_EGL_EVAL(disp, EGL_NO_IMAGE_KHR);
1751 if (!context && ctx != EGL_NO_CONTEXT)
1752 RETURN_EGL_ERROR(disp, EGL_BAD_CONTEXT, EGL_NO_IMAGE_KHR);
1753 /* "If <target> is EGL_LINUX_DMA_BUF_EXT, <dpy> must be a valid display,
1754 * <ctx> must be EGL_NO_CONTEXT..."
1755 */
1756 if (ctx != EGL_NO_CONTEXT && target == EGL_LINUX_DMA_BUF_EXT)
1757 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_NO_IMAGE_KHR);
1758
1759 img = drv->API.CreateImageKHR(drv, disp, context, target,
1760 buffer, attr_list);
1761 ret = (img) ? _eglLinkImage(img) : EGL_NO_IMAGE_KHR;
1762
1763 RETURN_EGL_EVAL(disp, ret);
1764 }
1765
1766 static EGLImage EGLAPIENTRY
1767 eglCreateImageKHR(EGLDisplay dpy, EGLContext ctx, EGLenum target,
1768 EGLClientBuffer buffer, const EGLint *attr_list)
1769 {
1770 _EGLDisplay *disp = _eglLockDisplay(dpy);
1771 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_NO_IMAGE_KHR);
1772 return _eglCreateImageCommon(disp, ctx, target, buffer, attr_list);
1773 }
1774
1775
1776 EGLImage EGLAPIENTRY
1777 eglCreateImage(EGLDisplay dpy, EGLContext ctx, EGLenum target,
1778 EGLClientBuffer buffer, const EGLAttrib *attr_list)
1779 {
1780 _EGLDisplay *disp = _eglLockDisplay(dpy);
1781 EGLImage image;
1782 EGLint *int_attribs;
1783
1784 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_NO_IMAGE_KHR);
1785
1786 int_attribs = _eglConvertAttribsToInt(attr_list);
1787 if (attr_list && !int_attribs)
1788 RETURN_EGL_ERROR(disp, EGL_BAD_ALLOC, EGL_NO_IMAGE);
1789
1790 image = _eglCreateImageCommon(disp, ctx, target, buffer, int_attribs);
1791 free(int_attribs);
1792 return image;
1793 }
1794
1795
1796 static EGLBoolean
1797 _eglDestroyImageCommon(_EGLDisplay *disp, _EGLImage *img)
1798 {
1799 _EGLDriver *drv;
1800 EGLBoolean ret;
1801
1802 _EGL_CHECK_DISPLAY(disp, EGL_FALSE, drv);
1803 if (!disp->Extensions.KHR_image_base)
1804 RETURN_EGL_EVAL(disp, EGL_FALSE);
1805 if (!img)
1806 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_FALSE);
1807
1808 _eglUnlinkImage(img);
1809 ret = drv->API.DestroyImageKHR(drv, disp, img);
1810
1811 RETURN_EGL_EVAL(disp, ret);
1812 }
1813
1814 EGLBoolean EGLAPIENTRY
1815 eglDestroyImage(EGLDisplay dpy, EGLImage image)
1816 {
1817 _EGLDisplay *disp = _eglLockDisplay(dpy);
1818 _EGLImage *img = _eglLookupImage(image, disp);
1819 _EGL_FUNC_START(disp, EGL_OBJECT_IMAGE_KHR, img, EGL_FALSE);
1820 return _eglDestroyImageCommon(disp, img);
1821 }
1822
1823 static EGLBoolean EGLAPIENTRY
1824 eglDestroyImageKHR(EGLDisplay dpy, EGLImage image)
1825 {
1826 _EGLDisplay *disp = _eglLockDisplay(dpy);
1827 _EGLImage *img = _eglLookupImage(image, disp);
1828 _EGL_FUNC_START(disp, EGL_OBJECT_IMAGE_KHR, img, EGL_FALSE);
1829 return _eglDestroyImageCommon(disp, img);
1830 }
1831
1832
1833 static EGLSync
1834 _eglCreateSync(_EGLDisplay *disp, EGLenum type, const EGLAttrib *attrib_list,
1835 EGLBoolean orig_is_EGLAttrib,
1836 EGLenum invalid_type_error)
1837 {
1838 _EGLContext *ctx = _eglGetCurrentContext();
1839 _EGLDriver *drv;
1840 _EGLSync *sync;
1841 EGLSync ret;
1842
1843 _EGL_CHECK_DISPLAY(disp, EGL_NO_SYNC_KHR, drv);
1844
1845 if (!disp->Extensions.KHR_cl_event2 && orig_is_EGLAttrib) {
1846 /* There exist two EGLAttrib variants of eglCreateSync*:
1847 * eglCreateSync64KHR which requires EGL_KHR_cl_event2, and eglCreateSync
1848 * which requires EGL 1.5. Here we use the presence of EGL_KHR_cl_event2
1849 * support as a proxy for EGL 1.5 support, even though that's not
1850 * entirely correct (though _eglComputeVersion does the same).
1851 *
1852 * The EGL spec provides no guidance on how to handle unsupported
1853 * functions. EGL_BAD_MATCH seems reasonable.
1854 */
1855 RETURN_EGL_ERROR(disp, EGL_BAD_MATCH, EGL_NO_SYNC_KHR);
1856 }
1857
1858 /* If type is EGL_SYNC_FENCE and no context is current for the bound API
1859 * (i.e., eglGetCurrentContext returns EGL_NO_CONTEXT ), an EGL_BAD_MATCH
1860 * error is generated.
1861 */
1862 if (!ctx &&
1863 (type == EGL_SYNC_FENCE_KHR || type == EGL_SYNC_NATIVE_FENCE_ANDROID))
1864 RETURN_EGL_ERROR(disp, EGL_BAD_MATCH, EGL_NO_SYNC_KHR);
1865
1866 /* return an error if the client API doesn't support GL_OES_EGL_sync */
1867 if (ctx && (ctx->Resource.Display != disp ||
1868 ctx->ClientAPI != EGL_OPENGL_ES_API))
1869 RETURN_EGL_ERROR(disp, EGL_BAD_MATCH, EGL_NO_SYNC_KHR);
1870
1871 switch (type) {
1872 case EGL_SYNC_FENCE_KHR:
1873 if (!disp->Extensions.KHR_fence_sync)
1874 RETURN_EGL_ERROR(disp, invalid_type_error, EGL_NO_SYNC_KHR);
1875 break;
1876 case EGL_SYNC_REUSABLE_KHR:
1877 if (!disp->Extensions.KHR_reusable_sync)
1878 RETURN_EGL_ERROR(disp, invalid_type_error, EGL_NO_SYNC_KHR);
1879 break;
1880 case EGL_SYNC_CL_EVENT_KHR:
1881 if (!disp->Extensions.KHR_cl_event2)
1882 RETURN_EGL_ERROR(disp, invalid_type_error, EGL_NO_SYNC_KHR);
1883 break;
1884 case EGL_SYNC_NATIVE_FENCE_ANDROID:
1885 if (!disp->Extensions.ANDROID_native_fence_sync)
1886 RETURN_EGL_ERROR(disp, invalid_type_error, EGL_NO_SYNC_KHR);
1887 break;
1888 default:
1889 RETURN_EGL_ERROR(disp, invalid_type_error, EGL_NO_SYNC_KHR);
1890 }
1891
1892 sync = drv->API.CreateSyncKHR(drv, disp, type, attrib_list);
1893 ret = (sync) ? _eglLinkSync(sync) : EGL_NO_SYNC_KHR;
1894
1895 RETURN_EGL_EVAL(disp, ret);
1896 }
1897
1898
1899 static EGLSync EGLAPIENTRY
1900 eglCreateSyncKHR(EGLDisplay dpy, EGLenum type, const EGLint *int_list)
1901 {
1902 _EGLDisplay *disp = _eglLockDisplay(dpy);
1903 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_FALSE);
1904
1905 EGLSync sync;
1906 EGLAttrib *attrib_list;
1907 EGLint err;
1908
1909 if (sizeof(int_list[0]) == sizeof(attrib_list[0])) {
1910 attrib_list = (EGLAttrib *) int_list;
1911 } else {
1912 err = _eglConvertIntsToAttribs(int_list, &attrib_list);
1913 if (err != EGL_SUCCESS)
1914 RETURN_EGL_ERROR(disp, err, EGL_NO_SYNC);
1915 }
1916
1917 sync = _eglCreateSync(disp, type, attrib_list, EGL_FALSE,
1918 EGL_BAD_ATTRIBUTE);
1919
1920 if (sizeof(int_list[0]) != sizeof(attrib_list[0]))
1921 free(attrib_list);
1922
1923 /* Don't double-unlock the display. _eglCreateSync already unlocked it. */
1924 return sync;
1925 }
1926
1927
1928 static EGLSync EGLAPIENTRY
1929 eglCreateSync64KHR(EGLDisplay dpy, EGLenum type, const EGLAttrib *attrib_list)
1930 {
1931 _EGLDisplay *disp = _eglLockDisplay(dpy);
1932 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_FALSE);
1933 return _eglCreateSync(disp, type, attrib_list, EGL_TRUE,
1934 EGL_BAD_ATTRIBUTE);
1935 }
1936
1937
1938 EGLSync EGLAPIENTRY
1939 eglCreateSync(EGLDisplay dpy, EGLenum type, const EGLAttrib *attrib_list)
1940 {
1941 _EGLDisplay *disp = _eglLockDisplay(dpy);
1942 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_FALSE);
1943 return _eglCreateSync(disp, type, attrib_list, EGL_TRUE,
1944 EGL_BAD_PARAMETER);
1945 }
1946
1947
1948 static EGLBoolean
1949 _eglDestroySync(_EGLDisplay *disp, _EGLSync *s)
1950 {
1951 _EGLDriver *drv;
1952 EGLBoolean ret;
1953
1954 _EGL_CHECK_SYNC(disp, s, EGL_FALSE, drv);
1955 assert(disp->Extensions.KHR_reusable_sync ||
1956 disp->Extensions.KHR_fence_sync ||
1957 disp->Extensions.ANDROID_native_fence_sync);
1958
1959 _eglUnlinkSync(s);
1960 ret = drv->API.DestroySyncKHR(drv, disp, s);
1961
1962 RETURN_EGL_EVAL(disp, ret);
1963 }
1964
1965 EGLBoolean EGLAPIENTRY
1966 eglDestroySync(EGLDisplay dpy, EGLSync sync)
1967 {
1968 _EGLDisplay *disp = _eglLockDisplay(dpy);
1969 _EGLSync *s = _eglLookupSync(sync, disp);
1970 _EGL_FUNC_START(disp, EGL_OBJECT_SYNC_KHR, s, EGL_FALSE);
1971 return _eglDestroySync(disp, s);
1972 }
1973
1974 static EGLBoolean EGLAPIENTRY
1975 eglDestroySyncKHR(EGLDisplay dpy, EGLSync sync)
1976 {
1977 _EGLDisplay *disp = _eglLockDisplay(dpy);
1978 _EGLSync *s = _eglLookupSync(sync, disp);
1979 _EGL_FUNC_START(disp, EGL_OBJECT_SYNC_KHR, s, EGL_FALSE);
1980 return _eglDestroySync(disp, s);
1981 }
1982
1983
1984 static EGLint
1985 _eglClientWaitSyncCommon(_EGLDisplay *disp, EGLDisplay dpy,
1986 _EGLSync *s, EGLint flags, EGLTime timeout)
1987 {
1988 _EGLDriver *drv;
1989 EGLint ret;
1990
1991 _EGL_CHECK_SYNC(disp, s, EGL_FALSE, drv);
1992 assert(disp->Extensions.KHR_reusable_sync ||
1993 disp->Extensions.KHR_fence_sync ||
1994 disp->Extensions.ANDROID_native_fence_sync);
1995
1996 if (s->SyncStatus == EGL_SIGNALED_KHR)
1997 RETURN_EGL_EVAL(disp, EGL_CONDITION_SATISFIED_KHR);
1998
1999 /* if sync type is EGL_SYNC_REUSABLE_KHR, dpy should be
2000 * unlocked here to allow other threads also to be able to
2001 * go into waiting state.
2002 */
2003
2004 if (s->Type == EGL_SYNC_REUSABLE_KHR)
2005 _eglUnlockDisplay(dpy);
2006
2007 ret = drv->API.ClientWaitSyncKHR(drv, disp, s, flags, timeout);
2008
2009 /*
2010 * 'disp' is already unlocked for reusable sync type,
2011 * so passing 'NULL' to bypass unlocking display.
2012 */
2013 if (s->Type == EGL_SYNC_REUSABLE_KHR)
2014 RETURN_EGL_EVAL(NULL, ret);
2015 else
2016 RETURN_EGL_EVAL(disp, ret);
2017 }
2018
2019 EGLint EGLAPIENTRY
2020 eglClientWaitSync(EGLDisplay dpy, EGLSync sync,
2021 EGLint flags, EGLTime timeout)
2022 {
2023 _EGLDisplay *disp = _eglLockDisplay(dpy);
2024 _EGLSync *s = _eglLookupSync(sync, disp);
2025 _EGL_FUNC_START(disp, EGL_OBJECT_SYNC_KHR, s, EGL_FALSE);
2026 return _eglClientWaitSyncCommon(disp, dpy, s, flags, timeout);
2027 }
2028
2029 static EGLint EGLAPIENTRY
2030 eglClientWaitSyncKHR(EGLDisplay dpy, EGLSync sync,
2031 EGLint flags, EGLTime timeout)
2032 {
2033 _EGLDisplay *disp = _eglLockDisplay(dpy);
2034 _EGLSync *s = _eglLookupSync(sync, disp);
2035 _EGL_FUNC_START(disp, EGL_OBJECT_SYNC_KHR, s, EGL_FALSE);
2036 return _eglClientWaitSyncCommon(disp, dpy, s, flags, timeout);
2037 }
2038
2039
2040 static EGLint
2041 _eglWaitSyncCommon(_EGLDisplay *disp, _EGLSync *s, EGLint flags)
2042 {
2043 _EGLContext *ctx = _eglGetCurrentContext();
2044 _EGLDriver *drv;
2045 EGLint ret;
2046
2047 _EGL_CHECK_SYNC(disp, s, EGL_FALSE, drv);
2048 assert(disp->Extensions.KHR_wait_sync);
2049
2050 /* return an error if the client API doesn't support GL_OES_EGL_sync */
2051 if (ctx == EGL_NO_CONTEXT || ctx->ClientAPI != EGL_OPENGL_ES_API)
2052 RETURN_EGL_ERROR(disp, EGL_BAD_MATCH, EGL_FALSE);
2053
2054 /* the API doesn't allow any flags yet */
2055 if (flags != 0)
2056 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_FALSE);
2057
2058 ret = drv->API.WaitSyncKHR(drv, disp, s);
2059
2060 RETURN_EGL_EVAL(disp, ret);
2061 }
2062
2063 static EGLint EGLAPIENTRY
2064 eglWaitSyncKHR(EGLDisplay dpy, EGLSync sync, EGLint flags)
2065 {
2066 _EGLDisplay *disp = _eglLockDisplay(dpy);
2067 _EGLSync *s = _eglLookupSync(sync, disp);
2068 _EGL_FUNC_START(disp, EGL_OBJECT_SYNC_KHR, s, EGL_FALSE);
2069 return _eglWaitSyncCommon(disp, s, flags);
2070 }
2071
2072
2073 EGLBoolean EGLAPIENTRY
2074 eglWaitSync(EGLDisplay dpy, EGLSync sync, EGLint flags)
2075 {
2076 /* The KHR version returns EGLint, while the core version returns
2077 * EGLBoolean. In both cases, the return values can only be EGL_FALSE and
2078 * EGL_TRUE.
2079 */
2080 _EGLDisplay *disp = _eglLockDisplay(dpy);
2081 _EGLSync *s = _eglLookupSync(sync, disp);
2082 _EGL_FUNC_START(disp, EGL_OBJECT_SYNC_KHR, s, EGL_FALSE);
2083 return _eglWaitSyncCommon(disp, s, flags);
2084 }
2085
2086
2087 static EGLBoolean EGLAPIENTRY
2088 eglSignalSyncKHR(EGLDisplay dpy, EGLSync sync, EGLenum mode)
2089 {
2090 _EGLDisplay *disp = _eglLockDisplay(dpy);
2091 _EGLSync *s = _eglLookupSync(sync, disp);
2092 _EGLDriver *drv;
2093 EGLBoolean ret;
2094
2095 _EGL_FUNC_START(disp, EGL_OBJECT_SYNC_KHR, s, EGL_FALSE);
2096
2097 _EGL_CHECK_SYNC(disp, s, EGL_FALSE, drv);
2098 assert(disp->Extensions.KHR_reusable_sync);
2099 ret = drv->API.SignalSyncKHR(drv, disp, s, mode);
2100
2101 RETURN_EGL_EVAL(disp, ret);
2102 }
2103
2104
2105 static EGLBoolean
2106 _eglGetSyncAttribCommon(_EGLDisplay *disp, _EGLSync *s, EGLint attribute, EGLAttrib *value)
2107 {
2108 _EGLDriver *drv;
2109 EGLBoolean ret;
2110
2111 _EGL_CHECK_SYNC(disp, s, EGL_FALSE, drv);
2112 assert(disp->Extensions.KHR_reusable_sync ||
2113 disp->Extensions.KHR_fence_sync ||
2114 disp->Extensions.ANDROID_native_fence_sync);
2115 ret = drv->API.GetSyncAttrib(drv, disp, s, attribute, value);
2116
2117 RETURN_EGL_EVAL(disp, ret);
2118 }
2119
2120 EGLBoolean EGLAPIENTRY
2121 eglGetSyncAttrib(EGLDisplay dpy, EGLSync sync, EGLint attribute, EGLAttrib *value)
2122 {
2123 _EGLDisplay *disp = _eglLockDisplay(dpy);
2124 _EGLSync *s = _eglLookupSync(sync, disp);
2125 _EGL_FUNC_START(disp, EGL_OBJECT_SYNC_KHR, s, EGL_FALSE);
2126 return _eglGetSyncAttribCommon(disp, s, attribute, value);
2127 }
2128
2129
2130 static EGLBoolean EGLAPIENTRY
2131 eglGetSyncAttribKHR(EGLDisplay dpy, EGLSync sync, EGLint attribute, EGLint *value)
2132 {
2133 _EGLDisplay *disp = _eglLockDisplay(dpy);
2134 _EGLSync *s = _eglLookupSync(sync, disp);
2135 EGLAttrib attrib;
2136 EGLBoolean result;
2137
2138 _EGL_FUNC_START(disp, EGL_OBJECT_SYNC_KHR, s, EGL_FALSE);
2139
2140 if (!value)
2141 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_FALSE);
2142
2143 attrib = *value;
2144 result = _eglGetSyncAttribCommon(disp, s, attribute, &attrib);
2145
2146 /* The EGL_KHR_fence_sync spec says this about eglGetSyncAttribKHR:
2147 *
2148 * If any error occurs, <*value> is not modified.
2149 */
2150 if (result == EGL_FALSE)
2151 return result;
2152
2153 *value = attrib;
2154 return result;
2155 }
2156
2157 static EGLint EGLAPIENTRY
2158 eglDupNativeFenceFDANDROID(EGLDisplay dpy, EGLSync sync)
2159 {
2160 _EGLDisplay *disp = _eglLockDisplay(dpy);
2161 _EGLSync *s = _eglLookupSync(sync, disp);
2162 _EGLDriver *drv;
2163 EGLBoolean ret;
2164
2165 _EGL_FUNC_START(disp, EGL_OBJECT_SYNC_KHR, s, EGL_FALSE);
2166
2167 /* the spec doesn't seem to specify what happens if the fence
2168 * type is not EGL_SYNC_NATIVE_FENCE_ANDROID, but this seems
2169 * sensible:
2170 */
2171 if (!(s && (s->Type == EGL_SYNC_NATIVE_FENCE_ANDROID)))
2172 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_NO_NATIVE_FENCE_FD_ANDROID);
2173
2174 _EGL_CHECK_SYNC(disp, s, EGL_NO_NATIVE_FENCE_FD_ANDROID, drv);
2175 assert(disp->Extensions.ANDROID_native_fence_sync);
2176 ret = drv->API.DupNativeFenceFDANDROID(drv, disp, s);
2177
2178 RETURN_EGL_EVAL(disp, ret);
2179 }
2180
2181 static EGLBoolean EGLAPIENTRY
2182 eglSwapBuffersRegionNOK(EGLDisplay dpy, EGLSurface surface,
2183 EGLint numRects, const EGLint *rects)
2184 {
2185 _EGLContext *ctx = _eglGetCurrentContext();
2186 _EGLDisplay *disp = _eglLockDisplay(dpy);
2187 _EGLSurface *surf = _eglLookupSurface(surface, disp);
2188 _EGLDriver *drv;
2189 EGLBoolean ret;
2190
2191 _EGL_FUNC_START(disp, EGL_OBJECT_SURFACE_KHR, surf, EGL_FALSE);
2192
2193 _EGL_CHECK_SURFACE(disp, surf, EGL_FALSE, drv);
2194
2195 if (!disp->Extensions.NOK_swap_region)
2196 RETURN_EGL_EVAL(disp, EGL_FALSE);
2197
2198 /* surface must be bound to current context in EGL 1.4 */
2199 if (_eglGetContextHandle(ctx) == EGL_NO_CONTEXT ||
2200 surf != ctx->DrawSurface)
2201 RETURN_EGL_ERROR(disp, EGL_BAD_SURFACE, EGL_FALSE);
2202
2203 ret = drv->API.SwapBuffersRegionNOK(drv, disp, surf, numRects, rects);
2204
2205 RETURN_EGL_EVAL(disp, ret);
2206 }
2207
2208
2209 static EGLImage EGLAPIENTRY
2210 eglCreateDRMImageMESA(EGLDisplay dpy, const EGLint *attr_list)
2211 {
2212 _EGLDisplay *disp = _eglLockDisplay(dpy);
2213 _EGLDriver *drv;
2214 _EGLImage *img;
2215 EGLImage ret;
2216
2217 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_FALSE);
2218
2219 _EGL_CHECK_DISPLAY(disp, EGL_NO_IMAGE_KHR, drv);
2220 if (!disp->Extensions.MESA_drm_image)
2221 RETURN_EGL_EVAL(disp, EGL_NO_IMAGE_KHR);
2222
2223 img = drv->API.CreateDRMImageMESA(drv, disp, attr_list);
2224 ret = (img) ? _eglLinkImage(img) : EGL_NO_IMAGE_KHR;
2225
2226 RETURN_EGL_EVAL(disp, ret);
2227 }
2228
2229 static EGLBoolean EGLAPIENTRY
2230 eglExportDRMImageMESA(EGLDisplay dpy, EGLImage image,
2231 EGLint *name, EGLint *handle, EGLint *stride)
2232 {
2233 _EGLDisplay *disp = _eglLockDisplay(dpy);
2234 _EGLImage *img = _eglLookupImage(image, disp);
2235 _EGLDriver *drv;
2236 EGLBoolean ret;
2237
2238 _EGL_FUNC_START(disp, EGL_OBJECT_IMAGE_KHR, img, EGL_FALSE);
2239
2240 _EGL_CHECK_DISPLAY(disp, EGL_FALSE, drv);
2241 assert(disp->Extensions.MESA_drm_image);
2242
2243 if (!img)
2244 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_FALSE);
2245
2246 ret = drv->API.ExportDRMImageMESA(drv, disp, img, name, handle, stride);
2247
2248 RETURN_EGL_EVAL(disp, ret);
2249 }
2250
2251
2252 struct wl_display;
2253
2254 static EGLBoolean EGLAPIENTRY
2255 eglBindWaylandDisplayWL(EGLDisplay dpy, struct wl_display *display)
2256 {
2257 _EGLDisplay *disp = _eglLockDisplay(dpy);
2258 _EGLDriver *drv;
2259 EGLBoolean ret;
2260
2261 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_FALSE);
2262
2263 _EGL_CHECK_DISPLAY(disp, EGL_FALSE, drv);
2264 assert(disp->Extensions.WL_bind_wayland_display);
2265
2266 if (!display)
2267 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_FALSE);
2268
2269 ret = drv->API.BindWaylandDisplayWL(drv, disp, display);
2270
2271 RETURN_EGL_EVAL(disp, ret);
2272 }
2273
2274 static EGLBoolean EGLAPIENTRY
2275 eglUnbindWaylandDisplayWL(EGLDisplay dpy, struct wl_display *display)
2276 {
2277 _EGLDisplay *disp = _eglLockDisplay(dpy);
2278 _EGLDriver *drv;
2279 EGLBoolean ret;
2280
2281 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_FALSE);
2282
2283 _EGL_CHECK_DISPLAY(disp, EGL_FALSE, drv);
2284 assert(disp->Extensions.WL_bind_wayland_display);
2285
2286 if (!display)
2287 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_FALSE);
2288
2289 ret = drv->API.UnbindWaylandDisplayWL(drv, disp, display);
2290
2291 RETURN_EGL_EVAL(disp, ret);
2292 }
2293
2294 static EGLBoolean EGLAPIENTRY
2295 eglQueryWaylandBufferWL(EGLDisplay dpy, struct wl_resource *buffer,
2296 EGLint attribute, EGLint *value)
2297 {
2298 _EGLDisplay *disp = _eglLockDisplay(dpy);
2299 _EGLDriver *drv;
2300 EGLBoolean ret;
2301
2302 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_FALSE);
2303
2304 _EGL_CHECK_DISPLAY(disp, EGL_FALSE, drv);
2305 assert(disp->Extensions.WL_bind_wayland_display);
2306
2307 if (!buffer)
2308 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_FALSE);
2309
2310 ret = drv->API.QueryWaylandBufferWL(drv, disp, buffer, attribute, value);
2311
2312 RETURN_EGL_EVAL(disp, ret);
2313 }
2314
2315
2316 static struct wl_buffer * EGLAPIENTRY
2317 eglCreateWaylandBufferFromImageWL(EGLDisplay dpy, EGLImage image)
2318 {
2319 _EGLDisplay *disp = _eglLockDisplay(dpy);
2320 _EGLImage *img;
2321 _EGLDriver *drv;
2322 struct wl_buffer *ret;
2323
2324 _EGL_FUNC_START(disp, EGL_OBJECT_DISPLAY_KHR, NULL, EGL_FALSE);
2325
2326 _EGL_CHECK_DISPLAY(disp, NULL, drv);
2327 if (!disp->Extensions.WL_create_wayland_buffer_from_image)
2328 RETURN_EGL_EVAL(disp, NULL);
2329
2330 img = _eglLookupImage(image, disp);
2331
2332 if (!img)
2333 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, NULL);
2334
2335 ret = drv->API.CreateWaylandBufferFromImageWL(drv, disp, img);
2336
2337 RETURN_EGL_EVAL(disp, ret);
2338 }
2339
2340 static EGLBoolean EGLAPIENTRY
2341 eglPostSubBufferNV(EGLDisplay dpy, EGLSurface surface,
2342 EGLint x, EGLint y, EGLint width, EGLint height)
2343 {
2344 _EGLDisplay *disp = _eglLockDisplay(dpy);
2345 _EGLSurface *surf = _eglLookupSurface(surface, disp);
2346 _EGLDriver *drv;
2347 EGLBoolean ret;
2348
2349 _EGL_FUNC_START(disp, EGL_OBJECT_SURFACE_KHR, surf, EGL_FALSE);
2350
2351 _EGL_CHECK_SURFACE(disp, surf, EGL_FALSE, drv);
2352
2353 if (!disp->Extensions.NV_post_sub_buffer)
2354 RETURN_EGL_EVAL(disp, EGL_FALSE);
2355
2356 ret = drv->API.PostSubBufferNV(drv, disp, surf, x, y, width, height);
2357
2358 RETURN_EGL_EVAL(disp, ret);
2359 }
2360
2361 static EGLBoolean EGLAPIENTRY
2362 eglGetSyncValuesCHROMIUM(EGLDisplay dpy, EGLSurface surface,
2363 EGLuint64KHR *ust, EGLuint64KHR *msc,
2364 EGLuint64KHR *sbc)
2365 {
2366 _EGLDisplay *disp = _eglLockDisplay(dpy);
2367 _EGLSurface *surf = _eglLookupSurface(surface, disp);
2368 _EGLDriver *drv;
2369 EGLBoolean ret;
2370
2371 _EGL_FUNC_START(disp, EGL_OBJECT_SURFACE_KHR, surf, EGL_FALSE);
2372
2373 _EGL_CHECK_SURFACE(disp, surf, EGL_FALSE, drv);
2374 if (!disp->Extensions.CHROMIUM_sync_control)
2375 RETURN_EGL_EVAL(disp, EGL_FALSE);
2376
2377 if (!ust || !msc || !sbc)
2378 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_FALSE);
2379
2380 ret = drv->API.GetSyncValuesCHROMIUM(disp, surf, ust, msc, sbc);
2381
2382 RETURN_EGL_EVAL(disp, ret);
2383 }
2384
2385 static EGLBoolean EGLAPIENTRY
2386 eglExportDMABUFImageQueryMESA(EGLDisplay dpy, EGLImage image,
2387 EGLint *fourcc, EGLint *nplanes,
2388 EGLuint64KHR *modifiers)
2389 {
2390 _EGLDisplay *disp = _eglLockDisplay(dpy);
2391 _EGLImage *img = _eglLookupImage(image, disp);
2392 _EGLDriver *drv;
2393 EGLBoolean ret;
2394
2395 _EGL_FUNC_START(disp, EGL_OBJECT_IMAGE_KHR, img, EGL_FALSE);
2396
2397 _EGL_CHECK_DISPLAY(disp, EGL_FALSE, drv);
2398 assert(disp->Extensions.MESA_image_dma_buf_export);
2399
2400 if (!img)
2401 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_FALSE);
2402
2403 ret = drv->API.ExportDMABUFImageQueryMESA(drv, disp, img, fourcc, nplanes,
2404 modifiers);
2405
2406 RETURN_EGL_EVAL(disp, ret);
2407 }
2408
2409 static EGLBoolean EGLAPIENTRY
2410 eglExportDMABUFImageMESA(EGLDisplay dpy, EGLImage image,
2411 int *fds, EGLint *strides, EGLint *offsets)
2412 {
2413 _EGLDisplay *disp = _eglLockDisplay(dpy);
2414 _EGLImage *img = _eglLookupImage(image, disp);
2415 _EGLDriver *drv;
2416 EGLBoolean ret;
2417
2418 _EGL_FUNC_START(disp, EGL_OBJECT_IMAGE_KHR, img, EGL_FALSE);
2419
2420 _EGL_CHECK_DISPLAY(disp, EGL_FALSE, drv);
2421 assert(disp->Extensions.MESA_image_dma_buf_export);
2422
2423 if (!img)
2424 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_FALSE);
2425
2426 ret = drv->API.ExportDMABUFImageMESA(drv, disp, img, fds, strides, offsets);
2427
2428 RETURN_EGL_EVAL(disp, ret);
2429 }
2430
2431 static EGLint EGLAPIENTRY
2432 eglLabelObjectKHR(EGLDisplay dpy, EGLenum objectType, EGLObjectKHR object,
2433 EGLLabelKHR label)
2434 {
2435 _EGLDisplay *disp = NULL;
2436 _EGLResourceType type;
2437
2438 _EGL_FUNC_START(NULL, EGL_NONE, NULL, EGL_BAD_ALLOC);
2439
2440 if (objectType == EGL_OBJECT_THREAD_KHR) {
2441 _EGLThreadInfo *t = _eglGetCurrentThread();
2442
2443 if (!_eglIsCurrentThreadDummy()) {
2444 t->Label = label;
2445 return EGL_SUCCESS;
2446 }
2447
2448 RETURN_EGL_ERROR(NULL, EGL_BAD_ALLOC, EGL_BAD_ALLOC);
2449 }
2450
2451 disp = _eglLockDisplay(dpy);
2452 if (disp == NULL)
2453 RETURN_EGL_ERROR(disp, EGL_BAD_DISPLAY, EGL_BAD_DISPLAY);
2454
2455 if (objectType == EGL_OBJECT_DISPLAY_KHR) {
2456 if (dpy != (EGLDisplay) object)
2457 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_BAD_PARAMETER);
2458
2459 disp->Label = label;
2460 RETURN_EGL_EVAL(disp, EGL_SUCCESS);
2461 }
2462
2463 switch (objectType) {
2464 case EGL_OBJECT_CONTEXT_KHR:
2465 type = _EGL_RESOURCE_CONTEXT;
2466 break;
2467 case EGL_OBJECT_SURFACE_KHR:
2468 type = _EGL_RESOURCE_SURFACE;
2469 break;
2470 case EGL_OBJECT_IMAGE_KHR:
2471 type = _EGL_RESOURCE_IMAGE;
2472 break;
2473 case EGL_OBJECT_SYNC_KHR:
2474 type = _EGL_RESOURCE_SYNC;
2475 break;
2476 case EGL_OBJECT_STREAM_KHR:
2477 default:
2478 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_BAD_PARAMETER);
2479 }
2480
2481 if (_eglCheckResource(object, type, disp)) {
2482 _EGLResource *res = (_EGLResource *) object;
2483
2484 res->Label = label;
2485 RETURN_EGL_EVAL(disp, EGL_SUCCESS);
2486 }
2487
2488 RETURN_EGL_ERROR(disp, EGL_BAD_PARAMETER, EGL_BAD_PARAMETER);
2489 }
2490
2491 static EGLint EGLAPIENTRY
2492 eglDebugMessageControlKHR(EGLDEBUGPROCKHR callback,
2493 const EGLAttrib *attrib_list)
2494 {
2495 unsigned int newEnabled;
2496
2497 _EGL_FUNC_START(NULL, EGL_NONE, NULL, EGL_BAD_ALLOC);
2498
2499 mtx_lock(_eglGlobal.Mutex);
2500
2501 newEnabled = _eglGlobal.debugTypesEnabled;
2502 if (attrib_list != NULL) {
2503 int i;
2504
2505 for (i = 0; attrib_list[i] != EGL_NONE; i += 2) {
2506 switch (attrib_list[i]) {
2507 case EGL_DEBUG_MSG_CRITICAL_KHR:
2508 case EGL_DEBUG_MSG_ERROR_KHR:
2509 case EGL_DEBUG_MSG_WARN_KHR:
2510 case EGL_DEBUG_MSG_INFO_KHR:
2511 if (attrib_list[i + 1])
2512 newEnabled |= DebugBitFromType(attrib_list[i]);
2513 else
2514 newEnabled &= ~DebugBitFromType(attrib_list[i]);
2515 break;
2516 default:
2517 // On error, set the last error code, call the current
2518 // debug callback, and return the error code.
2519 mtx_unlock(_eglGlobal.Mutex);
2520 _eglReportError(EGL_BAD_ATTRIBUTE, NULL,
2521 "Invalid attribute 0x%04lx", (unsigned long) attrib_list[i]);
2522 return EGL_BAD_ATTRIBUTE;
2523 }
2524 }
2525 }
2526
2527 if (callback != NULL) {
2528 _eglGlobal.debugCallback = callback;
2529 _eglGlobal.debugTypesEnabled = newEnabled;
2530 } else {
2531 _eglGlobal.debugCallback = NULL;
2532 _eglGlobal.debugTypesEnabled = _EGL_DEBUG_BIT_CRITICAL | _EGL_DEBUG_BIT_ERROR;
2533 }
2534
2535 mtx_unlock(_eglGlobal.Mutex);
2536 return EGL_SUCCESS;
2537 }
2538
2539 static EGLBoolean EGLAPIENTRY
2540 eglQueryDebugKHR(EGLint attribute, EGLAttrib *value)
2541 {
2542 _EGL_FUNC_START(NULL, EGL_NONE, NULL, EGL_BAD_ALLOC);
2543
2544 mtx_lock(_eglGlobal.Mutex);
2545
2546 switch (attribute) {
2547 case EGL_DEBUG_MSG_CRITICAL_KHR:
2548 case EGL_DEBUG_MSG_ERROR_KHR:
2549 case EGL_DEBUG_MSG_WARN_KHR:
2550 case EGL_DEBUG_MSG_INFO_KHR:
2551 if (_eglGlobal.debugTypesEnabled & DebugBitFromType(attribute))
2552 *value = EGL_TRUE;
2553 else
2554 *value = EGL_FALSE;
2555 break;
2556 case EGL_DEBUG_CALLBACK_KHR:
2557 *value = (EGLAttrib) _eglGlobal.debugCallback;
2558 break;
2559 default:
2560 mtx_unlock(_eglGlobal.Mutex);
2561 _eglReportError(EGL_BAD_ATTRIBUTE, NULL,
2562 "Invalid attribute 0x%04lx", (unsigned long) attribute);
2563 return EGL_FALSE;
2564 }
2565
2566 mtx_unlock(_eglGlobal.Mutex);
2567 return EGL_TRUE;
2568 }
2569
2570 static int
2571 _eglFunctionCompare(const void *key, const void *elem)
2572 {
2573 const char *procname = key;
2574 const struct _egl_entrypoint *entrypoint = elem;
2575 return strcmp(procname, entrypoint->name);
2576 }
2577
2578 static EGLBoolean EGLAPIENTRY
2579 eglQueryDmaBufFormatsEXT(EGLDisplay dpy, EGLint max_formats,
2580 EGLint *formats, EGLint *num_formats)
2581 {
2582 _EGLDisplay *disp = _eglLockDisplay(dpy);
2583 _EGLDriver *drv;
2584 EGLBoolean ret;
2585
2586 _EGL_FUNC_START(NULL, EGL_NONE, NULL, EGL_FALSE);
2587
2588 _EGL_CHECK_DISPLAY(disp, EGL_FALSE, drv);
2589
2590 ret = drv->API.QueryDmaBufFormatsEXT(drv, disp, max_formats, formats,
2591 num_formats);
2592
2593 RETURN_EGL_EVAL(disp, ret);
2594 }
2595
2596 static EGLBoolean EGLAPIENTRY
2597 eglQueryDmaBufModifiersEXT(EGLDisplay dpy, EGLint format, EGLint max_modifiers,
2598 EGLuint64KHR *modifiers, EGLBoolean *external_only,
2599 EGLint *num_modifiers)
2600 {
2601 _EGLDisplay *disp = _eglLockDisplay(dpy);
2602 _EGLDriver *drv;
2603 EGLBoolean ret;
2604
2605 _EGL_FUNC_START(NULL, EGL_NONE, NULL, EGL_FALSE);
2606
2607 _EGL_CHECK_DISPLAY(disp, EGL_FALSE, drv);
2608
2609 ret = drv->API.QueryDmaBufModifiersEXT(drv, disp, format, max_modifiers,
2610 modifiers, external_only,
2611 num_modifiers);
2612
2613 RETURN_EGL_EVAL(disp, ret);
2614 }
2615
2616 static void EGLAPIENTRY
2617 eglSetBlobCacheFuncsANDROID(EGLDisplay *dpy, EGLSetBlobFuncANDROID set,
2618 EGLGetBlobFuncANDROID get)
2619 {
2620 /* This function does not return anything so we cannot
2621 * utilize the helper macros _EGL_FUNC_START or _EGL_CHECK_DISPLAY.
2622 */
2623 _EGLDisplay *disp = _eglLockDisplay(dpy);
2624 if (!_eglSetFuncName(__func__, disp, EGL_OBJECT_DISPLAY_KHR, NULL)) {
2625 if (disp)
2626 _eglUnlockDisplay(disp);
2627 return;
2628 }
2629
2630 _EGLDriver *drv = _eglCheckDisplay(disp, __func__);
2631 if (!drv) {
2632 if (disp)
2633 _eglUnlockDisplay(disp);
2634 return;
2635 }
2636
2637 if (!set || !get) {
2638 _eglError(EGL_BAD_PARAMETER,
2639 "eglSetBlobCacheFuncsANDROID: NULL handler given");
2640 _eglUnlockDisplay(disp);
2641 return;
2642 }
2643
2644 if (disp->BlobCacheSet) {
2645 _eglError(EGL_BAD_PARAMETER,
2646 "eglSetBlobCacheFuncsANDROID: functions already set");
2647 _eglUnlockDisplay(disp);
2648 return;
2649 }
2650
2651 disp->BlobCacheSet = set;
2652 disp->BlobCacheGet = get;
2653
2654 drv->API.SetBlobCacheFuncsANDROID(drv, disp, set, get);
2655
2656 _eglUnlockDisplay(disp);
2657 }
2658
2659 static EGLBoolean EGLAPIENTRY
2660 eglQueryDeviceAttribEXT(EGLDeviceEXT device,
2661 EGLint attribute,
2662 EGLAttrib *value)
2663 {
2664 _EGLDevice *dev = _eglLookupDevice(device);
2665 EGLBoolean ret;
2666
2667 _EGL_FUNC_START(NULL, EGL_NONE, NULL, EGL_FALSE);
2668 if (!dev)
2669 RETURN_EGL_ERROR(NULL, EGL_BAD_DEVICE_EXT, EGL_FALSE);
2670
2671 ret = _eglQueryDeviceAttribEXT(dev, attribute, value);
2672 RETURN_EGL_EVAL(NULL, ret);
2673 }
2674
2675 static const char * EGLAPIENTRY
2676 eglQueryDeviceStringEXT(EGLDeviceEXT device,
2677 EGLint name)
2678 {
2679 _EGLDevice *dev = _eglLookupDevice(device);
2680
2681 _EGL_FUNC_START(NULL, EGL_NONE, NULL, NULL);
2682 if (!dev)
2683 RETURN_EGL_ERROR(NULL, EGL_BAD_DEVICE_EXT, NULL);
2684
2685 RETURN_EGL_EVAL(NULL, _eglQueryDeviceStringEXT(dev, name));
2686 }
2687
2688 static EGLBoolean EGLAPIENTRY
2689 eglQueryDevicesEXT(EGLint max_devices,
2690 EGLDeviceEXT *devices,
2691 EGLint *num_devices)
2692 {
2693 EGLBoolean ret;
2694
2695 _EGL_FUNC_START(NULL, EGL_NONE, NULL, EGL_FALSE);
2696 ret = _eglQueryDevicesEXT(max_devices, (_EGLDevice **) devices,
2697 num_devices);
2698 RETURN_EGL_EVAL(NULL, ret);
2699 }
2700
2701 static EGLBoolean EGLAPIENTRY
2702 eglQueryDisplayAttribEXT(EGLDisplay dpy,
2703 EGLint attribute,
2704 EGLAttrib *value)
2705 {
2706 _EGLDisplay *disp = _eglLockDisplay(dpy);
2707 _EGLDriver *drv;
2708
2709 _EGL_FUNC_START(NULL, EGL_NONE, NULL, EGL_FALSE);
2710 _EGL_CHECK_DISPLAY(disp, EGL_FALSE, drv);
2711
2712 switch (attribute) {
2713 case EGL_DEVICE_EXT:
2714 *value = (EGLAttrib) disp->Device;
2715 break;
2716 default:
2717 RETURN_EGL_ERROR(disp, EGL_BAD_ATTRIBUTE, EGL_FALSE);
2718 }
2719 RETURN_EGL_SUCCESS(disp, EGL_TRUE);
2720 }
2721
2722 static char * EGLAPIENTRY
2723 eglGetDisplayDriverConfig(EGLDisplay dpy)
2724 {
2725 _EGLDisplay *disp = _eglLockDisplay(dpy);
2726 _EGLDriver *drv;
2727 char *ret;
2728
2729 _EGL_FUNC_START(disp, EGL_NONE, NULL, NULL);
2730 _EGL_CHECK_DISPLAY(disp, NULL, drv);
2731
2732 assert(disp->Extensions.MESA_query_driver);
2733
2734 ret = drv->API.QueryDriverConfig(disp);
2735 RETURN_EGL_EVAL(disp, ret);
2736 }
2737
2738 static const char * EGLAPIENTRY
2739 eglGetDisplayDriverName(EGLDisplay dpy)
2740 {
2741 _EGLDisplay *disp = _eglLockDisplay(dpy);
2742 _EGLDriver *drv;
2743 const char *ret;
2744
2745 _EGL_FUNC_START(disp, EGL_NONE, NULL, NULL);
2746 _EGL_CHECK_DISPLAY(disp, NULL, drv);
2747
2748 assert(disp->Extensions.MESA_query_driver);
2749
2750 ret = drv->API.QueryDriverName(disp);
2751 RETURN_EGL_EVAL(disp, ret);
2752 }
2753
2754 __eglMustCastToProperFunctionPointerType EGLAPIENTRY
2755 eglGetProcAddress(const char *procname)
2756 {
2757 static const struct _egl_entrypoint egl_functions[] = {
2758 #define EGL_ENTRYPOINT(f) { .name = #f, .function = (_EGLProc) f },
2759 #include "eglentrypoint.h"
2760 #undef EGL_ENTRYPOINT
2761 };
2762 _EGLProc ret = NULL;
2763
2764 if (!procname)
2765 RETURN_EGL_SUCCESS(NULL, NULL);
2766
2767 _EGL_FUNC_START(NULL, EGL_NONE, NULL, NULL);
2768
2769 if (strncmp(procname, "egl", 3) == 0) {
2770 const struct _egl_entrypoint *entrypoint =
2771 bsearch(procname,
2772 egl_functions, ARRAY_SIZE(egl_functions),
2773 sizeof(egl_functions[0]),
2774 _eglFunctionCompare);
2775 if (entrypoint)
2776 ret = entrypoint->function;
2777 }
2778
2779 if (!ret)
2780 ret = _eglGetDriverProc(procname);
2781
2782 RETURN_EGL_SUCCESS(NULL, ret);
2783 }
2784
2785 static int
2786 _eglLockDisplayInterop(EGLDisplay dpy, EGLContext context,
2787 _EGLDisplay **disp, _EGLDriver **drv,
2788 _EGLContext **ctx)
2789 {
2790
2791 *disp = _eglLockDisplay(dpy);
2792 if (!*disp || !(*disp)->Initialized || !(*disp)->Driver) {
2793 if (*disp)
2794 _eglUnlockDisplay(*disp);
2795 return MESA_GLINTEROP_INVALID_DISPLAY;
2796 }
2797
2798 *drv = (*disp)->Driver;
2799
2800 *ctx = _eglLookupContext(context, *disp);
2801 if (!*ctx ||
2802 ((*ctx)->ClientAPI != EGL_OPENGL_API &&
2803 (*ctx)->ClientAPI != EGL_OPENGL_ES_API)) {
2804 _eglUnlockDisplay(*disp);
2805 return MESA_GLINTEROP_INVALID_CONTEXT;
2806 }
2807
2808 return MESA_GLINTEROP_SUCCESS;
2809 }
2810
2811 PUBLIC int
2812 MesaGLInteropEGLQueryDeviceInfo(EGLDisplay dpy, EGLContext context,
2813 struct mesa_glinterop_device_info *out)
2814 {
2815 _EGLDisplay *disp;
2816 _EGLDriver *drv;
2817 _EGLContext *ctx;
2818 int ret;
2819
2820 ret = _eglLockDisplayInterop(dpy, context, &disp, &drv, &ctx);
2821 if (ret != MESA_GLINTEROP_SUCCESS)
2822 return ret;
2823
2824 if (drv->API.GLInteropQueryDeviceInfo)
2825 ret = drv->API.GLInteropQueryDeviceInfo(disp, ctx, out);
2826 else
2827 ret = MESA_GLINTEROP_UNSUPPORTED;
2828
2829 _eglUnlockDisplay(disp);
2830 return ret;
2831 }
2832
2833 PUBLIC int
2834 MesaGLInteropEGLExportObject(EGLDisplay dpy, EGLContext context,
2835 struct mesa_glinterop_export_in *in,
2836 struct mesa_glinterop_export_out *out)
2837 {
2838 _EGLDisplay *disp;
2839 _EGLDriver *drv;
2840 _EGLContext *ctx;
2841 int ret;
2842
2843 ret = _eglLockDisplayInterop(dpy, context, &disp, &drv, &ctx);
2844 if (ret != MESA_GLINTEROP_SUCCESS)
2845 return ret;
2846
2847 if (drv->API.GLInteropExportObject)
2848 ret = drv->API.GLInteropExportObject(disp, ctx, in, out);
2849 else
2850 ret = MESA_GLINTEROP_UNSUPPORTED;
2851
2852 _eglUnlockDisplay(disp);
2853 return ret;
2854 }