hns_roce_mr.c 26.8 KB
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/*
 * Copyright (c) 2016 Hisilicon Limited.
 * Copyright (c) 2007, 2008 Mellanox Technologies. All rights reserved.
 *
 * This software is available to you under a choice of one of two
 * licenses.  You may choose to be licensed under the terms of the GNU
 * General Public License (GPL) Version 2, available from the file
 * COPYING in the main directory of this source tree, or the
 * OpenIB.org BSD license below:
 *
 *     Redistribution and use in source and binary forms, with or
 *     without modification, are permitted provided that the following
 *     conditions are met:
 *
 *      - Redistributions of source code must retain the above
 *        copyright notice, this list of conditions and the following
 *        disclaimer.
 *
 *      - Redistributions in binary form must reproduce the above
 *        copyright notice, this list of conditions and the following
 *        disclaimer in the documentation and/or other materials
 *        provided with the distribution.
 *
 * 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 AUTHORS OR COPYRIGHT HOLDERS
 * 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/platform_device.h>
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#include <linux/vmalloc.h>
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#include <rdma/ib_umem.h>
#include "hns_roce_device.h"
#include "hns_roce_cmd.h"
#include "hns_roce_hem.h"

static u32 hw_index_to_key(unsigned long ind)
{
	return (u32)(ind >> 24) | (ind << 8);
}

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unsigned long key_to_hw_index(u32 key)
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{
	return (key << 24) | (key >> 8);
}

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static int hns_roce_hw_create_mpt(struct hns_roce_dev *hr_dev,
				  struct hns_roce_cmd_mailbox *mailbox,
				  unsigned long mpt_index)
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{
	return hns_roce_cmd_mbox(hr_dev, mailbox->dma, 0, mpt_index, 0,
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				 HNS_ROCE_CMD_CREATE_MPT,
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				 HNS_ROCE_CMD_TIMEOUT_MSECS);
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}

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int hns_roce_hw_destroy_mpt(struct hns_roce_dev *hr_dev,
			    struct hns_roce_cmd_mailbox *mailbox,
			    unsigned long mpt_index)
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{
	return hns_roce_cmd_mbox(hr_dev, 0, mailbox ? mailbox->dma : 0,
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				 mpt_index, !mailbox, HNS_ROCE_CMD_DESTROY_MPT,
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				 HNS_ROCE_CMD_TIMEOUT_MSECS);
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}

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static int alloc_mr_key(struct hns_roce_dev *hr_dev, struct hns_roce_mr *mr,
			u32 pd, u64 iova, u64 size, u32 access)
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{
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	struct ib_device *ibdev = &hr_dev->ib_dev;
	unsigned long obj = 0;
	int err;
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	/* Allocate a key for mr from mr_table */
	err = hns_roce_bitmap_alloc(&hr_dev->mr_table.mtpt_bitmap, &obj);
	if (err) {
		ibdev_err(ibdev,
			  "failed to alloc bitmap for MR key, ret = %d.\n",
			  err);
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		return -ENOMEM;
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	}

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	mr->iova = iova;			/* MR va starting addr */
	mr->size = size;			/* MR addr range */
	mr->pd = pd;				/* MR num */
	mr->access = access;			/* MR access permit */
	mr->enabled = 0;			/* MR active status */
	mr->key = hw_index_to_key(obj);		/* MR key */
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	err = hns_roce_table_get(hr_dev, &hr_dev->mr_table.mtpt_table, obj);
	if (err) {
		ibdev_err(ibdev, "failed to alloc mtpt, ret = %d.\n", err);
		goto err_free_bitmap;
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	}

	return 0;
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err_free_bitmap:
	hns_roce_bitmap_free(&hr_dev->mr_table.mtpt_bitmap, obj, BITMAP_NO_RR);
	return err;
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}

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static void free_mr_key(struct hns_roce_dev *hr_dev, struct hns_roce_mr *mr)
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{
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	unsigned long obj = key_to_hw_index(mr->key);
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	hns_roce_table_put(hr_dev, &hr_dev->mr_table.mtpt_table, obj);
	hns_roce_bitmap_free(&hr_dev->mr_table.mtpt_bitmap, obj, BITMAP_NO_RR);
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}

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static int alloc_mr_pbl(struct hns_roce_dev *hr_dev, struct hns_roce_mr *mr,
			size_t length, struct ib_udata *udata, u64 start,
			int access)
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{
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	struct ib_device *ibdev = &hr_dev->ib_dev;
	bool is_fast = mr->type == MR_TYPE_FRMR;
	struct hns_roce_buf_attr buf_attr = {};
	int err;
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	mr->pbl_hop_num = is_fast ? 1 : hr_dev->caps.pbl_hop_num;
	buf_attr.page_shift = is_fast ? PAGE_SHIFT :
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			      hr_dev->caps.pbl_buf_pg_sz + HNS_HW_PAGE_SHIFT;
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	buf_attr.region[0].size = length;
	buf_attr.region[0].hopnum = mr->pbl_hop_num;
	buf_attr.region_count = 1;
	buf_attr.fixed_page = true;
	buf_attr.user_access = access;
	/* fast MR's buffer is alloced before mapping, not at creation */
	buf_attr.mtt_only = is_fast;
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	err = hns_roce_mtr_create(hr_dev, &mr->pbl_mtr, &buf_attr,
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				  hr_dev->caps.pbl_ba_pg_sz + HNS_HW_PAGE_SHIFT,
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				  udata, start);
	if (err)
		ibdev_err(ibdev, "failed to alloc pbl mtr, ret = %d.\n", err);
	else
		mr->npages = mr->pbl_mtr.hem_cfg.buf_pg_count;
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	return err;
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}

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static void free_mr_pbl(struct hns_roce_dev *hr_dev, struct hns_roce_mr *mr)
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{
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	hns_roce_mtr_destroy(hr_dev, &mr->pbl_mtr);
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}

static void hns_roce_mr_free(struct hns_roce_dev *hr_dev,
			     struct hns_roce_mr *mr)
{
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	struct ib_device *ibdev = &hr_dev->ib_dev;
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	int ret;

	if (mr->enabled) {
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		ret = hns_roce_hw_destroy_mpt(hr_dev, NULL,
					      key_to_hw_index(mr->key) &
					      (hr_dev->caps.num_mtpts - 1));
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		if (ret)
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			ibdev_warn(ibdev, "failed to destroy mpt, ret = %d.\n",
				   ret);
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	}

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	free_mr_pbl(hr_dev, mr);
	free_mr_key(hr_dev, mr);
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}

static int hns_roce_mr_enable(struct hns_roce_dev *hr_dev,
			      struct hns_roce_mr *mr)
{
	int ret;
	unsigned long mtpt_idx = key_to_hw_index(mr->key);
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	struct device *dev = hr_dev->dev;
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	struct hns_roce_cmd_mailbox *mailbox;

	/* Allocate mailbox memory */
	mailbox = hns_roce_alloc_cmd_mailbox(hr_dev);
	if (IS_ERR(mailbox)) {
		ret = PTR_ERR(mailbox);
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		return ret;
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	}

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	if (mr->type != MR_TYPE_FRMR)
		ret = hr_dev->hw->write_mtpt(mailbox->buf, mr, mtpt_idx);
	else
		ret = hr_dev->hw->frmr_write_mtpt(mailbox->buf, mr);
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	if (ret) {
		dev_err(dev, "Write mtpt fail!\n");
		goto err_page;
	}

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	ret = hns_roce_hw_create_mpt(hr_dev, mailbox,
				     mtpt_idx & (hr_dev->caps.num_mtpts - 1));
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	if (ret) {
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		dev_err(dev, "CREATE_MPT failed (%d)\n", ret);
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		goto err_page;
	}

	mr->enabled = 1;
	hns_roce_free_cmd_mailbox(hr_dev, mailbox);

	return 0;

err_page:
	hns_roce_free_cmd_mailbox(hr_dev, mailbox);

	return ret;
}

int hns_roce_init_mr_table(struct hns_roce_dev *hr_dev)
{
	struct hns_roce_mr_table *mr_table = &hr_dev->mr_table;
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	int ret;
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	ret = hns_roce_bitmap_init(&mr_table->mtpt_bitmap,
				   hr_dev->caps.num_mtpts,
				   hr_dev->caps.num_mtpts - 1,
				   hr_dev->caps.reserved_mrws, 0);
	return ret;
}

void hns_roce_cleanup_mr_table(struct hns_roce_dev *hr_dev)
{
	struct hns_roce_mr_table *mr_table = &hr_dev->mr_table;

	hns_roce_bitmap_cleanup(&mr_table->mtpt_bitmap);
}

struct ib_mr *hns_roce_get_dma_mr(struct ib_pd *pd, int acc)
{
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	struct hns_roce_dev *hr_dev = to_hr_dev(pd->device);
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	struct hns_roce_mr *mr;
	int ret;
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	mr = kzalloc(sizeof(*mr), GFP_KERNEL);
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	if (mr == NULL)
		return  ERR_PTR(-ENOMEM);

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	mr->type = MR_TYPE_DMA;

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	/* Allocate memory region key */
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	hns_roce_hem_list_init(&mr->pbl_mtr.hem_list);
	ret = alloc_mr_key(hr_dev, mr, to_hr_pd(pd)->pdn, 0, 0, acc);
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	if (ret)
		goto err_free;

	ret = hns_roce_mr_enable(to_hr_dev(pd->device), mr);
	if (ret)
		goto err_mr;

	mr->ibmr.rkey = mr->ibmr.lkey = mr->key;

	return &mr->ibmr;
err_mr:
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	free_mr_key(hr_dev, mr);
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err_free:
	kfree(mr);
	return ERR_PTR(ret);
}

struct ib_mr *hns_roce_reg_user_mr(struct ib_pd *pd, u64 start, u64 length,
				   u64 virt_addr, int access_flags,
				   struct ib_udata *udata)
{
	struct hns_roce_dev *hr_dev = to_hr_dev(pd->device);
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	struct hns_roce_mr *mr;
	int ret;
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	mr = kzalloc(sizeof(*mr), GFP_KERNEL);
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	if (!mr)
		return ERR_PTR(-ENOMEM);

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	mr->type = MR_TYPE_MR;
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	ret = alloc_mr_key(hr_dev, mr, to_hr_pd(pd)->pdn, virt_addr, length,
			   access_flags);
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	if (ret)
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		goto err_alloc_mr;
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	ret = alloc_mr_pbl(hr_dev, mr, length, udata, start, access_flags);
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	if (ret)
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		goto err_alloc_key;
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	ret = hns_roce_mr_enable(hr_dev, mr);
	if (ret)
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		goto err_alloc_pbl;
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	mr->ibmr.rkey = mr->ibmr.lkey = mr->key;
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	mr->ibmr.length = length;
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	return &mr->ibmr;

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err_alloc_pbl:
	free_mr_pbl(hr_dev, mr);
err_alloc_key:
	free_mr_key(hr_dev, mr);
err_alloc_mr:
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	kfree(mr);
	return ERR_PTR(ret);
}

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static int rereg_mr_trans(struct ib_mr *ibmr, int flags,
			  u64 start, u64 length,
			  u64 virt_addr, int mr_access_flags,
			  struct hns_roce_cmd_mailbox *mailbox,
			  u32 pdn, struct ib_udata *udata)
{
	struct hns_roce_dev *hr_dev = to_hr_dev(ibmr->device);
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	struct ib_device *ibdev = &hr_dev->ib_dev;
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	struct hns_roce_mr *mr = to_hr_mr(ibmr);
	int ret;

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	free_mr_pbl(hr_dev, mr);
	ret = alloc_mr_pbl(hr_dev, mr, length, udata, start, mr_access_flags);
	if (ret) {
		ibdev_err(ibdev, "failed to create mr PBL, ret = %d.\n", ret);
		return ret;
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	}

	ret = hr_dev->hw->rereg_write_mtpt(hr_dev, mr, flags, pdn,
					   mr_access_flags, virt_addr,
					   length, mailbox->buf);
	if (ret) {
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		ibdev_err(ibdev, "failed to write mtpt, ret = %d.\n", ret);
		free_mr_pbl(hr_dev, mr);
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	}

	return ret;
}

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int hns_roce_rereg_user_mr(struct ib_mr *ibmr, int flags, u64 start, u64 length,
			   u64 virt_addr, int mr_access_flags, struct ib_pd *pd,
			   struct ib_udata *udata)
{
	struct hns_roce_dev *hr_dev = to_hr_dev(ibmr->device);
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	struct ib_device *ib_dev = &hr_dev->ib_dev;
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	struct hns_roce_mr *mr = to_hr_mr(ibmr);
	struct hns_roce_cmd_mailbox *mailbox;
	unsigned long mtpt_idx;
	u32 pdn = 0;
	int ret;

	if (!mr->enabled)
		return -EINVAL;

	mailbox = hns_roce_alloc_cmd_mailbox(hr_dev);
	if (IS_ERR(mailbox))
		return PTR_ERR(mailbox);

	mtpt_idx = key_to_hw_index(mr->key) & (hr_dev->caps.num_mtpts - 1);
	ret = hns_roce_cmd_mbox(hr_dev, 0, mailbox->dma, mtpt_idx, 0,
				HNS_ROCE_CMD_QUERY_MPT,
				HNS_ROCE_CMD_TIMEOUT_MSECS);
	if (ret)
		goto free_cmd_mbox;

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	ret = hns_roce_hw_destroy_mpt(hr_dev, NULL, mtpt_idx);
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	if (ret)
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		ibdev_warn(ib_dev, "failed to destroy MPT, ret = %d.\n", ret);
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	mr->enabled = 0;

	if (flags & IB_MR_REREG_PD)
		pdn = to_hr_pd(pd)->pdn;

	if (flags & IB_MR_REREG_TRANS) {
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		ret = rereg_mr_trans(ibmr, flags,
				     start, length,
				     virt_addr, mr_access_flags,
				     mailbox, pdn, udata);
		if (ret)
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			goto free_cmd_mbox;
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	} else {
		ret = hr_dev->hw->rereg_write_mtpt(hr_dev, mr, flags, pdn,
						   mr_access_flags, virt_addr,
						   length, mailbox->buf);
		if (ret)
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			goto free_cmd_mbox;
	}

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	ret = hns_roce_hw_create_mpt(hr_dev, mailbox, mtpt_idx);
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	if (ret) {
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		ibdev_err(ib_dev, "failed to create MPT, ret = %d.\n", ret);
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		goto free_cmd_mbox;
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	}

	mr->enabled = 1;
	if (flags & IB_MR_REREG_ACCESS)
		mr->access = mr_access_flags;

	hns_roce_free_cmd_mailbox(hr_dev, mailbox);

	return 0;

free_cmd_mbox:
	hns_roce_free_cmd_mailbox(hr_dev, mailbox);

	return ret;
}

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int hns_roce_dereg_mr(struct ib_mr *ibmr, struct ib_udata *udata)
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{
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	struct hns_roce_dev *hr_dev = to_hr_dev(ibmr->device);
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	struct hns_roce_mr *mr = to_hr_mr(ibmr);
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	int ret = 0;
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	if (hr_dev->hw->dereg_mr) {
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		ret = hr_dev->hw->dereg_mr(hr_dev, mr, udata);
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	} else {
		hns_roce_mr_free(hr_dev, mr);
		kfree(mr);
	}

	return ret;
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}
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struct ib_mr *hns_roce_alloc_mr(struct ib_pd *pd, enum ib_mr_type mr_type,
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				u32 max_num_sg, struct ib_udata *udata)
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{
	struct hns_roce_dev *hr_dev = to_hr_dev(pd->device);
	struct device *dev = hr_dev->dev;
	struct hns_roce_mr *mr;
	u64 length;
	int ret;

	if (mr_type != IB_MR_TYPE_MEM_REG)
		return ERR_PTR(-EINVAL);

	if (max_num_sg > HNS_ROCE_FRMR_MAX_PA) {
		dev_err(dev, "max_num_sg larger than %d\n",
			HNS_ROCE_FRMR_MAX_PA);
		return ERR_PTR(-EINVAL);
	}

	mr = kzalloc(sizeof(*mr), GFP_KERNEL);
	if (!mr)
		return ERR_PTR(-ENOMEM);

	mr->type = MR_TYPE_FRMR;

	/* Allocate memory region key */
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	length = max_num_sg * (1 << PAGE_SHIFT);
	ret = alloc_mr_key(hr_dev, mr, to_hr_pd(pd)->pdn, 0, length, 0);
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	if (ret)
		goto err_free;

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	ret = alloc_mr_pbl(hr_dev, mr, length, NULL, 0, 0);
	if (ret)
		goto err_key;

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	ret = hns_roce_mr_enable(hr_dev, mr);
	if (ret)
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		goto err_pbl;
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	mr->ibmr.rkey = mr->ibmr.lkey = mr->key;
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	mr->ibmr.length = length;
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	return &mr->ibmr;

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err_key:
	free_mr_key(hr_dev, mr);
err_pbl:
	free_mr_pbl(hr_dev, mr);
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err_free:
	kfree(mr);
	return ERR_PTR(ret);
}

static int hns_roce_set_page(struct ib_mr *ibmr, u64 addr)
{
	struct hns_roce_mr *mr = to_hr_mr(ibmr);

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	if (likely(mr->npages < mr->pbl_mtr.hem_cfg.buf_pg_count)) {
		mr->page_list[mr->npages++] = addr;
		return 0;
	}
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	return -ENOBUFS;
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}

int hns_roce_map_mr_sg(struct ib_mr *ibmr, struct scatterlist *sg, int sg_nents,
		       unsigned int *sg_offset)
{
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	struct hns_roce_dev *hr_dev = to_hr_dev(ibmr->device);
	struct ib_device *ibdev = &hr_dev->ib_dev;
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	struct hns_roce_mr *mr = to_hr_mr(ibmr);
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	struct hns_roce_buf_region region = {};
	int ret = 0;
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	mr->npages = 0;
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	mr->page_list = kvcalloc(mr->pbl_mtr.hem_cfg.buf_pg_count,
				 sizeof(dma_addr_t), GFP_KERNEL);
	if (!mr->page_list)
		return ret;

	ret = ib_sg_to_pages(ibmr, sg, sg_nents, sg_offset, hns_roce_set_page);
	if (ret < 1) {
		ibdev_err(ibdev, "failed to store sg pages %d %d, cnt = %d.\n",
			  mr->npages, mr->pbl_mtr.hem_cfg.buf_pg_count, ret);
		goto err_page_list;
	}
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	region.offset = 0;
	region.count = mr->npages;
	region.hopnum = mr->pbl_hop_num;
	ret = hns_roce_mtr_map(hr_dev, &mr->pbl_mtr, &region, 1, mr->page_list,
			       mr->npages);
	if (ret) {
		ibdev_err(ibdev, "failed to map sg mtr, ret = %d.\n", ret);
		ret = 0;
	} else {
		mr->pbl_mtr.hem_cfg.buf_pg_shift = ilog2(ibmr->page_size);
		ret = mr->npages;
	}

err_page_list:
	kvfree(mr->page_list);
	mr->page_list = NULL;

	return ret;
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}

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static void hns_roce_mw_free(struct hns_roce_dev *hr_dev,
			     struct hns_roce_mw *mw)
{
	struct device *dev = hr_dev->dev;
	int ret;

	if (mw->enabled) {
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		ret = hns_roce_hw_destroy_mpt(hr_dev, NULL,
					      key_to_hw_index(mw->rkey) &
					      (hr_dev->caps.num_mtpts - 1));
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		if (ret)
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			dev_warn(dev, "MW DESTROY_MPT failed (%d)\n", ret);
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		hns_roce_table_put(hr_dev, &hr_dev->mr_table.mtpt_table,
				   key_to_hw_index(mw->rkey));
	}

	hns_roce_bitmap_free(&hr_dev->mr_table.mtpt_bitmap,
			     key_to_hw_index(mw->rkey), BITMAP_NO_RR);
}

static int hns_roce_mw_enable(struct hns_roce_dev *hr_dev,
			      struct hns_roce_mw *mw)
{
	struct hns_roce_mr_table *mr_table = &hr_dev->mr_table;
	struct hns_roce_cmd_mailbox *mailbox;
	struct device *dev = hr_dev->dev;
	unsigned long mtpt_idx = key_to_hw_index(mw->rkey);
	int ret;

	/* prepare HEM entry memory */
	ret = hns_roce_table_get(hr_dev, &mr_table->mtpt_table, mtpt_idx);
	if (ret)
		return ret;

	mailbox = hns_roce_alloc_cmd_mailbox(hr_dev);
	if (IS_ERR(mailbox)) {
		ret = PTR_ERR(mailbox);
		goto err_table;
	}

	ret = hr_dev->hw->mw_write_mtpt(mailbox->buf, mw);
	if (ret) {
		dev_err(dev, "MW write mtpt fail!\n");
		goto err_page;
	}

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	ret = hns_roce_hw_create_mpt(hr_dev, mailbox,
				     mtpt_idx & (hr_dev->caps.num_mtpts - 1));
Y
Yixian Liu 已提交
571
	if (ret) {
572
		dev_err(dev, "MW CREATE_MPT failed (%d)\n", ret);
Y
Yixian Liu 已提交
573 574 575 576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641
		goto err_page;
	}

	mw->enabled = 1;

	hns_roce_free_cmd_mailbox(hr_dev, mailbox);

	return 0;

err_page:
	hns_roce_free_cmd_mailbox(hr_dev, mailbox);

err_table:
	hns_roce_table_put(hr_dev, &mr_table->mtpt_table, mtpt_idx);

	return ret;
}

struct ib_mw *hns_roce_alloc_mw(struct ib_pd *ib_pd, enum ib_mw_type type,
				struct ib_udata *udata)
{
	struct hns_roce_dev *hr_dev = to_hr_dev(ib_pd->device);
	struct hns_roce_mw *mw;
	unsigned long index = 0;
	int ret;

	mw = kmalloc(sizeof(*mw), GFP_KERNEL);
	if (!mw)
		return ERR_PTR(-ENOMEM);

	/* Allocate a key for mw from bitmap */
	ret = hns_roce_bitmap_alloc(&hr_dev->mr_table.mtpt_bitmap, &index);
	if (ret)
		goto err_bitmap;

	mw->rkey = hw_index_to_key(index);

	mw->ibmw.rkey = mw->rkey;
	mw->ibmw.type = type;
	mw->pdn = to_hr_pd(ib_pd)->pdn;
	mw->pbl_hop_num = hr_dev->caps.pbl_hop_num;
	mw->pbl_ba_pg_sz = hr_dev->caps.pbl_ba_pg_sz;
	mw->pbl_buf_pg_sz = hr_dev->caps.pbl_buf_pg_sz;

	ret = hns_roce_mw_enable(hr_dev, mw);
	if (ret)
		goto err_mw;

	return &mw->ibmw;

err_mw:
	hns_roce_mw_free(hr_dev, mw);

err_bitmap:
	kfree(mw);

	return ERR_PTR(ret);
}

int hns_roce_dealloc_mw(struct ib_mw *ibmw)
{
	struct hns_roce_dev *hr_dev = to_hr_dev(ibmw->device);
	struct hns_roce_mw *mw = to_hr_mw(ibmw);

	hns_roce_mw_free(hr_dev, mw);
	kfree(mw);

	return 0;
}
642

643 644
static int mtr_map_region(struct hns_roce_dev *hr_dev, struct hns_roce_mtr *mtr,
			  dma_addr_t *pages, struct hns_roce_buf_region *region)
645
{
646
	__le64 *mtts;
647 648 649
	int offset;
	int count;
	int npage;
650
	u64 addr;
651 652 653
	int end;
	int i;

654 655 656 657 658 659
	/* if hopnum is 0, buffer cannot store BAs, so skip write mtt */
	if (!region->hopnum)
		return 0;

	offset = region->offset;
	end = offset + region->count;
660 661 662 663 664 665 666 667 668
	npage = 0;
	while (offset < end) {
		mtts = hns_roce_hem_list_find_mtt(hr_dev, &mtr->hem_list,
						  offset, &count, NULL);
		if (!mtts)
			return -ENOBUFS;

		for (i = 0; i < count; i++) {
			if (hr_dev->hw_rev == HNS_ROCE_HW_VER1)
669
				addr = to_hr_hw_page_addr(pages[npage]);
670
			else
671
				addr = pages[npage];
672

673
			mtts[i] = cpu_to_le64(addr);
674 675 676 677 678 679 680 681
			npage++;
		}
		offset += count;
	}

	return 0;
}

682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708
static inline bool mtr_has_mtt(struct hns_roce_buf_attr *attr)
{
	int i;

	for (i = 0; i < attr->region_count; i++)
		if (attr->region[i].hopnum != HNS_ROCE_HOP_NUM_0 &&
		    attr->region[i].hopnum > 0)
			return true;

	/* because the mtr only one root base address, when hopnum is 0 means
	 * root base address equals the first buffer address, thus all alloced
	 * memory must in a continuous space accessed by direct mode.
	 */
	return false;
}

static inline size_t mtr_bufs_size(struct hns_roce_buf_attr *attr)
{
	size_t size = 0;
	int i;

	for (i = 0; i < attr->region_count; i++)
		size += attr->region[i].size;

	return size;
}

709 710
static inline int mtr_umem_page_count(struct ib_umem *umem,
				      unsigned int page_shift)
711 712 713 714 715 716 717 718 719 720 721 722
{
	int count = ib_umem_page_count(umem);

	if (page_shift >= PAGE_SHIFT)
		count >>= page_shift - PAGE_SHIFT;
	else
		count <<= PAGE_SHIFT - page_shift;

	return count;
}

static inline size_t mtr_kmem_direct_size(bool is_direct, size_t alloc_size,
723
					  unsigned int page_shift)
724 725 726 727 728 729 730 731 732 733 734 735
{
	if (is_direct)
		return ALIGN(alloc_size, 1 << page_shift);
	else
		return HNS_HW_DIRECT_PAGE_COUNT << page_shift;
}

/*
 * check the given pages in continuous address space
 * Returns 0 on success, or the error page num.
 */
static inline int mtr_check_direct_pages(dma_addr_t *pages, int page_count,
736
					 unsigned int page_shift)
737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768
{
	size_t page_size = 1 << page_shift;
	int i;

	for (i = 1; i < page_count; i++)
		if (pages[i] - pages[i - 1] != page_size)
			return i;

	return 0;
}

static void mtr_free_bufs(struct hns_roce_dev *hr_dev, struct hns_roce_mtr *mtr)
{
	/* release user buffers */
	if (mtr->umem) {
		ib_umem_release(mtr->umem);
		mtr->umem = NULL;
	}

	/* release kernel buffers */
	if (mtr->kmem) {
		hns_roce_buf_free(hr_dev, mtr->kmem);
		kfree(mtr->kmem);
		mtr->kmem = NULL;
	}
}

static int mtr_alloc_bufs(struct hns_roce_dev *hr_dev, struct hns_roce_mtr *mtr,
			  struct hns_roce_buf_attr *buf_attr, bool is_direct,
			  struct ib_udata *udata, unsigned long user_addr)
{
	struct ib_device *ibdev = &hr_dev->ib_dev;
769 770
	unsigned int max_pg_shift = buf_attr->page_shift;
	unsigned int best_pg_shift = 0;
771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822
	int all_pg_count = 0;
	size_t direct_size;
	size_t total_size;
	unsigned long tmp;
	int ret = 0;

	total_size = mtr_bufs_size(buf_attr);
	if (total_size < 1) {
		ibdev_err(ibdev, "Failed to check mtr size\n");
		return -EINVAL;
	}

	if (udata) {
		mtr->kmem = NULL;
		mtr->umem = ib_umem_get(ibdev, user_addr, total_size,
					buf_attr->user_access);
		if (IS_ERR_OR_NULL(mtr->umem)) {
			ibdev_err(ibdev, "Failed to get umem, ret %ld\n",
				  PTR_ERR(mtr->umem));
			return -ENOMEM;
		}
		if (buf_attr->fixed_page) {
			best_pg_shift = max_pg_shift;
		} else {
			tmp = GENMASK(max_pg_shift, 0);
			ret = ib_umem_find_best_pgsz(mtr->umem, tmp, user_addr);
			best_pg_shift = (ret <= PAGE_SIZE) ?
					PAGE_SHIFT : ilog2(ret);
		}
		all_pg_count = mtr_umem_page_count(mtr->umem, best_pg_shift);
		ret = 0;
	} else {
		mtr->umem = NULL;
		mtr->kmem = kzalloc(sizeof(*mtr->kmem), GFP_KERNEL);
		if (!mtr->kmem) {
			ibdev_err(ibdev, "Failed to alloc kmem\n");
			return -ENOMEM;
		}
		direct_size = mtr_kmem_direct_size(is_direct, total_size,
						   max_pg_shift);
		ret = hns_roce_buf_alloc(hr_dev, total_size, direct_size,
					 mtr->kmem, max_pg_shift);
		if (ret) {
			ibdev_err(ibdev, "Failed to alloc kmem, ret %d\n", ret);
			goto err_alloc_mem;
		} else {
			best_pg_shift = max_pg_shift;
			all_pg_count = mtr->kmem->npages;
		}
	}

	/* must bigger than minimum hardware page shift */
823
	if (best_pg_shift < HNS_HW_PAGE_SHIFT || all_pg_count < 1) {
824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839
		ret = -EINVAL;
		ibdev_err(ibdev, "Failed to check mtr page shift %d count %d\n",
			  best_pg_shift, all_pg_count);
		goto err_alloc_mem;
	}

	mtr->hem_cfg.buf_pg_shift = best_pg_shift;
	mtr->hem_cfg.buf_pg_count = all_pg_count;

	return 0;
err_alloc_mem:
	mtr_free_bufs(hr_dev, mtr);
	return ret;
}

static int mtr_get_pages(struct hns_roce_dev *hr_dev, struct hns_roce_mtr *mtr,
840
			 dma_addr_t *pages, int count, unsigned int page_shift)
841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895
{
	struct ib_device *ibdev = &hr_dev->ib_dev;
	int npage;
	int err;

	if (mtr->umem)
		npage = hns_roce_get_umem_bufs(hr_dev, pages, count, 0,
					       mtr->umem, page_shift);
	else
		npage = hns_roce_get_kmem_bufs(hr_dev, pages, count, 0,
					       mtr->kmem);

	if (mtr->hem_cfg.is_direct && npage > 1) {
		err = mtr_check_direct_pages(pages, npage, page_shift);
		if (err) {
			ibdev_err(ibdev, "Failed to check %s direct page-%d\n",
				  mtr->umem ? "user" : "kernel", err);
			npage = err;
		}
	}

	return npage;
}

int hns_roce_mtr_map(struct hns_roce_dev *hr_dev, struct hns_roce_mtr *mtr,
		     struct hns_roce_buf_region *regions, int region_cnt,
		     dma_addr_t *pages, int page_cnt)
{
	struct ib_device *ibdev = &hr_dev->ib_dev;
	struct hns_roce_buf_region *r;
	int err;
	int i;

	for (i = 0; i < region_cnt; i++) {
		r = &regions[i];
		if (r->offset + r->count > page_cnt) {
			err = -EINVAL;
			ibdev_err(ibdev,
				  "Failed to check mtr%d end %d + %d, max %d\n",
				  i, r->offset, r->count, page_cnt);
			return err;
		}

		err = mtr_map_region(hr_dev, mtr, &pages[r->offset], r);
		if (err) {
			ibdev_err(ibdev,
				  "Failed to map mtr%d offset %d, err %d\n",
				  i, r->offset, err);
			return err;
		}
	}

	return 0;
}

896 897 898 899 900
int hns_roce_mtr_find(struct hns_roce_dev *hr_dev, struct hns_roce_mtr *mtr,
		      int offset, u64 *mtt_buf, int mtt_max, u64 *base_addr)
{
	int mtt_count;
	int total = 0;
901
	__le64 *mtts;
902
	int npage;
903
	u64 addr;
904 905
	int left;

906
	if (!mtt_buf || mtt_max < 1)
907 908
		goto done;

909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924
	/* no mtt memory in direct mode, so just return the buffer address */
	if (mtr->hem_cfg.is_direct) {
		npage = offset;
		for (total = 0; total < mtt_max; total++, npage++) {
			addr = mtr->hem_cfg.root_ba +
			       (npage << mtr->hem_cfg.buf_pg_shift);

			if (hr_dev->hw_rev == HNS_ROCE_HW_VER1)
				mtt_buf[total] = to_hr_hw_page_addr(addr);
			else
				mtt_buf[total] = addr;
		}

		goto done;
	}

925 926 927
	left = mtt_max;
	while (left > 0) {
		mtt_count = 0;
928
		mtts = hns_roce_hem_list_find_mtt(hr_dev, &mtr->hem_list,
929 930
						  offset + total,
						  &mtt_count, NULL);
931
		if (!mtts || !mtt_count)
932 933 934 935
			goto done;

		npage = min(mtt_count, left);
		left -= npage;
936 937
		for (mtt_count = 0; mtt_count < npage; mtt_count++)
			mtt_buf[total++] = le64_to_cpu(mtts[mtt_count]);
938 939 940 941
	}

done:
	if (base_addr)
942
		*base_addr = mtr->hem_cfg.root_ba;
943 944 945

	return total;
}
946 947 948 949

/* convert buffer size to page index and page count */
static int mtr_init_region(struct hns_roce_buf_attr *attr, int page_cnt,
			   struct hns_roce_buf_region *regions, int region_cnt,
950
			   unsigned int page_shift)
951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980
{
	unsigned int page_size = 1 << page_shift;
	int max_region = attr->region_count;
	struct hns_roce_buf_region *r;
	int page_idx = 0;
	int i = 0;

	for (; i < region_cnt && i < max_region && page_idx < page_cnt; i++) {
		r = &regions[i];
		r->hopnum = attr->region[i].hopnum == HNS_ROCE_HOP_NUM_0 ?
			    0 : attr->region[i].hopnum;
		r->offset = page_idx;
		r->count = DIV_ROUND_UP(attr->region[i].size, page_size);
		page_idx += r->count;
	}

	return i;
}

/**
 * hns_roce_mtr_create - Create hns memory translate region.
 *
 * @mtr: memory translate region
 * @init_attr: init attribute for creating mtr
 * @page_shift: page shift for multi-hop base address table
 * @udata: user space context, if it's NULL, means kernel space
 * @user_addr: userspace virtual address to start at
 * @buf_alloced: mtr has private buffer, true means need to alloc
 */
int hns_roce_mtr_create(struct hns_roce_dev *hr_dev, struct hns_roce_mtr *mtr,
981 982 983
			struct hns_roce_buf_attr *buf_attr,
			unsigned int page_shift, struct ib_udata *udata,
			unsigned long user_addr)
984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 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 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092
{
	struct hns_roce_buf_region regions[HNS_ROCE_MAX_BT_REGION] = {};
	struct ib_device *ibdev = &hr_dev->ib_dev;
	dma_addr_t *pages = NULL;
	int region_cnt = 0;
	int all_pg_cnt;
	int get_pg_cnt;
	bool has_mtt;
	int err = 0;

	has_mtt = mtr_has_mtt(buf_attr);
	/* if buffer only need mtt, just init the hem cfg */
	if (buf_attr->mtt_only) {
		mtr->hem_cfg.buf_pg_shift = buf_attr->page_shift;
		mtr->hem_cfg.buf_pg_count = mtr_bufs_size(buf_attr) >>
					    buf_attr->page_shift;
		mtr->umem = NULL;
		mtr->kmem = NULL;
	} else {
		err = mtr_alloc_bufs(hr_dev, mtr, buf_attr, !has_mtt, udata,
				     user_addr);
		if (err) {
			ibdev_err(ibdev, "Failed to alloc mtr bufs, err %d\n",
				  err);
			return err;
		}
	}

	/* alloc mtt memory */
	all_pg_cnt = mtr->hem_cfg.buf_pg_count;
	hns_roce_hem_list_init(&mtr->hem_list);
	mtr->hem_cfg.is_direct = !has_mtt;
	mtr->hem_cfg.ba_pg_shift = page_shift;
	if (has_mtt) {
		region_cnt = mtr_init_region(buf_attr, all_pg_cnt,
					     regions, ARRAY_SIZE(regions),
					     mtr->hem_cfg.buf_pg_shift);
		if (region_cnt < 1) {
			err = -ENOBUFS;
			ibdev_err(ibdev, "Failed to init mtr region %d\n",
				  region_cnt);
			goto err_alloc_bufs;
		}
		err = hns_roce_hem_list_request(hr_dev, &mtr->hem_list,
						regions, region_cnt,
						page_shift);
		if (err) {
			ibdev_err(ibdev, "Failed to request mtr hem, err %d\n",
				  err);
			goto err_alloc_bufs;
		}
		mtr->hem_cfg.root_ba = mtr->hem_list.root_ba;
	}

	/* no buffer to map */
	if (buf_attr->mtt_only)
		return 0;

	/* alloc a tmp array to store buffer's dma address */
	pages = kvcalloc(all_pg_cnt, sizeof(dma_addr_t), GFP_KERNEL);
	if (!pages) {
		err = -ENOMEM;
		ibdev_err(ibdev, "Failed to alloc mtr page list %d\n",
			  all_pg_cnt);
		goto err_alloc_hem_list;
	}

	get_pg_cnt = mtr_get_pages(hr_dev, mtr, pages, all_pg_cnt,
				   mtr->hem_cfg.buf_pg_shift);
	if (get_pg_cnt != all_pg_cnt) {
		ibdev_err(ibdev, "Failed to get mtr page %d != %d\n",
			  get_pg_cnt, all_pg_cnt);
		err = -ENOBUFS;
		goto err_alloc_page_list;
	}

	if (!has_mtt) {
		mtr->hem_cfg.root_ba = pages[0];
	} else {
		/* write buffer's dma address to BA table */
		err = hns_roce_mtr_map(hr_dev, mtr, regions, region_cnt, pages,
				       all_pg_cnt);
		if (err) {
			ibdev_err(ibdev, "Failed to map mtr pages, err %d\n",
				  err);
			goto err_alloc_page_list;
		}
	}

	/* drop tmp array */
	kvfree(pages);
	return 0;
err_alloc_page_list:
	kvfree(pages);
err_alloc_hem_list:
	hns_roce_hem_list_release(hr_dev, &mtr->hem_list);
err_alloc_bufs:
	mtr_free_bufs(hr_dev, mtr);
	return err;
}

void hns_roce_mtr_destroy(struct hns_roce_dev *hr_dev, struct hns_roce_mtr *mtr)
{
	/* release multi-hop addressing resource */
	hns_roce_hem_list_release(hr_dev, &mtr->hem_list);

	/* free buffers */
	mtr_free_bufs(hr_dev, mtr);
}