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John Zulauf9cb530d2019-09-30 14:14:10 -06001/* Copyright (c) 2019 The Khronos Group Inc.
2 * Copyright (c) 2019 Valve Corporation
3 * Copyright (c) 2019 LunarG, Inc.
4 *
5 * Licensed under the Apache License, Version 2.0 (the "License");
6 * you may not use this file except in compliance with the License.
7 * You may obtain a copy of the License at
8 *
9 * http://www.apache.org/licenses/LICENSE-2.0
10 *
11 * Unless required by applicable law or agreed to in writing, software
12 * distributed under the License is distributed on an "AS IS" BASIS,
13 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14 * See the License for the specific language governing permissions and
15 * limitations under the License.
16 *
17 * Author: John Zulauf <jzulauf@lunarg.com>
18 */
19
20#include <limits>
21#include <vector>
locke-lunarg296a3c92020-03-25 01:04:29 -060022#include <memory>
23#include <bitset>
John Zulauf9cb530d2019-09-30 14:14:10 -060024#include "synchronization_validation.h"
25
26static const char *string_SyncHazardVUID(SyncHazard hazard) {
27 switch (hazard) {
28 case SyncHazard::NONE:
John Zulauf2f952d22020-02-10 11:34:51 -070029 return "SYNC-HAZARD-NONE";
John Zulauf9cb530d2019-09-30 14:14:10 -060030 break;
31 case SyncHazard::READ_AFTER_WRITE:
32 return "SYNC-HAZARD-READ_AFTER_WRITE";
33 break;
34 case SyncHazard::WRITE_AFTER_READ:
35 return "SYNC-HAZARD-WRITE_AFTER_READ";
36 break;
37 case SyncHazard::WRITE_AFTER_WRITE:
38 return "SYNC-HAZARD-WRITE_AFTER_WRITE";
39 break;
John Zulauf2f952d22020-02-10 11:34:51 -070040 case SyncHazard::READ_RACING_WRITE:
41 return "SYNC-HAZARD-READ-RACING-WRITE";
42 break;
43 case SyncHazard::WRITE_RACING_WRITE:
44 return "SYNC-HAZARD-WRITE-RACING-WRITE";
45 break;
46 case SyncHazard::WRITE_RACING_READ:
47 return "SYNC-HAZARD-WRITE-RACING-READ";
48 break;
John Zulauf9cb530d2019-09-30 14:14:10 -060049 default:
50 assert(0);
51 }
52 return "SYNC-HAZARD-INVALID";
53}
54
55static const char *string_SyncHazard(SyncHazard hazard) {
56 switch (hazard) {
57 case SyncHazard::NONE:
58 return "NONR";
59 break;
60 case SyncHazard::READ_AFTER_WRITE:
61 return "READ_AFTER_WRITE";
62 break;
63 case SyncHazard::WRITE_AFTER_READ:
64 return "WRITE_AFTER_READ";
65 break;
66 case SyncHazard::WRITE_AFTER_WRITE:
67 return "WRITE_AFTER_WRITE";
68 break;
John Zulauf2f952d22020-02-10 11:34:51 -070069 case SyncHazard::READ_RACING_WRITE:
70 return "READ_RACING_WRITE";
71 break;
72 case SyncHazard::WRITE_RACING_WRITE:
73 return "WRITE_RACING_WRITE";
74 break;
75 case SyncHazard::WRITE_RACING_READ:
76 return "WRITE_RACING_READ";
77 break;
John Zulauf9cb530d2019-09-30 14:14:10 -060078 default:
79 assert(0);
80 }
81 return "INVALID HAZARD";
82}
83
John Zulaufb027cdb2020-05-21 14:25:22 -060084static constexpr VkPipelineStageFlags kColorAttachmentExecScope = VK_PIPELINE_STAGE_COLOR_ATTACHMENT_OUTPUT_BIT;
85static constexpr SyncStageAccessFlags kColorAttachmentAccessScope =
86 SyncStageAccessFlagBits::SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_READ_BIT |
87 SyncStageAccessFlagBits::SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_READ_NONCOHERENT_BIT_EXT |
88 SyncStageAccessFlagBits::SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_WRITE_BIT;
89static constexpr VkPipelineStageFlags kDepthStencilAttachmentExecScope =
90 VK_PIPELINE_STAGE_EARLY_FRAGMENT_TESTS_BIT | VK_PIPELINE_STAGE_LATE_FRAGMENT_TESTS_BIT;
91static constexpr SyncStageAccessFlags kDepthStencilAttachmentAccessScope =
92 SyncStageAccessFlagBits::SYNC_EARLY_FRAGMENT_TESTS_DEPTH_STENCIL_ATTACHMENT_READ_BIT |
93 SyncStageAccessFlagBits::SYNC_EARLY_FRAGMENT_TESTS_DEPTH_STENCIL_ATTACHMENT_WRITE_BIT |
94 SyncStageAccessFlagBits::SYNC_LATE_FRAGMENT_TESTS_DEPTH_STENCIL_ATTACHMENT_READ_BIT |
95 SyncStageAccessFlagBits::SYNC_LATE_FRAGMENT_TESTS_DEPTH_STENCIL_ATTACHMENT_WRITE_BIT;
96
97static constexpr SyncOrderingBarrier kColorAttachmentRasterOrder = {kColorAttachmentExecScope, kColorAttachmentAccessScope};
98static constexpr SyncOrderingBarrier kDepthStencilAttachmentRasterOrder = {kDepthStencilAttachmentExecScope,
99 kDepthStencilAttachmentAccessScope};
100static constexpr SyncOrderingBarrier kAttachmentRasterOrder = {kDepthStencilAttachmentExecScope | kColorAttachmentExecScope,
101 kDepthStencilAttachmentAccessScope | kColorAttachmentAccessScope};
John Zulauf7635de32020-05-29 17:14:15 -0600102// Sometimes we have an internal access conflict, and we using the kCurrentCommandTag to set and detect in temporary/proxy contexts
103static const ResourceUsageTag kCurrentCommandTag(ResourceUsageTag::kMaxIndex);
John Zulaufb027cdb2020-05-21 14:25:22 -0600104
locke-lunarg3c038002020-04-30 23:08:08 -0600105inline VkDeviceSize GetRealWholeSize(VkDeviceSize offset, VkDeviceSize size, VkDeviceSize whole_size) {
106 if (size == VK_WHOLE_SIZE) {
107 return (whole_size - offset);
108 }
109 return size;
110}
111
John Zulauf16adfc92020-04-08 10:28:33 -0600112template <typename T>
John Zulauf355e49b2020-04-24 15:11:15 -0600113static ResourceAccessRange MakeRange(const T &has_offset_and_size) {
John Zulauf16adfc92020-04-08 10:28:33 -0600114 return ResourceAccessRange(has_offset_and_size.offset, (has_offset_and_size.offset + has_offset_and_size.size));
115}
116
John Zulauf355e49b2020-04-24 15:11:15 -0600117static ResourceAccessRange MakeRange(VkDeviceSize start, VkDeviceSize size) { return ResourceAccessRange(start, (start + size)); }
John Zulauf16adfc92020-04-08 10:28:33 -0600118
John Zulauf0cb5be22020-01-23 12:18:22 -0700119// Expand the pipeline stage without regard to whether the are valid w.r.t. queue or extension
120VkPipelineStageFlags ExpandPipelineStages(VkQueueFlags queue_flags, VkPipelineStageFlags stage_mask) {
121 VkPipelineStageFlags expanded = stage_mask;
122 if (VK_PIPELINE_STAGE_ALL_COMMANDS_BIT & stage_mask) {
123 expanded = expanded & ~VK_PIPELINE_STAGE_ALL_COMMANDS_BIT;
124 for (const auto &all_commands : syncAllCommandStagesByQueueFlags) {
125 if (all_commands.first & queue_flags) {
126 expanded |= all_commands.second;
127 }
128 }
129 }
130 if (VK_PIPELINE_STAGE_ALL_GRAPHICS_BIT & stage_mask) {
131 expanded = expanded & ~VK_PIPELINE_STAGE_ALL_GRAPHICS_BIT;
132 expanded |= syncAllCommandStagesByQueueFlags.at(VK_QUEUE_GRAPHICS_BIT) & ~VK_PIPELINE_STAGE_HOST_BIT;
133 }
134 return expanded;
135}
136
John Zulauf36bcf6a2020-02-03 15:12:52 -0700137VkPipelineStageFlags RelatedPipelineStages(VkPipelineStageFlags stage_mask,
138 std::map<VkPipelineStageFlagBits, VkPipelineStageFlags> &map) {
139 VkPipelineStageFlags unscanned = stage_mask;
140 VkPipelineStageFlags related = 0;
141 for (const auto entry : map) {
142 const auto stage = entry.first;
143 if (stage & unscanned) {
144 related = related | entry.second;
145 unscanned = unscanned & ~stage;
146 if (!unscanned) break;
147 }
148 }
149 return related;
150}
151
152VkPipelineStageFlags WithEarlierPipelineStages(VkPipelineStageFlags stage_mask) {
153 return stage_mask | RelatedPipelineStages(stage_mask, syncLogicallyEarlierStages);
154}
155
156VkPipelineStageFlags WithLaterPipelineStages(VkPipelineStageFlags stage_mask) {
157 return stage_mask | RelatedPipelineStages(stage_mask, syncLogicallyLaterStages);
158}
159
John Zulauf5c5e88d2019-12-26 11:22:02 -0700160static const ResourceAccessRange full_range(std::numeric_limits<VkDeviceSize>::min(), std::numeric_limits<VkDeviceSize>::max());
John Zulauf5c5e88d2019-12-26 11:22:02 -0700161
locke-lunargff255f92020-05-13 18:53:52 -0600162void GetBufferRange(VkDeviceSize &range_start, VkDeviceSize &range_size, VkDeviceSize offset, VkDeviceSize buf_whole_size,
163 uint32_t first_index, uint32_t count, VkDeviceSize stride) {
164 range_start = offset + first_index * stride;
165 range_size = 0;
166 if (count == UINT32_MAX) {
167 range_size = buf_whole_size - range_start;
168 } else {
169 range_size = count * stride;
170 }
171}
172
locke-lunarg654e3692020-06-04 17:19:15 -0600173SyncStageAccessIndex GetSyncStageAccessIndexsByDescriptorSet(VkDescriptorType descriptor_type, const interface_var &descriptor_data,
174 VkShaderStageFlagBits stage_flag) {
175 if (descriptor_type == VK_DESCRIPTOR_TYPE_INPUT_ATTACHMENT) {
176 assert(stage_flag == VK_SHADER_STAGE_FRAGMENT_BIT);
177 return SYNC_FRAGMENT_SHADER_INPUT_ATTACHMENT_READ;
178 }
179 auto stage_access = syncStageAccessMaskByShaderStage.find(stage_flag);
180 if (stage_access == syncStageAccessMaskByShaderStage.end()) {
181 assert(0);
182 }
183 if (descriptor_type == VK_DESCRIPTOR_TYPE_UNIFORM_BUFFER || descriptor_type == VK_DESCRIPTOR_TYPE_UNIFORM_BUFFER_DYNAMIC) {
184 return stage_access->second.uniform_read;
185 }
186
187 // If the desriptorSet is writable, we don't need to care SHADER_READ. SHADER_WRITE is enough.
188 // Because if write hazard happens, read hazard might or might not happen.
189 // But if write hazard doesn't happen, read hazard is impossible to happen.
190 if (descriptor_data.is_writable) {
191 return stage_access->second.shader_write;
192 }
193 return stage_access->second.shader_read;
194}
195
John Zulauf355e49b2020-04-24 15:11:15 -0600196// Class AccessContext stores the state of accesses specific to a Command, Subpass, or Queue
197const std::array<AccessContext::AddressType, AccessContext::kAddressTypeCount> AccessContext::kAddressTypes = {
198 AccessContext::AddressType::kLinearAddress, AccessContext::AddressType::kIdealizedAddress};
199
John Zulauf7635de32020-05-29 17:14:15 -0600200// Tranverse the attachment resolves for this a specific subpass, and do action() to them.
201// Used by both validation and record operations
202//
203// The signature for Action() reflect the needs of both uses.
204template <typename Action>
205void ResolveOperation(Action &action, const RENDER_PASS_STATE &rp_state, const VkRect2D &render_area,
206 const std::vector<const IMAGE_VIEW_STATE *> &attachment_views, uint32_t subpass) {
207 VkExtent3D extent = CastTo3D(render_area.extent);
208 VkOffset3D offset = CastTo3D(render_area.offset);
209 const auto &rp_ci = rp_state.createInfo;
210 const auto *attachment_ci = rp_ci.pAttachments;
211 const auto &subpass_ci = rp_ci.pSubpasses[subpass];
212
213 // Color resolves -- require an inuse color attachment and a matching inuse resolve attachment
214 const auto *color_attachments = subpass_ci.pColorAttachments;
215 const auto *color_resolve = subpass_ci.pResolveAttachments;
216 if (color_resolve && color_attachments) {
217 for (uint32_t i = 0; i < subpass_ci.colorAttachmentCount; i++) {
218 const auto &color_attach = color_attachments[i].attachment;
219 const auto &resolve_attach = subpass_ci.pResolveAttachments[i].attachment;
220 if ((color_attach != VK_ATTACHMENT_UNUSED) && (resolve_attach != VK_ATTACHMENT_UNUSED)) {
221 action("color", "resolve read", color_attach, resolve_attach, attachment_views[color_attach],
222 SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_READ, kColorAttachmentRasterOrder, offset, extent, 0);
223 action("color", "resolve write", color_attach, resolve_attach, attachment_views[resolve_attach],
224 SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_WRITE, kColorAttachmentRasterOrder, offset, extent, 0);
225 }
226 }
227 }
228
229 // Depth stencil resolve only if the extension is present
230 const auto ds_resolve = lvl_find_in_chain<VkSubpassDescriptionDepthStencilResolve>(subpass_ci.pNext);
231 if (ds_resolve && ds_resolve->pDepthStencilResolveAttachment &&
232 (ds_resolve->pDepthStencilResolveAttachment->attachment != VK_ATTACHMENT_UNUSED) && subpass_ci.pDepthStencilAttachment &&
233 (subpass_ci.pDepthStencilAttachment->attachment != VK_ATTACHMENT_UNUSED)) {
234 const auto src_at = subpass_ci.pDepthStencilAttachment->attachment;
235 const auto src_ci = attachment_ci[src_at];
236 // The formats are required to match so we can pick either
237 const bool resolve_depth = (ds_resolve->depthResolveMode != VK_RESOLVE_MODE_NONE) && FormatHasDepth(src_ci.format);
238 const bool resolve_stencil = (ds_resolve->stencilResolveMode != VK_RESOLVE_MODE_NONE) && FormatHasStencil(src_ci.format);
239 const auto dst_at = ds_resolve->pDepthStencilResolveAttachment->attachment;
240 VkImageAspectFlags aspect_mask = 0u;
241
242 // Figure out which aspects are actually touched during resolve operations
243 const char *aspect_string = nullptr;
244 if (resolve_depth && resolve_stencil) {
245 // Validate all aspects together
246 aspect_mask = VK_IMAGE_ASPECT_DEPTH_BIT | VK_IMAGE_ASPECT_STENCIL_BIT;
247 aspect_string = "depth/stencil";
248 } else if (resolve_depth) {
249 // Validate depth only
250 aspect_mask = VK_IMAGE_ASPECT_DEPTH_BIT;
251 aspect_string = "depth";
252 } else if (resolve_stencil) {
253 // Validate all stencil only
254 aspect_mask = VK_IMAGE_ASPECT_STENCIL_BIT;
255 aspect_string = "stencil";
256 }
257
258 if (aspect_mask) {
259 action(aspect_string, "resolve read", src_at, dst_at, attachment_views[src_at],
260 SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_READ, kDepthStencilAttachmentRasterOrder, offset, extent,
261 aspect_mask);
262 action(aspect_string, "resolve write", src_at, dst_at, attachment_views[dst_at],
263 SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_WRITE, kAttachmentRasterOrder, offset, extent, aspect_mask);
264 }
265 }
266}
267
268// Action for validating resolve operations
269class ValidateResolveAction {
270 public:
271 ValidateResolveAction(VkRenderPass render_pass, uint32_t subpass, const AccessContext &context, const SyncValidator &sync_state,
272 const char *func_name)
273 : render_pass_(render_pass),
274 subpass_(subpass),
275 context_(context),
276 sync_state_(sync_state),
277 func_name_(func_name),
278 skip_(false) {}
279 void operator()(const char *aspect_name, const char *attachment_name, uint32_t src_at, uint32_t dst_at,
280 const IMAGE_VIEW_STATE *view, SyncStageAccessIndex current_usage, const SyncOrderingBarrier &ordering,
281 const VkOffset3D &offset, const VkExtent3D &extent, VkImageAspectFlags aspect_mask) {
282 HazardResult hazard;
283 hazard = context_.DetectHazard(view, current_usage, ordering, offset, extent, aspect_mask);
284 if (hazard.hazard) {
285 skip_ |= sync_state_.LogError(
286 render_pass_, string_SyncHazardVUID(hazard.hazard),
287 "%s: Hazard %s in subpass %" PRIu32 "during %s %s, from attachment %" PRIu32 " to resolve attachment %" PRIu32 ".",
288 func_name_, string_SyncHazard(hazard.hazard), subpass_, aspect_name, attachment_name, src_at, dst_at);
289 }
290 }
291 // Providing a mechanism for the constructing caller to get the result of the validation
292 bool GetSkip() const { return skip_; }
293
294 private:
295 VkRenderPass render_pass_;
296 const uint32_t subpass_;
297 const AccessContext &context_;
298 const SyncValidator &sync_state_;
299 const char *func_name_;
300 bool skip_;
301};
302
303// Update action for resolve operations
304class UpdateStateResolveAction {
305 public:
306 UpdateStateResolveAction(AccessContext &context, const ResourceUsageTag &tag) : context_(context), tag_(tag) {}
307 void operator()(const char *aspect_name, const char *attachment_name, uint32_t src_at, uint32_t dst_at,
308 const IMAGE_VIEW_STATE *view, SyncStageAccessIndex current_usage, const SyncOrderingBarrier &ordering,
309 const VkOffset3D &offset, const VkExtent3D &extent, VkImageAspectFlags aspect_mask) {
310 // Ignores validation only arguments...
311 context_.UpdateAccessState(view, current_usage, offset, extent, aspect_mask, tag_);
312 }
313
314 private:
315 AccessContext &context_;
316 const ResourceUsageTag &tag_;
317};
318
John Zulauf540266b2020-04-06 18:54:53 -0600319AccessContext::AccessContext(uint32_t subpass, VkQueueFlags queue_flags,
320 const std::vector<SubpassDependencyGraphNode> &dependencies,
321 const std::vector<AccessContext> &contexts, AccessContext *external_context) {
John Zulauf3d84f1b2020-03-09 13:33:25 -0600322 Reset();
323 const auto &subpass_dep = dependencies[subpass];
324 prev_.reserve(subpass_dep.prev.size());
John Zulauf355e49b2020-04-24 15:11:15 -0600325 prev_by_subpass_.resize(subpass, nullptr); // Can't be more prevs than the subpass we're on
John Zulauf3d84f1b2020-03-09 13:33:25 -0600326 for (const auto &prev_dep : subpass_dep.prev) {
327 assert(prev_dep.dependency);
328 const auto dep = *prev_dep.dependency;
John Zulauf540266b2020-04-06 18:54:53 -0600329 prev_.emplace_back(const_cast<AccessContext *>(&contexts[dep.srcSubpass]), queue_flags, dep);
John Zulauf355e49b2020-04-24 15:11:15 -0600330 prev_by_subpass_[dep.srcSubpass] = &prev_.back();
John Zulauf5c5e88d2019-12-26 11:22:02 -0700331 }
John Zulauf3d84f1b2020-03-09 13:33:25 -0600332
333 async_.reserve(subpass_dep.async.size());
334 for (const auto async_subpass : subpass_dep.async) {
John Zulauf540266b2020-04-06 18:54:53 -0600335 async_.emplace_back(const_cast<AccessContext *>(&contexts[async_subpass]));
John Zulauf3d84f1b2020-03-09 13:33:25 -0600336 }
John Zulaufe5da6e52020-03-18 15:32:18 -0600337 if (subpass_dep.barrier_from_external) {
338 src_external_ = TrackBack(external_context, queue_flags, *subpass_dep.barrier_from_external);
339 } else {
340 src_external_ = TrackBack();
341 }
342 if (subpass_dep.barrier_to_external) {
343 dst_external_ = TrackBack(this, queue_flags, *subpass_dep.barrier_to_external);
344 } else {
345 dst_external_ = TrackBack();
John Zulauf3d84f1b2020-03-09 13:33:25 -0600346 }
John Zulauf5c5e88d2019-12-26 11:22:02 -0700347}
348
John Zulauf5f13a792020-03-10 07:31:21 -0600349template <typename Detector>
John Zulauf16adfc92020-04-08 10:28:33 -0600350HazardResult AccessContext::DetectPreviousHazard(AddressType type, const Detector &detector,
John Zulauf540266b2020-04-06 18:54:53 -0600351 const ResourceAccessRange &range) const {
John Zulauf5f13a792020-03-10 07:31:21 -0600352 ResourceAccessRangeMap descent_map;
John Zulauf69133422020-05-20 14:55:53 -0600353 ResolvePreviousAccess(type, range, &descent_map, nullptr);
John Zulauf5f13a792020-03-10 07:31:21 -0600354
355 HazardResult hazard;
356 for (auto prev = descent_map.begin(); prev != descent_map.end() && !hazard.hazard; ++prev) {
357 hazard = detector.Detect(prev);
358 }
359 return hazard;
360}
361
John Zulauf3d84f1b2020-03-09 13:33:25 -0600362// A recursive range walker for hazard detection, first for the current context and the (DetectHazardRecur) to walk
363// the DAG of the contexts (for example subpasses)
364template <typename Detector>
John Zulauf355e49b2020-04-24 15:11:15 -0600365HazardResult AccessContext::DetectHazard(AddressType type, const Detector &detector, const ResourceAccessRange &range,
366 DetectOptions options) const {
John Zulauf3d84f1b2020-03-09 13:33:25 -0600367 HazardResult hazard;
John Zulauf5f13a792020-03-10 07:31:21 -0600368
John Zulauf355e49b2020-04-24 15:11:15 -0600369 if (static_cast<uint32_t>(options) | DetectOptions::kDetectAsync) {
370 // Async checks don't require recursive lookups, as the async lists are exhaustive for the top-level context
371 // so we'll check these first
372 for (const auto &async_context : async_) {
373 hazard = async_context->DetectAsyncHazard(type, detector, range);
374 if (hazard.hazard) return hazard;
375 }
John Zulauf5f13a792020-03-10 07:31:21 -0600376 }
377
John Zulauf69133422020-05-20 14:55:53 -0600378 const bool detect_prev = (static_cast<uint32_t>(options) | DetectOptions::kDetectPrevious) != 0;
John Zulauf3d84f1b2020-03-09 13:33:25 -0600379
John Zulauf69133422020-05-20 14:55:53 -0600380 const auto &accesses = GetAccessStateMap(type);
381 const auto from = accesses.lower_bound(range);
382 const auto to = accesses.upper_bound(range);
383 ResourceAccessRange gap = {range.begin, range.begin};
John Zulauf5f13a792020-03-10 07:31:21 -0600384
John Zulauf69133422020-05-20 14:55:53 -0600385 for (auto pos = from; pos != to; ++pos) {
386 // Cover any leading gap, or gap between entries
387 if (detect_prev) {
388 // TODO: After profiling we may want to change the descent logic such that we don't recur per gap...
389 // Cover any leading gap, or gap between entries
390 gap.end = pos->first.begin; // We know this begin is < range.end
John Zulauf355e49b2020-04-24 15:11:15 -0600391 if (gap.non_empty()) {
John Zulauf69133422020-05-20 14:55:53 -0600392 // Recur on all gaps
John Zulauf16adfc92020-04-08 10:28:33 -0600393 hazard = DetectPreviousHazard(type, detector, gap);
John Zulauf5f13a792020-03-10 07:31:21 -0600394 if (hazard.hazard) return hazard;
395 }
John Zulauf69133422020-05-20 14:55:53 -0600396 // Set up for the next gap. If pos..end is >= range.end, loop will exit, and trailing gap will be empty
397 gap.begin = pos->first.end;
398 }
399
400 hazard = detector.Detect(pos);
401 if (hazard.hazard) return hazard;
402 }
403
404 if (detect_prev) {
405 // Detect in the trailing empty as needed
406 gap.end = range.end;
407 if (gap.non_empty()) {
408 hazard = DetectPreviousHazard(type, detector, gap);
John Zulauf16adfc92020-04-08 10:28:33 -0600409 }
John Zulauf3d84f1b2020-03-09 13:33:25 -0600410 }
411
412 return hazard;
413}
414
415// A non recursive range walker for the asynchronous contexts (those we have no barriers with)
416template <typename Detector>
John Zulauf355e49b2020-04-24 15:11:15 -0600417HazardResult AccessContext::DetectAsyncHazard(AddressType type, const Detector &detector, const ResourceAccessRange &range) const {
John Zulauf16adfc92020-04-08 10:28:33 -0600418 auto &accesses = GetAccessStateMap(type);
419 const auto from = accesses.lower_bound(range);
420 const auto to = accesses.upper_bound(range);
421
John Zulauf3d84f1b2020-03-09 13:33:25 -0600422 HazardResult hazard;
John Zulauf16adfc92020-04-08 10:28:33 -0600423 for (auto pos = from; pos != to && !hazard.hazard; ++pos) {
424 hazard = detector.DetectAsync(pos);
John Zulauf3d84f1b2020-03-09 13:33:25 -0600425 }
John Zulauf16adfc92020-04-08 10:28:33 -0600426
John Zulauf3d84f1b2020-03-09 13:33:25 -0600427 return hazard;
428}
429
John Zulauf355e49b2020-04-24 15:11:15 -0600430// Returns the last resolved entry
431static void ResolveMapToEntry(ResourceAccessRangeMap *dest, ResourceAccessRangeMap::iterator entry,
432 ResourceAccessRangeMap::const_iterator first, ResourceAccessRangeMap::const_iterator last,
433 const SyncBarrier *barrier) {
434 auto at = entry;
435 for (auto pos = first; pos != last; ++pos) {
436 // Every member of the input iterator range must fit within the remaining portion of entry
437 assert(at->first.includes(pos->first));
438 assert(at != dest->end());
439 // Trim up at to the same size as the entry to resolve
440 at = sparse_container::split(at, *dest, pos->first);
441 auto access = pos->second;
442 if (barrier) {
443 access.ApplyBarrier(*barrier);
444 }
445 at->second.Resolve(access);
446 ++at; // Go to the remaining unused section of entry
447 }
448}
449
450void AccessContext::ResolveAccessRange(AddressType type, const ResourceAccessRange &range, const SyncBarrier *barrier,
451 ResourceAccessRangeMap *resolve_map, const ResourceAccessState *infill_state,
452 bool recur_to_infill) const {
453 ResourceRangeMergeIterator current(*resolve_map, GetAccessStateMap(type), range.begin);
454 while (current->range.non_empty() && range.includes(current->range.begin)) {
John Zulauf16adfc92020-04-08 10:28:33 -0600455 if (current->pos_B->valid) {
456 const auto &src_pos = current->pos_B->lower_bound;
John Zulauf355e49b2020-04-24 15:11:15 -0600457 auto access = src_pos->second;
458 if (barrier) {
459 access.ApplyBarrier(*barrier);
460 }
John Zulauf16adfc92020-04-08 10:28:33 -0600461 if (current->pos_A->valid) {
462 current.trim_A();
John Zulauf355e49b2020-04-24 15:11:15 -0600463 current->pos_A->lower_bound->second.Resolve(access);
John Zulauf5f13a792020-03-10 07:31:21 -0600464 } else {
John Zulauf355e49b2020-04-24 15:11:15 -0600465 auto inserted = resolve_map->insert(current->pos_A->lower_bound, std::make_pair(current->range, access));
466 current.invalidate_A(inserted); // Update the parallel iterator to point at the insert segment
John Zulauf5f13a792020-03-10 07:31:21 -0600467 }
John Zulauf16adfc92020-04-08 10:28:33 -0600468 } else {
469 // we have to descend to fill this gap
470 if (recur_to_infill) {
John Zulauf355e49b2020-04-24 15:11:15 -0600471 if (current->pos_A->valid) {
472 // Dest is valid, so we need to accumulate along the DAG and then resolve... in an N-to-1 resolve operation
473 ResourceAccessRangeMap gap_map;
474 ResolvePreviousAccess(type, current->range, &gap_map, infill_state);
475 ResolveMapToEntry(resolve_map, current->pos_A->lower_bound, gap_map.begin(), gap_map.end(), barrier);
476 } else {
477 // There isn't anything in dest in current->range, so we can accumulate directly into it.
478 ResolvePreviousAccess(type, current->range, resolve_map, infill_state);
479 if (barrier) {
480 // Need to apply the barrier to the accesses we accumulated, noting that we haven't updated current
481 for (auto pos = resolve_map->lower_bound(current->range); pos != current->pos_A->lower_bound; ++pos) {
482 pos->second.ApplyBarrier(*barrier);
483 }
484 }
485 }
486 // Given that there could be gaps we need to seek carefully to not repeatedly search the same gaps in the next
487 // iterator of the outer while.
488
489 // Set the parallel iterator to the end of this range s.t. ++ will move us to the next range whether or
490 // not the end of the range is a gap. For the seek to work, first we need to warn the parallel iterator
491 // we stepped on the dest map
492 const auto seek_to = current->range.end - 1; // The subtraction is safe as range can't be empty (loop condition)
493 current.invalidate_A(); // Changes current->range
494 current.seek(seek_to);
495 } else if (!current->pos_A->valid && infill_state) {
496 // If we didn't find anything in the current range, and we aren't reccuring... we infill if required
497 auto inserted = resolve_map->insert(current->pos_A->lower_bound, std::make_pair(current->range, *infill_state));
498 current.invalidate_A(inserted); // Update the parallel iterator to point at the correct segment after insert
John Zulauf16adfc92020-04-08 10:28:33 -0600499 }
John Zulauf5f13a792020-03-10 07:31:21 -0600500 }
John Zulauf16adfc92020-04-08 10:28:33 -0600501 ++current;
John Zulauf3d84f1b2020-03-09 13:33:25 -0600502 }
John Zulauf3d84f1b2020-03-09 13:33:25 -0600503}
504
John Zulauf355e49b2020-04-24 15:11:15 -0600505void AccessContext::ResolvePreviousAccess(AddressType type, const ResourceAccessRange &range, ResourceAccessRangeMap *descent_map,
506 const ResourceAccessState *infill_state) const {
John Zulaufe5da6e52020-03-18 15:32:18 -0600507 if ((prev_.size() == 0) && (src_external_.context == nullptr)) {
John Zulauf5f13a792020-03-10 07:31:21 -0600508 if (range.non_empty() && infill_state) {
509 descent_map->insert(std::make_pair(range, *infill_state));
510 }
511 } else {
512 // Look for something to fill the gap further along.
513 for (const auto &prev_dep : prev_) {
John Zulauf355e49b2020-04-24 15:11:15 -0600514 prev_dep.context->ResolveAccessRange(type, range, &prev_dep.barrier, descent_map, infill_state);
John Zulauf5f13a792020-03-10 07:31:21 -0600515 }
516
John Zulaufe5da6e52020-03-18 15:32:18 -0600517 if (src_external_.context) {
John Zulauf355e49b2020-04-24 15:11:15 -0600518 src_external_.context->ResolveAccessRange(type, range, &src_external_.barrier, descent_map, infill_state);
John Zulauf5f13a792020-03-10 07:31:21 -0600519 }
520 }
John Zulauf3d84f1b2020-03-09 13:33:25 -0600521}
522
John Zulauf16adfc92020-04-08 10:28:33 -0600523AccessContext::AddressType AccessContext::ImageAddressType(const IMAGE_STATE &image) {
locke-lunarg3f6978b2020-04-16 16:51:35 -0600524 return (image.fragment_encoder->IsLinearImage()) ? AddressType::kLinearAddress : AddressType::kIdealizedAddress;
John Zulauf16adfc92020-04-08 10:28:33 -0600525}
526
527VkDeviceSize AccessContext::ResourceBaseAddress(const BINDABLE &bindable) {
528 return bindable.binding.offset + bindable.binding.mem_state->fake_base_address;
529}
530
John Zulauf355e49b2020-04-24 15:11:15 -0600531static bool SimpleBinding(const BINDABLE &bindable) { return !bindable.sparse && bindable.binding.mem_state; }
John Zulauf16adfc92020-04-08 10:28:33 -0600532
John Zulauf1507ee42020-05-18 11:33:09 -0600533static SyncStageAccessIndex ColorLoadUsage(VkAttachmentLoadOp load_op) {
534 const auto stage_access = (load_op == VK_ATTACHMENT_LOAD_OP_LOAD) ? SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_READ
535 : SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_WRITE;
536 return stage_access;
537}
538static SyncStageAccessIndex DepthStencilLoadUsage(VkAttachmentLoadOp load_op) {
539 const auto stage_access = (load_op == VK_ATTACHMENT_LOAD_OP_LOAD) ? SYNC_EARLY_FRAGMENT_TESTS_DEPTH_STENCIL_ATTACHMENT_READ
540 : SYNC_EARLY_FRAGMENT_TESTS_DEPTH_STENCIL_ATTACHMENT_WRITE;
541 return stage_access;
542}
543
John Zulauf7635de32020-05-29 17:14:15 -0600544// Caller must manage returned pointer
545static AccessContext *CreateStoreResolveProxyContext(const AccessContext &context, const RENDER_PASS_STATE &rp_state,
546 uint32_t subpass, const VkRect2D &render_area,
547 std::vector<const IMAGE_VIEW_STATE *> attachment_views) {
548 auto *proxy = new AccessContext(context);
549 proxy->UpdateAttachmentResolveAccess(rp_state, render_area, attachment_views, subpass, kCurrentCommandTag);
John Zulaufaff20662020-06-01 14:07:58 -0600550 proxy->UpdateAttachmentStoreAccess(rp_state, render_area, attachment_views, subpass, kCurrentCommandTag);
John Zulauf7635de32020-05-29 17:14:15 -0600551 return proxy;
552}
553
John Zulauf540266b2020-04-06 18:54:53 -0600554void AccessContext::ResolvePreviousAccess(const IMAGE_STATE &image_state, const VkImageSubresourceRange &subresource_range_arg,
John Zulauf355e49b2020-04-24 15:11:15 -0600555 AddressType address_type, ResourceAccessRangeMap *descent_map,
556 const ResourceAccessState *infill_state) const {
John Zulauf16adfc92020-04-08 10:28:33 -0600557 if (!SimpleBinding(image_state)) return;
558
John Zulauf62f10592020-04-03 12:20:02 -0600559 auto subresource_range = NormalizeSubresourceRange(image_state.createInfo, subresource_range_arg);
locke-lunargae26eac2020-04-16 15:29:05 -0600560 subresource_adapter::ImageRangeGenerator range_gen(*image_state.fragment_encoder.get(), subresource_range, {0, 0, 0},
locke-lunarg5f7d3c62020-04-07 00:10:39 -0600561 image_state.createInfo.extent);
John Zulauf16adfc92020-04-08 10:28:33 -0600562 const auto base_address = ResourceBaseAddress(image_state);
John Zulauf62f10592020-04-03 12:20:02 -0600563 for (; range_gen->non_empty(); ++range_gen) {
John Zulauf16adfc92020-04-08 10:28:33 -0600564 ResolvePreviousAccess(address_type, (*range_gen + base_address), descent_map, infill_state);
John Zulauf62f10592020-04-03 12:20:02 -0600565 }
566}
567
John Zulauf7635de32020-05-29 17:14:15 -0600568// Layout transitions are handled as if the were occuring in the beginning of the next subpass
John Zulauf1507ee42020-05-18 11:33:09 -0600569bool AccessContext::ValidateLayoutTransitions(const SyncValidator &sync_state, const RENDER_PASS_STATE &rp_state,
John Zulauf7635de32020-05-29 17:14:15 -0600570 const VkRect2D &render_area, uint32_t subpass,
571 const std::vector<const IMAGE_VIEW_STATE *> &attachment_views,
572 const char *func_name) const {
John Zulauf355e49b2020-04-24 15:11:15 -0600573 bool skip = false;
John Zulauf7635de32020-05-29 17:14:15 -0600574 // As validation methods are const and precede the record/update phase, for any tranistions from the immediately
575 // previous subpass, we have to validate them against a copy of the AccessContext, with resolve operations applied, as
576 // those affects have not been recorded yet.
577 //
578 // Note: we could be more efficient by tracking whether or not we actually *have* any changes (e.g. attachment resolve)
579 // to apply and only copy then, if this proves a hot spot.
580 std::unique_ptr<AccessContext> proxy_for_prev;
581 TrackBack proxy_track_back;
582
John Zulauf355e49b2020-04-24 15:11:15 -0600583 const auto &transitions = rp_state.subpass_transitions[subpass];
584 for (const auto &transition : transitions) {
John Zulauf7635de32020-05-29 17:14:15 -0600585 const bool prev_needs_proxy = transition.prev_pass != VK_SUBPASS_EXTERNAL && (transition.prev_pass + 1 == subpass);
586
587 const auto *track_back = GetTrackBackFromSubpass(transition.prev_pass);
588 if (prev_needs_proxy) {
589 if (!proxy_for_prev) {
590 proxy_for_prev.reset(CreateStoreResolveProxyContext(*track_back->context, rp_state, transition.prev_pass,
591 render_area, attachment_views));
592 proxy_track_back = *track_back;
593 proxy_track_back.context = proxy_for_prev.get();
594 }
595 track_back = &proxy_track_back;
596 }
597 auto hazard = DetectSubpassTransitionHazard(*track_back, attachment_views[transition.attachment]);
John Zulauf355e49b2020-04-24 15:11:15 -0600598 if (hazard.hazard) {
599 skip |= sync_state.LogError(rp_state.renderPass, string_SyncHazardVUID(hazard.hazard),
600 "%s: Hazard %s in subpass %" PRIu32 " for attachment %" PRIu32 " image layout transition.",
601 func_name, string_SyncHazard(hazard.hazard), subpass, transition.attachment);
602 }
603 }
604 return skip;
605}
606
John Zulauf1507ee42020-05-18 11:33:09 -0600607bool AccessContext::ValidateLoadOperation(const SyncValidator &sync_state, const RENDER_PASS_STATE &rp_state,
John Zulauf7635de32020-05-29 17:14:15 -0600608 const VkRect2D &render_area, uint32_t subpass,
609 const std::vector<const IMAGE_VIEW_STATE *> &attachment_views,
610 const char *func_name) const {
John Zulauf1507ee42020-05-18 11:33:09 -0600611 bool skip = false;
612 const auto *attachment_ci = rp_state.createInfo.pAttachments;
613 VkExtent3D extent = CastTo3D(render_area.extent);
614 VkOffset3D offset = CastTo3D(render_area.offset);
615 const auto external_access_scope = src_external_.barrier.dst_access_scope;
John Zulauf1507ee42020-05-18 11:33:09 -0600616
617 for (uint32_t i = 0; i < rp_state.createInfo.attachmentCount; i++) {
618 if (subpass == rp_state.attachment_first_subpass[i]) {
619 if (attachment_views[i] == nullptr) continue;
620 const IMAGE_VIEW_STATE &view = *attachment_views[i];
621 const IMAGE_STATE *image = view.image_state.get();
622 if (image == nullptr) continue;
623 const auto &ci = attachment_ci[i];
624 const bool is_transition = rp_state.attachment_first_is_transition[i];
625
626 // Need check in the following way
627 // 1) if the usage bit isn't in the dest_access_scope, and there is layout traniition for initial use, report hazard
628 // vs. transition
629 // 2) if there isn't a layout transition, we need to look at the external context with a "detect hazard" operation
630 // for each aspect loaded.
631
632 const bool has_depth = FormatHasDepth(ci.format);
John Zulaufb027cdb2020-05-21 14:25:22 -0600633 const bool has_stencil = FormatHasStencil(ci.format);
John Zulauf1507ee42020-05-18 11:33:09 -0600634 const bool is_color = !(has_depth || has_stencil);
635
636 const SyncStageAccessIndex load_index = has_depth ? DepthStencilLoadUsage(ci.loadOp) : ColorLoadUsage(ci.loadOp);
637 const SyncStageAccessFlags load_mask = (has_depth || is_color) ? SyncStageAccess::Flags(load_index) : 0U;
638 const SyncStageAccessIndex stencil_load_index = has_stencil ? DepthStencilLoadUsage(ci.stencilLoadOp) : load_index;
639 const SyncStageAccessFlags stencil_mask = has_stencil ? SyncStageAccess::Flags(stencil_load_index) : 0U;
640
John Zulaufaff20662020-06-01 14:07:58 -0600641 HazardResult hazard;
John Zulauf1507ee42020-05-18 11:33:09 -0600642 const char *aspect = nullptr;
643 if (is_transition) {
644 // For transition w
645 SyncHazard transition_hazard = SyncHazard::NONE;
646 bool checked_stencil = false;
647 if (load_mask) {
648 if ((load_mask & external_access_scope) != load_mask) {
649 transition_hazard =
650 SyncStageAccess::HasWrite(load_mask) ? SyncHazard::WRITE_AFTER_WRITE : SyncHazard::READ_AFTER_WRITE;
651 aspect = is_color ? "color" : "depth";
652 }
653 if (!transition_hazard && stencil_mask) {
654 if ((stencil_mask & external_access_scope) != stencil_mask) {
655 transition_hazard = SyncStageAccess::HasWrite(stencil_mask) ? SyncHazard::WRITE_AFTER_WRITE
656 : SyncHazard::READ_AFTER_WRITE;
657 aspect = "stencil";
658 checked_stencil = true;
659 }
660 }
661 }
662 if (transition_hazard) {
663 // Hazard vs. ILT
664 auto load_op_string = string_VkAttachmentLoadOp(checked_stencil ? ci.stencilLoadOp : ci.loadOp);
665 skip |=
666 sync_state.LogError(rp_state.renderPass, string_SyncHazardVUID(hazard.hazard),
667 "%s: Hazard %s vs. layout transition in subpass %" PRIu32 " for attachment %" PRIu32
668 " aspect %s during load with loadOp %s.",
669 func_name, string_SyncHazard(transition_hazard), subpass, i, aspect, load_op_string);
670 }
671 } else {
672 auto hazard_range = view.normalized_subresource_range;
673 bool checked_stencil = false;
674 if (is_color) {
675 hazard = DetectHazard(*image, load_index, view.normalized_subresource_range, offset, extent);
676 aspect = "color";
677 } else {
678 if (has_depth) {
679 hazard_range.aspectMask = VK_IMAGE_ASPECT_DEPTH_BIT;
680 hazard = DetectHazard(*image, load_index, hazard_range, offset, extent);
681 aspect = "depth";
682 }
683 if (!hazard.hazard && has_stencil) {
684 hazard_range.aspectMask = VK_IMAGE_ASPECT_STENCIL_BIT;
685 hazard = DetectHazard(*image, stencil_load_index, hazard_range, offset, extent);
686 aspect = "stencil";
687 checked_stencil = true;
688 }
689 }
690
691 if (hazard.hazard) {
692 auto load_op_string = string_VkAttachmentLoadOp(checked_stencil ? ci.stencilLoadOp : ci.loadOp);
693 skip |= sync_state.LogError(rp_state.renderPass, string_SyncHazardVUID(hazard.hazard),
694 "%s: Hazard %s in subpass %" PRIu32 " for attachment %" PRIu32
695 " aspect %s during load with loadOp %s.",
696 func_name, string_SyncHazard(hazard.hazard), subpass, i, aspect, load_op_string);
697 }
698 }
699 }
700 }
701 return skip;
702}
703
John Zulaufaff20662020-06-01 14:07:58 -0600704// Store operation validation can ignore resolve (before it) and layout tranistions after it. The first is ignored
705// because of the ordering guarantees w.r.t. sample access and that the resolve validation hasn't altered the state, because
706// store is part of the same Next/End operation.
707// The latter is handled in layout transistion validation directly
708bool AccessContext::ValidateStoreOperation(const SyncValidator &sync_state, const RENDER_PASS_STATE &rp_state,
709 const VkRect2D &render_area, uint32_t subpass,
710 const std::vector<const IMAGE_VIEW_STATE *> &attachment_views,
711 const char *func_name) const {
712 bool skip = false;
713 const auto *attachment_ci = rp_state.createInfo.pAttachments;
714 VkExtent3D extent = CastTo3D(render_area.extent);
715 VkOffset3D offset = CastTo3D(render_area.offset);
716
717 for (uint32_t i = 0; i < rp_state.createInfo.attachmentCount; i++) {
718 if (subpass == rp_state.attachment_last_subpass[i]) {
719 if (attachment_views[i] == nullptr) continue;
720 const IMAGE_VIEW_STATE &view = *attachment_views[i];
721 const IMAGE_STATE *image = view.image_state.get();
722 if (image == nullptr) continue;
723 const auto &ci = attachment_ci[i];
724
725 // The spec states that "don't care" is an operation with VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT,
726 // so we assume that an implementation is *free* to write in that case, meaning that for correctness
727 // sake, we treat DONT_CARE as writing.
728 const bool has_depth = FormatHasDepth(ci.format);
729 const bool has_stencil = FormatHasStencil(ci.format);
730 const bool is_color = !(has_depth || has_stencil);
731 const bool store_op_stores = ci.storeOp != VK_ATTACHMENT_STORE_OP_NONE_QCOM;
732 if (!has_stencil && !store_op_stores) continue;
733
734 HazardResult hazard;
735 const char *aspect = nullptr;
736 bool checked_stencil = false;
737 if (is_color) {
738 hazard = DetectHazard(*image, SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_WRITE,
739 view.normalized_subresource_range, kAttachmentRasterOrder, offset, extent);
740 aspect = "color";
741 } else {
742 const bool stencil_op_stores = ci.stencilStoreOp != VK_ATTACHMENT_STORE_OP_NONE_QCOM;
743 auto hazard_range = view.normalized_subresource_range;
744 if (has_depth && store_op_stores) {
745 hazard_range.aspectMask = VK_IMAGE_ASPECT_DEPTH_BIT;
746 hazard = DetectHazard(*image, SYNC_LATE_FRAGMENT_TESTS_DEPTH_STENCIL_ATTACHMENT_WRITE, hazard_range,
747 kAttachmentRasterOrder, offset, extent);
748 aspect = "depth";
749 }
750 if (!hazard.hazard && has_stencil && stencil_op_stores) {
751 hazard_range.aspectMask = VK_IMAGE_ASPECT_STENCIL_BIT;
752 hazard = DetectHazard(*image, SYNC_LATE_FRAGMENT_TESTS_DEPTH_STENCIL_ATTACHMENT_WRITE, hazard_range,
753 kAttachmentRasterOrder, offset, extent);
754 aspect = "stencil";
755 checked_stencil = true;
756 }
757 }
758
759 if (hazard.hazard) {
760 const char *const op_type_string = checked_stencil ? "stencilStoreOp" : "storeOp";
761 const char *const store_op_string = string_VkAttachmentStoreOp(checked_stencil ? ci.stencilStoreOp : ci.storeOp);
762 skip |= sync_state.LogError(
763 rp_state.renderPass, string_SyncHazardVUID(hazard.hazard),
764 "%s: Hazard %s in subpass %" PRIu32 " for attachment %" PRIu32 " %s aspect during store with %s %s.", func_name,
765 string_SyncHazard(hazard.hazard), subpass, i, aspect, op_type_string, store_op_string);
766 }
767 }
768 }
769 return skip;
770}
771
John Zulaufb027cdb2020-05-21 14:25:22 -0600772bool AccessContext::ValidateResolveOperations(const SyncValidator &sync_state, const RENDER_PASS_STATE &rp_state,
773 const VkRect2D &render_area,
774 const std::vector<const IMAGE_VIEW_STATE *> &attachment_views, const char *func_name,
775 uint32_t subpass) const {
John Zulauf7635de32020-05-29 17:14:15 -0600776 ValidateResolveAction validate_action(rp_state.renderPass, subpass, *this, sync_state, func_name);
777 ResolveOperation(validate_action, rp_state, render_area, attachment_views, subpass);
778 return validate_action.GetSkip();
John Zulaufb027cdb2020-05-21 14:25:22 -0600779}
780
John Zulauf3d84f1b2020-03-09 13:33:25 -0600781class HazardDetector {
782 SyncStageAccessIndex usage_index_;
783
784 public:
John Zulauf5f13a792020-03-10 07:31:21 -0600785 HazardResult Detect(const ResourceAccessRangeMap::const_iterator &pos) const { return pos->second.DetectHazard(usage_index_); }
John Zulauf3d84f1b2020-03-09 13:33:25 -0600786 HazardResult DetectAsync(const ResourceAccessRangeMap::const_iterator &pos) const {
787 return pos->second.DetectAsyncHazard(usage_index_);
788 }
789 HazardDetector(SyncStageAccessIndex usage) : usage_index_(usage) {}
790};
791
John Zulauf69133422020-05-20 14:55:53 -0600792class HazardDetectorWithOrdering {
793 const SyncStageAccessIndex usage_index_;
794 const SyncOrderingBarrier &ordering_;
795
796 public:
797 HazardResult Detect(const ResourceAccessRangeMap::const_iterator &pos) const {
798 return pos->second.DetectHazard(usage_index_, ordering_);
799 }
800 HazardResult DetectAsync(const ResourceAccessRangeMap::const_iterator &pos) const {
801 return pos->second.DetectAsyncHazard(usage_index_);
802 }
803 HazardDetectorWithOrdering(SyncStageAccessIndex usage, const SyncOrderingBarrier &ordering)
804 : usage_index_(usage), ordering_(ordering) {}
805};
806
John Zulauf16adfc92020-04-08 10:28:33 -0600807HazardResult AccessContext::DetectHazard(AddressType type, SyncStageAccessIndex usage_index,
John Zulauf540266b2020-04-06 18:54:53 -0600808 const ResourceAccessRange &range) const {
John Zulauf3d84f1b2020-03-09 13:33:25 -0600809 HazardDetector detector(usage_index);
John Zulauf355e49b2020-04-24 15:11:15 -0600810 return DetectHazard(type, detector, range, DetectOptions::kDetectAll);
John Zulauf3d84f1b2020-03-09 13:33:25 -0600811}
812
John Zulauf16adfc92020-04-08 10:28:33 -0600813HazardResult AccessContext::DetectHazard(const BUFFER_STATE &buffer, SyncStageAccessIndex usage_index,
John Zulauf355e49b2020-04-24 15:11:15 -0600814 const ResourceAccessRange &range) const {
John Zulauf16adfc92020-04-08 10:28:33 -0600815 if (!SimpleBinding(buffer)) return HazardResult();
John Zulauf355e49b2020-04-24 15:11:15 -0600816 return DetectHazard(AddressType::kLinearAddress, usage_index, range + ResourceBaseAddress(buffer));
John Zulaufe5da6e52020-03-18 15:32:18 -0600817}
818
John Zulauf69133422020-05-20 14:55:53 -0600819template <typename Detector>
820HazardResult AccessContext::DetectHazard(Detector &detector, const IMAGE_STATE &image,
821 const VkImageSubresourceRange &subresource_range, const VkOffset3D &offset,
822 const VkExtent3D &extent, DetectOptions options) const {
823 if (!SimpleBinding(image)) return HazardResult();
824 subresource_adapter::ImageRangeGenerator range_gen(*image.fragment_encoder.get(), subresource_range, offset, extent);
825 const auto address_type = ImageAddressType(image);
826 const auto base_address = ResourceBaseAddress(image);
827 for (; range_gen->non_empty(); ++range_gen) {
828 HazardResult hazard = DetectHazard(address_type, detector, (*range_gen + base_address), options);
829 if (hazard.hazard) return hazard;
830 }
831 return HazardResult();
832}
833
John Zulauf540266b2020-04-06 18:54:53 -0600834HazardResult AccessContext::DetectHazard(const IMAGE_STATE &image, SyncStageAccessIndex current_usage,
835 const VkImageSubresourceLayers &subresource, const VkOffset3D &offset,
836 const VkExtent3D &extent) const {
John Zulauf5c5e88d2019-12-26 11:22:02 -0700837 VkImageSubresourceRange subresource_range = {subresource.aspectMask, subresource.mipLevel, 1, subresource.baseArrayLayer,
838 subresource.layerCount};
John Zulauf1507ee42020-05-18 11:33:09 -0600839 return DetectHazard(image, current_usage, subresource_range, offset, extent);
840}
841
842HazardResult AccessContext::DetectHazard(const IMAGE_STATE &image, SyncStageAccessIndex current_usage,
843 const VkImageSubresourceRange &subresource_range, const VkOffset3D &offset,
844 const VkExtent3D &extent) const {
John Zulauf69133422020-05-20 14:55:53 -0600845 HazardDetector detector(current_usage);
846 return DetectHazard(detector, image, subresource_range, offset, extent, DetectOptions::kDetectAll);
847}
848
849HazardResult AccessContext::DetectHazard(const IMAGE_STATE &image, SyncStageAccessIndex current_usage,
850 const VkImageSubresourceRange &subresource_range, const SyncOrderingBarrier &ordering,
851 const VkOffset3D &offset, const VkExtent3D &extent) const {
852 HazardDetectorWithOrdering detector(current_usage, ordering);
853 return DetectHazard(detector, image, subresource_range, offset, extent, DetectOptions::kDetectAll);
John Zulauf9cb530d2019-09-30 14:14:10 -0600854}
855
John Zulaufb027cdb2020-05-21 14:25:22 -0600856// Some common code for looking at attachments, if there's anything wrong, we return no hazard, core validation
857// should have reported the issue regarding an invalid attachment entry
858HazardResult AccessContext::DetectHazard(const IMAGE_VIEW_STATE *view, SyncStageAccessIndex current_usage,
859 const SyncOrderingBarrier &ordering, const VkOffset3D &offset, const VkExtent3D &extent,
860 VkImageAspectFlags aspect_mask) const {
861 if (view != nullptr) {
862 const IMAGE_STATE *image = view->image_state.get();
863 if (image != nullptr) {
864 auto *detect_range = &view->normalized_subresource_range;
865 VkImageSubresourceRange masked_range;
866 if (aspect_mask) { // If present and non-zero, restrict the normalized range to aspects present in aspect_mask
867 masked_range = view->normalized_subresource_range;
868 masked_range.aspectMask = aspect_mask & masked_range.aspectMask;
869 detect_range = &masked_range;
870 }
871
872 // NOTE: The range encoding code is not robust to invalid ranges, so we protect it from our change
873 if (detect_range->aspectMask) {
874 return DetectHazard(*image, current_usage, *detect_range, ordering, offset, extent);
875 }
876 }
877 }
878 return HazardResult();
879}
John Zulauf3d84f1b2020-03-09 13:33:25 -0600880class BarrierHazardDetector {
881 public:
882 BarrierHazardDetector(SyncStageAccessIndex usage_index, VkPipelineStageFlags src_exec_scope,
883 SyncStageAccessFlags src_access_scope)
884 : usage_index_(usage_index), src_exec_scope_(src_exec_scope), src_access_scope_(src_access_scope) {}
885
John Zulauf5f13a792020-03-10 07:31:21 -0600886 HazardResult Detect(const ResourceAccessRangeMap::const_iterator &pos) const {
887 return pos->second.DetectBarrierHazard(usage_index_, src_exec_scope_, src_access_scope_);
John Zulauf0cb5be22020-01-23 12:18:22 -0700888 }
John Zulauf3d84f1b2020-03-09 13:33:25 -0600889 HazardResult DetectAsync(const ResourceAccessRangeMap::const_iterator &pos) const {
890 // Async barrier hazard detection can use the same path as the usage index is not IsRead, but is IsWrite
891 return pos->second.DetectAsyncHazard(usage_index_);
892 }
893
894 private:
895 SyncStageAccessIndex usage_index_;
896 VkPipelineStageFlags src_exec_scope_;
897 SyncStageAccessFlags src_access_scope_;
898};
899
John Zulauf16adfc92020-04-08 10:28:33 -0600900HazardResult AccessContext::DetectBarrierHazard(AddressType type, SyncStageAccessIndex current_usage,
John Zulauf540266b2020-04-06 18:54:53 -0600901 VkPipelineStageFlags src_exec_scope, SyncStageAccessFlags src_access_scope,
John Zulauf355e49b2020-04-24 15:11:15 -0600902 const ResourceAccessRange &range, DetectOptions options) const {
John Zulauf3d84f1b2020-03-09 13:33:25 -0600903 BarrierHazardDetector detector(current_usage, src_exec_scope, src_access_scope);
John Zulauf69133422020-05-20 14:55:53 -0600904 return DetectHazard(type, detector, range, options);
John Zulauf0cb5be22020-01-23 12:18:22 -0700905}
906
John Zulauf16adfc92020-04-08 10:28:33 -0600907HazardResult AccessContext::DetectImageBarrierHazard(const IMAGE_STATE &image, VkPipelineStageFlags src_exec_scope,
John Zulauf355e49b2020-04-24 15:11:15 -0600908 SyncStageAccessFlags src_access_scope,
909 const VkImageSubresourceRange &subresource_range,
910 DetectOptions options) const {
John Zulauf69133422020-05-20 14:55:53 -0600911 BarrierHazardDetector detector(SyncStageAccessIndex::SYNC_IMAGE_LAYOUT_TRANSITION, src_exec_scope, src_access_scope);
912 VkOffset3D zero_offset = {0, 0, 0};
913 return DetectHazard(detector, image, subresource_range, zero_offset, image.createInfo.extent, options);
John Zulauf0cb5be22020-01-23 12:18:22 -0700914}
915
John Zulauf355e49b2020-04-24 15:11:15 -0600916HazardResult AccessContext::DetectImageBarrierHazard(const IMAGE_STATE &image, VkPipelineStageFlags src_exec_scope,
917 SyncStageAccessFlags src_stage_accesses,
918 const VkImageMemoryBarrier &barrier) const {
919 auto subresource_range = NormalizeSubresourceRange(image.createInfo, barrier.subresourceRange);
920 const auto src_access_scope = SyncStageAccess::AccessScope(src_stage_accesses, barrier.srcAccessMask);
921 return DetectImageBarrierHazard(image, src_exec_scope, src_access_scope, subresource_range, kDetectAll);
922}
923
John Zulauf9cb530d2019-09-30 14:14:10 -0600924template <typename Flags, typename Map>
925SyncStageAccessFlags AccessScopeImpl(Flags flag_mask, const Map &map) {
926 SyncStageAccessFlags scope = 0;
927 for (const auto &bit_scope : map) {
928 if (flag_mask < bit_scope.first) break;
929
930 if (flag_mask & bit_scope.first) {
931 scope |= bit_scope.second;
932 }
933 }
934 return scope;
935}
936
937SyncStageAccessFlags SyncStageAccess::AccessScopeByStage(VkPipelineStageFlags stages) {
938 return AccessScopeImpl(stages, syncStageAccessMaskByStageBit);
939}
940
941SyncStageAccessFlags SyncStageAccess::AccessScopeByAccess(VkAccessFlags accesses) {
942 return AccessScopeImpl(accesses, syncStageAccessMaskByAccessBit);
943}
944
945// Getting from stage mask and access mask to stage/acess masks is something we need to be good at...
946SyncStageAccessFlags SyncStageAccess::AccessScope(VkPipelineStageFlags stages, VkAccessFlags accesses) {
John Zulauf5f13a792020-03-10 07:31:21 -0600947 // The access scope is the intersection of all stage/access types possible for the enabled stages and the enables
948 // accesses (after doing a couple factoring of common terms the union of stage/access intersections is the intersections
949 // of the union of all stage/access types for all the stages and the same unions for the access mask...
John Zulauf9cb530d2019-09-30 14:14:10 -0600950 return AccessScopeByStage(stages) & AccessScopeByAccess(accesses);
951}
952
953template <typename Action>
John Zulauf5c5e88d2019-12-26 11:22:02 -0700954void UpdateMemoryAccessState(ResourceAccessRangeMap *accesses, const ResourceAccessRange &range, const Action &action) {
John Zulauf7635de32020-05-29 17:14:15 -0600955 // TODO: Optimization for operations that do a pure overwrite (i.e. WRITE usages which rewrite the state, vs READ usages
956 // that do incrementalupdates
John Zulauf9cb530d2019-09-30 14:14:10 -0600957 auto pos = accesses->lower_bound(range);
958 if (pos == accesses->end() || !pos->first.intersects(range)) {
959 // The range is empty, fill it with a default value.
960 pos = action.Infill(accesses, pos, range);
961 } else if (range.begin < pos->first.begin) {
962 // Leading empty space, infill
John Zulauf5c5e88d2019-12-26 11:22:02 -0700963 pos = action.Infill(accesses, pos, ResourceAccessRange(range.begin, pos->first.begin));
John Zulauf9cb530d2019-09-30 14:14:10 -0600964 } else if (pos->first.begin < range.begin) {
965 // Trim the beginning if needed
966 pos = accesses->split(pos, range.begin, sparse_container::split_op_keep_both());
967 ++pos;
968 }
969
970 const auto the_end = accesses->end();
971 while ((pos != the_end) && pos->first.intersects(range)) {
972 if (pos->first.end > range.end) {
973 pos = accesses->split(pos, range.end, sparse_container::split_op_keep_both());
974 }
975
976 pos = action(accesses, pos);
977 if (pos == the_end) break;
978
979 auto next = pos;
980 ++next;
981 if ((pos->first.end < range.end) && (next != the_end) && !next->first.is_subsequent_to(pos->first)) {
982 // Need to infill if next is disjoint
983 VkDeviceSize limit = (next == the_end) ? range.end : std::min(range.end, next->first.begin);
John Zulauf5c5e88d2019-12-26 11:22:02 -0700984 ResourceAccessRange new_range(pos->first.end, limit);
John Zulauf9cb530d2019-09-30 14:14:10 -0600985 next = action.Infill(accesses, next, new_range);
986 }
987 pos = next;
988 }
989}
990
991struct UpdateMemoryAccessStateFunctor {
John Zulauf5c5e88d2019-12-26 11:22:02 -0700992 using Iterator = ResourceAccessRangeMap::iterator;
993 Iterator Infill(ResourceAccessRangeMap *accesses, Iterator pos, ResourceAccessRange range) const {
John Zulauf5f13a792020-03-10 07:31:21 -0600994 // this is only called on gaps, and never returns a gap.
995 ResourceAccessState default_state;
John Zulauf16adfc92020-04-08 10:28:33 -0600996 context.ResolvePreviousAccess(type, range, accesses, &default_state);
John Zulauf5f13a792020-03-10 07:31:21 -0600997 return accesses->lower_bound(range);
John Zulauf9cb530d2019-09-30 14:14:10 -0600998 }
John Zulauf5f13a792020-03-10 07:31:21 -0600999
John Zulauf5c5e88d2019-12-26 11:22:02 -07001000 Iterator operator()(ResourceAccessRangeMap *accesses, Iterator pos) const {
John Zulauf9cb530d2019-09-30 14:14:10 -06001001 auto &access_state = pos->second;
1002 access_state.Update(usage, tag);
1003 return pos;
1004 }
1005
John Zulauf16adfc92020-04-08 10:28:33 -06001006 UpdateMemoryAccessStateFunctor(AccessContext::AddressType type_, const AccessContext &context_, SyncStageAccessIndex usage_,
John Zulauf540266b2020-04-06 18:54:53 -06001007 const ResourceUsageTag &tag_)
John Zulauf16adfc92020-04-08 10:28:33 -06001008 : type(type_), context(context_), usage(usage_), tag(tag_) {}
1009 const AccessContext::AddressType type;
John Zulauf540266b2020-04-06 18:54:53 -06001010 const AccessContext &context;
John Zulauf16adfc92020-04-08 10:28:33 -06001011 const SyncStageAccessIndex usage;
John Zulauf9cb530d2019-09-30 14:14:10 -06001012 const ResourceUsageTag &tag;
1013};
1014
1015struct ApplyMemoryAccessBarrierFunctor {
John Zulauf5c5e88d2019-12-26 11:22:02 -07001016 using Iterator = ResourceAccessRangeMap::iterator;
1017 inline Iterator Infill(ResourceAccessRangeMap *accesses, Iterator pos, ResourceAccessRange range) const { return pos; }
John Zulauf9cb530d2019-09-30 14:14:10 -06001018
John Zulauf5c5e88d2019-12-26 11:22:02 -07001019 Iterator operator()(ResourceAccessRangeMap *accesses, Iterator pos) const {
John Zulauf9cb530d2019-09-30 14:14:10 -06001020 auto &access_state = pos->second;
John Zulauf36bcf6a2020-02-03 15:12:52 -07001021 access_state.ApplyMemoryAccessBarrier(src_exec_scope, src_access_scope, dst_exec_scope, dst_access_scope);
John Zulauf9cb530d2019-09-30 14:14:10 -06001022 return pos;
1023 }
1024
John Zulauf36bcf6a2020-02-03 15:12:52 -07001025 ApplyMemoryAccessBarrierFunctor(VkPipelineStageFlags src_exec_scope_, SyncStageAccessFlags src_access_scope_,
1026 VkPipelineStageFlags dst_exec_scope_, SyncStageAccessFlags dst_access_scope_)
1027 : src_exec_scope(src_exec_scope_),
1028 src_access_scope(src_access_scope_),
1029 dst_exec_scope(dst_exec_scope_),
1030 dst_access_scope(dst_access_scope_) {}
John Zulauf9cb530d2019-09-30 14:14:10 -06001031
John Zulauf36bcf6a2020-02-03 15:12:52 -07001032 VkPipelineStageFlags src_exec_scope;
1033 SyncStageAccessFlags src_access_scope;
1034 VkPipelineStageFlags dst_exec_scope;
1035 SyncStageAccessFlags dst_access_scope;
John Zulauf9cb530d2019-09-30 14:14:10 -06001036};
1037
1038struct ApplyGlobalBarrierFunctor {
John Zulauf5c5e88d2019-12-26 11:22:02 -07001039 using Iterator = ResourceAccessRangeMap::iterator;
1040 inline Iterator Infill(ResourceAccessRangeMap *accesses, Iterator pos, ResourceAccessRange range) const { return pos; }
John Zulauf9cb530d2019-09-30 14:14:10 -06001041
John Zulauf5c5e88d2019-12-26 11:22:02 -07001042 Iterator operator()(ResourceAccessRangeMap *accesses, Iterator pos) const {
John Zulauf9cb530d2019-09-30 14:14:10 -06001043 auto &access_state = pos->second;
John Zulauf36bcf6a2020-02-03 15:12:52 -07001044 access_state.ApplyExecutionBarrier(src_exec_scope, dst_exec_scope);
John Zulauf9cb530d2019-09-30 14:14:10 -06001045
1046 for (const auto &functor : barrier_functor) {
1047 functor(accesses, pos);
1048 }
1049 return pos;
1050 }
1051
John Zulauf36bcf6a2020-02-03 15:12:52 -07001052 ApplyGlobalBarrierFunctor(VkPipelineStageFlags src_exec_scope, VkPipelineStageFlags dst_exec_scope,
1053 SyncStageAccessFlags src_stage_accesses, SyncStageAccessFlags dst_stage_accesses,
John Zulauf9cb530d2019-09-30 14:14:10 -06001054 uint32_t memoryBarrierCount, const VkMemoryBarrier *pMemoryBarriers)
John Zulauf36bcf6a2020-02-03 15:12:52 -07001055 : src_exec_scope(src_exec_scope), dst_exec_scope(dst_exec_scope) {
John Zulauf9cb530d2019-09-30 14:14:10 -06001056 // Don't want to create this per tracked item, but don't want to loop through all tracked items per barrier...
1057 barrier_functor.reserve(memoryBarrierCount);
1058 for (uint32_t barrier_index = 0; barrier_index < memoryBarrierCount; barrier_index++) {
1059 const auto &barrier = pMemoryBarriers[barrier_index];
John Zulauf36bcf6a2020-02-03 15:12:52 -07001060 barrier_functor.emplace_back(src_exec_scope, SyncStageAccess::AccessScope(src_stage_accesses, barrier.srcAccessMask),
1061 dst_exec_scope, SyncStageAccess::AccessScope(dst_stage_accesses, barrier.dstAccessMask));
John Zulauf9cb530d2019-09-30 14:14:10 -06001062 }
1063 }
1064
John Zulauf36bcf6a2020-02-03 15:12:52 -07001065 const VkPipelineStageFlags src_exec_scope;
1066 const VkPipelineStageFlags dst_exec_scope;
John Zulauf9cb530d2019-09-30 14:14:10 -06001067 std::vector<ApplyMemoryAccessBarrierFunctor> barrier_functor;
1068};
1069
John Zulauf355e49b2020-04-24 15:11:15 -06001070void AccessContext::UpdateAccessState(AddressType type, SyncStageAccessIndex current_usage, const ResourceAccessRange &range,
1071 const ResourceUsageTag &tag) {
John Zulauf16adfc92020-04-08 10:28:33 -06001072 UpdateMemoryAccessStateFunctor action(type, *this, current_usage, tag);
1073 UpdateMemoryAccessState(&GetAccessStateMap(type), range, action);
John Zulauf3d84f1b2020-03-09 13:33:25 -06001074}
1075
John Zulauf16adfc92020-04-08 10:28:33 -06001076void AccessContext::UpdateAccessState(const BUFFER_STATE &buffer, SyncStageAccessIndex current_usage,
John Zulauf355e49b2020-04-24 15:11:15 -06001077 const ResourceAccessRange &range, const ResourceUsageTag &tag) {
John Zulauf16adfc92020-04-08 10:28:33 -06001078 if (!SimpleBinding(buffer)) return;
1079 const auto base_address = ResourceBaseAddress(buffer);
1080 UpdateAccessState(AddressType::kLinearAddress, current_usage, range + base_address, tag);
1081}
John Zulauf355e49b2020-04-24 15:11:15 -06001082
John Zulauf540266b2020-04-06 18:54:53 -06001083void AccessContext::UpdateAccessState(const IMAGE_STATE &image, SyncStageAccessIndex current_usage,
John Zulauf355e49b2020-04-24 15:11:15 -06001084 const VkImageSubresourceRange &subresource_range, const VkOffset3D &offset,
John Zulauf540266b2020-04-06 18:54:53 -06001085 const VkExtent3D &extent, const ResourceUsageTag &tag) {
John Zulauf16adfc92020-04-08 10:28:33 -06001086 if (!SimpleBinding(image)) return;
locke-lunargae26eac2020-04-16 15:29:05 -06001087 subresource_adapter::ImageRangeGenerator range_gen(*image.fragment_encoder.get(), subresource_range, offset, extent);
John Zulauf16adfc92020-04-08 10:28:33 -06001088 const auto address_type = ImageAddressType(image);
1089 const auto base_address = ResourceBaseAddress(image);
1090 UpdateMemoryAccessStateFunctor action(address_type, *this, current_usage, tag);
John Zulauf5f13a792020-03-10 07:31:21 -06001091 for (; range_gen->non_empty(); ++range_gen) {
John Zulauf16adfc92020-04-08 10:28:33 -06001092 UpdateMemoryAccessState(&GetAccessStateMap(address_type), (*range_gen + base_address), action);
John Zulauf5f13a792020-03-10 07:31:21 -06001093 }
John Zulauf3d84f1b2020-03-09 13:33:25 -06001094}
John Zulauf7635de32020-05-29 17:14:15 -06001095void AccessContext::UpdateAccessState(const IMAGE_VIEW_STATE *view, SyncStageAccessIndex current_usage, const VkOffset3D &offset,
1096 const VkExtent3D &extent, VkImageAspectFlags aspect_mask, const ResourceUsageTag &tag) {
1097 if (view != nullptr) {
1098 const IMAGE_STATE *image = view->image_state.get();
1099 if (image != nullptr) {
1100 auto *update_range = &view->normalized_subresource_range;
1101 VkImageSubresourceRange masked_range;
1102 if (aspect_mask) { // If present and non-zero, restrict the normalized range to aspects present in aspect_mask
1103 masked_range = view->normalized_subresource_range;
1104 masked_range.aspectMask = aspect_mask & masked_range.aspectMask;
1105 update_range = &masked_range;
1106 }
1107 UpdateAccessState(*image, current_usage, *update_range, offset, extent, tag);
1108 }
1109 }
1110}
John Zulauf3d84f1b2020-03-09 13:33:25 -06001111
John Zulauf355e49b2020-04-24 15:11:15 -06001112void AccessContext::UpdateAccessState(const IMAGE_STATE &image, SyncStageAccessIndex current_usage,
1113 const VkImageSubresourceLayers &subresource, const VkOffset3D &offset,
1114 const VkExtent3D &extent, const ResourceUsageTag &tag) {
John Zulauf355e49b2020-04-24 15:11:15 -06001115 VkImageSubresourceRange subresource_range = {subresource.aspectMask, subresource.mipLevel, 1, subresource.baseArrayLayer,
1116 subresource.layerCount};
1117 UpdateAccessState(image, current_usage, subresource_range, offset, extent, tag);
1118}
1119
John Zulauf540266b2020-04-06 18:54:53 -06001120template <typename Action>
1121void AccessContext::UpdateMemoryAccess(const BUFFER_STATE &buffer, const ResourceAccessRange &range, const Action action) {
John Zulauf16adfc92020-04-08 10:28:33 -06001122 if (!SimpleBinding(buffer)) return;
1123 const auto base_address = ResourceBaseAddress(buffer);
1124 UpdateMemoryAccessState(&GetAccessStateMap(AddressType::kLinearAddress), (range + base_address), action);
John Zulauf540266b2020-04-06 18:54:53 -06001125}
1126
1127template <typename Action>
1128void AccessContext::UpdateMemoryAccess(const IMAGE_STATE &image, const VkImageSubresourceRange &subresource_range,
1129 const Action action) {
John Zulauf16adfc92020-04-08 10:28:33 -06001130 if (!SimpleBinding(image)) return;
1131 const auto address_type = ImageAddressType(image);
1132 auto *accesses = &GetAccessStateMap(address_type);
John Zulauf540266b2020-04-06 18:54:53 -06001133
locke-lunargae26eac2020-04-16 15:29:05 -06001134 subresource_adapter::ImageRangeGenerator range_gen(*image.fragment_encoder.get(), subresource_range, {0, 0, 0},
locke-lunarg5f7d3c62020-04-07 00:10:39 -06001135 image.createInfo.extent);
John Zulauf540266b2020-04-06 18:54:53 -06001136
John Zulauf16adfc92020-04-08 10:28:33 -06001137 const auto base_address = ResourceBaseAddress(image);
John Zulauf540266b2020-04-06 18:54:53 -06001138 for (; range_gen->non_empty(); ++range_gen) {
John Zulauf16adfc92020-04-08 10:28:33 -06001139 UpdateMemoryAccessState(accesses, (*range_gen + base_address), action);
John Zulauf540266b2020-04-06 18:54:53 -06001140 }
1141}
1142
John Zulauf7635de32020-05-29 17:14:15 -06001143void AccessContext::UpdateAttachmentResolveAccess(const RENDER_PASS_STATE &rp_state, const VkRect2D &render_area,
1144 const std::vector<const IMAGE_VIEW_STATE *> &attachment_views, uint32_t subpass,
1145 const ResourceUsageTag &tag) {
1146 UpdateStateResolveAction update(*this, tag);
1147 ResolveOperation(update, rp_state, render_area, attachment_views, subpass);
1148}
1149
John Zulaufaff20662020-06-01 14:07:58 -06001150void AccessContext::UpdateAttachmentStoreAccess(const RENDER_PASS_STATE &rp_state, const VkRect2D &render_area,
1151 const std::vector<const IMAGE_VIEW_STATE *> &attachment_views, uint32_t subpass,
1152 const ResourceUsageTag &tag) {
1153 const auto *attachment_ci = rp_state.createInfo.pAttachments;
1154 VkExtent3D extent = CastTo3D(render_area.extent);
1155 VkOffset3D offset = CastTo3D(render_area.offset);
1156
1157 for (uint32_t i = 0; i < rp_state.createInfo.attachmentCount; i++) {
1158 if (rp_state.attachment_last_subpass[i] == subpass) {
1159 if (attachment_views[i] == nullptr) continue; // UNUSED
1160 const auto &view = *attachment_views[i];
1161 const IMAGE_STATE *image = view.image_state.get();
1162 if (image == nullptr) continue;
1163
1164 const auto &ci = attachment_ci[i];
1165 const bool has_depth = FormatHasDepth(ci.format);
1166 const bool has_stencil = FormatHasStencil(ci.format);
1167 const bool is_color = !(has_depth || has_stencil);
1168 const bool store_op_stores = ci.storeOp != VK_ATTACHMENT_STORE_OP_NONE_QCOM;
1169
1170 if (is_color && store_op_stores) {
1171 UpdateAccessState(*image, SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_WRITE, view.normalized_subresource_range,
1172 offset, extent, tag);
1173 } else {
1174 auto update_range = view.normalized_subresource_range;
1175 if (has_depth && store_op_stores) {
1176 update_range.aspectMask = VK_IMAGE_ASPECT_DEPTH_BIT;
1177 UpdateAccessState(*image, SYNC_LATE_FRAGMENT_TESTS_DEPTH_STENCIL_ATTACHMENT_WRITE, update_range, offset, extent,
1178 tag);
1179 }
1180 const bool stencil_op_stores = ci.stencilStoreOp != VK_ATTACHMENT_STORE_OP_NONE_QCOM;
1181 if (has_stencil && stencil_op_stores) {
1182 update_range.aspectMask = VK_IMAGE_ASPECT_STENCIL_BIT;
1183 UpdateAccessState(*image, SYNC_LATE_FRAGMENT_TESTS_DEPTH_STENCIL_ATTACHMENT_WRITE, update_range, offset, extent,
1184 tag);
1185 }
1186 }
1187 }
1188 }
1189}
1190
John Zulauf540266b2020-04-06 18:54:53 -06001191template <typename Action>
1192void AccessContext::ApplyGlobalBarriers(const Action &barrier_action) {
1193 // Note: Barriers do *not* cross context boundaries, applying to accessess within.... (at least for renderpass subpasses)
John Zulauf16adfc92020-04-08 10:28:33 -06001194 for (const auto address_type : kAddressTypes) {
1195 UpdateMemoryAccessState(&GetAccessStateMap(address_type), full_range, barrier_action);
John Zulauf540266b2020-04-06 18:54:53 -06001196 }
1197}
1198
1199void AccessContext::ResolveChildContexts(const std::vector<AccessContext> &contexts) {
John Zulauf540266b2020-04-06 18:54:53 -06001200 for (uint32_t subpass_index = 0; subpass_index < contexts.size(); subpass_index++) {
1201 auto &context = contexts[subpass_index];
John Zulauf16adfc92020-04-08 10:28:33 -06001202 for (const auto address_type : kAddressTypes) {
John Zulauf355e49b2020-04-24 15:11:15 -06001203 context.ResolveAccessRange(address_type, full_range, &context.GetDstExternalTrackBack().barrier,
1204 &GetAccessStateMap(address_type), nullptr, false);
John Zulauf540266b2020-04-06 18:54:53 -06001205 }
1206 }
1207}
1208
John Zulauf355e49b2020-04-24 15:11:15 -06001209void AccessContext::ApplyImageBarrier(const IMAGE_STATE &image, VkPipelineStageFlags src_exec_scope,
1210 SyncStageAccessFlags src_access_scope, VkPipelineStageFlags dst_exec_scope,
1211 SyncStageAccessFlags dst_access_scope, const VkImageSubresourceRange &subresource_range) {
1212 const ApplyMemoryAccessBarrierFunctor barrier_action(src_exec_scope, src_access_scope, dst_exec_scope, dst_access_scope);
1213 UpdateMemoryAccess(image, subresource_range, barrier_action);
1214}
1215
John Zulauf7635de32020-05-29 17:14:15 -06001216// Note: ImageBarriers do not operate at offset/extent resolution, only at the whole subreources level
John Zulauf355e49b2020-04-24 15:11:15 -06001217void AccessContext::ApplyImageBarrier(const IMAGE_STATE &image, VkPipelineStageFlags src_exec_scope,
1218 SyncStageAccessFlags src_access_scope, VkPipelineStageFlags dst_exec_scope,
1219 SyncStageAccessFlags dst_access_scope, const VkImageSubresourceRange &subresource_range,
1220 bool layout_transition, const ResourceUsageTag &tag) {
1221 if (layout_transition) {
1222 UpdateAccessState(image, SYNC_IMAGE_LAYOUT_TRANSITION, subresource_range, VkOffset3D{0, 0, 0}, image.createInfo.extent,
1223 tag);
1224 ApplyImageBarrier(image, src_exec_scope, SYNC_IMAGE_LAYOUT_TRANSITION_BIT, dst_exec_scope, dst_access_scope,
1225 subresource_range);
John Zulaufc9201222020-05-13 15:13:03 -06001226 } else {
1227 ApplyImageBarrier(image, src_exec_scope, src_access_scope, dst_exec_scope, dst_access_scope, subresource_range);
John Zulauf355e49b2020-04-24 15:11:15 -06001228 }
John Zulauf355e49b2020-04-24 15:11:15 -06001229}
1230
John Zulauf7635de32020-05-29 17:14:15 -06001231// Note: ImageBarriers do not operate at offset/extent resolution, only at the whole subreources level
John Zulauf355e49b2020-04-24 15:11:15 -06001232void AccessContext::ApplyImageBarrier(const IMAGE_STATE &image, const SyncBarrier &barrier,
1233 const VkImageSubresourceRange &subresource_range, bool layout_transition,
1234 const ResourceUsageTag &tag) {
1235 ApplyImageBarrier(image, barrier.src_exec_scope, barrier.src_access_scope, barrier.dst_exec_scope, barrier.dst_access_scope,
1236 subresource_range, layout_transition, tag);
1237}
1238
1239// Suitable only for *subpass* access contexts
John Zulauf7635de32020-05-29 17:14:15 -06001240HazardResult AccessContext::DetectSubpassTransitionHazard(const TrackBack &track_back, const IMAGE_VIEW_STATE *attach_view) const {
John Zulauf355e49b2020-04-24 15:11:15 -06001241 if (!attach_view) return HazardResult();
1242 const auto image_state = attach_view->image_state.get();
1243 if (!image_state) return HazardResult();
1244
John Zulauf355e49b2020-04-24 15:11:15 -06001245 // We should never ask for a transition from a context we don't have
John Zulauf7635de32020-05-29 17:14:15 -06001246 assert(track_back.context);
John Zulauf355e49b2020-04-24 15:11:15 -06001247
1248 // Do the detection against the specific prior context independent of other contexts. (Synchronous only)
John Zulauf7635de32020-05-29 17:14:15 -06001249 auto hazard = track_back.context->DetectImageBarrierHazard(*image_state, track_back.barrier.src_exec_scope,
1250 track_back.barrier.src_access_scope,
1251 attach_view->normalized_subresource_range, kDetectPrevious);
John Zulauf355e49b2020-04-24 15:11:15 -06001252 if (!hazard.hazard) {
1253 // The Async hazard check is against the current context's async set.
John Zulauf7635de32020-05-29 17:14:15 -06001254 hazard = DetectImageBarrierHazard(*image_state, track_back.barrier.src_exec_scope, track_back.barrier.src_access_scope,
John Zulauf355e49b2020-04-24 15:11:15 -06001255 attach_view->normalized_subresource_range, kDetectAsync);
1256 }
1257 return hazard;
1258}
1259
1260// Class CommandBufferAccessContext: Keep track of resource access state information for a specific command buffer
1261bool CommandBufferAccessContext::ValidateBeginRenderPass(const RENDER_PASS_STATE &rp_state,
1262
1263 const VkRenderPassBeginInfo *pRenderPassBegin,
1264 const VkSubpassBeginInfoKHR *pSubpassBeginInfo,
1265 const char *func_name) const {
1266 // Check if any of the layout transitions are hazardous.... but we don't have the renderpass context to work with, so we
1267 bool skip = false;
1268 uint32_t subpass = 0;
1269 const auto &transitions = rp_state.subpass_transitions[subpass];
1270 if (transitions.size()) {
1271 const std::vector<AccessContext> empty_context_vector;
1272 // Create context we can use to validate against...
1273 AccessContext temp_context(subpass, queue_flags_, rp_state.subpass_dependencies, empty_context_vector,
1274 const_cast<AccessContext *>(&cb_access_context_));
1275
1276 assert(pRenderPassBegin);
1277 if (nullptr == pRenderPassBegin) return skip;
1278
1279 const auto fb_state = sync_state_->Get<FRAMEBUFFER_STATE>(pRenderPassBegin->framebuffer);
1280 assert(fb_state);
1281 if (nullptr == fb_state) return skip;
1282
1283 // Create a limited array of views (which we'll need to toss
1284 std::vector<const IMAGE_VIEW_STATE *> views;
1285 const auto count_attachment = GetFramebufferAttachments(*pRenderPassBegin, *fb_state);
1286 const auto attachment_count = count_attachment.first;
1287 const auto *attachments = count_attachment.second;
1288 views.resize(attachment_count, nullptr);
1289 for (const auto &transition : transitions) {
1290 assert(transition.attachment < attachment_count);
1291 views[transition.attachment] = sync_state_->Get<IMAGE_VIEW_STATE>(attachments[transition.attachment]);
1292 }
1293
John Zulauf7635de32020-05-29 17:14:15 -06001294 skip |= temp_context.ValidateLayoutTransitions(*sync_state_, rp_state, pRenderPassBegin->renderArea, 0, views, func_name);
1295 skip |= temp_context.ValidateLoadOperation(*sync_state_, rp_state, pRenderPassBegin->renderArea, 0, views, func_name);
John Zulauf355e49b2020-04-24 15:11:15 -06001296 }
1297 return skip;
1298}
1299
locke-lunarg61870c22020-06-09 14:51:50 -06001300bool CommandBufferAccessContext::ValidateDispatchDrawDescriptorSet(VkPipelineBindPoint pipelineBindPoint,
1301 const char *func_name) const {
1302 bool skip = false;
1303 const PIPELINE_STATE *pPipe = nullptr;
1304 const std::vector<LAST_BOUND_STATE::PER_SET> *per_sets = nullptr;
1305 GetCurrentPipelineAndDesriptorSetsFromCommandBuffer(*cb_state_.get(), pipelineBindPoint, &pPipe, &per_sets);
1306 if (!pPipe || !per_sets) {
1307 return skip;
1308 }
1309
1310 using DescriptorClass = cvdescriptorset::DescriptorClass;
1311 using BufferDescriptor = cvdescriptorset::BufferDescriptor;
1312 using ImageDescriptor = cvdescriptorset::ImageDescriptor;
1313 using ImageSamplerDescriptor = cvdescriptorset::ImageSamplerDescriptor;
1314 using TexelDescriptor = cvdescriptorset::TexelDescriptor;
1315
1316 for (const auto &stage_state : pPipe->stage_state) {
1317 for (const auto &set_binding : stage_state.descriptor_uses) {
1318 cvdescriptorset::DescriptorSet *descriptor_set = (*per_sets)[set_binding.first.first].bound_descriptor_set;
1319 cvdescriptorset::DescriptorSetLayout::ConstBindingIterator binding_it(descriptor_set->GetLayout().get(),
1320 set_binding.first.second);
1321 const auto descriptor_type = binding_it.GetType();
1322 cvdescriptorset::IndexRange index_range = binding_it.GetGlobalIndexRange();
1323 auto array_idx = 0;
1324
1325 if (binding_it.IsVariableDescriptorCount()) {
1326 index_range.end = index_range.start + descriptor_set->GetVariableDescriptorCount();
1327 }
1328 SyncStageAccessIndex sync_index =
1329 GetSyncStageAccessIndexsByDescriptorSet(descriptor_type, set_binding.second, stage_state.stage_flag);
1330
1331 for (uint32_t i = index_range.start; i < index_range.end; ++i, ++array_idx) {
1332 uint32_t index = i - index_range.start;
1333 const auto *descriptor = descriptor_set->GetDescriptorFromGlobalIndex(i);
1334 switch (descriptor->GetClass()) {
1335 case DescriptorClass::ImageSampler:
1336 case DescriptorClass::Image: {
1337 const IMAGE_VIEW_STATE *img_view_state = nullptr;
1338 if (descriptor->GetClass() == DescriptorClass::ImageSampler) {
1339 img_view_state = static_cast<const ImageSamplerDescriptor *>(descriptor)->GetImageViewState();
1340 } else {
1341 img_view_state = static_cast<const ImageDescriptor *>(descriptor)->GetImageViewState();
1342 }
1343 if (!img_view_state) continue;
1344 const IMAGE_STATE *img_state = img_view_state->image_state.get();
1345 VkExtent3D extent = {};
1346 VkOffset3D offset = {};
1347 if (sync_index == SYNC_FRAGMENT_SHADER_INPUT_ATTACHMENT_READ) {
1348 extent = CastTo3D(cb_state_->activeRenderPassBeginInfo.renderArea.extent);
1349 offset = CastTo3D(cb_state_->activeRenderPassBeginInfo.renderArea.offset);
1350 } else {
1351 extent = img_state->createInfo.extent;
1352 }
1353 auto hazard = current_context_->DetectHazard(*img_state, sync_index,
1354 img_view_state->normalized_subresource_range, offset, extent);
1355 if (hazard.hazard) {
1356 skip |=
1357 sync_state_->LogError(img_view_state->image_view, string_SyncHazardVUID(hazard.hazard),
1358 "%s: Hazard %s for %s in %s, %s, and %s binding #%d index %d", func_name,
1359 string_SyncHazard(hazard.hazard),
1360 sync_state_->report_data->FormatHandle(img_view_state->image_view).c_str(),
1361 sync_state_->report_data->FormatHandle(cb_state_->commandBuffer).c_str(),
1362 sync_state_->report_data->FormatHandle(pPipe->pipeline).c_str(),
1363 sync_state_->report_data->FormatHandle(descriptor_set->GetSet()).c_str(),
1364 set_binding.first.second, index);
1365 }
1366 break;
1367 }
1368 case DescriptorClass::TexelBuffer: {
1369 auto buf_view_state = static_cast<const TexelDescriptor *>(descriptor)->GetBufferViewState();
1370 if (!buf_view_state) continue;
1371 const BUFFER_STATE *buf_state = buf_view_state->buffer_state.get();
1372 ResourceAccessRange range =
1373 MakeRange(buf_view_state->create_info.offset,
1374 GetRealWholeSize(buf_view_state->create_info.offset, buf_view_state->create_info.range,
1375 buf_state->createInfo.size));
1376 auto hazard = current_context_->DetectHazard(*buf_state, sync_index, range);
1377 if (hazard.hazard) {
1378 skip |=
1379 sync_state_->LogError(buf_view_state->buffer_view, string_SyncHazardVUID(hazard.hazard),
1380 "%s: Hazard %s for %s in %s, %s, and %s binding #%d index %d", func_name,
1381 string_SyncHazard(hazard.hazard),
1382 sync_state_->report_data->FormatHandle(buf_view_state->buffer_view).c_str(),
1383 sync_state_->report_data->FormatHandle(cb_state_->commandBuffer).c_str(),
1384 sync_state_->report_data->FormatHandle(pPipe->pipeline).c_str(),
1385 sync_state_->report_data->FormatHandle(descriptor_set->GetSet()).c_str(),
1386 set_binding.first.second, index);
1387 }
1388 break;
1389 }
1390 case DescriptorClass::GeneralBuffer: {
1391 const auto *buffer_descriptor = static_cast<const BufferDescriptor *>(descriptor);
1392 auto buf_state = buffer_descriptor->GetBufferState();
1393 if (!buf_state) continue;
1394 ResourceAccessRange range = MakeRange(buffer_descriptor->GetOffset(), buffer_descriptor->GetRange());
1395 auto hazard = current_context_->DetectHazard(*buf_state, sync_index, range);
1396 if (hazard.hazard) {
1397 skip |= sync_state_->LogError(buf_state->buffer, string_SyncHazardVUID(hazard.hazard),
1398 "%s: Hazard %s for %s in %s, %s, and %s binding #%d index %d", func_name,
1399 string_SyncHazard(hazard.hazard),
1400 sync_state_->report_data->FormatHandle(buf_state->buffer).c_str(),
1401 sync_state_->report_data->FormatHandle(cb_state_->commandBuffer).c_str(),
1402 sync_state_->report_data->FormatHandle(pPipe->pipeline).c_str(),
1403 sync_state_->report_data->FormatHandle(descriptor_set->GetSet()).c_str(),
1404 set_binding.first.second, index);
1405 }
1406 break;
1407 }
1408 // TODO: INLINE_UNIFORM_BLOCK_EXT, ACCELERATION_STRUCTURE_KHR
1409 default:
1410 break;
1411 }
1412 }
1413 }
1414 }
1415 return skip;
1416}
1417
1418void CommandBufferAccessContext::RecordDispatchDrawDescriptorSet(VkPipelineBindPoint pipelineBindPoint,
1419 const ResourceUsageTag &tag) {
1420 const PIPELINE_STATE *pPipe = nullptr;
1421 const std::vector<LAST_BOUND_STATE::PER_SET> *per_sets = nullptr;
1422 GetCurrentPipelineAndDesriptorSetsFromCommandBuffer(*cb_state_.get(), pipelineBindPoint, &pPipe, &per_sets);
1423 if (!pPipe || !per_sets) {
1424 return;
1425 }
1426
1427 using DescriptorClass = cvdescriptorset::DescriptorClass;
1428 using BufferDescriptor = cvdescriptorset::BufferDescriptor;
1429 using ImageDescriptor = cvdescriptorset::ImageDescriptor;
1430 using ImageSamplerDescriptor = cvdescriptorset::ImageSamplerDescriptor;
1431 using TexelDescriptor = cvdescriptorset::TexelDescriptor;
1432
1433 for (const auto &stage_state : pPipe->stage_state) {
1434 for (const auto &set_binding : stage_state.descriptor_uses) {
1435 cvdescriptorset::DescriptorSet *descriptor_set = (*per_sets)[set_binding.first.first].bound_descriptor_set;
1436 cvdescriptorset::DescriptorSetLayout::ConstBindingIterator binding_it(descriptor_set->GetLayout().get(),
1437 set_binding.first.second);
1438 const auto descriptor_type = binding_it.GetType();
1439 cvdescriptorset::IndexRange index_range = binding_it.GetGlobalIndexRange();
1440 auto array_idx = 0;
1441
1442 if (binding_it.IsVariableDescriptorCount()) {
1443 index_range.end = index_range.start + descriptor_set->GetVariableDescriptorCount();
1444 }
1445 SyncStageAccessIndex sync_index =
1446 GetSyncStageAccessIndexsByDescriptorSet(descriptor_type, set_binding.second, stage_state.stage_flag);
1447
1448 for (uint32_t i = index_range.start; i < index_range.end; ++i, ++array_idx) {
1449 const auto *descriptor = descriptor_set->GetDescriptorFromGlobalIndex(i);
1450 switch (descriptor->GetClass()) {
1451 case DescriptorClass::ImageSampler:
1452 case DescriptorClass::Image: {
1453 const IMAGE_VIEW_STATE *img_view_state = nullptr;
1454 if (descriptor->GetClass() == DescriptorClass::ImageSampler) {
1455 img_view_state = static_cast<const ImageSamplerDescriptor *>(descriptor)->GetImageViewState();
1456 } else {
1457 img_view_state = static_cast<const ImageDescriptor *>(descriptor)->GetImageViewState();
1458 }
1459 if (!img_view_state) continue;
1460 const IMAGE_STATE *img_state = img_view_state->image_state.get();
1461 VkExtent3D extent = {};
1462 VkOffset3D offset = {};
1463 if (sync_index == SYNC_FRAGMENT_SHADER_INPUT_ATTACHMENT_READ) {
1464 extent = CastTo3D(cb_state_->activeRenderPassBeginInfo.renderArea.extent);
1465 offset = CastTo3D(cb_state_->activeRenderPassBeginInfo.renderArea.offset);
1466 } else {
1467 extent = img_state->createInfo.extent;
1468 }
1469 current_context_->UpdateAccessState(*img_state, sync_index, img_view_state->normalized_subresource_range,
1470 offset, extent, tag);
1471 break;
1472 }
1473 case DescriptorClass::TexelBuffer: {
1474 auto buf_view_state = static_cast<const TexelDescriptor *>(descriptor)->GetBufferViewState();
1475 if (!buf_view_state) continue;
1476 const BUFFER_STATE *buf_state = buf_view_state->buffer_state.get();
1477 ResourceAccessRange range =
1478 MakeRange(buf_view_state->create_info.offset, buf_view_state->create_info.range);
1479 current_context_->UpdateAccessState(*buf_state, sync_index, range, tag);
1480 break;
1481 }
1482 case DescriptorClass::GeneralBuffer: {
1483 const auto *buffer_descriptor = static_cast<const BufferDescriptor *>(descriptor);
1484 auto buf_state = buffer_descriptor->GetBufferState();
1485 if (!buf_state) continue;
1486 ResourceAccessRange range = MakeRange(buffer_descriptor->GetOffset(), buffer_descriptor->GetRange());
1487 current_context_->UpdateAccessState(*buf_state, sync_index, range, tag);
1488 break;
1489 }
1490 // TODO: INLINE_UNIFORM_BLOCK_EXT, ACCELERATION_STRUCTURE_KHR
1491 default:
1492 break;
1493 }
1494 }
1495 }
1496 }
1497}
1498
1499bool CommandBufferAccessContext::ValidateDrawVertex(uint32_t vertexCount, uint32_t firstVertex, const char *func_name) const {
1500 bool skip = false;
1501 const auto *pPipe = GetCurrentPipelineFromCommandBuffer(*cb_state_.get(), VK_PIPELINE_BIND_POINT_GRAPHICS);
1502 if (!pPipe) {
1503 return skip;
1504 }
1505
1506 const auto &binding_buffers = cb_state_->current_vertex_buffer_binding_info.vertex_buffer_bindings;
1507 const auto &binding_buffers_size = binding_buffers.size();
1508 const auto &binding_descriptions_size = pPipe->vertex_binding_descriptions_.size();
1509
1510 for (size_t i = 0; i < binding_descriptions_size; ++i) {
1511 const auto &binding_description = pPipe->vertex_binding_descriptions_[i];
1512 if (binding_description.binding < binding_buffers_size) {
1513 const auto &binding_buffer = binding_buffers[binding_description.binding];
1514 if (binding_buffer.buffer == VK_NULL_HANDLE) continue;
1515
1516 auto *buf_state = sync_state_->Get<BUFFER_STATE>(binding_buffer.buffer);
1517 VkDeviceSize range_start = 0;
1518 VkDeviceSize range_size = 0;
1519 GetBufferRange(range_start, range_size, binding_buffer.offset, buf_state->createInfo.size, firstVertex, vertexCount,
1520 binding_description.stride);
1521 ResourceAccessRange range = MakeRange(range_start, range_size);
1522 auto hazard = current_context_->DetectHazard(*buf_state, SYNC_VERTEX_INPUT_VERTEX_ATTRIBUTE_READ, range);
1523 if (hazard.hazard) {
1524 skip |= sync_state_->LogError(buf_state->buffer, string_SyncHazardVUID(hazard.hazard),
1525 "%s: Hazard %s for vertex %s in %s", func_name, string_SyncHazard(hazard.hazard),
1526 sync_state_->report_data->FormatHandle(buf_state->buffer).c_str(),
1527 sync_state_->report_data->FormatHandle(cb_state_->commandBuffer).c_str());
1528 }
1529 }
1530 }
1531 return skip;
1532}
1533
1534void CommandBufferAccessContext::RecordDrawVertex(uint32_t vertexCount, uint32_t firstVertex, const ResourceUsageTag &tag) {
1535 const auto *pPipe = GetCurrentPipelineFromCommandBuffer(*cb_state_.get(), VK_PIPELINE_BIND_POINT_GRAPHICS);
1536 if (!pPipe) {
1537 return;
1538 }
1539 const auto &binding_buffers = cb_state_->current_vertex_buffer_binding_info.vertex_buffer_bindings;
1540 const auto &binding_buffers_size = binding_buffers.size();
1541 const auto &binding_descriptions_size = pPipe->vertex_binding_descriptions_.size();
1542
1543 for (size_t i = 0; i < binding_descriptions_size; ++i) {
1544 const auto &binding_description = pPipe->vertex_binding_descriptions_[i];
1545 if (binding_description.binding < binding_buffers_size) {
1546 const auto &binding_buffer = binding_buffers[binding_description.binding];
1547 if (binding_buffer.buffer == VK_NULL_HANDLE) continue;
1548
1549 auto *buf_state = sync_state_->Get<BUFFER_STATE>(binding_buffer.buffer);
1550 VkDeviceSize range_start = 0;
1551 VkDeviceSize range_size = 0;
1552 GetBufferRange(range_start, range_size, binding_buffer.offset, buf_state->createInfo.size, firstVertex, vertexCount,
1553 binding_description.stride);
1554 ResourceAccessRange range = MakeRange(range_start, range_size);
1555 current_context_->UpdateAccessState(*buf_state, SYNC_VERTEX_INPUT_VERTEX_ATTRIBUTE_READ, range, tag);
1556 }
1557 }
1558}
1559
1560bool CommandBufferAccessContext::ValidateDrawVertexIndex(uint32_t indexCount, uint32_t firstIndex, const char *func_name) const {
1561 bool skip = false;
1562 if (cb_state_->index_buffer_binding.buffer == VK_NULL_HANDLE) return skip;
1563
1564 auto *index_buf_state = sync_state_->Get<BUFFER_STATE>(cb_state_->index_buffer_binding.buffer);
1565 const auto index_size = GetIndexAlignment(cb_state_->index_buffer_binding.index_type);
1566 VkDeviceSize range_start = 0;
1567 VkDeviceSize range_size = 0;
1568 GetBufferRange(range_start, range_size, cb_state_->index_buffer_binding.offset, index_buf_state->createInfo.size, firstIndex,
1569 indexCount, index_size);
1570 ResourceAccessRange range = MakeRange(range_start, range_size);
1571 auto hazard = current_context_->DetectHazard(*index_buf_state, SYNC_VERTEX_INPUT_INDEX_READ, range);
1572 if (hazard.hazard) {
1573 skip |= sync_state_->LogError(index_buf_state->buffer, string_SyncHazardVUID(hazard.hazard),
1574 "%s: Hazard %s for index %s in %s", func_name, string_SyncHazard(hazard.hazard),
1575 sync_state_->report_data->FormatHandle(index_buf_state->buffer).c_str(),
1576 sync_state_->report_data->FormatHandle(cb_state_->commandBuffer).c_str());
1577 }
1578
1579 // TODO: For now, we detect the whole vertex buffer. Index buffer could be changed until SubmitQueue.
1580 // We will detect more accurate range in the future.
1581 skip |= ValidateDrawVertex(UINT32_MAX, 0, func_name);
1582 return skip;
1583}
1584
1585void CommandBufferAccessContext::RecordDrawVertexIndex(uint32_t indexCount, uint32_t firstIndex, const ResourceUsageTag &tag) {
1586 if (cb_state_->index_buffer_binding.buffer == VK_NULL_HANDLE) return;
1587
1588 auto *index_buf_state = sync_state_->Get<BUFFER_STATE>(cb_state_->index_buffer_binding.buffer);
1589 const auto index_size = GetIndexAlignment(cb_state_->index_buffer_binding.index_type);
1590 VkDeviceSize range_start = 0;
1591 VkDeviceSize range_size = 0;
1592 GetBufferRange(range_start, range_size, cb_state_->index_buffer_binding.offset, index_buf_state->createInfo.size, firstIndex,
1593 indexCount, index_size);
1594 ResourceAccessRange range = MakeRange(range_start, range_size);
1595 current_context_->UpdateAccessState(*index_buf_state, SYNC_VERTEX_INPUT_INDEX_READ, range, tag);
1596
1597 // TODO: For now, we detect the whole vertex buffer. Index buffer could be changed until SubmitQueue.
1598 // We will detect more accurate range in the future.
1599 RecordDrawVertex(UINT32_MAX, 0, tag);
1600}
1601
1602bool CommandBufferAccessContext::ValidateDrawSubpassAttachment(const char *func_name) const {
1603 return current_renderpass_context_->ValidateDrawSubpassAttachment(*sync_state_, *cb_state_.get(),
1604 cb_state_->activeRenderPassBeginInfo.renderArea, func_name);
1605}
1606
1607void CommandBufferAccessContext::RecordDrawSubpassAttachment(const ResourceUsageTag &tag) {
1608 current_renderpass_context_->RecordDrawSubpassAttachment(cb_state_->activeRenderPassBeginInfo.renderArea, tag);
1609}
1610
John Zulauf355e49b2020-04-24 15:11:15 -06001611bool CommandBufferAccessContext::ValidateNextSubpass(const char *func_name) const {
John Zulauf355e49b2020-04-24 15:11:15 -06001612 bool skip = false;
John Zulauf1507ee42020-05-18 11:33:09 -06001613 skip |=
1614 current_renderpass_context_->ValidateNextSubpass(*sync_state_, cb_state_->activeRenderPassBeginInfo.renderArea, func_name);
John Zulauf355e49b2020-04-24 15:11:15 -06001615
1616 return skip;
1617}
1618
1619bool CommandBufferAccessContext::ValidateEndRenderpass(const char *func_name) const {
1620 // TODO: Things to add here.
John Zulauf7635de32020-05-29 17:14:15 -06001621 // Validate Preserve attachments
John Zulauf355e49b2020-04-24 15:11:15 -06001622 bool skip = false;
John Zulauf7635de32020-05-29 17:14:15 -06001623 skip |= current_renderpass_context_->ValidateEndRenderPass(*sync_state_, cb_state_->activeRenderPassBeginInfo.renderArea,
1624 func_name);
John Zulauf355e49b2020-04-24 15:11:15 -06001625
1626 return skip;
1627}
1628
1629void CommandBufferAccessContext::RecordBeginRenderPass(const ResourceUsageTag &tag) {
1630 assert(sync_state_);
1631 if (!cb_state_) return;
1632
1633 // Create an access context the current renderpass.
1634 render_pass_contexts_.emplace_back(&cb_access_context_);
John Zulauf16adfc92020-04-08 10:28:33 -06001635 current_renderpass_context_ = &render_pass_contexts_.back();
John Zulauf355e49b2020-04-24 15:11:15 -06001636 current_renderpass_context_->RecordBeginRenderPass(*sync_state_, *cb_state_, queue_flags_, tag);
John Zulauf16adfc92020-04-08 10:28:33 -06001637 current_context_ = &current_renderpass_context_->CurrentContext();
John Zulauf16adfc92020-04-08 10:28:33 -06001638}
1639
John Zulauf355e49b2020-04-24 15:11:15 -06001640void CommandBufferAccessContext::RecordNextSubpass(const RENDER_PASS_STATE &rp_state, const ResourceUsageTag &tag) {
John Zulauf16adfc92020-04-08 10:28:33 -06001641 assert(current_renderpass_context_);
John Zulauf1507ee42020-05-18 11:33:09 -06001642 current_renderpass_context_->RecordNextSubpass(cb_state_->activeRenderPassBeginInfo.renderArea, tag);
John Zulauf16adfc92020-04-08 10:28:33 -06001643 current_context_ = &current_renderpass_context_->CurrentContext();
1644}
1645
John Zulauf355e49b2020-04-24 15:11:15 -06001646void CommandBufferAccessContext::RecordEndRenderPass(const RENDER_PASS_STATE &render_pass, const ResourceUsageTag &tag) {
John Zulauf16adfc92020-04-08 10:28:33 -06001647 assert(current_renderpass_context_);
1648 if (!current_renderpass_context_) return;
1649
John Zulauf7635de32020-05-29 17:14:15 -06001650 current_renderpass_context_->RecordEndRenderPass(cb_state_->activeRenderPassBeginInfo.renderArea, tag);
John Zulauf355e49b2020-04-24 15:11:15 -06001651 current_context_ = &cb_access_context_;
John Zulauf16adfc92020-04-08 10:28:33 -06001652 current_renderpass_context_ = nullptr;
1653}
1654
locke-lunarg61870c22020-06-09 14:51:50 -06001655bool RenderPassAccessContext::ValidateDrawSubpassAttachment(const SyncValidator &sync_state, const CMD_BUFFER_STATE &cmd,
1656 const VkRect2D &render_area, const char *func_name) const {
1657 bool skip = false;
1658 const auto &subpass = rp_state_->createInfo.pSubpasses[current_subpass_];
1659 VkExtent3D extent = CastTo3D(render_area.extent);
1660 VkOffset3D offset = CastTo3D(render_area.offset);
1661
locke-lunarg44f9bb12020-06-10 14:43:57 -06001662 // Subpass's inputAttachment has been done in ValidateDispatchDrawDescriptorSet
locke-lunarg61870c22020-06-09 14:51:50 -06001663 if (subpass.colorAttachmentCount) {
1664 if (subpass.pColorAttachments) {
1665 for (uint32_t i = 0; i < subpass.colorAttachmentCount; ++i) {
1666 if (subpass.pColorAttachments[i].attachment == VK_ATTACHMENT_UNUSED) continue;
1667 const IMAGE_VIEW_STATE *img_view_state = attachment_views_[subpass.pColorAttachments[i].attachment];
1668 HazardResult hazard =
1669 external_context_->DetectHazard(img_view_state, SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_WRITE,
1670 kColorAttachmentRasterOrder, offset, extent);
1671 if (hazard.hazard) {
1672 skip |= sync_state.LogError(
1673 img_view_state->image_view, string_SyncHazardVUID(hazard.hazard),
1674 "%s: Hazard %s for %s in %s, Subpass #%d, and pColorAttachments #%d", func_name,
1675 string_SyncHazard(hazard.hazard), sync_state.report_data->FormatHandle(img_view_state->image_view).c_str(),
1676 sync_state.report_data->FormatHandle(cmd.commandBuffer).c_str(), cmd.activeSubpass, i);
1677 }
1678 }
1679 }
1680 if (subpass.pResolveAttachments) {
1681 for (uint32_t i = 0; i < subpass.colorAttachmentCount; ++i) {
1682 if (subpass.pResolveAttachments[i].attachment == VK_ATTACHMENT_UNUSED) continue;
1683 const IMAGE_VIEW_STATE *img_view_state = attachment_views_[subpass.pResolveAttachments[i].attachment];
1684 HazardResult hazard =
1685 external_context_->DetectHazard(img_view_state, SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_WRITE,
1686 kColorAttachmentRasterOrder, offset, extent);
1687 if (hazard.hazard) {
1688 skip |= sync_state.LogError(
1689 img_view_state->image_view, string_SyncHazardVUID(hazard.hazard),
1690 "%s: Hazard %s for %s in %s, Subpass #%d, and pResolveAttachments #%d", func_name,
1691 string_SyncHazard(hazard.hazard), sync_state.report_data->FormatHandle(img_view_state->image_view).c_str(),
1692 sync_state.report_data->FormatHandle(cmd.commandBuffer).c_str(), cmd.activeSubpass, i);
1693 }
1694 }
1695 }
1696 }
1697 if (subpass.pDepthStencilAttachment && subpass.pDepthStencilAttachment->attachment != VK_ATTACHMENT_UNUSED) {
1698 const IMAGE_VIEW_STATE *img_view_state = attachment_views_[subpass.pDepthStencilAttachment->attachment];
1699 HazardResult hazard = external_context_->DetectHazard(img_view_state, SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_WRITE,
1700 kDepthStencilAttachmentRasterOrder, offset, extent);
1701 if (hazard.hazard) {
1702 skip |= sync_state.LogError(img_view_state->image_view, string_SyncHazardVUID(hazard.hazard),
1703 "%s: Hazard %s for %s in %s, Subpass #%d, and pDepthStencilAttachment", func_name,
1704 string_SyncHazard(hazard.hazard),
1705 sync_state.report_data->FormatHandle(img_view_state->image_view).c_str(),
1706 sync_state.report_data->FormatHandle(cmd.commandBuffer).c_str(), cmd.activeSubpass);
1707 }
1708 }
1709 return skip;
1710}
1711
1712void RenderPassAccessContext::RecordDrawSubpassAttachment(const VkRect2D &render_area, const ResourceUsageTag &tag) {
1713 const auto &subpass = rp_state_->createInfo.pSubpasses[current_subpass_];
1714 VkExtent3D extent = CastTo3D(render_area.extent);
1715 VkOffset3D offset = CastTo3D(render_area.offset);
1716
locke-lunarg44f9bb12020-06-10 14:43:57 -06001717 // Subpass's inputAttachment has been done in RecordDispatchDrawDescriptorSet
locke-lunarg61870c22020-06-09 14:51:50 -06001718 if (subpass.colorAttachmentCount) {
1719 if (subpass.pColorAttachments) {
1720 for (uint32_t i = 0; i < subpass.colorAttachmentCount; ++i) {
1721 if (subpass.pColorAttachments[i].attachment == VK_ATTACHMENT_UNUSED) continue;
1722 const IMAGE_VIEW_STATE *img_view_state = attachment_views_[subpass.pColorAttachments[i].attachment];
1723 external_context_->UpdateAccessState(img_view_state, SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_WRITE, offset,
1724 extent, 0, tag);
1725 }
1726 }
1727 if (subpass.pResolveAttachments) {
1728 for (uint32_t i = 0; i < subpass.colorAttachmentCount; ++i) {
1729 if (subpass.pResolveAttachments[i].attachment == VK_ATTACHMENT_UNUSED) continue;
1730 const IMAGE_VIEW_STATE *img_view_state = attachment_views_[subpass.pResolveAttachments[i].attachment];
1731 external_context_->UpdateAccessState(img_view_state, SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_WRITE, offset,
1732 extent, 0, tag);
1733 }
1734 }
1735 }
1736 if (subpass.pDepthStencilAttachment && subpass.pDepthStencilAttachment->attachment != VK_ATTACHMENT_UNUSED) {
1737 const IMAGE_VIEW_STATE *img_view_state = attachment_views_[subpass.pDepthStencilAttachment->attachment];
1738 external_context_->UpdateAccessState(img_view_state, SYNC_COLOR_ATTACHMENT_OUTPUT_COLOR_ATTACHMENT_WRITE, offset, extent, 0,
1739 tag);
1740 }
1741}
1742
John Zulauf1507ee42020-05-18 11:33:09 -06001743bool RenderPassAccessContext::ValidateNextSubpass(const SyncValidator &sync_state, const VkRect2D &render_area,
1744 const char *func_name) const {
John Zulaufaff20662020-06-01 14:07:58 -06001745 // PHASE1 TODO: Add Validate Preserve attachments
John Zulauf355e49b2020-04-24 15:11:15 -06001746 bool skip = false;
John Zulaufb027cdb2020-05-21 14:25:22 -06001747 skip |= CurrentContext().ValidateResolveOperations(sync_state, *rp_state_, render_area, attachment_views_, func_name,
1748 current_subpass_);
John Zulaufaff20662020-06-01 14:07:58 -06001749 skip |= CurrentContext().ValidateStoreOperation(sync_state, *rp_state_, render_area, current_subpass_, attachment_views_,
1750 func_name);
1751
John Zulauf355e49b2020-04-24 15:11:15 -06001752 const auto next_subpass = current_subpass_ + 1;
John Zulauf1507ee42020-05-18 11:33:09 -06001753 const auto &next_context = subpass_contexts_[next_subpass];
John Zulauf7635de32020-05-29 17:14:15 -06001754 skip |= next_context.ValidateLayoutTransitions(sync_state, *rp_state_, render_area, next_subpass, attachment_views_, func_name);
1755 skip |= next_context.ValidateLoadOperation(sync_state, *rp_state_, render_area, next_subpass, attachment_views_, func_name);
1756 return skip;
1757}
1758bool RenderPassAccessContext::ValidateEndRenderPass(const SyncValidator &sync_state, const VkRect2D &render_area,
1759 const char *func_name) const {
John Zulaufaff20662020-06-01 14:07:58 -06001760 // PHASE1 TODO: Validate Preserve
John Zulauf7635de32020-05-29 17:14:15 -06001761 bool skip = false;
1762 skip |= CurrentContext().ValidateResolveOperations(sync_state, *rp_state_, render_area, attachment_views_, func_name,
1763 current_subpass_);
John Zulaufaff20662020-06-01 14:07:58 -06001764 skip |= CurrentContext().ValidateStoreOperation(sync_state, *rp_state_, render_area, current_subpass_, attachment_views_,
1765 func_name);
John Zulauf7635de32020-05-29 17:14:15 -06001766 skip |= ValidateFinalSubpassLayoutTransitions(sync_state, render_area, func_name);
John Zulauf355e49b2020-04-24 15:11:15 -06001767 return skip;
1768}
1769
John Zulauf7635de32020-05-29 17:14:15 -06001770AccessContext *RenderPassAccessContext::CreateStoreResolveProxy(const VkRect2D &render_area) const {
1771 return CreateStoreResolveProxyContext(CurrentContext(), *rp_state_, current_subpass_, render_area, attachment_views_);
1772}
1773
1774bool RenderPassAccessContext::ValidateFinalSubpassLayoutTransitions(const SyncValidator &sync_state, const VkRect2D &render_area,
1775 const char *func_name) const {
John Zulauf355e49b2020-04-24 15:11:15 -06001776 bool skip = false;
1777
John Zulauf7635de32020-05-29 17:14:15 -06001778 // As validation methods are const and precede the record/update phase, for any tranistions from the current (last)
1779 // subpass, we have to validate them against a copy of the current AccessContext, with resolve operations applied.
1780 // Note: we could be more efficient by tracking whether or not we actually *have* any changes (e.g. attachment resolve)
1781 // to apply and only copy then, if this proves a hot spot.
1782 std::unique_ptr<AccessContext> proxy_for_current;
1783
John Zulauf355e49b2020-04-24 15:11:15 -06001784 // Validate the "finalLayout" transitions to external
1785 // Get them from where there we're hidding in the extra entry.
1786 const auto &final_transitions = rp_state_->subpass_transitions.back();
1787 for (const auto &transition : final_transitions) {
1788 const auto &attach_view = attachment_views_[transition.attachment];
1789 const auto &trackback = subpass_contexts_[transition.prev_pass].GetDstExternalTrackBack();
1790 assert(trackback.context); // Transitions are given implicit transitions if the StateTracker is working correctly
John Zulauf7635de32020-05-29 17:14:15 -06001791 auto *context = trackback.context;
1792
1793 if (transition.prev_pass == current_subpass_) {
1794 if (!proxy_for_current) {
1795 // We haven't recorded resolve ofor the current_subpass, so we need to copy current and update it *as if*
1796 proxy_for_current.reset(CreateStoreResolveProxy(render_area));
1797 }
1798 context = proxy_for_current.get();
1799 }
1800
1801 auto hazard = context->DetectImageBarrierHazard(
John Zulauf355e49b2020-04-24 15:11:15 -06001802 *attach_view->image_state, trackback.barrier.src_exec_scope, trackback.barrier.src_access_scope,
1803 attach_view->normalized_subresource_range, AccessContext::DetectOptions::kDetectPrevious);
1804 if (hazard.hazard) {
1805 skip |= sync_state.LogError(rp_state_->renderPass, string_SyncHazardVUID(hazard.hazard),
1806 "%s: Hazard %s with last use subpass %" PRIu32 " for attachment %" PRIu32
1807 " final image layout transition.",
1808 func_name, string_SyncHazard(hazard.hazard), transition.prev_pass, transition.attachment);
1809 }
1810 }
1811 return skip;
1812}
1813
1814void RenderPassAccessContext::RecordLayoutTransitions(const ResourceUsageTag &tag) {
1815 // Add layout transitions...
1816 const auto &transitions = rp_state_->subpass_transitions[current_subpass_];
1817 auto &subpass_context = subpass_contexts_[current_subpass_];
John Zulaufc9201222020-05-13 15:13:03 -06001818 std::set<const IMAGE_VIEW_STATE *> view_seen;
John Zulauf355e49b2020-04-24 15:11:15 -06001819 for (const auto &transition : transitions) {
1820 const auto attachment_view = attachment_views_[transition.attachment];
1821 if (!attachment_view) continue;
1822 const auto image = attachment_view->image_state.get();
1823 if (!image) continue;
1824
1825 const auto *barrier = subpass_context.GetTrackBackFromSubpass(transition.prev_pass);
John Zulaufc9201222020-05-13 15:13:03 -06001826 auto insert_pair = view_seen.insert(attachment_view);
1827 if (insert_pair.second) {
1828 // We haven't recorded the transistion yet, so treat this as a normal barrier with transistion.
1829 subpass_context.ApplyImageBarrier(*image, barrier->barrier, attachment_view->normalized_subresource_range, true, tag);
1830
1831 } else {
1832 // We've recorded the transition, but we need to added on the additional dest barriers, and rerecording the transition
1833 // would clear out the prior barrier flags, so apply this as a *non* transition barrier
1834 auto barrier_to_transition = barrier->barrier;
1835 barrier_to_transition.src_access_scope |= SYNC_IMAGE_LAYOUT_TRANSITION_BIT;
1836 subpass_context.ApplyImageBarrier(*image, barrier->barrier, attachment_view->normalized_subresource_range, false, tag);
1837 }
John Zulauf355e49b2020-04-24 15:11:15 -06001838 }
1839}
1840
John Zulauf1507ee42020-05-18 11:33:09 -06001841void RenderPassAccessContext::RecordLoadOperations(const VkRect2D &render_area, const ResourceUsageTag &tag) {
1842 const auto *attachment_ci = rp_state_->createInfo.pAttachments;
1843 auto &subpass_context = subpass_contexts_[current_subpass_];
1844 VkExtent3D extent = CastTo3D(render_area.extent);
1845 VkOffset3D offset = CastTo3D(render_area.offset);
1846
1847 for (uint32_t i = 0; i < rp_state_->createInfo.attachmentCount; i++) {
1848 if (rp_state_->attachment_first_subpass[i] == current_subpass_) {
1849 if (attachment_views_[i] == nullptr) continue; // UNUSED
1850 const auto &view = *attachment_views_[i];
1851 const IMAGE_STATE *image = view.image_state.get();
1852 if (image == nullptr) continue;
1853
1854 const auto &ci = attachment_ci[i];
1855 const bool has_depth = FormatHasDepth(ci.format);
John Zulaufb027cdb2020-05-21 14:25:22 -06001856 const bool has_stencil = FormatHasStencil(ci.format);
John Zulauf1507ee42020-05-18 11:33:09 -06001857 const bool is_color = !(has_depth || has_stencil);
1858
1859 if (is_color) {
1860 subpass_context.UpdateAccessState(*image, ColorLoadUsage(ci.loadOp), view.normalized_subresource_range, offset,
1861 extent, tag);
1862 } else {
1863 auto update_range = view.normalized_subresource_range;
1864 if (has_depth) {
1865 update_range.aspectMask = VK_IMAGE_ASPECT_DEPTH_BIT;
1866 subpass_context.UpdateAccessState(*image, DepthStencilLoadUsage(ci.loadOp), update_range, offset, extent, tag);
1867 }
1868 if (has_stencil) {
1869 update_range.aspectMask = VK_IMAGE_ASPECT_STENCIL_BIT;
1870 subpass_context.UpdateAccessState(*image, DepthStencilLoadUsage(ci.stencilLoadOp), update_range, offset, extent,
1871 tag);
1872 }
1873 }
1874 }
1875 }
1876}
1877
John Zulauf355e49b2020-04-24 15:11:15 -06001878void RenderPassAccessContext::RecordBeginRenderPass(const SyncValidator &state, const CMD_BUFFER_STATE &cb_state,
1879 VkQueueFlags queue_flags, const ResourceUsageTag &tag) {
1880 current_subpass_ = 0;
locke-lunargaecf2152020-05-12 17:15:41 -06001881 rp_state_ = cb_state.activeRenderPass.get();
John Zulauf355e49b2020-04-24 15:11:15 -06001882 subpass_contexts_.reserve(rp_state_->createInfo.subpassCount);
1883 // Add this for all subpasses here so that they exsist during next subpass validation
1884 for (uint32_t pass = 0; pass < rp_state_->createInfo.subpassCount; pass++) {
1885 subpass_contexts_.emplace_back(pass, queue_flags, rp_state_->subpass_dependencies, subpass_contexts_, external_context_);
1886 }
1887 attachment_views_ = state.GetCurrentAttachmentViews(cb_state);
1888
1889 RecordLayoutTransitions(tag);
John Zulauf1507ee42020-05-18 11:33:09 -06001890 RecordLoadOperations(cb_state.activeRenderPassBeginInfo.renderArea, tag);
John Zulauf355e49b2020-04-24 15:11:15 -06001891}
John Zulauf1507ee42020-05-18 11:33:09 -06001892
1893void RenderPassAccessContext::RecordNextSubpass(const VkRect2D &render_area, const ResourceUsageTag &tag) {
John Zulauf7635de32020-05-29 17:14:15 -06001894 // Resolves are against *prior* subpass context and thus *before* the subpass increment
1895 CurrentContext().UpdateAttachmentResolveAccess(*rp_state_, render_area, attachment_views_, current_subpass_, tag);
John Zulaufaff20662020-06-01 14:07:58 -06001896 CurrentContext().UpdateAttachmentStoreAccess(*rp_state_, render_area, attachment_views_, current_subpass_, tag);
John Zulauf7635de32020-05-29 17:14:15 -06001897
John Zulauf355e49b2020-04-24 15:11:15 -06001898 current_subpass_++;
1899 assert(current_subpass_ < subpass_contexts_.size());
1900 RecordLayoutTransitions(tag);
John Zulauf1507ee42020-05-18 11:33:09 -06001901 RecordLoadOperations(render_area, tag);
John Zulauf355e49b2020-04-24 15:11:15 -06001902}
1903
John Zulauf7635de32020-05-29 17:14:15 -06001904void RenderPassAccessContext::RecordEndRenderPass(const VkRect2D &render_area, const ResourceUsageTag &tag) {
John Zulaufaff20662020-06-01 14:07:58 -06001905 // Add the resolve and store accesses
John Zulauf7635de32020-05-29 17:14:15 -06001906 CurrentContext().UpdateAttachmentResolveAccess(*rp_state_, render_area, attachment_views_, current_subpass_, tag);
John Zulaufaff20662020-06-01 14:07:58 -06001907 CurrentContext().UpdateAttachmentStoreAccess(*rp_state_, render_area, attachment_views_, current_subpass_, tag);
John Zulauf7635de32020-05-29 17:14:15 -06001908
John Zulauf355e49b2020-04-24 15:11:15 -06001909 // Export the accesses from the renderpass...
1910 external_context_->ResolveChildContexts(subpass_contexts_);
1911
1912 // Add the "finalLayout" transitions to external
1913 // Get them from where there we're hidding in the extra entry.
1914 const auto &final_transitions = rp_state_->subpass_transitions.back();
1915 for (const auto &transition : final_transitions) {
1916 const auto &attachment = attachment_views_[transition.attachment];
1917 const auto &last_trackback = subpass_contexts_[transition.prev_pass].GetDstExternalTrackBack();
1918 assert(external_context_ == last_trackback.context);
1919 external_context_->ApplyImageBarrier(*attachment->image_state, last_trackback.barrier,
1920 attachment->normalized_subresource_range, true, tag);
1921 }
1922}
1923
John Zulauf3d84f1b2020-03-09 13:33:25 -06001924SyncBarrier::SyncBarrier(VkQueueFlags queue_flags, const VkSubpassDependency2 &barrier) {
1925 const auto src_stage_mask = ExpandPipelineStages(queue_flags, barrier.srcStageMask);
1926 src_exec_scope = WithEarlierPipelineStages(src_stage_mask);
1927 src_access_scope = SyncStageAccess::AccessScope(src_stage_mask, barrier.srcAccessMask);
1928 const auto dst_stage_mask = ExpandPipelineStages(queue_flags, barrier.dstStageMask);
1929 dst_exec_scope = WithLaterPipelineStages(dst_stage_mask);
1930 dst_access_scope = SyncStageAccess::AccessScope(dst_stage_mask, barrier.dstAccessMask);
1931}
1932
1933void ResourceAccessState::ApplyBarrier(const SyncBarrier &barrier) {
1934 ApplyExecutionBarrier(barrier.src_exec_scope, barrier.dst_exec_scope);
1935 ApplyMemoryAccessBarrier(barrier.src_exec_scope, barrier.src_access_scope, barrier.dst_exec_scope, barrier.dst_access_scope);
1936}
1937
John Zulauf9cb530d2019-09-30 14:14:10 -06001938HazardResult ResourceAccessState::DetectHazard(SyncStageAccessIndex usage_index) const {
1939 HazardResult hazard;
1940 auto usage = FlagBit(usage_index);
1941 if (IsRead(usage)) {
John Zulaufc9201222020-05-13 15:13:03 -06001942 if (last_write && IsWriteHazard(usage)) {
John Zulauf9cb530d2019-09-30 14:14:10 -06001943 hazard.Set(READ_AFTER_WRITE, write_tag);
1944 }
1945 } else {
1946 // Assume write
1947 // TODO determine what to do with READ-WRITE usage states if any
1948 // Write-After-Write check -- if we have a previous write to test against
1949 if (last_write && IsWriteHazard(usage)) {
1950 hazard.Set(WRITE_AFTER_WRITE, write_tag);
1951 } else {
John Zulauf69133422020-05-20 14:55:53 -06001952 // Look for casus belli for WAR
John Zulauf9cb530d2019-09-30 14:14:10 -06001953 const auto usage_stage = PipelineStageBit(usage_index);
1954 for (uint32_t read_index = 0; read_index < last_read_count; read_index++) {
1955 if (IsReadHazard(usage_stage, last_reads[read_index])) {
1956 hazard.Set(WRITE_AFTER_READ, last_reads[read_index].tag);
1957 break;
1958 }
1959 }
1960 }
1961 }
1962 return hazard;
1963}
1964
John Zulauf69133422020-05-20 14:55:53 -06001965HazardResult ResourceAccessState::DetectHazard(SyncStageAccessIndex usage_index, const SyncOrderingBarrier &ordering) const {
1966 // The ordering guarantees act as barriers to the last accesses, independent of synchronization operations
1967 HazardResult hazard;
1968 const auto usage = FlagBit(usage_index);
1969 const bool write_is_ordered = (last_write & ordering.access_scope) == last_write; // Is true if no write, and that's good.
1970 if (IsRead(usage)) {
1971 if (!write_is_ordered && IsWriteHazard(usage)) {
1972 hazard.Set(READ_AFTER_WRITE, write_tag);
1973 }
1974 } else {
1975 if (!write_is_ordered && IsWriteHazard(usage)) {
1976 hazard.Set(WRITE_AFTER_WRITE, write_tag);
1977 } else {
1978 const auto usage_stage = PipelineStageBit(usage_index);
1979 const auto unordered_reads = last_read_stages & ~ordering.exec_scope;
1980 if (unordered_reads) {
1981 // Look for any WAR hazards outside the ordered set of stages
1982 for (uint32_t read_index = 0; read_index < last_read_count; read_index++) {
1983 if (last_reads[read_index].stage & unordered_reads) {
1984 if (IsReadHazard(usage_stage, last_reads[read_index])) {
1985 hazard.Set(WRITE_AFTER_READ, last_reads[read_index].tag);
1986 break;
1987 }
1988 }
1989 }
1990 }
1991 }
1992 }
1993 return hazard;
1994}
1995
John Zulauf2f952d22020-02-10 11:34:51 -07001996// Asynchronous Hazards occur between subpasses with no connection through the DAG
John Zulauf3d84f1b2020-03-09 13:33:25 -06001997HazardResult ResourceAccessState::DetectAsyncHazard(SyncStageAccessIndex usage_index) const {
John Zulauf2f952d22020-02-10 11:34:51 -07001998 HazardResult hazard;
1999 auto usage = FlagBit(usage_index);
2000 if (IsRead(usage)) {
2001 if (last_write != 0) {
2002 hazard.Set(READ_RACING_WRITE, write_tag);
2003 }
2004 } else {
2005 if (last_write != 0) {
2006 hazard.Set(WRITE_RACING_WRITE, write_tag);
2007 } else if (last_read_count > 0) {
2008 hazard.Set(WRITE_RACING_READ, last_reads[0].tag);
2009 }
2010 }
2011 return hazard;
2012}
2013
John Zulauf36bcf6a2020-02-03 15:12:52 -07002014HazardResult ResourceAccessState::DetectBarrierHazard(SyncStageAccessIndex usage_index, VkPipelineStageFlags src_exec_scope,
2015 SyncStageAccessFlags src_access_scope) const {
John Zulauf0cb5be22020-01-23 12:18:22 -07002016 // Only supporting image layout transitions for now
2017 assert(usage_index == SyncStageAccessIndex::SYNC_IMAGE_LAYOUT_TRANSITION);
2018 HazardResult hazard;
2019 if (last_write) {
2020 // If the previous write is *not* in the 1st access scope
2021 // *AND* the current barrier is not in the dependency chain
2022 // *AND* the there is no prior memory barrier for the previous write in the dependency chain
2023 // then the barrier access is unsafe (R/W after W)
John Zulauf36bcf6a2020-02-03 15:12:52 -07002024 if (((last_write & src_access_scope) == 0) && ((src_exec_scope & write_dependency_chain) == 0) && (write_barriers == 0)) {
John Zulauf0cb5be22020-01-23 12:18:22 -07002025 // TODO: Do we need a difference hazard name for this?
2026 hazard.Set(WRITE_AFTER_WRITE, write_tag);
2027 }
John Zulauf355e49b2020-04-24 15:11:15 -06002028 }
2029 if (!hazard.hazard) {
2030 // Look at the reads if any
John Zulauf0cb5be22020-01-23 12:18:22 -07002031 for (uint32_t read_index = 0; read_index < last_read_count; read_index++) {
John Zulauf36bcf6a2020-02-03 15:12:52 -07002032 const auto &read_access = last_reads[read_index];
2033 // If the read stage is not in the src sync sync
2034 // *AND* not execution chained with an existing sync barrier (that's the or)
2035 // then the barrier access is unsafe (R/W after R)
2036 if ((src_exec_scope & (read_access.stage | read_access.barriers)) == 0) {
2037 hazard.Set(WRITE_AFTER_READ, read_access.tag);
John Zulauf0cb5be22020-01-23 12:18:22 -07002038 break;
2039 }
2040 }
2041 }
2042 return hazard;
2043}
2044
John Zulauf5f13a792020-03-10 07:31:21 -06002045// The logic behind resolves is the same as update, we assume that earlier hazards have be reported, and that no
2046// tranistive hazard can exists with a hazard between the earlier operations. Yes, an early hazard can mask that another
2047// exists, but if you fix *that* hazard it either fixes or unmasks the subsequent ones.
2048void ResourceAccessState::Resolve(const ResourceAccessState &other) {
2049 if (write_tag.IsBefore(other.write_tag)) {
2050 // If this is a later write, we've reported any exsiting hazard, and we can just overwrite as the more recent operation
2051 *this = other;
2052 } else if (!other.write_tag.IsBefore(write_tag)) {
2053 // This is the *equals* case for write operations, we merged the write barriers and the read state (but without the
2054 // dependency chaining logic or any stage expansion)
2055 write_barriers |= other.write_barriers;
2056
2057 // Merge that read states
2058 for (uint32_t other_read_index = 0; other_read_index < other.last_read_count; other_read_index++) {
2059 auto &other_read = other.last_reads[other_read_index];
2060 if (last_read_stages & other_read.stage) {
2061 // Merge in the barriers for read stages that exist in *both* this and other
2062 // TODO: This is N^2 with stages... perhaps the ReadStates should be by stage index.
2063 for (uint32_t my_read_index = 0; my_read_index < last_read_count; my_read_index++) {
2064 auto &my_read = last_reads[my_read_index];
2065 if (other_read.stage == my_read.stage) {
2066 if (my_read.tag.IsBefore(other_read.tag)) {
2067 my_read.tag = other_read.tag;
2068 }
2069 my_read.barriers |= other_read.barriers;
2070 break;
2071 }
2072 }
2073 } else {
2074 // The other read stage doesn't exist in this, so add it.
2075 last_reads[last_read_count] = other_read;
2076 last_read_count++;
2077 last_read_stages |= other_read.stage;
2078 }
2079 }
2080 } // the else clause would be that other write is before this write... in which case we supercede the other state and ignore
2081 // it.
2082}
2083
John Zulauf9cb530d2019-09-30 14:14:10 -06002084void ResourceAccessState::Update(SyncStageAccessIndex usage_index, const ResourceUsageTag &tag) {
2085 // Move this logic in the ResourceStateTracker as methods, thereof (or we'll repeat it for every flavor of resource...
2086 const auto usage_bit = FlagBit(usage_index);
2087 if (IsRead(usage_index)) {
2088 // Mulitple outstanding reads may be of interest and do dependency chains independently
2089 // However, for purposes of barrier tracking, only one read per pipeline stage matters
2090 const auto usage_stage = PipelineStageBit(usage_index);
2091 if (usage_stage & last_read_stages) {
2092 for (uint32_t read_index = 0; read_index < last_read_count; read_index++) {
2093 ReadState &access = last_reads[read_index];
2094 if (access.stage == usage_stage) {
2095 access.barriers = 0;
2096 access.tag = tag;
2097 break;
2098 }
2099 }
2100 } else {
2101 // We don't have this stage in the list yet...
2102 assert(last_read_count < last_reads.size());
2103 ReadState &access = last_reads[last_read_count++];
2104 access.stage = usage_stage;
2105 access.barriers = 0;
2106 access.tag = tag;
2107 last_read_stages |= usage_stage;
2108 }
2109 } else {
2110 // Assume write
2111 // TODO determine what to do with READ-WRITE operations if any
2112 // Clobber last read and both sets of barriers... because all we have is DANGER, DANGER, WILL ROBINSON!!!
2113 // if the last_reads/last_write were unsafe, we've reported them,
2114 // in either case the prior access is irrelevant, we can overwrite them as *this* write is now after them
2115 last_read_count = 0;
2116 last_read_stages = 0;
2117
2118 write_barriers = 0;
2119 write_dependency_chain = 0;
2120 write_tag = tag;
2121 last_write = usage_bit;
2122 }
2123}
John Zulauf5f13a792020-03-10 07:31:21 -06002124
John Zulauf9cb530d2019-09-30 14:14:10 -06002125void ResourceAccessState::ApplyExecutionBarrier(VkPipelineStageFlags srcStageMask, VkPipelineStageFlags dstStageMask) {
2126 // Execution Barriers only protect read operations
2127 for (uint32_t read_index = 0; read_index < last_read_count; read_index++) {
2128 ReadState &access = last_reads[read_index];
2129 // The | implements the "dependency chain" logic for this access, as the barriers field stores the second sync scope
2130 if (srcStageMask & (access.stage | access.barriers)) {
2131 access.barriers |= dstStageMask;
2132 }
2133 }
2134 if (write_dependency_chain & srcStageMask) write_dependency_chain |= dstStageMask;
2135}
2136
John Zulauf36bcf6a2020-02-03 15:12:52 -07002137void ResourceAccessState::ApplyMemoryAccessBarrier(VkPipelineStageFlags src_exec_scope, SyncStageAccessFlags src_access_scope,
2138 VkPipelineStageFlags dst_exec_scope, SyncStageAccessFlags dst_access_scope) {
John Zulauf9cb530d2019-09-30 14:14:10 -06002139 // Assuming we've applied the execution side of this barrier, we update just the write
2140 // The || implements the "dependency chain" logic for this barrier
John Zulauf36bcf6a2020-02-03 15:12:52 -07002141 if ((src_access_scope & last_write) || (write_dependency_chain & src_exec_scope)) {
2142 write_barriers |= dst_access_scope;
2143 write_dependency_chain |= dst_exec_scope;
John Zulauf9cb530d2019-09-30 14:14:10 -06002144 }
2145}
2146
John Zulaufd1f85d42020-04-15 12:23:15 -06002147void SyncValidator::ResetCommandBufferCallback(VkCommandBuffer command_buffer) {
John Zulauf3d84f1b2020-03-09 13:33:25 -06002148 auto *access_context = GetAccessContextNoInsert(command_buffer);
2149 if (access_context) {
2150 access_context->Reset();
John Zulauf9cb530d2019-09-30 14:14:10 -06002151 }
2152}
2153
John Zulaufd1f85d42020-04-15 12:23:15 -06002154void SyncValidator::FreeCommandBufferCallback(VkCommandBuffer command_buffer) {
2155 auto access_found = cb_access_state.find(command_buffer);
2156 if (access_found != cb_access_state.end()) {
2157 access_found->second->Reset();
2158 cb_access_state.erase(access_found);
2159 }
2160}
2161
John Zulauf540266b2020-04-06 18:54:53 -06002162void SyncValidator::ApplyGlobalBarriers(AccessContext *context, VkPipelineStageFlags srcStageMask,
John Zulauf36bcf6a2020-02-03 15:12:52 -07002163 VkPipelineStageFlags dstStageMask, SyncStageAccessFlags src_access_scope,
2164 SyncStageAccessFlags dst_access_scope, uint32_t memoryBarrierCount,
John Zulauf9cb530d2019-09-30 14:14:10 -06002165 const VkMemoryBarrier *pMemoryBarriers) {
2166 // TODO: Implement this better (maybe some delayed/on-demand integration).
John Zulauf36bcf6a2020-02-03 15:12:52 -07002167 ApplyGlobalBarrierFunctor barriers_functor(srcStageMask, dstStageMask, src_access_scope, dst_access_scope, memoryBarrierCount,
John Zulauf9cb530d2019-09-30 14:14:10 -06002168 pMemoryBarriers);
John Zulauf540266b2020-04-06 18:54:53 -06002169 context->ApplyGlobalBarriers(barriers_functor);
John Zulauf9cb530d2019-09-30 14:14:10 -06002170}
2171
John Zulauf540266b2020-04-06 18:54:53 -06002172void SyncValidator::ApplyBufferBarriers(AccessContext *context, VkPipelineStageFlags src_exec_scope,
John Zulauf36bcf6a2020-02-03 15:12:52 -07002173 SyncStageAccessFlags src_stage_accesses, VkPipelineStageFlags dst_exec_scope,
2174 SyncStageAccessFlags dst_stage_accesses, uint32_t barrier_count,
John Zulauf9cb530d2019-09-30 14:14:10 -06002175 const VkBufferMemoryBarrier *barriers) {
John Zulauf9cb530d2019-09-30 14:14:10 -06002176 for (uint32_t index = 0; index < barrier_count; index++) {
locke-lunarg3c038002020-04-30 23:08:08 -06002177 auto barrier = barriers[index];
John Zulauf9cb530d2019-09-30 14:14:10 -06002178 const auto *buffer = Get<BUFFER_STATE>(barrier.buffer);
2179 if (!buffer) continue;
locke-lunarg3c038002020-04-30 23:08:08 -06002180 barrier.size = GetRealWholeSize(barrier.offset, barrier.size, buffer->createInfo.size);
John Zulauf16adfc92020-04-08 10:28:33 -06002181 ResourceAccessRange range = MakeRange(barrier);
John Zulauf540266b2020-04-06 18:54:53 -06002182 const auto src_access_scope = AccessScope(src_stage_accesses, barrier.srcAccessMask);
2183 const auto dst_access_scope = AccessScope(dst_stage_accesses, barrier.dstAccessMask);
2184 const ApplyMemoryAccessBarrierFunctor update_action(src_exec_scope, src_access_scope, dst_exec_scope, dst_access_scope);
2185 context->UpdateMemoryAccess(*buffer, range, update_action);
John Zulauf9cb530d2019-09-30 14:14:10 -06002186 }
2187}
2188
John Zulauf540266b2020-04-06 18:54:53 -06002189void SyncValidator::ApplyImageBarriers(AccessContext *context, VkPipelineStageFlags src_exec_scope,
2190 SyncStageAccessFlags src_stage_accesses, VkPipelineStageFlags dst_exec_scope,
2191 SyncStageAccessFlags dst_stage_accesses, uint32_t barrier_count,
John Zulauf355e49b2020-04-24 15:11:15 -06002192 const VkImageMemoryBarrier *barriers, const ResourceUsageTag &tag) {
John Zulauf5c5e88d2019-12-26 11:22:02 -07002193 for (uint32_t index = 0; index < barrier_count; index++) {
2194 const auto &barrier = barriers[index];
2195 const auto *image = Get<IMAGE_STATE>(barrier.image);
2196 if (!image) continue;
John Zulauf540266b2020-04-06 18:54:53 -06002197 auto subresource_range = NormalizeSubresourceRange(image->createInfo, barrier.subresourceRange);
John Zulauf355e49b2020-04-24 15:11:15 -06002198 bool layout_transition = barrier.oldLayout != barrier.newLayout;
2199 const auto src_access_scope = AccessScope(src_stage_accesses, barrier.srcAccessMask);
2200 const auto dst_access_scope = AccessScope(dst_stage_accesses, barrier.dstAccessMask);
2201 context->ApplyImageBarrier(*image, src_exec_scope, src_access_scope, dst_exec_scope, dst_access_scope, subresource_range,
2202 layout_transition, tag);
John Zulauf9cb530d2019-09-30 14:14:10 -06002203 }
John Zulauf9cb530d2019-09-30 14:14:10 -06002204}
2205
2206bool SyncValidator::PreCallValidateCmdCopyBuffer(VkCommandBuffer commandBuffer, VkBuffer srcBuffer, VkBuffer dstBuffer,
2207 uint32_t regionCount, const VkBufferCopy *pRegions) const {
2208 bool skip = false;
John Zulauf3d84f1b2020-03-09 13:33:25 -06002209 const auto *cb_context = GetAccessContext(commandBuffer);
2210 assert(cb_context);
2211 if (!cb_context) return skip;
2212 const auto *context = cb_context->GetCurrentAccessContext();
John Zulauf9cb530d2019-09-30 14:14:10 -06002213
John Zulauf3d84f1b2020-03-09 13:33:25 -06002214 // If we have no previous accesses, we have no hazards
John Zulauf3d84f1b2020-03-09 13:33:25 -06002215 const auto *src_buffer = Get<BUFFER_STATE>(srcBuffer);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002216 const auto *dst_buffer = Get<BUFFER_STATE>(dstBuffer);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002217
2218 for (uint32_t region = 0; region < regionCount; region++) {
2219 const auto &copy_region = pRegions[region];
John Zulauf16adfc92020-04-08 10:28:33 -06002220 if (src_buffer) {
locke-lunargff255f92020-05-13 18:53:52 -06002221 ResourceAccessRange src_range = MakeRange(
2222 copy_region.srcOffset, GetRealWholeSize(copy_region.srcOffset, copy_region.size, src_buffer->createInfo.size));
John Zulauf16adfc92020-04-08 10:28:33 -06002223 auto hazard = context->DetectHazard(*src_buffer, SYNC_TRANSFER_TRANSFER_READ, src_range);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002224 if (hazard.hazard) {
2225 // TODO -- add tag information to log msg when useful.
locke-lunarga0003652020-03-10 11:38:51 -06002226 skip |= LogError(srcBuffer, string_SyncHazardVUID(hazard.hazard),
2227 "vkCmdCopyBuffer: Hazard %s for srcBuffer %s, region %" PRIu32, string_SyncHazard(hazard.hazard),
2228 report_data->FormatHandle(srcBuffer).c_str(), region);
John Zulauf9cb530d2019-09-30 14:14:10 -06002229 }
John Zulauf9cb530d2019-09-30 14:14:10 -06002230 }
John Zulauf16adfc92020-04-08 10:28:33 -06002231 if (dst_buffer && !skip) {
locke-lunargff255f92020-05-13 18:53:52 -06002232 ResourceAccessRange dst_range = MakeRange(
2233 copy_region.dstOffset, GetRealWholeSize(copy_region.dstOffset, copy_region.size, dst_buffer->createInfo.size));
John Zulauf355e49b2020-04-24 15:11:15 -06002234 auto hazard = context->DetectHazard(*dst_buffer, SYNC_TRANSFER_TRANSFER_WRITE, dst_range);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002235 if (hazard.hazard) {
locke-lunarga0003652020-03-10 11:38:51 -06002236 skip |= LogError(dstBuffer, string_SyncHazardVUID(hazard.hazard),
2237 "vkCmdCopyBuffer: Hazard %s for dstBuffer %s, region %" PRIu32, string_SyncHazard(hazard.hazard),
2238 report_data->FormatHandle(dstBuffer).c_str(), region);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002239 }
2240 }
2241 if (skip) break;
John Zulauf9cb530d2019-09-30 14:14:10 -06002242 }
2243 return skip;
2244}
2245
2246void SyncValidator::PreCallRecordCmdCopyBuffer(VkCommandBuffer commandBuffer, VkBuffer srcBuffer, VkBuffer dstBuffer,
2247 uint32_t regionCount, const VkBufferCopy *pRegions) {
John Zulauf3d84f1b2020-03-09 13:33:25 -06002248 auto *cb_context = GetAccessContext(commandBuffer);
2249 assert(cb_context);
John Zulauf2b151bf2020-04-24 15:37:44 -06002250 const auto tag = cb_context->NextCommandTag(CMD_COPYBUFFER);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002251 auto *context = cb_context->GetCurrentAccessContext();
2252
John Zulauf9cb530d2019-09-30 14:14:10 -06002253 const auto *src_buffer = Get<BUFFER_STATE>(srcBuffer);
John Zulauf9cb530d2019-09-30 14:14:10 -06002254 const auto *dst_buffer = Get<BUFFER_STATE>(dstBuffer);
John Zulauf9cb530d2019-09-30 14:14:10 -06002255
2256 for (uint32_t region = 0; region < regionCount; region++) {
2257 const auto &copy_region = pRegions[region];
John Zulauf16adfc92020-04-08 10:28:33 -06002258 if (src_buffer) {
locke-lunargff255f92020-05-13 18:53:52 -06002259 ResourceAccessRange src_range = MakeRange(
2260 copy_region.srcOffset, GetRealWholeSize(copy_region.srcOffset, copy_region.size, src_buffer->createInfo.size));
John Zulauf16adfc92020-04-08 10:28:33 -06002261 context->UpdateAccessState(*src_buffer, SYNC_TRANSFER_TRANSFER_READ, src_range, tag);
John Zulauf9cb530d2019-09-30 14:14:10 -06002262 }
John Zulauf16adfc92020-04-08 10:28:33 -06002263 if (dst_buffer) {
locke-lunargff255f92020-05-13 18:53:52 -06002264 ResourceAccessRange dst_range = MakeRange(
2265 copy_region.dstOffset, GetRealWholeSize(copy_region.dstOffset, copy_region.size, dst_buffer->createInfo.size));
John Zulauf16adfc92020-04-08 10:28:33 -06002266 context->UpdateAccessState(*dst_buffer, SYNC_TRANSFER_TRANSFER_WRITE, dst_range, tag);
John Zulauf5c5e88d2019-12-26 11:22:02 -07002267 }
2268 }
2269}
2270
2271bool SyncValidator::PreCallValidateCmdCopyImage(VkCommandBuffer commandBuffer, VkImage srcImage, VkImageLayout srcImageLayout,
2272 VkImage dstImage, VkImageLayout dstImageLayout, uint32_t regionCount,
2273 const VkImageCopy *pRegions) const {
2274 bool skip = false;
John Zulauf3d84f1b2020-03-09 13:33:25 -06002275 const auto *cb_access_context = GetAccessContext(commandBuffer);
2276 assert(cb_access_context);
2277 if (!cb_access_context) return skip;
John Zulauf5c5e88d2019-12-26 11:22:02 -07002278
John Zulauf3d84f1b2020-03-09 13:33:25 -06002279 const auto *context = cb_access_context->GetCurrentAccessContext();
2280 assert(context);
2281 if (!context) return skip;
2282
2283 const auto *src_image = Get<IMAGE_STATE>(srcImage);
2284 const auto *dst_image = Get<IMAGE_STATE>(dstImage);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002285 for (uint32_t region = 0; region < regionCount; region++) {
2286 const auto &copy_region = pRegions[region];
2287 if (src_image) {
John Zulauf540266b2020-04-06 18:54:53 -06002288 auto hazard = context->DetectHazard(*src_image, SYNC_TRANSFER_TRANSFER_READ, copy_region.srcSubresource,
John Zulauf3d84f1b2020-03-09 13:33:25 -06002289 copy_region.srcOffset, copy_region.extent);
2290 if (hazard.hazard) {
locke-lunarga0003652020-03-10 11:38:51 -06002291 skip |= LogError(srcImage, string_SyncHazardVUID(hazard.hazard),
2292 "vkCmdCopyImage: Hazard %s for srcImage %s, region %" PRIu32, string_SyncHazard(hazard.hazard),
2293 report_data->FormatHandle(srcImage).c_str(), region);
John Zulauf5c5e88d2019-12-26 11:22:02 -07002294 }
John Zulauf3d84f1b2020-03-09 13:33:25 -06002295 }
2296
2297 if (dst_image) {
locke-lunarg1df1f882020-03-02 16:42:08 -07002298 VkExtent3D dst_copy_extent =
2299 GetAdjustedDestImageExtent(src_image->createInfo.format, dst_image->createInfo.format, copy_region.extent);
John Zulauf540266b2020-04-06 18:54:53 -06002300 auto hazard = context->DetectHazard(*dst_image, SYNC_TRANSFER_TRANSFER_WRITE, copy_region.dstSubresource,
locke-lunarg1df1f882020-03-02 16:42:08 -07002301 copy_region.dstOffset, dst_copy_extent);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002302 if (hazard.hazard) {
locke-lunarga0003652020-03-10 11:38:51 -06002303 skip |= LogError(dstImage, string_SyncHazardVUID(hazard.hazard),
2304 "vkCmdCopyImage: Hazard %s for dstImage %s, region %" PRIu32, string_SyncHazard(hazard.hazard),
2305 report_data->FormatHandle(dstImage).c_str(), region);
John Zulauf5c5e88d2019-12-26 11:22:02 -07002306 }
locke-lunarg1dbbb9e2020-02-28 22:43:53 -07002307 if (skip) break;
John Zulauf5c5e88d2019-12-26 11:22:02 -07002308 }
2309 }
John Zulauf3d84f1b2020-03-09 13:33:25 -06002310
John Zulauf5c5e88d2019-12-26 11:22:02 -07002311 return skip;
2312}
2313
2314void SyncValidator::PreCallRecordCmdCopyImage(VkCommandBuffer commandBuffer, VkImage srcImage, VkImageLayout srcImageLayout,
2315 VkImage dstImage, VkImageLayout dstImageLayout, uint32_t regionCount,
2316 const VkImageCopy *pRegions) {
John Zulauf3d84f1b2020-03-09 13:33:25 -06002317 auto *cb_access_context = GetAccessContext(commandBuffer);
2318 assert(cb_access_context);
John Zulauf2b151bf2020-04-24 15:37:44 -06002319 const auto tag = cb_access_context->NextCommandTag(CMD_COPYIMAGE);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002320 auto *context = cb_access_context->GetCurrentAccessContext();
2321 assert(context);
2322
John Zulauf5c5e88d2019-12-26 11:22:02 -07002323 auto *src_image = Get<IMAGE_STATE>(srcImage);
John Zulauf5c5e88d2019-12-26 11:22:02 -07002324 auto *dst_image = Get<IMAGE_STATE>(dstImage);
John Zulauf5c5e88d2019-12-26 11:22:02 -07002325
2326 for (uint32_t region = 0; region < regionCount; region++) {
2327 const auto &copy_region = pRegions[region];
John Zulauf3d84f1b2020-03-09 13:33:25 -06002328 if (src_image) {
John Zulauf540266b2020-04-06 18:54:53 -06002329 context->UpdateAccessState(*src_image, SYNC_TRANSFER_TRANSFER_READ, copy_region.srcSubresource, copy_region.srcOffset,
2330 copy_region.extent, tag);
John Zulauf5c5e88d2019-12-26 11:22:02 -07002331 }
John Zulauf3d84f1b2020-03-09 13:33:25 -06002332 if (dst_image) {
locke-lunarg1df1f882020-03-02 16:42:08 -07002333 VkExtent3D dst_copy_extent =
2334 GetAdjustedDestImageExtent(src_image->createInfo.format, dst_image->createInfo.format, copy_region.extent);
John Zulauf540266b2020-04-06 18:54:53 -06002335 context->UpdateAccessState(*dst_image, SYNC_TRANSFER_TRANSFER_WRITE, copy_region.dstSubresource, copy_region.dstOffset,
2336 dst_copy_extent, tag);
John Zulauf9cb530d2019-09-30 14:14:10 -06002337 }
2338 }
2339}
2340
2341bool SyncValidator::PreCallValidateCmdPipelineBarrier(VkCommandBuffer commandBuffer, VkPipelineStageFlags srcStageMask,
2342 VkPipelineStageFlags dstStageMask, VkDependencyFlags dependencyFlags,
2343 uint32_t memoryBarrierCount, const VkMemoryBarrier *pMemoryBarriers,
2344 uint32_t bufferMemoryBarrierCount,
2345 const VkBufferMemoryBarrier *pBufferMemoryBarriers,
2346 uint32_t imageMemoryBarrierCount,
2347 const VkImageMemoryBarrier *pImageMemoryBarriers) const {
2348 bool skip = false;
John Zulauf3d84f1b2020-03-09 13:33:25 -06002349 const auto *cb_access_context = GetAccessContext(commandBuffer);
2350 assert(cb_access_context);
2351 if (!cb_access_context) return skip;
John Zulauf0cb5be22020-01-23 12:18:22 -07002352
John Zulauf3d84f1b2020-03-09 13:33:25 -06002353 const auto *context = cb_access_context->GetCurrentAccessContext();
2354 assert(context);
2355 if (!context) return skip;
John Zulauf0cb5be22020-01-23 12:18:22 -07002356
John Zulauf3d84f1b2020-03-09 13:33:25 -06002357 const auto src_stage_mask = ExpandPipelineStages(cb_access_context->GetQueueFlags(), srcStageMask);
John Zulauf36bcf6a2020-02-03 15:12:52 -07002358 const auto src_exec_scope = WithEarlierPipelineStages(src_stage_mask);
2359 auto src_stage_accesses = AccessScopeByStage(src_stage_mask);
John Zulauf0cb5be22020-01-23 12:18:22 -07002360 // Validate Image Layout transitions
2361 for (uint32_t index = 0; index < imageMemoryBarrierCount; index++) {
2362 const auto &barrier = pImageMemoryBarriers[index];
2363 if (barrier.newLayout == barrier.oldLayout) continue; // Only interested in layout transitions at this point.
2364 const auto *image_state = Get<IMAGE_STATE>(barrier.image);
2365 if (!image_state) continue;
John Zulauf16adfc92020-04-08 10:28:33 -06002366 const auto hazard = context->DetectImageBarrierHazard(*image_state, src_exec_scope, src_stage_accesses, barrier);
John Zulauf0cb5be22020-01-23 12:18:22 -07002367 if (hazard.hazard) {
John Zulauf7635de32020-05-29 17:14:15 -06002368 // PHASE1 TODO -- add tag information to log msg when useful.
locke-lunarga0003652020-03-10 11:38:51 -06002369 skip |= LogError(barrier.image, string_SyncHazardVUID(hazard.hazard),
2370 "vkCmdPipelineBarrier: Hazard %s for image barrier %" PRIu32 " %s", string_SyncHazard(hazard.hazard),
2371 index, report_data->FormatHandle(barrier.image).c_str());
John Zulauf0cb5be22020-01-23 12:18:22 -07002372 }
2373 }
John Zulauf9cb530d2019-09-30 14:14:10 -06002374
2375 return skip;
2376}
2377
2378void SyncValidator::PreCallRecordCmdPipelineBarrier(VkCommandBuffer commandBuffer, VkPipelineStageFlags srcStageMask,
2379 VkPipelineStageFlags dstStageMask, VkDependencyFlags dependencyFlags,
2380 uint32_t memoryBarrierCount, const VkMemoryBarrier *pMemoryBarriers,
2381 uint32_t bufferMemoryBarrierCount,
2382 const VkBufferMemoryBarrier *pBufferMemoryBarriers,
2383 uint32_t imageMemoryBarrierCount,
2384 const VkImageMemoryBarrier *pImageMemoryBarriers) {
John Zulauf3d84f1b2020-03-09 13:33:25 -06002385 auto *cb_access_context = GetAccessContext(commandBuffer);
2386 assert(cb_access_context);
2387 if (!cb_access_context) return;
John Zulauf2b151bf2020-04-24 15:37:44 -06002388 const auto tag = cb_access_context->NextCommandTag(CMD_PIPELINEBARRIER);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002389 auto access_context = cb_access_context->GetCurrentAccessContext();
2390 assert(access_context);
2391 if (!access_context) return;
John Zulauf9cb530d2019-09-30 14:14:10 -06002392
John Zulauf3d84f1b2020-03-09 13:33:25 -06002393 const auto src_stage_mask = ExpandPipelineStages(cb_access_context->GetQueueFlags(), srcStageMask);
John Zulauf36bcf6a2020-02-03 15:12:52 -07002394 auto src_stage_accesses = AccessScopeByStage(src_stage_mask);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002395 const auto dst_stage_mask = ExpandPipelineStages(cb_access_context->GetQueueFlags(), dstStageMask);
John Zulauf36bcf6a2020-02-03 15:12:52 -07002396 auto dst_stage_accesses = AccessScopeByStage(dst_stage_mask);
2397 const auto src_exec_scope = WithEarlierPipelineStages(src_stage_mask);
2398 const auto dst_exec_scope = WithLaterPipelineStages(dst_stage_mask);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002399 ApplyBufferBarriers(access_context, src_exec_scope, src_stage_accesses, dst_exec_scope, dst_stage_accesses,
2400 bufferMemoryBarrierCount, pBufferMemoryBarriers);
John Zulauf540266b2020-04-06 18:54:53 -06002401 ApplyImageBarriers(access_context, src_exec_scope, src_stage_accesses, dst_exec_scope, dst_stage_accesses,
John Zulauf355e49b2020-04-24 15:11:15 -06002402 imageMemoryBarrierCount, pImageMemoryBarriers, tag);
John Zulauf9cb530d2019-09-30 14:14:10 -06002403
2404 // Apply these last in-case there operation is a superset of the other two and would clean them up...
John Zulauf3d84f1b2020-03-09 13:33:25 -06002405 ApplyGlobalBarriers(access_context, src_exec_scope, dst_exec_scope, src_stage_accesses, dst_stage_accesses, memoryBarrierCount,
John Zulauf0cb5be22020-01-23 12:18:22 -07002406 pMemoryBarriers);
John Zulauf9cb530d2019-09-30 14:14:10 -06002407}
2408
2409void SyncValidator::PostCallRecordCreateDevice(VkPhysicalDevice gpu, const VkDeviceCreateInfo *pCreateInfo,
2410 const VkAllocationCallbacks *pAllocator, VkDevice *pDevice, VkResult result) {
2411 // The state tracker sets up the device state
2412 StateTracker::PostCallRecordCreateDevice(gpu, pCreateInfo, pAllocator, pDevice, result);
2413
John Zulauf5f13a792020-03-10 07:31:21 -06002414 // Add the callback hooks for the functions that are either broadly or deeply used and that the ValidationStateTracker
2415 // refactor would be messier without.
John Zulauf9cb530d2019-09-30 14:14:10 -06002416 // TODO: Find a good way to do this hooklessly.
2417 ValidationObject *device_object = GetLayerDataPtr(get_dispatch_key(*pDevice), layer_data_map);
2418 ValidationObject *validation_data = GetValidationObject(device_object->object_dispatch, LayerObjectTypeSyncValidation);
2419 SyncValidator *sync_device_state = static_cast<SyncValidator *>(validation_data);
2420
John Zulaufd1f85d42020-04-15 12:23:15 -06002421 sync_device_state->SetCommandBufferResetCallback([sync_device_state](VkCommandBuffer command_buffer) -> void {
2422 sync_device_state->ResetCommandBufferCallback(command_buffer);
2423 });
2424 sync_device_state->SetCommandBufferFreeCallback([sync_device_state](VkCommandBuffer command_buffer) -> void {
2425 sync_device_state->FreeCommandBufferCallback(command_buffer);
2426 });
John Zulauf9cb530d2019-09-30 14:14:10 -06002427}
John Zulauf3d84f1b2020-03-09 13:33:25 -06002428
John Zulauf355e49b2020-04-24 15:11:15 -06002429bool SyncValidator::ValidateBeginRenderPass(VkCommandBuffer commandBuffer, const VkRenderPassBeginInfo *pRenderPassBegin,
2430 const VkSubpassBeginInfoKHR *pSubpassBeginInfo, const char *func_name) const {
2431 bool skip = false;
2432 const auto rp_state = Get<RENDER_PASS_STATE>(pRenderPassBegin->renderPass);
2433 auto cb_context = GetAccessContext(commandBuffer);
2434
2435 if (rp_state && cb_context) {
2436 skip |= cb_context->ValidateBeginRenderPass(*rp_state, pRenderPassBegin, pSubpassBeginInfo, func_name);
2437 }
2438
2439 return skip;
2440}
2441
2442bool SyncValidator::PreCallValidateCmdBeginRenderPass(VkCommandBuffer commandBuffer, const VkRenderPassBeginInfo *pRenderPassBegin,
2443 VkSubpassContents contents) const {
2444 bool skip = StateTracker::PreCallValidateCmdBeginRenderPass(commandBuffer, pRenderPassBegin, contents);
2445 auto subpass_begin_info = lvl_init_struct<VkSubpassBeginInfo>();
2446 subpass_begin_info.contents = contents;
2447 skip |= ValidateBeginRenderPass(commandBuffer, pRenderPassBegin, &subpass_begin_info, "vkCmdBeginRenderPass");
2448 return skip;
2449}
2450
2451bool SyncValidator::PreCallValidateCmdBeginRenderPass2(VkCommandBuffer commandBuffer, const VkRenderPassBeginInfo *pRenderPassBegin,
2452 const VkSubpassBeginInfoKHR *pSubpassBeginInfo) const {
2453 bool skip = StateTracker::PreCallValidateCmdBeginRenderPass2(commandBuffer, pRenderPassBegin, pSubpassBeginInfo);
2454 skip |= ValidateBeginRenderPass(commandBuffer, pRenderPassBegin, pSubpassBeginInfo, "vkCmdBeginRenderPass2");
2455 return skip;
2456}
2457
2458bool SyncValidator::PreCallValidateCmdBeginRenderPass2KHR(VkCommandBuffer commandBuffer,
2459 const VkRenderPassBeginInfo *pRenderPassBegin,
2460 const VkSubpassBeginInfoKHR *pSubpassBeginInfo) const {
2461 bool skip = StateTracker::PreCallValidateCmdBeginRenderPass2KHR(commandBuffer, pRenderPassBegin, pSubpassBeginInfo);
2462 skip |= ValidateBeginRenderPass(commandBuffer, pRenderPassBegin, pSubpassBeginInfo, "vkCmdBeginRenderPass2KHR");
2463 return skip;
2464}
2465
John Zulauf3d84f1b2020-03-09 13:33:25 -06002466void SyncValidator::PostCallRecordBeginCommandBuffer(VkCommandBuffer commandBuffer, const VkCommandBufferBeginInfo *pBeginInfo,
2467 VkResult result) {
2468 // The state tracker sets up the command buffer state
2469 StateTracker::PostCallRecordBeginCommandBuffer(commandBuffer, pBeginInfo, result);
2470
2471 // Create/initialize the structure that trackers accesses at the command buffer scope.
2472 auto cb_access_context = GetAccessContext(commandBuffer);
2473 assert(cb_access_context);
2474 cb_access_context->Reset();
2475}
2476
2477void SyncValidator::RecordCmdBeginRenderPass(VkCommandBuffer commandBuffer, const VkRenderPassBeginInfo *pRenderPassBegin,
John Zulauf355e49b2020-04-24 15:11:15 -06002478 const VkSubpassBeginInfo *pSubpassBeginInfo, CMD_TYPE command) {
John Zulauf3d84f1b2020-03-09 13:33:25 -06002479 auto cb_context = GetAccessContext(commandBuffer);
John Zulauf355e49b2020-04-24 15:11:15 -06002480 if (cb_context) {
2481 cb_context->RecordBeginRenderPass(cb_context->NextCommandTag(command));
John Zulauf3d84f1b2020-03-09 13:33:25 -06002482 }
2483}
2484
2485void SyncValidator::PostCallRecordCmdBeginRenderPass(VkCommandBuffer commandBuffer, const VkRenderPassBeginInfo *pRenderPassBegin,
2486 VkSubpassContents contents) {
2487 StateTracker::PostCallRecordCmdBeginRenderPass(commandBuffer, pRenderPassBegin, contents);
2488 auto subpass_begin_info = lvl_init_struct<VkSubpassBeginInfo>();
2489 subpass_begin_info.contents = contents;
John Zulauf355e49b2020-04-24 15:11:15 -06002490 RecordCmdBeginRenderPass(commandBuffer, pRenderPassBegin, &subpass_begin_info, CMD_BEGINRENDERPASS);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002491}
2492
2493void SyncValidator::PostCallRecordCmdBeginRenderPass2(VkCommandBuffer commandBuffer, const VkRenderPassBeginInfo *pRenderPassBegin,
2494 const VkSubpassBeginInfo *pSubpassBeginInfo) {
2495 StateTracker::PostCallRecordCmdBeginRenderPass2(commandBuffer, pRenderPassBegin, pSubpassBeginInfo);
John Zulauf355e49b2020-04-24 15:11:15 -06002496 RecordCmdBeginRenderPass(commandBuffer, pRenderPassBegin, pSubpassBeginInfo, CMD_BEGINRENDERPASS2);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002497}
2498
2499void SyncValidator::PostCallRecordCmdBeginRenderPass2KHR(VkCommandBuffer commandBuffer,
2500 const VkRenderPassBeginInfo *pRenderPassBegin,
2501 const VkSubpassBeginInfo *pSubpassBeginInfo) {
2502 StateTracker::PostCallRecordCmdBeginRenderPass2KHR(commandBuffer, pRenderPassBegin, pSubpassBeginInfo);
John Zulauf355e49b2020-04-24 15:11:15 -06002503 RecordCmdBeginRenderPass(commandBuffer, pRenderPassBegin, pSubpassBeginInfo, CMD_BEGINRENDERPASS2);
2504}
2505
2506bool SyncValidator::ValidateCmdNextSubpass(VkCommandBuffer commandBuffer, const VkSubpassBeginInfoKHR *pSubpassBeginInfo,
2507 const VkSubpassEndInfoKHR *pSubpassEndInfo, const char *func_name) const {
2508 bool skip = false;
2509
2510 auto cb_context = GetAccessContext(commandBuffer);
2511 assert(cb_context);
2512 auto cb_state = cb_context->GetCommandBufferState();
2513 if (!cb_state) return skip;
2514
2515 auto rp_state = cb_state->activeRenderPass;
2516 if (!rp_state) return skip;
2517
2518 skip |= cb_context->ValidateNextSubpass(func_name);
2519
2520 return skip;
2521}
2522
2523bool SyncValidator::PreCallValidateCmdNextSubpass(VkCommandBuffer commandBuffer, VkSubpassContents contents) const {
2524 bool skip = StateTracker::PreCallValidateCmdNextSubpass(commandBuffer, contents);
2525 auto subpass_begin_info = lvl_init_struct<VkSubpassBeginInfo>();
2526 subpass_begin_info.contents = contents;
2527 skip |= ValidateCmdNextSubpass(commandBuffer, &subpass_begin_info, nullptr, "vkCmdNextSubpass");
2528 return skip;
2529}
2530
2531bool SyncValidator::PreCallValidateCmdNextSubpass2KHR(VkCommandBuffer commandBuffer, const VkSubpassBeginInfoKHR *pSubpassBeginInfo,
2532 const VkSubpassEndInfoKHR *pSubpassEndInfo) const {
2533 bool skip = StateTracker::PreCallValidateCmdNextSubpass2KHR(commandBuffer, pSubpassBeginInfo, pSubpassEndInfo);
2534 skip |= ValidateCmdNextSubpass(commandBuffer, pSubpassBeginInfo, pSubpassEndInfo, "vkCmdNextSubpass2KHR");
2535 return skip;
2536}
2537
2538bool SyncValidator::PreCallValidateCmdNextSubpass2(VkCommandBuffer commandBuffer, const VkSubpassBeginInfo *pSubpassBeginInfo,
2539 const VkSubpassEndInfo *pSubpassEndInfo) const {
2540 bool skip = StateTracker::PreCallValidateCmdNextSubpass2(commandBuffer, pSubpassBeginInfo, pSubpassEndInfo);
2541 skip |= ValidateCmdNextSubpass(commandBuffer, pSubpassBeginInfo, pSubpassEndInfo, "vkCmdNextSubpass2");
2542 return skip;
John Zulauf3d84f1b2020-03-09 13:33:25 -06002543}
2544
2545void SyncValidator::RecordCmdNextSubpass(VkCommandBuffer commandBuffer, const VkSubpassBeginInfo *pSubpassBeginInfo,
John Zulauf355e49b2020-04-24 15:11:15 -06002546 const VkSubpassEndInfo *pSubpassEndInfo, CMD_TYPE command) {
John Zulauf3d84f1b2020-03-09 13:33:25 -06002547 auto cb_context = GetAccessContext(commandBuffer);
2548 assert(cb_context);
2549 auto cb_state = cb_context->GetCommandBufferState();
2550 if (!cb_state) return;
2551
2552 auto rp_state = cb_state->activeRenderPass;
2553 if (!rp_state) return;
2554
John Zulauf355e49b2020-04-24 15:11:15 -06002555 cb_context->RecordNextSubpass(*rp_state, cb_context->NextCommandTag(command));
John Zulauf3d84f1b2020-03-09 13:33:25 -06002556}
2557
2558void SyncValidator::PostCallRecordCmdNextSubpass(VkCommandBuffer commandBuffer, VkSubpassContents contents) {
2559 StateTracker::PostCallRecordCmdNextSubpass(commandBuffer, contents);
2560 auto subpass_begin_info = lvl_init_struct<VkSubpassBeginInfo>();
2561 subpass_begin_info.contents = contents;
John Zulauf355e49b2020-04-24 15:11:15 -06002562 RecordCmdNextSubpass(commandBuffer, &subpass_begin_info, nullptr, CMD_NEXTSUBPASS);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002563}
2564
2565void SyncValidator::PostCallRecordCmdNextSubpass2(VkCommandBuffer commandBuffer, const VkSubpassBeginInfo *pSubpassBeginInfo,
2566 const VkSubpassEndInfo *pSubpassEndInfo) {
2567 StateTracker::PostCallRecordCmdNextSubpass2(commandBuffer, pSubpassBeginInfo, pSubpassEndInfo);
John Zulauf355e49b2020-04-24 15:11:15 -06002568 RecordCmdNextSubpass(commandBuffer, pSubpassBeginInfo, pSubpassEndInfo, CMD_NEXTSUBPASS2);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002569}
2570
2571void SyncValidator::PostCallRecordCmdNextSubpass2KHR(VkCommandBuffer commandBuffer, const VkSubpassBeginInfo *pSubpassBeginInfo,
2572 const VkSubpassEndInfo *pSubpassEndInfo) {
2573 StateTracker::PostCallRecordCmdNextSubpass2KHR(commandBuffer, pSubpassBeginInfo, pSubpassEndInfo);
John Zulauf355e49b2020-04-24 15:11:15 -06002574 RecordCmdNextSubpass(commandBuffer, pSubpassBeginInfo, pSubpassEndInfo, CMD_NEXTSUBPASS2);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002575}
2576
John Zulauf355e49b2020-04-24 15:11:15 -06002577bool SyncValidator::ValidateCmdEndRenderPass(VkCommandBuffer commandBuffer, const VkSubpassEndInfoKHR *pSubpassEndInfo,
2578 const char *func_name) const {
2579 bool skip = false;
2580
2581 auto cb_context = GetAccessContext(commandBuffer);
2582 assert(cb_context);
2583 auto cb_state = cb_context->GetCommandBufferState();
2584 if (!cb_state) return skip;
2585
2586 auto rp_state = cb_state->activeRenderPass;
2587 if (!rp_state) return skip;
2588
2589 skip |= cb_context->ValidateEndRenderpass(func_name);
2590 return skip;
2591}
2592
2593bool SyncValidator::PreCallValidateCmdEndRenderPass(VkCommandBuffer commandBuffer) const {
2594 bool skip = StateTracker::PreCallValidateCmdEndRenderPass(commandBuffer);
2595 skip |= ValidateCmdEndRenderPass(commandBuffer, nullptr, "vkEndRenderPass");
2596 return skip;
2597}
2598
2599bool SyncValidator::PreCallValidateCmdEndRenderPass2(VkCommandBuffer commandBuffer,
2600 const VkSubpassEndInfoKHR *pSubpassEndInfo) const {
2601 bool skip = StateTracker::PreCallValidateCmdEndRenderPass2(commandBuffer, pSubpassEndInfo);
2602 skip |= ValidateCmdEndRenderPass(commandBuffer, pSubpassEndInfo, "vkEndRenderPass2");
2603 return skip;
2604}
2605
2606bool SyncValidator::PreCallValidateCmdEndRenderPass2KHR(VkCommandBuffer commandBuffer,
2607 const VkSubpassEndInfoKHR *pSubpassEndInfo) const {
2608 bool skip = StateTracker::PreCallValidateCmdEndRenderPass2KHR(commandBuffer, pSubpassEndInfo);
2609 skip |= ValidateCmdEndRenderPass(commandBuffer, pSubpassEndInfo, "vkEndRenderPass2KHR");
2610 return skip;
2611}
2612
2613void SyncValidator::RecordCmdEndRenderPass(VkCommandBuffer commandBuffer, const VkSubpassEndInfo *pSubpassEndInfo,
2614 CMD_TYPE command) {
John Zulaufe5da6e52020-03-18 15:32:18 -06002615 // Resolve the all subpass contexts to the command buffer contexts
2616 auto cb_context = GetAccessContext(commandBuffer);
2617 assert(cb_context);
2618 auto cb_state = cb_context->GetCommandBufferState();
2619 if (!cb_state) return;
2620
locke-lunargaecf2152020-05-12 17:15:41 -06002621 const auto *rp_state = cb_state->activeRenderPass.get();
John Zulaufe5da6e52020-03-18 15:32:18 -06002622 if (!rp_state) return;
2623
John Zulauf355e49b2020-04-24 15:11:15 -06002624 cb_context->RecordEndRenderPass(*rp_state, cb_context->NextCommandTag(command));
John Zulaufe5da6e52020-03-18 15:32:18 -06002625}
John Zulauf3d84f1b2020-03-09 13:33:25 -06002626
2627void SyncValidator::PostCallRecordCmdEndRenderPass(VkCommandBuffer commandBuffer) {
2628 StateTracker::PostCallRecordCmdEndRenderPass(commandBuffer);
John Zulauf355e49b2020-04-24 15:11:15 -06002629 RecordCmdEndRenderPass(commandBuffer, nullptr, CMD_ENDRENDERPASS);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002630}
2631
2632void SyncValidator::PostCallRecordCmdEndRenderPass2(VkCommandBuffer commandBuffer, const VkSubpassEndInfo *pSubpassEndInfo) {
2633 StateTracker::PostCallRecordCmdEndRenderPass2(commandBuffer, pSubpassEndInfo);
John Zulauf355e49b2020-04-24 15:11:15 -06002634 RecordCmdEndRenderPass(commandBuffer, pSubpassEndInfo, CMD_ENDRENDERPASS2);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002635}
2636
2637void SyncValidator::PostCallRecordCmdEndRenderPass2KHR(VkCommandBuffer commandBuffer, const VkSubpassEndInfo *pSubpassEndInfo) {
2638 StateTracker::PostCallRecordCmdEndRenderPass2KHR(commandBuffer, pSubpassEndInfo);
John Zulauf355e49b2020-04-24 15:11:15 -06002639 RecordCmdEndRenderPass(commandBuffer, pSubpassEndInfo, CMD_ENDRENDERPASS2);
John Zulauf3d84f1b2020-03-09 13:33:25 -06002640}
locke-lunarga19c71d2020-03-02 18:17:04 -07002641
2642bool SyncValidator::PreCallValidateCmdCopyBufferToImage(VkCommandBuffer commandBuffer, VkBuffer srcBuffer, VkImage dstImage,
2643 VkImageLayout dstImageLayout, uint32_t regionCount,
2644 const VkBufferImageCopy *pRegions) const {
2645 bool skip = false;
2646 const auto *cb_access_context = GetAccessContext(commandBuffer);
2647 assert(cb_access_context);
2648 if (!cb_access_context) return skip;
2649
2650 const auto *context = cb_access_context->GetCurrentAccessContext();
2651 assert(context);
2652 if (!context) return skip;
2653
2654 const auto *src_buffer = Get<BUFFER_STATE>(srcBuffer);
locke-lunarga19c71d2020-03-02 18:17:04 -07002655 const auto *dst_image = Get<IMAGE_STATE>(dstImage);
2656
2657 for (uint32_t region = 0; region < regionCount; region++) {
2658 const auto &copy_region = pRegions[region];
John Zulauf16adfc92020-04-08 10:28:33 -06002659 if (src_buffer) {
John Zulauf355e49b2020-04-24 15:11:15 -06002660 ResourceAccessRange src_range =
2661 MakeRange(copy_region.bufferOffset, GetBufferSizeFromCopyImage(copy_region, dst_image->createInfo.format));
John Zulauf16adfc92020-04-08 10:28:33 -06002662 auto hazard = context->DetectHazard(*src_buffer, SYNC_TRANSFER_TRANSFER_READ, src_range);
locke-lunarga19c71d2020-03-02 18:17:04 -07002663 if (hazard.hazard) {
John Zulauf7635de32020-05-29 17:14:15 -06002664 // PHASE1 TODO -- add tag information to log msg when useful.
locke-lunarga0003652020-03-10 11:38:51 -06002665 skip |= LogError(srcBuffer, string_SyncHazardVUID(hazard.hazard),
2666 "vkCmdCopyBufferToImage: Hazard %s for srcBuffer %s, region %" PRIu32,
locke-lunarga19c71d2020-03-02 18:17:04 -07002667 string_SyncHazard(hazard.hazard), report_data->FormatHandle(srcBuffer).c_str(), region);
2668 }
2669 }
2670 if (dst_image) {
John Zulauf540266b2020-04-06 18:54:53 -06002671 auto hazard = context->DetectHazard(*dst_image, SYNC_TRANSFER_TRANSFER_WRITE, copy_region.imageSubresource,
locke-lunarga19c71d2020-03-02 18:17:04 -07002672 copy_region.imageOffset, copy_region.imageExtent);
2673 if (hazard.hazard) {
locke-lunarga0003652020-03-10 11:38:51 -06002674 skip |= LogError(dstImage, string_SyncHazardVUID(hazard.hazard),
2675 "vkCmdCopyBufferToImage: Hazard %s for dstImage %s, region %" PRIu32,
locke-lunarga19c71d2020-03-02 18:17:04 -07002676 string_SyncHazard(hazard.hazard), report_data->FormatHandle(dstImage).c_str(), region);
2677 }
2678 if (skip) break;
2679 }
2680 if (skip) break;
2681 }
2682 return skip;
2683}
2684
2685void SyncValidator::PreCallRecordCmdCopyBufferToImage(VkCommandBuffer commandBuffer, VkBuffer srcBuffer, VkImage dstImage,
2686 VkImageLayout dstImageLayout, uint32_t regionCount,
2687 const VkBufferImageCopy *pRegions) {
2688 auto *cb_access_context = GetAccessContext(commandBuffer);
2689 assert(cb_access_context);
John Zulauf2b151bf2020-04-24 15:37:44 -06002690 const auto tag = cb_access_context->NextCommandTag(CMD_COPYBUFFERTOIMAGE);
locke-lunarga19c71d2020-03-02 18:17:04 -07002691 auto *context = cb_access_context->GetCurrentAccessContext();
2692 assert(context);
2693
2694 const auto *src_buffer = Get<BUFFER_STATE>(srcBuffer);
John Zulauf16adfc92020-04-08 10:28:33 -06002695 const auto *dst_image = Get<IMAGE_STATE>(dstImage);
locke-lunarga19c71d2020-03-02 18:17:04 -07002696
2697 for (uint32_t region = 0; region < regionCount; region++) {
2698 const auto &copy_region = pRegions[region];
2699 if (src_buffer) {
John Zulauf355e49b2020-04-24 15:11:15 -06002700 ResourceAccessRange src_range =
2701 MakeRange(copy_region.bufferOffset, GetBufferSizeFromCopyImage(copy_region, dst_image->createInfo.format));
John Zulauf16adfc92020-04-08 10:28:33 -06002702 context->UpdateAccessState(*src_buffer, SYNC_TRANSFER_TRANSFER_READ, src_range, tag);
locke-lunarga19c71d2020-03-02 18:17:04 -07002703 }
2704 if (dst_image) {
John Zulauf540266b2020-04-06 18:54:53 -06002705 context->UpdateAccessState(*dst_image, SYNC_TRANSFER_TRANSFER_WRITE, copy_region.imageSubresource,
John Zulauf5f13a792020-03-10 07:31:21 -06002706 copy_region.imageOffset, copy_region.imageExtent, tag);
locke-lunarga19c71d2020-03-02 18:17:04 -07002707 }
2708 }
2709}
2710
2711bool SyncValidator::PreCallValidateCmdCopyImageToBuffer(VkCommandBuffer commandBuffer, VkImage srcImage,
2712 VkImageLayout srcImageLayout, VkBuffer dstBuffer, uint32_t regionCount,
2713 const VkBufferImageCopy *pRegions) const {
2714 bool skip = false;
2715 const auto *cb_access_context = GetAccessContext(commandBuffer);
2716 assert(cb_access_context);
2717 if (!cb_access_context) return skip;
2718
2719 const auto *context = cb_access_context->GetCurrentAccessContext();
2720 assert(context);
2721 if (!context) return skip;
2722
2723 const auto *src_image = Get<IMAGE_STATE>(srcImage);
2724 const auto *dst_buffer = Get<BUFFER_STATE>(dstBuffer);
2725 const auto dst_mem = (dst_buffer && !dst_buffer->sparse) ? dst_buffer->binding.mem_state->mem : VK_NULL_HANDLE;
2726 for (uint32_t region = 0; region < regionCount; region++) {
2727 const auto &copy_region = pRegions[region];
2728 if (src_image) {
John Zulauf540266b2020-04-06 18:54:53 -06002729 auto hazard = context->DetectHazard(*src_image, SYNC_TRANSFER_TRANSFER_READ, copy_region.imageSubresource,
locke-lunarga19c71d2020-03-02 18:17:04 -07002730 copy_region.imageOffset, copy_region.imageExtent);
2731 if (hazard.hazard) {
locke-lunarga0003652020-03-10 11:38:51 -06002732 skip |= LogError(srcImage, string_SyncHazardVUID(hazard.hazard),
2733 "vkCmdCopyImageToBuffer: Hazard %s for srcImage %s, region %" PRIu32,
locke-lunarga19c71d2020-03-02 18:17:04 -07002734 string_SyncHazard(hazard.hazard), report_data->FormatHandle(srcImage).c_str(), region);
2735 }
2736 }
2737 if (dst_mem) {
John Zulauf355e49b2020-04-24 15:11:15 -06002738 ResourceAccessRange dst_range =
2739 MakeRange(copy_region.bufferOffset, GetBufferSizeFromCopyImage(copy_region, src_image->createInfo.format));
John Zulauf16adfc92020-04-08 10:28:33 -06002740 auto hazard = context->DetectHazard(*dst_buffer, SYNC_TRANSFER_TRANSFER_WRITE, dst_range);
locke-lunarga19c71d2020-03-02 18:17:04 -07002741 if (hazard.hazard) {
locke-lunarga0003652020-03-10 11:38:51 -06002742 skip |= LogError(dstBuffer, string_SyncHazardVUID(hazard.hazard),
2743 "vkCmdCopyImageToBuffer: Hazard %s for dstBuffer %s, region %" PRIu32,
locke-lunarga19c71d2020-03-02 18:17:04 -07002744 string_SyncHazard(hazard.hazard), report_data->FormatHandle(dstBuffer).c_str(), region);
2745 }
2746 }
2747 if (skip) break;
2748 }
2749 return skip;
2750}
2751
2752void SyncValidator::PreCallRecordCmdCopyImageToBuffer(VkCommandBuffer commandBuffer, VkImage srcImage, VkImageLayout srcImageLayout,
2753 VkBuffer dstBuffer, uint32_t regionCount, const VkBufferImageCopy *pRegions) {
2754 auto *cb_access_context = GetAccessContext(commandBuffer);
2755 assert(cb_access_context);
John Zulauf2b151bf2020-04-24 15:37:44 -06002756 const auto tag = cb_access_context->NextCommandTag(CMD_COPYIMAGETOBUFFER);
locke-lunarga19c71d2020-03-02 18:17:04 -07002757 auto *context = cb_access_context->GetCurrentAccessContext();
2758 assert(context);
2759
2760 const auto *src_image = Get<IMAGE_STATE>(srcImage);
locke-lunarga19c71d2020-03-02 18:17:04 -07002761 auto *dst_buffer = Get<BUFFER_STATE>(dstBuffer);
2762 const auto dst_mem = (dst_buffer && !dst_buffer->sparse) ? dst_buffer->binding.mem_state->mem : VK_NULL_HANDLE;
John Zulauf5f13a792020-03-10 07:31:21 -06002763 const VulkanTypedHandle dst_handle(dst_mem, kVulkanObjectTypeDeviceMemory);
locke-lunarga19c71d2020-03-02 18:17:04 -07002764
2765 for (uint32_t region = 0; region < regionCount; region++) {
2766 const auto &copy_region = pRegions[region];
2767 if (src_image) {
John Zulauf540266b2020-04-06 18:54:53 -06002768 context->UpdateAccessState(*src_image, SYNC_TRANSFER_TRANSFER_READ, copy_region.imageSubresource,
John Zulauf5f13a792020-03-10 07:31:21 -06002769 copy_region.imageOffset, copy_region.imageExtent, tag);
locke-lunarga19c71d2020-03-02 18:17:04 -07002770 }
2771 if (dst_buffer) {
John Zulauf355e49b2020-04-24 15:11:15 -06002772 ResourceAccessRange dst_range =
2773 MakeRange(copy_region.bufferOffset, GetBufferSizeFromCopyImage(copy_region, src_image->createInfo.format));
John Zulauf16adfc92020-04-08 10:28:33 -06002774 context->UpdateAccessState(*dst_buffer, SYNC_TRANSFER_TRANSFER_WRITE, dst_range, tag);
locke-lunarga19c71d2020-03-02 18:17:04 -07002775 }
2776 }
2777}
2778
2779bool SyncValidator::PreCallValidateCmdBlitImage(VkCommandBuffer commandBuffer, VkImage srcImage, VkImageLayout srcImageLayout,
2780 VkImage dstImage, VkImageLayout dstImageLayout, uint32_t regionCount,
2781 const VkImageBlit *pRegions, VkFilter filter) const {
2782 bool skip = false;
2783 const auto *cb_access_context = GetAccessContext(commandBuffer);
2784 assert(cb_access_context);
2785 if (!cb_access_context) return skip;
2786
2787 const auto *context = cb_access_context->GetCurrentAccessContext();
2788 assert(context);
2789 if (!context) return skip;
2790
2791 const auto *src_image = Get<IMAGE_STATE>(srcImage);
2792 const auto *dst_image = Get<IMAGE_STATE>(dstImage);
2793
2794 for (uint32_t region = 0; region < regionCount; region++) {
2795 const auto &blit_region = pRegions[region];
2796 if (src_image) {
2797 VkExtent3D extent = {static_cast<uint32_t>(blit_region.srcOffsets[1].x - blit_region.srcOffsets[0].x),
2798 static_cast<uint32_t>(blit_region.srcOffsets[1].y - blit_region.srcOffsets[0].y),
2799 static_cast<uint32_t>(blit_region.srcOffsets[1].z - blit_region.srcOffsets[0].z)};
John Zulauf540266b2020-04-06 18:54:53 -06002800 auto hazard = context->DetectHazard(*src_image, SYNC_TRANSFER_TRANSFER_READ, blit_region.srcSubresource,
locke-lunarga19c71d2020-03-02 18:17:04 -07002801 blit_region.srcOffsets[0], extent);
2802 if (hazard.hazard) {
locke-lunarga0003652020-03-10 11:38:51 -06002803 skip |= LogError(srcImage, string_SyncHazardVUID(hazard.hazard),
2804 "vkCmdBlitImage: Hazard %s for srcImage %s, region %" PRIu32, string_SyncHazard(hazard.hazard),
2805 report_data->FormatHandle(srcImage).c_str(), region);
locke-lunarga19c71d2020-03-02 18:17:04 -07002806 }
2807 }
2808
2809 if (dst_image) {
2810 VkExtent3D extent = {static_cast<uint32_t>(blit_region.dstOffsets[1].x - blit_region.dstOffsets[0].x),
2811 static_cast<uint32_t>(blit_region.dstOffsets[1].y - blit_region.dstOffsets[0].y),
2812 static_cast<uint32_t>(blit_region.dstOffsets[1].z - blit_region.dstOffsets[0].z)};
John Zulauf540266b2020-04-06 18:54:53 -06002813 auto hazard = context->DetectHazard(*dst_image, SYNC_TRANSFER_TRANSFER_WRITE, blit_region.dstSubresource,
locke-lunarga19c71d2020-03-02 18:17:04 -07002814 blit_region.dstOffsets[0], extent);
2815 if (hazard.hazard) {
locke-lunarga0003652020-03-10 11:38:51 -06002816 skip |= LogError(dstImage, string_SyncHazardVUID(hazard.hazard),
2817 "vkCmdBlitImage: Hazard %s for dstImage %s, region %" PRIu32, string_SyncHazard(hazard.hazard),
2818 report_data->FormatHandle(dstImage).c_str(), region);
locke-lunarga19c71d2020-03-02 18:17:04 -07002819 }
2820 if (skip) break;
2821 }
2822 }
2823
2824 return skip;
2825}
2826
2827void SyncValidator::PreCallRecordCmdBlitImage(VkCommandBuffer commandBuffer, VkImage srcImage, VkImageLayout srcImageLayout,
2828 VkImage dstImage, VkImageLayout dstImageLayout, uint32_t regionCount,
2829 const VkImageBlit *pRegions, VkFilter filter) {
2830 auto *cb_access_context = GetAccessContext(commandBuffer);
2831 assert(cb_access_context);
John Zulauf2b151bf2020-04-24 15:37:44 -06002832 const auto tag = cb_access_context->NextCommandTag(CMD_BLITIMAGE);
locke-lunarga19c71d2020-03-02 18:17:04 -07002833 auto *context = cb_access_context->GetCurrentAccessContext();
2834 assert(context);
2835
2836 auto *src_image = Get<IMAGE_STATE>(srcImage);
locke-lunarga19c71d2020-03-02 18:17:04 -07002837 auto *dst_image = Get<IMAGE_STATE>(dstImage);
locke-lunarga19c71d2020-03-02 18:17:04 -07002838
2839 for (uint32_t region = 0; region < regionCount; region++) {
2840 const auto &blit_region = pRegions[region];
2841 if (src_image) {
2842 VkExtent3D extent = {static_cast<uint32_t>(blit_region.srcOffsets[1].x - blit_region.srcOffsets[0].x),
2843 static_cast<uint32_t>(blit_region.srcOffsets[1].y - blit_region.srcOffsets[0].y),
2844 static_cast<uint32_t>(blit_region.srcOffsets[1].z - blit_region.srcOffsets[0].z)};
John Zulauf540266b2020-04-06 18:54:53 -06002845 context->UpdateAccessState(*src_image, SYNC_TRANSFER_TRANSFER_READ, blit_region.srcSubresource,
John Zulauf5f13a792020-03-10 07:31:21 -06002846 blit_region.srcOffsets[0], extent, tag);
locke-lunarga19c71d2020-03-02 18:17:04 -07002847 }
2848 if (dst_image) {
2849 VkExtent3D extent = {static_cast<uint32_t>(blit_region.dstOffsets[1].x - blit_region.dstOffsets[0].x),
2850 static_cast<uint32_t>(blit_region.dstOffsets[1].y - blit_region.dstOffsets[0].y),
2851 static_cast<uint32_t>(blit_region.dstOffsets[1].z - blit_region.dstOffsets[0].z)};
John Zulauf540266b2020-04-06 18:54:53 -06002852 context->UpdateAccessState(*dst_image, SYNC_TRANSFER_TRANSFER_WRITE, blit_region.dstSubresource,
John Zulauf5f13a792020-03-10 07:31:21 -06002853 blit_region.dstOffsets[0], extent, tag);
locke-lunarga19c71d2020-03-02 18:17:04 -07002854 }
2855 }
2856}
locke-lunarg36ba2592020-04-03 09:42:04 -06002857
locke-lunarg61870c22020-06-09 14:51:50 -06002858bool SyncValidator::ValidateIndirectBuffer(const AccessContext &context, VkCommandBuffer commandBuffer,
2859 const VkDeviceSize struct_size, const VkBuffer buffer, const VkDeviceSize offset,
2860 const uint32_t drawCount, const uint32_t stride, const char *function) const {
locke-lunargff255f92020-05-13 18:53:52 -06002861 bool skip = false;
2862 if (drawCount == 0) return skip;
2863
2864 const auto *buf_state = Get<BUFFER_STATE>(buffer);
2865 VkDeviceSize size = struct_size;
2866 if (drawCount == 1 || stride == size) {
2867 if (drawCount > 1) size *= drawCount;
2868 ResourceAccessRange range = MakeRange(offset, size);
2869 auto hazard = context.DetectHazard(*buf_state, SYNC_DRAW_INDIRECT_INDIRECT_COMMAND_READ, range);
2870 if (hazard.hazard) {
2871 skip |= LogError(buf_state->buffer, string_SyncHazardVUID(hazard.hazard), "%s: Hazard %s for indirect %s in %s",
2872 function, string_SyncHazard(hazard.hazard), report_data->FormatHandle(buffer).c_str(),
2873 report_data->FormatHandle(commandBuffer).c_str());
2874 }
2875 } else {
2876 for (uint32_t i = 0; i < drawCount; ++i) {
2877 ResourceAccessRange range = MakeRange(offset + i * stride, size);
2878 auto hazard = context.DetectHazard(*buf_state, SYNC_DRAW_INDIRECT_INDIRECT_COMMAND_READ, range);
2879 if (hazard.hazard) {
2880 skip |= LogError(buf_state->buffer, string_SyncHazardVUID(hazard.hazard), "%s: Hazard %s for indirect %s in %s",
2881 function, string_SyncHazard(hazard.hazard), report_data->FormatHandle(buffer).c_str(),
2882 report_data->FormatHandle(commandBuffer).c_str());
2883 break;
2884 }
2885 }
2886 }
2887 return skip;
2888}
2889
locke-lunarg61870c22020-06-09 14:51:50 -06002890void SyncValidator::RecordIndirectBuffer(AccessContext &context, const ResourceUsageTag &tag, const VkDeviceSize struct_size,
2891 const VkBuffer buffer, const VkDeviceSize offset, const uint32_t drawCount,
2892 uint32_t stride) {
locke-lunargff255f92020-05-13 18:53:52 -06002893 const auto *buf_state = Get<BUFFER_STATE>(buffer);
2894 VkDeviceSize size = struct_size;
2895 if (drawCount == 1 || stride == size) {
2896 if (drawCount > 1) size *= drawCount;
2897 ResourceAccessRange range = MakeRange(offset, size);
2898 context.UpdateAccessState(*buf_state, SYNC_DRAW_INDIRECT_INDIRECT_COMMAND_READ, range, tag);
2899 } else {
2900 for (uint32_t i = 0; i < drawCount; ++i) {
2901 ResourceAccessRange range = MakeRange(offset + i * stride, size);
2902 context.UpdateAccessState(*buf_state, SYNC_DRAW_INDIRECT_INDIRECT_COMMAND_READ, range, tag);
2903 }
2904 }
2905}
2906
locke-lunarg61870c22020-06-09 14:51:50 -06002907bool SyncValidator::ValidateCountBuffer(const AccessContext &context, VkCommandBuffer commandBuffer, VkBuffer buffer,
2908 VkDeviceSize offset, const char *function) const {
locke-lunargff255f92020-05-13 18:53:52 -06002909 bool skip = false;
2910
2911 const auto *count_buf_state = Get<BUFFER_STATE>(buffer);
2912 ResourceAccessRange range = MakeRange(offset, 4);
2913 auto hazard = context.DetectHazard(*count_buf_state, SYNC_DRAW_INDIRECT_INDIRECT_COMMAND_READ, range);
2914 if (hazard.hazard) {
2915 skip |= LogError(count_buf_state->buffer, string_SyncHazardVUID(hazard.hazard), "%s: Hazard %s for countBuffer %s in %s",
2916 function, string_SyncHazard(hazard.hazard), report_data->FormatHandle(buffer).c_str(),
2917 report_data->FormatHandle(commandBuffer).c_str());
2918 }
2919 return skip;
2920}
2921
locke-lunarg61870c22020-06-09 14:51:50 -06002922void SyncValidator::RecordCountBuffer(AccessContext &context, const ResourceUsageTag &tag, VkBuffer buffer, VkDeviceSize offset) {
locke-lunargff255f92020-05-13 18:53:52 -06002923 const auto *count_buf_state = Get<BUFFER_STATE>(buffer);
2924 ResourceAccessRange range = MakeRange(offset, 4);
2925 context.UpdateAccessState(*count_buf_state, SYNC_DRAW_INDIRECT_INDIRECT_COMMAND_READ, range, tag);
2926}
2927
locke-lunarg36ba2592020-04-03 09:42:04 -06002928bool SyncValidator::PreCallValidateCmdDispatch(VkCommandBuffer commandBuffer, uint32_t x, uint32_t y, uint32_t z) const {
locke-lunargff255f92020-05-13 18:53:52 -06002929 bool skip = false;
2930 ;
locke-lunargff255f92020-05-13 18:53:52 -06002931 const auto *cb_access_context = GetAccessContext(commandBuffer);
2932 assert(cb_access_context);
2933 if (!cb_access_context) return skip;
2934
locke-lunarg61870c22020-06-09 14:51:50 -06002935 skip |= cb_access_context->ValidateDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_COMPUTE, "vkCmdDispatch");
locke-lunargff255f92020-05-13 18:53:52 -06002936 return skip;
locke-lunarg36ba2592020-04-03 09:42:04 -06002937}
2938
2939void SyncValidator::PreCallRecordCmdDispatch(VkCommandBuffer commandBuffer, uint32_t x, uint32_t y, uint32_t z) {
locke-lunargff255f92020-05-13 18:53:52 -06002940 auto *cb_access_context = GetAccessContext(commandBuffer);
2941 assert(cb_access_context);
2942 const auto tag = cb_access_context->NextCommandTag(CMD_DISPATCH);
locke-lunargff255f92020-05-13 18:53:52 -06002943
locke-lunarg61870c22020-06-09 14:51:50 -06002944 cb_access_context->RecordDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_COMPUTE, tag);
locke-lunarg36ba2592020-04-03 09:42:04 -06002945}
locke-lunarge1a67022020-04-29 00:15:36 -06002946
2947bool SyncValidator::PreCallValidateCmdDispatchIndirect(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset) const {
locke-lunargff255f92020-05-13 18:53:52 -06002948 bool skip = false;
locke-lunargff255f92020-05-13 18:53:52 -06002949 const auto *cb_access_context = GetAccessContext(commandBuffer);
2950 assert(cb_access_context);
2951 if (!cb_access_context) return skip;
2952
2953 const auto *context = cb_access_context->GetCurrentAccessContext();
2954 assert(context);
2955 if (!context) return skip;
2956
locke-lunarg61870c22020-06-09 14:51:50 -06002957 skip |= cb_access_context->ValidateDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_COMPUTE, "vkCmdDispatchIndirect");
2958 skip |= ValidateIndirectBuffer(*context, commandBuffer, sizeof(VkDispatchIndirectCommand), buffer, offset, 1,
2959 sizeof(VkDispatchIndirectCommand), "vkCmdDispatchIndirect");
locke-lunargff255f92020-05-13 18:53:52 -06002960 return skip;
locke-lunarge1a67022020-04-29 00:15:36 -06002961}
2962
2963void SyncValidator::PreCallRecordCmdDispatchIndirect(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset) {
locke-lunargff255f92020-05-13 18:53:52 -06002964 auto *cb_access_context = GetAccessContext(commandBuffer);
2965 assert(cb_access_context);
2966 const auto tag = cb_access_context->NextCommandTag(CMD_DISPATCHINDIRECT);
2967 auto *context = cb_access_context->GetCurrentAccessContext();
2968 assert(context);
2969
locke-lunarg61870c22020-06-09 14:51:50 -06002970 cb_access_context->RecordDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_COMPUTE, tag);
2971 RecordIndirectBuffer(*context, tag, sizeof(VkDispatchIndirectCommand), buffer, offset, 1, sizeof(VkDispatchIndirectCommand));
locke-lunarge1a67022020-04-29 00:15:36 -06002972}
2973
2974bool SyncValidator::PreCallValidateCmdDraw(VkCommandBuffer commandBuffer, uint32_t vertexCount, uint32_t instanceCount,
2975 uint32_t firstVertex, uint32_t firstInstance) const {
locke-lunarga4d39ea2020-05-22 14:17:29 -06002976 bool skip = false;
locke-lunargff255f92020-05-13 18:53:52 -06002977 const auto *cb_access_context = GetAccessContext(commandBuffer);
2978 assert(cb_access_context);
2979 if (!cb_access_context) return skip;
2980
locke-lunarg61870c22020-06-09 14:51:50 -06002981 skip |= cb_access_context->ValidateDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_GRAPHICS, "vkCmdDraw");
2982 skip |= cb_access_context->ValidateDrawVertex(vertexCount, firstVertex, "vkCmdDraw");
2983 skip |= cb_access_context->ValidateDrawSubpassAttachment("vkCmdDraw");
locke-lunarga4d39ea2020-05-22 14:17:29 -06002984 return skip;
locke-lunarge1a67022020-04-29 00:15:36 -06002985}
2986
2987void SyncValidator::PreCallRecordCmdDraw(VkCommandBuffer commandBuffer, uint32_t vertexCount, uint32_t instanceCount,
2988 uint32_t firstVertex, uint32_t firstInstance) {
locke-lunargff255f92020-05-13 18:53:52 -06002989 auto *cb_access_context = GetAccessContext(commandBuffer);
2990 assert(cb_access_context);
2991 const auto tag = cb_access_context->NextCommandTag(CMD_DRAW);
locke-lunargff255f92020-05-13 18:53:52 -06002992
locke-lunarg61870c22020-06-09 14:51:50 -06002993 cb_access_context->RecordDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_GRAPHICS, tag);
2994 cb_access_context->RecordDrawVertex(vertexCount, firstVertex, tag);
2995 cb_access_context->RecordDrawSubpassAttachment(tag);
locke-lunarge1a67022020-04-29 00:15:36 -06002996}
2997
2998bool SyncValidator::PreCallValidateCmdDrawIndexed(VkCommandBuffer commandBuffer, uint32_t indexCount, uint32_t instanceCount,
2999 uint32_t firstIndex, int32_t vertexOffset, uint32_t firstInstance) const {
locke-lunarga4d39ea2020-05-22 14:17:29 -06003000 bool skip = false;
locke-lunargff255f92020-05-13 18:53:52 -06003001 const auto *cb_access_context = GetAccessContext(commandBuffer);
3002 assert(cb_access_context);
3003 if (!cb_access_context) return skip;
3004
locke-lunarg61870c22020-06-09 14:51:50 -06003005 skip |= cb_access_context->ValidateDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_GRAPHICS, "vkCmdDrawIndexed");
3006 skip |= cb_access_context->ValidateDrawVertexIndex(indexCount, firstIndex, "vkCmdDrawIndexed");
3007 skip |= cb_access_context->ValidateDrawSubpassAttachment("vkCmdDrawIndexed");
locke-lunarga4d39ea2020-05-22 14:17:29 -06003008 return skip;
locke-lunarge1a67022020-04-29 00:15:36 -06003009}
3010
3011void SyncValidator::PreCallRecordCmdDrawIndexed(VkCommandBuffer commandBuffer, uint32_t indexCount, uint32_t instanceCount,
3012 uint32_t firstIndex, int32_t vertexOffset, uint32_t firstInstance) {
locke-lunargff255f92020-05-13 18:53:52 -06003013 auto *cb_access_context = GetAccessContext(commandBuffer);
3014 assert(cb_access_context);
3015 const auto tag = cb_access_context->NextCommandTag(CMD_DRAWINDEXED);
locke-lunargff255f92020-05-13 18:53:52 -06003016
locke-lunarg61870c22020-06-09 14:51:50 -06003017 cb_access_context->RecordDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_GRAPHICS, tag);
3018 cb_access_context->RecordDrawVertexIndex(indexCount, firstIndex, tag);
3019 cb_access_context->RecordDrawSubpassAttachment(tag);
locke-lunarge1a67022020-04-29 00:15:36 -06003020}
3021
3022bool SyncValidator::PreCallValidateCmdDrawIndirect(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3023 uint32_t drawCount, uint32_t stride) const {
locke-lunargff255f92020-05-13 18:53:52 -06003024 bool skip = false;
3025 if (drawCount == 0) return skip;
3026
locke-lunargff255f92020-05-13 18:53:52 -06003027 const auto *cb_access_context = GetAccessContext(commandBuffer);
3028 assert(cb_access_context);
3029 if (!cb_access_context) return skip;
3030
3031 const auto *context = cb_access_context->GetCurrentAccessContext();
3032 assert(context);
3033 if (!context) return skip;
3034
locke-lunarg61870c22020-06-09 14:51:50 -06003035 skip |= cb_access_context->ValidateDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_GRAPHICS, "vkCmdDrawIndirect");
3036 skip |= cb_access_context->ValidateDrawSubpassAttachment("vkCmdDrawIndirect");
3037 skip |= ValidateIndirectBuffer(*context, commandBuffer, sizeof(VkDrawIndirectCommand), buffer, offset, drawCount, stride,
3038 "vkCmdDrawIndirect");
locke-lunargff255f92020-05-13 18:53:52 -06003039
3040 // TODO: For now, we validate the whole vertex buffer. It might cause some false positive.
3041 // VkDrawIndirectCommand buffer could be changed until SubmitQueue.
3042 // We will validate the vertex buffer in SubmitQueue in the future.
locke-lunarg61870c22020-06-09 14:51:50 -06003043 skip |= cb_access_context->ValidateDrawVertex(UINT32_MAX, 0, "vkCmdDrawIndirect");
locke-lunargff255f92020-05-13 18:53:52 -06003044 return skip;
locke-lunarge1a67022020-04-29 00:15:36 -06003045}
3046
3047void SyncValidator::PreCallRecordCmdDrawIndirect(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3048 uint32_t drawCount, uint32_t stride) {
locke-lunargff255f92020-05-13 18:53:52 -06003049 if (drawCount == 0) return;
locke-lunargff255f92020-05-13 18:53:52 -06003050 auto *cb_access_context = GetAccessContext(commandBuffer);
3051 assert(cb_access_context);
3052 const auto tag = cb_access_context->NextCommandTag(CMD_DRAWINDIRECT);
3053 auto *context = cb_access_context->GetCurrentAccessContext();
3054 assert(context);
3055
locke-lunarg61870c22020-06-09 14:51:50 -06003056 cb_access_context->RecordDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_GRAPHICS, tag);
3057 cb_access_context->RecordDrawSubpassAttachment(tag);
3058 RecordIndirectBuffer(*context, tag, sizeof(VkDrawIndirectCommand), buffer, offset, drawCount, stride);
locke-lunargff255f92020-05-13 18:53:52 -06003059
3060 // TODO: For now, we record the whole vertex buffer. It might cause some false positive.
3061 // VkDrawIndirectCommand buffer could be changed until SubmitQueue.
3062 // We will record the vertex buffer in SubmitQueue in the future.
locke-lunarg61870c22020-06-09 14:51:50 -06003063 cb_access_context->RecordDrawVertex(UINT32_MAX, 0, tag);
locke-lunarge1a67022020-04-29 00:15:36 -06003064}
3065
3066bool SyncValidator::PreCallValidateCmdDrawIndexedIndirect(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3067 uint32_t drawCount, uint32_t stride) const {
locke-lunargff255f92020-05-13 18:53:52 -06003068 bool skip = false;
3069 if (drawCount == 0) return skip;
locke-lunargff255f92020-05-13 18:53:52 -06003070 const auto *cb_access_context = GetAccessContext(commandBuffer);
3071 assert(cb_access_context);
3072 if (!cb_access_context) return skip;
3073
3074 const auto *context = cb_access_context->GetCurrentAccessContext();
3075 assert(context);
3076 if (!context) return skip;
3077
locke-lunarg61870c22020-06-09 14:51:50 -06003078 skip |= cb_access_context->ValidateDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_GRAPHICS, "vkCmdDrawIndexedIndirect");
3079 skip |= cb_access_context->ValidateDrawSubpassAttachment("vkCmdDrawIndexedIndirect");
3080 skip |= ValidateIndirectBuffer(*context, commandBuffer, sizeof(VkDrawIndexedIndirectCommand), buffer, offset, drawCount, stride,
3081 "vkCmdDrawIndexedIndirect");
locke-lunargff255f92020-05-13 18:53:52 -06003082
3083 // TODO: For now, we validate the whole index and vertex buffer. It might cause some false positive.
3084 // VkDrawIndexedIndirectCommand buffer could be changed until SubmitQueue.
3085 // We will validate the index and vertex buffer in SubmitQueue in the future.
locke-lunarg61870c22020-06-09 14:51:50 -06003086 skip |= cb_access_context->ValidateDrawVertexIndex(UINT32_MAX, 0, "vkCmdDrawIndexedIndirect");
locke-lunargff255f92020-05-13 18:53:52 -06003087 return skip;
locke-lunarge1a67022020-04-29 00:15:36 -06003088}
3089
3090void SyncValidator::PreCallRecordCmdDrawIndexedIndirect(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3091 uint32_t drawCount, uint32_t stride) {
locke-lunargff255f92020-05-13 18:53:52 -06003092 auto *cb_access_context = GetAccessContext(commandBuffer);
3093 assert(cb_access_context);
3094 const auto tag = cb_access_context->NextCommandTag(CMD_DRAWINDEXEDINDIRECT);
3095 auto *context = cb_access_context->GetCurrentAccessContext();
3096 assert(context);
3097
locke-lunarg61870c22020-06-09 14:51:50 -06003098 cb_access_context->RecordDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_GRAPHICS, tag);
3099 cb_access_context->RecordDrawSubpassAttachment(tag);
3100 RecordIndirectBuffer(*context, tag, sizeof(VkDrawIndexedIndirectCommand), buffer, offset, drawCount, stride);
locke-lunargff255f92020-05-13 18:53:52 -06003101
3102 // TODO: For now, we record the whole index and vertex buffer. It might cause some false positive.
3103 // VkDrawIndexedIndirectCommand buffer could be changed until SubmitQueue.
3104 // We will record the index and vertex buffer in SubmitQueue in the future.
locke-lunarg61870c22020-06-09 14:51:50 -06003105 cb_access_context->RecordDrawVertexIndex(UINT32_MAX, 0, tag);
locke-lunargff255f92020-05-13 18:53:52 -06003106}
3107
3108bool SyncValidator::ValidateCmdDrawIndirectCount(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3109 VkBuffer countBuffer, VkDeviceSize countBufferOffset, uint32_t maxDrawCount,
3110 uint32_t stride, const char *function) const {
3111 bool skip = false;
locke-lunargff255f92020-05-13 18:53:52 -06003112 const auto *cb_access_context = GetAccessContext(commandBuffer);
3113 assert(cb_access_context);
3114 if (!cb_access_context) return skip;
3115
3116 const auto *context = cb_access_context->GetCurrentAccessContext();
3117 assert(context);
3118 if (!context) return skip;
3119
locke-lunarg61870c22020-06-09 14:51:50 -06003120 skip |= cb_access_context->ValidateDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_GRAPHICS, function);
3121 skip |= cb_access_context->ValidateDrawSubpassAttachment(function);
3122 skip |= ValidateIndirectBuffer(*context, commandBuffer, sizeof(VkDrawIndirectCommand), buffer, offset, maxDrawCount, stride,
3123 function);
3124 skip |= ValidateCountBuffer(*context, commandBuffer, countBuffer, countBufferOffset, function);
locke-lunargff255f92020-05-13 18:53:52 -06003125
3126 // TODO: For now, we validate the whole vertex buffer. It might cause some false positive.
3127 // VkDrawIndirectCommand buffer could be changed until SubmitQueue.
3128 // We will validate the vertex buffer in SubmitQueue in the future.
locke-lunarg61870c22020-06-09 14:51:50 -06003129 skip |= cb_access_context->ValidateDrawVertex(UINT32_MAX, 0, function);
locke-lunargff255f92020-05-13 18:53:52 -06003130 return skip;
locke-lunarge1a67022020-04-29 00:15:36 -06003131}
3132
3133bool SyncValidator::PreCallValidateCmdDrawIndirectCount(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3134 VkBuffer countBuffer, VkDeviceSize countBufferOffset, uint32_t maxDrawCount,
3135 uint32_t stride) const {
locke-lunargff255f92020-05-13 18:53:52 -06003136 return ValidateCmdDrawIndirectCount(commandBuffer, buffer, offset, countBuffer, countBufferOffset, maxDrawCount, stride,
3137 "vkCmdDrawIndirectCount");
locke-lunarge1a67022020-04-29 00:15:36 -06003138}
3139
3140void SyncValidator::PreCallRecordCmdDrawIndirectCount(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3141 VkBuffer countBuffer, VkDeviceSize countBufferOffset, uint32_t maxDrawCount,
3142 uint32_t stride) {
locke-lunargff255f92020-05-13 18:53:52 -06003143 auto *cb_access_context = GetAccessContext(commandBuffer);
3144 assert(cb_access_context);
3145 const auto tag = cb_access_context->NextCommandTag(CMD_DRAWINDIRECTCOUNT);
3146 auto *context = cb_access_context->GetCurrentAccessContext();
3147 assert(context);
3148
locke-lunarg61870c22020-06-09 14:51:50 -06003149 cb_access_context->RecordDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_GRAPHICS, tag);
3150 cb_access_context->RecordDrawSubpassAttachment(tag);
3151 RecordIndirectBuffer(*context, tag, sizeof(VkDrawIndirectCommand), buffer, offset, 1, stride);
3152 RecordCountBuffer(*context, tag, countBuffer, countBufferOffset);
locke-lunargff255f92020-05-13 18:53:52 -06003153
3154 // TODO: For now, we record the whole vertex buffer. It might cause some false positive.
3155 // VkDrawIndirectCommand buffer could be changed until SubmitQueue.
3156 // We will record the vertex buffer in SubmitQueue in the future.
locke-lunarg61870c22020-06-09 14:51:50 -06003157 cb_access_context->RecordDrawVertex(UINT32_MAX, 0, tag);
locke-lunarge1a67022020-04-29 00:15:36 -06003158}
3159
3160bool SyncValidator::PreCallValidateCmdDrawIndirectCountKHR(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3161 VkBuffer countBuffer, VkDeviceSize countBufferOffset,
3162 uint32_t maxDrawCount, uint32_t stride) const {
locke-lunargff255f92020-05-13 18:53:52 -06003163 return ValidateCmdDrawIndirectCount(commandBuffer, buffer, offset, countBuffer, countBufferOffset, maxDrawCount, stride,
3164 "vkCmdDrawIndirectCountKHR");
locke-lunarge1a67022020-04-29 00:15:36 -06003165}
3166
3167void SyncValidator::PreCallRecordCmdDrawIndirectCountKHR(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3168 VkBuffer countBuffer, VkDeviceSize countBufferOffset,
3169 uint32_t maxDrawCount, uint32_t stride) {
locke-lunargff255f92020-05-13 18:53:52 -06003170 PreCallRecordCmdDrawIndirectCount(commandBuffer, buffer, offset, countBuffer, countBufferOffset, maxDrawCount, stride);
locke-lunarge1a67022020-04-29 00:15:36 -06003171}
3172
3173bool SyncValidator::PreCallValidateCmdDrawIndirectCountAMD(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3174 VkBuffer countBuffer, VkDeviceSize countBufferOffset,
3175 uint32_t maxDrawCount, uint32_t stride) const {
locke-lunargff255f92020-05-13 18:53:52 -06003176 return ValidateCmdDrawIndirectCount(commandBuffer, buffer, offset, countBuffer, countBufferOffset, maxDrawCount, stride,
3177 "vkCmdDrawIndirectCountAMD");
locke-lunarge1a67022020-04-29 00:15:36 -06003178}
3179
3180void SyncValidator::PreCallRecordCmdDrawIndirectCountAMD(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3181 VkBuffer countBuffer, VkDeviceSize countBufferOffset,
3182 uint32_t maxDrawCount, uint32_t stride) {
locke-lunargff255f92020-05-13 18:53:52 -06003183 PreCallRecordCmdDrawIndirectCount(commandBuffer, buffer, offset, countBuffer, countBufferOffset, maxDrawCount, stride);
3184}
3185
3186bool SyncValidator::ValidateCmdDrawIndexedIndirectCount(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3187 VkBuffer countBuffer, VkDeviceSize countBufferOffset, uint32_t maxDrawCount,
3188 uint32_t stride, const char *function) const {
3189 bool skip = false;
locke-lunargff255f92020-05-13 18:53:52 -06003190 const auto *cb_access_context = GetAccessContext(commandBuffer);
3191 assert(cb_access_context);
3192 if (!cb_access_context) return skip;
3193
3194 const auto *context = cb_access_context->GetCurrentAccessContext();
3195 assert(context);
3196 if (!context) return skip;
3197
locke-lunarg61870c22020-06-09 14:51:50 -06003198 skip |= cb_access_context->ValidateDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_GRAPHICS, function);
3199 skip |= cb_access_context->ValidateDrawSubpassAttachment(function);
3200 skip |= ValidateIndirectBuffer(*context, commandBuffer, sizeof(VkDrawIndexedIndirectCommand), buffer, offset, maxDrawCount,
3201 stride, function);
3202 skip |= ValidateCountBuffer(*context, commandBuffer, countBuffer, countBufferOffset, function);
locke-lunargff255f92020-05-13 18:53:52 -06003203
3204 // TODO: For now, we validate the whole index and vertex buffer. It might cause some false positive.
3205 // VkDrawIndexedIndirectCommand buffer could be changed until SubmitQueue.
3206 // We will validate the index and vertex buffer in SubmitQueue in the future.
locke-lunarg61870c22020-06-09 14:51:50 -06003207 skip |= cb_access_context->ValidateDrawVertexIndex(UINT32_MAX, 0, function);
locke-lunargff255f92020-05-13 18:53:52 -06003208 return skip;
locke-lunarge1a67022020-04-29 00:15:36 -06003209}
3210
3211bool SyncValidator::PreCallValidateCmdDrawIndexedIndirectCount(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3212 VkBuffer countBuffer, VkDeviceSize countBufferOffset,
3213 uint32_t maxDrawCount, uint32_t stride) const {
locke-lunargff255f92020-05-13 18:53:52 -06003214 return ValidateCmdDrawIndexedIndirectCount(commandBuffer, buffer, offset, countBuffer, countBufferOffset, maxDrawCount, stride,
3215 "vkCmdDrawIndexedIndirectCount");
locke-lunarge1a67022020-04-29 00:15:36 -06003216}
3217
3218void SyncValidator::PreCallRecordCmdDrawIndexedIndirectCount(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3219 VkBuffer countBuffer, VkDeviceSize countBufferOffset,
3220 uint32_t maxDrawCount, uint32_t stride) {
locke-lunargff255f92020-05-13 18:53:52 -06003221 auto *cb_access_context = GetAccessContext(commandBuffer);
3222 assert(cb_access_context);
3223 const auto tag = cb_access_context->NextCommandTag(CMD_DRAWINDEXEDINDIRECTCOUNT);
3224 auto *context = cb_access_context->GetCurrentAccessContext();
3225 assert(context);
3226
locke-lunarg61870c22020-06-09 14:51:50 -06003227 cb_access_context->RecordDispatchDrawDescriptorSet(VK_PIPELINE_BIND_POINT_GRAPHICS, tag);
3228 cb_access_context->RecordDrawSubpassAttachment(tag);
3229 RecordIndirectBuffer(*context, tag, sizeof(VkDrawIndexedIndirectCommand), buffer, offset, 1, stride);
3230 RecordCountBuffer(*context, tag, countBuffer, countBufferOffset);
locke-lunargff255f92020-05-13 18:53:52 -06003231
3232 // TODO: For now, we record the whole index and vertex buffer. It might cause some false positive.
3233 // VkDrawIndexedIndirectCommand buffer could be changed until SubmitQueue.
locke-lunarg61870c22020-06-09 14:51:50 -06003234 // We will update the index and vertex buffer in SubmitQueue in the future.
3235 cb_access_context->RecordDrawVertexIndex(UINT32_MAX, 0, tag);
locke-lunarge1a67022020-04-29 00:15:36 -06003236}
3237
3238bool SyncValidator::PreCallValidateCmdDrawIndexedIndirectCountKHR(VkCommandBuffer commandBuffer, VkBuffer buffer,
3239 VkDeviceSize offset, VkBuffer countBuffer,
3240 VkDeviceSize countBufferOffset, uint32_t maxDrawCount,
3241 uint32_t stride) const {
locke-lunargff255f92020-05-13 18:53:52 -06003242 return ValidateCmdDrawIndexedIndirectCount(commandBuffer, buffer, offset, countBuffer, countBufferOffset, maxDrawCount, stride,
3243 "vkCmdDrawIndexedIndirectCountKHR");
locke-lunarge1a67022020-04-29 00:15:36 -06003244}
3245
3246void SyncValidator::PreCallRecordCmdDrawIndexedIndirectCountKHR(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3247 VkBuffer countBuffer, VkDeviceSize countBufferOffset,
3248 uint32_t maxDrawCount, uint32_t stride) {
3249 PreCallRecordCmdDrawIndexedIndirectCount(commandBuffer, buffer, offset, countBuffer, countBufferOffset, maxDrawCount, stride);
3250}
3251
3252bool SyncValidator::PreCallValidateCmdDrawIndexedIndirectCountAMD(VkCommandBuffer commandBuffer, VkBuffer buffer,
3253 VkDeviceSize offset, VkBuffer countBuffer,
3254 VkDeviceSize countBufferOffset, uint32_t maxDrawCount,
3255 uint32_t stride) const {
locke-lunargff255f92020-05-13 18:53:52 -06003256 return ValidateCmdDrawIndexedIndirectCount(commandBuffer, buffer, offset, countBuffer, countBufferOffset, maxDrawCount, stride,
3257 "vkCmdDrawIndexedIndirectCountAMD");
locke-lunarge1a67022020-04-29 00:15:36 -06003258}
3259
3260void SyncValidator::PreCallRecordCmdDrawIndexedIndirectCountAMD(VkCommandBuffer commandBuffer, VkBuffer buffer, VkDeviceSize offset,
3261 VkBuffer countBuffer, VkDeviceSize countBufferOffset,
3262 uint32_t maxDrawCount, uint32_t stride) {
3263 PreCallRecordCmdDrawIndexedIndirectCount(commandBuffer, buffer, offset, countBuffer, countBufferOffset, maxDrawCount, stride);
3264}
3265
3266bool SyncValidator::PreCallValidateCmdClearColorImage(VkCommandBuffer commandBuffer, VkImage image, VkImageLayout imageLayout,
3267 const VkClearColorValue *pColor, uint32_t rangeCount,
3268 const VkImageSubresourceRange *pRanges) const {
3269 bool skip = false;
3270 const auto *cb_access_context = GetAccessContext(commandBuffer);
3271 assert(cb_access_context);
3272 if (!cb_access_context) return skip;
3273
3274 const auto *context = cb_access_context->GetCurrentAccessContext();
3275 assert(context);
3276 if (!context) return skip;
3277
3278 const auto *image_state = Get<IMAGE_STATE>(image);
3279
3280 for (uint32_t index = 0; index < rangeCount; index++) {
3281 const auto &range = pRanges[index];
3282 if (image_state) {
3283 auto hazard =
3284 context->DetectHazard(*image_state, SYNC_TRANSFER_TRANSFER_WRITE, range, {0, 0, 0}, image_state->createInfo.extent);
3285 if (hazard.hazard) {
3286 skip |= LogError(image, string_SyncHazardVUID(hazard.hazard),
3287 "vkCmdClearColorImage: Hazard %s for %s, range index %" PRIu32, string_SyncHazard(hazard.hazard),
3288 report_data->FormatHandle(image).c_str(), index);
3289 }
3290 }
3291 }
3292 return skip;
3293}
3294
3295void SyncValidator::PreCallRecordCmdClearColorImage(VkCommandBuffer commandBuffer, VkImage image, VkImageLayout imageLayout,
3296 const VkClearColorValue *pColor, uint32_t rangeCount,
3297 const VkImageSubresourceRange *pRanges) {
3298 auto *cb_access_context = GetAccessContext(commandBuffer);
3299 assert(cb_access_context);
3300 const auto tag = cb_access_context->NextCommandTag(CMD_CLEARCOLORIMAGE);
3301 auto *context = cb_access_context->GetCurrentAccessContext();
3302 assert(context);
3303
3304 const auto *image_state = Get<IMAGE_STATE>(image);
3305
3306 for (uint32_t index = 0; index < rangeCount; index++) {
3307 const auto &range = pRanges[index];
3308 if (image_state) {
3309 context->UpdateAccessState(*image_state, SYNC_TRANSFER_TRANSFER_WRITE, range, {0, 0, 0}, image_state->createInfo.extent,
3310 tag);
3311 }
3312 }
3313}
3314
3315bool SyncValidator::PreCallValidateCmdClearDepthStencilImage(VkCommandBuffer commandBuffer, VkImage image,
3316 VkImageLayout imageLayout,
3317 const VkClearDepthStencilValue *pDepthStencil, uint32_t rangeCount,
3318 const VkImageSubresourceRange *pRanges) const {
3319 bool skip = false;
3320 const auto *cb_access_context = GetAccessContext(commandBuffer);
3321 assert(cb_access_context);
3322 if (!cb_access_context) return skip;
3323
3324 const auto *context = cb_access_context->GetCurrentAccessContext();
3325 assert(context);
3326 if (!context) return skip;
3327
3328 const auto *image_state = Get<IMAGE_STATE>(image);
3329
3330 for (uint32_t index = 0; index < rangeCount; index++) {
3331 const auto &range = pRanges[index];
3332 if (image_state) {
3333 auto hazard =
3334 context->DetectHazard(*image_state, SYNC_TRANSFER_TRANSFER_WRITE, range, {0, 0, 0}, image_state->createInfo.extent);
3335 if (hazard.hazard) {
3336 skip |= LogError(image, string_SyncHazardVUID(hazard.hazard),
3337 "vkCmdClearDepthStencilImage: Hazard %s for %s, range index %" PRIu32,
3338 string_SyncHazard(hazard.hazard), report_data->FormatHandle(image).c_str(), index);
3339 }
3340 }
3341 }
3342 return skip;
3343}
3344
3345void SyncValidator::PreCallRecordCmdClearDepthStencilImage(VkCommandBuffer commandBuffer, VkImage image, VkImageLayout imageLayout,
3346 const VkClearDepthStencilValue *pDepthStencil, uint32_t rangeCount,
3347 const VkImageSubresourceRange *pRanges) {
3348 auto *cb_access_context = GetAccessContext(commandBuffer);
3349 assert(cb_access_context);
3350 const auto tag = cb_access_context->NextCommandTag(CMD_CLEARDEPTHSTENCILIMAGE);
3351 auto *context = cb_access_context->GetCurrentAccessContext();
3352 assert(context);
3353
3354 const auto *image_state = Get<IMAGE_STATE>(image);
3355
3356 for (uint32_t index = 0; index < rangeCount; index++) {
3357 const auto &range = pRanges[index];
3358 if (image_state) {
3359 context->UpdateAccessState(*image_state, SYNC_TRANSFER_TRANSFER_WRITE, range, {0, 0, 0}, image_state->createInfo.extent,
3360 tag);
3361 }
3362 }
3363}
3364
3365bool SyncValidator::PreCallValidateCmdCopyQueryPoolResults(VkCommandBuffer commandBuffer, VkQueryPool queryPool,
3366 uint32_t firstQuery, uint32_t queryCount, VkBuffer dstBuffer,
3367 VkDeviceSize dstOffset, VkDeviceSize stride,
3368 VkQueryResultFlags flags) const {
3369 bool skip = false;
3370 const auto *cb_access_context = GetAccessContext(commandBuffer);
3371 assert(cb_access_context);
3372 if (!cb_access_context) return skip;
3373
3374 const auto *context = cb_access_context->GetCurrentAccessContext();
3375 assert(context);
3376 if (!context) return skip;
3377
3378 const auto *dst_buffer = Get<BUFFER_STATE>(dstBuffer);
3379
3380 if (dst_buffer) {
locke-lunargff255f92020-05-13 18:53:52 -06003381 ResourceAccessRange range = MakeRange(dstOffset, stride * queryCount);
locke-lunarge1a67022020-04-29 00:15:36 -06003382 auto hazard = context->DetectHazard(*dst_buffer, SYNC_TRANSFER_TRANSFER_WRITE, range);
3383 if (hazard.hazard) {
3384 skip |=
3385 LogError(dstBuffer, string_SyncHazardVUID(hazard.hazard), "vkCmdCopyQueryPoolResults: Hazard %s for dstBuffer %s",
3386 string_SyncHazard(hazard.hazard), report_data->FormatHandle(dstBuffer).c_str());
3387 }
3388 }
locke-lunargff255f92020-05-13 18:53:52 -06003389
3390 // TODO:Track VkQueryPool
locke-lunarge1a67022020-04-29 00:15:36 -06003391 return skip;
3392}
3393
3394void SyncValidator::PreCallRecordCmdCopyQueryPoolResults(VkCommandBuffer commandBuffer, VkQueryPool queryPool, uint32_t firstQuery,
3395 uint32_t queryCount, VkBuffer dstBuffer, VkDeviceSize dstOffset,
3396 VkDeviceSize stride, VkQueryResultFlags flags) {
3397 auto *cb_access_context = GetAccessContext(commandBuffer);
3398 assert(cb_access_context);
locke-lunargff255f92020-05-13 18:53:52 -06003399 const auto tag = cb_access_context->NextCommandTag(CMD_COPYQUERYPOOLRESULTS);
locke-lunarge1a67022020-04-29 00:15:36 -06003400 auto *context = cb_access_context->GetCurrentAccessContext();
3401 assert(context);
3402
3403 const auto *dst_buffer = Get<BUFFER_STATE>(dstBuffer);
3404
3405 if (dst_buffer) {
locke-lunargff255f92020-05-13 18:53:52 -06003406 ResourceAccessRange range = MakeRange(dstOffset, stride * queryCount);
locke-lunarge1a67022020-04-29 00:15:36 -06003407 context->UpdateAccessState(*dst_buffer, SYNC_TRANSFER_TRANSFER_WRITE, range, tag);
3408 }
locke-lunargff255f92020-05-13 18:53:52 -06003409
3410 // TODO:Track VkQueryPool
locke-lunarge1a67022020-04-29 00:15:36 -06003411}
3412
3413bool SyncValidator::PreCallValidateCmdFillBuffer(VkCommandBuffer commandBuffer, VkBuffer dstBuffer, VkDeviceSize dstOffset,
3414 VkDeviceSize size, uint32_t data) const {
3415 bool skip = false;
3416 const auto *cb_access_context = GetAccessContext(commandBuffer);
3417 assert(cb_access_context);
3418 if (!cb_access_context) return skip;
3419
3420 const auto *context = cb_access_context->GetCurrentAccessContext();
3421 assert(context);
3422 if (!context) return skip;
3423
3424 const auto *dst_buffer = Get<BUFFER_STATE>(dstBuffer);
3425
3426 if (dst_buffer) {
3427 ResourceAccessRange range = MakeRange(dstOffset, size);
3428 auto hazard = context->DetectHazard(*dst_buffer, SYNC_TRANSFER_TRANSFER_WRITE, range);
3429 if (hazard.hazard) {
3430 skip |= LogError(dstBuffer, string_SyncHazardVUID(hazard.hazard), "vkCmdFillBuffer: Hazard %s for dstBuffer %s",
3431 string_SyncHazard(hazard.hazard), report_data->FormatHandle(dstBuffer).c_str());
3432 }
3433 }
3434 return skip;
3435}
3436
3437void SyncValidator::PreCallRecordCmdFillBuffer(VkCommandBuffer commandBuffer, VkBuffer dstBuffer, VkDeviceSize dstOffset,
3438 VkDeviceSize size, uint32_t data) {
3439 auto *cb_access_context = GetAccessContext(commandBuffer);
3440 assert(cb_access_context);
3441 const auto tag = cb_access_context->NextCommandTag(CMD_FILLBUFFER);
3442 auto *context = cb_access_context->GetCurrentAccessContext();
3443 assert(context);
3444
3445 const auto *dst_buffer = Get<BUFFER_STATE>(dstBuffer);
3446
3447 if (dst_buffer) {
3448 ResourceAccessRange range = MakeRange(dstOffset, size);
3449 context->UpdateAccessState(*dst_buffer, SYNC_TRANSFER_TRANSFER_WRITE, range, tag);
3450 }
3451}
3452
3453bool SyncValidator::PreCallValidateCmdResolveImage(VkCommandBuffer commandBuffer, VkImage srcImage, VkImageLayout srcImageLayout,
3454 VkImage dstImage, VkImageLayout dstImageLayout, uint32_t regionCount,
3455 const VkImageResolve *pRegions) const {
3456 bool skip = false;
3457 const auto *cb_access_context = GetAccessContext(commandBuffer);
3458 assert(cb_access_context);
3459 if (!cb_access_context) return skip;
3460
3461 const auto *context = cb_access_context->GetCurrentAccessContext();
3462 assert(context);
3463 if (!context) return skip;
3464
3465 const auto *src_image = Get<IMAGE_STATE>(srcImage);
3466 const auto *dst_image = Get<IMAGE_STATE>(dstImage);
3467
3468 for (uint32_t region = 0; region < regionCount; region++) {
3469 const auto &resolve_region = pRegions[region];
3470 if (src_image) {
3471 auto hazard = context->DetectHazard(*src_image, SYNC_TRANSFER_TRANSFER_READ, resolve_region.srcSubresource,
3472 resolve_region.srcOffset, resolve_region.extent);
3473 if (hazard.hazard) {
3474 skip |= LogError(srcImage, string_SyncHazardVUID(hazard.hazard),
3475 "vkCmdResolveImage: Hazard %s for srcImage %s, region %" PRIu32, string_SyncHazard(hazard.hazard),
3476 report_data->FormatHandle(srcImage).c_str(), region);
3477 }
3478 }
3479
3480 if (dst_image) {
3481 auto hazard = context->DetectHazard(*dst_image, SYNC_TRANSFER_TRANSFER_WRITE, resolve_region.dstSubresource,
3482 resolve_region.dstOffset, resolve_region.extent);
3483 if (hazard.hazard) {
3484 skip |= LogError(dstImage, string_SyncHazardVUID(hazard.hazard),
3485 "vkCmdResolveImage: Hazard %s for dstImage %s, region %" PRIu32, string_SyncHazard(hazard.hazard),
3486 report_data->FormatHandle(dstImage).c_str(), region);
3487 }
3488 if (skip) break;
3489 }
3490 }
3491
3492 return skip;
3493}
3494
3495void SyncValidator::PreCallRecordCmdResolveImage(VkCommandBuffer commandBuffer, VkImage srcImage, VkImageLayout srcImageLayout,
3496 VkImage dstImage, VkImageLayout dstImageLayout, uint32_t regionCount,
3497 const VkImageResolve *pRegions) {
3498 auto *cb_access_context = GetAccessContext(commandBuffer);
3499 assert(cb_access_context);
3500 const auto tag = cb_access_context->NextCommandTag(CMD_RESOLVEIMAGE);
3501 auto *context = cb_access_context->GetCurrentAccessContext();
3502 assert(context);
3503
3504 auto *src_image = Get<IMAGE_STATE>(srcImage);
3505 auto *dst_image = Get<IMAGE_STATE>(dstImage);
3506
3507 for (uint32_t region = 0; region < regionCount; region++) {
3508 const auto &resolve_region = pRegions[region];
3509 if (src_image) {
3510 context->UpdateAccessState(*src_image, SYNC_TRANSFER_TRANSFER_READ, resolve_region.srcSubresource,
3511 resolve_region.srcOffset, resolve_region.extent, tag);
3512 }
3513 if (dst_image) {
3514 context->UpdateAccessState(*dst_image, SYNC_TRANSFER_TRANSFER_WRITE, resolve_region.dstSubresource,
3515 resolve_region.dstOffset, resolve_region.extent, tag);
3516 }
3517 }
3518}
3519
3520bool SyncValidator::PreCallValidateCmdUpdateBuffer(VkCommandBuffer commandBuffer, VkBuffer dstBuffer, VkDeviceSize dstOffset,
3521 VkDeviceSize dataSize, const void *pData) const {
3522 bool skip = false;
3523 const auto *cb_access_context = GetAccessContext(commandBuffer);
3524 assert(cb_access_context);
3525 if (!cb_access_context) return skip;
3526
3527 const auto *context = cb_access_context->GetCurrentAccessContext();
3528 assert(context);
3529 if (!context) return skip;
3530
3531 const auto *dst_buffer = Get<BUFFER_STATE>(dstBuffer);
3532
3533 if (dst_buffer) {
3534 ResourceAccessRange range = MakeRange(dstOffset, dataSize);
3535 auto hazard = context->DetectHazard(*dst_buffer, SYNC_TRANSFER_TRANSFER_WRITE, range);
3536 if (hazard.hazard) {
3537 skip |= LogError(dstBuffer, string_SyncHazardVUID(hazard.hazard), "vkCmdUpdateBuffer: Hazard %s for dstBuffer %s",
3538 string_SyncHazard(hazard.hazard), report_data->FormatHandle(dstBuffer).c_str());
3539 }
3540 }
3541 return skip;
3542}
3543
3544void SyncValidator::PreCallRecordCmdUpdateBuffer(VkCommandBuffer commandBuffer, VkBuffer dstBuffer, VkDeviceSize dstOffset,
3545 VkDeviceSize dataSize, const void *pData) {
3546 auto *cb_access_context = GetAccessContext(commandBuffer);
3547 assert(cb_access_context);
3548 const auto tag = cb_access_context->NextCommandTag(CMD_UPDATEBUFFER);
3549 auto *context = cb_access_context->GetCurrentAccessContext();
3550 assert(context);
3551
3552 const auto *dst_buffer = Get<BUFFER_STATE>(dstBuffer);
3553
3554 if (dst_buffer) {
3555 ResourceAccessRange range = MakeRange(dstOffset, dataSize);
3556 context->UpdateAccessState(*dst_buffer, SYNC_TRANSFER_TRANSFER_WRITE, range, tag);
3557 }
3558}
locke-lunargff255f92020-05-13 18:53:52 -06003559
3560bool SyncValidator::PreCallValidateCmdWriteBufferMarkerAMD(VkCommandBuffer commandBuffer, VkPipelineStageFlagBits pipelineStage,
3561 VkBuffer dstBuffer, VkDeviceSize dstOffset, uint32_t marker) const {
3562 bool skip = false;
3563 const auto *cb_access_context = GetAccessContext(commandBuffer);
3564 assert(cb_access_context);
3565 if (!cb_access_context) return skip;
3566
3567 const auto *context = cb_access_context->GetCurrentAccessContext();
3568 assert(context);
3569 if (!context) return skip;
3570
3571 const auto *dst_buffer = Get<BUFFER_STATE>(dstBuffer);
3572
3573 if (dst_buffer) {
3574 ResourceAccessRange range = MakeRange(dstOffset, 4);
3575 auto hazard = context->DetectHazard(*dst_buffer, SYNC_TRANSFER_TRANSFER_WRITE, range);
3576 if (hazard.hazard) {
3577 skip |=
3578 LogError(dstBuffer, string_SyncHazardVUID(hazard.hazard), "vkCmdWriteBufferMarkerAMD: Hazard %s for dstBuffer %s",
3579 string_SyncHazard(hazard.hazard), report_data->FormatHandle(dstBuffer).c_str());
3580 }
3581 }
3582 return skip;
3583}
3584
3585void SyncValidator::PreCallRecordCmdWriteBufferMarkerAMD(VkCommandBuffer commandBuffer, VkPipelineStageFlagBits pipelineStage,
3586 VkBuffer dstBuffer, VkDeviceSize dstOffset, uint32_t marker) {
3587 auto *cb_access_context = GetAccessContext(commandBuffer);
3588 assert(cb_access_context);
3589 const auto tag = cb_access_context->NextCommandTag(CMD_WRITEBUFFERMARKERAMD);
3590 auto *context = cb_access_context->GetCurrentAccessContext();
3591 assert(context);
3592
3593 const auto *dst_buffer = Get<BUFFER_STATE>(dstBuffer);
3594
3595 if (dst_buffer) {
3596 ResourceAccessRange range = MakeRange(dstOffset, 4);
3597 context->UpdateAccessState(*dst_buffer, SYNC_TRANSFER_TRANSFER_WRITE, range, tag);
3598 }
3599}