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Async worker is gone. All jobs and memory allocations done in IOCTL to align with dma fencing rules. Async vs. sync now means when do bind operations complete relative to the IOCTL. Async completes when out-syncs signal while sync completes when the IOCTL returns. In-syncs and out-syncs are only allowed in async mode. If memory allocations fail in the job creation step the VM is killed. This is temporary, eventually a proper unwind will be done and VM will be usable. Signed-off-by: Matthew Brost <matthew.brost@intel.com> Reviewed-by: Thomas Hellström <thomas.hellstrom@linux.intel.com> Signed-off-by: Rodrigo Vivi <rodrigo.vivi@intel.com>
248 lines
5.9 KiB
C
248 lines
5.9 KiB
C
/* SPDX-License-Identifier: MIT */
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/*
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* Copyright © 2021 Intel Corporation
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*/
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#ifndef _XE_VM_H_
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#define _XE_VM_H_
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#include "xe_bo_types.h"
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#include "xe_macros.h"
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#include "xe_map.h"
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#include "xe_vm_types.h"
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struct drm_device;
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struct drm_printer;
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struct drm_file;
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struct ttm_buffer_object;
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struct ttm_validate_buffer;
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struct xe_exec_queue;
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struct xe_file;
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struct xe_sync_entry;
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struct drm_exec;
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struct xe_vm *xe_vm_create(struct xe_device *xe, u32 flags);
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struct xe_vm *xe_vm_lookup(struct xe_file *xef, u32 id);
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int xe_vma_cmp_vma_cb(const void *key, const struct rb_node *node);
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static inline struct xe_vm *xe_vm_get(struct xe_vm *vm)
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{
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drm_gpuvm_get(&vm->gpuvm);
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return vm;
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}
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static inline void xe_vm_put(struct xe_vm *vm)
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{
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drm_gpuvm_put(&vm->gpuvm);
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}
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int xe_vm_lock(struct xe_vm *vm, bool intr);
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void xe_vm_unlock(struct xe_vm *vm);
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static inline bool xe_vm_is_closed(struct xe_vm *vm)
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{
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/* Only guaranteed not to change when vm->lock is held */
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return !vm->size;
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}
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static inline bool xe_vm_is_banned(struct xe_vm *vm)
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{
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return vm->flags & XE_VM_FLAG_BANNED;
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}
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static inline bool xe_vm_is_closed_or_banned(struct xe_vm *vm)
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{
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lockdep_assert_held(&vm->lock);
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return xe_vm_is_closed(vm) || xe_vm_is_banned(vm);
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}
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struct xe_vma *
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xe_vm_find_overlapping_vma(struct xe_vm *vm, u64 start, u64 range);
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static inline struct xe_vm *gpuva_to_vm(struct drm_gpuva *gpuva)
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{
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return container_of(gpuva->vm, struct xe_vm, gpuvm);
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}
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static inline struct xe_vma *gpuva_to_vma(struct drm_gpuva *gpuva)
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{
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return container_of(gpuva, struct xe_vma, gpuva);
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}
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static inline struct xe_vma_op *gpuva_op_to_vma_op(struct drm_gpuva_op *op)
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{
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return container_of(op, struct xe_vma_op, base);
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}
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/**
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* DOC: Provide accessors for vma members to facilitate easy change of
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* implementation.
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*/
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static inline u64 xe_vma_start(struct xe_vma *vma)
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{
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return vma->gpuva.va.addr;
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}
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static inline u64 xe_vma_size(struct xe_vma *vma)
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{
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return vma->gpuva.va.range;
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}
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static inline u64 xe_vma_end(struct xe_vma *vma)
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{
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return xe_vma_start(vma) + xe_vma_size(vma);
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}
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static inline u64 xe_vma_bo_offset(struct xe_vma *vma)
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{
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return vma->gpuva.gem.offset;
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}
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static inline struct xe_bo *xe_vma_bo(struct xe_vma *vma)
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{
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return !vma->gpuva.gem.obj ? NULL :
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container_of(vma->gpuva.gem.obj, struct xe_bo, ttm.base);
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}
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static inline struct xe_vm *xe_vma_vm(struct xe_vma *vma)
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{
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return container_of(vma->gpuva.vm, struct xe_vm, gpuvm);
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}
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static inline bool xe_vma_read_only(struct xe_vma *vma)
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{
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return vma->gpuva.flags & XE_VMA_READ_ONLY;
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}
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static inline u64 xe_vma_userptr(struct xe_vma *vma)
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{
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return vma->gpuva.gem.offset;
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}
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static inline bool xe_vma_is_null(struct xe_vma *vma)
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{
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return vma->gpuva.flags & DRM_GPUVA_SPARSE;
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}
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static inline bool xe_vma_has_no_bo(struct xe_vma *vma)
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{
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return !xe_vma_bo(vma);
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}
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static inline bool xe_vma_is_userptr(struct xe_vma *vma)
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{
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return xe_vma_has_no_bo(vma) && !xe_vma_is_null(vma);
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}
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u64 xe_vm_pdp4_descriptor(struct xe_vm *vm, struct xe_tile *tile);
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int xe_vm_create_ioctl(struct drm_device *dev, void *data,
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struct drm_file *file);
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int xe_vm_destroy_ioctl(struct drm_device *dev, void *data,
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struct drm_file *file);
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int xe_vm_bind_ioctl(struct drm_device *dev, void *data,
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struct drm_file *file);
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void xe_vm_close_and_put(struct xe_vm *vm);
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static inline bool xe_vm_in_compute_mode(struct xe_vm *vm)
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{
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return vm->flags & XE_VM_FLAG_COMPUTE_MODE;
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}
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static inline bool xe_vm_in_fault_mode(struct xe_vm *vm)
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{
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return vm->flags & XE_VM_FLAG_FAULT_MODE;
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}
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static inline bool xe_vm_no_dma_fences(struct xe_vm *vm)
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{
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return xe_vm_in_compute_mode(vm) || xe_vm_in_fault_mode(vm);
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}
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int xe_vm_add_compute_exec_queue(struct xe_vm *vm, struct xe_exec_queue *q);
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void xe_vm_remove_compute_exec_queue(struct xe_vm *vm, struct xe_exec_queue *q);
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int xe_vm_userptr_pin(struct xe_vm *vm);
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int __xe_vm_userptr_needs_repin(struct xe_vm *vm);
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int xe_vm_userptr_check_repin(struct xe_vm *vm);
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struct dma_fence *xe_vm_rebind(struct xe_vm *vm, bool rebind_worker);
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int xe_vm_invalidate_vma(struct xe_vma *vma);
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extern struct ttm_device_funcs xe_ttm_funcs;
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static inline void xe_vm_queue_rebind_worker(struct xe_vm *vm)
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{
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xe_assert(vm->xe, xe_vm_in_compute_mode(vm));
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queue_work(vm->xe->ordered_wq, &vm->preempt.rebind_work);
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}
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/**
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* xe_vm_reactivate_rebind() - Reactivate the rebind functionality on compute
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* vms.
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* @vm: The vm.
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*
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* If the rebind functionality on a compute vm was disabled due
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* to nothing to execute. Reactivate it and run the rebind worker.
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* This function should be called after submitting a batch to a compute vm.
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*/
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static inline void xe_vm_reactivate_rebind(struct xe_vm *vm)
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{
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if (xe_vm_in_compute_mode(vm) && vm->preempt.rebind_deactivated) {
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vm->preempt.rebind_deactivated = false;
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xe_vm_queue_rebind_worker(vm);
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}
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}
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int xe_vma_userptr_pin_pages(struct xe_vma *vma);
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int xe_vma_userptr_check_repin(struct xe_vma *vma);
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bool xe_vm_validate_should_retry(struct drm_exec *exec, int err, ktime_t *end);
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int xe_vm_lock_dma_resv(struct xe_vm *vm, struct drm_exec *exec,
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unsigned int num_shared, bool lock_vm);
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void xe_vm_fence_all_extobjs(struct xe_vm *vm, struct dma_fence *fence,
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enum dma_resv_usage usage);
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int xe_analyze_vm(struct drm_printer *p, struct xe_vm *vm, int gt_id);
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int xe_vm_prepare_vma(struct drm_exec *exec, struct xe_vma *vma,
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unsigned int num_shared);
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/**
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* xe_vm_resv() - Return's the vm's reservation object
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* @vm: The vm
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*
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* Return: Pointer to the vm's reservation object.
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*/
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static inline struct dma_resv *xe_vm_resv(struct xe_vm *vm)
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{
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return drm_gpuvm_resv(&vm->gpuvm);
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}
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/**
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* xe_vm_assert_held(vm) - Assert that the vm's reservation object is held.
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* @vm: The vm
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*/
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#define xe_vm_assert_held(vm) dma_resv_assert_held(xe_vm_resv(vm))
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#if IS_ENABLED(CONFIG_DRM_XE_DEBUG_VM)
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#define vm_dbg drm_dbg
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#else
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__printf(2, 3)
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static inline void vm_dbg(const struct drm_device *dev,
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const char *format, ...)
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{ /* noop */ }
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#endif
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#endif
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