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724 lines
37 KiB
724 lines
37 KiB
/* |
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* Copyright (c) 2015-2016 The Khronos Group Inc. |
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* Copyright (c) 2015-2016 Valve Corporation |
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* Copyright (c) 2015-2016 LunarG, Inc. |
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* Copyright (c) 2015-2016 Google, Inc. |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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* |
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* Author: Tobin Ehlis <tobine@google.com> |
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* Author: Mark Lobodzinski <mark@lunarg.com> |
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*/ |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#include <unordered_map> |
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#include <vector> |
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#include <list> |
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#include <memory> |
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|
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#include "vk_loader_platform.h" |
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#include "vulkan/vk_layer.h" |
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#include "vk_layer_config.h" |
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#include "vk_layer_extension_utils.h" |
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#include "vk_layer_utils.h" |
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#include "vk_layer_table.h" |
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#include "vk_layer_logging.h" |
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#include "unique_objects.h" |
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#include "vk_dispatch_table_helper.h" |
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#include "vk_struct_string_helper_cpp.h" |
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#include "vk_layer_data.h" |
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#include "vk_layer_utils.h" |
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#include "unique_objects_wrappers.h" |
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namespace unique_objects { |
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static void initUniqueObjects(layer_data *instance_data, const VkAllocationCallbacks *pAllocator) { |
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layer_debug_actions(instance_data->report_data, instance_data->logging_callback, pAllocator, "google_unique_objects"); |
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} |
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// Handle CreateInstance Extensions |
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static void checkInstanceRegisterExtensions(const VkInstanceCreateInfo *pCreateInfo, VkInstance instance) { |
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uint32_t i; |
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layer_data *instance_data = get_my_data_ptr(get_dispatch_key(instance), layer_data_map); |
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VkLayerInstanceDispatchTable *disp_table = instance_data->instance_dispatch_table; |
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instance_ext_map[disp_table] = {}; |
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for (i = 0; i < pCreateInfo->enabledExtensionCount; i++) { |
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if (strcmp(pCreateInfo->ppEnabledExtensionNames[i], VK_KHR_SURFACE_EXTENSION_NAME) == 0) { |
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instance_ext_map[disp_table].wsi_enabled = true; |
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} |
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if (strcmp(pCreateInfo->ppEnabledExtensionNames[i], VK_KHR_DISPLAY_EXTENSION_NAME) == 0) { |
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instance_ext_map[disp_table].display_enabled = true; |
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} |
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#ifdef VK_USE_PLATFORM_XLIB_KHR |
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if (strcmp(pCreateInfo->ppEnabledExtensionNames[i], VK_KHR_XLIB_SURFACE_EXTENSION_NAME) == 0) { |
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instance_ext_map[disp_table].xlib_enabled = true; |
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} |
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#endif |
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#ifdef VK_USE_PLATFORM_XCB_KHR |
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if (strcmp(pCreateInfo->ppEnabledExtensionNames[i], VK_KHR_XCB_SURFACE_EXTENSION_NAME) == 0) { |
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instance_ext_map[disp_table].xcb_enabled = true; |
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} |
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#endif |
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#ifdef VK_USE_PLATFORM_WAYLAND_KHR |
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if (strcmp(pCreateInfo->ppEnabledExtensionNames[i], VK_KHR_WAYLAND_SURFACE_EXTENSION_NAME) == 0) { |
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instance_ext_map[disp_table].wayland_enabled = true; |
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} |
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#endif |
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#ifdef VK_USE_PLATFORM_MIR_KHR |
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if (strcmp(pCreateInfo->ppEnabledExtensionNames[i], VK_KHR_MIR_SURFACE_EXTENSION_NAME) == 0) { |
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instance_ext_map[disp_table].mir_enabled = true; |
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} |
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#endif |
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#ifdef VK_USE_PLATFORM_ANDROID_KHR |
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if (strcmp(pCreateInfo->ppEnabledExtensionNames[i], VK_KHR_ANDROID_SURFACE_EXTENSION_NAME) == 0) { |
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instance_ext_map[disp_table].android_enabled = true; |
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} |
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#endif |
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#ifdef VK_USE_PLATFORM_WIN32_KHR |
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if (strcmp(pCreateInfo->ppEnabledExtensionNames[i], VK_KHR_WIN32_SURFACE_EXTENSION_NAME) == 0) { |
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instance_ext_map[disp_table].win32_enabled = true; |
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} |
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#endif |
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// Check for recognized instance extensions |
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layer_data *instance_data = get_my_data_ptr(get_dispatch_key(instance), layer_data_map); |
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if (!white_list(pCreateInfo->ppEnabledExtensionNames[i], kUniqueObjectsSupportedInstanceExtensions)) { |
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log_msg(instance_data->report_data, VK_DEBUG_REPORT_ERROR_BIT_EXT, VK_DEBUG_REPORT_OBJECT_TYPE_UNKNOWN_EXT, 0, __LINE__, |
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0, "UniqueObjects", |
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"Instance Extension %s is not supported by this layer. Using this extension may adversely affect " |
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"validation results and/or produce undefined behavior.", |
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pCreateInfo->ppEnabledExtensionNames[i]); |
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} |
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} |
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} |
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// Handle CreateDevice Extensions |
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static void createDeviceRegisterExtensions(const VkDeviceCreateInfo *pCreateInfo, VkDevice device) { |
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layer_data *device_data = get_my_data_ptr(get_dispatch_key(device), layer_data_map); |
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VkLayerDispatchTable *disp_table = device_data->device_dispatch_table; |
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PFN_vkGetDeviceProcAddr gpa = disp_table->GetDeviceProcAddr; |
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device_data->device_dispatch_table->CreateSwapchainKHR = (PFN_vkCreateSwapchainKHR)gpa(device, "vkCreateSwapchainKHR"); |
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disp_table->DestroySwapchainKHR = (PFN_vkDestroySwapchainKHR)gpa(device, "vkDestroySwapchainKHR"); |
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disp_table->GetSwapchainImagesKHR = (PFN_vkGetSwapchainImagesKHR)gpa(device, "vkGetSwapchainImagesKHR"); |
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disp_table->AcquireNextImageKHR = (PFN_vkAcquireNextImageKHR)gpa(device, "vkAcquireNextImageKHR"); |
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disp_table->QueuePresentKHR = (PFN_vkQueuePresentKHR)gpa(device, "vkQueuePresentKHR"); |
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device_data->wsi_enabled = false; |
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for (uint32_t i = 0; i < pCreateInfo->enabledExtensionCount; i++) { |
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if (strcmp(pCreateInfo->ppEnabledExtensionNames[i], VK_KHR_SWAPCHAIN_EXTENSION_NAME) == 0) { |
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device_data->wsi_enabled = true; |
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} |
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// Check for recognized device extensions |
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if (!white_list(pCreateInfo->ppEnabledExtensionNames[i], kUniqueObjectsSupportedDeviceExtensions)) { |
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log_msg(device_data->report_data, VK_DEBUG_REPORT_ERROR_BIT_EXT, VK_DEBUG_REPORT_OBJECT_TYPE_UNKNOWN_EXT, 0, __LINE__, |
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0, "UniqueObjects", |
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"Device Extension %s is not supported by this layer. Using this extension may adversely affect " |
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"validation results and/or produce undefined behavior.", |
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pCreateInfo->ppEnabledExtensionNames[i]); |
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} |
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} |
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} |
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VKAPI_ATTR VkResult VKAPI_CALL CreateInstance(const VkInstanceCreateInfo *pCreateInfo, const VkAllocationCallbacks *pAllocator, |
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VkInstance *pInstance) { |
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VkLayerInstanceCreateInfo *chain_info = get_chain_info(pCreateInfo, VK_LAYER_LINK_INFO); |
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assert(chain_info->u.pLayerInfo); |
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PFN_vkGetInstanceProcAddr fpGetInstanceProcAddr = chain_info->u.pLayerInfo->pfnNextGetInstanceProcAddr; |
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PFN_vkCreateInstance fpCreateInstance = (PFN_vkCreateInstance)fpGetInstanceProcAddr(NULL, "vkCreateInstance"); |
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if (fpCreateInstance == NULL) { |
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return VK_ERROR_INITIALIZATION_FAILED; |
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} |
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// Advance the link info for the next element on the chain |
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chain_info->u.pLayerInfo = chain_info->u.pLayerInfo->pNext; |
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VkResult result = fpCreateInstance(pCreateInfo, pAllocator, pInstance); |
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if (result != VK_SUCCESS) { |
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return result; |
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} |
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layer_data *instance_data = get_my_data_ptr(get_dispatch_key(*pInstance), layer_data_map); |
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instance_data->instance = *pInstance; |
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instance_data->instance_dispatch_table = new VkLayerInstanceDispatchTable; |
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layer_init_instance_dispatch_table(*pInstance, instance_data->instance_dispatch_table, fpGetInstanceProcAddr); |
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instance_data->instance = *pInstance; |
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instance_data->report_data = |
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debug_report_create_instance(instance_data->instance_dispatch_table, *pInstance, pCreateInfo->enabledExtensionCount, |
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pCreateInfo->ppEnabledExtensionNames); |
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// Set up temporary debug callbacks to output messages at CreateInstance-time |
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if (!layer_copy_tmp_callbacks(pCreateInfo->pNext, &instance_data->num_tmp_callbacks, &instance_data->tmp_dbg_create_infos, |
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&instance_data->tmp_callbacks)) { |
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if (instance_data->num_tmp_callbacks > 0) { |
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if (layer_enable_tmp_callbacks(instance_data->report_data, instance_data->num_tmp_callbacks, |
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instance_data->tmp_dbg_create_infos, instance_data->tmp_callbacks)) { |
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layer_free_tmp_callbacks(instance_data->tmp_dbg_create_infos, instance_data->tmp_callbacks); |
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instance_data->num_tmp_callbacks = 0; |
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} |
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} |
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} |
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initUniqueObjects(instance_data, pAllocator); |
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checkInstanceRegisterExtensions(pCreateInfo, *pInstance); |
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// Disable and free tmp callbacks, no longer necessary |
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if (instance_data->num_tmp_callbacks > 0) { |
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layer_disable_tmp_callbacks(instance_data->report_data, instance_data->num_tmp_callbacks, instance_data->tmp_callbacks); |
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layer_free_tmp_callbacks(instance_data->tmp_dbg_create_infos, instance_data->tmp_callbacks); |
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instance_data->num_tmp_callbacks = 0; |
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} |
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return result; |
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} |
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VKAPI_ATTR void VKAPI_CALL DestroyInstance(VkInstance instance, const VkAllocationCallbacks *pAllocator) { |
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dispatch_key key = get_dispatch_key(instance); |
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layer_data *instance_data = get_my_data_ptr(key, layer_data_map); |
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VkLayerInstanceDispatchTable *disp_table = instance_data->instance_dispatch_table; |
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instance_ext_map.erase(disp_table); |
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disp_table->DestroyInstance(instance, pAllocator); |
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// Clean up logging callback, if any |
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while (instance_data->logging_callback.size() > 0) { |
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VkDebugReportCallbackEXT callback = instance_data->logging_callback.back(); |
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layer_destroy_msg_callback(instance_data->report_data, callback, pAllocator); |
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instance_data->logging_callback.pop_back(); |
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} |
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layer_debug_report_destroy_instance(instance_data->report_data); |
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layer_data_map.erase(key); |
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} |
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VKAPI_ATTR VkResult VKAPI_CALL CreateDevice(VkPhysicalDevice gpu, const VkDeviceCreateInfo *pCreateInfo, |
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const VkAllocationCallbacks *pAllocator, VkDevice *pDevice) { |
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layer_data *my_instance_data = get_my_data_ptr(get_dispatch_key(gpu), layer_data_map); |
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VkLayerDeviceCreateInfo *chain_info = get_chain_info(pCreateInfo, VK_LAYER_LINK_INFO); |
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assert(chain_info->u.pLayerInfo); |
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PFN_vkGetInstanceProcAddr fpGetInstanceProcAddr = chain_info->u.pLayerInfo->pfnNextGetInstanceProcAddr; |
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PFN_vkGetDeviceProcAddr fpGetDeviceProcAddr = chain_info->u.pLayerInfo->pfnNextGetDeviceProcAddr; |
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PFN_vkCreateDevice fpCreateDevice = (PFN_vkCreateDevice)fpGetInstanceProcAddr(my_instance_data->instance, "vkCreateDevice"); |
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if (fpCreateDevice == NULL) { |
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return VK_ERROR_INITIALIZATION_FAILED; |
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} |
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// Advance the link info for the next element on the chain |
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chain_info->u.pLayerInfo = chain_info->u.pLayerInfo->pNext; |
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VkResult result = fpCreateDevice(gpu, pCreateInfo, pAllocator, pDevice); |
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if (result != VK_SUCCESS) { |
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return result; |
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} |
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layer_data *my_device_data = get_my_data_ptr(get_dispatch_key(*pDevice), layer_data_map); |
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my_device_data->report_data = layer_debug_report_create_device(my_instance_data->report_data, *pDevice); |
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// Setup layer's device dispatch table |
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my_device_data->device_dispatch_table = new VkLayerDispatchTable; |
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layer_init_device_dispatch_table(*pDevice, my_device_data->device_dispatch_table, fpGetDeviceProcAddr); |
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createDeviceRegisterExtensions(pCreateInfo, *pDevice); |
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// Set gpu for this device in order to get at any objects mapped at instance level |
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my_device_data->gpu = gpu; |
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return result; |
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} |
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VKAPI_ATTR void VKAPI_CALL DestroyDevice(VkDevice device, const VkAllocationCallbacks *pAllocator) { |
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dispatch_key key = get_dispatch_key(device); |
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layer_data *dev_data = get_my_data_ptr(key, layer_data_map); |
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layer_debug_report_destroy_device(device); |
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dev_data->device_dispatch_table->DestroyDevice(device, pAllocator); |
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layer_data_map.erase(key); |
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} |
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static const VkLayerProperties globalLayerProps = {"VK_LAYER_GOOGLE_unique_objects", |
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VK_LAYER_API_VERSION, // specVersion |
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1, // implementationVersion |
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"Google Validation Layer"}; |
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static inline PFN_vkVoidFunction layer_intercept_proc(const char *name) { |
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for (int i = 0; i < sizeof(procmap) / sizeof(procmap[0]); i++) { |
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if (!strcmp(name, procmap[i].name)) |
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return procmap[i].pFunc; |
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} |
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return NULL; |
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} |
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VKAPI_ATTR VkResult VKAPI_CALL EnumerateInstanceLayerProperties(uint32_t *pCount, VkLayerProperties *pProperties) { |
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return util_GetLayerProperties(1, &globalLayerProps, pCount, pProperties); |
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} |
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VKAPI_ATTR VkResult VKAPI_CALL EnumerateDeviceLayerProperties(VkPhysicalDevice physicalDevice, uint32_t *pCount, |
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VkLayerProperties *pProperties) { |
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return util_GetLayerProperties(1, &globalLayerProps, pCount, pProperties); |
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} |
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VKAPI_ATTR VkResult VKAPI_CALL EnumerateInstanceExtensionProperties(const char *pLayerName, uint32_t *pCount, |
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VkExtensionProperties *pProperties) { |
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if (pLayerName && !strcmp(pLayerName, globalLayerProps.layerName)) |
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return util_GetExtensionProperties(0, NULL, pCount, pProperties); |
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return VK_ERROR_LAYER_NOT_PRESENT; |
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} |
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VKAPI_ATTR VkResult VKAPI_CALL EnumerateDeviceExtensionProperties(VkPhysicalDevice physicalDevice, const char *pLayerName, |
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uint32_t *pCount, VkExtensionProperties *pProperties) { |
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if (pLayerName && !strcmp(pLayerName, globalLayerProps.layerName)) |
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return util_GetExtensionProperties(0, nullptr, pCount, pProperties); |
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assert(physicalDevice); |
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dispatch_key key = get_dispatch_key(physicalDevice); |
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layer_data *instance_data = get_my_data_ptr(key, layer_data_map); |
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return instance_data->instance_dispatch_table->EnumerateDeviceExtensionProperties(physicalDevice, NULL, pCount, pProperties); |
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} |
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VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL GetDeviceProcAddr(VkDevice device, const char *funcName) { |
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PFN_vkVoidFunction addr; |
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assert(device); |
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addr = layer_intercept_proc(funcName); |
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if (addr) { |
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return addr; |
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} |
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layer_data *dev_data = get_my_data_ptr(get_dispatch_key(device), layer_data_map); |
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VkLayerDispatchTable *disp_table = dev_data->device_dispatch_table; |
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if (disp_table->GetDeviceProcAddr == NULL) { |
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return NULL; |
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} |
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return disp_table->GetDeviceProcAddr(device, funcName); |
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} |
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VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL GetInstanceProcAddr(VkInstance instance, const char *funcName) { |
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PFN_vkVoidFunction addr; |
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addr = layer_intercept_proc(funcName); |
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if (addr) { |
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return addr; |
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} |
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assert(instance); |
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layer_data *instance_data = get_my_data_ptr(get_dispatch_key(instance), layer_data_map); |
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addr = debug_report_get_instance_proc_addr(instance_data->report_data, funcName); |
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if (addr) { |
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return addr; |
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} |
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VkLayerInstanceDispatchTable *disp_table = instance_data->instance_dispatch_table; |
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if (disp_table->GetInstanceProcAddr == NULL) { |
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return NULL; |
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} |
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return disp_table->GetInstanceProcAddr(instance, funcName); |
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} |
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VKAPI_ATTR VkResult VKAPI_CALL AllocateMemory(VkDevice device, const VkMemoryAllocateInfo *pAllocateInfo, |
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const VkAllocationCallbacks *pAllocator, VkDeviceMemory *pMemory) { |
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const VkMemoryAllocateInfo *input_allocate_info = pAllocateInfo; |
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std::unique_ptr<safe_VkMemoryAllocateInfo> safe_allocate_info; |
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std::unique_ptr<safe_VkDedicatedAllocationMemoryAllocateInfoNV> safe_dedicated_allocate_info; |
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layer_data *device_data = get_my_data_ptr(get_dispatch_key(device), layer_data_map); |
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if ((pAllocateInfo != nullptr) && |
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ContainsExtStruct(pAllocateInfo, VK_STRUCTURE_TYPE_DEDICATED_ALLOCATION_MEMORY_ALLOCATE_INFO_NV)) { |
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// Assuming there is only one extension struct of this type in the list for now |
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safe_dedicated_allocate_info = |
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std::unique_ptr<safe_VkDedicatedAllocationMemoryAllocateInfoNV>(new safe_VkDedicatedAllocationMemoryAllocateInfoNV); |
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safe_allocate_info = std::unique_ptr<safe_VkMemoryAllocateInfo>(new safe_VkMemoryAllocateInfo(pAllocateInfo)); |
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input_allocate_info = reinterpret_cast<const VkMemoryAllocateInfo *>(safe_allocate_info.get()); |
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const GenericHeader *orig_pnext = reinterpret_cast<const GenericHeader *>(pAllocateInfo->pNext); |
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GenericHeader *input_pnext = reinterpret_cast<GenericHeader *>(safe_allocate_info.get()); |
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while (orig_pnext != nullptr) { |
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if (orig_pnext->sType == VK_STRUCTURE_TYPE_DEDICATED_ALLOCATION_MEMORY_ALLOCATE_INFO_NV) { |
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safe_dedicated_allocate_info->initialize( |
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reinterpret_cast<const VkDedicatedAllocationMemoryAllocateInfoNV *>(orig_pnext)); |
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std::unique_lock<std::mutex> lock(global_lock); |
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|
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if (safe_dedicated_allocate_info->buffer != VK_NULL_HANDLE) { |
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uint64_t local_buffer = reinterpret_cast<uint64_t &>(safe_dedicated_allocate_info->buffer); |
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safe_dedicated_allocate_info->buffer = |
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reinterpret_cast<VkBuffer &>(device_data->unique_id_mapping[local_buffer]); |
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} |
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if (safe_dedicated_allocate_info->image != VK_NULL_HANDLE) { |
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uint64_t local_image = reinterpret_cast<uint64_t &>(safe_dedicated_allocate_info->image); |
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safe_dedicated_allocate_info->image = reinterpret_cast<VkImage &>(device_data->unique_id_mapping[local_image]); |
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} |
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lock.unlock(); |
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input_pnext->pNext = reinterpret_cast<GenericHeader *>(safe_dedicated_allocate_info.get()); |
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input_pnext = reinterpret_cast<GenericHeader *>(input_pnext->pNext); |
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} else { |
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// TODO: generic handling of pNext copies |
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} |
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orig_pnext = reinterpret_cast<const GenericHeader *>(orig_pnext->pNext); |
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} |
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} |
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VkResult result = device_data->device_dispatch_table->AllocateMemory(device, input_allocate_info, pAllocator, pMemory); |
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|
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if (VK_SUCCESS == result) { |
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std::lock_guard<std::mutex> lock(global_lock); |
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uint64_t unique_id = global_unique_id++; |
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device_data->unique_id_mapping[unique_id] = reinterpret_cast<uint64_t &>(*pMemory); |
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*pMemory = reinterpret_cast<VkDeviceMemory &>(unique_id); |
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} |
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return result; |
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} |
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VKAPI_ATTR VkResult VKAPI_CALL CreateComputePipelines(VkDevice device, VkPipelineCache pipelineCache, uint32_t createInfoCount, |
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const VkComputePipelineCreateInfo *pCreateInfos, |
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const VkAllocationCallbacks *pAllocator, VkPipeline *pPipelines) { |
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layer_data *my_device_data = get_my_data_ptr(get_dispatch_key(device), layer_data_map); |
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safe_VkComputePipelineCreateInfo *local_pCreateInfos = NULL; |
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if (pCreateInfos) { |
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std::lock_guard<std::mutex> lock(global_lock); |
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local_pCreateInfos = new safe_VkComputePipelineCreateInfo[createInfoCount]; |
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for (uint32_t idx0 = 0; idx0 < createInfoCount; ++idx0) { |
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local_pCreateInfos[idx0].initialize(&pCreateInfos[idx0]); |
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if (pCreateInfos[idx0].basePipelineHandle) { |
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local_pCreateInfos[idx0].basePipelineHandle = |
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(VkPipeline)my_device_data |
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->unique_id_mapping[reinterpret_cast<const uint64_t &>(pCreateInfos[idx0].basePipelineHandle)]; |
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} |
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if (pCreateInfos[idx0].layout) { |
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local_pCreateInfos[idx0].layout = |
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(VkPipelineLayout) |
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my_device_data->unique_id_mapping[reinterpret_cast<const uint64_t &>(pCreateInfos[idx0].layout)]; |
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} |
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if (pCreateInfos[idx0].stage.module) { |
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local_pCreateInfos[idx0].stage.module = |
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(VkShaderModule) |
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my_device_data->unique_id_mapping[reinterpret_cast<const uint64_t &>(pCreateInfos[idx0].stage.module)]; |
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} |
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} |
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} |
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if (pipelineCache) { |
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std::lock_guard<std::mutex> lock(global_lock); |
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pipelineCache = (VkPipelineCache)my_device_data->unique_id_mapping[reinterpret_cast<uint64_t &>(pipelineCache)]; |
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} |
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|
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VkResult result = my_device_data->device_dispatch_table->CreateComputePipelines( |
|
device, pipelineCache, createInfoCount, (const VkComputePipelineCreateInfo *)local_pCreateInfos, pAllocator, pPipelines); |
|
delete[] local_pCreateInfos; |
|
if (VK_SUCCESS == result) { |
|
uint64_t unique_id = 0; |
|
std::lock_guard<std::mutex> lock(global_lock); |
|
for (uint32_t i = 0; i < createInfoCount; ++i) { |
|
unique_id = global_unique_id++; |
|
my_device_data->unique_id_mapping[unique_id] = reinterpret_cast<uint64_t &>(pPipelines[i]); |
|
pPipelines[i] = reinterpret_cast<VkPipeline &>(unique_id); |
|
} |
|
} |
|
return result; |
|
} |
|
|
|
VKAPI_ATTR VkResult VKAPI_CALL CreateGraphicsPipelines(VkDevice device, VkPipelineCache pipelineCache, uint32_t createInfoCount, |
|
const VkGraphicsPipelineCreateInfo *pCreateInfos, |
|
const VkAllocationCallbacks *pAllocator, VkPipeline *pPipelines) { |
|
layer_data *my_device_data = get_my_data_ptr(get_dispatch_key(device), layer_data_map); |
|
safe_VkGraphicsPipelineCreateInfo *local_pCreateInfos = NULL; |
|
if (pCreateInfos) { |
|
local_pCreateInfos = new safe_VkGraphicsPipelineCreateInfo[createInfoCount]; |
|
std::lock_guard<std::mutex> lock(global_lock); |
|
for (uint32_t idx0 = 0; idx0 < createInfoCount; ++idx0) { |
|
local_pCreateInfos[idx0].initialize(&pCreateInfos[idx0]); |
|
if (pCreateInfos[idx0].basePipelineHandle) { |
|
local_pCreateInfos[idx0].basePipelineHandle = |
|
(VkPipeline)my_device_data |
|
->unique_id_mapping[reinterpret_cast<const uint64_t &>(pCreateInfos[idx0].basePipelineHandle)]; |
|
} |
|
if (pCreateInfos[idx0].layout) { |
|
local_pCreateInfos[idx0].layout = |
|
(VkPipelineLayout) |
|
my_device_data->unique_id_mapping[reinterpret_cast<const uint64_t &>(pCreateInfos[idx0].layout)]; |
|
} |
|
if (pCreateInfos[idx0].pStages) { |
|
for (uint32_t idx1 = 0; idx1 < pCreateInfos[idx0].stageCount; ++idx1) { |
|
if (pCreateInfos[idx0].pStages[idx1].module) { |
|
local_pCreateInfos[idx0].pStages[idx1].module = |
|
(VkShaderModule)my_device_data |
|
->unique_id_mapping[reinterpret_cast<const uint64_t &>(pCreateInfos[idx0].pStages[idx1].module)]; |
|
} |
|
} |
|
} |
|
if (pCreateInfos[idx0].renderPass) { |
|
local_pCreateInfos[idx0].renderPass = |
|
(VkRenderPass) |
|
my_device_data->unique_id_mapping[reinterpret_cast<const uint64_t &>(pCreateInfos[idx0].renderPass)]; |
|
} |
|
} |
|
} |
|
if (pipelineCache) { |
|
std::lock_guard<std::mutex> lock(global_lock); |
|
pipelineCache = (VkPipelineCache)my_device_data->unique_id_mapping[reinterpret_cast<uint64_t &>(pipelineCache)]; |
|
} |
|
|
|
VkResult result = my_device_data->device_dispatch_table->CreateGraphicsPipelines( |
|
device, pipelineCache, createInfoCount, (const VkGraphicsPipelineCreateInfo *)local_pCreateInfos, pAllocator, pPipelines); |
|
delete[] local_pCreateInfos; |
|
if (VK_SUCCESS == result) { |
|
uint64_t unique_id = 0; |
|
std::lock_guard<std::mutex> lock(global_lock); |
|
for (uint32_t i = 0; i < createInfoCount; ++i) { |
|
unique_id = global_unique_id++; |
|
my_device_data->unique_id_mapping[unique_id] = reinterpret_cast<uint64_t &>(pPipelines[i]); |
|
pPipelines[i] = reinterpret_cast<VkPipeline &>(unique_id); |
|
} |
|
} |
|
return result; |
|
} |
|
|
|
VKAPI_ATTR VkResult VKAPI_CALL CreateDebugReportCallbackEXT(VkInstance instance, |
|
const VkDebugReportCallbackCreateInfoEXT *pCreateInfo, |
|
const VkAllocationCallbacks *pAllocator, |
|
VkDebugReportCallbackEXT *pMsgCallback) { |
|
layer_data *instance_data = get_my_data_ptr(get_dispatch_key(instance), layer_data_map); |
|
VkResult result = |
|
instance_data->instance_dispatch_table->CreateDebugReportCallbackEXT(instance, pCreateInfo, pAllocator, pMsgCallback); |
|
|
|
if (VK_SUCCESS == result) { |
|
result = layer_create_msg_callback(instance_data->report_data, false, pCreateInfo, pAllocator, pMsgCallback); |
|
} |
|
return result; |
|
} |
|
|
|
VKAPI_ATTR void VKAPI_CALL DestroyDebugReportCallbackEXT(VkInstance instance, VkDebugReportCallbackEXT callback, |
|
const VkAllocationCallbacks *pAllocator) { |
|
layer_data *instance_data = get_my_data_ptr(get_dispatch_key(instance), layer_data_map); |
|
instance_data->instance_dispatch_table->DestroyDebugReportCallbackEXT(instance, callback, pAllocator); |
|
layer_destroy_msg_callback(instance_data->report_data, callback, pAllocator); |
|
} |
|
|
|
VKAPI_ATTR void VKAPI_CALL DebugReportMessageEXT(VkInstance instance, VkDebugReportFlagsEXT flags, |
|
VkDebugReportObjectTypeEXT objType, uint64_t object, size_t location, |
|
int32_t msgCode, const char *pLayerPrefix, const char *pMsg) { |
|
layer_data *instance_data = get_my_data_ptr(get_dispatch_key(instance), layer_data_map); |
|
instance_data->instance_dispatch_table->DebugReportMessageEXT(instance, flags, objType, object, location, msgCode, pLayerPrefix, |
|
pMsg); |
|
} |
|
|
|
VKAPI_ATTR VkResult VKAPI_CALL CreateSwapchainKHR(VkDevice device, const VkSwapchainCreateInfoKHR *pCreateInfo, |
|
const VkAllocationCallbacks *pAllocator, VkSwapchainKHR *pSwapchain) { |
|
layer_data *my_map_data = get_my_data_ptr(get_dispatch_key(device), layer_data_map); |
|
safe_VkSwapchainCreateInfoKHR *local_pCreateInfo = NULL; |
|
if (pCreateInfo) { |
|
std::lock_guard<std::mutex> lock(global_lock); |
|
local_pCreateInfo = new safe_VkSwapchainCreateInfoKHR(pCreateInfo); |
|
local_pCreateInfo->oldSwapchain = |
|
(VkSwapchainKHR)my_map_data->unique_id_mapping[reinterpret_cast<const uint64_t &>(pCreateInfo->oldSwapchain)]; |
|
// Need to pull surface mapping from the instance-level map |
|
layer_data *instance_data = get_my_data_ptr(get_dispatch_key(my_map_data->gpu), layer_data_map); |
|
local_pCreateInfo->surface = |
|
(VkSurfaceKHR)instance_data->unique_id_mapping[reinterpret_cast<const uint64_t &>(pCreateInfo->surface)]; |
|
} |
|
|
|
VkResult result = my_map_data->device_dispatch_table->CreateSwapchainKHR( |
|
device, (const VkSwapchainCreateInfoKHR *)local_pCreateInfo, pAllocator, pSwapchain); |
|
if (local_pCreateInfo) { |
|
delete local_pCreateInfo; |
|
} |
|
if (VK_SUCCESS == result) { |
|
std::lock_guard<std::mutex> lock(global_lock); |
|
uint64_t unique_id = global_unique_id++; |
|
my_map_data->unique_id_mapping[unique_id] = reinterpret_cast<uint64_t &>(*pSwapchain); |
|
*pSwapchain = reinterpret_cast<VkSwapchainKHR &>(unique_id); |
|
} |
|
return result; |
|
} |
|
|
|
VKAPI_ATTR VkResult VKAPI_CALL GetSwapchainImagesKHR(VkDevice device, VkSwapchainKHR swapchain, uint32_t *pSwapchainImageCount, |
|
VkImage *pSwapchainImages) { |
|
layer_data *my_device_data = get_my_data_ptr(get_dispatch_key(device), layer_data_map); |
|
if (VK_NULL_HANDLE != swapchain) { |
|
std::lock_guard<std::mutex> lock(global_lock); |
|
swapchain = (VkSwapchainKHR)my_device_data->unique_id_mapping[reinterpret_cast<uint64_t &>(swapchain)]; |
|
} |
|
VkResult result = |
|
my_device_data->device_dispatch_table->GetSwapchainImagesKHR(device, swapchain, pSwapchainImageCount, pSwapchainImages); |
|
// TODO : Need to add corresponding code to delete these images |
|
if (VK_SUCCESS == result) { |
|
if ((*pSwapchainImageCount > 0) && pSwapchainImages) { |
|
uint64_t unique_id = 0; |
|
std::lock_guard<std::mutex> lock(global_lock); |
|
for (uint32_t i = 0; i < *pSwapchainImageCount; ++i) { |
|
unique_id = global_unique_id++; |
|
my_device_data->unique_id_mapping[unique_id] = reinterpret_cast<uint64_t &>(pSwapchainImages[i]); |
|
pSwapchainImages[i] = reinterpret_cast<VkImage &>(unique_id); |
|
} |
|
} |
|
} |
|
return result; |
|
} |
|
|
|
#ifndef __ANDROID__ |
|
VKAPI_ATTR VkResult VKAPI_CALL GetPhysicalDeviceDisplayPropertiesKHR(VkPhysicalDevice physicalDevice, uint32_t *pPropertyCount, |
|
VkDisplayPropertiesKHR *pProperties) { |
|
layer_data *my_map_data = get_my_data_ptr(get_dispatch_key(physicalDevice), layer_data_map); |
|
safe_VkDisplayPropertiesKHR *local_pProperties = NULL; |
|
{ |
|
std::lock_guard<std::mutex> lock(global_lock); |
|
if (pProperties) { |
|
local_pProperties = new safe_VkDisplayPropertiesKHR[*pPropertyCount]; |
|
for (uint32_t idx0 = 0; idx0 < *pPropertyCount; ++idx0) { |
|
local_pProperties[idx0].initialize(&pProperties[idx0]); |
|
if (pProperties[idx0].display) { |
|
local_pProperties[idx0].display = |
|
(VkDisplayKHR)my_map_data->unique_id_mapping[reinterpret_cast<const uint64_t &>(pProperties[idx0].display)]; |
|
} |
|
} |
|
} |
|
} |
|
|
|
VkResult result = my_map_data->instance_dispatch_table->GetPhysicalDeviceDisplayPropertiesKHR( |
|
physicalDevice, pPropertyCount, (VkDisplayPropertiesKHR *)local_pProperties); |
|
if (result == VK_SUCCESS && pProperties) { |
|
for (uint32_t idx0 = 0; idx0 < *pPropertyCount; ++idx0) { |
|
std::lock_guard<std::mutex> lock(global_lock); |
|
|
|
uint64_t unique_id = global_unique_id++; |
|
my_map_data->unique_id_mapping[unique_id] = reinterpret_cast<uint64_t &>(local_pProperties[idx0].display); |
|
pProperties[idx0].display = reinterpret_cast<VkDisplayKHR &>(unique_id); |
|
pProperties[idx0].displayName = local_pProperties[idx0].displayName; |
|
pProperties[idx0].physicalDimensions = local_pProperties[idx0].physicalDimensions; |
|
pProperties[idx0].physicalResolution = local_pProperties[idx0].physicalResolution; |
|
pProperties[idx0].supportedTransforms = local_pProperties[idx0].supportedTransforms; |
|
pProperties[idx0].planeReorderPossible = local_pProperties[idx0].planeReorderPossible; |
|
pProperties[idx0].persistentContent = local_pProperties[idx0].persistentContent; |
|
} |
|
} |
|
if (local_pProperties) { |
|
delete[] local_pProperties; |
|
} |
|
return result; |
|
} |
|
|
|
VKAPI_ATTR VkResult VKAPI_CALL GetDisplayPlaneSupportedDisplaysKHR(VkPhysicalDevice physicalDevice, uint32_t planeIndex, |
|
uint32_t *pDisplayCount, VkDisplayKHR *pDisplays) { |
|
layer_data *my_map_data = get_my_data_ptr(get_dispatch_key(physicalDevice), layer_data_map); |
|
VkResult result = my_map_data->instance_dispatch_table->GetDisplayPlaneSupportedDisplaysKHR(physicalDevice, planeIndex, |
|
pDisplayCount, pDisplays); |
|
if (VK_SUCCESS == result) { |
|
if ((*pDisplayCount > 0) && pDisplays) { |
|
std::lock_guard<std::mutex> lock(global_lock); |
|
for (uint32_t i = 0; i < *pDisplayCount; i++) { |
|
auto it = my_map_data->unique_id_mapping.find(reinterpret_cast<const uint64_t &>(pDisplays[i])); |
|
assert(it != my_map_data->unique_id_mapping.end()); |
|
pDisplays[i] = reinterpret_cast<VkDisplayKHR &>(it->second); |
|
} |
|
} |
|
} |
|
return result; |
|
} |
|
|
|
VKAPI_ATTR VkResult VKAPI_CALL GetDisplayModePropertiesKHR(VkPhysicalDevice physicalDevice, VkDisplayKHR display, |
|
uint32_t *pPropertyCount, VkDisplayModePropertiesKHR *pProperties) { |
|
layer_data *my_map_data = get_my_data_ptr(get_dispatch_key(physicalDevice), layer_data_map); |
|
safe_VkDisplayModePropertiesKHR *local_pProperties = NULL; |
|
{ |
|
std::lock_guard<std::mutex> lock(global_lock); |
|
display = (VkDisplayKHR)my_map_data->unique_id_mapping[reinterpret_cast<uint64_t &>(display)]; |
|
if (pProperties) { |
|
local_pProperties = new safe_VkDisplayModePropertiesKHR[*pPropertyCount]; |
|
for (uint32_t idx0 = 0; idx0 < *pPropertyCount; ++idx0) { |
|
local_pProperties[idx0].initialize(&pProperties[idx0]); |
|
} |
|
} |
|
} |
|
|
|
VkResult result = my_map_data->instance_dispatch_table->GetDisplayModePropertiesKHR( |
|
physicalDevice, display, pPropertyCount, (VkDisplayModePropertiesKHR *)local_pProperties); |
|
if (result == VK_SUCCESS && pProperties) { |
|
for (uint32_t idx0 = 0; idx0 < *pPropertyCount; ++idx0) { |
|
std::lock_guard<std::mutex> lock(global_lock); |
|
|
|
uint64_t unique_id = global_unique_id++; |
|
my_map_data->unique_id_mapping[unique_id] = reinterpret_cast<uint64_t &>(local_pProperties[idx0].displayMode); |
|
pProperties[idx0].displayMode = reinterpret_cast<VkDisplayModeKHR &>(unique_id); |
|
pProperties[idx0].parameters.visibleRegion.width = local_pProperties[idx0].parameters.visibleRegion.width; |
|
pProperties[idx0].parameters.visibleRegion.height = local_pProperties[idx0].parameters.visibleRegion.height; |
|
pProperties[idx0].parameters.refreshRate = local_pProperties[idx0].parameters.refreshRate; |
|
} |
|
} |
|
if (local_pProperties) { |
|
delete[] local_pProperties; |
|
} |
|
return result; |
|
} |
|
#endif |
|
|
|
} // namespace unique_objects |
|
|
|
// vk_layer_logging.h expects these to be defined |
|
VKAPI_ATTR VkResult VKAPI_CALL vkCreateDebugReportCallbackEXT(VkInstance instance, |
|
const VkDebugReportCallbackCreateInfoEXT *pCreateInfo, |
|
const VkAllocationCallbacks *pAllocator, |
|
VkDebugReportCallbackEXT *pMsgCallback) { |
|
return unique_objects::CreateDebugReportCallbackEXT(instance, pCreateInfo, pAllocator, pMsgCallback); |
|
} |
|
|
|
VKAPI_ATTR void VKAPI_CALL vkDestroyDebugReportCallbackEXT(VkInstance instance, VkDebugReportCallbackEXT msgCallback, |
|
const VkAllocationCallbacks *pAllocator) { |
|
unique_objects::DestroyDebugReportCallbackEXT(instance, msgCallback, pAllocator); |
|
} |
|
|
|
VKAPI_ATTR void VKAPI_CALL vkDebugReportMessageEXT(VkInstance instance, VkDebugReportFlagsEXT flags, |
|
VkDebugReportObjectTypeEXT objType, uint64_t object, size_t location, |
|
int32_t msgCode, const char *pLayerPrefix, const char *pMsg) { |
|
unique_objects::DebugReportMessageEXT(instance, flags, objType, object, location, msgCode, pLayerPrefix, pMsg); |
|
} |
|
|
|
VK_LAYER_EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkEnumerateInstanceExtensionProperties(const char *pLayerName, uint32_t *pCount, |
|
VkExtensionProperties *pProperties) { |
|
return unique_objects::EnumerateInstanceExtensionProperties(pLayerName, pCount, pProperties); |
|
} |
|
|
|
VK_LAYER_EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkEnumerateInstanceLayerProperties(uint32_t *pCount, |
|
VkLayerProperties *pProperties) { |
|
return unique_objects::EnumerateInstanceLayerProperties(pCount, pProperties); |
|
} |
|
|
|
VK_LAYER_EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkEnumerateDeviceLayerProperties(VkPhysicalDevice physicalDevice, uint32_t *pCount, |
|
VkLayerProperties *pProperties) { |
|
assert(physicalDevice == VK_NULL_HANDLE); |
|
return unique_objects::EnumerateDeviceLayerProperties(VK_NULL_HANDLE, pCount, pProperties); |
|
} |
|
|
|
VK_LAYER_EXPORT VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL vkGetDeviceProcAddr(VkDevice dev, const char *funcName) { |
|
return unique_objects::GetDeviceProcAddr(dev, funcName); |
|
} |
|
|
|
VK_LAYER_EXPORT VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL vkGetInstanceProcAddr(VkInstance instance, const char *funcName) { |
|
return unique_objects::GetInstanceProcAddr(instance, funcName); |
|
} |
|
|
|
VK_LAYER_EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkEnumerateDeviceExtensionProperties(VkPhysicalDevice physicalDevice, |
|
const char *pLayerName, uint32_t *pCount, |
|
VkExtensionProperties *pProperties) { |
|
assert(physicalDevice == VK_NULL_HANDLE); |
|
return unique_objects::EnumerateDeviceExtensionProperties(VK_NULL_HANDLE, pLayerName, pCount, pProperties); |
|
}
|
|
|