
Files to compile: 451 => 232 Signed-off-by: Yiwei Zhang <zzyiwei@chromium.org> Reviewed-by: Yonggang Luo <luoyonggang@gmail.com> Part-of: <https://gitlab.freedesktop.org/mesa/mesa/-/merge_requests/26783>
636 lines
24 KiB
C
636 lines
24 KiB
C
/*
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* Copyright © 2021 Intel Corporation
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*
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* Permission is hereby granted, free of charge, to any person obtaining a
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* copy of this software and associated documentation files (the "Software"),
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* to deal in the Software without restriction, including without limitation
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* the rights to use, copy, modify, merge, publish, distribute, sublicense,
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* and/or sell copies of the Software, and to permit persons to whom the
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* Software is furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice (including the next
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* paragraph) shall be included in all copies or substantial portions of the
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* Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
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* IN THE SOFTWARE.
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*/
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#include "vk_instance.h"
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#include "util/libdrm.h"
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#include "util/perf/cpu_trace.h"
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#include "vk_alloc.h"
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#include "vk_common_entrypoints.h"
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#include "vk_dispatch_trampolines.h"
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#include "vk_log.h"
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#include "vk_util.h"
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#include "vk_debug_utils.h"
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#include "vk_physical_device.h"
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#define VERSION_IS_1_0(version) \
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(VK_API_VERSION_MAJOR(version) == 1 && VK_API_VERSION_MINOR(version) == 0)
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static const struct debug_control trace_options[] = {
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{"rmv", VK_TRACE_MODE_RMV},
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{NULL, 0},
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};
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VkResult
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vk_instance_init(struct vk_instance *instance,
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const struct vk_instance_extension_table *supported_extensions,
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const struct vk_instance_dispatch_table *dispatch_table,
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const VkInstanceCreateInfo *pCreateInfo,
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const VkAllocationCallbacks *alloc)
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{
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memset(instance, 0, sizeof(*instance));
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vk_object_base_instance_init(instance, &instance->base, VK_OBJECT_TYPE_INSTANCE);
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instance->alloc = *alloc;
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util_cpu_trace_init();
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/* VK_EXT_debug_utils */
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/* These messengers will only be used during vkCreateInstance or
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* vkDestroyInstance calls. We do this first so that it's safe to use
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* vk_errorf and friends.
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*/
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list_inithead(&instance->debug_utils.instance_callbacks);
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vk_foreach_struct_const(ext, pCreateInfo->pNext) {
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if (ext->sType ==
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VK_STRUCTURE_TYPE_DEBUG_UTILS_MESSENGER_CREATE_INFO_EXT) {
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const VkDebugUtilsMessengerCreateInfoEXT *debugMessengerCreateInfo =
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(const VkDebugUtilsMessengerCreateInfoEXT *)ext;
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struct vk_debug_utils_messenger *messenger =
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vk_alloc2(alloc, alloc, sizeof(struct vk_debug_utils_messenger), 8,
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VK_SYSTEM_ALLOCATION_SCOPE_OBJECT);
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if (!messenger)
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return vk_error(instance, VK_ERROR_OUT_OF_HOST_MEMORY);
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vk_object_base_instance_init(instance, &messenger->base,
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VK_OBJECT_TYPE_DEBUG_UTILS_MESSENGER_EXT);
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messenger->alloc = *alloc;
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messenger->severity = debugMessengerCreateInfo->messageSeverity;
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messenger->type = debugMessengerCreateInfo->messageType;
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messenger->callback = debugMessengerCreateInfo->pfnUserCallback;
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messenger->data = debugMessengerCreateInfo->pUserData;
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list_addtail(&messenger->link,
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&instance->debug_utils.instance_callbacks);
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}
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}
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uint32_t instance_version = VK_API_VERSION_1_0;
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if (dispatch_table->EnumerateInstanceVersion)
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dispatch_table->EnumerateInstanceVersion(&instance_version);
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instance->app_info = (struct vk_app_info) { .api_version = 0 };
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if (pCreateInfo->pApplicationInfo) {
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const VkApplicationInfo *app = pCreateInfo->pApplicationInfo;
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instance->app_info.app_name =
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vk_strdup(&instance->alloc, app->pApplicationName,
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VK_SYSTEM_ALLOCATION_SCOPE_INSTANCE);
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instance->app_info.app_version = app->applicationVersion;
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instance->app_info.engine_name =
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vk_strdup(&instance->alloc, app->pEngineName,
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VK_SYSTEM_ALLOCATION_SCOPE_INSTANCE);
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instance->app_info.engine_version = app->engineVersion;
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instance->app_info.api_version = app->apiVersion;
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}
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/* From the Vulkan 1.2.199 spec:
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*
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* "Note:
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*
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* Providing a NULL VkInstanceCreateInfo::pApplicationInfo or providing
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* an apiVersion of 0 is equivalent to providing an apiVersion of
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* VK_MAKE_API_VERSION(0,1,0,0)."
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*/
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if (instance->app_info.api_version == 0)
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instance->app_info.api_version = VK_API_VERSION_1_0;
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/* From the Vulkan 1.2.199 spec:
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*
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* VUID-VkApplicationInfo-apiVersion-04010
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*
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* "If apiVersion is not 0, then it must be greater than or equal to
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* VK_API_VERSION_1_0"
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*/
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assert(instance->app_info.api_version >= VK_API_VERSION_1_0);
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/* From the Vulkan 1.2.199 spec:
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*
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* "Vulkan 1.0 implementations were required to return
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* VK_ERROR_INCOMPATIBLE_DRIVER if apiVersion was larger than 1.0.
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* Implementations that support Vulkan 1.1 or later must not return
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* VK_ERROR_INCOMPATIBLE_DRIVER for any value of apiVersion."
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*/
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if (VERSION_IS_1_0(instance_version) &&
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!VERSION_IS_1_0(instance->app_info.api_version))
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return VK_ERROR_INCOMPATIBLE_DRIVER;
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instance->supported_extensions = supported_extensions;
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for (uint32_t i = 0; i < pCreateInfo->enabledExtensionCount; i++) {
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int idx;
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for (idx = 0; idx < VK_INSTANCE_EXTENSION_COUNT; idx++) {
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if (strcmp(pCreateInfo->ppEnabledExtensionNames[i],
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vk_instance_extensions[idx].extensionName) == 0)
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break;
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}
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if (idx >= VK_INSTANCE_EXTENSION_COUNT)
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return vk_errorf(instance, VK_ERROR_EXTENSION_NOT_PRESENT,
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"%s not supported",
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pCreateInfo->ppEnabledExtensionNames[i]);
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if (!supported_extensions->extensions[idx])
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return vk_errorf(instance, VK_ERROR_EXTENSION_NOT_PRESENT,
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"%s not supported",
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pCreateInfo->ppEnabledExtensionNames[i]);
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#ifdef ANDROID_STRICT
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if (!vk_android_allowed_instance_extensions.extensions[idx])
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return vk_errorf(instance, VK_ERROR_EXTENSION_NOT_PRESENT,
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"%s not supported",
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pCreateInfo->ppEnabledExtensionNames[i]);
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#endif
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instance->enabled_extensions.extensions[idx] = true;
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}
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instance->dispatch_table = *dispatch_table;
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/* Add common entrypoints without overwriting driver-provided ones. */
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vk_instance_dispatch_table_from_entrypoints(
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&instance->dispatch_table, &vk_common_instance_entrypoints, false);
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if (mtx_init(&instance->debug_report.callbacks_mutex, mtx_plain) != 0)
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return vk_error(instance, VK_ERROR_INITIALIZATION_FAILED);
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list_inithead(&instance->debug_report.callbacks);
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if (mtx_init(&instance->debug_utils.callbacks_mutex, mtx_plain) != 0) {
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mtx_destroy(&instance->debug_report.callbacks_mutex);
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return vk_error(instance, VK_ERROR_INITIALIZATION_FAILED);
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}
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list_inithead(&instance->debug_utils.callbacks);
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list_inithead(&instance->physical_devices.list);
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if (mtx_init(&instance->physical_devices.mutex, mtx_plain) != 0) {
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mtx_destroy(&instance->debug_report.callbacks_mutex);
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mtx_destroy(&instance->debug_utils.callbacks_mutex);
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return vk_error(instance, VK_ERROR_INITIALIZATION_FAILED);
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}
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instance->trace_mode = parse_debug_string(getenv("MESA_VK_TRACE"), trace_options);
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instance->trace_frame = (uint32_t)debug_get_num_option("MESA_VK_TRACE_FRAME", 0xFFFFFFFF);
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instance->trace_trigger_file = getenv("MESA_VK_TRACE_TRIGGER");
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vk_compiler_cache_init();
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return VK_SUCCESS;
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}
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static void
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destroy_physical_devices(struct vk_instance *instance)
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{
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list_for_each_entry_safe(struct vk_physical_device, pdevice,
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&instance->physical_devices.list, link) {
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list_del(&pdevice->link);
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instance->physical_devices.destroy(pdevice);
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}
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}
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void
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vk_instance_finish(struct vk_instance *instance)
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{
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destroy_physical_devices(instance);
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vk_compiler_cache_finish();
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if (unlikely(!list_is_empty(&instance->debug_utils.callbacks))) {
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list_for_each_entry_safe(struct vk_debug_utils_messenger, messenger,
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&instance->debug_utils.callbacks, link) {
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list_del(&messenger->link);
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vk_object_base_finish(&messenger->base);
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vk_free2(&instance->alloc, &messenger->alloc, messenger);
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}
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}
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if (unlikely(!list_is_empty(&instance->debug_utils.instance_callbacks))) {
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list_for_each_entry_safe(struct vk_debug_utils_messenger, messenger,
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&instance->debug_utils.instance_callbacks,
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link) {
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list_del(&messenger->link);
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vk_object_base_finish(&messenger->base);
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vk_free2(&instance->alloc, &messenger->alloc, messenger);
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}
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}
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mtx_destroy(&instance->debug_report.callbacks_mutex);
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mtx_destroy(&instance->debug_utils.callbacks_mutex);
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mtx_destroy(&instance->physical_devices.mutex);
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vk_free(&instance->alloc, (char *)instance->app_info.app_name);
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vk_free(&instance->alloc, (char *)instance->app_info.engine_name);
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vk_object_base_finish(&instance->base);
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}
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VkResult
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vk_enumerate_instance_extension_properties(
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const struct vk_instance_extension_table *supported_extensions,
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uint32_t *pPropertyCount,
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VkExtensionProperties *pProperties)
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{
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VK_OUTARRAY_MAKE_TYPED(VkExtensionProperties, out, pProperties, pPropertyCount);
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for (int i = 0; i < VK_INSTANCE_EXTENSION_COUNT; i++) {
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if (!supported_extensions->extensions[i])
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continue;
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#ifdef ANDROID_STRICT
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if (!vk_android_allowed_instance_extensions.extensions[i])
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continue;
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#endif
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vk_outarray_append_typed(VkExtensionProperties, &out, prop) {
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*prop = vk_instance_extensions[i];
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}
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}
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return vk_outarray_status(&out);
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}
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PFN_vkVoidFunction
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vk_instance_get_proc_addr(const struct vk_instance *instance,
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const struct vk_instance_entrypoint_table *entrypoints,
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const char *name)
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{
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PFN_vkVoidFunction func;
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/* The Vulkan 1.0 spec for vkGetInstanceProcAddr has a table of exactly
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* when we have to return valid function pointers, NULL, or it's left
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* undefined. See the table for exact details.
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*/
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if (name == NULL)
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return NULL;
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#define LOOKUP_VK_ENTRYPOINT(entrypoint) \
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if (strcmp(name, "vk" #entrypoint) == 0) \
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return (PFN_vkVoidFunction)entrypoints->entrypoint
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LOOKUP_VK_ENTRYPOINT(EnumerateInstanceExtensionProperties);
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LOOKUP_VK_ENTRYPOINT(EnumerateInstanceLayerProperties);
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LOOKUP_VK_ENTRYPOINT(EnumerateInstanceVersion);
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LOOKUP_VK_ENTRYPOINT(CreateInstance);
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/* GetInstanceProcAddr() can also be called with a NULL instance.
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* See https://gitlab.khronos.org/vulkan/vulkan/issues/2057
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*/
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LOOKUP_VK_ENTRYPOINT(GetInstanceProcAddr);
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#undef LOOKUP_VK_ENTRYPOINT
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/* Beginning with ICD interface v7, the following functions can also be
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* retrieved via vk_icdGetInstanceProcAddr.
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*/
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if (strcmp(name, "vk_icdNegotiateLoaderICDInterfaceVersion") == 0)
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return (PFN_vkVoidFunction)vk_icdNegotiateLoaderICDInterfaceVersion;
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if (strcmp(name, "vk_icdGetPhysicalDeviceProcAddr") == 0)
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return (PFN_vkVoidFunction)vk_icdGetPhysicalDeviceProcAddr;
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#ifdef _WIN32
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if (strcmp(name, "vk_icdEnumerateAdapterPhysicalDevices") == 0)
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return (PFN_vkVoidFunction)vk_icdEnumerateAdapterPhysicalDevices;
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#endif
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if (instance == NULL)
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return NULL;
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func = vk_instance_dispatch_table_get_if_supported(&instance->dispatch_table,
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name,
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instance->app_info.api_version,
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&instance->enabled_extensions);
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if (func != NULL)
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return func;
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func = vk_physical_device_dispatch_table_get_if_supported(&vk_physical_device_trampolines,
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name,
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instance->app_info.api_version,
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&instance->enabled_extensions);
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if (func != NULL)
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return func;
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func = vk_device_dispatch_table_get_if_supported(&vk_device_trampolines,
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name,
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instance->app_info.api_version,
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&instance->enabled_extensions,
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NULL);
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if (func != NULL)
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return func;
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return NULL;
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}
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PFN_vkVoidFunction
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vk_instance_get_proc_addr_unchecked(const struct vk_instance *instance,
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const char *name)
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{
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PFN_vkVoidFunction func;
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if (instance == NULL || name == NULL)
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return NULL;
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func = vk_instance_dispatch_table_get(&instance->dispatch_table, name);
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if (func != NULL)
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return func;
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func = vk_physical_device_dispatch_table_get(
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&vk_physical_device_trampolines, name);
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if (func != NULL)
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return func;
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func = vk_device_dispatch_table_get(&vk_device_trampolines, name);
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if (func != NULL)
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return func;
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return NULL;
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}
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PFN_vkVoidFunction
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vk_instance_get_physical_device_proc_addr(const struct vk_instance *instance,
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const char *name)
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{
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if (instance == NULL || name == NULL)
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return NULL;
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return vk_physical_device_dispatch_table_get_if_supported(&vk_physical_device_trampolines,
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name,
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instance->app_info.api_version,
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&instance->enabled_extensions);
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}
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void
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vk_instance_add_driver_trace_modes(struct vk_instance *instance,
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const struct debug_control *modes)
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{
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instance->trace_mode |= parse_debug_string(getenv("MESA_VK_TRACE"), modes);
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}
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static VkResult
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enumerate_drm_physical_devices_locked(struct vk_instance *instance)
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{
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/* TODO: Check for more devices ? */
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drmDevicePtr devices[8];
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int max_devices = drmGetDevices2(0, devices, ARRAY_SIZE(devices));
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if (max_devices < 1)
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return VK_SUCCESS;
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VkResult result;
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for (uint32_t i = 0; i < (uint32_t)max_devices; i++) {
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struct vk_physical_device *pdevice;
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result = instance->physical_devices.try_create_for_drm(instance, devices[i], &pdevice);
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/* Incompatible DRM device, skip. */
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if (result == VK_ERROR_INCOMPATIBLE_DRIVER) {
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result = VK_SUCCESS;
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continue;
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}
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/* Error creating the physical device, report the error. */
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if (result != VK_SUCCESS)
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break;
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list_addtail(&pdevice->link, &instance->physical_devices.list);
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}
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drmFreeDevices(devices, max_devices);
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return result;
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}
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static VkResult
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enumerate_physical_devices_locked(struct vk_instance *instance)
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{
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if (instance->physical_devices.enumerate) {
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VkResult result = instance->physical_devices.enumerate(instance);
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if (result != VK_ERROR_INCOMPATIBLE_DRIVER)
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return result;
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}
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VkResult result = VK_SUCCESS;
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if (instance->physical_devices.try_create_for_drm) {
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result = enumerate_drm_physical_devices_locked(instance);
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if (result != VK_SUCCESS) {
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destroy_physical_devices(instance);
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return result;
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}
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}
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return result;
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}
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static VkResult
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enumerate_physical_devices(struct vk_instance *instance)
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{
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VkResult result = VK_SUCCESS;
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mtx_lock(&instance->physical_devices.mutex);
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if (!instance->physical_devices.enumerated) {
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result = enumerate_physical_devices_locked(instance);
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if (result == VK_SUCCESS)
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instance->physical_devices.enumerated = true;
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}
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mtx_unlock(&instance->physical_devices.mutex);
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return result;
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}
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VKAPI_ATTR VkResult VKAPI_CALL
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vk_common_EnumeratePhysicalDevices(VkInstance _instance, uint32_t *pPhysicalDeviceCount,
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VkPhysicalDevice *pPhysicalDevices)
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{
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VK_FROM_HANDLE(vk_instance, instance, _instance);
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VK_OUTARRAY_MAKE_TYPED(VkPhysicalDevice, out, pPhysicalDevices, pPhysicalDeviceCount);
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VkResult result = enumerate_physical_devices(instance);
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if (result != VK_SUCCESS)
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return result;
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list_for_each_entry(struct vk_physical_device, pdevice,
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&instance->physical_devices.list, link) {
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vk_outarray_append_typed(VkPhysicalDevice, &out, element) {
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*element = vk_physical_device_to_handle(pdevice);
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}
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}
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return vk_outarray_status(&out);
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}
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#ifdef _WIN32
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/* Note: This entrypoint is not exported from ICD DLLs, and is only exposed via
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* vk_icdGetInstanceProcAddr for loaders with interface v7. This is to avoid
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* a design flaw in the original loader implementation, which prevented enumeration
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* of physical devices that didn't have a LUID. This flaw was fixed prior to the
|
|
* implementation of v7, so v7 loaders are unaffected, and it's safe to support this.
|
|
*/
|
|
VKAPI_ATTR VkResult VKAPI_CALL
|
|
vk_icdEnumerateAdapterPhysicalDevices(VkInstance _instance, LUID adapterLUID,
|
|
uint32_t *pPhysicalDeviceCount,
|
|
VkPhysicalDevice *pPhysicalDevices)
|
|
{
|
|
VK_FROM_HANDLE(vk_instance, instance, _instance);
|
|
VK_OUTARRAY_MAKE_TYPED(VkPhysicalDevice, out, pPhysicalDevices, pPhysicalDeviceCount);
|
|
|
|
VkResult result = enumerate_physical_devices(instance);
|
|
if (result != VK_SUCCESS)
|
|
return result;
|
|
|
|
list_for_each_entry(struct vk_physical_device, pdevice,
|
|
&instance->physical_devices.list, link) {
|
|
if (pdevice->properties.deviceLUIDValid &&
|
|
memcmp(pdevice->properties.deviceLUID, &adapterLUID, sizeof(adapterLUID)) == 0) {
|
|
vk_outarray_append_typed(VkPhysicalDevice, &out, element) {
|
|
*element = vk_physical_device_to_handle(pdevice);
|
|
}
|
|
}
|
|
}
|
|
|
|
return vk_outarray_status(&out);
|
|
}
|
|
#endif
|
|
|
|
VKAPI_ATTR VkResult VKAPI_CALL
|
|
vk_common_EnumeratePhysicalDeviceGroups(VkInstance _instance, uint32_t *pGroupCount,
|
|
VkPhysicalDeviceGroupProperties *pGroupProperties)
|
|
{
|
|
VK_FROM_HANDLE(vk_instance, instance, _instance);
|
|
VK_OUTARRAY_MAKE_TYPED(VkPhysicalDeviceGroupProperties, out, pGroupProperties,
|
|
pGroupCount);
|
|
|
|
VkResult result = enumerate_physical_devices(instance);
|
|
if (result != VK_SUCCESS)
|
|
return result;
|
|
|
|
list_for_each_entry(struct vk_physical_device, pdevice,
|
|
&instance->physical_devices.list, link) {
|
|
vk_outarray_append_typed(VkPhysicalDeviceGroupProperties, &out, p) {
|
|
p->physicalDeviceCount = 1;
|
|
memset(p->physicalDevices, 0, sizeof(p->physicalDevices));
|
|
p->physicalDevices[0] = vk_physical_device_to_handle(pdevice);
|
|
p->subsetAllocation = false;
|
|
}
|
|
}
|
|
|
|
return vk_outarray_status(&out);
|
|
}
|
|
|
|
/* For Windows, PUBLIC is default-defined to __declspec(dllexport) to automatically export the
|
|
* public entrypoints from a DLL. However, this declspec needs to match between declaration and
|
|
* definition, and this attribute is not present on the prototypes specified in vk_icd.h. Instead,
|
|
* we'll use a .def file to manually export these entrypoints on Windows.
|
|
*/
|
|
#ifdef _WIN32
|
|
#undef PUBLIC
|
|
#define PUBLIC
|
|
#endif
|
|
|
|
/* With version 4+ of the loader interface the ICD should expose
|
|
* vk_icdGetPhysicalDeviceProcAddr()
|
|
*/
|
|
PUBLIC VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL
|
|
vk_icdGetPhysicalDeviceProcAddr(VkInstance _instance,
|
|
const char *pName)
|
|
{
|
|
VK_FROM_HANDLE(vk_instance, instance, _instance);
|
|
return vk_instance_get_physical_device_proc_addr(instance, pName);
|
|
}
|
|
|
|
static uint32_t vk_icd_version = 7;
|
|
|
|
uint32_t
|
|
vk_get_negotiated_icd_version(void)
|
|
{
|
|
return vk_icd_version;
|
|
}
|
|
|
|
PUBLIC VKAPI_ATTR VkResult VKAPI_CALL
|
|
vk_icdNegotiateLoaderICDInterfaceVersion(uint32_t *pSupportedVersion)
|
|
{
|
|
/* For the full details on loader interface versioning, see
|
|
* <https://github.com/KhronosGroup/Vulkan-LoaderAndValidationLayers/blob/master/loader/LoaderAndLayerInterface.md>.
|
|
* What follows is a condensed summary, to help you navigate the large and
|
|
* confusing official doc.
|
|
*
|
|
* - Loader interface v0 is incompatible with later versions. We don't
|
|
* support it.
|
|
*
|
|
* - In loader interface v1:
|
|
* - The first ICD entrypoint called by the loader is
|
|
* vk_icdGetInstanceProcAddr(). The ICD must statically expose this
|
|
* entrypoint.
|
|
* - The ICD must statically expose no other Vulkan symbol unless it is
|
|
* linked with -Bsymbolic.
|
|
* - Each dispatchable Vulkan handle created by the ICD must be
|
|
* a pointer to a struct whose first member is VK_LOADER_DATA. The
|
|
* ICD must initialize VK_LOADER_DATA.loadMagic to ICD_LOADER_MAGIC.
|
|
* - The loader implements vkCreate{PLATFORM}SurfaceKHR() and
|
|
* vkDestroySurfaceKHR(). The ICD must be capable of working with
|
|
* such loader-managed surfaces.
|
|
*
|
|
* - Loader interface v2 differs from v1 in:
|
|
* - The first ICD entrypoint called by the loader is
|
|
* vk_icdNegotiateLoaderICDInterfaceVersion(). The ICD must
|
|
* statically expose this entrypoint.
|
|
*
|
|
* - Loader interface v3 differs from v2 in:
|
|
* - The ICD must implement vkCreate{PLATFORM}SurfaceKHR(),
|
|
* vkDestroySurfaceKHR(), and other API which uses VKSurfaceKHR,
|
|
* because the loader no longer does so.
|
|
*
|
|
* - Loader interface v4 differs from v3 in:
|
|
* - The ICD must implement vk_icdGetPhysicalDeviceProcAddr().
|
|
*
|
|
* - Loader interface v5 differs from v4 in:
|
|
* - The ICD must support Vulkan API version 1.1 and must not return
|
|
* VK_ERROR_INCOMPATIBLE_DRIVER from vkCreateInstance() unless a
|
|
* Vulkan Loader with interface v4 or smaller is being used and the
|
|
* application provides an API version that is greater than 1.0.
|
|
*
|
|
* - Loader interface v6 differs from v5 in:
|
|
* - Windows ICDs may export vk_icdEnumerateAdapterPhysicalDevices,
|
|
* to tie a physical device to a WDDM adapter LUID. This allows the
|
|
* loader to sort physical devices according to the same policy as other
|
|
* graphics APIs.
|
|
* - Note: A design flaw in the loader implementation of v6 means we do
|
|
* not actually support returning this function to v6 loaders. See the
|
|
* comments around the implementation above. It's still fine to report
|
|
* version number 6 without this method being implemented, however.
|
|
*
|
|
* - Loader interface v7 differs from v6 in:
|
|
* - If implemented, the ICD must return the following functions via
|
|
* vk_icdGetInstanceProcAddr:
|
|
* - vk_icdNegotiateLoaderICDInterfaceVersion
|
|
* - vk_icdGetPhysicalDeviceProcAddr
|
|
* - vk_icdEnumerateAdapterPhysicalDevices
|
|
* Exporting these functions from the ICD is optional. If
|
|
* vk_icdNegotiateLoaderICDInterfaceVersion is not exported from the
|
|
* module, or if VK_LUNARG_direct_driver_loading is being used, then
|
|
* vk_icdGetInstanceProcAddr will be the first method called, to query
|
|
* for vk_icdNegotiateLoaderICDInterfaceVersion.
|
|
*/
|
|
vk_icd_version = MIN2(vk_icd_version, *pSupportedVersion);
|
|
*pSupportedVersion = vk_icd_version;
|
|
return VK_SUCCESS;
|
|
}
|