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If an exec queue is idle, there is no need to issue a schedule disable to the GuC when suspending the queue’s execution. Opportunistically skip this step if the queue is idle and not a parallel queue. Parallel queues must have their scheduling state flipped in the GuC due to limitations in how submission is implemented in run_job(). Also if all pagefault queues can skip the schedule disable during a switch to dma-fence mode, do not schedule a resume for the pagefault queues after the next submission. v2: - Don't touch the LRC tail is queue is suspended but enabled in run_job (CI) Signed-off-by: Matthew Brost <matthew.brost@intel.com> Reviewed-by: Thomas Hellström <thomas.hellstrom@linux.intel.com> Link: https://patch.msgid.link/20251212182847.1683222-5-matthew.brost@intel.com
182 lines
5.6 KiB
C
182 lines
5.6 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_EXEC_QUEUE_H_
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#define _XE_EXEC_QUEUE_H_
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#include "xe_exec_queue_types.h"
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#include "xe_vm_types.h"
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struct drm_device;
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struct drm_file;
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struct xe_device;
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struct xe_file;
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#define for_each_tlb_inval(__i) \
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for (__i = XE_EXEC_QUEUE_TLB_INVAL_PRIMARY_GT; \
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__i <= XE_EXEC_QUEUE_TLB_INVAL_MEDIA_GT; ++__i)
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struct xe_exec_queue *xe_exec_queue_create(struct xe_device *xe, struct xe_vm *vm,
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u32 logical_mask, u16 width,
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struct xe_hw_engine *hw_engine, u32 flags,
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u64 extensions);
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struct xe_exec_queue *xe_exec_queue_create_class(struct xe_device *xe, struct xe_gt *gt,
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struct xe_vm *vm,
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enum xe_engine_class class,
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u32 flags, u64 extensions);
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struct xe_exec_queue *xe_exec_queue_create_bind(struct xe_device *xe,
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struct xe_tile *tile,
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u32 flags, u64 extensions);
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void xe_exec_queue_fini(struct xe_exec_queue *q);
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void xe_exec_queue_destroy(struct kref *ref);
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void xe_exec_queue_assign_name(struct xe_exec_queue *q, u32 instance);
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static inline struct xe_exec_queue *
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xe_exec_queue_get_unless_zero(struct xe_exec_queue *q)
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{
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if (kref_get_unless_zero(&q->refcount))
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return q;
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return NULL;
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}
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struct xe_exec_queue *xe_exec_queue_lookup(struct xe_file *xef, u32 id);
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static inline struct xe_exec_queue *xe_exec_queue_get(struct xe_exec_queue *q)
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{
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kref_get(&q->refcount);
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return q;
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}
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static inline void xe_exec_queue_put(struct xe_exec_queue *q)
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{
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kref_put(&q->refcount, xe_exec_queue_destroy);
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}
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static inline bool xe_exec_queue_is_parallel(struct xe_exec_queue *q)
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{
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return q->width > 1;
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}
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static inline bool xe_exec_queue_uses_pxp(struct xe_exec_queue *q)
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{
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return q->pxp.type;
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}
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/**
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* xe_exec_queue_is_multi_queue() - Whether an exec_queue is part of a queue group.
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* @q: The exec_queue
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*
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* Return: True if the exec_queue is part of a queue group, false otherwise.
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*/
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static inline bool xe_exec_queue_is_multi_queue(struct xe_exec_queue *q)
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{
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return q->multi_queue.valid;
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}
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/**
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* xe_exec_queue_is_multi_queue_primary() - Whether an exec_queue is primary queue
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* of a multi queue group.
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* @q: The exec_queue
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*
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* Return: True if @q is primary queue of a queue group, false otherwise.
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*/
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static inline bool xe_exec_queue_is_multi_queue_primary(struct xe_exec_queue *q)
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{
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return q->multi_queue.is_primary;
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}
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/**
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* xe_exec_queue_is_multi_queue_secondary() - Whether an exec_queue is secondary queue
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* of a multi queue group.
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* @q: The exec_queue
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*
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* Return: True if @q is secondary queue of a queue group, false otherwise.
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*/
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static inline bool xe_exec_queue_is_multi_queue_secondary(struct xe_exec_queue *q)
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{
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return xe_exec_queue_is_multi_queue(q) && !xe_exec_queue_is_multi_queue_primary(q);
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}
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/**
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* xe_exec_queue_multi_queue_primary() - Get multi queue group's primary queue
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* @q: The exec_queue
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*
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* If @q belongs to a multi queue group, then the primary queue of the group will
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* be returned. Otherwise, @q will be returned.
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*/
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static inline struct xe_exec_queue *xe_exec_queue_multi_queue_primary(struct xe_exec_queue *q)
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{
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return xe_exec_queue_is_multi_queue(q) ? q->multi_queue.group->primary : q;
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}
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void xe_exec_queue_group_kill_put(struct xe_exec_queue_group *group);
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bool xe_exec_queue_is_lr(struct xe_exec_queue *q);
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bool xe_exec_queue_is_idle(struct xe_exec_queue *q);
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void xe_exec_queue_kill(struct xe_exec_queue *q);
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int xe_exec_queue_create_ioctl(struct drm_device *dev, void *data,
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struct drm_file *file);
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int xe_exec_queue_destroy_ioctl(struct drm_device *dev, void *data,
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struct drm_file *file);
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int xe_exec_queue_get_property_ioctl(struct drm_device *dev, void *data,
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struct drm_file *file);
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int xe_exec_queue_set_property_ioctl(struct drm_device *dev, void *data,
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struct drm_file *file);
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enum xe_exec_queue_priority xe_exec_queue_device_get_max_priority(struct xe_device *xe);
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void xe_exec_queue_last_fence_put(struct xe_exec_queue *e, struct xe_vm *vm);
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void xe_exec_queue_last_fence_put_unlocked(struct xe_exec_queue *e);
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struct dma_fence *xe_exec_queue_last_fence_get(struct xe_exec_queue *e,
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struct xe_vm *vm);
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struct dma_fence *xe_exec_queue_last_fence_get_for_resume(struct xe_exec_queue *e,
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struct xe_vm *vm);
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void xe_exec_queue_last_fence_set(struct xe_exec_queue *e, struct xe_vm *vm,
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struct dma_fence *fence);
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void xe_exec_queue_tlb_inval_last_fence_put(struct xe_exec_queue *q,
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struct xe_vm *vm,
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unsigned int type);
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void xe_exec_queue_tlb_inval_last_fence_put_unlocked(struct xe_exec_queue *q,
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unsigned int type);
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struct dma_fence *xe_exec_queue_tlb_inval_last_fence_get(struct xe_exec_queue *q,
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struct xe_vm *vm,
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unsigned int type);
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void xe_exec_queue_tlb_inval_last_fence_set(struct xe_exec_queue *q,
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struct xe_vm *vm,
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struct dma_fence *fence,
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unsigned int type);
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void xe_exec_queue_update_run_ticks(struct xe_exec_queue *q);
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int xe_exec_queue_contexts_hwsp_rebase(struct xe_exec_queue *q, void *scratch);
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struct xe_lrc *xe_exec_queue_lrc(struct xe_exec_queue *q);
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/**
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* xe_exec_queue_idle_skip_suspend() - Can exec queue skip suspend
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* @q: The exec_queue
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*
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* If an exec queue is not parallel and is idle, the suspend steps can be
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* skipped in the submission backend immediatley signaling the suspend fence.
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* Parallel queues cannot skip this step due to limitations in the submission
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* backend.
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*
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* Return: True if exec queue is idle and can skip suspend steps, False
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* otherwise
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*/
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static inline bool xe_exec_queue_idle_skip_suspend(struct xe_exec_queue *q)
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{
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return !xe_exec_queue_is_parallel(q) && xe_exec_queue_is_idle(q);
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}
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#endif
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