blob: 298c089eff9f47c7f048aac825ee9bc73a800345 [file] [log] [blame]
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -06001/* Copyright (c) 2015-2017 The Khronos Group Inc.
2 * Copyright (c) 2015-2017 Valve Corporation
3 * Copyright (c) 2015-2017 LunarG, Inc.
4 * Copyright (C) 2015-2017 Google Inc.
5 *
6 * Licensed under the Apache License, Version 2.0 (the "License");
7 * you may not use this file except in compliance with the License.
8 * You may obtain a copy of the License at
9 *
10 * http://www.apache.org/licenses/LICENSE-2.0
11 *
12 * Unless required by applicable law or agreed to in writing, software
13 * distributed under the License is distributed on an "AS IS" BASIS,
14 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
15 * See the License for the specific language governing permissions and
16 * limitations under the License.
17 *
18 * Author: Mark Lobodzinski <mark@lunarg.com>
19 * Author: Jon Ashburn <jon@lunarg.com>
20 * Author: Tobin Ehlis <tobin@lunarg.com>
21 */
22
23#include "object_tracker.h"
24
25namespace object_tracker {
26
27std::unordered_map<void *, layer_data *> layer_data_map;
28device_table_map ot_device_table_map;
29instance_table_map ot_instance_table_map;
30std::mutex global_lock;
31uint64_t object_track_index = 0;
32uint32_t loader_layer_if_version = CURRENT_LOADER_LAYER_INTERFACE_VERSION;
33
34void InitObjectTracker(layer_data *my_data, const VkAllocationCallbacks *pAllocator) {
35 layer_debug_actions(my_data->report_data, my_data->logging_callback, pAllocator, "lunarg_object_tracker");
36}
37
38// Add new queue to head of global queue list
39void AddQueueInfo(VkDevice device, uint32_t queue_node_index, VkQueue queue) {
40 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(device), layer_data_map);
41 auto queueItem = device_data->queue_info_map.find(queue);
42 if (queueItem == device_data->queue_info_map.end()) {
Mark Lobodzinskiefc64392017-07-18 13:15:47 -060043 ObjTrackQueueInfo *p_queue_info = new ObjTrackQueueInfo;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -060044 if (p_queue_info != NULL) {
Mark Lobodzinskiefc64392017-07-18 13:15:47 -060045 memset(p_queue_info, 0, sizeof(ObjTrackQueueInfo));
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -060046 p_queue_info->queue = queue;
47 p_queue_info->queue_node_index = queue_node_index;
48 device_data->queue_info_map[queue] = p_queue_info;
49 } else {
50 log_msg(device_data->report_data, VK_DEBUG_REPORT_ERROR_BIT_EXT, VK_DEBUG_REPORT_OBJECT_TYPE_QUEUE_EXT,
51 HandleToUint64(queue), __LINE__, OBJTRACK_INTERNAL_ERROR, LayerName,
52 "ERROR: VK_ERROR_OUT_OF_HOST_MEMORY -- could not allocate memory for Queue Information");
53 }
54 }
55}
56
57// Destroy memRef lists and free all memory
58void DestroyQueueDataStructures(VkDevice device) {
59 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(device), layer_data_map);
60
61 for (auto queue_item : device_data->queue_info_map) {
62 delete queue_item.second;
63 }
64 device_data->queue_info_map.clear();
65
66 // Destroy the items in the queue map
67 auto queue = device_data->object_map[kVulkanObjectTypeQueue].begin();
68 while (queue != device_data->object_map[kVulkanObjectTypeQueue].end()) {
69 uint32_t obj_index = queue->second->object_type;
70 assert(device_data->num_total_objects > 0);
71 device_data->num_total_objects--;
72 assert(device_data->num_objects[obj_index] > 0);
73 device_data->num_objects[obj_index]--;
74 log_msg(device_data->report_data, VK_DEBUG_REPORT_INFORMATION_BIT_EXT, VK_DEBUG_REPORT_OBJECT_TYPE_QUEUE_EXT,
75 queue->second->handle, __LINE__, OBJTRACK_NONE, LayerName,
76 "OBJ_STAT Destroy Queue obj 0x%" PRIxLEAST64 " (%" PRIu64 " total objs remain & %" PRIu64 " Queue objs).",
77 queue->second->handle, device_data->num_total_objects, device_data->num_objects[obj_index]);
78 delete queue->second;
79 queue = device_data->object_map[kVulkanObjectTypeQueue].erase(queue);
80 }
81}
82
83// Check Queue type flags for selected queue operations
84void ValidateQueueFlags(VkQueue queue, const char *function) {
85 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(queue), layer_data_map);
86 auto queue_item = device_data->queue_info_map.find(queue);
87 if (queue_item != device_data->queue_info_map.end()) {
Mark Lobodzinskiefc64392017-07-18 13:15:47 -060088 ObjTrackQueueInfo *pQueueInfo = queue_item->second;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -060089 if (pQueueInfo != NULL) {
90 layer_data *instance_data = GetLayerDataPtr(get_dispatch_key(device_data->physical_device), layer_data_map);
91 if ((instance_data->queue_family_properties[pQueueInfo->queue_node_index].queueFlags & VK_QUEUE_SPARSE_BINDING_BIT) ==
92 0) {
93 log_msg(device_data->report_data, VK_DEBUG_REPORT_ERROR_BIT_EXT, VK_DEBUG_REPORT_OBJECT_TYPE_QUEUE_EXT,
94 HandleToUint64(queue), __LINE__, VALIDATION_ERROR_31600011, LayerName,
95 "Attempting %s on a non-memory-management capable queue -- VK_QUEUE_SPARSE_BINDING_BIT not set. %s",
96 function, validation_error_map[VALIDATION_ERROR_31600011]);
97 }
98 }
99 }
100}
101
102void AllocateCommandBuffer(VkDevice device, const VkCommandPool command_pool, const VkCommandBuffer command_buffer,
103 VkCommandBufferLevel level) {
104 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(device), layer_data_map);
105
106 log_msg(device_data->report_data, VK_DEBUG_REPORT_INFORMATION_BIT_EXT, VK_DEBUG_REPORT_OBJECT_TYPE_COMMAND_BUFFER_EXT,
107 HandleToUint64(command_buffer), __LINE__, OBJTRACK_NONE, LayerName,
108 "OBJ[0x%" PRIxLEAST64 "] : CREATE %s object 0x%" PRIxLEAST64, object_track_index++,
109 "VK_DEBUG_REPORT_OBJECT_TYPE_COMMAND_BUFFER_EXT", HandleToUint64(command_buffer));
110
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600111 ObjTrackState *pNewObjNode = new ObjTrackState;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600112 pNewObjNode->object_type = kVulkanObjectTypeCommandBuffer;
113 pNewObjNode->handle = HandleToUint64(command_buffer);
114 pNewObjNode->parent_object = HandleToUint64(command_pool);
115 if (level == VK_COMMAND_BUFFER_LEVEL_SECONDARY) {
116 pNewObjNode->status = OBJSTATUS_COMMAND_BUFFER_SECONDARY;
117 } else {
118 pNewObjNode->status = OBJSTATUS_NONE;
119 }
120 device_data->object_map[kVulkanObjectTypeCommandBuffer][HandleToUint64(command_buffer)] = pNewObjNode;
121 device_data->num_objects[kVulkanObjectTypeCommandBuffer]++;
122 device_data->num_total_objects++;
123}
124
125bool ValidateCommandBuffer(VkDevice device, VkCommandPool command_pool, VkCommandBuffer command_buffer) {
126 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(device), layer_data_map);
127 bool skip = false;
128 uint64_t object_handle = HandleToUint64(command_buffer);
129 if (device_data->object_map[kVulkanObjectTypeCommandBuffer].find(object_handle) !=
130 device_data->object_map[kVulkanObjectTypeCommandBuffer].end()) {
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600131 ObjTrackState *pNode = device_data->object_map[kVulkanObjectTypeCommandBuffer][HandleToUint64(command_buffer)];
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600132
133 if (pNode->parent_object != HandleToUint64(command_pool)) {
134 skip |= log_msg(device_data->report_data, VK_DEBUG_REPORT_ERROR_BIT_EXT, VK_DEBUG_REPORT_OBJECT_TYPE_COMMAND_BUFFER_EXT,
135 object_handle, __LINE__, VALIDATION_ERROR_28411407, LayerName,
136 "FreeCommandBuffers is attempting to free Command Buffer 0x%" PRIxLEAST64
137 " belonging to Command Pool 0x%" PRIxLEAST64 " from pool 0x%" PRIxLEAST64 "). %s",
138 HandleToUint64(command_buffer), pNode->parent_object, HandleToUint64(command_pool),
139 validation_error_map[VALIDATION_ERROR_28411407]);
140 }
141 } else {
142 skip |=
143 log_msg(device_data->report_data, VK_DEBUG_REPORT_ERROR_BIT_EXT, VK_DEBUG_REPORT_OBJECT_TYPE_COMMAND_BUFFER_EXT,
144 object_handle, __LINE__, VALIDATION_ERROR_28400060, LayerName, "Invalid %s Object 0x%" PRIxLEAST64 ". %s",
145 object_string[kVulkanObjectTypeCommandBuffer], object_handle, validation_error_map[VALIDATION_ERROR_28400060]);
146 }
147 return skip;
148}
149
150void AllocateDescriptorSet(VkDevice device, VkDescriptorPool descriptor_pool, VkDescriptorSet descriptor_set) {
151 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(device), layer_data_map);
152
153 log_msg(device_data->report_data, VK_DEBUG_REPORT_INFORMATION_BIT_EXT, VK_DEBUG_REPORT_OBJECT_TYPE_DESCRIPTOR_SET_EXT,
154 HandleToUint64(descriptor_set), __LINE__, OBJTRACK_NONE, LayerName,
155 "OBJ[0x%" PRIxLEAST64 "] : CREATE %s object 0x%" PRIxLEAST64, object_track_index++,
156 "VK_DEBUG_REPORT_OBJECT_TYPE_DESCRIPTOR_SET_EXT", HandleToUint64(descriptor_set));
157
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600158 ObjTrackState *pNewObjNode = new ObjTrackState;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600159 pNewObjNode->object_type = kVulkanObjectTypeDescriptorSet;
160 pNewObjNode->status = OBJSTATUS_NONE;
161 pNewObjNode->handle = HandleToUint64(descriptor_set);
162 pNewObjNode->parent_object = HandleToUint64(descriptor_pool);
163 device_data->object_map[kVulkanObjectTypeDescriptorSet][HandleToUint64(descriptor_set)] = pNewObjNode;
164 device_data->num_objects[kVulkanObjectTypeDescriptorSet]++;
165 device_data->num_total_objects++;
166}
167
168bool ValidateDescriptorSet(VkDevice device, VkDescriptorPool descriptor_pool, VkDescriptorSet descriptor_set) {
169 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(device), layer_data_map);
170 bool skip = false;
171 uint64_t object_handle = HandleToUint64(descriptor_set);
172 auto dsItem = device_data->object_map[kVulkanObjectTypeDescriptorSet].find(object_handle);
173 if (dsItem != device_data->object_map[kVulkanObjectTypeDescriptorSet].end()) {
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600174 ObjTrackState *pNode = dsItem->second;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600175
176 if (pNode->parent_object != HandleToUint64(descriptor_pool)) {
177 skip |= log_msg(device_data->report_data, VK_DEBUG_REPORT_ERROR_BIT_EXT, VK_DEBUG_REPORT_OBJECT_TYPE_DESCRIPTOR_SET_EXT,
178 object_handle, __LINE__, VALIDATION_ERROR_28613007, LayerName,
179 "FreeDescriptorSets is attempting to free descriptorSet 0x%" PRIxLEAST64
180 " belonging to Descriptor Pool 0x%" PRIxLEAST64 " from pool 0x%" PRIxLEAST64 "). %s",
181 HandleToUint64(descriptor_set), pNode->parent_object, HandleToUint64(descriptor_pool),
182 validation_error_map[VALIDATION_ERROR_28613007]);
183 }
184 } else {
185 skip |=
186 log_msg(device_data->report_data, VK_DEBUG_REPORT_ERROR_BIT_EXT, VK_DEBUG_REPORT_OBJECT_TYPE_DESCRIPTOR_SET_EXT,
187 object_handle, __LINE__, VALIDATION_ERROR_2860026c, LayerName, "Invalid %s Object 0x%" PRIxLEAST64 ". %s",
188 object_string[kVulkanObjectTypeDescriptorSet], object_handle, validation_error_map[VALIDATION_ERROR_2860026c]);
189 }
190 return skip;
191}
192
193void CreateQueue(VkDevice device, VkQueue vkObj) {
194 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(device), layer_data_map);
195
196 log_msg(device_data->report_data, VK_DEBUG_REPORT_INFORMATION_BIT_EXT, VK_DEBUG_REPORT_OBJECT_TYPE_QUEUE_EXT,
197 HandleToUint64(vkObj), __LINE__, OBJTRACK_NONE, LayerName, "OBJ[0x%" PRIxLEAST64 "] : CREATE %s object 0x%" PRIxLEAST64,
198 object_track_index++, "VK_DEBUG_REPORT_OBJECT_TYPE_QUEUE_EXT", HandleToUint64(vkObj));
199
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600200 ObjTrackState *p_obj_node = NULL;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600201 auto queue_item = device_data->object_map[kVulkanObjectTypeQueue].find(HandleToUint64(vkObj));
202 if (queue_item == device_data->object_map[kVulkanObjectTypeQueue].end()) {
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600203 p_obj_node = new ObjTrackState;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600204 device_data->object_map[kVulkanObjectTypeQueue][HandleToUint64(vkObj)] = p_obj_node;
205 device_data->num_objects[kVulkanObjectTypeQueue]++;
206 device_data->num_total_objects++;
207 } else {
208 p_obj_node = queue_item->second;
209 }
210 p_obj_node->object_type = kVulkanObjectTypeQueue;
211 p_obj_node->status = OBJSTATUS_NONE;
212 p_obj_node->handle = HandleToUint64(vkObj);
213}
214
215void CreateSwapchainImageObject(VkDevice dispatchable_object, VkImage swapchain_image, VkSwapchainKHR swapchain) {
216 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(dispatchable_object), layer_data_map);
217 log_msg(device_data->report_data, VK_DEBUG_REPORT_INFORMATION_BIT_EXT, VK_DEBUG_REPORT_OBJECT_TYPE_IMAGE_EXT,
218 HandleToUint64(swapchain_image), __LINE__, OBJTRACK_NONE, LayerName,
219 "OBJ[0x%" PRIxLEAST64 "] : CREATE %s object 0x%" PRIxLEAST64, object_track_index++, "SwapchainImage",
220 HandleToUint64(swapchain_image));
221
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600222 ObjTrackState *pNewObjNode = new ObjTrackState;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600223 pNewObjNode->object_type = kVulkanObjectTypeImage;
224 pNewObjNode->status = OBJSTATUS_NONE;
225 pNewObjNode->handle = HandleToUint64(swapchain_image);
226 pNewObjNode->parent_object = HandleToUint64(swapchain);
227 device_data->swapchainImageMap[HandleToUint64(swapchain_image)] = pNewObjNode;
228}
229
230void DeviceReportUndestroyedObjects(VkDevice device, VulkanObjectType object_type, enum UNIQUE_VALIDATION_ERROR_CODE error_code) {
231 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(device), layer_data_map);
232 for (auto item = device_data->object_map[object_type].begin(); item != device_data->object_map[object_type].end();) {
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600233 ObjTrackState *object_info = item->second;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600234 log_msg(device_data->report_data, VK_DEBUG_REPORT_ERROR_BIT_EXT, get_debug_report_enum[object_type], object_info->handle,
235 __LINE__, error_code, LayerName,
236 "OBJ ERROR : For device 0x%" PRIxLEAST64 ", %s object 0x%" PRIxLEAST64 " has not been destroyed. %s",
237 HandleToUint64(device), object_string[object_type], object_info->handle, validation_error_map[error_code]);
238 item = device_data->object_map[object_type].erase(item);
239 }
240}
241
242VKAPI_ATTR void VKAPI_CALL DestroyInstance(VkInstance instance, const VkAllocationCallbacks *pAllocator) {
243 std::unique_lock<std::mutex> lock(global_lock);
244
245 dispatch_key key = get_dispatch_key(instance);
246 layer_data *instance_data = GetLayerDataPtr(key, layer_data_map);
247
248 // Enable the temporary callback(s) here to catch cleanup issues:
249 bool callback_setup = false;
250 if (instance_data->num_tmp_callbacks > 0) {
251 if (!layer_enable_tmp_callbacks(instance_data->report_data, instance_data->num_tmp_callbacks,
252 instance_data->tmp_dbg_create_infos, instance_data->tmp_callbacks)) {
253 callback_setup = true;
254 }
255 }
256
257 // TODO: The instance handle can not be validated here. The loader will likely have to validate it.
258 ValidateObject(instance, instance, kVulkanObjectTypeInstance, true, VALIDATION_ERROR_2580bc01, VALIDATION_ERROR_UNDEFINED);
259
260 // Destroy physical devices
261 for (auto iit = instance_data->object_map[kVulkanObjectTypePhysicalDevice].begin();
262 iit != instance_data->object_map[kVulkanObjectTypePhysicalDevice].end();) {
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600263 ObjTrackState *pNode = iit->second;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600264
265 VkPhysicalDevice physical_device = reinterpret_cast<VkPhysicalDevice>(pNode->handle);
266 DestroyObject(instance, physical_device, kVulkanObjectTypePhysicalDevice, nullptr, VALIDATION_ERROR_UNDEFINED,
267 VALIDATION_ERROR_UNDEFINED);
268 iit = instance_data->object_map[kVulkanObjectTypePhysicalDevice].begin();
269 }
270
271 DestroyObject(instance, instance, kVulkanObjectTypeInstance, pAllocator, VALIDATION_ERROR_258004ec, VALIDATION_ERROR_258004ee);
272 // Report any remaining objects in LL
273
274 for (auto iit = instance_data->object_map[kVulkanObjectTypeDevice].begin();
275 iit != instance_data->object_map[kVulkanObjectTypeDevice].end();) {
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600276 ObjTrackState *pNode = iit->second;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600277
278 VkDevice device = reinterpret_cast<VkDevice>(pNode->handle);
279 VkDebugReportObjectTypeEXT debug_object_type = get_debug_report_enum[pNode->object_type];
280
281 log_msg(instance_data->report_data, VK_DEBUG_REPORT_ERROR_BIT_EXT, debug_object_type, pNode->handle, __LINE__,
282 OBJTRACK_OBJECT_LEAK, LayerName, "OBJ ERROR : %s object 0x%" PRIxLEAST64 " has not been destroyed.",
283 string_VkDebugReportObjectTypeEXT(debug_object_type), pNode->handle);
284
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600285 ReportUndestroyedObjects(device, VALIDATION_ERROR_258004ea);
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600286 }
287 instance_data->object_map[kVulkanObjectTypeDevice].clear();
288
289 VkLayerInstanceDispatchTable *pInstanceTable = get_dispatch_table(ot_instance_table_map, instance);
290 pInstanceTable->DestroyInstance(instance, pAllocator);
291
292 // Disable and cleanup the temporary callback(s):
293 if (callback_setup) {
294 layer_disable_tmp_callbacks(instance_data->report_data, instance_data->num_tmp_callbacks, instance_data->tmp_callbacks);
295 }
296 if (instance_data->num_tmp_callbacks > 0) {
297 layer_free_tmp_callbacks(instance_data->tmp_dbg_create_infos, instance_data->tmp_callbacks);
298 instance_data->num_tmp_callbacks = 0;
299 }
300
301 // Clean up logging callback, if any
302 while (instance_data->logging_callback.size() > 0) {
303 VkDebugReportCallbackEXT callback = instance_data->logging_callback.back();
304 layer_destroy_msg_callback(instance_data->report_data, callback, pAllocator);
305 instance_data->logging_callback.pop_back();
306 }
307
308 layer_debug_report_destroy_instance(instance_data->report_data);
309 FreeLayerDataPtr(key, layer_data_map);
310
311 lock.unlock();
312 ot_instance_table_map.erase(key);
313 delete pInstanceTable;
314}
315
316VKAPI_ATTR void VKAPI_CALL DestroyDevice(VkDevice device, const VkAllocationCallbacks *pAllocator) {
317 std::unique_lock<std::mutex> lock(global_lock);
318 ValidateObject(device, device, kVulkanObjectTypeDevice, true, VALIDATION_ERROR_24a05601, VALIDATION_ERROR_UNDEFINED);
319 DestroyObject(device, device, kVulkanObjectTypeDevice, pAllocator, VALIDATION_ERROR_24a002f6, VALIDATION_ERROR_24a002f8);
320
321 // Report any remaining objects associated with this VkDevice object in LL
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600322 ReportUndestroyedObjects(device, VALIDATION_ERROR_24a002f4);
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600323
324 // Clean up Queue's MemRef Linked Lists
325 DestroyQueueDataStructures(device);
326
327 lock.unlock();
328
329 dispatch_key key = get_dispatch_key(device);
330 VkLayerDispatchTable *pDisp = get_dispatch_table(ot_device_table_map, device);
331 pDisp->DestroyDevice(device, pAllocator);
332 ot_device_table_map.erase(key);
333 delete pDisp;
334
335 FreeLayerDataPtr(key, layer_data_map);
336}
337
338VKAPI_ATTR void VKAPI_CALL UpdateDescriptorSets(VkDevice device, uint32_t descriptorWriteCount,
339 const VkWriteDescriptorSet *pDescriptorWrites, uint32_t descriptorCopyCount,
340 const VkCopyDescriptorSet *pDescriptorCopies) {
341 bool skip = false;
342 {
343 std::lock_guard<std::mutex> lock(global_lock);
344 skip |=
345 ValidateObject(device, device, kVulkanObjectTypeDevice, false, VALIDATION_ERROR_33c05601, VALIDATION_ERROR_UNDEFINED);
346 if (pDescriptorCopies) {
347 for (uint32_t idx0 = 0; idx0 < descriptorCopyCount; ++idx0) {
348 if (pDescriptorCopies[idx0].dstSet) {
349 skip |= ValidateObject(device, pDescriptorCopies[idx0].dstSet, kVulkanObjectTypeDescriptorSet, false,
350 VALIDATION_ERROR_03207601, VALIDATION_ERROR_03200009);
351 }
352 if (pDescriptorCopies[idx0].srcSet) {
353 skip |= ValidateObject(device, pDescriptorCopies[idx0].srcSet, kVulkanObjectTypeDescriptorSet, false,
354 VALIDATION_ERROR_0322d201, VALIDATION_ERROR_03200009);
355 }
356 }
357 }
358 if (pDescriptorWrites) {
359 for (uint32_t idx1 = 0; idx1 < descriptorWriteCount; ++idx1) {
360 if (pDescriptorWrites[idx1].dstSet) {
361 skip |= ValidateObject(device, pDescriptorWrites[idx1].dstSet, kVulkanObjectTypeDescriptorSet, false,
362 VALIDATION_ERROR_15c00280, VALIDATION_ERROR_15c00009);
363 }
364 if ((pDescriptorWrites[idx1].descriptorType == VK_DESCRIPTOR_TYPE_UNIFORM_TEXEL_BUFFER) ||
365 (pDescriptorWrites[idx1].descriptorType == VK_DESCRIPTOR_TYPE_STORAGE_TEXEL_BUFFER)) {
366 for (uint32_t idx2 = 0; idx2 < pDescriptorWrites[idx1].descriptorCount; ++idx2) {
367 skip |= ValidateObject(device, pDescriptorWrites[idx1].pTexelBufferView[idx2], kVulkanObjectTypeBufferView,
368 false, VALIDATION_ERROR_15c00286, VALIDATION_ERROR_15c00009);
369 }
370 }
371 if ((pDescriptorWrites[idx1].descriptorType == VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER) ||
372 (pDescriptorWrites[idx1].descriptorType == VK_DESCRIPTOR_TYPE_SAMPLED_IMAGE) ||
373 (pDescriptorWrites[idx1].descriptorType == VK_DESCRIPTOR_TYPE_STORAGE_IMAGE) ||
374 (pDescriptorWrites[idx1].descriptorType == VK_DESCRIPTOR_TYPE_INPUT_ATTACHMENT)) {
375 for (uint32_t idx3 = 0; idx3 < pDescriptorWrites[idx1].descriptorCount; ++idx3) {
376 skip |=
377 ValidateObject(device, pDescriptorWrites[idx1].pImageInfo[idx3].imageView, kVulkanObjectTypeImageView,
378 false, VALIDATION_ERROR_15c0028c, VALIDATION_ERROR_04600009);
379 }
380 }
381 if ((pDescriptorWrites[idx1].descriptorType == VK_DESCRIPTOR_TYPE_UNIFORM_BUFFER) ||
382 (pDescriptorWrites[idx1].descriptorType == VK_DESCRIPTOR_TYPE_STORAGE_BUFFER) ||
383 (pDescriptorWrites[idx1].descriptorType == VK_DESCRIPTOR_TYPE_UNIFORM_BUFFER_DYNAMIC) ||
384 (pDescriptorWrites[idx1].descriptorType == VK_DESCRIPTOR_TYPE_STORAGE_BUFFER_DYNAMIC)) {
385 for (uint32_t idx4 = 0; idx4 < pDescriptorWrites[idx1].descriptorCount; ++idx4) {
386 if (pDescriptorWrites[idx1].pBufferInfo[idx4].buffer) {
387 skip |=
388 ValidateObject(device, pDescriptorWrites[idx1].pBufferInfo[idx4].buffer, kVulkanObjectTypeBuffer,
389 false, VALIDATION_ERROR_04401a01, VALIDATION_ERROR_UNDEFINED);
390 }
391 }
392 }
393 }
394 }
395 }
396 if (skip) {
397 return;
398 }
399 get_dispatch_table(ot_device_table_map, device)
400 ->UpdateDescriptorSets(device, descriptorWriteCount, pDescriptorWrites, descriptorCopyCount, pDescriptorCopies);
401}
402
Mark Lobodzinski2d26c5f2017-07-19 12:37:04 -0600403VKAPI_ATTR VkResult VKAPI_CALL CreateComputePipelines(VkDevice device, VkPipelineCache pipelineCache, uint32_t createInfoCount,
404 const VkComputePipelineCreateInfo *pCreateInfos,
405 const VkAllocationCallbacks *pAllocator, VkPipeline *pPipelines) {
406 bool skip = VK_FALSE;
407 std::unique_lock<std::mutex> lock(global_lock);
408 skip |= ValidateObject(device, device, kVulkanObjectTypeDevice, false, VALIDATION_ERROR_1f205601, VALIDATION_ERROR_UNDEFINED);
409 if (pCreateInfos) {
410 for (uint32_t idx0 = 0; idx0 < createInfoCount; ++idx0) {
411 if (pCreateInfos[idx0].basePipelineHandle) {
412 skip |= ValidateObject(device, pCreateInfos[idx0].basePipelineHandle, kVulkanObjectTypePipeline, true,
413 VALIDATION_ERROR_03000572, VALIDATION_ERROR_03000009);
414 }
415 if (pCreateInfos[idx0].layout) {
416 skip |= ValidateObject(device, pCreateInfos[idx0].layout, kVulkanObjectTypePipelineLayout, false,
417 VALIDATION_ERROR_0300be01, VALIDATION_ERROR_03000009);
418 }
419 if (pCreateInfos[idx0].stage.module) {
420 skip |= ValidateObject(device, pCreateInfos[idx0].stage.module, kVulkanObjectTypeShaderModule, false,
421 VALIDATION_ERROR_1060d201, VALIDATION_ERROR_UNDEFINED);
422 }
423 }
424 }
425 if (pipelineCache) {
426 skip |= ValidateObject(device, pipelineCache, kVulkanObjectTypePipelineCache, true, VALIDATION_ERROR_1f228001,
427 VALIDATION_ERROR_1f228007);
428 }
429 lock.unlock();
430 if (skip) {
431 for (uint32_t i = 0; i < createInfoCount; i++) {
432 pPipelines[i] = VK_NULL_HANDLE;
433 }
434 return VK_ERROR_VALIDATION_FAILED_EXT;
435 }
436 VkResult result = get_dispatch_table(ot_device_table_map, device)
437 ->CreateComputePipelines(device, pipelineCache, createInfoCount, pCreateInfos, pAllocator, pPipelines);
438 lock.lock();
439 for (uint32_t idx1 = 0; idx1 < createInfoCount; ++idx1) {
440 if (pPipelines[idx1] != VK_NULL_HANDLE) {
441 CreateObject(device, pPipelines[idx1], kVulkanObjectTypePipeline, pAllocator);
442 }
443 }
444 lock.unlock();
445 return result;
446}
447
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600448VKAPI_ATTR VkResult VKAPI_CALL ResetDescriptorPool(VkDevice device, VkDescriptorPool descriptorPool,
449 VkDescriptorPoolResetFlags flags) {
450 bool skip = false;
451 std::unique_lock<std::mutex> lock(global_lock);
452 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(device), layer_data_map);
453 skip |= ValidateObject(device, device, kVulkanObjectTypeDevice, false, VALIDATION_ERROR_32a05601, VALIDATION_ERROR_UNDEFINED);
454 skip |= ValidateObject(device, descriptorPool, kVulkanObjectTypeDescriptorPool, false, VALIDATION_ERROR_32a04601,
455 VALIDATION_ERROR_32a04607);
456 if (skip) {
457 return VK_ERROR_VALIDATION_FAILED_EXT;
458 }
459 // A DescriptorPool's descriptor sets are implicitly deleted when the pool is reset.
460 // Remove this pool's descriptor sets from our descriptorSet map.
461 auto itr = device_data->object_map[kVulkanObjectTypeDescriptorSet].begin();
462 while (itr != device_data->object_map[kVulkanObjectTypeDescriptorSet].end()) {
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600463 ObjTrackState *pNode = (*itr).second;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600464 auto del_itr = itr++;
465 if (pNode->parent_object == HandleToUint64(descriptorPool)) {
466 DestroyObject(device, (VkDescriptorSet)((*del_itr).first), kVulkanObjectTypeDescriptorSet, nullptr,
467 VALIDATION_ERROR_UNDEFINED, VALIDATION_ERROR_UNDEFINED);
468 }
469 }
470 lock.unlock();
471 VkResult result = get_dispatch_table(ot_device_table_map, device)->ResetDescriptorPool(device, descriptorPool, flags);
472 return result;
473}
474
475VKAPI_ATTR VkResult VKAPI_CALL BeginCommandBuffer(VkCommandBuffer command_buffer, const VkCommandBufferBeginInfo *begin_info) {
476 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(command_buffer), layer_data_map);
477 bool skip = false;
478 {
479 std::lock_guard<std::mutex> lock(global_lock);
480 skip |= ValidateObject(command_buffer, command_buffer, kVulkanObjectTypeCommandBuffer, false, VALIDATION_ERROR_16e02401,
481 VALIDATION_ERROR_UNDEFINED);
482 if (begin_info) {
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600483 ObjTrackState *pNode = device_data->object_map[kVulkanObjectTypeCommandBuffer][HandleToUint64(command_buffer)];
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600484 if ((begin_info->pInheritanceInfo) && (pNode->status & OBJSTATUS_COMMAND_BUFFER_SECONDARY) &&
485 (begin_info->flags & VK_COMMAND_BUFFER_USAGE_RENDER_PASS_CONTINUE_BIT)) {
486 skip |= ValidateObject(command_buffer, begin_info->pInheritanceInfo->framebuffer, kVulkanObjectTypeFramebuffer,
487 true, VALIDATION_ERROR_0280006e, VALIDATION_ERROR_02a00009);
488 skip |= ValidateObject(command_buffer, begin_info->pInheritanceInfo->renderPass, kVulkanObjectTypeRenderPass, false,
489 VALIDATION_ERROR_0280006a, VALIDATION_ERROR_02a00009);
490 }
491 }
492 }
493 if (skip) {
494 return VK_ERROR_VALIDATION_FAILED_EXT;
495 }
496 VkResult result = get_dispatch_table(ot_device_table_map, command_buffer)->BeginCommandBuffer(command_buffer, begin_info);
497 return result;
498}
499
500VKAPI_ATTR VkResult VKAPI_CALL CreateDebugReportCallbackEXT(VkInstance instance,
501 const VkDebugReportCallbackCreateInfoEXT *pCreateInfo,
502 const VkAllocationCallbacks *pAllocator,
503 VkDebugReportCallbackEXT *pCallback) {
504 VkLayerInstanceDispatchTable *pInstanceTable = get_dispatch_table(ot_instance_table_map, instance);
505 VkResult result = pInstanceTable->CreateDebugReportCallbackEXT(instance, pCreateInfo, pAllocator, pCallback);
506 if (VK_SUCCESS == result) {
507 layer_data *instance_data = GetLayerDataPtr(get_dispatch_key(instance), layer_data_map);
508 result = layer_create_msg_callback(instance_data->report_data, false, pCreateInfo, pAllocator, pCallback);
509 CreateObject(instance, *pCallback, kVulkanObjectTypeDebugReportCallbackEXT, pAllocator);
510 }
511 return result;
512}
513
514VKAPI_ATTR void VKAPI_CALL DestroyDebugReportCallbackEXT(VkInstance instance, VkDebugReportCallbackEXT msgCallback,
515 const VkAllocationCallbacks *pAllocator) {
516 VkLayerInstanceDispatchTable *pInstanceTable = get_dispatch_table(ot_instance_table_map, instance);
517 pInstanceTable->DestroyDebugReportCallbackEXT(instance, msgCallback, pAllocator);
518 layer_data *instance_data = GetLayerDataPtr(get_dispatch_key(instance), layer_data_map);
519 layer_destroy_msg_callback(instance_data->report_data, msgCallback, pAllocator);
520 DestroyObject(instance, msgCallback, kVulkanObjectTypeDebugReportCallbackEXT, pAllocator, VALIDATION_ERROR_242009b4,
521 VALIDATION_ERROR_242009b6);
522}
523
524VKAPI_ATTR void VKAPI_CALL DebugReportMessageEXT(VkInstance instance, VkDebugReportFlagsEXT flags,
525 VkDebugReportObjectTypeEXT objType, uint64_t object, size_t location,
526 int32_t msgCode, const char *pLayerPrefix, const char *pMsg) {
527 VkLayerInstanceDispatchTable *pInstanceTable = get_dispatch_table(ot_instance_table_map, instance);
528 pInstanceTable->DebugReportMessageEXT(instance, flags, objType, object, location, msgCode, pLayerPrefix, pMsg);
529}
530
531static const VkExtensionProperties instance_extensions[] = {{VK_EXT_DEBUG_REPORT_EXTENSION_NAME, VK_EXT_DEBUG_REPORT_SPEC_VERSION}};
532
533static const VkLayerProperties globalLayerProps = {"VK_LAYER_LUNARG_object_tracker",
534 VK_LAYER_API_VERSION, // specVersion
535 1, // implementationVersion
536 "LunarG Validation Layer"};
537
538VKAPI_ATTR VkResult VKAPI_CALL EnumerateInstanceLayerProperties(uint32_t *pCount, VkLayerProperties *pProperties) {
539 return util_GetLayerProperties(1, &globalLayerProps, pCount, pProperties);
540}
541
542VKAPI_ATTR VkResult VKAPI_CALL EnumerateDeviceLayerProperties(VkPhysicalDevice physicalDevice, uint32_t *pCount,
543 VkLayerProperties *pProperties) {
544 return util_GetLayerProperties(1, &globalLayerProps, pCount, pProperties);
545}
546
547VKAPI_ATTR VkResult VKAPI_CALL EnumerateInstanceExtensionProperties(const char *pLayerName, uint32_t *pCount,
548 VkExtensionProperties *pProperties) {
549 if (pLayerName && !strcmp(pLayerName, globalLayerProps.layerName))
550 return util_GetExtensionProperties(1, instance_extensions, pCount, pProperties);
551
552 return VK_ERROR_LAYER_NOT_PRESENT;
553}
554
555VKAPI_ATTR VkResult VKAPI_CALL EnumerateDeviceExtensionProperties(VkPhysicalDevice physicalDevice, const char *pLayerName,
556 uint32_t *pCount, VkExtensionProperties *pProperties) {
557 if (pLayerName && !strcmp(pLayerName, globalLayerProps.layerName))
558 return util_GetExtensionProperties(0, nullptr, pCount, pProperties);
559
560 assert(physicalDevice);
561 VkLayerInstanceDispatchTable *pTable = get_dispatch_table(ot_instance_table_map, physicalDevice);
562 return pTable->EnumerateDeviceExtensionProperties(physicalDevice, NULL, pCount, pProperties);
563}
564
565VKAPI_ATTR VkResult VKAPI_CALL CreateDevice(VkPhysicalDevice physicalDevice, const VkDeviceCreateInfo *pCreateInfo,
566 const VkAllocationCallbacks *pAllocator, VkDevice *pDevice) {
567 std::lock_guard<std::mutex> lock(global_lock);
568 bool skip = ValidateObject(physicalDevice, physicalDevice, kVulkanObjectTypePhysicalDevice, false, VALIDATION_ERROR_1fc27a01,
569 VALIDATION_ERROR_UNDEFINED);
570 if (skip) return VK_ERROR_VALIDATION_FAILED_EXT;
571
572 layer_data *phy_dev_data = GetLayerDataPtr(get_dispatch_key(physicalDevice), layer_data_map);
573 VkLayerDeviceCreateInfo *chain_info = get_chain_info(pCreateInfo, VK_LAYER_LINK_INFO);
574
575 assert(chain_info->u.pLayerInfo);
576 PFN_vkGetInstanceProcAddr fpGetInstanceProcAddr = chain_info->u.pLayerInfo->pfnNextGetInstanceProcAddr;
577 PFN_vkGetDeviceProcAddr fpGetDeviceProcAddr = chain_info->u.pLayerInfo->pfnNextGetDeviceProcAddr;
578 PFN_vkCreateDevice fpCreateDevice = (PFN_vkCreateDevice)fpGetInstanceProcAddr(phy_dev_data->instance, "vkCreateDevice");
579 if (fpCreateDevice == NULL) {
580 return VK_ERROR_INITIALIZATION_FAILED;
581 }
582
583 // Advance the link info for the next element on the chain
584 chain_info->u.pLayerInfo = chain_info->u.pLayerInfo->pNext;
585
586 VkResult result = fpCreateDevice(physicalDevice, pCreateInfo, pAllocator, pDevice);
587 if (result != VK_SUCCESS) {
588 return result;
589 }
590
591 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(*pDevice), layer_data_map);
592 device_data->report_data = layer_debug_report_create_device(phy_dev_data->report_data, *pDevice);
593 layer_init_device_dispatch_table(*pDevice, &device_data->dispatch_table, fpGetDeviceProcAddr);
594
595 // Add link back to physDev
596 device_data->physical_device = physicalDevice;
597
598 initDeviceTable(*pDevice, fpGetDeviceProcAddr, ot_device_table_map);
599
600 CreateObject(*pDevice, *pDevice, kVulkanObjectTypeDevice, pAllocator);
601
602 return result;
603}
604
605VKAPI_ATTR void VKAPI_CALL GetPhysicalDeviceQueueFamilyProperties(VkPhysicalDevice physicalDevice,
606 uint32_t *pQueueFamilyPropertyCount,
607 VkQueueFamilyProperties *pQueueFamilyProperties) {
608 bool skip = false;
609 {
610 std::lock_guard<std::mutex> lock(global_lock);
611 skip |= ValidateObject(physicalDevice, physicalDevice, kVulkanObjectTypePhysicalDevice, false, VALIDATION_ERROR_2da27a01,
612 VALIDATION_ERROR_UNDEFINED);
613 }
614 if (skip) {
615 return;
616 }
617 get_dispatch_table(ot_instance_table_map, physicalDevice)
618 ->GetPhysicalDeviceQueueFamilyProperties(physicalDevice, pQueueFamilyPropertyCount, pQueueFamilyProperties);
619 std::lock_guard<std::mutex> lock(global_lock);
620 if (pQueueFamilyProperties != NULL) {
621 layer_data *instance_data = GetLayerDataPtr(get_dispatch_key(physicalDevice), layer_data_map);
622 if (instance_data->queue_family_properties.size() < *pQueueFamilyPropertyCount) {
623 instance_data->queue_family_properties.resize(*pQueueFamilyPropertyCount);
624 }
625 for (uint32_t i = 0; i < *pQueueFamilyPropertyCount; i++) {
626 instance_data->queue_family_properties[i] = pQueueFamilyProperties[i];
627 }
628 }
629}
630
631VKAPI_ATTR VkResult VKAPI_CALL CreateInstance(const VkInstanceCreateInfo *pCreateInfo, const VkAllocationCallbacks *pAllocator,
632 VkInstance *pInstance) {
633 VkLayerInstanceCreateInfo *chain_info = get_chain_info(pCreateInfo, VK_LAYER_LINK_INFO);
634
635 assert(chain_info->u.pLayerInfo);
636 PFN_vkGetInstanceProcAddr fpGetInstanceProcAddr = chain_info->u.pLayerInfo->pfnNextGetInstanceProcAddr;
637 PFN_vkCreateInstance fpCreateInstance = (PFN_vkCreateInstance)fpGetInstanceProcAddr(NULL, "vkCreateInstance");
638 if (fpCreateInstance == NULL) {
639 return VK_ERROR_INITIALIZATION_FAILED;
640 }
641
642 // Advance the link info for the next element on the chain
643 chain_info->u.pLayerInfo = chain_info->u.pLayerInfo->pNext;
644
645 VkResult result = fpCreateInstance(pCreateInfo, pAllocator, pInstance);
646 if (result != VK_SUCCESS) {
647 return result;
648 }
649
650 layer_data *instance_data = GetLayerDataPtr(get_dispatch_key(*pInstance), layer_data_map);
651 instance_data->instance = *pInstance;
652 initInstanceTable(*pInstance, fpGetInstanceProcAddr, ot_instance_table_map);
653 VkLayerInstanceDispatchTable *pInstanceTable = get_dispatch_table(ot_instance_table_map, *pInstance);
654
655 // Look for one or more debug report create info structures, and copy the
656 // callback(s) for each one found (for use by vkDestroyInstance)
657 layer_copy_tmp_callbacks(pCreateInfo->pNext, &instance_data->num_tmp_callbacks, &instance_data->tmp_dbg_create_infos,
658 &instance_data->tmp_callbacks);
659
660 instance_data->report_data = debug_report_create_instance(pInstanceTable, *pInstance, pCreateInfo->enabledExtensionCount,
661 pCreateInfo->ppEnabledExtensionNames);
662
663 InitObjectTracker(instance_data, pAllocator);
664
665 CreateObject(*pInstance, *pInstance, kVulkanObjectTypeInstance, pAllocator);
666
667 return result;
668}
669
670VKAPI_ATTR VkResult VKAPI_CALL EnumeratePhysicalDevices(VkInstance instance, uint32_t *pPhysicalDeviceCount,
671 VkPhysicalDevice *pPhysicalDevices) {
672 bool skip = VK_FALSE;
673 std::unique_lock<std::mutex> lock(global_lock);
674 skip |=
675 ValidateObject(instance, instance, kVulkanObjectTypeInstance, false, VALIDATION_ERROR_2800bc01, VALIDATION_ERROR_UNDEFINED);
676 lock.unlock();
677 if (skip) {
678 return VK_ERROR_VALIDATION_FAILED_EXT;
679 }
680 VkResult result = get_dispatch_table(ot_instance_table_map, instance)
681 ->EnumeratePhysicalDevices(instance, pPhysicalDeviceCount, pPhysicalDevices);
682 lock.lock();
683 if (result == VK_SUCCESS) {
684 if (pPhysicalDevices) {
685 for (uint32_t i = 0; i < *pPhysicalDeviceCount; i++) {
686 CreateObject(instance, pPhysicalDevices[i], kVulkanObjectTypePhysicalDevice, nullptr);
687 }
688 }
689 }
690 lock.unlock();
691 return result;
692}
693
694VKAPI_ATTR VkResult VKAPI_CALL AllocateCommandBuffers(VkDevice device, const VkCommandBufferAllocateInfo *pAllocateInfo,
695 VkCommandBuffer *pCommandBuffers) {
696 bool skip = VK_FALSE;
697 std::unique_lock<std::mutex> lock(global_lock);
698 skip |= ValidateObject(device, device, kVulkanObjectTypeDevice, false, VALIDATION_ERROR_16805601, VALIDATION_ERROR_UNDEFINED);
699 skip |= ValidateObject(device, pAllocateInfo->commandPool, kVulkanObjectTypeCommandPool, false, VALIDATION_ERROR_02602801,
700 VALIDATION_ERROR_UNDEFINED);
701 lock.unlock();
702
703 if (skip) {
704 return VK_ERROR_VALIDATION_FAILED_EXT;
705 }
706
707 VkResult result =
708 get_dispatch_table(ot_device_table_map, device)->AllocateCommandBuffers(device, pAllocateInfo, pCommandBuffers);
709
710 lock.lock();
711 for (uint32_t i = 0; i < pAllocateInfo->commandBufferCount; i++) {
712 AllocateCommandBuffer(device, pAllocateInfo->commandPool, pCommandBuffers[i], pAllocateInfo->level);
713 }
714 lock.unlock();
715
716 return result;
717}
718
719VKAPI_ATTR VkResult VKAPI_CALL AllocateDescriptorSets(VkDevice device, const VkDescriptorSetAllocateInfo *pAllocateInfo,
720 VkDescriptorSet *pDescriptorSets) {
721 bool skip = VK_FALSE;
722 std::unique_lock<std::mutex> lock(global_lock);
723 skip |= ValidateObject(device, device, kVulkanObjectTypeDevice, false, VALIDATION_ERROR_16a05601, VALIDATION_ERROR_UNDEFINED);
724 skip |= ValidateObject(device, pAllocateInfo->descriptorPool, kVulkanObjectTypeDescriptorPool, false, VALIDATION_ERROR_04c04601,
725 VALIDATION_ERROR_04c00009);
726 for (uint32_t i = 0; i < pAllocateInfo->descriptorSetCount; i++) {
727 skip |= ValidateObject(device, pAllocateInfo->pSetLayouts[i], kVulkanObjectTypeDescriptorSetLayout, false,
728 VALIDATION_ERROR_04c22c01, VALIDATION_ERROR_04c00009);
729 }
730 lock.unlock();
731 if (skip) {
732 return VK_ERROR_VALIDATION_FAILED_EXT;
733 }
734
735 VkResult result =
736 get_dispatch_table(ot_device_table_map, device)->AllocateDescriptorSets(device, pAllocateInfo, pDescriptorSets);
737
738 if (VK_SUCCESS == result) {
739 lock.lock();
740 for (uint32_t i = 0; i < pAllocateInfo->descriptorSetCount; i++) {
741 AllocateDescriptorSet(device, pAllocateInfo->descriptorPool, pDescriptorSets[i]);
742 }
743 lock.unlock();
744 }
745
746 return result;
747}
748
749VKAPI_ATTR void VKAPI_CALL FreeCommandBuffers(VkDevice device, VkCommandPool commandPool, uint32_t commandBufferCount,
750 const VkCommandBuffer *pCommandBuffers) {
751 bool skip = false;
752 std::unique_lock<std::mutex> lock(global_lock);
753 ValidateObject(device, device, kVulkanObjectTypeDevice, false, VALIDATION_ERROR_28405601, VALIDATION_ERROR_UNDEFINED);
754 ValidateObject(device, commandPool, kVulkanObjectTypeCommandPool, false, VALIDATION_ERROR_28402801, VALIDATION_ERROR_28402807);
755 for (uint32_t i = 0; i < commandBufferCount; i++) {
756 if (pCommandBuffers[i] != VK_NULL_HANDLE) {
757 skip |= ValidateCommandBuffer(device, commandPool, pCommandBuffers[i]);
758 }
759 }
760
761 for (uint32_t i = 0; i < commandBufferCount; i++) {
762 DestroyObject(device, pCommandBuffers[i], kVulkanObjectTypeCommandBuffer, nullptr, VALIDATION_ERROR_UNDEFINED,
763 VALIDATION_ERROR_UNDEFINED);
764 }
765
766 lock.unlock();
767 if (!skip) {
768 get_dispatch_table(ot_device_table_map, device)
769 ->FreeCommandBuffers(device, commandPool, commandBufferCount, pCommandBuffers);
770 }
771}
772
773VKAPI_ATTR void VKAPI_CALL DestroySwapchainKHR(VkDevice device, VkSwapchainKHR swapchain, const VkAllocationCallbacks *pAllocator) {
774 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(device), layer_data_map);
775 std::unique_lock<std::mutex> lock(global_lock);
776 // A swapchain's images are implicitly deleted when the swapchain is deleted.
777 // Remove this swapchain's images from our map of such images.
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600778 std::unordered_map<uint64_t, ObjTrackState *>::iterator itr = device_data->swapchainImageMap.begin();
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600779 while (itr != device_data->swapchainImageMap.end()) {
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600780 ObjTrackState *pNode = (*itr).second;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600781 if (pNode->parent_object == HandleToUint64(swapchain)) {
782 delete pNode;
783 auto delete_item = itr++;
784 device_data->swapchainImageMap.erase(delete_item);
785 } else {
786 ++itr;
787 }
788 }
789 DestroyObject(device, swapchain, kVulkanObjectTypeSwapchainKHR, pAllocator, VALIDATION_ERROR_26e00a06,
790 VALIDATION_ERROR_26e00a08);
791 lock.unlock();
792
793 get_dispatch_table(ot_device_table_map, device)->DestroySwapchainKHR(device, swapchain, pAllocator);
794}
795
796VKAPI_ATTR VkResult VKAPI_CALL FreeDescriptorSets(VkDevice device, VkDescriptorPool descriptorPool, uint32_t descriptorSetCount,
797 const VkDescriptorSet *pDescriptorSets) {
798 bool skip = false;
799 VkResult result = VK_ERROR_VALIDATION_FAILED_EXT;
800 std::unique_lock<std::mutex> lock(global_lock);
801 skip |= ValidateObject(device, device, kVulkanObjectTypeDevice, false, VALIDATION_ERROR_28605601, VALIDATION_ERROR_UNDEFINED);
802 skip |= ValidateObject(device, descriptorPool, kVulkanObjectTypeDescriptorPool, false, VALIDATION_ERROR_28604601,
803 VALIDATION_ERROR_28604607);
804 for (uint32_t i = 0; i < descriptorSetCount; i++) {
805 if (pDescriptorSets[i] != VK_NULL_HANDLE) {
806 skip |= ValidateDescriptorSet(device, descriptorPool, pDescriptorSets[i]);
807 }
808 }
809
810 for (uint32_t i = 0; i < descriptorSetCount; i++) {
811 DestroyObject(device, pDescriptorSets[i], kVulkanObjectTypeDescriptorSet, nullptr, VALIDATION_ERROR_UNDEFINED,
812 VALIDATION_ERROR_UNDEFINED);
813 }
814
815 lock.unlock();
816 if (!skip) {
817 result = get_dispatch_table(ot_device_table_map, device)
818 ->FreeDescriptorSets(device, descriptorPool, descriptorSetCount, pDescriptorSets);
819 }
820 return result;
821}
822
823VKAPI_ATTR void VKAPI_CALL DestroyDescriptorPool(VkDevice device, VkDescriptorPool descriptorPool,
824 const VkAllocationCallbacks *pAllocator) {
825 bool skip = VK_FALSE;
826 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(device), layer_data_map);
827 std::unique_lock<std::mutex> lock(global_lock);
828 skip |= ValidateObject(device, device, kVulkanObjectTypeDevice, false, VALIDATION_ERROR_24405601, VALIDATION_ERROR_UNDEFINED);
829 skip |= ValidateObject(device, descriptorPool, kVulkanObjectTypeDescriptorPool, true, VALIDATION_ERROR_24404601,
830 VALIDATION_ERROR_24404607);
831 lock.unlock();
832 if (skip) {
833 return;
834 }
835 // A DescriptorPool's descriptor sets are implicitly deleted when the pool is deleted.
836 // Remove this pool's descriptor sets from our descriptorSet map.
837 lock.lock();
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600838 std::unordered_map<uint64_t, ObjTrackState *>::iterator itr = device_data->object_map[kVulkanObjectTypeDescriptorSet].begin();
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600839 while (itr != device_data->object_map[kVulkanObjectTypeDescriptorSet].end()) {
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600840 ObjTrackState *pNode = (*itr).second;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600841 auto del_itr = itr++;
842 if (pNode->parent_object == HandleToUint64(descriptorPool)) {
843 DestroyObject(device, (VkDescriptorSet)((*del_itr).first), kVulkanObjectTypeDescriptorSet, nullptr,
844 VALIDATION_ERROR_UNDEFINED, VALIDATION_ERROR_UNDEFINED);
845 }
846 }
847 DestroyObject(device, descriptorPool, kVulkanObjectTypeDescriptorPool, pAllocator, VALIDATION_ERROR_24400260,
848 VALIDATION_ERROR_24400262);
849 lock.unlock();
850 get_dispatch_table(ot_device_table_map, device)->DestroyDescriptorPool(device, descriptorPool, pAllocator);
851}
852
853VKAPI_ATTR void VKAPI_CALL DestroyCommandPool(VkDevice device, VkCommandPool commandPool, const VkAllocationCallbacks *pAllocator) {
854 layer_data *device_data = GetLayerDataPtr(get_dispatch_key(device), layer_data_map);
855 bool skip = false;
856 std::unique_lock<std::mutex> lock(global_lock);
857 skip |= ValidateObject(device, device, kVulkanObjectTypeDevice, false, VALIDATION_ERROR_24005601, VALIDATION_ERROR_UNDEFINED);
858 skip |= ValidateObject(device, commandPool, kVulkanObjectTypeCommandPool, true, VALIDATION_ERROR_24002801,
859 VALIDATION_ERROR_24002807);
860 lock.unlock();
861 if (skip) {
862 return;
863 }
864 lock.lock();
865 // A CommandPool's command buffers are implicitly deleted when the pool is deleted.
866 // Remove this pool's cmdBuffers from our cmd buffer map.
867 auto itr = device_data->object_map[kVulkanObjectTypeCommandBuffer].begin();
868 auto del_itr = itr;
869 while (itr != device_data->object_map[kVulkanObjectTypeCommandBuffer].end()) {
Mark Lobodzinskiefc64392017-07-18 13:15:47 -0600870 ObjTrackState *pNode = (*itr).second;
Mark Lobodzinskib2de97f2017-07-06 15:28:11 -0600871 del_itr = itr++;
872 if (pNode->parent_object == HandleToUint64(commandPool)) {
873 skip |= ValidateCommandBuffer(device, commandPool, reinterpret_cast<VkCommandBuffer>((*del_itr).first));
874 DestroyObject(device, reinterpret_cast<VkCommandBuffer>((*del_itr).first), kVulkanObjectTypeCommandBuffer, nullptr,
875 VALIDATION_ERROR_UNDEFINED, VALIDATION_ERROR_UNDEFINED);
876 }
877 }
878 DestroyObject(device, commandPool, kVulkanObjectTypeCommandPool, pAllocator, VALIDATION_ERROR_24000054,
879 VALIDATION_ERROR_24000056);
880 lock.unlock();
881 get_dispatch_table(ot_device_table_map, device)->DestroyCommandPool(device, commandPool, pAllocator);
882}
883
884VKAPI_ATTR void VKAPI_CALL GetPhysicalDeviceQueueFamilyProperties2KHR(VkPhysicalDevice physicalDevice,
885 uint32_t *pQueueFamilyPropertyCount,
886 VkQueueFamilyProperties2KHR *pQueueFamilyProperties) {
887 bool skip = false;
888 {
889 std::lock_guard<std::mutex> lock(global_lock);
890 skip |= ValidateObject(physicalDevice, physicalDevice, kVulkanObjectTypePhysicalDevice, false, VALIDATION_ERROR_UNDEFINED,
891 VALIDATION_ERROR_UNDEFINED);
892 }
893 if (skip) {
894 return;
895 }
896 get_dispatch_table(ot_instance_table_map, physicalDevice)
897 ->GetPhysicalDeviceQueueFamilyProperties2KHR(physicalDevice, pQueueFamilyPropertyCount, pQueueFamilyProperties);
898 std::lock_guard<std::mutex> lock(global_lock);
899 if (pQueueFamilyProperties != NULL) {
900 layer_data *instance_data = GetLayerDataPtr(get_dispatch_key(physicalDevice), layer_data_map);
901 if (instance_data->queue_family_properties.size() < *pQueueFamilyPropertyCount) {
902 instance_data->queue_family_properties.resize(*pQueueFamilyPropertyCount);
903 }
904 for (uint32_t i = 0; i < *pQueueFamilyPropertyCount; i++) {
905 instance_data->queue_family_properties[i] = pQueueFamilyProperties[i].queueFamilyProperties;
906 }
907 }
908}
909
910VKAPI_ATTR VkResult VKAPI_CALL DebugMarkerSetObjectNameEXT(VkDevice device, VkDebugMarkerObjectNameInfoEXT *pNameInfo) {
911 bool skip = VK_FALSE;
912 std::unique_lock<std::mutex> lock(global_lock);
913 layer_data *dev_data = GetLayerDataPtr(get_dispatch_key(device), layer_data_map);
914 if (pNameInfo->pObjectName) {
915 dev_data->report_data->debugObjectNameMap->insert(
916 std::make_pair<uint64_t, std::string>((uint64_t &&) pNameInfo->object, pNameInfo->pObjectName));
917 } else {
918 dev_data->report_data->debugObjectNameMap->erase(pNameInfo->object);
919 }
920 skip |= ValidateObject(device, device, kVulkanObjectTypeDevice, false, VALIDATION_ERROR_23605601, VALIDATION_ERROR_UNDEFINED);
921 lock.unlock();
922 if (skip) {
923 return VK_ERROR_VALIDATION_FAILED_EXT;
924 }
925 VkResult result = dev_data->dispatch_table.DebugMarkerSetObjectNameEXT(device, pNameInfo);
926 return result;
927}
928
929VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL GetPhysicalDeviceProcAddr(VkInstance instance, const char *funcName) {
930 assert(instance);
931
932 if (get_dispatch_table(ot_instance_table_map, instance)->GetPhysicalDeviceProcAddr == NULL) {
933 return NULL;
934 }
935 return get_dispatch_table(ot_instance_table_map, instance)->GetPhysicalDeviceProcAddr(instance, funcName);
936}
937
938VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL GetDeviceProcAddr(VkDevice device, const char *funcName) {
939 const auto item = name_to_funcptr_map.find(funcName);
940 if (item != name_to_funcptr_map.end()) {
941 return reinterpret_cast<PFN_vkVoidFunction>(item->second);
942 }
943
944 auto table = get_dispatch_table(ot_device_table_map, device);
945 if (!table->GetDeviceProcAddr) return NULL;
946 return table->GetDeviceProcAddr(device, funcName);
947}
948
949VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL GetInstanceProcAddr(VkInstance instance, const char *funcName) {
950 const auto item = name_to_funcptr_map.find(funcName);
951 if (item != name_to_funcptr_map.end()) {
952 return reinterpret_cast<PFN_vkVoidFunction>(item->second);
953 }
954
955 auto table = get_dispatch_table(ot_instance_table_map, instance);
956 if (!table->GetInstanceProcAddr) return nullptr;
957 return table->GetInstanceProcAddr(instance, funcName);
958}
959
960} // namespace object_tracker
961
962VK_LAYER_EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkEnumerateInstanceExtensionProperties(const char *pLayerName, uint32_t *pCount,
963 VkExtensionProperties *pProperties) {
964 return object_tracker::EnumerateInstanceExtensionProperties(pLayerName, pCount, pProperties);
965}
966
967VK_LAYER_EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkEnumerateInstanceLayerProperties(uint32_t *pCount,
968 VkLayerProperties *pProperties) {
969 return object_tracker::EnumerateInstanceLayerProperties(pCount, pProperties);
970}
971
972VK_LAYER_EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkEnumerateDeviceLayerProperties(VkPhysicalDevice physicalDevice, uint32_t *pCount,
973 VkLayerProperties *pProperties) {
974 // The layer command handles VK_NULL_HANDLE just fine internally
975 assert(physicalDevice == VK_NULL_HANDLE);
976 return object_tracker::EnumerateDeviceLayerProperties(VK_NULL_HANDLE, pCount, pProperties);
977}
978
979VK_LAYER_EXPORT VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL vkGetDeviceProcAddr(VkDevice dev, const char *funcName) {
980 return object_tracker::GetDeviceProcAddr(dev, funcName);
981}
982
983VK_LAYER_EXPORT VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL vkGetInstanceProcAddr(VkInstance instance, const char *funcName) {
984 return object_tracker::GetInstanceProcAddr(instance, funcName);
985}
986
987VK_LAYER_EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkEnumerateDeviceExtensionProperties(VkPhysicalDevice physicalDevice,
988 const char *pLayerName, uint32_t *pCount,
989 VkExtensionProperties *pProperties) {
990 // The layer command handles VK_NULL_HANDLE just fine internally
991 assert(physicalDevice == VK_NULL_HANDLE);
992 return object_tracker::EnumerateDeviceExtensionProperties(VK_NULL_HANDLE, pLayerName, pCount, pProperties);
993}
994
995VK_LAYER_EXPORT VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL vk_layerGetPhysicalDeviceProcAddr(VkInstance instance,
996 const char *funcName) {
997 return object_tracker::GetPhysicalDeviceProcAddr(instance, funcName);
998}
999
1000VK_LAYER_EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkNegotiateLoaderLayerInterfaceVersion(VkNegotiateLayerInterface *pVersionStruct) {
1001 assert(pVersionStruct != NULL);
1002 assert(pVersionStruct->sType == LAYER_NEGOTIATE_INTERFACE_STRUCT);
1003
1004 // Fill in the function pointers if our version is at least capable of having the structure contain them.
1005 if (pVersionStruct->loaderLayerInterfaceVersion >= 2) {
1006 pVersionStruct->pfnGetInstanceProcAddr = vkGetInstanceProcAddr;
1007 pVersionStruct->pfnGetDeviceProcAddr = vkGetDeviceProcAddr;
1008 pVersionStruct->pfnGetPhysicalDeviceProcAddr = vk_layerGetPhysicalDeviceProcAddr;
1009 }
1010
1011 if (pVersionStruct->loaderLayerInterfaceVersion < CURRENT_LOADER_LAYER_INTERFACE_VERSION) {
1012 object_tracker::loader_layer_if_version = pVersionStruct->loaderLayerInterfaceVersion;
1013 } else if (pVersionStruct->loaderLayerInterfaceVersion > CURRENT_LOADER_LAYER_INTERFACE_VERSION) {
1014 pVersionStruct->loaderLayerInterfaceVersion = CURRENT_LOADER_LAYER_INTERFACE_VERSION;
1015 }
1016
1017 return VK_SUCCESS;
1018}