radv: add support for VK_KHR_create_renderpass2
[mesa.git] / src / amd / vulkan / radv_pass.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 DEALINGS
25 * IN THE SOFTWARE.
26 */
27 #include "radv_private.h"
28
29 #include "vk_util.h"
30
31 VkResult radv_CreateRenderPass(
32 VkDevice _device,
33 const VkRenderPassCreateInfo* pCreateInfo,
34 const VkAllocationCallbacks* pAllocator,
35 VkRenderPass* pRenderPass)
36 {
37 RADV_FROM_HANDLE(radv_device, device, _device);
38 struct radv_render_pass *pass;
39 size_t size;
40 size_t attachments_offset;
41 VkRenderPassMultiviewCreateInfoKHR *multiview_info = NULL;
42
43 assert(pCreateInfo->sType == VK_STRUCTURE_TYPE_RENDER_PASS_CREATE_INFO);
44
45 size = sizeof(*pass);
46 size += pCreateInfo->subpassCount * sizeof(pass->subpasses[0]);
47 attachments_offset = size;
48 size += pCreateInfo->attachmentCount * sizeof(pass->attachments[0]);
49
50 pass = vk_alloc2(&device->alloc, pAllocator, size, 8,
51 VK_SYSTEM_ALLOCATION_SCOPE_OBJECT);
52 if (pass == NULL)
53 return vk_error(device->instance, VK_ERROR_OUT_OF_HOST_MEMORY);
54
55 memset(pass, 0, size);
56 pass->attachment_count = pCreateInfo->attachmentCount;
57 pass->subpass_count = pCreateInfo->subpassCount;
58 pass->attachments = (void *) pass + attachments_offset;
59
60 vk_foreach_struct(ext, pCreateInfo->pNext) {
61 switch(ext->sType) {
62 case VK_STRUCTURE_TYPE_RENDER_PASS_MULTIVIEW_CREATE_INFO_KHR:
63 multiview_info = ( VkRenderPassMultiviewCreateInfoKHR*)ext;
64 break;
65 default:
66 break;
67 }
68 }
69
70 for (uint32_t i = 0; i < pCreateInfo->attachmentCount; i++) {
71 struct radv_render_pass_attachment *att = &pass->attachments[i];
72
73 att->format = pCreateInfo->pAttachments[i].format;
74 att->samples = pCreateInfo->pAttachments[i].samples;
75 att->load_op = pCreateInfo->pAttachments[i].loadOp;
76 att->stencil_load_op = pCreateInfo->pAttachments[i].stencilLoadOp;
77 att->initial_layout = pCreateInfo->pAttachments[i].initialLayout;
78 att->final_layout = pCreateInfo->pAttachments[i].finalLayout;
79 // att->store_op = pCreateInfo->pAttachments[i].storeOp;
80 // att->stencil_store_op = pCreateInfo->pAttachments[i].stencilStoreOp;
81 }
82 uint32_t subpass_attachment_count = 0;
83 struct radv_subpass_attachment *p;
84 for (uint32_t i = 0; i < pCreateInfo->subpassCount; i++) {
85 const VkSubpassDescription *desc = &pCreateInfo->pSubpasses[i];
86
87 subpass_attachment_count +=
88 desc->inputAttachmentCount +
89 desc->colorAttachmentCount +
90 (desc->pResolveAttachments ? desc->colorAttachmentCount : 0) +
91 (desc->pDepthStencilAttachment != NULL);
92 }
93
94 if (subpass_attachment_count) {
95 pass->subpass_attachments =
96 vk_alloc2(&device->alloc, pAllocator,
97 subpass_attachment_count * sizeof(struct radv_subpass_attachment), 8,
98 VK_SYSTEM_ALLOCATION_SCOPE_OBJECT);
99 if (pass->subpass_attachments == NULL) {
100 vk_free2(&device->alloc, pAllocator, pass);
101 return vk_error(device->instance, VK_ERROR_OUT_OF_HOST_MEMORY);
102 }
103 } else
104 pass->subpass_attachments = NULL;
105
106 p = pass->subpass_attachments;
107 for (uint32_t i = 0; i < pCreateInfo->subpassCount; i++) {
108 const VkSubpassDescription *desc = &pCreateInfo->pSubpasses[i];
109 uint32_t color_sample_count = 1, depth_sample_count = 1;
110 struct radv_subpass *subpass = &pass->subpasses[i];
111
112 subpass->input_count = desc->inputAttachmentCount;
113 subpass->color_count = desc->colorAttachmentCount;
114 if (multiview_info)
115 subpass->view_mask = multiview_info->pViewMasks[i];
116
117 if (desc->inputAttachmentCount > 0) {
118 subpass->input_attachments = p;
119 p += desc->inputAttachmentCount;
120
121 for (uint32_t j = 0; j < desc->inputAttachmentCount; j++) {
122 subpass->input_attachments[j] = (struct radv_subpass_attachment) {
123 .attachment = desc->pInputAttachments[j].attachment,
124 .layout = desc->pInputAttachments[j].layout,
125 };
126 if (desc->pInputAttachments[j].attachment != VK_ATTACHMENT_UNUSED)
127 pass->attachments[desc->pInputAttachments[j].attachment].view_mask |= subpass->view_mask;
128 }
129 }
130
131 if (desc->colorAttachmentCount > 0) {
132 subpass->color_attachments = p;
133 p += desc->colorAttachmentCount;
134
135 for (uint32_t j = 0; j < desc->colorAttachmentCount; j++) {
136 subpass->color_attachments[j] = (struct radv_subpass_attachment) {
137 .attachment = desc->pColorAttachments[j].attachment,
138 .layout = desc->pColorAttachments[j].layout,
139 };
140 if (desc->pColorAttachments[j].attachment != VK_ATTACHMENT_UNUSED) {
141 pass->attachments[desc->pColorAttachments[j].attachment].view_mask |= subpass->view_mask;
142 color_sample_count = pCreateInfo->pAttachments[desc->pColorAttachments[j].attachment].samples;
143 }
144 }
145 }
146
147 subpass->has_resolve = false;
148 if (desc->pResolveAttachments) {
149 subpass->resolve_attachments = p;
150 p += desc->colorAttachmentCount;
151
152 for (uint32_t j = 0; j < desc->colorAttachmentCount; j++) {
153 uint32_t a = desc->pResolveAttachments[j].attachment;
154 subpass->resolve_attachments[j] = (struct radv_subpass_attachment) {
155 .attachment = desc->pResolveAttachments[j].attachment,
156 .layout = desc->pResolveAttachments[j].layout,
157 };
158 if (a != VK_ATTACHMENT_UNUSED) {
159 subpass->has_resolve = true;
160 pass->attachments[desc->pResolveAttachments[j].attachment].view_mask |= subpass->view_mask;
161 }
162 }
163 }
164
165 if (desc->pDepthStencilAttachment) {
166 subpass->depth_stencil_attachment = (struct radv_subpass_attachment) {
167 .attachment = desc->pDepthStencilAttachment->attachment,
168 .layout = desc->pDepthStencilAttachment->layout,
169 };
170 if (desc->pDepthStencilAttachment->attachment != VK_ATTACHMENT_UNUSED) {
171 pass->attachments[desc->pDepthStencilAttachment->attachment].view_mask |= subpass->view_mask;
172 depth_sample_count = pCreateInfo->pAttachments[desc->pDepthStencilAttachment->attachment].samples;
173 }
174 } else {
175 subpass->depth_stencil_attachment.attachment = VK_ATTACHMENT_UNUSED;
176 }
177
178 subpass->max_sample_count = MAX2(color_sample_count,
179 depth_sample_count);
180 }
181
182 for (unsigned i = 0; i < pCreateInfo->dependencyCount; ++i) {
183 uint32_t dst = pCreateInfo->pDependencies[i].dstSubpass;
184 if (dst == VK_SUBPASS_EXTERNAL) {
185 pass->end_barrier.src_stage_mask = pCreateInfo->pDependencies[i].srcStageMask;
186 pass->end_barrier.src_access_mask = pCreateInfo->pDependencies[i].srcAccessMask;
187 pass->end_barrier.dst_access_mask = pCreateInfo->pDependencies[i].dstAccessMask;
188 } else {
189 pass->subpasses[dst].start_barrier.src_stage_mask = pCreateInfo->pDependencies[i].srcStageMask;
190 pass->subpasses[dst].start_barrier.src_access_mask = pCreateInfo->pDependencies[i].srcAccessMask;
191 pass->subpasses[dst].start_barrier.dst_access_mask = pCreateInfo->pDependencies[i].dstAccessMask;
192 }
193 }
194
195 *pRenderPass = radv_render_pass_to_handle(pass);
196
197 return VK_SUCCESS;
198 }
199
200 VkResult radv_CreateRenderPass2KHR(
201 VkDevice _device,
202 const VkRenderPassCreateInfo2KHR* pCreateInfo,
203 const VkAllocationCallbacks* pAllocator,
204 VkRenderPass* pRenderPass)
205 {
206 RADV_FROM_HANDLE(radv_device, device, _device);
207 struct radv_render_pass *pass;
208 size_t size;
209 size_t attachments_offset;
210 VkRenderPassMultiviewCreateInfoKHR *multiview_info = NULL;
211
212 assert(pCreateInfo->sType == VK_STRUCTURE_TYPE_RENDER_PASS_CREATE_INFO_2_KHR);
213
214 size = sizeof(*pass);
215 size += pCreateInfo->subpassCount * sizeof(pass->subpasses[0]);
216 attachments_offset = size;
217 size += pCreateInfo->attachmentCount * sizeof(pass->attachments[0]);
218
219 pass = vk_alloc2(&device->alloc, pAllocator, size, 8,
220 VK_SYSTEM_ALLOCATION_SCOPE_OBJECT);
221 if (pass == NULL)
222 return vk_error(device->instance, VK_ERROR_OUT_OF_HOST_MEMORY);
223
224 memset(pass, 0, size);
225 pass->attachment_count = pCreateInfo->attachmentCount;
226 pass->subpass_count = pCreateInfo->subpassCount;
227 pass->attachments = (void *) pass + attachments_offset;
228
229 vk_foreach_struct(ext, pCreateInfo->pNext) {
230 switch(ext->sType) {
231 case VK_STRUCTURE_TYPE_RENDER_PASS_MULTIVIEW_CREATE_INFO_KHR:
232 multiview_info = ( VkRenderPassMultiviewCreateInfoKHR*)ext;
233 break;
234 default:
235 break;
236 }
237 }
238
239 for (uint32_t i = 0; i < pCreateInfo->attachmentCount; i++) {
240 struct radv_render_pass_attachment *att = &pass->attachments[i];
241
242 att->format = pCreateInfo->pAttachments[i].format;
243 att->samples = pCreateInfo->pAttachments[i].samples;
244 att->load_op = pCreateInfo->pAttachments[i].loadOp;
245 att->stencil_load_op = pCreateInfo->pAttachments[i].stencilLoadOp;
246 att->initial_layout = pCreateInfo->pAttachments[i].initialLayout;
247 att->final_layout = pCreateInfo->pAttachments[i].finalLayout;
248 // att->store_op = pCreateInfo->pAttachments[i].storeOp;
249 // att->stencil_store_op = pCreateInfo->pAttachments[i].stencilStoreOp;
250 }
251 uint32_t subpass_attachment_count = 0;
252 struct radv_subpass_attachment *p;
253 for (uint32_t i = 0; i < pCreateInfo->subpassCount; i++) {
254 const VkSubpassDescription2KHR *desc = &pCreateInfo->pSubpasses[i];
255
256 subpass_attachment_count +=
257 desc->inputAttachmentCount +
258 desc->colorAttachmentCount +
259 (desc->pResolveAttachments ? desc->colorAttachmentCount : 0) +
260 (desc->pDepthStencilAttachment != NULL);
261 }
262
263 if (subpass_attachment_count) {
264 pass->subpass_attachments =
265 vk_alloc2(&device->alloc, pAllocator,
266 subpass_attachment_count * sizeof(struct radv_subpass_attachment), 8,
267 VK_SYSTEM_ALLOCATION_SCOPE_OBJECT);
268 if (pass->subpass_attachments == NULL) {
269 vk_free2(&device->alloc, pAllocator, pass);
270 return vk_error(device->instance, VK_ERROR_OUT_OF_HOST_MEMORY);
271 }
272 } else
273 pass->subpass_attachments = NULL;
274
275 p = pass->subpass_attachments;
276 for (uint32_t i = 0; i < pCreateInfo->subpassCount; i++) {
277 const VkSubpassDescription2KHR *desc = &pCreateInfo->pSubpasses[i];
278 uint32_t color_sample_count = 1, depth_sample_count = 1;
279 struct radv_subpass *subpass = &pass->subpasses[i];
280
281 subpass->input_count = desc->inputAttachmentCount;
282 subpass->color_count = desc->colorAttachmentCount;
283 if (multiview_info)
284 subpass->view_mask = multiview_info->pViewMasks[i];
285
286 if (desc->inputAttachmentCount > 0) {
287 subpass->input_attachments = p;
288 p += desc->inputAttachmentCount;
289
290 for (uint32_t j = 0; j < desc->inputAttachmentCount; j++) {
291 subpass->input_attachments[j] = (struct radv_subpass_attachment) {
292 .attachment = desc->pInputAttachments[j].attachment,
293 .layout = desc->pInputAttachments[j].layout,
294 };
295 if (desc->pInputAttachments[j].attachment != VK_ATTACHMENT_UNUSED)
296 pass->attachments[desc->pInputAttachments[j].attachment].view_mask |= subpass->view_mask;
297 }
298 }
299
300 if (desc->colorAttachmentCount > 0) {
301 subpass->color_attachments = p;
302 p += desc->colorAttachmentCount;
303
304 for (uint32_t j = 0; j < desc->colorAttachmentCount; j++) {
305 subpass->color_attachments[j] = (struct radv_subpass_attachment) {
306 .attachment = desc->pColorAttachments[j].attachment,
307 .layout = desc->pColorAttachments[j].layout,
308 };
309 if (desc->pColorAttachments[j].attachment != VK_ATTACHMENT_UNUSED) {
310 pass->attachments[desc->pColorAttachments[j].attachment].view_mask |= subpass->view_mask;
311 color_sample_count = pCreateInfo->pAttachments[desc->pColorAttachments[j].attachment].samples;
312 }
313 }
314 }
315
316 subpass->has_resolve = false;
317 if (desc->pResolveAttachments) {
318 subpass->resolve_attachments = p;
319 p += desc->colorAttachmentCount;
320
321 for (uint32_t j = 0; j < desc->colorAttachmentCount; j++) {
322 uint32_t a = desc->pResolveAttachments[j].attachment;
323 subpass->resolve_attachments[j] = (struct radv_subpass_attachment) {
324 .attachment = desc->pResolveAttachments[j].attachment,
325 .layout = desc->pResolveAttachments[j].layout,
326 };
327 if (a != VK_ATTACHMENT_UNUSED) {
328 subpass->has_resolve = true;
329 pass->attachments[desc->pResolveAttachments[j].attachment].view_mask |= subpass->view_mask;
330 }
331 }
332 }
333
334 if (desc->pDepthStencilAttachment) {
335 subpass->depth_stencil_attachment = (struct radv_subpass_attachment) {
336 .attachment = desc->pDepthStencilAttachment->attachment,
337 .layout = desc->pDepthStencilAttachment->layout,
338 };
339 if (desc->pDepthStencilAttachment->attachment != VK_ATTACHMENT_UNUSED) {
340 pass->attachments[desc->pDepthStencilAttachment->attachment].view_mask |= subpass->view_mask;
341 depth_sample_count = pCreateInfo->pAttachments[desc->pDepthStencilAttachment->attachment].samples;
342 }
343 } else {
344 subpass->depth_stencil_attachment.attachment = VK_ATTACHMENT_UNUSED;
345 }
346
347 subpass->max_sample_count = MAX2(color_sample_count,
348 depth_sample_count);
349 }
350
351 for (unsigned i = 0; i < pCreateInfo->dependencyCount; ++i) {
352 uint32_t dst = pCreateInfo->pDependencies[i].dstSubpass;
353 if (dst == VK_SUBPASS_EXTERNAL) {
354 pass->end_barrier.src_stage_mask = pCreateInfo->pDependencies[i].srcStageMask;
355 pass->end_barrier.src_access_mask = pCreateInfo->pDependencies[i].srcAccessMask;
356 pass->end_barrier.dst_access_mask = pCreateInfo->pDependencies[i].dstAccessMask;
357 } else {
358 pass->subpasses[dst].start_barrier.src_stage_mask = pCreateInfo->pDependencies[i].srcStageMask;
359 pass->subpasses[dst].start_barrier.src_access_mask = pCreateInfo->pDependencies[i].srcAccessMask;
360 pass->subpasses[dst].start_barrier.dst_access_mask = pCreateInfo->pDependencies[i].dstAccessMask;
361 }
362 }
363
364 *pRenderPass = radv_render_pass_to_handle(pass);
365
366 return VK_SUCCESS;
367 }
368
369 void radv_DestroyRenderPass(
370 VkDevice _device,
371 VkRenderPass _pass,
372 const VkAllocationCallbacks* pAllocator)
373 {
374 RADV_FROM_HANDLE(radv_device, device, _device);
375 RADV_FROM_HANDLE(radv_render_pass, pass, _pass);
376
377 if (!_pass)
378 return;
379 vk_free2(&device->alloc, pAllocator, pass->subpass_attachments);
380 vk_free2(&device->alloc, pAllocator, pass);
381 }
382
383 void radv_GetRenderAreaGranularity(
384 VkDevice device,
385 VkRenderPass renderPass,
386 VkExtent2D* pGranularity)
387 {
388 pGranularity->width = 1;
389 pGranularity->height = 1;
390 }
391