/* * Copyright © 2023 Intel Corporation * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), * to deal in the Software without restriction, including without limitation * the rights to use, copy, modify, merge, publish, distribute, sublicense, * and/or sell copies of the Software, and to permit persons to whom the * Software is furnished to do so, subject to the following conditions: * * The above copyright notice and this permission notice shall be included * in all copies or substantial portions of the Software. * * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER * DEALINGS IN THE SOFTWARE. */ #include "i915/anv_queue.h" #include "anv_private.h" #include "common/i915/intel_engine.h" #include "common/i915/intel_gem.h" #include "common/intel_gem.h" #include "i915/anv_device.h" #include "drm-uapi/i915_drm.h" VkResult anv_i915_create_engine(struct anv_device *device, struct anv_queue *queue, const VkDeviceQueueCreateInfo *pCreateInfo) { struct anv_physical_device *physical = device->physical; struct anv_queue_family *queue_family = &physical->queue.families[pCreateInfo->queueFamilyIndex]; if (device->physical->engine_info == NULL) { switch (queue_family->engine_class) { case INTEL_ENGINE_CLASS_COPY: queue->exec_flags = I915_EXEC_BLT; break; case INTEL_ENGINE_CLASS_RENDER: queue->exec_flags = I915_EXEC_RENDER; break; case INTEL_ENGINE_CLASS_VIDEO: /* We want VCS0 (with ring1) for HW lacking HEVC on VCS1. */ queue->exec_flags = I915_EXEC_BSD | I915_EXEC_BSD_RING1; break; default: unreachable("Unsupported legacy engine"); } } else if (device->physical->has_vm_control) { assert(pCreateInfo->queueFamilyIndex < physical->queue.family_count); enum intel_engine_class engine_classes[1]; enum intel_gem_create_context_flags flags = 0; int val = 0; engine_classes[0] = queue_family->engine_class; if (pCreateInfo->flags & VK_DEVICE_QUEUE_CREATE_PROTECTED_BIT) flags |= INTEL_GEM_CREATE_CONTEXT_EXT_PROTECTED_FLAG; if (device->physical->instance->force_guc_low_latency && i915_gem_get_param(device->fd, I915_PARAM_HAS_CONTEXT_FREQ_HINT, &val) && (val == 1)) { flags |= INTEL_GEM_CREATE_CONTEXT_EXT_LOW_LATENCY_FLAG; } if (!intel_gem_create_context_engines(device->fd, flags, physical->engine_info, 1, engine_classes, device->vm_id, (uint32_t *)&queue->context_id)) return vk_errorf(device, VK_ERROR_INITIALIZATION_FAILED, "engine creation failed"); /* Create a companion RCS logical engine to support MSAA copy/clear * operation on compute/copy engine. */ if (queue_family->engine_class == INTEL_ENGINE_CLASS_COPY || queue_family->engine_class == INTEL_ENGINE_CLASS_COMPUTE) { uint32_t *context_id = (uint32_t *)&queue->companion_rcs_id; engine_classes[0] = INTEL_ENGINE_CLASS_RENDER; if (!intel_gem_create_context_engines(device->fd, flags, physical->engine_info, 1, engine_classes, device->vm_id, context_id)) return vk_errorf(device, VK_ERROR_INITIALIZATION_FAILED, "companion RCS engine creation failed"); } /* Check if client specified queue priority. */ const VkDeviceQueueGlobalPriorityCreateInfoKHR *queue_priority = vk_find_struct_const(pCreateInfo->pNext, DEVICE_QUEUE_GLOBAL_PRIORITY_CREATE_INFO_KHR); VkResult result = anv_i915_set_queue_parameters(device, queue->context_id, queue_priority); if (result != VK_SUCCESS) { intel_gem_destroy_context(device->fd, queue->context_id); if (queue->companion_rcs_id != 0) { intel_gem_destroy_context(device->fd, queue->companion_rcs_id); } return result; } } else { /* When using the new engine creation uAPI, the exec_flags value is the * index of the engine in the group specified at GEM context creation. */ queue->exec_flags = device->queue_count; } return VK_SUCCESS; } void anv_i915_destroy_engine(struct anv_device *device, struct anv_queue *queue) { if (device->physical->has_vm_control) { intel_gem_destroy_context(device->fd, queue->context_id); if (queue->companion_rcs_id != 0) { intel_gem_destroy_context(device->fd, queue->companion_rcs_id); } } }