mesa: remove fallback RefCount == 0 pattern
[mesa.git] / src / mesa / main / bufferobj.c
1 /*
2 * Mesa 3-D graphics library
3 *
4 * Copyright (C) 1999-2008 Brian Paul All Rights Reserved.
5 * Copyright (C) 2009 VMware, Inc. All Rights Reserved.
6 *
7 * Permission is hereby granted, free of charge, to any person obtaining a
8 * copy of this software and associated documentation files (the "Software"),
9 * to deal in the Software without restriction, including without limitation
10 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
11 * and/or sell copies of the Software, and to permit persons to whom the
12 * Software is furnished to do so, subject to the following conditions:
13 *
14 * The above copyright notice and this permission notice shall be included
15 * in all copies or substantial portions of the Software.
16 *
17 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
18 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
19 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
20 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
21 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
22 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
23 * OTHER DEALINGS IN THE SOFTWARE.
24 */
25
26
27 /**
28 * \file bufferobj.c
29 * \brief Functions for the GL_ARB_vertex/pixel_buffer_object extensions.
30 * \author Brian Paul, Ian Romanick
31 */
32
33 #include <stdbool.h>
34 #include <inttypes.h> /* for PRId64 macro */
35 #include "util/debug.h"
36 #include "glheader.h"
37 #include "enums.h"
38 #include "hash.h"
39 #include "imports.h"
40 #include "context.h"
41 #include "bufferobj.h"
42 #include "mtypes.h"
43 #include "teximage.h"
44 #include "glformats.h"
45 #include "texstore.h"
46 #include "transformfeedback.h"
47 #include "varray.h"
48
49
50 /* Debug flags */
51 /*#define VBO_DEBUG*/
52 /*#define BOUNDS_CHECK*/
53
54
55 /**
56 * We count the number of buffer modification calls to check for
57 * inefficient buffer use. This is the number of such calls before we
58 * issue a warning.
59 */
60 #define BUFFER_WARNING_CALL_COUNT 4
61
62
63 /**
64 * Helper to warn of possible performance issues, such as frequently
65 * updating a buffer created with GL_STATIC_DRAW. Called via the macro
66 * below.
67 */
68 static void
69 buffer_usage_warning(struct gl_context *ctx, GLuint *id, const char *fmt, ...)
70 {
71 va_list args;
72
73 va_start(args, fmt);
74 _mesa_gl_vdebug(ctx, id,
75 MESA_DEBUG_SOURCE_API,
76 MESA_DEBUG_TYPE_PERFORMANCE,
77 MESA_DEBUG_SEVERITY_MEDIUM,
78 fmt, args);
79 va_end(args);
80 }
81
82 #define BUFFER_USAGE_WARNING(CTX, FMT, ...) \
83 do { \
84 static GLuint id = 0; \
85 buffer_usage_warning(CTX, &id, FMT, ##__VA_ARGS__); \
86 } while (0)
87
88
89 /**
90 * Used as a placeholder for buffer objects between glGenBuffers() and
91 * glBindBuffer() so that glIsBuffer() can work correctly.
92 */
93 static struct gl_buffer_object DummyBufferObject;
94
95
96 /**
97 * Return pointer to address of a buffer object target.
98 * \param ctx the GL context
99 * \param target the buffer object target to be retrieved.
100 * \return pointer to pointer to the buffer object bound to \c target in the
101 * specified context or \c NULL if \c target is invalid.
102 */
103 static inline struct gl_buffer_object **
104 get_buffer_target(struct gl_context *ctx, GLenum target)
105 {
106 /* Other targets are only supported in desktop OpenGL and OpenGL ES 3.0.
107 */
108 if (!_mesa_is_desktop_gl(ctx) && !_mesa_is_gles3(ctx)
109 && target != GL_ARRAY_BUFFER && target != GL_ELEMENT_ARRAY_BUFFER)
110 return NULL;
111
112 switch (target) {
113 case GL_ARRAY_BUFFER_ARB:
114 return &ctx->Array.ArrayBufferObj;
115 case GL_ELEMENT_ARRAY_BUFFER_ARB:
116 return &ctx->Array.VAO->IndexBufferObj;
117 case GL_PIXEL_PACK_BUFFER_EXT:
118 return &ctx->Pack.BufferObj;
119 case GL_PIXEL_UNPACK_BUFFER_EXT:
120 return &ctx->Unpack.BufferObj;
121 case GL_COPY_READ_BUFFER:
122 return &ctx->CopyReadBuffer;
123 case GL_COPY_WRITE_BUFFER:
124 return &ctx->CopyWriteBuffer;
125 case GL_QUERY_BUFFER:
126 if (_mesa_has_ARB_query_buffer_object(ctx))
127 return &ctx->QueryBuffer;
128 break;
129 case GL_DRAW_INDIRECT_BUFFER:
130 if ((ctx->API == API_OPENGL_CORE &&
131 ctx->Extensions.ARB_draw_indirect) ||
132 _mesa_is_gles31(ctx)) {
133 return &ctx->DrawIndirectBuffer;
134 }
135 break;
136 case GL_PARAMETER_BUFFER_ARB:
137 if (_mesa_has_ARB_indirect_parameters(ctx)) {
138 return &ctx->ParameterBuffer;
139 }
140 break;
141 case GL_DISPATCH_INDIRECT_BUFFER:
142 if (_mesa_has_compute_shaders(ctx)) {
143 return &ctx->DispatchIndirectBuffer;
144 }
145 break;
146 case GL_TRANSFORM_FEEDBACK_BUFFER:
147 if (ctx->Extensions.EXT_transform_feedback) {
148 return &ctx->TransformFeedback.CurrentBuffer;
149 }
150 break;
151 case GL_TEXTURE_BUFFER:
152 if (_mesa_has_ARB_texture_buffer_object(ctx) ||
153 _mesa_has_OES_texture_buffer(ctx)) {
154 return &ctx->Texture.BufferObject;
155 }
156 break;
157 case GL_UNIFORM_BUFFER:
158 if (ctx->Extensions.ARB_uniform_buffer_object) {
159 return &ctx->UniformBuffer;
160 }
161 break;
162 case GL_SHADER_STORAGE_BUFFER:
163 if (ctx->Extensions.ARB_shader_storage_buffer_object) {
164 return &ctx->ShaderStorageBuffer;
165 }
166 break;
167 case GL_ATOMIC_COUNTER_BUFFER:
168 if (ctx->Extensions.ARB_shader_atomic_counters) {
169 return &ctx->AtomicBuffer;
170 }
171 break;
172 case GL_EXTERNAL_VIRTUAL_MEMORY_BUFFER_AMD:
173 if (ctx->Extensions.AMD_pinned_memory) {
174 return &ctx->ExternalVirtualMemoryBuffer;
175 }
176 break;
177 default:
178 return NULL;
179 }
180 return NULL;
181 }
182
183
184 /**
185 * Get the buffer object bound to the specified target in a GL context.
186 * \param ctx the GL context
187 * \param target the buffer object target to be retrieved.
188 * \param error the GL error to record if target is illegal.
189 * \return pointer to the buffer object bound to \c target in the
190 * specified context or \c NULL if \c target is invalid.
191 */
192 static inline struct gl_buffer_object *
193 get_buffer(struct gl_context *ctx, const char *func, GLenum target,
194 GLenum error)
195 {
196 struct gl_buffer_object **bufObj = get_buffer_target(ctx, target);
197
198 if (!bufObj) {
199 _mesa_error(ctx, GL_INVALID_ENUM, "%s(target)", func);
200 return NULL;
201 }
202
203 if (!_mesa_is_bufferobj(*bufObj)) {
204 _mesa_error(ctx, error, "%s(no buffer bound)", func);
205 return NULL;
206 }
207
208 return *bufObj;
209 }
210
211
212 /**
213 * Convert a GLbitfield describing the mapped buffer access flags
214 * into one of GL_READ_WRITE, GL_READ_ONLY, or GL_WRITE_ONLY.
215 */
216 static GLenum
217 simplified_access_mode(struct gl_context *ctx, GLbitfield access)
218 {
219 const GLbitfield rwFlags = GL_MAP_READ_BIT | GL_MAP_WRITE_BIT;
220 if ((access & rwFlags) == rwFlags)
221 return GL_READ_WRITE;
222 if ((access & GL_MAP_READ_BIT) == GL_MAP_READ_BIT)
223 return GL_READ_ONLY;
224 if ((access & GL_MAP_WRITE_BIT) == GL_MAP_WRITE_BIT)
225 return GL_WRITE_ONLY;
226
227 /* Otherwise, AccessFlags is zero (the default state).
228 *
229 * Table 2.6 on page 31 (page 44 of the PDF) of the OpenGL 1.5 spec says:
230 *
231 * Name Type Initial Value Legal Values
232 * ... ... ... ...
233 * BUFFER_ACCESS enum READ_WRITE READ_ONLY, WRITE_ONLY
234 * READ_WRITE
235 *
236 * However, table 6.8 in the GL_OES_mapbuffer extension says:
237 *
238 * Get Value Type Get Command Value Description
239 * --------- ---- ----------- ----- -----------
240 * BUFFER_ACCESS_OES Z1 GetBufferParameteriv WRITE_ONLY_OES buffer map flag
241 *
242 * The difference is because GL_OES_mapbuffer only supports mapping buffers
243 * write-only.
244 */
245 assert(access == 0);
246
247 return _mesa_is_gles(ctx) ? GL_WRITE_ONLY : GL_READ_WRITE;
248 }
249
250
251 /**
252 * Test if the buffer is mapped, and if so, if the mapped range overlaps the
253 * given range.
254 * The regions do not overlap if and only if the end of the given
255 * region is before the mapped region or the start of the given region
256 * is after the mapped region.
257 *
258 * \param obj Buffer object target on which to operate.
259 * \param offset Offset of the first byte of the subdata range.
260 * \param size Size, in bytes, of the subdata range.
261 * \return true if ranges overlap, false otherwise
262 *
263 */
264 static bool
265 bufferobj_range_mapped(const struct gl_buffer_object *obj,
266 GLintptr offset, GLsizeiptr size)
267 {
268 if (_mesa_bufferobj_mapped(obj, MAP_USER)) {
269 const GLintptr end = offset + size;
270 const GLintptr mapEnd = obj->Mappings[MAP_USER].Offset +
271 obj->Mappings[MAP_USER].Length;
272
273 if (!(end <= obj->Mappings[MAP_USER].Offset || offset >= mapEnd)) {
274 return true;
275 }
276 }
277 return false;
278 }
279
280
281 /**
282 * Tests the subdata range parameters and sets the GL error code for
283 * \c glBufferSubDataARB, \c glGetBufferSubDataARB and
284 * \c glClearBufferSubData.
285 *
286 * \param ctx GL context.
287 * \param bufObj The buffer object.
288 * \param offset Offset of the first byte of the subdata range.
289 * \param size Size, in bytes, of the subdata range.
290 * \param mappedRange If true, checks if an overlapping range is mapped.
291 * If false, checks if buffer is mapped.
292 * \param caller Name of calling function for recording errors.
293 * \return false if error, true otherwise
294 *
295 * \sa glBufferSubDataARB, glGetBufferSubDataARB, glClearBufferSubData
296 */
297 static bool
298 buffer_object_subdata_range_good(struct gl_context *ctx,
299 const struct gl_buffer_object *bufObj,
300 GLintptr offset, GLsizeiptr size,
301 bool mappedRange, const char *caller)
302 {
303 if (size < 0) {
304 _mesa_error(ctx, GL_INVALID_VALUE, "%s(size < 0)", caller);
305 return false;
306 }
307
308 if (offset < 0) {
309 _mesa_error(ctx, GL_INVALID_VALUE, "%s(offset < 0)", caller);
310 return false;
311 }
312
313 if (offset + size > bufObj->Size) {
314 _mesa_error(ctx, GL_INVALID_VALUE,
315 "%s(offset %lu + size %lu > buffer size %lu)", caller,
316 (unsigned long) offset,
317 (unsigned long) size,
318 (unsigned long) bufObj->Size);
319 return false;
320 }
321
322 if (bufObj->Mappings[MAP_USER].AccessFlags & GL_MAP_PERSISTENT_BIT)
323 return true;
324
325 if (mappedRange) {
326 if (bufferobj_range_mapped(bufObj, offset, size)) {
327 _mesa_error(ctx, GL_INVALID_OPERATION,
328 "%s(range is mapped without persistent bit)",
329 caller);
330 return false;
331 }
332 }
333 else {
334 if (_mesa_bufferobj_mapped(bufObj, MAP_USER)) {
335 _mesa_error(ctx, GL_INVALID_OPERATION,
336 "%s(buffer is mapped without persistent bit)",
337 caller);
338 return false;
339 }
340 }
341
342 return true;
343 }
344
345
346 /**
347 * Test the format and type parameters and set the GL error code for
348 * \c glClearBufferData and \c glClearBufferSubData.
349 *
350 * \param ctx GL context.
351 * \param internalformat Format to which the data is to be converted.
352 * \param format Format of the supplied data.
353 * \param type Type of the supplied data.
354 * \param caller Name of calling function for recording errors.
355 * \return If internalformat, format and type are legal the mesa_format
356 * corresponding to internalformat, otherwise MESA_FORMAT_NONE.
357 *
358 * \sa glClearBufferData and glClearBufferSubData
359 */
360 static mesa_format
361 validate_clear_buffer_format(struct gl_context *ctx,
362 GLenum internalformat,
363 GLenum format, GLenum type,
364 const char *caller)
365 {
366 mesa_format mesaFormat;
367 GLenum errorFormatType;
368
369 mesaFormat = _mesa_validate_texbuffer_format(ctx, internalformat);
370 if (mesaFormat == MESA_FORMAT_NONE) {
371 _mesa_error(ctx, GL_INVALID_ENUM,
372 "%s(invalid internalformat)", caller);
373 return MESA_FORMAT_NONE;
374 }
375
376 /* NOTE: not mentioned in ARB_clear_buffer_object but according to
377 * EXT_texture_integer there is no conversion between integer and
378 * non-integer formats
379 */
380 if (_mesa_is_enum_format_signed_int(format) !=
381 _mesa_is_format_integer_color(mesaFormat)) {
382 _mesa_error(ctx, GL_INVALID_OPERATION,
383 "%s(integer vs non-integer)", caller);
384 return MESA_FORMAT_NONE;
385 }
386
387 if (!_mesa_is_color_format(format)) {
388 _mesa_error(ctx, GL_INVALID_ENUM,
389 "%s(format is not a color format)", caller);
390 return MESA_FORMAT_NONE;
391 }
392
393 errorFormatType = _mesa_error_check_format_and_type(ctx, format, type);
394 if (errorFormatType != GL_NO_ERROR) {
395 _mesa_error(ctx, GL_INVALID_ENUM,
396 "%s(invalid format or type)", caller);
397 return MESA_FORMAT_NONE;
398 }
399
400 return mesaFormat;
401 }
402
403
404 /**
405 * Convert user-specified clear value to the specified internal format.
406 *
407 * \param ctx GL context.
408 * \param internalformat Format to which the data is converted.
409 * \param clearValue Points to the converted clear value.
410 * \param format Format of the supplied data.
411 * \param type Type of the supplied data.
412 * \param data Data which is to be converted to internalformat.
413 * \param caller Name of calling function for recording errors.
414 * \return true if data could be converted, false otherwise.
415 *
416 * \sa glClearBufferData, glClearBufferSubData
417 */
418 static bool
419 convert_clear_buffer_data(struct gl_context *ctx,
420 mesa_format internalformat,
421 GLubyte *clearValue, GLenum format, GLenum type,
422 const GLvoid *data, const char *caller)
423 {
424 GLenum internalformatBase = _mesa_get_format_base_format(internalformat);
425
426 if (_mesa_texstore(ctx, 1, internalformatBase, internalformat,
427 0, &clearValue, 1, 1, 1,
428 format, type, data, &ctx->Unpack)) {
429 return true;
430 }
431 else {
432 _mesa_error(ctx, GL_OUT_OF_MEMORY, "%s", caller);
433 return false;
434 }
435 }
436
437
438 /**
439 * Allocate and initialize a new buffer object.
440 *
441 * Default callback for the \c dd_function_table::NewBufferObject() hook.
442 */
443 static struct gl_buffer_object *
444 _mesa_new_buffer_object(struct gl_context *ctx, GLuint name)
445 {
446 struct gl_buffer_object *obj;
447
448 (void) ctx;
449
450 obj = MALLOC_STRUCT(gl_buffer_object);
451 _mesa_initialize_buffer_object(ctx, obj, name);
452 return obj;
453 }
454
455
456 /**
457 * Delete a buffer object.
458 *
459 * Default callback for the \c dd_function_table::DeleteBuffer() hook.
460 */
461 void
462 _mesa_delete_buffer_object(struct gl_context *ctx,
463 struct gl_buffer_object *bufObj)
464 {
465 (void) ctx;
466
467 vbo_delete_minmax_cache(bufObj);
468 _mesa_align_free(bufObj->Data);
469
470 /* assign strange values here to help w/ debugging */
471 bufObj->RefCount = -1000;
472 bufObj->Name = ~0;
473
474 mtx_destroy(&bufObj->Mutex);
475 free(bufObj->Label);
476 free(bufObj);
477 }
478
479
480
481 /**
482 * Set ptr to bufObj w/ reference counting.
483 * This is normally only called from the _mesa_reference_buffer_object() macro
484 * when there's a real pointer change.
485 */
486 void
487 _mesa_reference_buffer_object_(struct gl_context *ctx,
488 struct gl_buffer_object **ptr,
489 struct gl_buffer_object *bufObj)
490 {
491 if (*ptr) {
492 /* Unreference the old buffer */
493 GLboolean deleteFlag = GL_FALSE;
494 struct gl_buffer_object *oldObj = *ptr;
495
496 mtx_lock(&oldObj->Mutex);
497 assert(oldObj->RefCount > 0);
498 oldObj->RefCount--;
499 deleteFlag = (oldObj->RefCount == 0);
500 mtx_unlock(&oldObj->Mutex);
501
502 if (deleteFlag) {
503 assert(ctx->Driver.DeleteBuffer);
504 ctx->Driver.DeleteBuffer(ctx, oldObj);
505 }
506
507 *ptr = NULL;
508 }
509 assert(!*ptr);
510
511 if (bufObj) {
512 /* reference new buffer */
513 mtx_lock(&bufObj->Mutex);
514 assert(bufObj->RefCount > 0);
515
516 bufObj->RefCount++;
517 *ptr = bufObj;
518 mtx_unlock(&bufObj->Mutex);
519 }
520 }
521
522
523 /**
524 * Get the value of MESA_NO_MINMAX_CACHE.
525 */
526 static bool
527 get_no_minmax_cache()
528 {
529 static bool read = false;
530 static bool disable = false;
531
532 if (!read) {
533 disable = env_var_as_boolean("MESA_NO_MINMAX_CACHE", false);
534 read = true;
535 }
536
537 return disable;
538 }
539
540
541 /**
542 * Initialize a buffer object to default values.
543 */
544 void
545 _mesa_initialize_buffer_object(struct gl_context *ctx,
546 struct gl_buffer_object *obj,
547 GLuint name)
548 {
549 memset(obj, 0, sizeof(struct gl_buffer_object));
550 mtx_init(&obj->Mutex, mtx_plain);
551 obj->RefCount = 1;
552 obj->Name = name;
553 obj->Usage = GL_STATIC_DRAW_ARB;
554
555 if (get_no_minmax_cache())
556 obj->UsageHistory |= USAGE_DISABLE_MINMAX_CACHE;
557 }
558
559
560
561 /**
562 * Callback called from _mesa_HashWalk()
563 */
564 static void
565 count_buffer_size(GLuint key, void *data, void *userData)
566 {
567 const struct gl_buffer_object *bufObj =
568 (const struct gl_buffer_object *) data;
569 GLuint *total = (GLuint *) userData;
570
571 (void) key;
572 *total = *total + bufObj->Size;
573 }
574
575
576 /**
577 * Compute total size (in bytes) of all buffer objects for the given context.
578 * For debugging purposes.
579 */
580 GLuint
581 _mesa_total_buffer_object_memory(struct gl_context *ctx)
582 {
583 GLuint total = 0;
584
585 _mesa_HashWalk(ctx->Shared->BufferObjects, count_buffer_size, &total);
586
587 return total;
588 }
589
590
591 /**
592 * Allocate space for and store data in a buffer object. Any data that was
593 * previously stored in the buffer object is lost. If \c data is \c NULL,
594 * memory will be allocated, but no copy will occur.
595 *
596 * This is the default callback for \c dd_function_table::BufferData()
597 * Note that all GL error checking will have been done already.
598 *
599 * \param ctx GL context.
600 * \param target Buffer object target on which to operate.
601 * \param size Size, in bytes, of the new data store.
602 * \param data Pointer to the data to store in the buffer object. This
603 * pointer may be \c NULL.
604 * \param usage Hints about how the data will be used.
605 * \param bufObj Object to be used.
606 *
607 * \return GL_TRUE for success, GL_FALSE for failure
608 * \sa glBufferDataARB, dd_function_table::BufferData.
609 */
610 static GLboolean
611 buffer_data_fallback(struct gl_context *ctx, GLenum target, GLsizeiptr size,
612 const GLvoid *data, GLenum usage, GLenum storageFlags,
613 struct gl_buffer_object *bufObj)
614 {
615 void * new_data;
616
617 (void) target;
618
619 _mesa_align_free( bufObj->Data );
620
621 new_data = _mesa_align_malloc( size, ctx->Const.MinMapBufferAlignment );
622 if (new_data) {
623 bufObj->Data = (GLubyte *) new_data;
624 bufObj->Size = size;
625 bufObj->Usage = usage;
626 bufObj->StorageFlags = storageFlags;
627
628 if (data) {
629 memcpy( bufObj->Data, data, size );
630 }
631
632 return GL_TRUE;
633 }
634 else {
635 return GL_FALSE;
636 }
637 }
638
639
640 /**
641 * Replace data in a subrange of buffer object. If the data range
642 * specified by \c size + \c offset extends beyond the end of the buffer or
643 * if \c data is \c NULL, no copy is performed.
644 *
645 * This is the default callback for \c dd_function_table::BufferSubData()
646 * Note that all GL error checking will have been done already.
647 *
648 * \param ctx GL context.
649 * \param offset Offset of the first byte to be modified.
650 * \param size Size, in bytes, of the data range.
651 * \param data Pointer to the data to store in the buffer object.
652 * \param bufObj Object to be used.
653 *
654 * \sa glBufferSubDataARB, dd_function_table::BufferSubData.
655 */
656 static void
657 buffer_sub_data_fallback(struct gl_context *ctx, GLintptr offset,
658 GLsizeiptr size, const GLvoid *data,
659 struct gl_buffer_object *bufObj)
660 {
661 (void) ctx;
662
663 /* this should have been caught in _mesa_BufferSubData() */
664 assert(size + offset <= bufObj->Size);
665
666 if (bufObj->Data) {
667 memcpy( (GLubyte *) bufObj->Data + offset, data, size );
668 }
669 }
670
671
672 /**
673 * Retrieve data from a subrange of buffer object. If the data range
674 * specified by \c size + \c offset extends beyond the end of the buffer or
675 * if \c data is \c NULL, no copy is performed.
676 *
677 * This is the default callback for \c dd_function_table::GetBufferSubData()
678 * Note that all GL error checking will have been done already.
679 *
680 * \param ctx GL context.
681 * \param target Buffer object target on which to operate.
682 * \param offset Offset of the first byte to be fetched.
683 * \param size Size, in bytes, of the data range.
684 * \param data Destination for data
685 * \param bufObj Object to be used.
686 *
687 * \sa glBufferGetSubDataARB, dd_function_table::GetBufferSubData.
688 */
689 static void
690 _mesa_buffer_get_subdata( struct gl_context *ctx, GLintptrARB offset,
691 GLsizeiptrARB size, GLvoid * data,
692 struct gl_buffer_object * bufObj )
693 {
694 (void) ctx;
695
696 if (bufObj->Data && ((GLsizeiptrARB) (size + offset) <= bufObj->Size)) {
697 memcpy( data, (GLubyte *) bufObj->Data + offset, size );
698 }
699 }
700
701
702 /**
703 * Clear a subrange of the buffer object with copies of the supplied data.
704 * If data is NULL the buffer is filled with zeros.
705 *
706 * This is the default callback for \c dd_function_table::ClearBufferSubData()
707 * Note that all GL error checking will have been done already.
708 *
709 * \param ctx GL context.
710 * \param offset Offset of the first byte to be cleared.
711 * \param size Size, in bytes, of the to be cleared range.
712 * \param clearValue Source of the data.
713 * \param clearValueSize Size, in bytes, of the supplied data.
714 * \param bufObj Object to be cleared.
715 *
716 * \sa glClearBufferSubData, glClearBufferData and
717 * dd_function_table::ClearBufferSubData.
718 */
719 void
720 _mesa_ClearBufferSubData_sw(struct gl_context *ctx,
721 GLintptr offset, GLsizeiptr size,
722 const GLvoid *clearValue,
723 GLsizeiptr clearValueSize,
724 struct gl_buffer_object *bufObj)
725 {
726 GLsizeiptr i;
727 GLubyte *dest;
728
729 assert(ctx->Driver.MapBufferRange);
730 dest = ctx->Driver.MapBufferRange(ctx, offset, size,
731 GL_MAP_WRITE_BIT |
732 GL_MAP_INVALIDATE_RANGE_BIT,
733 bufObj, MAP_INTERNAL);
734
735 if (!dest) {
736 _mesa_error(ctx, GL_OUT_OF_MEMORY, "glClearBuffer[Sub]Data");
737 return;
738 }
739
740 if (clearValue == NULL) {
741 /* Clear with zeros, per the spec */
742 memset(dest, 0, size);
743 ctx->Driver.UnmapBuffer(ctx, bufObj, MAP_INTERNAL);
744 return;
745 }
746
747 for (i = 0; i < size/clearValueSize; ++i) {
748 memcpy(dest, clearValue, clearValueSize);
749 dest += clearValueSize;
750 }
751
752 ctx->Driver.UnmapBuffer(ctx, bufObj, MAP_INTERNAL);
753 }
754
755
756 /**
757 * Default fallback for \c dd_function_table::MapBufferRange().
758 * Called via glMapBufferRange().
759 */
760 static void *
761 map_buffer_range_fallback(struct gl_context *ctx, GLintptr offset,
762 GLsizeiptr length, GLbitfield access,
763 struct gl_buffer_object *bufObj,
764 gl_map_buffer_index index)
765 {
766 (void) ctx;
767 assert(!_mesa_bufferobj_mapped(bufObj, index));
768 /* Just return a direct pointer to the data */
769 bufObj->Mappings[index].Pointer = bufObj->Data + offset;
770 bufObj->Mappings[index].Length = length;
771 bufObj->Mappings[index].Offset = offset;
772 bufObj->Mappings[index].AccessFlags = access;
773 return bufObj->Mappings[index].Pointer;
774 }
775
776
777 /**
778 * Default fallback for \c dd_function_table::FlushMappedBufferRange().
779 * Called via glFlushMappedBufferRange().
780 */
781 static void
782 flush_mapped_buffer_range_fallback(struct gl_context *ctx,
783 GLintptr offset, GLsizeiptr length,
784 struct gl_buffer_object *obj,
785 gl_map_buffer_index index)
786 {
787 (void) ctx;
788 (void) offset;
789 (void) length;
790 (void) obj;
791 (void) index;
792 /* no-op */
793 }
794
795
796 /**
797 * Default callback for \c dd_function_table::UnmapBuffer().
798 *
799 * The input parameters will have been already tested for errors.
800 *
801 * \sa glUnmapBufferARB, dd_function_table::UnmapBuffer
802 */
803 static GLboolean
804 unmap_buffer_fallback(struct gl_context *ctx, struct gl_buffer_object *bufObj,
805 gl_map_buffer_index index)
806 {
807 (void) ctx;
808 /* XXX we might assert here that bufObj->Pointer is non-null */
809 bufObj->Mappings[index].Pointer = NULL;
810 bufObj->Mappings[index].Length = 0;
811 bufObj->Mappings[index].Offset = 0;
812 bufObj->Mappings[index].AccessFlags = 0x0;
813 return GL_TRUE;
814 }
815
816
817 /**
818 * Default fallback for \c dd_function_table::CopyBufferSubData().
819 * Called via glCopyBufferSubData().
820 */
821 static void
822 copy_buffer_sub_data_fallback(struct gl_context *ctx,
823 struct gl_buffer_object *src,
824 struct gl_buffer_object *dst,
825 GLintptr readOffset, GLintptr writeOffset,
826 GLsizeiptr size)
827 {
828 GLubyte *srcPtr, *dstPtr;
829
830 if (src == dst) {
831 srcPtr = dstPtr = ctx->Driver.MapBufferRange(ctx, 0, src->Size,
832 GL_MAP_READ_BIT |
833 GL_MAP_WRITE_BIT, src,
834 MAP_INTERNAL);
835
836 if (!srcPtr)
837 return;
838
839 srcPtr += readOffset;
840 dstPtr += writeOffset;
841 } else {
842 srcPtr = ctx->Driver.MapBufferRange(ctx, readOffset, size,
843 GL_MAP_READ_BIT, src,
844 MAP_INTERNAL);
845 dstPtr = ctx->Driver.MapBufferRange(ctx, writeOffset, size,
846 (GL_MAP_WRITE_BIT |
847 GL_MAP_INVALIDATE_RANGE_BIT), dst,
848 MAP_INTERNAL);
849 }
850
851 /* Note: the src and dst regions will never overlap. Trying to do so
852 * would generate GL_INVALID_VALUE earlier.
853 */
854 if (srcPtr && dstPtr)
855 memcpy(dstPtr, srcPtr, size);
856
857 ctx->Driver.UnmapBuffer(ctx, src, MAP_INTERNAL);
858 if (dst != src)
859 ctx->Driver.UnmapBuffer(ctx, dst, MAP_INTERNAL);
860 }
861
862
863
864 /**
865 * Initialize the state associated with buffer objects
866 */
867 void
868 _mesa_init_buffer_objects( struct gl_context *ctx )
869 {
870 GLuint i;
871
872 memset(&DummyBufferObject, 0, sizeof(DummyBufferObject));
873 mtx_init(&DummyBufferObject.Mutex, mtx_plain);
874 DummyBufferObject.RefCount = 1000*1000*1000; /* never delete */
875
876 _mesa_reference_buffer_object(ctx, &ctx->Array.ArrayBufferObj,
877 ctx->Shared->NullBufferObj);
878
879 _mesa_reference_buffer_object(ctx, &ctx->CopyReadBuffer,
880 ctx->Shared->NullBufferObj);
881 _mesa_reference_buffer_object(ctx, &ctx->CopyWriteBuffer,
882 ctx->Shared->NullBufferObj);
883
884 _mesa_reference_buffer_object(ctx, &ctx->UniformBuffer,
885 ctx->Shared->NullBufferObj);
886
887 _mesa_reference_buffer_object(ctx, &ctx->ShaderStorageBuffer,
888 ctx->Shared->NullBufferObj);
889
890 _mesa_reference_buffer_object(ctx, &ctx->AtomicBuffer,
891 ctx->Shared->NullBufferObj);
892
893 _mesa_reference_buffer_object(ctx, &ctx->DrawIndirectBuffer,
894 ctx->Shared->NullBufferObj);
895
896 _mesa_reference_buffer_object(ctx, &ctx->ParameterBuffer,
897 ctx->Shared->NullBufferObj);
898
899 _mesa_reference_buffer_object(ctx, &ctx->DispatchIndirectBuffer,
900 ctx->Shared->NullBufferObj);
901
902 _mesa_reference_buffer_object(ctx, &ctx->QueryBuffer,
903 ctx->Shared->NullBufferObj);
904
905 for (i = 0; i < MAX_COMBINED_UNIFORM_BUFFERS; i++) {
906 _mesa_reference_buffer_object(ctx,
907 &ctx->UniformBufferBindings[i].BufferObject,
908 ctx->Shared->NullBufferObj);
909 ctx->UniformBufferBindings[i].Offset = -1;
910 ctx->UniformBufferBindings[i].Size = -1;
911 }
912
913 for (i = 0; i < MAX_COMBINED_SHADER_STORAGE_BUFFERS; i++) {
914 _mesa_reference_buffer_object(ctx,
915 &ctx->ShaderStorageBufferBindings[i].BufferObject,
916 ctx->Shared->NullBufferObj);
917 ctx->ShaderStorageBufferBindings[i].Offset = -1;
918 ctx->ShaderStorageBufferBindings[i].Size = -1;
919 }
920
921 for (i = 0; i < MAX_COMBINED_ATOMIC_BUFFERS; i++) {
922 _mesa_reference_buffer_object(ctx,
923 &ctx->AtomicBufferBindings[i].BufferObject,
924 ctx->Shared->NullBufferObj);
925 ctx->AtomicBufferBindings[i].Offset = 0;
926 ctx->AtomicBufferBindings[i].Size = 0;
927 }
928 }
929
930
931 void
932 _mesa_free_buffer_objects( struct gl_context *ctx )
933 {
934 GLuint i;
935
936 _mesa_reference_buffer_object(ctx, &ctx->Array.ArrayBufferObj, NULL);
937
938 _mesa_reference_buffer_object(ctx, &ctx->CopyReadBuffer, NULL);
939 _mesa_reference_buffer_object(ctx, &ctx->CopyWriteBuffer, NULL);
940
941 _mesa_reference_buffer_object(ctx, &ctx->UniformBuffer, NULL);
942
943 _mesa_reference_buffer_object(ctx, &ctx->ShaderStorageBuffer, NULL);
944
945 _mesa_reference_buffer_object(ctx, &ctx->AtomicBuffer, NULL);
946
947 _mesa_reference_buffer_object(ctx, &ctx->DrawIndirectBuffer, NULL);
948
949 _mesa_reference_buffer_object(ctx, &ctx->ParameterBuffer, NULL);
950
951 _mesa_reference_buffer_object(ctx, &ctx->DispatchIndirectBuffer, NULL);
952
953 _mesa_reference_buffer_object(ctx, &ctx->QueryBuffer, NULL);
954
955 for (i = 0; i < MAX_COMBINED_UNIFORM_BUFFERS; i++) {
956 _mesa_reference_buffer_object(ctx,
957 &ctx->UniformBufferBindings[i].BufferObject,
958 NULL);
959 }
960
961 for (i = 0; i < MAX_COMBINED_SHADER_STORAGE_BUFFERS; i++) {
962 _mesa_reference_buffer_object(ctx,
963 &ctx->ShaderStorageBufferBindings[i].BufferObject,
964 NULL);
965 }
966
967 for (i = 0; i < MAX_COMBINED_ATOMIC_BUFFERS; i++) {
968 _mesa_reference_buffer_object(ctx,
969 &ctx->AtomicBufferBindings[i].BufferObject,
970 NULL);
971 }
972
973 }
974
975 bool
976 _mesa_handle_bind_buffer_gen(struct gl_context *ctx,
977 GLuint buffer,
978 struct gl_buffer_object **buf_handle,
979 const char *caller)
980 {
981 struct gl_buffer_object *buf = *buf_handle;
982
983 if (!buf && (ctx->API == API_OPENGL_CORE)) {
984 _mesa_error(ctx, GL_INVALID_OPERATION, "%s(non-gen name)", caller);
985 return false;
986 }
987
988 if (!buf || buf == &DummyBufferObject) {
989 /* If this is a new buffer object id, or one which was generated but
990 * never used before, allocate a buffer object now.
991 */
992 assert(ctx->Driver.NewBufferObject);
993 buf = ctx->Driver.NewBufferObject(ctx, buffer);
994 if (!buf) {
995 _mesa_error(ctx, GL_OUT_OF_MEMORY, "%s", caller);
996 return false;
997 }
998 _mesa_HashInsert(ctx->Shared->BufferObjects, buffer, buf);
999 *buf_handle = buf;
1000 }
1001
1002 return true;
1003 }
1004
1005 /**
1006 * Bind the specified target to buffer for the specified context.
1007 * Called by glBindBuffer() and other functions.
1008 */
1009 static void
1010 bind_buffer_object(struct gl_context *ctx,
1011 struct gl_buffer_object **bindTarget, GLuint buffer)
1012 {
1013 struct gl_buffer_object *oldBufObj;
1014 struct gl_buffer_object *newBufObj = NULL;
1015
1016 assert(bindTarget);
1017
1018 /* Get pointer to old buffer object (to be unbound) */
1019 oldBufObj = *bindTarget;
1020 if (oldBufObj && oldBufObj->Name == buffer && !oldBufObj->DeletePending)
1021 return; /* rebinding the same buffer object- no change */
1022
1023 /*
1024 * Get pointer to new buffer object (newBufObj)
1025 */
1026 if (buffer == 0) {
1027 /* The spec says there's not a buffer object named 0, but we use
1028 * one internally because it simplifies things.
1029 */
1030 newBufObj = ctx->Shared->NullBufferObj;
1031 }
1032 else {
1033 /* non-default buffer object */
1034 newBufObj = _mesa_lookup_bufferobj(ctx, buffer);
1035 if (!_mesa_handle_bind_buffer_gen(ctx, buffer,
1036 &newBufObj, "glBindBuffer"))
1037 return;
1038 }
1039
1040 /* record usage history */
1041 if (bindTarget == &ctx->Pack.BufferObj) {
1042 newBufObj->UsageHistory |= USAGE_PIXEL_PACK_BUFFER;
1043 }
1044
1045 /* bind new buffer */
1046 _mesa_reference_buffer_object(ctx, bindTarget, newBufObj);
1047 }
1048
1049
1050 /**
1051 * Update the default buffer objects in the given context to reference those
1052 * specified in the shared state and release those referencing the old
1053 * shared state.
1054 */
1055 void
1056 _mesa_update_default_objects_buffer_objects(struct gl_context *ctx)
1057 {
1058 /* Bind the NullBufferObj to remove references to those
1059 * in the shared context hash table.
1060 */
1061 bind_buffer_object(ctx, &ctx->Array.ArrayBufferObj, 0);
1062 bind_buffer_object(ctx, &ctx->Array.VAO->IndexBufferObj, 0);
1063 bind_buffer_object(ctx, &ctx->Pack.BufferObj, 0);
1064 bind_buffer_object(ctx, &ctx->Unpack.BufferObj, 0);
1065 }
1066
1067
1068
1069 /**
1070 * Return the gl_buffer_object for the given ID.
1071 * Always return NULL for ID 0.
1072 */
1073 struct gl_buffer_object *
1074 _mesa_lookup_bufferobj(struct gl_context *ctx, GLuint buffer)
1075 {
1076 if (buffer == 0)
1077 return NULL;
1078 else
1079 return (struct gl_buffer_object *)
1080 _mesa_HashLookup(ctx->Shared->BufferObjects, buffer);
1081 }
1082
1083
1084 struct gl_buffer_object *
1085 _mesa_lookup_bufferobj_locked(struct gl_context *ctx, GLuint buffer)
1086 {
1087 if (buffer == 0)
1088 return NULL;
1089 else
1090 return (struct gl_buffer_object *)
1091 _mesa_HashLookupLocked(ctx->Shared->BufferObjects, buffer);
1092 }
1093
1094 /**
1095 * A convenience function for direct state access functions that throws
1096 * GL_INVALID_OPERATION if buffer is not the name of an existing
1097 * buffer object.
1098 */
1099 struct gl_buffer_object *
1100 _mesa_lookup_bufferobj_err(struct gl_context *ctx, GLuint buffer,
1101 const char *caller)
1102 {
1103 struct gl_buffer_object *bufObj;
1104
1105 bufObj = _mesa_lookup_bufferobj(ctx, buffer);
1106 if (!bufObj || bufObj == &DummyBufferObject) {
1107 _mesa_error(ctx, GL_INVALID_OPERATION,
1108 "%s(non-existent buffer object %u)", caller, buffer);
1109 return NULL;
1110 }
1111
1112 return bufObj;
1113 }
1114
1115
1116 /**
1117 * Look up a buffer object for a multi-bind function.
1118 *
1119 * Unlike _mesa_lookup_bufferobj(), this function also takes care
1120 * of generating an error if the buffer ID is not zero or the name
1121 * of an existing buffer object.
1122 *
1123 * If the buffer ID refers to an existing buffer object, a pointer
1124 * to the buffer object is returned. If the ID is zero, a pointer
1125 * to the shared NullBufferObj is returned. If the ID is not zero
1126 * and does not refer to a valid buffer object, this function
1127 * returns NULL.
1128 *
1129 * This function assumes that the caller has already locked the
1130 * hash table mutex by calling
1131 * _mesa_HashLockMutex(ctx->Shared->BufferObjects).
1132 */
1133 struct gl_buffer_object *
1134 _mesa_multi_bind_lookup_bufferobj(struct gl_context *ctx,
1135 const GLuint *buffers,
1136 GLuint index, const char *caller)
1137 {
1138 struct gl_buffer_object *bufObj;
1139
1140 if (buffers[index] != 0) {
1141 bufObj = _mesa_lookup_bufferobj_locked(ctx, buffers[index]);
1142
1143 /* The multi-bind functions don't create the buffer objects
1144 when they don't exist. */
1145 if (bufObj == &DummyBufferObject)
1146 bufObj = NULL;
1147 } else
1148 bufObj = ctx->Shared->NullBufferObj;
1149
1150 if (!bufObj) {
1151 /* The ARB_multi_bind spec says:
1152 *
1153 * "An INVALID_OPERATION error is generated if any value
1154 * in <buffers> is not zero or the name of an existing
1155 * buffer object (per binding)."
1156 */
1157 _mesa_error(ctx, GL_INVALID_OPERATION,
1158 "%s(buffers[%u]=%u is not zero or the name "
1159 "of an existing buffer object)",
1160 caller, index, buffers[index]);
1161 }
1162
1163 return bufObj;
1164 }
1165
1166
1167 /**
1168 * If *ptr points to obj, set ptr = the Null/default buffer object.
1169 * This is a helper for buffer object deletion.
1170 * The GL spec says that deleting a buffer object causes it to get
1171 * unbound from all arrays in the current context.
1172 */
1173 static void
1174 unbind(struct gl_context *ctx,
1175 struct gl_vertex_array_object *vao, unsigned index,
1176 struct gl_buffer_object *obj)
1177 {
1178 if (vao->BufferBinding[index].BufferObj == obj) {
1179 _mesa_bind_vertex_buffer(ctx, vao, index, ctx->Shared->NullBufferObj,
1180 vao->BufferBinding[index].Offset,
1181 vao->BufferBinding[index].Stride);
1182 }
1183 }
1184
1185
1186 /**
1187 * Plug default/fallback buffer object functions into the device
1188 * driver hooks.
1189 */
1190 void
1191 _mesa_init_buffer_object_functions(struct dd_function_table *driver)
1192 {
1193 /* GL_ARB_vertex/pixel_buffer_object */
1194 driver->NewBufferObject = _mesa_new_buffer_object;
1195 driver->DeleteBuffer = _mesa_delete_buffer_object;
1196 driver->BufferData = buffer_data_fallback;
1197 driver->BufferSubData = buffer_sub_data_fallback;
1198 driver->GetBufferSubData = _mesa_buffer_get_subdata;
1199 driver->UnmapBuffer = unmap_buffer_fallback;
1200
1201 /* GL_ARB_clear_buffer_object */
1202 driver->ClearBufferSubData = _mesa_ClearBufferSubData_sw;
1203
1204 /* GL_ARB_map_buffer_range */
1205 driver->MapBufferRange = map_buffer_range_fallback;
1206 driver->FlushMappedBufferRange = flush_mapped_buffer_range_fallback;
1207
1208 /* GL_ARB_copy_buffer */
1209 driver->CopyBufferSubData = copy_buffer_sub_data_fallback;
1210 }
1211
1212
1213 void
1214 _mesa_buffer_unmap_all_mappings(struct gl_context *ctx,
1215 struct gl_buffer_object *bufObj)
1216 {
1217 int i;
1218
1219 for (i = 0; i < MAP_COUNT; i++) {
1220 if (_mesa_bufferobj_mapped(bufObj, i)) {
1221 ctx->Driver.UnmapBuffer(ctx, bufObj, i);
1222 assert(bufObj->Mappings[i].Pointer == NULL);
1223 bufObj->Mappings[i].AccessFlags = 0;
1224 }
1225 }
1226 }
1227
1228
1229 /**********************************************************************/
1230 /* API Functions */
1231 /**********************************************************************/
1232
1233 void GLAPIENTRY
1234 _mesa_BindBuffer(GLenum target, GLuint buffer)
1235 {
1236 GET_CURRENT_CONTEXT(ctx);
1237
1238 if (MESA_VERBOSE & VERBOSE_API) {
1239 _mesa_debug(ctx, "glBindBuffer(%s, %u)\n",
1240 _mesa_enum_to_string(target), buffer);
1241 }
1242
1243 struct gl_buffer_object **bindTarget = get_buffer_target(ctx, target);
1244 if (!bindTarget) {
1245 _mesa_error(ctx, GL_INVALID_ENUM, "glBindBufferARB(target %s)",
1246 _mesa_enum_to_string(target));
1247 return;
1248 }
1249
1250 bind_buffer_object(ctx, bindTarget, buffer);
1251 }
1252
1253
1254 /**
1255 * Delete a set of buffer objects.
1256 *
1257 * \param n Number of buffer objects to delete.
1258 * \param ids Array of \c n buffer object IDs.
1259 */
1260 void GLAPIENTRY
1261 _mesa_DeleteBuffers(GLsizei n, const GLuint *ids)
1262 {
1263 GET_CURRENT_CONTEXT(ctx);
1264 GLsizei i;
1265 FLUSH_VERTICES(ctx, 0);
1266
1267 if (n < 0) {
1268 _mesa_error(ctx, GL_INVALID_VALUE, "glDeleteBuffersARB(n)");
1269 return;
1270 }
1271
1272 _mesa_HashLockMutex(ctx->Shared->BufferObjects);
1273
1274 for (i = 0; i < n; i++) {
1275 struct gl_buffer_object *bufObj =
1276 _mesa_lookup_bufferobj_locked(ctx, ids[i]);
1277 if (bufObj) {
1278 struct gl_vertex_array_object *vao = ctx->Array.VAO;
1279 GLuint j;
1280
1281 assert(bufObj->Name == ids[i] || bufObj == &DummyBufferObject);
1282
1283 _mesa_buffer_unmap_all_mappings(ctx, bufObj);
1284
1285 /* unbind any vertex pointers bound to this buffer */
1286 for (j = 0; j < ARRAY_SIZE(vao->BufferBinding); j++) {
1287 unbind(ctx, vao, j, bufObj);
1288 }
1289
1290 if (ctx->Array.ArrayBufferObj == bufObj) {
1291 bind_buffer_object(ctx, &ctx->Array.ArrayBufferObj, 0);
1292 }
1293 if (vao->IndexBufferObj == bufObj) {
1294 bind_buffer_object(ctx, &vao->IndexBufferObj, 0);
1295 }
1296
1297 /* unbind ARB_draw_indirect binding point */
1298 if (ctx->DrawIndirectBuffer == bufObj) {
1299 bind_buffer_object(ctx, &ctx->DrawIndirectBuffer, 0);
1300 }
1301
1302 /* unbind ARB_indirect_parameters binding point */
1303 if (ctx->ParameterBuffer == bufObj) {
1304 bind_buffer_object(ctx, &ctx->ParameterBuffer, 0);
1305 }
1306
1307 /* unbind ARB_compute_shader binding point */
1308 if (ctx->DispatchIndirectBuffer == bufObj) {
1309 bind_buffer_object(ctx, &ctx->DispatchIndirectBuffer, 0);
1310 }
1311
1312 /* unbind ARB_copy_buffer binding points */
1313 if (ctx->CopyReadBuffer == bufObj) {
1314 bind_buffer_object(ctx, &ctx->CopyReadBuffer, 0);
1315 }
1316 if (ctx->CopyWriteBuffer == bufObj) {
1317 bind_buffer_object(ctx, &ctx->CopyWriteBuffer, 0);
1318 }
1319
1320 /* unbind transform feedback binding points */
1321 if (ctx->TransformFeedback.CurrentBuffer == bufObj) {
1322 bind_buffer_object(ctx, &ctx->TransformFeedback.CurrentBuffer, 0);
1323 }
1324 for (j = 0; j < MAX_FEEDBACK_BUFFERS; j++) {
1325 if (ctx->TransformFeedback.CurrentObject->Buffers[j] == bufObj) {
1326 _mesa_BindBufferBase( GL_TRANSFORM_FEEDBACK_BUFFER, j, 0 );
1327 }
1328 }
1329
1330 /* unbind UBO binding points */
1331 for (j = 0; j < ctx->Const.MaxUniformBufferBindings; j++) {
1332 if (ctx->UniformBufferBindings[j].BufferObject == bufObj) {
1333 _mesa_BindBufferBase( GL_UNIFORM_BUFFER, j, 0 );
1334 }
1335 }
1336
1337 if (ctx->UniformBuffer == bufObj) {
1338 bind_buffer_object(ctx, &ctx->UniformBuffer, 0);
1339 }
1340
1341 /* unbind SSBO binding points */
1342 for (j = 0; j < ctx->Const.MaxShaderStorageBufferBindings; j++) {
1343 if (ctx->ShaderStorageBufferBindings[j].BufferObject == bufObj) {
1344 _mesa_BindBufferBase(GL_SHADER_STORAGE_BUFFER, j, 0);
1345 }
1346 }
1347
1348 if (ctx->ShaderStorageBuffer == bufObj) {
1349 bind_buffer_object(ctx, &ctx->ShaderStorageBuffer, 0);
1350 }
1351
1352 /* unbind Atomci Buffer binding points */
1353 for (j = 0; j < ctx->Const.MaxAtomicBufferBindings; j++) {
1354 if (ctx->AtomicBufferBindings[j].BufferObject == bufObj) {
1355 _mesa_BindBufferBase( GL_ATOMIC_COUNTER_BUFFER, j, 0 );
1356 }
1357 }
1358
1359 if (ctx->AtomicBuffer == bufObj) {
1360 bind_buffer_object(ctx, &ctx->AtomicBuffer, 0);
1361 }
1362
1363 /* unbind any pixel pack/unpack pointers bound to this buffer */
1364 if (ctx->Pack.BufferObj == bufObj) {
1365 bind_buffer_object(ctx, &ctx->Pack.BufferObj, 0);
1366 }
1367 if (ctx->Unpack.BufferObj == bufObj) {
1368 bind_buffer_object(ctx, &ctx->Unpack.BufferObj, 0);
1369 }
1370
1371 if (ctx->Texture.BufferObject == bufObj) {
1372 bind_buffer_object(ctx, &ctx->Texture.BufferObject, 0);
1373 }
1374
1375 if (ctx->ExternalVirtualMemoryBuffer == bufObj) {
1376 bind_buffer_object(ctx, &ctx->ExternalVirtualMemoryBuffer, 0);
1377 }
1378
1379 /* unbind query buffer binding point */
1380 if (ctx->QueryBuffer == bufObj) {
1381 bind_buffer_object(ctx, &ctx->QueryBuffer, 0);
1382 }
1383
1384 /* The ID is immediately freed for re-use */
1385 _mesa_HashRemoveLocked(ctx->Shared->BufferObjects, ids[i]);
1386 /* Make sure we do not run into the classic ABA problem on bind.
1387 * We don't want to allow re-binding a buffer object that's been
1388 * "deleted" by glDeleteBuffers().
1389 *
1390 * The explicit rebinding to the default object in the current context
1391 * prevents the above in the current context, but another context
1392 * sharing the same objects might suffer from this problem.
1393 * The alternative would be to do the hash lookup in any case on bind
1394 * which would introduce more runtime overhead than this.
1395 */
1396 bufObj->DeletePending = GL_TRUE;
1397 _mesa_reference_buffer_object(ctx, &bufObj, NULL);
1398 }
1399 }
1400
1401 _mesa_HashUnlockMutex(ctx->Shared->BufferObjects);
1402 }
1403
1404
1405 /**
1406 * This is the implementation for glGenBuffers and glCreateBuffers. It is not
1407 * exposed to the rest of Mesa to encourage the use of nameless buffers in
1408 * driver internals.
1409 */
1410 static void
1411 create_buffers(GLsizei n, GLuint *buffers, bool dsa)
1412 {
1413 GET_CURRENT_CONTEXT(ctx);
1414 GLuint first;
1415 GLint i;
1416 struct gl_buffer_object *buf;
1417
1418 const char *func = dsa ? "glCreateBuffers" : "glGenBuffers";
1419
1420 if (MESA_VERBOSE & VERBOSE_API)
1421 _mesa_debug(ctx, "%s(%d)\n", func, n);
1422
1423 if (n < 0) {
1424 _mesa_error(ctx, GL_INVALID_VALUE, "%s(n %d < 0)", func, n);
1425 return;
1426 }
1427
1428 if (!buffers) {
1429 return;
1430 }
1431
1432 /*
1433 * This must be atomic (generation and allocation of buffer object IDs)
1434 */
1435 _mesa_HashLockMutex(ctx->Shared->BufferObjects);
1436
1437 first = _mesa_HashFindFreeKeyBlock(ctx->Shared->BufferObjects, n);
1438
1439 /* Insert the ID and pointer into the hash table. If non-DSA, insert a
1440 * DummyBufferObject. Otherwise, create a new buffer object and insert
1441 * it.
1442 */
1443 for (i = 0; i < n; i++) {
1444 buffers[i] = first + i;
1445 if (dsa) {
1446 assert(ctx->Driver.NewBufferObject);
1447 buf = ctx->Driver.NewBufferObject(ctx, buffers[i]);
1448 if (!buf) {
1449 _mesa_error(ctx, GL_OUT_OF_MEMORY, "%s", func);
1450 _mesa_HashUnlockMutex(ctx->Shared->BufferObjects);
1451 return;
1452 }
1453 }
1454 else
1455 buf = &DummyBufferObject;
1456
1457 _mesa_HashInsertLocked(ctx->Shared->BufferObjects, buffers[i], buf);
1458 }
1459
1460 _mesa_HashUnlockMutex(ctx->Shared->BufferObjects);
1461 }
1462
1463 /**
1464 * Generate a set of unique buffer object IDs and store them in \c buffers.
1465 *
1466 * \param n Number of IDs to generate.
1467 * \param buffers Array of \c n locations to store the IDs.
1468 */
1469 void GLAPIENTRY
1470 _mesa_GenBuffers(GLsizei n, GLuint *buffers)
1471 {
1472 create_buffers(n, buffers, false);
1473 }
1474
1475 /**
1476 * Create a set of buffer objects and store their unique IDs in \c buffers.
1477 *
1478 * \param n Number of IDs to generate.
1479 * \param buffers Array of \c n locations to store the IDs.
1480 */
1481 void GLAPIENTRY
1482 _mesa_CreateBuffers(GLsizei n, GLuint *buffers)
1483 {
1484 create_buffers(n, buffers, true);
1485 }
1486
1487
1488 /**
1489 * Determine if ID is the name of a buffer object.
1490 *
1491 * \param id ID of the potential buffer object.
1492 * \return \c GL_TRUE if \c id is the name of a buffer object,
1493 * \c GL_FALSE otherwise.
1494 */
1495 GLboolean GLAPIENTRY
1496 _mesa_IsBuffer(GLuint id)
1497 {
1498 struct gl_buffer_object *bufObj;
1499 GET_CURRENT_CONTEXT(ctx);
1500 ASSERT_OUTSIDE_BEGIN_END_WITH_RETVAL(ctx, GL_FALSE);
1501
1502 bufObj = _mesa_lookup_bufferobj(ctx, id);
1503
1504 return bufObj && bufObj != &DummyBufferObject;
1505 }
1506
1507
1508 void
1509 _mesa_buffer_storage(struct gl_context *ctx, struct gl_buffer_object *bufObj,
1510 GLenum target, GLsizeiptr size, const GLvoid *data,
1511 GLbitfield flags, const char *func)
1512 {
1513 if (size <= 0) {
1514 _mesa_error(ctx, GL_INVALID_VALUE, "%s(size <= 0)", func);
1515 return;
1516 }
1517
1518 GLbitfield valid_flags = GL_MAP_READ_BIT |
1519 GL_MAP_WRITE_BIT |
1520 GL_MAP_PERSISTENT_BIT |
1521 GL_MAP_COHERENT_BIT |
1522 GL_DYNAMIC_STORAGE_BIT |
1523 GL_CLIENT_STORAGE_BIT;
1524
1525 if (ctx->Extensions.ARB_sparse_buffer)
1526 valid_flags |= GL_SPARSE_STORAGE_BIT_ARB;
1527
1528 if (flags & ~valid_flags) {
1529 _mesa_error(ctx, GL_INVALID_VALUE, "%s(invalid flag bits set)", func);
1530 return;
1531 }
1532
1533 /* The Errors section of the GL_ARB_sparse_buffer spec says:
1534 *
1535 * "INVALID_VALUE is generated by BufferStorage if <flags> contains
1536 * SPARSE_STORAGE_BIT_ARB and <flags> also contains any combination of
1537 * MAP_READ_BIT or MAP_WRITE_BIT."
1538 */
1539 if (flags & GL_SPARSE_STORAGE_BIT_ARB &&
1540 flags & (GL_MAP_READ_BIT | GL_MAP_WRITE_BIT)) {
1541 _mesa_error(ctx, GL_INVALID_VALUE, "%s(SPARSE_STORAGE and READ/WRITE)", func);
1542 return;
1543 }
1544
1545 if (flags & GL_MAP_PERSISTENT_BIT &&
1546 !(flags & (GL_MAP_READ_BIT | GL_MAP_WRITE_BIT))) {
1547 _mesa_error(ctx, GL_INVALID_VALUE,
1548 "%s(PERSISTENT and flags!=READ/WRITE)", func);
1549 return;
1550 }
1551
1552 if (flags & GL_MAP_COHERENT_BIT && !(flags & GL_MAP_PERSISTENT_BIT)) {
1553 _mesa_error(ctx, GL_INVALID_VALUE,
1554 "%s(COHERENT and flags!=PERSISTENT)", func);
1555 return;
1556 }
1557
1558 if (bufObj->Immutable) {
1559 _mesa_error(ctx, GL_INVALID_OPERATION, "%s(immutable)", func);
1560 return;
1561 }
1562
1563 /* Unmap the existing buffer. We'll replace it now. Not an error. */
1564 _mesa_buffer_unmap_all_mappings(ctx, bufObj);
1565
1566 FLUSH_VERTICES(ctx, _NEW_BUFFER_OBJECT);
1567
1568 bufObj->Written = GL_TRUE;
1569 bufObj->Immutable = GL_TRUE;
1570 bufObj->MinMaxCacheDirty = true;
1571
1572 assert(ctx->Driver.BufferData);
1573 if (!ctx->Driver.BufferData(ctx, target, size, data, GL_DYNAMIC_DRAW,
1574 flags, bufObj)) {
1575 if (target == GL_EXTERNAL_VIRTUAL_MEMORY_BUFFER_AMD) {
1576 /* Even though the interaction between AMD_pinned_memory and
1577 * glBufferStorage is not described in the spec, Graham Sellers
1578 * said that it should behave the same as glBufferData.
1579 */
1580 _mesa_error(ctx, GL_INVALID_OPERATION, "%s", func);
1581 }
1582 else {
1583 _mesa_error(ctx, GL_OUT_OF_MEMORY, "%s", func);
1584 }
1585 }
1586 }
1587
1588 void GLAPIENTRY
1589 _mesa_BufferStorage(GLenum target, GLsizeiptr size, const GLvoid *data,
1590 GLbitfield flags)
1591 {
1592 GET_CURRENT_CONTEXT(ctx);
1593 struct gl_buffer_object *bufObj;
1594
1595 bufObj = get_buffer(ctx, "glBufferStorage", target, GL_INVALID_OPERATION);
1596 if (!bufObj)
1597 return;
1598
1599 _mesa_buffer_storage(ctx, bufObj, target, size, data, flags,
1600 "glBufferStorage");
1601 }
1602
1603 void GLAPIENTRY
1604 _mesa_NamedBufferStorage(GLuint buffer, GLsizeiptr size, const GLvoid *data,
1605 GLbitfield flags)
1606 {
1607 GET_CURRENT_CONTEXT(ctx);
1608 struct gl_buffer_object *bufObj;
1609
1610 bufObj = _mesa_lookup_bufferobj_err(ctx, buffer, "glNamedBufferStorage");
1611 if (!bufObj)
1612 return;
1613
1614 /*
1615 * In direct state access, buffer objects have an unspecified target since
1616 * they are not required to be bound.
1617 */
1618 _mesa_buffer_storage(ctx, bufObj, GL_NONE, size, data, flags,
1619 "glNamedBufferStorage");
1620 }
1621
1622
1623 void
1624 _mesa_buffer_data(struct gl_context *ctx, struct gl_buffer_object *bufObj,
1625 GLenum target, GLsizeiptr size, const GLvoid *data,
1626 GLenum usage, const char *func)
1627 {
1628 bool valid_usage;
1629
1630 if (MESA_VERBOSE & VERBOSE_API) {
1631 _mesa_debug(ctx, "%s(%s, %ld, %p, %s)\n",
1632 func,
1633 _mesa_enum_to_string(target),
1634 (long int) size, data,
1635 _mesa_enum_to_string(usage));
1636 }
1637
1638 if (size < 0) {
1639 _mesa_error(ctx, GL_INVALID_VALUE, "%s(size < 0)", func);
1640 return;
1641 }
1642
1643 switch (usage) {
1644 case GL_STREAM_DRAW_ARB:
1645 valid_usage = (ctx->API != API_OPENGLES);
1646 break;
1647
1648 case GL_STATIC_DRAW_ARB:
1649 case GL_DYNAMIC_DRAW_ARB:
1650 valid_usage = true;
1651 break;
1652
1653 case GL_STREAM_READ_ARB:
1654 case GL_STREAM_COPY_ARB:
1655 case GL_STATIC_READ_ARB:
1656 case GL_STATIC_COPY_ARB:
1657 case GL_DYNAMIC_READ_ARB:
1658 case GL_DYNAMIC_COPY_ARB:
1659 valid_usage = _mesa_is_desktop_gl(ctx) || _mesa_is_gles3(ctx);
1660 break;
1661
1662 default:
1663 valid_usage = false;
1664 break;
1665 }
1666
1667 if (!valid_usage) {
1668 _mesa_error(ctx, GL_INVALID_ENUM, "%s(invalid usage: %s)", func,
1669 _mesa_enum_to_string(usage));
1670 return;
1671 }
1672
1673 if (bufObj->Immutable) {
1674 _mesa_error(ctx, GL_INVALID_OPERATION, "%s(immutable)", func);
1675 return;
1676 }
1677
1678 /* Unmap the existing buffer. We'll replace it now. Not an error. */
1679 _mesa_buffer_unmap_all_mappings(ctx, bufObj);
1680
1681 FLUSH_VERTICES(ctx, _NEW_BUFFER_OBJECT);
1682
1683 bufObj->Written = GL_TRUE;
1684 bufObj->MinMaxCacheDirty = true;
1685
1686 #ifdef VBO_DEBUG
1687 printf("glBufferDataARB(%u, sz %ld, from %p, usage 0x%x)\n",
1688 bufObj->Name, size, data, usage);
1689 #endif
1690
1691 #ifdef BOUNDS_CHECK
1692 size += 100;
1693 #endif
1694
1695 assert(ctx->Driver.BufferData);
1696 if (!ctx->Driver.BufferData(ctx, target, size, data, usage,
1697 GL_MAP_READ_BIT |
1698 GL_MAP_WRITE_BIT |
1699 GL_DYNAMIC_STORAGE_BIT,
1700 bufObj)) {
1701 if (target == GL_EXTERNAL_VIRTUAL_MEMORY_BUFFER_AMD) {
1702 /* From GL_AMD_pinned_memory:
1703 *
1704 * INVALID_OPERATION is generated by BufferData if <target> is
1705 * EXTERNAL_VIRTUAL_MEMORY_BUFFER_AMD, and the store cannot be
1706 * mapped to the GPU address space.
1707 */
1708 _mesa_error(ctx, GL_INVALID_OPERATION, "%s", func);
1709 }
1710 else {
1711 _mesa_error(ctx, GL_OUT_OF_MEMORY, "%s", func);
1712 }
1713 }
1714 }
1715
1716 void GLAPIENTRY
1717 _mesa_BufferData(GLenum target, GLsizeiptr size,
1718 const GLvoid *data, GLenum usage)
1719 {
1720 GET_CURRENT_CONTEXT(ctx);
1721 struct gl_buffer_object *bufObj;
1722
1723 bufObj = get_buffer(ctx, "glBufferData", target, GL_INVALID_OPERATION);
1724 if (!bufObj)
1725 return;
1726
1727 _mesa_buffer_data(ctx, bufObj, target, size, data, usage,
1728 "glBufferData");
1729 }
1730
1731 void GLAPIENTRY
1732 _mesa_NamedBufferData(GLuint buffer, GLsizeiptr size, const GLvoid *data,
1733 GLenum usage)
1734 {
1735 GET_CURRENT_CONTEXT(ctx);
1736 struct gl_buffer_object *bufObj;
1737
1738 bufObj = _mesa_lookup_bufferobj_err(ctx, buffer, "glNamedBufferData");
1739 if (!bufObj)
1740 return;
1741
1742 /* In direct state access, buffer objects have an unspecified target since
1743 * they are not required to be bound.
1744 */
1745 _mesa_buffer_data(ctx, bufObj, GL_NONE, size, data, usage,
1746 "glNamedBufferData");
1747 }
1748
1749
1750 /**
1751 * Implementation for glBufferSubData and glNamedBufferSubData.
1752 *
1753 * \param ctx GL context.
1754 * \param bufObj The buffer object.
1755 * \param offset Offset of the first byte of the subdata range.
1756 * \param size Size, in bytes, of the subdata range.
1757 * \param data The data store.
1758 * \param func Name of calling function for recording errors.
1759 *
1760 */
1761 void
1762 _mesa_buffer_sub_data(struct gl_context *ctx, struct gl_buffer_object *bufObj,
1763 GLintptr offset, GLsizeiptr size, const GLvoid *data,
1764 const char *func)
1765 {
1766 if (!buffer_object_subdata_range_good(ctx, bufObj, offset, size,
1767 true, func)) {
1768 /* error already recorded */
1769 return;
1770 }
1771
1772 if (bufObj->Immutable &&
1773 !(bufObj->StorageFlags & GL_DYNAMIC_STORAGE_BIT)) {
1774 _mesa_error(ctx, GL_INVALID_OPERATION, "%s", func);
1775 return;
1776 }
1777
1778 if (size == 0)
1779 return;
1780
1781 bufObj->NumSubDataCalls++;
1782
1783 if ((bufObj->Usage == GL_STATIC_DRAW ||
1784 bufObj->Usage == GL_STATIC_COPY) &&
1785 bufObj->NumSubDataCalls >= BUFFER_WARNING_CALL_COUNT) {
1786 /* If the application declared the buffer as static draw/copy or stream
1787 * draw, it should not be frequently modified with glBufferSubData.
1788 */
1789 BUFFER_USAGE_WARNING(ctx,
1790 "using %s(buffer %u, offset %u, size %u) to "
1791 "update a %s buffer",
1792 func, bufObj->Name, offset, size,
1793 _mesa_enum_to_string(bufObj->Usage));
1794 }
1795
1796 bufObj->Written = GL_TRUE;
1797 bufObj->MinMaxCacheDirty = true;
1798
1799 assert(ctx->Driver.BufferSubData);
1800 ctx->Driver.BufferSubData(ctx, offset, size, data, bufObj);
1801 }
1802
1803 void GLAPIENTRY
1804 _mesa_BufferSubData(GLenum target, GLintptr offset,
1805 GLsizeiptr size, const GLvoid *data)
1806 {
1807 GET_CURRENT_CONTEXT(ctx);
1808 struct gl_buffer_object *bufObj;
1809
1810 bufObj = get_buffer(ctx, "glBufferSubData", target, GL_INVALID_OPERATION);
1811 if (!bufObj)
1812 return;
1813
1814 _mesa_buffer_sub_data(ctx, bufObj, offset, size, data, "glBufferSubData");
1815 }
1816
1817 void GLAPIENTRY
1818 _mesa_NamedBufferSubData(GLuint buffer, GLintptr offset,
1819 GLsizeiptr size, const GLvoid *data)
1820 {
1821 GET_CURRENT_CONTEXT(ctx);
1822 struct gl_buffer_object *bufObj;
1823
1824 bufObj = _mesa_lookup_bufferobj_err(ctx, buffer, "glNamedBufferSubData");
1825 if (!bufObj)
1826 return;
1827
1828 _mesa_buffer_sub_data(ctx, bufObj, offset, size, data,
1829 "glNamedBufferSubData");
1830 }
1831
1832
1833 void GLAPIENTRY
1834 _mesa_GetBufferSubData(GLenum target, GLintptr offset,
1835 GLsizeiptr size, GLvoid *data)
1836 {
1837 GET_CURRENT_CONTEXT(ctx);
1838 struct gl_buffer_object *bufObj;
1839
1840 bufObj = get_buffer(ctx, "glGetBufferSubData", target,
1841 GL_INVALID_OPERATION);
1842 if (!bufObj)
1843 return;
1844
1845 if (!buffer_object_subdata_range_good(ctx, bufObj, offset, size, false,
1846 "glGetBufferSubData")) {
1847 return;
1848 }
1849
1850 assert(ctx->Driver.GetBufferSubData);
1851 ctx->Driver.GetBufferSubData(ctx, offset, size, data, bufObj);
1852 }
1853
1854 void GLAPIENTRY
1855 _mesa_GetNamedBufferSubData(GLuint buffer, GLintptr offset,
1856 GLsizeiptr size, GLvoid *data)
1857 {
1858 GET_CURRENT_CONTEXT(ctx);
1859 struct gl_buffer_object *bufObj;
1860
1861 bufObj = _mesa_lookup_bufferobj_err(ctx, buffer,
1862 "glGetNamedBufferSubData");
1863 if (!bufObj)
1864 return;
1865
1866 if (!buffer_object_subdata_range_good(ctx, bufObj, offset, size, false,
1867 "glGetNamedBufferSubData")) {
1868 return;
1869 }
1870
1871 assert(ctx->Driver.GetBufferSubData);
1872 ctx->Driver.GetBufferSubData(ctx, offset, size, data, bufObj);
1873 }
1874
1875
1876 /**
1877 * \param subdata true if caller is *SubData, false if *Data
1878 */
1879 void
1880 _mesa_clear_buffer_sub_data(struct gl_context *ctx,
1881 struct gl_buffer_object *bufObj,
1882 GLenum internalformat,
1883 GLintptr offset, GLsizeiptr size,
1884 GLenum format, GLenum type,
1885 const GLvoid *data,
1886 const char *func, bool subdata)
1887 {
1888 mesa_format mesaFormat;
1889 GLubyte clearValue[MAX_PIXEL_BYTES];
1890 GLsizeiptr clearValueSize;
1891
1892 /* This checks for disallowed mappings. */
1893 if (!buffer_object_subdata_range_good(ctx, bufObj, offset, size,
1894 subdata, func)) {
1895 return;
1896 }
1897
1898 mesaFormat = validate_clear_buffer_format(ctx, internalformat,
1899 format, type, func);
1900
1901 if (mesaFormat == MESA_FORMAT_NONE) {
1902 return;
1903 }
1904
1905 clearValueSize = _mesa_get_format_bytes(mesaFormat);
1906 if (offset % clearValueSize != 0 || size % clearValueSize != 0) {
1907 _mesa_error(ctx, GL_INVALID_VALUE,
1908 "%s(offset or size is not a multiple of "
1909 "internalformat size)", func);
1910 return;
1911 }
1912
1913 /* Bail early. Negative size has already been checked. */
1914 if (size == 0)
1915 return;
1916
1917 bufObj->MinMaxCacheDirty = true;
1918
1919 if (data == NULL) {
1920 /* clear to zeros, per the spec */
1921 ctx->Driver.ClearBufferSubData(ctx, offset, size,
1922 NULL, clearValueSize, bufObj);
1923 return;
1924 }
1925
1926 if (!convert_clear_buffer_data(ctx, mesaFormat, clearValue,
1927 format, type, data, func)) {
1928 return;
1929 }
1930
1931 ctx->Driver.ClearBufferSubData(ctx, offset, size,
1932 clearValue, clearValueSize, bufObj);
1933 }
1934
1935 void GLAPIENTRY
1936 _mesa_ClearBufferData(GLenum target, GLenum internalformat, GLenum format,
1937 GLenum type, const GLvoid *data)
1938 {
1939 GET_CURRENT_CONTEXT(ctx);
1940 struct gl_buffer_object *bufObj;
1941
1942 bufObj = get_buffer(ctx, "glClearBufferData", target, GL_INVALID_VALUE);
1943 if (!bufObj)
1944 return;
1945
1946 _mesa_clear_buffer_sub_data(ctx, bufObj, internalformat, 0, bufObj->Size,
1947 format, type, data,
1948 "glClearBufferData", false);
1949 }
1950
1951 void GLAPIENTRY
1952 _mesa_ClearNamedBufferData(GLuint buffer, GLenum internalformat,
1953 GLenum format, GLenum type, const GLvoid *data)
1954 {
1955 GET_CURRENT_CONTEXT(ctx);
1956 struct gl_buffer_object *bufObj;
1957
1958 bufObj = _mesa_lookup_bufferobj_err(ctx, buffer, "glClearNamedBufferData");
1959 if (!bufObj)
1960 return;
1961
1962 _mesa_clear_buffer_sub_data(ctx, bufObj, internalformat, 0, bufObj->Size,
1963 format, type, data,
1964 "glClearNamedBufferData", false);
1965 }
1966
1967
1968 void GLAPIENTRY
1969 _mesa_ClearBufferSubData(GLenum target, GLenum internalformat,
1970 GLintptr offset, GLsizeiptr size,
1971 GLenum format, GLenum type,
1972 const GLvoid *data)
1973 {
1974 GET_CURRENT_CONTEXT(ctx);
1975 struct gl_buffer_object *bufObj;
1976
1977 bufObj = get_buffer(ctx, "glClearBufferSubData", target, GL_INVALID_VALUE);
1978 if (!bufObj)
1979 return;
1980
1981 _mesa_clear_buffer_sub_data(ctx, bufObj, internalformat, offset, size,
1982 format, type, data,
1983 "glClearBufferSubData", true);
1984 }
1985
1986 void GLAPIENTRY
1987 _mesa_ClearNamedBufferSubData(GLuint buffer, GLenum internalformat,
1988 GLintptr offset, GLsizeiptr size,
1989 GLenum format, GLenum type,
1990 const GLvoid *data)
1991 {
1992 GET_CURRENT_CONTEXT(ctx);
1993 struct gl_buffer_object *bufObj;
1994
1995 bufObj = _mesa_lookup_bufferobj_err(ctx, buffer,
1996 "glClearNamedBufferSubData");
1997 if (!bufObj)
1998 return;
1999
2000 _mesa_clear_buffer_sub_data(ctx, bufObj, internalformat, offset, size,
2001 format, type, data,
2002 "glClearNamedBufferSubData", true);
2003 }
2004
2005
2006 GLboolean
2007 _mesa_unmap_buffer(struct gl_context *ctx, struct gl_buffer_object *bufObj,
2008 const char *func)
2009 {
2010 GLboolean status = GL_TRUE;
2011 ASSERT_OUTSIDE_BEGIN_END_WITH_RETVAL(ctx, GL_FALSE);
2012
2013 if (!_mesa_bufferobj_mapped(bufObj, MAP_USER)) {
2014 _mesa_error(ctx, GL_INVALID_OPERATION,
2015 "%s(buffer is not mapped)", func);
2016 return GL_FALSE;
2017 }
2018
2019 #ifdef BOUNDS_CHECK
2020 if (bufObj->Access != GL_READ_ONLY_ARB) {
2021 GLubyte *buf = (GLubyte *) bufObj->Pointer;
2022 GLuint i;
2023 /* check that last 100 bytes are still = magic value */
2024 for (i = 0; i < 100; i++) {
2025 GLuint pos = bufObj->Size - i - 1;
2026 if (buf[pos] != 123) {
2027 _mesa_warning(ctx, "Out of bounds buffer object write detected"
2028 " at position %d (value = %u)\n",
2029 pos, buf[pos]);
2030 }
2031 }
2032 }
2033 #endif
2034
2035 #ifdef VBO_DEBUG
2036 if (bufObj->AccessFlags & GL_MAP_WRITE_BIT) {
2037 GLuint i, unchanged = 0;
2038 GLubyte *b = (GLubyte *) bufObj->Pointer;
2039 GLint pos = -1;
2040 /* check which bytes changed */
2041 for (i = 0; i < bufObj->Size - 1; i++) {
2042 if (b[i] == (i & 0xff) && b[i+1] == ((i+1) & 0xff)) {
2043 unchanged++;
2044 if (pos == -1)
2045 pos = i;
2046 }
2047 }
2048 if (unchanged) {
2049 printf("glUnmapBufferARB(%u): %u of %ld unchanged, starting at %d\n",
2050 bufObj->Name, unchanged, bufObj->Size, pos);
2051 }
2052 }
2053 #endif
2054
2055 status = ctx->Driver.UnmapBuffer(ctx, bufObj, MAP_USER);
2056 bufObj->Mappings[MAP_USER].AccessFlags = 0;
2057 assert(bufObj->Mappings[MAP_USER].Pointer == NULL);
2058 assert(bufObj->Mappings[MAP_USER].Offset == 0);
2059 assert(bufObj->Mappings[MAP_USER].Length == 0);
2060
2061 return status;
2062 }
2063
2064 GLboolean GLAPIENTRY
2065 _mesa_UnmapBuffer(GLenum target)
2066 {
2067 GET_CURRENT_CONTEXT(ctx);
2068 struct gl_buffer_object *bufObj;
2069
2070 bufObj = get_buffer(ctx, "glUnmapBuffer", target, GL_INVALID_OPERATION);
2071 if (!bufObj)
2072 return GL_FALSE;
2073
2074 return _mesa_unmap_buffer(ctx, bufObj, "glUnmapBuffer");
2075 }
2076
2077 GLboolean GLAPIENTRY
2078 _mesa_UnmapNamedBuffer(GLuint buffer)
2079 {
2080 GET_CURRENT_CONTEXT(ctx);
2081 struct gl_buffer_object *bufObj;
2082
2083 bufObj = _mesa_lookup_bufferobj_err(ctx, buffer, "glUnmapNamedBuffer");
2084 if (!bufObj)
2085 return GL_FALSE;
2086
2087 return _mesa_unmap_buffer(ctx, bufObj, "glUnmapNamedBuffer");
2088 }
2089
2090
2091 static bool
2092 get_buffer_parameter(struct gl_context *ctx,
2093 struct gl_buffer_object *bufObj, GLenum pname,
2094 GLint64 *params, const char *func)
2095 {
2096 switch (pname) {
2097 case GL_BUFFER_SIZE_ARB:
2098 *params = bufObj->Size;
2099 break;
2100 case GL_BUFFER_USAGE_ARB:
2101 *params = bufObj->Usage;
2102 break;
2103 case GL_BUFFER_ACCESS_ARB:
2104 *params = simplified_access_mode(ctx,
2105 bufObj->Mappings[MAP_USER].AccessFlags);
2106 break;
2107 case GL_BUFFER_MAPPED_ARB:
2108 *params = _mesa_bufferobj_mapped(bufObj, MAP_USER);
2109 break;
2110 case GL_BUFFER_ACCESS_FLAGS:
2111 if (!ctx->Extensions.ARB_map_buffer_range)
2112 goto invalid_pname;
2113 *params = bufObj->Mappings[MAP_USER].AccessFlags;
2114 break;
2115 case GL_BUFFER_MAP_OFFSET:
2116 if (!ctx->Extensions.ARB_map_buffer_range)
2117 goto invalid_pname;
2118 *params = bufObj->Mappings[MAP_USER].Offset;
2119 break;
2120 case GL_BUFFER_MAP_LENGTH:
2121 if (!ctx->Extensions.ARB_map_buffer_range)
2122 goto invalid_pname;
2123 *params = bufObj->Mappings[MAP_USER].Length;
2124 break;
2125 case GL_BUFFER_IMMUTABLE_STORAGE:
2126 if (!ctx->Extensions.ARB_buffer_storage)
2127 goto invalid_pname;
2128 *params = bufObj->Immutable;
2129 break;
2130 case GL_BUFFER_STORAGE_FLAGS:
2131 if (!ctx->Extensions.ARB_buffer_storage)
2132 goto invalid_pname;
2133 *params = bufObj->StorageFlags;
2134 break;
2135 default:
2136 goto invalid_pname;
2137 }
2138
2139 return true;
2140
2141 invalid_pname:
2142 _mesa_error(ctx, GL_INVALID_ENUM, "%s(invalid pname: %s)", func,
2143 _mesa_enum_to_string(pname));
2144 return false;
2145 }
2146
2147 void GLAPIENTRY
2148 _mesa_GetBufferParameteriv(GLenum target, GLenum pname, GLint *params)
2149 {
2150 GET_CURRENT_CONTEXT(ctx);
2151 struct gl_buffer_object *bufObj;
2152 GLint64 parameter;
2153
2154 bufObj = get_buffer(ctx, "glGetBufferParameteriv", target,
2155 GL_INVALID_OPERATION);
2156 if (!bufObj)
2157 return;
2158
2159 if (!get_buffer_parameter(ctx, bufObj, pname, &parameter,
2160 "glGetBufferParameteriv"))
2161 return; /* Error already recorded. */
2162
2163 *params = (GLint) parameter;
2164 }
2165
2166 void GLAPIENTRY
2167 _mesa_GetBufferParameteri64v(GLenum target, GLenum pname, GLint64 *params)
2168 {
2169 GET_CURRENT_CONTEXT(ctx);
2170 struct gl_buffer_object *bufObj;
2171 GLint64 parameter;
2172
2173 bufObj = get_buffer(ctx, "glGetBufferParameteri64v", target,
2174 GL_INVALID_OPERATION);
2175 if (!bufObj)
2176 return;
2177
2178 if (!get_buffer_parameter(ctx, bufObj, pname, &parameter,
2179 "glGetBufferParameteri64v"))
2180 return; /* Error already recorded. */
2181
2182 *params = parameter;
2183 }
2184
2185 void GLAPIENTRY
2186 _mesa_GetNamedBufferParameteriv(GLuint buffer, GLenum pname, GLint *params)
2187 {
2188 GET_CURRENT_CONTEXT(ctx);
2189 struct gl_buffer_object *bufObj;
2190 GLint64 parameter;
2191
2192 bufObj = _mesa_lookup_bufferobj_err(ctx, buffer,
2193 "glGetNamedBufferParameteriv");
2194 if (!bufObj)
2195 return;
2196
2197 if (!get_buffer_parameter(ctx, bufObj, pname, &parameter,
2198 "glGetNamedBufferParameteriv"))
2199 return; /* Error already recorded. */
2200
2201 *params = (GLint) parameter;
2202 }
2203
2204 void GLAPIENTRY
2205 _mesa_GetNamedBufferParameteri64v(GLuint buffer, GLenum pname,
2206 GLint64 *params)
2207 {
2208 GET_CURRENT_CONTEXT(ctx);
2209 struct gl_buffer_object *bufObj;
2210 GLint64 parameter;
2211
2212 bufObj = _mesa_lookup_bufferobj_err(ctx, buffer,
2213 "glGetNamedBufferParameteri64v");
2214 if (!bufObj)
2215 return;
2216
2217 if (!get_buffer_parameter(ctx, bufObj, pname, &parameter,
2218 "glGetNamedBufferParameteri64v"))
2219 return; /* Error already recorded. */
2220
2221 *params = parameter;
2222 }
2223
2224
2225 void GLAPIENTRY
2226 _mesa_GetBufferPointerv(GLenum target, GLenum pname, GLvoid **params)
2227 {
2228 GET_CURRENT_CONTEXT(ctx);
2229 struct gl_buffer_object *bufObj;
2230
2231 if (pname != GL_BUFFER_MAP_POINTER) {
2232 _mesa_error(ctx, GL_INVALID_ENUM, "glGetBufferPointerv(pname != "
2233 "GL_BUFFER_MAP_POINTER)");
2234 return;
2235 }
2236
2237 bufObj = get_buffer(ctx, "glGetBufferPointerv", target,
2238 GL_INVALID_OPERATION);
2239 if (!bufObj)
2240 return;
2241
2242 *params = bufObj->Mappings[MAP_USER].Pointer;
2243 }
2244
2245 void GLAPIENTRY
2246 _mesa_GetNamedBufferPointerv(GLuint buffer, GLenum pname, GLvoid **params)
2247 {
2248 GET_CURRENT_CONTEXT(ctx);
2249 struct gl_buffer_object *bufObj;
2250
2251 if (pname != GL_BUFFER_MAP_POINTER) {
2252 _mesa_error(ctx, GL_INVALID_ENUM, "glGetNamedBufferPointerv(pname != "
2253 "GL_BUFFER_MAP_POINTER)");
2254 return;
2255 }
2256
2257 bufObj = _mesa_lookup_bufferobj_err(ctx, buffer,
2258 "glGetNamedBufferPointerv");
2259 if (!bufObj)
2260 return;
2261
2262 *params = bufObj->Mappings[MAP_USER].Pointer;
2263 }
2264
2265
2266 void
2267 _mesa_copy_buffer_sub_data(struct gl_context *ctx,
2268 struct gl_buffer_object *src,
2269 struct gl_buffer_object *dst,
2270 GLintptr readOffset, GLintptr writeOffset,
2271 GLsizeiptr size, const char *func)
2272 {
2273 if (_mesa_check_disallowed_mapping(src)) {
2274 _mesa_error(ctx, GL_INVALID_OPERATION,
2275 "%s(readBuffer is mapped)", func);
2276 return;
2277 }
2278
2279 if (_mesa_check_disallowed_mapping(dst)) {
2280 _mesa_error(ctx, GL_INVALID_OPERATION,
2281 "%s(writeBuffer is mapped)", func);
2282 return;
2283 }
2284
2285 if (readOffset < 0) {
2286 _mesa_error(ctx, GL_INVALID_VALUE,
2287 "%s(readOffset %d < 0)", func, (int) readOffset);
2288 return;
2289 }
2290
2291 if (writeOffset < 0) {
2292 _mesa_error(ctx, GL_INVALID_VALUE,
2293 "%s(writeOffset %d < 0)", func, (int) writeOffset);
2294 return;
2295 }
2296
2297 if (size < 0) {
2298 _mesa_error(ctx, GL_INVALID_VALUE,
2299 "%s(size %d < 0)", func, (int) size);
2300 return;
2301 }
2302
2303 if (readOffset + size > src->Size) {
2304 _mesa_error(ctx, GL_INVALID_VALUE,
2305 "%s(readOffset %d + size %d > src_buffer_size %d)", func,
2306 (int) readOffset, (int) size, (int) src->Size);
2307 return;
2308 }
2309
2310 if (writeOffset + size > dst->Size) {
2311 _mesa_error(ctx, GL_INVALID_VALUE,
2312 "%s(writeOffset %d + size %d > dst_buffer_size %d)", func,
2313 (int) writeOffset, (int) size, (int) dst->Size);
2314 return;
2315 }
2316
2317 if (src == dst) {
2318 if (readOffset + size <= writeOffset) {
2319 /* OK */
2320 }
2321 else if (writeOffset + size <= readOffset) {
2322 /* OK */
2323 }
2324 else {
2325 /* overlapping src/dst is illegal */
2326 _mesa_error(ctx, GL_INVALID_VALUE,
2327 "%s(overlapping src/dst)", func);
2328 return;
2329 }
2330 }
2331
2332 dst->MinMaxCacheDirty = true;
2333
2334 ctx->Driver.CopyBufferSubData(ctx, src, dst, readOffset, writeOffset, size);
2335 }
2336
2337 void GLAPIENTRY
2338 _mesa_CopyBufferSubData(GLenum readTarget, GLenum writeTarget,
2339 GLintptr readOffset, GLintptr writeOffset,
2340 GLsizeiptr size)
2341 {
2342 GET_CURRENT_CONTEXT(ctx);
2343 struct gl_buffer_object *src, *dst;
2344
2345 src = get_buffer(ctx, "glCopyBufferSubData", readTarget,
2346 GL_INVALID_OPERATION);
2347 if (!src)
2348 return;
2349
2350 dst = get_buffer(ctx, "glCopyBufferSubData", writeTarget,
2351 GL_INVALID_OPERATION);
2352 if (!dst)
2353 return;
2354
2355 _mesa_copy_buffer_sub_data(ctx, src, dst, readOffset, writeOffset, size,
2356 "glCopyBufferSubData");
2357 }
2358
2359 void GLAPIENTRY
2360 _mesa_CopyNamedBufferSubData(GLuint readBuffer, GLuint writeBuffer,
2361 GLintptr readOffset, GLintptr writeOffset,
2362 GLsizeiptr size)
2363 {
2364 GET_CURRENT_CONTEXT(ctx);
2365 struct gl_buffer_object *src, *dst;
2366
2367 src = _mesa_lookup_bufferobj_err(ctx, readBuffer,
2368 "glCopyNamedBufferSubData");
2369 if (!src)
2370 return;
2371
2372 dst = _mesa_lookup_bufferobj_err(ctx, writeBuffer,
2373 "glCopyNamedBufferSubData");
2374 if (!dst)
2375 return;
2376
2377 _mesa_copy_buffer_sub_data(ctx, src, dst, readOffset, writeOffset, size,
2378 "glCopyNamedBufferSubData");
2379 }
2380
2381
2382 void *
2383 _mesa_map_buffer_range(struct gl_context *ctx,
2384 struct gl_buffer_object *bufObj,
2385 GLintptr offset, GLsizeiptr length,
2386 GLbitfield access, const char *func)
2387 {
2388 void *map;
2389 GLbitfield allowed_access;
2390
2391 ASSERT_OUTSIDE_BEGIN_END_WITH_RETVAL(ctx, NULL);
2392
2393 if (offset < 0) {
2394 _mesa_error(ctx, GL_INVALID_VALUE,
2395 "%s(offset %ld < 0)", func, (long) offset);
2396 return NULL;
2397 }
2398
2399 if (length < 0) {
2400 _mesa_error(ctx, GL_INVALID_VALUE,
2401 "%s(length %ld < 0)", func, (long) length);
2402 return NULL;
2403 }
2404
2405 /* Page 38 of the PDF of the OpenGL ES 3.0 spec says:
2406 *
2407 * "An INVALID_OPERATION error is generated for any of the following
2408 * conditions:
2409 *
2410 * * <length> is zero."
2411 *
2412 * Additionally, page 94 of the PDF of the OpenGL 4.5 core spec
2413 * (30.10.2014) also says this, so it's no longer allowed for desktop GL,
2414 * either.
2415 */
2416 if (length == 0) {
2417 _mesa_error(ctx, GL_INVALID_OPERATION, "%s(length = 0)", func);
2418 return NULL;
2419 }
2420
2421 allowed_access = GL_MAP_READ_BIT |
2422 GL_MAP_WRITE_BIT |
2423 GL_MAP_INVALIDATE_RANGE_BIT |
2424 GL_MAP_INVALIDATE_BUFFER_BIT |
2425 GL_MAP_FLUSH_EXPLICIT_BIT |
2426 GL_MAP_UNSYNCHRONIZED_BIT;
2427
2428 if (ctx->Extensions.ARB_buffer_storage) {
2429 allowed_access |= GL_MAP_PERSISTENT_BIT |
2430 GL_MAP_COHERENT_BIT;
2431 }
2432
2433 if (access & ~allowed_access) {
2434 /* generate an error if any bits other than those allowed are set */
2435 _mesa_error(ctx, GL_INVALID_VALUE,
2436 "%s(access has undefined bits set)", func);
2437 return NULL;
2438 }
2439
2440 if ((access & (GL_MAP_READ_BIT | GL_MAP_WRITE_BIT)) == 0) {
2441 _mesa_error(ctx, GL_INVALID_OPERATION,
2442 "%s(access indicates neither read or write)", func);
2443 return NULL;
2444 }
2445
2446 if ((access & GL_MAP_READ_BIT) &&
2447 (access & (GL_MAP_INVALIDATE_RANGE_BIT |
2448 GL_MAP_INVALIDATE_BUFFER_BIT |
2449 GL_MAP_UNSYNCHRONIZED_BIT))) {
2450 _mesa_error(ctx, GL_INVALID_OPERATION,
2451 "%s(read access with disallowed bits)", func);
2452 return NULL;
2453 }
2454
2455 if ((access & GL_MAP_FLUSH_EXPLICIT_BIT) &&
2456 ((access & GL_MAP_WRITE_BIT) == 0)) {
2457 _mesa_error(ctx, GL_INVALID_OPERATION,
2458 "%s(access has flush explicit without write)", func);
2459 return NULL;
2460 }
2461
2462 if (access & GL_MAP_READ_BIT &&
2463 !(bufObj->StorageFlags & GL_MAP_READ_BIT)) {
2464 _mesa_error(ctx, GL_INVALID_OPERATION,
2465 "%s(buffer does not allow read access)", func);
2466 return NULL;
2467 }
2468
2469 if (access & GL_MAP_WRITE_BIT &&
2470 !(bufObj->StorageFlags & GL_MAP_WRITE_BIT)) {
2471 _mesa_error(ctx, GL_INVALID_OPERATION,
2472 "%s(buffer does not allow write access)", func);
2473 return NULL;
2474 }
2475
2476 if (access & GL_MAP_COHERENT_BIT &&
2477 !(bufObj->StorageFlags & GL_MAP_COHERENT_BIT)) {
2478 _mesa_error(ctx, GL_INVALID_OPERATION,
2479 "%s(buffer does not allow coherent access)", func);
2480 return NULL;
2481 }
2482
2483 if (access & GL_MAP_PERSISTENT_BIT &&
2484 !(bufObj->StorageFlags & GL_MAP_PERSISTENT_BIT)) {
2485 _mesa_error(ctx, GL_INVALID_OPERATION,
2486 "%s(buffer does not allow persistent access)", func);
2487 return NULL;
2488 }
2489
2490 if (offset + length > bufObj->Size) {
2491 _mesa_error(ctx, GL_INVALID_VALUE,
2492 "%s(offset %lu + length %lu > buffer_size %lu)", func,
2493 (unsigned long) offset, (unsigned long) length,
2494 (unsigned long) bufObj->Size);
2495 return NULL;
2496 }
2497
2498 if (_mesa_bufferobj_mapped(bufObj, MAP_USER)) {
2499 _mesa_error(ctx, GL_INVALID_OPERATION,
2500 "%s(buffer already mapped)", func);
2501 return NULL;
2502 }
2503
2504 if (!bufObj->Size) {
2505 _mesa_error(ctx, GL_OUT_OF_MEMORY, "%s(buffer size = 0)", func);
2506 return NULL;
2507 }
2508
2509 if (access & GL_MAP_WRITE_BIT) {
2510 bufObj->NumMapBufferWriteCalls++;
2511 if ((bufObj->Usage == GL_STATIC_DRAW ||
2512 bufObj->Usage == GL_STATIC_COPY) &&
2513 bufObj->NumMapBufferWriteCalls >= BUFFER_WARNING_CALL_COUNT) {
2514 BUFFER_USAGE_WARNING(ctx,
2515 "using %s(buffer %u, offset %u, length %u) to "
2516 "update a %s buffer",
2517 func, bufObj->Name, offset, length,
2518 _mesa_enum_to_string(bufObj->Usage));
2519 }
2520 }
2521
2522 assert(ctx->Driver.MapBufferRange);
2523 map = ctx->Driver.MapBufferRange(ctx, offset, length, access, bufObj,
2524 MAP_USER);
2525 if (!map) {
2526 _mesa_error(ctx, GL_OUT_OF_MEMORY, "%s(map failed)", func);
2527 }
2528 else {
2529 /* The driver callback should have set all these fields.
2530 * This is important because other modules (like VBO) might call
2531 * the driver function directly.
2532 */
2533 assert(bufObj->Mappings[MAP_USER].Pointer == map);
2534 assert(bufObj->Mappings[MAP_USER].Length == length);
2535 assert(bufObj->Mappings[MAP_USER].Offset == offset);
2536 assert(bufObj->Mappings[MAP_USER].AccessFlags == access);
2537 }
2538
2539 if (access & GL_MAP_WRITE_BIT) {
2540 bufObj->Written = GL_TRUE;
2541 bufObj->MinMaxCacheDirty = true;
2542 }
2543
2544 #ifdef VBO_DEBUG
2545 if (strstr(func, "Range") == NULL) { /* If not MapRange */
2546 printf("glMapBuffer(%u, sz %ld, access 0x%x)\n",
2547 bufObj->Name, bufObj->Size, access);
2548 /* Access must be write only */
2549 if ((access & GL_MAP_WRITE_BIT) && (!(access & ~GL_MAP_WRITE_BIT))) {
2550 GLuint i;
2551 GLubyte *b = (GLubyte *) bufObj->Pointer;
2552 for (i = 0; i < bufObj->Size; i++)
2553 b[i] = i & 0xff;
2554 }
2555 }
2556 #endif
2557
2558 #ifdef BOUNDS_CHECK
2559 if (strstr(func, "Range") == NULL) { /* If not MapRange */
2560 GLubyte *buf = (GLubyte *) bufObj->Pointer;
2561 GLuint i;
2562 /* buffer is 100 bytes larger than requested, fill with magic value */
2563 for (i = 0; i < 100; i++) {
2564 buf[bufObj->Size - i - 1] = 123;
2565 }
2566 }
2567 #endif
2568
2569 return map;
2570 }
2571
2572 void * GLAPIENTRY
2573 _mesa_MapBufferRange(GLenum target, GLintptr offset, GLsizeiptr length,
2574 GLbitfield access)
2575 {
2576 GET_CURRENT_CONTEXT(ctx);
2577 struct gl_buffer_object *bufObj;
2578
2579 if (!ctx->Extensions.ARB_map_buffer_range) {
2580 _mesa_error(ctx, GL_INVALID_OPERATION,
2581 "glMapBufferRange(ARB_map_buffer_range not supported)");
2582 return NULL;
2583 }
2584
2585 bufObj = get_buffer(ctx, "glMapBufferRange", target, GL_INVALID_OPERATION);
2586 if (!bufObj)
2587 return NULL;
2588
2589 return _mesa_map_buffer_range(ctx, bufObj, offset, length, access,
2590 "glMapBufferRange");
2591 }
2592
2593 void * GLAPIENTRY
2594 _mesa_MapNamedBufferRange(GLuint buffer, GLintptr offset, GLsizeiptr length,
2595 GLbitfield access)
2596 {
2597 GET_CURRENT_CONTEXT(ctx);
2598 struct gl_buffer_object *bufObj;
2599
2600 if (!ctx->Extensions.ARB_map_buffer_range) {
2601 _mesa_error(ctx, GL_INVALID_OPERATION,
2602 "glMapNamedBufferRange("
2603 "ARB_map_buffer_range not supported)");
2604 return NULL;
2605 }
2606
2607 bufObj = _mesa_lookup_bufferobj_err(ctx, buffer, "glMapNamedBufferRange");
2608 if (!bufObj)
2609 return NULL;
2610
2611 return _mesa_map_buffer_range(ctx, bufObj, offset, length, access,
2612 "glMapNamedBufferRange");
2613 }
2614
2615 /**
2616 * Converts GLenum access from MapBuffer and MapNamedBuffer into
2617 * flags for input to _mesa_map_buffer_range.
2618 *
2619 * \return true if the type of requested access is permissible.
2620 */
2621 static bool
2622 get_map_buffer_access_flags(struct gl_context *ctx, GLenum access,
2623 GLbitfield *flags)
2624 {
2625 switch (access) {
2626 case GL_READ_ONLY_ARB:
2627 *flags = GL_MAP_READ_BIT;
2628 return _mesa_is_desktop_gl(ctx);
2629 case GL_WRITE_ONLY_ARB:
2630 *flags = GL_MAP_WRITE_BIT;
2631 return true;
2632 case GL_READ_WRITE_ARB:
2633 *flags = GL_MAP_READ_BIT | GL_MAP_WRITE_BIT;
2634 return _mesa_is_desktop_gl(ctx);
2635 default:
2636 return false;
2637 }
2638 }
2639
2640 void * GLAPIENTRY
2641 _mesa_MapBuffer(GLenum target, GLenum access)
2642 {
2643 GET_CURRENT_CONTEXT(ctx);
2644 struct gl_buffer_object *bufObj;
2645 GLbitfield accessFlags;
2646
2647 if (!get_map_buffer_access_flags(ctx, access, &accessFlags)) {
2648 _mesa_error(ctx, GL_INVALID_ENUM, "glMapBuffer(invalid access)");
2649 return NULL;
2650 }
2651
2652 bufObj = get_buffer(ctx, "glMapBuffer", target, GL_INVALID_OPERATION);
2653 if (!bufObj)
2654 return NULL;
2655
2656 return _mesa_map_buffer_range(ctx, bufObj, 0, bufObj->Size, accessFlags,
2657 "glMapBuffer");
2658 }
2659
2660 void * GLAPIENTRY
2661 _mesa_MapNamedBuffer(GLuint buffer, GLenum access)
2662 {
2663 GET_CURRENT_CONTEXT(ctx);
2664 struct gl_buffer_object *bufObj;
2665 GLbitfield accessFlags;
2666
2667 if (!get_map_buffer_access_flags(ctx, access, &accessFlags)) {
2668 _mesa_error(ctx, GL_INVALID_ENUM, "glMapNamedBuffer(invalid access)");
2669 return NULL;
2670 }
2671
2672 bufObj = _mesa_lookup_bufferobj_err(ctx, buffer, "glMapNamedBuffer");
2673 if (!bufObj)
2674 return NULL;
2675
2676 return _mesa_map_buffer_range(ctx, bufObj, 0, bufObj->Size, accessFlags,
2677 "glMapNamedBuffer");
2678 }
2679
2680
2681 void
2682 _mesa_flush_mapped_buffer_range(struct gl_context *ctx,
2683 struct gl_buffer_object *bufObj,
2684 GLintptr offset, GLsizeiptr length,
2685 const char *func)
2686 {
2687 if (!ctx->Extensions.ARB_map_buffer_range) {
2688 _mesa_error(ctx, GL_INVALID_OPERATION,
2689 "%s(ARB_map_buffer_range not supported)", func);
2690 return;
2691 }
2692
2693 if (offset < 0) {
2694 _mesa_error(ctx, GL_INVALID_VALUE,
2695 "%s(offset %ld < 0)", func, (long) offset);
2696 return;
2697 }
2698
2699 if (length < 0) {
2700 _mesa_error(ctx, GL_INVALID_VALUE,
2701 "%s(length %ld < 0)", func, (long) length);
2702 return;
2703 }
2704
2705 if (!_mesa_bufferobj_mapped(bufObj, MAP_USER)) {
2706 /* buffer is not mapped */
2707 _mesa_error(ctx, GL_INVALID_OPERATION,
2708 "%s(buffer is not mapped)", func);
2709 return;
2710 }
2711
2712 if ((bufObj->Mappings[MAP_USER].AccessFlags &
2713 GL_MAP_FLUSH_EXPLICIT_BIT) == 0) {
2714 _mesa_error(ctx, GL_INVALID_OPERATION,
2715 "%s(GL_MAP_FLUSH_EXPLICIT_BIT not set)", func);
2716 return;
2717 }
2718
2719 if (offset + length > bufObj->Mappings[MAP_USER].Length) {
2720 _mesa_error(ctx, GL_INVALID_VALUE,
2721 "%s(offset %ld + length %ld > mapped length %ld)", func,
2722 (long) offset, (long) length,
2723 (long) bufObj->Mappings[MAP_USER].Length);
2724 return;
2725 }
2726
2727 assert(bufObj->Mappings[MAP_USER].AccessFlags & GL_MAP_WRITE_BIT);
2728
2729 if (ctx->Driver.FlushMappedBufferRange)
2730 ctx->Driver.FlushMappedBufferRange(ctx, offset, length, bufObj,
2731 MAP_USER);
2732 }
2733
2734 void GLAPIENTRY
2735 _mesa_FlushMappedBufferRange(GLenum target, GLintptr offset,
2736 GLsizeiptr length)
2737 {
2738 GET_CURRENT_CONTEXT(ctx);
2739 struct gl_buffer_object *bufObj;
2740
2741 bufObj = get_buffer(ctx, "glFlushMappedBufferRange", target,
2742 GL_INVALID_OPERATION);
2743 if (!bufObj)
2744 return;
2745
2746 _mesa_flush_mapped_buffer_range(ctx, bufObj, offset, length,
2747 "glFlushMappedBufferRange");
2748 }
2749
2750 void GLAPIENTRY
2751 _mesa_FlushMappedNamedBufferRange(GLuint buffer, GLintptr offset,
2752 GLsizeiptr length)
2753 {
2754 GET_CURRENT_CONTEXT(ctx);
2755 struct gl_buffer_object *bufObj;
2756
2757 bufObj = _mesa_lookup_bufferobj_err(ctx, buffer,
2758 "glFlushMappedNamedBufferRange");
2759 if (!bufObj)
2760 return;
2761
2762 _mesa_flush_mapped_buffer_range(ctx, bufObj, offset, length,
2763 "glFlushMappedNamedBufferRange");
2764 }
2765
2766
2767 /**
2768 * Binds a buffer object to a uniform buffer binding point.
2769 *
2770 * The caller is responsible for flushing vertices and updating
2771 * NewDriverState.
2772 */
2773 static void
2774 set_ubo_binding(struct gl_context *ctx,
2775 struct gl_uniform_buffer_binding *binding,
2776 struct gl_buffer_object *bufObj,
2777 GLintptr offset,
2778 GLsizeiptr size,
2779 GLboolean autoSize)
2780 {
2781 _mesa_reference_buffer_object(ctx, &binding->BufferObject, bufObj);
2782
2783 binding->Offset = offset;
2784 binding->Size = size;
2785 binding->AutomaticSize = autoSize;
2786
2787 /* If this is a real buffer object, mark it has having been used
2788 * at some point as a UBO.
2789 */
2790 if (size >= 0)
2791 bufObj->UsageHistory |= USAGE_UNIFORM_BUFFER;
2792 }
2793
2794 /**
2795 * Binds a buffer object to a shader storage buffer binding point.
2796 *
2797 * The caller is responsible for flushing vertices and updating
2798 * NewDriverState.
2799 */
2800 static void
2801 set_ssbo_binding(struct gl_context *ctx,
2802 struct gl_shader_storage_buffer_binding *binding,
2803 struct gl_buffer_object *bufObj,
2804 GLintptr offset,
2805 GLsizeiptr size,
2806 GLboolean autoSize)
2807 {
2808 _mesa_reference_buffer_object(ctx, &binding->BufferObject, bufObj);
2809
2810 binding->Offset = offset;
2811 binding->Size = size;
2812 binding->AutomaticSize = autoSize;
2813
2814 /* If this is a real buffer object, mark it has having been used
2815 * at some point as a SSBO.
2816 */
2817 if (size >= 0)
2818 bufObj->UsageHistory |= USAGE_SHADER_STORAGE_BUFFER;
2819 }
2820
2821 /**
2822 * Binds a buffer object to a uniform buffer binding point.
2823 *
2824 * Unlike set_ubo_binding(), this function also flushes vertices
2825 * and updates NewDriverState. It also checks if the binding
2826 * has actually changed before updating it.
2827 */
2828 static void
2829 bind_uniform_buffer(struct gl_context *ctx,
2830 GLuint index,
2831 struct gl_buffer_object *bufObj,
2832 GLintptr offset,
2833 GLsizeiptr size,
2834 GLboolean autoSize)
2835 {
2836 struct gl_uniform_buffer_binding *binding =
2837 &ctx->UniformBufferBindings[index];
2838
2839 if (binding->BufferObject == bufObj &&
2840 binding->Offset == offset &&
2841 binding->Size == size &&
2842 binding->AutomaticSize == autoSize) {
2843 return;
2844 }
2845
2846 FLUSH_VERTICES(ctx, 0);
2847 ctx->NewDriverState |= ctx->DriverFlags.NewUniformBuffer;
2848
2849 set_ubo_binding(ctx, binding, bufObj, offset, size, autoSize);
2850 }
2851
2852 /**
2853 * Binds a buffer object to a shader storage buffer binding point.
2854 *
2855 * Unlike set_ssbo_binding(), this function also flushes vertices
2856 * and updates NewDriverState. It also checks if the binding
2857 * has actually changed before updating it.
2858 */
2859 static void
2860 bind_shader_storage_buffer(struct gl_context *ctx,
2861 GLuint index,
2862 struct gl_buffer_object *bufObj,
2863 GLintptr offset,
2864 GLsizeiptr size,
2865 GLboolean autoSize)
2866 {
2867 struct gl_shader_storage_buffer_binding *binding =
2868 &ctx->ShaderStorageBufferBindings[index];
2869
2870 if (binding->BufferObject == bufObj &&
2871 binding->Offset == offset &&
2872 binding->Size == size &&
2873 binding->AutomaticSize == autoSize) {
2874 return;
2875 }
2876
2877 FLUSH_VERTICES(ctx, 0);
2878 ctx->NewDriverState |= ctx->DriverFlags.NewShaderStorageBuffer;
2879
2880 set_ssbo_binding(ctx, binding, bufObj, offset, size, autoSize);
2881 }
2882
2883 /**
2884 * Bind a region of a buffer object to a uniform block binding point.
2885 * \param index the uniform buffer binding point index
2886 * \param bufObj the buffer object
2887 * \param offset offset to the start of buffer object region
2888 * \param size size of the buffer object region
2889 */
2890 static void
2891 bind_buffer_range_uniform_buffer(struct gl_context *ctx,
2892 GLuint index,
2893 struct gl_buffer_object *bufObj,
2894 GLintptr offset,
2895 GLsizeiptr size)
2896 {
2897 if (index >= ctx->Const.MaxUniformBufferBindings) {
2898 _mesa_error(ctx, GL_INVALID_VALUE, "glBindBufferRange(index=%d)", index);
2899 return;
2900 }
2901
2902 if (offset & (ctx->Const.UniformBufferOffsetAlignment - 1)) {
2903 _mesa_error(ctx, GL_INVALID_VALUE,
2904 "glBindBufferRange(offset misaligned %d/%d)", (int) offset,
2905 ctx->Const.UniformBufferOffsetAlignment);
2906 return;
2907 }
2908
2909 if (bufObj == ctx->Shared->NullBufferObj) {
2910 offset = -1;
2911 size = -1;
2912 }
2913
2914 _mesa_reference_buffer_object(ctx, &ctx->UniformBuffer, bufObj);
2915 bind_uniform_buffer(ctx, index, bufObj, offset, size, GL_FALSE);
2916 }
2917
2918 /**
2919 * Bind a region of a buffer object to a shader storage block binding point.
2920 * \param index the shader storage buffer binding point index
2921 * \param bufObj the buffer object
2922 * \param offset offset to the start of buffer object region
2923 * \param size size of the buffer object region
2924 */
2925 static void
2926 bind_buffer_range_shader_storage_buffer(struct gl_context *ctx,
2927 GLuint index,
2928 struct gl_buffer_object *bufObj,
2929 GLintptr offset,
2930 GLsizeiptr size)
2931 {
2932 if (index >= ctx->Const.MaxShaderStorageBufferBindings) {
2933 _mesa_error(ctx, GL_INVALID_VALUE, "glBindBufferRange(index=%d)", index);
2934 return;
2935 }
2936
2937 if (offset & (ctx->Const.ShaderStorageBufferOffsetAlignment - 1)) {
2938 _mesa_error(ctx, GL_INVALID_VALUE,
2939 "glBindBufferRange(offset misaligned %d/%d)", (int) offset,
2940 ctx->Const.ShaderStorageBufferOffsetAlignment);
2941 return;
2942 }
2943
2944 if (bufObj == ctx->Shared->NullBufferObj) {
2945 offset = -1;
2946 size = -1;
2947 }
2948
2949 _mesa_reference_buffer_object(ctx, &ctx->ShaderStorageBuffer, bufObj);
2950 bind_shader_storage_buffer(ctx, index, bufObj, offset, size, GL_FALSE);
2951 }
2952
2953 /**
2954 * Bind a buffer object to a uniform block binding point.
2955 * As above, but offset = 0.
2956 */
2957 static void
2958 bind_buffer_base_uniform_buffer(struct gl_context *ctx,
2959 GLuint index,
2960 struct gl_buffer_object *bufObj)
2961 {
2962 if (index >= ctx->Const.MaxUniformBufferBindings) {
2963 _mesa_error(ctx, GL_INVALID_VALUE, "glBindBufferBase(index=%d)", index);
2964 return;
2965 }
2966
2967 _mesa_reference_buffer_object(ctx, &ctx->UniformBuffer, bufObj);
2968
2969 if (bufObj == ctx->Shared->NullBufferObj)
2970 bind_uniform_buffer(ctx, index, bufObj, -1, -1, GL_TRUE);
2971 else
2972 bind_uniform_buffer(ctx, index, bufObj, 0, 0, GL_TRUE);
2973 }
2974
2975 /**
2976 * Bind a buffer object to a shader storage block binding point.
2977 * As above, but offset = 0.
2978 */
2979 static void
2980 bind_buffer_base_shader_storage_buffer(struct gl_context *ctx,
2981 GLuint index,
2982 struct gl_buffer_object *bufObj)
2983 {
2984 if (index >= ctx->Const.MaxShaderStorageBufferBindings) {
2985 _mesa_error(ctx, GL_INVALID_VALUE, "glBindBufferBase(index=%d)", index);
2986 return;
2987 }
2988
2989 _mesa_reference_buffer_object(ctx, &ctx->ShaderStorageBuffer, bufObj);
2990
2991 if (bufObj == ctx->Shared->NullBufferObj)
2992 bind_shader_storage_buffer(ctx, index, bufObj, -1, -1, GL_TRUE);
2993 else
2994 bind_shader_storage_buffer(ctx, index, bufObj, 0, 0, GL_TRUE);
2995 }
2996
2997 /**
2998 * Binds a buffer object to an atomic buffer binding point.
2999 *
3000 * The caller is responsible for validating the offset,
3001 * flushing the vertices and updating NewDriverState.
3002 */
3003 static void
3004 set_atomic_buffer_binding(struct gl_context *ctx,
3005 struct gl_atomic_buffer_binding *binding,
3006 struct gl_buffer_object *bufObj,
3007 GLintptr offset,
3008 GLsizeiptr size)
3009 {
3010 _mesa_reference_buffer_object(ctx, &binding->BufferObject, bufObj);
3011
3012 if (bufObj == ctx->Shared->NullBufferObj) {
3013 binding->Offset = 0;
3014 binding->Size = 0;
3015 } else {
3016 binding->Offset = offset;
3017 binding->Size = size;
3018 bufObj->UsageHistory |= USAGE_ATOMIC_COUNTER_BUFFER;
3019 }
3020 }
3021
3022 /**
3023 * Binds a buffer object to an atomic buffer binding point.
3024 *
3025 * Unlike set_atomic_buffer_binding(), this function also validates the
3026 * index and offset, flushes vertices, and updates NewDriverState.
3027 * It also checks if the binding has actually changing before
3028 * updating it.
3029 */
3030 static void
3031 bind_atomic_buffer(struct gl_context *ctx,
3032 unsigned index,
3033 struct gl_buffer_object *bufObj,
3034 GLintptr offset,
3035 GLsizeiptr size,
3036 const char *name)
3037 {
3038 struct gl_atomic_buffer_binding *binding;
3039
3040 if (index >= ctx->Const.MaxAtomicBufferBindings) {
3041 _mesa_error(ctx, GL_INVALID_VALUE, "%s(index=%d)", name, index);
3042 return;
3043 }
3044
3045 if (offset & (ATOMIC_COUNTER_SIZE - 1)) {
3046 _mesa_error(ctx, GL_INVALID_VALUE,
3047 "%s(offset misaligned %d/%d)", name, (int) offset,
3048 ATOMIC_COUNTER_SIZE);
3049 return;
3050 }
3051
3052 _mesa_reference_buffer_object(ctx, &ctx->AtomicBuffer, bufObj);
3053
3054 binding = &ctx->AtomicBufferBindings[index];
3055 if (binding->BufferObject == bufObj &&
3056 binding->Offset == offset &&
3057 binding->Size == size) {
3058 return;
3059 }
3060
3061 FLUSH_VERTICES(ctx, 0);
3062 ctx->NewDriverState |= ctx->DriverFlags.NewAtomicBuffer;
3063
3064 set_atomic_buffer_binding(ctx, binding, bufObj, offset, size);
3065 }
3066
3067 static inline bool
3068 bind_buffers_check_offset_and_size(struct gl_context *ctx,
3069 GLuint index,
3070 const GLintptr *offsets,
3071 const GLsizeiptr *sizes)
3072 {
3073 if (offsets[index] < 0) {
3074 /* The ARB_multi_bind spec says:
3075 *
3076 * "An INVALID_VALUE error is generated by BindBuffersRange if any
3077 * value in <offsets> is less than zero (per binding)."
3078 */
3079 _mesa_error(ctx, GL_INVALID_VALUE,
3080 "glBindBuffersRange(offsets[%u]=%" PRId64 " < 0)",
3081 index, (int64_t) offsets[index]);
3082 return false;
3083 }
3084
3085 if (sizes[index] <= 0) {
3086 /* The ARB_multi_bind spec says:
3087 *
3088 * "An INVALID_VALUE error is generated by BindBuffersRange if any
3089 * value in <sizes> is less than or equal to zero (per binding)."
3090 */
3091 _mesa_error(ctx, GL_INVALID_VALUE,
3092 "glBindBuffersRange(sizes[%u]=%" PRId64 " <= 0)",
3093 index, (int64_t) sizes[index]);
3094 return false;
3095 }
3096
3097 return true;
3098 }
3099
3100 static bool
3101 error_check_bind_uniform_buffers(struct gl_context *ctx,
3102 GLuint first, GLsizei count,
3103 const char *caller)
3104 {
3105 if (!ctx->Extensions.ARB_uniform_buffer_object) {
3106 _mesa_error(ctx, GL_INVALID_ENUM,
3107 "%s(target=GL_UNIFORM_BUFFER)", caller);
3108 return false;
3109 }
3110
3111 /* The ARB_multi_bind_spec says:
3112 *
3113 * "An INVALID_OPERATION error is generated if <first> + <count> is
3114 * greater than the number of target-specific indexed binding points,
3115 * as described in section 6.7.1."
3116 */
3117 if (first + count > ctx->Const.MaxUniformBufferBindings) {
3118 _mesa_error(ctx, GL_INVALID_OPERATION,
3119 "%s(first=%u + count=%d > the value of "
3120 "GL_MAX_UNIFORM_BUFFER_BINDINGS=%u)",
3121 caller, first, count,
3122 ctx->Const.MaxUniformBufferBindings);
3123 return false;
3124 }
3125
3126 return true;
3127 }
3128
3129 static bool
3130 error_check_bind_shader_storage_buffers(struct gl_context *ctx,
3131 GLuint first, GLsizei count,
3132 const char *caller)
3133 {
3134 if (!ctx->Extensions.ARB_shader_storage_buffer_object) {
3135 _mesa_error(ctx, GL_INVALID_ENUM,
3136 "%s(target=GL_SHADER_STORAGE_BUFFER)", caller);
3137 return false;
3138 }
3139
3140 /* The ARB_multi_bind_spec says:
3141 *
3142 * "An INVALID_OPERATION error is generated if <first> + <count> is
3143 * greater than the number of target-specific indexed binding points,
3144 * as described in section 6.7.1."
3145 */
3146 if (first + count > ctx->Const.MaxShaderStorageBufferBindings) {
3147 _mesa_error(ctx, GL_INVALID_OPERATION,
3148 "%s(first=%u + count=%d > the value of "
3149 "GL_MAX_SHADER_STORAGE_BUFFER_BINDINGS=%u)",
3150 caller, first, count,
3151 ctx->Const.MaxShaderStorageBufferBindings);
3152 return false;
3153 }
3154
3155 return true;
3156 }
3157
3158 /**
3159 * Unbind all uniform buffers in the range
3160 * <first> through <first>+<count>-1
3161 */
3162 static void
3163 unbind_uniform_buffers(struct gl_context *ctx, GLuint first, GLsizei count)
3164 {
3165 struct gl_buffer_object *bufObj = ctx->Shared->NullBufferObj;
3166 GLint i;
3167
3168 for (i = 0; i < count; i++)
3169 set_ubo_binding(ctx, &ctx->UniformBufferBindings[first + i],
3170 bufObj, -1, -1, GL_TRUE);
3171 }
3172
3173 /**
3174 * Unbind all shader storage buffers in the range
3175 * <first> through <first>+<count>-1
3176 */
3177 static void
3178 unbind_shader_storage_buffers(struct gl_context *ctx, GLuint first,
3179 GLsizei count)
3180 {
3181 struct gl_buffer_object *bufObj = ctx->Shared->NullBufferObj;
3182 GLint i;
3183
3184 for (i = 0; i < count; i++)
3185 set_ssbo_binding(ctx, &ctx->ShaderStorageBufferBindings[first + i],
3186 bufObj, -1, -1, GL_TRUE);
3187 }
3188
3189 static void
3190 bind_uniform_buffers(struct gl_context *ctx, GLuint first, GLsizei count,
3191 const GLuint *buffers,
3192 bool range,
3193 const GLintptr *offsets, const GLsizeiptr *sizes,
3194 const char *caller)
3195 {
3196 GLint i;
3197
3198 if (!error_check_bind_uniform_buffers(ctx, first, count, caller))
3199 return;
3200
3201 /* Assume that at least one binding will be changed */
3202 FLUSH_VERTICES(ctx, 0);
3203 ctx->NewDriverState |= ctx->DriverFlags.NewUniformBuffer;
3204
3205 if (!buffers) {
3206 /* The ARB_multi_bind spec says:
3207 *
3208 * "If <buffers> is NULL, all bindings from <first> through
3209 * <first>+<count>-1 are reset to their unbound (zero) state.
3210 * In this case, the offsets and sizes associated with the
3211 * binding points are set to default values, ignoring
3212 * <offsets> and <sizes>."
3213 */
3214 unbind_uniform_buffers(ctx, first, count);
3215 return;
3216 }
3217
3218 /* Note that the error semantics for multi-bind commands differ from
3219 * those of other GL commands.
3220 *
3221 * The Issues section in the ARB_multi_bind spec says:
3222 *
3223 * "(11) Typically, OpenGL specifies that if an error is generated by a
3224 * command, that command has no effect. This is somewhat
3225 * unfortunate for multi-bind commands, because it would require a
3226 * first pass to scan the entire list of bound objects for errors
3227 * and then a second pass to actually perform the bindings.
3228 * Should we have different error semantics?
3229 *
3230 * RESOLVED: Yes. In this specification, when the parameters for
3231 * one of the <count> binding points are invalid, that binding point
3232 * is not updated and an error will be generated. However, other
3233 * binding points in the same command will be updated if their
3234 * parameters are valid and no other error occurs."
3235 */
3236
3237 _mesa_HashLockMutex(ctx->Shared->BufferObjects);
3238
3239 for (i = 0; i < count; i++) {
3240 struct gl_uniform_buffer_binding *binding =
3241 &ctx->UniformBufferBindings[first + i];
3242 struct gl_buffer_object *bufObj;
3243 GLintptr offset = 0;
3244 GLsizeiptr size = 0;
3245
3246 if (range) {
3247 if (!bind_buffers_check_offset_and_size(ctx, i, offsets, sizes))
3248 continue;
3249
3250 /* The ARB_multi_bind spec says:
3251 *
3252 * "An INVALID_VALUE error is generated by BindBuffersRange if any
3253 * pair of values in <offsets> and <sizes> does not respectively
3254 * satisfy the constraints described for those parameters for the
3255 * specified target, as described in section 6.7.1 (per binding)."
3256 *
3257 * Section 6.7.1 refers to table 6.5, which says:
3258 *
3259 * "┌───────────────────────────────────────────────────────────────┐
3260 * │ Uniform buffer array bindings (see sec. 7.6) │
3261 * ├─────────────────────┬─────────────────────────────────────────┤
3262 * │ ... │ ... │
3263 * │ offset restriction │ multiple of value of UNIFORM_BUFFER_- │
3264 * │ │ OFFSET_ALIGNMENT │
3265 * │ ... │ ... │
3266 * │ size restriction │ none │
3267 * └─────────────────────┴─────────────────────────────────────────┘"
3268 */
3269 if (offsets[i] & (ctx->Const.UniformBufferOffsetAlignment - 1)) {
3270 _mesa_error(ctx, GL_INVALID_VALUE,
3271 "glBindBuffersRange(offsets[%u]=%" PRId64
3272 " is misaligned; it must be a multiple of the value of "
3273 "GL_UNIFORM_BUFFER_OFFSET_ALIGNMENT=%u when "
3274 "target=GL_UNIFORM_BUFFER)",
3275 i, (int64_t) offsets[i],
3276 ctx->Const.UniformBufferOffsetAlignment);
3277 continue;
3278 }
3279
3280 offset = offsets[i];
3281 size = sizes[i];
3282 }
3283
3284 if (binding->BufferObject && binding->BufferObject->Name == buffers[i])
3285 bufObj = binding->BufferObject;
3286 else
3287 bufObj = _mesa_multi_bind_lookup_bufferobj(ctx, buffers, i, caller);
3288
3289 if (bufObj) {
3290 if (bufObj == ctx->Shared->NullBufferObj)
3291 set_ubo_binding(ctx, binding, bufObj, -1, -1, !range);
3292 else
3293 set_ubo_binding(ctx, binding, bufObj, offset, size, !range);
3294 }
3295 }
3296
3297 _mesa_HashUnlockMutex(ctx->Shared->BufferObjects);
3298 }
3299
3300 static void
3301 bind_shader_storage_buffers(struct gl_context *ctx, GLuint first,
3302 GLsizei count, const GLuint *buffers,
3303 bool range,
3304 const GLintptr *offsets,
3305 const GLsizeiptr *sizes,
3306 const char *caller)
3307 {
3308 GLint i;
3309
3310 if (!error_check_bind_shader_storage_buffers(ctx, first, count, caller))
3311 return;
3312
3313 /* Assume that at least one binding will be changed */
3314 FLUSH_VERTICES(ctx, 0);
3315 ctx->NewDriverState |= ctx->DriverFlags.NewShaderStorageBuffer;
3316
3317 if (!buffers) {
3318 /* The ARB_multi_bind spec says:
3319 *
3320 * "If <buffers> is NULL, all bindings from <first> through
3321 * <first>+<count>-1 are reset to their unbound (zero) state.
3322 * In this case, the offsets and sizes associated with the
3323 * binding points are set to default values, ignoring
3324 * <offsets> and <sizes>."
3325 */
3326 unbind_shader_storage_buffers(ctx, first, count);
3327 return;
3328 }
3329
3330 /* Note that the error semantics for multi-bind commands differ from
3331 * those of other GL commands.
3332 *
3333 * The Issues section in the ARB_multi_bind spec says:
3334 *
3335 * "(11) Typically, OpenGL specifies that if an error is generated by a
3336 * command, that command has no effect. This is somewhat
3337 * unfortunate for multi-bind commands, because it would require a
3338 * first pass to scan the entire list of bound objects for errors
3339 * and then a second pass to actually perform the bindings.
3340 * Should we have different error semantics?
3341 *
3342 * RESOLVED: Yes. In this specification, when the parameters for
3343 * one of the <count> binding points are invalid, that binding point
3344 * is not updated and an error will be generated. However, other
3345 * binding points in the same command will be updated if their
3346 * parameters are valid and no other error occurs."
3347 */
3348
3349 _mesa_HashLockMutex(ctx->Shared->BufferObjects);
3350
3351 for (i = 0; i < count; i++) {
3352 struct gl_shader_storage_buffer_binding *binding =
3353 &ctx->ShaderStorageBufferBindings[first + i];
3354 struct gl_buffer_object *bufObj;
3355 GLintptr offset = 0;
3356 GLsizeiptr size = 0;
3357
3358 if (range) {
3359 if (!bind_buffers_check_offset_and_size(ctx, i, offsets, sizes))
3360 continue;
3361
3362 /* The ARB_multi_bind spec says:
3363 *
3364 * "An INVALID_VALUE error is generated by BindBuffersRange if any
3365 * pair of values in <offsets> and <sizes> does not respectively
3366 * satisfy the constraints described for those parameters for the
3367 * specified target, as described in section 6.7.1 (per binding)."
3368 *
3369 * Section 6.7.1 refers to table 6.5, which says:
3370 *
3371 * "┌───────────────────────────────────────────────────────────────┐
3372 * │ Shader storage buffer array bindings (see sec. 7.8) │
3373 * ├─────────────────────┬─────────────────────────────────────────┤
3374 * │ ... │ ... │
3375 * │ offset restriction │ multiple of value of SHADER_STORAGE_- │
3376 * │ │ BUFFER_OFFSET_ALIGNMENT │
3377 * │ ... │ ... │
3378 * │ size restriction │ none │
3379 * └─────────────────────┴─────────────────────────────────────────┘"
3380 */
3381 if (offsets[i] & (ctx->Const.ShaderStorageBufferOffsetAlignment - 1)) {
3382 _mesa_error(ctx, GL_INVALID_VALUE,
3383 "glBindBuffersRange(offsets[%u]=%" PRId64
3384 " is misaligned; it must be a multiple of the value of "
3385 "GL_SHADER_STORAGE_BUFFER_OFFSET_ALIGNMENT=%u when "
3386 "target=GL_SHADER_STORAGE_BUFFER)",
3387 i, (int64_t) offsets[i],
3388 ctx->Const.ShaderStorageBufferOffsetAlignment);
3389 continue;
3390 }
3391
3392 offset = offsets[i];
3393 size = sizes[i];
3394 }
3395
3396 if (binding->BufferObject && binding->BufferObject->Name == buffers[i])
3397 bufObj = binding->BufferObject;
3398 else
3399 bufObj = _mesa_multi_bind_lookup_bufferobj(ctx, buffers, i, caller);
3400
3401 if (bufObj) {
3402 if (bufObj == ctx->Shared->NullBufferObj)
3403 set_ssbo_binding(ctx, binding, bufObj, -1, -1, !range);
3404 else
3405 set_ssbo_binding(ctx, binding, bufObj, offset, size, !range);
3406 }
3407 }
3408
3409 _mesa_HashUnlockMutex(ctx->Shared->BufferObjects);
3410 }
3411
3412 static bool
3413 error_check_bind_xfb_buffers(struct gl_context *ctx,
3414 struct gl_transform_feedback_object *tfObj,
3415 GLuint first, GLsizei count, const char *caller)
3416 {
3417 if (!ctx->Extensions.EXT_transform_feedback) {
3418 _mesa_error(ctx, GL_INVALID_ENUM,
3419 "%s(target=GL_TRANSFORM_FEEDBACK_BUFFER)", caller);
3420 return false;
3421 }
3422
3423 /* Page 398 of the PDF of the OpenGL 4.4 (Core Profile) spec says:
3424 *
3425 * "An INVALID_OPERATION error is generated :
3426 *
3427 * ...
3428 * • by BindBufferRange or BindBufferBase if target is TRANSFORM_-
3429 * FEEDBACK_BUFFER and transform feedback is currently active."
3430 *
3431 * We assume that this is also meant to apply to BindBuffersRange
3432 * and BindBuffersBase.
3433 */
3434 if (tfObj->Active) {
3435 _mesa_error(ctx, GL_INVALID_OPERATION,
3436 "%s(Changing transform feedback buffers while "
3437 "transform feedback is active)", caller);
3438 return false;
3439 }
3440
3441 /* The ARB_multi_bind_spec says:
3442 *
3443 * "An INVALID_OPERATION error is generated if <first> + <count> is
3444 * greater than the number of target-specific indexed binding points,
3445 * as described in section 6.7.1."
3446 */
3447 if (first + count > ctx->Const.MaxTransformFeedbackBuffers) {
3448 _mesa_error(ctx, GL_INVALID_OPERATION,
3449 "%s(first=%u + count=%d > the value of "
3450 "GL_MAX_TRANSFORM_FEEDBACK_BUFFERS=%u)",
3451 caller, first, count,
3452 ctx->Const.MaxTransformFeedbackBuffers);
3453 return false;
3454 }
3455
3456 return true;
3457 }
3458
3459 /**
3460 * Unbind all transform feedback buffers in the range
3461 * <first> through <first>+<count>-1
3462 */
3463 static void
3464 unbind_xfb_buffers(struct gl_context *ctx,
3465 struct gl_transform_feedback_object *tfObj,
3466 GLuint first, GLsizei count)
3467 {
3468 struct gl_buffer_object * const bufObj = ctx->Shared->NullBufferObj;
3469 GLint i;
3470
3471 for (i = 0; i < count; i++)
3472 _mesa_set_transform_feedback_binding(ctx, tfObj, first + i,
3473 bufObj, 0, 0);
3474 }
3475
3476 static void
3477 bind_xfb_buffers(struct gl_context *ctx,
3478 GLuint first, GLsizei count,
3479 const GLuint *buffers,
3480 bool range,
3481 const GLintptr *offsets,
3482 const GLsizeiptr *sizes,
3483 const char *caller)
3484 {
3485 struct gl_transform_feedback_object *tfObj =
3486 ctx->TransformFeedback.CurrentObject;
3487 GLint i;
3488
3489 if (!error_check_bind_xfb_buffers(ctx, tfObj, first, count, caller))
3490 return;
3491
3492 /* Assume that at least one binding will be changed */
3493 FLUSH_VERTICES(ctx, 0);
3494 ctx->NewDriverState |= ctx->DriverFlags.NewTransformFeedback;
3495
3496 if (!buffers) {
3497 /* The ARB_multi_bind spec says:
3498 *
3499 * "If <buffers> is NULL, all bindings from <first> through
3500 * <first>+<count>-1 are reset to their unbound (zero) state.
3501 * In this case, the offsets and sizes associated with the
3502 * binding points are set to default values, ignoring
3503 * <offsets> and <sizes>."
3504 */
3505 unbind_xfb_buffers(ctx, tfObj, first, count);
3506 return;
3507 }
3508
3509 /* Note that the error semantics for multi-bind commands differ from
3510 * those of other GL commands.
3511 *
3512 * The Issues section in the ARB_multi_bind spec says:
3513 *
3514 * "(11) Typically, OpenGL specifies that if an error is generated by a
3515 * command, that command has no effect. This is somewhat
3516 * unfortunate for multi-bind commands, because it would require a
3517 * first pass to scan the entire list of bound objects for errors
3518 * and then a second pass to actually perform the bindings.
3519 * Should we have different error semantics?
3520 *
3521 * RESOLVED: Yes. In this specification, when the parameters for
3522 * one of the <count> binding points are invalid, that binding point
3523 * is not updated and an error will be generated. However, other
3524 * binding points in the same command will be updated if their
3525 * parameters are valid and no other error occurs."
3526 */
3527
3528 _mesa_HashLockMutex(ctx->Shared->BufferObjects);
3529
3530 for (i = 0; i < count; i++) {
3531 const GLuint index = first + i;
3532 struct gl_buffer_object * const boundBufObj = tfObj->Buffers[index];
3533 struct gl_buffer_object *bufObj;
3534 GLintptr offset = 0;
3535 GLsizeiptr size = 0;
3536
3537 if (range) {
3538 offset = offsets[i];
3539 size = sizes[i];
3540
3541 if (!bind_buffers_check_offset_and_size(ctx, i, offsets, sizes))
3542 continue;
3543
3544 /* The ARB_multi_bind spec says:
3545 *
3546 * "An INVALID_VALUE error is generated by BindBuffersRange if any
3547 * pair of values in <offsets> and <sizes> does not respectively
3548 * satisfy the constraints described for those parameters for the
3549 * specified target, as described in section 6.7.1 (per binding)."
3550 *
3551 * Section 6.7.1 refers to table 6.5, which says:
3552 *
3553 * "┌───────────────────────────────────────────────────────────────┐
3554 * │ Transform feedback array bindings (see sec. 13.2.2) │
3555 * ├───────────────────────┬───────────────────────────────────────┤
3556 * │ ... │ ... │
3557 * │ offset restriction │ multiple of 4 │
3558 * │ ... │ ... │
3559 * │ size restriction │ multiple of 4 │
3560 * └───────────────────────┴───────────────────────────────────────┘"
3561 */
3562 if (offsets[i] & 0x3) {
3563 _mesa_error(ctx, GL_INVALID_VALUE,
3564 "glBindBuffersRange(offsets[%u]=%" PRId64
3565 " is misaligned; it must be a multiple of 4 when "
3566 "target=GL_TRANSFORM_FEEDBACK_BUFFER)",
3567 i, (int64_t) offsets[i]);
3568 continue;
3569 }
3570
3571 if (sizes[i] & 0x3) {
3572 _mesa_error(ctx, GL_INVALID_VALUE,
3573 "glBindBuffersRange(sizes[%u]=%" PRId64
3574 " is misaligned; it must be a multiple of 4 when "
3575 "target=GL_TRANSFORM_FEEDBACK_BUFFER)",
3576 i, (int64_t) sizes[i]);
3577 continue;
3578 }
3579
3580 offset = offsets[i];
3581 size = sizes[i];
3582 }
3583
3584 if (boundBufObj && boundBufObj->Name == buffers[i])
3585 bufObj = boundBufObj;
3586 else
3587 bufObj = _mesa_multi_bind_lookup_bufferobj(ctx, buffers, i, caller);
3588
3589 if (bufObj)
3590 _mesa_set_transform_feedback_binding(ctx, tfObj, index, bufObj,
3591 offset, size);
3592 }
3593
3594 _mesa_HashUnlockMutex(ctx->Shared->BufferObjects);
3595 }
3596
3597 static bool
3598 error_check_bind_atomic_buffers(struct gl_context *ctx,
3599 GLuint first, GLsizei count,
3600 const char *caller)
3601 {
3602 if (!ctx->Extensions.ARB_shader_atomic_counters) {
3603 _mesa_error(ctx, GL_INVALID_ENUM,
3604 "%s(target=GL_ATOMIC_COUNTER_BUFFER)", caller);
3605 return false;
3606 }
3607
3608 /* The ARB_multi_bind_spec says:
3609 *
3610 * "An INVALID_OPERATION error is generated if <first> + <count> is
3611 * greater than the number of target-specific indexed binding points,
3612 * as described in section 6.7.1."
3613 */
3614 if (first + count > ctx->Const.MaxAtomicBufferBindings) {
3615 _mesa_error(ctx, GL_INVALID_OPERATION,
3616 "%s(first=%u + count=%d > the value of "
3617 "GL_MAX_ATOMIC_BUFFER_BINDINGS=%u)",
3618 caller, first, count, ctx->Const.MaxAtomicBufferBindings);
3619 return false;
3620 }
3621
3622 return true;
3623 }
3624
3625 /**
3626 * Unbind all atomic counter buffers in the range
3627 * <first> through <first>+<count>-1
3628 */
3629 static void
3630 unbind_atomic_buffers(struct gl_context *ctx, GLuint first, GLsizei count)
3631 {
3632 struct gl_buffer_object * const bufObj = ctx->Shared->NullBufferObj;
3633 GLint i;
3634
3635 for (i = 0; i < count; i++)
3636 set_atomic_buffer_binding(ctx, &ctx->AtomicBufferBindings[first + i],
3637 bufObj, -1, -1);
3638 }
3639
3640 static void
3641 bind_atomic_buffers(struct gl_context *ctx,
3642 GLuint first,
3643 GLsizei count,
3644 const GLuint *buffers,
3645 bool range,
3646 const GLintptr *offsets,
3647 const GLsizeiptr *sizes,
3648 const char *caller)
3649 {
3650 GLint i;
3651
3652 if (!error_check_bind_atomic_buffers(ctx, first, count, caller))
3653 return;
3654
3655 /* Assume that at least one binding will be changed */
3656 FLUSH_VERTICES(ctx, 0);
3657 ctx->NewDriverState |= ctx->DriverFlags.NewAtomicBuffer;
3658
3659 if (!buffers) {
3660 /* The ARB_multi_bind spec says:
3661 *
3662 * "If <buffers> is NULL, all bindings from <first> through
3663 * <first>+<count>-1 are reset to their unbound (zero) state.
3664 * In this case, the offsets and sizes associated with the
3665 * binding points are set to default values, ignoring
3666 * <offsets> and <sizes>."
3667 */
3668 unbind_atomic_buffers(ctx, first, count);
3669 return;
3670 }
3671
3672 /* Note that the error semantics for multi-bind commands differ from
3673 * those of other GL commands.
3674 *
3675 * The Issues section in the ARB_multi_bind spec says:
3676 *
3677 * "(11) Typically, OpenGL specifies that if an error is generated by a
3678 * command, that command has no effect. This is somewhat
3679 * unfortunate for multi-bind commands, because it would require a
3680 * first pass to scan the entire list of bound objects for errors
3681 * and then a second pass to actually perform the bindings.
3682 * Should we have different error semantics?
3683 *
3684 * RESOLVED: Yes. In this specification, when the parameters for
3685 * one of the <count> binding points are invalid, that binding point
3686 * is not updated and an error will be generated. However, other
3687 * binding points in the same command will be updated if their
3688 * parameters are valid and no other error occurs."
3689 */
3690
3691 _mesa_HashLockMutex(ctx->Shared->BufferObjects);
3692
3693 for (i = 0; i < count; i++) {
3694 struct gl_atomic_buffer_binding *binding =
3695 &ctx->AtomicBufferBindings[first + i];
3696 struct gl_buffer_object *bufObj;
3697 GLintptr offset = 0;
3698 GLsizeiptr size = 0;
3699
3700 if (range) {
3701 if (!bind_buffers_check_offset_and_size(ctx, i, offsets, sizes))
3702 continue;
3703
3704 /* The ARB_multi_bind spec says:
3705 *
3706 * "An INVALID_VALUE error is generated by BindBuffersRange if any
3707 * pair of values in <offsets> and <sizes> does not respectively
3708 * satisfy the constraints described for those parameters for the
3709 * specified target, as described in section 6.7.1 (per binding)."
3710 *
3711 * Section 6.7.1 refers to table 6.5, which says:
3712 *
3713 * "┌───────────────────────────────────────────────────────────────┐
3714 * │ Atomic counter array bindings (see sec. 7.7.2) │
3715 * ├───────────────────────┬───────────────────────────────────────┤
3716 * │ ... │ ... │
3717 * │ offset restriction │ multiple of 4 │
3718 * │ ... │ ... │
3719 * │ size restriction │ none │
3720 * └───────────────────────┴───────────────────────────────────────┘"
3721 */
3722 if (offsets[i] & (ATOMIC_COUNTER_SIZE - 1)) {
3723 _mesa_error(ctx, GL_INVALID_VALUE,
3724 "glBindBuffersRange(offsets[%u]=%" PRId64
3725 " is misaligned; it must be a multiple of %d when "
3726 "target=GL_ATOMIC_COUNTER_BUFFER)",
3727 i, (int64_t) offsets[i], ATOMIC_COUNTER_SIZE);
3728 continue;
3729 }
3730
3731 offset = offsets[i];
3732 size = sizes[i];
3733 }
3734
3735 if (binding->BufferObject && binding->BufferObject->Name == buffers[i])
3736 bufObj = binding->BufferObject;
3737 else
3738 bufObj = _mesa_multi_bind_lookup_bufferobj(ctx, buffers, i, caller);
3739
3740 if (bufObj)
3741 set_atomic_buffer_binding(ctx, binding, bufObj, offset, size);
3742 }
3743
3744 _mesa_HashUnlockMutex(ctx->Shared->BufferObjects);
3745 }
3746
3747 void GLAPIENTRY
3748 _mesa_BindBufferRange(GLenum target, GLuint index,
3749 GLuint buffer, GLintptr offset, GLsizeiptr size)
3750 {
3751 GET_CURRENT_CONTEXT(ctx);
3752 struct gl_buffer_object *bufObj;
3753
3754 if (MESA_VERBOSE & VERBOSE_API) {
3755 _mesa_debug(ctx, "glBindBufferRange(%s, %u, %u, %lu, %lu)\n",
3756 _mesa_enum_to_string(target), index, buffer,
3757 (unsigned long) offset, (unsigned long) size);
3758 }
3759
3760 if (buffer == 0) {
3761 bufObj = ctx->Shared->NullBufferObj;
3762 } else {
3763 bufObj = _mesa_lookup_bufferobj(ctx, buffer);
3764 }
3765 if (!_mesa_handle_bind_buffer_gen(ctx, buffer,
3766 &bufObj, "glBindBufferRange"))
3767 return;
3768
3769 if (!bufObj) {
3770 _mesa_error(ctx, GL_INVALID_OPERATION,
3771 "glBindBufferRange(invalid buffer=%u)", buffer);
3772 return;
3773 }
3774
3775 if (buffer != 0) {
3776 if (size <= 0) {
3777 _mesa_error(ctx, GL_INVALID_VALUE, "glBindBufferRange(size=%d)",
3778 (int) size);
3779 return;
3780 }
3781 }
3782
3783 switch (target) {
3784 case GL_TRANSFORM_FEEDBACK_BUFFER:
3785 _mesa_bind_buffer_range_transform_feedback(ctx,
3786 ctx->TransformFeedback.CurrentObject,
3787 index, bufObj, offset, size,
3788 false);
3789 return;
3790 case GL_UNIFORM_BUFFER:
3791 bind_buffer_range_uniform_buffer(ctx, index, bufObj, offset, size);
3792 return;
3793 case GL_SHADER_STORAGE_BUFFER:
3794 bind_buffer_range_shader_storage_buffer(ctx, index, bufObj, offset, size);
3795 return;
3796 case GL_ATOMIC_COUNTER_BUFFER:
3797 bind_atomic_buffer(ctx, index, bufObj, offset, size,
3798 "glBindBufferRange");
3799 return;
3800 default:
3801 _mesa_error(ctx, GL_INVALID_ENUM, "glBindBufferRange(target)");
3802 return;
3803 }
3804 }
3805
3806 void GLAPIENTRY
3807 _mesa_BindBufferBase(GLenum target, GLuint index, GLuint buffer)
3808 {
3809 GET_CURRENT_CONTEXT(ctx);
3810 struct gl_buffer_object *bufObj;
3811
3812 if (MESA_VERBOSE & VERBOSE_API) {
3813 _mesa_debug(ctx, "glBindBufferBase(%s, %u, %u)\n",
3814 _mesa_enum_to_string(target), index, buffer);
3815 }
3816
3817 if (buffer == 0) {
3818 bufObj = ctx->Shared->NullBufferObj;
3819 } else {
3820 bufObj = _mesa_lookup_bufferobj(ctx, buffer);
3821 }
3822 if (!_mesa_handle_bind_buffer_gen(ctx, buffer,
3823 &bufObj, "glBindBufferBase"))
3824 return;
3825
3826 if (!bufObj) {
3827 _mesa_error(ctx, GL_INVALID_OPERATION,
3828 "glBindBufferBase(invalid buffer=%u)", buffer);
3829 return;
3830 }
3831
3832 /* Note that there's some oddness in the GL 3.1-GL 3.3 specifications with
3833 * regards to BindBufferBase. It says (GL 3.1 core spec, page 63):
3834 *
3835 * "BindBufferBase is equivalent to calling BindBufferRange with offset
3836 * zero and size equal to the size of buffer."
3837 *
3838 * but it says for glGetIntegeri_v (GL 3.1 core spec, page 230):
3839 *
3840 * "If the parameter (starting offset or size) was not specified when the
3841 * buffer object was bound, zero is returned."
3842 *
3843 * What happens if the size of the buffer changes? Does the size of the
3844 * buffer at the moment glBindBufferBase was called still play a role, like
3845 * the first quote would imply, or is the size meaningless in the
3846 * glBindBufferBase case like the second quote would suggest? The GL 4.1
3847 * core spec page 45 says:
3848 *
3849 * "It is equivalent to calling BindBufferRange with offset zero, while
3850 * size is determined by the size of the bound buffer at the time the
3851 * binding is used."
3852 *
3853 * My interpretation is that the GL 4.1 spec was a clarification of the
3854 * behavior, not a change. In particular, this choice will only make
3855 * rendering work in cases where it would have had undefined results.
3856 */
3857
3858 switch (target) {
3859 case GL_TRANSFORM_FEEDBACK_BUFFER:
3860 _mesa_bind_buffer_base_transform_feedback(ctx,
3861 ctx->TransformFeedback.CurrentObject,
3862 index, bufObj, false);
3863 return;
3864 case GL_UNIFORM_BUFFER:
3865 bind_buffer_base_uniform_buffer(ctx, index, bufObj);
3866 return;
3867 case GL_SHADER_STORAGE_BUFFER:
3868 bind_buffer_base_shader_storage_buffer(ctx, index, bufObj);
3869 return;
3870 case GL_ATOMIC_COUNTER_BUFFER:
3871 bind_atomic_buffer(ctx, index, bufObj, 0, 0,
3872 "glBindBufferBase");
3873 return;
3874 default:
3875 _mesa_error(ctx, GL_INVALID_ENUM, "glBindBufferBase(target)");
3876 return;
3877 }
3878 }
3879
3880 void GLAPIENTRY
3881 _mesa_BindBuffersRange(GLenum target, GLuint first, GLsizei count,
3882 const GLuint *buffers,
3883 const GLintptr *offsets, const GLsizeiptr *sizes)
3884 {
3885 GET_CURRENT_CONTEXT(ctx);
3886
3887 if (MESA_VERBOSE & VERBOSE_API) {
3888 _mesa_debug(ctx, "glBindBuffersRange(%s, %u, %d, %p, %p, %p)\n",
3889 _mesa_enum_to_string(target), first, count,
3890 buffers, offsets, sizes);
3891 }
3892
3893 switch (target) {
3894 case GL_TRANSFORM_FEEDBACK_BUFFER:
3895 bind_xfb_buffers(ctx, first, count, buffers, true, offsets, sizes,
3896 "glBindBuffersRange");
3897 return;
3898 case GL_UNIFORM_BUFFER:
3899 bind_uniform_buffers(ctx, first, count, buffers, true, offsets, sizes,
3900 "glBindBuffersRange");
3901 return;
3902 case GL_SHADER_STORAGE_BUFFER:
3903 bind_shader_storage_buffers(ctx, first, count, buffers, true, offsets, sizes,
3904 "glBindBuffersRange");
3905 return;
3906 case GL_ATOMIC_COUNTER_BUFFER:
3907 bind_atomic_buffers(ctx, first, count, buffers, true, offsets, sizes,
3908 "glBindBuffersRange");
3909 return;
3910 default:
3911 _mesa_error(ctx, GL_INVALID_ENUM, "glBindBuffersRange(target=%s)",
3912 _mesa_enum_to_string(target));
3913 break;
3914 }
3915 }
3916
3917 void GLAPIENTRY
3918 _mesa_BindBuffersBase(GLenum target, GLuint first, GLsizei count,
3919 const GLuint *buffers)
3920 {
3921 GET_CURRENT_CONTEXT(ctx);
3922
3923 if (MESA_VERBOSE & VERBOSE_API) {
3924 _mesa_debug(ctx, "glBindBuffersBase(%s, %u, %d, %p)\n",
3925 _mesa_enum_to_string(target), first, count, buffers);
3926 }
3927
3928 switch (target) {
3929 case GL_TRANSFORM_FEEDBACK_BUFFER:
3930 bind_xfb_buffers(ctx, first, count, buffers, false, NULL, NULL,
3931 "glBindBuffersBase");
3932 return;
3933 case GL_UNIFORM_BUFFER:
3934 bind_uniform_buffers(ctx, first, count, buffers, false, NULL, NULL,
3935 "glBindBuffersBase");
3936 return;
3937 case GL_SHADER_STORAGE_BUFFER:
3938 bind_shader_storage_buffers(ctx, first, count, buffers, false, NULL, NULL,
3939 "glBindBuffersBase");
3940 return;
3941 case GL_ATOMIC_COUNTER_BUFFER:
3942 bind_atomic_buffers(ctx, first, count, buffers, false, NULL, NULL,
3943 "glBindBuffersBase");
3944 return;
3945 default:
3946 _mesa_error(ctx, GL_INVALID_ENUM, "glBindBuffersBase(target=%s)",
3947 _mesa_enum_to_string(target));
3948 break;
3949 }
3950 }
3951
3952 void GLAPIENTRY
3953 _mesa_InvalidateBufferSubData(GLuint buffer, GLintptr offset,
3954 GLsizeiptr length)
3955 {
3956 GET_CURRENT_CONTEXT(ctx);
3957 struct gl_buffer_object *bufObj;
3958 const GLintptr end = offset + length;
3959
3960 /* Section 6.5 (Invalidating Buffer Data) of the OpenGL 4.5 (Compatibility
3961 * Profile) spec says:
3962 *
3963 * "An INVALID_VALUE error is generated if buffer is zero or is not the
3964 * name of an existing buffer object."
3965 */
3966 bufObj = _mesa_lookup_bufferobj(ctx, buffer);
3967 if (!bufObj || bufObj == &DummyBufferObject) {
3968 _mesa_error(ctx, GL_INVALID_VALUE,
3969 "glInvalidateBufferSubData(name = %u) invalid object",
3970 buffer);
3971 return;
3972 }
3973
3974 /* The GL_ARB_invalidate_subdata spec says:
3975 *
3976 * "An INVALID_VALUE error is generated if <offset> or <length> is
3977 * negative, or if <offset> + <length> is greater than the value of
3978 * BUFFER_SIZE."
3979 */
3980 if (offset < 0 || length < 0 || end > bufObj->Size) {
3981 _mesa_error(ctx, GL_INVALID_VALUE,
3982 "glInvalidateBufferSubData(invalid offset or length)");
3983 return;
3984 }
3985
3986 /* The OpenGL 4.4 (Core Profile) spec says:
3987 *
3988 * "An INVALID_OPERATION error is generated if buffer is currently
3989 * mapped by MapBuffer or if the invalidate range intersects the range
3990 * currently mapped by MapBufferRange, unless it was mapped
3991 * with MAP_PERSISTENT_BIT set in the MapBufferRange access flags."
3992 */
3993 if (!(bufObj->Mappings[MAP_USER].AccessFlags & GL_MAP_PERSISTENT_BIT) &&
3994 bufferobj_range_mapped(bufObj, offset, length)) {
3995 _mesa_error(ctx, GL_INVALID_OPERATION,
3996 "glInvalidateBufferSubData(intersection with mapped "
3997 "range)");
3998 return;
3999 }
4000
4001 if (ctx->Driver.InvalidateBufferSubData)
4002 ctx->Driver.InvalidateBufferSubData(ctx, bufObj, offset, length);
4003 }
4004
4005 void GLAPIENTRY
4006 _mesa_InvalidateBufferData(GLuint buffer)
4007 {
4008 GET_CURRENT_CONTEXT(ctx);
4009 struct gl_buffer_object *bufObj;
4010
4011 /* Section 6.5 (Invalidating Buffer Data) of the OpenGL 4.5 (Compatibility
4012 * Profile) spec says:
4013 *
4014 * "An INVALID_VALUE error is generated if buffer is zero or is not the
4015 * name of an existing buffer object."
4016 */
4017 bufObj = _mesa_lookup_bufferobj(ctx, buffer);
4018 if (!bufObj || bufObj == &DummyBufferObject) {
4019 _mesa_error(ctx, GL_INVALID_VALUE,
4020 "glInvalidateBufferData(name = %u) invalid object",
4021 buffer);
4022 return;
4023 }
4024
4025 /* The OpenGL 4.4 (Core Profile) spec says:
4026 *
4027 * "An INVALID_OPERATION error is generated if buffer is currently
4028 * mapped by MapBuffer or if the invalidate range intersects the range
4029 * currently mapped by MapBufferRange, unless it was mapped
4030 * with MAP_PERSISTENT_BIT set in the MapBufferRange access flags."
4031 */
4032 if (_mesa_check_disallowed_mapping(bufObj)) {
4033 _mesa_error(ctx, GL_INVALID_OPERATION,
4034 "glInvalidateBufferData(intersection with mapped "
4035 "range)");
4036 return;
4037 }
4038
4039 if (ctx->Driver.InvalidateBufferSubData)
4040 ctx->Driver.InvalidateBufferSubData(ctx, bufObj, 0, bufObj->Size);
4041 }
4042
4043 static void
4044 buffer_page_commitment(struct gl_context *ctx,
4045 struct gl_buffer_object *bufferObj,
4046 GLintptr offset, GLsizeiptr size,
4047 GLboolean commit, const char *func)
4048 {
4049 if (!(bufferObj->StorageFlags & GL_SPARSE_STORAGE_BIT_ARB)) {
4050 _mesa_error(ctx, GL_INVALID_OPERATION, "%s(not a sparse buffer object)",
4051 func);
4052 return;
4053 }
4054
4055 if (size < 0 || size > bufferObj->Size ||
4056 offset < 0 || offset > bufferObj->Size - size) {
4057 _mesa_error(ctx, GL_INVALID_VALUE, "%s(out of bounds)",
4058 func);
4059 return;
4060 }
4061
4062 /* The GL_ARB_sparse_buffer extension specification says:
4063 *
4064 * "INVALID_VALUE is generated by BufferPageCommitmentARB if <offset> is
4065 * not an integer multiple of SPARSE_BUFFER_PAGE_SIZE_ARB, or if <size>
4066 * is not an integer multiple of SPARSE_BUFFER_PAGE_SIZE_ARB and does
4067 * not extend to the end of the buffer's data store."
4068 */
4069 if (offset % ctx->Const.SparseBufferPageSize != 0) {
4070 _mesa_error(ctx, GL_INVALID_VALUE, "%s(offset not aligned to page size)",
4071 func);
4072 return;
4073 }
4074
4075 if (size % ctx->Const.SparseBufferPageSize != 0 &&
4076 offset + size != bufferObj->Size) {
4077 _mesa_error(ctx, GL_INVALID_VALUE, "%s(size not aligned to page size)",
4078 func);
4079 return;
4080 }
4081
4082 ctx->Driver.BufferPageCommitment(ctx, bufferObj, offset, size, commit);
4083 }
4084
4085 void GLAPIENTRY
4086 _mesa_BufferPageCommitmentARB(GLenum target, GLintptr offset, GLsizeiptr size,
4087 GLboolean commit)
4088 {
4089 GET_CURRENT_CONTEXT(ctx);
4090 struct gl_buffer_object *bufferObj;
4091
4092 bufferObj = get_buffer(ctx, "glBufferPageCommitmentARB", target,
4093 GL_INVALID_ENUM);
4094 if (!bufferObj)
4095 return;
4096
4097 buffer_page_commitment(ctx, bufferObj, offset, size, commit,
4098 "glBufferPageCommitmentARB");
4099 }
4100
4101 void GLAPIENTRY
4102 _mesa_NamedBufferPageCommitmentARB(GLuint buffer, GLintptr offset,
4103 GLsizeiptr size, GLboolean commit)
4104 {
4105 GET_CURRENT_CONTEXT(ctx);
4106 struct gl_buffer_object *bufferObj;
4107
4108 bufferObj = _mesa_lookup_bufferobj(ctx, buffer);
4109 if (!bufferObj || bufferObj == &DummyBufferObject) {
4110 /* Note: the extension spec is not clear about the excpected error value. */
4111 _mesa_error(ctx, GL_INVALID_VALUE,
4112 "glNamedBufferPageCommitmentARB(name = %u) invalid object",
4113 buffer);
4114 return;
4115 }
4116
4117 buffer_page_commitment(ctx, bufferObj, offset, size, commit,
4118 "glNamedBufferPageCommitmentARB");
4119 }