turnip: rework format table to support r5g5b5a1_unorm/b5g5r5a1_unorm
[mesa.git] / src / freedreno / vulkan / tu_image.c
1 /*
2 * Copyright © 2016 Red Hat.
3 * Copyright © 2016 Bas Nieuwenhuizen
4 *
5 * based in part on anv driver which is:
6 * Copyright © 2015 Intel Corporation
7 *
8 * Permission is hereby granted, free of charge, to any person obtaining a
9 * copy of this software and associated documentation files (the "Software"),
10 * to deal in the Software without restriction, including without limitation
11 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
12 * and/or sell copies of the Software, and to permit persons to whom the
13 * Software is furnished to do so, subject to the following conditions:
14 *
15 * The above copyright notice and this permission notice (including the next
16 * paragraph) shall be included in all copies or substantial portions of the
17 * Software.
18 *
19 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
20 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
21 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
22 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
23 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
24 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
25 * DEALINGS IN THE SOFTWARE.
26 */
27
28 #include "tu_private.h"
29
30 #include "util/debug.h"
31 #include "util/u_atomic.h"
32 #include "util/format/u_format.h"
33 #include "vk_format.h"
34 #include "vk_util.h"
35 #include "drm-uapi/drm_fourcc.h"
36
37 static inline bool
38 image_level_linear(struct tu_image *image, int level, bool ubwc)
39 {
40 unsigned w = u_minify(image->extent.width, level);
41 /* all levels are tiled/compressed with UBWC */
42 return ubwc ? false : (w < 16);
43 }
44
45 enum a6xx_tile_mode
46 tu6_get_image_tile_mode(struct tu_image *image, int level)
47 {
48 if (image_level_linear(image, level, !!image->layout.ubwc_layer_size))
49 return TILE6_LINEAR;
50 else
51 return image->layout.tile_mode;
52 }
53
54 VkResult
55 tu_image_create(VkDevice _device,
56 const VkImageCreateInfo *pCreateInfo,
57 const VkAllocationCallbacks *alloc,
58 VkImage *pImage,
59 uint64_t modifier)
60 {
61 TU_FROM_HANDLE(tu_device, device, _device);
62 struct tu_image *image = NULL;
63 assert(pCreateInfo->sType == VK_STRUCTURE_TYPE_IMAGE_CREATE_INFO);
64
65 tu_assert(pCreateInfo->mipLevels > 0);
66 tu_assert(pCreateInfo->arrayLayers > 0);
67 tu_assert(pCreateInfo->samples > 0);
68 tu_assert(pCreateInfo->extent.width > 0);
69 tu_assert(pCreateInfo->extent.height > 0);
70 tu_assert(pCreateInfo->extent.depth > 0);
71
72 image = vk_zalloc2(&device->alloc, alloc, sizeof(*image), 8,
73 VK_SYSTEM_ALLOCATION_SCOPE_OBJECT);
74 if (!image)
75 return vk_error(device->instance, VK_ERROR_OUT_OF_HOST_MEMORY);
76
77 image->type = pCreateInfo->imageType;
78
79 image->vk_format = pCreateInfo->format;
80 image->tiling = pCreateInfo->tiling;
81 image->usage = pCreateInfo->usage;
82 image->flags = pCreateInfo->flags;
83 image->extent = pCreateInfo->extent;
84 image->level_count = pCreateInfo->mipLevels;
85 image->layer_count = pCreateInfo->arrayLayers;
86 image->samples = pCreateInfo->samples;
87
88 image->exclusive = pCreateInfo->sharingMode == VK_SHARING_MODE_EXCLUSIVE;
89 if (pCreateInfo->sharingMode == VK_SHARING_MODE_CONCURRENT) {
90 for (uint32_t i = 0; i < pCreateInfo->queueFamilyIndexCount; ++i)
91 if (pCreateInfo->pQueueFamilyIndices[i] ==
92 VK_QUEUE_FAMILY_EXTERNAL)
93 image->queue_family_mask |= (1u << TU_MAX_QUEUE_FAMILIES) - 1u;
94 else
95 image->queue_family_mask |=
96 1u << pCreateInfo->pQueueFamilyIndices[i];
97 }
98
99 image->shareable =
100 vk_find_struct_const(pCreateInfo->pNext,
101 EXTERNAL_MEMORY_IMAGE_CREATE_INFO) != NULL;
102
103 image->layout.tile_mode = TILE6_3;
104 bool ubwc_enabled = true;
105
106 /* disable tiling when linear is requested and for compressed formats */
107 if (pCreateInfo->tiling == VK_IMAGE_TILING_LINEAR ||
108 modifier == DRM_FORMAT_MOD_LINEAR ||
109 vk_format_is_compressed(image->vk_format)) {
110 image->layout.tile_mode = TILE6_LINEAR;
111 ubwc_enabled = false;
112 }
113
114 /* using UBWC with D24S8 breaks the "stencil read" copy path (why?)
115 * (causes any deqp tests that need to check stencil to fail)
116 * disable UBWC for this format until we properly support copy aspect masks
117 */
118 if (image->vk_format == VK_FORMAT_D24_UNORM_S8_UINT)
119 ubwc_enabled = false;
120
121 /* UBWC can't be used with E5B9G9R9 */
122 if (image->vk_format == VK_FORMAT_E5B9G9R9_UFLOAT_PACK32)
123 ubwc_enabled = false;
124
125 if (image->extent.depth > 1) {
126 tu_finishme("UBWC with 3D textures");
127 ubwc_enabled = false;
128 }
129
130 /* Disable UBWC for storage images.
131 *
132 * The closed GL driver skips UBWC for storage images (and additionally
133 * uses linear for writeonly images). We seem to have image tiling working
134 * in freedreno in general, so turnip matches that. freedreno also enables
135 * UBWC on images, but it's not really tested due to the lack of
136 * UBWC-enabled mipmaps in freedreno currently. Just match the closed GL
137 * behavior of no UBWC.
138 */
139 if (image->usage & VK_IMAGE_USAGE_STORAGE_BIT)
140 ubwc_enabled = false;
141
142 uint32_t ubwc_blockwidth, ubwc_blockheight;
143 fdl6_get_ubwc_blockwidth(&image->layout,
144 &ubwc_blockwidth, &ubwc_blockheight);
145 if (!ubwc_blockwidth) {
146 tu_finishme("UBWC for cpp=%d", image->layout.cpp);
147 ubwc_enabled = false;
148 }
149
150 /* expect UBWC enabled if we asked for it */
151 assert(modifier != DRM_FORMAT_MOD_QCOM_COMPRESSED || ubwc_enabled);
152
153 image->layout.ubwc = ubwc_enabled;
154
155 fdl6_layout(&image->layout, vk_format_to_pipe_format(image->vk_format),
156 image->samples,
157 pCreateInfo->extent.width,
158 pCreateInfo->extent.height,
159 pCreateInfo->extent.depth,
160 pCreateInfo->mipLevels,
161 pCreateInfo->arrayLayers,
162 pCreateInfo->imageType == VK_IMAGE_TYPE_3D);
163
164 *pImage = tu_image_to_handle(image);
165
166 return VK_SUCCESS;
167 }
168
169 static enum a6xx_tex_fetchsize
170 tu6_fetchsize(VkFormat format)
171 {
172 if (vk_format_description(format)->layout == UTIL_FORMAT_LAYOUT_ASTC)
173 return TFETCH6_16_BYTE;
174
175 switch (vk_format_get_blocksize(format) / vk_format_get_blockwidth(format)) {
176 case 1: return TFETCH6_1_BYTE;
177 case 2: return TFETCH6_2_BYTE;
178 case 4: return TFETCH6_4_BYTE;
179 case 8: return TFETCH6_8_BYTE;
180 case 16: return TFETCH6_16_BYTE;
181 default:
182 unreachable("bad block size");
183 }
184 }
185
186 static uint32_t
187 tu6_texswiz(const VkComponentMapping *comps,
188 VkFormat format,
189 VkImageAspectFlagBits aspect_mask)
190 {
191 unsigned char swiz[4] = {comps->r, comps->g, comps->b, comps->a};
192 unsigned char vk_swizzle[] = {
193 [VK_COMPONENT_SWIZZLE_ZERO] = A6XX_TEX_ZERO,
194 [VK_COMPONENT_SWIZZLE_ONE] = A6XX_TEX_ONE,
195 [VK_COMPONENT_SWIZZLE_R] = A6XX_TEX_X,
196 [VK_COMPONENT_SWIZZLE_G] = A6XX_TEX_Y,
197 [VK_COMPONENT_SWIZZLE_B] = A6XX_TEX_Z,
198 [VK_COMPONENT_SWIZZLE_A] = A6XX_TEX_W,
199 };
200 const unsigned char *fmt_swiz = vk_format_description(format)->swizzle;
201
202 for (unsigned i = 0; i < 4; i++) {
203 swiz[i] = (swiz[i] == VK_COMPONENT_SWIZZLE_IDENTITY) ? i : vk_swizzle[swiz[i]];
204 /* if format has 0/1 in channel, use that (needed for bc1_rgb) */
205 if (swiz[i] < 4) {
206 if (aspect_mask == VK_IMAGE_ASPECT_STENCIL_BIT &&
207 format == VK_FORMAT_D24_UNORM_S8_UINT)
208 swiz[i] = A6XX_TEX_Y;
209 switch (fmt_swiz[swiz[i]]) {
210 case PIPE_SWIZZLE_0: swiz[i] = A6XX_TEX_ZERO; break;
211 case PIPE_SWIZZLE_1: swiz[i] = A6XX_TEX_ONE; break;
212 }
213 }
214 }
215
216 return A6XX_TEX_CONST_0_SWIZ_X(swiz[0]) |
217 A6XX_TEX_CONST_0_SWIZ_Y(swiz[1]) |
218 A6XX_TEX_CONST_0_SWIZ_Z(swiz[2]) |
219 A6XX_TEX_CONST_0_SWIZ_W(swiz[3]);
220 }
221
222 static enum a6xx_tex_type
223 tu6_tex_type(VkImageViewType type)
224 {
225 switch (type) {
226 default:
227 case VK_IMAGE_VIEW_TYPE_1D:
228 case VK_IMAGE_VIEW_TYPE_1D_ARRAY:
229 return A6XX_TEX_1D;
230 case VK_IMAGE_VIEW_TYPE_2D:
231 case VK_IMAGE_VIEW_TYPE_2D_ARRAY:
232 return A6XX_TEX_2D;
233 case VK_IMAGE_VIEW_TYPE_3D:
234 return A6XX_TEX_3D;
235 case VK_IMAGE_VIEW_TYPE_CUBE:
236 case VK_IMAGE_VIEW_TYPE_CUBE_ARRAY:
237 return A6XX_TEX_CUBE;
238 }
239 }
240
241 void
242 tu_image_view_init(struct tu_image_view *iview,
243 struct tu_device *device,
244 const VkImageViewCreateInfo *pCreateInfo)
245 {
246 TU_FROM_HANDLE(tu_image, image, pCreateInfo->image);
247 const VkImageSubresourceRange *range = &pCreateInfo->subresourceRange;
248
249 switch (image->type) {
250 case VK_IMAGE_TYPE_1D:
251 case VK_IMAGE_TYPE_2D:
252 assert(range->baseArrayLayer + tu_get_layerCount(image, range) <=
253 image->layer_count);
254 break;
255 case VK_IMAGE_TYPE_3D:
256 assert(range->baseArrayLayer + tu_get_layerCount(image, range) <=
257 tu_minify(image->extent.depth, range->baseMipLevel));
258 break;
259 default:
260 unreachable("bad VkImageType");
261 }
262
263 iview->image = image;
264 iview->type = pCreateInfo->viewType;
265 iview->vk_format = pCreateInfo->format;
266 iview->aspect_mask = pCreateInfo->subresourceRange.aspectMask;
267
268 // should we minify?
269 iview->extent = image->extent;
270
271 iview->base_layer = range->baseArrayLayer;
272 iview->layer_count = tu_get_layerCount(image, range);
273 iview->base_mip = range->baseMipLevel;
274 iview->level_count = tu_get_levelCount(image, range);
275
276 memset(iview->descriptor, 0, sizeof(iview->descriptor));
277
278 struct tu_native_format fmt =
279 tu6_format_texture(iview->vk_format, image->layout.tile_mode);
280 uint64_t base_addr = tu_image_base(image, iview->base_mip, iview->base_layer);
281 uint64_t ubwc_addr = tu_image_ubwc_base(image, iview->base_mip, iview->base_layer);
282
283 uint32_t pitch = tu_image_stride(image, iview->base_mip) / vk_format_get_blockwidth(iview->vk_format);
284 enum a6xx_tile_mode tile_mode = tu6_get_image_tile_mode(image, iview->base_mip);
285 uint32_t width = u_minify(image->extent.width, iview->base_mip);
286 uint32_t height = u_minify(image->extent.height, iview->base_mip);
287 uint32_t depth = pCreateInfo->viewType == VK_IMAGE_VIEW_TYPE_3D ?
288 u_minify(image->extent.depth, iview->base_mip) : iview->layer_count;
289
290 unsigned fmt_tex = fmt.fmt;
291 if (iview->aspect_mask == VK_IMAGE_ASPECT_STENCIL_BIT &&
292 iview->vk_format == VK_FORMAT_D24_UNORM_S8_UINT)
293 fmt_tex = FMT6_S8Z24_UINT;
294
295 iview->descriptor[0] =
296 A6XX_TEX_CONST_0_TILE_MODE(tile_mode) |
297 COND(vk_format_is_srgb(iview->vk_format), A6XX_TEX_CONST_0_SRGB) |
298 A6XX_TEX_CONST_0_FMT(fmt_tex) |
299 A6XX_TEX_CONST_0_SAMPLES(tu_msaa_samples(image->samples)) |
300 A6XX_TEX_CONST_0_SWAP(fmt.swap) |
301 tu6_texswiz(&pCreateInfo->components, iview->vk_format, iview->aspect_mask) |
302 A6XX_TEX_CONST_0_MIPLVLS(iview->level_count - 1);
303 iview->descriptor[1] = A6XX_TEX_CONST_1_WIDTH(width) | A6XX_TEX_CONST_1_HEIGHT(height);
304 iview->descriptor[2] =
305 A6XX_TEX_CONST_2_FETCHSIZE(tu6_fetchsize(iview->vk_format)) |
306 A6XX_TEX_CONST_2_PITCH(pitch) |
307 A6XX_TEX_CONST_2_TYPE(tu6_tex_type(pCreateInfo->viewType));
308 iview->descriptor[3] = A6XX_TEX_CONST_3_ARRAY_PITCH(tu_layer_size(image, iview->base_mip));
309 iview->descriptor[4] = base_addr;
310 iview->descriptor[5] = (base_addr >> 32) | A6XX_TEX_CONST_5_DEPTH(depth);
311
312 if (image->layout.ubwc_layer_size) {
313 uint32_t block_width, block_height;
314 fdl6_get_ubwc_blockwidth(&image->layout,
315 &block_width, &block_height);
316
317 iview->descriptor[3] |= A6XX_TEX_CONST_3_FLAG | A6XX_TEX_CONST_3_TILE_ALL;
318 iview->descriptor[7] = ubwc_addr;
319 iview->descriptor[8] = ubwc_addr >> 32;
320 iview->descriptor[9] |= A6XX_TEX_CONST_9_FLAG_BUFFER_ARRAY_PITCH(tu_image_ubwc_size(image, iview->base_mip) >> 2);
321 iview->descriptor[10] |=
322 A6XX_TEX_CONST_10_FLAG_BUFFER_PITCH(tu_image_ubwc_pitch(image, iview->base_mip)) |
323 A6XX_TEX_CONST_10_FLAG_BUFFER_LOGW(util_logbase2_ceil(DIV_ROUND_UP(width, block_width))) |
324 A6XX_TEX_CONST_10_FLAG_BUFFER_LOGH(util_logbase2_ceil(DIV_ROUND_UP(height, block_height)));
325 }
326
327 if (pCreateInfo->viewType == VK_IMAGE_VIEW_TYPE_3D) {
328 iview->descriptor[3] |=
329 A6XX_TEX_CONST_3_MIN_LAYERSZ(image->layout.slices[image->level_count - 1].size0);
330 }
331
332 if (image->usage & VK_IMAGE_USAGE_STORAGE_BIT) {
333 memset(iview->storage_descriptor, 0, sizeof(iview->storage_descriptor));
334
335 iview->storage_descriptor[0] =
336 A6XX_IBO_0_FMT(fmt.fmt) |
337 A6XX_IBO_0_TILE_MODE(tile_mode);
338 iview->storage_descriptor[1] =
339 A6XX_IBO_1_WIDTH(width) |
340 A6XX_IBO_1_HEIGHT(height);
341 iview->storage_descriptor[2] =
342 A6XX_IBO_2_PITCH(pitch) |
343 A6XX_IBO_2_TYPE(tu6_tex_type(pCreateInfo->viewType));
344 iview->storage_descriptor[3] = A6XX_IBO_3_ARRAY_PITCH(tu_layer_size(image, iview->base_mip));
345
346 iview->storage_descriptor[4] = base_addr;
347 iview->storage_descriptor[5] = (base_addr >> 32) | A6XX_IBO_5_DEPTH(depth);
348
349 if (image->layout.ubwc_layer_size) {
350 iview->storage_descriptor[3] |= A6XX_IBO_3_FLAG | A6XX_IBO_3_UNK27;
351 iview->storage_descriptor[7] |= ubwc_addr;
352 iview->storage_descriptor[8] |= ubwc_addr >> 32;
353 iview->storage_descriptor[9] = A6XX_IBO_9_FLAG_BUFFER_ARRAY_PITCH(tu_image_ubwc_size(image, iview->base_mip) >> 2);
354 iview->storage_descriptor[10] =
355 A6XX_IBO_10_FLAG_BUFFER_PITCH(tu_image_ubwc_pitch(image, iview->base_mip));
356 }
357 }
358 }
359
360 unsigned
361 tu_image_queue_family_mask(const struct tu_image *image,
362 uint32_t family,
363 uint32_t queue_family)
364 {
365 if (!image->exclusive)
366 return image->queue_family_mask;
367 if (family == VK_QUEUE_FAMILY_EXTERNAL)
368 return (1u << TU_MAX_QUEUE_FAMILIES) - 1u;
369 if (family == VK_QUEUE_FAMILY_IGNORED)
370 return 1u << queue_family;
371 return 1u << family;
372 }
373
374 VkResult
375 tu_CreateImage(VkDevice device,
376 const VkImageCreateInfo *pCreateInfo,
377 const VkAllocationCallbacks *pAllocator,
378 VkImage *pImage)
379 {
380 #ifdef ANDROID
381 const VkNativeBufferANDROID *gralloc_info =
382 vk_find_struct_const(pCreateInfo->pNext, NATIVE_BUFFER_ANDROID);
383
384 if (gralloc_info)
385 return tu_image_from_gralloc(device, pCreateInfo, gralloc_info,
386 pAllocator, pImage);
387 #endif
388
389 uint64_t modifier = DRM_FORMAT_MOD_INVALID;
390 if (pCreateInfo->tiling == VK_IMAGE_TILING_DRM_FORMAT_MODIFIER_EXT) {
391 const VkImageDrmFormatModifierListCreateInfoEXT *mod_info =
392 vk_find_struct_const(pCreateInfo->pNext,
393 IMAGE_DRM_FORMAT_MODIFIER_LIST_CREATE_INFO_EXT);
394
395 modifier = DRM_FORMAT_MOD_LINEAR;
396 for (unsigned i = 0; i < mod_info->drmFormatModifierCount; i++) {
397 if (mod_info->pDrmFormatModifiers[i] == DRM_FORMAT_MOD_QCOM_COMPRESSED)
398 modifier = DRM_FORMAT_MOD_QCOM_COMPRESSED;
399 }
400 } else {
401 const struct wsi_image_create_info *wsi_info =
402 vk_find_struct_const(pCreateInfo->pNext, WSI_IMAGE_CREATE_INFO_MESA);
403 if (wsi_info && wsi_info->scanout)
404 modifier = DRM_FORMAT_MOD_LINEAR;
405 }
406
407 return tu_image_create(device, pCreateInfo, pAllocator, pImage, modifier);
408 }
409
410 void
411 tu_DestroyImage(VkDevice _device,
412 VkImage _image,
413 const VkAllocationCallbacks *pAllocator)
414 {
415 TU_FROM_HANDLE(tu_device, device, _device);
416 TU_FROM_HANDLE(tu_image, image, _image);
417
418 if (!image)
419 return;
420
421 if (image->owned_memory != VK_NULL_HANDLE)
422 tu_FreeMemory(_device, image->owned_memory, pAllocator);
423
424 vk_free2(&device->alloc, pAllocator, image);
425 }
426
427 void
428 tu_GetImageSubresourceLayout(VkDevice _device,
429 VkImage _image,
430 const VkImageSubresource *pSubresource,
431 VkSubresourceLayout *pLayout)
432 {
433 TU_FROM_HANDLE(tu_image, image, _image);
434
435 const struct fdl_slice *slice = image->layout.slices + pSubresource->mipLevel;
436
437 pLayout->offset = fdl_surface_offset(&image->layout,
438 pSubresource->mipLevel,
439 pSubresource->arrayLayer);
440 pLayout->size = slice->size0;
441 pLayout->rowPitch =
442 slice->pitch * vk_format_get_blocksize(image->vk_format);
443 pLayout->arrayPitch = image->layout.layer_size;
444 pLayout->depthPitch = slice->size0;
445
446 if (image->layout.ubwc_layer_size) {
447 /* UBWC starts at offset 0 */
448 pLayout->offset = 0;
449 /* UBWC scanout won't match what the kernel wants if we have levels/layers */
450 assert(image->level_count == 1 && image->layer_count == 1);
451 }
452 }
453
454 VkResult tu_GetImageDrmFormatModifierPropertiesEXT(
455 VkDevice device,
456 VkImage _image,
457 VkImageDrmFormatModifierPropertiesEXT* pProperties)
458 {
459 TU_FROM_HANDLE(tu_image, image, _image);
460
461 assert(pProperties->sType ==
462 VK_STRUCTURE_TYPE_IMAGE_DRM_FORMAT_MODIFIER_PROPERTIES_EXT);
463
464 /* TODO invent a modifier for tiled but not UBWC buffers */
465
466 if (!image->layout.tile_mode)
467 pProperties->drmFormatModifier = DRM_FORMAT_MOD_LINEAR;
468 else if (image->layout.ubwc_layer_size)
469 pProperties->drmFormatModifier = DRM_FORMAT_MOD_QCOM_COMPRESSED;
470 else
471 pProperties->drmFormatModifier = DRM_FORMAT_MOD_INVALID;
472
473 return VK_SUCCESS;
474 }
475
476
477 VkResult
478 tu_CreateImageView(VkDevice _device,
479 const VkImageViewCreateInfo *pCreateInfo,
480 const VkAllocationCallbacks *pAllocator,
481 VkImageView *pView)
482 {
483 TU_FROM_HANDLE(tu_device, device, _device);
484 struct tu_image_view *view;
485
486 view = vk_alloc2(&device->alloc, pAllocator, sizeof(*view), 8,
487 VK_SYSTEM_ALLOCATION_SCOPE_OBJECT);
488 if (view == NULL)
489 return vk_error(device->instance, VK_ERROR_OUT_OF_HOST_MEMORY);
490
491 tu_image_view_init(view, device, pCreateInfo);
492
493 *pView = tu_image_view_to_handle(view);
494
495 return VK_SUCCESS;
496 }
497
498 void
499 tu_DestroyImageView(VkDevice _device,
500 VkImageView _iview,
501 const VkAllocationCallbacks *pAllocator)
502 {
503 TU_FROM_HANDLE(tu_device, device, _device);
504 TU_FROM_HANDLE(tu_image_view, iview, _iview);
505
506 if (!iview)
507 return;
508 vk_free2(&device->alloc, pAllocator, iview);
509 }
510
511 void
512 tu_buffer_view_init(struct tu_buffer_view *view,
513 struct tu_device *device,
514 const VkBufferViewCreateInfo *pCreateInfo)
515 {
516 TU_FROM_HANDLE(tu_buffer, buffer, pCreateInfo->buffer);
517
518 view->buffer = buffer;
519
520 enum VkFormat vfmt = pCreateInfo->format;
521 enum pipe_format pfmt = vk_format_to_pipe_format(vfmt);
522 const struct tu_native_format fmt = tu6_format_texture(vfmt, false);
523
524 uint32_t range;
525 if (pCreateInfo->range == VK_WHOLE_SIZE)
526 range = buffer->size - pCreateInfo->offset;
527 else
528 range = pCreateInfo->range;
529 uint32_t elements = range / util_format_get_blocksize(pfmt);
530
531 static const VkComponentMapping components = {
532 .r = VK_COMPONENT_SWIZZLE_R,
533 .g = VK_COMPONENT_SWIZZLE_G,
534 .b = VK_COMPONENT_SWIZZLE_B,
535 .a = VK_COMPONENT_SWIZZLE_A,
536 };
537
538 uint64_t iova = tu_buffer_iova(buffer) + pCreateInfo->offset;
539
540 memset(&view->descriptor, 0, sizeof(view->descriptor));
541
542 view->descriptor[0] =
543 A6XX_TEX_CONST_0_TILE_MODE(TILE6_LINEAR) |
544 A6XX_TEX_CONST_0_SWAP(fmt.swap) |
545 A6XX_TEX_CONST_0_FMT(fmt.fmt) |
546 A6XX_TEX_CONST_0_MIPLVLS(0) |
547 tu6_texswiz(&components, vfmt, VK_IMAGE_ASPECT_COLOR_BIT);
548 COND(vk_format_is_srgb(vfmt), A6XX_TEX_CONST_0_SRGB);
549 view->descriptor[1] =
550 A6XX_TEX_CONST_1_WIDTH(elements & MASK(15)) |
551 A6XX_TEX_CONST_1_HEIGHT(elements >> 15);
552 view->descriptor[2] =
553 A6XX_TEX_CONST_2_UNK4 |
554 A6XX_TEX_CONST_2_UNK31;
555 view->descriptor[4] = iova;
556 view->descriptor[5] = iova >> 32;
557 }
558
559 VkResult
560 tu_CreateBufferView(VkDevice _device,
561 const VkBufferViewCreateInfo *pCreateInfo,
562 const VkAllocationCallbacks *pAllocator,
563 VkBufferView *pView)
564 {
565 TU_FROM_HANDLE(tu_device, device, _device);
566 struct tu_buffer_view *view;
567
568 view = vk_alloc2(&device->alloc, pAllocator, sizeof(*view), 8,
569 VK_SYSTEM_ALLOCATION_SCOPE_OBJECT);
570 if (!view)
571 return vk_error(device->instance, VK_ERROR_OUT_OF_HOST_MEMORY);
572
573 tu_buffer_view_init(view, device, pCreateInfo);
574
575 *pView = tu_buffer_view_to_handle(view);
576
577 return VK_SUCCESS;
578 }
579
580 void
581 tu_DestroyBufferView(VkDevice _device,
582 VkBufferView bufferView,
583 const VkAllocationCallbacks *pAllocator)
584 {
585 TU_FROM_HANDLE(tu_device, device, _device);
586 TU_FROM_HANDLE(tu_buffer_view, view, bufferView);
587
588 if (!view)
589 return;
590
591 vk_free2(&device->alloc, pAllocator, view);
592 }