kfd_process.c 30.4 KB
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/*
 * Copyright 2014 Advanced Micro Devices, Inc.
 *
 * 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 COPYRIGHT HOLDER(S) OR AUTHOR(S) 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 <linux/mutex.h>
#include <linux/log2.h>
#include <linux/sched.h>
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#include <linux/sched/mm.h>
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#include <linux/sched/task.h>
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#include <linux/slab.h>
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#include <linux/amd-iommu.h>
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#include <linux/notifier.h>
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#include <linux/compat.h>
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#include <linux/mman.h>
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#include <linux/file.h>
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#include "amdgpu_amdkfd.h"
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struct mm_struct;

#include "kfd_priv.h"
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#include "kfd_device_queue_manager.h"
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#include "kfd_dbgmgr.h"
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#include "kfd_iommu.h"
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/*
 * List of struct kfd_process (field kfd_process).
 * Unique/indexed by mm_struct*
 */
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DEFINE_HASHTABLE(kfd_processes_table, KFD_PROCESS_TABLE_SIZE);
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static DEFINE_MUTEX(kfd_processes_mutex);

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DEFINE_SRCU(kfd_processes_srcu);
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/* For process termination handling */
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static struct workqueue_struct *kfd_process_wq;

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/* Ordered, single-threaded workqueue for restoring evicted
 * processes. Restoring multiple processes concurrently under memory
 * pressure can lead to processes blocking each other from validating
 * their BOs and result in a live-lock situation where processes
 * remain evicted indefinitely.
 */
static struct workqueue_struct *kfd_restore_wq;

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static struct kfd_process *find_process(const struct task_struct *thread);
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static void kfd_process_ref_release(struct kref *ref);
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static struct kfd_process *create_process(const struct task_struct *thread);
static int kfd_process_init_cwsr_apu(struct kfd_process *p, struct file *filep);
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static void evict_process_worker(struct work_struct *work);
static void restore_process_worker(struct work_struct *work);

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struct kfd_procfs_tree {
	struct kobject *kobj;
};

static struct kfd_procfs_tree procfs;

static ssize_t kfd_procfs_show(struct kobject *kobj, struct attribute *attr,
			       char *buffer)
{
	int val = 0;

	if (strcmp(attr->name, "pasid") == 0) {
		struct kfd_process *p = container_of(attr, struct kfd_process,
						     attr_pasid);
		val = p->pasid;
	} else {
		pr_err("Invalid attribute");
		return -EINVAL;
	}

	return snprintf(buffer, PAGE_SIZE, "%d\n", val);
}

static void kfd_procfs_kobj_release(struct kobject *kobj)
{
	kfree(kobj);
}

static const struct sysfs_ops kfd_procfs_ops = {
	.show = kfd_procfs_show,
};

static struct kobj_type procfs_type = {
	.release = kfd_procfs_kobj_release,
	.sysfs_ops = &kfd_procfs_ops,
};

void kfd_procfs_init(void)
{
	int ret = 0;

	procfs.kobj = kfd_alloc_struct(procfs.kobj);
	if (!procfs.kobj)
		return;

	ret = kobject_init_and_add(procfs.kobj, &procfs_type,
				   &kfd_device->kobj, "proc");
	if (ret) {
		pr_warn("Could not create procfs proc folder");
		/* If we fail to create the procfs, clean up */
		kfd_procfs_shutdown();
	}
}

void kfd_procfs_shutdown(void)
{
	if (procfs.kobj) {
		kobject_del(procfs.kobj);
		kobject_put(procfs.kobj);
		procfs.kobj = NULL;
	}
}
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int kfd_process_create_wq(void)
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{
	if (!kfd_process_wq)
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		kfd_process_wq = alloc_workqueue("kfd_process_wq", 0, 0);
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	if (!kfd_restore_wq)
		kfd_restore_wq = alloc_ordered_workqueue("kfd_restore_wq", 0);

	if (!kfd_process_wq || !kfd_restore_wq) {
		kfd_process_destroy_wq();
		return -ENOMEM;
	}

	return 0;
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}

void kfd_process_destroy_wq(void)
{
	if (kfd_process_wq) {
		destroy_workqueue(kfd_process_wq);
		kfd_process_wq = NULL;
	}
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	if (kfd_restore_wq) {
		destroy_workqueue(kfd_restore_wq);
		kfd_restore_wq = NULL;
	}
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}

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static void kfd_process_free_gpuvm(struct kgd_mem *mem,
			struct kfd_process_device *pdd)
{
	struct kfd_dev *dev = pdd->dev;

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	amdgpu_amdkfd_gpuvm_unmap_memory_from_gpu(dev->kgd, mem, pdd->vm);
	amdgpu_amdkfd_gpuvm_free_memory_of_gpu(dev->kgd, mem);
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}

/* kfd_process_alloc_gpuvm - Allocate GPU VM for the KFD process
 *	This function should be only called right after the process
 *	is created and when kfd_processes_mutex is still being held
 *	to avoid concurrency. Because of that exclusiveness, we do
 *	not need to take p->mutex.
 */
static int kfd_process_alloc_gpuvm(struct kfd_process_device *pdd,
				   uint64_t gpu_va, uint32_t size,
				   uint32_t flags, void **kptr)
{
	struct kfd_dev *kdev = pdd->dev;
	struct kgd_mem *mem = NULL;
	int handle;
	int err;

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	err = amdgpu_amdkfd_gpuvm_alloc_memory_of_gpu(kdev->kgd, gpu_va, size,
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						 pdd->vm, &mem, NULL, flags);
	if (err)
		goto err_alloc_mem;

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	err = amdgpu_amdkfd_gpuvm_map_memory_to_gpu(kdev->kgd, mem, pdd->vm);
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	if (err)
		goto err_map_mem;

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	err = amdgpu_amdkfd_gpuvm_sync_memory(kdev->kgd, mem, true);
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	if (err) {
		pr_debug("Sync memory failed, wait interrupted by user signal\n");
		goto sync_memory_failed;
	}

	/* Create an obj handle so kfd_process_device_remove_obj_handle
	 * will take care of the bo removal when the process finishes.
	 * We do not need to take p->mutex, because the process is just
	 * created and the ioctls have not had the chance to run.
	 */
	handle = kfd_process_device_create_obj_handle(pdd, mem);

	if (handle < 0) {
		err = handle;
		goto free_gpuvm;
	}

	if (kptr) {
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		err = amdgpu_amdkfd_gpuvm_map_gtt_bo_to_kernel(kdev->kgd,
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				(struct kgd_mem *)mem, kptr, NULL);
		if (err) {
			pr_debug("Map GTT BO to kernel failed\n");
			goto free_obj_handle;
		}
	}

	return err;

free_obj_handle:
	kfd_process_device_remove_obj_handle(pdd, handle);
free_gpuvm:
sync_memory_failed:
	kfd_process_free_gpuvm(mem, pdd);
	return err;

err_map_mem:
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	amdgpu_amdkfd_gpuvm_free_memory_of_gpu(kdev->kgd, mem);
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err_alloc_mem:
	*kptr = NULL;
	return err;
}

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/* kfd_process_device_reserve_ib_mem - Reserve memory inside the
 *	process for IB usage The memory reserved is for KFD to submit
 *	IB to AMDGPU from kernel.  If the memory is reserved
 *	successfully, ib_kaddr will have the CPU/kernel
 *	address. Check ib_kaddr before accessing the memory.
 */
static int kfd_process_device_reserve_ib_mem(struct kfd_process_device *pdd)
{
	struct qcm_process_device *qpd = &pdd->qpd;
	uint32_t flags = ALLOC_MEM_FLAGS_GTT |
			 ALLOC_MEM_FLAGS_NO_SUBSTITUTE |
			 ALLOC_MEM_FLAGS_WRITABLE |
			 ALLOC_MEM_FLAGS_EXECUTABLE;
	void *kaddr;
	int ret;

	if (qpd->ib_kaddr || !qpd->ib_base)
		return 0;

	/* ib_base is only set for dGPU */
	ret = kfd_process_alloc_gpuvm(pdd, qpd->ib_base, PAGE_SIZE, flags,
				      &kaddr);
	if (ret)
		return ret;

	qpd->ib_kaddr = kaddr;

	return 0;
}

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struct kfd_process *kfd_create_process(struct file *filep)
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{
	struct kfd_process *process;
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	struct task_struct *thread = current;
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	int ret;
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	if (!thread->mm)
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		return ERR_PTR(-EINVAL);

	/* Only the pthreads threading model is supported. */
	if (thread->group_leader->mm != thread->mm)
		return ERR_PTR(-EINVAL);

	/*
	 * take kfd processes mutex before starting of process creation
	 * so there won't be a case where two threads of the same process
	 * create two kfd_process structures
	 */
	mutex_lock(&kfd_processes_mutex);

	/* A prior open of /dev/kfd could have already created the process. */
	process = find_process(thread);
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	if (process) {
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		pr_debug("Process already found\n");
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	} else {
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		process = create_process(thread);
		if (IS_ERR(process))
			goto out;

		ret = kfd_process_init_cwsr_apu(process, filep);
		if (ret) {
			process = ERR_PTR(ret);
			goto out;
		}
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		if (!procfs.kobj)
			goto out;

		process->kobj = kfd_alloc_struct(process->kobj);
		if (!process->kobj) {
			pr_warn("Creating procfs kobject failed");
			goto out;
		}
		ret = kobject_init_and_add(process->kobj, &procfs_type,
					   procfs.kobj, "%d",
					   (int)process->lead_thread->pid);
		if (ret) {
			pr_warn("Creating procfs pid directory failed");
			goto out;
		}

		process->attr_pasid.name = "pasid";
		process->attr_pasid.mode = KFD_SYSFS_FILE_MODE;
		sysfs_attr_init(&process->attr_pasid);
		ret = sysfs_create_file(process->kobj, &process->attr_pasid);
		if (ret)
			pr_warn("Creating pasid for pid %d failed",
					(int)process->lead_thread->pid);
	}
out:
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	if (!IS_ERR(process))
		kref_get(&process->ref);
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	mutex_unlock(&kfd_processes_mutex);

	return process;
}

struct kfd_process *kfd_get_process(const struct task_struct *thread)
{
	struct kfd_process *process;

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	if (!thread->mm)
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		return ERR_PTR(-EINVAL);

	/* Only the pthreads threading model is supported. */
	if (thread->group_leader->mm != thread->mm)
		return ERR_PTR(-EINVAL);

	process = find_process(thread);
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	if (!process)
		return ERR_PTR(-EINVAL);
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	return process;
}

static struct kfd_process *find_process_by_mm(const struct mm_struct *mm)
{
	struct kfd_process *process;

	hash_for_each_possible_rcu(kfd_processes_table, process,
					kfd_processes, (uintptr_t)mm)
		if (process->mm == mm)
			return process;

	return NULL;
}

static struct kfd_process *find_process(const struct task_struct *thread)
{
	struct kfd_process *p;
	int idx;

	idx = srcu_read_lock(&kfd_processes_srcu);
	p = find_process_by_mm(thread->mm);
	srcu_read_unlock(&kfd_processes_srcu, idx);

	return p;
}

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void kfd_unref_process(struct kfd_process *p)
{
	kref_put(&p->ref, kfd_process_ref_release);
}

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static void kfd_process_device_free_bos(struct kfd_process_device *pdd)
{
	struct kfd_process *p = pdd->process;
	void *mem;
	int id;

	/*
	 * Remove all handles from idr and release appropriate
	 * local memory object
	 */
	idr_for_each_entry(&pdd->alloc_idr, mem, id) {
		struct kfd_process_device *peer_pdd;

		list_for_each_entry(peer_pdd, &p->per_device_data,
				    per_device_list) {
			if (!peer_pdd->vm)
				continue;
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			amdgpu_amdkfd_gpuvm_unmap_memory_from_gpu(
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				peer_pdd->dev->kgd, mem, peer_pdd->vm);
		}

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		amdgpu_amdkfd_gpuvm_free_memory_of_gpu(pdd->dev->kgd, mem);
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		kfd_process_device_remove_obj_handle(pdd, id);
	}
}

static void kfd_process_free_outstanding_kfd_bos(struct kfd_process *p)
{
	struct kfd_process_device *pdd;

	list_for_each_entry(pdd, &p->per_device_data, per_device_list)
		kfd_process_device_free_bos(pdd);
}

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static void kfd_process_destroy_pdds(struct kfd_process *p)
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{
	struct kfd_process_device *pdd, *temp;

	list_for_each_entry_safe(pdd, temp, &p->per_device_data,
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				 per_device_list) {
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		pr_debug("Releasing pdd (topology id %d) for process (pasid 0x%x)\n",
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				pdd->dev->id, p->pasid);

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		if (pdd->drm_file) {
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			amdgpu_amdkfd_gpuvm_release_process_vm(
					pdd->dev->kgd, pdd->vm);
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			fput(pdd->drm_file);
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		}
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		else if (pdd->vm)
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			amdgpu_amdkfd_gpuvm_destroy_process_vm(
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				pdd->dev->kgd, pdd->vm);

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		list_del(&pdd->per_device_list);
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		if (pdd->qpd.cwsr_kaddr && !pdd->qpd.cwsr_base)
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			free_pages((unsigned long)pdd->qpd.cwsr_kaddr,
				get_order(KFD_CWSR_TBA_TMA_SIZE));

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		kfree(pdd->qpd.doorbell_bitmap);
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		idr_destroy(&pdd->alloc_idr);

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		kfree(pdd);
	}
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}

/* No process locking is needed in this function, because the process
 * is not findable any more. We must assume that no other thread is
 * using it any more, otherwise we couldn't safely free the process
 * structure in the end.
 */
static void kfd_process_wq_release(struct work_struct *work)
{
	struct kfd_process *p = container_of(work, struct kfd_process,
					     release_work);

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	/* Remove the procfs files */
	if (p->kobj) {
		sysfs_remove_file(p->kobj, &p->attr_pasid);
		kobject_del(p->kobj);
		kobject_put(p->kobj);
		p->kobj = NULL;
	}

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	kfd_iommu_unbind_process(p);
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	kfd_process_free_outstanding_kfd_bos(p);

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	kfd_process_destroy_pdds(p);
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	dma_fence_put(p->ef);
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	kfd_event_free_process(p);

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	kfd_pasid_free(p->pasid);
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	kfd_free_process_doorbells(p);
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	mutex_destroy(&p->mutex);

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	put_task_struct(p->lead_thread);

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	kfree(p);
}

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static void kfd_process_ref_release(struct kref *ref)
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{
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	struct kfd_process *p = container_of(ref, struct kfd_process, ref);
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	INIT_WORK(&p->release_work, kfd_process_wq_release);
	queue_work(kfd_process_wq, &p->release_work);
}
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static void kfd_process_free_notifier(struct mmu_notifier *mn)
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{
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	kfd_unref_process(container_of(mn, struct kfd_process, mmu_notifier));
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}

static void kfd_process_notifier_release(struct mmu_notifier *mn,
					struct mm_struct *mm)
{
	struct kfd_process *p;
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	struct kfd_process_device *pdd = NULL;
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	/*
	 * The kfd_process structure can not be free because the
	 * mmu_notifier srcu is read locked
	 */
	p = container_of(mn, struct kfd_process, mmu_notifier);
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	if (WARN_ON(p->mm != mm))
		return;
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	mutex_lock(&kfd_processes_mutex);
	hash_del_rcu(&p->kfd_processes);
	mutex_unlock(&kfd_processes_mutex);
	synchronize_srcu(&kfd_processes_srcu);

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	cancel_delayed_work_sync(&p->eviction_work);
	cancel_delayed_work_sync(&p->restore_work);

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	mutex_lock(&p->mutex);

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	/* Iterate over all process device data structures and if the
	 * pdd is in debug mode, we should first force unregistration,
	 * then we will be able to destroy the queues
	 */
	list_for_each_entry(pdd, &p->per_device_data, per_device_list) {
		struct kfd_dev *dev = pdd->dev;

		mutex_lock(kfd_get_dbgmgr_mutex());
		if (dev && dev->dbgmgr && dev->dbgmgr->pasid == p->pasid) {
			if (!kfd_dbgmgr_unregister(dev->dbgmgr, p)) {
				kfd_dbgmgr_destroy(dev->dbgmgr);
				dev->dbgmgr = NULL;
			}
		}
		mutex_unlock(kfd_get_dbgmgr_mutex());
	}

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	kfd_process_dequeue_from_all_devices(p);
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	pqm_uninit(&p->pqm);

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	/* Indicate to other users that MM is no longer valid */
	p->mm = NULL;

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	mutex_unlock(&p->mutex);

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	mmu_notifier_put(&p->mmu_notifier);
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}

static const struct mmu_notifier_ops kfd_process_mmu_notifier_ops = {
	.release = kfd_process_notifier_release,
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	.free_notifier = kfd_process_free_notifier,
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};

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static int kfd_process_init_cwsr_apu(struct kfd_process *p, struct file *filep)
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{
	unsigned long  offset;
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	struct kfd_process_device *pdd;
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	list_for_each_entry(pdd, &p->per_device_data, per_device_list) {
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		struct kfd_dev *dev = pdd->dev;
		struct qcm_process_device *qpd = &pdd->qpd;

		if (!dev->cwsr_enabled || qpd->cwsr_kaddr || qpd->cwsr_base)
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			continue;
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		offset = KFD_MMAP_TYPE_RESERVED_MEM | KFD_MMAP_GPU_ID(dev->id);
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		qpd->tba_addr = (int64_t)vm_mmap(filep, 0,
			KFD_CWSR_TBA_TMA_SIZE, PROT_READ | PROT_EXEC,
			MAP_SHARED, offset);

		if (IS_ERR_VALUE(qpd->tba_addr)) {
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			int err = qpd->tba_addr;

			pr_err("Failure to set tba address. error %d.\n", err);
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			qpd->tba_addr = 0;
			qpd->cwsr_kaddr = NULL;
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			return err;
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		}

		memcpy(qpd->cwsr_kaddr, dev->cwsr_isa, dev->cwsr_isa_size);

		qpd->tma_addr = qpd->tba_addr + KFD_CWSR_TMA_OFFSET;
		pr_debug("set tba :0x%llx, tma:0x%llx, cwsr_kaddr:%p for pqm.\n",
			qpd->tba_addr, qpd->tma_addr, qpd->cwsr_kaddr);
	}
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	return 0;
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}

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static int kfd_process_device_init_cwsr_dgpu(struct kfd_process_device *pdd)
{
	struct kfd_dev *dev = pdd->dev;
	struct qcm_process_device *qpd = &pdd->qpd;
	uint32_t flags = ALLOC_MEM_FLAGS_GTT |
		ALLOC_MEM_FLAGS_NO_SUBSTITUTE | ALLOC_MEM_FLAGS_EXECUTABLE;
	void *kaddr;
	int ret;

	if (!dev->cwsr_enabled || qpd->cwsr_kaddr || !qpd->cwsr_base)
		return 0;

	/* cwsr_base is only set for dGPU */
	ret = kfd_process_alloc_gpuvm(pdd, qpd->cwsr_base,
				      KFD_CWSR_TBA_TMA_SIZE, flags, &kaddr);
	if (ret)
		return ret;

	qpd->cwsr_kaddr = kaddr;
	qpd->tba_addr = qpd->cwsr_base;

	memcpy(qpd->cwsr_kaddr, dev->cwsr_isa, dev->cwsr_isa_size);

	qpd->tma_addr = qpd->tba_addr + KFD_CWSR_TMA_OFFSET;
	pr_debug("set tba :0x%llx, tma:0x%llx, cwsr_kaddr:%p for pqm.\n",
		 qpd->tba_addr, qpd->tma_addr, qpd->cwsr_kaddr);

	return 0;
}

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/*
 * On return the kfd_process is fully operational and will be freed when the
 * mm is released
 */
static struct kfd_process *create_process(const struct task_struct *thread)
624 625 626 627 628 629 630 631
{
	struct kfd_process *process;
	int err = -ENOMEM;

	process = kzalloc(sizeof(*process), GFP_KERNEL);
	if (!process)
		goto err_alloc_process;

632
	kref_init(&process->ref);
633 634 635 636
	mutex_init(&process->mutex);
	process->mm = thread->mm;
	process->lead_thread = thread->group_leader;
	INIT_LIST_HEAD(&process->per_device_data);
637 638 639
	INIT_DELAYED_WORK(&process->eviction_work, evict_process_worker);
	INIT_DELAYED_WORK(&process->restore_work, restore_process_worker);
	process->last_restore_timestamp = get_jiffies_64();
640
	kfd_event_init_process(process);
641 642 643 644 645 646 647 648
	process->is_32bit_user_mode = in_compat_syscall();

	process->pasid = kfd_pasid_alloc();
	if (process->pasid == 0)
		goto err_alloc_pasid;

	if (kfd_alloc_process_doorbells(process) < 0)
		goto err_alloc_doorbells;
649

650 651 652 653
	err = pqm_init(&process->pqm, process);
	if (err != 0)
		goto err_process_pqm_init;

654
	/* init process apertures*/
655 656
	err = kfd_init_apertures(process);
	if (err != 0)
657
		goto err_init_apertures;
658

659 660 661
	/* Must be last, have to use release destruction after this */
	process->mmu_notifier.ops = &kfd_process_mmu_notifier_ops;
	err = mmu_notifier_register(&process->mmu_notifier, process->mm);
662
	if (err)
663 664 665 666 667
		goto err_register_notifier;

	get_task_struct(process->lead_thread);
	hash_add_rcu(kfd_processes_table, &process->kfd_processes,
			(uintptr_t)process->mm);
668

669 670
	return process;

671
err_register_notifier:
672
	kfd_process_free_outstanding_kfd_bos(process);
673
	kfd_process_destroy_pdds(process);
674
err_init_apertures:
675
	pqm_uninit(&process->pqm);
676
err_process_pqm_init:
677 678
	kfd_free_process_doorbells(process);
err_alloc_doorbells:
679 680
	kfd_pasid_free(process->pasid);
err_alloc_pasid:
681
	mutex_destroy(&process->mutex);
682 683 684 685 686
	kfree(process);
err_alloc_process:
	return ERR_PTR(err);
}

687 688 689 690
static int init_doorbell_bitmap(struct qcm_process_device *qpd,
			struct kfd_dev *dev)
{
	unsigned int i;
691 692
	int range_start = dev->shared_resources.non_cp_doorbells_start;
	int range_end = dev->shared_resources.non_cp_doorbells_end;
693 694 695 696 697 698 699 700 701 702

	if (!KFD_IS_SOC15(dev->device_info->asic_family))
		return 0;

	qpd->doorbell_bitmap =
		kzalloc(DIV_ROUND_UP(KFD_MAX_NUM_OF_QUEUES_PER_PROCESS,
				     BITS_PER_BYTE), GFP_KERNEL);
	if (!qpd->doorbell_bitmap)
		return -ENOMEM;

703
	/* Mask out doorbells reserved for SDMA, IH, and VCN on SOC15. */
704 705 706 707 708
	pr_debug("reserved doorbell 0x%03x - 0x%03x\n", range_start, range_end);
	pr_debug("reserved doorbell 0x%03x - 0x%03x\n",
			range_start + KFD_QUEUE_DOORBELL_MIRROR_OFFSET,
			range_end + KFD_QUEUE_DOORBELL_MIRROR_OFFSET);

709
	for (i = 0; i < KFD_MAX_NUM_OF_QUEUES_PER_PROCESS / 2; i++) {
710
		if (i >= range_start && i <= range_end) {
711
			set_bit(i, qpd->doorbell_bitmap);
712 713
			set_bit(i + KFD_QUEUE_DOORBELL_MIRROR_OFFSET,
				qpd->doorbell_bitmap);
714
		}
715
	}
716 717 718 719

	return 0;
}

720
struct kfd_process_device *kfd_get_process_device_data(struct kfd_dev *dev,
721
							struct kfd_process *p)
722 723 724 725 726
{
	struct kfd_process_device *pdd = NULL;

	list_for_each_entry(pdd, &p->per_device_data, per_device_list)
		if (pdd->dev == dev)
727
			return pdd;
728

729
	return NULL;
730 731 732 733 734 735 736 737
}

struct kfd_process_device *kfd_create_process_device_data(struct kfd_dev *dev,
							struct kfd_process *p)
{
	struct kfd_process_device *pdd = NULL;

	pdd = kzalloc(sizeof(*pdd), GFP_KERNEL);
738 739 740
	if (!pdd)
		return NULL;

741 742 743 744 745 746
	if (init_doorbell_bitmap(&pdd->qpd, dev)) {
		pr_err("Failed to init doorbell for process\n");
		kfree(pdd);
		return NULL;
	}

747 748 749 750 751
	pdd->dev = dev;
	INIT_LIST_HEAD(&pdd->qpd.queues_list);
	INIT_LIST_HEAD(&pdd->qpd.priv_queue_list);
	pdd->qpd.dqm = dev->dqm;
	pdd->qpd.pqm = &p->pqm;
752
	pdd->qpd.evicted = 0;
753 754 755 756
	pdd->process = p;
	pdd->bound = PDD_UNBOUND;
	pdd->already_dequeued = false;
	list_add(&pdd->per_device_list, &p->per_device_data);
757

758 759 760
	/* Init idr used for memory handle translation */
	idr_init(&pdd->alloc_idr);

761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791
	return pdd;
}

/**
 * kfd_process_device_init_vm - Initialize a VM for a process-device
 *
 * @pdd: The process-device
 * @drm_file: Optional pointer to a DRM file descriptor
 *
 * If @drm_file is specified, it will be used to acquire the VM from
 * that file descriptor. If successful, the @pdd takes ownership of
 * the file descriptor.
 *
 * If @drm_file is NULL, a new VM is created.
 *
 * Returns 0 on success, -errno on failure.
 */
int kfd_process_device_init_vm(struct kfd_process_device *pdd,
			       struct file *drm_file)
{
	struct kfd_process *p;
	struct kfd_dev *dev;
	int ret;

	if (pdd->vm)
		return drm_file ? -EBUSY : 0;

	p = pdd->process;
	dev = pdd->dev;

	if (drm_file)
A
Amber Lin 已提交
792
		ret = amdgpu_amdkfd_gpuvm_acquire_process_vm(
793
			dev->kgd, drm_file, p->pasid,
794 795
			&pdd->vm, &p->kgd_process_info, &p->ef);
	else
A
Amber Lin 已提交
796 797
		ret = amdgpu_amdkfd_gpuvm_create_process_vm(dev->kgd, p->pasid,
			&pdd->vm, &p->kgd_process_info, &p->ef);
798
	if (ret) {
799
		pr_err("Failed to create process VM object\n");
800
		return ret;
801 802
	}

803 804
	amdgpu_vm_set_task_info(pdd->vm);

805 806 807
	ret = kfd_process_device_reserve_ib_mem(pdd);
	if (ret)
		goto err_reserve_ib_mem;
808 809 810 811
	ret = kfd_process_device_init_cwsr_dgpu(pdd);
	if (ret)
		goto err_init_cwsr;

812 813 814
	pdd->drm_file = drm_file;

	return 0;
815 816

err_init_cwsr:
817
err_reserve_ib_mem:
818 819
	kfd_process_device_free_bos(pdd);
	if (!drm_file)
A
Amber Lin 已提交
820
		amdgpu_amdkfd_gpuvm_destroy_process_vm(dev->kgd, pdd->vm);
821 822 823
	pdd->vm = NULL;

	return ret;
824 825 826 827 828 829 830 831 832 833 834 835
}

/*
 * Direct the IOMMU to bind the process (specifically the pasid->mm)
 * to the device.
 * Unbinding occurs when the process dies or the device is removed.
 *
 * Assumes that the process lock is held.
 */
struct kfd_process_device *kfd_bind_process_to_device(struct kfd_dev *dev,
							struct kfd_process *p)
{
836
	struct kfd_process_device *pdd;
837
	int err;
838

839 840 841
	pdd = kfd_get_process_device_data(dev, p);
	if (!pdd) {
		pr_err("Process device data doesn't exist\n");
842
		return ERR_PTR(-ENOMEM);
843
	}
844

845 846
	err = kfd_iommu_bind_process_to_device(pdd);
	if (err)
847 848
		return ERR_PTR(err);

849 850 851 852
	err = kfd_process_device_init_vm(pdd, NULL);
	if (err)
		return ERR_PTR(err);

853 854 855
	return pdd;
}

856 857
struct kfd_process_device *kfd_get_first_process_device_data(
						struct kfd_process *p)
858 859 860 861 862 863
{
	return list_first_entry(&p->per_device_data,
				struct kfd_process_device,
				per_device_list);
}

864 865
struct kfd_process_device *kfd_get_next_process_device_data(
						struct kfd_process *p,
866 867 868 869 870 871 872 873 874 875 876
						struct kfd_process_device *pdd)
{
	if (list_is_last(&pdd->per_device_list, &p->per_device_data))
		return NULL;
	return list_next_entry(pdd, per_device_list);
}

bool kfd_has_process_device_data(struct kfd_process *p)
{
	return !(list_empty(&p->per_device_data));
}
877

878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908
/* Create specific handle mapped to mem from process local memory idr
 * Assumes that the process lock is held.
 */
int kfd_process_device_create_obj_handle(struct kfd_process_device *pdd,
					void *mem)
{
	return idr_alloc(&pdd->alloc_idr, mem, 0, 0, GFP_KERNEL);
}

/* Translate specific handle from process local memory idr
 * Assumes that the process lock is held.
 */
void *kfd_process_device_translate_handle(struct kfd_process_device *pdd,
					int handle)
{
	if (handle < 0)
		return NULL;

	return idr_find(&pdd->alloc_idr, handle);
}

/* Remove specific handle from process local memory idr
 * Assumes that the process lock is held.
 */
void kfd_process_device_remove_obj_handle(struct kfd_process_device *pdd,
					int handle)
{
	if (handle >= 0)
		idr_remove(&pdd->alloc_idr, handle);
}

909
/* This increments the process->ref counter. */
910 911
struct kfd_process *kfd_lookup_process_by_pasid(unsigned int pasid)
{
912
	struct kfd_process *p, *ret_p = NULL;
913 914 915 916 917 918
	unsigned int temp;

	int idx = srcu_read_lock(&kfd_processes_srcu);

	hash_for_each_rcu(kfd_processes_table, temp, p, kfd_processes) {
		if (p->pasid == pasid) {
919
			kref_get(&p->ref);
920
			ret_p = p;
921 922 923 924 925 926
			break;
		}
	}

	srcu_read_unlock(&kfd_processes_srcu, idx);

927
	return ret_p;
928
}
F
Felix Kuehling 已提交
929

930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950
/* This increments the process->ref counter. */
struct kfd_process *kfd_lookup_process_by_mm(const struct mm_struct *mm)
{
	struct kfd_process *p;

	int idx = srcu_read_lock(&kfd_processes_srcu);

	p = find_process_by_mm(mm);
	if (p)
		kref_get(&p->ref);

	srcu_read_unlock(&kfd_processes_srcu, idx);

	return p;
}

/* process_evict_queues - Evict all user queues of a process
 *
 * Eviction is reference-counted per process-device. This means multiple
 * evictions from different sources can be nested safely.
 */
951
int kfd_process_evict_queues(struct kfd_process *p)
952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986
{
	struct kfd_process_device *pdd;
	int r = 0;
	unsigned int n_evicted = 0;

	list_for_each_entry(pdd, &p->per_device_data, per_device_list) {
		r = pdd->dev->dqm->ops.evict_process_queues(pdd->dev->dqm,
							    &pdd->qpd);
		if (r) {
			pr_err("Failed to evict process queues\n");
			goto fail;
		}
		n_evicted++;
	}

	return r;

fail:
	/* To keep state consistent, roll back partial eviction by
	 * restoring queues
	 */
	list_for_each_entry(pdd, &p->per_device_data, per_device_list) {
		if (n_evicted == 0)
			break;
		if (pdd->dev->dqm->ops.restore_process_queues(pdd->dev->dqm,
							      &pdd->qpd))
			pr_err("Failed to restore queues\n");

		n_evicted--;
	}

	return r;
}

/* process_restore_queues - Restore all user queues of a process */
987
int kfd_process_restore_queues(struct kfd_process *p)
988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027
{
	struct kfd_process_device *pdd;
	int r, ret = 0;

	list_for_each_entry(pdd, &p->per_device_data, per_device_list) {
		r = pdd->dev->dqm->ops.restore_process_queues(pdd->dev->dqm,
							      &pdd->qpd);
		if (r) {
			pr_err("Failed to restore process queues\n");
			if (!ret)
				ret = r;
		}
	}

	return ret;
}

static void evict_process_worker(struct work_struct *work)
{
	int ret;
	struct kfd_process *p;
	struct delayed_work *dwork;

	dwork = to_delayed_work(work);

	/* Process termination destroys this worker thread. So during the
	 * lifetime of this thread, kfd_process p will be valid
	 */
	p = container_of(dwork, struct kfd_process, eviction_work);
	WARN_ONCE(p->last_eviction_seqno != p->ef->seqno,
		  "Eviction fence mismatch\n");

	/* Narrow window of overlap between restore and evict work
	 * item is possible. Once amdgpu_amdkfd_gpuvm_restore_process_bos
	 * unreserves KFD BOs, it is possible to evicted again. But
	 * restore has few more steps of finish. So lets wait for any
	 * previous restore work to complete
	 */
	flush_delayed_work(&p->restore_work);

1028
	pr_debug("Started evicting pasid 0x%x\n", p->pasid);
1029
	ret = kfd_process_evict_queues(p);
1030 1031 1032 1033
	if (!ret) {
		dma_fence_signal(p->ef);
		dma_fence_put(p->ef);
		p->ef = NULL;
1034
		queue_delayed_work(kfd_restore_wq, &p->restore_work,
1035 1036
				msecs_to_jiffies(PROCESS_RESTORE_TIME_MS));

1037
		pr_debug("Finished evicting pasid 0x%x\n", p->pasid);
1038
	} else
1039
		pr_err("Failed to evict queues of pasid 0x%x\n", p->pasid);
1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053
}

static void restore_process_worker(struct work_struct *work)
{
	struct delayed_work *dwork;
	struct kfd_process *p;
	int ret = 0;

	dwork = to_delayed_work(work);

	/* Process termination destroys this worker thread. So during the
	 * lifetime of this thread, kfd_process p will be valid
	 */
	p = container_of(dwork, struct kfd_process, restore_work);
1054
	pr_debug("Started restoring pasid 0x%x\n", p->pasid);
1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066

	/* Setting last_restore_timestamp before successful restoration.
	 * Otherwise this would have to be set by KGD (restore_process_bos)
	 * before KFD BOs are unreserved. If not, the process can be evicted
	 * again before the timestamp is set.
	 * If restore fails, the timestamp will be set again in the next
	 * attempt. This would mean that the minimum GPU quanta would be
	 * PROCESS_ACTIVE_TIME_MS - (time to execute the following two
	 * functions)
	 */

	p->last_restore_timestamp = get_jiffies_64();
A
Amber Lin 已提交
1067
	ret = amdgpu_amdkfd_gpuvm_restore_process_bos(p->kgd_process_info,
1068 1069
						     &p->ef);
	if (ret) {
1070
		pr_debug("Failed to restore BOs of pasid 0x%x, retry after %d ms\n",
1071
			 p->pasid, PROCESS_BACK_OFF_TIME_MS);
1072
		ret = queue_delayed_work(kfd_restore_wq, &p->restore_work,
1073 1074 1075 1076 1077
				msecs_to_jiffies(PROCESS_BACK_OFF_TIME_MS));
		WARN(!ret, "reschedule restore work failed\n");
		return;
	}

1078
	ret = kfd_process_restore_queues(p);
1079
	if (!ret)
1080
		pr_debug("Finished restoring pasid 0x%x\n", p->pasid);
1081
	else
1082
		pr_err("Failed to restore queues of pasid 0x%x\n", p->pasid);
1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094
}

void kfd_suspend_all_processes(void)
{
	struct kfd_process *p;
	unsigned int temp;
	int idx = srcu_read_lock(&kfd_processes_srcu);

	hash_for_each_rcu(kfd_processes_table, temp, p, kfd_processes) {
		cancel_delayed_work_sync(&p->eviction_work);
		cancel_delayed_work_sync(&p->restore_work);

1095
		if (kfd_process_evict_queues(p))
1096
			pr_err("Failed to suspend process 0x%x\n", p->pasid);
1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110
		dma_fence_signal(p->ef);
		dma_fence_put(p->ef);
		p->ef = NULL;
	}
	srcu_read_unlock(&kfd_processes_srcu, idx);
}

int kfd_resume_all_processes(void)
{
	struct kfd_process *p;
	unsigned int temp;
	int ret = 0, idx = srcu_read_lock(&kfd_processes_srcu);

	hash_for_each_rcu(kfd_processes_table, temp, p, kfd_processes) {
1111
		if (!queue_delayed_work(kfd_restore_wq, &p->restore_work, 0)) {
1112 1113 1114 1115 1116 1117 1118 1119 1120
			pr_err("Restore process %d failed during resume\n",
			       p->pasid);
			ret = -EFAULT;
		}
	}
	srcu_read_unlock(&kfd_processes_srcu, idx);
	return ret;
}

1121
int kfd_reserved_mem_mmap(struct kfd_dev *dev, struct kfd_process *process,
F
Felix Kuehling 已提交
1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150
			  struct vm_area_struct *vma)
{
	struct kfd_process_device *pdd;
	struct qcm_process_device *qpd;

	if ((vma->vm_end - vma->vm_start) != KFD_CWSR_TBA_TMA_SIZE) {
		pr_err("Incorrect CWSR mapping size.\n");
		return -EINVAL;
	}

	pdd = kfd_get_process_device_data(dev, process);
	if (!pdd)
		return -EINVAL;
	qpd = &pdd->qpd;

	qpd->cwsr_kaddr = (void *)__get_free_pages(GFP_KERNEL | __GFP_ZERO,
					get_order(KFD_CWSR_TBA_TMA_SIZE));
	if (!qpd->cwsr_kaddr) {
		pr_err("Error allocating per process CWSR buffer.\n");
		return -ENOMEM;
	}

	vma->vm_flags |= VM_IO | VM_DONTCOPY | VM_DONTEXPAND
		| VM_NORESERVE | VM_DONTDUMP | VM_PFNMAP;
	/* Mapping pages to user process */
	return remap_pfn_range(vma, vma->vm_start,
			       PFN_DOWN(__pa(qpd->cwsr_kaddr)),
			       KFD_CWSR_TBA_TMA_SIZE, vma->vm_page_prot);
}
1151

1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167
void kfd_flush_tlb(struct kfd_process_device *pdd)
{
	struct kfd_dev *dev = pdd->dev;
	const struct kfd2kgd_calls *f2g = dev->kfd2kgd;

	if (dev->dqm->sched_policy == KFD_SCHED_POLICY_NO_HWS) {
		/* Nothing to flush until a VMID is assigned, which
		 * only happens when the first queue is created.
		 */
		if (pdd->qpd.vmid)
			f2g->invalidate_tlbs_vmid(dev->kgd, pdd->qpd.vmid);
	} else {
		f2g->invalidate_tlbs(dev->kgd, pdd->process->pasid);
	}
}

1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178
#if defined(CONFIG_DEBUG_FS)

int kfd_debugfs_mqds_by_process(struct seq_file *m, void *data)
{
	struct kfd_process *p;
	unsigned int temp;
	int r = 0;

	int idx = srcu_read_lock(&kfd_processes_srcu);

	hash_for_each_rcu(kfd_processes_table, temp, p, kfd_processes) {
1179
		seq_printf(m, "Process %d PASID 0x%x:\n",
1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195
			   p->lead_thread->tgid, p->pasid);

		mutex_lock(&p->mutex);
		r = pqm_debugfs_mqds(m, &p->pqm);
		mutex_unlock(&p->mutex);

		if (r)
			break;
	}

	srcu_read_unlock(&kfd_processes_srcu, idx);

	return r;
}

#endif
1196