kfd_device_queue_manager.c 60.4 KB
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// SPDX-License-Identifier: GPL-2.0 OR MIT
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/*
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 * Copyright 2014-2022 Advanced Micro Devices, Inc.
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 *
 * 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.
 *
 */

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#include <linux/ratelimit.h>
#include <linux/printk.h>
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#include <linux/slab.h>
#include <linux/list.h>
#include <linux/types.h>
#include <linux/bitops.h>
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#include <linux/sched.h>
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#include "kfd_priv.h"
#include "kfd_device_queue_manager.h"
#include "kfd_mqd_manager.h"
#include "cik_regs.h"
#include "kfd_kernel_queue.h"
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#include "amdgpu_amdkfd.h"
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/* Size of the per-pipe EOP queue */
#define CIK_HPD_EOP_BYTES_LOG2 11
#define CIK_HPD_EOP_BYTES (1U << CIK_HPD_EOP_BYTES_LOG2)

static int set_pasid_vmid_mapping(struct device_queue_manager *dqm,
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				  u32 pasid, unsigned int vmid);
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static int execute_queues_cpsch(struct device_queue_manager *dqm,
				enum kfd_unmap_queues_filter filter,
				uint32_t filter_param);
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static int unmap_queues_cpsch(struct device_queue_manager *dqm,
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				enum kfd_unmap_queues_filter filter,
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				uint32_t filter_param, bool reset);
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static int map_queues_cpsch(struct device_queue_manager *dqm);

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static void deallocate_sdma_queue(struct device_queue_manager *dqm,
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				struct queue *q);
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static inline void deallocate_hqd(struct device_queue_manager *dqm,
				struct queue *q);
static int allocate_hqd(struct device_queue_manager *dqm, struct queue *q);
static int allocate_sdma_queue(struct device_queue_manager *dqm,
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				struct queue *q, const uint32_t *restore_sdma_id);
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static void kfd_process_hw_exception(struct work_struct *work);

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static inline
enum KFD_MQD_TYPE get_mqd_type_from_queue_type(enum kfd_queue_type type)
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{
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	if (type == KFD_QUEUE_TYPE_SDMA || type == KFD_QUEUE_TYPE_SDMA_XGMI)
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		return KFD_MQD_TYPE_SDMA;
	return KFD_MQD_TYPE_CP;
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}

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static bool is_pipe_enabled(struct device_queue_manager *dqm, int mec, int pipe)
{
	int i;
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	int pipe_offset = (mec * dqm->dev->shared_resources.num_pipe_per_mec
		+ pipe) * dqm->dev->shared_resources.num_queue_per_pipe;
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	/* queue is available for KFD usage if bit is 1 */
	for (i = 0; i <  dqm->dev->shared_resources.num_queue_per_pipe; ++i)
		if (test_bit(pipe_offset + i,
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			      dqm->dev->shared_resources.cp_queue_bitmap))
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			return true;
	return false;
}

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unsigned int get_cp_queues_num(struct device_queue_manager *dqm)
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{
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	return bitmap_weight(dqm->dev->shared_resources.cp_queue_bitmap,
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				KGD_MAX_QUEUES);
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}

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unsigned int get_queues_per_pipe(struct device_queue_manager *dqm)
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{
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	return dqm->dev->shared_resources.num_queue_per_pipe;
}

unsigned int get_pipes_per_mec(struct device_queue_manager *dqm)
{
	return dqm->dev->shared_resources.num_pipe_per_mec;
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}

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static unsigned int get_num_all_sdma_engines(struct device_queue_manager *dqm)
{
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	return kfd_get_num_sdma_engines(dqm->dev) +
		kfd_get_num_xgmi_sdma_engines(dqm->dev);
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}

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unsigned int get_num_sdma_queues(struct device_queue_manager *dqm)
{
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	return kfd_get_num_sdma_engines(dqm->dev) *
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		dqm->dev->device_info.num_sdma_queues_per_engine;
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}

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unsigned int get_num_xgmi_sdma_queues(struct device_queue_manager *dqm)
{
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	return kfd_get_num_xgmi_sdma_engines(dqm->dev) *
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		dqm->dev->device_info.num_sdma_queues_per_engine;
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}

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void program_sh_mem_settings(struct device_queue_manager *dqm,
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					struct qcm_process_device *qpd)
{
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	return dqm->dev->kfd2kgd->program_sh_mem_settings(
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						dqm->dev->adev, qpd->vmid,
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						qpd->sh_mem_config,
						qpd->sh_mem_ape1_base,
						qpd->sh_mem_ape1_limit,
						qpd->sh_mem_bases);
}

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static void increment_queue_count(struct device_queue_manager *dqm,
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			enum kfd_queue_type type)
{
	dqm->active_queue_count++;
	if (type == KFD_QUEUE_TYPE_COMPUTE || type == KFD_QUEUE_TYPE_DIQ)
		dqm->active_cp_queue_count++;
}

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static void decrement_queue_count(struct device_queue_manager *dqm,
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			enum kfd_queue_type type)
{
	dqm->active_queue_count--;
	if (type == KFD_QUEUE_TYPE_COMPUTE || type == KFD_QUEUE_TYPE_DIQ)
		dqm->active_cp_queue_count--;
}

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/*
 * Allocate a doorbell ID to this queue.
 * If doorbell_id is passed in, make sure requested ID is valid then allocate it.
 */
static int allocate_doorbell(struct qcm_process_device *qpd,
			     struct queue *q,
			     uint32_t const *restore_id)
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{
	struct kfd_dev *dev = qpd->dqm->dev;

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	if (!KFD_IS_SOC15(dev)) {
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		/* On pre-SOC15 chips we need to use the queue ID to
		 * preserve the user mode ABI.
		 */
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		if (restore_id && *restore_id != q->properties.queue_id)
			return -EINVAL;

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		q->doorbell_id = q->properties.queue_id;
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	} else if (q->properties.type == KFD_QUEUE_TYPE_SDMA ||
			q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI) {
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		/* For SDMA queues on SOC15 with 8-byte doorbell, use static
		 * doorbell assignments based on the engine and queue id.
		 * The doobell index distance between RLC (2*i) and (2*i+1)
		 * for a SDMA engine is 512.
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		 */
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		uint32_t *idx_offset = dev->shared_resources.sdma_doorbell_idx;
		uint32_t valid_id = idx_offset[q->properties.sdma_engine_id]
						+ (q->properties.sdma_queue_id & 1)
						* KFD_QUEUE_DOORBELL_MIRROR_OFFSET
						+ (q->properties.sdma_queue_id >> 1);

		if (restore_id && *restore_id != valid_id)
			return -EINVAL;
		q->doorbell_id = valid_id;
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	} else {
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		/* For CP queues on SOC15 */
		if (restore_id) {
			/* make sure that ID is free  */
			if (__test_and_set_bit(*restore_id, qpd->doorbell_bitmap))
				return -EINVAL;

			q->doorbell_id = *restore_id;
		} else {
			/* or reserve a free doorbell ID */
			unsigned int found;

			found = find_first_zero_bit(qpd->doorbell_bitmap,
						KFD_MAX_NUM_OF_QUEUES_PER_PROCESS);
			if (found >= KFD_MAX_NUM_OF_QUEUES_PER_PROCESS) {
				pr_debug("No doorbells available");
				return -EBUSY;
			}
			set_bit(found, qpd->doorbell_bitmap);
			q->doorbell_id = found;
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		}
	}

	q->properties.doorbell_off =
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		kfd_get_doorbell_dw_offset_in_bar(dev, qpd_to_pdd(qpd),
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					  q->doorbell_id);
	return 0;
}

static void deallocate_doorbell(struct qcm_process_device *qpd,
				struct queue *q)
{
	unsigned int old;
	struct kfd_dev *dev = qpd->dqm->dev;

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	if (!KFD_IS_SOC15(dev) ||
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	    q->properties.type == KFD_QUEUE_TYPE_SDMA ||
	    q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI)
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		return;

	old = test_and_clear_bit(q->doorbell_id, qpd->doorbell_bitmap);
	WARN_ON(!old);
}

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static void program_trap_handler_settings(struct device_queue_manager *dqm,
				struct qcm_process_device *qpd)
{
	if (dqm->dev->kfd2kgd->program_trap_handler_settings)
		dqm->dev->kfd2kgd->program_trap_handler_settings(
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						dqm->dev->adev, qpd->vmid,
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						qpd->tba_addr, qpd->tma_addr);
}

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static int allocate_vmid(struct device_queue_manager *dqm,
			struct qcm_process_device *qpd,
			struct queue *q)
{
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	int allocated_vmid = -1, i;
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	for (i = dqm->dev->vm_info.first_vmid_kfd;
			i <= dqm->dev->vm_info.last_vmid_kfd; i++) {
		if (!dqm->vmid_pasid[i]) {
			allocated_vmid = i;
			break;
		}
	}

	if (allocated_vmid < 0) {
		pr_err("no more vmid to allocate\n");
		return -ENOSPC;
	}

	pr_debug("vmid allocated: %d\n", allocated_vmid);

	dqm->vmid_pasid[allocated_vmid] = q->process->pasid;
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	set_pasid_vmid_mapping(dqm, q->process->pasid, allocated_vmid);
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	qpd->vmid = allocated_vmid;
	q->properties.vmid = allocated_vmid;

	program_sh_mem_settings(dqm, qpd);

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	if (KFD_IS_SOC15(dqm->dev) && dqm->dev->cwsr_enabled)
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		program_trap_handler_settings(dqm, qpd);

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	/* qpd->page_table_base is set earlier when register_process()
	 * is called, i.e. when the first queue is created.
	 */
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	dqm->dev->kfd2kgd->set_vm_context_page_table_base(dqm->dev->adev,
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			qpd->vmid,
			qpd->page_table_base);
	/* invalidate the VM context after pasid and vmid mapping is set up */
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	kfd_flush_tlb(qpd_to_pdd(qpd), TLB_FLUSH_LEGACY);
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	if (dqm->dev->kfd2kgd->set_scratch_backing_va)
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		dqm->dev->kfd2kgd->set_scratch_backing_va(dqm->dev->adev,
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				qpd->sh_hidden_private_base, qpd->vmid);
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	return 0;
}

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static int flush_texture_cache_nocpsch(struct kfd_dev *kdev,
				struct qcm_process_device *qpd)
{
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	const struct packet_manager_funcs *pmf = qpd->dqm->packet_mgr.pmf;
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	int ret;
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	if (!qpd->ib_kaddr)
		return -ENOMEM;

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	ret = pmf->release_mem(qpd->ib_base, (uint32_t *)qpd->ib_kaddr);
	if (ret)
		return ret;
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	return amdgpu_amdkfd_submit_ib(kdev->adev, KGD_ENGINE_MEC1, qpd->vmid,
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				qpd->ib_base, (uint32_t *)qpd->ib_kaddr,
				pmf->release_mem_size / sizeof(uint32_t));
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}

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static void deallocate_vmid(struct device_queue_manager *dqm,
				struct qcm_process_device *qpd,
				struct queue *q)
{
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	/* On GFX v7, CP doesn't flush TC at dequeue */
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	if (q->device->adev->asic_type == CHIP_HAWAII)
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		if (flush_texture_cache_nocpsch(q->device, qpd))
			pr_err("Failed to flush TC\n");

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	kfd_flush_tlb(qpd_to_pdd(qpd), TLB_FLUSH_LEGACY);
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	/* Release the vmid mapping */
	set_pasid_vmid_mapping(dqm, 0, qpd->vmid);
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	dqm->vmid_pasid[qpd->vmid] = 0;
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	qpd->vmid = 0;
	q->properties.vmid = 0;
}

static int create_queue_nocpsch(struct device_queue_manager *dqm,
				struct queue *q,
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				struct qcm_process_device *qpd,
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				const struct kfd_criu_queue_priv_data *qd,
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				const void *restore_mqd, const void *restore_ctl_stack)
328
{
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	struct mqd_manager *mqd_mgr;
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	int retval;

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	dqm_lock(dqm);
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	if (dqm->total_queue_count >= max_num_of_queues_per_device) {
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		pr_warn("Can't create new usermode queue because %d queues were already created\n",
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				dqm->total_queue_count);
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		retval = -EPERM;
		goto out_unlock;
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	}

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	if (list_empty(&qpd->queues_list)) {
		retval = allocate_vmid(dqm, qpd, q);
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		if (retval)
			goto out_unlock;
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	}
	q->properties.vmid = qpd->vmid;
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	/*
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	 * Eviction state logic: mark all queues as evicted, even ones
	 * not currently active. Restoring inactive queues later only
	 * updates the is_evicted flag but is a no-op otherwise.
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	 */
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	q->properties.is_evicted = !!qpd->evicted;
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	q->properties.tba_addr = qpd->tba_addr;
	q->properties.tma_addr = qpd->tma_addr;

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	mqd_mgr = dqm->mqd_mgrs[get_mqd_type_from_queue_type(
			q->properties.type)];
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	if (q->properties.type == KFD_QUEUE_TYPE_COMPUTE) {
		retval = allocate_hqd(dqm, q);
		if (retval)
			goto deallocate_vmid;
		pr_debug("Loading mqd to hqd on pipe %d, queue %d\n",
			q->pipe, q->queue);
	} else if (q->properties.type == KFD_QUEUE_TYPE_SDMA ||
		q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI) {
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		retval = allocate_sdma_queue(dqm, q, qd ? &qd->sdma_id : NULL);
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		if (retval)
			goto deallocate_vmid;
		dqm->asic_ops.init_sdma_vm(dqm, q, qpd);
	}

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	retval = allocate_doorbell(qpd, q, qd ? &qd->doorbell_id : NULL);
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	if (retval)
		goto out_deallocate_hqd;

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	/* Temporarily release dqm lock to avoid a circular lock dependency */
	dqm_unlock(dqm);
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	q->mqd_mem_obj = mqd_mgr->allocate_mqd(mqd_mgr->dev, &q->properties);
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	dqm_lock(dqm);

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	if (!q->mqd_mem_obj) {
		retval = -ENOMEM;
		goto out_deallocate_doorbell;
	}
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	if (qd)
		mqd_mgr->restore_mqd(mqd_mgr, &q->mqd, q->mqd_mem_obj, &q->gart_mqd_addr,
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				     &q->properties, restore_mqd, restore_ctl_stack,
				     qd->ctl_stack_size);
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	else
		mqd_mgr->init_mqd(mqd_mgr, &q->mqd, q->mqd_mem_obj,
					&q->gart_mqd_addr, &q->properties);

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	if (q->properties.is_active) {
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		if (!dqm->sched_running) {
			WARN_ONCE(1, "Load non-HWS mqd while stopped\n");
			goto add_queue_to_list;
		}
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		if (WARN(q->process->mm != current->mm,
					"should only run in user thread"))
			retval = -EFAULT;
		else
			retval = mqd_mgr->load_mqd(mqd_mgr, q->mqd, q->pipe,
					q->queue, &q->properties, current->mm);
		if (retval)
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			goto out_free_mqd;
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	}

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add_queue_to_list:
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	list_add(&q->list, &qpd->queues_list);
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	qpd->queue_count++;
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	if (q->properties.is_active)
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		increment_queue_count(dqm, q->properties.type);
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	/*
	 * Unconditionally increment this counter, regardless of the queue's
	 * type or whether the queue is active.
	 */
	dqm->total_queue_count++;
	pr_debug("Total of %d queues are accountable so far\n",
			dqm->total_queue_count);
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	goto out_unlock;
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out_free_mqd:
	mqd_mgr->free_mqd(mqd_mgr, q->mqd, q->mqd_mem_obj);
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out_deallocate_doorbell:
	deallocate_doorbell(qpd, q);
out_deallocate_hqd:
	if (q->properties.type == KFD_QUEUE_TYPE_COMPUTE)
		deallocate_hqd(dqm, q);
	else if (q->properties.type == KFD_QUEUE_TYPE_SDMA ||
		q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI)
		deallocate_sdma_queue(dqm, q);
deallocate_vmid:
	if (list_empty(&qpd->queues_list))
		deallocate_vmid(dqm, qpd, q);
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out_unlock:
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	dqm_unlock(dqm);
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	return retval;
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}

static int allocate_hqd(struct device_queue_manager *dqm, struct queue *q)
{
	bool set;
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	int pipe, bit, i;
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	set = false;

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	for (pipe = dqm->next_pipe_to_allocate, i = 0;
			i < get_pipes_per_mec(dqm);
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			pipe = ((pipe + 1) % get_pipes_per_mec(dqm)), ++i) {

		if (!is_pipe_enabled(dqm, 0, pipe))
			continue;

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		if (dqm->allocated_queues[pipe] != 0) {
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			bit = ffs(dqm->allocated_queues[pipe]) - 1;
			dqm->allocated_queues[pipe] &= ~(1 << bit);
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			q->pipe = pipe;
			q->queue = bit;
			set = true;
			break;
		}
	}

468
	if (!set)
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		return -EBUSY;

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	pr_debug("hqd slot - pipe %d, queue %d\n", q->pipe, q->queue);
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	/* horizontal hqd allocation */
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	dqm->next_pipe_to_allocate = (pipe + 1) % get_pipes_per_mec(dqm);
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	return 0;
}

static inline void deallocate_hqd(struct device_queue_manager *dqm,
				struct queue *q)
{
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	dqm->allocated_queues[q->pipe] |= (1 << q->queue);
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}

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#define SQ_IND_CMD_CMD_KILL		0x00000003
#define SQ_IND_CMD_MODE_BROADCAST	0x00000001

static int dbgdev_wave_reset_wavefronts(struct kfd_dev *dev, struct kfd_process *p)
{
	int status = 0;
	unsigned int vmid;
	uint16_t queried_pasid;
	union SQ_CMD_BITS reg_sq_cmd;
	union GRBM_GFX_INDEX_BITS reg_gfx_index;
	struct kfd_process_device *pdd;
	int first_vmid_to_scan = dev->vm_info.first_vmid_kfd;
	int last_vmid_to_scan = dev->vm_info.last_vmid_kfd;

	reg_sq_cmd.u32All = 0;
	reg_gfx_index.u32All = 0;

	pr_debug("Killing all process wavefronts\n");

	/* Scan all registers in the range ATC_VMID8_PASID_MAPPING ..
	 * ATC_VMID15_PASID_MAPPING
	 * to check which VMID the current process is mapped to.
	 */

	for (vmid = first_vmid_to_scan; vmid <= last_vmid_to_scan; vmid++) {
		status = dev->kfd2kgd->get_atc_vmid_pasid_mapping_info
				(dev->adev, vmid, &queried_pasid);

		if (status && queried_pasid == p->pasid) {
			pr_debug("Killing wave fronts of vmid %d and pasid 0x%x\n",
					vmid, p->pasid);
			break;
		}
	}

	if (vmid > last_vmid_to_scan) {
		pr_err("Didn't find vmid for pasid 0x%x\n", p->pasid);
		return -EFAULT;
	}

	/* taking the VMID for that process on the safe way using PDD */
	pdd = kfd_get_process_device_data(dev, p);
	if (!pdd)
		return -EFAULT;

	reg_gfx_index.bits.sh_broadcast_writes = 1;
	reg_gfx_index.bits.se_broadcast_writes = 1;
	reg_gfx_index.bits.instance_broadcast_writes = 1;
	reg_sq_cmd.bits.mode = SQ_IND_CMD_MODE_BROADCAST;
	reg_sq_cmd.bits.cmd = SQ_IND_CMD_CMD_KILL;
	reg_sq_cmd.bits.vm_id = vmid;

	dev->kfd2kgd->wave_control_execute(dev->adev,
					reg_gfx_index.u32All,
					reg_sq_cmd.u32All);

	return 0;
}

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/* Access to DQM has to be locked before calling destroy_queue_nocpsch_locked
 * to avoid asynchronized access
 */
static int destroy_queue_nocpsch_locked(struct device_queue_manager *dqm,
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				struct qcm_process_device *qpd,
				struct queue *q)
{
	int retval;
551
	struct mqd_manager *mqd_mgr;
552

553 554
	mqd_mgr = dqm->mqd_mgrs[get_mqd_type_from_queue_type(
			q->properties.type)];
555

556
	if (q->properties.type == KFD_QUEUE_TYPE_COMPUTE)
557
		deallocate_hqd(dqm, q);
558
	else if (q->properties.type == KFD_QUEUE_TYPE_SDMA)
559
		deallocate_sdma_queue(dqm, q);
560
	else if (q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI)
561
		deallocate_sdma_queue(dqm, q);
562
	else {
563
		pr_debug("q->properties.type %d is invalid\n",
564
				q->properties.type);
565
		return -EINVAL;
566
	}
567
	dqm->total_queue_count--;
568

569 570
	deallocate_doorbell(qpd, q);

571 572 573 574 575
	if (!dqm->sched_running) {
		WARN_ONCE(1, "Destroy non-HWS queue while stopped\n");
		return 0;
	}

576
	retval = mqd_mgr->destroy_mqd(mqd_mgr, q->mqd,
577
				KFD_PREEMPT_TYPE_WAVEFRONT_RESET,
578
				KFD_UNMAP_LATENCY_MS,
579
				q->pipe, q->queue);
580 581
	if (retval == -ETIME)
		qpd->reset_wavefronts = true;
582 583

	list_del(&q->list);
584 585 586 587 588 589 590 591 592 593 594 595
	if (list_empty(&qpd->queues_list)) {
		if (qpd->reset_wavefronts) {
			pr_warn("Resetting wave fronts (nocpsch) on dev %p\n",
					dqm->dev);
			/* dbgdev_wave_reset_wavefronts has to be called before
			 * deallocate_vmid(), i.e. when vmid is still in use.
			 */
			dbgdev_wave_reset_wavefronts(dqm->dev,
					qpd->pqm->process);
			qpd->reset_wavefronts = false;
		}

596
		deallocate_vmid(dqm, qpd, q);
597
	}
598
	qpd->queue_count--;
599
	if (q->properties.is_active) {
600
		decrement_queue_count(dqm, q->properties.type);
601 602 603 604 605
		if (q->properties.is_gws) {
			dqm->gws_queue_count--;
			qpd->mapped_gws_queue = false;
		}
	}
606

607 608
	return retval;
}
609

610 611 612 613 614
static int destroy_queue_nocpsch(struct device_queue_manager *dqm,
				struct qcm_process_device *qpd,
				struct queue *q)
{
	int retval;
615 616
	uint64_t sdma_val = 0;
	struct kfd_process_device *pdd = qpd_to_pdd(qpd);
617 618
	struct mqd_manager *mqd_mgr =
		dqm->mqd_mgrs[get_mqd_type_from_queue_type(q->properties.type)];
619 620 621 622

	/* Get the SDMA queue stats */
	if ((q->properties.type == KFD_QUEUE_TYPE_SDMA) ||
	    (q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI)) {
623
		retval = read_sdma_queue_counter((uint64_t __user *)q->properties.read_ptr,
624 625 626 627 628
							&sdma_val);
		if (retval)
			pr_err("Failed to read SDMA queue counter for queue: %d\n",
				q->properties.queue_id);
	}
629

630
	dqm_lock(dqm);
631
	retval = destroy_queue_nocpsch_locked(dqm, qpd, q);
632 633
	if (!retval)
		pdd->sdma_past_activity_counter += sdma_val;
634
	dqm_unlock(dqm);
635

636 637
	mqd_mgr->free_mqd(mqd_mgr, q->mqd, q->mqd_mem_obj);

638 639 640
	return retval;
}

641 642
static int update_queue(struct device_queue_manager *dqm, struct queue *q,
			struct mqd_update_info *minfo)
643
{
644
	int retval = 0;
645
	struct mqd_manager *mqd_mgr;
646
	struct kfd_process_device *pdd;
647
	bool prev_active = false;
648

649
	dqm_lock(dqm);
650 651 652 653 654
	pdd = kfd_get_process_device_data(q->device, q->process);
	if (!pdd) {
		retval = -ENODEV;
		goto out_unlock;
	}
655 656
	mqd_mgr = dqm->mqd_mgrs[get_mqd_type_from_queue_type(
			q->properties.type)];
657

F
Felix Kuehling 已提交
658 659 660 661
	/* Save previous activity state for counters */
	prev_active = q->properties.is_active;

	/* Make sure the queue is unmapped before updating the MQD */
662
	if (dqm->sched_policy != KFD_SCHED_POLICY_NO_HWS) {
F
Felix Kuehling 已提交
663
		retval = unmap_queues_cpsch(dqm,
664
				KFD_UNMAP_QUEUES_FILTER_DYNAMIC_QUEUES, 0, false);
F
Felix Kuehling 已提交
665
		if (retval) {
F
Felix Kuehling 已提交
666 667 668
			pr_err("unmap queue failed\n");
			goto out_unlock;
		}
F
Felix Kuehling 已提交
669
	} else if (prev_active &&
F
Felix Kuehling 已提交
670
		   (q->properties.type == KFD_QUEUE_TYPE_COMPUTE ||
671 672
		    q->properties.type == KFD_QUEUE_TYPE_SDMA ||
		    q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI)) {
673 674 675 676 677 678

		if (!dqm->sched_running) {
			WARN_ONCE(1, "Update non-HWS queue while stopped\n");
			goto out_unlock;
		}

679
		retval = mqd_mgr->destroy_mqd(mqd_mgr, q->mqd,
680 681 682
				(dqm->dev->cwsr_enabled ?
				 KFD_PREEMPT_TYPE_WAVEFRONT_SAVE :
				 KFD_PREEMPT_TYPE_WAVEFRONT_DRAIN),
F
Felix Kuehling 已提交
683 684 685 686 687 688 689
				KFD_UNMAP_LATENCY_MS, q->pipe, q->queue);
		if (retval) {
			pr_err("destroy mqd failed\n");
			goto out_unlock;
		}
	}

690
	mqd_mgr->update_mqd(mqd_mgr, q->mqd, &q->properties, minfo);
F
Felix Kuehling 已提交
691

692 693 694
	/*
	 * check active state vs. the previous state and modify
	 * counter accordingly. map_queues_cpsch uses the
695
	 * dqm->active_queue_count to determine whether a new runlist must be
696 697 698
	 * uploaded.
	 */
	if (q->properties.is_active && !prev_active)
699
		increment_queue_count(dqm, q->properties.type);
700
	else if (!q->properties.is_active && prev_active)
701
		decrement_queue_count(dqm, q->properties.type);
702

703 704 705 706 707 708 709 710 711 712 713 714 715 716
	if (q->gws && !q->properties.is_gws) {
		if (q->properties.is_active) {
			dqm->gws_queue_count++;
			pdd->qpd.mapped_gws_queue = true;
		}
		q->properties.is_gws = true;
	} else if (!q->gws && q->properties.is_gws) {
		if (q->properties.is_active) {
			dqm->gws_queue_count--;
			pdd->qpd.mapped_gws_queue = false;
		}
		q->properties.is_gws = false;
	}

717
	if (dqm->sched_policy != KFD_SCHED_POLICY_NO_HWS)
F
Felix Kuehling 已提交
718
		retval = map_queues_cpsch(dqm);
F
Felix Kuehling 已提交
719
	else if (q->properties.is_active &&
F
Felix Kuehling 已提交
720
		 (q->properties.type == KFD_QUEUE_TYPE_COMPUTE ||
721 722
		  q->properties.type == KFD_QUEUE_TYPE_SDMA ||
		  q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI)) {
723 724 725 726 727 728 729 730
		if (WARN(q->process->mm != current->mm,
			 "should only run in user thread"))
			retval = -EFAULT;
		else
			retval = mqd_mgr->load_mqd(mqd_mgr, q->mqd,
						   q->pipe, q->queue,
						   &q->properties, current->mm);
	}
731

K
Kent Russell 已提交
732
out_unlock:
733
	dqm_unlock(dqm);
734 735 736
	return retval;
}

737 738 739 740
static int evict_process_queues_nocpsch(struct device_queue_manager *dqm,
					struct qcm_process_device *qpd)
{
	struct queue *q;
741
	struct mqd_manager *mqd_mgr;
742
	struct kfd_process_device *pdd;
743
	int retval, ret = 0;
744

745
	dqm_lock(dqm);
746 747 748 749
	if (qpd->evicted++ > 0) /* already evicted, do nothing */
		goto out;

	pdd = qpd_to_pdd(qpd);
750
	pr_debug_ratelimited("Evicting PASID 0x%x queues\n",
751 752
			    pdd->process->pasid);

753
	pdd->last_evict_timestamp = get_jiffies_64();
754 755 756
	/* Mark all queues as evicted. Deactivate all active queues on
	 * the qpd.
	 */
757
	list_for_each_entry(q, &qpd->queues_list, list) {
758
		q->properties.is_evicted = true;
759 760
		if (!q->properties.is_active)
			continue;
761

762 763
		mqd_mgr = dqm->mqd_mgrs[get_mqd_type_from_queue_type(
				q->properties.type)];
764
		q->properties.is_active = false;
765
		decrement_queue_count(dqm, q->properties.type);
766 767 768 769
		if (q->properties.is_gws) {
			dqm->gws_queue_count--;
			qpd->mapped_gws_queue = false;
		}
770 771 772 773

		if (WARN_ONCE(!dqm->sched_running, "Evict when stopped\n"))
			continue;

774
		retval = mqd_mgr->destroy_mqd(mqd_mgr, q->mqd,
775 776 777
				(dqm->dev->cwsr_enabled ?
				 KFD_PREEMPT_TYPE_WAVEFRONT_SAVE :
				 KFD_PREEMPT_TYPE_WAVEFRONT_DRAIN),
778
				KFD_UNMAP_LATENCY_MS, q->pipe, q->queue);
779 780 781 782 783
		if (retval && !ret)
			/* Return the first error, but keep going to
			 * maintain a consistent eviction state
			 */
			ret = retval;
784 785 786
	}

out:
787
	dqm_unlock(dqm);
788
	return ret;
789 790 791 792 793 794 795 796 797
}

static int evict_process_queues_cpsch(struct device_queue_manager *dqm,
				      struct qcm_process_device *qpd)
{
	struct queue *q;
	struct kfd_process_device *pdd;
	int retval = 0;

798
	dqm_lock(dqm);
799 800 801 802
	if (qpd->evicted++ > 0) /* already evicted, do nothing */
		goto out;

	pdd = qpd_to_pdd(qpd);
803
	pr_debug_ratelimited("Evicting PASID 0x%x queues\n",
804 805
			    pdd->process->pasid);

806 807 808
	/* Mark all queues as evicted. Deactivate all active queues on
	 * the qpd.
	 */
809
	list_for_each_entry(q, &qpd->queues_list, list) {
810
		q->properties.is_evicted = true;
811 812
		if (!q->properties.is_active)
			continue;
813

814
		q->properties.is_active = false;
815
		decrement_queue_count(dqm, q->properties.type);
816
	}
817
	pdd->last_evict_timestamp = get_jiffies_64();
818 819 820 821 822 823
	retval = execute_queues_cpsch(dqm,
				qpd->is_debug ?
				KFD_UNMAP_QUEUES_FILTER_ALL_QUEUES :
				KFD_UNMAP_QUEUES_FILTER_DYNAMIC_QUEUES, 0);

out:
824
	dqm_unlock(dqm);
825 826 827 828 829 830
	return retval;
}

static int restore_process_queues_nocpsch(struct device_queue_manager *dqm,
					  struct qcm_process_device *qpd)
{
831
	struct mm_struct *mm = NULL;
832
	struct queue *q;
833
	struct mqd_manager *mqd_mgr;
834
	struct kfd_process_device *pdd;
835
	uint64_t pd_base;
836
	uint64_t eviction_duration;
837
	int retval, ret = 0;
838 839 840

	pdd = qpd_to_pdd(qpd);
	/* Retrieve PD base */
841
	pd_base = amdgpu_amdkfd_gpuvm_get_process_page_dir(pdd->drm_priv);
842

843
	dqm_lock(dqm);
844 845 846 847 848 849 850
	if (WARN_ON_ONCE(!qpd->evicted)) /* already restored, do nothing */
		goto out;
	if (qpd->evicted > 1) { /* ref count still > 0, decrement & quit */
		qpd->evicted--;
		goto out;
	}

851
	pr_debug_ratelimited("Restoring PASID 0x%x queues\n",
852 853 854 855
			    pdd->process->pasid);

	/* Update PD Base in QPD */
	qpd->page_table_base = pd_base;
856
	pr_debug("Updated PD address to 0x%llx\n", pd_base);
857 858 859

	if (!list_empty(&qpd->queues_list)) {
		dqm->dev->kfd2kgd->set_vm_context_page_table_base(
860
				dqm->dev->adev,
861 862
				qpd->vmid,
				qpd->page_table_base);
863
		kfd_flush_tlb(pdd, TLB_FLUSH_LEGACY);
864 865
	}

866 867 868 869 870
	/* Take a safe reference to the mm_struct, which may otherwise
	 * disappear even while the kfd_process is still referenced.
	 */
	mm = get_task_mm(pdd->process->lead_thread);
	if (!mm) {
871
		ret = -EFAULT;
872 873 874
		goto out;
	}

875 876 877
	/* Remove the eviction flags. Activate queues that are not
	 * inactive for other reasons.
	 */
878
	list_for_each_entry(q, &qpd->queues_list, list) {
879 880
		q->properties.is_evicted = false;
		if (!QUEUE_IS_ACTIVE(q->properties))
881
			continue;
882

883 884
		mqd_mgr = dqm->mqd_mgrs[get_mqd_type_from_queue_type(
				q->properties.type)];
885
		q->properties.is_active = true;
886
		increment_queue_count(dqm, q->properties.type);
887 888 889 890
		if (q->properties.is_gws) {
			dqm->gws_queue_count++;
			qpd->mapped_gws_queue = true;
		}
891 892 893 894

		if (WARN_ONCE(!dqm->sched_running, "Restore when stopped\n"))
			continue;

895
		retval = mqd_mgr->load_mqd(mqd_mgr, q->mqd, q->pipe,
896
				       q->queue, &q->properties, mm);
897 898 899 900 901
		if (retval && !ret)
			/* Return the first error, but keep going to
			 * maintain a consistent eviction state
			 */
			ret = retval;
902 903
	}
	qpd->evicted = 0;
904 905
	eviction_duration = get_jiffies_64() - pdd->last_evict_timestamp;
	atomic64_add(eviction_duration, &pdd->evict_duration_counter);
906
out:
907 908
	if (mm)
		mmput(mm);
909
	dqm_unlock(dqm);
910
	return ret;
911 912 913 914 915 916 917
}

static int restore_process_queues_cpsch(struct device_queue_manager *dqm,
					struct qcm_process_device *qpd)
{
	struct queue *q;
	struct kfd_process_device *pdd;
918
	uint64_t pd_base;
919
	uint64_t eviction_duration;
920 921 922 923
	int retval = 0;

	pdd = qpd_to_pdd(qpd);
	/* Retrieve PD base */
924
	pd_base = amdgpu_amdkfd_gpuvm_get_process_page_dir(pdd->drm_priv);
925

926
	dqm_lock(dqm);
927 928 929 930 931 932 933
	if (WARN_ON_ONCE(!qpd->evicted)) /* already restored, do nothing */
		goto out;
	if (qpd->evicted > 1) { /* ref count still > 0, decrement & quit */
		qpd->evicted--;
		goto out;
	}

934
	pr_debug_ratelimited("Restoring PASID 0x%x queues\n",
935 936 937 938
			    pdd->process->pasid);

	/* Update PD Base in QPD */
	qpd->page_table_base = pd_base;
939
	pr_debug("Updated PD address to 0x%llx\n", pd_base);
940 941 942 943

	/* activate all active queues on the qpd */
	list_for_each_entry(q, &qpd->queues_list, list) {
		q->properties.is_evicted = false;
944 945 946
		if (!QUEUE_IS_ACTIVE(q->properties))
			continue;

947
		q->properties.is_active = true;
948
		increment_queue_count(dqm, q->properties.type);
949 950 951
	}
	retval = execute_queues_cpsch(dqm,
				KFD_UNMAP_QUEUES_FILTER_DYNAMIC_QUEUES, 0);
952
	qpd->evicted = 0;
953 954
	eviction_duration = get_jiffies_64() - pdd->last_evict_timestamp;
	atomic64_add(eviction_duration, &pdd->evict_duration_counter);
955
out:
956
	dqm_unlock(dqm);
957 958 959
	return retval;
}

960
static int register_process(struct device_queue_manager *dqm,
961 962 963
					struct qcm_process_device *qpd)
{
	struct device_process_node *n;
964
	struct kfd_process_device *pdd;
965
	uint64_t pd_base;
966
	int retval;
967

968
	n = kzalloc(sizeof(*n), GFP_KERNEL);
969 970 971 972 973
	if (!n)
		return -ENOMEM;

	n->qpd = qpd;

974 975
	pdd = qpd_to_pdd(qpd);
	/* Retrieve PD base */
976
	pd_base = amdgpu_amdkfd_gpuvm_get_process_page_dir(pdd->drm_priv);
977

978
	dqm_lock(dqm);
979 980
	list_add(&n->list, &dqm->queues);

981 982
	/* Update PD Base in QPD */
	qpd->page_table_base = pd_base;
983
	pr_debug("Updated PD address to 0x%llx\n", pd_base);
984

985
	retval = dqm->asic_ops.update_qpd(dqm, qpd);
986

987
	dqm->processes_count++;
988

989
	dqm_unlock(dqm);
990

991 992 993 994 995
	/* Outside the DQM lock because under the DQM lock we can't do
	 * reclaim or take other locks that others hold while reclaiming.
	 */
	kfd_inc_compute_active(dqm->dev);

996
	return retval;
997 998
}

999
static int unregister_process(struct device_queue_manager *dqm,
1000 1001 1002 1003 1004
					struct qcm_process_device *qpd)
{
	int retval;
	struct device_process_node *cur, *next;

1005 1006
	pr_debug("qpd->queues_list is %s\n",
			list_empty(&qpd->queues_list) ? "empty" : "not empty");
1007 1008

	retval = 0;
1009
	dqm_lock(dqm);
1010 1011 1012 1013

	list_for_each_entry_safe(cur, next, &dqm->queues, list) {
		if (qpd == cur->qpd) {
			list_del(&cur->list);
1014
			kfree(cur);
1015
			dqm->processes_count--;
1016 1017 1018 1019 1020 1021
			goto out;
		}
	}
	/* qpd not found in dqm list */
	retval = 1;
out:
1022
	dqm_unlock(dqm);
1023 1024 1025 1026 1027 1028 1029

	/* Outside the DQM lock because under the DQM lock we can't do
	 * reclaim or take other locks that others hold while reclaiming.
	 */
	if (!retval)
		kfd_dec_compute_active(dqm->dev);

1030 1031 1032 1033
	return retval;
}

static int
1034
set_pasid_vmid_mapping(struct device_queue_manager *dqm, u32 pasid,
1035 1036
			unsigned int vmid)
{
1037
	return dqm->dev->kfd2kgd->set_pasid_vmid_mapping(
1038
						dqm->dev->adev, pasid, vmid);
1039 1040
}

1041 1042 1043 1044
static void init_interrupts(struct device_queue_manager *dqm)
{
	unsigned int i;

1045 1046
	for (i = 0 ; i < get_pipes_per_mec(dqm) ; i++)
		if (is_pipe_enabled(dqm, 0, i))
1047
			dqm->dev->kfd2kgd->init_interrupts(dqm->dev->adev, i);
1048 1049
}

1050 1051
static int initialize_nocpsch(struct device_queue_manager *dqm)
{
1052
	int pipe, queue;
1053

1054
	pr_debug("num of pipes: %d\n", get_pipes_per_mec(dqm));
1055

K
Kent Russell 已提交
1056 1057 1058 1059 1060
	dqm->allocated_queues = kcalloc(get_pipes_per_mec(dqm),
					sizeof(unsigned int), GFP_KERNEL);
	if (!dqm->allocated_queues)
		return -ENOMEM;

1061
	mutex_init(&dqm->lock_hidden);
1062
	INIT_LIST_HEAD(&dqm->queues);
1063
	dqm->active_queue_count = dqm->next_pipe_to_allocate = 0;
1064
	dqm->active_cp_queue_count = 0;
1065
	dqm->gws_queue_count = 0;
1066

1067 1068 1069 1070 1071
	for (pipe = 0; pipe < get_pipes_per_mec(dqm); pipe++) {
		int pipe_offset = pipe * get_queues_per_pipe(dqm);

		for (queue = 0; queue < get_queues_per_pipe(dqm); queue++)
			if (test_bit(pipe_offset + queue,
1072
				     dqm->dev->shared_resources.cp_queue_bitmap))
1073 1074
				dqm->allocated_queues[pipe] |= 1 << queue;
	}
1075

1076 1077
	memset(dqm->vmid_pasid, 0, sizeof(dqm->vmid_pasid));

1078 1079
	dqm->sdma_bitmap = ~0ULL >> (64 - get_num_sdma_queues(dqm));
	dqm->xgmi_sdma_bitmap = ~0ULL >> (64 - get_num_xgmi_sdma_queues(dqm));
1080 1081 1082 1083

	return 0;
}

1084
static void uninitialize(struct device_queue_manager *dqm)
1085
{
1086 1087
	int i;

1088
	WARN_ON(dqm->active_queue_count > 0 || dqm->processes_count > 0);
1089 1090

	kfree(dqm->allocated_queues);
1091
	for (i = 0 ; i < KFD_MQD_TYPE_MAX ; i++)
1092
		kfree(dqm->mqd_mgrs[i]);
1093
	mutex_destroy(&dqm->lock_hidden);
1094 1095 1096 1097
}

static int start_nocpsch(struct device_queue_manager *dqm)
{
1098 1099
	int r = 0;

1100
	pr_info("SW scheduler is used");
1101
	init_interrupts(dqm);
1102

1103
	if (dqm->dev->adev->asic_type == CHIP_HAWAII)
1104 1105 1106
		r = pm_init(&dqm->packet_mgr, dqm);
	if (!r)
		dqm->sched_running = true;
1107

1108
	return r;
1109 1110 1111 1112
}

static int stop_nocpsch(struct device_queue_manager *dqm)
{
1113
	if (dqm->dev->adev->asic_type == CHIP_HAWAII)
1114
		pm_uninit(&dqm->packet_mgr, false);
1115 1116
	dqm->sched_running = false;

1117 1118 1119
	return 0;
}

1120 1121 1122 1123 1124 1125 1126
static void pre_reset(struct device_queue_manager *dqm)
{
	dqm_lock(dqm);
	dqm->is_resetting = true;
	dqm_unlock(dqm);
}

1127
static int allocate_sdma_queue(struct device_queue_manager *dqm,
1128
				struct queue *q, const uint32_t *restore_sdma_id)
1129 1130 1131
{
	int bit;

1132
	if (q->properties.type == KFD_QUEUE_TYPE_SDMA) {
1133 1134
		if (dqm->sdma_bitmap == 0) {
			pr_err("No more SDMA queue to allocate\n");
1135
			return -ENOMEM;
1136 1137
		}

1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152
		if (restore_sdma_id) {
			/* Re-use existing sdma_id */
			if (!(dqm->sdma_bitmap & (1ULL << *restore_sdma_id))) {
				pr_err("SDMA queue already in use\n");
				return -EBUSY;
			}
			dqm->sdma_bitmap &= ~(1ULL << *restore_sdma_id);
			q->sdma_id = *restore_sdma_id;
		} else {
			/* Find first available sdma_id */
			bit = __ffs64(dqm->sdma_bitmap);
			dqm->sdma_bitmap &= ~(1ULL << bit);
			q->sdma_id = bit;
		}

1153
		q->properties.sdma_engine_id = q->sdma_id %
1154
				kfd_get_num_sdma_engines(dqm->dev);
1155
		q->properties.sdma_queue_id = q->sdma_id /
1156
				kfd_get_num_sdma_engines(dqm->dev);
1157
	} else if (q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI) {
1158 1159
		if (dqm->xgmi_sdma_bitmap == 0) {
			pr_err("No more XGMI SDMA queue to allocate\n");
1160
			return -ENOMEM;
1161
		}
1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174
		if (restore_sdma_id) {
			/* Re-use existing sdma_id */
			if (!(dqm->xgmi_sdma_bitmap & (1ULL << *restore_sdma_id))) {
				pr_err("SDMA queue already in use\n");
				return -EBUSY;
			}
			dqm->xgmi_sdma_bitmap &= ~(1ULL << *restore_sdma_id);
			q->sdma_id = *restore_sdma_id;
		} else {
			bit = __ffs64(dqm->xgmi_sdma_bitmap);
			dqm->xgmi_sdma_bitmap &= ~(1ULL << bit);
			q->sdma_id = bit;
		}
1175 1176 1177 1178 1179 1180
		/* sdma_engine_id is sdma id including
		 * both PCIe-optimized SDMAs and XGMI-
		 * optimized SDMAs. The calculation below
		 * assumes the first N engines are always
		 * PCIe-optimized ones
		 */
1181 1182 1183
		q->properties.sdma_engine_id =
			kfd_get_num_sdma_engines(dqm->dev) +
			q->sdma_id % kfd_get_num_xgmi_sdma_engines(dqm->dev);
1184
		q->properties.sdma_queue_id = q->sdma_id /
1185
			kfd_get_num_xgmi_sdma_engines(dqm->dev);
1186
	}
1187 1188 1189

	pr_debug("SDMA engine id: %d\n", q->properties.sdma_engine_id);
	pr_debug("SDMA queue id: %d\n", q->properties.sdma_queue_id);
1190 1191 1192 1193 1194

	return 0;
}

static void deallocate_sdma_queue(struct device_queue_manager *dqm,
1195
				struct queue *q)
1196
{
1197 1198 1199 1200 1201 1202 1203 1204 1205
	if (q->properties.type == KFD_QUEUE_TYPE_SDMA) {
		if (q->sdma_id >= get_num_sdma_queues(dqm))
			return;
		dqm->sdma_bitmap |= (1ULL << q->sdma_id);
	} else if (q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI) {
		if (q->sdma_id >= get_num_xgmi_sdma_queues(dqm))
			return;
		dqm->xgmi_sdma_bitmap |= (1ULL << q->sdma_id);
	}
1206 1207
}

1208 1209 1210 1211 1212 1213
/*
 * Device Queue Manager implementation for cp scheduler
 */

static int set_sched_resources(struct device_queue_manager *dqm)
{
1214
	int i, mec;
1215 1216
	struct scheduling_resources res;

1217
	res.vmid_mask = dqm->dev->shared_resources.compute_vmid_bitmap;
1218 1219 1220 1221 1222 1223

	res.queue_mask = 0;
	for (i = 0; i < KGD_MAX_QUEUES; ++i) {
		mec = (i / dqm->dev->shared_resources.num_queue_per_pipe)
			/ dqm->dev->shared_resources.num_pipe_per_mec;

1224
		if (!test_bit(i, dqm->dev->shared_resources.cp_queue_bitmap))
1225 1226 1227 1228 1229 1230 1231 1232
			continue;

		/* only acquire queues from the first MEC */
		if (mec > 0)
			continue;

		/* This situation may be hit in the future if a new HW
		 * generation exposes more than 64 queues. If so, the
1233 1234
		 * definition of res.queue_mask needs updating
		 */
1235
		if (WARN_ON(i >= (sizeof(res.queue_mask)*8))) {
1236 1237 1238 1239
			pr_err("Invalid queue enabled by amdgpu: %d\n", i);
			break;
		}

1240 1241
		res.queue_mask |= 1ull
			<< amdgpu_queue_mask_bit_to_set_resource_bit(
1242
				dqm->dev->adev, i);
1243
	}
O
Oak Zeng 已提交
1244 1245
	res.gws_mask = ~0ull;
	res.oac_mask = res.gds_heap_base = res.gds_heap_size = 0;
1246

1247 1248 1249
	pr_debug("Scheduling resources:\n"
			"vmid mask: 0x%8X\n"
			"queue mask: 0x%8llX\n",
1250 1251
			res.vmid_mask, res.queue_mask);

1252
	return pm_send_set_resources(&dqm->packet_mgr, &res);
1253 1254 1255 1256
}

static int initialize_cpsch(struct device_queue_manager *dqm)
{
1257 1258 1259
	uint64_t num_sdma_queues;
	uint64_t num_xgmi_sdma_queues;

1260
	pr_debug("num of pipes: %d\n", get_pipes_per_mec(dqm));
1261

1262
	mutex_init(&dqm->lock_hidden);
1263
	INIT_LIST_HEAD(&dqm->queues);
1264
	dqm->active_queue_count = dqm->processes_count = 0;
1265
	dqm->active_cp_queue_count = 0;
1266
	dqm->gws_queue_count = 0;
1267
	dqm->active_runlist = false;
1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279

	num_sdma_queues = get_num_sdma_queues(dqm);
	if (num_sdma_queues >= BITS_PER_TYPE(dqm->sdma_bitmap))
		dqm->sdma_bitmap = ULLONG_MAX;
	else
		dqm->sdma_bitmap = (BIT_ULL(num_sdma_queues) - 1);

	num_xgmi_sdma_queues = get_num_xgmi_sdma_queues(dqm);
	if (num_xgmi_sdma_queues >= BITS_PER_TYPE(dqm->xgmi_sdma_bitmap))
		dqm->xgmi_sdma_bitmap = ULLONG_MAX;
	else
		dqm->xgmi_sdma_bitmap = (BIT_ULL(num_xgmi_sdma_queues) - 1);
1280

1281 1282
	INIT_WORK(&dqm->hw_exception_work, kfd_process_hw_exception);

1283
	return 0;
1284 1285 1286 1287 1288 1289 1290 1291
}

static int start_cpsch(struct device_queue_manager *dqm)
{
	int retval;

	retval = 0;

1292
	dqm_lock(dqm);
1293
	retval = pm_init(&dqm->packet_mgr, dqm);
1294
	if (retval)
1295 1296 1297
		goto fail_packet_manager_init;

	retval = set_sched_resources(dqm);
1298
	if (retval)
1299 1300
		goto fail_set_sched_resources;

1301
	pr_debug("Allocating fence memory\n");
1302 1303

	/* allocate fence memory on the gart */
1304 1305
	retval = kfd_gtt_sa_allocate(dqm->dev, sizeof(*dqm->fence_addr),
					&dqm->fence_mem);
1306

1307
	if (retval)
1308 1309
		goto fail_allocate_vidmem;

1310
	dqm->fence_addr = (uint64_t *)dqm->fence_mem->cpu_ptr;
1311
	dqm->fence_gpu_addr = dqm->fence_mem->gpu_addr;
1312 1313 1314

	init_interrupts(dqm);

1315 1316
	/* clear hang status when driver try to start the hw scheduler */
	dqm->is_hws_hang = false;
1317
	dqm->is_resetting = false;
1318
	dqm->sched_running = true;
1319
	execute_queues_cpsch(dqm, KFD_UNMAP_QUEUES_FILTER_DYNAMIC_QUEUES, 0);
1320
	dqm_unlock(dqm);
1321 1322 1323 1324

	return 0;
fail_allocate_vidmem:
fail_set_sched_resources:
1325
	pm_uninit(&dqm->packet_mgr, false);
1326
fail_packet_manager_init:
1327
	dqm_unlock(dqm);
1328 1329 1330 1331 1332
	return retval;
}

static int stop_cpsch(struct device_queue_manager *dqm)
{
1333 1334
	bool hanging;

1335
	dqm_lock(dqm);
1336 1337 1338 1339 1340
	if (!dqm->sched_running) {
		dqm_unlock(dqm);
		return 0;
	}

1341
	if (!dqm->is_hws_hang)
1342
		unmap_queues_cpsch(dqm, KFD_UNMAP_QUEUES_FILTER_ALL_QUEUES, 0, false);
1343
	hanging = dqm->is_hws_hang || dqm->is_resetting;
1344
	dqm->sched_running = false;
1345

1346
	pm_release_ib(&dqm->packet_mgr);
D
Dennis Li 已提交
1347

1348
	kfd_gtt_sa_free(dqm->dev, dqm->fence_mem);
1349
	pm_uninit(&dqm->packet_mgr, hanging);
1350
	dqm_unlock(dqm);
1351 1352 1353 1354 1355 1356 1357 1358

	return 0;
}

static int create_kernel_queue_cpsch(struct device_queue_manager *dqm,
					struct kernel_queue *kq,
					struct qcm_process_device *qpd)
{
1359
	dqm_lock(dqm);
1360
	if (dqm->total_queue_count >= max_num_of_queues_per_device) {
1361
		pr_warn("Can't create new kernel queue because %d queues were already created\n",
1362
				dqm->total_queue_count);
1363
		dqm_unlock(dqm);
1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374
		return -EPERM;
	}

	/*
	 * Unconditionally increment this counter, regardless of the queue's
	 * type or whether the queue is active.
	 */
	dqm->total_queue_count++;
	pr_debug("Total of %d queues are accountable so far\n",
			dqm->total_queue_count);

1375
	list_add(&kq->list, &qpd->priv_queue_list);
1376
	increment_queue_count(dqm, kq->queue->properties.type);
1377
	qpd->is_debug = true;
1378
	execute_queues_cpsch(dqm, KFD_UNMAP_QUEUES_FILTER_DYNAMIC_QUEUES, 0);
1379
	dqm_unlock(dqm);
1380 1381 1382 1383 1384 1385 1386 1387

	return 0;
}

static void destroy_kernel_queue_cpsch(struct device_queue_manager *dqm,
					struct kernel_queue *kq,
					struct qcm_process_device *qpd)
{
1388
	dqm_lock(dqm);
1389
	list_del(&kq->list);
1390
	decrement_queue_count(dqm, kq->queue->properties.type);
1391
	qpd->is_debug = false;
1392
	execute_queues_cpsch(dqm, KFD_UNMAP_QUEUES_FILTER_ALL_QUEUES, 0);
1393 1394 1395 1396
	/*
	 * Unconditionally decrement this counter, regardless of the queue's
	 * type.
	 */
1397
	dqm->total_queue_count--;
1398 1399
	pr_debug("Total of %d queues are accountable so far\n",
			dqm->total_queue_count);
1400
	dqm_unlock(dqm);
1401 1402 1403
}

static int create_queue_cpsch(struct device_queue_manager *dqm, struct queue *q,
1404
			struct qcm_process_device *qpd,
1405
			const struct kfd_criu_queue_priv_data *qd,
1406
			const void *restore_mqd, const void *restore_ctl_stack)
1407 1408
{
	int retval;
1409
	struct mqd_manager *mqd_mgr;
1410

1411
	if (dqm->total_queue_count >= max_num_of_queues_per_device) {
1412
		pr_warn("Can't create new usermode queue because %d queues were already created\n",
1413
				dqm->total_queue_count);
1414 1415
		retval = -EPERM;
		goto out;
1416 1417
	}

1418 1419
	if (q->properties.type == KFD_QUEUE_TYPE_SDMA ||
		q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI) {
1420
		dqm_lock(dqm);
1421
		retval = allocate_sdma_queue(dqm, q, qd ? &qd->sdma_id : NULL);
1422
		dqm_unlock(dqm);
F
Felix Kuehling 已提交
1423
		if (retval)
1424
			goto out;
1425
	}
1426

1427
	retval = allocate_doorbell(qpd, q, qd ? &qd->doorbell_id : NULL);
1428 1429 1430
	if (retval)
		goto out_deallocate_sdma_queue;

1431 1432
	mqd_mgr = dqm->mqd_mgrs[get_mqd_type_from_queue_type(
			q->properties.type)];
E
Eric Huang 已提交
1433

1434 1435 1436
	if (q->properties.type == KFD_QUEUE_TYPE_SDMA ||
		q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI)
		dqm->asic_ops.init_sdma_vm(dqm, q, qpd);
F
Felix Kuehling 已提交
1437 1438
	q->properties.tba_addr = qpd->tba_addr;
	q->properties.tma_addr = qpd->tma_addr;
1439 1440 1441 1442 1443
	q->mqd_mem_obj = mqd_mgr->allocate_mqd(mqd_mgr->dev, &q->properties);
	if (!q->mqd_mem_obj) {
		retval = -ENOMEM;
		goto out_deallocate_doorbell;
	}
E
Eric Huang 已提交
1444 1445 1446 1447 1448 1449 1450 1451

	dqm_lock(dqm);
	/*
	 * Eviction state logic: mark all queues as evicted, even ones
	 * not currently active. Restoring inactive queues later only
	 * updates the is_evicted flag but is a no-op otherwise.
	 */
	q->properties.is_evicted = !!qpd->evicted;
1452 1453 1454

	if (qd)
		mqd_mgr->restore_mqd(mqd_mgr, &q->mqd, q->mqd_mem_obj, &q->gart_mqd_addr,
1455 1456
				     &q->properties, restore_mqd, restore_ctl_stack,
				     qd->ctl_stack_size);
1457 1458 1459
	else
		mqd_mgr->init_mqd(mqd_mgr, &q->mqd, q->mqd_mem_obj,
					&q->gart_mqd_addr, &q->properties);
1460

1461
	list_add(&q->list, &qpd->queues_list);
1462
	qpd->queue_count++;
1463

1464
	if (q->properties.is_active) {
1465 1466
		increment_queue_count(dqm, q->properties.type);

1467
		execute_queues_cpsch(dqm,
1468
				KFD_UNMAP_QUEUES_FILTER_DYNAMIC_QUEUES, 0);
1469 1470
	}

1471 1472 1473 1474 1475 1476 1477 1478 1479
	/*
	 * Unconditionally increment this counter, regardless of the queue's
	 * type or whether the queue is active.
	 */
	dqm->total_queue_count++;

	pr_debug("Total of %d queues are accountable so far\n",
			dqm->total_queue_count);

1480
	dqm_unlock(dqm);
1481 1482
	return retval;

1483 1484
out_deallocate_doorbell:
	deallocate_doorbell(qpd, q);
1485
out_deallocate_sdma_queue:
1486
	if (q->properties.type == KFD_QUEUE_TYPE_SDMA ||
1487 1488
		q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI) {
		dqm_lock(dqm);
1489
		deallocate_sdma_queue(dqm, q);
1490 1491
		dqm_unlock(dqm);
	}
1492
out:
1493 1494 1495
	return retval;
}

1496 1497
int amdkfd_fence_wait_timeout(uint64_t *fence_addr,
				uint64_t fence_value,
1498
				unsigned int timeout_ms)
1499
{
1500
	unsigned long end_jiffies = msecs_to_jiffies(timeout_ms) + jiffies;
1501 1502

	while (*fence_addr != fence_value) {
1503
		if (time_after(jiffies, end_jiffies)) {
1504
			pr_err("qcm fence wait loop timeout expired\n");
1505 1506 1507 1508 1509 1510 1511
			/* In HWS case, this is used to halt the driver thread
			 * in order not to mess up CP states before doing
			 * scandumps for FW debugging.
			 */
			while (halt_if_hws_hang)
				schedule();

1512 1513
			return -ETIME;
		}
1514
		schedule();
1515 1516 1517 1518 1519
	}

	return 0;
}

F
Felix Kuehling 已提交
1520 1521 1522 1523 1524
/* dqm->lock mutex has to be locked before calling this function */
static int map_queues_cpsch(struct device_queue_manager *dqm)
{
	int retval;

1525 1526
	if (!dqm->sched_running)
		return 0;
1527
	if (dqm->active_queue_count <= 0 || dqm->processes_count <= 0)
F
Felix Kuehling 已提交
1528 1529 1530 1531
		return 0;
	if (dqm->active_runlist)
		return 0;

1532
	retval = pm_send_runlist(&dqm->packet_mgr, &dqm->queues);
1533
	pr_debug("%s sent runlist\n", __func__);
F
Felix Kuehling 已提交
1534 1535 1536 1537 1538 1539 1540 1541 1542
	if (retval) {
		pr_err("failed to execute runlist\n");
		return retval;
	}
	dqm->active_runlist = true;

	return retval;
}

1543
/* dqm->lock mutex has to be locked before calling this function */
1544
static int unmap_queues_cpsch(struct device_queue_manager *dqm,
1545
				enum kfd_unmap_queues_filter filter,
1546
				uint32_t filter_param, bool reset)
1547
{
1548
	int retval = 0;
1549
	struct mqd_manager *mqd_mgr;
1550

1551 1552
	if (!dqm->sched_running)
		return 0;
1553
	if (dqm->is_hws_hang || dqm->is_resetting)
1554
		return -EIO;
1555
	if (!dqm->active_runlist)
1556
		return retval;
1557

1558
	retval = pm_send_unmap_queue(&dqm->packet_mgr, filter, filter_param, reset);
1559
	if (retval)
1560
		return retval;
1561 1562

	*dqm->fence_addr = KFD_FENCE_INIT;
1563
	pm_send_query_status(&dqm->packet_mgr, dqm->fence_gpu_addr,
1564 1565
				KFD_FENCE_COMPLETED);
	/* should be timed out */
1566
	retval = amdkfd_fence_wait_timeout(dqm->fence_addr, KFD_FENCE_COMPLETED,
1567
				queue_preemption_timeout_ms);
1568 1569 1570 1571 1572 1573 1574 1575 1576
	if (retval) {
		pr_err("The cp might be in an unrecoverable state due to an unsuccessful queues preemption\n");
		dqm->is_hws_hang = true;
		/* It's possible we're detecting a HWS hang in the
		 * middle of a GPU reset. No need to schedule another
		 * reset in this case.
		 */
		if (!dqm->is_resetting)
			schedule_work(&dqm->hw_exception_work);
1577
		return retval;
1578
	}
1579

1580 1581 1582 1583 1584 1585 1586 1587 1588
	/* In the current MEC firmware implementation, if compute queue
	 * doesn't response to the preemption request in time, HIQ will
	 * abandon the unmap request without returning any timeout error
	 * to driver. Instead, MEC firmware will log the doorbell of the
	 * unresponding compute queue to HIQ.MQD.queue_doorbell_id fields.
	 * To make sure the queue unmap was successful, driver need to
	 * check those fields
	 */
	mqd_mgr = dqm->mqd_mgrs[KFD_MQD_TYPE_HIQ];
1589
	if (mqd_mgr->read_doorbell_id(dqm->packet_mgr.priv_queue->queue->mqd)) {
1590 1591 1592 1593 1594 1595
		pr_err("HIQ MQD's queue_doorbell_id0 is not 0, Queue preemption time out\n");
		while (halt_if_hws_hang)
			schedule();
		return -ETIME;
	}

1596
	pm_release_ib(&dqm->packet_mgr);
1597 1598 1599 1600 1601
	dqm->active_runlist = false;

	return retval;
}

1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616
/* only for compute queue */
static int reset_queues_cpsch(struct device_queue_manager *dqm,
			uint16_t pasid)
{
	int retval;

	dqm_lock(dqm);

	retval = unmap_queues_cpsch(dqm, KFD_UNMAP_QUEUES_FILTER_BY_PASID,
			pasid, true);

	dqm_unlock(dqm);
	return retval;
}

1617
/* dqm->lock mutex has to be locked before calling this function */
1618 1619 1620
static int execute_queues_cpsch(struct device_queue_manager *dqm,
				enum kfd_unmap_queues_filter filter,
				uint32_t filter_param)
1621 1622 1623
{
	int retval;

1624 1625
	if (dqm->is_hws_hang)
		return -EIO;
1626
	retval = unmap_queues_cpsch(dqm, filter, filter_param, false);
1627
	if (retval)
1628
		return retval;
1629

F
Felix Kuehling 已提交
1630
	return map_queues_cpsch(dqm);
1631 1632 1633 1634 1635 1636 1637
}

static int destroy_queue_cpsch(struct device_queue_manager *dqm,
				struct qcm_process_device *qpd,
				struct queue *q)
{
	int retval;
1638
	struct mqd_manager *mqd_mgr;
1639 1640 1641 1642 1643 1644
	uint64_t sdma_val = 0;
	struct kfd_process_device *pdd = qpd_to_pdd(qpd);

	/* Get the SDMA queue stats */
	if ((q->properties.type == KFD_QUEUE_TYPE_SDMA) ||
	    (q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI)) {
1645
		retval = read_sdma_queue_counter((uint64_t __user *)q->properties.read_ptr,
1646 1647 1648 1649 1650
							&sdma_val);
		if (retval)
			pr_err("Failed to read SDMA queue counter for queue: %d\n",
				q->properties.queue_id);
	}
1651

1652 1653 1654
	retval = 0;

	/* remove queue from list to prevent rescheduling after preemption */
1655
	dqm_lock(dqm);
1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666

	if (qpd->is_debug) {
		/*
		 * error, currently we do not allow to destroy a queue
		 * of a currently debugged process
		 */
		retval = -EBUSY;
		goto failed_try_destroy_debugged_queue;

	}

1667 1668
	mqd_mgr = dqm->mqd_mgrs[get_mqd_type_from_queue_type(
			q->properties.type)];
1669

1670 1671
	deallocate_doorbell(qpd, q);

1672 1673
	if ((q->properties.type == KFD_QUEUE_TYPE_SDMA) ||
	    (q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI)) {
1674
		deallocate_sdma_queue(dqm, q);
1675 1676
		pdd->sdma_past_activity_counter += sdma_val;
	}
1677

1678
	list_del(&q->list);
1679
	qpd->queue_count--;
1680
	if (q->properties.is_active) {
1681
		decrement_queue_count(dqm, q->properties.type);
1682
		retval = execute_queues_cpsch(dqm,
1683
				KFD_UNMAP_QUEUES_FILTER_DYNAMIC_QUEUES, 0);
1684 1685
		if (retval == -ETIME)
			qpd->reset_wavefronts = true;
1686 1687 1688 1689
		if (q->properties.is_gws) {
			dqm->gws_queue_count--;
			qpd->mapped_gws_queue = false;
		}
1690
	}
1691

1692 1693 1694 1695 1696 1697 1698
	/*
	 * Unconditionally decrement this counter, regardless of the queue's
	 * type
	 */
	dqm->total_queue_count--;
	pr_debug("Total of %d queues are accountable so far\n",
			dqm->total_queue_count);
1699

1700
	dqm_unlock(dqm);
1701

1702 1703
	/* Do free_mqd after dqm_unlock(dqm) to avoid circular locking */
	mqd_mgr->free_mqd(mqd_mgr, q->mqd, q->mqd_mem_obj);
1704

1705
	return retval;
1706

1707 1708
failed_try_destroy_debugged_queue:

1709
	dqm_unlock(dqm);
1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727
	return retval;
}

/*
 * Low bits must be 0000/FFFF as required by HW, high bits must be 0 to
 * stay in user mode.
 */
#define APE1_FIXED_BITS_MASK 0xFFFF80000000FFFFULL
/* APE1 limit is inclusive and 64K aligned. */
#define APE1_LIMIT_ALIGNMENT 0xFFFF

static bool set_cache_memory_policy(struct device_queue_manager *dqm,
				   struct qcm_process_device *qpd,
				   enum cache_policy default_policy,
				   enum cache_policy alternate_policy,
				   void __user *alternate_aperture_base,
				   uint64_t alternate_aperture_size)
{
1728 1729 1730 1731
	bool retval = true;

	if (!dqm->asic_ops.set_cache_memory_policy)
		return retval;
1732

1733
	dqm_lock(dqm);
1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752

	if (alternate_aperture_size == 0) {
		/* base > limit disables APE1 */
		qpd->sh_mem_ape1_base = 1;
		qpd->sh_mem_ape1_limit = 0;
	} else {
		/*
		 * In FSA64, APE1_Base[63:0] = { 16{SH_MEM_APE1_BASE[31]},
		 *			SH_MEM_APE1_BASE[31:0], 0x0000 }
		 * APE1_Limit[63:0] = { 16{SH_MEM_APE1_LIMIT[31]},
		 *			SH_MEM_APE1_LIMIT[31:0], 0xFFFF }
		 * Verify that the base and size parameters can be
		 * represented in this format and convert them.
		 * Additionally restrict APE1 to user-mode addresses.
		 */

		uint64_t base = (uintptr_t)alternate_aperture_base;
		uint64_t limit = base + alternate_aperture_size - 1;

K
Kent Russell 已提交
1753 1754 1755
		if (limit <= base || (base & APE1_FIXED_BITS_MASK) != 0 ||
		   (limit & APE1_FIXED_BITS_MASK) != APE1_LIMIT_ALIGNMENT) {
			retval = false;
1756
			goto out;
K
Kent Russell 已提交
1757
		}
1758 1759 1760 1761 1762

		qpd->sh_mem_ape1_base = base >> 16;
		qpd->sh_mem_ape1_limit = limit >> 16;
	}

1763
	retval = dqm->asic_ops.set_cache_memory_policy(
1764 1765 1766 1767 1768 1769
			dqm,
			qpd,
			default_policy,
			alternate_policy,
			alternate_aperture_base,
			alternate_aperture_size);
1770

1771
	if ((dqm->sched_policy == KFD_SCHED_POLICY_NO_HWS) && (qpd->vmid != 0))
1772 1773
		program_sh_mem_settings(dqm, qpd);

1774
	pr_debug("sh_mem_config: 0x%x, ape1_base: 0x%x, ape1_limit: 0x%x\n",
1775 1776 1777 1778
		qpd->sh_mem_config, qpd->sh_mem_ape1_base,
		qpd->sh_mem_ape1_limit);

out:
1779
	dqm_unlock(dqm);
K
Kent Russell 已提交
1780
	return retval;
1781 1782
}

1783 1784 1785
static int process_termination_nocpsch(struct device_queue_manager *dqm,
		struct qcm_process_device *qpd)
{
1786
	struct queue *q;
1787 1788
	struct device_process_node *cur, *next_dpn;
	int retval = 0;
1789
	bool found = false;
1790

1791
	dqm_lock(dqm);
1792 1793

	/* Clear all user mode queues */
1794 1795
	while (!list_empty(&qpd->queues_list)) {
		struct mqd_manager *mqd_mgr;
1796 1797
		int ret;

1798 1799 1800
		q = list_first_entry(&qpd->queues_list, struct queue, list);
		mqd_mgr = dqm->mqd_mgrs[get_mqd_type_from_queue_type(
				q->properties.type)];
1801 1802 1803
		ret = destroy_queue_nocpsch_locked(dqm, qpd, q);
		if (ret)
			retval = ret;
1804 1805 1806
		dqm_unlock(dqm);
		mqd_mgr->free_mqd(mqd_mgr, q->mqd, q->mqd_mem_obj);
		dqm_lock(dqm);
1807 1808 1809 1810 1811 1812 1813 1814
	}

	/* Unregister process */
	list_for_each_entry_safe(cur, next_dpn, &dqm->queues, list) {
		if (qpd == cur->qpd) {
			list_del(&cur->list);
			kfree(cur);
			dqm->processes_count--;
1815
			found = true;
1816 1817 1818 1819
			break;
		}
	}

1820
	dqm_unlock(dqm);
1821 1822 1823 1824 1825 1826 1827

	/* Outside the DQM lock because under the DQM lock we can't do
	 * reclaim or take other locks that others hold while reclaiming.
	 */
	if (found)
		kfd_dec_compute_active(dqm->dev);

1828 1829 1830
	return retval;
}

1831 1832 1833 1834 1835 1836
static int get_wave_state(struct device_queue_manager *dqm,
			  struct queue *q,
			  void __user *ctl_stack,
			  u32 *ctl_stack_used_size,
			  u32 *save_area_used_size)
{
1837
	struct mqd_manager *mqd_mgr;
1838 1839 1840

	dqm_lock(dqm);

1841
	mqd_mgr = dqm->mqd_mgrs[KFD_MQD_TYPE_CP];
1842

1843 1844 1845 1846 1847
	if (q->properties.type != KFD_QUEUE_TYPE_COMPUTE ||
	    q->properties.is_active || !q->device->cwsr_enabled ||
	    !mqd_mgr->get_wave_state) {
		dqm_unlock(dqm);
		return -EINVAL;
1848 1849 1850
	}

	dqm_unlock(dqm);
1851 1852 1853 1854 1855 1856 1857 1858

	/*
	 * get_wave_state is outside the dqm lock to prevent circular locking
	 * and the queue should be protected against destruction by the process
	 * lock.
	 */
	return mqd_mgr->get_wave_state(mqd_mgr, q->mqd, ctl_stack,
			ctl_stack_used_size, save_area_used_size);
1859
}
1860

1861 1862
static void get_queue_checkpoint_info(struct device_queue_manager *dqm,
			const struct queue *q,
1863 1864
			u32 *mqd_size,
			u32 *ctl_stack_size)
1865 1866 1867 1868 1869 1870 1871 1872
{
	struct mqd_manager *mqd_mgr;
	enum KFD_MQD_TYPE mqd_type =
			get_mqd_type_from_queue_type(q->properties.type);

	dqm_lock(dqm);
	mqd_mgr = dqm->mqd_mgrs[mqd_type];
	*mqd_size = mqd_mgr->mqd_size;
1873 1874 1875 1876
	*ctl_stack_size = 0;

	if (q->properties.type == KFD_QUEUE_TYPE_COMPUTE && mqd_mgr->get_checkpoint_info)
		mqd_mgr->get_checkpoint_info(mqd_mgr, q->mqd, ctl_stack_size);
1877 1878 1879 1880 1881 1882

	dqm_unlock(dqm);
}

static int checkpoint_mqd(struct device_queue_manager *dqm,
			  const struct queue *q,
1883 1884
			  void *mqd,
			  void *ctl_stack)
1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903
{
	struct mqd_manager *mqd_mgr;
	int r = 0;
	enum KFD_MQD_TYPE mqd_type =
			get_mqd_type_from_queue_type(q->properties.type);

	dqm_lock(dqm);

	if (q->properties.is_active || !q->device->cwsr_enabled) {
		r = -EINVAL;
		goto dqm_unlock;
	}

	mqd_mgr = dqm->mqd_mgrs[mqd_type];
	if (!mqd_mgr->checkpoint_mqd) {
		r = -EOPNOTSUPP;
		goto dqm_unlock;
	}

1904
	mqd_mgr->checkpoint_mqd(mqd_mgr, q->mqd, mqd, ctl_stack);
1905 1906 1907 1908 1909 1910

dqm_unlock:
	dqm_unlock(dqm);
	return r;
}

1911 1912 1913 1914
static int process_termination_cpsch(struct device_queue_manager *dqm,
		struct qcm_process_device *qpd)
{
	int retval;
1915
	struct queue *q;
1916
	struct kernel_queue *kq, *kq_next;
1917
	struct mqd_manager *mqd_mgr;
1918 1919 1920
	struct device_process_node *cur, *next_dpn;
	enum kfd_unmap_queues_filter filter =
		KFD_UNMAP_QUEUES_FILTER_DYNAMIC_QUEUES;
1921
	bool found = false;
1922 1923 1924

	retval = 0;

1925
	dqm_lock(dqm);
1926 1927 1928 1929

	/* Clean all kernel queues */
	list_for_each_entry_safe(kq, kq_next, &qpd->priv_queue_list, list) {
		list_del(&kq->list);
1930
		decrement_queue_count(dqm, kq->queue->properties.type);
1931 1932 1933 1934 1935 1936 1937
		qpd->is_debug = false;
		dqm->total_queue_count--;
		filter = KFD_UNMAP_QUEUES_FILTER_ALL_QUEUES;
	}

	/* Clear all user mode queues */
	list_for_each_entry(q, &qpd->queues_list, list) {
1938
		if (q->properties.type == KFD_QUEUE_TYPE_SDMA)
1939
			deallocate_sdma_queue(dqm, q);
1940
		else if (q->properties.type == KFD_QUEUE_TYPE_SDMA_XGMI)
1941
			deallocate_sdma_queue(dqm, q);
1942

1943
		if (q->properties.is_active) {
1944
			decrement_queue_count(dqm, q->properties.type);
1945 1946 1947 1948 1949
			if (q->properties.is_gws) {
				dqm->gws_queue_count--;
				qpd->mapped_gws_queue = false;
			}
		}
1950 1951 1952 1953 1954 1955 1956 1957 1958 1959

		dqm->total_queue_count--;
	}

	/* Unregister process */
	list_for_each_entry_safe(cur, next_dpn, &dqm->queues, list) {
		if (qpd == cur->qpd) {
			list_del(&cur->list);
			kfree(cur);
			dqm->processes_count--;
1960
			found = true;
1961 1962 1963 1964 1965
			break;
		}
	}

	retval = execute_queues_cpsch(dqm, filter, 0);
1966
	if ((!dqm->is_hws_hang) && (retval || qpd->reset_wavefronts)) {
1967 1968 1969 1970 1971
		pr_warn("Resetting wave fronts (cpsch) on dev %p\n", dqm->dev);
		dbgdev_wave_reset_wavefronts(dqm->dev, qpd->pqm->process);
		qpd->reset_wavefronts = false;
	}

1972
	/* Lastly, free mqd resources.
1973
	 * Do free_mqd() after dqm_unlock to avoid circular locking.
1974
	 */
1975 1976
	while (!list_empty(&qpd->queues_list)) {
		q = list_first_entry(&qpd->queues_list, struct queue, list);
1977 1978
		mqd_mgr = dqm->mqd_mgrs[get_mqd_type_from_queue_type(
				q->properties.type)];
1979
		list_del(&q->list);
1980
		qpd->queue_count--;
1981
		dqm_unlock(dqm);
1982
		mqd_mgr->free_mqd(mqd_mgr, q->mqd, q->mqd_mem_obj);
1983
		dqm_lock(dqm);
1984
	}
1985 1986 1987 1988 1989 1990 1991
	dqm_unlock(dqm);

	/* Outside the DQM lock because under the DQM lock we can't do
	 * reclaim or take other locks that others hold while reclaiming.
	 */
	if (found)
		kfd_dec_compute_active(dqm->dev);
1992 1993 1994 1995

	return retval;
}

1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019
static int init_mqd_managers(struct device_queue_manager *dqm)
{
	int i, j;
	struct mqd_manager *mqd_mgr;

	for (i = 0; i < KFD_MQD_TYPE_MAX; i++) {
		mqd_mgr = dqm->asic_ops.mqd_manager_init(i, dqm->dev);
		if (!mqd_mgr) {
			pr_err("mqd manager [%d] initialization failed\n", i);
			goto out_free;
		}
		dqm->mqd_mgrs[i] = mqd_mgr;
	}

	return 0;

out_free:
	for (j = 0; j < i; j++) {
		kfree(dqm->mqd_mgrs[j]);
		dqm->mqd_mgrs[j] = NULL;
	}

	return -ENOMEM;
}
2020 2021 2022 2023 2024 2025 2026 2027

/* Allocate one hiq mqd (HWS) and all SDMA mqd in a continuous trunk*/
static int allocate_hiq_sdma_mqd(struct device_queue_manager *dqm)
{
	int retval;
	struct kfd_dev *dev = dqm->dev;
	struct kfd_mem_obj *mem_obj = &dqm->hiq_sdma_mqd;
	uint32_t size = dqm->mqd_mgrs[KFD_MQD_TYPE_SDMA]->mqd_size *
2028
		get_num_all_sdma_engines(dqm) *
2029
		dev->device_info.num_sdma_queues_per_engine +
2030 2031
		dqm->mqd_mgrs[KFD_MQD_TYPE_HIQ]->mqd_size;

2032
	retval = amdgpu_amdkfd_alloc_gtt_mem(dev->adev, size,
2033
		&(mem_obj->gtt_mem), &(mem_obj->gpu_addr),
2034
		(void *)&(mem_obj->cpu_ptr), false);
2035 2036 2037 2038

	return retval;
}

2039 2040 2041 2042
struct device_queue_manager *device_queue_manager_init(struct kfd_dev *dev)
{
	struct device_queue_manager *dqm;

2043
	pr_debug("Loading device queue manager\n");
2044

2045
	dqm = kzalloc(sizeof(*dqm), GFP_KERNEL);
2046 2047 2048
	if (!dqm)
		return NULL;

2049
	switch (dev->adev->asic_type) {
2050 2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064
	/* HWS is not available on Hawaii. */
	case CHIP_HAWAII:
	/* HWS depends on CWSR for timely dequeue. CWSR is not
	 * available on Tonga.
	 *
	 * FIXME: This argument also applies to Kaveri.
	 */
	case CHIP_TONGA:
		dqm->sched_policy = KFD_SCHED_POLICY_NO_HWS;
		break;
	default:
		dqm->sched_policy = sched_policy;
		break;
	}

2065
	dqm->dev = dev;
2066
	switch (dqm->sched_policy) {
2067 2068 2069
	case KFD_SCHED_POLICY_HWS:
	case KFD_SCHED_POLICY_HWS_NO_OVERSUBSCRIPTION:
		/* initialize dqm for cp scheduling */
2070 2071 2072 2073
		dqm->ops.create_queue = create_queue_cpsch;
		dqm->ops.initialize = initialize_cpsch;
		dqm->ops.start = start_cpsch;
		dqm->ops.stop = stop_cpsch;
2074
		dqm->ops.pre_reset = pre_reset;
2075 2076
		dqm->ops.destroy_queue = destroy_queue_cpsch;
		dqm->ops.update_queue = update_queue;
2077 2078 2079
		dqm->ops.register_process = register_process;
		dqm->ops.unregister_process = unregister_process;
		dqm->ops.uninitialize = uninitialize;
2080 2081 2082
		dqm->ops.create_kernel_queue = create_kernel_queue_cpsch;
		dqm->ops.destroy_kernel_queue = destroy_kernel_queue_cpsch;
		dqm->ops.set_cache_memory_policy = set_cache_memory_policy;
2083
		dqm->ops.process_termination = process_termination_cpsch;
2084 2085
		dqm->ops.evict_process_queues = evict_process_queues_cpsch;
		dqm->ops.restore_process_queues = restore_process_queues_cpsch;
2086
		dqm->ops.get_wave_state = get_wave_state;
2087
		dqm->ops.reset_queues = reset_queues_cpsch;
2088 2089
		dqm->ops.get_queue_checkpoint_info = get_queue_checkpoint_info;
		dqm->ops.checkpoint_mqd = checkpoint_mqd;
2090 2091 2092
		break;
	case KFD_SCHED_POLICY_NO_HWS:
		/* initialize dqm for no cp scheduling */
2093 2094
		dqm->ops.start = start_nocpsch;
		dqm->ops.stop = stop_nocpsch;
2095
		dqm->ops.pre_reset = pre_reset;
2096 2097 2098
		dqm->ops.create_queue = create_queue_nocpsch;
		dqm->ops.destroy_queue = destroy_queue_nocpsch;
		dqm->ops.update_queue = update_queue;
2099 2100
		dqm->ops.register_process = register_process;
		dqm->ops.unregister_process = unregister_process;
2101
		dqm->ops.initialize = initialize_nocpsch;
2102
		dqm->ops.uninitialize = uninitialize;
2103
		dqm->ops.set_cache_memory_policy = set_cache_memory_policy;
2104
		dqm->ops.process_termination = process_termination_nocpsch;
2105 2106 2107
		dqm->ops.evict_process_queues = evict_process_queues_nocpsch;
		dqm->ops.restore_process_queues =
			restore_process_queues_nocpsch;
2108
		dqm->ops.get_wave_state = get_wave_state;
2109 2110
		dqm->ops.get_queue_checkpoint_info = get_queue_checkpoint_info;
		dqm->ops.checkpoint_mqd = checkpoint_mqd;
2111 2112
		break;
	default:
2113
		pr_err("Invalid scheduling policy %d\n", dqm->sched_policy);
2114
		goto out_free;
2115 2116
	}

2117
	switch (dev->adev->asic_type) {
2118
	case CHIP_CARRIZO:
2119
		device_queue_manager_init_vi(&dqm->asic_ops);
2120 2121
		break;

2122
	case CHIP_KAVERI:
2123
		device_queue_manager_init_cik(&dqm->asic_ops);
2124
		break;
2125 2126 2127 2128 2129 2130 2131 2132 2133

	case CHIP_HAWAII:
		device_queue_manager_init_cik_hawaii(&dqm->asic_ops);
		break;

	case CHIP_TONGA:
	case CHIP_FIJI:
	case CHIP_POLARIS10:
	case CHIP_POLARIS11:
2134
	case CHIP_POLARIS12:
K
Kent Russell 已提交
2135
	case CHIP_VEGAM:
2136 2137
		device_queue_manager_init_vi_tonga(&dqm->asic_ops);
		break;
2138

2139
	default:
2140 2141 2142 2143 2144 2145
		if (KFD_GC_VERSION(dev) >= IP_VERSION(10, 1, 1))
			device_queue_manager_init_v10_navi10(&dqm->asic_ops);
		else if (KFD_GC_VERSION(dev) >= IP_VERSION(9, 0, 1))
			device_queue_manager_init_v9(&dqm->asic_ops);
		else {
			WARN(1, "Unexpected ASIC family %u",
2146
			     dev->adev->asic_type);
2147 2148
			goto out_free;
		}
2149 2150
	}

2151 2152 2153
	if (init_mqd_managers(dqm))
		goto out_free;

2154 2155 2156 2157 2158
	if (allocate_hiq_sdma_mqd(dqm)) {
		pr_err("Failed to allocate hiq sdma mqd trunk buffer\n");
		goto out_free;
	}

2159 2160
	if (!dqm->ops.initialize(dqm))
		return dqm;
2161

2162 2163 2164
out_free:
	kfree(dqm);
	return NULL;
2165 2166
}

2167 2168
static void deallocate_hiq_sdma_mqd(struct kfd_dev *dev,
				    struct kfd_mem_obj *mqd)
2169 2170 2171
{
	WARN(!mqd, "No hiq sdma mqd trunk to free");

2172
	amdgpu_amdkfd_free_gtt_mem(dev->adev, mqd->gtt_mem);
2173 2174
}

2175 2176
void device_queue_manager_uninit(struct device_queue_manager *dqm)
{
2177
	dqm->ops.uninitialize(dqm);
2178
	deallocate_hiq_sdma_mqd(dqm->dev, &dqm->hiq_sdma_mqd);
2179 2180
	kfree(dqm);
}
2181

2182
int kfd_dqm_evict_pasid(struct device_queue_manager *dqm, u32 pasid)
S
shaoyunl 已提交
2183 2184 2185 2186 2187 2188 2189
{
	struct kfd_process_device *pdd;
	struct kfd_process *p = kfd_lookup_process_by_pasid(pasid);
	int ret = 0;

	if (!p)
		return -EINVAL;
2190
	WARN(debug_evictions, "Evicting pid %d", p->lead_thread->pid);
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	pdd = kfd_get_process_device_data(dqm->dev, p);
	if (pdd)
		ret = dqm->ops.evict_process_queues(dqm, &pdd->qpd);
	kfd_unref_process(p);

	return ret;
}

2199 2200 2201 2202
static void kfd_process_hw_exception(struct work_struct *work)
{
	struct device_queue_manager *dqm = container_of(work,
			struct device_queue_manager, hw_exception_work);
2203
	amdgpu_amdkfd_gpu_reset(dqm->dev->adev);
2204 2205
}

2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231 2232 2233 2234 2235
#if defined(CONFIG_DEBUG_FS)

static void seq_reg_dump(struct seq_file *m,
			 uint32_t (*dump)[2], uint32_t n_regs)
{
	uint32_t i, count;

	for (i = 0, count = 0; i < n_regs; i++) {
		if (count == 0 ||
		    dump[i-1][0] + sizeof(uint32_t) != dump[i][0]) {
			seq_printf(m, "%s    %08x: %08x",
				   i ? "\n" : "",
				   dump[i][0], dump[i][1]);
			count = 7;
		} else {
			seq_printf(m, " %08x", dump[i][1]);
			count--;
		}
	}

	seq_puts(m, "\n");
}

int dqm_debugfs_hqds(struct seq_file *m, void *data)
{
	struct device_queue_manager *dqm = data;
	uint32_t (*dump)[2], n_regs;
	int pipe, queue;
	int r = 0;

2236
	if (!dqm->sched_running) {
2237
		seq_puts(m, " Device is stopped\n");
2238 2239 2240
		return 0;
	}

2241
	r = dqm->dev->kfd2kgd->hqd_dump(dqm->dev->adev,
2242 2243
					KFD_CIK_HIQ_PIPE, KFD_CIK_HIQ_QUEUE,
					&dump, &n_regs);
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	if (!r) {
		seq_printf(m, "  HIQ on MEC %d Pipe %d Queue %d\n",
2246 2247 2248
			   KFD_CIK_HIQ_PIPE/get_pipes_per_mec(dqm)+1,
			   KFD_CIK_HIQ_PIPE%get_pipes_per_mec(dqm),
			   KFD_CIK_HIQ_QUEUE);
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		seq_reg_dump(m, dump, n_regs);

		kfree(dump);
	}

2254 2255 2256 2257 2258
	for (pipe = 0; pipe < get_pipes_per_mec(dqm); pipe++) {
		int pipe_offset = pipe * get_queues_per_pipe(dqm);

		for (queue = 0; queue < get_queues_per_pipe(dqm); queue++) {
			if (!test_bit(pipe_offset + queue,
2259
				      dqm->dev->shared_resources.cp_queue_bitmap))
2260 2261 2262
				continue;

			r = dqm->dev->kfd2kgd->hqd_dump(
2263
				dqm->dev->adev, pipe, queue, &dump, &n_regs);
2264 2265 2266 2267 2268 2269 2270 2271 2272 2273 2274
			if (r)
				break;

			seq_printf(m, "  CP Pipe %d, Queue %d\n",
				  pipe, queue);
			seq_reg_dump(m, dump, n_regs);

			kfree(dump);
		}
	}

2275
	for (pipe = 0; pipe < get_num_all_sdma_engines(dqm); pipe++) {
2276
		for (queue = 0;
2277
		     queue < dqm->dev->device_info.num_sdma_queues_per_engine;
2278
		     queue++) {
2279
			r = dqm->dev->kfd2kgd->hqd_sdma_dump(
2280
				dqm->dev->adev, pipe, queue, &dump, &n_regs);
2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294
			if (r)
				break;

			seq_printf(m, "  SDMA Engine %d, RLC %d\n",
				  pipe, queue);
			seq_reg_dump(m, dump, n_regs);

			kfree(dump);
		}
	}

	return r;
}

2295
int dqm_debugfs_hang_hws(struct device_queue_manager *dqm)
2296 2297 2298 2299
{
	int r = 0;

	dqm_lock(dqm);
2300 2301 2302 2303 2304
	r = pm_debugfs_hang_hws(&dqm->packet_mgr);
	if (r) {
		dqm_unlock(dqm);
		return r;
	}
2305 2306 2307 2308 2309 2310 2311
	dqm->active_runlist = true;
	r = execute_queues_cpsch(dqm, KFD_UNMAP_QUEUES_FILTER_ALL_QUEUES, 0);
	dqm_unlock(dqm);

	return r;
}

2312
#endif