mirror of https://gitee.com/openkylin/linux.git
drm/i915/gvt: add intel vgpu types support
By providing predefined vGPU types, users can choose which type a vgpu to create and use, without specifying detailed parameters. Signed-off-by: Zhenyu Wang <zhenyuw@linux.intel.com> Signed-off-by: Jike Song <jike.song@intel.com>
This commit is contained in:
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c754936fe6
commit
1f31c82948
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@ -193,6 +193,8 @@ void intel_gvt_clean_device(struct drm_i915_private *dev_priv)
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intel_gvt_clean_mmio_info(gvt);
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intel_gvt_free_firmware(gvt);
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intel_gvt_clean_vgpu_types(gvt);
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kfree(dev_priv->gvt);
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dev_priv->gvt = NULL;
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}
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@ -270,10 +272,17 @@ int intel_gvt_init_device(struct drm_i915_private *dev_priv)
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if (ret)
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goto out_clean_cmd_parser;
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gvt_dbg_core("gvt device creation is done\n");
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ret = intel_gvt_init_vgpu_types(gvt);
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if (ret)
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goto out_clean_thread;
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gvt_dbg_core("gvt device initialization is done\n");
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dev_priv->gvt = gvt;
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return 0;
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out_clean_thread:
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clean_service_thread(gvt);
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out_clean_cmd_parser:
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intel_gvt_clean_cmd_parser(gvt);
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out_clean_sched_policy:
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@ -190,6 +190,16 @@ struct intel_gvt_opregion {
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u32 opregion_pa;
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};
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#define NR_MAX_INTEL_VGPU_TYPES 20
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struct intel_vgpu_type {
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char name[16];
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unsigned int max_instance;
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unsigned int avail_instance;
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unsigned int low_gm_size;
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unsigned int high_gm_size;
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unsigned int fence;
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};
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struct intel_gvt {
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struct mutex lock;
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struct drm_i915_private *dev_priv;
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@ -205,6 +215,8 @@ struct intel_gvt {
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struct intel_gvt_opregion opregion;
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struct intel_gvt_workload_scheduler scheduler;
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DECLARE_HASHTABLE(cmd_table, GVT_CMD_HASH_BITS);
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struct intel_vgpu_type *types;
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unsigned int num_types;
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struct task_struct *service_thread;
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wait_queue_head_t service_thread_wq;
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@ -230,6 +242,14 @@ static inline void intel_gvt_request_service(struct intel_gvt *gvt,
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void intel_gvt_free_firmware(struct intel_gvt *gvt);
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int intel_gvt_load_firmware(struct intel_gvt *gvt);
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/* Aperture/GM space definitions for GVT device */
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#define MB_TO_BYTES(mb) ((mb) << 20ULL)
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#define BYTES_TO_MB(b) ((b) >> 20ULL)
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#define HOST_LOW_GM_SIZE MB_TO_BYTES(128)
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#define HOST_HIGH_GM_SIZE MB_TO_BYTES(384)
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#define HOST_FENCE 4
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/* Aperture/GM space definitions for GVT device */
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#define gvt_aperture_sz(gvt) (gvt->dev_priv->ggtt.mappable_end)
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#define gvt_aperture_pa_base(gvt) (gvt->dev_priv->ggtt.mappable_base)
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@ -330,12 +350,14 @@ static inline void intel_vgpu_write_pci_bar(struct intel_vgpu *vgpu,
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}
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}
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struct intel_vgpu *intel_gvt_create_vgpu(struct intel_gvt *gvt,
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struct intel_vgpu_creation_params *
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param);
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int intel_gvt_init_vgpu_types(struct intel_gvt *gvt);
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void intel_gvt_clean_vgpu_types(struct intel_gvt *gvt);
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struct intel_vgpu *intel_gvt_create_vgpu(struct intel_gvt *gvt,
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struct intel_vgpu_type *type);
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void intel_gvt_destroy_vgpu(struct intel_vgpu *vgpu);
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/* validating GM functions */
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#define vgpu_gmadr_is_aperture(vgpu, gmadr) \
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((gmadr >= vgpu_aperture_gmadr_base(vgpu)) && \
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@ -132,6 +132,106 @@ void populate_pvinfo_page(struct intel_vgpu *vgpu)
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WARN_ON(sizeof(struct vgt_if) != VGT_PVINFO_SIZE);
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}
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/**
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* intel_gvt_init_vgpu_types - initialize vGPU type list
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* @gvt : GVT device
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*
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* Initialize vGPU type list based on available resource.
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*
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*/
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int intel_gvt_init_vgpu_types(struct intel_gvt *gvt)
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{
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unsigned int num_types;
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unsigned int i, low_avail;
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unsigned int min_low;
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/* vGPU type name is defined as GVTg_Vx_y which contains
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* physical GPU generation type and 'y' means maximum vGPU
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* instances user can create on one physical GPU for this
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* type.
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*
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* Depend on physical SKU resource, might see vGPU types like
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* GVTg_V4_8, GVTg_V4_4, GVTg_V4_2, etc. We can create
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* different types of vGPU on same physical GPU depending on
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* available resource. Each vGPU type will have "avail_instance"
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* to indicate how many vGPU instance can be created for this
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* type.
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*
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* Currently use static size here as we init type earlier..
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*/
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low_avail = MB_TO_BYTES(256) - HOST_LOW_GM_SIZE;
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num_types = 4;
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gvt->types = kzalloc(num_types * sizeof(struct intel_vgpu_type),
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GFP_KERNEL);
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if (!gvt->types)
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return -ENOMEM;
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min_low = MB_TO_BYTES(32);
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for (i = 0; i < num_types; ++i) {
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if (low_avail / min_low == 0)
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break;
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gvt->types[i].low_gm_size = min_low;
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gvt->types[i].high_gm_size = 3 * gvt->types[i].low_gm_size;
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gvt->types[i].fence = 4;
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gvt->types[i].max_instance = low_avail / min_low;
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gvt->types[i].avail_instance = gvt->types[i].max_instance;
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if (IS_GEN8(gvt->dev_priv))
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sprintf(gvt->types[i].name, "GVTg_V4_%u",
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gvt->types[i].max_instance);
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else if (IS_GEN9(gvt->dev_priv))
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sprintf(gvt->types[i].name, "GVTg_V5_%u",
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gvt->types[i].max_instance);
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min_low <<= 1;
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gvt_dbg_core("type[%d]: %s max %u avail %u low %u high %u fence %u\n",
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i, gvt->types[i].name, gvt->types[i].max_instance,
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gvt->types[i].avail_instance,
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gvt->types[i].low_gm_size,
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gvt->types[i].high_gm_size, gvt->types[i].fence);
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}
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gvt->num_types = i;
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return 0;
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}
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void intel_gvt_clean_vgpu_types(struct intel_gvt *gvt)
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{
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kfree(gvt->types);
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}
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static void intel_gvt_update_vgpu_types(struct intel_gvt *gvt)
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{
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int i;
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unsigned int low_gm_avail, high_gm_avail, fence_avail;
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unsigned int low_gm_min, high_gm_min, fence_min, total_min;
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/* Need to depend on maxium hw resource size but keep on
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* static config for now.
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*/
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low_gm_avail = MB_TO_BYTES(256) - HOST_LOW_GM_SIZE -
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gvt->gm.vgpu_allocated_low_gm_size;
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high_gm_avail = MB_TO_BYTES(256) * 3 - HOST_HIGH_GM_SIZE -
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gvt->gm.vgpu_allocated_high_gm_size;
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fence_avail = gvt_fence_sz(gvt) - HOST_FENCE -
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gvt->fence.vgpu_allocated_fence_num;
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for (i = 0; i < gvt->num_types; i++) {
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low_gm_min = low_gm_avail / gvt->types[i].low_gm_size;
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high_gm_min = high_gm_avail / gvt->types[i].high_gm_size;
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fence_min = fence_avail / gvt->types[i].fence;
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total_min = min(min(low_gm_min, high_gm_min), fence_min);
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gvt->types[i].avail_instance = min(gvt->types[i].max_instance,
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total_min);
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gvt_dbg_core("update type[%d]: %s max %u avail %u low %u high %u fence %u\n",
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i, gvt->types[i].name, gvt->types[i].max_instance,
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gvt->types[i].avail_instance, gvt->types[i].low_gm_size,
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gvt->types[i].high_gm_size, gvt->types[i].fence);
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}
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}
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/**
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* intel_gvt_destroy_vgpu - destroy a virtual GPU
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* @vgpu: virtual GPU
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@ -166,20 +266,11 @@ void intel_gvt_destroy_vgpu(struct intel_vgpu *vgpu)
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clean_vgpu_mmio(vgpu);
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vfree(vgpu);
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intel_gvt_update_vgpu_types(gvt);
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mutex_unlock(&gvt->lock);
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}
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/**
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* intel_gvt_create_vgpu - create a virtual GPU
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* @gvt: GVT device
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* @param: vGPU creation parameters
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*
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* This function is called when user wants to create a virtual GPU.
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*
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* Returns:
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* pointer to intel_vgpu, error pointer if failed.
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*/
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struct intel_vgpu *intel_gvt_create_vgpu(struct intel_gvt *gvt,
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static struct intel_vgpu *__intel_gvt_create_vgpu(struct intel_gvt *gvt,
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struct intel_vgpu_creation_params *param)
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{
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struct intel_vgpu *vgpu;
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mutex_unlock(&gvt->lock);
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return ERR_PTR(ret);
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}
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/**
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* intel_gvt_create_vgpu - create a virtual GPU
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* @gvt: GVT device
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* @type: type of the vGPU to create
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*
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* This function is called when user wants to create a virtual GPU.
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*
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* Returns:
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* pointer to intel_vgpu, error pointer if failed.
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*/
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struct intel_vgpu *intel_gvt_create_vgpu(struct intel_gvt *gvt,
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struct intel_vgpu_type *type)
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{
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struct intel_vgpu_creation_params param;
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struct intel_vgpu *vgpu;
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param.handle = 0;
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param.low_gm_sz = type->low_gm_size;
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param.high_gm_sz = type->high_gm_size;
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param.fence_sz = type->fence;
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/* XXX current param based on MB */
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param.low_gm_sz = BYTES_TO_MB(param.low_gm_sz);
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param.high_gm_sz = BYTES_TO_MB(param.high_gm_sz);
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vgpu = __intel_gvt_create_vgpu(gvt, ¶m);
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if (IS_ERR(vgpu))
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return vgpu;
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/* calculate left instance change for types */
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intel_gvt_update_vgpu_types(gvt);
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return vgpu;
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}
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