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Greg Daniel164a9f02016-02-22 09:56:40 -05001/*
2 * Copyright 2015 Google Inc.
3 *
4 * Use of this source code is governed by a BSD-style license that can be
5 * found in the LICENSE file.
6 */
7
8#include "GrVkGpu.h"
9
10#include "GrContextOptions.h"
11#include "GrGeometryProcessor.h"
12#include "GrGpuResourceCacheAccess.h"
egdaniel0e1853c2016-03-17 11:35:45 -070013#include "GrMesh.h"
Greg Daniel164a9f02016-02-22 09:56:40 -050014#include "GrPipeline.h"
15#include "GrRenderTargetPriv.h"
16#include "GrSurfacePriv.h"
17#include "GrTexturePriv.h"
Greg Daniel164a9f02016-02-22 09:56:40 -050018
19#include "GrVkCommandBuffer.h"
egdaniel066df7c2016-06-08 14:02:27 -070020#include "GrVkGpuCommandBuffer.h"
Greg Daniel164a9f02016-02-22 09:56:40 -050021#include "GrVkImage.h"
22#include "GrVkIndexBuffer.h"
23#include "GrVkMemory.h"
24#include "GrVkPipeline.h"
egdaniel22281c12016-03-23 13:49:40 -070025#include "GrVkPipelineState.h"
Greg Daniel164a9f02016-02-22 09:56:40 -050026#include "GrVkRenderPass.h"
27#include "GrVkResourceProvider.h"
28#include "GrVkTexture.h"
29#include "GrVkTextureRenderTarget.h"
30#include "GrVkTransferBuffer.h"
31#include "GrVkVertexBuffer.h"
32
33#include "SkConfig8888.h"
jvanverth900bd4a2016-04-29 13:53:12 -070034#include "SkMipMap.h"
Greg Daniel164a9f02016-02-22 09:56:40 -050035
36#include "vk/GrVkInterface.h"
jvanverthfd359ca2016-03-18 11:57:24 -070037#include "vk/GrVkTypes.h"
Greg Daniel164a9f02016-02-22 09:56:40 -050038
ethannicholasb3058bd2016-07-01 08:22:01 -070039#if USE_SKSL
40#include "SkSLCompiler.h"
41#endif
42
Greg Daniel164a9f02016-02-22 09:56:40 -050043#define VK_CALL(X) GR_VK_CALL(this->vkInterface(), X)
44#define VK_CALL_RET(RET, X) GR_VK_CALL_RET(this->vkInterface(), RET, X)
45#define VK_CALL_ERRCHECK(X) GR_VK_CALL_ERRCHECK(this->vkInterface(), X)
46
egdaniel735109c2016-07-27 08:03:57 -070047#ifdef SK_ENABLE_VK_LAYERS
jvanverthd2497f32016-03-18 12:39:05 -070048VKAPI_ATTR VkBool32 VKAPI_CALL DebugReportCallback(
49 VkDebugReportFlagsEXT flags,
50 VkDebugReportObjectTypeEXT objectType,
51 uint64_t object,
52 size_t location,
53 int32_t messageCode,
54 const char* pLayerPrefix,
55 const char* pMessage,
56 void* pUserData) {
57 if (flags & VK_DEBUG_REPORT_ERROR_BIT_EXT) {
58 SkDebugf("Vulkan error [%s]: code: %d: %s\n", pLayerPrefix, messageCode, pMessage);
59 } else if (flags & VK_DEBUG_REPORT_WARNING_BIT_EXT) {
60 SkDebugf("Vulkan warning [%s]: code: %d: %s\n", pLayerPrefix, messageCode, pMessage);
61 } else if (flags & VK_DEBUG_REPORT_PERFORMANCE_WARNING_BIT_EXT) {
62 SkDebugf("Vulkan perf warning [%s]: code: %d: %s\n", pLayerPrefix, messageCode, pMessage);
63 } else {
64 SkDebugf("Vulkan info/debug [%s]: code: %d: %s\n", pLayerPrefix, messageCode, pMessage);
65 }
66 return VK_FALSE;
67}
jvanverthd2497f32016-03-18 12:39:05 -070068#endif
69
jvanverth633b3562016-03-23 11:01:22 -070070GrGpu* GrVkGpu::Create(GrBackendContext backendContext, const GrContextOptions& options,
71 GrContext* context) {
bsalomondc0fcd42016-04-11 14:21:33 -070072 const GrVkBackendContext* vkBackendContext =
73 reinterpret_cast<const GrVkBackendContext*>(backendContext);
jvanverth633b3562016-03-23 11:01:22 -070074 if (!vkBackendContext) {
bsalomondc0fcd42016-04-11 14:21:33 -070075 vkBackendContext = GrVkBackendContext::Create();
jvanverth633b3562016-03-23 11:01:22 -070076 if (!vkBackendContext) {
77 return nullptr;
Greg Daniel164a9f02016-02-22 09:56:40 -050078 }
jvanverth633b3562016-03-23 11:01:22 -070079 } else {
80 vkBackendContext->ref();
Greg Daniel164a9f02016-02-22 09:56:40 -050081 }
82
jvanverth633b3562016-03-23 11:01:22 -070083 return new GrVkGpu(context, options, vkBackendContext);
Greg Daniel164a9f02016-02-22 09:56:40 -050084}
85
86////////////////////////////////////////////////////////////////////////////////
87
halcanary9d524f22016-03-29 09:03:52 -070088GrVkGpu::GrVkGpu(GrContext* context, const GrContextOptions& options,
jvanverth633b3562016-03-23 11:01:22 -070089 const GrVkBackendContext* backendCtx)
Greg Daniel164a9f02016-02-22 09:56:40 -050090 : INHERITED(context)
jvanverth633b3562016-03-23 11:01:22 -070091 , fDevice(backendCtx->fDevice)
92 , fQueue(backendCtx->fQueue)
93 , fResourceProvider(this) {
94 fBackendContext.reset(backendCtx);
Greg Daniel164a9f02016-02-22 09:56:40 -050095
egdaniel735109c2016-07-27 08:03:57 -070096#ifdef SK_ENABLE_VK_LAYERS
brianosman419ca642016-05-04 08:19:44 -070097 fCallback = VK_NULL_HANDLE;
jvanverthfd7bd452016-03-25 06:29:52 -070098 if (backendCtx->fExtensions & kEXT_debug_report_GrVkExtensionFlag) {
99 // Setup callback creation information
jvanverthd2497f32016-03-18 12:39:05 -0700100 VkDebugReportCallbackCreateInfoEXT callbackCreateInfo;
101 callbackCreateInfo.sType = VK_STRUCTURE_TYPE_DEBUG_REPORT_CREATE_INFO_EXT;
102 callbackCreateInfo.pNext = nullptr;
103 callbackCreateInfo.flags = VK_DEBUG_REPORT_ERROR_BIT_EXT |
egdanielef0c10c2016-04-07 07:51:22 -0700104 VK_DEBUG_REPORT_WARNING_BIT_EXT |
jvanverthd2497f32016-03-18 12:39:05 -0700105 //VK_DEBUG_REPORT_INFORMATION_BIT_EXT |
106 //VK_DEBUG_REPORT_DEBUG_BIT_EXT |
egdanielb4aa3622016-04-06 13:47:08 -0700107 VK_DEBUG_REPORT_PERFORMANCE_WARNING_BIT_EXT;
jvanverthd2497f32016-03-18 12:39:05 -0700108 callbackCreateInfo.pfnCallback = &DebugReportCallback;
109 callbackCreateInfo.pUserData = nullptr;
110
jvanverthfd7bd452016-03-25 06:29:52 -0700111 // Register the callback
jvanvertha00980e2016-05-02 13:24:48 -0700112 GR_VK_CALL_ERRCHECK(this->vkInterface(), CreateDebugReportCallbackEXT(
113 backendCtx->fInstance, &callbackCreateInfo, nullptr, &fCallback));
jvanverthd2497f32016-03-18 12:39:05 -0700114 }
115#endif
jvanverth633b3562016-03-23 11:01:22 -0700116
ethannicholasb3058bd2016-07-01 08:22:01 -0700117#if USE_SKSL
118 fCompiler = new SkSL::Compiler();
119#else
jvanverth633b3562016-03-23 11:01:22 -0700120 fCompiler = shaderc_compiler_initialize();
ethannicholasb3058bd2016-07-01 08:22:01 -0700121#endif
jvanverth633b3562016-03-23 11:01:22 -0700122
jvanverthfd7bd452016-03-25 06:29:52 -0700123 fVkCaps.reset(new GrVkCaps(options, this->vkInterface(), backendCtx->fPhysicalDevice,
egdanielc5ec1402016-03-28 12:14:42 -0700124 backendCtx->fFeatures, backendCtx->fExtensions));
jvanverth633b3562016-03-23 11:01:22 -0700125 fCaps.reset(SkRef(fVkCaps.get()));
126
127 VK_CALL(GetPhysicalDeviceMemoryProperties(backendCtx->fPhysicalDevice, &fPhysDevMemProps));
128
129 const VkCommandPoolCreateInfo cmdPoolInfo = {
jvanverth7ec92412016-07-06 09:24:57 -0700130 VK_STRUCTURE_TYPE_COMMAND_POOL_CREATE_INFO, // sType
131 nullptr, // pNext
132 VK_COMMAND_POOL_CREATE_TRANSIENT_BIT |
133 VK_COMMAND_POOL_CREATE_RESET_COMMAND_BUFFER_BIT, // CmdPoolCreateFlags
134 backendCtx->fGraphicsQueueIndex, // queueFamilyIndex
jvanverth633b3562016-03-23 11:01:22 -0700135 };
halcanary9d524f22016-03-29 09:03:52 -0700136 GR_VK_CALL_ERRCHECK(this->vkInterface(), CreateCommandPool(fDevice, &cmdPoolInfo, nullptr,
jvanverth633b3562016-03-23 11:01:22 -0700137 &fCmdPool));
138
139 // must call this after creating the CommandPool
140 fResourceProvider.init();
jvanverth7ec92412016-07-06 09:24:57 -0700141 fCurrentCmdBuffer = fResourceProvider.findOrCreatePrimaryCommandBuffer();
jvanverth633b3562016-03-23 11:01:22 -0700142 SkASSERT(fCurrentCmdBuffer);
143 fCurrentCmdBuffer->begin(this);
jvanverth6b6ffc42016-06-13 14:28:07 -0700144
145 // set up our heaps
146 fHeaps[kLinearImage_Heap].reset(new GrVkHeap(this, GrVkHeap::kSubAlloc_Strategy, 16*1024*1024));
egdaniel05dceab2016-06-22 07:45:50 -0700147 // We want the OptimalImage_Heap to use a SubAlloc_strategy but it occasionally causes the
148 // device to run out of memory. Most likely this is caused by fragmentation in the device heap
149 // and we can't allocate more. Until we get a fix moving this to SingleAlloc.
150 fHeaps[kOptimalImage_Heap].reset(new GrVkHeap(this, GrVkHeap::kSingleAlloc_Strategy, 64*1024*1024));
jvanverth6b6ffc42016-06-13 14:28:07 -0700151 fHeaps[kSmallOptimalImage_Heap].reset(new GrVkHeap(this, GrVkHeap::kSubAlloc_Strategy, 2*1024*1024));
152 fHeaps[kVertexBuffer_Heap].reset(new GrVkHeap(this, GrVkHeap::kSingleAlloc_Strategy, 0));
153 fHeaps[kIndexBuffer_Heap].reset(new GrVkHeap(this, GrVkHeap::kSingleAlloc_Strategy, 0));
jvanverth4c6e47a2016-07-22 10:34:52 -0700154 fHeaps[kUniformBuffer_Heap].reset(new GrVkHeap(this, GrVkHeap::kSubAlloc_Strategy, 256*1024));
jvanverth6b6ffc42016-06-13 14:28:07 -0700155 fHeaps[kCopyReadBuffer_Heap].reset(new GrVkHeap(this, GrVkHeap::kSingleAlloc_Strategy, 0));
156 fHeaps[kCopyWriteBuffer_Heap].reset(new GrVkHeap(this, GrVkHeap::kSubAlloc_Strategy, 16*1024*1024));
Greg Daniel164a9f02016-02-22 09:56:40 -0500157}
158
159GrVkGpu::~GrVkGpu() {
Greg Daniel164a9f02016-02-22 09:56:40 -0500160 fCurrentCmdBuffer->end(this);
161 fCurrentCmdBuffer->unref(this);
162
163 // wait for all commands to finish
jvanverthddf98352016-03-21 11:46:00 -0700164 fResourceProvider.checkCommandBuffers();
jvanvertha00980e2016-05-02 13:24:48 -0700165 SkDEBUGCODE(VkResult res = ) VK_CALL(QueueWaitIdle(fQueue));
egdanielf8c2be32016-06-24 13:18:27 -0700166
167 // On windows, sometimes calls to QueueWaitIdle return before actually signalling the fences
168 // on the command buffers even though they have completed. This causes an assert to fire when
169 // destroying the command buffers. Currently this ony seems to happen on windows, so we add a
170 // sleep to make sure the fence singals.
171#ifdef SK_DEBUG
172#if defined(SK_BUILD_FOR_WIN)
173 Sleep(10); // In milliseconds
174#else
175 // Uncomment if above bug happens on non windows build.
176 // sleep(1); // In seconds
177#endif
178#endif
179
jvanverthddf98352016-03-21 11:46:00 -0700180 // VK_ERROR_DEVICE_LOST is acceptable when tearing down (see 4.2.4 in spec)
181 SkASSERT(VK_SUCCESS == res || VK_ERROR_DEVICE_LOST == res);
halcanary9d524f22016-03-29 09:03:52 -0700182
Greg Daniel164a9f02016-02-22 09:56:40 -0500183 // must call this just before we destroy the VkDevice
184 fResourceProvider.destroyResources();
185
jvanverth633b3562016-03-23 11:01:22 -0700186 VK_CALL(DestroyCommandPool(fDevice, fCmdPool, nullptr));
187
ethannicholasb3058bd2016-07-01 08:22:01 -0700188#if USE_SKSL
189 delete fCompiler;
190#else
jvanverth633b3562016-03-23 11:01:22 -0700191 shaderc_compiler_release(fCompiler);
ethannicholasb3058bd2016-07-01 08:22:01 -0700192#endif
jvanverth633b3562016-03-23 11:01:22 -0700193
egdaniel735109c2016-07-27 08:03:57 -0700194#ifdef SK_ENABLE_VK_LAYERS
jvanvertha00980e2016-05-02 13:24:48 -0700195 if (fCallback) {
196 VK_CALL(DestroyDebugReportCallbackEXT(fBackendContext->fInstance, fCallback, nullptr));
brianosman419ca642016-05-04 08:19:44 -0700197 fCallback = VK_NULL_HANDLE;
jvanvertha00980e2016-05-02 13:24:48 -0700198 }
jvanverthd2497f32016-03-18 12:39:05 -0700199#endif
Greg Daniel164a9f02016-02-22 09:56:40 -0500200}
201
202///////////////////////////////////////////////////////////////////////////////
203
egdaniel9cb63402016-06-23 08:37:05 -0700204GrGpuCommandBuffer* GrVkGpu::createCommandBuffer(
205 GrRenderTarget* target,
206 const GrGpuCommandBuffer::LoadAndStoreInfo& colorInfo,
207 const GrGpuCommandBuffer::LoadAndStoreInfo& stencilInfo) {
208 GrVkRenderTarget* vkRT = static_cast<GrVkRenderTarget*>(target);
209 return new GrVkGpuCommandBuffer(this, vkRT, colorInfo, stencilInfo);
egdaniel066df7c2016-06-08 14:02:27 -0700210}
211
Greg Daniel164a9f02016-02-22 09:56:40 -0500212void GrVkGpu::submitCommandBuffer(SyncQueue sync) {
213 SkASSERT(fCurrentCmdBuffer);
214 fCurrentCmdBuffer->end(this);
215
216 fCurrentCmdBuffer->submitToQueue(this, fQueue, sync);
217 fResourceProvider.checkCommandBuffers();
218
219 // Release old command buffer and create a new one
220 fCurrentCmdBuffer->unref(this);
jvanverth7ec92412016-07-06 09:24:57 -0700221 fCurrentCmdBuffer = fResourceProvider.findOrCreatePrimaryCommandBuffer();
Greg Daniel164a9f02016-02-22 09:56:40 -0500222 SkASSERT(fCurrentCmdBuffer);
223
224 fCurrentCmdBuffer->begin(this);
225}
226
227///////////////////////////////////////////////////////////////////////////////
cdalton1bf3e712016-04-19 10:00:02 -0700228GrBuffer* GrVkGpu::onCreateBuffer(size_t size, GrBufferType type, GrAccessPattern accessPattern,
229 const void* data) {
230 GrBuffer* buff;
cdalton397536c2016-03-25 12:15:03 -0700231 switch (type) {
232 case kVertex_GrBufferType:
233 SkASSERT(kDynamic_GrAccessPattern == accessPattern ||
234 kStatic_GrAccessPattern == accessPattern);
cdalton1bf3e712016-04-19 10:00:02 -0700235 buff = GrVkVertexBuffer::Create(this, size, kDynamic_GrAccessPattern == accessPattern);
egdaniele05bbbb2016-04-19 12:13:41 -0700236 break;
cdalton397536c2016-03-25 12:15:03 -0700237 case kIndex_GrBufferType:
238 SkASSERT(kDynamic_GrAccessPattern == accessPattern ||
239 kStatic_GrAccessPattern == accessPattern);
cdalton1bf3e712016-04-19 10:00:02 -0700240 buff = GrVkIndexBuffer::Create(this, size, kDynamic_GrAccessPattern == accessPattern);
egdaniele05bbbb2016-04-19 12:13:41 -0700241 break;
cdalton397536c2016-03-25 12:15:03 -0700242 case kXferCpuToGpu_GrBufferType:
jvanverthc3d706f2016-04-20 10:33:27 -0700243 SkASSERT(kStream_GrAccessPattern == accessPattern);
cdalton1bf3e712016-04-19 10:00:02 -0700244 buff = GrVkTransferBuffer::Create(this, size, GrVkBuffer::kCopyRead_Type);
egdaniele05bbbb2016-04-19 12:13:41 -0700245 break;
cdalton397536c2016-03-25 12:15:03 -0700246 case kXferGpuToCpu_GrBufferType:
jvanverthc3d706f2016-04-20 10:33:27 -0700247 SkASSERT(kStream_GrAccessPattern == accessPattern);
cdalton1bf3e712016-04-19 10:00:02 -0700248 buff = GrVkTransferBuffer::Create(this, size, GrVkBuffer::kCopyWrite_Type);
egdaniele05bbbb2016-04-19 12:13:41 -0700249 break;
cdalton397536c2016-03-25 12:15:03 -0700250 default:
251 SkFAIL("Unknown buffer type.");
252 return nullptr;
253 }
cdalton1bf3e712016-04-19 10:00:02 -0700254 if (data && buff) {
255 buff->updateData(data, size);
256 }
257 return buff;
Greg Daniel164a9f02016-02-22 09:56:40 -0500258}
259
260////////////////////////////////////////////////////////////////////////////////
261bool GrVkGpu::onGetWritePixelsInfo(GrSurface* dstSurface, int width, int height,
262 GrPixelConfig srcConfig, DrawPreference* drawPreference,
263 WritePixelTempDrawInfo* tempDrawInfo) {
264 if (kIndex_8_GrPixelConfig == srcConfig || GrPixelConfigIsCompressed(dstSurface->config())) {
265 return false;
266 }
267
egdaniel4583ec52016-06-27 12:57:00 -0700268 GrRenderTarget* renderTarget = dstSurface->asRenderTarget();
269
270 // Start off assuming no swizzling
271 tempDrawInfo->fSwizzle = GrSwizzle::RGBA();
272 tempDrawInfo->fWriteConfig = srcConfig;
273
274 // These settings we will always want if a temp draw is performed. Initially set the config
275 // to srcConfig, though that may be modified if we decide to do a R/B swap
276 tempDrawInfo->fTempSurfaceDesc.fFlags = kNone_GrSurfaceFlags;
277 tempDrawInfo->fTempSurfaceDesc.fConfig = srcConfig;
278 tempDrawInfo->fTempSurfaceDesc.fWidth = width;
279 tempDrawInfo->fTempSurfaceDesc.fHeight = height;
280 tempDrawInfo->fTempSurfaceDesc.fSampleCnt = 0;
281 tempDrawInfo->fTempSurfaceDesc.fOrigin = kTopLeft_GrSurfaceOrigin;
282
egdanield66110f2016-06-28 13:38:26 -0700283 if (dstSurface->config() == srcConfig) {
284 return true;
285 }
286
egdaniel4583ec52016-06-27 12:57:00 -0700287 if (renderTarget && this->vkCaps().isConfigRenderable(renderTarget->config(), false)) {
288 ElevateDrawPreference(drawPreference, kRequireDraw_DrawPreference);
289
290 bool configsAreRBSwaps = GrPixelConfigSwapRAndB(srcConfig) == dstSurface->config();
291
292 if (!this->vkCaps().isConfigTexturable(srcConfig) && configsAreRBSwaps) {
293 if (!this->vkCaps().isConfigTexturable(dstSurface->config())) {
294 return false;
295 }
296 tempDrawInfo->fTempSurfaceDesc.fConfig = dstSurface->config();
297 tempDrawInfo->fSwizzle = GrSwizzle::BGRA();
298 tempDrawInfo->fWriteConfig = dstSurface->config();
299 }
300 return true;
Greg Daniel164a9f02016-02-22 09:56:40 -0500301 }
302
egdaniel4583ec52016-06-27 12:57:00 -0700303 return false;
Greg Daniel164a9f02016-02-22 09:56:40 -0500304}
305
306bool GrVkGpu::onWritePixels(GrSurface* surface,
307 int left, int top, int width, int height,
bsalomona1e6b3b2016-03-02 10:58:23 -0800308 GrPixelConfig config,
309 const SkTArray<GrMipLevel>& texels) {
Greg Daniel164a9f02016-02-22 09:56:40 -0500310 GrVkTexture* vkTex = static_cast<GrVkTexture*>(surface->asTexture());
311 if (!vkTex) {
312 return false;
313 }
314
jvanverth900bd4a2016-04-29 13:53:12 -0700315 // Make sure we have at least the base level
jvanverth03509ea2016-03-02 13:19:47 -0800316 if (texels.empty() || !texels.begin()->fPixels) {
317 return false;
318 }
bsalomona1e6b3b2016-03-02 10:58:23 -0800319
Greg Daniel164a9f02016-02-22 09:56:40 -0500320 // We assume Vulkan doesn't do sRGB <-> linear conversions when reading and writing pixels.
321 if (GrPixelConfigIsSRGB(surface->config()) != GrPixelConfigIsSRGB(config)) {
322 return false;
323 }
324
325 bool success = false;
326 if (GrPixelConfigIsCompressed(vkTex->desc().fConfig)) {
327 // We check that config == desc.fConfig in GrGpu::getWritePixelsInfo()
328 SkASSERT(config == vkTex->desc().fConfig);
329 // TODO: add compressed texture support
330 // delete the following two lines and uncomment the two after that when ready
331 vkTex->unref();
332 return false;
333 //success = this->uploadCompressedTexData(vkTex->desc(), buffer, false, left, top, width,
334 // height);
335 } else {
336 bool linearTiling = vkTex->isLinearTiled();
jvanverth900bd4a2016-04-29 13:53:12 -0700337 if (linearTiling) {
338 if (texels.count() > 1) {
339 SkDebugf("Can't upload mipmap data to linear tiled texture");
340 return false;
341 }
342 if (VK_IMAGE_LAYOUT_PREINITIALIZED != vkTex->currentLayout()) {
343 // Need to change the layout to general in order to perform a host write
jvanverth900bd4a2016-04-29 13:53:12 -0700344 vkTex->setImageLayout(this,
345 VK_IMAGE_LAYOUT_GENERAL,
jvanverth50c46c72016-05-06 12:31:28 -0700346 VK_ACCESS_HOST_WRITE_BIT,
347 VK_PIPELINE_STAGE_HOST_BIT,
jvanverth900bd4a2016-04-29 13:53:12 -0700348 false);
egdanielbdf88112016-05-03 07:25:56 -0700349 this->submitCommandBuffer(kForce_SyncQueue);
jvanverth900bd4a2016-04-29 13:53:12 -0700350 }
351 success = this->uploadTexDataLinear(vkTex, left, top, width, height, config,
352 texels.begin()->fPixels, texels.begin()->fRowBytes);
353 } else {
jvanverthc578b0632016-05-02 10:58:12 -0700354 int newMipLevels = texels.count();
jvanverth82c05582016-05-03 11:19:01 -0700355 int currentMipLevels = vkTex->texturePriv().maxMipMapLevel() + 1;
356 if (newMipLevels != currentMipLevels) {
jvanverthc578b0632016-05-02 10:58:12 -0700357 if (!vkTex->reallocForMipmap(this, newMipLevels)) {
jvanverth900bd4a2016-04-29 13:53:12 -0700358 return false;
359 }
360 }
361 success = this->uploadTexDataOptimal(vkTex, left, top, width, height, config, texels);
Greg Daniel164a9f02016-02-22 09:56:40 -0500362 }
Greg Daniel164a9f02016-02-22 09:56:40 -0500363 }
egdaniel4583ec52016-06-27 12:57:00 -0700364
jvanverth900bd4a2016-04-29 13:53:12 -0700365 return success;
Greg Daniel164a9f02016-02-22 09:56:40 -0500366}
367
egdaniel52ad2512016-08-04 12:50:01 -0700368void GrVkGpu::onResolveRenderTarget(GrRenderTarget* target) {
egdaniel4c35a3f2016-08-05 06:35:39 -0700369 if (target->needsResolve() && target->numColorSamples() > 1) {
egdaniel52ad2512016-08-04 12:50:01 -0700370 GrVkRenderTarget* rt = static_cast<GrVkRenderTarget*>(target);
371 SkASSERT(rt->msaaImage());
372
373 // Flip rect if necessary
374 SkIRect srcVkRect = rt->getResolveRect();
375
376 if (kBottomLeft_GrSurfaceOrigin == rt->origin()) {
377 srcVkRect.fTop = rt->height() - rt->getResolveRect().fBottom;
378 srcVkRect.fBottom = rt->height() - rt->getResolveRect().fTop;
379 }
380
381 VkImageResolve resolveInfo;
382 resolveInfo.srcSubresource = { VK_IMAGE_ASPECT_COLOR_BIT, 0, 0, 1 };
383 resolveInfo.srcOffset = { srcVkRect.fLeft, srcVkRect.fTop, 0 };
384 resolveInfo.dstSubresource = { VK_IMAGE_ASPECT_COLOR_BIT, 0, 0, 1 };
385 resolveInfo.dstOffset = { srcVkRect.fLeft, srcVkRect.fTop, 0 };
386 // By the spec the depth of the extent should be ignored for 2D images, but certain devices
387 // (e.g. nexus 5x) currently fail if it is not 1
388 resolveInfo.extent = { (uint32_t)srcVkRect.width(), (uint32_t)srcVkRect.height(), 1 };
389
390 rt->setImageLayout(this,
391 VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL,
392 VK_ACCESS_TRANSFER_WRITE_BIT,
393 VK_PIPELINE_STAGE_TRANSFER_BIT,
394 false);
395
396 rt->msaaImage()->setImageLayout(this,
397 VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL,
398 VK_ACCESS_TRANSFER_READ_BIT,
399 VK_PIPELINE_STAGE_TRANSFER_BIT,
400 false);
401
402 fCurrentCmdBuffer->resolveImage(this, *rt, *rt->msaaImage(), 1, &resolveInfo);
403
404 rt->flagAsResolved();
405 }
406}
407
jvanverth900bd4a2016-04-29 13:53:12 -0700408bool GrVkGpu::uploadTexDataLinear(GrVkTexture* tex,
409 int left, int top, int width, int height,
410 GrPixelConfig dataConfig,
411 const void* data,
412 size_t rowBytes) {
Greg Daniel164a9f02016-02-22 09:56:40 -0500413 SkASSERT(data);
jvanverth900bd4a2016-04-29 13:53:12 -0700414 SkASSERT(tex->isLinearTiled());
Greg Daniel164a9f02016-02-22 09:56:40 -0500415
416 // If we're uploading compressed data then we should be using uploadCompressedTexData
417 SkASSERT(!GrPixelConfigIsCompressed(dataConfig));
418
Greg Daniel164a9f02016-02-22 09:56:40 -0500419 size_t bpp = GrBytesPerPixel(dataConfig);
420
421 const GrSurfaceDesc& desc = tex->desc();
422
423 if (!GrSurfacePriv::AdjustWritePixelParams(desc.fWidth, desc.fHeight, bpp, &left, &top,
424 &width, &height, &data, &rowBytes)) {
425 return false;
426 }
427 size_t trimRowBytes = width * bpp;
428
jvanverth900bd4a2016-04-29 13:53:12 -0700429 SkASSERT(VK_IMAGE_LAYOUT_PREINITIALIZED == tex->currentLayout() ||
430 VK_IMAGE_LAYOUT_GENERAL == tex->currentLayout());
431 const VkImageSubresource subres = {
432 VK_IMAGE_ASPECT_COLOR_BIT,
433 0, // mipLevel
434 0, // arraySlice
435 };
436 VkSubresourceLayout layout;
437 VkResult err;
Greg Daniel164a9f02016-02-22 09:56:40 -0500438
jvanverth900bd4a2016-04-29 13:53:12 -0700439 const GrVkInterface* interface = this->vkInterface();
Greg Daniel164a9f02016-02-22 09:56:40 -0500440
jvanverth900bd4a2016-04-29 13:53:12 -0700441 GR_VK_CALL(interface, GetImageSubresourceLayout(fDevice,
egdanielb2df0c22016-05-13 11:30:37 -0700442 tex->image(),
jvanverth900bd4a2016-04-29 13:53:12 -0700443 &subres,
444 &layout));
Greg Daniel164a9f02016-02-22 09:56:40 -0500445
jvanverth900bd4a2016-04-29 13:53:12 -0700446 int texTop = kBottomLeft_GrSurfaceOrigin == desc.fOrigin ? tex->height() - top - height : top;
jvanverth1e305ba2016-06-01 09:39:15 -0700447 const GrVkAlloc& alloc = tex->alloc();
448 VkDeviceSize offset = alloc.fOffset + texTop*layout.rowPitch + left*bpp;
jvanverth900bd4a2016-04-29 13:53:12 -0700449 VkDeviceSize size = height*layout.rowPitch;
450 void* mapPtr;
jvanverth1e305ba2016-06-01 09:39:15 -0700451 err = GR_VK_CALL(interface, MapMemory(fDevice, alloc.fMemory, offset, size, 0, &mapPtr));
jvanverth900bd4a2016-04-29 13:53:12 -0700452 if (err) {
453 return false;
454 }
455
456 if (kBottomLeft_GrSurfaceOrigin == desc.fOrigin) {
457 // copy into buffer by rows
458 const char* srcRow = reinterpret_cast<const char*>(data);
459 char* dstRow = reinterpret_cast<char*>(mapPtr)+(height - 1)*layout.rowPitch;
460 for (int y = 0; y < height; y++) {
461 memcpy(dstRow, srcRow, trimRowBytes);
462 srcRow += rowBytes;
463 dstRow -= layout.rowPitch;
464 }
465 } else {
466 // If there is no padding on the src (rowBytes) or dst (layout.rowPitch) we can memcpy
467 if (trimRowBytes == rowBytes && trimRowBytes == layout.rowPitch) {
468 memcpy(mapPtr, data, trimRowBytes * height);
469 } else {
egdaniel88e8aef2016-06-27 14:34:55 -0700470 SkRectMemcpy(mapPtr, static_cast<size_t>(layout.rowPitch), data, rowBytes, trimRowBytes,
471 height);
jvanverth900bd4a2016-04-29 13:53:12 -0700472 }
473 }
474
jvanverth1e305ba2016-06-01 09:39:15 -0700475 GR_VK_CALL(interface, UnmapMemory(fDevice, alloc.fMemory));
jvanverth900bd4a2016-04-29 13:53:12 -0700476
477 return true;
478}
479
480bool GrVkGpu::uploadTexDataOptimal(GrVkTexture* tex,
jvanvertha584de92016-06-30 09:10:52 -0700481 int left, int top, int width, int height,
482 GrPixelConfig dataConfig,
483 const SkTArray<GrMipLevel>& texels) {
jvanverth900bd4a2016-04-29 13:53:12 -0700484 SkASSERT(!tex->isLinearTiled());
485 // The assumption is either that we have no mipmaps, or that our rect is the entire texture
486 SkASSERT(1 == texels.count() ||
487 (0 == left && 0 == top && width == tex->width() && height == tex->height()));
488
489 // If we're uploading compressed data then we should be using uploadCompressedTexData
490 SkASSERT(!GrPixelConfigIsCompressed(dataConfig));
491
492 if (width == 0 || height == 0) {
493 return false;
494 }
495
496 const GrSurfaceDesc& desc = tex->desc();
497 SkASSERT(this->caps()->isConfigTexturable(desc.fConfig));
498 size_t bpp = GrBytesPerPixel(dataConfig);
499
500 // texels is const.
jvanverthc578b0632016-05-02 10:58:12 -0700501 // But we may need to adjust the fPixels ptr based on the copyRect, or fRowBytes.
502 // Because of this we need to make a non-const shallow copy of texels.
503 SkTArray<GrMipLevel> texelsShallowCopy(texels);
jvanverth900bd4a2016-04-29 13:53:12 -0700504
jvanverthc578b0632016-05-02 10:58:12 -0700505 for (int currentMipLevel = texelsShallowCopy.count() - 1; currentMipLevel >= 0;
506 currentMipLevel--) {
507 SkASSERT(texelsShallowCopy[currentMipLevel].fPixels);
Greg Daniel164a9f02016-02-22 09:56:40 -0500508 }
509
jvanverth900bd4a2016-04-29 13:53:12 -0700510 // Determine whether we need to flip when we copy into the buffer
jvanverthc578b0632016-05-02 10:58:12 -0700511 bool flipY = (kBottomLeft_GrSurfaceOrigin == desc.fOrigin && !texelsShallowCopy.empty());
jvanverth900bd4a2016-04-29 13:53:12 -0700512
jvanverthc578b0632016-05-02 10:58:12 -0700513 // adjust any params (left, top, currentWidth, currentHeight
jvanverth900bd4a2016-04-29 13:53:12 -0700514 // find the combined size of all the mip levels and the relative offset of
515 // each into the collective buffer
jvanverthc578b0632016-05-02 10:58:12 -0700516 // Do the first level separately because we may need to adjust width and height
517 // (for the non-mipped case).
518 if (!GrSurfacePriv::AdjustWritePixelParams(desc.fWidth, desc.fHeight, bpp, &left, &top,
519 &width,
520 &height,
521 &texelsShallowCopy[0].fPixels,
522 &texelsShallowCopy[0].fRowBytes)) {
523 return false;
524 }
525 SkTArray<size_t> individualMipOffsets(texelsShallowCopy.count());
526 individualMipOffsets.push_back(0);
527 size_t combinedBufferSize = width * bpp * height;
528 int currentWidth = width;
529 int currentHeight = height;
530 for (int currentMipLevel = 1; currentMipLevel < texelsShallowCopy.count(); currentMipLevel++) {
531 currentWidth = SkTMax(1, currentWidth/2);
532 currentHeight = SkTMax(1, currentHeight/2);
533 if (!GrSurfacePriv::AdjustWritePixelParams(desc.fWidth, desc.fHeight, bpp, &left, &top,
534 &currentWidth,
535 &currentHeight,
536 &texelsShallowCopy[currentMipLevel].fPixels,
537 &texelsShallowCopy[currentMipLevel].fRowBytes)) {
538 return false;
539 }
jvanverth900bd4a2016-04-29 13:53:12 -0700540 const size_t trimmedSize = currentWidth * bpp * currentHeight;
541 individualMipOffsets.push_back(combinedBufferSize);
542 combinedBufferSize += trimmedSize;
543 }
544
545 // allocate buffer to hold our mip data
546 GrVkTransferBuffer* transferBuffer =
547 GrVkTransferBuffer::Create(this, combinedBufferSize, GrVkBuffer::kCopyRead_Type);
548
549 char* buffer = (char*) transferBuffer->map();
jvanverthc578b0632016-05-02 10:58:12 -0700550 SkTArray<VkBufferImageCopy> regions(texelsShallowCopy.count());
jvanverth900bd4a2016-04-29 13:53:12 -0700551
jvanverthc578b0632016-05-02 10:58:12 -0700552 currentWidth = width;
553 currentHeight = height;
554 for (int currentMipLevel = 0; currentMipLevel < texelsShallowCopy.count(); currentMipLevel++) {
jvanverth900bd4a2016-04-29 13:53:12 -0700555 const size_t trimRowBytes = currentWidth * bpp;
jvanverthc578b0632016-05-02 10:58:12 -0700556 const size_t rowBytes = texelsShallowCopy[currentMipLevel].fRowBytes;
jvanverth900bd4a2016-04-29 13:53:12 -0700557
558 // copy data into the buffer, skipping the trailing bytes
559 char* dst = buffer + individualMipOffsets[currentMipLevel];
jvanverthc578b0632016-05-02 10:58:12 -0700560 const char* src = (const char*)texelsShallowCopy[currentMipLevel].fPixels;
jvanverth900bd4a2016-04-29 13:53:12 -0700561 if (flipY) {
562 src += (currentHeight - 1) * rowBytes;
563 for (int y = 0; y < currentHeight; y++) {
564 memcpy(dst, src, trimRowBytes);
565 src -= rowBytes;
566 dst += trimRowBytes;
567 }
568 } else if (trimRowBytes == rowBytes) {
569 memcpy(dst, src, trimRowBytes * currentHeight);
570 } else {
571 SkRectMemcpy(dst, trimRowBytes, src, rowBytes, trimRowBytes, currentHeight);
572 }
573
574 VkBufferImageCopy& region = regions.push_back();
575 memset(&region, 0, sizeof(VkBufferImageCopy));
jvanverthdb379092016-07-07 11:18:46 -0700576 region.bufferOffset = transferBuffer->offset() + individualMipOffsets[currentMipLevel];
jvanverth900bd4a2016-04-29 13:53:12 -0700577 region.bufferRowLength = currentWidth;
578 region.bufferImageHeight = currentHeight;
bsalomoncf942c42016-04-29 18:30:06 -0700579 region.imageSubresource = { VK_IMAGE_ASPECT_COLOR_BIT, SkToU32(currentMipLevel), 0, 1 };
jvanverthc578b0632016-05-02 10:58:12 -0700580 region.imageOffset = { left, flipY ? tex->height() - top - currentHeight : top, 0 };
jvanverth900bd4a2016-04-29 13:53:12 -0700581 region.imageExtent = { (uint32_t)currentWidth, (uint32_t)currentHeight, 1 };
egdaniel4583ec52016-06-27 12:57:00 -0700582
jvanverthc578b0632016-05-02 10:58:12 -0700583 currentWidth = SkTMax(1, currentWidth/2);
584 currentHeight = SkTMax(1, currentHeight/2);
jvanverth900bd4a2016-04-29 13:53:12 -0700585 }
586
587 transferBuffer->unmap();
588
589 // make sure the unmap has finished
590 transferBuffer->addMemoryBarrier(this,
591 VK_ACCESS_HOST_WRITE_BIT,
592 VK_ACCESS_TRANSFER_READ_BIT,
593 VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT,
594 VK_PIPELINE_STAGE_TRANSFER_BIT,
595 false);
596
597 // Change layout of our target so it can be copied to
jvanverth900bd4a2016-04-29 13:53:12 -0700598 tex->setImageLayout(this,
599 VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL,
jvanverth50c46c72016-05-06 12:31:28 -0700600 VK_ACCESS_TRANSFER_WRITE_BIT,
601 VK_PIPELINE_STAGE_TRANSFER_BIT,
jvanverth900bd4a2016-04-29 13:53:12 -0700602 false);
603
604 // Copy the buffer to the image
605 fCurrentCmdBuffer->copyBufferToImage(this,
606 transferBuffer,
607 tex,
608 VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL,
609 regions.count(),
610 regions.begin());
jvanverth900bd4a2016-04-29 13:53:12 -0700611 transferBuffer->unref();
612
Greg Daniel164a9f02016-02-22 09:56:40 -0500613 return true;
614}
615
616////////////////////////////////////////////////////////////////////////////////
kkinnunen2e6055b2016-04-22 01:48:29 -0700617GrTexture* GrVkGpu::onCreateTexture(const GrSurfaceDesc& desc, SkBudgeted budgeted,
bsalomona1e6b3b2016-03-02 10:58:23 -0800618 const SkTArray<GrMipLevel>& texels) {
Greg Daniel164a9f02016-02-22 09:56:40 -0500619 bool renderTarget = SkToBool(desc.fFlags & kRenderTarget_GrSurfaceFlag);
620
621 VkFormat pixelFormat;
622 if (!GrPixelConfigToVkFormat(desc.fConfig, &pixelFormat)) {
623 return nullptr;
624 }
625
626 if (!fVkCaps->isConfigTexturable(desc.fConfig)) {
627 return nullptr;
628 }
629
egdaniel0a3a7f72016-06-24 09:22:31 -0700630 if (renderTarget && !fVkCaps->isConfigRenderable(desc.fConfig, false)) {
631 return nullptr;
632 }
633
Greg Daniel164a9f02016-02-22 09:56:40 -0500634 bool linearTiling = false;
635 if (SkToBool(desc.fFlags & kZeroCopy_GrSurfaceFlag)) {
jvanverth900bd4a2016-04-29 13:53:12 -0700636 // we can't have a linear texture with a mipmap
637 if (texels.count() > 1) {
638 SkDebugf("Trying to create linear tiled texture with mipmap");
639 return nullptr;
640 }
egdaniela95d46b2016-08-15 08:06:29 -0700641 if (fVkCaps->isConfigTexturableLinearly(desc.fConfig) &&
Greg Daniel164a9f02016-02-22 09:56:40 -0500642 (!renderTarget || fVkCaps->isConfigRenderableLinearly(desc.fConfig, false))) {
643 linearTiling = true;
644 } else {
645 return nullptr;
646 }
647 }
648
649 VkImageUsageFlags usageFlags = VK_IMAGE_USAGE_SAMPLED_BIT;
650 if (renderTarget) {
651 usageFlags |= VK_IMAGE_USAGE_COLOR_ATTACHMENT_BIT;
652 }
653
654 // For now we will set the VK_IMAGE_USAGE_TRANSFER_DESTINATION_BIT and
655 // VK_IMAGE_USAGE_TRANSFER_SOURCE_BIT on every texture since we do not know whether or not we
656 // will be using this texture in some copy or not. Also this assumes, as is the current case,
jvanverth62340062016-04-26 08:01:44 -0700657 // that all render targets in vulkan are also textures. If we change this practice of setting
Greg Daniel164a9f02016-02-22 09:56:40 -0500658 // both bits, we must make sure to set the destination bit if we are uploading srcData to the
659 // texture.
660 usageFlags |= VK_IMAGE_USAGE_TRANSFER_SRC_BIT | VK_IMAGE_USAGE_TRANSFER_DST_BIT;
661
bsalomona1e6b3b2016-03-02 10:58:23 -0800662 VkFlags memProps = (!texels.empty() && linearTiling) ? VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT :
663 VK_MEMORY_PROPERTY_DEVICE_LOCAL_BIT;
Greg Daniel164a9f02016-02-22 09:56:40 -0500664
665 // This ImageDesc refers to the texture that will be read by the client. Thus even if msaa is
jvanverth62340062016-04-26 08:01:44 -0700666 // requested, this ImageDesc describes the resolved texture. Therefore we always have samples set
Greg Daniel164a9f02016-02-22 09:56:40 -0500667 // to 1.
jvanverthc578b0632016-05-02 10:58:12 -0700668 int mipLevels = texels.empty() ? 1 : texels.count();
Greg Daniel164a9f02016-02-22 09:56:40 -0500669 GrVkImage::ImageDesc imageDesc;
670 imageDesc.fImageType = VK_IMAGE_TYPE_2D;
671 imageDesc.fFormat = pixelFormat;
672 imageDesc.fWidth = desc.fWidth;
673 imageDesc.fHeight = desc.fHeight;
jvanverthc578b0632016-05-02 10:58:12 -0700674 imageDesc.fLevels = linearTiling ? 1 : mipLevels;
Greg Daniel164a9f02016-02-22 09:56:40 -0500675 imageDesc.fSamples = 1;
676 imageDesc.fImageTiling = linearTiling ? VK_IMAGE_TILING_LINEAR : VK_IMAGE_TILING_OPTIMAL;
677 imageDesc.fUsageFlags = usageFlags;
678 imageDesc.fMemProps = memProps;
679
680 GrVkTexture* tex;
681 if (renderTarget) {
kkinnunen2e6055b2016-04-22 01:48:29 -0700682 tex = GrVkTextureRenderTarget::CreateNewTextureRenderTarget(this, budgeted, desc,
Greg Daniel164a9f02016-02-22 09:56:40 -0500683 imageDesc);
684 } else {
kkinnunen2e6055b2016-04-22 01:48:29 -0700685 tex = GrVkTexture::CreateNewTexture(this, budgeted, desc, imageDesc);
Greg Daniel164a9f02016-02-22 09:56:40 -0500686 }
687
688 if (!tex) {
689 return nullptr;
690 }
691
bsalomone699d0c2016-03-09 06:25:15 -0800692 if (!texels.empty()) {
693 SkASSERT(texels.begin()->fPixels);
jvanverth900bd4a2016-04-29 13:53:12 -0700694 bool success;
695 if (linearTiling) {
696 success = this->uploadTexDataLinear(tex, 0, 0, desc.fWidth, desc.fHeight, desc.fConfig,
697 texels.begin()->fPixels, texels.begin()->fRowBytes);
698 } else {
699 success = this->uploadTexDataOptimal(tex, 0, 0, desc.fWidth, desc.fHeight, desc.fConfig,
700 texels);
701 }
702 if (!success) {
Greg Daniel164a9f02016-02-22 09:56:40 -0500703 tex->unref();
704 return nullptr;
705 }
706 }
707
708 return tex;
709}
710
711////////////////////////////////////////////////////////////////////////////////
712
jvanverthdb379092016-07-07 11:18:46 -0700713bool GrVkGpu::updateBuffer(GrVkBuffer* buffer, const void* src,
714 VkDeviceSize offset, VkDeviceSize size) {
jvanvertha584de92016-06-30 09:10:52 -0700715
716 // Update the buffer
jvanverthdb379092016-07-07 11:18:46 -0700717 fCurrentCmdBuffer->updateBuffer(this, buffer, offset, size, src);
jvanvertha584de92016-06-30 09:10:52 -0700718
719 return true;
720}
721
722////////////////////////////////////////////////////////////////////////////////
723
Greg Daniel164a9f02016-02-22 09:56:40 -0500724static GrSurfaceOrigin resolve_origin(GrSurfaceOrigin origin) {
725 // By default, all textures in Vk use TopLeft
726 if (kDefault_GrSurfaceOrigin == origin) {
727 return kTopLeft_GrSurfaceOrigin;
728 } else {
729 return origin;
730 }
731}
732
733GrTexture* GrVkGpu::onWrapBackendTexture(const GrBackendTextureDesc& desc,
734 GrWrapOwnership ownership) {
Greg Daniel164a9f02016-02-22 09:56:40 -0500735 if (0 == desc.fTextureHandle) {
736 return nullptr;
737 }
738
739 int maxSize = this->caps()->maxTextureSize();
740 if (desc.fWidth > maxSize || desc.fHeight > maxSize) {
741 return nullptr;
742 }
743
egdanielb2df0c22016-05-13 11:30:37 -0700744 const GrVkImageInfo* info = reinterpret_cast<const GrVkImageInfo*>(desc.fTextureHandle);
jvanverth1e305ba2016-06-01 09:39:15 -0700745 if (VK_NULL_HANDLE == info->fImage || VK_NULL_HANDLE == info->fAlloc.fMemory) {
jvanverthfd359ca2016-03-18 11:57:24 -0700746 return nullptr;
747 }
egdanielb2df0c22016-05-13 11:30:37 -0700748#ifdef SK_DEBUG
749 VkFormat format;
750 if (!GrPixelConfigToVkFormat(desc.fConfig, &format)) {
751 return nullptr;
752 }
753 SkASSERT(format == info->fFormat);
754#endif
Greg Daniel164a9f02016-02-22 09:56:40 -0500755
Greg Daniel164a9f02016-02-22 09:56:40 -0500756 GrSurfaceDesc surfDesc;
757 // next line relies on GrBackendTextureDesc's flags matching GrTexture's
758 surfDesc.fFlags = (GrSurfaceFlags)desc.fFlags;
759 surfDesc.fWidth = desc.fWidth;
760 surfDesc.fHeight = desc.fHeight;
761 surfDesc.fConfig = desc.fConfig;
762 surfDesc.fSampleCnt = SkTMin(desc.fSampleCnt, this->caps()->maxSampleCount());
763 bool renderTarget = SkToBool(desc.fFlags & kRenderTarget_GrBackendTextureFlag);
764 // In GL, Chrome assumes all textures are BottomLeft
765 // In VK, we don't have this restriction
766 surfDesc.fOrigin = resolve_origin(desc.fOrigin);
767
768 GrVkTexture* texture = nullptr;
769 if (renderTarget) {
halcanary9d524f22016-03-29 09:03:52 -0700770 texture = GrVkTextureRenderTarget::CreateWrappedTextureRenderTarget(this, surfDesc,
egdanielb2df0c22016-05-13 11:30:37 -0700771 ownership, info);
Greg Daniel164a9f02016-02-22 09:56:40 -0500772 } else {
egdanielb2df0c22016-05-13 11:30:37 -0700773 texture = GrVkTexture::CreateWrappedTexture(this, surfDesc, ownership, info);
Greg Daniel164a9f02016-02-22 09:56:40 -0500774 }
775 if (!texture) {
776 return nullptr;
777 }
778
779 return texture;
780}
781
782GrRenderTarget* GrVkGpu::onWrapBackendRenderTarget(const GrBackendRenderTargetDesc& wrapDesc,
783 GrWrapOwnership ownership) {
halcanary9d524f22016-03-29 09:03:52 -0700784
egdanielb2df0c22016-05-13 11:30:37 -0700785 const GrVkImageInfo* info =
786 reinterpret_cast<const GrVkImageInfo*>(wrapDesc.fRenderTargetHandle);
jvanverthfd359ca2016-03-18 11:57:24 -0700787 if (VK_NULL_HANDLE == info->fImage ||
jvanverth1e305ba2016-06-01 09:39:15 -0700788 (VK_NULL_HANDLE == info->fAlloc.fMemory && kAdopt_GrWrapOwnership == ownership)) {
jvanverthfd359ca2016-03-18 11:57:24 -0700789 return nullptr;
790 }
Greg Daniel164a9f02016-02-22 09:56:40 -0500791
Greg Daniel164a9f02016-02-22 09:56:40 -0500792 GrSurfaceDesc desc;
793 desc.fConfig = wrapDesc.fConfig;
794 desc.fFlags = kCheckAllocation_GrSurfaceFlag;
795 desc.fWidth = wrapDesc.fWidth;
796 desc.fHeight = wrapDesc.fHeight;
797 desc.fSampleCnt = SkTMin(wrapDesc.fSampleCnt, this->caps()->maxSampleCount());
798
799 desc.fOrigin = resolve_origin(wrapDesc.fOrigin);
800
801 GrVkRenderTarget* tgt = GrVkRenderTarget::CreateWrappedRenderTarget(this, desc,
kkinnunen2e6055b2016-04-22 01:48:29 -0700802 ownership,
jvanverthfd359ca2016-03-18 11:57:24 -0700803 info);
Greg Daniel164a9f02016-02-22 09:56:40 -0500804 if (tgt && wrapDesc.fStencilBits) {
805 if (!createStencilAttachmentForRenderTarget(tgt, desc.fWidth, desc.fHeight)) {
806 tgt->unref();
807 return nullptr;
808 }
809 }
810 return tgt;
811}
812
egdaniel50ead532016-07-13 14:23:26 -0700813void GrVkGpu::generateMipmap(GrVkTexture* tex) {
jvanverth900bd4a2016-04-29 13:53:12 -0700814 // don't do anything for linearly tiled textures (can't have mipmaps)
jvanverth62340062016-04-26 08:01:44 -0700815 if (tex->isLinearTiled()) {
jvanverth900bd4a2016-04-29 13:53:12 -0700816 SkDebugf("Trying to create mipmap for linear tiled texture");
jvanverth62340062016-04-26 08:01:44 -0700817 return;
818 }
819
egdaniel7ac5da82016-07-15 13:41:42 -0700820 // We currently don't support generating mipmaps for images that are multisampled.
821 // TODO: Add support for mipmapping the resolve target of a multisampled image
jvanverth62340062016-04-26 08:01:44 -0700822 if (tex->asRenderTarget() && tex->asRenderTarget()->numColorSamples() > 1) {
823 return;
824 }
825
826 // determine if we can blit to and from this format
827 const GrVkCaps& caps = this->vkCaps();
828 if (!caps.configCanBeDstofBlit(tex->config(), false) ||
egdaniel2f5792a2016-07-06 08:51:23 -0700829 !caps.configCanBeSrcofBlit(tex->config(), false) ||
830 !caps.mipMapSupport()) {
jvanverth62340062016-04-26 08:01:44 -0700831 return;
832 }
833
egdaniel7ac5da82016-07-15 13:41:42 -0700834 int width = tex->width();
835 int height = tex->height();
836 VkImageBlit blitRegion;
837 memset(&blitRegion, 0, sizeof(VkImageBlit));
jvanverth62340062016-04-26 08:01:44 -0700838
jvanverth82c05582016-05-03 11:19:01 -0700839 // SkMipMap doesn't include the base level in the level count so we have to add 1
840 uint32_t levelCount = SkMipMap::ComputeLevelCount(tex->width(), tex->height()) + 1;
egdaniel7ac5da82016-07-15 13:41:42 -0700841 if (levelCount != tex->mipLevels()) {
842 const GrVkResource* oldResource = tex->resource();
843 oldResource->ref();
844 // grab handle to the original image resource
845 VkImage oldImage = tex->image();
846
847 // change the original image's layout so we can copy from it
848 tex->setImageLayout(this, VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL,
849 VK_ACCESS_TRANSFER_READ_BIT, VK_PIPELINE_STAGE_TRANSFER_BIT, false);
850
851 if (!tex->reallocForMipmap(this, levelCount)) {
852 oldResource->unref(this);
853 return;
854 }
855 // change the new image's layout so we can blit to it
856 tex->setImageLayout(this, VK_IMAGE_LAYOUT_GENERAL,
857 VK_ACCESS_TRANSFER_WRITE_BIT, VK_PIPELINE_STAGE_TRANSFER_BIT, false);
858
859 // Blit original image to top level of new image
860 blitRegion.srcSubresource = { VK_IMAGE_ASPECT_COLOR_BIT, 0, 0, 1 };
861 blitRegion.srcOffsets[0] = { 0, 0, 0 };
862 blitRegion.srcOffsets[1] = { width, height, 1 };
863 blitRegion.dstSubresource = { VK_IMAGE_ASPECT_COLOR_BIT, 0, 0, 1 };
864 blitRegion.dstOffsets[0] = { 0, 0, 0 };
865 blitRegion.dstOffsets[1] = { width, height, 1 };
866
867 fCurrentCmdBuffer->blitImage(this,
868 oldResource,
869 oldImage,
870 VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL,
871 tex->resource(),
872 tex->image(),
873 VK_IMAGE_LAYOUT_GENERAL,
874 1,
875 &blitRegion,
876 VK_FILTER_LINEAR);
877
jvanverth62340062016-04-26 08:01:44 -0700878 oldResource->unref(this);
egdaniel7ac5da82016-07-15 13:41:42 -0700879 } else {
880 // change layout of the layers so we can write to them.
881 tex->setImageLayout(this, VK_IMAGE_LAYOUT_GENERAL,
882 VK_ACCESS_TRANSFER_WRITE_BIT, VK_PIPELINE_STAGE_TRANSFER_BIT, false);
jvanverth62340062016-04-26 08:01:44 -0700883 }
884
jvanverth50c46c72016-05-06 12:31:28 -0700885 // setup memory barrier
egdanielb2df0c22016-05-13 11:30:37 -0700886 SkASSERT(GrVkFormatToPixelConfig(tex->imageFormat(), nullptr));
jvanverth50c46c72016-05-06 12:31:28 -0700887 VkImageAspectFlags aspectFlags = VK_IMAGE_ASPECT_COLOR_BIT;
888 VkImageMemoryBarrier imageMemoryBarrier = {
889 VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER, // sType
890 NULL, // pNext
egdaniel7ac5da82016-07-15 13:41:42 -0700891 VK_ACCESS_TRANSFER_WRITE_BIT, // srcAccessMask
892 VK_ACCESS_TRANSFER_READ_BIT, // dstAccessMask
jvanverth50c46c72016-05-06 12:31:28 -0700893 VK_IMAGE_LAYOUT_GENERAL, // oldLayout
894 VK_IMAGE_LAYOUT_GENERAL, // newLayout
895 VK_QUEUE_FAMILY_IGNORED, // srcQueueFamilyIndex
896 VK_QUEUE_FAMILY_IGNORED, // dstQueueFamilyIndex
egdanielb2df0c22016-05-13 11:30:37 -0700897 tex->image(), // image
jvanverth50c46c72016-05-06 12:31:28 -0700898 { aspectFlags, 0, 1, 0, 1 } // subresourceRange
899 };
900
jvanverth62340062016-04-26 08:01:44 -0700901 // Blit the miplevels
jvanverth82c05582016-05-03 11:19:01 -0700902 uint32_t mipLevel = 1;
903 while (mipLevel < levelCount) {
904 int prevWidth = width;
905 int prevHeight = height;
906 width = SkTMax(1, width / 2);
907 height = SkTMax(1, height / 2);
jvanverth62340062016-04-26 08:01:44 -0700908
jvanverth50c46c72016-05-06 12:31:28 -0700909 imageMemoryBarrier.subresourceRange.baseMipLevel = mipLevel - 1;
910 this->addImageMemoryBarrier(VK_PIPELINE_STAGE_TRANSFER_BIT, VK_PIPELINE_STAGE_TRANSFER_BIT,
911 false, &imageMemoryBarrier);
912
913 blitRegion.srcSubresource = { VK_IMAGE_ASPECT_COLOR_BIT, mipLevel - 1, 0, 1 };
jvanverth82c05582016-05-03 11:19:01 -0700914 blitRegion.srcOffsets[0] = { 0, 0, 0 };
brianosmane9906e72016-06-08 12:44:27 -0700915 blitRegion.srcOffsets[1] = { prevWidth, prevHeight, 1 };
jvanverth82c05582016-05-03 11:19:01 -0700916 blitRegion.dstSubresource = { VK_IMAGE_ASPECT_COLOR_BIT, mipLevel, 0, 1 };
917 blitRegion.dstOffsets[0] = { 0, 0, 0 };
brianosmane9906e72016-06-08 12:44:27 -0700918 blitRegion.dstOffsets[1] = { width, height, 1 };
jvanverth62340062016-04-26 08:01:44 -0700919 fCurrentCmdBuffer->blitImage(this,
egdanielb2df0c22016-05-13 11:30:37 -0700920 *tex,
921 *tex,
jvanverth62340062016-04-26 08:01:44 -0700922 1,
923 &blitRegion,
924 VK_FILTER_LINEAR);
jvanverth82c05582016-05-03 11:19:01 -0700925 ++mipLevel;
jvanverth62340062016-04-26 08:01:44 -0700926 }
jvanverth62340062016-04-26 08:01:44 -0700927}
928
Greg Daniel164a9f02016-02-22 09:56:40 -0500929////////////////////////////////////////////////////////////////////////////////
930
931GrStencilAttachment* GrVkGpu::createStencilAttachmentForRenderTarget(const GrRenderTarget* rt,
932 int width,
933 int height) {
Greg Daniel164a9f02016-02-22 09:56:40 -0500934 SkASSERT(width >= rt->width());
935 SkASSERT(height >= rt->height());
936
937 int samples = rt->numStencilSamples();
938
egdaniel8f1dcaa2016-04-01 10:10:45 -0700939 const GrVkCaps::StencilFormat& sFmt = this->vkCaps().preferedStencilFormat();
Greg Daniel164a9f02016-02-22 09:56:40 -0500940
941 GrVkStencilAttachment* stencil(GrVkStencilAttachment::Create(this,
Greg Daniel164a9f02016-02-22 09:56:40 -0500942 width,
943 height,
944 samples,
945 sFmt));
946 fStats.incStencilAttachmentCreates();
947 return stencil;
948}
949
950////////////////////////////////////////////////////////////////////////////////
951
egdaniel3602d4f2016-08-12 11:58:53 -0700952bool copy_testing_data(GrVkGpu* gpu, void* srcData, GrVkAlloc* alloc,
953 size_t srcRowBytes, size_t dstRowBytes, int h) {
954 void* mapPtr;
955 VkResult err = GR_VK_CALL(gpu->vkInterface(), MapMemory(gpu->device(),
956 alloc->fMemory,
957 alloc->fOffset,
958 dstRowBytes * h,
959 0,
960 &mapPtr));
961 if (err) {
962 return false;
963 }
964
965 // If there is no padding on dst we can do a single memcopy.
966 // This assumes the srcData comes in with no padding.
967 if (srcRowBytes == dstRowBytes) {
968 memcpy(mapPtr, srcData, srcRowBytes * h);
969 } else {
970 SkRectMemcpy(mapPtr, static_cast<size_t>(dstRowBytes), srcData, srcRowBytes,
971 srcRowBytes, h);
972 }
973 GR_VK_CALL(gpu->vkInterface(), UnmapMemory(gpu->device(), alloc->fMemory));
974 return true;
975}
976
Greg Daniel164a9f02016-02-22 09:56:40 -0500977GrBackendObject GrVkGpu::createTestingOnlyBackendTexture(void* srcData, int w, int h,
egdaniel0a3a7f72016-06-24 09:22:31 -0700978 GrPixelConfig config,
979 bool isRenderTarget) {
Greg Daniel164a9f02016-02-22 09:56:40 -0500980
981 VkFormat pixelFormat;
982 if (!GrPixelConfigToVkFormat(config, &pixelFormat)) {
983 return 0;
984 }
985
986 bool linearTiling = false;
987 if (!fVkCaps->isConfigTexturable(config)) {
988 return 0;
989 }
990
egdaniel0a3a7f72016-06-24 09:22:31 -0700991 if (isRenderTarget && !fVkCaps->isConfigRenderable(config, false)) {
992 return 0;
993 }
994
egdaniela95d46b2016-08-15 08:06:29 -0700995 if (fVkCaps->isConfigTexturableLinearly(config) &&
egdaniel0a3a7f72016-06-24 09:22:31 -0700996 (!isRenderTarget || fVkCaps->isConfigRenderableLinearly(config, false))) {
Greg Daniel164a9f02016-02-22 09:56:40 -0500997 linearTiling = true;
998 }
999
Greg Daniel164a9f02016-02-22 09:56:40 -05001000 VkImageUsageFlags usageFlags = VK_IMAGE_USAGE_SAMPLED_BIT;
1001 usageFlags |= VK_IMAGE_USAGE_TRANSFER_SRC_BIT;
1002 usageFlags |= VK_IMAGE_USAGE_TRANSFER_DST_BIT;
egdaniel0a3a7f72016-06-24 09:22:31 -07001003 if (isRenderTarget) {
1004 usageFlags |= VK_IMAGE_USAGE_COLOR_ATTACHMENT_BIT;
1005 }
Greg Daniel164a9f02016-02-22 09:56:40 -05001006
jvanverthfd359ca2016-03-18 11:57:24 -07001007 VkImage image = VK_NULL_HANDLE;
jvanverth6b6ffc42016-06-13 14:28:07 -07001008 GrVkAlloc alloc = { VK_NULL_HANDLE, 0, 0 };
Greg Daniel164a9f02016-02-22 09:56:40 -05001009
jvanverthfd359ca2016-03-18 11:57:24 -07001010 VkImageTiling imageTiling = linearTiling ? VK_IMAGE_TILING_LINEAR : VK_IMAGE_TILING_OPTIMAL;
1011 VkImageLayout initialLayout = (VK_IMAGE_TILING_LINEAR == imageTiling)
1012 ? VK_IMAGE_LAYOUT_PREINITIALIZED
1013 : VK_IMAGE_LAYOUT_UNDEFINED;
1014
1015 // Create Image
1016 VkSampleCountFlagBits vkSamples;
1017 if (!GrSampleCountToVkSampleCount(1, &vkSamples)) {
1018 return 0;
1019 }
1020
1021 const VkImageCreateInfo imageCreateInfo = {
1022 VK_STRUCTURE_TYPE_IMAGE_CREATE_INFO, // sType
1023 NULL, // pNext
1024 0, // VkImageCreateFlags
1025 VK_IMAGE_TYPE_2D, // VkImageType
1026 pixelFormat, // VkFormat
ethannicholas384b5e92016-03-25 11:04:06 -07001027 { (uint32_t) w, (uint32_t) h, 1 }, // VkExtent3D
jvanverthfd359ca2016-03-18 11:57:24 -07001028 1, // mipLevels
1029 1, // arrayLayers
1030 vkSamples, // samples
1031 imageTiling, // VkImageTiling
1032 usageFlags, // VkImageUsageFlags
1033 VK_SHARING_MODE_EXCLUSIVE, // VkSharingMode
1034 0, // queueFamilyCount
1035 0, // pQueueFamilyIndices
1036 initialLayout // initialLayout
1037 };
1038
1039 GR_VK_CALL_ERRCHECK(this->vkInterface(), CreateImage(this->device(), &imageCreateInfo, nullptr, &image));
1040
jvanverth6b6ffc42016-06-13 14:28:07 -07001041 if (!GrVkMemory::AllocAndBindImageMemory(this, image, linearTiling, &alloc)) {
jvanverthfd359ca2016-03-18 11:57:24 -07001042 VK_CALL(DestroyImage(this->device(), image, nullptr));
Greg Daniel164a9f02016-02-22 09:56:40 -05001043 return 0;
1044 }
1045
1046 if (srcData) {
egdaniel3602d4f2016-08-12 11:58:53 -07001047 size_t bpp = GrBytesPerPixel(config);
1048 size_t rowCopyBytes = bpp * w;
Greg Daniel164a9f02016-02-22 09:56:40 -05001049 if (linearTiling) {
1050 const VkImageSubresource subres = {
1051 VK_IMAGE_ASPECT_COLOR_BIT,
1052 0, // mipLevel
1053 0, // arraySlice
1054 };
1055 VkSubresourceLayout layout;
Greg Daniel164a9f02016-02-22 09:56:40 -05001056
jvanverthfd359ca2016-03-18 11:57:24 -07001057 VK_CALL(GetImageSubresourceLayout(fDevice, image, &subres, &layout));
Greg Daniel164a9f02016-02-22 09:56:40 -05001058
egdaniel3602d4f2016-08-12 11:58:53 -07001059 if (!copy_testing_data(this, srcData, &alloc, rowCopyBytes, layout.rowPitch, h)) {
1060 GrVkMemory::FreeImageMemory(this, linearTiling, alloc);
1061 VK_CALL(DestroyImage(fDevice, image, nullptr));
1062 return 0;
1063 }
1064 } else {
1065 SkASSERT(w && h);
1066
1067 VkBuffer buffer;
1068 VkBufferCreateInfo bufInfo;
1069 memset(&bufInfo, 0, sizeof(VkBufferCreateInfo));
1070 bufInfo.sType = VK_STRUCTURE_TYPE_BUFFER_CREATE_INFO;
1071 bufInfo.flags = 0;
1072 bufInfo.size = rowCopyBytes * h;
1073 bufInfo.usage = VK_BUFFER_USAGE_TRANSFER_SRC_BIT;
1074 bufInfo.sharingMode = VK_SHARING_MODE_EXCLUSIVE;
1075 bufInfo.queueFamilyIndexCount = 0;
1076 bufInfo.pQueueFamilyIndices = nullptr;
1077 VkResult err;
1078 err = VK_CALL(CreateBuffer(fDevice, &bufInfo, nullptr, &buffer));
1079
Greg Daniel164a9f02016-02-22 09:56:40 -05001080 if (err) {
jvanverth6b6ffc42016-06-13 14:28:07 -07001081 GrVkMemory::FreeImageMemory(this, linearTiling, alloc);
egdaniel3602d4f2016-08-12 11:58:53 -07001082 VK_CALL(DestroyImage(fDevice, image, nullptr));
Greg Daniel164a9f02016-02-22 09:56:40 -05001083 return 0;
1084 }
1085
egdaniel3602d4f2016-08-12 11:58:53 -07001086 GrVkAlloc bufferAlloc = { VK_NULL_HANDLE, 0, 0 };
1087 if (!GrVkMemory::AllocAndBindBufferMemory(this, buffer, GrVkBuffer::kCopyRead_Type,
1088 true, &bufferAlloc)) {
1089 GrVkMemory::FreeImageMemory(this, linearTiling, alloc);
1090 VK_CALL(DestroyImage(fDevice, image, nullptr));
1091 VK_CALL(DestroyBuffer(fDevice, buffer, nullptr));
1092 return 0;
Greg Daniel164a9f02016-02-22 09:56:40 -05001093 }
egdaniel3602d4f2016-08-12 11:58:53 -07001094
1095 if (!copy_testing_data(this, srcData, &bufferAlloc, rowCopyBytes, rowCopyBytes, h)) {
1096 GrVkMemory::FreeImageMemory(this, linearTiling, alloc);
1097 VK_CALL(DestroyImage(fDevice, image, nullptr));
1098 GrVkMemory::FreeBufferMemory(this, GrVkBuffer::kCopyRead_Type, bufferAlloc);
1099 VK_CALL(DestroyBuffer(fDevice, buffer, nullptr));
1100 return 0;
1101 }
1102
1103 const VkCommandBufferAllocateInfo cmdInfo = {
1104 VK_STRUCTURE_TYPE_COMMAND_BUFFER_ALLOCATE_INFO, // sType
1105 NULL, // pNext
1106 fCmdPool, // commandPool
1107 VK_COMMAND_BUFFER_LEVEL_PRIMARY, // level
1108 1 // bufferCount
1109 };
1110
1111 VkCommandBuffer cmdBuffer;
1112 err = VK_CALL(AllocateCommandBuffers(fDevice, &cmdInfo, &cmdBuffer));
1113 if (err) {
1114 GrVkMemory::FreeImageMemory(this, linearTiling, alloc);
1115 VK_CALL(DestroyImage(fDevice, image, nullptr));
1116 GrVkMemory::FreeBufferMemory(this, GrVkBuffer::kCopyRead_Type, bufferAlloc);
1117 VK_CALL(DestroyBuffer(fDevice, buffer, nullptr));
1118 return 0;
1119 }
1120
1121 VkCommandBufferBeginInfo cmdBufferBeginInfo;
1122 memset(&cmdBufferBeginInfo, 0, sizeof(VkCommandBufferBeginInfo));
1123 cmdBufferBeginInfo.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO;
1124 cmdBufferBeginInfo.pNext = nullptr;
1125 cmdBufferBeginInfo.flags = VK_COMMAND_BUFFER_USAGE_ONE_TIME_SUBMIT_BIT;
1126 cmdBufferBeginInfo.pInheritanceInfo = nullptr;
1127
1128 err = VK_CALL(BeginCommandBuffer(cmdBuffer, &cmdBufferBeginInfo));
1129 SkASSERT(!err);
1130
1131 // Set image layout and add barrier
1132 VkImageMemoryBarrier barrier;
1133 memset(&barrier, 0, sizeof(VkImageMemoryBarrier));
1134 barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
1135 barrier.pNext = nullptr;
1136 barrier.srcAccessMask = GrVkMemory::LayoutToSrcAccessMask(initialLayout);
1137 barrier.dstAccessMask = VK_ACCESS_TRANSFER_WRITE_BIT;
1138 barrier.newLayout = VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL;
1139 barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
1140 barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
1141 barrier.image = image;
1142 barrier.subresourceRange = { VK_IMAGE_ASPECT_COLOR_BIT, 0, 1, 0 , 1};
1143
1144 VK_CALL(CmdPipelineBarrier(cmdBuffer,
1145 GrVkMemory::LayoutToPipelineStageFlags(initialLayout),
1146 VK_PIPELINE_STAGE_TRANSFER_BIT,
1147 0,
1148 0, nullptr,
1149 0, nullptr,
1150 1, &barrier));
1151 initialLayout = VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL;
1152
1153 // Make sure buffer has finished the unmap
1154 VkBufferMemoryBarrier bufBarrier;
1155 memset(&barrier, 0, sizeof(VkImageMemoryBarrier));
1156 bufBarrier.sType = VK_STRUCTURE_TYPE_BUFFER_MEMORY_BARRIER;
1157 bufBarrier.pNext = nullptr;
1158 bufBarrier.srcAccessMask = VK_ACCESS_HOST_WRITE_BIT;
1159 bufBarrier.dstAccessMask = VK_ACCESS_TRANSFER_READ_BIT;
1160 bufBarrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
1161 bufBarrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
1162 bufBarrier.buffer = buffer;
1163 bufBarrier.offset = 0;
1164 bufBarrier.size = bufInfo.size;
1165
1166 VK_CALL(CmdPipelineBarrier(cmdBuffer,
1167 VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT,
1168 VK_PIPELINE_STAGE_TRANSFER_BIT,
1169 0,
1170 0, nullptr,
1171 1, &bufBarrier,
1172 0, nullptr));
1173
1174 // Submit copy command
1175 VkBufferImageCopy region;
1176 memset(&region, 0, sizeof(VkBufferImageCopy));
1177 region.bufferOffset = 0;
egdaniela95d46b2016-08-15 08:06:29 -07001178 region.bufferRowLength = w;
egdaniel3602d4f2016-08-12 11:58:53 -07001179 region.bufferImageHeight = h;
1180 region.imageSubresource = { VK_IMAGE_ASPECT_COLOR_BIT, 0, 0, 1 };
1181 region.imageOffset = { 0, 0, 0 };
1182 region.imageExtent = { (uint32_t)w, (uint32_t)h, 1 };
1183
1184 VK_CALL(CmdCopyBufferToImage(cmdBuffer, buffer, image, initialLayout, 1, &region));
1185
1186 // End CommandBuffer
1187 err = VK_CALL(EndCommandBuffer(cmdBuffer));
1188 SkASSERT(!err);
1189
1190 // Create Fence for queue
1191 VkFence fence;
1192 VkFenceCreateInfo fenceInfo;
1193 memset(&fenceInfo, 0, sizeof(VkFenceCreateInfo));
1194 fenceInfo.sType = VK_STRUCTURE_TYPE_FENCE_CREATE_INFO;
1195
1196 err = VK_CALL(CreateFence(fDevice, &fenceInfo, nullptr, &fence));
1197 SkASSERT(!err);
1198
1199 VkSubmitInfo submitInfo;
1200 memset(&submitInfo, 0, sizeof(VkSubmitInfo));
1201 submitInfo.sType = VK_STRUCTURE_TYPE_SUBMIT_INFO;
1202 submitInfo.pNext = nullptr;
1203 submitInfo.waitSemaphoreCount = 0;
1204 submitInfo.pWaitSemaphores = nullptr;
1205 submitInfo.pWaitDstStageMask = 0;
1206 submitInfo.commandBufferCount = 1;
1207 submitInfo.pCommandBuffers = &cmdBuffer;
1208 submitInfo.signalSemaphoreCount = 0;
1209 submitInfo.pSignalSemaphores = nullptr;
1210 err = VK_CALL(QueueSubmit(this->queue(), 1, &submitInfo, fence));
1211 SkASSERT(!err);
1212
1213 err = VK_CALL(WaitForFences(fDevice, 1, &fence, true, UINT64_MAX));
1214 if (VK_TIMEOUT == err) {
1215 GrVkMemory::FreeImageMemory(this, linearTiling, alloc);
1216 VK_CALL(DestroyImage(fDevice, image, nullptr));
1217 GrVkMemory::FreeBufferMemory(this, GrVkBuffer::kCopyRead_Type, bufferAlloc);
1218 VK_CALL(DestroyBuffer(fDevice, buffer, nullptr));
1219 VK_CALL(FreeCommandBuffers(fDevice, fCmdPool, 1, &cmdBuffer));
1220 VK_CALL(DestroyFence(fDevice, fence, nullptr));
1221 SkDebugf("Fence failed to signal: %d\n", err);
1222 SkFAIL("failing");
1223 }
1224 SkASSERT(!err);
1225
1226 // Clean up transfer resources
1227 GrVkMemory::FreeBufferMemory(this, GrVkBuffer::kCopyRead_Type, bufferAlloc);
1228 VK_CALL(DestroyBuffer(fDevice, buffer, nullptr));
1229 VK_CALL(FreeCommandBuffers(fDevice, fCmdPool, 1, &cmdBuffer));
1230 VK_CALL(DestroyFence(fDevice, fence, nullptr));
Greg Daniel164a9f02016-02-22 09:56:40 -05001231 }
1232 }
1233
egdanielb2df0c22016-05-13 11:30:37 -07001234 GrVkImageInfo* info = new GrVkImageInfo;
jvanverthfd359ca2016-03-18 11:57:24 -07001235 info->fImage = image;
1236 info->fAlloc = alloc;
1237 info->fImageTiling = imageTiling;
1238 info->fImageLayout = initialLayout;
egdaniel58a8d922016-04-21 08:03:10 -07001239 info->fFormat = pixelFormat;
jvanverth2af0f1b2016-05-03 10:36:49 -07001240 info->fLevelCount = 1;
jvanverthfd359ca2016-03-18 11:57:24 -07001241
1242 return (GrBackendObject)info;
Greg Daniel164a9f02016-02-22 09:56:40 -05001243}
1244
1245bool GrVkGpu::isTestingOnlyBackendTexture(GrBackendObject id) const {
egdanielb2df0c22016-05-13 11:30:37 -07001246 const GrVkImageInfo* backend = reinterpret_cast<const GrVkImageInfo*>(id);
Greg Daniel164a9f02016-02-22 09:56:40 -05001247
jvanverth1e305ba2016-06-01 09:39:15 -07001248 if (backend && backend->fImage && backend->fAlloc.fMemory) {
Greg Daniel164a9f02016-02-22 09:56:40 -05001249 VkMemoryRequirements req;
1250 memset(&req, 0, sizeof(req));
1251 GR_VK_CALL(this->vkInterface(), GetImageMemoryRequirements(fDevice,
1252 backend->fImage,
1253 &req));
1254 // TODO: find a better check
1255 // This will probably fail with a different driver
1256 return (req.size > 0) && (req.size <= 8192 * 8192);
1257 }
1258
1259 return false;
1260}
1261
1262void GrVkGpu::deleteTestingOnlyBackendTexture(GrBackendObject id, bool abandon) {
jvanverth6b6ffc42016-06-13 14:28:07 -07001263 GrVkImageInfo* backend = reinterpret_cast<GrVkImageInfo*>(id);
Greg Daniel164a9f02016-02-22 09:56:40 -05001264 if (backend) {
1265 if (!abandon) {
jvanverthfd359ca2016-03-18 11:57:24 -07001266 // something in the command buffer may still be using this, so force submit
1267 this->submitCommandBuffer(kForce_SyncQueue);
jvanverth6b6ffc42016-06-13 14:28:07 -07001268 GrVkImage::DestroyImageInfo(this, backend);
Greg Daniel164a9f02016-02-22 09:56:40 -05001269 }
jvanverthfd359ca2016-03-18 11:57:24 -07001270 delete backend;
Greg Daniel164a9f02016-02-22 09:56:40 -05001271 }
1272}
1273
1274////////////////////////////////////////////////////////////////////////////////
1275
1276void GrVkGpu::addMemoryBarrier(VkPipelineStageFlags srcStageMask,
1277 VkPipelineStageFlags dstStageMask,
1278 bool byRegion,
1279 VkMemoryBarrier* barrier) const {
1280 SkASSERT(fCurrentCmdBuffer);
1281 fCurrentCmdBuffer->pipelineBarrier(this,
1282 srcStageMask,
1283 dstStageMask,
1284 byRegion,
1285 GrVkCommandBuffer::kMemory_BarrierType,
1286 barrier);
1287}
1288
1289void GrVkGpu::addBufferMemoryBarrier(VkPipelineStageFlags srcStageMask,
1290 VkPipelineStageFlags dstStageMask,
1291 bool byRegion,
1292 VkBufferMemoryBarrier* barrier) const {
1293 SkASSERT(fCurrentCmdBuffer);
1294 fCurrentCmdBuffer->pipelineBarrier(this,
1295 srcStageMask,
1296 dstStageMask,
1297 byRegion,
1298 GrVkCommandBuffer::kBufferMemory_BarrierType,
1299 barrier);
1300}
1301
1302void GrVkGpu::addImageMemoryBarrier(VkPipelineStageFlags srcStageMask,
1303 VkPipelineStageFlags dstStageMask,
1304 bool byRegion,
1305 VkImageMemoryBarrier* barrier) const {
1306 SkASSERT(fCurrentCmdBuffer);
1307 fCurrentCmdBuffer->pipelineBarrier(this,
1308 srcStageMask,
1309 dstStageMask,
1310 byRegion,
1311 GrVkCommandBuffer::kImageMemory_BarrierType,
1312 barrier);
1313}
1314
1315void GrVkGpu::finishDrawTarget() {
1316 // Submit the current command buffer to the Queue
1317 this->submitCommandBuffer(kSkip_SyncQueue);
1318}
1319
egdaniel3d5d9ac2016-03-01 12:56:15 -08001320void GrVkGpu::clearStencil(GrRenderTarget* target) {
1321 if (nullptr == target) {
1322 return;
1323 }
1324 GrStencilAttachment* stencil = target->renderTargetPriv().getStencilAttachment();
1325 GrVkStencilAttachment* vkStencil = (GrVkStencilAttachment*)stencil;
1326
1327
1328 VkClearDepthStencilValue vkStencilColor;
1329 memset(&vkStencilColor, 0, sizeof(VkClearDepthStencilValue));
1330
egdaniel3d5d9ac2016-03-01 12:56:15 -08001331 vkStencil->setImageLayout(this,
1332 VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL,
jvanverth50c46c72016-05-06 12:31:28 -07001333 VK_ACCESS_TRANSFER_WRITE_BIT,
1334 VK_PIPELINE_STAGE_TRANSFER_BIT,
egdaniel3d5d9ac2016-03-01 12:56:15 -08001335 false);
1336
egdaniel3d5d9ac2016-03-01 12:56:15 -08001337 VkImageSubresourceRange subRange;
1338 memset(&subRange, 0, sizeof(VkImageSubresourceRange));
1339 subRange.aspectMask = VK_IMAGE_ASPECT_STENCIL_BIT;
1340 subRange.baseMipLevel = 0;
1341 subRange.levelCount = 1;
1342 subRange.baseArrayLayer = 0;
1343 subRange.layerCount = 1;
1344
1345 // TODO: I imagine that most times we want to clear a stencil it will be at the beginning of a
1346 // draw. Thus we should look into using the load op functions on the render pass to clear out
1347 // the stencil there.
1348 fCurrentCmdBuffer->clearDepthStencilImage(this, vkStencil, &vkStencilColor, 1, &subRange);
1349}
1350
Greg Daniel164a9f02016-02-22 09:56:40 -05001351inline bool can_copy_image(const GrSurface* dst,
1352 const GrSurface* src,
1353 const GrVkGpu* gpu) {
egdaniel17b89252016-04-05 07:23:38 -07001354 // Currently we don't support msaa
1355 if ((dst->asRenderTarget() && dst->asRenderTarget()->numColorSamples() > 1) ||
1356 (src->asRenderTarget() && src->asRenderTarget()->numColorSamples() > 1)) {
1357 return false;
1358 }
1359
1360 // We require that all vulkan GrSurfaces have been created with transfer_dst and transfer_src
1361 // as image usage flags.
1362 if (src->origin() == dst->origin() &&
1363 GrBytesPerPixel(src->config()) == GrBytesPerPixel(dst->config())) {
Greg Daniel164a9f02016-02-22 09:56:40 -05001364 return true;
1365 }
1366
1367 // How does msaa play into this? If a VkTexture is multisampled, are we copying the multisampled
egdaniel17b89252016-04-05 07:23:38 -07001368 // or the resolved image here? Im multisampled, Vulkan requires sample counts to be the same.
Greg Daniel164a9f02016-02-22 09:56:40 -05001369
1370 return false;
1371}
1372
1373void GrVkGpu::copySurfaceAsCopyImage(GrSurface* dst,
1374 GrSurface* src,
egdaniel17b89252016-04-05 07:23:38 -07001375 GrVkImage* dstImage,
1376 GrVkImage* srcImage,
Greg Daniel164a9f02016-02-22 09:56:40 -05001377 const SkIRect& srcRect,
1378 const SkIPoint& dstPoint) {
1379 SkASSERT(can_copy_image(dst, src, this));
1380
Greg Daniel164a9f02016-02-22 09:56:40 -05001381 // These flags are for flushing/invalidating caches and for the dst image it doesn't matter if
1382 // the cache is flushed since it is only being written to.
egdaniel17b89252016-04-05 07:23:38 -07001383 dstImage->setImageLayout(this,
jvanverth50c46c72016-05-06 12:31:28 -07001384 VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL,
1385 VK_ACCESS_TRANSFER_WRITE_BIT,
1386 VK_PIPELINE_STAGE_TRANSFER_BIT,
1387 false);
Greg Daniel164a9f02016-02-22 09:56:40 -05001388
egdaniel17b89252016-04-05 07:23:38 -07001389 srcImage->setImageLayout(this,
1390 VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL,
jvanverth50c46c72016-05-06 12:31:28 -07001391 VK_ACCESS_TRANSFER_READ_BIT,
1392 VK_PIPELINE_STAGE_TRANSFER_BIT,
egdaniel17b89252016-04-05 07:23:38 -07001393 false);
Greg Daniel164a9f02016-02-22 09:56:40 -05001394
1395 // Flip rect if necessary
1396 SkIRect srcVkRect = srcRect;
1397 int32_t dstY = dstPoint.fY;
1398
1399 if (kBottomLeft_GrSurfaceOrigin == src->origin()) {
1400 SkASSERT(kBottomLeft_GrSurfaceOrigin == dst->origin());
1401 srcVkRect.fTop = src->height() - srcRect.fBottom;
1402 srcVkRect.fBottom = src->height() - srcRect.fTop;
1403 dstY = dst->height() - dstPoint.fY - srcVkRect.height();
1404 }
1405
1406 VkImageCopy copyRegion;
1407 memset(&copyRegion, 0, sizeof(VkImageCopy));
1408 copyRegion.srcSubresource = { VK_IMAGE_ASPECT_COLOR_BIT, 0, 0, 1 };
1409 copyRegion.srcOffset = { srcVkRect.fLeft, srcVkRect.fTop, 0 };
1410 copyRegion.dstSubresource = { VK_IMAGE_ASPECT_COLOR_BIT, 0, 0, 1 };
1411 copyRegion.dstOffset = { dstPoint.fX, dstY, 0 };
egdanielc355bc82016-04-27 11:31:59 -07001412 // The depth value of the extent is ignored according the vulkan spec for 2D images. However, on
1413 // at least the nexus 5X it seems to be checking it. Thus as a working around we must have the
1414 // depth value be 1.
1415 copyRegion.extent = { (uint32_t)srcVkRect.width(), (uint32_t)srcVkRect.height(), 1 };
Greg Daniel164a9f02016-02-22 09:56:40 -05001416
1417 fCurrentCmdBuffer->copyImage(this,
egdaniel17b89252016-04-05 07:23:38 -07001418 srcImage,
Greg Daniel164a9f02016-02-22 09:56:40 -05001419 VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL,
egdaniel17b89252016-04-05 07:23:38 -07001420 dstImage,
Greg Daniel164a9f02016-02-22 09:56:40 -05001421 VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL,
1422 1,
1423 &copyRegion);
jvanverth900bd4a2016-04-29 13:53:12 -07001424
1425 SkIRect dstRect = SkIRect::MakeXYWH(dstPoint.fX, dstPoint.fY,
1426 srcRect.width(), srcRect.height());
1427 this->didWriteToSurface(dst, &dstRect);
Greg Daniel164a9f02016-02-22 09:56:40 -05001428}
1429
egdaniel17b89252016-04-05 07:23:38 -07001430inline bool can_copy_as_blit(const GrSurface* dst,
1431 const GrSurface* src,
1432 const GrVkImage* dstImage,
1433 const GrVkImage* srcImage,
1434 const GrVkGpu* gpu) {
1435 // We require that all vulkan GrSurfaces have been created with transfer_dst and transfer_src
1436 // as image usage flags.
1437 const GrVkCaps& caps = gpu->vkCaps();
1438 if (!caps.configCanBeDstofBlit(dst->config(), dstImage->isLinearTiled()) ||
1439 !caps.configCanBeSrcofBlit(src->config(), srcImage->isLinearTiled())) {
1440 return false;
1441 }
1442
1443 // We cannot blit images that are multisampled. Will need to figure out if we can blit the
1444 // resolved msaa though.
1445 if ((dst->asRenderTarget() && dst->asRenderTarget()->numColorSamples() > 1) ||
1446 (src->asRenderTarget() && src->asRenderTarget()->numColorSamples() > 1)) {
1447 return false;
1448 }
1449
1450 return true;
1451}
1452
1453void GrVkGpu::copySurfaceAsBlit(GrSurface* dst,
1454 GrSurface* src,
1455 GrVkImage* dstImage,
1456 GrVkImage* srcImage,
1457 const SkIRect& srcRect,
1458 const SkIPoint& dstPoint) {
1459 SkASSERT(can_copy_as_blit(dst, src, dstImage, srcImage, this));
1460
egdaniel17b89252016-04-05 07:23:38 -07001461 dstImage->setImageLayout(this,
1462 VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL,
jvanverth50c46c72016-05-06 12:31:28 -07001463 VK_ACCESS_TRANSFER_WRITE_BIT,
1464 VK_PIPELINE_STAGE_TRANSFER_BIT,
egdaniel17b89252016-04-05 07:23:38 -07001465 false);
1466
egdaniel17b89252016-04-05 07:23:38 -07001467 srcImage->setImageLayout(this,
1468 VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL,
jvanverth50c46c72016-05-06 12:31:28 -07001469 VK_ACCESS_TRANSFER_READ_BIT,
1470 VK_PIPELINE_STAGE_TRANSFER_BIT,
egdaniel17b89252016-04-05 07:23:38 -07001471 false);
1472
1473 // Flip rect if necessary
1474 SkIRect srcVkRect;
egdaniel8af936d2016-04-07 10:17:47 -07001475 srcVkRect.fLeft = srcRect.fLeft;
1476 srcVkRect.fRight = srcRect.fRight;
egdaniel17b89252016-04-05 07:23:38 -07001477 SkIRect dstRect;
1478 dstRect.fLeft = dstPoint.fX;
egdaniel8af936d2016-04-07 10:17:47 -07001479 dstRect.fRight = dstPoint.fX + srcRect.width();
egdaniel17b89252016-04-05 07:23:38 -07001480
1481 if (kBottomLeft_GrSurfaceOrigin == src->origin()) {
1482 srcVkRect.fTop = src->height() - srcRect.fBottom;
1483 srcVkRect.fBottom = src->height() - srcRect.fTop;
1484 } else {
egdaniel8af936d2016-04-07 10:17:47 -07001485 srcVkRect.fTop = srcRect.fTop;
1486 srcVkRect.fBottom = srcRect.fBottom;
egdaniel17b89252016-04-05 07:23:38 -07001487 }
1488
1489 if (kBottomLeft_GrSurfaceOrigin == dst->origin()) {
1490 dstRect.fTop = dst->height() - dstPoint.fY - srcVkRect.height();
1491 } else {
1492 dstRect.fTop = dstPoint.fY;
1493 }
1494 dstRect.fBottom = dstRect.fTop + srcVkRect.height();
1495
1496 // If we have different origins, we need to flip the top and bottom of the dst rect so that we
1497 // get the correct origintation of the copied data.
1498 if (src->origin() != dst->origin()) {
1499 SkTSwap(dstRect.fTop, dstRect.fBottom);
1500 }
1501
1502 VkImageBlit blitRegion;
1503 memset(&blitRegion, 0, sizeof(VkImageBlit));
1504 blitRegion.srcSubresource = { VK_IMAGE_ASPECT_COLOR_BIT, 0, 0, 1 };
1505 blitRegion.srcOffsets[0] = { srcVkRect.fLeft, srcVkRect.fTop, 0 };
1506 blitRegion.srcOffsets[1] = { srcVkRect.fRight, srcVkRect.fBottom, 0 };
1507 blitRegion.dstSubresource = { VK_IMAGE_ASPECT_COLOR_BIT, 0, 0, 1 };
1508 blitRegion.dstOffsets[0] = { dstRect.fLeft, dstRect.fTop, 0 };
1509 blitRegion.dstOffsets[1] = { dstRect.fRight, dstRect.fBottom, 0 };
1510
1511 fCurrentCmdBuffer->blitImage(this,
egdanielb2df0c22016-05-13 11:30:37 -07001512 *srcImage,
1513 *dstImage,
egdaniel17b89252016-04-05 07:23:38 -07001514 1,
1515 &blitRegion,
1516 VK_FILTER_NEAREST); // We never scale so any filter works here
jvanverth900bd4a2016-04-29 13:53:12 -07001517
1518 this->didWriteToSurface(dst, &dstRect);
egdaniel17b89252016-04-05 07:23:38 -07001519}
1520
Greg Daniel164a9f02016-02-22 09:56:40 -05001521inline bool can_copy_as_draw(const GrSurface* dst,
1522 const GrSurface* src,
1523 const GrVkGpu* gpu) {
1524 return false;
1525}
1526
1527void GrVkGpu::copySurfaceAsDraw(GrSurface* dst,
1528 GrSurface* src,
1529 const SkIRect& srcRect,
1530 const SkIPoint& dstPoint) {
1531 SkASSERT(false);
1532}
1533
1534bool GrVkGpu::onCopySurface(GrSurface* dst,
1535 GrSurface* src,
1536 const SkIRect& srcRect,
1537 const SkIPoint& dstPoint) {
egdaniel17b89252016-04-05 07:23:38 -07001538 GrVkImage* dstImage;
1539 GrVkImage* srcImage;
1540 if (dst->asTexture()) {
1541 dstImage = static_cast<GrVkTexture*>(dst->asTexture());
1542 } else {
1543 SkASSERT(dst->asRenderTarget());
1544 dstImage = static_cast<GrVkRenderTarget*>(dst->asRenderTarget());
1545 }
1546 if (src->asTexture()) {
1547 srcImage = static_cast<GrVkTexture*>(src->asTexture());
1548 } else {
1549 SkASSERT(src->asRenderTarget());
1550 srcImage = static_cast<GrVkRenderTarget*>(src->asRenderTarget());
1551 }
1552
Greg Daniel164a9f02016-02-22 09:56:40 -05001553 if (can_copy_image(dst, src, this)) {
egdaniel17b89252016-04-05 07:23:38 -07001554 this->copySurfaceAsCopyImage(dst, src, dstImage, srcImage, srcRect, dstPoint);
1555 return true;
1556 }
1557
1558 if (can_copy_as_blit(dst, src, dstImage, srcImage, this)) {
1559 this->copySurfaceAsBlit(dst, src, dstImage, srcImage, srcRect, dstPoint);
Greg Daniel164a9f02016-02-22 09:56:40 -05001560 return true;
1561 }
1562
1563 if (can_copy_as_draw(dst, src, this)) {
1564 this->copySurfaceAsDraw(dst, src, srcRect, dstPoint);
1565 return true;
1566 }
1567
1568 return false;
1569}
1570
egdaniel37798fb2016-04-12 07:31:49 -07001571bool GrVkGpu::initCopySurfaceDstDesc(const GrSurface* src, GrSurfaceDesc* desc) const {
1572 // Currently we don't support msaa
1573 if (src->asRenderTarget() && src->asRenderTarget()->numColorSamples() > 1) {
1574 return false;
1575 }
1576
1577 // This will support copying the dst as CopyImage since all of our surfaces require transferSrc
1578 // and transferDst usage flags in Vulkan.
1579 desc->fOrigin = src->origin();
1580 desc->fConfig = src->config();
1581 desc->fFlags = kNone_GrSurfaceFlags;
1582 return true;
1583}
1584
cdalton28f45b92016-03-07 13:58:26 -08001585void GrVkGpu::onGetMultisampleSpecs(GrRenderTarget* rt, const GrStencilSettings&,
csmartdalton0d28e572016-07-06 09:59:43 -07001586 int* effectiveSampleCnt, SamplePattern*) {
cdalton28f45b92016-03-07 13:58:26 -08001587 // TODO: stub.
1588 SkASSERT(!this->caps()->sampleLocationsSupport());
1589 *effectiveSampleCnt = rt->desc().fSampleCnt;
1590}
1591
Greg Daniel164a9f02016-02-22 09:56:40 -05001592bool GrVkGpu::onGetReadPixelsInfo(GrSurface* srcSurface, int width, int height, size_t rowBytes,
1593 GrPixelConfig readConfig, DrawPreference* drawPreference,
1594 ReadPixelTempDrawInfo* tempDrawInfo) {
egdaniel88e8aef2016-06-27 14:34:55 -07001595 // These settings we will always want if a temp draw is performed.
1596 tempDrawInfo->fTempSurfaceDesc.fFlags = kRenderTarget_GrSurfaceFlag;
1597 tempDrawInfo->fTempSurfaceDesc.fWidth = width;
1598 tempDrawInfo->fTempSurfaceDesc.fHeight = height;
1599 tempDrawInfo->fTempSurfaceDesc.fSampleCnt = 0;
1600 tempDrawInfo->fTempSurfaceDesc.fOrigin = kTopLeft_GrSurfaceOrigin; // no CPU y-flip for TL.
bsalomonb117ff12016-07-19 07:24:40 -07001601 tempDrawInfo->fTempSurfaceFit = SkBackingFit::kApprox;
egdaniel88e8aef2016-06-27 14:34:55 -07001602
1603 // For now assume no swizzling, we may change that below.
1604 tempDrawInfo->fSwizzle = GrSwizzle::RGBA();
1605
1606 // Depends on why we need/want a temp draw. Start off assuming no change, the surface we read
1607 // from will be srcConfig and we will read readConfig pixels from it.
1608 // Not that if we require a draw and return a non-renderable format for the temp surface the
1609 // base class will fail for us.
1610 tempDrawInfo->fTempSurfaceDesc.fConfig = srcSurface->config();
1611 tempDrawInfo->fReadConfig = readConfig;
1612
egdaniel4583ec52016-06-27 12:57:00 -07001613 if (srcSurface->config() == readConfig) {
1614 return true;
Greg Daniel164a9f02016-02-22 09:56:40 -05001615 }
1616
egdaniel4583ec52016-06-27 12:57:00 -07001617 if (this->vkCaps().isConfigRenderable(readConfig, false)) {
1618 ElevateDrawPreference(drawPreference, kRequireDraw_DrawPreference);
1619 tempDrawInfo->fTempSurfaceDesc.fConfig = readConfig;
1620 tempDrawInfo->fReadConfig = readConfig;
1621 return true;
Greg Daniel164a9f02016-02-22 09:56:40 -05001622 }
1623
egdaniel4583ec52016-06-27 12:57:00 -07001624 return false;
Greg Daniel164a9f02016-02-22 09:56:40 -05001625}
1626
1627bool GrVkGpu::onReadPixels(GrSurface* surface,
1628 int left, int top, int width, int height,
1629 GrPixelConfig config,
1630 void* buffer,
1631 size_t rowBytes) {
1632 VkFormat pixelFormat;
1633 if (!GrPixelConfigToVkFormat(config, &pixelFormat)) {
1634 return false;
1635 }
1636
1637 GrVkTexture* tgt = static_cast<GrVkTexture*>(surface->asTexture());
1638 if (!tgt) {
1639 return false;
1640 }
1641
1642 // Change layout of our target so it can be used as copy
Greg Daniel164a9f02016-02-22 09:56:40 -05001643 tgt->setImageLayout(this,
1644 VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL,
jvanverth50c46c72016-05-06 12:31:28 -07001645 VK_ACCESS_TRANSFER_READ_BIT,
1646 VK_PIPELINE_STAGE_TRANSFER_BIT,
Greg Daniel164a9f02016-02-22 09:56:40 -05001647 false);
1648
halcanary9d524f22016-03-29 09:03:52 -07001649 GrVkTransferBuffer* transferBuffer =
cdaltone2e71c22016-04-07 18:13:29 -07001650 static_cast<GrVkTransferBuffer*>(this->createBuffer(rowBytes * height,
1651 kXferGpuToCpu_GrBufferType,
cdalton397536c2016-03-25 12:15:03 -07001652 kStream_GrAccessPattern));
Greg Daniel164a9f02016-02-22 09:56:40 -05001653
1654 bool flipY = kBottomLeft_GrSurfaceOrigin == surface->origin();
1655 VkOffset3D offset = {
1656 left,
1657 flipY ? surface->height() - top - height : top,
1658 0
1659 };
1660
1661 // Copy the image to a buffer so we can map it to cpu memory
1662 VkBufferImageCopy region;
1663 memset(&region, 0, sizeof(VkBufferImageCopy));
jvanverthdb379092016-07-07 11:18:46 -07001664 region.bufferOffset = transferBuffer->offset();
egdaniel88e8aef2016-06-27 14:34:55 -07001665 region.bufferRowLength = 0; // Forces RowLength to be width. We handle the rowBytes below.
Greg Daniel164a9f02016-02-22 09:56:40 -05001666 region.bufferImageHeight = 0; // Forces height to be tightly packed. Only useful for 3d images.
1667 region.imageSubresource = { VK_IMAGE_ASPECT_COLOR_BIT, 0, 0, 1 };
1668 region.imageOffset = offset;
1669 region.imageExtent = { (uint32_t)width, (uint32_t)height, 1 };
1670
1671 fCurrentCmdBuffer->copyImageToBuffer(this,
1672 tgt,
1673 VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL,
1674 transferBuffer,
1675 1,
1676 &region);
1677
1678 // make sure the copy to buffer has finished
1679 transferBuffer->addMemoryBarrier(this,
1680 VK_ACCESS_TRANSFER_WRITE_BIT,
1681 VK_ACCESS_HOST_READ_BIT,
1682 VK_PIPELINE_STAGE_TRANSFER_BIT,
1683 VK_PIPELINE_STAGE_HOST_BIT,
1684 false);
1685
1686 // We need to submit the current command buffer to the Queue and make sure it finishes before
1687 // we can copy the data out of the buffer.
1688 this->submitCommandBuffer(kForce_SyncQueue);
1689
1690 void* mappedMemory = transferBuffer->map();
1691
egdaniel88e8aef2016-06-27 14:34:55 -07001692 size_t tightRowBytes = GrBytesPerPixel(config) * width;
1693 if (flipY) {
1694 const char* srcRow = reinterpret_cast<const char*>(mappedMemory);
1695 char* dstRow = reinterpret_cast<char*>(buffer)+(height - 1) * rowBytes;
1696 for (int y = 0; y < height; y++) {
1697 memcpy(dstRow, srcRow, tightRowBytes);
1698 srcRow += tightRowBytes;
1699 dstRow -= rowBytes;
1700 }
1701 } else {
1702 if (tightRowBytes == rowBytes) {
1703 memcpy(buffer, mappedMemory, rowBytes*height);
1704 } else {
1705 SkRectMemcpy(buffer, rowBytes, mappedMemory, tightRowBytes, tightRowBytes, height);
1706 }
1707 }
Greg Daniel164a9f02016-02-22 09:56:40 -05001708
1709 transferBuffer->unmap();
1710 transferBuffer->unref();
1711
Greg Daniel164a9f02016-02-22 09:56:40 -05001712 return true;
1713}
egdaniel066df7c2016-06-08 14:02:27 -07001714
egdaniel27bb2842016-07-07 11:58:35 -07001715// The RenderArea bounds we pass into BeginRenderPass must have a start x value that is a multiple
1716// of the granularity. The width must also be a multiple of the granularity or eaqual to the width
1717// the the entire attachment. Similar requirements for the y and height components.
1718void adjust_bounds_to_granularity(SkIRect* dstBounds, const SkIRect& srcBounds,
1719 const VkExtent2D& granularity, int maxWidth, int maxHeight) {
1720 // Adjust Width
1721 // Start with the right side of rect so we know if we end up going pass the maxWidth.
1722 int rightAdj = srcBounds.fRight % granularity.width;
1723 if (rightAdj != 0) {
1724 rightAdj = granularity.width - rightAdj;
1725 }
1726 dstBounds->fRight = srcBounds.fRight + rightAdj;
1727 if (dstBounds->fRight > maxWidth) {
1728 dstBounds->fRight = maxWidth;
1729 dstBounds->fLeft = 0;
1730 } else {
1731 dstBounds->fLeft = srcBounds.fLeft - srcBounds.fLeft % granularity.width;
1732 }
1733
1734 // Adjust height
1735 // Start with the bottom side of rect so we know if we end up going pass the maxHeight.
1736 int bottomAdj = srcBounds.fBottom % granularity.height;
1737 if (bottomAdj != 0) {
1738 bottomAdj = granularity.height - bottomAdj;
1739 }
1740 dstBounds->fBottom = srcBounds.fBottom + bottomAdj;
1741 if (dstBounds->fBottom > maxHeight) {
1742 dstBounds->fBottom = maxHeight;
1743 dstBounds->fTop = 0;
1744 } else {
1745 dstBounds->fTop = srcBounds.fTop - srcBounds.fTop % granularity.height;
1746 }
1747}
1748
jvanverth7ec92412016-07-06 09:24:57 -07001749void GrVkGpu::submitSecondaryCommandBuffer(GrVkSecondaryCommandBuffer* buffer,
egdaniel9cb63402016-06-23 08:37:05 -07001750 const GrVkRenderPass* renderPass,
1751 const VkClearValue* colorClear,
1752 GrVkRenderTarget* target,
1753 const SkIRect& bounds) {
egdaniele7d1b242016-07-01 08:06:45 -07001754 const SkIRect* pBounds = &bounds;
1755 SkIRect flippedBounds;
1756 if (kBottomLeft_GrSurfaceOrigin == target->origin()) {
1757 flippedBounds = bounds;
1758 flippedBounds.fTop = target->height() - bounds.fBottom;
1759 flippedBounds.fBottom = target->height() - bounds.fTop;
1760 pBounds = &flippedBounds;
1761 }
1762
egdaniel27bb2842016-07-07 11:58:35 -07001763 // The bounds we use for the render pass should be of the granularity supported
1764 // by the device.
1765 const VkExtent2D& granularity = renderPass->granularity();
1766 SkIRect adjustedBounds;
1767 if ((0 != granularity.width && 1 != granularity.width) ||
1768 (0 != granularity.height && 1 != granularity.height)) {
1769 adjust_bounds_to_granularity(&adjustedBounds, *pBounds, granularity,
1770 target->width(), target->height());
1771 pBounds = &adjustedBounds;
1772 }
1773
egdaniel9cb63402016-06-23 08:37:05 -07001774 // Currently it is fine for us to always pass in 1 for the clear count even if no attachment
1775 // uses it. In the current state, we also only use the LOAD_OP_CLEAR for the color attachment
1776 // which is always at the first attachment.
egdaniele7d1b242016-07-01 08:06:45 -07001777 fCurrentCmdBuffer->beginRenderPass(this, renderPass, 1, colorClear, *target, *pBounds, true);
egdaniel066df7c2016-06-08 14:02:27 -07001778 fCurrentCmdBuffer->executeCommands(this, buffer);
Greg Daniel164a9f02016-02-22 09:56:40 -05001779 fCurrentCmdBuffer->endRenderPass(this);
Greg Daniel164a9f02016-02-22 09:56:40 -05001780}
egdaniel9cb63402016-06-23 08:37:05 -07001781